Copyright © 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011, 2012, 2013 The FreeBSD Documentation Project
Welcome to FreeBSD! This handbook covers the installation and day to day use of FreeBSD 8.3-RELEASE and FreeBSD 9.1-RELEASE. This manual is a work in progress and is the work of many individuals. As such, some sections may become dated and require updating. If you are interested in helping out with this project, send email to the FreeBSD documentation project mailing list. The latest version of this document is always available from the FreeBSD web site (previous versions of this handbook can be obtained from http://docs.FreeBSD.org/doc/). It may also be downloaded in a variety of formats and compression options from the FreeBSD FTP server or one of the numerous mirror sites. If you would prefer to have a hard copy of the handbook, you can purchase one at the FreeBSD Mall. You may also want to search the handbook.
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The FreeBSD newcomer will find that the first section of this book guides the user through the FreeBSD installation process and gently introduces the concepts and conventions that underpin UNIX®. Working through this section requires little more than the desire to explore, and the ability to take on board new concepts as they are introduced.
Once you have traveled this far, the second, far larger, section of the Handbook is a comprehensive reference to all manner of topics of interest to FreeBSD system administrators. Some of these chapters may recommend that you do some prior reading, and this is noted in the synopsis at the beginning of each chapter.
For a list of additional sources of information, please see Appendix B.
The current online version of the Handbook represents the cumulative effort of many hundreds of contributors over the past 10 years. The following are some of the significant changes since the two volume third edition was published in 2004:
Chapter 26, DTrace, has been added with information about the powerful DTrace performance analysis tool.
Chapter 21, File Systems Support, has been added with information about non-native file systems in FreeBSD, such as ZFS from Sun™.
Chapter 18, Security Event Auditing, has been added to cover the new auditing capabilities in FreeBSD and explain its use.
Chapter 23, Virtualization, has been added with information about installing FreeBSD on virtualization software.
Chapter 2, Installing FreeBSD 9.x and Later, has been added to cover installation of FreeBSD using the new installation utility, bsdinstall.
The third edition was the culmination of over two years of work by the dedicated members of the FreeBSD Documentation Project. The printed edition grew to such a size that it was necessary to publish as two separate volumes. The following are the major changes in this new edition:
Chapter 12, Configuration and Tuning, has been expanded with new information about the ACPI power and resource management, the cron system utility, and more kernel tuning options.
Chapter 15, Security, has been expanded with new information about virtual private networks (VPNs), file system access control lists (ACLs), and security advisories.
Chapter 17, Mandatory Access Control (MAC), is a new chapter with this edition. It explains what MAC is and how this mechanism can be used to secure a FreeBSD system.
Chapter 19, Storage, has been expanded with new information about USB storage devices, file system snapshots, file system quotas, file and network backed filesystems, and encrypted disk partitions.
Chapter 22, Vinum, is a new chapter with this edition. It describes how to use Vinum, a logical volume manager which provides device-independent logical disks, and software RAID-0, RAID-1 and RAID-5.
A troubleshooting section has been added to Chapter 28, PPP and SLIP.
Chapter 29, Electronic Mail, has been expanded with new information about using alternative transport agents, SMTP authentication, UUCP, fetchmail, procmail, and other advanced topics.
Chapter 30, Network Servers, is all new with this edition. This chapter includes information about setting up the Apache HTTP Server, ftpd, and setting up a server for Microsoft® Windows® clients with Samba. Some sections from Chapter 32, Advanced Networking, were moved here to improve the presentation.
Chapter 32, Advanced Networking, has been expanded with new information about using Bluetooth® devices with FreeBSD, setting up wireless networks, and Asynchronous Transfer Mode (ATM) networking.
A glossary has been added to provide a central location for the definitions of technical terms used throughout the book.
A number of aesthetic improvements have been made to the tables and figures throughout the book.
The second edition was the culmination of over two years of work by the dedicated members of the FreeBSD Documentation Project. The following were the major changes in this edition:
A complete Index has been added.
All ASCII figures have been replaced by graphical diagrams.
A standard synopsis has been added to each chapter to give a quick summary of what information the chapter contains, and what the reader is expected to know.
The content has been logically reorganized into three parts: “Getting Started”, “System Administration”, and “Appendices”.
Chapter 3 (“Installing FreeBSD”) was completely rewritten with many screenshots to make it much easier for new users to grasp the text.
Chapter 4 (“UNIX Basics”) has been expanded to contain additional information about processes, daemons, and signals.
Chapter 5 (“Installing Applications”) has been expanded to contain additional information about binary package management.
Chapter 6 (“The X Window System”) has been completely rewritten with an emphasis on using modern desktop technologies such as KDE and GNOME on XFree86™ 4.X.
Chapter 13 (“The FreeBSD Booting Process”) has been expanded.
Chapter 19 (“Storage”) has been written from what used to be two separate chapters on “Disks” and “Backups”. We feel that the topics are easier to comprehend when presented as a single chapter. A section on RAID (both hardware and software) has also been added.
Chapter 27 (“Serial Communications”) has been completely reorganized and updated for FreeBSD 4.X/5.X.
Chapter 28 (“PPP and SLIP”) has been substantially updated.
Many new sections have been added to Chapter 32 (“Advanced Networking”).
Chapter 29 (“Electronic Mail”) has been expanded to include more information about configuring sendmail.
Chapter 11 (“Linux® Compatibility”) has been expanded to include information about installing Oracle® and SAP® R/3®.
The following new topics are covered in this second edition:
Configuration and Tuning (Chapter 12).
Multimedia (Chapter 8)
This book is split into five logically distinct sections. The first section, Getting Started, covers the installation and basic usage of FreeBSD. It is expected that the reader will follow these chapters in sequence, possibly skipping chapters covering familiar topics. The second section, Common Tasks, covers some frequently used features of FreeBSD. This section, and all subsequent sections, can be read out of order. Each chapter begins with a succinct synopsis that describes what the chapter covers and what the reader is expected to already know. This is meant to allow the casual reader to skip around to find chapters of interest. The third section, System Administration, covers administration topics. The fourth section, Network Communication, covers networking and server topics. The fifth section contains appendices of reference information.
Introduces FreeBSD to a new user. It describes the history of the FreeBSD Project, its goals and development model.
Walks a user through the entire installation process of FreeBSD 8.x and earlier using sysinstall. Some advanced installation topics, such as installing through a serial console, are also covered.
Walks a user through the entire installation process of FreeBSD 9.x and later using bsdinstall.
Covers the basic commands and functionality of the FreeBSD operating system. If you are familiar with Linux or another flavor of UNIX then you can probably skip this chapter.
Covers the installation of third-party software with both FreeBSD's innovative “Ports Collection” and standard binary packages.
Describes the X Window System in general and using X11 on FreeBSD in particular. Also describes common desktop environments such as KDE and GNOME.
Lists some common desktop applications, such as web browsers and productivity suites, and describes how to install them on FreeBSD.
Shows how to set up sound and video playback support for your system. Also describes some sample audio and video applications.
Explains why you might need to configure a new kernel and provides detailed instructions for configuring, building, and installing a custom kernel.
Describes managing printers on FreeBSD, including information about banner pages, printer accounting, and initial setup.
Describes the Linux compatibility features of FreeBSD. Also provides detailed installation instructions for many popular Linux applications such as Oracle and Mathematica®.
Describes the parameters available for system administrators to tune a FreeBSD system for optimum performance. Also describes the various configuration files used in FreeBSD and where to find them.
Describes the FreeBSD boot process and explains how to control this process with configuration options.
Describes the creation and manipulation of user accounts. Also discusses resource limitations that can be set on users and other account management tasks.
Describes many different tools available to help keep your FreeBSD system secure, including Kerberos, IPsec and OpenSSH.
Describes the jails framework, and the improvements of jails over the traditional chroot support of FreeBSD.
Explains what Mandatory Access Control (MAC) is and how this mechanism can be used to secure a FreeBSD system.
Describes what FreeBSD Event Auditing is, how it can be installed, configured, and how audit trails can be inspected or monitored.
Describes how to manage storage media and filesystems with FreeBSD. This includes physical disks, RAID arrays, optical and tape media, memory-backed disks, and network filesystems.
Describes what the GEOM framework in FreeBSD is and how to configure various supported RAID levels.
Examines support of non-native file systems in FreeBSD, like the Z File System from Sun.
Describes how to use Vinum, a logical volume manager which provides device-independent logical disks, and software RAID-0, RAID-1 and RAID-5.
Describes what virtualization systems offer, and how they can be used with FreeBSD.
Describes how to use FreeBSD in languages other than English. Covers both system and application level localization.
Explains the differences between FreeBSD-STABLE, FreeBSD-CURRENT, and FreeBSD releases. Describes which users would benefit from tracking a development system and outlines that process. Covers the methods users may take to update their system to the latest security release.
Describes how to configure and use the DTrace tool from Sun in FreeBSD. Dynamic tracing can help locate performance issues, by performing real time system analysis.
Explains how to connect terminals and modems to your FreeBSD system for both dial in and dial out connections.
Describes how to use PPP, SLIP, or PPP over Ethernet to connect to remote systems with FreeBSD.
Explains the different components of an email server and dives into simple configuration topics for the most popular mail server software: sendmail.
Provides detailed instructions and example configuration files to set up your FreeBSD machine as a network filesystem server, domain name server, network information system server, or time synchronization server.
Explains the philosophy behind software-based firewalls and provides detailed information about the configuration of the different firewalls available for FreeBSD.
Describes many networking topics, including sharing an Internet connection with other computers on your LAN, advanced routing topics, wireless networking, Bluetooth, ATM, IPv6, and much more.
Lists different sources for obtaining FreeBSD media on CDROM or DVD as well as different sites on the Internet that allow you to download and install FreeBSD.
This book touches on many different subjects that may leave you hungry for a more detailed explanation. The bibliography lists many excellent books that are referenced in the text.
Describes the many forums available for FreeBSD users to post questions and engage in technical conversations about FreeBSD.
Lists the PGP fingerprints of several FreeBSD Developers.
To provide a consistent and easy to read text, several conventions are followed throughout the book.
An italic font is used for filenames, URLs, emphasized text, and the first usage of technical terms.
A monospaced font is used for error messages, commands, environment variables, names of ports, hostnames, user names, group names, device names, variables, and code fragments.
A bold font is used for applications, commands, and keys.
Keys are shown in bold to stand out from other text. Key combinations that are meant to be typed simultaneously are shown with `+' between the keys, such as:
Ctrl+Alt+Del
Meaning the user should type the Ctrl, Alt, and Del keys at the same time.
Keys that are meant to be typed in sequence will be separated with commas, for example:
Ctrl+X, Ctrl+S
Would mean that the user is expected to type the Ctrl and X keys simultaneously and then to type the Ctrl and S keys simultaneously.
Examples starting with E:\> indicate a MS-DOS® command. Unless otherwise noted, these commands may be executed from a “Command Prompt” window in a modern Microsoft Windows environment.
E:\> tools\fdimage floppies\kern.flp A:
Examples starting with # indicate a command that must be invoked as the superuser in FreeBSD. You can login as root to type the command, or login as your normal account and use su(1) to gain superuser privileges.
# dd if=kern.flp of=/dev/fd0
Examples starting with % indicate a command that should be invoked from a normal user account. Unless otherwise noted, C-shell syntax is used for setting environment variables and other shell commands.
% top
The book you are holding represents the efforts of many hundreds of people around the world. Whether they sent in fixes for typos, or submitted complete chapters, all the contributions have been useful.
Several companies have supported the development of this document by paying authors to work on it full-time, paying for publication, etc. In particular, BSDi (subsequently acquired by Wind River Systems) paid members of the FreeBSD Documentation Project to work on improving this book full time leading up to the publication of the first printed edition in March 2000 (ISBN 1-57176-241-8). Wind River Systems then paid several additional authors to make a number of improvements to the print-output infrastructure and to add additional chapters to the text. This work culminated in the publication of the second printed edition in November 2001 (ISBN 1-57176-303-1). In 2003-2004, FreeBSD Mall, Inc, paid several contributors to improve the Handbook in preparation for the third printed edition.
This part of the FreeBSD Handbook is for users and administrators who are new to FreeBSD. These chapters:
Introduce you to FreeBSD.
Guide you through the installation process.
Teach you UNIX basics and fundamentals.
Show you how to install the wealth of third party applications available for FreeBSD.
Introduce you to X, the UNIX windowing system, and detail how to configure a desktop environment that makes you more productive.
We have tried to keep the number of forward references in the text to a minimum so that you can read this section of the Handbook from front to back with the minimum page flipping required.
Thank you for your interest in FreeBSD! The following chapter covers various aspects of the FreeBSD Project, such as its history, goals, development model, and so on.
After reading this chapter, you will know:
How FreeBSD relates to other computer operating systems.
The history of the FreeBSD Project.
The goals of the FreeBSD Project.
The basics of the FreeBSD open-source development model.
And of course: where the name “FreeBSD” comes from.
FreeBSD is a 4.4BSD-Lite based operating system for Intel (x86 and Itanium®), AMD64, Sun UltraSPARC® computers. Ports to other architectures are also underway. You can also read about the history of FreeBSD, or the current release. If you are interested in contributing something to the Project (code, hardware, funding), see the Contributing to FreeBSD article.
FreeBSD has many noteworthy features. Some of these are:
Preemptive multitasking with dynamic priority adjustment to ensure smooth and fair sharing of the computer between applications and users, even under the heaviest of loads.
Multi-user facilities which allow many people to use a FreeBSD system simultaneously for a variety of things. This means, for example, that system peripherals such as printers and tape drives are properly shared between all users on the system or the network and that individual resource limits can be placed on users or groups of users, protecting critical system resources from over-use.
Strong TCP/IP networking with support for industry standards such as SCTP, DHCP, NFS, NIS, PPP, SLIP, IPsec, and IPv6. This means that your FreeBSD machine can interoperate easily with other systems as well as act as an enterprise server, providing vital functions such as NFS (remote file access) and email services or putting your organization on the Internet with WWW, FTP, routing and firewall (security) services.
Memory protection ensures that applications (or users) cannot interfere with each other. One application crashing will not affect others in any way.
FreeBSD is a 32-bit operating system (64-bit on the Itanium, AMD64, and UltraSPARC) and was designed as such from the ground up.
The industry standard X Window System (X11R7) provides a graphical user interface (GUI) for the cost of a common VGA card and monitor and comes with full sources.
Binary compatibility with many programs built for Linux, SCO, SVR4, BSDI and NetBSD.
Thousands of ready-to-run applications are available from the FreeBSD ports and packages collection. Why search the net when you can find it all right here?
Thousands of additional and easy-to-port applications are available on the Internet. FreeBSD is source code compatible with most popular commercial UNIX systems and thus most applications require few, if any, changes to compile.
Demand paged virtual memory and “merged VM/buffer cache” design efficiently satisfies applications with large appetites for memory while still maintaining interactive response to other users.
SMP support for machines with multiple CPUs.
A full complement of C and C++ development tools. Many additional languages for advanced research and development are also available in the ports and packages collection.
Source code for the entire system means you have the greatest degree of control over your environment. Why be locked into a proprietary solution at the mercy of your vendor when you can have a truly open system?
Extensive online documentation.
And many more!
FreeBSD is based on the 4.4BSD-Lite release from Computer Systems Research Group (CSRG) at the University of California at Berkeley, and carries on the distinguished tradition of BSD systems development. In addition to the fine work provided by CSRG, the FreeBSD Project has put in many thousands of hours in fine tuning the system for maximum performance and reliability in real-life load situations. As many of the commercial giants struggle to field PC operating systems with such features, performance and reliability, FreeBSD can offer them now!
The applications to which FreeBSD can be put are truly limited only by your own imagination. From software development to factory automation, inventory control to azimuth correction of remote satellite antennae; if it can be done with a commercial UNIX product then it is more than likely that you can do it with FreeBSD too! FreeBSD also benefits significantly from literally thousands of high quality applications developed by research centers and universities around the world, often available at little to no cost. Commercial applications are also available and appearing in greater numbers every day.
Because the source code for FreeBSD itself is generally available, the system can also be customized to an almost unheard of degree for special applications or projects, and in ways not generally possible with operating systems from most major commercial vendors. Here is just a sampling of some of the applications in which people are currently using FreeBSD:
Internet Services: The robust TCP/IP networking built into FreeBSD makes it an ideal platform for a variety of Internet services such as:
FTP servers
World Wide Web servers (standard or secure [SSL])
IPv4 and IPv6 routing
Firewalls and NAT (“IP masquerading”) gateways
Electronic Mail servers
USENET News or Bulletin Board Systems
And more...
With FreeBSD, you can easily start out small with an inexpensive 386 class PC and upgrade all the way up to a quad-processor Xeon with RAID storage as your enterprise grows.
Education: Are you a student of computer science or a related engineering field? There is no better way of learning about operating systems, computer architecture and networking than the hands on, under the hood experience that FreeBSD can provide. A number of freely available CAD, mathematical and graphic design packages also make it highly useful to those whose primary interest in a computer is to get other work done!
Research: With source code for the entire system available, FreeBSD is an excellent platform for research in operating systems as well as other branches of computer science. FreeBSD's freely available nature also makes it possible for remote groups to collaborate on ideas or shared development without having to worry about special licensing agreements or limitations on what may be discussed in open forums.
Networking: Need a new router? A name server (DNS)? A firewall to keep people out of your internal network? FreeBSD can easily turn that unused 386 or 486 PC sitting in the corner into an advanced router with sophisticated packet-filtering capabilities.
X Window workstation: FreeBSD is a fine choice for an inexpensive X terminal solution, using the freely available X11 server. Unlike an X terminal, FreeBSD allows many applications to be run locally if desired, thus relieving the burden on a central server. FreeBSD can even boot “diskless”, making individual workstations even cheaper and easier to administer.
Software Development: The basic FreeBSD system comes with a full complement of development tools including the renowned GNU C/C++ compiler and debugger.
FreeBSD is available in both source and binary form on CD-ROM, DVD, and via anonymous FTP. Please see Appendix A for more information about obtaining FreeBSD.
FreeBSD is used as a platform for devices and products from many of the world's largest IT companies, including:
FreeBSD is also used to power some of the biggest sites on the Internet, including:
and many more.
The following section provides some background information on the project, including a brief history, project goals, and the development model of the project.
The FreeBSD Project had its genesis in the early part of 1993, partially as an outgrowth of the “Unofficial 386BSD Patchkit” by the patchkit's last 3 coordinators: Nate Williams, Rod Grimes and myself.
Our original goal was to produce an intermediate snapshot of 386BSD in order to fix a number of problems with it that the patchkit mechanism just was not capable of solving. Some of you may remember the early working title for the project being “386BSD 0.5” or “386BSD Interim” in reference to that fact.
386BSD was Bill Jolitz's operating system, which had been up to that point suffering rather severely from almost a year's worth of neglect. As the patchkit swelled ever more uncomfortably with each passing day, we were in unanimous agreement that something had to be done and decided to assist Bill by providing this interim “cleanup” snapshot. Those plans came to a rude halt when Bill Jolitz suddenly decided to withdraw his sanction from the project without any clear indication of what would be done instead.
It did not take us long to decide that the goal remained worthwhile, even without Bill's support, and so we adopted the name “FreeBSD”, coined by David Greenman. Our initial objectives were set after consulting with the system's current users and, once it became clear that the project was on the road to perhaps even becoming a reality, I contacted Walnut Creek CDROM with an eye toward improving FreeBSD's distribution channels for those many unfortunates without easy access to the Internet. Walnut Creek CDROM not only supported the idea of distributing FreeBSD on CD but also went so far as to provide the project with a machine to work on and a fast Internet connection. Without Walnut Creek CDROM's almost unprecedented degree of faith in what was, at the time, a completely unknown project, it is quite unlikely that FreeBSD would have gotten as far, as fast, as it has today.
The first CD-ROM (and general net-wide) distribution was FreeBSD 1.0, released in December of 1993. This was based on the 4.3BSD-Lite (“Net/2”) tape from U.C. Berkeley, with many components also provided by 386BSD and the Free Software Foundation. It was a fairly reasonable success for a first offering, and we followed it with the highly successful FreeBSD 1.1 release in May of 1994.
Around this time, some rather unexpected storm clouds formed on the horizon as Novell and U.C. Berkeley settled their long-running lawsuit over the legal status of the Berkeley Net/2 tape. A condition of that settlement was U.C. Berkeley's concession that large parts of Net/2 were “encumbered” code and the property of Novell, who had in turn acquired it from AT&T some time previously. What Berkeley got in return was Novell's “blessing” that the 4.4BSD-Lite release, when it was finally released, would be declared unencumbered and all existing Net/2 users would be strongly encouraged to switch. This included FreeBSD, and the project was given until the end of July 1994 to stop shipping its own Net/2 based product. Under the terms of that agreement, the project was allowed one last release before the deadline, that release being FreeBSD 1.1.5.1.
FreeBSD then set about the arduous task of literally re-inventing itself from a completely new and rather incomplete set of 4.4BSD-Lite bits. The “Lite” releases were light in part because Berkeley's CSRG had removed large chunks of code required for actually constructing a bootable running system (due to various legal requirements) and the fact that the Intel port of 4.4 was highly incomplete. It took the project until November of 1994 to make this transition, at which point it released FreeBSD 2.0 to the net and on CD-ROM (in late December). Despite being still more than a little rough around the edges, the release was a significant success and was followed by the more robust and easier to install FreeBSD 2.0.5 release in June of 1995.
We released FreeBSD 2.1.5 in August of 1996, and it appeared to be popular enough among the ISP and commercial communities that another release along the 2.1-STABLE branch was merited. This was FreeBSD 2.1.7.1, released in February 1997 and capping the end of mainstream development on 2.1-STABLE. Now in maintenance mode, only security enhancements and other critical bug fixes will be done on this branch (RELENG_2_1_0).
FreeBSD 2.2 was branched from the development mainline (“-CURRENT”) in November 1996 as the RELENG_2_2 branch, and the first full release (2.2.1) was released in April 1997. Further releases along the 2.2 branch were done in the summer and fall of '97, the last of which (2.2.8) appeared in November 1998. The first official 3.0 release appeared in October 1998 and spelled the beginning of the end for the 2.2 branch.
The tree branched again on Jan 20, 1999, leading to the 4.0-CURRENT and 3.X-STABLE branches. From 3.X-STABLE, 3.1 was released on February 15, 1999, 3.2 on May 15, 1999, 3.3 on September 16, 1999, 3.4 on December 20, 1999, and 3.5 on June 24, 2000, which was followed a few days later by a minor point release update to 3.5.1, to incorporate some last-minute security fixes to Kerberos. This will be the final release in the 3.X branch.
There was another branch on March 13, 2000, which saw the emergence of the 4.X-STABLE branch. There have been several releases from it so far: 4.0-RELEASE was introduced in March 2000, and the last 4.11-RELEASE came out in January 2005.
The long-awaited 5.0-RELEASE was announced on January 19, 2003. The culmination of nearly three years of work, this release started FreeBSD on the path of advanced multiprocessor and application thread support and introduced support for the UltraSPARC and ia64 platforms. This release was followed by 5.1 in June of 2003. The last 5.X release from the -CURRENT branch was 5.2.1-RELEASE, introduced in February 2004.
The RELENG_5 branch, created in August 2004, was followed by 5.3-RELEASE, which marked the beginning of the 5-STABLE branch releases. The most recent 5.5-RELEASE release came out in May 2006. There will be no additional releases from the RELENG_5 branch.
The tree was branched again in July 2005, this time for RELENG_6. 6.0-RELEASE, the first release of the 6.X branch, was released in November 2005. The most recent 6.4-RELEASE came out in November 2008. There will be no additional releases from the RELENG_6 branch. This branch is the last branch to support the Alpha architecture.
The RELENG_7 branch was created in October 2007. The first release of this branch was 7.0-RELEASE, which came out in February 2008. The most recent 7.4-RELEASE came out in February 2011. There will be no additional releases from the RELENG_7 branch.
The tree was branched again in August 2009, this time for RELENG_8. 8.0-RELEASE, the first release of the 8.X branch, was released in November 2009. The most recent 8.3-RELEASE came out in April 2012. There will be additional releases from the RELENG_8 branch.
The RELENG_9 branch was created in September 2011. The first release of this branch was 9.1-RELEASE, which came out in December 2012. There will be additional releases from the RELENG_9 branch.
For now, long-term development projects continue to take place in the 10.X-CURRENT (trunk) branch, and SNAPshot releases of 10.X on CD-ROM (and, of course, on the net) are continually made available from the snapshot server as work progresses.
The goals of the FreeBSD Project are to provide software that may be used for any purpose and without strings attached. Many of us have a significant investment in the code (and project) and would certainly not mind a little financial compensation now and then, but we are definitely not prepared to insist on it. We believe that our first and foremost “mission” is to provide code to any and all comers, and for whatever purpose, so that the code gets the widest possible use and provides the widest possible benefit. This is, I believe, one of the most fundamental goals of Free Software and one that we enthusiastically support.
That code in our source tree which falls under the GNU General Public License (GPL) or Library General Public License (LGPL) comes with slightly more strings attached, though at least on the side of enforced access rather than the usual opposite. Due to the additional complexities that can evolve in the commercial use of GPL software we do, however, prefer software submitted under the more relaxed BSD copyright when it is a reasonable option to do so.
The development of FreeBSD is a very open and flexible process, being literally built from the contributions of hundreds of people around the world, as can be seen from our list of contributors. FreeBSD's development infrastructure allow these hundreds of developers to collaborate over the Internet. We are constantly on the lookout for new developers and ideas, and those interested in becoming more closely involved with the project need simply contact us at the FreeBSD technical discussions mailing list. The FreeBSD announcements mailing list is also available to those wishing to make other FreeBSD users aware of major areas of work.
Useful things to know about the FreeBSD Project and its development process, whether working independently or in close cooperation:
For several years, the central source tree for FreeBSD was maintained by CVS (Concurrent Versions System), a freely available source code control tool that comes bundled with FreeBSD. In June 2008, the Project switched to using SVN (Subversion). The switch was deemed necessary, as the technical limitations imposed by CVS were becoming obvious due to the rapid expansion of the source tree and the amount of history already stored. The Documentation Project and Ports Collection repositories also moved from CVS to SVN in May 2012 and July 2012, respectively.
While the src/ and ports/ repositories now use SVN, client side tools like csup that depend on the older CVS infrastructure, continue to work normally — changes in the SVN repository are backported to CVS for this purpose. Unlike src/ and ports/, the documentation SVN repository is not backported to CVS.
The primary CVS repository resides on a machine in Santa Clara CA, USA from where it is replicated to numerous mirror machines throughout the world. The SVN tree, which contains the -CURRENT and -STABLE trees, can all be easily replicated to your own machine as well. Please refer to the Synchronizing your source tree section for more information on doing this.
The committers are the people who have write access to the Subversion tree, and are authorized to make modifications to the FreeBSD source (the term “committer” comes from the source control commit command, which is used to bring new changes into the repository). The best way of making submissions for review by the committers list is to use the send-pr(1) command. If something appears to be jammed in the system, then you may also reach them by sending mail to the FreeBSD committer's mailing list.
The FreeBSD core team would be equivalent to the board of directors if the FreeBSD Project were a company. The primary task of the core team is to make sure the project, as a whole, is in good shape and is heading in the right directions. Inviting dedicated and responsible developers to join our group of committers is one of the functions of the core team, as is the recruitment of new core team members as others move on. The current core team was elected from a pool of committer candidates in July 2012. Elections are held every 2 years.
Some core team members also have specific areas of responsibility, meaning that they are committed to ensuring that some large portion of the system works as advertised. For a complete list of FreeBSD developers and their areas of responsibility, please see the Contributors List
Note: Most members of the core team are volunteers when it comes to FreeBSD development and do not benefit from the project financially, so “commitment” should also not be misconstrued as meaning “guaranteed support.” The “board of directors” analogy above is not very accurate, and it may be more suitable to say that these are the people who gave up their lives in favor of FreeBSD against their better judgement!
Last, but definitely not least, the largest group of developers are the users themselves who provide feedback and bug fixes to us on an almost constant basis. The primary way of keeping in touch with FreeBSD's more non-centralized development is to subscribe to the FreeBSD technical discussions mailing list where such things are discussed. See Appendix C for more information about the various FreeBSD mailing lists.
The FreeBSD Contributors List is a long and growing one, so why not join it by contributing something back to FreeBSD today?
Providing code is not the only way of contributing to the project; for a more complete list of things that need doing, please refer to the FreeBSD Project web site.
In summary, our development model is organized as a loose set of concentric circles. The centralized model is designed for the convenience of the users of FreeBSD, who are provided with an easy way of tracking one central code base, not to keep potential contributors out! Our desire is to present a stable operating system with a large set of coherent application programs that the users can easily install and use — this model works very well in accomplishing that.
All we ask of those who would join us as FreeBSD developers is some of the same dedication its current people have to its continued success!
FreeBSD is a freely available, full source 4.4BSD-Lite based release for Intel i386™, i486™, Pentium®, Pentium Pro, Celeron®, Pentium II, Pentium III, Pentium 4 (or compatible), Xeon™, and Sun UltraSPARC based computer systems. It is based primarily on software from U.C. Berkeley's CSRG group, with some enhancements from NetBSD, OpenBSD, 386BSD, and the Free Software Foundation.
Since our release of FreeBSD 2.0 in late 1994, the performance, feature set, and stability of FreeBSD has improved dramatically. The largest change is a revamped virtual memory system with a merged VM/file buffer cache that not only increases performance, but also reduces FreeBSD's memory footprint, making a 5 MB configuration a more acceptable minimum. Other enhancements include full NIS client and server support, transaction TCP support, dial-on-demand PPP, integrated DHCP support, an improved SCSI subsystem, ISDN support, support for ATM, FDDI, Fast and Gigabit Ethernet (1000 Mbit) adapters, improved support for the latest Adaptec controllers, and many thousands of bug fixes.
In addition to the base distributions, FreeBSD offers a ported software collection with thousands of commonly sought-after programs. At the time of this printing, there were over 24,000 ports! The list of ports ranges from http (WWW) servers, to games, languages, editors, and almost everything in between. The entire Ports Collection requires approximately 500 MB of storage, all ports being expressed as “deltas” to their original sources. This makes it much easier for us to update ports, and greatly reduces the disk space demands made by the older 1.0 Ports Collection. To compile a port, you simply change to the directory of the program you wish to install, type make install, and let the system do the rest. The full original distribution for each port you build is retrieved dynamically off the CD-ROM or a local FTP site, so you need only enough disk space to build the ports you want. Almost every port is also provided as a pre-compiled “package”, which can be installed with a simple command (pkg_add) by those who do not wish to compile their own ports from source. More information on packages and ports can be found in Chapter 5.
All recent FreeBSD versions provide an option in the installer (either sysinstall(8) or bsdinstall(8)) to install additional documentation under /usr/local/share/doc/freebsd during the initial system setup. Documentation may also be installed at any later time using packages as described in Section 25.4.6.2. You may view the locally installed manuals with any HTML capable browser using the following URLs:
You can also view the master (and most frequently updated) copies at http://www.FreeBSD.org/.
FreeBSD comes with a text-based, easy to use installation program. FreeBSD 9.0-RELEASE and later use an installation program called bsdinstall, while releases prior to FreeBSD 9.0-RELEASE using sysinstall for installation. This chapter describes the use of bsdinstall. The use of sysinstall is covered in Chapter 3.
After reading this chapter, you will know:
How to create the FreeBSD installation media.
How FreeBSD subdivides and refers to hard disks.
How to start bsdinstall.
The questions bsdinstall will ask you, what they mean, and how to answer them.
Before reading this chapter, you should:
Read the supported hardware list that shipped with the version of FreeBSD you are installing, and verify that your hardware is supported.
Note: In general, these installation instructions are written for i386 (“PC compatible”) architecture computers. Where applicable, instructions specific to other platforms will be listed. There may be minor differences between the installer and what is shown here, so use this chapter as a general guide rather than as exact literal instructions.
The minimal configuration to install FreeBSD varies with the FreeBSD version and the hardware architecture.
A summary of this information is given in the following sections. Depending on the method you choose to install FreeBSD, you may also need a supported CDROM drive, and in some cases a network adapter. This will be covered by Section 2.3.5.
FreeBSD/i386 requires a 486 or better processor and at least 64 MB of RAM. At least 1.1 GB of free hard drive space is needed for the most minimal installation.
Note: On old computers, increasing RAM and hard drive space is usually more effective at improving performance than installing a faster processor.
There are two classes of processors capable of running FreeBSD/amd64. The first are AMD64 processors, including the AMD Athlon™64, AMD Athlon64-FX, AMD Opteron™ or better processors.
The second class of processors that can use FreeBSD/amd64 includes those using the Intel® EM64T architecture. Examples of these processors include the Intel Core™ 2 Duo, Quad, Extreme processor families, the Intel Xeon 3000, 5000, and 7000 sequences of processors, and the Intel Core i3, i5 and i7 processors.
If you have a machine based on an nVidia nForce3 Pro-150, you must use the BIOS setup to disable the IO APIC. If you do not have an option to do this, you will likely have to disable ACPI instead. There are bugs in the Pro-150 chipset for which we have not yet found a workaround.
All New World Apple® Macintosh® systems with built-in USB are supported. SMP is supported on machines with multiple CPUs.
A 32-bit kernel can only use the first 2 GB of RAM. FireWire® is not supported on the Blue & White PowerMac G3.
Systems supported by FreeBSD/sparc64 are listed at the FreeBSD/sparc64 Project.
A dedicated disk is required for FreeBSD/sparc64. It is not possible to share a disk with another operating system at this time.
Hardware architectures and devices supported by a FreeBSD release are listed in the Hardware Notes file. Usually named HARDWARE.TXT, the file is located in the root directory of the release media. Copies of the supported hardware list are also available on the Release Information page of the FreeBSD web site.
Back up all important data on the target computer where FreeBSD will be installed. Test the backups before continuing. The FreeBSD installer will ask before making changes to the disk, but once the process has started it cannot be undone.
If FreeBSD will be the only operating system installed, and will be allowed to use the entire hard disk, the rest of this section can be skipped. But if FreeBSD will share the disk with other operating systems, an understanding of disk layout is useful during the installation.
Hard disks can be divided into multiple sections. These sections are called partitions.
There are two ways of dividing a disk into partitions. A traditional Master Boot Record (MBR) holds a partition table defining up to four primary partitions. (For historical reasons, FreeBSD calls primary partitions slices.) A limit of only four partitions is restrictive for large disks, so one of these primary partitions can be made into an extended partition. Multiple logical partitions may then be created inside the extended partition. This may sound a little unwieldy, and it is.
The GUID Partition Table (GPT) is a newer and simpler method of partitioning a disk. GPT is far more versatile than the traditional MBR partition table. Common GPT implementations allow up to 128 partitions per disk, eliminating the need for inconvenient workarounds like logical partitions.
Warning: Some older operating systems like Windows XP are not compatible with the GPT partition scheme. If FreeBSD will be sharing a disk with such an operating system, MBR partitioning is required.
FreeBSD's standard boot loader requires either a primary or GPT partition. (See Chapter 13 for more information about the FreeBSD booting process.) If all of the primary or GPT partitions are already in use, one must be freed for FreeBSD.
A minimal installation of FreeBSD takes as little as 1 GB of disk space. However, that is a very minimal install, leaving almost no free space. A more realistic minimum is 3 GB without a graphical environment, and 5 GB or more if a graphical user interface will be used. Third-party application software requires more space.
A variety of free and commercial partition resizing tools are available. GParted Live is a free Live CD which includes the GParted partition editor. GParted is also included with many other Linux Live CD distributions.
Warning: Disk partition applications can destroy data. Make a full backup and verify its integrity before modifying disk partitions.
Resizing Microsoft Vista partitions can be difficult. A Vista installation CDROM can be useful when attempting such an operation.
Example 2-1. Using an Existing Partition
A Windows computer has a single 40 GB disk that has been split into two 20 GB partitions. Windows calls them C: and D:. The C: partition contains 10 GB of data, and the D: partition contains 5 GB of data.
Moving the data from D: to C: frees up the second partition to be used for FreeBSD.
Example 2-2. Shrinking an Existing Partition
A Windows computer has a single 40 GB disk and one large partition using the whole disk. Windows shows this 40 GB partition as a single C:. 15 GB of space is being used. The goal is to end up with Windows in a 20 GB partition, and have another 20 GB partition for FreeBSD.
There are two ways to do this:
Back up your Windows data. Then reinstall Windows, creating a 20 GB partition during the install.
Use a partition resizing tool like GParted to shrink the Windows partition and create a new partition in the freed space for FreeBSD.
Disk partitions containing different operating systems make it possible to run any one of those operating systems at a time. An alternative method that allows running multiple operating systems at the same time is covered in Chapter 23.
Some FreeBSD installation methods need a network connection to download files. To connect to an Ethernet network (or cable or DSL modem with an Ethernet interface), the installer will request some information about the network.
DHCP is commonly used to provide automatic network configuration. If DHCP is not available, this network information must be obtained from the local network administrator or service provider:
Network Information
IP address
Subnet mask
Default router IP address
Domain name of the local network
DNS server IP address(es)
Although the FreeBSD Project strives to ensure that each release of FreeBSD is as stable as possible, bugs occasionally creep into the process. On very rare occasions those bugs affect the installation process. As these problems are discovered and fixed, they are noted in the FreeBSD Errata on the FreeBSD web site. Check the errata before installing to make sure that there are no problems that might affect the installation.
Information and errata for all the releases can be found on the release information section of the FreeBSD web site.
A FreeBSD installation is started by booting the computer with a FreeBSD installation CD, DVD, or USB memory stick. The installer is not a program that can be run from within another operating system.
In addition to the standard installation media which contains copies of all the FreeBSD installation files, there is a bootonly variant. Bootonly install media does not have copies of the installation files, but downloads them from the network during an install. The bootonly install CD is consequently much smaller, and reduces bandwidth usage during the install by only downloading required files.
Copies of FreeBSD installation media are available at the FreeBSD web site.
Tip: If you already have a copy of FreeBSD on CDROM, DVD, or USB memory stick, this section can be skipped.
FreeBSD CD and DVD images are bootable ISO files. Only one CD or DVD is needed for an install. Burn the ISO image to a bootable CD or DVD using the CD recording applications available with your current operating system.
To create a bootable memory stick, follow these steps:
Acquire the Memory Stick Image
Memory stick images for FreeBSD 9.0-RELEASE and later can be downloaded from the ISO-IMAGES/ directory at ftp://ftp.FreeBSD.org/pub/FreeBSD/releases/arch/arch/ISO-IMAGES/version/FreeBSD-version-RELEASE-arch-memstick.img. Replace arch and version with the architecture and the version number which you want to install, respectively. For example, the memory stick images for FreeBSD/i386 9.0-RELEASE are available from ftp://ftp.FreeBSD.org/pub/FreeBSD/releases/i386/i386/ISO-IMAGES/9.0/FreeBSD-9.0-RELEASE-i386-memstick.img.
Tip: A different directory path is used for FreeBSD 8.X and earlier versions. Details of download and installation of FreeBSD 8.X and earlier is covered in Chapter 3.
The memory stick image has a .img extension. The ISO-IMAGES/ directory contains a number of different images, and the one needed depends on the version of FreeBSD being installed, and in some cases, the target hardware.
Important: Before proceeding, back up the data on the USB stick, as this procedure will erase it.
Write the Image File to the Memory Stick
Using FreeBSD to Write the Image
Warning: The example below shows /dev/da0 as the target device where the image will be written. Be very careful that the correct device is used as the output target, or you may destroy existing data.
Writing the Image with dd(1)
The .img file is not a regular file. It is an image of the complete contents of the memory stick. It cannot simply be copied like a regular file, but must be written directly to the target device with dd(1):
# dd if=FreeBSD-9.0-RELEASE-i386-memstick.img of=/dev/da0 bs=64k
Using Windows® to Write the Image
Warning: Be sure to give the correct drive letter as the output target, or you may overwrite and destroy existing data.
Obtaining Image Writer for Windows
Image Writer for Windows is a free application that can correctly write an image file to a memory stick. Download it from https://launchpad.net/win32-image-writer/ and extract it into a folder.
Writing the Image with Image Writer
Double-click the Win32DiskImager icon to start the program. Verify that the drive letter shown under Device is the drive with the memory stick. Click the folder icon and select the image to be written to the memory stick. Click
to accept the image file name. Verify that everything is correct, and that no folders on the memory stick are open in other windows. When everything is ready, click to write the image file to the memory stick.Note: Installation from floppy disks is no longer supported.
You are now ready to start installing FreeBSD.
Important: By default, the installation will not make any changes to your disk(s) until you see the following message:
Your changes will now be written to disk. If you have chosen to overwrite existing data, it will be PERMANENTLY ERASED. Are you sure you want to commit your changes?The install can be exited at any time prior to this warning without changing the contents of the hard drive. If you are concerned that you have configured something incorrectly you can just turn the computer off before this point, and no damage will be done.
If you prepared a “bootable” USB stick, as described in Section 2.3.5, then plug in your USB stick before turning on the computer.
If you are booting from CDROM, then you will need to turn on the computer, and insert the CDROM at the first opportunity.
Configure your machine to boot from either the CDROM or from USB, depending on the media being used for the installation. BIOS configurations allow the selection of a specific boot device. Most systems also provide for selecting a boot device during startup, typically by pressing F10, F11, F12, or Escape.
If your computer starts up as normal and loads your existing operating system, then either:
The disks were not inserted early enough in the boot process. Leave them in, and try restarting your computer.
The BIOS changes earlier did not work correctly. You should redo that step until you get the right option.
Your particular BIOS does not support booting from the desired media. The Plop Boot Manager can be used to boot older computers from CD or USB media.
FreeBSD will start to boot. If you are booting from CDROM you will see a display similar to this (version information omitted):
Booting from CD-ROM... 645MB medium detected CD Loader 1.2 Building the boot loader arguments Looking up /BOOT/LOADER... Found Relocating the loader and the BTX Starting the BTX loader BTX loader 1.00 BTX version is 1.02 Consoles: internal video/keyboard BIOS CD is cd0 BIOS drive C: is disk0 BIOS drive D: is disk1 BIOS 636kB/261056kB available memory FreeBSD/i386 bootstrap loader, Revision 1.1 Loading /boot/defaults/loader.conf /boot/kernel/kernel text=0x64daa0 data=0xa4e80+0xa9e40 syms=[0x4+0x6cac0+0x4+0x88e9d] \
The FreeBSD boot loader is displayed:
Either wait ten seconds, or press Enter.
On most machines, holding C on the keyboard during boot will boot from the CD. Otherwise, hold Command+Option+O+F, or Windows+Alt+O+F on non-Apple keyboards. At the 0 > prompt, enter
boot cd:,\ppc\loader cd:0
For Xserves without keyboards, see Apple's support web site about booting into Open Firmware.
Most SPARC64® systems are set up to boot automatically from disk. To install FreeBSD, you need to boot over the network or from a CDROM, which requires you to break into the PROM (OpenFirmware).
To do this, reboot the system, and wait until the boot message appears. It depends on the model, but should look about like:
Sun Blade 100 (UltraSPARC-IIe), Keyboard Present Copyright 1998-2001 Sun Microsystems, Inc. All rights reserved. OpenBoot 4.2, 128 MB memory installed, Serial #51090132. Ethernet address 0:3:ba:b:92:d4, Host ID: 830b92d4.
If your system proceeds to boot from disk at this point, you need to press L1+A or Stop+A on the keyboard, or send a BREAK over the serial console (using for example ~# in tip(1) or cu(1)) to get to the PROM prompt. It looks like this:
ok ok {0}
At this point, place the CDROM into your drive, and from the PROM prompt, type boot cdrom.
The last few hundred lines that have been displayed on screen are stored and can be reviewed.
To review the buffer, press Scroll Lock. This turns on scrolling in the display. You can then use the arrow keys, or PageUp and PageDown to view the results. Press Scroll Lock again to stop scrolling.
Do this now, to review the text that scrolled off the screen when the kernel was carrying out the device probes. You will see text similar to Figure 2-2, although the precise text will differ depending on the devices that you have in your computer.
Figure 2-2. Typical Device Probe Results
Copyright (c) 1992-2011 The FreeBSD Project. Copyright (c) 1979, 1980, 1983, 1986, 1988, 1989, 1991, 1992, 1993, 1994 The Regents of the University of California. All rights reserved. FreeBSD is a registered trademark of The FreeBSD Foundation. FreeBSD 9.0-RELEASE #0 r225473M: Sun Sep 11 16:07:30 BST 2011 root@psi:/usr/obj/usr/src/sys/GENERIC amd64 CPU: Intel(R) Core(TM)2 Duo CPU T9400 @ 2.53GHz (2527.05-MHz K8-class CPU) Origin = "GenuineIntel" Id = 0x10676 Family = 6 Model = 17 Stepping = 6 Features=0xbfebfbff<FPU,VME,DE,PSE,TSC,MSR,PAE,MCE,CX8,APIC,SEP,MTRR,PGE,MCA,CMOV,PAT,PSE36,CLFLUSH,DTS,ACPI,MMX,FXSR,SSE,SSE2,SS,HTT,TM,PBE> Features2=0x8e3fd<SSE3,DTES64,MON,DS_CPL,VMX,SMX,EST,TM2,SSSE3,CX16,xTPR,PDCM,SSE4.1> AMD Features=0x20100800<SYSCALL,NX,LM> AMD Features2=0x1<LAHF> TSC: P-state invariant, performance statistics real memory = 3221225472 (3072 MB) avail memory = 2926649344 (2791 MB) Event timer "LAPIC" quality 400 ACPI APIC Table: <TOSHIB A0064 > FreeBSD/SMP: Multiprocessor System Detected: 2 CPUs FreeBSD/SMP: 1 package(s) x 2 core(s) cpu0 (BSP): APIC ID: 0 cpu1 (AP): APIC ID: 1 ioapic0: Changing APIC ID to 1 ioapic0 <Version 2.0> irqs 0-23 on motherboard kbd1 at kbdmux0 acpi0: <TOSHIB A0064> on motherboard acpi0: Power Button (fixed) acpi0: reservation of 0, a0000 (3) failed acpi0: reservation of 100000, b6690000 (3) failed Timecounter "ACPI-safe" frequency 3579545 Hz quality 850 acpi_timer0: <24-bit timer at 3.579545MHz> port 0xd808-0xd80b on acpi0 cpu0: <ACPI CPU> on acpi0 ACPI Warning: Incorrect checksum in table [ASF!] - 0xFE, should be 0x9A (20110527/tbutils-282) cpu1: <ACPI CPU> on acpi0 pcib0: <ACPI Host-PCI bridge> port 0xcf8-0xcff on acpi0 pci0: <ACPI PCI bus> on pcib0 vgapci0: <VGA-compatible display> port 0xcff8-0xcfff mem 0xff400000-0xff7fffff,0xe0000000-0xefffffff irq 16 at device 2.0 on pci0 agp0: <Intel GM45 SVGA controller> on vgapci0 agp0: aperture size is 256M, detected 131068k stolen memory vgapci1: <VGA-compatible display> mem 0xffc00000-0xffcfffff at device 2.1 on pci0 pci0: <simple comms> at device 3.0 (no driver attached) em0: <Intel(R) PRO/1000 Network Connection 7.2.3> port 0xcf80-0xcf9f mem 0xff9c0000-0xff9dffff,0xff9fe000-0xff9fefff irq 20 at device 25.0 on pci0 em0: Using an MSI interrupt em0: Ethernet address: 00:1c:7e:6a:ca:b0 uhci0: <Intel 82801I (ICH9) USB controller> port 0xcf60-0xcf7f irq 16 at device 26.0 on pci0 usbus0: <Intel 82801I (ICH9) USB controller> on uhci0 uhci1: <Intel 82801I (ICH9) USB controller> port 0xcf40-0xcf5f irq 21 at device 26.1 on pci0 usbus1: <Intel 82801I (ICH9) USB controller> on uhci1 uhci2: <Intel 82801I (ICH9) USB controller> port 0xcf20-0xcf3f irq 19 at device 26.2 on pci0 usbus2: <Intel 82801I (ICH9) USB controller> on uhci2 ehci0: <Intel 82801I (ICH9) USB 2.0 controller> mem 0xff9ff800-0xff9ffbff irq 19 at device 26.7 on pci0 usbus3: EHCI version 1.0 usbus3: <Intel 82801I (ICH9) USB 2.0 controller> on ehci0 hdac0: <Intel 82801I High Definition Audio Controller> mem 0xff9f8000-0xff9fbfff irq 22 at device 27.0 on pci0 pcib1: <ACPI PCI-PCI bridge> irq 17 at device 28.0 on pci0 pci1: <ACPI PCI bus> on pcib1 iwn0: <Intel(R) WiFi Link 5100> mem 0xff8fe000-0xff8fffff irq 16 at device 0.0 on pci1 pcib2: <ACPI PCI-PCI bridge> irq 16 at device 28.1 on pci0 pci2: <ACPI PCI bus> on pcib2 pcib3: <ACPI PCI-PCI bridge> irq 18 at device 28.2 on pci0 pci4: <ACPI PCI bus> on pcib3 pcib4: <ACPI PCI-PCI bridge> at device 30.0 on pci0 pci5: <ACPI PCI bus> on pcib4 cbb0: <RF5C476 PCI-CardBus Bridge> at device 11.0 on pci5 cardbus0: <CardBus bus> on cbb0 pccard0: <16-bit PCCard bus> on cbb0 isab0: <PCI-ISA bridge> at device 31.0 on pci0 isa0: <ISA bus> on isab0 ahci0: <Intel ICH9M AHCI SATA controller> port 0x8f58-0x8f5f,0x8f54-0x8f57,0x8f48-0x8f4f,0x8f44-0x8f47,0x8f20-0x8f3f mem 0xff9fd800-0xff9fdfff irq 19 at device 31.2 on pci0 ahci0: AHCI v1.20 with 4 3Gbps ports, Port Multiplier not supported ahcich0: <AHCI channel> at channel 0 on ahci0 ahcich1: <AHCI channel> at channel 1 on ahci0 ahcich2: <AHCI channel> at channel 4 on ahci0 acpi_lid0: <Control Method Lid Switch> on acpi0 battery0: <ACPI Control Method Battery> on acpi0 acpi_button0: <Power Button> on acpi0 acpi_acad0: <AC Adapter> on acpi0 acpi_toshiba0: <Toshiba HCI Extras> on acpi0 acpi_tz0: <Thermal Zone> on acpi0 attimer0: <AT timer> port 0x40-0x43 irq 0 on acpi0 Timecounter "i8254" frequency 1193182 Hz quality 0 Event timer "i8254" frequency 1193182 Hz quality 100 atkbdc0: <Keyboard controller (i8042)> port 0x60,0x64 irq 1 on acpi0 atkbd0: <AT Keyboard> irq 1 on atkbdc0 kbd0 at atkbd0 atkbd0: [GIANT-LOCKED] psm0: <PS/2 Mouse> irq 12 on atkbdc0 psm0: [GIANT-LOCKED] psm0: model GlidePoint, device ID 0 atrtc0: <AT realtime clock> port 0x70-0x71 irq 8 on acpi0 Event timer "RTC" frequency 32768 Hz quality 0 hpet0: <High Precision Event Timer> iomem 0xfed00000-0xfed003ff on acpi0 Timecounter "HPET" frequency 14318180 Hz quality 950 Event timer "HPET" frequency 14318180 Hz quality 450 Event timer "HPET1" frequency 14318180 Hz quality 440 Event timer "HPET2" frequency 14318180 Hz quality 440 Event timer "HPET3" frequency 14318180 Hz quality 440 uart0: <16550 or compatible> port 0x3f8-0x3ff irq 4 flags 0x10 on acpi0 sc0: <System console> at flags 0x100 on isa0 sc0: VGA <16 virtual consoles, flags=0x300> vga0: <Generic ISA VGA> at port 0x3c0-0x3df iomem 0xa0000-0xbffff on isa0 ppc0: cannot reserve I/O port range est0: <Enhanced SpeedStep Frequency Control> on cpu0 p4tcc0: <CPU Frequency Thermal Control> on cpu0 est1: <Enhanced SpeedStep Frequency Control> on cpu1 p4tcc1: <CPU Frequency Thermal Control> on cpu1 Timecounters tick every 1.000 msec hdac0: HDA Codec #0: Realtek ALC268 hdac0: HDA Codec #1: Lucent/Agere Systems (Unknown) pcm0: <HDA Realtek ALC268 PCM #0 Analog> at cad 0 nid 1 on hdac0 pcm1: <HDA Realtek ALC268 PCM #1 Analog> at cad 0 nid 1 on hdac0 usbus0: 12Mbps Full Speed USB v1.0 usbus1: 12Mbps Full Speed USB v1.0 usbus2: 12Mbps Full Speed USB v1.0 usbus3: 480Mbps High Speed USB v2.0 ugen0.1: <Intel> at usbus0 uhub0: <Intel UHCI root HUB, class 9/0, rev 1.00/1.00, addr 1> on usbus0 ugen1.1: <Intel> at usbus1 uhub1: <Intel UHCI root HUB, class 9/0, rev 1.00/1.00, addr 1> on usbus1 ugen2.1: <Intel> at usbus2 uhub2: <Intel UHCI root HUB, class 9/0, rev 1.00/1.00, addr 1> on usbus2 ugen3.1: <Intel> at usbus3 uhub3: <Intel EHCI root HUB, class 9/0, rev 2.00/1.00, addr 1> on usbus3 uhub0: 2 ports with 2 removable, self powered uhub1: 2 ports with 2 removable, self powered uhub2: 2 ports with 2 removable, self powered uhub3: 6 ports with 6 removable, self powered ugen2.2: <vendor 0x0b97> at usbus2 uhub8: <vendor 0x0b97 product 0x7761, class 9/0, rev 1.10/1.10, addr 2> on usbus2 ugen1.2: <Microsoft> at usbus1 ada0 at ahcich0 bus 0 scbus1 target 0 lun 0 ada0: <Hitachi HTS543225L9SA00 FBEOC43C> ATA-8 SATA 1.x device ada0: 150.000MB/s transfers (SATA 1.x, UDMA6, PIO 8192bytes) ada0: Command Queueing enabled ada0: 238475MB (488397168 512 byte sectors: 16H 63S/T 16383C) ada0: Previously was known as ad4 ums0: <Microsoft Microsoft 3-Button Mouse with IntelliEyeTM, class 0/0, rev 1.10/3.00, addr 2> on usbus1 SMP: AP CPU #1 Launched! cd0 at ahcich1 bus 0 scbus2 target 0 lun 0 cd0: <TEAC DV-W28S-RT 7.0C> Removable CD-ROM SCSI-0 device cd0: 150.000MB/s transfers (SATA 1.x, ums0: 3 buttons and [XYZ] coordinates ID=0 UDMA2, ATAPI 12bytes, PIO 8192bytes) cd0: cd present [1 x 2048 byte records] ugen0.2: <Microsoft> at usbus0 ukbd0: <Microsoft Natural Ergonomic Keyboard 4000, class 0/0, rev 2.00/1.73, addr 2> on usbus0 kbd2 at ukbd0 uhid0: <Microsoft Natural Ergonomic Keyboard 4000, class 0/0, rev 2.00/1.73, addr 2> on usbus0 Trying to mount root from cd9660:/dev/iso9660/FREEBSD_INSTALL [ro]...
Check the probe results carefully to make sure that FreeBSD found all the devices you expected. If a device was not found, then it will not be listed. Kernel modules allows you to add in support for devices which are not in the GENERIC kernel.
After the procedure of device probing, you will see Figure 2-3. The install media can be used in three ways: to install FreeBSD, as a live CD, or to simply access a FreeBSD shell. Use the arrow keys to choose an option, and Enter to select.
Selecting
here will enter the installer.bsdinstall is a text-based FreeBSD installer program
written by Nathan Whitehorn <[email protected]>
and
introduced in 2011 for FreeBSD 9.0.
Note: Kris Moore
<[email protected]>
's pc-sysinstall is included with PC-BSD, and can also be used to install FreeBSD. Although sometimes confused with bsdinstall, the two are not related.
The bsdinstall menu system is controlled by the arrow keys, Enter, Tab, Space, and other keys.
Depending on the system console being used, bsdinstall may initially prompt to select a non-default keyboard layout.
If
is selected, the following keyboard selection screen will be displayed. Otherwise, this selection menu will not be displayed, and a default keyboard mapping will be used.Select the keymap that most closely represents the mapping of the keyboard attached to the system, using the up/down arrow keys and pressing Enter.
Note: Pressing Esc will use the default keymap.
is also a safe option if the choice of keymap is not clear.
Next, bsdinstall will prompt for the hostname to be given to the newly installed system.
The entered hostname should be a fully-qualified hostname, such as machine3.example.com
Next, bsdinstall will prompt to select optional components to install.
Deciding which components to install will depend largely on the intended use of the system and the amount of disk space available. The FreeBSD Kernel and userland (collectively the “base system”) are always installed.
Depending on the type of installation, some of these components may not appear.
Optional Components
doc - Additional documentation, mostly of historical interest. Documentation provided by the FreeBSD Documentation Project may be installed later.
games - Several traditional BSD games, including fortune, rot13, and others.
lib32 - Compatibility libraries for running 32-bit applications on a 64-bit version of FreeBSD.
ports - The FreeBSD Ports Collection.
The ports collection is an easy and convenient way to install software. The Ports Collection does not contain the source code necessary to compile the software. Instead, it is a collection of files which automates the downloading, compiling and installation of third-party software packages. Chapter 5 discusses how to use the ports collection.
Warning: The installation program does not check to see if you have adequate space. Select this option only if you have adequate hard disk space. As of FreeBSD 9.0, the FreeBSD Ports Collection takes up about 500 MB of disk space. You can safely assume a larger value for more recent versions of FreeBSD.
src - System source code.
FreeBSD comes with full source code for both the kernel and the userland. Although not required for the majority of applications, it may be required to build certain software supplied as source (for example, device drivers or kernel modules), or for developing FreeBSD itself.
The full source tree requires 1 GB of disk space, and recompiling the entire FreeBSD system requires an additional 5 GB of space.
The bootonly installation media does not hold copies of the installation files. When a bootonly installation method is used, the files must be retrieved over a network connection as they are needed.
After the network connection has been configured as shown in Section 2.9.2, a mirror site is selected. Mirror sites cache copies of the FreeBSD files. Choose a mirror site located in the same region of the world as the computer on which FreeBSD is being installed. Files can be retrieved more quickly when the mirror is close to the target computer, and installation time will be reduced.
Installation will continue as if the installation files were located on local media.
There are three ways to allocate disk space for FreeBSD. Guided partitioning automatically sets up disk partitions, while Manual partitioning allows advanced users to create customized partitions. Finally, there's the option of starting a shell where command-line programs like gpart(8), fdisk(8), and bsdlabel(8) can be used directly.
If multiple disks are connected, choose the one where FreeBSD is to be installed.
The entire disk can be allocated to FreeBSD, or just a portion of it. If
is chosen, a general partition layout filling the whole disk is created. Selecting creates a partition layout in unused space on the disk.After the partition layout has been created, review it carefully for accuracy. If a mistake has been made, selecting
will reset the partitions as they were previously, or will recreate the automatic FreeBSD partitions. Partitions can be manually created, modified, or deleted. When the partitioning is correct, select to continue with the installation.Manual partitioning goes straight to the partition editor.
Highlighting a drive (ada0 in this example) and selecting
displays a menu for choosing the type of partitioning scheme.GPT partitioning is usually the most appropriate choice for PC-compatible computers. Older PC operating systems that are not compatible with GPT may require MBR partitioning instead. The other partitioning schemes are generally used for uncommon or older computer systems.
Table 2-1. Partitioning Schemes
Abbreviation | Description |
---|---|
APM | Apple Partition Map, used by PowerPC® Macintosh. |
BSD | BSD Labels without an MBR, sometimes called "dangerously dedicated mode". See bsdlabel(8). |
GPT | GUID Partition Table. |
MBR | Master Boot Record. |
PC98 | MBR variant, used by NEC PC-98 computers. |
VTOC8 | Volume Table Of Contents, used by Sun SPARC64 and UltraSPARC computers. |
After the partitioning scheme has been selected and created, selecting
again will create new partitions.A standard FreeBSD GPT installation uses at least three partitions:
Standard FreeBSD GPT Partitions
freebsd-boot - FreeBSD boot code.
freebsd-ufs - A FreeBSD UFS filesystem.
freebsd-swap - FreeBSD swap space.
Another partition type worth noting is freebsd-zfs, used for partitions that will contain a FreeBSD ZFS filesystem. See Section 21.2. gpart(8) shows more of the available GPT partition types.
Multiple filesystem partitions can be used, and some people may prefer a traditional layout with separate partitions for the /, /var, /tmp, and /usr filesystems. See Example 2-3 for an example.
Size may be entered with common abbreviations: K for kilobytes, M for megabytes, or G for gigabytes.
Tip: Proper sector alignment provides the best performance, and making partition sizes even multiples of 4K bytes helps to ensure alignment on drives with either 512-byte or 4K-byte sectors. Generally, using partition sizes that are even multiples of 1M or 1G is the easiest way to make sure every partition starts at an even multiple of 4K. One exception: at present, the freebsd-boot partition should be no larger than 512K due to boot code limitations.
A mountpoint is needed if this partition will contain a filesystem. If only a single UFS partition will be created, the mountpoint should be /.
A label is also requested. A label is a name by which this partition will be known. Drive names or numbers can change if the drive is connected to a different controller or port, but the partition label does not change. Referring to labels instead of drive names and partition numbers in files like /etc/fstab makes the system more tolerant of changing hardware. GPT labels appear in /dev/gpt/ when a disk is attached. Other partitioning schemes have different label capabilities, and their labels appear in different directories in /dev/.
Tip: Use a unique label on every filesystem to avoid conflicts from identical labels. A few letters from the computer's name, use, or location can be added to the label. "labroot" or "rootfs-lab" for the UFS root partition on the lab's computer, for example.
Example 2-3. Creating Traditional Split Filesystem Partitions
For a traditional partition layout where the /, /var, /tmp, and /usr directories are separate filesystems on their own partitions, create a GPT partitioning scheme, then create the partitions as shown. Partition sizes shown are typical for a 20G target disk. If more space is available on the target disk, larger swap or /var partitions may be useful. Labels shown here are prefixed with ex for "example", but readers should use other unique label values as described above.
By default, FreeBSD's gptboot expects the first UFS partition found to be the / partition.
After the custom partitions have been created, select
to continue with the installation.This is the last chance for aborting the installation to prevent changes to the hard drive.
Select
and press Enter to proceed. If changes need to be made, select to return to the partition editor. will exit the installer without making any changes to the hard drive.Installation time will vary depending on the distributions chosen, installation media, and speed of the computer. There will be a series of messages displayed indicating progress.
Firstly, the installer will write the partitions to the disk, and perform a newfs to initialise the partitions.
If doing a network install, bsdinstall will then proceed to download the required distribution files.
Next, the integrity of the distribution files is verified, to ensure they have not been corrupted during download or misread from the installation media.
Finally, the verified distribution files are extracted to the disk.
Once all requested distribution files have been extracted, bsdinstall will then drop straight into the post-installation configuration tasks (see Section 2.9).
Configuration of various options follows a successful installation of FreeBSD. An option can be configured by re-entering the configuration options from the final menu before booting into the newly installed FreeBSD system.
The root password must be set. Note that while entering the password, the characters being typed are not displayed on the screen. After the password has been entered, it must be entered again. This helps prevent typing errors.
After the password has been successfully entered, the installation will continue.
Note: Network configuration will be skipped if it has already been done as part of a bootonly installation.
A list of all the network interfaces found on the computer is shown next. Select one to be configured.
If a wireless network interface is chosen, wireless identification and security parameters must be entered to allow it to connect to the network.
Wireless networks are identified by a Service Set Identifier, or SSID. The SSID is a short, unique name given to each network.
Most wireless networks encrypt transmitted data to protect information from unauthorized viewing. WPA2 encryption is strongly recommended. Older encryption types, like WEP, offer very little security.
The first step in connecting to a wireless network is to scan for wireless access points.
SSIDs found during the scan are listed, followed by a description of the encryption types available for that network. If the desired SSID does not appear in the list, select
to scan again. If the desired network still does not appear, check for problems with antenna connections or try moving the computer closer to the access point. Rescan after each change is made.The encryption information for connecting to the selected wireless network is entered after selecting the network. With WPA2, only a password (also known as the Pre-Shared Key, or PSK) is needed. Characters typed into the input box are shown as asterisks for security.
Network configuration continues after selection of the wireless network and entry of the connection information.
Choose whether IPv4 networking is to be used. This is the most common type of network connection.
There are two methods of IPv4 configuration. DHCP will automatically configure the network interface correctly, and is the preferred method. Static configuration requires manual entry of network information.
Note: Do not enter random network information, as it will not work. Obtain the information shown in Section 2.3.3 from the network administrator or service provider.
If a DHCP server is available, select
to automatically configure the network interface.Static configuration of the network interface requires entry of some IPv4 information.
IP Address - The manually-assigned IPv4 address to be assigned to this computer. This address must be unique and not already in use by another piece of equipment on the local network.
Subnet Mask - The subnet mask used for the local network. Typically, this is 255.255.255.0.
Default Router - The IP address of the default router on this network. Usually this is the address of the router or other network equipment that connects the local network to the Internet. Also known as the default gateway.
IPv6 is a newer method of network configuration. If IPv6 is available and desired, choose
to select it.IPv6 also has two methods of configuration. SLAAC , or StateLess Address AutoConfiguration, will automatically configure the network interface correctly. Static configuration requires manual entry of network information.
SLAAC allows an IPv6 network component to request autoconfiguration information from a local router. See RFC4862 for more information.
Static configuration of the network interface requires entry of the IPv6 configuration information.
IPv6 Address - The manually-assigned IP address to be assigned to this computer. This address must be unique and not already in use by another piece of equipment on the local network.
Default Router - The IPv6 address of the default router on this network. Usually this is the address of the router or other network equipment that connects the local network to the Internet. Also known as the default gateway.
The Domain Name System (or DNS) Resolver converts hostnames to and from network addresses. If DHCP or SLAAC was used to autoconfigure the network interface, the Resolver Configuration values may already be present. Otherwise, enter the local network's domain name in the Search field. DNS #1 and DNS #2 are the IP addresses for the local DNS servers. At least one DNS server is required.
Setting the time zone for your machine will allow it to automatically correct for any regional time changes and perform other time zone related functions properly.
The example shown is for a machine located in the Eastern time zone of the United States. Your selections will vary according to your geographical location.
Select
or according to how the machine's clock is configured and press Enter. If you do not know whether the system uses UTC or local time, select to choose the more commonly-used local time.The appropriate region is selected using the arrow keys and then pressing Enter.
Select the appropriate country using the arrow keys and press Enter.
The appropriate time zone is selected using the arrow keys and pressing Enter.
Confirm the abbreviation for the time zone is correct. If it looks okay, press Enter to continue with the post-installation configuration.
Additional system services which will be started at boot can be enabled. All of these services are optional.
Additional Services
sshd - Secure Shell (SSH) daemon for secure remote access.
moused - Provides mouse usage within the system console.
ntpd - Network Time Protocol (NTP) daemon for automatic clock synchronization.
powerd - System power control utility for power control and energy saving.
bsdinstall will prompt if crash dumps should be enabled on the target system. Enabling crash dumps can be very useful in debugging issues with the system, so users are encouraged to enable crash dumps whenever possible. Select
to enable crash dumps, or to proceed without crash dumps enabled.Adding at least one user during the installation allows the system to be used without being logged in as root. When logged in as root, there are essentially no limits or protection on what can be done. Logging in as a normal user is safer and more secure.
Select
to add new users.Enter the information for the user to be added.
User Information
Username - The name the user will enter to log in. Typically the first letter of their first name combined with their last name.
Full name - The user's full name.
Uid - User ID. Typically, this is left blank so the system will assign a value.
Login group - The user's group. Typically left blank to accept the default.
Invite user into other groups? - Additional groups to which the user will be added as a member.
Login class - Typically left blank for the default.
Shell - The interactive shell for this user. In the example, csh(1) has been chosen.
Home directory - The user's home directory. The default is usually correct.
Home directory permissions - Permissions on the user's home directory. The default is usually correct.
Use password-based authentication? - Typically "yes".
Use an empty password? - Typically "no".
Use a random password? - Typically "no".
Enter password - The actual password for this user. Characters typed will not show on the screen.
Enter password again - The password must be typed again for verification.
Lock out the account after creation? - Typically "no".
After entering everything, a summary is shown, and the system asks if it is correct. If a mistake was made during entry, enter no and try again. If everything is correct, enter yes to create the new user.
If there are more users to add, answer the "Add another user?" question with yes. Enter no to finish adding users and continue the installation.
For more information on adding users and user management, see Chapter 14.
After everything has been installed and configured, a final chance is provided to modify settings.
Use this menu to make any changes or do any additional configuration before completing the installation.
Final Configuration Options
Add User - Described in Section 2.9.6.
Root Password - Described in Section 2.9.1.
Hostname - Described in Section 2.5.2.
Network - Described in Section 2.9.2.
Services - Described in Section 2.9.4.
Time Zone - Described in Section 2.9.3.
Handbook - Download and install the FreeBSD Handbook (which is what you are reading now).
After any final configuration is complete, select
to leave the installation.bsdinstall will prompt if there are any additional configuration that needs to be done before rebooting into the new system. Select
to exit to a shell within the new system, or to proceed to the last step of the installation.If further configuration or special setup is needed, selecting
will boot the install media into Live CD mode.When the installation is complete, select
to reboot the computer and start the new FreeBSD system. Do not forget to remove the FreeBSD install CD, DVD, or USB memory stick, or the computer may boot from it again.As FreeBSD boots, many informational messages are displayed. Most will scroll off the screen; this is normal. After the system finishes booting, a login prompt is displayed. Messages that scrolled off the screen can be reviewed by pressing Scroll-Lock to turn on the scroll-back buffer. The PgUp, PgDn, and arrow keys can be used to scroll back through the messages. Pressing Scroll-Lock again unlocks the display and returns to the normal screen.
At the login: prompt, enter the username added during the installation, asample in the example. Avoid logging in as root except when necessary.
The scroll-back buffer examined above is limited in size, so not all of the messages may have been visible. After logging in, most of them can be seen from the command line by typing dmesg | less at the prompt. Press q to return to the command line after viewing.
Typical boot messages (version information omitted):
Copyright (c) 1992-2011 The FreeBSD Project. Copyright (c) 1979, 1980, 1983, 1986, 1988, 1989, 1991, 1992, 1993, 1994 The Regents of the University of California. All rights reserved. FreeBSD is a registered trademark of The FreeBSD Foundation. [email protected]:/usr/obj/usr/src/sys/GENERIC amd64 CPU: Intel(R) Core(TM)2 Duo CPU E8400 @ 3.00GHz (3007.77-MHz K8-class CPU) Origin = "GenuineIntel" Id = 0x10676 Family = 6 Model = 17 Stepping = 6 Features=0x783fbff<FPU,VME,DE,PSE,TSC,MSR,PAE,MCE,CX8,APIC,SEP,MTRR,PGE,MCA,CMOV,PAT,PSE36,MMX,FXSR,SSE,SSE2> Features2=0x209<SSE3,MON,SSSE3> AMD Features=0x20100800<SYSCALL,NX,LM> AMD Features2=0x1<LAHF> real memory = 536805376 (511 MB) avail memory = 491819008 (469 MB) Event timer "LAPIC" quality 400 ACPI APIC Table: <VBOX VBOXAPIC> ioapic0: Changing APIC ID to 1 ioapic0 <Version 1.1> irqs 0-23 on motherboard kbd1 at kbdmux0 acpi0: <VBOX VBOXXSDT> on motherboard acpi0: Power Button (fixed) acpi0: Sleep Button (fixed) Timecounter "ACPI-fast" frequency 3579545 Hz quality 900 acpi_timer0: <32-bit timer at 3.579545MHz> port 0x4008-0x400b on acpi0 cpu0: <ACPI CPU> on acpi0 pcib0: <ACPI Host-PCI bridge> port 0xcf8-0xcff on acpi0 pci0: <ACPI PCI bus> on pcib0 isab0: <PCI-ISA bridge> at device 1.0 on pci0 isa0: <ISA bus> on isab0 atapci0: <Intel PIIX4 UDMA33 controller> port 0x1f0-0x1f7,0x3f6,0x170-0x177,0x376,0xd000-0xd00f at device 1.1 on pci0 ata0: <ATA channel 0> on atapci0 ata1: <ATA channel 1> on atapci0 vgapci0: <VGA-compatible display> mem 0xe0000000-0xe0ffffff irq 18 at device 2.0 on pci0 em0: <Intel(R) PRO/1000 Legacy Network Connection 1.0.3> port 0xd010-0xd017 mem 0xf0000000-0xf001ffff irq 19 at device 3.0 on pci0 em0: Ethernet address: 08:00:27:9f:e0:92 pci0: <base peripheral> at device 4.0 (no driver attached) pcm0: <Intel ICH (82801AA)> port 0xd100-0xd1ff,0xd200-0xd23f irq 21 at device 5.0 on pci0 pcm0: <SigmaTel STAC9700/83/84 AC97 Codec> ohci0: <OHCI (generic) USB controller> mem 0xf0804000-0xf0804fff irq 22 at device 6.0 on pci0 usbus0: <OHCI (generic) USB controller> on ohci0 pci0: <bridge> at device 7.0 (no driver attached) acpi_acad0: <AC Adapter> on acpi0 atkbdc0: <Keyboard controller (i8042)> port 0x60,0x64 irq 1 on acpi0 atkbd0: <AT Keyboard> irq 1 on atkbdc0 kbd0 at atkbd0 atkbd0: [GIANT-LOCKED] psm0: <PS/2 Mouse> irq 12 on atkbdc0 psm0: [GIANT-LOCKED] psm0: model IntelliMouse Explorer, device ID 4 attimer0: <AT timer> port 0x40-0x43,0x50-0x53 on acpi0 Timecounter "i8254" frequency 1193182 Hz quality 0 Event timer "i8254" frequency 1193182 Hz quality 100 sc0: <System console> at flags 0x100 on isa0 sc0: VGA <16 virtual consoles, flags=0x300> vga0: <Generic ISA VGA> at port 0x3c0-0x3df iomem 0xa0000-0xbffff on isa0 atrtc0: <AT realtime clock> at port 0x70 irq 8 on isa0 Event timer "RTC" frequency 32768 Hz quality 0 ppc0: cannot reserve I/O port range Timecounters tick every 10.000 msec pcm0: measured ac97 link rate at 485193 Hz em0: link state changed to UP usbus0: 12Mbps Full Speed USB v1.0 ugen0.1: <Apple> at usbus0 uhub0: <Apple OHCI root HUB, class 9/0, rev 1.00/1.00, addr 1> on usbus0 cd0 at ata1 bus 0 scbus1 target 0 lun 0 cd0: <VBOX CD-ROM 1.0> Removable CD-ROM SCSI-0 device cd0: 33.300MB/s transfers (UDMA2, ATAPI 12bytes, PIO 65534bytes) cd0: Attempt to query device size failed: NOT READY, Medium not present ada0 at ata0 bus 0 scbus0 target 0 lun 0 ada0: <VBOX HARDDISK 1.0> ATA-6 device ada0: 33.300MB/s transfers (UDMA2, PIO 65536bytes) ada0: 12546MB (25694208 512 byte sectors: 16H 63S/T 16383C) ada0: Previously was known as ad0 Timecounter "TSC" frequency 3007772192 Hz quality 800 Root mount waiting for: usbus0 uhub0: 8 ports with 8 removable, self powered Trying to mount root from ufs:/dev/ada0p2 [rw]... Setting hostuuid: 1848d7bf-e6a4-4ed4-b782-bd3f1685d551. Setting hostid: 0xa03479b2. Entropy harvesting: interrupts ethernet point_to_point kickstart. Starting file system checks: /dev/ada0p2: FILE SYSTEM CLEAN; SKIPPING CHECKS /dev/ada0p2: clean, 2620402 free (714 frags, 327461 blocks, 0.0% fragmentation) Mounting local file systems:. vboxguest0 port 0xd020-0xd03f mem 0xf0400000-0xf07fffff,0xf0800000-0xf0803fff irq 20 at device 4.0 on pci0 vboxguest: loaded successfully Setting hostname: machine3.example.com. Starting Network: lo0 em0. lo0: flags=8049<UP,LOOPBACK,RUNNING,MULTICAST> metric 0 mtu 16384 options=3<RXCSUM,TXCSUM> inet6 ::1 prefixlen 128 inet6 fe80::1%lo0 prefixlen 64 scopeid 0x3 inet 127.0.0.1 netmask 0xff000000 nd6 options=21<PERFORMNUD,AUTO_LINKLOCAL> em0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 options=9b<RXCSUM,TXCSUM,VLAN_MTU,VLAN_HWTAGGING,VLAN_HWCSUM> ether 08:00:27:9f:e0:92 nd6 options=29<PERFORMNUD,IFDISABLED,AUTO_LINKLOCAL> media: Ethernet autoselect (1000baseT <full-duplex>) status: active Starting devd. Starting Network: usbus0. DHCPREQUEST on em0 to 255.255.255.255 port 67 DHCPACK from 10.0.2.2 bound to 192.168.1.142 -- renewal in 43200 seconds. add net ::ffff:0.0.0.0: gateway ::1 add net ::0.0.0.0: gateway ::1 add net fe80::: gateway ::1 add net ff02::: gateway ::1 ELF ldconfig path: /lib /usr/lib /usr/lib/compat /usr/local/lib 32-bit compatibility ldconfig path: /usr/lib32 Creating and/or trimming log files. Starting syslogd. No core dumps found. Clearing /tmp (X related). Updating motd:. Configuring syscons: blanktime. Generating public/private rsa1 key pair. Your identification has been saved in /etc/ssh/ssh_host_key. Your public key has been saved in /etc/ssh/ssh_host_key.pub. The key fingerprint is: 10:a0:f5:af:93:ae:a3:1a:b2:bb:3c:35:d9:5a:b3:f3 [email protected] The key's randomart image is: +--[RSA1 1024]----+ | o.. | | o . . | | . o | | o | | o S | | + + o | |o . + * | |o+ ..+ . | |==o..o+E | +-----------------+ Generating public/private dsa key pair. Your identification has been saved in /etc/ssh/ssh_host_dsa_key. Your public key has been saved in /etc/ssh/ssh_host_dsa_key.pub. The key fingerprint is: 7e:1c:ce:dc:8a:3a:18:13:5b:34:b5:cf:d9:d1:47:b2 [email protected] The key's randomart image is: +--[ DSA 1024]----+ | .. . .| | o . . + | | . .. . E .| | . . o o . . | | + S = . | | + . = o | | + . * . | | . . o . | | .o. . | +-----------------+ Starting sshd. Starting cron. Starting background file system checks in 60 seconds. Thu Oct 6 19:15:31 MDT 2011 FreeBSD/amd64 (machine3.example.com) (ttyv0) login:
Generating the RSA and DSA keys may take some time on slower machines. This happens only on the initial boot-up of a new installation, and only if sshd is set to start automatically. Subsequent boots will be faster.
FreeBSD does not install graphical environments by default, but many are available. See Chapter 6 for more information.
Proper shutdown of a FreeBSD computer helps protect data and even hardware from damage. Do not just turn off the power. If the user is a member of the wheel group, become the superuser by typing su at the command line and entering the root password. Otherwise, log in as root and use shutdown -p now. The system will close down cleanly and turn itself off.
The Ctrl+Alt+Del key combination can be used to reboot the system, but is not recommended during normal operation.
The following section covers basic installation troubleshooting, such as common problems people have reported.
Due to various limitations of the PC architecture, it is impossible for probing to be 100% reliable, however, there are a few things you can do if it fails.
Check the Hardware Notes document for your version of FreeBSD to make sure your hardware is supported.
If your hardware is supported and you still experience lock-ups or other problems, you will need to build a custom kernel. This will allow you to add in support for devices which are not present in the GENERIC kernel. The kernel on the boot disks is configured assuming that most hardware devices are in their factory default configuration in terms of IRQs, IO addresses, and DMA channels. If your hardware has been reconfigured, you will most likely need to edit the kernel configuration and recompile to tell FreeBSD where to find things.
It is also possible that a probe for a device not present will cause a later probe for another device that is present to fail. In that case, the probes for the conflicting driver(s) should be disabled.
Note: Some installation problems can be avoided or alleviated by updating the firmware on various hardware components, most notably the motherboard. Motherboard firmware is usually referred to as the BIOS. Most motherboard and computer manufacturers have a website for upgrades and upgrade information.
Manufacturers generally advise against upgrading the motherboard BIOS unless there is a good reason for doing so, like a critical update. The upgrade process can go wrong, leaving the BIOS incomplete and the computer inoperative.
2.10.2.1. My system hangs while probing hardware during boot, or it behaves strangely during install.
FreeBSD makes extensive use of the system ACPI service on the i386, amd64, and ia64 platforms to aid in system configuration if it is detected during boot. Unfortunately, some bugs still exist in both the ACPI driver and within system motherboards and BIOS firmware. ACPI can be disabled by setting the hint.acpi.0.disabled hint in the third stage boot loader:
set hint.acpi.0.disabled="1"
This is reset each time the system is booted, so it is necessary to add hint.acpi.0.disabled="1" to the file /boot/loader.conf. More information about the boot loader can be found in Section 13.1.
A live CD of FreeBSD is available on the same CD as the main installation program. This is useful for those who are still wondering whether FreeBSD is the right operating system for them and want to test some of the features before installing.
Note: The following points should be noted while using the live CD:
To gain access to the system, authentication is required. The username is root, and the password is blank.
As the system runs directly from the CD, performance will be significantly slower than that of a system installed on a hard disk.
The live CD provides a command prompt and not a graphical interface.
FreeBSD is provided with a text-based, easy to use installation program. FreeBSD 9.0-RELEASE and later use the installation program known as bsdinstall, with releases prior to 9.0-RELEASE using sysinstall for installation. This chapter describes the use of sysinstall to install FreeBSD. The use of bsdinstall is covered in Chapter 2.
After reading this chapter, you will know:
How to create the FreeBSD installation disks.
How FreeBSD refers to, and subdivides, your hard disks.
How to start sysinstall.
The questions sysinstall will ask you, what they mean, and how to answer them.
Before reading this chapter, you should:
Read the supported hardware list that shipped with the version of FreeBSD you are installing, and verify that your hardware is supported.
Note: In general, these installation instructions are written for i386 (“PC compatible”) architecture computers. Where applicable, instructions specific to other platforms will be listed. Although this guide is kept as up to date as possible, you may find minor differences between the installer and what is shown here. It is suggested that you use this chapter as a general guide rather than a literal installation manual.
The minimal configuration to install FreeBSD varies with the FreeBSD version and the hardware architecture.
A summary of this information is given in the following sections. Depending on the method you choose to install FreeBSD, you may also need a floppy drive, a supported CDROM drive, and in some case a network adapter. This will be covered by the Section 3.3.7.
Both FreeBSD/i386 and FreeBSD/pc98 require a 486 or better processor and at least 24 MB of RAM. You will need at least 150 MB of free hard drive space for the most minimal installation.
Note: In case of old configurations, most of time, getting more RAM and more hard drive space is more important than getting a faster processor.
There are two classes of processors capable of running FreeBSD/amd64. The first are AMD64 processors, including the AMD Athlon64, AMD Athlon64-FX, AMD Opteron or better processors.
The second class of processors that can use FreeBSD/amd64 includes those using the Intel EM64T architecture. Examples of these processors include the Intel Core 2 Duo, Quad, Extreme processor families, and the Intel Xeon 3000, 5000, and 7000 sequences of processors.
If you have a machine based on an nVidia nForce3 Pro-150, you must use the BIOS setup to disable the IO APIC. If you do not have an option to do this, you will likely have to disable ACPI instead. There are bugs in the Pro-150 chipset that we have not found a workaround for yet.
To install FreeBSD/sparc64, you will need a supported platform (see Section 3.2.2).
You will need a dedicated disk for FreeBSD/sparc64. It is not possible to share a disk with another operating system at this time.
A list of supported hardware is provided with each FreeBSD release in the FreeBSD Hardware Notes. This document can usually be found in a file named HARDWARE.TXT, in the top-level directory of a CDROM or FTP distribution or in sysinstall's documentation menu. It lists, for a given architecture, what hardware devices are known to be supported by each release of FreeBSD. Copies of the supported hardware list for various releases and architectures can also be found on the Release Information page of the FreeBSD Web site.
Before installing FreeBSD you should attempt to inventory the components in your computer. The FreeBSD installation routines will show you the components (hard disks, network cards, CDROM drives, and so forth) with their model number and manufacturer. FreeBSD will also attempt to determine the correct configuration for these devices, which includes information about IRQ and IO port usage. Due to the vagaries of PC hardware this process is not always completely successful, and you may need to correct FreeBSD's determination of your configuration.
If you already have another operating system installed, such as Windows or Linux, it is a good idea to use the facilities provided by those operating systems to see how your hardware is already configured. If you are not sure what settings an expansion card is using, you may find it printed on the card itself. Popular IRQ numbers are 3, 5, and 7, and IO port addresses are normally written as hexadecimal numbers, such as 0x330.
We recommend you print or write down this information before installing FreeBSD. It may help to use a table, like this:
Table 3-1. Sample Device Inventory
Device Name | IRQ | IO port(s) | Notes |
---|---|---|---|
First hard disk | N/A | N/A | 40 GB, made by Seagate, first IDE master |
CDROM | N/A | N/A | First IDE slave |
Second hard disk | N/A | N/A | 20 GB, made by IBM, second IDE master |
First IDE controller | 14 | 0x1f0 | |
Network card | N/A | N/A | Intel 10/100 |
Modem | N/A | N/A | 3Com® 56K faxmodem, on COM1 |
… |
Once the inventory of the components in your computer is done, you have to check if they match the hardware requirements of the FreeBSD release you want to install.
If the computer you will be installing FreeBSD on contains valuable data, then ensure you have it backed up, and that you have tested the backups before installing FreeBSD. The FreeBSD installation routine will prompt you before writing any data to your disk, but once that process has started it cannot be undone.
If you want FreeBSD to use your entire hard disk, then there is nothing more to concern yourself with at this point — you can skip this section.
However, if you need FreeBSD to co-exist with other operating systems then you need to have a rough understanding of how data is laid out on the disk, and how this affects you.
A PC disk can be divided into discrete chunks. These chunks are called partitions. Since FreeBSD internally also has partitions, the naming can become confusing very quickly, therefore these disk chunks are referred to as disk slices or simply slices in FreeBSD itself. For example, the FreeBSD utility fdisk which operates on the PC disk partitions, refers to slices instead of partitions. By design, the PC only supports four partitions per disk. These partitions are called primary partitions. To work around this limitation and allow more than four partitions, a new partition type was created, the extended partition. A disk may contain only one extended partition. Special partitions, called logical partitions, can be created inside this extended partition.
Each partition has a partition ID, which is a number used to identify the type of data on the partition. FreeBSD partitions have the partition ID of 165.
In general, each operating system that you use will identify partitions in a particular way. For example, MS-DOS, and its descendants, like Windows, assign each primary and logical partition a drive letter, starting with C:.
FreeBSD must be installed into a primary partition. FreeBSD can keep all its data, including any files that you create, on this one partition. However, if you have multiple disks, then you can create a FreeBSD partition on all, or some, of them. When you install FreeBSD, you must have one partition available. This might be a blank partition that you have prepared, or it might be an existing partition that contains data that you no longer care about.
If you are already using all the partitions on all your disks, then you will have to free one of them for FreeBSD using the tools provided by the other operating systems you use (e.g., fdisk on MS-DOS or Windows).
If you have a spare partition then you can use that. However, you may need to shrink one or more of your existing partitions first.
A minimal installation of FreeBSD takes as little as 100 MB of disk space. However, that is a very minimal install, leaving almost no space for your own files. A more realistic minimum is 250 MB without a graphical environment, and 350 MB or more if you want a graphical user interface. If you intend to install a lot of third-party software as well, then you will need more space.
You can use a commercial tool such as PartitionMagic®, or a free tool such as GParted, to resize your partitions and make space for FreeBSD. Both PartitionMagic and GParted are known to work on NTFS. GParted is available on a number of Live CD Linux distributions, such as SystemRescueCD.
Problems have been reported resizing Microsoft Vista partitions. Having a Vista installation CDROM handy when attempting such an operation is recommended. As with all such disk maintenance tasks, a current set of backups is also strongly advised.
Warning: Incorrect use of these tools can delete the data on your disk. Be sure that you have recent, working backups before using them.
Example 3-1. Using an Existing Partition Unchanged
Suppose that you have a computer with a single 4 GB disk that already has a version of Windows installed, and you have split the disk into two drive letters, C: and D:, each of which is 2 GB in size. You have 1 GB of data on C:, and 0.5 GB of data on D:.
This means that your disk has two partitions on it, one per drive letter. You can copy all your existing data from D: to C:, which will free up the second partition, ready for FreeBSD.
Example 3-2. Shrinking an Existing Partition
Suppose that you have a computer with a single 4 GB disk that already has a version of Windows installed. When you installed Windows you created one large partition, giving you a C: drive that is 4 GB in size. You are currently using 1.5 GB of space, and want FreeBSD to have 2 GB of space.
In order to install FreeBSD you will need to either:
Backup your Windows data, and then reinstall Windows, asking for a 2 GB partition at install time.
Use one of the tools such as PartitionMagic, described above, to shrink your Windows partition.
If you intend to connect to a network as part of your FreeBSD installation (for example, if you will be installing from an FTP site or an NFS server), then you need to know your network configuration. You will be prompted for this information during the installation so that FreeBSD can connect to the network to complete the install.
If you connect to an Ethernet network, or you have an Internet connection using an Ethernet adapter via cable or DSL, then you will need the following information:
IP address
IP address of the default gateway
Hostname
DNS server IP addresses
Subnet Mask
If you do not know this information, then ask your system administrator or service provider. They may say that this information is assigned automatically, using DHCP. If so, make a note of this.
If you dial up to an ISP using a regular modem then you can still install FreeBSD over the Internet, it will just take a very long time.
You will need to know:
The phone number to dial for your ISP
The COM: port your modem is connected to
The username and password for your ISP account
Although the FreeBSD project strives to ensure that each release of FreeBSD is as stable as possible, bugs do occasionally creep into the process. On very rare occasions those bugs affect the installation process. As these problems are discovered and fixed, they are noted in the FreeBSD Errata, which is found on the FreeBSD web site. You should check the errata before installing to make sure that there are no late-breaking problems which you should be aware of.
Information about all the releases, including the errata for each release, can be found on the release information section of the FreeBSD web site.
The FreeBSD installation process can install FreeBSD from files located in any of the following places:
Local Media
A CDROM or DVD
A USB Memory Stick
A MS-DOS partition on the same computer
A SCSI or QIC tape
Floppy disks
Network
An FTP site, going through a firewall, or using an HTTP proxy, as necessary
An NFS server
A dedicated parallel or serial connection
If you have purchased FreeBSD on CD or DVD then you already have everything you need, and should proceed to the next section (Section 3.3.7).
If you have not obtained the FreeBSD installation files you should skip ahead to Section 3.13 which explains how to prepare to install FreeBSD from any of the above. After reading that section, you should come back here, and read on to Section 3.3.7.
The FreeBSD installation process is started by booting your computer into the FreeBSD installer—it is not a program you run within another operating system. Your computer normally boots using the operating system installed on your hard disk, but it can also be configured to use a “bootable” floppy disk. Most modern computers can also boot from a CDROM in the CDROM drive or from a USB disk.
Tip: If you have FreeBSD on CDROM or DVD (either one you purchased or you prepared yourself), and your computer allows you to boot from the CDROM or DVD (typically a BIOS option called “Boot Order” or similar), then you can skip this section. The FreeBSD CDROM and DVD images are bootable and can be used to install FreeBSD without any other special preparation.
To create a bootable memory stick, follow these steps:
Acquire the Memory Stick Image
Memory stick images for FreeBSD 8.X and earlier can be downloaded from the ISO-IMAGES/ directory at ftp://ftp.FreeBSD.org/pub/FreeBSD/releases/arch/ISO-IMAGES/version/FreeBSD-version-RELEASE-arch-memstick.img. Replace arch and version with the architecture and the version number which you want to install, respectively. For example, the memory stick images for FreeBSD/i386 8.3-RELEASE are available from ftp://ftp.FreeBSD.org/pub/FreeBSD/releases/i386/ISO-IMAGES/8.3/FreeBSD-8.3-RELEASE-i386-memstick.img.
Tip: A different directory path is used for FreeBSD 9.0-RELEASE and later versions. Details of download and installation of FreeBSD 9.0-RELEASE and later is covered in Chapter 2.
The memory stick image has a .img extension. The ISO-IMAGES/ directory contains a number of different images, and the one you will need to use will depend on the version of FreeBSD you are installing, and in some cases, the hardware you are installing to.
Important: Before proceeding, back up the data you currently have on your USB stick, as this procedure will erase it.
Write The Image File to the Memory Stick
Using FreeBSD To Write the Image
Warning: The example below lists /dev/da0 as the target device where the image will be written. Be very careful that you have the correct device as the output target, or you may destroy your existing data.
Writing the Image with dd(1)
The .img file is not a regular file you copy to the memory stick. It is an image of the complete contents of the disk. This means that you cannot simply copy files from one disk to another. Instead, you must use dd(1) to write the image directly to the disk:
# dd if=FreeBSD-8.3-RELEASE-i386-memstick.img of=/dev/da0 bs=64k
If an Operation not permitted error is displayed, make certain that the target device is not in use, mounted, or being automounted by some well-intentioned utility program. Then try again.
Using Windows To Write the Image
Warning: Make sure you use the correct drive letter as the output target, or you may overwrite and destroy existing data.
Obtaining Image Writer for Windows
Image Writer for Windows is a free application that can correctly write an image file to a memory stick. Download it from https://launchpad.net/win32-image-writer/ and extract it into a folder.
Writing The Image with Image Writer
Double-click the Win32DiskImager icon to start the program. Verify that the drive letter shown under Device is the drive with the memory stick. Click the folder icon and select the image to be written to the memory stick. Click
to accept the image file name. Verify that everything is correct, and that no folders on the memory stick are open in other windows. Finally, click to write the image file to the drive.To create boot floppy images, follow these steps:
Acquire the Boot Floppy Images
Important: Please note, as of FreeBSD 8.X, floppy disk images are no longer available. Please see above for instructions on how to install FreeBSD using a USB memory stick or just use a CDROM or a DVD.
The boot disks are available on your installation media in the floppies/ directory, and can also be downloaded from the floppies directory, ftp://ftp.FreeBSD.org/pub/FreeBSD/releases/arch/version-RELEASE/floppies/. Replace arch and version with the architecture and the version number which you want to install, respectively. For example, the boot floppy images for FreeBSD/i386 8.3-RELEASE are available from ftp://ftp.FreeBSD.org/pub/FreeBSD/releases/i386/8.3-RELEASE/floppies/.
The floppy images have a .flp extension. The floppies/ directory contains a number of different images, and the ones you will need to use depends on the version of FreeBSD you are installing, and in some cases, the hardware you are installing to. In most cases you will need four floppies, boot.flp, kern1.flp, kern2.flp, and kern3.flp. Check README.TXT in the same directory for the most up to date information about these floppy images.
Important: Your FTP program must use binary mode to download these disk images. Some web browsers have been known to use text (or ASCII) mode, which will be apparent if you cannot boot from the disks.
Prepare the Floppy Disks
You must prepare one floppy disk per image file you had to download. It is imperative that these disks are free from defects. The easiest way to test this is to format the disks for yourself. Do not trust pre-formatted floppies. The format utility in Windows will not tell about the presence of bad blocks, it simply marks them as “bad” and ignores them. It is advised that you use brand new floppies if choosing this installation route.
Important: If you try to install FreeBSD and the installation program crashes, freezes, or otherwise misbehaves, one of the first things to suspect is the floppies. Try writing the floppy image files to new disks and try again.
Write the Image Files to the Floppy Disks
The .flp files are not regular files you copy to the disk. They are images of the complete contents of the disk. This means that you cannot simply copy files from one disk to another. Instead, you must use specific tools to write the images directly to the disk.
If you are creating the floppies on a computer running MS-DOS / Windows, then we provide a tool to do this called fdimage.
If you are using the floppies from the CDROM, and your CDROM is the E: drive, then you would run this:
E:\> tools\fdimage floppies\boot.flp A:
Repeat this command for each .flp file, replacing the floppy disk each time, being sure to label the disks with the name of the file that you copied to them. Adjust the command line as necessary, depending on where you have placed the .flp files. If you do not have the CDROM, then fdimage can be downloaded from the tools directory on the FreeBSD FTP site.
If you are writing the floppies on a UNIX system (such as another FreeBSD system) you can use the dd(1) command to write the image files directly to disk. On FreeBSD, you would run:
# dd if=boot.flp of=/dev/fd0
On FreeBSD, /dev/fd0 refers to the first floppy disk (the A: drive). /dev/fd1 would be the B: drive, and so on. Other UNIX variants might have different names for the floppy disk devices, and you will need to check the documentation for the system as necessary.
You are now ready to start installing FreeBSD.
Important: By default, the installation will not make any changes to your disk(s) until you see the following message:
Last Chance: Are you SURE you want continue the installation? If you're running this on a disk with data you wish to save then WE STRONGLY ENCOURAGE YOU TO MAKE PROPER BACKUPS before proceeding! We can take no responsibility for lost disk contents!The install can be exited at any time prior to the final warning without changing the contents of the hard drive. If you are concerned that you have configured something incorrectly you can just turn the computer off before this point, and no damage will be done.
Start with your computer turned off.
Turn on the computer. As it starts it should display an option to enter the system set up menu, or BIOS, commonly reached by keys like F2, F10, Del, or Alt+S. Use whichever keystroke is indicated on screen. In some cases your computer may display a graphic while it starts. Typically, pressing Esc will dismiss the graphic and allow you to see the necessary messages.
Find the setting that controls which devices the system boots from. This is usually labeled as the “Boot Order” and commonly shown as a list of devices, such as Floppy, CDROM, First Hard Disk, and so on.
If you are booting from the CDROM then make sure that the CDROM is selected. If you are booting from a USB disk or a floppy disk then make sure that is selected instead. In case of doubt, you should consult the manual that came with your computer, and/or its motherboard.
Make the change, then save and exit. The computer should now restart.
If you prepared a “bootable” USB stick, as described in Section 3.3.7, then plug in your USB stick before turning on the computer.
If you are booting from CDROM, then you will need to turn on the computer, and insert the CDROM at the first opportunity.
Note: For FreeBSD 7.X, installation boot floppies are available and can be prepared as described in Section 3.3.7. One of them will be the first boot disc: boot.flp. Put this disc in your floppy drive and boot the computer.
If your computer starts up as normal and loads your existing operating system, then either:
The disks were not inserted early enough in the boot process. Leave them in, and try restarting your computer.
The BIOS changes earlier did not work correctly. You should redo that step until you get the right option.
Your particular BIOS does not support booting from the desired media.
FreeBSD will start to boot. If you are booting from CDROM you will see a display similar to this (version information omitted):
Booting from CD-Rom... 645MB medium detected CD Loader 1.2 Building the boot loader arguments Looking up /BOOT/LOADER... Found Relocating the loader and the BTX Starting the BTX loader BTX loader 1.00 BTX version is 1.02 Consoles: internal video/keyboard BIOS CD is cd0 BIOS drive C: is disk0 BIOS drive D: is disk1 BIOS 636kB/261056kB available memory FreeBSD/i386 bootstrap loader, Revision 1.1 Loading /boot/defaults/loader.conf /boot/kernel/kernel text=0x64daa0 data=0xa4e80+0xa9e40 syms=[0x4+0x6cac0+0x4+0x88e9d] \
If you are booting from floppy disc, you will see a display similar to this (version information omitted):
Booting from Floppy... Uncompressing ... done BTX loader 1.00 BTX version is 1.01 Console: internal video/keyboard BIOS drive A: is disk0 BIOS drive C: is disk1 BIOS 639kB/261120kB available memory FreeBSD/i386 bootstrap loader, Revision 1.1 Loading /boot/defaults/loader.conf /kernel text=0x277391 data=0x3268c+0x332a8 | Insert disk labelled "Kernel floppy 1" and press any key...
Follow these instructions by removing the boot.flp disc, insert the kern1.flp disc, and press Enter. Boot from first floppy; when prompted, insert the other disks as required.
Whether you booted from CDROM, USB stick or floppy, the boot process will then get to the FreeBSD boot loader menu:
Either wait ten seconds, or press Enter.
Most SPARC64 systems are set up to boot automatically from disk. To install FreeBSD, you need to boot over the network or from a CDROM, which requires you to break into the PROM (OpenFirmware).
To do this, reboot the system, and wait until the boot message appears. It depends on the model, but should look about like:
Sun Blade 100 (UltraSPARC-IIe), Keyboard Present Copyright 1998-2001 Sun Microsystems, Inc. All rights reserved. OpenBoot 4.2, 128 MB memory installed, Serial #51090132. Ethernet address 0:3:ba:b:92:d4, Host ID: 830b92d4.
If your system proceeds to boot from disk at this point, you need to press L1+A or Stop+A on the keyboard, or send a BREAK over the serial console (using for example ~# in tip(1) or cu(1)) to get to the PROM prompt. It looks like this:
ok ok {0}
At this point, place the CDROM into your drive, and from the PROM prompt, type boot cdrom.
The last few hundred lines that have been displayed on screen are stored and can be reviewed.
To review the buffer, press Scroll Lock. This turns on scrolling in the display. You can then use the arrow keys, or PageUp and PageDown to view the results. Press Scroll Lock again to stop scrolling.
Do this now, to review the text that scrolled off the screen when the kernel was carrying out the device probes. You will see text similar to Figure 3-2, although the precise text will differ depending on the devices that you have in your computer.
Figure 3-2. Typical Device Probe Results
avail memory = 253050880 (247120K bytes) Preloaded elf kernel "kernel" at 0xc0817000. Preloaded mfs_root "/mfsroot" at 0xc0817084. md0: Preloaded image </mfsroot> 4423680 bytes at 0xc03ddcd4 md1: Malloc disk Using $PIR table, 4 entries at 0xc00fde60 npx0: <math processor> on motherboard npx0: INT 16 interface pcib0: <Host to PCI bridge> on motherboard pci0: <PCI bus> on pcib0 pcib1:<VIA 82C598MVP (Apollo MVP3) PCI-PCI (AGP) bridge> at device 1.0 on pci0 pci1: <PCI bus> on pcib1 pci1: <Matrox MGA G200 AGP graphics accelerator> at 0.0 irq 11 isab0: <VIA 82C586 PCI-ISA bridge> at device 7.0 on pci0 isa0: <iSA bus> on isab0 atapci0: <VIA 82C586 ATA33 controller> port 0xe000-0xe00f at device 7.1 on pci0 ata0: at 0x1f0 irq 14 on atapci0 ata1: at 0x170 irq 15 on atapci0 uhci0 <VIA 83C572 USB controller> port 0xe400-0xe41f irq 10 at device 7.2 on pci 0 usb0: <VIA 83572 USB controller> on uhci0 usb0: USB revision 1.0 uhub0: VIA UHCI root hub, class 9/0, rev 1.00/1.00, addr1 uhub0: 2 ports with 2 removable, self powered pci0: <unknown card> (vendor=0x1106, dev=0x3040) at 7.3 dc0: <ADMtek AN985 10/100BaseTX> port 0xe800-0xe8ff mem 0xdb000000-0xeb0003ff ir q 11 at device 8.0 on pci0 dc0: Ethernet address: 00:04:5a:74:6b:b5 miibus0: <MII bus> on dc0 ukphy0: <Generic IEEE 802.3u media interface> on miibus0 ukphy0: 10baseT, 10baseT-FDX, 100baseTX, 100baseTX-FDX, auto ed0: <NE2000 PCI Ethernet (RealTek 8029)> port 0xec00-0xec1f irq 9 at device 10. 0 on pci0 ed0 address 52:54:05:de:73:1b, type NE2000 (16 bit) isa0: too many dependant configs (8) isa0: unexpected small tag 14 orm0: <Option ROM> at iomem 0xc0000-0xc7fff on isa0 fdc0: <NEC 72065B or clone> at port 0x3f0-0x3f5,0x3f7 irq 6 drq2 on isa0 fdc0: FIFO enabled, 8 bytes threshold fd0: <1440-KB 3.5” drive> on fdc0 drive 0 atkbdc0: <Keyboard controller (i8042)> at port 0x60,0x64 on isa0 atkbd0: <AT Keyboard> flags 0x1 irq1 on atkbdc0 kbd0 at atkbd0 psm0: <PS/2 Mouse> irq 12 on atkbdc0 psm0: model Generic PS/@ mouse, device ID 0 vga0: <Generic ISA VGA> at port 0x3c0-0x3df iomem 0xa0000-0xbffff on isa0 sc0: <System console> at flags 0x100 on isa0 sc0: VGA <16 virtual consoles, flags=0x300> sio0 at port 0x3f8-0x3ff irq 4 flags 0x10 on isa0 sio0: type 16550A sio1 at port 0x2f8-0x2ff irq 3 on isa0 sio1: type 16550A ppc0: <Parallel port> at port 0x378-0x37f irq 7 on isa0 pppc0: SMC-like chipset (ECP/EPP/PS2/NIBBLE) in COMPATIBLE mode ppc0: FIFO with 16/16/15 bytes threshold plip0: <PLIP network interface> on ppbus0 ad0: 8063MB <IBM-DHEA-38451> [16383/16/63] at ata0-master UDMA33 acd0: CD-RW <LITE-ON LTR-1210B> at ata1-slave PIO4 Mounting root from ufs:/dev/md0c /stand/sysinstall running as init on vty0
Check the probe results carefully to make sure that FreeBSD found all the devices you expected. If a device was not found, then it will not be listed. A custom kernel allows you to add in support for devices which are not in the GENERIC kernel, such as sound cards.
After the procedure of device probing, you will see Figure 3-3. Use the arrow key to choose a country, region, or group. Then press Enter, it will set your country easily.
If you selected
as country, the standard American keyboard map will be used, if a different country is chosen the following menu will be displayed. Use the arrow keys to choose the correct keyboard map and press Enter.After the country selecting, the sysinstall main menu will display.
The sysinstall utility is the installation application provided by the FreeBSD Project. It is console based and is divided into a number of menus and screens that you can use to configure and control the installation process.
The sysinstall menu system is controlled by the arrow keys, Enter, Tab, Space, and other keys. A detailed description of these keys and what they do is contained in sysinstall's usage information.
To review this information, ensure that the Figure 3-5, then press Enter.
entry is highlighted and that the button is selected, as shown inThe instructions for using the menu system will be displayed. After reviewing them, press Enter to return to the Main Menu.
From the Main Menu, select
with the arrow keys and press Enter.This will display the Documentation Menu.
It is important to read the documents provided.
To view a document, select it with the arrow keys and press Enter. When finished reading a document, pressing Enter will return to the Documentation Menu.
To return to the Main Installation Menu, select
with the arrow keys and press Enter.To change the keyboard mapping, use the arrow keys to select
from the menu and press Enter. This is only required if you are using a non-standard or non-US keyboard.A different keyboard mapping may be chosen by selecting the menu item using up/down arrow keys and pressing Space. Pressing Space again will unselect the item. When finished, choose the
using the arrow keys and press Enter.Only a partial list is shown in this screen representation. Selecting
by pressing Tab will use the default keymap and return to the Main Install Menu.Select
and press Enter.The default values are usually fine for most users and do not need to be changed. The release name will vary according to the version being installed.
The description of the selected item will appear at the bottom of the screen highlighted in blue. Notice that one of the options is
to reset all values to startup defaults.Press F1 to read the help screen about the various options.
Pressing Q will return to the Main Install menu.
The UNIX or FreeBSD. Use the arrow keys to select and then press Enter to start the installation.
installation is the option recommended for those new toYour first task is to allocate disk space for FreeBSD, and label that space so that sysinstall can prepare it. In order to do this you need to know how FreeBSD expects to find information on the disk.
Before you install and configure FreeBSD on your system, there is an important subject that you should be aware of, especially if you have multiple hard drives.
In a PC running a BIOS-dependent operating system such as MS-DOS or Microsoft Windows, the BIOS is able to abstract the normal disk drive order, and the operating system goes along with the change. This allows the user to boot from a disk drive other than the so-called “primary master”. This is especially convenient for some users who have found that the simplest and cheapest way to keep a system backup is to buy an identical second hard drive, and perform routine copies of the first drive to the second drive using Ghost® or XCOPY . Then, if the first drive fails, or is attacked by a virus, or is scribbled upon by an operating system defect, he can easily recover by instructing the BIOS to logically swap the drives. It is like switching the cables on the drives, but without having to open the case.
More expensive systems with SCSI controllers often include BIOS extensions which allow the SCSI drives to be re-ordered in a similar fashion for up to seven drives.
A user who is accustomed to taking advantage of these features may become surprised when the results with FreeBSD are not as expected. FreeBSD does not use the BIOS, and does not know the “logical BIOS drive mapping”. This can lead to very perplexing situations, especially when drives are physically identical in geometry, and have also been made as data clones of one another.
When using FreeBSD, always restore the BIOS to natural drive numbering before installing FreeBSD, and then leave it that way. If you need to switch drives around, then do so, but do it the hard way, and open the case and move the jumpers and cables.
Note: No changes you make at this point will be written to the disk. If you think you have made a mistake and want to start again you can use the menus to exit sysinstall and try again or press U to use the
option. If you get confused and can not see how to exit you can always turn your computer off.
After choosing to begin a standard installation in sysinstall you will be shown this message:
Message In the next menu, you will need to set up a DOS-style ("fdisk") partitioning scheme for your hard disk. If you simply wish to devote all disk space to FreeBSD (overwriting anything else that might be on the disk(s) selected) then use the (A)ll command to select the default partitioning scheme followed by a (Q)uit. If you wish to allocate only free space to FreeBSD, move to a partition marked "unused" and use the (C)reate command. [ OK ] [ Press enter or space ]
Press Enter as instructed. You will then be shown a list of all the hard drives that the kernel found when it carried out the device probes. Figure 3-13 shows an example from a system with two IDE disks. They have been called ad0 and ad2.
You might be wondering why ad1 is not listed here. Why has it been missed?
Consider what would happen if you had two IDE hard disks, one as the master on the first IDE controller, and one as the master on the second IDE controller. If FreeBSD numbered these as it found them, as ad0 and ad1 then everything would work.
But if you then added a third disk, as the slave device on the first IDE controller, it would now be ad1, and the previous ad1 would become ad2. Because device names (such as ad1s1a) are used to find filesystems, you may suddenly discover that some of your filesystems no longer appear correctly, and you would need to change your FreeBSD configuration.
To work around this, the kernel can be configured to name IDE disks based on where they are, and not the order in which they were found. With this scheme the master disk on the second IDE controller will always be ad2, even if there are no ad0 or ad1 devices.
This configuration is the default for the FreeBSD kernel, which is why this display shows ad0 and ad2. The machine on which this screenshot was taken had IDE disks on both master channels of the IDE controllers, and no disks on the slave channels.
You should select the disk on which you want to install FreeBSD, and then press Figure 3-14.
. FDisk will start, with a display similar to that shown inThe FDisk display is broken into three sections.
The first section, covering the first two lines of the display, shows details about the currently selected disk, including its FreeBSD name, the disk geometry, and the total size of the disk.
The second section shows the slices that are currently on the disk, where they start and end, how large they are, the name FreeBSD gives them, and their description and sub-type. This example shows two small unused slices, which are artifacts of disk layout schemes on the PC. It also shows one large FAT slice, which almost certainly appears as C: in MS-DOS / Windows, and an extended slice, which may contain other drive letters for MS-DOS / Windows.
The third section shows the commands that are available in FDisk.
What you do now will depend on how you want to slice up your disk.
If you want to use FreeBSD for the entire disk (which will delete all the other data on this disk when you confirm that you want sysinstall to continue later in the installation process) then you can press A, which corresponds to the Figure 3-15. Note the A in the Flags column, which indicates that this slice is active, and will be booted from.
option. The existing slices will be removed, and replaced with a small area flagged as unused (again, an artifact of PC disk layout), and then one large slice for FreeBSD. If you do this, then you should select the newly created FreeBSD slice using the arrow keys, and press S to mark the slice as being bootable. The screen will then look very similar toIf you will be deleting an existing slice to make space for FreeBSD then you should select the slice using the arrow keys, and then press D. You can then press C, and be prompted for size of slice you want to create. Enter the appropriate figure and press Enter. The default value in this box represents the largest possible slice you can make, which could be the largest contiguous block of unallocated space or the size of the entire hard disk.
If you have already made space for FreeBSD (perhaps by using a tool such as PartitionMagic) then you can press C to create a new slice. Again, you will be prompted for the size of slice you would like to create.
When finished, press Q. Your changes will be saved in sysinstall, but will not yet be written to disk.
You now have the option to install a boot manager. In general, you should choose to install the FreeBSD boot manager if:
You have more than one drive, and have installed FreeBSD onto a drive other than the first one.
You have installed FreeBSD alongside another operating system on the same disk, and you want to choose whether to start FreeBSD or the other operating system when you start the computer.
If FreeBSD is going to be the only operating system on this machine, installed on the first hard disk, then the
boot manager will suffice. Choose if you are using a third-party boot manager capable of booting FreeBSD.Make your choice and press Enter.
The help screen, reached by pressing F1, discusses the problems that can be encountered when trying to share the hard disk between operating systems.
If there is more than one drive, it will return to the Select Drives screen after the boot manager selection. If you wish to install FreeBSD on to more than one disk, then you can select another disk here and repeat the slice process using FDisk.
Important: If you are installing FreeBSD on a drive other than your first, then the FreeBSD boot manager needs to be installed on both drives.
The Tab key toggles between the last drive selected,
, and .Press the Tab once to toggle to the
, then press Enter to continue with the installation.You must now create some partitions inside each slice that you have just created. Remember that each partition is lettered, from a through to h, and that partitions b, c, and d have conventional meanings that you should adhere to.
Certain applications can benefit from particular partition schemes, especially if you are laying out partitions across more than one disk. However, for this, your first FreeBSD installation, you do not need to give too much thought to how you partition the disk. It is more important that you install FreeBSD and start learning how to use it. You can always re-install FreeBSD to change your partition scheme when you are more familiar with the operating system.
This scheme features four partitions—one for swap space, and three for filesystems.
Table 3-2. Partition Layout for First Disk
Partition | Filesystem | Size | Description |
---|---|---|---|
a | / | 1 GB | This is the root filesystem. Every other filesystem will be mounted somewhere under this one. 1 GB is a reasonable size for this filesystem. You will not be storing too much data on it, as a regular FreeBSD install will put about 128 MB of data here. The remaining space is for temporary data, and also leaves expansion space if future versions of FreeBSD need more space in /. |
b | N/A | 2-3 x RAM |
The system's swap space is kept on the b partition. Choosing the right amount of swap space can be a bit of an art. A good rule of thumb is that your swap space should be two or three times as much as the available physical memory (RAM). You should also have at least 64 MB of swap, so if you have less than 32 MB of RAM in your computer then set the swap amount to 64 MB. If you have more than one disk then you can put swap space on each disk. FreeBSD will then use each disk for swap, which effectively speeds up the act of swapping. In this case, calculate the total amount of swap you need (e.g., 128 MB), and then divide this by the number of disks you have (e.g., two disks) to give the amount of swap you should put on each disk, in this example, 64 MB of swap per disk. |
e | /var | 512 MB to 4096 MB | The /var directory contains files that are constantly varying; log files, and other administrative files. Many of these files are read-from or written-to extensively during FreeBSD's day-to-day running. Putting these files on another filesystem allows FreeBSD to optimize the access of these files without affecting other files in other directories that do not have the same access pattern. |
f | /usr | Rest of disk (at least 8 GB) | All your other files will typically be stored in /usr and its subdirectories. |
Warning: The values above are given as example and should be used by experienced users only. Users are encouraged to use the automatic partition layout called Auto Defaults by the FreeBSD partition editor.
If you will be installing FreeBSD on to more than one disk then you must also create partitions in the other slices that you configured. The easiest way to do this is to create two partitions on each disk, one for the swap space, and one for a filesystem.
Table 3-3. Partition Layout for Subsequent Disks
Partition | Filesystem | Size | Description |
---|---|---|---|
b | N/A | See description | As already discussed, you can split swap space across each disk. Even though the a partition is free, convention dictates that swap space stays on the b partition. |
e | /diskn | Rest of disk | The rest of the disk is taken up with one big partition. This could easily be put on the a partition, instead of the e partition. However, convention says that the a partition on a slice is reserved for the filesystem that will be the root (/) filesystem. You do not have to follow this convention, but sysinstall does, so following it yourself makes the installation slightly cleaner. You can choose to mount this filesystem anywhere; this example suggests that you mount them as directories /diskn, where n is a number that changes for each disk. But you can use another scheme if you prefer. |
Having chosen your partition layout you can now create it using sysinstall. You will see this message:
Message Now, you need to create BSD partitions inside of the fdisk partition(s) just created. If you have a reasonable amount of disk space (1GB or more) and don't have any special requirements, simply use the (A)uto command to allocate space automatically. If you have more specific needs or just don't care for the layout chosen by (A)uto, press F1 for more information on manual layout. [ OK ] [ Press enter or space ]
Press Enter to start the FreeBSD partition editor, called Disklabel.
Figure 3-18 shows the display when you first start Disklabel. The display is divided in to three sections.
The first few lines show the name of the disk you are currently working on, and the slice that contains the partitions you are creating (at this point Disklabel calls this the Partition name rather than slice name). This display also shows the amount of free space within the slice; that is, space that was set aside in the slice, but that has not yet been assigned to a partition.
The middle of the display shows the partitions that have been created, the name of the filesystem that each partition contains, their size, and some options pertaining to the creation of the filesystem.
The bottom third of the screen shows the keystrokes that are valid in Disklabel.
Disklabel can automatically create partitions for you and assign them default sizes. The default sizes are calculated with the help of an internal partition sizing algorithm based on the disk size. Try this now, by Pressing A. You will see a display similar to that shown in Figure 3-19. Depending on the size of the disk you are using, the defaults may or may not be appropriate. This does not matter, as you do not have to accept the defaults.
Note: The default partitioning assigns the /tmp directory its own partition instead of being part of the / partition. This helps avoid filling the / partition with temporary files.
If you choose to not use the default partitions and wish to replace them with your own, use the arrow keys to select the first partition, and press D to delete it. Repeat this to delete all the suggested partitions.
To create the first partition (a, mounted as / — root), make sure the proper disk slice at the top of the screen is selected and press C. A dialog box will appear prompting you for the size of the new partition (as shown in Figure 3-20). You can enter the size as the number of disk blocks you want to use, or as a number followed by either M for megabytes, G for gigabytes, or C for cylinders.
The default size shown will create a partition that takes up the rest of the slice. If you are using the partition sizes described in the earlier example, then delete the existing figure using Backspace, and then type in 512M, as shown in Figure 3-21. Then press .
Having chosen the partition's size you will then be asked whether this partition will contain a filesystem or swap space. The dialog box is shown in Figure 3-22. This first partition will contain a filesystem, so check that is selected and press Enter.
Finally, because you are creating a filesystem, you must tell Disklabel where the filesystem is to be mounted. The dialog box is shown in Figure 3-23. The root filesystem's mount point is /, so type /, and then press Enter.
The display will then update to show you the newly created partition. You should repeat this procedure for the other partitions. When you create the swap partition, you will not be prompted for the filesystem mount point, as swap partitions are never mounted. When you create the final partition, /usr, you can leave the suggested size as is, to use the rest of the slice.
Your final FreeBSD DiskLabel Editor screen will appear similar to Figure 3-24, although your values chosen may be different. Press Q to finish.
Deciding which distribution set to install will depend largely on the intended use of the system and the amount of disk space available. The predefined options range from installing the smallest possible configuration to everything. Those who are new to UNIX and/or FreeBSD should almost certainly select one of these canned options. Customizing a distribution set is typically for the more experienced user.
Press F1 for more information on the distribution set options and what they contain. When finished reviewing the help, pressing Enter will return to the Select Distributions Menu.
If a graphical user interface is desired then the configuration of the X server and selection of a default desktop must be done after the installation of FreeBSD. More information regarding the installation and configuration of a X server can be found in Chapter 6.
If compiling a custom kernel is anticipated, select an option which includes the source code. For more information on why a custom kernel should be built or how to build a custom kernel, see Chapter 9.
Obviously, the most versatile system is one that includes everything. If there is adequate disk space, select Figure 3-25 by using the arrow keys and press Enter. If there is a concern about disk space consider using an option that is more suitable for the situation. Do not fret over the perfect choice, as other distributions can be added after installation.
as shown inAfter selecting the desired distribution, an opportunity to install the FreeBSD Ports Collection is presented. The ports collection is an easy and convenient way to install software. The Ports Collection does not contain the source code necessary to compile the software. Instead, it is a collection of files which automates the downloading, compiling and installation of third-party software packages. Chapter 5 discusses how to use the ports collection.
The installation program does not check to see if you have adequate space. Select this option only if you have adequate hard disk space. As of FreeBSD 9.1, the FreeBSD Ports Collection takes up about 500 MB of disk space. You can safely assume a larger value for more recent versions of FreeBSD.
User Confirmation Requested Would you like to install the FreeBSD ports collection? This will give you ready access to over 24,000 ported software packages, at a cost of around 500 MB of disk space when "clean" and possibly much more than that if a lot of the distribution tarballs are loaded (unless you have the extra CDs from a FreeBSD CD/DVD distribution available and can mount it on /cdrom, in which case this is far less of a problem). The Ports Collection is a very valuable resource and well worth having on your /usr partition, so it is advisable to say Yes to this option. For more information on the Ports Collection & the latest ports, visit: http://www.FreeBSD.org/ports [ Yes ] No
Select
with the arrow keys to install the Ports Collection or to skip this option. Press Enter to continue. The Choose Distributions menu will redisplay.If satisfied with the options, select
with the arrow keys, ensure that is highlighted, and pressing Enter to continue.If Installing from a CDROM or DVD, use the arrow keys to highlight
. Ensure that is highlighted, then press Enter to proceed with the installation.For other methods of installation, select the appropriate option and follow the instructions.
Press F1 to display the Online Help for installation media. Press Enter to return to the media selection menu.
FTP Installation Modes: There are three FTP installation modes you can choose from: active FTP, passive FTP, or via a HTTP proxy.
- FTP Active:
This option will make all FTP transfers use “Active” mode. This will not work through firewalls, but will often work with older FTP servers that do not support passive mode. If your connection hangs with passive mode (the default), try active!
- FTP Passive:
This option instructs sysinstall to “Passive” mode for all FTP operations. This allows the user to pass through firewalls that do not allow incoming connections on random TCP ports.
- FTP via a HTTP proxy:
This option instructs sysinstall to use the HTTP protocol (like a web browser) to connect to a proxy for all FTP operations. The proxy will translate the requests and send them to the FTP server. This allows the user to pass through firewalls that do not allow FTP at all, but offer a HTTP proxy. In this case, you have to specify the proxy in addition to the FTP server.
For a proxy FTP server, you should usually give the name of the server you really want as a part of the username, after an “@” sign. The proxy server then “fakes” the real server. For example, assuming you want to install from ftp.FreeBSD.org, using the proxy FTP server foo.example.com, listening on port 1234.
In this case, you go to the options menu, set the FTP username to [email protected], and the password to your email address. As your installation media, you specify FTP (or passive FTP, if the proxy supports it), and the URL ftp://foo.example.com:1234/pub/FreeBSD.
Since /pub/FreeBSD from ftp.FreeBSD.org is proxied under foo.example.com, you are able to install from that machine (which will fetch the files from ftp.FreeBSD.org as your installation requests them).
The installation can now proceed if desired. This is also the last chance for aborting the installation to prevent changes to the hard drive.
User Confirmation Requested Last Chance! Are you SURE you want to continue the installation? If you're running this on a disk with data you wish to save then WE STRONGLY ENCOURAGE YOU TO MAKE PROPER BACKUPS before proceeding! We can take no responsibility for lost disk contents! [ Yes ] No
Select
and press Enter to proceed.The installation time will vary according to the distribution chosen, installation media, and the speed of the computer. There will be a series of messages displayed indicating the status.
The installation is complete when the following message is displayed:
Message Congratulations! You now have FreeBSD installed on your system. We will now move on to the final configuration questions. For any option you do not wish to configure, simply select No. If you wish to re-enter this utility after the system is up, you may do so by typing: /usr/sbin/sysinstall. [ OK ] [ Press enter or space ]
Press Enter to proceed with post-installation configurations.
Selecting
and pressing Enter will abort the installation so no changes will be made to your system. The following message will appear:Message Installation complete with some errors. You may wish to scroll through the debugging messages on VTY1 with the scroll-lock feature. You can also choose "No" at the next prompt and go back into the installation menus to retry whichever operations have failed. [ OK ]
This message is generated because nothing was installed. Pressing Enter will return to the Main Installation Menu to exit the installation.
Configuration of various options follows the successful installation. An option can be configured by re-entering the configuration options before booting the new FreeBSD system or after installation using sysinstall and selecting
.If you previously configured PPP for an FTP install, this screen will not display and can be configured later as described above.
For detailed information on Local Area Networks and configuring FreeBSD as a gateway/router refer to the Advanced Networking chapter.
User Confirmation Requested Would you like to configure any Ethernet or PPP network devices? [ Yes ] No
To configure a network device, select
and press Enter. Otherwise, select to continue.Select the interface to be configured with the arrow keys and press Enter.
User Confirmation Requested Do you want to try IPv6 configuration of the interface? Yes [ No ]
In this private local area network, the current Internet type protocol (IPv4) was sufficient and
was selected with the arrow keys and Enter pressed.If you are connected to an existing IPv6 network with an RA server, then choose
and press Enter. It will take several seconds to scan for RA servers.User Confirmation Requested Do you want to try DHCP configuration of the interface? Yes [ No ]
If DHCP (Dynamic Host Configuration Protocol) is not required select
with the arrow keys and press Enter.Selecting Section 30.5 for more information.
will execute dhclient, and if successful, will fill in the network configuration information automatically. Refer toThe following Network Configuration screen shows the configuration of the Ethernet device for a system that will act as the gateway for a Local Area Network.
Use Tab to select the information fields and fill in appropriate information:
The fully-qualified hostname, such as k6-2.example.com in this case.
The name of the domain that your machine is in, such as example.com for this case.
IP address of host forwarding packets to non-local destinations. You must fill this in if the machine is a node on the network. Leave this field blank if the machine is the gateway to the Internet for the network. The IPv4 Gateway is also known as the default gateway or default route.
IP address of your local DNS server. There is no local DNS server on this private local area network so the IP address of the provider's DNS server (208.163.10.2) was used.
The IP address to be used for this interface was 192.168.0.1
The address block being used for this local area network is 192.168.0.0 - 192.168.0.255 with a netmask of 255.255.255.0.
Any interface-specific options to ifconfig you would like to add. There were none in this case.
Use Tab to select
when finished and press Enter.User Confirmation Requested Would you like to bring the ed0 interface up right now? [ Yes ] No
Choosing
and pressing Enter will bring the machine up on the network and be ready for use. However, this does not accomplish much during installation, since the machine still needs to be rebooted.User Confirmation Requested Do you want this machine to function as a network gateway? [ Yes ] No
If the machine will be acting as the gateway for a local area network and forwarding packets between other machines then select
and press Enter. If the machine is a node on a network then select and press Enter to continue.User Confirmation Requested Do you want to configure inetd and the network services that it provides? Yes [ No ]
If
is selected, various services such telnetd will not be enabled. This means that remote users will not be able to telnet into this machine. Local users will still be able to access remote machines with telnet.These services can be enabled after installation by editing /etc/inetd.conf with your favorite text editor. See Section 30.2.1 for more information.
Select
if you wish to configure these services during install. An additional confirmation will display:User Confirmation Requested The Internet Super Server (inetd) allows a number of simple Internet services to be enabled, including finger, ftp and telnetd. Enabling these services may increase risk of security problems by increasing the exposure of your system. With this in mind, do you wish to enable inetd? [ Yes ] No
Select
to continue.User Confirmation Requested inetd(8) relies on its configuration file, /etc/inetd.conf, to determine which of its Internet services will be available. The default FreeBSD inetd.conf(5) leaves all services disabled by default, so they must be specifically enabled in the configuration file before they will function, even once inetd(8) is enabled. Note that services for IPv6 must be separately enabled from IPv4 services. Select [Yes] now to invoke an editor on /etc/inetd.conf, or [No] to use the current settings. [ Yes ] No
Selecting
will allow adding services by deleting the # at the beginning of a line.After adding the desired services, pressing Esc will display a menu which will allow exiting and saving the changes.
User Confirmation Requested Would you like to enable SSH login? Yes [ No ]
Selecting sshd(8), the daemon program for OpenSSH. This will allow secure remote access to your machine. For more information about OpenSSH see Section 15.10.
will enableUser Confirmation Requested Do you want to have anonymous FTP access to this machine? Yes [ No ]
Selecting the default
and pressing Enter will still allow users who have accounts with passwords to use FTP to access the machine.Anyone can access your machine if you elect to allow anonymous FTP connections. The security implications should be considered before enabling this option. For more information about security see Chapter 15.
To allow anonymous FTP, use the arrow keys to select
and press Enter. An additional confirmation will display:User Confirmation Requested Anonymous FTP permits un-authenticated users to connect to the system FTP server, if FTP service is enabled. Anonymous users are restricted to a specific subset of the file system, and the default configuration provides a drop-box incoming directory to which uploads are permitted. You must separately enable both inetd(8), and enable ftpd(8) in inetd.conf(5) for FTP services to be available. If you did not do so earlier, you will have the opportunity to enable inetd(8) again later. If you want the server to be read-only you should leave the upload directory option empty and add the -r command-line option to ftpd(8) in inetd.conf(5) Do you wish to continue configuring anonymous FTP? [ Yes ] No
This message informs you that the FTP service will also have to be enabled in /etc/inetd.conf if you want to allow anonymous FTP connections, see Section 3.10.3. Select and press Enter to continue; the following screen will display:
Use Tab to select the information fields and fill in appropriate information:
The user ID you wish to assign to the anonymous FTP user. All files uploaded will be owned by this ID.
Which group you wish the anonymous FTP user to be in.
String describing this user in /etc/passwd.
Where files available for anonymous FTP will be kept.
Where files uploaded by anonymous FTP users will go.
The FTP root directory will be put in /var by default. If you do not have enough room there for the anticipated FTP needs, the /usr directory could be used by setting the FTP root directory to /usr/ftp.
When you are satisfied with the values, press Enter to continue.
User Confirmation Requested Create a welcome message file for anonymous FTP users? [ Yes ] No
If you select
and press Enter, an editor will automatically start allowing you to edit the message.This is a text editor called ee. Use the instructions to change the message or change the message later using a text editor of your choice. Note the file name/location at the bottom of the editor screen.
Press Esc and a pop-up menu will default to
. Press Enter to exit and continue. Press Enter again to save changes if you made any.Network File System (NFS) allows sharing of files across a network. A machine can be configured as a server, a client, or both. Refer to Section 30.3 for a more information.
User Confirmation Requested Do you want to configure this machine as an NFS server? Yes [ No ]
If there is no need for a Network File System server, select
and press Enter.If
is chosen, a message will pop-up indicating that the exports file must be created.Message Operating as an NFS server means that you must first configure an /etc/exports file to indicate which hosts are allowed certain kinds of access to your local filesystems. Press [Enter] now to invoke an editor on /etc/exports [ OK ]
Press Enter to continue. A text editor will start allowing the exports file to be created and edited.
Use the instructions to add the actual exported filesystems now or later using a text editor of your choice. Note the file name/location at the bottom of the editor screen.
Press Esc and a pop-up menu will default to
. Press Enter to exit and continue.The NFS client allows your machine to access NFS servers.
User Confirmation Requested Do you want to configure this machine as an NFS client? Yes [ No ]
With the arrow keys, select
or as appropriate and press Enter.There are several options available to customize the system console.
User Confirmation Requested Would you like to customize your system console settings? [ Yes ] No
To view and configure the options, select
and press Enter.A commonly used option is the screen saver. Use the arrow keys to select
and then press Enter.Select the desired screen saver using the arrow keys and then press Enter. The System Console Configuration menu will redisplay.
The default time interval is 300 seconds. To change the time interval, select
again. At the Screen Saver Options menu, select using the arrow keys and press Enter. A pop-up menu will appear:The value can be changed, then select
and press Enter to return to the System Console Configuration menu.Selecting
and pressing Enter will continue with the post-installation configurations.Setting the time zone for your machine will allow it to automatically correct for any regional time changes and perform other time zone related functions properly.
The example shown is for a machine located in the Eastern time zone of the United States. Your selections will vary according to your geographical location.
User Confirmation Requested Would you like to set this machine's time zone now? [ Yes ] No
Select
and press Enter to set the time zone.User Confirmation Requested Is this machine's CMOS clock set to UTC? If it is set to local time or you don't know, please choose NO here! Yes [ No ]
Select
or according to how the machine's clock is configured and press Enter.The appropriate region is selected using the arrow keys and then pressing Enter.
Select the appropriate country using the arrow keys and press Enter.
The appropriate time zone is selected using the arrow keys and pressing Enter.
Confirmation Does the abbreviation 'EDT' look reasonable? [ Yes ] No
Confirm the abbreviation for the time zone is correct. If it looks okay, press Enter to continue with the post-installation configuration.
Note: This part only applies to FreeBSD 7.X installation, if you install FreeBSD 8.X this screen will not be proposed.
User Confirmation Requested Would you like to enable Linux binary compatibility? [ Yes ] No
Selecting
and pressing Enter will allow running Linux software on FreeBSD. The install will add the appropriate packages for Linux compatibility.If installing by FTP, the machine will need to be connected to the Internet. Sometimes a remote ftp site will not have all the distributions like the Linux binary compatibility. This can be installed later if necessary.
This option will allow you to cut and paste text in the console and user programs with a 3-button mouse. If using a 2-button mouse, refer to manual page, moused(8), after installation for details on emulating the 3-button style. This example depicts a non-USB mouse configuration (such as a PS/2 or COM port mouse):
User Confirmation Requested Does this system have a PS/2, serial, or bus mouse? [ Yes ] No
Select
for a PS/2, serial or bus mouse, or for a USB mouse and press Enter.Use the arrow keys to select
and press Enter.The mouse used in this example is a PS/2 type, so the default
was appropriate. To change protocol, use the arrow keys to select another option. Ensure that is highlighted and press Enter to exit this menu.Use the arrow keys to select
and press Enter.This system had a PS/2 mouse, so the default
was appropriate. To change the port, use the arrow keys and then press Enter.Last, use the arrow keys to select
, and press Enter to enable and test the mouse daemon.Move the mouse around the screen and verify the cursor shown responds properly. If it does, select
and press Enter. If not, the mouse has not been configured correctly — select and try using different configuration options.Select
with the arrow keys and press Enter to return to continue with the post-installation configuration.Packages are pre-compiled binaries and are a convenient way to install software.
Installation of one package is shown for purposes of illustration. Additional packages can also be added at this time if desired. After installation sysinstall can be used to add additional packages.
User Confirmation Requested The FreeBSD package collection is a collection of hundreds of ready-to-run applications, from text editors to games to WEB servers and more. Would you like to browse the collection now? [ Yes ] No
Selecting
and pressing Enter will be followed by the Package Selection screens:Only packages on the current installation media are available for installation at any given time.
All packages available will be displayed if
is selected or you can select a particular category. Highlight your selection with the arrow keys and press Enter.A menu will display showing all the packages available for the selection made:
The bash shell is shown selected. Select as many as desired by highlighting the package and pressing the Space key. A short description of each package will appear in the lower left corner of the screen.
Pressing the Tab key will toggle between the last selected package,
, and .When you have finished marking the packages for installation, press Tab once to toggle to the
and press Enter to return to the Package Selection menu.The left and right arrow keys will also toggle between
and . This method can also be used to select and press Enter to return to the Package Selection menu.Use the Tab and arrow keys to select
and press Enter. You will then need to confirm that you want to install the packages:Selecting
and pressing Enter will start the package installation. Installing messages will appear until completed. Make note if there are any error messages.The final configuration continues after packages are installed. If you end up not selecting any packages, and wish to return to the final configuration, select
anyways.You should add at least one user during the installation so that you can use the system without being logged in as root. The root partition is generally small and running applications as root can quickly fill it. A bigger danger is noted below:
User Confirmation Requested Would you like to add any initial user accounts to the system? Adding at least one account for yourself at this stage is suggested since working as the "root" user is dangerous (it is easy to do things which adversely affect the entire system). [ Yes ] No
Select
and press Enter to continue with adding a user.Select
with the arrow keys and press Enter.The following descriptions will appear in the lower part of the screen as the items are selected with Tab to assist with entering the required information:
The login name of the new user (mandatory).
The numerical ID for this user (leave blank for automatic choice).
The login group name for this user (leave blank for automatic choice).
The password for this user (enter this field with care!).
The user's full name (comment).
The groups this user belongs to (i.e., gets access rights for).
The user's home directory (leave blank for default).
The user's login shell (leave blank for default, e.g., /bin/sh).
The login shell was changed from /bin/sh to /usr/local/bin/bash to use the bash shell that was previously installed as a package. Do not try to use a shell that does not exist or you will not be able to login. The most common shell used in the BSD-world is the C shell, which can be indicated as /bin/tcsh.
The user was also added to the wheel group to be able to become a superuser with root privileges.
When you are satisfied, press
and the User and Group Management menu will redisplay:Groups can also be added at this time if specific needs are known. Otherwise, this may be accessed through using sysinstall after installation is completed.
When you are finished adding users, select
with the arrow keys and press Enter to continue the installation.Message Now you must set the system manager's password. This is the password you'll use to log in as "root". [ OK ] [ Press enter or space ]
Press Enter to set the root password.
The password will need to be typed in twice correctly. Needless to say, make sure you have a way of finding the password if you forget. Notice that the password you type in is not echoed, nor are asterisks displayed.
New password: Retype new password :
The installation will continue after the password is successfully entered.
If you need to configure additional network services or any other configuration, you can do it at this point or after installation with sysinstall.
User Confirmation Requested Visit the general configuration menu for a chance to set any last options? Yes [ No ]
Select
with the arrow keys and press Enter to return to the Main Installation Menu.Select
with the arrow keys and press Enter. You will be asked to confirm exiting the installation:User Confirmation Requested Are you sure you wish to exit? The system will reboot. [ Yes ] No
Select
. If you are booting from the CDROM drive the following message will remind you to remove the disk:Message Be sure to remove the media from the drive. [ OK ] [ Press enter or space ]
The CDROM drive is locked until the machine starts to reboot then the disk can be removed from drive (quickly). Press
to reboot.The system will reboot so watch for any error messages that may appear, see Section 3.10.16 for more details.
Configuring network services can be a daunting task for new users if they lack previous knowledge in this area. Networking, including the Internet, is critical to all modern operating systems including FreeBSD; as a result, it is very useful to have some understanding FreeBSD's extensive networking capabilities. Doing this during the installation will ensure users have some understanding of the various services available to them.
Network services are programs that accept input from anywhere on the network. Every effort is made to make sure these programs will not do anything “harmful”. Unfortunately, programmers are not perfect and through time there have been cases where bugs in network services have been exploited by attackers to do bad things. It is important that you only enable the network services you know that you need. If in doubt it is best if you do not enable a network service until you find out that you do need it. You can always enable it later by re-running sysinstall or by using the features provided by the /etc/rc.conf file.
Selecting the
option will display a menu similar to the one below:The first option, Section 3.10.1, thus this option can safely be ignored.
, was previously covered during theSelecting the
option adds support for the BSD automatic mount utility. This is usually used in conjunction with the NFS protocol (see below) for automatically mounting remote file systems. No special configuration is required here.Next in line is the
option. When selected, a menu will pop up for you to enter specific AMD flags. The menu already contains a set of default options:-a /.amd_mnt -l syslog /host /etc/amd.map /net /etc/amd.map
The -a
option sets the default mount location which
is specified here as /.amd_mnt. The -l
option specifies the default log
file; however, when syslogd is used all log activity
will be sent to the system log daemon. The /host directory
is used to mount an exported file system from a remote host, while /net directory is used to mount an exported file system from
an IP address. The /etc/amd.map file defines the default options for AMD exports.
The
option permits anonymous FTP connections. Select this option to make this machine an anonymous FTP server. Be aware of the security risks involved with this option. Another menu will be displayed to explain the security risks and configuration in depth.The
configuration menu will set the machine up to be a gateway as explained previously. This can be used to unset the option if you accidentally selected it during the installation process.The inetd(8) daemon as discussed above.
option can be used to configure or completely disable theThe
option is used to configure the system's default MTA or Mail Transfer Agent. Selecting this option will bring up the following menu:Here you are offered a choice as to which MTA to install and set as the default. An MTA is nothing more than a mail server which delivers email to users on the system or the Internet.
Selecting
will install the popular sendmail server which is the FreeBSD default. The option will set sendmail to be the default MTA, but disable its ability to receive incoming email from the Internet. The other options here, and act similar to . They both deliver email; however, some users prefer these alternatives to the sendmail MTA.After selecting an MTA, or choosing not to select an MTA, the network configuration menu will appear with the next option being
.The Section 30.3 for more information about client and server configuration.
option will configure the system to communicate with a server via NFS. An NFS server makes file systems available to other machines on the network via the NFS protocol. If this is a stand-alone machine, this option can remain unselected. The system may require more configuration later; seeBelow that option is the
option, permitting you to set the system up as an NFS server. This adds the required information to start up the RPC remote procedure call services. RPC is used to coordinate connections between hosts and programs.Next in line is the
option, which deals with time synchronization. When selected, a menu like the one below shows up:From this menu, select the server which is the closest to your location. Selecting a close one will make the time synchronization more accurate as a server further from your location may have more connection latency.
The next option is the PCNFSD selection. This option will install the net/pcnfsd package from the Ports Collection. This is a useful utility which provides NFS authentication services for systems which are unable to provide their own, such as Microsoft's MS-DOS operating system.
Now you must scroll down a bit to see the other options:
The rpcbind(8), rpc.statd(8), and rpc.lockd(8) utilities are all used for Remote Procedure Calls (RPC). The rpcbind utility manages communication between NFS servers and clients, and is required for NFS servers to operate correctly. The rpc.statd daemon interacts with the rpc.statd daemon on other hosts to provide status monitoring. The reported status is usually held in the /var/db/statd.status file. The next option listed here is the option, which, when selected, will provide file locking services. This is usually used with rpc.statd to monitor what hosts are requesting locks and how frequently they request them. While these last two options are marvelous for debugging, they are not required for NFS servers and clients to operate correctly.
As you progress down the list the next item here is routed(8) utility
manages network routing tables, discovers multicast routers, and supplies a copy of
the routing tables to any physically connected host on the network upon
request. This is mainly used for machines which act as a gateway for the local
network. When selected, a menu will be presented requesting the default location of
the utility. The default location is already defined for you and can be
selected with the Enter key. You will then be presented
with yet another menu, this time asking for the flags you wish to pass on to routed. The default is -q
and it
should already appear on the screen.
Next in line is the rwhod(8) daemon during system initialization. The rwhod utility broadcasts system messages across the network periodically, or collects them when in “consumer” mode. More information can be found in the ruptime(1) and rwho(1) manual pages.
option which, when selected, will start theThe next to the last option in the list is for the sshd(8) daemon. This is the secure shell server for OpenSSH and it is highly recommended over the standard telnet and FTP servers. The sshd server is used to create a secure connection from one host to another by using encrypted connections.
Finally there is the
option. This enables the TCP Extensions defined in RFC 1323 and RFC 1644. While on many hosts this can speed up connections, it can also cause some connections to be dropped. It is not recommended for servers, but may be beneficial for stand alone machines.Now that you have configured the network services, you can scroll up to the very top item which is
and continue on to the next configuration item or simply exit sysinstall in selecting twice then .If everything went well, you will see messages scroll off the screen and you will arrive at a login prompt. You can view the content of the messages by pressing Scroll-Lock and using PgUp and PgDn. Pressing Scroll-Lock again will return to the prompt.
The entire message may not display (buffer limitation) but it can be viewed from the command line after logging in by typing dmesg at the prompt.
Login using the username/password you set during installation (rpratt, in this example). Avoid logging in as root except when necessary.
Typical boot messages (version information omitted):
Copyright (c) 1992-2002 The FreeBSD Project. Copyright (c) 1979, 1980, 1983, 1986, 1988, 1989, 1991, 1992, 1993, 1994 The Regents of the University of California. All rights reserved. Timecounter "i8254" frequency 1193182 Hz CPU: AMD-K6(tm) 3D processor (300.68-MHz 586-class CPU) Origin = "AuthenticAMD" Id = 0x580 Stepping = 0 Features=0x8001bf<FPU,VME,DE,PSE,TSC,MSR,MCE,CX8,MMX> AMD Features=0x80000800<SYSCALL,3DNow!> real memory = 268435456 (262144K bytes) config> di sn0 config> di lnc0 config> di le0 config> di ie0 config> di fe0 config> di cs0 config> di bt0 config> di aic0 config> di aha0 config> di adv0 config> q avail memory = 256311296 (250304K bytes) Preloaded elf kernel "kernel" at 0xc0491000. Preloaded userconfig_script "/boot/kernel.conf" at 0xc049109c. md0: Malloc disk Using $PIR table, 4 entries at 0xc00fde60 npx0: <math processor> on motherboard npx0: INT 16 interface pcib0: <Host to PCI bridge> on motherboard pci0: <PCI bus> on pcib0 pcib1: <VIA 82C598MVP (Apollo MVP3) PCI-PCI (AGP) bridge> at device 1.0 on pci0 pci1: <PCI bus> on pcib1 pci1: <Matrox MGA G200 AGP graphics accelerator> at 0.0 irq 11 isab0: <VIA 82C586 PCI-ISA bridge> at device 7.0 on pci0 isa0: <ISA bus> on isab0 atapci0: <VIA 82C586 ATA33 controller> port 0xe000-0xe00f at device 7.1 on pci0 ata0: at 0x1f0 irq 14 on atapci0 ata1: at 0x170 irq 15 on atapci0 uhci0: <VIA 83C572 USB controller> port 0xe400-0xe41f irq 10 at device 7.2 on pci0 usb0: <VIA 83C572 USB controller> on uhci0 usb0: USB revision 1.0 uhub0: VIA UHCI root hub, class 9/0, rev 1.00/1.00, addr 1 uhub0: 2 ports with 2 removable, self powered chip1: <VIA 82C586B ACPI interface> at device 7.3 on pci0 ed0: <NE2000 PCI Ethernet (RealTek 8029)> port 0xe800-0xe81f irq 9 at device 10.0 on pci0 ed0: address 52:54:05:de:73:1b, type NE2000 (16 bit) isa0: too many dependant configs (8) isa0: unexpected small tag 14 fdc0: <NEC 72065B or clone> at port 0x3f0-0x3f5,0x3f7 irq 6 drq 2 on isa0 fdc0: FIFO enabled, 8 bytes threshold fd0: <1440-KB 3.5" drive> on fdc0 drive 0 atkbdc0: <keyboard controller (i8042)> at port 0x60-0x64 on isa0 atkbd0: <AT Keyboard> flags 0x1 irq 1 on atkbdc0 kbd0 at atkbd0 psm0: <PS/2 Mouse> irq 12 on atkbdc0 psm0: model Generic PS/2 mouse, device ID 0 vga0: <Generic ISA VGA> at port 0x3c0-0x3df iomem 0xa0000-0xbffff on isa0 sc0: <System console> at flags 0x1 on isa0 sc0: VGA <16 virtual consoles, flags=0x300> sio0 at port 0x3f8-0x3ff irq 4 flags 0x10 on isa0 sio0: type 16550A sio1 at port 0x2f8-0x2ff irq 3 on isa0 sio1: type 16550A ppc0: <Parallel port> at port 0x378-0x37f irq 7 on isa0 ppc0: SMC-like chipset (ECP/EPP/PS2/NIBBLE) in COMPATIBLE mode ppc0: FIFO with 16/16/15 bytes threshold ppbus0: IEEE1284 device found /NIBBLE Probing for PnP devices on ppbus0: plip0: <PLIP network interface> on ppbus0 lpt0: <Printer> on ppbus0 lpt0: Interrupt-driven port ppi0: <Parallel I/O> on ppbus0 ad0: 8063MB <IBM-DHEA-38451> [16383/16/63] at ata0-master using UDMA33 ad2: 8063MB <IBM-DHEA-38451> [16383/16/63] at ata1-master using UDMA33 acd0: CDROM <DELTA OTC-H101/ST3 F/W by OIPD> at ata0-slave using PIO4 Mounting root from ufs:/dev/ad0s1a swapon: adding /dev/ad0s1b as swap device Automatic boot in progress... /dev/ad0s1a: FILESYSTEM CLEAN; SKIPPING CHECKS /dev/ad0s1a: clean, 48752 free (552 frags, 6025 blocks, 0.9% fragmentation) /dev/ad0s1f: FILESYSTEM CLEAN; SKIPPING CHECKS /dev/ad0s1f: clean, 128997 free (21 frags, 16122 blocks, 0.0% fragmentation) /dev/ad0s1g: FILESYSTEM CLEAN; SKIPPING CHECKS /dev/ad0s1g: clean, 3036299 free (43175 frags, 374073 blocks, 1.3% fragmentation) /dev/ad0s1e: filesystem CLEAN; SKIPPING CHECKS /dev/ad0s1e: clean, 128193 free (17 frags, 16022 blocks, 0.0% fragmentation) Doing initial network setup: hostname. ed0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> mtu 1500 inet 192.168.0.1 netmask 0xffffff00 broadcast 192.168.0.255 inet6 fe80::5054::5ff::fede:731b%ed0 prefixlen 64 tentative scopeid 0x1 ether 52:54:05:de:73:1b lo0: flags=8049<UP,LOOPBACK,RUNNING,MULTICAST> mtu 16384 inet6 fe80::1%lo0 prefixlen 64 scopeid 0x8 inet6 ::1 prefixlen 128 inet 127.0.0.1 netmask 0xff000000 Additional routing options: IP gateway=YES TCP keepalive=YES routing daemons:. additional daemons: syslogd. Doing additional network setup:. Starting final network daemons: creating ssh RSA host key Generating public/private rsa1 key pair. Your identification has been saved in /etc/ssh/ssh_host_key. Your public key has been saved in /etc/ssh/ssh_host_key.pub. The key fingerprint is: cd:76:89:16:69:0e:d0:6e:f8:66:d0:07:26:3c:7e:2d [email protected] creating ssh DSA host key Generating public/private dsa key pair. Your identification has been saved in /etc/ssh/ssh_host_dsa_key. Your public key has been saved in /etc/ssh/ssh_host_dsa_key.pub. The key fingerprint is: f9:a1:a9:47:c4:ad:f9:8d:52:b8:b8:ff:8c:ad:2d:e6 [email protected]. setting ELF ldconfig path: /usr/lib /usr/lib/compat /usr/X11R6/lib /usr/local/lib a.out ldconfig path: /usr/lib/aout /usr/lib/compat/aout /usr/X11R6/lib/aout starting standard daemons: inetd cron sshd usbd sendmail. Initial rc.i386 initialization:. rc.i386 configuring syscons: blank_time screensaver moused. Additional ABI support: linux. Local package initialization:. Additional TCP options:. FreeBSD/i386 (k6-2.example.com) (ttyv0) login: rpratt Password:
Generating the RSA and DSA keys may take some time on slower machines. This happens only on the initial boot-up of a new installation. Subsequent boots will be faster.
If the X server has been configured and a Default Desktop chosen, it can be started by typing startx at the command line.
It is important to properly shutdown the operating system. Do not just turn off power. First, become a superuser by typing su at the command line and entering the root password. This will work only if the user is a member of the wheel group. Otherwise, login as root and use shutdown -h now.
The operating system has halted. Please press any key to reboot.
It is safe to turn off the power after the shutdown command has been issued and the message “Please press any key to reboot” appears. If any key is pressed instead of turning off the power switch, the system will reboot.
You could also use the Ctrl+Alt+Del key combination to reboot the system, however this is not recommended during normal operation.
The following section covers basic installation troubleshooting, such as common problems people have reported. There are also a few questions and answers for people wishing to dual-boot FreeBSD with MS-DOS or Windows.
Due to various limitations of the PC architecture, it is impossible for probing to be 100% reliable, however, there are a few things you can do if it fails.
Check the Hardware Notes document for your version of FreeBSD to make sure your hardware is supported.
If your hardware is supported and you still experience lock-ups or other problems, you will need to build a custom kernel. This will allow you to add in support for devices which are not present in the GENERIC kernel. The kernel on the boot disks is configured assuming that most hardware devices are in their factory default configuration in terms of IRQs, IO addresses, and DMA channels. If your hardware has been reconfigured, you will most likely need to edit the kernel configuration and recompile to tell FreeBSD where to find things.
It is also possible that a probe for a device not present will cause a later probe for another device that is present to fail. In that case, the probes for the conflicting driver(s) should be disabled.
Note: Some installation problems can be avoided or alleviated by updating the firmware on various hardware components, most notably the motherboard. The motherboard firmware may also be referred to as BIOS and most of the motherboard or computer manufactures have a website where the upgrades and upgrade information may be located.
Most manufacturers strongly advise against upgrading the motherboard BIOS unless there is a good reason for doing so, which could possibly be a critical update of sorts. The upgrade process can go wrong, causing permanent damage to the BIOS chip.
At this time, FreeBSD does not support file systems compressed with the Double Space™ application. Therefore the file system will need to be uncompressed before FreeBSD can access the data. This can be done by running the Compression Agent located in the
> > menu.FreeBSD can support MS-DOS file systems (sometimes called FAT file systems). The mount_msdosfs(8) command grafts such file systems onto the existing directory hierarchy, allowing the file system's contents to be accessed. The mount_msdosfs(8) program is not usually invoked directly; instead, it is called by the system through a line in /etc/fstab or by a call to the mount(8) utility with the appropriate parameters.
A typical line in /etc/fstab is:
/dev/ad0sN /dos msdosfs rw 0 0
Note: The /dos directory must already exist for this to work. For details about the format of /etc/fstab, see fstab(5).
A typical call to mount(8) for a MS-DOS file system looks like:
# mount -t msdosfs /dev/ad0s1 /mnt
In this example, the MS-DOS file system is located on the first partition of the primary hard disk. Your situation may be different, check the output from the dmesg, and mount commands. They should produce enough information to give an idea of the partition layout.
Note: FreeBSD may number disk slices (that is, MS-DOS partitions) differently than other operating systems. In particular, extended MS-DOS partitions are usually given higher slice numbers than primary MS-DOS partitions. The fdisk(8) utility can help determine which slices belong to FreeBSD and which belong to other operating systems.
NTFS partitions can also be mounted in a similar manner using the mount_ntfs(8) command.
3.11.3.1. My system hangs while probing hardware during boot, or it behaves strangely during install, or the floppy drive is not probed.
FreeBSD makes extensive use of the system ACPI service on the i386, amd64 and ia64 platforms to aid in system configuration if it is detected during boot. Unfortunately, some bugs still exist in both the ACPI driver and within system motherboards and BIOS. The use of ACPI can be disabled by setting the hint.acpi.0.disabled hint in the third stage boot loader:
set hint.acpi.0.disabled="1"
This is reset each time the system is booted, so it is necessary to add hint.acpi.0.disabled="1" to the file /boot/loader.conf. More information about the boot loader can be found in Section 13.1.
3.11.3.2. I go to boot from the hard disk for the first time after installing FreeBSD, the kernel loads and probes my hardware, but stops with messages like:
changing root device to ad1s1a panic: cannot mount root
What is wrong? What can I do?
What is this bios_drive:interface(unit,partition)kernel_name thing that is displayed with the boot help?
There is a longstanding problem in the case where the boot disk is not the first disk in the system. The BIOS uses a different numbering scheme to FreeBSD, and working out which numbers correspond to which is difficult to get right.
In the case where the boot disk is not the first disk in the system, FreeBSD can need some help finding it. There are two common situations here, and in both of these cases, you need to tell FreeBSD where the root filesystem is. You do this by specifying the BIOS disk number, the disk type and the FreeBSD disk number for that type.
The first situation is where you have two IDE disks, each configured as the master on their respective IDE busses, and wish to boot FreeBSD from the second disk. The BIOS sees these as disk 0 and disk 1, while FreeBSD sees them as ad0 and ad2.
FreeBSD is on BIOS disk 1, of type ad and the FreeBSD disk number is 2, so you would say:
1:ad(2,a)kernel
Note that if you have a slave on the primary bus, the above is not necessary (and is effectively wrong).
The second situation involves booting from a SCSI disk when you have one or more IDE disks in the system. In this case, the FreeBSD disk number is lower than the BIOS disk number. If you have two IDE disks as well as the SCSI disk, the SCSI disk is BIOS disk 2, type da and FreeBSD disk number 0, so you would say:
2:da(0,a)kernel
To tell FreeBSD that you want to boot from BIOS disk 2, which is the first SCSI disk in the system. If you only had one IDE disk, you would use 1: instead.
Once you have determined the correct values to use, you can put the command exactly as you would have typed it in the /boot.config file using a standard text editor. Unless instructed otherwise, FreeBSD will use the contents of this file as the default response to the boot: prompt.
3.11.3.3. I go to boot from the hard disk for the first time after installing FreeBSD, but the Boot Manager prompt just prints F? at the boot menu each time but the boot will not go any further.
The hard disk geometry was set incorrectly in the partition editor when you installed FreeBSD. Go back into the partition editor and specify the actual geometry of your hard disk. You must reinstall FreeBSD again from the beginning with the correct geometry.
If you are failing entirely in figuring out the correct geometry for your machine, here is a tip: Install a small MS-DOS partition at the beginning of the disk and install FreeBSD after that. The install program will see the MS-DOS partition and try to infer the correct geometry from it, which usually works.
The following tip is no longer recommended, but is left here for reference:
If you are setting up a truly dedicated FreeBSD server or workstation where you do not care for (future) compatibility with MS-DOS, Linux or another operating system, you also have got the option to use the entire disk ( in the partition editor), selecting the non-standard option where FreeBSD occupies the entire disk from the very first to the very last sector. This will leave all geometry considerations aside, but is somewhat limiting unless you're never going to run anything other than FreeBSD on a disk.
3.11.3.4. The system finds my ed(4) network card, but I keep getting device timeout errors.
Your card is probably on a different IRQ from what is specified in the /boot/device.hints file. The ed(4) driver does not use the “soft” configuration by default (values entered using EZSETUP in MS-DOS), but it will use the software configuration if you specify -1 in the hints for the interface.
Either move the jumper on the card to a hard configuration setting (altering the kernel settings if necessary), or specify the IRQ as -1 by setting the hint hint.ed.0.irq="-1". This will tell the kernel to use the soft configuration.
Another possibility is that your card is at IRQ 9, which is shared by IRQ 2 and frequently a cause of problems (especially when you have a VGA card using IRQ 2!). You should not use IRQ 2 or 9 if at all possible.
When sysinstall is used in an X11 terminal, the yellow font is difficult to read against the light gray background. Is there a way to provide higher contrast for this application?
This section describes how to install FreeBSD in exceptional cases.
This type of installation is called a “headless install”, because the machine that you are trying to install FreeBSD on either does not have a monitor attached to it, or does not even have a VGA output. How is this possible you ask? Using a serial console. A serial console is basically using another machine to act as the main display and keyboard for a system. To do this, just follow the steps to create an installation USB memstick, explained in Section 3.3.7 or download the correct installation ISO image, see Section 3.13.1.
To modify these media to boot into a serial console, follow these steps (If you want to use a CDROM you can skip the first step):
Enabling the Installation USB Stick to Boot into a Serial Console
If you were to boot into the USB stick that you just made, FreeBSD would boot into its normal install mode. We want FreeBSD to boot into a serial console for our install. To do this, you have to mount the USB disk onto your FreeBSD system using the mount(8) command.
# mount /dev/da0a /mnt
Note: Adapt the device node and the mount point to your situation.
Now that you have the stick mounted, you must set the USB stick to boot into a serial console. You have to add to the loader.conf file of the USB stick file system a line setting the serial console as the system console:
# echo 'console="comconsole"' >> /mnt/boot/loader.conf
Now that you have your USB stick configured correctly, you must unmount the disk using the umount(8) command:
# umount /mnt
Now you can unplug the USB stick and jump directly to the third step of this procedure.
Enabling the Installation CD to Boot into a Serial Console
If you were to boot into the CD that you just made from the installation ISO image (see Section 3.13.1), FreeBSD would boot into its normal install mode. We want FreeBSD to boot into a serial console for our install. To do this, you have to extract, modify and regenerate the ISO image before burning it on a CD-R media.
From the FreeBSD system where is saved the installation ISO image, for example FreeBSD-9.1-RELEASE-i386-disc1.iso, use the tar(1) utility to extract all the files:
# mkdir /path/to/headless-iso # tar -C /path/to/headless-iso -pxvf FreeBSD-9.1-RELEASE-i386-disc1.iso
Now you must set the installation media to boot into a serial console. You have to add to the loader.conf file from the extracted ISO image a line setting the serial console as the system console:
# echo 'console="comconsole"' >> /path/to/headless-iso/boot/loader.conf
Then we can create a new ISO image from the modified tree. The mkisofs(8) tool from the sysutils/cdrtools port is used:
# mkisofs -v -b boot/cdboot -no-emul-boot -r -J -V "Headless_install" \ -o Headless-FreeBSD-9.1-RELEASE-i386-disc1.iso /path/to/headless-iso
Now that you have your ISO image configured correctly, you can burn it on a CD-R with your favorite burning application.
Connecting Your Null-modem Cable
You now need to connect a null-modem cable between the two machines. Just connect the cable to the serial ports of the 2 machines. A normal serial cable will not work here, you need a null-modem cable because it has some of the wires inside crossed over.
Booting Up for the Install
It is now time to go ahead and start the install. Plug in the USB memstick on the machine you are doing the headless install on, and power on the machine. If you are using a prepared CDROM, power on the machine and insert the disk to boot on.
Connecting to Your Headless Machine
Now you have to connect to that machine with cu(1):
# cu -l /dev/cuau0
On FreeBSD 7.X use the following command instead:
# cu -l /dev/cuad0
That's it! You should now be able to control the headless machine through your cu session. It will load the kernel and then it will come up with a selection of what kind of terminal to use. Select the FreeBSD color console and proceed with your install!
Note: To prevent repetition, “FreeBSD disc” in this context means a FreeBSD CDROM or DVD that you have purchased or produced yourself.
There may be some situations in which you need to create your own FreeBSD installation media and/or source. This might be physical media, such as a tape, or a source that sysinstall can use to retrieve the files, such as a local FTP site, or an MS-DOS partition.
For example:
You have many machines connected to your local network, and one FreeBSD disc. You want to create a local FTP site using the contents of the FreeBSD disc, and then have your machines use this local FTP site instead of needing to connect to the Internet.
You have a FreeBSD disc, and FreeBSD does not recognize your CD/DVD drive, but MS-DOS / Windows does. You want to copy the FreeBSD installation files to a MS-DOS partition on the same computer, and then install FreeBSD using those files.
The computer you want to install on does not have a CD/DVD drive or a network card, but you can connect a “Laplink-style” serial or parallel cable to a computer that does.
You want to create a tape that can be used to install FreeBSD.
As part of each release, the FreeBSD project makes available at least two CDROM images (“ISO images”) per supported architecture. These images can be written (“burned”) to CDs if you have a CD writer, and then used to install FreeBSD. If you have a CD writer, and bandwidth is cheap, then this is the easiest way to install FreeBSD.
Download the Correct ISO Images
The ISO images for each release can be downloaded from ftp://ftp.FreeBSD.org/pub/FreeBSD/ISO-IMAGES-arch/version or the closest mirror. Substitute arch and version as appropriate.
That directory will normally contain the following images:
Table 3-4. FreeBSD 7.X and 8.X ISO Image Names and Meanings
Filename | Contents |
---|---|
FreeBSD-version-RELEASE-arch-bootonly.iso | This CD image allows you to start the installation process by booting from a CD-ROM drive but it does not contain the support for installing FreeBSD from the CD itself. You would need to perform a network based install (e.g. from an FTP server) after booting from this CD. |
FreeBSD-version-RELEASE-arch-dvd1.iso.gz | This DVD image contains everything necessary to install the base FreeBSD operating system, a collection of pre-built packages, and the documentation. It also supports booting into a “livefs” based rescue mode. |
FreeBSD-version-RELEASE-arch-memstick.img | This image can be written to an USB memory stick and used to do an install on machines capable of booting off USB drives. It also supports booting into a “livefs” based rescue mode. The documentation packages are provided but no other packages. This image is not available for FreeBSD 7.X. |
FreeBSD-version-RELEASE-arch-disc1.iso | This CD image contains the base FreeBSD operating system and the documentation packages but no other packages. |
FreeBSD-version-RELEASE-arch-disc2.iso | A CD image with as many third-party packages as would fit on the disc. This image is not available for FreeBSD 8.X. |
FreeBSD-version-RELEASE-arch-disc3.iso | Another CD image with as many third-party packages as would fit on the disc. This image is not available for FreeBSD 8.X. |
FreeBSD-version-RELEASE-arch-docs.iso | The FreeBSD documentation. This image is not available for FreeBSD 8.X. |
FreeBSD-version-RELEASE-arch-livefs.iso | This CD image contains support for booting into a “livefs” based rescue mode but does not support doing an install from the CD itself. |
Note: FreeBSD 7.X releases before FreeBSD 7.3 and FreeBSD 8.0 used a different naming convention. The names of their ISO images are not prefixed with FreeBSD-.
You must download one of either the bootonly ISO image, or the image of disc1. Do not download both of them, since the disc1 image contains everything that the bootonly ISO image contains.
Use the bootonly ISO if Internet access is cheap for you. It will let you install FreeBSD, and you can then install third-party packages by downloading them using the ports/packages system (see Chapter 5) as necessary.
Use the image of dvd1 if you want to install a FreeBSD release and want a reasonable selection of third-party packages on the disc as well.
The additional disc images are useful, but not essential, especially if you have high-speed access to the Internet.
Write the CDs
You must then write the CD images to disc. If you will be doing this on another FreeBSD system then see Section 19.6 for more information (in particular, Section 19.6.3 and Section 19.6.4).
If you will be doing this on another platform then you will need to use whatever utilities exist to control your CD writer on that platform. The images provided are in the standard ISO format, which many CD writing applications support.
Note: If you are interested in building a customized release of FreeBSD, please see the Release Engineering Article.
FreeBSD discs are laid out in the same way as the FTP site. This makes it very easy for you to create a local FTP site that can be used by other machines on your network when installing FreeBSD.
On the FreeBSD computer that will host the FTP site, ensure that the CDROM is in the drive, and mounted on /cdrom.
# mount /cdrom
Create an account for anonymous FTP in /etc/passwd. Do this by editing /etc/passwd using vipw(8) and adding this line:
ftp:*:99:99::0:0:FTP:/cdrom:/nonexistent
Ensure that the FTP service is enabled in /etc/inetd.conf.
Anyone with network connectivity to your machine can now chose a media type of FTP and type in ftp://your machine after picking “Other” in the FTP sites menu during the install.
Note: If the boot media (floppy disks, usually) for your FTP clients is not precisely the same version as that provided by the local FTP site, then sysinstall will not let you complete the installation. If the versions are not similar and you want to override this, you must go into the
menu and change distribution name to .
Warning: This approach is OK for a machine that is on your local network, and that is protected by your firewall. Offering up FTP services to other machines over the Internet (and not your local network) exposes your computer to the attention of crackers and other undesirables. We strongly recommend that you follow good security practices if you do this.
If you must install from floppy disk (which we suggest you do not do), either due to unsupported hardware or simply because you insist on doing things the hard way, you must first prepare some floppies for the installation.
At a minimum, you will need as many 1.44 MB floppies as it takes to hold all the files in the base (base distribution) directory. If you are preparing the floppies from MS-DOS, then they must be formatted using the MS-DOS FORMAT command. If you are using Windows, use Explorer to format the disks (right-click on the A: drive, and select “Format”).
Do not trust factory pre-formatted floppies. Format them again yourself, just to be sure. Many problems reported by our users in the past have resulted from the use of improperly formatted media, which is why we are making a point of it now.
If you are creating the floppies on another FreeBSD machine, a format is still not a bad idea, though you do not need to put a MS-DOS filesystem on each floppy. You can use the bsdlabel and newfs commands to put a UFS filesystem on them instead, as the following sequence of commands (for a 3.5" 1.44 MB floppy) illustrates:
# fdformat -f 1440 fd0.1440 # bsdlabel -w fd0.1440 floppy3 # newfs -t 2 -u 18 -l 1 -i 65536 /dev/fd0
Then you can mount and write to them like any other filesystem.
After you have formatted the floppies, you will need to copy the files to them. The distribution files are split into chunks conveniently sized so that five of them will fit on a conventional 1.44 MB floppy. Go through all your floppies, packing as many files as will fit on each one, until you have all of the distributions you want packed up in this fashion. Each distribution should go into a subdirectory on the floppy, e.g.: a:\base\base.aa, a:\base\base.ab, and so on.
Important: The base.inf file also needs to go on the first floppy of the base set since it is read by the installation program in order to figure out how many additional pieces to look for when fetching and concatenating the distribution.
Once you come to the Media screen during the install process, select
and you will be prompted for the rest.To prepare for an installation from an MS-DOS partition, copy the files from the distribution into a directory called freebsd in the root directory of the partition. For example, c:\freebsd. The directory structure of the CDROM or FTP site must be partially reproduced within this directory, so we suggest using the MS-DOS xcopy command if you are copying it from a CD. For example, to prepare for a minimal installation of FreeBSD:
C:\> md c:\freebsd C:\> xcopy e:\bin c:\freebsd\bin\ /s C:\> xcopy e:\manpages c:\freebsd\manpages\ /s
Assuming that C: is where you have free space and E: is where your CDROM is mounted.
If you do not have a CDROM drive, you can download the distribution from ftp.FreeBSD.org. Each distribution is in its own directory; for example, the base distribution can be found in the 9.1/base/ directory.
For as many distributions you wish to install from an MS-DOS partition (and you have the free space for), install each one under c:\freebsd — the BIN distribution is the only one required for a minimum installation.
Installing from tape is probably the easiest method, short of an online FTP install or CDROM install. The installation program expects the files to be simply tarred onto the tape. After getting all of the distribution files you are interested in, simply tar them onto the tape:
# cd /freebsd/distdir # tar cvf /dev/rwt0 dist1 ... dist2
When you perform the installation, you should make sure that you leave enough room in some temporary directory (which you will be allowed to choose) to accommodate the full contents of the tape you have created. Due to the non-random access nature of tapes, this method of installation requires quite a bit of temporary storage.
Note: When starting the installation, the tape must be in the drive before booting from the boot floppy. The installation probe may otherwise fail to find it.
There are three types of network installations available. Ethernet (a standard Ethernet controller), Serial port (PPP), or Parallel port (PLIP (laplink cable)).
For the fastest possible network installation, an Ethernet adapter is always a good choice! FreeBSD supports most common PC Ethernet cards; a table of supported cards (and their required settings) is provided in the Hardware Notes for each release of FreeBSD. If you are using one of the supported PCMCIA Ethernet cards, also be sure that it is plugged in before the laptop is powered on! FreeBSD does not, unfortunately, currently support hot insertion of PCMCIA cards during installation.
You will also need to know your IP address on the network, the netmask value for your address class, and the name of your machine. If you are installing over a PPP connection and do not have a static IP, fear not, the IP address can be dynamically assigned by your ISP. Your system administrator can tell you which values to use for your particular network setup. If you will be referring to other hosts by name rather than IP address, you will also need a name server and possibly the address of a gateway (if you are using PPP, it is your provider's IP address) to use in talking to it. If you want to install by FTP via a HTTP proxy, you will also need the proxy's address. If you do not know the answers to all or most of these questions, then you should really probably talk to your system administrator or ISP before trying this type of installation.
If you are using a modem, then PPP is almost certainly your only choice. Make sure that you have your service provider's information handy as you will need to know it fairly early in the installation process.
If you use PAP or CHAP to connect your ISP (in other words, if you can connect to the ISP in Windows without using a script), then all you will need to do is type in dial at the ppp prompt. Otherwise, you will need to know how to dial your ISP using the “AT commands” specific to your modem, as the PPP dialer provides only a very simple terminal emulator. Please refer to the user-ppp handbook and FAQ entries for further information. If you have problems, logging can be directed to the screen using the command set log local ....
If a hard-wired connection to another FreeBSD machine is available, you might also consider installing over a “laplink” parallel port cable. The data rate over the parallel port is much higher than what is typically possible over a serial line (up to 50 kbytes/sec), thus resulting in a quicker installation.
The NFS installation is fairly straight-forward. Simply copy the FreeBSD distribution files you want onto an NFS server and then point the NFS media selection at it.
If this server supports only “privileged port” (as is generally the default for Sun workstations), you will need to set the option NFS Secure in the
menu before installation can proceed.If you have a poor quality Ethernet card which suffers from very slow transfer rates, you may also wish to toggle the NFS Slow flag.
In order for NFS installation to work, the server must support subdir mounts, for example, if your FreeBSD 9.1 distribution directory lives on: ziggy:/usr/archive/stuff/FreeBSD, then ziggy will have to allow the direct mounting of /usr/archive/stuff/FreeBSD, not just /usr or /usr/archive/stuff.
In FreeBSD's /etc/exports file, this is controlled by
the -alldirs
options. Other NFS servers may have
different conventions. If you are getting “permission
denied” messages from the server, then it is likely that you do not have
this enabled properly.
The following chapter will cover the basic commands and functionality of the FreeBSD operating system. Much of this material is relevant for any UNIX-like operating system. Feel free to skim over this chapter if you are familiar with the material. If you are new to FreeBSD, then you will definitely want to read through this chapter carefully.
After reading this chapter, you will know:
How to use the “virtual consoles” of FreeBSD.
How UNIX file permissions work along with understanding file flags in FreeBSD.
The default FreeBSD file system layout.
The FreeBSD disk organization.
How to mount and unmount file systems.
What processes, daemons, and signals are.
What a shell is, and how to change your default login environment.
How to use basic text editors.
What devices and device nodes are.
What binary format is used under FreeBSD.
How to read manual pages for more information.
FreeBSD can be used in various ways. One of them is typing commands to a text terminal. A lot of the flexibility and power of a UNIX operating system is readily available at your hands when using FreeBSD this way. This section describes what “terminals” and “consoles” are, and how you can use them in FreeBSD.
If you have not configured FreeBSD to automatically start a graphical environment during startup, the system will present you with a login prompt after it boots, right after the startup scripts finish running. You will see something similar to:
Additional ABI support:. Local package initialization:. Additional TCP options:. Fri Sep 20 13:01:06 EEST 2002 FreeBSD/i386 (pc3.example.org) (ttyv0) login:
The messages might be a bit different on your system, but you will see something similar. The last two lines are what we are interested in right now. The second last line reads:
FreeBSD/i386 (pc3.example.org) (ttyv0)
This line contains some bits of information about the system you have just booted. You are looking at a “FreeBSD” console, running on an Intel or compatible processor of the x86 architecture[1]. The name of this machine (every UNIX machine has a name) is pc3.example.org, and you are now looking at its system console—the ttyv0 terminal.
Finally, the last line is always:
login:
This is the part where you are supposed to type in your “username” to log into FreeBSD. The next section describes how you can do this.
FreeBSD is a multiuser, multiprocessing system. This is the formal description that is usually given to a system that can be used by many different people, who simultaneously run a lot of programs on a single machine.
Every multiuser system needs some way to distinguish one “user” from the rest. In FreeBSD (and all the UNIX-like operating systems), this is accomplished by requiring that every user must “log into” the system before being able to run programs. Every user has a unique name (the “username”) and a personal, secret key (the “password”). FreeBSD will ask for these two before allowing a user to run any programs.
Right after FreeBSD boots and finishes running its startup scripts[2], it will present you with a prompt and ask for a valid username:
login:
For the sake of this example, let us assume that your username is john. Type john at this prompt and press Enter. You should then be presented with a prompt to enter a “password”:
login: john Password:
Type in john's password now, and press Enter. The password is not echoed! You need not worry about this right now. Suffice it to say that it is done for security reasons.
If you have typed your password correctly, you should by now be logged into FreeBSD and ready to try out all the available commands.
You should see the MOTD or message of the day followed by a command prompt (a #, $, or % character). This indicates you have successfully logged into FreeBSD.
Running UNIX commands in one console is fine, but FreeBSD can run many programs at once. Having one console where commands can be typed would be a bit of a waste when an operating system like FreeBSD can run dozens of programs at the same time. This is where “virtual consoles” can be very helpful.
FreeBSD can be configured to present you with many different virtual consoles. You can switch from one of them to any other virtual console by pressing a couple of keys on your keyboard. Each console has its own different output channel, and FreeBSD takes care of properly redirecting keyboard input and monitor output as you switch from one virtual console to the next.
Special key combinations have been reserved by FreeBSD for switching consoles[3]. You can use Alt-F1, Alt-F2, through Alt-F8 to switch to a different virtual console in FreeBSD.
As you are switching from one console to the next, FreeBSD takes care of saving and restoring the screen output. The result is an “illusion” of having multiple “virtual” screens and keyboards that you can use to type commands for FreeBSD to run. The programs that you launch on one virtual console do not stop running when that console is not visible. They continue running when you have switched to a different virtual console.
The default configuration of FreeBSD will start up with eight virtual consoles. This is not a hardwired setting though, and you can easily customize your installation to boot with more or fewer virtual consoles. The number and settings of the virtual consoles are configured in the /etc/ttys file.
You can use the /etc/ttys file to configure the virtual consoles of FreeBSD. Each uncommented line in this file (lines that do not start with a # character) contains settings for a single terminal or virtual console. The default version of this file that ships with FreeBSD configures nine virtual consoles, and enables eight of them. They are the lines that start with ttyv:
# name getty type status comments # ttyv0 "/usr/libexec/getty Pc" cons25 on secure # Virtual terminals ttyv1 "/usr/libexec/getty Pc" cons25 on secure ttyv2 "/usr/libexec/getty Pc" cons25 on secure ttyv3 "/usr/libexec/getty Pc" cons25 on secure ttyv4 "/usr/libexec/getty Pc" cons25 on secure ttyv5 "/usr/libexec/getty Pc" cons25 on secure ttyv6 "/usr/libexec/getty Pc" cons25 on secure ttyv7 "/usr/libexec/getty Pc" cons25 on secure ttyv8 "/usr/X11R6/bin/xdm -nodaemon" xterm off secure
For a detailed description of every column in this file and all the options you can use to set things up for the virtual consoles, consult the ttys(5) manual page.
A detailed description of what “single user mode” is can be found in Section 13.6.2. It is worth noting that there is only one console when you are running FreeBSD in single user mode. There are no virtual consoles available. The settings of the single user mode console can also be found in the /etc/ttys file. Look for the line that starts with console:
# name getty type status comments # # If console is marked "insecure", then init will ask for the root password # when going to single-user mode. console none unknown off secure
Note: As the comments above the console line indicate, you can edit this line and change secure to insecure. If you do that, when FreeBSD boots into single user mode, it will still ask for the root password.
Be careful when changing this to insecure. If you ever forget the root password, booting into single user mode is a bit involved. It is still possible, but it might be a bit hard for someone who is not very comfortable with the FreeBSD booting process and the programs involved.
The FreeBSD console default video mode may be adjusted to 1024x768, 1280x1024, or any other size supported by your graphics chip and monitor. To use a different video mode load the VESA module:
# kldload vesa
Then determine what video modes are supported by your hardware by using vidcontrol(1). To get a list of supported video modes issue the following:
# vidcontrol -i mode
The output of this command is a list of video modes that are supported by your hardware. You can then choose to use a new video mode by passing it to vidcontrol(1) in a root console:
# vidcontrol MODE_279
If the new video mode is acceptable, it can be permanently set on boot by setting it in the /etc/rc.conf file:
allscreens_flags="MODE_279"
FreeBSD, being a direct descendant of BSD UNIX, is based on several key UNIX concepts. The first and most pronounced is that FreeBSD is a multi-user operating system. The system can handle several users all working simultaneously on completely unrelated tasks. The system is responsible for properly sharing and managing requests for hardware devices, peripherals, memory, and CPU time fairly to each user.
Because the system is capable of supporting multiple users, everything the system manages has a set of permissions governing who can read, write, and execute the resource. These permissions are stored as three octets broken into three pieces, one for the owner of the file, one for the group that the file belongs to, and one for everyone else. This numerical representation works like this:
Value | Permission | Directory Listing |
---|---|---|
0 | No read, no write, no execute | --- |
1 | No read, no write, execute | --x |
2 | No read, write, no execute | -w- |
3 | No read, write, execute | -wx |
4 | Read, no write, no execute | r-- |
5 | Read, no write, execute | r-x |
6 | Read, write, no execute | rw- |
7 | Read, write, execute | rwx |
You can use the -l
command line argument to ls(1) to view a long
directory listing that includes a column with information about a file's permissions for
the owner, group, and everyone else. For example, a ls -l in an
arbitrary directory may show:
% ls -l total 530 -rw-r--r-- 1 root wheel 512 Sep 5 12:31 myfile -rw-r--r-- 1 root wheel 512 Sep 5 12:31 otherfile -rw-r--r-- 1 root wheel 7680 Sep 5 12:31 email.txt ...
Here is how the first column of ls -l is broken up:
-rw-r--r--
The first (leftmost) character tells if this file is a regular file, a directory, a special character device, a socket, or any other special pseudo-file device. In this case, the - indicates a regular file. The next three characters, rw- in this example, give the permissions for the owner of the file. The next three characters, r--, give the permissions for the group that the file belongs to. The final three characters, r--, give the permissions for the rest of the world. A dash means that the permission is turned off. In the case of this file, the permissions are set so the owner can read and write to the file, the group can read the file, and the rest of the world can only read the file. According to the table above, the permissions for this file would be 644, where each digit represents the three parts of the file's permission.
This is all well and good, but how does the system control permissions on devices? FreeBSD actually treats most hardware devices as a file that programs can open, read, and write data to just like any other file. These special device files are stored on the /dev directory.
Directories are also treated as files. They have read, write, and execute permissions. The executable bit for a directory has a slightly different meaning than that of files. When a directory is marked executable, it means it can be traversed into, that is, it is possible to “cd” (change directory) into it. This also means that within the directory it is possible to access files whose names are known (subject, of course, to the permissions on the files themselves).
In particular, in order to perform a directory listing, read permission must be set on the directory, whilst to delete a file that one knows the name of, it is necessary to have write and execute permissions to the directory containing the file.
There are more permission bits, but they are primarily used in special circumstances such as setuid binaries and sticky directories. If you want more information on file permissions and how to set them, be sure to look at the chmod(1) manual page.
Symbolic permissions, sometimes referred to as symbolic expressions, use characters in place of octal values to assign permissions to files or directories. Symbolic expressions use the syntax of (who) (action) (permissions), where the following values are available:
Option | Letter | Represents |
---|---|---|
(who) | u | User |
(who) | g | Group owner |
(who) | o | Other |
(who) | a | All (“world”) |
(action) | + | Adding permissions |
(action) | - | Removing permissions |
(action) | = | Explicitly set permissions |
(permissions) | r | Read |
(permissions) | w | Write |
(permissions) | x | Execute |
(permissions) | t | Sticky bit |
(permissions) | s | Set UID or GID |
These values are used with the chmod(1) command just like before, but with letters. For an example, you could use the following command to block other users from accessing FILE:
% chmod go= FILE
A comma separated list can be provided when more than one set of changes to a file must be made. For example the following command will remove the group and “world” write permission on FILE, then it adds the execute permissions for everyone:
% chmod go-w,a+x FILE
In addition to file permissions discussed previously, FreeBSD supports the use of “file flags.” These flags add an additional level of security and control over files, but not directories.
These file flags add an additional level of control over files, helping to ensure that in some cases not even the root can remove or alter files.
File flags are altered by using the chflags(1) utility, using a simple interface. For example, to enable the system undeletable flag on the file file1, issue the following command:
# chflags sunlink file1
And to disable the system undeletable flag, issue the previous command with
“no” in front of the sunlink
. Observe:
# chflags nosunlink file1
To view the flags of this file, use the ls(1) command
with the -lo
flags:
# ls -lo file1
The output should look like the following:
-rw-r--r-- 1 trhodes trhodes sunlnk 0 Mar 1 05:54 file1
Several flags may only added or removed to files by the root user. In other cases, the file owner may set these flags. It is recommended that administrators read over the chflags(1) and chflags(2) manual pages for more information.
Other than the permissions already discussed, there are three other specific settings that all administrators should know about. They are the setuid, setgid and sticky permissions.
These settings are important for some UNIX operations as they provide functionality not normally granted to normal users. To understand them, the difference between the real user ID and effective user ID must also be noted.
The real user ID is the UID who owns or starts the process. The effective UID is the user ID the process runs as. As an example, the passwd(1) utility runs with the real user ID as the user changing their password; however, to manipulate the password database, it runs as the effective ID of the root user. This is what allows normal users to change their passwords without seeing a “Permission Denied” error.
Note: The nosuid mount(8) option will cause these binaries to silently fail. That is, they will fail to execute without ever alerting the user. That option is also not completely reliable as a nosuid wrapper may be able to circumvent it; according to the mount(8) manual page.
The setuid permission may be set by prefixing a permission set with the number four (4) as shown in the following example:
# chmod 4755 suidexample.sh
The permissions on the suidexample.sh file should now look like the following:
-rwsr-xr-x 1 trhodes trhodes 63 Aug 29 06:36 suidexample.sh
It should be noticeable from this example that an s is now part of the permission set designated for the file owner, replacing the executable bit. This allows utilities which need elevated permissions, such as passwd.
To view this in real time, open two terminals. On one, start the passwd process as a normal user. While it waits for a new password, check the process table and look at the user information of the passwd command.
In terminal A:
Changing local password for trhodes Old Password:
In terminal B:
# ps aux | grep passwd
trhodes 5232 0.0 0.2 3420 1608 0 R+ 2:10AM 0:00.00 grep passwd root 5211 0.0 0.2 3620 1724 2 I+ 2:09AM 0:00.01 passwd
As stated above, the passwd is run by a normal user, but is using the effective UID of root.
The setgid permission performs the same function as the setuid permission; except that it alters the group settings. When an application or utility is ran with this setting, it will be granted the permissions based on the group that owns the file, not the user who started the process.
To set the setgid permission on a file, provide the chmod command with a leading two (2) as in the following example:
# chmod 2755 sgidexample.sh
The new setting may be viewed as before, notice the s is now in the field designated for the group permission settings:
-rwxr-sr-x 1 trhodes trhodes 44 Aug 31 01:49 sgidexample.sh
Note: In these examples, even though the shell script in question is an executable file, it will not run with a different EUID or effective user ID. This is because shell scripts may not access the setuid(2) system calls.
The first two special permission bits we discussed (the setuid and setgid permission bits) may lower system security, by allowing for elevated permissions. There is a third special permission bit that can strengthen the security of a system: the sticky bit.
The sticky bit, when set on a directory, allows file deletion only by the file owner. This permission set is useful to prevent file deletion in public directories, such as /tmp, by users who do not own the file. To utilize this permission, prefix the permission with a one (1). For example:
# chmod 1777 /tmp
Now, it is possible to see the effect by using the ls command:
# ls -al / | grep tmp
drwxrwxrwt 10 root wheel 512 Aug 31 01:49 tmp
The sticky bit permission is distinguishable from the t at the very end of the set.
The FreeBSD directory hierarchy is fundamental to obtaining an overall understanding of the system. The most important concept to grasp is that of the root directory, “/”. This directory is the first one mounted at boot time and it contains the base system necessary to prepare the operating system for multi-user operation. The root directory also contains mount points for other file systems that are mounted during the transition to multi-user operation.
A mount point is a directory where additional file systems can be grafted onto a
parent file system (usually the root file system). This is further described in Section 4.5. Standard mount points include /usr, /var, /tmp, /mnt, and /cdrom. These directories are usually referenced to entries in the
file /etc/fstab. /etc/fstab is a
table of various file systems and mount points for reference by the system. Most of the
file systems in /etc/fstab are mounted automatically at boot
time from the script rc(8) unless they
contain the noauto
option. Details can be found in Section 4.6.1.
A complete description of the file system hierarchy is available in hier(7). For now, a brief overview of the most common directories will suffice.
Directory | Description |
---|---|
/ | Root directory of the file system. |
/bin/ | User utilities fundamental to both single-user and multi-user environments. |
/boot/ | Programs and configuration files used during operating system bootstrap. |
/boot/defaults/ | Default bootstrapping configuration files; see loader.conf(5). |
/dev/ | Device nodes; see intro(4). |
/etc/ | System configuration files and scripts. |
/etc/defaults/ | Default system configuration files; see rc(8). |
/etc/mail/ | Configuration files for mail transport agents such as sendmail(8). |
/etc/namedb/ | named configuration files; see named(8). |
/etc/periodic/ | Scripts that are run daily, weekly, and monthly, via cron(8); see periodic(8). |
/etc/ppp/ | ppp configuration files; see ppp(8). |
/mnt/ | Empty directory commonly used by system administrators as a temporary mount point. |
/proc/ | Process file system; see procfs(5), mount_procfs(8). |
/rescue/ | Statically linked programs for emergency recovery; see rescue(8). |
/root/ | Home directory for the root account. |
/sbin/ | System programs and administration utilities fundamental to both single-user and multi-user environments. |
/tmp/ | Temporary files. The contents of /tmp are usually NOT preserved across a system reboot. A memory-based file system is often mounted at /tmp. This can be automated using the tmpmfs-related variables of rc.conf(5) (or with an entry in /etc/fstab; see mdmfs(8)). |
/usr/ | The majority of user utilities and applications. |
/usr/bin/ | Common utilities, programming tools, and applications. |
/usr/include/ | Standard C include files. |
/usr/lib/ | Archive libraries. |
/usr/libdata/ | Miscellaneous utility data files. |
/usr/libexec/ | System daemons & system utilities (executed by other programs). |
/usr/local/ | Local executables, libraries, etc. Also used as the default destination for the FreeBSD ports framework. Within /usr/local, the general layout sketched out by hier(7) for /usr should be used. Exceptions are the man directory, which is directly under /usr/local rather than under /usr/local/share, and the ports documentation is in share/doc/port. |
/usr/obj/ | Architecture-specific target tree produced by building the /usr/src tree. |
/usr/ports/ | The FreeBSD Ports Collection (optional). |
/usr/sbin/ | System daemons & system utilities (executed by users). |
/usr/share/ | Architecture-independent files. |
/usr/src/ | BSD and/or local source files. |
/usr/X11R6/ | X11R6 distribution executables, libraries, etc (optional). |
/var/ | Multi-purpose log, temporary, transient, and spool files. A memory-based file system is sometimes mounted at /var. This can be automated using the varmfs-related variables of rc.conf(5) (or with an entry in /etc/fstab; see mdmfs(8)). |
/var/log/ | Miscellaneous system log files. |
/var/mail/ | User mailbox files. |
/var/spool/ | Miscellaneous printer and mail system spooling directories. |
/var/tmp/ | Temporary files. The files are usually preserved across a system reboot, unless /var is a memory-based file system. |
/var/yp/ | NIS maps. |
The smallest unit of organization that FreeBSD uses to find files is the filename. Filenames are case-sensitive, which means that readme.txt and README.TXT are two separate files. FreeBSD does not use the extension (.txt) of a file to determine whether the file is a program, or a document, or some other form of data.
Files are stored in directories. A directory may contain no files, or it may contain many hundreds of files. A directory can also contain other directories, allowing you to build up a hierarchy of directories within one another. This makes it much easier to organize your data.
Files and directories are referenced by giving the file or directory name, followed by a forward slash, /, followed by any other directory names that are necessary. If you have directory foo, which contains directory bar, which contains the file readme.txt, then the full name, or path to the file is foo/bar/readme.txt.
Directories and files are stored in a file system. Each file system contains exactly one directory at the very top level, called the root directory for that file system. This root directory can then contain other directories.
So far this is probably similar to any other operating system you may have used. There are a few differences; for example, MS-DOS uses \ to separate file and directory names, while Mac OS® uses :.
FreeBSD does not use drive letters, or other drive names in the path. You would not write c:/foo/bar/readme.txt on FreeBSD.
Instead, one file system is designated the root file system. The root file system's root directory is referred to as /. Every other file system is then mounted under the root file system. No matter how many disks you have on your FreeBSD system, every directory appears to be part of the same disk.
Suppose you have three file systems, called A, B, and C. Each file system has one root directory, which contains two other directories, called A1, A2 (and likewise B1, B2 and C1, C2).
Call A the root file system. If you used the ls command to view the contents of this directory you would see two subdirectories, A1 and A2. The directory tree looks like this:
A file system must be mounted on to a directory in another file system. So now suppose that you mount file system B on to the directory A1. The root directory of B replaces A1, and the directories in B appear accordingly:
Any files that are in the B1 or B2 directories can be reached with the path /A1/B1 or /A1/B2 as necessary. Any files that were in /A1 have been temporarily hidden. They will reappear if B is unmounted from A.
If B had been mounted on A2 then the diagram would look like this:
and the paths would be /A2/B1 and /A2/B2 respectively.
File systems can be mounted on top of one another. Continuing the last example, the C file system could be mounted on top of the B1 directory in the B file system, leading to this arrangement:
Or C could be mounted directly on to the A file system, under the A1 directory:
If you are familiar with MS-DOS, this is similar, although not identical, to the join command.
This is not normally something you need to concern yourself with. Typically you create file systems when installing FreeBSD and decide where to mount them, and then never change them unless you add a new disk.
It is entirely possible to have one large root file system, and not need to create any others. There are some drawbacks to this approach, and one advantage.
Benefits of Multiple File Systems
Different file systems can have different mount options. For example, with careful planning, the root file system can be mounted read-only, making it impossible for you to inadvertently delete or edit a critical file. Separating user-writable file systems, such as /home, from other file systems also allows them to be mounted nosuid; this option prevents the suid/guid bits on executables stored on the file system from taking effect, possibly improving security.
FreeBSD automatically optimizes the layout of files on a file system, depending on how the file system is being used. So a file system that contains many small files that are written frequently will have a different optimization to one that contains fewer, larger files. By having one big file system this optimization breaks down.
FreeBSD's file systems are very robust should you lose power. However, a power loss at a critical point could still damage the structure of the file system. By splitting your data over multiple file systems it is more likely that the system will still come up, making it easier for you to restore from backup as necessary.
Benefit of a Single File System
File systems are a fixed size. If you create a file system when you install FreeBSD and give it a specific size, you may later discover that you need to make the partition bigger. This is not easily accomplished without backing up, recreating the file system with the new size, and then restoring the backed up data.
Important: FreeBSD features the growfs(8) command, which makes it possible to increase the size of file system on the fly, removing this limitation.
File systems are contained in partitions. This does not have the same meaning as the common usage of the term partition (for example, MS-DOS partition), because of FreeBSD's UNIX heritage. Each partition is identified by a letter from a through to h. Each partition can contain only one file system, which means that file systems are often described by either their typical mount point in the file system hierarchy, or the letter of the partition they are contained in.
FreeBSD also uses disk space for swap space. Swap space provides FreeBSD with virtual memory. This allows your computer to behave as though it has much more memory than it actually does. When FreeBSD runs out of memory it moves some of the data that is not currently being used to the swap space, and moves it back in (moving something else out) when it needs it.
Some partitions have certain conventions associated with them.
Partition | Convention |
---|---|
a | Normally contains the root file system |
b | Normally contains swap space |
c | Normally the same size as the enclosing slice. This allows utilities that need to work on the entire slice (for example, a bad block scanner) to work on the c partition. You would not normally create a file system on this partition. |
d | Partition d used to have a special meaning associated with it, although that is now gone and d may work as any normal partition. |
Each partition-that-contains-a-file-system is stored in what FreeBSD calls a slice. Slice is FreeBSD's term for what the common call partitions, and again, this is because of FreeBSD's UNIX background. Slices are numbered, starting at 1, through to 4.
Slice numbers follow the device name, prefixed with an s, starting at 1. So “da0s1” is the first slice on the first SCSI drive. There can only be four physical slices on a disk, but you can have logical slices inside physical slices of the appropriate type. These extended slices are numbered starting at 5, so “ad0s5” is the first extended slice on the first IDE disk. These devices are used by file systems that expect to occupy a slice.
Slices, “dangerously dedicated” physical drives, and other drives contain partitions, which are represented as letters from a to h. This letter is appended to the device name, so “da0a” is the a partition on the first da drive, which is “dangerously dedicated”. “ad1s3e” is the fifth partition in the third slice of the second IDE disk drive.
Finally, each disk on the system is identified. A disk name starts with a code that indicates the type of disk, and then a number, indicating which disk it is. Unlike slices, disk numbering starts at 0. Common codes that you will see are listed in Table 4-1.
When referring to a partition FreeBSD requires that you also name the slice and disk that contains the partition, and when referring to a slice you must also refer to the disk name. Thus, you refer to a partition by listing the disk name, s, the slice number, and then the partition letter. Examples are shown in Example 4-1.
Example 4-2 shows a conceptual model of the disk layout that should help make things clearer.
In order to install FreeBSD you must first configure the disk slices, then create partitions within the slice you will use for FreeBSD, and then create a file system (or swap space) in each partition, and decide where that file system will be mounted.
Table 4-1. Disk Device Codes
Code | Meaning |
---|---|
ad | ATAPI (IDE) disk |
da | SCSI direct access disk |
acd | ATAPI (IDE) CDROM |
cd | SCSI CDROM |
fd | Floppy disk |
Example 4-2. Conceptual Model of a Disk
This diagram shows FreeBSD's view of the first IDE disk attached to the system. Assume that the disk is 4 GB in size, and contains two 2 GB slices (MS-DOS partitions). The first slice contains a MS-DOS disk, C:, and the second slice contains a FreeBSD installation. This example FreeBSD installation has three data partitions, and a swap partition.
The three partitions will each hold a file system. Partition a will be used for the root file system, e for the /var directory hierarchy, and f for the /usr directory hierarchy.
The file system is best visualized as a tree, rooted, as it were, at /. /dev, /usr, and the other directories in the root directory are branches, which may have their own branches, such as /usr/local, and so on.
There are various reasons to house some of these directories on separate file systems. /var contains the directories log/, spool/, and various types of temporary files, and as such, may get filled up. Filling up the root file system is not a good idea, so splitting /var from / is often favorable.
Another common reason to contain certain directory trees on other file systems is if they are to be housed on separate physical disks, or are separate virtual disks, such as Network File System mounts, or CDROM drives.
During the boot process, file systems listed in /etc/fstab are automatically mounted (unless they are listed
with the noauto
option).
The /etc/fstab file contains a list of lines of the following format:
device /mount-point fstype options dumpfreq passno
A device name (which should exist), as explained in Section 19.2.
A directory (which should exist), on which to mount the file system.
The file system type to pass to mount(8). The default FreeBSD file system is ufs.
Either rw
for read-write file systems, or ro
for read-only file systems, followed by any other options
that may be needed. A common option is noauto
for
file systems not normally mounted during the boot sequence. Other options are
listed in the mount(8) manual
page.
This is used by dump(8) to determine which file systems require dumping. If the field is missing, a value of zero is assumed.
This determines the order in which file systems should be checked. File systems that should be skipped should have their passno set to zero. The root file system (which needs to be checked before everything else) should have its passno set to one, and other file systems' passno should be set to values greater than one. If more than one file systems have the same passno then fsck(8) will attempt to check file systems in parallel if possible.
Consult the fstab(5) manual page for more information on the format of the /etc/fstab file and the options it contains.
The mount(8) command is what is ultimately used to mount file systems.
In its most basic form, you use:
There are plenty of options, as mentioned in the mount(8) manual page, but the most common are:
Mount Options
-a
Mount all the file systems listed in /etc/fstab.
Except those marked as “noauto”, excluded by the -t
flag, or those that are already mounted.
-d
Do everything except for the actual mount system call. This option is useful in
conjunction with the -v
flag to determine what mount(8) is
actually trying to do.
-f
Force the mount of an unclean file system (dangerous), or forces the revocation of write access when downgrading a file system's mount status from read-write to read-only.
-r
Mount the file system read-only. This is identical to using the ro
argument to the -o
option.
-t
fstypeMount the given file system as the given file system type, or mount only file
systems of the given type, if given the -a
option.
“ufs” is the default file system type.
-u
Update mount options on the file system.
-v
Be verbose.
-w
Mount the file system read-write.
The -o
option takes a comma-separated list of the
options, including the following:
Do not allow execution of binaries on this file system. This is also a useful security option.
Do not interpret setuid or setgid flags on the file system. This is also a useful security option.
The umount(8) command
takes, as a parameter, one of a mountpoint, a device name, or the -a
or -A
option.
All forms take -f
to force unmounting, and -v
for verbosity. Be warned that -f
is not generally a good idea. Forcibly unmounting file
systems might crash the computer or damage data on the file system.
-a
and -A
are used to
unmount all mounted file systems, possibly modified by the file system types
listed after -t
. -A
,
however, does not attempt to unmount the root file system.
FreeBSD is a multi-tasking operating system. This means that it seems as though more than one program is running at once. Each program running at any one time is called a process. Every command you run will start at least one new process, and there are a number of system processes that run all the time, keeping the system functional.
Each process is uniquely identified by a number called a process ID, or PID, and, like files, each process also has one owner and group. The owner and group information is used to determine what files and devices the process can open, using the file permissions discussed earlier. Most processes also have a parent process. The parent process is the process that started them. For example, if you are typing commands to the shell then the shell is a process, and any commands you run are also processes. Each process you run in this way will have your shell as its parent process. The exception to this is a special process called init(8). init is always the first process, so its PID is always 1. init is started automatically by the kernel when FreeBSD starts.
Two commands are particularly useful to see the processes on the system, ps(1) and top(1). The ps command is used to show a static list of the currently running processes, and can show their PID, how much memory they are using, the command line they were started with, and so on. The top command displays all the running processes, and updates the display every few seconds, so that you can interactively see what your computer is doing.
By default, ps only shows you the commands that are running and are owned by you. For example:
% ps PID TT STAT TIME COMMAND 298 p0 Ss 0:01.10 tcsh 7078 p0 S 2:40.88 xemacs mdoc.xsl (xemacs-21.1.14) 37393 p0 I 0:03.11 xemacs freebsd.dsl (xemacs-21.1.14) 48630 p0 S 2:50.89 /usr/local/lib/netscape-linux/navigator-linux-4.77.bi 48730 p0 IW 0:00.00 (dns helper) (navigator-linux-) 72210 p0 R+ 0:00.00 ps 390 p1 Is 0:01.14 tcsh 7059 p2 Is+ 1:36.18 /usr/local/bin/mutt -y 6688 p3 IWs 0:00.00 tcsh 10735 p4 IWs 0:00.00 tcsh 20256 p5 IWs 0:00.00 tcsh 262 v0 IWs 0:00.00 -tcsh (tcsh) 270 v0 IW+ 0:00.00 /bin/sh /usr/X11R6/bin/startx -- -bpp 16 280 v0 IW+ 0:00.00 xinit /home/nik/.xinitrc -- -bpp 16 284 v0 IW 0:00.00 /bin/sh /home/nik/.xinitrc 285 v0 S 0:38.45 /usr/X11R6/bin/sawfish
As you can see in this example, the output from ps(1) is organized into a number of columns. PID is the process ID discussed earlier. PIDs are assigned starting from 1, go up to 99999, and wrap around back to the beginning when you run out (a PID is not reassigned if it is already in use). The TT column shows the tty the program is running on, and can safely be ignored for the moment. STAT shows the program's state, and again, can be safely ignored. TIME is the amount of time the program has been running on the CPU—this is usually not the elapsed time since you started the program, as most programs spend a lot of time waiting for things to happen before they need to spend time on the CPU. Finally, COMMAND is the command line that was used to run the program.
ps(1) supports a
number of different options to change the information that is displayed. One of the most
useful sets is auxww. a
displays
information about all the running processes, not just your own. u
displays the username of the process' owner, as well as memory
usage. x
displays information about daemon processes, and
ww
causes ps(1) to display the
full command line for each process, rather than truncating it once it gets too long to
fit on the screen.
The output from top(1) is similar. A sample session looks like this:
% top last pid: 72257; load averages: 0.13, 0.09, 0.03 up 0+13:38:33 22:39:10 47 processes: 1 running, 46 sleeping CPU states: 12.6% user, 0.0% nice, 7.8% system, 0.0% interrupt, 79.7% idle Mem: 36M Active, 5256K Inact, 13M Wired, 6312K Cache, 15M Buf, 408K Free Swap: 256M Total, 38M Used, 217M Free, 15% Inuse PID USERNAME PRI NICE SIZE RES STATE TIME WCPU CPU COMMAND 72257 nik 28 0 1960K 1044K RUN 0:00 14.86% 1.42% top 7078 nik 2 0 15280K 10960K select 2:54 0.88% 0.88% xemacs-21.1.14 281 nik 2 0 18636K 7112K select 5:36 0.73% 0.73% XF86_SVGA 296 nik 2 0 3240K 1644K select 0:12 0.05% 0.05% xterm 48630 nik 2 0 29816K 9148K select 3:18 0.00% 0.00% navigator-linu 175 root 2 0 924K 252K select 1:41 0.00% 0.00% syslogd 7059 nik 2 0 7260K 4644K poll 1:38 0.00% 0.00% mutt ...
The output is split into two sections. The header (the first five lines) shows the PID of the last process to run, the system load averages (which are a measure of how busy the system is), the system uptime (time since the last reboot) and the current time. The other figures in the header relate to how many processes are running (47 in this case), how much memory and swap space has been taken up, and how much time the system is spending in different CPU states.
Below that are a series of columns containing similar information to the output from ps(1). As before you can see the PID, the username, the amount of CPU time taken, and the command that was run. top(1) also defaults to showing you the amount of memory space taken by the process. This is split into two columns, one for total size, and one for resident size—total size is how much memory the application has needed, and the resident size is how much it is actually using at the moment. In this example you can see that Netscape® has required almost 30 MB of RAM, but is currently only using 9 MB.
top(1) automatically
updates this display every two seconds; this can be changed with the s
option.
When you run an editor it is easy to control the editor, tell it to load files, and so on. You can do this because the editor provides facilities to do so, and because the editor is attached to a terminal. Some programs are not designed to be run with continuous user input, and so they disconnect from the terminal at the first opportunity. For example, a web server spends all day responding to web requests, it normally does not need any input from you. Programs that transport email from site to site are another example of this class of application.
We call these programs daemons. Daemons were characters in Greek mythology: neither good or evil, they were little attendant spirits that, by and large, did useful things for mankind, much like the web servers and mail servers of today do useful things. This is why the BSD mascot has, for a long time, been the cheerful-looking daemon with sneakers and a pitchfork.
There is a convention to name programs that normally run as daemons with a trailing “d”. BIND is the Berkeley Internet Name Domain, but the actual program that executes is called named; the Apache web server program is called httpd; the line printer spooling daemon is lpd and so on. This is a convention, not a hard and fast rule; for example, the main mail daemon for the Sendmail application is called sendmail, and not maild, as you might imagine.
Sometimes you will need to communicate with a daemon process. One way to do so is to send it (or any other running process), what is known as a signal. There are a number of different signals that you can send—some of them have a specific meaning, others are interpreted by the application, and the application's documentation will tell you how that application interprets signals. You can only send a signal to a process that you own. If you send a signal to someone else's process with kill(1) or kill(2), permission will be denied. The exception to this is the root user, who can send signals to everyone's processes.
FreeBSD will also send applications signals in some cases. If an application is badly written, and tries to access memory that it is not supposed to, FreeBSD sends the process the Segmentation Violation signal (SIGSEGV). If an application has used the alarm(3) system call to be alerted after a period of time has elapsed then it will be sent the Alarm signal (SIGALRM), and so on.
Two signals can be used to stop a process, SIGTERM and SIGKILL. SIGTERM is the polite way to kill a process; the process can catch the signal, realize that you want it to shut down, close any log files it may have open, and generally finish whatever it is doing at the time before shutting down. In some cases a process may even ignore SIGTERM if it is in the middle of some task that can not be interrupted.
SIGKILL can not be ignored by a process. This is the “I do not care what you are doing, stop right now” signal. If you send SIGKILL to a process then FreeBSD will stop that process there and then[4].
The other signals you might want to use are SIGHUP, SIGUSR1, and SIGUSR2. These are general purpose signals, and different applications will do different things when they are sent.
Suppose that you have changed your web server's configuration file—you would like to tell the web server to re-read its configuration. You could stop and restart httpd, but this would result in a brief outage period on your web server, which may be undesirable. Most daemons are written to respond to the SIGHUP signal by re-reading their configuration file. So instead of killing and restarting httpd you would send it the SIGHUP signal. Because there is no standard way to respond to these signals, different daemons will have different behavior, so be sure and read the documentation for the daemon in question.
Signals are sent using the kill(1) command, as this example shows.
Sending a Signal to a Process
This example shows how to send a signal to inetd(8). The inetd configuration file is /etc/inetd.conf, and inetd will re-read this configuration file when it is sent SIGHUP.
Find the process ID of the process you want to send the signal to. Do this using pgrep(1).
% pgrep -l inetd 198 inetd -wW
So the inetd(8) PID is 198.
Use kill(1) to send the signal. Because inetd(8) is being run by root you must use su(1) to become root first.
% su Password: # /bin/kill -s HUP 198
In common with most UNIX commands, kill(1) will not print any output if it is successful. If you send a signal to a process that you do not own then you will see “kill: PID: Operation not permitted”. If you mistype the PID you will either send the signal to the wrong process, which could be bad, or, if you are lucky, you will have sent the signal to a PID that is not currently in use, and you will see “kill: PID: No such process”.
Why Use /bin/kill?: Many shells provide the kill command as a built in command; that is, the shell will send the signal directly, rather than running /bin/kill. This can be very useful, but different shells have a different syntax for specifying the name of the signal to send. Rather than try to learn all of them, it can be simpler just to use the /bin/kill ... command directly.
Sending other signals is very similar, just substitute TERM or KILL in the command line as necessary.
In FreeBSD, a lot of everyday work is done in a command line interface called a shell. A shell's main job is to take commands from the input channel and execute them. A lot of shells also have built in functions to help with everyday tasks such as file management, file globbing, command line editing, command macros, and environment variables. FreeBSD comes with a set of shells, such as sh, the Bourne Shell, and tcsh, the improved C-shell. Many other shells are available from the FreeBSD Ports Collection, such as zsh and bash.
Which shell do you use? It is really a matter of taste. If you are a C programmer you might feel more comfortable with a C-like shell such as tcsh. If you have come from Linux or are new to a UNIX command line interface you might try bash. The point is that each shell has unique properties that may or may not work with your preferred working environment, and that you have a choice of what shell to use.
One common feature in a shell is filename completion. Given the typing of the first few letters of a command or filename, you can usually have the shell automatically complete the rest of the command or filename by hitting the Tab key on the keyboard. Here is an example. Suppose you have two files called foobar and foo.bar. You want to delete foo.bar. So what you would type on the keyboard is: rm fo[Tab].[Tab].
The shell would print out rm foo[BEEP].bar.
The [BEEP] is the console bell, which is the shell telling me it was unable to totally complete the filename because there is more than one match. Both foobar and foo.bar start with fo, but it was able to complete to foo. If you type in ., then hit Tab again, the shell would be able to fill in the rest of the filename for you.
Another feature of the shell is the use of environment variables. Environment variables are a variable/key pair stored in the shell's environment space. This space can be read by any program invoked by the shell, and thus contains a lot of program configuration. Here is a list of common environment variables and what they mean:
Variable | Description |
---|---|
USER | Current logged in user's name. |
PATH | Colon-separated list of directories to search for binaries. |
DISPLAY | Network name of the X11 display to connect to, if available. |
SHELL | The current shell. |
TERM | The name of the user's type of terminal. Used to determine the capabilities of the terminal. |
TERMCAP | Database entry of the terminal escape codes to perform various terminal functions. |
OSTYPE | Type of operating system. e.g., FreeBSD. |
MACHTYPE | The CPU architecture that the system is running on. |
EDITOR | The user's preferred text editor. |
PAGER | The user's preferred text pager. |
MANPATH | Colon-separated list of directories to search for manual pages. |
Setting an environment variable differs somewhat from shell to shell. For example, in the C-Style shells such as tcsh and csh, you would use setenv to set environment variables. Under Bourne shells such as sh and bash, you would use export to set your current environment variables. For example, to set or modify the EDITOR environment variable, under csh or tcsh a command like this would set EDITOR to /usr/local/bin/emacs:
% setenv EDITOR /usr/local/bin/emacs
Under Bourne shells:
% export EDITOR="/usr/local/bin/emacs"
You can also make most shells expand the environment variable by placing a $ character in front of it on the command line. For example, echo $TERM would print out whatever $TERM is set to, because the shell expands $TERM and passes it on to echo.
Shells treat a lot of special characters, called meta-characters as special representations of data. The most common one is the * character, which represents any number of characters in a filename. These special meta-characters can be used to do filename globbing. For example, typing in echo * is almost the same as typing in ls because the shell takes all the files that match * and puts them on the command line for echo to see.
To prevent the shell from interpreting these special characters, they can be escaped from the shell by putting a backslash (\) character in front of them. echo $TERM prints whatever your terminal is set to. echo \$TERM prints $TERM as is.
The easiest way to change your shell is to use the chsh command. Running chsh will place you into the editor that is in your EDITOR environment variable; if it is not set, you will be placed in vi. Change the “Shell:” line accordingly.
You can also give chsh the -s
option; this will set your shell for you, without requiring
you to enter an editor. For example, if you wanted to change your shell to bash, the following should do the trick:
% chsh -s /usr/local/bin/bash
Note: The shell that you wish to use must be present in the /etc/shells file. If you have installed a shell from the ports collection, then this should have been done for you already. If you installed the shell by hand, you must do this.
For example, if you installed bash by hand and placed it into /usr/local/bin, you would want to:
# echo "/usr/local/bin/bash" >> /etc/shellsThen rerun chsh.
A lot of configuration in FreeBSD is done by editing text files. Because of this, it would be a good idea to become familiar with a text editor. FreeBSD comes with a few as part of the base system, and many more are available in the Ports Collection.
The easiest and simplest editor to learn is an editor called ee, which stands for easy editor. To start ee, one would type at the command line ee filename where filename is the name of the file to be edited. For example, to edit /etc/rc.conf, type in ee /etc/rc.conf. Once inside of ee, all of the commands for manipulating the editor's functions are listed at the top of the display. The caret ^ character represents the Ctrl key on the keyboard, so ^e expands to the key combination Ctrl+e. To leave ee, hit the Esc key, then choose leave editor. The editor will prompt you to save any changes if the file has been modified.
FreeBSD also comes with more powerful text editors such as vi as part of the base system, while other editors, like Emacs and vim, are part of the FreeBSD Ports Collection (editors/emacs and editors/vim). These editors offer much more functionality and power at the expense of being a little more complicated to learn. However if you plan on doing a lot of text editing, learning a more powerful editor such as vim or Emacs will save you much more time in the long run.
Many applications which modify files or require typed input will automatically open a text editor. To alter the default editor used, set the EDITOR environment variable. See shells section for more details.
A device is a term used mostly for hardware-related activities in a system, including disks, printers, graphics cards, and keyboards. When FreeBSD boots, the majority of what FreeBSD displays are devices being detected. You can look through the boot messages again by viewing /var/run/dmesg.boot.
For example, acd0 is the first IDE CDROM drive, while kbd0 represents the keyboard.
Most of these devices in a UNIX operating system must be accessed through special files called device nodes, which are located in the /dev directory.
When adding a new device to your system, or compiling in support for additional devices, new device nodes must be created.
The device file system, or DEVFS, provides access to kernel's device namespace in the global file system namespace. Instead of having to create and modify device nodes, DEVFS maintains this particular file system for you.
See the devfs(5) manual page for more information.
To understand why FreeBSD uses the elf(5) format, you must first know a little about the three currently “dominant” executable formats for UNIX:
The oldest and “classic” UNIX object format. It uses a short and compact header with a magic number at the beginning that is often used to characterize the format (see a.out(5) for more details). It contains three loaded segments: .text, .data, and .bss plus a symbol table and a string table.
COFF
The SVR3 object format. The header now comprises a section table, so you can have more than just .text, .data, and .bss sections.
The successor to COFF, featuring multiple sections and 32-bit or 64-bit possible values. One major drawback: ELF was also designed with the assumption that there would be only one ABI per system architecture. That assumption is actually quite incorrect, and not even in the commercial SYSV world (which has at least three ABIs: SVR4, Solaris, SCO) does it hold true.
FreeBSD tries to work around this problem somewhat by providing a utility for branding a known ELF executable with information about the ABI it is compliant with. See the manual page for brandelf(1) for more information.
FreeBSD comes from the “classic” camp and used the a.out(5) format, a technology tried and proven through many generations of BSD releases, until the beginning of the 3.X branch. Though it was possible to build and run native ELF binaries (and kernels) on a FreeBSD system for some time before that, FreeBSD initially resisted the “push” to switch to ELF as the default format. Why? Well, when the Linux camp made their painful transition to ELF, it was not so much to flee the a.out executable format as it was their inflexible jump-table based shared library mechanism, which made the construction of shared libraries very difficult for vendors and developers alike. Since the ELF tools available offered a solution to the shared library problem and were generally seen as “the way forward” anyway, the migration cost was accepted as necessary and the transition made. FreeBSD's shared library mechanism is based more closely on Sun's SunOS™ style shared library mechanism and, as such, is very easy to use.
So, why are there so many different formats?
Back in the dim, dark past, there was simple hardware. This simple hardware supported a simple, small system. a.out was completely adequate for the job of representing binaries on this simple system (a PDP-11). As people ported UNIX from this simple system, they retained the a.out format because it was sufficient for the early ports of UNIX to architectures like the Motorola 68k, VAXen, etc.
Then some bright hardware engineer decided that if he could force software to do some sleazy tricks, then he would be able to shave a few gates off the design and allow his CPU core to run faster. While it was made to work with this new kind of hardware (known these days as RISC), a.out was ill-suited for this hardware, so many formats were developed to get to a better performance from this hardware than the limited, simple a.out format could offer. Things like COFF, ECOFF, and a few obscure others were invented and their limitations explored before things seemed to settle on ELF.
In addition, program sizes were getting huge and disks (and physical memory) were still relatively small so the concept of a shared library was born. The VM system also became more sophisticated. While each one of these advancements was done using the a.out format, its usefulness was stretched more and more with each new feature. In addition, people wanted to dynamically load things at run time, or to junk parts of their program after the init code had run to save in core memory and swap space. Languages became more sophisticated and people wanted code called before main automatically. Lots of hacks were done to the a.out format to allow all of these things to happen, and they basically worked for a time. In time, a.out was not up to handling all these problems without an ever increasing overhead in code and complexity. While ELF solved many of these problems, it would be painful to switch from the system that basically worked. So ELF had to wait until it was more painful to remain with a.out than it was to migrate to ELF.
However, as time passed, the build tools that FreeBSD derived their build tools from (the assembler and loader especially) evolved in two parallel trees. The FreeBSD tree added shared libraries and fixed some bugs. The GNU folks that originally wrote these programs rewrote them and added simpler support for building cross compilers, plugging in different formats at will, and so on. Since many people wanted to build cross compilers targeting FreeBSD, they were out of luck since the older sources that FreeBSD had for as and ld were not up to the task. The new GNU tools chain (binutils) does support cross compiling, ELF, shared libraries, C++ extensions, etc. In addition, many vendors are releasing ELF binaries, and it is a good thing for FreeBSD to run them.
ELF is more expressive than a.out and allows more extensibility in the base system. The ELF tools are better maintained, and offer cross compilation support, which is important to many people. ELF may be a little slower than a.out, but trying to measure it can be difficult. There are also numerous details that are different between the two in how they map pages, handle init code, etc. None of these are very important, but they are differences. In time support for a.out will be moved out of the GENERIC kernel, and eventually removed from the kernel once the need to run legacy a.out programs is past.
The most comprehensive documentation on FreeBSD is in the form of manual pages. Nearly every program on the system comes with a short reference manual explaining the basic operation and various arguments. These manuals can be viewed with the man command. Use of the man command is simple:
% man command
command is the name of the command you wish to learn about. For example, to learn more about ls command type:
% man ls
The online manual is divided up into numbered sections:
User commands.
System calls and error numbers.
Functions in the C libraries.
Device drivers.
File formats.
Games and other diversions.
Miscellaneous information.
System maintenance and operation commands.
Kernel developers.
In some cases, the same topic may appear in more than one section of the online
manual. For example, there is a chmod user command and a
chmod()
system call. In this case, you can tell
the man command which one you want by specifying the
section:
% man 1 chmod
This will display the manual page for the user command chmod. References to a particular section of the online manual are traditionally placed in parenthesis in written documentation, so chmod(1) refers to the chmod user command and chmod(2) refers to the system call.
This is fine if you know the name of the command and just wish to know how to use
it, but what if you cannot recall the command name? You can use man to search for keywords in the command descriptions by using
the -k
switch:
% man -k mail
With this command you will be presented with a list of commands that have the keyword “mail” in their descriptions. This is actually functionally equivalent to using the apropos command.
So, you are looking at all those fancy commands in /usr/bin but do not have the faintest idea what most of them actually do? Type:
% cd /usr/bin % man -f *
or
% cd /usr/bin % whatis *
which does the same thing.
FreeBSD includes many applications and utilities produced by the Free Software Foundation (FSF). In addition to manual pages, these programs come with more extensive hypertext documents called info files which can be viewed with the info command or, if you installed emacs, the info mode of emacs.
To use the info(1) command, type:
% info
For a brief introduction, type h. For a quick command reference, type ?.
FreeBSD is bundled with a rich collection of system tools as part of the base system. However, there is only so much one can do before needing to install an additional third-party application to get real work done. FreeBSD provides two complementary technologies for installing third-party software on your system: the FreeBSD Ports Collection (for installing from source), and packages (for installing from pre-built binaries). Either method may be used to install the newest version of your favorite applications from local media or straight off the network.
After reading this chapter, you will know:
How to install third-party binary software packages.
How to build third-party software from source by using the ports collection.
How to remove previously installed packages or ports.
How to override the default values that the ports collection uses.
How to find the appropriate software package.
How to upgrade your applications.
If you have used a UNIX system before you will know that the typical procedure for installing third-party software goes something like this:
Download the software, which might be distributed in source code format, or as a binary.
Unpack the software from its distribution format (typically a tarball compressed with compress(1), gzip(1), or bzip2(1)).
Locate the documentation (perhaps an INSTALL or README file, or some files in a doc/ subdirectory) and read up on how to install the software.
If the software was distributed in source format, compile it. This may involve editing a Makefile, or running a configure script, and other work.
Test and install the software.
And that is only if everything goes well. If you are installing a software package that was not deliberately ported to FreeBSD you may even have to go in and edit the code to make it work properly.
Should you want to, you can continue to install software the “traditional” way with FreeBSD. However, FreeBSD provides two technologies which can save you a lot of effort: packages and ports. At the time of writing, over 24,000 third-party applications have been made available in this way.
For any given application, the FreeBSD package for that application is a single file which you must download. The package contains pre-compiled copies of all the commands for the application, as well as any configuration files or documentation. A downloaded package file can be manipulated with FreeBSD package management commands, such as pkg_add(1), pkg_delete(1), pkg_info(1), and so on. Installing a new application can be carried out with a single command.
A FreeBSD port for an application is a collection of files designed to automate the process of compiling an application from source code.
Remember that there are a number of steps you would normally carry out if you compiled a program yourself (downloading, unpacking, patching, compiling, installing). The files that make up a port contain all the necessary information to allow the system to do this for you. You run a handful of simple commands and the source code for the application is automatically downloaded, extracted, patched, compiled, and installed for you.
In fact, the ports system can also be used to generate packages which can later be manipulated with pkg_add and the other package management commands that will be introduced shortly.
Both packages and ports understand dependencies. Suppose you want to install an application that depends on a specific library being installed. Both the application and the library have been made available as FreeBSD ports and packages. If you use the pkg_add command or the ports system to add the application, both will notice that the library has not been installed, and automatically install the library first.
Given that the two technologies are quite similar, you might be wondering why FreeBSD bothers with both. Packages and ports both have their own strengths, and which one you use will depend on your own preference.
Package Benefits
A compressed package tarball is typically smaller than the compressed tarball containing the source code for the application.
Packages do not require any additional compilation. For large applications, such as Mozilla, KDE, or GNOME this can be important, particularly if you are on a slow system.
Packages do not require any understanding of the process involved in compiling software on FreeBSD.
Ports Benefits
Packages are normally compiled with conservative options, because they have to run on the maximum number of systems. By installing from the port, you can tweak the compilation options to (for example) generate code that is specific to a Pentium 4 or Athlon processor.
Some applications have compile-time options relating to what they can and cannot do. For example, Apache can be configured with a wide variety of different built-in options. By building from the port you do not have to accept the default options, and can set them yourself.
In some cases, multiple packages will exist for the same application to specify certain settings. For example, Ghostscript is available as a ghostscript package and a ghostscript-nox11 package, depending on whether or not you have installed an X11 server. This sort of rough tweaking is possible with packages, but rapidly becomes impossible if an application has more than one or two different compile-time options.
The licensing conditions of some software distributions forbid binary distribution. They must be distributed as source code.
Some people do not trust binary distributions. At least with source code, you can (in theory) read through it and look for potential problems yourself.
If you have local patches, you will need the source in order to apply them.
Some people like having code around, so they can read it if they get bored, hack it, borrow from it (license permitting, of course), and so on.
To keep track of updated ports, subscribe to the FreeBSD ports mailing list and the FreeBSD ports bugs mailing list.
Warning: Before installing any application, you should check http://vuxml.freebsd.org/ for security issues related to your application.
You can also install ports-mgmt/portaudit which will automatically check all installed applications for known vulnerabilities; a check will be also performed before any port build. Meanwhile, you can use the command portaudit -F -a after you have installed some packages.
The remainder of this chapter will explain how to use packages and ports to install and manage third-party software on FreeBSD.
Before you can install any applications you need to know what you want, and what the application is called.
FreeBSD's list of available applications is growing all the time. Fortunately, there are a number of ways to find what you want:
The FreeBSD web site maintains an up-to-date searchable list of all the available applications, at http://www.FreeBSD.org/ports/. The ports are divided into categories, and you may either search for an application by name (if you know it), or see all the applications available in a category.
Dan Langille maintains FreshPorts, at http://www.FreshPorts.org/. FreshPorts tracks changes to the applications in the ports tree as they happen, allows you to “watch” one or more ports, and can send you email when they are updated.
If you do not know the name of the application you want, try using a site like Freecode (http://www.freecode.com/) to find an application, then check back at the FreeBSD site to see if the application has been ported yet.
If you know the exact name of the port, but just need to find out which category it is in, you can use the whereis(1) command. Simply type whereis file, where file is the program you want to install. If it is found on your system, you will be told where it is, as follows:
# whereis lsof lsof: /usr/ports/sysutils/lsof
This tells us that lsof (a system utility) can be found in the /usr/ports/sysutils/lsof directory.
Additionally, you can use a simple echo(1) statement to find where a port exists in the ports tree. For example:
# echo /usr/ports/*/*lsof* /usr/ports/sysutils/lsof
Note that this will return any matched files downloaded into the /usr/ports/distfiles directory.
Yet another way to find a particular port is by using the Ports Collection's built-in search mechanism. To use the search feature, you will need to be in the /usr/ports directory. Once in that directory, run make search name=program-name where program-name is the name of the program you want to find. For example, if you were looking for lsof:
# cd /usr/ports # make search name=lsof Port: lsof-4.56.4 Path: /usr/ports/sysutils/lsof Info: Lists information about open files (similar to fstat(1)) Maint: [email protected] Index: sysutils B-deps: R-deps:
The part of the output you want to pay particular attention to is the “Path:” line, since that tells you where to find the port. The other information provided is not needed in order to install the port, so it will not be covered here.
Alternatively, there is another search feature from ports that achieves the same purpose but with less noise, the quicksearch feature. This feature accepts the same parameter as the search feature. For example, searching for lsof would return:
# cd /usr/ports # make quicksearch name=lsof Port: lsof-4.87.a,7 Path: /usr/ports/sysutils/lsof Info: Lists information about open files (similar to fstat(1))
For more in-depth searching you can also use make search key=string or make quicksearch key=string, where string is some text to search for. This searches port names, comments, descriptions and dependencies and can be used to find ports which relate to a particular subject if you do not know the name of the program you are looking for.
In both of these cases (search and quicksearch), the search string is case-insensitive. Searching for “LSOF” will yield the same results as searching for “lsof”.
There are several different tools used to manage packages on FreeBSD:
The sysinstall utility can be invoked on a running system to install, delete, and list available and installed packages. For more information, see Section 3.10.11.
The package management command line tools, which are the subject of the rest of this section.
You can use the pkg_add(1) utility to install a FreeBSD software package from a local file or from a server on the network.
Example 5-1. Downloading a Package Manually and Installing It Locally
# ftp -a ftp2.FreeBSD.org Connected to ftp2.FreeBSD.org. 220 ftp2.FreeBSD.org FTP server (Version 6.00LS) ready. 331 Guest login ok, send your email address as password. 230- 230- This machine is in Vienna, VA, USA, hosted by Verio. 230- Questions? E-mail [email protected]. 230- 230- 230 Guest login ok, access restrictions apply. Remote system type is UNIX. Using binary mode to transfer files. ftp> cd /pub/FreeBSD/ports/packages/sysutils/ 250 CWD command successful. ftp> get lsof-4.56.4.tgz local: lsof-4.56.4.tgz remote: lsof-4.56.4.tgz 200 PORT command successful. 150 Opening BINARY mode data connection for 'lsof-4.56.4.tgz' (92375 bytes). 100% |**************************************************| 92375 00:00 ETA 226 Transfer complete. 92375 bytes received in 5.60 seconds (16.11 KB/s) ftp> exit # pkg_add lsof-4.56.4.tgz
If you do not have a source of local packages (such as a FreeBSD CD-ROM set) then
it will probably be easier to use the -r
option to pkg_add(1). This will
cause the utility to automatically determine the correct object format and
release and then fetch and install the package from an FTP site.
# pkg_add -r lsof
The example above would download the correct package and add it without any further user intervention. If you want to specify an alternative FreeBSD Packages Mirror, instead of the main distribution site, you have to set the PACKAGESITE environment variable accordingly, to override the default settings. pkg_add(1) uses fetch(3) to download the files, which honors various environment variables, including FTP_PASSIVE_MODE, FTP_PROXY, and FTP_PASSWORD. You may need to set one or more of these if you are behind a firewall, or need to use an FTP/HTTP proxy. See fetch(3) for the complete list. Note that in the example above lsof is used instead of lsof-4.56.4. When the remote fetching feature is used, the version number of the package must be removed. pkg_add(1) will automatically fetch the latest version of the application.
Note: pkg_add(1) will download the latest version of your application if you are using FreeBSD-CURRENT or FreeBSD-STABLE. If you run a -RELEASE version, it will grab the version of the package that was built with your release. It is possible to change this behavior by overriding PACKAGESITE. For example, if you run a FreeBSD 8.1-RELEASE system, by default pkg_add(1) will try to fetch packages from ftp://ftp.freebsd.org/pub/FreeBSD/ports/i386/packages-8.1-release/Latest/. If you want to force pkg_add(1) to download FreeBSD 8-STABLE packages, set PACKAGESITE to ftp://ftp.freebsd.org/pub/FreeBSD/ports/i386/packages-8-stable/Latest/.
Package files are distributed in .tgz and .tbz formats. You can find them at ftp://ftp.FreeBSD.org/pub/FreeBSD/ports/packages/, or on the FreeBSD CD-ROM distribution. Every CD on the FreeBSD 4-CD set (and the PowerPak, etc.) contains packages in the /packages directory. The layout of the packages is similar to that of the /usr/ports tree. Each category has its own directory, and every package can be found within the All directory.
The directory structure of the package system matches the ports layout; they work with each other to form the entire package/port system.
pkg_info(1) is a utility that lists and describes the various packages installed.
# pkg_info colordiff-1.0.13 A tool to colorize diff output docbook-1.2 Meta-port for the different versions of the DocBook DTD ...
pkg_version(1) is a utility that summarizes the versions of all installed packages. It compares the package version to the current version found in the ports tree.
# pkg_version colordiff = docbook = ...
The symbols in the second column indicate the relative age of the installed version and the version available in the local ports tree.
Symbol | Meaning |
---|---|
= | The version of the installed package matches the one found in the local ports tree. |
< | The installed version is older than the one available in the ports tree. |
> | The installed version is newer than the one found in the local ports tree. (The local ports tree is probably out of date.) |
? | The installed package cannot be found in the ports index. (This can happen, for instance, if an installed port is removed from the Ports Collection or renamed.) |
* | There are multiple versions of the package. |
! | The installed package exists in the index but for some reason, pkg_version was unable to compare the version number of the installed package with the corresponding entry in the index. |
To remove a previously installed software package, use the pkg_delete(1) utility.
# pkg_delete xchat-1.7.1
Note that pkg_delete(1) requires the full package name and number; the above command would not work if xchat was given instead of xchat-1.7.1. It is, however, easy to use pkg_version(1) to find the version of the installed package. You could instead simply use a wildcard:
# pkg_delete xchat\*
in this case, all packages whose names start with xchat will be deleted.
All package information is stored within the /var/db/pkg directory. The installed file list and descriptions of each package can be found within files in this directory.
pkgng is an improved replacement for the traditional FreeBSD pkg_install package management tools, offering many features that make dealing with binary packages faster and easier. The first release of pkgng was in August, 2012.
pkgng is not a replacement for port management tools like ports-mgmt/portmaster or ports-mgmt/portupgrade. While ports-mgmt/portmaster and ports-mgmt/portupgrade can install third-party software from both binary packages and the Ports Collection, pkgng installs only binary packages.
FreeBSD 9.1 and later includes a "bootstrap" utility for pkgng. The bootstrap utility will download and install pkgng.
To bootstrap the system, run:
# /usr/sbin/pkg
For earlier FreeBSD versions, pkgng must be installed from the Ports Collection, or as a binary package.
To install the pkgng port, run:
# cd /usr/ports/ports-mgmt/pkg # make # make install clean
To install the binary package, run:
# pkg_add -r pkg
Note: The pkgng package management utility is not supported on FreeBSD 7.X or FreeBSD 8.0.
Existing FreeBSD installations require conversion of the pkg_install package database to the new format. To convert the package database, run:
# pkg2ng
This step is not required for new installations that do not have third-party software installed.
Important: This step is not reversible. Once the package database has been converted to the pkgng format, the pkg_install tools should not be used.
Note: The package database conversion may emit errors as the contents are converted to the new version. Generally, these errors can be safely ignored, however a list of third-party software that was not successfully converted will be listed after pkg2ng has finished. These must be fixed by hand.
To ensure the FreeBSD Ports Collection registers new software with pkgng, and not pkg_install, FreeBSD versions earlier than 10.X require this line in /etc/make.conf:
WITH_PKGNG= yes
The pkgng package management system uses a package repository for most operations. The default package repository location is defined in /usr/local/etc/pkg.conf or the PACKAGESITE environment variable, which overrides the configuration file.
Additional pkgng configuration options are described in pkg.conf(5).
Usage information for pkgng is available in the pkg(8) manual page, or by running pkg without additional arguments.
Each pkgng command argument is documented in a command-specific manual page. To read the manual page for pkg install, for example, run either:
# pkg help install
# man pkg-install
Information about the packages installed on a system can be viewed by running pkg info. Similar to pkg_info(1), the package version and description for all packages will be listed.
Information about a specific package is available by running:
# pkg info packagename
For example, to see which version of pkgng is installed on the system, run:
# pkg info pkg pkg-1.0.2 New generation package manager
In general, most FreeBSD users will install binary packages by running:
# pkg install packagename
pkg install uses repository data, as mentioned in Section 5.5.2. Conversely, pkg-add(8) does not use repository data, nor does it use the defined PACKAGESITE, so dependencies may not be properly tracked, and missing dependencies will not be fetched from a remote source. This section covers usage of pkg install. For information on usage of pkg add, see pkg-add(8).
Additional binary packages can be installed with pkg install. For example, to install curl:
# pkg install curl Updating repository catalogue Repository catalogue is up-to-date, no need to fetch fresh copy The following packages will be installed: Installing ca_root_nss: 3.13.5 Installing curl: 7.24.0 The installation will require 4 MB more space 1 MB to be downloaded Proceed with installing packages [y/N]: y ca_root_nss-3.13.5.txz 100% 255KB 255.1KB/s 255.1KB/s 00:00 curl-7.24.0.txz 100% 1108KB 1.1MB/s 1.1MB/s 00:00 Checking integrity... done Installing ca_root_nss-3.13.5... done Installing curl-7.24.0... done
The new package and any additional packages that were installed as dependencies can be seen in the installed packages list:
# pkg info ca_root_nss-3.13.5 The root certificate bundle from the Mozilla Project curl-7.24.0 Non-interactive tool to get files from FTP, GOPHER, HTTP(S) servers pkg-1.0.2 New generation package manager
Packages that are no longer needed can be removed with pkg delete. For example, if it turns out that curl is not needed after all:
# pkg delete curl The following packages will be deleted: curl-7.24.0_1 The deletion will free 3 MB Proceed with deleting packages [y/N]: y Deleting curl-7.24.0_1... done
Packages that are outdated can be found with pkg version. If a local ports tree does not exist, pkg-version(8) will use the remote repository catalogue, otherwise the local ports tree will be used to identify package versions.
Packages can be upgraded to newer versions with pkgng. Suppose a new version of curl has been released. The local package can be upgraded to the new version:
# pkg upgrade Updating repository catalogue repo.txz 100% 297KB 296.5KB/s 296.5KB/s 00:00 The following packages will be upgraded: Upgrading curl: 7.24.0 -> 7.24.0_1 1 MB to be downloaded Proceed with upgrading packages [y/N]: y curl-7.24.0_1.txz 100% 1108KB 1.1MB/s 1.1MB/s 00:00 Checking integrity... done Upgrading curl from 7.24.0 to 7.24.0_1... done
Occasionally, software vulnerabilities may be discovered in software within the Ports Collection. pkgng includes built-in auditing, similar to the ports-mgmt/portaudit package. To audit the software installed on the system, run:
# pkg audit -F
Removing a package may leave behind unnecessary dependencies, like security/ca_root_nss in the example above. Such packages are still installed, but nothing depends on them any more. Unneeded packages that were installed as dependencies can be automatically detected and removed:
# pkg autoremove Packages to be autoremoved: ca_root_nss-3.13.5 The autoremoval will free 723 kB Proceed with autoremoval of packages [y/N]: y Deinstalling ca_root_nss-3.13.5... done
Unlike the pkg_install package management system, pkgng includes its own package database backup mechanism. To manually back up the package database contents, run:
# pkg backup -d pkgng.db
Note: Replace the file name pkgng.db to a suitable file name.
Additionally, pkgng includes a periodic(8) script to automatically back up the package database daily if daily_backup_pkgng_enable is set to YES in periodic.conf(5).
Tip: To prevent the pkg_install periodic script from also backing up the package database, set daily_backup_pkgdb_enable to NO in periodic.conf(5).
To restore the contents of a previous package database backup, run:
# pkg backup -r /path/to/pkgng.db
By default, pkgng stores binary packages in a cache directory as defined by PKG_CACHEDIR in pkg.conf(5). When upgrading packages with pkg upgrade, old versions of the upgraded packages are not automatically removed.
To remove the outdated binary packages, run:
# pkg clean
Historically, software within the FreeBSD Ports Collection can undergo major version number changes. Unlike pkg_install, pkgng has a built-in command to update package origins. For example, if lang/php5 was originally at version 5.3, but has been renamed to lang/php53 for the inclusion of version 5.4, pkg_install would require the use of additional software such as ports-mgmt/portmaster to update the package database, reflecting from which port the installation originated.
Unlike the ports-mgmt/portmaster and ports-mgmt/portupgrade ports, the order in which the new and old versions are listed differ. For pkgng, the syntax is:
# pkg set -o category/oldport:category/newport
For example, to change the package origin for the above example, run:
# pkg set -o lang/php5:lang/php53
As another example, to update lang/ruby18 to lang/ruby19, run:
# pkg set -o lang/ruby18:lang/ruby19
As a final example, to change the origin of the libglut shared libraries from graphics/libglut to graphics/freeglut, run:
# pkg set -o graphics/libglut:graphics/freeglut
Note: When changing package origins, in most cases it is important to reinstall packages that are dependent on the package that has had the origin changed. To force a reinstallation of dependent packages, run:
# pkg install -Rf graphics/freeglut
The following sections provide basic instructions on using the Ports Collection to install or remove programs from your system. The detailed description of available make targets and environment variables is available in ports(7).
Warning: As of mid 2012, the FreeBSD Ports Project has migrated revision control systems from CVS to Subversion. The preferred method for obtaining and maintaining the ports tree is Portsnap. Users requiring local customization of ports (that is, maintaining additional local patches) will probably prefer to use Subversion directly. The CVSup service is being phased out as of February 28, 2013, and further use is discouraged.
The Ports Collection is a set of Makefiles, patches, and description files stored in /usr/ports. This set of files is used for building and installing applications on FreeBSD. The instructions below show several methods of obtaining the Ports Collection if it was not installed during initial FreeBSD setup.
Portsnap Method
Portsnap is a fast and user-friendly tool for retrieving the Ports Collection, the preferred choice for most users. See Using Portsnap for a detailed description of Portsnap.
Download a compressed snapshot of the Ports Collection into /var/db/portsnap.
# portsnap fetch
When running Portsnap for the first time, extract the snapshot into /usr/ports:
# portsnap extract
After the first use of Portsnap has been completed as shown above, /usr/ports can be updated with:
# portsnap update
Subversion Method
If more control over the ports tree is needed (for example, for maintaining local changes), Subversion can be used to obtain the Ports Collection. Refer to the Subversion Primer for a detailed description of Subversion.
Subversion must be installed before it can be used to check out the ports tree. If a copy of the ports tree is already present, install Subversion like this:
# cd /usr/ports/devel/subversion # make install clean
If the ports tree is not available, Subversion can be installed as a package:
# pkg_add -r subversion
If pkgng is being used to manage packages, Subversion can be installed with it instead:
# pkg install subversion
Check out a copy of the ports tree. Use a specific Subversion mirror close to your geographic location instead of svn.FreeBSD.org in the command below for better performance. Committers should read the Subversion Primer first to be sure the correct protocol is chosen.
# svn checkout svn://svn.FreeBSD.org/ports/head /usr/ports
To update /usr/ports after the initial Subversion checkout:
# svn update /usr/ports
Sysinstall Method
This method involves using sysinstall to install the Ports Collection from the installation media. Note that the old copy of Ports Collection from the date of the release will be installed. If you have Internet access, you should always use one of the methods mentioned above.
As root, run sysinstall as shown below:
# sysinstall
Scroll down and select
, press Enter.Scroll down and select
, press Enter.Scroll down to
, press Space.Scroll up to
, press Enter.Select your desired installation media, such as CDROM, FTP, and so on.
Scroll up to
and press Enter.Press X to exit sysinstall.
Warning: By February 28, 2013, the ports tree will no longer be exported to CVS and therefore CVSup and csup will no longer provide updates for the ports tree.
Migration to Portsnap
The migration will require about 1 GB of disk space on /usr, plus Portsnap requires about 150 MB disk space on /var.
Disable any automated ports updates you may use, such as a cron(8) job calling CVSup or csup.
Move the existing ports tree to a temporary location:
# mv /usr/ports /usr/ports.old
Fetch the new ports tree with Portsnap and extract it to /usr/ports:
# portsnap fetch extract
Move distfiles and saved packages to the new ports tree:
# mv /usr/ports.old/distfiles /usr/ports # mv /usr/ports.old/packages /usr/ports
Delete the old ports tree:
# rm -rf /usr/ports.old
If CVSup was used before, it can now be uninstalled:
# pkg_delete -r -v cvsup-without-gui-\*
Users of pkgng can use the following command:
# pkg delete cvsup-without-gui
See Using Portsnap for a detailed description of Portsnap and how to update the ports tree with Portsnap.
The first thing that should be explained when it comes to the Ports Collection is what is actually meant by a “skeleton”. In a nutshell, a port skeleton is a minimal set of files that tell your FreeBSD system how to cleanly compile and install a program. Each port skeleton includes:
A Makefile. The Makefile contains various statements that specify how the application should be compiled and where it should be installed on your system.
A distinfo file. This file contains information about the files that must be downloaded to build the port, and their checksums (using sha256(1)), to verify that files have not been corrupted during the download.
A files directory. This directory contains patches to make the program compile and install on your FreeBSD system. Patches are basically small files that specify changes to particular files. They are in plain text format, and basically say “Remove line 10” or “Change line 26 to this ...”. Patches are also known as “diffs” because they are generated by the diff(1) program.
This directory may also contain other files used to build the port.
A pkg-descr file. This is a more detailed, often multiple-line, description of the program.
A pkg-plist file. This is a list of all the files that will be installed by the port. It also tells the ports system what files to remove upon deinstallation.
Some ports have other files, such as pkg-message. The ports system uses these files to handle special situations. If you want more details on these files, and on ports in general, check out the FreeBSD Porter's Handbook.
The port includes instructions on how to build source code, but does not include the actual source code. You can get the source code from a CD-ROM or from the Internet. Source code is distributed in whatever manner the software author desires. Frequently this is a tarred and gzipped file, but it might be compressed with some other tool or even uncompressed. The program source code, whatever form it comes in, is called a “distfile”. The two methods for installing a FreeBSD port are described below.
Note: You must be logged in as root to install ports.
Warning: Before installing any port, you should be sure to have an up-to-date Ports Collection and you should check http://vuxml.freebsd.org/ for security issues related to your port.
A security vulnerabilities check can be automatically done by portaudit before any new application installation. This tool can be found in the Ports Collection (ports-mgmt/portaudit). Consider running portaudit -F before installing a new port, to fetch the current vulnerabilities database. A security audit and an update of the database will be performed during the daily security system check. For more information read the portaudit(1) and periodic(8) manual pages.
The Ports Collection makes an assumption that you have a working Internet connection. If you do not, you will need to put a copy of the distfile into /usr/ports/distfiles manually.
To begin, change to the directory for the port you want to install:
# cd /usr/ports/sysutils/lsof
Once inside the lsof directory, you will see the port skeleton. The next step is to compile, or “build”, the port. This is done by simply typing make at the prompt. Once you have done so, you should see something like this:
# make >> lsof_4.57D.freebsd.tar.gz doesn't seem to exist in /usr/ports/distfiles/. >> Attempting to fetch from ftp://lsof.itap.purdue.edu/pub/tools/unix/lsof/. ===> Extracting for lsof-4.57 ... [extraction output snipped] ... >> Checksum OK for lsof_4.57D.freebsd.tar.gz. ===> Patching for lsof-4.57 ===> Applying FreeBSD patches for lsof-4.57 ===> Configuring for lsof-4.57 ... [configure output snipped] ... ===> Building for lsof-4.57 ... [compilation output snipped] ... #
Notice that once the compile is complete you are returned to your prompt. The next step is to install the port. In order to install it, you simply need to tack one word onto the make command, and that word is install:
# make install ===> Installing for lsof-4.57 ... [installation output snipped] ... ===> Generating temporary packing list ===> Compressing manual pages for lsof-4.57 ===> Registering installation for lsof-4.57 ===> SECURITY NOTE: This port has installed the following binaries which execute with increased privileges. #
Once you are returned to your prompt, you should be able to run the application you just installed. Since lsof is a program that runs with increased privileges, a security warning is shown. During the building and installation of ports, you should take heed of any other warnings that may appear.
It is a good idea to delete the working subdirectory, which contains all the temporary files used during compilation. Not only does it consume valuable disk space, but it would also cause problems later when upgrading to the newer version of the port.
# make clean ===> Cleaning for lsof-4.57 #
Note: You can save two extra steps by just running make install clean instead of make, make install and make clean as three separate steps.
Note: When installing a port, using only make install from the beginning means there will potentially be many waiting periods between user interaction as the default behaviour is to prompt the user for options. When there are many dependencies, this sometimes makes building a single port a huge hassle. To avoid this, first run make config-recursive to do the configuration in one batch. Then run make install [clean] afterwards.
Tip: When using config-recursive, the list of ports to configure are gathered by the all-depends-list make(1) target. It is often recommended to run make config-recursive until all dependent ports options have been defined, and ports options dialog(1) screens no longer appear, to be certain all ports options have been configured as intended.
Note: Some shells keep a cache of the commands that are available in the directories listed in the PATH environment variable, to speed up lookup operations for the executable file of these commands. If you are using one of these shells, you might have to use the rehash command after installing a port, before the newly installed commands can be used. This command will work for shells like tcsh. Use the hash -r command for shells like sh. Look at the documentation for your shell for more information.
Some third-party DVD-ROM products such as the FreeBSD Toolkit from the FreeBSD Mall contain distfiles. They can be used with the Ports Collection. Mount the DVD-ROM on /cdrom. If you use a different mount point, set CD_MOUNTPTS make variable. The needed distfiles will be automatically used if they are present on the disk.
Note: Please be aware that the licenses of a few ports do not allow for inclusion on the CD-ROM. This could be because a registration form needs to be filled out before downloading or redistribution is not allowed, or for another reason. If you wish to install a port not included on the CD-ROM, you will need to be online in order to do so.
The ports system uses fetch(1) to download the files, which honors various environment variables, including FTP_PASSIVE_MODE, FTP_PROXY, and FTP_PASSWORD. You may need to set one or more of these if you are behind a firewall, or need to use an FTP/HTTP proxy. See fetch(3) for the complete list.
For users which cannot be connected all the time, the make fetch option is provided. Just run this command at the top level directory (/usr/ports) and the required files will be downloaded for you. This command will also work in the lower level categories, for example: /usr/ports/net. Note that if a port depends on libraries or other ports this will not fetch the distfiles of those ports too. Replace fetch with fetch-recursive if you want to fetch all the dependencies of a port too.
Note: You can build all the ports in a category or as a whole by running make in the top level directory, just like the aforementioned make fetch method. This is dangerous, however, as some ports cannot co-exist. In other cases, some ports can install two different files with the same filename.
In some rare cases, users may need to acquire the tarballs from a site other than the MASTER_SITES (the location where files are downloaded from). You can override the MASTER_SITES option with the following command:
# cd /usr/ports/directory # make MASTER_SITE_OVERRIDE= \ ftp://ftp.FreeBSD.org/pub/FreeBSD/ports/distfiles/ fetch
In this example we change the MASTER_SITES option to ftp.FreeBSD.org/pub/FreeBSD/ports/distfiles/.
Note: Some ports allow (or even require) you to provide build options which can enable/disable parts of the application which are unneeded, certain security options, and other customizations. A few which come to mind are www/firefox, security/gpgme, and mail/sylpheed-claws. A message will be displayed when options such as these are available.
Sometimes it is useful (or mandatory) to use a different working and target directory. The WRKDIRPREFIX and PREFIX variables can override the default directories. For example:
# make WRKDIRPREFIX=/usr/home/example/ports install
will compile the port in /usr/home/example/ports and install everything under /usr/local.
# make PREFIX=/usr/home/example/local install
will compile it in /usr/ports and install it in /usr/home/example/local.
And of course,
# make WRKDIRPREFIX=../ports PREFIX=../local install
will combine the two (it is too long to completely write on this page, but it should give you the general idea).
Alternatively, these variables can also be set as part of your environment. Read the manual page for your shell for instructions on doing so.
Some ports that use imake (a part of the X Window System) do not work well with PREFIX, and will insist on installing under /usr/X11R6. Similarly, some Perl ports ignore PREFIX and install in the Perl tree. Making these ports respect PREFIX is a difficult or impossible job.
When building certain ports, you may be presented with a ncurses-based menu from which you can select certain build options. It is not uncommon for users to wish to revisit this menu to add, remove, or change these options after a port has been built. There are many ways to do this. One option is to go into the directory containing the port and type make config, which will simply present the menu again with the same options selected. Another option is to use make showconfig, which will show you all the configuration options for the port. Yet another option is to execute make rmconfig which will remove all selected options and allow you to start over. All of these options, and others, are explained in great detail in the manual page for ports(7).
Now that you know how to install ports, you are probably wondering how to remove them, just in case you install one and later on decide that you installed the wrong port. We will remove our previous example (which was lsof for those of you not paying attention). Ports are being removed exactly the same as the packages (discussed in the Packages section), using the pkg_delete(1) command:
# pkg_delete lsof-4.57
First, list outdated ports that have a newer version available in the Ports Collection with the pkg_version(1) command:
# pkg_version -v
Once you have updated your Ports Collection, before attempting a port upgrade, you should check /usr/ports/UPDATING. This file describes various issues and additional steps users may encounter and need to perform when updating a port, including such things as file format changes, changes in locations of configuration files, or other such incompatibilities with previous versions.
If UPDATING contradicts something you read here, UPDATING takes precedence.
The portupgrade utility is designed to easily upgrade installed ports. It is available from the ports-mgmt/portupgrade port. Install it like any other port, using the make install clean command:
# cd /usr/ports/ports-mgmt/portupgrade # make install clean
Scan the list of installed ports with the pkgdb -F command and fix all the inconsistencies it reports. It is a good idea to do this regularly, before every upgrade.
When you run portupgrade -a, portupgrade will begin to upgrade all the outdated ports
installed on your system. Use the -i
flag if you want
to be asked for confirmation of every individual upgrade.
# portupgrade -ai
If you want to upgrade only a certain application, not all available ports, use
portupgrade pkgname.
Include the -R
flag if portupgrade should first upgrade all the ports required by
the given application.
# portupgrade -R firefox
To use packages instead of ports for installation, provide -P
flag. With this option portupgrade searches the local directories listed in PKG_PATH, or fetches packages from remote site if it is not
found locally. If packages can not be found locally or fetched remotely, portupgrade will use ports. To avoid using ports, specify
-PP
.
# portupgrade -PP gnome2
To just fetch distfiles (or packages, if -P
is
specified) without building or installing anything, use -F
. For further information see
portupgrade(1).
Portmaster is another utility for upgrading installed ports. Portmaster was designed make use of the tools found in the “base” system (it does not depend upon other ports) and uses the information in /var/db/pkg/ to determine which ports to upgrade. It is available from the ports-mgmt/portmaster port:
# cd /usr/ports/ports-mgmt/portmaster # make install clean
Portmaster groups ports into four categories:
Root ports (no dependencies, not depended on)
Trunk ports (no dependencies, are depended on)
Branch ports (have dependencies, are depended on)
Leaf ports (have dependencies, not depended on)
You can list all the installed ports and search for updates using the -L
option:
# portmaster -L ===>>> Root ports (No dependencies, not depended on) ===>>> ispell-3.2.06_18 ===>>> screen-4.0.3 ===>>> New version available: screen-4.0.3_1 ===>>> tcpflow-0.21_1 ===>>> 7 root ports ... ===>>> Branch ports (Have dependencies, are depended on) ===>>> apache-2.2.3 ===>>> New version available: apache-2.2.8 ... ===>>> Leaf ports (Have dependencies, not depended on) ===>>> automake-1.9.6_2 ===>>> bash-3.1.17 ===>>> New version available: bash-3.2.33 ... ===>>> 32 leaf ports ===>>> 137 total installed ports ===>>> 83 have new versions available
All the installed ports can be upgraded using this simple command:
# portmaster -a
Note: By default, Portmaster will make a backup package before deleting the existing port. If the installation of the new version is successful, Portmaster will delete the backup. Using the
-b
will instruct Portmaster not to automatically delete the backup. Adding the-i
option will start Portmaster in interactive mode, prompting you before upgrading each port.
If you encounter errors during the upgrade process, you can use the -f
option to upgrade/rebuild all ports:
# portmaster -af
You can also use Portmaster to install new ports on the system, upgrading all dependencies before building and installing the new port:
# portmaster shells/bash
Please see portmaster(8) for more information.
Using the Ports Collection will use up disk space over time. After building and installing software from the ports, you should always remember to clean up the temporary work directories using the make clean command. You can sweep the whole Ports Collection with the following command:
# portsclean -C
You will accumulate a lot of old source distribution files in the distfiles directory over time. You can remove them by hand, or you can use the following command to delete all the distfiles that are no longer referenced by any ports:
# portsclean -D
Or to remove all distfiles not referenced by any port currently installed on your system:
# portsclean -DD
Note: The portsclean utility is part of the portupgrade suite.
Do not forget to remove the installed ports once you no longer need them. A nice tool to help automate this task is available from the ports-mgmt/pkg_cutleaves port.
After installing a new application you will normally want to read any documentation it may have included, edit any configuration files that are required, ensure that the application starts at boot time (if it is a daemon), and so on.
The exact steps you need to take to configure each application will obviously be different. However, if you have just installed a new application and are wondering “What now?” these tips might help:
Use pkg_info(1) to find out which files were installed, and where. For example, if you have just installed FooPackage version 1.0.0, then this command
# pkg_info -L foopackage-1.0.0 | less
will show all the files installed by the package. Pay special attention to files in man/ directories, which will be manual pages, etc/ directories, which will be configuration files, and doc/, which will be more comprehensive documentation.
If you are not sure which version of the application was just installed, a command like this
# pkg_info | grep -i foopackage
will find all the installed packages that have foopackage in the package name. Replace foopackage in your command line as necessary.
Once you have identified where the application's manual pages have been installed, review them using man(1). Similarly, look over the sample configuration files, and any additional documentation that may have been provided.
If the application has a web site, check it for additional documentation, frequently asked questions, and so forth. If you are not sure of the web site address it may be listed in the output from
# pkg_info foopackage-1.0.0
A WWW: line, if present, should provide a URL for the application's web site.
Ports that should start at boot (such as Internet servers) will usually install a sample script in /usr/local/etc/rc.d. You should review this script for correctness and edit or rename it if needed. See Starting Services for more information.
If you come across a port that does not work for you, there are a few things you can do, including:
Find out if there is a fix pending for the port in the Problem Report database. If so, you may be able to use the proposed fix.
Ask the maintainer of the port for help. Type make maintainer or read the Makefile to find the maintainer's email address. Remember to include the name and version of the port (send the $FreeBSD: line from the Makefile) and the output leading up to the error when you email the maintainer.
Note: Some ports are not maintained by an individual but instead by a mailing list. Many, but not all, of these addresses look like
<[email protected]>
. Please take this into account when phrasing your questions.In particular, ports shown as maintained by
<[email protected]>
are actually not maintained by anyone. Fixes and support, if any, come from the general community who subscribe to that mailing list. More volunteers are always needed!
If you do not get a response, you can use send-pr(1) to submit a bug report (see Writing FreeBSD Problem Reports).
Fix it! The Porter's Handbook includes detailed information on the “Ports” infrastructure so that you can fix the occasional broken port or even submit your own!
Grab the package from an FTP site near you. The “master” package collection is on ftp.FreeBSD.org in the packages directory, but be sure to check your closer mirror sites first! These are more likely to work than trying to compile from source and are a lot faster as well. Use the pkg_add(1) program to install the package on your system.
FreeBSD uses X11 to provide users with a powerful graphical user interface. X11 is a freely available version of the X Window System that is implemented in Xorg (and other software packages not discussed here). The default and official flavor of X11 in FreeBSD is Xorg, the X11 server developed by the X.Org Foundation under a license very similar to the one used by FreeBSD. Commercial X servers for FreeBSD are also available.
For more information on the video hardware that X11 supports, check the Xorg web site.
After reading this chapter, you will know:
The various components of the X Window System, and how they interoperate.
How to install and configure X11.
How to install and use different window managers.
How to use TrueType® fonts in X11.
How to set up your system for graphical logins (XDM).
Before reading this chapter, you should:
Know how to install additional third-party software (Chapter 5).
Using X for the first time can be somewhat of a shock to someone familiar with other graphical environments, such as Microsoft Windows or Mac OS.
While it is not necessary to understand all of the details of various X components and how they interact, some basic knowledge makes it possible to take advantage of X's strengths.
X is not the first window system written for UNIX, but it is the most popular of them. X's original development team had worked on another window system prior to writing X. That system's name was “W” (for “Window”). X was just the next letter in the Roman alphabet.
X can be called “X”, “X Window System”, “X11”, and a number of other terms. You may find that using the term “X Windows” to describe X11 can be offensive to some people; for a bit more insight on this, see X(7).
X was designed from the beginning to be network-centric, and adopts a “client-server” model.
In the X model, the “X server” runs on the computer that has the keyboard, monitor, and mouse attached. The server's responsibility includes tasks such as managing the display, handling input from the keyboard and mouse, and other input or output devices (i.e., a “tablet” can be used as an input device, and a video projector may be an alternative output device). Each X application (such as XTerm, or Netscape) is a “client”. A client sends messages to the server such as “Please draw a window at these coordinates”, and the server sends back messages such as “The user just clicked on the OK button”.
In a home or small office environment, the X server and the X clients commonly run on the same computer. However, it is perfectly possible to run the X server on a less powerful desktop computer, and run X applications (the clients) on, say, the powerful and expensive machine that serves the office. In this scenario the communication between the X client and server takes place over the network.
This confuses some people, because the X terminology is exactly backward to what they expect. They expect the “X server” to be the big powerful machine down the hall, and the “X client” to be the machine on their desk.
It is important to remember that the X server is the machine with the monitor and keyboard, and the X clients are the programs that display the windows.
There is nothing in the protocol that forces the client and server machines to be running the same operating system, or even to be running on the same type of computer. It is certainly possible to run an X server on Microsoft Windows or Apple's Mac OS, and there are various free and commercial applications available that do exactly that.
The X design philosophy is much like the UNIX design philosophy, “tools, not policy”. This means that X does not try to dictate how a task is to be accomplished. Instead, tools are provided to the user, and it is the user's responsibility to decide how to use those tools.
This philosophy extends to X not dictating what windows should look like on screen, how to move them around with the mouse, what keystrokes should be used to move between windows (i.e., Alt+Tab, in the case of Microsoft Windows), what the title bars on each window should look like, whether or not they have close buttons on them, and so on.
Instead, X delegates this responsibility to an application called a “Window Manager”. There are dozens of window managers available for X: AfterStep, Blackbox, ctwm, Enlightenment, fvwm, Sawfish, twm, Window Maker, and more. Each of these window managers provides a different look and feel; some of them support “virtual desktops”; some of them allow customized keystrokes to manage the desktop; some have a “Start” button or similar device; some are “themeable”, allowing a complete change of look-and-feel by applying a new theme. These window managers, and many more, are available in the x11-wm category of the Ports Collection.
In addition, the KDE and GNOME desktop environments both have their own window managers which integrate with the desktop.
Each window manager also has a different configuration mechanism; some expect configuration file written by hand, others feature GUI tools for most of the configuration tasks; at least one (Sawfish) has a configuration file written in a dialect of the Lisp language.
Focus Policy: Another feature the window manager is responsible for is the mouse “focus policy”. Every windowing system needs some means of choosing a window to be actively receiving keystrokes, and should visibly indicate which window is active as well.
A familiar focus policy is called “click-to-focus”. This is the model utilized by Microsoft Windows, in which a window becomes active upon receiving a mouse click.
X does not support any particular focus policy. Instead, the window manager controls which window has the focus at any one time. Different window managers will support different focus methods. All of them support click to focus, and the majority of them support several others.
The most popular focus policies are:
- focus-follows-mouse
The window that is under the mouse pointer is the window that has the focus. This may not necessarily be the window that is on top of all the other windows. The focus is changed by pointing at another window, there is no need to click in it as well.
- sloppy-focus
This policy is a small extension to focus-follows-mouse. With focus-follows-mouse, if the mouse is moved over the root window (or background) then no window has the focus, and keystrokes are simply lost. With sloppy-focus, focus is only changed when the cursor enters a new window, and not when exiting the current window.
- click-to-focus
The active window is selected by mouse click. The window may then be “raised”, and appear in front of all other windows. All keystrokes will now be directed to this window, even if the cursor is moved to another window.
Many window managers support other policies, as well as variations on these. Be sure to consult the documentation for the window manager itself.
The X approach of providing tools and not policy extends to the widgets seen on screen in each application.
“Widget” is a term for all the items in the user interface that can be clicked or manipulated in some way; buttons, check boxes, radio buttons, icons, lists, and so on. Microsoft Windows calls these “controls”.
Microsoft Windows and Apple's Mac OS both have a very rigid widget policy. Application developers are supposed to ensure that their applications share a common look and feel. With X, it was not considered sensible to mandate a particular graphical style, or set of widgets to adhere to.
As a result, do not expect X applications to have a common look and feel. There are several popular widget sets and variations, including the original Athena widget set from MIT, Motif® (on which the widget set in Microsoft Windows was modeled, all bevelled edges and three shades of grey), OpenLook, and others.
Most newer X applications today will use a modern-looking widget set, either Qt, used by KDE, or GTK+, used by the GNOME project. In this respect, there is some convergence in look-and-feel of the UNIX desktop, which certainly makes things easier for the novice user.
Xorg is the default X11 implementation for FreeBSD. Xorg is the X server of the open source X Window System implementation released by the X.Org Foundation. Xorg is based on the code of XFree86 4.4RC2 and X11R6.6. The version of Xorg currently available in the FreeBSD Ports Collection is 7.5.2.
To build and install Xorg from the Ports Collection:
# cd /usr/ports/x11/xorg # make install clean
Note: To build Xorg in its entirety, be sure to have at least 4 GB of free space available.
Alternatively, X11 can be installed directly from packages. Binary packages to use with pkg_add(1) tool are also available for X11. When the remote fetching feature of pkg_add(1) is used, the version number of the package must be removed. pkg_add(1) will automatically fetch the latest version of the application.
So to fetch and install the package of Xorg, simply type:
# pkg_add -r xorg
Note: The examples above will install the complete X11 distribution including the servers, clients, fonts etc. Separate packages and ports of X11 are also available.
To install a minimal X11 distribution you can alternatively install x11/xorg-minimal.
The rest of this chapter will explain how to configure X11, and how to set up a productive desktop environment.
In most cases, X11 is self-configuring. Those with older or unusual equipment may find it helpful to gather some hardware information before beginning configuration.
Monitor sync frequencies
Video card chipset
Video card memory
Screen resolution and refresh rate are determined by the monitor's horizontal and vertical sync frequencies. Almost all monitors support electronic autodetection of these values. A few monitors do not provide these values, and the specifications must be determined from the printed manual or manufacturer web site.
The video card chipset is also autodetected, and used to select the proper video driver. It is beneficial for the user to be aware of which chipset is installed for when autodetection does not provide the desired result.
Video card memory determines the maximum resolution and color depth which can be displayed.
Xorg uses HAL to autodetect keyboards and mice. The sysutils/hal and devel/dbus ports are installed as dependencies of x11/xorg, but must be enabled by the following entries in the /etc/rc.conf file:
hald_enable="YES" dbus_enable="YES"
These services should be started (either manually or by rebooting) before further Xorg configuration or use is attempted.
Xorg can often work without any further configuration steps by simply typing at prompt:
% startx
The automatic configuration may fail to work with some hardware, or may not set things up quite as desired. In these cases, manual configuration will be necessary.
Note: Desktop environments like GNOME, KDE or Xfce have tools allowing the user to easily set the screen parameters such as the resolution. So if the default configuration is not acceptable and you planned to install a desktop environment then just continue with the installation of the desktop environment and use the appropriate screen settings tool.
Configuration of X11 is a multi-step process. The first step is to build an initial configuration file. As the super user, simply run:
# Xorg -configure
This will generate an X11 configuration skeleton file in the /root directory called xorg.conf.new (whether you su(1) or do a direct login affects the inherited supervisor $HOME directory variable). The X11 program will attempt to probe the graphics hardware on the system and write a configuration file to load the proper drivers for the detected hardware on the target system.
The next step is to test the existing configuration to verify that Xorg can work with the graphics hardware on the target system. Type:
# Xorg -config xorg.conf.new -retro
If a black and grey grid and an X mouse cursor appear, the configuration was successful. To exit the test, switch to the virtual console used to start it by pressing Ctrl+Alt+Fn (F1 for the first virtual console) and press Ctrl+C.
Note: The Ctrl+Alt+Backspace key combination may also be used to break out of Xorg. To enable it, you can either type the following command from any X terminal emulator:
% setxkbmap -option terminate:ctrl_alt_bkspor create a keyboard configuration file for hald called x11-input.fdi and saved in the /usr/local/etc/hal/fdi/policy directory. This file should contain the following lines:
<?xml version="1.0" encoding="iso-8859-1"?> <deviceinfo version="0.2"> <device> <match key="info.capabilities" contains="input.keyboard"> <merge key="input.x11_options.XkbOptions" type="string">terminate:ctrl_alt_bksp</merge> </match> </device> </deviceinfo>You will have to reboot your machine to force hald to read this file.
The following line will also have to be added to xorg.conf.new, in the ServerLayout or ServerFlags section:
Option "DontZap" "off"
If the mouse does not work, you will need to first configure it before proceeding. See Section 3.10.10 in the FreeBSD install chapter. In recent Xorg versions, the InputDevice sections in xorg.conf are ignored in favor of the autodetected devices. To restore the old behavior, add the following line to the ServerLayout or ServerFlags section of this file:
Option "AutoAddDevices" "false"
Input devices may then be configured as in previous versions, along with any other options needed (e.g., keyboard layout switching).
Note: As previously explained the hald daemon will, by default, automatically detect your keyboard. There are chances that your keyboard layout or model will not be correct, desktop environments like GNOME, KDE or Xfce provide tools to configure the keyboard. However, it is possible to set the keyboard properties directly either with the help of the setxkbmap(1) utility or with a hald's configuration rule.
For example if one wants to use a PC 102 keys keyboard coming with a french layout, we have to create a keyboard configuration file for hald called x11-input.fdi and saved in the /usr/local/etc/hal/fdi/policy directory. This file should contain the following lines:
<?xml version="1.0" encoding="iso-8859-1"?> <deviceinfo version="0.2"> <device> <match key="info.capabilities" contains="input.keyboard"> <merge key="input.x11_options.XkbModel" type="string">pc102</merge> <merge key="input.x11_options.XkbLayout" type="string">fr</merge> </match> </device> </deviceinfo>If this file already exists, just copy and add to your file the lines regarding the keyboard configuration.
You will have to reboot your machine to force hald to read this file.
It is possible to do the same configuration from an X terminal or a script with this command line:
% setxkbmap -model pc102 -layout frThe /usr/local/share/X11/xkb/rules/base.lst file lists the various keyboard, layouts and options available.
The xorg.conf.new configuration file may now be tuned to taste. Open the file in a text editor such as emacs(1) or ee(1). If the monitor is an older or unusual model that does not support autodetection of sync frequencies, those settings can be added to xorg.conf.new under the "Monitor" section:
Section "Monitor" Identifier "Monitor0" VendorName "Monitor Vendor" ModelName "Monitor Model" HorizSync 30-107 VertRefresh 48-120 EndSection
Most monitors support sync frequency autodetection, making manual entry of these values unnecessary. For the few monitors that do not support autodetection, avoid potential damage by only entering values provided by the manufacturer.
X allows DPMS (Energy Star) features to be used with capable monitors. The xset(1) program controls the time-outs and can force standby, suspend, or off modes. If you wish to enable DPMS features for your monitor, you must add the following line to the monitor section:
Option "DPMS"
While the xorg.conf.new configuration file is still open in an editor, select the default resolution and color depth desired. This is defined in the "Screen" section:
Section "Screen" Identifier "Screen0" Device "Card0" Monitor "Monitor0" DefaultDepth 24 SubSection "Display" Viewport 0 0 Depth 24 Modes "1024x768" EndSubSection EndSection
The DefaultDepth keyword describes the color depth to
run at by default. This can be overridden with the -depth
command line switch to Xorg(1). The Modes keyword describes the resolution to run at for the given
color depth. Note that only VESA standard modes are supported as defined by the
target system's graphics hardware. In the example above, the default color depth is
twenty-four bits per pixel. At this color depth, the accepted resolution is
1024 by 768 pixels.
Finally, write the configuration file and test it using the test mode given above.
Note: One of the tools available to assist you during troubleshooting process are the X11 log files, which contain information on each device that the X11 server attaches to. Xorg log file names are in the format of /var/log/Xorg.0.log. The exact name of the log can vary from Xorg.0.log to Xorg.8.log and so forth.
If all is well, the configuration file needs to be installed in a common location where Xorg(1) can find it. This is typically /etc/X11/xorg.conf or /usr/local/etc/X11/xorg.conf.
# cp xorg.conf.new /etc/X11/xorg.conf
The X11 configuration process is now complete. Xorg may be now started with the startx(1) utility. The X11 server may also be started with the use of xdm(1).
Configuration with Intel i810 integrated chipsets requires the agpgart AGP programming interface for X11 to drive the card. See the agp(4) driver manual page for more information.
This will allow configuration of the hardware as any other graphics board. Note on systems without the agp(4) driver compiled in the kernel, trying to load the module with kldload(8) will not work. This driver has to be in the kernel at boot time through being compiled in or using /boot/loader.conf.
This section assumes a bit of advanced configuration knowledge. If attempts to use the standard configuration tools above have not resulted in a working configuration, there is information enough in the log files to be of use in getting the setup working. Use of a text editor will be necessary.
Current widescreen (WSXGA, WSXGA+, WUXGA, WXGA, WXGA+, et.al.) formats support 16:10 and 10:9 formats or aspect ratios that can be problematic. Examples of some common screen resolutions for 16:10 aspect ratios are:
2560x1600
1920x1200
1680x1050
1440x900
1280x800
At some point, it will be as easy as adding one of these resolutions as a possible Mode in the Section "Screen" as such:
Section "Screen" Identifier "Screen0" Device "Card0" Monitor "Monitor0" DefaultDepth 24 SubSection "Display" Viewport 0 0 Depth 24 Modes "1680x1050" EndSubSection EndSection
Xorg is smart enough to pull the resolution information from the widescreen via I2C/DDC information so it knows what the monitor can handle as far as frequencies and resolutions.
If those ModeLines do not exist in the drivers, one might need to give Xorg a little hint. Using /var/log/Xorg.0.log one can extract enough information to manually create a ModeLine that will work. Simply look for information resembling this:
(II) MGA(0): Supported additional Video Mode: (II) MGA(0): clock: 146.2 MHz Image Size: 433 x 271 mm (II) MGA(0): h_active: 1680 h_sync: 1784 h_sync_end 1960 h_blank_end 2240 h_border: 0 (II) MGA(0): v_active: 1050 v_sync: 1053 v_sync_end 1059 v_blanking: 1089 v_border: 0 (II) MGA(0): Ranges: V min: 48 V max: 85 Hz, H min: 30 H max: 94 kHz, PixClock max 170 MHz
This information is called EDID information. Creating a ModeLine from this is just a matter of putting the numbers in the correct order:
ModeLine <name> <clock> <4 horiz. timings> <4 vert. timings>
So that the ModeLine in Section "Monitor" for this example would look like this:
Section "Monitor" Identifier "Monitor1" VendorName "Bigname" ModelName "BestModel" ModeLine "1680x1050" 146.2 1680 1784 1960 2240 1050 1053 1059 1089 Option "DPMS" EndSection
Now having completed these simple editing steps, X should start on your new widescreen monitor.
The default fonts that ship with X11 are less than ideal for typical desktop publishing applications. Large presentation fonts show up jagged and unprofessional looking, and small fonts in Netscape are almost completely unintelligible. However, there are several free, high quality Type1 (PostScript®) fonts available which can be readily used with X11. For instance, the URW font collection (x11-fonts/urwfonts) includes high quality versions of standard type1 fonts (Times Roman®, Helvetica®, Palatino® and others). The Freefonts collection (x11-fonts/freefonts) includes many more fonts, but most of them are intended for use in graphics software such as the Gimp, and are not complete enough to serve as screen fonts. In addition, X11 can be configured to use TrueType fonts with a minimum of effort. For more details on this, see the X(7) manual page or the section on TrueType fonts.
To install the above Type1 font collections from the Ports Collection, run the following commands:
# cd /usr/ports/x11-fonts/urwfonts # make install clean
And likewise with the freefont or other collections. To have the X server detect these fonts, add an appropriate line to the X server configuration file (/etc/X11/xorg.conf), which reads:
FontPath "/usr/local/lib/X11/fonts/URW/"
Alternatively, at the command line in the X session run:
% xset fp+ /usr/local/lib/X11/fonts/URW % xset fp rehash
This will work but will be lost when the X session is closed, unless it is added to the startup file (~/.xinitrc for a normal startx session, or ~/.xsession when logging in through a graphical login manager like XDM). A third way is to use the new /usr/local/etc/fonts/local.conf file: see the section on anti-aliasing.
Xorg has built in support for rendering TrueType fonts. There are two different modules that can enable this functionality. The freetype module is used in this example because it is more consistent with the other font rendering back-ends. To enable the freetype module just add the following line to the "Module" section of the /etc/X11/xorg.conf file.
Load "freetype"
Now make a directory for the TrueType fonts (for example, /usr/local/lib/X11/fonts/TrueType) and copy all of the TrueType fonts into this directory. Keep in mind that TrueType fonts cannot be directly taken from a Macintosh; they must be in UNIX/MS-DOS/Windows format for use by X11. Once the files have been copied into this directory, use ttmkfdir to create a fonts.dir file, so that the X font renderer knows that these new files have been installed. ttmkfdir is available from the FreeBSD Ports Collection as x11-fonts/ttmkfdir.
# cd /usr/local/lib/X11/fonts/TrueType # ttmkfdir -o fonts.dir
Now add the TrueType directory to the font path. This is just the same as described above for Type1 fonts, that is, use
% xset fp+ /usr/local/lib/X11/fonts/TrueType % xset fp rehash
or add a FontPath line to the xorg.conf file.
That's it. Now Netscape, Gimp, StarOffice™, and all of the other X applications should now recognize the installed TrueType fonts. Extremely small fonts (as with text in a high resolution display on a web page) and extremely large fonts (within StarOffice) will look much better now.
All fonts in X11 that are found in /usr/local/lib/X11/fonts/ and ~/.fonts/ are automatically made available for anti-aliasing to Xft-aware applications. Most recent applications are Xft-aware, including KDE, GNOME, and Firefox.
In order to control which fonts are anti-aliased, or to configure anti-aliasing properties, create (or edit, if it already exists) the file /usr/local/etc/fonts/local.conf. Several advanced features of the Xft font system can be tuned using this file; this section describes only some simple possibilities. For more details, please see fonts-conf(5).
This file must be in XML format. Pay careful attention to case, and make sure all tags are properly closed. The file begins with the usual XML header followed by a DOCTYPE definition, and then the <fontconfig> tag:
<?xml version="1.0"?> <!DOCTYPE fontconfig SYSTEM "fonts.dtd"> <fontconfig>
As previously stated, all fonts in /usr/local/lib/X11/fonts/ as well as ~/.fonts/ are already made available to Xft-aware applications. If you wish to add another directory outside of these two directory trees, add a line similar to the following to /usr/local/etc/fonts/local.conf:
<dir>/path/to/my/fonts</dir>
After adding new fonts, and especially new font directories, you should run the following command to rebuild the font caches:
# fc-cache -f
Anti-aliasing makes borders slightly fuzzy, which makes very small text more readable and removes “staircases” from large text, but can cause eyestrain if applied to normal text. To exclude font sizes smaller than 14 point from anti-aliasing, include these lines:
<match target="font"> <test name="size" compare="less"> <double>14</double> </test> <edit name="antialias" mode="assign"> <bool>false</bool> </edit> </match> <match target="font"> <test name="pixelsize" compare="less" qual="any"> <double>14</double> </test> <edit mode="assign" name="antialias"> <bool>false</bool> </edit> </match>
Spacing for some monospaced fonts may also be inappropriate with anti-aliasing. This seems to be an issue with KDE, in particular. One possible fix for this is to force the spacing for such fonts to be 100. Add the following lines:
<match target="pattern" name="family"> <test qual="any" name="family"> <string>fixed</string> </test> <edit name="family" mode="assign"> <string>mono</string> </edit> </match> <match target="pattern" name="family"> <test qual="any" name="family"> <string>console</string> </test> <edit name="family" mode="assign"> <string>mono</string> </edit> </match>
(this aliases the other common names for fixed fonts as "mono"), and then add:
<match target="pattern" name="family"> <test qual="any" name="family"> <string>mono</string> </test> <edit name="spacing" mode="assign"> <int>100</int> </edit> </match>
Certain fonts, such as Helvetica, may have a problem when anti-aliased. Usually this manifests itself as a font that seems cut in half vertically. At worst, it may cause applications to crash. To avoid this, consider adding the following to local.conf:
<match target="pattern" name="family"> <test qual="any" name="family"> <string>Helvetica</string> </test> <edit name="family" mode="assign"> <string>sans-serif</string> </edit> </match>
Once you have finished editing local.conf make sure you end the file with the </fontconfig> tag. Not doing this will cause your changes to be ignored.
Finally, users can add their own settings via their personal .fonts.conf files. To do this, each user should simply create a ~/.fonts.conf. This file must also be in XML format.
One last point: with an LCD screen, sub-pixel sampling may be desired. This basically treats the (horizontally separated) red, green and blue components separately to improve the horizontal resolution; the results can be dramatic. To enable this, add the line somewhere in the local.conf file:
<match target="font"> <test qual="all" name="rgba"> <const>unknown</const> </test> <edit name="rgba" mode="assign"> <const>rgb</const> </edit> </match>
Note: Depending on the sort of display, rgb may need to be changed to bgr, vrgb or vbgr: experiment and see which works best.
The X Display Manager (XDM) is an optional part of the X Window System that is used for login session management. This is useful for several types of situations, including minimal “X Terminals”, desktops, and large network display servers. Since the X Window System is network and protocol independent, there are a wide variety of possible configurations for running X clients and servers on different machines connected by a network. XDM provides a graphical interface for choosing which display server to connect to, and entering authorization information such as a login and password combination.
Think of XDM as providing the same functionality to the user as the getty(8) utility (see Section 27.3.2 for details). That is, it performs system logins to the display being connected to and then runs a session manager on behalf of the user (usually an X window manager). XDM then waits for this program to exit, signaling that the user is done and should be logged out of the display. At this point, XDM can display the login and display chooser screens for the next user to login.
To start using XDM, install the x11/xdm port (it is not installed by default in recent versions of Xorg). The XDM daemon program may then be found in /usr/local/bin/xdm. This program can be run at any time as root and it will start managing the X display on the local machine. If XDM is to be run every time the machine boots up, a convenient way to do this is by adding an entry to /etc/ttys. For more information about the format and usage of this file, see Section 27.3.2.1. There is a line in the default /etc/ttys file for running the XDM daemon on a virtual terminal:
ttyv8 "/usr/local/bin/xdm -nodaemon" xterm off secure
By default this entry is disabled; in order to enable it change field 5 from off to on and restart init(8) using the directions in Section 27.3.2.2. The first field, the name of the terminal this program will manage, is ttyv8. This means that XDM will start running on the 9th virtual terminal.
The XDM configuration directory is located in /usr/local/lib/X11/xdm. In this directory there are several files used to change the behavior and appearance of XDM. Typically these files will be found:
File | Description |
---|---|
Xaccess | Client authorization ruleset. |
Xresources | Default X resource values. |
Xservers | List of remote and local displays to manage. |
Xsession | Default session script for logins. |
Xsetup_* | Script to launch applications before the login interface. |
xdm-config | Global configuration for all displays running on this machine. |
xdm-errors | Errors generated by the server program. |
xdm-pid | The process ID of the currently running XDM. |
Also in this directory are a few scripts and programs used to set up the desktop when XDM is running. The purpose of each of these files will be briefly described. The exact syntax and usage of all of these files is described in xdm(1).
The default configuration is a simple rectangular login window with the hostname of the machine displayed at the top in a large font and “Login:” and “Password:” prompts below. This is a good starting point for changing the look and feel of XDM screens.
The protocol for connecting to XDM-controlled displays is called the X Display Manager Connection Protocol (XDMCP). This file is a ruleset for controlling XDMCP connections from remote machines. It is ignored unless the xdm-config is changed to listen for remote connections. By default, it does not allow any clients to connect.
This is an application-defaults file for the display chooser and login screens. In it, the appearance of the login program can be modified. The format is identical to the app-defaults file described in the X11 documentation.
This is the default session script for XDM to run after a user has logged in. Normally each user will have a customized session script in ~/.xsession that overrides this script.
These will be run automatically before displaying the chooser or login interfaces. There is a script for each display being used, named Xsetup_ followed by the local display number (for instance Xsetup_0). Typically these scripts will run one or two programs in the background such as xconsole.
This contains settings in the form of app-defaults that are applicable to every display that this installation manages.
This contains the output of the X servers that XDM is trying to run. If a display that XDM is trying to start hangs for some reason, this is a good place to look for error messages. These messages are also written to the user's ~/.xsession-errors file on a per-session basis.
In order for other clients to connect to the display server, you must edit the access control rules and enable the connection listener. By default these are set to conservative values. To make XDM listen for connections, first comment out a line in the xdm-config file:
! SECURITY: do not listen for XDMCP or Chooser requests ! Comment out this line if you want to manage X terminals with xdm DisplayManager.requestPort: 0
and then restart XDM. Remember that comments in app-defaults files begin with a “!” character, not the usual “#”. More strict access controls may be desired — look at the example entries in Xaccess, and refer to the xdm(1) manual page for further information.
Several replacements for the default XDM program exist. One of them, KDM (bundled with KDE) is described later in this chapter. The KDM display manager offers many visual improvements and cosmetic frills, as well as the functionality to allow users to choose their window manager of choice at login time.
This section describes the different desktop environments available for X on FreeBSD. A “desktop environment” can mean anything ranging from a simple window manager to a complete suite of desktop applications, such as KDE or GNOME.
GNOME is a user-friendly desktop environment that enables users to easily use and configure their computers. GNOME includes a panel (for starting applications and displaying status), a desktop (where data and applications can be placed), a set of standard desktop tools and applications, anda set of conventions that make it easy for applications to cooperate and be consistent with each other. Users of other operating systems or environments should feel right at home using the powerful graphics-driven environment that GNOME provides. More information regarding GNOME on FreeBSD can be found on the FreeBSD GNOME Project's web site. The web site also contains fairly comprehensive FAQs about installing, configuring, and managing GNOME.
The software can be easily installed from a package or the Ports Collection:
To install the GNOME package from the network, simply type:
# pkg_add -r gnome2
To build GNOME from source, use the ports tree:
# cd /usr/ports/x11/gnome2 # make install clean
For proper operation, GNOME requires the /proc filesystem to be mounted. Add
proc /proc procfs rw 0 0
to /etc/fstab to mount procfs(5) automatically during startup.
Once GNOME is installed, the X server must be told to start GNOME instead of a default window manager.
The easiest way to start GNOME is with GDM, the GNOME Display Manager. GDM is installed as part of the GNOME desktop, although it is disabled by default. It can be enabled by adding this line to /etc/rc.conf:
gdm_enable="YES"
Once you have rebooted, GDM will start automatically.
It is often desirable to start all GNOME services together with GDM. To achieve this, add the following line to /etc/rc.conf:
gnome_enable="YES"
GNOME may also be started from the command-line by properly configuring a file named .xinitrc. If a custom .xinitrc is already in place, simply replace the line that starts the current window manager with one that starts /usr/local/bin/gnome-session instead. If nothing special has been done to the configuration file, then it is enough simply to type:
% echo "/usr/local/bin/gnome-session" > ~/.xinitrc
Next, type startx, and the GNOME desktop environment will be started.
Note: If an older display manager, like XDM, is being used, this will not work. Instead, create an executable .xsession file with the same command in it. To do this, edit the file and replace the existing window manager command with /usr/local/bin/gnome-session:
% echo "#!/bin/sh" > ~/.xsession % echo "/usr/local/bin/gnome-session" >> ~/.xsession % chmod +x ~/.xsession
Yet another option is to configure the display manager to allow choosing the window manager at login time; the section on KDE details explains how to do this for KDM, the display manager of KDE.
KDE is an easy to use contemporary desktop environment. Some of the things that KDE brings to the user are:
A beautiful contemporary desktop
A desktop exhibiting complete network transparency
An integrated help system allowing for convenient, consistent access to help on the use of the KDE desktop and its applications
Consistent look and feel of all KDE applications
Standardized menu and toolbars, keybindings, color-schemes, etc.
Internationalization: KDE is available in more than 55 languages
Centralized, consistent, dialog-driven desktop configuration
A great number of useful KDE applications
KDE comes with a web browser called Konqueror, which is a solid competitor to other existing web browsers on UNIX systems. More information on KDE can be found on the KDE website. For FreeBSD specific information and resources on KDE, consult the KDE/FreeBSD initiative's website.
There are two versions of KDE available on FreeBSD. Version 3 has been around for a long time, and is still available in the Ports Collection though it's now unmaintained and partially broken. Version 4 is punctually updated and is the default choice for KDE users. They can even be installed side by side.
Just as with GNOME or any other desktop environment, the software can be easily installed from a package or the Ports Collection:
To install the KDE 3 package from the network, type:
# pkg_add -r kde
To install the KDE 4 package from the network, type:
# pkg_add -r kde4
pkg_add(1) will automatically fetch the latest version of the application.
To build KDE 3 from source, use the ports tree:
# cd /usr/ports/x11/kde3 # make install clean
To build KDE 4 from source, use the ports tree:
# cd /usr/ports/x11/kde4 # make install clean
After KDE has been installed, the X server must be told to launch this application instead of the default window manager. This is accomplished by editing the .xinitrc file:
For KDE 3:
% echo "exec startkde" > ~/.xinitrc
For KDE 4:
% echo "exec /usr/local/kde4/bin/startkde" > ~/.xinitrc
Now, whenever the X Window System is invoked with startx, KDE will be the desktop.
If a display manager such as XDM is being used, the configuration is slightly different. Edit the .xsession file instead. Instructions for KDM are described later in this chapter.
Now that KDE is installed on the system, most things can be discovered through the help pages, or just by pointing and clicking at various menus. Windows or Mac® users will feel quite at home.
The best reference for KDE is the on-line documentation. KDE comes with its own web browser, Konqueror, dozens of useful applications, and extensive documentation. The remainder of this section discusses the technical items that are difficult to learn by random exploration.
An administrator of a multi-user system may wish to have a graphical login screen to welcome users. XDM can be used, as described earlier. However, KDE includes an alternative, KDM, which is designed to look more attractive and include more login-time options. In particular, users can easily choose (via a menu) which desktop environment (KDE, GNOME, or something else) to run after logging on.
To enable KDM, different files need to be edited depending on the version of KDE.
For KDE 3, the ttyv8 entry in /etc/ttys has to be adapted as follows:
ttyv8 "/usr/local/bin/kdm -nodaemon" xterm on secure
For KDE 4, you have to mount procfs(5) and add the following line to /etc/rc.conf:
kdm4_enable="YES"
Xfce is a desktop environment based on the GTK+ toolkit used by GNOME, but is much more lightweight and meant for those who want a simple, efficient desktop which is nevertheless easy to use and configure. Visually, it looks very much like CDE, found on commercial UNIX systems. Some of Xfce's features are:
A simple, easy-to-handle desktop
Fully configurable via mouse, with drag and drop, etc.
Main panel similar to CDE, with menus, applets and applications launchers
Integrated window manager, file manager, sound manager, GNOME compliance module, and more
Themeable (since it uses GTK+)
Fast, light and efficient: ideal for older/slower machines or machines with memory limitations
More information on Xfce can be found on the Xfce website.
A binary package for Xfce exists (at the time of writing). To install, simply type:
# pkg_add -r xfce4
Alternatively, to build from source, use the Ports Collection:
# cd /usr/ports/x11-wm/xfce4 # make install clean
Now, tell the X server to launch Xfce the next time X is started. Simply type this:
% echo "/usr/local/bin/startxfce4" > ~/.xinitrc
The next time X is started, Xfce will be the desktop. As before, if a display manager like XDM is being used, create an .xsession, as described in the section on GNOME, but with the /usr/local/bin/startxfce4 command; or, configure the display manager to allow choosing a desktop at login time, as explained in the section on kdm.
Now that the basics have been covered, this part of the FreeBSD Handbook will discuss some frequently used features of FreeBSD. These chapters:
Introduce you to popular and useful desktop applications: browsers, productivity tools, document viewers, etc.
Introduce you to a number of multimedia tools available for FreeBSD.
Explain the process of building a customized FreeBSD kernel, to enable extra functionality on your system.
Describe the print system in detail, both for desktop and network-connected printer setups.
Show you how to run Linux applications on your FreeBSD system.
Some of these chapters recommend that you do some prior reading, and this is noted in the synopsis at the beginning of each chapter.
FreeBSD can run a wide variety of desktop applications, such as browsers and word processors. Most of these are available as packages or can be automatically built from the Ports Collection. Many new users expect to find these kinds of applications on their desktop. This chapter will show you how to install some popular desktop applications effortlessly, either from their packages or from the Ports Collection.
Note that when installing programs from the ports, they are compiled from source. This can take a very long time, depending on what you are compiling and the processing power of your machine(s). If building from source takes a prohibitively long amount of time for you, you can install most of the programs of the Ports Collection from pre-built packages.
As FreeBSD features Linux binary compatibility, many applications originally developed for Linux are available for your desktop. It is strongly recommended that you read Chapter 11 before installing any of the Linux applications. Many of the ports using the Linux binary compatibility start with “linux-”. Remember this when you search for a particular port, for instance with whereis(1). In the following text, it is assumed that you have enabled Linux binary compatibility before installing any of the Linux applications.
Here are the categories covered by this chapter:
Browsers (such as Firefox, Opera, Konqueror, Chromium)
Productivity (such as KOffice, AbiWord, The GIMP, Apache OpenOffice, LibreOffice)
Document Viewers (such as Acrobat Reader®, gv, Xpdf, GQview)
Finance (such as GnuCash, Gnumeric, Abacus)
Before reading this chapter, you should:
Know how to install additional third-party software (Chapter 5).
Know how to install additional Linux software (Chapter 11).
For information on how to get a multimedia environment, read Chapter 8. If you want to set up and use electronic mail, please refer to Chapter 29.
FreeBSD does not come with a particular browser pre-installed. Instead, the www directory of the Ports Collection contains a lot of browsers ready to be installed. If you do not have time to compile everything (this can take a very long time in some cases) many of them are available as packages.
KDE and GNOME already provide HTML browsers. Please refer to Section 6.7 for more information on how to set up these complete desktops.
If you are looking for light-weight browsers, you should investigate the Ports Collection for www/dillo2, www/links, or www/w3m.
This section covers these applications:
Application Name | Resources Needed | Installation from Ports | Major Dependencies |
---|---|---|---|
Firefox | medium | heavy | Gtk+ |
Opera | light | light | FreeBSD and Linux versions available. The Linux version depends on the Linux Binary Compatibility and linux-openmotif. |
Konqueror | medium | heavy | KDE Libraries |
Chromium | medium | medium | Gtk+ |
Firefox is a modern, free, open-source stable browser that is fully ported to FreeBSD: it features a very standards-compliant HTML display engine, tabbed browsing, popup blocking, extensions, improved security, and more. Firefox is based on the Mozilla codebase.
Install the package by typing:
# pkg_add -r firefox
This will install the latest release version of Firefox, if you want to run Firefox Extended Support Release (ESR) version, use instead:
# pkg_add -r firefox-esr
You can also use the Ports Collection if you prefer to compile from source code:
# cd /usr/ports/www/firefox # make install clean
For Firefox ESR, in the previous command replace firefox with firefox-esr.
Note: In this section and in the next two sections, we assume you have already installed Firefox.
Install OpenJDK 6 through the Ports Collection by typing:
# cd /usr/ports/java/openjdk6 # make install clean
Then install the java/icedtea-web port:
# cd /usr/ports/java/icedtea-web # make install clean
Make sure you have kept the default configuration options for both ports.
Start your browser, enter about:plugins in the location bar and press Enter. A page listing the installed plugins will be displayed; the Java™ plugin should be listed there now.
If the browser is unable to find the plugin, each user will have to run the following command and relaunch the browser:
% ln -s /usr/local/lib/IcedTeaPlugin.so \ $HOME/.mozilla/plugins/
The Adobe® Flash™ plugin is not available for FreeBSD. However, a software layer (wrapper) for running the Linux version of the plugin exists. This wrapper also supports Adobe Acrobat® plugin, RealPlayer® plugin and more.
According to the version of FreeBSD you run various steps are required:
Under FreeBSD 7.X
Install the www/nspluginwrapper port. This port requires emulators/linux_base-fc4 which is a large port.
The next step is to install the www/linux-flashplugin9 port. This will install Flash 9.X, this version is known to run correctly under FreeBSD 7.X.
Under FreeBSD 8.X or Newer
Install the www/nspluginwrapper port. This port requires emulators/linux_base-f10 which is a large port.
The next step is to install Flash 11.X from the www/linux-f10-flashplugin11 port.
This version will require the following link to be created:
# ln -s /usr/local/lib/npapi/linux-f10-flashplugin/libflashplayer.so \ /usr/local/lib/browser_plugins/
The /usr/local/lib/browser_plugins directory will have to be created manually if it does not exist on the system.
Once the right Flash port, according to the FreeBSD version you run, is installed, the plugin must be installed by each user with nspluginwrapper:
% nspluginwrapper -v -a -i
Then, start your browser, enter about:plugins in the location bar and press Enter. A list should appear with all the currently available plugins.
Swfdec is the library for decoding and rendering Flash animations. And Swfdec-Mozilla is a plugin for Firefox browsers that uses the Swfdec library for playing SWF files. It is still in heavy development.
If you cannot or do not want to compile it, just install the package from the network:
# pkg_add -r swfdec-plugin
If the package is not available, you can compile and install it from the Ports Collection:
# cd /usr/ports/www/swfdec-plugin # make install clean
Then, restart your browser for this plugin taking effect.
Opera is a full-featured and standards-compliant browser. It also comes with a built-in mail and news reader, an IRC client, an RSS/Atom feeds reader and much more. Despite this, Opera is relatively lightweight and very fast. It comes in two flavors: a “native” FreeBSD version and a version that runs under Linux emulation.
To browse the Web with the FreeBSD version of Opera, install the package:
# pkg_add -r opera
Some FTP sites do not have all the packages, but Opera can still be obtained through the Ports Collection by typing:
# cd /usr/ports/www/opera # make install clean
To install the Linux version of Opera, substitute linux-opera in place of opera in the example above.
The Adobe Flash plugin is not available for FreeBSD. However, a Linux version of the plugin exists. To install this version, the www/linux-f10-flashplugin11 port has to be installed, then install the port www/opera-linuxplugins:
# cd /usr/ports/www/linux-f10-flashplugin11 # make install clean # cd /usr/ports/www/opera-linuxplugins # make install clean
You can check the presence of the plugin: start your browser, enter opera:plugins in the location bar and press Enter. A list should appear with all the currently available plugins.
To add the Java plugin, follow the instructions for Firefox.
Konqueror is part of KDE but it can also be used outside of KDE by installing x11/kdebase3. Konqueror is much more than a browser, it is also a file manager and a multimedia viewer.
There is also a set of plugins available for Konqueror, available in misc/konq-plugins.
Konqueror supports WebKit as well as its own KHTML. WebKit is used by many modern browsers including Chromium. To use WebKit with Konqueror on FreeBSD:
# cd /usr/ports/www/kwebkitpart # make install clean
Then in Konqueror, click “Settings”, “Configure Konqueror”, then “Change KHTML to WebKit”.
Konqueror also supports Flash; a “How To” guide for getting Flash support on Konqueror is available at http://freebsd.kde.org/howtos/konqueror-flash.php.
Chromium is an open-source browser project that aims to build a safer, faster, and more stable web browsing experience. Chromium features tabbed browsing, popup blocking, extensions, and much more. Chromium is the open-source project upon which the Google Chrome web browser is based.
Chromium can be installed as a package by typing:
# pkg_add -r chromium
Alternatively, Chromium can be compiled from source using the Ports Collection:
# cd /usr/ports/www/chromium # make install clean
Note: Chromium is installed as /usr/local/bin/chrome, not /usr/local/bin/chromium.
Note: This section assumes Chromium is already installed.
Install OpenJDK 6 through the Ports Collection by typing:
# cd /usr/ports/java/openjdk6 # make install clean
Next, install java/icedtea-web from the Ports Collection:
# cd /usr/ports/java/icedtea-web # make install clean
Start Chromium, and enter about:plugins in the address bar. IcedTea-Web should be listed as one of the installed plugins.
If Chromium does not display the IcedTea-Web plugin, run the following commands, and restart the web browser:
# mkdir -p /usr/local/share/chromium/plugins # ln -s /usr/local/lib/IcedTeaPlugin.so \ /usr/local/share/chromium/plugins/
Note: This section assumes Chromium is already installed.
Configuring Chromium and Adobe Flash is similar to the instructions for Firefox. For more detailed instructions on installing Adobe Flash on FreeBSD, please refer to that section. No additional configuration should be necessary, since Chromium is able to use some plugins from other browsers.
When it comes to productivity, new users often look for a good office suite or a friendly word processor. While some desktop environments like KDE already provide an office suite, there is no default productivity package. FreeBSD can provide all that is needed, regardless of your desktop environment.
This section covers these applications:
Application Name | Resources Needed | Installation from Ports | Major Dependencies |
---|---|---|---|
KOffice | light | heavy | KDE |
AbiWord | light | light | Gtk+ or GNOME |
The Gimp | light | heavy | Gtk+ |
Apache OpenOffice | heavy | huge | JDK™, Mozilla |
LibreOffice | somewhat heavy | huge | Gtk+, or KDE/ GNOME, or JDK |
The KDE community has provided its desktop environment with an office suite which can be used outside KDE. It includes the four standard components that can be found in other office suites. KWord is the word processor, KSpread is the spreadsheet program, KPresenter manages slide presentations, and Kontour lets you draw graphical documents.
Before installing the latest KOffice, make sure you have an up-to-date version of KDE.
To install KOffice for KDE4 as a package, issue the following command:
# pkg_add -r koffice-kde4
If the package is not available, you can use the Ports Collection. For instance, to install KOffice for KDE4, do:
# cd /usr/ports/editors/koffice-kde4 # make install clean
AbiWord is a free word processing program similar in look and feel to Microsoft Word. It is suitable for typing papers, letters, reports, memos, and so forth. It is very fast, contains many features, and is very user-friendly.
AbiWord can import or export many file formats, including some proprietary ones like Microsoft's .doc.
AbiWord is available as a package. You can install it by:
# pkg_add -r abiword
If the package is not available, it can be compiled from the Ports Collection. The Ports Collection should be more up to date. It can be done as follows:
# cd /usr/ports/editors/abiword # make install clean
For image authoring or picture retouching, The GIMP is a very sophisticated image manipulation program. It can be used as a simple paint program or as a quality photo retouching suite. It supports a large number of plug-ins and features a scripting interface. The GIMP can read and write a wide range of file formats. It supports interfaces with scanners and tablets.
You can install the package by issuing this command:
# pkg_add -r gimp
If your FTP site does not have this package, you can use the Ports Collection. The graphics directory of the Ports Collection also contains The Gimp Manual. Here is how to get them installed:
# cd /usr/ports/graphics/gimp # make install clean # cd /usr/ports/graphics/gimp-manual-pdf # make install clean
Note: The graphics directory of the Ports Collection holds the development version of The GIMP in graphics/gimp-devel. An HTML version of The Gimp Manual is available from graphics/gimp-manual-html.
On 1 June 2011, Oracle Corporation donated the OpenOffice.org code base to the Apache Software Foundation. OpenOffice.org is now known as Apache OpenOffice and developed under the wing of the Apache Software Foundation's Incubator.
Apache OpenOffice includes all of the mandatory applications in a complete office productivity suite: a word processor, a spreadsheet, a presentation manager, and a drawing program. Its user interface is very similar to other office suites, and it can import and export in various popular file formats. It is available in a number of different languages — internationalization has been extended to interfaces, spell checkers, and dictionaries.
The word processor of Apache OpenOffice uses a native XML file format for increased portability and flexibility. The spreadsheet program features a macro language and it can be interfaced with external databases. Apache OpenOffice is already stable and runs natively on Windows, Solaris™, Linux, FreeBSD, and Mac OS X. More information about Apache OpenOffice can be found on the Apache OpenOffice web site. For FreeBSD specific information, and to directly download packages, use the FreeBSD Apache OpenOffice Porting Team's web site.
To install Apache OpenOffice, do:
# pkg_add -r apache-openoffice
Note: When running a -RELEASE version of FreeBSD, this should work. Otherwise, you should look on the FreeBSD Apache OpenOffice Porting Team's web site to download and install the appropriate package using pkg_add(1). Both the current release and development version are available for download at this location.
Once the package is installed, you just have to type the following command to run Apache OpenOffice:
% openoffice-X.Y.Z
where X.Y.Z is the version number of the installed Apache OpenOffice, e.g., 3.4.0.
Note: During the first launch, you will be asked some questions and a .openoffice.org folder will be created in your home directory.
If the Apache OpenOffice packages are not available, you still have the option to compile the port. However, you must bear in mind that it requires a lot of disk space and a fairly long time to compile.
# cd /usr/ports/editors/openoffice-3 # make install clean
Note: If you want to build a localized version, replace the previous command line with the following:
# make LOCALIZED_LANG=your_language install cleanYou have to replace your_language with the correct language ISO-code. A list of supported language codes is available in the files/Makefile.localized file, located in the port directory.
Once this is done, Apache OpenOffice can be launched with the command:
% openoffice-X.Y.Z
where X.Y.Z is the version number of the installed Apache OpenOffice, e.g., 3.4.0.
LibreOffice is a free software office suite developed by The Document Foundation that is compatible with other major office suites and available on a variety of platforms. It is a rebranded fork of OpenOffice.org which includes all of the mandatory applications in a complete office productivity suite: a word processor, a spreadsheet, a presentation manager, a drawing program, a database management program, and a tool for creating and editing mathematical formula. It is available in a number of different languages — internationalization has been extended to interfaces, spell checkers, and dictionaries.
The word processor of LibreOffice uses a native XML file format for increased portability and flexibility. The spreadsheet program features a macro language and it can be interfaced with external databases. LibreOffice is already stable and runs natively on Windows, Linux, FreeBSD, and Mac OS X. More information about LibreOffice can be found on the LibreOffice web site.
To install LibreOffice as package, do:
# pkg_add -r libreoffice
Note: When running a -RELEASE version of FreeBSD, this should work.
Once the package is installed, you need to type the following command to run LibreOffice:
% libreoffice
Note: During the first launch, you will be asked some questions and a .libreoffice folder will be created in your home directory.
If the LibreOffice packages are not available, you still have the option to compile the port. However, you must bear in mind that it requires a lot of disk space and a fairly long time to compile.
# cd /usr/ports/editors/libreoffice # make install clean
Note: If you want to build a localized version, replace the previous command line with the following:
# make LOCALIZED_LANG=your_language install cleanYou have to replace your_language with the correct language ISO-code. A list of supported language codes are available in the pre-fetch target of the port Makefile.
Once this is done, LibreOffice can be launched with the command:
% libreoffice
Some new document formats have gained popularity since the advent of UNIX; the standard viewers they require may not be available in the base system. We will see how to install such viewers in this section.
This section covers these applications:
Application Name | Resources Needed | Installation from Ports | Major Dependencies |
---|---|---|---|
Acrobat Reader | light | light | Linux Binary Compatibility |
gv | light | light | Xaw3d |
Xpdf | light | light | FreeType |
GQview | light | light | Gtk+ or GNOME |
Many documents are now distributed as PDF files, which stands for “Portable Document Format”. One of the recommended viewers for these types of files is Acrobat Reader, released by Adobe for Linux. As FreeBSD can run Linux binaries, it is also available for FreeBSD.
To install Acrobat Reader 8 from the Ports collection, do:
# cd /usr/ports/print/acroread8 # make install clean
A package is not available due to licencing restrictions.
gv is a PostScript and PDF viewer. It is originally based on ghostview but it has a nicer look thanks to the Xaw3d library. It is fast and its interface is clean. gv has many features, such as orientation, paper size, scale, and anti-aliasing. Almost any operation can be done with either the keyboard or the mouse.
To install gv as a package, do:
# pkg_add -r gv
If you cannot get the package, you can use the Ports Collection:
# cd /usr/ports/print/gv # make install clean
If you want a small FreeBSD PDF viewer, Xpdf is a light-weight and efficient viewer. It requires very few resources and is very stable. It uses the standard X fonts and does not require Motif or any other X toolkit.
To install the Xpdf package, issue this command:
# pkg_add -r xpdf
If the package is not available or you prefer to use the Ports Collection, do:
# cd /usr/ports/graphics/xpdf # make install clean
Once the installation is complete, you can launch Xpdf and use the right mouse button to activate the menu.
GQview is an image manager. You can view a file with a single click, launch an external editor, get thumbnail previews, and much more. It also features a slideshow mode and some basic file operations. You can manage image collections and easily find duplicates. GQview can do full screen viewing and supports internationalization.
If you want to install the GQview package, do:
# pkg_add -r gqview
If the package is not available or you prefer to use the Ports Collection, do:
# cd /usr/ports/graphics/gqview # make install clean
If, for any reason, you would like to manage your personal finances on your FreeBSD Desktop, there are some powerful and easy-to-use applications ready to be installed. Some of them are compatible with widespread file formats, such as the formats used by Quicken® and Excel to store documents.
This section covers these programs:
Application Name | Resources Needed | Installation from Ports | Major Dependencies |
---|---|---|---|
GnuCash | light | heavy | GNOME |
Gnumeric | light | heavy | GNOME |
Abacus | light | light | Tcl/Tk |
KMyMoney | light | heavy | KDE |
GnuCash is part of the GNOME effort to provide user-friendly, yet powerful, applications to end-users. With GnuCash, you can keep track of your income and expenses, your bank accounts, and your stocks. It features an intuitive interface while remaining very professional.
GnuCash provides a smart register, a hierarchical system of accounts, and many keyboard accelerators and auto-completion methods. It can split a single transaction into several more detailed pieces. GnuCash can import and merge Quicken QIF files. It also handles most international date and currency formats.
To install GnuCash on your system, do:
# pkg_add -r gnucash
If the package is not available, you can use the Ports Collection:
# cd /usr/ports/finance/gnucash # make install clean
Gnumeric is a spreadsheet program, part of the GNOME desktop environment. It features convenient automatic “guessing” of user input according to the cell format with an autofill system for many sequences. It can import files in a number of popular formats like those of Excel, Lotus 1-2-3, or Quattro Pro. Gnumeric supports graphs through the math/guppi graphing program. It has a large number of built-in functions and allows all of the usual cell formats such as number, currency, date, time, and much more.
To install Gnumeric as a package, do:
# pkg_add -r gnumeric
If the package is not available, you can use the Ports Collection by doing:
# cd /usr/ports/math/gnumeric # make install clean
Abacus is a small and easy to use spreadsheet program. It includes many built-in functions useful in several domains such as statistics, finances, and mathematics. It can import and export the Excel file format. Abacus can produce PostScript output.
To install Abacus as a package, do:
# pkg_add -r abacus
If the package is not available, you can use the Ports Collection by doing:
# cd /usr/ports/deskutils/abacus # make install clean
KMyMoney is a personal finance manager built for KDE. KMyMoney intends to provide and incorporate all the important features found in commercial personal finance manager applications. It also highlights ease-of-use and proper double-entry accounting among its features. KMyMoney imports from standard Quicken Interchange Format (QIF) files, tracks investments, handles multiple currencies, and provides a wealth of reports. OFX import capabilities are also available through a separate plugin.
To install KMyMoney as a package, do:
# pkg_add -r kmymoney2
If the package is not available, you can use the Ports Collection by doing:
# cd /usr/ports/finance/kmymoney2 # make install clean
While FreeBSD is popular among ISPs for its performance and stability, it is quite ready for day-to-day use as a desktop. With several thousand applications available as packages or ports, you can build a perfect desktop that suits all your needs.
Here is a quick review of all the desktop applications covered in this chapter:
Application Name | Package Name | Ports Name |
---|---|---|
Opera | opera | www/opera |
Firefox | firefox | www/firefox |
Chromium | chromium | www/chromium |
KOffice | koffice-kde4 | editors/koffice-kde4 |
AbiWord | abiword | editors/abiword |
The GIMP | gimp | graphics/gimp |
Apache OpenOffice | openoffice | editors/openoffice-3 |
LibreOffice | libreoffice | editors/libreoffice |
Acrobat Reader | acroread | print/acroread8 |
gv | gv | print/gv |
Xpdf | xpdf | graphics/xpdf |
GQview | gqview | graphics/gqview |
GnuCash | gnucash | finance/gnucash |
Gnumeric | gnumeric | math/gnumeric |
Abacus | abacus | deskutils/abacus |
KMyMoney | kmymoney2 | finance/kmymoney2 |
FreeBSD supports a wide variety of sound cards, allowing you to enjoy high fidelity output from your computer. This includes the ability to record and playback audio in the MPEG Audio Layer 3 (MP3), WAV, and Ogg Vorbis formats as well as many other formats. The FreeBSD Ports Collection also contains applications allowing you to edit your recorded audio, add sound effects, and control attached MIDI devices.
With some experimentation, FreeBSD can support playback of video files and DVDs. The number of applications to encode, convert, and playback various video media is more limited than the number of sound applications. For example as of this writing, there are no good re-encoding applications in the FreeBSD Ports Collection that could be used to convert between formats, as there is with audio/sox. However, the software landscape in this area is changing rapidly.
This chapter will describe the necessary steps to configure your sound card. The configuration and installation of X11 (Chapter 6) has already taken care of the hardware issues for your video card, though there may be some tweaks to apply for better playback.
After reading this chapter, you will know:
How to configure your system so that your sound card is recognized.
Methods to test whether your card is working.
How to troubleshoot your sound setup.
How to playback and encode MP3s and other audio.
How video is supported by the X server.
Some video player/encoder ports which give good results.
How to playback DVDs, .mpg and .avi files.
How to rip CD and DVD content into files.
How to configure a TV card.
How to configure an image scanner.
Before reading this chapter, you should:
Know how to configure and install a new kernel (Chapter 9).
Warning: Trying to mount audio CDs with the mount(8) command will result in an error, at least, and a kernel panic, at worst. These media have specialized encodings which differ from the usual ISO-filesystem.
Before you begin, you should know the model of the card you have, the chip it uses, and whether it is a PCI or ISA card. FreeBSD supports a wide variety of both PCI and ISA cards. Check the supported audio devices list of the Hardware Notes to see if your card is supported. The Hardware Notes will also mention which driver supports your card.
To use your sound device, you will need to load the proper device driver. This may be accomplished in one of two ways. The easiest way is to simply load a kernel module for your sound card with kldload(8) which can either be done from the command line:
# kldload snd_emu10k1
or by adding the appropriate line to the file /boot/loader.conf like this:
snd_emu10k1_load="YES"
These examples are for a Creative SoundBlaster® Live! sound card. Other available loadable sound modules are listed in /boot/defaults/loader.conf. If you are not sure which driver to use, you may try to load the snd_driver module:
# kldload snd_driver
This is a metadriver loading the most common device drivers at once. This speeds up the search for the correct driver. It is also possible to load all sound drivers via the /boot/loader.conf facility.
If you wish to find out the driver selected for your soundcard after loading the snd_driver metadriver, you may check the /dev/sndstat file with the cat /dev/sndstat command.
A second method is to statically compile in support for your sound card in your kernel. The section below provides the information you need to add support for your hardware in this manner. For more information about recompiling your kernel, please see Chapter 9.
The first thing to do is add the audio framework driver sound(4) to the kernel; for that you will need to add the following line to the kernel configuration file:
device sound
Next, you have to add the support for your sound card. Therefore, you need to know which driver supports the card. Check the supported audio devices list of the Hardware Notes, to determine the correct driver for your sound card. For example, a Creative SoundBlaster Live! sound card is supported by the snd_emu10k1(4) driver. To add the support for this card, use the following:
device snd_emu10k1
Be sure to read the manual page of the driver for the syntax to use. The explicit syntax for the kernel configuration of every supported sound driver can also be found in the /usr/src/sys/conf/NOTES file.
Non-PnP ISA sound cards may require you to provide the kernel with information on the card settings (IRQ, I/O port, etc), as is true of all non-PnP ISA cards. This is done via the /boot/device.hints file. During the boot process, the loader(8) will read this file and pass the settings to the kernel. For example, an old Creative SoundBlaster 16 ISA non-PnP card will use the snd_sbc(4) driver in conjunction with snd_sb16. For this card the following lines must be added to the kernel configuration file:
device snd_sbc device snd_sb16
and these to /boot/device.hints:
hint.sbc.0.at="isa" hint.sbc.0.port="0x220" hint.sbc.0.irq="5" hint.sbc.0.drq="1" hint.sbc.0.flags="0x15"
In this case, the card uses the 0x220 I/O port and the IRQ 5.
The syntax used in the /boot/device.hints file is covered in the sound(4) driver manual page and the manual page for the driver in question.
The settings shown above are the defaults. In some cases, you may need to change the IRQ or the other settings to match your card. See the snd_sbc(4) manual page for more information about this card.
After rebooting with the modified kernel, or after loading the required module, the sound card should appear in your system message buffer (dmesg(8)) as something like:
pcm0: <Intel ICH3 (82801CA)> port 0xdc80-0xdcbf,0xd800-0xd8ff irq 5 at device 31.5 on pci0 pcm0: [GIANT-LOCKED] pcm0: <Cirrus Logic CS4205 AC97 Codec>
The status of the sound card may be checked via the /dev/sndstat file:
# cat /dev/sndstat FreeBSD Audio Driver (newpcm) Installed devices: pcm0: <Intel ICH3 (82801CA)> at io 0xd800, 0xdc80 irq 5 bufsz 16384 kld snd_ich (1p/2r/0v channels duplex default)
The output from your system may vary. If no pcm devices are listed, go back and review what was done earlier. Go through your kernel configuration file again and make sure the correct device driver was chosen. Common problems are listed in Section 8.2.2.1.
If all goes well, you should now have a functioning sound card. If your CD-ROM or DVD-ROM drive's audio-out pins are properly connected to your sound card, you can put a CD in the drive and play it with cdcontrol(1):
% cdcontrol -f /dev/acd0 play 1
Various applications, such as audio/workman can provide a friendlier interface. You may want to install an application such as audio/mpg123 to listen to MP3 audio files.
Another quick way to test the card is sending data to /dev/dsp, like this:
% cat filename > /dev/dsp
where filename can be any file. This command line should produce some noise, confirming the sound card is actually working.
Note: The device nodes /dev/dsp* will be created automatically when needed. If they are not used, they do not exist and will not appear in the output of ls(1).
Sound card mixer levels can be changed via the mixer(8) command. More details can be found in the mixer(8) manual page.
Error | Solution |
---|---|
“sb_dspwr(XX) timed out” |
The I/O port is not set correctly. |
“bad irq XX” |
The IRQ is set incorrectly. Make sure that the set IRQ and the sound IRQ are the same. |
“xxx: gus pcm not attached, out of memory” |
There is not enough available memory to use the device. |
“xxx: can't open /dev/dsp!” |
Check with fstat | grep dsp if another application is holding the device open. Noteworthy troublemakers are esound and KDE's sound support. |
Another issue is that modern graphics cards often come with their own sound driver, for use with HDMI and similar. This sound device will sometimes be enumerated before the actual soundcard and the soundcard will subsequently not be used as the default playback device. To check if this is the case, run dmesg and look for pcm. The output looks something like this:
... hdac0: HDA Driver Revision: 20100226_0142 hdac1: HDA Driver Revision: 20100226_0142 hdac0: HDA Codec #0: NVidia (Unknown) hdac0: HDA Codec #1: NVidia (Unknown) hdac0: HDA Codec #2: NVidia (Unknown) hdac0: HDA Codec #3: NVidia (Unknown) pcm0: <HDA NVidia (Unknown) PCM #0 DisplayPort> at cad 0 nid 1 on hdac0 pcm1: <HDA NVidia (Unknown) PCM #0 DisplayPort> at cad 1 nid 1 on hdac0 pcm2: <HDA NVidia (Unknown) PCM #0 DisplayPort> at cad 2 nid 1 on hdac0 pcm3: <HDA NVidia (Unknown) PCM #0 DisplayPort> at cad 3 nid 1 on hdac0 hdac1: HDA Codec #2: Realtek ALC889 pcm4: <HDA Realtek ALC889 PCM #0 Analog> at cad 2 nid 1 on hdac1 pcm5: <HDA Realtek ALC889 PCM #1 Analog> at cad 2 nid 1 on hdac1 pcm6: <HDA Realtek ALC889 PCM #2 Digital> at cad 2 nid 1 on hdac1 pcm7: <HDA Realtek ALC889 PCM #3 Digital> at cad 2 nid 1 on hdac1 ...
Here the graphics card (NVidia) has been enumerated before the sound card (Realtek ALC889). To use the sound card as default playback device, change hw.snd.default_unit to the unit that should be used for playback, enter the following:
# sysctl hw.snd.default_unit=n
Here, n is the number of the sound device to use, in this example 4. You can make this change permanent by adding the following line to /etc/sysctl.conf:
hw.snd.default_unit=4
It is often desirable to have multiple sources of sound that are able to play simultaneously, such as when esound or artsd do not support sharing of the sound device with a certain application.
FreeBSD lets you do this through Virtual Sound Channels, which can be enabled with the sysctl(8) facility. Virtual channels allow you to multiplex your sound card's playback by mixing sound in the kernel.
To set the number of virtual channels, there are three sysctl knobs which, if you are the root user, can be set like this:
# sysctl dev.pcm.0.play.vchans=4 # sysctl dev.pcm.0.rec.vchans=4 # sysctl hw.snd.maxautovchans=4
The above example allocates four virtual channels, which is a practical number for
everyday use. Both dev.pcm.0.play.vchans=4
and dev.pcm.0.rec.vchans=4
are the number of virtual channels pcm0 has for playback and recording, and are configurable once a
device has been attached. hw.snd.maxautovchans is the number of
virtual channels a new audio device is given when it is attached using kldload(8). Since the
pcm module can be loaded independently of the hardware
drivers, hw.snd.maxautovchans
can store how many virtual
channels any devices which are attached later will be given. Refer to pcm(4) manual page for
more information.
Note: You cannot change the number of virtual channels for a device while it is in use. First close any programs using the device, such as music players or sound daemons.
The correct pcm device will automatically be allocated transparently to a program that requests /dev/dsp0.
The default values for the different mixer channels are hardcoded in the sourcecode of the pcm(4) driver. There are many different applications and daemons that allow you to set values for the mixer that are remembered between invocations, but this is not a clean solution. It is possible to set default mixer values at the driver level — this is accomplished by defining the appropriate values in /boot/device.hints, e.g.:
hint.pcm.0.vol="50"
This will set the volume channel to a default value of 50 when the pcm(4) module is loaded.
MP3 (MPEG Layer 3 Audio) accomplishes near CD-quality sound, leaving no reason to let your FreeBSD workstation fall short of its offerings.
By far, the most popular X11 MP3 player is XMMS (X Multimedia System). Winamp skins can be used with XMMS since the GUI is almost identical to that of Nullsoft's Winamp. XMMS also has native plug-in support.
XMMS can be installed from the multimedia/xmms port or package.
XMMS's interface is intuitive, with a playlist, graphic equalizer, and more. Those familiar with Winamp will find XMMS simple to use.
The audio/mpg123 port is an alternative, command-line MP3 player.
mpg123 can be run by specifying the sound device and the MP3 file on the command line. Assuming your audio device is /dev/dsp1.0 and you want to play the MP3 file Foobar-GreatestHits.mp3 you would enter the following:
# mpg123 -a /dev/dsp1.0 Foobar-GreatestHits.mp3 High Performance MPEG 1.0/2.0/2.5 Audio Player for Layer 1, 2 and 3. Version 0.59r (1999/Jun/15). Written and copyrights by Michael Hipp. Uses code from various people. See 'README' for more! THIS SOFTWARE COMES WITH ABSOLUTELY NO WARRANTY! USE AT YOUR OWN RISK! Playing MPEG stream from Foobar-GreatestHits.mp3 ... MPEG 1.0 layer III, 128 kbit/s, 44100 Hz joint-stereo
Before encoding a CD or CD track to MP3, the audio data on the CD must be ripped onto the hard drive. This is done by copying the raw CDDA (CD Digital Audio) data to WAV files.
The cdda2wav tool, which is a part of the sysutils/cdrtools suite, is used for ripping audio information from CDs and the information associated with them.
With the audio CD in the drive, the following command can be issued (as root) to rip an entire CD into individual (per track) WAV files:
# cdda2wav -D 0,1,0 -B
cdda2wav will support ATAPI (IDE) CDROM drives. To rip from an IDE drive, specify the device name in place of the SCSI unit numbers. For example, to rip track 7 from an IDE drive:
# cdda2wav -D /dev/acd0 -t 7
The -D 0,1,0
indicates the SCSI device 0,1,0, which corresponds
to the output of cdrecord -scanbus.
To rip individual tracks, make use of the -t
option
as shown:
# cdda2wav -D 0,1,0 -t 7
This example rips track seven of the audio CDROM. To rip a range of tracks, for example, track one to seven, specify a range:
# cdda2wav -D 0,1,0 -t 1+7
The utility dd(1) can also be used to extract audio tracks on ATAPI drives, read Section 19.6.5 for more information on that possibility.
Nowadays, the mp3 encoder of choice is lame. Lame can be found at audio/lame in the ports tree.
Using the ripped WAV files, the following command will convert audio01.wav to audio01.mp3:
# lame -h -b 128 \ --tt "Foo Song Title" \ --ta "FooBar Artist" \ --tl "FooBar Album" \ --ty "2001" \ --tc "Ripped and encoded by Foo" \ --tg "Genre" \ audio01.wav audio01.mp3
128 kbits seems to be the standard MP3 bitrate in use. Many enjoy the higher
quality 160, or 192. The higher the bitrate, the more disk space the resulting MP3
will consume--but the quality will be higher. The -h
option turns on the “higher quality but a little
slower” mode. The options beginning with --t
indicate ID3 tags, which usually contain song information, to be embedded within the
MP3 file. Additional encoding options can be found by consulting the lame man page.
In order to burn an audio CD from MP3s, they must be converted to a non-compressed WAV format. Both XMMS and mpg123 support the output of MP3 to an uncompressed file format.
Writing to Disk in XMMS:
Launch XMMS.
Right-click on the window to bring up the XMMS menu.
Select Preference under Options.
Change the Output Plugin to “Disk Writer Plugin”.
Press Configure.
Enter (or choose browse) a directory to write the uncompressed files to.
Load the MP3 file into XMMS as usual, with volume at 100% and EQ settings turned off.
Press Play — XMMS will appear as if it is playing the MP3, but no music will be heard. It is actually playing the MP3 to a file.
Be sure to set the default Output Plugin back to what it was before in order to listen to MP3s again.
Writing to stdout in mpg123:
Run mpg123 -s audio01.mp3 > audio01.pcm
XMMS writes a file in the WAV format, while mpg123 converts the MP3 into raw PCM audio data. Both of these formats can be used with cdrecord to create audio CDs. You have to use raw PCM with burncd(8). If you use WAV files, you will notice a small tick sound at the beginning of each track, this sound is the header of the WAV file. You can simply remove the header of a WAV file with the utility SoX (it can be installed from the audio/sox port or package):
% sox -t wav -r 44100 -s -w -c 2 track.wav track.raw
Read Section 19.6 for more information on using a CD burner in FreeBSD.
Video playback is a very new and rapidly developing application area. Be patient. Not everything is going to work as smoothly as it did with sound.
Before you begin, you should know the model of the video card you have and the chip it uses. While Xorg supports a wide variety of video cards, fewer give good playback performance. To obtain a list of extensions supported by the X server using your card use the command xdpyinfo(1) while X11 is running.
It is a good idea to have a short MPEG file which can be treated as a test file for evaluating various players and options. Since some DVD players will look for DVD media in /dev/dvd by default, or have this device name hardcoded in them, you might find it useful to make symbolic links to the proper devices:
# ln -sf /dev/acd0 /dev/dvd # ln -sf /dev/acd0 /dev/rdvd
Note that due to the nature of devfs(5), manually created links like these will not persist if you reboot your system. In order to create the symbolic links automatically whenever you boot your system, add the following lines to /etc/devfs.conf:
link acd0 dvd link acd0 rdvd
Additionally, DVD decryption, which requires invoking special DVD-ROM functions, requires write permission on the DVD devices.
To enhance the shared memory X11 interface, it is recommended that the values of some sysctl(8) variables should be increased:
kern.ipc.shmmax=67108864 kern.ipc.shmall=32768
There are several possible ways to display video under X11. What will really work is largely hardware dependent. Each method described below will have varying quality across different hardware. Secondly, the rendering of video in X11 is a topic receiving a lot of attention lately, and with each version of Xorg, there may be significant improvement.
A list of common video interfaces:
X11: normal X11 output using shared memory.
XVideo: an extension to the X11 interface which supports video in any X11 drawable.
SDL: the Simple Directmedia Layer.
DGA: the Direct Graphics Access.
SVGAlib: low level console graphics layer.
Xorg has an extension called XVideo (aka Xvideo, aka Xv, aka xv) which allows video to be directly displayed in drawable objects through a special acceleration. This extension provides very good quality playback even on low-end machines.
To check whether the extension is running, use xvinfo:
% xvinfo
XVideo is supported for your card if the result looks like:
X-Video Extension version 2.2 screen #0 Adaptor #0: "Savage Streams Engine" number of ports: 1 port base: 43 operations supported: PutImage supported visuals: depth 16, visualID 0x22 depth 16, visualID 0x23 number of attributes: 5 "XV_COLORKEY" (range 0 to 16777215) client settable attribute client gettable attribute (current value is 2110) "XV_BRIGHTNESS" (range -128 to 127) client settable attribute client gettable attribute (current value is 0) "XV_CONTRAST" (range 0 to 255) client settable attribute client gettable attribute (current value is 128) "XV_SATURATION" (range 0 to 255) client settable attribute client gettable attribute (current value is 128) "XV_HUE" (range -180 to 180) client settable attribute client gettable attribute (current value is 0) maximum XvImage size: 1024 x 1024 Number of image formats: 7 id: 0x32595559 (YUY2) guid: 59555932-0000-0010-8000-00aa00389b71 bits per pixel: 16 number of planes: 1 type: YUV (packed) id: 0x32315659 (YV12) guid: 59563132-0000-0010-8000-00aa00389b71 bits per pixel: 12 number of planes: 3 type: YUV (planar) id: 0x30323449 (I420) guid: 49343230-0000-0010-8000-00aa00389b71 bits per pixel: 12 number of planes: 3 type: YUV (planar) id: 0x36315652 (RV16) guid: 52563135-0000-0000-0000-000000000000 bits per pixel: 16 number of planes: 1 type: RGB (packed) depth: 0 red, green, blue masks: 0x1f, 0x3e0, 0x7c00 id: 0x35315652 (RV15) guid: 52563136-0000-0000-0000-000000000000 bits per pixel: 16 number of planes: 1 type: RGB (packed) depth: 0 red, green, blue masks: 0x1f, 0x7e0, 0xf800 id: 0x31313259 (Y211) guid: 59323131-0000-0010-8000-00aa00389b71 bits per pixel: 6 number of planes: 3 type: YUV (packed) id: 0x0 guid: 00000000-0000-0000-0000-000000000000 bits per pixel: 0 number of planes: 0 type: RGB (packed) depth: 1 red, green, blue masks: 0x0, 0x0, 0x0
Also note that the formats listed (YUV2, YUV12, etc) are not present with every implementation of XVideo and their absence may hinder some players.
If the result looks like:
X-Video Extension version 2.2 screen #0 no adaptors present
Then XVideo is probably not supported for your card.
If XVideo is not supported for your card, this only means that it will be more difficult for your display to meet the computational demands of rendering video. Depending on your video card and processor, though, you might still be able to have a satisfying experience. You should probably read about ways of improving performance in the advanced reading Section 8.4.3.
The Simple Directmedia Layer, SDL, was intended to be a porting layer between Microsoft Windows, BeOS, and UNIX, allowing cross-platform applications to be developed which made efficient use of sound and graphics. The SDL layer provides a low-level abstraction to the hardware which can sometimes be more efficient than the X11 interface.
The SDL can be found at devel/sdl12.
Direct Graphics Access is an X11 extension which allows a program to bypass the X server and directly alter the framebuffer. Because it relies on a low level memory mapping to effect this sharing, programs using it must be run as root.
The DGA extension can be tested and benchmarked by dga(1). When dga is running, it changes the colors of the display whenever a key is pressed. To quit, use q.
This section discusses the software available from the FreeBSD Ports Collection which can be used for video playback. Video playback is a very active area of software development, and the capabilities of various applications are bound to diverge somewhat from the descriptions given here.
Firstly, it is important to know that many of the video applications which run on FreeBSD were developed as Linux applications. Many of these applications are still beta-quality. Some of the problems that you may encounter with video packages on FreeBSD include:
An application cannot playback a file which another application produced.
An application cannot playback a file which the application itself produced.
The same application on two different machines, rebuilt on each machine for that machine, plays back the same file differently.
A seemingly trivial filter like rescaling of the image size results in very bad artifacts from a buggy rescaling routine.
An application frequently dumps core.
Documentation is not installed with the port and can be found either on the web or under the port's work directory.
Many of these applications may also exhibit “Linux-isms”. That is, there may be issues resulting from the way some standard libraries are implemented in the Linux distributions, or some features of the Linux kernel which have been assumed by the authors of the applications. These issues are not always noticed and worked around by the port maintainers, which can lead to problems like these:
The use of /proc/cpuinfo to detect processor characteristics.
A misuse of threads which causes a program to hang upon completion instead of truly terminating.
Software not yet in the FreeBSD Ports Collection which is commonly used in conjunction with the application.
So far, these application developers have been cooperative with port maintainers to minimize the work-arounds needed for port-ing.
MPlayer is a recently developed and rapidly developing video player. The goals of the MPlayer team are speed and flexibility on Linux and other Unices. The project was started when the team founder got fed up with bad playback performance on then available players. Some would say that the graphical interface has been sacrificed for a streamlined design. However, once you get used to the command line options and the key-stroke controls, it works very well.
MPlayer resides in multimedia/mplayer. MPlayer performs a variety of hardware checks during the build process, resulting in a binary which will not be portable from one system to another. Therefore, it is important to build it from ports and not to use a binary package. Additionally, a number of options can be specified in the make command line, as described in the Makefile and at the start of the build:
# cd /usr/ports/multimedia/mplayer # make N - O - T - E Take a careful look into the Makefile in order to learn how to tune mplayer towards you personal preferences! For example, make WITH_GTK1 builds MPlayer with GTK1-GUI support. If you want to use the GUI, you can either install /usr/ports/multimedia/mplayer-skins or download official skin collections from http://www.mplayerhq.hu/homepage/dload.html
The default port options should be sufficient for most users. However, if you need the XviD codec, you have to specify the WITH_XVID option in the command line. The default DVD device can also be defined with the WITH_DVD_DEVICE option, by default /dev/acd0 will be used.
As of this writing, the MPlayer port will build its HTML documentation and two executables, mplayer, and mencoder, which is a tool for re-encoding video.
The HTML documentation for MPlayer is very informative. If the reader finds the information on video hardware and interfaces in this chapter lacking, the MPlayer documentation is a very thorough supplement. You should definitely take the time to read the MPlayer documentation if you are looking for information about video support in UNIX.
Any user of MPlayer must set up a .mplayer subdirectory of her home directory. To create this necessary subdirectory, you can type the following:
% cd /usr/ports/multimedia/mplayer % make install-user
The command options for mplayer are listed in the manual page. For even more detail there is HTML documentation. In this section, we will describe only a few common uses.
To play a file, such as testfile.avi, through one of the various video
interfaces set the -vo
option:
% mplayer -vo xv testfile.avi
% mplayer -vo sdl testfile.avi
% mplayer -vo x11 testfile.avi
# mplayer -vo dga testfile.avi
# mplayer -vo 'sdl:dga' testfile.avi
It is worth trying all of these options, as their relative performance depends on many factors and will vary significantly with hardware.
To play from a DVD, replace the testfile.avi with dvd://N -dvd-device DEVICE
where N
is the title number to play and DEVICE is the device node for the DVD-ROM. For
example, to play title 3 from /dev/dvd:
# mplayer -vo xv dvd://3 -dvd-device /dev/dvd
Note: The default DVD device can be defined during the build of the MPlayer port via the WITH_DVD_DEVICE option. By default, this device is /dev/acd0. More details can be found in the port Makefile.
To stop, pause, advance and so on, consult the keybindings, which are output by running mplayer -h or read the manual page.
Additional important options for playback are: -fs -zoom
which engages the fullscreen mode and -framedrop
which helps
performance.
In order for the mplayer command line to not become too large, the user can create a file .mplayer/config and set default options there:
vo=xv fs=yes zoom=yes
Finally, mplayer can be used to rip a DVD title into a .vob file. To dump out the second title from a DVD, type this:
# mplayer -dumpstream -dumpfile out.vob dvd://2 -dvd-device /dev/dvd
The output file, out.vob, will be MPEG and can be manipulated by the other packages described in this section.
Before using mencoder it is a good idea to familiarize yourself with the options from the HTML documentation. There is a manual page, but it is not very useful without the HTML documentation. There are innumerable ways to improve quality, lower bitrate, and change formats, and some of these tricks may make the difference between good or bad performance. Here are a couple of examples to get you going. First a simple copy:
% mencoder input.avi -oac copy -ovc copy -o output.avi
Improper combinations of command line options can yield output files that are
unplayable even by mplayer. Thus, if you just want
to rip to a file, stick to the -dumpfile
in mplayer.
To convert input.avi to the MPEG4 codec with MPEG3 audio encoding (audio/lame is required):
% mencoder input.avi -oac mp3lame -lameopts br=192 \ -ovc lavc -lavcopts vcodec=mpeg4:vhq -o output.avi
This has produced output playable by mplayer and xine.
input.avi can be
replaced with dvd://1 -dvd-device /dev/dvd
and run as
root to re-encode a DVD title directly. Since you
are likely to be dissatisfied with your results the first time around, it is
recommended you dump the title to a file and work on the file.
The xine video player is a project of wide scope aiming not only at being an all in one video solution, but also in producing a reusable base library and a modular executable which can be extended with plugins. It comes both as a package and as a port, multimedia/xine.
The xine player is still very rough around the edges, but it is clearly off to a good start. In practice, xine requires either a fast CPU with a fast video card, or support for the XVideo extension. The GUI is usable, but a bit clumsy.
As of this writing, there is no input module shipped with xine which will play CSS encoded DVDs. There are third party builds which do have modules for this built in them, but none of these are in the FreeBSD Ports Collection.
Compared to MPlayer, xine does more for the user, but at the same time, takes some of the more fine-grained control away from the user. The xine video player performs best on XVideo interfaces.
By default, xine player will start up in a graphical user interface. The menus can then be used to open a specific file:
% xine
Alternatively, it may be invoked to play a file immediately without the GUI with the command:
% xine -g -p mymovie.avi
The software transcode is not a player, but a suite of tools for re-encoding video and audio files. With transcode, one has the ability to merge video files, repair broken files, using command line tools with stdin/stdout stream interfaces.
A great number of options can be specified during the build from the multimedia/transcode port, we recommend the following command line to build transcode:
# make WITH_OPTIMIZED_CFLAGS=yes WITH_LIBA52=yes WITH_LAME=yes WITH_OGG=yes \ WITH_MJPEG=yes -DWITH_XVID=yes
The proposed settings should be sufficient for most users.
To illustrate transcode capacities, one example to show how to convert a DivX file into a PAL MPEG-1 file (PAL VCD):
% transcode -i input.avi -V --export_prof vcd-pal -o output_vcd % mplex -f 1 -o output_vcd.mpg output_vcd.m1v output_vcd.mpa
The resulting MPEG file, output_vcd.mpg, is ready to be played with MPlayer. You could even burn the file on a CD-R media to create a Video CD, in this case you will need to install and use both multimedia/vcdimager and sysutils/cdrdao programs.
There is a manual page for transcode, but you should also consult the transcode wiki for further information and examples.
The various video software packages for FreeBSD are developing rapidly. It is quite possible that in the near future many of the problems discussed here will have been resolved. In the mean time, those who want to get the very most out of FreeBSD's A/V capabilities will have to cobble together knowledge from several FAQs and tutorials and use a few different applications. This section exists to give the reader pointers to such additional information.
The MPlayer documentation is very technically informative. These documents should probably be consulted by anyone wishing to obtain a high level of expertise with UNIX video. The MPlayer mailing list is hostile to anyone who has not bothered to read the documentation, so if you plan on making bug reports to them, RTFM.
The xine HOWTO contains a chapter on performance improvement which is general to all players.
Finally, there are some other promising applications which the reader may try:
Avifile which is also a port multimedia/avifile.
Ogle which is also a port multimedia/ogle.
multimedia/dvdauthor, an open source package for authoring DVD content.
TV cards allow you to watch broadcast or cable TV on your computer. Most of them accept composite video via an RCA or S-video input and some of these cards come with a FM radio tuner.
FreeBSD provides support for PCI-based TV cards using a Brooktree Bt848/849/878/879 or a Conexant CN-878/Fusion 878a Video Capture Chip with the bktr(4) driver. You must also ensure the board comes with a supported tuner, consult the bktr(4) manual page for a list of supported tuners.
To use your card, you will need to load the bktr(4) driver, this can be done by adding the following line to the /boot/loader.conf file like this:
bktr_load="YES"
Alternatively, you may statically compile the support for the TV card in your kernel, in that case add the following lines to your kernel configuration:
device bktr device iicbus device iicbb device smbus
These additional device drivers are necessary because of the card components being interconnected via an I2C bus. Then build and install a new kernel.
Once the support was added to your system, you have to reboot your machine. During the boot process, your TV card should show up, like this:
bktr0: <BrookTree 848A> mem 0xd7000000-0xd7000fff irq 10 at device 10.0 on pci0 iicbb0: <I2C bit-banging driver> on bti2c0 iicbus0: <Philips I2C bus> on iicbb0 master-only iicbus1: <Philips I2C bus> on iicbb0 master-only smbus0: <System Management Bus> on bti2c0 bktr0: Pinnacle/Miro TV, Philips SECAM tuner.
Of course these messages can differ according to your hardware. However you should check if the tuner is correctly detected; it is still possible to override some of the detected parameters with sysctl(8) MIBs and kernel configuration file options. For example, if you want to force the tuner to a Philips SECAM tuner, you should add the following line to your kernel configuration file:
options OVERRIDE_TUNER=6
or you can directly use sysctl(8):
# sysctl hw.bt848.tuner=6
See the bktr(4) manual page and the /usr/src/sys/conf/NOTES file for more details on the available options.
To use your TV card you need to install one of the following applications:
multimedia/fxtv provides TV-in-a-window and image/audio/video capture capabilities.
multimedia/xawtv is also a TV application, with the same features as fxtv.
misc/alevt decodes and displays Videotext/Teletext.
audio/xmradio, an application to use the FM radio tuner coming with some TV cards.
audio/wmtune, a handy desktop application for radio tuners.
More applications are available in the FreeBSD Ports Collection.
If you encounter any problem with your TV card, you should check at first if the video capture chip and the tuner are really supported by the bktr(4) driver and if you used the right configuration options. For more support and various questions about your TV card you may want to contact and use the archives of the freebsd-multimedia mailing list.
MythTV is an open source PVR software project.
It is well-known in the Linux world as a complex application with many dependencies, and therefore difficult to install. The FreeBSD ports system simplifies much of the process, but some components must be set up manually. This section is intended to help and guide in setting up MythTV.
MythTV is designed to utilise V4L to access video input devices such as encoders and tuners. At this time, MythTV works best with USB DVB-S/C/T cards supported by multimedia/webcamd because webcamd provides a V4L userland application. Any DVB card supported by webcamd should work with MythTV, but a list of known working cards can be found here. There are also drivers available for Hauppauge cards in the following packages: multimedia/pvr250 and multimedia/pvrxxx, but they provide a non-standard driver interface that does not work with versions of MythTV greater than 0.23.
HTPC contains a list of all available DVB drivers.
Being flexible and modular, MythTV allows the user to have the frontend and backend on different machines.
For the frontend, multimedia/mythtv-frontend is required, as well as an X server, which can be found in x11/xorg. Ideally, the frontend computer also has a video card that supports XvMC and, optionally, a LIRC-compatible remote.
For the backend, multimedia/mythtv is required, as well as a MySQL™ database, and optionally a tuner and storage for recordings. The MySQL package should be automatically installed as a dependency when installing multimedia/mythtv.
To install MythTV, use the following steps. First, install MythTV from the FreeBSD Ports collection:
# cd /usr/ports/multimedia/mythtv # make install
Set up the MythTV database:
# mysql -uroot -p < /usr/local/share/mythtv/database/mc.sql
Configure the backend:
# mythtv-setup
Start the backend:
# echo 'mythbackend_enable="YES"' >> /etc/rc.conf # /usr/local/etc/rc.d/mythbackend start
In FreeBSD, access to image scanners is provided by the SANE (Scanner Access Now Easy) API available through the FreeBSD Ports Collection. SANE will also use some FreeBSD device drivers to access to the scanner hardware.
FreeBSD supports both SCSI and USB scanners. Be sure your scanner is supported by SANE prior to performing any configuration. SANE has a supported devices list that can provide you with information about the support for a scanner and its status. On systems prior to FreeBSD 8.X the uscanner(4) manual page also provides a list of supported USB scanners.
As mentioned above both SCSI and USB interfaces are supported. According to your scanner interface, different device drivers are required.
The GENERIC kernel by default includes the device drivers needed to support USB scanners. Should you decide to use a custom kernel, be sure that the following lines are present in your kernel configuration file:
device usb device uhci device ohci device ehci
On systems prior to FreeBSD 8.X, the following line is also needed:
device uscanner
On these versions of FreeBSD, the uscanner(4) device driver provides support for the USB scanners. Since FreeBSD 8.0, this support is directly provided by the libusb(3) library.
After rebooting with the correct kernel, plug in your USB scanner. A line showing the detection of your scanner should appear in the system message buffer (dmesg(8)):
ugen0.2: <EPSON> at usbus0
or on a FreeBSD 7.X system:
uscanner0: EPSON EPSON Scanner, rev 1.10/3.02, addr 2
These messages show that our scanner is using either /dev/ugen0.2 or /dev/uscanner0 as device node according to the FreeBSD version we run. For this example, a EPSON Perfection® 1650 USB scanner was used.
If your scanner comes with a SCSI interface, it is important to know which SCSI controller board you will use. According to the SCSI chipset used, you will have to tune your kernel configuration file. The GENERIC kernel supports the most common SCSI controllers. Be sure to read the NOTES file and add the correct line to your kernel configuration file. In addition to the SCSI adapter driver, you need to have the following lines in your kernel configuration file:
device scbus device pass
Once your kernel has been properly compiled and installed, you should be able to see the devices in the system message buffer, when booting:
pass2 at aic0 bus 0 target 2 lun 0 pass2: <AGFA SNAPSCAN 600 1.10> Fixed Scanner SCSI-2 device pass2: 3.300MB/s transfers
If your scanner was not powered-on at system boot, it is still possible to manually force the detection by performing a SCSI bus scan with the camcontrol(8) command:
# camcontrol rescan all Re-scan of bus 0 was successful Re-scan of bus 1 was successful Re-scan of bus 2 was successful Re-scan of bus 3 was successful
Then the scanner will appear in the SCSI devices list:
# camcontrol devlist <IBM DDRS-34560 S97B> at scbus0 target 5 lun 0 (pass0,da0) <IBM DDRS-34560 S97B> at scbus0 target 6 lun 0 (pass1,da1) <AGFA SNAPSCAN 600 1.10> at scbus1 target 2 lun 0 (pass3) <PHILIPS CDD3610 CD-R/RW 1.00> at scbus2 target 0 lun 0 (pass2,cd0)
More details about SCSI devices are available in the scsi(4) and camcontrol(8) manual pages.
The SANE system is split in two parts: the backends ( graphics/sane-backends) and the frontends ( graphics/sane-frontends). The backends part provides access to the scanner itself. The SANE's supported devices list specifies which backend will support your image scanner. It is mandatory to determine the correct backend for your scanner if you want to be able to use your device. The frontends part provides the graphical scanning interface (xscanimage).
The first step is to install the graphics/sane-backends port or package. Then, use the sane-find-scanner command to check the scanner detection by the SANE system:
# sane-find-scanner -q found SCSI scanner "AGFA SNAPSCAN 600 1.10" at /dev/pass3
The output will show the interface type of the scanner and the device node used to attach the scanner to the system. The vendor and the product model may not appear, it is not important.
Note: Some USB scanners require you to load a firmware, this is explained in the backend manual page. You should also read sane-find-scanner(1) and sane(7) manual pages.
Now we have to check if the scanner will be identified by a scanning frontend. By
default, the SANE backends comes with a command line
tool called
scanimage(1).
This command allows you to list the devices and to perform an image acquisition from
the command line. The -L
option is used to list the
scanner devices:
# scanimage -L device `snapscan:/dev/pass3' is a AGFA SNAPSCAN 600 flatbed scanner
Or, for example with the USB scanner used in the Section 8.7.2.1:
# scanimage -L device 'epson2:libusb:/dev/usb:/dev/ugen0.2' is a Epson GT-8200 flatbed scanner
This output comes from a FreeBSD 8.X system, the 'epson2:libusb:/dev/usb:/dev/ugen0.2' item gives us the backend name (epson2) and the device node (/dev/ugen0.2) used by our scanner.
Note: No output or a message saying that no scanners were identified indicates that scanimage(1) is unable to identify the scanner. If this happens, you will need to edit the backend configuration file and define the scanner device used. The /usr/local/etc/sane.d/ directory contains all backend configuration files. This identification problem does appear with certain USB scanners.
For example, with the USB scanner used in the Section 8.7.2.1, under FreeBSD 8.X the scanner is perfectly detected and working but under prior versions of FreeBSD (where uscanner(4) driver is used) sane-find-scanner gives us the following information:
# sane-find-scanner -q found USB scanner (UNKNOWN vendor and product) at device /dev/uscanner0The scanner is correctly detected, it uses the USB interface and is attached to the /dev/uscanner0 device node. We can now check if the scanner is correctly identified:
# scanimage -L No scanners were identified. If you were expecting something different, check that the scanner is plugged in, turned on and detected by the sane-find-scanner tool (if appropriate). Please read the documentation which came with this software (README, FAQ, manpages).Since the scanner is not identified, we will need to edit the /usr/local/etc/sane.d/epson2.conf file. The scanner model used was the EPSON Perfection 1650, so we know the scanner will use the epson2 backend. Be sure to read the help comments in the backends configuration files. Line changes are quite simple: comment out all lines that have the wrong interface for your scanner (in our case, we will comment out all lines starting with the word scsi as our scanner uses the USB interface), then add at the end of the file a line specifying the interface and the device node used. In this case, we add the following line:
usb /dev/uscanner0Please be sure to read the comments provided in the backend configuration file as well as the backend manual page for more details and correct syntax to use. We can now verify if the scanner is identified:
# scanimage -L device `epson:/dev/uscanner0' is a Epson GT-8200 flatbed scannerOur USB scanner has been identified. It is not important if the brand and the model do not match the scanner. The key item to be concerned with is the `epson:/dev/uscanner0' field, which give us the right backend name and the right device node.
Once the scanimage -L command is able to see the scanner, the configuration is complete. The device is now ready to scan.
While scanimage(1) does allow us to perform an image acquisition from the command line, it is preferable to use a graphical user interface to perform image scanning. SANE offers a simple but efficient graphical interface: xscanimage ( graphics/sane-frontends).
Xsane (graphics/xsane) is another popular graphical scanning frontend. This frontend offers advanced features such as various scanning mode (photocopy, fax, etc.), color correction, batch scans, etc. Both of these applications are usable as a GIMP plugin.
All previous operations have been done with root privileges. You may however, need other users to have access to the scanner. The user will need read and write permissions to the device node used by the scanner. As an example, our USB scanner uses the device node /dev/ugen0.2 which is in fact just a symlink to the real device node called /dev/usb/0.2.0 (a quick look at the contents of the /dev directory will confirm it). Both, the symlink and the device node, are owned respectively by the wheel and the operator groups. Adding the user joe to these groups will allow him to use the scanner but, for obvious security reasons, you should think twice before adding a user to any group, especially the wheel group. A better solution would be creating a specific group for using the USB devices and make the scanner device accessible to members of this group.
So we will use, for example, a group called usb. The first step is the creation of this group with the help of the pw(8) command:
# pw groupadd usb
Then we have to make the /dev/ugen0.2 symlink and the /dev/usb/0.2.0 device node accessible to the usb group with the correct write permissions (0660 or 0664), because by default only the owner of these files (root) can write to them. All of this is done by adding the following lines to the /etc/devfs.rules file:
[system=5] add path ugen0.2 mode 0660 group usb add path usb/0.2.0 mode 0666 group usb
FreeBSD 7.X users will probably need the following lines with the correct device node /dev/uscanner0:
[system=5] add path uscanner0 mode 660 group usb
Then add the following to /etc/rc.conf and reboot the machine:
devfs_system_ruleset="system"
More information regarding these lines can be found in the devfs(8) manual page.
Now, one will just have to add users to the usb group to allow the access to the scanner:
# pw groupmod usb -m joe
For more details read the pw(8) manual page.
The kernel is the core of the FreeBSD operating system. It is responsible for managing memory, enforcing security controls, networking, disk access, and much more. While more and more of FreeBSD becomes dynamically configurable it is still occasionally necessary to reconfigure and recompile your kernel.
After reading this chapter, you will know:
Why you might need to build a custom kernel.
How to write a kernel configuration file, or alter an existing configuration file.
How to use the kernel configuration file to create and build a new kernel.
How to install the new kernel.
How to troubleshoot if things go wrong.
All of the commands listed within this chapter by way of example should be executed as root in order to succeed.
Traditionally, FreeBSD has had what is called a “monolithic” kernel. This means that the kernel was one large program, supported a fixed list of devices, and if you wanted to change the kernel's behavior then you had to compile a new kernel, and then reboot your computer with the new kernel.
Today, FreeBSD is rapidly moving to a model where much of the kernel's functionality is contained in modules which can be dynamically loaded and unloaded from the kernel as necessary. This allows the kernel to adapt to new hardware suddenly becoming available (such as PCMCIA cards in a laptop), or for new functionality to be brought into the kernel that was not necessary when the kernel was originally compiled. This is known as a modular kernel.
Despite this, it is still necessary to carry out some static kernel configuration. In some cases this is because the functionality is so tied to the kernel that it can not be made dynamically loadable. In others it may simply be because no one has yet taken the time to write a dynamic loadable kernel module for that functionality.
Building a custom kernel is one of the most important rites of passage for advanced BSD users. This process, while time consuming, will provide many benefits to your FreeBSD system. Unlike the GENERIC kernel, which must support a wide range of hardware, a custom kernel only contains support for your PC's hardware. This has a number of benefits, such as:
Faster boot time. Since the kernel will only probe the hardware you have on your system, the time it takes your system to boot can decrease dramatically.
Lower memory usage. A custom kernel often uses less memory than the GENERIC kernel by omitting unused features and device drivers. This is important because the kernel code remains resident in physical memory at all times, preventing that memory from being used by applications. For this reason, a custom kernel is especially useful on a system with a small amount of RAM.
Additional hardware support. A custom kernel allows you to add in support for devices which are not present in the GENERIC kernel, such as sound cards.
Before venturing into kernel configuration, it would be wise to get an inventory of the machine's hardware. In cases where FreeBSD is not the primary operating system, the inventory list may easily be created by viewing the current operating system configuration. For example, Microsoft's Device Manager normally contains important information about installed devices. The Device Manager is located in the control panel.
Note: Some versions of Microsoft Windows have a System icon which will display a screen where Device Manager may be accessed.
If another operating system does not exist on the machine, the administrator must find this information out manually. One method is using the dmesg(8) utility and the man(1) commands. Most device drivers on FreeBSD have a manual page, listing supported hardware, and during the boot probe, found hardware will be listed. For example, the following lines indicate that the psm driver found a mouse:
psm0: <PS/2 Mouse> irq 12 on atkbdc0 psm0: [GIANT-LOCKED] psm0: [ITHREAD] psm0: model Generic PS/2 mouse, device ID 0
This driver will need to be included in the custom kernel configuration file or loaded using loader.conf(5).
On occasion, the data from dmesg will only show system messages instead of the boot probe output. In these situations, the output may be obtained by viewing the /var/run/dmesg.boot file.
Another method of finding hardware is by using the pciconf(8) utility which provides more verbose output. For example:
ath0@pci0:3:0:0: class=0x020000 card=0x058a1014 chip=0x1014168c rev=0x01 hdr=0x00 vendor = 'Atheros Communications Inc.' device = 'AR5212 Atheros AR5212 802.11abg wireless' class = network subclass = ethernet
This bit of output, obtained using pciconf -lv
shows that the ath driver
located a wireless Ethernet device. Using man ath will return the ath(4) manual
page.
The -k
flag, when passed to man(1) can also be
used to provide useful information. From the above, one can issue:
# man -k Atheros
To get a list of manual pages which contain that particular word:
ath(4) - Atheros IEEE 802.11 wireless network driver ath_hal(4) - Atheros Hardware Access Layer (HAL)
Armed with a hardware inventory list, the process of building a custom kernel should appear less daunting.
Before building a custom kernel, consider the reasons for doing so. If there is a need for specific hardware support, it may already exist as a module.
Kernel modules exist in the /boot/kernel directory and may be dynamically loaded into the running kernel using kldload(8). Most, if not all kernel drivers have a specific module and manual page. For example, the last section noted the ath wireless Ethernet driver. This device has the following information in its manual page:
Alternatively, to load the driver as a module at boot time, place the following line in loader.conf(5): if_ath_load="YES"
As instructed, adding the if_ath_load="YES" line to the /boot/loader.conf file will enable loading this module dynamically at boot time.
In some cases; however, there is no associated module. This is mostly true for certain subsystems and very important drivers, for instance, the fast file system (FFS) is a required option in the kernel. As is network support (INET). Unfortunately the only way to tell if a driver is required is to check for the module itself.
Warning: It is easy to remove support for a device or option and end up with a broken kernel. For example, if the ata(4) driver is removed from the kernel configuration file, a system using ATA disk drivers may not boot without the module added to loader.conf. When in doubt, check for the module and then just leave support in the kernel.
Note: It is required to have the full FreeBSD source tree installed to build the kernel.
First, let us take a quick tour of the kernel build directory. All directories mentioned will be relative to the main /usr/src/sys directory, which is also accessible through the path name /sys. There are a number of subdirectories here representing different parts of the kernel, but the most important for our purposes are arch/conf, where you will edit your custom kernel configuration, and compile, which is the staging area where your kernel will be built. arch represents one of i386, amd64, ia64, powerpc, sparc64, or pc98 (an alternative development branch of PC hardware, popular in Japan). Everything inside a particular architecture's directory deals with that architecture only; the rest of the code is machine independent code common to all platforms to which FreeBSD could potentially be ported. Notice the logical organization of the directory structure, with each supported device, file system, and option in its own subdirectory.
The examples in this chapter assume that you are using the i386 architecture. If your system has a different architecture you need to change the path names accordingly.
Note: If the directory /usr/src/ does not exist on your system (or if it is empty), then the sources have not been installed. The easiest way to install the full source is to use csup(1) as described in Section 25.6. You should also create a symlink to /usr/src/sys/:
# ln -s /usr/src/sys /sys
Next, change to the arch/conf directory and copy the GENERIC configuration file to the name you want to give your kernel. For example:
# cd /usr/src/sys/i386/conf # cp GENERIC MYKERNEL
Traditionally, this name is in all capital letters and, if you are maintaining multiple FreeBSD machines with different hardware, it is a good idea to name it after your machine's hostname. We will call it MYKERNEL for the purpose of this example.
Tip: Storing your kernel configuration file directly under /usr/src can be a bad idea. If you are experiencing problems it can be tempting to just delete /usr/src and start again. After doing this, it usually only takes a few seconds for you to realize that you have deleted your custom kernel configuration file. Also, do not edit GENERIC directly, as it may get overwritten the next time you update your source tree, and your kernel modifications will be lost.
You might want to keep your kernel configuration file elsewhere, and then create a symbolic link to the file in the i386 directory.
For example:
# cd /usr/src/sys/i386/conf # mkdir /root/kernels # cp GENERIC /root/kernels/MYKERNEL # ln -s /root/kernels/MYKERNEL
Now, edit MYKERNEL with your favorite text editor. If you are just starting out, the only editor available will probably be vi, which is too complex to explain here, but is covered well in many books in the bibliography. However, FreeBSD does offer an easier editor called ee which, if you are a beginner, should be your editor of choice. Feel free to change the comment lines at the top to reflect your configuration or the changes you have made to differentiate it from GENERIC.
If you have built a kernel under SunOS or some other BSD operating system, much of this file will be very familiar to you. If you are coming from some other operating system such as DOS, on the other hand, the GENERIC configuration file might seem overwhelming to you, so follow the descriptions in the Configuration File section slowly and carefully.
Note: If you sync your source tree with the latest sources of the FreeBSD project, be sure to always check the file /usr/src/UPDATING before you perform any update steps. This file describes any important issues or areas requiring special attention within the updated source code. /usr/src/UPDATING always matches your version of the FreeBSD source, and is therefore more up to date with new information than this handbook.
You must now compile the source code for the kernel.
Building a Kernel
Note: It is required to have the full FreeBSD source tree installed to build the kernel.
Change to the /usr/src directory:
# cd /usr/src
Compile the kernel:
# make buildkernel KERNCONF=MYKERNEL
Install the new kernel:
# make installkernel KERNCONF=MYKERNEL
Tip: By default, when you build a custom kernel, all kernel modules will be rebuilt as well. If you want to update a kernel faster or to build only custom modules, you should edit /etc/make.conf before starting to build the kernel:
MODULES_OVERRIDE = linux acpi sound/sound sound/driver/ds1 ntfsThis variable sets up a list of modules to build instead of all of them.
WITHOUT_MODULES = linux acpi sound ntfsThis variable sets up a list of top level modules to exclude from the build process. For other variables which you may find useful in the process of building kernel, refer to make.conf(5) manual page.
The new kernel will be copied to the /boot/kernel directory as /boot/kernel/kernel and the old kernel will be moved to /boot/kernel.old/kernel. Now, shutdown the system and reboot to use your new kernel. If something goes wrong, there are some troubleshooting instructions at the end of this chapter that you may find useful. Be sure to read the section which explains how to recover in case your new kernel does not boot.
Note: Other files relating to the boot process, such as the boot loader(8) and configuration are stored in /boot. Third party or custom modules can be placed in /boot/kernel, although users should be aware that keeping modules in sync with the compiled kernel is very important. Modules not intended to run with the compiled kernel may result in instability or incorrectness.
The general format of a configuration file is quite simple. Each line contains a keyword and one or more arguments. For simplicity, most lines only contain one argument. Anything following a # is considered a comment and ignored. The following sections describe each keyword, in the order they are listed in GENERIC. For an exhaustive list of architecture dependent options and devices, see the NOTES file in the same directory as the GENERIC file. For architecture independent options, see /usr/src/sys/conf/NOTES.
An include directive is available for use in configuration files. This allows another configuration file to be logically included in the current one, making it easy to maintain small changes relative to an existing file. For example, if you require a GENERIC kernel with only a small number of additional options or drivers, this allows you to maintain only a delta with respect to GENERIC:
include GENERIC ident MYKERNEL options IPFIREWALL options DUMMYNET options IPFIREWALL_DEFAULT_TO_ACCEPT options IPDIVERT
Many administrators will find that this model offers significant benefits over the historic writing of configuration files from scratch: the local configuration file will express only local differences from a GENERIC kernel and as upgrades are performed, new features added to GENERIC will be added to the local kernel unless specifically prevented using nooptions or nodevice. The remainder of this chapter addresses the contents of a typical configuration file and the role various options and devices play.
Note: To build a file which contains all available options, as normally done for testing purposes, run the following command as root:
# cd /usr/src/sys/i386/conf && make LINT
The following is an example of the GENERIC kernel configuration file with various additional comments where needed for clarity. This example should match your copy in /usr/src/sys/i386/conf/GENERIC fairly closely.
machine i386
This is the machine architecture. It must be either amd64, i386, ia64, pc98, powerpc, or sparc64.
cpu I486_CPU cpu I586_CPU cpu I686_CPU
The above option specifies the type of CPU you have in your system. You may have multiple instances of the CPU line (if, for example, you are not sure whether you should use I586_CPU or I686_CPU), but for a custom kernel it is best to specify only the CPU you have. If you are unsure of your CPU type, you can check the /var/run/dmesg.boot file to view your boot messages.
ident GENERIC
This is the identification of the kernel. You should change this to whatever you named your kernel, i.e., MYKERNEL if you have followed the instructions of the previous examples. The value you put in the ident string will print when you boot up the kernel, so it is useful to give the new kernel a different name if you want to keep it separate from your usual kernel (e.g., you want to build an experimental kernel).
#To statically compile in device wiring instead of /boot/device.hints #hints "GENERIC.hints" # Default places to look for devices.
The device.hints(5) is used to configure options of the device drivers. The default location that loader(8) will check at boot time is /boot/device.hints. Using the hints option you can compile these hints statically into your kernel. Then there is no need to create a device.hints file in /boot.
makeoptions DEBUG=-g # Build kernel with gdb(1) debug symbols
The normal build process of FreeBSD includes debugging information when building the
kernel with the -g
option, which enables debugging
information when passed to gcc(1).
options SCHED_ULE # ULE scheduler
The default system scheduler for FreeBSD. Keep this.
options PREEMPTION # Enable kernel thread preemption
Allows threads that are in the kernel to be preempted by higher priority threads. It helps with interactivity and allows interrupt threads to run sooner rather than waiting.
options INET # InterNETworking
Networking support. Leave this in, even if you do not plan to be connected to a network. Most programs require at least loopback networking (i.e., making network connections within your PC), so this is essentially mandatory.
options INET6 # IPv6 communications protocols
This enables the IPv6 communication protocols.
options FFS # Berkeley Fast Filesystem
This is the basic hard drive file system. Leave it in if you boot from the hard disk.
options SOFTUPDATES # Enable FFS Soft Updates support
This option enables Soft Updates in the kernel, this will help speed up write access on the disks. Even when this functionality is provided by the kernel, it must be turned on for specific disks. Review the output from mount(8) to see if Soft Updates is enabled for your system disks. If you do not see the soft-updates option then you will need to activate it using the tunefs(8) (for existing file systems) or newfs(8) (for new file systems) commands.
options UFS_ACL # Support for access control lists
This option enables kernel support for access control lists. This relies on the use of extended attributes and UFS2, and the feature is described in detail in Section 15.11. ACLs are enabled by default and should not be disabled in the kernel if they have been used previously on a file system, as this will remove the access control lists, changing the way files are protected in unpredictable ways.
options UFS_DIRHASH # Improve performance on big directories
This option includes functionality to speed up disk operations on large directories, at the expense of using additional memory. You would normally keep this for a large server, or interactive workstation, and remove it if you are using FreeBSD on a smaller system where memory is at a premium and disk access speed is less important, such as a firewall.
options MD_ROOT # MD is a potential root device
This option enables support for a memory backed virtual disk used as a root device.
options NFSCLIENT # Network Filesystem Client options NFSSERVER # Network Filesystem Server options NFS_ROOT # NFS usable as /, requires NFSCLIENT
The network file system. Unless you plan to mount partitions from a UNIX file server over TCP/IP, you can comment these out.
options MSDOSFS # MSDOS Filesystem
The MS-DOS file system. Unless you plan to mount a DOS formatted hard drive partition at boot time, you can safely comment this out. It will be automatically loaded the first time you mount a DOS partition, as described above. Also, the excellent emulators/mtools software allows you to access DOS floppies without having to mount and unmount them (and does not require MSDOSFS at all).
options CD9660 # ISO 9660 Filesystem
The ISO 9660 file system for CDROMs. Comment it out if you do not have a CDROM drive or only mount data CDs occasionally (since it will be dynamically loaded the first time you mount a data CD). Audio CDs do not need this file system.
options PROCFS # Process filesystem (requires PSEUDOFS)
The process file system. This is a “pretend” file system mounted on /proc which allows programs like ps(1) to give you more information on what processes are running. Use of PROCFS is not required under most circumstances, as most debugging and monitoring tools have been adapted to run without PROCFS: installs will not mount this file system by default.
options PSEUDOFS # Pseudo-filesystem framework
Kernels making use of PROCFS must also include support for PSEUDOFS.
options GEOM_PART_GPT # GUID Partition Tables.
Adds support for GUID Partition Tables. GPT provides the ability to have a large number of partitions per disk, 128 in the standard configuration.
options COMPAT_43 # Compatible with BSD 4.3 [KEEP THIS!]
Compatibility with 4.3BSD. Leave this in; some programs will act strangely if you comment this out.
options COMPAT_FREEBSD4 # Compatible with FreeBSD4
This option is required to support applications compiled on older versions of FreeBSD that use older system call interfaces. It is recommended that this option be used on all i386 systems that may run older applications; platforms that gained support only in 5.X, such as ia64 and SPARC64, do not require this option.
options COMPAT_FREEBSD5 # Compatible with FreeBSD5
This option is required to support applications compiled on FreeBSD 5.X versions that use FreeBSD 5.X system call interfaces.
options COMPAT_FREEBSD6 # Compatible with FreeBSD6
This option is required to support applications compiled on FreeBSD 6.X versions that use FreeBSD 6.X system call interfaces.
options COMPAT_FREEBSD7 # Compatible with FreeBSD7
This option is required on FreeBSD 8 and above to support applications compiled on FreeBSD 7.X versions that use FreeBSD 7.X system call interfaces.
options SCSI_DELAY=5000 # Delay (in ms) before probing SCSI
This causes the kernel to pause for 5 seconds before probing each SCSI device in your system. If you only have IDE hard drives, you can ignore this, otherwise you can try to lower this number, to speed up booting. Of course, if you do this and FreeBSD has trouble recognizing your SCSI devices, you will have to raise it again.
options KTRACE # ktrace(1) support
This enables kernel process tracing, which is useful in debugging.
options SYSVSHM # SYSV-style shared memory
This option provides for System V shared memory. The most common use of this is the XSHM extension in X, which many graphics-intensive programs will automatically take advantage of for extra speed. If you use X, you will definitely want to include this.
options SYSVMSG # SYSV-style message queues
Support for System V messages. This option only adds a few hundred bytes to the kernel.
options SYSVSEM # SYSV-style semaphores
Support for System V semaphores. Less commonly used but only adds a few hundred bytes to the kernel.
Note: The
-p
option of the ipcs(1) command will list any processes using each of these System V facilities.
options _KPOSIX_PRIORITY_SCHEDULING # POSIX P1003_1B real-time extensions
Real-time extensions added in the 1993 POSIX®. Certain applications in the Ports Collection use these (such as StarOffice).
options KBD_INSTALL_CDEV # install a CDEV entry in /dev
This option is required to allow the creation of keyboard device nodes in /dev.
options ADAPTIVE_GIANT # Giant mutex is adaptive.
Giant is the name of a mutual exclusion mechanism (a sleep mutex) that protects a large set of kernel resources. Today, this is an unacceptable performance bottleneck which is actively being replaced with locks that protect individual resources. The ADAPTIVE_GIANT option causes Giant to be included in the set of mutexes adaptively spun on. That is, when a thread wants to lock the Giant mutex, but it is already locked by a thread on another CPU, the first thread will keep running and wait for the lock to be released. Normally, the thread would instead go back to sleep and wait for its next chance to run. If you are not sure, leave this in.
Note: Note that on FreeBSD 8.0-RELEASE and later versions, all mutexes are adaptive by default, unless explicitly set to non-adaptive by compiling with the NO_ADAPTIVE_MUTEXES option. As a result, Giant is adaptive by default now, and the ADAPTIVE_GIANT option has been removed from the kernel configuration.
device apic # I/O APIC
The apic device enables the use of the I/O APIC for interrupt delivery. The apic device can be used in both UP and SMP kernels, but is required for SMP kernels. Add options SMP to include support for multiple processors.
Note: The apic device exists only on the i386 architecture, this configuration line should not be used on other architectures.
device eisa
Include this if you have an EISA motherboard. This enables auto-detection and configuration support for all devices on the EISA bus.
device pci
Include this if you have a PCI motherboard. This enables auto-detection of PCI cards and gatewaying from the PCI to ISA bus.
# Floppy drives device fdc
This is the floppy drive controller.
# ATA and ATAPI devices device ata
This driver supports all ATA and ATAPI devices. You only need one device ata line for the kernel to detect all PCI ATA/ATAPI devices on modern machines.
device atadisk # ATA disk drives
This is needed along with device ata for ATA disk drives.
device ataraid # ATA RAID drives
This is needed along with device ata for ATA RAID drives.
device atapicd # ATAPI CDROM drives
This is needed along with device ata for ATAPI CDROM drives.
device atapifd # ATAPI floppy drives
This is needed along with device ata for ATAPI floppy drives.
device atapist # ATAPI tape drives
This is needed along with device ata for ATAPI tape drives.
options ATA_STATIC_ID # Static device numbering
This makes the controller number static; without this, the device numbers are dynamically allocated.
# SCSI Controllers device ahb # EISA AHA1742 family device ahc # AHA2940 and onboard AIC7xxx devices options AHC_REG_PRETTY_PRINT # Print register bitfields in debug # output. Adds ~128k to driver. device ahd # AHA39320/29320 and onboard AIC79xx devices options AHD_REG_PRETTY_PRINT # Print register bitfields in debug # output. Adds ~215k to driver. device amd # AMD 53C974 (Teckram DC-390(T)) device isp # Qlogic family #device ispfw # Firmware for QLogic HBAs- normally a module device mpt # LSI-Logic MPT-Fusion #device ncr # NCR/Symbios Logic device sym # NCR/Symbios Logic (newer chipsets + those of `ncr') device trm # Tekram DC395U/UW/F DC315U adapters device adv # Advansys SCSI adapters device adw # Advansys wide SCSI adapters device aha # Adaptec 154x SCSI adapters device aic # Adaptec 15[012]x SCSI adapters, AIC-6[23]60. device bt # Buslogic/Mylex MultiMaster SCSI adapters device ncv # NCR 53C500 device nsp # Workbit Ninja SCSI-3 device stg # TMC 18C30/18C50
SCSI controllers. Comment out any you do not have in your system. If you have an IDE only system, you can remove these altogether. The *_REG_PRETTY_PRINT lines are debugging options for their respective drivers.
# SCSI peripherals device scbus # SCSI bus (required for SCSI) device ch # SCSI media changers device da # Direct Access (disks) device sa # Sequential Access (tape etc) device cd # CD device pass # Passthrough device (direct SCSI access) device ses # SCSI Environmental Services (and SAF-TE)
SCSI peripherals. Again, comment out any you do not have, or if you have only IDE hardware, you can remove them completely.
Note: The USB umass(4) driver and a few other drivers use the SCSI subsystem even though they are not real SCSI devices. Therefore make sure not to remove SCSI support, if any such drivers are included in the kernel configuration.
# RAID controllers interfaced to the SCSI subsystem device amr # AMI MegaRAID device arcmsr # Areca SATA II RAID device asr # DPT SmartRAID V, VI and Adaptec SCSI RAID device ciss # Compaq Smart RAID 5* device dpt # DPT Smartcache III, IV - See NOTES for options device hptmv # Highpoint RocketRAID 182x device hptrr # Highpoint RocketRAID 17xx, 22xx, 23xx, 25xx device iir # Intel Integrated RAID device ips # IBM (Adaptec) ServeRAID device mly # Mylex AcceleRAID/eXtremeRAID device twa # 3ware 9000 series PATA/SATA RAID # RAID controllers device aac # Adaptec FSA RAID device aacp # SCSI passthrough for aac (requires CAM) device ida # Compaq Smart RAID device mfi # LSI MegaRAID SAS device mlx # Mylex DAC960 family device pst # Promise Supertrak SX6000 device twe # 3ware ATA RAID
Supported RAID controllers. If you do not have any of these, you can comment them out or remove them.
# atkbdc0 controls both the keyboard and the PS/2 mouse device atkbdc # AT keyboard controller
The keyboard controller (atkbdc) provides I/O services for the AT keyboard and PS/2 style pointing devices. This controller is required by the keyboard driver (atkbd) and the PS/2 pointing device driver (psm).
device atkbd # AT keyboard
The atkbd driver, together with atkbdc controller, provides access to the AT 84 keyboard or the AT enhanced keyboard which is connected to the AT keyboard controller.
device psm # PS/2 mouse
Use this device if your mouse plugs into the PS/2 mouse port.
device kbdmux # keyboard multiplexer
Basic support for keyboard multiplexing. If you do not plan to use more than one keyboard on the system, you can safely remove that line.
device vga # VGA video card driver
The video card driver.
device splash # Splash screen and screen saver support
Splash screen at start up! Screen savers require this too.
# syscons is the default console driver, resembling an SCO console device sc
sc is the default console driver and resembles a SCO console. Since most full-screen programs access the console through a terminal database library like termcap, it should not matter whether you use this or vt, the VT220 compatible console driver. When you log in, set your TERM variable to scoansi if full-screen programs have trouble running under this console.
# Enable this for the pcvt (VT220 compatible) console driver #device vt #options XSERVER # support for X server on a vt console #options FAT_CURSOR # start with block cursor
This is a VT220-compatible console driver, backward compatible to VT100/102. It works well on some laptops which have hardware incompatibilities with sc. Also set your TERM variable to vt100 or vt220 when you log in. This driver might also prove useful when connecting to a large number of different machines over the network, where termcap or terminfo entries for the sc device are often not available — vt100 should be available on virtually any platform.
device agp
Include this if you have an AGP card in the system. This will enable support for AGP, and AGP GART for boards which have these features.
# Power management support (see NOTES for more options) #device apm
Advanced Power Management support. Useful for laptops, although this is disabled in GENERIC by default.
# Add suspend/resume support for the i8254. device pmtimer
Timer device driver for power management events, such as APM and ACPI.
# PCCARD (PCMCIA) support # PCMCIA and cardbus bridge support device cbb # cardbus (yenta) bridge device pccard # PC Card (16-bit) bus device cardbus # CardBus (32-bit) bus
PCMCIA support. You want this if you are using a laptop.
# Serial (COM) ports device sio # 8250, 16[45]50 based serial ports
These are the serial ports referred to as COM ports in the MS-DOS/Windows world.
Note: If you have an internal modem on COM4 and a serial port at COM2, you will have to change the IRQ of the modem to 2 (for obscure technical reasons, IRQ2 = IRQ 9) in order to access it from FreeBSD. If you have a multiport serial card, check the manual page for sio(4) for more information on the proper values to add to your /boot/device.hints. Some video cards (notably those based on S3 chips) use IO addresses in the form of 0x*2e8, and since many cheap serial cards do not fully decode the 16-bit IO address space, they clash with these cards making the COM4 port practically unavailable.
Each serial port is required to have a unique IRQ (unless you are using one of the multiport cards where shared interrupts are supported), so the default IRQs for COM3 and COM4 cannot be used.
# Parallel port device ppc
This is the ISA-bus parallel port interface.
device ppbus # Parallel port bus (required)
Provides support for the parallel port bus.
device lpt # Printer
Support for parallel port printers.
Note: All three of the above are required to enable parallel printer support.
device plip # TCP/IP over parallel
This is the driver for the parallel network interface.
device ppi # Parallel port interface device
The general-purpose I/O (“geek port”) + IEEE1284 I/O.
#device vpo # Requires scbus and da
This is for an Iomega Zip drive. It requires scbus and da support. Best performance is achieved with ports in EPP 1.9 mode.
#device puc
Uncomment this device if you have a “dumb” serial or parallel PCI card that is supported by the puc(4) glue driver.
# PCI Ethernet NICs. device de # DEC/Intel DC21x4x (“Tulip”) device em # Intel PRO/1000 adapter Gigabit Ethernet Card device ixgb # Intel PRO/10GbE Ethernet Card device txp # 3Com 3cR990 (“Typhoon”) device vx # 3Com 3c590, 3c595 (“Vortex”)
Various PCI network card drivers. Comment out or remove any of these not present in your system.
# PCI Ethernet NICs that use the common MII bus controller code. # NOTE: Be sure to keep the 'device miibus' line in order to use these NICs! device miibus # MII bus support
MII bus support is required for some PCI 10/100 Ethernet NICs, namely those which use MII-compliant transceivers or implement transceiver control interfaces that operate like an MII. Adding device miibus to the kernel config pulls in support for the generic miibus API and all of the PHY drivers, including a generic one for PHYs that are not specifically handled by an individual driver.
device bce # Broadcom BCM5706/BCM5708 Gigabit Ethernet device bfe # Broadcom BCM440x 10/100 Ethernet device bge # Broadcom BCM570xx Gigabit Ethernet device dc # DEC/Intel 21143 and various workalikes device fxp # Intel EtherExpress PRO/100B (82557, 82558) device lge # Level 1 LXT1001 gigabit ethernet device msk # Marvell/SysKonnect Yukon II Gigabit Ethernet device nge # NatSemi DP83820 gigabit ethernet device nve # nVidia nForce MCP on-board Ethernet Networking device pcn # AMD Am79C97x PCI 10/100 (precedence over 'lnc') device re # RealTek 8139C+/8169/8169S/8110S device rl # RealTek 8129/8139 device sf # Adaptec AIC-6915 (“Starfire”) device sis # Silicon Integrated Systems SiS 900/SiS 7016 device sk # SysKonnect SK-984x & SK-982x gigabit Ethernet device ste # Sundance ST201 (D-Link DFE-550TX) device stge # Sundance/Tamarack TC9021 gigabit Ethernet device ti # Alteon Networks Tigon I/II gigabit Ethernet device tl # Texas Instruments ThunderLAN device tx # SMC EtherPower II (83c170 “EPIC”) device vge # VIA VT612x gigabit ethernet device vr # VIA Rhine, Rhine II device wb # Winbond W89C840F device xl # 3Com 3c90x (“Boomerang”, “Cyclone”)
Drivers that use the MII bus controller code.
# ISA Ethernet NICs. pccard NICs included. device cs # Crystal Semiconductor CS89x0 NIC # 'device ed' requires 'device miibus' device ed # NE[12]000, SMC Ultra, 3c503, DS8390 cards device ex # Intel EtherExpress Pro/10 and Pro/10+ device ep # Etherlink III based cards device fe # Fujitsu MB8696x based cards device ie # EtherExpress 8/16, 3C507, StarLAN 10 etc. device lnc # NE2100, NE32-VL Lance Ethernet cards device sn # SMC's 9000 series of Ethernet chips device xe # Xircom pccard Ethernet # ISA devices that use the old ISA shims #device le
ISA Ethernet drivers. See /usr/src/sys/i386/conf/NOTES for details of which cards are supported by which driver.
# Wireless NIC cards device wlan # 802.11 support
Generic 802.11 support. This line is required for wireless networking.
device wlan_wep # 802.11 WEP support device wlan_ccmp # 802.11 CCMP support device wlan_tkip # 802.11 TKIP support
Crypto support for 802.11 devices. These lines are needed if you intend to use encryption and 802.11i security protocols.
device an # Aironet 4500/4800 802.11 wireless NICs. device ath # Atheros pci/cardbus NIC's device ath_hal # Atheros HAL (Hardware Access Layer) device ath_rate_sample # SampleRate tx rate control for ath device awi # BayStack 660 and others device ral # Ralink Technology RT2500 wireless NICs. device wi # WaveLAN/Intersil/Symbol 802.11 wireless NICs. #device wl # Older non 802.11 Wavelan wireless NIC.
Support for various wireless cards.
# Pseudo devices device loop # Network loopback
This is the generic loopback device for TCP/IP. If you telnet or FTP to localhost (aka 127.0.0.1) it will come back at you through this device. This is mandatory.
device random # Entropy device
Cryptographically secure random number generator.
device ether # Ethernet support
ether is only needed if you have an Ethernet card. It includes generic Ethernet protocol code.
device sl # Kernel SLIP
sl is for SLIP support. This has been almost entirely supplanted by PPP, which is easier to set up, better suited for modem-to-modem connection, and more powerful.
device ppp # Kernel PPP
This is for kernel PPP support for dial-up connections. There is also a version of PPP implemented as a userland application that uses tun and offers more flexibility and features such as demand dialing.
device tun # Packet tunnel.
This is used by the userland PPP software. See the PPP section of this book for more information.
device pty # Pseudo-ttys (telnet etc)
This is a “pseudo-terminal” or simulated login port. It is used by incoming telnet and rlogin sessions, xterm, and some other applications such as Emacs.
device md # Memory “disks”
Memory disk pseudo-devices.
device gif # IPv6 and IPv4 tunneling
This implements IPv6 over IPv4 tunneling, IPv4 over IPv6 tunneling, IPv4 over IPv4 tunneling, and IPv6 over IPv6 tunneling. The gif device is “auto-cloning”, and will create device nodes as needed.
device faith # IPv6-to-IPv4 relaying (translation)
This pseudo-device captures packets that are sent to it and diverts them to the IPv4/IPv6 translation daemon.
# The `bpf' device enables the Berkeley Packet Filter. # Be aware of the administrative consequences of enabling this! # Note that 'bpf' is required for DHCP. device bpf # Berkeley packet filter
This is the Berkeley Packet Filter. This pseudo-device allows network interfaces to be placed in promiscuous mode, capturing every packet on a broadcast network (e.g., an Ethernet). These packets can be captured to disk and or examined with the tcpdump(1) program.
Note: The bpf(4) device is also used by dhclient(8) to obtain the IP address of the default router (gateway) and so on. If you use DHCP, leave this uncommented.
# USB support device uhci # UHCI PCI->USB interface device ohci # OHCI PCI->USB interface device ehci # EHCI PCI->USB interface (USB 2.0) device usb # USB Bus (required) #device udbp # USB Double Bulk Pipe devices device ugen # Generic device uhid # “Human Interface Devices” device ukbd # Keyboard device ulpt # Printer device umass # Disks/Mass storage - Requires scbus and da device ums # Mouse device ural # Ralink Technology RT2500USB wireless NICs device urio # Diamond Rio 500 MP3 player device uscanner # Scanners # USB Ethernet, requires mii device aue # ADMtek USB Ethernet device axe # ASIX Electronics USB Ethernet device cdce # Generic USB over Ethernet device cue # CATC USB Ethernet device kue # Kawasaki LSI USB Ethernet device rue # RealTek RTL8150 USB Ethernet
Support for various USB devices.
# FireWire support device firewire # FireWire bus code device sbp # SCSI over FireWire (Requires scbus and da) device fwe # Ethernet over FireWire (non-standard!)
Support for various Firewire devices.
For more information and additional devices supported by FreeBSD, see /usr/src/sys/i386/conf/NOTES.
Large memory configuration machines require access to more than the 4 gigabyte limit on User+Kernel Virtual Address (KVA) space. Due to this limitation, Intel added support for 36-bit physical address space access in the Pentium Pro and later line of CPUs.
The Physical Address Extension (PAE)
capability of the Intel Pentium Pro and later CPUs allows memory configurations of
up to 64 gigabytes. FreeBSD provides support for this capability via the
PAE
kernel configuration option, available in all
current release versions of FreeBSD. Due to the limitations of the Intel memory
architecture, no distinction is made for memory above or below 4 gigabytes. Memory
allocated above 4 gigabytes is simply added to the pool of available
memory.
To enable PAE support in the kernel, simply add the following line to your kernel configuration file:
options PAE
Note: The PAE support in FreeBSD is only available for Intel IA-32 processors. It should also be noted, that the PAE support in FreeBSD has not received wide testing, and should be considered beta quality compared to other stable features of FreeBSD.
PAE support in FreeBSD has a few limitations:
A process is not able to access more than 4 gigabytes of VM space.
Device drivers that do not use the bus_dma(9) interface will cause data corruption in a PAE enabled kernel and are not recommended for use. For this reason, a PAE kernel configuration file is provided in FreeBSD which excludes all drivers not known to work in a PAE enabled kernel.
Some system tunables determine memory resource usage by the amount of available
physical memory. Such tunables can unnecessarily over-allocate due to the
large memory nature of a PAE system.
One such example is the kern.maxvnodes
sysctl, which
controls the maximum number of vnodes allowed in the kernel. It is advised to
adjust this and other such tunables to a reasonable value.
It might be necessary to increase the kernel virtual address (KVA) space or to reduce the amount of specific
kernel resource that is heavily used (see above) in order to avoid KVA exhaustion. The KVA_PAGES
kernel option can be used for increasing the
KVA space.
For performance and stability concerns, it is advised to consult the tuning(7) manual page. The pae(4) manual page contains up-to-date information on FreeBSD's PAE support.
There are four categories of trouble that can occur when building a custom kernel. They are:
If the config(8) command fails when you give it your kernel description, you have probably made a simple error somewhere. Fortunately, config(8) will print the line number that it had trouble with, so that you can quickly locate the line containing the error. For example, if you see:
config: line 17: syntax error
Make sure the keyword is typed correctly by comparing it to the GENERIC kernel or another reference.
If the make command fails, it usually signals an error in your kernel description which is not severe enough for config(8) to catch. Again, look over your configuration, and if you still cannot resolve the problem, send mail to the FreeBSD general questions mailing list with your kernel configuration, and it should be diagnosed quickly.
If your new kernel does not boot, or fails to recognize your devices, do not panic! Fortunately, FreeBSD has an excellent mechanism for recovering from incompatible kernels. Simply choose the kernel you want to boot from at the FreeBSD boot loader. You can access this when the system boot menu appears. Select the “Escape to a loader prompt” option, number six. At the prompt, type boot kernel.old, or the name of any other kernel that will boot properly. When reconfiguring a kernel, it is always a good idea to keep a kernel that is known to work on hand.
After booting with a good kernel you can check over your configuration file and try to build it again. One helpful resource is the /var/log/messages file which records, among other things, all of the kernel messages from every successful boot. Also, the dmesg(8) command will print the kernel messages from the current boot.
Note: If you are having trouble building a kernel, make sure to keep a GENERIC, or some other kernel that is known to work on hand as a different name that will not get erased on the next build. You cannot rely on kernel.old because when installing a new kernel, kernel.old is overwritten with the last installed kernel which may be non-functional. Also, as soon as possible, move the working kernel to the proper /boot/kernel location or commands such as ps(1) may not work properly. To do this, simply rename the directory containing the good kernel:
# mv /boot/kernel /boot/kernel.bad # mv /boot/kernel.good /boot/kernel
If you have installed a different version of the kernel from the one that the system utilities have been built with, for example, a -CURRENT kernel on a -RELEASE, many system-status commands like ps(1) and vmstat(8) will not work any more. You should recompile and install a world built with the same version of the source tree as your kernel. This is one reason it is not normally a good idea to use a different version of the kernel from the rest of the operating system.
FreeBSD can be used to print with a wide variety of printers, from the oldest impact printer to the latest laser printers, and everything in between, allowing you to produce high-quality printed output from the applications you run.
FreeBSD can also be configured to act as a print server on a network; in this capacity FreeBSD can receive print jobs from a variety of other computers, including other FreeBSD computers, Windows and Mac OS hosts. FreeBSD will ensure that one job at a time is printed, and can keep statistics on which users and machines are doing the most printing, produce “banner” pages showing whose printout is whose, and more.
After reading this chapter, you will know:
How to configure the FreeBSD print spooler.
How to install print filters, to handle special print jobs differently, including converting incoming documents to print formats that your printers understand.
How to enable header, or banner pages on your printout.
How to print with printers connected to other computers.
How to print with printers connected directly to the network.
How to control printer restrictions, including limiting the size of print jobs, and preventing certain users from printing.
How to keep printer statistics, and account for printer usage.
How to troubleshoot printing problems.
Before reading this chapter, you should:
Know how to configure and install a new kernel (Chapter 9).
In order to use printers with FreeBSD you may set them up to work with the Berkeley line printer spooling system, also known as the LPD spooling system, or just LPD. It is the standard printer control system in FreeBSD. This chapter introduces LPD and will guide you through its configuration.
If you are already familiar with LPD or another printer spooling system, you may wish to skip to section Basic Setup.
LPD controls everything about a host's printers. It is responsible for a number of things:
It controls access to attached printers and printers attached to other hosts on the network.
It enables users to submit files to be printed; these submissions are known as jobs.
It prevents multiple users from accessing a printer at the same time by maintaining a queue for each printer.
It can print header pages (also known as banner or burst pages) so users can easily find jobs they have printed in a stack of printouts.
It takes care of communications parameters for printers connected on serial ports.
It can send jobs over the network to a LPD spooler on another host.
It can run special filters to format jobs to be printed for various printer languages or printer capabilities.
It can account for printer usage.
Through a configuration file (/etc/printcap), and by providing the special filter programs, you can enable the LPD system to do all or some subset of the above for a great variety of printer hardware.
If you are the sole user of your system, you may be wondering why you should bother with the spooler when you do not need access control, header pages, or printer accounting. While it is possible to enable direct access to a printer, you should use the spooler anyway since:
LPD prints jobs in the background; you do not have to wait for data to be copied to the printer.
LPD can conveniently run a job to be printed through filters to add date/time headers or convert a special file format (such as a TeX DVI file) into a format the printer will understand. You will not have to do these steps manually.
Many free and commercial programs that provide a print feature usually expect to talk to the spooler on your system. By setting up the spooling system, you will more easily support other software you may later add or already have.
Warning: As of FreeBSD 8.0, device nodes for serial ports have been renamed from /dev/ttydN to /dev/ttyuN. FreeBSD 7.X users will have to adapt the following documentation according to these changes.
To use printers with the LPD spooling system, you will need to set up both your printer hardware and the LPD software. This document describes two levels of setup:
See section Simple Printer Setup to learn how to connect a printer, tell LPD how to communicate with it, and print plain text files to the printer.
See section Advanced Printer Setup to learn how to print a variety of special file formats, to print header pages, to print across a network, to control access to printers, and to do printer accounting.
This section tells how to configure printer hardware and the LPD software to use the printer. It teaches the basics:
Section Hardware Setup gives some hints on connecting the printer to a port on your computer.
Section Software Setup shows how to set up the LPD spooler configuration file (/etc/printcap).
If you are setting up a printer that uses a network protocol to accept data to print instead of a computer's local interfaces, see Printers With Networked Data Stream Interfaces.
Although this section is called “Simple Printer Setup”, it is actually fairly complex. Getting the printer to work with your computer and the LPD spooler is the hardest part. The advanced options like header pages and accounting are fairly easy once you get the printer working.
This section tells about the various ways you can connect a printer to your PC. It talks about the kinds of ports and cables, and also the kernel configuration you may need to enable FreeBSD to speak to the printer.
If you have already connected your printer and have successfully printed with it under another operating system, you can probably skip to section Software Setup.
Printers sold for use on PC's today generally come with one or more of the following three interfaces:
Serial interfaces, also known as RS-232 or COM ports, use a serial port on your computer to send data to the printer. Serial interfaces are common in the computer industry and cables are readily available and also easy to construct. Serial interfaces sometimes need special cables and might require you to configure somewhat complex communications options. Most PC serial ports have a maximum transmission rate of 115200 bps, which makes printing large graphic print jobs with them impractical.
Parallel interfaces use a parallel port on your computer to send data to the printer. Parallel interfaces are common in the PC market and are faster than RS-232 serial. Cables are readily available but more difficult to construct by hand. There are usually no communications options with parallel interfaces, making their configuration exceedingly simple.
Parallel interfaces are sometimes known as “Centronics” interfaces, named after the connector type on the printer.
USB interfaces, named for the Universal Serial Bus, can run at even faster speeds than parallel or RS-232 serial interfaces. Cables are simple and cheap. USB is superior to RS-232 Serial and to Parallel for printing, but it is not as well supported under UNIX systems. A way to avoid this problem is to purchase a printer that has both a USB interface and a Parallel interface, as many printers do.
In general, Parallel interfaces usually offer just one-way communication (computer to printer) while serial and USB gives you two-way. Newer parallel ports (EPP and ECP) and printers can communicate in both directions under FreeBSD when a IEEE-1284-compliant cable is used.
Two-way communication to the printer over a parallel port is generally done in one of two ways. The first method uses a custom-built printer driver for FreeBSD that speaks the proprietary language used by the printer. This is common with inkjet printers and can be used for reporting ink levels and other status information. The second method is used when the printer supports PostScript.
PostScript jobs are actually programs sent to the printer; they need not produce paper at all and may return results directly to the computer. PostScript also uses two-way communication to tell the computer about problems, such as errors in the PostScript program or paper jams. Your users may be appreciative of such information. Furthermore, the best way to do effective accounting with a PostScript printer requires two-way communication: you ask the printer for its page count (how many pages it has printed in its lifetime), then send the user's job, then ask again for its page count. Subtract the two values and you know how much paper to charge to the user.
To hook up a printer using a parallel interface, connect the Centronics cable between the printer and the computer. The instructions that came with the printer, the computer, or both should give you complete guidance.
Remember which parallel port you used on the computer. The first parallel port is ppc0 to FreeBSD; the second is ppc1, and so on. The printer device name uses the same scheme: /dev/lpt0 for the printer on the first parallel ports etc.
To hook up a printer using a serial interface, connect the proper serial cable between the printer and the computer. The instructions that came with the printer, the computer, or both should give you complete guidance.
If you are unsure what the “proper serial cable” is, you may wish to try one of the following alternatives:
A modem cable connects each pin of the connector on one end of the cable straight through to its corresponding pin of the connector on the other end. This type of cable is also known as a “DTE-to-DCE” cable.
A null-modem cable connects some pins straight through, swaps others (send data to receive data, for example), and shorts some internally in each connector hood. This type of cable is also known as a “DTE-to-DTE” cable.
A serial printer cable, required for some unusual printers, is like the null-modem cable, but sends some signals to their counterparts instead of being internally shorted.
You should also set up the communications parameters for the printer, usually through front-panel controls or DIP switches on the printer. Choose the highest bps (bits per second, sometimes baud rate) that both your computer and the printer can support. Choose 7 or 8 data bits; none, even, or odd parity; and 1 or 2 stop bits. Also choose a flow control protocol: either none, or XON/XOFF (also known as “in-band” or “software”) flow control. Remember these settings for the software configuration that follows.
This section describes the software setup necessary to print with the LPD spooling system in FreeBSD.
Here is an outline of the steps involved:
Configure your kernel, if necessary, for the port you are using for the printer; section Kernel Configuration tells you what you need to do.
Set the communications mode for the parallel port, if you are using a parallel port; section Setting the Communication Mode for the Parallel Port gives details.
Test if the operating system can send data to the printer. Section Checking Printer Communications gives some suggestions on how to do this.
Set up LPD for the printer by modifying the file /etc/printcap. You will find out how to do this later in this chapter.
The operating system kernel is compiled to work with a specific set of devices. The serial or parallel interface for your printer is a part of that set. Therefore, it might be necessary to add support for an additional serial or parallel port if your kernel is not already configured for one.
To find out if the kernel you are currently using supports a serial interface, type:
# grep sioN /var/run/dmesg.boot
Where N is the number of the serial port, starting from zero. If you see output similar to the following:
sio2 at port 0x3e8-0x3ef irq 5 on isa sio2: type 16550A
then the kernel supports the port.
To find out if the kernel supports a parallel interface, type:
# grep ppcN /var/run/dmesg.boot
Where N is the number of the parallel port, starting from zero. If you see output similar to the following:
ppc0: <Parallel port> at port 0x378-0x37f irq 7 on isa0 ppc0: SMC-like chipset (ECP/EPP/PS2/NIBBLE) in COMPATIBLE mode ppc0: FIFO with 16/16/8 bytes threshold
then the kernel supports the port.
You might have to reconfigure your kernel in order for the operating system to recognize and use the parallel or serial port you are using for the printer.
To add support for a serial port, see the section on kernel configuration. To add support for a parallel port, see that section and the section that follows.
When you are using the parallel interface, you can choose whether FreeBSD should use interrupt-driven or polled communication with the printer. The generic printer device driver (lpt(4)) on FreeBSD uses the ppbus(4) system, which controls the port chipset with the ppc(4) driver.
The interrupt-driven method is the default with the GENERIC kernel. With this method, the operating system uses an IRQ line to determine when the printer is ready for data.
The polled method directs the operating system to repeatedly ask the printer if it is ready for more data. When it responds ready, the kernel sends more data.
The interrupt-driven method is usually somewhat faster but uses up a precious IRQ line. Some newer HP printers are claimed not to work correctly in interrupt mode, apparently due to some (not yet exactly understood) timing problem. These printers need polled mode. You should use whichever one works. Some printers will work in both modes, but are painfully slow in interrupt mode.
You can set the communications mode in two ways: by configuring the kernel or by using the lptcontrol(8) program.
To set the communications mode by configuring the kernel:
Edit your kernel configuration file. Look for an ppc0 entry. If you are setting up the second parallel port, use ppc1 instead. Use ppc2 for the third port, and so on.
If you want interrupt-driven mode, edit the following line:
hint.ppc.0.irq="N"
in the /boot/device.hints file and replace N with the right IRQ number. The kernel configuration file must also contain the ppc(4) driver:
device ppc
If you want polled mode, remove in your /boot/device.hints file, the following line:
hint.ppc.0.irq="N"
In some cases, this is not enough to put the port in polled mode under FreeBSD. Most of time it comes from acpi(4) driver, this latter is able to probe and attach devices, and therefore, control the access mode to the printer port. You should check your acpi(4) configuration to correct this problem.
Save the file. Then configure, build, and install the kernel, then reboot. See kernel configuration for more details.
To set the communications mode with lptcontrol(8):
Type:
# lptcontrol-i
-d
/dev/lptN
to set interrupt-driven mode for lptN.
Type:
# lptcontrol-p
-d
/dev/lptN
to set polled-mode for lptN.
You could put these commands in your /etc/rc.local file to set the mode each time your system boots. See lptcontrol(8) for more information.
Before proceeding to configure the spooling system, you should make sure the operating system can successfully send data to your printer. It is a lot easier to debug printer communication and the spooling system separately.
To test the printer, we will send some text to it. For printers that can immediately print characters sent to them, the program lptest(1) is perfect: it generates all 96 printable ASCII characters in 96 lines.
For a PostScript (or other language-based) printer, we will need a more sophisticated test. A small PostScript program, such as the following, will suffice:
%!PS 100 100 moveto 300 300 lineto stroke 310 310 moveto /Helvetica findfont 12 scalefont setfont (Is this thing working?) show showpage
The above PostScript code can be placed into a file and used as shown in the examples appearing in the following sections.
Note: When this document refers to a printer language, it is assuming a language like PostScript, and not Hewlett Packard's PCL. Although PCL has great functionality, you can intermingle plain text with its escape sequences. PostScript cannot directly print plain text, and that is the kind of printer language for which we must make special accommodations.
This section tells you how to check if FreeBSD can communicate with a printer connected to a parallel port.
To test a printer on a parallel port:
Become root with su(1).
Send data to the printer.
If the printer can print plain text, then use lptest(1). Type:
# lptest > /dev/lptN
Where N is the number of the parallel port, starting from zero.
If the printer understands PostScript or other printer language, then send a small program to the printer. Type:
# cat > /dev/lptN
Then, line by line, type the program carefully as you cannot edit a line once you have pressed RETURN or ENTER. When you have finished entering the program, press CONTROL+D, or whatever your end of file key is.
Alternatively, you can put the program in a file and type:
# cat file > /dev/lptN
Where file is the name of the file containing the program you want to send to the printer.
You should see something print. Do not worry if the text does not look right; we will fix such things later.
This section tells you how to check if FreeBSD can communicate with a printer on a serial port.
To test a printer on a serial port:
Become root with su(1).
Edit the file /etc/remote. Add the following entry:
printer:dv=/dev/port:br#bps-rate:pa=parity
Where port is the device entry for the serial port (ttyu0, ttyu1, etc.), bps-rate is the bits-per-second rate at which the printer communicates, and parity is the parity required by the printer (either even, odd, none, or zero).
Here is a sample entry for a printer connected via a serial line to the third serial port at 19200 bps with no parity:
printer:dv=/dev/ttyu2:br#19200:pa=none
Connect to the printer with tip(1). Type:
# tip printer
If this step does not work, edit the file /etc/remote again and try using /dev/cuaaN instead of /dev/ttyuN.
Send data to the printer.
If the printer can print plain text, then use lptest(1). Type:
% $lptest
If the printer understands PostScript or other printer language, then send a small program to the printer. Type the program, line by line, very carefully as backspacing or other editing keys may be significant to the printer. You may also need to type a special end-of-file key for the printer so it knows it received the whole program. For PostScript printers, press CONTROL+D.
Alternatively, you can put the program in a file and type:
% >file
Where file is the name of the file containing the program. After tip(1) sends the file, press any required end-of-file key.
You should see something print. Do not worry if the text does not look right; we will fix that later.
At this point, your printer should be hooked up, your kernel configured to communicate with it (if necessary), and you have been able to send some simple data to the printer. Now, we are ready to configure LPD to control access to your printer.
You configure LPD by editing the file /etc/printcap. The LPD spooling system reads this file each time the spooler is used, so updates to the file take immediate effect.
The format of the printcap(5) file is straightforward. Use your favorite text editor to make changes to /etc/printcap. The format is identical to other capability files like /usr/share/misc/termcap and /etc/remote. For complete information about the format, see the cgetent(3).
The simple spooler configuration consists of the following steps:
Pick a name (and a few convenient aliases) for the printer, and put them in the /etc/printcap file; see the Naming the Printer section for more information on naming.
Turn off header pages (which are on by default) by inserting the sh capability; see the Suppressing Header Pages section for more information.
Make a spooling directory, and specify its location with the sd capability; see the Making the Spooling Directory section for more information.
Set the /dev entry to use for the printer, and note it in /etc/printcap with the lp capability; see the Identifying the Printer Device for more information. Also, if the printer is on a serial port, set up the communication parameters with the ms# capability which is discussed in the Configuring Spooler Communications Parameters section.
Install a plain text input filter; see the Installing the Text Filter section for details.
Test the setup by printing something with the lpr(1) command. More details are available in the Trying It Out and Troubleshooting sections.
Note: Language-based printers, such as PostScript printers, cannot directly print plain text. The simple setup outlined above and described in the following sections assumes that if you are installing such a printer you will print only files that the printer can understand.
Users often expect that they can print plain text to any of the printers installed on your system. Programs that interface to LPD to do their printing usually make the same assumption. If you are installing such a printer and want to be able to print jobs in the printer language and print plain text jobs, you are strongly urged to add an additional step to the simple setup outlined above: install an automatic plain-text-to-PostScript (or other printer language) conversion program. The section entitled Accommodating Plain Text Jobs on PostScript Printers tells how to do this.
The first (easy) step is to pick a name for your printer. It really does not matter whether you choose functional or whimsical names since you can also provide a number of aliases for the printer.
At least one of the printers specified in the /etc/printcap should have the alias lp. This is the default printer's name. If users do not have the PRINTER environment variable nor specify a printer name on the command line of any of the LPD commands, then lp will be the default printer they get to use.
Also, it is common practice to make the last alias for a printer be a full description of the printer, including make and model.
Once you have picked a name and some common aliases, put them in the /etc/printcap file. The name of the printer should start in the leftmost column. Separate each alias with a vertical bar and put a colon after the last alias.
In the following example, we start with a skeletal /etc/printcap that defines two printers (a Diablo 630 line printer and a Panasonic KX-P4455 PostScript laser printer):
# # /etc/printcap for host rose # rattan|line|diablo|lp|Diablo 630 Line Printer: bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:
In this example, the first printer is named rattan and has as aliases line, diablo, lp, and Diablo 630 Line Printer. Since it has the alias lp, it is also the default printer. The second is named bamboo, and has as aliases ps, PS, S, panasonic, and Panasonic KX-P4455 PostScript v51.4.
The LPD spooling system will by default print a header page for each job. The header page contains the user name who requested the job, the host from which the job came, and the name of the job, in nice large letters. Unfortunately, all this extra text gets in the way of debugging the simple printer setup, so we will suppress header pages.
To suppress header pages, add the sh capability to the entry for the printer in /etc/printcap. Here is an example /etc/printcap with sh added:
# # /etc/printcap for host rose - no header pages anywhere # rattan|line|diablo|lp|Diablo 630 Line Printer:\ :sh: bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:
Note how we used the correct format: the first line starts in the leftmost column, and subsequent lines are indented. Every line in an entry except the last ends in a backslash character.
The next step in the simple spooler setup is to make a spooling directory, a directory where print jobs reside until they are printed, and where a number of other spooler support files live.
Because of the variable nature of spooling directories, it is customary to put these directories under /var/spool. It is not necessary to backup the contents of spooling directories, either. Recreating them is as simple as running mkdir(1).
It is also customary to make the directory with a name that is identical to the name of the printer, as shown below:
# mkdir /var/spool/printer-name
However, if you have a lot of printers on your network, you might want to put the spooling directories under a single directory that you reserve just for printing with LPD. We will do this for our two example printers rattan and bamboo:
# mkdir /var/spool/lpd # mkdir /var/spool/lpd/rattan # mkdir /var/spool/lpd/bamboo
Note: If you are concerned about the privacy of jobs that users print, you might want to protect the spooling directory so it is not publicly accessible. Spooling directories should be owned and be readable, writable, and searchable by user daemon and group daemon, and no one else. We will do this for our example printers:
# chown daemon:daemon /var/spool/lpd/rattan # chown daemon:daemon /var/spool/lpd/bamboo # chmod 770 /var/spool/lpd/rattan # chmod 770 /var/spool/lpd/bamboo
Finally, you need to tell LPD about these directories using the /etc/printcap file. You specify the pathname of the spooling directory with the sd capability:
# # /etc/printcap for host rose - added spooling directories # rattan|line|diablo|lp|Diablo 630 Line Printer:\ :sh:sd=/var/spool/lpd/rattan: bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:sd=/var/spool/lpd/bamboo:
Note that the name of the printer starts in the first column but all other entries describing the printer should be indented and each line end escaped with a backslash.
If you do not specify a spooling directory with sd, the spooling system will use /var/spool/lpd as a default.
In the Hardware Setup section, we identified the port and the relevant /dev directory entry that FreeBSD will use to communicate with the printer. Now, we tell LPD that information. When the spooling system has a job to print, it will open the specified device on behalf of the filter program (which is responsible for passing data to the printer).
List the /dev entry pathname in the /etc/printcap file using the lp capability.
In our running example, let us assume that rattan is on the first parallel port, and bamboo is on a sixth serial port; here are the additions to /etc/printcap:
# # /etc/printcap for host rose - identified what devices to use # rattan|line|diablo|lp|Diablo 630 Line Printer:\ :sh:sd=/var/spool/lpd/rattan:\ :lp=/dev/lpt0: bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:sd=/var/spool/lpd/bamboo:\ :lp=/dev/ttyu5:
If you do not specify the lp capability for a printer in your /etc/printcap file, LPD uses /dev/lp as a default. /dev/lp currently does not exist in FreeBSD.
If the printer you are installing is connected to a parallel port, skip to the section entitled, Installing the Text Filter. Otherwise, be sure to follow the instructions in the next section.
For printers on serial ports, LPD can set up the bps rate, parity, and other serial communication parameters on behalf of the filter program that sends data to the printer. This is advantageous since:
It lets you try different communication parameters by simply editing the /etc/printcap file; you do not have to recompile the filter program.
It enables the spooling system to use the same filter program for multiple printers which may have different serial communication settings.
The following /etc/printcap capabilities control serial communication parameters of the device listed in the lp capability:
Sets the communications speed of the device to bps-rate, where bps-rate can be 50, 75, 110, 134, 150, 200, 300, 600, 1200, 1800, 2400, 4800, 9600, 19200, 38400, 57600, or 115200 bits-per-second.
Sets the options for the terminal device after opening the device. stty(1) explains the available options.
When LPD opens the device specified by the lp capability, it sets the characteristics of the device to those specified with the ms# capability. Of particular interest will be the parenb, parodd, cs5, cs6, cs7, cs8, cstopb, crtscts, and ixon modes, which are explained in the stty(1) manual page.
Let us add to our example printer on the sixth serial port. We will set the bps rate to 38400. For the mode, we will set no parity with -parenb, 8-bit characters with cs8, no modem control with clocal and hardware flow control with crtscts:
bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:sd=/var/spool/lpd/bamboo:\ :lp=/dev/ttyu5:ms#-parenb cs8 clocal crtscts:
We are now ready to tell LPD what text filter to use to send jobs to the printer. A text filter, also known as an input filter, is a program that LPD runs when it has a job to print. When LPD runs the text filter for a printer, it sets the filter's standard input to the job to print, and its standard output to the printer device specified with the lp capability. The filter is expected to read the job from standard input, perform any necessary translation for the printer, and write the results to standard output, which will get printed. For more information on the text filter, see the Filters section.
For our simple printer setup, the text filter can be a small shell script that just executes /bin/cat to send the job to the printer. FreeBSD comes with another filter called lpf that handles backspacing and underlining for printers that might not deal with such character streams well. And, of course, you can use any other filter program you want. The filter lpf is described in detail in section entitled lpf: a Text Filter.
First, let us make the shell script /usr/local/libexec/if-simple be a simple text filter. Put the following text into that file with your favorite text editor:
#!/bin/sh # # if-simple - Simple text input filter for lpd # Installed in /usr/local/libexec/if-simple # # Simply copies stdin to stdout. Ignores all filter arguments. /bin/cat && exit 0 exit 2
Make the file executable:
# chmod 555 /usr/local/libexec/if-simple
And then tell LPD to use it by specifying it with the if capability in /etc/printcap. We will add it to the two printers we have so far in the example /etc/printcap:
# # /etc/printcap for host rose - added text filter # rattan|line|diablo|lp|Diablo 630 Line Printer:\ :sh:sd=/var/spool/lpd/rattan:\ :lp=/dev/lpt0:\ :if=/usr/local/libexec/if-simple: bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:sd=/var/spool/lpd/bamboo:\ :lp=/dev/ttyu5:ms#-parenb cs8 clocal crtscts:\ :if=/usr/local/libexec/if-simple:
Note: A copy of the if-simple script can be found in the /usr/share/examples/printing directory.
lpd(8) is run from /etc/rc, controlled by the lpd_enable variable. This variable defaults to NO. If you have not done so already, add the line:
lpd_enable="YES"
to /etc/rc.conf, and then either restart your machine, or just run lpd(8).
# lpd
You have reached the end of the simple LPD setup. Unfortunately, congratulations are not quite yet in order, since we still have to test the setup and correct any problems. To test the setup, try printing something. To print with the LPD system, you use the command lpr(1), which submits a job for printing.
You can combine lpr(1) with the lptest(1) program, introduced in section Checking Printer Communications to generate some test text.
To test the simple LPD setup:
Type:
# lptest 20 5 | lpr -P
printer-name
Where printer-name is a the name of a
printer (or an alias) specified in /etc/printcap. To test
the default printer, type lpr(1) without any
-P
argument. Again, if you are testing a printer that
expects PostScript, send a PostScript program in that language instead of using lptest(1). You can do
so by putting the program in a file and typing lpr file.
For a PostScript printer, you should get the results of the program. If you are using lptest(1), then your results should look like the following:
!"#$%&'()*+,-./01234 "#$%&'()*+,-./012345 #$%&'()*+,-./0123456 $%&'()*+,-./01234567 %&'()*+,-./012345678
To further test the printer, try downloading larger programs (for language-based printers) or running lptest(1) with different arguments. For example, lptest 80 60 will produce 60 lines of 80 characters each.
If the printer did not work, see the Troubleshooting section.
Warning: As of FreeBSD 8.0, device nodes for serial ports have been renamed from /dev/ttydN to /dev/ttyuN. FreeBSD 7.X users will have to adapt the following documentation according to these changes.
This section describes filters for printing specially formatted files, header pages, printing across networks, and restricting and accounting for printer usage.
Although LPD handles network protocols, queuing, access control, and other aspects of printing, most of the real work happens in the filters. Filters are programs that communicate with the printer and handle its device dependencies and special requirements. In the simple printer setup, we installed a plain text filter—an extremely simple one that should work with most printers (section Installing the Text Filter).
However, in order to take advantage of format conversion, printer accounting, specific printer quirks, and so on, you should understand how filters work. It will ultimately be the filter's responsibility to handle these aspects. And the bad news is that most of the time you have to provide filters yourself. The good news is that many are generally available; when they are not, they are usually easy to write.
Also, FreeBSD comes with one, /usr/libexec/lpr/lpf, that works with many printers that can print plain text. (It handles backspacing and tabs in the file, and does accounting, but that is about all it does.) There are also several filters and filter components in the FreeBSD Ports Collection.
Here is what you will find in this section:
Section How Filters Work, tries to give an overview of a filter's role in the printing process. You should read this section to get an understanding of what is happening “under the hood” when LPD uses filters. This knowledge could help you anticipate and debug problems you might encounter as you install more and more filters for each of your printers.
LPD expects every printer to be able to print plain text by default. This presents a problem for PostScript printers (or other language-based printers) which cannot directly print plain text. Section Accommodating Plain Text Jobs on PostScript Printers tells you what you should do to overcome this problem. You should read this section if you have a PostScript printer.
PostScript is a popular output format for many programs. Some people even write PostScript code directly. Unfortunately, PostScript printers are expensive. Section Simulating PostScript on Non PostScript Printers tells how you can further modify a printer's text filter to accept and print PostScript data on a non PostScript printer. You should read this section if you do not have a PostScript printer.
Section Conversion Filters tells
about a way you can automate the conversion of specific file formats, such as
graphic or typesetting data, into formats your printer can understand. After
reading this section, you should be able to set up your printers such that
users can type lpr -t
to print
troff data, or lpr -d
to print
TeX DVI data, or lpr -v
to print raster image data, and so forth. The reading
of this section is recommended.
Section Output Filters tells all about a not often used feature of LPD: output filters. Unless you are printing header pages (see Header Pages), you can probably skip that section altogether.
Section lpf: a Text Filter describes lpf, a fairly complete if simple text filter for line printers (and laser printers that act like line printers) that comes with FreeBSD. If you need a quick way to get printer accounting working for plain text, or if you have a printer which emits smoke when it sees backspace characters, you should definitely consider lpf.
Note: A copy of the various scripts described below can be found in the /usr/share/examples/printing directory.
As mentioned before, a filter is an executable program started by LPD to handle the device-dependent part of communicating with the printer.
When LPD wants to print a file in a job, it starts a filter program. It sets the filter's standard input to the file to print, its standard output to the printer, and its standard error to the error logging file (specified in the lf capability in /etc/printcap, or /dev/console by default).
Which filter LPD starts and the filter's arguments
depend on what is listed in the /etc/printcap file and
what arguments the user specified for the job on the lpr(1) command line.
For example, if the user typed lpr -t
, LPD would start the troff
filter, listed in the tf capability for the destination
printer. If the user wanted to print plain text, it would start the if filter (this is mostly true: see Output Filters for details).
There are three kinds of filters you can specify in /etc/printcap:
The text filter, confusingly called the input filter in LPD documentation, handles regular text printing. Think of it as the default filter. LPD expects every printer to be able to print plain text by default, and it is the text filter's job to make sure backspaces, tabs, or other special characters do not confuse the printer. If you are in an environment where you have to account for printer usage, the text filter must also account for pages printed, usually by counting the number of lines printed and comparing that to the number of lines per page the printer supports. The text filter is started with the following argument list:
filter-name [-c] -w width -l length -i indent -n login -h host acct-file
where
-c
appears if the job is submitted with lpr -l
is the value from the pw (page width) capability specified in /etc/printcap, default 132
is the value from the pl (page length) capability, default 66
is the amount of the indentation from lpr -i
, default 0
is the account name of the user printing the file
is the host name from which the job was submitted
is the name of the accounting file from the af capability.
A conversion filter converts a specific file format into one the printer can render onto paper. For example, ditroff typesetting data cannot be directly printed, but you can install a conversion filter for ditroff files to convert the ditroff data into a form the printer can digest and print. Section Conversion Filters tells all about them. Conversion filters also need to do accounting, if you need printer accounting. Conversion filters are started with the following arguments:
filter-name -x pixel-width -y pixel-height -n login -h host acct-file
where pixel-width is the value from the px capability (default 0) and pixel-height is the value from the py capability (default 0).
The output filter is used only if there is no text filter, or if header pages are enabled. In our experience, output filters are rarely used. Section Output Filters describes them. There are only two arguments to an output filter:
filter-name -w width -l length
which are identical to the text filters -w
and -l
arguments.
Filters should also exit with the following exit status:
If the filter printed the file successfully.
If the filter failed to print the file but wants LPD to try to print the file again. LPD will restart a filter if it exits with this status.
If the filter failed to print the file and does not want LPD to try again. LPD will throw out the file.
The text filter that comes with the FreeBSD release, /usr/libexec/lpr/lpf, takes advantage of the page width and length arguments to determine when to send a form feed and how to account for printer usage. It uses the login, host, and accounting file arguments to make the accounting entries.
If you are shopping for filters, see if they are LPD-compatible. If they are, they must support the argument lists described above. If you plan on writing filters for general use, then have them support the same argument lists and exit codes.
If you are the only user of your computer and PostScript (or other language-based) printer, and you promise to never send plain text to your printer and to never use features of various programs that will want to send plain text to your printer, then you do not need to worry about this section at all.
But, if you would like to send both PostScript and plain text jobs to the printer, then you are urged to augment your printer setup. To do so, we have the text filter detect if the arriving job is plain text or PostScript. All PostScript jobs must start with %! (for other printer languages, see your printer documentation). If those are the first two characters in the job, we have PostScript, and can pass the rest of the job directly. If those are not the first two characters in the file, then the filter will convert the text into PostScript and print the result.
How do we do this?
If you have got a serial printer, a great way to do it is to install lprps. lprps is a PostScript printer filter which performs two-way communication with the printer. It updates the printer's status file with verbose information from the printer, so users and administrators can see exactly what the state of the printer is (such as “toner low” or “paper jam”). But more importantly, it includes a program called psif which detects whether the incoming job is plain text and calls textps (another program that comes with lprps) to convert it to PostScript. It then uses lprps to send the job to the printer.
lprps is part of the FreeBSD Ports Collection (see The Ports Collection). You can install one of the both print/lprps-a4 and print/lprps-letter ports according to the paper size used. After installing lprps, just specify the pathname to the psif program that is part of lprps. If you installed lprps from the Ports Collection, use the following in the serial PostScript printer's entry in /etc/printcap:
:if=/usr/local/libexec/psif:
The rw capability should be also included in order to let LPD to open the printer in the read-write mode.
If you have a parallel PostScript printer (and therefore cannot use two-way communication with the printer, which lprps needs), you can use the following shell script as the text filter:
#!/bin/sh # # psif - Print PostScript or plain text on a PostScript printer # Script version; NOT the version that comes with lprps # Installed in /usr/local/libexec/psif # IFS="" read -r first_line first_two_chars=`expr "$first_line" : '\(..\)'` if [ "$first_two_chars" = "%!" ]; then # # PostScript job, print it. # echo "$first_line" && cat && printf "\004" && exit 0 exit 2 else # # Plain text, convert it, then print it. # ( echo "$first_line"; cat ) | /usr/local/bin/textps && printf "\004" && exit 0 exit 2 fi
In the above script, textps is a program we installed separately to convert plain text to PostScript. You can use any text-to-PostScript program you wish. The FreeBSD Ports Collection (see The Ports Collection) includes a full featured text-to-PostScript program called a2ps that you might want to investigate.
PostScript is the de facto standard for high quality typesetting and printing. PostScript is, however, an expensive standard. Thankfully, Aladdin Enterprises has a free PostScript work-alike called Ghostscript that runs with FreeBSD. Ghostscript can read most PostScript files and can render their pages onto a variety of devices, including many brands of non-PostScript printers. By installing Ghostscript and using a special text filter for your printer, you can make your non PostScript printer act like a real PostScript printer.
Ghostscript is in the FreeBSD Ports Collection, many versions are available, the most commonly used version is print/ghostscript-gpl.
To simulate PostScript, we have the text filter detect if it is printing a PostScript file. If it is not, then the filter will pass the file directly to the printer; otherwise, it will use Ghostscript to first convert the file into a format the printer will understand.
Here is an example: the following script is a text filter for Hewlett Packard
DeskJet 500 printers. For other printers, substitute the -sDEVICE
argument to the gs (Ghostscript) command. (Type gs -h
to get a list of devices the current installation of
Ghostscript supports.)
#!/bin/sh # # ifhp - Print Ghostscript-simulated PostScript on a DeskJet 500 # Installed in /usr/local/libexec/ifhp # # Treat LF as CR+LF (to avoid the "staircase effect" on HP/PCL # printers): # printf "\033&k2G" || exit 2 # # Read first two characters of the file # IFS="" read -r first_line first_two_chars=`expr "$first_line" : '\(..\)'` if [ "$first_two_chars" = "%!" ]; then # # It is PostScript; use Ghostscript to scan-convert and print it. # /usr/local/bin/gs -dSAFER -dNOPAUSE -q -sDEVICE=djet500 \ -sOutputFile=- - && exit 0 else # # Plain text or HP/PCL, so just print it directly; print a form feed # at the end to eject the last page. # echo "$first_line" && cat && printf "\033&l0H" && exit 0 fi exit 2
Finally, you need to notify LPD of the filter via the if capability:
:if=/usr/local/libexec/ifhp:
That is it. You can type lpr plain.text and lpr whatever.ps and both should print successfully.
After completing the simple setup described in Simple Printer Setup, the first thing you will probably want to do is install conversion filters for your favorite file formats (besides plain ASCII text).
Conversion filters make printing various kinds of files easy. As an example, suppose we do a lot of work with the TeX typesetting system, and we have a PostScript printer. Every time we generate a DVI file from TeX, we cannot print it directly until we convert the DVI file into PostScript. The command sequence goes like this:
% dvips seaweed-analysis.dvi % lpr seaweed-analysis.ps
By installing a conversion filter for DVI files, we can skip the hand conversion step each time by having LPD do it for us. Now, each time we get a DVI file, we are just one step away from printing it:
% lpr -d
seaweed-analysis.dvi
We got LPD to do the DVI file conversion for us by
specifying the -d
option. Section Formatting and Conversion Options lists the
conversion options.
For each of the conversion options you want a printer to support, install a conversion filter and specify its pathname in /etc/printcap. A conversion filter is like the text filter for the simple printer setup (see section Installing the Text Filter) except that instead of printing plain text, the filter converts the file into a format the printer can understand.
You should install the conversion filters you expect to use. If you print a lot of DVI data, then a DVI conversion filter is in order. If you have got plenty of troff to print out, then you probably want a troff filter.
The following table summarizes the filters that LPD works with, their capability entries for the /etc/printcap file, and how to invoke them with the lpr command:
File type | /etc/printcap capability | lpr option |
---|---|---|
cifplot | cf | -c |
DVI | df | -d |
plot | gf | -g |
ditroff | nf | -n |
FORTRAN text | rf | -f |
troff | tf | -f |
raster | vf | -v |
plain text | if | none, -p , or -l |
In our example, using lpr -d
means the printer needs a df
capability in its entry in /etc/printcap.
Despite what others might contend, formats like FORTRAN text and plot are
probably obsolete. At your site, you can give new meanings to these or any of the
formatting options just by installing custom filters. For example, suppose you
would like to directly print Printerleaf files (files from the Interleaf desktop
publishing program), but will never print plot files. You could install a
Printerleaf conversion filter under the gf capability and
then educate your users that lpr -g
mean “print Printerleaf files.”
Since conversion filters are programs you install outside of the base FreeBSD installation, they should probably go under /usr/local. The directory /usr/local/libexec is a popular location, since they are specialized programs that only LPD will run; regular users should not ever need to run them.
To enable a conversion filter, specify its pathname under the appropriate capability for the destination printer in /etc/printcap.
In our example, we will add the DVI conversion filter to the entry for the printer named bamboo. Here is the example /etc/printcap file again, with the new df capability for the printer bamboo:
# # /etc/printcap for host rose - added df filter for bamboo # rattan|line|diablo|lp|Diablo 630 Line Printer:\ :sh:sd=/var/spool/lpd/rattan:\ :lp=/dev/lpt0:\ :if=/usr/local/libexec/if-simple: bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:sd=/var/spool/lpd/bamboo:\ :lp=/dev/ttyu5:ms#-parenb cs8 clocal crtscts:rw:\ :if=/usr/local/libexec/psif:\ :df=/usr/local/libexec/psdf:
The DVI filter is a shell script named /usr/local/libexec/psdf. Here is that script:
#!/bin/sh # # psdf - DVI to PostScript printer filter # Installed in /usr/local/libexec/psdf # # Invoked by lpd when user runs lpr -d # exec /usr/local/bin/dvips -f | /usr/local/libexec/lprps "$@"
This script runs dvips in filter mode (the -f
argument) on standard input, which is the job to print. It
then starts the PostScript printer filter lprps (see section Accommodating Plain Text Jobs on PostScript Printers) with the arguments LPD passed to this script. The lprps utility will use those arguments to account for the
pages printed.
There is no fixed set of steps to install conversion filters, some working examples are described in this section. Use these as guidance to making your own filters. Use them directly, if appropriate.
This example script is a raster (well, GIF file, actually) conversion filter for a Hewlett Packard LaserJet III-Si printer:
#!/bin/sh # # hpvf - Convert GIF files into HP/PCL, then print # Installed in /usr/local/libexec/hpvf PATH=/usr/X11R6/bin:$PATH; export PATH giftopnm | ppmtopgm | pgmtopbm | pbmtolj -resolution 300 \ && exit 0 \ || exit 2
It works by converting the GIF file into a portable anymap, converting that into a portable graymap, converting that into a portable bitmap, and converting that into LaserJet/PCL-compatible data.
Here is the /etc/printcap file with an entry for a printer using the above filter:
# # /etc/printcap for host orchid # teak|hp|laserjet|Hewlett Packard LaserJet 3Si:\ :lp=/dev/lpt0:sh:sd=/var/spool/lpd/teak:mx#0:\ :if=/usr/local/libexec/hpif:\ :vf=/usr/local/libexec/hpvf:
The following script is a conversion filter for troff data from the groff typesetting system for the PostScript printer named bamboo:
#!/bin/sh # # pstf - Convert groff's troff data into PS, then print. # Installed in /usr/local/libexec/pstf # exec grops | /usr/local/libexec/lprps "$@"
The above script makes use of lprps again to handle the communication with the printer. If the printer were on a parallel port, we would use this script instead:
#!/bin/sh # # pstf - Convert groff's troff data into PS, then print. # Installed in /usr/local/libexec/pstf # exec grops
That is it. Here is the entry we need to add to /etc/printcap to enable the filter:
:tf=/usr/local/libexec/pstf:
Here is an example that might make old hands at FORTRAN blush. It is a FORTRAN-text filter for any printer that can directly print plain text. We will install it for the printer teak:
#!/bin/sh # # hprf - FORTRAN text filter for LaserJet 3si: # Installed in /usr/local/libexec/hprf # printf "\033&k2G" && fpr && printf "\033&l0H" && exit 0 exit 2
And we will add this line to the /etc/printcap for the printer teak to enable this filter:
:rf=/usr/local/libexec/hprf:
Here is one final, somewhat complex example. We will add a DVI filter to the LaserJet printer teak introduced earlier. First, the easy part: updating /etc/printcap with the location of the DVI filter:
:df=/usr/local/libexec/hpdf:
Now, for the hard part: making the filter. For that, we need a DVI-to-LaserJet/PCL conversion program. The FreeBSD Ports Collection (see The Ports Collection) has one: print/dvi2xx. Installing this port gives us the program we need, dvilj2p, which converts DVI into LaserJet IIp, LaserJet III, and LaserJet 2000 compatible codes.
The dvilj2p utility makes the filter hpdf quite complex since dvilj2p cannot read from standard input. It wants to work with a filename. What is worse, the filename has to end in .dvi so using /dev/fd/0 for standard input is problematic. We can get around that problem by linking (symbolically) a temporary file name (one that ends in .dvi) to /dev/fd/0, thereby forcing dvilj2p to read from standard input.
The only other fly in the ointment is the fact that we cannot use /tmp for the temporary link. Symbolic links are owned by user and group bin. The filter runs as user daemon. And the /tmp directory has the sticky bit set. The filter can create the link, but it will not be able clean up when done and remove it since the link will belong to a different user.
Instead, the filter will make the symbolic link in the current working directory, which is the spooling directory (specified by the sd capability in /etc/printcap). This is a perfect place for filters to do their work, especially since there is (sometimes) more free disk space in the spooling directory than under /tmp.
Here, finally, is the filter:
#!/bin/sh # # hpdf - Print DVI data on HP/PCL printer # Installed in /usr/local/libexec/hpdf PATH=/usr/local/bin:$PATH; export PATH # # Define a function to clean up our temporary files. These exist # in the current directory, which will be the spooling directory # for the printer. # cleanup() { rm -f hpdf$$.dvi } # # Define a function to handle fatal errors: print the given message # and exit 2. Exiting with 2 tells LPD to do not try to reprint the # job. # fatal() { echo "$@" 1>&2 cleanup exit 2 } # # If user removes the job, LPD will send SIGINT, so trap SIGINT # (and a few other signals) to clean up after ourselves. # trap cleanup 1 2 15 # # Make sure we are not colliding with any existing files. # cleanup # # Link the DVI input file to standard input (the file to print). # ln -s /dev/fd/0 hpdf$$.dvi || fatal "Cannot symlink /dev/fd/0" # # Make LF = CR+LF # printf "\033&k2G" || fatal "Cannot initialize printer" # # Convert and print. Return value from dvilj2p does not seem to be # reliable, so we ignore it. # dvilj2p -M1 -q -e- dfhp$$.dvi # # Clean up and exit # cleanup exit 0
All these conversion filters accomplish a lot for your printing environment, but at the cost forcing the user to specify (on the lpr(1) command line) which one to use. If your users are not particularly computer literate, having to specify a filter option will become annoying. What is worse, though, is that an incorrectly specified filter option may run a filter on the wrong type of file and cause your printer to spew out hundreds of sheets of paper.
Rather than install conversion filters at all, you might want to try having the text filter (since it is the default filter) detect the type of file it has been asked to print and then automatically run the right conversion filter. Tools such as file can be of help here. Of course, it will be hard to determine the differences between some file types—and, of course, you can still provide conversion filters just for them.
The FreeBSD Ports Collection has a text filter that performs automatic conversion called apsfilter (print/apsfilter). It can detect plain text, PostScript, DVI and almost any kind of files, run the proper conversions, and print.
The LPD spooling system supports one other type of filter that we have not yet explored: an output filter. An output filter is intended for printing plain text only, like the text filter, but with many simplifications. If you are using an output filter but no text filter, then:
LPD starts an output filter once for the entire job instead of once for each file in the job.
LPD does not make any provision to identify the start or the end of files within the job for the output filter.
LPD does not pass the user's login or host to the filter, so it is not intended to do accounting. In fact, it gets only two arguments:
filter-name -wwidth -llength
Where width is from the pw capability and length is from the pl capability for the printer in question.
Do not be seduced by an output filter's simplicity. If you would like each file in a job to start on a different page an output filter will not work. Use a text filter (also known as an input filter); see section Installing the Text Filter. Furthermore, an output filter is actually more complex in that it has to examine the byte stream being sent to it for special flag characters and must send signals to itself on behalf of LPD.
However, an output filter is necessary if you want header pages and need to send escape sequences or other initialization strings to be able to print the header page. (But it is also futile if you want to charge header pages to the requesting user's account, since LPD does not give any user or host information to the output filter.)
On a single printer, LPD allows both an output filter and text or other filters. In such cases, LPD will start the output filter to print the header page (see section Header Pages) only. LPD then expects the output filter to stop itself by sending two bytes to the filter: ASCII 031 followed by ASCII 001. When an output filter sees these two bytes (031, 001), it should stop by sending SIGSTOP to itself. When LPD's done running other filters, it will restart the output filter by sending SIGCONT to it.
If there is an output filter but no text filter and LPD is working on a plain text job, LPD uses the output filter to do the job. As stated before, the output filter will print each file of the job in sequence with no intervening form feeds or other paper advancement, and this is probably not what you want. In almost all cases, you need a text filter.
The program lpf, which we introduced earlier as a text filter, can also run as an output filter. If you need a quick-and-dirty output filter but do not want to write the byte detection and signal sending code, try lpf. You can also wrap lpf in a shell script to handle any initialization codes the printer might require.
The program /usr/libexec/lpr/lpf that comes with
FreeBSD binary distribution is a text filter (input filter) that can indent output
(job submitted with lpr -i
),
allow literal characters to pass (job submitted with lpr
-l
), adjust the printing position for backspaces
and tabs in the job, and account for pages printed. It can also act like an output
filter.
The lpf filter is suitable for many printing environments. And although it has no capability to send initialization sequences to a printer, it is easy to write a shell script to do the needed initialization and then execute lpf.
In order for lpf to do page accounting correctly, it needs correct values filled in for the pw and pl capabilities in the /etc/printcap file. It uses these values to determine how much text can fit on a page and how many pages were in a user's job. For more information on printer accounting, see Accounting for Printer Usage.
If you have lots of users, all of them using various printers, then you probably want to consider header pages as a necessary evil.
Header pages, also known as banner or burst pages identify to whom jobs belong after they are printed. They are usually printed in large, bold letters, perhaps with decorative borders, so that in a stack of printouts they stand out from the real documents that comprise users' jobs. They enable users to locate their jobs quickly. The obvious drawback to a header page is that it is yet one more sheet that has to be printed for every job, their ephemeral usefulness lasting not more than a few minutes, ultimately finding themselves in a recycling bin or rubbish heap. (Note that header pages go with each job, not each file in a job, so the paper waste might not be that bad.)
The LPD system can provide header pages automatically for your printouts if your printer can directly print plain text. If you have a PostScript printer, you will need an external program to generate the header page; see Header Pages on PostScript Printers.
In the Simple Printer Setup section, we turned off header pages by specifying sh (meaning “suppress header”) in the /etc/printcap file. To enable header pages for a printer, just remove the sh capability.
Sounds too easy, right?
You are right. You might have to provide an output filter to send initialization strings to the printer. Here is an example output filter for Hewlett Packard PCL-compatible printers:
#!/bin/sh # # hpof - Output filter for Hewlett Packard PCL-compatible printers # Installed in /usr/local/libexec/hpof printf "\033&k2G" || exit 2 exec /usr/libexec/lpr/lpf
Specify the path to the output filter in the of capability. See the Output Filters section for more information.
Here is an example /etc/printcap file for the printer teak that we introduced earlier; we enabled header pages and added the above output filter:
# # /etc/printcap for host orchid # teak|hp|laserjet|Hewlett Packard LaserJet 3Si:\ :lp=/dev/lpt0:sd=/var/spool/lpd/teak:mx#0:\ :if=/usr/local/libexec/hpif:\ :vf=/usr/local/libexec/hpvf:\ :of=/usr/local/libexec/hpof:
Now, when users print jobs to teak, they get a header
page with each job. If users want to spend time searching for their printouts, they
can suppress header pages by submitting the job with lpr -h
; see the Header
Page Options section for more lpr(1) options.
Note: LPD prints a form feed character after the header page. If your printer uses a different character or sequence of characters to eject a page, specify them with the ff capability in /etc/printcap.
By enabling header pages, LPD will produce a long header, a full page of large letters identifying the user, host, and job. Here is an example (kelly printed the job named “outline” from host rose):
k ll ll k l l k l l k k eeee l l y y k k e e l l y y k k eeeeee l l y y kk k e l l y y k k e e l l y yy k k eeee lll lll yyy y y y y yyyy ll t l i t l oooo u u ttttt l ii n nnn eeee o o u u t l i nn n e e o o u u t l i n n eeeeee o o u u t l i n n e o o u uu t t l i n n e e oooo uuu u tt lll iii n n eeee r rrr oooo ssss eeee rr r o o s s e e r o o ss eeeeee r o o ss e r o o s s e e r oooo ssss eeee Job: outline Date: Sun Sep 17 11:04:58 1995
LPD appends a form feed after this text so the job starts on a new page (unless you have sf (suppress form feeds) in the destination printer's entry in /etc/printcap).
If you prefer, LPD can make a short header; specify sb (short banner) in the /etc/printcap file. The header page will look like this:
rose:kelly Job: outline Date: Sun Sep 17 11:07:51 1995
Also by default, LPD prints the header page first, then the job. To reverse that, specify hl (header last) in /etc/printcap.
Using LPD's built-in header pages enforces a particular paradigm when it comes to printer accounting: header pages must be free of charge.
Why?
Because the output filter is the only external program that will have control
when the header page is printed that could do accounting, and it is not provided
with any user or host
information or an accounting file, so it has no idea whom to charge for printer
use. It is also not enough to just “increase the page count by one” by
modifying the text filter or any of the conversion filters (which do have user and
host information) since users can suppress header pages with lpr -h
. They could still be
charged for header pages they did not print. Basically, lpr
-h
will be the preferred option of
environmentally-minded users, but you cannot offer any incentive to use it.
It is still not enough to have
each of the filters generate their own header pages (thereby being able to
charge for them). If users wanted the option of suppressing the header pages with
lpr -h
, they will still get
them and be charged for them since LPD does not pass any
knowledge of the -h
option to any of the filters.
So, what are your options?
You can:
Accept LPD's paradigm and make header pages free.
Install an alternative to LPD, such as LPRng. Section Alternatives to the Standard Spooler tells more about other spooling software you can substitute for LPD.
Write a smart output filter. Normally, an output filter is not meant to do anything more than initialize a printer or do some simple character conversion. It is suited for header pages and plain text jobs (when there is no text (input) filter). But, if there is a text filter for the plain text jobs, then LPD will start the output filter only for the header pages. And the output filter can parse the header page text that LPD generates to determine what user and host to charge for the header page. The only other problem with this method is that the output filter still does not know what accounting file to use (it is not passed the name of the file from the af capability), but if you have a well-known accounting file, you can hard-code that into the output filter. To facilitate the parsing step, use the sh (short header) capability in /etc/printcap. Then again, all that might be too much trouble, and users will certainly appreciate the more generous system administrator who makes header pages free.
As described above, LPD can generate a plain text header page suitable for many printers. Of course, PostScript cannot directly print plain text, so the header page feature of LPD is useless—or mostly so.
One obvious way to get header pages is to have every conversion filter and the
text filter generate the header page. The filters should use the user and host
arguments to generate a suitable header page. The drawback of this method is that
users will always get a header page, even if they submit jobs with lpr -h
.
Let us explore this method. The following script takes three arguments (user login name, host name, and job name) and makes a simple PostScript header page:
#!/bin/sh # # make-ps-header - make a PostScript header page on stdout # Installed in /usr/local/libexec/make-ps-header # # # These are PostScript units (72 to the inch). Modify for A4 or # whatever size paper you are using: # page_width=612 page_height=792 border=72 # # Check arguments # if [ $# -ne 3 ]; then echo "Usage: `basename $0` <user> <host> <job>" 1>&2 exit 1 fi # # Save these, mostly for readability in the PostScript, below. # user=$1 host=$2 job=$3 date=`date` # # Send the PostScript code to stdout. # exec cat <<EOF %!PS % % Make sure we do not interfere with user's job that will follow % save % % Make a thick, unpleasant border around the edge of the paper. % $border $border moveto $page_width $border 2 mul sub 0 rlineto 0 $page_height $border 2 mul sub rlineto currentscreen 3 -1 roll pop 100 3 1 roll setscreen $border 2 mul $page_width sub 0 rlineto closepath 0.8 setgray 10 setlinewidth stroke 0 setgray % % Display user's login name, nice and large and prominent % /Helvetica-Bold findfont 64 scalefont setfont $page_width ($user) stringwidth pop sub 2 div $page_height 200 sub moveto ($user) show % % Now show the boring particulars % /Helvetica findfont 14 scalefont setfont /y 200 def [ (Job:) (Host:) (Date:) ] { 200 y moveto show /y y 18 sub def } forall /Helvetica-Bold findfont 14 scalefont setfont /y 200 def [ ($job) ($host) ($date) ] { 270 y moveto show /y y 18 sub def } forall % % That is it % restore showpage EOF
Now, each of the conversion filters and the text filter can call this script to first generate the header page, and then print the user's job. Here is the DVI conversion filter from earlier in this document, modified to make a header page:
#!/bin/sh # # psdf - DVI to PostScript printer filter # Installed in /usr/local/libexec/psdf # # Invoked by lpd when user runs lpr -d # orig_args="$@" fail() { echo "$@" 1>&2 exit 2 } while getopts "x:y:n:h:" option; do case $option in x|y) ;; # Ignore n) login=$OPTARG ;; h) host=$OPTARG ;; *) echo "LPD started `basename $0` wrong." 1>&2 exit 2 ;; esac done [ "$login" ] || fail "No login name" [ "$host" ] || fail "No host name" ( /usr/local/libexec/make-ps-header $login $host "DVI File" /usr/local/bin/dvips -f ) | eval /usr/local/libexec/lprps $orig_args
Notice how the filter has to parse the argument list in order to determine the user and host name. The parsing for the other conversion filters is identical. The text filter takes a slightly different set of arguments, though (see section How Filters Work).
As we have mentioned before, the above scheme, though fairly simple, disables
the “suppress header page” option (the -h
option) to lpr. If users wanted to save a tree (or a few
pennies, if you charge for header pages), they would not be able to do so, since
every filter's going to print a header page with every job.
To allow users to shut off header pages on a per-job basis, you will need to use
the trick introduced in section Accounting for Header Pages:
write an output filter that parses the LPD-generated header page and produces a
PostScript version. If the user submits the job with
lpr -h
, then LPD will not generate a header page, and neither will your
output filter. Otherwise, your output filter will read the text from LPD and send the appropriate header page PostScript code to the printer.
If you have a PostScript printer on a serial line, you can make use of lprps, which comes with an output filter, psof, which does the above. Note that psof does not charge for header pages.
FreeBSD supports networked printing: sending jobs to remote printers. Networked printing generally refers to two different things:
Accessing a printer attached to a remote host. You install a printer that has a conventional serial or parallel interface on one host. Then, you set up LPD to enable access to the printer from other hosts on the network. Section Printers Installed on Remote Hosts tells how to do this.
Accessing a printer attached directly to a network. The printer has a network interface in addition to (or in place of) a more conventional serial or parallel interface. Such a printer might work as follows:
It might understand the LPD protocol and can even queue jobs from remote hosts. In this case, it acts just like a regular host running LPD. Follow the same procedure in section Printers Installed on Remote Hosts to set up such a printer.
It might support a data stream network connection. In this case, you “attach” the printer to one host on the network by making that host responsible for spooling jobs and sending them to the printer. Section Printers with Networked Data Stream Interfaces gives some suggestions on installing such printers.
The LPD spooling system has built-in support for sending jobs to other hosts also running LPD (or are compatible with LPD). This feature enables you to install a printer on one host and make it accessible from other hosts. It also works with printers that have network interfaces that understand the LPD protocol.
To enable this kind of remote printing, first install a printer on one host, the printer host, using the simple printer setup described in the Simple Printer Setup section. Do any advanced setup in Advanced Printer Setup that you need. Make sure to test the printer and see if it works with the features of LPD you have enabled. Also ensure that the local host has authorization to use the LPD service in the remote host (see Restricting Jobs from Remote Hosts).
If you are using a printer with a network interface that is compatible with LPD, then the printer host in the discussion below is the printer itself, and the printer name is the name you configured for the printer. See the documentation that accompanied your printer and/or printer-network interface.
Tip: If you are using a Hewlett Packard Laserjet then the printer name text will automatically perform the LF to CRLF conversion for you, so you will not require the hpif script.
Then, on the other hosts you want to have access to the printer, make an entry in their /etc/printcap files with the following:
Name the entry anything you want. For simplicity, though, you probably want to use the same name and aliases as on the printer host.
Leave the lp capability blank, explicitly (:lp=:).
Make a spooling directory and specify its location in the sd capability. LPD will store jobs here before they get sent to the printer host.
Place the name of the printer host in the rm capability.
Place the printer name on the printer host in the rp capability.
That is it. You do not need to list conversion filters, page dimensions, or anything else in the /etc/printcap file.
Here is an example. The host rose has two printers, bamboo and rattan. We will enable users on the host orchid to print to those printers. Here is the /etc/printcap file for orchid (back from section Enabling Header Pages). It already had the entry for the printer teak; we have added entries for the two printers on the host rose:
# # /etc/printcap for host orchid - added (remote) printers on rose # # # teak is local; it is connected directly to orchid: # teak|hp|laserjet|Hewlett Packard LaserJet 3Si:\ :lp=/dev/lpt0:sd=/var/spool/lpd/teak:mx#0:\ :if=/usr/local/libexec/ifhp:\ :vf=/usr/local/libexec/vfhp:\ :of=/usr/local/libexec/ofhp: # # rattan is connected to rose; send jobs for rattan to rose: # rattan|line|diablo|lp|Diablo 630 Line Printer:\ :lp=:rm=rose:rp=rattan:sd=/var/spool/lpd/rattan: # # bamboo is connected to rose as well: # bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :lp=:rm=rose:rp=bamboo:sd=/var/spool/lpd/bamboo:
Then, we just need to make spooling directories on orchid:
# mkdir -p
/var/spool/lpd/rattan /var/spool/lpd/bamboo
# chmod 770 /var/spool/lpd/rattan /var/spool/lpd/bamboo
# chown daemon:daemon /var/spool/lpd/rattan /var/spool/lpd/bamboo
Now, users on orchid can print to rattan and bamboo. If, for example, a user on orchid typed:
% lpr-P
bamboo-d
sushi-review.dvi
the LPD system on orchid would copy the job to the spooling directory /var/spool/lpd/bamboo and note that it was a DVI job. As soon as the host rose has room in its bamboo spooling directory, the two LPDs would transfer the file to rose. The file would wait in rose's queue until it was finally printed. It would be converted from DVI to PostScript (since bamboo is a PostScript printer) on rose.
Often, when you buy a network interface card for a printer, you can get two versions: one which emulates a spooler (the more expensive version), or one which just lets you send data to it as if you were using a serial or parallel port (the cheaper version). This section tells how to use the cheaper version. For the more expensive one, see the previous section Printers Installed on Remote Hosts.
The format of the /etc/printcap file lets you specify what serial or parallel interface to use, and (if you are using a serial interface), what baud rate, whether to use flow control, delays for tabs, conversion of newlines, and more. But there is no way to specify a connection to a printer that is listening on a TCP/IP or other network port.
To send data to a networked printer, you need to develop a communications program that can be called by the text and conversion filters. Here is one such example: the script netprint takes all data on standard input and sends it to a network-attached printer. We specify the hostname of the printer as the first argument and the port number to which to connect as the second argument to netprint. Note that this supports one-way communication only (FreeBSD to printer); many network printers support two-way communication, and you might want to take advantage of that (to get printer status, perform accounting, etc.).
#!/usr/bin/perl # # netprint - Text filter for printer attached to network # Installed in /usr/local/libexec/netprint # $#ARGV eq 1 || die "Usage: $0 <printer-hostname> <port-number>"; $printer_host = $ARGV[0]; $printer_port = $ARGV[1]; require 'sys/socket.ph'; ($ignore, $ignore, $protocol) = getprotobyname('tcp'); ($ignore, $ignore, $ignore, $ignore, $address) = gethostbyname($printer_host); $sockaddr = pack('S n a4 x8', &AF_INET, $printer_port, $address); socket(PRINTER, &PF_INET, &SOCK_STREAM, $protocol) || die "Can't create TCP/IP stream socket: $!"; connect(PRINTER, $sockaddr) || die "Can't contact $printer_host: $!"; while (<STDIN>) { print PRINTER; } exit 0;
We can then use this script in various filters. Suppose we had a Diablo 750-N line printer connected to the network. The printer accepts data to print on port number 5100. The host name of the printer is scrivener. Here is the text filter for the printer:
#!/bin/sh # # diablo-if-net - Text filter for Diablo printer `scrivener' listening # on port 5100. Installed in /usr/local/libexec/diablo-if-net # exec /usr/libexec/lpr/lpf "$@" | /usr/local/libexec/netprint scrivener 5100
This section gives information on restricting printer usage. The LPD system lets you control who can access a printer, both locally or remotely, whether they can print multiple copies, how large their jobs can be, and how large the printer queues can get.
The LPD system makes it easy for users to print
multiple copies of a file. Users can print jobs with lpr
-#5
(for example) and get five copies of each file
in the job. Whether this is a good thing is up to you.
If you feel multiple copies cause unnecessary wear and tear on your printers,
you can disable the -#
option to lpr(1) by adding the
sc capability to the /etc/printcap file. When users submit jobs with the -#
option, they will see:
lpr: multiple copies are not allowed
Note that if you have set up access to a printer remotely (see section Printers Installed on Remote Hosts), you need the sc capability on the remote /etc/printcap files as well, or else users will still be able to submit multiple-copy jobs by using another host.
Here is an example. This is the /etc/printcap file for the host rose. The printer rattan is quite hearty, so we will allow multiple copies, but the laser printer bamboo is a bit more delicate, so we will disable multiple copies by adding the sc capability:
# # /etc/printcap for host rose - restrict multiple copies on bamboo # rattan|line|diablo|lp|Diablo 630 Line Printer:\ :sh:sd=/var/spool/lpd/rattan:\ :lp=/dev/lpt0:\ :if=/usr/local/libexec/if-simple: bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:sd=/var/spool/lpd/bamboo:sc:\ :lp=/dev/ttyu5:ms#-parenb cs8 clocal crtscts:rw:\ :if=/usr/local/libexec/psif:\ :df=/usr/local/libexec/psdf:
Now, we also need to add the sc capability on the host orchid's /etc/printcap (and while we are at it, let us disable multiple copies for the printer teak):
# # /etc/printcap for host orchid - no multiple copies for local # printer teak or remote printer bamboo teak|hp|laserjet|Hewlett Packard LaserJet 3Si:\ :lp=/dev/lpt0:sd=/var/spool/lpd/teak:mx#0:sc:\ :if=/usr/local/libexec/ifhp:\ :vf=/usr/local/libexec/vfhp:\ :of=/usr/local/libexec/ofhp: rattan|line|diablo|lp|Diablo 630 Line Printer:\ :lp=:rm=rose:rp=rattan:sd=/var/spool/lpd/rattan: bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :lp=:rm=rose:rp=bamboo:sd=/var/spool/lpd/bamboo:sc:
By using the sc capability, we prevent the use of lpr -#
, but that still does not
prevent users from running lpr(1) multiple times,
or from submitting the same file multiple times in one job like this:
% lpr forsale.sign forsale.sign forsale.sign forsale.sign forsale.sign
There are many ways to prevent this abuse (including ignoring it) which you are free to explore.
You can control who can print to what printers by using the UNIX group mechanism and the rg capability in /etc/printcap. Just place the users you want to have access to a printer in a certain group, and then name that group in the rg capability.
If users outside the group (including root) try to print to the controlled printer then they will be greeted with the following message:
lpr: Not a member of the restricted group
As with the sc (suppress multiple copies) capability, you need to specify rg on remote hosts that also have access to your printers, if you feel it is appropriate (see section Printers Installed on Remote Hosts).
For example, we will let anyone access the printer rattan, but only those in group artists can use bamboo. Here is the familiar /etc/printcap for host rose:
# # /etc/printcap for host rose - restricted group for bamboo # rattan|line|diablo|lp|Diablo 630 Line Printer:\ :sh:sd=/var/spool/lpd/rattan:\ :lp=/dev/lpt0:\ :if=/usr/local/libexec/if-simple: bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:sd=/var/spool/lpd/bamboo:sc:rg=artists:\ :lp=/dev/ttyu5:ms#-parenb cs8 clocal crtscts:rw:\ :if=/usr/local/libexec/psif:\ :df=/usr/local/libexec/psdf:
Let us leave the other example /etc/printcap file (for the host orchid) alone. Of course, anyone on orchid can print to bamboo. It might be the case that we only allow certain logins on orchid anyway, and want them to have access to the printer. Or not.
Note: There can be only one restricted group per printer.
If you have many users accessing the printers, you probably need to put an upper limit on the sizes of the files users can submit to print. After all, there is only so much free space on the filesystem that houses the spooling directories, and you also need to make sure there is room for the jobs of other users.
LPD enables you to limit the maximum byte size a file in a job can be with the mx capability. The units are in BUFSIZ blocks, which are 1024 bytes. If you put a zero for this capability, there will be no limit on file size; however, if no mx capability is specified, then a default limit of 1000 blocks will be used.
Note: The limit applies to files in a job, and not the total job size.
LPD will not refuse a file that is larger than the limit you place on a printer. Instead, it will queue as much of the file up to the limit, which will then get printed. The rest will be discarded. Whether this is correct behavior is up for debate.
Let us add limits to our example printers rattan and bamboo. Since those artists' PostScript files tend to be large, we will limit them to five megabytes. We will put no limit on the plain text line printer:
# # /etc/printcap for host rose # # # No limit on job size: # rattan|line|diablo|lp|Diablo 630 Line Printer:\ :sh:mx#0:sd=/var/spool/lpd/rattan:\ :lp=/dev/lpt0:\ :if=/usr/local/libexec/if-simple: # # Limit of five megabytes: # bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:sd=/var/spool/lpd/bamboo:sc:rg=artists:mx#5000:\ :lp=/dev/ttyu5:ms#-parenb cs8 clocal crtscts:rw:\ :if=/usr/local/libexec/psif:\ :df=/usr/local/libexec/psdf:
Again, the limits apply to the local users only. If you have set up access to your printers remotely, remote users will not get those limits. You will need to specify the mx capability in the remote /etc/printcap files as well. See section Printers Installed on Remote Hosts for more information on remote printing.
There is another specialized way to limit job sizes from remote printers; see section Restricting Jobs from Remote Hosts.
The LPD spooling system provides several ways to restrict print jobs submitted from remote hosts:
You can control from which remote hosts a local LPD accepts requests with the files /etc/hosts.equiv and /etc/hosts.lpd. LPD checks to see if an incoming request is from a host listed in either one of these files. If not, LPD refuses the request.
The format of these files is simple: one host name per line. Note that the file /etc/hosts.equiv is also used by the ruserok(3) protocol, and affects programs like rsh(1) and rcp(1), so be careful.
For example, here is the /etc/hosts.lpd file on the host rose:
orchid violet madrigal.fishbaum.de
This means rose will accept requests from the hosts orchid, violet, and madrigal.fishbaum.de. If any other host tries to access rose's LPD, the job will be refused.
You can control how much free space there needs to remain on the filesystem where a spooling directory resides. Make a file called minfree in the spooling directory for the local printer. Insert in that file a number representing how many disk blocks (512 bytes) of free space there has to be for a remote job to be accepted.
This lets you insure that remote users will not fill your filesystem. You can also use it to give a certain priority to local users: they will be able to queue jobs long after the free disk space has fallen below the amount specified in the minfree file.
For example, let us add a minfree file for the printer bamboo. We examine /etc/printcap to find the spooling directory for this printer; here is bamboo's entry:
bamboo|ps|PS|S|panasonic|Panasonic KX-P4455 PostScript v51.4:\ :sh:sd=/var/spool/lpd/bamboo:sc:rg=artists:mx#5000:\ :lp=/dev/ttyu5:ms#-parenb cs8 clocal crtscts:rw:mx#5000:\ :if=/usr/local/libexec/psif:\ :df=/usr/local/libexec/psdf:
The spooling directory is given in the sd capability. We will make three megabytes (which is 6144 disk blocks) the amount of free disk space that must exist on the filesystem for LPD to accept remote jobs:
# echo 6144 > /var/spool/lpd/bamboo/minfree
You can control which remote users can print to local printers by specifying the rs capability in /etc/printcap. When rs appears in the entry for a locally-attached printer, LPD will accept jobs from remote hosts if the user submitting the job also has an account of the same login name on the local host. Otherwise, LPD refuses the job.
This capability is particularly useful in an environment where there are (for example) different departments sharing a network, and some users transcend departmental boundaries. By giving them accounts on your systems, they can use your printers from their own departmental systems. If you would rather allow them to use only your printers and not your computer resources, you can give them “token” accounts, with no home directory and a useless shell like /usr/bin/false.
So, you need to charge for printouts. And why not? Paper and ink cost money. And then there are maintenance costs—printers are loaded with moving parts and tend to break down. You have examined your printers, usage patterns, and maintenance fees and have come up with a per-page (or per-foot, per-meter, or per-whatever) cost. Now, how do you actually start accounting for printouts?
Well, the bad news is the LPD spooling system does not provide much help in this department. Accounting is highly dependent on the kind of printer in use, the formats being printed, and your requirements in charging for printer usage.
To implement accounting, you have to modify a printer's text filter (to charge for plain text jobs) and the conversion filters (to charge for other file formats), to count pages or query the printer for pages printed. You cannot get away with using the simple output filter, since it cannot do accounting. See section Filters.
Generally, there are two ways to do accounting:
Periodic accounting is the more common way, possibly because it is easier. Whenever someone prints a job, the filter logs the user, host, and number of pages to an accounting file. Every month, semester, year, or whatever time period you prefer, you collect the accounting files for the various printers, tally up the pages printed by users, and charge for usage. Then you truncate all the logging files, starting with a clean slate for the next period.
Timely accounting is less common, probably because it is more difficult. This method has the filters charge users for printouts as soon as they use the printers. Like disk quotas, the accounting is immediate. You can prevent users from printing when their account goes in the red, and might provide a way for users to check and adjust their “print quotas”. But this method requires some database code to track users and their quotas.
The LPD spooling system supports both methods easily: since you have to provide the filters (well, most of the time), you also have to provide the accounting code. But there is a bright side: you have enormous flexibility in your accounting methods. For example, you choose whether to use periodic or timely accounting. You choose what information to log: user names, host names, job types, pages printed, square footage of paper used, how long the job took to print, and so forth. And you do so by modifying the filters to save this information.
FreeBSD comes with two programs that can get you set up with simple periodic accounting right away. They are the text filter lpf, described in section lpf: a Text Filter, and pac(8), a program to gather and total entries from printer accounting files.
As mentioned in the section on filters (Filters), LPD starts the text and the conversion filters with the name of the accounting file to use on the filter command line. The filters can use this argument to know where to write an accounting file entry. The name of this file comes from the af capability in /etc/printcap, and if not specified as an absolute path, is relative to the spooling directory.
LPD starts lpf with page width and length arguments (from the pw and pl capabilities). The lpf filter uses these arguments to determine how much paper will be used. After sending the file to the printer, it then writes an accounting entry in the accounting file. The entries look like this:
2.00 rose:andy 3.00 rose:kelly 3.00 orchid:mary 5.00 orchid:mary 2.00 orchid:zhang
You should use a separate accounting file for each printer, as lpf has no file locking logic built into it, and two lpfs might corrupt each other's entries if they were to write to the same file at the same time. An easy way to insure a separate accounting file for each printer is to use af=acct in /etc/printcap. Then, each accounting file will be in the spooling directory for a printer, in a file named acct.
When you are ready to charge users for printouts, run the pac(8) program. Just change to the spooling directory for the printer you want to collect on and type pac. You will get a dollar-centric summary like the following:
Login pages/feet runs price orchid:kelly 5.00 1 $ 0.10 orchid:mary 31.00 3 $ 0.62 orchid:zhang 9.00 1 $ 0.18 rose:andy 2.00 1 $ 0.04 rose:kelly 177.00 104 $ 3.54 rose:mary 87.00 32 $ 1.74 rose:root 26.00 12 $ 0.52 total 337.00 154 $ 6.74
These are the arguments pac(8) expects:
-Pprinter
Which printer to summarize. This option works only if there is an absolute path in the af capability in /etc/printcap.
-c
Sort the output by cost instead of alphabetically by user name.
-m
Ignore host name in the accounting files. With this option, user smith on host alpha is the same user smith on host gamma. Without, they are different users.
-pprice
Compute charges with price dollars per page or per foot instead of the price from the pc capability in /etc/printcap, or two cents (the default). You can specify price as a floating point number.
-r
Reverse the sort order.
-s
Make an accounting summary file and truncate the accounting file.
Print accounting information for the given user names only.
In the default summary that pac(8) produces, you
see the number of pages printed by each user from various hosts. If, at your
site, host does not matter (because users can use any host), run pac -m
, to produce the following
summary:
Login pages/feet runs price andy 2.00 1 $ 0.04 kelly 182.00 105 $ 3.64 mary 118.00 35 $ 2.36 root 26.00 12 $ 0.52 zhang 9.00 1 $ 0.18 total 337.00 154 $ 6.74
To compute the dollar amount due, pac(8) uses the pc capability in the /etc/printcap
file (default of 200, or 2 cents per page). Specify, in hundredths of cents, the
price per page or per foot you want to charge for printouts in this capability. You
can override this value when you run pac(8) with the
-p
option. The units for the -p
option are in dollars, though, not hundredths of cents. For example,
# pac -p1.50
makes each page cost one dollar and fifty cents. You can really rake in the profits by using this option.
Finally, running pac -s
will
save the summary information in a summary accounting file, which is named the
same as the printer's accounting file, but with _sum
appended to the name. It then truncates the accounting file. When you run pac(8) again, it
rereads the summary file to get starting totals, then adds information from the
regular accounting file.
In order to perform even remotely accurate accounting, you need to be able to determine how much paper a job uses. This is the essential problem of printer accounting.
For plain text jobs, the problem is not that hard to solve: you count how many lines are in a job and compare it to how many lines per page your printer supports. Do not forget to take into account backspaces in the file which overprint lines, or long logical lines that wrap onto one or more additional physical lines.
The text filter lpf (introduced in lpf: a Text Filter) takes into account these things when it does accounting. If you are writing a text filter which needs to do accounting, you might want to examine lpf's source code.
How do you handle other file formats, though?
Well, for DVI-to-LaserJet or DVI-to-PostScript conversion, you can have your filter parse the diagnostic output of dvilj or dvips and look to see how many pages were converted. You might be able to do similar things with other file formats and conversion programs.
But these methods suffer from the fact that the printer may not actually print all those pages. For example, it could jam, run out of toner, or explode—and the user would still get charged.
So, what can you do?
There is only one sure way to do accurate accounting. Get a printer that can tell you how much paper it uses, and attach it via a serial line or a network connection. Nearly all PostScript printers support this notion. Other makes and models do as well (networked Imagen laser printers, for example). Modify the filters for these printers to get the page usage after they print each job and have them log accounting information based on that value only. There is no line counting nor error-prone file examination required.
Of course, you can always be generous and make all printouts free.
This section tells you how to use printers you have set up with FreeBSD. Here is an overview of the user-level commands:
There is also an administrative command, lpc(8), described in the section Administering Printers, used to control printers and their queues.
All three of the commands lpr(1), lprm(1), and lpq(1) accept an
option -P printer-name
to
specify on which printer/queue to operate, as listed in the /etc/printcap file. This enables you to submit, remove, and check
on jobs for various printers. If you do not use the -P
option, then these commands use the printer specified in the PRINTER environment variable. Finally, if you do not have a PRINTER environment variable, these commands default to the printer
named lp.
Hereafter, the terminology default printer means the printer named in the PRINTER environment variable, or the printer named lp when there is no PRINTER environment variable.
To print files, type:
% lpr filename ...
This prints each of the listed files to the default printer. If you list no files, lpr(1) reads data to print from standard input. For example, this command prints some important system files:
% lpr /etc/host.conf /etc/hosts.equiv
To select a specific printer, type:
% lpr -P
printer-name filename ...
This example prints a long listing of the current directory to the printer named rattan:
% ls-l
| lpr-P
rattan
Because no files were listed for the lpr(1) command,
lpr read the data to print from standard input, which
was the output of the ls -l
command.
The lpr(1) command can also accept a wide variety of options to control formatting, apply file conversions, generate multiple copies, and so forth. For more information, see the section Printing Options.
When you print with lpr(1), the data you wish to print is put together in a package called a “print job”, which is sent to the LPD spooling system. Each printer has a queue of jobs, and your job waits in that queue along with other jobs from yourself and from other users. The printer prints those jobs in a first-come, first-served order.
To display the queue for the default printer, type lpq(1). For a
specific printer, use the -P
option. For example, the
command
% lpq -P
bamboo
shows the queue for the printer named bamboo. Here is
an example of the output of the lpq command:bamboo is ready and printing Rank Owner Job Files Total Size active kelly 9 /etc/host.conf, /etc/hosts.equiv 88 bytes 2nd kelly 10 (standard input) 1635 bytes 3rd mary 11 ... 78519 bytes
This shows three jobs in the queue for bamboo. The first job, submitted by user kelly, got assigned “job number” 9. Every job for a printer gets a unique job number. Most of the time you can ignore the job number, but you will need it if you want to cancel the job; see section Removing Jobs for details.
Job number nine consists of two files; multiple files given on the lpr(1) command line are treated as part of a single job. It is the currently active job (note the word active under the “Rank” column), which means the printer should be currently printing that job. The second job consists of data passed as the standard input to the lpr(1) command. The third job came from user mary; it is a much larger job. The pathname of the file she is trying to print is too long to fit, so the lpq(1) command just shows three dots.
The very first line of the output from lpq(1) is also useful: it tells what the printer is currently doing (or at least what LPD thinks the printer is doing).
The lpq(1) command also
support a -l
option to generate a detailed long listing.
Here is an example of lpq -l
:
waiting for bamboo to become ready (offline ?) kelly: 1st [job 009rose] /etc/host.conf 73 bytes /etc/hosts.equiv 15 bytes kelly: 2nd [job 010rose] (standard input) 1635 bytes mary: 3rd [job 011rose] /home/orchid/mary/research/venus/alpha-regio/mapping 78519 bytes
If you change your mind about printing a job, you can remove the job from the queue with the lprm(1) command. Often, you can even use lprm(1) to remove an active job, but some or all of the job might still get printed.
To remove a job from the default printer, first use lpq(1) to find the job number. Then type:
% lprm job-number
To remove the job from a specific printer, add the -P
option. The following command removes job number 10 from the queue for the printer
bamboo:
% lprm -P
bamboo 10
The lprm(1) command has a few shortcuts:
Removes all jobs (for the default printer) belonging to you.
Removes all jobs (for the default printer) belonging to user. The superuser can remove other users' jobs; you can remove only your own jobs.
With no job number, user name, or -
appearing on the
command line, lprm(1) removes the
currently active job on the default printer, if it belongs to you. The
superuser can remove any active job.
Just use the -P
option with the above shortcuts to
operate on a specific printer instead of the default. For example, the following
command removes all jobs for the current user in the queue for the printer named rattan:
% lprm -P
rattan -
Note: If you are working in a networked environment, lprm(1) will let you remove jobs only from the host from which the jobs were submitted, even if the same printer is available from other hosts. The following command sequence demonstrates this:
% lpr-P
rattan myfile % rlogin orchid % lpq-P
rattan Rank Owner Job Files Total Size active seeyan 12 ... 49123 bytes 2nd kelly 13 myfile 12 bytes % lprm-P
rattan 13 rose: Permission denied % logout % lprm-P
rattan 13 dfA013rose dequeued cfA013rose dequeued
The lpr(1) command supports a number of options that control formatting text, converting graphic and other file formats, producing multiple copies, handling of the job, and more. This section describes the options.
The following lpr(1) options control formatting of the files in the job. Use these options if the job does not contain plain text or if you want plain text formatted through the pr(1) utility.
For example, the following command prints a DVI file (from the TeX typesetting system) named fish-report.dvi to the printer named bamboo:
% lpr -P
bamboo -d fish-report.dvi
These options apply to every file in the job, so you cannot mix (say) DVI and ditroff files together in a job. Instead, submit the files as separate jobs, using a different conversion option for each job.
Note: All of these options except
-p
and-T
require conversion filters installed for the destination printer. For example, the-d
option requires the DVI conversion filter. Section Conversion Filters gives details.
-c
Print cifplot files.
-d
Print DVI files.
-f
Print FORTRAN text files.
-g
Print plot data.
-i number
Indent the output by number columns; if you omit number, indent by 8 columns. This option works only with certain conversion filters.
Note: Do not put any space between the
-i
and the number.
-l
Print literal text data, including control characters.
-n
Print ditroff (device independent troff) data.
Format plain text with pr(1) before printing. See pr(1) for more information.
-T title
Use title on the pr(1) header instead
of the file name. This option has effect only when used with the -p
option.
-t
Print troff data.
-v
Print raster data.
Here is an example: this command prints a nicely formatted version of the ls(1) manual page on the default printer:
% zcat /usr/share/man/man1/ls.1.gz | troff-t
-man | lpr-t
The zcat(1) command
uncompresses the source of the ls(1) manual page and
passes it to the troff(1)
command, which formats that source and makes GNU troff output and passes it to lpr(1), which submits
the job to the LPD spooler. Because we used the
-t
option to lpr(1), the spooler
will convert the GNU troff output into a format the default printer can
understand when it prints the job.
The following options to lpr(1) tell LPD to handle the job specially:
Produce a number of copies of each file in the job instead of just one copy. An administrator may disable this option to reduce printer wear-and-tear and encourage photocopier usage. See section Restricting Multiple Copies.
This example prints three copies of parser.c followed by three copies of parser.h to the default printer:
% lpr -#3
parser.c parser.h
Send mail after completing the print job. With this option, the LPD system will send mail to your account when it finishes handling your job. In its message, it will tell you if the job completed successfully or if there was an error, and (often) what the error was.
Do not copy the files to the spooling directory, but make symbolic links to them instead.
If you are printing a large job, you probably want to use this option. It saves space in the spooling directory (your job might overflow the free space on the filesystem where the spooling directory resides). It saves time as well since LPD will not have to copy each and every byte of your job to the spooling directory.
There is a drawback, though: since LPD will refer to the original files directly, you cannot modify or remove them until they have been printed.
Note: If you are printing to a remote printer, LPD will eventually have to copy files from the local host to the remote host, so the
-s
option will save space only on the local spooling directory, not the remote. It is still useful, though.
Remove the files in the job after copying them to the spooling directory, or
after printing them with the -s
option. Be careful
with this option!
These options to lpr(1) adjust the text that normally appears on a job's header page. If header pages are suppressed for the destination printer, these options have no effect. See section Header Pages for information about setting up header pages.
Replace the hostname on the header page with text. The hostname is normally the name of the host from which the job was submitted.
Replace the job name on the header page with text. The job name is normally the name of the first file of the job, or stdin if you are printing standard input.
Do not print any header page.
Note: At some sites, this option may have no effect due to the way header pages are generated. See Header Pages for details.
As an administrator for your printers, you have had to install, set up, and test them. Using the lpc(8) command, you can interact with your printers in yet more ways. With lpc(8), you can
Start and stop the printers
Enable and disable their queues
Rearrange the order of the jobs in each queue.
First, a note about terminology: if a printer is stopped, it will not print anything in its queue. Users can still submit jobs, which will wait in the queue until the printer is started or the queue is cleared.
If a queue is disabled, no user (except root) can submit jobs for the printer. An enabled queue allows jobs to be submitted. A printer can be started for a disabled queue, in which case it will continue to print jobs in the queue until the queue is empty.
In general, you have to have root privileges to use the lpc(8) command. Ordinary users can use the lpc(8) command to get printer status and to restart a hung printer only.
Here is a summary of the lpc(8) commands. Most of the commands take a printer-name argument to tell on which printer to operate. You can use all for the printer-name to mean all printers listed in /etc/printcap.
Cancel the current job and stop the printer. Users can still submit jobs if the queue is enabled.
Remove old files from the printer's spooling directory. Occasionally, the files that make up a job are not properly removed by LPD, particularly if there have been errors during printing or a lot of administrative activity. This command finds files that do not belong in the spooling directory and removes them.
Disable queuing of new jobs. If the printer is running, it will continue to print any jobs remaining in the queue. The superuser (root) can always submit jobs, even to a disabled queue.
This command is useful while you are testing a new printer or filter installation: disable the queue and submit jobs as root. Other users will not be able to submit jobs until you complete your testing and re-enable the queue with the enable command.
Take a printer down. Equivalent to disable followed by stop. The message appears as the printer's status whenever a user checks the printer's queue with lpq(1) or status with lpc status.
Enable the queue for a printer. Users can submit jobs but the printer will not print anything until it is started.
Print help on the command command-name. With no command-name, print a summary of the commands available.
Start the printer. Ordinary users can use this command if some extraordinary circumstance hangs LPD, but they cannot start a printer stopped with either the stop or down commands. The restart command is equivalent to abort followed by start.
Start the printer. The printer will print jobs in its queue.
Stop the printer. The printer will finish the current job and will not print anything else in its queue. Even though the printer is stopped, users can still submit jobs to an enabled queue.
Rearrange the queue for printer-name by placing the jobs with the listed job numbers or the jobs belonging to username at the top of the queue. For this command, you cannot use all as the printer-name.
Bring a printer up; the opposite of the down command. Equivalent to start followed by enable.
lpc(8) accepts the above commands on the command line. If you do not enter any commands, lpc(8) enters an interactive mode, where you can enter commands until you type exit, quit, or end-of-file.
If you have been reading straight through this manual, by now you have learned just about everything there is to know about the LPD spooling system that comes with FreeBSD. You can probably appreciate many of its shortcomings, which naturally leads to the question: “What other spooling systems are out there (and work with FreeBSD)?”
LPRng, which purportedly means “LPR: the Next Generation” is a complete rewrite of PLP. Patrick Powell and Justin Mason (the principal maintainer of PLP) collaborated to make LPRng. The main site for LPRng is http://www.lprng.org/.
CUPS, the Common UNIX Printing System, provides a portable printing layer for UNIX-based operating systems. It has been developed by Easy Software Products to promote a standard printing solution for all UNIX vendors and users.
CUPS uses the Internet Printing Protocol (IPP) as the basis for managing print jobs and queues. The Line Printer Daemon (LPD), Server Message Block (SMB), and AppSocket (aka JetDirect) protocols are also supported with reduced functionality. CUPS adds network printer browsing and PostScript Printer Description (PPD) based printing options to support real-world printing under UNIX.
The main site for CUPS is http://www.cups.org/.
HPLIP, the HP Linux Imaging and Printing system, is an HP-developed suite of programs that supports printing, scanning and fax facilities for HP appliances. This suite of programs utilizes the CUPS printing system as a backend for some of its printing features.
The main site for HPLIP is http://hplipopensource.com/hplip-web/index.html.
After performing the simple test with lptest(1), you might have gotten one of the following results instead of the correct printout:
The printer printed the above, but it sat for awhile and did nothing. In fact, you might have needed to press a PRINT REMAINING or FORM FEED button on the printer to get any results to appear.
If this is the case, the printer was probably waiting to see if there was any more data for your job before it printed anything. To fix this problem, you can have the text filter send a FORM FEED character (or whatever is necessary) to the printer. This is usually sufficient to have the printer immediately print any text remaining in its internal buffer. It is also useful to make sure each print job ends on a full sheet, so the next job does not start somewhere on the middle of the last page of the previous job.
The following replacement for the shell script /usr/local/libexec/if-simple prints a form feed after it sends the job to the printer:
#!/bin/sh # # if-simple - Simple text input filter for lpd # Installed in /usr/local/libexec/if-simple # # Simply copies stdin to stdout. Ignores all filter arguments. # Writes a form feed character (\f) after printing job. /bin/cat && printf "\f" && exit 0 exit 2
You got the following on paper:
!"#$%&'()*+,-./01234 "#$%&'()*+,-./012345 #$%&'()*+,-./0123456
You have become another victim of the staircase effect, caused by conflicting interpretations of what characters should indicate a new line. UNIX style operating systems use a single character: ASCII code 10, the line feed (LF). MS-DOS, OS/2®, and others uses a pair of characters, ASCII code 10 and ASCII code 13 (the carriage return or CR). Many printers use the MS-DOS convention for representing new-lines.
When you print with FreeBSD, your text used just the line feed character. The printer, upon seeing a line feed character, advanced the paper one line, but maintained the same horizontal position on the page for the next character to print. That is what the carriage return is for: to move the location of the next character to print to the left edge of the paper.
Here is what FreeBSD wants your printer to do:
Here are some ways to achieve this:
Use the printer's configuration switches or control panel to alter its interpretation of these characters. Check your printer's manual to find out how to do this.
Note: If you boot your system into other operating systems besides FreeBSD, you may have to reconfigure the printer to use a an interpretation for CR and LF characters that those other operating systems use. You might prefer one of the other solutions, below.
Have FreeBSD's serial line driver automatically convert LF to CR+LF. Of course, this works with printers on serial ports only. To enable this feature, use the ms# capability and set the onlcr mode in the /etc/printcap file for the printer.
Send an escape code to the printer to have it temporarily treat LF characters differently. Consult your printer's manual for escape codes that your printer might support. When you find the proper escape code, modify the text filter to send the code first, then send the print job.
Here is an example text filter for printers that understand the Hewlett-Packard PCL escape codes. This filter makes the printer treat LF characters as a LF and CR; then it sends the job; then it sends a form feed to eject the last page of the job. It should work with nearly all Hewlett Packard printers.
#!/bin/sh # # hpif - Simple text input filter for lpd for HP-PCL based printers # Installed in /usr/local/libexec/hpif # # Simply copies stdin to stdout. Ignores all filter arguments. # Tells printer to treat LF as CR+LF. Ejects the page when done. printf "\033&k2G" && cat && printf "\033&l0H" && exit 0 exit 2
Here is an example /etc/printcap from a host called orchid. It has a single printer attached to its first parallel port, a Hewlett Packard LaserJet 3Si named teak. It is using the above script as its text filter:
# # /etc/printcap for host orchid # teak|hp|laserjet|Hewlett Packard LaserJet 3Si:\ :lp=/dev/lpt0:sh:sd=/var/spool/lpd/teak:mx#0:\ :if=/usr/local/libexec/hpif:
The printer never advanced a line. All of the lines of text were printed on top of each other on one line.
This problem is the “opposite” of the staircase effect, described above, and is much rarer. Somewhere, the LF characters that FreeBSD uses to end a line are being treated as CR characters to return the print location to the left edge of the paper, but not also down a line.
Use the printer's configuration switches or control panel to enforce the following interpretation of LF and CR characters:
While printing, the printer did not print a few characters in each line. The problem might have gotten worse as the printer ran, losing more and more characters.
The problem is that the printer cannot keep up with the speed at which the computer sends data over a serial line (this problem should not occur with printers on parallel ports). There are two ways to overcome the problem:
If the printer supports XON/XOFF flow control, have FreeBSD use it by specifying the ixon mode in the ms# capability.
If the printer supports the Request to Send / Clear to Send hardware handshake (commonly known as RTS/CTS), specify the crtscts mode in the ms# capability. Make sure the cable connecting the printer to the computer is correctly wired for hardware flow control.
The printer printed what appeared to be random garbage, but not the desired text.
This is usually another symptom of incorrect communications parameters with a serial printer. Double-check the bps rate in the br capability, and the parity setting in the ms# capability; make sure the printer is using the same settings as specified in the /etc/printcap file.
If nothing happened, the problem is probably within FreeBSD and not the hardware. Add the log file (lf) capability to the entry for the printer you are debugging in the /etc/printcap file. For example, here is the entry for rattan, with the lf capability:
rattan|line|diablo|lp|Diablo 630 Line Printer:\ :sh:sd=/var/spool/lpd/rattan:\ :lp=/dev/lpt0:\ :if=/usr/local/libexec/if-simple:\ :lf=/var/log/rattan.log
Then, try printing again. Check the log file (in our example, /var/log/rattan.log) to see any error messages that might appear. Based on the messages you see, try to correct the problem.
If you do not specify a lf capability, LPD uses /dev/console as a default.
FreeBSD provides binary compatibility with several other UNIX like operating systems, including Linux. At this point, you may be asking yourself why exactly, does FreeBSD need to be able to run Linux binaries? The answer to that question is quite simple. Many companies and developers develop only for Linux, since it is the latest “hot thing” in the computing world. That leaves the rest of us FreeBSD users bugging these same companies and developers to put out native FreeBSD versions of their applications. The problem is, that most of these companies do not really realize how many people would use their product if there were FreeBSD versions too, and most continue to only develop for Linux. So what is a FreeBSD user to do? This is where the Linux binary compatibility of FreeBSD comes into play.
In a nutshell, the compatibility allows FreeBSD users to run about 90% of all Linux applications without modification. This includes applications such as StarOffice, the Linux version of Netscape, Adobe Acrobat, RealPlayer, Oracle, WordPerfect®, Doom, Quake, and more. It is also reported that in some situations, Linux binaries perform better on FreeBSD than they do under Linux.
There are, however, some Linux-specific operating system features that are not supported under FreeBSD. Linux binaries will not work on FreeBSD if they overly use i386 specific calls, such as enabling virtual 8086 mode.
After reading this chapter, you will know:
How to enable Linux binary compatibility on your system.
How to install additional Linux shared libraries.
How to install Linux applications on your FreeBSD system.
The implementation details of Linux compatibility in FreeBSD.
Before reading this chapter, you should:
Know how to install additional third-party software (Chapter 5).
Linux binary compatibility is not turned on by default. The easiest way to enable this functionality is to load the linux KLD object (“Kernel LoaDable object”). You can load this module by typing the following as root:
# kldload linux
If you would like Linux compatibility to always be enabled, then you should add the following line to /etc/rc.conf:
linux_enable="YES"
The kldstat(8) command can be used to verify that the KLD is loaded:
% kldstat Id Refs Address Size Name 1 2 0xc0100000 16bdb8 kernel 7 1 0xc24db000 d000 linux.ko
If for some reason you do not want to or cannot load the KLD, then you may statically link Linux binary compatibility into the kernel by adding options COMPAT_LINUX to your kernel configuration file. Then install your new kernel as described in Chapter 9.
This can be done one of two ways, either by using the linux_base port, or by installing them manually.
This is by far the easiest method to use when installing the runtime libraries. It is just like installing any other port from the Ports Collection:
# cd /usr/ports/emulators/linux_base-f10 # make install distclean
Note: On FreeBSD systems prior to FreeBSD 8.0, you will have to use the emulators/linux_base-fc4 port instead of emulators/linux_base-f10.
You should now have working Linux binary compatibility. Some programs may complain about incorrect minor versions of the system libraries. In general, however, this does not seem to be a problem.
Note: There may be multiple versions of the emulators/linux_base port available, corresponding to different versions of various Linux distributions. You should install the port most closely resembling the requirements of the Linux applications you would like to install.
If you do not have the “ports” collection installed, you can install the libraries by hand instead. You will need the Linux shared libraries that the program depends on and the runtime linker. Also, you will need to create a “shadow root” directory, /compat/linux, for Linux libraries on your FreeBSD system. Any shared libraries opened by Linux programs run under FreeBSD will look in this tree first. So, if a Linux program loads, for example, /lib/libc.so, FreeBSD will first try to open /compat/linux/lib/libc.so, and if that does not exist, it will then try /lib/libc.so. Shared libraries should be installed in the shadow tree /compat/linux/lib rather than the paths that the Linux ld.so reports.
Generally, you will need to look for the shared libraries that Linux binaries depend on only the first few times that you install a Linux program on your FreeBSD system. After a while, you will have a sufficient set of Linux shared libraries on your system to be able to run newly imported Linux binaries without any extra work.
What if you install the linux_base port and your application still complains about missing shared libraries? How do you know which shared libraries Linux binaries need, and where to get them? Basically, there are 2 possibilities (when following these instructions you will need to be root on your FreeBSD system).
If you have access to a Linux system, see what shared libraries the application needs, and copy them to your FreeBSD system. Look at the following example:
Let us assume you used FTP to get the Linux binary of Doom, and put it on a Linux system you have access to. You then can check which shared libraries it needs by running ldd linuxdoom, like so:
% ldd linuxdoom libXt.so.3 (DLL Jump 3.1) => /usr/X11/lib/libXt.so.3.1.0 libX11.so.3 (DLL Jump 3.1) => /usr/X11/lib/libX11.so.3.1.0 libc.so.4 (DLL Jump 4.5pl26) => /lib/libc.so.4.6.29
You would need to get all the files from the last column, and put them under /compat/linux, with the names in the first column as symbolic links pointing to them. This means you eventually have these files on your FreeBSD system:
/compat/linux/usr/X11/lib/libXt.so.3.1.0 /compat/linux/usr/X11/lib/libXt.so.3 -> libXt.so.3.1.0 /compat/linux/usr/X11/lib/libX11.so.3.1.0 /compat/linux/usr/X11/lib/libX11.so.3 -> libX11.so.3.1.0 /compat/linux/lib/libc.so.4.6.29 /compat/linux/lib/libc.so.4 -> libc.so.4.6.29
Note: Note that if you already have a Linux shared library with a matching major revision number to the first column of the ldd output, you will not need to copy the file named in the last column to your system, the one you already have should work. It is advisable to copy the shared library anyway if it is a newer version, though. You can remove the old one, as long as you make the symbolic link point to the new one. So, if you have these libraries on your system:
/compat/linux/lib/libc.so.4.6.27 /compat/linux/lib/libc.so.4 -> libc.so.4.6.27and you find a new binary that claims to require a later version according to the output of ldd:
libc.so.4 (DLL Jump 4.5pl26) -> libc.so.4.6.29If it is only one or two versions out of date in the trailing digit then do not worry about copying /lib/libc.so.4.6.29 too, because the program should work fine with the slightly older version. However, if you like, you can decide to replace the libc.so anyway, and that should leave you with:
/compat/linux/lib/libc.so.4.6.29 /compat/linux/lib/libc.so.4 -> libc.so.4.6.29
Note: The symbolic link mechanism is only needed for Linux binaries. The FreeBSD runtime linker takes care of looking for matching major revision numbers itself and you do not need to worry about it.
ELF binaries sometimes require an extra step of “branding”. If you attempt to run an unbranded ELF binary, you will get an error message like the following:
% ./my-linux-elf-binary ELF binary type not known Abort
To help the FreeBSD kernel distinguish between a FreeBSD ELF binary and a Linux binary, use the brandelf(1) utility.
% brandelf -t Linux my-linux-elf-binary
The GNU toolchain now places the appropriate branding information into ELF binaries automatically, so this step should become increasingly unnecessary in the future.
FreeBSD has its own package database and it is used to track all ports (Linux ports as well). So the Linux RPM database is not used (not supported).
However if you need to install a random Linux RPM-based application it can be achieved by:
# cd /compat/linux # rpm2cpio -q < /path/to/linux.archive.rpm | cpio -id
Then brandelf installed ELF binaries (not libraries!). You will not be able to do a clean uninstall, but it may help you to do tests.
If DNS does not work or you get this message:
resolv+: "bind" is an invalid keyword resolv+: "hosts" is an invalid keyword
You will need to configure a /compat/linux/etc/host.conf file containing:
order hosts, bind multi on
The order here specifies that /etc/hosts is searched first and DNS is searched second. When /compat/linux/etc/host.conf is not installed, Linux applications find FreeBSD's /etc/host.conf and complain about the incompatible FreeBSD syntax. You should remove bind if you have not configured a name server using the /etc/resolv.conf file.
This document describes the process of installing the Linux version of Mathematica 5.X onto a FreeBSD system.
The Linux version of Mathematica or Mathematica for Students can be ordered directly from Wolfram at http://www.wolfram.com/.
First, you have to tell FreeBSD that Mathematica's Linux binaries use the Linux ABI. The easiest way to do so is to set the default ELF brand to Linux for all unbranded binaries with the command:
# sysctl kern.fallback_elf_brand=3
This will make FreeBSD assume that unbranded ELF binaries use the Linux ABI and so you should be able to run the installer straight from the CDROM.
Now, copy the file MathInstaller to your hard drive:
# mount /cdrom # cp /cdrom/Unix/Installers/Linux/MathInstaller /localdir/
and in this file, replace /bin/sh in the first line by /compat/linux/bin/sh. This makes sure that the installer is executed by the Linux version of sh(1). Next, replace all occurrences of Linux) by FreeBSD) with a text editor or the script below in the next section. This tells the Mathematica installer, who calls uname -s to determine the operating system, to treat FreeBSD as a Linux-like operating system. Invoking MathInstaller will now install Mathematica.
The shell scripts that Mathematica created during installation have to be modified before you can use them. If you chose /usr/local/bin as the directory to place the Mathematica executables in, you will find symlinks in this directory to files called math, mathematica, Mathematica, and MathKernel. In each of these, replace Linux) by FreeBSD) with a text editor or the following shell script:
#!/bin/sh cd /usr/local/bin for i in math mathematica Mathematica MathKernel do sed 's/Linux)/FreeBSD)/g' $i > $i.tmp sed 's/\/bin\/sh/\/compat\/linux\/bin\/sh/g' $i.tmp > $i rm $i.tmp chmod a+x $i done
When you start Mathematica for the first time, you will be asked for a password. If you have not yet obtained a password from Wolfram, run the program mathinfo in the installation directory to obtain your “machine ID”. This machine ID is based solely on the MAC address of your first Ethernet card, so you cannot run your copy of Mathematica on different machines.
When you register with Wolfram, either by email, phone or fax, you will give them the “machine ID” and they will respond with a corresponding password consisting of groups of numbers.
Mathematica uses some special fonts to display characters not present in any of the standard font sets (integrals, sums, Greek letters, etc.). The X protocol requires these fonts to be install locally. This means you will have to copy these fonts from the CDROM or from a host with Mathematica installed to your local machine. These fonts are normally stored in /cdrom/Unix/Files/SystemFiles/Fonts on the CDROM, or /usr/local/mathematica/SystemFiles/Fonts on your hard drive. The actual fonts are in the subdirectories Type1 and X. There are several ways to use them, as described below.
The first way is to copy them into one of the existing font directories in /usr/X11R6/lib/X11/fonts. This will require editing the fonts.dir file, adding the font names to it, and changing the number of fonts on the first line. Alternatively, you should also just be able to run mkfontdir(1) in the directory you have copied them to.
The second way to do this is to copy the directories to /usr/X11R6/lib/X11/fonts:
# cd /usr/X11R6/lib/X11/fonts # mkdir X # mkdir MathType1 # cd /cdrom/Unix/Files/SystemFiles/Fonts # cp X/* /usr/X11R6/lib/X11/fonts/X # cp Type1/* /usr/X11R6/lib/X11/fonts/MathType1 # cd /usr/X11R6/lib/X11/fonts/X # mkfontdir # cd ../MathType1 # mkfontdir
Now add the new font directories to your font path:
# xset fp+ /usr/X11R6/lib/X11/fonts/X # xset fp+ /usr/X11R6/lib/X11/fonts/MathType1 # xset fp rehash
If you are using the Xorg server, you can have these font directories loaded automatically by adding them to your xorg.conf file.
If you do not already have a directory called /usr/X11R6/lib/X11/fonts/Type1, you can change the name of the MathType1 directory in the example above to Type1.
Maple™ is a commercial mathematics program similar to Mathematica. You must purchase this software from http://www.maplesoft.com/ and then register there for a license file. To install this software on FreeBSD, please follow these simple steps.
Execute the INSTALL shell script from the product distribution. Choose the “RedHat” option when prompted by the installation program. A typical installation directory might be /usr/local/maple.
If you have not done so, order a license for Maple from Maple Waterloo Software (http://register.maplesoft.com/) and copy it to /usr/local/maple/license/license.dat.
Install the FLEXlm license manager by running the INSTALL_LIC install shell script that comes with Maple. Specify the primary hostname for your machine for the license server.
Patch the /usr/local/maple/bin/maple.system.type file with the following:
----- snip ------------------ *** maple.system.type.orig Sun Jul 8 16:35:33 2001 --- maple.system.type Sun Jul 8 16:35:51 2001 *************** *** 72,77 **** --- 72,78 ---- # the IBM RS/6000 AIX case MAPLE_BIN="bin.IBM_RISC_UNIX" ;; + "FreeBSD"|\ "Linux") # the Linux/x86 case # We have two Linux implementations, one for Red Hat and ----- snip end of patch -----
Please note that after the "FreeBSD"|\ no other whitespace should be present.
This patch instructs Maple to recognize “FreeBSD” as a type of Linux system. The bin/maple shell script calls the bin/maple.system.type shell script which in turn calls uname -a to find out the operating system name. Depending on the OS name it will find out which binaries to use.
Start the license server.
The following script, installed as /usr/local/etc/rc.d/lmgrd.sh is a convenient way to start up lmgrd:
----- snip ------------ #! /bin/sh PATH=/usr/local/sbin:/usr/local/bin:/sbin:/bin:/usr/sbin:/usr/bin:/usr/X11R6/bin PATH=${PATH}:/usr/local/maple/bin:/usr/local/maple/FLEXlm/UNIX/LINUX export PATH LICENSE_FILE=/usr/local/maple/license/license.dat LOG=/var/log/lmgrd.log case "$1" in start) lmgrd -c ${LICENSE_FILE} 2>> ${LOG} 1>&2 echo -n " lmgrd" ;; stop) lmgrd -c ${LICENSE_FILE} -x lmdown 2>> ${LOG} 1>&2 ;; *) echo "Usage: `basename $0` {start|stop}" 1>&2 exit 64 ;; esac exit 0 ----- snip ------------
Test-start Maple:
% cd /usr/local/maple/bin % ./xmaple
You should be up and running. Make sure to write Maplesoft to let them know you would like a native FreeBSD version!
The FLEXlm license manager can be a difficult tool to work with. Additional documentation on the subject can be found at http://www.globetrotter.com/.
lmgrd is known to be very picky about the license file and to core dump if there are any problems. A correct license file should look like this:
# ======================================================= # License File for UNIX Installations ("Pointer File") # ======================================================= SERVER chillig ANY #USE_SERVER VENDOR maplelmg FEATURE Maple maplelmg 2000.0831 permanent 1 XXXXXXXXXXXX \ PLATFORMS=i86_r ISSUER="Waterloo Maple Inc." \ ISSUED=11-may-2000 NOTICE=" Technische Universitat Wien" \ SN=XXXXXXXXX
Note: Serial number and key 'X''ed out. chillig is a hostname.
Editing the license file works as long as you do not touch the “FEATURE” line (which is protected by the license key).
This document describes the process of installing the Linux version of MATLAB® version 6.5 onto a FreeBSD system. It works quite well, with the exception of the Java Virtual Machine™ (see Section 11.5.3).
The Linux version of MATLAB can be ordered directly from The MathWorks at http://www.mathworks.com. Make sure you also get the license file or instructions how to create it. While you are there, let them know you would like a native FreeBSD version of their software.
To install MATLAB, do the following:
Insert the installation CD and mount it. Become root, as recommended by the installation script. To start the installation script type:
# /compat/linux/bin/sh /cdrom/install
Tip: The installer is graphical. If you get errors about not being able to open a display, type setenv HOME ~USER, where USER is the user you did a su(1) as.
When asked for the MATLAB root directory, type: /compat/linux/usr/local/matlab.
Tip: For easier typing on the rest of the installation process, type this at your shell prompt: set MATLAB=/compat/linux/usr/local/matlab
Edit the license file as instructed when obtaining the MATLAB license.
Tip: You can prepare this file in advance using your favorite editor, and copy it to $MATLAB/license.dat before the installer asks you to edit it.
Complete the installation process.
At this point your MATLAB installation is complete. The following steps apply “glue” to connect it to your FreeBSD system.
Create symlinks for the license manager scripts:
# ln -s $MATLAB/etc/lmboot /usr/local/etc/lmboot_TMW # ln -s $MATLAB/etc/lmdown /usr/local/etc/lmdown_TMW
Create a startup file at /usr/local/etc/rc.d/flexlm.sh. The example below is a modified version of the distributed $MATLAB/etc/rc.lm.glnx86. The changes are file locations, and startup of the license manager under Linux emulation.
#!/bin/sh case "$1" in start) if [ -f /usr/local/etc/lmboot_TMW ]; then /compat/linux/bin/sh /usr/local/etc/lmboot_TMW -u username && echo 'MATLAB_lmgrd' fi ;; stop) if [ -f /usr/local/etc/lmdown_TMW ]; then /compat/linux/bin/sh /usr/local/etc/lmdown_TMW > /dev/null 2>&1 fi ;; *) echo "Usage: $0 {start|stop}" exit 1 ;; esac exit 0
Important: The file must be made executable:
# chmod +x /usr/local/etc/rc.d/flexlm.shYou must also replace username above with the name of a valid user on your system (and not root).
Start the license manager with the command:
# /usr/local/etc/rc.d/flexlm.sh start
Change the Java Runtime Environment (JRE) link to one working under FreeBSD:
# cd $MATLAB/sys/java/jre/glnx86/ # unlink jre; ln -s ./jre1.1.8 ./jre
Place the following startup script in /usr/local/bin/matlab:
#!/bin/sh /compat/linux/bin/sh /compat/linux/usr/local/matlab/bin/matlab "$@"
Then type the command chmod +x /usr/local/bin/matlab.
Tip: Depending on your version of emulators/linux_base, you may run into errors when running this script. To avoid that, edit the file /compat/linux/usr/local/matlab/bin/matlab, and change the line that says:
if [ `expr "$lscmd" : '.*->.*'` -ne 0 ]; then(in version 13.0.1 it is on line 410) to this line:
if test -L $newbase; then
The following is needed to solve a problem with MATLAB not exiting correctly.
Create a file $MATLAB/toolbox/local/finish.m, and in it put the single line:
! $MATLAB/bin/finish.sh
Note: The $MATLAB is literal.
Tip: In the same directory, you will find the files finishsav.m and finishdlg.m, which let you save your workspace before quitting. If you use either of them, insert the line above immediately after the save command.
Create a file $MATLAB/bin/finish.sh, which will contain the following:
#!/compat/linux/bin/sh (sleep 5; killall -1 matlab_helper) & exit 0
Make the file executable:
# chmod +x $MATLAB/bin/finish.sh
This document describes the process of installing Oracle 8.0.5 and Oracle 8.0.5.1 Enterprise Edition for Linux onto a FreeBSD machine.
Make sure you have both emulators/linux_base and devel/linux_devtools from the Ports Collection installed. If you run into difficulties with these ports, you may have to use the packages or older versions available in the Ports Collection.
If you want to run the intelligent agent, you will also need to install the Red Hat Tcl package: tcl-8.0.3-20.i386.rpm. The general command for installing packages with the official RPM port (archivers/rpm) is:
# rpm -i --ignoreos --root /compat/linux --dbpath /var/lib/rpm package
Installation of the package should not generate any errors.
Before you can install Oracle, you need to set up a proper environment. This document only describes what to do specially to run Oracle for Linux on FreeBSD, not what has been described in the Oracle installation guide.
As described in the Oracle installation guide, you need to set the maximum size of shared memory. Do not use SHMMAX under FreeBSD. SHMMAX is merely calculated out of SHMMAXPGS and PGSIZE. Therefore define SHMMAXPGS. All other options can be used as described in the guide. For example:
options SHMMAXPGS=10000 options SHMMNI=100 options SHMSEG=10 options SEMMNS=200 options SEMMNI=70 options SEMMSL=61
Set these options to suit your intended use of Oracle.
Also, make sure you have the following options in your kernel configuration file:
options SYSVSHM #SysV shared memory options SYSVSEM #SysV semaphores options SYSVMSG #SysV interprocess communication
Create an oracle account just as you would create any other account. The oracle account is special only that you need to give it a Linux shell. Add /compat/linux/bin/bash to /etc/shells and set the shell for the oracle account to /compat/linux/bin/bash.
Besides the normal Oracle variables, such as ORACLE_HOME and ORACLE_SID you must set the following environment variables:
Variable | Value |
---|---|
LD_LIBRARY_PATH | $ORACLE_HOME/lib |
CLASSPATH | $ORACLE_HOME/jdbc/lib/classes111.zip |
PATH | /compat/linux/bin /compat/linux/sbin /compat/linux/usr/bin /compat/linux/usr/sbin /bin /sbin /usr/bin /usr/sbin /usr/local/bin $ORACLE_HOME/bin |
It is advised to set all the environment variables in .profile. A complete example is:
ORACLE_BASE=/oracle; export ORACLE_BASE ORACLE_HOME=/oracle; export ORACLE_HOME LD_LIBRARY_PATH=$ORACLE_HOME/lib export LD_LIBRARY_PATH ORACLE_SID=ORCL; export ORACLE_SID ORACLE_TERM=386x; export ORACLE_TERM CLASSPATH=$ORACLE_HOME/jdbc/lib/classes111.zip export CLASSPATH PATH=/compat/linux/bin:/compat/linux/sbin:/compat/linux/usr/bin PATH=$PATH:/compat/linux/usr/sbin:/bin:/sbin:/usr/bin:/usr/sbin PATH=$PATH:/usr/local/bin:$ORACLE_HOME/bin export PATH
Due to a slight inconsistency in the Linux emulator, you need to create a directory named .oracle in /var/tmp before you start the installer. Let it be owned by the oracle user. You should be able to install Oracle without any problems. If you have problems, check your Oracle distribution and/or configuration first! After you have installed Oracle, apply the patches described in the next two subsections.
A frequent problem is that the TCP protocol adapter is not installed right. As a consequence, you cannot start any TCP listeners. The following actions help solve this problem:
# cd $ORACLE_HOME/network/lib # make -f ins_network.mk ntcontab.o # cd $ORACLE_HOME/lib # ar r libnetwork.a ntcontab.o # cd $ORACLE_HOME/network/lib # make -f ins_network.mk install
Do not forget to run root.sh again!
When installing Oracle, some actions, which need to be performed as root, are recorded in a shell script called root.sh. This script is written in the orainst directory. Apply the following patch to root.sh, to have it use to proper location of chown or alternatively run the script under a Linux native shell.
*** orainst/root.sh.orig Tue Oct 6 21:57:33 1998 --- orainst/root.sh Mon Dec 28 15:58:53 1998 *************** *** 31,37 **** # This is the default value for CHOWN # It will redefined later in this script for those ports # which have it conditionally defined in ss_install.h ! CHOWN=/bin/chown # # Define variables to be used in this script --- 31,37 ---- # This is the default value for CHOWN # It will redefined later in this script for those ports # which have it conditionally defined in ss_install.h ! CHOWN=/usr/sbin/chown # # Define variables to be used in this script
When you do not install Oracle from CD, you can patch the source for root.sh. It is called rthd.sh and is located in the orainst directory in the source tree.
The script genclntsh is used to create a single shared client library. It is used when building the demos. Apply the following patch to comment out the definition of PATH:
*** bin/genclntsh.orig Wed Sep 30 07:37:19 1998 --- bin/genclntsh Tue Dec 22 15:36:49 1998 *************** *** 32,38 **** # # Explicit path to ensure that we're using the correct commands #PATH=/usr/bin:/usr/ccs/bin export PATH ! PATH=/usr/local/bin:/bin:/usr/bin:/usr/X11R6/bin export PATH # # each product MUST provide a $PRODUCT/admin/shrept.lst --- 32,38 ---- # # Explicit path to ensure that we're using the correct commands #PATH=/usr/bin:/usr/ccs/bin export PATH ! #PATH=/usr/local/bin:/bin:/usr/bin:/usr/X11R6/bin export PATH # # each product MUST provide a $PRODUCT/admin/shrept.lst
When you have followed the instructions, you should be able to run Oracle as if it was run on Linux itself.
If you are curious as to how the Linux binary compatibility works, this is the section
you want to read. Most of what follows is based heavily on an email written to FreeBSD chat
mailing list by Terry Lambert <[email protected]>
(Message ID:
<[email protected]>).
FreeBSD has an abstraction called an “execution class loader”. This is a wedge into the execve(2) system call.
What happens is that FreeBSD has a list of loaders, instead of a single loader with a fallback to the #! loader for running any shell interpreters or shell scripts.
Historically, the only loader on the UNIX platform examined the magic number (generally the first 4 or 8 bytes of the file) to see if it was a binary known to the system, and if so, invoked the binary loader.
If it was not the binary type for the system, the execve(2) call returned a failure, and the shell attempted to start executing it as shell commands.
The assumption was a default of “whatever the current shell is”.
Later, a hack was made for sh(1) to examine the first two characters, and if they were :\n, then it invoked the csh(1) shell instead (we believe SCO first made this hack).
What FreeBSD does now is go through a list of loaders, with a generic #! loader that knows about interpreters as the characters which follow to the next whitespace next to last, followed by a fallback to /bin/sh.
For the Linux ABI support, FreeBSD sees the magic number as an ELF binary (it makes no distinction between FreeBSD, Solaris, Linux, or any other OS which has an ELF image type, at this point).
The ELF loader looks for a specialized brand, which is a comment section in the ELF image, and which is not present on SVR4/Solaris ELF binaries.
For Linux binaries to function, they must be branded as type Linux from brandelf(1):
# brandelf -t Linux file
When this is done, the ELF loader will see the Linux brand on the file.
When the ELF loader sees the Linux brand, the loader replaces a pointer in the proc structure. All system calls are indexed through this pointer (in a traditional UNIX system, this would be the sysent[] structure array, containing the system calls). In addition, the process is flagged for special handling of the trap vector for the signal trampoline code, and several other (minor) fix-ups that are handled by the Linux kernel module.
The Linux system call vector contains, among other things, a list of sysent[] entries whose addresses reside in the kernel module.
When a system call is called by the Linux binary, the trap code dereferences the system call function pointer off the proc structure, and gets the Linux, not the FreeBSD, system call entry points.
In addition, the Linux mode dynamically reroots lookups; this is, in effect, what the union
option to file system mounts (not the unionfs file system type!)
does. First, an attempt is made to lookup the file in the /compat/linux/original-path
directory, then only if that
fails, the lookup is done in the /original-path directory. This makes sure that
binaries that require other binaries can run (e.g., the Linux toolchain can all run
under Linux ABI support). It also means that the Linux binaries can load and
execute FreeBSD binaries, if there are no corresponding Linux binaries present, and
that you could place a uname(1) command
in the /compat/linux directory tree to ensure that the
Linux binaries could not tell they were not running on Linux.
In effect, there is a Linux kernel in the FreeBSD kernel; the various underlying functions that implement all of the services provided by the kernel are identical to both the FreeBSD system call table entries, and the Linux system call table entries: file system operations, virtual memory operations, signal delivery, System V IPC, etc… The only difference is that FreeBSD binaries get the FreeBSD glue functions, and Linux binaries get the Linux glue functions (most older OS's only had their own glue functions: addresses of functions in a static global sysent[] structure array, instead of addresses of functions dereferenced off a dynamically initialized pointer in the proc structure of the process making the call).
Which one is the native FreeBSD ABI? It does not matter. Basically the only difference is that (currently; this could easily be changed in a future release, and probably will be after this) the FreeBSD glue functions are statically linked into the kernel, and the Linux glue functions can be statically linked, or they can be accessed via a kernel module.
Yeah, but is this really emulation? No. It is an ABI implementation, not an emulation. There is no emulator (or simulator, to cut off the next question) involved.
So why is it sometimes called “Linux emulation”? To make it hard to sell FreeBSD! Really, it is because the historical implementation was done at a time when there was really no word other than that to describe what was going on; saying that FreeBSD ran Linux binaries was not true, if you did not compile the code in or load a module, and there needed to be a word to describe what was being loaded—hence “the Linux emulator”.
The remaining chapters of the FreeBSD Handbook cover all aspects of FreeBSD system administration. Each chapter starts by describing what you will learn as a result of reading the chapter, and also details what you are expected to know before tackling the material.
These chapters are designed to be read when you need the information. You do not have to read them in any particular order, nor do you need to read all of them before you can begin using FreeBSD.
One of the important aspects of FreeBSD is system configuration. Correct system configuration will help prevent headaches during future upgrades. This chapter will explain much of the FreeBSD configuration process, including some of the parameters which can be set to tune a FreeBSD system.
After reading this chapter, you will know:
How to efficiently work with file systems and swap partitions.
The basics of rc.conf configuration and /usr/local/etc/rc.d startup systems.
How to configure and test a network card.
How to configure virtual hosts on your network devices.
How to use the various configuration files in /etc.
How to tune FreeBSD using sysctl variables.
How to tune disk performance and modify kernel limitations.
Before reading this chapter, you should:
When laying out file systems with bsdlabel(8) or sysinstall(8), remember that hard drives transfer data faster from the outer tracks to the inner. Thus smaller and heavier-accessed file systems should be closer to the outside of the drive, while larger partitions like /usr should be placed toward the inner parts of the disk. It is a good idea to create partitions in an order similar to: root, swap, /var, /usr.
The size of the /var partition reflects the intended machine usage. The /var file system is used to hold mailboxes, log files, and printer spools. Mailboxes and log files can grow to unexpected sizes depending on how many users exist and how long log files are kept. Most users will rarely need more than about a gigabyte of free disk space in /var.
Note: There are a few times that a lot of disk space is required in /var/tmp. When new software is installed with pkg_add(1) the packaging tools extract a temporary copy of the packages under /var/tmp. Large software packages, like Firefox, OpenOffice or LibreOffice may be tricky to install if there is not enough disk space under /var/tmp.
The /usr partition holds many of the files required to support the system, including the ports(7) collection (recommended) and the source code (optional). Both the ports and the sources of the base system are optional at install time, but we recommend at least 2 gigabytes for this partition.
When selecting partition sizes, keep the space requirements in mind. Running out of space in one partition while barely using another can be a hassle.
Note: Some users have found that sysinstall(8)'s Auto-defaults partition sizer will sometimes select smaller than adequate /var and / partitions. Partition wisely and generously.
As a rule of thumb, the swap partition should be about double the size of system memory (RAM). For example, if the machine has 128 megabytes of memory, the swap file should be 256 megabytes. Systems with less memory may perform better with more swap. Less than 256 megabytes of swap is not recommended and memory expansion should be considered. The kernel's VM paging algorithms are tuned to perform best when the swap partition is at least two times the size of main memory. Configuring too little swap can lead to inefficiencies in the VM page scanning code and might create issues later if more memory is added.
On larger systems with multiple SCSI disks (or multiple IDE disks operating on different controllers), it is recommend that a swap is configured on each drive (up to four drives). The swap partitions should be approximately the same size. The kernel can handle arbitrary sizes but internal data structures scale to 4 times the largest swap partition. Keeping the swap partitions near the same size will allow the kernel to optimally stripe swap space across disks. Large swap sizes are fine, even if swap is not used much. It might be easier to recover from a runaway program before being forced to reboot.
Several users think a single large partition will be fine, but there are several reasons why this is a bad idea. First, each partition has different operational characteristics and separating them allows the file system to tune accordingly. For example, the root and /usr partitions are read-mostly, without much writing. While a lot of reading and writing could occur in /var and /var/tmp.
By properly partitioning a system, fragmentation introduced in the smaller write heavy partitions will not bleed over into the mostly-read partitions. Keeping the write-loaded partitions closer to the disk's edge, will increase I/O performance in the partitions where it occurs the most. Now while I/O performance in the larger partitions may be needed, shifting them more toward the edge of the disk will not lead to a significant performance improvement over moving /var to the edge. Finally, there are safety concerns. A smaller, neater root partition which is mostly read-only has a greater chance of surviving a bad crash.
The principal location for system configuration information is within /etc/rc.conf. This file contains a wide range of configuration information, principally used at system startup to configure the system. Its name directly implies this; it is configuration information for the rc* files.
An administrator should make entries in rc.conf to override the default settings from /etc/defaults/rc.conf. The defaults file should not be copied verbatim to /etc - it contains default values, not examples. All system-specific changes should be made in the rc.conf file itself.
A number of strategies may be applied in clustered applications to separate site-wide configuration from system-specific configuration in order to keep administration overhead down. The recommended approach is to place system-specific configuration into /etc/rc.conf.local. For example:
/etc/rc.conf:
sshd_enable="YES" keyrate="fast" defaultrouter="10.1.1.254"
/etc/rc.conf.local:
hostname="node1.example.org" ifconfig_fxp0="inet 10.1.1.1/8"
rc.conf can then be distributed to every system using rsync or a similar program, while rc.conf.local remains unique.
Upgrading the system using sysinstall(8) or make world will not overwrite rc.conf, so system configuration information will not be lost.
Tip: The /etc/rc.conf configuration file is parsed by sh(1). This allows system operators to add a certain amount of logic to this file, which may help to create very complex configuration scenarios. Please see rc.conf(5) for further information on this topic.
Typically, installed applications have their own configuration files, with their own syntax, etc. It is important that these files be kept separate from the base system, so that they may be easily located and managed by the package management tools.
Typically, these files are installed in /usr/local/etc. In the case where an application has a large number of configuration files, a subdirectory will be created to hold them.
Normally, when a port or package is installed, sample configuration files are also installed. These are usually identified with a .default suffix. If there are no existing configuration files for the application, they will be created by copying the .default files.
For example, consider the contents of the directory /usr/local/etc/apache:
-rw-r--r-- 1 root wheel 2184 May 20 1998 access.conf -rw-r--r-- 1 root wheel 2184 May 20 1998 access.conf.default -rw-r--r-- 1 root wheel 9555 May 20 1998 httpd.conf -rw-r--r-- 1 root wheel 9555 May 20 1998 httpd.conf.default -rw-r--r-- 1 root wheel 12205 May 20 1998 magic -rw-r--r-- 1 root wheel 12205 May 20 1998 magic.default -rw-r--r-- 1 root wheel 2700 May 20 1998 mime.types -rw-r--r-- 1 root wheel 2700 May 20 1998 mime.types.default -rw-r--r-- 1 root wheel 7980 May 20 1998 srm.conf -rw-r--r-- 1 root wheel 7933 May 20 1998 srm.conf.default
The file sizes show that only srm.conf has been changed. A later update of the Apache port would not overwrite this changed file.
Many users choose to install third party software on FreeBSD from the Ports Collection. In many of these situations it may be necessary to configure the software in a manner which will allow it to be started upon system initialization. Services, such as mail/postfix or www/apache22 are just two of the many software packages which may be started during system initialization. This section explains the procedures available for starting third party software.
In FreeBSD, most included services, such as cron(8), are started through the system start up scripts. These scripts may differ depending on FreeBSD or vendor version; however, the most important aspect to consider is that their start up configuration can be handled through simple startup scripts.
Now that FreeBSD includes rc.d, configuration of application startup has become easier, and more featureful. Using the key words discussed in the rc.d section, applications may now be set to start after certain other services for example DNS; may permit extra flags to be passed through rc.conf in place of hard coded flags in the start up script, etc. A basic script may look similar to the following:
#!/bin/sh # # PROVIDE: utility # REQUIRE: DAEMON # KEYWORD: shutdown . /etc/rc.subr name=utility rcvar=utility_enable command="/usr/local/sbin/utility" load_rc_config $name # # DO NOT CHANGE THESE DEFAULT VALUES HERE # SET THEM IN THE /etc/rc.conf FILE # utility_enable=${utility_enable-"NO"} pidfile=${utility_pidfile-"/var/run/utility.pid"} run_rc_command "$1"
This script will ensure that the provided utility will be started after the DAEMON pseudo-service. It also provides a method for setting and tracking the PID, or process ID file.
This application could then have the following line placed in /etc/rc.conf:
utility_enable="YES"
This method also allows for easier manipulation of the command line arguments, inclusion of the default functions provided in /etc/rc.subr, compatibility with the rcorder(8) utility and provides for easier configuration via rc.conf.
Other services, such as POP3 server daemons, IMAP, etc. could be started using inetd(8). This involves installing the service utility from the Ports Collection with a configuration line added to /etc/inetd.conf, or by uncommenting one of the current configuration lines. Working with inetd and its configuration is described in depth in the inetd section.
In some cases it may make more sense to use the cron(8) daemon to start system services. This approach has a number of advantages because cron runs these processes as the crontab's file owner. This allows regular users to start and maintain some applications.
The cron utility provides a unique feature, @reboot, which may be used in place of the time specification. This will cause the job to be run when cron(8) is started, normally during system initialization.
One of the most useful utilities in FreeBSD is cron(8). The cron utility runs in the background and constantly checks the /etc/crontab file. The cron utility also checks the /var/cron/tabs directory, in search of new crontab files. These crontab files store information about specific functions which cron is supposed to perform at certain times.
The cron utility uses two different types of configuration files, the system crontab and user crontabs. These formats only differ in the sixth field and later. In the system crontab, cron will run the command as the user specified in the sixth field. In a user crontab, all commands run as the user who created the crontab, so the sixth field is the last field; this is an important security feature. The final field is always the command to run.
Note: User crontabs allow individual users to schedule tasks without the need for root privileges. Commands in a user's crontab run with the permissions of the user who owns the crontab.
The root user can have a user crontab just like any other user. The root user crontab is separate from /etc/crontab (the system crontab). Because the system crontab effectively invokes the specified commands as root there is usually no need to create a user crontab for root.
Let us take a look at /etc/crontab, the system crontab:
# /etc/crontab - root's crontab for FreeBSD # # $FreeBSD: src/etc/crontab,v 1.32 2002/11/22 16:13:39 tom Exp $ # # SHELL=/bin/sh PATH=/etc:/bin:/sbin:/usr/bin:/usr/sbin HOME=/var/log # # #minute hour mday month wday who command # # */5 * * * * root /usr/libexec/atrun
Commands can have any number of flags passed to them; however, commands which extend to multiple lines need to be broken with the backslash “\” continuation character.
This is the basic setup for every crontab file, although there is one thing different about this one. Field number six, where we specified the username, only exists in the system crontab. This field should be omitted for individual user crontab files.
Important: Do not use the procedure described here to edit and install the system crontab, /etc/crontab. Just use your favorite editor: the cron utility will notice that the file has changed and immediately begin using the updated version. See this FAQ entry for more information.
To install a freshly written user crontab, first use your favorite editor to create a file in the proper format, and then use the crontab utility. The most common usage is:
% crontab crontab-file
In this example, crontab-file is the filename of a crontab that was previously created.
There is also an option to list installed crontab
files: just pass the -l
option to crontab and look over the output.
For users who wish to begin their own crontab file from scratch, without the use of a template, the crontab -e option is available. This will invoke the selected editor with an empty file. When the file is saved, it will be automatically installed by the crontab command.
In order to remove a user crontab completely, use crontab with the -r
option.
In 2002 FreeBSD integrated the NetBSD rc.d system for system
initialization. Users should notice the files listed in the /etc/rc.d directory. Many of these files are for basic services
which can be controlled with the start
, stop
, and restart
options. For
instance, sshd(8) can be
restarted with the following command:
# /etc/rc.d/sshd restart
This procedure is similar for other services. Of course, services are usually started automatically at boot time as specified in rc.conf(5). For example, enabling the Network Address Translation daemon at startup is as simple as adding the following line to /etc/rc.conf:
natd_enable="YES"
If a natd_enable="NO"
line is already present, then simply
change the NO
to YES
. The rc
scripts will automatically load any other dependent services during the next reboot, as
described below.
Since the rc.d system is primarily intended to start/stop
services at system startup/shutdown time, the standard start
,
stop
and restart
options will
only perform their action if the appropriate /etc/rc.conf
variables are set. For instance the above sshd restart command
will only work if sshd_enable
is set to YES
in /etc/rc.conf. To start
, stop
or restart
a service regardless of the settings in /etc/rc.conf, the commands should be prefixed with
“one”. For instance to restart sshd regardless of
the current /etc/rc.conf setting, execute the following
command:
# /etc/rc.d/sshd onerestart
It is easy to check if a service is enabled in /etc/rc.conf
by running the appropriate rc.d script with the option rcvar
. Thus, an administrator can check that sshd is in fact enabled in /etc/rc.conf by
running:
# /etc/rc.d/sshd rcvar # sshd $sshd_enable=YES
Note: The second line (# sshd) is the output from sshd, not a root console.
To determine if a service is running, a status
option is
available. For instance to verify that sshd is actually
started:
# /etc/rc.d/sshd status sshd is running as pid 433.
In some cases it is also possible to reload
a service.
This will attempt to send a signal to an individual service, forcing the service to
reload its configuration files. In most cases this means sending the service a SIGHUP signal. Support for this feature is not included for every
service.
The rc.d system is not only used for network services, it also contributes to most of the system initialization. For instance, consider the bgfsck file. When this script is executed, it will print out the following message:
Starting background file system checks in 60 seconds.
Therefore this file is used for background file system checks, which are done only during system initialization.
Many system services depend on other services to function properly. For example, NIS and other RPC-based services may fail to start until after the rpcbind (portmapper) service has started. To resolve this issue, information about dependencies and other meta-data is included in the comments at the top of each startup script. The rcorder(8) program is then used to parse these comments during system initialization to determine the order in which system services should be invoked to satisfy the dependencies.
The following words must be included in all startup scripts (they are required by rc.subr(8) to “enable” the startup script):
PROVIDE: Specifies the services this file provides.
The following words may be included at the top of each startup file. They are not strictly necessary, but they are useful as hints to rcorder(8):
REQUIRE: Lists services which are required for this service. This file will run after the specified services.
BEFORE: Lists services which depend on this service. This file will run before the specified services.
By carefully setting these keywords for each startup script, an administrator has a very fine-grained level of control of the startup order of the scripts, without the hassle of “runlevels” like some other UNIX operating systems.
Additional information about the rc.d system can be found in the rc(8) and rc.subr(8) manual pages. If you are interested in writing your own rc.d scripts or improving the existing ones, you may find this article also useful.
Nowadays we can not think about a computer without thinking about a network connection. Adding and configuring a network card is a common task for any FreeBSD administrator.
Before you begin, you should know the model of the card you have, the chip it uses, and whether it is a PCI or ISA card. FreeBSD supports a wide variety of both PCI and ISA cards. Check the Hardware Compatibility List for your release to see if your card is supported.
Once you are sure your card is supported, you need to determine the proper driver for the card. /usr/src/sys/conf/NOTES and /usr/src/sys/arch/conf/NOTES will give you the list of network interface drivers with some information about the supported chipsets/cards. If you have doubts about which driver is the correct one, read the manual page of the driver. The manual page will give you more information about the supported hardware and even the possible problems that could occur.
If you own a common card, most of the time you will not have to look very hard for a driver. Drivers for common network cards are present in the GENERIC kernel, so your card should show up during boot, like so:
dc0: <82c169 PNIC 10/100BaseTX> port 0xa000-0xa0ff mem 0xd3800000-0xd38 000ff irq 15 at device 11.0 on pci0 miibus0: <MII bus> on dc0 bmtphy0: <BCM5201 10/100baseTX PHY> PHY 1 on miibus0 bmtphy0: 10baseT, 10baseT-FDX, 100baseTX, 100baseTX-FDX, auto dc0: Ethernet address: 00:a0:cc:da:da:da dc0: [ITHREAD] dc1: <82c169 PNIC 10/100BaseTX> port 0x9800-0x98ff mem 0xd3000000-0xd30 000ff irq 11 at device 12.0 on pci0 miibus1: <MII bus> on dc1 bmtphy1: <BCM5201 10/100baseTX PHY> PHY 1 on miibus1 bmtphy1: 10baseT, 10baseT-FDX, 100baseTX, 100baseTX-FDX, auto dc1: Ethernet address: 00:a0:cc:da:da:db dc1: [ITHREAD]
In this example, we see that two cards using the dc(4) driver are present on the system.
If the driver for your NIC is not present in GENERIC, you will need to load the proper driver to use your NIC. This may be accomplished in one of two ways:
The easiest way is to simply load a kernel module for your network card with kldload(8), or automatically at boot time by adding the appropriate line to the file /boot/loader.conf. Not all NIC drivers are available as modules; notable examples of devices for which modules do not exist are ISA cards.
Alternatively, you may statically compile the support for your card into your kernel. Check /usr/src/sys/conf/NOTES, /usr/src/sys/arch/conf/NOTES and the manual page of the driver to know what to add in your kernel configuration file. For more information about recompiling your kernel, please see Chapter 9. If your card was detected at boot by your kernel (GENERIC) you do not have to build a new kernel.
Unfortunately, there are still many vendors that do not provide schematics for their drivers to the open source community because they regard such information as trade secrets. Consequently, the developers of FreeBSD and other operating systems are left two choices: develop the drivers by a long and pain-staking process of reverse engineering or using the existing driver binaries available for the Microsoft Windows platforms. Most developers, including those involved with FreeBSD, have taken the latter approach.
Thanks to the contributions of Bill Paul (wpaul) there is “native” support for the Network Driver Interface Specification (NDIS). The FreeBSD NDISulator (otherwise known as Project Evil) takes a Windows driver binary and basically tricks it into thinking it is running on Windows. Because the ndis(4) driver is using a Windows binary, it only runs on i386 and amd64 systems. PCI, CardBus, PCMCIA (PC-Card), and USB devices are supported.
To use the NDISulator, three things are needed:
Kernel sources
Windows XP driver binary (.SYS extension)
Windows XP driver configuration file (.INF extension)
Locate the files for your specific card. Generally, they can be found on the included CDs or at the vendor's website. In the following examples, we will use W32DRIVER.SYS and W32DRIVER.INF.
The driver bit width must match the version of FreeBSD. For FreeBSD/i386, use a Windows 32-bit driver. For FreeBSD/amd64, a Windows 64-bit driver is needed.
The next step is to compile the driver binary into a loadable kernel module. As root, use ndisgen(8):
# ndisgen /path/to/W32DRIVER.INF /path/to/W32DRIVER.SYS
ndisgen(8) is interactive and prompts for any extra information it requires. A new kernel module is written in the current directory. Use kldload(8) to load the new module:
# kldload ./W32DRIVER_SYS.ko
In addition to the generated kernel module, you must load the ndis.ko and if_ndis.ko modules. This should be automatically done when you load any module that depends on ndis(4). If you want to load them manually, use the following commands:
# kldload ndis # kldload if_ndis
The first command loads the NDIS miniport driver wrapper, the second loads the actual network interface.
Now, check dmesg(8) to see if there were any errors loading. If all went well, you should get output resembling the following:
ndis0: <Wireless-G PCI Adapter> mem 0xf4100000-0xf4101fff irq 3 at device 8.0 on pci1 ndis0: NDIS API version: 5.0 ndis0: Ethernet address: 0a:b1:2c:d3:4e:f5 ndis0: 11b rates: 1Mbps 2Mbps 5.5Mbps 11Mbps ndis0: 11g rates: 6Mbps 9Mbps 12Mbps 18Mbps 36Mbps 48Mbps 54Mbps
From here you can treat the ndis0 device like any other network interface (e.g., dc0).
You can configure the system to load the NDIS modules at boot time in the same way as with any other module. First, copy the generated module, W32DRIVER_SYS.ko, to the /boot/modules directory. Then, add the following line to /boot/loader.conf:
W32DRIVER_SYS_load="YES"
Once the right driver is loaded for the network card, the card needs to be configured. As with many other things, the network card may have been configured at installation time by sysinstall.
To display the configuration for the network interfaces on your system, enter the following command:
% ifconfig dc0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 options=80008<VLAN_MTU,LINKSTATE> ether 00:a0:cc:da:da:da inet 192.168.1.3 netmask 0xffffff00 broadcast 192.168.1.255 media: Ethernet autoselect (100baseTX <full-duplex>) status: active dc1: flags=8802<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 options=80008<VLAN_MTU,LINKSTATE> ether 00:a0:cc:da:da:db inet 10.0.0.1 netmask 0xffffff00 broadcast 10.0.0.255 media: Ethernet 10baseT/UTP status: no carrier plip0: flags=8810<POINTOPOINT,SIMPLEX,MULTICAST> metric 0 mtu 1500 lo0: flags=8049<UP,LOOPBACK,RUNNING,MULTICAST> metric 0 mtu 16384 options=3<RXCSUM,TXCSUM> inet6 fe80::1%lo0 prefixlen 64 scopeid 0x4 inet6 ::1 prefixlen 128 inet 127.0.0.1 netmask 0xff000000 nd6 options=3<PERFORMNUD,ACCEPT_RTADV>
In this example, the following devices were displayed:
dc0: The first Ethernet interface
dc1: The second Ethernet interface
plip0: The parallel port interface (if a parallel port is present on the machine)
lo0: The loopback device
FreeBSD uses the driver name followed by the order in which one the card is detected at the kernel boot to name the network card. For example sis2 would be the third network card on the system using the sis(4) driver.
In this example, the dc0 device is up and running. The key indicators are:
UP means that the card is configured and ready.
The card has an Internet (inet) address (in this case 192.168.1.3).
It has a valid subnet mask (netmask; 0xffffff00 is the same as 255.255.255.0).
It has a valid broadcast address (in this case, 192.168.1.255).
The MAC address of the card (ether) is 00:a0:cc:da:da:da
The physical media selection is on autoselection mode (media: Ethernet autoselect (100baseTX <full-duplex>)). We see that dc1 was configured to run with 10baseT/UTP media. For more information on available media types for a driver, please refer to its manual page.
The status of the link (status) is active, i.e., the carrier is detected. For dc1, we see status: no carrier. This is normal when an Ethernet cable is not plugged into the card.
If the ifconfig(8) output had shown something similar to:
dc0: flags=8843<BROADCAST,SIMPLEX,MULTICAST> metric 0 mtu 1500 options=80008<VLAN_MTU,LINKSTATE> ether 00:a0:cc:da:da:da media: Ethernet autoselect (100baseTX <full-duplex>) status: active
it would indicate the card has not been configured.
To configure your card, you need root privileges. The network card configuration can be done from the command line with ifconfig(8) but you would have to do it after each reboot of the system. The file /etc/rc.conf is where to add the network card's configuration.
Open /etc/rc.conf in your favorite editor. You need to add a line for each network card present on the system, for example in our case, we added these lines:
ifconfig_dc0="inet 192.168.1.3 netmask 255.255.255.0" ifconfig_dc1="inet 10.0.0.1 netmask 255.255.255.0 media 10baseT/UTP"
You have to replace dc0, dc1, and so on, with the correct device for your cards, and the addresses with the proper ones. You should read the card driver and ifconfig(8) manual pages for more details about the allowed options and also rc.conf(5) manual page for more information on the syntax of /etc/rc.conf.
If you configured the network during installation, some lines about the network card(s) may be already present. Double check /etc/rc.conf before adding any lines.
You will also have to edit the file /etc/hosts to add the names and the IP addresses of various machines of the LAN, if they are not already there. For more information please refer to hosts(5) and to /usr/share/examples/etc/hosts.
Note: If access to the Internet is planned with the machine, you also have to manually set up the default gateway and the nameserver:
# echo 'defaultrouter="your_default_router"' >> /etc/rc.conf # echo 'nameserver your_DNS_server' >> /etc/resolv.conf
Once you have made the necessary changes in /etc/rc.conf, you should reboot your system. This will allow the change(s) to the interface(s) to be applied, and verify that the system restarts without any configuration errors. Alternatively you can just relaunch the networking system:
# /etc/rc.d/netif restart
Note: If a default gateway has been set in /etc/rc.conf, use also this command:
# /etc/rc.d/routing restart
Once the networking system has been relaunched, you should test the network interfaces.
To verify that an Ethernet card is configured correctly, you have to try two things. First, ping the interface itself, and then ping another machine on the LAN.
First test the local interface:
% ping -c5 192.168.1.3 PING 192.168.1.3 (192.168.1.3): 56 data bytes 64 bytes from 192.168.1.3: icmp_seq=0 ttl=64 time=0.082 ms 64 bytes from 192.168.1.3: icmp_seq=1 ttl=64 time=0.074 ms 64 bytes from 192.168.1.3: icmp_seq=2 ttl=64 time=0.076 ms 64 bytes from 192.168.1.3: icmp_seq=3 ttl=64 time=0.108 ms 64 bytes from 192.168.1.3: icmp_seq=4 ttl=64 time=0.076 ms --- 192.168.1.3 ping statistics --- 5 packets transmitted, 5 packets received, 0% packet loss round-trip min/avg/max/stddev = 0.074/0.083/0.108/0.013 ms
Now we have to ping another machine on the LAN:
% ping -c5 192.168.1.2 PING 192.168.1.2 (192.168.1.2): 56 data bytes 64 bytes from 192.168.1.2: icmp_seq=0 ttl=64 time=0.726 ms 64 bytes from 192.168.1.2: icmp_seq=1 ttl=64 time=0.766 ms 64 bytes from 192.168.1.2: icmp_seq=2 ttl=64 time=0.700 ms 64 bytes from 192.168.1.2: icmp_seq=3 ttl=64 time=0.747 ms 64 bytes from 192.168.1.2: icmp_seq=4 ttl=64 time=0.704 ms --- 192.168.1.2 ping statistics --- 5 packets transmitted, 5 packets received, 0% packet loss round-trip min/avg/max/stddev = 0.700/0.729/0.766/0.025 ms
You could also use the machine name instead of 192.168.1.2 if you have set up /etc/hosts.
Troubleshooting hardware and software configurations is always a pain, and a pain which can be alleviated by checking the simple things first. Is your network cable plugged in? Have you properly configured the network services? Did you configure the firewall correctly? Is the card you are using supported by FreeBSD? Always check the hardware notes before sending off a bug report. Update your version of FreeBSD to the latest STABLE version. Check the mailing list archives, or perhaps search the Internet.
If the card works, yet performance is poor, it would be worthwhile to read over the tuning(7) manual page. You can also check the network configuration as incorrect network settings can cause slow connections.
Some users experience one or two “device timeout” messages, which is normal for some cards. If they continue, or are bothersome, you may wish to be sure the device is not conflicting with another device. Double check the cable connections. Perhaps you may just need to get another card.
At times, users see a few “watchdog timeout” errors. The first thing to do here is to check your network cable. Many cards require a PCI slot which supports Bus Mastering. On some old motherboards, only one PCI slot allows it (usually slot 0). Check the network card and the motherboard documentation to determine if that may be the problem.
“No route to host” messages occur if the system is unable to route a packet to the destination host. This can happen if no default route is specified, or if a cable is unplugged. Check the output of netstat -rn and make sure there is a valid route to the host you are trying to reach. If there is not, read on to Chapter 32.
“ping: sendto: Permission denied” error messages are often caused by a misconfigured firewall. If ipfw is enabled in the kernel but no rules have been defined, then the default policy is to deny all traffic, even ping requests! Read on to Chapter 31 for more information.
Sometimes performance of the card is poor, or below average. In these cases it is best to set the media selection mode from autoselect to the correct media selection. While this usually works for most hardware, it may not resolve this issue for everyone. Again, check all the network settings, and read over the tuning(7) manual page.
A very common use of FreeBSD is virtual site hosting, where one server appears to the network as many servers. This is achieved by assigning multiple network addresses to a single interface.
A given network interface has one “real” address, and may have any number of “alias” addresses. These aliases are normally added by placing alias entries in /etc/rc.conf.
An alias entry for the interface fxp0 looks like:
ifconfig_fxp0_alias0="inet xxx.xxx.xxx.xxx netmask xxx.xxx.xxx.xxx"
Note that alias entries must start with alias0 and proceed upwards in order, (for example, _alias1, _alias2, and so on). The configuration process will stop at the first missing number.
The calculation of alias netmasks is important, but fortunately quite simple. For a given interface, there must be one address which correctly represents the network's netmask. Any other addresses which fall within this network must have a netmask of all 1s (expressed as either 255.255.255.255 or 0xffffffff).
For example, consider the case where the fxp0 interface is connected to two networks, the 10.1.1.0 network with a netmask of 255.255.255.0 and the 202.0.75.16 network with a netmask of 255.255.255.240. We want the system to appear at 10.1.1.1 through 10.1.1.5 and at 202.0.75.17 through 202.0.75.20. As noted above, only the first address in a given network range (in this case, 10.0.1.1 and 202.0.75.17) should have a real netmask; all the rest (10.1.1.2 through 10.1.1.5 and 202.0.75.18 through 202.0.75.20) must be configured with a netmask of 255.255.255.255.
The following /etc/rc.conf entries configure the adapter correctly for this arrangement:
ifconfig_fxp0="inet 10.1.1.1 netmask 255.255.255.0" ifconfig_fxp0_alias0="inet 10.1.1.2 netmask 255.255.255.255" ifconfig_fxp0_alias1="inet 10.1.1.3 netmask 255.255.255.255" ifconfig_fxp0_alias2="inet 10.1.1.4 netmask 255.255.255.255" ifconfig_fxp0_alias3="inet 10.1.1.5 netmask 255.255.255.255" ifconfig_fxp0_alias4="inet 202.0.75.17 netmask 255.255.255.240" ifconfig_fxp0_alias5="inet 202.0.75.18 netmask 255.255.255.255" ifconfig_fxp0_alias6="inet 202.0.75.19 netmask 255.255.255.255" ifconfig_fxp0_alias7="inet 202.0.75.20 netmask 255.255.255.255"
System logging is an important aspect of system administration. It is used both to detect hardware and software issues and errors in the system. It also plays a very important role in security auditing and incident response. System daemons without a controlling terminal also usually log information to a system logging facility or other log file.
This section will describe how to configure and use the FreeBSD system logger, syslogd(8), as well as discuss log rotation and log management using newsyslog(8). Focus will be on setting up and using syslogd on a local machine. For more advanced setups using a separate loghost, see Section 30.11.
In the default FreeBSD configuration syslogd(8) is started at boot. This is controlled by the variable syslogd_enable in /etc/rc.conf. There are numerous application arguments that affect the behavior of syslogd(8). To change them, use syslogd_flags in /etc/rc.conf. Refer to syslogd(8) for more information on the arguments, and rc.conf(5), Section 12.3 and Section 12.7 for more information about /etc/rc.conf and the rc(8) subsystem.
The configuration file, by default /etc/syslog.conf, controls what syslogd(8) does with the log entries once they are received. There are several parameters to control the handling of incoming events, of which the most basic are facility and level. The facility describes which subsystem generated the message, such as the kernel or a daemon, and the level describes the severity of the event that occurred. This makes it possible to log the message to different log files, or discard it, depending on the facility and level. It is also possible to take action depending on the application that sent the message, and in the case of remote logging, also the hostname of the machine generating the logging event.
Configuring syslogd(8) is quite straight forward. The configuration file contains one line per action, and the syntax for each line is a selector field followed by an action field. The syntax of the selector field is facility.level which will match log messages from facility at level level or higher. It is also possible to add an optional comparison flag before the level to specify more precisely what is logged. Multiple selector fields can be used for the same action, and are separated with a semicolon (;). Using * will match everything. The action field denotes where to send the log message, such as a file or a remote log host. As an example, here is the default syslog.conf from FreeBSD:
# $FreeBSD$ # # Spaces ARE valid field separators in this file. However, # other *nix-like systems still insist on using tabs as field # separators. If you are sharing this file between systems, you # may want to use only tabs as field separators here. # Consult the syslog.conf(5) manpage. *.err;kern.warning;auth.notice;mail.crit /dev/console *.notice;authpriv.none;kern.debug;lpr.info;mail.crit;news.err /var/log/messages security.* /var/log/security auth.info;authpriv.info /var/log/auth.log mail.info /var/log/maillog lpr.info /var/log/lpd-errs ftp.info /var/log/xferlog cron.* /var/log/cron *.=debug /var/log/debug.log *.emerg * # uncomment this to log all writes to /dev/console to /var/log/console.log #console.info /var/log/console.log # uncomment this to enable logging of all log messages to /var/log/all.log # touch /var/log/all.log and chmod it to mode 600 before it will work #*.* /var/log/all.log # uncomment this to enable logging to a remote loghost named loghost #*.* @loghost # uncomment these if you're running inn # news.crit /var/log/news/news.crit # news.err /var/log/news/news.err # news.notice /var/log/news/news.notice !ppp *.* /var/log/ppp.log !*
This example shows that there are plenty of levels and subsystems. The levels are, in order from most to least critical: emerg, alert, crit, err, warning, notice, info and debug.
The facilities are, in no particular order: auth, authpriv, console, cron, daemon, ftp, kern, lpr, mail, mark, news, security, syslog, user, uucp and local0 through local7. Be aware that other operating systems might have different facilities.
With this knowledge it is easy to add a new line to /etc/syslog.conf to log everything from the different daemons on level notice and higher to /var/log/daemon.log. Just add the following:
daemon.notice /var/log/daemon.log
For more information about the different levels and facilities, refer to syslog(3) and syslogd(8). For more information about syslog.conf, its syntax, and more advanced usage examples, see syslog.conf(5) and Section 30.11.
Log files tend to grow quickly and accumulate steadily. This leads to the files being full of less immediately useful information, as well as filling up the hard drive. To mitigate this, log management comes into play. In FreeBSD, newsyslog(8) is the tool used to manage log files. This program is used to periodically rotate and compress log files, as well as optionally create missing log files and signal programs when log files are moved. The log files do not necessarily have to come from syslog; newsyslog(8) works with any logs written from any program. It is important to note that newsyslog is normally run from cron(8) and is not a system daemon. In the default configuration it is run every hour.
To know what actions to take, newsyslog(8) reads its configuration file, by default /etc/newsyslog.conf. This configuration file contains one line for each file that newsyslog(8) manages. Each line states the file owner, permissions, and when to rotate that file, as well as optional flags that affect the log rotation (such as compression) and programs to signal when the log is rotated. As an example, here is the default configuration in FreeBSD:
# configuration file for newsyslog # $FreeBSD$ # # Entries which do not specify the '/pid_file' field will cause the # syslogd process to be signalled when that log file is rotated. This # action is only appropriate for log files which are written to by the # syslogd process (ie, files listed in /etc/syslog.conf). If there # is no process which needs to be signalled when a given log file is # rotated, then the entry for that file should include the 'N' flag. # # The 'flags' field is one or more of the letters: BCDGJNUXZ or a '-'. # # Note: some sites will want to select more restrictive protections than the # defaults. In particular, it may be desirable to switch many of the 644 # entries to 640 or 600. For example, some sites will consider the # contents of maillog, messages, and lpd-errs to be confidential. In the # future, these defaults may change to more conservative ones. # # logfilename [owner:group] mode count size when flags [/pid_file] [sig_num] /var/log/all.log 600 7 * @T00 J /var/log/amd.log 644 7 100 * J /var/log/auth.log 600 7 100 @0101T JC /var/log/console.log 600 5 100 * J /var/log/cron 600 3 100 * JC /var/log/daily.log 640 7 * @T00 JN /var/log/debug.log 600 7 100 * JC /var/log/init.log 644 3 100 * J /var/log/kerberos.log 600 7 100 * J /var/log/lpd-errs 644 7 100 * JC /var/log/maillog 640 7 * @T00 JC /var/log/messages 644 5 100 @0101T JC /var/log/monthly.log 640 12 * $M1D0 JN /var/log/pflog 600 3 100 * JB /var/run/pflogd.pid /var/log/ppp.log root:network 640 3 100 * JC /var/log/security 600 10 100 * JC /var/log/sendmail.st 640 10 * 168 B /var/log/utx.log 644 3 * @01T05 B /var/log/weekly.log 640 5 1 $W6D0 JN /var/log/xferlog 600 7 100 * JC
Each line starts with the name of the file to be rotated, optionally followrd by an owner and group for both rotated and newly created files. The next field, mode is the mode of the files and count denotes how many rotated log files should be kept. The size and when fields tell newsyslog when to rotate the file. A log file is rotated when either its size is larger than the size field, or when the time in the when filed has passed. * means that this field is ignored. The flags field gives newsyslog(8) further instructions, such as how to compress the rotated file, or to create the log file if it is missing. The last two fields are optional, and specify the PID-file of a process and a signal number to send to that process with when the file is rotated. For more information on all fields, valid flags and how to specify the rotation time, refer to newsyslog.conf(5). Remember that newsyslog is run from cron and can not rotate files more often than it is run from cron(8).
There are a number of directories in which configuration information is kept. These include:
/etc | Generic system configuration information; data here is system-specific. |
/etc/defaults | Default versions of system configuration files. |
/etc/mail | Extra sendmail(8) configuration, other MTA configuration files. |
/etc/ppp | Configuration for both user- and kernel-ppp programs. |
/etc/namedb | Default location for named(8) data. Normally named.conf and zone files are stored here. |
/usr/local/etc | Configuration files for installed applications. May contain per-application subdirectories. |
/usr/local/etc/rc.d | Start/stop scripts for installed applications. |
/var/db | Automatically generated system-specific database files, such as the package database, the locate database, and so on |
/etc/resolv.conf dictates how FreeBSD's resolver accesses the Internet Domain Name System (DNS).
The most common entries to resolv.conf are:
nameserver | The IP address of a name server the resolver should query. The servers are queried in the order listed with a maximum of three. |
search | Search list for hostname lookup. This is normally determined by the domain of the local hostname. |
domain | The local domain name. |
A typical resolv.conf:
search example.com nameserver 147.11.1.11 nameserver 147.11.100.30
Note: Only one of the search and domain options should be used.
If you are using DHCP, dhclient(8) usually rewrites resolv.conf with information received from the DHCP server.
/etc/hosts is a simple text database reminiscent of the old Internet. It works in conjunction with DNS and NIS providing name to IP address mappings. Local computers connected via a LAN can be placed in here for simplistic naming purposes instead of setting up a named(8) server. Additionally, /etc/hosts can be used to provide a local record of Internet names, reducing the need to query externally for commonly accessed names.
# $FreeBSD$ # # # Host Database # # This file should contain the addresses and aliases for local hosts that # share this file. Replace 'my.domain' below with the domainname of your # machine. # # In the presence of the domain name service or NIS, this file may # not be consulted at all; see /etc/nsswitch.conf for the resolution order. # # ::1 localhost localhost.my.domain 127.0.0.1 localhost localhost.my.domain # # Imaginary network. #10.0.0.2 myname.my.domain myname #10.0.0.3 myfriend.my.domain myfriend # # According to RFC 1918, you can use the following IP networks for # private nets which will never be connected to the Internet: # # 10.0.0.0 - 10.255.255.255 # 172.16.0.0 - 172.31.255.255 # 192.168.0.0 - 192.168.255.255 # # In case you want to be able to connect to the Internet, you need # real official assigned numbers. Do not try to invent your own network # numbers but instead get one from your network provider (if any) or # from your regional registry (ARIN, APNIC, LACNIC, RIPE NCC, or AfriNIC.) #
/etc/hosts takes on the simple format of:
[Internet address] [official hostname] [alias1] [alias2] ...
For example:
10.0.0.1 myRealHostname.example.com myRealHostname foobar1 foobar2
Consult hosts(5) for more information.
sysctl.conf looks much like rc.conf. Values are set in a variable=value form. The specified values are set after the system goes into multi-user mode. Not all variables are settable in this mode.
To turn off logging of fatal signal exits and prevent users from seeing processes started from other users, the following tunables can be set in sysctl.conf:
# Do not log fatal signal exits (e.g., sig 11) kern.logsigexit=0 # Prevent users from seeing information about processes that # are being run under another UID. security.bsd.see_other_uids=0
sysctl(8) is an interface that allows you to make changes to a running FreeBSD system. This includes many advanced options of the TCP/IP stack and virtual memory system that can dramatically improve performance for an experienced system administrator. Over five hundred system variables can be read and set using sysctl(8).
At its core, sysctl(8) serves two functions: to read and to modify system settings.
To view all readable variables:
% sysctl -a
To read a particular variable, for example, kern.maxproc
:
% sysctl kern.maxproc kern.maxproc: 1044
To set a particular variable, use the intuitive variable=value syntax:
# sysctl kern.maxfiles=5000 kern.maxfiles: 2088 -> 5000
Settings of sysctl variables are usually either strings, numbers, or booleans (a boolean being 1 for yes or a 0 for no).
If you want to automatically set some variables each time the machine boots, add them to /etc/sysctl.conf. For more information see the sysctl.conf(5) manual page and Section 12.11.3.
In some cases it may be desirable to modify read-only sysctl(8) values. While this is sometimes unavoidable, it can only be done on (re)boot.
For instance on some laptop models the cardbus(4) device will not probe memory ranges, and fail with errors which look similar to:
cbb0: Could not map register memory device_probe_and_attach: cbb0 attach returned 12
Cases like the one above usually require the modification of some default sysctl(8) settings which are set read only. To overcome these situations a user can put sysctl(8) “OIDs” in their local /boot/loader.conf. Default settings are located in /boot/defaults/loader.conf.
Fixing the problem mentioned above would require a user to set hw.pci.allow_unsupported_io_range=1
in the aforementioned
file. Now cardbus(4) will work
properly.
vfs.vmiodirenable
The vfs.vmiodirenable
sysctl variable may be set to
either 0 (off) or 1 (on); it is 1 by default. This variable controls how
directories are cached by the system. Most directories are small, using just a
single fragment (typically 1 K) in the file system and less (typically
512 bytes) in the buffer cache. With this variable turned off (to 0), the buffer
cache will only cache a fixed number of directories even if you have a huge amount
of memory. When turned on (to 1), this sysctl allows the buffer cache to use
the VM Page Cache to cache the directories, making all the memory available for
caching directories. However, the minimum in-core memory used to cache a
directory is the physical page size (typically 4 K) rather than 512 bytes. We
recommend keeping this option on if you are running any services which
manipulate large numbers of files. Such services can include web caches, large mail
systems, and news systems. Keeping this option on will generally not reduce
performance even with the wasted memory but you should experiment to find
out.
vfs.write_behind
The vfs.write_behind
sysctl variable defaults to
1 (on). This tells the file system to issue media writes
as full clusters are collected, which typically occurs when writing large
sequential files. The idea is to avoid saturating the buffer cache with dirty
buffers when it would not benefit I/O performance. However, this may stall
processes and under certain circumstances you may wish to turn it off.
vfs.hirunningspace
The vfs.hirunningspace
sysctl variable determines
how much outstanding write I/O may be queued to disk controllers system-wide at any
given instance. The default is usually sufficient but on machines with lots
of disks you may want to bump it up to four or five megabytes. Note that setting too high a value
(exceeding the buffer cache's write threshold) can lead to extremely bad clustering
performance. Do not set this value arbitrarily high! Higher write values may
add latency to reads occurring at the same time.
There are various other buffer-cache and VM page cache related sysctls. We do not recommend modifying these values, the VM system does an extremely good job of automatically tuning itself.
vm.swap_idle_enabled
The vm.swap_idle_enabled
sysctl variable is useful
in large multi-user systems where you have lots of users entering and leaving the
system and lots of idle processes. Such systems tend to generate a great deal
of continuous pressure on free memory reserves. Turning this feature on and
tweaking the swapout hysteresis (in idle seconds) via vm.swap_idle_threshold1
and vm.swap_idle_threshold2
allows you to depress the priority
of memory pages associated with idle processes more quickly then the normal pageout
algorithm. This gives a helping hand to the pageout daemon. Do not turn this
option on unless you need it, because the tradeoff you are making is essentially
pre-page memory sooner rather than later; thus eating more swap and disk bandwidth.
In a small system this option will have a determinable effect but in a large
system that is already doing moderate paging this option allows the VM system to
stage whole processes into and out of memory easily.
hw.ata.wc
FreeBSD 4.3 flirted with turning off IDE write caching. This reduced write
bandwidth to IDE disks but was considered necessary due to serious data consistency
issues introduced by hard drive vendors. The problem is that IDE drives lie
about when a write completes. With IDE write caching turned on, IDE hard drives not
only write data to disk out of order, but will sometimes delay writing some
blocks indefinitely when under heavy disk loads. A crash or power failure may cause
serious file system corruption. FreeBSD's default was changed to be safe.
Unfortunately, the result was such a huge performance loss that we changed
write caching back to on by default after the release. You should check the default
on your system by observing the hw.ata.wc
sysctl
variable. If IDE write caching is turned off, you can turn it back on by setting
the kernel variable back to 1. This must be done from the boot loader at boot
time. Attempting to do it after the kernel boots will have no effect.
For more information, please see ata(4).
kern.cam.scsi_delay
)The SCSI_DELAY kernel config may be used to reduce
system boot times. The defaults are fairly high and can be responsible for 15 seconds of delay in the boot process. Reducing it to
5 seconds usually works (especially with modern drives).
The kern.cam.scsi_delay
boot time tunable should be
used. The tunable, and kernel config option accept values in terms of milliseconds and not seconds.
The tunefs(8) program can be used to fine-tune a file system. This program has many different options, but for now we are only concerned with toggling Soft Updates on and off, which is done by:
# tunefs -n enable /filesystem # tunefs -n disable /filesystem
A filesystem cannot be modified with tunefs(8) while it is mounted. A good time to enable Soft Updates is before any partitions have been mounted, in single-user mode.
Soft Updates drastically improves meta-data performance, mainly file creation and deletion, through the use of a memory cache. We recommend to use Soft Updates on all of your file systems. There are two downsides to Soft Updates that you should be aware of: First, Soft Updates guarantees filesystem consistency in the case of a crash but could very easily be several seconds (even a minute!) behind updating the physical disk. If your system crashes you may lose more work than otherwise. Secondly, Soft Updates delays the freeing of filesystem blocks. If you have a filesystem (such as the root filesystem) which is almost full, performing a major update, such as make installworld, can cause the filesystem to run out of space and the update to fail.
There are two traditional approaches to writing a file systems meta-data back to disk. (Meta-data updates are updates to non-content data like inodes or directories.)
Historically, the default behavior was to write out meta-data updates synchronously. If a directory had been changed, the system waited until the change was actually written to disk. The file data buffers (file contents) were passed through the buffer cache and backed up to disk later on asynchronously. The advantage of this implementation is that it operates safely. If there is a failure during an update, the meta-data are always in a consistent state. A file is either created completely or not at all. If the data blocks of a file did not find their way out of the buffer cache onto the disk by the time of the crash, fsck(8) is able to recognize this and repair the filesystem by setting the file length to 0. Additionally, the implementation is clear and simple. The disadvantage is that meta-data changes are slow. An rm -r, for instance, touches all the files in a directory sequentially, but each directory change (deletion of a file) will be written synchronously to the disk. This includes updates to the directory itself, to the inode table, and possibly to indirect blocks allocated by the file. Similar considerations apply for unrolling large hierarchies (tar -x).
The second case is asynchronous meta-data updates. This is the default for Linux/ext2fs and mount -o async for *BSD ufs. All meta-data updates are simply being passed through the buffer cache too, that is, they will be intermixed with the updates of the file content data. The advantage of this implementation is there is no need to wait until each meta-data update has been written to disk, so all operations which cause huge amounts of meta-data updates work much faster than in the synchronous case. Also, the implementation is still clear and simple, so there is a low risk for bugs creeping into the code. The disadvantage is that there is no guarantee at all for a consistent state of the filesystem. If there is a failure during an operation that updated large amounts of meta-data (like a power failure, or someone pressing the reset button), the filesystem will be left in an unpredictable state. There is no opportunity to examine the state of the filesystem when the system comes up again; the data blocks of a file could already have been written to the disk while the updates of the inode table or the associated directory were not. It is actually impossible to implement a fsck which is able to clean up the resulting chaos (because the necessary information is not available on the disk). If the filesystem has been damaged beyond repair, the only choice is to use newfs(8) on it and restore it from backup.
The usual solution for this problem was to implement dirty region logging, which is also referred to as journaling, although that term is not used consistently and is occasionally applied to other forms of transaction logging as well. Meta-data updates are still written synchronously, but only into a small region of the disk. Later on they will be moved to their proper location. Because the logging area is a small, contiguous region on the disk, there are no long distances for the disk heads to move, even during heavy operations, so these operations are quicker than synchronous updates. Additionally the complexity of the implementation is fairly limited, so the risk of bugs being present is low. A disadvantage is that all meta-data are written twice (once into the logging region and once to the proper location) so for normal work, a performance “pessimization” might result. On the other hand, in case of a crash, all pending meta-data operations can be quickly either rolled-back or completed from the logging area after the system comes up again, resulting in a fast filesystem startup.
Kirk McKusick, the developer of Berkeley FFS, solved this problem with Soft Updates: all pending meta-data updates are kept in memory and written out to disk in a sorted sequence (“ordered meta-data updates”). This has the effect that, in case of heavy meta-data operations, later updates to an item “catch” the earlier ones if the earlier ones are still in memory and have not already been written to disk. So all operations on, say, a directory are generally performed in memory before the update is written to disk (the data blocks are sorted according to their position so that they will not be on the disk ahead of their meta-data). If the system crashes, this causes an implicit “log rewind”: all operations which did not find their way to the disk appear as if they had never happened. A consistent filesystem state is maintained that appears to be the one of 30 to 60 seconds earlier. The algorithm used guarantees that all resources in use are marked as such in their appropriate bitmaps: blocks and inodes. After a crash, the only resource allocation error that occurs is that resources are marked as “used” which are actually “free”. fsck(8) recognizes this situation, and frees the resources that are no longer used. It is safe to ignore the dirty state of the filesystem after a crash by forcibly mounting it with mount -f. In order to free resources that may be unused, fsck(8) needs to be run at a later time. This is the idea behind the background fsck: at system startup time, only a snapshot of the filesystem is recorded. The fsck can be run later on. All file systems can then be mounted “dirty”, so the system startup proceeds in multiuser mode. Then, background fscks will be scheduled for all file systems where this is required, to free resources that may be unused. (File systems that do not use Soft Updates still need the usual foreground fsck though.)
The advantage is that meta-data operations are nearly as fast as asynchronous updates (i.e., faster than with logging, which has to write the meta-data twice). The disadvantages are the complexity of the code (implying a higher risk for bugs in an area that is highly sensitive regarding loss of user data), and a higher memory consumption. Additionally there are some idiosyncrasies one has to get used to. After a crash, the state of the filesystem appears to be somewhat “older”. In situations where the standard synchronous approach would have caused some zero-length files to remain after the fsck, these files do not exist at all with a Soft Updates filesystem because neither the meta-data nor the file contents have ever been written to disk. Disk space is not released until the updates have been written to disk, which may take place some time after running rm. This may cause problems when installing large amounts of data on a filesystem that does not have enough free space to hold all the files twice.
kern.maxfiles
kern.maxfiles
can be raised or lowered based upon
your system requirements. This variable indicates the maximum number of file
descriptors on your system. When the file descriptor table is full,
“file: table is full” will show up
repeatedly in the system message buffer, which can be viewed with the dmesg command.
Each open file, socket, or fifo uses one file descriptor. A large-scale production server may easily require many thousands of file descriptors, depending on the kind and number of services running concurrently.
In older FreeBSD releases, the default value of kern.maxfiles
is derived from the maxusers
option in your kernel configuration file. kern.maxfiles
grows proportionally to the value of maxusers
. When compiling a custom kernel, it is a good idea
to set this kernel configuration option according to the uses of your system.
From this number, the kernel is given most of its pre-defined limits. Even though a
production machine may not actually have 256 users connected at once, the
resources needed may be similar to a high-scale web server.
The variable kern.maxusers
is automatically sized
at boot based on the amount of memory available in the system, and may be
determined at run-time by inspecting the value of the read-only kern.maxusers
sysctl. Some sites will require larger or
smaller values of kern.maxusers
and may set it as a
loader tunable; values of 64, 128, and 256 are not uncommon. We do not
recommend going above 256 unless you need a huge number of file descriptors; many
of the tunable values set to their defaults by kern.maxusers
may be individually overridden at boot-time or
run-time in /boot/loader.conf (see the loader.conf(5) manual
page or /boot/defaults/loader.conf for some hints)
or as described elsewhere in this document.
In older releases, the system will auto-tune maxusers for you if you explicitly set it to 0 [5]. When setting this option, you will want to set maxusers to at least 4, especially if you are using the X Window System or compiling software. The reason is that the most important table set by maxusers is the maximum number of processes, which is set to 20 + 16 * maxusers, so if you set maxusers to 1, then you can only have 36 simultaneous processes, including the 18 or so that the system starts up at boot time and the 15 or so you will probably create when you start the X Window System. Even a simple task like reading a manual page will start up nine processes to filter, decompress, and view it. Setting maxusers to 64 will allow you to have up to 1044 simultaneous processes, which should be enough for nearly all uses. If, however, you see the dreaded proc table full error when trying to start another program, or are running a server with a large number of simultaneous users (like ftp.FreeBSD.org), you can always increase the number and rebuild.
Note: maxusers does not limit the number of users which can log into your machine. It simply sets various table sizes to reasonable values considering the maximum number of users you will likely have on your system and how many processes each of them will be running.
kern.ipc.somaxconn
The kern.ipc.somaxconn
sysctl variable limits the
size of the listen queue for accepting new TCP connections. The default value of
128 is typically too low for robust handling of new
connections in a heavily loaded web server environment. For such environments, it
is recommended to increase this value to 1024 or higher.
The service daemon may itself limit the listen queue size (e.g., sendmail(8), or
Apache) but will often have a directive in its
configuration file to adjust the queue size. Large listen queues also do a better
job of avoiding Denial of Service (DoS) attacks.
The NMBCLUSTERS kernel configuration option dictates the
amount of network Mbufs available to the system. A heavily-trafficked server with a
low number of Mbufs will hinder FreeBSD's ability. Each cluster represents
approximately 2 K of memory, so a value of 1024 represents 2 megabytes of
kernel memory reserved for network buffers. A simple calculation can be done to
figure out how many are needed. If you have a web server which maxes out at
1000 simultaneous connections, and each connection eats a 16 K receive and 16 K
send buffer, you need approximately 32 MB worth of network buffers to cover the
web server. A good rule of thumb is to multiply by 2, so 2x32 MB / 2 KB =
64 MB / 2 kB = 32768. We recommend values between 4096 and 32768 for machines
with greater amounts of memory. Under no circumstances should you specify an
arbitrarily high value for this parameter as it could lead to a boot time crash. The
-m
option to netstat(1) may be used
to observe network cluster use.
kern.ipc.nmbclusters
loader tunable should be used
to tune this at boot time. Only older versions of FreeBSD will require you to use
the NMBCLUSTERS kernel config(8)
option.
For busy servers that make extensive use of the sendfile(2) system
call, it may be necessary to increase the number of sendfile(2) buffers
via the NSFBUFS kernel configuration option or by
setting its value in /boot/loader.conf (see loader(8) for
details). A common indicator that this parameter needs to be adjusted is when
processes are seen in the sfbufa state. The sysctl variable
kern.ipc.nsfbufs
is a read-only glimpse at the
kernel configured variable. This parameter nominally scales with kern.maxusers
, however it may be necessary to tune
accordingly.
Important: Even though a socket has been marked as non-blocking, calling sendfile(2) on the non-blocking socket may result in the sendfile(2) call blocking until enough struct sf_buf's are made available.
net.inet.ip.portrange.*
The net.inet.ip.portrange.*
sysctl variables
control the port number ranges automatically bound to TCP and UDP sockets. There
are three ranges: a low range, a default range, and a high range. Most network
programs use the default range which is controlled by the net.inet.ip.portrange.first
and net.inet.ip.portrange.last
, which default to 1024 and 5000,
respectively. Bound port ranges are used for outgoing connections, and it is
possible to run the system out of ports under certain circumstances. This most
commonly occurs when you are running a heavily loaded web proxy. The port
range is not an issue when running servers which handle mainly incoming
connections, such as a normal web server, or has a limited number of outgoing
connections, such as a mail relay. For situations where you may run yourself
out of ports, it is recommended to increase net.inet.ip.portrange.last
modestly. A value of 10000, 20000 or 30000 may be reasonable. You should also consider firewall
effects when changing the port range. Some firewalls may block large ranges of
ports (usually low-numbered ports) and expect systems to use higher ranges of
ports for outgoing connections — for this reason it is not recommended that
net.inet.ip.portrange.first
be lowered.
The TCP Bandwidth Delay Product Limiting is similar to TCP/Vegas in NetBSD. It
can be enabled by setting net.inet.tcp.inflight.enable
sysctl variable to 1. The system will attempt to
calculate the bandwidth delay product for each connection and limit the amount of
data queued to the network to just the amount required to maintain optimum
throughput.
This feature is useful if you are serving data over modems, Gigabit Ethernet, or
even high speed WAN links (or any other link with a high bandwidth delay product),
especially if you are also using window scaling or have configured a large
send window. If you enable this option, you should also be sure to set net.inet.tcp.inflight.debug
to 0
(disable debugging), and for production use setting net.inet.tcp.inflight.min
to at least 6144 may be beneficial. However, note that setting high
minimums may effectively disable bandwidth limiting depending on the link. The
limiting feature reduces the amount of data built up in intermediate route
and switch packet queues as well as reduces the amount of data built up in the
local host's interface queue. With fewer packets queued up, interactive
connections, especially over slow modems, will also be able to operate with lower
Round Trip Times. However,
note that this feature only effects data transmission (uploading / server side). It
has no effect on data reception (downloading).
Adjusting net.inet.tcp.inflight.stab
is not recommended. This parameter
defaults to 20, representing 2 maximal packets added to the bandwidth delay product
window calculation. The additional window is required to stabilize the algorithm
and improve responsiveness to changing conditions, but it can also result in
higher ping times over slow links (though still much lower than you would get
without the inflight algorithm). In such cases, you may wish to try reducing
this parameter to 15, 10, or 5; and may also have to reduce net.inet.tcp.inflight.min
(for example, to 3500) to get the
desired effect. Reducing these parameters should be done as a last resort only.
kern.maxvnodes
A vnode is the internal representation of a file or directory. So increasing the number of vnodes available to the operating system cuts down on disk I/O. Normally this is handled by the operating system and does not need to be changed. In some cases where disk I/O is a bottleneck and the system is running out of vnodes, this setting will need to be increased. The amount of inactive and free RAM will need to be taken into account.
To see the current number of vnodes in use:
# sysctl vfs.numvnodes vfs.numvnodes: 91349
To see the maximum vnodes:
# sysctl kern.maxvnodes kern.maxvnodes: 100000
If the current vnode usage is near the maximum, increasing kern.maxvnodes
by a value of 1,000 is probably a good idea.
Keep an eye on the number of vfs.numvnodes
. If it
climbs up to the maximum again, kern.maxvnodes
will
need to be increased further. A shift in your memory usage as reported by top(1) should be
visible. More memory should be active.
No matter how well you plan, sometimes a system does not run as you expect. If you find you need more swap space, it is simple enough to add. You have three ways to increase swap space: adding a new hard drive, enabling swap over NFS, and creating a swap file on an existing partition.
For information on how to encrypt swap space, what options for this task exist and why it should be done, please refer to Section 19.17 of the Handbook.
Adding a new hard drive for swap gives better performance than adding a partition on an existing drive. Setting up partitions and hard drives is explained in Section 19.3. Section 12.2 discusses partition layouts and swap partition size considerations.
Use swapon(8) to add a swap partition to the system. For example:
# swapon/dev/ada1s1b
Warning: It is possible to use any partition not currently mounted, even if it already contains data. Using swapon(8) on a partition that contains data will overwrite and destroy that data. Make sure that the partition to be added as swap is really the intended partition before running swapon(8).
To automatically add this swap partition on boot, add an entry to /etc/fstab for the partition:
/dev/ada1s1b none swap sw 0 0
See fstab(5) for an explanation of the entries in /etc/fstab.
Swapping over NFS is only recommended if you do not have a local hard disk to swap to; NFS swapping will be limited by the available network bandwidth and puts an additional burden on the NFS server.
You can create a file of a specified size to use as a swap file. In our example here we will use a 64MB file called /usr/swap0. You can use any name you want, of course.
Example 12-1. Creating a Swapfile on FreeBSD
The GENERIC kernel already includes the memory disk driver (md(4)) required for this operation. When building a custom kernel, make sure to include the following line in your custom configuration file:
device md
For information on building your own kernel, please refer to Chapter 9.
Create a swapfile (/usr/swap0):
# dd if=/dev/zero of=/usr/swap0 bs=1024k count=64
Set proper permissions on (/usr/swap0):
# chmod 0600 /usr/swap0
Enable the swap file in /etc/rc.conf:
swapfile="/usr/swap0" # Set to name of swapfile if aux swapfile desired.
Reboot the machine or to enable the swap file immediately, type:
# mdconfig -a -t vnode -f /usr/swap0 -u 0 && swapon /dev/md0
It is important to utilize hardware resources in an efficient manner. Before ACPI was introduced, it was difficult and inflexible for operating systems to manage the power usage and thermal properties of a system. The hardware was managed by the BIOS and thus the user had less control and visibility into the power management settings. Some limited configurability was available via Advanced Power Management (APM). Power and resource management is one of the key components of a modern operating system. For example, you may want an operating system to monitor system limits (and possibly alert you) in case your system temperature increased unexpectedly.
In this section of the FreeBSD Handbook, we will provide comprehensive information about ACPI. References will be provided for further reading at the end.
Advanced Configuration and Power Interface (ACPI) is a standard written by an alliance of vendors to provide a standard interface for hardware resources and power management (hence the name). It is a key element in Operating System-directed configuration and Power Management, i.e.: it provides more control and flexibility to the operating system (OS). Modern systems “stretched” the limits of the current Plug and Play interfaces prior to the introduction of ACPI. ACPI is the direct successor to APM (Advanced Power Management).
The Advanced Power Management (APM) facility controls the power usage of a system based on its activity. The APM BIOS is supplied by the (system) vendor and it is specific to the hardware platform. An APM driver in the OS mediates access to the APM Software Interface, which allows management of power levels. APM should still be used for systems manufactured at or before the year 2000.
There are four major problems in APM. Firstly, power management is done by the (vendor-specific) BIOS, and the OS does not have any knowledge of it. One example of this, is when the user sets idle-time values for a hard drive in the APM BIOS, that when exceeded, it (BIOS) would spin down the hard drive, without the consent of the OS. Secondly, the APM logic is embedded in the BIOS, and it operates outside the scope of the OS. This means users can only fix problems in their APM BIOS by flashing a new one into the ROM; which is a very dangerous procedure with the potential to leave the system in an unrecoverable state if it fails. Thirdly, APM is a vendor-specific technology, which means that there is a lot of parity (duplication of efforts) and bugs found in one vendor's BIOS, may not be solved in others. Last but not the least, the APM BIOS did not have enough room to implement a sophisticated power policy, or one that can adapt very well to the purpose of the machine.
Plug and Play BIOS (PNPBIOS) was unreliable in many situations. PNPBIOS is 16-bit technology, so the OS has to use 16-bit emulation in order to “interface” with PNPBIOS methods.
The FreeBSD APM driver is documented in the apm(4) manual page.
The acpi.ko driver is loaded by default at start up by the loader(8) and should not be compiled into the kernel. The reasoning behind this is that modules are easier to work with, say if switching to another acpi.ko without doing a kernel rebuild. This has the advantage of making testing easier. Another reason is that starting ACPI after a system has been brought up often does not work well. If you are experiencing problems, you can disable ACPI altogether. This driver should not and can not be unloaded because the system bus uses it for various hardware interactions. ACPI can be disabled by setting hint.acpi.0.disabled="1" in /boot/loader.conf or at the loader(8) prompt.
Note: ACPI and APM cannot coexist and should be used separately. The last one to load will terminate if the driver notices the other running.
ACPI can be used to put the system into
a sleep mode with
acpiconf(8), the
-s
flag, and a 1-5 option. Most
users will only need 1 or 3
(suspend to RAM). Option 5 will do a soft-off which is
the same action as:
# halt -p
Other options are available via sysctl(8). Check out the acpi(4) and acpiconf(8) manual pages for more information.
ACPI is a fundamentally new way of discovering devices, managing power usage, and providing standardized access to various hardware previously managed by the BIOS. Progress is being made toward ACPI working on all systems, but bugs in some motherboards' ACPI Machine Language (AML) bytecode, incompleteness in FreeBSD's kernel subsystems, and bugs in the Intel ACPI-CA interpreter continue to appear.
This document is intended to help you assist the FreeBSD ACPI maintainers in identifying the root cause of problems you observe and debugging and developing a solution. Thanks for reading this and we hope we can solve your system's problems.
Note: Before submitting a problem, be sure you are running the latest BIOS version and, if available, embedded controller firmware version.
For those of you that want to submit a problem right away, please send the following information to [email protected]:
Description of the buggy behavior, including system type and model and anything that causes the bug to appear. Also, please note as accurately as possible when the bug began occurring if it is new for you.
The dmesg(8) output after boot -v, including any error messages generated by you exercising the bug.
The dmesg(8) output from boot -v with ACPI disabled, if disabling it helps fix the problem.
Output from sysctl hw.acpi. This is also a good way of figuring out what features your system offers.
URL where your ACPI Source Language (ASL) can be found. Do not send the ASL directly to the list as it can be very large. Generate a copy of your ASL by running this command:
# acpidump -dt > name-system.asl
(Substitute your login name for name and manufacturer/model for system. Example: njl-FooCo6000.asl)
Most of the developers watch the FreeBSD-CURRENT mailing list but please submit problems to freebsd-acpi to be sure it is seen. Please be patient, all of us have full-time jobs elsewhere. If your bug is not immediately apparent, we will probably ask you to submit a PR via send-pr(1). When entering a PR, please include the same information as requested above. This will help us track the problem and resolve it. Do not send a PR without emailing freebsd-acpi first as we use PRs as reminders of existing problems, not a reporting mechanism. It is likely that your problem has been reported by someone before.
ACPI is present in all modern computers that conform to the ia32 (x86), ia64 (Itanium), and amd64 (AMD) architectures. The full standard has many features including CPU performance management, power planes control, thermal zones, various battery systems, embedded controllers, and bus enumeration. Most systems implement less than the full standard. For instance, a desktop system usually only implements the bus enumeration parts while a laptop might have cooling and battery management support as well. Laptops also have suspend and resume, with their own associated complexity.
An ACPI-compliant system has various components. The BIOS and chipset vendors provide various fixed tables (e.g., FADT) in memory that specify things like the APIC map (used for SMP), config registers, and simple configuration values. Additionally, a table of bytecode (the Differentiated System Description Table DSDT) is provided that specifies a tree-like name space of devices and methods.
The ACPI driver must parse the fixed tables, implement an interpreter for the bytecode, and modify device drivers and the kernel to accept information from the ACPI subsystem. For FreeBSD, Intel has provided an interpreter (ACPI-CA) that is shared with Linux and NetBSD. The path to the ACPI-CA source code is src/sys/contrib/dev/acpica. The glue code that allows ACPI-CA to work on FreeBSD is in src/sys/dev/acpica/Osd. Finally, drivers that implement various ACPI devices are found in src/sys/dev/acpica.
For ACPI to work correctly, all the parts have to work correctly. Here are some common problems, in order of frequency of appearance, and some possible workarounds or fixes.
In some cases, resuming from a suspend operation will cause the mouse to fail. A known work around is to add hint.psm.0.flags="0x3000" to /boot/loader.conf. If this does not work then please consider sending a bug report as described above.
ACPI has three suspend to RAM (STR) states, S1-S3, and one suspend to disk state (STD), called S4. S5 is “soft off” and is the normal state your system is in when plugged in but not powered up. S4 can actually be implemented two separate ways. S4BIOS is a BIOS-assisted suspend to disk. S4OS is implemented entirely by the operating system.
Start by checking sysctl hw.acpi for the suspend-related items. Here are the results for a Thinkpad:
hw.acpi.supported_sleep_state: S3 S4 S5 hw.acpi.s4bios: 0
This means that we can use acpiconf -s to test
S3, S4OS, and S5. If s4bios
was one (1), we would have
S4BIOS support
instead of S4 OS.
When testing suspend/resume, start with S1, if supported. This state is most likely to work since it does not require much driver support. No one has implemented S2 but if you have it, it is similar to S1. The next thing to try is S3. This is the deepest STR state and requires a lot of driver support to properly reinitialize your hardware. If you have problems resuming, feel free to email the freebsd-acpi list but do not expect the problem to be resolved since there are a lot of drivers/hardware that need more testing and work.
A common problem with suspend/resume is that many device drivers do not save, restore, or reinitialize their firmware, registers, or device memory properly. As a first attempt at debugging the problem, try:
# sysctl debug.bootverbose=1 # sysctl debug.acpi.suspend_bounce=1 # acpiconf -s 3
This test emulates suspend/resume cycle of all device drivers without actually going into S3 state. In some cases, you can easily catch problems with this method (e.g., losing firmware state, device watchdog time out, and retrying forever). Note that the system will not really enter S3 state, which means devices may not lose power, and many will work fine even if suspend/resume methods are totally missing, unlike real S3 state.
Harder cases require additional hardware, i.e., serial port/cable for serial console or Firewire port/cable for dcons(4), and kernel debugging skills.
To help isolate the problem, remove as many drivers from your kernel as
possible. If it works, you can narrow down which driver is the problem by loading
drivers until it fails again. Typically binary drivers like nvidia.ko, X11 display drivers, and USB will have the most problems while Ethernet interfaces
usually work fine. If you can properly load/unload the drivers, you can automate
this by putting the appropriate commands in /etc/rc.suspend and /etc/rc.resume.
There is a commented-out example for unloading and loading a driver. Try
setting hw.acpi.reset_video
to zero (0) if your display is messed up after resume. Try setting
longer or shorter values for hw.acpi.sleep_delay
to see
if that helps.
Another thing to try is load a recent Linux distribution with ACPI support and test their suspend/resume support on the same hardware. If it works on Linux, it is likely a FreeBSD driver problem and narrowing down which driver causes the problems will help us fix the problem. Note that the ACPI maintainers do not usually maintain other drivers (e.g., sound, ATA, etc.) so any work done on tracking down a driver problem should probably eventually be posted to the freebsd-current list and mailed to the driver maintainer. If you are feeling adventurous, go ahead and start putting some debugging printf(3)s in a problematic driver to track down where in its resume function it hangs.
Finally, try disabling ACPI and enabling APM instead. If suspend/resume works with APM, you may be better off sticking with APM, especially on older hardware (pre-2000). It took vendors a while to get ACPI support correct and older hardware is more likely to have BIOS problems with ACPI.
Most system hangs are a result of lost interrupts or an interrupt storm. Chipsets have a lot of problems based on how the BIOS configures interrupts before boot, correctness of the APIC (MADT) table, and routing of the System Control Interrupt (SCI).
Interrupt storms can be distinguished from lost interrupts by checking the output of vmstat -i and looking at the line that has acpi0. If the counter is increasing at more than a couple per second, you have an interrupt storm. If the system appears hung, try breaking to DDB (CTRL+ALT+ESC on console) and type show interrupts.
Your best hope when dealing with interrupt problems is to try disabling APIC support with hint.apic.0.disabled="1" in loader.conf.
Panics are relatively rare for ACPI and are the top priority to be fixed. The first step is to isolate the steps to reproduce the panic (if possible) and get a backtrace. Follow the advice for enabling options DDB and setting up a serial console (see Section 27.6.5.3) or setting up a dump(8) partition. You can get a backtrace in DDB with tr. If you have to handwrite the backtrace, be sure to at least get the lowest five (5) and top five (5) lines in the trace.
Then, try to isolate the problem by booting with ACPI disabled. If that works, you can isolate the ACPI subsystem by using various values of debug.acpi.disable
. See the acpi(4) manual page
for some examples.
First, try setting hw.acpi.disable_on_poweroff="0" in loader.conf(5). This keeps ACPI from disabling various events during the shutdown process. Some systems need this value set to 1 (the default) for the same reason. This usually fixes the problem of a system powering up spontaneously after a suspend or poweroff.
If you have other problems with ACPI (working with a docking station, devices not detected, etc.), please email a description to the mailing list as well; however, some of these issues may be related to unfinished parts of the ACPI subsystem so they might take a while to be implemented. Please be patient and prepared to test patches we may send you.
The most common problem is the BIOS vendors providing incorrect (or outright buggy!) bytecode. This is usually manifested by kernel console messages like this:
ACPI-1287: *** Error: Method execution failed [\\_SB_.PCI0.LPC0.FIGD._STA] \\ (Node 0xc3f6d160), AE_NOT_FOUND
Often, you can resolve these problems by updating your BIOS to the latest revision. Most console messages are harmless
but if you have other problems like battery status not working, they are a good
place to start looking for problems in the AML. The bytecode, known as AML, is compiled from a source language called ASL. The AML is found in the table known as the DSDT. To get a copy of your ASL, use acpidump(8). You
should use both the -t
(show contents of the fixed
tables) and -d
(disassemble AML to ASL) options. See the Submitting
Debugging Information section for an example syntax.
The simplest first check you can do is to recompile your ASL to check for errors. Warnings can usually be ignored but errors are bugs that will usually prevent ACPI from working correctly. To recompile your ASL, issue the following command:
# iasl your.asl
In the long run, our goal is for almost everyone to have ACPI work without any user intervention. At this point, however, we are still developing workarounds for common mistakes made by the BIOS vendors. The Microsoft interpreter (acpi.sys and acpiec.sys) does not strictly check for adherence to the standard, and thus many BIOS vendors who only test ACPI under Windows never fix their ASL. We hope to continue to identify and document exactly what non-standard behavior is allowed by Microsoft's interpreter and replicate it so FreeBSD can work without forcing users to fix the ASL. As a workaround and to help us identify behavior, you can fix the ASL manually. If this works for you, please send a diff(1) of the old and new ASL so we can possibly work around the buggy behavior in ACPI-CA and thus make your fix unnecessary.
Here is a list of common error messages, their cause, and how to fix them:
Some AML assumes the world consists of various Windows versions. You can tell FreeBSD to claim it is any OS to see if this fixes problems you may have. An easy way to override this is to set hw.acpi.osname="Windows 2001" in /boot/loader.conf or other similar strings you find in the ASL.
Some methods do not explicitly return a value as the standard requires. While
ACPI-CA does not handle this, FreeBSD
has a workaround that allows it to return the value implicitly. You can also add
explicit Return statements where required if you know what value should be
returned. To force iasl to compile the ASL, use the -f
flag.
After you customize your.asl, you will want to compile it, run:
# iasl your.asl
You can add the -f
flag to force creation of the
AML, even if there are errors during
compilation. Remember that some errors (e.g., missing Return statements) are
automatically worked around by the interpreter.
DSDT.aml is the default output filename for iasl. You can load this instead of your BIOS's buggy copy (which is still present in flash memory) by editing /boot/loader.conf as follows:
acpi_dsdt_load="YES" acpi_dsdt_name="/boot/DSDT.aml"
Be sure to copy your DSDT.aml to the /boot directory.
The ACPI driver has a very flexible debugging facility. It allows you to specify a set of subsystems as well as the level of verbosity. The subsystems you wish to debug are specified as “layers” and are broken down into ACPI-CA components (ACPI_ALL_COMPONENTS) and ACPI hardware support (ACPI_ALL_DRIVERS). The verbosity of debugging output is specified as the “level” and ranges from ACPI_LV_ERROR (just report errors) to ACPI_LV_VERBOSE (everything). The “level” is a bitmask so multiple options can be set at once, separated by spaces. In practice, you will want to use a serial console to log the output if it is so long it flushes the console message buffer. A full list of the individual layers and levels is found in the acpi(4) manual page.
Debugging output is not enabled by default. To enable it, add options ACPI_DEBUG to your kernel configuration file if ACPI is compiled into the kernel. You can add ACPI_DEBUG=1 to your /etc/make.conf to enable it globally. If it is a module, you can recompile just your acpi.ko module as follows:
# cd /sys/modules/acpi/acpi && make clean && make ACPI_DEBUG=1
Install acpi.ko in /boot/kernel and add your desired level and layer to loader.conf. This example enables debug messages for all ACPI-CA components and all ACPI hardware drivers (CPU, LID, etc.). It will only output error messages, the least verbose level.
debug.acpi.layer="ACPI_ALL_COMPONENTS ACPI_ALL_DRIVERS" debug.acpi.level="ACPI_LV_ERROR"
If the information you want is triggered by a specific event (say, a suspend and then resume), you can leave out changes to loader.conf and instead use sysctl to specify the layer and level after booting and preparing your system for the specific event. The sysctls are named the same as the tunables in loader.conf.
More information about ACPI may be found in the following locations:
The ACPI Mailing List Archives http://lists.freebsd.org/pipermail/freebsd-acpi/
The old ACPI Mailing List Archives http://home.jp.FreeBSD.org/mail-list/acpi-jp/
The ACPI 2.0 Specification http://acpi.info/spec.htm
FreeBSD Manual pages: acpi(4), acpi_thermal(4), acpidump(8), iasl(8), acpidb(8)
DSDT debugging resource. (Uses Compaq as an example but generally useful.)
The process of starting a computer and loading the operating system is referred to as “the bootstrap process”, or simply “booting”. FreeBSD's boot process provides a great deal of flexibility in customizing what happens when you start the system, allowing you to select from different operating systems installed on the same computer, or even different versions of the same operating system or installed kernel.
This chapter details the configuration options you can set and how to customize the FreeBSD boot process. This includes everything that happens until the FreeBSD kernel has started, probed for devices, and started init(8). If you are not quite sure when this happens, it occurs when the text color changes from bright white to grey.
After reading this chapter, you will know:
What the components of the FreeBSD bootstrap system are, and how they interact.
The options you can give to the components in the FreeBSD bootstrap to control the boot process.
The basics of device.hints(5).
x86 Only: This chapter only describes the boot process for FreeBSD running on Intel x86 systems.
Turning on a computer and starting the operating system poses an interesting dilemma. By definition, the computer does not know how to do anything until the operating system is started. This includes running programs from the disk. So if the computer can not run a program from the disk without the operating system, and the operating system programs are on the disk, how is the operating system started?
This problem parallels one in the book The Adventures of Baron Munchausen. A character had fallen part way down a manhole, and pulled himself out by grabbing his bootstraps, and lifting. In the early days of computing the term bootstrap was applied to the mechanism used to load the operating system, which has become shortened to “booting”.
On x86 hardware the Basic Input/Output System (BIOS) is responsible for loading the operating system. To do this, the BIOS looks on the hard disk for the Master Boot Record (MBR), which must be located on a specific place on the disk. The BIOS has enough knowledge to load and run the MBR, and assumes that the MBR can then carry out the rest of the tasks involved in loading the operating system, possibly with the help of the BIOS.
The code within the MBR is usually referred to as a boot manager, especially when it interacts with the user. In this case the boot manager usually has more code in the first track of the disk or within some OS's file system. (A boot manager is sometimes also called a boot loader, but FreeBSD uses that term for a later stage of booting.) Popular boot managers include boot0 (aka Boot Easy, the standard FreeBSD boot manager), Grub, GAG, and LILO. (Only boot0 fits within the MBR.)
If you have only one operating system installed on your disks then a standard PC MBR will suffice. This MBR searches for the first bootable (aka active) slice on the disk, and then runs the code on that slice to load the remainder of the operating system. The MBR installed by fdisk(8), by default, is such an MBR. It is based on /boot/mbr.
If you have installed multiple operating systems on your disks then you can install a different boot manager, one that can display a list of different operating systems, and allows you to choose the one to boot from. Two of these are discussed in the next subsection.
The remainder of the FreeBSD bootstrap system is divided into three stages. The first stage is run by the MBR, which knows just enough to get the computer into a specific state and run the second stage. The second stage can do a little bit more, before running the third stage. The third stage finishes the task of loading the operating system. The work is split into these three stages because the PC standards put limits on the size of the programs that can be run at stages one and two. Chaining the tasks together allows FreeBSD to provide a more flexible loader.
The kernel is then started and it begins to probe for devices and initialize them for use. Once the kernel boot process is finished, the kernel passes control to the user process init(8), which then makes sure the disks are in a usable state. init(8) then starts the user-level resource configuration which mounts file systems, sets up network cards to communicate on the network, and generally starts all the processes that usually are run on a FreeBSD system at startup.
The code in the MBR or boot manager is sometimes referred to as stage zero of the boot process. This subsection discusses two of the boot managers previously mentioned: boot0 and LILO.
The boot0 Boot Manager: The MBR installed by FreeBSD's installer or boot0cfg(8), by default, is based on /boot/boot0. (The boot0 program is very simple, since the program in the MBR can only be 446 bytes long because of the slice table and 0x55AA identifier at the end of the MBR.) If you have installed boot0 and multiple operating systems on your hard disks, then you will see a display similar to this one at boot time:
Other operating systems, in particular Windows, have been known to overwrite an existing MBR with their own. If this happens to you, or you want to replace your existing MBR with the FreeBSD MBR then use the following command:
# fdisk -B -b /boot/boot0 device
where device is the device that you boot from, such as ad0 for the first IDE disk, ad2 for the first IDE disk on a second IDE controller, da0 for the first SCSI disk, and so on. Or, if you want a custom configuration of the MBR, use boot0cfg(8).
The LILO Boot Manager: To install this boot manager so it will also boot FreeBSD, first start Linux and add the following to your existing /etc/lilo.conf configuration file:
other=/dev/hdXY table=/dev/hdX loader=/boot/chain.b label=FreeBSD
In the above, specify FreeBSD's primary partition and drive using Linux
specifiers, replacing X with the Linux drive
letter and Y with the Linux primary partition
number. If you are using a SCSI drive,
you will need to change /dev/hd to read
something similar to /dev/sd. The loader=/boot/chain.b
line can be omitted if you have both
operating systems on the same drive. Now run /sbin/lilo -v
to commit your new changes to the system; this should be verified by checking its
screen messages.
Conceptually the first and second stages are part of the same program, on the same area of the disk. Because of space constraints they have been split into two, but you would always install them together. They are copied from the combined file /boot/boot by the installer or bsdlabel (see below).
They are located outside file systems, in the first track of the boot slice, starting with the first sector. This is where boot0, or any other boot manager, expects to find a program to run which will continue the boot process. The number of sectors used is easily determined from the size of /boot/boot.
boot1 is very simple, since it can only be 512 bytes in size, and knows just enough about the FreeBSD bsdlabel, which stores information about the slice, to find and execute boot2.
boot2 is slightly more sophisticated, and understands the FreeBSD file system enough to find files on it, and can provide a simple interface to choose the kernel or loader to run.
Since the loader is much more sophisticated, and provides a nice easy-to-use boot configuration, boot2 usually runs it, but previously it was tasked to run the kernel directly.
If you ever need to replace the installed boot1 and boot2 use bsdlabel(8):
# bsdlabel -B diskslice
where diskslice is the disk and slice you boot from, such as ad0s1 for the first slice on the first IDE disk.
Dangerously Dedicated Mode: If you use just the disk name, such as ad0, in the bsdlabel(8) command you will create a dangerously dedicated disk, without slices. This is almost certainly not what you want to do, so make sure you double check the bsdlabel(8) command before you press Return.
The loader is the final stage of the three-stage bootstrap, and is located on the file system, usually as /boot/loader.
The loader is intended as a user-friendly method for configuration, using an easy-to-use built-in command set, backed up by a more powerful interpreter, with a more complex command set.
During initialization, the loader will probe for a console and for disks, and figure out what disk it is booting from. It will set variables accordingly, and an interpreter is started where user commands can be passed from a script or interactively.
The loader will then read /boot/loader.rc, which by default reads in /boot/defaults/loader.conf which sets reasonable defaults for variables and reads /boot/loader.conf for local changes to those variables. loader.rc then acts on these variables, loading whichever modules and kernel are selected.
Finally, by default, the loader issues a 10 second wait for key presses, and boots the kernel if it is not interrupted. If interrupted, the user is presented with a prompt which understands the easy-to-use command set, where the user may adjust variables, unload all modules, load modules, and then finally boot or reboot.
These are the most commonly used loader commands. For a complete discussion of all available commands, please see loader(8).
Proceeds to boot the kernel if not interrupted within the time span given, in seconds. It displays a countdown, and the default time span is 10 seconds.
Immediately proceeds to boot the kernel, with the given options, if any, and with the kernel name given, if it is. Providing a kernel name on the command-line is only applicable after an unload command has been issued, otherwise the previously-loaded kernel will be used.
Goes through the same automatic configuration of modules based on variables as what happens at boot. This only makes sense if you use unload first, and change some variables, most commonly kernel.
Shows help messages read from /boot/loader.help. If the topic given is index, then the list of available topics is given.
Processes the file with the given filename. The file is read in, and interpreted line by line. An error immediately stops the include command.
-t
type] filenameLoads the kernel, kernel module, or file of the type given, with the filename given. Any arguments after filename are passed to the file.
-l
] [path]Displays a listing of files in the given path, or the root directory, if the
path is not specified. If -l
is specified, file
sizes will be shown too.
-v
]Lists all of the devices from which it may be possible to load modules. If
-v
is specified, more details are printed.
-v
]Displays loaded modules. If -v
is specified,
more details are shown.
Displays the files specified, with a pause at each LINES
displayed.
Immediately reboots the system.
Sets the loader's environment variables.
Removes all loaded modules.
Here are some practical examples of loader usage:
To boot your usual kernel, but in single-user mode:
boot -s
To unload your usual kernel and modules, and then load just your old (or another) kernel:
unload load kernel.old
You can use kernel.GENERIC to refer to the generic kernel that comes on the install disk, or kernel.old to refer to your previously installed kernel (when you have upgraded or configured your own kernel, for example).
Note: Use the following to load your usual modules with another kernel:
unload set kernel="kernel.old" boot-conf
To load a kernel configuration script (an automated script which does the things you would normally do in the kernel boot-time configurator):
load -t userconfig_script /boot/kernel.conf
The splash screen creates a more visually appealing boot screen compared to the original boot messages. This screen will be displayed until a console login prompt or an X display manager offers a login prompt.
There are two basic environments available in FreeBSD. The first is the default legacy virtual console command line environment. After the system finishes booting, a console login prompt is presented. The second environment is the X11 Desktop graphical environment. After X11 and one of the graphical desktop environments, such as GNOME, KDE, or XFce are installed, the X11 desktop can be launched by using startx.
Some users prefer the X11 graphical login screen over the traditional text based login prompt. Display managers like XDM for Xorg, gdm for GNOME, and kdm for KDE (and any other from the Ports Collection) provide a graphical login screen in place of the console login prompt. After a successful login, they present the user with a graphical desktop.
In the command line environment, the splash screen would hide all the boot probe messages and task startup messages before displaying the login prompt. In X11 environment, the users would get a visually clearer system start up experience resembling something closer to what a (Microsoft Windows or non-unix type system) user would experience.
The splash screen function supports 256-color bitmap (.bmp), ZSoft PCX (.pcx), or TheDraw (.bin) files. In addition, the splash image files must have a resolution of 320 by 200 pixels or less to work on standard VGA adapters.
To use larger images, up to the maximum resolution of 1024 by 768 pixels, activate the VESA support included in FreeBSD. This can be enabled by loading the VESA module during system boot, or adding a VESA kernel configuration option and building a custom kernel (see Chapter 9). The VESA support gives users the ability to display a splash screen image that fills the whole display screen.
While the splash screen is being displayed during the booting process, it can be turned off any time by hitting any key on the keyboard.
The splash screen also defaults to being a screen saver outside of X11. After a time period of non-use the screen will change to the splash screen and cycle through steps of changing intensity of the image, from bright to a very dark and over again. This default splash screen (screen saver) behavior could be overridden by adding a saver= line to /etc/rc.conf. Option saver= has several built-in screen savers to choose from, the full list can be found in the splash(4) manual page. The default screen saver is called “warp”. Note that the saver= option specified in /etc/rc.conf only applies to virtual consoles. It has no effect on X11 display managers.
A few boot loader messages, including the boot options menu and a timed wait count down prompt are displayed at boot time, even when the splash screen is enabled.
Sample splash screen files can be downloaded from the gallery at http://artwork.freebsdgr.org. By installing the sysutils/bsd-splash-changer port, splash images can be chosen from a collection randomly at each boot.
The splash screen (.bmp, .pcx, or .bin) file has to be placed on the root partition, for example in the /boot directory.
For default boot display resolution (256-color, 320 by 200 pixels, or less), edit /boot/loader.conf, so it contains the following:
splash_bmp_load="YES" bitmap_load="YES" bitmap_name="/boot/splash.bmp"
For larger video resolutions up to the maximum of 1024 by 768 pixels, edit /boot/loader.conf, so it contains the following:
vesa_load="YES" splash_bmp_load="YES" bitmap_load="YES" bitmap_name="/boot/splash.bmp"
The above assumes that /boot/splash.bmp is used for splash screen. When a PCX file is desired, use the following statements, plus the vesa_load="YES" line depending on the resolution.
splash_pcx_load="YES" bitmap_load="YES" bitmap_name="/boot/splash.pcx"
In version 8.3 another option is to use ascii art in TheDraw format.
splash_txt="YES" bitmap_load="YES" bitmap_name="/boot/splash.bin"
The file name is not restricted to “splash” as shown in the above example. It can be anything as long as it is one of the above types such as, splash_640x400.bmp or bluewave.pcx.
Some other interesting loader.conf options:
This will stop the boot options menu from being displayed, but the timed wait count down prompt will still be present. Even with the display of the boot options menu disabled, entering an option selection at the timed wait count down prompt will enact the corresponding boot option.
This will replace the default words “FreeBSD”, which are displayed to the right of the boot options menu with the colored beastie logo like releases in the past had.
For more information, please see the splash(4), loader.conf(5), and vga(4) manual pages.
Once the kernel is loaded by either loader (as usual) or boot2 (bypassing the loader), it examines its boot flags, if any, and adjusts its behavior as necessary.
Here are the more common boot flags:
-a
during kernel initialization, ask for the device to mount as the root file system.
-C
boot from CDROM.
-c
run UserConfig, the boot-time kernel configurator
-s
boot into single-user mode
-v
be more verbose during kernel startup
Note: There are other boot flags, read boot(8) for more information on them.
During initial system startup, the boot loader(8) will read the device.hints(5) file. This file stores kernel boot information known as variables, sometimes referred to as “device hints”. These “device hints” are used by device drivers for device configuration.
Device hints may also be specified at the Stage 3 boot loader prompt. Variables can be added using set, removed with unset, and viewed with the show commands. Variables set in /boot/device.hints can be overridden here also. Device hints entered at the boot loader are not permanent and will be forgotten on the next reboot.
Once the system is booted, the kenv(1) command can be used to dump all of the variables.
The syntax for /boot/device.hints is one variable per line, using the standard hash “#” as comment markers. Lines are constructed as follows:
hint.driver.unit.keyword="value"
The syntax for the Stage 3 boot loader is:
set hint.driver.unit.keyword=value
driver is the device driver name, unit is the device driver unit number, and keyword is the hint keyword. The keyword may consist of the following options:
at: specifies the bus which the device is attached to.
port: specifies the start address of the I/O to be used.
irq: specifies the interrupt request number to be used.
drq: specifies the DMA channel number.
maddr: specifies the physical memory address occupied by the device.
flags: sets various flag bits for the device.
disabled: if set to 1 the device is disabled.
Device drivers may accept (or require) more hints not listed here, viewing their manual page is recommended. For more information, consult the device.hints(5), kenv(1), loader.conf(5), and loader(8) manual pages.
Once the kernel has finished booting, it passes control to the user process init(8), which is located at /sbin/init, or the program path specified in the init_path variable in loader.
The automatic reboot sequence makes sure that the file systems available on the system are consistent. If they are not, and fsck(8) cannot fix the inconsistencies, init(8) drops the system into single-user mode for the system administrator to take care of the problems directly.
This mode can be reached through the automatic reboot
sequence, or by the user booting with the -s
option or setting the boot_single variable in loader.
It can also be reached by calling shutdown(8) without
the reboot (-r
) or halt (-h
)
options, from multi-user mode.
If the system console is set to insecure in /etc/ttys, then the system prompts for the root password before initiating single-user mode.
Example 13-3. An Insecure Console in /etc/ttys
# name getty type status comments # # If console is marked "insecure", then init will ask for the root password # when going to single-user mode. console none unknown off insecure
Note: An insecure console means that you consider your physical security to the console to be insecure, and want to make sure only someone who knows the root password may use single-user mode, and it does not mean that you want to run your console insecurely. Thus, if you want security, choose insecure, not secure.
If init(8) finds your file systems to be in order, or once the user has finished in single-user mode, the system enters multi-user mode, in which it starts the resource configuration of the system.
The resource configuration system reads in configuration defaults from /etc/defaults/rc.conf, and system-specific details from /etc/rc.conf, and then proceeds to mount the system file systems mentioned in /etc/fstab, start up networking services, start up miscellaneous system daemons, and finally runs the startup scripts of locally installed packages.
The rc(8) manual page is a good reference to the resource configuration system, as is examining the scripts themselves.
Upon controlled shutdown, via shutdown(8), init(8) will attempt to run the script /etc/rc.shutdown, and then proceed to send all processes the TERM signal, and subsequently the KILL signal to any that do not terminate timely.
To power down a FreeBSD machine on architectures and systems that support power management, use the command shutdown -p now to turn the power off immediately. To just reboot a FreeBSD system, just use shutdown -r now. You need to be root or a member of operator group to run shutdown(8). The halt(8) and reboot(8) commands can also be used, please refer to their manual pages and to shutdown(8)'s one for more information.
Note: Power management requires acpi(4) support in the kernel or loaded as module for.
FreeBSD allows multiple users to use the computer at the same time. Obviously, only one of those users can be sitting in front of the screen and keyboard at any one time [6], but any number of users can log in through the network to get their work done. To use the system every user must have an account.
After reading this chapter, you will know:
The differences between the various user accounts on a FreeBSD system.
How to add user accounts.
How to remove user accounts.
How to change account details, such as the user's full name, or preferred shell.
How to set limits on a per-account basis, to control the resources such as memory and CPU time that accounts and groups of accounts are allowed to access.
How to use groups to make account management easier.
Before reading this chapter, you should:
Understand the basics of UNIX and FreeBSD (Chapter 4).
All access to the system is achieved via accounts, and all processes are run by users, so user and account management are of integral importance on FreeBSD systems.
Every account on a FreeBSD system has certain information associated with it to identify the account.
The user name as it would be typed at the login: prompt. User names must be unique across the computer; you may not have two users with the same user name. There are a number of rules for creating valid user names, documented in passwd(5); you would typically use user names that consist of eight or fewer all lower case characters.
Each account has a password associated with it. The password may be blank, in which case no password will be required to access the system. This is normally a very bad idea; every account should have a password.
The UID is a number, traditionally from 0 to 65535[7], used to uniquely identify the user to the system. Internally, FreeBSD uses the UID to identify users—any FreeBSD commands that allow you to specify a user name will convert it to the UID before working with it. This means that you can have several accounts with different user names but the same UID. As far as FreeBSD is concerned these accounts are one user. It is unlikely you will ever need to do this.
The GID is a number, traditionally from 0 to 65535[7], used to uniquely identify the primary group that the user belongs to. Groups are a mechanism for controlling access to resources based on a user's GID rather than their UID. This can significantly reduce the size of some configuration files. A user may also be in more than one group.
Login classes are an extension to the group mechanism that provide additional flexibility when tailoring the system to different users.
By default FreeBSD does not force users to change their passwords periodically. You can enforce this on a per-user basis, forcing some or all of your users to change their passwords after a certain amount of time has elapsed.
By default FreeBSD does not expire accounts. If you are creating accounts that you know have a limited lifespan, for example, in a school where you have accounts for the students, then you can specify when the account expires. After the expiry time has elapsed the account cannot be used to log in to the system, although the account's directories and files will remain.
The user name uniquely identifies the account to FreeBSD, but does not necessarily reflect the user's real name. This information can be associated with the account.
The home directory is the full path to a directory on the system in which the user will start when logging on to the system. A common convention is to put all user home directories under /home/username or /usr/home/username. The user would store their personal files in their home directory, and any directories they may create in there.
The shell provides the default environment users use to interact with the system. There are many different kinds of shells, and experienced users will have their own preferences, which can be reflected in their account settings.
There are three main types of accounts: the Superuser, system users, and user accounts. The Superuser account, usually called root, is used to manage the system with no limitations on privileges. System users run services. Finally, user accounts are used by real people, who log on, read mail, and so forth.
The superuser account, usually called root, comes preconfigured to facilitate system administration, and should not be used for day-to-day tasks like sending and receiving mail, general exploration of the system, or programming.
This is because the superuser, unlike normal user accounts, can operate without limits, and misuse of the superuser account may result in spectacular disasters. User accounts are unable to destroy the system by mistake, so it is generally best to use normal user accounts whenever possible, unless you especially need the extra privilege.
You should always double and triple-check commands you issue as the superuser, since an extra space or missing character can mean irreparable data loss.
So, the first thing you should do after reading this chapter is to create an unprivileged user account for yourself for general usage if you have not already. This applies equally whether you are running a multi-user or single-user machine. Later in this chapter, we discuss how to create additional accounts, and how to change between the normal user and superuser.
System users are those used to run services such as DNS, mail, web servers, and so forth. The reason for this is security; if all services ran as the superuser, they could act without restriction.
Examples of system users are daemon, operator, bind (for the Domain Name Service), news, and www.
nobody is the generic unprivileged system user. However, it is important to keep in mind that the more services that use nobody, the more files and processes that user will become associated with, and hence the more privileged that user becomes.
User accounts are the primary means of access for real people to the system, and these accounts insulate the user and the environment, preventing the users from damaging the system or other users, and allowing users to customize their environment without affecting others.
Every person accessing your system should have a unique user account. This allows you to find out who is doing what, prevent people from clobbering each others' settings or reading each others' mail, and so forth.
Each user can set up their own environment to accommodate their use of the system, by using alternate shells, editors, key bindings, and language.
There are a variety of different commands available in the UNIX environment to manipulate user accounts. The most common commands are summarized below, followed by more detailed examples of their usage.
Command | Summary |
---|---|
adduser(8) | The recommended command-line application for adding new users. |
rmuser(8) | The recommended command-line application for removing users. |
chpass(1) | A flexible tool to change user database information. |
passwd(1) | The simple command-line tool to change user passwords. |
pw(8) | A powerful and flexible tool to modify all aspects of user accounts. |
adduser(8) is a simple program for adding new users. It creates entries in the system passwd and group files. It will also create a home directory for the new user, copy in the default configuration files (“dotfiles”) from /usr/share/skel, and can optionally mail the new user a welcome message.
Example 14-1. Adding a User on FreeBSD
# adduser Username: jru Full name: J. Random User Uid (Leave empty for default): Login group [jru]: Login group is jru. Invite jru into other groups? []: wheel Login class [default]: Shell (sh csh tcsh zsh nologin) [sh]: zsh Home directory [/home/jru]: Home directory permissions (Leave empty for default): Use password-based authentication? [yes]: Use an empty password? (yes/no) [no]: Use a random password? (yes/no) [no]: Enter password: Enter password again: Lock out the account after creation? [no]: Username : jru Password : **** Full Name : J. Random User Uid : 1001 Class : Groups : jru wheel Home : /home/jru Shell : /usr/local/bin/zsh Locked : no OK? (yes/no): yes adduser: INFO: Successfully added (jru) to the user database. Add another user? (yes/no): no Goodbye! #
Note: The password you type in is not echoed, nor are asterisks displayed. Make sure that you do not mistype the password.
You can use rmuser(8) to completely remove a user from the system. rmuser(8) performs the following steps:
Removes the user's crontab(1) entry (if any).
Removes any at(1) jobs belonging to the user.
Kills all processes owned by the user.
Removes the user from the system's local password file.
Removes the user's home directory (if it is owned by the user).
Removes the incoming mail files belonging to the user from /var/mail.
Removes all files owned by the user from temporary file storage areas such as /tmp.
Finally, removes the username from all groups to which it belongs in /etc/group.
Note: If a group becomes empty and the group name is the same as the username, the group is removed; this complements the per-user unique groups created by adduser(8).
rmuser(8) cannot be used to remove superuser accounts, since that is almost always an indication of massive destruction.
By default, an interactive mode is used, which attempts to make sure you know what you are doing.
Example 14-2. rmuser Interactive Account Removal
# rmuser jru Matching password entry: jru:*:1001:1001::0:0:J. Random User:/home/jru:/usr/local/bin/zsh Is this the entry you wish to remove? y Remove user's home directory (/home/jru)? y Updating password file, updating databases, done. Updating group file: trusted (removing group jru -- personal group is empty) done. Removing user's incoming mail file /var/mail/jru: done. Removing files belonging to jru from /tmp: done. Removing files belonging to jru from /var/tmp: done. Removing files belonging to jru from /var/tmp/vi.recover: done. #
chpass(1) changes user database information such as passwords, shells, and personal information.
Only system administrators, as the superuser, may change other users' information and passwords with chpass(1).
When passed no options, aside from an optional username, chpass(1) displays an editor containing user information. When the user exists from the editor, the user database is updated with the new information.
Note: You will be asked for your password after exiting the editor if you are not the superuser.
Example 14-3. Interactive chpass by Superuser
#Changing user database information for jru. Login: jru Password: * Uid [#]: 1001 Gid [# or name]: 1001 Change [month day year]: Expire [month day year]: Class: Home directory: /home/jru Shell: /usr/local/bin/zsh Full Name: J. Random User Office Location: Office Phone: Home Phone: Other information:
The normal user can change only a small subset of this information, and only for themselves.
Example 14-4. Interactive chpass by Normal User
#Changing user database information for jru. Shell: /usr/local/bin/zsh Full Name: J. Random User Office Location: Office Phone: Home Phone: Other information:
Note: chfn(1) and chsh(1) are just links to chpass(1), as are ypchpass(1), ypchfn(1), and ypchsh(1). NIS support is automatic, so specifying the yp before the command is not necessary. If this is confusing to you, do not worry, NIS will be covered in Chapter 30.
passwd(1) is the usual way to change your own password as a user, or another user's password as the superuser.
Note: To prevent accidental or unauthorized changes, the original password must be entered before a new password can be set.
Example 14-5. Changing Your Password
% passwd Changing local password for jru. Old password: New password: Retype new password: passwd: updating the database... passwd: done
Example 14-6. Changing Another User's Password as the Superuser
# passwd jru Changing local password for jru. New password: Retype new password: passwd: updating the database... passwd: done
Note: As with chpass(1), yppasswd(1) is just a link to passwd(1), so NIS works with either command.
pw(8) is a command line utility to create, remove, modify, and display users and groups. It functions as a front end to the system user and group files. pw(8) has a very powerful set of command line options that make it suitable for use in shell scripts, but new users may find it more complicated than the other commands presented here.
If you have users, the ability to limit their system use may have come to mind. FreeBSD provides several ways an administrator can limit the amount of system resources an individual may use. These limits are divided into two sections: disk quotas, and other resource limits.
Disk quotas limit disk usage to users, and they provide a way to quickly check that usage without calculating it every time. Quotas are discussed in Section 19.15.
The other resource limits include ways to limit the amount of CPU, memory, and other resources a user may consume. These are defined using login classes and are discussed here.
Login classes are defined in /etc/login.conf. The precise semantics are beyond the scope of this section, but are described in detail in the login.conf(5) manual page. It is sufficient to say that each user is assigned to a login class (default by default), and that each login class has a set of login capabilities associated with it. A login capability is a name=value pair, where name is a well-known identifier and value is an arbitrary string processed accordingly depending on the name. Setting up login classes and capabilities is rather straight-forward and is also described in login.conf(5).
Note: The system does not normally read the configuration in /etc/login.conf directly, but reads the database file /etc/login.conf.db which provides faster lookups. To generate /etc/login.conf.db from /etc/login.conf, execute the following command:
# cap_mkdb /etc/login.conf
Resource limits are different from plain vanilla login capabilities in two ways. First, for every limit, there is a soft (current) and hard limit. A soft limit may be adjusted by the user or application, but may be no higher than the hard limit. The latter may be lowered by the user, but never raised. Second, most resource limits apply per process to a specific user, not the user as a whole. Note, however, that these differences are mandated by the specific handling of the limits, not by the implementation of the login capability framework (i.e., they are not really a special case of login capabilities).
And so, without further ado, below are the most commonly used resource limits (the rest, along with all the other login capabilities, may be found in login.conf(5)).
The limit on the size of a core file generated by a program is, for obvious reasons, subordinate to other limits on disk usage (e.g., filesize, or disk quotas). Nevertheless, it is often used as a less-severe method of controlling disk space consumption: since users do not generate core files themselves, and often do not delete them, setting this may save them from running out of disk space should a large program (e.g., emacs) crash.
This is the maximum amount of CPU time a user's process may consume. Offending processes will be killed by the kernel.
Note: This is a limit on CPU time consumed, not percentage of the CPU as displayed in some fields by top(1) and ps(1). A limit on the latter is, at the time of this writing, not possible, and would be rather useless: a compiler—probably a legitimate task—can easily use almost 100% of a CPU for some time.
This is the maximum size of a file the user may possess. Unlike disk quotas, this limit is enforced on individual files, not the set of all files a user owns.
This is the maximum number of processes a user may be running. This includes
foreground and background processes alike. For obvious reasons, this may not be
larger than the system limit specified by the kern.maxproc
sysctl(8). Also note
that setting this too small may hinder a user's productivity: it is often
useful to be logged in multiple times or execute pipelines. Some tasks, such as
compiling a large program, also spawn multiple processes (e.g., make(1), cc(1), and other
intermediate preprocessors).
This is the maximum amount a memory a process may have requested to be locked into main memory (e.g., see mlock(2)). Some system-critical programs, such as amd(8), lock into main memory such that in the event of being swapped out, they do not contribute to a system's thrashing in time of trouble.
This is the maximum amount of memory a process may consume at any given time. It includes both core memory and swap usage. This is not a catch-all limit for restricting memory consumption, but it is a good start.
This is the maximum amount of files a process may have open. In FreeBSD, files
are also used to represent sockets and IPC channels; thus, be careful not to set
this too low. The system-wide limit for this is defined by the kern.maxfiles
sysctl(8).
This is the limit on the amount of network memory, and thus mbufs, a user may consume. This originated as a response to an old DoS attack by creating a lot of sockets, but can be generally used to limit network communications.
This is the maximum size a process' stack may grow to. This alone is not sufficient to limit the amount of memory a program may use; consequently, it should be used in conjunction with other limits.
There are a few other things to remember when setting resource limits. Following are some general tips, suggestions, and miscellaneous comments.
Processes started at system startup by /etc/rc are assigned to the daemon login class.
Although the /etc/login.conf that comes with the system is a good source of reasonable values for most limits, only you, the administrator, can know what is appropriate for your system. Setting a limit too high may open your system up to abuse, while setting it too low may put a strain on productivity.
Users of the X Window System (X11) should probably be granted more resources than other users. X11 by itself takes a lot of resources, but it also encourages users to run more programs simultaneously.
Remember that many limits apply to individual processes, not the user as a whole. For
example, setting openfiles
to 50 means that each
process the user runs may open up to 50 files. Thus, the gross amount of files a user may
open is the value of openfiles multiplied by the value of maxproc. This also applies to memory consumption.
For further information on resource limits and login classes and capabilities in general, please consult the relevant manual pages: cap_mkdb(1), getrlimit(2), login.conf(5).
A group is simply a list of users. Groups are identified by their group name and GID (Group ID). In FreeBSD (and most other UNIX like systems), the two factors the kernel uses to decide whether a process is allowed to do something is its user ID and list of groups it belongs to. Unlike a user ID, a process has a list of groups associated with it. You may hear some things refer to the “group ID” of a user or process; most of the time, this just means the first group in the list.
The group name to group ID map is in /etc/group. This is a plain text file with four colon-delimited fields. The first field is the group name, the second is the encrypted password, the third the group ID, and the fourth the comma-delimited list of members. It can safely be edited by hand (assuming, of course, that you do not make any syntax errors!). For a more complete description of the syntax, see the group(5) manual page.
If you do not want to edit /etc/group manually, you can use the pw(8) command to add and edit groups. For example, to add a group called teamtwo and then confirm that it exists you can use:
Example 14-7. Adding a Group Using pw(8)
# pw groupadd teamtwo # pw groupshow teamtwo teamtwo:*:1100:
The number 1100 above is the group ID of the group teamtwo. Right now, teamtwo has no members, and is thus rather useless. Let's change that by inviting jru to the teamtwo group.
Example 14-8. Setting the List of Members of a Group Using pw(8)
# pw groupmod teamtwo -M jru # pw groupshow teamtwo teamtwo:*:1100:jru
The argument to the -M
option is a comma-delimited list of
users who are to be in the group. From the preceding sections, we know that the password
file also contains a group for each user. The latter (the user) is automatically added to
the group list by the system; the user will not show up as a member when using the groupshow
command to pw(8), but will show
up when the information is queried via id(1) or similar tool.
In other words, pw(8) only manipulates
the /etc/group file; it will never attempt to read additionally
data from /etc/passwd.
Example 14-9. Adding a New Member to a Group Using pw(8)
# pw groupmod teamtwo -m db # pw groupshow teamtwo teamtwo:*:1100:jru,db
The argument to the -m
option is a comma-delimited list of
users who are to be added to the group. Unlike the previous example, these users are
added to the group and do not replace the list of users in the group.
Example 14-10. Using id(1) to Determine Group Membership
% id jru uid=1001(jru) gid=1001(jru) groups=1001(jru), 1100(teamtwo)
As you can see, jru is a member of the groups jru and teamtwo.
For more information about pw(8), see its manual page, and for more information on the format of /etc/group, consult the group(5) manual page.
This chapter will provide a basic introduction to system security concepts, some general good rules of thumb, and some advanced topics under FreeBSD. A lot of the topics covered here can be applied to system and Internet security in general as well. The Internet is no longer a “friendly” place in which everyone wants to be your kind neighbor. Securing your system is imperative to protect your data, intellectual property, time, and much more from the hands of hackers and the like.
FreeBSD provides an array of utilities and mechanisms to ensure the integrity and security of your system and network.
After reading this chapter, you will know:
Basic system security concepts, in respect to FreeBSD.
About the various crypt mechanisms available in FreeBSD, such as DES and MD5.
How to set up one-time password authentication.
How to configure TCP Wrappers for use with inetd.
How to set up Kerberos5 on FreeBSD.
How to configure IPsec and create a VPN between FreeBSD/Windows machines.
How to configure and use OpenSSH, FreeBSD's SSH implementation.
What file system ACLs are and how to use them.
How to use the Portaudit utility to audit third party software packages installed from the Ports Collection.
How to utilize the FreeBSD security advisories publications.
Have an idea of what Process Accounting is and how to enable it on FreeBSD.
Before reading this chapter, you should:
Understand basic FreeBSD and Internet concepts.
Additional security topics are covered throughout this book. For example, Mandatory Access Control is discussed in Chapter 17 and Internet Firewalls are discussed in Chapter 31.
Security is a function that begins and ends with the system administrator. While all BSD UNIX multi-user systems have some inherent security, the job of building and maintaining additional security mechanisms to keep those users “honest” is probably one of the single largest undertakings of the sysadmin. Machines are only as secure as you make them, and security concerns are ever competing with the human necessity for convenience. UNIX systems, in general, are capable of running a huge number of simultaneous processes and many of these processes operate as servers — meaning that external entities can connect and talk to them. As yesterday's mini-computers and mainframes become today's desktops, and as computers become networked and inter-networked, security becomes an even bigger issue.
System security also pertains to dealing with various forms of attack, including attacks that attempt to crash, or otherwise make a system unusable, but do not attempt to compromise the root account (“break root”). Security concerns can be split up into several categories:
Denial of service attacks.
User account compromises.
Root compromise through accessible servers.
Root compromise via user accounts.
Backdoor creation.
A denial of service attack is an action that deprives the machine of needed resources. Typically, DoS attacks are brute-force mechanisms that attempt to crash or otherwise make a machine unusable by overwhelming its servers or network stack. Some DoS attacks try to take advantage of bugs in the networking stack to crash a machine with a single packet. The latter can only be fixed by applying a bug fix to the kernel. Attacks on servers can often be fixed by properly specifying options to limit the load the servers incur on the system under adverse conditions. Brute-force network attacks are harder to deal with. A spoofed-packet attack, for example, is nearly impossible to stop, short of cutting your system off from the Internet. It may not be able to take your machine down, but it can saturate your Internet connection.
A user account compromise is even more common than a DoS attack. Many sysadmins still run standard telnetd, rlogind, rshd, and ftpd servers on their machines. These servers, by default, do not operate over encrypted connections. The result is that if you have any moderate-sized user base, one or more of your users logging into your system from a remote location (which is the most common and convenient way to login to a system) will have his or her password sniffed. The attentive system admin will analyze his remote access logs looking for suspicious source addresses even for successful logins.
One must always assume that once an attacker has access to a user account, the attacker can break root. However, the reality is that in a well secured and maintained system, access to a user account does not necessarily give the attacker access to root. The distinction is important because without access to root the attacker cannot generally hide his tracks and may, at best, be able to do nothing more than mess with the user's files, or crash the machine. User account compromises are very common because users tend not to take the precautions that sysadmins take.
System administrators must keep in mind that there are potentially many ways to break root on a machine. The attacker may know the root password, the attacker may find a bug in a root-run server and be able to break root over a network connection to that server, or the attacker may know of a bug in a suid-root program that allows the attacker to break root once he has broken into a user's account. If an attacker has found a way to break root on a machine, the attacker may not have a need to install a backdoor. Many of the root holes found and closed to date involve a considerable amount of work by the attacker to cleanup after himself, so most attackers install backdoors. A backdoor provides the attacker with a way to easily regain root access to the system, but it also gives the smart system administrator a convenient way to detect the intrusion. Making it impossible for an attacker to install a backdoor may actually be detrimental to your security, because it will not close off the hole the attacker found to break in the first place.
Security remedies should always be implemented with a multi-layered “onion peel” approach and can be categorized as follows:
Securing root and staff accounts.
Securing root–run servers and suid/sgid binaries.
Securing user accounts.
Securing the password file.
Securing the kernel core, raw devices, and file systems.
Quick detection of inappropriate changes made to the system.
Paranoia.
The next section of this chapter will cover the above bullet items in greater depth.
Command Versus Protocol: Throughout this document, we will use bold text to refer to an application, and a monospaced font to refer to specific commands. Protocols will use a normal font. This typographical distinction is useful for instances such as ssh, since it is a protocol as well as command.
The sections that follow will cover the methods of securing your FreeBSD system that were mentioned in the last section of this chapter.
First off, do not bother securing staff accounts if you have not secured the root account. Most systems have a password assigned to the root account. The first thing you do is assume that the password is always compromised. This does not mean that you should remove the password. The password is almost always necessary for console access to the machine. What it does mean is that you should not make it possible to use the password outside of the console or possibly even with the su(1) command. For example, make sure that your ptys are specified as being insecure in the /etc/ttys file so that direct root logins via telnet or rlogin are disallowed. If using other login services such as sshd, make sure that direct root logins are disabled there as well. You can do this by editing your /etc/ssh/sshd_config file, and making sure that PermitRootLogin is set to no. Consider every access method — services such as FTP often fall through the cracks. Direct root logins should only be allowed via the system console.
Of course, as a sysadmin you have to be able to get to root, so we open up a few holes. But we make sure these holes require additional password verification to operate. One way to make root accessible is to add appropriate staff accounts to the wheel group (in /etc/group). The staff members placed in the wheel group are allowed to su to root. You should never give staff members native wheel access by putting them in the wheel group in their password entry. Staff accounts should be placed in a staff group, and then added to the wheel group via the /etc/group file. Only those staff members who actually need to have root access should be placed in the wheel group. It is also possible, when using an authentication method such as Kerberos, to use Kerberos' .k5login file in the root account to allow a ksu(1) to root without having to place anyone at all in the wheel group. This may be the better solution since the wheel mechanism still allows an intruder to break root if the intruder has gotten hold of your password file and can break into a staff account. While having the wheel mechanism is better than having nothing at all, it is not necessarily the safest option.
To lock an account completely, the pw(8) command should be used:
# pw lock staff
This will prevent the user from logging in using any mechanism, including ssh(1).
Another method of blocking access to accounts would be to replace the encrypted password with a single “*” character. This character would never match the encrypted password and thus block user access. For example, the following staff account:
foobar:R9DT/Fa1/LV9U:1000:1000::0:0:Foo Bar:/home/foobar:/usr/local/bin/tcsh
Should be changed to this:
foobar:*:1000:1000::0:0:Foo Bar:/home/foobar:/usr/local/bin/tcsh
This will prevent the foobar user from logging in using conventional methods. This method for access restriction is flawed on sites using Kerberos or in situations where the user has set up keys with ssh(1).
These security mechanisms also assume that you are logging in from a more restrictive server to a less restrictive server. For example, if your main box is running all sorts of servers, your workstation should not be running any. In order for your workstation to be reasonably secure you should run as few servers as possible, up to and including no servers at all, and you should run a password-protected screen blanker. Of course, given physical access to a workstation an attacker can break any sort of security you put on it. This is definitely a problem that you should consider, but you should also consider the fact that the vast majority of break-ins occur remotely, over a network, from people who do not have physical access to your workstation or servers.
Using something like Kerberos also gives you the ability to disable or change the password for a staff account in one place, and have it immediately affect all the machines on which the staff member may have an account. If a staff member's account gets compromised, the ability to instantly change his password on all machines should not be underrated. With discrete passwords, changing a password on N machines can be a mess. You can also impose re-passwording restrictions with Kerberos: not only can a Kerberos ticket be made to timeout after a while, but the Kerberos system can require that the user choose a new password after a certain period of time (say, once a month).
The prudent sysadmin only runs the servers he needs to, no more, no less. Be aware that third party servers are often the most bug-prone. For example, running an old version of imapd or popper is like giving a universal root ticket out to the entire world. Never run a server that you have not checked out carefully. Many servers do not need to be run as root. For example, the ntalk, comsat, and finger daemons can be run in special user sandboxes. A sandbox is not perfect, unless you go through a large amount of trouble, but the onion approach to security still stands: If someone is able to break in through a server running in a sandbox, they still have to break out of the sandbox. The more layers the attacker must break through, the lower the likelihood of his success. Root holes have historically been found in virtually every server ever run as root, including basic system servers. If you are running a machine through which people only login via sshd and never login via telnetd or rshd or rlogind, then turn off those services!
FreeBSD now defaults to running ntalkd, comsat, and finger in a sandbox. Another program which may be a candidate for running in a sandbox is named(8). /etc/defaults/rc.conf includes the arguments necessary to run named in a sandbox in a commented-out form. Depending on whether you are installing a new system or upgrading an existing system, the special user accounts used by these sandboxes may not be installed. The prudent sysadmin would research and implement sandboxes for servers whenever possible.
There are a number of other servers that typically do not run in sandboxes: sendmail, popper, imapd, ftpd, and others. There are alternatives to some of these, but installing them may require more work than you are willing to perform (the convenience factor strikes again). You may have to run these servers as root and rely on other mechanisms to detect break-ins that might occur through them.
The other big potential root holes in a system are the suid-root and sgid binaries installed on the system. Most of these binaries, such as rlogin, reside in /bin, /sbin, /usr/bin, or /usr/sbin. While nothing is 100% safe, the system-default suid and sgid binaries can be considered reasonably safe. Still, root holes are occasionally found in these binaries. A root hole was found in Xlib in 1998 that made xterm (which is typically suid) vulnerable. It is better to be safe than sorry and the prudent sysadmin will restrict suid binaries, that only staff should run, to a special group that only staff can access, and get rid of (chmod 000) any suid binaries that nobody uses. A server with no display generally does not need an xterm binary. Sgid binaries can be almost as dangerous. If an intruder can break an sgid-kmem binary, the intruder might be able to read /dev/kmem and thus read the encrypted password file, potentially compromising any passworded account. Alternatively an intruder who breaks group kmem can monitor keystrokes sent through ptys, including ptys used by users who login through secure methods. An intruder that breaks the tty group can write to almost any user's tty. If a user is running a terminal program or emulator with a keyboard-simulation feature, the intruder can potentially generate a data stream that causes the user's terminal to echo a command, which is then run as that user.
User accounts are usually the most difficult to secure. While you can impose draconian access restrictions on your staff and “star” out their passwords, you may not be able to do so with any general user accounts you might have. If you do have sufficient control, then you may win out and be able to secure the user accounts properly. If not, you simply have to be more vigilant in your monitoring of those accounts. Use of ssh and Kerberos for user accounts is more problematic, due to the extra administration and technical support required, but still a very good solution compared to a encrypted password file.
The only sure fire way is to star out as many passwords as you can and use ssh or Kerberos for access to those accounts. Even though the encrypted password file (/etc/spwd.db) can only be read by root, it may be possible for an intruder to obtain read access to that file even if the attacker cannot obtain root-write access.
Your security scripts should always check for and report changes to the password file (see the Checking file integrity section below).
If an attacker breaks root he can do just about anything, but there are certain conveniences. For example, most modern kernels have a packet sniffing device driver built in. Under FreeBSD it is called the bpf device. An intruder will commonly attempt to run a packet sniffer on a compromised machine. You do not need to give the intruder the capability and most systems do not have the need for the bpf device compiled in.
But even if you turn off the bpf device, you still have /dev/mem and /dev/kmem to worry about. For that matter, the intruder can still write to raw disk devices. Also, there is another kernel feature called the module loader, kldload(8). An enterprising intruder can use a KLD module to install his own bpf device, or other sniffing device, on a running kernel. To avoid these problems you have to run the kernel at a higher secure level, at least securelevel 1.
The secure level of the kernel can be set in a variety of ways. The simplest way
of raising the secure level of a running kernel is through a sysctl on the kern.securelevel
kernel variable:
# sysctl kern.securelevel=1
By default, the FreeBSD kernel boots with a secure level of -1. The secure level
will remain at -1 unless it is altered, either by the administrator or by init(8) because of a
setting in the start up scripts. The secure level may be raised during system
startup by setting the kern_securelevel_enable
variable
to YES in the /etc/rc.conf
file, and the value of the kern_securelevel
variable to
the desired secure level.
The default secure level of a FreeBSD system right after the startup scripts are done is -1. This is called “insecure mode” because immutable file flags may be turned off, all devices may be read from or written to, and so on.
Once the secure level is set to 1 or a higher value, the append-only and immutable files are honored, they cannot be turned off, and access to raw devices will be denied. Higher levels restrict even more operations. For a full description of the effect of various secure levels, please read the security(7) manual page (or the manual page of init(8) in releases older than FreeBSD 7.0).
Note: Bumping the secure level to 1 or higher may cause a few problems to X11 (access to /dev/io will be blocked), or to the installation of FreeBSD built from source (the installworld part of the process needs to temporarily reset the append-only and immutable flags of some files), and in a few other cases. Sometimes, as in the case of X11, it may be possible to work around this by starting xdm(1) pretty early in the boot process, when the securelevel is still low enough. Workarounds like this may not be possible for all secure levels or for all the potential restrictions they enforce. A bit of forward planning is a good idea. Understanding the restrictions imposed by each secure level is important as they severely diminish the ease of system use. It will also make choosing a default setting much simpler and prevent any surprises.
If the kernel's secure level is raised to 1 or a higher value, it may be useful to set the schg flag on critical startup binaries, directories, and script files (i.e., everything that gets run up to the point where the securelevel is set). This might be overdoing it, and upgrading the system is much more difficult when it operates at a high secure level. A less strict compromise is to run the system at a higher secure level but skip setting the schg flag for every system file and directory under the sun. Another possibility is to simply mount / and /usr read-only. It should be noted that being too draconian about what is permitted may prevent the all-important detection of an intrusion.
When it comes right down to it, you can only protect your core system configuration and control files so much before the convenience factor rears its ugly head. For example, using chflags to set the schg bit on most of the files in / and /usr is probably counterproductive, because while it may protect the files, it also closes a detection window. The last layer of your security onion is perhaps the most important — detection. The rest of your security is pretty much useless (or, worse, presents you with a false sense of security) if you cannot detect potential intrusions. Half the job of the onion is to slow down the attacker, rather than stop him, in order to be able to catch him in the act.
The best way to detect an intrusion is to look for modified, missing, or unexpected files. The best way to look for modified files is from another (often centralized) limited-access system. Writing your security scripts on the extra-secure limited-access system makes them mostly invisible to potential attackers, and this is important. In order to take maximum advantage you generally have to give the limited-access box significant access to the other machines in the business, usually either by doing a read-only NFS export of the other machines to the limited-access box, or by setting up ssh key-pairs to allow the limited-access box to ssh to the other machines. Except for its network traffic, NFS is the least visible method — allowing you to monitor the file systems on each client box virtually undetected. If your limited-access server is connected to the client boxes through a switch, the NFS method is often the better choice. If your limited-access server is connected to the client boxes through a hub, or through several layers of routing, the NFS method may be too insecure (network-wise) and using ssh may be the better choice even with the audit-trail tracks that ssh lays.
Once you have given a limited-access box at least read access to the client systems it is supposed to monitor, you must write scripts to do the actual monitoring. Given an NFS mount, you can write scripts out of simple system utilities such as find(1) and md5(1). It is best to physically md5 the client-box files at least once a day, and to test control files such as those found in /etc and /usr/local/etc even more often. When mismatches are found, relative to the base md5 information the limited-access machine knows is valid, it should scream at a sysadmin to go check it out. A good security script will also check for inappropriate suid binaries and for new or deleted files on system partitions such as / and /usr.
When using ssh rather than NFS, writing the security script is much more difficult. You essentially have to scp the scripts to the client box in order to run them, making them visible, and for safety you also need to scp the binaries (such as find) that those scripts use. The ssh client on the client box may already be compromised. All in all, using ssh may be necessary when running over insecure links, but it is also a lot harder to deal with.
A good security script will also check for changes to user and staff members access configuration files: .rhosts, .shosts, .ssh/authorized_keys and so forth, files that might fall outside the purview of the MD5 check.
If you have a huge amount of user disk space, it may take too long to run through every file on those partitions. In this case, setting mount flags to disallow suid binaries is a good idea. The nosuid option (see mount(8)) is what you want to look into. You should probably scan them anyway, at least once a week, since the object of this layer is to detect a break-in attempt, whether or not the attempt succeeds.
Process accounting (see accton(8)) is a relatively low-overhead feature of the operating system which might help as a post-break-in evaluation mechanism. It is especially useful in tracking down how an intruder has actually broken into a system, assuming the file is still intact after the break-in has occurred.
Finally, security scripts should process the log files, and the logs themselves should be generated in as secure a manner as possible — remote syslog can be very useful. An intruder will try to cover his tracks, and log files are critical to the sysadmin trying to track down the time and method of the initial break-in. One way to keep a permanent record of the log files is to run the system console to a serial port and collect the information to a secure machine monitoring the consoles.
A little paranoia never hurts. As a rule, a sysadmin can add any number of security features, as long as they do not affect convenience, and can add security features that do affect convenience with some added thought. Even more importantly, a security administrator should mix it up a bit — if you use recommendations such as those given by this document verbatim, you give away your methodologies to the prospective attacker who also has access to this document.
This section covers Denial of Service attacks. A DoS attack is typically a packet attack. While there is not much you can do about modern spoofed packet attacks that saturate your network, you can generally limit the damage by ensuring that the attacks cannot take down your servers by:
Limiting server forks.
Limiting springboard attacks (ICMP response attacks, ping broadcast, etc.).
Overloading the Kernel Route Cache.
A common DoS attack scenario is attacking a forking server and making it spawn so
many child processes that the host system eventually runs out of memory, file
descriptors, etc. and then grinds to a halt. inetd
(see inetd(8)) has several
options to limit this sort of attack. It should be noted that while it is possible
to prevent a machine from going down, it is not generally possible to prevent a
service from being disrupted by the attack. Read the inetd manual page carefully and pay specific attention to
the -c
, -C
, and -R
options. Note that spoofed-IP attacks will circumvent the
-C
option to inetd, so
typically a combination of options must be used. Some standalone servers have
self-fork-limitation parameters.
Sendmail has its -OMaxDaemonChildren
option, which tends to work much better
than trying to use Sendmail's load limiting options
due to the load lag. You should specify a MaxDaemonChildren parameter, when you start sendmail; high enough to handle your expected load, but not
so high that the computer cannot handle that number of Sendmail instances without falling on its face. It is also
prudent to run Sendmail in queued mode (-ODeliveryMode=queued
) and to run the daemon (sendmail -bd) separate from the queue-runs (sendmail -q15m). If you still want real-time delivery you can
run the queue at a much lower interval, such as -q1m
,
but be sure to specify a reasonable MaxDaemonChildren
option for that Sendmail to prevent cascade failures.
Syslogd can be attacked directly and it is strongly
recommended that you use the -s
option whenever
possible, and the -a
option otherwise.
You should also be fairly careful with connect-back services such as TCP Wrapper's reverse-identd, which can be attacked directly. You generally do not want to use the reverse-ident feature of TCP Wrapper for this reason.
It is a very good idea to protect internal services from external access by
firewalling them off at your border routers. The idea here is to prevent saturation
attacks from outside your LAN, not so much to protect internal services from
network-based root compromise. Always configure an
exclusive firewall, i.e., “firewall everything except ports A, B, C, D, and M-Z”. This way you
can firewall off all of your low ports except for certain specific services such as
named (if you are primary for a zone), ntalkd, sendmail, and other
Internet-accessible services. If you try to configure the firewall the other
way — as an inclusive or permissive firewall, there is a good chance that you
will forget to “close” a couple of services, or that you will add a
new internal service and forget to update the firewall. You can still open up the
high-numbered port range on the firewall, to allow permissive-like operation,
without compromising your low ports. Also take note that FreeBSD allows you to
control the range of port numbers used for dynamic binding, via the various
net.inet.ip.portrange
sysctl's (sysctl -a | fgrep
portrange), which can also ease the complexity of your firewall's
configuration. For example, you might use a normal first/last range of 4000 to 5000,
and a hiport range of 49152 to 65535, then block off everything under 4000 in your
firewall (except for certain specific Internet-accessible ports, of
course).
Another common DoS attack is called a springboard attack — to attack a server in a manner that causes the server to generate responses which overloads the server, the local network, or some other machine. The most common attack of this nature is the ICMP ping broadcast attack. The attacker spoofs ping packets sent to your LAN's broadcast address with the source IP address set to the actual machine they wish to attack. If your border routers are not configured to stomp on ping packets to broadcast addresses, your LAN winds up generating sufficient responses to the spoofed source address to saturate the victim, especially when the attacker uses the same trick on several dozen broadcast addresses over several dozen different networks at once. Broadcast attacks of over a hundred and twenty megabits have been measured. A second common springboard attack is against the ICMP error reporting system. By constructing packets that generate ICMP error responses, an attacker can saturate a server's incoming network and cause the server to saturate its outgoing network with ICMP responses. This type of attack can also crash the server by running it out of memory, especially if the server cannot drain the ICMP responses it generates fast enough. Use the sysctl variable net.inet.icmp.icmplim to limit these attacks. The last major class of springboard attacks is related to certain internal inetd services such as the udp echo service. An attacker simply spoofs a UDP packet with the source address being server A's echo port, and the destination address being server B's echo port, where server A and B are both on your LAN. The two servers then bounce this one packet back and forth between each other. The attacker can overload both servers and their LANs simply by injecting a few packets in this manner. Similar problems exist with the internal chargen port. A competent sysadmin will turn off all of these inetd-internal test services.
Spoofed packet attacks may also be used to overload the kernel route cache. Refer
to the net.inet.ip.rtexpire
, rtminexpire
, and rtmaxcache
sysctl parameters. A spoofed packet attack that uses a random
source IP will cause the kernel to generate a temporary cached route in the
route table, viewable with netstat -rna | fgrep W3. These
routes typically timeout in 1600 seconds or so. If the kernel detects that the
cached route table has gotten too big it will dynamically reduce the rtexpire
but will never decrease it to less than rtminexpire
. There are two problems:
The kernel does not react quickly enough when a lightly loaded server is suddenly attacked.
The rtminexpire
is not low enough for the kernel to
survive a sustained attack.
If your servers are connected to the Internet via a T3 or better, it may be
prudent to manually override both rtexpire
and rtminexpire
via sysctl(8). Never set
either parameter to zero (unless you want to crash the machine). Setting both
parameters to 2 seconds should be sufficient to protect the route table from
attack.
There are a few issues with both Kerberos and ssh that need to be addressed if
you intend to use them. Kerberos 5 is an excellent authentication protocol, but
there are bugs in the kerberized telnet and rlogin applications that make them unsuitable for dealing
with binary streams. Also, by default Kerberos does not encrypt a session unless you
use the -x
option. ssh
encrypts everything by default.
Ssh works quite well in every respect except that it forwards encryption keys by default. What this means is that if you have a secure workstation holding keys that give you access to the rest of the system, and you ssh to an insecure machine, your keys are usable. The actual keys themselves are not exposed, but ssh installs a forwarding port for the duration of your login, and if an attacker has broken root on the insecure machine he can utilize that port to use your keys to gain access to any other machine that your keys unlock.
We recommend that you use ssh in combination with Kerberos whenever possible for staff logins. Ssh can be compiled with Kerberos support. This reduces your reliance on potentially exposed ssh keys while at the same time protecting passwords via Kerberos. Ssh keys should only be used for automated tasks from secure machines (something that Kerberos is unsuited to do). We also recommend that you either turn off key-forwarding in the ssh configuration, or that you make use of the from=IP/DOMAIN option that ssh allows in its authorized_keys file to make the key only usable to entities logging in from specific machines.
Every user on a UNIX system has a password associated with their account. It seems obvious that these passwords need to be known only to the user and the actual operating system. In order to keep these passwords secret, they are encrypted with what is known as a “one-way hash”, that is, they can only be easily encrypted but not decrypted. In other words, what we told you a moment ago was obvious is not even true: the operating system itself does not really know the password. It only knows the encrypted form of the password. The only way to get the “plain-text” password is by a brute force search of the space of possible passwords.
Unfortunately the only secure way to encrypt passwords when UNIX came into being was based on DES, the Data Encryption Standard. This was not such a problem for users resident in the US, but since the source code for DES could not be exported outside the US, FreeBSD had to find a way to both comply with US law and retain compatibility with all the other UNIX variants that still used DES.
The solution was to divide up the encryption libraries so that US users could install the DES libraries and use DES but international users still had an encryption method that could be exported abroad. This is how FreeBSD came to use MD5 as its default encryption method. MD5 is believed to be more secure than DES, so installing DES is offered primarily for compatibility reasons.
Currently the library supports DES, MD5, Blowfish, SHA256, and SHA512 hash functions. By default FreeBSD uses MD5 to encrypt passwords.
It is pretty easy to identify which encryption method FreeBSD is set up to use. Examining the encrypted passwords in the /etc/master.passwd file is one way. Passwords encrypted with the MD5 hash are longer than those encrypted with the DES hash and also begin with the characters $1$. Passwords starting with $2a$ are encrypted with the Blowfish hash function. DES password strings do not have any particular identifying characteristics, but they are shorter than MD5 passwords, and are coded in a 64-character alphabet which does not include the $ character, so a relatively short string which does not begin with a dollar sign is very likely a DES password. Both SHA256 and SHA512 begin with the characters $6$.
The password format used for new passwords is controlled by the passwd_format login capability in /etc/login.conf, which takes values of des, md5, blf, sha256 or sha512. See the login.conf(5) manual page for more information about login capabilities.
By default, FreeBSD includes support for OPIE (One-time Passwords In Everything), which uses the MD5 hash by default.
There are three different sorts of passwords which we will discuss below. The first is your usual UNIX style or Kerberos password; we will call this a “UNIX password”. The second sort is the one-time password which is generated by the OPIE opiekey(1) program and accepted by the opiepasswd(1) program and the login prompt; we will call this a “one-time password”. The final sort of password is the secret password which you give to the opiekey program (and sometimes the opiepasswd programs) which it uses to generate one-time passwords; we will call it a “secret password” or just unqualified “password”.
The secret password does not have anything to do with your UNIX password; they can be the same but this is not recommended. OPIE secret passwords are not limited to 8 characters like old UNIX passwords[8], they can be as long as you like. Passwords of six or seven word long phrases are fairly common. For the most part, the OPIE system operates completely independently of the UNIX password system.
Besides the password, there are two other pieces of data that are important to OPIE. One is what is known as the “seed” or “key”, consisting of two letters and five digits. The other is what is called the “iteration count”, a number between 1 and 100. OPIE creates the one-time password by concatenating the seed and the secret password, then applying the MD5 hash as many times as specified by the iteration count and turning the result into six short English words. These six English words are your one-time password. The authentication system (primarily PAM) keeps track of the last one-time password used, and the user is authenticated if the hash of the user-provided password is equal to the previous password. Because a one-way hash is used it is impossible to generate future one-time passwords if a successfully used password is captured; the iteration count is decremented after each successful login to keep the user and the login program in sync. When the iteration count gets down to 1, OPIE must be reinitialized.
There are a few programs involved in each system which we will discuss below. The opiekey program accepts an iteration count, a seed, and a secret password, and generates a one-time password or a consecutive list of one-time passwords. The opiepasswd program is used to initialize OPIE, and to change passwords, iteration counts, or seeds; it takes either a secret passphrase, or an iteration count, seed, and a one-time password. The opieinfo program will examine the relevant credentials files (/etc/opiekeys) and print out the invoking user's current iteration count and seed.
There are four different sorts of operations we will cover. The first is using opiepasswd over a secure connection to set up one-time-passwords for the first time, or to change your password or seed. The second operation is using opiepasswd over an insecure connection, in conjunction with opiekey over a secure connection, to do the same. The third is using opiekey to log in over an insecure connection. The fourth is using opiekey to generate a number of keys which can be written down or printed out to carry with you when going to some location without secure connections to anywhere.
To initialize OPIE for the first time, execute the opiepasswd command:
% opiepasswd -c [grimreaper] ~ $ opiepasswd -f -c Adding unfurl: Only use this method from the console; NEVER from remote. If you are using telnet, xterm, or a dial-in, type ^C now or exit with no password. Then run opiepasswd without the -c parameter. Using MD5 to compute responses. Enter new secret pass phrase: Again new secret pass phrase: ID unfurl OTP key is 499 to4268 MOS MALL GOAT ARM AVID COED
At the Enter new secret pass phrase: or Enter secret password: prompts, you should enter a password or phrase. Remember, this is not the password that you will use to login with, this is used to generate your one-time login keys. The “ID” line gives the parameters of your particular instance: your login name, the iteration count, and seed. When logging in the system will remember these parameters and present them back to you so you do not have to remember them. The last line gives the particular one-time password which corresponds to those parameters and your secret password; if you were to re-login immediately, this one-time password is the one you would use.
To initialize or change your secret password over an insecure connection, you will need to already have a secure connection to some place where you can run opiekey; this might be in the form of a shell prompt on a machine you trust. You will also need to make up an iteration count (100 is probably a good value), and you may make up your own seed or use a randomly-generated one. Over on the insecure connection (to the machine you are initializing), use opiepasswd:
% opiepasswd Updating unfurl: You need the response from an OTP generator. Old secret pass phrase: otp-md5 498 to4268 ext Response: GAME GAG WELT OUT DOWN CHAT New secret pass phrase: otp-md5 499 to4269 Response: LINE PAP MILK NELL BUOY TROY ID mark OTP key is 499 gr4269 LINE PAP MILK NELL BUOY TROY
To accept the default seed press Return. Then before entering an access password, move over to your secure connection and give it the same parameters:
% opiekey 498 to4268 Using the MD5 algorithm to compute response. Reminder: Don't use opiekey from telnet or dial-in sessions. Enter secret pass phrase: GAME GAG WELT OUT DOWN CHAT
Now switch back over to the insecure connection, and copy the one-time password generated over to the relevant program.
Once you have initialized OPIE and login, you will be presented with a prompt like this:
% telnet example.com Trying 10.0.0.1... Connected to example.com Escape character is '^]'. FreeBSD/i386 (example.com) (ttypa) login: <username> otp-md5 498 gr4269 ext Password:
As a side note, the OPIE prompts have a useful feature (not shown here): if you press Return at the password prompt, the prompter will turn echo on, so you can see what you are typing. This can be extremely useful if you are attempting to type in a password by hand, such as from a printout.
At this point you need to generate your one-time password to answer this login prompt. This must be done on a trusted system that you can run opiekey on. (There are versions of these for DOS, Windows and Mac OS as well.) They need the iteration count and the seed as command line options. You can cut-and-paste these right from the login prompt on the machine that you are logging in to.
On the trusted system:
% opiekey 498 to4268 Using the MD5 algorithm to compute response. Reminder: Don't use opiekey from telnet or dial-in sessions. Enter secret pass phrase: GAME GAG WELT OUT DOWN CHAT
Now that you have your one-time password you can continue logging in.
Sometimes you have to go places where you do not have access to a trusted machine or secure connection. In this case, it is possible to use the opiekey command to generate a number of one-time passwords beforehand to be printed out and taken with you. For example:
% opiekey -n 5 30 zz99999 Using the MD5 algorithm to compute response. Reminder: Don't use opiekey from telnet or dial-in sessions. Enter secret pass phrase: <secret password> 26: JOAN BORE FOSS DES NAY QUIT 27: LATE BIAS SLAY FOLK MUCH TRIG 28: SALT TIN ANTI LOON NEAL USE 29: RIO ODIN GO BYE FURY TIC 30: GREW JIVE SAN GIRD BOIL PHI
The -n 5
requests five keys in sequence, the 30
specifies what the last iteration number should be. Note
that these are printed out in reverse order of eventual use. If you are really
paranoid, you might want to write the results down by hand; otherwise you can
cut-and-paste into lpr. Note that each line shows both the
iteration count and the one-time password; you may still find it handy to
scratch off passwords as you use them.
OPIE can restrict the use of UNIX passwords based on the IP address of a login session. The relevant file is /etc/opieaccess, which is present by default. Please check opieaccess(5) for more information on this file and which security considerations you should be aware of when using it.
Here is a sample opieaccess file:
permit 192.168.0.0 255.255.0.0
This line allows users whose IP source address (which is vulnerable to spoofing) matches the specified value and mask, to use UNIX passwords at any time.
If no rules in opieaccess are matched, the default is to deny non-OPIE logins.
Anyone familiar with inetd(8) has probably heard of TCP Wrappers at some point. But few individuals seem to fully comprehend its usefulness in a network environment. It seems that everyone wants to install a firewall to handle network connections. While a firewall has a wide variety of uses, there are some things that a firewall will not handle, such as sending text back to the connection originator. The TCP Wrappers software does this and much more. In the next few sections many of the TCP Wrappers features will be discussed, and, when applicable, example configuration lines will be provided.
The TCP Wrappers software extends the abilities of inetd to provide support for every server daemon under its control. Using this method it is possible to provide logging support, return messages to connections, permit a daemon to only accept internal connections, etc. While some of these features can be provided by implementing a firewall, this will add not only an extra layer of protection but go beyond the amount of control a firewall can provide.
The added functionality of TCP Wrappers should not be considered a replacement for a good firewall. TCP Wrappers can be used in conjunction with a firewall or other security enhancements though and it can serve nicely as an extra layer of protection for the system.
Since this is an extension to the configuration of inetd, the reader is expected have read the inetd configuration section.
Note: While programs run by inetd(8) are not exactly “daemons”, they have traditionally been called daemons. This is the term we will use in this section too.
The only requirement of using TCP
Wrappers in FreeBSD is to ensure the inetd server is
started from rc.conf with the -Ww
option; this is the default setting. Of course, proper
configuration of /etc/hosts.allow is also expected,
but syslogd(8) will throw
messages in the system logs in these cases.
Note: Unlike other implementations of TCP Wrappers, the use of hosts.deny has been deprecated. All configuration options should be placed in /etc/hosts.allow.
In the simplest configuration, daemon connection policies are set to either be permitted or blocked depending on the options in /etc/hosts.allow. The default configuration in FreeBSD is to allow a connection to every daemon started with inetd. Changing this will be discussed only after the basic configuration is covered.
Basic configuration usually takes the form of daemon : address : action. Where daemon is the daemon name which inetd started. The address can be a valid hostname, an IP address or an IPv6 address enclosed in brackets ([ ]). The action field can be either allow or deny to grant or deny access appropriately. Keep in mind that configuration works off a first rule match semantic, meaning that the configuration file is scanned in ascending order for a matching rule. When a match is found the rule is applied and the search process will halt.
Several other options exist but they will be explained in a later section. A simple configuration line may easily be constructed from that information alone. For example, to allow POP3 connections via the mail/qpopper daemon, the following lines should be appended to hosts.allow:
# This line is required for POP3 connections: qpopper : ALL : allow
After adding this line, inetd will need to be
restarted. This can be accomplished by use of the kill(1) command, or
with the restart
parameter with /etc/rc.d/inetd.
TCP Wrappers has advanced options too; they will allow for more control over the way connections are handled. In some cases it may be a good idea to return a comment to certain hosts or daemon connections. In other cases, perhaps a log file should be recorded or an email sent to the administrator. Other situations may require the use of a service for local connections only. This is all possible through the use of configuration options known as wildcards, expansion characters and external command execution. The next two sections are written to cover these situations.
Suppose that a situation occurs where a connection should be denied yet a reason
should be sent to the individual who attempted to establish that connection. How
could it be done? That action can be made possible by using the twist
option. When a connection attempt is made, twist
will be called to execute a shell command or script. An
example already exists in the hosts.allow file:
# The rest of the daemons are protected. ALL : ALL \ : severity auth.info \ : twist /bin/echo "You are not welcome to use %d from %h."
This example shows that the message, “You are not allowed to use daemon from hostname.” will be returned for any daemon not previously configured in the access file. This is extremely useful for sending a reply back to the connection initiator right after the established connection is dropped. Note that any message returned must be wrapped in quote " characters; there are no exceptions to this rule.
Warning: It may be possible to launch a denial of service attack on the server if an attacker, or group of attackers, could flood these daemons with connection requests.
Another possibility is to use the spawn
option in
these cases. Like twist
, the spawn
option implicitly denies the connection and may be used
to run external shell commands or scripts. Unlike twist
, spawn
will not send a
reply back to the individual who established the connection. For an example,
consider the following configuration line:
# We do not allow connections from example.com: ALL : .example.com \ : spawn (/bin/echo %a from %h attempted to access %d >> \ /var/log/connections.log) \ : deny
This will deny all connection attempts from the *.example.com domain; simultaneously logging the hostname, IP address and the daemon which they attempted to access in the /var/log/connections.log file.
Aside from the already explained substitution characters above, e.g., %a, a few others exist. See the hosts_access(5) manual page for the complete list.
Thus far the ALL option has been used continuously throughout the examples. Other options exist which could extend the functionality a bit further. For instance, ALL may be used to match every instance of either a daemon, domain or an IP address. Another wildcard available is PARANOID which may be used to match any host which provides an IP address that may be forged. In other words, PARANOID may be used to define an action to be taken whenever a connection is made from an IP address that differs from its hostname. The following example may shed some more light on this discussion:
# Block possibly spoofed requests to sendmail: sendmail : PARANOID : deny
In that example all connection requests to sendmail which have an IP address that varies from its hostname will be denied.
Caution: Using the PARANOID wildcard may severely cripple servers if the client or server has a broken DNS setup. Administrator discretion is advised.
To learn more about wildcards and their associated functionality, see the hosts_access(5) manual page.
Before any of the specific configuration lines above will work, the first configuration line should be commented out in hosts.allow. This was noted at the beginning of this section.
Kerberos is a network add-on system/protocol that allows users to authenticate themselves through the services of a secure server. Services such as remote login, remote copy, secure inter-system file copying and other high-risk tasks are made considerably safer and more controllable.
Kerberos can be described as an identity-verifying proxy system. It can also be described as a trusted third-party authentication system. Kerberos provides only one function — the secure authentication of users on the network. It does not provide authorization functions (what users are allowed to do) or auditing functions (what those users did). After a client and server have used Kerberos to prove their identity, they can also encrypt all of their communications to assure privacy and data integrity as they go about their business.
Therefore it is highly recommended that Kerberos be used with other security methods which provide authorization and audit services.
The following instructions can be used as a guide on how to set up Kerberos as distributed for FreeBSD. However, you should refer to the relevant manual pages for a complete description.
For purposes of demonstrating a Kerberos installation, the various name spaces will be handled as follows:
The DNS domain (“zone”) will be example.org.
The Kerberos realm will be EXAMPLE.ORG.
Note: Please use real domain names when setting up Kerberos even if you intend to run it internally. This avoids DNS problems and assures inter-operation with other Kerberos realms.
Kerberos was created by MIT as a solution to network security problems. The Kerberos protocol uses strong cryptography so that a client can prove its identity to a server (and vice versa) across an insecure network connection.
Kerberos is both the name of a network authentication protocol and an adjective to describe programs that implement the program (Kerberos telnet, for example). The current version of the protocol is version 5, described in RFC 1510.
Several free implementations of this protocol are available, covering a wide range of operating systems. The Massachusetts Institute of Technology (MIT), where Kerberos was originally developed, continues to develop their Kerberos package. It is commonly used in the US as a cryptography product, as such it has historically been affected by US export regulations. The MIT Kerberos is available as a port (security/krb5). Heimdal Kerberos is another version 5 implementation, and was explicitly developed outside of the US to avoid export regulations (and is thus often included in non-commercial UNIX variants). The Heimdal Kerberos distribution is available as a port (security/heimdal), and a minimal installation of it is included in the base FreeBSD install.
In order to reach the widest audience, these instructions assume the use of the Heimdal distribution included in FreeBSD.
The Key Distribution Center (KDC) is the centralized authentication service that Kerberos provides — it is the computer that issues Kerberos tickets. The KDC is considered “trusted” by all other computers in the Kerberos realm, and thus has heightened security concerns.
Note that while running the Kerberos server requires very few computing resources, a dedicated machine acting only as a KDC is recommended for security reasons.
To begin setting up a KDC, ensure that your /etc/rc.conf file contains the correct settings to act as a KDC (you may need to adjust paths to reflect your own system):
kerberos5_server_enable="YES" kadmind5_server_enable="YES"
Next we will set up your Kerberos config file, /etc/krb5.conf:
[libdefaults] default_realm = EXAMPLE.ORG [realms] EXAMPLE.ORG = { kdc = kerberos.example.org admin_server = kerberos.example.org } [domain_realm] .example.org = EXAMPLE.ORG
Note that this /etc/krb5.conf file implies that your KDC will have the fully-qualified hostname of kerberos.example.org. You will need to add a CNAME (alias) entry to your zone file to accomplish this if your KDC has a different hostname.
Note: For large networks with a properly configured BIND DNS server, the above example could be trimmed to:
[libdefaults] default_realm = EXAMPLE.ORGWith the following lines being appended to the example.org zonefile:
_kerberos._udp IN SRV 01 00 88 kerberos.example.org. _kerberos._tcp IN SRV 01 00 88 kerberos.example.org. _kpasswd._udp IN SRV 01 00 464 kerberos.example.org. _kerberos-adm._tcp IN SRV 01 00 749 kerberos.example.org. _kerberos IN TXT EXAMPLE.ORG
Note: For clients to be able to find the Kerberos services, you must have either a fully configured /etc/krb5.conf or a minimally configured /etc/krb5.conf and a properly configured DNS server.
Next we will create the Kerberos database. This database contains the keys of all principals encrypted with a master password. You are not required to remember this password, it will be stored in a file (/var/heimdal/m-key). To create the master key, run kstash and enter a password.
Once the master key has been created, you can initialize the database using the kadmin program with the -l option (standing for “local”). This option instructs kadmin to modify the database files directly rather than going through the kadmind network service. This handles the chicken-and-egg problem of trying to connect to the database before it is created. Once you have the kadmin prompt, use the init command to create your realms initial database.
Lastly, while still in kadmin, create your first principal using the add command. Stick to the defaults options for the principal for now, you can always change them later with the modify command. Note that you can use the ? command at any prompt to see the available options.
A sample database creation session is shown below:
# kstash Master key: xxxxxxxx Verifying password - Master key: xxxxxxxx # kadmin -l kadmin> init EXAMPLE.ORG Realm max ticket life [unlimited]: kadmin> add tillman Max ticket life [unlimited]: Max renewable life [unlimited]: Attributes []: Password: xxxxxxxx Verifying password - Password: xxxxxxxx
Now it is time to start up the KDC services. Run /etc/rc.d/kerberos start and /etc/rc.d/kadmind start to bring up the services. Note that you will not have any kerberized daemons running at this point but you should be able to confirm that the KDC is functioning by obtaining and listing a ticket for the principal (user) that you just created from the command-line of the KDC itself:
% kinit tillman [email protected]'s Password: % klist Credentials cache: FILE:/tmp/krb5cc_500 Principal: [email protected] Issued Expires Principal Aug 27 15:37:58 Aug 28 01:37:58 krbtgt/[email protected]
The ticket can then be revoked when you have finished:
% kdestroy
First, we need a copy of the Kerberos configuration file, /etc/krb5.conf. To do so, simply copy it over to the client computer from the KDC in a secure fashion (using network utilities, such as scp(1), or physically via a floppy disk).
Next you need a /etc/krb5.keytab file. This is the major difference between a server providing Kerberos enabled daemons and a workstation — the server must have a keytab file. This file contains the server's host key, which allows it and the KDC to verify each others identity. It must be transmitted to the server in a secure fashion, as the security of the server can be broken if the key is made public. This explicitly means that transferring it via a clear text channel, such as FTP, is a very bad idea.
Typically, you transfer the keytab to the server using the kadmin program. This is handy because you also need to create the host principal (the KDC end of the krb5.keytab) using kadmin.
Note that you must have already obtained a ticket and that this ticket must be allowed to use the kadmin interface in the kadmind.acl. See the section titled “Remote administration” in the Heimdal info pages (info heimdal) for details on designing access control lists. If you do not want to enable remote kadmin access, you can simply securely connect to the KDC (via local console, ssh(1) or Kerberos telnet(1)) and perform administration locally using kadmin -l.
After installing the /etc/krb5.conf file, you can use kadmin from the Kerberos server. The add --random-key command will let you add the server's host principal, and the ext command will allow you to extract the server's host principal to its own keytab. For example:
# kadmin kadmin> add --random-key host/myserver.example.org Max ticket life [unlimited]: Max renewable life [unlimited]: Attributes []: kadmin> ext host/myserver.example.org kadmin> exit
Note that the ext command (short for “extract”) stores the extracted key in /etc/krb5.keytab by default.
If you do not have kadmind running on the KDC (possibly for security reasons) and thus do not have access to kadmin remotely, you can add the host principal (host/myserver.EXAMPLE.ORG) directly on the KDC and then extract it to a temporary file (to avoid over-writing the /etc/krb5.keytab on the KDC) using something like this:
# kadmin kadmin> ext --keytab=/tmp/example.keytab host/myserver.example.org kadmin> exit
You can then securely copy the keytab to the server computer (using scp or a floppy, for example). Be sure to specify a non-default keytab name to avoid over-writing the keytab on the KDC.
At this point your server can communicate with the KDC (due to its krb5.conf file) and it can prove its own identity (due to the krb5.keytab file). It is now ready for you to enable some Kerberos services. For this example we will enable the telnet service by putting a line like this into your /etc/inetd.conf and then restarting the inetd(8) service with /etc/rc.d/inetd restart:
telnet stream tcp nowait root /usr/libexec/telnetd telnetd -a user
The critical bit is that the -a (for authentication) type is set to user. Consult the telnetd(8) manual page for more details.
Setting up a client computer is almost trivially easy. As far as Kerberos configuration goes, you only need the Kerberos configuration file, located at /etc/krb5.conf. Simply securely copy it over to the client computer from the KDC.
Test your client computer by attempting to use kinit, klist, and kdestroy from the client to obtain, show, and then delete a ticket for the principal you created above. You should also be able to use Kerberos applications to connect to Kerberos enabled servers, though if that does not work and obtaining a ticket does the problem is likely with the server and not with the client or the KDC.
When testing an application like telnet, try using a packet sniffer (such as tcpdump(1)) to confirm that your password is not sent in the clear. Try using telnet with the -x option, which encrypts the entire data stream (similar to ssh).
Various non-core Kerberos client applications are also installed by default. This is where the “minimal” nature of the base Heimdal installation is felt: telnet is the only Kerberos enabled service.
The Heimdal port adds some of the missing client applications: Kerberos enabled versions of ftp, rsh, rcp, rlogin, and a few other less common programs. The MIT port also contains a full suite of Kerberos client applications.
Users within a realm typically have their Kerberos principal (such as [email protected]) mapped to a local user account (such as a local account named tillman). Client applications such as telnet usually do not require a user name or a principal.
Occasionally, however, you want to grant access to a local user account to someone who does not have a matching Kerberos principal. For example, [email protected] may need access to the local user account webdevelopers. Other principals may also need access to that local account.
The .k5login and .k5users files, placed in a users home directory, can be used similar to a powerful combination of .hosts and .rhosts, solving this problem. For example, if a .k5login with the following contents:
[email protected] [email protected]
Were to be placed into the home directory of the local user webdevelopers then both principals listed would have access to that account without requiring a shared password.
Reading the manual pages for these commands is recommended. Note that the ksu manual page covers .k5users.
When using either the Heimdal or MIT Kerberos ports ensure that your PATH environment variable lists the Kerberos versions of the client applications before the system versions.
Do all the computers in your realm have synchronized time settings? If not, authentication may fail. Section 30.10 describes how to synchronize clocks using NTP.
MIT and Heimdal inter-operate nicely. Except for kadmin, the protocol for which is not standardized.
If you change your hostname, you also need to change your host/ principal and update your keytab. This also applies to special keytab entries like the www/ principal used for Apache's www/mod_auth_kerb.
All hosts in your realm must be resolvable (both forwards and reverse) in DNS (or /etc/hosts as a minimum). CNAMEs will work, but the A and PTR records must be correct and in place. The error message is not very intuitive: “Kerberos5 refuses authentication because Read req failed: Key table entry not found”.
Some operating systems that may being acting as clients to your KDC do not set the permissions for ksu to be setuid root. This means that ksu does not work, which is a good security idea but annoying. This is not a KDC error.
With MIT Kerberos, if you want to allow a principal to have a ticket life longer than the default ten hours, you must use modify_principal in kadmin to change the maxlife of both the principal in question and the krbtgt principal. Then the principal can use the -l option with kinit to request a ticket with a longer lifetime.
Note: If you run a packet sniffer on your KDC to add in troubleshooting and then run kinit from a workstation, you will notice that your TGT is sent immediately upon running kinit — even before you type your password! The explanation is that the Kerberos server freely transmits a TGT (Ticket Granting Ticket) to any unauthorized request; however, every TGT is encrypted in a key derived from the user's password. Therefore, when a user types their password it is not being sent to the KDC, it is being used to decrypt the TGT that kinit already obtained. If the decryption process results in a valid ticket with a valid time stamp, the user has valid Kerberos credentials. These credentials include a session key for establishing secure communications with the Kerberos server in the future, as well as the actual ticket-granting ticket, which is actually encrypted with the Kerberos server's own key. This second layer of encryption is unknown to the user, but it is what allows the Kerberos server to verify the authenticity of each TGT.
If you want to use long ticket lifetimes (a week, for example) and you are using
OpenSSH to connect to the machine where your
ticket is stored, make sure that Kerberos TicketCleanup
is set to no in your
sshd_config or else your tickets will be deleted
when you log out.
Remember that host principals can have a longer ticket lifetime as well. If your user principal has a lifetime of a week but the host you are connecting to has a lifetime of nine hours, you will have an expired host principal in your cache and the ticket cache will not work as expected.
When setting up a krb5.dict file to prevent specific bad passwords from being used (the manual page for kadmind covers this briefly), remember that it only applies to principals that have a password policy assigned to them. The krb5.dict files format is simple: one string per line. Creating a symbolic link to /usr/share/dict/words might be useful.
The major difference between the MIT and Heimdal installs relates to the kadmin program which has a different (but equivalent) set of commands and uses a different protocol. This has a large implications if your KDC is MIT as you will not be able to use the Heimdal kadmin program to administer your KDC remotely (or vice versa, for that matter).
The client applications may also take slightly different command line options to accomplish the same tasks. Following the instructions on the MIT Kerberos web site (http://web.mit.edu/Kerberos/www/) is recommended. Be careful of path issues: the MIT port installs into /usr/local/ by default, and the “normal” system applications may be run instead of MIT if your PATH environment variable lists the system directories first.
Note: With the MIT security/krb5 port that is provided by FreeBSD, be sure to read the /usr/local/share/doc/krb5/README.FreeBSD file installed by the port if you want to understand why logins via telnetd and klogind behave somewhat oddly. Most importantly, correcting the “incorrect permissions on cache file” behavior requires that the login.krb5 binary be used for authentication so that it can properly change ownership for the forwarded credentials.
The rc.conf must also be modified to contain the following configuration:
kerberos5_server="/usr/local/sbin/krb5kdc" kadmind5_server="/usr/local/sbin/kadmind" kerberos5_server_enable="YES" kadmind5_server_enable="YES"
This is done because the applications for MIT kerberos installs binaries in the /usr/local hierarchy.
Every service enabled on the network must be modified to work with Kerberos (or be otherwise secured against network attacks) or else the users credentials could be stolen and re-used. An example of this would be Kerberos enabling all remote shells (via rsh and telnet, for example) but not converting the POP3 mail server which sends passwords in plain text.
In a multi-user environment, Kerberos is less secure. This is because it stores the tickets in the /tmp directory, which is readable by all users. If a user is sharing a computer with several other people simultaneously (i.e. multi-user), it is possible that the user's tickets can be stolen (copied) by another user.
This can be overcome with the -c filename command-line option or (preferably) the KRB5CCNAME environment variable, but this is rarely done. In principal, storing the ticket in the users home directory and using simple file permissions can mitigate this problem.
By design, the KDC must be as secure as the master password database is contained on it. The KDC should have absolutely no other services running on it and should be physically secured. The danger is high because Kerberos stores all passwords encrypted with the same key (the “master” key), which in turn is stored as a file on the KDC.
As a side note, a compromised master key is not quite as bad as one might normally fear. The master key is only used to encrypt the Kerberos database and as a seed for the random number generator. As long as access to your KDC is secure, an attacker cannot do much with the master key.
Additionally, if the KDC is unavailable (perhaps due to a denial of service attack or network problems) the network services are unusable as authentication can not be performed, a recipe for a denial-of-service attack. This can alleviated with multiple KDCs (a single master and one or more slaves) and with careful implementation of secondary or fall-back authentication (PAM is excellent for this).
Kerberos allows users, hosts and services to authenticate between themselves. It does not have a mechanism to authenticate the KDC to the users, hosts or services. This means that a trojanned kinit (for example) could record all user names and passwords. Something like security/tripwire or other file system integrity checking tools can alleviate this.
One feature that many users overlook is the OpenSSL toolkit included in FreeBSD. OpenSSL provides an encryption transport layer on top of the normal communications layer; thus allowing it to be intertwined with many network applications and services.
Some uses of OpenSSL may include encrypted authentication of mail clients, web based transactions such as credit card payments and more. Many ports such as www/apache22, and mail/claws-mail will offer compilation support for building with OpenSSL.
Note: In most cases the Ports Collection will attempt to build the security/openssl port unless the WITH_OPENSSL_BASE make variable is explicitly set to “yes”.
The version of OpenSSL included in FreeBSD supports Secure Sockets Layer v2/v3 (SSLv2/SSLv3), Transport Layer Security v1 (TLSv1) network security protocols and can be used as a general cryptographic library.
Note: While OpenSSL supports the IDEA algorithm, it is disabled by default due to United States patents. To use it, the license should be reviewed and, if the restrictions are acceptable, the MAKE_IDEA variable must be set in make.conf.
One of the most common uses of OpenSSL is to provide certificates for use with software applications. These certificates ensure that the credentials of the company or individual are valid and not fraudulent. If the certificate in question has not been verified by one of the several “Certificate Authorities”, or CAs, a warning is usually produced. A Certificate Authority is a company, such as VeriSign, which will sign certificates in order to validate credentials of individuals or companies. This process has a cost associated with it and is definitely not a requirement for using certificates; however, it can put some of the more paranoid users at ease.
To generate a certificate, the following command is available:
# openssl req -new -nodes -out req.pem -keyout cert.pem Generating a 1024 bit RSA private key ................++++++ .......................................++++++ writing new private key to 'cert.pem' ----- You are about to be asked to enter information that will be incorporated into your certificate request. What you are about to enter is what is called a Distinguished Name or a DN. There are quite a few fields but you can leave some blank For some fields there will be a default value, If you enter '.', the field will be left blank. ----- Country Name (2 letter code) [AU]:US State or Province Name (full name) [Some-State]:PA Locality Name (eg, city) []:Pittsburgh Organization Name (eg, company) [Internet Widgits Pty Ltd]:My Company Organizational Unit Name (eg, section) []:Systems Administrator Common Name (eg, YOUR name) []:localhost.example.org Email Address []:[email protected] Please enter the following 'extra' attributes to be sent with your certificate request A challenge password []:SOME PASSWORD An optional company name []:Another Name
Notice the response directly after the “Common Name” prompt shows a domain name. This prompt requires a server name to be entered for verification purposes; placing anything but a domain name would yield a useless certificate. Other options, for instance expire time, alternate encryption algorithms, etc. are available. A complete list may be obtained by viewing the openssl(1) manual page.
Two files should now exist in the directory in which the aforementioned command was issued. The certificate request, req.pem, may be sent to a certificate authority who will validate the credentials that you entered, sign the request and return the certificate to you. The second file created will be named cert.pem and is the private key for the certificate and should be protected at all costs; if this falls in the hands of others it can be used to impersonate you (or your server).
In cases where a signature from a CA is not required, a self signed certificate can be created. First, generate the RSA key:
# openssl dsaparam -rand -genkey -out myRSA.key 1024
Next, generate the CA key:
# openssl gendsa -des3 -out myca.key myRSA.key
Use this key to create the certificate:
# openssl req -new -x509 -days 365 -key myca.key -out new.crt
Two new files should appear in the directory: a certificate authority signature file, myca.key and the certificate itself, new.crt. These should be placed in a directory, preferably under /etc, which is readable only by root. Permissions of 0700 should be fine for this and they can be set with the chmod utility.
So what can these files do? A good use would be to encrypt connections to the Sendmail MTA. This would dissolve the use of clear text authentication for users who send mail via the local MTA.
Note: This is not the best use in the world as some MUAs will present the user with an error if they have not installed the certificate locally. Refer to the documentation included with the software for more information on certificate installation.
The following lines should be placed inside the local .mc file:
dnl SSL Options define(`confCACERT_PATH',`/etc/certs')dnl define(`confCACERT',`/etc/certs/new.crt')dnl define(`confSERVER_CERT',`/etc/certs/new.crt')dnl define(`confSERVER_KEY',`/etc/certs/myca.key')dnl define(`confTLS_SRV_OPTIONS', `V')dnl
Where /etc/certs/ is the directory to be used for storing the certificate and key files locally. The last few requirements are a rebuild of the local .cf file. This is easily achieved by typing make install within the /etc/mail directory. Follow that up with make restart which should start the Sendmail daemon.
If all went well there will be no error messages in the /var/log/maillog file and Sendmail will show up in the process list.
For a simple test, simply connect to the mail server using the telnet(1) utility:
# telnet example.com 25 Trying 192.0.34.166... Connected to example.com. Escape character is '^]'. 220 example.com ESMTP Sendmail 8.12.10/8.12.10; Tue, 31 Aug 2004 03:41:22 -0400 (EDT) ehlo example.com 250-example.com Hello example.com [192.0.34.166], pleased to meet you 250-ENHANCEDSTATUSCODES 250-PIPELINING 250-8BITMIME 250-SIZE 250-DSN 250-ETRN 250-AUTH LOGIN PLAIN 250-STARTTLS 250-DELIVERBY 250 HELP quit 221 2.0.0 example.com closing connection Connection closed by foreign host.
If the “STARTTLS” line appears in the output then everything is working correctly.
Creating a VPN between two networks, separated by the Internet, using FreeBSD gateways.
This section will guide you through the process of setting up IPsec. In order to set up IPsec, it is necessary that you are familiar with the concepts of building a custom kernel (see Chapter 9).
IPsec is a protocol which sits on top of the Internet Protocol (IP) layer. It allows two or more hosts to communicate in a secure manner (hence the name). The FreeBSD IPsec “network stack” is based on the KAME implementation, which has support for both protocol families, IPv4 and IPv6.
IPsec consists of two sub-protocols:
Encapsulated Security Payload ESP), protects the IP packet data from third party interference, by encrypting the contents using symmetric cryptography algorithms (like Blowfish, 3DES).
Authentication Header (AH), protects the IP packet header from third party interference and spoofing, by computing a cryptographic checksum and hashing the IP packet header fields with a secure hashing function. This is then followed by an additional header that contains the hash, to allow the information in the packet to be authenticated.
ESP and AH can either be used together or separately, depending on the environment.
IPsec can either be used to directly encrypt the traffic between two hosts (known as Transport Mode); or to build “virtual tunnels” between two subnets, which could be used for secure communication between two corporate networks (known as Tunnel Mode). The latter is more commonly known as a Virtual Private Network (VPN). The ipsec(4) manual page should be consulted for detailed information on the IPsec subsystem in FreeBSD.
To add IPsec support to your kernel, add the following options to your kernel configuration file:
options IPSEC #IP security device crypto
If IPsec debugging support is desired, the following kernel option should also be added:
options IPSEC_DEBUG #debug for IP security
There is no standard for what constitutes a VPN. VPNs can be implemented using a number of different technologies, each of which have their own strengths and weaknesses. This section presents a scenario, and the strategies used for implementing a VPN for this scenario.
The premise is as follows:
You have at least two sites
Both sites are using IP internally
Both sites are connected to the Internet, through a gateway that is running FreeBSD.
The gateway on each network has at least one public IP address.
The internal addresses of the two networks can be public or private IP addresses, it does not matter. They just may not collide; e.g.: may not both use 192.168.1.x.
To begin, the security/ipsec-tools must be installed from the Ports Collection. This third party software package provides a number of applications which will help support the configuration.
The next requirement is to create two gif(4) pseudo-devices which will be used to tunnel packets and allow both networks to communicate properly. As root, run the following commands, replacing the internal and external items with the real internal and external gateways:
# ifconfig gif0 create
# ifconfig gif0 internal1 internal2
# ifconfig gif0 tunnel external1 external2
For example, the corporate LAN's public IP is 172.16.5.4 having a private IP of 10.246.38.1. The home LAN's public IP is 192.168.1.12 with an internal private IP of 10.0.0.5.
This may seem confusing, so review the following example output from the ifconfig(8) command:
Gateway 1: gif0: flags=8051 mtu 1280 tunnel inet 172.16.5.4 --> 192.168.1.12 inet6 fe80::2e0:81ff:fe02:5881%gif0 prefixlen 64 scopeid 0x6 inet 10.246.38.1 --> 10.0.0.5 netmask 0xffffff00 Gateway 2: gif0: flags=8051 mtu 1280 tunnel inet 192.168.1.12 --> 172.16.5.4 inet 10.0.0.5 --> 10.246.38.1 netmask 0xffffff00 inet6 fe80::250:bfff:fe3a:c1f%gif0 prefixlen 64 scopeid 0x4
Once complete, both private IPs should be reachable using the ping(8) command like the following output suggests:
priv-net# ping 10.0.0.5 PING 10.0.0.5 (10.0.0.5): 56 data bytes 64 bytes from 10.0.0.5: icmp_seq=0 ttl=64 time=42.786 ms 64 bytes from 10.0.0.5: icmp_seq=1 ttl=64 time=19.255 ms 64 bytes from 10.0.0.5: icmp_seq=2 ttl=64 time=20.440 ms 64 bytes from 10.0.0.5: icmp_seq=3 ttl=64 time=21.036 ms --- 10.0.0.5 ping statistics --- 4 packets transmitted, 4 packets received, 0% packet loss round-trip min/avg/max/stddev = 19.255/25.879/42.786/9.782 ms corp-net# ping 10.246.38.1 PING 10.246.38.1 (10.246.38.1): 56 data bytes 64 bytes from 10.246.38.1: icmp_seq=0 ttl=64 time=28.106 ms 64 bytes from 10.246.38.1: icmp_seq=1 ttl=64 time=42.917 ms 64 bytes from 10.246.38.1: icmp_seq=2 ttl=64 time=127.525 ms 64 bytes from 10.246.38.1: icmp_seq=3 ttl=64 time=119.896 ms 64 bytes from 10.246.38.1: icmp_seq=4 ttl=64 time=154.524 ms --- 10.246.38.1 ping statistics --- 5 packets transmitted, 5 packets received, 0% packet loss round-trip min/avg/max/stddev = 28.106/94.594/154.524/49.814 ms
As expected, both sides have the ability to send and receive ICMP packets from the privately configured addresses. Next, both gateways must be told how to route packets in order to correctly send traffic from either network. The following command will achieve this goal:
# corp-net# route add 10.0.0.0 10.0.0.5 255.255.255.0
# corp-net# route add net 10.0.0.0: gateway 10.0.0.5
# priv-net# route add 10.246.38.0 10.246.38.1 255.255.255.0
# priv-net# route add host 10.246.38.0: gateway 10.246.38.1
At this point, internal machines should be reachable from each gateway as well as from machines behind the gateways. This is easily determined from the following example:
corp-net# ping 10.0.0.8 PING 10.0.0.8 (10.0.0.8): 56 data bytes 64 bytes from 10.0.0.8: icmp_seq=0 ttl=63 time=92.391 ms 64 bytes from 10.0.0.8: icmp_seq=1 ttl=63 time=21.870 ms 64 bytes from 10.0.0.8: icmp_seq=2 ttl=63 time=198.022 ms 64 bytes from 10.0.0.8: icmp_seq=3 ttl=63 time=22.241 ms 64 bytes from 10.0.0.8: icmp_seq=4 ttl=63 time=174.705 ms --- 10.0.0.8 ping statistics --- 5 packets transmitted, 5 packets received, 0% packet loss round-trip min/avg/max/stddev = 21.870/101.846/198.022/74.001 ms priv-net# ping 10.246.38.107 PING 10.246.38.1 (10.246.38.107): 56 data bytes 64 bytes from 10.246.38.107: icmp_seq=0 ttl=64 time=53.491 ms 64 bytes from 10.246.38.107: icmp_seq=1 ttl=64 time=23.395 ms 64 bytes from 10.246.38.107: icmp_seq=2 ttl=64 time=23.865 ms 64 bytes from 10.246.38.107: icmp_seq=3 ttl=64 time=21.145 ms 64 bytes from 10.246.38.107: icmp_seq=4 ttl=64 time=36.708 ms --- 10.246.38.107 ping statistics --- 5 packets transmitted, 5 packets received, 0% packet loss round-trip min/avg/max/stddev = 21.145/31.721/53.491/12.179 ms
Setting up the tunnels is the easy part. Configuring a secure link is a much more in depth process. The following configuration uses pre-shared (PSK) RSA keys. Aside from the IP addresses, both /usr/local/etc/racoon/racoon.conf files will be identical and look similar to
path pre_shared_key "/usr/local/etc/racoon/psk.txt"; #location of pre-shared key file log debug; #log verbosity setting: set to 'notify' when testing and debugging is complete padding # options are not to be changed { maximum_length 20; randomize off; strict_check off; exclusive_tail off; } timer # timing options. change as needed { counter 5; interval 20 sec; persend 1; # natt_keepalive 15 sec; phase1 30 sec; phase2 15 sec; } listen # address [port] that racoon will listening on { isakmp 172.16.5.4 [500]; isakmp_natt 172.16.5.4 [4500]; } remote 192.168.1.12 [500] { exchange_mode main,aggressive; doi ipsec_doi; situation identity_only; my_identifier address 172.16.5.4; peers_identifier address 192.168.1.12; lifetime time 8 hour; passive off; proposal_check obey; # nat_traversal off; generate_policy off; proposal { encryption_algorithm blowfish; hash_algorithm md5; authentication_method pre_shared_key; lifetime time 30 sec; dh_group 1; } } sainfo (address 10.246.38.0/24 any address 10.0.0.0/24 any) # address $network/$netmask $type address $network/$netmask $type ( $type being any or esp) { # $network must be the two internal networks you are joining. pfs_group 1; lifetime time 36000 sec; encryption_algorithm blowfish,3des,des; authentication_algorithm hmac_md5,hmac_sha1; compression_algorithm deflate; }
Explaining every available option, along with those listed in these examples is beyond the scope of this document. There is plenty of relevant information in the racoon configuration manual page.
The SPD policies need to be configured so FreeBSD and racoon is able to encrypt and decrypt network traffic between hosts.
This task may be undertaken with a simple shell script similar to the following which is on the corporate gateway. This file will be used during system initialization and should be saved as /usr/local/etc/racoon/setkey.conf.
flush; spdflush; # To the home network spdadd 10.246.38.0/24 10.0.0.0/24 any -P out ipsec esp/tunnel/172.16.5.4-192.168.1.12/use; spdadd 10.0.0.0/24 10.246.38.0/24 any -P in ipsec esp/tunnel/192.168.1.12-172.16.5.4/use;
Once in place, racoon may be started on both gateways using the following command:
# /usr/local/sbin/racoon -F -f /usr/local/etc/racoon/racoon.conf -l /var/log/racoon.log
The output should be similar to the following:
corp-net# /usr/local/sbin/racoon -F -f /usr/local/etc/racoon/racoon.conf Foreground mode. 2006-01-30 01:35:47: INFO: begin Identity Protection mode. 2006-01-30 01:35:48: INFO: received Vendor ID: KAME/racoon 2006-01-30 01:35:55: INFO: received Vendor ID: KAME/racoon 2006-01-30 01:36:04: INFO: ISAKMP-SA established 172.16.5.4[500]-192.168.1.12[500] spi:623b9b3bd2492452:7deab82d54ff704a 2006-01-30 01:36:05: INFO: initiate new phase 2 negotiation: 172.16.5.4[0]192.168.1.12[0] 2006-01-30 01:36:09: INFO: IPsec-SA established: ESP/Tunnel 192.168.1.12[0]->172.16.5.4[0] spi=28496098(0x1b2d0e2) 2006-01-30 01:36:09: INFO: IPsec-SA established: ESP/Tunnel 172.16.5.4[0]->192.168.1.12[0] spi=47784998(0x2d92426) 2006-01-30 01:36:13: INFO: respond new phase 2 negotiation: 172.16.5.4[0]192.168.1.12[0] 2006-01-30 01:36:18: INFO: IPsec-SA established: ESP/Tunnel 192.168.1.12[0]->172.16.5.4[0] spi=124397467(0x76a279b) 2006-01-30 01:36:18: INFO: IPsec-SA established: ESP/Tunnel 172.16.5.4[0]->192.168.1.12[0] spi=175852902(0xa7b4d66)
To ensure the tunnel is working properly, switch to another console and use tcpdump(1) to view network traffic using the following command. Replace em0 with the network interface card as required.
# tcpdump -i em0 host 172.16.5.4 and dst 192.168.1.12
Data similar to the following should appear on the console. If not, there is an issue, and debugging the returned data will be required.
01:47:32.021683 IP corporatenetwork.com > 192.168.1.12.privatenetwork.com: ESP(spi=0x02acbf9f,seq=0xa) 01:47:33.022442 IP corporatenetwork.com > 192.168.1.12.privatenetwork.com: ESP(spi=0x02acbf9f,seq=0xb) 01:47:34.024218 IP corporatenetwork.com > 192.168.1.12.privatenetwork.com: ESP(spi=0x02acbf9f,seq=0xc)
At this point, both networks should be available and seem to be part of the same network. Most likely both networks are protected by a firewall, as they should be. To allow traffic to flow between them, rules need to be added to pass packets back and forth. For the ipfw(8) firewall, add the following lines to the firewall configuration file:
ipfw add 00201 allow log esp from any to any ipfw add 00202 allow log ah from any to any ipfw add 00203 allow log ipencap from any to any ipfw add 00204 allow log udp from any 500 to any
Note: The rule numbers may need to be altered depending on the current host configuration.
For users of pf(4) or ipf(8), the following rules should do the trick:
pass in quick proto esp from any to any pass in quick proto ah from any to any pass in quick proto ipencap from any to any pass in quick proto udp from any port = 500 to any port = 500 pass in quick on gif0 from any to any pass out quick proto esp from any to any pass out quick proto ah from any to any pass out quick proto ipencap from any to any pass out quick proto udp from any port = 500 to any port = 500 pass out quick on gif0 from any to any
Finally, to allow the machine to start support for the VPN during system initialization, add the following lines to /etc/rc.conf:
ipsec_enable="YES" ipsec_program="/usr/local/sbin/setkey" ipsec_file="/usr/local/etc/racoon/setkey.conf" # allows setting up spd policies on boot racoon_enable="yes"
OpenSSH is a set of network connectivity tools used to access remote machines securely. It can be used as a direct replacement for rlogin, rsh, rcp, and telnet. Additionally, TCP/IP connections can be tunneled/forwarded securely through SSH. OpenSSH encrypts all traffic to effectively eliminate eavesdropping, connection hijacking, and other network-level attacks.
OpenSSH is maintained by the OpenBSD project, and is based upon SSH v1.2.12 with all the recent bug fixes and updates. It is compatible with both SSH protocols 1 and 2.
Normally, when using telnet(1) or rlogin(1), data is sent over the network in a clear, un-encrypted form. Network sniffers anywhere in between the client and server can steal your user/password information or data transferred in your session. OpenSSH offers a variety of authentication and encryption methods to prevent this from happening.
The sshd is an option presented during a Standard install of FreeBSD. To see if sshd is enabled, check the rc.conf file for:
sshd_enable="YES"
This will load sshd(8), the daemon program for OpenSSH, the next time your system initializes. Alternatively, it is possible to use /etc/rc.d/sshd rc(8) script to start OpenSSH:
# /etc/rc.d/sshd start
The ssh(1) utility works similarly to rlogin(1).
# ssh [email protected] Host key not found from the list of known hosts. Are you sure you want to continue connecting (yes/no)? yes Host 'example.com' added to the list of known hosts. [email protected]'s password: *******
The login will continue just as it would have if a session was created using rlogin or telnet. SSH utilizes a key fingerprint system for verifying the authenticity of the server when the client connects. The user is prompted to enter yes only when connecting for the first time. Future attempts to login are all verified against the saved fingerprint key. The SSH client will alert you if the saved fingerprint differs from the received fingerprint on future login attempts. The fingerprints are saved in ~/.ssh/known_hosts, or ~/.ssh/known_hosts2 for SSH v2 fingerprints.
By default, recent versions of the OpenSSH servers
only accept SSH v2 connections. The client will use version 2 if possible and
will fall back to version 1. The client can also be forced to use one or the other
by passing it the -1
or -2
for version 1 or version 2, respectively. The version 1 compatibility is
maintained in the client for backwards compatibility with older versions.
The scp(1) command works similarly to rcp(1); it copies a file to or from a remote machine, except in a secure fashion.
# scp [email protected]:/COPYRIGHT COPYRIGHT [email protected]'s password: ******* COPYRIGHT 100% |*****************************| 4735 00:00 #
Since the fingerprint was already saved for this host in the previous example, it is verified when using scp(1) here.
The arguments passed to scp(1) are similar to
cp(1), with the file
or files in the first argument, and the destination in the second. Since the file is
fetched over the network, through SSH, one or more of the file arguments takes
on the form user@host:<path_to_remote_file>
.
The system-wide configuration files for both the OpenSSH daemon and client reside within the /etc/ssh directory.
ssh_config configures the client settings, while sshd_config configures the daemon.
Additionally, the sshd_program
(/usr/sbin/sshd by default), and sshd_flags
rc.conf options can
provide more levels of configuration.
Instead of using passwords, ssh-keygen(1) can be used to generate DSA or RSA keys to authenticate a user:
% ssh-keygen -t dsa Generating public/private dsa key pair. Enter file in which to save the key (/home/user/.ssh/id_dsa): Created directory '/home/user/.ssh'. Enter passphrase (empty for no passphrase): Enter same passphrase again: Your identification has been saved in /home/user/.ssh/id_dsa. Your public key has been saved in /home/user/.ssh/id_dsa.pub. The key fingerprint is: bb:48:db:f2:93:57:80:b6:aa:bc:f5:d5:ba:8f:79:17 [email protected]
ssh-keygen(1) will create a public and private key pair for use in authentication. The private key is stored in ~/.ssh/id_dsa or ~/.ssh/id_rsa, whereas the public key is stored in ~/.ssh/id_dsa.pub or ~/.ssh/id_rsa.pub, respectively for DSA and RSA key types. The public key must be placed in the ~/.ssh/authorized_keys file of the remote machine for both RSA or DSA keys in order for the setup to work.
This will allow connection to the remote machine based upon SSH keys instead of passwords.
If a passphrase is used in ssh-keygen(1), the user will be prompted for a password each time in order to use the private key. ssh-agent(1) can alleviate the strain of repeatedly entering long passphrases, and is explored in the Section 15.10.7 section below.
Warning: The various options and files can be different according to the OpenSSH version you have on your system; to avoid problems you should consult the ssh-keygen(1) manual page.
The ssh-agent(1) and ssh-add(1) utilities provide methods for SSH keys to be loaded into memory for use, without needing to type the passphrase each time.
The ssh-agent(1) utility will handle the authentication using the private key(s) that are loaded into it. ssh-agent(1) should be used to launch another application. At the most basic level, it could spawn a shell or at a more advanced level, a window manager.
To use ssh-agent(1) in a shell, first it will need to be spawned with a shell as an argument. Secondly, the identity needs to be added by running ssh-add(1) and providing it the passphrase for the private key. Once these steps have been completed the user will be able to ssh(1) to any host that has the corresponding public key installed. For example:
% ssh-agent csh % ssh-add Enter passphrase for /home/user/.ssh/id_dsa: Identity added: /home/user/.ssh/id_dsa (/home/user/.ssh/id_dsa) %
To use ssh-agent(1) in X11, a call to ssh-agent(1) will need to be placed in ~/.xinitrc. This will provide the ssh-agent(1) services to all programs launched in X11. An example ~/.xinitrc file might look like this:
exec ssh-agent startxfce4
This would launch ssh-agent(1), which would in turn launch XFCE, every time X11 starts. Then once that is done and X11 has been restarted so that the changes can take effect, simply run ssh-add(1) to load all of your SSH keys.
OpenSSH has the ability to create a tunnel to encapsulate another protocol in an encrypted session.
The following command tells ssh(1) to create a tunnel for telnet:
% ssh -2 -N -f -L 5023:localhost:23 [email protected] %
The ssh command is used with the following options:
-2
Forces ssh to use version 2 of the protocol. (Do not use if you are working with older SSH servers)
-N
Indicates no command, or tunnel only. If omitted, ssh would initiate a normal session.
-f
Forces ssh to run in the background.
-L
Indicates a local tunnel in localport:remotehost:remoteport fashion.
[email protected]
The remote SSH server.
An SSH tunnel works by creating a listen socket on localhost on the specified port. It then forwards any connection received on the local host/port via the SSH connection to the specified remote host and port.
In the example, port 5023 on localhost is being forwarded to port 23 on localhost of the remote machine. Since 23 is telnet, this would create a secure telnet session through an SSH tunnel.
This can be used to wrap any number of insecure TCP protocols such as SMTP, POP3, FTP, etc.
Example 15-1. Using SSH to Create a Secure Tunnel for SMTP
% ssh -2 -N -f -L 5025:localhost:25 [email protected] [email protected]'s password: ***** % telnet localhost 5025 Trying 127.0.0.1... Connected to localhost. Escape character is '^]'. 220 mailserver.example.com ESMTP
This can be used in conjunction with an ssh-keygen(1) and additional user accounts to create a more seamless/hassle-free SSH tunneling environment. Keys can be used in place of typing a password, and the tunnels can be run as a separate user.
At work, there is an SSH server that accepts connections from the outside. On the same office network resides a mail server running a POP3 server. The network, or network path between your home and office may or may not be completely trustable. Because of this, you need to check your e-mail in a secure manner. The solution is to create an SSH connection to your office's SSH server, and tunnel through to the mail server.
% ssh -2 -N -f -L 2110:mail.example.com:110 [email protected] [email protected]'s password: ******
When the tunnel is up and running, you can point your mail client to send POP3 requests to localhost port 2110. A connection here will be forwarded securely across the tunnel to mail.example.com.
Some network administrators impose extremely draconian firewall rules, filtering not only incoming connections, but outgoing connections. You may be only given access to contact remote machines on ports 22 and 80 for SSH and web surfing.
You may wish to access another (perhaps non-work related) service, such as an Ogg Vorbis server to stream music. If this Ogg Vorbis server is streaming on some other port than 22 or 80, you will not be able to access it.
The solution is to create an SSH connection to a machine outside of your network's firewall, and use it to tunnel to the Ogg Vorbis server.
% ssh -2 -N -f -L 8888:music.example.com:8000 [email protected] [email protected]'s password: *******
Your streaming client can now be pointed to localhost port 8888, which will be forwarded over to music.example.com port 8000, successfully evading the firewall.
AllowUsers
OptionIt is often a good idea to limit which users can log in and from where. The AllowUsers option is a good way to accomplish this. For example, to only allow the root user to log in from 192.168.1.32, something like this would be appropriate in the /etc/ssh/sshd_config file:
AllowUsers [email protected]
To allow the user admin to log in from anywhere, just list the username by itself:
AllowUsers admin
Multiple users should be listed on the same line, like so:
AllowUsers [email protected] admin
Note: It is important that you list each user that needs to log in to this machine; otherwise they will be locked out.
After making changes to /etc/ssh/sshd_config you must tell sshd(8) to reload its config files, by running:
# /etc/rc.d/sshd reload
In conjunction with file system enhancements like snapshots, FreeBSD offers the security of File System Access Control Lists (ACLs).
Access Control Lists extend the standard UNIX permission model in a highly compatible (POSIX.1e) way. This feature permits an administrator to make use of and take advantage of a more sophisticated security model.
To enable ACL support for UFS file systems, the following:
options UFS_ACL
must be compiled into the kernel. If this option has not been compiled in, a warning message will be displayed when attempting to mount a file system supporting ACLs. This option is included in the GENERIC kernel. ACLs rely on extended attributes being enabled on the file system. Extended attributes are natively supported in the next generation UNIX file system, UFS2.
Note: A higher level of administrative overhead is required to configure extended attributes on UFS1 than on UFS2. The performance of extended attributes on UFS2 is also substantially higher. As a result, UFS2 is generally recommended in preference to UFS1 for use with access control lists.
ACLs are enabled by the mount-time
administrative flag, acls
, which may be added to /etc/fstab. The mount-time flag can also be automatically set in a
persistent manner using tunefs(8) to modify a
superblock ACLs flag in the file system
header. In general, it is preferred to use the superblock flag for several reasons:
The mount-time ACLs flag cannot be
changed by a remount (mount(8) -u
), only by means of a complete umount(8) and fresh
mount(8). This means
that ACLs cannot be enabled on the root
file system after boot. It also means that you cannot change the disposition of a
file system once it is in use.
Setting the superblock flag will cause the file system to always be mounted with ACLs enabled even if there is not an fstab entry or if the devices re-order. This prevents accidental mounting of the file system without ACLs enabled, which can result in ACLs being improperly enforced, and hence security problems.
Note: We may change the ACLs behavior to allow the flag to be enabled without a complete fresh mount(8), but we consider it desirable to discourage accidental mounting without ACLs enabled, because you can shoot your feet quite nastily if you enable ACLs, then disable them, then re-enable them without flushing the extended attributes. In general, once you have enabled ACLs on a file system, they should not be disabled, as the resulting file protections may not be compatible with those intended by the users of the system, and re-enabling ACLs may re-attach the previous ACLs to files that have since had their permissions changed, resulting in other unpredictable behavior.
File systems with ACLs enabled will show a + (plus) sign in their permission settings when viewed. For example:
drwx------ 2 robert robert 512 Dec 27 11:54 private drwxrwx---+ 2 robert robert 512 Dec 23 10:57 directory1 drwxrwx---+ 2 robert robert 512 Dec 22 10:20 directory2 drwxrwx---+ 2 robert robert 512 Dec 27 11:57 directory3 drwxr-xr-x 2 robert robert 512 Nov 10 11:54 public_html
Here we see that the directory1, directory2, and directory3 directories are all taking advantage of ACLs. The public_html directory is not.
The file system ACLs can be viewed by the getfacl(1) utility. For instance, to view the ACL settings on the test file, one would use the command:
% getfacl test #file:test #owner:1001 #group:1001 user::rw- group::r-- other::r--
To change the ACL settings on this file, invoke the setfacl(1) utility. Observe:
% setfacl -k test
The -k
flag will remove all of the currently defined
ACLs from a file or file system. The
more preferable method would be to use -b
as it leaves
the basic fields required for ACLs to
work.
% setfacl -m u:trhodes:rwx,group:web:r--,o::--- test
In the aforementioned command, the -m
option was used
to modify the default ACL entries. Since
there were no pre-defined entries, as they were removed by the previous command,
this will restore the default options and assign the options listed. Take care to
notice that if you add a user or group which does not exist on the system, an
“Invalid argument” error will be printed to
stdout.
In recent years, the security world has made many improvements to how vulnerability assessment is handled. The threat of system intrusion increases as third party utilities are installed and configured for virtually any operating system available today.
Vulnerability assessment is a key factor in security, and while FreeBSD releases advisories for the base system, doing so for every third party utility is beyond the FreeBSD Project's capability. There is a way to mitigate third party vulnerabilities and warn administrators of known security issues. A FreeBSD add on utility known as Portaudit exists solely for this purpose.
The ports-mgmt/portaudit port polls a database, updated and maintained by the FreeBSD Security Team and ports developers, for known security issues.
To begin using Portaudit, one must install it from the Ports Collection:
# cd /usr/ports/ports-mgmt/portaudit && make install clean
During the install process, the configuration files for periodic(8) will be updated, permitting Portaudit output in the daily security runs. Ensure the daily security run emails, which are sent to root's email account, are being read. No more configuration will be required here.
After installation, an administrator can update the database and view known vulnerabilities in installed packages by invoking the following command:
# portaudit -Fda
Note: The database will automatically be updated during the periodic(8) run; thus, the previous command is completely optional. It is only required for the following examples.
To audit the third party utilities installed as part of the Ports Collection at anytime, an administrator need only run the following command:
# portaudit -a
Portaudit will produce something like this for vulnerable packages:
Affected package: cups-base-1.1.22.0_1 Type of problem: cups-base -- HPGL buffer overflow vulnerability. Reference: <http://www.FreeBSD.org/ports/portaudit/40a3bca2-6809-11d9-a9e7-0001020eed82.html> 1 problem(s) in your installed packages found. You are advised to update or deinstall the affected package(s) immediately.
By pointing a web browser to the URL shown, an administrator may obtain more information about the vulnerability in question. This will include versions affected, by FreeBSD Port version, along with other web sites which may contain security advisories.
In short, Portaudit is a powerful utility and extremely useful when coupled with the Portupgrade port.
Like many production quality operating systems, FreeBSD publishes “Security Advisories”. These advisories are usually mailed to the security lists and noted in the Errata only after the appropriate releases have been patched. This section will work to explain what an advisory is, how to understand it, and what measures to take in order to patch a system.
The FreeBSD security advisories look similar to the one below, taken from the freebsd-security-notifications mailing list.
============================================================================= FreeBSD-SA-XX:XX.UTIL Security Advisory The FreeBSD Project Topic: denial of service due to some problem Category: core Module: sys Announced: 2003-09-23 Credits: Person Affects: All releases of FreeBSD FreeBSD 4-STABLE prior to the correction date Corrected: 2003-09-23 16:42:59 UTC (RELENG_4, 4.9-PRERELEASE) 2003-09-23 20:08:42 UTC (RELENG_5_1, 5.1-RELEASE-p6) 2003-09-23 20:07:06 UTC (RELENG_5_0, 5.0-RELEASE-p15) 2003-09-23 16:44:58 UTC (RELENG_4_8, 4.8-RELEASE-p8) 2003-09-23 16:47:34 UTC (RELENG_4_7, 4.7-RELEASE-p18) 2003-09-23 16:49:46 UTC (RELENG_4_6, 4.6-RELEASE-p21) 2003-09-23 16:51:24 UTC (RELENG_4_5, 4.5-RELEASE-p33) 2003-09-23 16:52:45 UTC (RELENG_4_4, 4.4-RELEASE-p43) 2003-09-23 16:54:39 UTC (RELENG_4_3, 4.3-RELEASE-p39) CVE Name: CVE-XXXX-XXXX For general information regarding FreeBSD Security Advisories, including descriptions of the fields above, security branches, and the following sections, please visit http://www.FreeBSD.org/security/. I. Background II. Problem Description III. Impact IV. Workaround V. Solution VI. Correction details VII. References
Process accounting is a security method in which an administrator may keep track of system resources used, their allocation among users, provide for system monitoring, and minimally track a user's commands.
This indeed has its own positive and negative points. One of the positives is that an intrusion may be narrowed down to the point of entry. A negative is the amount of logs generated by process accounting, and the disk space they may require. This section will walk an administrator through the basics of process accounting.
Before making use of process accounting, it must be enabled. To do this, execute the following commands:
# touch /var/account/acct # accton /var/account/acct # echo 'accounting_enable="YES"' >> /etc/rc.conf
Once enabled, accounting will begin to track CPU stats, commands, etc. All accounting logs are in a non-human readable format and may be viewed using the sa(8) utility. If issued without any options, sa will print information relating to the number of per user calls, the total elapsed time in minutes, total CPU and user time in minutes, average number of I/O operations, etc.
To view information about commands being issued, one would use the lastcomm(1) utility. The lastcomm command may be used to print out commands issued by users on specific ttys(5), for example:
# lastcomm ls trhodes ttyp1
Would print out all known usage of the ls by trhodes on the ttyp1 terminal.
Many other useful options exist and are explained in the lastcomm(1), acct(5) and sa(8) manual pages.
This chapter will provide an explanation of what FreeBSD jails are and how to use them. Jails, sometimes referred to as an enhanced replacement of chroot environments, are a very powerful tool for system administrators, but their basic usage can also be useful for advanced users.
Important: Jails are a powerful tool, but they are not a security panacea. It is particularly important to note that while it is not possible for a jailed process to break out on its own, there are several ways in which an unprivileged user outside the jail can cooperate with a privileged user inside the jail and thereby obtain elevated privileges in the host environment.
Most of these attacks can be mitigated by ensuring that the jail root is not accessible to unprivileged users in the host environment. Regardless, as a general rule, untrusted users with privileged access to a jail should not be given access to the host environment.
After reading this chapter, you will know:
What a jail is, and what purpose it may serve in FreeBSD installations.
How to build, start, and stop a jail.
The basics of jail administration, both from inside and outside the jail.
Other sources of useful information about jails are:
The jail(8) manual page. This is the full reference of the jail utility — the administrative tool which can be used in FreeBSD to start, stop, and control FreeBSD jails.
The mailing lists and their archives. The archives of the FreeBSD general questions mailing list and other mailing lists hosted by the FreeBSD list server already contain a wealth of material for jails. It should always be engaging to search the archives, or post a new question to the freebsd-questions mailing list.
To facilitate better understanding of parts of the FreeBSD system related to jails, their internals and the way they interact with the rest of FreeBSD, the following terms are used further in this chapter:
Utility, which uses chroot(2) FreeBSD system call to change the root directory of a process and all its descendants.
The environment of processes running in a “chroot”. This includes resources such as the part of the file system which is visible, user and group IDs which are available, network interfaces and other IPC mechanisms, etc.
The system administration utility which allows launching of processes within a jail environment.
The controlling system of a jail environment. The host system has access to all the hardware resources available, and can control processes both outside of and inside a jail environment. One of the important differences of the host system from a jail is that the limitations which apply to superuser processes inside a jail are not enforced for processes of the host system.
A process, user or other entity, whose access to resources is restricted by a FreeBSD jail.
Since system administration is a difficult and perplexing task, many powerful tools were developed to make life easier for the administrator. These tools mostly provide enhancements of some sort to the way systems are installed, configured and maintained. Part of the tasks which an administrator is expected to do is to properly configure the security of a system, so that it can continue serving its real purpose, without allowing security violations.
One of the tools which can be used to enhance the security of a FreeBSD system are
jails. Jails were introduced in
FreeBSD 4.X by Poul-Henning Kamp <[email protected]>
, but were greatly improved
in FreeBSD 5.X to make them a powerful and flexible subsystem. Their development still
goes on, enhancing their usefulness, performance, reliability, and security.
BSD-like operating systems have had chroot(2) since the time of 4.2BSD. The chroot(8) utility can be used to change the root directory of a set of processes, creating a safe environment, separate from the rest of the system. Processes created in the chrooted environment can not access files or resources outside of it. For that reason, compromising a service running in a chrooted environment should not allow the attacker to compromise the entire system. The chroot(8) utility is good for easy tasks, which do not require a lot of flexibility or complex and advanced features. Since the inception of the chroot concept, however, many ways have been found to escape from a chrooted environment and, although they have been fixed in modern versions of the FreeBSD kernel, it was clear that chroot(2) was not the ideal solution for securing services. A new subsystem had to be implemented.
This is one of the main reasons why jails were developed.
Jails improve on the concept of the traditional chroot(2) environment, in several ways. In a traditional chroot(2) environment, processes are only limited in the part of the file system they can access. The rest of the system resources (like the set of system users, the running processes, or the networking subsystem) are shared by the chrooted processes and the processes of the host system. Jails expand this model by virtualizing not only access to the file system, but also the set of users, the networking subsystem of the FreeBSD kernel and a few other things. A more complete set of fine-grained controls available for tuning the access of a jailed environment is described in Section 16.5.
A jail is characterized by four elements:
A directory subtree — the starting point from which a jail is entered. Once inside the jail, a process is not permitted to escape outside of this subtree. Traditional security issues which plagued the original chroot(2) design will not affect FreeBSD jails.
A hostname — the hostname which will be used within the jail. Jails are mainly used for hosting network services, therefore having a descriptive hostname for each jail can really help the system administrator.
An IP address — this will be assigned to the jail and cannot be changed in any way during the jail's life span. The IP address of a jail is usually an alias address for an existing network interface, but this is not strictly necessary.
A command — the path name of an executable to run inside the jail. This is relative to the root directory of the jail environment, and may vary a lot, depending on the type of the specific jail environment.
Apart from these, jails can have their own set of users and their own root user. Naturally, the powers of the root user are limited within the jail environment and, from the point of view of the host system, the jail root user is not an omnipotent user. In addition, the root user of a jail is not allowed to perform critical operations to the system outside of the associated jail(8) environment. More information about capabilities and restrictions of the root user will be discussed in Section 16.5 below.
Some administrators divide jails into the following two types: “complete” jails, which resemble a real FreeBSD system, and “service” jails, dedicated to one application or service, possibly running with privileges. This is only a conceptual division and the process of building a jail is not affected by it. The jail(8) manual page is quite clear about the procedure for building a jail:
# setenv D /here/is/the/jail # mkdir -p $D # cd /usr/src # make buildworld # make installworld DESTDIR=$D # make distribution DESTDIR=$D # mount -t devfs devfs $D/dev
Once a jail is installed, it can be started by using the jail(8) utility. The
jail(8) utility takes
four mandatory arguments which are described in the Section
16.3.1. Other arguments may be specified too, e.g., to run the jailed process with
the credentials of a specific user. The command
argument depends on the type of the jail;
for a virtual system, /etc/rc is a good choice, since it will replicate the startup
sequence of a real FreeBSD system. For a service jail, it depends on the service or application that
will run within the jail.
Jails are often started at boot time and the FreeBSD rc mechanism provides an easy way to do this.
A list of the jails which are enabled to start at boot time should be added to the rc.conf(5) file:
jail_enable="YES" # Set to NO to disable starting of any jails jail_list="www" # Space separated list of names of jails
Note: Jail names in
jail_list
should contain alphanumeric characters only.
For each jail listed in jail_list
, a group of rc.conf(5) settings,
which describe the particular jail, should be added:
jail_www_rootdir="/usr/jail/www" # jail's root directory jail_www_hostname="www.example.org" # jail's hostname jail_www_ip="192.168.0.10" # jail's IP address jail_www_devfs_enable="YES" # mount devfs in the jail jail_www_devfs_ruleset="www_ruleset" # devfs ruleset to apply to jail
The default startup of jails configured in rc.conf(5), will run
the /etc/rc script of the jail, which assumes the jail is
a complete virtual system. For service jails, the default startup command of
the jail should be changed, by setting the jail_jailname_exec_start
option
appropriately.
Note: For a full list of available options, please see the rc.conf(5) manual page.
The /etc/rc.d/jail script can be used to start or stop a jail by hand, if an entry for it exists in rc.conf:
# /etc/rc.d/jail start www # /etc/rc.d/jail stop www
A clean way to shut down a jail(8) is not available at the moment. This is because commands normally used to accomplish a clean system shutdown cannot be used inside a jail. The best way to shut down a jail is to run the following command from within the jail itself or using the jexec(8) utility from outside the jail:
# sh /etc/rc.shutdown
More information about this can be found in the jail(8) manual page.
There are several options which can be set for any jail, and various ways of combining a host FreeBSD system with jails, to produce higher level applications. This section presents:
Some of the options available for tuning the behavior and security restrictions implemented by a jail installation.
Some of the high-level applications for jail management, which are available through the FreeBSD Ports Collection, and can be used to implement overall jail-based solutions.
Fine tuning of a jail's configuration is mostly done by setting sysctl(8) variables. A
special subtree of sysctl exists as a basis for organizing all the relevant options:
the security.jail.*
hierarchy of FreeBSD kernel
options. Here is a list of the main jail-related sysctls, complete with their
default value. Names should be self-explanatory, but for more information about
them, please refer to the jail(8) and sysctl(8) manual
pages.
security.jail.set_hostname_allowed: 1
security.jail.socket_unixiproute_only: 1
security.jail.sysvipc_allowed: 0
security.jail.enforce_statfs: 2
security.jail.allow_raw_sockets: 0
security.jail.chflags_allowed: 0
security.jail.jailed: 0
These variables can be used by the system administrator of the host system to add or remove some of
the limitations imposed by default on the root user.
Note that there are some limitations which cannot be removed. The root user is not allowed to mount or unmount file systems from
within a jail(8). The root inside a jail may not load or unload devfs(8) rulesets, set
firewall rules, or do many other administrative tasks which require modifications of
in-kernel data, such as setting the securelevel
of the
kernel.
The base system of FreeBSD contains a basic set of tools for viewing information about the active jails, and attaching to a jail to run administrative commands. The jls(8) and jexec(8) commands are part of the base FreeBSD system, and can be used to perform the following simple tasks:
Print a list of active jails and their corresponding jail identifier (JID), IP address, hostname and path.
Attach to a running jail, from its host system, and run a command inside the jail or perform administrative tasks inside the jail itself. This is especially useful when the root user wants to cleanly shut down a jail. The jexec(8) utility can also be used to start a shell in a jail to do administration in it; for example:
# jexec 1 tcsh
Among the many third-party utilities for jail administration, one of the most complete and useful is sysutils/jailutils. It is a set of small applications that contribute to jail(8) management. Please refer to its web page for more information.
This section is based upon an idea originally presented by Simon L. Nielsen <[email protected]>
at http://simon.nitro.dk/service-jails.html, and an updated article
written by Ken Tom <[email protected]>
. This section illustrates
how to set up a FreeBSD system that adds an additional layer of security, using
the jail(8) feature. It is
also assumed that the given system is at least running RELENG_6_0 and the
information provided earlier in this chapter has been well understood.
One of the major problems with jails is the management of their upgrade process. This tends to be a problem because every jail has to be rebuilt from scratch whenever it is updated. This is usually not a problem for a single jail, since the update process is fairly simple, but can be quite time consuming and tedious if a lot of jails are created.
Warning: This setup requires advanced experience with FreeBSD and usage of its features. If the presented steps below look too complicated, it is advised to take a look at a simpler system such as sysutils/ezjail, which provides an easier method of administering FreeBSD jails and is not as sophisticated as this setup.
This idea has been presented to resolve such issues by sharing as much as is possible between jails, in a safe way — using read-only mount_nullfs(8) mounts, so that updating will be simpler, and putting single services into individual jails will become more attractive. Additionally, it provides a simple way to add or remove jails as well as a way to upgrade them.
Note: Examples of services in this context are: an HTTP server, a DNS server, a SMTP server, and so forth.
The goals of the setup described in this section are:
Create a simple and easy to understand jail structure. This implies not having to run a full installworld on each and every jail.
Make it easy to add new jails or remove existing ones.
Make it easy to update or upgrade existing jails.
Make it possible to run a customized FreeBSD branch.
Be paranoid about security, reducing as much as possible the possibility of compromise.
Save space and inodes, as much as possible.
As it has been already mentioned, this design relies heavily on having a single master template which is read-only (known as nullfs) mounted into each jail and one read-write device per jail. A device can be a separate physical disc, a partition, or a vnode backed md(4) device. In this example, we will use read-write nullfs mounts.
The file system layout is described in the following list:
Each jail will be mounted under the /home/j directory.
/home/j/mroot is the template for each jail and the read-only partition for all of the jails.
A blank directory will be created for each jail under the /home/j directory.
Each jail will have a /s directory, that will be linked to the read-write portion of the system.
Each jail shall have its own read-write system that is based upon /home/j/skel.
Each jailspace (read-write portion of each jail) shall be created in /home/js.
Note: This assumes that the jails are based under the /home partition. This can, of course, be changed to anything else, but this change will have to be reflected in each of the examples below.
This section will describe the steps needed to create the master template that will be the read-only portion for the jails to use.
It is always a good idea to update the FreeBSD system to the latest -RELEASE branch. Check the corresponding Handbook Chapter to accomplish this task. In the case the update is not feasible, the buildworld will be required in order to be able to proceed. Additionally, the sysutils/cpdup package will be required. We will use the portsnap(8) utility to download the FreeBSD Ports Collection. The Handbook Portsnap Chapter is always good reading for newcomers.
First, create a directory structure for the read-only file system which will contain the FreeBSD binaries for our jails, then change directory to the FreeBSD source tree and install the read-only file system to the jail template:
# mkdir /home/j /home/j/mroot # cd /usr/src # make installworld DESTDIR=/home/j/mroot
Next, prepare a FreeBSD Ports Collection for the jails as well as a FreeBSD source tree, which is required for mergemaster:
# cd /home/j/mroot # mkdir usr/ports # portsnap -p /home/j/mroot/usr/ports fetch extract # cpdup /usr/src /home/j/mroot/usr/src
Create a skeleton for the read-write portion of the system:
# mkdir /home/j/skel /home/j/skel/home /home/j/skel/usr-X11R6 /home/j/skel/distfiles # mv etc /home/j/skel # mv usr/local /home/j/skel/usr-local # mv tmp /home/j/skel # mv var /home/j/skel # mv root /home/j/skel
Use mergemaster to install missing configuration files. Then get rid of the extra directories that mergemaster creates:
# mergemaster -t /home/j/skel/var/tmp/temproot -D /home/j/skel -i # cd /home/j/skel # rm -R bin boot lib libexec mnt proc rescue sbin sys usr dev
Now, symlink the read-write file system to the read-only file system. Please make sure that the symlinks are created in the correct s/ locations. Real directories or the creation of directories in the wrong locations will cause the installation to fail.
# cd /home/j/mroot # mkdir s # ln -s s/etc etc # ln -s s/home home # ln -s s/root root # ln -s ../s/usr-local usr/local # ln -s ../s/usr-X11R6 usr/X11R6 # ln -s ../../s/distfiles usr/ports/distfiles # ln -s s/tmp tmp # ln -s s/var var
As a last step, create a generic /home/j/skel/etc/make.conf with its contents as shown below:
WRKDIRPREFIX?= /s/portbuild
Having WRKDIRPREFIX set up this way will make it possible to compile FreeBSD ports inside each jail. Remember that the ports directory is part of the read-only system. The custom path for WRKDIRPREFIX allows builds to be done in the read-write portion of every jail.
Now that we have a complete FreeBSD jail template, we can setup and configure the jails in /etc/rc.conf. This example demonstrates the creation of 3 jails: “NS”, “MAIL” and “WWW”.
Put the following lines into the /etc/fstab file, so that the read-only template for the jails and the read-write space will be available in the respective jails:
/home/j/mroot /home/j/ns nullfs ro 0 0 /home/j/mroot /home/j/mail nullfs ro 0 0 /home/j/mroot /home/j/www nullfs ro 0 0 /home/js/ns /home/j/ns/s nullfs rw 0 0 /home/js/mail /home/j/mail/s nullfs rw 0 0 /home/js/www /home/j/www/s nullfs rw 0 0
Note: Partitions marked with a 0 pass number are not checked by fsck(8) during boot, and partitions marked with a 0 dump number are not backed up by dump(8). We do not want fsck to check nullfs mounts or dump to back up the read-only nullfs mounts of the jails. This is why they are marked with “0 0” in the last two columns of each fstab entry above.
Configure the jails in /etc/rc.conf:
jail_enable="YES" jail_set_hostname_allow="NO" jail_list="ns mail www" jail_ns_hostname="ns.example.org" jail_ns_ip="192.168.3.17" jail_ns_rootdir="/usr/home/j/ns" jail_ns_devfs_enable="YES" jail_mail_hostname="mail.example.org" jail_mail_ip="192.168.3.18" jail_mail_rootdir="/usr/home/j/mail" jail_mail_devfs_enable="YES" jail_www_hostname="www.example.org" jail_www_ip="62.123.43.14" jail_www_rootdir="/usr/home/j/www" jail_www_devfs_enable="YES"
Warning: The reason why the
jail_name_rootdir
variable is set to /usr/home instead of /home is that the physical path of the /home directory on a default FreeBSD installation is /usr/home. Thejail_name_rootdir
variable must not be set to a path which includes a symbolic link, otherwise the jails will refuse to start. Use the realpath(1) utility to determine a value which should be set to this variable. Please see the FreeBSD-SA-07:01.jail Security Advisory for more information.
Create the required mount points for the read-only file system of each jail:
# mkdir /home/j/ns /home/j/mail /home/j/www
Install the read-write template into each jail. Note the use of sysutils/cpdup, which helps to ensure that a correct copy is done of each directory:
# mkdir /home/js # cpdup /home/j/skel /home/js/ns # cpdup /home/j/skel /home/js/mail # cpdup /home/j/skel /home/js/www
In this phase, the jails are built and prepared to run. First, mount the required file systems for each jail, and then start them using the /etc/rc.d/jail script:
# mount -a # /etc/rc.d/jail start
The jails should be running now. To check if they have started correctly, use the jls(8) command. Its output should be similar to the following:
# jls JID IP Address Hostname Path 3 192.168.3.17 ns.example.org /home/j/ns 2 192.168.3.18 mail.example.org /home/j/mail 1 62.123.43.14 www.example.org /home/j/www
At this point, it should be possible to log onto each jail, add new users or configure daemons. The JID column indicates the jail identification number of each running jail. Use the following command in order to perform administrative tasks in the jail whose JID is 3:
# jexec 3 tcsh
In time, there will be a need to upgrade the system to a newer version of FreeBSD, either because of a security issue, or because new features have been implemented which are useful for the existing jails. The design of this setup provides an easy way to upgrade existing jails. Additionally, it minimizes their downtime, as the jails will be brought down only in the very last minute. Also, it provides a way to roll back to the older versions should any problems occur.
The first step is to upgrade the host system in the usual manner. Then create a new temporary read-only template in /home/j/mroot2.
# mkdir /home/j/mroot2 # cd /usr/src # make installworld DESTDIR=/home/j/mroot2 # cd /home/j/mroot2 # cpdup /usr/src usr/src # mkdir s
The installworld run creates a few unnecessary directories, which should be removed:
# chflags -R 0 var # rm -R etc var root usr/local tmp
Recreate the read-write symlinks for the master file system:
# ln -s s/etc etc # ln -s s/root root # ln -s s/home home # ln -s ../s/usr-local usr/local # ln -s ../s/usr-X11R6 usr/X11R6 # ln -s s/tmp tmp # ln -s s/var var
The right time to stop the jails is now:
# /etc/rc.d/jail stop
Unmount the original file systems:
# umount /home/j/ns/s # umount /home/j/ns # umount /home/j/mail/s # umount /home/j/mail # umount /home/j/www/s # umount /home/j/www
Note: The read-write systems are attached to the read-only system (/s) and must be unmounted first.
Move the old read-only file system and replace it with the new one. This will serve as a backup and archive of the old read-only file system should something go wrong. The naming convention used here corresponds to when a new read-only file system has been created. Move the original FreeBSD Ports Collection over to the new file system to save some space and inodes:
# cd /home/j # mv mroot mroot.20060601 # mv mroot2 mroot # mv mroot.20060601/usr/ports mroot/usr
At this point the new read-only template is ready, so the only remaining task is to remount the file systems and start the jails:
# mount -a # /etc/rc.d/jail start
Use jls(8) to check if the jails started correctly. Do not forget to run mergemaster in each jail. The configuration files will need to be updated as well as the rc.d scripts.
FreeBSD 5.X introduced new security extensions from the TrustedBSD project based on the POSIX.1e draft. Two of the most significant new security mechanisms are file system Access Control Lists (ACLs) and Mandatory Access Control (MAC) facilities. Mandatory Access Control allows new access control modules to be loaded, implementing new security policies. Some provide protections of a narrow subset of the system, hardening a particular service. Others provide comprehensive labeled security across all subjects and objects. The mandatory part of the definition comes from the fact that the enforcement of the controls is done by administrators and the system, and is not left up to the discretion of users as is done with discretionary access control (DAC, the standard file and System V IPC permissions on FreeBSD).
This chapter will focus on the Mandatory Access Control Framework (MAC Framework), and a set of pluggable security policy modules enabling various security mechanisms.
After reading this chapter, you will know:
What MAC security policy modules are currently included in FreeBSD and their associated mechanisms.
What MAC security policy modules implement as well as the difference between a labeled and non-labeled policy.
How to efficiently configure a system to use the MAC framework.
How to configure the different security policy modules included with the MAC framework.
How to implement a more secure environment using the MAC framework and the examples shown.
How to test the MAC configuration to ensure the framework has been properly implemented.
Before reading this chapter, you should:
Understand UNIX and FreeBSD basics (Chapter 4).
Be familiar with the basics of kernel configuration/compilation (Chapter 9).
Have some familiarity with security and how it pertains to FreeBSD (Chapter 15).
Warning: The improper use of the information contained herein may cause loss of system access, aggravation of users, or inability to access the features provided by X11. More importantly, MAC should not be relied upon to completely secure a system. The MAC framework only augments existing security policy; without sound security practices and regular security checks, the system will never be completely secure.
It should also be noted that the examples contained within this chapter are just that, examples. It is not recommended that these particular settings be rolled out on a production system. Implementing the various security policy modules takes a good deal of thought and testing. One who does not fully understand exactly how everything works may find him or herself going back through the entire system and reconfiguring many files or directories.
This chapter covers a broad range of security issues relating to the MAC framework. The development of new MAC security policy modules will not be covered. A number of security policy modules included with the MAC framework have specific characteristics which are provided for both testing and new module development. These include the mac_test(4), mac_stub(4) and mac_none(4). For more information on these security policy modules and the various mechanisms they provide, please review the manual pages.
Before reading this chapter, a few key terms must be explained. This will hopefully clear up any confusion that may occur and avoid the abrupt introduction of new terms and information.
compartment: A compartment is a set of programs and data to be partitioned or separated, where users are given explicit access to specific components of a system. Also, a compartment represents a grouping, such as a work group, department, project, or topic. Using compartments, it is possible to implement a need-to-know security policy.
high water mark: A high water mark policy is one which permits the raising of security levels for the purpose of accessing higher level information. In most cases, the original level is restored after the process is complete. Currently, the FreeBSD MAC framework does not have a policy for this, but the definition is included for completeness.
integrity: Integrity, as a key concept, is the level of trust which can be placed on data. As the integrity of the data is elevated, so does the ability to trust that data.
label: A label is a security attribute which can be applied to files, directories, or other items in the system. It could be considered a confidentiality stamp; when a label is placed on a file it describes the security properties for that specific file and will only permit access by files, users, resources, etc. with a similar security setting. The meaning and interpretation of label values depends on the policy configuration: while some policies might treat a label as representing the integrity or secrecy of an object, other policies might use labels to hold rules for access.
level: The increased or decreased setting of a security attribute. As the level increases, its security is considered to elevate as well.
low water mark: A low water mark policy is one which permits lowering of the security levels for the purpose of accessing information which is less secure. In most cases, the original security level of the user is restored after the process is complete. The only security policy module in FreeBSD to use this is mac_lomac(4).
multilabel: The multilabel
property is a file system option which can be set
in single user mode using the tunefs(8) utility,
during the boot operation using the fstab(5) file, or
during the creation of a new file system. This option will permit an administrator
to apply different MAC labels on
different objects. This option only applies to security policy modules which
support labeling.
object: An object or system object is an entity through which information flows under the direction of a subject. This includes directories, files, fields, screens, keyboards, memory, magnetic storage, printers or any other data storage/moving device. Basically, an object is a data container or a system resource; access to an object effectively means access to the data.
policy: A collection of rules which defines how objectives are to be achieved. A policy usually documents how certain items are to be handled. This chapter will consider the term policy in this context as a security policy; i.e. a collection of rules which will control the flow of data and information and define whom will have access to that data and information.
sensitivity: Usually used when discussing MLS. A sensitivity level is a term used to describe how important or secret the data should be. As the sensitivity level increases, so does the importance of the secrecy, or confidentiality of the data.
single label: A single label is
when the entire file system uses one label to enforce access control over the
flow of data. When a file system has this set, which is any time when the
multilabel
option is not set, all files will conform to
the same label setting.
subject: a subject is any active entity that causes information to flow between objects; e.g., a user, user process, system process, etc. On FreeBSD, this is almost always a thread acting in a process on behalf of a user.
With all of these new terms in mind, consider how the MAC framework augments the security of the system as a whole. The various security policy modules provided by the MAC framework could be used to protect the network and file systems, block users from accessing certain ports and sockets, and more. Perhaps the best use of the policy modules is to blend them together, by loading several security policy modules at a time for a multi-layered security environment. In a multi-layered security environment, multiple policy modules are in effect to keep security in check. This is different to a hardening policy, which typically hardens elements of a system that is used only for specific purposes. The only downside is administrative overhead in cases of multiple file system labels, setting network access control user by user, etc.
These downsides are minimal when compared to the lasting effect of the framework; for instance, the ability to pick and choose which policies are required for a specific configuration keeps performance overhead down. The reduction of support for unneeded policies can increase the overall performance of the system as well as offer flexibility of choice. A good implementation would consider the overall security requirements and effectively implement the various security policy modules offered by the framework.
Thus a system utilizing MAC features should at least guarantee that a user will not be permitted to change security attributes at will; all user utilities, programs and scripts must work within the constraints of the access rules provided by the selected security policy modules; and that total control of the MAC access rules are in the hands of the system administrator.
It is the sole duty of the system administrator to carefully select the correct security policy modules. Some environments may need to limit access control over the network; in these cases, the mac_portacl(4), mac_ifoff(4) and even mac_biba(4) policy modules might make good starting points. In other cases, strict confidentiality of file system objects might be required. Policy modules such as mac_bsdextended(4) and mac_mls(4) exist for this purpose.
Policy decisions could be made based on network configuration. Perhaps only certain users should be permitted access to facilities provided by ssh(1) to access the network or the Internet. The mac_portacl(4) would be the policy module of choice for these situations. But what should be done in the case of file systems? Should all access to certain directories be severed from other groups or specific users? Or should we limit user or utility access to specific files by setting certain objects as classified?
In the file system case, access to objects might be considered confidential to some users, but not to others. For an example, a large development team might be broken off into smaller groups of individuals. Developers in project A might not be permitted to access objects written by developers in project B. Yet they might need to access objects created by developers in project C; that is quite a situation indeed. Using the different security policy modules provided by the MAC framework; users could be divided into these groups and then given access to the appropriate areas without fear of information leakage.
Thus, each security policy module has a unique way of dealing with the overall security of a system. Module selection should be based on a well thought out security policy. In many cases, the overall policy may need to be revised and reimplemented on the system. Understanding the different security policy modules offered by the MAC framework will help administrators choose the best policies for their situations.
The default FreeBSD kernel does not include the option for the MAC framework; thus the following kernel option must be added before trying any of the examples or information in this chapter:
options MAC
And the kernel will require a rebuild and a reinstall.
Caution: While the various manual pages for MAC policy modules state that they may be built into the kernel, it is possible to lock the system out of the network and more. Implementing MAC is much like implementing a firewall, care must be taken to prevent being completely locked out of the system. The ability to revert back to a previous configuration should be considered while the implementation of MAC remotely should be done with extreme caution.
A MAC label is a security attribute which may be applied to subjects and objects throughout the system.
When setting a label, the user must be able to comprehend what it is, exactly, that is being done. The attributes available on an object depend on the policy module loaded, and that policy modules interpret their attributes in different ways. If improperly configured due to lack of comprehension, or the inability to understand the implications, the result will be the unexpected and perhaps, undesired, behavior of the system.
The security label on an object is used as a part of a security access control decision by a policy. With some policies, the label by itself contains all information necessary to make a decision; in other models, the labels may be processed as part of a larger rule set, etc.
For instance, setting the label of biba/low on a file will represent a label maintained by the Biba security policy module, with a value of “low”.
A few policy modules which support the labeling feature in FreeBSD offer three specific predefined labels. These are the low, high, and equal labels. Although they enforce access control in a different manner with each policy module, you can be sure that the low label will be the lowest setting, the equal label will set the subject or object to be disabled or unaffected, and the high label will enforce the highest setting available in the Biba and MLS policy modules.
Within single label file system environments, only one label may be used on objects.
This will enforce one set of access permissions across the entire system and in many
environments may be all that is required. There are a few cases where multiple labels may
be set on objects or subjects in the file system. For those cases, the multilabel
option may be passed to tunefs(8).
In the case of Biba and MLS, a numeric label may be set to indicate the precise level of hierarchical control. This numeric level is used to partition or sort information into different groups of say, classification only permitting access to that group or a higher group level.
In most cases the administrator will only be setting up a single label to use throughout the file system.
Hey wait, this is similar to DAC! I thought MAC gave control strictly to the administrator. That statement still holds true, to some extent as root is the one in control and who configures the policies so that users are placed in the appropriate categories/access levels. Alas, many policy modules can restrict the root user as well. Basic control over objects will then be released to the group, but root may revoke or modify the settings at any time. This is the hierarchal/clearance model covered by policies such as Biba and MLS.
Virtually all aspects of label policy module configuration will be performed using the base system utilities. These commands provide a simple interface for object or subject configuration or the manipulation and verification of the configuration.
All configuration may be done by use of the setfmac(8) and setpmac(8) utilities. The setfmac command is used to set MAC labels on system objects while the setpmac command is used to set the labels on system subjects. Observe:
# setfmac biba/high test
If no errors occurred with the command above, a prompt will be returned. The only time these commands are not quiescent is when an error occurred; similarly to the chmod(1) and chown(8) commands. In some cases this error may be a “Permission denied” and is usually obtained when the label is being set or modified on an object which is restricted.[9] The system administrator may use the following commands to overcome this:
# setfmac biba/high test “Permission denied” # setpmac biba/low setfmac biba/high test # getfmac test test: biba/high
As we see above, setpmac can be used to override the
policy module's settings by assigning a different label to the invoked process. The
getpmac utility is usually used with currently running
processes, such as sendmail: although it takes a process
ID in place of a command the logic is extremely similar. If users attempt to
manipulate a file not in their access, subject to the rules of the loaded policy
modules, the “Operation not permitted” error
will be displayed by the mac_set_link
function.
For the mac_biba(4), mac_mls(4) and mac_lomac(4) policy modules, the ability to assign simple labels is provided. These take the form of high, equal and low, what follows is a brief description of what these labels provide:
The low label is considered the lowest label setting an object or subject may have. Setting this on objects or subjects will block their access to objects or subjects marked high.
The equal label should only be placed on objects considered to be exempt from the policy.
The high label grants an object or subject the highest possible setting.
With respect to each policy module, each of those settings will instate a different information flow directive. Reading the proper manual pages will further explain the traits of these generic label configurations.
Numeric grade labels are used for comparison:compartment+compartment; thus the following:
biba/10:2+3+6(5:2+3-20:2+3+4+5+6)
May be interpreted as:
“Biba Policy Label”/“Grade 10” :“Compartments 2, 3 and 6”: (“grade 5 ...”)
In this example, the first grade would be considered the “effective grade” with “effective compartments”, the second grade is the low grade and the last one is the high grade. In most configurations these settings will not be used; indeed, they offered for more advanced configurations.
When applied to system objects, they will only have a current grade/compartments as opposed to system subjects as they reflect the range of available rights in the system, and network interfaces, where they are used for access control.
The grade and compartments in a subject and object pair are used to construct a relationship referred to as “dominance”, in which a subject dominates an object, the object dominates the subject, neither dominates the other, or both dominate each other. The “both dominate” case occurs when the two labels are equal. Due to the information flow nature of Biba, you have rights to a set of compartments, “need to know”, that might correspond to projects, but objects also have a set of compartments. Users may have to subset their rights using su or setpmac in order to access objects in a compartment from which they are not restricted.
Users themselves are required to have labels so that their files and processes may properly interact with the security policy defined on the system. This is configured through the login.conf file by use of login classes. Every policy module that uses labels will implement the user class setting.
An example entry containing every policy module setting is displayed below:
default:\ :copyright=/etc/COPYRIGHT:\ :welcome=/etc/motd:\ :setenv=MAIL=/var/mail/$,BLOCKSIZE=K:\ :path=~/bin:/sbin:/bin:/usr/sbin:/usr/bin:/usr/local/sbin:/usr/local/bin:\ :manpath=/usr/share/man /usr/local/man:\ :nologin=/usr/sbin/nologin:\ :cputime=1h30m:\ :datasize=8M:\ :vmemoryuse=100M:\ :stacksize=2M:\ :memorylocked=4M:\ :memoryuse=8M:\ :filesize=8M:\ :coredumpsize=8M:\ :openfiles=24:\ :maxproc=32:\ :priority=0:\ :requirehome:\ :passwordtime=91d:\ :umask=022:\ :ignoretime@:\ :label=partition/13,mls/5,biba/10(5-15),lomac/10[2]:
The label option is used to set the user class default label which will be enforced by MAC. Users will never be permitted to modify this value, thus it can be considered not optional in the user case. In a real configuration, however, the administrator will never wish to enable every policy module. It is recommended that the rest of this chapter be reviewed before any of this configuration is implemented.
Note: Users may change their label after the initial login; however, this change is subject constraints of the policy. The example above tells the Biba policy that a process's minimum integrity is 5, its maximum is 15, but the default effective label is 10. The process will run at 10 until it chooses to change label, perhaps due to the user using the setpmac command, which will be constrained by Biba to the range set at login.
In all cases, after a change to login.conf, the login class capability database must be rebuilt using cap_mkdb and this will be reflected throughout every forthcoming example or discussion.
It is useful to note that many sites may have a particularly large number of users requiring several different user classes. In depth planning is required as this may get extremely difficult to manage.
Labels may also be set on network interfaces to help control the flow of data across the network. In all cases they function in the same way the policies function with respect to objects. Users at high settings in biba, for example, will not be permitted to access network interfaces with a label of low.
The maclabel
may be passed to ifconfig when setting the MAC label on network interfaces. For example:
# ifconfig bge0 maclabel biba/equal
will set the MAC label of biba/equal on the bge(4) interface. When using a setting similar to biba/high(low-high) the entire label should be quoted; otherwise an error will be returned.
Each policy module which supports labeling has a tunable which may be used to
disable the MAC label on network
interfaces. Setting the label to equal
will have a
similar effect. Review the output from sysctl, the policy
manual pages, or even the information found later in this chapter for those
tunables.
By default the system will use the singlelabel
option. But what does this mean to the administrator? There are several differences
which, in their own right, offer pros and cons to the flexibility in the
systems security model.
The singlelabel
only permits for one label, for
instance biba/high to be used for each subject or object.
It provides for lower administration overhead but decreases the flexibility of
policies which support labeling. Many administrators may want to use the multilabel
option in their security policy.
The multilabel
option will permit each subject or
object to have its own independent MAC
label in place of the standard singlelabel
option
which will allow only one label throughout the partition. The multilabel
and single
label
options are only required for the policies which implement the labeling feature,
including the Biba, Lomac, MLS and
SEBSD policies.
In many cases, the multilabel
may not need to be set
at all. Consider the following situation and security model:
FreeBSD web-server using the MAC framework and a mix of the various policies.
This machine only requires one label, biba/high, for
everything in the system. Here the file system would not require the multilabel
option as a single label will always be in
effect.
But, this machine will be a web server and should have the web server run at biba/low to prevent write up capabilities. The Biba policy and how it works will be discussed later, so if the previous comment was difficult to interpret just continue reading and return. The server could use a separate partition set at biba/low for most if not all of its runtime state. Much is lacking from this example, for instance the restrictions on data, configuration and user settings; however, this is just a quick example to prove the aforementioned point.
If any of the non-labeling policies are to be used, then the multilabel
option would never be required. These include the
seeotheruids, portacl and partition policies.
It should also be noted that using multilabel
with a
partition and establishing a security model based on multilabel
functionality could open the doors for higher
administrative overhead as everything in the file system would have a label.
This includes directories, files, and even device nodes.
The following command will set multilabel
on the file
systems to have multiple labels. This may only be done in single user mode:
# tunefs -l enable /
This is not a requirement for the swap file system.
Note: Some users have experienced problems with setting the
multilabel
flag on the root partition. If this is the case, please review the Section 17.17 of this chapter.
Whenever a new technology is implemented, a planning phase is always a good idea. During the planning stages, an administrator should in general look at the “big picture”, trying to keep in view at least the following:
The implementation requirements;
The implementation goals;
For MAC installations, these include:
How to classify information and resources available on the target systems.
What sorts of information or resources to restrict access to along with the type of restrictions that should be applied.
Which MAC module or modules will be required to achieve this goal.
It is always possible to reconfigure and change the system resources and security settings, it is quite often very inconvenient to search through the system and fix existing files and user accounts. Planning helps to ensure a trouble-free and efficient trusted system implementation. A trial run of the trusted system, including the configuration, is often vital and definitely beneficial before a MAC implementation is used on production systems. The idea of just letting loose on a system with MAC is like setting up for failure.
Different environments may have explicit needs and requirements. Establishing an in depth and complete security profile will decrease the need of changes once the system goes live. As such, the future sections will cover the different modules available to administrators; describe their use and configuration; and in some cases provide insight on what situations they would be most suitable for. For instance, a web server might roll out the mac_biba(4) and mac_bsdextended(4) policies. In other cases, a machine with very few local users, the mac_partition(4) might be a good choice.
Every module included with the MAC framework may be either compiled into the kernel as noted above or loaded as a run-time kernel module. The recommended method is to add the module name to the /boot/loader.conf file so that it will load during the initial boot operation.
The following sections will discuss the various MAC modules and cover their features. Implementing them into a
specific environment will also be a consideration of this chapter. Some modules support
the use of labeling, which is controlling access by enforcing a label such as “this
is allowed and this is not”. A label configuration file may control how files may
be accessed, network communication can be exchanged, and more. The previous section
showed how the multilabel
flag could be set on file systems
to enable per-file or per-partition access control.
A single label configuration would enforce only one label across the system, that is
why the tunefs option is called multilabel
.
Module name: mac_seeotheruids.ko
Kernel configuration line: options MAC_SEEOTHERUIDS
Boot option: mac_seeotheruids_load="YES"
The mac_seeotheruids(4) module mimics and extends the security.bsd.see_other_uids and security.bsd.see_other_gids sysctl tunables. This option does not require any labels to be set before configuration and can operate transparently with the other modules.
After loading the module, the following sysctl tunables may be used to control the features:
security.mac.seeotheruids.enabled will enable the module's features and use the default settings. These default settings will deny users the ability to view processes and sockets owned by other users.
security.mac.seeotheruids.specificgid_enabled will allow a certain group to be exempt from this policy. To exempt specific groups from this policy, use the security.mac.seeotheruids.specificgid=XXX sysctl tunable. In the above example, the XXX should be replaced with the numeric group ID to be exempted.
security.mac.seeotheruids.primarygroup_enabled is used to exempt specific primary groups from this policy. When using this tunable, the security.mac.seeotheruids.specificgid_enabled may not be set.
Module name: mac_bsdextended.ko
Kernel configuration line: options MAC_BSDEXTENDED
Boot option: mac_bsdextended_load="YES"
The mac_bsdextended(4) module enforces the file system firewall. This module's policy provides an extension to the standard file system permissions model, permitting an administrator to create a firewall-like ruleset to protect files, utilities, and directories in the file system hierarchy. When access to a file system object is attempted, the list of rules is iterated until either a matching rule is located or the end is reached. This behavior may be changed by the use of a sysctl(8) parameter, security.mac.bsdextended.firstmatch_enabled. Similar to other firewall modules in FreeBSD, a file containing access control rules can be created and read by the system at boot time using an rc.conf(5) variable.
The rule list may be entered using a utility, ugidfw(8), that has a syntax similar to that of ipfw(8). More tools can be written by using the functions in the libugidfw(3) library.
Extreme caution should be taken when working with this module; incorrect use could block access to certain parts of the file system.
After the mac_bsdextended(4) module has been loaded, the following command may be used to list the current rule configuration:
# ugidfw list 0 slots, 0 rules
As expected, there are no rules defined. This means that everything is still completely accessible. To create a rule which will block all access by users but leave root unaffected, simply run the following command:
# ugidfw add subject not uid root new object not uid root mode n
This is a very bad idea as it will block all users from issuing even the most simple commands, such as ls. A more patriotic list of rules might be:
# ugidfw set 2 subject uid user1 object uid user2 mode n # ugidfw set 3 subject uid user1 object gid user2 mode n
This will block any and all access, including directory listings, to user2's home directory from the username user1.
In place of user1, the not uid user2
could be passed. This will enforce the
same access restrictions above for all users in place of just one user.
Note: The root user will be unaffected by these changes.
This should provide a general idea of how the mac_bsdextended(4) module may be used to help fortify a file system. For more information, see the mac_bsdextended(4) and the ugidfw(8) manual pages.
Module name: mac_ifoff.ko
Kernel configuration line: options MAC_IFOFF
Boot option: mac_ifoff_load="YES"
The mac_ifoff(4) module exists solely to disable network interfaces on the fly and keep network interfaces from being brought up during the initial system boot. It does not require any labels to be set up on the system, nor does it have a dependency on other MAC modules.
Most of the control is done through the sysctl tunables listed below.
security.mac.ifoff.lo_enabled will enable/disable all traffic on the loopback (lo(4)) interface.
security.mac.ifoff.bpfrecv_enabled will enable/disable all traffic on the Berkeley Packet Filter interface (bpf(4))
security.mac.ifoff.other_enabled will enable/disable traffic on all other interfaces.
One of the most common uses of mac_ifoff(4) is network monitoring in an environment where network traffic should not be permitted during the boot sequence. Another suggested use would be to write a script which uses security/aide to automatically block network traffic if it finds new or altered files in protected directories.
Module name: mac_portacl.ko
Kernel configuration line: MAC_PORTACL
Boot option: mac_portacl_load="YES"
The mac_portacl(4) module is used to limit binding to local TCP and UDP ports using a variety of sysctl variables. In essence mac_portacl(4) makes it possible to allow non-root users to bind to specified privileged ports, i.e., ports below 1024.
Once loaded, this module will enable the MAC policy on all sockets. The following tunables are available:
security.mac.portacl.enabled will enable/disable the policy completely.
security.mac.portacl.port_high will set the highest port number that mac_portacl(4) will enable protection for.
security.mac.portacl.suser_exempt will, when set to a non-zero value, exempt the root user from this policy.
security.mac.portacl.rules will specify the actual mac_portacl policy; see below.
The actual mac_portacl policy, as specified in the security.mac.portacl.rules sysctl, is a text string of the form: rule[,rule,...] with as many rules as needed. Each rule is of the
form: idtype:id:protocol:port. The idtype
parameter can be uid or gid and used to interpret the id
parameter as either a user id or group id, respectively. The protocol
parameter is used to determine if the rule should apply
to TCP or UDP by setting the parameter to tcp or udp. The final port
parameter is the
port number to allow the specified user or group to bind to.
Note: Since the ruleset is interpreted directly by the kernel only numeric values can be used for the user ID, group ID, and port parameters. Names cannot be used for users, groups, or services.
By default, on UNIX-like systems, ports below 1024 can only be used by/bound to privileged processes, i.e., those run as root. For mac_portacl(4) to allow non-privileged processes to bind to ports below 1024 this standard UNIX restriction has to be disabled. This can be accomplished by setting the sysctl(8) variables net.inet.ip.portrange.reservedlow and net.inet.ip.portrange.reservedhigh to zero.
See the examples below or review the mac_portacl(4) manual page for further information.
The following examples should illuminate the above discussion a little better:
# sysctl security.mac.portacl.port_high=1023 # sysctl net.inet.ip.portrange.reservedlow=0 net.inet.ip.portrange.reservedhigh=0
First we set mac_portacl(4) to cover the standard privileged ports and disable the normal UNIX bind restrictions.
# sysctl security.mac.portacl.suser_exempt=1
The root user should not be crippled by this policy, thus set the security.mac.portacl.suser_exempt to a non-zero value. The mac_portacl(4) module has now been set up to behave the same way UNIX-like systems behave by default.
# sysctl security.mac.portacl.rules=uid:80:tcp:80
Allow the user with UID 80 (normally the www user) to bind to port 80. This can be used to allow the www user to run a web server without ever having root privilege.
# sysctl security.mac.portacl.rules=uid:1001:tcp:110,uid:1001:tcp:995
Permit the user with the UID of 1001 to bind to the TCP ports 110 (“pop3”) and 995 (“pop3s”). This will permit this user to start a server that accepts connections on ports 110 and 995.
Module name: mac_partition.ko
Kernel configuration line: options MAC_PARTITION
Boot option: mac_partition_load="YES"
The mac_partition(4) policy will drop processes into specific “partitions” based on their MAC label. Think of it as a special type of jail(8), though that is hardly a worthy comparison.
This is one module that should be added to the loader.conf(5) file so that it loads and enables the policy during the boot process.
Most configuration for this policy is done using the setpmac(8) utility which will be explained below. The following sysctl tunable is available for this policy:
security.mac.partition.enabled will enable the enforcement of MAC process partitions.
When this policy is enabled, users will only be permitted to see their processes, and any others within their partition, but will not be permitted to work with utilities outside the scope of this partition. For instance, a user in the insecure class above will not be permitted to access the top command as well as many other commands that must spawn a process.
To set or drop utilities into a partition label, use the setpmac utility:
# setpmac partition/13 top
This will add the top command to the label set on users in the insecure class. Note that all processes spawned by users in the insecure class will stay in the partition/13 label.
The following command will show you the partition label and the process list:
# ps Zax
This next command will allow the viewing of another user's process partition label and that user's currently running processes:
# ps -ZU trhodes
Note: Users can see processes in root's label unless the mac_seeotheruids(4) policy is loaded.
A really crafty implementation could have all of the services disabled in /etc/rc.conf and started by a script that starts them with the proper labeling set.
Note: The following policies support integer settings in place of the three default labels offered. These options, including their limitations, are further explained in the module manual pages.
Module name: mac_mls.ko
Kernel configuration line: options MAC_MLS
Boot option: mac_mls_load="YES"
The mac_mls(4) policy controls access between subjects and objects in the system by enforcing a strict information flow policy.
In MLS environments, a “clearance” level is set in each subject or objects label, along with compartments. Since these clearance or sensibility levels can reach numbers greater than six thousand; it would be a daunting task for any system administrator to thoroughly configure each subject or object. Thankfully, three “instant” labels are already included in this policy.
These labels are mls/low, mls/equal and mls/high. Since these labels are described in depth in the manual page, they will only get a brief description here:
The mls/low label contains a low configuration which permits it to be dominated by all other objects. Anything labeled with mls/low will have a low clearance level and not be permitted to access information of a higher level. In addition, this label will prevent objects of a higher clearance level from writing or passing information on to them.
The mls/equal label should be placed on objects considered to be exempt from the policy.
The mls/high label is the highest level of clearance possible. Objects assigned this label will hold dominance over all other objects in the system; however, they will not permit the leaking of information to objects of a lower class.
MLS provides for:
A hierarchical security level with a set of non hierarchical categories;
Fixed rules: no read up, no write down (a subject can have read access to objects on its own level or below, but not above. Similarly, a subject can have write access to objects on its own level or above but not beneath.);
Secrecy (preventing inappropriate disclosure of data);
Basis for the design of systems that concurrently handle data at multiple sensitivity levels (without leaking information between secret and confidential).
The following sysctl tunables are available for the configuration of special services and interfaces:
security.mac.mls.enabled is used to enable/disable the MLS policy.
security.mac.mls.ptys_equal will label all pty(4) devices as mls/equal during creation.
security.mac.mls.revocation_enabled is used to revoke access to objects after their label changes to a label of a lower grade.
security.mac.mls.max_compartments is used to set the maximum number of compartment levels with objects; basically the maximum compartment number allowed on a system.
To manipulate the MLS labels, the setfmac(8) command has been provided. To assign a label to an object, issue the following command:
# setfmac mls/5 test
To get the MLS label for the file test issue the following command:
# getfmac test
This is a summary of the MLS policy's features. Another approach is to create a master policy file in /etc which specifies the MLS policy information and to feed that file into the setfmac command. This method will be explained after all policies are covered.
With the Multi-Level Security Policy Module, an administrator plans for controlling the flow of sensitive information. By default, with its block read up block write down nature, the system defaults everything to a low state. Everything is accessible and an administrator slowly changes this during the configuration stage; augmenting the confidentiality of the information.
Beyond the three basic label options above, an administrator may group users and groups as required to block the information flow between them. It might be easier to look at the information in clearance levels familiarized with words, for instance classifications such as Confidential, Secret, and Top Secret. Some administrators might just create different groups based on project levels. Regardless of classification method, a well thought out plan must exist before implementing such a restrictive policy.
Some example situations for this security policy module could be an e-commerce web server, a file server holding critical company information, and financial institution environments. The most unlikely place would be a personal workstation with only two or three users.
Module name: mac_biba.ko
Kernel configuration line: options MAC_BIBA
Boot option: mac_biba_load="YES"
The mac_biba(4) module loads the MAC Biba policy. This policy works much like that of the MLS policy with the exception that the rules for information flow are slightly reversed. This is said to prevent the downward flow of sensitive information whereas the MLS policy prevents the upward flow of sensitive information; thus, much of this section can apply to both policies.
In Biba environments, an “integrity” label is set on each subject or object. These labels are made up of hierarchal grades, and non-hierarchal components. As an object's or subject's grade ascends, so does its integrity.
Supported labels are biba/low, biba/equal, and biba/high; as explained below:
The biba/low label is considered the lowest integrity an object or subject may have. Setting this on objects or subjects will block their write access to objects or subjects marked high. They still have read access though.
The biba/equal label should only be placed on objects considered to be exempt from the policy.
The biba/high label will permit writing to objects set at a lower label, but not permit reading that object. It is recommended that this label be placed on objects that affect the integrity of the entire system.
Biba provides for:
Hierarchical integrity level with a set of non hierarchical integrity categories;
Fixed rules: no write up, no read down (opposite of MLS). A subject can have write access to objects on its own level or below, but not above. Similarly, a subject can have read access to objects on its own level or above, but not below;
Integrity (preventing inappropriate modification of data);
Integrity levels (instead of MLS sensitivity levels).
The following sysctl tunables can be used to manipulate the Biba policy.
security.mac.biba.enabled may be used to enable/disable enforcement of the Biba policy on the target machine.
security.mac.biba.ptys_equal may be used to disable the Biba policy on pty(4) devices.
security.mac.biba.revocation_enabled will force the revocation of access to objects if the label is changed to dominate the subject.
To access the Biba policy setting on system objects, use the setfmac and getfmac commands:
# setfmac biba/low test # getfmac test test: biba/low
Integrity, different from sensitivity, guarantees that the information will never be manipulated by untrusted parties. This includes information passed between subjects, objects, and both. It ensures that users will only be able to modify and in some cases even access information they explicitly need to.
The mac_biba(4) security policy module permits an administrator to address which files and programs a user or users may see and invoke while assuring that the programs and files are free from threats and trusted by the system for that user, or group of users.
During the initial planning phase, an administrator must be prepared to partition users into grades, levels, and areas. Users will be blocked access not only to data but programs and utilities both before and after they start. The system will default to a high label once this policy module is enabled, and it is up to the administrator to configure the different grades and levels for users. Instead of using clearance levels as described above, a good planning method could include topics. For instance, only allow developers modification access to the source code repository, source code compiler, and other development utilities. While other users would be grouped into other categories such as testers, designers, or just ordinary users and would only be permitted read access.
With its natural security control, a lower integrity subject is unable to write to a higher integrity subject; a higher integrity subject cannot observe or read a lower integrity object. Setting a label at the lowest possible grade could make it inaccessible to subjects. Some prospective environments for this security policy module would include a constrained web server, development and test machine, and source code repository. A less useful implementation would be a personal workstation, a machine used as a router, or a network firewall.
Module name: mac_lomac.ko
Kernel configuration line: options MAC_LOMAC
Boot option: mac_lomac_load="YES"
Unlike the MAC Biba policy, the mac_lomac(4) policy permits access to lower integrity objects only after decreasing the integrity level to not disrupt any integrity rules.
The MAC version of the Low-watermark integrity policy, not to be confused with the older lomac(4) implementation, works almost identically to Biba, but with the exception of using floating labels to support subject demotion via an auxiliary grade compartment. This secondary compartment takes the form of [auxgrade]. When assigning a lomac policy with an auxiliary grade, it should look a little bit like: lomac/10[2] where the number two (2) is the auxiliary grade.
The MAC LOMAC policy relies on the ubiquitous labeling of all system objects with integrity labels, permitting subjects to read from low integrity objects and then downgrading the label on the subject to prevent future writes to high integrity objects. This is the [auxgrade] option discussed above, thus the policy may provide for greater compatibility and require less initial configuration than Biba.
Like the Biba and MLS policies; the setfmac and setpmac utilities may be used to place labels on system objects:
# setfmac /usr/home/trhodes lomac/high[low] # getfmac /usr/home/trhodes lomac/high[low]
Notice the auxiliary grade here is low, this is a feature provided only by the MAC LOMAC policy.
The following demonstration will implement a secure environment using various MAC modules with properly configured policies. This is only a test and should not be considered the complete answer to everyone's security woes. Just implementing a policy and ignoring it never works and could be disastrous in a production environment.
Before beginning this process, the multilabel option must be set on each file system as stated at the beginning of this chapter. Not doing so will result in errors. While at it, ensure that the net-mngt/nagios-plugins, net-mngt/nagios, and www/apache22 ports are all installed, configured, and working correctly.
Begin the procedure by adding the following user class to the /etc/login.conf file:
insecure:\ :copyright=/etc/COPYRIGHT:\ :welcome=/etc/motd:\ :setenv=MAIL=/var/mail/$,BLOCKSIZE=K:\ :path=~/bin:/sbin:/bin:/usr/sbin:/usr/bin:/usr/local/sbin:/usr/local/bin :manpath=/usr/share/man /usr/local/man:\ :nologin=/usr/sbin/nologin:\ :cputime=1h30m:\ :datasize=8M:\ :vmemoryuse=100M:\ :stacksize=2M:\ :memorylocked=4M:\ :memoryuse=8M:\ :filesize=8M:\ :coredumpsize=8M:\ :openfiles=24:\ :maxproc=32:\ :priority=0:\ :requirehome:\ :passwordtime=91d:\ :umask=022:\ :ignoretime@:\ :label=biba/10(10-10):
And adding the following line to the default user class:
:label=biba/high:
Once this is completed, the following command must be issued to rebuild the database:
# cap_mkdb /etc/login.conf
Do not reboot yet, just add the following lines to /boot/loader.conf so the required modules will load during system initialization:
mac_biba_load="YES" mac_seeotheruids_load="YES"
Set the root user to the default class using:
# pw usermod root -L default
All user accounts that are not root or system users will now require a login class. The login class is required otherwise users will be refused access to common commands such as vi(1). The following sh script should do the trick:
# for x in `awk -F: '($3 >= 1001) && ($3 != 65534) { print $1 }' \ /etc/passwd`; do pw usermod $x -L default; done;
Drop the nagios and www users into the insecure class:
# pw usermod nagios -L insecure
# pw usermod www -L insecure
A contexts file should now be created; the following example file should be placed in /etc/policy.contexts.
# This is the default BIBA policy for this system. # System: /var/run biba/equal /var/run/* biba/equal /dev biba/equal /dev/* biba/equal /var biba/equal /var/spool biba/equal /var/spool/* biba/equal /var/log biba/equal /var/log/* biba/equal /tmp biba/equal /tmp/* biba/equal /var/tmp biba/equal /var/tmp/* biba/equal /var/spool/mqueue biba/equal /var/spool/clientmqueue biba/equal # For Nagios: /usr/local/etc/nagios /usr/local/etc/nagios/* biba/10 /var/spool/nagios biba/10 /var/spool/nagios/* biba/10 # For apache /usr/local/etc/apache biba/10 /usr/local/etc/apache/* biba/10
This policy will enforce security by setting restrictions on the flow of information. In this specific configuration, users, root and others, should never be allowed to access Nagios. Configuration files and processes that are a part of Nagios will be completely self contained or jailed.
This file may now be read into our system by issuing the following command:
# setfsmac -ef /etc/policy.contexts / # setfsmac -ef /etc/policy.contexts /
Note: The above file system layout may be different depending on environment; however, it must be run on every single file system.
The /etc/mac.conf file requires the following modifications in the main section:
default_labels file ?biba default_labels ifnet ?biba default_labels process ?biba default_labels socket ?biba
Add the following line to /boot/loader.conf:
security.mac.biba.trust_all_interfaces=1
And the following to the network card configuration stored in rc.conf. If the primary Internet configuration is done via DHCP, this may need to be configured manually after every system boot:
maclabel biba/equal
Ensure that the web server and Nagios will not be started on system initialization, and reboot. Ensure the root user cannot access any of the files in the Nagios configuration directory. If root can issue an ls(1) command on /var/spool/nagios, then something is wrong. Otherwise a “permission denied” error should be returned.
If all seems well, Nagios, Apache, and Sendmail can now be started in a way fitting of the security policy. The following commands will make this happen:
# cd /etc/mail && make stop && \ setpmac biba/equal make start && setpmac biba/10\(10-10\) apachectl start && \ setpmac biba/10\(10-10\) /usr/local/etc/rc.d/nagios.sh forcestart
Double check to ensure that everything is working properly. If not, check the log files or error messages. Use the sysctl(8) utility to disable the mac_biba(4) security policy module enforcement and try starting everything again, like normal.
Note: The root user can change the security enforcement and edit the configuration files without fear. The following command will permit the degradation of the security policy to a lower grade for a newly spawned shell:
# setpmac biba/10 cshTo block this from happening, force the user into a range via login.conf(5). If setpmac(8) attempts to run a command outside of the compartment's range, an error will be returned and the command will not be executed. In this case, setting root to biba/high(high-high).
This example considers a relatively small, fewer than fifty users, storage system. Users would have login capabilities, and be permitted to not only store data but access resources as well.
For this scenario, the mac_bsdextended(4) mixed with mac_seeotheruids(4) could co-exist and block access not only to system objects, but to hide user processes as well.
Begin by adding the following line to /boot/loader.conf:
mac_seeotheruids_load="YES"
The mac_bsdextended(4) security policy module may be activated through the use of the following rc.conf variable:
ugidfw_enable="YES"
Default rules stored in /etc/rc.bsdextended will be loaded at system initialization; however, the default entries may need modification. Since this machine is expected only to service users, everything may be left commented out except the last two. These will force the loading of user owned system objects by default.
Add the required users to this machine and reboot. For testing purposes, try logging in as a different user across two consoles. Run the ps aux command to see if processes of other users are visible. Try to run ls(1) on another users home directory, it should fail.
Do not try to test with the root user unless the specific sysctls have been modified to block super user access.
Note: When a new user is added, their mac_bsdextended(4) rule will not be in the ruleset list. To update the ruleset quickly, simply unload the security policy module and reload it again using the kldunload(8) and kldload(8) utilities.
During the development stage, a few users reported problems with normal configuration. Some of these problems are listed below:
multilabel
option cannot be enabled on /The multilabel
flag does not stay enabled on my root
(/) partition!
It seems that one out of every fifty users has this problem, indeed, we had this problem during our initial configuration. Further observation of this so called “bug” has lead me to believe that it is a result of either incorrect documentation or misinterpretation of the documentation. Regardless of why it happened, the following steps may be taken to resolve it:
Edit /etc/fstab and set the root partition at ro
for read-only.
Reboot into single user mode.
Run tunefs -l enable
on /.
Reboot the system into normal mode.
Run mount -urw
/ and change the ro
back to rw
in /etc/fstab and reboot the
system again.
Double-check the output from the mount to ensure that
multilabel
has been properly set on the root file
system.
After establishing a secure environment with MAC, I am no longer able to start X!
This could be caused by the MAC partition policy or by a mislabeling in one of the MAC labeling policies. To debug, try the following:
Check the error message; if the user is in the insecure class, the partition policy may be the culprit. Try setting the user's class back to the default class and rebuild the database with the cap_mkdb command. If this does not alleviate the problem, go to step two.
Double-check the label policies. Ensure that the policies are set correctly for the user in question, the X11 application, and the /dev entries.
If neither of these resolve the problem, send the error message and a description of your environment to the TrustedBSD discussion lists located at the TrustedBSD website or to the FreeBSD general questions mailing list mailing list.
When I attempt to switch from the root user to another user in the system, the error message “_secure_path: unable to state .login_conf” appears.
This message is usually shown when the user has a higher label setting then that
of the user whom they are attempting to become. For instance a user on the system,
joe, has a default label of biba/low
. The root user, who has a
label of biba/high
, cannot view joe's home directory. This will happen regardless if root has used the su command to
become joe, or not. In this scenario, the Biba integrity
model will not permit root to view objects set at a lower
integrity level.
In normal or even single user mode, the root is not recognized. The whoami command returns 0 (zero) and su returns “who are you?”. What could be going on?
This can happen if a labeling policy has been disabled, either by a sysctl(8) or the
policy module was unloaded. If the policy is being disabled or has been temporarily
disabled, then the login capabilities database needs to be reconfigured with
the label
option being removed. Double check the login.conf file to ensure that all label
options have been removed and rebuild the database with
the cap_mkdb command.
This may also happen if a policy restricts access to the master.passwd file or database. Usually caused by an administrator altering the file under a label which conflicts with the general policy being used by the system. In these cases, the user information would be read by the system and access would be blocked as the file has inherited the new label. Disable the policy via a sysctl(8) and everything should return to normal.
The FreeBSD operating system includes support for fine-grained security event auditing. Event auditing allows the reliable, fine-grained, and configurable logging of a variety of security-relevant system events, including logins, configuration changes, and file and network access. These log records can be invaluable for live system monitoring, intrusion detection, and postmortem analysis. FreeBSD implements Sun's published BSM API and file format, and is interoperable with both Sun's Solaris and Apple's Mac OS X audit implementations.
This chapter focuses on the installation and configuration of Event Auditing. It explains audit policies, and provides an example audit configuration.
After reading this chapter, you will know:
What Event Auditing is and how it works.
How to configure Event Auditing on FreeBSD for users and processes.
How to review the audit trail using the audit reduction and review tools.
Before reading this chapter, you should:
Understand UNIX and FreeBSD basics (Chapter 4).
Be familiar with the basics of kernel configuration/compilation (Chapter 9).
Have some familiarity with security and how it pertains to FreeBSD (Chapter 15).
Warning: The audit facility has some known limitations which include that not all security-relevant system events are currently auditable, and that some login mechanisms, such as X11-based display managers and third party daemons, do not properly configure auditing for user login sessions.
The security event auditing facility is able to generate very detailed logs of system activity: on a busy system, trail file data can be very large when configured for high detail, exceeding gigabytes a week in some configurations. Administrators should take into account disk space requirements associated with high volume audit configurations. For example, it may be desirable to dedicate a file system to the /var/audit tree so that other file systems are not affected if the audit file system becomes full.
Before reading this chapter, a few key audit-related terms must be explained:
event: An auditable event is any event that can be logged using the audit subsystem. Examples of security-relevant events include the creation of a file, the building of a network connection, or a user logging in. Events are either “attributable”, meaning that they can be traced to an authenticated user, or “non-attributable” if they cannot be. Examples of non-attributable events are any events that occur before authentication in the login process, such as bad password attempts.
class: Event classes are named sets of related events, and are used in selection expressions. Commonly used classes of events include “file creation” (fc), “exec” (ex) and “login_logout” (lo).
record: A record is an audit log entry describing a security event. Records contain a record event type, information on the subject (user) performing the action, date and time information, information on any objects or arguments, and a success or failure condition.
trail: An audit trail, or log file, consists of a series of audit records describing security events. Typically, trails are in roughly chronological order with respect to the time events completed. Only authorized processes are allowed to commit records to the audit trail.
selection expression: A selection expression is a string containing a list of prefixes and audit event class names used to match events.
preselection: The process by which the system identifies which events are of interest to the administrator in order to avoid generating audit records describing events that are not of interest. The preselection configuration uses a series of selection expressions to identify which classes of events to audit for which users, as well as global settings that apply to both authenticated and unauthenticated processes.
reduction: The process by which records from existing audit trails are selected for preservation, printing, or analysis. Likewise, the process by which undesired audit records are removed from the audit trail. Using reduction, administrators can implement policies for the preservation of audit data. For example, detailed audit trails might be kept for one month, but after that, trails might be reduced in order to preserve only login information for archival purposes.
User space support for Event Auditing is installed as part of the base FreeBSD operating system. Kernel support for Event Auditing is compiled in by default, but support for this feature must be explicitly compiled into the custom kernel by adding the following line to the kernel configuration file:
options AUDIT
Rebuild and reinstall the kernel via the normal process explained in Chapter 9.
Once an audit-enabled kernel is built, installed, and the system has been rebooted, enable the audit daemon by adding the following line to rc.conf(5):
auditd_enable="YES"
Audit support must then be started by a reboot, or by manually starting the audit daemon:
/etc/rc.d/auditd start
All configuration files for security audit are found in /etc/security. The following files must be present before the audit daemon is started:
audit_class - Contains the definitions of the audit classes.
audit_control - Controls aspects of the audit subsystem, such as default audit classes, minimum disk space to leave on the audit log volume, maximum audit trail size, etc.
audit_event - Textual names and descriptions of system audit events, as well as a list of which classes each event is in.
audit_user - User-specific audit requirements, which are combined with the global defaults at login.
audit_warn - A customizable shell script used by auditd to generate warning messages in exceptional situations, such as when space for audit records is running low or when the audit trail file has been rotated.
Warning: Audit configuration files should be edited and maintained carefully, as errors in configuration may result in improper logging of events.
Selection expressions are used in a number of places in the audit configuration to determine which events should be audited. Expressions contain a list of event classes to match, each with a prefix indicating whether matching records should be accepted or ignored, and optionally to indicate if the entry is intended to match successful or failed operations. Selection expressions are evaluated from left to right, and two expressions are combined by appending one onto the other.
The following list contains the default audit event classes present in audit_class:
all - all - Match all event classes.
ad - administrative - Administrative actions performed on the system as a whole.
ap - application - Application defined action.
cl - file
close - Audit calls to the close
system
call.
ex - exec - Audit program execution. Auditing of command line arguments and environmental variables is controlled via audit_control(5) using the argv and envv parameters to the policy setting.
fa - file attribute access - Audit the access of object attributes such as stat(1), pathconf(2) and similar events.
fc - file create - Audit events where a file is created as a result.
fd - file delete - Audit events where file deletion occurs.
fm - file attribute modify - Audit events where file attribute modification occurs, such as chown(8), chflags(1), flock(2), etc.
fr - file read - Audit events in which data is read, files are opened for reading, etc.
fw - file write - Audit events in which data is written, files are written or modified, etc.
io - ioctl - Audit use of the ioctl(2) system call.
ip - ipc - Audit various forms of Inter-Process Communication, including POSIX pipes and System V IPC operations.
lo - login_logout - Audit login(1) and logout(1) events occurring on the system.
na - non attributable - Audit non-attributable events.
no - invalid class - Match no audit events.
nt - network - Audit events related to network actions, such as connect(2) and accept(2).
ot - other - Audit miscellaneous events.
pc - process - Audit process operations, such as exec(3) and exit(3).
These audit event classes may be customized by modifying the audit_class and audit_event configuration files.
Each audit class in the list is combined with a prefix indicating whether successful/failed operations are matched, and whether the entry is adding or removing matching for the class and type.
(none) Audit both successful and failed instances of the event.
+ Audit successful events in this class.
- Audit failed events in this class.
^ Audit neither successful nor failed events in this class.
^+ Do not audit successful events in this class.
^- Do not audit failed events in this class.
The following example selection string selects both successful and failed login/logout events, but only successful execution events:
lo,+ex
In most cases, administrators will need to modify only two files when configuring the audit system: audit_control and audit_user. The first controls system-wide audit properties and policies; the second may be used to fine-tune auditing by user.
The audit_control file specifies a number of defaults for the audit subsystem. Viewing the contents of this file, we see the following:
dir:/var/audit flags:lo minfree:20 naflags:lo policy:cnt filesz:0
The dir
option is used to set one or more
directories where audit logs will be stored. If more than one directory entry
appears, they will be used in order as they fill. It is common to configure audit
so that audit logs are stored on a dedicated file system, in order to prevent
interference between the audit subsystem and other subsystems if the file system
fills.
The flags
field sets the system-wide default
preselection mask for attributable events. In the example above, successful and
failed login and logout events are audited for all users.
The minfree
option defines the minimum percentage of
free space for the file system where the audit trail is stored. When this threshold
is exceeded, a warning will be generated. The above example sets the minimum free
space to twenty percent.
The naflags
option specifies audit classes to be
audited for non-attributed events, such as the login process and system
daemons.
The policy
option specifies a comma-separated list
of policy flags controlling various aspects of audit behavior. The default
cnt flag indicates that the system should continue running
despite an auditing failure (this flag is highly recommended). Another commonly
used flag is argv, which causes command line arguments
to the execve(2) system call
to be audited as part of command execution.
The filesz
option specifies the maximum size in
bytes to allow an audit trail file to grow to before automatically terminating and
rotating the trail file. The default, 0, disables automatic log rotation. If the
requested file size is non-zero and below the minimum 512k, it will be
ignored and a log message will be generated.
The audit_user file permits the administrator to specify further audit requirements for specific users. Each line configures auditing for a user via two fields: the first is the alwaysaudit field, which specifies a set of events that should always be audited for the user, and the second is the neveraudit field, which specifies a set of events that should never be audited for the user.
The following example audit_user file audits login/logout events and successful command execution for the root user, and audits file creation and successful command execution for the www user. If used with the example audit_control file above, the lo entry for root is redundant, and login/logout events will also be audited for the www user.
root:lo,+ex:no www:fc,+ex:no
Audit trails are stored in the BSM binary format, so tools must be used to modify or convert to text. The praudit(1) command converts trail files to a simple text format; the auditreduce(1) command may be used to reduce the audit trail file for analysis, archiving, or printing purposes. auditreduce supports a variety of selection parameters, including event type, event class, user, date or time of the event, and the file path or object acted on.
For example, the praudit utility will dump the entire contents of a specified audit log in plain text:
# praudit /var/audit/AUDITFILE
Where AUDITFILE is the audit log to dump.
Audit trails consist of a series of audit records made up of tokens, which praudit prints sequentially one per line. Each token is of a specific type, such as header holding an audit record header, or path holding a file path from a name lookup. The following is an example of an execve event:
header,133,10,execve(2),0,Mon Sep 25 15:58:03 2006, + 384 msec exec arg,finger,doug path,/usr/bin/finger attribute,555,root,wheel,90,24918,104944 subject,robert,root,wheel,root,wheel,38439,38032,42086,128.232.9.100 return,success,0 trailer,133
This audit represents a successful execve call, in which the command finger doug has been run. The arguments token contains both the processed command line presented by the shell to the kernel. The path token holds the path to the executable as looked up by the kernel. The attribute token describes the binary, and in particular, includes the file mode which can be used to determine if the application was setuid. The subject token describes the subject process, and stores in sequence the audit user ID, effective user ID and group ID, real user ID and group ID, process ID, session ID, port ID, and login address. Notice that the audit user ID and real user ID differ: the user robert has switched to the root account before running this command, but it is audited using the original authenticated user. Finally, the return token indicates the successful execution, and the trailer concludes the record.
praudit also supports an XML output format, which can be
selected using the -x
argument.
Since audit logs may be very large, an administrator will likely want to select a subset of records for using, such as records associated with a specific user:
# auditreduce -u trhodes /var/audit/AUDITFILE | praudit
This will select all audit records produced for the user trhodes stored in the AUDITFILE file.
Members of the audit group are given permission to read audit trails in /var/audit; by default, this group is empty, so only the root user may read audit trails. Users may be added to the audit group in order to delegate audit review rights to the user. As the ability to track audit log contents provides significant insight into the behavior of users and processes, it is recommended that the delegation of audit review rights be performed with caution.
Audit pipes are cloning pseudo-devices in the device file system which allow applications to tap the live audit record stream. This is primarily of interest to authors of intrusion detection and system monitoring applications. However, for the administrator the audit pipe device is a convenient way to allow live monitoring without running into problems with audit trail file ownership or log rotation interrupting the event stream. To track the live audit event stream, use the following command line:
# praudit /dev/auditpipe
By default, audit pipe device nodes are accessible only to the root user. To make them accessible to the members of the audit group, add a devfs rule to devfs.rules:
add path 'auditpipe*' mode 0440 group audit
See devfs.rules(5) for more information on configuring the devfs file system.
Warning: It is easy to produce audit event feedback cycles, in which the viewing of each audit event results in the generation of more audit events. For example, if all network I/O is audited, and praudit(1) is run from an SSH session, then a continuous stream of audit events will be generated at a high rate, as each event being printed will generate another event. It is advisable to run praudit on an audit pipe device from sessions without fine-grained I/O auditing in order to avoid this happening.
Audit trails are written to only by the kernel, and managed only by the audit daemon, auditd. Administrators should not attempt to use newsyslog.conf(5) or other tools to directly rotate audit logs. Instead, the audit management tool may be used to shut down auditing, reconfigure the audit system, and perform log rotation. The following command causes the audit daemon to create a new audit log and signal the kernel to switch to using the new log. The old log will be terminated and renamed, at which point it may then be manipulated by the administrator.
# audit -n
Warning: If the auditd daemon is not currently running, this command will fail and an error message will be produced.
Adding the following line to /etc/crontab will force the rotation every twelve hours from cron(8):
0 */12 * * * root /usr/sbin/audit -n
The change will take effect once you have saved the new /etc/crontab.
Automatic rotation of the audit trail file based on file size is possible via the
filesz
option in audit_control(5), and
is described in the configuration files section of this chapter.
As audit trail files can become very large, it is often desirable to compress or otherwise archive trails once they have been closed by the audit daemon. The audit_warn script can be used to perform customized operations for a variety of audit-related events, including the clean termination of audit trails when they are rotated. For example, the following may be added to the audit_warn script to compress audit trails on close:
# # Compress audit trail files on close. # if [ "$1" = closefile ]; then gzip -9 $2 fi
Other archiving activities might include copying trail files to a centralized server, deleting old trail files, or reducing the audit trail to remove unneeded records. The script will be run only when audit trail files are cleanly terminated, so will not be run on trails left unterminated following an improper shutdown.
This chapter covers the use of disks in FreeBSD. This includes memory-backed disks, network-attached disks, standard SCSI/IDE storage devices, and devices using the USB interface.
After reading this chapter, you will know:
The terminology FreeBSD uses to describe the organization of data on a physical disk (partitions and slices).
How to add additional hard disks to your system.
How to configure FreeBSD to use USB storage devices.
How to set up virtual file systems, such as memory disks.
How to use quotas to limit disk space usage.
How to encrypt disks to secure them against attackers.
How to create and burn CDs and DVDs on FreeBSD.
The various storage media options for backups.
How to use backup programs available under FreeBSD.
How to backup to floppy disks.
What file system snapshots are and how to use them efficiently.
Before reading this chapter, you should:
Know how to configure and install a new FreeBSD kernel (Chapter 9).
The following is a list of physical storage devices supported in FreeBSD, and the device names associated with them.
Table 19-1. Physical Disk Naming Conventions
Drive type | Drive device name |
---|---|
IDE hard drives | ad |
IDE CDROM drives | acd |
SCSI hard drives and USB Mass storage devices | da |
SCSI CDROM drives | cd |
Assorted non-standard CDROM drives | mcd for Mitsumi CD-ROM and scd for Sony CD-ROM devices |
Floppy drives | fd |
SCSI tape drives | sa |
IDE tape drives | ast |
Flash drives | fla for DiskOnChip® Flash device |
RAID drives | aacd for Adaptec® AdvancedRAID, mlxd and mlyd for Mylex®, amrd for AMI MegaRAID®, idad for Compaq Smart RAID, twed for 3ware® RAID. |
The following section will describe how to add a new SCSI disk to a machine that currently only has a single drive. First turn off the computer and install the drive in the computer following the instructions of the computer, controller, and drive manufacturer. Due to the wide variations of procedures to do this, the details are beyond the scope of this document.
Login as user root. After you have installed the drive, inspect /var/run/dmesg.boot to ensure the new disk was found. Continuing with our example, the newly added drive will be da1 and we want to mount it on /1 (if you are adding an IDE drive, the device name will be ad1).
FreeBSD runs on IBM-PC compatible computers, therefore it must take into account the PC BIOS partitions. These are different from the traditional BSD partitions. A PC disk has up to four BIOS partition entries. If the disk is going to be truly dedicated to FreeBSD, you can use the dedicated mode. Otherwise, FreeBSD will have to live within one of the PC BIOS partitions. FreeBSD calls the PC BIOS partitions slices so as not to confuse them with traditional BSD partitions. You may also use slices on a disk that is dedicated to FreeBSD, but used in a computer that also has another operating system installed. This is a good way to avoid confusing the fdisk utility of other, non-FreeBSD operating systems.
In the slice case the drive will be added as /dev/da1s1e. This is read as: SCSI disk, unit number 1 (second SCSI disk), slice 1 (PC BIOS partition 1), and e BSD partition. In the dedicated case, the drive will be added simply as /dev/da1e.
Due to the use of 32-bit integers to store the number of sectors, bsdlabel(8) is limited to 2^32-1 sectors per disk or 2TB in most cases. The fdisk(8) format allows a starting sector of no more than 2^32-1 and a length of no more than 2^32-1, limiting partitions to 2TB and disks to 4TB in most cases. The sunlabel(8) format is limited to 2^32-1 sectors per partition and 8 partitions for a total of 16TB. For larger disks, gpart(8) may be used to create GPT partitions. GPT has the added benefit of not being limited to 4 slices.
Navigating Sysinstall
You may use sysinstall to partition and label a new disk using its easy to use menus. Either login as user root or use the su command. Run sysinstall and enter the Configure menu. Within the FreeBSD Configuration Menu, scroll down and select the Fdisk option.
fdisk Partition Editor
Once inside fdisk, pressing A will use the entire disk for FreeBSD. When asked if you want to “remain cooperative with any future possible operating systems”, answer YES. Write the changes to the disk using W. Now exit the FDISK editor by pressing Q. Next you will be asked about the “Master Boot Record”. Since you are adding a disk to an already running system, choose None.
Disk Label Editor
Next, you need to exit sysinstall and start it again. Follow the directions above, although this time choose the Label option. This will enter the Disk Label Editor. This is where you will create the traditional BSD partitions. A disk can have up to eight partitions, labeled a-h. A few of the partition labels have special uses. The a partition is used for the root partition (/). Thus only your system disk (e.g., the disk you boot from) should have an a partition. The b partition is used for swap partitions, and you may have many disks with swap partitions. The c partition addresses the entire disk in dedicated mode, or the entire FreeBSD slice in slice mode. The other partitions are for general use.
sysinstall's Label editor favors the e partition for non-root, non-swap partitions. Within the Label editor, create a single file system by pressing C. When prompted if this will be a FS (file system) or swap, choose FS and type in a mount point (e.g., /mnt). When adding a disk in post-install mode, sysinstall will not create entries in /etc/fstab for you, so the mount point you specify is not important.
You are now ready to write the new label to the disk and create a file system on it. Do this by pressing W. Ignore any errors from sysinstall that it could not mount the new partition. Exit the Label Editor and sysinstall completely.
Finish
The last step is to edit /etc/fstab to add an entry for your new disk.
This setup will allow your disk to work correctly with other operating systems that might be installed on your computer and will not confuse other operating systems' fdisk utilities. It is recommended to use this method for new disk installs. Only use dedicated mode if you have a good reason to do so!
# dd if=/dev/zero of=/dev/da1 bs=1k count=1 # fdisk -BI da1 #Initialize your new disk # bsdlabel -B -w da1s1 auto #Label it. # bsdlabel -e da1s1 # Edit the bsdlabel just created and add any partitions. # mkdir -p /1 # newfs /dev/da1s1e # Repeat this for every partition you created. # mount /dev/da1s1e /1 # Mount the partition(s) # vi /etc/fstab # Add the appropriate entry/entries to your /etc/fstab.
If you have an IDE disk, substitute ad for da.
If you will not be sharing the new drive with another operating system, you may use the dedicated mode. Remember this mode can confuse Microsoft operating systems; however, no damage will be done by them. IBM's OS/2 however, will “appropriate” any partition it finds which it does not understand.
# dd if=/dev/zero of=/dev/da1 bs=1k count=1 # bsdlabel -Bw da1 auto # bsdlabel -e da1 # create the `e' partition # newfs /dev/da1e # mkdir -p /1 # vi /etc/fstab # add an entry for /dev/da1e # mount /1
An alternate method is:
# dd if=/dev/zero of=/dev/da1 count=2 # bsdlabel /dev/da1 | bsdlabel -BR da1 /dev/stdin # newfs /dev/da1e # mkdir -p /1 # vi /etc/fstab # add an entry for /dev/da1e # mount /1
When choosing a mass storage solution the most important factors to consider are speed, reliability, and cost. It is rare to have all three in balance; normally a fast, reliable mass storage device is expensive, and to cut back on cost either speed or reliability must be sacrificed.
In designing the system described below, cost was chosen as the most important factor, followed by speed, then reliability. Data transfer speed for this system is ultimately constrained by the network. And while reliability is very important, the CCD drive described below serves online data that is already fully backed up on CD-R's and can easily be replaced.
Defining your own requirements is the first step in choosing a mass storage solution. If your requirements prefer speed or reliability over cost, your solution will differ from the system described in this section.
In addition to the IDE system disk, three Western Digital 30GB, 5400 RPM IDE disks form the core of the CCD disk described below providing approximately 90GB of online storage. Ideally, each IDE disk would have its own IDE controller and cable, but to minimize cost, additional IDE controllers were not used. Instead the disks were configured with jumpers so that each IDE controller has one master, and one slave.
Upon reboot, the system BIOS was configured to automatically detect the disks attached. More importantly, FreeBSD detected them on reboot:
ad0: 19574MB <WDC WD205BA> [39770/16/63] at ata0-master UDMA33 ad1: 29333MB <WDC WD307AA> [59598/16/63] at ata0-slave UDMA33 ad2: 29333MB <WDC WD307AA> [59598/16/63] at ata1-master UDMA33 ad3: 29333MB <WDC WD307AA> [59598/16/63] at ata1-slave UDMA33
Note: If FreeBSD does not detect all the disks, ensure that you have jumpered them correctly. Most IDE drives also have a “Cable Select” jumper. This is not the jumper for the master/slave relationship. Consult the drive documentation for help in identifying the correct jumper.
Next, consider how to attach them as part of the file system. You should research both vinum(4) (Chapter 22) and ccd(4). In this particular configuration, ccd(4) was chosen.
The ccd(4) driver allows you to take several identical disks and concatenate them into one logical file system. In order to use ccd(4), you need a kernel with ccd(4) support built in. Add this line to your kernel configuration file, rebuild, and reinstall the kernel:
device ccd
The ccd(4) support can also be loaded as a kernel loadable module.
To set up ccd(4), you must first use bsdlabel(8) to label the disks:
bsdlabel -w ad1 auto bsdlabel -w ad2 auto bsdlabel -w ad3 auto
This creates a bsdlabel for ad1c, ad2c and ad3c that spans the entire disk.
The next step is to change the disk label type. You can use bsdlabel(8) to edit the disks:
bsdlabel -e ad1 bsdlabel -e ad2 bsdlabel -e ad3
This opens up the current disk label on each disk with the editor specified by the EDITOR environment variable, typically vi(1).
An unmodified disk label will look something like this:
8 partitions: # size offset fstype [fsize bsize bps/cpg] c: 60074784 0 unused 0 0 0 # (Cyl. 0 - 59597)
Add a new e partition for ccd(4) to use. This
can usually be copied from the c partition, but the
fstype
must be 4.2BSD. The disk
label should now look something like this:
8 partitions: # size offset fstype [fsize bsize bps/cpg] c: 60074784 0 unused 0 0 0 # (Cyl. 0 - 59597) e: 60074784 0 4.2BSD 0 0 0 # (Cyl. 0 - 59597)
Now that you have all the disks labeled, you must build the ccd(4). To do that, use ccdconfig(8), with options similar to the following:
ccdconfig ccd0 32 0 /dev/ad1e /dev/ad2e /dev/ad3e
The use and meaning of each option is shown below:
After running ccdconfig(8) the ccd(4) is configured. A file system can be installed. Refer to newfs(8) for options, or simply run:
newfs /dev/ccd0c
Generally, you will want to mount the ccd(4) upon each reboot. To do this, you must configure it first. Write out your current configuration to /etc/ccd.conf using the following command:
ccdconfig -g > /etc/ccd.conf
During reboot, the script /etc/rc runs ccdconfig -C if /etc/ccd.conf exists. This automatically configures the ccd(4) so it can be mounted.
Note: If you are booting into single user mode, before you can mount(8) the ccd(4), you need to issue the following command to configure the array:
ccdconfig -C
To automatically mount the ccd(4), place an entry for the ccd(4) in /etc/fstab so it will be mounted at boot time:
/dev/ccd0c /media ufs rw 2 2
The Vinum Volume Manager is a block device driver which implements virtual disk drives. It isolates disk hardware from the block device interface and maps data in ways which result in an increase in flexibility, performance and reliability compared to the traditional slice view of disk storage. vinum(4) implements the RAID-0, RAID-1 and RAID-5 models, both individually and in combination.
See Chapter 22 for more information about vinum(4).
FreeBSD also supports a variety of hardware RAID controllers. These devices control a RAID subsystem without the need for FreeBSD specific software to manage the array.
Using an on-card BIOS, the card controls most of the disk operations itself. The following is a brief setup description using a Promise IDE RAID controller. When this card is installed and the system is started up, it displays a prompt requesting information. Follow the instructions to enter the card's setup screen. From here, you have the ability to combine all the attached drives. After doing so, the disk(s) will look like a single drive to FreeBSD. Other RAID levels can be set up accordingly.
FreeBSD allows you to hot-replace a failed disk in an array. This requires that you catch it before you reboot.
You will probably see something like the following in /var/log/messages or in the dmesg(8) output:
ad6 on monster1 suffered a hard error. ad6: READ command timeout tag=0 serv=0 - resetting ad6: trying fallback to PIO mode ata3: resetting devices .. done ad6: hard error reading fsbn 1116119 of 0-7 (ad6 bn 1116119; cn 1107 tn 4 sn 11)\\ status=59 error=40 ar0: WARNING - mirror lost
Using atacontrol(8), check for further information:
# atacontrol list ATA channel 0: Master: no device present Slave: acd0 <HL-DT-ST CD-ROM GCR-8520B/1.00> ATA/ATAPI rev 0 ATA channel 1: Master: no device present Slave: no device present ATA channel 2: Master: ad4 <MAXTOR 6L080J4/A93.0500> ATA/ATAPI rev 5 Slave: no device present ATA channel 3: Master: ad6 <MAXTOR 6L080J4/A93.0500> ATA/ATAPI rev 5 Slave: no device present # atacontrol status ar0 ar0: ATA RAID1 subdisks: ad4 ad6 status: DEGRADED
You will first need to detach the ata channel with the failed disk so you can safely remove it:
# atacontrol detach ata3
Replace the disk.
Reattach the ata channel:
# atacontrol attach ata3 Master: ad6 <MAXTOR 6L080J4/A93.0500> ATA/ATAPI rev 5 Slave: no device present
Add the new disk to the array as a spare:
# atacontrol addspare ar0 ad6
Rebuild the array:
# atacontrol rebuild ar0
It is possible to check on the progress by issuing the following command:
# dmesg | tail -10 [output removed] ad6: removed from configuration ad6: deleted from ar0 disk1 ad6: inserted into ar0 disk1 as spare # atacontrol status ar0 ar0: ATA RAID1 subdisks: ad4 ad6 status: REBUILDING 0% completed
Wait until this operation completes.
A lot of external storage solutions, nowadays, use the Universal Serial Bus (USB): hard drives, USB thumbdrives, CD-R burners, etc. FreeBSD provides support for these devices.
The USB mass storage devices driver, umass(4), provides the support for USB storage devices. If you use the GENERIC kernel, you do not have to change anything in your configuration. If you use a custom kernel, be sure that the following lines are present in your kernel configuration file:
device scbus device da device pass device uhci device ohci device ehci device usb device umass
The umass(4) driver uses the SCSI subsystem to access to the USB storage devices, your USB device will be seen as a SCSI device by the system. Depending on the USB chipset on your motherboard, you only need either device uhci or device ohci for USB 1.X support, however having both in the kernel configuration file is harmless. Support for USB 2.0 controllers is provided by the ehci(4) driver (the device ehci line). Do not forget to compile and install the new kernel if you added any lines.
Note: If your USB device is a CD-R or DVD burner, the SCSI CD-ROM driver, cd(4), must be added to the kernel via the line:
device cdSince the burner is seen as a SCSI drive, the driver atapicam(4) should not be used in the kernel configuration.
The configuration is ready to be tested: plug in your USB device, and in the system message buffer (dmesg(8)), the drive should appear as something like:
umass0: USB Solid state disk, rev 1.10/1.00, addr 2 GEOM: create disk da0 dp=0xc2d74850 da0 at umass-sim0 bus 0 target 0 lun 0 da0: <Generic Traveling Disk 1.11> Removable Direct Access SCSI-2 device da0: 1.000MB/s transfers da0: 126MB (258048 512 byte sectors: 64H 32S/T 126C)
Of course, the brand, the device node (da0) and other details can differ according to your configuration.
Since the USB device is seen as a SCSI one, the camcontrol command can be used to list the USB storage devices attached to the system:
# camcontrol devlist <Generic Traveling Disk 1.11> at scbus0 target 0 lun 0 (da0,pass0)
If the drive comes with a file system, you should be able to mount it. The Section 19.3 will help you to format and create partitions on the USB drive if needed.
Warning: Allowing untrusted users to mount arbitrary media, e.g., by enabling vfs.usermount as described below, should not be considered safe from a security point of view. Most file systems in FreeBSD were not built to safeguard against malicious devices.
To make this device mountable as a normal user, certain steps have to be taken. First, the devices that are created when a USB storage device is connected need to be accessible by the user. A solution is to make all users of these devices a member of the operator group. This is done with pw(8). Second, when the devices are created, the operator group should be able to read and write them. This is accomplished by adding these lines to /etc/devfs.rules:
[localrules=5] add path 'da*' mode 0660 group operator
Note: If there already are SCSI disks in the system, it must be done a bit different. E.g., if the system already contains disks da0 through da2 attached to the system, change the second line as follows:
add path 'da[3-9]*' mode 0660 group operatorThis will exclude the already existing disks from belonging to the operator group.
You also have to enable your devfs.rules(5) ruleset in your /etc/rc.conf file:
devfs_system_ruleset="localrules"
Next, the kernel has to be configured to allow regular users to mount file systems. The easiest way is to add the following line to /etc/sysctl.conf:
vfs.usermount=1
Note that this only takes effect after the next reboot. Alternatively, one can also use sysctl(8) to set this variable.
The final step is to create a directory where the file system is to be mounted. This directory needs to be owned by the user that is to mount the file system. One way to do that is for root to create a subdirectory owned by that user as /mnt/username (replace username by the login name of the actual user and usergroup by the user's primary group):
# mkdir /mnt/username # chown username:usergroup /mnt/username
Suppose a USB thumbdrive is plugged in, and a device /dev/da0s1 appears. Since these devices usually come preformatted with a FAT file system, one can mount them like this:
% mount -t msdosfs -o -m=644,-M=755 /dev/da0s1 /mnt/username
If you unplug the device (the disk must be unmounted before), you should see, in the system message buffer, something like the following:
umass0: at uhub0 port 1 (addr 2) disconnected (da0:umass-sim0:0:0:0): lost device (da0:umass-sim0:0:0:0): removing device entry GEOM: destroy disk da0 dp=0xc2d74850 umass0: detached
Beside the Adding Disks and Mounting and Unmounting File Systems sections, reading various manual pages may be also useful: umass(4), camcontrol(8), and usbconfig(8) under FreeBSD 8.X or usbdevs(8) under earlier versions of FreeBSD.
CDs have a number of features that differentiate them from conventional disks. Initially, they were not writable by the user. They are designed so that they can be read continuously without delays to move the head between tracks. They are also much easier to transport between systems than similarly sized media were at the time.
CDs do have tracks, but this refers to a section of data to be read continuously and not a physical property of the disk. To produce a CD on FreeBSD, you prepare the data files that are going to make up the tracks on the CD, then write the tracks to the CD.
The ISO 9660 file system was designed to deal with these differences. It unfortunately codifies file system limits that were common then. Fortunately, it provides an extension mechanism that allows properly written CDs to exceed those limits while still working with systems that do not support those extensions.
The sysutils/cdrtools port includes mkisofs(8), a program that you can use to produce a data file containing an ISO 9660 file system. It has options that support various extensions, and is described below.
Which tool to use to burn the CD depends on whether your CD burner is ATAPI or something else. ATAPI CD burners use the burncd program that is part of the base system. SCSI and USB CD burners should use cdrecord from the sysutils/cdrtools port. It is also possible to use cdrecord and other tools for SCSI drives on ATAPI hardware with the ATAPI/CAM module.
If you want CD burning software with a graphical user interface, you may wish to take a look at either X-CD-Roast or K3b. These tools are available as packages or from the sysutils/xcdroast and sysutils/k3b ports. X-CD-Roast and K3b require the ATAPI/CAM module with ATAPI hardware.
The mkisofs(8) program, which is part of the sysutils/cdrtools port, produces an ISO 9660 file system that is an image of a directory tree in the UNIX file system name space. The simplest usage is:
# mkisofs -o imagefile.iso /path/to/tree
This command will create an imagefile.iso containing an ISO 9660 file system that is a copy of the tree at /path/to/tree. In the process, it will map the file names to names that fit the limitations of the standard ISO 9660 file system, and will exclude files that have names uncharacteristic of ISO file systems.
A number of options are available to overcome those restrictions. In particular,
-R
enables the Rock Ridge extensions common to UNIX systems, -J
enables Joliet
extensions used by Microsoft systems, and -hfs
can be
used to create HFS file systems used by Mac OS.
For CDs that are going to be used only on FreeBSD systems, -U
can be used to disable all filename restrictions. When used
with -R
, it produces a file system image that is
identical to the FreeBSD tree you started from, though it may violate the ISO 9660
standard in a number of ways.
The last option of general use is -b
. This is used to
specify the location of the boot image for use in producing an “El
Torito” bootable CD. This option takes an argument which is the path to a boot
image from the top of the tree being written to the CD. By default,
mkisofs(8)
creates an ISO image in the so-called “floppy disk emulation” mode, and
thus expects the boot image to be exactly 1200, 1440 or 2880 KB in size. Some
boot loaders, like the one used by the FreeBSD distribution disks, do not use
emulation mode; in this case, the -no-emul-boot
option
should be used. So, if /tmp/myboot holds a bootable
FreeBSD system with the boot image in /tmp/myboot/boot/cdboot, you could produce the image of an ISO
9660 file system in /tmp/bootable.iso like so:
# mkisofs -R -no-emul-boot -b boot/cdboot -o /tmp/bootable.iso /tmp/myboot
Having done that, if you have md configured in your kernel, you can mount the file system with:
# mdconfig -a -t vnode -f /tmp/bootable.iso -u 0 # mount -t cd9660 /dev/md0 /mnt
At which point you can verify that /mnt and /tmp/myboot are identical.
There are many other options you can use with mkisofs(8) to fine-tune its behavior. In particular: modifications to an ISO 9660 layout and the creation of Joliet and HFS discs. See the mkisofs(8) manual page for details.
If you have an ATAPI CD burner, you can use the burncd command to burn an ISO image onto a CD. burncd is part of the base system, installed as /usr/sbin/burncd. Usage is very simple, as it has few options:
# burncd -f cddevice data imagefile.iso fixate
Will burn a copy of imagefile.iso on cddevice. The default device is /dev/acd0. See burncd(8) for options to set the write speed, eject the CD after burning, and write audio data.
If you do not have an ATAPI CD burner, you will have to use cdrecord to burn your CDs. cdrecord is not part of the base system; you must install it from either the port at sysutils/cdrtools or the appropriate package. Changes to the base system can cause binary versions of this program to fail, possibly resulting in a “coaster”. You should therefore either upgrade the port when you upgrade your system, or if you are tracking -STABLE, upgrade the port when a new version becomes available.
While cdrecord has many options, basic usage is even simpler than burncd. Burning an ISO 9660 image is done with:
# cdrecord dev=device imagefile.iso
The tricky part of using cdrecord is finding the dev
to use. To find the proper setting, use the -scanbus
flag of cdrecord, which
might produce results like this:
# cdrecord -scanbus Cdrecord-Clone 2.01 (i386-unknown-freebsd7.0) Copyright (C) 1995-2004 Jörg Schilling Using libscg version 'schily-0.1' scsibus0: 0,0,0 0) 'SEAGATE ' 'ST39236LW ' '0004' Disk 0,1,0 1) 'SEAGATE ' 'ST39173W ' '5958' Disk 0,2,0 2) * 0,3,0 3) 'iomega ' 'jaz 1GB ' 'J.86' Removable Disk 0,4,0 4) 'NEC ' 'CD-ROM DRIVE:466' '1.26' Removable CD-ROM 0,5,0 5) * 0,6,0 6) * 0,7,0 7) * scsibus1: 1,0,0 100) * 1,1,0 101) * 1,2,0 102) * 1,3,0 103) * 1,4,0 104) * 1,5,0 105) 'YAMAHA ' 'CRW4260 ' '1.0q' Removable CD-ROM 1,6,0 106) 'ARTEC ' 'AM12S ' '1.06' Scanner 1,7,0 107) *
This lists the appropriate dev
value for the devices
on the list. Locate your CD burner, and use the three numbers separated by commas as
the value for dev
. In this case, the CRW device is
1,5,0, so the appropriate input would be dev=1,5,0
.
There are easier ways to specify this value; see
cdrecord(1) for
details. That is also the place to look for information on writing audio tracks,
controlling the speed, and other things.
You can duplicate an audio CD by extracting the audio data from the CD to a series of files, and then writing these files to a blank CD. The process is slightly different for ATAPI and SCSI drives.
SCSI Drives
Use cdda2wav to extract the audio.
% cdda2wav -vall -D2,0 -B -Owav
Use cdrecord to write the .wav files.
% cdrecord -v dev=2,0 -dao -useinfo *.wav
Make sure that 2,0 is set appropriately, as described in Section 19.6.4.
ATAPI Drives
Note: With the help of the ATAPI/CAM module, cdda2wav can also be used on ATAPI drives. This tool is usually a better choice for most of users (jitter correction, endianness issues, etc.) than the method proposed below.
The ATAPI CD driver makes each track available as /dev/acddtnn, where d is the drive number, and nn is the track number written with two decimal digits, prefixed with zero as needed. So the first track on the first disk is /dev/acd0t01, the second is /dev/acd0t02, the third is /dev/acd0t03, and so on.
Make sure the appropriate files exist in /dev. If the entries are missing, force the system to retaste the media:
# dd if=/dev/acd0 of=/dev/null count=1
Extract each track using dd(1). You must also use a specific block size when extracting the files.
# dd if=/dev/acd0t01 of=track1.cdr bs=2352 # dd if=/dev/acd0t02 of=track2.cdr bs=2352 ...
Burn the extracted files to disk using burncd. You must specify that these are audio files, and that burncd should fixate the disk when finished.
# burncd -f /dev/acd0 audio track1.cdr track2.cdr ... fixate
You can copy a data CD to a image file that is functionally equivalent to the image file created with mkisofs(8), and you can use it to duplicate any data CD. The example given here assumes that your CDROM device is acd0. Substitute your correct CDROM device.
# dd if=/dev/acd0 of=file.iso bs=2048
Now that you have an image, you can burn it to CD as described above.
Now that you have created a standard data CDROM, you probably want to mount it and read the data on it. By default, mount(8) assumes that a file system is of type ufs. If you try something like:
# mount /dev/cd0 /mnt
you will get a complaint about “Incorrect super
block”, and no mount. The CDROM is not a UFS
file system, so attempts to mount it as such will fail. You just need to tell mount(8) that the
file system is of type ISO9660, and everything will
work. You do this by specifying the -t cd9660
option mount(8). For example,
if you want to mount the CDROM device, /dev/cd0,
under /mnt, you would execute:
# mount -t cd9660 /dev/cd0 /mnt
Note that your device name (/dev/cd0 in this example)
could be different, depending on the interface your CDROM uses. Also, the -t cd9660
option just executes mount_cd9660(8).
The above example could be shortened to:
# mount_cd9660 /dev/cd0 /mnt
You can generally use data CDROMs from any vendor in this way. Disks with certain
ISO 9660 extensions might behave oddly, however. For example, Joliet disks store all
filenames in two-byte Unicode characters. The FreeBSD kernel does not speak
Unicode, but the FreeBSD CD9660 driver is able to convert Unicode characters on the
fly. If some non-English characters show up as question marks you will need to
specify the local charset you use with the -C
option.
For more information, consult the mount_cd9660(8) manual
page.
Note: To be able to do this character conversion with the help of the
-C
option, the kernel will require the cd9660_iconv.ko module to be loaded. This can be done either by adding this line to loader.conf:cd9660_iconv_load="YES"and then rebooting the machine, or by directly loading the module with kldload(8).
Occasionally, you might get “Device not configured” when trying to mount a CDROM. This usually means that the CDROM drive thinks that there is no disk in the tray, or that the drive is not visible on the bus. It can take a couple of seconds for a CDROM drive to realize that it has been fed, so be patient.
Sometimes, a SCSI CDROM may be missed because it did not have enough time to answer the bus reset. If you have a SCSI CDROM please add the following option to your kernel configuration and rebuild your kernel.
options SCSI_DELAY=15000
This tells your SCSI bus to pause 15 seconds during boot, to give your CDROM drive every possible chance to answer the bus reset.
You can choose to burn a file directly to CD, without creating an ISO 9660 file system. Some people do this for backup purposes. This runs more quickly than burning a standard CD:
# burncd -f /dev/acd1 -s 12 data archive.tar.gz fixate
In order to retrieve the data burned to such a CD, you must read data from the raw device node:
# tar xzvf /dev/acd1
You cannot mount this disk as you would a normal CDROM. Such a CDROM cannot be read under any operating system except FreeBSD. If you want to be able to mount the CD, or share data with another operating system, you must use mkisofs(8) as described above.
This driver allows ATAPI devices (CD-ROM, CD-RW, DVD drives etc...) to be accessed through the SCSI subsystem, and so allows the use of applications like sysutils/cdrdao or cdrecord(1).
To use this driver, you will need to add the following line to the /boot/loader.conf file:
atapicam_load="YES"
then, reboot your machine.
Note: If you prefer to statically compile the atapicam(4) support in your kernel, you will have to add this line to your kernel configuration file:
device atapicamYou also need the following lines in your kernel configuration file:
device ata device scbus device cd device passwhich should already be present. Then rebuild, install your new kernel, and reboot your machine.
During the boot process, your burner should show up, like so:
acd0: CD-RW <MATSHITA CD-RW/DVD-ROM UJDA740> at ata1-master PIO4 cd0 at ata1 bus 0 target 0 lun 0 cd0: <MATSHITA CDRW/DVD UJDA740 1.00> Removable CD-ROM SCSI-0 device cd0: 16.000MB/s transfers cd0: Attempt to query device size failed: NOT READY, Medium not present - tray closed
The drive could now be accessed via the /dev/cd0 device name, for example to mount a CD-ROM on /mnt, just type the following:
# mount -t cd9660 /dev/cd0 /mnt
As root, you can run the following command to get the SCSI address of the burner:
# camcontrol devlist <MATSHITA CDRW/DVD UJDA740 1.00> at scbus1 target 0 lun 0 (pass0,cd0)
So 1,0,0 will be the SCSI address to use with cdrecord(1) and other SCSI application.
For more information about ATAPI/CAM and SCSI system, refer to the atapicam(4) and cam(4) manual pages.
Compared to the CD, the DVD is the next generation of optical media storage technology. The DVD can hold more data than any CD and is nowadays the standard for video publishing.
Five physical recordable formats can be defined for what we will call a recordable DVD:
DVD-R: This was the first DVD recordable format available. The DVD-R standard is defined by the DVD Forum. This format is write once.
DVD-RW: This is the rewritable version of the DVD-R standard. A DVD-RW can be rewritten about 1000 times.
DVD-RAM: This is also a rewritable format supported by the DVD Forum. A DVD-RAM can be seen as a removable hard drive. However, this media is not compatible with most DVD-ROM drives and DVD-Video players; only a few DVD writers support the DVD-RAM format. Read the Section 19.7.9 for more information on DVD-RAM use.
DVD+RW: This is a rewritable format defined by the DVD+RW Alliance. A DVD+RW can be rewritten about 1000 times.
DVD+R: This format is the write once variation of the DVD+RW format.
A single layer recordable DVD can hold up to 4,700,000,000 bytes which is actually 4.38 GB or 4485 MB (1 kilobyte is 1024 bytes).
Note: A distinction must be made between the physical media and the application. For example, a DVD-Video is a specific file layout that can be written on any recordable DVD physical media: DVD-R, DVD+R, DVD-RW etc. Before choosing the type of media, you must be sure that both the burner and the DVD-Video player (a standalone player or a DVD-ROM drive on a computer) are compatible with the media under consideration.
The program growisofs(1) will be used to perform DVD recording. This command is part of the dvd+rw-tools utilities ( sysutils/dvd+rw-tools). The dvd+rw-tools support all DVD media types.
These tools use the SCSI subsystem to access to the devices, therefore the ATAPI/CAM support must be added to your kernel. If your burner uses the USB interface this addition is useless, and you should read the Section 19.5 for more details on USB devices configuration.
You also have to enable DMA access for ATAPI devices, this can be done in adding the following line to the /boot/loader.conf file:
hw.ata.atapi_dma="1"
Before attempting to use the dvd+rw-tools you should consult the dvd+rw-tools' hardware compatibility notes for any information related to your DVD burner.
Note: If you want a graphical user interface, you should have a look to K3b (sysutils/k3b) which provides a user friendly interface to growisofs(1) and many other burning tools.
The growisofs(1) command is a frontend to mkisofs, it will invoke mkisofs(8) to create the file system layout and will perform the write on the DVD. This means you do not need to create an image of the data before the burning process.
To burn onto a DVD+R or a DVD-R the data from the /path/to/data directory, use the following command:
# growisofs -dvd-compat -Z /dev/cd0 -J -R /path/to/data
The options -J -R
are passed to
mkisofs(8) for
the file system creation (in this case: an ISO 9660 file system with Joliet and Rock
Ridge extensions), consult the
mkisofs(8)
manual page for more details.
The option -Z
is used for the initial session
recording in any case: multiple sessions or not. The DVD device, /dev/cd0, must be changed according to your
configuration. The -dvd-compat
parameter will close the
disk, the recording will be unappendable. In return this should provide better
media compatibility with DVD-ROM drives.
It is also possible to burn a pre-mastered image, for example to burn the image imagefile.iso, we will run:
# growisofs -dvd-compat -Z /dev/cd0=imagefile.iso
The write speed should be detected and automatically set according to the media
and the drive being used. If you want to force the write speed, use the -speed=
parameter. For more information, read the
growisofs(1)
manual page.
Note: In order to have working files larger than 4.38GB in your compilation, an UDF/ISO-9660 hybrid filesystem must be created by passing additional
-udf -iso-level 3
parameter to mkisofs(8) and all related programs (i.e., growisofs(1)). This is required only when creating an ISO image file, or writing files directly to a disk. Disk created this way must be mounted as an UDF filesystem with mount_udf(8) utility, so it will be usable only on an UDF aware Operating System,otherwise it will look as if it contains corrupted files.To create a such ISO file:
% mkisofs -R -J -udf -iso-level 3 -o imagefile.iso /path/to/dataTo burn files directly to a disk:
# growisofs -dvd-compat -udf -iso-level 3 -Z /dev/cd0 -J -R /path/to/dataWhen you have an ISO image containing large files already inside, no additional options are required for growisofs(1) to burn that image on a disk.
Also, be sure that you have an up-to-date version of sysutils/cdrtools (which contain mkisofs(8)), as the older ones does not contain large files support. If you experience troubles please move to the development package, i.e., sysutils/cdrtools-devel and read mkisofs(8) manual page.
A DVD-Video is a specific file layout based on ISO 9660 and the micro-UDF (M-UDF) specifications. The DVD-Video also presents a specific data structure hierarchy, it is the reason why you need a particular program such as multimedia/dvdauthor to author the DVD.
If you already have an image of the DVD-Video file system, just burn it in the same way as for any image, see the previous section for an example. If you have made the DVD authoring and the result is in, for example, the directory /path/to/video, the following command should be used to burn the DVD-Video:
# growisofs -Z /dev/cd0 -dvd-video /path/to/video
The -dvd-video
option will be passed down to
mkisofs(8) and
will instruct it to create a DVD-Video file system layout. Beside this, the
-dvd-video
option implies -dvd-compat
growisofs(1)
option.
Unlike CD-RW, a virgin DVD+RW needs to be formatted before first use. The growisofs(1) program will take care of it automatically whenever appropriate, which is the recommended way. However you can use the dvd+rw-format command to format the DVD+RW:
# dvd+rw-format /dev/cd0
You need to perform this operation just once, keep in mind that only virgin DVD+RW medias need to be formatted. Then you can burn the DVD+RW in the way seen in previous sections.
If you want to burn new data (burn a totally new file system not append some data) onto a DVD+RW, you do not need to blank it, you just have to write over the previous recording (in performing a new initial session), like this:
# growisofs -Z /dev/cd0 -J -R /path/to/newdata
DVD+RW format offers the possibility to easily append data to a previous recording. The operation consists in merging a new session to the existing one, it is not multisession writing, growisofs(1) will grow the ISO 9660 file system present on the media.
For example, if we want to append data to our previous DVD+RW, we have to use the following:
# growisofs -M /dev/cd0 -J -R /path/to/nextdata
The same mkisofs(8) options we used to burn the initial session should be used during next writes.
Note: You may want to use the
-dvd-compat
option if you want better media compatibility with DVD-ROM drives. In the DVD+RW case, this will not prevent you from adding data.
If for any reason you really want to blank the media, do the following:
# growisofs -Z /dev/cd0=/dev/zero
A DVD-RW accepts two disc formats: the incremental sequential one and the restricted overwrite. By default DVD-RW discs are in sequential format.
A virgin DVD-RW can be directly written without the need of a formatting operation, however a non-virgin DVD-RW in sequential format needs to be blanked before to be able to write a new initial session.
To blank a DVD-RW in sequential mode, run:
# dvd+rw-format -blank=full /dev/cd0
Note: A full blanking (
-blank=full
) will take about one hour on a 1x media. A fast blanking can be performed using the-blank
option if the DVD-RW will be recorded in Disk-At-Once (DAO) mode. To burn the DVD-RW in DAO mode, use the command:# growisofs -use-the-force-luke=dao -Z /dev/cd0=imagefile.isoThe
-use-the-force-luke=dao
option should not be required since growisofs(1) attempts to detect minimally (fast blanked) media and engage DAO write.In fact one should use restricted overwrite mode with any DVD-RW, this format is more flexible than the default incremental sequential one.
To write data on a sequential DVD-RW, use the same instructions as for the other DVD formats:
# growisofs -Z /dev/cd0 -J -R /path/to/data
If you want to append some data to your previous recording, you will have to use
the
growisofs(1)
-M
option. However, if you perform data addition on
a DVD-RW in incremental sequential mode, a new session will be created on the disc
and the result will be a multi-session disc.
A DVD-RW in restricted overwrite format does not need to be blanked before a new
initial session, you just have to overwrite the disc with the -Z
option, this is similar to the DVD+RW case. It is also
possible to grow an existing ISO 9660 file system written on the disc in a same
way as for a DVD+RW with the -M
option. The result
will be a one-session DVD.
To put a DVD-RW in the restricted overwrite format, the following command must be used:
# dvd+rw-format /dev/cd0
To change back to the sequential format use:
# dvd+rw-format -blank=full /dev/cd0
Very few DVD-ROM drives support multisession DVDs, they will most of time, hopefully, only read the first session. DVD+R, DVD-R and DVD-RW in sequential format can accept multiple sessions, the notion of multiple sessions does not exist for the DVD+RW and the DVD-RW restricted overwrite formats.
Using the following command after an initial (non-closed) session on a DVD+R, DVD-R, or DVD-RW in sequential format, will add a new session to the disc:
# growisofs -M /dev/cd0 -J -R /path/to/nextdata
Using this command line with a DVD+RW or a DVD-RW in restricted overwrite mode, will append data in merging the new session to the existing one. The result will be a single-session disc. This is the way used to add data after an initial write on these medias.
Note: Some space on the media is used between each session for end and start of sessions. Therefore, one should add sessions with large amount of data to optimize media space. The number of sessions is limited to 154 for a DVD+R, about 2000 for a DVD-R, and 127 for a DVD+R Double Layer.
To obtain more information about a DVD, the dvd+rw-mediainfo /dev/cd0 command can be ran with the disc in the drive.
More information about the dvd+rw-tools can be found in the growisofs(1) manual page, on the dvd+rw-tools web site and in the cdwrite mailing list archives.
Note: The dvd+rw-mediainfo output of the resulting recording or the media with issues is mandatory for any problem report. Without this output, it will be quite impossible to help you.
DVD-RAM writers come with either SCSI or ATAPI interface. DMA access for ATAPI devices has to be enabled, this can be done by adding the following line to the /boot/loader.conf file:
hw.ata.atapi_dma="1"
As previously mentioned in the chapter introduction, a DVD-RAM can be seen as a removable hard drive. As any other hard drive the DVD-RAM must be “prepared” before the first use. In the example, the whole disk space will be used with a standard UFS2 file system:
# dd if=/dev/zero of=/dev/acd0 bs=2k count=1 # bsdlabel -Bw acd0 # newfs /dev/acd0
The DVD device, acd0, must be changed according to the configuration.
Once the previous operations have been performed on the DVD-RAM, it can be mounted as a normal hard drive:
# mount /dev/acd0 /mnt
After this the DVD-RAM will be both readable and writeable.
Storing data on floppy disks is sometimes useful, for example when one does not have any other removable storage media or when one needs to transfer small amounts of data to another computer.
This section will explain how to use floppy disks in FreeBSD. It will primarily cover formatting and usage of 3.5inch DOS floppies, but the concepts are similar for other floppy disk formats.
Floppy disks are accessed through entries in /dev, just like other devices. To access the raw floppy disk, simply use /dev/fdN.
A floppy disk needs to be low-level formatted before it can be used. This is usually done by the vendor, but formatting is a good way to check media integrity. Although it is possible to force larger (or smaller) disk sizes, 1440kB is what most floppy disks are designed for.
To low-level format the floppy disk you need to use fdformat(1). This utility expects the device name as an argument.
Make note of any error messages, as these can help determine if the disk is good or bad.
Use the /dev/fdN devices to format the floppy. Insert a new 3.5inch floppy disk in your drive and issue:
# /usr/sbin/fdformat -f 1440 /dev/fd0
After low-level formatting the disk, you will need to place a disk label on it. This disk label will be destroyed later, but it is needed by the system to determine the size of the disk and its geometry later.
The new disk label will take over the whole disk, and will contain all the proper information about the geometry of the floppy. The geometry values for the disk label are listed in /etc/disktab.
You can run now bsdlabel(8) like so:
# /sbin/bsdlabel -B -w /dev/fd0 fd1440
Now the floppy is ready to be high-level formatted. This will place a new file system on it, which will let FreeBSD read and write to the disk. After creating the new file system, the disk label is destroyed, so if you want to reformat the disk, you will have to recreate the disk label.
The floppy's file system can be either UFS or FAT. FAT is generally a better choice for floppies.
To put a new file system on the floppy, issue:
# /sbin/newfs_msdos /dev/fd0
The disk is now ready for use.
To use the floppy, mount it with mount_msdosfs(8). One can also use emulators/mtools from the ports collection.
Tape technology has continued to evolve but is less likely to be used in a modern system. Modern backup systems tend to use offsite combined with local removable disk drive technologies. Still, FreeBSD will support any tape drive that uses SCSI such as LTO and older devices such as DAT. There is limited support for SATA and USB tape drives as well.
FreeBSD uses the sa(4) driver, providing /dev/sa0, /dev/nsa0, and /dev/esa0. In normal use, only /dev/sa0 is needed. /dev/nsa0 is the same physical drive as /dev/sa0 but does not rewind the tape after writing a file. This allows writing more than one file to a tape. Using /dev/esa0 ejects the tape after the device is closed, if applicable.
mt(1) is the FreeBSD utility for controlling other operations of the tape drive, such as seeking through files on a tape or writing tape control marks to the tape.
For example, the first three files on a tape can be preserved by skipping past them before writing a new file:
# mt -f /dev/nsa0 fsf 3
An example of writing a single file to tape using tar(1):
# tar cvf /dev/sa0 file
Recovering files from a tar(1) archive on tape into the current directory:
# tar xvf /dev/sa0
A simple backup of /usr with dump(8):
# dump -0aL -b64 -f /dev/nsa0 /usr
Interactively restoring files from a dump(8) file on tape into the current directory:
# restore -i -f /dev/nsa0
Higher-level programs are available to simplify tape backup. The most popular are AMANDA and Bacula. These programs aim to make backup easier and more convenient, or to automate complex backups of multiple machines. The Ports Collection contains both these and other tape utility applications.
Floppy disks are not really a suitable media for making backups as:
The media is unreliable, especially over long periods of time.
Backing up and restoring is very slow.
They have a very limited capacity (the days of backing up an entire hard disk onto a dozen or so floppies has long since passed).
However, if you have no other method of backing up your data then floppy disks are better than no backup at all.
If you do have to use floppy disks then ensure that you use good quality ones. Floppies that have been lying around the office for a couple of years are a bad choice. Ideally use new ones from a reputable manufacturer.
The best way to backup to floppy disk is to use tar(1) with the -M
(multi volume) option, which allows backups to span
multiple floppies.
To backup all the files in the current directory and sub-directory use this (as root):
# tar Mcvf /dev/fd0 *
When the first floppy is full tar(1) will prompt you to insert the next volume (because tar(1) is media independent it refers to volumes; in this context it means floppy disk).
Prepare volume #2 for /dev/fd0 and hit return:
This is repeated (with the volume number incrementing) until all the specified files have been archived.
Unfortunately, tar(1) will not allow
the -z
option to be used for multi-volume archives.
You could, of course, gzip(1) all the files,
tar(1) them to the
floppies, then gunzip(1) the
files again!
To restore the entire archive use:
# tar Mxvf /dev/fd0
There are two ways that you can use to restore only specific files. First, you can start with the first floppy and use:
# tar Mxvf /dev/fd0 filename
The utility tar(1) will prompt you to insert subsequent floppies until it finds the required file.
Alternatively, if you know which floppy the file is on then you can simply insert that floppy and use the same command as above. Note that if the first file on the floppy is a continuation from the previous one then tar(1) will warn you that it cannot restore it, even if you have not asked it to!
The first requirement in devising a backup plan is to make sure that all of the following problems are covered:
Disk failure
Accidental file deletion
Random file corruption
Complete machine destruction (e.g., fire), including destruction of any on-site backups.
It is perfectly possible that some systems will be best served by having each of these problems covered by a completely different technique. Except for strictly personal systems with very low-value data, it is unlikely that one technique would cover all of them.
Some of the techniques in the toolbox are:
Archives of the whole system, backed up onto permanent media offsite. This actually provides protection against all of the possible problems listed above, but is slow and inconvenient to restore from. You can keep copies of the backups onsite and/or online, but there will still be inconveniences in restoring files, especially for non-privileged users.
Filesystem snapshots. This is really only helpful in the accidental file deletion scenario, but it can be very helpful in that case, and is quick and easy to deal with.
Copies of whole filesystems and/or disks (e.g., periodic rsync(1) of the whole machine). This is generally most useful in networks with unique requirements. For general protection against disk failure, it is usually inferior to RAID. For restoring accidentally deleted files, it can be comparable to UFS snapshots, but that depends on your preferences.
RAID. Minimizes or avoids downtime when a disk fails. At the expense of having to deal with disk failures more often (because you have more disks), albeit at a much lower urgency.
Checking fingerprints of files. The mtree(8) utility is very useful for this. Although it is not a backup technique, it helps guarantee that you will notice when you need to resort to your backups. This is particularly important for offline backups, and should be checked periodically.
It is quite easy to come up with even more techniques, many of them variations on the ones listed above. Specialized requirements will usually lead to specialized techniques (for example, backing up a live database usually requires a method particular to the database software as an intermediate step). The important thing is to know what dangers you want to protect against, and how you will handle each.
The three major backup programs are dump(8), tar(1), and cpio(1).
The traditional UNIX backup programs are dump and restore. They operate on the drive as a collection of disk blocks, below the abstractions of files, links and directories that are created by the file systems. Unlike other backup software, dump backs up an entire file system on a device. It is unable to backup only part of a file system or a directory tree that spans more than one file system. The dump command does not write files and directories to tape, but rather writes the raw data blocks that comprise files and directories. When being used to extract data, restore stores temporary files in /tmp/ by default — if you are operating from a recovery disk with a small /tmp directory, you may need to set the TMPDIR environment variable to a directory with more free space for the restore to be successful.
Note: If you use dump on your root directory, you would not back up /home, /usr or many other directories since these are typically mount points for other file systems or symbolic links into those file systems.
dump has quirks that remain from its early days in Version 6 of AT&T UNIX (circa 1975). The default parameters are suitable for 9-track tapes (6250 bpi), not the high-density media available today (up to 62,182 ftpi). These defaults must be overridden on the command line to utilize the capacity of current tape drives.
It is also possible to backup data across the network to a tape drive attached to another computer with rdump and rrestore. Both programs rely upon rcmd(3) and ruserok(3) to access the remote tape drive. Therefore, the user performing the backup must be listed in the .rhosts file on the remote computer. The arguments to rdump and rrestore must be suitable to use on the remote computer. When rdumping from a FreeBSD computer to an Exabyte tape drive connected to a Sun called komodo, use:
# /sbin/rdump 0dsbfu 54000 13000 126 komodo:/dev/nsa8 /dev/da0a 2>&1
Beware: there are security implications to allowing .rhosts authentication. Evaluate your situation carefully.
It is also possible to use dump and restore in a more secure fashion over ssh.
Example 19-1. Using dump over ssh
# /sbin/dump -0uan -f - /usr | gzip -2 | ssh -c blowfish \ [email protected] dd of=/mybigfiles/dump-usr-l0.gz
Or using dump's built-in method, setting the environment variable RSH:
Example 19-2. Using dump over ssh with RSH Set
# env RSH=/usr/bin/ssh /sbin/dump -0uan -f [email protected]:/dev/sa0 /usr
tar(1) also dates back to Version 6 of AT&T UNIX (circa 1975). tar operates in cooperation with the file system; it writes files and directories to tape. tar does not support the full range of options that are available from cpio(1), but it does not require the unusual command pipeline that cpio uses.
To tar to an Exabyte tape drive connected to a Sun called komodo, use:
# tar cf - . | rsh komodo dd of=tape-device obs=20b
If you are worried about the security of backing up over a network you should use the ssh command instead of rsh.
cpio(1) is the original UNIX file interchange tape program for magnetic media. cpio has options (among many others) to perform byte-swapping, write a number of different archive formats, and pipe the data to other programs. This last feature makes cpio an excellent choice for installation media. cpio does not know how to walk the directory tree and a list of files must be provided through stdin.
cpio does not support backups across the network. You can use a pipeline and rsh to send the data to a remote tape drive.
# for f in directory_list; do find $f >> backup.list done # cpio -v -o --format=newc < backup.list | ssh user@host "cat > backup_device"
Where directory_list is the list of directories you want to back up, user@host is the user/hostname combination that will be performing the backups, and backup_device is where the backups should be written to (e.g., /dev/nsa0).
pax(1) is IEEE/POSIX's answer to tar and cpio. Over the years the various versions of tar and cpio have gotten slightly incompatible. So rather than fight it out to fully standardize them, POSIX created a new archive utility. pax attempts to read and write many of the various cpio and tar formats, plus new formats of its own. Its command set more resembles cpio than tar.
Amanda (Advanced Maryland Network Disk Archiver) is a client/server backup system, rather than a single program. An Amanda server will backup to a single tape drive any number of computers that have Amanda clients and a network connection to the Amanda server. A common problem at sites with a number of large disks is that the length of time required to backup to data directly to tape exceeds the amount of time available for the task. Amanda solves this problem. Amanda can use a “holding disk” to backup several file systems at the same time. Amanda creates “archive sets”: a group of tapes used over a period of time to create full backups of all the file systems listed in Amanda's configuration file. The “archive set” also contains nightly incremental (or differential) backups of all the file systems. Restoring a damaged file system requires the most recent full backup and the incremental backups.
The configuration file provides fine control of backups and the network traffic that Amanda generates. Amanda will use any of the above backup programs to write the data to tape. Amanda is available as either a port or a package, it is not installed by default.
“Do nothing” is not a computer program, but it is the most widely used backup strategy. There are no initial costs. There is no backup schedule to follow. Just say no. If something happens to your data, grin and bear it!
If your time and your data is worth little to nothing, then “Do nothing” is the most suitable backup program for your computer. But beware, UNIX is a useful tool, you may find that within six months you have a collection of files that are valuable to you.
“Do nothing” is the correct backup method for /usr/obj and other directory trees that can be exactly recreated by your computer. An example is the files that comprise the HTML or PostScript version of this Handbook. These document formats have been created from XML input files. Creating backups of the HTML or PostScript files is not necessary. The XML files are backed up regularly.
dump(8) Period. Elizabeth D. Zwicky torture tested all the backup programs discussed here. The clear choice for preserving all your data and all the peculiarities of UNIX file systems is dump. Elizabeth created file systems containing a large variety of unusual conditions (and some not so unusual ones) and tested each program by doing a backup and restore of those file systems. The peculiarities included: files with holes, files with holes and a block of nulls, files with funny characters in their names, unreadable and unwritable files, devices, files that change size during the backup, files that are created/deleted during the backup and more. She presented the results at LISA V in Oct. 1991. See torture-testing Backup and Archive Programs.
There are only four steps that you need to perform in preparation for any disaster that may occur.
First, print the bsdlabel from each of your disks (e.g., bsdlabel da0 | lpr), your file system table (/etc/fstab) and all boot messages, two copies of each.
Second, burn a “livefs” CDROM. This CDROM contains support for booting into a FreeBSD “livefs” rescue mode allowing the user to perform many tasks like running dump(8), restore(8), fdisk(8), bsdlabel(8), newfs(8), mount(8), and more. Livefs CD image for FreeBSD/i386 8.3-RELEASE is available from ftp://ftp.FreeBSD.org/pub/FreeBSD/releases/i386/ISO-IMAGES/8.3/FreeBSD-8.3-RELEASE-i386-livefs.iso.
Note: Livefs CD images are not available for FreeBSD 9.1-RELEASE and later. In addition to the CDROM installation images, flash drive installation images may be used to recover a system. The “memstick” image for FreeBSD/i386 9.1-RELEASE is available from ftp://ftp.FreeBSD.org/pub/FreeBSD/releases/i386/i386/ISO-IMAGES/9.1/FreeBSD-9.1-RELEASE-i386-memstick.img.
Third, create backup tapes regularly. Any changes that you make after your last backup may be irretrievably lost. Write-protect the backup tapes.
Fourth, test the “livefs” CDROM you made in step two and backup tapes. Make notes of the procedure. Store these notes with the CDROM, the printouts and the backup tapes. You will be so distraught when restoring that the notes may prevent you from destroying your backup tapes (How? In place of tar xvf /dev/sa0, you might accidentally type tar cvf /dev/sa0 and over-write your backup tape).
For an added measure of security, make “livefs” CDROM and two backup tapes each time. Store one of each at a remote location. A remote location is NOT the basement of the same office building. A number of firms in the World Trade Center learned this lesson the hard way. A remote location should be physically separated from your computers and disk drives by a significant distance.
The key question is: did your hardware survive? You have been doing regular backups so there is no need to worry about the software.
If the hardware has been damaged, the parts should be replaced before attempting to use the computer.
If your hardware is okay, insert the “livefs” CDROM in the CDROM drive and boot the computer. The original install menu will be displayed on the screen. Select the correct country, then choose
option and select the item. The tool restore and the other programs that you need are located in /mnt2/rescue.Recover each file system separately.
Try to mount (e.g., mount /dev/da0a /mnt) the root partition of your first disk. If the bsdlabel was damaged, use bsdlabel to re-partition and label the disk to match the label that you printed and saved. Use newfs to re-create the file systems. Re-mount the root partition of the disk read-write (mount -u -o rw /mnt). Use your backup program and backup tapes to recover the data for this file system (e.g., restore vrf /dev/sa0). Unmount the file system (e.g., umount /mnt). Repeat for each file system that was damaged.
Once your system is running, backup your data onto new tapes. Whatever caused the crash or data loss may strike again. Another hour spent now may save you from further distress later.
Aside from the disks you physically insert into your computer: floppies, CDs, hard drives, and so forth; other forms of disks are understood by FreeBSD - the virtual disks.
These include network file systems such as the Network File System and Coda, memory-based file systems and file-backed file systems.
According to the FreeBSD version you run, you will have to use different tools for creation and use of file-backed and memory-based file systems.
Note: Use devfs(5) to allocate device nodes transparently for the user.
The utility mdconfig(8) is used to configure and enable memory disks, md(4), under FreeBSD. To use mdconfig(8), you have to load md(4) module or to add the support in your kernel configuration file:
device md
The mdconfig(8) command supports three kinds of memory backed virtual disks: memory disks allocated with malloc(9), memory disks using a file or swap space as backing. One possible use is the mounting of floppy or CD images kept in files.
To mount an existing file system image:
Example 19-3. Using mdconfig to Mount an Existing File System Image
# mdconfig -a -t vnode -f diskimage -u 0 # mount /dev/md0 /mnt
To create a new file system image with mdconfig(8):
Example 19-4. Creating a New File-Backed Disk with mdconfig
# dd if=/dev/zero of=newimage bs=1k count=5k 5120+0 records in 5120+0 records out # mdconfig -a -t vnode -f newimage -u 0 # bsdlabel -w md0 auto # newfs md0a /dev/md0a: 5.0MB (10224 sectors) block size 16384, fragment size 2048 using 4 cylinder groups of 1.25MB, 80 blks, 192 inodes. super-block backups (for fsck -b #) at: 160, 2720, 5280, 7840 # mount /dev/md0a /mnt # df /mnt Filesystem 1K-blocks Used Avail Capacity Mounted on /dev/md0a 4710 4 4330 0% /mnt
If you do not specify the unit number with the -u
option, mdconfig(8) will use
the md(4) automatic
allocation to select an unused device. The name of the allocated unit will be output
on stdout like md4. For more details about mdconfig(8), please
refer to the manual page.
The utility mdconfig(8) is very useful, however it asks many command lines to create a file-backed file system. FreeBSD also comes with a tool called mdmfs(8), this program configures a md(4) disk using mdconfig(8), puts a UFS file system on it using newfs(8), and mounts it using mount(8). For example, if you want to create and mount the same file system image as above, simply type the following:
Example 19-5. Configure and Mount a File-Backed Disk with mdmfs
# dd if=/dev/zero of=newimage bs=1k count=5k 5120+0 records in 5120+0 records out # mdmfs -F newimage -s 5m md0 /mnt # df /mnt Filesystem 1K-blocks Used Avail Capacity Mounted on /dev/md0 4718 4 4338 0% /mnt
If you use the option md
without unit number, mdmfs(8) will use md(4) auto-unit
feature to automatically select an unused device. For more details about mdmfs(8), please refer
to the manual page.
For a memory-based file system the “swap backing” should normally be used. Using swap backing does not mean that the memory disk will be swapped out to disk by default, but merely that the memory disk will be allocated from a memory pool which can be swapped out to disk if needed. It is also possible to create memory-based disk which are malloc(9) backed, but using malloc backed memory disks, especially large ones, can result in a system panic if the kernel runs out of memory.
Example 19-6. Creating a New Memory-Based Disk with mdconfig
# mdconfig -a -t swap -s 5m -u 1 # newfs -U md1 /dev/md1: 5.0MB (10240 sectors) block size 16384, fragment size 2048 using 4 cylinder groups of 1.27MB, 81 blks, 192 inodes. with soft updates super-block backups (for fsck -b #) at: 160, 2752, 5344, 7936 # mount /dev/md1 /mnt # df /mnt Filesystem 1K-blocks Used Avail Capacity Mounted on /dev/md1 4718 4 4338 0% /mnt
When a memory-based or file-based file system is not used, you should release all resources to the system. The first thing to do is to unmount the file system, then use mdconfig(8) to detach the disk from the system and release the resources.
For example to detach and free all resources used by /dev/md4:
# mdconfig -d -u 4
It is possible to list information about configured md(4) devices in using the command mdconfig -l.
FreeBSD offers a feature in conjunction with Soft Updates: File system snapshots.
Snapshots allow a user to create images of specified file systems, and treat them as a file. Snapshot files must be created in the file system that the action is performed on, and a user may create no more than 20 snapshots per file system. Active snapshots are recorded in the superblock so they are persistent across unmount and remount operations along with system reboots. When a snapshot is no longer required, it can be removed with the standard rm(1) command. Snapshots may be removed in any order, however all the used space may not be acquired because another snapshot will possibly claim some of the released blocks.
The un-alterable snapshot
file flag is set by mksnap_ffs(8) after
initial creation of a snapshot file. The unlink(1) command
makes an exception for snapshot files since it allows them to be removed.
Snapshots are created with the mount(8) command. To place a snapshot of /var in the file /var/snapshot/snap use the following command:
# mount -u -o snapshot /var/snapshot/snap /var
Alternatively, you can use mksnap_ffs(8) to create a snapshot:
# mksnap_ffs /var /var/snapshot/snap
One can find snapshot files on a file system (e.g., /var) by using the find(1) command:
# find /var -flags snapshot
Once a snapshot has been created, it has several uses:
Some administrators will use a snapshot file for backup purposes, because the snapshot can be transferred to CDs or tape.
The file system integrity checker, fsck(8), may be run on the snapshot. Assuming that the file system was clean when it was mounted, you should always get a clean (and unchanging) result. This is essentially what the background fsck(8) process does.
Run the dump(8) utility on the
snapshot. A dump will be returned that is consistent with the file system and
the timestamp of the snapshot. dump(8) can also take
a snapshot, create a dump image and then remove the snapshot in one command
using the -L
flag.
mount(8) the snapshot as a frozen image of the file system. To mount(8) the snapshot /var/snapshot/snap run:
# mdconfig -a -t vnode -f /var/snapshot/snap -u 4 # mount -r /dev/md4 /mnt
You can now walk the hierarchy of your frozen /var file system mounted at /mnt. Everything will initially be in the same state it was during the snapshot creation time. The only exception is that any earlier snapshots will appear as zero length files. When the use of a snapshot has delimited, it can be unmounted with:
# umount /mnt # mdconfig -d -u 4
For more information about softupdates
and file system
snapshots, including technical papers, you can visit Marshall Kirk McKusick's website at
http://www.mckusick.com/.
Quotas are an optional feature of the operating system that allow you to limit the amount of disk space and/or the number of files a user or members of a group may allocate on a per-file system basis. This is used most often on timesharing systems where it is desirable to limit the amount of resources any one user or group of users may allocate. This will prevent one user or group of users from consuming all of the available disk space.
Before attempting to use disk quotas, it is necessary to make sure that quotas are configured in your kernel. This is done by adding the following line to your kernel configuration file:
options QUOTA
The stock GENERIC kernel does not have this enabled by default, so you will have to configure, build and install a custom kernel in order to use disk quotas. Please refer to Chapter 9 for more information on kernel configuration.
Next you will need to enable disk quotas in /etc/rc.conf. On FreeBSD 7.X and earlier, this is done by adding the line:
enable_quotas="YES"
On FreeBSD 8.0-RELEASE and later, add the following line instead:
quota_enable="YES"
For finer control over your quota startup, there is an additional configuration variable available. Normally on bootup, the quota integrity of each file system is checked by the quotacheck(8) program. The quotacheck(8) facility insures that the data in the quota database properly reflects the data on the file system. This is a very time consuming process that will significantly affect the time your system takes to boot. If you would like to skip this step, a variable in /etc/rc.conf is made available for the purpose:
check_quotas="NO"
Finally you will need to edit /etc/fstab to enable disk quotas on a per-file system basis. This is where you can either enable user or group quotas or both for all of your file systems.
To enable per-user quotas on a file system, add the userquota
option to the options field in the /etc/fstab entry for the file system you want to enable quotas
on. For example:
/dev/da1s2g /home ufs rw,userquota 1 2
Similarly, to enable group quotas, use the groupquota
option instead of userquota
. To enable both user and
group quotas, change the entry as follows:
/dev/da1s2g /home ufs rw,userquota,groupquota 1 2
By default, the quota files are stored in the root directory of the file system with the names quota.user and quota.group for user and group quotas respectively. See fstab(5) for more information. Even though the fstab(5) manual page says that you can specify an alternate location for the quota files, this is not recommended because the various quota utilities do not seem to handle this properly.
At this point you should reboot your system with your new kernel. /etc/rc will automatically run the appropriate commands to create the initial quota files for all of the quotas you enabled in /etc/fstab, so there is no need to manually create any zero length quota files.
In the normal course of operations you should not be required to run the quotacheck(8), quotaon(8), or quotaoff(8) commands manually. However, you may want to read their manual pages just to be familiar with their operation.
Once you have configured your system to enable quotas, verify that they really are enabled. An easy way to do this is to run:
# quota -v
You should see a one line summary of disk usage and current quota limits for each file system that quotas are enabled on.
You are now ready to start assigning quota limits with the edquota(8) command.
You have several options on how to enforce limits on the amount of disk space a user or group may allocate, and how many files they may create. You may limit allocations based on disk space (block quotas) or number of files (inode quotas) or a combination of both. Each of these limits are further broken down into two categories: hard and soft limits.
A hard limit may not be exceeded. Once a user reaches his hard limit he may not make any further allocations on the file system in question. For example, if the user has a hard limit of 500 kbytes on a file system and is currently using 490 kbytes, the user can only allocate an additional 10 kbytes. Attempting to allocate an additional 11 kbytes will fail.
Soft limits, on the other hand, can be exceeded for a limited amount of time. This period of time is known as the grace period, which is one week by default. If a user stays over his or her soft limit longer than the grace period, the soft limit will turn into a hard limit and no further allocations will be allowed. When the user drops back below the soft limit, the grace period will be reset.
The following is an example of what you might see when you run the edquota(8) command. When the edquota(8) command is invoked, you are placed into the editor specified by the EDITOR environment variable, or in the vi editor if the EDITOR variable is not set, to allow you to edit the quota limits.
# edquota -u test
Quotas for user test: /usr: kbytes in use: 65, limits (soft = 50, hard = 75) inodes in use: 7, limits (soft = 50, hard = 60) /usr/var: kbytes in use: 0, limits (soft = 50, hard = 75) inodes in use: 0, limits (soft = 50, hard = 60)
You will normally see two lines for each file system that has quotas enabled. One line for the block limits, and one line for inode limits. Simply change the value you want updated to modify the quota limit. For example, to raise this user's block limit from a soft limit of 50 and a hard limit of 75 to a soft limit of 500 and a hard limit of 600, change:
/usr: kbytes in use: 65, limits (soft = 50, hard = 75)
to:
/usr: kbytes in use: 65, limits (soft = 500, hard = 600)
The new quota limits will be in place when you exit the editor.
Sometimes it is desirable to set quota limits on a range of UIDs. This can be
done by use of the -p
option on the edquota(8) command.
First, assign the desired quota limit to a user, and then run edquota -p protouser startuid-enduid. For example, if user test has the desired quota limits, the following command can
be used to duplicate those quota limits for UIDs 10,000 through 19,999:
# edquota -p test 10000-19999
For more information see edquota(8) manual page.
You can use either the quota(1) or the repquota(8) commands to check quota limits and disk usage. The quota(1) command can be used to check individual user or group quotas and disk usage. A user may only examine his own quota, and the quota of a group he is a member of. Only the super-user may view all user and group quotas. The repquota(8) command can be used to get a summary of all quotas and disk usage for file systems with quotas enabled.
The following is some sample output from the quota -v command for a user that has quota limits on two file systems.
Disk quotas for user test (uid 1002): Filesystem usage quota limit grace files quota limit grace /usr 65* 50 75 5days 7 50 60 /usr/var 0 50 75 0 50 60
On the /usr file system in the above example, this user is currently 15 kbytes over the soft limit of 50 kbytes and has 5 days of the grace period left. Note the asterisk * which indicates that the user is currently over his quota limit.
Normally file systems that the user is not using any disk space on will not show
up in the output from the quota(1) command, even
if he has a quota limit assigned for that file system. The -v
option will display those file systems, such as the
/usr/var file system in the above example.
Quotas are enforced by the quota subsystem on the NFS server. The rpc.rquotad(8) daemon makes quota information available to the quota(1) command on NFS clients, allowing users on those machines to see their quota statistics.
Enable rpc.rquotad in /etc/inetd.conf like so:
rquotad/1 dgram rpc/udp wait root /usr/libexec/rpc.rquotad rpc.rquotad
Now restart inetd:
# /etc/rc.d/inetd restart
FreeBSD offers excellent online protections against unauthorized data access. File permissions and Mandatory Access Control (MAC) (see Chapter 17) help prevent unauthorized third-parties from accessing data while the operating system is active and the computer is powered up. However, the permissions enforced by the operating system are irrelevant if an attacker has physical access to a computer and can simply move the computer's hard drive to another system to copy and analyze the sensitive data.
Regardless of how an attacker may have come into possession of a hard drive or powered-down computer, both GEOM Based Disk Encryption (gbde) and geli cryptographic subsystems in FreeBSD are able to protect the data on the computer's file systems against even highly-motivated attackers with significant resources. Unlike cumbersome encryption methods that encrypt only individual files, gbde and geli transparently encrypt entire file systems. No cleartext ever touches the hard drive's platter.
Become root
Configuring gbde requires super-user privileges.
% su - Password:
Add gbde(4) Support to the Kernel Configuration File
Add the following line to the kernel configuration file:
options GEOM_BDE
Rebuild the kernel as described in Chapter 9.
Reboot into the new kernel.
An alternative to recompiling the kernel is to use kldload to load gbde(4):
# kldload geom_bde
The following example assumes that you are adding a new hard drive to your system that will hold a single encrypted partition. This partition will be mounted as /private. gbde can also be used to encrypt /home and /var/mail, but this requires more complex instructions which exceed the scope of this introduction.
Add the New Hard Drive
Install the new drive to the system as explained in Section 19.3. For the purposes of this example, a new hard drive partition has been added as /dev/ad4s1c. The /dev/ad0s1* devices represent existing standard FreeBSD partitions on the example system.
# ls /dev/ad* /dev/ad0 /dev/ad0s1b /dev/ad0s1e /dev/ad4s1 /dev/ad0s1 /dev/ad0s1c /dev/ad0s1f /dev/ad4s1c /dev/ad0s1a /dev/ad0s1d /dev/ad4
Create a Directory to Hold gbde Lock Files
# mkdir /etc/gbde
The gbde lock file contains information that gbde requires to access encrypted partitions. Without access to the lock file, gbde will not be able to decrypt the data contained in the encrypted partition without significant manual intervention which is not supported by the software. Each encrypted partition uses a separate lock file.
Initialize the gbde Partition
A gbde partition must be initialized before it can be used. This initialization needs to be performed only once:
# gbde init /dev/ad4s1c -i -L /etc/gbde/ad4s1c.lock
gbde(8) will open your editor, permitting you to set various configuration options in a template. For use with UFS1 or UFS2, set the sector_size to 2048:
# $FreeBSD: src/sbin/gbde/template.txt,v 1.1.36.1 2009/08/03 08:13:06 kensmith Exp $ # # Sector size is the smallest unit of data which can be read or written. # Making it too small decreases performance and decreases available space. # Making it too large may prevent filesystems from working. 512 is the # minimum and always safe. For UFS, use the fragment size # sector_size = 2048 [...]
gbde(8) will ask you twice to type the passphrase that should be used to secure the data. The passphrase must be the same both times. gbde's ability to protect your data depends entirely on the quality of the passphrase that you choose. [10]
The gbde init command creates a lock file for your gbde partition that in this example is stored as /etc/gbde/ad4s1c.lock. gbde lock files must end in “.lock” in order to be correctly detected by the /etc/rc.d/gbde start up script.
Caution: gbde lock files must be backed up together with the contents of any encrypted partitions. While deleting a lock file alone cannot prevent a determined attacker from decrypting a gbde partition, without the lock file, the legitimate owner will be unable to access the data on the encrypted partition without a significant amount of work that is totally unsupported by gbde(8) and its designer.
Attach the Encrypted Partition to the Kernel
# gbde attach /dev/ad4s1c -l /etc/gbde/ad4s1c.lock
You will be asked to provide the passphrase that you selected during the initialization of the encrypted partition. The new encrypted device will show up in /dev as /dev/device_name.bde:
# ls /dev/ad* /dev/ad0 /dev/ad0s1b /dev/ad0s1e /dev/ad4s1 /dev/ad0s1 /dev/ad0s1c /dev/ad0s1f /dev/ad4s1c /dev/ad0s1a /dev/ad0s1d /dev/ad4 /dev/ad4s1c.bde
Create a File System on the Encrypted Device
Once the encrypted device has been attached to the kernel, you can create a file
system on the device. To create a file system on the encrypted device, use newfs(8). Since it is
much faster to initialize a new UFS2 file system than it is to initialize the old
UFS1 file system, using newfs(8) with the
-O2
option is recommended.
# newfs -U -O2 /dev/ad4s1c.bde
Note: The newfs(8) command must be performed on an attached gbde partition which is identified by a *.bde extension to the device name.
Mount the Encrypted Partition
Create a mount point for the encrypted file system.
# mkdir /private
Mount the encrypted file system.
# mount /dev/ad4s1c.bde /private
Verify That the Encrypted File System is Available
The encrypted file system should now be visible to df(1) and be available for use.
% df -H Filesystem Size Used Avail Capacity Mounted on /dev/ad0s1a 1037M 72M 883M 8% / /devfs 1.0K 1.0K 0B 100% /dev /dev/ad0s1f 8.1G 55K 7.5G 0% /home /dev/ad0s1e 1037M 1.1M 953M 0% /tmp /dev/ad0s1d 6.1G 1.9G 3.7G 35% /usr /dev/ad4s1c.bde 150G 4.1K 138G 0% /private
After each boot, any encrypted file systems must be re-attached to the kernel, checked for errors, and mounted, before the file systems can be used. The required commands must be executed as user root.
Attach the gbde Partition to the Kernel
# gbde attach /dev/ad4s1c -l /etc/gbde/ad4s1c.lock
You will be asked to provide the passphrase that you selected during initialization of the encrypted gbde partition.
Check the File System for Errors
Since encrypted file systems cannot yet be listed in /etc/fstab for automatic mounting, the file systems must be checked for errors by running fsck(8) manually before mounting.
# fsck -p -t ffs /dev/ad4s1c.bde
Mount the Encrypted File System
# mount /dev/ad4s1c.bde /private
The encrypted file system is now available for use.
It is possible to create a script to automatically attach, check, and mount an encrypted partition, but for security reasons the script should not contain the gbde(8) password. Instead, it is recommended that such scripts be run manually while providing the password via the console or ssh(1).
As an alternative, an rc.d script is provided. Arguments for this script can be passed via rc.conf(5), for example:
gbde_autoattach_all="YES" gbde_devices="ad4s1c" gbde_lockdir="/etc/gbde"
This will require that the gbde passphrase be entered at boot time. After typing the correct passphrase, the gbde encrypted partition will be mounted automatically. This can be very useful when using gbde on notebooks.
gbde(8) encrypts the sector payload using 128-bit AES in CBC mode. Each sector on the disk is encrypted with a different AES key. For more information on gbde's cryptographic design, including how the sector keys are derived from the user-supplied passphrase, see gbde(4).
sysinstall(8) is incompatible with gbde-encrypted devices. All *.bde devices must be detached from the kernel before starting sysinstall(8) or it will crash during its initial probing for devices. To detach the encrypted device used in our example, use the following command:
# gbde detach /dev/ad4s1c
Also note that, as vinum(4) does not use the geom(4) subsystem, you cannot use gbde with vinum volumes.
An alternative cryptographic GEOM class is available - geli. It is currently being developed by Pawel Jakub Dawidek
<[email protected]>
. The geli utility is different to gbde; it
offers different features and uses a different scheme for doing cryptographic
work.
The most important features of geli(8) are:
Utilizes the crypto(9) framework — when cryptographic hardware is available, geli will use it automatically.
Supports multiple cryptographic algorithms (currently AES, Blowfish, and 3DES).
Allows the root partition to be encrypted. The passphrase used to access the encrypted root partition will be requested during the system boot.
Allows the use of two independent keys (e.g., a “key” and a “company key”).
geli is fast - performs simple sector-to-sector encryption.
Allows backup and restore of Master Keys. When a user has to destroy his keys, it will be possible to get access to the data again by restoring keys from the backup.
Allows to attach a disk with a random, one-time key — useful for swap partitions and temporary file systems.
More geli features can be found in the geli(8) manual page.
The next steps will describe how to enable support for geli in the FreeBSD kernel and will explain how to create and use a geli encryption provider.
Super-user privileges will be required since modifications to the kernel are necessary.
Adding geli Support to the Kernel
Add the following lines to the kernel configuration file:
options GEOM_ELI device crypto
Rebuild the kernel as described in Chapter 9.
Alternatively, the geli module can be loaded at boot time. Add the following line to the /boot/loader.conf:
geom_eli_load="YES"
geli(8) should now be supported by the kernel.
Generating the Master Key
The following example will describe how to generate a key file, which will be used as part of the Master Key for the encrypted provider mounted under /private. The key file will provide some random data used to encrypt the Master Key. The Master Key will be protected by a passphrase as well. Provider's sector size will be 4kB big. Furthermore, the discussion will describe how to attach the geli provider, create a file system on it, how to mount it, how to work with it, and finally how to detach it.
It is recommended to use a bigger sector size (like 4kB) for better performance.
The Master Key will be protected with a passphrase and the data source for key file will be /dev/random. The sector size of /dev/da2.eli, which we call provider, will be 4kB.
# dd if=/dev/random of=/root/da2.key bs=64 count=1 # geli init -s 4096 -K /root/da2.key /dev/da2 Enter new passphrase: Reenter new passphrase:
It is not mandatory that both a passphrase and a key file are used; either method of securing the Master Key can be used in isolation.
If key file is given as “-”, standard input will be used. This example shows how more than one key file can be used.
# cat keyfile1 keyfile2 keyfile3 | geli init -K - /dev/da2
Attaching the Provider with the Generated Key
# geli attach -k /root/da2.key /dev/da2 Enter passphrase:
The new plaintext device will be named /dev/da2.eli.
# ls /dev/da2* /dev/da2 /dev/da2.eli
Creating the New File System
# dd if=/dev/random of=/dev/da2.eli bs=1m # newfs /dev/da2.eli # mount /dev/da2.eli /private
The encrypted file system should be visible to df(1) and be available for use now:
# df -H Filesystem Size Used Avail Capacity Mounted on /dev/ad0s1a 248M 89M 139M 38% / /devfs 1.0K 1.0K 0B 100% /dev /dev/ad0s1f 7.7G 2.3G 4.9G 32% /usr /dev/ad0s1d 989M 1.5M 909M 0% /tmp /dev/ad0s1e 3.9G 1.3G 2.3G 35% /var /dev/da2.eli 150G 4.1K 138G 0% /private
Unmounting and Detaching the Provider
Once the work on the encrypted partition is done, and the /private partition is no longer needed, it is prudent to consider unmounting and detaching the geli encrypted partition from the kernel.
# umount /private # geli detach da2.eli
More information about the use of geli(8) can be found in the manual page.
geli comes with a rc.d script which can be used to simplify the usage of geli. An example of configuring geli through rc.conf(5) follows:
geli_devices="da2" geli_da2_flags="-p -k /root/da2.key"
This will configure /dev/da2 as a geli provider of which the Master Key file is located in /root/da2.key, and geli will not use
a passphrase when attaching the provider (note that this can only be used if
-P
was given during the geli
init phase). The system will detach the geli provider
from the kernel before the system shuts down.
More information about configuring rc.d is provided in the rc.d section of the Handbook.
Swap encryption in FreeBSD is easy to configure. Depending on which version of FreeBSD is being used, different options are available and configuration can vary slightly. The gbde(8) or geli(8) encryption systems can be used for swap encryption. Both systems use the encswap rc.d script.
The previous section, Encrypting Disk Partitions, includes a short discussion on the different encryption systems.
Like the encryption of disk partitions, encryption of swap space is done to protect sensitive information. Imagine an application that e.g., deals with passwords. As long as these passwords stay in physical memory, all is well. However, if the operating system starts swapping out memory pages to free space for other applications, the passwords may be written to the disk platters unencrypted and easy to retrieve for an adversary. Encrypting swap space can be a solution for this scenario.
Note: For the remainder of this section, ad0s1b will be the swap partition.
Up to this point the swap has been unencrypted. It is possible that there are already passwords or other sensitive data on the disk platters in cleartext. To rectify this, the data on the swap partition should be overwritten with random garbage:
# dd if=/dev/random of=/dev/ad0s1b bs=1m
The .bde suffix should be added to the device in the respective /etc/fstab swap line:
# Device Mountpoint FStype Options Dump Pass# /dev/ad0s1b.bde none swap sw 0 0
Alternatively, the procedure for using geli(8) for swap encryption is similar to that of using gbde(8). The .eli suffix should be added to the device in the respective /etc/fstab swap line:
# Device Mountpoint FStype Options Dump Pass# /dev/ad0s1b.eli none swap sw 0 0
geli(8) uses the AES algorithm with a key length of 128 bit by default.
Optionally, these defaults can be altered using the geli_swap_flags option in /etc/rc.conf. The following line tells the encswap rc.d script to create geli(8) swap partitions using the Blowfish algorithm with a key length of 128 bit, a sectorsize of 4 kilobytes and the “detach on last close” option set:
geli_swap_flags="-e blowfish -l 128 -s 4096 -d"
Please refer to the description of the onetime command in the geli(8) manual page for a list of possible options.
Once the system has been rebooted, proper operation of the encrypted swap can be verified using the swapinfo command.
If gbde(8) is being used:
% swapinfo Device 1K-blocks Used Avail Capacity /dev/ad0s1b.bde 542720 0 542720 0%
If geli(8) is being used:
% swapinfo Device 1K-blocks Used Avail Capacity /dev/ad0s1b.eli 542720 0 542720 0%
High availability is one of the main requirements in serious business
applications and highly-available storage is a key component in such environments.
Highly Available STorage, or HAST, was developed by Pawel Jakub
Dawidek <[email protected]>
as a framework which allows
transparent storage of the same data across several physically separated machines
connected by a TCP/IP network. HAST can
be understood as a network-based RAID1 (mirror), and is similar to the DRBD®
storage system known from the GNU/Linux platform. In
combination with other high-availability features of FreeBSD like CARP, HAST makes it possible to build a highly-available storage
cluster that is resistant to hardware failures.
After reading this section, you will know:
What HAST is, how it works and which features it provides.
How to set up and use HAST on FreeBSD.
How to integrate CARP and devd(8) to build a robust storage system.
Before reading this section, you should:
Understand UNIX and FreeBSD basics (Chapter 4).
Know how to configure network interfaces and other core FreeBSD subsystems (Chapter 12).
Have a good understanding of FreeBSD networking (Part IV in FreeBSD Handbook).
Use FreeBSD 8.1-RELEASE or newer.
The HAST project was sponsored by The FreeBSD Foundation with the support from OMCnet Internet Service GmbH and TransIP BV.
The main features of the HAST system are:
Can be used to mask I/O errors on local hard drives.
File system agnostic; works with any file system supported by FreeBSD.
Efficient and quick resynchronization, synchronizing only blocks that were modified during the downtime of a node.
Can be used in an already deployed environment to add additional redundancy.
Together with CARP, Heartbeat, or other tools, it can be used to build a robust and durable storage system.
As HAST provides a synchronous block-level replication of any storage media to several machines, it requires at least two nodes (physical machines) — the primary (also known as master) node, and the secondary (slave) node. These two machines together will be called a cluster.
Note: HAST is currently limited to two cluster nodes in total.
Since HAST works in a primary-secondary configuration, it allows only one of the cluster nodes to be active at any given time. The primary node, also called active, is the one which will handle all the I/O requests to HAST-managed devices. The secondary node is then being automatically synchronized from the primary node.
The physical components of the HAST system are:
local disk (on primary node)
disk on remote machine (secondary node)
HAST operates synchronously on a block level, making it transparent to file systems and applications. HAST provides regular GEOM providers in /dev/hast/ directory for use by other tools or applications, thus there is no difference between using HAST-provided devices and raw disks, partitions, etc.
Each write, delete or flush operation is sent to the local disk and to the remote disk over TCP/IP. Each read operation is served from the local disk, unless the local disk is not up-to-date or an I/O error occurs. In such case, the read operation is sent to the secondary node.
HAST tries to provide fast failure recovery. For this reason, it is very important to reduce synchronization time after a node's outage. To provide fast synchronization, HAST manages an on-disk bitmap of dirty extents and only synchronizes those during a regular synchronization (with an exception of the initial sync).
There are many ways to handle synchronization. HAST implements several replication modes to handle different synchronization methods:
memsync: report write operation as completed when the local write operation is finished and when the remote node acknowledges data arrival, but before actually storing the data. The data on the remote node will be stored directly after sending the acknowledgement. This mode is intended to reduce latency, but still provides very good reliability. The memsync replication mode is currently not implemented.
fullsync: report write operation as completed when local write completes and when remote write completes. This is the safest and the slowest replication mode. This mode is the default.
async: report write operation as completed when local write completes. This is the fastest and the most dangerous replication mode. It should be used when replicating to a distant node where latency is too high for other modes. The async replication mode is currently not implemented.
Warning: Only the fullsync replication mode is currently supported.
HAST requires GEOM_GATE support in order to function. The GENERIC kernel does not include GEOM_GATE by default, however the geom_gate.ko loadable module is available in the default FreeBSD installation. For stripped-down systems, make sure this module is available. Alternatively, it is possible to build GEOM_GATE support into the kernel statically, by adding this line to the custom kernel configuration file:
options GEOM_GATE
The HAST framework consists of several parts from the operating system's point of view:
the hastd(8) daemon responsible for the data synchronization,
the hastctl(8) userland management utility,
the hast.conf(5) configuration file.
The following example describes how to configure two nodes in master-slave / primary-secondary operation using HAST to replicate the data between the two. The nodes will be called hasta with an IP address 172.16.0.1 and hastb with an IP address 172.16.0.2. Both of these nodes will have a dedicated hard drive /dev/ad6 of the same size for HAST operation. The HAST pool (sometimes also referred to as a resource, i.e., the GEOM provider in /dev/hast/) will be called test.
Configuration of HAST is done in the /etc/hast.conf file. This file should be the same on both nodes. The simplest configuration possible is:
resource test { on hasta { local /dev/ad6 remote 172.16.0.2 } on hastb { local /dev/ad6 remote 172.16.0.1 } }
For more advanced configuration, please consult the hast.conf(5) manual page.
Tip: It is also possible to use host names in the remote statements. In such a case, make sure that these hosts are resolvable, e.g., they are defined in the /etc/hosts file, or alternatively in the local DNS.
Now that the configuration exists on both nodes, the HAST pool can be created. Run these commands on both nodes to place the initial metadata onto the local disk, and start the hastd(8) daemon:
# hastctl create test # /etc/rc.d/hastd onestart
Note: It is not possible to use GEOM providers with an existing file system (i.e., convert an existing storage to HAST-managed pool), because this procedure needs to store some metadata onto the provider and there will not be enough required space available.
A HAST node's role (primary or secondary) is selected by an administrator or other software like Heartbeat using the hastctl(8) utility. Move to the primary node (hasta) and issue this command:
# hastctl role primary test
Similarly, run this command on the secondary node (hastb):
# hastctl role secondary test
Caution: When the nodes are unable to communicate with each other, and both are configured as primary nodes, the condition is called split-brain. To troubleshoot this situation, follow the steps described in Section 19.18.5.2.
Verify the result with the hastctl(8) utility on each node:
# hastctl status test
The important text is the status line, which should say complete on each of the nodes. If it says degraded, something went wrong. At this point, the synchronization between the nodes has already started. The synchronization completes when hastctl status reports 0 bytes of dirty extents.
The next step is to create a filesystem on the /dev/hast/test GEOM provider and mount it. This must be done on the primary node, as /dev/hast/test appears only on the primary node. Creating the filesystem can take a few minutes, depending on the size of the hard drive:
# newfs -U /dev/hast/test # mkdir /hast/test # mount /dev/hast/test /hast/test
Once the HAST framework is configured properly, the final step is to make sure that HAST is started automatically during the system boot. Add this line to /etc/rc.conf:
hastd_enable="YES"
The goal of this example is to build a robust storage system which is resistant to the failure of any given node. The scenario is that a primary node of the cluster fails. If this happens, the secondary node is there to take over seamlessly, check and mount the file system, and continue to work without missing a single bit of data.
To accomplish this task, another FreeBSD feature provides for automatic failover on the IP layer — CARP. CARP (Common Address Redundancy Protocol) allows multiple hosts on the same network segment to share an IP address. Set up CARP on both nodes of the cluster according to the documentation available in Section 32.14. After setup, each node will have its own carp0 interface with a shared IP address 172.16.0.254. The primary HAST node of the cluster must be the master CARP node.
The HAST pool created in the previous section is now ready to be exported to the other hosts on the network. This can be accomplished by exporting it through NFS, Samba etc, using the shared IP address 172.16.0.254. The only problem which remains unresolved is an automatic failover should the primary node fail.
In the event of CARP interfaces going up or down, the FreeBSD operating system generates a devd(8) event, making it possible to watch for the state changes on the CARP interfaces. A state change on the CARP interface is an indication that one of the nodes failed or came back online. These state change events make it possible to run a script which will automatically handle the HAST failover.
To be able to catch state changes on the CARP interfaces, add this configuration to /etc/devd.conf on each node:
notify 30 { match "system" "IFNET"; match "subsystem" "carp0"; match "type" "LINK_UP"; action "/usr/local/sbin/carp-hast-switch master"; }; notify 30 { match "system" "IFNET"; match "subsystem" "carp0"; match "type" "LINK_DOWN"; action "/usr/local/sbin/carp-hast-switch slave"; };
Restart devd(8) on both nodes to put the new configuration into effect:
# /etc/rc.d/devd restart
When the carp0 interface goes up or down (i.e., the interface state changes), the system generates a notification, allowing the devd(8) subsystem to run an arbitrary script, in this case /usr/local/sbin/carp-hast-switch. This is the script which will handle the automatic failover. For further clarification about the above devd(8) configuration, please consult the devd.conf(5) manual page.
An example of such a script could be:
#!/bin/sh # Original script by Freddie Cash <[email protected]> # Modified by Michael W. Lucas <[email protected]> # and Viktor Petersson <[email protected]> # The names of the HAST resources, as listed in /etc/hast.conf resources="test" # delay in mounting HAST resource after becoming master # make your best guess delay=3 # logging log="local0.debug" name="carp-hast" # end of user configurable stuff case "$1" in master) logger -p $log -t $name "Switching to primary provider for ${resources}." sleep ${delay} # Wait for any "hastd secondary" processes to stop for disk in ${resources}; do while $( pgrep -lf "hastd: ${disk} \(secondary\)" > /dev/null 2>&1 ); do sleep 1 done # Switch role for each disk hastctl role primary ${disk} if [ $? -ne 0 ]; then logger -p $log -t $name "Unable to change role to primary for resource ${disk}." exit 1 fi done # Wait for the /dev/hast/* devices to appear for disk in ${resources}; do for I in $( jot 60 ); do [ -c "/dev/hast/${disk}" ] && break sleep 0.5 done if [ ! -c "/dev/hast/${disk}" ]; then logger -p $log -t $name "GEOM provider /dev/hast/${disk} did not appear." exit 1 fi done logger -p $log -t $name "Role for HAST resources ${resources} switched to primary." logger -p $log -t $name "Mounting disks." for disk in ${resources}; do mkdir -p /hast/${disk} fsck -p -y -t ufs /dev/hast/${disk} mount /dev/hast/${disk} /hast/${disk} done ;; slave) logger -p $log -t $name "Switching to secondary provider for ${resources}." # Switch roles for the HAST resources for disk in ${resources}; do if ! mount | grep -q "^/dev/hast/${disk} on " then else umount -f /hast/${disk} fi sleep $delay hastctl role secondary ${disk} 2>&1 if [ $? -ne 0 ]; then logger -p $log -t $name "Unable to switch role to secondary for resource ${disk}." exit 1 fi logger -p $log -t $name "Role switched to secondary for resource ${disk}." done ;; esac
In a nutshell, the script takes these actions when a node becomes master / primary:
Promotes the HAST pools to primary on a given node.
Checks the file system under the HAST pool.
Mounts the pools at an appropriate place.
When a node becomes backup / secondary:
Unmounts the HAST pools.
Degrades the HAST pools to secondary.
Caution: Keep in mind that this is just an example script which should serve as a proof of concept. It does not handle all the possible scenarios and can be extended or altered in any way, for example it can start/stop required services, etc.
Tip: For this example, we used a standard UFS file system. To reduce the time needed for recovery, a journal-enabled UFS or ZFS file system can be used.
More detailed information with additional examples can be found in the HAST Wiki page.
HAST should generally work without issues. However, as with any other software product, there may be times when it does not work as supposed. The sources of the problems may be different, but the rule of thumb is to ensure that the time is synchronized between all nodes of the cluster.
When troubleshooting HAST problems, the debugging level of hastd(8) should be increased by starting the hastd(8) daemon with the -d argument. Note that this argument may be specified multiple times to further increase the debugging level. A lot of useful information may be obtained this way. Consider also using the -F argument, which starts the hastd(8) daemon in the foreground.
Split-brain is when the nodes of the cluster are unable to communicate with each other, and both are configured as primary. This is a dangerous condition because it allows both nodes to make incompatible changes to the data. This problem must be corrected manually by the system administrator.
The administrator must decide which node has more important changes (or merge them manually) and let HAST perform full synchronization of the node which has the broken data. To do this, issue these commands on the node which needs to be resynchronized:
# hastctl role init <resource> # hastctl create <resource> # hastctl role secondary <resource>
This chapter covers the use of disks under the GEOM framework in FreeBSD. This includes the major RAID control utilities which use the framework for configuration. This chapter will not go into in depth discussion on how GEOM handles or controls I/O, the underlying subsystem, or code. This information is provided through the geom(4) manual page and its various SEE ALSO references. This chapter is also not a definitive guide to RAID configurations. Only GEOM-supported RAID classifications will be discussed.
After reading this chapter, you will know:
What type of RAID support is available through GEOM.
How to use the base utilities to configure, maintain, and manipulate the various RAID levels.
How to mirror, stripe, encrypt, and remotely connect disk devices through GEOM.
How to troubleshoot disks attached to the GEOM framework.
Before reading this chapter, you should:
Understand how FreeBSD treats disk devices (Chapter 19).
Know how to configure and install a new FreeBSD kernel (Chapter 9).
GEOM permits access and control to classes — Master Boot Records, BSD labels, etc — through the use of providers, or the special files in /dev. Supporting various software RAID configurations, GEOM will transparently provide access to the operating system and operating system utilities.
Striping is a method used to combine several disk drives into a single volume. In many cases, this is done through the use of hardware controllers. The GEOM disk subsystem provides software support for RAID0, also known as disk striping.
In a RAID0 system, data are split up in blocks that get written across all the drives in the array. Instead of having to wait on the system to write 256k to one disk, a RAID0 system can simultaneously write 64k to each of four different disks, offering superior I/O performance. This performance can be enhanced further by using multiple disk controllers.
Each disk in a RAID0 stripe must be of the same size, since I/O requests are interleaved to read or write to multiple disks in parallel.
Creating a Stripe of Unformatted ATA Disks
Load the geom_stripe.ko module:
# kldload geom_stripe
Ensure that a suitable mount point exists. If this volume will become a root partition, then temporarily use another mount point such as /mnt:
# mkdir /mnt
Determine the device names for the disks which will be striped, and create the new stripe device. For example, to stripe two unused and unpartitioned ATA disks, for example /dev/ad2 and /dev/ad3:
# gstripe label -v st0 /dev/ad2 /dev/ad3 Metadata value stored on /dev/ad2. Metadata value stored on /dev/ad3. Done.
Write a standard label, also known as a partition table, on the new volume and install the default bootstrap code:
# bsdlabel -wB /dev/stripe/st0
This process should have created two other devices in the /dev/stripe directory in addition to the st0 device. Those include st0a and st0c. At this point a file system may be created on the st0a device with the newfs utility:
# newfs -U /dev/stripe/st0a
Many numbers will glide across the screen, and after a few seconds, the process will be complete. The volume has been created and is ready to be mounted.
To manually mount the created disk stripe:
# mount /dev/stripe/st0a /mnt
To mount this striped file system automatically during the boot process, place the volume information in /etc/fstab file. For this purpose, a permanent mount point, named stripe, is created:
# mkdir /stripe # echo "/dev/stripe/st0a /stripe ufs rw 2 2" \ >> /etc/fstab
The geom_stripe.ko module must also be automatically loaded during system initialization, by adding a line to /boot/loader.conf:
# echo 'geom_stripe_load="YES"' >> /boot/loader.conf
RAID1, or mirroring, is the technique of writing the same data to more than one disk drive. Mirrors are usually used to guard against data loss due to drive failure. Each drive in a mirror contains an identical copy of the data. When an individual drive fails, the mirror continues to work, providing data from the drives that are still functioning. The computer keeps running, and the administrator has time to replace the failed drive without user interruption.
Two common situations are illustrated in these examples. The first is creating a mirror out of two new drives and using it as a replacement for an existing single drive. The second example creates a mirror on a single new drive, copies the old drive's data to it, then inserts the old drive into the mirror. While this procedure is slightly more complicated, it only requires one new drive.
Traditionally, the two drives in a mirror are identical in model and capacity, but gmirror(8) does not require that. Mirrors created with dissimilar drives will have a capacity equal to that of the smallest drive in the mirror. Extra space on larger drives will be unused. Drives inserted into the mirror later must have at least as much capacity as the smallest drive already in the mirror.
Warning: The mirroring procedures shown here are non-destructive, but as with any major disk operation, make a full backup first.
Many disk systems store metadata at the end of each disk. Old metadata should be erased before reusing the disk for a mirror. Most problems are caused by two particular types of leftover metadata: GPT partition tables, and old gmirror(8) metadata from a previous mirror.
GPT metadata can be erased with gpart(8). This example erases both primary and backup GPT partition tables from disk ada8:
# gpart destroy -F ada8
gmirror(8) can remove a disk from an active mirror and erase the metadata in one step. Here, the example disk ada8 is removed from the active mirror gm4:
# gmirror remove gm4 ada8
If the mirror is not running but old mirror metadata is still on the disk, use gmirror clear to remove it:
# gmirror clear ada8
gmirror(8) stores one block of metadata at the end of the disk. Because GPT partition schemes also store metadata at the end of the disk, mirroring full GPT disks with gmirror(8) is not recommended. MBR partitioning is used here because it only stores a partition table at the start of the disk and does not conflict with gmirror(8).
In this example, FreeBSD has already been installed on a single disk, ada0. Two new disks, ada1 and ada2, have been connected to the system. A new mirror will be created on these two disks and used to replace the old single disk.
gmirror(8) requires a kernel module, geom_mirror.ko, either built into the kernel or loaded at boot- or run-time. Manually load the kernel module now:
# gmirror load
Create the mirror with the two new drives.
# gmirror label -v gm0 /dev/ada1 /dev/ada2
gm0 is a user-chosen device name assigned to the new mirror. After the mirror has been started, this device name will appear in the /dev/mirror/ directory.
MBR and bsdlabel partition tables can now be created on the mirror with gpart(8). Here we show a traditional split-filesystem layout, with partitions for /, swap, /var, /tmp, and /usr. A single / filesystem and a swap partition will also work.
Partitions on the mirror do not have to be the same size as those on the existing disk, but they must be large enough to hold all the data already present on ada0.
# gpart create -s MBR mirror/gm0 # gpart add -t freebsd -a 4k mirror/gm0 # gpart show mirror/gm0 => 63 156301423 mirror/gm0 MBR (74G) 63 63 - free - (31k) 126 156301299 1 freebsd (74G) 156301425 61 - free - (30k)
# gpart create -s BSD mirror/gm0s1 # gpart add -t freebsd-ufs -a 4k -s 2g mirror/gm0s1 # gpart add -t freebsd-swap -a 4k -s 4g mirror/gm0s1 # gpart add -t freebsd-ufs -a 4k -s 2g mirror/gm0s1 # gpart add -t freebsd-ufs -a 4k -s 1g mirror/gm0s1 # gpart add -t freebsd-ufs -a 4k mirror/gm0s1 # gpart show mirror/gm0s1 => 0 156301299 mirror/gm0s1 BSD (74G) 0 2 - free - (1.0k) 2 4194304 1 freebsd-ufs (2.0G) 4194306 8388608 2 freebsd-swap (4.0G) 12582914 4194304 4 freebsd-ufs (2.0G) 16777218 2097152 5 freebsd-ufs (1.0G) 18874370 137426928 6 freebsd-ufs (65G) 156301298 1 - free - (512B)
Make the mirror bootable by installing bootcode in the MBR and bsdlabel and setting the active slice:
# gpart bootcode -b /boot/mbr mirror/gm0 # gpart set -a active -i 1 mirror/gm0 # gpart bootcode -b /boot/boot mirror/gm0s1
Format the filesystems on the new mirror, enabling soft-updates.
# newfs -U /dev/mirror/gm0s1a # newfs -U /dev/mirror/gm0s1d # newfs -U /dev/mirror/gm0s1e # newfs -U /dev/mirror/gm0s1f
Filesystems from the original disk (ada0) can now be copied onto the mirror with dump(8) and restore(8).
# mount /dev/mirror/gm0s1a /mnt # dump -C16 -b64 -0aL -f - / | (cd /mnt && restore -rf -) # mount /dev/mirror/gm0s1d /mnt/var # mount /dev/mirror/gm0s1e /mnt/tmp # mount /dev/mirror/gm0s1f /mnt/usr # dump -C16 -b64 -0aL -f - /var | (cd /mnt/var && restore -rf -) # dump -C16 -b64 -0aL -f - /tmp | (cd /mnt/tmp && restore -rf -) # dump -C16 -b64 -0aL -f - /usr | (cd /mnt/usr && restore -rf -)
/mnt/etc/fstab must be edited to point to the new mirror filesystems:
# Device Mountpoint FStype Options Dump Pass# /dev/mirror/gm0s1a / ufs rw 1 1 /dev/mirror/gm0s1b none swap sw 0 0 /dev/mirror/gm0s1d /var ufs rw 2 2 /dev/mirror/gm0s1e /tmp ufs rw 2 2 /dev/mirror/gm0s1f /usr ufs rw 2 2
If the gmirror(8) kernel module has not been built into the kernel, /mnt/boot/loader.conf is edited to load the module at boot:
geom_mirror_load="YES"
Reboot the system to test the new mirror and verify that all data has been copied. The BIOS will see the mirror as two individual drives rather than a mirror. Because the drives are identical, it does not matter which is selected to boot.
See the Troubleshooting section if there are problems booting. Powering down and disconnecting the original ada0 disk will allow it to be kept as an offline backup.
In use, the mirror will behave just like the original single drive.
In this example, FreeBSD has already been installed on a single disk, ada0. A new disk, ada1, has been connected to the system. A one-disk mirror will be created on the new disk, the existing system copied onto it, and then the old disk will be inserted into the mirror. This slightly complex procedure is required because gmirror(8) needs to put a 512-byte block of metadata at the end of each disk, and the existing ada0 has usually had all of its space already allocated.
Load the gmirror(8) kernel module.
# gmirror load
Check the media size of the original disk with diskinfo(8).
# diskinfo -v ada0 | head -n3 /dev/ada0 512 # sectorsize 1000204821504 # mediasize in bytes (931G)
Create a mirror on the new disk. To make certain that the mirror capacity is not any larger than the original drive, gnop(8) is used to create a fake drive of the exact same size. This drive does not store any data, but is used only to limit the size of the mirror. When gmirror(8) creates the mirror, it will restrict the capacity to the size of gzero.nop even if the new drive (ada1) has more space. Note that the 1000204821504 in the second line should be equal to ada0's media size as shown by diskinfo(8) above.
# geom zero load # gnop create -s 1000204821504 gzero # gmirror label -v gm0 gzero.nop ada1 # gmirror forget gm0
gzero.nop does not store any data, so the mirror does not see it as connected. The mirror is told to “forget” unconnected components, removing references to gzero.nop. The result is a mirror device containing only a single disk, ada1.
After creating gm0, view the partition table on ada0.
This output is from a 1 TB drive. If there is some unallocated space at the end of the drive, the contents may be copied directly from ada0 to the new mirror.
However, if the output shows that all of the space on the disk is allocated like the following listing, there is no space available for the 512-byte gmirror(8) metadata at the end of the disk.
# gpart show ada0 => 63 1953525105 ada0 MBR (931G) 63 1953525105 1 freebsd [active] (931G)
In this case, the partition table must be edited to reduce the capacity by one sector on mirror/gm0. The procedure will be explained later.
In either case, partition tables on the primary disk should be copied first. It can be done by using gpart(8) backup and restore subcommands.
# gpart backup ada0 > table.ada0 # gpart backup ada0s1 > table.ada0s1
These commands create two files, table.ada0 and table.ada0s1. This example is from a 1 TB drive:
# cat table.ada0 MBR 4 1 freebsd 63 1953525105 [active]
# cat table.ada0s1 BSD 8 1 freebsd-ufs 0 4194304 2 freebsd-swap 4194304 33554432 4 freebsd-ufs 37748736 50331648 5 freebsd-ufs 88080384 41943040 6 freebsd-ufs 130023424 838860800 7 freebsd-ufs 968884224 984640881
If the whole disk was used in the output of gpart(8) show, the capacity in these partition tables must be reduced by one sector. Edit the two files, reducing the size of both the slice and last partition by one. These are the last numbers in each listing.
# cat table.ada0
MBR 4
1 freebsd 63 1953525104 [active]
# cat table.ada0s1
BSD 8
1 freebsd-ufs 0 4194304
2 freebsd-swap 4194304 33554432
4 freebsd-ufs 37748736 50331648
5 freebsd-ufs 88080384 41943040
6 freebsd-ufs 130023424 838860800
7 freebsd-ufs 968884224 984640880
If at least one sector was unallocated at the end of the disk, these two files can be used without modification.
Now restore the partition table into mirror/gm0.
# gpart restore mirror/gm0 < table.ada0 # gpart restore mirror/gm0s1 < table.ada0s1
Check the partition table with the gpart(8) show. This example has gm0s1a for /, gm0s1d for /var, gm0s1e for /usr, gm0s1f for /data1, and gm0s1g for /data2.
# gpart show mirror/gm0 => 63 1953525104 mirror/gm0 MBR (931G) 63 1953525042 1 freebsd [active] (931G) 1953525105 62 - free - (31k) # gpart show mirror/gm0s1 => 0 1953525042 mirror/gm0s1 BSD (931G) 0 2097152 1 freebsd-ufs (1.0G) 2097152 16777216 2 freebsd-swap (8.0G) 18874368 41943040 4 freebsd-ufs (20G) 60817408 20971520 5 freebsd-ufs (10G) 81788928 629145600 6 freebsd-ufs (300G) 710934528 1242590514 7 freebsd-ufs (592G) 1953525042 63 - free - (31k)
Both the slice and the last partition should have some free space at the end of each disk.
Create filesystems on these new partitions. The number of partitions will vary, matching the partitions on the original disk, ada0.
# newfs -U /dev/mirror/gm0s1a # newfs -U /dev/mirror/gm0s1d # newfs -U /dev/mirror/gm0s1e # newfs -U /dev/mirror/gm0s1f # newfs -U /dev/mirror/gm0s1g
Make the mirror bootable by installing bootcode in the MBR and bsdlabel and setting the active slice:
# gpart bootcode -b /boot/mbr mirror/gm0 # gpart set -a active -i 1 mirror/gm0 # gpart bootcode -b /boot/boot mirror/gm0s1
Adjust /etc/fstab to use the new partitions on the mirror. Back up this file first by copying it to /etc/fstab.orig.
# cp /etc/fstab /etc/fstab.orig
Edit /etc/fstab, replacing /dev/ada0 with mirror/gm0.
# Device Mountpoint FStype Options Dump Pass# /dev/mirror/gm0s1a / ufs rw 1 1 /dev/mirror/gm0s1b none swap sw 0 0 /dev/mirror/gm0s1d /var ufs rw 2 2 /dev/mirror/gm0s1e /usr ufs rw 2 2 /dev/mirror/gm0s1f /data1 ufs rw 2 2 /dev/mirror/gm0s1g /data2 ufs rw 2 2
If the gmirror(8) kernel module has not been built into the kernel, edit /boot/loader.conf to load it:
geom_mirror_load="YES"
Filesystems from the original disk can now be copied onto the mirror with dump(8) and restore(8). Note that it may take some time to create a snapshot for each filesystem dumped with dump -L.
# mount /dev/mirror/gm0s1a /mnt # dump -C16 -b64 -0aL -f - / | (cd /mnt && restore -rf -) # mount /dev/mirror/gm0s1d /mnt/var # mount /dev/mirror/gm0s1e /mnt/usr # mount /dev/mirror/gm0s1f /mnt/data1 # mount /dev/mirror/gm0s1g /mnt/data2 # dump -C16 -b64 -0aL -f - /usr | (cd /mnt/usr && restore -rf -) # dump -C16 -b64 -0aL -f - /var | (cd /mnt/var && restore -rf -) # dump -C16 -b64 -0aL -f - /data1 | (cd /mnt/data1 && restore -rf -) # dump -C16 -b64 -0aL -f - /data2 | (cd /mnt/data2 && restore -rf -)
Restart the system, booting from ada1. If everything is working, the system will boot from mirror/gm0, which now contains the same data as ada0 had previously. See the Troubleshooting section if there are problems booting.
At this point, the mirror still consists of only the single ada1 disk.
After booting from mirror/gm0 successfully, the final step is inserting ada0 into the mirror.
Important: When ada0 is inserted into the mirror, its former contents will be overwritten by data on the mirror. Make certain that mirror/gm0 has the same contents as ada0 before adding ada0 to the mirror. If there is something wrong with the contents copied by dump(8) and restore(8), revert /etc/fstab to mount the filesystems on ada0, reboot, and try the whole procedure again.
# gmirror insert gm0 ada0 GEOM_MIRROR: Device gm0: rebuilding provider ada0
Synchronization between the two disks will start immediately. gmirror(8) status shows the progress.
# gmirror status Name Status Components mirror/gm0 DEGRADED ada1 (ACTIVE) ada0 (SYNCHRONIZING, 64%)
After a while, synchronization will finish.
GEOM_MIRROR: Device gm0: rebuilding provider ada0 finished. # gmirror status Name Status Components mirror/gm0 COMPLETE ada1 (ACTIVE) ada0 (ACTIVE)
mirror/gm0 now consists of the two disks ada0 and ada1, and the contents are automatically synchronized with each other. In use, mirror/gm0 will behave just like the original single drive.
BIOS settings may have to be changed to boot from one of the new mirrored drives. Either mirror drive can be used for booting. As components of a mirror, they contain identical data.
If the boot stopped with this message, something is wrong with the mirror device:
Mounting from ufs:/dev/mirror/gm0s1a failed with error 19. Loader variables: vfs.root.mountfrom=ufs:/dev/mirror/gm0s1a vfs.root.mountfrom.options=rw Manual root filesystem specification: <fstype>:<device> [options] Mount <device> using filesystem <fstype> and with the specified (optional) option list. eg. ufs:/dev/da0s1a zfs:tank cd9660:/dev/acd0 ro (which is equivalent to: mount -t cd9660 -o ro /dev/acd0 /) ? List valid disk boot devices . Yield 1 second (for background tasks) <empty line> Abort manual input mountroot>
Forgetting to load the geom_mirror module in /boot/loader.conf can cause this problem. To fix it, boot from a FreeBSD-9 or later CD or USB stick and choose Shell at the first prompt. Then load the mirror module and mount the mirror device:
# gmirror load # mount /dev/mirror/gm0s1a /mnt
Edit /mnt/boot/loader.conf, adding a line to load the mirror module:
geom_mirror_load="YES"
Save the file and reboot.
Other problems that cause error 19 require more effort to fix. Enter ufs:/dev/ada0s1a at the prompt. Although the system should boot from ada0, another prompt to select a shell appears because /etc/fstab is incorrect. Press the Enter key at the prompt. Undo the modifications so far by reverting /etc/fstab, mounting filesystems from the original disk (ada0) instead of the mirror. Reboot the system and try the procedure again.
Enter full pathname of shell or RETURN for /bin/sh: # cp /etc/fstab.orig /etc/fstab # reboot
The wonderful part about disk mirroring is that an individual disk can fail without causing the mirror to lose any data.
ada0 is one of two drives making up the mirror in the previous example. If ada0 fails, the mirror will continue to work, providing data from the remaining working drive, ada1.
To replace the failed drive, the computer is shut down and the failed drive is physically replaced with a new drive of equal or greater capacity. Manufacturers use somewhat arbitrary values when rating drives in gigabytes, and the only way to really be sure is to compare the total count of sectors shown by diskinfo -v. A drive with larger capacity than the mirror will work, although the extra space on the new drive will not be used.
After the computer is powered back up, the mirror will be running in a “degraded” mode with only one drive. The mirror is told to forget drives that are not currently connected:
# gmirror forget gm0
Any old metadata should be cleared from the replacement disk. Then the disk, ada4 for this example, is inserted into the mirror:
# gmirror insert gm0 /dev/ada4
Resynchronization begins when the new drive is inserted into the mirror. This process of copying mirror data to a new drive can take a while. Performance of the mirror will be greatly reduced during the copy, so inserting new drives is best done when there is low demand on the computer.
Progress can be monitored with gmirror status, which shows drives that are being synchronized and the percentage of completion. During resynchronization, the status will be DEGRADED, changing to COMPLETE when the process is finished.
RAID3 is a method used to combine several disk drives into a single volume with a dedicated parity disk. In a RAID3 system, data is split up into a number of bytes that are written across all the drives in the array except for one disk which acts as a dedicated parity disk. This means that reading 1024KB from a RAID3 implementation will access all disks in the array. Performance can be enhanced by using multiple disk controllers. The RAID3 array provides a fault tolerance of 1 drive, while providing a capacity of 1 - 1/n times the total capacity of all drives in the array, where n is the number of hard drives in the array. Such a configuration is mostly suitable for storing data of larger sizes, e.g., multimedia files.
At least 3 physical hard drives are required to build a RAID3 array. Each disk must be of the same size, since I/O requests are interleaved to read or write to multiple disks in parallel. Also, due to the nature of RAID3, the number of drives must be equal to 3, 5, 9, 17, etc. (2^n + 1).
In FreeBSD, support for RAID3 is implemented by the graid3(8) GEOM class. Creating a dedicated RAID3 array on FreeBSD requires the following steps.
Note: While it is theoretically possible to boot from a RAID3 array on FreeBSD, that configuration is uncommon and is not advised.
First, load the geom_raid3.ko kernel module by issuing the following command:
# graid3 load
Alternatively, it is possible to manually load the geom_raid3.ko module:
# kldload geom_raid3.ko
Create or ensure that a suitable mount point exists:
# mkdir /multimedia/
Determine the device names for the disks which will be added to the array, and create the new RAID3 device. The final device listed will act as the dedicated parity disk. This example uses three unpartitioned ATA drives: ada1 and ada2 for data, and ada3 for parity.
# graid3 label -v gr0 /dev/ada1 /dev/ada2 /dev/ada3 Metadata value stored on /dev/ada1. Metadata value stored on /dev/ada2. Metadata value stored on /dev/ada3. Done.
Partition the newly created gr0 device and put a UFS file system on it:
# gpart create -s GPT /dev/raid3/gr0 # gpart add -t freebsd-ufs /dev/raid3/gr0 # newfs -j /dev/raid3/gr0p1
Many numbers will glide across the screen, and after a bit of time, the process will be complete. The volume has been created and is ready to be mounted.
The last step is to mount the file system:
# mount /dev/raid3/gr0p1 /multimedia/
The RAID3 array is now ready to use.
Additional configuration is needed to retain the above setup across system reboots.
The geom_raid3.ko module must be loaded before the array can be mounted. To automatically load the kernel module during the system initialization, add the following line to the /boot/loader.conf file:
geom_raid3_load="YES"
The following volume information must be added to the /etc/fstab file in order to automatically mount the array's file system during the system boot process:
/dev/raid3/gr0p1 /multimedia ufs rw 2 2
GEOM supports the remote use of devices, such as disks, CD-ROMs, files, etc. through the use of the gate utilities. This is similar to NFS.
To begin, an exports file must be created. This file specifies who is permitted to access the exported resources and what level of access they are offered. For example, to export the fourth slice on the first SCSI disk, the following /etc/gg.exports is more than adequate:
192.168.1.0/24 RW /dev/da0s4d
It will allow all hosts inside the private network access the file system on the da0s4d partition.
To export this device, ensure it is not currently mounted, and start the ggated(8) server daemon:
# ggated
Now to mount the device on the client machine, issue the following commands:
# ggatec create -o rw 192.168.1.1 /dev/da0s4d ggate0 # mount /dev/ggate0 /mnt
From here on, the device may be accessed through the /mnt mount point.
Note: It should be pointed out that this will fail if the device is currently mounted on either the server machine or any other machine on the network.
When the device is no longer needed, it may be safely unmounted with the umount(8) command, similar to any other disk device.
During system initialization, the FreeBSD kernel will create device nodes as devices are found. This method of probing for devices raises some issues, for instance what if a new disk device is added via USB? It is very likely that a flash device may be handed the device name of da0 and the original da0 shifted to da1. This will cause issues mounting file systems if they are listed in /etc/fstab, effectively, this may also prevent the system from booting.
One solution to this issue is to chain the SCSI devices in order so a new device added to the SCSI card will be issued unused device numbers. But what about USB devices which may replace the primary SCSI disk? This happens because USB devices are usually probed before the SCSI card. One solution is to only insert these devices after the system has been booted. Another method could be to use only a single ATA drive and never list the SCSI devices in /etc/fstab.
A better solution is available. By using the glabel utility, an administrator or user may label their disk devices and use these labels in /etc/fstab. Because glabel stores the label in the last sector of a given provider, the label will remain persistent across reboots. By using this label as a device, the file system may always be mounted regardless of what device node it is accessed through.
Note: This goes without saying that a label be permanent. The glabel utility may be used to create both a transient and permanent label. Only the permanent label will remain consistent across reboots. See the glabel(8) manual page for more information on the differences between labels.
There are two types of labels, a generic label and a file system label. Labels can be permanent or temporary. Permanent labels can be created with the tunefs(8) or newfs(8) commands. They will then be created in a sub-directory of /dev, which will be named according to their file system type. For example, UFS2 file system labels will be created in the /dev/ufs directory. Permanent labels can also be created with the glabel label command. These are not file system specific, and will be created in the /dev/label directory.
A temporary label will go away with the next reboot. These labels will be created in the /dev/label directory and are perfect for experimentation. A temporary label can be created using the glabel create command. For more information, please read the manual page of glabel(8).
To create a permanent label for a UFS2 file system without destroying any data, issue the following command:
# tunefs -L home /dev/da3
Warning: If the file system is full, this may cause data corruption; however, if the file system is full then the main goal should be removing stale files and not adding labels.
A label should now exist in /dev/ufs which may be added to /etc/fstab:
/dev/ufs/home /home ufs rw 2 2
Note: The file system must not be mounted while attempting to run tunefs.
Now the file system may be mounted like normal:
# mount /home
From this point on, so long as the geom_label.ko kernel module is loaded at boot with /boot/loader.conf or the GEOM_LABEL kernel option is present, the device node may change without any ill effect on the system.
File systems may also be created with a default label by using the -L
flag with newfs. See the newfs(8) manual page
for more information.
The following command can be used to destroy the label:
# glabel destroy home
The following example shows how to label the partitions of a boot disk.
Example 20-1. Labeling Partitions on the Boot Disk
By permanently labeling the partitions on the boot disk, the system should be able to continue to boot normally, even if the disk is moved to another controller or transferred to a different system. For this example, it is assumed that a single ATA disk is used, which is currently recognized by the system as ad0. It is also assumed that the standard FreeBSD partition scheme is used, with /, /var, /usr and /tmp file systems, as well as a swap partition.
Reboot the system, and at the loader(8) prompt, press 4 to boot into single user mode. Then enter the following commands:
# glabel label rootfs /dev/ad0s1a GEOM_LABEL: Label for provider /dev/ad0s1a is label/rootfs # glabel label var /dev/ad0s1d GEOM_LABEL: Label for provider /dev/ad0s1d is label/var # glabel label usr /dev/ad0s1f GEOM_LABEL: Label for provider /dev/ad0s1f is label/usr # glabel label tmp /dev/ad0s1e GEOM_LABEL: Label for provider /dev/ad0s1e is label/tmp # glabel label swap /dev/ad0s1b GEOM_LABEL: Label for provider /dev/ad0s1b is label/swap # exit
The system will continue with multi-user boot. After the boot completes, edit /etc/fstab and replace the conventional device names, with their respective labels. The final /etc/fstab file will look like the following:
# Device Mountpoint FStype Options Dump Pass# /dev/label/swap none swap sw 0 0 /dev/label/rootfs / ufs rw 1 1 /dev/label/tmp /tmp ufs rw 2 2 /dev/label/usr /usr ufs rw 2 2 /dev/label/var /var ufs rw 2 2
The system can now be rebooted. If everything went well, it will come up normally and mount will show:
# mount /dev/label/rootfs on / (ufs, local) devfs on /dev (devfs, local) /dev/label/tmp on /tmp (ufs, local, soft-updates) /dev/label/usr on /usr (ufs, local, soft-updates) /dev/label/var on /var (ufs, local, soft-updates)
Starting with FreeBSD 7.2, the glabel(8) class supports a new label type for UFS file systems, based on the unique file system id, ufsid. These labels may be found in the /dev/ufsid directory and are created automatically during system startup. It is possible to use ufsid labels to mount partitions using the /etc/fstab facility. Use the glabel status command to receive a list of file systems and their corresponding ufsid labels:
% glabel status Name Status Components ufsid/486b6fc38d330916 N/A ad4s1d ufsid/486b6fc16926168e N/A ad4s1f
In the above example ad4s1d represents the /var file system, while ad4s1f represents the /usr file system. Using the ufsid values shown, these partitions may now be mounted with the following entries in /etc/fstab:
/dev/ufsid/486b6fc38d330916 /var ufs rw 2 2 /dev/ufsid/486b6fc16926168e /usr ufs rw 2 2
Any partitions with ufsid labels can be mounted in this way, eliminating the need to create permanent labels for them manually, while still enjoying the benefits of device-name independent mounting.
With the release of FreeBSD 7.0, the long awaited feature of journals has been implemented. The implementation itself is provided through the GEOM subsystem and is easily configured via the gjournal(8) utility.
What is journaling? Journaling capability stores a log of file system transactions, i.e.: changes that make up a complete disk write operation, before meta-data and file writes are committed to the disk proper. This transaction log can later be replayed to redo file system transactions, preventing file system inconsistencies.
This method is yet another mechanism to protect against data loss and inconsistencies of the file system. Unlike Soft Updates which tracks and enforces meta-data updates and Snapshots which is an image of the file system, an actual log is stored in disk space specifically reserved for this task, and in some cases may be stored on another disk entirely.
Unlike other file system journaling implementations, the gjournal method is block based and not implemented as part of the file system - only as a GEOM extension.
To enable support for gjournal, the FreeBSD kernel must have the following option - which is the default on FreeBSD 7.0 and later systems:
options UFS_GJOURNAL
If journaled volumes need to be mounted during startup, the geom_journal.ko kernel module will also have to be loaded, by adding the following line in /boot/loader.conf:
geom_journal_load="YES"
Alternatively, this function can also be built into a custom kernel, by adding the following line in the kernel configuration file:
options GEOM_JOURNAL
Creating a journal on a free file system may now be done using the following steps, considering that the da4 is a new SCSI disk:
# gjournal load # gjournal label /dev/da4
At this point, there should be a /dev/da4 device node and a /dev/da4.journal device node. A file system may now be created on this device:
# newfs -O 2 -J /dev/da4.journal
The previously issued command will create a UFS2 file system on the journaled device.
Effectively mount the device at the desired point with:
# mount /dev/da4.journal /mnt
Note: In the case of several slices, a journal will be created for each individual slice. For instance, if ad4s1 and ad4s2 are both slices, then gjournal will create ad4s1.journal and ad4s2.journal.
For better performance, keeping the journal on another disk may be desired. For these cases, the journal provider or storage device should be listed after the device to enable journaling on. Journaling may also be enabled on current file systems by using tunefs; however, always make a backup before attempting to alter a file system. In most cases, the gjournal will fail if it is unable to create the actual journal but this does not protect against data loss incurred as a result of misusing tunefs.
It is also possible to journal the boot disk of a FreeBSD system. Please refer to the article Implementing UFS Journaling on a Desktop PC for detailed instructions on this task.
File systems are an integral part of any operating system. They allow for users to upload and store files, provide access to data, and of course, make hard drives useful. Different operating systems usually have one major aspect in common, that is their native file system. On FreeBSD this file system is known as the Fast File System or FFS which is built on the original Unix™ File System, also known as UFS. This is the native file system on FreeBSD which is placed on hard disks for access to data.
FreeBSD also supports a multitude of different file systems to provide support for accessing data from other operating systems locally, i.e., data stored on locally attached USB storage devices, flash drives, and hard disks. There is also support for some non-native file systems. These are file systems developed on other operating systems, like the Linux Extended File System (EXT), and the Sun Z File System (ZFS).
There are different levels of support for the various file systems in FreeBSD. Some will require a kernel module to be loaded, others may require a toolset to be installed. This chapter is designed to help users of FreeBSD access other file systems on their systems, starting with the Sun Z file system.
After reading this chapter, you will know:
The difference between native and supported file systems.
What file systems are supported by FreeBSD.
How to enable, configure, access and make use of non-native file systems.
Before reading this chapter, you should:
Understand UNIX and FreeBSD basics (Chapter 4).
Be familiar with the basics of kernel configuration/compilation (Chapter 9).
Feel comfortable installing third party software in FreeBSD (Chapter 5).
Have some familiarity with disks, storage and device names in FreeBSD (Chapter 19).
The Z file system, developed by Sun, is a new technology designed to use a pooled storage method. This means that space is only used as it is needed for data storage. It has also been designed for maximum data integrity, supporting data snapshots, multiple copies, and data checksums. A new data replication model, known as RAID-Z has been added. The RAID-Z model is similar to RAID5 but is designed to prevent data write corruption.
The ZFS subsystem utilizes much of the system resources, so some tuning may be required to provide maximum efficiency during every-day use. As an experimental feature in FreeBSD this may change in the near future; however, at this time, the following steps are recommended.
The total system memory should be at least one gigabyte, with two gigabytes or more recommended. In all of the examples here, the system has one gigabyte of memory with several other tuning mechanisms in place.
Some people have had luck using fewer than one gigabyte of memory, but with such a limited amount of physical memory, when the system is under heavy load, it is very plausible that FreeBSD will panic due to memory exhaustion.
It is recommended that unused drivers and options be removed from the kernel configuration file. Since most devices are available as modules, they may be loaded using the /boot/loader.conf file.
Users of the i386 architecture should add the following option to their kernel configuration file, rebuild their kernel, and reboot:
options KVA_PAGES=512
This option will expand the kernel address space, thus allowing the vm.kvm_size
tunable to be pushed beyond the currently
imposed limit of 1 GB (2 GB for PAE).
To find the most suitable value for this option, divide the desired address
space in megabytes by four (4). In this case, it is 512
for 2 GB.
The kmem address space should be increased on all FreeBSD architectures. On the test system with one gigabyte of physical memory, success was achieved with the following options which should be placed in the /boot/loader.conf file and the system restarted:
vm.kmem_size="330M" vm.kmem_size_max="330M" vfs.zfs.arc_max="40M" vfs.zfs.vdev.cache.size="5M"
For a more detailed list of recommendations for ZFS-related tuning, see http://wiki.freebsd.org/ZFSTuningGuide.
There is a start up mechanism that allows FreeBSD to mount ZFS pools during system initialization. To set it, issue the following commands:
# echo 'zfs_enable="YES"' >> /etc/rc.conf # /etc/rc.d/zfs start
The remainder of this document assumes three SCSI disks are available, and their device names are da0, da1 and da2. Users of IDE hardware may use the ad devices in place of SCSI hardware.
To create a simple, non-redundant ZFS pool using a single disk device, use the zpool command:
# zpool create example /dev/da0
To view the new pool, review the output of df:
# df Filesystem 1K-blocks Used Avail Capacity Mounted on /dev/ad0s1a 2026030 235230 1628718 13% / devfs 1 1 0 100% /dev /dev/ad0s1d 54098308 1032846 48737598 2% /usr example 17547136 0 17547136 0% /example
This output clearly shows the example pool has not only been created but mounted as well. It is also accessible just like a normal file system, files may be created on it and users are able to browse it as in the following example:
# cd /example # ls # touch testfile # ls -al total 4 drwxr-xr-x 2 root wheel 3 Aug 29 23:15 . drwxr-xr-x 21 root wheel 512 Aug 29 23:12 .. -rw-r--r-- 1 root wheel 0 Aug 29 23:15 testfile
Unfortunately this pool is not taking advantage of any ZFS features. Create a file system on this pool, and enable compression on it:
# zfs create example/compressed # zfs set compression=gzip example/compressed
The example/compressed is now a ZFS compressed file system. Try copying some large files to it by copying them to /example/compressed.
The compression may now be disabled with:
# zfs set compression=off example/compressed
To unmount the file system, issue the following command and then verify by using the df utility:
# zfs umount example/compressed # df Filesystem 1K-blocks Used Avail Capacity Mounted on /dev/ad0s1a 2026030 235232 1628716 13% / devfs 1 1 0 100% /dev /dev/ad0s1d 54098308 1032864 48737580 2% /usr example 17547008 0 17547008 0% /example
Re-mount the file system to make it accessible again, and verify with df:
# zfs mount example/compressed # df Filesystem 1K-blocks Used Avail Capacity Mounted on /dev/ad0s1a 2026030 235234 1628714 13% / devfs 1 1 0 100% /dev /dev/ad0s1d 54098308 1032864 48737580 2% /usr example 17547008 0 17547008 0% /example example/compressed 17547008 0 17547008 0% /example/compressed
The pool and file system may also be observed by viewing the output from mount:
# mount /dev/ad0s1a on / (ufs, local) devfs on /dev (devfs, local) /dev/ad0s1d on /usr (ufs, local, soft-updates) example on /example (zfs, local) example/data on /example/data (zfs, local) example/compressed on /example/compressed (zfs, local)
As observed, ZFS file systems, after creation, may be used like ordinary file systems; however, many other features are also available. In the following example, a new file system, data is created. Important files will be stored here, so the file system is set to keep two copies of each data block:
# zfs create example/data # zfs set copies=2 example/data
It is now possible to see the data and space utilization by issuing df again:
# df Filesystem 1K-blocks Used Avail Capacity Mounted on /dev/ad0s1a 2026030 235234 1628714 13% / devfs 1 1 0 100% /dev /dev/ad0s1d 54098308 1032864 48737580 2% /usr example 17547008 0 17547008 0% /example example/compressed 17547008 0 17547008 0% /example/compressed example/data 17547008 0 17547008 0% /example/data
Notice that each file system on the pool has the same amount of available space. This is the reason for using df through these examples, to show that the file systems are using only the amount of space they need and will all draw from the same pool. The ZFS file system does away with concepts such as volumes and partitions, and allows for several file systems to occupy the same pool. Destroy the file systems, and then destroy the pool as they are no longer needed:
# zfs destroy example/compressed # zfs destroy example/data # zpool destroy example
Disks go bad and fail, an unavoidable trait. When this disk goes bad, the data will be lost. One method of avoiding data loss due to a failed hard disk is to implement a RAID. ZFS supports this feature in its pool design which is covered in the next section.
As previously noted, this section will assume that three SCSI disks exist as devices da0, da1 and da2 (or ad0 and beyond in case IDE disks are being used). To create a RAID-Z pool, issue the following command:
# zpool create storage raidz da0 da1 da2
Note: Sun recommends that the amount of devices used in a RAID-Z configuration is between three and nine. If your needs call for a single pool to consist of 10 disks or more, consider breaking it up into smaller RAID-Z groups. If you only have two disks and still require redundancy, consider using a ZFS mirror instead. See the zpool(8) manual page for more details.
The storage zpool should have been created. This may be verified by using the mount(8) and df(1) commands as before. More disk devices may have been allocated by adding them to the end of the list above. Make a new file system in the pool, called home, where user files will eventually be placed:
# zfs create storage/home
It is now possible to enable compression and keep extra copies of the user's home directories and files. This may be accomplished just as before using the following commands:
# zfs set copies=2 storage/home # zfs set compression=gzip storage/home
To make this the new home directory for users, copy the user data to this directory, and create the appropriate symbolic links:
# cp -rp /home/* /storage/home # rm -rf /home /usr/home # ln -s /storage/home /home # ln -s /storage/home /usr/home
Users should now have their data stored on the freshly created /storage/home file system. Test by adding a new user and logging in as that user.
Try creating a snapshot which may be rolled back later:
# zfs snapshot storage/home@08-30-08
Note that the snapshot option will only capture a real file system, not a home directory or a file. The @ character is a delimiter used between the file system name or the volume name. When a user's home directory gets trashed, restore it with:
# zfs rollback storage/home@08-30-08
To get a list of all available snapshots, run ls in the file system's .zfs/snapshot directory. For example, to see the previously taken snapshot, perform the following command:
# ls /storage/home/.zfs/snapshot
It is possible to write a script to perform monthly snapshots on user data; however, over time, snapshots may consume a great deal of disk space. The previous snapshot may be removed using the following command:
# zfs destroy storage/home@08-30-08
After all of this testing, there is no reason we should keep /storage/home around in its present state. Make it the real /home file system:
# zfs set mountpoint=/home storage/home
Issuing the df and mount commands will show that the system now treats our file system as the real /home:
# mount /dev/ad0s1a on / (ufs, local) devfs on /dev (devfs, local) /dev/ad0s1d on /usr (ufs, local, soft-updates) storage on /storage (zfs, local) storage/home on /home (zfs, local) # df Filesystem 1K-blocks Used Avail Capacity Mounted on /dev/ad0s1a 2026030 235240 1628708 13% / devfs 1 1 0 100% /dev /dev/ad0s1d 54098308 1032826 48737618 2% /usr storage 26320512 0 26320512 0% /storage storage/home 26320512 0 26320512 0% /home
This completes the RAID-Z configuration. To get status updates about the file systems created during the nightly periodic(8) runs, issue the following command:
# echo 'daily_status_zfs_enable="YES"' >> /etc/periodic.conf
Every software RAID has a method of monitoring their state. ZFS is no exception. The status of RAID-Z devices may be viewed with the following command:
# zpool status -x
If all pools are healthy and everything is normal, the following message will be returned:
all pools are healthy
If there is an issue, perhaps a disk has gone offline, the pool state will be returned and look similar to:
pool: storage state: DEGRADED status: One or more devices has been taken offline by the administrator. Sufficient replicas exist for the pool to continue functioning in a degraded state. action: Online the device using 'zpool online' or replace the device with 'zpool replace'. scrub: none requested config: NAME STATE READ WRITE CKSUM storage DEGRADED 0 0 0 raidz1 DEGRADED 0 0 0 da0 ONLINE 0 0 0 da1 OFFLINE 0 0 0 da2 ONLINE 0 0 0 errors: No known data errors
This states that the device was taken offline by the administrator. This is true for this particular example. To take the disk offline, the following command was used:
# zpool offline storage da1
It is now possible to replace the da1 after the system has been powered down. When the system is back online, the following command may issued to replace the disk:
# zpool replace storage da1
From here, the status may be checked again, this time without the -x
flag to get state information:
# zpool status storage pool: storage state: ONLINE scrub: resilver completed with 0 errors on Sat Aug 30 19:44:11 2008 config: NAME STATE READ WRITE CKSUM storage ONLINE 0 0 0 raidz1 ONLINE 0 0 0 da0 ONLINE 0 0 0 da1 ONLINE 0 0 0 da2 ONLINE 0 0 0 errors: No known data errors
As shown from this example, everything appears to be normal.
As previously mentioned, ZFS uses checksums to verify the integrity of stored data. They are enabled automatically upon creation of file systems and may be disabled using the following command:
# zfs set checksum=off storage/home
This is not a wise idea, however, as checksums take very little storage space and are more useful when enabled. There also appears to be no noticeable costs in having them enabled. While enabled, it is possible to have ZFS check data integrity using checksum verification. This process is known as “scrubbing.” To verify the data integrity of the storage pool, issue the following command:
# zpool scrub storage
This process may take considerable time depending on the amount of data stored. It is also very I/O intensive, so much that only one of these operations may be run at any given time. After the scrub has completed, the status is updated and may be viewed by issuing a status request:
# zpool status storage pool: storage state: ONLINE scrub: scrub completed with 0 errors on Sat Aug 30 19:57:37 2008 config: NAME STATE READ WRITE CKSUM storage ONLINE 0 0 0 raidz1 ONLINE 0 0 0 da0 ONLINE 0 0 0 da1 ONLINE 0 0 0 da2 ONLINE 0 0 0 errors: No known data errors
The completion time is in plain view in this example. This feature helps to ensure data integrity over a long period of time.
There are many more options for the Z file system, see the zfs(8) and zpool(8) manual pages.
ZFS supports different types of quotas; the refquota, the general quota, the user quota, and the group quota. This section will explain the basics of each one, and include some usage instructions.
Quotas limit the amount of space that a dataset and its descendants can consume, and enforce a limit on the amount of space used by filesystems and snapshots for the descendants. In terms of users, quotas are useful to limit the amount of space a particular user can use.
Note: Quotas cannot be set on volumes, as the volsize property acts as an implicit quota.
The refquota, refquota=size, limits the amount of space a dataset can consume by enforcing a hard limit on the space used. However, this hard limit does not include space used by descendants, such as file systems or snapshots.
To enforce a general quota of 10 GB for storage/home/bob, use the following:
# zfs set quota=10G storage/home/bob
User quotas limit the amount of space that can be used by the specified user. The general format is userquota@user=size, and the user's name must be in one of the following formats:
POSIX compatible name (e.g., joe).
POSIX numeric ID (e.g., 789).
SID name (e.g., [email protected]).
SID numeric ID (e.g., S-1-123-456-789).
For example, to enforce a quota of 50 GB for a user named joe, use the following:
# zfs set userquota@joe=50G
To remove the quota or make sure that one is not set, instead use:
# zfs set userquota@joe=none
User quota properties are not displayed by zfs get all. Non-root users can only see their own quotas unless they have been granted the userquota privilege. Users with this privilege are able to view and set everyone's quota.
The group quota limits the amount of space that a specified user group can consume. The general format is groupquota@group=size.
To set the quota for the group firstgroup to 50 GB, use:
# zfs set groupquota@firstgroup=50G
To remove the quota for the group firstgroup, or make sure that one is not set, instead use:
# zfs set groupquota@firstgroup=none
As with the user quota property, non-root users can only see the quotas associated with the user groups that they belong to, however a root user or a user with the groupquota privilege can view and set all quotas for all groups.
The zfs userspace subcommand displays the amount of space consumed by each user on the specified filesystem or snapshot, along with any specified quotas. The zfs groupspace subcommand does the same for groups. For more information about supported options, or only displaying specific options, see zfs(1).
To list the quota for storage/home/bob, if you have the correct privileges or are root, use the following:
# zfs get quota storage/home/bob
ZFS supports two types of space reservations. This section will explain the basics of each one, and include some usage instructions.
The reservation property makes it possible to reserve a minimum amount of space guaranteed for a dataset and its descendants. This means that if a 10 GB reservation is set on storage/home/bob, if disk space gets low, at least 10 GB of space is reserved for this dataset. The refreservation property sets or indicates the minimum amount of space guaranteed to a dataset excluding descendants, such as snapshots. As an example, if a snapshot was taken of storage/home/bob, enough disk space would have to exist outside of the refreservation amount for the operation to succeed because descendants of the main data set are not counted by the refreservation amount and so do not encroach on the space set.
Reservations of any sort are useful in many situations, for example planning and testing the suitability of disk space allocation in a new system, or ensuring that enough space is available on file systems for system recovery procedures and files.
The general format of the reservation property is reservation=size, so to set a reservation of 10 GB on storage/home/bobthe below command is used:
# zfs set reservation=10G storage/home/bob
To make sure that no reservation is set, or to remove a reservation, instead use:
# zfs set reservation=none storage/home/bob
The same principle can be applied to the refreservation property for setting a refreservation, with the general format refreservation=size.
To check if any reservations or refreservations exist on storage/home/bob, execute one of the following commands:
# zfs get reservation storage/home/bob # zfs get refreservation storage/home/bob
This section will describe some of the Linux filesystems supported by FreeBSD.
The ext2fs(5) file system kernel implementation was written by Godmar Back, and the driver first appeared in FreeBSD 2.2. In FreeBSD 8 and earlier, the code is licensed under the GNU Public License, however under FreeBSD 9, the code has been rewritten and it is now licensed under the BSD license.
The ext2fs(5) driver will allow the FreeBSD kernel to both read and write to ext2 file systems.
First, load the kernel loadable module:
# kldload ext2fs
Then, to mount an ext2fs(5) volume located on /dev/ad1s1:
# mount -t ext2fs /dev/ad1s1 /mnt
The X file system, XFS, was originally
written by SGI for the IRIX operating system, and they ported it to
Linux. The source code has been released under the
GNU Public License. See this page for more details.
The FreeBSD port was started by Russel Cattelan, Alexander Kabaev <[email protected]>
, and
Craig Rodrigues <[email protected]>
.
To load XFS as a kernel-loadable module:
# kldload xfs
The xfs(5) driver lets the FreeBSD kernel access XFS filesystems. However, at present only read-only access is supported. Writing to a volume is not possible.
To mount a xfs(5) volume located on /dev/ad1s1, do the following:
# mount -t xfs /dev/ad1s1 /mnt
Also useful to note is that the sysutils/xfsprogs port contains the mkfs.xfs utility which enables creation of XFS filesystems, plus utilities for analysing and repairing them.
The -p flag to mkfs.xfs can be used to create an xfs(5) filesystem which is populated with files and other metadata. This can be used to quickly create a read-only filesystem which can be tested on FreeBSD.
The Reiser file system, ReiserFS, was ported to FreeBSD by Jean-Sébastien Pédron
<[email protected]>
, and has been
released under the GNU Public
License.
The ReiserFS driver will permit the FreeBSD kernel to access ReiserFS file systems and read their contents, but not write to them, currently.
First, the kernel-loadable module needs to be loaded:
# kldload reiserfs
Then, to mount a ReiserFS volume located on /dev/ad1s1:
# mount -t reiserfs /dev/ad1s1 /mnt
No matter what disks you have, there are always potential problems:
They can be too small.
They can be too slow.
They can be too unreliable.
Various solutions to these problems have been proposed and implemented. One way some users safeguard themselves against such issues is through the use of multiple, and sometimes redundant, disks. In addition to supporting various cards and controllers for hardware RAID systems, the base FreeBSD system includes the Vinum Volume Manager, a block device driver that implements virtual disk drives. Vinum is a so-called Volume Manager, a virtual disk driver that addresses these three problems. Vinum provides more flexibility, performance, and reliability than traditional disk storage, and implements RAID-0, RAID-1, and RAID-5 models both individually and in combination.
This chapter provides an overview of potential problems with traditional disk storage, and an introduction to the Vinum Volume Manager.
Note: Starting with FreeBSD 5, Vinum has been rewritten in order to fit into the GEOM architecture (Chapter 20), retaining the original ideas, terminology, and on-disk metadata. This rewrite is called gvinum (for GEOM vinum). The following text usually refers to Vinum as an abstract name, regardless of the implementation variant. Any command invocations should now be done using the gvinum command, and the name of the kernel module has been changed from vinum.ko to geom_vinum.ko, and all device nodes reside under /dev/gvinum instead of /dev/vinum. As of FreeBSD 6, the old Vinum implementation is no longer available in the code base.
Disks are getting bigger, but so are data storage requirements. Often you will find you want a file system that is bigger than the disks you have available. Admittedly, this problem is not as acute as it was ten years ago, but it still exists. Some systems have solved this by creating an abstract device which stores its data on a number of disks.
Modern systems frequently need to access data in a highly concurrent manner. For example, large FTP or HTTP servers can maintain thousands of concurrent sessions and have multiple 100 Mbit/s connections to the outside world, well beyond the sustained transfer rate of most disks.
Current disk drives can transfer data sequentially at up to 70 MB/s, but this value is of little importance in an environment where many independent processes access a drive, where they may achieve only a fraction of these values. In such cases it is more interesting to view the problem from the viewpoint of the disk subsystem: the important parameter is the load that a transfer places on the subsystem, in other words the time for which a transfer occupies the drives involved in the transfer.
In any disk transfer, the drive must first position the heads, wait for the first sector to pass under the read head, and then perform the transfer. These actions can be considered to be atomic: it does not make any sense to interrupt them.
Consider a typical transfer of about 10 kB: the current generation of high-performance disks can position the heads in an average of 3.5 ms. The fastest drives spin at 15,000 rpm, so the average rotational latency (half a revolution) is 2 ms. At 70 MB/s, the transfer itself takes about 150 μs, almost nothing compared to the positioning time. In such a case, the effective transfer rate drops to a little over 1 MB/s and is clearly highly dependent on the transfer size.
The traditional and obvious solution to this bottleneck is “more spindles”: rather than using one large disk, it uses several smaller disks with the same aggregate storage space. Each disk is capable of positioning and transferring independently, so the effective throughput increases by a factor close to the number of disks used.
The exact throughput improvement is, of course, smaller than the number of disks involved: although each drive is capable of transferring in parallel, there is no way to ensure that the requests are evenly distributed across the drives. Inevitably the load on one drive will be higher than on another.
The evenness of the load on the disks is strongly dependent on the way the data is shared across the drives. In the following discussion, it is convenient to think of the disk storage as a large number of data sectors which are addressable by number, rather like the pages in a book. The most obvious method is to divide the virtual disk into groups of consecutive sectors the size of the individual physical disks and store them in this manner, rather like taking a large book and tearing it into smaller sections. This method is called concatenation and has the advantage that the disks are not required to have any specific size relationships. It works well when the access to the virtual disk is spread evenly about its address space. When access is concentrated on a smaller area, the improvement is less marked. Figure 22-1 illustrates the sequence in which storage units are allocated in a concatenated organization.
An alternative mapping is to divide the address space into smaller, equal-sized components and store them sequentially on different devices. For example, the first 256 sectors may be stored on the first disk, the next 256 sectors on the next disk and so on. After filling the last disk, the process repeats until the disks are full. This mapping is called striping or RAID-0 [11]. Striping requires somewhat more effort to locate the data, and it can cause additional I/O load where a transfer is spread over multiple disks, but it can also provide a more constant load across the disks. Figure 22-2 illustrates the sequence in which storage units are allocated in a striped organization.
The final problem with current disks is that they are unreliable. Although disk drive reliability has increased tremendously over the last few years, they are still the most likely core component of a server to fail. When they do, the results can be catastrophic: replacing a failed disk drive and restoring data to it can take days.
The traditional way to approach this problem has been mirroring, keeping two copies of the data on different physical hardware. Since the advent of the RAID levels, this technique has also been called RAID level 1 or RAID-1. Any write to the volume writes to both locations; a read can be satisfied from either, so if one drive fails, the data is still available on the other drive.
Mirroring has two problems:
The price. It requires twice as much disk storage as a non-redundant solution.
The performance impact. Writes must be performed to both drives, so they take up twice the bandwidth of a non-mirrored volume. Reads do not suffer from a performance penalty: it even looks as if they are faster.
An alternative solution is parity, implemented in the RAID levels 2, 3, 4 and 5. Of these, RAID-5 is the most interesting. As implemented in Vinum, it is a variant on a striped organization which dedicates one block of each stripe to parity one of the other blocks. As implemented by Vinum, a RAID-5 plex is similar to a striped plex, except that it implements RAID-5 by including a parity block in each stripe. As required by RAID-5, the location of this parity block changes from one stripe to the next. The numbers in the data blocks indicate the relative block numbers.
Compared to mirroring, RAID-5 has the advantage of requiring significantly less storage space. Read access is similar to that of striped organizations, but write access is significantly slower, approximately 25% of the read performance. If one drive fails, the array can continue to operate in degraded mode: a read from one of the remaining accessible drives continues normally, but a read from the failed drive is recalculated from the corresponding block from all the remaining drives.
In order to address these problems, Vinum implements a four-level hierarchy of objects:
The most visible object is the virtual disk, called a volume. Volumes have essentially the same properties as a UNIX disk drive, though there are some minor differences. They have no size limitations.
Volumes are composed of plexes, each of which represent the total address space of a volume. This level in the hierarchy thus provides redundancy. Think of plexes as individual disks in a mirrored array, each containing the same data.
Since Vinum exists within the UNIX disk storage framework, it would be possible to use UNIX partitions as the building block for multi-disk plexes, but in fact this turns out to be too inflexible: UNIX disks can have only a limited number of partitions. Instead, Vinum subdivides a single UNIX partition (the drive) into contiguous areas called subdisks, which it uses as building blocks for plexes.
Subdisks reside on Vinum drives, currently UNIX partitions. Vinum drives can contain any number of subdisks. With the exception of a small area at the beginning of the drive, which is used for storing configuration and state information, the entire drive is available for data storage.
The following sections describe the way these objects provide the functionality required of Vinum.
Plexes can include multiple subdisks spread over all drives in the Vinum configuration. As a result, the size of an individual drive does not limit the size of a plex, and thus of a volume.
Vinum implements mirroring by attaching multiple plexes to a volume. Each plex is a representation of the data in a volume. A volume may contain between one and eight plexes.
Although a plex represents the complete data of a volume, it is possible for parts of the representation to be physically missing, either by design (by not defining a subdisk for parts of the plex) or by accident (as a result of the failure of a drive). As long as at least one plex can provide the data for the complete address range of the volume, the volume is fully functional.
Vinum implements both concatenation and striping at the plex level:
A concatenated plex uses the address space of each subdisk in turn.
A striped plex stripes the data across each subdisk. The subdisks must all have the same size, and there must be at least two subdisks in order to distinguish it from a concatenated plex.
The version of Vinum supplied with FreeBSD 9.1 implements two kinds of plex:
Concatenated plexes are the most flexible: they can contain any number of subdisks, and the subdisks may be of different length. The plex may be extended by adding additional subdisks. They require less CPU time than striped plexes, though the difference in CPU overhead is not measurable. On the other hand, they are most susceptible to hot spots, where one disk is very active and others are idle.
The greatest advantage of striped (RAID-0) plexes is that they reduce hot spots: by choosing an optimum sized stripe (about 256 kB), you can even out the load on the component drives. The disadvantages of this approach are (fractionally) more complex code and restrictions on subdisks: they must be all the same size, and extending a plex by adding new subdisks is so complicated that Vinum currently does not implement it. Vinum imposes an additional, trivial restriction: a striped plex must have at least two subdisks, since otherwise it is indistinguishable from a concatenated plex.
Table 22-1 summarizes the advantages and disadvantages of each plex organization.
Vinum maintains a configuration database which describes the objects known to an individual system. Initially, the user creates the configuration database from one or more configuration files with the aid of the gvinum(8) utility program. Vinum stores a copy of its configuration database on each disk slice (which Vinum calls a device) under its control. This database is updated on each state change, so that a restart accurately restores the state of each Vinum object.
The configuration file describes individual Vinum objects. The definition of a simple volume might be:
drive a device /dev/da3h volume myvol plex org concat sd length 512m drive a
This file describes four Vinum objects:
The drive line describes a disk partition (drive) and its location relative to the underlying hardware. It is given the symbolic name a. This separation of the symbolic names from the device names allows disks to be moved from one location to another without confusion.
The volume line describes a volume. The only required attribute is the name, in this case myvol.
The plex line defines a plex. The only required parameter is the organization, in this case concat. No name is necessary: the system automatically generates a name from the volume name by adding the suffix .px, where x is the number of the plex in the volume. Thus this plex will be called myvol.p0.
The sd line describes a subdisk. The minimum specifications are the name of a drive on which to store it, and the length of the subdisk. As with plexes, no name is necessary: the system automatically assigns names derived from the plex name by adding the suffix .sx, where x is the number of the subdisk in the plex. Thus Vinum gives this subdisk the name myvol.p0.s0.
After processing this file, gvinum(8) produces the following output:
# gvinum -> create config1 Configuration summary Drives: 1 (4 configured) Volumes: 1 (4 configured) Plexes: 1 (8 configured) Subdisks: 1 (16 configured) D a State: up Device /dev/da3h Avail: 2061/2573 MB (80%) V myvol State: up Plexes: 1 Size: 512 MB P myvol.p0 C State: up Subdisks: 1 Size: 512 MB S myvol.p0.s0 State: up PO: 0 B Size: 512 MB
This output shows the brief listing format of gvinum(8). It is represented graphically in Figure 22-4.
This figure, and the ones which follow, represent a volume, which contains the plexes, which in turn contain the subdisks. In this trivial example, the volume contains one plex, and the plex contains one subdisk.
This particular volume has no specific advantage over a conventional disk partition. It contains a single plex, so it is not redundant. The plex contains a single subdisk, so there is no difference in storage allocation from a conventional disk partition. The following sections illustrate various more interesting configuration methods.
The resilience of a volume can be increased by mirroring. When laying out a mirrored volume, it is important to ensure that the subdisks of each plex are on different drives, so that a drive failure will not take down both plexes. The following configuration mirrors a volume:
drive b device /dev/da4h volume mirror plex org concat sd length 512m drive a plex org concat sd length 512m drive b
In this example, it was not necessary to specify a definition of drive a again, since Vinum keeps track of all objects in its configuration database. After processing this definition, the configuration looks like:
Drives: 2 (4 configured) Volumes: 2 (4 configured) Plexes: 3 (8 configured) Subdisks: 3 (16 configured) D a State: up Device /dev/da3h Avail: 1549/2573 MB (60%) D b State: up Device /dev/da4h Avail: 2061/2573 MB (80%) V myvol State: up Plexes: 1 Size: 512 MB V mirror State: up Plexes: 2 Size: 512 MB P myvol.p0 C State: up Subdisks: 1 Size: 512 MB P mirror.p0 C State: up Subdisks: 1 Size: 512 MB P mirror.p1 C State: initializing Subdisks: 1 Size: 512 MB S myvol.p0.s0 State: up PO: 0 B Size: 512 MB S mirror.p0.s0 State: up PO: 0 B Size: 512 MB S mirror.p1.s0 State: empty PO: 0 B Size: 512 MB
Figure 22-5 shows the structure graphically.
In this example, each plex contains the full 512 MB of address space. As in the previous example, each plex contains only a single subdisk.
The mirrored volume in the previous example is more resistant to failure than an unmirrored volume, but its performance is less: each write to the volume requires a write to both drives, using up a greater proportion of the total disk bandwidth. Performance considerations demand a different approach: instead of mirroring, the data is striped across as many disk drives as possible. The following configuration shows a volume with a plex striped across four disk drives:
drive c device /dev/da5h drive d device /dev/da6h volume stripe plex org striped 512k sd length 128m drive a sd length 128m drive b sd length 128m drive c sd length 128m drive d
As before, it is not necessary to define the drives which are already known to Vinum. After processing this definition, the configuration looks like:
Drives: 4 (4 configured) Volumes: 3 (4 configured) Plexes: 4 (8 configured) Subdisks: 7 (16 configured) D a State: up Device /dev/da3h Avail: 1421/2573 MB (55%) D b State: up Device /dev/da4h Avail: 1933/2573 MB (75%) D c State: up Device /dev/da5h Avail: 2445/2573 MB (95%) D d State: up Device /dev/da6h Avail: 2445/2573 MB (95%) V myvol State: up Plexes: 1 Size: 512 MB V mirror State: up Plexes: 2 Size: 512 MB V striped State: up Plexes: 1 Size: 512 MB P myvol.p0 C State: up Subdisks: 1 Size: 512 MB P mirror.p0 C State: up Subdisks: 1 Size: 512 MB P mirror.p1 C State: initializing Subdisks: 1 Size: 512 MB P striped.p1 State: up Subdisks: 1 Size: 512 MB S myvol.p0.s0 State: up PO: 0 B Size: 512 MB S mirror.p0.s0 State: up PO: 0 B Size: 512 MB S mirror.p1.s0 State: empty PO: 0 B Size: 512 MB S striped.p0.s0 State: up PO: 0 B Size: 128 MB S striped.p0.s1 State: up PO: 512 kB Size: 128 MB S striped.p0.s2 State: up PO: 1024 kB Size: 128 MB S striped.p0.s3 State: up PO: 1536 kB Size: 128 MB
This volume is represented in Figure 22-6. The darkness of the stripes indicates the position within the plex address space: the lightest stripes come first, the darkest last.
With sufficient hardware, it is possible to build volumes which show both increased resilience and increased performance compared to standard UNIX partitions. A typical configuration file might be:
volume raid10 plex org striped 512k sd length 102480k drive a sd length 102480k drive b sd length 102480k drive c sd length 102480k drive d sd length 102480k drive e plex org striped 512k sd length 102480k drive c sd length 102480k drive d sd length 102480k drive e sd length 102480k drive a sd length 102480k drive b
The subdisks of the second plex are offset by two drives from those of the first plex: this helps ensure that writes do not go to the same subdisks even if a transfer goes over two drives.
Figure 22-7 represents the structure of this volume.
As described above, Vinum assigns default names to plexes and subdisks, although they may be overridden. Overriding the default names is not recommended: experience with the VERITAS volume manager, which allows arbitrary naming of objects, has shown that this flexibility does not bring a significant advantage, and it can cause confusion.
Names may contain any non-blank character, but it is recommended to restrict them to letters, digits and the underscore characters. The names of volumes, plexes and subdisks may be up to 64 characters long, and the names of drives may be up to 32 characters long.
Vinum objects are assigned device nodes in the hierarchy /dev/gvinum. The configuration shown above would cause Vinum to create the following device nodes:
Device entries for each volume. These are the main devices used by Vinum. Thus the configuration above would include the devices /dev/gvinum/myvol, /dev/gvinum/mirror, /dev/gvinum/striped, /dev/gvinum/raid5 and /dev/gvinum/raid10.
All volumes get direct entries under /dev/gvinum/.
The directories /dev/gvinum/plex, and /dev/gvinum/sd, which contain device nodes for each plex and for each subdisk, respectively.
For example, consider the following configuration file:
drive drive1 device /dev/sd1h drive drive2 device /dev/sd2h drive drive3 device /dev/sd3h drive drive4 device /dev/sd4h volume s64 setupstate plex org striped 64k sd length 100m drive drive1 sd length 100m drive drive2 sd length 100m drive drive3 sd length 100m drive drive4
After processing this file, gvinum(8) creates the following structure in /dev/gvinum:
drwxr-xr-x 2 root wheel 512 Apr 13 16:46 plex crwxr-xr-- 1 root wheel 91, 2 Apr 13 16:46 s64 drwxr-xr-x 2 root wheel 512 Apr 13 16:46 sd /dev/vinum/plex: total 0 crwxr-xr-- 1 root wheel 25, 0x10000002 Apr 13 16:46 s64.p0 /dev/vinum/sd: total 0 crwxr-xr-- 1 root wheel 91, 0x20000002 Apr 13 16:46 s64.p0.s0 crwxr-xr-- 1 root wheel 91, 0x20100002 Apr 13 16:46 s64.p0.s1 crwxr-xr-- 1 root wheel 91, 0x20200002 Apr 13 16:46 s64.p0.s2 crwxr-xr-- 1 root wheel 91, 0x20300002 Apr 13 16:46 s64.p0.s3
Although it is recommended that plexes and subdisks should not be allocated specific names, Vinum drives must be named. This makes it possible to move a drive to a different location and still recognize it automatically. Drive names may be up to 32 characters long.
Volumes appear to the system to be identical to disks, with one exception. Unlike UNIX drives, Vinum does not partition volumes, which thus do not contain a partition table. This has required modification to some disk utilities, notably newfs(8), which previously tried to interpret the last letter of a Vinum volume name as a partition identifier. For example, a disk drive may have a name like /dev/ad0a or /dev/da2h. These names represent the first partition (a) on the first (0) IDE disk (ad) and the eighth partition (h) on the third (2) SCSI disk (da) respectively. By contrast, a Vinum volume might be called /dev/gvinum/concat, a name which has no relationship with a partition name.
In order to create a file system on this volume, use newfs(8):
# newfs /dev/gvinum/concat
The GENERIC kernel does not contain Vinum. It is possible to build a special kernel which includes Vinum, but this is not recommended. The standard way to start Vinum is as a kernel module (kld). You do not even need to use kldload(8) for Vinum: when you start gvinum(8), it checks whether the module has been loaded, and if it is not, it loads it automatically.
Vinum stores configuration information on the disk slices in essentially the same form as in the configuration files. When reading from the configuration database, Vinum recognizes a number of keywords which are not allowed in the configuration files. For example, a disk configuration might contain the following text:
volume myvol state up volume bigraid state down plex name myvol.p0 state up org concat vol myvol plex name myvol.p1 state up org concat vol myvol plex name myvol.p2 state init org striped 512b vol myvol plex name bigraid.p0 state initializing org raid5 512b vol bigraid sd name myvol.p0.s0 drive a plex myvol.p0 state up len 1048576b driveoffset 265b plexoffset 0b sd name myvol.p0.s1 drive b plex myvol.p0 state up len 1048576b driveoffset 265b plexoffset 1048576b sd name myvol.p1.s0 drive c plex myvol.p1 state up len 1048576b driveoffset 265b plexoffset 0b sd name myvol.p1.s1 drive d plex myvol.p1 state up len 1048576b driveoffset 265b plexoffset 1048576b sd name myvol.p2.s0 drive a plex myvol.p2 state init len 524288b driveoffset 1048841b plexoffset 0b sd name myvol.p2.s1 drive b plex myvol.p2 state init len 524288b driveoffset 1048841b plexoffset 524288b sd name myvol.p2.s2 drive c plex myvol.p2 state init len 524288b driveoffset 1048841b plexoffset 1048576b sd name myvol.p2.s3 drive d plex myvol.p2 state init len 524288b driveoffset 1048841b plexoffset 1572864b sd name bigraid.p0.s0 drive a plex bigraid.p0 state initializing len 4194304b driveoff set 1573129b plexoffset 0b sd name bigraid.p0.s1 drive b plex bigraid.p0 state initializing len 4194304b driveoff set 1573129b plexoffset 4194304b sd name bigraid.p0.s2 drive c plex bigraid.p0 state initializing len 4194304b driveoff set 1573129b plexoffset 8388608b sd name bigraid.p0.s3 drive d plex bigraid.p0 state initializing len 4194304b driveoff set 1573129b plexoffset 12582912b sd name bigraid.p0.s4 drive e plex bigraid.p0 state initializing len 4194304b driveoff set 1573129b plexoffset 16777216b
The obvious differences here are the presence of explicit location information and naming (both of which are also allowed, but discouraged, for use by the user) and the information on the states (which are not available to the user). Vinum does not store information about drives in the configuration information: it finds the drives by scanning the configured disk drives for partitions with a Vinum label. This enables Vinum to identify drives correctly even if they have been assigned different UNIX drive IDs.
Gvinum always features an automatic startup once the kernel module is loaded, via loader.conf(5). To load the Gvinum module at boot time, add geom_vinum_load="YES" to /boot/loader.conf.
When you start Vinum with the gvinum start command, Vinum reads the configuration database from one of the Vinum drives. Under normal circumstances, each drive contains an identical copy of the configuration database, so it does not matter which drive is read. After a crash, however, Vinum must determine which drive was updated most recently and read the configuration from this drive. It then updates the configuration if necessary from progressively older drives.
For a machine that has fully-mirrored filesystems using Vinum, it is desirable to also mirror the root filesystem. Setting up such a configuration is less trivial than mirroring an arbitrary filesystem because:
The root filesystem must be available very early during the boot process, so the Vinum infrastructure must already be available at this time.
The volume containing the root filesystem also contains the system bootstrap and the kernel, which must be read using the host system's native utilities (e. g. the BIOS on PC-class machines) which often cannot be taught about the details of Vinum.
In the following sections, the term “root volume” is generally used to describe the Vinum volume that contains the root filesystem. It is probably a good idea to use the name "root" for this volume, but this is not technically required in any way. All command examples in the following sections assume this name though.
There are several measures to take for this to happen:
Vinum must be available in the kernel at boot-time. Thus, the method to start Vinum automatically described in Section 22.8.1.1 is not applicable to accomplish this task, and the start_vinum parameter must actually not be set when the following setup is being arranged. The first option would be to compile Vinum statically into the kernel, so it is available all the time, but this is usually not desirable. There is another option as well, to have /boot/loader (Section 13.3.3) load the vinum kernel module early, before starting the kernel. This can be accomplished by putting the line:
geom_vinum_load="YES"
into the file /boot/loader.conf.
For Gvinum, all startup is done automatically once the kernel module has been loaded, so the procedure described above is all that is needed.
Since the current FreeBSD bootstrap is only 7.5 KB of code, and already has the burden of reading files (like /boot/loader) from the UFS filesystem, it is sheer impossible to also teach it about internal Vinum structures so it could parse the Vinum configuration data, and figure out about the elements of a boot volume itself. Thus, some tricks are necessary to provide the bootstrap code with the illusion of a standard "a" partition that contains the root filesystem.
For this to be possible at all, the following requirements must be met for the root volume:
The root volume must not be striped or RAID-5.
The root volume must not contain more than one concatenated subdisk per plex.
Note that it is desirable and possible that there are multiple plexes, each containing one replica of the root filesystem. The bootstrap process will, however, only use one of these replica for finding the bootstrap and all the files, until the kernel will eventually mount the root filesystem itself. Each single subdisk within these plexes will then need its own "a" partition illusion, for the respective device to become bootable. It is not strictly needed that each of these faked "a" partitions is located at the same offset within its device, compared with other devices containing plexes of the root volume. However, it is probably a good idea to create the Vinum volumes that way so the resulting mirrored devices are symmetric, to avoid confusion.
In order to set up these "a" partitions, for each device containing part of the root volume, the following needs to be done:
The location (offset from the beginning of the device) and size of this device's subdisk that is part of the root volume need to be examined, using the command:
# gvinum l -rv root
Note that Vinum offsets and sizes are measured in bytes. They must be divided by 512 in order to obtain the block numbers that are to be used in the bsdlabel command.
Run the command:
# bsdlabel -e devname
for each device that participates in the root volume. devname must be either the name of the disk (like da0) for disks without a slice (aka. fdisk) table, or the name of the slice (like ad0s1).
If there is already an "a" partition on the device (presumably, containing a pre-Vinum root filesystem), it should be renamed to something else, so it remains accessible (just in case), but will no longer be used by default to bootstrap the system. Note that active partitions (like a root filesystem currently mounted) cannot be renamed, so this must be executed either when being booted from a “Fixit” medium, or in a two-step process, where (in a mirrored situation) the disk that has not been currently booted is being manipulated first.
Then, the offset of the Vinum partition on this device (if any) must be added to the offset of the respective root volume subdisk on this device. The resulting value will become the "offset" value for the new "a" partition. The "size" value for this partition can be taken verbatim from the calculation above. The "fstype" should be 4.2BSD. The "fsize", "bsize", and "cpg" values should best be chosen to match the actual filesystem, though they are fairly unimportant within this context.
That way, a new "a" partition will be established that overlaps the Vinum partition on this device. Note that the bsdlabel will only allow for this overlap if the Vinum partition has properly been marked using the "vinum" fstype.
That's all! A faked "a" partition does exist now on each device that has one replica of the root volume. It is highly recommendable to verify the result again, using a command like:
# fsck -n /dev/devnamea
It should be remembered that all files containing control information must be relative to the root filesystem in the Vinum volume which, when setting up a new Vinum root volume, might not match the root filesystem that is currently active. So in particular, the files /etc/fstab and /boot/loader.conf need to be taken care of.
At next reboot, the bootstrap should figure out the appropriate control information from the new Vinum-based root filesystem, and act accordingly. At the end of the kernel initialization process, after all devices have been announced, the prominent notice that shows the success of this setup is a message like:
Mounting root from ufs:/dev/gvinum/root
After the Vinum root volume has been set up, the output of gvinum l -rv root could look like:
... Subdisk root.p0.s0: Size: 125829120 bytes (120 MB) State: up Plex root.p0 at offset 0 (0 B) Drive disk0 (/dev/da0h) at offset 135680 (132 kB) Subdisk root.p1.s0: Size: 125829120 bytes (120 MB) State: up Plex root.p1 at offset 0 (0 B) Drive disk1 (/dev/da1h) at offset 135680 (132 kB)
The values to note are 135680 for the offset (relative to partition /dev/da0h). This translates to 265 512-byte disk blocks in bsdlabel's terms. Likewise, the size of this root volume is 245760 512-byte blocks. /dev/da1h, containing the second replica of this root volume, has a symmetric setup.
The bsdlabel for these devices might look like:
... 8 partitions: # size offset fstype [fsize bsize bps/cpg] a: 245760 281 4.2BSD 2048 16384 0 # (Cyl. 0*- 15*) c: 71771688 0 unused 0 0 # (Cyl. 0 - 4467*) h: 71771672 16 vinum # (Cyl. 0*- 4467*)
It can be observed that the "size" parameter for the faked "a" partition matches the value outlined above, while the "offset" parameter is the sum of the offset within the Vinum partition "h", and the offset of this partition within the device (or slice). This is a typical setup that is necessary to avoid the problem described in Section 22.9.4.3. It can also be seen that the entire "a" partition is completely within the "h" partition containing all the Vinum data for this device.
Note that in the above example, the entire device is dedicated to Vinum, and there is no leftover pre-Vinum root partition, since this has been a newly set-up disk that was only meant to be part of a Vinum configuration, ever.
If something goes wrong, a way is needed to recover from the situation. The following list contains few known pitfalls and solutions.
If for any reason the system does not continue to boot, the bootstrap can be interrupted with by pressing the space key at the 10-seconds warning. The loader variables (like vinum.autostart) can be examined using the show, and manipulated using set or unset commands.
If the only problem was that the Vinum kernel module was not yet in the list of modules to load automatically, a simple load geom_vinum will help.
When ready, the boot process can be continued with a boot
-as. The options -as
will request the kernel
to ask for the root filesystem to mount (-a
), and make
the boot process stop in single-user mode (-s
),
where the root filesystem is mounted read-only. That way, even if only one plex of
a multi-plex volume has been mounted, no data inconsistency between plexes is being
risked.
At the prompt asking for a root filesystem to mount, any device that contains a valid root filesystem can be entered. If /etc/fstab had been set up correctly, the default should be something like ufs:/dev/gvinum/root. A typical alternate choice would be something like ufs:da0d which could be a hypothetical partition that contains the pre-Vinum root filesystem. Care should be taken if one of the alias "a" partitions are entered here that are actually reference to the subdisks of the Vinum root device, because in a mirrored setup, this would only mount one piece of a mirrored root device. If this filesystem is to be mounted read-write later on, it is necessary to remove the other plex(es) of the Vinum root volume since these plexes would otherwise carry inconsistent data.
If /boot/loader fails to load, but the primary bootstrap still loads (visible by a single dash in the left column of the screen right after the boot process starts), an attempt can be made to interrupt the primary bootstrap at this point, using the space key. This will make the bootstrap stop in stage two, see Section 13.3.2. An attempt can be made here to boot off an alternate partition, like the partition containing the previous root filesystem that has been moved away from "a" above.
This situation will happen if the bootstrap had been destroyed by the Vinum installation. Unfortunately, Vinum accidentally currently leaves only 4 KB at the beginning of its partition free before starting to write its Vinum header information. However, the stage one and two bootstraps plus the bsdlabel embedded between them currently require 8 KB. So if a Vinum partition was started at offset 0 within a slice or disk that was meant to be bootable, the Vinum setup will trash the bootstrap.
Similarly, if the above situation has been recovered, for example by booting from a “Fixit” medium, and the bootstrap has been re-installed using bsdlabel -B as described in Section 13.3.2, the bootstrap will trash the Vinum header, and Vinum will no longer find its disk(s). Though no actual Vinum configuration data or data in Vinum volumes will be trashed by this, and it would be possible to recover all the data by entering exact the same Vinum configuration data again, the situation is hard to fix at all. It would be necessary to move the entire Vinum partition by at least 4 KB off, in order to have the Vinum header and the system bootstrap no longer collide.
Virtualization software allows multiple operating systems to run simultaneously on the same computer. Such software systems for PCs often involve a host operating system which runs the virtualization software and supports any number of guest operating systems.
After reading this chapter, you will know:
The difference between a host operating system and a guest operating system.
How to install FreeBSD on an Intel-based Apple Macintosh computer.
How to install FreeBSD on Microsoft Windows with Virtual PC.
How to tune a FreeBSD system for best performance under virtualization.
Before reading this chapter, you should:
Understand the basics of UNIX and FreeBSD (Chapter 4).
Know how to install FreeBSD (Chapter 3).
Know how to set up your network connection (Chapter 32).
Know how to install additional third-party software (Chapter 5).
Parallels Desktop for Mac is a commercial software product available for Intel based Apple Mac computers running Mac OS 10.4.6 or higher. FreeBSD is a fully supported guest operating system. Once Parallels has been installed on Mac OS X, the user must configure a virtual machine and then install the desired guest operating system.
The first step in installing FreeBSD on Mac OS X/Parallels is to create a new virtual machine for installing FreeBSD. Select as the when prompted:
And choose a reasonable amount of disk and memory depending on your plans for this virtual FreeBSD instance. 4GB of disk space and 512MB of RAM work well for most uses of FreeBSD under Parallels:
Select the type of networking and a network interface:
Save and finish the configuration:
After your FreeBSD virtual machine has been created, you will need to install FreeBSD on it. This is best done with an official FreeBSD CDROM or with an ISO image downloaded from an official FTP site. When you have the appropriate ISO image on your local Mac filesystem or a CDROM in your Mac's CD drive, click on the disc icon in the bottom right corner of your FreeBSD Parallels window. This will bring up a window that allows you to associate the CDROM drive in your virtual machine with an ISO file on disk or with your real CDROM drive.
Once you have made this association with your CDROM source, reboot your FreeBSD virtual machine as normal by clicking the reboot icon. Parallels will reboot with a special BIOS that first checks if you have a CDROM just as a normal BIOS would do.
In this case it will find the FreeBSD installation media and begin a normal sysinstall based installation as described in Chapter 3. You may install, but do not attempt to configure X11 at this time.
When you have finished the installation, reboot into your newly installed FreeBSD virtual machine.
After FreeBSD has been successfully installed on Mac OS X with Parallels, there are a number of configuration steps that can be taken to optimize the system for virtualized operation.
Set Boot Loader Variables
The most important step is to reduce the kern.hz
tunable to reduce the CPU utilization of FreeBSD under the Parallels environment. This is accomplished by adding
the following line to
/boot/loader.conf:
kern.hz=100
Without this setting, an idle FreeBSD Parallels guest OS will use roughly 15% of the CPU of a single processor iMac®. After this change the usage will be closer to a mere 5%.
Create a New Kernel Configuration File
You can remove all of the SCSI, FireWire, and USB device drivers. Parallels provides a virtual network adapter used by the ed(4) driver, so all other network devices except for ed(4) and miibus(4) can be removed from the kernel.
Configure Networking
The most basic networking setup involves simply using DHCP to connect your virtual machine to the same local area network as your host Mac. This can be accomplished by adding ifconfig_ed0="DHCP" to /etc/rc.conf. More advanced networking setups are described in Chapter 32.
Virtual PC for Windows is a Microsoft software product available for free download. See system requirements. Once Virtual PC has been installed on Microsoft Windows, the user must configure a virtual machine and then install the desired guest operating system.
The first step in installing FreeBSD on Microsoft Windows /Virtual PC is to create a new virtual machine for installing FreeBSD. Select when prompted:
And select
as the when prompted:Then, choose a reasonable amount of disk and memory depending on your plans for this virtual FreeBSD instance. 4GB of disk space and 512MB of RAM work well for most uses of FreeBSD under Virtual PC:
Save and finish the configuration:
Select your FreeBSD virtual machine and click
, then set the type of networking and a network interface:After your FreeBSD virtual machine has been created, you will need to install FreeBSD on it. This is best done with an official FreeBSD CDROM or with an ISO image downloaded from an official FTP site. When you have the appropriate ISO image on your local Windows filesystem or a CDROM in your CD drive, double click on your FreeBSD virtual machine to boot. Then, click and choose on Virtual PC window. This will bring up a window that allows you to associate the CDROM drive in your virtual machine with an ISO file on disk or with your real CDROM drive.
Once you have made this association with your CDROM source, reboot your FreeBSD virtual machine as normal by clicking the
and . Virtual PC will reboot with a special BIOS that first checks if you have a CDROM just as a normal BIOS would do.In this case it will find the FreeBSD installation media and begin a normal sysinstall based installation as described in Chapter 3. You may install, but do not attempt to configure X11 at this time.
When you have finished the installation, remember to eject CDROM or release ISO image. Finally, reboot into your newly installed FreeBSD virtual machine.
After FreeBSD has been successfully installed on Microsoft Windows with Virtual PC , there are a number of configuration steps that can be taken to optimize the system for virtualized operation.
Set Boot Loader Variables
The most important step is to reduce the kern.hz
tunable to reduce the CPU utilization of FreeBSD under the Virtual PC environment. This is accomplished by adding the
following line to /boot/loader.conf:
kern.hz=100
Without this setting, an idle FreeBSD Virtual PC guest OS will use roughly 40% of the CPU of a single processor computer. After this change the usage will be closer to a mere 3%.
Create a New Kernel Configuration File
You can remove all of the SCSI, FireWire, and USB device drivers. Virtual PC provides a virtual network adapter used by the de(4) driver, so all other network devices except for de(4) and miibus(4) can be removed from the kernel.
Configure Networking
The most basic networking setup involves simply using DHCP to connect your virtual machine to the same local area network as your host Microsoft Windows. This can be accomplished by adding ifconfig_de0="DHCP" to /etc/rc.conf. More advanced networking setups are described in Chapter 32.
VMware Fusion for Mac is a commercial software product available for Intel based Apple Mac computers running Mac OS 10.4.9 or higher. FreeBSD is a fully supported guest operating system. Once VMware Fusion has been installed on Mac OS X, the user must configure a virtual machine and then install the desired guest operating system.
The first step is to start VMware Fusion, the Virtual Machine Library will load. Click "New" to create the VM:
This will load the New Virtual Machine Assistant to help you create the VM, click Continue to proceed:
Select
as the and or , depending on if you want 64-bit support, as the when prompted:Choose the Name of the VM Image and the Directory where you would like it saved:
Choose the size of the Virtual Hard Disk for the VM:
Choose the method you would like to install the VM, either from an ISO image or from a CD:
Once you click Finish, the VM will boot:
Install FreeBSD like you normally would, or by following the directions in Chapter 3:
Once the install is complete you can modify the settings of the VM, such as Memory Usage:
Note: The System Hardware settings of the VM cannot be modified while the VM is running.
The number of CPUs the VM will have access to:
The status of the CD-Rom Device. Normally you can disconnect the CD-Rom/ISO from the VM if you will not be needing it anymore.
The last thing to change is how the VM will connect to the Network. If you want to allow connections to the VM from other machines besides the Host, make sure you choose the
. Otherwise is preferred so that the VM can have access to the Internet, but the network cannot access the VM.After you have finished modifying the settings, boot the newly installed FreeBSD virtual machine.
After FreeBSD has been successfully installed on Mac OS X with VMware, there are a number of configuration steps that can be taken to optimize the system for virtualized operation.
Set Boot Loader Variables
The most important step is to reduce the kern.hz
tunable to reduce the CPU utilization of FreeBSD under the VMware environment. This is accomplished by adding the
following line to /boot/loader.conf:
kern.hz=100
Without this setting, an idle FreeBSD VMware guest OS will use roughly 15% of the CPU of a single processor iMac. After this change the usage will be closer to a mere 5%.
Create a New Kernel Configuration File
You can remove all of the FireWire, and USB device drivers. VMware provides a virtual network adapter used by the em(4) driver, so all other network devices except for em(4) can be removed from the kernel.
Configure Networking
The most basic networking setup involves simply using DHCP to connect your virtual machine to the same local area network as your host Mac. This can be accomplished by adding ifconfig_em0="DHCP" to /etc/rc.conf. More advanced networking setups are described in Chapter 32.
The VirtualBox™ guest additions provide support for:
Clipboard sharing
Mouse pointer integration
Host time synchronization
Window scaling
Seamless mode
Note: The following commands are run in the FreeBSD guest.
First, install the emulators/virtualbox-ose-additions package in the FreeBSD guest.
# cd /usr/ports/emulators/virtualbox-ose-additions && make install clean
Add these lines to /etc/rc.conf:
vboxguest_enable="YES" vboxservice_enable="YES"
If ntpd(8) or ntpdate(8) will be used, host time synchronization should be disabled:
vboxservice_flags="--disable-timesync"
The vboxvideo_drv should be recognized by Xorg -configure. If not, modify xorg.conf for the VirtualBox video card:
Section "Device" ### Available Driver options are:- ### Values: <i>: integer, <f>: float, <bool>: "True"/"False", ### <string>: "String", <freq>: "<f> Hz/kHz/MHz" ### [arg]: arg optional Identifier "Card0" Driver "vboxvideo" VendorName "InnoTek Systemberatung GmbH" BoardName "VirtualBox Graphics Adapter" BusID "PCI:0:2:0" EndSection
To use vboxmouse_drv, adjust the mouse section in your xorg.conf:
Section "InputDevice" Identifier "Mouse0" Driver "vboxmouse" EndSection
HAL users should create this file at /usr/local/etc/hal/fdi/policy/90-vboxguest.fdi or copy it from /usr/local/share/hal/fdi/policy/10osvendor/90-vboxguest.fdi:
<?xml version="1.0" encoding="utf-8"?> <!-- # Sun VirtualBox # Hal driver description for the vboxmouse driver # $Id: chapter.xml,v 1.33 2012-03-17 04:53:52 eadler Exp $ Copyright (C) 2008-2009 Sun Microsystems, Inc. This file is part of VirtualBox Open Source Edition (OSE, as available from http://www.virtualbox.org. This file is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License (GPL) as published by the Free Software Foundation, in version 2 as it comes in the "COPYING" file of the VirtualBox OSE distribution. VirtualBox OSE is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY of any kind. Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara, CA 95054 USA or visit http://www.sun.com if you need additional information or have any questions. --> <deviceinfo version="0.2"> <device> <match key="info.subsystem" string="pci"> <match key="info.product" string="VirtualBox guest Service"> <append key="info.capabilities" type="strlist">input</append> <append key="info.capabilities" type="strlist">input.mouse</append> <merge key="input.x11_driver" type="string">vboxmouse</merge> <merge key="input.device" type="string">/dev/vboxguest</merge> </match> </match> </device> </deviceinfo>
For a number of years, FreeBSD was not officially supported as a host OS by any of the available virtualization solutions. Some people were using older and mostly obsolete versions of VMware (like emulators/vmware3), which utilized the Linux binary compatibility layer. Shortly after the release of FreeBSD 7.2, Sun's VirtualBox appeared in the Ports Collection as a native FreeBSD program.
VirtualBox is an actively developed, complete virtualization package, that is available for most operating systems including Windows, Mac OS, Linux and FreeBSD. It is equally capable at running Windows or UNIX like guests. It is released as open source software, but with closed-source components available in a separate extension pack. These components include support for USB 2.0 devices, among others. More information may be found on the “Downloads” page of the VirtualBox wiki, at http://www.virtualbox.org/wiki/Downloads. Currently, these extensions are not available for FreeBSD.
VirtualBox is available as a FreeBSD port in emulators/virtualbox-ose. As VirtualBox is very actively developed, make sure your ports tree is up to date before installing. Install using these commands:
# cd /usr/ports/emulators/virtualbox-ose # make install clean
One useful option in the configuration dialog is the GuestAdditions suite of programs. These provide a number of useful features in guest operating systems, like mouse pointer integration (allowing the mouse to be shared between host and guest without the need to press a special keyboard shortcut to switch) and faster video rendering, especially in Windows guests. The guest additions are available in the menu, after the installation of the guest OS is finished.
A few configuration changes are needed before VirtualBox is started for the first time. The port installs a kernel module in /boot/modules which must be loaded into the running kernel:
# kldload vboxdrv
To ensure the module always gets loaded after a reboot, add the following line to /boot/loader.conf:
vboxdrv_load="YES"
To use the kernel modules that allow bridged or host-only networking, add the following to /etc/rc.conf and reboot the computer:
vboxnet_enable="YES"
The vboxusers group is created during installation of VirtualBox. All users that need access to VirtualBox will have to be added as members of this group. The pw command may be used to add new members:
# pw groupmod vboxusers -m yourusername
The default permissions for /dev/vboxnetctl are restrictive and need to be changed for bridged networking.
To test it temporarily:
# chown root:vboxusers /dev/vboxnetctl # chmod 0660 /dev/vboxnetctl
To make the permissions change permanent, add these lines to /etc/devfs.conf:
own vboxnetctl root:vboxusers perm vboxnetctl 0660
To launch VirtualBox, either select the item from the graphic environment's menu, or type the following in a terminal:
% VirtualBox
For more information on configuring and using VirtualBox, please visit the official website at http://www.virtualbox.org. As the FreeBSD port is very recent, it is under heavy development. For the latest information and troubleshooting instructions, please visit the relevant page in the FreeBSD wiki, at http://wiki.FreeBSD.org/VirtualBox.
Note: These steps require VirtualBox 4.0.0 or later.
In order to be able to read and write to USB devices, users need to be members of the operator group:
# pw groupmod operator -m jerry
Then, add the following to /etc/devfs.rules (create it if it does not exist yet):
[system=10] add path 'usb/*' mode 0660 group operator
To load these new rules, add the following to /etc/rc.conf:
devfs_system_ruleset="system"
Then, restart devfs:
# /etc/rc.d/devfs restart
USB can now be enabled in the guest operating system. USB devices should be visible in the VirtualBox preferences.
Access to the host DVD/CD drives from guests is achieved through the sharing of the physical drives. In GUI this is set up from the Storage window in the Settings of the virtual machine. Create an empty IDE CD/DVD device first. Then choose the Host Drive from the popup menu for the virtual CD/DVD drive selection. A checkbox labeled Passthrough check box will appear. This allows the virtual machine to use the hardware directly. For example, audio CDs or the burner only function if this option is selected.
HAL needs to run for VirtualBox DVD/CD functions to work, so enable it in /etc/rc.conf and start it (if it is not already running):
hald_enable="YES"
# service hald start
In order for users to be able to use VirtualBox DVD/CD functions, they need access to /dev/xpt0, /dev/cdN, and /dev/passN. This is usually achieved by making the user of VirtualBox a member of the operator group, which is also the default group of the above mentioned devices. Permissions of these devices have to be corrected by adding the following lines to /etc/devfs.conf:
perm cd* 0600 perm xpt0 0660 perm pass* 0660
# /etc/rc.d/devfs restart
FreeBSD is a very distributed project with users and contributors located all over the world. This chapter discusses the internationalization and localization features of FreeBSD that allow non-English speaking users to get real work done. There are many aspects of the i18n implementation in both the system and application levels, so where applicable we refer the reader to more specific sources of documentation.
After reading this chapter, you will know:
How different languages and locales are encoded on modern operating systems.
How to set the locale for your login shell.
How to configure your console for non-English languages.
How to use X Window System effectively with different languages.
Where to find more information about writing i18n-compliant applications.
Before reading this chapter, you should:
Know how to install additional third-party applications (Chapter 5).
Developers shortened internationalization into the term I18N, counting the number of letters between the first and the last letters of internationalization. L10N uses the same naming scheme, coming from “localization”. Combined together, I18N/L10N methods, protocols, and applications allow users to use languages of their choice.
I18N applications are programmed using I18N kits under libraries. It allows for developers to write a simple file and translate displayed menus and texts to each language. We strongly encourage programmers to follow this convention.
I18N/L10N is used whenever you wish to either view, input, or process data in non-English languages.
I18N and L10N are not FreeBSD specific. Currently, one can choose from most of the major languages of the World, including but not limited to: Chinese, German, Japanese, Korean, French, Russian, Vietnamese and others.
In all its splendor, I18N is not FreeBSD-specific and is a convention. We encourage you to help FreeBSD in following this convention.
Localization settings are based on three main terms: Language Code, Country Code, and Encoding. Locale names are constructed from these parts as follows:
LanguageCode_CountryCode.Encoding
In order to localize a FreeBSD system to a specific language (or any other I18N-supporting UNIX like systems), the user needs to find out the codes for the specific country and language (country codes tell applications what variation of given language to use). In addition, web browsers, SMTP/POP servers, web servers, etc. make decisions based on them. The following are examples of language/country codes:
Language/Country Code | Description |
---|---|
en_US | English - United States |
ru_RU | Russian for Russia |
zh_TW | Traditional Chinese for Taiwan |
A complete listing of available locales can be found by typing:
% locale -a
Some languages use non-ASCII encodings that are 8-bit, wide or multibyte characters, see multibyte(3) for more details. Older applications do not recognize them and mistake them for control characters. Newer applications usually do recognize 8-bit characters. Depending on the implementation, users may be required to compile an application with wide or multibyte characters support, or configure it correctly. To be able to input and process wide or multibyte characters, the FreeBSD Ports Collection has provided each language with different programs. Refer to the I18N documentation in the respective FreeBSD Port.
Specifically, the user needs to look at the application documentation to decide on how to configure it correctly or to pass correct values into the configure/Makefile/compiler.
Some things to keep in mind are:
Language specific single C chars character sets (see multibyte(3)), e.g. ISO8859-1, ISO8859-15, KOI8-R, CP437.
Wide or multibyte encodings, e.g., EUC, Big5.
You can check the active list of character sets at the IANA Registry.
Note: FreeBSD uses X11-compatible locale encodings instead.
In the FreeBSD Ports and Package system, I18N applications have been named with I18N in their names for easy identification. However, they do not always support the language needed.
Usually it is sufficient to export the value of the locale name as LANG in the login shell. This could be done in the user's ~/.login_conf file or in the startup file of the user's shell (~/.profile, ~/.bashrc, ~/.cshrc). There is no need to set the locale subsets such as LC_CTYPE, LC_CTIME. Please refer to language-specific FreeBSD documentation for more information.
You should set the following two environment variables in your configuration files:
LANG for POSIX setlocale(3) family functions
MM_CHARSET for applications' MIME character set
This includes the user shell configuration, the specific application configuration, and the X11 configuration.
There are two methods for setting locale, and both are described below. The first (recommended one) is by assigning the environment variables in login class, and the second is by adding the environment variable assignments to the system's shell startup file.
This method allows environment variables needed for locale name and MIME character sets to be assigned once for every possible shell instead of adding specific shell assignments to each shell's startup file. User Level Setup can be done by an user himself and Administrator Level Setup require superuser privileges.
Here is a minimal example of a .login_conf file in user's home directory which has both variables set for Latin-1 encoding:
me:\ :charset=ISO-8859-1:\ :lang=de_DE.ISO8859-1:
Here is an example of a .login_conf that sets the variables for Traditional Chinese in BIG-5 encoding. Notice the many more variables set because some software does not respect locale variables correctly for Chinese, Japanese, and Korean.
#Users who do not wish to use monetary units or time formats #of Taiwan can manually change each variable me:\ :lang=zh_TW.Big5:\ :setenv=LC_ALL=zh_TW.Big5:\ :setenv=LC_COLLATE=zh_TW.Big5:\ :setenv=LC_CTYPE=zh_TW.Big5:\ :setenv=LC_MESSAGES=zh_TW.Big5:\ :setenv=LC_MONETARY=zh_TW.Big5:\ :setenv=LC_NUMERIC=zh_TW.Big5:\ :setenv=LC_TIME=zh_TW.Big5:\ :charset=big5:\ :xmodifiers="@im=gcin": #Set gcin as the XIM Input Server
See Administrator Level Setup and login.conf(5) for more details.
Verify that the user's login class in /etc/login.conf sets the correct language. Make sure these settings appear in /etc/login.conf:
language_name|Account Type Description:\ :charset=MIME_charset:\ :lang=locale_name:\ :tc=default:
So sticking with our previous example using Latin-1, it would look like this:
german|German Users Accounts:\ :charset=ISO-8859-1:\ :lang=de_DE.ISO8859-1:\ :tc=default:
Before changing users Login Classes execute the following command:
# cap_mkdb /etc/login.conf
to make new configuration in /etc/login.conf visible to the system.
Use vipw to add new users, and make the entry look like this:
user:password:1111:11:language:0:0:User Name:/home/user:/bin/sh
Use adduser to add new users, and do the following:
Set defaultclass = language in /etc/adduser.conf. Keep in mind you must enter a default class for all users of other languages in this case.
An alternative variant is answering the specified language each time that
Enter login class: default []:appears from adduser(8).
Another alternative is to use the following for each user of a different language that you wish to add:
# adduser -class language
If you use pw(8) for adding new users, call it in this form:
# pw useradd user_name -L language
Note: This method is not recommended because it requires a different setup for each possible shell program chosen. Use the Login Class Method instead.
To add the locale name and MIME character set, just set the two environment variables shown below in the /etc/profile and/or /etc/csh.login shell startup files. We will use the German language as an example below:
In /etc/profile:
LANG=de_DE.ISO8859-1; export LANG MM_CHARSET=ISO-8859-1; export MM_CHARSET
Or in /etc/csh.login:
setenv LANG de_DE.ISO8859-1 setenv MM_CHARSET ISO-8859-1
Alternatively, you can add the above instructions to /usr/share/skel/dot.profile (similar to what was used in /etc/profile above), or /usr/share/skel/dot.login (similar to what was used in /etc/csh.login above).
For X11:
In $HOME/.xinitrc:
LANG=de_DE.ISO8859-1; export LANG
Or:
setenv LANG de_DE.ISO8859-1
Depending on your shell (see above).
For all single C chars character sets, set the correct console fonts in /etc/rc.conf for the language in question with:
font8x16=font_name font8x14=font_name font8x8=font_name
The font_name here is taken from the /usr/share/syscons/fonts directory, without the .fnt suffix.
If required, set the keymap and screenmap for your single C chars character set through sysinstall. Once inside sysinstall, choose
, then . Alternatively, you can add the following to /etc/rc.conf:scrnmap=screenmap_name keymap=keymap_name keychange="fkey_number sequence"
The screenmap_name here is taken from the /usr/share/syscons/scrnmaps directory, without the .scm suffix. A screenmap with a corresponding mapped font is usually needed as a workaround for expanding bit 8 to bit 9 on a VGA adapter's font character matrix in pseudographics area, i.e., to move letters out of that area if screen font uses a bit 8 column.
If you have the moused daemon enabled by setting the following in your /etc/rc.conf:
moused_enable="YES"
then examine the mouse cursor information in the next paragraph.
By default the mouse cursor of the syscons(4) driver occupies the 0xd0-0xd3 range in the character set. If your language uses this range, you need to move the cursor's range outside of it. To enable the workaround for FreeBSD, add the following line to /etc/rc.conf:
mousechar_start=3
The keymap_name here is taken from the /usr/share/syscons/keymaps directory, without the .kbd suffix. If you are uncertain which keymap to use, you use can kbdmap(1) to test keymaps without rebooting.
The keychange is usually needed to program function keys to match the selected terminal type because function key sequences cannot be defined in the key map.
Also be sure to set the correct console terminal type in /etc/ttys for all ttyv* entries. Current pre-defined correspondences are:
Character Set | Terminal Type |
---|---|
ISO8859-1 or ISO8859-15 | cons25l1 |
ISO8859-2 | cons25l2 |
ISO8859-7 | cons25l7 |
KOI8-R | cons25r |
KOI8-U | cons25u |
CP437 (VGA default) | cons25 |
US-ASCII | cons25w |
For wide or multibyte characters languages, use the correct FreeBSD port in your /usr/ports/language directory. Some ports appear as console while the system sees it as serial vtty's, hence you must reserve enough vtty's for both X11 and the pseudo-serial console. Here is a partial list of applications for using other languages in console:
Language | Location |
---|---|
Traditional Chinese (BIG-5) | chinese/big5con |
Japanese | japanese/kon2-16dot or japanese/mule-freewnn |
Korean | korean/han |
Although X11 is not part of the FreeBSD Project, we have included some information here for FreeBSD users. For more details, refer to the Xorg web site or whichever X11 Server you use.
In ~/.Xresources, you can additionally tune application specific I18N settings (e.g., fonts, menus, etc.).
Install Xorg server ( x11-servers/xorg-server), then install the language TrueType fonts. Setting the correct locale should allow you to view your selected language in menus and such.
The X11 Input Method (XIM) Protocol is a new standard for all X11 clients. All X11 applications should be written as XIM clients that take input from XIM Input servers. There are several XIM servers available for different languages.
Some single C chars character sets are usually hardware coded into printers. Wide or multibyte character sets require special setup and we recommend using apsfilter. You may also convert the document to PostScript or PDF formats using language specific converters.
The FreeBSD fast filesystem (FFS) is 8-bit clean, so it can be used with any single C chars character set (see multibyte(3)), but there is no character set name stored in the filesystem; i.e., it is raw 8-bit and does not know anything about encoding order. Officially, FFS does not support any form of wide or multibyte character sets yet. However, some wide or multibyte character sets have independent patches for FFS enabling such support. They are only temporary unportable solutions or hacks and we have decided to not include them in the source tree. Refer to respective languages' web sites for more information and the patch files.
The FreeBSD MS-DOS filesystem has the configurable ability to convert between MS-DOS, Unicode character sets and chosen FreeBSD filesystem character sets. See mount_msdosfs(8) for details.
Many FreeBSD Ports have been ported with I18N support. Some of them are marked with -I18N in the port name. These and many other programs have built in support for I18N and need no special consideration.
However, some applications such as MySQL need to have their Makefile configured with the specific charset. This is usually done in the Makefile or done by passing a value to configure in the source.
For more information about KOI8-R encoding, see the KOI8-R References (Russian Net Character Set).
Put the following lines into your ~/.login_conf file:
me:My Account:\ :charset=KOI8-R:\ :lang=ru_RU.KOI8-R:
See earlier in this chapter for examples of setting up the locale.
Add the following line to your /etc/rc.conf file:
mousechar_start=3
Also, use following settings in /etc/rc.conf:
keymap="ru.koi8-r" scrnmap="koi8-r2cp866" font8x16="cp866b-8x16" font8x14="cp866-8x14" font8x8="cp866-8x8"
For each ttyv* entry in /etc/ttys, use cons25r as the terminal type.
See earlier in this chapter for examples of setting up the console.
Since most printers with Russian characters come with hardware code page CP866, a special output filter is needed to convert from KOI8-R to CP866. Such a filter is installed by default as /usr/libexec/lpr/ru/koi2alt. A Russian printer /etc/printcap entry should look like:
lp|Russian local line printer:\ :sh:of=/usr/libexec/lpr/ru/koi2alt:\ :lp=/dev/lpt0:sd=/var/spool/output/lpd:lf=/var/log/lpd-errs:
See printcap(5) for a detailed description.
The following example fstab(5) entry enables support for Russian filenames in mounted MS-DOS filesystems:
/dev/ad0s2 /dos/c msdos rw,-Wkoi2dos,-Lru_RU.KOI8-R 0 0
The option -L
selects the locale name used, and
-W
sets the character conversion table. To use the
-W
option, be sure to mount /usr before the MS-DOS partition
because the conversion tables are located in /usr/libdata/msdosfs. For more information, see the mount_msdosfs(8)
manual page.
Do non-X locale setup first as described.
If you use Xorg, install x11-fonts/xorg-fonts-cyrillic package.
Check the "Files" section in your /etc/X11/xorg.conf file. The following line must be added before any other FontPath entries:
FontPath "/usr/local/lib/X11/fonts/cyrillic"
Note: See ports for more cyrillic fonts.
To activate a Russian keyboard, add the following to the "Keyboard" section of your xorg.conf file:
Option "XkbLayout" "us,ru" Option "XkbOptions" "grp:toggle"
Also make sure that XkbDisable is turned off (commented out) there.
For grp:toggle the RUS/LAT switch will be Right Alt, for grp:ctrl_shift_toggle switch will be Ctrl+Shift. For grp:caps_toggle the RUS/LAT switch will be CapsLock. The old CapsLock function is still available via Shift+CapsLock (in LAT mode only). grp:caps_toggle does not work in Xorg for unknown reason.
If you have “Windows” keys on your keyboard, and notice that some non-alphabetical keys are mapped incorrectly in RUS mode, add the following line in your xorg.conf file:
Option "XkbVariant" ",winkeys"
Note: The Russian XKB keyboard may not work with non-localized applications.
Note: Minimally localized applications should call a
XtSetLanguageProc (NULL, NULL, NULL);
function early in the program.See KOI8-R for X Window for more instructions on localizing X11 applications.
The FreeBSD-Taiwan Project has an Chinese HOWTO for FreeBSD at http://netlab.cse.yzu.edu.tw/~statue/freebsd/zh-tut/ using many
Chinese ports. Current editor for the FreeBSD Chinese HOWTO
is Shen Chuan-Hsing <[email protected]>
.
Chuan-Hsing Shen <[email protected]>
has created the
Chinese FreeBSD Collection (CFC) using FreeBSD-Taiwan's
zh-L10N-tut. The packages and the script files are
available at ftp://freebsd.csie.nctu.edu.tw/pub/taiwan/CFC/.
Slaven Rezic <[email protected]>
wrote a
tutorial on using umlauts on a FreeBSD machine. The tutorial is written in
German and is available at http://user.cs.tu-berlin.de/~eserte/FreeBSD/doc/umlaute/umlaute.html.
Nikos Kokkalis <[email protected]>
has written
a complete article on Greek support in FreeBSD. It is available as part of the
official FreeBSD Greek documentation, in http://www.freebsd.org/doc/el_GR.ISO8859-7/articles/greek-language-support/index.html.
Please note this is in Greek only.
For Japanese, refer to http://www.jp.FreeBSD.org/, and for Korean, refer to http://www.kr.FreeBSD.org/.
Some FreeBSD contributors have translated parts of FreeBSD documentation to other languages. They are available through links on the main site or in /usr/share/doc.
FreeBSD is under constant development between releases. Some people prefer to use the officially released versions, while others prefer to keep in sync with the latest developments. However, even official releases are often updated with security and other critical fixes. Regardless of the version used, FreeBSD provides all necessary tools to keep your system updated, and also allows for easy upgrades between versions. This chapter will help you decide if you want to track the development system, or stick with one of the released versions. The basic tools for keeping your system up to date are also presented.
After reading this chapter, you will know:
What utilities may be used to update the system and the Ports Collection.
How to keep your system up to date with freebsd-update, Subversion, CVSup, CVS, or CTM.
How to compare the state of an installed system against a known pristine copy.
How to keep your documentation up to date with Subversion or documentation ports.
The difference between the two development branches: FreeBSD-STABLE and FreeBSD-CURRENT.
How to rebuild and reinstall the entire base system with make buildworld (etc).
Before reading this chapter, you should:
Properly set up your network connection (Chapter 32).
Know how to install additional third-party software (Chapter 5).
Note: Throughout this chapter, the svn command is used to obtain and update FreeBSD sources. To use it, you will need to install the port or the package for devel/subversion.
Applying security patches is an important part of maintaining computer software, especially the operating system. For the longest time on FreeBSD this process was not an easy one. Patches had to be applied to the source code, the code rebuilt into binaries, and then the binaries had to be re-installed.
This is no longer the case as FreeBSD now includes a utility simply called freebsd-update. This utility provides two separate functions. First, it allows for binary security and errata updates to be applied to the FreeBSD base system without the build and install requirements. Second, the utility supports minor and major release upgrades.
Note: Binary updates are available for all architectures and releases currently supported by the security team. Before updating to a new release, the current release announcements should be reviewed as they may contain important information pertinent to the desired release. These announcements may be viewed at the following link: http://www.FreeBSD.org/releases/.
If a crontab utilizing the features of freebsd-update exists, it must be disabled before the following operation is started.
Some users may wish to tweak the default configuration file in /etc/freebsd-update.conf, allowing better control of the process. The options are very well documented, but the following few may require a bit more explanation:
# Components of the base system which should be kept updated. Components src world kernel
This parameter controls what parts of FreeBSD will be kept up to date. The default is to update the source code, the entire base system, and the kernel. Components are the same as those available during the install, for instance, adding world/games here would allow game patches to be applied. Using src/bin would allow the source code in src/bin to be updated.
The best option is to leave this at the default as changing it to include specific items will require the user to list every item they prefer to be updated. This could have disastrous consequences as source code and binaries may become out of sync.
# Paths which start with anything matching an entry in an IgnorePaths # statement will be ignored. IgnorePaths
Add paths, such as /bin or /sbin to leave these specific directories untouched during the update process. This option may be used to prevent freebsd-update from overwriting local modifications.
# Paths which start with anything matching an entry in an UpdateIfUnmodified # statement will only be updated if the contents of the file have not been # modified by the user (unless changes are merged; see below). UpdateIfUnmodified /etc/ /var/ /root/ /.cshrc /.profile
Update configuration files in the specified directories only if they have not been modified. Any changes made by the user will invalidate the automatic updating of these files. There is another option, KeepModifiedMetadata, which will instruct freebsd-update to save the changes during the merge.
# When upgrading to a new FreeBSD release, files which match MergeChanges # will have any local changes merged into the version from the new release. MergeChanges /etc/ /var/named/etc/
List of directories with configuration files that freebsd-update should attempt merges in. The file merge process is a series of diff(1) patches similar to mergemaster(8) with fewer options, the merges are either accepted, open an editor, or freebsd-update will abort. When in doubt, backup /etc and just accept the merges. See Section 25.7.11.1 for more information about the mergemaster command.
# Directory in which to store downloaded updates and temporary # files used by FreeBSD Update. # WorkDir /var/db/freebsd-update
This directory is where all patches and temporary files will be placed. In cases where the user is doing a version upgrade, this location should have a least a gigabyte of disk space available.
# When upgrading between releases, should the list of Components be # read strictly (StrictComponents yes) or merely as a list of components # which *might* be installed of which FreeBSD Update should figure out # which actually are installed and upgrade those (StrictComponents no)? # StrictComponents no
When set to yes, freebsd-update will assume that the Components list is complete and will not attempt to make changes outside of the list. Effectively, freebsd-update will attempt to update every file which belongs to the Components list.
Security patches are stored on a remote machine and may be downloaded and installed using the following command:
# freebsd-update fetch # freebsd-update install
If any kernel patches have been applied the system will need a reboot. If all went well the system should be patched and freebsd-update may be run as a nightly cron(8) job. An entry in /etc/crontab would be sufficient to accomplish this task:
@daily root freebsd-update cron
This entry states that once every day, the freebsd-update utility will be run. In this way, using the
cron
argument, freebsd-update
will only check if updates exist. If patches exist, they will automatically be
downloaded to the local disk but not applied. The root user will be sent an email so they may install them
manually.
If anything went wrong, freebsd-update has the ability to roll back the last set of changes with the following command:
# freebsd-update rollback
Once complete, the system should be restarted if the kernel or any kernel modules were modified. This will allow FreeBSD to load the new binaries into memory.
The freebsd-update utility can automatically update the GENERIC kernel only. If a custom kernel is in use, it will have to be rebuilt and reinstalled after freebsd-update finishes installing the rest of the updates. However, freebsd-update will detect and update the GENERIC kernel in /boot/GENERIC (if it exists), even if it is not the current (running) kernel of the system.
Note: It is a good idea to always keep a copy of the GENERIC kernel in /boot/GENERIC. It will be helpful in diagnosing a variety of problems, and in performing version upgrades using freebsd-update as described in Section 25.2.3.
Unless the default configuration in /etc/freebsd-update.conf has been changed, freebsd-update will install the updated kernel sources along with the rest of the updates. Rebuilding and reinstalling your new custom kernel can then be performed in the usual way.
Note: The updates distributed via freebsd-update, do not always involve the kernel. It will not be necessary to rebuild your custom kernel if the kernel sources have not been modified by the execution of freebsd-update install. However, freebsd-update will always update the /usr/src/sys/conf/newvers.sh file. The current patch level (as indicated by the -p number reported by uname -r) is obtained from this file. Rebuilding your custom kernel, even if nothing else changed, will allow uname(1) to accurately report the current patch level of the system. This is particularly helpful when maintaining multiple systems, as it allows for a quick assessment of the updates installed in each one.
Upgrades from one minor version of FreeBSD to another, like from FreeBSD 9.0 to FreeBSD 9.1, are called minor version upgrades. Generally, installed applications will continue to work without problems after minor version upgrades.
Major version upgrades are when FreeBSD is upgraded from one major version to another, like from FreeBSD 8.X to FreeBSD 9.X. Major version upgrades will remove old object files and libraries which will break most third party applications. It is recommended that all installed ports either be removed and re-installed or upgraded after a major version upgrade by using the ports-mgmt/portupgrade utility. A brute-force rebuild of all installed applications can be accomplished with this command:
# portupgrade -af
This will ensure everything will be re-installed correctly. Note that setting the BATCH environment variable to yes will answer yes to any prompts during this process, removing the need for manual intervention during the build process.
If a custom kernel is in use, the upgrade process is slightly more involved, and the procedure varies depending on the version of FreeBSD.
A copy of the GENERIC kernel is needed, and it should be placed in /boot/GENERIC. If the GENERIC kernel is not already present in the system, it may be obtained using one of the following methods:
If a custom kernel has only been built once, the kernel in /boot/kernel.old is actually the GENERIC one. Simply rename this directory to /boot/GENERIC.
Assuming physical access to the machine is possible, a copy of the GENERIC kernel can be installed from the CD-ROM media. Insert your installation disc and use the following commands:
# mount /cdrom # cd /cdrom/X.Y-RELEASE/kernels # ./install.sh GENERIC
Replace X.Y-RELEASE with the actual version of the release you are using. The GENERIC kernel will be installed in /boot/GENERIC by default.
Failing all the above, the GENERIC kernel may be rebuilt and installed from the sources:
# cd /usr/src # env DESTDIR=/boot/GENERIC make kernel # mv /boot/GENERIC/boot/kernel/* /boot/GENERIC # rm -rf /boot/GENERIC/boot
For this kernel to be picked up as GENERIC by freebsd-update, the GENERIC configuration file must not have been modified in any way. It is also suggested that it is built without any other special options (preferably with an empty /etc/make.conf).
Rebooting to the GENERIC kernel is not required at this stage.
If a custom kernel has only been built once, the kernel in /boot/kernel.old is actually the GENERIC kernel. Rename this directory to /boot/kernel.
If physical access to the machine is available, a copy of the GENERIC kernel can be installed from the CD-ROM media. Load the installation disc and use these commands:
# mount /cdrom # cd /cdrom/usr/freebsd-dist # tar -C/ -xvf kernel.txz boot/kernel/kernel
If the options above cannot be used, the GENERIC kernel may be rebuilt and installed from the sources:
# cd /usr/src # make kernel
For this kernel to be identified as the GENERIC kernel by freebsd-update, the GENERIC configuration file must not have been modified in any way. It is also suggested that the kernel is built without any other special options, preferably with an empty /etc/make.conf.
Rebooting to the GENERIC kernel is not required at this stage.
Major and minor version upgrades may be performed by providing freebsd-update with a release version target, for example, the following command will update to FreeBSD 8.1:
# freebsd-update -r 8.1-RELEASE upgrade
After the command has been received, freebsd-update will evaluate the configuration file and current system in an attempt to gather the information necessary to update the system. A screen listing will display what components have been detected and what components have not been detected. For example:
Looking up update.FreeBSD.org mirrors... 1 mirrors found. Fetching metadata signature for 8.0-RELEASE from update1.FreeBSD.org... done. Fetching metadata index... done. Inspecting system... done. The following components of FreeBSD seem to be installed: kernel/smp src/base src/bin src/contrib src/crypto src/etc src/games src/gnu src/include src/krb5 src/lib src/libexec src/release src/rescue src/sbin src/secure src/share src/sys src/tools src/ubin src/usbin world/base world/info world/lib32 world/manpages The following components of FreeBSD do not seem to be installed: kernel/generic world/catpages world/dict world/doc world/games world/proflibs Does this look reasonable (y/n)? y
At this point, freebsd-update will attempt to download all files required for the upgrade. In some cases, the user may be prompted with questions regarding what to install or how to proceed.
When using a custom kernel, the above step will produce a warning similar to the following:
WARNING: This system is running a "MYKERNEL" kernel, which is not a kernel configuration distributed as part of FreeBSD 8.0-RELEASE. This kernel will not be updated: you MUST update the kernel manually before running "/usr/sbin/freebsd-update install"
This warning may be safely ignored at this point. The updated GENERIC kernel will be used as an intermediate step in the upgrade process.
After all patches have been downloaded to the local system, they will then be applied. This process may take a while depending on the speed and workload of the machine. Configuration files will then be merged — this part of the process requires some user intervention as a file may be merged or an editor may appear on screen for a manual merge. The results of every successful merge will be shown to the user as the process continues. A failed or ignored merge will cause the process to abort. Users may wish to make a backup of /etc and manually merge important files, such as master.passwd or group at a later time.
Note: The system is not being altered yet, all patching and merging is happening in another directory. When all patches have been applied successfully, all configuration files have been merged and it seems the process will go smoothly, the changes will need to be committed by the user.
Once this process is complete, the upgrade may be committed to disk using the following command.
# freebsd-update install
The kernel and kernel modules will be patched first. At this point the machine must be rebooted. If the system was running with a custom kernel, use the nextboot(8) command to set the kernel for the next boot to /boot/GENERIC (which was updated):
# nextboot -k GENERIC
Warning: Before rebooting with the GENERIC kernel, make sure it contains all drivers required for your system to boot properly (and connect to the network, if the machine that is being updated is accessed remotely). In particular, if the previously running custom kernel contained built-in functionality usually provided by kernel modules, make sure to temporarily load these modules into the GENERIC kernel using the /boot/loader.conf facility. You may also wish to disable non-essential services, disk and network mounts, etc. until the upgrade process is complete.
The machine should now be restarted with the updated kernel:
# shutdown -r now
Once the system has come back online, freebsd-update will need to be started again. The state of the process has been saved and thus, freebsd-update will not start from the beginning, but will remove all old shared libraries and object files. To continue to this stage, issue the following command:
# freebsd-update install
Note: Depending on whether any libraries version numbers got bumped, there may only be two install phases instead of three.
After a major version upgrade, all third party software will now need to be rebuilt and re-installed. This is required as installed software may depend on libraries which have been removed during the upgrade process. The ports-mgmt/portupgrade command may be used to automate this process. The following commands may be used to begin this process:
# portupgrade -f ruby # rm /var/db/pkg/pkgdb.db # portupgrade -f ruby18-bdb # rm /var/db/pkg/pkgdb.db /usr/ports/INDEX-*.db # portupgrade -af
Once this has completed, finish the upgrade process with a final call to freebsd-update. Issue the following command to tie up all loose ends in the upgrade process:
# freebsd-update install
If the GENERIC kernel was temporarily used, this is the time to build and install a new custom kernel in the usual way.
Reboot the machine into the new FreeBSD version. The process is complete.
The freebsd-update utility may be used to test the state of the installed FreeBSD version against a known good copy. This option evaluates the current version of system utilities, libraries, and configuration files. To begin the comparison, issue the following command:
# freebsd-update IDS >> outfile.ids
Warning: While the command name is IDS it should in no way be a replacement for an intrusion detection system such as security/snort. As freebsd-update stores data on disk, the possibility of tampering is evident. While this possibility may be reduced by using the
kern.securelevel
setting and storing the freebsd-update data on a read only file system when not in use, a better solution would be to compare the system against a secure disk, such as a DVD or securely stored external USB disk device.
The system will now be inspected, and a list of files along with their sha256(1) hash values, both the known value in the release and the current installed value, will be printed. This is why the output has been sent to the outfile.ids file. It scrolls by too quickly for eye comparisons, and soon it fills up the console buffer.
These lines are also extremely long, but the output format may be parsed quite easily. For instance, to obtain a list of all files different from those in the release, issue the following command:
# cat outfile.ids | awk '{ print $1 }' | more /etc/master.passwd /etc/motd /etc/passwd /etc/pf.conf
This output has been truncated, many more files exist. Some of these files have natural modifications, the /etc/passwd has been modified because users have been added to the system. In some cases, there may be other files, such as kernel modules, which differ as freebsd-update may have updated them. To exclude specific files or directories, add them to the IDSIgnorePaths option in /etc/freebsd-update.conf.
This system may be used as part of an elaborate upgrade method, aside from the previously discussed version.
The base system of FreeBSD includes a utility for updating the Ports Collection too: the portsnap(8) utility. Upon execution, it will connect to a remote site, verify the secure key, and download a new copy of the Ports Collection. The key is used to verify the integrity of all downloaded files, ensuring they have not been modified in-flight. To download the latest Ports Collection files, issue the following command:
# portsnap fetch Looking up portsnap.FreeBSD.org mirrors... 9 mirrors found. Fetching snapshot tag from geodns-1.portsnap.freebsd.org... done. Fetching snapshot metadata... done. Updating from Tue May 22 02:12:15 CEST 2012 to Wed May 23 16:28:31 CEST 2012. Fetching 3 metadata patches.. done. Applying metadata patches... done. Fetching 3 metadata files... done. Fetching 90 patches.....10....20....30....40....50....60....70....80....90. done. Applying patches... done. Fetching 133 new ports or files... done.
What this example shows is that portsnap(8) has found and verified several patches to the current ports data. This also indicates that the utility was run previously, if it was a first time run, the collection would have simply been downloaded.
When portsnap(8) successfully completes a fetch operation, the Ports Collection and subsequent patches exist on the local system that have passed verification. The first time portsnap is executed, you have to use extract to install the downloaded files:
# portsnap extract /usr/ports/.cvsignore /usr/ports/CHANGES /usr/ports/COPYRIGHT /usr/ports/GIDs /usr/ports/KNOBS /usr/ports/LEGAL /usr/ports/MOVED /usr/ports/Makefile /usr/ports/Mk/bsd.apache.mk /usr/ports/Mk/bsd.autotools.mk /usr/ports/Mk/bsd.cmake.mk ...
To update an already installed Ports Collection use the command portsnap update:
# portsnap update
The process is now complete, and applications may be installed or upgraded using the updated Ports Collection.
The fetch and extract or update operations may be run consecutively, as shown in the following example:
# portsnap fetch update
This command will download the latest version of the Ports Collection and update your local version under /usr/ports.
Besides the base system and the Ports Collection, documentation is an integral part of the FreeBSD operating system. While an up-to-date version of the FreeBSD Documentation Set is always available on the FreeBSD web site, some users might have slow or no permanent network connectivity at all. Fortunately, there are several ways to update the documentation shipped with each release by maintaining a local copy of the latest FreeBSD Documentation Set.
The FreeBSD documentation sources can be obtained with Subversion. This section describes:
How to install the documentation toolchain, the tools that are required to rebuild the FreeBSD documentation from its source.
How to download a copy of the documentation source at /usr/doc, using Subversion.
How to rebuild the FreeBSD documentation from its source, and install it under /usr/share/doc.
Some of the build options that are supported by the build system of the documentation, i.e., the options that build only some of the different language translations of the documentation or the options that select a specific output format.
Rebuilding the FreeBSD documentation from source requires a fairly large collection of tools. These tools are not part of the FreeBSD base system, because they need a large amount of disk space and they are not useful to all FreeBSD users; they are only useful to those users that are actively writing new documentation for FreeBSD or are frequently updating their documentation from source.
All the required tools are available as part of the Ports Collection. The textproc/docproj port is a master port that has been developed by the FreeBSD Documentation Project, to ease the initial installation and future updates of these tools.
Note: When no PostScript or PDF documentation required, one might consider installing the textproc/docproj-nojadetex port instead. This version of the documentation toolchain includes everything except the teTeX typesetting engine. teTeX is a very large collection of tools, so it may be quite sensible to omit its installation if PDF output is not really necessary.
Subversion is installed with the textproc/docproj port.
The Subversion program can fetch a clean copy of the documentation sources by typing:
# svn checkout svn://svn.FreeBSD.org/doc/head /usr/doc
The initial download of the documentation sources may take a while. Let it run until it completes.
Future updates of the documentation sources may be fetched by running:
# svn update /usr/doc
After checking out the sources, an alternative way of updating the documentation is supported by the Makefile of the /usr/doc directory by running:
# cd /usr/doc # make update
The updating and build system of the FreeBSD documentation supports a few options that ease the process of updating only parts of the documentation, or the build of specific translations. These options can be set either as system-wide options in the /etc/make.conf file, or as command-line options passed to the make(1) utility.
The following options are some of these:
The list of languages and encodings to build and install, e.g., en_US.ISO8859-1 for the English documentation only.
A single format or a list of output formats to be built. Currently, html, html-split, txt, ps, pdf, and rtf are supported.
Where to install the documentation. It defaults to /usr/share/doc.
For more make variables supported as system-wide options in FreeBSD, see make.conf(5).
For more make variables supported by the build system of the FreeBSD documentation, please refer to the FreeBSD Documentation Project Primer for New Contributors.
When an up-to-date snapshot of the documentation sources has been fetched in /usr/doc, everything is ready for an update of the installed documentation.
A full update of all the languages defined in the DOC_LANG makefile option may be done by typing:
# cd /usr/doc # make install clean
If an update of only a specific language is desired, make(1) can be invoked in a language specific subdirectory of /usr/doc, i.e.:
# cd /usr/doc/en_US.ISO8859-1 # make update install clean
The output formats that will be installed may be specified by setting the FORMATS make variable, i.e.:
# cd /usr/doc # make FORMATS='html html-split' install clean
In the previous section, we have presented a method for updating the FreeBSD documentation from sources. Source based updates may not be feasible or practical for all FreeBSD systems though. Building the documentation sources requires a fairly large collection of tools and utilities, the documentation toolchain, a certain level of familiarity with Subversion and source checkouts from a repository, and a few manual steps to build the checked out sources. In this section, we describe an alternative way of updating the installed copies of the FreeBSD documentation; one that uses the Ports Collection and makes it possible to:
Download and install pre-built snaphots of the documentation, without having to locally build anything (eliminating this way the need for an installation of the entire documentation toolchain).
Download the documentation sources and build them through the ports framework (making the checkout and build steps a bit eaiser).
These two methods of updating the FreeBSD documentation are supported by a set of
documentation ports, updated
by the Documentation Engineering Team <[email protected]>
on a monthly basis.
These are listed in the FreeBSD Ports Collection, under the virtual category named
docs.
The documentation ports use the ports building framework to make documentation builds easier. They automate the process of checking out the documentation source, running make(1) with the appropriate environment settings and command-line options, and they make the installation or deinstallation of documentation as easy as the installation of any other FreeBSD port or package.
Note: As an extra feature, when the documentation ports are built locally, they record a dependency to the documentation toolchain ports, so the latter is automatically installed too.
Organization of the documentation ports is as follows:
There is a “master port”, misc/freebsd-doc-en, where the documentation port files can be found. It is the base of all documentation ports. By default, it builds the English documentation only.
There is an “all in one port”, misc/freebsd-doc-all, and it builds and installs all documentation in all available languages.
Finally, there is a “slave port” for each translation, e.g.: misc/freebsd-doc-hu for the Hungarian-language documents. All of them depend on the master port and install the translated documentation of the respective language.
To install a documentation port from source, issue the following commands (as root):
# cd /usr/ports/misc/freebsd-doc-en # make install clean
This will build and install the English documentation in split HTML format (the same as used on http://www.FreeBSD.org) in the /usr/local/share/doc/freebsd directory.
There are many options for modifying the default behavior of the documentation ports. The following is just a short list:
Allows the build of the HTML format: a single HTML file per document. The formatted documentation is saved to a file called article.html, or book.html, as appropriate, plus images.
Allows the build of the Adobe Portable Document Format, for use with Adobe Acrobat Reader, Ghostscript or other PDF readers. The formatted documentation is saved to a file called article.pdf or book.pdf, as appropriate.
Where to install the documentation. It defaults to /usr/local/share/doc/freebsd.
Note: Notice that the default target directory differs from the directory used by the Subversion method. This is because we are installing a port, and ports are usually installed under the /usr/local directory. This can be overridden by adding the PREFIX variable.
Here is a brief example on how to use the variables mentioned above to install the Hungarian documentation in Portable Document Format:
# cd /usr/ports/misc/freebsd-doc-hu # make -DWITH_PDF DOCBASE=share/doc/freebsd/hu install clean
Building the documentation ports from source, as described in the previous section, requires a local installation of the documentation toolchain and a bit of disk space for the build of the ports. When resources are not available to install the documentation toolchain, or because the build from sources would take too much disk space, it is still possible to install pre-built snapshots of the documentation ports.
The Documentation Engineering Team <[email protected]>
prepares monthly
snapshots of the FreeBSD documentation packages. These binary packages can be used
with any of the bundled package tools, like pkg_add(1), pkg_delete(1), and so
on.
Note: When binary packages are used, the FreeBSD documentation will be installed in all available formats for the given language.
For example, the following command will install the latest pre-built package of the Hungarian documentation:
# pkg_add -r hu-freebsd-doc
Note: Packages have the following name format that differs from the corresponding port's name: lang-freebsd-doc. Here lang is the short format of the language code, i.e., hu for Hungarian, or zh_cn for Simplified Chinese.
To update a previously installed documentation port, any tool suitable for updating ports is sufficient. For example, the following command updates the installed Hungarian documentation via the ports-mgmt/portupgrade tool by using packages only:
# portupgrade -PP hu-freebsd-doc
There are two development branches to FreeBSD: FreeBSD-CURRENT and FreeBSD-STABLE. This section will explain a bit about each and describe how to keep your system up-to-date with each respective tree. FreeBSD-CURRENT will be discussed first, then FreeBSD-STABLE.
As you read this, keep in mind that FreeBSD-CURRENT is the “bleeding edge” of FreeBSD development. FreeBSD-CURRENT users are expected to have a high degree of technical skill, and should be capable of solving difficult system problems on their own. If you are new to FreeBSD, think twice before installing it.
FreeBSD-CURRENT is the latest working sources for FreeBSD. This includes work in progress, experimental changes, and transitional mechanisms that might or might not be present in the next official release of the software. While many FreeBSD developers compile the FreeBSD-CURRENT source code daily, there are periods of time when the sources are not buildable. These problems are resolved as expeditiously as possible, but whether or not FreeBSD-CURRENT brings disaster or greatly desired functionality can be a matter of which exact moment you grabbed the source code in!
FreeBSD-CURRENT is made available for 3 primary interest groups:
Members of the FreeBSD community who are actively working on some part of the source tree and for whom keeping “current” is an absolute requirement.
Members of the FreeBSD community who are active testers, willing to spend time solving problems in order to ensure that FreeBSD-CURRENT remains as sane as possible. These are also people who wish to make topical suggestions on changes and the general direction of FreeBSD, and submit patches to implement them.
Those who merely wish to keep an eye on things, or to use the current sources for reference purposes (e.g., for reading, not running). These people also make the occasional comment or contribute code.
A fast-track to getting pre-release bits because you heard there is some cool new feature in there and you want to be the first on your block to have it. Being the first on the block to get the new feature means that you are the first on the block to get the new bugs.
A quick way of getting bug fixes. Any given version of FreeBSD-CURRENT is just as likely to introduce new bugs as to fix existing ones.
In any way “officially supported”. We do our best to help people genuinely in one of the 3 “legitimate” FreeBSD-CURRENT groups, but we simply do not have the time to provide tech support. This is not because we are mean and nasty people who do not like helping people out (we would not even be doing FreeBSD if we were). We simply cannot answer hundreds messages a day and work on FreeBSD! Given the choice between improving FreeBSD and answering lots of questions on experimental code, the developers opt for the former.
Join the freebsd-current and the svn-src-head lists. This is not just a good idea, it is essential. If you are not on the freebsd-current list, you will not see the comments that people are making about the current state of the system and thus will probably end up stumbling over a lot of problems that others have already found and solved. Even more importantly, you will miss out on important bulletins which may be critical to your system's continued health.
The svn-src-head list will allow you to see the commit log entry for each change as it is made, along with any pertinent information on possible side-effects.
To join these lists, or one of the others available go to http://lists.FreeBSD.org/mailman/listinfo and click on the list that you wish to subscribe to. Instructions on the rest of the procedure are available there. If you are interested in tracking changes for the whole source tree, we would recommend subscribing to the svn-src-all list.
Grab the sources from a FreeBSD mirror site. You can do this in one of three ways:
Use the svn program to check out the desired development or release branch. This is the recommended method, providing access to FreeBSD development as it occurs. The preferred URL prefix for Subversion checkout of the -CURRENT base system is http://svn.freebsd.org/base/head/; because of the size of the repository, it is recommended that only desired subtrees be checked out.
Use the cvsup program with the supfile named standard-supfile available from /usr/share/examples/cvsup. You have to customize the sample supfile above, and configure cvsup for your environment.
Warning: cvsup has been deprecated by the Project, and is not recommended.
Note: The sample standard-supfile is intended for tracking a specific security branch of FreeBSD, and not FreeBSD-CURRENT. You will need to edit this file and replace the following line:
*default release=cvs tag=RELENG_X_YWith this one:
*default release=cvs tag=.For a detailed explanation of usable tags, please refer to the Handbook's CVS Tags section.
Use the CTM facility. If you have very bad connectivity (high price connections or only email access) CTM is an option. However, it is a lot of hassle and can give you broken files. This leads to it being rarely used, which again increases the chance of it not working for fairly long periods of time. We recommend using Subversion for any system with Internet connectivity.
If you are grabbing the sources to run, and not just look at, then grab all of FreeBSD-CURRENT, not just selected portions. The reason for this is that various parts of the source depend on updates elsewhere, and trying to compile just a subset is almost guaranteed to get you into trouble.
Before compiling FreeBSD-CURRENT, read the Makefile in /usr/src carefully. You should at least install a new kernel and rebuild the world the first time through as part of the upgrading process. Reading the FreeBSD-CURRENT mailing list and /usr/src/UPDATING will keep you up-to-date on other bootstrapping procedures that sometimes become necessary as we move toward the next release.
Be active! If you are running FreeBSD-CURRENT, we want to know what you have to say about it, especially if you have suggestions for enhancements or bug fixes. Suggestions with accompanying code are received most enthusiastically!
FreeBSD-STABLE is our development branch from which major releases are made. Changes go into this branch at a different pace, and with the general assumption that they have first gone into FreeBSD-CURRENT for testing. This is still a development branch, however, and this means that at any given time, the sources for FreeBSD-STABLE may or may not be suitable for any particular purpose. It is simply another engineering development track, not a resource for end-users.
If you are interested in tracking or contributing to the FreeBSD development process, especially as it relates to the next “point” release of FreeBSD, then you should consider following FreeBSD-STABLE.
While it is true that security fixes also go into the FreeBSD-STABLE branch, you do not need to track FreeBSD-STABLE to do this. Every security advisory for FreeBSD explains how to fix the problem for the releases it affects [12], and tracking an entire development branch just for security reasons is likely to bring in a lot of unwanted changes as well.
Although we endeavor to ensure that the FreeBSD-STABLE branch compiles and runs at all times, this cannot be guaranteed. In addition, while code is developed in FreeBSD-CURRENT before including it in FreeBSD-STABLE, more people run FreeBSD-STABLE than FreeBSD-CURRENT, so it is inevitable that bugs and corner cases will sometimes be found in FreeBSD-STABLE that were not apparent in FreeBSD-CURRENT.
For these reasons, we do not recommend that you blindly track FreeBSD-STABLE, and it is particularly important that you do not update any production servers to FreeBSD-STABLE without first thoroughly testing the code in your development environment.
If you do not have the resources to do this then we recommend that you run the most recent release of FreeBSD, and use the binary update mechanism to move from release to release.
Join the freebsd-stable list. This will keep you informed of build-dependencies that may appear in FreeBSD-STABLE or any other issues requiring special attention. Developers will also make announcements in this mailing list when they are contemplating some controversial fix or update, giving the users a chance to respond if they have any issues to raise concerning the proposed change.
Join the relevant SVN list for the branch you are tracking. For example, if you are tracking the 9-STABLE branch, join the svn-src-stable-9 list. This will allow you to view the commit log entry for each change as it is made, along with any pertinent information on possible side-effects.
To join these lists, or one of the others available go to http://lists.FreeBSD.org/mailman/listinfo and click on the list that you wish to subscribe to. Instructions on the rest of the procedure are available there. If you are interested in tracking changes for the whole source tree, we would recommend subscribing to the svn-src-all list.
If you are going to install a new system and want it to run monthly snapshot built from FreeBSD-STABLE, please check the Snapshots web page for more information. Alternatively, it is possible to install the most recent FreeBSD-STABLE release from the mirror sites and follow the instructions below to upgrade your system to the most up to date FreeBSD-STABLE source code.
If you are already running a previous release of FreeBSD and wish to upgrade via sources then you can easily do so from FreeBSD mirror site. This can be done in one of three ways:
Use the svn program to check out the desired development or release branch. This is the recommended method, providing access to FreeBSD development as it occurs. Branch names include head for the current development head, and branches identified in the release engineering page, such as stable/9 or releng/9.0. The preferred URL prefix for Subversion checkout of the base system is http://svn.freebsd.org/base/; because of the size of the repository, it is recommended that only desired subtrees be checked out.
Use the cvsup program with the supfile named stable-supfile from the directory /usr/share/examples/cvsup. You have to customize the sample supfile above, and configure cvsup for your environment.
Warning: cvsup has been deprecated by the Project, and is not recommended.
Use the CTM facility. If you do not have a fast and inexpensive connection to the Internet, this is the method you should consider using.
Essentially, if you need rapid on-demand access to the source and communications bandwidth is not a consideration, use cvsup or ftp. Otherwise, use CTM.
Before compiling FreeBSD-STABLE, read the Makefile in /usr/src carefully. You should at least install a new kernel and rebuild the world the first time through as part of the upgrading process. Reading the FreeBSD-STABLE mailing list and /usr/src/UPDATING will keep you up-to-date on other bootstrapping procedures that sometimes become necessary as we move toward the next release.
There are various ways of using an Internet (or email) connection to stay up-to-date with any given area of the FreeBSD project sources, or all areas, depending on what interests you. The primary services we offer are Subversion, Anonymous CVS, CVSup, and CTM.
Warning: While it is possible to update only parts of your source tree, the only supported update procedure is to update the entire tree and recompile both userland (i.e., all the programs that run in user space, such as those in /bin and /sbin) and kernel sources. Updating only part of your source tree, only the kernel, or only userland will often result in problems. These problems may range from compile errors to kernel panics or data corruption.
Subversion, Anonymous CVS and CVSup use the pull model of updating sources. For Subversion, the user (or a cron script) invokes the svn program, and it brings files up-to-date. Subversion is the preferred means of updating local source trees. cvsup and cvs work under similar principles, but are now deprecated in favour of Subversion. The updates you receive are up-to-the-minute and you get them when, and only when, you want them. You can easily restrict your updates to the specific files or directories that are of interest to you. Updates are generated on the fly by the server, according to what you have and what you want to have. Unless the reason is truly compelling, Subversion should be used in preference to other synchronization mechanisms, which have been deprecated and will be discontinued in the future.
CTM, on the other hand, does not interactively compare the sources you have with those on the master archive or otherwise pull them across. Instead, a script which identifies changes in files since its previous run is executed several times a day on the master CTM machine, any detected changes being compressed, stamped with a sequence-number and encoded for transmission over email (in printable ASCII only). Once received, these “CTM deltas” can then be handed to the ctm_rmail(1) utility which will automatically decode, verify and apply the changes to the user's copy of the sources. This process is far more efficient than CVSup, and places less strain on our server resources since it is a push rather than a pull model.
There are other trade-offs, of course. If you inadvertently wipe out portions of your archive, CVSup will detect and rebuild the damaged portions for you. CTM will not do this, and if you wipe some portion of your source tree out (and do not have it backed up) then you will have to start from scratch (from the most recent CVS “base delta”) and rebuild it all with CTM or, with Anonymous CVS, simply delete the bad bits and resync.
Once you have synchronized your local source tree against a particular version of FreeBSD (FreeBSD-STABLE, FreeBSD-CURRENT, and so on) you can then use the source tree to rebuild the system.
Make a Backup: It cannot be stressed enough how important it is to make a backup of your system before you do this. While rebuilding the world is (as long as you follow these instructions) an easy task to do, there will inevitably be times when you make mistakes, or when mistakes made by others in the source tree render your system unbootable.
Make sure you have taken a backup. And have a fixit floppy or bootable CD at hand. You will probably never have to use it, but it is better to be safe than sorry!
Subscribe to the Right Mailing List: The FreeBSD-STABLE and FreeBSD-CURRENT branches are, by their nature, in development. People that contribute to FreeBSD are human, and mistakes occasionally happen.
Sometimes these mistakes can be quite harmless, just causing your system to print a new diagnostic warning. Or the change may be catastrophic, and render your system unbootable or destroy your file systems (or worse).
If problems like these occur, a “heads up” is posted to the appropriate mailing list, explaining the nature of the problem and which systems it affects. And an “all clear” announcement is posted when the problem has been solved.
If you try to track FreeBSD-STABLE or FreeBSD-CURRENT and do not read the FreeBSD-STABLE mailing list or the FreeBSD-CURRENT mailing list respectively, then you are asking for trouble.
Do Not Use make world: A lot of older documentation recommends using make world for this. Doing that skips some important steps and should only be used if you are sure of what you are doing. For almost all circumstances make world is the wrong thing to do, and the procedure described here should be used instead.
To update your system, you should check /usr/src/UPDATING for any pre-buildworld steps necessary for your version of the sources and then use the procedure outlined here.
These upgrade steps assume that you are currently using an old FreeBSD version, consisting of an old compiler, old kernel, old world and old configuration files. By “world” here we mean the core system binaries, libraries and programming files. The compiler is part of “world”, but has a few special concerns.
We also assume that you have already obtained the sources to a newer system. If the sources available on the particular system are old too, see Section 25.6 for detailed help about synchronizing them to a newer version.
Updating the system from sources is a bit more subtle than it might initially seem to be, and the FreeBSD developers have found it necessary over the years to change the recommended approach fairly dramatically as new kinds of unavoidable dependencies come to light. The rest of this section describes the rationale behind the currently recommended upgrade sequence.
Any successful update sequence must deal with the following issues:
The old compiler might not be able to compile the new kernel. (Old compilers sometimes have bugs.) So, the new kernel should be built with the new compiler. In particular, the new compiler must be built before the new kernel is built. This does not necessarily mean that the new compiler must be installed before building the new kernel.
The new world might rely on new kernel features. So, the new kernel must be installed before the new world is installed.
These first two issues are the basis for the core buildworld, buildkernel, installkernel, installworld sequence that we describe in the following paragraphs. This is not an exhaustive list of all the reasons why you should prefer the currently recommended upgrade process. Some of the less obvious ones are listed below:
The old world might not run correctly on the new kernel, so you must install the new world immediately upon installing the new kernel.
Some configuration changes must be done before the new world is installed, but others might break the old world. Hence, two different configuration upgrade steps are generally needed.
For the most part, the update process only replaces or adds files; existing old files are not deleted. In a few cases, this can cause problems. As a result, the update procedure will sometimes specify certain files that should be manually deleted at certain steps. This may or may not be automated in the future.
These concerns have led to the following recommended sequence. Note that the detailed sequence for particular updates may require additional steps, but this core process should remain unchanged for some time:
make buildworld
This first compiles the new compiler and a few related tools, then uses the new compiler to compile the rest of the new world. The result ends up in /usr/obj.
make buildkernel
Unlike the older approach, using config(8) and make(1), this uses the new compiler residing in /usr/obj. This protects you against compiler-kernel mismatches.
make installkernel
Place the new kernel and kernel modules onto the disk, making it possible to boot with the newly updated kernel.
Reboot into single user mode.
Single user mode minimizes problems from updating software that is already running. It also minimizes any problems from running the old world on a new kernel.
mergemaster -p
This does some initial configuration file updates in preparation for the new world. For instance it may add new user groups to the system, or new user names to the password database. This is often necessary when new groups or special system-user accounts have been added since the last update, so that the installworld step will be able to use the newly installed system user or system group names without problems.
make installworld
Copies the world from /usr/obj. You now have a new kernel and new world on disk.
mergemaster
Now you can update the remaining configuration files, since you have a new world on disk.
Reboot.
A full machine reboot is needed now to load the new kernel and new world with new configuration files.
Note that if you are upgrading from one release of the same FreeBSD branch to a more recent release of the same branch, i.e., from 7.0 to 7.1, then this procedure may not be absolutely necessary, since you are unlikely to run into serious mismatches between compiler, kernel, userland and configuration files. The older approach of make world followed by building and installing a new kernel might work well enough for minor updates.
But, when upgrading across major releases, people who do not follow this procedure should expect some problems.
It is also worth noting that many upgrades (i.e., 4.X to 5.0) may require specific additional steps (renaming or deleting specific files prior to installworld, for instance). Read the /usr/src/UPDATING file carefully, especially at the end, where the currently recommended upgrade sequence is explicitly spelled out.
This procedure has evolved over time as the developers have found it impossible to completely prevent certain kinds of mismatch problems. Hopefully, the current procedure will remain stable for a long time.
To summarize, the currently recommended way of upgrading FreeBSD from sources is:
# cd /usr/src # make buildworld # make buildkernel # make installkernel # shutdown -r now
Note: There are a few rare cases when an extra run of mergemaster -p is needed before the buildworld step. These are described in UPDATING. In general, though, you can safely omit this step if you are not updating across one or more major FreeBSD versions.
After installkernel finishes successfully, you should boot in single user mode (i.e., using boot -s from the loader prompt). Then run:
# mount -u / # mount -a -t ufs # adjkerntz -i # mergemaster -p # cd /usr/src # make installworld # mergemaster # reboot
Read Further Explanations: The sequence described above is only a short resume to help you getting started. You should however read the following sections to clearly understand each step, especially if you want to use a custom kernel configuration.
Before you do anything else, read /usr/src/UPDATING (or the equivalent file wherever you have a copy of the source code). This file should contain important information about problems you might encounter, or specify the order in which you might have to run certain commands. If UPDATING contradicts something you read here, UPDATING takes precedence.
Important: Reading UPDATING is not an acceptable substitute for subscribing to the correct mailing list, as described previously. The two requirements are complementary, not exclusive.
Examine the files /usr/share/examples/etc/make.conf and /etc/make.conf. The first contains some default defines – most of which are commented out. To make use of them when you rebuild your system from source, add them to /etc/make.conf. Keep in mind that anything you add to /etc/make.conf is also used every time you run make, so it is a good idea to set them to something sensible for your system.
A typical user will probably want to copy and uncomment the NO_PROFILE line found in /usr/share/examples/etc/make.conf to /etc/make.conf.
Examine the other definitions, like NOPORTDOCS, and decide if they are relevant to you.
The /etc directory contains a large part of your system's configuration information, as well as scripts that are run at system startup. Some of these scripts change from version to version of FreeBSD.
Some of the configuration files are also used in the day to day running of the system. In particular, /etc/group.
There have been occasions when the installation part of make installworld has expected certain usernames or groups to exist. When performing an upgrade it is likely that these users or groups did not exist. This caused problems when upgrading. In some cases make buildworld will check to see if these users or groups exist.
An example of this is when the smmsp user was added. Users had the installation process fail for them when mtree(8) was trying to create /var/spool/clientmqueue.
The solution is to run mergemaster(8) in
pre-buildworld mode by providing the -p
option.
This will compare only those files that are essential for the success of buildworld or installworld.
Tip: If you are feeling particularly paranoid, you can check your system to see which files are owned by the group you are renaming or deleting:
# find / -group GID -printwill show all files owned by group GID (which can be either a group name or a numeric group ID).
You may want to compile the system in single user mode. Apart from the obvious benefit of making things go slightly faster, reinstalling the system will touch a lot of important system files, all the standard system binaries, libraries, include files and so on. Changing these on a running system (particularly if you have active users on the system at the time) is asking for trouble.
Another method is to compile the system in multi-user mode, and then drop into single user mode for the installation. If you would like to do it this way, simply hold off on the following steps until the build has completed. You can postpone dropping to single user mode until you have to installkernel or installworld.
As the superuser, you can execute:
# shutdown now
from a running system, which will drop it to single user mode.
Alternatively, reboot the system, and at the boot prompt, select the “single user” option. The system will then boot single user. At the shell prompt you should then run:
# fsck -p # mount -u / # mount -a -t ufs # swapon -a
This checks the file systems, remounts / read/write, mounts all the other UFS file systems referenced in /etc/fstab and then turns swapping on.
Note: If your CMOS clock is set to local time and not to GMT (this is true if the output of the date(1) command does not show the correct time and zone), you may also need to run the following command:
# adjkerntz -iThis will make sure that your local time-zone settings get set up correctly — without this, you may later run into some problems.
As parts of the system are rebuilt they are placed in directories which (by default) go under /usr/obj. The directories shadow those under /usr/src.
You can speed up the make buildworld process, and possibly save yourself some dependency headaches by removing this directory as well.
Some files below /usr/obj may have the immutable flag set (see chflags(1) for more information) which must be removed first.
# cd /usr/obj # chflags -R noschg * # rm -rf *
It is a good idea to save the output you get from running make(1) to another file. If something goes wrong you will have a copy of the error message. While this might not help you in diagnosing what has gone wrong, it can help others if you post your problem to one of the FreeBSD mailing lists.
The easiest way to do this is to use the script(1) command, with a parameter that specifies the name of the file to save all output to. You would do this immediately before rebuilding the world, and then type exit when the process has finished.
# script /var/tmp/mw.out
Script started, output file is /var/tmp/mw.out
# make TARGET
… compile, compile, compile …
# exit
Script done, …
If you do this, do not save the output in /tmp. This directory may be cleared next time you reboot. A better place to store it is in /var/tmp (as in the previous example) or in root's home directory.
You must be in the /usr/src directory:
# cd /usr/src
(unless, of course, your source code is elsewhere, in which case change to that directory instead).
To rebuild the world you use the make(1) command. This command reads instructions from the Makefile, which describes how the programs that comprise FreeBSD should be rebuilt, the order in which they should be built, and so on.
The general format of the command line you will type is as follows:
# make -x -DVARIABLE target
In this example, -x
is an option that you would pass to make(1). See the make(1) manual
page for an example of the options you can pass.
-DVARIABLE
passes a variable to the Makefile. The behavior of the
Makefile is controlled by these variables. These are the
same variables as are set in /etc/make.conf, and this
provides another way of setting them.
# make -DNO_PROFILE target
is another way of specifying that profiled libraries should not be built, and corresponds with the
NO_PROFILE= true # Avoid compiling profiled libraries
line in /etc/make.conf.
target tells make(1) what you want to do. Each Makefile defines a number of different “targets”, and your choice of target determines what happens.
Some targets are listed in the Makefile, but are not meant for you to run. Instead, they are used by the build process to break out the steps necessary to rebuild the system into a number of sub-steps.
Most of the time you will not need to pass any parameters to make(1), and so your command like will look like this:
# make target
Where target will be one of many build options. The first target should always be buildworld.
As the names imply, buildworld builds a complete new tree under /usr/obj, and installworld, another target, installs this tree on the current machine.
Having separate options is very useful for two reasons. First, it allows you to do the build safe in the knowledge that no components of your running system will be affected. The build is “self hosted”. Because of this, you can safely run buildworld on a machine running in multi-user mode with no fear of ill-effects. It is still recommended that you run the installworld part in single user mode, though.
Secondly, it allows you to use NFS mounts to upgrade multiple machines on your network. If you have three machines, A, B and C that you want to upgrade, run make buildworld and make installworld on A. B and C should then NFS mount /usr/src and /usr/obj from A, and you can then run make installworld to install the results of the build on B and C.
Although the world target still exists, you are strongly encouraged not to use it.
Run
# make buildworld
It is possible to specify a -j
option to make which will cause it to spawn several simultaneous
processes. This is most useful on multi-CPU machines. However, since much of the
compiling process is IO bound rather than CPU bound it is also useful on
single CPU machines.
On a typical single-CPU machine you would run:
# make -j4 buildworld
make(1) will then have up to 4 processes running at any one time. Empirical evidence posted to the mailing lists shows this generally gives the best performance benefit.
If you have a multi-CPU machine and you are using an SMP configured kernel try values between 6 and 10 and see how they speed things up.
Many factors influence the build time, but fairly recent machines may only take a one or two hours to build the FreeBSD-STABLE tree, with no tricks or shortcuts used during the process. A FreeBSD-CURRENT tree will take somewhat longer.
To take full advantage of your new system you should recompile the kernel. This is practically a necessity, as certain memory structures may have changed, and programs like ps(1) and top(1) will fail to work until the kernel and source code versions are the same.
The simplest, safest way to do this is to build and install a kernel based on GENERIC. While GENERIC may not have all the necessary devices for your system, it should contain everything necessary to boot your system back to single user mode. This is a good test that the new system works properly. After booting from GENERIC and verifying that your system works you can then build a new kernel based on your normal kernel configuration file.
On FreeBSD it is important to build world before building a new kernel.
Note: If you want to build a custom kernel, and already have a configuration file, just use KERNCONF=MYKERNEL like this:
# cd /usr/src # make buildkernel KERNCONF=MYKERNEL # make installkernel KERNCONF=MYKERNEL
Note that if you have raised kern.securelevel above 1 and you have set either the noschg or similar flags to your kernel binary, you might find it necessary to drop into single user mode to use installkernel. Otherwise you should be able to run both these commands from multi user mode without problems. See init(8) for details about kern.securelevel and chflags(1) for details about the various file flags.
You should reboot into single user mode to test the new kernel works. Do this by following the instructions in Section 25.7.5.
You should now use installworld to install the new system binaries.
Run
# cd /usr/src # make installworld
Note: If you specified variables on the make buildworld command line, you must specify the same variables in the make installworld command line. This does not necessarily hold true for other options; for example,
-j
must never be used with installworld.For example, if you ran:
# make -DNO_PROFILE buildworldyou must install the results with:
# make -DNO_PROFILE installworldotherwise it would try to install profiled libraries that had not been built during the make buildworld phase.
Remaking the world will not update certain directories (in particular, /etc, /var and /usr) with new or changed configuration files.
The simplest way to update these files is to use mergemaster(8), though it is possible to do it manually if you would prefer to do that. Regardless of which way you choose, be sure to make a backup of /etc in case anything goes wrong.
The mergemaster(8) utility is a Bourne script that will aid you in determining the differences between your configuration files in /etc, and the configuration files in the source tree /usr/src/etc. This is the recommended solution for keeping the system configuration files up to date with those located in the source tree.
To begin simply type mergemaster at your prompt, and
watch it start going. mergemaster will then build a
temporary root environment, from / down, and
populate it with various system configuration files. Those files are then compared
to the ones currently installed in your system. At this point, files that differ
will be shown in diff(1) format, with
the +
sign representing added or modified lines, and
-
representing lines that will be either removed
completely, or replaced with a new line. See the diff(1) manual
page for more information about the diff(1) syntax and
how file differences are shown.
mergemaster(8) will then show you each file that displays variances, and at this point you will have the option of either deleting the new file (referred to as the temporary file), installing the temporary file in its unmodified state, merging the temporary file with the currently installed file, or viewing the diff(1) results again.
Choosing to delete the temporary file will tell mergemaster(8) that we wish to keep our current file unchanged, and to delete the new version. This option is not recommended, unless you see no reason to change the current file. You can get help at any time by typing ? at the mergemaster(8) prompt. If the user chooses to skip a file, it will be presented again after all other files have been dealt with.
Choosing to install the unmodified temporary file will replace the current file with the new one. For most unmodified files, this is the best option.
Choosing to merge the file will present you with a text editor, and the contents of both files. You can now merge them by reviewing both files side by side on the screen, and choosing parts from both to create a finished product. When the files are compared side by side, the l key will select the left contents and the r key will select contents from your right. The final output will be a file consisting of both parts, which can then be installed. This option is customarily used for files where settings have been modified by the user.
Choosing to view the diff(1) results again will show you the file differences just like mergemaster(8) did before prompting you for an option.
After mergemaster(8) is done with the system files you will be prompted for other options. mergemaster(8) may ask if you want to rebuild the password file and will finish up with an option to remove left-over temporary files.
If you wish to do the update manually, however, you cannot just copy over the files from /usr/src/etc to /etc and have it work. Some of these files must be “installed” first. This is because the /usr/src/etc directory is not a copy of what your /etc directory should look like. In addition, there are files that should be in /etc that are not in /usr/src/etc.
If you are using mergemaster(8) (as recommended), you can skip forward to the next section.
The simplest way to do this by hand is to install the files into a new directory, and then work through them looking for differences.
Backup Your Existing /etc: Although, in theory, nothing is going to touch this directory automatically, it is always better to be sure. So copy your existing /etc directory somewhere safe. Something like:
# cp -Rp /etc /etc.old
-R
does a recursive copy,-p
preserves times, ownerships on files and suchlike.
You need to build a dummy set of directories to install the new /etc and other files into. /var/tmp/root is a reasonable choice, and there are a number of subdirectories required under this as well.
# mkdir /var/tmp/root # cd /usr/src/etc # make DESTDIR=/var/tmp/root distrib-dirs distribution
This will build the necessary directory structure and install the files. A lot of the subdirectories that have been created under /var/tmp/root are empty and should be deleted. The simplest way to do this is to:
# cd /var/tmp/root # find -d . -type d | xargs rmdir 2>/dev/null
This will remove all empty directories. (Standard error is redirected to /dev/null to prevent the warnings about the directories that are not empty.)
/var/tmp/root now contains all the files that should be placed in appropriate locations below /. You now have to go through each of these files, determining how they differ with your existing files.
Note that some of the files that will have been installed in /var/tmp/root have a leading “.”. At the time of writing the only files like this are shell startup files in /var/tmp/root/ and /var/tmp/root/root/, although there may be others (depending on when you are reading this). Make sure you use ls -a to catch them.
The simplest way to do this is to use diff(1) to compare the two files:
# diff /etc/shells /var/tmp/root/etc/shells
This will show you the differences between your /etc/shells file and the new /var/tmp/root/etc/shells file. Use these to decide whether to merge in changes that you have made or whether to copy over your old file.
Name the New Root Directory (/var/tmp/root) with a Time Stamp, so You Can Easily Compare Differences Between Versions: Frequently rebuilding the world means that you have to update /etc frequently as well, which can be a bit of a chore.
You can speed this process up by keeping a copy of the last set of changed files that you merged into /etc. The following procedure gives one idea of how to do this.
Make the world as normal. When you want to update /etc and the other directories, give the target directory a name based on the current date. If you were doing this on the 14th of February 1998 you could do the following:
# mkdir /var/tmp/root-19980214 # cd /usr/src/etc # make DESTDIR=/var/tmp/root-19980214 \ distrib-dirs distributionMerge in the changes from this directory as outlined above.
Do not remove the /var/tmp/root-19980214 directory when you have finished.
When you have downloaded the latest version of the source and remade it, follow step 1. This will give you a new directory, which might be called /var/tmp/root-19980221 (if you wait a week between doing updates).
You can now see the differences that have been made in the intervening week using diff(1) to create a recursive diff between the two directories:
# cd /var/tmp # diff -r root-19980214 root-19980221Typically, this will be a much smaller set of differences than those between /var/tmp/root-19980221/etc and /etc. Because the set of differences is smaller, it is easier to migrate those changes across into your /etc directory.
You can now remove the older of the two /var/tmp/root-* directories:
# rm -rf /var/tmp/root-19980214Repeat this process every time you need to merge in changes to /etc.
You can use date(1) to automate the generation of the directory names:
# mkdir /var/tmp/root-`date "+%Y%m%d"`
You are now done. After you have verified that everything appears to be in the right place you can reboot the system. A simple shutdown(8) should do it:
# shutdown -r now
You should now have successfully upgraded your FreeBSD system. Congratulations.
If things went slightly wrong, it is easy to rebuild a particular piece of the system. For example, if you accidentally deleted /etc/magic as part of the upgrade or merge of /etc, the file(1) command will stop working. In this case, the fix would be to run:
# cd /usr/src/usr.bin/file # make all install
There is no easy answer to this one, as it depends on the nature of the change. For example, if you just ran CVSup, and it has shown the following files as being updated:
src/games/cribbage/instr.c src/games/sail/pl_main.c src/release/sysinstall/config.c src/release/sysinstall/media.c src/share/mk/bsd.port.mk
it probably is not worth rebuilding the entire world. You could just go to the appropriate sub-directories and make all install, and that is about it. But if something major changed, for example src/lib/libc/stdlib then you should either re-make the world, or at least those parts of it that are statically linked (as well as anything else you might have added that is statically linked).
At the end of the day, it is your call. You might be happy re-making the world every fortnight say, and let changes accumulate over that fortnight. Or you might want to re-make just those things that have changed, and be confident you can spot all the dependencies.
And, of course, this all depends on how often you want to upgrade, and whether you are tracking FreeBSD-STABLE or FreeBSD-CURRENT.
My compile failed with lots of signal 11 (or other signal number) errors. What has happened?
This is normally indicative of hardware problems. (Re)making the world is an effective way to stress test your hardware, and will frequently throw up memory problems. These normally manifest themselves as the compiler mysteriously dying on receipt of strange signals.
A sure indicator of this is if you can restart the make and it dies at a different point in the process.
In this instance there is little you can do except start swapping around the components in your machine to determine which one is failing.
The short answer is yes.
/usr/obj contains all the object files that were produced during the compilation phase. Normally, one of the first steps in the make buildworld process is to remove this directory and start afresh. In this case, keeping /usr/obj around after you have finished makes little sense, and will free up a large chunk of disk space (currently about 2 GB).
However, if you know what you are doing you can have make buildworld skip this step. This will make subsequent builds run much faster, since most of sources will not need to be recompiled. The flip side of this is that subtle dependency problems can creep in, causing your build to fail in odd ways. This frequently generates noise on the FreeBSD mailing lists, when one person complains that their build has failed, not realizing that it is because they have tried to cut corners.
This depends on how far through the process you got before you found a problem.
In general (and this is not a hard and fast rule) the make buildworld process builds new copies of essential tools (such as gcc(1), and make(1)) and the system libraries. These tools and libraries are then installed. The new tools and libraries are then used to rebuild themselves, and are installed again. The entire system (now including regular user programs, such as ls(1) or grep(1)) is then rebuilt with the new system files.
If you are at the last stage, and you know it (because you have looked through the output that you were storing) then you can (fairly safely) do:
… fix the problem …
# cd /usr/src
# make -DNO_CLEAN all
This will not undo the work of the previous make buildworld.
If you see the message:
-------------------------------------------------------------- Building everything.. --------------------------------------------------------------
in the make buildworld output then it is probably fairly safe to do so.
If you do not see that message, or you are not sure, then it is always better to be safe than sorry, and restart the build from scratch.
Run in single user mode.
Put the /usr/src and /usr/obj directories on separate file systems held on separate disks. If possible, put these disks on separate disk controllers.
Better still, put these file systems across multiple disks using the ccd(4) (concatenated disk driver) device.
Turn off profiling (set “NO_PROFILE=true” in /etc/make.conf). You almost certainly do not need it.
Pass the -jn
option to make(1) to run
multiple processes in parallel. This usually helps regardless of whether
you have a single or a multi processor machine.
The file system holding /usr/src can be mounted
(or remounted) with the noatime
option.
This prevents the file system from recording the file access time. You
probably do not need this information anyway.
# mount -u -o noatime /usr/src
Warning: The example assumes /usr/src is on its own file system. If it is not (if it is a part of /usr for example) then you will need to use that file system mount point, and not /usr/src.
The file system holding /usr/obj can be mounted
(or remounted) with the async
option.
This causes disk writes to happen asynchronously. In other words, the write
completes immediately, and the data is written to the disk a few seconds
later. This allows writes to be clustered together, and can be a
dramatic performance boost.
Warning: Keep in mind that this option makes your file system more fragile. With this option there is an increased chance that, should power fail, the file system will be in an unrecoverable state when the machine restarts.
If /usr/obj is the only thing on this file system then it is not a problem. If you have other, valuable data on the same file system then ensure your backups are fresh before you enable this option.
# mount -u -o async /usr/obj
Warning: As above, if /usr/obj is not on its own file system, replace it in the example with the name of the appropriate mount point.
Make absolutely sure your environment has no extraneous cruft from earlier builds. This is simple enough.
# chflags -R noschg /usr/obj/usr # rm -rf /usr/obj/usr # cd /usr/src # make cleandir # make cleandir
Yes, make cleandir really should be run twice.
Then restart the whole process, starting with make buildworld.
If you still have problems, send the error and the output of uname -a to FreeBSD general questions mailing list. Be prepared to answer other questions about your setup!
As a part of the FreeBSD development lifecycle, it happens from time to time that files and their contents become obsolete. This may be because their functionality is implemented elsewhere, the version number of the library has changed or it was removed from the system entirely. This includes old files, libraries and directories, which should be removed when updating the system. The benefit for the user is that the system is not cluttered with old files which take up unnecessary space on the storage (and backup) medium. Additionally, if the old library had a security or stability issue, you should update to the newer library to keep your system safe and prevent crashes caused by the old library implementation. The files, directories, and libraries that are considered obsolete are listed in /usr/src/ObsoleteFiles.inc. The following instructions will help you removing these obsolete files during the system upgrade process.
We assume you are following the steps outlined in Section 25.7.1. After the make installworld and the subsequent mergemaster commands have finished successfully, you should check for obsolete files and libraries as follows:
# cd /usr/src # make check-old
If any obsolete files are found, they can be deleted using the following commands:
# make delete-old
Tip: See /usr/src/Makefile for more targets of interest.
A prompt is displayed before deleting each obsolete file. You can skip the prompt and let the system remove these files automatically by using the BATCH_DELETE_OLD_FILES make-variable as follows:
# make -DBATCH_DELETE_OLD_FILES delete-old
You can also achieve the same goal by piping these commands through yes like this:
# yes|make delete-old
Warning: Deleting obsolete files will break applications that still depend on those obsolete files. This is especially true for old libraries. In most cases, you need to recompile the programs, ports, or libraries that used the old library before make delete-old-libs is executed.
Utilities for checking shared library dependencies are available from the Ports Collection in sysutils/libchk or sysutils/bsdadminscripts.
Obsolete shared libraries can conflict with newer libraries, causing messages like these:
/usr/bin/ld: warning: libz.so.4, needed by /usr/local/lib/libtiff.so, may conflict with libz.so.5 /usr/bin/ld: warning: librpcsvc.so.4, needed by /usr/local/lib/libXext.so, may conflict with librpcsvc.so.5
To solve these problems, determine which port installed the library:
# pkg_info -W /usr/local/lib/libtiff.so /usr/local/lib/libtiff.so was installed by package tiff-3.9.4 # pkg_info -W /usr/local/lib/libXext.so /usr/local/lib/libXext.so was installed by package libXext-1.1.1,1
Then deinstall, rebuild and reinstall the port. The ports-mgmt/portmaster and ports-mgmt/portupgrade utilities can be used to automate this process. After you have made sure that all ports are rebuilt and do not use the old libraries any more, you can delete them using the following command:
# make delete-old-libs
If you have multiple machines that you want to track the same source tree, then having all of them download sources and rebuild everything seems like a waste of resources: disk space, network bandwidth, and CPU cycles. It is, and the solution is to have one machine do most of the work, while the rest of the machines mount that work via NFS. This section outlines a method of doing so.
First, identify a set of machines that is going to run the same set of binaries, which we will call a build set. Each machine can have a custom kernel, but they will be running the same userland binaries. From that set, choose a machine to be the build machine. It is going to be the machine that the world and kernel are built on. Ideally, it should be a fast machine that has sufficient spare CPU to run make buildworld and make buildkernel. You will also want to choose a machine to be the test machine, which will test software updates before they are put into production. This must be a machine that you can afford to have down for an extended period of time. It can be the build machine, but need not be.
All the machines in this build set need to mount /usr/obj and /usr/src from the same machine, and at the same point. Ideally, those are on two different drives on the build machine, but they can be NFS mounted on that machine as well. If you have multiple build sets, /usr/src should be on one build machine, and NFS mounted on the rest.
Finally make sure that /etc/make.conf and /etc/src.conf on all the machines in the build set agrees with the build machine. That means that the build machine must build all the parts of the base system that any machine in the build set is going to install. Also, each build machine should have its kernel name set with KERNCONF in /etc/make.conf, and the build machine should list them all in KERNCONF, listing its own kernel first. The build machine must have the kernel configuration files for each machine in /usr/src/sys/arch/conf if it is going to build their kernels.
Now that all that is done, you are ready to build everything. Build the kernel and world as described in Section 25.7.7.2 on the build machine, but do not install anything. After the build has finished, go to the test machine, and install the kernel you just built. If this machine mounts /usr/src and /usr/obj via NFS, when you reboot to single user you will need to enable the network and mount them. The easiest way to do this is to boot to multi-user, then run shutdown now to go to single user mode. Once there, you can install the new kernel and world and run mergemaster just as you normally would. When done, reboot to return to normal multi-user operations for this machine.
After you are certain that everything on the test machine is working properly, use the same procedure to install the new software on each of the other machines in the build set.
The same ideas can be used for the ports tree. The first critical step is mounting /usr/ports from the same machine to all the machines in the build set. You can then set up /etc/make.conf properly to share distfiles. You should set DISTDIR to a common shared directory that is writable by whichever user root is mapped to by your NFS mounts. Each machine should set WRKDIRPREFIX to a local build directory. Finally, if you are going to be building and distributing packages, you should set PACKAGES to a directory similar to DISTDIR.
DTrace, also known as Dynamic Tracing, was developed by Sun as a tool for locating performance bottlenecks in production and pre-production systems. It is not, in any way, a debugging tool, but a tool for real time system analysis to locate performance and other issues.
DTrace is a remarkable profiling tool, with an impressive array of features for diagnosing system issues. It may also be used to run pre-written scripts to take advantage of its capabilities. Users may even author their own utilities using the DTrace D Language, allowing them to customize their profiling based on specific needs.
After reading this chapter, you will know:
What DTrace is and what features it provides.
Differences between the Solaris DTrace implementation and the one provided by FreeBSD.
How to enable and use DTrace on FreeBSD.
Before reading this chapter, you should:
Understand UNIX and FreeBSD basics (Chapter 4).
Be familiar with the basics of kernel configuration/compilation (Chapter 9).
Have some familiarity with security and how it pertains to FreeBSD (Chapter 15).
Understand how to obtain and rebuild the FreeBSD sources (Chapter 25).
Warning: This feature is considered experimental. Some options may be lacking in functionality, other parts may not work at all. In time, this feature will be considered production ready and this documentation will be altered to fit that situation.
While the DTrace in FreeBSD is very similar to that found in Solaris, differences exist that should be explained before continuing. The primary difference users will notice is that on FreeBSD, DTrace needs to be specifically enabled. There are kernel options and modules which must be enabled for DTrace to work properly. These will be explained later.
There is a DDB_CTF kernel option which is used to enable support for loading the CTF data from kernel modules and the kernel itself. CTF is the Solaris Compact C Type Format which encapsulates a reduced form of debugging information similar to DWARF and the venerable stabs. This CTF data is added to the binaries by the ctfconvert and ctfmerge build tools. The ctfconvert utility parses DWARF ELF debug sections created by the compiler and ctfmerge merges CTF ELF sections from objects into either executables or shared libraries. More on how to enable this for the kernel and FreeBSD build is forthcoming.
Some different providers exist for FreeBSD than for Solaris. Most notable is the dtmalloc
provider, which allows tracing malloc()
by type in the
FreeBSD kernel.
Only root may use DTrace on FreeBSD. This is related to security differences, Solaris has a few low level security checks which do not yet exist in FreeBSD. As such, the /dev/dtrace/dtrace is strictly limited to root users only.
Finally, the DTrace software falls under Sun's CDDL license. The Common Development and Distribution License comes with FreeBSD, see the /usr/src/cddl/contrib/opensolaris/OPENSOLARIS.LICENSE or view it online at http://www.opensolaris.org/os/licensing.
This license means that a FreeBSD kernel with the DTrace options is still BSD licensed; however the CDDL kicks in when the modules are distributed in binary form, or the binaries are loaded.
To enable support for DTrace, add the following lines to the kernel configuration file:
options KDTRACE_HOOKS options DDB_CTF
Note: Users of the AMD64 architecture will want to add the following line to their kernel configuration file:
options KDTRACE_FRAMEThis option provides support for the FBT feature. DTrace will work without this option; however, there will be limited support for function boundary tracing.
All sources must be rebuilt and installed with CTF options. To accomplish this task, rebuild the FreeBSD sources using:
# cd /usr/src # make WITH_CTF=1 kernel
The system will need to be restarted.
After rebooting and allowing the new kernel to be loaded into memory, support for the Korn shell should be added. This is needed as the DTraceToolkit has several utilities written in ksh. Install the shells/ksh93. It is also possible to run these tools under shells/pdksh or shells/mksh.
Finally, obtain the current DTraceToolkit. If you are running FreeBSD 10, you will find the DTraceToolkit in /usr/share/dtrace. Otherwise, you can install the DTraceToolkit using the sysutils/DTraceToolkit port.
Before making use of DTrace functionality, the DTrace device must exist. To load the device, issue the following command:
# kldload dtraceall
DTrace support should now be available. To view all probes the administrator may now execute the following command:
# dtrace -l | more
All output is passed to the more utility as it will quickly overflow the screen buffer. At this point, DTrace should be considered working. It is now time to review the toolkit.
The toolkit is a collection of ready-made scripts to run with DTrace to collect system information. There are scripts to check open files, memory, CPU usage and a lot more. Extract the scripts with the following command:
# gunzip -c DTraceToolkit* | tar xvf -
Change into that directory with the cd and change the execution permissions on all files, designated as those files with lower case names, to 755.
All of these scripts will need modifications to their contents. The ones which refer to /usr/bin/ksh need that changed to /usr/local/bin/ksh, the others which use /usr/bin/sh need to be altered to use /bin/sh, and finally the ones which use /usr/bin/perl will need altered to use /usr/local/bin/perl.
Important: At this point it is prudent to remind the reader that DTrace support in FreeBSD is incomplete and experimental. Many of these scripts will not work as they are either too Solaris-specific or use probes which are unsupported at this time.
At the time of this writing only two of the scripts of the DTrace Toolkit are fully supported in FreeBSD: the hotkernel and procsystime scripts. These are the two we will explore in the following parts of this section.
The hotkernel is designed to identify which function is using the most kernel time. Run normally, it will produce output similar to the following:
# cd /usr/share/dtrace/toolkit # ./hotkernel Sampling... Hit Ctrl-C to end.
The system administrator must use the Ctrl+C key combination to stop the process. Upon termination, the script will display a list of kernel functions and timing information, sorting the output in increasing order of time:
kernel`_thread_lock_flags 2 0.0% 0xc1097063 2 0.0% kernel`sched_userret 2 0.0% kernel`kern_select 2 0.0% kernel`generic_copyin 3 0.0% kernel`_mtx_assert 3 0.0% kernel`vm_fault 3 0.0% kernel`sopoll_generic 3 0.0% kernel`fixup_filename 4 0.0% kernel`_isitmyx 4 0.0% kernel`find_instance 4 0.0% kernel`_mtx_unlock_flags 5 0.0% kernel`syscall 5 0.0% kernel`DELAY 5 0.0% 0xc108a253 6 0.0% kernel`witness_lock 7 0.0% kernel`read_aux_data_no_wait 7 0.0% kernel`Xint0x80_syscall 7 0.0% kernel`witness_checkorder 7 0.0% kernel`sse2_pagezero 8 0.0% kernel`strncmp 9 0.0% kernel`spinlock_exit 10 0.0% kernel`_mtx_lock_flags 11 0.0% kernel`witness_unlock 15 0.0% kernel`sched_idletd 137 0.3% 0xc10981a5 42139 99.3%
This script will also work with kernel modules. To use this feature, run the script
with the -m
flag:
# ./hotkernel -m Sampling... Hit Ctrl-C to end. ^C MODULE COUNT PCNT 0xc107882e 1 0.0% 0xc10e6aa4 1 0.0% 0xc1076983 1 0.0% 0xc109708a 1 0.0% 0xc1075a5d 1 0.0% 0xc1077325 1 0.0% 0xc108a245 1 0.0% 0xc107730d 1 0.0% 0xc1097063 2 0.0% 0xc108a253 73 0.0% kernel 874 0.4% 0xc10981a5 213781 99.6%
The procsystime script captures and prints the system call time usage for a given PID or process name. In the following example, a new instance of /bin/csh was spawned. The procsystime was executed and remained waiting while a few commands were typed on the other incarnation of csh. These are the results of this test:
# ./procsystime -n csh Tracing... Hit Ctrl-C to end... ^C Elapsed Times for processes csh, SYSCALL TIME (ns) getpid 6131 sigreturn 8121 close 19127 fcntl 19959 dup 26955 setpgid 28070 stat 31899 setitimer 40938 wait4 62717 sigaction 67372 sigprocmask 119091 gettimeofday 183710 write 263242 execve 492547 ioctl 770073 vfork 3258923 sigsuspend 6985124 read 3988049784
As shown, the read()
system call seems to use the most
time in nanoseconds with the getpid()
system call used the
least amount of time.
The DTrace Toolkit includes many scripts in the special language of DTrace. This language is called “the D language” by Sun documentation, and it is very similar to C++. An in depth discussion of the language is beyond the scope of this document. It is extensively discussed at http://wikis.sun.com/display/DTrace/Documentation.
FreeBSD is one of the most widely deployed operating systems for high performance network servers. The chapters in this part cover:
Serial communication
PPP and PPP over Ethernet
Electronic Mail
Running Network Servers
Firewalls
Other Advanced Networking Topics
These chapters are designed to be read when you need the information. You do not have to read them in any particular order, nor do you need to read all of them before you can begin using FreeBSD in a network environment.
UNIX has always had support for serial communications. In fact, the very first UNIX machines relied on serial lines for user input and output. Things have changed a lot from the days when the average “terminal” consisted of a 10-character-per-second serial printer and a keyboard. This chapter will cover some of the ways in which FreeBSD uses serial communications.
After reading this chapter, you will know:
How to connect terminals to your FreeBSD system.
How to use a modem to dial out to remote hosts.
How to allow remote users to login to your system with a modem.
How to boot your system from a serial console.
Before reading this chapter, you should:
Warning: As of FreeBSD 8.0, device nodes for serial ports have been renamed from /dev/cuadN to /dev/cuauN and from /dev/ttydN to /dev/ttyuN. FreeBSD 7.X users will have to adapt the following documentation according to these changes.
Bits per Second — the rate at which data is transmitted
Data Terminal Equipment — for example, your computer
Data Communications Equipment — your modem
EIA standard for hardware serial communications
When talking about communications data rates, this section does not use the term “baud”. Baud refers to the number of electrical state transitions that may be made in a period of time, while “bps” (bits per second) is the correct term to use (at least it does not seem to bother the curmudgeons quite as much).
To connect a modem or terminal to your FreeBSD system, you will need a serial port on your computer and the proper cable to connect to your serial device. If you are already familiar with your hardware and the cable it requires, you can safely skip this section.
There are several different kinds of serial cables. The two most common types for our purposes are null-modem cables and standard (“straight”) RS-232 cables. The documentation for your hardware should describe the type of cable required.
A null-modem cable passes some signals, such as “Signal Ground”, straight through, but switches other signals. For example, the “Transmitted Data” pin on one end goes to the “Received Data” pin on the other end.
You can also construct your own null-modem cable for use with terminals (e.g., for quality purposes). This table shows the RS-232C signals and the pin numbers on a DB-25 connector. Note that the standard also calls for a straight-through pin 1 to pin 1 Protective Ground line, but it is often omitted. Some terminals work OK using only pins 2, 3 and 7, while others require different configurations than the examples shown below.
Table 27-1. DB-25 to DB-25 Null-Modem Cable
Signal | Pin # | Pin # | Signal | |
---|---|---|---|---|
SG | 7 | connects to | 7 | SG |
TD | 2 | connects to | 3 | RD |
RD | 3 | connects to | 2 | TD |
RTS | 4 | connects to | 5 | CTS |
CTS | 5 | connects to | 4 | RTS |
DTR | 20 | connects to | 6 | DSR |
DTR | 20 | connects to | 8 | DCD |
DSR | 6 | connects to | 20 | DTR |
DCD | 8 | connects to | 20 | DTR |
Here are two other schemes more common nowadays.
Table 27-2. DB-9 to DB-9 Null-Modem Cable
Signal | Pin # | Pin # | Signal | |
---|---|---|---|---|
RD | 2 | connects to | 3 | TD |
TD | 3 | connects to | 2 | RD |
DTR | 4 | connects to | 6 | DSR |
DTR | 4 | connects to | 1 | DCD |
SG | 5 | connects to | 5 | SG |
DSR | 6 | connects to | 4 | DTR |
DCD | 1 | connects to | 4 | DTR |
RTS | 7 | connects to | 8 | CTS |
CTS | 8 | connects to | 7 | RTS |
Table 27-3. DB-9 to DB-25 Null-Modem Cable
Signal | Pin # | Pin # | Signal | |
---|---|---|---|---|
RD | 2 | connects to | 2 | TD |
TD | 3 | connects to | 3 | RD |
DTR | 4 | connects to | 6 | DSR |
DTR | 4 | connects to | 8 | DCD |
SG | 5 | connects to | 7 | SG |
DSR | 6 | connects to | 20 | DTR |
DCD | 1 | connects to | 20 | DTR |
RTS | 7 | connects to | 5 | CTS |
CTS | 8 | connects to | 4 | RTS |
Note: When one pin at one end connects to a pair of pins at the other end, it is usually implemented with one short wire between the pair of pins in their connector and a long wire to the other single pin.
The above designs seems to be the most popular. In another variation (explained in the book RS-232 Made Easy) SG connects to SG, TD connects to RD, RTS and CTS connect to DCD, DTR connects to DSR, and vice-versa.
A standard serial cable passes all of the RS-232C signals straight through. That is, the “Transmitted Data” pin on one end of the cable goes to the “Transmitted Data” pin on the other end. This is the type of cable to use to connect a modem to your FreeBSD system, and is also appropriate for some terminals.
Serial ports are the devices through which data is transferred between the FreeBSD host computer and the terminal. This section describes the kinds of ports that exist and how they are addressed in FreeBSD.
Several kinds of serial ports exist. Before you purchase or construct a cable, you need to make sure it will fit the ports on your terminal and on the FreeBSD system.
Most terminals will have DB-25 ports. Personal computers, including PCs running FreeBSD, will have DB-25 or DB-9 ports. If you have a multiport serial card for your PC, you may have RJ-12 or RJ-45 ports.
See the documentation that accompanied the hardware for specifications on the kind of port in use. A visual inspection of the port often works too.
In FreeBSD, you access each serial port through an entry in the /dev directory. There are two different kinds of entries:
Call-in ports are named /dev/ttyuN where N is the port number, starting from zero. Generally, you use the call-in port for terminals. Call-in ports require that the serial line assert the data carrier detect (DCD) signal to work correctly.
Call-out ports are named /dev/cuauN. You usually do not use the call-out port for terminals, just for modems. You may use the call-out port if the serial cable or the terminal does not support the carrier detect signal.
If you have connected a terminal to the first serial port (COM1 in MS-DOS), then you will use /dev/ttyu0 to refer to the terminal. If the terminal is on the second serial port (also known as COM2), use /dev/ttyu1, and so forth.
FreeBSD supports four serial ports by default. In the MS-DOS world, these are known as COM1, COM2, COM3, and COM4. FreeBSD currently supports “dumb” multiport serial interface cards, such as the BocaBoard 1008 and 2016, as well as more intelligent multi-port cards such as those made by Digiboard and Stallion Technologies. However, the default kernel only looks for the standard COM ports.
To see if your kernel recognizes any of your serial ports, watch for messages while the kernel is booting, or use the /sbin/dmesg command to replay the kernel's boot messages. In particular, look for messages that start with the characters uart if you use FreeBSD 8.0 or higher, or sio for FreeBSD 7.4 or older.
Tip: To view just the messages that have the word uart or sio depending on the installed version of FreeBSD, use the commands:
# /sbin/dmesg | grep 'uart' # /sbin/dmesg | grep 'sio'
For example, on a FreeBSD 7.X system with four serial ports, these are the serial-port specific kernel boot messages:
sio0 at 0x3f8-0x3ff irq 4 on isa sio0: type 16550A sio1 at 0x2f8-0x2ff irq 3 on isa sio1: type 16550A sio2 at 0x3e8-0x3ef irq 5 on isa sio2: type 16550A sio3 at 0x2e8-0x2ef irq 9 on isa sio3: type 16550A
If your kernel does not recognize all of your serial ports, you will probably need to configure your kernel in the /boot/device.hints file. You can also comment-out or completely remove lines for devices you do not have.
Please refer to the sio(4) manual page for more information on serial ports and multiport boards configuration. Be careful if you are using a configuration file that was previously used for a different version of FreeBSD because the device flags and the syntax have changed between versions.
Note: port IO_COM1 is a substitution for port 0x3f8, IO_COM2 is 0x2f8, IO_COM3 is 0x3e8, and IO_COM4 is 0x2e8, which are fairly common port addresses for their respective serial ports; interrupts 4, 3, 5, and 9 are fairly common interrupt request lines. Also note that regular serial ports cannot share interrupts on ISA-bus PCs (multiport boards have on-board electronics that allow all the 16550A's on the board to share one or two interrupt request lines).
Most devices in the kernel are accessed through “device special files”, which are located in the /dev directory. The sio devices are accessed through the /dev/ttyuN (dial-in) and /dev/cuauN (call-out) devices. FreeBSD also provides initialization devices (/dev/ttyuN.init and /dev/cuauN.init) and locking devices (/dev/ttyuN.lock and /dev/cuauN.lock). The initialization devices are used to initialize communications port parameters each time a port is opened, such as crtscts for modems which use RTS/CTS signaling for flow control. The locking devices are used to lock flags on ports to prevent users or programs changing certain parameters; see the manual pages termios(4), sio(4), and stty(1) for information on the terminal settings, locking and initializing devices, and setting terminal options, respectively.
The ttyuN (or cuauN) device is the regular device you will want to open for your applications. When a process opens the device, it will have a default set of terminal I/O settings. You can see these settings with the command
# stty -a -f /dev/ttyu1
When you change the settings to this device, the settings are in effect until the
device is closed. When it is reopened, it goes back to the default set. To make changes
to the default set, you can open and adjust the settings of the “initial
state” device. For example, to turn on CLOCAL
mode, 8
bit communication, and XON/XOFF
flow control by default for
ttyu5, type:
# stty -f /dev/ttyu5.init clocal cs8 ixon ixoff
System-wide initialization of the serial devices is controlled in /etc/rc.d/serial. This file affects the default settings of serial devices.
To prevent certain settings from being changed by an application, make adjustments to the “lock state” device. For example, to lock the speed of ttyu5 to 57600 bps, type:
# stty -f /dev/ttyu5.lock 57600
Now, an application that opens ttyu5 and tries to change the speed of the port will be stuck with 57600 bps.
Naturally, you should make the initial state and lock state devices writable only by the root account.
Warning: As of FreeBSD 8.0, device nodes for serial ports have been renamed from /dev/cuadN to /dev/cuauN and from /dev/ttydN to /dev/ttyuN. FreeBSD 7.X users will have to adapt the following documentation according to these changes.
Terminals provide a convenient and low-cost way to access your FreeBSD system when you are not at the computer's console or on a connected network. This section describes how to use terminals with FreeBSD.
The original UNIX systems did not have consoles. Instead, people logged in and ran programs through terminals that were connected to the computer's serial ports. It is quite similar to using a modem and terminal software to dial into a remote system to do text-only work.
Today's PCs have consoles capable of high quality graphics, but the ability to establish a login session on a serial port still exists in nearly every UNIX style operating system today; FreeBSD is no exception. By using a terminal attached to an unused serial port, you can log in and run any text program that you would normally run on the console or in an xterm window in the X Window System.
For the business user, you can attach many terminals to a FreeBSD system and place them on your employees' desktops. For a home user, a spare computer such as an older IBM PC or a Macintosh can be a terminal wired into a more powerful computer running FreeBSD. You can turn what might otherwise be a single-user computer into a powerful multiple user system.
For FreeBSD, there are three kinds of terminals:
The remaining subsections describe each kind.
Dumb terminals are specialized pieces of hardware that let you connect to computers over serial lines. They are called “dumb” because they have only enough computational power to display, send, and receive text. You cannot run any programs on them. It is the computer to which you connect them that has all the power to run text editors, compilers, email, games, and so forth.
There are hundreds of kinds of dumb terminals made by many manufacturers, including Digital Equipment Corporation's VT-100 and Wyse's WY-75. Just about any kind will work with FreeBSD. Some high-end terminals can even display graphics, but only certain software packages can take advantage of these advanced features.
Dumb terminals are popular in work environments where workers do not need access to graphical applications such as those provided by the X Window System.
If a dumb terminal has just enough ability to display, send, and receive text, then certainly any spare personal computer can be a dumb terminal. All you need is the proper cable and some terminal emulation software to run on the computer.
Such a configuration is popular in homes. For example, if your spouse is busy working on your FreeBSD system's console, you can do some text-only work at the same time from a less powerful personal computer hooked up as a terminal to the FreeBSD system.
There are at least two utilities in the base-system of FreeBSD that can be used to work through a serial connection: cu(1) and tip(1).
To connect from a client system that runs FreeBSD to the serial connection of another system, you can use:
# cu -l serial-port-device
Where “serial-port-device” is the name of a special device file denoting a serial port of your system. These device files are called /dev/cuauN.
The “N”-part of a device name is the serial port number.
Note: Note that device numbers in FreeBSD start from zero and not one (like they do, for instance in MS-DOS-derived systems). This means that what MS-DOS-based systems call COM1 is usually /dev/cuau0 in FreeBSD.
Note: Some people prefer to use other programs, available through the Ports Collection. The Ports include quite a few utilities which can work in ways similar to cu(1) and tip(1), i.e., comms/minicom.
X terminals are the most sophisticated kind of terminal available. Instead of connecting to a serial port, they usually connect to a network like Ethernet. Instead of being relegated to text-only applications, they can display any X application.
We introduce X terminals just for the sake of completeness. However, this chapter does not cover setup, configuration, or use of X terminals.
This section describes what you need to configure on your FreeBSD system to enable a login session on a terminal. It assumes you have already configured your kernel to support the serial port to which the terminal is connected—and that you have connected it.
Recall from Chapter 13 that the init process is responsible for all process control and initialization at system startup. One of the tasks performed by init is to read the /etc/ttys file and start a getty process on the available terminals. The getty process is responsible for reading a login name and starting the login program.
Thus, to configure terminals for your FreeBSD system the following steps should be taken as root:
Add a line to /etc/ttys for the entry in the /dev directory for the serial port if it is not already there.
Specify that /usr/libexec/getty be run on the port, and specify the appropriate getty type from the /etc/gettytab file.
Specify the default terminal type.
Set the port to “on.”
Specify whether the port should be “secure.”
Force init to reread the /etc/ttys file.
As an optional step, you may wish to create a custom getty type for use in step 2 by making an entry in /etc/gettytab. This chapter does not explain how to do so; you are encouraged to see the gettytab(5) and the getty(8) manual pages for more information.
The /etc/ttys file lists all of the ports on your FreeBSD system where you want to allow logins. For example, the first virtual console ttyv0 has an entry in this file. You can log in on the console using this entry. This file also contains entries for the other virtual consoles, serial ports, and pseudo-ttys. For a hardwired terminal, just list the serial port's /dev entry without the /dev part (for example, /dev/ttyv0 would be listed as ttyv0).
A default FreeBSD install includes an /etc/ttys file with support for the first four serial ports: ttyu0 through ttyu3. If you are attaching a terminal to one of those ports, you do not need to add another entry.
Example 27-1. Adding Terminal Entries to /etc/ttys
Suppose we would like to connect two terminals to the system: a Wyse-50 and an old 286 IBM PC running Procomm terminal software emulating a VT-100 terminal. We connect the Wyse to the second serial port and the 286 to the sixth serial port (a port on a multiport serial card). The corresponding entries in the /etc/ttys file would look like this:
ttyu1 "/usr/libexec/getty std.38400" wy50 on insecure ttyu5 "/usr/libexec/getty std.19200" vt100 on insecure
The getty program accepts one (optional) parameter on its command line, the getty type. A getty type configures characteristics on the terminal line, like bps rate and parity. The getty program reads these characteristics from the file /etc/gettytab.
The file /etc/gettytab contains lots of entries for terminal lines both old and new. In almost all cases, the entries that start with the text std will work for hardwired terminals. These entries ignore parity. There is a std entry for each bps rate from 110 to 115200. Of course, you can add your own entries to this file. The gettytab(5) manual page provides more information.
When setting the getty type in the /etc/ttys file, make sure that the communications settings on the terminal match.
For our example, the Wyse-50 uses no parity and connects at 38400 bps. The 286 PC uses no parity and connects at 19200 bps.
For our example, the Wyse-50 uses the real terminal type while the 286 PC running Procomm will be set to emulate at VT-100.
It is highly recommended that you use “insecure” even for terminals that are behind locked doors. It is quite easy to login and use su if you need superuser privileges.
After making the necessary changes to the /etc/ttys file you should send a SIGHUP (hangup) signal to the init process to force it to re-read its configuration file. For example:
# kill -HUP 1
Note: init is always the first process run on a system, therefore it will always have PID 1.
If everything is set up correctly, all cables are in place, and the terminals are powered up, then a getty process should be running on each terminal and you should see login prompts on your terminals at this point.
Even with the most meticulous attention to detail, something could still go wrong while setting up a terminal. Here is a list of symptoms and some suggested fixes.
Make sure the terminal is plugged in and powered up. If it is a personal computer acting as a terminal, make sure it is running terminal emulation software on the correct serial port.
Make sure the cable is connected firmly to both the terminal and the FreeBSD computer. Make sure it is the right kind of cable.
Make sure the terminal and FreeBSD agree on the bps rate and parity settings. If you have a video display terminal, make sure the contrast and brightness controls are turned up. If it is a printing terminal, make sure paper and ink are in good supply.
Make sure that a getty process is running and serving the terminal. For example, to get a list of running getty processes with ps, type:
# ps -axww|grep getty
You should see an entry for the terminal. For example, the following display shows that a getty is running on the second serial port ttyu1 and is using the std.38400 entry in /etc/gettytab:
22189 d1 Is+ 0:00.03 /usr/libexec/getty std.38400 ttyu1
If no getty process is running, make sure you have enabled the port in /etc/ttys. Also remember to run kill -HUP 1 after modifying the ttys file.
If the getty process is running but the terminal still does not display a login prompt, or if it displays a prompt but will not allow you to type, your terminal or cable may not support hardware handshaking. Try changing the entry in /etc/ttys from std.38400 to 3wire.38400 (remember to run kill -HUP 1 after modifying /etc/ttys). The 3wire entry is similar to std, but ignores hardware handshaking. You may need to reduce the baud rate or enable software flow control when using 3wire to prevent buffer overflows.
Make sure the terminal and FreeBSD agree on the bps rate and parity settings. Check the getty processes to make sure the correct getty type is in use. If not, edit /etc/ttys and run kill -HUP 1.
Switch the terminal (or the terminal emulation software) from “half duplex” or “local echo” to “full duplex.”
Warning: As of FreeBSD 8.0, device nodes for serial ports have been renamed from /dev/cuadN to /dev/cuauN and from /dev/ttydN to /dev/ttyuN. FreeBSD 7.X users will have to adapt the following documentation according to these changes.
Configuring your FreeBSD system for dial-in service is very similar to connecting terminals except that you are dealing with modems instead of terminals.
External modems seem to be more convenient for dial-up, because external modems often can be semi-permanently configured via parameters stored in non-volatile RAM and they usually provide lighted indicators that display the state of important RS-232 signals. Blinking lights impress visitors, but lights are also very useful to see whether a modem is operating properly.
Internal modems usually lack non-volatile RAM, so their configuration may be limited only to setting DIP switches. If your internal modem has any signal indicator lights, it is probably difficult to view the lights when the system's cover is in place.
If you are using an external modem, then you will of course need the proper cable. A standard RS-232C serial cable should suffice as long as all of the normal signals are wired:
Table 27-4. Signal Names
Acronyms | Names |
---|---|
RD | Received Data |
TD | Transmitted Data |
DTR | Data Terminal Ready |
DSR | Data Set Ready |
DCD | Data Carrier Detect (RS-232's Received Line Signal Detector) |
SG | Signal Ground |
RTS | Request to Send |
CTS | Clear to Send |
FreeBSD needs the RTS and CTS signals for flow control at speeds above 2400 bps, the CD signal to detect when a call has been answered or the line has been hung up, and the DTR signal to reset the modem after a session is complete. Some cables are wired without all of the needed signals, so if you have problems, such as a login session not going away when the line hangs up, you may have a problem with your cable.
Like other UNIX like operating systems, FreeBSD uses the hardware signals to find out when a call has been answered or a line has been hung up and to hangup and reset the modem after a call. FreeBSD avoids sending commands to the modem or watching for status reports from the modem. If you are familiar with connecting modems to PC-based bulletin board systems, this may seem awkward.
FreeBSD supports NS8250-, NS16450-, NS16550-, and NS16550A-based EIA RS-232C (CCITT V.24) communications interfaces. The 8250 and 16450 devices have single-character buffers. The 16550 device provides a 16-character buffer, which allows for better system performance. (Bugs in plain 16550's prevent the use of the 16-character buffer, so use 16550A's if possible). Because single-character-buffer devices require more work by the operating system than the 16-character-buffer devices, 16550A-based serial interface cards are much preferred. If the system has many active serial ports or will have a heavy load, 16550A-based cards are better for low-error-rate communications.
As with terminals, init spawns a getty process for each configured serial port for dial-in connections. For example, if a modem is attached to /dev/ttyu0, the command ps ax might show this:
4850 ?? I 0:00.09 /usr/libexec/getty V19200 ttyu0
When a user dials the modem's line and the modems connect, the CD (Carrier Detect) line is reported by the modem. The kernel notices that carrier has been detected and completes getty's open of the port. getty sends a login: prompt at the specified initial line speed. getty watches to see if legitimate characters are received, and, in a typical configuration, if it finds junk (probably due to the modem's connection speed being different than getty's speed), getty tries adjusting the line speeds until it receives reasonable characters.
After the user enters his/her login name, getty executes /usr/bin/login, which completes the login by asking for the user's password and then starting the user's shell.
There are three system configuration files in the /etc directory that you will probably need to edit to allow dial-up access to your FreeBSD system. The first, /etc/gettytab, contains configuration information for the /usr/libexec/getty daemon. Second, /etc/ttys holds information that tells /sbin/init what tty devices should have getty processes running on them. Lastly, you can place port initialization commands in the /etc/rc.d/serial script.
There are two schools of thought regarding dial-up modems on UNIX. One group likes to configure their modems and systems so that no matter at what speed a remote user dials in, the local computer-to-modem RS-232 interface runs at a locked speed. The benefit of this configuration is that the remote user always sees a system login prompt immediately. The downside is that the system does not know what a user's true data rate is, so full-screen programs like Emacs will not adjust their screen-painting methods to make their response better for slower connections.
The other school configures their modems' RS-232 interface to vary its speed based on the remote user's connection speed. For example, V.32bis (14.4 Kbps) connections to the modem might make the modem run its RS-232 interface at 19.2 Kbps, while 2400 bps connections make the modem's RS-232 interface run at 2400 bps. Because getty does not understand any particular modem's connection speed reporting, getty gives a login: message at an initial speed and watches the characters that come back in response. If the user sees junk, it is assumed that they know they should press the Enter key until they see a recognizable prompt. If the data rates do not match, getty sees anything the user types as “junk”, tries going to the next speed and gives the login: prompt again. This procedure can continue ad nauseam, but normally only takes a keystroke or two before the user sees a good prompt. Obviously, this login sequence does not look as clean as the former “locked-speed” method, but a user on a low-speed connection should receive better interactive response from full-screen programs.
This section will try to give balanced configuration information, but is biased towards having the modem's data rate follow the connection rate.
/etc/gettytab is a termcap(5)-style file of configuration information for getty(8). Please see the gettytab(5) manual page for complete information on the format of the file and the list of capabilities.
If you are locking your modem's data communications rate at a particular speed, you probably will not need to make any changes to /etc/gettytab.
You will need to set up an entry in /etc/gettytab to give getty information about the speeds you wish to use for your modem. If you have a 2400 bps modem, you can probably use the existing D2400 entry.
# # Fast dialup terminals, 2400/1200/300 rotary (can start either way) # D2400|d2400|Fast-Dial-2400:\ :nx=D1200:tc=2400-baud: 3|D1200|Fast-Dial-1200:\ :nx=D300:tc=1200-baud: 5|D300|Fast-Dial-300:\ :nx=D2400:tc=300-baud:
If you have a higher speed modem, you will probably need to add an entry in /etc/gettytab; here is an entry you could use for a 14.4 Kbps modem with a top interface speed of 19.2 Kbps:
# # Additions for a V.32bis Modem # um|V300|High Speed Modem at 300,8-bit:\ :nx=V19200:tc=std.300: un|V1200|High Speed Modem at 1200,8-bit:\ :nx=V300:tc=std.1200: uo|V2400|High Speed Modem at 2400,8-bit:\ :nx=V1200:tc=std.2400: up|V9600|High Speed Modem at 9600,8-bit:\ :nx=V2400:tc=std.9600: uq|V19200|High Speed Modem at 19200,8-bit:\ :nx=V9600:tc=std.19200:
This will result in 8-bit, no parity connections.
The example above starts the communications rate at 19.2 Kbps (for a V.32bis connection), then cycles through 9600 bps (for V.32), 2400 bps, 1200 bps, 300 bps, and back to 19.2 Kbps. Communications rate cycling is implemented with the nx= (“next table”) capability. Each of the lines uses a tc= (“table continuation”) entry to pick up the rest of the “standard” settings for a particular data rate.
If you have a 28.8 Kbps modem and/or you want to take advantage of compression on a 14.4 Kbps modem, you need to use a higher communications rate than 19.2 Kbps. Here is an example of a gettytab entry starting a 57.6 Kbps:
# # Additions for a V.32bis or V.34 Modem # Starting at 57.6 Kbps # vm|VH300|Very High Speed Modem at 300,8-bit:\ :nx=VH57600:tc=std.300: vn|VH1200|Very High Speed Modem at 1200,8-bit:\ :nx=VH300:tc=std.1200: vo|VH2400|Very High Speed Modem at 2400,8-bit:\ :nx=VH1200:tc=std.2400: vp|VH9600|Very High Speed Modem at 9600,8-bit:\ :nx=VH2400:tc=std.9600: vq|VH57600|Very High Speed Modem at 57600,8-bit:\ :nx=VH9600:tc=std.57600:
If you have a slow CPU or a heavily loaded system and do not have 16550A-based serial ports, you may receive “sio” “silo” errors at 57.6 Kbps.
Configuration of the /etc/ttys file was covered in Example 27-1. Configuration for modems is similar but we must pass a different argument to getty and specify a different terminal type. The general format for both locked-speed and matching-speed configurations is:
ttyu0 "/usr/libexec/getty xxx" dialup on
The first item in the above line is the device special file for this entry — ttyu0 means /dev/ttyu0 is the file that this getty will be watching. The second item, "/usr/libexec/getty xxx" (xxx will be replaced by the initial gettytab capability) is the process init will run on the device. The third item, dialup, is the default terminal type. The fourth parameter, on, indicates to init that the line is operational. There can be a fifth parameter, secure, but it should only be used for terminals which are physically secure (such as the system console).
The default terminal type (dialup in the example above) may depend on local preferences. dialup is the traditional default terminal type on dial-up lines so that users may customize their login scripts to notice when the terminal is dialup and automatically adjust their terminal type. However, the author finds it easier at his site to specify vt102 as the default terminal type, since the users just use VT102 emulation on their remote systems.
After you have made changes to /etc/ttys, you may send the init process a HUP signal to re-read the file. You can use the command
# kill -HUP 1to send the signal. If this is your first time setting up the system, you may want to wait until your modem(s) are properly configured and connected before signaling init.
For a locked-speed configuration, your ttys entry needs to have a fixed-speed entry provided to getty. For a modem whose port speed is locked at 19.2 Kbps, the ttys entry might look like this:
ttyu0 "/usr/libexec/getty std.19200" dialup on
If your modem is locked at a different data rate, substitute the appropriate value for std.speed instead of std.19200. Make sure that you use a valid type listed in /etc/gettytab.
In a matching-speed configuration, your ttys entry needs to reference the appropriate beginning “auto-baud” (sic) entry in /etc/gettytab. For example, if you added the above suggested entry for a matching-speed modem that starts at 19.2 Kbps (the gettytab entry containing the V19200 starting point), your ttys entry might look like this:
ttyu0 "/usr/libexec/getty V19200" dialup on
High-speed modems, like V.32, V.32bis, and V.34 modems, need to use hardware (RTS/CTS) flow control. You can add stty commands to /etc/rc.d/serial to set the hardware flow control flag in the FreeBSD kernel for the modem ports.
For example to set the termios flag crtscts
on serial port #1's (COM2) dial-in and dial-out initialization devices, the
following lines could be added to /etc/rc.d/serial:
# Serial port initial configuration stty -f /dev/ttyu1.init crtscts stty -f /dev/cuau1.init crtscts
If you have a modem whose parameters may be permanently set in non-volatile RAM, you will need to use a terminal program (such as Telix under MS-DOS or tip under FreeBSD) to set the parameters. Connect to the modem using the same communications speed as the initial speed getty will use and configure the modem's non-volatile RAM to match these requirements:
CD asserted when connected
DTR asserted for operation; dropping DTR hangs up line and resets modem
CTS transmitted data flow control
Disable XON/XOFF flow control
RTS received data flow control
Quiet mode (no result codes)
No command echo
Please read the documentation for your modem to find out what commands and/or DIP switch settings you need to give it.
For example, to set the above parameters on a U.S. Robotics® Sportster® 14,400 external modem, one could give these commands to the modem:
ATZ AT&C1&D2&H1&I0&R2&W
You might also want to take this opportunity to adjust other settings in the modem, such as whether it will use V.42bis and/or MNP5 compression.
The U.S. Robotics Sportster 14,400 external modem also has some DIP switches that need to be set; for other modems, perhaps you can use these settings as an example:
Switch 1: UP — DTR Normal
Switch 2: N/A (Verbal Result Codes/Numeric Result Codes)
Switch 3: UP — Suppress Result Codes
Switch 4: DOWN — No echo, offline commands
Switch 5: UP — Auto Answer
Switch 6: UP — Carrier Detect Normal
Switch 7: UP — Load NVRAM Defaults
Switch 8: N/A (Smart Mode/Dumb Mode)
Result codes should be disabled/suppressed for dial-up modems to avoid problems that can occur if getty mistakenly gives a login: prompt to a modem that is in command mode and the modem echoes the command or returns a result code. This sequence can result in a extended, silly conversation between getty and the modem.
For a locked-speed configuration, you will need to configure the modem to maintain a constant modem-to-computer data rate independent of the communications rate. On a U.S. Robotics Sportster 14,400 external modem, these commands will lock the modem-to-computer data rate at the speed used to issue the commands:
ATZ AT&B1&W
For a variable-speed configuration, you will need to configure your modem to adjust its serial port data rate to match the incoming call rate. On a U.S. Robotics Sportster 14,400 external modem, these commands will lock the modem's error-corrected data rate to the speed used to issue the commands, but allow the serial port rate to vary for non-error-corrected connections:
ATZ AT&B2&W
Most high-speed modems provide commands to view the modem's current operating parameters in a somewhat human-readable fashion. On the U.S. Robotics Sportster 14,400 external modems, the command ATI5 displays the settings that are stored in the non-volatile RAM. To see the true operating parameters of the modem (as influenced by the modem's DIP switch settings), use the commands ATZ and then ATI4.
If you have a different brand of modem, check your modem's manual to see how to double-check your modem's configuration parameters.
Here are a few steps you can follow to check out the dial-up modem on your system.
Hook up your modem to your FreeBSD system, boot the system, and, if your modem has status indication lights, watch to see whether the modem's DTR indicator lights when the login: prompt appears on the system's console — if it lights up, that should mean that FreeBSD has started a getty process on the appropriate communications port and is waiting for the modem to accept a call.
If the DTR indicator does not light, login to the FreeBSD system through the console and issue a ps ax to see if FreeBSD is trying to run a getty process on the correct port. You should see lines like these among the processes displayed:
114 ?? I 0:00.10 /usr/libexec/getty V19200 ttyu0 115 ?? I 0:00.10 /usr/libexec/getty V19200 ttyu1
If you see something different, like this:
114 d0 I 0:00.10 /usr/libexec/getty V19200 ttyu0
and the modem has not accepted a call yet, this means that getty has completed its open on the communications port. This could indicate a problem with the cabling or a mis-configured modem, because getty should not be able to open the communications port until CD (carrier detect) has been asserted by the modem.
If you do not see any getty processes waiting to open the desired ttyuN port, double-check your entries in /etc/ttys to see if there are any mistakes there. Also, check the log file /var/log/messages to see if there are any log messages from init or getty regarding any problems. If there are any messages, triple-check the configuration files /etc/ttys and /etc/gettytab, as well as the appropriate device special files /dev/ttyuN, for any mistakes, missing entries, or missing device special files.
Try dialing into the system; be sure to use 8 bits, no parity, and 1 stop bit on the remote system. If you do not get a prompt right away, or get garbage, try pressing Enter about once per second. If you still do not see a login: prompt after a while, try sending a BREAK. If you are using a high-speed modem to do the dialing, try dialing again after locking the dialing modem's interface speed (via AT&B1 on a U.S. Robotics Sportster modem, for example).
If you still cannot get a login: prompt, check /etc/gettytab again and double-check that
The initial capability name specified in /etc/ttys for the line matches a name of a capability in /etc/gettytab
Each nx= entry matches another gettytab capability name
Each tc= entry matches another gettytab capability name
If you dial but the modem on the FreeBSD system will not answer, make sure that the modem is configured to answer the phone when DTR is asserted. If the modem seems to be configured correctly, verify that the DTR line is asserted by checking the modem's indicator lights (if it has any).
If you have gone over everything several times and it still does not work, take a break and come back to it later. If it still does not work, perhaps you can send an electronic mail message to the FreeBSD general questions mailing list describing your modem and your problem, and the good folks on the list will try to help.
Warning: As of FreeBSD 8.0, device nodes for serial ports have been renamed from /dev/cuadN to /dev/cuauN. FreeBSD 7.X users will have to adapt the following documentation according to these changes.
The following are tips for getting your host to be able to connect over the modem to another computer. This is appropriate for establishing a terminal session with a remote host.
This is useful to log onto a BBS.
This kind of connection can be extremely helpful to get a file on the Internet if you have problems with PPP. If you need to FTP something and PPP is broken, use the terminal session to FTP it. Then use zmodem to transfer it to your machine.
Actually, the manual page for tip is out of date. There is a generic Hayes dialer already built in. Just use at=hayes in your /etc/remote file.
The Hayes driver is not smart enough to recognize some of the advanced features of newer modems—messages like BUSY, NO DIALTONE, or CONNECT 115200 will just confuse it. You should turn those messages off when you use tip (using ATX0&W).
Also, the dial timeout for tip is 60 seconds. Your modem should use something less, or else tip will think there is a communication problem. Try ATS7=45&W.
Make what is called a “direct” entry in your /etc/remote file. For example, if your modem is hooked up to the first serial port, /dev/cuau0, then put in the following line:
cuau0:dv=/dev/cuau0:br#19200:pa=none
Use the highest bps rate your modem supports in the br capability. Then, type tip cuau0 and you will be connected to your modem.
Or use cu as root with the following command:
# cu -lline -sspeed
line is the serial port (e.g., /dev/cuau0) and speed is the speed (e.g., 57600). When you are done entering the AT commands type ~. to exit.
The @ sign in the phone number capability tells tip to look in /etc/phones for a phone number. But the @ sign is also a special character in capability files like /etc/remote. Escape it with a backslash:
pn=\@
Put what is called a “generic” entry in your /etc/remote file. For example:
tip115200|Dial any phone number at 115200 bps:\ :dv=/dev/cuau0:br#115200:at=hayes:pa=none:du: tip57600|Dial any phone number at 57600 bps:\ :dv=/dev/cuau0:br#57600:at=hayes:pa=none:du:
Then you can do things like:
# tip -115200 5551234
If you prefer cu over tip, use a generic cu entry:
cu115200|Use cu to dial any number at 115200bps:\ :dv=/dev/cuau1:br#57600:at=hayes:pa=none:du:
and type:
# cu 5551234 -s 115200
Put in an entry for tip1200 or cu1200, but go ahead and use whatever bps rate is appropriate with the br capability. tip thinks a good default is 1200 bps which is why it looks for a tip1200 entry. You do not have to use 1200 bps, though.
Rather than waiting until you are connected and typing CONNECT host each time, use tip's cm capability. For example, these entries in /etc/remote:
pain|pain.deep13.com|Forrester's machine:\ :cm=CONNECT pain\n:tc=deep13: muffin|muffin.deep13.com|Frank's machine:\ :cm=CONNECT muffin\n:tc=deep13: deep13:Gizmonics Institute terminal server:\ :dv=/dev/cuau2:br#38400:at=hayes:du:pa=none:pn=5551234:
will let you type tip pain or tip muffin to connect to the hosts pain or muffin, and tip deep13 to get to the terminal server.
This is often a problem where a university has several modem lines and several thousand students trying to use them.
Make an entry for your university in /etc/remote and use @ for the pn capability:
big-university:\ :pn=\@:tc=dialout dialout:\ :dv=/dev/cuau3:br#9600:at=courier:du:pa=none:
Then, list the phone numbers for the university in /etc/phones:
big-university 5551111 big-university 5551112 big-university 5551113 big-university 5551114
tip will try each one in the listed order, then give up. If you want to keep retrying, run tip in a while loop.
Ctrl+P is the default “force” character, used to tell tip that the next character is literal data. You can set the force character to any other character with the ~s escape, which means “set a variable.”
Type ~sforce=single-char followed by a newline. single-char is any single character. If you leave out single-char, then the force character is the nul character, which you can get by typing Ctrl+2 or Ctrl+Space. A pretty good value for single-char is Shift+Ctrl+6, which is only used on some terminal servers.
You can have the force character be whatever you want by specifying the following in your $HOME/.tiprc file:
force=single-char
You must have pressed Ctrl+A, tip's “raise character,” specially designed for people with broken caps-lock keys. Use ~s as above and set the variable raisechar to something reasonable. In fact, you can set it to the same as the force character, if you never expect to use either of these features.
Here is a sample .tiprc file perfect for Emacs users who need to type Ctrl+2 and Ctrl+A a lot:
force=^^ raisechar=^^
The ^^ is Shift+Ctrl+6.
If you are talking to another UNIX system, you can send and receive files with ~p (put) and ~t (take). These commands run cat and echo on the remote system to accept and send files. The syntax is:
~p local-file [remote-file]
~t remote-file [local-file]
There is no error checking, so you probably should use another protocol, like zmodem.
To receive files, start the sending program on the remote end. Then, type ~C rz to begin receiving them locally.
To send files, start the receiving program on the remote end. Then, type ~C sz files to send them to the remote system.
Warning: As of FreeBSD 8.0, device nodes for serial ports have been renamed from /dev/ttydN to /dev/ttyuN. FreeBSD 7.X users will have to adapt the following documentation according to these changes.
FreeBSD has the ability to boot on a system with only a dumb terminal on a serial port as a console. Such a configuration should be useful for two classes of people: system administrators who wish to install FreeBSD on machines that have no keyboard or monitor attached, and developers who want to debug the kernel or device drivers.
As described in Chapter 13, FreeBSD employs a three stage bootstrap. The first two stages are in the boot block code which is stored at the beginning of the FreeBSD slice on the boot disk. The boot block will then load and run the boot loader (/boot/loader) as the third stage code.
In order to set up the serial console you must configure the boot block code, the boot loader code and the kernel.
This section assumes that you are using the default setup and just want a fast overview of setting up the serial console.
Connect the serial cable to COM1 and the controlling terminal.
To see all boot messages on the serial console, issue the following command while logged in as the superuser:
# echo 'console="comconsole"' >> /boot/loader.conf
Edit /etc/ttys and change off to on and dialup to vt100 for the ttyu0 entry. Otherwise a password will not be required to connect via the serial console, resulting in a potential security hole.
Reboot the system to see if the changes took effect.
If a different configuration is required, a more in depth configuration explanation exists in Section 27.6.3.
Prepare a serial cable.
You will need either a null-modem cable or a standard serial cable and a null-modem adapter. See Section 27.2.2 for a discussion on serial cables.
Unplug your keyboard.
Most PC systems probe for the keyboard during the Power-On Self-Test (POST) and will generate an error if the keyboard is not detected. Some machines complain loudly about the lack of a keyboard and will not continue to boot until it is plugged in.
If your computer complains about the error, but boots anyway, then you do not have to do anything special. (Some machines with Phoenix BIOS installed merely say “Keyboard failed” and continue to boot normally.)
If your computer refuses to boot without a keyboard attached then you will have to configure the BIOS so that it ignores this error (if it can). Consult your motherboard's manual for details on how to do this.
Tip: Set the keyboard to “Not installed” in the BIOS setup. You will still be able to use your keyboard. All this does is tell the BIOS not to probe for a keyboard at power-on. Your BIOS should not complain if the keyboard is absent. You can leave the keyboard plugged in even with this flag set to “Not installed” and the keyboard will still work. If the above option is not present in the BIOS, look for an “Halt on Error” option instead. Setting this to “All but Keyboard” or even to “No Errors”, will have the same effect.
Note: If your system has a PS/2® mouse, chances are very good that you may have to unplug your mouse as well as your keyboard. This is because PS/2 mice share some hardware with the keyboard and leaving the mouse plugged in can fool the keyboard probe into thinking the keyboard is still there. It is said that a Gateway 2000 Pentium 90 MHz system with an AMI BIOS that behaves this way. In general, this is not a problem since the mouse is not much good without the keyboard anyway.
Plug a dumb terminal into COM1 (sio0).
If you do not have a dumb terminal, you can use an old PC/XT with a modem program, or the serial port on another UNIX box. If you do not have a COM1 (sio0), get one. At this time, there is no way to select a port other than COM1 for the boot blocks without recompiling the boot blocks. If you are already using COM1 for another device, you will have to temporarily remove that device and install a new boot block and kernel once you get FreeBSD up and running. (It is assumed that COM1 will be available on a file/compute/terminal server anyway; if you really need COM1 for something else (and you cannot switch that something else to COM2 (sio1)), then you probably should not even be bothering with all this in the first place.)
Make sure the configuration file of your kernel has appropriate flags set for COM1 (sio0).
Relevant flags are:
Enables console support for this unit. The other console flags are ignored
unless this is set. Currently, at most one unit can have console support; the
first one (in config file order) with this flag set is preferred. This
option alone will not make the serial port the console. Set the
following flag or use the -h
option described
below, together with this flag.
Forces this unit to be the console (unless there is another higher priority
console), regardless of the -h
option discussed
below. The flag 0x20 must be used together
with the 0x10
flag.
Reserves this unit (in conjunction with 0x10) and makes the unit unavailable for normal access. You should not set this flag to the serial port unit which you want to use as the serial console. The only use of this flag is to designate the unit for kernel remote debugging. See The Developer's Handbook for more information on remote debugging.
Example:
device sio0 flags 0x10
See the sio(4) manual page for more details.
If the flags were not set, you need to run UserConfig (on a different console) or recompile the kernel.
Create boot.config in the root directory of the a partition on the boot drive.
This file will instruct the boot block code how you would like to boot the system. In order to activate the serial console, you need one or more of the following options—if you want multiple options, include them all on the same line:
-h
Toggles internal and serial consoles. You can use this to switch console
devices. For instance, if you boot from the internal (video) console, you can
use -h
to direct the boot loader and the kernel
to use the serial port as its console device. Alternatively, if you
boot from the serial port, you can use the -h
to
tell the boot loader and the kernel to use the video display as the console
instead.
-D
Toggles single and dual console configurations. In the single configuration
the console will be either the internal console (video display) or the serial
port, depending on the state of the -h
option
above. In the dual console configuration, both the video display and the
serial port will become the console at the same time, regardless of
the state of the -h
option. However, note that the
dual console configuration takes effect only during the boot block is running.
Once the boot loader gets control, the console specified by the
-h
option becomes the only console.
-P
Makes the boot block probe the keyboard. If no keyboard is found, the -D
and -h
options are
automatically set.
Note: Due to space constraints in the current version of the boot blocks, the
-P
option is capable of detecting extended keyboards only. Keyboards with less than 101 keys (and without F11 and F12 keys) may not be detected. Keyboards on some laptop computers may not be properly found because of this limitation. If this is the case with your system, you have to abandon using the-P
option. Unfortunately there is no workaround for this problem.
Use either the -P
option to select the console
automatically, or the -h
option to activate the serial
console.
You may include other options described in boot(8) as well.
The options, except for -P
, will be passed to the
boot loader (/boot/loader). The boot loader will
determine which of the internal video or the serial port should become the console
by examining the state of the -h
option alone. This
means that if you specify the -D
option but not the
-h
option in /boot.config,
you can use the serial port as the console only during the boot block; the boot
loader will use the internal video display as the console.
Boot the machine.
When you start your FreeBSD box, the boot blocks will echo the contents of /boot.config to the console. For example:
/boot.config: -P Keyboard: no
The second line appears only if you put -P
in /boot.config and indicates presence/absence of the keyboard.
These messages go to either serial or internal console, or both, depending on the
option in /boot.config.
Options | Message goes to |
---|---|
none | internal console |
-h |
serial console |
-D |
serial and internal consoles |
-Dh |
serial and internal consoles |
-P , keyboard present |
internal console |
-P , keyboard absent |
serial console |
After the above messages, there will be a small pause before the boot blocks continue loading the boot loader and before any further messages printed to the console. Under normal circumstances, you do not need to interrupt the boot blocks, but you may want to do so in order to make sure things are set up correctly.
Hit any key, other than Enter, at the console to interrupt the boot process. The boot blocks will then prompt you for further action. You should now see something like:
>> FreeBSD/i386 BOOT Default: 0:ad(0,a)/boot/loader boot:
Verify the above message appears on either the serial or internal console or both, according to the options you put in /boot.config. If the message appears in the correct console, hit Enter to continue the boot process.
If you want the serial console but you do not see the prompt on the serial
terminal, something is wrong with your settings. In the meantime, you enter -h
and hit Enter or Return (if possible) to tell the boot block (and then the boot
loader and the kernel) to choose the serial port for the console. Once the system
is up, go back and check what went wrong.
After the boot loader is loaded and you are in the third stage of the boot process you can still switch between the internal console and the serial console by setting appropriate environment variables in the boot loader. See Section 27.6.6.
Here is the summary of various settings discussed in this section and the console eventually selected.
device sio0 flags 0x10
Options in /boot.config | Console during boot blocks | Console during boot loader | Console in kernel |
---|---|---|---|
nothing | internal | internal | internal |
-h |
serial | serial | serial |
-D |
serial and internal | internal | internal |
-Dh |
serial and internal | serial | serial |
-P , keyboard present |
internal | internal | internal |
-P , keyboard absent |
serial and internal | serial | serial |
device sio0 flags 0x30
Options in /boot.config | Console during boot blocks | Console during boot loader | Console in kernel |
---|---|---|---|
nothing | internal | internal | serial |
-h |
serial | serial | serial |
-D |
serial and internal | internal | serial |
-Dh |
serial and internal | serial | serial |
-P , keyboard present |
internal | internal | serial |
-P , keyboard absent |
serial and internal | serial | serial |
By default, the serial port settings are: 9600 baud, 8 bits, no parity, and 1 stop bit. If you wish to change the default console speed, you have the following options:
Recompile the boot blocks with BOOT_COMCONSOLE_SPEED set to the new console speed. See Section 27.6.5.2 for detailed instructions about building and installing new boot blocks.
If the serial console is configured in some other way than by booting with -h
, or if the serial console used by the kernel is different
from the one used by the boot blocks, then you must also add the following option
to the kernel configuration file and compile a new kernel:
options CONSPEED=19200
Use the -S
boot option of the kernel. The -S
command line option can be added to /boot.config. See the boot(8) manual
page for a description of how to add options to /boot.config and a list of the supported options.
Enable the comconsole_speed
option in your /boot/loader.conf file.
This option depends on console
, boot_serial
, and boot_multicons
being set in /boot/loader.conf too. An example of using
comconsole_speed
to change the serial console
speed is:
boot_multicons="YES" boot_serial="YES" comconsole_speed="115200" console="comconsole,vidconsole"
Using a port other than sio0 as the console requires some recompiling. If you want to use another serial port for whatever reasons, recompile the boot blocks, the boot loader and the kernel as follows.
Get the kernel source. (See Chapter 25)
Edit /etc/make.conf and set BOOT_COMCONSOLE_PORT to the address of the port you want to use (0x3F8, 0x2F8, 0x3E8 or 0x2E8). Only sio0 through sio3 (COM1 through COM4) can be used; multiport serial cards will not work. No interrupt setting is needed.
Create a custom kernel configuration file and add appropriate flags for the serial port you want to use. For example, if you want to make sio1 (COM2) the console:
device sio1 flags 0x10
or
device sio1 flags 0x30
The console flags for the other serial ports should not be set.
Recompile and install the boot blocks and the boot loader:
# cd /sys/boot # make clean # make # make install
Rebuild and install the kernel.
Write the boot blocks to the boot disk with bsdlabel(8) and boot from the new kernel.
If you wish to drop into the kernel debugger from the serial console (useful for remote diagnostics, but also dangerous if you generate a spurious BREAK on the serial port!) then you should compile your kernel with the following options:
options BREAK_TO_DEBUGGER options DDB
While this is not required, you may wish to get a login prompt over the serial line, now that you can see boot messages and can enter the kernel debugging session through the serial console. Here is how to do it.
Open the file /etc/ttys with an editor and locate the lines:
ttyu0 "/usr/libexec/getty std.9600" unknown off secure ttyu1 "/usr/libexec/getty std.9600" unknown off secure ttyu2 "/usr/libexec/getty std.9600" unknown off secure ttyu3 "/usr/libexec/getty std.9600" unknown off secure
ttyu0 through ttyu3 corresponds to COM1 through COM4. Change off to on for the desired port. If you have changed the speed of the serial port, you need to change std.9600 to match the current setting, e.g., std.19200.
You may also want to change the terminal type from unknown to the actual type of your serial terminal.
After editing the file, you must kill -HUP 1 to make this change take effect.
Previous sections described how to set up the serial console by tweaking the boot block. This section shows that you can specify the console by entering some commands and environment variables in the boot loader. As the boot loader is invoked at the third stage of the boot process, after the boot block, the settings in the boot loader will override the settings in the boot block.
You can easily specify the boot loader and the kernel to use the serial console by writing just one line in /boot/loader.conf:
console="comconsole"
This will take effect regardless of the settings in the boot block discussed in the previous section.
You had better put the above line as the first line of /boot/loader.conf so as to see boot messages on the serial console as early as possible.
Likewise, you can specify the internal console as:
console="vidconsole"
If you do not set the boot loader environment variable console, the boot loader, and subsequently the kernel, will use
whichever console indicated by the -h
option in the
boot block.
The console can be specified in /boot/loader.conf.local or in /boot/loader.conf.
See loader.conf(5) for more information.
Note: At the moment, the boot loader has no option equivalent to the
-P
option in the boot block, and there is no provision to automatically select the internal console and the serial console based on the presence of the keyboard.
You need to recompile the boot loader to use a serial port other than sio0 for the serial console. Follow the procedure described in Section 27.6.5.2.
The idea here is to allow people to set up dedicated servers that require no graphics hardware or attached keyboards. Unfortunately, while most systems will let you boot without a keyboard, there are quite a few that will not let you boot without a graphics adapter. Machines with AMI BIOSes can be configured to boot with no graphics adapter installed by changing the “graphics adapter” setting in the CMOS configuration to “Not installed.”
However, many machines do not support this option and will refuse to boot if you have no display hardware in the system. With these machines, you will have to leave some kind of graphics card plugged in, (even if it is just a junky mono board) although you will not have to attach a monitor. You might also try installing an AMI BIOS.
FreeBSD has a number of ways to link one computer to another. To establish a network or Internet connection through a dial-up modem, or to allow others to do so through you, requires the use of PPP or SLIP. This chapter describes setting up these modem-based communication services in detail.
After reading this chapter, you will know:
How to set up user PPP.
How to set up kernel PPP (FreeBSD 7.X only).
How to set up PPPoE (PPP over Ethernet).
How to set up PPPoA (PPP over ATM).
How to configure and set up a SLIP client and server (FreeBSD 7.X only).
Before reading this chapter, you should:
Be familiar with basic network terminology.
Understand the basics and purpose of a dialup connection and PPP and/or SLIP.
You may be wondering what the main difference is between user PPP and kernel PPP. The answer is simple: user PPP processes the inbound and outbound data in userland rather than in the kernel. This is expensive in terms of copying the data between the kernel and userland, but allows a far more feature-rich PPP implementation. User PPP uses the tun device to communicate with the outside world whereas kernel PPP uses the ppp device.
Note: Throughout in this chapter, user PPP will simply be referred to as ppp unless a distinction needs to be made between it and any other PPP software such as pppd (FreeBSD 7.X only). Unless otherwise stated, all of the commands explained in this chapter should be executed as root.
Warning: As of FreeBSD 8.0, device nodes for serial ports have been renamed from /dev/cuadN to /dev/cuauN and from /dev/ttydN to /dev/ttyuN. FreeBSD 7.X users will have to adapt the following documentation according to these changes.
This document assumes you have the following:
An account with an Internet Service Provider (ISP) which you connect to using PPP.
A modem or other device connected to your system and properly configured to allow you to connect to your ISP.
The dial-up number(s) of your ISP.
Your login name and password. (Either a regular UNIX style login and password pair, or a PAP or CHAP login and password pair).
The IP address of one or more name servers. Normally, you will be given two IP addresses by your ISP to use for this. If they have not given you at least one, then you can use the enable dns command in ppp.conf and ppp will set the name servers for you. This feature depends on your ISPs PPP implementation supporting DNS negotiation.
The following information may be supplied by your ISP, but is not completely necessary:
The IP address of your ISP's gateway. The gateway is the machine to which you will connect and will be set up as your default route. If you do not have this information, we can make one up and your ISP's PPP server will tell us the correct value when we connect.
This IP number is referred to as HISADDR by ppp.
The netmask you should use. If your ISP has not provided you with one, you can safely use 255.255.255.255.
If your ISP provides you with a static IP address and hostname, you can enter it. Otherwise, we simply let the peer assign whatever IP address it sees fit.
If you do not have any of the required information, contact your ISP.
Note: Throughout this section, many of the examples showing the contents of configuration files are numbered by line. These numbers serve to aid in the presentation and discussion only and are not meant to be placed in the actual file. Proper indentation with tab and space characters is also important.
Both ppp and pppd (the kernel level implementation of PPP, FreeBSD 7.X only) use the configuration files located in the /etc/ppp directory. Examples for user ppp can be found in /usr/share/examples/ppp/.
Configuring ppp requires that you edit a number of files, depending on your requirements. What you put in them depends to some extent on whether your ISP allocates IP addresses statically (i.e., you get given one IP address, and always use that one) or dynamically (i.e., your IP address changes each time you connect to your ISP).
You will need to edit the /etc/ppp/ppp.conf configuration file. It should look similar to the example below.
Note: Lines that end in a : start in the first column (beginning of the line)— all other lines should be indented as shown using spaces or tabs.
1 default: 2 set log Phase Chat LCP IPCP CCP tun command 3 ident user-ppp VERSION (built COMPILATIONDATE) 4 set device /dev/cuau0 5 set speed 115200 6 set dial "ABORT BUSY ABORT NO\\sCARRIER TIMEOUT 5 \ 7 \"\" AT OK-AT-OK ATE1Q0 OK \\dATDT\\T TIMEOUT 40 CONNECT" 8 set timeout 180 9 enable dns 10 11 provider: 12 set phone "(123) 456 7890" 13 set authname foo 14 set authkey bar 15 set login "TIMEOUT 10 \"\" \"\" gin:--gin: \\U word: \\P col: ppp" 16 set timeout 300 17 set ifaddr x.x.x.x y.y.y.y 255.255.255.255 0.0.0.0 18 add default HISADDR
Identifies the default entry. Commands in this entry are executed automatically when ppp is run.
Enables logging parameters. When the configuration is working satisfactorily, this line should be reduced to saying:
set log phase tun
in order to avoid excessive log file sizes.
Tells PPP how to identify itself to the peer. PPP identifies itself to the peer if it has any trouble negotiating and setting up the link, providing information that the peers administrator may find useful when investigating such problems.
Identifies the device to which the modem is connected. COM1 is /dev/cuau0 and COM2 is /dev/cuau1.
Sets the speed you want to connect at. If 115200 does not work (it should with any reasonably new modem), try 38400 instead.
The dial string. User PPP uses an expect-send syntax similar to the chat(8) program. Refer to the manual page for information on the features of this language.
Note that this command continues onto the next line for readability. Any command in ppp.conf may do this if the last character on the line is a \ character.
Sets the idle timeout for the link. 180 seconds is the default, so this line is purely cosmetic.
Tells PPP to ask the peer to confirm the local resolver settings. If you run a local name server, this line should be commented out or removed.
A blank line for readability. Blank lines are ignored by PPP.
Identifies an entry for a provider called “provider”. This
could be changed to the name of your ISP so
that later you can use the load ISP
to start the connection.
Sets the phone number for this provider. Multiple phone numbers may be specified using the colon (:) or pipe character (|) as a separator. The difference between the two separators is described in ppp(8). To summarize, if you want to rotate through the numbers, use a colon. If you want to always attempt to dial the first number first and only use the other numbers if the first number fails, use the pipe character. Always quote the entire set of phone numbers as shown.
You must enclose the phone number in quotation marks (") if there is any intention on using spaces in the phone number. This can cause a simple, yet subtle error.
Identifies the user name and password. When connecting using a UNIX style login prompt, these values are referred to by the set login command using the \U and \P variables. When connecting using PAP or CHAP, these values are used at authentication time.
If you are using PAP or CHAP, there will be no login at this point, and this line should be commented out or removed. See PAP and CHAP authentication for further details.
The login string is of the same chat-like syntax as the dial string. In this example, the string works for a service whose login session looks like this:
J. Random Provider login: foo password: bar protocol: ppp
You will need to alter this script to suit your own needs. When you write this script for the first time, you should ensure that you have enabled “chat” logging so you can determine if the conversation is going as expected.
Sets the default idle timeout (in seconds) for the connection. Here, the
connection will be closed automatically after 300 seconds of inactivity. If
you never want to timeout, set this value to zero or use the -ddial
command line switch.
Sets the interface addresses. The string x.x.x.x should be replaced by the IP address
that your provider has allocated to you. The string y.y.y.y should be replaced by the IP address
that your ISP indicated for their gateway (the machine to which you
connect). If your ISP has not given you a gateway address, use 10.0.0.2/0. If you need to use a “guessed”
address, make sure that you create an entry in /etc/ppp/ppp.linkup as per the instructions for PPP and Dynamic IP addresses. If this line is
omitted, ppp cannot run in -auto
mode.
Adds a default route to your ISP's gateway. The special word HISADDR is replaced with the gateway address specified on line 17. It is important that this line appears after line 17, otherwise HISADDR will not yet be initialized.
If you do not wish to run ppp in -auto
, this
line should be moved to the ppp.linkup file.
It is not necessary to add an entry to ppp.linkup when
you have a static IP address and are running ppp in -auto
mode as your routing table entries are already correct before
you connect. You may however wish to create an entry to invoke programs after connection.
This is explained later with the sendmail example.
Example configuration files can be found in the /usr/share/examples/ppp/ directory.
If your service provider does not assign static IP addresses, ppp can be configured to negotiate the local and remote addresses. This is done by “guessing” an IP address and allowing ppp to set it up correctly using the IP Configuration Protocol (IPCP) after connecting. The ppp.conf configuration is the same as PPP and Static IP Addresses, with the following change:
17 set ifaddr 10.0.0.1/0 10.0.0.2/0 255.255.255.255 0.0.0.0
Again, do not include the line number, it is just for reference. Indentation of at least one space is required.
The number after the / character is the number of bits of the address that ppp will insist on. You may wish to use IP numbers more appropriate to your circumstances, but the above example will always work.
The last argument (0.0.0.0) tells PPP to start
negotiations using address 0.0.0.0 rather than 10.0.0.1 and is necessary for some ISPs. Do not use 0.0.0.0 as the first argument to set ifaddr
as it prevents PPP from setting up an initial route in -auto
mode.
If you are not running in -auto
mode, you will need
to create an entry in /etc/ppp/ppp.linkup. ppp.linkup is used after a connection has been established.
At this point, ppp will have assigned the interface
addresses and it will now be possible to add the routing table entries:
1 provider: 2 add default HISADDR
On establishing a connection, ppp will look for an entry in ppp.linkup according to the following rules: First, try to match the same label as we used in ppp.conf. If that fails, look for an entry for the IP address of our gateway. This entry is a four-octet IP style label. If we still have not found an entry, look for the MYADDR entry.
This line tells ppp to add a default route that points to HISADDR. HISADDR will be replaced with the IP number of the gateway as negotiated by the IPCP.
See the pmdemand entry in the files /usr/share/examples/ppp/ppp.conf.sample and /usr/share/examples/ppp/ppp.linkup.sample for a detailed example.
When you configure ppp to receive incoming calls on a machine connected to a LAN, you must decide if you wish to forward packets to the LAN. If you do, you should allocate the peer an IP number from your LAN's subnet, and use the command enable proxy in your /etc/ppp/ppp.conf file. You should also confirm that the /etc/rc.conf file contains the following:
gateway_enable="YES"
Configuring FreeBSD for Dial-up Services provides a good description on enabling dial-up services using getty(8).
An alternative to getty is mgetty (from comms/mgetty+sendfax port), a smarter version of getty designed with dial-up lines in mind.
The advantages of using mgetty is that it actively talks to modems, meaning if port is turned off in /etc/ttys then your modem will not answer the phone.
Later versions of mgetty (from 0.99beta onwards) also support the automatic detection of PPP streams, allowing your clients script-less access to your server.
Refer to Mgetty and AutoPPP for more information on mgetty.
The ppp command must normally be run as the root user. If however, you wish to allow ppp to run in server mode as a normal user by executing ppp as described below, that user must be given permission to run ppp by adding them to the network group in /etc/group.
You will also need to give them access to one or more sections of the configuration file using the allow command:
allow users fred mary
If this command is used in the default section, it gives the specified users access to everything.
Create a file called /etc/ppp/ppp-shell containing the following:
#!/bin/sh IDENT=`echo $0 | sed -e 's/^.*-\(.*\)$/\1/'` CALLEDAS="$IDENT" TTY=`tty` if [ x$IDENT = xdialup ]; then IDENT=`basename $TTY` fi echo "PPP for $CALLEDAS on $TTY" echo "Starting PPP for $IDENT" exec /usr/sbin/ppp -direct $IDENT
This script should be executable. Now make a symbolic link called ppp-dialup to this script using the following commands:
# ln -s ppp-shell /etc/ppp/ppp-dialup
You should use this script as the shell for all of your dialup users. This is an example from /etc/passwd for a dialup PPP user with username pchilds (remember do not directly edit the password file, use vipw(8)).
pchilds:*:1011:300:Peter Childs PPP:/home/ppp:/etc/ppp/ppp-dialup
Create a /home/ppp directory that is world readable containing the following 0 byte files:
-r--r--r-- 1 root wheel 0 May 27 02:23 .hushlogin -r--r--r-- 1 root wheel 0 May 27 02:22 .rhosts
which prevents /etc/motd from being displayed.
Create the ppp-shell file as above, and for each account with statically assigned IPs create a symbolic link to ppp-shell.
For example, if you have three dialup customers, fred, sam, and mary, that you route /24 CIDR networks for, you would type the following:
# ln -s /etc/ppp/ppp-shell /etc/ppp/ppp-fred # ln -s /etc/ppp/ppp-shell /etc/ppp/ppp-sam # ln -s /etc/ppp/ppp-shell /etc/ppp/ppp-mary
Each of these users dialup accounts should have their shell set to the symbolic link created above (for example, mary's shell should be /etc/ppp/ppp-mary).
The /etc/ppp/ppp.conf file should contain something along the lines of:
default: set debug phase lcp chat set timeout 0 ttyu0: set ifaddr 203.14.100.1 203.14.100.20 255.255.255.255 enable proxy ttyu1: set ifaddr 203.14.100.1 203.14.100.21 255.255.255.255 enable proxy
Note: The indenting is important.
The default: section is loaded for each session. For each dialup line enabled in /etc/ttys create an entry similar to the one for ttyu0: above. Each line should get a unique IP address from your pool of IP addresses for dynamic users.
Along with the contents of the sample /usr/share/examples/ppp/ppp.conf above you should add a section for each of the statically assigned dialup users. We will continue with our fred, sam, and mary example.
fred: set ifaddr 203.14.100.1 203.14.101.1 255.255.255.255 sam: set ifaddr 203.14.100.1 203.14.102.1 255.255.255.255 mary: set ifaddr 203.14.100.1 203.14.103.1 255.255.255.255
The file /etc/ppp/ppp.linkup should also contain routing information for each static IP user if required. The line below would add a route for the 203.14.101.0/24 network via the client's ppp link.
fred: add 203.14.101.0 netmask 255.255.255.0 HISADDR sam: add 203.14.102.0 netmask 255.255.255.0 HISADDR mary: add 203.14.103.0 netmask 255.255.255.0 HISADDR
By default the comms/mgetty+sendfax port comes with the AUTO_PPP option enabled allowing mgetty to detect the LCP phase of PPP connections and automatically spawn off a ppp shell. However, since the default login/password sequence does not occur it is necessary to authenticate users using either PAP or CHAP.
This section assumes the user has successfully compiled, and installed the comms/mgetty+sendfax port on his system.
Make sure your /usr/local/etc/mgetty+sendfax/login.config file has the following in it:
/AutoPPP/ - - /etc/ppp/ppp-pap-dialup
This will tell mgetty to run the ppp-pap-dialup script for detected PPP connections.
Create a file called /etc/ppp/ppp-pap-dialup containing the following (the file should be executable):
#!/bin/sh exec /usr/sbin/ppp -direct pap$IDENT
For each dialup line enabled in /etc/ttys, create a corresponding entry in /etc/ppp/ppp.conf. This will happily co-exist with the definitions we created above.
pap: enable pap set ifaddr 203.14.100.1 203.14.100.20-203.14.100.40 enable proxy
Each user logging in with this method will need to have a username/password in /etc/ppp/ppp.secret file, or alternatively add the following option to authenticate users via PAP from the /etc/passwd file.
enable passwdauth
If you wish to assign some users a static IP number, you can specify the number as the third argument in /etc/ppp/ppp.secret. See /usr/share/examples/ppp/ppp.secret.sample for examples.
It is possible to configure PPP to supply DNS and NetBIOS nameserver addresses on demand.
To enable these extensions with PPP version 1.x, the following lines might be added to the relevant section of /etc/ppp/ppp.conf.
enable msext set ns 203.14.100.1 203.14.100.2 set nbns 203.14.100.5
And for PPP version 2 and above:
accept dns set dns 203.14.100.1 203.14.100.2 set nbns 203.14.100.5
This will tell the clients the primary and secondary name server addresses, and a NetBIOS nameserver host.
In version 2 and above, if the set dns line is omitted, PPP will use the values found in /etc/resolv.conf.
Some ISPs set their system up so that the authentication part of your connection is done using either of the PAP or CHAP authentication mechanisms. If this is the case, your ISP will not give a login: prompt when you connect, but will start talking PPP immediately.
PAP is less secure than CHAP, but security is not normally an issue here as passwords, although being sent as plain text with PAP, are being transmitted down a serial line only. There is not much room for crackers to “eavesdrop”.
Referring back to the PPP and Static IP addresses or PPP and Dynamic IP addresses sections, the following alterations must be made:
13 set authname MyUserName 14 set authkey MyPassword 15 set login
This line specifies your PAP/CHAP user name. You will need to insert the correct value for MyUserName.
This line specifies your PAP/CHAP password. You will need to insert the correct value for MyPassword. You may want to add an additional line, such as:
16 accept PAP
or
16 accept CHAP
to make it obvious that this is the intention, but PAP and CHAP are both accepted by default.
Your ISP will not normally require that you log into the server if you are using PAP or CHAP. You must therefore disable your “set login” string.
It is possible to talk to the ppp program while it is running in the background, but only if a suitable diagnostic port has been set up. To do this, add the following line to your configuration:
set server /var/run/ppp-tun%d DiagnosticPassword 0177
This will tell PPP to listen to the specified UNIX domain socket, asking clients for the specified password before allowing access. The %d in the name is replaced with the tun device number that is in use.
Once a socket has been set up, the pppctl(8) program may be used in scripts that wish to manipulate the running program.
PPP has ability to use internal NAT without kernel diverting capabilities. This functionality may be enabled by the following line in /etc/ppp/ppp.conf:
nat enable yes
Alternatively, PPP NAT may be enabled by command-line option -nat. There is also /etc/rc.conf knob named ppp_nat, which is enabled by default.
If you use this feature, you may also find useful the following /etc/ppp/ppp.conf options to enable incoming connections forwarding:
nat port tcp 10.0.0.2:ftp ftp nat port tcp 10.0.0.2:http http
or do not trust the outside at all
nat deny_incoming yes
You now have ppp configured, but there are a few more things to do before it is ready to work. They all involve editing the /etc/rc.conf file.
Working from the top down in this file, make sure the hostname= line is set, e.g.:
hostname="foo.example.com"
If your ISP has supplied you with a static IP address and name, it is probably best that you use this name as your host name.
Look for the network_interfaces variable. If you want to configure your system to dial your ISP on demand, make sure the tun0 device is added to the list, otherwise remove it.
network_interfaces="lo0 tun0" ifconfig_tun0=
Note: The ifconfig_tun0 variable should be empty, and a file called /etc/start_if.tun0 should be created. This file should contain the line:
ppp -auto mysystemThis script is executed at network configuration time, starting your ppp daemon in automatic mode. If you have a LAN for which this machine is a gateway, you may also wish to use the
-alias
switch. Refer to the manual page for further details.
Make sure that the router program is set to NO with the following line in your /etc/rc.conf:
router_enable="NO"
It is important that the routed daemon is not started, as routed tends to delete the default routing table entries created by ppp.
It is probably a good idea to ensure that the sendmail_flags line does not include the -q
option, otherwise sendmail will
attempt to do a network lookup every now and then, possibly causing your machine to
dial out. You may try:
sendmail_flags="-bd"
The downside of this is that you must force sendmail to re-examine the mail queue whenever the ppp link is up by typing:
# /usr/sbin/sendmail -q
You may wish to use the !bg command in ppp.linkup to do this automatically:
1 provider: 2 delete ALL 3 add 0 0 HISADDR 4 !bg sendmail -bd -q30m
If you do not like this, it is possible to set up a “dfilter” to block SMTP traffic. Refer to the sample files for further details.
All that is left is to reboot the machine. After rebooting, you can now either type:
# ppp
and then dial provider to start the PPP session, or, if you want ppp to establish sessions automatically when there is outbound traffic (and you have not created the start_if.tun0 script), type:
# ppp -auto provider
To recap, the following steps are necessary when setting up ppp for the first time:
Client side:
Ensure that the tun device is built into your kernel.
Ensure that the tunN device file is available in the /dev directory.
Create an entry in /etc/ppp/ppp.conf. The pmdemand example should suffice for most ISPs.
If you have a dynamic IP address, create an entry in /etc/ppp/ppp.linkup.
Update your /etc/rc.conf file.
Create a start_if.tun0 script if you require demand dialing.
Server side:
Ensure that the tun device is built into your kernel.
Ensure that the tunN device file is available in the /dev directory.
Create an entry in /etc/passwd (using the vipw(8) program).
Create a profile in this users home directory that runs ppp -direct direct-server or similar.
Create an entry in /etc/ppp/ppp.conf. The direct-server example should suffice.
Create an entry in /etc/ppp/ppp.linkup.
Update your /etc/rc.conf file.
Warning: This section applies and is valid only for FreeBSD 7.X.
Before you start setting up PPP on your machine, make sure that pppd is located in /usr/sbin and the directory /etc/ppp exists.
pppd can work in two modes:
As a “client” — you want to connect your machine to the outside world via a PPP serial connection or modem line.
As a “server” — your machine is located on the network, and is used to connect other computers using PPP.
In both cases you will need to set up an options file (/etc/ppp/options or ~/.ppprc if you have more than one user on your machine that uses PPP).
You will also need some modem/serial software (preferably comms/kermit), so you can dial and establish a connection with the remote host.
The following /etc/ppp/options might be used to connect to a Cisco terminal server PPP line.
crtscts # enable hardware flow control modem # modem control line noipdefault # remote PPP server must supply your IP address # if the remote host does not send your IP during IPCP # negotiation, remove this option passive # wait for LCP packets domain ppp.foo.com # put your domain name here :remote_ip # put the IP of remote PPP host here # it will be used to route packets via PPP link # if you didn't specified the noipdefault option # change this line to local_ip:remote_ip defaultroute # put this if you want that PPP server will be your # default router
To connect:
Dial to the remote host using Kermit (or some other modem program), and enter your user name and password (or whatever is needed to enable PPP on the remote host).
Exit Kermit (without hanging up the line).
Enter the following:
# /usr/sbin/pppd /dev/tty01 19200
Be sure to use the appropriate speed and device name.
Now your computer is connected with PPP. If the connection fails, you can add the
debug
option to the /etc/ppp/options file, and check console messages to track the
problem.
Following /etc/ppp/pppup script will make all 3 stages automatic:
#!/bin/sh pgrep -l pppd pid=`pgrep pppd` if [ "X${pid}" != "X" ] ; then echo 'killing pppd, PID=' ${pid} kill ${pid} fi pgrep -l kermit pid=`pgrep kermit` if [ "X${pid}" != "X" ] ; then echo 'killing kermit, PID=' ${pid} kill -9 ${pid} fi ifconfig ppp0 down ifconfig ppp0 delete kermit -y /etc/ppp/kermit.dial pppd /dev/tty01 19200
/etc/ppp/kermit.dial is a Kermit script that dials and makes all necessary authorization on the remote host (an example of such a script is attached to the end of this document).
Use the following /etc/ppp/pppdown script to disconnect the PPP line:
#!/bin/sh pid=`pgrep pppd` if [ X${pid} != "X" ] ; then echo 'killing pppd, PID=' ${pid} kill -TERM ${pid} fi pgrep -l kermit pid=`pgrep kermit` if [ "X${pid}" != "X" ] ; then echo 'killing kermit, PID=' ${pid} kill -9 ${pid} fi /sbin/ifconfig ppp0 down /sbin/ifconfig ppp0 delete kermit -y /etc/ppp/kermit.hup /etc/ppp/ppptest
Check to see if pppd is still running by executing /usr/etc/ppp/ppptest, which should look like this:
#!/bin/sh pid=`pgrep pppd` if [ X${pid} != "X" ] ; then echo 'pppd running: PID=' ${pid-NONE} else echo 'No pppd running.' fi set -x netstat -n -I ppp0 ifconfig ppp0
To hang up the modem, execute /etc/ppp/kermit.hup, which should contain:
set line /dev/tty01 ; put your modem device here set speed 19200 set file type binary set file names literal set win 8 set rec pack 1024 set send pack 1024 set block 3 set term bytesize 8 set command bytesize 8 set flow none pau 1 out +++ inp 5 OK out ATH0\13 echo \13 exit
Here is an alternate method using chat instead of kermit:
The following two files are sufficient to accomplish a pppd connection.
/etc/ppp/options:
/dev/cuad1 115200 crtscts # enable hardware flow control modem # modem control line connect "/usr/bin/chat -f /etc/ppp/login.chat.script" noipdefault # remote PPP serve must supply your IP address # if the remote host doesn't send your IP during # IPCP negotiation, remove this option passive # wait for LCP packets domain your.domain # put your domain name here : # put the IP of remote PPP host here # it will be used to route packets via PPP link # if you didn't specified the noipdefault option # change this line to local_ip:remote_ip defaultroute # put this if you want that PPP server will be # your default router
/etc/ppp/login.chat.script:
Note: The following should go on a single line.
ABORT BUSY ABORT 'NO CARRIER' "" AT OK ATDTphone.number CONNECT "" TIMEOUT 10 ogin:-\\r-ogin: login-id TIMEOUT 5 sword: password
Once these are installed and modified correctly, all you need to do is run pppd, like so:
# pppd
/etc/ppp/options should contain something similar to the following:
crtscts # Hardware flow control netmask 255.255.255.0 # netmask (not required) 192.114.208.20:192.114.208.165 # IP's of local and remote hosts # local ip must be different from one # you assigned to the Ethernet (or other) # interface on your machine. # remote IP is IP address that will be # assigned to the remote machine domain ppp.foo.com # your domain passive # wait for LCP modem # modem line
The following /etc/ppp/pppserv script will tell pppd to behave as a server:
#!/bin/sh pgrep -l pppd pid=`pgrep pppd` if [ "X${pid}" != "X" ] ; then echo 'killing pppd, PID=' ${pid} kill ${pid} fi pgrep -l kermit pid=`pgrep kermit` if [ "X${pid}" != "X" ] ; then echo 'killing kermit, PID=' ${pid} kill -9 ${pid} fi # reset ppp interface ifconfig ppp0 down ifconfig ppp0 delete # enable autoanswer mode kermit -y /etc/ppp/kermit.ans # run ppp pppd /dev/tty01 19200
Use this /etc/ppp/pppservdown script to stop the server:
#!/bin/sh pgrep -l pppd pid=`pgrep pppd` if [ "X${pid}" != "X" ] ; then echo 'killing pppd, PID=' ${pid} kill ${pid} fi pgrep -l kermit pid=`pgrep kermit` if [ "X${pid}" != "X" ] ; then echo 'killing kermit, PID=' ${pid} kill -9 ${pid} fi ifconfig ppp0 down ifconfig ppp0 delete kermit -y /etc/ppp/kermit.noans
The following Kermit script (/etc/ppp/kermit.ans) will enable/disable autoanswer mode on your modem. It should look like this:
set line /dev/tty01 set speed 19200 set file type binary set file names literal set win 8 set rec pack 1024 set send pack 1024 set block 3 set term bytesize 8 set command bytesize 8 set flow none pau 1 out +++ inp 5 OK out ATH0\13 inp 5 OK echo \13 out ATS0=1\13 ; change this to out ATS0=0\13 if you want to disable ; autoanswer mode inp 5 OK echo \13 exit
A script named /etc/ppp/kermit.dial is used for dialing and authenticating on the remote host. You will need to customize it for your needs. Put your login and password in this script; you will also need to change the input statement depending on responses from your modem and remote host.
; ; put the com line attached to the modem here: ; set line /dev/tty01 ; ; put the modem speed here: ; set speed 19200 set file type binary ; full 8 bit file xfer set file names literal set win 8 set rec pack 1024 set send pack 1024 set block 3 set term bytesize 8 set command bytesize 8 set flow none set modem hayes set dial hangup off set carrier auto ; Then SET CARRIER if necessary, set dial display on ; Then SET DIAL if necessary, set input echo on set input timeout proceed set input case ignore def \%x 0 ; login prompt counter goto slhup :slcmd ; put the modem in command mode echo Put the modem in command mode. clear ; Clear unread characters from input buffer pause 1 output +++ ; hayes escape sequence input 1 OK\13\10 ; wait for OK if success goto slhup output \13 pause 1 output at\13 input 1 OK\13\10 if fail goto slcmd ; if modem doesn't answer OK, try again :slhup ; hang up the phone clear ; Clear unread characters from input buffer pause 1 echo Hanging up the phone. output ath0\13 ; hayes command for on hook input 2 OK\13\10 if fail goto slcmd ; if no OK answer, put modem in command mode :sldial ; dial the number pause 1 echo Dialing. output atdt9,550311\13\10 ; put phone number here assign \%x 0 ; zero the time counter :look clear ; Clear unread characters from input buffer increment \%x ; Count the seconds input 1 {CONNECT } if success goto sllogin reinput 1 {NO CARRIER\13\10} if success goto sldial reinput 1 {NO DIALTONE\13\10} if success goto slnodial reinput 1 {\255} if success goto slhup reinput 1 {\127} if success goto slhup if < \%x 60 goto look else goto slhup :sllogin ; login assign \%x 0 ; zero the time counter pause 1 echo Looking for login prompt. :slloop increment \%x ; Count the seconds clear ; Clear unread characters from input buffer output \13 ; ; put your expected login prompt here: ; input 1 {Username: } if success goto sluid reinput 1 {\255} if success goto slhup reinput 1 {\127} if success goto slhup if < \%x 10 goto slloop ; try 10 times to get a login prompt else goto slhup ; hang up and start again if 10 failures :sluid ; ; put your userid here: ; output ppp-login\13 input 1 {Password: } ; ; put your password here: ; output ppp-password\13 input 1 {Entering SLIP mode.} echo quit :slnodial echo \7No dialtone. Check the telephone line!\7 exit 1 ; local variables: ; mode: csh ; comment-start: "; " ; comment-start-skip: "; " ; end:
Warning: As of FreeBSD 8.0, the uart(4) driver replaces the sio(4) driver. Device nodes for serial ports have been renamed from /dev/cuadN to /dev/cuauN and from /dev/ttydN to /dev/ttyuN. FreeBSD 7.X users will have to adapt the following documentation according to these changes.
This section covers a few issues which may arise when using PPP over a modem connection. For instance, perhaps you need to know exactly what prompts the system you are dialing into will present. Some ISPs present the ssword prompt, and others will present password; if the ppp script is not written accordingly, the login attempt will fail. The most common way to debug ppp connections is by connecting manually. The following information will walk you through a manual connection step by step.
When using a custom kernel, make sure to include the following line in your kernel configuration file:
device uart
The uart device is already included in the GENERIC kernel, so no additional steps are necessary in this case. Just check the dmesg output for the modem device with:
# dmesg | grep uart
You should get some pertinent output about the uart devices. These are the COM ports we need. If your modem acts like a standard serial port then you should see it listed on uart1, or COM2. If so, you are not required to rebuild the kernel. When matching up sio modem is on uart1 or COM2 if you are in DOS, then your modem device would be /dev/cuau1.
Connecting to the Internet by manually controlling ppp is quick, easy, and a great way to debug a connection or just get information on how your ISP treats ppp client connections. Lets start PPP from the command line. Note that in all of our examples we will use example as the hostname of the machine running PPP. You start ppp by just typing ppp:
# ppp
We have now started ppp.
ppp ON example> set device /dev/cuau1
We set our modem device, in this case it is cuau1.
ppp ON example> set speed 115200
Set the connection speed, in this case we are using 115,200 kbps.
ppp ON example> enable dns
Tell ppp to configure our resolver and add the nameserver lines to /etc/resolv.conf. If ppp cannot determine our hostname, we can set one manually later.
ppp ON example> term
Switch to “terminal” mode so that we can manually control the modem.
deflink: Entering terminal mode on /dev/cuau1 type '~h' for help
at OK atdt123456789
Use at to initialize the modem, then use atdt and the number for your ISP to begin the dial in process.
CONNECT
Confirmation of the connection, if we are going to have any connection problems, unrelated to hardware, here is where we will attempt to resolve them.
ISP Login:myusername
Here you are prompted for a username, return the prompt with the username that was provided by the ISP.
ISP Pass:mypassword
This time we are prompted for a password, just reply with the password that was provided by the ISP. Just like logging into FreeBSD, the password will not echo.
Shell or PPP:ppp
Depending on your ISP this prompt may never appear. Here we are being asked if we wish to use a shell on the provider, or to start ppp. In this example, we have chosen to use ppp as we want an Internet connection.
Ppp ON example>
Notice that in this example the first p
has been
capitalized. This shows that we have successfully connected to the ISP.
PPp ON example>
We have successfully authenticated with our ISP and are waiting for the assigned IP address.
PPP ON example>
We have made an agreement on an IP address and successfully completed our connection.
PPP ON example>add default HISADDR
Here we add our default route, we need to do this before we can talk to the
outside world as currently the only established connection is with the peer. If this
fails due to existing routes you can put a bang character ! in front of the add
.
Alternatively, you can set this before making the actual connection and it will
negotiate a new route accordingly.
If everything went good we should now have an active connection to the Internet, which could be thrown into the background using CTRL+z If you notice the PPP return to ppp then we have lost our connection. This is good to know because it shows our connection status. Capital P's show that we have a connection to the ISP and lowercase p's show that the connection has been lost for whatever reason. ppp only has these 2 states.
If you have a direct line and cannot seem to make a connection, then turn
hardware flow CTS/RTS to off with the
set ctsrts off
. This is mainly the case if you are
connected to some PPP capable terminal servers,
where PPP hangs when it tries to write data to your
communication link, so it would be waiting for a CTS, or Clear To Send signal which may never come. If you use
this option however, you should also use the set accmap
option, which may be required to defeat hardware dependent on passing certain
characters from end to end, most of the time XON/XOFF. See the ppp(8) manual page for
more information on this option, and how it is used.
If you have an older modem, you may need to use the set
parity even
. Parity is set at none be default, but is used for error
checking (with a large increase in traffic) on older modems and some ISPs. You may need this option for the
Compuserve ISP.
PPP may not return to the command mode, which is usually a negotiation error where the ISP is waiting for your side to start negotiating. At this point, using the ~p command will force ppp to start sending the configuration information.
If you never obtain a login prompt, then most likely you need to use PAP or CHAP authentication instead of the UNIX style in the example above. To use PAP or CHAP just add the following options to PPP before going into terminal mode:
ppp ON example> set authname myusername
Where myusername should be replaced with the username that was assigned by the ISP.
ppp ON example> set authkey mypassword
Where mypassword should be replaced with the password that was assigned by the ISP.
If you connect fine, but cannot seem to find any domain name, try to use ping(8) with an
IP address and see if you can get any
return information. If you experience 100 percent (100%) packet loss, then it is
most likely that you were not assigned a default route. Double check that the
option add default HISADDR
was set during the
connection. If you can connect to a remote IP address then it is possible that a resolver address has not
been added to the /etc/resolv.conf. This file should
look like:
domain example.com nameserver x.x.x.x nameserver y.y.y.y
Where x.x.x.x and y.y.y.y should be replaced with the IP address of your ISP's DNS servers. This information may or may not have been provided when you signed up, but a quick call to your ISP should remedy that.
You could also have syslog(3) provide a logging function for your PPP connection. Just add:
!ppp *.* /var/log/ppp.log
to /etc/syslog.conf. In most cases, this functionality already exists.
This section describes how to set up PPP over Ethernet (PPPoE).
No kernel configuration is necessary for PPPoE any longer. If the necessary netgraph support is not built into the kernel, it will be dynamically loaded by ppp.
Here is an example of a working ppp.conf:
default: set log Phase tun command # you can add more detailed logging if you wish set ifaddr 10.0.0.1/0 10.0.0.2/0 name_of_service_provider: set device PPPoE:xl1 # replace xl1 with your Ethernet device set authname YOURLOGINNAME set authkey YOURPASSWORD set dial set login add default HISADDR
Add the following to your /etc/rc.conf file:
ppp_enable="YES" ppp_mode="ddial" ppp_nat="YES" # if you want to enable nat for your local network, otherwise NO ppp_profile="name_of_service_provider"
Sometimes it will be necessary to use a service tag to establish your connection. Service tags are used to distinguish between different PPPoE servers attached to a given network.
You should have been given any required service tag information in the documentation provided by your ISP. If you cannot locate it there, ask your ISP's tech support personnel.
As a last resort, you could try the method suggested by the Roaring Penguin PPPoE program which can be found in the Ports Collection. Bear in mind however, this may de-program your modem and render it useless, so think twice before doing it. Simply install the program shipped with the modem by your provider. Then, access the menu from the program. The name of your profile should be listed there. It is usually ISP.
The profile name (service tag) will be used in the PPPoE configuration entry in ppp.conf as the provider part of the set device command (see the ppp(8) manual page for full details). It should look like this:
set device PPPoE:xl1:ISP
Do not forget to change xl1 to the proper device for your Ethernet card.
Do not forget to change ISP to the profile you have just found above.
For additional information, see:
Cheaper Broadband with FreeBSD on DSL by Renaud Waldura.
This modem does not follow RFC 2516 (A Method for transmitting PPP over Ethernet (PPPoE), written by L. Mamakos, K. Lidl, J. Evarts, D. Carrel, D. Simone, and R. Wheeler). Instead, different packet type codes have been used for the Ethernet frames. Please complain to 3Com if you think it should comply with the PPPoE specification.
In order to make FreeBSD capable of communicating with this device, a sysctl must be set. This can be done automatically at boot time by updating /etc/sysctl.conf:
net.graph.nonstandard_pppoe=1
or can be done immediately with the command:
# sysctl net.graph.nonstandard_pppoe=1
Unfortunately, because this is a system-wide setting, it is not possible to talk to a normal PPPoE client or server and a 3Com HomeConnect® ADSL Modem at the same time.
The following describes how to set up PPP over ATM (PPPoA). PPPoA is a popular choice among European DSL providers.
PPPoA support for this device is supplied as a port in FreeBSD because the firmware is distributed under Alcatel's license agreement and can not be redistributed freely with the base system of FreeBSD.
To install the software, simply use the Ports Collection. Install the net/pppoa port and follow the instructions provided with it.
Like many USB devices, the Alcatel SpeedTouch™ USB needs to download firmware from the host computer to operate properly. It is possible to automate this process in FreeBSD so that this transfer takes place whenever the device is plugged into a USB port. The following information can be added to the /etc/usbd.conf file to enable this automatic firmware transfer. This file must be edited as the root user.
device "Alcatel SpeedTouch USB" devname "ugen[0-9]+" vendor 0x06b9 product 0x4061 attach "/usr/local/sbin/modem_run -f /usr/local/libdata/mgmt.o"
To enable the USB daemon, usbd, put the following the line into /etc/rc.conf:
usbd_enable="YES"
It is also possible to set up ppp to dial up at startup. To do this add the following lines to /etc/rc.conf. Again, for this procedure you will need to be logged in as the root user.
ppp_enable="YES" ppp_mode="ddial" ppp_profile="adsl"
For this to work correctly you will need to have used the sample ppp.conf which is supplied with the net/pppoa port.
You can use mpd to connect to a variety of services, in particular PPTP services. You can find mpd in the Ports Collection, net/mpd. Many ADSL modems require that a PPTP tunnel is created between the modem and computer, one such modem is the Alcatel SpeedTouch Home.
First you must install the port, and then you can configure mpd to suit your requirements and provider settings. The port places a set of sample configuration files which are well documented in PREFIX/etc/mpd/. Note here that PREFIX means the directory into which your ports are installed, this defaults to /usr/local/. A complete guide to configure mpd is available in HTML format once the port has been installed. It is placed in PREFIX/share/doc/mpd/. Here is a sample configuration for connecting to an ADSL service with mpd. The configuration is spread over two files, first the mpd.conf:
Note: This example of the mpd.conf file only works with mpd 4.x.
default: load adsl adsl: new -i ng0 adsl adsl set bundle authname username set bundle password password set bundle disable multilink set link no pap acfcomp protocomp set link disable chap set link accept chap set link keep-alive 30 10 set ipcp no vjcomp set ipcp ranges 0.0.0.0/0 0.0.0.0/0 set iface route default set iface disable on-demand set iface enable proxy-arp set iface idle 0 open
The mpd.links file contains information about the link, or links, you wish to establish. An example mpd.links to accompany the above example is given beneath:
adsl: set link type pptp set pptp mode active set pptp enable originate outcall set pptp self 10.0.0.1 set pptp peer 10.0.0.138
It is possible to initialize the connection easily by issuing the following command as root:
# mpd -b adsl
You can see the status of the connection with the following command:
% ifconfig ng0 ng0: flags=88d1<UP,POINTOPOINT,RUNNING,NOARP,SIMPLEX,MULTICAST> mtu 1500 inet 216.136.204.117 --> 204.152.186.171 netmask 0xffffffff
Using mpd is the recommended way to connect to an ADSL service with FreeBSD.
It is also possible to use FreeBSD to connect to other PPPoA services using net/pptpclient.
To use net/pptpclient to connect to a DSL service, install the port or package and edit your /etc/ppp/ppp.conf. You will need to be root to perform both of these operations. An example section of ppp.conf is given below. For further information on ppp.conf options consult the ppp manual page, ppp(8).
adsl: set log phase chat lcp ipcp ccp tun command set timeout 0 enable dns set authname username set authkey password set ifaddr 0 0 add default HISADDR
Warning: Because you must put your account's password in the ppp.conf file in plain text form you should make sure than nobody can read the contents of this file. The following series of commands will make sure the file is only readable by the root account. Refer to the manual pages for chmod(1) and chown(8) for further information.
# chown root:wheel /etc/ppp/ppp.conf # chmod 600 /etc/ppp/ppp.conf
This will open a tunnel for a PPP session to your DSL router. Ethernet DSL modems have a preconfigured LAN IP address which you connect to. In the case of the Alcatel SpeedTouch Home this address is 10.0.0.138. Your router documentation should tell you which address your device uses. To open the tunnel and start a PPP session execute the following command:
# pptp address adsl
Tip: You may wish to add an ampersand (“&”) to the end of the previous command because pptp will not return your prompt to you otherwise.
A tun virtual tunnel device will be created for interaction between the pptp and ppp processes. Once you have been returned to your prompt, or the pptp process has confirmed a connection you can examine the tunnel like so:
% ifconfig tun0 tun0: flags=8051<UP,POINTOPOINT,RUNNING,MULTICAST> mtu 1500 inet 216.136.204.21 --> 204.152.186.171 netmask 0xffffff00 Opened by PID 918
If you are unable to connect, check the configuration of your router, which is usually accessible via telnet or with a web browser. If you still cannot connect you should examine the output of the pptp command and the contents of the ppp log file, /var/log/ppp.log for clues.
Warning: This section applies and is valid only for FreeBSD 7.X.
The following is one way to set up a FreeBSD machine for SLIP on a static host network. For dynamic hostname assignments (your address changes each time you dial up), you probably need to have a more complex setup.
First, determine which serial port your modem is connected to. Many people set up a symbolic link, such as /dev/modem, to point to the real device name, /dev/cuadN. This allows you to abstract the actual device name should you ever need to move the modem to a different port. It can become quite cumbersome when you need to fix a bunch of files in /etc and .kermrc files all over the system!
Note: /dev/cuad0 is COM1, /dev/cuad1 is COM2, etc.
Make sure you have the following in your kernel configuration file:
device sl
It is included in the GENERIC kernel, so this should not be a problem unless you have deleted it.
Add your home machine, the gateway and nameservers to your /etc/hosts file. Ours looks like this:
127.0.0.1 localhost loghost 136.152.64.181 water.CS.Example.EDU water.CS water 136.152.64.1 inr-3.CS.Example.EDU inr-3 slip-gateway 128.32.136.9 ns1.Example.EDU ns1 128.32.136.12 ns2.Example.EDU ns2
Make sure you have files before dns in the hosts: section of your /etc/nsswitch.conf file. Without these parameters funny things may happen.
Edit the /etc/rc.conf file.
Set your hostname by editing the line that says:
hostname="myname.my.domain"
Your machine's full Internet hostname should be placed here.
Designate the default router by changing the line:
defaultrouter="NO"
to:
defaultrouter="slip-gateway"
Make a file /etc/resolv.conf which contains:
domain CS.Example.EDU nameserver 128.32.136.9 nameserver 128.32.136.12
As you can see, these set up the nameserver hosts. Of course, the actual domain names and addresses depend on your environment.
Set the password for root and toor (and any other accounts that do not have a password).
Reboot your machine and make sure it comes up with the correct hostname.
Dial up, type slip at the prompt, enter your machine name and password. What is required to be entered depends on your environment. If you use Kermit, you can try a script like this:
# kermit setup set modem hayes set line /dev/modem set speed 115200 set parity none set flow rts/cts set terminal bytesize 8 set file type binary # The next macro will dial up and login define slip dial 643-9600, input 10 =>, if failure stop, - output slip\x0d, input 10 Username:, if failure stop, - output silvia\x0d, input 10 Password:, if failure stop, - output ***\x0d, echo \x0aCONNECTED\x0a
Of course, you have to change the username and password to fit yours. After doing so, you can just type slip from the Kermit prompt to connect.
Note: Leaving your password in plain text anywhere in the filesystem is generally a bad idea. Do it at your own risk.
Leave the Kermit there (you can suspend it by Ctrl-z) and as root, type:
# slattach -h -c -s 115200 /dev/modem
If you are able to ping hosts on the other side of the
router, you are connected! If it does not work, you might want to try -a
instead of -c
as an argument
to slattach.
Do the following:
# kill -INT `cat /var/run/slattach.modem.pid`
to kill slattach. Keep in mind you must be root to do the above. Then go back to kermit (by running fg if you suspended it) and exit from it (q).
The slattach(8) manual page says you have to use ifconfig sl0 down to mark the interface down, but this does not seem to make any difference. (ifconfig sl0 reports the same thing.)
Some times, your modem might refuse to drop the carrier. In that case, simply start kermit and quit it again. It usually goes out on the second try.
If it does not work, feel free to ask on freebsd-net mailing list. The things that people tripped over so far:
Not using -c
or -a
in
slattach (This should not be fatal, but some users have
reported that this solves their problems.)
Using s10
instead of sl0
(might be hard to see the difference on some fonts).
Try ifconfig sl0 to see your interface status. For example, you might get:
# ifconfig sl0 sl0: flags=10<POINTOPOINT> inet 136.152.64.181 --> 136.152.64.1 netmask ffffff00
If you get “no route to host” messages from ping(8), there may be a problem with your routing table. You can use the netstat -r command to display the current routes :
# netstat -r Routing tables Destination Gateway Flags Refs Use IfaceMTU Rtt Netmasks: (root node) (root node) Route Tree for Protocol Family inet: (root node) => default inr-3.Example.EDU UG 8 224515 sl0 - - localhost.Exampl localhost.Example. UH 5 42127 lo0 - 0.438 inr-3.Example.ED water.CS.Example.E UH 1 0 sl0 - - water.CS.Example localhost.Example. UGH 34 47641234 lo0 - 0.438 (root node)
The preceding examples are from a relatively busy system. The numbers on your system will vary depending on network activity.
This document provides suggestions for setting up SLIP Server services on a FreeBSD system, which typically means configuring your system to automatically start up connections upon login for remote SLIP clients.
This section is very technical in nature, so background knowledge is required. It is assumed that you are familiar with the TCP/IP network protocol, and in particular, network and node addressing, network address masks, subnetting, routing, and routing protocols, such as RIP. Configuring SLIP services on a dial-up server requires a knowledge of these concepts, and if you are not familiar with them, please read a copy of either Craig Hunt's TCP/IP Network Administration published by O'Reilly & Associates, Inc. (ISBN Number 0-937175-82-X), or Douglas Comer's books on the TCP/IP protocol.
It is further assumed that you have already set up your modem(s) and configured the appropriate system files to allow logins through your modems. If you have not prepared your system for this yet, please see Section 27.4 for details on dialup services configuration. You may also want to check the manual pages for sio(4) for information on the serial port device driver and ttys(5), gettytab(5), getty(8), & init(8) for information relevant to configuring the system to accept logins on modems, and perhaps stty(1) for information on setting serial port parameters (such as clocal for directly-connected serial interfaces).
In its typical configuration, using FreeBSD as a SLIP server works as follows: a SLIP user dials up your FreeBSD SLIP Server system and logs in with a special SLIP login ID that uses /usr/sbin/sliplogin as the special user's shell. The sliplogin program browses the file /etc/sliphome/slip.hosts to find a matching line for the special user, and if it finds a match, connects the serial line to an available SLIP interface and then runs the shell script /etc/sliphome/slip.login to configure the SLIP interface.
For example, if a SLIP user ID were Shelmerg, Shelmerg's entry in /etc/master.passwd would look something like this:
Shelmerg:password:1964:89::0:0:Guy Helmer - SLIP:/usr/users/Shelmerg:/usr/sbin/sliplogin
When Shelmerg logs in, sliplogin will search /etc/sliphome/slip.hosts for a line that had a matching user ID; for example, there may be a line in /etc/sliphome/slip.hosts that reads:
Shelmerg dc-slip sl-helmer 0xfffffc00 autocomp
sliplogin will find that matching line, hook the serial line into the next available SLIP interface, and then execute /etc/sliphome/slip.login like this:
/etc/sliphome/slip.login 0 19200 Shelmerg dc-slip sl-helmer 0xfffffc00 autocomp
If all goes well, /etc/sliphome/slip.login will issue an ifconfig for the SLIP interface to which sliplogin attached itself (SLIP interface 0, in the above example, which was the first parameter in the list given to slip.login) to set the local IP address (dc-slip), remote IP address (sl-helmer), network mask for the SLIP interface (0xfffffc00), and any additional flags (autocomp). If something goes wrong, sliplogin usually logs good informational messages via the syslogd daemon facility, which usually logs to /var/log/messages (see the manual pages for syslogd(8) and syslog.conf(5) and perhaps check /etc/syslog.conf to see to what syslogd is logging and where it is logging to).
FreeBSD's default kernel (GENERIC) comes with SLIP (sl(4)) support; in case of a custom kernel, you have to add the following line to your kernel configuration file:
device sl
By default, your FreeBSD machine will not forward packets. If you want your
FreeBSD SLIP Server to act as a router, you will have to edit the /etc/rc.conf file and change the setting of the gateway_enable variable to YES
.
This will make sure that setting the routing option will be persistent after a
reboot.
To apply the settings immediately you can execute the following command as root:
# /etc/rc.d/routing start
Please refer to Chapter 9 on Configuring the FreeBSD Kernel for help in reconfiguring your kernel.
As mentioned earlier, there are three files in the /etc/sliphome directory that are part of the configuration for /usr/sbin/sliplogin (see sliplogin(8) for the actual manual page for sliplogin): slip.hosts, which defines the SLIP users and their associated IP addresses; slip.login, which usually just configures the SLIP interface; and (optionally) slip.logout, which undoes slip.login's effects when the serial connection is terminated.
/etc/sliphome/slip.hosts contains lines which have at least four items separated by whitespace:
SLIP user's login ID
Local address (local to the SLIP server) of the SLIP link
Remote address of the SLIP link
Network mask
The local and remote addresses may be host names (resolved to IP addresses by /etc/hosts or by the domain name service, depending on your specifications in the file /etc/nsswitch.conf), and the network mask may be a name that can be resolved by a lookup into /etc/networks. On a sample system, /etc/sliphome/slip.hosts looks like this:
# # login local-addr remote-addr mask opt1 opt2 # (normal,compress,noicmp) # Shelmerg dc-slip sl-helmerg 0xfffffc00 autocomp
At the end of the line is one or more of the options:
normal
— no header compression
compress
— compress headers
autocomp
— compress headers if the remote
end allows it
noicmp
— disable ICMP packets (so any
“ping” packets will be dropped instead of using up your
bandwidth)
Your choice of local and remote addresses for your SLIP links depends on whether you are going to dedicate a TCP/IP subnet or if you are going to use “proxy ARP” on your SLIP server (it is not “true” proxy ARP, but that is the terminology used in this section to describe it). If you are not sure which method to select or how to assign IP addresses, please refer to the TCP/IP books referenced in the SLIP Prerequisites (Section 28.7.2.1) and/or consult your IP network manager.
If you are going to use a separate subnet for your SLIP clients, you will need to allocate the subnet number out of your assigned IP network number and assign each of your SLIP client's IP numbers out of that subnet. Then, you will probably need to configure a static route to the SLIP subnet via your SLIP server on your nearest IP router.
Otherwise, if you will use the “proxy ARP” method, you will need to assign your SLIP client's IP addresses out of your SLIP server's Ethernet subnet, and you will also need to adjust your /etc/sliphome/slip.login and /etc/sliphome/slip.logout scripts to use arp(8) to manage the “proxy ARP” entries in the SLIP server's ARP table.
The typical /etc/sliphome/slip.login file looks like this:
#!/bin/sh - # # @(#)slip.login 5.1 (Berkeley) 7/1/90 # # generic login file for a slip line. sliplogin invokes this with # the parameters: # 1 2 3 4 5 6 7-n # slipunit ttyspeed loginname local-addr remote-addr mask opt-args # /sbin/ifconfig sl$1 inet $4 $5 netmask $6
This slip.login file merely runs ifconfig for the appropriate SLIP interface with the local and remote addresses and network mask of the SLIP interface.
If you have decided to use the “proxy ARP” method (instead of using a separate subnet for your SLIP clients), your /etc/sliphome/slip.login file will need to look something like this:
#!/bin/sh - # # @(#)slip.login 5.1 (Berkeley) 7/1/90 # # generic login file for a slip line. sliplogin invokes this with # the parameters: # 1 2 3 4 5 6 7-n # slipunit ttyspeed loginname local-addr remote-addr mask opt-args # /sbin/ifconfig sl$1 inet $4 $5 netmask $6 # Answer ARP requests for the SLIP client with our Ethernet addr /usr/sbin/arp -s $5 00:11:22:33:44:55 pub
The additional line in this slip.login, arp -s $5 00:11:22:33:44:55 pub, creates an ARP entry in the SLIP server's ARP table. This ARP entry causes the SLIP server to respond with the SLIP server's Ethernet MAC address whenever another IP node on the Ethernet asks to speak to the SLIP client's IP address.
When using the example above, be sure to replace the Ethernet MAC address (00:11:22:33:44:55) with the MAC address of your system's Ethernet card, or your “proxy ARP” will definitely not work! You can discover your SLIP server's Ethernet MAC address by looking at the results of running netstat -i; the second line of the output should look something like:
ed0 1500 <Link>0.2.c1.28.5f.4a 191923 0 129457 0 116
This indicates that this particular system's Ethernet MAC address is 00:02:c1:28:5f:4a — the periods in the Ethernet MAC address given by netstat -i must be changed to colons and leading zeros should be added to each single-digit hexadecimal number to convert the address into the form that arp(8) desires; see the manual page on arp(8) for complete information on usage.
Note: When you create /etc/sliphome/slip.login and /etc/sliphome/slip.logout, the “execute” bit (i.e., chmod 755 /etc/sliphome/slip.login /etc/sliphome/slip.logout) must be set, or sliplogin will be unable to execute it.
/etc/sliphome/slip.logout is not strictly needed (unless you are implementing “proxy ARP”), but if you decide to create it, this is an example of a basic slip.logout script:
#!/bin/sh - # # slip.logout # # logout file for a slip line. sliplogin invokes this with # the parameters: # 1 2 3 4 5 6 7-n # slipunit ttyspeed loginname local-addr remote-addr mask opt-args # /sbin/ifconfig sl$1 down
If you are using “proxy ARP”, you will want to have /etc/sliphome/slip.logout remove the ARP entry for the SLIP client:
#!/bin/sh - # # @(#)slip.logout # # logout file for a slip line. sliplogin invokes this with # the parameters: # 1 2 3 4 5 6 7-n # slipunit ttyspeed loginname local-addr remote-addr mask opt-args # /sbin/ifconfig sl$1 down # Quit answering ARP requests for the SLIP client /usr/sbin/arp -d $5
The arp -d $5 removes the ARP entry that the “proxy ARP” slip.login added when the SLIP client logged in.
It bears repeating: make sure /etc/sliphome/slip.logout has the execute bit set after you create it (i.e., chmod 755 /etc/sliphome/slip.logout).
If you are not using the “proxy ARP” method for routing packets between your SLIP clients and the rest of your network (and perhaps the Internet), you will probably have to add static routes to your closest default router(s) to route your SLIP clients subnet via your SLIP server.
Adding static routes to your nearest default routers can be troublesome (or impossible if you do not have authority to do so...). If you have a multiple-router network in your organization, some routers, such as those made by Cisco and Proteon, may not only need to be configured with the static route to the SLIP subnet, but also need to be told which static routes to tell other routers about, so some expertise and troubleshooting/tweaking may be necessary to get static-route-based routing to work.
“Electronic Mail”, better known as email, is one of the most widely used forms of communication today. This chapter provides a basic introduction to running a mail server on FreeBSD, as well as an introduction to sending and receiving email using FreeBSD; however, it is not a complete reference and in fact many important considerations are omitted. For more complete coverage of the subject, the reader is referred to the many excellent books listed in Appendix B.
After reading this chapter, you will know:
What software components are involved in sending and receiving electronic mail.
Where basic sendmail configuration files are located in FreeBSD.
The difference between remote and local mailboxes.
How to block spammers from illegally using your mail server as a relay.
How to install and configure an alternate Mail Transfer Agent on your system, replacing sendmail.
How to troubleshoot common mail server problems.
How to use SMTP with UUCP.
How to set up the system to send mail only.
How to use mail with a dialup connection.
How to configure SMTP Authentication for added security.
How to install and use a Mail User Agent, such as mutt to send and receive email.
How to download your mail from a remote POP or IMAP server.
How to automatically apply filters and rules to incoming email.
Before reading this chapter, you should:
Properly set up your network connection (Chapter 32).
Properly set up the DNS information for your mail host (Chapter 30).
Know how to install additional third-party software (Chapter 5).
There are five major parts involved in an email exchange. They are: the user program, the server daemon, DNS, a remote or local mailbox, and of course, the mailhost itself.
This includes command line programs such as mutt, alpine, elm, and mail, and GUI programs such as balsa, xfmail to name a few, and something more “sophisticated” like a WWW browser. These programs simply pass off the email transactions to the local “mailhost”, either by calling one of the server daemons available, or delivering it over TCP.
FreeBSD ships with sendmail by default, but also support numerous other mail server daemons, just some of which include:
exim;
postfix;
qmail.
The server daemon usually has two functions—it is responsible for receiving incoming mail as well as delivering outgoing mail. It is not responsible for the collection of mail using protocols such as POP or IMAP to read your email, nor does it allow connecting to local mbox or Maildir mailboxes. You may require an additional daemon for that.
Warning: Older versions of sendmail have some serious security issues which may result in an attacker gaining local and/or remote access to your machine. Make sure that you are running a current version to avoid these problems. Optionally, install an alternative MTA from the FreeBSD Ports Collection.
The Domain Name System (DNS) and its daemon named play a large role in the delivery of email. In order to deliver mail from your site to another, the server daemon will look up the remote site in the DNS to determine the host that will receive mail for the destination. This process also occurs when mail is sent from a remote host to your mail server.
DNS is responsible for mapping hostnames to IP addresses, as well as for storing information specific to mail delivery, known as MX records. The MX (Mail eXchanger) record specifies which host, or hosts, will receive mail for a particular domain. If you do not have an MX record for your hostname or domain, the mail will be delivered directly to your host provided you have an A record pointing your hostname to your IP address.
You may view the MX records for any domain by using the host(1) command, as seen in the example below:
% host -t mx FreeBSD.org FreeBSD.org mail is handled (pri=10) by mx1.FreeBSD.org
Receiving mail for your domain is done by the mail host. It will collect all mail sent to your domain and store it either in mbox (the default method for storing mail) or Maildir format, depending on your configuration. Once mail has been stored, it may either be read locally using applications such as mail(1) or mutt, or remotely accessed and collected using protocols such as POP or IMAP. This means that should you only wish to read mail locally, you are not required to install a POP or IMAP server.
In order to access mailboxes remotely, you are required to have access to a POP or IMAP server. These protocols allow users to connect to their mailboxes from remote locations with ease. Though both POP and IMAP allow users to remotely access mailboxes, IMAP offers many advantages, some of which are:
IMAP can store messages on a remote server as well as fetch them.
IMAP supports concurrent updates.
IMAP can be extremely useful over low-speed links as it allows users to fetch the structure of messages without downloading them; it can also perform tasks such as searching on the server in order to minimize data transfer between clients and servers.
In order to install a POP or IMAP server, the following steps should be performed:
Choose an IMAP or POP server that best suits your needs. The following POP and IMAP servers are well known and serve as some good examples:
qpopper;
teapop;
imap-uw;
courier-imap;
dovecot;
Install the POP or IMAP daemon of your choosing from the ports collection.
Where required, modify /etc/inetd.conf to load the POP or IMAP server.
Warning: It should be noted that both POP and IMAP transmit information, including username and password credentials in clear-text. This means that if you wish to secure the transmission of information across these protocols, you should consider tunneling sessions over ssh(1) or using SSL. Tunneling sessions is described in Section 15.10.8 and SSL is described in Section 15.8.
Mailboxes may be accessed locally by directly utilizing MUAs on the server on which the mailbox resides. This can be done using applications such as mutt or mail(1).
The mail host is the name given to a server that is responsible for delivering and receiving mail for your host, and possibly your network.
sendmail(8) is the default Mail Transfer Agent (MTA) in FreeBSD. sendmail's job is to accept mail from Mail User Agents (MUA) and deliver it to the appropriate mailer as defined by its configuration file. sendmail can also accept network connections and deliver mail to local mailboxes or deliver it to another program.
sendmail uses the following configuration files:
Filename | Function |
---|---|
/etc/mail/access | sendmail access database file |
/etc/mail/aliases | Mailbox aliases |
/etc/mail/local-host-names | Lists of hosts sendmail accepts mail for |
/etc/mail/mailer.conf | Mailer program configuration |
/etc/mail/mailertable | Mailer delivery table |
/etc/mail/sendmail.cf | sendmail master configuration file |
/etc/mail/virtusertable | Virtual users and domain tables |
The access database defines what host(s) or IP addresses have access to the local mail
server and what kind of access they have. Hosts can be listed as OK
, REJECT
, RELAY
or simply passed to sendmail's
error handling routine with a given mailer error. Hosts that are listed as OK
, which is the default, are allowed to send mail to this host as
long as the mail's final destination is the local machine. Hosts that are listed as REJECT
are rejected for all mail connections. Hosts that have the
RELAY
option for their hostname are allowed to send mail for
any destination through this mail server.
Example 29-1. Configuring the sendmail Access Database
cyberspammer.com 550 We do not accept mail from spammers FREE.STEALTH.MAILER@ 550 We do not accept mail from spammers another.source.of.spam REJECT okay.cyberspammer.com OK 128.32 RELAY
In this example we have five entries. Mail senders that match the left hand side of the table are affected by the action on the right side of the table. The first two examples give an error code to sendmail's error handling routine. The message is printed to the remote host when a mail matches the left hand side of the table. The next entry rejects mail from a specific host on the Internet, another.source.of.spam. The next entry accepts mail connections from a host okay.cyberspammer.com, which is more exact than the cyberspammer.com line above. More specific matches override less exact matches. The last entry allows relaying of electronic mail from hosts with an IP address that begins with 128.32. These hosts would be able to send mail through this mail server that are destined for other mail servers.
When this file is updated, you need to run make in /etc/mail/ to update the database.
The aliases database contains a list of virtual mailboxes that are expanded to other user(s), files, programs or other aliases. Here are a few examples that can be used in /etc/mail/aliases:
Example 29-2. Mail Aliases
root: localuser ftp-bugs: joe,eric,paul bit.bucket: /dev/null procmail: "|/usr/local/bin/procmail"
The file format is simple; the mailbox name on the left side of the colon is
expanded to the target(s) on the right. The first example expands the mailbox
root to the mailbox localuser,
which is then looked up again in the aliases database. If no match is found,
then the message is delivered to the local user localuser. The next example shows a mail list. Mail to the
mailbox ftp-bugs is expanded to the three local mailboxes
joe, eric, and paul. Note that a remote mailbox could be specified as <[email protected]>
. The next example shows writing mail
to a file, in this case /dev/null. The last example shows
sending mail to a program, in this case the mail message is written to the
standard input of /usr/local/bin/procmail through a
UNIX pipe.
When this file is updated, you need to run make in /etc/mail/ to update the database.
This is a list of hostnames sendmail(8) is to accept as the local host name. Place any domains or hosts that sendmail is to be receiving mail for. For example, if this mail server was to accept mail for the domain example.com and the host mail.example.com, its local-host-names might look something like this:
example.com mail.example.com
When this file is updated, sendmail(8) needs to be restarted to read the changes.
sendmail's master configuration file, sendmail.cf controls the overall behavior of sendmail, including everything from rewriting e-mail addresses to printing rejection messages to remote mail servers. Naturally, with such a diverse role, this configuration file is quite complex and its details are a bit out of the scope of this section. Fortunately, this file rarely needs to be changed for standard mail servers.
The master sendmail configuration file can be built from m4(1) macros that define the features and behavior of sendmail. Please see /usr/src/contrib/sendmail/cf/README for some of the details.
When changes to this file are made, sendmail needs to be restarted for the changes to take effect.
The virtusertable maps mail addresses for virtual domains and mailboxes to real mailboxes. These mailboxes can be local, remote, aliases defined in /etc/mail/aliases or files.
Example 29-3. Example Virtual Domain Mail Map
[email protected] root [email protected] [email protected] @example.com joe
In the above example, we have a mapping for a domain example.com. This file is processed in a first match order down the
file. The first item maps <[email protected]>
to the
local mailbox root. The next entry maps <[email protected]>
to the mailbox postmaster on the host noc.example.net.
Finally, if nothing from example.com has matched so far, it will
match the last mapping, which matches every other mail message addressed to someone at
example.com. This will be mapped to the local mailbox joe.
As already mentioned, FreeBSD comes with sendmail already installed as your MTA (Mail Transfer Agent). Therefore by default it is in charge of your outgoing and incoming mail.
However, for a variety of reasons, some system administrators want to change their system's MTA. These reasons range from merely wanting to try out another MTA to needing a specific feature or package which relies on another mailer. Fortunately, whatever the reason, FreeBSD makes it easy to make the change.
You have a wide choice of MTAs available. A good starting point is the FreeBSD Ports Collection where you will be able to find many. Of course you are free to use any MTA you want from any location, as long as you can make it run under FreeBSD.
Start by installing your new MTA. Once it is installed it gives you a chance to decide if it really fulfills your needs, and also gives you the opportunity to configure your new software before getting it to take over from sendmail. When doing this, you should be sure that installing the new software will not attempt to overwrite system binaries such as /usr/bin/sendmail. Otherwise, your new mail software has essentially been put into service before you have configured it.
Please refer to your chosen MTA's documentation for information on how to configure the software you have chosen.
Warning: If you disable sendmail's outgoing mail service, it is important that you replace it with an alternative mail delivery system. If you choose not to, system functions such as periodic(8) will be unable to deliver their results by e-mail as they would normally expect to. Many parts of your system may expect to have a functional sendmail-compatible system. If applications continue to use sendmail's binaries to try to send e-mail after you have disabled them, mail could go into an inactive sendmail queue, and never be delivered.
In order to completely disable sendmail, including the outgoing mail service, you must use
sendmail_enable="NO" sendmail_submit_enable="NO" sendmail_outbound_enable="NO" sendmail_msp_queue_enable="NO"
in /etc/rc.conf.
If you only want to disable sendmail's incoming mail service, you should set
sendmail_enable="NO"
in /etc/rc.conf. More information on sendmail's startup options is available from the rc.sendmail(8) manual page.
The new MTA can be started during boot by adding a configuration line to /etc/rc.conf like the following example for postfix:
# echo 'postfix_enable=“YES”' >> /etc/rc.conf
The MTA will now be automatically started during boot.
The program sendmail is so ubiquitous as standard software on UNIX systems that some software just assumes it is already installed and configured. For this reason, many alternative MTA's provide their own compatible implementations of the sendmail command-line interface; this facilitates using them as “drop-in” replacements for sendmail.
Therefore, if you are using an alternative mailer, you will need to make sure that software trying to execute standard sendmail binaries such as /usr/bin/sendmail actually executes your chosen mailer instead. Fortunately, FreeBSD provides a system called mailwrapper(8) that does this job for you.
When sendmail is operating as installed, you will find something like the following in /etc/mail/mailer.conf:
sendmail /usr/libexec/sendmail/sendmail send-mail /usr/libexec/sendmail/sendmail mailq /usr/libexec/sendmail/sendmail newaliases /usr/libexec/sendmail/sendmail hoststat /usr/libexec/sendmail/sendmail purgestat /usr/libexec/sendmail/sendmail
This means that when any of these common commands (such as sendmail itself) are run, the system actually invokes a copy of mailwrapper named sendmail, which checks mailer.conf and executes /usr/libexec/sendmail/sendmail instead. This system makes it easy to change what binaries are actually executed when these default sendmail functions are invoked.
Therefore if you wanted /usr/local/supermailer/bin/sendmail-compat to be run instead of sendmail, you could change /etc/mail/mailer.conf to read:
sendmail /usr/local/supermailer/bin/sendmail-compat send-mail /usr/local/supermailer/bin/sendmail-compat mailq /usr/local/supermailer/bin/mailq-compat newaliases /usr/local/supermailer/bin/newaliases-compat hoststat /usr/local/supermailer/bin/hoststat-compat purgestat /usr/local/supermailer/bin/purgestat-compat
Once you have everything configured the way you want it, you should either kill the sendmail processes that you no longer need and start the processes belonging to your new software, or simply reboot. Rebooting will also give you the opportunity to ensure that you have correctly configured your system to start your new MTA automatically on boot.
You will probably find that the host is actually in a different domain; for example, if you are in foo.bar.edu and you wish to reach a host called mumble in the bar.edu domain, you will have to refer to it by the fully-qualified domain name, mumble.bar.edu, instead of just mumble.
Traditionally, this was allowed by BSD BIND resolvers. However the current version of BIND that ships with FreeBSD no longer provides default abbreviations for non-fully qualified domain names other than the domain you are in. So an unqualified host mumble must either be found as mumble.foo.bar.edu, or it will be searched for in the root domain.
This is different from the previous behavior, where the search continued across mumble.bar.edu, and mumble.edu. Have a look at RFC 1535 for why this was considered bad practice, or even a security hole.
As a good workaround, you can place the line:
search foo.bar.edu bar.edu
instead of the previous:
domain foo.bar.edu
into your /etc/resolv.conf. However, make sure that the search order does not go beyond the “boundary between local and public administration”, as RFC 1535 calls it.
This is answered in the sendmail FAQ as follows:
I'm getting these error messages: 553 MX list for domain.net points back to relay.domain.net 554 <[email protected]>... Local configuration error How can I solve this problem? You have asked mail to the domain (e.g., domain.net) to be forwarded to a specific host (in this case, relay.domain.net) by using an MX record, but the relay machine does not recognize itself as domain.net. Add domain.net to /etc/mail/local-host-names [known as /etc/sendmail.cw prior to version 8.10] (if you are using FEATURE(use_cw_file)) or add “Cw domain.net” to /etc/mail/sendmail.cf.
The sendmail FAQ can be found at http://www.sendmail.org/faq/ and is recommended reading if you want to do any “tweaking” of your mail setup.
You want to connect a FreeBSD box on a LAN to the Internet. The FreeBSD box will be a mail gateway for the LAN. The PPP connection is non-dedicated.
There are at least two ways to do this. One way is to use UUCP.
Another way is to get a full-time Internet server to provide secondary MX services for your domain. For example, if your company's domain is example.com and your Internet service provider has set example.net up to provide secondary MX services to your domain:
example.com. MX 10 example.com. MX 20 example.net.
Only one host should be specified as the final recipient (add Cw example.com in /etc/mail/sendmail.cf on example.com).
When the sending sendmail is trying to deliver the mail it will try to connect to you (example.com) over the modem link. It will most likely time out because you are not online. The program sendmail will automatically deliver it to the secondary MX site, i.e., your Internet provider (example.net). The secondary MX site will then periodically try to connect to your host and deliver the mail to the primary MX host (example.com).
You might want to use something like this as a login script:
#!/bin/sh # Put me in /usr/local/bin/pppmyisp ( sleep 60 ; /usr/sbin/sendmail -q ) & /usr/sbin/ppp -direct pppmyisp
If you are going to create a separate login script for a user you could use sendmail -qRexample.com instead in the script above. This will force all mail in your queue for example.com to be processed immediately.
A further refinement of the situation is as follows:
Message stolen from the FreeBSD Internet service provider's mailing list.
> we provide the secondary MX for a customer. The customer connects to > our services several times a day automatically to get the mails to > his primary MX (We do not call his site when a mail for his domains > arrived). Our sendmail sends the mailqueue every 30 minutes. At the > moment he has to stay 30 minutes online to be sure that all mail is > gone to the primary MX. > > Is there a command that would initiate sendmail to send all the mails > now? The user has not root-privileges on our machine of course. In the “privacy flags” section of sendmail.cf, there is a definition Opgoaway,restrictqrun Remove restrictqrun to allow non-root users to start the queue processing. You might also like to rearrange the MXs. We are the 1st MX for our customers like this, and we have defined: # If we are the best MX for a host, try directly instead of generating # local config error. OwTrue That way a remote site will deliver straight to you, without trying the customer connection. You then send to your customer. Only works for “hosts”, so you need to get your customer to name their mail machine “customer.com” as well as “hostname.customer.com” in the DNS. Just put an A record in the DNS for “customer.com”.
In default FreeBSD installations, sendmail is configured to only send mail from the host it is running on. For example, if a POP server is available, then users will be able to check mail from school, work, or other remote locations but they still will not be able to send outgoing emails from outside locations. Typically, a few moments after the attempt, an email will be sent from MAILER-DAEMON with a “5.7 Relaying Denied” error message.
There are several ways to get around this. The most straightforward solution is to put your ISP's address in a relay-domains file at /etc/mail/relay-domains. A quick way to do this would be:
# echo "your.isp.example.com" > /etc/mail/relay-domains
After creating or editing this file you must restart sendmail. This works great if you are a server administrator and do not wish to send mail locally, or would like to use a point and click client/system on another machine or even another ISP. It is also very useful if you only have one or two email accounts set up. If there are a large number of addresses to add, open this file in your favorite text editor and then add the domains, one per line:
your.isp.example.com other.isp.example.net users-isp.example.org www.example.org
Now any mail sent through your system, by any host in this list (provided the user has an account on your system), will succeed. This is a very nice way to allow users to send mail from your system remotely without allowing people to send SPAM through your system.
The following section covers more involved topics such as mail configuration and setting up mail for your entire domain.
Out of the box, you should be able to send email to external hosts as long as you have set up /etc/resolv.conf or are running your own name server. If you would like to have mail for your host delivered to the MTA (e.g., sendmail) on your own FreeBSD host, there are two methods:
Run your own name server and have your own domain. For example, FreeBSD.org
Get mail delivered directly to your host. This is done by delivering mail directly to the current DNS name for your machine. For example, example.FreeBSD.org.
Regardless of which of the above you choose, in order to have mail delivered directly to your host, it must have a permanent static IP address (not a dynamic address, as with most PPP dial-up configurations). If you are behind a firewall, it must pass SMTP traffic on to you. If you want to receive mail directly at your host, you need to be sure of either of two things:
Make sure that the (lowest-numbered) MX record in your DNS points to your host's IP address.
Make sure there is no MX entry in your DNS for your host.
Either of the above will allow you to receive mail directly at your host.
Try this:
# hostname example.FreeBSD.org # host example.FreeBSD.org example.FreeBSD.org has address 204.216.27.XX
If that is what you see, mail directly to <[email protected]>
should work without problems
(assuming sendmail is running correctly on example.FreeBSD.org).
If instead you see something like this:
# host example.FreeBSD.org example.FreeBSD.org has address 204.216.27.XX example.FreeBSD.org mail is handled (pri=10) by hub.FreeBSD.org
All mail sent to your host (example.FreeBSD.org) will end up being collected on hub under the same username instead of being sent directly to your host.
The above information is handled by your DNS server. The DNS record that carries mail routing information is the Mail eXchange entry. If no MX record exists, mail will be delivered directly to the host by way of its IP address.
The MX entry for freefall.FreeBSD.org at one time looked like this:
freefall MX 30 mail.crl.net freefall MX 40 agora.rdrop.com freefall MX 10 freefall.FreeBSD.org freefall MX 20 who.cdrom.com
As you can see, freefall had many MX entries. The lowest MX number is the host that receives mail directly if available; if it is not accessible for some reason, the others (sometimes called “backup MXes”) accept messages temporarily, and pass it along when a lower-numbered host becomes available, eventually to the lowest-numbered host.
Alternate MX sites should have separate Internet connections from your own in order to be most useful. Your ISP or another friendly site should have no problem providing this service for you.
In order to set up a “mailhost” (aka mail server) you need to have any mail sent to various workstations directed to it. Basically, you want to “claim” any mail for any hostname in your domain (in this case *.FreeBSD.org) and divert it to your mail server so your users can receive their mail on the master mail server.
To make life easiest, a user account with the same username should exist on both machines. Use adduser(8) to do this.
The mailhost you will be using must be the designated mail exchanger for each workstation on the network. This is done in your DNS configuration like so:
example.FreeBSD.org A 204.216.27.XX ; Workstation MX 10 hub.FreeBSD.org ; Mailhost
This will redirect mail for the workstation to the mailhost no matter where the A record points. The mail is sent to the MX host.
You cannot do this yourself unless you are running a DNS server. If you are not, or cannot run your own DNS server, talk to your ISP or whoever provides your DNS.
If you are doing virtual email hosting, the following information will come in handy. For this example, we will assume you have a customer with his own domain, in this case customer1.org, and you want all the mail for customer1.org sent to your mailhost, mail.myhost.com. The entry in your DNS should look like this:
customer1.org MX 10 mail.myhost.com
You do not need an A record for customer1.org if you only want to handle email for that domain.
Note: Be aware that pinging customer1.org will not work unless an A record exists for it.
The last thing that you must do is tell sendmail on your mailhost what domains and/or hostnames it should be accepting mail for. There are a few different ways this can be done. Either of the following will work:
Add the hosts to your /etc/mail/local-host-names file if you are using the FEATURE(use_cw_file). If you are using a version of sendmail earlier than 8.10, the file is /etc/sendmail.cw.
Add a Cwyour.host.com line to your /etc/sendmail.cf or /etc/mail/sendmail.cf if you are using sendmail 8.10 or higher.
The sendmail configuration that ships with FreeBSD is designed for sites that connect directly to the Internet. Sites that wish to exchange their mail via UUCP must install another sendmail configuration file.
Tweaking /etc/mail/sendmail.cf manually is an advanced topic. sendmail version 8 generates config files via m4(1) preprocessing, where the actual configuration occurs on a higher abstraction level. The m4(1) configuration files can be found under /usr/share/sendmail/cf. The file README in the cf directory can serve as a basic introduction to m4(1) configuration.
The best way to support UUCP delivery is to use the mailertable feature. This creates a database that sendmail can use to make routing decisions.
First, you have to create your .mc file. The directory /usr/share/sendmail/cf/cf contains a few examples. Assuming you have named your file foo.mc, all you need to do in order to convert it into a valid sendmail.cf is:
# cd /etc/mail # make foo.cf # cp foo.cf /etc/mail/sendmail.cf
A typical .mc file might look like:
VERSIONID(`Your version number') OSTYPE(bsd4.4) FEATURE(accept_unresolvable_domains) FEATURE(nocanonify) FEATURE(mailertable, `hash -o /etc/mail/mailertable') define(`UUCP_RELAY', your.uucp.relay) define(`UUCP_MAX_SIZE', 200000) define(`confDONT_PROBE_INTERFACES') MAILER(local) MAILER(smtp) MAILER(uucp) Cw your.alias.host.name Cw youruucpnodename.UUCP
The lines containing accept_unresolvable_domains, nocanonify, and confDONT_PROBE_INTERFACES features will prevent any usage of the DNS during mail delivery. The UUCP_RELAY clause is needed to support UUCP delivery. Simply put an Internet hostname there that is able to handle .UUCP pseudo-domain addresses; most likely, you will enter the mail relay of your ISP there.
Once you have this, you need an /etc/mail/mailertable file. If you have only one link to the outside that is used for all your mails, the following file will suffice:
# # makemap hash /etc/mail/mailertable.db < /etc/mail/mailertable . uucp-dom:your.uucp.relay
A more complex example might look like this:
# # makemap hash /etc/mail/mailertable.db < /etc/mail/mailertable # horus.interface-business.de uucp-dom:horus .interface-business.de uucp-dom:if-bus interface-business.de uucp-dom:if-bus .heep.sax.de smtp8:%1 horus.UUCP uucp-dom:horus if-bus.UUCP uucp-dom:if-bus . uucp-dom:
The first three lines handle special cases where domain-addressed mail should not be sent out to the default route, but instead to some UUCP neighbor in order to “shortcut” the delivery path. The next line handles mail to the local Ethernet domain that can be delivered using SMTP. Finally, the UUCP neighbors are mentioned in the .UUCP pseudo-domain notation, to allow for a uucp-neighbor !recipient override of the default rules. The last line is always a single dot, matching everything else, with UUCP delivery to a UUCP neighbor that serves as your universal mail gateway to the world. All of the node names behind the uucp-dom: keyword must be valid UUCP neighbors, as you can verify using the command uuname.
As a reminder that this file needs to be converted into a DBM database file before use. The command line to accomplish this is best placed as a comment at the top of the mailertable file. You always have to execute this command each time you change your mailertable file.
Final hint: if you are uncertain whether some particular mail routing would work,
remember the -bt
option to sendmail. It starts sendmail in address test mode; enter 3,0, followed by the address you wish to test for the mail routing.
The last line tells you the used internal mail agent, the destination host this agent
will be called with, and the (possibly translated) address. Leave this mode by typing Ctrl+D.
% sendmail -bt ADDRESS TEST MODE (ruleset 3 NOT automatically invoked) Enter <ruleset> <address> > 3,0 [email protected] canonify input: foo @ example . com ... parse returns: $# uucp-dom $@ your.uucp.relay $: foo < @ example . com . > > ^D
There are many instances where you may only want to send mail through a relay. Some examples are:
Your computer is a desktop machine, but you want to use programs such as send-pr(1). To do so, you should use your ISP's mail relay.
The computer is a server that does not handle mail locally, but needs to pass off all mail to a relay for processing.
Just about any MTA is capable of filling this particular niche. Unfortunately, it can be very difficult to properly configure a full-featured MTA just to handle offloading mail. Programs such as sendmail and postfix are largely overkill for this use.
Additionally, if you are using a typical Internet access service, your agreement may forbid you from running a “mail server”.
The easiest way to fulfill those needs is to install the mail/ssmtp port. Execute the following commands as root:
# cd /usr/ports/mail/ssmtp # make install replace clean
Once installed, mail/ssmtp can be configured with a four-line file located at /usr/local/etc/ssmtp/ssmtp.conf:
[email protected] mailhub=mail.example.com rewriteDomain=example.com hostname=_HOSTNAME_
Make sure you use your real email address for root. Enter your ISP's outgoing mail relay in place of mail.example.com (some ISPs call this the “outgoing mail server” or “SMTP server”).
Make sure you disable sendmail, including the outgoing mail service. See Section 29.4.2 for details.
mail/ssmtp has some other options available. See the example configuration file in /usr/local/etc/ssmtp or the manual page of ssmtp for some examples and more information.
Setting up ssmtp in this manner will allow any software on your computer that needs to send mail to function properly, while not violating your ISP's usage policy or allowing your computer to be hijacked for spamming.
If you have a static IP address, you should not need to adjust anything from the defaults. Set your host name to your assigned Internet name and sendmail will do the rest.
If you have a dynamically assigned IP number and use a dialup PPP connection to the Internet, you will probably have a mailbox on your ISPs mail server. Let's assume your ISP's domain is example.net, and that your user name is user, you have called your machine bsd.home, and your ISP has told you that you may use relay.example.net as a mail relay.
In order to retrieve mail from your mailbox, you must install a retrieval agent. The fetchmail utility is a good choice as it supports many different protocols. This program is available as a package or from the Ports Collection (mail/fetchmail). Usually, your ISP will provide POP. If you are using user PPP, you can automatically fetch your mail when an Internet connection is established with the following entry in /etc/ppp/ppp.linkup:
MYADDR: !bg su user -c fetchmail
If you are using sendmail (as shown below) to deliver mail to non-local accounts, you probably want to have sendmail process your mailqueue as soon as your Internet connection is established. To do this, put this command after the fetchmail command in /etc/ppp/ppp.linkup:
!bg su user -c "sendmail -q"
Assume that you have an account for user on bsd.home. In the home directory of user on bsd.home, create a .fetchmailrc file:
poll example.net protocol pop3 fetchall pass MySecret
This file should not be readable by anyone except user as it contains the password MySecret.
In order to send mail with the correct from: header, you must
tell sendmail to use <[email protected]>
rather than <[email protected]>
. You may also wish to tell sendmail to send all mail via relay.example.net, allowing quicker mail transmission.
The following .mc file should suffice:
VERSIONID(`bsd.home.mc version 1.0') OSTYPE(bsd4.4)dnl FEATURE(nouucp)dnl MAILER(local)dnl MAILER(smtp)dnl Cwlocalhost Cwbsd.home MASQUERADE_AS(`example.net')dnl FEATURE(allmasquerade)dnl FEATURE(masquerade_envelope)dnl FEATURE(nocanonify)dnl FEATURE(nodns)dnl define(`SMART_HOST', `relay.example.net') Dmbsd.home define(`confDOMAIN_NAME',`bsd.home')dnl define(`confDELIVERY_MODE',`deferred')dnl
Refer to the previous section for details of how to turn this .mc file into a sendmail.cf file. Also, do not forget to restart sendmail after updating sendmail.cf.
Having SMTP Authentication in place on your mail server has a number of benefits. SMTP Authentication can add another layer of security to sendmail, and has the benefit of giving mobile users who switch hosts the ability to use the same mail server without the need to reconfigure their mail client settings each time.
Install security/cyrus-sasl2 from the ports. You can find this
port in security/cyrus-sasl2. The security/cyrus-sasl2 port supports a number of
compile-time options. For the SMTP Authentication method we will be using here,
make sure that the LOGIN
option is not disabled.
After installing security/cyrus-sasl2, edit /usr/local/lib/sasl2/Sendmail.conf (or create it if it does not exist) and add the following line:
pwcheck_method: saslauthd
Next, install security/cyrus-sasl2-saslauthd, edit /etc/rc.conf to add the following line:
saslauthd_enable="YES"
and finally start the saslauthd daemon:
# /usr/local/etc/rc.d/saslauthd start
This daemon serves as a broker for sendmail to authenticate against your FreeBSD passwd database. This saves the trouble of creating a new set of usernames and passwords for each user that needs to use SMTP authentication, and keeps the login and mail password the same.
Now edit /etc/make.conf and add the following lines:
SENDMAIL_CFLAGS=-I/usr/local/include/sasl -DSASL SENDMAIL_LDFLAGS=-L/usr/local/lib SENDMAIL_LDADD=-lsasl2
These lines will give sendmail the proper configuration options for linking to cyrus-sasl2 at compile time. Make sure that cyrus-sasl2 has been installed before recompiling sendmail.
Recompile sendmail by executing the following commands:
# cd /usr/src/lib/libsmutil # make cleandir && make obj && make # cd /usr/src/lib/libsm # make cleandir && make obj && make # cd /usr/src/usr.sbin/sendmail # make cleandir && make obj && make && make install
The compile of sendmail should not have any problems if /usr/src has not been changed extensively and the shared libraries it needs are available.
After sendmail has been compiled and reinstalled, edit your /etc/mail/freebsd.mc file (or whichever file you use as your .mc file. Many administrators choose to use the output from hostname(1) as the .mc file for uniqueness). Add these lines to it:
dnl set SASL options TRUST_AUTH_MECH(`GSSAPI DIGEST-MD5 CRAM-MD5 LOGIN')dnl define(`confAUTH_MECHANISMS', `GSSAPI DIGEST-MD5 CRAM-MD5 LOGIN')dnl
These options configure the different methods available to sendmail for authenticating users. If you would like to use a method other than pwcheck, please see the included documentation.
Finally, run make(1) while in /etc/mail. That will run your new .mc file and create a .cf file named freebsd.cf (or whatever name you have used for your .mc file). Then use the command make install restart, which will copy the file to sendmail.cf, and will properly restart sendmail. For more information about this process, you should refer to /etc/mail/Makefile.
If all has gone correctly, you should be able to enter your login information into the
mail client and send a test message. For further investigation, set the LogLevel
of sendmail to 13 and watch /var/log/maillog for any errors.
For more information, please see the sendmail page regarding SMTP authentication.
A Mail User Agent (MUA) is an application that is used to send and receive email. Furthermore, as email “evolves” and becomes more complex, MUA's are becoming increasingly powerful in the way they interact with email; this gives users increased functionality and flexibility. FreeBSD contains support for numerous mail user agents, all of which can be easily installed using the FreeBSD Ports Collection. Users may choose between graphical email clients such as evolution or balsa, console based clients such as mutt, alpine or mail, or the web interfaces used by some large organizations.
mail(1) is the default Mail User Agent (MUA) in FreeBSD. It is a console based MUA that offers all the basic functionality required to send and receive text-based email, though it is limited in interaction abilities with attachments and can only support local mailboxes.
Although mail does not natively support interaction with POP or IMAP servers, these mailboxes may be downloaded to a local mbox file using an application such as fetchmail, which will be discussed later in this chapter (Section 29.12).
In order to send and receive email, run mail:
The contents of the user mailbox in /var/mail are automatically read by the mail utility. Should the mailbox be empty, the utility exits with a message indicating that no mails could be found. Once the mailbox has been read, the application interface is started, and a list of messages will be displayed. Messages are automatically numbered, as can be seen in the following example:
Mail version 8.1 6/6/93. Type ? for help. "/var/mail/marcs": 3 messages 3 new >N 1 root@localhost Mon Mar 8 14:05 14/510 "test" N 2 root@localhost Mon Mar 8 14:05 14/509 "user account" N 3 root@localhost Mon Mar 8 14:05 14/509 "sample"
Messages can now be read by using the t mail command, suffixed by the message number that should be displayed. In this example, we will read the first email:
& t 1 Message 1: From root@localhost Mon Mar 8 14:05:52 2004 X-Original-To: marcs@localhost Delivered-To: marcs@localhost To: marcs@localhost Subject: test Date: Mon, 8 Mar 2004 14:05:52 +0200 (SAST) From: root@localhost (Charlie Root) This is a test message, please reply if you receive it.
As can be seen in the example above, the t key will cause the message to be displayed with full headers. To display the list of messages again, the h key should be used.
If the email requires a response, you may use mail to reply, by using either the R or r mail keys. The R key instructs mail to reply only to the sender of the email, while r replies not only to the sender, but also to other recipients of the message. You may also suffix these commands with the mail number which you would like make a reply to. Once this has been done, the response should be entered, and the end of the message should be marked by a single . on a new line. An example can be seen below:
& R 1 To: root@localhost Subject: Re: test Thank you, I did get your email. . EOT
In order to send new email, the m key should be used, followed by the recipient email address. Multiple recipients may also be specified by separating each address with the , delimiter. The subject of the message may then be entered, followed by the message contents. The end of the message should be specified by putting a single . on a new line.
& mail root@localhost Subject: I mastered mail Now I can send and receive email using mail ... :) . EOT
While inside the mail utility, the ? command may be used to display help at any time, the mail(1) manual page should also be consulted for more help with mail.
Note: As previously mentioned, the mail(1) command was not originally designed to handle attachments, and thus deals with them very poorly. Newer MUAs such as mutt handle attachments in a much more intelligent way. But should you still wish to use the mail command, the converters/mpack port may be of considerable use.
mutt is a small yet very powerful Mail User Agent, with excellent features, just some of which include:
The ability to thread messages;
PGP support for digital signing and encryption of email;
MIME Support;
Maildir Support;
Highly customizable.
All of these features help to make mutt one of the most advanced mail user agents available. See http://www.mutt.org for more information on mutt.
The stable version of mutt may be installed using the mail/mutt port, while the current development version may be installed via the mail/mutt-devel port. After the port has been installed, mutt can be started by issuing the following command:
% mutt
mutt will automatically read the contents of the user mailbox in /var/mail and display the contents if applicable. If no mails are found in the user mailbox, then mutt will wait for commands from the user. The example below shows mutt displaying a list of messages:
In order to read an email, select it using the cursor keys and press the Enter key. An example of mutt displaying email can be seen below:
As with the mail(1) command, mutt allows users to reply only to the sender of the message as well as to all recipients. To reply only to the sender of the email, use the r keyboard shortcut. To send a group reply, which will be sent to the original sender as well as all the message recipients, use the g shortcut.
Note: mutt makes use of the vi(1) command as an editor for creating and replying to emails. This may be customized by the user by creating or editing their own .muttrc file in their home directory and setting the editor variable or by setting the EDITOR environment variable. See http://www.mutt.org/ for more information about configuring mutt.
In order to compose a new mail message, press m. After a valid subject has been given, mutt will start vi(1) and the mail can be written. Once the contents of the mail are complete, save and quit from vi and mutt will resume, displaying a summary screen of the mail that is to be delivered. In order to send the mail, press y. An example of the summary screen can be seen below:
mutt also contains extensive help, which can be accessed from most of the menus by pressing the ? key. The top line also displays the keyboard shortcuts where appropriate.
alpine is aimed at a beginner user, but also includes some advanced features.
Warning: The alpine software has had several remote vulnerabilities discovered in the past, which allowed remote attackers to execute arbitrary code as users on the local system, by the action of sending a specially-prepared email. All such known problems have been fixed, but the alpine code is written in a very insecure style and the FreeBSD Security Officer believes there are likely to be other undiscovered vulnerabilities. You install alpine at your own risk.
The current version of alpine may be installed using the mail/alpine port. Once the port has installed, alpine can be started by issuing the following command:
% alpine
The first time that alpine is run it displays a greeting page with a brief introduction, as well as a request from the alpine development team to send an anonymous email message allowing them to judge how many users are using their client. To send this anonymous message, press Enter, or alternatively press E to exit the greeting without sending an anonymous message. An example of the greeting page can be seen below:
Users are then presented with the main menu, which can be easily navigated using the cursor keys. This main menu provides shortcuts for the composing new mails, browsing of mail directories, and even the administration of address book entries. Below the main menu, relevant keyboard shortcuts to perform functions specific to the task at hand are shown.
The default directory opened by alpine is the inbox. To view the message index, press I, or select the
option as seen below:The message index shows messages in the current directory, and can be navigated by using the cursor keys. Highlighted messages can be read by pressing the Enter key.
In the screenshot below, a sample message is displayed by alpine. Keyboard shortcuts are displayed as a reference at the bottom of the screen. An example of one of these shortcuts is the r key, which tells the MUA to reply to the current message being displayed.
Replying to an email in alpine is done using the pico editor, which is installed by default with alpine. The pico utility makes it easy to navigate around the message and is slightly more forgiving on novice users than vi(1) or mail(1). Once the reply is complete, the message can be sent by pressing Ctrl+X. The alpine application will ask for confirmation.
The alpine application can be customized using the http://www.washington.edu/alpine/ for more information.
option from the main menu. Consultfetchmail is a full-featured IMAP and POP client which allows users to automatically download mail from remote IMAP and POP servers and save it into local mailboxes; there it can be accessed more easily. fetchmail can be installed using the mail/fetchmail port, and offers various features, some of which include:
Support of POP3, APOP, KPOP, IMAP, ETRN and ODMR protocols.
Ability to forward mail using SMTP, which allows filtering, forwarding, and aliasing to function normally.
May be run in daemon mode to check periodically for new messages.
Can retrieve multiple mailboxes and forward them based on configuration, to different local users.
While it is outside the scope of this document to explain all of fetchmail's features, some basic features will be explained. The fetchmail utility requires a configuration file known as .fetchmailrc, in order to run correctly. This file includes server information as well as login credentials. Due to the sensitive nature of the contents of this file, it is advisable to make it readable only by the owner, with the following command:
% chmod 600 .fetchmailrc
The following .fetchmailrc serves as an example for downloading a single user mailbox using POP. It tells fetchmail to connect to example.com using a username of joesoap and a password of XXX. This example assumes that the user joesoap is also a user on the local system.
poll example.com protocol pop3 username "joesoap" password "XXX"
The next example connects to multiple POP and IMAP servers and redirects to different local usernames where applicable:
poll example.com proto pop3: user "joesoap", with password "XXX", is "jsoap" here; user "andrea", with password "XXXX"; poll example2.net proto imap: user "john", with password "XXXXX", is "myth" here;
The fetchmail utility can be run in daemon mode by running
it with the -d
flag, followed by the interval (in seconds)
that fetchmail should poll servers listed in the .fetchmailrc file. The following example would cause fetchmail to poll every 600 seconds:
% fetchmail -d 600
More information on fetchmail can be found at http://fetchmail.berlios.de/.
The procmail utility is an incredibly powerful application used to filter incoming mail. It allows users to define “rules” which can be matched to incoming mails to perform specific functions or to reroute mail to alternative mailboxes and/or email addresses. procmail can be installed using the mail/procmail port. Once installed, it can be directly integrated into most MTAs; consult your MTA documentation for more information. Alternatively, procmail can be integrated by adding the following line to a .forward in the home directory of the user utilizing procmail features:
"|exec /usr/local/bin/procmail || exit 75"
The following section will display some basic procmail rules, as well as brief descriptions on what they do. These rules, and others must be inserted into a .procmailrc file, which must reside in the user's home directory.
The majority of these rules can also be found in the procmailex(5) manual page.
Forward all mail from <[email protected]>
to an
external address of <[email protected]>
:
:0 * ^From.*[email protected] ! [email protected]
Forward all mails shorter than 1000 bytes to an external address of <[email protected]>
:
:0 * < 1000 ! [email protected]
Send all mail sent to <[email protected]>
into
a mailbox called alternate:
:0 * ^[email protected] alternate
Send all mail with a subject of “Spam” to /dev/null:
:0 ^Subject:.*Spam /dev/null
A useful recipe that parses incoming FreeBSD.org mailing lists and places each list in its own mailbox:
:0 * ^Sender:.owner-freebsd-\/[^@][email protected] { LISTNAME=${MATCH} :0 * LISTNAME??^\/[^@]+ FreeBSD-${MATCH} }
This chapter will cover some of the more frequently used network services on UNIX systems. We will cover how to install, configure, test, and maintain many different types of network services. Example configuration files are included throughout this chapter for you to benefit from.
After reading this chapter, you will know:
How to manage the inetd daemon.
How to set up a network file system.
How to set up a network information server for sharing user accounts.
How to set up automatic network settings using DHCP.
How to set up a domain name server.
How to set up the Apache HTTP Server.
How to set up a File Transfer Protocol (FTP) Server.
How to set up a file and print server for Windows clients using Samba.
How to synchronize the time and date, and set up a time server, with the NTP protocol.
How to configure the standard logging daemon, syslogd, to accept logs from remote hosts.
Before reading this chapter, you should:
Understand the basics of the /etc/rc scripts.
Be familiar with basic network terminology.
Know how to install additional third-party software (Chapter 5).
inetd(8) is sometimes referred to as the “Internet Super-Server” because it manages connections for several services. When a connection is received by inetd, it determines which program the connection is destined for, spawns the particular process and delegates the socket to it (the program is invoked with the service socket as its standard input, output and error descriptors). Running inetd for servers that are not heavily used can reduce the overall system load, when compared to running each daemon individually in stand-alone mode.
Primarily, inetd is used to spawn other daemons, but several trivial protocols are handled directly, such as chargen, auth, and daytime.
This section will cover the basics in configuring inetd through its command-line options and its configuration file, /etc/inetd.conf.
inetd is initialized through the rc(8) system. The inetd_enable option is set to NO by default, but may be turned on by sysinstall during installation, depending on the configuration chosen by the user. Placing:
inetd_enable="YES"
or
inetd_enable="NO"
into /etc/rc.conf will enable or disable inetd starting at boot time. The command:
# /etc/rc.d/inetd rcvar
can be run to display the current effective setting.
Additionally, different command-line options can be passed to inetd via the inetd_flags option.
Like most server daemons, inetd has a number of options that it can be passed in order to modify its behaviour. See the inetd(8) manual page for the full list of options.
Options can be passed to inetd using the inetd_flags option in /etc/rc.conf. By default, inetd_flags is set to -wW -C 60, which turns on TCP wrapping for inetd's services, and prevents any single IP address from requesting any service more than 60 times in any given minute.
Although we mention rate-limiting options below, novice users may be pleased to note that these parameters usually do not need to be modified. These options may be useful should you find that you are receiving an excessive amount of connections. A full list of options can be found in the inetd(8) manual.
Specify the default maximum number of simultaneous invocations of each service;
the default is unlimited. May be overridden on a per-service basis with the
max-child
parameter.
Specify the default maximum number of times a service can be invoked from a
single IP address in one minute; the default is unlimited. May be overridden on
a per-service basis with the max-connections-per-ip-per-minute
parameter.
Specify the maximum number of times a service can be invoked in one minute; the default is 256. A rate of 0 allows an unlimited number of invocations.
Specify the maximum number of times a service can be invoked from a single IP
address at any one time; the default is unlimited. May be overridden on a
per-service basis with the max-child-per-ip
parameter.
Configuration of inetd is done via the file /etc/inetd.conf.
When a modification is made to /etc/inetd.conf, inetd can be forced to re-read its configuration file by running the command:
Each line of the configuration file specifies an individual daemon. Comments in the file are preceded by a “#”. The format of each entry in /etc/inetd.conf is as follows:
service-name socket-type protocol {wait|nowait}[/max-child[/max-connections-per-ip-per-minute[/max-child-per-ip]]] user[:group][/login-class] server-program server-program-arguments
An example entry for the ftpd(8) daemon using IPv4 might read:
ftp stream tcp nowait root /usr/libexec/ftpd ftpd -l
This is the service name of the particular daemon. It must correspond to a service listed in /etc/services. This determines which port inetd must listen to. If a new service is being created, it must be placed in /etc/services first.
Either stream, dgram, raw, or seqpacket. stream must be used for connection-based, TCP daemons, while dgram is used for daemons utilizing the UDP transport protocol.
One of the following:
wait|nowait
indicates whether the daemon invoked
from inetd is able to handle its own socket or not.
dgram
socket types must use the wait
option, while stream socket daemons, which are usually
multi-threaded, should use nowait
. wait
usually hands off multiple sockets to a single daemon,
while nowait
spawns a child daemon for each new
socket.
The maximum number of child daemons inetd may spawn
can be set using the max-child
option. If a limit
of ten instances of a particular daemon is needed, a /10
would be placed after nowait
. Specifying /0 allows an unlimited number of children
In addition to max-child
, two other options which
limit the maximum connections from a single place to a particular daemon can be
enabled. max-connections-per-ip-per-minute
limits
the number of connections from any particular IP address per minutes, e.g., a value
of ten would limit any particular IP address connecting to a particular
service to ten attempts per minute. max-child-per-ip
limits the number of children that can be started on behalf on any single IP
address at any moment. These options are useful to prevent intentional or
unintentional excessive resource consumption and Denial of Service (DoS) attacks to
a machine.
In this field, either of wait
or nowait
is mandatory. max-child
,
max-connections-per-ip-per-minute
and max-child-per-ip
are optional.
A stream-type multi-threaded daemon without any max-child
, max-connections-per-ip-per-minute
or max-child-per-ip
limits would simply be: nowait.
The same daemon with a maximum limit of ten daemons would read: nowait/10.
The same setup with a limit of twenty connections per IP address per minute and a maximum total limit of ten child daemons would read: nowait/10/20.
These options are utilized by the default settings of the fingerd(8) daemon, as seen here:
finger stream tcp nowait/3/10 nobody /usr/libexec/fingerd fingerd -s
Finally, an example of this field with a maximum of 100 children in total, with a maximum of 5 for any one IP address would read: nowait/100/0/5.
This is the username that the particular daemon should run as. Most commonly, daemons run as the root user. For security purposes, it is common to find some servers running as the daemon user, or the least privileged nobody user.
The full path of the daemon to be executed when a connection is received. If the
daemon is a service provided by inetd internally,
then internal
should be used.
This works in conjunction with server-program
by
specifying the arguments, starting with argv[0],
passed to the daemon on invocation. If mydaemon -d is the
command line, mydaemon -d would be the value of
server-program-arguments
. Again, if the daemon is an
internal service, use internal
here.
Depending on the choices made at install time, many of inetd's services may be enabled by default. If there is no apparent need for a particular daemon, consider disabling it. Place a “#” in front of the daemon in question in /etc/inetd.conf, and then reload the inetd configuration. Some daemons, such as fingerd, may not be desired at all because they provide information that may be useful to an attacker.
Some daemons are not security-conscious and have long, or non-existent, timeouts
for connection attempts. This allows an attacker to slowly send connections to a
particular daemon, thus saturating available resources. It may be a good idea to
place max-connections-per-ip-per-minute
, max-child
or max-child-per-ip
limitations on certain daemons if you find that you have too many connections.
By default, TCP wrapping is turned on. Consult the hosts_access(5) manual page for more information on placing TCP restrictions on various inetd invoked daemons.
daytime, time, echo, discard, chargen, and auth are all internally provided services of inetd.
The auth service provides identity network services, and is configurable to a certain degree, whilst the others are simply on or off.
Consult the inetd(8) manual page for more in-depth information.
Among the many different file systems that FreeBSD supports is the Network File System, also known as NFS. NFS allows a system to share directories and files with others over a network. By using NFS, users and programs can access files on remote systems almost as if they were local files.
Some of the most notable benefits that NFS can provide are:
Local workstations use less disk space because commonly used data can be stored on a single machine and still remain accessible to others over the network.
There is no need for users to have separate home directories on every network machine. Home directories could be set up on the NFS server and made available throughout the network.
Storage devices such as floppy disks, CDROM drives, and Zip® drives can be used by other machines on the network. This may reduce the number of removable media drives throughout the network.
NFS consists of at least two main parts: a server and one or more clients. The client remotely accesses the data that is stored on the server machine. In order for this to function properly a few processes have to be configured and running.
The server has to be running the following daemons:
Daemon | Description |
---|---|
nfsd | The NFS daemon which services requests from the NFS clients. |
mountd | The NFS mount daemon which carries out the requests that nfsd(8) passes on to it. |
rpcbind | This daemon allows NFS clients to discover which port the NFS server is using. |
The client can also run a daemon, known as nfsiod. The nfsiod daemon services the requests from the NFS server. This is optional, and improves performance, but is not required for normal and correct operation. See the nfsiod(8) manual page for more information.
NFS configuration is a relatively straightforward process. The processes that need to be running can all start at boot time with a few modifications to your /etc/rc.conf file.
On the NFS server, make sure that the following options are configured in the /etc/rc.conf file:
rpcbind_enable="YES" nfs_server_enable="YES" mountd_flags="-r"
mountd runs automatically whenever the NFS server is enabled.
On the client, make sure this option is present in /etc/rc.conf:
nfs_client_enable="YES"
The /etc/exports file specifies which file systems NFS should export (sometimes referred to as “share”). Each line in /etc/exports specifies a file system to be exported and which machines have access to that file system. Along with what machines have access to that file system, access options may also be specified. There are many such options that can be used in this file but only a few will be mentioned here. You can easily discover other options by reading over the exports(5) manual page.
Here are a few example /etc/exports entries:
The following examples give an idea of how to export file systems, although the
settings may be different depending on your environment and network configuration.
For instance, to export the /cdrom directory to three
example machines that have the same domain name as the server (hence the lack
of a domain name for each) or have entries in your /etc/hosts file. The -ro
flag
makes the exported file system read-only. With this flag, the remote system will not
be able to write any changes to the exported file system.
/cdrom -ro host1 host2 host3
The following line exports /home to three hosts by IP
address. This is a useful setup if you have a private network without a DNS server configured. Optionally the /etc/hosts file could be configured for internal hostnames;
please review hosts(5) for more
information. The -alldirs
flag allows the subdirectories
to be mount points. In other words, it will not mount the subdirectories but
permit the client to mount only the directories that are required or needed.
/home -alldirs 10.0.0.2 10.0.0.3 10.0.0.4
The following line exports /a so that two clients from
different domains may access the file system. The -maproot=root
flag allows the root
user on the remote system to write data on the exported file system as root. If the -maproot=root flag is
not specified, then even if a user has root access on
the remote system, he will not be able to modify files on the exported file
system.
/a -maproot=root host.example.com box.example.org
In order for a client to access an exported file system, the client must have permission to do so. Make sure the client is listed in your /etc/exports file.
In /etc/exports, each line represents the export information for one file system to one host. A remote host can only be specified once per file system, and may only have one default entry. For example, assume that /usr is a single file system. The following /etc/exports would be invalid:
# Invalid when /usr is one file system /usr/src client /usr/ports client
One file system, /usr, has two lines specifying exports to the same host, client. The correct format for this situation is:
/usr/src /usr/ports client
The properties of one file system exported to a given host must all occur on one line. Lines without a client specified are treated as a single host. This limits how you can export file systems, but for most people this is not an issue.
The following is an example of a valid export list, where /usr and /exports are local file systems:
# Export src and ports to client01 and client02, but only # client01 has root privileges on it /usr/src /usr/ports -maproot=root client01 /usr/src /usr/ports client02 # The client machines have root and can mount anywhere # on /exports. Anyone in the world can mount /exports/obj read-only /exports -alldirs -maproot=root client01 client02 /exports/obj -ro
The mountd daemon must be forced to recheck the /etc/exports file whenever it has been modified, so the changes can take effect. This can be accomplished either by sending a HUP signal to the running daemon:
# kill -HUP `cat /var/run/mountd.pid`
or by invoking the mountd rc(8) script with the appropriate parameter:
# /etc/rc.d/mountd onereload
Please refer to Section 12.7 for more information about using rc scripts.
Alternatively, a reboot will make FreeBSD set everything up properly. A reboot is not necessary though. Executing the following commands as root should start everything up.
On the NFS server:
# rpcbind # nfsd -u -t -n 4 # mountd -r
On the NFS client:
# nfsiod -n 4
Now everything should be ready to actually mount a remote file system. In these examples the server's name will be server and the client's name will be client. If you only want to temporarily mount a remote file system or would rather test the configuration, just execute a command like this as root on the client:
# mount server:/home /mnt
This will mount the /home directory on the server at /mnt on the client. If everything is set up correctly you should be able to enter /mnt on the client and see all the files that are on the server.
If you want to automatically mount a remote file system each time the computer boots, add the file system to the /etc/fstab file. Here is an example:
server:/home /mnt nfs rw 0 0
The fstab(5) manual page lists all the available options.
Some applications (e.g., mutt) require file locking to operate correctly. In the case of NFS, rpc.lockd can be used for file locking. To enable it, add the following to the /etc/rc.conf file on both client and server (it is assumed that the NFS client and server are configured already):
rpc_lockd_enable="YES" rpc_statd_enable="YES"
Start the application by using:
# /etc/rc.d/lockd start # /etc/rc.d/statd start
If real locking between the NFS clients
and NFS server is not required, it is
possible to let the NFS client do
locking locally by passing -L
to mount_nfs(8).
Refer to the mount_nfs(8) manual
page for further details.
NFS has many practical uses. Some of the more common ones are listed below:
Set several machines to share a CDROM or other media among them. This is cheaper and often a more convenient method to install software on multiple machines.
On large networks, it might be more convenient to configure a central NFS server in which to store all the user home directories. These home directories can then be exported to the network so that users would always have the same home directory, regardless of which workstation they log in to.
Several machines could have a common /usr/ports/distfiles directory. That way, when you need to install a port on several machines, you can quickly access the source without downloading it on each machine.
amd(8) (the automatic mounter daemon) automatically mounts a remote file system whenever a file or directory within that file system is accessed. Filesystems that are inactive for a period of time will also be automatically unmounted by amd. Using amd provides a simple alternative to permanent mounts, as permanent mounts are usually listed in /etc/fstab.
amd operates by attaching itself as an NFS server to the /host and /net directories. When a file is accessed within one of these directories, amd looks up the corresponding remote mount and automatically mounts it. /net is used to mount an exported file system from an IP address, while /host is used to mount an export from a remote hostname.
An access to a file within /host/foobar/usr would tell amd to attempt to mount the /usr export on the host foobar.
Example 30-2. Mounting an Export with amd
You can view the available mounts of a remote host with the showmount command. For example, to view the mounts of a host named foobar, you can use:
% showmount -e foobar Exports list on foobar: /usr 10.10.10.0 /a 10.10.10.0 % cd /host/foobar/usr
As seen in the example, the showmount shows /usr as an export. When changing directories to /host/foobar/usr, amd attempts to resolve the hostname foobar and automatically mount the desired export.
amd can be started by the startup scripts by placing the following lines in /etc/rc.conf:
amd_enable="YES"
Additionally, custom flags can be passed to amd from
the amd_flags
option. By default, amd_flags
is set to:
amd_flags="-a /.amd_mnt -l syslog /host /etc/amd.map /net /etc/amd.map"
The /etc/amd.map file defines the default options that exports are mounted with. The /etc/amd.conf file defines some of the more advanced features of amd.
Consult the amd(8) and amd.conf(5) manual pages for more information.
Certain Ethernet adapters for ISA PC systems have limitations which can lead to serious network problems, particularly with NFS. This difficulty is not specific to FreeBSD, but FreeBSD systems are affected by it.
The problem nearly always occurs when (FreeBSD) PC systems are networked with high-performance workstations, such as those made by Silicon Graphics, Inc., and Sun Microsystems, Inc. The NFS mount will work fine, and some operations may succeed, but suddenly the server will seem to become unresponsive to the client, even though requests to and from other systems continue to be processed. This happens to the client system, whether the client is the FreeBSD system or the workstation. On many systems, there is no way to shut down the client gracefully once this problem has manifested itself. The only solution is often to reset the client, because the NFS situation cannot be resolved.
Though the “correct” solution is to get a higher performance and
capacity Ethernet adapter for the FreeBSD system, there is a simple workaround that
will allow satisfactory operation. If the FreeBSD system is the server, include the option -w=1024
on the mount from the client. If the FreeBSD system is
the client, then mount the NFS
file system with the option -r=1024
. These options may
be specified using the fourth field of the fstab entry on
the client for automatic mounts, or by using the -o
parameter of the mount(8) command for
manual mounts.
It should be noted that there is a different problem, sometimes mistaken for this one, when the NFS servers and clients are on different networks. If that is the case, make certain that your routers are routing the necessary UDP information, or you will not get anywhere, no matter what else you are doing.
In the following examples, fastws is the host (interface)
name of a high-performance workstation, and freebox is the
host (interface) name of a FreeBSD system with a lower-performance Ethernet adapter.
Also, /sharedfs will be the exported NFS file system
(see exports(5)), and
/project will be the mount point on the client for
the exported file system. In all cases, note that additional options, such as hard
or soft
and bg
may be desirable in your application.
Examples for the FreeBSD system (freebox) as the client in /etc/fstab on freebox:
fastws:/sharedfs /project nfs rw,-r=1024 0 0
As a manual mount command on freebox:
# mount -t nfs -o -r=1024 fastws:/sharedfs /project
Examples for the FreeBSD system as the server in /etc/fstab on fastws:
freebox:/sharedfs /project nfs rw,-w=1024 0 0
As a manual mount command on fastws:
# mount -t nfs -o -w=1024 freebox:/sharedfs /project
Nearly any 16-bit Ethernet adapter will allow operation without the above restrictions on the read or write size.
For anyone who cares, here is what happens when the failure occurs, which also explains why it is unrecoverable. NFS typically works with a “block” size of 8 K (though it may do fragments of smaller sizes). Since the maximum Ethernet packet is around 1500 bytes, the NFS “block” gets split into multiple Ethernet packets, even though it is still a single unit to the upper-level code, and must be received, assembled, and acknowledged as a unit. The high-performance workstations can pump out the packets which comprise the NFS unit one right after the other, just as close together as the standard allows. On the smaller, lower capacity cards, the later packets overrun the earlier packets of the same unit before they can be transferred to the host and the unit as a whole cannot be reconstructed or acknowledged. As a result, the workstation will time out and try again, but it will try again with the entire 8 K unit, and the process will be repeated, ad infinitum.
By keeping the unit size below the Ethernet packet size limitation, we ensure that any complete Ethernet packet received can be acknowledged individually, avoiding the deadlock situation.
Overruns may still occur when a high-performance workstations is slamming data out to a PC system, but with the better cards, such overruns are not guaranteed on NFS “units”. When an overrun occurs, the units affected will be retransmitted, and there will be a fair chance that they will be received, assembled, and acknowledged.
NIS, which stands for Network Information Services, was developed by Sun Microsystems to centralize administration of UNIX (originally SunOS) systems. It has now essentially become an industry standard; all major UNIX like systems (Solaris, HP-UX, AIX®, Linux, NetBSD, OpenBSD, FreeBSD, etc) support NIS.
NIS was formerly known as Yellow Pages, but because of trademark issues, Sun changed the name. The old term (and yp) is still often seen and used.
It is a RPC-based client/server system that allows a group of machines within an NIS domain to share a common set of configuration files. This permits a system administrator to set up NIS client systems with only minimal configuration data and add, remove or modify configuration data from a single location.
It is similar to the Windows NT® domain system; although the internal implementation of the two are not at all similar, the basic functionality can be compared.
There are several terms and several important user processes that you will come across when attempting to implement NIS on FreeBSD, whether you are trying to create an NIS server or act as an NIS client:
Term | Description |
---|---|
NIS domainname | An NIS master server and all of its clients (including its slave servers) have a NIS domainname. Similar to an Windows NT domain name, the NIS domainname does not have anything to do with DNS. |
rpcbind | Must be running in order to enable RPC (Remote Procedure Call, a network protocol used by NIS). If rpcbind is not running, it will be impossible to run an NIS server, or to act as an NIS client. |
ypbind | “Binds” an NIS client to its NIS server. It will take the NIS domainname from the system, and using RPC, connect to the server. ypbind is the core of client-server communication in an NIS environment; if ypbind dies on a client machine, it will not be able to access the NIS server. |
ypserv | Should only be running on NIS servers; this is the NIS server process itself. If ypserv(8) dies, then the server will no longer be able to respond to NIS requests (hopefully, there is a slave server to take over for it). There are some implementations of NIS (but not the FreeBSD one), that do not try to reconnect to another server if the server it used before dies. Often, the only thing that helps in this case is to restart the server process (or even the whole server) or the ypbind process on the client. |
rpc.yppasswdd | Another process that should only be running on NIS master servers; this is a daemon that will allow NIS clients to change their NIS passwords. If this daemon is not running, users will have to login to the NIS master server and change their passwords there. |
There are three types of hosts in an NIS environment: master servers, slave servers, and clients. Servers act as a central repository for host configuration information. Master servers hold the authoritative copy of this information, while slave servers mirror this information for redundancy. Clients rely on the servers to provide this information to them.
Information in many files can be shared in this manner. The master.passwd, group, and hosts files are commonly shared via NIS. Whenever a process on a client needs information that would normally be found in these files locally, it makes a query to the NIS server that it is bound to instead.
A NIS master server. This server, analogous to a Windows NT primary domain controller, maintains the files used by all of the NIS clients. The passwd, group, and other various files used by the NIS clients live on the master server.
Note: It is possible for one machine to be an NIS master server for more than one NIS domain. However, this will not be covered in this introduction, which assumes a relatively small-scale NIS environment.
NIS slave servers. Similar to the Windows NT backup domain controllers, NIS slave servers maintain copies of the NIS master's data files. NIS slave servers provide the redundancy, which is needed in important environments. They also help to balance the load of the master server: NIS Clients always attach to the NIS server whose response they get first, and this includes slave-server-replies.
NIS clients. NIS clients, like most Windows NT workstations, authenticate against the NIS server (or the Windows NT domain controller in the Windows NT workstations case) to log on.
This section will deal with setting up a sample NIS environment.
Let us assume that you are the administrator of a small university lab. This lab, which consists of 15 FreeBSD machines, currently has no centralized point of administration; each machine has its own /etc/passwd and /etc/master.passwd. These files are kept in sync with each other only through manual intervention; currently, when you add a user to the lab, you must run adduser on all 15 machines. Clearly, this has to change, so you have decided to convert the lab to use NIS, using two of the machines as servers.
Therefore, the configuration of the lab now looks something like:
Machine name | IP address | Machine role |
---|---|---|
ellington | 10.0.0.2 | NIS master |
coltrane | 10.0.0.3 | NIS slave |
basie | 10.0.0.4 | Faculty workstation |
bird | 10.0.0.5 | Client machine |
cli[1-11] | 10.0.0.[6-17] | Other client machines |
If you are setting up a NIS scheme for the first time, it is a good idea to think through how you want to go about it. No matter what the size of your network, there are a few decisions that need to be made.
This might not be the “domainname” that you are used to. It is more accurately called the “NIS domainname”. When a client broadcasts its requests for info, it includes the name of the NIS domain that it is part of. This is how multiple servers on one network can tell which server should answer which request. Think of the NIS domainname as the name for a group of hosts that are related in some way.
Some organizations choose to use their Internet domainname for their NIS domainname. This is not recommended as it can cause confusion when trying to debug network problems. The NIS domainname should be unique within your network and it is helpful if it describes the group of machines it represents. For example, the Art department at Acme Inc. might be in the “acme-art” NIS domain. For this example, assume you have chosen the name test-domain.
However, some operating systems (notably SunOS) use their NIS domain name as their Internet domain name. If one or more machines on your network have this restriction, you must use the Internet domain name as your NIS domain name.
There are several things to keep in mind when choosing a machine to use as a NIS server. One of the unfortunate things about NIS is the level of dependency the clients have on the server. If a client cannot contact the server for its NIS domain, very often the machine becomes unusable. The lack of user and group information causes most systems to temporarily freeze up. With this in mind you should make sure to choose a machine that will not be prone to being rebooted regularly, or one that might be used for development. The NIS server should ideally be a stand alone machine whose sole purpose in life is to be an NIS server. If you have a network that is not very heavily used, it is acceptable to put the NIS server on a machine running other services, just keep in mind that if the NIS server becomes unavailable, it will affect all of your NIS clients adversely.
The canonical copies of all NIS information are stored on a single machine called the NIS master server. The databases used to store the information are called NIS maps. In FreeBSD, these maps are stored in /var/yp/[domainname] where [domainname] is the name of the NIS domain being served. A single NIS server can support several domains at once, therefore it is possible to have several such directories, one for each supported domain. Each domain will have its own independent set of maps.
NIS master and slave servers handle all NIS requests with the ypserv daemon. ypserv is responsible for receiving incoming requests from NIS clients, translating the requested domain and map name to a path to the corresponding database file and transmitting data from the database back to the client.
Setting up a master NIS server can be relatively straight forward, depending on your needs. FreeBSD comes with support for NIS out-of-the-box. All you need is to add the following lines to /etc/rc.conf, and FreeBSD will do the rest for you.
nisdomainname="test-domain"This line will set the NIS domainname to test-domain upon network setup (e.g., after reboot).
nis_server_enable="YES"This will tell FreeBSD to start up the NIS server processes when the networking is next brought up.
nis_yppasswdd_enable="YES"This will enable the rpc.yppasswdd daemon which, as mentioned above, will allow users to change their NIS password from a client machine.
Note: Depending on your NIS setup, you may need to add further entries. See the section about NIS servers that are also NIS clients, below, for details.
After setting up the above entries, run the command /etc/netstart as superuser. It will set up everything for you, using the values you defined in /etc/rc.conf. As a last step, before initializing the NIS maps, start the ypserv daemon manually:
# /etc/rc.d/ypserv start
The NIS maps are database files, that are kept in the /var/yp directory. They are generated from configuration files in the /etc directory of the NIS master, with one exception: the /etc/master.passwd file. This is for a good reason, you do not want to propagate passwords to your root and other administrative accounts to all the servers in the NIS domain. Therefore, before we initialize the NIS maps, you should:
# cp /etc/master.passwd /var/yp/master.passwd # cd /var/yp # vi master.passwd
You should remove all entries regarding system accounts (bin, tty, kmem, games, etc), as well as any accounts that you do not want to be propagated to the NIS clients (for example root and any other UID 0 (superuser) accounts).
Note: Make sure the /var/yp/master.passwd is neither group nor world readable (mode 600)! Use the chmod command, if appropriate.
When you have finished, it is time to initialize the NIS maps! FreeBSD includes
a script named ypinit to do this for you (see its
manual page for more information). Note that this script is available on most UNIX Operating Systems, but not on all. On Digital
UNIX/Compaq Tru64 UNIX it is called ypsetup. Because we
are generating maps for an NIS master, we are going to pass the -m
option to ypinit. To generate the
NIS maps, assuming you already performed the steps above, run:
ellington# ypinit -m test-domain Server Type: MASTER Domain: test-domain Creating an YP server will require that you answer a few questions. Questions will all be asked at the beginning of the procedure. Do you want this procedure to quit on non-fatal errors? [y/n: n] n Ok, please remember to go back and redo manually whatever fails. If you don't, something might not work. At this point, we have to construct a list of this domains YP servers. rod.darktech.org is already known as master server. Please continue to add any slave servers, one per line. When you are done with the list, type a <control D>. master server : ellington next host to add: coltrane next host to add: ^D The current list of NIS servers looks like this: ellington coltrane Is this correct? [y/n: y] y [..output from map generation..] NIS Map update completed. ellington has been setup as an YP master server without any errors.
ypinit should have created /var/yp/Makefile from /var/yp/Makefile.dist. When created, this file assumes that you are operating in a single server NIS environment with only FreeBSD machines. Since test-domain has a slave server as well, you must edit /var/yp/Makefile:
ellington# vi /var/yp/Makefile
You should comment out the line that says
NOPUSH = "True"
(if it is not commented out already).
Setting up an NIS slave server is even more simple than setting up the master.
Log on to the slave server and edit the file /etc/rc.conf
as you did before. The only difference is that we now must use the -s
option when running ypinit. The
-s
option requires the name of the NIS master be passed
to it as well, so our command line looks like:
coltrane# ypinit -s ellington test-domain Server Type: SLAVE Domain: test-domain Master: ellington Creating an YP server will require that you answer a few questions. Questions will all be asked at the beginning of the procedure. Do you want this procedure to quit on non-fatal errors? [y/n: n] n Ok, please remember to go back and redo manually whatever fails. If you don't, something might not work. There will be no further questions. The remainder of the procedure should take a few minutes, to copy the databases from ellington. Transferring netgroup... ypxfr: Exiting: Map successfully transferred Transferring netgroup.byuser... ypxfr: Exiting: Map successfully transferred Transferring netgroup.byhost... ypxfr: Exiting: Map successfully transferred Transferring master.passwd.byuid... ypxfr: Exiting: Map successfully transferred Transferring passwd.byuid... ypxfr: Exiting: Map successfully transferred Transferring passwd.byname... ypxfr: Exiting: Map successfully transferred Transferring group.bygid... ypxfr: Exiting: Map successfully transferred Transferring group.byname... ypxfr: Exiting: Map successfully transferred Transferring services.byname... ypxfr: Exiting: Map successfully transferred Transferring rpc.bynumber... ypxfr: Exiting: Map successfully transferred Transferring rpc.byname... ypxfr: Exiting: Map successfully transferred Transferring protocols.byname... ypxfr: Exiting: Map successfully transferred Transferring master.passwd.byname... ypxfr: Exiting: Map successfully transferred Transferring networks.byname... ypxfr: Exiting: Map successfully transferred Transferring networks.byaddr... ypxfr: Exiting: Map successfully transferred Transferring netid.byname... ypxfr: Exiting: Map successfully transferred Transferring hosts.byaddr... ypxfr: Exiting: Map successfully transferred Transferring protocols.bynumber... ypxfr: Exiting: Map successfully transferred Transferring ypservers... ypxfr: Exiting: Map successfully transferred Transferring hosts.byname... ypxfr: Exiting: Map successfully transferred coltrane has been setup as an YP slave server without any errors. Don't forget to update map ypservers on ellington.
You should now have a directory called /var/yp/test-domain. Copies of the NIS master server's maps should be in this directory. You will need to make sure that these stay updated. The following /etc/crontab entries on your slave servers should do the job:
20 * * * * root /usr/libexec/ypxfr passwd.byname 21 * * * * root /usr/libexec/ypxfr passwd.byuid
These two lines force the slave to sync its maps with the maps on the master server. These entries are not mandatory because the master server automatically attempts to push any map changes to its slaves. However, due to the importance of correct password information on other clients depending on the slave server, it is recommended to specifically force the password map updates frequently. This is especially important on busy networks where map updates might not always complete.
Now, run the command /etc/netstart on the slave server as well, which again starts the NIS server.
An NIS client establishes what is called a binding to a particular NIS server using the ypbind daemon. ypbind checks the system's default domain (as set by the domainname command), and begins broadcasting RPC requests on the local network. These requests specify the name of the domain for which ypbind is attempting to establish a binding. If a server that has been configured to serve the requested domain receives one of the broadcasts, it will respond to ypbind, which will record the server's address. If there are several servers available (a master and several slaves, for example), ypbind will use the address of the first one to respond. From that point on, the client system will direct all of its NIS requests to that server. ypbind will occasionally “ping” the server to make sure it is still up and running. If it fails to receive a reply to one of its pings within a reasonable amount of time, ypbind will mark the domain as unbound and begin broadcasting again in the hopes of locating another server.
Setting up a FreeBSD machine to be a NIS client is fairly straightforward.
Edit the file /etc/rc.conf and add the following lines in order to set the NIS domainname and start ypbind upon network startup:
nisdomainname="test-domain" nis_client_enable="YES"
To import all possible password entries from the NIS server, remove all user accounts from your /etc/master.passwd file and use vipw to add the following line to the end of the file:
+:::::::::
Note: This line will afford anyone with a valid account in the NIS server's password maps an account. There are many ways to configure your NIS client by changing this line. See the netgroups section below for more information. For more detailed reading see O'Reilly's book on Managing NFS and NIS.
Note: You should keep at least one local account (i.e. not imported via NIS) in your /etc/master.passwd and this account should also be a member of the group wheel. If there is something wrong with NIS, this account can be used to log in remotely, become root, and fix things.
To import all possible group entries from the NIS server, add this line to your /etc/group file:
+:*::
To start the NIS client immediately, execute the following commands as the superuser:
# /etc/netstart # /etc/rc.d/ypbind start
After completing these steps, you should be able to run ypcat passwd and see the NIS server's passwd map.
In general, any remote user can issue an RPC to ypserv(8) and retrieve the contents of your NIS maps, provided the remote user knows your domainname. To prevent such unauthorized transactions, ypserv(8) supports a feature called “securenets” which can be used to restrict access to a given set of hosts. At startup, ypserv(8) will attempt to load the securenets information from a file called /var/yp/securenets.
Note: This path varies depending on the path specified with the
-p
option. This file contains entries that consist of a network specification and a network mask separated by white space. Lines starting with “#” are considered to be comments. A sample securenets file might look like this:
# allow connections from local host -- mandatory 127.0.0.1 255.255.255.255 # allow connections from any host # on the 192.168.128.0 network 192.168.128.0 255.255.255.0 # allow connections from any host # between 10.0.0.0 to 10.0.15.255 # this includes the machines in the testlab 10.0.0.0 255.255.240.0
If ypserv(8) receives a request from an address that matches one of these rules, it will process the request normally. If the address fails to match a rule, the request will be ignored and a warning message will be logged. If the /var/yp/securenets file does not exist, ypserv will allow connections from any host.
The ypserv program also has support for Wietse Venema's TCP Wrapper package. This allows the administrator to use the TCP Wrapper configuration files for access control instead of /var/yp/securenets.
Note: While both of these access control mechanisms provide some security, they, like the privileged port test, are vulnerable to “IP spoofing” attacks. All NIS-related traffic should be blocked at your firewall.
Servers using /var/yp/securenets may fail to serve legitimate NIS clients with archaic TCP/IP implementations. Some of these implementations set all host bits to zero when doing broadcasts and/or fail to observe the subnet mask when calculating the broadcast address. While some of these problems can be fixed by changing the client configuration, other problems may force the retirement of the client systems in question or the abandonment of /var/yp/securenets.
Using /var/yp/securenets on a server with such an archaic implementation of TCP/IP is a really bad idea and will lead to loss of NIS functionality for large parts of your network.
The use of the TCP Wrapper package increases the latency of your NIS server. The additional delay may be long enough to cause timeouts in client programs, especially in busy networks or with slow NIS servers. If one or more of your client systems suffers from these symptoms, you should convert the client systems in question into NIS slave servers and force them to bind to themselves.
In our lab, there is a machine basie that is supposed to be a faculty only workstation. We do not want to take this machine out of the NIS domain, yet the passwd file on the master NIS server contains accounts for both faculty and students. What can we do?
There is a way to bar specific users from logging on to a machine, even if they are present in the NIS database. To do this, all you must do is add -username with the correct number of colons like other entries to the end of the /etc/master.passwd file on the client machine, where username is the username of the user you wish to bar from logging in. The line with the blocked user must be before the + line for allowing NIS users. This should preferably be done using vipw, since vipw will sanity check your changes to /etc/master.passwd, as well as automatically rebuild the password database when you finish editing. For example, if we wanted to bar user bill from logging on to basie we would:
basie# vipw [add -bill::::::::: to the end, exit] vipw: rebuilding the database... vipw: done basie# cat /etc/master.passwd root:[password]:0:0::0:0:The super-user:/root:/bin/csh toor:[password]:0:0::0:0:The other super-user:/root:/bin/sh daemon:*:1:1::0:0:Owner of many system processes:/root:/sbin/nologin operator:*:2:5::0:0:System &:/:/sbin/nologin bin:*:3:7::0:0:Binaries Commands and Source,,,:/:/sbin/nologin tty:*:4:65533::0:0:Tty Sandbox:/:/sbin/nologin kmem:*:5:65533::0:0:KMem Sandbox:/:/sbin/nologin games:*:7:13::0:0:Games pseudo-user:/usr/games:/sbin/nologin news:*:8:8::0:0:News Subsystem:/:/sbin/nologin man:*:9:9::0:0:Mister Man Pages:/usr/share/man:/sbin/nologin bind:*:53:53::0:0:Bind Sandbox:/:/sbin/nologin uucp:*:66:66::0:0:UUCP pseudo-user:/var/spool/uucppublic:/usr/libexec/uucp/uucico xten:*:67:67::0:0:X-10 daemon:/usr/local/xten:/sbin/nologin pop:*:68:6::0:0:Post Office Owner:/nonexistent:/sbin/nologin nobody:*:65534:65534::0:0:Unprivileged user:/nonexistent:/sbin/nologin -bill::::::::: +::::::::: basie#
The method shown in the previous section works reasonably well if you need special rules for a very small number of users and/or machines. On larger networks, you will forget to bar some users from logging onto sensitive machines, or you may even have to modify each machine separately, thus losing the main benefit of NIS: centralized administration.
The NIS developers' solution for this problem is called netgroups. Their purpose and semantics can be compared to the normal groups used by UNIX file systems. The main differences are the lack of a numeric ID and the ability to define a netgroup by including both user accounts and other netgroups.
Netgroups were developed to handle large, complex networks with hundreds of users and machines. On one hand, this is a Good Thing if you are forced to deal with such a situation. On the other hand, this complexity makes it almost impossible to explain netgroups with really simple examples. The example used in the remainder of this section demonstrates this problem.
Let us assume that your successful introduction of NIS in your laboratory caught your superiors' interest. Your next job is to extend your NIS domain to cover some of the other machines on campus. The two tables contain the names of the new users and new machines as well as brief descriptions of them.
User Name(s) | Description |
---|---|
alpha, beta | Normal employees of the IT department |
charlie, delta | The new apprentices of the IT department |
echo, foxtrott, golf, ... | Ordinary employees |
able, baker, ... | The current interns |
Machine Name(s) | Description |
---|---|
war, death, famine, pollution | Your most important servers. Only the IT employees are allowed to log onto these machines. |
pride, greed, envy, wrath, lust, sloth | Less important servers. All members of the IT department are allowed to login onto these machines. |
one, two, three, four, ... | Ordinary workstations. Only the real employees are allowed to use these machines. |
trashcan | A very old machine without any critical data. Even the intern is allowed to use this box. |
If you tried to implement these restrictions by separately blocking each user, you would have to add one -user line to each system's passwd for each user who is not allowed to login onto that system. If you forget just one entry, you could be in trouble. It may be feasible to do this correctly during the initial setup, however you will eventually forget to add the lines for new users during day-to-day operations. After all, Murphy was an optimist.
Handling this situation with netgroups offers several advantages. Each user need not be handled separately; you assign a user to one or more netgroups and allow or forbid logins for all members of the netgroup. If you add a new machine, you will only have to define login restrictions for netgroups. If a new user is added, you will only have to add the user to one or more netgroups. Those changes are independent of each other: no more “for each combination of user and machine do...” If your NIS setup is planned carefully, you will only have to modify exactly one central configuration file to grant or deny access to machines.
The first step is the initialization of the NIS map netgroup. FreeBSD's ypinit(8) does not create this map by default, but its NIS implementation will support it once it has been created. To create an empty map, simply type
ellington# vi /var/yp/netgroup
and start adding content. For our example, we need at least four netgroups: IT employees, IT apprentices, normal employees and interns.
IT_EMP (,alpha,test-domain) (,beta,test-domain) IT_APP (,charlie,test-domain) (,delta,test-domain) USERS (,echo,test-domain) (,foxtrott,test-domain) \ (,golf,test-domain) INTERNS (,able,test-domain) (,baker,test-domain)
IT_EMP, IT_APP etc. are the names of the netgroups. Each bracketed group adds one or more user accounts to it. The three fields inside a group are:
The name of the host(s) where the following items are valid. If you do not specify a hostname, the entry is valid on all hosts. If you do specify a hostname, you will enter a realm of darkness, horror and utter confusion.
The name of the account that belongs to this netgroup.
The NIS domain for the account. You can import accounts from other NIS domains into your netgroup if you are one of the unlucky fellows with more than one NIS domain.
Each of these fields can contain wildcards. See netgroup(5) for details.
Note: Netgroup names longer than 8 characters should not be used, especially if you have machines running other operating systems within your NIS domain. The names are case sensitive; using capital letters for your netgroup names is an easy way to distinguish between user, machine and netgroup names.
Some NIS clients (other than FreeBSD) cannot handle netgroups with a large number of entries. For example, some older versions of SunOS start to cause trouble if a netgroup contains more than 15 entries. You can circumvent this limit by creating several sub-netgroups with 15 users or less and a real netgroup that consists of the sub-netgroups:
BIGGRP1 (,joe1,domain) (,joe2,domain) (,joe3,domain) [...] BIGGRP2 (,joe16,domain) (,joe17,domain) [...] BIGGRP3 (,joe31,domain) (,joe32,domain) BIGGROUP BIGGRP1 BIGGRP2 BIGGRP3You can repeat this process if you need more than 225 users within a single netgroup.
Activating and distributing your new NIS map is easy:
ellington# cd /var/yp ellington# make
This will generate the three NIS maps netgroup, netgroup.byhost and netgroup.byuser. Use ypcat(1) to check if your new NIS maps are available:
ellington% ypcat -k netgroup ellington% ypcat -k netgroup.byhost ellington% ypcat -k netgroup.byuser
The output of the first command should resemble the contents of /var/yp/netgroup. The second command will not produce output if you have not specified host-specific netgroups. The third command can be used to get the list of netgroups for a user.
The client setup is quite simple. To configure the server war, you only have to start vipw(8) and replace the line
+:::::::::
with
+@IT_EMP:::::::::
Now, only the data for the users defined in the netgroup IT_EMP is imported into war's password database and only these users are allowed to login.
Unfortunately, this limitation also applies to the ~ function of the shell and all routines converting between user names and numerical user IDs. In other words, cd ~user will not work, ls -l will show the numerical ID instead of the username and find . -user joe -print will fail with “No such user”. To fix this, you will have to import all user entries without allowing them to login onto your servers.
This can be achieved by adding another line to /etc/master.passwd. This line should contain:
+:::::::::/sbin/nologin, meaning “Import all entries but replace the shell with /sbin/nologin in the imported entries”. You can replace any field in the passwd entry by placing a default value in your /etc/master.passwd.
Warning: Make sure that the line +:::::::::/sbin/nologin is placed after +@IT_EMP:::::::::. Otherwise, all user accounts imported from NIS will have /sbin/nologin as their login shell.
After this change, you will only have to change one NIS map if a new employee joins the IT department. You could use a similar approach for the less important servers by replacing the old +::::::::: in their local version of /etc/master.passwd with something like this:
+@IT_EMP::::::::: +@IT_APP::::::::: +:::::::::/sbin/nologin
The corresponding lines for the normal workstations could be:
+@IT_EMP::::::::: +@USERS::::::::: +:::::::::/sbin/nologin
And everything would be fine until there is a policy change a few weeks later: The IT department starts hiring interns. The IT interns are allowed to use the normal workstations and the less important servers; and the IT apprentices are allowed to login onto the main servers. You add a new netgroup IT_INTERN, add the new IT interns to this netgroup and start to change the configuration on each and every machine... As the old saying goes: “Errors in centralized planning lead to global mess”.
NIS' ability to create netgroups from other netgroups can be used to prevent situations like these. One possibility is the creation of role-based netgroups. For example, you could create a netgroup called BIGSRV to define the login restrictions for the important servers, another netgroup called SMALLSRV for the less important servers and a third netgroup called USERBOX for the normal workstations. Each of these netgroups contains the netgroups that are allowed to login onto these machines. The new entries for your NIS map netgroup should look like this:
BIGSRV IT_EMP IT_APP SMALLSRV IT_EMP IT_APP ITINTERN USERBOX IT_EMP ITINTERN USERS
This method of defining login restrictions works reasonably well if you can define groups of machines with identical restrictions. Unfortunately, this is the exception and not the rule. Most of the time, you will need the ability to define login restrictions on a per-machine basis.
Machine-specific netgroup definitions are the other possibility to deal with the policy change outlined above. In this scenario, the /etc/master.passwd of each box contains two lines starting with “+”. The first of them adds a netgroup with the accounts allowed to login onto this machine, the second one adds all other accounts with /sbin/nologin as shell. It is a good idea to use the “ALL-CAPS” version of the machine name as the name of the netgroup. In other words, the lines should look like this:
+@BOXNAME::::::::: +:::::::::/sbin/nologin
Once you have completed this task for all your machines, you will not have to modify the local versions of /etc/master.passwd ever again. All further changes can be handled by modifying the NIS map. Here is an example of a possible netgroup map for this scenario with some additional goodies:
# Define groups of users first IT_EMP (,alpha,test-domain) (,beta,test-domain) IT_APP (,charlie,test-domain) (,delta,test-domain) DEPT1 (,echo,test-domain) (,foxtrott,test-domain) DEPT2 (,golf,test-domain) (,hotel,test-domain) DEPT3 (,india,test-domain) (,juliet,test-domain) ITINTERN (,kilo,test-domain) (,lima,test-domain) D_INTERNS (,able,test-domain) (,baker,test-domain) # # Now, define some groups based on roles USERS DEPT1 DEPT2 DEPT3 BIGSRV IT_EMP IT_APP SMALLSRV IT_EMP IT_APP ITINTERN USERBOX IT_EMP ITINTERN USERS # # And a groups for a special tasks # Allow echo and golf to access our anti-virus-machine SECURITY IT_EMP (,echo,test-domain) (,golf,test-domain) # # machine-based netgroups # Our main servers WAR BIGSRV FAMINE BIGSRV # User india needs access to this server POLLUTION BIGSRV (,india,test-domain) # # This one is really important and needs more access restrictions DEATH IT_EMP # # The anti-virus-machine mentioned above ONE SECURITY # # Restrict a machine to a single user TWO (,hotel,test-domain) # [...more groups to follow]
If you are using some kind of database to manage your user accounts, you should be able to create the first part of the map with your database's report tools. This way, new users will automatically have access to the boxes.
One last word of caution: It may not always be advisable to use machine-based netgroups. If you are deploying a couple of dozen or even hundreds of identical machines for student labs, you should use role-based netgroups instead of machine-based netgroups to keep the size of the NIS map within reasonable limits.
There are still a couple of things that you will need to do differently now that you are in an NIS environment.
Every time you wish to add a user to the lab, you must add it to the master NIS server only, and you must remember to rebuild the NIS maps. If you forget to do this, the new user will not be able to login anywhere except on the NIS master. For example, if we needed to add a new user jsmith to the lab, we would:
# pw useradd jsmith # cd /var/yp # make test-domain
You could also run adduser jsmith instead of pw useradd jsmith.
Keep the administration accounts out of the NIS maps. You do not want to be propagating administrative accounts and passwords to machines that will have users that should not have access to those accounts.
Keep the NIS master and slave secure, and minimize their downtime. If somebody either hacks or simply turns off these machines, they have effectively rendered many people without the ability to login to the lab.
This is the chief weakness of any centralized administration system. If you do not protect your NIS servers, you will have a lot of angry users!
FreeBSD's ypserv has some support for serving NIS v1 clients. FreeBSD's NIS implementation only uses the NIS v2 protocol, however other implementations include support for the v1 protocol for backwards compatibility with older systems. The ypbind daemons supplied with these systems will try to establish a binding to an NIS v1 server even though they may never actually need it (and they may persist in broadcasting in search of one even after they receive a response from a v2 server). Note that while support for normal client calls is provided, this version of ypserv does not handle v1 map transfer requests; consequently, it cannot be used as a master or slave in conjunction with older NIS servers that only support the v1 protocol. Fortunately, there probably are not any such servers still in use today.
Care must be taken when running ypserv in a multi-server domain where the server machines are also NIS clients. It is generally a good idea to force the servers to bind to themselves rather than allowing them to broadcast bind requests and possibly become bound to each other. Strange failure modes can result if one server goes down and others are dependent upon it. Eventually all the clients will time out and attempt to bind to other servers, but the delay involved can be considerable and the failure mode is still present since the servers might bind to each other all over again.
You can force a host to bind to a particular server by running ypbind with the -S
flag. If you do
not want to do this manually each time you reboot your NIS server, you can add the
following lines to your /etc/rc.conf:
nis_client_enable="YES" # run client stuff as well nis_client_flags="-S NIS domain,server"
See ypbind(8) for further information.
One of the most common issues that people run into when trying to implement NIS is password format compatibility. If your NIS server is using DES encrypted passwords, it will only support clients that are also using DES. For example, if you have Solaris NIS clients in your network, then you will almost certainly need to use DES encrypted passwords.
To check which format your servers and clients are using, look at /etc/login.conf. If the host is configured to use DES encrypted passwords, then the default class will contain an entry like this:
default:\ :passwd_format=des:\ :copyright=/etc/COPYRIGHT:\ [Further entries elided]
Other possible values for the passwd_format capability include blf and md5 (for Blowfish and MD5 encrypted passwords, respectively).
If you have made changes to /etc/login.conf, you will also need to rebuild the login capability database, which is achieved by running the following command as root:
# cap_mkdb /etc/login.conf
Note: The format of passwords already in /etc/master.passwd will not be updated until a user changes his password for the first time after the login capability database is rebuilt.
Next, in order to ensure that passwords are encrypted with the format that you have chosen, you should also check that the crypt_default in /etc/auth.conf gives precedence to your chosen password format. To do this, place the format that you have chosen first in the list. For example, when using DES encrypted passwords, the entry would be:
crypt_default = des blf md5
Having followed the above steps on each of the FreeBSD based NIS servers and clients, you can be sure that they all agree on which password format is used within your network. If you have trouble authenticating on an NIS client, this is a pretty good place to start looking for possible problems. Remember: if you want to deploy an NIS server for a heterogeneous network, you will probably have to use DES on all systems because it is the lowest common standard.
DHCP, the Dynamic Host Configuration Protocol, describes the means by which a system can connect to a network and obtain the necessary information for communication upon that network. FreeBSD uses the OpenBSD dhclient taken from OpenBSD 3.7. All information here regarding dhclient is for use with either of the ISC or OpenBSD DHCP clients. The DHCP server is the one included in the ISC distribution.
This section describes both the client-side components of the ISC and OpenBSD DHCP client and server-side components of the ISC DHCP system. The client-side program, dhclient, comes integrated within FreeBSD, and the server-side portion is available from the net/isc-dhcp42-server port. The dhclient(8), dhcp-options(5), and dhclient.conf(5) manual pages, in addition to the references below, are useful resources.
When dhclient, the DHCP client, is executed on the client machine, it begins broadcasting requests for configuration information. By default, these requests are on UDP port 68. The server replies on UDP 67, giving the client an IP address and other relevant network information such as netmask, router, and DNS servers. All of this information comes in the form of a DHCP “lease” and is only valid for a certain time (configured by the DHCP server maintainer). In this manner, stale IP addresses for clients no longer connected to the network can be automatically reclaimed.
DHCP clients can obtain a great deal of information from the server. An exhaustive list may be found in dhcp-options(5).
FreeBSD fully integrates the OpenBSD DHCP client, dhclient. DHCP client support is provided within both the installer and the base system, obviating the need for detailed knowledge of network configurations on any network that runs a DHCP server.
DHCP is supported by sysinstall. When configuring a network interface within sysinstall, the second question asked is: “Do you want to try DHCP configuration of the interface?”. Answering affirmatively will execute dhclient, and if successful, will fill in the network configuration information automatically.
There are two things you must do to have your system use DHCP upon startup:
Make sure that the bpf device is compiled into your kernel. To do this, add device bpf to your kernel configuration file, and rebuild the kernel. For more information about building kernels, see Chapter 9.
The bpf device is already part of the GENERIC kernel that is supplied with FreeBSD, so if you do not have a custom kernel, you should not need to create one in order to get DHCP working.
Note: For those who are particularly security conscious, you should be warned that bpf is also the device that allows packet sniffers to work correctly (although they still have to be run as root). bpf is required to use DHCP, but if you are very sensitive about security, you probably should not add bpf to your kernel in the expectation that at some point in the future you will be using DHCP.
By default, DHCP configuration on FreeBSD runs in the background, or asynchronously. Other startup scripts continue to run while DHCP completes, speeding up system startup.
Background DHCP works well when the DHCP server responds quickly to requests and the DHCP configuration process goes quickly. However, DHCP may take a long time to complete on some systems. If network services attempt to run before DHCP has completed, they will fail. Using DHCP in synchronous mode prevents the problem, pausing startup until DHCP configuration has completed.
To connect to a DHCP server in the background while other startup continues (asynchronous mode), use the “DHCP” value in /etc/rc.conf:
ifconfig_fxp0="DHCP"
To pause startup while DHCP completes, use synchronous mode with the “SYNCDHCP” value:
ifconfig_fxp0="SYNCDHCP"
Note: Replace the fxp0 shown in these examples with the name of the interface to be dynamically configured, as described in Section 12.8.
If you are using a different location for dhclient, or if you wish to pass additional flags to dhclient, also include (editing as necessary):
dhclient_program="/sbin/dhclient" dhclient_flags=""
The DHCP server, dhcpd, is included as part of the net/isc-dhcp42-server port in the ports collection. This port contains the ISC DHCP server and documentation.
/etc/dhclient.conf
dhclient requires a configuration file, /etc/dhclient.conf. Typically the file contains only comments, the defaults being reasonably sane. This configuration file is described by the dhclient.conf(5) manual page.
/sbin/dhclient
dhclient is statically linked and resides in /sbin. The dhclient(8) manual page gives more information about dhclient.
/sbin/dhclient-script
dhclient-script is the FreeBSD-specific DHCP client configuration script. It is described in dhclient-script(8), but should not need any user modification to function properly.
/var/db/dhclient.leases.interface
The DHCP client keeps a database of valid leases in this file, which is written as a log. dhclient.leases(5) gives a slightly longer description.
The DHCP protocol is fully described in RFC 2131. An informational resource has also been set up at http://www.dhcp.org/.
This section provides information on how to configure a FreeBSD system to act as a DHCP server using the ISC (Internet Systems Consortium) implementation of the DHCP server.
The server is not provided as part of FreeBSD, and so you will need to install the net/isc-dhcp42-server port to provide this service. See Chapter 5 for more information on using the Ports Collection.
In order to configure your FreeBSD system as a DHCP server, you will need to ensure that the bpf(4) device is compiled into your kernel. To do this, add device bpf to your kernel configuration file, and rebuild the kernel. For more information about building kernels, see Chapter 9.
The bpf device is already part of the GENERIC kernel that is supplied with FreeBSD, so you do not need to create a custom kernel in order to get DHCP working.
Note: Those who are particularly security conscious should note that bpf is also the device that allows packet sniffers to work correctly (although such programs still need privileged access). bpf is required to use DHCP, but if you are very sensitive about security, you probably should not include bpf in your kernel purely because you expect to use DHCP at some point in the future.
The next thing that you will need to do is edit the sample dhcpd.conf which was installed by the net/isc-dhcp42-server port. By default, this will be /usr/local/etc/dhcpd.conf.sample, and you should copy this to /usr/local/etc/dhcpd.conf before proceeding to make changes.
dhcpd.conf is comprised of declarations regarding subnets and hosts, and is perhaps most easily explained using an example :
option domain-name "example.com"; option domain-name-servers 192.168.4.100; option subnet-mask 255.255.255.0; default-lease-time 3600; max-lease-time 86400; ddns-update-style none; subnet 192.168.4.0 netmask 255.255.255.0 { range 192.168.4.129 192.168.4.254; option routers 192.168.4.1; } host mailhost { hardware ethernet 02:03:04:05:06:07; fixed-address mailhost.example.com; }
Once you have finished writing your dhcpd.conf, you should enable the DHCP server in /etc/rc.conf, i.e., by adding:
dhcpd_enable="YES" dhcpd_ifaces="dc0"
Replace the dc0 interface name with the interface (or interfaces, separated by whitespace) that your DHCP server should listen on for DHCP client requests.
Then, you can proceed to start the server by issuing the following command:
# /usr/local/etc/rc.d/isc-dhcpd start
Should you need to make changes to the configuration of your server in the future, it is important to note that sending a SIGHUP signal to dhcpd does not result in the configuration being reloaded, as it does with most daemons. You will need to send a SIGTERM signal to stop the process, and then restart it using the command above.
/usr/local/sbin/dhcpd
dhcpd is statically linked and resides in /usr/local/sbin. The dhcpd(8) manual page installed with the port gives more information about dhcpd.
/usr/local/etc/dhcpd.conf
dhcpd requires a configuration file, /usr/local/etc/dhcpd.conf before it will start providing service to clients. This file needs to contain all the information that should be provided to clients that are being serviced, along with information regarding the operation of the server. This configuration file is described by the dhcpd.conf(5) manual page installed by the port.
/var/db/dhcpd.leases
The DHCP server keeps a database of leases it has issued in this file, which is written as a log. The manual page dhcpd.leases(5), installed by the port gives a slightly longer description.
/usr/local/sbin/dhcrelay
dhcrelay is used in advanced environments where one DHCP server forwards a request from a client to another DHCP server on a separate network. If you require this functionality, then install the net/isc-dhcp42-relay port. The dhcrelay(8) manual page provided with the port contains more detail.
FreeBSD utilizes, by default, a version of BIND (Berkeley Internet Name Domain), which is the most common implementation of the DNS protocol. DNS is the protocol through which names are mapped to IP addresses, and vice versa. For example, a query for www.FreeBSD.org will receive a reply with the IP address of The FreeBSD Project's web server, whereas, a query for ftp.FreeBSD.org will return the IP address of the corresponding FTP machine. Likewise, the opposite can happen. A query for an IP address can resolve its hostname. It is not necessary to run a name server to perform DNS lookups on a system.
FreeBSD currently comes with BIND9 DNS server software by default. Our installation provides enhanced security features, a new file system layout and automated chroot(8) configuration.
DNS is coordinated across the Internet through a somewhat complex system of authoritative root, Top Level Domain (TLD), and other smaller-scale name servers which host and cache individual domain information.
Currently, BIND is maintained by the Internet Systems Consortium https://www.isc.org/.
To understand this document, some terms related to DNS must be understood.
Term | Definition |
---|---|
Forward DNS | Mapping of hostnames to IP addresses. |
Origin | Refers to the domain covered in a particular zone file. |
named, BIND | Common names for the BIND name server package within FreeBSD. |
Resolver | A system process through which a machine queries a name server for zone information. |
Reverse DNS | Mapping of IP addresses to hostnames. |
Root zone | The beginning of the Internet zone hierarchy. All zones fall under the root zone, similar to how all files in a file system fall under the root directory. |
Zone | An individual domain, subdomain, or portion of the DNS administered by the same authority. |
Examples of zones:
. is how the root zone is usually referred to in documentation.
org. is a Top Level Domain (TLD) under the root zone.
example.org. is a zone under the org. TLD.
1.168.192.in-addr.arpa is a zone referencing all IP addresses which fall under the 192.168.1.* IP address space.
As one can see, the more specific part of a hostname appears to its left. For example, example.org. is more specific than org., as org. is more specific than the root zone. The layout of each part of a hostname is much like a file system: the /dev directory falls within the root, and so on.
Name servers generally come in two forms: authoritative name servers, and caching (also known as resolving) name servers.
An authoritative name server is needed when:
One wants to serve DNS information to the world, replying authoritatively to queries.
A domain, such as example.org, is registered and IP addresses need to be assigned to hostnames under it.
An IP address block requires reverse DNS entries (IP to hostname).
A backup or second name server, called a slave, will reply to queries.
A caching name server is needed when:
A local DNS server may cache and respond more quickly than querying an outside name server.
When one queries for www.FreeBSD.org, the resolver usually queries the uplink ISP's name server, and retrieves the reply. With a local, caching DNS server, the query only has to be made once to the outside world by the caching DNS server. Additional queries will not have to go outside the local network, since the information is cached locally.
In FreeBSD, the BIND daemon is called named.
File | Description |
---|---|
named(8) | The BIND daemon. |
rndc(8) | Name server control utility. |
/etc/namedb | Directory where BIND zone information resides. |
/etc/namedb/named.conf | Configuration file of the daemon. |
Depending on how a given zone is configured on the server, the files related to that zone can be found in the master, slave, or dynamic subdirectories of the /etc/namedb directory. These files contain the DNS information that will be given out by the name server in response to queries.
Since BIND is installed by default, configuring it is relatively simple.
The default named configuration is that of a basic resolving name server, running in a chroot(8) environment, and restricted to listening on the local IPv4 loopback address (127.0.0.1). To start the server one time with this configuration, use the following command:
# /etc/rc.d/named onestart
To ensure the named daemon is started at boot each time, put the following line into the /etc/rc.conf:
named_enable="YES"
There are obviously many configuration options for /etc/namedb/named.conf that are beyond the scope of this document. However, if you are interested in the startup options for named on FreeBSD, take a look at the named_* flags in /etc/defaults/rc.conf and consult the rc.conf(5) manual page. The Section 12.7 section is also a good read.
Configuration files for named currently reside in /etc/namedb directory and will need modification before use unless all that is needed is a simple resolver. This is where most of the configuration will be performed.
// $FreeBSD$ // // Refer to the named.conf(5) and named(8) man pages, and the documentation // in /usr/share/doc/bind9 for more details. // // If you are going to set up an authoritative server, make sure you // understand the hairy details of how DNS works. Even with // simple mistakes, you can break connectivity for affected parties, // or cause huge amounts of useless Internet traffic. options { // All file and path names are relative to the chroot directory, // if any, and should be fully qualified. directory "/etc/namedb/working"; pid-file "/var/run/named/pid"; dump-file "/var/dump/named_dump.db"; statistics-file "/var/stats/named.stats"; // If named is being used only as a local resolver, this is a safe default. // For named to be accessible to the network, comment this option, specify // the proper IP address, or delete this option. listen-on { 127.0.0.1; }; // If you have IPv6 enabled on this system, uncomment this option for // use as a local resolver. To give access to the network, specify // an IPv6 address, or the keyword "any". // listen-on-v6 { ::1; }; // These zones are already covered by the empty zones listed below. // If you remove the related empty zones below, comment these lines out. disable-empty-zone "255.255.255.255.IN-ADDR.ARPA"; disable-empty-zone "0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.IP6.ARPA"; disable-empty-zone "1.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.IP6.ARPA"; // If you've got a DNS server around at your upstream provider, enter // its IP address here, and enable the line below. This will make you // benefit from its cache, thus reduce overall DNS traffic in the Internet. /* forwarders { 127.0.0.1; }; */ // If the 'forwarders' clause is not empty the default is to 'forward first' // which will fall back to sending a query from your local server if the name // servers in 'forwarders' do not have the answer. Alternatively you can // force your name server to never initiate queries of its own by enabling the // following line: // forward only; // If you wish to have forwarding configured automatically based on // the entries in /etc/resolv.conf, uncomment the following line and // set named_auto_forward=yes in /etc/rc.conf. You can also enable // named_auto_forward_only (the effect of which is described above). // include "/etc/namedb/auto_forward.conf";
Just as the comment says, to benefit from an uplink's cache, forwarders can be enabled here. Under normal circumstances, a name server will recursively query the Internet looking at certain name servers until it finds the answer it is looking for. Having this enabled will have it query the uplink's name server (or name server provided) first, taking advantage of its cache. If the uplink name server in question is a heavily trafficked, fast name server, enabling this may be worthwhile.
Warning: 127.0.0.1 will not work here. Change this IP address to a name server at your uplink.
/* Modern versions of BIND use a random UDP port for each outgoing query by default in order to dramatically reduce the possibility of cache poisoning. All users are strongly encouraged to utilize this feature, and to configure their firewalls to accommodate it. AS A LAST RESORT in order to get around a restrictive firewall policy you can try enabling the option below. Use of this option will significantly reduce your ability to withstand cache poisoning attacks, and should be avoided if at all possible. Replace NNNNN in the example with a number between 49160 and 65530. */ // query-source address * port NNNNN; }; // If you enable a local name server, don't forget to enter 127.0.0.1 // first in your /etc/resolv.conf so this server will be queried. // Also, make sure to enable it in /etc/rc.conf. // The traditional root hints mechanism. Use this, OR the slave zones below. zone "." { type hint; file "/etc/namedb/named.root"; }; /* Slaving the following zones from the root name servers has some significant advantages: 1. Faster local resolution for your users 2. No spurious traffic will be sent from your network to the roots 3. Greater resilience to any potential root server failure/DDoS On the other hand, this method requires more monitoring than the hints file to be sure that an unexpected failure mode has not incapacitated your server. Name servers that are serving a lot of clients will benefit more from this approach than individual hosts. Use with caution. To use this mechanism, uncomment the entries below, and comment the hint zone above. As documented at http://dns.icann.org/services/axfr/ these zones: "." (the root), ARPA, IN-ADDR.ARPA, IP6.ARPA, and ROOT-SERVERS.NET are available for AXFR from these servers on IPv4 and IPv6: xfr.lax.dns.icann.org, xfr.cjr.dns.icann.org */ /* zone "." { type slave; file "/etc/namedb/slave/root.slave"; masters { 192.5.5.241; // F.ROOT-SERVERS.NET. }; notify no; }; zone "arpa" { type slave; file "/etc/namedb/slave/arpa.slave"; masters { 192.5.5.241; // F.ROOT-SERVERS.NET. }; notify no; }; */ /* Serving the following zones locally will prevent any queries for these zones leaving your network and going to the root name servers. This has two significant advantages: 1. Faster local resolution for your users 2. No spurious traffic will be sent from your network to the roots */ // RFCs 1912 and 5735 (and BCP 32 for localhost) zone "localhost" { type master; file "/etc/namedb/master/localhost-forward.db"; }; zone "127.in-addr.arpa" { type master; file "/etc/namedb/master/localhost-reverse.db"; }; zone "255.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // RFC 1912-style zone for IPv6 localhost address zone "0.ip6.arpa" { type master; file "/etc/namedb/master/localhost-reverse.db"; }; // "This" Network (RFCs 1912 and 5735) zone "0.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // Private Use Networks (RFCs 1918 and 5735) zone "10.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "16.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "17.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "18.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "19.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "20.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "21.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "22.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "23.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "24.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "25.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "26.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "27.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "28.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "29.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "30.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "31.172.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "168.192.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // Link-local/APIPA (RFCs 3927 and 5735) zone "254.169.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // IETF protocol assignments (RFCs 5735 and 5736) zone "0.0.192.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // TEST-NET-[1-3] for Documentation (RFCs 5735 and 5737) zone "2.0.192.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "100.51.198.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "113.0.203.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // IPv6 Range for Documentation (RFC 3849) zone "8.b.d.0.1.0.0.2.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // Domain Names for Documentation and Testing (BCP 32) zone "test" { type master; file "/etc/namedb/master/empty.db"; }; zone "example" { type master; file "/etc/namedb/master/empty.db"; }; zone "invalid" { type master; file "/etc/namedb/master/empty.db"; }; zone "example.com" { type master; file "/etc/namedb/master/empty.db"; }; zone "example.net" { type master; file "/etc/namedb/master/empty.db"; }; zone "example.org" { type master; file "/etc/namedb/master/empty.db"; }; // Router Benchmark Testing (RFCs 2544 and 5735) zone "18.198.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "19.198.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // IANA Reserved - Old Class E Space (RFC 5735) zone "240.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "241.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "242.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "243.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "244.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "245.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "246.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "247.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "248.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "249.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "250.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "251.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "252.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "253.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "254.in-addr.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // IPv6 Unassigned Addresses (RFC 4291) zone "1.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "3.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "4.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "5.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "6.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "7.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "8.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "9.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "a.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "b.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "c.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "d.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "e.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "0.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "1.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "2.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "3.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "4.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "5.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "6.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "7.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "8.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "9.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "a.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "b.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "0.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "1.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "2.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "3.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "4.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "5.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "6.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "7.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // IPv6 ULA (RFC 4193) zone "c.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "d.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // IPv6 Link Local (RFC 4291) zone "8.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "9.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "a.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "b.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // IPv6 Deprecated Site-Local Addresses (RFC 3879) zone "c.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "d.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "e.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; zone "f.e.f.ip6.arpa" { type master; file "/etc/namedb/master/empty.db"; }; // IP6.INT is Deprecated (RFC 4159) zone "ip6.int" { type master; file "/etc/namedb/master/empty.db"; }; // NB: Do not use the IP addresses below, they are faked, and only // serve demonstration/documentation purposes! // // Example slave zone config entries. It can be convenient to become // a slave at least for the zone your own domain is in. Ask // your network administrator for the IP address of the responsible // master name server. // // Do not forget to include the reverse lookup zone! // This is named after the first bytes of the IP address, in reverse // order, with ".IN-ADDR.ARPA" appended, or ".IP6.ARPA" for IPv6. // // Before starting to set up a master zone, make sure you fully // understand how DNS and BIND work. There are sometimes // non-obvious pitfalls. Setting up a slave zone is usually simpler. // // NB: Don't blindly enable the examples below. :-) Use actual names // and addresses instead. /* An example dynamic zone key "exampleorgkey" { algorithm hmac-md5; secret "sf87HJqjkqh8ac87a02lla=="; }; zone "example.org" { type master; allow-update { key "exampleorgkey"; }; file "/etc/namedb/dynamic/example.org"; }; */ /* Example of a slave reverse zone zone "1.168.192.in-addr.arpa" { type slave; file "/etc/namedb/slave/1.168.192.in-addr.arpa"; masters { 192.168.1.1; }; }; */
In named.conf, these are examples of slave entries for a forward and reverse zone.
For each new zone served, a new zone entry must be added to named.conf.
For example, the simplest zone entry for example.org can look like:
zone "example.org" { type master; file "master/example.org"; };
The zone is a master, as indicated by the type
statement, holding its zone information in /etc/namedb/master/example.org indicated by the file
statement.
zone "example.org" { type slave; file "slave/example.org"; };
In the slave case, the zone information is transferred from the master name server for the particular zone, and saved in the file specified. If and when the master server dies or is unreachable, the slave name server will have the transferred zone information and will be able to serve it.
An example master zone file for example.org (existing within /etc/namedb/master/example.org) is as follows:
$TTL 3600 ; 1 hour default TTL example.org. IN SOA ns1.example.org. admin.example.org. ( 2006051501 ; Serial 10800 ; Refresh 3600 ; Retry 604800 ; Expire 300 ; Negative Response TTL ) ; DNS Servers IN NS ns1.example.org. IN NS ns2.example.org. ; MX Records IN MX 10 mx.example.org. IN MX 20 mail.example.org. IN A 192.168.1.1 ; Machine Names localhost IN A 127.0.0.1 ns1 IN A 192.168.1.2 ns2 IN A 192.168.1.3 mx IN A 192.168.1.4 mail IN A 192.168.1.5 ; Aliases www IN CNAME example.org.
Note that every hostname ending in a “.” is an exact hostname, whereas everything without a trailing “.” is relative to the origin. For example, ns1 is translated into ns1.example.org.
The format of a zone file follows:
recordname IN recordtype value
The most commonly used DNS records:
start of zone authority
an authoritative name server
a host address
the canonical name for an alias
mail exchanger
a domain name pointer (used in reverse DNS)
example.org. IN SOA ns1.example.org. admin.example.org. ( 2006051501 ; Serial 10800 ; Refresh after 3 hours 3600 ; Retry after 1 hour 604800 ; Expire after 1 week 300 ) ; Negative Response TTL
the domain name, also the origin for this zone file.
the primary/authoritative name server for this zone.
the responsible person for this zone, email address with “@”
replaced. (<[email protected]>
becomes
admin.example.org)
the serial number of the file. This must be incremented each time the zone file is modified. Nowadays, many admins prefer a yyyymmddrr format for the serial number. 2006051501 would mean last modified 05/15/2006, the latter 01 being the first time the zone file has been modified this day. The serial number is important as it alerts slave name servers for a zone when it is updated.
IN NS ns1.example.org.
This is an NS entry. Every name server that is going to reply authoritatively for the zone must have one of these entries.
localhost IN A 127.0.0.1 ns1 IN A 192.168.1.2 ns2 IN A 192.168.1.3 mx IN A 192.168.1.4 mail IN A 192.168.1.5
The A record indicates machine names. As seen above, ns1.example.org would resolve to 192.168.1.2.
IN A 192.168.1.1
This line assigns IP address 192.168.1.1 to the current origin, in this case example.org.
www IN CNAME @
The canonical name record is usually used for giving aliases to a machine. In the example, www is aliased to the “master” machine whose name happens to be the same as the domain name example.org (192.168.1.1). CNAMEs can never be used together with another kind of record for the same hostname.
IN MX 10 mail.example.org.
The MX record indicates which mail servers are responsible for handling incoming mail for the zone. mail.example.org is the hostname of a mail server, and 10 is the priority of that mail server.
One can have several mail servers, with priorities of 10, 20 and so on. A mail server attempting to deliver to example.org would first try the highest priority MX (the record with the lowest priority number), then the second highest, etc, until the mail can be properly delivered.
For in-addr.arpa zone files (reverse DNS), the same format is used, except with PTR entries instead of A or CNAME.
$TTL 3600 1.168.192.in-addr.arpa. IN SOA ns1.example.org. admin.example.org. ( 2006051501 ; Serial 10800 ; Refresh 3600 ; Retry 604800 ; Expire 300 ) ; Negative Response TTL IN NS ns1.example.org. IN NS ns2.example.org. 1 IN PTR example.org. 2 IN PTR ns1.example.org. 3 IN PTR ns2.example.org. 4 IN PTR mx.example.org. 5 IN PTR mail.example.org.
This file gives the proper IP address to hostname mappings for the above fictitious domain.
It is worth noting that all names on the right side of a PTR record need to be fully qualified (i.e., end in a “.”).
A caching name server is a name server whose primary role is to resolve recursive queries. It simply asks queries of its own, and remembers the answers for later use.
Domain Name System Security Extensions, or DNSSEC for short, is a suite of specifications to protect resolving name servers from forged DNS data, such as spoofed DNS records. By using digital signatures, a resolver can verify the integrity of the record. Note that DNSSEC only provides integrity via digitally signing the Resource Records (RRs). It provides neither confidentiality nor protection against false end-user assumptions. This means that it cannot protect against people going to example.net instead of example.com. The only thing DNSSEC does is authenticate that the data has not been compromised in transit. The security of DNS is an important step in securing the Internet in general. For more in-depth details of how DNSSEC works, the relevant RFCs are a good place to start. See the list in Section 30.6.10.
The following sections will demonstrate how to enable DNSSEC for an authoritative DNS server and a recursive (or caching) DNS server running BIND 9. While all versions of BIND 9 support DNSSEC, it is necessary to have at least version 9.6.2 in order to be able to use the signed root zone when validating DNS queries. This is because earlier versions lack the required algorithms to enable validation using the root zone key. It is strongly recommended to use the latest version of BIND 9.7 or later to take advantage of automatic key updating for the root key, as well as other features to automatically keep zones signed and signatures up to date. Where configurations differ between 9.6.2 and 9.7 and later, differences will be pointed out.
Enabling DNSSEC validation of queries performed by a recursive DNS server requires a few changes to named.conf. Before making these changes the root zone key, or trust anchor, must be acquired. Currently the root zone key is not available in a file format BIND understands, so it has to be manually converted into the proper format. The key itself can be obtained by querying the root zone for it using dig. By running
% dig +multi +noall +answer DNSKEY . > root.dnskey
the key will end up in root.dnskey. The contents should look something like this:
. 93910 IN DNSKEY 257 3 8 ( AwEAAagAIKlVZrpC6Ia7gEzahOR+9W29euxhJhVVLOyQ bSEW0O8gcCjFFVQUTf6v58fLjwBd0YI0EzrAcQqBGCzh /RStIoO8g0NfnfL2MTJRkxoXbfDaUeVPQuYEhg37NZWA JQ9VnMVDxP/VHL496M/QZxkjf5/Efucp2gaDX6RS6CXp oY68LsvPVjR0ZSwzz1apAzvN9dlzEheX7ICJBBtuA6G3 LQpzW5hOA2hzCTMjJPJ8LbqF6dsV6DoBQzgul0sGIcGO Yl7OyQdXfZ57relSQageu+ipAdTTJ25AsRTAoub8ONGc LmqrAmRLKBP1dfwhYB4N7knNnulqQxA+Uk1ihz0= ) ; key id = 19036 . 93910 IN DNSKEY 256 3 8 ( AwEAAcaGQEA+OJmOzfzVfoYN249JId7gx+OZMbxy69Hf UyuGBbRN0+HuTOpBxxBCkNOL+EJB9qJxt+0FEY6ZUVjE g58sRr4ZQ6Iu6b1xTBKgc193zUARk4mmQ/PPGxn7Cn5V EGJ/1h6dNaiXuRHwR+7oWh7DnzkIJChcTqlFrXDW3tjt ) ; key id = 34525
Do not be alarmed if the obtained keys differ from this example. They might have changed since these instructions were last updated. This output actually contains two keys. The first key in the listing, with the value 257 after the DNSKEY record type, is the one needed. This value indicates that this is a Secure Entry Point (SEP), commonly known as a Key Signing Key (KSK). The second key, with value 256, is a subordinate key, commonly called a Zone Signing Key (ZSK). More on the different key types later in Section 30.6.8.2.
Now the key must be verified and formatted so that BIND can use it. To verify the key, generate a DS RR set. Create a file containing these RRs with
% dnssec-dsfromkey -f root-dnskey . > root.ds
These records use SHA-1 and SHA-256 respectively, and should look similar to the following example, where the longer is using SHA-256.
. IN DS 19036 8 1 B256BD09DC8DD59F0E0F0D8541B8328DD986DF6E . IN DS 19036 8 2 49AAC11D7B6F6446702E54A1607371607A1A41855200FD2CE1CDDE32F24E8FB5
The SHA-256 RR can now be compared to the digest in https://data.iana.org/root-anchors/root-anchors.xml. To be absolutely sure that the key has not been tampered with the data in the XML file can be verified using the PGP signature in https://data.iana.org/root-anchors/root-anchors.asc.
Next, the key must be formatted properly. This differs a little between BIND versions 9.6.2 and 9.7 and later. In version 9.7 support was added to automatically track changes to the key and update it as necessary. This is done using managed-keys as seen in the example below. When using the older version, the key is added using a trusted-keys statement and updates must be done manually. For BIND 9.6.2 the format should look like:
trusted-keys { "." 257 3 8 "AwEAAagAIKlVZrpC6Ia7gEzahOR+9W29euxhJhVVLOyQbSEW0O8gcCjF FVQUTf6v58fLjwBd0YI0EzrAcQqBGCzh/RStIoO8g0NfnfL2MTJRkxoX bfDaUeVPQuYEhg37NZWAJQ9VnMVDxP/VHL496M/QZxkjf5/Efucp2gaD X6RS6CXpoY68LsvPVjR0ZSwzz1apAzvN9dlzEheX7ICJBBtuA6G3LQpz W5hOA2hzCTMjJPJ8LbqF6dsV6DoBQzgul0sGIcGOYl7OyQdXfZ57relS Qageu+ipAdTTJ25AsRTAoub8ONGcLmqrAmRLKBP1dfwhYB4N7knNnulq QxA+Uk1ihz0="; };
For 9.7 the format will instead be:
managed-keys { "." initial-key 257 3 8 "AwEAAagAIKlVZrpC6Ia7gEzahOR+9W29euxhJhVVLOyQbSEW0O8gcCjF FVQUTf6v58fLjwBd0YI0EzrAcQqBGCzh/RStIoO8g0NfnfL2MTJRkxoX bfDaUeVPQuYEhg37NZWAJQ9VnMVDxP/VHL496M/QZxkjf5/Efucp2gaD X6RS6CXpoY68LsvPVjR0ZSwzz1apAzvN9dlzEheX7ICJBBtuA6G3LQpz W5hOA2hzCTMjJPJ8LbqF6dsV6DoBQzgul0sGIcGOYl7OyQdXfZ57relS Qageu+ipAdTTJ25AsRTAoub8ONGcLmqrAmRLKBP1dfwhYB4N7knNnulq QxA+Uk1ihz0="; };
The root key can now be added to named.conf either directly or by including a file containing the key. After these steps, configure BIND to do DNSSEC validation on queries by editing named.conf and adding the following to the options directive:
dnssec-enable yes; dnssec-validation yes;
To verify that it is actually working use dig to make a query for a signed zone using the resolver just configured. A successful reply will contain the AD flag to indicate the data was authenticated. Running a query such as
% dig @resolver +dnssec se ds
should return the DS RR for the .se zone. In the flags: section the AD flag should be set, as seen in:
... ;; flags: qr rd ra ad; QUERY: 1, ANSWER: 3, AUTHORITY: 0, ADDITIONAL: 1 ...
The resolver is now capable of authenticating DNS queries.
In order to get an authoritative name server to serve a DNSSEC signed zone a little more work is required. A zone is signed using cryptographic keys which must be generated. It is possible to use only one key for this. The preferred method however is to have a strong well-protected Key Signing Key (KSK) that is not rotated very often and a Zone Signing Key (ZSK) that is rotated more frequently. Information on recommended operational practices can be found in RFC 4641: DNSSEC Operational Practices. Practices regarding the root zone can be found in DNSSEC Practice Statement for the Root Zone KSK operator and DNSSEC Practice Statement for the Root Zone ZSK operator. The KSK is used to build a chain of authority to the data in need of validation and as such is also called a Secure Entry Point (SEP) key. A message digest of this key, called a Delegation Signer (DS) record, must be published in the parent zone to establish the trust chain. How this is accomplished depends on the parent zone owner. The ZSK is used to sign the zone, and only needs to be published there.
To enable DNSSEC for the example.com zone depicted in previous examples, the first step is to use dnssec-keygen to generate the KSK and ZSK key pair. This key pair can utilize different cryptographic algorithms. It is recommended to use RSA/SHA256 for the keys and 2048 bits key length should be enough. To generate the KSK for example.com, run
% dnssec-keygen -f KSK -a RSASHA256 -b 2048 -n ZONE example.com
and to generate the ZSK, run
% dnssec-keygen -a RSASHA256 -b 2048 -n ZONE example.com
dnssec-keygen outputs two files, the public and the private keys in files named similar to Kexample.com.+005+nnnnn.key (public) and Kexample.com.+005+nnnnn.private (private). The nnnnn part of the file name is a five digit key ID. Keep track of which key ID belongs to which key. This is especially important when having more than one key in a zone. It is also possible to rename the keys. For each KSK file do:
% mv Kexample.com.+005+nnnnn.key Kexample.com.+005+nnnnn.KSK.key % mv Kexample.com.+005+nnnnn.private Kexample.com.+005+nnnnn.KSK.private
For the ZSK files, substitute KSK for ZSK as necessary. The files can now be included in the zone file, using the $include statement. It should look something like this:
$include Kexample.com.+005+nnnnn.KSK.key ; KSK $include Kexample.com.+005+nnnnn.ZSK.key ; ZSK
Finally, sign the zone and tell BIND to use the signed zone file. To sign a zone dnssec-signzone is used. The command to sign the zone example.com, located in example.com.db would look similar to
% dnssec-signzone -o example.com -k Kexample.com.+005+nnnnn.KSK example.com.db Kexample.com.+005+nnnnn.ZSK.key
The key supplied to the -k
argument is the KSK and the other key file is the ZSK that should be used in the signing. It is
possible to supply more than one KSK
and ZSK, which will result in the zone
being signed with all supplied keys. This can be needed to supply zone data signed
using more than one algorithm. The output of dnssec-signzone is a zone file with all RRs signed. This output will end up in a file
with the extension .signed, such as example.com.db.signed. The DS records will also be written to a separate file dsset-example.com. To use this signed zone just modify the
zone directive in named.conf to use example.com.db.signed. By default, the signatures are only
valid 30 days, meaning that the zone needs to be resigned in about 15 days to be
sure that resolvers are not caching records with stale signatures. It is
possible to make a script and a cron job to do this. See relevant manuals for
details.
Be sure to keep private keys confidential, as with all cryptographic keys. When changing a key it is best to include the new key into the zone, while still signing with the old one, and then move over to using the new key to sign. After these steps are done the old key can be removed from the zone. Failure to do this might render the DNS data unavailable for a time, until the new key has propagated through the DNS hierarchy. For more information on key rollovers and other DNSSEC operational issues, see RFC 4641: DNSSEC Operational practices.
Beginning with BIND version 9.7 a new
feature called Smart Signing
was introduced. This feature aims to make the key management and signing
process simpler by automating parts of the task. By putting the keys into a
directory called a key
repository, and using the new option auto-dnssec, it is possible to create a dynamic zone which
will be resigned as needed. To update this zone use nsupdate with the new option -l
. rndc has also grown the
ability to sign zones with keys in the key repository, using the option sign
. To tell BIND to use this automatic signing and zone updating for example.com, add the following to named.conf:
zone example.com { type master; key-directory "/etc/named/keys"; update-policy local; auto-dnssec maintain; file "/etc/named/dynamic/example.com.zone"; };
After making these changes, generate keys for the zone as explained in Section 30.6.8.2, put those keys in the key repository given as the argument to the key-directory in the zone configuration and the zone will be signed automatically. Updates to a zone configured this way must be done using nsupdate, which will take care of re-signing the zone with the new data added. For further details, see Section 30.6.10 and the BIND documentation.
Although BIND is the most common implementation of DNS, there is always the issue of security. Possible and exploitable security holes are sometimes found.
While FreeBSD automatically drops named into a chroot(8) environment; there are several other security mechanisms in place which could help to lure off possible DNS service attacks.
It is always good idea to read CERT's security advisories and to subscribe to the FreeBSD security notifications mailing list to stay up to date with the current Internet and FreeBSD security issues.
Tip: If a problem arises, keeping sources up to date and having a fresh build of named may help.
FreeBSD is used to run some of the busiest web sites in the world. The majority of web servers on the Internet are using the Apache HTTP Server. Apache software packages should be included on your FreeBSD installation media. If you did not install Apache when you first installed FreeBSD, then you can install it from the www/apache22 port.
Once Apache has been installed successfully, it must be configured.
Note: This section covers version 2.2.X of the Apache HTTP Server as that is the most widely used version for FreeBSD. For more detailed information beyond the scope of this document about Apache 2.X, please see http://httpd.apache.org/.
The main Apache HTTP Server configuration file is installed as /usr/local/etc/apache22/httpd.conf on FreeBSD. This file is a typical UNIX text configuration file with comment lines beginning with the # character. A comprehensive description of all possible configuration options is outside the scope of this book, so only the most frequently modified directives will be described here.
This specifies the default directory hierarchy for the Apache installation. Binaries are stored in the bin and sbin subdirectories of the server root, and configuration files are stored in etc/apache.
The address to which problems with the server should be emailed. This address appears on some server-generated pages, such as error documents.
ServerName allows you to set a host name which is sent back to clients for your server if it is different than the one that the host is configured with (i.e., use www instead of the host's real name).
DocumentRoot: The directory out of which you will serve your documents. By default, all requests are taken from this directory, but symbolic links and aliases may be used to point to other locations.
It is always a good idea to make backup copies of your Apache configuration file before making changes. Once you are satisfied with your initial configuration you are ready to start running Apache.
The www/apache22 port installs an rc(8) script to aid in starting, stopping, and restarting Apache, which can be found in the /usr/local/etc/rc.d/ directory.
To launch Apache at system startup, add the following line to /etc/rc.conf:
apache22_enable="YES"
If Apache should be started with non-default options, the following line may be added to /etc/rc.conf:
apache22_flags=""
The Apache configuration can be tested for errors before starting the httpd daemon for the first time, or after making subsequent configuration changes while httpd is running. This can be done by the rc(8) script directly, or by the service(8) utility by issuing one of the following commands:
# /usr/local/etc/rc.d/apache22 configtest
# service apache22 configtest
Note: It is important to note that the configtest is not an rc(8) standard, and should not be expected to work for all rc(8) startup scripts.
If Apache does not report configuration errors, the Apache httpd can be started with the same rc(8) and service(8) mechanisms:
# /usr/local/etc/rc.d/apache22 start
# service apache22 start
The httpd service can be tested by entering http://localhost in a web browser, replacing localhost with the fully-qualified domain name of the machine running httpd, if it is not the local machine. The default web page that is displayed is /usr/local/www/apache22/data/index.html.
Apache supports two different types of Virtual Hosting. The first method is Name-based Virtual Hosting. Name-based virtual hosting uses the clients HTTP/1.1 headers to figure out the hostname. This allows many different domains to share the same IP address.
To setup Apache to use Name-based Virtual Hosting add an entry like the following to your httpd.conf:
NameVirtualHost *
If your webserver was named www.domain.tld and you wanted to setup a virtual domain for www.someotherdomain.tld then you would add the following entries to httpd.conf:
<VirtualHost *> ServerName www.domain.tld DocumentRoot /www/domain.tld </VirtualHost> <VirtualHost *> ServerName www.someotherdomain.tld DocumentRoot /www/someotherdomain.tld </VirtualHost>
Replace the addresses with the addresses you want to use and the path to the documents with what you are using.
For more information about setting up virtual hosts, please consult the official Apache documentation at: http://httpd.apache.org/docs/vhosts/.
There are many different Apache modules available to add functionality to the basic server. The FreeBSD Ports Collection provides an easy way to install Apache together with some of the more popular add-on modules.
The mod_ssl module uses the OpenSSL library to provide strong cryptography via the Secure Sockets Layer (SSL v2/v3) and Transport Layer Security (TLS v1) protocols. This module provides everything necessary to request a signed certificate from a trusted certificate signing authority so that you can run a secure web server on FreeBSD.
The mod_ssl module is built by default, but can be enabled by specifying -DWITH_SSL at compile time.
There are Apache modules for most major scripting languages. These modules typically make it possible to write Apache modules entirely in a scripting language. They are also often used as a persistent interpreter embedded into the server that avoids the overhead of starting an external interpreter and the startup-time penalty for dynamic websites, as described in the next section.
In the last decade, more businesses have turned to the Internet in order to enhance their revenue and increase exposure. This has also increased the need for interactive web content. While some companies, such as Microsoft, have introduced solutions into their proprietary products, the open source community answered the call. Modern options for dynamic web content include Django, Ruby on Rails, mod_perl2, and mod_php.
Django is a BSD licensed framework designed to allow developers to write high performance, elegant web applications quickly. It provides an object-relational mapper so that data types are developed as Python objects, and a rich dynamic database-access API is provided for those objects without the developer ever having to write SQL. It also provides an extensible template system so that the logic of the application is separated from the HTML presentation.
Django depends on mod_python, Apache, and an SQL database engine of your choice. The FreeBSD Port will install all of these pre-requisites for you with the appropriate flags.
Example 30-3. Installing Django with Apache2, mod_python3, and PostgreSQL
# cd /usr/ports/www/py-django; make all install clean -DWITH_MOD_PYTHON3 -DWITH_POSTGRESQL
Once Django and these pre-requisites are installed, you will need to create a Django project directory and then configure Apache to use the embedded Python interpreter to call your application for specific URLs on your site.
Example 30-4. Apache Configuration for Django/mod_python
You will need to add a line to the apache httpd.conf file to configure Apache to pass requests for certain URLs to your web application:
<Location "/"> SetHandler python-program PythonPath "['/dir/to/your/django/packages/'] + sys.path" PythonHandler django.core.handlers.modpython SetEnv DJANGO_SETTINGS_MODULE mysite.settings PythonAutoReload On PythonDebug On </Location>
Ruby on Rails is another open source web framework that provides a full development stack and is optimized to make web developers more productive and capable of writing powerful applications quickly. It can be installed easily from the ports system.
# cd /usr/ports/www/rubygem-rails; make all install clean
The Apache/Perl integration project brings together the full power of the Perl programming language and the Apache HTTP Server. With the mod_perl2 module it is possible to write Apache modules entirely in Perl. In addition, the persistent interpreter embedded in the server avoids the overhead of starting an external interpreter and the penalty of Perl start-up time.
mod_perl2 is available in the www/mod_perl2 port.
PHP, also known as “PHP: Hypertext Preprocessor” is a general-purpose scripting language that is especially suited for Web development. Capable of being embedded into HTML its syntax draws upon C, Java, and Perl with the intention of allowing web developers to write dynamically generated webpages quickly.
To gain support for PHP5 for the Apache web server, begin by installing the lang/php5 port.
If the lang/php5 port is being installed for the first time, available OPTIONS will be displayed automatically. If a menu is not displayed, i.e., because the lang/php5 port has been installed some time in the past, it is always possible to bring the options dialog up again by running:
# make config
in the port directory.
In the options dialog, check the APACHE option to build mod_php5 as a loadable module for the Apache web server.
Note: A lot of sites are still using PHP4 for various reasons (i.e., compatibility issues or already deployed web applications). If the mod_php4 is needed instead of mod_php5, then please use the lang/php4 port. The lang/php4 port supports many of the configuration and build-time options of the lang/php5 port.
This will install and configure the modules required to support dynamic PHP applications. Check to ensure the following sections have been added to /usr/local/etc/apache22/httpd.conf:
LoadModule php5_module libexec/apache/libphp5.so
AddModule mod_php5.c <IfModule mod_php5.c> DirectoryIndex index.php index.html </IfModule> <IfModule mod_php5.c> AddType application/x-httpd-php .php AddType application/x-httpd-php-source .phps </IfModule>
Once completed, a simple call to the apachectl command for a graceful restart is needed to load the PHP module:
# apachectl graceful
For future upgrades of PHP, the make config command will not be required; the selected OPTIONS are saved automatically by the FreeBSD Ports framework.
The PHP support in FreeBSD is extremely modular so the base install is very limited. It is very easy to add support using the lang/php5-extensions port. This port provides a menu driven interface to PHP extension installation. Alternatively, individual extensions can be installed using the appropriate port.
For instance, to add support for the MySQL database server to PHP5, simply install the port databases/php5-mysql.
After installing an extension, the Apache server must be reloaded to pick up the new configuration changes:
# apachectl graceful
The File Transfer Protocol (FTP) provides users with a simple way to transfer files to and from an FTP server. FreeBSD includes FTP server software, ftpd, in the base system. This makes setting up and administering an FTP server on FreeBSD very straightforward.
The most important configuration step is deciding which accounts will be allowed access to the FTP server. A normal FreeBSD system has a number of system accounts used for various daemons, but unknown users should not be allowed to log in with these accounts. The /etc/ftpusers file is a list of users disallowed any FTP access. By default, it includes the aforementioned system accounts, but it is possible to add specific users here that should not be allowed access to FTP.
You may want to restrict the access of some users without preventing them completely from using FTP. This can be accomplished with the /etc/ftpchroot file. This file lists users and groups subject to FTP access restrictions. The ftpchroot(5) manual page has all of the details so it will not be described in detail here.
If you would like to enable anonymous FTP access to your server, then you must create a user named ftp on your FreeBSD system. Users will then be able to log on to your FTP server with a username of ftp or anonymous and with any password (by convention an email address for the user should be used as the password). The FTP server will call chroot(2) when an anonymous user logs in, to restrict access to only the home directory of the ftp user.
There are two text files that specify welcome messages to be displayed to FTP clients. The contents of the file /etc/ftpwelcome will be displayed to users before they reach the login prompt. After a successful login, the contents of the file /etc/ftpmotd will be displayed. Note that the path to this file is relative to the login environment, so the file ~ftp/etc/ftpmotd would be displayed for anonymous users.
Once the FTP server has been configured properly, it must be enabled in /etc/inetd.conf. All that is required here is to remove the comment symbol “#” from in front of the existing ftpd line :
ftp stream tcp nowait root /usr/libexec/ftpd ftpd -l
As explained in Example 30-1, the inetd configuration must be reloaded after this configuration file is changed. Please refer to Section 30.2.2 for details on enabling inetd on your system.
Alternatively, ftpd can also be started as a stand-alone server. In this case, it is sufficient to set the appropriate variable in /etc/rc.conf:
ftpd_enable="YES"
After setting the above variable, the stand-alone server will be started at the next reboot, or it can be started manually by executing the following command as root:
# /etc/rc.d/ftpd start
You can now log on to your FTP server by typing:
% ftp localhost
The ftpd daemon uses syslog(3) to log messages. By default, the system log daemon will put messages related to FTP in the /var/log/xferlog file. The location of the FTP log can be modified by changing the following line in /etc/syslog.conf:
ftp.info /var/log/xferlog
Be aware of the potential problems involved with running an anonymous FTP server. In particular, you should think twice about allowing anonymous users to upload files. You may find that your FTP site becomes a forum for the trade of unlicensed commercial software or worse. If you do need to allow anonymous FTP uploads, then you should set up the permissions so that these files can not be read by other anonymous users until they have been reviewed.
Samba is a popular open source software package that provides file and print services for Microsoft Windows clients. Such clients can connect to and use FreeBSD filespace as if it was a local disk drive, or FreeBSD printers as if they were local printers.
Samba software packages should be included on your FreeBSD installation media. If you did not install Samba when you first installed FreeBSD, then you can install it from the net/samba34 port or package.
A default Samba configuration file is installed as /usr/local/share/examples/samba34/smb.conf.default. This file must be copied to /usr/local/etc/smb.conf and customized before Samba can be used.
The smb.conf file contains runtime configuration information for Samba, such as definitions of the printers and “file system shares” that you would like to share with Windows clients. The Samba package includes a web based tool called swat which provides a simple way of configuring the smb.conf file.
The Samba Web Administration Tool (SWAT) runs as a daemon from inetd. Therefore, inetd must be enabled as shown in Section 30.2, and the following line in /etc/inetd.conf should be uncommented before swat can be used to configure Samba:
swat stream tcp nowait/400 root /usr/local/sbin/swat swat
As explained in Example 30-1, the inetd configuration must be reloaded after this configuration file is changed.
Once swat has been enabled in inetd.conf, you can use a browser to connect to http://localhost:901. You will first have to log on with the system root account.
Once you have successfully logged on to the main Samba configuration page, you can browse the system documentation, or begin by clicking on the
tab. The section corresponds to the variables that are set in the [global] section of /usr/local/etc/smb.conf.Whether you are using swat or editing /usr/local/etc/smb.conf directly, the first directives you are likely to encounter when configuring Samba are:
NT Domain-Name or Workgroup-Name for the computers that will be accessing this server.
This sets the NetBIOS name by which a Samba server is known. By default it is the same as the first component of the host's DNS name.
This sets the string that will be displayed with the net view command and some other networking tools that seek to display descriptive text about the server.
Two of the most important settings in /usr/local/etc/smb.conf are the security model chosen, and the backend password format for client users. The following directives control these options:
The two most common options here are security = share and security = user. If your clients use usernames that are the same as their usernames on your FreeBSD machine then you will want to use user level security. This is the default security policy and it requires clients to first log on before they can access shared resources.
In share level security, client do not need to log onto the server with a valid username and password before attempting to connect to a shared resource. This was the default security model for older versions of Samba.
Samba has several different backend authentication models. You can authenticate clients with LDAP, NIS+, a SQL database, or a modified password file. The default authentication method is smbpasswd, and that is all that will be covered here.
Assuming that the default smbpasswd backend is used, the /usr/local/etc/samba/smbpasswd file must be created to allow Samba to authenticate clients. If you would like to give your UNIX user accounts access from Windows clients, use the following command:
# smbpasswd -a username
Note: The recommended backend is now tdbsam, and the following command should be used to add user accounts:
# pdbedit-a
-u
username
Please see the Official Samba HOWTO for additional information about configuration options. With the basics outlined here, you should have everything you need to start running Samba.
The net/samba34 port adds a new startup script, which can be used to control Samba. To enable this script, so that it can be used for example to start, stop or restart Samba, add the following line to the /etc/rc.conf file:
samba_enable="YES"
Or, for fine grain control:
nmbd_enable="YES"
smbd_enable="YES"
Note: This will also configure Samba to automatically start at system boot time.
It is possible then to start Samba at any time by typing:
# /usr/local/etc/rc.d/samba start Starting SAMBA: removing stale tdbs : Starting nmbd. Starting smbd.
Please refer to Section 12.7 for more information about using rc scripts.
Samba actually consists of three separate daemons. You should see that both the nmbd and smbd daemons are started by the samba script. If you enabled winbind name resolution services in smb.conf, then you will also see that the winbindd daemon is started.
You can stop Samba at any time by typing :
# /usr/local/etc/rc.d/samba stop
Samba is a complex software suite with functionality that allows broad integration with Microsoft Windows networks. For more information about functionality beyond the basic installation described here, please see http://www.samba.org.
Over time, a computer's clock is prone to drift. The Network Time Protocol (NTP) is one way to ensure your clock stays accurate.
Many Internet services rely on, or greatly benefit from, computers' clocks being accurate. For example, a web server may receive requests to send a file if it has been modified since a certain time. In a local area network environment, it is essential that computers sharing files from the same file server have synchronized clocks so that file timestamps stay consistent. Services such as cron(8) also rely on an accurate system clock to run commands at the specified times.
FreeBSD ships with the ntpd(8) NTP server which can be used to query other NTP servers to set the clock on your machine or provide time services to others.
In order to synchronize your clock, you will need to find one or more NTP servers to use. Your network administrator or ISP may have set up an NTP server for this purpose—check their documentation to see if this is the case. There is an online list of publicly accessible NTP servers which you can use to find an NTP server near to you. Make sure you are aware of the policy for any servers you choose, and ask for permission if required.
Choosing several unconnected NTP servers is a good idea in case one of the servers you are using becomes unreachable or its clock is unreliable. ntpd(8) uses the responses it receives from other servers intelligently—it will favor unreliable servers less than reliable ones.
If you only wish to synchronize your clock when the machine boots up, you can use ntpdate(8). This may be appropriate for some desktop machines which are frequently rebooted and only require infrequent synchronization, but most machines should run ntpd(8).
Using ntpdate(8) at boot time is also a good idea for machines that run ntpd(8). The ntpd(8) program changes the clock gradually, whereas ntpdate(8) sets the clock, no matter how great the difference between a machine's current clock setting and the correct time.
To enable ntpdate(8) at boot
time, add ntpdate_enable="YES" to /etc/rc.conf. You will also need to specify all servers you
wish to synchronize with and any flags to be passed to ntpdate(8) in
ntpdate_flags
.
NTP is configured by the /etc/ntp.conf file in the format described in ntp.conf(5). Here is a simple example:
server ntplocal.example.com prefer server timeserver.example.org server ntp2a.example.net driftfile /var/db/ntp.drift
The server option specifies which servers are to be used, with one server listed on each line. If a server is specified with the prefer argument, as with ntplocal.example.com, that server is preferred over other servers. A response from a preferred server will be discarded if it differs significantly from other servers' responses, otherwise it will be used without any consideration to other responses. The prefer argument is normally used for NTP servers that are known to be highly accurate, such as those with special time monitoring hardware.
The driftfile option specifies which file is used to store the system clock's frequency offset. The ntpd(8) program uses this to automatically compensate for the clock's natural drift, allowing it to maintain a reasonably correct setting even if it is cut off from all external time sources for a period of time.
The driftfile option specifies which file is used to store information about previous responses from the NTP servers you are using. This file contains internal information for NTP. It should not be modified by any other process.
By default, your NTP server will be accessible to all hosts on the Internet. The restrict option in /etc/ntp.conf allows you to control which machines can access your server.
If you want to deny all machines from accessing your NTP server, add the following line to /etc/ntp.conf:
restrict default ignore
Note: This will also prevent access from your server to any servers listed in your local configuration. If you need to synchronise your NTP server with an external NTP server you should allow the specific server. See the ntp.conf(5) manual for more information.
If you only want to allow machines within your own network to synchronize their clocks with your server, but ensure they are not allowed to configure the server or used as peers to synchronize against, add
restrict 192.168.1.0 mask 255.255.255.0 nomodify notrap
instead, where 192.168.1.0 is an IP address on your network and 255.255.255.0 is your network's netmask.
/etc/ntp.conf can contain multiple restrict options. For more details, see the Access Control Support subsection of ntp.conf(5).
To ensure the NTP server is started at boot time, add the line ntpd_enable="YES" to /etc/rc.conf. If
you wish to pass additional flags to ntpd(8), edit the
ntpd_flags
parameter in /etc/rc.conf.
To start the server without rebooting your machine, run ntpd being sure to specify any additional parameters from ntpd_flags
in /etc/rc.conf. For
example:
# ntpd -p /var/run/ntpd.pid
The ntpd(8) program does not need a permanent connection to the Internet to function properly. However, if you have a temporary connection that is configured to dial out on demand, it is a good idea to prevent NTP traffic from triggering a dial out or keeping the connection alive. If you are using user PPP, you can use filter directives in /etc/ppp/ppp.conf. For example:
set filter dial 0 deny udp src eq 123 # Prevent NTP traffic from initiating dial out set filter dial 1 permit 0 0 set filter alive 0 deny udp src eq 123 # Prevent incoming NTP traffic from keeping the connection open set filter alive 1 deny udp dst eq 123 # Prevent outgoing NTP traffic from keeping the connection open set filter alive 2 permit 0/0 0/0
For more details see the PACKET FILTERING section in ppp(8) and the examples in /usr/share/examples/ppp/.
Note: Some Internet access providers block low-numbered ports, preventing NTP from functioning since replies never reach your machine.
Documentation for the NTP server can be found in /usr/share/doc/ntp/ in HTML format.
Interacting with system logs is a crucial aspect of both security and system administration. Monitoring the log files of multiple hosts can get very unwieldy when these hosts are distributed across medium or large networks, or when they are parts of various different types of networks. In these cases, configuring remote logging may make the whole process a lot more comfortable.
Centralized logging to a specific logging host can reduce some of the administrative burden of log file administration. Log file aggregation, merging and rotation can be configured in one location, using the native tools of FreeBSD, such as syslogd(8) and newsyslog(8). In the following example configuration, host A, named logserv.example.com, will collect logging information for the local network. Host B, named logclient.example.com will pass logging information to the server system. In live configurations, both hosts require proper forward and reverse DNS or entries in /etc/hosts. Otherwise, data will be rejected by the server.
Log servers are machines configured to accept logging information from remote hosts. In most cases this is to ease configuration, in other cases it may just be a better administration move. Regardless of reason, there are a few requirements before continuing.
A properly configured logging server has met the following minimal requirements:
The firewall ruleset allows for UDP to be passed on port 514 on both the client and server;
syslogd has been configured to accept remote messages from client machines;
The syslogd server and all client machines must have valid entries for both forward and reverse DNS, or be properly configured in /etc/hosts.
To configure the log server, the client must be listed in /etc/syslog.conf, and the logging facility must be specified:
+logclient.example.com *.* /var/log/logclient.log
Note: More information on various supported and available facilities may be found in the syslog.conf(5) manual page.
Once added, all facility messages will be logged to the file specified previously, /var/log/logclient.log.
The server machine must also have the following listing placed inside /etc/rc.conf:
syslogd_enable="YES" syslogd_flags="-a logclient.example.com -v -v"
The first option will enable the syslogd daemon on boot
up, and the second option allows data from the specified client to be accepted on
this server. The latter part, using -v -v
, will
increase the verbosity of logged messages. This is extremely useful for tweaking
facilities as administrators are able to see what type of messages are being logged
under which facility.
Multiple -a
options may be specified to allow logging
from multiple clients. IP addresses and
whole netblocks may also be specified, see the syslog(3) manual page
for a full list of possible options.
Finally, the log file should be created. The method used does not matter, but touch(1) works great for situations such as this:
# touch /var/log/logclient.log
At this point, the syslogd daemon should be restarted and verified:
# /etc/rc.d/syslogd restart # pgrep syslog
If a PID is returned, the server has been restarted successfully, and client configuration may begin. If the server has not restarted, consult the /var/log/messages log for any output.
A logging client is a machine which sends log information to a logging server in addition to keeping local copies.
Similar to log servers, clients must also meet a few minimum requirements:
syslogd(8) must be configured to send messages of specific types to a log server, which must accept them;
The firewall must allow UDP packets through on port 514;
Both forward and reverse DNS must be configured or have proper entries in the /etc/hosts.
Client configuration is a bit more relaxed when compared to that of the servers. The client machine must have the following listing placed inside /etc/rc.conf:
syslogd_enable="YES" syslogd_flags="-s -v -v"
As before, these entries will enable the syslogd daemon
on boot up, and increases the verbosity of logged messages. The -s
option prevents logs from being accepted by this client
from other hosts.
Facilities describe the system part for which a message is generated. For an example, ftp and ipfw are both facilities. When log messages are generated for those two services, they will normally include those two utilities in any log messages. Facilities are accompanied with a priority or level, which is used to mark how important a log message is. The most common will be the warning and info. Please refer to the syslog(3) manual page for a full list of available facilities and priorities.
The logging server must be defined in the client's /etc/syslog.conf. In this instance, the @ symbol is used to send logging data to a remote server and would look similar to the following entry:
*.* @logserv.example.com
Once added, syslogd must be restarted for the changes to take effect:
# /etc/rc.d/syslogd restart
To test that log messages are being sent across the network, use logger(1) on the client to send a message to syslogd:
# logger "Test message from logclient"
This message should now exist both in /var/log/messages on the client, and /var/log/logclient.log on the log server.
In certain cases, debugging may be required if messages are not being received on the log server. There are several reasons this may occur; however, the most common two are network connection issues and DNS issues. To test these cases, ensure both hosts are able to reach one another using the hostname specified in /etc/rc.conf. If this appears to be working properly, an alternation to the syslogd_flags option in /etc/rc.conf will be required.
In the following example, /var/log/logclient.log is empty, and the /var/log/messages files indicate no reason for the failure. To increase debugging output, change the syslogd_flags option to look like the following example, and issue a restart:
syslogd_flags="-d -a logclien.example.com -v -v"
# /etc/rc.d/syslogd restart
Debugging data similar to the following will flash on the screen immediately after the restart:
logmsg: pri 56, flags 4, from logserv.example.com, msg syslogd: restart syslogd: restarted logmsg: pri 6, flags 4, from logserv.example.com, msg syslogd: kernel boot file is /boot/kernel/kernel Logging to FILE /var/log/messages syslogd: kernel boot file is /boot/kernel/kernel cvthname(192.168.1.10) validate: dgram from IP 192.168.1.10, port 514, name logclient.example.com; rejected in rule 0 due to name mismatch.
It appears obvious the messages are being rejected due to a name mismatch. After reviewing the configuration bit by bit, it appears a typo in the following /etc/rc.conf line has an issue:
syslogd_flags="-d -a logclien.example.com -v -v"
The line should contain logclient, not logclien. After the proper alterations are made, a restart is issued with expected results:
# /etc/rc.d/syslogd restart logmsg: pri 56, flags 4, from logserv.example.com, msg syslogd: restart syslogd: restarted logmsg: pri 6, flags 4, from logserv.example.com, msg syslogd: kernel boot file is /boot/kernel/kernel syslogd: kernel boot file is /boot/kernel/kernel logmsg: pri 166, flags 17, from logserv.example.com, msg Dec 10 20:55:02 <syslog.err> logserv.example.com syslogd: exiting on signal 2 cvthname(192.168.1.10) validate: dgram from IP 192.168.1.10, port 514, name logclient.example.com; accepted in rule 0. logmsg: pri 15, flags 0, from logclient.example.com, msg Dec 11 02:01:28 trhodes: Test message 2 Logging to FILE /var/log/logclient.log Logging to FILE /var/log/messages
At this point, the messages are being properly received and placed in the correct file.
As with any network service, security requirements should be considered before implementing this configuration. At times, log files may contain sensitive data about services enabled on the local host, user accounts, and configuration data. Network data sent from the client to the server will not be encrypted nor password protected. If a need for encryption exists, it might be possible to use security/stunnel, which will transmit data over an encrypted tunnel.
Local security is also an issue. Log files are not encrypted during use or after log rotation. Local users may access these files to gain additional insight on system configuration. In those cases, setting proper permissions on these files will be critical. The newsyslog(8) utility supports setting permissions on newly created and rotated log files. Setting log files to mode 600 should prevent any unwanted snooping by local users.
Firewalls make it possible to filter incoming and outgoing traffic that flows through your system. A firewall can use one or more sets of “rules” to inspect the network packets as they come in or go out of your network connections and either allows the traffic through or blocks it. The rules of a firewall can inspect one or more characteristics of the packets, including but not limited to the protocol type, the source or destination host address, and the source or destination port.
Firewalls can greatly enhance the security of a host or a network. They can be used to do one or more of the following things:
To protect and insulate the applications, services and machines of your internal network from unwanted traffic coming in from the public Internet.
To limit or disable access from hosts of the internal network to services of the public Internet.
To support network address translation (NAT), which allows your internal network to use private IP addresses and share a single connection to the public Internet (either with a single IP address or by a shared pool of automatically assigned public addresses).
After reading this chapter, you will know:
How to properly define packet filtering rules.
The differences between the firewalls built into FreeBSD.
How to use and configure the OpenBSD PF firewall.
How to use and configure IPFILTER.
How to use and configure IPFW.
Before reading this chapter, you should:
Understand basic FreeBSD and Internet concepts.
There are two basic ways to create firewall rulesets: “inclusive” or “exclusive”. An exclusive firewall allows all traffic through except for the traffic matching the ruleset. An inclusive firewall does the reverse. It only allows traffic matching the rules through and blocks everything else.
An inclusive firewall offers much better control of the outgoing traffic, making it a better choice for systems that offer services to the public Internet. It also controls the type of traffic originating from the public Internet that can gain access to your private network. All traffic that does not match the rules, is blocked and logged by design. Inclusive firewalls are generally safer than exclusive firewalls because they significantly reduce the risk of allowing unwanted traffic to pass through them.
Note: Unless noted otherwise, all configuration and example rulesets in this chapter, create inclusive type firewalls.
Security can be tightened further using a “stateful firewall”. This type of firewall keeps track of which connections are opened through the firewall and will only allow traffic through which either matches an existing connection or opens a new one. The disadvantage of a stateful firewall is that it can be vulnerable to Denial of Service (DoS) attacks if a lot of new connections are opened very fast. With most firewalls it is possible to use a combination of stateful and non-stateful behavior to make an optimal firewall for the site.
FreeBSD has three different firewall packages built into the base system. They are: IPFILTER (also known as IPF), IPFIREWALL (also known as IPFW), and OpenBSD's PacketFilter (also known as PF). FreeBSD also has two built in packages for traffic shaping (basically controlling bandwidth usage): altq(4) and dummynet(4). Dummynet has traditionally been closely tied with IPFW, and ALTQ with PF. Traffic shaping for IPFILTER can currently be done with IPFILTER for NAT and filtering and IPFW with dummynet(4) or by using PF with ALTQ. IPFW, and PF all use rules to control the access of packets to and from your system, although they go about it different ways and have a different rule syntax.
The reason that FreeBSD has multiple built in firewall packages is that different people have different requirements and preferences. No single firewall package is the best.
The author prefers IPFILTER because its stateful rules are much less complicated to use in a NAT environment and it has a built in ftp proxy that simplifies the rules to allow secure outbound FTP usage.
Since all firewalls are based on inspecting the values of selected packet control fields, the creator of the firewall rulesets must have an understanding of how TCP/IP works, what the different values in the packet control fields are and how these values are used in a normal session conversation. For a good explanation go to: http://www.ipprimer.com/overview.cfm.
As of July 2003 the OpenBSD firewall software application known as PF was ported to FreeBSD and made available in the FreeBSD Ports Collection. Released in 2004, FreeBSD 5.3 was the first release that contained PF as an integrated part of the base system. PF is a complete, full-featured firewall that has optional support for ALTQ (Alternate Queuing). ALTQ provides Quality of Service (QoS) functionality.
The OpenBSD Project does an outstanding job of maintaining the PF FAQ. As such, this section of the Handbook will focus on PF as it pertains to FreeBSD while providing some general information regarding usage. For detailed usage information please refer to the PF FAQ.
More information about PF for FreeBSD can be found at http://pf4freebsd.love2party.net/.
To load the PF Kernel Module add the following line to /etc/rc.conf:
pf_enable="YES"
Then run the startup script to load the module:
# /etc/rc.d/pf start
Note that the PF Module will not load if it cannot find the ruleset config file. The default location is /etc/pf.conf. If the PF ruleset is located somewhere else, PF can be instructed to look there by adding a line like the following to /etc/rc.conf:
pf_rules="/path/to/pf.conf"
The sample pf.conf can be found in /usr/share/examples/pf/.
The PF module can also be loaded manually from the command line:
# kldload pf.ko
Logging support for PF is provided by the pflog.ko and can be loaded by adding the following line to /etc/rc.conf:
pflog_enable="YES"
Then run the startup script to load the module:
# /etc/rc.d/pflog start
If you need other PF features you will need to compile PF support into the kernel.
While it is not necessary that you compile PF support into the FreeBSD kernel, you may want to do so to take advantage of one of PF's advanced features that is not included in the loadable module, namely pfsync(4), which is a pseudo-device that exposes certain changes to the state table used by PF. It can be paired with carp(4) to create failover firewalls using PF. More information on CARP can be found in Section 32.14 of the Handbook.
The PF kernel options can be found in /usr/src/sys/conf/NOTES and are reproduced below:
device pf device pflog device pfsync
The device pf option enables support for the “Packet Filter” firewall (pf(4)).
The device pflog option enables the optional pflog(4) pseudo network device which can be used to log traffic to a bpf(4) descriptor. The pflogd(8) daemon can be used to store the logging information to disk.
The device pfsync option enables the optional pfsync(4) pseudo-network device that is used to monitor “state changes”.
The following rc.conf(5) statements configure PF and pflog(4) at boot:
pf_enable="YES" # Enable PF (load module if required) pf_rules="/etc/pf.conf" # rules definition file for pf pf_flags="" # additional flags for pfctl startup pflog_enable="YES" # start pflogd(8) pflog_logfile="/var/log/pflog" # where pflogd should store the logfile pflog_flags="" # additional flags for pflogd startup
If you have a LAN behind this firewall and have to forward packets for the computers on the LAN or want to do NAT, you will need the following option as well:
gateway_enable="YES" # Enable as LAN gateway
PF reads its configuration rules from pf.conf(5) (/etc/pf.conf by default) and it modifies, drops, or passes packets according to the rules or definitions specified there. The FreeBSD installation includes several sample files located in /usr/share/examples/pf/. Please refer to the PF FAQ for complete coverage of PF rulesets.
Warning: When browsing the PF FAQ, please keep in mind that different versions of FreeBSD can contain different versions of PF. Currently, FreeBSD 8.X and prior is using the same version of PF as OpenBSD 4.1. FreeBSD 9.X and later is using the same version of PF as OpenBSD 4.5.
The FreeBSD packet filter mailing list is a good place to ask questions about configuring and running the PF firewall. Do not forget to check the mailing list archives before asking questions!
Use pfctl(8) to control PF. Below are some useful commands (be sure to review the pfctl(8) man page for all available options):
Command | Purpose |
---|---|
pfctl -e |
Enable PF |
pfctl -d |
Disable PF |
pfctl -F all -f /etc/pf.conf |
Flush all rules (nat, filter, state, table, etc.) and reload from the file /etc/pf.conf |
pfctl -s [ rules | nat
state ] |
Report on the filter rules, nat rules, or state table |
pfctl -vnf
/etc/pf.conf |
Check /etc/pf.conf for errors, but do not load ruleset |
ALTQ is only available by compiling support for it into the FreeBSD kernel. ALTQ is not supported by all of the available network card drivers. Please see the altq(4) manual page for a list of drivers that are supported in your release of FreeBSD.
The following kernel options will enable ALTQ and add additional functionality:
options ALTQ options ALTQ_CBQ # Class Bases Queuing (CBQ) options ALTQ_RED # Random Early Detection (RED) options ALTQ_RIO # RED In/Out options ALTQ_HFSC # Hierarchical Packet Scheduler (HFSC) options ALTQ_PRIQ # Priority Queuing (PRIQ) options ALTQ_NOPCC # Required for SMP build
options ALTQ enables the ALTQ framework.
options ALTQ_CBQ enables Class Based Queuing (CBQ). CBQ allows you to divide a connection's bandwidth into different classes or queues to prioritize traffic based on filter rules.
options ALTQ_RED enables Random Early Detection (RED). RED is used to avoid network congestion. RED does this by measuring the length of the queue and comparing it to the minimum and maximum thresholds for the queue. If the queue is over the maximum all new packets will be dropped. True to its name, RED drops packets from different connections randomly.
options ALTQ_RIO enables Random Early Detection In and Out.
options ALTQ_HFSC enables the Hierarchical Fair Service Curve Packet Scheduler. For more information about HFSC see: http://www-2.cs.cmu.edu/~hzhang/HFSC/main.html.
options ALTQ_PRIQ enables Priority Queuing (PRIQ). PRIQ will always pass traffic that is in a higher queue first.
options ALTQ_NOPCC enables SMP support for ALTQ. This option is required on SMP systems.
The author of IPFILTER is Darren Reed. IPFILTER is not operating system dependent: it is an open source application and has been ported to FreeBSD, NetBSD, OpenBSD, SunOS, HP/UX, and Solaris operating systems. IPFILTER is actively being supported and maintained, with updated versions being released regularly.
IPFILTER is based on a kernel-side firewall and NAT mechanism that can be controlled and monitored by userland interface programs. The firewall rules can be set or deleted with the ipf(8) utility. The NAT rules can be set or deleted with the ipnat(8) utility. The ipfstat(8) utility can print run-time statistics for the kernel parts of IPFILTER. The ipmon(8) program can log IPFILTER actions to the system log files.
IPF was originally written using a rule processing logic of “the last matching rule wins” and used only stateless type of rules. Over time IPF has been enhanced to include a “quick” option and a stateful “keep state” option which drastically modernized the rules processing logic. IPF's official documentation covers only the legacy rule coding parameters and rule file processing logic. The modernized functions are only included as additional options, completely understating their benefits in producing a far superior and more secure firewall.
The instructions contained in this section are based on using rules that contain the “quick” option and the stateful “keep state” option. This is the basic framework for coding an inclusive firewall ruleset.
For detailed explanation of the legacy rules processing method see: http://www.munk.me.uk/ipf/ipf-howto.html and http://coombs.anu.edu.au/~avalon/ip-filter.html.
The IPF FAQ is at http://www.phildev.net/ipf/index.html.
A searchable archive of the open-source IPFilter mailing list is available at http://marc.theaimsgroup.com/?l=ipfilter.
IPF is included in the basic FreeBSD install as a separate run time loadable module. The system will dynamically load the IPF kernel loadable module when the rc.conf statement ipfilter_enable="YES" is used. The loadable module was created with logging enabled and the default pass all options. There is no need to compile IPF into the FreeBSD kernel just to change the default to block all. This can be done just by adding a block all rule at the end of your ruleset.
It is not a mandatory requirement to enable IPF by compiling the following options into the FreeBSD kernel. It is only presented here as background information. Compiling IPF into the kernel causes the loadable module to never be used.
Sample kernel config IPF option statements are in the /usr/src/sys/conf/NOTES kernel source and are reproduced here:
options IPFILTER options IPFILTER_LOG options IPFILTER_DEFAULT_BLOCK
options IPFILTER enables support for the “IPFILTER” firewall.
options IPFILTER_LOG enables the option to have IPF log traffic by writing to the ipl packet logging pseudo—device for every rule that has the log keyword.
options IPFILTER_DEFAULT_BLOCK changes the default behavior so any packet not matching a firewall pass rule gets blocked.
These settings will take effect only after installing a kernel that has been built with the above options set.
To activate IPF at boot time, the following statements need to be added to /etc/rc.conf:
ipfilter_enable="YES" # Start ipf firewall ipfilter_rules="/etc/ipf.rules" # loads rules definition text file ipmon_enable="YES" # Start IP monitor log ipmon_flags="-Ds" # D = start as daemon # s = log to syslog # v = log tcp window, ack, seq # n = map IP & port to names
If there is a LAN behind this firewall that uses the reserved private IP address ranges, the following lines will have to be added to enable NAT functionality:
gateway_enable="YES" # Enable as LAN gateway ipnat_enable="YES" # Start ipnat function ipnat_rules="/etc/ipnat.rules" # rules definition file for ipnat
The ipf(8) command is used to load your ruleset file. Your custom rules would normally be placed in a file, and the following command could then be used to replace in mass the currently running firewall rules:
# ipf -Fa -f /etc/ipf.rules
-Fa
means flush all internal rules tables.
-f
means this is the file to read for the rules to
load.
This gives you the ability to make changes to your custom rules file, run the above IPF command, and thus update the running firewall with a fresh copy of all the rules without having to reboot the system. This method is very convenient for testing new rules as the procedure can be executed as many times as needed.
See the ipf(8) manual page for details on the other flags available with this command.
The ipf(8) command expects the rules file to be a standard text file. It will not accept a rules file written as a script with symbolic substitution.
There is a way to build IPF rules that utilizes the power of script symbolic substitution. For more information, see Section 31.5.9.
The default behavior of ipfstat(8) is to retrieve and display the totals of the accumulated statistics gathered as a result of applying the user coded rules against packets going in and out of the firewall since it was last started, or since the last time the accumulators were reset to zero by the ipf -Z command.
See the ipfstat(8) manual page for details.
The default ipfstat(8) command output will look something like this:
input packets: blocked 99286 passed 1255609 nomatch 14686 counted 0 output packets: blocked 4200 passed 1284345 nomatch 14687 counted 0 input packets logged: blocked 99286 passed 0 output packets logged: blocked 0 passed 0 packets logged: input 0 output 0 log failures: input 3898 output 0 fragment state(in): kept 0 lost 0 fragment state(out): kept 0 lost 0 packet state(in): kept 169364 lost 0 packet state(out): kept 431395 lost 0 ICMP replies: 0 TCP RSTs sent: 0 Result cache hits(in): 1215208 (out): 1098963 IN Pullups succeeded: 2 failed: 0 OUT Pullups succeeded: 0 failed: 0 Fastroute successes: 0 failures: 0 TCP cksum fails(in): 0 (out): 0 Packet log flags set: (0)
When supplied with either -i
for inbound or -o
for outbound, the command will retrieve and display the
appropriate list of filter rules currently installed and in use by the kernel.
ipfstat -in displays the inbound internal rules table with rule number.
ipfstat -on displays the outbound internal rules table with the rule number.
The output will look something like this:
@1 pass out on xl0 from any to any @2 block out on dc0 from any to any @3 pass out quick on dc0 proto tcp/udp from any to any keep state
ipfstat -ih displays the inbound internal rules table, prefixing each rule with a count of how many times the rule was matched.
ipfstat -oh displays the outbound internal rules table, prefixing each rule with a count of how many times the rule was matched.
The output will look something like this:
2451423 pass out on xl0 from any to any 354727 block out on dc0 from any to any 430918 pass out quick on dc0 proto tcp/udp from any to any keep state
One of the most important functions of the ipfstat
command is the -t
flag which displays the state table in
a way similar to the way top(1) shows the
FreeBSD running process table. When your firewall is under attack, this function
gives you the ability to identify, drill down to, and see the attacking
packets. The optional sub-flags give the ability to select the destination or
source IP, port, or protocol that you want to monitor in real time. See the ipfstat(8) manual page
for details.
In order for ipmon to work properly, the kernel option
IPFILTER_LOG must be turned on. This command has two
different modes that it can be used in. Native mode is the default mode when the
command is typed on the command line without the -D
flag.
Daemon mode is for when a continuous system log file is desired, so that logging
of past events may be reviewed. This is how FreeBSD and IPFILTER are configured
to work together. FreeBSD has a built in facility to automatically rotate
system logs. That is why outputting the log information to syslogd(8) is better
than the default of outputting to a regular file. In the default rc.conf file, the ipmon_flags
statement uses the -Ds
flags:
ipmon_flags="-Ds" # D = start as daemon # s = log to syslog # v = log tcp window, ack, seq # n = map IP & port to names
The benefits of logging are obvious. It provides the ability to review, after the fact, information such as which packets had been dropped, what addresses they came from and where they were going. These can all provide a significant edge in tracking down attackers.
Even with the logging facility enabled, IPF will not generate any rule logging on its own. The firewall administrator decides what rules in the ruleset he wants to log and adds the log keyword to those rules. Normally only deny rules are logged.
It is very customary to include a default deny everything rule with the log keyword included as your last rule in the ruleset. This makes it possible to see all the packets that did not match any of the rules in the ruleset.
Syslogd uses its own special method for segregation of
log data. It uses special groupings called “facility” and
“level”. IPMON in -Ds
mode uses local0 as the “facility” name by default. The
following levels can be used to further segregate the logged data if desired:
LOG_INFO - packets logged using the "log" keyword as the action rather than pass or block. LOG_NOTICE - packets logged which are also passed LOG_WARNING - packets logged which are also blocked LOG_ERR - packets which have been logged and which can be considered short
To setup IPFILTER to log all data to /var/log/ipfilter.log, the file will need to be created beforehand. The following command will do that:
# touch /var/log/ipfilter.log
The syslogd(8) function is controlled by definition statements in the /etc/syslog.conf file. The syslog.conf file offers considerable flexibility in how syslog will deal with system messages issued by software applications like IPF.
Add the following statement to /etc/syslog.conf:
local0.* /var/log/ipfilter.log
The local0.* means to write all the logged messages to the coded file location.
To activate the changes to /etc/syslog.conf you can reboot or bump the syslogd(8) daemon into re-reading /etc/syslog.conf by running /etc/rc.d/syslogd reload
Do not forget to change /etc/newsyslog.conf to rotate the new log created above.
Messages generated by ipmon consist of data fields separated by white space. Fields common to all messages are:
The date of packet receipt.
The time of packet receipt. This is in the form HH:MM:SS.F, for hours, minutes, seconds, and fractions of a second (which can be several digits long).
The name of the interface the packet was processed on, e.g., dc0.
The group and rule number of the rule, e.g. @0:17.
These can be viewed with ipfstat -in.
The action: p for passed, b for blocked, S for a short packet, n did not match any rules, L for a log rule. The order of precedence in showing flags is: S, p, b, n, L. A capital P or B means that the packet has been logged due to a global logging setting, not a particular rule.
The addresses. This is actually three fields: the source address and port (separated by a comma), the -> symbol, and the destination address and port, e.g.: 209.53.17.22,80 -> 198.73.220.17,1722.
PR followed by the protocol name or number, e.g.: PR tcp.
len followed by the header length and total length of the packet, e.g.: len 20 40.
If the packet is a TCP packet, there will be an additional field starting with a hyphen followed by letters corresponding to any flags that were set. See the ipf(5) manual page for a list of letters and their flags.
If the packet is an ICMP packet, there will be two fields at the end, the first always being “ICMP”, and the next being the ICMP message and sub-message type, separated by a slash, e.g., ICMP 3/3 for a port unreachable message.
Some experienced IPF users create a file containing the rules and code them in a manner compatible with running them as a script with symbolic substitution. The major benefit of doing this is that only the value associated with the symbolic name needs to be changed, and when the script is run all the rules containing the symbolic name will have the value substituted in the rules. Being a script, symbolic substitution can be used to code frequently used values and substitute them in multiple rules. This can be seen in the following example.
The script syntax used here is compatible with the sh(1), csh(1), and tcsh(1) shells.
Symbolic substitution fields are prefixed with a dollar sign: $.
Symbolic fields do not have the $ prefix.
The value to populate the symbolic field must be enclosed with double quotes (").
Start your rule file with something like this:
############# Start of IPF rules script ######################## oif="dc0" # name of the outbound interface odns="192.0.2.11" # ISP's DNS server IP address myip="192.0.2.7" # my static IP address from ISP ks="keep state" fks="flags S keep state" # You can choose between building /etc/ipf.rules file # from this script or running this script "as is". # # Uncomment only one line and comment out another. # # 1) This can be used for building /etc/ipf.rules: #cat > /etc/ipf.rules << EOF # # 2) This can be used to run script "as is": /sbin/ipf -Fa -f - << EOF # Allow out access to my ISP's Domain name server. pass out quick on $oif proto tcp from any to $odns port = 53 $fks pass out quick on $oif proto udp from any to $odns port = 53 $ks # Allow out non-secure standard www function pass out quick on $oif proto tcp from $myip to any port = 80 $fks # Allow out secure www function https over TLS SSL pass out quick on $oif proto tcp from $myip to any port = 443 $fks EOF ################## End of IPF rules script ########################
That is all there is to it. The rules are not important in this example; how the symbolic substitution fields are populated and used are. If the above example was in a file named /etc/ipf.rules.script, these rules could be reloaded by entering the following command:
# sh /etc/ipf.rules.script
There is one problem with using a rules file with embedded symbolics: IPF does not understand symbolic substitution, and cannot read such scripts directly.
This script can be used in one of two ways:
Uncomment the line that begins with cat, and comment out the line that begins with /sbin/ipf. Place ipfilter_enable="YES" into /etc/rc.conf as usual, and run script once after each modification to create or update /etc/ipf.rules.
Disable IPFILTER in system startup scripts by adding ipfilter_enable="NO" (this is default value) into /etc/rc.conf file.
Add a script like the following to your /usr/local/etc/rc.d/ startup directory. The script should have an obvious name like ipf.loadrules.sh. The .sh extension is mandatory.
#!/bin/sh sh /etc/ipf.rules.script
The permissions on this script file must be read, write, execute for owner root.
# chmod 700 /usr/local/etc/rc.d/ipf.loadrules.sh
Now, when your system boots, your IPF rules will be loaded.
A ruleset is a group of IPF rules coded to pass or block packets based on the values contained in the packet. The bi-directional exchange of packets between hosts comprises a session conversation. The firewall ruleset processes both the packets arriving from the public Internet, as well as the packets produced by the system as a response to them. Each TCP/IP service (i.e.: telnet, www, mail, etc.) is predefined by its protocol and privileged (listening) port. Packets destined for a specific service, originate from the source address using an unprivileged (high order) port and target the specific service port on the destination address. All the above parameters (i.e.: ports and addresses) can be used as selection criteria to create rules which will pass or block services.
IPF was originally written using a rules processing logic of “the last matching rule wins” and used only stateless rules. Over time IPF has been enhanced to include a “quick” option and a stateful “keep state” option which drastically modernized the rule processing logic.
The instructions contained in this section are based on using rules that contain the “quick” option and the stateful “keep state” option. This is the basic framework for coding an inclusive firewall rule set.
Warning: When working with the firewall rules, be very careful. Some configurations will lock you out of the server. To be on the safe side, you may wish to consider performing the initial firewall configuration from the local console rather than doing it remotely e.g., via ssh.
The rule syntax presented here has been simplified to only address the modern stateful rule context and “first matching rule wins” logic. For the complete legacy rule syntax description see the ipf(8) manual page.
A # character is used to mark the start of a comment and may appear at the end of a rule line or on its own line. Blank lines are ignored.
Rules contain keywords. These keywords have to be coded in a specific order from left to right on the line. Keywords are identified in bold type. Some keywords have sub-options which may be keywords themselves and also include more sub-options. Each of the headings in the below syntax has a bold section header which expands on the content.
ACTION IN-OUT OPTIONS SELECTION STATEFUL PROTO SRC_ADDR,DST_ADDR OBJECT PORT_NUM TCP_FLAG STATEFUL
ACTION = block | pass
IN-OUT = in | out
OPTIONS = log | quick | on interface-name
SELECTION = proto value | source/destination IP | port = number | flags flag-value
PROTO = tcp/udp | udp | tcp | icmp
SRC_ADD,DST_ADDR = all | from object to object
OBJECT = IP address | any
PORT_NUM = port number
TCP_FLAG = S
STATEFUL = keep state
The action indicates what to do with the packet if it matches the rest of the filter rule. Each rule must have an action. The following actions are recognized:
block indicates that the packet should be dropped if the selection parameters match the packet.
pass indicates that the packet should exit the firewall if the selection parameters match the packet.
A mandatory requirement is that each filter rule explicitly state which side of the I/O it is to be used on. The next keyword must be either in or out and one or the other has to be coded or the rule will not pass syntax checks.
in means this rule is being applied against an inbound packet which has just been received on the interface facing the public Internet.
out means this rule is being applied against an outbound packet destined for the interface facing the public Internet.
Note: These options must be used in the order shown here.
log indicates that the packet header will be written to the ipl log (as described in the LOGGING section below) if the selection parameters match the packet.
quick indicates that if the selection parameters match the packet, this rule will be the last rule checked, allowing a “short-circuit” path to avoid processing any following rules for this packet. This option is a mandatory requirement for the modernized rules processing logic.
on indicates the interface name to be incorporated into the selection parameters. Interface names are as displayed by ifconfig(8). Using this option, the rule will only match if the packet is going through that interface in the specified direction (in/out). This option is a mandatory requirement for the modernized rules processing logic.
When a packet is logged, the headers of the packet are written to the IPL packet logging pseudo-device. Immediately following the log keyword, the following qualifiers may be used (in this order):
body indicates that the first 128 bytes of the packet contents will be logged after the headers.
first If the log keyword is being used in conjunction with a keep state option, it is recommended that this option is also applied so that only the triggering packet is logged and not every packet which thereafter matches the “keep state” information.
The keywords described in this section are used to describe attributes of the packet to be checked when determining whether rules match or not. There is a keyword subject, and it has sub-option keywords, one of which has to be selected. The following general-purpose attributes are provided for matching, and must be used in this order:
proto is the subject keyword and must be coded along with one of its corresponding keyword sub-option values. The value allows a specific protocol to be matched against. This option is a mandatory requirement for the modernized rules processing logic.
tcp/udp | udp | tcp | icmp or any protocol names found in /etc/protocols are recognized and may be used. The special protocol keyword tcp/udp may be used to match either a TCP or a UDP packet, and has been added as a convenience to save duplication of otherwise identical rules.
The all keyword is essentially a synonym for “from any to any” with no other match parameters.
from src to dst: the from and to keywords are used to match against IP addresses. Rules must specify both source and destination parameters. any is a special keyword that matches any IP address. Examples of use: from any to any or from 0.0.0.0/0 to any or from any to 0.0.0.0/0 or from 0.0.0.0 to any or from any to 0.0.0.0.
There is no way to match ranges of IP addresses which do not express themselves easily using the dotted numeric form / mask-length notation. The net-mgmt/ipcalc port may be used to ease up the calculations. Additional information is available in the utility's web page: http://jodies.de/ipcalc.
If a port match is included, for either or both of source and destination, then it is only applied to TCP and UDP packets. When composing port comparisons, either the service name from /etc/services or an integer port number may be used. When the port appears as part of the from object, it matches the source port number; when it appears as part of the to object, it matches the destination port number. The use of the port option with the to object is a mandatory requirement for the modernized rules processing logic. Example of use: from any to any port = 80
Single port comparisons may be done in a number of ways, using a number of different comparison operators. Port ranges may also be specified.
port "=" | "!=" | "<" | ">" | "<=" | ">=" | "eq" | "ne" | "lt" | "gt" | "le" | "ge".
To specify port ranges, port "<>" | "><"
Warning: Following the source and destination matching parameters, the following two parameters are mandatory requirements for the modernized rules processing logic.
Flags are only effective for TCP filtering. The letters represent one of the possible flags that can be matched against the TCP packet header.
The modernized rules processing logic uses the flags S parameter to identify the tcp session start request.
keep state indicates that on a pass rule, any packets that match the rules selection parameters should activate the stateful filtering facility.
Note: This option is a mandatory requirement for the modernized rules processing logic.
Stateful filtering treats traffic as a bi-directional exchange of packets comprising a session conversation. When activated, keep-state dynamically generates internal rules for each anticipated packet being exchanged during the bi-directional session conversation. It has sufficient matching capabilities to determine if the session conversation between the originating sender and the destination are following the valid procedure of bi-directional packet exchange. Any packets that do not properly fit the session conversation template are automatically rejected as impostors.
Keep state will also allow ICMP packets related to a TCP or UDP session through. So if you get ICMP type 3 code 4 in response to some web surfing allowed out by a keep state rule, they will be automatically allowed in. Any packet that IPF can be certain is part of an active session, even if it is a different protocol, will be let in.
What happens is:
Packets destined to go out through the interface connected to the public Internet are first checked against the dynamic state table. If the packet matches the next expected packet comprising an active session conversation, then it exits the firewall and the state of the session conversation flow is updated in the dynamic state table. Packets that do not belong to an already active session, are simply checked against the outbound ruleset.
Packets coming in from the interface connected to the public Internet are first checked against the dynamic state table. If the packet matches the next expected packet comprising an active session conversation, then it exits the firewall and the state of the session conversation flow is updated in the dynamic state table. Packets that do not belong to an already active session, are simply checked against the inbound ruleset.
When the conversation completes it is removed from the dynamic state table.
Stateful filtering allows you to focus on blocking/passing new sessions. If the new session is passed, all its subsequent packets will be allowed through automatically and any impostors automatically rejected. If a new session is blocked, none of its subsequent packets will be allowed through. Stateful filtering has technically advanced matching abilities capable of defending against the flood of different attack methods currently employed by attackers.
The following ruleset is an example of how to code a very secure inclusive type of firewall. An inclusive firewall only allows services matching pass rules through, and blocks all others by default. Firewalls intended to protect other machines, also called “network firewalls”, should have at least two interfaces, which are generally configured to trust one side (the LAN) and not the other (the public Internet). Alternatively, a firewall might be configured to protect only the system it is running on—this is called a “host based firewall”, and is particularly appropriate for servers on an untrusted network.
All UNIX flavored systems including FreeBSD are designed to use interface lo0 and IP address 127.0.0.1 for internal communication within the operating system. The firewall rules must contain rules to allow free unmolested movement of these special internally used packets.
The interface which faces the public Internet is the one to place the rules that authorize and control access of the outbound and inbound connections. This can be your user PPP tun0 interface or your NIC that is connected to your DSL or cable modem.
In cases where one or more NICs are cabled to private network segments, those interfaces may require rules to allow packets originating from those LAN interfaces transit to each other and/or to the outside (Internet).
The rules should be organized into three major sections: first trusted interfaces, then the public interface outbound, and last the public untrusted interface inbound.
The rules in each of the public interface sections should have the most frequently matched rules placed before less commonly matched rules, with the last rule in the section blocking and logging all packets on that interface and direction.
The Outbound section in the following ruleset only contains pass rules which contain selection values that uniquely identify the service that is authorized for public Internet access. All the rules have the quick, on, proto, port, and keep state options set. The proto tcp rules have the flag option included to identify the session start request as the triggering packet to activate the stateful facility.
The Inbound section has all the blocking of undesirable packets first, for two different reasons. The first is that malicious packets may be partial matches for legitimate traffic. These packets have to be discarded rather than allowed in, based on their partial matches against allow rules. The second reason is that known and uninteresting rejects may be blocked silently, rather than being caught and logged by the last rules in the section. The final rule in each section, blocks and logs all packets and can be used to create the legal evidence needed to prosecute the people who are attacking your system.
Another thing that should be taken care of, is to ensure there is no response returned for any of the undesirable traffic. Invalid packets should just get dropped and vanish. This way the attacker has no knowledge if his packets have reached your system. The less the attackers can learn about your system, the more time they must invest before actually doing something bad. Rules that include a log first option, will only log the event the first time they are triggered. This option is included in the sample nmap OS fingerprint rule. The security/nmap utility is commonly used by attackers who attempt to identify the operating system of your server.
Any time there are logged messages on a rule with the log first option, an ipfstat -hio command should be executed to evaluate how many times the rule has actually matched. Large number of matches usually indicate that the system is being flooded (i.e.: under attack).
The /etc/services file may be used to lookup unknown port numbers. Alternatively, visit http://en.wikipedia.org/wiki/List_of_TCP_and_UDP_port_numbers and do a port number lookup to find the purpose of a particular port number.
Check out this link for port numbers used by Trojans http://www.sans.org/security-resources/idfaq/oddports.php.
The following ruleset creates a complete and very secure inclusive type of firewall ruleset that has been tested on production systems. It can be easily modified for your own system. Just comment out any pass rules for services that should not be authorized.
To avoid logging unwanted messages, just add a block rule in the inbound section.
The dc0 interface name has to be changed in every rule to the real interface name of the NIC card that connects your system to the public Internet. For user PPP it would be tun0.
Add the following statements to /etc/ipf.rules:
################################################################# # No restrictions on Inside LAN Interface for private network # Not needed unless you have LAN ################################################################# #pass out quick on xl0 all #pass in quick on xl0 all ################################################################# # No restrictions on Loopback Interface ################################################################# pass in quick on lo0 all pass out quick on lo0 all ################################################################# # Interface facing Public Internet (Outbound Section) # Match session start requests originating from behind the # firewall on the private network # or from this gateway server destined for the public Internet. ################################################################# # Allow out access to my ISP's Domain name server. # xxx must be the IP address of your ISP's DNS. # Dup these lines if your ISP has more than one DNS server # Get the IP addresses from /etc/resolv.conf file pass out quick on dc0 proto tcp from any to xxx port = 53 flags S keep state pass out quick on dc0 proto udp from any to xxx port = 53 keep state # Allow out access to my ISP's DHCP server for cable or DSL networks. # This rule is not needed for 'user ppp' type connection to the # public Internet, so you can delete this whole group. # Use the following rule and check log for IP address. # Then put IP address in commented out rule & delete first rule pass out log quick on dc0 proto udp from any to any port = 67 keep state #pass out quick on dc0 proto udp from any to z.z.z.z port = 67 keep state # Allow out non-secure standard www function pass out quick on dc0 proto tcp from any to any port = 80 flags S keep state # Allow out secure www function https over TLS SSL pass out quick on dc0 proto tcp from any to any port = 443 flags S keep state # Allow out send & get email function pass out quick on dc0 proto tcp from any to any port = 110 flags S keep state pass out quick on dc0 proto tcp from any to any port = 25 flags S keep state # Allow out Time pass out quick on dc0 proto tcp from any to any port = 37 flags S keep state # Allow out nntp news pass out quick on dc0 proto tcp from any to any port = 119 flags S keep state # Allow out gateway & LAN users' non-secure FTP ( both passive & active modes) # This function uses the IPNAT built in FTP proxy function coded in # the nat rules file to make this single rule function correctly. # If you want to use the pkg_add command to install application packages # on your gateway system you need this rule. pass out quick on dc0 proto tcp from any to any port = 21 flags S keep state # Allow out ssh/sftp/scp (telnet/rlogin/FTP replacements) # This function is using SSH (secure shell) pass out quick on dc0 proto tcp from any to any port = 22 flags S keep state # Allow out insecure Telnet pass out quick on dc0 proto tcp from any to any port = 23 flags S keep state # Allow out FreeBSD CVSup pass out quick on dc0 proto tcp from any to any port = 5999 flags S keep state # Allow out ping to public Internet pass out quick on dc0 proto icmp from any to any icmp-type 8 keep state # Allow out whois from LAN to public Internet pass out quick on dc0 proto tcp from any to any port = 43 flags S keep state # Block and log only the first occurrence of everything # else that's trying to get out. # This rule implements the default block block out log first quick on dc0 all ################################################################# # Interface facing Public Internet (Inbound Section) # Match packets originating from the public Internet # destined for this gateway server or the private network. ################################################################# # Block all inbound traffic from non-routable or reserved address spaces block in quick on dc0 from 192.168.0.0/16 to any #RFC 1918 private IP block in quick on dc0 from 172.16.0.0/12 to any #RFC 1918 private IP block in quick on dc0 from 10.0.0.0/8 to any #RFC 1918 private IP block in quick on dc0 from 127.0.0.0/8 to any #loopback block in quick on dc0 from 0.0.0.0/8 to any #loopback block in quick on dc0 from 169.254.0.0/16 to any #DHCP auto-config block in quick on dc0 from 192.0.2.0/24 to any #reserved for docs block in quick on dc0 from 204.152.64.0/23 to any #Sun cluster interconnect block in quick on dc0 from 224.0.0.0/3 to any #Class D & E multicast ##### Block a bunch of different nasty things. ############ # That I do not want to see in the log # Block frags block in quick on dc0 all with frags # Block short tcp packets block in quick on dc0 proto tcp all with short # block source routed packets block in quick on dc0 all with opt lsrr block in quick on dc0 all with opt ssrr # Block nmap OS fingerprint attempts # Log first occurrence of these so I can get their IP address block in log first quick on dc0 proto tcp from any to any flags FUP # Block anything with special options block in quick on dc0 all with ipopts # Block public pings block in quick on dc0 proto icmp all icmp-type 8 # Block ident block in quick on dc0 proto tcp from any to any port = 113 # Block all Netbios service. 137=name, 138=datagram, 139=session # Netbios is MS/Windows sharing services. # Block MS/Windows hosts2 name server requests 81 block in log first quick on dc0 proto tcp/udp from any to any port = 137 block in log first quick on dc0 proto tcp/udp from any to any port = 138 block in log first quick on dc0 proto tcp/udp from any to any port = 139 block in log first quick on dc0 proto tcp/udp from any to any port = 81 # Allow traffic in from ISP's DHCP server. This rule must contain # the IP address of your ISP's DHCP server as it's the only # authorized source to send this packet type. Only necessary for # cable or DSL configurations. This rule is not needed for # 'user ppp' type connection to the public Internet. # This is the same IP address you captured and # used in the outbound section. pass in quick on dc0 proto udp from z.z.z.z to any port = 68 keep state # Allow in standard www function because I have apache server pass in quick on dc0 proto tcp from any to any port = 80 flags S keep state # Allow in non-secure Telnet session from public Internet # labeled non-secure because ID/PW passed over public Internet as clear text. # Delete this sample group if you do not have telnet server enabled. #pass in quick on dc0 proto tcp from any to any port = 23 flags S keep state # Allow in secure FTP, Telnet, and SCP from public Internet # This function is using SSH (secure shell) pass in quick on dc0 proto tcp from any to any port = 22 flags S keep state # Block and log only first occurrence of all remaining traffic # coming into the firewall. The logging of only the first # occurrence avoids filling up disk with Denial of Service logs. # This rule implements the default block. block in log first quick on dc0 all ################### End of rules file #####################################
NAT stands for Network Address Translation. To those familiar with Linux, this concept is called IP Masquerading; NAT and IP Masquerading are the same thing. One of the many things the IPF NAT function enables is the ability to have a private Local Area Network (LAN) behind the firewall sharing a single ISP assigned IP address on the public Internet.
You may ask why would someone want to do this. ISPs normally assign a dynamic IP address to their non-commercial users. Dynamic means that the IP address can be different each time you dial in and log on to your ISP, or for cable and DSL modem users, when the modem is power cycled. This dynamic IP address is used to identify your system to the public Internet.
Now lets say you have five PCs at home and each one needs Internet access. You would have to pay your ISP for an individual Internet account for each PC and have five phone lines.
With NAT only a single account is needed with your ISP. The other four PCs may then be cabled to a switch and the switch to the NIC in your FreeBSD system which is going to service your LAN as a gateway. NAT will automatically translate the private LAN IP address for each separate PC on the LAN to the single public IP address as it exits the firewall bound for the public Internet. It also does the reverse translation for returning packets.
There is a special range of IP addresses reserved for NATed private LANs. According to RFC 1918, the following IP ranges may be used for private nets which will never be routed directly to the public Internet:
NAT rules are loaded by using the ipnat command. Typically the NAT rules are stored in /etc/ipnat.rules. See ipnat(8) for details.
When changing the NAT rules after
NAT has been started, make your changes
to the file containing the NAT rules, then run the ipnat command with the -CF
flags to
delete the internal in use NAT rules and
flush the contents of the translation table of all active entries.
To reload the NAT rules issue a command like this:
# ipnat -CF -f /etc/ipnat.rules
To display some statistics about your NAT, use this command:
# ipnat -s
To list the NAT table's current mappings, use this command:
# ipnat -l
To turn verbose mode on, and display information relating to rule processing and active rules/table entries:
# ipnat -v
NAT rules are very flexible and can accomplish many different things to fit the needs of commercial and home users.
The rule syntax presented here has been simplified to what is most commonly used in a non-commercial environment. For a complete rule syntax description see the ipnat(5) manual page.
The syntax for a NAT rule looks something like this:
map IF LAN_IP_RANGE -> PUBLIC_ADDRESS
The keyword map starts the rule.
Replace IF with the external interface.
The LAN_IP_RANGE is what your internal clients use for IP Addressing, usually this is something like 192.168.1.0/24.
The PUBLIC_ADDRESS can either be the external IP address or the special keyword 0/32, which means to use the IP address assigned to IF.
A packet arrives at the firewall from the LAN with a public destination. It passes through the outbound filter rules, NAT gets its turn at the packet and applies its rules top down, first matching rule wins. NAT tests each of its rules against the packet's interface name and source IP address. When a packet's interface name matches a NAT rule then the source IP address (i.e.: private LAN IP address) of the packet is checked to see if it falls within the IP address range specified to the left of the arrow symbol on the NAT rule. On a match the packet has its source IP address rewritten with the public IP address obtained by the 0/32 keyword. NAT posts an entry in its internal NAT table so when the packet returns from the public Internet it can be mapped back to its original private IP address and then passed to the filter rules for processing.
To enable IPNAT add these statements to /etc/rc.conf.
To enable your machine to route traffic between interfaces:
gateway_enable="YES"
To start IPNAT automatically each time:
ipnat_enable="YES"
To specify where to load the IPNAT rules from:
ipnat_rules="/etc/ipnat.rules"
For networks that have large numbers of PC's on the LAN or networks with more than a single LAN, the process of funneling all those private IP addresses into a single public IP address becomes a resource problem that may cause problems with the same port numbers being used many times across many NATed LAN PC's, causing collisions. There are two ways to relieve this resource problem.
A normal NAT rule would look like:
map dc0 192.168.1.0/24 -> 0/32
In the above rule the packet's source port is unchanged as the packet passes through IPNAT. By adding the portmap keyword, IPNAT can be directed to only use source ports in the specified range. For example the following rule will tell IPNAT to modify the source port to be within the range shown:
map dc0 192.168.1.0/24 -> 0/32 portmap tcp/udp 20000:60000
Additionally we can make things even easier by using the auto keyword to tell IPNAT to determine by itself which ports are available to use:
map dc0 192.168.1.0/24 -> 0/32 portmap tcp/udp auto
In very large LANs there comes a point where there are just too many LAN addresses to fit into a single public address. If a block of public IP addresses is available, these addresses can be used as a “pool”, and IPNAT may pick one of the public IP addresses as packet-addresses are mapped on their way out.
For example, instead of mapping all packets through a single public IP address, as in:
map dc0 192.168.1.0/24 -> 204.134.75.1
A range of public IP addresses can be specified either with a netmask:
map dc0 192.168.1.0/24 -> 204.134.75.0/255.255.255.0
or using CIDR notation:
map dc0 192.168.1.0/24 -> 204.134.75.0/24
A very common practice is to have a web server, email server, database server and DNS server each segregated to a different PC on the LAN. In this case the traffic from these servers still have to be NATed, but there has to be some way to direct the inbound traffic to the correct LAN PCs. IPNAT has the redirection facilities of NAT to solve this problem. For example, assuming a web server operating on LAN address 10.0.10.25 and using a single public IP address of 20.20.20.5 the rule would be coded as follows:
rdr dc0 20.20.20.5/32 port 80 -> 10.0.10.25 port 80
or:
rdr dc0 0.0.0.0/0 port 80 -> 10.0.10.25 port 80
or for a LAN DNS Server on LAN address of 10.0.10.33 that needs to receive public DNS requests:
rdr dc0 20.20.20.5/32 port 53 -> 10.0.10.33 port 53 udp
FTP is a dinosaur left over from the time before the Internet as it is known today, when research universities were leased lined together and FTP was used to share files among research Scientists. This was a time when data security was not a consideration. Over the years the FTP protocol became buried into the backbone of the emerging Internet and its username and password being sent in clear text was never changed to address new security concerns. FTP has two flavors, it can run in active mode or passive mode. The difference is in how the data channel is acquired. Passive mode is more secure as the data channel is acquired by the ordinal ftp session requester. For a real good explanation of FTP and the different modes see http://www.slacksite.com/other/ftp.html.
IPNAT has a special built in FTP proxy option which can be specified on the NAT map rule. It can monitor all outbound packet traffic for FTP active or passive start session requests and dynamically create temporary filter rules containing only the port number really in use for the data channel. This eliminates the security risk FTP normally exposes the firewall to from having large ranges of high order port numbers open.
This rule will handle all the traffic for the internal LAN:
map dc0 10.0.10.0/29 -> 0/32 proxy port 21 ftp/tcp
This rule handles the FTP traffic from the gateway:
map dc0 0.0.0.0/0 -> 0/32 proxy port 21 ftp/tcp
This rule handles all non-FTP traffic from the internal LAN:
map dc0 10.0.10.0/29 -> 0/32
The FTP map rule goes before our regular map rule. All packets are tested against the first rule from the top. Matches on interface name, then private LAN source IP address, and then is it a FTP packet. If all that matches then the special FTP proxy creates temp filter rules to let the FTP session packets pass in and out, in addition to also NATing the FTP packets. All LAN packets that are not FTP do not match the first rule and fall through to the third rule and are tested, matching on interface and source IP, then are NATed.
Only one filter rule is needed for FTP if the NAT FTP proxy is used.
Without the FTP Proxy, the following three rules will be needed:
# Allow out LAN PC client FTP to public Internet # Active and passive modes pass out quick on rl0 proto tcp from any to any port = 21 flags S keep state # Allow out passive mode data channel high order port numbers pass out quick on rl0 proto tcp from any to any port > 1024 flags S keep state # Active mode let data channel in from FTP server pass in quick on rl0 proto tcp from any to any port = 20 flags S keep state
The IPFIREWALL (IPFW) is a FreeBSD sponsored firewall software application authored and maintained by FreeBSD volunteer staff members. It uses the legacy stateless rules and a legacy rule coding technique to achieve what is referred to as Simple Stateful logic.
The IPFW sample ruleset (found in /etc/rc.firewall and /etc/rc.firewall6) in the standard FreeBSD install is rather simple and it is not expected to be used directly without modifications. The example does not use stateful filtering, which is beneficial in most setups, so it will not be used as base for this section.
The IPFW stateless rule syntax is empowered with technically sophisticated selection capabilities which far surpasses the knowledge level of the customary firewall installer. IPFW is targeted at the professional user or the advanced technical computer hobbyist who have advanced packet selection requirements. A high degree of detailed knowledge into how different protocols use and create their unique packet header information is necessary before the power of the IPFW rules can be unleashed. Providing that level of explanation is out of the scope of this section of the Handbook.
IPFW is composed of seven components, the primary component is the kernel firewall filter rule processor and its integrated packet accounting facility, the logging facility, the divert rule which triggers the NAT facility, and the advanced special purpose facilities, the dummynet traffic shaper facilities, the fwd rule forward facility, the bridge facility, and the ipstealth facility. IPFW supports both IPv4 and IPv6.
IPFW is included in the basic FreeBSD install as a separate run time loadable module. The system will dynamically load the kernel module when the rc.conf statement firewall_enable="YES" is used. There is no need to compile IPFW into the FreeBSD kernel.
After rebooting your system with firewall_enable="YES" in rc.conf the following white highlighted message is displayed on the screen as part of the boot process:
ipfw2 initialized, divert disabled, rule-based forwarding disabled, default to deny, logging disabled
The loadable module does have logging ability compiled in. To enable logging and set the verbose logging limit, there is a knob that can be set in /etc/sysctl.conf. By adding these statements, logging will be enabled on future reboots:
net.inet.ip.fw.verbose=1 net.inet.ip.fw.verbose_limit=5
It is not a mandatory requirement to enable IPFW by compiling the following options into the FreeBSD kernel. It is presented here as background information only.
options IPFIREWALL
This option enables IPFW as part of the kernel
options IPFIREWALL_VERBOSE
Enables logging of packets that pass through IPFW and have the log keyword specified in the ruleset.
options IPFIREWALL_VERBOSE_LIMIT=5
Limits the number of packets logged through syslogd(8) on a per entry basis. This option may be used in hostile environments, when firewall activity logging is desired. This will close a possible denial of service attack via syslog flooding.
options IPFIREWALL_DEFAULT_TO_ACCEPT
This option will allow everything to pass through the firewall by default, which is a good idea when the firewall is being set up for the first time.
options IPDIVERT
This enables the use of NAT functionality.
Note: The firewall will block all incoming and outgoing packets if either the IPFIREWALL_DEFAULT_TO_ACCEPT kernel option or a rule to explicitly allow these connections are missing.
Enable the firewall:
firewall_enable="YES"
To select one of the default firewall types provided by FreeBSD, select one by reading the /etc/rc.firewall file and place it in the following:
firewall_type="open"
Available values for this setting are:
open — pass all traffic.
client — will protect only this machine.
simple — protect the whole network.
closed — entirely disables IP traffic except for the loopback interface.
UNKNOWN — disables the loading of firewall rules.
filename — absolute path of file containing firewall rules.
It is possible to use two different ways to load custom rules for ipfw firewall. One is by setting firewall_type variable to absolute path of file, which contains firewall rules without any command-line options for ipfw(8) itself. The following is a simple example of a ruleset file that blocksall incoming and outgoing traffic:
add deny in add deny out
On the other hand, it is possible to set the firewall_script variable to the absolute path of an executable script that includes ipfw commands being executed at system boot time. A valid ruleset script that would be equivalent to the ruleset file shown above would be the following:
#!/bin/sh ipfw -q flush ipfw add deny in ipfw add deny out
Note: If firewall_type is set to either client or simple, the default rules found in /etc/rc.firewall should be reviewed to fit to the configuration of the given machine. Also note that the examples used in this chapter expect that the firewall_script is set to /etc/ipfw.rules.
Enable logging:
firewall_logging="YES"
Warning: The only thing that the
firewall_logging
variable will do is setting thenet.inet.ip.fw.verbose
sysctl variable to the value of 1 (see Section 31.6.1). There is no rc.conf variable to set log limitations, but it can be set via sysctl variable, manually or from the /etc/sysctl.conf file:net.inet.ip.fw.verbose_limit=5
If your machine is acting as a gateway, i.e., providing Network Address Translation (NAT) via natd(8), please refer to Section 32.10 for information regarding the required /etc/rc.conf options.
The ipfw command is the normal vehicle for making manual single rule additions or deletions to the active firewall internal rules while it is running. The problem with using this method is once your system is shutdown or halted all the rules that were added, changed or deleted are lost. Writing all your rules in a file and using that file to load the rules at boot time, or to replace in mass the currently running firewall rules with changes you made to the files content, is the recommended method used here.
The ipfw command is still a very useful way to display the running firewall rules to the console screen. The IPFW accounting facility dynamically creates a counter for each rule that counts each packet that matches the rule. During the process of testing a rule, listing the rule with its counter is one of the ways of determining if the rule is functioning.
To list all the rules in sequence:
# ipfw list
To list all the rules with a time stamp of when the last time the rule was matched:
# ipfw -t list
The next example lists accounting information, the packet count for matched rules along with the rules themselves. The first column is the rule number, followed by the number of outgoing matched packets, followed by the number of incoming matched packets, and then the rule itself.
# ipfw -a list
List the dynamic rules in addition to the static rules:
# ipfw -d list
Also show the expired dynamic rules:
# ipfw -d -e list
Zero the counters:
# ipfw zero
Zero the counters for just the rule with number NUM:
# ipfw zero NUM
A ruleset is a group of IPFW rules coded to allow or deny packets based on the values contained in the packet. The bi-directional exchange of packets between hosts comprises a session conversation. The firewall ruleset processes both the packets arriving from the public Internet, as well as the packets originating from the system as a response to them. Each TCP/IP service (i.e.: telnet, www, mail, etc.) is predefined by its protocol and privileged (listening) port. Packets destined for a specific service, originate from the source address using an unprivileged (high order) port and target the specific service port on the destination address. All the above parameters (i.e., ports and addresses) can be used as selection criteria to create rules which will pass or block services.
When a packet enters the firewall it is compared against the first rule in the ruleset and progresses one rule at a time moving from top to bottom of the set in ascending rule number sequence order. When the packet matches the selection parameters of a rule, the rules' action field value is executed and the search of the ruleset terminates for that packet. This is referred to as “the first match wins” search method. If the packet does not match any of the rules, it gets caught by the mandatory IPFW default rule, number 65535 which denies all packets and discards them without any reply back to the originating destination.
Note: The search continues after count, skipto and tee rules.
The instructions contained here are based on using rules that contain the stateful keep state, limit, in, out and via options. This is the basic framework for coding an inclusive type firewall ruleset.
Warning: Be careful when working with firewall rules, as it is easy to end up locking yourself out.
The rule syntax presented here has been simplified to what is necessary to create a standard inclusive type firewall ruleset. For a complete rule syntax description see the ipfw(8) manual page.
Rules contain keywords: these keywords have to be coded in a specific order from left to right on the line. Keywords are identified in bold type. Some keywords have sub-options which may be keywords them selves and also include more sub-options.
# is used to mark the start of a comment and may appear at the end of a rule line or on its own lines. Blank lines are ignored.
CMD RULE_NUMBER ACTION LOGGING SELECTION STATEFUL
A rule can be associated with one of the following actions, which will be executed when the packet matches the selection criterion of the rule.
allow | accept | pass | permit
These all mean the same thing which is to allow packets that match the rule to exit the firewall rule processing. The search terminates at this rule.
check-state
Checks the packet against the dynamic rules table. If a match is found, execute the action associated with the rule which generated this dynamic rule, otherwise move to the next rule. The check-state rule does not have selection criterion. If no check-state rule is present in the ruleset, the dynamic rules table is checked at the first keep-state or limit rule.
deny | drop
Both words mean the same thing which is to discard packets that match this rule. The search terminates.
log
or logamount
When a packet matches a rule with the log keyword, a message will be logged to syslogd(8) with a facility name of SECURITY. The logging only occurs if the number of packets logged so far for that particular rule does not exceed the logamount parameter. If no logamount is specified, the limit is taken from the sysctl variable net.inet.ip.fw.verbose_limit. In both cases, a value of zero removes the logging limit. Once the limit is reached, logging can be re-enabled by clearing the logging counter or the packet counter for that rule, see the ipfw reset log command.
Note: Logging is done after all other packet matching conditions have been successfully verified, and before performing the final action (accept, deny) on the packet. It is up to you to decide which rules you want to enable logging on.
The keywords described in this section are used to describe attributes of the packet to be checked when determining whether rules match the packet or not. The following general-purpose attributes are provided for matching, and must be used in this order:
udp | tcp | icmp
Any other protocol names found in /etc/protocols are also recognized and may be used. The value specified is the protocol to be matched against. This is a mandatory requirement.
from src to dst
The from and to keywords are used to match against IP addresses. Rules must specify both source and destination parameters. any is a special keyword that matches any IP address. me is a special keyword that matches any IP address configured on an interface in your FreeBSD system to represent the PC the firewall is running on (i.e.: this box) as in from me to any or from any to me or from 0.0.0.0/0 to any or from any to 0.0.0.0/0 or from 0.0.0.0 to any or from any to 0.0.0.0 or from me to 0.0.0.0. IP addresses are specified as a dotted IP address numeric form/mask-length (CIDR notation), or as single dotted IP address numeric form. This is a mandatory requirement. The net-mgmt/ipcalc port may be used to ease up the calculations. Additional information is available in the utility's web page: http://jodies.de/ipcalc.
port number
For protocols which support port numbers (such as TCP and UDP), it is mandatory to code the port number of the service that will be matched. Service names (from /etc/services) may be used instead of numeric port values.
in | out
Matches incoming or outgoing packets, respectively. The in and out are keywords and it is mandatory that one or the other is coded as part of your rule matching criterion.
via IF
Matches packets going through the interface specified by exact name. The via keyword causes the interface to always be checked as part of the match process.
setup
This is a mandatory keyword that identifies the session start request for TCP packets.
keep-state
This is a mandatory keyword. Upon a match, the firewall will create a dynamic rule, whose default behavior is to match bidirectional traffic between source and destination IP/port using the same protocol.
limit {src-addr | src-port | dst-addr |
dst-port}
The firewall will only allow N connections with the same set of parameters as specified in the rule. One or more of source and destination addresses and ports can be specified. The limit and keep-state can not be used on the same rule. The limit option provides the same stateful function as keep-state, plus its own functions.
Stateful filtering treats traffic as a bi-directional exchange of packets comprising a session conversation. It has the matching capabilities to determine if the session conversation between the originating sender and the destination are following the valid procedure of bi-directional packet exchange. Any packets that do not properly fit the session conversation template are automatically rejected as impostors.
The check-state option is used to identify where in the IPFW rules set the packet is to be tested against the dynamic rules facility. On a match the packet exits the firewall to continue on its way and a new rule is dynamically created for the next anticipated packet being exchanged during this bi-directional session conversation. On a no match the packet advances to the next rule in the ruleset for testing.
The dynamic rules facility is vulnerable to resource depletion from a SYN-flood attack which would open a huge number of dynamic rules. To counter this attack, FreeBSD added another new option named limit. This option is used to limit the number of simultaneous session conversations by checking the rules source or destinations fields as directed by the limit option and using the packet's IP address found there, in a search of the open dynamic rules counting the number of times this rule and IP address combination occurred, if this count is greater that the value specified on the limit option, the packet is discarded.
The benefits of logging are obvious: it provides the ability to review after the fact the rules you activated logging on which provides information like, what packets had been dropped, what addresses they came from and where they were going, giving you a significant edge in tracking down attackers.
Even with the logging facility enabled, IPFW will not generate any rule logging on it's own. The firewall administrator decides what rules in the ruleset will be logged, and adds the log verb to those rules. Normally only deny rules are logged, like the deny rule for incoming ICMP pings. It is very customary to duplicate the “ipfw default deny everything” rule with the log verb included as your last rule in the ruleset. This way it is possible to see all the packets that did not match any of the rules in the ruleset.
Logging is a two edged sword, if you are not careful, you can lose yourself in the over abundance of log data and fill your disk up with growing log files. DoS attacks that fill up disk drives is one of the oldest attacks around. These log messages are not only written to syslogd, but also are displayed on the root console screen and soon become very annoying.
The IPFIREWALL_VERBOSE_LIMIT=5 kernel option limits the number of consecutive messages sent to the system logger syslogd(8), concerning the packet matching of a given rule. When this option is enabled in the kernel, the number of consecutive messages concerning a particular rule is capped at the number specified. There is nothing to be gained from 200 log messages saying the same identical thing. For instance, five consecutive messages concerning a particular rule would be logged to syslogd, the remainder identical consecutive messages would be counted and posted to syslogd with a phrase like the following:
last message repeated 45 times
All logged packets messages are written by default to /var/log/security file, which is defined in the /etc/syslog.conf file.
Most experienced IPFW users create a file containing the rules and code them in a manner compatible with running them as a script. The major benefit of doing this is the firewall rules can be refreshed in mass without the need of rebooting the system to activate them. This method is very convenient in testing new rules as the procedure can be executed as many times as needed. Being a script, symbolic substitution can be used to code frequent used values and substitute them in multiple rules. This is shown in the following example.
The script syntax used here is compatible with the sh(1), csh(1), tcsh(1) shells. Symbolic substitution fields are prefixed with a dollar sign $. Symbolic fields do not have the $ prefix. The value to populate the symbolic field must be enclosed in "double quotes".
Start your rules file like this:
############### start of example ipfw rules script ############# # ipfw -q -f flush # Delete all rules # Set defaults oif="tun0" # out interface odns="192.0.2.11" # ISP's DNS server IP address cmd="ipfw -q add " # build rule prefix ks="keep-state" # just too lazy to key this each time $cmd 00500 check-state $cmd 00502 deny all from any to any frag $cmd 00501 deny tcp from any to any established $cmd 00600 allow tcp from any to any 80 out via $oif setup $ks $cmd 00610 allow tcp from any to $odns 53 out via $oif setup $ks $cmd 00611 allow udp from any to $odns 53 out via $oif $ks ################### End of example ipfw rules script ############
That is all there is to it. The rules are not important in this example, how the symbolic substitution field are populated and used are.
If the above example was in the /etc/ipfw.rules file, the rules could be reloaded by entering the following on the command line.
# sh /etc/ipfw.rules
The /etc/ipfw.rules file could be located anywhere you want and the file could be named any thing you would like.
The same thing could also be accomplished by running these commands by hand:
# ipfw -q -f flush # ipfw -q add check-state # ipfw -q add deny all from any to any frag # ipfw -q add deny tcp from any to any established # ipfw -q add allow tcp from any to any 80 out via tun0 setup keep-state # ipfw -q add allow tcp from any to 192.0.2.11 53 out via tun0 setup keep-state # ipfw -q add 00611 allow udp from any to 192.0.2.11 53 out via tun0 keep-state
The following non-NATed ruleset is an example of how to code a very secure 'inclusive' type of firewall. An inclusive firewall only allows services matching pass rules through and blocks all other by default. Firewalls designed to protect entire network segments, have at minimum two interfaces which must have rules to allow the firewall to function.
All UNIX flavored operating systems, FreeBSD included, are designed to use interface lo0 and IP address 127.0.0.1 for internal communication with in the operating system. The firewall rules must contain rules to allow free unmolested movement of these special internally used packets.
The interface which faces the public Internet is the one to place the rules that authorize and control access of the outbound and inbound connections. This can be your user PPP tun0 interface or your NIC that is connected to your DSL or cable modem.
In cases where one or more than one NICs are connected to a private LAN behind the firewall, those interfaces must have rules coded to allow free unmolested movement of packets originating from those LAN interfaces.
The rules should be first organized into three major sections, all the free unmolested interfaces, public interface outbound, and the public interface inbound.
The order of the rules in each of the public interface sections should be in order of the most used rules being placed before less often used rules with the last rule in the section blocking and logging all packets on that interface and direction.
The Outbound section in the following ruleset only contains allow rules which contain selection values that uniquely identify the service that is authorized for public Internet access. All the rules have the proto, port, in/out, via and keep state option coded. The proto tcp rules have the setup option included to identify the start session request as the trigger packet to be posted to the keep state stateful table.
The Inbound section has all the blocking of undesirable packets first, for two different reasons. The first is that malicious packets may be partial matches for legitimate traffic. These packets have to be discarded rather than allowed in, based on their partial matches against allow rules. The second reason is that known and uninteresting rejects may be blocked silently, rather than being caught and logged by the last rules in the section. The final rule in each section, blocks and logs all packets and can be used to create the legal evidence needed to prosecute the people who are attacking your system.
Another thing that should be taken care of, is to insure there is no response returned for any of the undesirable stuff. Invalid packets should just get dropped and vanish. This way the attacker has no knowledge if his packets have reached your system. The less the attackers can learn about your system, the more secure it is. Packets with unrecognized port numbers may be looked up in /etc/services/ or go to http://en.wikipedia.org/wiki/List_of_TCP_and_UDP_port_numbers and do a port number lookup to find the purpose of the particular port number is. Check out this link for port numbers used by Trojans: http://www.sans.org/security-resources/idfaq/oddports.php.
The following non-NATed ruleset is a complete inclusive type ruleset. It is safe to use this ruleset on your own systems. Just comment out any pass rules for services that are not required. To avoid logging undesired messages, add a deny rule in the inbound section. The dc0 interface will have to be changed in every rule, with the actual name of the interface (NIC) that connects your system to the public Internet. For user PPP, this would be tun0.
There is a noticeable pattern in the usage of these rules.
All statements that are a request to start a session to the public Internet use keep-state.
All the authorized services that originate from the public Internet have the limit option to stop flooding.
All rules use in or out to clarify direction.
All rules use via interface-name to specify the interface the packet is traveling over.
The following rules go into /etc/ipfw.rules.
################ Start of IPFW rules file ############################### # Flush out the list before we begin. ipfw -q -f flush # Set rules command prefix cmd="ipfw -q add" pif="dc0" # public interface name of NIC # facing the public Internet ################################################################# # No restrictions on Inside LAN Interface for private network # Not needed unless you have LAN. # Change xl0 to your LAN NIC interface name ################################################################# #$cmd 00005 allow all from any to any via xl0 ################################################################# # No restrictions on Loopback Interface ################################################################# $cmd 00010 allow all from any to any via lo0 ################################################################# # Allow the packet through if it has previous been added to the # the "dynamic" rules table by a allow keep-state statement. ################################################################# $cmd 00015 check-state ################################################################# # Interface facing Public Internet (Outbound Section) # Interrogate session start requests originating from behind the # firewall on the private network or from this gateway server # destined for the public Internet. ################################################################# # Allow out access to my ISP's Domain name server. # x.x.x.x must be the IP address of your ISP.s DNS # Dup these lines if your ISP has more than one DNS server # Get the IP addresses from /etc/resolv.conf file $cmd 00110 allow tcp from any to x.x.x.x 53 out via $pif setup keep-state $cmd 00111 allow udp from any to x.x.x.x 53 out via $pif keep-state # Allow out access to my ISP's DHCP server for cable/DSL configurations. # This rule is not needed for .user ppp. connection to the public Internet. # so you can delete this whole group. # Use the following rule and check log for IP address. # Then put IP address in commented out rule & delete first rule $cmd 00120 allow log udp from any to any 67 out via $pif keep-state #$cmd 00120 allow udp from any to x.x.x.x 67 out via $pif keep-state # Allow out non-secure standard www function $cmd 00200 allow tcp from any to any 80 out via $pif setup keep-state # Allow out secure www function https over TLS SSL $cmd 00220 allow tcp from any to any 443 out via $pif setup keep-state # Allow out send & get email function $cmd 00230 allow tcp from any to any 25 out via $pif setup keep-state $cmd 00231 allow tcp from any to any 110 out via $pif setup keep-state # Allow out FBSD (make install & CVSUP) functions # Basically give user root "GOD" privileges. $cmd 00240 allow tcp from me to any out via $pif setup keep-state uid root # Allow out ping $cmd 00250 allow icmp from any to any out via $pif keep-state # Allow out Time $cmd 00260 allow tcp from any to any 37 out via $pif setup keep-state # Allow out nntp news (i.e., news groups) $cmd 00270 allow tcp from any to any 119 out via $pif setup keep-state # Allow out secure FTP, Telnet, and SCP # This function is using SSH (secure shell) $cmd 00280 allow tcp from any to any 22 out via $pif setup keep-state # Allow out whois $cmd 00290 allow tcp from any to any 43 out via $pif setup keep-state # deny and log everything else that.s trying to get out. # This rule enforces the block all by default logic. $cmd 00299 deny log all from any to any out via $pif ################################################################# # Interface facing Public Internet (Inbound Section) # Check packets originating from the public Internet # destined for this gateway server or the private network. ################################################################# # Deny all inbound traffic from non-routable reserved address spaces $cmd 00300 deny all from 192.168.0.0/16 to any in via $pif #RFC 1918 private IP $cmd 00301 deny all from 172.16.0.0/12 to any in via $pif #RFC 1918 private IP $cmd 00302 deny all from 10.0.0.0/8 to any in via $pif #RFC 1918 private IP $cmd 00303 deny all from 127.0.0.0/8 to any in via $pif #loopback $cmd 00304 deny all from 0.0.0.0/8 to any in via $pif #loopback $cmd 00305 deny all from 169.254.0.0/16 to any in via $pif #DHCP auto-config $cmd 00306 deny all from 192.0.2.0/24 to any in via $pif #reserved for docs $cmd 00307 deny all from 204.152.64.0/23 to any in via $pif #Sun cluster interconnect $cmd 00308 deny all from 224.0.0.0/3 to any in via $pif #Class D & E multicast # Deny public pings $cmd 00310 deny icmp from any to any in via $pif # Deny ident $cmd 00315 deny tcp from any to any 113 in via $pif # Deny all Netbios service. 137=name, 138=datagram, 139=session # Netbios is MS/Windows sharing services. # Block MS/Windows hosts2 name server requests 81 $cmd 00320 deny tcp from any to any 137 in via $pif $cmd 00321 deny tcp from any to any 138 in via $pif $cmd 00322 deny tcp from any to any 139 in via $pif $cmd 00323 deny tcp from any to any 81 in via $pif # Deny any late arriving packets $cmd 00330 deny all from any to any frag in via $pif # Deny ACK packets that did not match the dynamic rule table $cmd 00332 deny tcp from any to any established in via $pif # Allow traffic in from ISP's DHCP server. This rule must contain # the IP address of your ISP.s DHCP server as it.s the only # authorized source to send this packet type. # Only necessary for cable or DSL configurations. # This rule is not needed for .user ppp. type connection to # the public Internet. This is the same IP address you captured # and used in the outbound section. #$cmd 00360 allow udp from any to x.x.x.x 67 in via $pif keep-state # Allow in standard www function because I have apache server $cmd 00400 allow tcp from any to me 80 in via $pif setup limit src-addr 2 # Allow in secure FTP, Telnet, and SCP from public Internet $cmd 00410 allow tcp from any to me 22 in via $pif setup limit src-addr 2 # Allow in non-secure Telnet session from public Internet # labeled non-secure because ID & PW are passed over public # Internet as clear text. # Delete this sample group if you do not have telnet server enabled. $cmd 00420 allow tcp from any to me 23 in via $pif setup limit src-addr 2 # Reject & Log all incoming connections from the outside $cmd 00499 deny log all from any to any in via $pif # Everything else is denied by default # deny and log all packets that fell through to see what they are $cmd 00999 deny log all from any to any ################ End of IPFW rules file ###############################
There are some additional configuration statements that need to be enabled to activate the NAT function of IPFW. The kernel source needs option IPDIVERT statement added to the other IPFIREWALL statements compiled into a custom kernel.
In addition to the normal IPFW options in /etc/rc.conf, the following are needed.
natd_enable="YES" # Enable NATD function natd_interface="rl0" # interface name of public Internet NIC natd_flags="-dynamic -m" # -m = preserve port numbers if possible
Utilizing stateful rules with divert natd rule (Network Address Translation) greatly complicates the ruleset coding logic. The positioning of the check-state, and divert natd rules in the ruleset becomes very critical. This is no longer a simple fall-through logic flow. A new action type is used, called skipto. To use the skipto command it is mandatory that each rule is numbered, so the skipto rule number knows exactly where it is jumping to.
The following is an uncommented example of one coding method, selected here to explain the sequence of the packet flow through the rulesets.
The processing flow starts with the first rule from the top of the rule file and progress one rule at a time deeper into the file until the end is reached or the packet being tested to the selection criteria matches and the packet is released out of the firewall. It is important to take notice of the location of rule numbers 100 101, 450, 500, and 510. These rules control the translation of the outbound and inbound packets so their entries in the keep-state dynamic table always register the private LAN IP address. Next notice that all the allow and deny rules specify the direction the packet is going (i.e.: outbound or inbound) and the interface. Also notice that the start outbound session requests, all skipto rule 500 for the network address translation.
Lets say a LAN user uses their web browser to get a web page. Web pages are transmitted over port 80. So the packet enters the firewall. It does not match rule 100 because it is headed out rather than in. It passes rule 101 because this is the first packet, so it has not been posted to the keep-state dynamic table yet. The packet finally comes to rule 125 a matches. It is outbound through the NIC facing the public Internet. The packet still has it's source IP address as a private LAN IP address. On the match to this rule, two actions take place. The keep-state option will post this rule into the keep-state dynamic rules table and the specified action is executed. The action is part of the info posted to the dynamic table. In this case it is skipto rule 500. Rule 500 NATs the packet IP address and out it goes. Remember this, this is very important. This packet makes its way to the destination, where a response packet is generated and sent back. This new packet enters the top of the ruleset. This time it does match rule 100 and has it destination IP address mapped back to its corresponding LAN IP address. It then is processed by the check-state rule, it is found in the table as an existing session conversation and released to the LAN. It goes to the LAN PC that sent it and a new packet is sent requesting another segment of the data from the remote server. This time it gets checked by the check-state rule and its outbound entry is found, the associated action, skipto 500, is executed. The packet jumps to rule 500 gets NATed and released on it's way out.
On the inbound side, everything coming in that is part of an existing session conversation is being automatically handled by the check-state rule and the properly placed divert natd rules. All we have to address is denying all the bad packets and only allowing in the authorized services. Lets say there is an apache server running on the firewall box and we want people on the public Internet to be able to access the local web site. The new inbound start request packet matches rule 100 and its IP address is mapped to LAN IP for the firewall box. The packet is then matched against all the nasty things that need to be checked for and finally matches against rule 425. On a match two things occur. The packet rule is posted to the keep-state dynamic table but this time any new session requests originating from that source IP address is limited to 2. This defends against DoS attacks of service running on the specified port number. The action is allow so the packet is released to the LAN. The packet generated as a response, is recognized by the check-state as belonging to anexisting session conversation. It is then sent to rule 500 for NATing and released to the outbound interface.
Example Ruleset #1:
#!/bin/sh cmd="ipfw -q add" skip="skipto 500" pif=rl0 ks="keep-state" good_tcpo="22,25,37,43,53,80,443,110,119" ipfw -q -f flush $cmd 002 allow all from any to any via xl0 # exclude LAN traffic $cmd 003 allow all from any to any via lo0 # exclude loopback traffic $cmd 100 divert natd ip from any to any in via $pif $cmd 101 check-state # Authorized outbound packets $cmd 120 $skip udp from any to xx.168.240.2 53 out via $pif $ks $cmd 121 $skip udp from any to xx.168.240.5 53 out via $pif $ks $cmd 125 $skip tcp from any to any $good_tcpo out via $pif setup $ks $cmd 130 $skip icmp from any to any out via $pif $ks $cmd 135 $skip udp from any to any 123 out via $pif $ks # Deny all inbound traffic from non-routable reserved address spaces $cmd 300 deny all from 192.168.0.0/16 to any in via $pif #RFC 1918 private IP $cmd 301 deny all from 172.16.0.0/12 to any in via $pif #RFC 1918 private IP $cmd 302 deny all from 10.0.0.0/8 to any in via $pif #RFC 1918 private IP $cmd 303 deny all from 127.0.0.0/8 to any in via $pif #loopback $cmd 304 deny all from 0.0.0.0/8 to any in via $pif #loopback $cmd 305 deny all from 169.254.0.0/16 to any in via $pif #DHCP auto-config $cmd 306 deny all from 192.0.2.0/24 to any in via $pif #reserved for docs $cmd 307 deny all from 204.152.64.0/23 to any in via $pif #Sun cluster $cmd 308 deny all from 224.0.0.0/3 to any in via $pif #Class D & E multicast # Authorized inbound packets $cmd 400 allow udp from xx.70.207.54 to any 68 in $ks $cmd 420 allow tcp from any to me 80 in via $pif setup limit src-addr 1 $cmd 450 deny log ip from any to any # This is skipto location for outbound stateful rules $cmd 500 divert natd ip from any to any out via $pif $cmd 510 allow ip from any to any ######################## end of rules ##################
The following is pretty much the same as above, but uses a self documenting coding style full of description comments to help the inexperienced IPFW rule writer to better understand what the rules are doing.
Example Ruleset #2:
#!/bin/sh ################ Start of IPFW rules file ############################### # Flush out the list before we begin. ipfw -q -f flush # Set rules command prefix cmd="ipfw -q add" skip="skipto 800" pif="rl0" # public interface name of NIC # facing the public Internet ################################################################# # No restrictions on Inside LAN Interface for private network # Change xl0 to your LAN NIC interface name ################################################################# $cmd 005 allow all from any to any via xl0 ################################################################# # No restrictions on Loopback Interface ################################################################# $cmd 010 allow all from any to any via lo0 ################################################################# # check if packet is inbound and nat address if it is ################################################################# $cmd 014 divert natd ip from any to any in via $pif ################################################################# # Allow the packet through if it has previous been added to the # the "dynamic" rules table by a allow keep-state statement. ################################################################# $cmd 015 check-state ################################################################# # Interface facing Public Internet (Outbound Section) # Check session start requests originating from behind the # firewall on the private network or from this gateway server # destined for the public Internet. ################################################################# # Allow out access to my ISP's Domain name server. # x.x.x.x must be the IP address of your ISP's DNS # Dup these lines if your ISP has more than one DNS server # Get the IP addresses from /etc/resolv.conf file $cmd 020 $skip tcp from any to x.x.x.x 53 out via $pif setup keep-state # Allow out access to my ISP's DHCP server for cable/DSL configurations. $cmd 030 $skip udp from any to x.x.x.x 67 out via $pif keep-state # Allow out non-secure standard www function $cmd 040 $skip tcp from any to any 80 out via $pif setup keep-state # Allow out secure www function https over TLS SSL $cmd 050 $skip tcp from any to any 443 out via $pif setup keep-state # Allow out send & get email function $cmd 060 $skip tcp from any to any 25 out via $pif setup keep-state $cmd 061 $skip tcp from any to any 110 out via $pif setup keep-state # Allow out FreeBSD (make install & CVSUP) functions # Basically give user root "GOD" privileges. $cmd 070 $skip tcp from me to any out via $pif setup keep-state uid root # Allow out ping $cmd 080 $skip icmp from any to any out via $pif keep-state # Allow out Time $cmd 090 $skip tcp from any to any 37 out via $pif setup keep-state # Allow out nntp news (i.e., news groups) $cmd 100 $skip tcp from any to any 119 out via $pif setup keep-state # Allow out secure FTP, Telnet, and SCP # This function is using SSH (secure shell) $cmd 110 $skip tcp from any to any 22 out via $pif setup keep-state # Allow out whois $cmd 120 $skip tcp from any to any 43 out via $pif setup keep-state # Allow ntp time server $cmd 130 $skip udp from any to any 123 out via $pif keep-state ################################################################# # Interface facing Public Internet (Inbound Section) # Check packets originating from the public Internet # destined for this gateway server or the private network. ################################################################# # Deny all inbound traffic from non-routable reserved address spaces $cmd 300 deny all from 192.168.0.0/16 to any in via $pif #RFC 1918 private IP $cmd 301 deny all from 172.16.0.0/12 to any in via $pif #RFC 1918 private IP $cmd 302 deny all from 10.0.0.0/8 to any in via $pif #RFC 1918 private IP $cmd 303 deny all from 127.0.0.0/8 to any in via $pif #loopback $cmd 304 deny all from 0.0.0.0/8 to any in via $pif #loopback $cmd 305 deny all from 169.254.0.0/16 to any in via $pif #DHCP auto-config $cmd 306 deny all from 192.0.2.0/24 to any in via $pif #reserved for docs $cmd 307 deny all from 204.152.64.0/23 to any in via $pif #Sun cluster $cmd 308 deny all from 224.0.0.0/3 to any in via $pif #Class D & E multicast # Deny ident $cmd 315 deny tcp from any to any 113 in via $pif # Deny all Netbios service. 137=name, 138=datagram, 139=session # Netbios is MS/Windows sharing services. # Block MS/Windows hosts2 name server requests 81 $cmd 320 deny tcp from any to any 137 in via $pif $cmd 321 deny tcp from any to any 138 in via $pif $cmd 322 deny tcp from any to any 139 in via $pif $cmd 323 deny tcp from any to any 81 in via $pif # Deny any late arriving packets $cmd 330 deny all from any to any frag in via $pif # Deny ACK packets that did not match the dynamic rule table $cmd 332 deny tcp from any to any established in via $pif # Allow traffic in from ISP's DHCP server. This rule must contain # the IP address of your ISP's DHCP server as it's the only # authorized source to send this packet type. # Only necessary for cable or DSL configurations. # This rule is not needed for 'user ppp' type connection to # the public Internet. This is the same IP address you captured # and used in the outbound section. $cmd 360 allow udp from x.x.x.x to any 68 in via $pif keep-state # Allow in standard www function because I have Apache server $cmd 370 allow tcp from any to me 80 in via $pif setup limit src-addr 2 # Allow in secure FTP, Telnet, and SCP from public Internet $cmd 380 allow tcp from any to me 22 in via $pif setup limit src-addr 2 # Allow in non-secure Telnet session from public Internet # labeled non-secure because ID & PW are passed over public # Internet as clear text. # Delete this sample group if you do not have telnet server enabled. $cmd 390 allow tcp from any to me 23 in via $pif setup limit src-addr 2 # Reject & Log all unauthorized incoming connections from the public Internet $cmd 400 deny log all from any to any in via $pif # Reject & Log all unauthorized out going connections to the public Internet $cmd 450 deny log all from any to any out via $pif # This is skipto location for outbound stateful rules $cmd 800 divert natd ip from any to any out via $pif $cmd 801 allow ip from any to any # Everything else is denied by default # deny and log all packets that fell through to see what they are $cmd 999 deny log all from any to any ################ End of IPFW rules file ###############################
This chapter will cover a number of advanced networking topics.
After reading this chapter, you will know:
The basics of gateways and routes.
How to set up IEEE® 802.11 and Bluetooth devices.
How to make FreeBSD act as a bridge.
How to set up network booting on a diskless machine.
How to set up network PXE booting with an NFS root file system.
How to set up network address translation.
How to connect two computers via PLIP.
How to set up IPv6 on a FreeBSD machine.
How to configure ATM.
How to enable and utilize the features of CARP, the Common Address Redundancy Protocol in FreeBSD
Before reading this chapter, you should:
For one machine to be able to find another over a network, there must be a mechanism in place to describe how to get from one to the other. This is called routing. A “route” is a defined pair of addresses: a “destination” and a “gateway”. The pair indicates that if you are trying to get to this destination, communicate through this gateway. There are three types of destinations: individual hosts, subnets, and “default”. The “default route” is used if none of the other routes apply. We will talk a little bit more about default routes later on. There are also three types of gateways: individual hosts, interfaces (also called “links”), and Ethernet hardware addresses (MAC addresses).
To illustrate different aspects of routing, we will use the following example from netstat:
% netstat -r Routing tables Destination Gateway Flags Refs Use Netif Expire default outside-gw UGSc 37 418 ppp0 localhost localhost UH 0 181 lo0 test0 0:e0:b5:36:cf:4f UHLW 5 63288 ed0 77 10.20.30.255 link#1 UHLW 1 2421 example.com link#1 UC 0 0 host1 0:e0:a8:37:8:1e UHLW 3 4601 lo0 host2 0:e0:a8:37:8:1e UHLW 0 5 lo0 => host2.example.com link#1 UC 0 0 224 link#1 UC 0 0
The first two lines specify the default route (which we will cover in the next section) and the localhost route.
The interface (Netif column) that this routing table specifies to use for localhost is lo0, also known as the loopback device. This says to keep all traffic for this destination internal, rather than sending it out over the LAN, since it will only end up back where it started.
The next thing that stands out are the addresses beginning with 0:e0:. These are Ethernet hardware addresses, which are also known as MAC addresses. FreeBSD will automatically identify any hosts (test0 in the example) on the local Ethernet and add a route for that host, directly to it over the Ethernet interface, ed0. There is also a timeout (Expire column) associated with this type of route, which is used if we fail to hear from the host in a specific amount of time. When this happens, the route to this host will be automatically deleted. These hosts are identified using a mechanism known as RIP (Routing Information Protocol), which figures out routes to local hosts based upon a shortest path determination.
FreeBSD will also add subnet routes for the local subnet (10.20.30.255 is the broadcast address for the subnet 10.20.30, and example.com is the domain name associated with that subnet). The designation link#1 refers to the first Ethernet card in the machine. You will notice no additional interface is specified for those.
Both of these groups (local network hosts and local subnets) have their routes automatically configured by a daemon called routed. If this is not run, then only routes which are statically defined (i.e., entered explicitly) will exist.
The host1 line refers to our host, which it knows by Ethernet address. Since we are the sending host, FreeBSD knows to use the loopback interface (lo0) rather than sending it out over the Ethernet interface.
The two host2 lines are an example of what happens when we use an ifconfig(8) alias (see the section on Ethernet for reasons why we would do this). The => symbol after the lo0 interface says that not only are we using the loopback (since this address also refers to the local host), but specifically it is an alias. Such routes only show up on the host that supports the alias; all other hosts on the local network will simply have a link#1 line for such routes.
The final line (destination subnet 224) deals with multicasting, which will be covered in another section.
Finally, various attributes of each route can be seen in the Flags column. Below is a short table of some of these flags and their meanings:
U | Up: The route is active. |
H | Host: The route destination is a single host. |
G | Gateway: Send anything for this destination on to this remote system, which will figure out from there where to send it. |
S | Static: This route was configured manually, not automatically generated by the system. |
C | Clone: Generates a new route based upon this route for machines we connect to. This type of route is normally used for local networks. |
W | WasCloned: Indicated a route that was auto-configured based upon a local area network (Clone) route. |
L | Link: Route involves references to Ethernet hardware. |
When the local system needs to make a connection to a remote host, it checks the routing table to determine if a known path exists. If the remote host falls into a subnet that we know how to reach (Cloned routes), then the system checks to see if it can connect along that interface.
If all known paths fail, the system has one last option: the “default” route. This route is a special type of gateway route (usually the only one present in the system), and is always marked with a c in the flags field. For hosts on a local area network, this gateway is set to whatever machine has a direct connection to the outside world (whether via PPP link, DSL, cable modem, T1, or another network interface).
If you are configuring the default route for a machine which itself is functioning as the gateway to the outside world, then the default route will be the gateway machine at your Internet Service Provider's (ISP) site.
Let us look at an example of default routes. This is a common configuration:
The hosts Local1 and Local2 are at your site. Local1 is connected to an ISP via a dial up PPP connection. This PPP server computer is connected through a local area network to another gateway computer through an external interface to the ISPs Internet feed.
The default routes for each of your machines will be:
A common question is “Why (or how) would we set the T1-GW to be the default gateway for Local1, rather than the ISP server it is connected to?”.
Remember, since the PPP interface is using an address on the ISP's local network for your side of the connection, routes for any other machines on the ISP's local network will be automatically generated. Hence, you will already know how to reach the T1-GW machine, so there is no need for the intermediate step of sending traffic to the ISP server.
It is common to use the address X.X.X.1 as the gateway address for your local network. So (using the same example), if your local class-C address space was 10.20.30 and your ISP was using 10.9.9 then the default routes would be:
Host | Default Route |
---|---|
Local2 (10.20.30.2) | Local1 (10.20.30.1) |
Local1 (10.20.30.1, 10.9.9.30) | T1-GW (10.9.9.1) |
The default route can be easily defined in /etc/rc.conf. In our example, on the Local2 machine, we added the following line in /etc/rc.conf:
defaultrouter="10.20.30.1"
It is also possible to do it directly from the command line with the route(8) command:
# route add default 10.20.30.1
For more information on manual manipulation of network routing tables, consult the route(8) manual page.
There is one other type of configuration that we should cover, and that is a host that sits on two different networks. Technically, any machine functioning as a gateway (in the example above, using a PPP connection) counts as a dual-homed host. But the term is really only used to refer to a machine that sits on two local-area networks.
In one case, the machine has two Ethernet cards, each having an address on the separate subnets. Alternately, the machine may only have one Ethernet card, and be using ifconfig(8) aliasing. The former is used if two physically separate Ethernet networks are in use, the latter if there is one physical network segment, but two logically separate subnets.
Either way, routing tables are set up so that each subnet knows that this machine is the defined gateway (inbound route) to the other subnet. This configuration, with the machine acting as a router between the two subnets, is often used when we need to implement packet filtering or firewall security in either or both directions.
If you want this machine to actually forward packets between the two interfaces, you need to tell FreeBSD to enable this ability. See the next section for more details on how to do this.
A network router is simply a system that forwards packets from one interface to another. Internet standards and good engineering practice prevent the FreeBSD Project from enabling this by default in FreeBSD. You can enable this feature by changing the following variable to YES in rc.conf(5):
gateway_enable="YES" # Set to YES if this host will be a gateway
This option will set the sysctl(8) variable
net.inet.ip.forwarding
to 1. If you should need to stop routing temporarily, you can
reset this to 0 temporarily.
Your new router will need routes to know where to send the traffic. If your network is simple enough you can use static routes. FreeBSD also comes with the standard BSD routing daemon routed(8), which speaks RIP (both version 1 and version 2) and IRDP. Support for BGP v4, OSPF v2, and other sophisticated routing protocols is available with the net/zebra package. Commercial products such as GateD® are also available for more complex network routing solutions.
Let us assume we have a network as follows:
In this scenario, RouterA is our FreeBSD machine that is acting as a router to the rest of the Internet. It has a default route set to 10.0.0.1 which allows it to connect with the outside world. We will assume that RouterB is already configured properly and knows how to get wherever it needs to go. (This is simple in this picture. Just add a default route on RouterB using 192.168.1.1 as the gateway.)
If we look at the routing table for RouterA we would see something like the following:
% netstat -nr Routing tables Internet: Destination Gateway Flags Refs Use Netif Expire default 10.0.0.1 UGS 0 49378 xl0 127.0.0.1 127.0.0.1 UH 0 6 lo0 10.0.0.0/24 link#1 UC 0 0 xl0 192.168.1.0/24 link#2 UC 0 0 xl1
With the current routing table RouterA will not be able to reach our Internal Net 2. It does not have a route for 192.168.2.0/24. One way to alleviate this is to manually add the route. The following command would add the Internal Net 2 network to RouterA's routing table using 192.168.1.2 as the next hop:
# route add -net 192.168.2.0/24 192.168.1.2
Now RouterA can reach any hosts on the 192.168.2.0/24 network.
The above example is perfect for configuring a static route on a running system. However, one problem is that the routing information will not persist if you reboot your FreeBSD machine. Additional static routes can be entered in /etc/rc.conf:
# Add Internal Net 2 as a static route static_routes="internalnet2" route_internalnet2="-net 192.168.2.0/24 192.168.1.2"
The static_routes configuration variable is a list of strings separated by a space. Each string references to a route name. In our above example we only have one string in static_routes. This string is internalnet2. We then add a configuration variable called route_internalnet2 where we put all of the configuration parameters we would give to the route(8) command. For our example above we would have used the command:
# route add -net 192.168.2.0/24 192.168.1.2
so we need "-net 192.168.2.0/24 192.168.1.2".
As said above, we can have more than one string in static_routes. This allows us to create multiple static routes. The following lines shows an example of adding static routes for the 192.168.0.0/24 and 192.168.1.0/24 networks on an imaginary router:
static_routes="net1 net2" route_net1="-net 192.168.0.0/24 192.168.0.1" route_net2="-net 192.168.1.0/24 192.168.1.1"
We have already talked about how we define our routes to the outside world, but not about how the outside world finds us.
We already know that routing tables can be set up so that all traffic for a particular address space (in our examples, a class-C subnet) can be sent to a particular host on that network, which will forward the packets inbound.
When you get an address space assigned to your site, your service provider will set up their routing tables so that all traffic for your subnet will be sent down your PPP link to your site. But how do sites across the country know to send to your ISP?
There is a system (much like the distributed DNS information) that keeps track of all assigned address-spaces, and defines their point of connection to the Internet Backbone. The “Backbone” are the main trunk lines that carry Internet traffic across the country, and around the world. Each backbone machine has a copy of a master set of tables, which direct traffic for a particular network to a specific backbone carrier, and from there down the chain of service providers until it reaches your network.
It is the task of your service provider to advertise to the backbone sites that they are the point of connection (and thus the path inward) for your site. This is known as route propagation.
Sometimes, there is a problem with routing propagation, and some sites are unable to connect to you. Perhaps the most useful command for trying to figure out where routing is breaking down is the traceroute(8) command. It is equally useful if you cannot seem to make a connection to a remote machine (i.e., ping(8) fails).
The traceroute(8) command is run with the name of the remote host you are trying to connect to. It will show the gateway hosts along the path of the attempt, eventually either reaching the target host, or terminating because of a lack of connection.
For more information, see the manual page for traceroute(8).
FreeBSD supports both multicast applications and multicast routing natively. Multicast applications do not require any special configuration of FreeBSD; applications will generally run out of the box. Multicast routing requires that support be compiled into the kernel:
options MROUTING
In addition, the multicast routing daemon, mrouted(8) must be configured to set up tunnels and DVMRP via /etc/mrouted.conf. More details on multicast configuration may be found in the manual page for mrouted(8).
Note: The mrouted(8) multicast routing daemon implements the DVMRP multicast routing protocol, which has largely been replaced by pim(4) in many multicast installations. mrouted(8) and the related map-mbone(8) and mrinfo(8) utilities are available in the FreeBSD Ports Collection as net/mrouted.
Most wireless networks are based on the IEEE 802.11 standards. A basic wireless network consists of multiple stations communicating with radios that broadcast in either the 2.4GHz or 5GHz band (though this varies according to the locale and is also changing to enable communication in the 2.3GHz and 4.9GHz ranges).
802.11 networks are organized in two ways: in infrastructure mode one station acts as a master with all the other stations associating to it; the network is known as a BSS and the master station is termed an access point (AP). In a BSS all communication passes through the AP; even when one station wants to communicate with another wireless station messages must go through the AP. In the second form of network there is no master and stations communicate directly. This form of network is termed an IBSS and is commonly known as an ad-hoc network.
802.11 networks were first deployed in the 2.4GHz band using protocols defined by the IEEE 802.11 and 802.11b standard. These specifications include the operating frequencies, MAC layer characteristics including framing and transmission rates (communication can be done at various rates). Later the 802.11a standard defined operation in the 5GHz band, including different signalling mechanisms and higher transmission rates. Still later the 802.11g standard was defined to enable use of 802.11a signalling and transmission mechanisms in the 2.4GHz band in such a way as to be backwards compatible with 802.11b networks.
Separate from the underlying transmission techniques 802.11 networks have a variety of security mechanisms. The original 802.11 specifications defined a simple security protocol called WEP. This protocol uses a fixed pre-shared key and the RC4 cryptographic cipher to encode data transmitted on a network. Stations must all agree on the fixed key in order to communicate. This scheme was shown to be easily broken and is now rarely used except to discourage transient users from joining networks. Current security practice is given by the IEEE 802.11i specification that defines new cryptographic ciphers and an additional protocol to authenticate stations to an access point and exchange keys for doing data communication. Further, cryptographic keys are periodically refreshed and there are mechanisms for detecting intrusion attempts (and for countering intrusion attempts). Another security protocol specification commonly used in wireless networks is termed WPA. This was a precursor to 802.11i defined by an industry group as an interim measure while waiting for 802.11i to be ratified. WPA specifies a subset of the requirements found in 802.11i and is designed for implementation on legacy hardware. Specifically WPA requires only the TKIP cipher that is derived from the original WEP cipher. 802.11i permits use of TKIP but also requires support for a stronger cipher, AES-CCM, for encrypting data. (The AES cipher was not required in WPA because it was deemed too computationally costly to be implemented on legacy hardware.)
Other than the above protocol standards the other important standard to be aware of is 802.11e. This defines protocols for deploying multi-media applications such as streaming video and voice over IP (VoIP) in an 802.11 network. Like 802.11i, 802.11e also has a precursor specification termed WME (later renamed WMM) that has been defined by an industry group as a subset of 802.11e that can be deployed now to enable multi-media applications while waiting for the final ratification of 802.11e. The most important thing to know about 802.11e and WME/WMM is that it enables prioritized traffic use of a wireless network through Quality of Service (QoS) protocols and enhanced media access protocols. Proper implementation of these protocols enable high speed bursting of data and prioritized traffic flow.
FreeBSD supports networks that operate using 802.11a, 802.11b, and 802.11g. The WPA and 802.11i security protocols are likewise supported (in conjunction with any of 11a, 11b, and 11g) and QoS and traffic prioritization required by the WME/WMM protocols are supported for a limited set of wireless devices.
To use wireless networking, you need a wireless networking card and to configure the kernel with the appropriate wireless networking support. The latter is separated into multiple modules so that you only need to configure the software you are actually going to use.
The first thing you need is a wireless device. The most commonly used devices are those that use parts made by Atheros. These devices are supported by the ath(4) driver and require the following line to be added to /boot/loader.conf:
if_ath_load="YES"
The Atheros driver is split up into three separate pieces: the proper driver (ath(4)), the hardware support layer that handles chip-specific functions (ath_hal(4)), and an algorithm for selecting which of several possible rates for transmitting frames (ath_rate_sample here). When this support is loaded as kernel modules, these dependencies are automatically handled for you. If, instead of an Atheros device, you had another device you would select the module for that device; e.g.:
if_wi_load="YES"
for devices based on the Intersil Prism parts (wi(4) driver).
Note: In the rest of this document, we will use an ath(4) device, the device name in the examples must be changed according to your configuration. A list of available wireless drivers and supported adapters can be found in the FreeBSD Hardware Notes. Copies of these notes for various releases and architectures are available on the Release Information page of the FreeBSD Web site. If a native FreeBSD driver for your wireless device does not exist, it may be possible to directly use the Windows driver with the help of the NDIS driver wrapper.
Under FreeBSD 7.X, with a device driver you need to also bring in the 802.11 networking support required by the driver. For the ath(4) driver these are at least the wlan(4), wlan_scan_ap and wlan_scan_sta modules; the wlan(4) module is automatically loaded with the wireless device driver, the remaining modules must be loaded at boot time in /boot/loader.conf:
wlan_scan_ap_load="YES" wlan_scan_sta_load="YES"
Since FreeBSD 8.0, these modules are part of the base wlan(4) driver which is dynamically loaded with the adapter driver.
With that, you will need the modules that implement cryptographic support for the security protocols you intend to use. These are intended to be dynamically loaded on demand by the wlan(4) module but for now they must be manually configured. The following modules are available: wlan_wep(4), wlan_ccmp(4) and wlan_tkip(4). Both wlan_ccmp(4) and wlan_tkip(4) drivers are only needed if you intend to use the WPA and/or 802.11i security protocols. If your network does not use encryption, you will not need wlan_wep(4) support. To load these modules at boot time, add the following lines to /boot/loader.conf:
wlan_wep_load="YES" wlan_ccmp_load="YES" wlan_tkip_load="YES"
With this information in the system bootstrap configuration file (i.e., /boot/loader.conf), you have to reboot your FreeBSD box. If you do not want to reboot your machine for the moment, you can load the modules by hand using kldload(8).
Note: If you do not want to use modules, it is possible to compile these drivers into the kernel by adding the following lines to your kernel configuration file:
device wlan # 802.11 support device wlan_wep # 802.11 WEP support device wlan_ccmp # 802.11 CCMP support device wlan_tkip # 802.11 TKIP support device wlan_amrr # AMRR transmit rate control algorithm device ath # Atheros pci/cardbus NIC's device ath_hal # pci/cardbus chip support options AH_SUPPORT_AR5416 # enable AR5416 tx/rx descriptors device ath_rate_sample # SampleRate tx rate control for athBoth following lines are also required by FreeBSD 7.X, other FreeBSD versions do not need them:
device wlan_scan_ap # 802.11 AP mode scanning device wlan_scan_sta # 802.11 STA mode scanningWith this information in the kernel configuration file, recompile the kernel and reboot your FreeBSD machine.
When the system is up, we could find some information about the wireless device in the boot messages, like this:
ath0: <Atheros 5212> mem 0x88000000-0x8800ffff irq 11 at device 0.0 on cardbus1 ath0: [ITHREAD] ath0: AR2413 mac 7.9 RF2413 phy 4.5
The infrastructure mode or BSS mode is the mode that is typically used. In this mode, a number of wireless access points are connected to a wired network. Each wireless network has its own name, this name is called the SSID of the network. Wireless clients connect to the wireless access points.
To scan for networks, use the ifconfig command. This request may take a few moments to complete as it requires that the system switches to each available wireless frequency and probes for available access points. Only the super-user can initiate such a scan:
# ifconfig wlan0 create wlandev ath0 # ifconfig wlan0 up scan SSID/MESH ID BSSID CHAN RATE S:N INT CAPS dlinkap 00:13:46:49:41:76 11 54M -90:96 100 EPS WPA WME freebsdap 00:11:95:c3:0d:ac 1 54M -83:96 100 EPS WPA
Note: You must mark the interface
up
before you can scan. Subsequent scan requests do not require you to mark the interface up again.
Note: Under FreeBSD 7.X, the adapter device, for example ath0, is used directly instead of the wlan0 device. This requires you to replace the both previous lines with:
# ifconfig ath0 up scanIn the rest of this document, FreeBSD 7.X users will need to change the command and configuration lines according to that scheme.
The output of a scan request lists each BSS/IBSS network found. Beside the name of the network, SSID, we find the BSSID which is the MAC address of the access point. The CAPS field identifies the type of each network and the capabilities of the stations operating there:
Table 32-1. Station Capability Codes
Capability Code | Meaning |
---|---|
E | Extended Service Set (ESS). Indicates that the station is part of an infrastructure network (in contrast to an IBSS/ad-hoc network). |
I | IBSS/ad-hoc network. Indicates that the station is part of an ad-hoc network (in contrast to an ESS network). |
P | Privacy. Data confidentiality is required for all data frames exchanged within the BSS. This means that this BSS requires the station to use cryptographic means such as WEP, TKIP or AES-CCMP to encrypt/decrypt data frames being exchanged with others. |
S | Short Preamble. Indicates that the network is using short preambles (defined in 802.11b High Rate/DSSS PHY, short preamble utilizes a 56 bit sync field in contrast to a 128 bit field used in long preamble mode). |
s | Short slot time. Indicates that the 802.11g network is using a short slot time because there are no legacy (802.11b) stations present. |
One can also display the current list of known networks with:
# ifconfig wlan0 list scan
This information may be updated automatically by the adapter or manually with a
scan
request. Old data is automatically removed from
the cache, so over time this list may shrink unless more scans are done.
This section provides a simple example of how to make the wireless network adapter work in FreeBSD without encryption. After you are familiar with these concepts, we strongly recommend using WPA to set up your wireless network.
There are three basic steps to configure a wireless network: selecting an access point, authenticating your station, and configuring an IP address. The following sections discuss each step.
Most of time it is sufficient to let the system choose an access point using the builtin heuristics. This is the default behaviour when you mark an interface up or otherwise configure an interface by listing it in /etc/rc.conf, e.g.:
wlans_ath0="wlan0" ifconfig_wlan0="DHCP"
Note: As previously mentioned, FreeBSD 7.X will only require a line related to the adapter device:
ifconfig_ath0="DHCP"
If there are multiple access points and you want to select a specific one, you can select it by its SSID:
wlans_ath0="wlan0" ifconfig_wlan0="ssid your_ssid_here DHCP"
In an environment where there are multiple access points with the same SSID (often done to simplify roaming) it may be necessary to associate to one specific device. In this case you can also specify the BSSID of the access point (you can also leave off the SSID):
wlans_ath0="wlan0" ifconfig_wlan0="ssid your_ssid_here bssid xx:xx:xx:xx:xx:xx DHCP"
There are other ways to constrain the choice of an access point such as limiting
the set of frequencies the system will scan on. This may be useful if you have a
multi-band wireless card as scanning all the possible channels can be
time-consuming. To limit operation to a specific band you can use the mode
parameter; e.g.:
wlans_ath0="wlan0" ifconfig_wlan0="mode 11g ssid your_ssid_here DHCP"
will force the card to operate in 802.11g which is defined only for 2.4GHz
frequencies so any 5GHz channels will not be considered. Other ways to do this are
the channel
parameter, to lock operation to one
specific frequency, and the chanlist
parameter, to
specify a list of channels for scanning. More information about these
parameters can be found in the ifconfig(8) manual
page.
Once you have selected an access point your station needs to authenticate before it can pass data. Authentication can happen in several ways. The most common scheme used is termed open authentication and allows any station to join the network and communicate. This is the authentication you should use for test purpose the first time you set up a wireless network. Other schemes require cryptographic handshakes be completed before data traffic can flow; either using pre-shared keys or secrets, or more complex schemes that involve backend services such as RADIUS. Most users will use open authentication which is the default setting. Next most common setup is WPA-PSK, also known as WPA Personal, which is described below.
Note: If you have an Apple AirPort® Extreme base station for an access point you may need to configure shared-key authentication together with a WEP key. This can be done in the /etc/rc.conf file or using the wpa_supplicant(8) program. If you have a single AirPort base station you can setup access with something like:
wlans_ath0="wlan0" ifconfig_wlan0="authmode shared wepmode on weptxkey 1 wepkey 01234567 DHCP"In general shared key authentication is to be avoided because it uses the WEP key material in a highly-constrained manner making it even easier to crack the key. If WEP must be used (e.g., for compatibility with legacy devices) it is better to use WEP with open authentication. More information regarding WEP can be found in the Section 32.3.3.1.4.
Once you have selected an access point and set the authentication parameters, you will have to get an IP address to communicate. Most of time you will obtain your wireless IP address via DHCP. To achieve that, edit /etc/rc.conf and add DHCP to the configuration for your device as shown in various examples above:
wlans_ath0="wlan0" ifconfig_wlan0="DHCP"
At this point, you are ready to bring up the wireless interface:
# /etc/rc.d/netif start
Once the interface is running, use ifconfig to see the status of the interface ath0:
# ifconfig wlan0 wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> mtu 1500 ether 00:11:95:d5:43:62 inet 192.168.1.100 netmask 0xffffff00 broadcast 192.168.1.255 media: IEEE 802.11 Wireless Ethernet OFDM/54Mbps mode 11g status: associated ssid dlinkap channel 11 (2462 Mhz 11g) bssid 00:13:46:49:41:76 country US ecm authmode OPEN privacy OFF txpower 21.5 bmiss 7 scanvalid 60 bgscan bgscanintvl 300 bgscanidle 250 roam:rssi 7 roam:rate 5 protmode CTS wme burst
The status: associated means you are connected to the wireless network (to the dlinkap network in our case). The bssid 00:13:46:49:41:76 part is the MAC address of your access point; the authmode OPEN part informs you that the communication is not encrypted.
In the case you cannot obtain an IP address from a DHCP server, you can set a fixed IP address. Replace the DHCP keyword shown above with the address information. Be sure to retain any other parameters you have set up for selecting an access point:
wlans_ath0="wlan0" ifconfig_wlan0="inet 192.168.1.100 netmask 255.255.255.0 ssid your_ssid_here"
WPA (Wi-Fi Protected Access) is a security protocol used together with 802.11 networks to address the lack of proper authentication and the weakness of WEP. WPA leverages the 802.1X authentication protocol and uses one of several ciphers instead of WEP for data integrity. The only cipher required by WPA is TKIP (Temporary Key Integrity Protocol). TKIP is a cipher that extends the basic RC4 cipher used by WEP by adding integrity checking, tamper detection, and measures for responding to any detected intrusions. TKIP is designed to work on legacy hardware with only software modification; it represents a compromise that improves security but is still not entirely immune to attack. WPA also specifies the AES-CCMP cipher as an alternative to TKIP and that is preferred when possible; for this specification the term WPA2 (or RSN) is commonly used.
WPA defines authentication and encryption protocols. Authentication is most commonly done using one of two techniques: by 802.1X and a backend authentication service such as RADIUS, or by a minimal handshake between the station and the access point using a pre-shared secret. The former is commonly termed WPA Enterprise with the latter known as WPA Personal. Since most people will not set up a RADIUS backend server for their wireless network, WPA-PSK is by far the most commonly encountered configuration for WPA.
The control of the wireless connection and the authentication (key negotiation or authentication with a server) is done with the wpa_supplicant(8) utility. This program requires a configuration file, /etc/wpa_supplicant.conf, to run. More information regarding this file can be found in the wpa_supplicant.conf(5) manual page.
WPA-PSK, also known as WPA-Personal, is based on a pre-shared key (PSK) generated from a given password and that will be used as the master key in the wireless network. This means every wireless user will share the same key. WPA-PSK is intended for small networks where the use of an authentication server is not possible or desired.
Warning: Always use strong passwords that are sufficiently long and made from a rich alphabet so they will not be guessed and/or attacked.
The first step is the configuration of the /etc/wpa_supplicant.conf file with the SSID and the pre-shared key of your network:
network={ ssid="freebsdap" psk="freebsdmall" }
Then, in /etc/rc.conf, we indicate that the wireless device configuration will be done with WPA and the IP address will be obtained with DHCP:
wlans_ath0="wlan0" ifconfig_wlan0="WPA DHCP"
Then we can bring up the interface:
# /etc/rc.d/netif start Starting wpa_supplicant. DHCPDISCOVER on wlan0 to 255.255.255.255 port 67 interval 5 DHCPDISCOVER on wlan0 to 255.255.255.255 port 67 interval 6 DHCPOFFER from 192.168.0.1 DHCPREQUEST on wlan0 to 255.255.255.255 port 67 DHCPACK from 192.168.0.1 bound to 192.168.0.254 -- renewal in 300 seconds. wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> mtu 1500 ether 00:11:95:d5:43:62 inet 192.168.0.254 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet OFDM/36Mbps mode 11g status: associated ssid freebsdap channel 1 (2412 Mhz 11g) bssid 00:11:95:c3:0d:ac country US ecm authmode WPA2/802.11i privacy ON deftxkey UNDEF AES-CCM 3:128-bit txpower 21.5 bmiss 7 scanvalid 450 bgscan bgscanintvl 300 bgscanidle 250 roam:rssi 7 roam:rate 5 protmode CTS wme burst roaming MANUAL
Or you can try to configure it manually using the same /etc/wpa_supplicant.conf above, and run:
# wpa_supplicant -i wlan0 -c /etc/wpa_supplicant.conf Trying to associate with 00:11:95:c3:0d:ac (SSID='freebsdap' freq=2412 MHz) Associated with 00:11:95:c3:0d:ac WPA: Key negotiation completed with 00:11:95:c3:0d:ac [PTK=CCMP GTK=CCMP] CTRL-EVENT-CONNECTED - Connection to 00:11:95:c3:0d:ac completed (auth) [id=0 id_str=]
The next operation is the launch of the dhclient command to get the IP address from the DHCP server:
# dhclient wlan0 DHCPREQUEST on wlan0 to 255.255.255.255 port 67 DHCPACK from 192.168.0.1 bound to 192.168.0.254 -- renewal in 300 seconds. # ifconfig wlan0 wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> mtu 1500 ether 00:11:95:d5:43:62 inet 192.168.0.254 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet OFDM/36Mbps mode 11g status: associated ssid freebsdap channel 1 (2412 Mhz 11g) bssid 00:11:95:c3:0d:ac country US ecm authmode WPA2/802.11i privacy ON deftxkey UNDEF AES-CCM 3:128-bit txpower 21.5 bmiss 7 scanvalid 450 bgscan bgscanintvl 300 bgscanidle 250 roam:rssi 7 roam:rate 5 protmode CTS wme burst roaming MANUAL
Note: If /etc/rc.conf has an ifconfig_wlan0 entry with the DHCP string (like ifconfig_wlan0="DHCP"), dhclient will be launched automatically after wpa_supplicant associates with the access point.
If DHCP is not possible or desired, you can set a static IP address after wpa_supplicant has authenticated the station:
# ifconfig wlan0 inet 192.168.0.100 netmask 255.255.255.0 # ifconfig wlan0 wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> mtu 1500 ether 00:11:95:d5:43:62 inet 192.168.0.100 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet OFDM/36Mbps mode 11g status: associated ssid freebsdap channel 1 (2412 Mhz 11g) bssid 00:11:95:c3:0d:ac country US ecm authmode WPA2/802.11i privacy ON deftxkey UNDEF AES-CCM 3:128-bit txpower 21.5 bmiss 7 scanvalid 450 bgscan bgscanintvl 300 bgscanidle 250 roam:rssi 7 roam:rate 5 protmode CTS wme burst roaming MANUAL
When DHCP is not used, you also have to manually set the default gateway and the nameserver:
# route add default your_default_router # echo "nameserver your_DNS_server" >> /etc/resolv.conf
The second way to use WPA is with an 802.1X backend authentication server. In this case WPA is called WPA-Enterprise to differentiate it from the less secure WPA-Personal with its pre-shared key. Authentication in WPA-Enterprise is based on the Extensible Authentication Protocol (EAP).
EAP does not come with an encryption method. Instead, it was decided to embed EAP inside an encrypted tunnel. There are many EAP authentication methods, but EAP-TLS, EAP-TTLS, and EAP-PEAP are the most common.
EAP-TLS (EAP with Transport Layer Security) is a very well-supported authentication protocol in the wireless world since it was the first EAP method to be certified by the Wi-Fi alliance. EAP-TLS will require three certificates to run: the CA certificate (installed on all machines), the server certificate for your authentication server, and one client certificate for each wireless client. In this EAP method, both authentication server and wireless client authenticate each other in presenting their respective certificates, and they verify that these certificates were signed by your organization's certificate authority (CA).
As previously, the configuration is done via /etc/wpa_supplicant.conf:
network={ ssid="freebsdap" proto=RSN key_mgmt=WPA-EAP eap=TLS identity="loader" ca_cert="/etc/certs/cacert.pem" client_cert="/etc/certs/clientcert.pem" private_key="/etc/certs/clientkey.pem" private_key_passwd="freebsdmallclient" }
Then add the following lines to /etc/rc.conf:
wlans_ath0="wlan0" ifconfig_wlan0="WPA DHCP"
The next step is to bring up the interface with the help of the rc.d facility:
# /etc/rc.d/netif start Starting wpa_supplicant. DHCPREQUEST on wlan0 to 255.255.255.255 port 67 interval 7 DHCPREQUEST on wlan0 to 255.255.255.255 port 67 interval 15 DHCPACK from 192.168.0.20 bound to 192.168.0.254 -- renewal in 300 seconds. wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> mtu 1500 ether 00:11:95:d5:43:62 inet 192.168.0.254 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet DS/11Mbps mode 11g status: associated ssid freebsdap channel 1 (2412 Mhz 11g) bssid 00:11:95:c3:0d:ac country US ecm authmode WPA2/802.11i privacy ON deftxkey UNDEF AES-CCM 3:128-bit txpower 21.5 bmiss 7 scanvalid 450 bgscan bgscanintvl 300 bgscanidle 250 roam:rssi 7 roam:rate 5 protmode CTS wme burst roaming MANUAL
As previously shown, it is also possible to bring up the interface manually with both wpa_supplicant and ifconfig commands.
With EAP-TLS both the authentication server and the client need a certificate, with EAP-TTLS (EAP-Tunneled Transport Layer Security) a client certificate is optional. This method is close to what some secure web sites do , where the web server can create a secure SSL tunnel even if the visitors do not have client-side certificates. EAP-TTLS will use the encrypted TLS tunnel for safe transport of the authentication data.
The configuration is done via the /etc/wpa_supplicant.conf file:
network={ ssid="freebsdap" proto=RSN key_mgmt=WPA-EAP eap=TTLS identity="test" password="test" ca_cert="/etc/certs/cacert.pem" phase2="auth=MD5" }
You also have to add the following lines to /etc/rc.conf:
wlans_ath0="wlan0" ifconfig_wlan0="WPA DHCP"
The next step is to bring up the interface:
# /etc/rc.d/netif start Starting wpa_supplicant. DHCPREQUEST on wlan0 to 255.255.255.255 port 67 interval 7 DHCPREQUEST on wlan0 to 255.255.255.255 port 67 interval 15 DHCPREQUEST on wlan0 to 255.255.255.255 port 67 interval 21 DHCPACK from 192.168.0.20 bound to 192.168.0.254 -- renewal in 300 seconds. wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> mtu 1500 ether 00:11:95:d5:43:62 inet 192.168.0.254 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet DS/11Mbps mode 11g status: associated ssid freebsdap channel 1 (2412 Mhz 11g) bssid 00:11:95:c3:0d:ac country US ecm authmode WPA2/802.11i privacy ON deftxkey UNDEF AES-CCM 3:128-bit txpower 21.5 bmiss 7 scanvalid 450 bgscan bgscanintvl 300 bgscanidle 250 roam:rssi 7 roam:rate 5 protmode CTS wme burst roaming MANUAL
Note: PEAPv0/EAP-MSCHAPv2 is the most common PEAP method. In the rest of this document, we will use the PEAP term to refer to that method.
PEAP (Protected EAP) has been designed as an alternative to EAP-TTLS, and is the most used EAP standard after EAP-TLS. In other words, if you have a network with mixed OSes, PEAP should be the most supported standard after EAP-TLS.
PEAP is similar to EAP-TTLS: it uses a server-side certificate to authenticate clients by creating an encrypted TLS tunnel between the client and the authentication server, which protects the ensuing exchange of authentication information. In terms of security, the difference between EAP-TTLS and PEAP is that PEAP authentication broadcasts the username in the clear, with only the password sent in the encrypted TLS tunnel. EAP-TTLS will use the TLS tunnel for both username and password.
We have to edit the /etc/wpa_supplicant.conf file and add the EAP-PEAP related settings:
network={ ssid="freebsdap" proto=RSN key_mgmt=WPA-EAP eap=PEAP identity="test" password="test" ca_cert="/etc/certs/cacert.pem" phase1="peaplabel=0" phase2="auth=MSCHAPV2" }
The following must be added to /etc/rc.conf:
wlans_ath0="wlan0" ifconfig_wlan0="WPA DHCP"
Then we can bring up the interface:
# /etc/rc.d/netif start Starting wpa_supplicant. DHCPREQUEST on wlan0 to 255.255.255.255 port 67 interval 7 DHCPREQUEST on wlan0 to 255.255.255.255 port 67 interval 15 DHCPREQUEST on wlan0 to 255.255.255.255 port 67 interval 21 DHCPACK from 192.168.0.20 bound to 192.168.0.254 -- renewal in 300 seconds. wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> mtu 1500 ether 00:11:95:d5:43:62 inet 192.168.0.254 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet DS/11Mbps mode 11g status: associated ssid freebsdap channel 1 (2412 Mhz 11g) bssid 00:11:95:c3:0d:ac country US ecm authmode WPA2/802.11i privacy ON deftxkey UNDEF AES-CCM 3:128-bit txpower 21.5 bmiss 7 scanvalid 450 bgscan bgscanintvl 300 bgscanidle 250 roam:rssi 7 roam:rate 5 protmode CTS wme burst roaming MANUAL
WEP (Wired Equivalent Privacy) is part of the original 802.11 standard. There is no authentication mechanism, only a weak form of access control, and it is easily cracked.
WEP can be set up with ifconfig:
# ifconfig wlan0 create wlandev ath0 # ifconfig wlan0 inet 192.168.1.100 netmask 255.255.255.0 \ ssid my_net wepmode on weptxkey 3 wepkey 3:0x3456789012
The weptxkey means which WEP key will be used in the transmission. Here we used the third key. This must match the setting in the access point. If you do not have any idea of which key is used by the access point, try 1 (i.e., the first key) for this value.
The wepkey selects one of the WEP keys. It should be in the format index:key. Key 1 is used by default; the index only needs to be set if we use a key other than the first key.
Note: You must replace the 0x3456789012 with the key configured for use on the access point.
You are encouraged to read the ifconfig(8) manual page for further information.
The wpa_supplicant facility also can be used to configure your wireless interface with WEP. The example above can be set up by adding the following lines to /etc/wpa_supplicant.conf:
network={ ssid="my_net" key_mgmt=NONE wep_key3=3456789012 wep_tx_keyidx=3 }
Then:
# wpa_supplicant -i wlan0 -c /etc/wpa_supplicant.conf Trying to associate with 00:13:46:49:41:76 (SSID='dlinkap' freq=2437 MHz) Associated with 00:13:46:49:41:76
IBSS mode, also called ad-hoc mode, is designed for point to point connections. For example, to establish an ad-hoc network between the machine A and the machine B, we will just need to choose two IP addresses and a SSID.
On the box A:
# ifconfig wlan0 create wlandev ath0 wlanmode adhoc # ifconfig wlan0 inet 192.168.0.1 netmask 255.255.255.0 ssid freebsdap # ifconfig wlan0 wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 ether 00:11:95:c3:0d:ac inet 192.168.0.1 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet autoselect mode 11g <adhoc> status: running ssid freebsdap channel 2 (2417 Mhz 11g) bssid 02:11:95:c3:0d:ac country US ecm authmode OPEN privacy OFF txpower 21.5 scanvalid 60 protmode CTS wme burst
The adhoc parameter indicates the interface is running in the IBSS mode.
On B, we should be able to detect A:
# ifconfig wlan0 create wlandev ath0 wlanmode adhoc # ifconfig wlan0 up scan SSID/MESH ID BSSID CHAN RATE S:N INT CAPS freebsdap 02:11:95:c3:0d:ac 2 54M -64:-96 100 IS WME
The I in the output confirms the machine A is in ad-hoc mode. We just have to configure B with a different IP address:
# ifconfig wlan0 inet 192.168.0.2 netmask 255.255.255.0 ssid freebsdap # ifconfig wlan0 wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 ether 00:11:95:d5:43:62 inet 192.168.0.2 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet autoselect mode 11g <adhoc> status: running ssid freebsdap channel 2 (2417 Mhz 11g) bssid 02:11:95:c3:0d:ac country US ecm authmode OPEN privacy OFF txpower 21.5 scanvalid 60 protmode CTS wme burst
Both A and B are now ready to exchange information.
FreeBSD can act as an Access Point (AP) which eliminates the need to buy a hardware AP or run an ad-hoc network. This can be particularly useful when your FreeBSD machine is acting as a gateway to another network (e.g., the Internet).
Before configuring your FreeBSD machine as an AP, the kernel must be configured with the appropriate wireless networking support for your wireless card. You also have to add support for the security protocols you intend to use. For more details, see Section 32.3.2.
Note: The use of the NDIS driver wrapper and the Windows drivers do not currently allow AP operation. Only native FreeBSD wireless drivers support AP mode.
Once wireless networking support is loaded, you can check if your wireless device supports the host-based access point mode (also known as hostap mode):
# ifconfig wlan0 create wlandev ath0 # ifconfig wlan0 list caps drivercaps=6f85edc1<STA,FF,TURBOP,IBSS,HOSTAP,AHDEMO,TXPMGT,SHSLOT,SHPREAMBLE,MONITOR,MBSS,WPA1,WPA2,BURST,WME,WDS,BGSCAN,TXFRAG> cryptocaps=1f<WEP,TKIP,AES,AES_CCM,TKIPMIC>
This output displays the card capabilities; the HOSTAP word confirms this wireless card can act as an Access Point. Various supported ciphers are also mentioned: WEP, TKIP, AES, etc. This information is important to know what security protocols can be used on the Access Point.
The wireless device can only be put into hostap mode during the creation of the network pseudo-device, so a previously created device must be destroyed first:
# ifconfig wlan0 destroy
then regenerated with the correct option before setting the other parameters:
# ifconfig wlan0 create wlandev ath0 wlanmode hostap # ifconfig wlan0 inet 192.168.0.1 netmask 255.255.255.0 ssid freebsdap mode 11g channel 1
Use ifconfig again to see the status of the wlan0 interface:
# ifconfig wlan0 wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 ether 00:11:95:c3:0d:ac inet 192.168.0.1 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet autoselect mode 11g <hostap> status: running ssid freebsdap channel 1 (2412 Mhz 11g) bssid 00:11:95:c3:0d:ac country US ecm authmode OPEN privacy OFF txpower 21.5 scanvalid 60 protmode CTS wme burst dtimperiod 1 -dfs
The hostap parameter indicates the interface is running in the host-based access point mode.
The interface configuration can be done automatically at boot time by adding the following lines to /etc/rc.conf:
wlans_ath0="wlan0" create_args_wlan0="wlanmode hostap" ifconfig_wlan0="inet 192.168.0.1 netmask 255.255.255.0 ssid freebsdap mode 11g channel 1"
Although it is not recommended to run an AP without any authentication or encryption, this is a simple way to check if your AP is working. This configuration is also important for debugging client issues.
Once the AP configured as previously shown, it is possible from another wireless machine to initiate a scan to find the AP:
# ifconfig wlan0 create wlandev ath0 # ifconfig wlan0 up scan SSID/MESH ID BSSID CHAN RATE S:N INT CAPS freebsdap 00:11:95:c3:0d:ac 1 54M -66:-96 100 ES WME
The client machine found the Access Point and can be associated with it:
# ifconfig wlan0 inet 192.168.0.2 netmask 255.255.255.0 ssid freebsdap # ifconfig wlan0 wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 ether 00:11:95:d5:43:62 inet 192.168.0.2 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet OFDM/54Mbps mode 11g status: associated ssid freebsdap channel 1 (2412 Mhz 11g) bssid 00:11:95:c3:0d:ac country US ecm authmode OPEN privacy OFF txpower 21.5 bmiss 7 scanvalid 60 bgscan bgscanintvl 300 bgscanidle 250 roam:rssi 7 roam:rate 5 protmode CTS wme burst
This section will focus on setting up FreeBSD Access Point using the WPA security protocol. More details regarding WPA and the configuration of WPA-based wireless clients can be found in the Section 32.3.3.1.3.
The hostapd daemon is used to deal with client authentication and keys management on the WPA enabled Access Point.
In the following, all the configuration operations will be performed on the FreeBSD machine acting as AP. Once the AP is correctly working, hostapd should be automatically enabled at boot with the following line in /etc/rc.conf:
hostapd_enable="YES"
Before trying to configure hostapd, be sure you have done the basic settings introduced in the Section 32.3.5.1.
WPA-PSK is intended for small networks where the use of an backend authentication server is not possible or desired.
The configuration is done in the /etc/hostapd.conf file:
interface=wlan0 debug=1 ctrl_interface=/var/run/hostapd ctrl_interface_group=wheel ssid=freebsdap wpa=1 wpa_passphrase=freebsdmall wpa_key_mgmt=WPA-PSK wpa_pairwise=CCMP TKIP
Warning: Always use strong passwords that are sufficiently long and made from a rich alphabet so they will not be guessed and/or attacked.
The next step is to start hostapd:
# /etc/rc.d/hostapd forcestart
# ifconfig wlan0 wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> mtu 2290 inet 192.168.0.1 netmask 0xffffff00 broadcast 192.168.0.255 inet6 fe80::211:95ff:fec3:dac%ath0 prefixlen 64 scopeid 0x4 ether 00:11:95:c3:0d:ac media: IEEE 802.11 Wireless Ethernet autoselect mode 11g <hostap> status: associated ssid freebsdap channel 1 bssid 00:11:95:c3:0d:ac authmode WPA2/802.11i privacy MIXED deftxkey 2 TKIP 2:128-bit txpowmax 36 protmode CTS dtimperiod 1 bintval 100
The Access Point is running, the clients can now be associated with it, see Section 32.3.3.1.3 for more details. It is possible to see the stations associated with the AP using the ifconfig wlan0 list sta command.
It is not recommended to use WEP for setting up an Access Point since there is no authentication mechanism and it is easily to be cracked. Some legacy wireless cards only support WEP as security protocol, these cards will only allow to set up AP without authentication or encryption or using the WEP protocol.
The wireless device can now be put into hostap mode and configured with the correct SSID and IP address:
# ifconfig wlan0 create wlandev ath0 wlanmode hostap # ifconfig wlan0 inet 192.168.0.1 netmask 255.255.255.0 \ ssid freebsdap wepmode on weptxkey 3 wepkey 3:0x3456789012 mode 11g
The weptxkey means which WEP key will be used in the transmission. Here we used the third key (note that the key numbering starts with 1). This parameter must be specified to really encrypt the data.
The wepkey means setting the selected WEP key. It should in the format index:key, if the index is not given, key 1 is set. That is to say we need to set the index if we use keys other than the first key.
Use again ifconfig to see the status of the wlan0 interface:
# ifconfig wlan0 wlan0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 ether 00:11:95:c3:0d:ac inet 192.168.0.1 netmask 0xffffff00 broadcast 192.168.0.255 media: IEEE 802.11 Wireless Ethernet autoselect mode 11g <hostap> status: running ssid freebsdap channel 4 (2427 Mhz 11g) bssid 00:11:95:c3:0d:ac country US ecm authmode OPEN privacy ON deftxkey 3 wepkey 3:40-bit txpower 21.5 scanvalid 60 protmode CTS wme burst dtimperiod 1 -dfs
From another wireless machine, it is possible to initiate a scan to find the AP:
# ifconfig wlan0 create wlandev ath0 # ifconfig wlan0 up scan SSID BSSID CHAN RATE S:N INT CAPS freebsdap 00:11:95:c3:0d:ac 1 54M 22:1 100 EPS
The client machine found the Access Point and can be associated with it using the correct parameters (key, etc.), see Section 32.3.3.1.4 for more details.
Wired connection provides better performance and reliability, while wireless connection provides flexibility and mobility, users of laptop computers usually want to combine these together and roam seamlessly between the two.
On FreeBSD, it is possible to combine two or even more network interfaces together in a “failover” fashion, that is, to use the most preferred and available connection from a group of network interfaces, and have the operating system switch automatically when the link state changes.
We will cover link aggregation and failover in Section 32.6 where an example for using both wired and wireless connection is also provided at Example 32-3.
If you are having trouble with wireless networking, there are a number of steps you can take to help troubleshoot the problem.
If you do not see the access point listed when scanning be sure you have not configured your wireless device to a limited set of channels.
If you cannot associate to an access point verify the configuration of your station matches the one of the access point. This includes the authentication scheme and any security protocols. Simplify your configuration as much as possible. If you are using a security protocol such as WPA or WEP configure the access point for open authentication and no security to see if you can get traffic to pass.
Once you can associate to the access point diagnose any security configuration using simple tools like ping(8).
The wpa_supplicant has much debugging support; try
running it manually with the -dd
option and look at the
system logs.
There are also many lower-level debugging tools. You can enable debugging messages in the 802.11 protocol support layer using the wlandebug program found in /usr/src/tools/tools/net80211. For example:
# wlandebug -i ath0 +scan+auth+debug+assoc net.wlan.0.debug: 0 => 0xc80000<assoc,auth,scan>
can be used to enable console messages related to scanning for access points and doing the 802.11 protocol handshakes required to arrange communication.
There are also many useful statistics maintained by the 802.11 layer; the wlanstats tool will dump this information. These statistics should identify all errors identified by the 802.11 layer. Beware however that some errors are identified in the device drivers that lie below the 802.11 layer so they may not show up. To diagnose device-specific problems you need to refer to the drivers' documentation.
If the above information does not help to clarify the problem, please submit a problem report and include output from the above tools.
Bluetooth is a wireless technology for creating personal networks operating in the 2.4 GHz unlicensed band, with a range of 10 meters. Networks are usually formed ad-hoc from portable devices such as cellular phones, handhelds and laptops. Unlike the other popular wireless technology, Wi-Fi, Bluetooth offers higher level service profiles, e.g., FTP-like file servers, file pushing, voice transport, serial line emulation, and more.
The Bluetooth stack in FreeBSD is implemented using the Netgraph framework (see netgraph(4)). A broad variety of Bluetooth USB dongles is supported by the ng_ubt(4) driver. The Broadcom BCM2033 chip based Bluetooth devices are supported via the ubtbcmfw(4) and ng_ubt(4) drivers. The 3Com Bluetooth PC Card 3CRWB60-A is supported by the ng_bt3c(4) driver. Serial and UART based Bluetooth devices are supported via sio(4), ng_h4(4) and hcseriald(8). This section describes the use of the USB Bluetooth dongle.
By default Bluetooth device drivers are available as kernel modules. Before attaching a device, you will need to load the driver into the kernel:
# kldload ng_ubt
If the Bluetooth device is present in the system during system startup, load the module from /boot/loader.conf:
ng_ubt_load="YES"
Plug in your USB dongle. The output similar to the following will appear on the console (or in syslog):
ubt0: vendor 0x0a12 product 0x0001, rev 1.10/5.25, addr 2 ubt0: Interface 0 endpoints: interrupt=0x81, bulk-in=0x82, bulk-out=0x2 ubt0: Interface 1 (alt.config 5) endpoints: isoc-in=0x83, isoc-out=0x3, wMaxPacketSize=49, nframes=6, buffer size=294
The /etc/rc.d/bluetooth script is used to start and stop the Bluetooth stack. It is a good idea to stop the stack before unplugging the device, but it is not (usually) fatal. When starting the stack, you will receive output similar to the following:
# /etc/rc.d/bluetooth start ubt0 BD_ADDR: 00:02:72:00:d4:1a Features: 0xff 0xff 0xf 00 00 00 00 00 <3-Slot> <5-Slot> <Encryption> <Slot offset> <Timing accuracy> <Switch> <Hold mode> <Sniff mode> <Park mode> <RSSI> <Channel quality> <SCO link> <HV2 packets> <HV3 packets> <u-law log> <A-law log> <CVSD> <Paging scheme> <Power control> <Transparent SCO data> Max. ACL packet size: 192 bytes Number of ACL packets: 8 Max. SCO packet size: 64 bytes Number of SCO packets: 8
Host Controller Interface (HCI) provides a command interface to the baseband controller and link manager, and access to hardware status and control registers. This interface provides a uniform method of accessing the Bluetooth baseband capabilities. HCI layer on the Host exchanges data and commands with the HCI firmware on the Bluetooth hardware. The Host Controller Transport Layer (i.e., physical bus) driver provides both HCI layers with the ability to exchange information with each other.
A single Netgraph node of type hci is created for a single Bluetooth device. The HCI node is normally connected to the Bluetooth device driver node (downstream) and the L2CAP node (upstream). All HCI operations must be performed on the HCI node and not on the device driver node. Default name for the HCI node is “devicehci”. For more details refer to the ng_hci(4) manual page.
One of the most common tasks is discovery of Bluetooth devices in RF proximity. This operation is called inquiry. Inquiry and other HCI related operations are done with the hccontrol(8) utility. The example below shows how to find out which Bluetooth devices are in range. You should receive the list of devices in a few seconds. Note that a remote device will only answer the inquiry if it put into discoverable mode.
% hccontrol -n ubt0hci inquiry Inquiry result, num_responses=1 Inquiry result #0 BD_ADDR: 00:80:37:29:19:a4 Page Scan Rep. Mode: 0x1 Page Scan Period Mode: 00 Page Scan Mode: 00 Class: 52:02:04 Clock offset: 0x78ef Inquiry complete. Status: No error [00]
BD_ADDR is unique address of a Bluetooth device, similar to MAC addresses of a network card. This address is needed for further communication with a device. It is possible to assign human readable name to a BD_ADDR. The /etc/bluetooth/hosts file contains information regarding the known Bluetooth hosts. The following example shows how to obtain human readable name that was assigned to the remote device:
% hccontrol -n ubt0hci remote_name_request 00:80:37:29:19:a4 BD_ADDR: 00:80:37:29:19:a4 Name: Pav's T39
If you perform an inquiry on a remote Bluetooth device, it will find your computer as “your.host.name (ubt0)”. The name assigned to the local device can be changed at any time.
The Bluetooth system provides a point-to-point connection (only two Bluetooth units involved), or a point-to-multipoint connection. In the point-to-multipoint connection the connection is shared among several Bluetooth devices. The following example shows how to obtain the list of active baseband connections for the local device:
% hccontrol -n ubt0hci read_connection_list Remote BD_ADDR Handle Type Mode Role Encrypt Pending Queue State 00:80:37:29:19:a4 41 ACL 0 MAST NONE 0 0 OPEN
A connection handle is useful when termination of the baseband connection is required. Note, that it is normally not required to do it by hand. The stack will automatically terminate inactive baseband connections.
# hccontrol -n ubt0hci disconnect 41 Connection handle: 41 Reason: Connection terminated by local host [0x16]
Refer to hccontrol help for a complete listing of available HCI commands. Most of the HCI commands do not require superuser privileges.
Logical Link Control and Adaptation Protocol (L2CAP) provides connection-oriented and connectionless data services to upper layer protocols with protocol multiplexing capability and segmentation and reassembly operation. L2CAP permits higher level protocols and applications to transmit and receive L2CAP data packets up to 64 kilobytes in length.
L2CAP is based around the concept of channels. Channel is a logical connection on top of baseband connection. Each channel is bound to a single protocol in a many-to-one fashion. Multiple channels can be bound to the same protocol, but a channel cannot be bound to multiple protocols. Each L2CAP packet received on a channel is directed to the appropriate higher level protocol. Multiple channels can share the same baseband connection.
A single Netgraph node of type l2cap is created for a single Bluetooth device. The L2CAP node is normally connected to the Bluetooth HCI node (downstream) and Bluetooth sockets nodes (upstream). Default name for the L2CAP node is “devicel2cap”. For more details refer to the ng_l2cap(4) manual page.
A useful command is l2ping(8), which can be used to ping other devices. Some Bluetooth implementations might not return all of the data sent to them, so 0 bytes in the following example is normal.
# l2ping -a 00:80:37:29:19:a4 0 bytes from 0:80:37:29:19:a4 seq_no=0 time=48.633 ms result=0 0 bytes from 0:80:37:29:19:a4 seq_no=1 time=37.551 ms result=0 0 bytes from 0:80:37:29:19:a4 seq_no=2 time=28.324 ms result=0 0 bytes from 0:80:37:29:19:a4 seq_no=3 time=46.150 ms result=0
The l2control(8) utility is used to perform various operations on L2CAP nodes. This example shows how to obtain the list of logical connections (channels) and the list of baseband connections for the local device:
% l2control -a 00:02:72:00:d4:1a read_channel_list L2CAP channels: Remote BD_ADDR SCID/ DCID PSM IMTU/ OMTU State 00:07:e0:00:0b:ca 66/ 64 3 132/ 672 OPEN % l2control -a 00:02:72:00:d4:1a read_connection_list L2CAP connections: Remote BD_ADDR Handle Flags Pending State 00:07:e0:00:0b:ca 41 O 0 OPEN
Another diagnostic tool is btsockstat(1). It does a job similar to as netstat(1) does, but for Bluetooth network-related data structures. The example below shows the same logical connection as l2control(8) above.
% btsockstat Active L2CAP sockets PCB Recv-Q Send-Q Local address/PSM Foreign address CID State c2afe900 0 0 00:02:72:00:d4:1a/3 00:07:e0:00:0b:ca 66 OPEN Active RFCOMM sessions L2PCB PCB Flag MTU Out-Q DLCs State c2afe900 c2b53380 1 127 0 Yes OPEN Active RFCOMM sockets PCB Recv-Q Send-Q Local address Foreign address Chan DLCI State c2e8bc80 0 250 00:02:72:00:d4:1a 00:07:e0:00:0b:ca 3 6 OPEN
The RFCOMM protocol provides emulation of serial ports over the L2CAP protocol. The protocol is based on the ETSI standard TS 07.10. RFCOMM is a simple transport protocol, with additional provisions for emulating the 9 circuits of RS-232 (EIATIA-232-E) serial ports. The RFCOMM protocol supports up to 60 simultaneous connections (RFCOMM channels) between two Bluetooth devices.
For the purposes of RFCOMM, a complete communication path involves two applications running on different devices (the communication endpoints) with a communication segment between them. RFCOMM is intended to cover applications that make use of the serial ports of the devices in which they reside. The communication segment is a Bluetooth link from one device to another (direct connect).
RFCOMM is only concerned with the connection between the devices in the direct connect case, or between the device and a modem in the network case. RFCOMM can support other configurations, such as modules that communicate via Bluetooth wireless technology on one side and provide a wired interface on the other side.
In FreeBSD the RFCOMM protocol is implemented at the Bluetooth sockets layer.
By default, Bluetooth communication is not authenticated, and any device can talk to any other device. A Bluetooth device (for example, cellular phone) may choose to require authentication to provide a particular service (for example, Dial-Up service). Bluetooth authentication is normally done with PIN codes. A PIN code is an ASCII string up to 16 characters in length. User is required to enter the same PIN code on both devices. Once user has entered the PIN code, both devices will generate a link key. After that the link key can be stored either in the devices themselves or in a persistent storage. Next time both devices will use previously generated link key. The described above procedure is called pairing. Note that if the link key is lost by any device then pairing must be repeated.
The hcsecd(8) daemon is responsible for handling of all Bluetooth authentication requests. The default configuration file is /etc/bluetooth/hcsecd.conf. An example section for a cellular phone with the PIN code arbitrarily set to “1234” is shown below:
device { bdaddr 00:80:37:29:19:a4; name "Pav's T39"; key nokey; pin "1234"; }
There is no limitation on PIN codes (except length). Some devices (for example
Bluetooth headsets) may have a fixed PIN code built in. The -d
switch forces the hcsecd(8) daemon to
stay in the foreground, so it is easy to see what is happening. Set the remote
device to receive pairing and initiate the Bluetooth connection to the remote
device. The remote device should say that pairing was accepted, and request the
PIN code. Enter the same PIN code as you have in hcsecd.conf. Now your PC and the remote device are paired.
Alternatively, you can initiate pairing on the remote device.
The following line can be added to the /etc/rc.conf file to have hcsecd started automatically on system start:
hcsecd_enable="YES"
The following is a sample of the hcsecd daemon output:
hcsecd[16484]: Got Link_Key_Request event from 'ubt0hci', remote bdaddr 0:80:37:29:19:a4 hcsecd[16484]: Found matching entry, remote bdaddr 0:80:37:29:19:a4, name 'Pav's T39', link key doesn't exist hcsecd[16484]: Sending Link_Key_Negative_Reply to 'ubt0hci' for remote bdaddr 0:80:37:29:19:a4 hcsecd[16484]: Got PIN_Code_Request event from 'ubt0hci', remote bdaddr 0:80:37:29:19:a4 hcsecd[16484]: Found matching entry, remote bdaddr 0:80:37:29:19:a4, name 'Pav's T39', PIN code exists hcsecd[16484]: Sending PIN_Code_Reply to 'ubt0hci' for remote bdaddr 0:80:37:29:19:a4
The Service Discovery Protocol (SDP) provides the means for client applications to discover the existence of services provided by server applications as well as the attributes of those services. The attributes of a service include the type or class of service offered and the mechanism or protocol information needed to utilize the service.
SDP involves communication between a SDP server and a SDP client. The server maintains a list of service records that describe the characteristics of services associated with the server. Each service record contains information about a single service. A client may retrieve information from a service record maintained by the SDP server by issuing a SDP request. If the client, or an application associated with the client, decides to use a service, it must open a separate connection to the service provider in order to utilize the service. SDP provides a mechanism for discovering services and their attributes, but it does not provide a mechanism for utilizing those services.
Normally, a SDP client searches for services based on some desired characteristics of the services. However, there are times when it is desirable to discover which types of services are described by an SDP server's service records without any a priori information about the services. This process of looking for any offered services is called browsing.
The Bluetooth SDP server sdpd(8) and command line client sdpcontrol(8) are included in the standard FreeBSD installation. The following example shows how to perform a SDP browse query.
% sdpcontrol -a 00:01:03:fc:6e:ec browse Record Handle: 00000000 Service Class ID List: Service Discovery Server (0x1000) Protocol Descriptor List: L2CAP (0x0100) Protocol specific parameter #1: u/int/uuid16 1 Protocol specific parameter #2: u/int/uuid16 1 Record Handle: 0x00000001 Service Class ID List: Browse Group Descriptor (0x1001) Record Handle: 0x00000002 Service Class ID List: LAN Access Using PPP (0x1102) Protocol Descriptor List: L2CAP (0x0100) RFCOMM (0x0003) Protocol specific parameter #1: u/int8/bool 1 Bluetooth Profile Descriptor List: LAN Access Using PPP (0x1102) ver. 1.0
... and so on. Note that each service has a list of attributes (RFCOMM channel for example). Depending on the service you might need to make a note of some of the attributes. Some Bluetooth implementations do not support service browsing and may return an empty list. In this case it is possible to search for the specific service. The example below shows how to search for the OBEX Object Push (OPUSH) service:
% sdpcontrol -a 00:01:03:fc:6e:ec search OPUSH
Offering services on FreeBSD to Bluetooth clients is done with the sdpd(8) server. The following line can be added to the /etc/rc.conf file:
sdpd_enable="YES"
Then the sdpd daemon can be started with:
# /etc/rc.d/sdpd start
The local server application that wants to provide Bluetooth service to the remote clients will register service with the local SDP daemon. The example of such application is rfcomm_pppd(8). Once started it will register Bluetooth LAN service with the local SDP daemon.
The list of services registered with the local SDP server can be obtained by issuing SDP browse query via local control channel:
# sdpcontrol -l browse
The Dial-Up Networking (DUN) profile is mostly used with modems and cellular phones. The scenarios covered by this profile are the following:
use of a cellular phone or modem by a computer as a wireless modem for connecting to a dial-up Internet access server, or using other dial-up services;
use of a cellular phone or modem by a computer to receive data calls.
Network Access with PPP (LAN) profile can be used in the following situations:
LAN access for a single Bluetooth device;
LAN access for multiple Bluetooth devices;
PC to PC (using PPP networking over serial cable emulation).
In FreeBSD both profiles are implemented with ppp(8) and rfcomm_pppd(8) - a wrapper that converts RFCOMM Bluetooth connection into something PPP can operate with. Before any profile can be used, a new PPP label in the /etc/ppp/ppp.conf must be created. Consult rfcomm_pppd(8) manual page for examples.
In the following example rfcomm_pppd(8) will be used to open RFCOMM connection to remote device with BD_ADDR 00:80:37:29:19:a4 on DUN RFCOMM channel. The actual RFCOMM channel number will be obtained from the remote device via SDP. It is possible to specify RFCOMM channel by hand, and in this case rfcomm_pppd(8) will not perform SDP query. Use sdpcontrol(8) to find out RFCOMM channel on the remote device.
# rfcomm_pppd -a 00:80:37:29:19:a4 -c -C dun -l rfcomm-dialup
In order to provide Network Access with PPP (LAN) service the sdpd(8) server must be running. A new entry for LAN clients must be created in the /etc/ppp/ppp.conf file. Consult rfcomm_pppd(8) manual page for examples. Finally, start RFCOMM PPP server on valid RFCOMM channel number. The RFCOMM PPP server will automatically register Bluetooth LAN service with the local SDP daemon. The example below shows how to start RFCOMM PPP server.
# rfcomm_pppd -s -C 7 -l rfcomm-server
OBEX is a widely used protocol for simple file transfers between mobile devices. Its main use is in infrared communication, where it is used for generic file transfers between notebooks or PDAs, and for sending business cards or calendar entries between cellular phones and other devices with PIM applications.
The OBEX server and client are implemented as a third-party package obexapp, which is available as comms/obexapp port.
OBEX client is used to push and/or pull objects from the OBEX server. An object can, for example, be a business card or an appointment. The OBEX client can obtain RFCOMM channel number from the remote device via SDP. This can be done by specifying service name instead of RFCOMM channel number. Supported service names are: IrMC, FTRN and OPUSH. It is possible to specify RFCOMM channel as a number. Below is an example of an OBEX session, where device information object is pulled from the cellular phone, and a new object (business card) is pushed into the phone's directory.
% obexapp -a 00:80:37:29:19:a4 -C IrMC obex> get telecom/devinfo.txt devinfo-t39.txt Success, response: OK, Success (0x20) obex> put new.vcf Success, response: OK, Success (0x20) obex> di Success, response: OK, Success (0x20)
In order to provide OBEX Object Push service, sdpd(8) server must be running. A root folder, where all incoming objects will be stored, must be created. The default path to the root folder is /var/spool/obex. Finally, start OBEX server on valid RFCOMM channel number. The OBEX server will automatically register OBEX Object Push service with the local SDP daemon. The example below shows how to start OBEX server.
# obexapp -s -C 10
The Serial Port Profile (SPP) allows Bluetooth devices to perform RS232 (or similar) serial cable emulation. The scenario covered by this profile deals with legacy applications using Bluetooth as a cable replacement, through a virtual serial port abstraction.
The rfcomm_sppd(1) utility implements the Serial Port profile. A pseudo tty is used as a virtual serial port abstraction. The example below shows how to connect to a remote device Serial Port service. Note that you do not have to specify a RFCOMM channel - rfcomm_sppd(1) can obtain it from the remote device via SDP. If you would like to override this, specify a RFCOMM channel on the command line.
# rfcomm_sppd -a 00:07:E0:00:0B:CA -t /dev/ttyp6 rfcomm_sppd[94692]: Starting on /dev/ttyp6...
Once connected, the pseudo tty can be used as serial port:
# cu -l ttyp6
Some older Bluetooth devices do not support role switching. By default, when FreeBSD is accepting a new connection, it tries to perform a role switch and become master. Devices, which do not support this will not be able to connect. Note that role switching is performed when a new connection is being established, so it is not possible to ask the remote device if it does support role switching. There is a HCI option to disable role switching on the local side:
# hccontrol -n ubt0hci write_node_role_switch 0
Yes, you can. Use the third-party package hcidump, which is available as comms/hcidump port. The hcidump utility is similar to tcpdump(1). It can be used to display the content of the Bluetooth packets on the terminal and to dump the Bluetooth packets to a file.
It is sometimes useful to divide one physical network (such as an Ethernet segment) into two separate network segments without having to create IP subnets and use a router to connect the segments together. A device that connects two networks together in this fashion is called a “bridge”. A FreeBSD system with two network interface cards can act as a bridge.
The bridge works by learning the MAC layer addresses (Ethernet addresses) of the devices on each of its network interfaces. It forwards traffic between two networks only when its source and destination are on different networks.
In many respects, a bridge is like an Ethernet switch with very few ports.
There are many common situations in which a bridge is used today.
The basic operation of a bridge is to join two or more network segments together. There are many reasons to use a host based bridge over plain networking equipment such as cabling constraints, firewalling or connecting pseudo networks such as a Virtual Machine interface. A bridge can also connect a wireless interface running in hostap mode to a wired network and act as an access point.
A common situation is where firewall functionality is needed without routing or network address translation (NAT).
An example is a small company that is connected via DSL or ISDN to their ISP. They have a 13 globally-accessible IP addresses from their ISP and have 10 PCs on their network. In this situation, using a router-based firewall is difficult because of subnetting issues.
A bridge-based firewall can be configured and dropped into the path just downstream of their DSL/ISDN router without any IP numbering issues.
A bridge can join two network segments and be used to inspect all Ethernet frames that pass between them. This can either be from using bpf(4)/tcpdump(1) on the bridge interface or by sending a copy of all frames out an additional interface (span port).
Two Ethernet networks can be joined across an IP link by bridging the networks to an EtherIP tunnel or a tap(4) based solution such as OpenVPN.
A network can be connected together with multiple links and use the Spanning Tree Protocol to block redundant paths. For an Ethernet network to function properly only one active path can exist between two devices, Spanning Tree will detect loops and put the redundant links into a blocked state. Should one of the active links fail then the protocol will calculate a different tree and reenable one of the blocked paths to restore connectivity to all points in the network.
This section covers if_bridge(4) bridge implementation, a netgraph bridging driver is also available, for more information see ng_bridge(4) manual page.
The bridge driver is a kernel module and will be automatically loaded by ifconfig(8) when creating a bridge interface. It is possible to compile the bridge in to the kernel by adding device if_bridge to your kernel configuration file.
Packet filtering can be used with any firewall package that hooks in via the pfil(9) framework. The firewall can be loaded as a module or compiled into the kernel.
The bridge can be used as a traffic shaper with altq(4) or dummynet(4).
The bridge is created using interface cloning. To create a bridge use ifconfig(8), if the bridge driver is not present in the kernel then it will be loaded automatically.
# ifconfig bridge create bridge0 # ifconfig bridge0 bridge0: flags=8802<BROADCAST,SIMPLEX,MULTICAST> metric 0 mtu 1500 ether 96:3d:4b:f1:79:7a id 00:00:00:00:00:00 priority 32768 hellotime 2 fwddelay 15 maxage 20 holdcnt 6 proto rstp maxaddr 100 timeout 1200 root id 00:00:00:00:00:00 priority 0 ifcost 0 port 0
A bridge interface is created and is automatically assigned a randomly generated Ethernet address. The maxaddr and timeout parameters control how many MAC addresses the bridge will keep in its forwarding table and how many seconds before each entry is removed after it is last seen. The other parameters control how Spanning Tree operates.
Add the member network interfaces to the bridge. For the bridge to forward packets all member interfaces and the bridge need to be up:
# ifconfig bridge0 addm fxp0 addm fxp1 up # ifconfig fxp0 up # ifconfig fxp1 up
The bridge is now forwarding Ethernet frames between fxp0 and fxp1. The equivalent configuration in /etc/rc.conf so the bridge is created at startup is:
cloned_interfaces="bridge0" ifconfig_bridge0="addm fxp0 addm fxp1 up" ifconfig_fxp0="up" ifconfig_fxp1="up"
If the bridge host needs an IP address then the correct place to set this is on the bridge interface itself rather than one of the member interfaces. This can be set statically or via DHCP:
# ifconfig bridge0 inet 192.168.0.1/24
It is also possible to assign an IPv6 address to a bridge interface.
When packet filtering is enabled, bridged packets will pass through the filter inbound on the originating interface, on the bridge interface and outbound on the appropriate interfaces. Either stage can be disabled. When direction of the packet flow is important it is best to firewall on the member interfaces rather than the bridge itself.
The bridge has several configurable settings for passing non-IP and ARP packets, and layer2 firewalling with IPFW. See if_bridge(4) for more information.
The bridge driver implements the Rapid Spanning Tree Protocol (RSTP or 802.1w) with backwards compatibility with the legacy Spanning Tree Protocol (STP). Spanning Tree is used to detect and remove loops in a network topology. RSTP provides faster Spanning Tree convergence than legacy STP, the protocol will exchange information with neighbouring switches to quickly transition to forwarding without creating loops. FreeBSD supports RSTP and STP as operating modes, with RSTP being the default mode.
Spanning Tree can be enabled on member interfaces using the stp command. For a bridge with fxp0 and fxp1 as the current interfaces, enable STP with the following:
# ifconfig bridge0 stp fxp0 stp fxp1 bridge0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 ether d6:cf:d5:a0:94:6d id 00:01:02:4b:d4:50 priority 32768 hellotime 2 fwddelay 15 maxage 20 holdcnt 6 proto rstp maxaddr 100 timeout 1200 root id 00:01:02:4b:d4:50 priority 32768 ifcost 0 port 0 member: fxp0 flags=1c7<LEARNING,DISCOVER,STP,AUTOEDGE,PTP,AUTOPTP> port 3 priority 128 path cost 200000 proto rstp role designated state forwarding member: fxp1 flags=1c7<LEARNING,DISCOVER,STP,AUTOEDGE,PTP,AUTOPTP> port 4 priority 128 path cost 200000 proto rstp role designated state forwarding
This bridge has a spanning tree ID of 00:01:02:4b:d4:50 and a priority of 32768. As the root id is the same it indicates that this is the root bridge for the tree.
Another bridge on the network also has spanning tree enabled:
bridge0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 ether 96:3d:4b:f1:79:7a id 00:13:d4:9a:06:7a priority 32768 hellotime 2 fwddelay 15 maxage 20 holdcnt 6 proto rstp maxaddr 100 timeout 1200 root id 00:01:02:4b:d4:50 priority 32768 ifcost 400000 port 4 member: fxp0 flags=1c7<LEARNING,DISCOVER,STP,AUTOEDGE,PTP,AUTOPTP> port 4 priority 128 path cost 200000 proto rstp role root state forwarding member: fxp1 flags=1c7<LEARNING,DISCOVER,STP,AUTOEDGE,PTP,AUTOPTP> port 5 priority 128 path cost 200000 proto rstp role designated state forwarding
The line root id 00:01:02:4b:d4:50 priority 32768 ifcost 400000 port 4 shows that the root bridge is 00:01:02:4b:d4:50 as above and has a path cost of 400000 from this bridge, the path to the root bridge is via port 4 which is fxp0.
The bridge supports monitor mode, where the packets are discarded after bpf(4) processing, and are not processed or forwarded further. This can be used to multiplex the input of two or more interfaces into a single bpf(4) stream. This is useful for reconstructing the traffic for network taps that transmit the RX/TX signals out through two separate interfaces.
To read the input from four network interfaces as one stream:
# ifconfig bridge0 addm fxp0 addm fxp1 addm fxp2 addm fxp3 monitor up # tcpdump -i bridge0
A copy of every Ethernet frame received by the bridge will be transmitted out a designated span port. The number of span ports configured on a bridge is unlimited, if an interface is designated as a span port then it may not also be used as a regular bridge port. This is most useful for snooping a bridged network passively on another host connected to one of the span ports of the bridge.
To send a copy of all frames out the interface named fxp4:
# ifconfig bridge0 span fxp4
A private interface does not forward any traffic to any other port that is also a private interface. The traffic is blocked unconditionally so no Ethernet frames will be forwarded, including ARP. If traffic needs to be selectively blocked then a firewall should be used instead.
If a bridge member interface is marked as sticky then dynamically learned address entries are treated at static once entered into the forwarding cache. Sticky entries are never aged out of the cache or replaced, even if the address is seen on a different interface. This gives the benefit of static address entries without the need to pre-populate the forwarding table, clients learnt on a particular segment of the bridge can not roam to another segment.
Another example of using sticky addresses would be to combine the bridge with VLANs to create a router where customer networks are isolated without wasting IP address space. Consider that CustomerA is on vlan100 and CustomerB is on vlan101. The bridge has the address 192.168.0.1 and is also an internet router.
# ifconfig bridge0 addm vlan100 sticky vlan100 addm vlan101 sticky vlan101 # ifconfig bridge0 inet 192.168.0.1/24
Both clients see 192.168.0.1 as their default gateway and since the bridge cache is sticky they can not spoof the MAC address of the other customer to intercept their traffic.
Any communication between the VLANs can be blocked using private interfaces (or a firewall):
# ifconfig bridge0 private vlan100 private vlan101
The customers are completely isolated from each other, the full /24 address range can be allocated without subnetting.
The number of unique source MAC addresses behind an interface can be limited. Once the limit is reached packets with unknown source addresses are dropped until an existing host cache entry expires or is removed.
The following example sets the maximum number of Ethernet devices for CustomerA on vlan100 to 10.
# ifconfig bridge0 ifmaxaddr vlan100 10
The bridge interface and STP parameters can be monitored via the SNMP daemon which is included in the FreeBSD base system. The exported bridge MIBs conform to the IETF standards so any SNMP client or monitoring package can be used to retrieve the data.
On the bridge machine uncomment the begemotSnmpdModulePath."bridge" = "/usr/lib/snmp_bridge.so" line from /etc/snmp.config and start the bsnmpd daemon. Other configuration such as community names and access lists may need to be modified. See bsnmpd(1) and snmp_bridge(3) for more information.
The following examples use the Net-SNMP software (net-mgmt/net-snmp) to query a bridge, the net-mgmt/bsnmptools port can also be used. From the SNMP client host add to $HOME/.snmp/snmp.conf the following lines to import the bridge MIB definitions in to Net-SNMP:
mibdirs +/usr/share/snmp/mibs mibs +BRIDGE-MIB:RSTP-MIB:BEGEMOT-MIB:BEGEMOT-BRIDGE-MIB
To monitor a single bridge via the IETF BRIDGE-MIB (RFC4188) do
% snmpwalk -v 2c -c public bridge1.example.com mib-2.dot1dBridge BRIDGE-MIB::dot1dBaseBridgeAddress.0 = STRING: 66:fb:9b:6e:5c:44 BRIDGE-MIB::dot1dBaseNumPorts.0 = INTEGER: 1 ports BRIDGE-MIB::dot1dStpTimeSinceTopologyChange.0 = Timeticks: (189959) 0:31:39.59 centi-seconds BRIDGE-MIB::dot1dStpTopChanges.0 = Counter32: 2 BRIDGE-MIB::dot1dStpDesignatedRoot.0 = Hex-STRING: 80 00 00 01 02 4B D4 50 ... BRIDGE-MIB::dot1dStpPortState.3 = INTEGER: forwarding(5) BRIDGE-MIB::dot1dStpPortEnable.3 = INTEGER: enabled(1) BRIDGE-MIB::dot1dStpPortPathCost.3 = INTEGER: 200000 BRIDGE-MIB::dot1dStpPortDesignatedRoot.3 = Hex-STRING: 80 00 00 01 02 4B D4 50 BRIDGE-MIB::dot1dStpPortDesignatedCost.3 = INTEGER: 0 BRIDGE-MIB::dot1dStpPortDesignatedBridge.3 = Hex-STRING: 80 00 00 01 02 4B D4 50 BRIDGE-MIB::dot1dStpPortDesignatedPort.3 = Hex-STRING: 03 80 BRIDGE-MIB::dot1dStpPortForwardTransitions.3 = Counter32: 1 RSTP-MIB::dot1dStpVersion.0 = INTEGER: rstp(2)
The dot1dStpTopChanges.0 value is two which means that the STP bridge topology has changed twice, a topology change means that one or more links in the network have changed or failed and a new tree has been calculated. The dot1dStpTimeSinceTopologyChange.0 value will show when this happened.
To monitor multiple bridge interfaces one may use the private BEGEMOT-BRIDGE-MIB:
% snmpwalk -v 2c -c public bridge1.example.com enterprises.fokus.begemot.begemotBridge BEGEMOT-BRIDGE-MIB::begemotBridgeBaseName."bridge0" = STRING: bridge0 BEGEMOT-BRIDGE-MIB::begemotBridgeBaseName."bridge2" = STRING: bridge2 BEGEMOT-BRIDGE-MIB::begemotBridgeBaseAddress."bridge0" = STRING: e:ce:3b:5a:9e:13 BEGEMOT-BRIDGE-MIB::begemotBridgeBaseAddress."bridge2" = STRING: 12:5e:4d:74:d:fc BEGEMOT-BRIDGE-MIB::begemotBridgeBaseNumPorts."bridge0" = INTEGER: 1 BEGEMOT-BRIDGE-MIB::begemotBridgeBaseNumPorts."bridge2" = INTEGER: 1 ... BEGEMOT-BRIDGE-MIB::begemotBridgeStpTimeSinceTopologyChange."bridge0" = Timeticks: (116927) 0:19:29.27 centi-seconds BEGEMOT-BRIDGE-MIB::begemotBridgeStpTimeSinceTopologyChange."bridge2" = Timeticks: (82773) 0:13:47.73 centi-seconds BEGEMOT-BRIDGE-MIB::begemotBridgeStpTopChanges."bridge0" = Counter32: 1 BEGEMOT-BRIDGE-MIB::begemotBridgeStpTopChanges."bridge2" = Counter32: 1 BEGEMOT-BRIDGE-MIB::begemotBridgeStpDesignatedRoot."bridge0" = Hex-STRING: 80 00 00 40 95 30 5E 31 BEGEMOT-BRIDGE-MIB::begemotBridgeStpDesignatedRoot."bridge2" = Hex-STRING: 80 00 00 50 8B B8 C6 A9
To change the bridge interface being monitored via the mib-2.dot1dBridge subtree do:
% snmpset -v 2c -c private bridge1.example.com BEGEMOT-BRIDGE-MIB::begemotBridgeDefaultBridgeIf.0 s bridge2
The lagg(4) interface allows aggregation of multiple network interfaces as one virtual interface for the purpose of providing fault-tolerance and high-speed links.
Sends and receives traffic only through the master port. If the master port becomes unavailable, the next active port is used. The first interface added is the master port; any interfaces added after that are used as failover devices. If failover to a non-master port occurs, the original port will become master when it becomes available again.
Cisco Fast EtherChannel (FEC), is a static setup and does not negotiate aggregation with the peer or exchange frames to monitor the link. If the switch supports LACP then that should be used instead.
FEC balances outgoing traffic across the active ports based on hashed protocol header information and accepts incoming traffic from any active port. The hash includes the Ethernet source and destination address, and, if available, the VLAN tag, and the IPv4/IPv6 source and destination address.
The IEEE 802.3ad Link Aggregation Control Protocol (LACP) and the Marker Protocol. LACP will negotiate a set of aggregable links with the peer in to one or more Link Aggregated Groups (LAG). Each LAG is composed of ports of the same speed, set to full-duplex operation. The traffic will be balanced across the ports in the LAG with the greatest total speed, in most cases there will only be one LAG which contains all ports. In the event of changes in physical connectivity, Link Aggregation will quickly converge to a new configuration.
LACP balances outgoing traffic across the active ports based on hashed protocol header information and accepts incoming traffic from any active port. The hash includes the Ethernet source and destination address, and, if available, the VLAN tag, and the IPv4/IPv6 source and destination address.
This is an alias of FEC mode.
Distributes outgoing traffic using a round-robin scheduler through all active ports and accepts incoming traffic from any active port. This mode violates Ethernet Frame ordering and should be used with caution.
Example 32-1. LACP Aggregation with a Cisco® Switch
This example connects two interfaces on a FreeBSD machine to the switch as a single load balanced and fault tolerant link. More interfaces can be added to increase throughput and fault tolerance. Since frame ordering is mandatory on Ethernet links then any traffic between two stations always flows over the same physical link limiting the maximum speed to that of one interface. The transmit algorithm attempts to use as much information as it can to distinguish different traffic flows and balance across the available interfaces.
On the Cisco switch add the FastEthernet0/1 and FastEthernet0/2 interfaces to the channel-group 1:
interface FastEthernet0/1 channel-group 1 mode active channel-protocol lacp ! interface FastEthernet0/2 channel-group 1 mode active channel-protocol lacp
Create the lagg(4) interface using fxp0 and fxp1, and bring the interfaces up with the IP Address of 10.0.0.3/24:
# ifconfig fxp0 up # ifconfig fxp1 up # ifconfig lagg0 create # ifconfig lagg0 up laggproto lacp laggport fxp0 laggport fxp1 10.0.0.3/24
View the interface status by running:
# ifconfig lagg0
Ports marked as ACTIVE are part of the active aggregation group that has been negotiated with the remote switch and traffic will be transmitted and received. Use the verbose output of ifconfig(8) to view the LAG identifiers.
lagg0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 options=8<VLAN_MTU> ether 00:05:5d:71:8d:b8 media: Ethernet autoselect status: active laggproto lacp laggport: fxp1 flags=1c<ACTIVE,COLLECTING,DISTRIBUTING> laggport: fxp0 flags=1c<ACTIVE,COLLECTING,DISTRIBUTING>
To see the port status on the switch, use show lacp neighbor:
switch# show lacp neighbor Flags: S - Device is requesting Slow LACPDUs F - Device is requesting Fast LACPDUs A - Device is in Active mode P - Device is in Passive mode Channel group 1 neighbors Partner's information: LACP port Oper Port Port Port Flags Priority Dev ID Age Key Number State Fa0/1 SA 32768 0005.5d71.8db8 29s 0x146 0x3 0x3D Fa0/2 SA 32768 0005.5d71.8db8 29s 0x146 0x4 0x3D
For more detail use the show lacp neighbor detail command.
To retain this configuration across reboots, the following entries can be added to /etc/rc.conf:
ifconfig_fxp0="up" ifconfig_fxp1="up" cloned_interfaces="lagg0" ifconfig_lagg0="laggproto lacp laggport fxp0 laggport fxp1 10.0.0.3/24"
Example 32-2. Failover Mode
Failover mode can be used to switch over to a secondary interface if the link is lost on the master interface. Bring the underlying physical interfaces up. Create the lagg(4) interface, using fxp0 as the master interface and fxp1 as the secondary interface and assign an IP Address of 10.0.0.15/24:
# ifconfig fxp0 up # ifconfig fxp1 up # ifconfig lagg0 create # ifconfig lagg0 up laggproto failover laggport fxp0 laggport fxp1 10.0.0.15/24
The interface will look something like this, the major differences will be the MAC address and the device names:
# ifconfig lagg0 lagg0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 options=8<VLAN_MTU> ether 00:05:5d:71:8d:b8 inet 10.0.0.15 netmask 0xffffff00 broadcast 10.0.0.255 media: Ethernet autoselect status: active laggproto failover laggport: fxp1 flags=0<> laggport: fxp0 flags=5<MASTER,ACTIVE>
Traffic will be transmitted and received on fxp0. If the link is lost on fxp0 then fxp1 will become the active link. If the link is restored on the master interface then it will once again become the active link.
To retain this configuration across reboots, the following entries can be added to /etc/rc.conf:
ifconfig_fxp0="up" ifconfig_fxp1="up" cloned_interfaces="lagg0" ifconfig_lagg0="laggproto failover laggport fxp0 laggport fxp1 10.0.0.15/24"
Example 32-3. Failover Mode Between Wired and Wireless Interfaces
For laptop users, it is usually desirable to make wireless as a secondary interface, which is to be used when the wired connection is not available. With lagg(4), it is possible to use one IP address, prefer the wired connection for both performance and security reasons, while maintaining the ability to transfer data over the wireless connection.
In this setup, we will need to override the underlying wireless interface's MAC address to match the lagg(4)'s, which is inherited from the master interface being used, the wired interface.
In this setup, we will treat the wired interface, bge0, as the master, and the wireless interface, wlan0, as the failover interface. The wlan0 was created from iwn0 which we will set up with the wired connection's MAC address. The first step would be to obtain the MAC address from the wired interface:
# ifconfig bge0 bge0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 options=19b<RXCSUM,TXCSUM,VLAN_MTU,VLAN_HWTAGGING,VLAN_HWCSUM,TSO4> ether 00:21:70:da:ae:37 inet6 fe80::221:70ff:feda:ae37%bge0 prefixlen 64 scopeid 0x2 nd6 options=29<PERFORMNUD,IFDISABLED,AUTO_LINKLOCAL> media: Ethernet autoselect (1000baseT <full-duplex>) status: active
You can replace the bge0 to match your reality, and will get a different ether line which is the MAC address of your wired interface. Now, we change the underlying wireless interface, iwn0:
# ifconfig iwn0 ether 00:21:70:da:ae:37
Bring the wireless interface up, but do not set an IP address on it:
# ifconfig wlan0 create wlandev iwn0 ssid my_router up
Bring the bge0 interface up. Create the lagg(4) interface with bge0 as master, and failover to wlan0 if necessary:
# ifconfig bge0 up # ifconfig lagg0 create # ifconfig lagg0 up laggproto failover laggport bge0 laggport wlan0
The interface will look something like this, the major differences will be the MAC address and the device names:
# ifconfig lagg0 lagg0: flags=8843<UP,BROADCAST,RUNNING,SIMPLEX,MULTICAST> metric 0 mtu 1500 options=8<VLAN_MTU> ether 00:21:70:da:ae:37 media: Ethernet autoselect status: active laggproto failover laggport: wlan0 flags=0<> laggport: bge0 flags=5<MASTER,ACTIVE>
Then start the DHCP client to obtain an IP address:
# dhclient lagg0
To retain this configuration across reboots, the following entries can be added to /etc/rc.conf:
ifconfig_bge0="up" ifconfig_iwn0="ether 00:21:70:da:ae:37" wlans_iwn0="wlan0" ifconfig_wlan0="WPA" cloned_interfaces="lagg0" ifconfig_lagg0="laggproto failover laggport bge0 laggport wlan0 DHCP"
A FreeBSD machine can boot over the network and operate without a local disk, using file systems mounted from an NFS server. No system modification is necessary, beyond standard configuration files. Such a system is relatively easy to set up because all the necessary elements are readily available:
There are at least two possible methods to load the kernel over the network:
PXE: The Intel Preboot eXecution Environment system is a form of smart boot ROM built into some networking cards or motherboards. See pxeboot(8) for more details.
The Etherboot port (net/etherboot) produces ROM-able code to boot kernels over the network. The code can be either burnt into a boot PROM on a network card, or loaded from a local floppy (or hard) disk drive, or from a running MS-DOS system. Many network cards are supported.
A sample script (/usr/share/examples/diskless/clone_root) eases the creation and maintenance of the workstation's root file system on the server. The script will probably require a little customization but it will get you started very quickly.
Standard system startup files exist in /etc to detect and support a diskless system startup.
Swapping, if needed, can be done either to an NFS file or to a local disk.
There are many ways to set up diskless workstations. Many elements are involved, and most can be customized to suit local taste. The following will describe variations on the setup of a complete system, emphasizing simplicity and compatibility with the standard FreeBSD startup scripts. The system described has the following characteristics:
The diskless workstations use a shared read-only / file system, and a shared read-only /usr.
The root file system is a copy of a standard FreeBSD root (typically the server's), with some configuration files overridden by ones specific to diskless operation or, possibly, to the workstation they belong to.
The parts of the root which have to be writable are overlaid with md(4) file systems. Any changes will be lost when the system reboots.
The kernel is transferred and loaded either with Etherboot or PXE as some situations may mandate the use of either method.
Caution: As described, this system is insecure. It should live in a protected area of a network, and be untrusted by other hosts.
All the information in this section has been tested using FreeBSD 5.2.1-RELEASE.
Setting up diskless workstations is both relatively straightforward and prone to errors. These are sometimes difficult to diagnose for a number of reasons. For example:
Compile time options may determine different behaviors at runtime.
Error messages are often cryptic or totally absent.
In this context, having some knowledge of the background mechanisms involved is very useful to solve the problems that may arise.
Several operations need to be performed for a successful bootstrap:
The machine needs to obtain initial parameters such as its IP address, executable filename, server name, root path. This is done using the DHCP or BOOTP protocols. DHCP is a compatible extension of BOOTP, and uses the same port numbers and basic packet format.
It is possible to configure a system to use only BOOTP. The bootpd(8) server program is included in the base FreeBSD system.
However, DHCP has a number of advantages over BOOTP (nicer configuration files, possibility of using PXE, plus many others not directly related to diskless operation), and we will describe mainly a DHCP configuration, with equivalent examples using bootpd(8) when possible. The sample configuration will use the ISC DHCP software package (release 3.0.1.r12 was installed on the test server).
The machine needs to transfer one or several programs to local memory. Either TFTP or NFS are used. The choice between TFTP and NFS is a compile time option in several places. A common source of error is to specify filenames for the wrong protocol: TFTP typically transfers all files from a single directory on the server, and would expect filenames relative to this directory. NFS needs absolute file paths.
The possible intermediate bootstrap programs and the kernel need to be initialized and executed. There are several important variations in this area:
PXE will load pxeboot(8), which is a modified version of the FreeBSD third stage loader. The loader(8) will obtain most parameters necessary to system startup, and leave them in the kernel environment before transferring control. It is possible to use a GENERIC kernel in this case.
Etherboot, will directly load the kernel, with less preparation. You will need to build a kernel with specific options.
PXE and Etherboot work equally well; however, because kernels normally let the loader(8) do more work for them, PXE is the preferred method.
If your BIOS and network cards support PXE, you should probably use it.
Finally, the machine needs to access its file systems. NFS is used in all cases.
See also diskless(8) manual page.
The ISC DHCP server can answer both BOOTP and DHCP requests.
ISC DHCP 4.2 is not part of the base system. You will first need to install the net/isc-dhcp42-server port or the corresponding package.
Once ISC DHCP is installed, it needs a configuration file to run (normally named /usr/local/etc/dhcpd.conf). Here follows a commented example, where host margaux uses Etherboot and host corbieres uses PXE:
default-lease-time 600; max-lease-time 7200; authoritative; option domain-name "example.com"; option domain-name-servers 192.168.4.1; option routers 192.168.4.1; subnet 192.168.4.0 netmask 255.255.255.0 { use-host-decl-names on; option subnet-mask 255.255.255.0; option broadcast-address 192.168.4.255; host margaux { hardware ethernet 01:23:45:67:89:ab; fixed-address margaux.example.com; next-server 192.168.4.4; filename "/data/misc/kernel.diskless"; option root-path "192.168.4.4:/data/misc/diskless"; } host corbieres { hardware ethernet 00:02:b3:27:62:df; fixed-address corbieres.example.com; next-server 192.168.4.4; filename "pxeboot"; option root-path "192.168.4.4:/data/misc/diskless"; } }
Here follows an equivalent bootpd configuration (reduced to one client). This would be found in /etc/bootptab.
Please note that Etherboot must be compiled with the non-default option NO_DHCP_SUPPORT in order to use BOOTP, and that PXE needs DHCP. The only obvious advantage of bootpd is that it exists in the base system.
.def100:\ :hn:ht=1:sa=192.168.4.4:vm=rfc1048:\ :sm=255.255.255.0:\ :ds=192.168.4.1:\ :gw=192.168.4.1:\ :hd="/tftpboot":\ :bf="/kernel.diskless":\ :rp="192.168.4.4:/data/misc/diskless": margaux:ha=0123456789ab:tc=.def100
Etherboot's Web site contains extensive documentation mainly intended for Linux systems, but nonetheless containing useful information. The following will just outline how you would use Etherboot on a FreeBSD system.
You must first install the net/etherboot package or port.
You can change the Etherboot configuration (i.e., to use TFTP instead of NFS) by editing the Config file in the Etherboot source directory.
For our setup, we shall use a boot floppy. For other methods (PROM, or MS-DOS program), please refer to the Etherboot documentation.
To make a boot floppy, insert a floppy in the drive on the machine where you installed Etherboot, then change your current directory to the src directory in the Etherboot tree and type:
# gmake bin32/devicetype.fd0
devicetype depends on the type of the Ethernet card in the diskless workstation. Refer to the NIC file in the same directory to determine the right devicetype.
By default, the pxeboot(8) loader loads the kernel via NFS. It can be compiled to use TFTP instead by specifying the LOADER_TFTP_SUPPORT option in /etc/make.conf. See the comments in /usr/share/examples/etc/make.conf for instructions.
There are two other make.conf options which may be useful for setting up a serial console diskless machine: BOOT_PXELDR_PROBE_KEYBOARD, and BOOT_PXELDR_ALWAYS_SERIAL.
To use PXE when the machine starts, you will usually need to select the Boot from network option in your BIOS setup, or type a function key during the PC initialization.
If you are using PXE or Etherboot configured to use TFTP, you need to enable tftpd on the file server:
Create a directory from which tftpd will serve the files, e.g., /tftpboot.
Add this line to your /etc/inetd.conf:
tftp dgram udp wait root /usr/libexec/tftpd tftpd -l -s /tftpboot
Note: It appears that at least some PXE versions want the TCP version of TFTP. In this case, add a second line, replacing dgram udp with stream tcp.
Tell inetd to reread its configuration file. The
inetd_enable="YES"
must be in the /etc/rc.conf file for this command to execute correctly:
# /etc/rc.d/inetd restart
You can place the tftpboot directory anywhere on the server. Make sure that the location is set in both inetd.conf and dhcpd.conf.
In all cases, you also need to enable NFS and export the appropriate file system on the NFS server.
Add this to /etc/rc.conf:
nfs_server_enable="YES"
Export the file system where the diskless root directory is located by adding the following to /etc/exports (adjust the volume mount point and replace margaux corbieres with the names of the diskless workstations):
/data/misc -alldirs -ro margaux corbieres
Tell mountd to reread its configuration file. If you actually needed to enable NFS in /etc/rc.conf at the first step, you probably want to reboot instead.
# /etc/rc.d/mountd restart
If using Etherboot, you need to create a kernel configuration file for the diskless client with the following options (in addition to the usual ones):
options BOOTP # Use BOOTP to obtain IP address/hostname options BOOTP_NFSROOT # NFS mount root file system using BOOTP info
You may also want to use BOOTP_NFSV3, BOOT_COMPAT and BOOTP_WIRED_TO (refer to NOTES).
These option names are historical and slightly misleading as they actually enable indifferent use of DHCP and BOOTP inside the kernel (it is also possible to force strict BOOTP or DHCP use).
Build the kernel (see Chapter 9), and copy it to the place specified in dhcpd.conf.
Note: When using PXE, building a kernel with the above options is not strictly necessary (though suggested). Enabling them will cause more DHCP requests to be issued during kernel startup, with a small risk of inconsistency between the new values and those retrieved by pxeboot(8) in some special cases. The advantage of using them is that the host name will be set as a side effect. Otherwise you will need to set the host name by another method, for example in a client-specific rc.conf file.
Note: In order to be loadable with Etherboot, a kernel needs to have the device hints compiled in. You would typically set the following option in the configuration file (see the NOTES configuration comments file):
hints "GENERIC.hints"
You need to create a root file system for the diskless workstations, in the location listed as root-path in dhcpd.conf.
This method is quick and will install a complete virgin system (not only the root file system) into DESTDIR. All you have to do is simply execute the following script:
#!/bin/sh export DESTDIR=/data/misc/diskless mkdir -p ${DESTDIR} cd /usr/src; make buildworld && make buildkernel make installworld && make installkernel cd /usr/src/etc; make distribution
Once done, you may need to customize your /etc/rc.conf and /etc/fstab placed into DESTDIR according to your needs.
If needed, a swap file located on the server can be accessed via NFS.
The kernel does not support enabling NFS swap at boot time. Swap must be enabled by the startup scripts, by mounting a writable file system and creating and enabling a swap file. To create a swap file of appropriate size, you can do like this:
# dd if=/dev/zero of=/path/to/swapfile bs=1k count=1 oseek=100000
To enable it you have to add the following line to your rc.conf:
swapfile=/path/to/swapfile
If the diskless workstation is configured to run X, you will have to adjust the XDM configuration file, which puts the error log on /usr by default.
When the server for the root file system is not running FreeBSD, you will have to create the root file system on a FreeBSD machine, then copy it to its destination, using tar or cpio.
In this situation, there are sometimes problems with the special files in /dev, due to differing major/minor integer sizes. A solution to this problem is to export a directory from the non-FreeBSD server, mount this directory onto a FreeBSD machine, and use devfs(5) to allocate device nodes transparently for the user.
The Intel Preboot eXecution Environment (PXE) allows booting the operating system over the network. PXE support is usually provided in the BIOS of modern motherboards, where it can be enabled in the BIOS settings which enable booting from the network. A fully functioning PXE setup also requires properly configured DHCP and TFTP servers.
When the host computer boots, it receives information over DHCP about where to obtain the initial boot loader via TFTP. After the host computer receives this information, it downloads the boot loader via TFTP, and then executes the boot loader. This is documented in section 2.2.1 of the Preboot Execution Environment (PXE) Specification. In FreeBSD, the boot loader retrieved during the PXE process is /boot/pxeboot. After /boot/pxeboot executes, the FreeBSD kernel is loaded, and the rest of the FreeBSD bootup sequence proceeds. Refer to Chapter 13 for more information about the FreeBSD booting process.
Choose a directory which will have a FreeBSD installation which will be NFS mountable. For example, a directory such as /b/tftpboot/FreeBSD/install can be used.
# export NFSROOTDIR=/b/tftpboot/FreeBSD/install # mkdir -p ${NFSROOTDIR}
Enable the NFS server by following the instructions in Section 30.3.2.
Export the directory via NFS by adding the following to /etc/exports:
/b -ro -alldirs
Restart the NFS server:
# /etc/rc.d/nfsd restart
Enable inetd(8) by following the steps outlined in Section 30.2.2.
Add the following line to /etc/inetd.conf:
tftp dgram udp wait root /usr/libexec/tftpd tftpd -l -s /b/tftpboot
Restart inetd:
# /etc/rc.d/inetd restart
Rebuild the FreeBSD kernel and userland:
# cd /usr/src # make buildworld # make buildkernel
Install FreeBSD into the directory mounted over NFS:
# make installworld DESTDIR=${NFSROOTDIR} # make installkernel DESTDIR=${NFSROOTDIR} # make distribution DESTDIR=${NFSROOTDIR}
Test that the TFTP server works and can download the boot loader which will be obtained via PXE:
# tftp localhost tftp> get FreeBSD/install/boot/pxeboot Received 264951 bytes in 0.1 seconds
Edit ${NFSROOTDIR}/etc/fstab and create an entry to mount the root file system over NFS:
# Device Mountpoint FSType Options Dump Pass myhost.example.com:/b/tftpboot/FreeBSD/install / nfs ro 0 0
Replace myhost.example.com with the hostname or IP address of your NFS server. In this example, the root file system is mounted "read-only" in order to prevent NFS clients from potentially deleting the contents of the root file system.
Set the root password in the chroot(8) environment.
# chroot ${NFSROOTDIR} # passwd
This will set the root password for client machines which are PXE booting.
Enable ssh root logins for client machines which are PXE booting by editing ${NFSROOTDIR}/etc/ssh/sshd_config and enabling the PermitRootLogin option. This is documented in sshd_config(5).
Perform other customizations of the chroot(8) environment in ${NFSROOTDIR}. These customizations could include things like adding packages with pkg_add(1), editing the password file with vipw(8), or editing amd.conf(5) maps for automounting. For example:
# chroot ${NFSROOTDIR} # pkg_add -r bash
If you boot from an NFS root volume, /etc/rc detects that you booted over NFS and runs the /etc/rc.initdiskless script. Read the comments in this script to understand what is going on. We need to make /etc and /var memory backed file systems because these directories need to be writable, but the NFS root directory is read-only.
# chroot ${NFSROOTDIR} # mkdir -p conf/base # tar -c -v -f conf/base/etc.cpio.gz --format cpio --gzip etc # tar -c -v -f conf/base/var.cpio.gz --format cpio --gzip var
When the system boots, memory file systems for /etc and /var will be created and mounted, and the contents of the cpio.gz files will be copied into them.
PXE requires a TFTP server and a DHCP server to be set up. The DHCP server does not necessarily need to be the same machine as the TFTP server, but it needs to be accessible in your network.
Install the DHCP server by following the instructions documented at Section 30.5.7. Make sure that /etc/rc.conf and /usr/local/etc/dhcpd.conf are correctly configured.
In /usr/local/etc/dhcpd.conf, configure the next-server, filename, and option root-path settings, to specify your TFTP server IP address, the path to /boot/pxeboot in TFTP, and the path to the NFS root file system. Here is a sample dhcpd.conf setup:
subnet 192.168.0.0 netmask 255.255.255.0 { range 192.168.0.2 192.168.0.3 ; option subnet-mask 255.255.255.0 ; option routers 192.168.0.1 ; option broadcast-address 192.168.0.255 ; option domain-name-server 192.168.35.35, 192.168.35.36 ; option domain-name "example.com"; # IP address of TFTP server next-server 192.168.0.1 ; # path of boot loader obtained # via tftp filename "FreeBSD/install/boot/pxeboot" ; # pxeboot boot loader will try to NFS mount this directory for root FS option root-path "192.168.0.1:/b/tftpboot/FreeBSD/install/" ; }
When the client machine boots up, enter the BIOS configuration menu. Configure the BIOS to boot from the network. If all your previous configuration steps are correct, then everything should "just work".
Use the net/wireshark port to debug the network traffic involved during the PXE booting process, which is illustrated in the diagram below. In Section 32.8.3, an example configuration is shown where the DHCP, TFTP, and NFS servers are actually on the same machine. However, these severs can be on separate machines.
Figure 32-1. PXE Booting Process with NFS Root Mount
Make sure that the pxeboot file can be retrieved by TFTP. On your TFTP server, look in /var/log/xferlog to ensure that the pxeboot file is being retrieved from the correct location. To test the configuration from dhcpd.conf above:
# tftp 192.168.0.1 tftp> get FreeBSD/install/boot/pxeboot Received 264951 bytes in 0.1 seconds
Read tftpd(8) and tftp(1). The BUGS sections in these pages document some limitations with TFTP.
Make sure that the root file system can be mounted via NFS. To test configuration from dhcpd.conf above:
# mount -t nfs 192.168.0.1:/b/tftpboot/FreeBSD/install /mnt
Read the code in src/sys/boot/i386/libi386/pxe.c to understand how the pxeboot loader sets variables like boot.nfsroot.server and boot.nfsroot.path. These variables are then used in the NFS diskless root mount code in src/sys/nfsclient/nfs_diskless.c.
Read pxeboot(8) and loader(8).
A good resource for information on ISDN technology and hardware is Dan Kegel's ISDN Page.
A quick simple road map to ISDN follows:
If you live in Europe you might want to investigate the ISDN card section.
If you are planning to use ISDN primarily to connect to the Internet with an Internet Provider on a dial-up non-dedicated basis, you might look into Terminal Adapters. This will give you the most flexibility, with the fewest problems, if you change providers.
If you are connecting two LANs together, or connecting to the Internet with a dedicated ISDN connection, you might consider the stand alone router/bridge option.
Cost is a significant factor in determining what solution you will choose. The following options are listed from least expensive to most expensive.
FreeBSD's ISDN implementation supports only the DSS1/Q.931 (or Euro-ISDN) standard using passive cards. Some active cards are supported where the firmware also supports other signaling protocols; this also includes the first supported Primary Rate (PRI) ISDN card.
The isdn4bsd software allows you to connect to other ISDN routers using either IP over raw HDLC or by using synchronous PPP: either by using kernel PPP with isppp, a modified sppp(4) driver, or by using userland ppp(8). By using userland ppp(8), channel bonding of two or more ISDN B-channels is possible. A telephone answering machine application is also available as well as many utilities such as a software 300 Baud modem.
Some growing number of PC ISDN cards are supported under FreeBSD and the reports show that it is successfully used all over Europe and in many other parts of the world.
The passive ISDN cards supported are mostly the ones with the Infineon (formerly Siemens) ISAC/HSCX/IPAC ISDN chipsets, but also ISDN cards with chips from Cologne Chip (ISA bus only), PCI cards with Winbond W6692 chips, some cards with the Tiger300/320/ISAC chipset combinations and some vendor specific chipset based cards such as the AVM Fritz!Card PCI V.1.0 and the AVM Fritz!Card PnP.
Currently the active supported ISDN cards are the AVM B1 (ISA and PCI) BRI cards and the AVM T1 PCI PRI cards.
For documentation on isdn4bsd, have a look at the homepage of isdn4bsd which also has pointers to hints, erratas and much more documentation such as the isdn4bsd handbook.
In case you are interested in adding support for a different ISDN protocol, a
currently unsupported ISDN PC card or otherwise enhancing isdn4bsd, please get in touch with Hellmuth Michaelis <[email protected]>
.
For questions regarding the installation, configuration and troubleshooting isdn4bsd, a freebsd-isdn mailing list is available.
Terminal adapters (TA), are to ISDN what modems are to regular phone lines.
Most TA's use the standard Hayes modem AT command set, and can be used as a drop in replacement for a modem.
A TA will operate basically the same as a modem except connection and throughput speeds will be much faster than your old modem. You will need to configure PPP exactly the same as for a modem setup. Make sure you set your serial speed as high as possible.
The main advantage of using a TA to connect to an Internet Provider is that you can do Dynamic PPP. As IP address space becomes more and more scarce, most providers are not willing to provide you with a static IP any more. Most stand-alone routers are not able to accommodate dynamic IP allocation.
TA's completely rely on the PPP daemon that you are running for their features and stability of connection. This allows you to upgrade easily from using a modem to ISDN on a FreeBSD machine, if you already have PPP set up. However, at the same time any problems you experienced with the PPP program and are going to persist.
If you want maximum stability, use the kernel PPP option, not the userland PPP.
The following TA's are known to work with FreeBSD:
Motorola BitSurfer and Bitsurfer Pro
Adtran
Most other TA's will probably work as well, TA vendors try to make sure their product can accept most of the standard modem AT command set.
The real problem with external TA's is that, like modems, you need a good serial card in your computer.
You should read the FreeBSD Serial Hardware tutorial for a detailed understanding of serial devices, and the differences between asynchronous and synchronous serial ports.
A TA running off a standard PC serial port (asynchronous) limits you to 115.2 Kbs, even though you have a 128 Kbs connection. To fully utilize the 128 Kbs that ISDN is capable of, you must move the TA to a synchronous serial card.
Do not be fooled into buying an internal TA and thinking you have avoided the synchronous/asynchronous issue. Internal TA's simply have a standard PC serial port chip built into them. All this will do is save you having to buy another serial cable and find another empty electrical socket.
A synchronous card with a TA is at least as fast as a stand-alone router, and with a simple 386 FreeBSD box driving it, probably more flexible.
The choice of synchronous card/TA versus stand-alone router is largely a religious issue. There has been some discussion of this in the mailing lists. We suggest you search the archives for the complete discussion.
ISDN bridges or routers are not at all specific to FreeBSD or any other operating system. For a more complete description of routing and bridging technology, please refer to a networking reference book.
In the context of this section, the terms router and bridge will be used interchangeably.
As the cost of low end ISDN routers/bridges comes down, it will likely become a more and more popular choice. An ISDN router is a small box that plugs directly into your local Ethernet network, and manages its own connection to the other bridge/router. It has built in software to communicate via PPP and other popular protocols.
A router will allow you much faster throughput than a standard TA, since it will be using a full synchronous ISDN connection.
The main problem with ISDN routers and bridges is that interoperability between manufacturers can still be a problem. If you are planning to connect to an Internet provider, you should discuss your needs with them.
If you are planning to connect two LAN segments together, such as your home LAN to the office LAN, this is the simplest lowest maintenance solution. Since you are buying the equipment for both sides of the connection you can be assured that the link will work.
For example to connect a home computer or branch office network to a head office network the following setup could be used:
Example 32-4. Branch Office or Home Network
Network uses a bus based topology with 10 base 2 Ethernet (“thinnet”). Connect router to network cable with AUI/10BT transceiver, if necessary.
If your home/branch office is only one computer you can use a twisted pair crossover cable to connect to the stand-alone router directly.
Example 32-5. Head Office or Other LAN
Network uses a star topology with 10 base T Ethernet (“Twisted Pair”).
One large advantage of most routers/bridges is that they allow you to have 2 separate independent PPP connections to 2 separate sites at the same time. This is not supported on most TA's, except for specific (usually expensive) models that have two serial ports. Do not confuse this with channel bonding, MPP, etc.
This can be a very useful feature if, for example, you have an dedicated ISDN connection at your office and would like to tap into it, but do not want to get another ISDN line at work. A router at the office location can manage a dedicated B channel connection (64 Kbps) to the Internet and use the other B channel for a separate data connection. The second B channel can be used for dial-in, dial-out or dynamically bonding (MPP, etc.) with the first B channel for more bandwidth.
An Ethernet bridge will also allow you to transmit more than just IP traffic. You can also send IPX/SPX or whatever other protocols you use.
FreeBSD's Network Address Translation daemon, commonly known as natd(8) is a daemon that accepts incoming raw IP packets, changes the source to the local machine and re-injects these packets back into the outgoing IP packet stream. natd(8) does this by changing the source IP address and port such that when data is received back, it is able to determine the original location of the data and forward it back to its original requester.
The most common use of NAT is to perform what is commonly known as Internet Connection Sharing.
Due to the diminishing IP space in IPv4, and the increased number of users on high-speed consumer lines such as cable or DSL, people are increasingly in need of an Internet Connection Sharing solution. The ability to connect several computers online through one connection and IP address makes natd(8) a reasonable choice.
Most commonly, a user has a machine connected to a cable or DSL line with one IP address and wishes to use this one connected computer to provide Internet access to several more over a LAN.
To do this, the FreeBSD machine on the Internet must act as a gateway. This gateway machine must have two NICs—one for connecting to the Internet router, the other connecting to a LAN. All the machines on the LAN are connected through a hub or switch.
Note: There are many ways to get a LAN connected to the Internet through a FreeBSD gateway. This example will only cover a gateway with at least two NICs.
A setup like this is commonly used to share an Internet connection. One of the LAN machines is connected to the Internet. The rest of the machines access the Internet through that “gateway” machine.
The kernel features for network address translation with natd(8) are not enabled in the GENERIC kernel, but they can be preloaded at boot time, by adding a couple of options to /boot/loader.conf:
ipfw_load="YES" ipdivert_load="YES"
Additionally, the net.inet.ip.fw.default_to_accept tunable option may be set to 1:
net.inet.ip.fw.default_to_accept="1"
Note: It is a very good idea to set this option during the first attempts to setup a firewall and NAT gateway. This way the default policy of ipfw(8) will be allow ip from any to any instead of the less permissive deny ip from any to any, and it will be slightly more difficult to get locked out of the system right after a reboot.
When modules are not an option or if it is preferrable to build all the required features into the running kernel, the following options must be in the kernel configuration file:
options IPFIREWALL options IPDIVERT
Additionally, at choice, the following may also be suitable:
options IPFIREWALL_DEFAULT_TO_ACCEPT options IPFIREWALL_VERBOSE
To enable firewall and NAT support at boot time, the following must be in /etc/rc.conf:
gateway_enable="YES" firewall_enable="YES" firewall_type="OPEN" natd_enable="YES" natd_interface="fxp0" natd_flags=""
Having the previous options defined in /etc/rc.conf would run natd -interface fxp0 at boot. This can also be run manually.
Note: It is also possible to use a configuration file for natd(8) when there are too many options to pass. In this case, the configuration file must be defined by adding the following line to /etc/rc.conf:
natd_flags="-f /etc/natd.conf"The /etc/natd.conf file will contain a list of configuration options, one per line. For example the next section case would use the following file:
redirect_port tcp 192.168.0.2:6667 6667 redirect_port tcp 192.168.0.3:80 80For more information about the configuration file, consult the natd(8) manual page about the
-f
option.
Each machine and interface behind the LAN should be assigned IP address numbers in the private network space as defined by RFC 1918 and have a default gateway of the natd machine's internal IP address.
For example, client A and B behind the LAN have IP addresses of 192.168.0.2 and 192.168.0.3, while the natd machine's LAN interface has an IP address of 192.168.0.1. Client A and B's default gateway must be set to that of the natd machine, 192.168.0.1. The natd machine's external, or Internet interface does not require any special modification for natd(8) to work.
The drawback with natd(8) is that the LAN clients are not accessible from the Internet. Clients on the LAN can make outgoing connections to the world but cannot receive incoming ones. This presents a problem if trying to run Internet services on one of the LAN client machines. A simple way around this is to redirect selected Internet ports on the natd machine to a LAN client.
For example, an IRC server runs on client A, and a web server runs on client B. For this to work properly, connections received on ports 6667 (IRC) and 80 (web) must be redirected to the respective machines.
The -redirect_port
must be passed to natd(8) with the
proper options. The syntax is as follows:
-redirect_port proto targetIP:targetPORT[-targetPORT] [aliasIP:]aliasPORT[-aliasPORT] [remoteIP[:remotePORT[-remotePORT]]]
In the above example, the argument should be:
-redirect_port tcp 192.168.0.2:6667 6667 -redirect_port tcp 192.168.0.3:80 80
This will redirect the proper tcp ports to the LAN client machines.
The -redirect_port
argument can be used to indicate
port ranges over individual ports. For example, tcp
192.168.0.2:2000-3000 2000-3000 would redirect all connections received on
ports 2000 to 3000 to ports 2000 to 3000 on client A.
These options can be used when directly running natd(8), placed within the natd_flags="" option in /etc/rc.conf, or passed via a configuration file.
For further configuration options, consult natd(8)
Address redirection is useful if several IP addresses are available, yet they must be on one machine. With this, natd(8) can assign each LAN client its own external IP address. natd(8) then rewrites outgoing packets from the LAN clients with the proper external IP address and redirects all traffic incoming on that particular IP address back to the specific LAN client. This is also known as static NAT. For example, the IP addresses 128.1.1.1, 128.1.1.2, and 128.1.1.3 belong to the natd gateway machine. 128.1.1.1 can be used as the natd gateway machine's external IP address, while 128.1.1.2 and 128.1.1.3 are forwarded back to LAN clients A and B.
The -redirect_address
syntax is as follows:
-redirect_address localIP publicIP
localIP | The internal IP address of the LAN client. |
publicIP | The external IP address corresponding to the LAN client. |
In the example, this argument would read:
-redirect_address 192.168.0.2 128.1.1.2 -redirect_address 192.168.0.3 128.1.1.3
Like -redirect_port
, these arguments are also placed
within the natd_flags="" option of /etc/rc.conf, or passed via a configuration file. With address
redirection, there is no need for port redirection since all data received on a
particular IP address is redirected.
The external IP addresses on the natd machine must be active and aliased to the external interface. Look at rc.conf(5) to do so.
PLIP lets us run TCP/IP between parallel ports. It is useful on machines without network cards, or to install on laptops. In this section, we will discuss:
Creating a parallel (laplink) cable.
Connecting two computers with PLIP.
You can purchase a parallel cable at most computer supply stores. If you cannot do that, or you just want to know how it is done, the following table shows how to make one out of a normal parallel printer cable.
Table 32-2. Wiring a Parallel Cable for Networking
A-name | A-End | B-End | Descr. | Post/Bit |
---|---|---|---|---|
DATA0 |
2 |
15 |
Data |
0/0x01 |
DATA1 |
3 |
13 |
Data |
0/0x02 |
DATA2 |
4 |
12 |
Data |
0/0x04 |
DATA3 |
5 |
10 |
Strobe |
0/0x08 |
DATA4 |
6 |
11 |
Data |
0/0x10 |
GND | 18-25 | 18-25 | GND | - |
First, you have to get a laplink cable. Then, confirm that both computers have a kernel with lpt(4) driver support:
# grep lp /var/run/dmesg.boot lpt0: <Printer> on ppbus0 lpt0: Interrupt-driven port
The parallel port must be an interrupt driven port, you should have lines similar to the following in your in the /boot/device.hints file:
hint.ppc.0.at="isa" hint.ppc.0.irq="7"
Then check if the kernel configuration file has a device plip line or if the plip.ko kernel module is loaded. In both cases the parallel networking interface should appear when you use the ifconfig(8) command to display it:
# ifconfig plip0 plip0: flags=8810<POINTOPOINT,SIMPLEX,MULTICAST> mtu 1500
Plug the laplink cable into the parallel interface on both computers.
Configure the network interface parameters on both sites as root. For example, if you want to connect the host host1 with another machine host2:
host1 <-----> host2 IP Address 10.0.0.1 10.0.0.2
Configure the interface on host1 by doing:
# ifconfig plip0 10.0.0.1 10.0.0.2
Configure the interface on host2 by doing:
# ifconfig plip0 10.0.0.2 10.0.0.1
You now should have a working connection. Please read the manual pages lp(4) and lpt(4) for more details.
You should also add both hosts to /etc/hosts:
127.0.0.1 localhost.my.domain localhost 10.0.0.1 host1.my.domain host1 10.0.0.2 host2.my.domain host2
To confirm the connection works, go to each host and ping the other. For example, on host1:
# ifconfig plip0 plip0: flags=8851<UP,POINTOPOINT,RUNNING,SIMPLEX,MULTICAST> mtu 1500 inet 10.0.0.1 --> 10.0.0.2 netmask 0xff000000 # netstat -r Routing tables Internet: Destination Gateway Flags Refs Use Netif Expire host2 host1 UH 0 0 plip0 # ping -c 4 host2 PING host2 (10.0.0.2): 56 data bytes 64 bytes from 10.0.0.2: icmp_seq=0 ttl=255 time=2.774 ms 64 bytes from 10.0.0.2: icmp_seq=1 ttl=255 time=2.530 ms 64 bytes from 10.0.0.2: icmp_seq=2 ttl=255 time=2.556 ms 64 bytes from 10.0.0.2: icmp_seq=3 ttl=255 time=2.714 ms --- host2 ping statistics --- 4 packets transmitted, 4 packets received, 0% packet loss round-trip min/avg/max/stddev = 2.530/2.643/2.774/0.103 ms
IPv6 (also known as IPng “IP next generation”) is the new version of the well known IP protocol (also known as IPv4). Like the other current *BSD systems, FreeBSD includes the KAME IPv6 reference implementation. So your FreeBSD system comes with all you will need to experiment with IPv6. This section focuses on getting IPv6 configured and running.
In the early 1990s, people became aware of the rapidly diminishing address space of IPv4. Given the expansion rate of the Internet there were two major concerns:
Running out of addresses. Today this is not so much of a concern any more, since RFC1918 private address space (10.0.0.0/8, 172.16.0.0/12, and 192.168.0.0/16) and Network Address Translation (NAT) are being employed.
Router table entries were getting too large. This is still a concern today.
IPv6 deals with these and many other issues:
128 bit address space. In other words theoretically there are 340,282,366,920,938,463,463,374,607,431,768,211,456 addresses available. This means there are approximately 6.67 * 10^27 IPv6 addresses per square meter on our planet.
Routers will only store network aggregation addresses in their routing tables thus reducing the average space of a routing table to 8192 entries.
There are also lots of other useful features of IPv6 such as:
Address autoconfiguration (RFC2462)
Anycast addresses (“one-out-of many”)
Mandatory multicast addresses
IPsec (IP security)
Simplified header structure
Mobile IP
IPv6-to-IPv4 transition mechanisms
For more information see:
IPv6 overview at playground.sun.com
There are different types of IPv6 addresses: Unicast, Anycast and Multicast.
Unicast addresses are the well known addresses. A packet sent to a unicast address arrives exactly at the interface belonging to the address.
Anycast addresses are syntactically indistinguishable from unicast addresses but they address a group of interfaces. The packet destined for an anycast address will arrive at the nearest (in router metric) interface. Anycast addresses may only be used by routers.
Multicast addresses identify a group of interfaces. A packet destined for a multicast address will arrive at all interfaces belonging to the multicast group.
Note: The IPv4 broadcast address (usually xxx.xxx.xxx.255) is expressed by multicast addresses in IPv6.
Table 32-3. Reserved IPv6 Addresses
IPv6 address | Prefixlength (Bits) | Description | Notes |
---|---|---|---|
:: | 128 bits | unspecified | cf. 0.0.0.0 in IPv4 |
::1 | 128 bits | loopback address | cf. 127.0.0.1 in IPv4 |
::00:xx:xx:xx:xx | 96 bits | embedded IPv4 | The lower 32 bits are the IPv4 address. Also called “IPv4 compatible IPv6 address” |
::ff:xx:xx:xx:xx | 96 bits | IPv4 mapped IPv6 address | The lower 32 bits are the IPv4 address. For hosts which do not support IPv6. |
fe80:: - feb:: | 10 bits | link-local | cf. loopback address in IPv4 |
fec0:: - fef:: | 10 bits | site-local | |
ff:: | 8 bits | multicast | |
001 (base 2) | 3 bits | global unicast | All global unicast addresses are assigned from this pool. The first 3 bits are “001”. |
The canonical form is represented as: x:x:x:x:x:x:x:x, each “x” being a 16 Bit hex value. For example FEBC:A574:382B:23C1:AA49:4592:4EFE:9982
Often an address will have long substrings of all zeros therefore one such substring per address can be abbreviated by “::”. Also up to three leading “0”s per hexquad can be omitted. For example fe80::1 corresponds to the canonical form fe80:0000:0000:0000:0000:0000:0000:0001.
A third form is to write the last 32 Bit part in the well known (decimal) IPv4 style with dots “.” as separators. For example 2002::10.0.0.1 corresponds to the (hexadecimal) canonical representation 2002:0000:0000:0000:0000:0000:0a00:0001 which in turn is equivalent to writing 2002::a00:1.
By now the reader should be able to understand the following:
# ifconfig
rl0: flags=8943<UP,BROADCAST,RUNNING,PROMISC,SIMPLEX,MULTICAST> mtu 1500 inet 10.0.0.10 netmask 0xffffff00 broadcast 10.0.0.255 inet6 fe80::200:21ff:fe03:8e1%rl0 prefixlen 64 scopeid 0x1 ether 00:00:21:03:08:e1 media: Ethernet autoselect (100baseTX ) status: active
fe80::200:21ff:fe03:8e1%rl0 is an auto configured link-local address. It is generated from the MAC address as part of the auto configuration.
For further information on the structure of IPv6 addresses see RFC3513.
Currently there are four ways to connect to other IPv6 hosts and networks:
Contact your Internet Service Provider to see if they offer IPv6 yet.
SixXS offers tunnels with end-points all around the globe.
Tunnel via 6-to-4 (RFC3068)
Use the net/freenet6 port if you are on a dial-up connection.
There used to be two types of DNS records for IPv6. The IETF has declared A6 records obsolete. AAAA records are the standard now.
Using AAAA records is straightforward. Assign your hostname to the new IPv6 address you just received by adding:
MYHOSTNAME AAAA MYIPv6ADDR
To your primary zone DNS file. In case you do not serve your own DNS zones ask your DNS provider. Current versions of bind (version 8.3 and 9) and dns/djbdns (with the IPv6 patch) support AAAA records.
These settings will help you configure a machine that will be on your LAN and act as a client, not a router. To have rtsol(8) autoconfigure your interface on boot on FreeBSD 9.x and later, add:
ipv6_prefer="YES"
to rc.conf.
For FreeBSD 8.x and earlier, add:
ipv6_enable="YES"
To statically assign an IP address such as 2001:471:1f11:251:290:27ff:fee0:2093, to your fxp0 interface, add the following for FreeBSD 9.x:
ifconfig_fxp0_ipv6="inet6 2001:471:1f11:251:290:27ff:fee0:2093 prefixlen 64"
Note: Be sure to change prefixlen 64 to the appropriate value for the subnet within which the computer is networked.
For FreeBSD 8x and earlier, add:
ipv6_ifconfig_fxp0="2001:471:1f11:251:290:27ff:fee0:2093"
To assign a default router of 2001:471:1f11:251::1 add the following to /etc/rc.conf:
ipv6_defaultrouter="2001:471:1f11:251::1"
This will help you take the directions that your tunnel provider has given you and convert it into settings that will persist through reboots. To restore your tunnel on startup use something like the following in /etc/rc.conf:
List the Generic Tunneling interfaces that will be configured, for example gif0:
gif_interfaces="gif0"
To configure the interface with a local endpoint of MY_IPv4_ADDR to a remote endpoint of REMOTE_IPv4_ADDR:
gifconfig_gif0="MY_IPv4_ADDR REMOTE_IPv4_ADDR"
To apply the IPv6 address you have been assigned for use as your IPv6 tunnel endpoint, add the following for FreeBSD 9.x and later:
ifconfig_gif0_ipv6="inet6 MY_ASSIGNED_IPv6_TUNNEL_ENDPOINT_ADDR"
For FreeBSD 8.x and earlier, add:
ipv6_ifconfig_gif0="MY_ASSIGNED_IPv6_TUNNEL_ENDPOINT_ADDR"
Then all you have to do is set the default route for IPv6. This is the other side of the IPv6 tunnel:
ipv6_defaultrouter="MY_IPv6_REMOTE_TUNNEL_ENDPOINT_ADDR"
If the server is to route IPv6 between the rest of your network and the world, the following /etc/rc.conf setting will also be needed:
ipv6_gateway_enable="YES"
This section will help you setup rtadvd(8) to advertise the IPv6 default route.
To enable rtadvd(8) you will need the following in your /etc/rc.conf:
rtadvd_enable="YES"
It is important that you specify the interface on which to do IPv6 router solicitation. For example to tell rtadvd(8) to use fxp0:
rtadvd_interfaces="fxp0"
Now we must create the configuration file, /etc/rtadvd.conf. Here is an example:
fxp0:\ :addrs#1:addr="2001:471:1f11:246::":prefixlen#64:tc=ether:
Replace fxp0 with the interface you are going to be using.
Next, replace 2001:471:1f11:246:: with the prefix of your allocation.
If you are dedicated a /64 subnet you will not need to change anything else. Otherwise, you will need to change the prefixlen# to the correct value.
Classical IP over ATM (CLIP) is the simplest method to use Asynchronous Transfer Mode (ATM) with IP. It can be used with switched connections (SVCs) and with permanent connections (PVCs). This section describes how to set up a network based on PVCs.
The first method to set up a CLIP with PVCs is to connect each machine to each other machine in the network via a dedicated PVC. While this is simple to configure it tends to become impractical for a larger number of machines. The example supposes that we have four machines in the network, each connected to the ATM network with an ATM adapter card. The first step is the planning of the IP addresses and the ATM connections between the machines. We use the following:
To build a fully meshed net we need one ATM connection between each pair of machines:
Machines | VPI.VCI couple |
---|---|
hostA - hostB | 0.100 |
hostA - hostC | 0.101 |
hostA - hostD | 0.102 |
hostB - hostC | 0.103 |
hostB - hostD | 0.104 |
hostC - hostD | 0.105 |
The VPI and VCI values at each end of the connection may of course differ, but for simplicity we assume that they are the same. Next we need to configure the ATM interfaces on each host:
hostA# ifconfig hatm0 192.168.173.1 up hostB# ifconfig hatm0 192.168.173.2 up hostC# ifconfig hatm0 192.168.173.3 up hostD# ifconfig hatm0 192.168.173.4 up
assuming that the ATM interface is hatm0 on all hosts. Now the PVCs need to be configured on hostA (we assume that they are already configured on the ATM switches, you need to consult the manual for the switch on how to do this).
hostA# atmconfig natm add 192.168.173.2 hatm0 0 100 llc/snap ubr hostA# atmconfig natm add 192.168.173.3 hatm0 0 101 llc/snap ubr hostA# atmconfig natm add 192.168.173.4 hatm0 0 102 llc/snap ubr hostB# atmconfig natm add 192.168.173.1 hatm0 0 100 llc/snap ubr hostB# atmconfig natm add 192.168.173.3 hatm0 0 103 llc/snap ubr hostB# atmconfig natm add 192.168.173.4 hatm0 0 104 llc/snap ubr hostC# atmconfig natm add 192.168.173.1 hatm0 0 101 llc/snap ubr hostC# atmconfig natm add 192.168.173.2 hatm0 0 103 llc/snap ubr hostC# atmconfig natm add 192.168.173.4 hatm0 0 105 llc/snap ubr hostD# atmconfig natm add 192.168.173.1 hatm0 0 102 llc/snap ubr hostD# atmconfig natm add 192.168.173.2 hatm0 0 104 llc/snap ubr hostD# atmconfig natm add 192.168.173.3 hatm0 0 105 llc/snap ubr
Of course other traffic contracts than UBR can be used given the ATM adapter supports those. In this case the name of the traffic contract is followed by the parameters of the traffic. Help for the atmconfig(8) tool can be obtained with:
# atmconfig help natm add
or in the atmconfig(8) manual page.
The same configuration can also be done via /etc/rc.conf. For hostA this would look like:
network_interfaces="lo0 hatm0" ifconfig_hatm0="inet 192.168.173.1 up" natm_static_routes="hostB hostC hostD" route_hostB="192.168.173.2 hatm0 0 100 llc/snap ubr" route_hostC="192.168.173.3 hatm0 0 101 llc/snap ubr" route_hostD="192.168.173.4 hatm0 0 102 llc/snap ubr"
The current state of all CLIP routes can be obtained with:
hostA# atmconfig natm show
The Common Address Redundancy Protocol, or CARP allows multiple hosts to share the same IP address. In some configurations, this may be used for availability or load balancing. Hosts may use separate IP addresses as well, as in the example provided here.
To enable support for CARP, the FreeBSD kernel must be rebuilt as described in Chapter 9 with the following option:
device carp
Alternatively, the if_carp.ko module can be loaded at boot time. Add the following line to the /boot/loader.conf:
if_carp_load="YES"
CARP functionality should now be available and may be tuned via several sysctl OIDs:
OID | Description |
---|---|
net.inet.carp.allow |
Accept incoming CARP packets. Enabled by default. |
net.inet.carp.preempt |
This option downs all of the CARP interfaces on the host when one of them goes down. Disabled by default |
net.inet.carp.log |
A value of 0 disables any logging. A Value of 1 enables logging of bad CARP packets. Values greater than 1 enables logging of state changes for the CARP interfaces. The default value is 1. |
net.inet.carp.arpbalance |
Balance local network traffic using ARP. Disabled by default. |
net.inet.carp.suppress_preempt |
A read only OID showing the status of preemption suppression. Preemption can be suppressed if link on an interface is down. A value of 0, means that preemption is not suppressed. Every problem increments this OID. |
The CARP devices themselves may be created via the ifconfig command:
# ifconfig carp0 create
In a real environment, these interfaces will need unique identification numbers known as a VHID. This VHID or Virtual Host Identification will be used to distinguish the host on the network.
One use of CARP, as noted above, is for server availability. This example will provide failover support for three hosts, all with unique IP addresses and providing the same web content. These machines will act in conjunction with a Round Robin DNS configuration. The failover machine will have two additional CARP interfaces, one for each of the content server's IPs. When a failure occurs, the failover server should pick up the failed machine's IP address. This means the failure should go completely unnoticed to the user. The failover server requires identical content and services as the other content servers it is expected to pick up load for.
The two machines should be configured identically other than their issued hostnames and VHIDs. This example calls these machines hosta.example.org and hostb.example.org respectively. First, the required lines for a CARP configuration have to be added to rc.conf. For hosta.example.org, the rc.conf file should contain the following lines:
hostname="hosta.example.org" ifconfig_fxp0="inet 192.168.1.3 netmask 255.255.255.0" cloned_interfaces="carp0" ifconfig_carp0="vhid 1 pass testpass 192.168.1.50/24"
On hostb.example.org the following lines should be in rc.conf:
hostname="hostb.example.org" ifconfig_fxp0="inet 192.168.1.4 netmask 255.255.255.0" cloned_interfaces="carp0" ifconfig_carp0="vhid 2 pass testpass 192.168.1.51/24"
Note: It is very important that the passwords, specified by the
pass
option to ifconfig, are identical. The carp devices will only listen to and accept advertisements from machines with the correct password. The VHID must also be different for each machine.
The third machine, provider.example.org, should be prepared so that it may handle failover from either host. This machine will require two carp devices, one to handle each host. The appropriate rc.conf configuration lines will be similar to the following:
hostname="provider.example.org" ifconfig_fxp0="inet 192.168.1.5 netmask 255.255.255.0" cloned_interfaces="carp0 carp1" ifconfig_carp0="vhid 1 advskew 100 pass testpass 192.168.1.50/24" ifconfig_carp1="vhid 2 advskew 100 pass testpass 192.168.1.51/24"
Having the two carp devices will allow provider.example.org to notice and pick up the IP address of either machine should it stop responding.
Note: The default FreeBSD kernel may have preemption enabled. If so, provider.example.org may not relinquish the IP address back to the original content server. In this case, an administrator may have to manually force the IP back to the master. The following command should be issued on provider.example.org:
# ifconfig carp0 down && ifconfig carp0 upThis should be done on the carp interface which corresponds to the correct host.
At this point, CARP should be completely enabled and available for testing. For testing, either networking has to be restarted or the machines need to be rebooted.
More information is always available in the carp(4) manual page.
FreeBSD is available as a boxed product (FreeBSD CDs, additional software, and printed documentation) from several retailers:
Frys Electronics
WWW: http://www.frys.com/
FreeBSD CD and DVD sets are available from many online retailers:
FreeBSD Mall, Inc.
2420 Sand Creek Rd C-1
#347
Brentwood,
CA
94513
USA
Phone: +1 925 240-6652
Fax: +1 925 674-0821
Email: <[email protected]>
WWW: http://www.freebsdmall.com/
Dr. Hinner EDV
Kochelseestr. 11
D-81371 München
Germany
Phone: (0177) 428 419
0
WWW: http://www.hinner.de/linux/freebsd.html
Linux Distro UK
42 Wharfedale Road
Margate
CT9 2TB
United Kingdom
WWW: https://linux-distro.co.uk/
The Linux Emporium
The Techno Centre, Puma
Way
Parkside
CV1 2TT
United Kingdom
Phone: +44 (0)247 615
8121
Fax: +44 1491 837016
WWW: http://www.linuxemporium.co.uk/products/bsd/
LinuxCenter.Ru
Galernaya Street, 55
Saint-Petersburg
190000
Russia
Phone: +7-812-3125208
Email: <[email protected]>
WWW: http://linuxcenter.ru/shop/freebsd
The official sources for FreeBSD are available via anonymous FTP from a worldwide set of mirror sites. The site ftp://ftp.FreeBSD.org/pub/FreeBSD/ is well connected and allows a large number of connections to it, but you are probably better off finding a “closer” mirror site (especially if you decide to set up some sort of mirror site).
Additionally, FreeBSD is available via anonymous FTP from the following mirror sites. If you choose to obtain FreeBSD via anonymous FTP, please try to use a site near you. The mirror sites listed as “Primary Mirror Sites” typically have the entire FreeBSD archive (all the currently available versions for each of the architectures) but you will probably have faster download times from a site that is in your country or region. The regional sites carry the most recent versions for the most popular architecture(s) but might not carry the entire FreeBSD archive. All sites provide access via anonymous FTP but some sites also provide access via other methods. The access methods available for each site are provided in parentheses after the hostname.
Central Servers, Primary Mirror Sites, Armenia, Australia, Austria, Brazil, Canada, China, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hong Kong, Iceland, Ireland, Israel, Italy, Japan, Korea, Latvia, Lithuania, Netherlands, New Zealand, Norway, Poland, Portugal, Romania, Russia, Saudi Arabia, Slovak Republic, Slovenia, South Africa, Spain, Sweden, Switzerland, Taiwan, Turkey, Ukraine, United Kingdom, USA.
(as of UTC)
ftp://ftp.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6)
In case of problems, please contact the hostmaster <[email protected]>
for this
domain.
ftp://ftp4.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6)
ftp://ftp10.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp1.am.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.at.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp3.br.FreeBSD.org/pub/FreeBSD/ (ftp / rsync)
ftp5.br.FreeBSD.org
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.cz.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6 / rsync / rsyncv6)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.dk.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp1.fr.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
ftp://ftp4.fr.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6 / rsync / rsyncv6)
ftp://ftp6.fr.FreeBSD.org/pub/FreeBSD/ (ftp / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp1.de.FreeBSD.org/freebsd/ (ftp / http / rsync)
ftp://ftp2.de.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
ftp://ftp4.de.FreeBSD.org/FreeBSD/ (ftp / http / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.is.FreeBSD.org/pub/FreeBSD/ (ftp / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp2.ie.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
ftp://ftp3.ie.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.il.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.kr.FreeBSD.org/pub/FreeBSD/ (ftp / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.nl.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.no.FreeBSD.org/pub/FreeBSD/ (ftp / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp2.pl.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6 / rsync / rsyncv6)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp1.ro.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.ru.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
ftp://ftp2.ru.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
ftp://ftp5.ru.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for this
domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.sk.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6 / rsync / rsyncv6)
ftp://ftp2.sk.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp2.se.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
ftp://ftp4.se.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6 / rsync / rsyncv6)
ftp://ftp5.se.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp.tw.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / rsync / rsyncv6)
ftp://ftp2.tw.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6 / rsync / rsyncv6)
ftp://ftp6.tw.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
ftp://ftp.tr.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
ftp://ftp2.tr.FreeBSD.org/pub/FreeBSD/ (ftp / rsync)
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
In case of problems, please contact the hostmaster <[email protected]>
for
this domain.
ftp://ftp4.us.FreeBSD.org/pub/FreeBSD/ (ftp / ftpv6 / http / httpv6)
ftp://ftp5.us.FreeBSD.org/pub/FreeBSD/ (ftp / rsync)
ftp://ftp7.us.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
ftp://ftp12.us.FreeBSD.org/pub/FreeBSD/ (ftp / rsync)
ftp://ftp13.us.FreeBSD.org/pub/FreeBSD/ (ftp / http / rsync)
The ISO images for the basic release CDs are available via BitTorrent. A collection of torrent files to download the images is available at http://torrents.freebsd.org:8080
The BitTorrent client software is available from the net-p2p/py-bittorrent port, or a precompiled package.
After downloading the ISO image with BitTorrent, you may burn it to CD or DVD media as described in Section 19.6.3, burncd.
Warning: CVS has been deprecated by the project, and its use is not recommended. Subversion should be used instead.
CTM is a method for keeping a remote directory tree in sync with a central one. It has been developed for usage with FreeBSD's source trees, though other people may find it useful for other purposes as time goes by. Little, if any, documentation currently exists at this time on the process of creating deltas, so contact the ctm-users mailing list for more information and if you wish to use CTM for other things.
CTM will give you a local copy of the FreeBSD source trees. There are a number of “flavors” of the tree available. Whether you wish to track the entire CVS tree or just one of the branches, CTM can provide you the information. If you are an active developer on FreeBSD, but have lousy or non-existent TCP/IP connectivity, or simply wish to have the changes automatically sent to you, CTM was made for you. You will need to obtain up to three deltas per day for the most active branches. However, you should consider having them sent by automatic email. The sizes of the updates are always kept as small as possible. This is typically less than 5K, with an occasional (one in ten) being 10-50K and every now and then a large 100K+ or more coming around.
You will also need to make yourself aware of the various caveats related to working directly from the development sources rather than a pre-packaged release. This is particularly true if you choose the “current” sources. It is recommended that you read Staying current with FreeBSD.
You will need two things: The CTM program, and the initial deltas to feed it (to get up to “current” levels).
The CTM program has been part of FreeBSD ever since version 2.0 was released, and lives in /usr/src/usr.sbin/ctm if you have a copy of the source available.
The “deltas” you feed CTM can be had two ways, FTP or email. If you have general FTP access to the Internet then the following FTP sites support access to CTM:
ftp://ftp.FreeBSD.org/pub/FreeBSD/CTM/
or see section mirrors.
FTP the relevant directory and fetch the README file, starting from there.
If you wish to get your deltas via email:
Subscribe to one of the CTM distribution lists. ctm-cvs-cur supports the entire CVS tree. ctm-src-cur supports the head of the development branch. ctm-src-7 supports the 7.X release branch, etc.. (If you do not know how to subscribe yourself to a list, click on the list name above or go to http://lists.FreeBSD.org/mailman/listinfo and click on the list that you wish to subscribe to. The list page should contain all of the necessary subscription instructions.)
When you begin receiving your CTM updates in the mail, you may use the ctm_rmail program to unpack and apply them. You can actually use the ctm_rmail program directly from a entry in /etc/aliases if you want to have the process run in a fully automated fashion. Check the ctm_rmail manual page for more details.
Note: No matter what method you use to get the CTM deltas, you should subscribe to the ctm-announce mailing list. In the future, this will be the only place where announcements concerning the operations of the CTM system will be posted. Click on the list name above and follow the instructions to subscribe to the list.
Before you can start using CTM deltas, you will need to get to a starting point for the deltas produced subsequently to it.
First you should determine what you already have. Everyone can start from an “empty” directory. You must use an initial “Empty” delta to start off your CTM supported tree. At some point it is intended that one of these “started” deltas be distributed on the CD for your convenience, however, this does not currently happen.
Since the trees are many tens of megabytes, you should prefer to start from something already at hand. If you have a -RELEASE CD, you can copy or extract an initial source from it. This will save a significant transfer of data.
You can recognize these “starter” deltas by the X appended to the number (src-cur.3210XEmpty.gz for instance). The designation following the X corresponds to the origin of your initial “seed”. Empty is an empty directory. As a rule a base transition from Empty is produced every 100 deltas. By the way, they are large! 70 to 80 Megabytes of gzip'd data is common for the XEmpty deltas.
Once you have picked a base delta to start from, you will also need all deltas with higher numbers following it.
To apply the deltas, simply say:
# cd /where/ever/you/want/the/stuff # ctm -v -v /where/you/store/your/deltas/src-xxx.*
CTM understands deltas which have been put through gzip, so you do not need to gunzip them first, this saves disk space.
Unless it feels very secure about the entire process, CTM will not touch your tree. To verify a delta you can also
use the -c
flag and CTM will
not actually touch your tree; it will merely verify the integrity of the delta
and see if it would apply cleanly to your current tree.
There are other options to CTM as well, see the manual pages or look in the sources for more information.
That is really all there is to it. Every time you get a new delta, just run it through CTM to keep your sources up to date.
Do not remove the deltas if they are hard to download again. You just might want to keep them around in case something bad happens. Even if you only have floppy disks, consider using fdwrite to make a copy.
As a developer one would like to experiment with and change files in the source tree. CTM supports local modifications in a limited way: before checking for the presence of a file foo, it first looks for foo.ctm. If this file exists, CTM will operate on it instead of foo.
This behavior gives us a simple way to maintain local changes: simply copy the files you plan to modify to the corresponding file names with a .ctm suffix. Then you can freely hack the code, while CTM keeps the .ctm file up-to-date.
You can determine the list of changes that CTM will
make on your source repository using the -l
option to
CTM.
This is useful if you would like to keep logs of the changes, pre- or post- process the modified files in any manner, or just are feeling a tad paranoid.
Sometimes you may want to backup all the files that would be changed by a CTM update.
Specifying the -B backup-file
option causes CTM to backup all files that would be touched by a given
CTM delta to backup-file.
Sometimes you would be interested in restricting the scope of a given CTM update, or may be interested in extracting just a few files from a sequence of deltas.
You can control the list of files that CTM would
operate on by specifying filtering regular expressions using the -e
and -x
options.
For example, to extract an up-to-date copy of lib/libc/Makefile from your collection of saved CTM deltas, run the commands:
# cd /where/ever/you/want/to/extract/it/ # ctm -e '^lib/libc/Makefile' ~ctm/src-xxx.*
For every file specified in a CTM delta, the
-e
and -x
options are
applied in the order given on the command line. The file is processed by CTM only if it is marked as eligible after all the -e
and -x
options are applied to
it.
Tons of them:
Use some kind of authentication into the CTM system, so as to allow detection of spoofed CTM updates.
Clean up the options to CTM, they became confusing and counter intuitive.
There is a sequence of deltas for the ports collection too, but interest has not been all that high yet.
CTM/FreeBSD is available via anonymous FTP from the following mirror sites. If you choose to obtain CTM via anonymous FTP, please try to use a site near you.
In case of problems, please contact the ctm-users mailing list.
If you did not find a mirror near to you or the mirror is incomplete, try to use a search engine such as alltheweb.
As of July 2012, FreeBSD uses Subversion (svn) as the primary version control system for storing all of FreeBSD's source code, documentation, and the Ports Collection.
Note: Subversion is generally a developer tool. Most users should use FreeBSD Update to update the FreeBSD base system, and Portsnap to update the FreeBSD Ports Collection.
In Subversion, URLs are used to designate a repository, taking the form of protocol://hostname/path. Mirrors may support different protocols as specified below. The first component of the path is the FreeBSD repository to access. There are three different repositories, base for the FreeBSD base system source code, ports for the Ports Collection, and doc for documentation. For example, the URL svn://svn0.us-east.FreeBSD.org/ports/head/ specifies the main branch of the ports repository on the svn0.us-east.FreeBSD.org mirror, using the svn protocol.
Subversion must be installed before it can be used to check out the contents of any of the repositories. If a copy of the ports tree is already present, one can install Subversion like this:
# cd /usr/ports/devel/subversion # make install clean
If the ports tree is not available, Subversion can be installed as a package:
# pkg_add -r subversion
If pkgng is being used to manage packages, Subversion can be installed with it instead:
# pkg install devel/subversion
The svn command is used to fetch a clean copy of the sources into a local directory. The files in this directory are called a local working copy.
Warning: If the local directory already exists but was not created by svn, rename or delete it before the checkout. Checkout over an existing non-svn directory can cause conflicts between the existing files and those brought in from the repository.
A checkout from a given repository is performed with a command like this:
# svn checkout svn-mirror/repository/branch lwcdir
where:
svn-mirror is a URL for one of the Subversion mirror sites.
repository is one of the Project repositories, i.e., base, ports, or doc.
branch depends on the repository used. ports and doc are mostly updated in the head branch, while base maintains the latest version of -CURRENT under head and the respective latest versions of the -STABLE branches under stable/8 (for 8.x) and stable/9 (9.x).
lwcdir is the target directory where the contents of the specified branch should be placed. This is usually /usr/ports for ports, /usr/src for base, and /usr/doc for doc.
This example checks out the Ports Collection from the western US repository using the HTTPS protocol, placing the local working copy in /usr/ports. If /usr/ports is already present but was not created by svn, remember to rename or delete it before the checkout.
# svn checkout https://svn0.us-west.FreeBSD.org/head/ports /usr/ports
Because the initial checkout has to download the full branch of the remote repository, it can take a while. Please be patient.
After the initial checkout, the local working copy can be updated by running:
# svn update lwcdir
To update /usr/ports created in the example above, use:
# svn update /usr/ports
The update is much quicker than a checkout, only transferring files that have changed.
An alternate way of updating the local working copy after checkout is provided by the Makefile in the /usr/ports, /usr/src, and /usr/doc directories. Set SVN_UPDATE and use the update target. For example, to update /usr/src:
# cd /usr/src # make update SVN_UPDATE=yes
For other information about using Subversion, please see the “Subversion Book”, titled Version Control with Subversion, or the Subversion Documentation.
All mirrors carry all repositories.
The master FreeBSD Subversion server, svn.FreeBSD.org, is publicly accessible, read-only. That may change in the future, so users are encouraged to use one of the official mirrors. To view the FreeBSD Subversion repositories through a browser, use http://svnweb.FreeBSD.org/.
Note: The FreeBSD svn mirror network is still in its early days, and will likely change. Do not count on this list of mirrors being static. In particular, the SSL certificates of the servers will likely change at some point.
Warning: cvsup has been deprecated by the project, and its use is not recommended. Subversion should be used instead.
CVSup is a software package for distributing and updating source trees from a master CVS repository on a remote server host. The FreeBSD sources are maintained in a CVS repository on a central development machine in California. With CVSup, FreeBSD users can easily keep their own source trees up to date.
CVSup uses the so-called pull model of updating. Under the pull model, each client asks the server for updates, if and when they are wanted. The server waits passively for update requests from its clients. Thus all updates are instigated by the client. The server never sends unsolicited updates. Users must either run the CVSup client manually to get an update, or they must set up a cron job to run it automatically on a regular basis.
The term CVSup, capitalized just so, refers to the entire software package. Its main components are the client cvsup which runs on each user's machine, and the server cvsupd which runs at each of the FreeBSD mirror sites.
As you read the FreeBSD documentation and mailing lists, you may see references to sup. Sup was the predecessor of CVSup, and it served a similar purpose. CVSup is used much in the same way as sup and, in fact, uses configuration files which are backward-compatible with sup's. Sup is no longer used in the FreeBSD project, because CVSup is both faster and more flexible.
Note: The csup utility is a rewrite of the CVSup software in C. Its biggest advantage is, that it is faster and does not depend on the Modula-3 language, thus you do not need to install it as a requirement. Moreover you can use it out-of-the-box, since it is included in the base system. If you decided to use csup, just skip the steps on the installation of CVSup and substitute the references of CVSup with csup while following the remainder of this article.
The easiest way to install CVSup is to use the precompiled net/cvsup package from the FreeBSD packages collection. If you prefer to build CVSup from source, you can use the net/cvsup port instead. But be forewarned: the net/cvsup port depends on the Modula-3 system, which takes a substantial amount of time and disk space to download and build.
Note: If you are going to be using CVSup on a machine which will not have Xorg installed, such as a server, be sure to use the port which does not include the CVSup GUI, net/cvsup-without-gui.
CVSup's operation is controlled by a configuration file called the supfile. There are some sample supfiles in the directory /usr/share/examples/cvsup/.
The information in a supfile answers the following questions for CVSup:
In the following sections, we will construct a typical supfile by answering each of these questions in turn. First, we describe the overall structure of a supfile.
A supfile is a text file. Comments begin with # and extend to the end of the line. Lines that are blank and lines that contain only comments are ignored.
Each remaining line describes a set of files that the user wishes to receive. The line begins with the name of a “collection”, a logical grouping of files defined by the server. The name of the collection tells the server which files you want. After the collection name come zero or more fields, separated by white space. These fields answer the questions listed above. There are two types of fields: flag fields and value fields. A flag field consists of a keyword standing alone, e.g., delete or compress. A value field also begins with a keyword, but the keyword is followed without intervening white space by = and a second word. For example, release=cvs is a value field.
A supfile typically specifies more than one collection to receive. One way to structure a supfile is to specify all of the relevant fields explicitly for each collection. However, that tends to make the supfile lines quite long, and it is inconvenient because most fields are the same for all of the collections in a supfile. CVSup provides a defaulting mechanism to avoid these problems. Lines beginning with the special pseudo-collection name *default can be used to set flags and values which will be used as defaults for the subsequent collections in the supfile. A default value can be overridden for an individual collection, by specifying a different value with the collection itself. Defaults can also be changed or augmented in mid-supfile by additional *default lines.
With this background, we will now proceed to construct a supfile for receiving and updating the main source tree of FreeBSD-CURRENT.
Which files do you want to receive?
The files available via CVSup are organized into named groups called “collections”. The collections that are available are described in the following section. In this example, we wish to receive the entire main source tree for the FreeBSD system. There is a single large collection src-all which will give us all of that. As a first step toward constructing our supfile, we simply list the collections, one per line (in this case, only one line):
src-all
Which version(s) of them do you want?
With CVSup, you can receive virtually any version of
the sources that ever existed. That is possible because the cvsupd server works directly from the CVS repository, which
contains all of the versions. You specify which one of them you want using
the tag= and date=
value
fields.
Warning: Be very careful to specify any tag= fields correctly. Some tags are valid only for certain collections of files. If you specify an incorrect or misspelled tag, CVSup will delete files which you probably do not want deleted. In particular, use only tag=. for the ports-* collections.
The tag= field names a symbolic tag in the repository. There are two kinds of tags, revision tags and branch tags. A revision tag refers to a specific revision. Its meaning stays the same from day to day. A branch tag, on the other hand, refers to the latest revision on a given line of development, at any given time. Because a branch tag does not refer to a specific revision, it may mean something different tomorrow than it means today.
Section A.9 contains branch tags that users might be interested in. When specifying a tag in CVSup's configuration file, it must be preceded with tag= (RELENG_8 will become tag=RELENG_8). Keep in mind that only the tag=. is relevant for the Ports Collection.
Warning: Be very careful to type the tag name exactly as shown. CVSup cannot distinguish between valid and invalid tags. If you misspell the tag, CVSup will behave as though you had specified a valid tag which happens to refer to no files at all. It will delete your existing sources in that case.
When you specify a branch tag, you normally receive the latest versions of the
files on that line of development. If you wish to receive some past version,
you can do so by specifying a date with the date=
value
field. The
cvsup(1)
manual page explains how to do that.
For our example, we wish to receive FreeBSD-CURRENT. We add this line at the beginning of our supfile:
*default tag=.
There is an important special case that comes into play if you specify neither a tag= field nor a date= field. In that case, you receive the actual RCS files directly from the server's CVS repository, rather than receiving a particular version. Developers generally prefer this mode of operation. By maintaining a copy of the repository itself on their systems, they gain the ability to browse the revision histories and examine past versions of files. This gain is achieved at a large cost in terms of disk space, however.
Where do you want to get them from?
We use the host= field to tell cvsup where to obtain its updates. Any of the CVSup mirror sites will do, though you should try to select one that is close to you in cyberspace. In this example we will use a fictional FreeBSD distribution site, cvsup99.FreeBSD.org:
*default host=cvsup99.FreeBSD.org
You will need to change the host to one that actually exists before running CVSup. On any particular run of cvsup, you can override the host setting on the command line,
with -h hostname
.
Where do you want to put them on your own machine?
The prefix= field tells cvsup where to put the files it receives. In this example, we will put the source files directly into our main source tree, /usr/src. The src directory is already implicit in the collections we have chosen to receive, so this is the correct specification:
*default prefix=/usr
Where should cvsup maintain its status files?
The CVSup client maintains certain status files in what is called the “base” directory. These files help CVSup to work more efficiently, by keeping track of which updates you have already received. We will use the standard base directory, /var/db:
*default base=/var/db
If your base directory does not already exist, now would be a good time to create it. The cvsup client will refuse to run if the base directory does not exist.
Miscellaneous supfile settings:
There is one more line of boiler plate that normally needs to be present in the supfile:
*default release=cvs delete use-rel-suffix compress
release=cvs indicates that the server should get its information out of the main FreeBSD CVS repository. This is virtually always the case, but there are other possibilities which are beyond the scope of this discussion.
delete gives CVSup permission to delete files. You should always specify this, so that CVSup can keep your source tree fully up-to-date. CVSup is careful to delete only those files for which it is responsible. Any extra files you happen to have will be left strictly alone.
use-rel-suffix is ... arcane. If you really want to know about it, see the cvsup(1) manual page. Otherwise, just specify it and do not worry about it.
compress enables the use of gzip-style compression on the communication channel. If your network link is T1 speed or faster, you probably should not use compression. Otherwise, it helps substantially.
Putting it all together:
Here is the entire supfile for our example:
*default tag=. *default host=cvsup99.FreeBSD.org *default prefix=/usr *default base=/var/db *default release=cvs delete use-rel-suffix compress src-all
As mentioned above, CVSup uses a pull method. Basically, this means that you connect to the CVSup server, and it says, “Here is what you can download from me...”, and your client responds “OK, I will take this, this, this, and this.” In the default configuration, the CVSup client will take every file associated with the collection and tag you chose in the configuration file. However, this is not always what you want, especially if you are synching the doc, ports, or www trees — most people cannot read four or five languages, and therefore they do not need to download the language-specific files. If you are CVSuping the Ports Collection, you can get around this by specifying each collection individually (e.g., ports-astrology, ports-biology, etc instead of simply saying ports-all). However, since the doc and www trees do not have language-specific collections, you must use one of CVSup's many nifty features: the refuse file.
The refuse file essentially tells CVSup that it should not take every single file from a collection; in other words, it tells the client to refuse certain files from the server. The refuse file can be found (or, if you do not yet have one, should be placed) in base/sup/. base is defined in your supfile; our defined base is /var/db, which means that by default the refuse file is /var/db/sup/refuse.
The refuse file has a very simple format; it simply contains the names of files or directories that you do not wish to download. For example, if you cannot speak any languages other than English and some German, and you do not feel the need to read the German translation of documentation, you can put the following in your refuse file:
doc/bn_* doc/da_* doc/de_* doc/el_* doc/es_* doc/fr_* doc/hu_* doc/it_* doc/ja_* doc/mn_* doc/nl_* doc/no_* doc/pl_* doc/pt_* doc/ru_* doc/sr_* doc/tr_* doc/zh_*
and so forth for the other languages (you can find the full list by browsing the FreeBSD CVS repository).
With this very useful feature, those users who are on slow links or pay by the minute for their Internet connection will be able to save valuable time as they will no longer need to download files that they will never use. For more information on refuse files and other neat features of CVSup, please view its manual page.
You are now ready to try an update. The command line for doing this is quite simple:
# cvsup supfile
where supfile is of course the name of the supfile you have just created. Assuming you are running under X11, cvsup will display a GUI window with some buttons to do the usual things. Press the
button, and watch it run.Since you are updating your actual /usr/src tree in this example, you will need to run the program as root so that cvsup has the permissions it needs to update your files. Having just created your configuration file, and having never used this program before, that might understandably make you nervous. There is an easy way to do a trial run without touching your precious files. Just create an empty directory somewhere convenient, and name it as an extra argument on the command line:
# mkdir /var/tmp/dest # cvsup supfile /var/tmp/dest
The directory you specify will be used as the destination directory for all file updates. CVSup will examine your usual files in /usr/src, but it will not modify or delete any of them. Any file updates will instead land in /var/tmp/dest/usr/src. CVSup will also leave its base directory status files untouched when run this way. The new versions of those files will be written into the specified directory. As long as you have read access to /usr/src, you do not even need to be root to perform this kind of trial run.
If you are not running X11 or if you just do not like GUIs, you should add a couple of options to the command line when you run cvsup:
# cvsup -g -L 2 supfile
The -g
tells CVSup not to
use its GUI. This is automatic if you are not running X11, but otherwise you have
to specify it.
The -L 2
tells CVSup to
print out the details of all the file updates it is doing. There are three
levels of verbosity, from -L 0
to -L 2
. The default is 0, which means total silence except for
error messages.
There are plenty of other options available. For a brief list of them, type cvsup -H. For more detailed descriptions, see the manual page.
Once you are satisfied with the way updates are working, you can arrange for regular runs of CVSup using cron(8). Obviously, you should not let CVSup use its GUI when running it from cron(8).
The file collections available via CVSup are organized hierarchically. There are a few large collections, and they are divided into smaller sub-collections. Receiving a large collection is equivalent to receiving each of its sub-collections. The hierarchical relationships among collections are reflected by the use of indentation in the list below.
The most commonly used collections are src-all, and ports-all. The other collections are used only by small groups of people for specialized purposes, and some mirror sites may not carry all of them.
The main FreeBSD CVS repository, including the cryptography code.
Files related to the distribution and mirroring of FreeBSD.
The FreeBSD Ports Collection.
Important: If you do not want to update the whole of ports-all (the whole ports tree), but use one of the subcollections listed below, make sure that you always update the ports-base subcollection! Whenever something changes in the ports build infrastructure represented by ports-base, it is virtually certain that those changes will be used by “real” ports real soon. Thus, if you only update the “real” ports and they use some of the new features, there is a very high chance that their build will fail with some mysterious error message. The very first thing to do in this case is to make sure that your ports-base subcollection is up to date.
Important: If you are going to be building your own local copy of ports/INDEX, you must accept ports-all (the whole ports tree). Building ports/INDEX with a partial tree is not supported. See the FAQ.
Software to help disabled users.
Arabic language support.
Archiving tools.
Astronomical ports.
Sound support.
The Ports Collection build infrastructure - various files located in the Mk/ and Tools/ subdirectories of /usr/ports.
Note: Please see the important warning above: you should always update this subcollection, whenever you update any part of the FreeBSD Ports Collection!
Benchmarks.
Biology.
Computer aided design tools.
Chinese language support.
Communication software.
character code converters.
Databases.
Things that used to be on the desktop before computers were invented.
Development utilities.
DNS related software.
Editors.
Emulators for other operating systems.
Monetary, financial and related applications.
FTP client and server utilities.
Games.
German language support.
Graphics utilities.
Hebrew language support.
Hungarian language support.
Internet Relay Chat utilities.
Japanese language support.
Java utilities.
Korean language support.
Programming languages.
Mail software.
Numerical computation software.
Miscellaneous utilities.
Multimedia software.
Networking software.
Instant messaging software.
Network management software.
Peer to peer networking.
USENET news software.
Software support for Palm™ series.
Polish language support.
Utilities to manage ports and packages.
Portuguese language support.
Printing software.
Russian language support.
Science.
Security utilities.
Command line shells.
System utilities.
text processing utilities (does not include desktop publishing).
Ukrainian language support.
Vietnamese language support.
Software related to the World Wide Web.
Ports to support the X window system.
X11 clocks.
X11 drivers.
X11 file managers.
X11 fonts and font utilities.
X11 toolkits.
X11 servers.
X11 themes.
X11 window managers.
Sources for the FreeBSD projects repository.
The main FreeBSD sources, including the cryptography code.
Miscellaneous files at the top of /usr/src.
User utilities that may be needed in single-user mode (/usr/src/bin).
Utilities and libraries covered by the CDDL license (/usr/src/cddl).
Utilities and libraries from outside the FreeBSD project, used relatively unmodified (/usr/src/contrib).
Cryptography utilities and libraries from outside the FreeBSD project, used relatively unmodified (/usr/src/crypto).
Kerberos and DES (/usr/src/eBones). Not used in current releases of FreeBSD.
System configuration files (/usr/src/etc).
Games (/usr/src/games).
Utilities covered by the GNU Public License (/usr/src/gnu).
Header files (/usr/src/include).
Kerberos5 security package (/usr/src/kerberos5).
KerberosIV security package (/usr/src/kerberosIV).
Libraries (/usr/src/lib).
System programs normally executed by other programs (/usr/src/libexec).
Files required to produce a FreeBSD release (/usr/src/release).
Statically linked programs for emergency recovery; see rescue(8) (/usr/src/rescue).
System utilities for single-user mode (/usr/src/sbin).
Cryptographic libraries and commands (/usr/src/secure).
Files that can be shared across multiple systems (/usr/src/share).
The kernel (/usr/src/sys).
Kernel cryptography code (/usr/src/sys/crypto).
Various tools for the maintenance of FreeBSD (/usr/src/tools).
User utilities (/usr/src/usr.bin).
System utilities (/usr/src/usr.sbin).
The CVSup server's own configuration files. Used by CVSup mirror sites.
The GNATS bug-tracking database.
FreeBSD mailing list archive.
The pre-processed FreeBSD WWW site files (not the source files). Used by WWW mirror sites.
For the CVSup FAQ and other information about CVSup, see The CVSup Home Page.
Most FreeBSD-related discussion of CVSup takes place on the FreeBSD technical discussions mailing list. New versions of the software are announced there, as well as on the FreeBSD announcements mailing list.
For questions or bug reports about CVSup take a look at the CVSup FAQ.
CVSup servers for FreeBSD are running at the following sites:
Central Servers, Primary Mirror Sites, Armenia, Australia, Austria, Brazil, Canada, China, Costa Rica, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Israel, Italy, Japan, Korea, Kuwait, Kyrgyzstan, Latvia, Lithuania, Netherlands, New Zealand, Norway, Philippines, Poland, Portugal, Romania, Russia, San Marino, Slovak Republic, Slovenia, South Africa, Spain, Sweden, Switzerland, Taiwan, Thailand, Turkey, Ukraine, United Kingdom, USA.
(as of UTC)
cvsup.FreeBSD.org
cvsup1.FreeBSD.org
cvsup2.FreeBSD.org
cvsup3.FreeBSD.org
cvsup4.FreeBSD.org
cvsup5.FreeBSD.org
cvsup6.FreeBSD.org
cvsup7.FreeBSD.org
cvsup8.FreeBSD.org
cvsup9.FreeBSD.org
cvsup10.FreeBSD.org
cvsup11.FreeBSD.org
cvsup12.FreeBSD.org
cvsup13.FreeBSD.org
cvsup14.FreeBSD.org
cvsup15.FreeBSD.org
cvsup16.FreeBSD.org
cvsup18.FreeBSD.org
cvsup1.am.FreeBSD.org
cvsup.au.FreeBSD.org
cvsup.at.FreeBSD.org
cvsup.br.FreeBSD.org
cvsup2.br.FreeBSD.org
cvsup3.br.FreeBSD.org
cvsup4.br.FreeBSD.org
cvsup5.br.FreeBSD.org
cvsup1.ca.FreeBSD.org
cvsup.cn.FreeBSD.org
cvsup2.cn.FreeBSD.org
cvsup1.cr.FreeBSD.org
cvsup.cz.FreeBSD.org
cvsup.dk.FreeBSD.org
cvsup2.dk.FreeBSD.org
cvsup.ee.FreeBSD.org
cvsup.fi.FreeBSD.org
cvsup2.fi.FreeBSD.org
cvsup.fr.FreeBSD.org
cvsup1.fr.FreeBSD.org
cvsup2.fr.FreeBSD.org
cvsup3.fr.FreeBSD.org
cvsup4.fr.FreeBSD.org
cvsup5.fr.FreeBSD.org
cvsup8.fr.FreeBSD.org
cvsup.de.FreeBSD.org
cvsup2.de.FreeBSD.org
cvsup3.de.FreeBSD.org
cvsup4.de.FreeBSD.org
cvsup5.de.FreeBSD.org
cvsup6.de.FreeBSD.org
cvsup7.de.FreeBSD.org
cvsup8.de.FreeBSD.org
cvsup.gr.FreeBSD.org
cvsup2.gr.FreeBSD.org
cvsup.hu.FreeBSD.org
cvsup.is.FreeBSD.org
cvsup.ie.FreeBSD.org
cvsup2.ie.FreeBSD.org
cvsup.il.FreeBSD.org
cvsup.it.FreeBSD.org
cvsup.jp.FreeBSD.org
cvsup2.jp.FreeBSD.org
cvsup3.jp.FreeBSD.org
cvsup4.jp.FreeBSD.org
cvsup5.jp.FreeBSD.org
cvsup6.jp.FreeBSD.org
cvsup.kr.FreeBSD.org
cvsup2.kr.FreeBSD.org
cvsup3.kr.FreeBSD.org
cvsup1.kw.FreeBSD.org
cvsup.kg.FreeBSD.org
cvsup.lv.FreeBSD.org
cvsup2.lv.FreeBSD.org
cvsup.lt.FreeBSD.org
cvsup2.lt.FreeBSD.org
cvsup3.lt.FreeBSD.org
cvsup.nl.FreeBSD.org
cvsup2.nl.FreeBSD.org
cvsup3.nl.FreeBSD.org
cvsup.nz.FreeBSD.org
cvsup.no.FreeBSD.org
cvsup1.ph.FreeBSD.org
cvsup.pl.FreeBSD.org
cvsup2.pl.FreeBSD.org
cvsup3.pl.FreeBSD.org
cvsup.pt.FreeBSD.org
cvsup2.pt.FreeBSD.org
cvsup3.pt.FreeBSD.org
cvsup.ro.FreeBSD.org
cvsup1.ro.FreeBSD.org
cvsup2.ro.FreeBSD.org
cvsup3.ro.FreeBSD.org
cvsup.ru.FreeBSD.org
cvsup2.ru.FreeBSD.org
cvsup3.ru.FreeBSD.org
cvsup4.ru.FreeBSD.org
cvsup5.ru.FreeBSD.org
cvsup6.ru.FreeBSD.org
cvsup7.ru.FreeBSD.org
cvsup.sm.FreeBSD.org
cvsup.sk.FreeBSD.org
cvsup.si.FreeBSD.org
cvsup2.si.FreeBSD.org
cvsup.za.FreeBSD.org
cvsup2.za.FreeBSD.org
cvsup.es.FreeBSD.org
cvsup2.es.FreeBSD.org
cvsup3.es.FreeBSD.org
cvsup.se.FreeBSD.org
cvsup2.se.FreeBSD.org
cvsup.ch.FreeBSD.org
cvsup.tw.FreeBSD.org
cvsup3.tw.FreeBSD.org
cvsup4.tw.FreeBSD.org
cvsup5.tw.FreeBSD.org
cvsup6.tw.FreeBSD.org
cvsup7.tw.FreeBSD.org
cvsup8.tw.FreeBSD.org
cvsup9.tw.FreeBSD.org
cvsup10.tw.FreeBSD.org
cvsup11.tw.FreeBSD.org
cvsup12.tw.FreeBSD.org
cvsup13.tw.FreeBSD.org
cvsup14.tw.FreeBSD.org
cvsup.th.FreeBSD.org
cvsup.tr.FreeBSD.org
cvsup2.tr.FreeBSD.org
cvsup3.ua.FreeBSD.org
cvsup5.ua.FreeBSD.org
cvsup6.ua.FreeBSD.org
cvsup.uk.FreeBSD.org
cvsup2.uk.FreeBSD.org
cvsup3.uk.FreeBSD.org
cvsup4.uk.FreeBSD.org
cvsup1.us.FreeBSD.org
cvsup2.us.FreeBSD.org
cvsup3.us.FreeBSD.org
cvsup4.us.FreeBSD.org
cvsup5.us.FreeBSD.org
cvsup6.us.FreeBSD.org
cvsup7.us.FreeBSD.org
cvsup8.us.FreeBSD.org
cvsup9.us.FreeBSD.org
cvsup10.us.FreeBSD.org
cvsup11.us.FreeBSD.org
cvsup12.us.FreeBSD.org
cvsup13.us.FreeBSD.org
cvsup14.us.FreeBSD.org
cvsup15.us.FreeBSD.org
cvsup16.us.FreeBSD.org
cvsup18.us.FreeBSD.org
Warning: CVS has been deprecated by the project, and its use is not recommended. Subversion should be used instead.
When obtaining or updating sources using cvs or CVSup, a revision tag must be specified. A revision tag refers to either a particular line of FreeBSD development, or a specific point in time. The first type are called “branch tags”, and the second type are called “release tags”.
All of these, with the exception of HEAD (which is always a valid tag), only apply to the src/ tree. The ports/, doc/, and www/ trees are not branched.
Symbolic name for the main line, or FreeBSD-CURRENT. Also the default when no revision is specified.
In CVSup, this tag is represented by a . (not punctuation, but a literal . character).
Note: In CVS, this is the default when no revision tag is specified. It is usually not a good idea to checkout or update to CURRENT sources on a STABLE machine, unless that is your intent.
The line of development for FreeBSD-9.X, also known as FreeBSD 9-STABLE
The release branch for FreeBSD-9.0, used only for security advisories and other critical fixes.
The line of development for FreeBSD-8.X, also known as FreeBSD 8-STABLE
The release branch for FreeBSD-8.3, used only for security advisories and other critical fixes.
The release branch for FreeBSD-8.2, used only for security advisories and other critical fixes.
The release branch for FreeBSD-8.1, used only for security advisories and other critical fixes.
The release branch for FreeBSD-8.0, used only for security advisories and other critical fixes.
The line of development for FreeBSD-7.X, also known as FreeBSD 7-STABLE
The release branch for FreeBSD-7.4, used only for security advisories and other critical fixes.
The release branch for FreeBSD-7.3, used only for security advisories and other critical fixes.
The release branch for FreeBSD-7.2, used only for security advisories and other critical fixes.
The release branch for FreeBSD-7.1, used only for security advisories and other critical fixes.
The release branch for FreeBSD-7.0, used only for security advisories and other critical fixes.
The line of development for FreeBSD-6.X, also known as FreeBSD 6-STABLE
The release branch for FreeBSD-6.4, used only for security advisories and other critical fixes.
The release branch for FreeBSD-6.3, used only for security advisories and other critical fixes.
The release branch for FreeBSD-6.2, used only for security advisories and other critical fixes.
The release branch for FreeBSD-6.1, used only for security advisories and other critical fixes.
The release branch for FreeBSD-6.0, used only for security advisories and other critical fixes.
The line of development for FreeBSD-5.X, also known as FreeBSD 5-STABLE.
The release branch for FreeBSD-5.5, used only for security advisories and other critical fixes.
The release branch for FreeBSD-5.4, used only for security advisories and other critical fixes.
The release branch for FreeBSD-5.3, used only for security advisories and other critical fixes.
The release branch for FreeBSD-5.2 and FreeBSD-5.2.1, used only for security advisories and other critical fixes.
The release branch for FreeBSD-5.1, used only for security advisories and other critical fixes.
The release branch for FreeBSD-5.0, used only for security advisories and other critical fixes.
The line of development for FreeBSD-4.X, also known as FreeBSD 4-STABLE.
The release branch for FreeBSD-4.11, used only for security advisories and other critical fixes.
The release branch for FreeBSD-4.10, used only for security advisories and other critical fixes.
The release branch for FreeBSD-4.9, used only for security advisories and other critical fixes.
The release branch for FreeBSD-4.8, used only for security advisories and other critical fixes.
The release branch for FreeBSD-4.7, used only for security advisories and other critical fixes.
The release branch for FreeBSD-4.6 and FreeBSD-4.6.2, used only for security advisories and other critical fixes.
The release branch for FreeBSD-4.5, used only for security advisories and other critical fixes.
The release branch for FreeBSD-4.4, used only for security advisories and other critical fixes.
The release branch for FreeBSD-4.3, used only for security advisories and other critical fixes.
The line of development for FreeBSD-3.X, also known as 3.X-STABLE.
The line of development for FreeBSD-2.2.X, also known as 2.2-STABLE. This branch is mostly obsolete.
These tags refer to a specific point in time when a particular version of FreeBSD was released. The release engineering process is documented in more detail by the Release Engineering Information and Release Process documents. The src tree uses tag names that start with RELENG_ tags. The ports and doc trees use tags whose names begin with RELEASE tags. Finally, the www tree is not tagged with any special name for releases.
FreeBSD 9.0
FreeBSD 8.3
FreeBSD 8.2
FreeBSD 8.1
FreeBSD 8.0
FreeBSD 7.4
FreeBSD 7.3
FreeBSD 7.2
FreeBSD 7.1
FreeBSD 7.0
FreeBSD 6.4
FreeBSD 6.3
FreeBSD 6.2
FreeBSD 6.1
FreeBSD 6.0
FreeBSD 5.5
FreeBSD 5.4
FreeBSD 4.11
FreeBSD 5.3
FreeBSD 4.10
FreeBSD 5.2.1
FreeBSD 5.2
FreeBSD 4.9
FreeBSD 5.1
FreeBSD 4.8
FreeBSD 5.0
FreeBSD 4.7
FreeBSD 4.6.2
FreeBSD 4.6.1
FreeBSD 4.6
FreeBSD 4.5
FreeBSD 4.4
FreeBSD 4.3
FreeBSD 4.2
FreeBSD 4.1.1
FreeBSD 4.1
FreeBSD 4.0
FreeBSD-3.5
FreeBSD-3.4
FreeBSD-3.3
FreeBSD-3.2
FreeBSD-3.1
FreeBSD-3.0
FreeBSD-2.2.8
FreeBSD-2.2.7
FreeBSD-2.2.6
FreeBSD-2.2.5
FreeBSD-2.2.2
FreeBSD-2.2.1
FreeBSD-2.2.0
The following sites make FreeBSD available through the rsync protocol. The rsync utility works in much the same way as the rcp(1) command, but has more options and uses the rsync remote-update protocol which transfers only the differences between two sets of files, thus greatly speeding up the synchronization over the network. This is most useful if you are a mirror site for the FreeBSD FTP server, or the CVS repository. The rsync suite is available for many operating systems, on FreeBSD, see the net/rsync port or use the package.
rsync://ftp.cz.FreeBSD.org/
Available collections:
ftp: A partial mirror of the FreeBSD FTP server.
FreeBSD: A full mirror of the FreeBSD FTP server.
rsync://ftp.nl.FreeBSD.org/
Available collections:
FreeBSD: A full mirror of the FreeBSD FTP server.
rsync://ftp.mtu.ru/
Available collections:
FreeBSD: A full mirror of the FreeBSD FTP server.
FreeBSD-gnats: The GNATS bug-tracking database.
FreeBSD-Archive: The mirror of FreeBSD Archive FTP server.
rsync://ftp4.se.freebsd.org/
Available collections:
FreeBSD: A full mirror of the FreeBSD FTP server.
rsync://ftp.tw.FreeBSD.org/
rsync://ftp2.tw.FreeBSD.org/
rsync://ftp6.tw.FreeBSD.org/
Available collections:
FreeBSD: A full mirror of the FreeBSD FTP server.
rsync://rsync.mirrorservice.org/
Available collections:
ftp.freebsd.org: A full mirror of the FreeBSD FTP server.
rsync://ftp-master.FreeBSD.org/
This server may only be used by FreeBSD primary mirror sites.
Available collections:
FreeBSD: The master archive of the FreeBSD FTP server.
acl: The FreeBSD master ACL list.
rsync://ftp13.FreeBSD.org/
Available collections:
FreeBSD: A full mirror of the FreeBSD FTP server.
While the manual pages provide the definitive reference for individual pieces of the FreeBSD operating system, they are notorious for not illustrating how to put the pieces together to make the whole operating system run smoothly. For this, there is no substitute for a good book on UNIX system administration and a good users' manual.
International books & Magazines:
Using FreeBSD (in Traditional Chinese), published by Drmaster, 1997. ISBN 9-578-39435-7.
FreeBSD Unleashed (Simplified Chinese translation), published by China Machine Press. ISBN 7-111-10201-0.
FreeBSD From Scratch Second Edition (in Simplified Chinese), published by China Machine Press. ISBN 7-111-10286-X.
FreeBSD Handbook Second Edition (Simplified Chinese translation), published by Posts & Telecom Press. ISBN 7-115-10541-3.
FreeBSD & Windows (in Simplified Chinese), published by China Railway Publishing House. ISBN 7-113-03845-X
FreeBSD Internet Services HOWTO (in Simplified Chinese), published by China Railway Publishing House. ISBN 7-113-03423-3
FreeBSD (in Japanese), published by CUTT. ISBN 4-906391-22-2 C3055 P2400E.
Complete Introduction to FreeBSD (in Japanese), published by Shoeisha Co., Ltd. ISBN 4-88135-473-6 P3600E.
Personal UNIX Starter Kit FreeBSD (in Japanese), published by ASCII. ISBN 4-7561-1733-3 P3000E.
FreeBSD Handbook (Japanese translation), published by ASCII. ISBN 4-7561-1580-2 P3800E.
FreeBSD mit Methode (in German), published by Computer und Literatur Verlag/Vertrieb Hanser, 1998. ISBN 3-932311-31-0.
FreeBSD de Luxe (in German), published by Verlag Modere Industrie, 2003. ISBN 3-8266-1343-0.
FreeBSD Install and Utilization Manual (in Japanese), published by Mainichi Communications Inc., 1998. ISBN 4-8399-0112-0.
Onno W Purbo, Dodi Maryanto, Syahrial Hubbany, Widjil Widodo Building Internet Server with FreeBSD (in Indonesia Language), published by Elex Media Komputindo.
Absolute BSD: The Ultimate Guide to FreeBSD (Traditional Chinese translation), published by GrandTech Press, 2003. ISBN 986-7944-92-5.
The FreeBSD 6.0 Book (in Traditional Chinese), published by Drmaster, 2006. ISBN 9-575-27878-X.
English language books & Magazines:
Absolute FreeBSD, 2nd Edition: The Complete Guide to FreeBSD, published by No Starch Press, 2007. ISBN: 978-1-59327-151-0
The Complete FreeBSD, published by O'Reilly, 2003. ISBN: 0596005164
The FreeBSD Corporate Networker's Guide, published by Addison-Wesley, 2000. ISBN: 0201704811
FreeBSD: An Open-Source Operating System for Your Personal Computer, published by The Bit Tree Press, 2001. ISBN: 0971204500
Teach Yourself FreeBSD in 24 Hours, published by Sams, 2002. ISBN: 0672324245
FreeBSD 6 Unleashed, published by Sams, 2006. ISBN: 0672328755
FreeBSD: The Complete Reference, published by McGrawHill, 2003. ISBN: 0072224096
BSD Magazine, published by Software Press Sp. z o.o. SK. ISSN 1898-9144
Ohio State University has written a UNIX Introductory Course which is available online in HTML and PostScript format.
An Italian translation of this document is available as part of the FreeBSD Italian Documentation Project.
Jpman Project, Japan FreeBSD Users Group. FreeBSD User's Reference Manual (Japanese translation). Mainichi Communications Inc., 1998. ISBN4-8399-0088-4 P3800E.
Edinburgh University has written an Online Guide for newcomers to the UNIX environment.
Jpman Project, Japan FreeBSD Users Group. FreeBSD System Administrator's Manual (Japanese translation). Mainichi Communications Inc., 1998. ISBN4-8399-0109-0 P3300E.
Dreyfus, Emmanuel. Cahiers de l'Admin: BSD 2nd Ed. (in French), Eyrolles, 2004. ISBN 2-212-11463-X
Computer Systems Research Group, UC Berkeley. 4.4BSD Programmer's Reference Manual. O'Reilly & Associates, Inc., 1994. ISBN 1-56592-078-3
Computer Systems Research Group, UC Berkeley. 4.4BSD Programmer's Supplementary Documents. O'Reilly & Associates, Inc., 1994. ISBN 1-56592-079-1
Harbison, Samuel P. and Steele, Guy L. Jr. C: A Reference Manual. 4th ed. Prentice Hall, 1995. ISBN 0-13-326224-3
Kernighan, Brian and Dennis M. Ritchie. The C Programming Language. 2nd Ed. PTR Prentice Hall, 1988. ISBN 0-13-110362-8
Lehey, Greg. Porting UNIX Software. O'Reilly & Associates, Inc., 1995. ISBN 1-56592-126-7
Plauger, P. J. The Standard C Library. Prentice Hall, 1992. ISBN 0-13-131509-9
Spinellis, Diomidis. Code Reading: The Open Source Perspective. Addison-Wesley, 2003. ISBN 0-201-79940-5
Spinellis, Diomidis. Code Quality: The Open Source Perspective. Addison-Wesley, 2006. ISBN 0-321-16607-8
Stevens, W. Richard and Stephen A. Rago. Advanced Programming in the UNIX Environment. 2nd Ed. Reading, Mass. : Addison-Wesley, 2005. ISBN 0-201-43307-9
Stevens, W. Richard. UNIX Network Programming. 2nd Ed, PTR Prentice Hall, 1998. ISBN 0-13-490012-X
Andleigh, Prabhat K. UNIX System Architecture. Prentice-Hall, Inc., 1990. ISBN 0-13-949843-5
Jolitz, William. “Porting UNIX to the 386”. Dr. Dobb's Journal. January 1991-July 1992.
Leffler, Samuel J., Marshall Kirk McKusick, Michael J Karels and John Quarterman The Design and Implementation of the 4.3BSD UNIX Operating System. Reading, Mass. : Addison-Wesley, 1989. ISBN 0-201-06196-1
Leffler, Samuel J., Marshall Kirk McKusick, The Design and Implementation of the 4.3BSD UNIX Operating System: Answer Book. Reading, Mass. : Addison-Wesley, 1991. ISBN 0-201-54629-9
McKusick, Marshall Kirk, Keith Bostic, Michael J Karels, and John Quarterman. The Design and Implementation of the 4.4BSD Operating System. Reading, Mass. : Addison-Wesley, 1996. ISBN 0-201-54979-4
(Chapter 2 of this book is available online as part of the FreeBSD Documentation Project.)
Marshall Kirk McKusick, George V. Neville-Neil The Design and Implementation of the FreeBSD Operating System. Boston, Mass. : Addison-Wesley, 2004. ISBN 0-201-70245-2
Stevens, W. Richard. TCP/IP Illustrated, Volume 1: The Protocols. Reading, Mass. : Addison-Wesley, 1996. ISBN 0-201-63346-9
Schimmel, Curt. Unix Systems for Modern Architectures. Reading, Mass. : Addison-Wesley, 1994. ISBN 0-201-63338-8
Stevens, W. Richard. TCP/IP Illustrated, Volume 3: TCP for Transactions, HTTP, NNTP and the UNIX Domain Protocols. Reading, Mass. : Addison-Wesley, 1996. ISBN 0-201-63495-3
Vahalia, Uresh. UNIX Internals -- The New Frontiers. Prentice Hall, 1996. ISBN 0-13-101908-2
Wright, Gary R. and W. Richard Stevens. TCP/IP Illustrated, Volume 2: The Implementation. Reading, Mass. : Addison-Wesley, 1995. ISBN 0-201-63354-X
Cheswick, William R. and Steven M. Bellovin. Firewalls and Internet Security: Repelling the Wily Hacker. Reading, Mass. : Addison-Wesley, 1995. ISBN 0-201-63357-4
Garfinkel, Simson. PGP Pretty Good Privacy O'Reilly & Associates, Inc., 1995. ISBN 1-56592-098-8
Anderson, Don and Tom Shanley. Pentium Processor System Architecture. 2nd Ed. Reading, Mass. : Addison-Wesley, 1995. ISBN 0-201-40992-5
Ferraro, Richard F. Programmer's Guide to the EGA, VGA, and Super VGA Cards. 3rd ed. Reading, Mass. : Addison-Wesley, 1995. ISBN 0-201-62490-7
Intel Corporation publishes documentation on their CPUs, chipsets and standards on their developer web site, usually as PDF files.
Shanley, Tom. 80486 System Architecture. 3rd ed. Reading, Mass. : Addison-Wesley, 1995. ISBN 0-201-40994-1
Shanley, Tom. ISA System Architecture. 3rd ed. Reading, Mass. : Addison-Wesley, 1995. ISBN 0-201-40996-8
Shanley, Tom. PCI System Architecture. 4th ed. Reading, Mass. : Addison-Wesley, 1999. ISBN 0-201-30974-2
Van Gilluwe, Frank. The Undocumented PC, 2nd Ed. Reading, Mass: Addison-Wesley Pub. Co., 1996. ISBN 0-201-47950-8
Messmer, Hans-Peter. The Indispensable PC Hardware Book, 4th Ed. Reading, Mass : Addison-Wesley Pub. Co., 2002. ISBN 0-201-59616-4
Lion, John Lion's Commentary on UNIX, 6th Ed. With Source Code. ITP Media Group, 1996. ISBN 1573980137
Raymond, Eric S. The New Hacker's Dictionary, 3rd edition. MIT Press, 1996. ISBN 0-262-68092-0. Also known as the Jargon File
Salus, Peter H. A quarter century of UNIX. Addison-Wesley Publishing Company, Inc., 1994. ISBN 0-201-54777-5
Simon Garfinkel, Daniel Weise, Steven Strassmann. The UNIX-HATERS Handbook. IDG Books Worldwide, Inc., 1994. ISBN 1-56884-203-1. Out of print, but available online.
Don Libes, Sandy Ressler Life with UNIX — special edition. Prentice-Hall, Inc., 1989. ISBN 0-13-536657-7
The BSD family tree. http://www.FreeBSD.org/cgi/cvsweb.cgi/src/share/misc/bsd-family-tree or /usr/share/misc/bsd-family-tree on a FreeBSD machine.
Networked Computer Science Technical Reports Library. http://www.ncstrl.org/
Old BSD releases from the Computer Systems Research group (CSRG). http://www.mckusick.com/csrg/: The 4CD set covers all BSD versions from 1BSD to 4.4BSD and 4.4BSD-Lite2 (but not 2.11BSD, unfortunately). The last disk also holds the final sources plus the SCCS files.
The C/C++ Users Journal. R&D Publications Inc. ISSN 1075-2838
Sys Admin — The Journal for UNIX System Administrators Miller Freeman, Inc., ISSN 1061-2688
freeX — Das Magazin für Linux - BSD - UNIX (in German) Computer- und Literaturverlag GmbH, ISSN 1436-7033
The rapid pace of FreeBSD progress makes print media impractical as a means of following the latest developments. Electronic resources are the best, if not often the only, way to stay informed of the latest advances. Since FreeBSD is a volunteer effort, the user community itself also generally serves as a “technical support department” of sorts, with electronic mail, web forums, and USENET news being the most effective way of reaching that community.
The most important points of contact with the FreeBSD user community are outlined below. If you are aware of other resources not mentioned here, please send them to the FreeBSD documentation project mailing list so that they may also be included.
The mailing lists are the most direct way of addressing questions or opening a technical discussion to a concentrated FreeBSD audience. There are a wide variety of lists on a number of different FreeBSD topics. Addressing your questions to the most appropriate mailing list will invariably assure a faster and more accurate response.
The charters for the various lists are given at the bottom of this document. Please read the charter before joining or sending mail to any list. Most of our list subscribers now receive many hundreds of FreeBSD related messages every day, and by setting down charters and rules for proper use we are striving to keep the signal-to-noise ratio of the lists high. To do less would see the mailing lists ultimately fail as an effective communications medium for the project.
Note: If you wish to test your ability to send to FreeBSD lists, send a test message to freebsd-test. Please do not send test messages to any other list.
When in doubt about what list to post a question to, see How to get best results from the FreeBSD-questions mailing list.
Before posting to any list, please learn about how to best use the mailing lists, such as how to help avoid frequently-repeated discussions, by reading the Mailing List Frequently Asked Questions (FAQ) document.
Archives are kept for all of the mailing lists and can be searched using the FreeBSD World Wide Web server. The keyword searchable archive offers an excellent way of finding answers to frequently asked questions and should be consulted before posting a question. Note that this also means that messages sent to FreeBSD mailing lists are archived in perpetuity. When protecting privacy is a concern, consider using a disposable secondary email address and posting only public information.
General lists: The following are general lists which anyone is free (and encouraged) to join:
List | Purpose |
---|---|
freebsd-advocacy | FreeBSD Evangelism |
freebsd-announce | Important events and project milestones |
freebsd-arch | Architecture and design discussions |
freebsd-bugbusters | Discussions pertaining to the maintenance of the FreeBSD problem report database and related tools |
freebsd-bugs | Bug reports |
freebsd-chat | Non-technical items related to the FreeBSD community |
freebsd-chromium | FreeBSD-specific Chromium issues |
freebsd-current | Discussion concerning the use of FreeBSD-CURRENT |
freebsd-isp | Issues for Internet Service Providers using FreeBSD |
freebsd-jobs | FreeBSD employment and consulting opportunities |
freebsd-questions | User questions and technical support |
freebsd-security-notifications | Security notifications |
freebsd-stable | Discussion concerning the use of FreeBSD-STABLE |
freebsd-test | Where to send your test messages instead of one of the actual lists |
Technical lists: The following lists are for technical discussion. You should read the charter for each list carefully before joining or sending mail to one as there are firm guidelines for their use and content.
List | Purpose |
---|---|
freebsd-acpi | ACPI and power management development |
freebsd-afs | Porting AFS to FreeBSD |
freebsd-aic7xxx | Developing drivers for the Adaptec AIC 7xxx |
freebsd-amd64 | Porting FreeBSD to AMD64 systems |
freebsd-apache | Discussion about Apache related ports |
freebsd-arm | Porting FreeBSD to ARM® processors |
freebsd-atm | Using ATM networking with FreeBSD |
freebsd-bluetooth | Using Bluetooth technology in FreeBSD |
freebsd-cluster | Using FreeBSD in a clustered environment |
freebsd-cvsweb | CVSweb maintenance |
freebsd-database | Discussing database use and development under FreeBSD |
freebsd-desktop | Using and improving FreeBSD on the desktop |
freebsd-doc | Creating FreeBSD related documents |
freebsd-drivers | Writing device drivers for FreeBSD |
freebsd-eclipse | FreeBSD users of Eclipse IDE, tools, rich client applications and ports. |
freebsd-embedded | Using FreeBSD in embedded applications |
freebsd-eol | Peer support of FreeBSD-related software that is no longer supported by the FreeBSD project. |
freebsd-emulation | Emulation of other systems such as Linux/MS-DOS/Windows |
freebsd-firewire | FreeBSD FireWire (iLink, IEEE 1394) technical discussion |
freebsd-fs | File systems |
freebsd-gecko | Gecko Rendering Engine issues |
freebsd-geom | GEOM-specific discussions and implementations |
freebsd-gnome | Porting GNOME and GNOME applications |
freebsd-hackers | General technical discussion |
freebsd-hardware | General discussion of hardware for running FreeBSD |
freebsd-i18n | FreeBSD Internationalization |
freebsd-ia32 | FreeBSD on the IA-32 (Intel x86) platform |
freebsd-ia64 | Porting FreeBSD to Intel's upcoming IA64 systems |
freebsd-infiniband | Infiniband on FreeBSD |
freebsd-ipfw | Technical discussion concerning the redesign of the IP firewall code |
freebsd-isdn | ISDN developers |
freebsd-jail | Discussion about the jail(8) facility |
freebsd-java | Java developers and people porting JDKs to FreeBSD |
freebsd-kde | Porting KDE and KDE applications |
freebsd-lfs | Porting LFS to FreeBSD |
freebsd-mips | Porting FreeBSD to MIPS® |
freebsd-mobile | Discussions about mobile computing |
freebsd-mono | Mono and C# applications on FreeBSD |
freebsd-mozilla | Porting Mozilla to FreeBSD |
freebsd-multimedia | Multimedia applications |
freebsd-new-bus | Technical discussions about bus architecture |
freebsd-net | Networking discussion and TCP/IP source code |
freebsd-numerics | Discussions of high quality implementation of libm functions |
freebsd-office | Office applications on FreeBSD |
freebsd-performance | Performance tuning questions for high performance/load installations |
freebsd-perl | Maintenance of a number of Perl-related ports |
freebsd-pf | Discussion and questions about the packet filter firewall system |
freebsd-platforms | Concerning ports to non Intel architecture platforms |
freebsd-ports | Discussion of the Ports Collection |
freebsd-ports-announce | Important news and instructions about the Ports Collection |
freebsd-ports-bugs | Discussion of the ports bugs/PRs |
freebsd-ppc | Porting FreeBSD to the PowerPC |
freebsd-proliant | Technical discussion of FreeBSD on HP ProLiant server platforms |
freebsd-python | FreeBSD-specific Python issues |
freebsd-rc | Discussion related to the rc.d system and its development |
freebsd-realtime | Development of realtime extensions to FreeBSD |
freebsd-ruby | FreeBSD-specific Ruby discussions |
freebsd-scsi | The SCSI subsystem |
freebsd-security | Security issues affecting FreeBSD |
freebsd-small | Using FreeBSD in embedded applications (obsolete; use freebsd-embedded instead) |
freebsd-snapshots | FreeBSD Development Snapshot Announcements |
freebsd-sparc64 | Porting FreeBSD to SPARC® based systems |
freebsd-standards | FreeBSD's conformance to the C99 and the POSIX standards |
freebsd-sysinstall | sysinstall(8) development |
freebsd-tcltk | FreeBSD-specific Tcl/Tk discussions |
freebsd-threads | Threading in FreeBSD |
freebsd-tilera | Porting FreeBSD to the Tilera family of CPUs |
freebsd-tokenring | Support Token Ring in FreeBSD |
freebsd-toolchain | Maintenance of FreeBSD's integrated toolchain |
freebsd-usb | Discussing FreeBSD support for USB |
freebsd-virtualization | Discussion of various virtualization techniques supported by FreeBSD |
freebsd-vuxml | Discussion on VuXML infrastructure |
freebsd-x11 | Maintenance and support of X11 on FreeBSD |
freebsd-xen | Discussion of the FreeBSD port to Xen™ — implementation and usage |
freebsd-xfce | XFCE for FreeBSD — porting and maintaining |
freebsd-zope | Zope for FreeBSD — porting and maintaining |
Limited lists: The following lists are for more specialized (and demanding) audiences and are probably not of interest to the general public. It is also a good idea to establish a presence in the technical lists before joining one of these limited lists so that you will understand the communications etiquette involved.
List | Purpose |
---|---|
freebsd-hubs | People running mirror sites (infrastructural support) |
freebsd-user-groups | User group coordination |
freebsd-vendors | Vendors pre-release coordination |
freebsd-wip-status | FreeBSD Work-In-Progress Status |
freebsd-wireless | Discussions of 802.11 stack, tools, device driver development |
freebsd-www | Maintainers of www.FreeBSD.org |
Digest lists: All of the above lists are available in a digest format. Once subscribed to a list, you can change your digest options in your account options section.
SVN lists: The following lists are for people interested in seeing the log messages for changes to various areas of the source tree. They are Read-Only lists and should not have mail sent to them.
List | Source area | Area Description (source for) |
---|---|---|
svn-doc-all | /usr/doc | All changes to the doc Subversion repository (except for user, projects and translations) |
svn-doc-head | /usr/doc | All changes to the “head” branch of the doc Subversion repository |
svn-doc-projects | /usr/doc/projects | All changes to the projects area of the doc Subversion repository |
svn-doc-svnadmin | /usr/doc | All changes to the administrative scripts, hooks, and other configuration data of the doc Subversion repository |
svn-ports-all | /usr/ports | All changes to the ports Subversion repository |
svn-ports-head | /usr/ports | All changes to the “head” branch of the ports Subversion repository |
svn-ports-svnadmin | /usr/ports | All changes to the administrative scripts, hooks, and other configuration data of the ports Subversion repository |
svn-src-all | /usr/src | All changes to the src Subversion repository (except for user and projects) |
svn-src-head | /usr/src | All changes to the “head” branch of the src Subversion repository (the FreeBSD-CURRENT branch) |
svn-src-projects | /usr/projects | All changes to the projects area of the src Subversion repository |
svn-src-release | /usr/src | All changes to the releases area of the src Subversion repository |
svn-src-releng | /usr/src | All changes to the releng branches of the src Subversion repository (the security / release engineering branches) |
svn-src-stable | /usr/src | All changes to the all stable branches of the src Subversion repository |
svn-src-stable-6 | /usr/src | All changes to the stable/6 branch of the src Subversion repository |
svn-src-stable-7 | /usr/src | All changes to the stable/7 branch of the src Subversion repository |
svn-src-stable-8 | /usr/src | All changes to the stable/8 branch of the src Subversion repository |
svn-src-stable-9 | /usr/src | All changes to the stable/9 branch of the src Subversion repository |
svn-src-stable-other | /usr/src | All changes to the older stable branches of the src Subversion repository |
svn-src-svnadmin | /usr/src | All changes to the administrative scripts, hooks, and other configuration data of the src Subversion repository |
svn-src-user | /usr/src | All changes to the experimental user area of the src Subversion repository |
svn-src-vendor | /usr/src | All changes to the vendor work area of the src Subversion repository |
To subscribe to a list, click on the list name above or go to http://lists.FreeBSD.org/mailman/listinfo and click on the list that you are interested in. The list page should contain all of the necessary subscription instructions.
To actually post to a given list, send mail to <listname@FreeBSD.org>
. It will then
be redistributed to mailing list members world-wide.
To unsubscribe yourself from a list, click on the URL found at the bottom of
every email received from the list. It is also possible to send an email to
<listname[email protected]>
to
unsubscribe yourself.
Again, we would like to request that you keep discussion in the technical mailing lists on a technical track. If you are only interested in important announcements then it is suggested that you join the FreeBSD announcements mailing list, which is intended only for infrequent traffic.
All FreeBSD mailing lists have
certain basic rules which must be adhered to by anyone using them. Failure to
comply with these guidelines will result in two (2) written warnings from the
FreeBSD Postmaster <[email protected]>
, after which,
on a third offense, the poster will removed from all FreeBSD mailing lists and
filtered from further posting to them. We regret that such rules and measures are
necessary at all, but today's Internet is a pretty harsh environment, it would
seem, and many fail to appreciate just how fragile some of its mechanisms
are.
Rules of the road:
The topic of any posting should adhere to the basic charter of the list it is posted to, e.g., if the list is about technical issues then your posting should contain technical discussion. Ongoing irrelevant chatter or flaming only detracts from the value of the mailing list for everyone on it and will not be tolerated. For free-form discussion on no particular topic, the FreeBSD chat mailing list is freely available and should be used instead.
No posting should be made to more than 2 mailing lists, and only to 2 when a clear and obvious need to post to both lists exists. For most lists, there is already a great deal of subscriber overlap and except for the most esoteric mixes (say “-stable & -scsi”), there really is no reason to post to more than one list at a time. If a message is sent to you in such a way that multiple mailing lists appear on the Cc line then the Cc line should also be trimmed before sending it out again. You are still responsible for your own cross-postings, no matter who the originator might have been.
Personal attacks and profanity (in the context of an argument) are not allowed, and that includes users and developers alike. Gross breaches of netiquette, like excerpting or reposting private mail when permission to do so was not and would not be forthcoming, are frowned upon but not specifically enforced. However, there are also very few cases where such content would fit within the charter of a list and it would therefore probably rate a warning (or ban) on that basis alone.
Advertising of non-FreeBSD related products or services is strictly prohibited and will result in an immediate ban if it is clear that the offender is advertising by spam.
Individual list charters:
ACPI and power management development
Andrew File System
This list is for discussion on porting and using AFS from CMU/Transarc
Important events / milestones
This is the mailing list for people interested only in occasional announcements of significant FreeBSD events. This includes announcements about snapshots and other releases. It contains announcements of new FreeBSD capabilities. It may contain calls for volunteers etc. This is a low volume, strictly moderated mailing list.
Architecture and design discussions
This list is for discussion of the FreeBSD architecture. Messages will mostly be kept strictly technical in nature. Examples of suitable topics are:
How to re-vamp the build system to have several customized builds running at the same time.
What needs to be fixed with VFS to make Heidemann layers work.
How do we change the device driver interface to be able to use the same drivers cleanly on many buses and architectures.
How to write a network driver.
Bluetooth in FreeBSD
This is the forum where FreeBSD's Bluetooth users congregate. Design issues, implementation details, patches, bug reports, status reports, feature requests, and all matters related to Bluetooth are fair game.
Coordination of the Problem Report handling effort
The purpose of this list is to serve as a coordination and discussion forum for the Bugmeister, his Bugbusters, and any other parties who have a genuine interest in the PR database. This list is not for discussions about specific bugs, patches or PRs.
Bug reports
This is the mailing list for reporting bugs in FreeBSD. Whenever possible, bugs should be submitted using the send-pr(1) command or the WEB interface to it.
Non technical items related to the FreeBSD community
This list contains the overflow from the other lists about non-technical, social information. It includes discussion about whether Jordan looks like a toon ferret or not, whether or not to type in capitals, who is drinking too much coffee, where the best beer is brewed, who is brewing beer in their basement, and so on. Occasional announcements of important events (such as upcoming parties, weddings, births, new jobs, etc) can be made to the technical lists, but the follow ups should be directed to this -chat list.
FreeBSD-specific Chromium issues
This is a list for the discussion of Chromium support for FreeBSD. This is a technical list to discuss development and installation of Chromium.
FreeBSD core team
This is an internal mailing list for use by the core members. Messages can be sent to it when a serious FreeBSD-related matter requires arbitration or high-level scrutiny.
Discussions about the use of FreeBSD-CURRENT
This is the mailing list for users of FreeBSD-CURRENT. It includes warnings about new features coming out in -CURRENT that will affect the users, and instructions on steps that must be taken to remain -CURRENT. Anyone running “CURRENT” must subscribe to this list. This is a technical mailing list for which strictly technical content is expected.
FreeBSD CVSweb Project
Technical discussions about use, development and maintenance of FreeBSD-CVSweb.
Using and improving FreeBSD on the desktop
This is a forum for discussion of FreeBSD on the desktop. It is primarily a place for desktop porters and users to discuss issues and improve FreeBSD's desktop support.
Documentation project
This mailing list is for the discussion of issues and projects related to the creation of documentation for FreeBSD. The members of this mailing list are collectively referred to as “The FreeBSD Documentation Project”. It is an open list; feel free to join and contribute!
Writing device drivers for FreeBSD
This is a forum for technical discussions related to device drivers on FreeBSD. It is primarily a place for device driver writers to ask questions about how to write device drivers using the APIs in the FreeBSD kernel.
FreeBSD users of Eclipse IDE, tools, rich client applications and ports.
The intention of this list is to provide mutual support for everything to do with choosing, installing, using, developing and maintaining the Eclipse IDE, tools, rich client applications on the FreeBSD platform and assisting with the porting of Eclipse IDE and plugins to the FreeBSD environment.
The intention is also to facilitate exchange of information between the Eclipse community and the FreeBSD community to the mutual benefit of both.
Although this list is focused primarily on the needs of Eclipse users it will also provide a forum for those who would like to develop FreeBSD specific applications using the Eclipse framework.
Using FreeBSD in embedded applications
This list discusses topics related to using FreeBSD in embedded systems. This is a technical mailing list for which strictly technical content is expected. For the purpose of this list we define embedded systems as those computing devices which are not desktops and which usually serve a single purpose as opposed to being general computing environments. Examples include, but are not limited to, all kinds of phone handsets, network equipment such as routers, switches and PBXs, remote measuring equipment, PDAs, Point Of Sale systems, and so on.
Emulation of other systems such as Linux/MS-DOS/Windows
This is a forum for technical discussions related to running programs written for other operating systems on FreeBSD.
Peer support of FreeBSD-related software that is no longer supported by the FreeBSD project.
This list is for those interested in providing or making use of peer support of FreeBSD-related software for which the FreeBSD project no longer provides official support (e.g., in the form of security advisories and patches).
FireWire (iLink, IEEE 1394)
This is a mailing list for discussion of the design and implementation of a FireWire (aka IEEE 1394 aka iLink) subsystem for FreeBSD. Relevant topics specifically include the standards, bus devices and their protocols, adapter boards/cards/chips sets, and the architecture and implementation of code for their proper support.
File systems
Discussions concerning FreeBSD file systems. This is a technical mailing list for which strictly technical content is expected.
Gecko Rendering Engine
This is a forum about Gecko applications using FreeBSD.
Discussion centers around Gecko Ports applications, their installation, their development and their support within FreeBSD.
GEOM
Discussions specific to GEOM and related implementations. This is a technical mailing list for which strictly technical content is expected.
GNOME
Discussions concerning The GNOME Desktop Environment for FreeBSD systems. This is a technical mailing list for which strictly technical content is expected.
Infiniband on FreeBSD
Technical mailing list discussing Infiniband, OFED, and OpenSM on FreeBSD.
IP Firewall
This is the forum for technical discussions concerning the redesign of the IP firewall code in FreeBSD. This is a technical mailing list for which strictly technical content is expected.
Porting FreeBSD to IA64
This is a technical mailing list for individuals actively working on porting FreeBSD to the IA-64 platform from Intel, to bring up problems or discuss alternative solutions. Individuals interested in following the technical discussion are also welcome.
ISDN Communications
This is the mailing list for people discussing the development of ISDN support for FreeBSD.
Java Development
This is the mailing list for people discussing the development of significant Java applications for FreeBSD and the porting and maintenance of JDKs.
Jobs offered and sought
This is a forum for posting employment notices and resumes specifically related to FreeBSD, e.g., if you are seeking FreeBSD-related employment or have a job involving FreeBSD to advertise then this is the right place. This is not a mailing list for general employment issues since adequate forums for that already exist elsewhere.
Note that this list, like other FreeBSD.org mailing lists, is distributed worldwide. Thus, you need to be clear about location and the extent to which telecommuting or assistance with relocation is available.
Email should use open formats only — preferably plain text, but basic Portable Document Format (PDF), HTML, and a few others are acceptable to many readers. Closed formats such as Microsoft Word (.doc) will be rejected by the mailing list server.
KDE
Discussions concerning KDE on FreeBSD systems. This is a technical mailing list for which strictly technical content is expected.
Technical discussions
This is a forum for technical discussions related to FreeBSD. This is the primary technical mailing list. It is for individuals actively working on FreeBSD, to bring up problems or discuss alternative solutions. Individuals interested in following the technical discussion are also welcome. This is a technical mailing list for which strictly technical content is expected.
General discussion of FreeBSD hardware
General discussion about the types of hardware that FreeBSD runs on, various problems and suggestions concerning what to buy or avoid.
Mirror sites
Announcements and discussion for people who run FreeBSD mirror sites.
Issues for Internet Service Providers
This mailing list is for discussing topics relevant to Internet Service Providers (ISPs) using FreeBSD. This is a technical mailing list for which strictly technical content is expected.
Mono and C# applications on FreeBSD
This is a list for discussions related to the Mono development framework on FreeBSD. This is a technical mailing list. It is for individuals actively working on porting Mono or C# applications to FreeBSD, to bring up problems or discuss alternative solutions. Individuals interested in following the technical discussion are also welcome.
Office applications on FreeBSD
Discussion centers around office applications, their installation, their development and their support within FreeBSD.
Project Infrastructure Announcements
This is the mailing list for people interested in changes and issues related to the FreeBSD.org project infrastructure.
This list is strictly for announcements: no replies, requests, discussions, or opinions.
Discussions about tuning or speedingup FreeBSD
This mailing list exists to provide a place for hackers, administrators, and/or concerned parties to discuss performance related topics pertaining to FreeBSD. Acceptable topics includes talking about FreeBSD installations that are either under high load, are experiencing performance problems, or are pushing the limits of FreeBSD. Concerned parties that are willing to work toward improving the performance of FreeBSD are highly encouraged to subscribe to this list. This is a highly technical list ideally suited for experienced FreeBSD users, hackers, or administrators interested in keeping FreeBSD fast, robust, and scalable. This list is not a question-and-answer list that replaces reading through documentation, but it is a place to make contributions or inquire about unanswered performance related topics.
Discussion and questions about the packet filter firewall system
Discussion concerning the packet filter (pf) firewall system in terms of FreeBSD. Technical discussion and user questions are both welcome. This list is also a place to discuss the ALTQ QoS framework.
Binary package management and package tools discussion
Discussion of all aspects of managing FreeBSD systems by using binary packages to install software, including binary package toolkits and formats, their development and support within FreeBSD, package repository management, and 3rd party packages.
Note that discussion of ports which fail to generate packages correctly should generally be considered as ports problems, and so inappropriate for this list.
Porting to Non Intel platforms
Cross-platform FreeBSD issues, general discussion and proposals for non Intel FreeBSD ports. This is a technical mailing list for which strictly technical content is expected.
Discussion of “ports”
Discussions concerning FreeBSD's “ports collection” (/usr/ports), ports infrastructure, and general ports coordination efforts. This is a technical mailing list for which strictly technical content is expected.
Important news and instructions about the FreeBSD “Ports Collection”
Important news for developers, porters, and users of the “Ports Collection” (/usr/ports), including architecture/infrastructure changes, new capabilities, critical upgrade instructions, and release engineering information. This is a low-volume mailing list, intended for announcements.
Discussion of “ports” bugs
Discussions concerning problem reports for FreeBSD's “ports collection” (/usr/ports), proposed ports, or modifications to ports. This is a technical mailing list for which strictly technical content is expected.
Technical discussion of FreeBSD on HP ProLiant server platforms
This mailing list is to be used for the technical discussion of the usage of FreeBSD on HP ProLiant servers, including the discussion of ProLiant-specific drivers, management software, configuration tools, and BIOS updates. As such, this is the primary place to discuss the hpasmd, hpasmcli, and hpacucli modules.
Python on FreeBSD
This is a list for discussions related to improving Python-support on FreeBSD. This is a technical mailing list. It is for individuals working on porting Python, its 3rd party modules and Zope stuff to FreeBSD. Individuals interested in following the technical discussion are also welcome.
User questions
This is the mailing list for questions about FreeBSD. You should not send “how to” questions to the technical lists unless you consider the question to be pretty technical.
FreeBSD-specific Ruby discussions
This is a list for discussions related to the Ruby support on FreeBSD. This is a technical mailing list. It is for individuals working on Ruby ports, 3rd party libraries and frameworks.
Individuals interested in the technical discussion are also welcome.
SCSI subsystem
This is the mailing list for people working on the SCSI subsystem for FreeBSD. This is a technical mailing list for which strictly technical content is expected.
Security issues
FreeBSD computer security issues (DES, Kerberos, known security holes and fixes, etc). This is a technical mailing list for which strictly technical discussion is expected. Note that this is not a question-and-answer list, but that contributions (BOTH question AND answer) to the FAQ are welcome.
Security Notifications
Notifications of FreeBSD security problems and fixes. This is not a discussion list. The discussion list is FreeBSD-security.
Using FreeBSD in embedded applications
This list discusses topics related to unusually small and embedded FreeBSD installations. This is a technical mailing list for which strictly technical content is expected.
Note: This list has been obsoleted by freebsd-embedded.
FreeBSD Development Snapshot Announcements
This list will notify you about the availability of new FreeBSD development snapshots for the head/ and stable/ branches.
Discussions about the use of FreeBSD-STABLE
This is the mailing list for users of FreeBSD-STABLE. It includes warnings about new features coming out in -STABLE that will affect the users, and instructions on steps that must be taken to remain -STABLE. Anyone running “STABLE” should subscribe to this list. This is a technical mailing list for which strictly technical content is expected.
C99 & POSIX Conformance
This is a forum for technical discussions related to FreeBSD Conformance to the C99 and the POSIX standards.
Maintenance of FreeBSD's integrated toolchain
This is the mailing list for discussions related to the maintenance of the toolchain shipped with FreeBSD. This could include the state of Clang and GCC, but also pieces of software such as assemblers, linkers and debuggers.
Discussing FreeBSD support for USB
This is a mailing list for technical discussions related to FreeBSD support for USB.
User Group Coordination List
This is the mailing list for the coordinators from each of the local area Users Groups to discuss matters with each other and a designated individual from the Core Team. This mail list should be limited to meeting synopsis and coordination of projects that span User Groups.
Vendors
Coordination discussions between The FreeBSD Project and Vendors of software and hardware for FreeBSD.
Discussion of various virtualization techniques supported by FreeBSD
A list to discuss the various virtualization techniques supported by FreeBSD. On one hand the focus will be on the implementation of the basic functionality as well as adding new features. On the other hand users will have a forum to ask for help in case of problems or to discuss their use cases.
FreeBSD Work-In-Progress Status
This mailing list can be used to announce creation and progress of your FreeBSD related work. Messages will be moderated. It is suggested to send the message "To:" a more topical FreeBSD list and only "BCC:" this list. This way your WIP can also be discussed on the topical list, as no discussion is allowed on this list.
Look inside the archives for examples of suitable messages.
An editorial digest of the messages to this list might be posted to the FreeBSD website every few month as part of the Status Reports [13]. You can find more examples and past reports there, too.
Discussions of 802.11 stack, tools device driver development
The FreeBSD-wireless list focuses on 802.11 stack (sys/net80211), device driver and tools development. This includes bugs, new features and maintenance.
Discussion of the FreeBSD port to Xen — implementation and usage
A list that focuses on the FreeBSD Xen port. The anticipated traffic level is small enough that it is intended as a forum for both technical discussions of the implementation and design details as well as administrative deployment issues.
XFCE
This is a forum for discussions related to bring the XFCE environment to FreeBSD. This is a technical mailing list. It is for individuals actively working on porting XFCE to FreeBSD, to bring up problems or discuss alternative solutions. Individuals interested in following the technical discussion are also welcome.
Zope
This is a forum for discussions related to bring the Zope environment to FreeBSD. This is a technical mailing list. It is for individuals actively working on porting Zope to FreeBSD, to bring up problems or discuss alternative solutions. Individuals interested in following the technical discussion are also welcome.
The FreeBSD mailing lists are filtered in multiple ways to avoid the distribution of spam, viruses, and other unwanted emails. The filtering actions described in this section do not include all those used to protect the mailing lists.
Only certain types of attachments are allowed on the mailing lists. All attachments with a MIME content type not found in the list below will be stripped before an email is distributed on the mailing lists.
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Note: Some of the mailing lists might allow attachments of other MIME content types, but the above list should be applicable for most of the mailing lists.
If an email contains both an HTML and a plain text version, the HTML version will be removed. If an email contains only an HTML version, it will be converted to plain text.
In addition to two FreeBSD specific newsgroups, there are many others in which FreeBSD is discussed or are otherwise relevant to FreeBSD users.
de.comp.os.unix.bsd (German)
fr.comp.os.bsd (French)
it.comp.os.freebsd (Italian)
The FreeBSD Forums provide a web based discussion forum for FreeBSD questions and technical discussion.
Planet FreeBSD offers an aggregation feed of dozens of blogs written by FreeBSD developers. Many developers use this to post quick notes about what they are working on, new patches, and other works in progress.
The BSDConferences YouTube Channel provides a collection of high quality videos from BSD Conferences around the world. This is a great way to watch key developers give presentations about new work in FreeBSD.
Central Servers, Armenia, Australia, Austria, Belgium, Brazil, Canada, China, Costa Rica, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hong Kong, Hungary, Iceland, Italy, Japan, Korea, Kuwait, Kyrgyzstan, Latvia, Lithuania, Netherlands, Norway, Philippines, Portugal, Romania, Russia, San Marino, Slovak Republic, Slovenia, South Africa, Spain, Sweden, Switzerland, Taiwan, Thailand, Turkey, Ukraine, United Kingdom, USA.
(as of UTC)
Central Servers
Armenia
http://www1.am.FreeBSD.org/ (IPv6)
Australia
Austria
http://www.at.FreeBSD.org/ (IPv6)
Belgium
Brazil
Canada
China
Costa Rica
Czech Republic
http://www.cz.FreeBSD.org/ (IPv6)
Denmark
http://www.dk.FreeBSD.org/ (IPv6)
Estonia
Finland
France
Germany
Greece
Hong Kong
Hungary
Iceland
Italy
Japan
Korea
Kuwait
Kyrgyzstan
Latvia
Lithuania
Netherlands
Norway
Philippines
Portugal
Romania
Russia
San Marino
Slovak Republic
Slovenia
South Africa
Spain
Sweden
Switzerland
http://www.ch.FreeBSD.org/ (IPv6)
http://www2.ch.FreeBSD.org/ (IPv6)
Taiwan
Thailand
Turkey
Ukraine
United Kingdom
USA
The following user groups provide FreeBSD related email addresses for their members. The listed administrator reserves the right to revoke the address if it is abused in any way.
Domain | Facilities | User Group | Administrator |
---|---|---|---|
ukug.uk.FreeBSD.org | Forwarding only | <[email protected]> |
Lee Johnston <[email protected]> |
In case you need to verify a signature or send encrypted email to one of the officers or developers a number of keys are provided here for your convenience. A complete keyring of FreeBSD.org users is available for download from http://www.FreeBSD.org/doc/pgpkeyring.txt.
<[email protected]>
pub 1024D/CA6CDFB2 2002-08-27 FreeBSD Security Officer <[email protected]> Key fingerprint = C374 0FC5 69A6 FBB1 4AED B131 15D6 8804 CA6C DFB2 sub 2048g/A3071809 2002-08-27
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<[email protected]>
pub 2048R/2CA49776 2012-07-23 Key fingerprint = 89F6 C031 B4E3 D472 E4CE 8372 4D58 FDCD 2CA4 9776 uid FreeBSD Core Team Secretary <[email protected]> sub 2048R/BBAD1C98 2012-07-23
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<[email protected]>
pub 2048R/BBC4D7D5 2012-07-24 Key fingerprint = FB37 45C8 6F15 E8ED AC81 32FC D829 4EC3 BBC4 D7D5 uid FreeBSD Ports Management Team Secretary <[email protected]> sub 2048R/5F65CFE7 2012-07-24
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<[email protected]>
pub 2048R/A473C990 2010-05-28 Key fingerprint = D883 2D7C EB78 944A 69FC 36A6 D937 1097 A473 C990 uid Thomas Abthorpe (FreeBSD Committer) <[email protected]> uid Thomas Abthorpe <[email protected]> uid Thomas Abthorpe <[email protected]> uid Thomas Abthorpe <[email protected]> uid Thomas Abthorpe <[email protected]> sub 2048R/8CA60EE0 2010-05-28
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<[email protected]>
pub 1024D/A093262B 2005-02-18 Key fingerprint = 313A A79F 697D 3A5C 216A EDF5 935D EF44 A093 262B uid Gavin Atkinson <[email protected]> uid Gavin Atkinson (FreeBSD key) <[email protected]> uid Gavin Atkinson (Work e-mail) <[email protected]> uid Gavin Atkinson <[email protected]> sub 2048g/58F40B3D 2005-02-18
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<[email protected]>
pub 1024R/C10A874D 1999-01-13 John Baldwin <[email protected]> Key fingerprint = 43 33 1D 37 72 B1 EF 5B 9B 5F 39 F8 BD C1 7C B5 uid John Baldwin <[email protected]> uid John Baldwin <[email protected]> uid John Baldwin <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQCNAzadDAUAAAEEAJqqRE8GJe9Pyxrn7PmCX7n5MWUYrawt3ycvHBYPIRbV7e64 fFPR8BI06mr28/UVWEOQmGl1Pr6FIvpiwWq2Vj7rpdw5waAswIanpt2haw4gt7DO Ao6bwBSK0zZwj/lnmKdM9VH6ZhPwO35xd/YC0vRs7tcoVRMRs7aE8XzBCodNAAUR tCNKb2huIEJhbGR3aW4gPGpiYWxkd2luQHdlYXRoZXIuY29tPokAlQMFEz0CFAS2 hPF8wQqHTQEBIOUEAJZmaiJ5jYb8+SSCB/rBVjCH0rcjn6lIMAqAw5OtfrQe9OYt S66sifX291nCdkONr2dANCd+qCMQU2x593EFlGfM5o/g1ZzPDFN2SfK/d3x15cBU 9Ab3HV+7bGH1Jy4qpcusD5Ygakk5/bZmP2EMDHgzqAEccpP4HfpVfVBDMAFQiEYE ExECAAYFAj0HoFEACgkQIBUx1YRd/t1h4ACcCZAL/VJVPBCa7X2+6iyuhHfaLcsA n2n/7gwjK8dBiaBzfLUPJK/K9+CtiEYEEhECAAYFAj0HrW8ACgkQGPUDgCTCeAIJ ngCfTjCf3tGDkHHlS/q7pTi/XzL1mwYAnRS6IuKuKxxwf131PIo5F0VamSakiEYE EhECAAYFAj0HrZAACgkQIfnFvPdqm/VpMgCfXwdg2Ou8n1S83UsaqwY1N4oto04A oPcC8GkdlHUx5ildiKH9PKBIQr2NiEYEExECAAYFAj0HqH4ACgkQRu2t9DV9Zfta HQCfeU/G9AL7UA/QzdhOW6le407IfB0AoKt1cYzcC1ZL8+lYi56BQ2e1Dy/AiEYE ExECAAYFAj0HrDYACgkQXY6L6fI4GtRDIACfZlJuVxLQf3lLEZJhBzxBXve+IXsA oJfin1JSKQaOoiazs344s2NfuY3kiQCVAwUSPQete3xLZ22gDhVjAQHoKgP/RFRC XizNHsRN6TahiIS9hlYYoqhLub2SEkOAZzMUFFshyMfA/jNfCizTTpYtf2PjKwj6 u7JEuWcyF+pHkQ0mWJHIE6YEQLa8RK2n6JWD8KS1nD4XM250m2Sx7IPWT4Rub4If tmqF2Trvd+6GS8GNAwyG4CMSrcEpLZzZL2ROsjCJAJUDBRI9B62G1uCh/k++Kt0B ATqWA/4y+I5HNckCfbYFd7Ak+ZnQR9UaAhWHiC81HpYzzmQqD1yWugE0zXm8Kajo ZT091rzNzIzx+p/B5uJuu99cfq9fdcYxZXRDuceHWIO9YScqmRgikJVejORWDScz jtKMRzcWHonKodM7BflCPOeyfR70XuJwf9Xqh83P/XjCQnwjvYhGBBARAgAGBQI9 B6pUAAoJELVSsEN3OQXWMX8AnivKuGg8RwxaAHrRlJsd9Ye1BrfCAJ9MEj3DnhVV jYYq7y8kUQ570neiTohGBBIRAgAGBQI9CBaKAAoJENjKMXFboFLDOvQAoLtw4wFZ B00wRL2Aci/jYPZBSQXsAJ4ta392+gPoR8c8YJdZEYJMiZaRh7QeSm9obiBCYWxk d2luIDxqb2huQGJhbGR3aW4uY3g+iQCVAwUTPPZJpLaE8XzBCodNAQHezwP8DVDh 2LR62STWkikj5YAKMR21AK653FKGz+GQ2F62J0IZr50BDdkoTNU1AxiZ8IaQ8o6s MIrwhUrEgqTKGk8OX2eUjg4XZ7Q/ZM4WqQ2oPbF5w4LdD2X961CvmUwB9XQAnauw gUYZB7WRkDhLlujiecgLg0dPfJ+uwwsIpDTxWEiIRgQSEQIABgUCPQgWigAKCRDY yjFxW6BSwytyAKDiQAdFnsDA7dQiBLCM3jndCRsAfgCg/I13xOarvWXzCfaR7iMp toewhy20HkpvaG4gQmFsZHdpbiA8amhiQEZyZWVCU0Qub3JnPokAlQMFEzz2SbW2 hPF8wQqHTQEBkRsD/j6xByZbBXayf0nTk4P0Ca0qARxXBiCM3MfWtv5h/Sd5riOL n/d0R2X2qiO/zsTj4JX/KTUAaXnJ0a2ydE5El636pUUZ4Ec0ZG30rP4ZkZEEcHE8 QW31o4BI2sqKsVyC3CSHqw7l2WLGlA8Cy5dKUcnoJ+wfsMxv3NudAdIGgMm1iEYE ExECAAYFAj0HoE0ACgkQIBUx1YRd/t0bagCfahFaLA6H2zPzr68eyNk9Uno0r90A n3knjIB2Q1rSvdvDVi2NttHYVxJLiEYEEhECAAYFAj0HrWYACgkQGPUDgCTCeAKE kQCgzgQhhLTbGpe2bDsWxo0CfRldu38An25D1vJBYBW1xDlcLElzrSizhhAJiEYE EhECAAYFAj0HrY0ACgkQIfnFvPdqm/U/4wCg8WKCObKK8tocSxNnAWP4hZADY68A oMJvVnQ1GH69z5CGCkDGLyEJ1nRxiEYEExECAAYFAj0HqCIACgkQRu2t9DV9ZfvH fQCff3clrAIQ7/FqIGC01p7nt6QDlvMAoMzVBHA1wPEBhtaVO5ER7COF9qYfiEYE ExECAAYFAj0HrDMACgkQXY6L6fI4GtTu2wCfXVHd0LhgEk3Qm0FxzCtDoZiyLXwA njMHH6JVt1h9FC2Kb6K+xFSF/vZtiQCVAwUSPQeteHxLZ22gDhVjAQGFpAQArCb2 RrgK5GWKxZYHENR+FcObOVOf04HBbs3KF/yUymUd9UAGjeqAbTAPnURBK08SkkLp WBichGlkktKibhE14qFhMmbiOnwGzWPMmkEK+4+5h+SxHTboDxAUWYAAnGlcnjek PttKfKXBqIU83oTGIJLWZV3XDP4T1aJ5tzt24lGJAJUDBRI9B62E1uCh/k++Kt0B AVSoA/9PRLVhEI2zbyjUfONL8WbZPonkTkk95356m/WxkxF/RcbQkrJeODpGjr99 24Pl1hYE8MrouUBIizKfZHxHDUmJB9tkZW2y5A5pG+AerZwuedojzRnZLKOcMujt +1v+fnIwsNW+uzd7Cdpq1YqAeuMcwKAQ6PqAAPZ4uUNem2C0hIhGBBARAgAGBQI9 B6pQAAoJELVSsEN3OQXWo6IAnjcnqYNmtLJYHtQSe5TAF5r9cOsPAJ9qVvLEIUw7 A9yVxH+9eIkP2QmxTohGBBIRAgAGBQI9CBaEAAoJENjKMXFboFLDmnYAoNc7x6cP 3FP5SVK3B+BzINN4U/pEAKCrjaz6zO7Fi6Ech3tZN1XvqfSJvbQeSm9obiBCYWxk d2luIDxqb2JhbGR3aUB2dC5lZHU+iQCVAwUQNp0ZWraE8XzBCodNAQF3AgP8Dobg 60W8YLjNK9d6QI0WMLqS5t4IarSCKvj0dmCv2mAQS9v19rAXIV25KN22JxI4jE+d sJD3xrGbV0XDQvxJqqDS39u4T9DRiacc3CG2471lr8R+xe2nJy8v7aM8yUjHv13d h+Bx2rtcC1CFNSd+ZBrLxH4Uh9qu12AmE6a8xf6JAJUDBRI9B617fEtnbaAOFWMB AdFNBACAiYoaFlmX/tUWO9JzHJE8vlLdgzg6XSv806lgrm/r8OYxSsWQLdhIqreK F/Q5EwYA73lgpgb6wArWsUN6a6h9YjJZKSJpuFrvHjScSXVRQw8vVVXyrddUT+rK nrBcLx5pe3KILCM87rZCS5NvnnjvtjJDmpdYuMdWOyK6GGiyOYkAlQMFEj0HrYbW 4KH+T74q3QEBAPgD/iPYCwqtIpqtiiKiSOHLbj90ffngiWVMJdJfQX3UUEOlnCvn PIv5B+MyknkGnKifmBTyk5qrdU5Fnb0Gl2rkSp7ZkWHPQP1gz0kKvQyP/cDNomqp D6yivJ30llpTUyLwMAmrF9fa0hhzyzzAUO/ID5hWTTxtUgo1+ef7mr/VRN1ciEYE EBECAAYFAjq3efgACgkQwqUsK9IvFbHYMACeMmDl3LhzvrVCc85dRbT3gA4wNccA n293Cz5RbqOtpe06dFPH5AprYh7liEYEEBECAAYFAj0HqlQACgkQtVKwQ3c5BdZb MQCfWEdoTE+GiJ+X4K5yMMuAIOiRTXYAn2iK6OcjPw+DAEcboef4LpE6Hj8WiEYE EhECAAYFAj0HrW8ACgkQGPUDgCTCeAKcuQCfTRlZ9SJBW883Q+jMgcNrTBpGRWgA oKWtVGiPiitV0vY3OjqK/eWQ0xQdiEYEEhECAAYFAj0HrZAACgkQIfnFvPdqm/Uz dACgs8VNTtrRld+h2ToPM2jo1EmGM9UAn3AwOUKQf4qbA+F4L6ZcWKhGvgpUiEYE EhECAAYFAj0IFooACgkQ2MoxcVugUsMbVwCgg7bRPW4qUB0mC1u3u4CeEGTXZMAA n0LVjCotR4s7tLQplT5RLvI6PTC0iEYEExECAAYFAj0HoFEACgkQIBUx1YRd/t1G BACfbrg60vKIfBvKUidp6UNN2y1F4EUAmQHN0mDDu7hdZGwxTT0P7+fnNI1riEYE ExECAAYFAj0HqH4ACgkQRu2t9DV9ZfsxhQCfUX7HUMhcwttdYpEt8YjVN5m405gA n0uxQ5hCOtiTY1vE3++dV5WH70OiiEYEExECAAYFAj0HrDYACgkQXY6L6fI4GtRj hgCgyeoQeBNyA+PLgTBCCxIe3ZWk76AAniWmPw4V03t2C1QciwbnvxfFrr+S =BVS/ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/C1BCAD41 2012-11-17 Key fingerprint = 7DE0 3388 64AC 53C3 7B88 3A79 90C2 B92B C1BC AD41 uid Konstantin Belousov <[email protected]> uid Konstantin Belousov <[email protected]> uid Konstantin Belousov <[email protected]> sub 4096R/3BBC8F64 2012-11-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBFCnvEMBEACqnnjIDvpb+2L0FX5p7vDKf76wBSf7FC9J2UchtUpKjzyTC8k4 Ic6g7GqLBm7O/PftB7ipwGLx0gDea94JF0bhotSmsMarRlf3BtXGUKtW5UIVN/GE 028f024hq+c0dbjq+C9FlWemKrxY3ThTd9dzVX83+hag/wYDB0u5R6Y5+f3m0hCV BpPgTTxvC7F2lqAAAn/tgpvd4ZcuhNaN+uEEzkav3e6GTm+vO9G3lDXV+mapY6Zz 0t0LR8U64iT1+9IDtJtKB1OEKZvTY1pZZr14Vb8QorvPu0Bv1wxMddQukOQgNKGW KSieXez6B/N8LZ76NHlC5xTFnjIdFiVvs7FNO2gPmmE8m1Y1rESfji1iATal9Aqe Q112VL8j8IKEY1pqv8ATW+B6PyeadIZl0TUDQ/0yHpF8B2TIcbT1k2sPI027Q9hV 3pekxFF8PJPJ+eoTcRd1ZhzPAU5843cAhi816PnyYvb4orVLCtXLolGveStoqHfB W0+HORqmteVtHr1oqGciiYLNrKJm/3O/Jr56frA+HTKOh/mq8k+b+lb4amGCHg2v BHYo+4azgdhAiTOD9VUFDI1pEp9jjhRs5V8EsBIF3RpI6b18R0yuTz2jwEAraoIx GAmKLVX94bAXEYHoh04mvayMcmRqE9BwNxUnrdbbpCn9L/wHC34vT0HxGwARAQAB tCVLb25zdGFudGluIEJlbG91c292IDxraWJARnJlZUJTRC5vcmc+iQI7BBMBAgAl AhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAUCUKe9bgIZAQAKCRCQwrkrwbyt QYhVEACT4Y87Fs7fGr8iJusmVessYXkr4ndc330YiBk1jcy/qkgWbhR455eaqFa1 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<[email protected]>
pub 4096R/65C4F55D 2012-11-28 Key fingerprint = 3E8F 5E9F 7586 F090 AC2C 58C2 BA06 FF14 65C4 F55D uid David Chisnall <[email protected]> sub 4096R/04B2A21D 2012-11-28
-----BEGIN PGP PUBLIC KEY BLOCK----- Comment: GPGTools - http://gpgtools.org mQINBFC2eZ0BEAC7IeD+/alxWAqAR6YBi6XTfftZc83e6Q0q3PN7cCacCzbrsFSF 8qTe3uJIsMTKprvF4/8kTvJG2/zeS8hUxpRhRe0I/7hDxErluQpeMf7lGdutrTCS J3GE+xgAI1Ho71FSOQjCvbFi+OoRNGFH6EjzNxzP8GWuv0nRmKO5Lo3l8Y839Hfv p8JCx1Yq3R72zfkcpwAPAj0aKICqHYlWOldL8nz/vAE31MWwcZwdyt/7IrnpzlA+ +LSEMtj8brMid5xdxSeIg7sbgjdsenj9HOeYl4Y3Kpp5t3lHnXfAQza/b0ZCbFuG wnCPYJj3WJ3fH8JbUcgABUhJPCsjOvVJcOBOjlmrFYNmnOk2uZSRPX3lGf0egu+p RPjyIuJlVjGIMnLMChSBE0YlzWPk3UKMnTld8pbwnKuQJXrgQKkSL6Ip+0MiVZ+0 9rcGm0LfkuK3KN49vnXdcTzaLzTbAeDcoI5h5jijeiuCYANsZow4/5euSfUB6hLE tf8xiz7haa7la8exx926L0kHMODHNXzmh8NM1gbFS0VR8sjgW1t2/A9Nesx3BAr+ 6pY9L5qI0+XWMtQX/OFlQqpBOB0IefK3nQgF4FD390iqsM+fM6lZT+Qo1bD5FpQL X1pLbonSZ64oGQaddG+fSfwVcXi5xw7axMqF7FFrshuOfj6ylDzkLyl0JQARAQAB tCVEYXZpZCBDaGlzbmFsbCA8dGhlcmF2ZW5ARnJlZUJTRC5vcmc+iQI5BBMBAgAj BQJQtnmdAhsvBwsJCAcDAgEGFQgCCQoLBBYCAwECHgECF4AACgkQugb/FGXE9V3I xRAAlqizLbx4VkE/qziv+K9Di/P8BOI8fMlOBvWtO1NcvjYh2gpvS0v3ZcVhkfIb XLgUCRX6v5DeTEXEFAF7O3DPKYzKNlrwGbKmmn+akcUElkflmqQc4eVjc7NlEyJx sKhnZlpK0dAsG5r6KY4Hs8EqITJepi0ct2JtJZtW0OqhY++R5E7jXX9WvnyYtx1g NpY1oSagDbTH0QCUdU4Tspxvddr5PYQX841Cbsd6W0QO9moU5G5Se0q7sAsQSjnQ FdgmstYWnhD2a6QaCbSXdEG9Fzphx1S6kjQToZk56U+6GcgXWqOYJ/SqdxuUFkIV x3I8AdNNiVnFoHJ4k6FUGls2af1xRilJuU5Yd4ps3Ec1g8FpCzdNCi/uUVtAaUaY unU9od12zM36mL7ScF2WY7LAweXGjfuiswL/FzvraGbotYNQRJ12tbbQMyNIyGma X3DWsaiIto69IxxaIDgqoBptCibgIY2aJJ7OcCnQJ0aOAvdFnoQtcLKB6IusZS3K 1Cj4sqVoqFzjCrY6RjNHjhNaeAf//E30GRow8j78dO2Ur2wG7jQOQJCRNqa1I8iy EUCc9Y2p2XHzHVNiHJzYJeHjxzoBefjZ4qY57a3PQicVPGR80WOPIVgyzVZYyy56 NGrw5HxSrK1tf8nYi0E4/g2vBbPScQC1TaR1U8XyPUqjNeu5Ag0EULZ5nQEQANHm xy9h6ZKDqY1Go83OiB7R/sEkhHQyoN6bLvch+Ar+SIp4JoKd95z7UsSvsH+SiTgh 82g1zgnw80IY32kyuWzcts6imGocVqeiCyUVESxkZssOq+pyvi9mBj7NiVhKH+bR vxYlu2+YG4OW0Vts4e9B7287xT6Bg/VrPmCJENjdSXD+WizeFQE0X7Am6F/PdPAy F6JLUYZFK2kZ+P9sCfJIBIEhjHbbBzaJL2MhnmLSDeTQAUKmNxAOU/Z0evR5uWHA vbicjJp/rbenUdu3a00shLWQR/whZLhJKD+ZspUOz/6sTOTs39AbVW9M/ychNb+x GsbOlgEi++LDX2lJlk1dDAl/NnXnFqIpcS0Q7vsr7dLLbDIaWyeROEtXkTthDPI2 z/q75iLPU9X38bSsd7PqKH6TWK6dzDOMzuoJtAj+bjOcGoKxMzsrHunUs5fDHgds /rr0mnXr4oXUmIq8l9trzt+W0o0mzk1sBo1Jlzv27ClZBAdcEIccDL4bLGMXswYo RoBcIUD1zncVnhyujoqAJtLno82x1+XBWsJRWJq04lfMOcCpShvrHxoUj0H/oF1S tTUA+yJ7YFiXjlTU/5kAMmpU5XgSa+C33saWGg/FAnOPqHN3GMwT7Mqg+PmdmdWT B49CykN0GJwnub4KQlCspmFbo1iIxOrMXNHmoYydABEBAAGJBD4EGAECAAkFAlC2 eZ0CGy4CKQkQugb/FGXE9V3BXSAEGQECAAYFAlC2eZ0ACgkQrHrkMQSyoh03thAA xu90VRRj69kWO+i5wRO2++Hb4an32PwwxfJSFBh6yYUqj98T4XiuhvJOHFlvBftE HXRiN4nJejyZuqmj7qHfwvpMRcmnmC4uFDFrzM3W7jj2LbiqAO1XTlGf7ApoKptU uJSb8SuCAp9HuTpn+FBOVeL0LP2RDOCE/1vJ3ZpkfMHA/UM0XtGOED+lRe/SidOd ISxF0OcUs3XV8VHDaIaqqaDIJ85MjO8xA/dWm+/R2UtytyM/YdIRgwmtsFsAE7gt gYiIc6PBhpUZX/etF+RDriBGv9QCTEHkiVdHtpgfUXGdubi0qHODG4cs2U80OIuf QBqiAMEitP8Irown2tkqc8H8CCkbFGpHyKK7eQGgmBfbcJA/Cn8Nn1q2hzU1MBOY L2zZ0tsxKrdtkU3+JDOovYjT4pkyyPgG+RALO/4m38pbvozCjx3pmjEJYOX+ALQW +7P6J3KfAtkvgG1oZjVKM8XbeUjRF87F8IprceIkXBoTW8zZtKfDaOe+Hfgmc5pG U+vkyGjtp5TQBF85K6EyiH3qegPanAiNf+oPUbwhOVl7nqW6sSz5DlJMTb+Qa3XA uRRjCxnhmfusX2o4+KW9+22QF8SqrkgIMk5eq0ex7RFXogIfI1cXHSLTDbWP7EL2 aDtVsnD7aE1Vs9TXairGnD0mEbckSLktU+zpJGr7VrQehQ/9G/GbRNSJR1XgtsGN 2wCiwqz/h91ltc0hhzADhXQs90DK8dGRDiP55DUKpLQRMov+JWQqanDaJBLprsRh TFr6GxV8foSQMSdCbC3lwiMzca5pOfWMiHv7BawlYNDSLdCMaAXOhUYDTzjia23t 8xUBzSpuF0m1DpntOPxA6r4vvtZVXsyjtSwaCI8qLAPnwHYBAFiXjsxaCbhDXGv3 sVD1l5Nfj3uJRfX+MhhtXH7u7kYfVUDpYm8oCENlv3p94O8HotoofnCK+DjRWP+d 8VFzLQEyXTR+WYXm6qs21UPhnqRIAuqEbJ1Hwqbe+5V7OClV6iHPBrKx43RkOFtu xg1RioYz0FzuaiN4GoGeUUjmVGNXYt4xbKfQkctLeRG4lmb90q2Co16NWJytdOVY l69oryIACMqVhTUxf/vVYaQD7y2KdF2vw2AMW4BHtydBIfDSwbwor1nbv04y/tId wz0DmzFIWQ4WyqJgQEBnR6vDFXhSfvP8Dng12YKVY64/DzboxnFfBtKlrsZ3ABXS XPrCchELEaWSGO8ONmmpbMYBPp9UNrSRyDhewm4Qb9SCN9JVSmiNXtz9eSwhD9Ih HTT1GQ2bs7+ZL0mBJ7DqVcSNv3BtLVvPJBtxeEL6dvEu4580HnvKZM7JsEA2GupP JHb9JdgKmF4SXR4Z6/y3LFUPc4g= =70vB -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/2793CF2D 2001-06-12 Key fingerprint = BDB3 443F A5DD B3D0 A530 FFD7 4F2C D3D8 2793 CF2D uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> uid Hiroki Sato <[email protected]> sub 1024g/8CD251FF 2001-06-12
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<[email protected]>
pub 1024D/7277717F 2003-12-14 Peter Wemm <[email protected]> Key fingerprint = 622B 2282 E92B 3BAB 57D1 A417 1512 AE52 7277 717F uid Peter Wemm <[email protected]> sub 1024g/8B40D9D1 2003-12-14 pub 1024R/D89CE319 1995-04-02 Peter Wemm <[email protected]> Key fingerprint = 47 05 04 CA 4C EE F8 93 F6 DB 02 92 6D F5 58 8A uid Peter Wemm <[email protected]> uid Peter Wemm <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQCNAy9/FJwAAAEEALxs9dE9tFd0Ru1TXdq301KfEoe5uYKKuldHRBOacG2Wny6/ W3Ill57hOi2+xmq5X/mHkapywxvy4cyLdt31i4GEKDvxpDvEzAYcy2n9dIup/eg2 kEhRBX9G5k/LKM4NQsRIieaIEGGgCZRm0lINqw495aZYrPpO4EqGN2HYnOMZAAUT tCFQZXRlciBXZW1tIDxwZXRlckBuZXRwbGV4LmNvbS5hdT6JAJUDBRA0OJBeSoY3 Ydic4xkBAREgBACBqWM1pZHF5MqOpsxyCeNdxsp8VXUSoReSmaZPeSY5caIV0NgN cUw4AdSKPOu2jDeRSQNzkUk7+/PyK6k9dunZJS4Dnze5QqvTUgi+rHYnEs+DFBRT CcMERiSftaP3gDqK3XyWgXDvLXxAkhiWp9yd/QsnZ1+ahz/qACVi+JxdB7QlUGV0 ZXIgV2VtbSA8cGV0ZXJAcGVydGguZGlhbGl4Lm96LmF1PokAlQMFEDGxFCFKhjdh 2JzjGQEB6XkD/2HOwfuFrnQUtdwFPUkgtEqNeSr64jQ3Maz8xgEtbaw/ym1PbhbC k311UWQq4+izZE2xktHTFClJfaMnxVIfboPyuiSF99KHiWnf/Gspet0S7m/+RXIw Zi1qSqvAanxMiA7kKgFSCmchzas8TQcyyXHtn/gl9v0khJkb/fv3R20biEYEExEC AAYFAj/dD9YACgkQFRKuUnJ3cX9ejgCfbm0bT5x6nuCY4BD2scsMVKV8Pb8An1lj aVb0KRqDjPRrd6FUZoMGWT/3iQCVAwUQNA+txx9/qQgDWPy9AQGHRAP7Bzyo2Hvu 049m44kNFgH7Kkg60SetOcYWzGKVe1nEEvBKWCMgICCfh5nHY1q/xv7pQjCBLQS4 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<[email protected]>
pub 1024D/B1E6FCE9 2009-01-31 Key fingerprint = C022 7D60 F598 8188 2635 0F6E 74B2 4884 B1E6 FCE9 uid Martin Wilke <[email protected]> sub 4096g/096DA69D 2009-01-31
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEmE02QRBACEWV7eL0shCAA+vdpkBCMxrQkbRAceOs8+uhsaocAai3TCiyUg Byzo9OKlenJ+bcZHFsBx0mUDPBRFF/NJPfhh0EpkMRc6VKvCHsuvjr1717gcWbLa ibbvard6cFAAUDXGIn0/hPABtBidFcA4vIb3EQES0PbnXEVfOz1gymojlwCg4/8D 0ZICstqkxQMN+K6p/bpCV9cD/iMHVKnPCD9z9Bk9IJtkDGQ66OQpopY+oxUy9ZZE yO6Gnf8vDjPmPZ5RcDXu0XHlUpUF4yYkdnUKt9u71SVeDlBAQeFwRgDj0zbYKskA Py9YdR7bXbDPIuuAZyJv/93MKryHAEyr8aieAoRZ5zslRcOUrRbzueKi68P01xM2 H6Y3A/0bE+8jz0WWugB4d/D1qmpnxIHIbzWN4S2NICJmMcj/jgoC+p+DTl7TH6Rw KfTt199A4n/g8bfrI86hOQWNY9l9CcBqxwJNMhlY5a3Y6y81tj98oIFuTonyZEDd GZmXp4JBDEIYHVVL0XyD6pvFT2NLr0UHWAFZwsiWK+W0IrByWLQfTWFydGluIFdp bGtlIDxtaXdpQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJJhNNkAhsDBgsJCAcDAgQV AggDBBYCAwECHgECF4AACgkQdLJIhLHm/OnvuACg499DhQhK0dsl+rDk2l+Y40Ec DiMAoNVTN6ybdr16bfoIoYddjsnKn9rPuQQNBEmE02QQEACo7w/pIuz1jhyXiKMh n6/LWwQNdIl5WT4E4DSB2/NmIVkGTwyyUET1nE4NyOVJWeHujK+PxZbtmx7OVe6J niwxv2NeWJ7EkLoeDTrSBKrFCqWRHpbN3bSUAaXiwU9HeHMbGjvvVRg86gzrPKlG I5blbT5N5QgQESuvS5eOgGZLbUptNIGwA0hUWOPN1YR6584XGeV0N18GzcB2nXn3 4Tj82IpeqF/iRY2VxZU3EcN4BoeDYcibPygA3521jWvPOnC9/uqeY/RsORKvyLsT CsEx3pRew0vhbJ8me8WkFPwVczJNWqdhEjxMm0NS9FyBDRgXTn7cROJiuonrGWtY 6HOEHIFsCIzCTfXG0zDaC6kc3k7g4Xlz3juzOL/mhDjnbH+G6VlqfHb6KP3YZnU5 fXtwFTRF/AFDv58m7PFGwAWjIU3mARzbhdKN71FQnp6aEdWIY/3ZyTAs+En1RWgR bHEO7Jg+55V6pH/Cn1p/aIXYDOqIp9HMi9w8nxM2mFt55MiqdUX4RkPxwUdy6BPK 22LxmxYBv4XrdQNbwy2n7k8H+wfQrKhP+oEKM9WFLTXpKPf52xTB4svJMd1yBZXZ FJZSArffJ/QlZ2HgC37V2HcXUOlvU1K+tan/xY2NbJmuetMU7N/ePUWyi4mg3Nww EzUpR59KjrqNI2if2qX7yjCB7wADBQ/8D2LYxz9SCqp6iebELuTBWbHtBX2r5xyl Z6CuDyjHQy+LOW2D2WEq3b1jI46HFp5O381jKNDJxx2z6o9E9dV63wFbGWIxoAec TEdbtf5NBKljFsEtdSg8xdaQa/8FdnTm9EK1MV3C8KqH8e1VBGaHDOlPU1t9zrhO Nc96n8OCl4yk+VldoVycqIgdpta4e8jR6kMGLlCXq4Mq6xR5usUoo6jSab4PSEC4 BZDE4WCzbrahrsJGK4hVmpzi9ofGiqOPf0+XUWG7Na6HyW4GJPohVmjJHyjwc4rf bHtJTu53Hk6S10HHYwbRJz1YO+08KrybtvdzXgTv2C/dYBmjheN2ylKmaXYo6bAa GcVmW3gFEUTWQd8qQtUJzL6LgreUjuY9xv7Z9nUc7SL63XfAjs3H75vavNWZ8Y/J Su/WuKXKxkJDLwzcKHnUVOegEXe0Q6+Khe056WSJ3VtF8+tAaksN7RRslrf1MmVt nVag81z/1UvOwNsyLVEucPnh/8LZxD3plUvscKm3w7rsuWiQ/Wtn/NCW9MBeZuxR QAUnfWbvHPBo1Dgo1essw+Q4crMGAprk/T8/kPuxrHQ3ZydT0e+t+noDCxcLeoP+ oqS1A/Za+idThWujkwos8clIyW4HryqAejrFhtzhfC8ELkpkjq0B7Yd/8Zv52O1T haaPTklRPcuISQQYEQIACQUCSYTTZAIbDAAKCRB0skiEseb86WULAKC5M2ASX7/v bNgnr3BzKKDpkqoskACfcKvwwi1c4AsPtLPxbySr6dUwhlg= =S3Qn -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C5304CDA 2005-10-01 Key fingerprint = 5C7C 6BF4 8293 DE76 27D9 FD57 96BF 9D78 C530 4CDA uid Ariff Abdullah <[email protected]> uid Ariff Abdullah <[email protected]> uid Ariff Abdullah <[email protected]> sub 2048g/8958C1D3 2005-10-01
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEM+MioRBACP2lgLXXL1cIqZ8sdgUMaon8gBQWTn40tjTV3N6GtR+NUYbQI2 Fcg43aopA9VVoeVyBlCSAyaiLTzZkyg1XRDqsjz9BnRWotwTX2e26ndVgsUzmXs6 NjBcCYYNfVQ09BN3B05FRlPRpveMzCkZCFmWJCzjAYBMg/60fSia2In4twCg6Pr9 Bp/eR5Ny9z4WzpIsynAt6rMD/1pDoV+FbZ6iw80Zq7pdyspPdPCRIzXhYsoe5uTX kjWRWixctbphxgvMheQWZNPNhDyDo/YvuPa2qtrHCDqRYSgmAHPC+NWfyoJhCMjG WMjcW9wWZ0j2Oc2uCTvficrGKF8U9ol6E+x6tlc5Cw2jjrPkwJCd70W9SByrgIdv 51bNA/4nBw7S9grYcnKChYu9mGMsAixCXzMeIVc043Y2SD1NBg59ZNiaSkmRyD6E dCYRDhQeF2CePV3ZhlXDxOm6vD2l4H+9sQ1TRlEP/ARejwJrPPRO+plCf8pLDgj+ 78Kj2OlEwC+ziMdXyk8W91FhtCCDXQgDnf3ND/h4IWTzrVD0dbQjQXJpZmYgQWJk dWxsYWggPGFyaWZmQE15QlNELm9yZy5teT6IYAQTEQIAIAIbAwIeAQIXgAUCQ1EY kQYLCQgHAwIEFQIIAwQWAgMBAAoJEJa/nXjFMEza1FsAnjbSH6NqUl+VC42MGNYG 6xGCfJoxAJ93L2Zf9C/ug6afFr4Bh/HoJbFiOrQiQXJpZmYgQWJkdWxsYWggPGFy aWZmQEZyZWVCU0Qub3JnPohgBBMRAgAgAhsDAh4BAheABQJDURiFBgsJCAcDAgQV AggDBBYCAwEACgkQlr+deMUwTNqW7wCeLHdcpasWMJgoqfLIM8PTJ/UlZ28AoLF0 V2UMd0CdWCANmPNdZcME6jietCdBcmlmZiBBYmR1bGxhaCA8c2t5d2l6YXJkQE15 QlNELm9yZy5teT6IYAQTEQIAIAIbAwIeAQIXgAUCQ1EYnQYLCQgHAwIEFQIIAwQW AgMBAAoJEJa/nXjFMEzaMs0An0gHq10v/5mnLWBYqnwZ+SnZNCYbAKDaTpCa6ddQ 7jdr/lmi8XwK+blRqLkCDQRDPjIxEAgAudaX6QqmUT7UjXmxjlNr6wdDT0BDCu9H ZJuYt9Nf5V0Yd9ExfhRKh2YoYoW0790gka92R7uvrs7FJiu35KrYvOUjmwbouVf8 Cg2fQqDcw0Lj/CD0meEduZOS4moxv/5GcJc2vsQ1BDsRwX0DmLQYXIaqIsRSo4U4 KxWi/zZC5TF1Iwo7JyGY1Gc1SMZuWeZC/qx8bQxvkLx1q3qyZybjUtE2WkfqH0bI /XCpN5kxDciq/U1IP0H2pU/Md/OAvylKID6uR9yPh9kaOOhcvmOID9oWIMbE8a7x eAQ0QkEVpoexA+5DbUarPzjfqUprpZCydaE8s7Gzy/ocegAYqiGQKwADBQf/fxph 6IW/Be5YFg15+9wZ+1MlEszXw9pZnkLU4Ypwz6ksNjrbpHcEbBdK45kw17pOL+WW Yie5tA/b8ndzoga/qyaOa7lH3b4pA78GMhGd7gSzrziNkuE7Yc3WNqjpRVYmVgH+ 9K0rjJaK55hhKDdEGj1jMXNXAXtXra70DNWZt88HLs85goWm7vnnsiPBgOVquYEB /q5ExD/E46TkxF5/Kl02LyHTcyhWsUjksmoEi1O/wxXOAxi/GM3QRrkbF7voaC+d Og5pxQXsftoXsk5fBEDBD1iCqqs1m2IJIUwuMxVlcc+IvD/eYejrtNlkzh5NLash evj4a81s2LLPh5qd3YhJBBgRAgAJBQJDPjIxAhsMAAoJEJa/nXjFMEzaXHkAoLi5 OZgXddFLJYSXXnK3iwzYho2tAJ0Ze7tHvJd2md4VSth52CSBYDEemA== =2tPN -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/A473C990 2010-05-28 Key fingerprint = D883 2D7C EB78 944A 69FC 36A6 D937 1097 A473 C990 uid Thomas Abthorpe (FreeBSD Committer) <[email protected]> uid Thomas Abthorpe <[email protected]> uid Thomas Abthorpe <[email protected]> uid Thomas Abthorpe <[email protected]> uid Thomas Abthorpe <[email protected]> sub 2048R/8CA60EE0 2010-05-28
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<[email protected]>
pub 4096R/8FC8196C 2011-02-11 Key fingerprint = 49C7 29DF E09C 0FC7 A1C4 6ECB A338 A6FC 8FC8 196C uid Eitan Adler <[email protected]> sub 4096R/18763D51 2011-02-11 sub 4096R/DAB9CF9B 2011-02-11
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<[email protected]>
pub 1024D/6B387A9A 2001-03-19 Key fingerprint = B506 E6C7 74A1 CC11 9A23 5C13 9268 5D08 6B38 7A9A uid Shaun Amott <[email protected]> uid Shaun Amott <[email protected]> sub 2048g/26FA8703 2001-03-19 sub 2048R/7FFF5151 2005-11-06 sub 2048R/27C54137 2005-11-06
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDq2bMERBAD+HhpI3J/ftblnkB3BKL4SlcPuRgpzd+qdEZpVFBW9TF4RwZhq uVvuhTwcLsTlv8QBoCkUU2Wf508RnG14EtW1hoqciHRSKyKmCOOz5GNYQB9z0VkL n/KH3yxYtCVqcr/ZJPXSyGGSzLUuCxX8SgaByYOV8XWJbqlE44nmvTEqNwCg9CV9 +Ifdl4ohYfPhvQGAQ0Z51JcD/0YNZMWcWruqawPYwQmzIiS5FB7bZa2etPkBzA+/ EYVdO5L/8CfRy/QTsuF5w9OkRTVGzicjP5j8T0aGziARA7T7LdPGYdQQ8bR9cAWt TGeZmlGas4vbz22FN5mEMU1xO6EArt3RFq4uL2ePWM/nmRiTGWVWfZN9ps0qL0VV PPd4A/9oa3eSYuJs9bzyFtm4h0rAyQyr7koNIia3757kMQr1L/OmBXUiPS6r51EX WISBLslMksGtfLdzlprd21x7Y+iRhwysjX9fyoul5Tzn9HENbZdp5ACeEjFFX7LX K1sI6ZVeFDMfwex+TMBmWfv66HGzRgBCpjN3TtcOwHPNo6x6g7QdU2hhdW4gQW1v dHQgPHNoYXVuQGluZXJkLmNvbT6IYwQTEQIAIwIbAwIeAQIXgAIZAQUCRK2r0QYL CQgHAwIEFQIIAwQWAgMBAAoJEJJoXQhrOHqa4A8AoLpKui3MGaN7QoP7+ABKFjar IVzkAJ0XMx2qfpovyhKEaD5mIVmE/HPdm7QfU2hhdW4gQW1vdHQgPHNoYXVuQEZy ZWVCU0Qub3JnPohgBBMRAgAgAhsDAh4BAheABQJEravfBgsJCAcDAgQVAggDBBYC AwEACgkQkmhdCGs4eppDtwCg5tYU74gBC7sqeDhEXKimC/7Tz0MAnjduBqG32uxo mc/IV69B0JSmJr6quQINBDq2bOAQCADLeZzD6b21ivZMLkZ8FD7gtkUK1x0CIcgz IWyyJgdPYc19woloRg6oytRDmrdaOI4Nw7x1Bqgosh33oawDL9DG8Z+ElnXNIx2x vAQpApWffU+CHKpk2lL66hZtAGOM3Hx3SGk0s25JamtsTwao1ZEoYTnIsnuvTEF4 j84CAPEMITXKxON5fncm6y1aHZVbYy+wzfj7Tdz6YvLmasAMYE/Ycw9q1u8s7Am5 UAPL/N7XLfD78WIAwKuLQOIkNjHHMA4EWnxOy+eDy5Ew6HYebF+mEhX2Nh7X0v0a 7y7insRJGLCbapNR5SxX4nzgedw7LQCHUBKNlOxpFALRyXr+1onnAAURB/9lx5+X RzlJ/jN2vIQKV1Fdn/jdFSN32LhjjvTOla8g8hMgvdkawOiclCKIC8X8SZtXhwM+ hTHj0OvYsJE1fu+xMOKLtMD+ayDwf2pxTK5GKIGLsvsigUTlM6asEBtQsvWyMATe Prao20BrxdEYb9xfEmdEGnmfXdbHN0PV7EvBE6UeuyiRdUcVtWaGaQXr0yw0nf1h O/VjuEIhjnZQYxjwrg+YY7EvHUWGIa2945ZpTl4ShGNjy1MQHsSrB5kN3D6N0wuz fU1wC1bSyaI+hcuEWvmr79i6sF06d7fvbtZ3HkvvjLmdY5W0GYlzxIxhzwU5FXrW fSjIbd+Jy/l0I+hiiEYEGBECAAYFAjq2bOAACgkQkmhdCGs4epr4pwCg4BZwVjOp QEQDCX5x8hQOu9rjGwcAnA7Xr9tPHD1DGinmsMh0c3rLC5cFuQELBENtYrQBCADm P/CuDdbokktItDF5wjpoj1oZ1zw76uNZnYqFD8bHjonxuUSJSHRgpfG1bEgpVLoT Zdx5yqJWI+fPOfTUctAciqiEt7ZFx2oujSe+nOpxDt9lN8148tVvBnhLrywFchn1 Wgw4gZVIEjAcDpJ4zMblNJE8dskAK+eiO/UKkaLz9AqOLZrslCSxATwt8P3tSLFr PbyM52gtNHFcUriKoKyn+2KDS0EzYGPGPHI4LA+2kCCze2eYTTCKW4PgMYoxcYzu N2M6JtHSfHIUKsxBiAk41fH+8YudNZUx+SkZNbF3bnj6i7UHYuGpPZVOEpt0Hhou GFCzMU1FhWSuF6dtfOxRAAYpiEkEGBECAAkFAkNtYrQCGwIACgkQkmhdCGs4eppY egCgvQoZETQ7CgB6SeYKqpTdhf2S4/8An3WQnyj05jRtui6cGw6xHHts8lbEuQEL BENtYtgBCADYpNwsVwVgPJ2JxnJE0ovRQIrkrKDWpD46zqm+/ZO0iJQ7W82S9YNK 0wCshHao6NdnVaz2TmGYeVzdG7ABXituW+FKpdHBcZ5OwcjXqC05XqMK2hmsbRXd FKcXgUZu6CJhUGa0sUsZ8Wbh2piw8ElewWwEAokF/BZWq9dEVSsGAlbYcBnXWpuF OSQkNiTcKlVxFVezGvbrzI6lTPr8qXdilRhecwAVu2FG9B4yfSrFq5UnTgI1QXtB QMYLnAm19J24fFDxz6G8wnp14eW7KSJgDS7A3pZwvzXaC9s059iZ84mOOssgf8cB ewI/TROWjZhd5oaHeknieHoplrvvLChXAAYpiEkEGBECAAkFAkNtYtgCGwwACgkQ kmhdCGs4epqDsQCfcoBp9tmmAEVGQ1dskrPb576rp/QAoOxAhjPsMbEXTa6q1lxG NnNrFxKZ =zwEb -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/54E278F8 2003-04-09 Key fingerprint = 7B63 EF32 7831 A704 220D 7E61 BFE4 387E 54E2 78F8 uid Henrik Brix Andersen <[email protected]> uid Henrik Brix Andersen <[email protected]> uid Henrik Brix Andersen <[email protected]> uid Henrik Brix Andersen <[email protected]> sub 1024g/3B13C209 2003-04-09
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD6UQlgRBAChxRQ81Vmb8AMxEG+meT1euB3fDPtkvtSc+HdWDnpNWCTnkyq/ IVuG1c23Hi410K+MVwRn/IXaUGHANhsIL6408dHX3QuvTCWW/RYx3bPU2gxjbuw8 4ZT/dw1vsbR/dnjz2PaX9Hhq5boAy0IXkpsRqLh5ys+pW96idnfCW8VCewCgyFTR +GTaKsSAJ6mFEIo6Q9NbsH0D/1M0Rtj1teZbJIitnYkRK8l5YH6AD1swOEdZTvUY AccQjQOwn/9EWO4nYdOknoogXLYMMsz1Pkw/X5IoABeH9AHRcxhhkG9B2SVzaxyI BB0VH5J8ks2zkf0o5yKieBtIobPw5lcgLjwhALVrsV4FjV3G0+lS/cb08wlID1sI nqHcA/9ibS8Omf/xFQLlD9KebW87FadmrPsBS0qPOZzOkMqdCaFZsJ9UZie+RcMR qDFZZLHZjAh71J1czn7qbK+BCv+LRhzERTWevw7fgL/41m0DO8JqzMkLZr9EneRL 7ZJ5NtBPS5WoWzMpoydaQEA2sjCnMmTxBtJpCenR26LynXmdmLQtSGVucmlrIEJy aXggQW5kZXJzZW4gPGhlbnJpa0Bicml4YW5kZXJzZW4uZGs+iGEEExECACECGwMG CwkIBwMCAxUCAwMWAgECHgECF4AFAkUMaR0CGQEACgkQv+Q4flTiePjlBgCgqa2K xi/J9ln8BULtheJ4PzDhp48An0OnhLfiWDsn1XoS9KQ38XzrSimbiEYEEBECAAYF AkPMcpwACgkQN0y+n1M3mo2P+QCdH5NSpHYikhVD41PPaSNg1SY9rm0An2LXs/aT 06Tz69gBoWoWeLMnkfrGiJwEEAECAAYFAkQMD3YACgkQH3+pCANY/L2ZaAP/cCpR 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<[email protected]>
pub 1024D/052E7D95 2003-08-28 Key fingerprint = FDD0 0C43 6E33 07E1 0758 C6A8 BE61 8339 052E 7D95 uid Matthias Andree <[email protected]> uid Matthias Andree <[email protected]> sub 1536g/E65A83DA 2003-08-28
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<[email protected]>
pub 1024D/F81672C5 2000-05-22 Will Andrews (Key for official matters) <[email protected]> Key fingerprint = 661F BBF7 9F5D 3D02 C862 5F6C 178E E274 F816 72C5 uid Will Andrews <[email protected]> uid Will Andrews <[email protected]> uid Will Andrews <[email protected]> uid Will Andrews <[email protected]> uid Will Andrews <[email protected]> uid Will Andrews <[email protected]> sub 1024g/55472804 2000-05-22
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<[email protected]>
pub 1024D/2E2096A3 1997-11-17 Key fingerprint = 7AB4 62D2 CE35 FC6D 4239 4FCD B05E A30A 2E20 96A3 uid Dimitry Andric <[email protected]> uid Dimitry Andric <[email protected]> uid Dimitry Andric <[email protected]> uid [jpeg image of size 5132] uid Dimitry Andric <[email protected]> uid Dimitry Andric <[email protected]> sub 4096g/6852A5C5 1997-11-17
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<[email protected]>
pub 1024D/6CF0EAF7 2003-09-08 Key fingerprint = 76FE 2475 820B B75F DCA4 0F3E 1D47 6F60 6CF0 EAF7 uid Eric Anholt <[email protected]> uid Eric Anholt <[email protected]> sub 1024g/80B404C1 2003-09-08
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD9dFQARBACzmGtuaKFqQwoRV32TI4ANBPHPlXkKXJ1WYQQkahzP/VfzNOUH VbjIMQqrNPawOcrFyEFuI/FJLWXewhrcrM+of831BXWqnQ7ketGqKUO3xT18N1MG BVCx7F1wpPW42YkhFVAubZ5tyHLOVSc+iJZVGgZ5mUi57odqZ1l+rnqpjwCgnXx5 tas++vGBPk70vcIP+ZmswGMEAI0Lfr7Qy42P6hbYJZpk/NVAvXMZMUyK7fti2lR8 BCOQr8lSdFUZMAqOhlGSfr75Lp8YhR4R4qCSISPXIbtkpYpS5A4YOk22qljLfyrC vki3U3Qum1eO2L67jswb+hQ7pCeaddNm9Jmsg+CJOZl6nfDIJpC8yoXH76W8tXAm 1DgiA/96RKTseIR0z79ahlxX5HDr2A5bPM5CZBdPba4tSuFIwd28HVUdLhJmsGpC uVnQ5VnhBh5coNBhcb+ngZCOr9NvvyvwrxdYYGvuABeWS3v2UGx7XnJQmBQubWYq CEk3wScZWhEoFchvPEVfXtzNBjI6sF1FWMYkAhHaYiH4M7rBiLQgRXJpYyBBbmhv bHQgPGFuaG9sdEBGcmVlQlNELm9yZz6IWQQTEQIAGQUCP10VAAQLBwMCAxUCAwMW AgECHgECF4AACgkQHUdvYGzw6veNhgCgij4I47kRmhRkdzJeftLig2TG8/gAnRcb r7ah3d3nPKNLRN+nQDTp0uxctBxFcmljIEFuaG9sdCA8ZXRhQGxjbGFyay5lZHU+ iF4EExECAB4FAj/CqF0CGwMGCwkIBwMCAxUCAwMWAgECHgECF4AACgkQHUdvYGzw 6vfvYgCeIy1G5U6YPFK2QZNhB7SazQXwvjgAoJmxWRZr8zKOmcMiYFf1tj05UDhC uQENBD9dFQEQBACpBlENAalxZonZ7K2NU6xiH/qz+XI+ZU6WQh58iUlM0QPUU8ta Ot8uQUL5DT6G5myFDZufYomYrdzaLxuZbzpWzDOFGqb9aWLlHC16ydWbIRvPif0D ar9wFJX3b5DFkVICUYXTKTx/O/VqcpGHH7tLInuipYRapOBrUw1LU87qLwADBQP+ KbuF41ujgb7QfPX5x5Cdg9D9SZAQyxu5TbsSXmc4fuel10QFMdWyMEUW2rMLixYn cWw7AfziHCy3uWOOm1qxm8npYCIRp0jG3M/Jydc8iQTqL59v0/UBOxPQ1pYZxE/8 EOmbHRHe9BQt4pfouuLVKXGzxg3NW6nXXNQVEeOyqFaIRgQYEQIABgUCP10VAQAK CRAdR29gbPDq9y8MAJ0dP1d27SdsNNU4d8nFpwrXfXXa2wCfRvgv8i7ziyodkgwl B8LNmWvWUn8= =2V8B -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/B267A647 2009-02-14 Key fingerprint = C7CC 1853 D8C5 E580 7795 B654 8BAF 3F12 B267 A647 uid Marcus von Appen <[email protected]> uid Marcus von Appen <[email protected]> sub 2048g/D34A3BAF 2009-02-14
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEmWjSoRBACy4CsdR35YB6pGzU1aa1mbTkLuF44VBjV8O9qji80zo/VJs3JL El0wIhM9pg6zObKkzOU5HJFU/6uazzzDnc+A8y3NJL3u+HoX/7c03e3yUZ6xl7PC ua8tO3IAQiB/cg/Ltb6iJa8FflfmCKGE0I2DXeR2vN9PpgQVkJW+/NSDbwCg2Nxm mfeO83a7C28G/MV70z5CTg0EAKdHCkACr+iB1WpOIKEmFkZRD0NXHEXYa6L2kPdY XPNJ893yu5YUmHMFNUdVxoIKaUKpIGPa+V4q6ojAilWJiaEB74W+teqNBzwhzyNv xfp/W6fNJtvC1DJkrxkag0penU9ZROkVEnZajIclFh5la3muxX07Qf2HjGZM3Cqb nz6PA/9gdPecNwo1N+9aX/CGrCw0DC1QVFc1HJqcL3pe2qQkMVDO7sfQkewtQOW9 H2ZrDWlVxIohQ9/+vbKV1uOcJr5+egSGNTCNNuimh9Kp4LYMc1vNouQe1D9fsCXW 2kcgO8FozH0O3uJ60gCak2K06iA+mGziNYLQH3IvjVswivxOyLQiTWFyY3VzIHZv biBBcHBlbiA8bXZhQGZyZWVic2Qub3JnPohgBBMRAgAgBQJJlo0qAhsDBgsJCAcD AgQVAggDBBYCAwECHgECF4AACgkQi68/ErJnpkfulACeI1WVnhrKTq/+O2Djbpuu Nyj/MYMAn0BMDpy4frZjlIMfhazixfk4cbjNtCdNYXJjdXMgdm9uIEFwcGVuIDxm cmVlYnNkQHN5c2ZhdWx0Lm9yZz6IYAQTEQIAIAUCSZwX8QIbAwYLCQgHAwIEFQII AwQWAgMBAh4BAheAAAoJEIuvPxKyZ6ZH48AAnRraNz0aFuSHUFaw8LXjROOTwld/ AKCvawhTgwYKX3YjLzu9Jcc1t3UNj7kCDQRJlo0qEAgA2acv4O4JFQCzgJXhCQqn KHFeEqOcgpKlvIGlgfP4/hVOCms2LK3qk10JpcbDbkBn0cBW7usxvA3mDiF2ZnrY wIwAROI7SNSY60PydR6DXc6I21VAd7hmmcpqkJFXaSMvKkQcq7sAJGlSYVpPuBqZ 1kCIu2vlPBdpT4W1hHxf7l4Q+h2ge4+C2beRv9V9vRVdlXeSqJT1o5EgE5CjZ6sV Eh+9/TQdkRAoGgQG4LZvDuhWfsSkDU6x/soFKOPCdTF/LytW8YZ6asN1EpVJihAe GseQdkwP8iK9Co90Ab27+5WVVrP+xkY+rULOngW2vIwJrWic6nk/a0/0MrPjFn3k IwADBQf/dMsSQncKSSn8Tg9KeeBLftirddz+Mos1j+1PYOc88vrMrHVodBfNtJlG zxAGwFyLtk/yA8/MuW219t57O3W49VYh+I8NenzlRmZr/ahn8t79UD7+SWmy8L5e 3XD2+w9WTj9Lx1V41wFKvxVLItNAik58Oi9MHa/wR1LMRIeGFAVHWAZcxYLLKfGR lYcMmMTY4906sjJ6Z+ZVYILnTR360JdeiZbFdaCFGf2yUoM+HeA2+975CaRagu+N /HZKW4JSsiu15fvaLTPwFG6YXKcHL2zI0Vc5UF5nd9GGZdX9Y4ffBi3aPXgIOJm5 eAf29A6Ne3/llt3RG3TduGacd1WghYhJBBgRAgAJBQJJlo0qAhsMAAoJEIuvPxKy Z6ZHPMYAn1s6Sdc/4Kkv8KQ0KaJNwmkQYkcSAKDLkzy/Ph4mOMm8jO6ZL+Orpo21 CQ== =HKIb -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/53E4CFA8 2007-04-27 Key fingerprint = 9D6A 2339 925C 4F61 ED88 ED8B A2FC 4977 53E4 CFA8 uid Marcelo Araujo (Ports Committer) <[email protected]> sub 2048g/63CC012D 2007-04-27
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEYxSRMRBACUOhoJNgNPJtP5AcENhALcif0n7o785oCDaTGrMNPV75DdnR8o +mHl4POS1bZ7RYHdo7SHCbJqu0nLO4OCeAagamnK4lW+qaa0KaC6WxBiS2/K3qFe Y4mDMQRPxBNUWUh7A6VpXMBWk8n6ieyMGLiLQj7+d0fImSY3NdX547qZswCgnjln RlpLKFjRIRtNt9RKZQbm0JcD+gMXo+MoUHHKKnSKIQt3u7rnN3Mpnr4OGsa7J6KJ whm6GPX0zHzjKUhXCDOJwaYBpOJYNLTTNS3nKpq7GOkQDg7Q4I89/Q8S6AVwCvX1 N4Jdeebm0jJBrzVNdbezIYEBwL5k+2YN6FcaC1yKBTk3N7qF7/4dmfRNO14qLFaz E7T3A/94lP7YT9FHqmNr9RPuy9rmz1bZhU/7tEimLF2o2Y6ntxsbSY1StVHJj0ln cCNlMV4vrIP6Ce73W51Vw1iKNapQy2113lWVfc6dwLdhRxWDVMNPKW8ESxqrFSJ9 IVTzZvPQoqrXOsuVKTej0MC395UbdiLGWckmsJIYVrPaX+C7lrQ1TWFyY2VsbyBB cmF1am8gKFBvcnRzIENvbW1pdHRlcikgPGFyYXVqb0BGcmVlQlNELm9yZz6IYAQT EQIAIAUCRjFJEwIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEKL8SXdT5M+o kMEAn26jMz7Tux/fTt8Z6V59+qhhd62EAKCGEPvDrh8Ye46LyJJj2ZeA8sWNtrkC DQRGMUkmEAgAgSVxd8hyDpx7nndMLjTIfpla4/mOP6VSkmzF0Enj1ESzOeTVC765 gtnjjsFq5Vy5Gv3wdLwwDkcCij5FkBCgSi9EBcp5ooFpNfN9UtHT6/2Z9X7laLiS qQtS7xbqU1bxUQ4sK6AdjhOgzdDz8KOeWUjs6WO+/Touq/gouggxMbg/SWjywsfk SkgJ9SwH/o+QXvTEloyTwqwA7ptckvFKeBiyiA8RI/T2wqHUHmRE7YrI+HZz1b8q kPqALkZFoZVgYEVHjIuuuT5KttaQYvAdHgWjgTTjugeCfHj186yQbIG3TOD0ToLc KXFycft7oYFku55Elo0bRS2mxT6/SptmrwADBQf9Gws09t+AcOYUaLH3V8EKLg24 1r/aEfu7tPYMZ/xHmibOkxxxQgJEUAIqE4jZY6fMrwUj4F9p4Q8E3mN/wkpY2qHJ 4yUI71cv7NEOeXLvU3bdS5wwvlEK3obIJZfhzefmUncPQ+pEVdbtoGT2ehosqe4K nw+bBE9q1Q8elF4mr6mNTavSZBs2FTJ84S009pbMyqyZZZ61RL1H0XmZV4s03Ywf tJpc/uTSwgB5I9SiSi1clafGLRzWx4BzToIeHmE70Ycl1PGJQ5kmf2tmTPrVbKCX F/4+S3Sn85D9s3jk6LfxMfLiSzErBkkV/zZaXcNFTPfGZ21Dp6/0IyKF+HnNuYhJ BBgRAgAJBQJGMUkmAhsMAAoJEKL8SXdT5M+omBEAn3t4uIC5dceYeU8j15UnzECK pAWBAJwI/yul4wCtXeyIhg0vYCrExTl5Wg== =3ciY -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/FE6D850F 2005-04-25 Key fingerprint = 2771 11F4 0A7E 73F9 ADDD A542 26A4 7C6A FE6D 850F uid Mathieu Arnold <[email protected]> uid Mathieu Arnold <[email protected]> uid Mathieu Arnold <[email protected]> uid Mathieu Arnold <[email protected]> uid Mathieu Arnold <[email protected]> uid Mathieu Arnold <[email protected]> uid Mathieu Arnold <[email protected]> uid Mathieu Arnold <[email protected]> sub 2048g/EAD18BD9 2005-04-25
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ydMjrsBH+qwhoiGI8wCfdTd4ZU99kETGpnFIfO7mDHd1VEE= =vtoU -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/1E08D889 1997-07-23 Satoshi Asami <[email protected]> Key fingerprint = EB 3C 68 9E FB 6C EB 3F DB 2E 0F 10 8F CE 79 CA uid Satoshi Asami <[email protected]>
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<[email protected]>
pub 1024D/A093262B 2005-02-18 Key fingerprint = 313A A79F 697D 3A5C 216A EDF5 935D EF44 A093 262B uid Gavin Atkinson <[email protected]> uid Gavin Atkinson (FreeBSD key) <[email protected]> uid Gavin Atkinson (Work e-mail) <[email protected]> uid Gavin Atkinson <[email protected]> sub 2048g/58F40B3D 2005-02-18
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<[email protected]>
pub 2048R/21AA7B06 2010-07-14 Key fingerprint = 5B38 63B0 9CCA 12BE 3919 9412 CC9D FC84 21AA 7B06 uid Joseph S. Atkinson <[email protected]> uid Joseph S. Atkinson <[email protected]> uid Joseph S. Atkinson <[email protected]> sub 2048R/5601C3E3 2010-07-14
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<[email protected]>
pub 1024D/C835D40E 2005-04-13 Key fingerprint = D090 8C96 3612 15C9 4E3E 7A4A E498 FC2B C835 D40E uid Philippe Audeoud <[email protected]> uid Philippe Audeoud <[email protected]> uid Philippe Audeoud <[email protected]> uid Philippe Audeoud <[email protected]> sub 2048g/EF8EA329 2005-04-13
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<[email protected]>
pub 1024D/60BA1F47 2002-04-27 Key fingerprint = 84BF EAD1 607D 362F 210E 69B3 0BF0 6412 60BA 1F47 uid Timur I. Bakeyev (BaT) <[email protected]> uid Timur I. Bakeyev <[email protected]> uid Timur I. Bakeyev (BaT) <[email protected]> uid Timur I. Bakeyev (BaT) <[email protected]> uid Timur I. Bakeyev (BaT) <[email protected]> uid Timur I. Bakeyev <[email protected]> sub 2048g/8A5B0042 2002-04-27
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<[email protected]>
pub 2048R/A0B946A3 2010-08-03 [expires: 2017-04-25] Key fingerprint = 78B3 42BA 26C7 B2AC 681E A7BE 524F 0C37 A0B9 46A3 uid Glen Barber <[email protected]> uid Glen Barber <[email protected]> uid Glen Barber <[email protected]> sub 2048R/6C0527E5 2010-08-03
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBExXeNsBCAC7wmKFOV+UjSn48hWaRAImN0uGgJRVAYPWcNogyw000o0vMKjk 5sNm5YUv2DutTVBQAHytkKGYX78ogpltIkvkr5K0eptVpl2iuWQNyGc4Nq418ZJa hgDLZOtMO4plEmbViLFuz97D6V7yNPSAX6adiCh3A0kc+GwCOhXtQrn/OWxZa4Uw FCGD6uqFXM6s+kkgtqFlWuFB4tAM5epxt++WLEyLCL/znRhZK+tTstZxqLudJnFB ooFOEffYvDB1pNWOarBmSKHncYNjHRqEcNFyMXJ9Fn39I50QDvoh9ps83V+NjuE/ FYzt3MmYA1j9H79tDYpJp7OEvGY5sJCZrMKjABEBAAG0HUdsZW4gQmFyYmVyIDxn amJARnJlZUJTRC5vcmc+iQFSBBMBAgA8AhsDBgsJCAcDAgQVAggDBBYCAwECHgEC F4ACGQEFCQyoT5oFAk+fMEUSGGhrcDovL3BncC5taXQuZWR1AAoJEFJPDDeguUaj NYUH+wS18HZnyFexvxYTP8wHvp68+LlPCSmouq6yqwHaB6qkv8vRS/9lrEGff8a9 Ya5BeaSJ2+YllCIC6f3lnSRHJ3mINEGuny1UHpSMUys8vGdAqC0JsoLgMGU9GUE1 1bYgweLBh5Z9xa7UESLUyGh8GEpcdkQzzXYFa/rmQyfwOt8yw7OjzRzTuHe91b5D iM3u/DhqIc6HfJs2cm4HEf5Hp6WFQH9vKH8MTeQYGAoxVZ6epzoRfTbbrDX8Dd/v hoxMYATTOOc7/kvITSqFxJ9cWuthHtQ6zwqR5dsMXl+XMPnDD3u8YP/xCgnhRJ3I NAjoUHP76YkFe33SRkqM4oKzY1m0JUdsZW4gQmFyYmVyIDxnbGVuLmouYmFyYmVy QGdtYWlsLmNvbT6JAVEEEwECADsCGwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheA BQkMqE+aBQJPnzBLEhhoa3A6Ly9wZ3AubWl0LmVkdQAKCRBSTww3oLlGo4mICACr 42CZKktecfngCYzx0N39KAn55jiZmUeoxs8OGsbi7j98Bd3IU7tQEz7Czqsmv5D1 aACctF2n4z5i41ekpfzlzkHeSPrR/Ul3e9CjTVyYf/RYYwootcL0tJiBJK/Hyd0u 5mHPC+jyFSBoMYccncsnaOVrZx69tuVKfgLR9wk+ysYwrzXHAq8nuXhKd3SHJ7IP Zp1EoXhyYLL06kIU0/z64UdNKmWwNo2qtQa755KPCFnEfv2wDUXbHU6W53AVlKif pSijWxY5eCuyy7VWMfNuT28zUxS4IiCE3JKKYcxCkXjsaRbaUSSabaZpF30i/kXD KVidRkqSLkL1RQE1VRYmtB9HbGVuIEJhcmJlciA8Z2piQGdsZW5iYXJiZXIudXM+ iQFPBBMBAgA5AhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AFCQyoT5oFAk+fMEwS GGhrcDovL3BncC5taXQuZWR1AAoJEFJPDDeguUajNq0H/3FSIfM0aBB84iX4lOSn qzx9L6ubMWgOdYI0vTqDMnrWcbSYr706hVu9tGbKBncRkF5jIT4Qb5Z2QRCgVHMN xZ1/dtnm/sKaMPYEKnBo+gorY4ub4IxS5vpzi/HcR1APYyjxZ4a8k3NsDoImgVr4 laOwYA/LSvi0xWnqtP12DDwgUkx1Ay+x02CFMMyupLOJ7QT/NJOpToiTACaiiPdX xmVIQm0dbM2cWYM0IKaz4D+5P3H9nxEdRsMK3pSbg9UqHjd6J2vwbAy8IomMNYrh /Zi6fgx6MblYHe0DQ5LmTwcFc1FZZrZ1XHJGDBU5buvqaa5ZFFPcnrCKXAfRgEej 5gK0HkdsZW4gQmFyYmVyIDxnamIzNUBkcmV4ZWwuZWR1PokBSgQwAQIANAUCT58n 4S0dIE5vIGxvbmdlciBzZW5kaW5nIG1haWwgZnJvbSBkcmV4ZWwgYWNjb3VudC4A CgkQUk8MN6C5RqMyvAf+M+xe9XdwWWCEyJ3GBSMhmXnC+c2303IdafSoFsm7cB8l nzvSHhjPQ9zC6W7wyFgUs2c5fOh5TeLtqo2AOHkvcyGRgqMViW8hIPaJU9ekxfui uLwpGwArRJwayEeyMT74Ry5/tEsDLLchoBMU3627jzJEQudFM3dYtc7gsinZOefJ S0aXNOT9yjtNB1RsVHVNfwW1pEkxIKEFwWu/aqcMA3jBYCVhs02jZg0jYTbPqjUF NPv8JFVb0+cSGNnGpmYKHQk8c+t3I2LLIthcDFFwc+eiPsSf39HrdP+oX/sFK9yY s0m8QlLR0yoJ2zOehy8r4e3vGWGN0iDjfAYojhPZw7kBDQRMV3jbAQgAyksBRs9a IpEU+j37aGKMhntVy4zCIALaZYV+E75nbhY3yjxHKiOlwOt4y8n4AxIPGvm7qneH acnASuKtlkmn7KvKhaxqVVkbk2l04w4kaHqDV0pGsve8CLv2KLQHDwq9MEKvwPqv ep3DXyocpe75cmvXfLyaTbmPk46+qPcXGlfNXXpMJbjy7RH51glx3rZS5uycoijK oNsblHdLCPvaTgpwyw7bHEpkgpoIFLoUwCog3xyUDZeQKtJwzCPDeJLZ8hxosye4 y55KxcNIvEzAyV9dru444rbYVBm4W2lE15mGsaNZWzMcHohj9XRWepDCJwCC1i98 eImAPsnoW4O7BQARAQABiQEfBBgBAgAJBQJMV3jbAhsMAAoJEFJPDDeguUaja6QH /2iofGwiJ9v59fmONgldH1o8W4n2A/IKAMB6xjPsSnVi/foAgl0l99JDOzMtVWk5 Sa3tk5Hml4FDipAYYcfWG6IHlQ5CnRxdTYJ2mAU9eVjf60xmyhEgmvfC5hUPZDVv PeVouxzGCO0ZhnGnJnos0v3FXpJXL0bkroCyUWGDrwH708hXjWdwS0cNqCqsWaZf 4k43+qdPA3qrQ9kdKDZTlDENDp4ORfiXr0Ae0fGMnCVx01qQfgyYY+M+X6CcnZuj 2FtSaogz6k6ZDrkYC04XdywznP4eBWnokNSO/RGNAyIlsw3NwGu54NGzygaBQ+cs FP+168tqFBrd4DNIVjsbY1g= =KOGO -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/DDADB9DC 2010-07-27 Key fingerprint = B678 6ECB 303D F580 A050 098F BDFF 4F3D DDAD B9DC uid S. Nicholas Barkas <[email protected]> sub 2048R/36E181FB 2010-07-27 sub 2048R/BDA4BED3 2010-07-29 sub 2048R/782A8737 2010-07-29
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBExPKloBCADqhzBB/vYRc48HeilsVn6jNqbAvJyLsXSw281lu0joK5EHY/0u B3h+RmSSYcd23UCyLrMn4a6qGIa8T086feYEyACbwORe/4kFeuFLNmgZbAvs3ePr FTg2HqvErdhT/DcHLpBloAlJefwppKrN6tGyM6M49wvUZQhxq0TNZdEqSDM1MWnB dJsS4M2MNEO2kyBgLgcedb9h4uCK93AcEFzVImgW7+QVh6/97WNaHD0YN0TtmE/e /oA7rV5J05334kT8Y2Ejk9gIVVcKcu551P5FSn4uS2kZtuLMSJ9rgkM458p+s+8J vY4nhCB2cvT70OMx8I+2Iqlsztl/mf9fuGNdABEBAAG0JFMuIE5pY2hvbGFzIEJh cmthcyA8c25iQGZyZWVic2Qub3JnPokBNwQTAQgAIQUCTE8qWgIbAwULCQgHAwUV CgkICwUWAgMBAAIeAQIXgAAKCRC9/0893a253JD/B/wJIERQO91u09cz6mk7V4Jh Wj6+9ptevVDWTJrqM+yOhSEvaGxUqBAEhhhuIkiWwHNr5DZOEFBar5oQrZ74rOsR qY5b4/J1IYxm6B3S60KY2wUtazd/9Gz36lKPY9QmkSg7UcJXlPh45HTmKIXAjmNj ke6BUTrVYyXrv2CAtxKgSmX9SQFvR2j90tu5pu4LrnWujh/MK+DNY1AVxsKgEXPr KFYvLe/2YWEtyJFh7cNbtWt2sl1JAhxJ9mIarBrzLoWpy/AjogMLWIcGoAv9zunV tbWeoq9TkFzIi14kFuy5WJkBZynlvvwtIqiap+iV1qv20UBzVFLA/MjZ8TlM3pbs iEYEEBEIAAYFAkxPKu0ACgkQyLJCen51gqSVpQCfcYp1zGIiKNlGjaLdIz7HChcz uQAAoIYU20rzffZwbZNnvHpIIEIi8WcvuQENBExPKloBCADq9E7GPd/YXTu56kc9 HEbnes9oG8+kN7v3c7Xnesu1N+B1R/cb7au9sA9Ao1LOJrqMd/jXhN3JlwYlwyQs kmfCZSh3J7EK3v+6vZ31zjv7lTi3kRyqqwRN51HNwIoq73nNp+V1Eu5SzjkFiUVo 8H3V2wkSdtJygXT/BI9QY3A6pm7S4whNor75Gqyr7C15B6teDaVEWB/Zc7XqyQwL 6Xy//1GdPCPeaqkNKYmlRyzz9SxJ8lnt4vZIK6CSeuRtJAscIod1XV+yaO2aZxJQ HjBVOlsktm+Q8//svB+UtziQ0HSxUri388HEyNk4MIxHx8nWySBVzmsKPodw76pX TmrPABEBAAGJAR8EGAEIAAkFAkxPKloCGwwACgkQvf9PPd2tudwhDQgA47c2h7lT lSnwtFRqhRPM7jByR4TN9BvK0TEcrh5jzGyEgrfSZCymgE43WpYO8emOSfTA/b77 OFiewH/w4g/xZqV6UNDjQ6PWQb6oLvxERlagBOZEh7yx+13uI/x0SFvcqPdXgPwy SqcHLMkYdy9IWJOXt6BPNAQ8st9qBX8ThDuLavbI0j6wrajQH9CtnbcAH3/tQ05w 9wXyNU7mWW+zA6h6OWWMRAyKYYfjdZhIA5Z1OiH8M7RYACJheZKGNze6VHoJGh7e QFHAlBMWyDB9gMyXj4sapf3ruiJymvu9cQBSlPiOD6MT27IyOmO52rMakwbYdZdr viwiYtHal67xjrkBDQRMUZiOAQgAj6wYdH2nsYMkxnY82KyIHC8Eh4r9YyuTmyNr vwOtXgSapxePv2Efcypkni9tdE1LnuGI9V0kPr7oFq7KdLqHxGwsBe75jV/4krHO 5K5NQyOtih/1a31KBOKi5JWU2nFqUz8AzUYtUX2VKFZXOshyQGx+rSFy83rawe5f 6JjWL2j2XGvndfkoWRV2fs1spe0pmzUPsjG6CgqDScIWwDqmey7UShR1cbxH+Mt9 th0sMuM6J6ZO9tXpGOzM4CXaMU/qe1AiQCX7Qve3A1NFCCOofBt3x6xBSJZOko3P 765eYWHvdBSddm8csuzPOuwGN375ooltfuK4bCRoaUOxCtDKiwARAQABiQI+BBgB CAAJBQJMUZiOAhsCASkJEL3/Tz3drbncwF0gBBkBCAAGBQJMUZiOAAoJEMd3KaK9 pL7TW8oH/RviVB9OmDURm/CKeCbva+7XACaJdHTgsWnEyPG0rjX6MhkCu6YYtlcS K7HsmC/U37gs+sQq/n/M7Zd2oMd1vnYINuiIxHDyxIMnLiWTEgNvjTXtFaFggewD BNGg2i+2h0I80hLVTHPBqbXKupIwtdFQEu39exF8jBsJTfPnjbeboxwFTuCdiiK4 4CminqsZ5CLDWXHzCLqC0CyZkJ1Ka76K6iOhUr8Impxqeh/JW08gBu9pN4ccvCrJ On5Zyw8A0Es0cTRqqnsbcgBjoUY3+S6mEvYQPTfiEh0oWiJGw5dFIHkhpoJGxmn7 6+lA3nvxgvK/9mdQU4jXoYGI8qlJ55EXygf/T8S6pvkSDB/jbB0dVjO0b7D7hG+I XYPwp00rZ8VHTxairtqqxTAU8MaXXnJFIm+owa7OYYB4ctPuIS7tW3fLJ/Q9P8bc h8hZb9pDa9Ybuo4wHnxrgmytDA7OV6qeJEAepP7VhQcjYXwNlDsNKlghie9EJliP WUuZRapKXcv1R3MpC7dNG3I8FVEY3K/+ZH8xj6dcHEBw1QXihFGNF5frTOLD3tIn QwW+B2+JdWg+7MpUdf8ewNkBGfRAYNnH7nGkd7QJ7XEY5ly92RtrZo0AJudKz1HY Hg5RdUX2Pi/RUOSZ9bZpZ4v8gKqhNgWpAxIl3lgK4Y3D66nmTAZxv4z7iLkBDQRM UZjfAQgAzVZU/brxCgrK6PgB3Q+Dvq7l9oHmh/Tx7wRUqB0whf1PDUQ/G1isZbH2 1j/kkB/Xu4NDEk9HObcfwLJ/Px8AeKgzRe+MO2sK6A4mfsKli3VUYnMzRbYmmeRb KYqBgski+2Ne4BlOi+eRmzq/jNbql6TmFtePLYcYaxKtarxvvOP+bmcsPLT1eHMV kiU6s7xm6JpBhvv3mR1/EGuopMzgtxKQLTGO14yCbw6N6PplUFqFJee/TnNwkMCI ixFg8SW6C2uCnzstmTtGRu8IceYF1J2WZoTacna0O4oLjBB3gwWqyxKF5B9ytwhr 1GARL007xvQ4o9iz4JIu652nTHI2lwARAQABiQEfBBgBCAAJBQJMUZjfAhsgAAoJ EL3/Tz3drbncp9QIALLfYa0pzg3hzMK5SlHl45r9K+oFpXtK3JvW8l2U4PCnMjQt Z29bdPk5n/aqO6IzwgQm3zQFhXK3M5o12Bhj0oZu1pzOY8DDiXMgR4czByqzrsFP dFUsLmkzDp/nlAqsjBoof5YnYk1YoiHaBwBpEQvU2N5UO4GVGsC6K1Osw15FX8aZ HS8WTOzRGe/ctlZRjFhgY8kyrRcvSPNrJlx7pentqqMMPwDQzp+ig6YECQuPTPkN JkUdQ8GUTwVpXcuGRIhrWNYjbzuWcam8ywaXmesESvIJ+XJqJQ3eqmy0sspGsiXZ w7zsUcXBoDCfj8IfFwAxKholDgQBBt1pQcCbgIk= =zoiI -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/EBADA82A 2000-11-10 Key fingerprint = 67D1 3562 9A2F 3177 E46A 35ED 0A49 FEFD EBAD A82A uid Simon Barner <[email protected]> uid Simon Barner <[email protected]> uid Simon Barner <[email protected]> uid Simon Barner <[email protected]> sub 2048g/F63052DE 2000-11-10
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDoMJEMRBAD9C2z1pr1D+V0OgztcnlU7sBqGQyjYFmzWhEDPquPdMQwIDtMs FH1QeE/90uc8J35Y2Ba1/O9b9zG13t2rSXz9zenGo89thgcaptTY527UAoNJZXqO 1UbBsq+wfOuVTAnFSue9bdgyzqx6jmJpIqvm8J06iesBrXyB70U1oSF2AQCg/zR4 QTdnrmfpDoC2vLpYdd/emmMEAJgbd14BbLebVrxUiS85dGbrWon1SxjxTza3vR1+ 3npc+VMpeoEOiCXaBwpMAq7dzbzalaU1dgkr031x98ZpXPIyEi9KkBLZ9kPZRzIV okH+XIZ3IU+eUFuLKuGg9xWtweOq4xL9X0Epe7uU3DouGaVN6i099zP9w2e2eLPk 07grBADECiS7ejh3pYFwe9dSOKN5iI1SlAqNH69mvMEsPOPYVbsJmYU6dhPdEWa3 O7o6CCho3gUejhdl+z7dnrsxHOHRHFAIr5o1gvIGkmKCn4H02KIr+S7cI11pqjJO mofEJ5w21I7Lr1fL7AA/7pZgnWePZaPeh9fXlQ8kAoJ/0UTemLQfU2ltb24gQmFy bmVyIDxiYXJuZXJAaW4udHVtLmRlPohTBBARAgALBQI6DCRWBAsDAQIAEgkQCkn+ /eutqCoHZUdQRwABATxcAJ0ZfEhRc3q0UIY9eZtY2L+s7glyMgCg/UjC7MEKC1xq oHWkz5Zjz1oaXCKIPwMFEDqOp3zb0kX8s7KhLBECxOwAoLku1efxcFzT9B3loRuu lISktrZEAKD37jQuRlMyWf20uU13gSfJtCeLl7QvU2ltb24gQmFybmVyIDxiYXJu ZXJAaW5mb3JtYXRpay50dS1tdWVuY2hlbi5kZT6IUwQQEQIACwUCOgwkQwQLAwEC ABIJEApJ/v3rragqB2VHUEcAAQEnzwCfYt2w8JvMG7FD8Ae+sBa6bUpaB6cAoIQM 0d25+IpshigRTM3djVgabwtGiD8DBRA6jqdN29JF/LOyoSwRAq9mAJ99N2SXxuOh SDt1dd3axBQS7U1dSACgjX8LFHWBZ75KSLNr22LMKuSEk1y0HFNpbW9uIEJhcm5l ciA8YmFybmVyQGdteC5kZT6IUwQQEQIACwUCOgwkTQQLAwECABIJEApJ/v3rragq B2VHUEcAAQFxcACfQfBW95c31MHGvSanzCk+D245McMAoI8nSI4dqDbGIPppKK92 cq098ZyxiD8DBRA6jqds29JF/LOyoSwRAnNHAKDvjMCXb8PXP0zufz/nEksQwwaw 4wCg0Li4kAQhbnKgLXOFq1sVB2GtfqW0IVNpbW9uIEJhcm5lciA8YmFybmVyQEZy ZWVCU0Qub3JnPoheBBMRAgAeBQJCHMdDAhsjBgsJCAcDAgMVAgMDFgIBAh4BAheA AAoJEApJ/v3rragqCKMAoM5MXsScnfdD/rKoHkyfIWAOrHQSAKDDLfdDG1pMsfMa /4O0QPY3LN9hFbkCDQQ6DCRDEAgA9kJXtwh/CBdyorrWqULzBej5UxE5T7bxbrlL OCDaAadWoxTpj0BV89AHxstDqZSt90xkhkn4DIO9ZekX1KHTUPj1WV/cdlJPPT2N 286Z4VeSWc39uK50T8X8dryDxUcwYc58yWb/Ffm7/ZFexwGq01uejaClcjrUGvC/ RgBYK+X0iP1YTknbzSC0neSRBzZrM2w4DUUdD3yIsxx8Wy2O9vPJI8BD8KVbGI2O u1WMuF040zT9fBdXQ6MdGGzeMyEstSr/POGxKUAYEY18hKcKctaGxAMZyAcpesqV DNmWn6vQClCbAkbTCD1mpF1Bn5x8vYlLIhkmuquiXsNV6TILOwACAgf/bGaz5lw7 KGb1+Yl0n+GXfFF/OwDbujxVoGn1KM+dKbColaX44Sr/L60px4cQ56ZxX1e6hxJi TaLrrtx3bxZSTUlJuzuNdOA0vfcw4yQzrPql12op9K2DVeoo/WzBwZecM1eeg+VU s4vlQuG46c3NbeTvXpuSyoHzDVgf5XMtwI/qTditup1g6tlViur0BMrUNJ6WZSpO TLAgN1DKjuEi1FGVEs2n+BSEGBk2dM2325j6qYQtE6iXEEc18s/xyT+CSEQYfAP3 4/4UsCOi4pmuy/+OlBXYEv7rg8O0EpUqT4Po0BbhrMCdwzlhbb3LpMHyTwYSPdEi A9+h9Mv9c0QK9og/AwUYOgwkQwpJ/v3rragqEQIJBACg27m44rBDabiRWXVEGny1 8o9/o+UAoI65F9bRERosGt0m0f0q1WwwdGcz =HMUk -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/9ED4C836 2011-03-28 Key fingerprint = 7400 D541 07ED 3DF3 3E97 F2D5 8BDF 101C 9ED4 C836 uid Artem Belevich <[email protected]> uid Artem Belevich <[email protected]> sub 2048R/55B0E4EB 2011-03-28
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE2QwLUBCADc/D9RfANjFOApCDIAcYU4QeKmbk+kMvSHrKgesr1OFuIMdQRE n6O8VncPlxRvElWRgLCwOOm6wW5KQDqAJ5poLzNh3GQ/DljGvZr+VmbK8BRVM/ik oFmzv/7ebDY8e72Hne7klT9K6TIIeP35BNL18ft0xmhrIlVQHWr4jXz0pl9gzIwp qnkuwdd8X6I/jsvPCEiXhqB0px/LEFgtJ9OR0k3MW48AAmVir/aWAQJ3/vysNLXj T8jJSm9QDZTuyFCHmT45TYhx6oanFexpvGXtYr62cBAk3rlMiUcY5Mp938RQzjXY dB7dVHoTtDSb3eJRL5ZZpXROiVnulcRv1ZdHABEBAAG0IEFydGVtIEJlbGV2aWNo IDxhcnRAZnJlZWJzZC5vcmc+iQE4BBMBAgAiBQJNkic1AhsDBgsJCAcDAgYVCAIJ CgsEFgIDAQIeAQIXgAAKCRCL3xAcntTINk42B/97vlVDERJfPNRg5kUFqW+R7VHN q1atqa6xY6r4NZzjmtkeyDVItzwSOohA0H1N9NsgNaJStcuruiqyfekohnZ3xHKi PMOwfebH1zX69K+J7M8GAtrT0APifScd+pU17kphhqjLoCoH0BY3AM8HR//AJkKb U68GZF1fA8LWdRlfx7xZSalPyQXMibXtfmb7t/AqoNgQYs2nXUhs2ENZtZHDAVlb 2/LkDJ6OezOW7/Q4KZyeYcgzXYGchkXGhCV+8fiP5JZMaXZocJ8saO1R7pxR/fEu Lc9oQUCPzx7m0bI/mgmO3aKOREXrQTRX5ZwfAuLubEHougfIMfzIfAq/Iiy1tCFB cnRlbSBCZWxldmljaCA8YXJ0ZW1iQGdtYWlsLmNvbT6JATsEEwECACUCGwMGCwkI BwMCBhUIAgkKCwQWAgMBAh4BAheABQJNk67XAhkBAAoJEIvfEBye1Mg26o0H/0f2 oHP7o9zgcetork2zFEAlQyDYHW3X3IXXMrTk7xWsHJuu6hyVeeDuVFzp8TkrNOVq P9+hZqzy9g40iFXzQkFWo0X576XokQXk7rAqYCr0OBUDZ0uDrltMI1VoEtODCcdc bJMd46zchrhq0vl28FmwAXX0F8zH/9I5fWH/KWfUlQNGs8NklCP2HueFogrGeSNE lHVGmIJPqa90WXWmDZOBADeMBiWqLzgWR/0Vt48B7PJ1vwrJCyedbTGlwdbRaXGn g+Gyx0933AgPWiqobSvXOddqXVXj95YSqEVUlh3BQlj3ZbOxbkleyhf52mi3T/jp AIztYwhSi6iUHj/QRGiJARwEEAECAAYFAk2Q2MEACgkQ/95rP8ShvBXBLwf/UIB1 ITOTfkmDamaR5w3FEKjQU6xN+LBy3+EBwcRiF5ydYLSdPmp5WpVc7EevkT+9Z4CL zzUQtx+Eyeql1W1PuK3SRAY98cmtNTE9A4KZyeCRgdoUiYqZl0bIzNKpAbNEFdKR CGOqt2/VpvFwePuVM65r06yL5qpL1im7Qlb3FUw40haczggd3nGSfq3kVj1Tmii/ qDsT2ozkgIqbP6ubFXrLrElr8f77cd0F6nSnfjJdidju1WUsRPdNOhaJs6b3xIla BITUdDmfW30VJ62iRNhejbYI4S3zBNQt6yeGQhD2rLECD6ApjYjHEkMgBelnnkt7 u1mlLz1lrGvk1dLnIIhGBBARAgAGBQJNkUtVAAoJEAsVQr2N9aGwA3wAnA2nWLTn E3JUtZuYrJ7NC5CHeV4mAJ0RVXXg9vDYFcqBmQnBNHWcmyAXaIhGBBARAgAGBQJN ke2gAAoJEG/I2r1/mpuimZcAn03PXI364s2DGDD50ClvVWyGaVWPAJ4lXabM9YA5 1JKgYqXLUPCcuo+pyoikBBABAQAOBQJNkeaMBwZhcnRlbQAACgkQZWCprDT5+dW0 DAP7BCGFNwYNpunxjM41mk4LRgHUAmeml2n2iVM1rCx6E+ph3SoFORJBJVLVaExp GEgiXA64K70M14aaN2BVKMjxmWyRGcjbXuslWNzWi2xLFX9+g/hj42CjW7+0mFZe /kXb/5Hnj9KnKGjaUKtyz65mIH6OVBPjdw2tJwCB8kQsr1uIRgQQEQIABgUCTZER lwAKCRBO0l+IUo9QMPMrAKCo5kaHkO+E0gxZbjMA+3yHdMvTfQCcCH6ssxbaAdXS lL5ASz/aIhXEZbmJATgEEwECACIFAk2QwLUCGwMGCwkIBwMCBhUIAgkKCwQWAgMB Ah4BAheAAAoJEIvfEBye1Mg2fu0H/3dwETQ93nmEorD13/Elyp8SNPiHCoLyQ1uF GMQyLkZpqazvzE5WKdrwdoWLHkqMKevm8XBqtt9F94Trce7iT249tYFyMQb2+Irl Xha6DVFYE9y0p8vfc1nHQnn3xyHrYA1jFRN9Rt+ha3YKtALq7iSKleovJLwvCHqF 8z1IPUU3+8IOw/2KzFMGb2I+vs4HbYr+Ed0UfZVlONkMHyHfZPN18jUZbUqNC6GU 5TXiVmy0t6WTsth6UQY8d4EpIP+4griCAevy8Hqq0GnBUz7eyHoHJ3/U/H9+1NgV rIFHh+6UKHkWkmVM2wTM+J2E/bB27bNmt8noNaxHDip2MEzZZGe5AQ0ETZDAtQEI AML9itZRzpVYiQDfGcj0/YgJP/y2jEDGNnuN7Of9sVhhzxMvEXzlSd631b656kdT WcmbBim6eDtjRlbKJIAIbDyMXekTl0LLwWL0yfzaRIXwFxoD2CL/BbmWvwaJeckW VsIrFIXK3bLWulCfA83foS76azHVSOOp9EZQg/cJOaCOt1zyvS8rS8Qx0QBp+vSb ZHA1lDI2WYNoAm2e9lb3wta44es9VaCBWobWMRgHxIWrkjmZs9e4ejXKO59YEkng S53AylrZVYlyrKbeskqmxn7z9y6ciniFD5af5cEcGfuC9BH6i4Jwma+3ZWgGDZI4 lOgzLWd4TS1ZD+jAeZkpwZkAEQEAAYkBHwQYAQIACQUCTZDAtQIbDAAKCRCL3xAc ntTINmuwCAC41x0gd7aeTRbtlNhYyuGmHo/yHMqHdjmiXTtsBCrsipSAQZQiNiUO XupVArSGB7MIaatCtqviOAyQ42172onOzcfB/iQRj0bknjNbItJMqtOFz0u79vN9 JmWxYcFr5Mf1l/pupFcgNM0zt1KQkeOGm5Y3WJkq3CkAqIsd/MDbUU91Y6kzj3ZJ g6uoPYYKThH6KX3Y3undXTv1jlmPdbMHUYFg1GzvY2ujQJeQisMDfxWV2COYSF+Z fa8kp8xfSMnCWJCnbnmDdRe1W3zQ2uDKvoLBQNoF9lLrYAEzu3M5wKS1+W1Om00P yCBkjpo4Ly8FcmqW800W8yVAArhNUCID =IDLa -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/7A7BA3C0 2000-05-25 Anton Berezin <[email protected]> Key fingerprint = CDD8 560C 174B D8E5 0323 83CE 22CA 584C 7A7B A3C0 uid Anton Berezin <[email protected]> uid Anton Berezin <[email protected]> sub 1024g/ADC71E87 2000-05-25
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDks22ERBACsqOob/YoPnaI/xubQKn/CCUFsaEMqL14TZ+FSlCphq3uZ7Y0W Qg2eqaTp97lG2NTVNEzF7K0yr/C3ofEQmTINQTd7DmEj04DDlR+t8BMFe6Xz2sBI WlEPD54ZfJVqhEX5P6T0xe9hiqjXKwQHHl1skKniKeO07o3K/4bCDDMfKwCg5DY1 /2j/Gid0YmxsJCIlg9kzRGMD/1lkSkQ0KrPH3RVPMrkRWE3rvvMES/F7jYNfKDQj X5lJDKoIQyWh1JwAmW/O10V+24Vl6JEFNQ4QJ7ix9hlkI59YS4TERxCUGGDpl3jr Lae6FFxYc1D5H8LLpiTSApmZcLxUE8CFoZJLySHgjp8qzvA60wMOjkfkWMgw3BpE N8DVA/9UF+5ue4bLHsPn7Jv5NzOkzaTgC/9O3UZUj/jYOp/vkI+0wPnP0U5f304P iLpYl1tlCEpciWF88MS5k3+8zsk8trqorss/XQfFzhHVtvRtgVxj87V0Z01E2ZZr YlqrnzHKQZOAKM2X9FiRZOAkndkkpeB+7SSeXDP62I56B+690LQfQW50b24gQmVy ZXppbiA8dG9iZXpAdG9iZXoub3JnPohWBBMRAgAWBQI5LNthBAsKBAMDFQMCAxYC AQIXgAAKCRAiylhMenujwBepAKCCtVcVRS40E9SY4Su8GTOBVoH4UwCgu3gK3zMy /QhZnnhmTKaguG6XopqIRgQQEQIABgUCOSz5ngAKCRCBvdPEDh+beRnEAJ9xU+6P TJrLGk8PKtO+UY8Zt7MTxgCdHYzFsXZ81j9HY0Z4EaHkQBXv1JmITAQQEQIADAUC OS6PpwUDCWdTAAAKCRDXjLzlZqdLMXMaAJwOE+6Jh5PnfHc09x3JKN4/a0v63wCg 6GdysmObSBQXATzYBuhy/0eFCCC0IUFudG9uIEJlcmV6aW4gPHRvYmV6QEZyZWVC U0Qub3JnPohXBBMRAgAXBQI7JNTmBQsHCgMEAxUDAgMWAgECF4AACgkQIspYTHp7 o8CQ3wCeI+P8VsHzHpfmUMa5kCzjBeqj3zcAoKYmyZUSxhV9TBQPo2WQ7zF3zcoB tCFBbnRvbiBCZXJlemluIDx0b2JlekBjYXRwaXBlLm5ldD6IVwQTEQIAFwUCOyTV DwULBwoDBAMVAwIDFgIBAheAAAoJECLKWEx6e6PATIsAn3clXqExEiP/Q/IDQb7e /yolgMrRAKDPw+6ZxTOJFba2HWEto0PwQ/COE7kBDQQ5LNt+EAQAjHltp9g75EOw pEDSUvK/B0aRUsjoIyAokRuW9Tg8S0xIhtV8ogcklvcXjQbjiEsAiO13hX7zmdmb yH7xLiSjea/m/whmNr9K094BS1K5i7mmUqNEFOyPB7VkPbRs5gF0dCkHT5uVgqFJ HSbss3zPyGYEBi8uDokIfOt4o5CEMYsAAwUD/269N/UwZkO4+NYivNX0ZpcUouqV YDPQ8YLwSrkwWpG7UNvNHd1HS43OWwAOy585SkLpZkjlW58NqyXJuWVC0xJtdTrI MKTZ3IJNXMK2wdK+nBuTL4IvJwkf04pwFel80F2NtgUjR3ZgIlRNvFtvtCkNPg0j t7J8pPvL2vU5hz7HiEYEGBECAAYFAjks234ACgkQIspYTHp7o8Bj7wCfSZsld8vv iM02pWobJy/VvsBJKU8An2auT0HLmVLClDph/fQa+k1R2qsR =ISZ3 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/D129F093 2005-03-02 Key fingerprint = D3AB 28C3 1A4A E219 3145 54FE 220A 7486 D129 F093 uid Damien Bergamini <[email protected]> uid Damien Bergamini <[email protected]> sub 2048R/9FBA73A4 2005-03-02
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<[email protected]>
pub 1024D/5AE7D984 2000-10-07 Key fingerprint = 1453 086E 9376 1A50 ECF6 AE05 7DCE D659 5AE7 D984 uid Tim Bishop <[email protected]> uid Tim Bishop <[email protected]> uid Tim Bishop <[email protected]> uid Tim Bishop <[email protected]> sub 4096g/7F886031 2000-10-07
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<[email protected]>
pub 2048R/D25B0682 2012-11-03 [expires: 2014-11-03] Key fingerprint = 225B 941C A886 05C6 1C87 9C03 DE72 593D D25B 0682 uid Grzegorz Blach <[email protected]> sub 2048R/5DE28719 2012-11-03 [expires: 2014-11-03]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFCVjegBCACjZOtHgTAG3s3XOVJt1VVM3LZTKKx0K5Aip1c4TDetBTkNIPCb V9UiflZUGv9v6OEF0O5rRwS6WwTLxjhuA9io9mSBWuCfZywsRSShpZQbEMZq5/F+ OgHOMav3Gc+ITwvM/nFPtU2OHj1h3t4n6IBbuVfPh4Yb9TJsAWQlUchWAOBj7CG0 oqfR2PuDbYFtXNnGVrpZZuxxBI9onvY0n5w2gmtmO9+GFQ8Ob9K6EI/jwqPVGSQK Tch14aaeRF5Uh+Ua7UDXKyZFBJUuGEvtHcn7eDNFEs4SY4tW7he6VGiCwr3gU3pZ CdQwEUDwXkBm/JZ8JjsDOq8NVtTX3d0mViTRABEBAAG0I0dyemVnb3J6IEJsYWNo IDxnYmxhY2hARnJlZUJTRC5vcmc+iQE+BBMBAgAoBQJQlY3oAhsDBQkDwmcABgsJ CAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRDeclk90lsGgt6gB/4vyw2faWL5MntH grGiwqdeCdm1x++zGjxrs30RLaHPmSVXYA/bQIBbnVs/kR2wRpCO9fxl9xQ5bBnZ vHwK9+hbGqli/eqWuvgwRYmkIAd/xLVN8Ffyj73RXRead6bmpOQ8e2Osabttyccc Un4V8OZptpIYLbdnVGsiB147GYnooPv5uJ6RD+Wz+iSORFzcFEA6VD0Ft6vxe1on +dBxpHO8Np1wID8JH3Gl6oGfpYcPsp1QVknMZ197+94QNHgN23xzDVuKkbjFb1Du N7SegRdm1wwhF0QlqIWPIQT8jXY7WX1NWV6ns8gOUXChJxGMPRsOxCuhQJp8crsS q32CqqDmuQENBFCVjegBCAC56QSMFVZjklZSA9mxNm6GZyBcUoAYISM2hg4QSN92 /8CY84TXiAB9x8+KoYeVukMu5B/2BhNW4bWA/3GwMk0tn1s2ZEVFz9ZbTBPmTA1Z x1wZOKdr4Y5feOO73ouBW1cyR4AgbYEsQtllfb3yQ2CukouEJNjesDT+zDAJnIS9 JG+1MGngMIxddKasNfBliiN0iNNbGEKpFvcNpTBnIpbQ55/yMMJ9CZmey/1HFKBO setIET7f1Z3f2tUoxku73QhwfwBlrw269S4Aeuvk80bZa1YZLoQiZ5B2WqFz4V4H uxk9WgqOQ/gJEFCOYkpLjSctCuFQnLefsV44gveB+LU7ABEBAAGJASUEGAECAA8F AlCVjegCGwwFCQPCZwAACgkQ3nJZPdJbBoLnwwf/Z8bFOlDaLWkCP4K8Uz6kHGno nvRPc6l76aJhqDPceEiDU1DumjTSokQNj2i9jKqhM/b2cPLIwWbYbkypLer9R00o AJcM1i2nkZXRLRMIFfQTZUmXMSZvZ5NG+MyiSAI9zpfw/psgUUad6mDUZafYVWez KnCFybbJ2TwcFzFcHxi4desKNnrh/NTIt7XyFVof9Wkz8Zt9cGGf/BxQPA9oPbvd b8wN9Yjegb4OunNmHc309cuVCktSlr7u4kdMUn0LuZmi4xZj2XY0+GuHErD49G1b x4+G59TE5S619vSAcdjtmvXDvV8no1Y9ENp/blCkeKcGBoWZKc6dHSw3RsMawA== =/8wY -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/D300551E 2001-12-20 Martin Blapp <[email protected]> Key fingerprint = B434 53FC C87C FE7B 0A18 B84C 8686 EF22 D300 551E sub 1024g/998281C8 2001-12-20
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDwhwB0RBACelK3FYxd6cT5ukbiSdVLHPLfzgH3F34JfS6Q4FMXgEAPtx7iy U4Lc8A4Z2gCq1ZHBZTzKc61U+nzHe+eUWtAj0h3qDP4DOd7JCZbh4SW6dMIC7MAM /9J5br6e2fIIn3rzbROXSW7CJPox2D/zZcT1b727Wgy5NHUob3qej/zhwwCgrZ0o KBapUXgnKhesQzKlH2wWCJkD/3njAzJsFS7nDdTssMtd7ip9W97uNOFLuJ1/Sg5S 332BUby73hNzSXlS4rhtQB6NVBRLfGASuEYBJQIEz6aao/lDprIxTusCTrO/EGqa Dy5y4XE1ClIyZ0yVw05UJiTOZ7Mu/kUTBBzQ2i15lxjzXBt9pNifvtcKBhcDmdzQ zepQA/9Jio4IBFmjPDsl3kpvA8KqP7VXKFMMBVT9SztYVIeiFgbvff/YCqzkE5RD 0PWUFPF3o8rzsCovlpySfUNLUlfqxEZ+5+/5ky7AbJ6Vmyn7Tl+mBSZs4mTV7ktN 526ngUaW2j+aO2SdWao/di+sRutrgRjJqyvgGn1YGnrSoKbMJ7QYTWFydGluIEJs YXBwIDxtYkBpbXAuY2g+iFcEExECABcFAjwhwB0FCwcKAwQDFQMCAxYCAQIXgAAK CRCGhu8i0wBVHh3IAKCDMueq8RCcRO+3Lc+uQyXqDKCf3QCgpVWa7oS6lTiNxwSP enZ7+4g+TkK5AQ0EPCHAIhAEAI3iAhZEDBjyJvPS74CXq1ypWvXfQUCYADCc/Cuv 3xrr1p4ff3oYc+IIVdeOQktKWRP1dK7v1JLmqFsNQQIs+NtgHyO+azyX5vJGVRTg aCIuMMTnrDBC7VbAnWXtTHF5VKmmd891Y+nk68p5YVnRPc/fReXEY6dA9lqW0bN2 f2jLAAMGA/9rMbPpnRy+uvaAQChkHvOV1RnDAhN2R+U9u3d0uNnv7sWa/TJrcdig KNUsUvXqIXVkqEMrYHTbCVC4mLMd51MLARiIKOaHeynRZYkEmdi5X7EiBLS9dCUe 7+vMz4jV6MRIGyr8TBy3CEFIdAnpY6EIVd326PzYIgx8UZw3oEvjGIhGBBgRAgAG BQI8IcAiAAoJEIaG7yLTAFUetM4AoJg56qwlr8E1iEs0F33G6POGCWnCAJ4mW9E3 25TD51pcom8Plwy1BkuBSw== =oE+K -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/A1F360A3 2011-09-14 Key fingerprint = 3A44 4DEC B304 5191 8A41 C317 5117 4BB6 A1F3 60A3 uid Warren Block <[email protected]> uid Warren Block <[email protected]> sub 2048R/51F483F3 2011-09-14
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE5wBOQBCADWbqntvghQ1fBqaz7e+TmdobJf74hD8lC5f5qfAn6iGwbSJf3k 3wWyNJvXYVBXzDaYIuU0R5Chl3+bKN12CrMRD5oUpFEtmmzRObHfuGCCAwHvxt9k ex6ektaCwriwoJanRAhxGDOihUt6Z4GPh5N8ye50HfDC7WehKNs0ovOCXBFAx73d uxWDno2eMawnveTjhXXo+XGxqLWCZVs4cu8RR2xG5W1OXCsLaVRy2xuFRd8gRhjA 46XN4T8H7Db30tLKVVG0bzA4bhciGnS0BNaU3D3sdF+CzF6gcQcEwMirit1PLIlT X4rRYnzRaGij4keLJ/nccasdhK4eDCFHQpuJABEBAAG0IVdhcnJlbiBCbG9jayA8 d2Jsb2NrQHdvbmtpdHkuY29tPokBOAQTAQIAIgUCTnAE5AIbAwYLCQgHAwIGFQgC CQoLBBYCAwECHgECF4AACgkQURdLtqHzYKNPOAf/fXurCr2Ma2zkehWSsi0xXmpM V2U19nF5l8FoAkOO6yZ3KIQffXmYx9vNG6LpHss3VbZ8HwMQW/Mj/HU2iSElT/vk njrSTn+OwwPEN3C9eqTAXuQ8LU2QAVf0GCviKD8ptMiwBLSHNeAUeqxqVzpbGjNP XcgN+dBBcmscog1hxRA4DvxaCFCaH5aQ1YTyHpOiCmmno02+oC+IwbKZP8S3CX54 8opqPH8R2x3QD8wxHfwr/fgcbFZ+DFjcEIWBLgpbur1qJd9NXerWtIOfQLn9yBQD paHSmyETSoLQac6GnuUE9c7Y4mt7ONA6dYe8wW0u7GvRXITNkUJ/RvjdYLyk5bQh V2FycmVuIEJsb2NrIDx3YmxvY2tARnJlZUJTRC5vcmc+iQE4BBMBAgAiBQJOcPa6 AhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRBRF0u2ofNgo5UXCACAjadR flSIKuZu5KM+9W+VMDrPGvji4g6aJbFFXWq4zlmYYKp03kiqTRPAKtV6D8Syu5SC 2BuX5yYART0gTkxo30uRws80HkZDAs7Cc8eFgzAf1YJyljYeIU4EBhxxMrF2EoUE wSdTM5JFk/jgZpidsdpox8o7TNWDGMLe9cBn1TPJZw3TGSRQitjdwfnLGGjsCNp1 4HOkbqWggUIdpET3WaAnpHhT1FBnim5rNOvBocReXO2F2vtkqfaKD2hzc6qQMkPz 64PLqAsVTwwCtSEein5Ukr9cb68nn2GmBAZHlA5yu23h0M1E674AR7lR9ounAMzY bNQmQlq+tbSPmDBLuQENBE5wBOQBCADEU7rOPsqF06y46wCqfRu90Sq0Gy3R6GQL h1pubHbb4IQ1ep1ZcaD1Gpx4KvrMKCaha+iOVDN2WsDzl4vrB0KQNyeqtwDHZtcN VQ+RORHh/3D9YOp5EQ+ObJQddl4m3f5Y2AJ3kRG8z7rLxqlcvnPmuf7MYXg+zhai EcSYnbq89vBRiyzpZIODuXcGbuvJOdoAt+sf4CmAwe9eh1LLN+OErBjs/TjAe9n4 Kb4rUBhrbrCHHcWu3vnQcABfTOlWZ6+mr9wkl+Yq38nsZHDIx2RCrbDMpEEDCAlg WJ5ceqFdKz3VS+zKk+cz81jPREBOFBfRgVWMpAdsJFXhJU/1ueiPABEBAAGJAR8E GAECAAkFAk5wBOQCGwwACgkQURdLtqHzYKNKIwgAwCmfYjROytjVozXhF8Pw/DfX K/V+KaceWMlMjQfZgxA7pibbb1+Z7uhwygLZrGV3+QH/htdDQ1wvZrjOLFl9AIMr 7ylObT89n99riGjDNpNH4urIyO9Oxjoql5s6RMlpsOlnnqlstTzEHZa05JvpZTbI XKBr4AIJ45uqtr9fFwvoNF6W9NeQrDXYDjbTVrbQNbOEfRIE6tTr9csNwaFUNe93 eDdhkPFNHu+6Yrecm1DhVaVwiS9LKp4cmM8py16562Cjqy4msnSHpCNnQlBLgtv3 T2BXRsuxVCXviMsADblyXqB4b/h00n9rDyE3Db+lsrTjX0nhAyBGhO/XBnC3ng== =Hoyp -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/B32017F7 2005-10-02 Vitaly Bogdanov <[email protected]> Key fingerprint = 402E B8E4 53CB 22FF BE62 AE35 A0BF B077 B320 17F7 uid Vitaly Bogdanov <[email protected]> sub 1024g/0E88C62E 2005-10-02
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEM/sJgRBAD26RM3o9QC+V5JO6/zr3ffRnNb08Bc6YIvpTd8yUhc4AIa1Zbg QHoUNZ0pOLffeZ3i0wnqV3lMV1cPMtvSRWlvh+XSiSg8hYlnh7+oAwmqs0Zev1r7 w/In683ytXREuidcak8qWq4GAkET20sIICV7Ye56HJDlKrtOjUWDhVQJvwCg8jUp CDtJ8V6Cw6GgjxH1iaNR1X0EAMKCUJwZgIoh2Rpqfrbwv92AD7dmaJJLVfnUSMCE GvjcZ+O41PpvWi3PkxmgA3Zb0sJ3OSfgPi3Tnj3Nllyhqnf3WO1Yumzq3myBg+F/ qH9a8BXvVJlk/2cbYUC6uJeGMCC971X3hceu51J41k0ano7/ALIWeoUC1HhkAOaP f7IoBADkQCDuIvdJ7KebBMgXIHwAJnycVZsXXQPlOx0gty4+OVMY9PfpEm7T+1DM mWwuckntM9tSYuInbUPco70LBxuHHBNnhiUOTkijZ5GK/VF+WPnqOEopkjL7LD2q wSYqGaBPbl/noAoEb3Nx7h8D94kJUF7Gchs9fCH6UxHd+/Q8jbQhVml0YWx5IEJv Z2Rhbm92IDxidnNAZnJlZWJzZC5vcmc+iF4EExECAB4FAkM/sJgCGwMGCwkIBwMC AxUCAwMWAgECHgECF4AACgkQoL+wd7MgF/cbhwCghoShm9pCHbiUjXin1mR+0HaU XvAAniOPVmeKUuBBKCc3KLPIhfCCKt9viEYEEBECAAYFAkM/zzcACgkQhdRQRWtp GwOrjACfRJUhoojMI3sBMsjH9IuCwj8CikoAn3RlHMmCAx7JIiAMmg2gC1qjIUsU tCRWaXRhbHkgQm9nZGFub3YgPGdhZEBnYWQuZ2xhem92Lm5ldD6IXgQTEQIAHgUC Qz+yTQIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRCgv7B3syAX91XMAKDJ89F+ 46BctXCALIn53c89waWDrQCgmCHSVr/rVUMU6fnyHtoNvYXtkFuIRgQQEQIABgUC Qz/PMwAKCRCF1FBFa2kbA/bwAJ4mwlXag5w3scB7heyAtqr7w6491QCghh/fVv3t EOFNlmwonrudaMSIYTm5AQ0EQz+wmRAEAKke9/e3jLaDx8i86+J0eTOAypCQy7WU QajhZDFqBHbBQTDRbcYG1dLYd/sC9oUwqgaLe+yEYw3JdfsiaiHsE2yZ/S4S2wTL 7MrUqOc1aVPu95c3Xcef13DKCMx36B4EbMwJa00bU5ut6/7tHly5Edb8nkn5vKP4 00TbjMa/3ZCHAAMFA/9OffxCzJmwUjCOxAg2GBberPxovtCtwAw7goKZzuga9+9Q dZBICMIc4l/I+zjDlphF/k9I5CQGOwoKTo+OCsZN7SSAB94NV9BEoA1MX9drWv0y CZJlD1bSrcPFVjWajXqC6NpAAiCdQapvV1sJK0F09v/RTHdPAZcRnpg/YS2jDohJ BBgRAgAJBQJDP7CZAhsMAAoJEKC/sHezIBf3nP8AoNBIM6JqCrnzQealKln3Tc+t HMPIAJ9td+R2zFqwuX+IMk135J0T/PXeaw== =bBFz -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/08C2226A 2010-12-03 Key fingerprint = 8BA4 DF2A D14F 99B6 37E0 0070 C96D 5FFE 08C2 226A uid Roman Bogorodskiy <[email protected]> uid Roman Bogorodskiy <[email protected]> uid Roman Bogorodskiy <[email protected]> uid Roman Bogorodskiy <[email protected]> sub 2048R/EC4ED237 2010-12-03
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEz5PvIBCADEywRgDxobBqM8Ue21Jh2U7HgS4j5gzACCKF6H++QcS0ohTbw1 HQXsnVMNAwp3orG+ksukxKyxOFVnf2oWsoQ+ZKg9+jKg0oU2fnTgsqlVjTHrWHXR Gp51w+swR4cQQMdO/v696KGD6igT/PVXUCliPl/SaSy3CMxQnMJiNVcUCf3F9Y5D vuceManrZJ43fX6ztkHuhyoGxH/AWGNU2UkZO6TKYo7zJ1TNG437gDTyKy3O5gtF PTqJ5OknqJPitoqLXBksjCwq3iyDmqKkppSi8JO2Su27pgwmNfRWo8r4jnLVpEpH eCd7Fu/TimB2McIw0mJgN4tveZ+u/8RpAXQfABEBAAG0KVJvbWFuIEJvZ29yb2Rz a2l5IDxib2dvcm9kc2tpeUBnbWFpbC5jb20+iQE7BBMBAgAlAhsDBgsJCAcDAgYV CAIJCgsEFgIDAQIeAQIXgAUCTPlApAIZAQAKCRDJbV/+CMIiaj70CACwDlzGw16o /Ucu1vtK5IOyIhChX3hHSp0MgDYcw7hVpmSvOnjIxgZfXHRlRVU0fvI18HaeHjQT iQ5MtEBnrUoWKFzMDFp8+vJ/0bDtDRIjIRMDimIxVdhHddPsdtzVLDJjbjG0TG29 bNp8dU5eUyfmtxOeEckz198WrkKVc2l7Ynh2n2KacslK86nO/KQQcHSj59Builns d7GBdLGZauq8oqowM7n2NoMRWDkX2TqVQyL+a6diD29KahcvF9wXNoTw8vVox/gP gUdmclhktS8ybV8eSd8wT+4lT+s4Fnv1Df3yMeGhMHYkCyaUgdgW+4mE+olxsGZs PdrCevva6DsMtCVSb21hbiBCb2dvcm9kc2tpeSA8bm92ZWxARnJlZUJTRC5vcmc+ iQE4BBMBAgAiBQJM+T91AhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRDJ bV/+CMIiajt2CACNuGoZu99U0gubBgNhrmAg1VuZTGTpi0PtqQ4i1+K3nWdne/di lpgD6PKNj2IWH9CRQpQ9XnGw1HnSFgc1YjNXMNPCF7zwkjR5rWKH0OJ8zkK/bpGl KymWLaIxFEaCUZpyuDWJBLXu8u680RTU8+6SDY1iDB7Wu6OZ4OIrVCPEpgLgrsGq eqozWHyS4L8Lqa717lmRffv78fRxWh9AdetpL6EG2IMJ4SyCTOTveT1H/ylMZtiq Il169YHlNut56Dr+Hu1BlJ/1YqWPFbQEyhRfuJKxt2XFyQDC3CK/9eVDDZfiHJGl G2yCxfBsa4KOF5COX3augYjVG8fjO2LIYBkEtCtSb21hbiBCb2dvcm9kc2tpeSA8 cmJvZ29yb2Rza2l5QGFwYWNoZS5vcmc+iQE4BBMBAgAiBQJM+T+kAhsDBgsJCAcD AgYVCAIJCgsEFgIDAQIeAQIXgAAKCRDJbV/+CMIiahpBCADDMiQVoIId4eKs+zn3 Et4u6x7uqXau07Oaa+Piyu80VY7+D8zZlccZb+fwJzIg/AyLnpjoJQWJbnbaktrM 4o6Mz6inO0p8jdH5IaFOJezl1sZcQNWDs59zGoIHdgTd9/r2KmbKxLphXsxrAfZ5 molQvKpbOTCit44i9Db5jrVbUwA+AEJm/YNDDB0e2kvQ44YDFRdG53erOIcJ513u gtWFj0FKVhYIQ7s+lZm5nELc0gEvI110hu0VOZDe5gFwZxqQikNjzj+7dmg9Un16 WYufSXxNV4ZrUKZfstGUBJh8WM0HJXZmdo45VCMcK9JanuFsM8r4KiI2YtsLrlnI jftbtDFSb21hbiBCb2dvcm9kc2tpeSA8cmJvZ29yb2Rza2l5QGdyaWRkeW5hbWlj cy5jb20+iQE4BBMBAgAiBQJM+T/EAhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIX gAAKCRDJbV/+CMIialYSB/9nudV91Z1EpEZDCHNnndusvZznvd1OK5bKm0bBEUnj coYk5LgCJ7pxJF0vhGFA1Nwd/b8lH7e1E/G/WvAQT80oEnFwVPs1IVD5LNBcsQUT YoMuasJt/4w1LCmCN03DuoN2erPHl6TawPr0Jd4hdP8yTwPMlG0MSZCHYA4iwqub c2aKOoG0WEwazocyfgidsiU2H8kY7UtY22Gw0baOO2ZfBx5GKb4gT3LIt4HDBZLW OeCtvkwgf7OIhN9vaPpxIlHC/eiCxPiqacyChHlc2GrrbVka+siKBx9kcTtIdKAB ObqhAGSmOmcWblfmIyfog9o5Ay+/yKebOBwhNnM5zRhuuQENBEz5PvIBCAC/11gz Xp0sE8pczDkJ14UmZRwlx1HsQemL+D+x5B2hBvBZpgjBUEKb3jp09za7LgVpkwck Rs57kKWbtXmVJFlevT5Efu2nh+PhjcA2yaZeekLrMke3/AaeXg4GATCc5wyW22c1 v+Yyn8p5nblrmwX6Sdv3LegPGZjpVvx74lviVOEwqZ7AsO2OaN/Hnb5jjudLDQIp EMU82A+8tVMXrINe963ubG35S419TrijH92OiWHLk4QxtW6dGfZFtr/Rn5LibIa/ x/mS9/uaps2fOMIT2E2joC654nyRTgHRpaOGJoJALH+nc8CaeWnN5vXpaGjMIgHz 6OATngfCbRpyRTXDABEBAAGJAR8EGAECAAkFAkz5PvICGwwACgkQyW1f/gjCImr4 Pwf+KIIYsfBv2ZL87HoUJWI6InAljXNduzh5Z1LBwqRFQILEdKbRTxHRCQFbuQXz XuoG9Sm+SQJuWEapSgfVc5AjCLwkS6fe5POYKZi+bJVg+WG9phyA3ahkomevQeN9 RiMmoUHLyTT5pJcmkUemjKOR68L0sSQxZSa6E1jymn6eV8G4WQIrgxkbG0+n8jlL Gh45Z32XSPRcvLmP/R24m94y4hRcFf7+zi/8jsWsLhhQeKXLekTYkxl9KFnGTG1Q Awe4IQFbQ3JTtPucKIc5Nhc7psmvbLrRLIY47b+5Y9HaSepcm+7p4MNlsOE1Tj0G at3c73i8nATVo8CdE9D1rxmG3A== =Iduw -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/9F625790 2012-11-28 [expires: 2017-11-27] Key fingerprint = E3DA 9B2A 6160 99CB 4B31 7641 F1F0 E7A1 9F62 5790 uid Renato Botelho (FreeBSD) <[email protected]> uid Renato Botelho (Personal) <[email protected]> uid Renato Botelho (FreeBSD) <[email protected]> sub 4096R/473CC82A 2012-11-28 [expires: 2017-11-27]
-----BEGIN PGP PUBLIC KEY BLOCK----- Comment: GPGTools - http://gpgtools.org mQINBFC2VTcBEACrNnCyFkWWWe4MI0mkeI2bPl0guEaRTRVY6BL9SmzipqITfdTn CpeDS9v+y67Dl0orger5+iYc96smxft/DCCOMc1BpdJ+9oRTtYRF0n1gRkGPmt59 k9Irqt/omkNHKEgrcxhDIwslAffrzTvCqTdFir3YAMSRYiNE+8pfWw2QdecPxMnC aPDIMvEzM4woZIGZpRvCw7MyJXtvKxkXvp59yslsoiTg3jsE6aUDNHjion5zRkWl 1++DCJk43fkdRCHePSzN+Q9SsrlzhalMuaUouN+UUGDlkgI9N6d5bIaH8MbFwd3s 8lwNistFIOuHdyRDLBR9zO0AJxzN/57oZbPJZy6hRvo52wYR+Tphru0mpOMZ7CjS NCyyA7yyecgFDfoKBPQfRnSZ+HDr36dm+BVE9vvwIj1wZt01FIqDZKEMznQ2KYvY doL8XfEWqemIE3wRNco+h5QtuxZa7qsMlmpd5C0/59RITyqj6/2hclkxBIujibZm jOnOZsW3XhglMCBXkQhHoc654CwUH8l3Xept1k1rbLDfbfvC63S5eht3vTO4+Dkc m3c9LL9mLmskdgS5jU3z335+up+OJkFgbQ7Gm9R3afuPJkzxBBYld2ew/trvAjla O7wZecvUqvnCOnXXGmpYc0/4NewWl9lkGcMJmDFYQwSqFdUIkDFRNr7WLwARAQAB tCxSZW5hdG8gQm90ZWxobyAoRnJlZUJTRCkgPGdhcmdhQEZyZWVCU0Qub3JnPokC QAQTAQoAKgIbAwUJCWYBgAULCQgHAwUVCgkICwUWAgMBAAIeAQIXgAUCULZXeAIZ AQAKCRDx8Oehn2JXkM3qD/9xohIYl1H/XFJSfjJ684PofXq51J/1U8nmxIKHhDYc 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<[email protected]>
pub 1024D/12A95A7B 2006-09-13 Key fingerprint = D0C3 47F8 AE87 C829 0613 3586 24DF F52B 12A9 5A7B uid Alexander Botero-Lowry <[email protected]> sub 2048g/CA287923 2006-09-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEUHm3YRBAC/bBl9E1saFAVuS5wtnBQ7BbXPOr21SBExZ3t+f8k2PG2SsKYL xNMAn1drC9UdbUVcQDzlGcWQONYRKj4kWoYSYNDOElwa7Rv/f4z4NnIhOxxT6G+M qQTFWj6MjrCVPZh+b5Y3DTdmNxuJq+Yf9+DFsxc0i+xhMrbbjuokWRFdxwCgvb8Y fLNYJqjf9V5hhnvt3K2/L9sD/2frMKR7o1Ie3CgQbhZgYLkGlMmAlyrKLamdRzRl AmjJ35mkIQ9iu36BpsUmVL9WPjy2sdep0FyRLRgu5/q9qhJxy31GsVYv5y9m9+px X+00CN1a/5g1d6gxLUY30KsOL8OXSqwmq36iJHEsRxFfs9NJ/dBui1cFW0dDNmdg nE9xA/0aX+9BPSiu/hXFa5A2Q8fCB1wOcaru+QzgbY7nWnse2PQ7Nsv0xEMkaYdT AqA9I/UyssYeRygD7H8edd24xy39EBAVLLCD57Tjye2fCOyWBIGJU7Jtc4b/DJgm 6bP2bSscB44ybBmlWdza2sgui9D4beWQvEVZGgpsnqnCjJQDOLQrQWxleGFuZGVy IEJvdGVyby1Mb3dyeSA8YWxleGJsQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJFB5t2 AhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQJN/1KxKpWntZ4wCfWY5pLq6V rCpsAiGcIniMBUoueTYAn0b5suADC5pawqBP/Xbv95e69gDWuQINBEUHm5sQCADC 7ynjQmBXd8q2Ei9ab6oO6Q4XbEu2eMLcm1C4b1cu8Riyb0bYI8fQ0JkYPWBDdgvG iVuDGHjLRCJm8LDV4VAhpkn6obPaDW2ZVf3urkAsCszSmv0jlEO+grOj48c7sLeR NpZX76FCKFtgHClQOSfR/9eoKFQh5jveWgSQ0gEW95gGQShy1cTi1XUdJdxilL6G GNBfSNgAFwQBkepgzjR853bVysoZEF0Z9MF/PZgmAXoPYTs54tA24LSETmBo5BjA yUTI6Dv4+jKXqmDphX6BjxeJkYxlKAyVBgNrKZahPoyOPd0FvMINn4MpOJdpq3sv PSXwbexIrroMJQz7nR9vAAQLB/95AIR3oGIOhDCAUwf18K0Uv+v2cKVhClHqyAGy zHjyoyEoSnhApWVXD2hNvqfxy37t5/5EzaU0mvC0GMpv0trBa9uBRk8GrXgILnzh dYjhbSPZStx3D/0lFBLHt9qYjFFQweKNun9coOV0TzdXigH5PFxiks90Qc/sfr6N v6hXA4MAe81zeEdQafBkreHDo9fL4i+GwxF9novXNZ0C+YNJ6+3wOIJwacCZ1bdy gWTM8pTa7vtvtA0Pk4CZpGKSICg/jDq9dZT+vaNGFnKvQOQv1RPNLs/QqfvUo4ZF khopn5yHXGJjLZp0Zds4MdqXLddUNHXW20Yki11eZ9NXK1KdiEkEGBECAAkFAkUH m5sCGwwACgkQJN/1KxKpWnuSYgCeOgBV4svD8sqNBVN467Le6aLzPxIAoKsNXerk njcpzY8FzVuY52JnLNP4 =CUqZ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/2487E57E 2011-03-15 [expires: 2016-03-14] Key fingerprint = 05BA DC7E F628 DE3F B241 BFBB 7363 51F4 2487 E57E uid Sofian Brabez <[email protected]> uid Sofian Brabez <[email protected]> uid Sofian Brabez <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBE1/aRgRBAC9Nx9U/fn59g14PQ11t3prLTwrfzVYbEtPHWCNs0YDcB6G5M8f 8OpsPxousOkEy7xMYd8Xfzps9OSppH6Jwd/+GEiwaAT5G4tJ3X17aak/9fUUsir0 g+NohLUcflYszZlzLG01a8VH3AkDZgwkS/93IuQxPTmSX1ao56oHQvJ0rwCg2T3s +GgcLz5A+NJZ5jY4lv+R/OkD/2BPrDN6+B+e1znlnl8Nk0N0fmLjvYjgkJSA37E/ zAUh7mtpQroSo5vdy0/ODbbLL/JmcS52I9LOC/aakykSd7aS1Lw5vDvhG+bLWB/H eYWC35PtI08XnFDaKaycu0TnayrggEOpNJnMfOSviGMsvbnksas03RCFeAd63APg kXafBAC4x7c6iEsUmpVTn60mOTf4OVGGA8CN00HpyXfDgb2exuLfwAn34qNaNcd+ yVU1Hu3WPgQzQbTorqwi7zmjn80gmpYJjAW67zeeY9QLnuNdD93uJOIscjYltrl9 Ft5+lefMyTCb04Uc8lLAvoiZ+T7G/uyyRZnJ/5vzgr7xIeCPQLQhU29maWFuIEJy YWJleiA8c2JyYWJlekBnbWFpbC5jb20+iGsEExECACsCGwMGCwkIBwMCBhUIAgkK CwQWAgMBAh4BAheAAhkBBQJPcussBQkJZyyUAAoJEHNjUfQkh+V+oTEAniEEpQyD 8sYsmOPJA9Kj3rlGdHoqAJ40pp9l42h+6HsOfzWmNXEOfA0g4bQfU29maWFuIEJy YWJleiA8c2J6QEZyZWVCU0Qub3JnPohoBBMRAgAoAhsDBgsJCAcDAgYVCAIJCgsE FgIDAQIeAQIXgAUCT3LrLwUJCWcslAAKCRBzY1H0JIflfkaDAJ9HOCFfC7uBDucx DraxT8X+3GNcbwCg1tl7zbIuEJj+7x6TkNNqR/6la/G0HFNvZmlhbiBCcmFiZXog PHNiekA2ZGV2Lm5ldD6IaAQTEQIAKAIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgEC F4AFAk9y6y8FCQlnLJQACgkQc2NR9CSH5X6FTACgkK8Gxmb4hqgmk/lvrHqylgei tbEAniRE2s/taMog7hd/8sgTn5w4yYyluQENBE1/aRgQBACNIAMTtiB/KjSfsFIb n2vc4284SvwPNhdO0RWj0n7shgf6Y7F13nY/CbOFUPz1AI1SgJdRxGJOcfwVS3Dh 3YisqgGpnY5bdc5TDo2XzqWF+JgkePKTfvTnP3P2sYzGC+oMlAQkzZaQl8rBRvXe vpxNZIW6EpGEsBYBnxd2Cl97mwADBgP+PcBxmCc4bosldea851AiCkHyMBR0f/0I ldbawynpYFOwZVytmrWvuWcp86lnsPEkmBuOjBbK5WgNJzIO2XdmtaNuN4Ll9dHr AEcLFDMSerNkPAvkzMzNsu6L5ZVrBtXQr6omN8DLcau+6uRXq3wZrQZ2o97/pByP nmxopGDMt16ITwQYEQIADwUCTX9pGAIbDAUJAeEzgAAKCRBzY1H0JIflfhBRAKCu puEkAZ1svXS/c8Ei8FS70bQIlgCg188vwbrylTHwyH6aIlwU2lIqVXA= =4ffD -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 3072R/FFD3035B 2012-11-26 [expires: 2017-11-25] Key fingerprint = 443B 5363 564F 06C3 EA54 9482 209E 9B54 FFD3 035B uid Edson Brandi <[email protected]> uid Edson Brandi <[email protected]> uid Edson Brandi <[email protected]> uid Edson Brandi <[email protected]> uid Edson Brandi <[email protected]> uid Edson Brandi <[email protected]> uid Edson Brandi <[email protected]> uid Edson Brandi <[email protected]> uid Edson Brandi (Born 1977-08-14 in S. S. DA GRAMA, SP - Brazil) sub 3072R/A34B8175 2012-11-26 [expires: 2013-11-26] sub 3072R/4EB0E0EA 2012-11-26 [expires: 2013-11-26] sub 3072R/89917E73 2012-11-26 [expires: 2013-11-26]
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<[email protected]>
pub 1024D/5920099F 2003-01-29 Hartmut Brandt <[email protected]> Key fingerprint = F60D 09A0 76B7 31EE 794B BB91 082F 291D 5920 099F uid Hartmut Brandt <[email protected]> sub 1024g/21D30205 2003-01-29
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.2.1 (FreeBSD) mQGiBD43wzYRBACpuUuayKjLpf+tMndpkOwxmpaPkLFxiA/dI1iWjY8I9ItDLZyM LqgYXemOOga6vbTvIUq7Bjzl3oR72kjNX3J1EljsMj7dxksoY5lflEMdxAyzdVoI +/cu+cWiP0Z9unKpYmTk8S13sUTtZc0+ixioaUvHzSJ0nxQMpIW7dqCDewCgmSVR 6i2aK4oImAa9+ZbCxg7fCxcD/2xgAAwJSmaiaV/0As3A6IO0eSkbkzFSkMF+ms7C OtrHr1zmdM7h8MaGg/jw0Z6eZalYD7AclLvXDW0rxCMFwh06SC2axUTk+aE+vcys fuSk/HJtnktHUxZDgb28jf4X6zfcdTKE5dt5a9w3XHHPgdTXjGn7+sQNR4CWDcvq 1qNQBACOqNxJdCC9tDLycRoupNSwzldMKVBZ2/JdQjfCIq6d8HPMNVLU8PGlDjoy RN4QkMZLbwV9Gaigk2DR6vvi8meARADt53x4OjS4W3O/Pc/Aj8rsUcF2mRU/wiJC 8VkQsnaci5GuaYAssgKroOTZQzxHkOjbk4FeQ70C+wxovRsTh7QrSGFydG11dCBC cmFuZHQgPGJyYW5kdEBmb2t1cy5mcmF1bmhvZmVyLmRlPohfBBMRAgAfAhsDBAsH AwIDFQIDAxYCAQIeAQIXgAIZAQUCPjlTfwAKCRAILykdWSAJnxpyAJ9eHCdgiEt/ +Z5Ms8Qe3ekWTYTy1gCfdVWLF2MrZNL/MYOgBhhex70gKzu0IkhhcnRtdXQgQnJh bmR0IDxoYXJ0aUBmcmVlYnNkLm9yZz6IXAQTEQIAHAUCPjlT2QIbAwQLBwMCAxUC AwMWAgECHgECF4AACgkQCC8pHVkgCZ+BBQCeMpgFMMm4siEtrzqdisrRaxJJvosA nA7UDwOVoHDZaAkFD0HNcUsTkO3KuQENBD43wzcQBADsEH8o/9tD01ScNfhoMbK4 N7GsIJNFwQf0+MQuplpXQx4eBpI9ST1ZoAUXeM1j4jk5PIAMJzt8w6BAGgcU4iUG Un0R/QMTTXVkfovdSe9FW7/QtUjRtTQz3QOfZTkekYauFIiW+lSmH3BDwRXhpKgM e19eQZYOPRfLCnLLwqdr9wADBQQA5tIdzlDS80CNZxxoFDKlvOghtrIzPG/wIwGV at2clZMLhXESxDxDkpwT7XP1GRLyN/Plh/4k2vwxni7nOJ8BIch7rRh3E48TJat1 iZ99SFc9iibED5hY/HrKlc/kphFnUuEr/kk82UCv9p4/d2V1+8v1N+Cy2jCGvrip IQ6v2fOIRgQYEQIABgUCPjfDNwAKCRAILykdWSAJn0J4AJwMsjovUA6jCJRMEzOS kIakJgqJvgCeNLKyNEkyJZh0wZUcEg1zYLRYp/w= =+h/9 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/EF25B1BA 2001-05-06 Oliver Braun <[email protected]> Key fingerprint = 6A3B 042A 732E 17E4 B6E7 3EAF C0B1 6B7D EF25 B1BA uid Oliver Braun <[email protected]> uid Oliver Braun <[email protected]> uid Oliver Braun <[email protected]> sub 1024g/09D28582 2001-05-06
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDr1p9kRBADrTCmhk/+XY9Jc34z36wp8zy1rbxGBy80enJM+aFPHks/iYPxR WA1tB8BEdGPJliUMYcNGeo+ZX3As1+xxo7NJCc7Zd7Gfs1+fMOXPwKGt02mr+Nje +nF9XMfdGPP0IcK9lzkVeEdH2JP41pS2SmrMwsTE/eGv9pFEnnmRxeuFcwCg1RYc f8freOk8v68+J99mCUUAGl8EANePcxWbRYgH5KulTzE5nYIt9WBn247T7goE3yn1 R2VddSXXGhs0byRxXpNAcrysyGshIQY0nnZSB5AUt27tZJucoT1p/BtBFQ6hLCQe kaIRL0sdXrVJZn3/Q1G7vJWD6wwS35dro5PsYYPDI+qL1tISlWHZNQ2Y6jGdqhc4 Len0A/4nV78yB7cLvHksxwvbdtVVn8eVo1B2U+/b4cXhevHAl8AmNN+usmEodxxe 8FYWV8jY323xiYSMrCpYT9FuD3r2qORMOGWpg0zth6BkhdgH1z2i7koKkGIfc4mV 6oea3ep5uaU82r1sGe7/cVzMGUwzZq9xizwODfbmSW6E+vdAjLQgT2xpdmVyIEJy YXVuIDxvYnJhdW5AdW5zYW5lLm9yZz6IXwQTEQIAHwIbAwQLBwMCAxUCAwMWAgEC HgECF4ACGQEFAj4YDoEACgkQwLFrfe8lsbr7rgCg1K0Zl8CPgrQG7BEaZqzSiIM6 IZAAnjz5ifN2xHJSOJiLYloidZsikNFQtCBPbGl2ZXIgQnJhdW4gPG9icmF1bkBv YnJhdW4ubmV0PohcBBMRAgAcBQI9Y1sqAhsDBAsHAwIDFQIDAxYCAQIeAQIXgAAK CRDAsWt97yWxuv0CAJ9lUDzKKdaCp/8mJjlXLjlSZaaJTgCfXIqQr58p5MSFkVdL hLbK1P1l8FK0IU9saXZlciBCcmF1biA8b2JyYXVuQGZyZWVic2Qub3JnPohcBBMR AgAcBQI9Y1tFAhsDBAsHAwIDFQIDAxYCAQIeAQIXgAAKCRDAsWt97yWxukHLAJ9u oP9cIdBXldt7XfQ/5xK2fUsHPgCdFIR7cK0l0spO2xjzbzhoPPVShbq0IU9saXZl ciBCcmF1biA8b2JyYXVuQGhhc2tlbGwub3JnPoheBBMRAgAeBQJAViQBAhsDBgsJ CAcDAgMVAgMDFgIBAh4BAheAAAoJEMCxa33vJbG6MhIAoJ3dqHVStQdGzLPTGbtP Zq8wG0jmAKCzMo+si/LFBZAnOqYN3g2yVOOc6rkBDQQ69afaEAQAlaNzX3ql+XfL obAAIWW/TdY9Yh6r0fFFoK2Mdt6vungWhzSWb63DprREXyW1k6QbPQxL+pAfeCYZ oXQuNBmsUpO1Xn6ViEGRd53D07sNJfBrE/5w3hwL+c9lWSJlt0vHKzFtPAmqenBd fA0fs9afiew2sHhk/jz/FAwWcnF4aC8AAwUD/0upFaHEZsf8sVmSEew5tAtZ6i3x zaBjhaDv3sYobza57S8mXYhscK+nNHx3bP036wJ0z8ypqb5oCqGzWUkj9OpYZs0u Tbpla/MoCI9N1Ch8LfQkWPuvYjHF6LSY3wpZKaNWfeZPCmMT5XPqjuxDB1pCmnAU OizLyimZU2Y8tfQWiEYEGBECAAYFAjr1p9oACgkQwLFrfe8lsbqmfgCffgEhvau1 1EUoZmkdnzUg2rbKYnQAn1fVK9TjWnJWQ/YDOn9hmMZWYjib =wrrS -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/ACB3CD12 2008-08-18 Key fingerprint = 4BAA 200E 720A 0BD1 7BB0 9DFD FBD9 08C2 ACB3 CD12 uid Max Brazhnikov <[email protected]> uid Max Brazhnikov <[email protected]> sub 1024g/5FAA4088 2008-08-18
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEipViERBACsCTYd7As236qQw4dG/xB8p3XbN7pFP/C4yjRJak2QZfsOQ4mR 7liBgXc0FevU6FQOW4XrcRbQeGFlRE5pb3idwhTKNc58TEifGM2s2ZGgRrR0aIF+ 9s5ZbVNp75FgSsN+9ksAOmz1nSj+M9Ikz464YvA3bHvKP8QQCpPpBgiuSwCg5IBV XSvep/e502PHqsiP8H1zGjMD/0xDwDdLfnN1R5tuNDfZEN09BSRlYYFPmMlP177i DBCF/2gF1bQ7KL42qBCr49ngVMAEAUlmZwBIN0XvfGe0KWDvc4G/CYqcOiWhbBEA pvtJZHE1C/kIRFS/IiM7BVmkdVnn1MzJrGSVPAF85e/iyc1K05C/qCuulqm1aLpf 8dOeBACDvyvk2uE7R11REnKa6FKvzS2X32YclSM2sApwl+LnFO9eT500Rxzy9ldP jKlKR/dO0DwUKxnUO6DOHAEZzvutx1f6ZJksXk/0OsSNkn7+TIt3pKb10udpcCag k/ik+o7v+2XB7BlydRBPwcaJE4fq+CWyAbgRfKROetwfTI3ItrQgTWF4IEJyYXpo bmlrb3YgPG1ha2NAaXNzcC5hYy5ydT6IYAQTEQIAIAUCSKlWIQIbIwYLCQgHAwIE FQIIAwQWAgMBAh4BAheAAAoJEPvZCMKss80S1+cAn0+WKUu5TxrXSF4N8WlRK0mU 1tcdAJ9Fcv54PisOdQiVUSIw25LqSqWyJbQhTWF4IEJyYXpobmlrb3YgPG1ha2NA RnJlZUJTRC5vcmc+iGAEExECACAFAkiyz/wCGyMGCwkIBwMCBBUCCAMEFgIDAQIe AQIXgAAKCRD72QjCrLPNEjtdAJ4tcsvvos2CoXmZsTJxuVF0RaEwigCdHgBapPWu MPyv9FLRzdWelOfZ3m+5AQ0ESKlWIRAEAOzibN5tPXiGKAHPwaQgnVQiaKv/7HUr FVfqycyXJC0/nmJ59UNpJ+0Y4GDwDRYqWqGyyd9diKAUomUwbIuQ71BUibmIZQS0 3v0jgcfnJAhgz7EFGewgQLHsYwzwTDtPNQCqxDEUwDLKla72ksuodqzx92Dj6SSP AfFN/6B2bvQbAAMGA/9XFhkt0SAqXV09CXs3QuHdzuJ0PLadaz31bWITmSLqW2FU /EwXt1615g/E/qIwa1PzjZT8JQDAEHKbT5XPXtTzvOAUp8JK2wW9P6JQ6YPT14Vy /9PiMvLThxNY3zWjWChWuEf8zohd922OSqlSE8vgOm0H7XUe480/FeP3RP1EKohJ BBgRAgAJBQJIqVYhAhsMAAoJEPvZCMKss80StqIAoKpjMeYK0fSi6GpfIaojuz59 eHHiAJ9ws2o67xPKbWgdqMxn4MfLK+ojbg== =m+ns -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/97E638DD 1996-06-05 Jonathan M. Bresler <[email protected]> Key fingerprint = 31 57 41 56 06 C1 40 13 C5 1C E3 E5 DC 62 0E FB uid Jonathan M. Bresler <[email protected]> uid Jonathan M. Bresler uid Jonathan M. Bresler <[email protected]> uid Jonathan M. Bresler <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAzG2GToAAAEEANI6+4SJAAgBpl53XcfEr1M9wZyBqC0tzpie7Zm4vhv3hO8s o5BizSbcJheQimQiZAY4OnlrCpPxijMFSaihshs/VMAz1qbisUYAMqwGEO/T4QIB nWNo0Q/qOniLMxUrxS1RpeW5vbghErHBKUX9GVhxbiVfbwc4wAHbXdKX5jjdAAUR tCVKb25hdGhhbiBNLiBCcmVzbGVyIDxqbWJARnJlZUJTRC5PUkc+iQCVAwUQNbtI gAHbXdKX5jjdAQHamQP+OQr10QRknamIPmuHmFYJZ0jU9XPIvTTMuOiUYLcXlTdn GyTUuzhbEywgtOldW2V5iA8platXThtqC68NsnN/xQfHA5xmFXVbayNKn8H5stDY 2s/4+CZ06mmJfqYmONF1RCbUk/M84rVT3Gn2tydsxFh4Pm32lf4WREZWRiLqmw+J AJUDBRA44g2RH3+pCANY/L0BASF9A/0apMb/yMyQgcBLRPI+MO1QjiLxIXeh1nsK jWpqSUojzNmosasXU9WnY3AaYv1tkXGHd031Jlhooi7W9Cr8y2Ou8cYF3kZmxTN/ cDkSWAijoduK3209QjpzdkfNZQyeWrXewRBohgt2b1jKuz3CMtmu8yV187vdITBQ /m1Ed/uONog/AwUQNd6r4j1NsS003qvIEQJxcQCffcdAPWYz04JfuMnTVGiOAbvF CnYAoPCa7zqkrz4C+NNZWv6naUq28Z1TiQCVAwUQNAtxKFUuHi5z0oilAQEm/gP/ eYOsPQwz0Rg5W7JeKTdQZUjyq5g0D0StVwt23XQ2NhzXpUjYc6dhWA9FqDda3tbz 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<[email protected]>
pub 1024D/50CC2671 2008-02-03 Key fingerprint = F3F7 72F0 9C4C 9E56 4BE9 44EA 1B80 31F3 50CC 2671 uid Antoine Brodin <[email protected]> sub 2048g/6F4AFBE5 2008-02-03
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEelsqARBAC37tcs27BitWt9YeIYmpRNgtRH/ndAm8ecJK+7IuEqo1t9IglY Uy+lI1xW1H4LrIbmSKmwfg3Gj3lm+12avQ8mf0vVbl2RVxfOQZY2C127Qv6Mg/Ox Fwxb7UCWzYi+XAf5XVHyzKLaLq/S56serWDX+mGY83kLhVKXy7pL98bwewCgtr1D miY3vAu1NMoWPuZ/2kvLLh8D/i1Zisp0EE5B4QjRFbaSUzfk3tImTKLQtbj4F3S2 Zo4hh3IRYLGq2OMJ+gH5c5KXMhaxqiK8XCO1pHNdCyaL1PZDW9s0sxPiVv5DDxHU Lm1BXyTIJyuAC8KVnMWIfHVoqIX45m0Br6IFyiHU3CFBSsarkC8088HViilTYGd1 8InNA/4+wVDMqnht2/YeMqyYevKOGw69Dqe+1jeTNOg7h/1EOL2Sytg9EIfyTf71 IxJAhsKU1ibjAMubERoTN16rPgTx4yrDtRSdfbmnHxrreih6PKsbiaKy76cnYaxz sz4VontIIaH+Ye+VmVIQsBS/QIBBki0j9YAzNDcJqCdWKcoeb7QkQW50b2luZSBC cm9kaW4gPGFudG9pbmVARnJlZUJTRC5vcmc+iGAEExECACAFAkelsqACGwMGCwkI BwMCBBUCCAMEFgIDAQIeAQIXgAAKCRAbgDHzUMwmcdHwAKCrHa3q1ixEdvmpU1Ny 2SpQrmvslgCfef8t/hiaMLSuyZEsjR1x8cp6hiK5Ag0ER6WyoBAIAJScQspDgp5D P/K1ZdT86Ux7Nv2UhZilYF0LPkvZBdfTC80RpjrUvz1m8ZObbCsUO5Ag0j3+Wtms 6CVaQqfT2RoRyjcnNVJGadWqKmOWVkvZYzHQPl8SZNENYurFFhfy4MCxXf5drkH3 CV5QqY1onhuvsfl69UZ54e6X3+DjQ3KdtqyyqUez7Qe20ZdIcgC43HcEuqAbAOxm /K0zDNvHpjwgleNoFBd8GZfD/biD9EMnhiCBq5rS8Jqh73e9wLtkMfssQunA7ELx ZVuC7M5dBBMjRUp0dswAKAgdcaLA0D1NGUNSno35Rzur7sluufivfjLwn+qRLRBM FPR+ggIO/Y8AAwUIAIBR74TtznV04mci4vHDds4HX0RI/hxawivtanEAGZvV54hS XUnVqpIVgTqKCtmS3gqoQMQBf1+25Rq7UJlVNl4/AoLcl9ZfR140hTSd888OwcB2 MAHd9CgUXjTHcFQj8tXFhPiWY7SfFwheLDFJUgCqB/ilgPf1XGOYuZfvBxkyXd8p TC2sx4iFSUBbY4S6UZN8uokpRZDbTHUPgLHAoOg1lzrzUvZuknEzbcBDgQoVwLWD 9UCZxl1wxly6oZkq+uggXg7zxWuE5CMdWtz9/FA3CRtRBTqZnHrMM9hlHGgxTYan bBTs793WWsKf8rhTRqNDqQdN07YxsmTi3129OSeISQQYEQIACQUCR6WyoAIbDAAK CRAbgDHzUMwmcYHKAJ0c3chle4XcJ5c7+0odRWmOZ8m0IwCgndOwp3kjZUZFbAu0 AxHti2KSFZc= =HznU -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/8E9CAA7B 2012-05-16 Key fingerprint = 8B08 E022 705D 0083 64C4 5E60 5148 0C74 8E9C AA7B uid Diane Bruce <[email protected]> uid Diane Bruce <[email protected]> sub 2048R/932E5985 2012-05-16
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE+0LDEBCAC5tZOH1o7XBusdsINQKzGPksqrS+JJXMbbVkHML1dgrrYK69/p psKdwQ3uLkKTVutB25M7BkSaK/UqOuCtTOu14jOa4PUeTnkFyGMC79MxIexa44e1 vyAY7/UnEZghtakIvdY5o8VipFJvD2OY84JfoIgAlwRTNmc+dyMfFaZr5xKb0s72 AiMdx+p5okBVG/tpA08LZ9pwENv7ov0L3Mo6VSwaZVsq8O6sU9L3MW24EKUsffXG Um9gyfHS7xsX16ebsIWhzNq6BdSNondm011q/ndVQzCkSFtPDwmuaiO2wkMasIQ5 Ff2GczH8ybjmAWB9ZSruoa3G6T3B95QEu1o/ABEBAAG0HERpYW5lIEJydWNlIDxk YkBGcmVlQlNELm9yZz6JATgEEwECACIFAk+0LDECGwMGCwkIBwMCBhUIAgkKCwQW AgMBAh4BAheAAAoJEFFIDHSOnKp74hQH/iwyMhVYcfNViyIllr8J3U0nJjWo5zIR sfONs9QdK9THF2XPzkz6wUmNQZzRHG1g5EbLwPHtP/cAUMebDHajHpp+TayXJIXZ 7UJd4eSSI1sLVG/cj567C3UwSSBnt2OTNX/aZqqnQ37Q4jkPbpPb3nfjBlOMX++9 ynU+8TlJdxddLtQZfbrA/71s49LIOT6XnK0hyXwss0F3YowjTfnV4D3VsZJb+JZO jNvz/WCzgeIJ2C7l9wYEqnKOfRYGqNxyh/cs/hH1c/hWvPN9e/0ACfMRuxV2+PMI kZv0X+shADk/61f+bNIE6w6ZKX7Vf4FoC4UkJVBdJ303DKPionfqT860F0RpYW5l IEJydWNlIDxkYkBkYi5uZXQ+iQE4BBMBAgAiBQJPwh4JAhsDBgsJCAcDAgYVCAIJ CgsEFgIDAQIeAQIXgAAKCRBRSAx0jpyqe76zB/45T78DroUrVyM90bCIiJjlYubr zkdLA9+8ZDstfw6Ism53hHhT90drNW77lb2SV+VpJYLXbyLGwg4/cNF6+Gv8dK3r joJziiJosWdxQIfXt8JoyI3Z3BAxC8lf6wv5UvX4UFTA/AklLsXkm+IaxeKsGu5G 4JrwZOVgsMQIx/e/o4hWhbF6a8j3O7dHgHmA2XD6CVDYyclEHj48iJWGgib4pkJJ hhPGe1kgbasMcWbJw2B6A+08WC0Ju6R+GlPba4sllxQUVoKOiA1xXC6KIo0DiOld qhOdBMUi4NC0kIldm8d/Da0xzH+vqCUgrbBEBWjbASAHGNqY+u4cV7vCGyW7uQEN BE+0LDEBCAC9h0wHaL9XcT1nss9D1XYGAOywW2nhVJuX3GNPwtys4Al5XX4w0qD7 KQs8LRlXqE313xFi/x8/DeVHoN15xAUxFrDrW74zK8pP7UpyN3f6LTf7axFGEMSt fQ+ZQ3kt1vwDdb4CY0a/uhPejkwRu94ngWotnHriecHZmVzsqy/I+xXvk2OnkM4L 39JwIxGYmB5WO93xvCc50bpY1sEK0kxnO6uwi60+BgC5GLf7vqJY72wtz/JmI2wq q+0XAx9PyOv/ZefFZpWRiMzkfcsxUWYzI6DbyfLKrOVzjw6zJ3/eMsk4HUHiqkBF xq4GqHoIiEic0rQhiXLueiuLanpStosTABEBAAGJAR8EGAECAAkFAk+0LDECGwwA CgkQUUgMdI6cqnsSlgf/VyweVvSVjN3v7XfSxQJFIR7nlGNRmhbGeshm8pG2hpTl GzyMM6lqbo7DBb9ZC5VFEMr2IjIfxrSfdzgeB0RCjzuwemcjcaCX5yFq1Gv/91oW C43qI0kc/moII+wGmS/r3YNX28gC7heYcwlgruGJB8imhJG5UUHP0dkSJdA5sa9V ZnURsCOgj4ZuBRadm+SG25/L6PJ661bk7+3uOHk3yU+qJbwHx2z4+b/nlG1i+Z+q ZdriSl+zvil1fCPxKXQRiI1iRUOtL6hMLlF3UsCQM/UlMd2z3WBOOl1fyov9F9mT lPDochXXSanmCk14kS8h7hQLldWnrsaqFrBHAg1BCw== =cCnT -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/A0ED982D 2002-10-14 Christian Brueffer <[email protected]> Key fingerprint = A5C8 2099 19FF AACA F41B B29B 6C76 178C A0ED 982D uid Christian Brueffer <[email protected]> uid Christian Brueffer <[email protected]> sub 4096g/1DCC100F 2002-10-14
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-----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/78F8A8D4 2002-10-21 Key fingerprint = 3F9B EBE8 F290 E5CC 1447 8760 D48D 1072 78F8 A8D4 uid Markus Brueffer <[email protected]> uid Markus Brueffer <[email protected]> uid Markus Brueffer <[email protected]> uid Markus Brueffer <[email protected]> sub 4096g/B7E5C7B6 2002-10-21
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD20hPARBADzumxDOkMdttpWKphTxFC/j0+MJRW5UmFjd43c301LEMFSJMkv 06EukQSOVWGyGL70v/4NWx25BiLhLDIb4feE5SZccQTnjxXYCjkQ4LfcolqTAzga L3GLNF356vKLQPlv6J5ah3vdZHa8Djh8q0s6CHAPi2rhEVbO2x7IcRW6MwCg/0+E KmRtdsifDJ00iBEMpJAApccD/As/bzVXI4FZwjwIMdep9+He7rwL/xGK+ZmRUEoN iiIxfd2oOkwDXZuFqTGftONd9Apao+FefTbcpEfv7sBVzHCJBn2bTr5mTjDwuA8v hGQ/7+QyKIFPmsL5KZYPkBcRA195UBSdwEPdERGH+aWvDTVJieyetAiD78WTd5ez T0V1BADwVnc1ABRMz6e8HK+78G/4vMHKPPEC7YbSmOo25FKR7XimUIlvGfj+CNO5 w6QSDJaIRo9yOCPEacMe91NeZskPlEEXN/KIOlV11vTZ/pVDMETnzdarNo2B7J2K 4HQzTYBzfFHdCrKP0tExSCy0iN2lWzSI57S9o8YxgnwrmuJPN7QtTWFya3VzIEJy dWVmZmVyIDxicnVlZmZlckBwaG9lbml4LXN5c3RlbXMuZGU+iEkEMBECAAkFAkTZ 3xQCHSAACgkQ1I0Qcnj4qNRBCwCglhvWAuZ+9bWZ64EXP9wHLiQYT1sAoPGL96ae YBK0wnq1TWjE9GPTYFXAiFUEEBECABUICwkIBwMCAQoFGwMAAAAFAkTZzskACgkQ 1I0Qcnj4qNTguQCdHFTLRplJE7g607rCVSxDCefYw8QAoIMaWQv0Iflm5aAR0F47 3WrjQplWiEYEExECAAYFAj20imoACgkQbHYXjKDtmC1WawCfUZkir7Dy7wP3hiNA X8yo78CpuFYAoMJtyYVOf8fayYICxujAO3zU2pjViEwEEBECAAwFAj53axIFAwHi hQAACgkQT4OMtyagqBYphwCdFiRae7gCvrB/jFA8ceyXaEP44doAnj41sLHZFGWI ZUmQmNTiNfZXYoQQiEwEEBECAAwFAj53IYwFAwHihQAACgkQdROiNhMQLPXCqgCf SgcJhp/6tnpjypjXWH9t6uKHg+MAoMYnXWc7iXVFvi99BonJW15V63uptCxNYXJr dXMgQnJ1ZWZmZXIgPGJ1ZmZAaGl0bmV0LnJ3dGgtYWFjaGVuLmRlPohPBBARAgAP BQI9tIVmCAsJCAcDAgEKAAoJENSNEHJ4+KjUCJQAoMsgaMOze2p3Iaz0/fK/Xmeb 654IAKCDmJpex0C61bzfczSdaxXPPyIbJIhGBBMRAgAGBQI9tIpzAAoJEGx2F4yg 7Zgt0WUAn1WbgrMzw02LdGQQLBMzY5CYXKxTAJ9uvEu5kTB1jFhMa/rM7r04dipM cYhMBBARAgAMBQI+d2sSBQMB4oUAAAoJEE+DjLcmoKgWxiwAoPKtxw1TpXp/6KTr YZD67bOTJA8+AKDzxW0tIl7ij/nnNE9gob7cSeCfuohMBBARAgAMBQI+dyGMBQMB 4oUAAAoJEHUTojYTECz1ZIwAoIW7tPHgp/AAUso8L1C62O2WF4l6AJ9jsLQ7cBnL 81TJ74C3Zey4iU0PNLQtTWFya3VzIEJydWVmZmVyIDxtYnJ1ZWZmZXJAbWkucnd0 aC1hYWNoZW4uZGU+iFwEExECABwFAj4kssACGwMECwcDAgMVAgMDFgIBAh4BAheA AAoJENSNEHJ4+KjUzWsAoMhZqjpybn0KgRf8Br3eExRIbpcfAKC+OlKaKZLRSgbz +6Pig+YQiPnOK4hGBBMRAgAGBQI+JLiDAAoJEGx2F4yg7Zgt9j4AoPUVdFwcegkz /rAuVD5T3psicMzIAKDgKHpuYGnx9WLeK0fcIS9uAMrVzLQkTWFya3VzIEJydWVm ZmVyIDxtYXJrdXNARnJlZUJTRC5vcmc+iF4EExECAB4FAkA33goCGwMGCwkIBwMC AxUCAwMWAgECHgECF4AACgkQ1I0Qcnj4qNSSjgCdHF9CzCm9j6uX5aCpJ5Cg2qG7 ktMAoMhccEzyNtzKGskfzazD1oTJdTjNiEYEExECAAYFAkA34C4ACgkQbHYXjKDt mC1PfwCg5bAwdeUZ/YgXy9UF4qpEX6fH6BEAoIS2DnUx4qlcuuhBUp9RXnST2G2k tCRNYXJrdXMgQnJ1ZWZmZXIgPG1hcmt1c0BicnVlZmZlci5kZT6IYQQTEQIAIQIb AwYLCQgHAwIDFQIDAxYCAQIeAQIXgAUCRNnO0QIZAQAKCRDUjRByePio1PgQAKD0 YBsRWZpJv+i8MS5yTzympEWFOwCg9nEzWeocm8GIKu/EWjoCX+G1LOiIRgQTEQIA BgUCQDfgMAAKCRBsdheMoO2YLRWlAJoCSpQjOyb69ZXMoDKx7naBi5aNAQCg+Zl9 IW0wDSUhTsHnwOf+Tf5sACG5BA0EPbSE8BAQAPkYoH5aBmF6Q5CV3AVsh4bsYezN RR8O2OCjecbJ3HoLrOQ/40aUtjBKU9d8AhZIgLUV5SmZqZ8HdNP/46HFliBOmGW4 2A3uEF2rthccUdhQyiJXQym+lehWKzh4XAvb+ExN1eOqRsz7zhfoKp0UYeOEqU/R g4Soebbvj6dDRgjGzB13VyQ4SuLE8OiOE2eXTpITYfbb6yUOF/32mPfIfHmwch04 dfv2wXPEgxEmK0Ngw+Po1gr9oSgmC66prrNlD6IAUwGgfNaroxIe+g8qzh90hE/K 8xfzpEDp19J3tkItAjbBJstoXp18mAkKjX4t7eRdefXUkk+bGI78KqdLfDL2Qle3 CH8IF3KiutapQvMF6PlTETlPtvFuuUs4INoBp1ajFOmPQFXz0AfGy0OplK33TGSG SfgMg71l6RfUodNQ+PVZX9x2Uk89PY3bzpnhV5JZzf24rnRPxfx2vIPFRzBhznzJ Zv8V+bv9kV7HAarTW56NoKVyOtQa8L9GAFgr5fSI/VhOSdvNILSd5JEHNmszbDgN RR0PfIizHHxbLY7288kjwEPwpVsYjY67VYy4XTjTNP18F1dDox0YbN4zISy1Kv88 4bEpQBgRjXyEpwpy1obEAxnIByl6ypUM2Zafq9AKUJsCRtMIPWakXUGfnHy9iUsi GSa6q6Jew1XrPdYXAAICD/9aiTfaH5Vs6Ms4bUQIeOLvadkQy4eVVKIXehBRAJ0X SVed1BNBwyBPUtuphL2BvX7Vx69418nwd5heQMAaWjps91W/3tXq6IseBlVGQcZ/ K3ICoafLYS8kp5i5ksX+2jvCF/H4KtDzODYBQOnC2TgVY3q/UncJDKjOS0Rfellh a/PI4wd8k0i2PKB3iqZ2kgetMD7ioU9hSQz2UHSsx3t88vj+QhuXLA/PsIBso8py X/6gxAUhGZKFMOJbqAowUXxQjyChVi9Rr08tM4PvDN2SD3XYhODrCLeNuGeKnoYG 3HkX09xJglxLUHsTU6ZHx7EK+vkEdTd74RzzFf4wJnMPnT3TKNX1u5P+DOZ5bjBZ 2O0ze3qLk9fBZxpiP2ev7GDMnQAeqb8Ox7lmGFUH1UARXhaicIhWTnfq3kJsCY4a DI7yHGu0Q1pg/R7V2ZGLgBTamItb6mUWGCBE5AF6AYVJQ1UU4We4FAfMmaiEb2ZE Gi60ff1jAR1PxAnEDHvb316Wv5GXRf3r6EZUQyuQSnWiIhgCs3EqbBUzbZvCVtHZ vLX7HZ10HzpHEdwNVpFAurUyP1DgRCCt1qKeDLui+t4N/WgP1EdQXpkmy+79Kcq4 ny+HLaMgYuKSk+khJhA/l7xfMk3JNwlp1adMS8/FgScU/NS629UPsK0fJ1Mwlk5Z w4hMBBgRAgAMBQI9tITwBRsMAAAAAAoJENSNEHJ4+KjURHIAniigU3LNmmT0gemQ 7wb7L8No/lEcAKCDziXLMavHZGnIuNydVv7D1XEllA== =rJ5H -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/08E81687 2012-10-15 Key fingerprint = B9F9 138F 349C D3B2 2AA4 1398 1909 45DC 08E8 1687 uid Sean Bruno (clusteradm and developer key) <[email protected]> sub 2048R/BCC23981 2012-10-15
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFB8Jw0BCACYRC4xwboUcSZTAMO941WSdPDQoqefN9m6mbel9JwskGlCGnfO +H+AIZUW0eKzG8tywaXhcqoMrW6Ie9wOce7qF0+W3DnFsWk6XRf2guHAu5aqiD5h Q/0pMrgQZ+yiBsvqKZr5A0IDscm6v0Hu3brzyoLdKqLGHr1vSIZNv8d2irqjDtoZ 6y3EdDJXpMpUsagHdTl55uWZkkwLRQY83KLwemjU4qF2lxozHmjhD3dKTs8+NhQe K+0vJDaPyjhARDrTl1HBwlbqqy5tmh8QeNkgltW3tnSzC3d9xqU1cDcnTkgGJtkH G99/5/4WG/wLcAORjm/t7igvq/2shWnmhzGNABEBAAG0PlNlYW4gQnJ1bm8gKGNs dXN0ZXJhZG0gYW5kIGRldmVsb3BlciBrZXkpIDxzYnJ1bm9AZnJlZWJzZC5vcmc+ iQE4BBMBAgAiBQJQfCcNAhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRAZ CUXcCOgWh2jwB/9WEMzPw/xIcn47xg3uyawWiY8XZWvhrUUNdACzLw9xpNhSIYf1 rfbYdW9IW1wWVXyiGOunhLf7eylhdatQkjNPHH3rCATQVwfQbk/ONMP3OVy9hEhW SF1r1aWQZsdSEwvQNF4jlQ9un45YcgS8AqfnbRUgOhMfyaCk2f26sfZlsqcZnFto /aBx53hHT82+2KckvWBySOO58EKMVHV2MtuCQGUVikKKnNdWn617tyMhjcNd/UFL eZ9le0RQVGKjhCGP/o7TKDyHd68CVeUb4SKVQmIo5AnvNbGB7ZlmgsO5+xsq7PEg 4mzP65ivXhqhvAYek8zWELWQUlqjBbDr9MP3uQENBFB8Jw0BCAD8kd0hCt9bhAAF fS0vY7mt5n/r0AlP2mQ4H+/fj3AxY1v/zF8qyzDA1JKzgUUQSAA10J8F/AJFtlXi c/T4kVEIBMxW6OLv2mhaEHXM4Sxgoro91xk9VXZptsCX6qcqlrTaAKAhs2QlfepO dxeG1LI0Jr6gunzV7+geVEY4apDPcVzkA+hZruM2BQ31MsSSOaJG4CxfY4OE1Hzw d+/pYrqzBoog2/2G2N7mcLuGtfjp5cN4K7/X14b2fqyn/HUvQA6VbuCW5zWgO5Yi viEv6alhU1StaF30qLr0zh25U6P0PIho5L9nefO1NXTiuuZAiJEmjlXD5MRvM9gO e+PWRdkbABEBAAGJAR8EGAECAAkFAlB8Jw0CGwwACgkQGQlF3AjoFof9rQf/UKgT 03FSToSRn2VeIBost9JIuiYiOiTnT+7kyRxNkhAYS9vSWmicTXvHGxl7TzSyB4qN 3TzltJOXvjiWeZ4kymt/1EiIIh3gz4QHjtB/2sJSTDTLacx13ZlM+Mk89sAnzMIe z11ENGFXFGcBQ4kTxJqenZwy1TZ2xQQoU30Yx9tHq/Nhlva+HUzL5y+MNsZefyN0 BK4THdSDa1R1d5NikagUIknxt/ildP0GA2sUDLc91+dIbvqRMHXfteTRMGgu3EUy U+n4GrVj3+u3Ex1I3KJJplKYhKa5zQ5uNIbqL2ntOldwO9HiaI8Xxb16Xqv7kvlH IPDYZOY+KgLZ7L/TOg== =egdB -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/78CE105F 2004-02-06 Key fingerprint = 98CC 3E66 26DE 50A8 DBC4 EB27 AF22 DCEF 78CE 105F uid Oleg Bulyzhin <[email protected]> uid Oleg Bulyzhin <[email protected]> sub 1024g/F747C159 2004-02-06
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEAjnDYRBACecNDd39vZ9wnodFlATK+xvhlyX4M3FBEV34t9eVZtJz4916yb nLZmHwY6awt+nm6FGciSPucfu7stBCqvPURWEThJgAyXbxEVNyXmXrZ2F5OyNMyM EcbuqLZTjYxxN5mxUYswtiNDmdWn+Ivmw46wTOl5Pu+B7W2KVl8mwwbAjwCgl9hA puTWWN0zFklDJIuLx9eVxnsEAI+QaACe8H2l3XFpNkp6n680ZlW7FBZDDOYjCS4z nhFg7Bca74t6vnn5Q4miLnDDyOPkZqMBD2nLUkcK/kMfe5uqDUWf/i6sFDwv7d6I 9Ag4tUWLkhxAqaqomesfI2yS4o+QGTJgQdGU3IUrOnMJD7Ascwj7304lYuqYcaqT KQHSA/9eTg26Ihn9uBpGit+slgkmTHmKgAbg7IaSHSEYRbpmnc0Je794zeWns/oI vAyGNxEFpPQMVrSXHnFmK9AOcLcfssE24a3zw7So33asH2Ha9yYBrfKGrTCPZAsa uUGrKbGmXQ0oXDjjqV4anvC2QI5pEJvMbHJ+Xyq5xQN73ttJxrQdT2xlZyBCdWx5 emhpbiA8b2xlZ0ByaW5ldC5ydT6IXgQTEQIAHgUCQCOcNgIbAwYLCQgHAwIDFQID AxYCAQIeAQIXgAAKCRCvItzveM4QXzXVAJ9RD4kKNcvV8UmuBM66osVfZ/7yIwCg htVf/ZfKdcob1zQsBNNpmzkpduKIRgQTEQIABgUCQCOgsQAKCRD9LjUgMMgeateB AKC0iX0NNspa5EnBYGE/eEe+LxRs6ACfUqA0s50e2goJznaIcLTgZXtDECGIRgQT EQIABgUCQDIZWwAKCRCF1FBFa2kbA7N9AKCbDyp3g6vRN7dQKBb35s7gLp8yIwCd EH/ivmrxZSaHlrOMJjt6rnmuFqa0IE9sZWcgQnVseXpoaW4gPG9sZWdARnJlZUJT RC5vcmc+iGAEExECACAFAkOMPS0CGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAK CRCvItzveM4QX+tfAKCLk3zeTyzbbN6TqYpnqocno4H9kACePQaaDytLX+zk4plw sywqPLv67SG5AQ0EQCOcNxAEAIUR6Uj/bLAu0/FSGDSCXfjuThVT1lh1rCLQkbBw TxNiwHPHHSQRa654aoYbQdi9x6M7fzE6Uzmdj1Gs/UBYZhhsrlkL+Ls/xuhe3Kh3 E6lho11qPhjYXmFHk42VhtVlOcikZ/Azgqgycfql81H3bKWv6jA0el9SnX4yk5qf tgZTAAMFA/9T7/ty76bNeP3/LcY9ZL9KYWB8v8pJ9jEt/RfBXB0GTuV/H+bzTjSc PwhT8Fam9Fo+r02tUJfqA+XlOJf6IXPlLPRfvzHhiBJSBPuMvB6vYs5zrlUzkgNE VFHBr+TxpUWBq4ZtI9K8YUbPD+s86irYn9fHlnj9qnYsod3ySvU0xYhJBBgRAgAJ BQJAI5w3AhsMAAoJEK8i3O94zhBfFzAAnAg+W9rkVVdYu33hNqpX8E1t2kShAJwK V8DuSaXJtEgVE7Wp5CeArqtwUg== =/2pb -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F694C6E4 2007-03-11 [expires: 2008-03-10] Key fingerprint = 4278 4392 BF6B 2864 C48E 0FA9 7216 C73C F694 C6E4 uid Michael Bushkov <[email protected]> uid Michael Bushkov <[email protected]> sub 2048g/5A783997 2007-03-11 [expires: 2008-03-10]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEXzleYRBADIqilbqBfzstvMByOY3QlvQD9QIGQLwZbziOMByQPwgzgBFk6x OA7NOfSKONPTsLtIOSc+CbuyEfw5jJiXsQ3Ox71Zp2JTra/bTim/WwJKC5Kc+egl CD6KO7GMTCBb102m2x97G+rNjGS8n7Uf7ITgoj9QtxBjpAC3K1ZcPoAcjwCgobcT q5MUrCqPHrnlZ87BnbT/3m0D/15hcV+qndPCShIqFTYbTSG18X7lBNTONZXmCm04 5dRcJrz4qLvsCYkBrmOCrKbYViQCQWiT7/G3Jzc+WtGFirYibU1TxBprZuP99gX0 Hea3gvgodlje7eq3Dz7Hx9uFgN8pfw2wWlEgdkuYk72s3lSJN6+TGWzXuWnRYYJ1 H8XtBACpByr9qcCaJ9yNAwDbDZhj03zSeZoIQz6d/3tDv7SkzDlVyxErJCO7CiHg JlxN0+paX0gW06xkLmwSESerJVbxEIoejdkdxebqPEIQN+9Se6Q2tkefMWd93IwL MP8sXgUBE6PEmFZTwI1/Av+vR7aI1pPk+yIrKTV2KyC7yCULMrQlTWljaGFlbCBC dXNoa292IDxidXNobWFuQGZyZWVic2Qub3JnPohmBBMRAgAmBQJF85XmAhsDBQkB 4TOABgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQchbHPPaUxuSKCQCdEAIOx9JT lAxIOwL6ApsukCI1bgcAnjkybnn6t4WWYy7IvmwMMJJ17oe0tCBNaWNoYWVsIEJ1 c2hrb3YgPGJ1c2htYW5AcnN1LnJ1PohmBBMRAgAmBQJF85xpAhsDBQkB4TOABgsJ CAcDAgQVAggDBBYCAwECHgECF4AACgkQchbHPPaUxuS8xgCgjJ4lLhI3wDP8Rnhv Iy9UW5BuBEYAoI22XNE3OHvBdsmUyUvVji8yKt4auQINBEXzlgAQCADnAWwYquUZ mbrZ9/UO4abD7Nm0vipplm/O078SMdonir+HKWZStjuvIHhpPDGI0wCpg/v24B3w QVGiQhXWRL1cbvjDmiQG7GFdG6u4c1+2S6Evx+fp5DCjUMaoygd/KwF5tmxE5M2R 7SOYueuuxcDiYi4qJs9lroNxnwG2/VkrcPxlek1QbRVjs+TuRnzTaUzXbU7kli6y PUhBucf6nB0cPHG6VVn8N0Kki+HBaQjYOxtBCO2B5E0uRq0Y25l9Vt9s/0TfYnYb E0/sLj0XSBu8WWmXtW7QrtLPN0Tb6XrTeIaWW7HLy1ACVlzniu5oeumVKiW5nsW4 uJ/6kF5Fuu2PAAMFCADNuQ0Irmhub799B7h+FJVtNu1IxptmvJnD/RoWXhAtVo79 c176MEqS/8tghzdq/zXhr4DPMiTDWf1p4ynKFFkpQaWkHO28cvu3rc0tdpkI2d+s zKT6fFNn3kqQ7Eq5xgijSK8+aTWoUhqFvxkhLIcColuPK2TmQ+uIxjtu62lU52eZ DDePyHFGVWqtkZ99k1vGxZRf+vVXaKTBkGY3Pek04knpP5ROGA+JjL/Ew5o4SWfn FeD9aJ+xtZ9VqTUyl+U4XwIYlRcWzbqsbGp0D0jgry5Xhiggngd7xtNSB9/44HuU C5EQWVi35HKNdXMq4wsOMG68DCTE3XOABa5yPY7TiE8EGBECAA8FAkXzlgACGwwF CQHhM4AACgkQchbHPPaUxuQTrQCcCfrtwSXFegD9D0DpYWa6iIy9glIAniDIOvRb 4L8/nn1Nbu+PBNHamCHi =zD+p -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/3316E465 2010-05-19 Key fingerprint = 320B DB08 4FE3 BCFD 60AF E4DB F486 015F 3316 E465 uid Jayachandran C. <[email protected]> sub 2048g/1F7755F9 2010-05-19
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEv0XOgRBAC9mFTzSKBVumlXJwWdkt7HvSRKo64Zs7BO/tYzt4dWVIzWwUC/ Z/Ns/X3Plb+sXp7mcvs+oLKiHw3qrRT5wPbef3V9hFfZiKdOfmeOv5fx1sIXejBC Cqq5ocAoq0bqf1S9i7vnuqfyH+9SRPOv0O6EnKCU+7sVMFXAuxDhm1+u/wCgwRj3 tNFbsptDZ/K5SMLM44ldK98EAKpSRVSMHrI/nxXvrNcPhedsC9MXyMOYE/q1la5k b+qNrD9QCJRwbz1LvoJGeOzEmtmZ3afT048Uks+RE03w+BhqJnuFgpAKqA39Fop0 MBvDuZ7Wy3iigebX35PAQ3h4FhwDTzsu9aEg2Iv/WksDqluQJcMkt8sn5NffhZho z726A/0dPVvHy0dart8LHKfou07u8y5/950UVITjGlQJ3RGvwQV7aPEjgpJQlQqR BMr3TOOJ3YGHY6xkaJk1fijb8MpSlihIr+Lyvhu8xVb3GCrPCh4Bff8fO35+wpBO 62p09dL4mJcD1mELJhMAMPpqXAXD2Ho76/RQ1yZlmH/xyAPTg7QmSmF5YWNoYW5k cmFuIEMuIDxqY2hhbmRyYUBmcmVlYnNkLm9yZz6IYAQTEQIAIAUCS/Rc6AIbAwYL CQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEPSGAV8zFuRlnKEAoKcsMnIQFgek8hHO 6a5pFO2DBto9AJ9GLTOc3OBdX1oFFQh/rsRYKPkMIbkCDQRL9FzoEAgAk8FWde22 yzxXI/qWRo+o6Ptm9Hae4reggr0boqeQCnV4ksLd01s7tJoaGlogi9OTLrq+OV4E CvkcKKHSltijMsITEwF0BwfrR1C1I59yUYABtGkw6f3bBApHNcDhl6dpcHymP8CM PiBrx5s63ja/CAKFaScUCUe7A5vYK91BwAJJ/IK9UONU9TUyimRRv2C86rQWV15N R8WE55iMdmFsu/Rkv5P3IPNzaIjcvY19iJOuxfeDTiKDp9j1QWwUOShrAHXa/Cra JvcNo4Iu3VeLKpaFW5zBvIbfQCa8LfRwfLPSEM+tCk9nH5zXSvwf6dDWvN66oo1j p2eAjrUEFnfqOwADBQf/VGVl9qx/d8NMjhMdaV6qvq8DfHy4I/BXQFERgKkFfrAd n1oGEJCT1fHtJNN79nCbyZ2dlfKqr6+Xcdy7RKInGHs9DwK4KfVU5dA5L3f81wZs OoMNuk64kjTAN867PzWdv7o+2seSa/9phsWEpCD+9qtRLiOcIZ8xeoecBS3iS3mp aT1HZuMLFMm8XEJSA4l8QfupBigr7Gq8z0ChwfMCZsVlVx3MtrTmuVlPnbJ4g0ku 28MACNiHkbfW5A7XhJ8re+Rc83so8ak26mO0FQeh5qsiVj4z/pmFGrYmeH94CLr+ bC+1nwkbAFxjZrRuFzct1y+oe3MSU0UUKTXUikovr4hJBBgRAgAJBQJL9FzoAhsM AAoJEPSGAV8zFuRlI3kAoI9Pl1nGD/sEvV9aGkLfAK7v9A9JAKC8ReU1wrQlM3z9 oA5JjxumuE274w== =kEVt -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C2161947 2005-03-01 Key fingerprint = 274C B265 48EC 42AE A2CA 47D9 7D98 588A C216 1947 uid Jesus R. Camou <[email protected]> sub 2048g/F8D2A8DF 2005-03-01
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEIkZzcRBACrskMO6BYlK30ghgpDYTou1UEgp0Y4QdghWeEP5kppuDy7kf87 CoKVvE/u+pVd7aFoTMa7ikqxKH4Kh7wnDEbFnzeZGtsf0Fzw5oHgoaQQlZHGRtr1 49UuyFnRWVKyI8IXS25Ie5p6ZlbAVFINOdJuP81gku8SffsoifnKIiWrTwCgzhTU uS1rg+TpKkiRnkXXtpVF9k0D/3/OADlTo77GAWMXl6HBTaB3BXB53Q4PozvGDter lWGKbx6uYvLq3ZPX1XBUapzJ3eoEfCsA++FeSzK+tue/ulbLiXmFhXSQWtXoRo5D I75uOoXlrc45uLc9XkOpeZ5dF4a1iJOGHe/hD4mmyrWIM+E6cy1lL4EetM35ZiEM lHqDBACehJoEdCAVMOcfQLs33/iTBRBE7Z6fN9DCH3kTvoYcgpZsFAX2WQFz085/ zHJ3NVFSH8LCi/6ck5ZeXCasAS3L99Q/io4WwmlqDj/b4PBdfoefInLJkroijcQ5 B2I2cH2Ss5kkwqj9PovanMWNY6Irv2szIViIeThB+l6hiuzaK7QjSmVzdXMgUi4g Q2Ftb3UgPGpjYW1vdUBGcmVlQlNELm9yZz6IXgQTEQIAHgUCQiRnNwIbAwYLCQgH AwIDFQIDAxYCAQIeAQIXgAAKCRB9mFiKwhYZR31UAJ91fYdpk0PNNr14jtURyeeS upTEEACdH7tOg9LmYNxAi0iKWVInoA/TNmW5Ag0EQiRnPBAIAIKVE+F4De4BWuab 6LREy3VmvNQgHSF8lHJm4TWKYGEkNhG+sIRFdJExqKG+N+El9QY4QGgezdogQIYk RBSg7nWzVrs7DiHJqC4PB/f23bzJl24Cg05jtxvZBz7t4lNXwY9G4kTmDb815FXd 1p8gwa1KCNsTlKVRJxbaku9gHsO2JZigLMzzF1Zt1vGtaSHX5SyjhOdMOFtjuLed NAgl9vgAoMpXLf2Saom38Lgv/jnWz9OfST0P+OA/JmqN5DqeRTlyVZdQ8i8bduYX xmtbBPOGHWxwUDxiXMULkdjkLLrY1UaizR6/ULI6+cPrPLZFdnr+5GK6ZoTXyJ2n EUUxpGMAAwUH/iPguYUdGVnwKiwqojHq9DzDb09qvPg+UIEjwZA9mPExfMPLo/1b 2NLgOF7pqeluXfiN84i58sipi4/ntlsNSzCYKCH2t2Wmfjdfpa3N4JaVptLR650x Lzj3egnWJKpHVSO+v1U7BSYBnaVPGfOMQVlSO5ra41SiVyZq6laX30PXXIFP6Ocx VWECVLmTR+L1g/5Nvq/L6NPv3ziuSLbSpvkLhTxLosaQwYFwPE7mLKgERUKDNc1u EXqyf8No4LKyO9V6VLckMgG4qbjQZhm9ozCmEYoKFZLafsq8czdNIKi4JV/8aUjU CsR5Dc8XAdwzPq6DBcikn1UBnvotbHtAFNiISQQYEQIACQUCQiRnPAIbDAAKCRB9 mFiKwhYZRw2hAJ4mmNxtlCe9yUHRCzxsUxl36gQYtwCfQZ3f8K4dxPU2ClJ46fTf FqQS584= =KYGd -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/9B21BC19 2006-07-18 Key fingerprint = 4156 2EAC A11C 9651 713B 3FC1 195F D4A8 9B21 BC19 uid Jose Alonso Cardenas Marquez <[email protected]> sub 2048g/ADA16C52 2006-07-18
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBES8etwRBADeB8shuQ3GGp/AozsOggqLnSmFwCS8nGN+rnE+4LHuRzkL4Kh0 pgzalpPre7DohKjX2uzq9lTjjmsrTKZLM+yaNZ9fFMHC1uHxZnV9/c7tC97oQQXl FjMmemGZGA3VMhh5jEtjT5EJIvPBB4SBVhVhBJ24ananUD9KmUHTyP8GrwCgxMJ6 +NrGKVeu5QYVLo9oVo26J+0EALkWeeHI8PE3f0jOqS+Voym3jQPLw7pvx+HoySw1 X0c0YRa9uJVH2e8aFMMsCzT/sP492IksJvtRNpzDSJJyYM3zukzH+l7J2vwDvKgD YknZJE0pAS0GRAVbZQ9u6bez2+CUrGZW7Bvablo7r3nBHyhI2SpeM6naXlS4AJ6I 9dbaBACm82l0Uwip/WoJM0r/lB6eXMz9tFeRgfnPY3+G0Y9pFpdxTX0q5M73L6u2 PeXbWI2XPyPqw0wqda5YNlcRylXJmzLFGQzR6opqIbOEzRE+IinyQwQlcAv3qzBU p7qCplhjblcyAhWTlM5XsrAWxXHyNFrSCCPDgW296+8b6b94s7QuSm9zZSBBbG9u c28gQ2FyZGVuYXMgTWFycXVleiA8YWNtQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJE vHrcAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQGV/UqJshvBm6wgCgqtDd lyjakeTr7YVdNmpaI/UxpG8An0jtgTDD2M+CioUqGN1SNTkA/6cWuQINBES8euQQ CACt+RPVEUX/qDk3Qh6E1Zrm410mAJLfgG70tz02ApDXhW6aZccW97rH3pec+RDW fZVaSW4xHjUQMu1JaXK0dD++UWifuhYF+GUfi2NQflcy600VjM4v1HMZulTE5/0n NfPU4s2Vu0w1JcuXryjy5O8+ur10wQ4HFnL+qSDmXY2UKKTHA7vVrBTmysELDuj5 N6T9+xxuR7EJG3lwTREgPnr5nRlyZBxgAd6k/AJ8i2X1YiGix2KI2fk/HYdgl3FL xnLXrLE43mAwQjcmkMruNkebjfAAnp6vKvSOLZ3mqoPNhP6SPGTPxoskcHqHhvXh L3Y7/Qqga4sg+P8tZ4YTx4SHAAMFB/92KAG0TePM8+gtp64oOp9RuUELjT35f5RZ 0ZJZ1JromyMjOc6FRh1a9HiVzY2Vq99S/r8S5QoNH6vppxGjSL3Vs6vJg79eT5Jc ODdEZhoSzqmc/TwTHfOeHiFJJk8kAtX33CIHBUDM0p3OaJDj3weYi0TUWcxcvlFg p4RIYHCkmJj1/sI+0U8Jw35nSK4uNwW8MCl9a2hwHCtfnvQBfotybc4+YuwFesT2 SDRit/mXxYkmi/a5GPB0To/e/QSBuk7MMNtLv0oF8LCrfaN76XOmahxjaSYidA4H LUFNqtRL9J5/T4VSZsrSl+Gb6HQIaMoGPbXmFk3i6FzNP7VDViZ2iEkEGBECAAkF AkS8euQCGwwACgkQGV/UqJshvBlwLQCgqDaWuJOgfV0r5li2gRPUMI5XCscAoIG2 pLZLUWFiL2unIMhkFZSQbZZj =I2hD -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/9571F78E 2006-05-17 Key fingerprint = 1203 92B5 3919 AF84 9B97 28D6 C0C2 6A98 9571 F78E uid Pietro Cerutti <[email protected]> uid Pietro Cerutti (The FreeBSD Project) <[email protected]> sub 2048g/F24227D5 2006-05-17 [expires: 2011-05-16]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBERq43MRBACwBpnAQKjba4//RauFjrfImT2/oiaNWsxq/oYloEhFl971iMsw LCaXDtgt8qJDj4RFqiQbcaNBONsht5d6vM2u9fSPq+8aqTwKBUgwUV7EVeBluhk+ S/iG04HU5lrYjklvmMwkOMUJsuCN8Sj2R6Bc0oyNGbIk/eF3G8Pj70GKqwCg5TzU iz2NkNzhoyZIAyL0jyY2/1kD/jSj16M2A3SvH2n1dtNRiNkceKdb8GFEoX3/Irdf rt12YcOhjm98XvRhDFJa1R2UgLul6q38YxcLH+rOH9nmlTy2HIYh1HuAPtftR678 ApOeznte0gxEstliD/AJ9sR9IfvzS105E5OGCWzZc6AMJa7MT4XVAlEogHWZCxou 4eDMA/4najs55j1kz8khhLiAX0SUJj92XpjmpSFLvFB8D4JpeNtWKGx/wt9uwYBr GqnFpP7JHUFowTgg4LjgM3r+W+s1TyUZ5cBlgTgp1Qh6y0h98X6Pbppu1GEhTvWP 9FlvKNK1+bYNKKvUFHc5nLRK+0M7e0IP6yws2O9RN6rkb6UU8rQdUGlldHJvIENl cnV0dGkgPGdhaHJAZ2Foci5jaD6IYwQTEQIAIwIbIwYLCQgHAwIEFQIIAwQWAgMB Ah4BAheAAhkBBQJKwl4hAAoJEMDCapiVcfeOp+oAnR9QXvf5u9vyeU3vnAo7CiyW LE6GAJ9Pip8AO5c9BvjTjsRhVH9O+447qohpBBMRAgApAhsjBQkJZgGABgsJCAcD AgQVAggDBBYCAwECHgECF4AFAkUULcYCGQEACgkQwMJqmJVx944wAQCggfm9PIqo j6KZAih/TjByBR7kcAgAnRqnqUHf95IzrsGn6d7b+IhfvKh7iH4EExECAD4CGyMF CQlmAYAGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAIZAQUCRc3QKxQYaHR0cDovL3Bn cC5taXQuZWR1dAAKCRDAwmqYlXH3jswNAJ9KqPCEaiTKejBDeI+ZjLemDPYFogCg vC7oKdYHCRU/i9jgcsiycL3wuce0N1BpZXRybyBDZXJ1dHRpIChUaGUgRnJlZUJT RCBQcm9qZWN0KSA8Z2FockBGcmVlQlNELm9yZz6IYAQTEQIAIAUCR7xw2AIbIwYL CQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEMDCapiVcfeOw5AAoMjUQZiqAGONGzJt T3RI1sHhl/p8AJ9ytrTA/gwo66j9K+qNDxQ9kUXqubkCDQREauOLEAgAv+OK9YPB 4r5+9aZ9/tV6ItolxheP3skoV9ISg4T0ltZM8jLtBLqPY5qWlGRrAbh3ZHkOvrrf Y/bfGxPg/qlOe+ewqTnAA7IQcBXObENVfrq2gm35aluNcHbFutYGrkAThuFst1qJ bPowBBmQgR7RH5/lWbn3Qnisthsm6J5JldjgcfXth9usyXsGXCP1zZ10Sj2Q090S uSEEC/PfBpSbgkEMtTEJfirmVKTp0gPfIdUn/HhT3ed4kkZXkQJvvI/t3Glyp7RY 5nMYPr219vJ+bYP6yxm9gdfLey6A4gEprtncF/7MTUpib3MvgBpmPRq9yV4LHbhi DbXHaoXG1uZVvwADBQf/TkvaVZK55GKm527FenxU4hf0fWG3orqKAI/p3AhPj7l/ T1nLGWHMku22j61zx9N5xPElMLFdcs4+BX/ltzZdhFS67k+Ya/CLy0G3we8KQSqo UTzlP7Mr1aJtXiNXUbadNrkSX1DlRV5RP6ro73vvaFXPwHTxSmRRHg/UgE0B5+tJ kuNmK2whTDRR6rfpEcdIS1Tms8IUnva0ZI0QSnhzUcxv+YrV8TX11/NC0FlmhxTz ncM1pa6w0yGC/E48uG3NuElPenqM1h05xe9BntWbBPjB1TYa80jYNbLA/KdKEZlK 1klP2PnNoAX3HoKOm/1rkYEywGfxXuJezX4fYLrdxYhPBBgRAgAPBQJEauOLAhsM BQkJZgGAAAoJEMDCapiVcfeOsdgAnAhRFj8Q7p39kg5LmO/zsDXCD8wOAKCDV7iQ R8Dblj7cX+WKPwwhnrNq0Q== =UXRy -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/738EFCED 2009-02-27 Key fingerprint = 3F3F 8B87 CE09 9E10 3606 6ACA D2DD 936F 738E FCED uid Dmitry Chagin <[email protected]> uid Dmitry Chagin (dchagin key) <[email protected]> sub 2048g/6A3FDFF9 2009-02-27
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEmoPBkRBACM2PQ+WGI38Z5NtkF50MuYyv0u4qSaWtx5Tquch2sgBDjxjebI XQYuyzM9piV4ZSZHFyjvFCHjLhPg7Ae6xaeaOwPsGQ2Q+bSC92PoTC3bDdHW1hPV 6s8KxrFcelHLwhmF56WIALoI6E6IF60KztuISLm0VDG0Wy3lP8QAeoWbgwCg0fY1 iOETR0ZP09ophWg8CPUxyvcD/3NFr6GEVUuFX4ENQkX2GTrvEB1IBS3v9JvEMlUX bShFXWGHB+3ynBvw/EiuOgIB6Jzay3prP9rdGW4NSV7ZMa3Yw6OdhVpQ0ticn4zU FiqLL6x8SKXKSm9BvjFuWADe3Lnu/ekY1lYTM4iWPNdA2LjRUHwpDIHcHWgcCzkn CfY+A/0eKkj+/VTddCspDaXuTmgGlkz90LsA0cLv6gRO3IV+0t80TgohtsCdR2X/ Yf7fi8GsaMdhgJZNm9dMz/zD7ZkQ+OyQN7NkB1zkwg2RwOnbbjTa+HECtsr2Znb6 B85MamlnHN0WHNgexaC6c7ezEFq+RMBKRVJJGwehZXpT185T57Q1RG1pdHJ5IENo YWdpbiAoZGNoYWdpbiBrZXkpIDxjaGFnaW4uZG1pdHJ5QGdtYWlsLmNvbT6IYAQT EQIAIAUCSag8GQIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJENLdk29zjvzt eLcAn3hUOTepQzeJqPuTFl2Z2dM10HHKAJ9DJRmSIAwHBGPzlAFFzKKFW+OoV7Qj RG1pdHJ5IENoYWdpbiA8ZGNoYWdpbkBmcmVlYnNkLm9yZz6IYAQTEQIAIAUCSam5 zAIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJENLdk29zjvztRJYAn0cIluug IS7YO6a+Bf0FByX3jlndAJ9k3HAxpt9i9R0wFkFmbMX0He86bLkCDQRJqDwZEAgA jMe9QT4KYOHsLQsF5vHBq/+W+Lniy6OqEB1GSK9P/vqVIqVa7v7NXX/B5R8UiQMz fSNcYH/BTN1lb8Pe7pAIBpqPhKBi7NAW1Ddy9399co1c37ncf6HEa2P0tpJbTrG0 Eww9nUiFbhjWUHSY0MT57mHQHdCSlqNFl2jaV91CQaNybt9z8JLO301vQXP4LLND a/FQ3TdBEIXFLs/H8QKLBe5TBgd2lXy9qpZsii7xpfNXKG1qqIa8sfUoJO5Ng2GB K6tJUFh/J548BLt/c/p1KJo8ovJB70DiOaznRc+Tu8rR03ehdfrJ5FpDoxC6UAa8 7FpXWxjM6L3N/T01NcaXUwADBQf7BpNvsT/QzV74wnGXoi9aUE84ojkIAm9X4Q78 dfdCvSFWUACcvsB/d7XLcCXOZ1NJ1E8Tdjjmr24MRQRUY8MhDt47ngsTyDhDW5l9 EQ/ByjX3wlRBNP5qEDVkLudfRE6LlEye2NSNpXYs1Naw6U/deUggNZMwriVCuRI6 TPc/bKeq7+378EBaKc8ckuRdv8LWsIdaKQ6rQZh1CB6LpSsL9OjcRpKvK8yYas6I kWUr07xvvlVyRVLcrNyQwp2QnfK8fXeH2I/Qg9QwcV+cXyKzH4vka9zrR1A9SAHJ iOyMXJBy+GzoYLf/y7/u/LOVAm09P4tQ/7V/DY7nxiOabSioTIhJBBgRAgAJBQJJ qDwZAhsMAAoJENLdk29zjvztGEAAoNFpe2XX37q3yAaNfiZgEABrxsgZAJ9yH0YJ QrmO4sxq5l7AD6K+KNahRQ== =ER/k -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/CFDB4BA4 1999-04-23 Hye-Shik Chang <[email protected]> Key fingerprint = 09D9 57D6 58BA 44DD CAEC 71CD 0D65 2C59 CFDB 4BA4 uid Hye-Shik Chang <[email protected]> sub 1024g/A94A8ED1 1999-04-23
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGhBDcgZmQRBACk2gJB6utE2SYUGkhm/qHI6OoQB1B1cZxxjsUBmQZG8jHKj0Qd D5AZZv/x7C/2eyhUl2Jpp5Q2t4DIlivhrTYYM2VQ6YV6xXfjKrUjBmRc4i6IpYq/ t03ncDTyS3Bn56WcY1t+hAOlfQ/kTLEn0MLHPHvI1FDVV4VqG0MzvsV5+wCg5so4 M6YC+F5Tstp0tqOGCbe++A8D91y8JQitroVJ6bXmgCLHHEZqZLBrzs4MIPEHZld+ qaZlcbvPvmJqBjXVs0cojROEG8ZZgkooTZIZS42gKxN7sM7mVrQp/u7d9ZiIs7EJ wlYDHL1pbNJBZ6jk3aqrWtbVClzo3R/vjm1jo4kmQn3c2EmRY7n5vVTPvmLuSXvp KusD/2lMBEiTygcjg8MiJN0acy1s06def6LIxNMMivVjlIFxpq0YU2omzVFljbgy gAAcZgA/VhoGaSCKsoA9M/51tnIE7tcCQYsHmhoHsERliw7NPr4frmRPuaA3gx6h qVbwjUk0/gFTPuxRmnJyUl9rjn4sCze0eoMTraCTb81ru+/FtCJIeWUtU2hpayBD aGFuZyA8cGVya3lARnJlZUJTRC5vcmc+iF4EExECAB4FAkD9H94CGwMGCwkIBwMC AxUCAwMWAgECHgECF4AACgkQDWUsWc/bS6QRXwCfWQyDrnHKErxj3jZWfMgTTSUR +HYAnA1S6EfWVR+xI4d5V7K1o4U+JYh/iFwEExECABwFAj0XTZwCGwMECwcDAgMV AgMDFgIBAh4BAheAAAoJEA1lLFnP20uk4r4An3KSrVlQU+03cu7asDiAUu/0YA2R AKC/LEXgIKDd1tlWvJBi9WHOJWeyq4hGBBMRAgAGBQJA/PiDAAoJEMZRom5Q4jOk Nc4AoOpk2HLqrrw/RX/go6dgg4BwX0GCAJ9lXnFvF3MZt15axDDqkW+vBwsgtYhG BBMRAgAGBQJA/HFKAAoJEMnox5XjtG7/usYAoJRmWL6X567c4ypgCUI+pcivVwAE AJ99/qwsMdZoLfvsCeUYOrvFI7+Vo4hGBBMRAgAGBQJA+ph8AAoJEN1CmnbjJqwA XucAn2jHHc+u6KC+1eNErXNPBaAMEZjmAJ95rB5dvzS/p76Rn/85ggOfo7gEQIhG BBMRAgAGBQJA+mR5AAoJEBi5Be0l5MBmFq0An1SsywvJPu1aIWMbV1hgbvoKra7n AJ9DN8Czg9Xvl8zfxda//syHfiLeiohGBBMRAgAGBQJA+j2iAAoJEHu55xgSdy2P cqMAnijMYmWiJrkWM5PZrLFfM23V306WAJ0TsSRl3bsFuNbmuptu/1ALTUMkL4hG BBERAgAGBQJApQYOAAoJEEsqSJfTnaDjuNUAn38B71Jd+bTa7e4uTNgt+ygpoT0E AKC5FiPN1e/5TTQpicpxm/+ifqzFl4hGBBARAgAGBQJA+8H7AAoJEE7mpWgbFYrN qq0AniWfE7RcLFWX9YgrZLVWxLvxpOrSAKDTgNvLoVKeUf5rzHs5f0XN6NLUhYhG BBARAgAGBQJA+8mAAAoJEKeszx6Ol9rhrbsAnRi+1LRKX/vPwT4Rn4SMc2pEbBel AJ9ZxYTXsdEL57O8EBSac4287806vYhGBBMRAgAGBQJA+otFAAoJEAG0czTg1J6Z YzoAn238Nt4AbFVJ84l1Oce6W8zl6wmiAJ9HXnuPJo/m77lHAbNP87sDor9kgYhG BBIRAgAGBQJA/SO1AAoJEDJYHX6m75tjC0gAn3u72LSZiSPnz/Tg4Yc8xxaibjCu AJ4sWlrx6IVRVRkchxjmg2R809M5oIhGBBARAgAGBQJA+rmNAAoJEFRMMhzhlJHP MlQAn31bJlo3z8eq3dWQr+Yr2kU39HL8AJ452Y3ec6wnz/i96vWsGhbprIJSTohJ BDARAgAJBQJA/BMLAh0AAAoJEFRMMhzhlJHPs4YAnRSB6EvlonTWNksKakaY0FUB rvUSAKC4WPXWmntGmJTTovnlrSpUuhmP8rQiSHllLVNoaWsgQ2hhbmcgPGh5ZXNo aWtAZ21haWwuY29tPoheBBMRAgAeBQJA77SDAhsDBgsJCAcDAgMVAgMDFgIBAh4B AheAAAoJEA1lLFnP20ukzCMAn0Zzt6A68IUmA+pKZYeLSM3x8BvPAJ9Xay3AvXHq xkCunjqOBq0EFtRqGIhGBBMRAgAGBQJA+ph7AAoJEN1CmnbjJqwAEswAoLi6L+2X oyIPqW6tddaBGsRfrFoiAJ9uXR+C9lQ+E9cKuDZFIsvixRJFa4hGBBMRAgAGBQJA +otDAAoJEAG0czTg1J6ZFfUAn1m31LtNatUVft+HATP3Suk3BpQUAJ9c1zgpT0iL 1M9lEfopTLuYqFIen4hGBBMRAgAGBQJA+mR0AAoJEBi5Be0l5MBm+NYAn11iZAAH L/NiaBxDdqJcfdL7uKy9AJwJ2MTxC5rTVB06OONBYE30/47ENohGBBMRAgAGBQJA +j2eAAoJEHu55xgSdy2PbggAnirZz0+jJsmx4iU3imFWNNFktY8lAJwIMSvQdKfk +92fXCU+DBJQkQA7VohGBBARAgAGBQJA+8mDAAoJEKeszx6Ol9rh4LkAoJmF/Dq8 WWPmabYwhn8hADnCuOPhAJ0dc0+pjPCXwHgKIMqYknfL3ojxv4hGBBARAgAGBQJA +8H2AAoJEE7mpWgbFYrNwv0AnjWWP5WrOka30jnmD2f4ZfuUWbC7AKDHUbhm5JkS fP8qudaVwot45xIuNYhGBBMRAgAGBQJA/HFRAAoJEMnox5XjtG7/DLwAn2VkM+5z WmykJRGbT+Zh6+OHmxjpAJ9DGPrpTXyiIP5EEd2w7+EXiGKpJohGBBMRAgAGBQJA /Ph/AAoJEMZRom5Q4jOk7+EAoLv8vwveEEdPYNQJ+5BzZa+gBvT2AJ9AS+lvI+fV /JQ2hVaP6DradoicaohGBBIRAgAGBQJA/SOzAAoJEDJYHX6m75tjle8An2npGKEv 5zx+plAXJalZH0l6kADhAJ9bHoslJAfKMD6Rk52+MG/hwgnPVYhGBBARAgAGBQJA +rmLAAoJEFRMMhzhlJHP/tUAn1ruy6bmP4IUFFc7HQg1fIo9qlvzAKCcvCq3RPF2 v+hGi1uuu8w+Bfxcb4hJBDARAgAJBQJA/BMKAh0AAAoJEFRMMhzhlJHP0Z8An2tb hT67xHXlxeH73zslpXATFqUzAKCX99jd1jD26cqMOMYMfyg2JieeHbQgSHllLVNo aWsgQ2hhbmcgPHBlcmt5QGZhbGxpbi5sdj6IVwQwEQIAFwUCQO+5MhAdIFVudXNl ZCBhbnltb3JlAAoJEA1lLFnP20uk6LEAn14XT6cU9KyAGwropJxoWR95DPRYAJ9k TOe2ot/MwOLI4pD7A36FcqfQXohXBBMRAgAXBQI3IGZlBQsHCgMEAxUDAgMWAgEC F4AACgkQDWUsWc/bS6SxfQCggiWV05oDrtdjts6FdOn2H692y9IAoNeCpx91wOkw Vp5c894CrLroVT7giEYEEBECAAYFAkD7yYMACgkQp6zPHo6X2uHldQCdEJw4dYnn SuIcb/S9aHR7GZ0YLQ4AnAmLOBuiU8NKBkzlDuGukCg1oE2juQENBDcgZmgQBADW 3laHi0adLD3j4Obyjqt2ssI1XGXrFNSW5n+t27iioOw60wy8OzBxOhr2P2P9cvQL AmJ75IVJ6aUF72E4bOfF03xr3b8vCHIoejy23h7Zu7KUW/5PDAYEbFnafjrSN23q LpMkv4nZ0JZqJ/VEr5hQeo1BDHMqBpAx7LfNkBggXwADBQQAmUdEgo8xNr7EGhtW cUyldHyy+PZMqxDny4F+A/lecZTIjv7S2JM2zGwmC8V/vrFIGihMKEFhyf95FDUK ID2IviKFmkHRLnI5SCJg1CnNaC/epuLSMYOppaWcI1F6COVeQEpNcnO3qGQNho2t ls4HklbPC7T5cQjw3RPIqNgzwZSITgQYEQIABgUCNyBmaAASCRANZSxZz9tLpAdl R1BHAAEBjhUAn0OG9og9prEffO/nwJCrCRjIPn+gAJ9r01feaU5vSZZ7bCLYtkoJ b7AAzA== =dqQP -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/2539468B 1999-10-11 Jonathan Chen <[email protected]> Key fingerprint = EE31 CDA1 A105 C8C9 5365 3DB5 C2FC 86AA 2539 468B uid Jonathan Chen <[email protected]> uid Jonathan Chen <[email protected]> uid Jonathan Chen <[email protected]> uid Jonathan Chen <[email protected]> sub 3072g/B81EF1DB 1999-10-11
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDgBZiARBADgByjeXtfBseo67ZhVuyAMTk4vWu+bh966TDx29E+cS2Ud+mYe X8eQYKfiCQXlAzspXFVy4nmqsBY6KJKGFek5lPoCKhh2xpftYq+M+2N/oznrMzK9 GZvMdd/zhVp/HvrdpLrIxjMVA4dai5p9pYB1kgr3EjV5ed3onKrWP/soLQCg/3LP TAJ8ngyQvH+YieZpZRJn/IUD/2ZQGOSSPhJTiYmPR6+dI4Mj+ep+NlrC0bel8RBh ANV5eaIbh+rKFPPj1Pdei+Fbkixft7Ne/jH4s3d1li4L255T4Zapw+JMCOQf0+Ps 7za7uE88ofBK6nxdmJSR8vLoVKJLSD3cxyJs+BmldqZTzOuh945I7ajwyaqnPEiI GG6vA/9bRbnqnvUgMUml0kNq9ItjvdyUM4fgdS+sICjnFtwuPC29+0/FP2qmiEm0 W7GyQNBqDHlyiEe+R/G+3hA0/ey2dMVeOI7ti5+oQXYD2dccrQT2ixHAyko+N4Nn XVy8nIzUWNFprXLpC4WPfK2VjSJpp0nrm2DN07LDN0NcJMrQiLQdSm9uYXRoYW4g Q2hlbiA8am9uQHNwb2NrLm9yZz6ITgQQEQIADgUCOAFmIAQLAwECAhkBAAoJEML8 hqolOUaLYDgAoO6YPC4qnUXmHkRA7p4e8t4ZTe1GAJ9Yv3qqNB6M+/60uN0MCshb a35lsohGBBARAgAGBQI57on6AAoJENN4FMlqzsGqwIkAnR513+/0KzDMUI2GLsG7 R5q3cpqjAKD+IOPgbJHgIK0akA9GNA1z/P0/v4hGBBARAgAGBQI57opmAAoJECAV 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<[email protected]>
pub 1024D/E3BBCA48 2006-06-17 Key fingerprint = D7C6 9096 874F 707E 48F8 FAB7 22A6 6E53 E3BB CA48 uid Jonathan Anderson <[email protected]> uid Jonathan Anderson <[email protected]> uid Jonathan Anderson <[email protected]> uid Jonathan Anderson <[email protected]> sub 2048g/A703650D 2006-06-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBESUcI4RBACIrp/6emcURG5g8edmVyp6d/PcuRDcy3i+YJSXqLPp/3qfM2J5 kVMCQvgFSXX75K5HvZU6mMMtHYGCComtn67O1MbUSyVUZlNW2PwUr77Nc34MgcYF fzU7siy8Pc8LqIy3JUtHwi+qmt/+UsQBTCO+2heK5xMj6zklm7qRfOo0rwCg65HO lViBItJSZuZnIqz5chlFbhcD+wdg1tyXl+HW/d9E6LxMigAct7fFMHd5aA5EWWr1 plTfSSxOETAsX1afsEBfrr6d8jLVri1tfDvRHe/30YxRv6rTZ64GLIXD2WEoN3yg NvRVRkOeFPtN8K1gHEKRrcp9ZJfGG80F6d/RMk++AAbg/pI5ne6AxEiR1cAHmwGF HlfzA/4/bmU3m2n2SEbBRAOugrYcSRF0OvPsju2K34pooAnePs/S/zJdILIism3W 1Hjjp46R6kEtvY1ykulseQzRk+IpF9Esc2tJA3VSHL0Z2uI/1fg2mCGc0nk+t4MB oqJshJLlR0S7LerduZ/Rc1zErb4nfhG88GzH2Z6fawZtantmjLQuSm9uYXRoYW4g QW5kZXJzb24gPGpvbmF0aGFuLmFuZGVyc29uQGllZWUub3JnPohgBBMRAgAgBQJF Im7qAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQIqZuU+O7ykiR8wCglscB c4qLHc61O+WbG1AVlgMrvXAAn0R2OaVyHU33lcxpP9AZHsOYmhcFiGAEExECACAF AkSUcI4CGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRAipm5T47vKSCC6AKCG fne/4SQaTeR2HtTM8lJGMQZCDACfffBWKNxqzE9C1pp21dlJPyhOLwu0KEpvbmF0 aGFuIEFuZGVyc29uIDxhbmRlcnNvbkBlbmdyLm11bi5jYT6IYAQTEQIAIAUCRSJu zAIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJECKmblPju8pIj08AniQCG2Zu dFFzMubFUI5RK/s/KmYQAKCzEY9efR+f1sJKSo9/I1QZuNNQ0rQsSm9uYXRoYW4g QW5kZXJzb24gPGpvbmF0aGFuLmFuZGVyc29uQG11bi5jYT6IYAQTEQIAIAUCSBtj iwIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJECKmblPju8pIAtQAoIifNHQi kGm5CIgOxMgMAc4zZWaQAKCG2cl5XbQkANEp/5LB0AJkVyP5KrQoSm9uYXRoYW4g QW5kZXJzb24gPGpvbmF0aGFuQEZyZWVCU0Qub3JnPohiBBMRAgAiBQJMrKDcAhsD BgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRAipm5T47vKSJPMAJsHHtHqP65y av3mDwxrHqnGYCNw6QCfSSK/rPic0fGdI+kwKphP+t804+S5Ag0ERJRwlxAIAKGW DtckTk++NzYHbfCmCa0mCtUg4BQ0752ZRUZS73V/dP4LYBmOS7ubppIWC8XJ8vCA YKesQYBde3Ly3TrZfzdlDLBlua2YzmLQgwZvTzfalzcUrbHzFWy+mGqXBBfnclV6 tYwMDmsVxsukpIVsZzWpEMBBrrd3Zsr9SZG8rjyfiiuv5kvrdPpGv/w9INCcqvMV CTi7whrJn8MBwD/rNVuZqa8kW1dN65xKN98Jn5RA5JCX7kY04gIyUL6x0dHnJZ/c dfRSMgHPTROiajnzHrd9Olm4e05Dijd5vAffF9rxNtlJNTPDaN57RhhdTK1ZE6mr zWocL33kLML77+3rVZcAAwUH/0sXk1iRq1cs6D99VsEpK5Yu12U8OTUk8cPZF+8C HsT0c5xCbaPENBebs8gtgS1/oURvO/lgNmthPFEdyD60l0u+wt2BSmua9s+tFsUH uWgTSx0k6Z3rw9wZV/YUxe5PLEJ1JJGi3YY7qCG0BqFbbHcpkrtj6X4+H0Y01MzO 1BdklQ548jHb6wZn6BW+dZikz/vE7urxhx73CpRWerLtq0EpFzsdRc9DzChqmxwX WZFpSAZT4fbEipdmK6dtNPJoTeHpB4zxTX1Cj1HHCKRw13dFlr+CMBnQnhJOOaM0 kh22yyLrR4rikuEqnhfB79Gw6dxlJltTUKNuPHk4D14Uh5CISQQYEQIACQUCRJRw lwIbDAAKCRAipm5T47vKSCIMAJ9i5XNgXRnS+qoCDrSgrvf78e6zugCgh+4Wscpb rOIHnGJFBTAXFZR7KjQ= =PbEt -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/6BD4DDE6 2012-10-26 Key fingerprint = A33E 88AB D358 DA49 59A6 B263 A9A2 599C 6BD4 DDE6 uid loader <[email protected]> uid loader <[email protected]> sub 4096R/1036D26C 2012-10-26
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<[email protected]>
pub 1024D/2926F3BE 2002-02-22 Luoqi Chen <[email protected]> Key fingerprint = B470 A815 5917 D9F4 37F3 CE2A 4D75 3BD1 2926 F3BE uid Luoqi Chen <[email protected]> uid Luoqi Chen <[email protected]> sub 1024g/5446EB72 2002-02-22
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDx2qBMRBADYSjvWKVcUxUb1aR1VjHTlFo6zc6PHMK8W3CRin7lY3NgsYsmZ n0IvGQIDEHhTpOEWLS0S6A/bseaGUir52X6spZ8i5hfd7Ps9RmeS0oHx0XDS9JTJ HXFE5RjExHbLnw4DbsaqR4Fl1V7NJU2U/nkiJILJd/PGPZsdstKYv5QvnwCgmwr7 QZlkTV/m61MmbMAEpEFWaecD/Rp5Qb9S5NGVplNeNqub4fC+Ydarkorr8qBJN9Va xu1Qgj3sOAoxmuOnZ99YAgXhs9Bqe4QsrQfs1cMUVzZsl3FIffh92HkrLmdJlsjX 8lrRT694cIP7+ELNGKJ/zaXI3j2cnQPVqUO1icVfijqatqDg8bgQS8C8CGQX6e6h ADKGA/9cIY450gMvrtbR3/bqH+IgvBCUog5RXv0y8c80sJnzeqawx2BuziFvv6mZ Kv0PJ2vnWok0NHcyuBHkkEt+ujYlMQXHZ6wRykYxIUzM8tl+9129tSNEK+GdcCOZ rfbwm8scs+VmzrHXP+saOPcHPBr0e/KPPixNN1I5HB3yI0ILSLQeTHVvcWkgQ2hl biA8bHVvcWlAYnJpY29yZS5jb20+iFcEExECABcFAjx2qnEFCwcKAwQDFQMCAxYC AQIXgAAKCRBNdTvRKSbzvmmrAJ9FVK0lT4Qym+qzj0EA6TP3V42cwACfQl+ClPzJ zngykscMJW07MBXkQ9i0HUx1b3FpIENoZW4gPGxjaGVuQG9uZXR0YS5jb20+iFcE ExECABcFAjx2qpkFCwcKAwQDFQMCAxYCAQIXgAAKCRBNdTvRKSbzvkEwAKCRteUw 2X3XbPsVDCBZarrkf113YgCeIHmhkDHbauw4UlUO1tYNVObn5dO0Hkx1b3FpIENo ZW4gPGx1b3FpQEZyZWVCU0Qub3JnPohXBBMRAgAXBQI8dq6XBQsHCgMEAxUDAgMW AgECF4AACgkQTXU70Skm876CUQCggJuwNIJy6f05Ka17RYn+j8hEQhwAnicDXnsy 5SEYN6amlHdqN/HwXCsbuQENBDx2qBUQBACifA9hUBBYNqCcXTs8Jk1MCcToMFob vRt/SK2EcwjZ9aF9sIX3tJFrOHEe/bIcDMX19e480T4+BBs9MyHdnKgPR6vP8ZEe FvT8+44Wd6psLB1LwsE8UpJ3CbLjkgafTpJIlh4NP5iM2p+2ugUIRM2ZaAG7MOMK Ec47KOEb6yI9ywADBgP9F+p+zQ1Z/qVekBooIKU4xKBryGb/XIPJi/Pgapgr3oE9 kKH4iObbvMBSV3kd4a0+FSEXSZyRnMD1AG+dWhAHgb9rbjtICp3hZOKCMfdZxFVg QStZO8vP5EhQYYtIXiNmOvkkBPqb+to5RgFFez8oIdPlMUq2Hf9MBIY6XDoNJl+I RgQYEQIABgUCPHaoFQAKCRBNdTvRKSbzvh9GAJ9K3KifYIBOHlsmRLF75mgKQk/c 0wCeIOeVykZkImOxs0pEQMR/4g47Wjs= =RNuY -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/964474DD 2006-12-26 Key fingerprint = 0F63 1B61 D76D AA23 1591 EA09 560E 582B 9644 74DD uid Andrey Chernov <[email protected]> uid [jpeg image of size 4092] sub 2048g/08331894 2006-12-26
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v2.0.16 (FreeBSD) mQGiBEWQwPURBADoLKvU4ommBNyZyVO7L2S/AzCQ7qZbnnyP06JfZAD1gay7rcT0 1n9ncCIUF7+zJkkOyAM13rbImLqGewIxFkcI9z42qsLiLA9yCuig/5GmyJQK1Zce FyKkR6ZkpuuXUAZnoiHJ5mGuY89rWGrM5FrINkbaJkFuJjIUkh7pSk5OBwCgvzbx BO0ye9X5e3/Uz+FOE71qIIEEALGhytNWYso6b3rznuPxDJhniApNEPbgnZBdP9xL +/TahRwr6C93SJZKhYYmsgUTR4h6oP5dbMsOquCxOuej0lLYWV/Uvu6OPwqRlXzC lyU45pre60zIuKS6QBV3AKagrwJcw52B5c8FxUOcF8QLU//SjvaiVbq1eZLjSUne /xMABACtrSN6ERQ9GEIoc9AlbCcYoRJq2rp7k8iZz07FkUNSAoWc/Jei92DVxn1n oHQtUoyIWi+pC4f4u0u7jz3VIQZ2SGMlZJI1WLxNCtnmiKiqqVE4A2glLv0GI80Z wSH8C1QbR+1aHLwT7xQ73TdbUrkFEEjS3OvY4CypZjeDSgd9T7QeQW5kcmV5IENo ZXJub3YgPGFjaGVAdm5pei5uZXQ+iGUEExECACUCGwMCHgECF4ACGQEFAk0UUVcG CwkIBwMCBhUIAgkKCwQWAgMBAAoJEFYOWCuWRHTd3AkAoKjzdw6WJLO2l6/3YkDv 1DPwAjgMAJ0YbOcBQHt+7uJt05qAYM8uePMRebQiQW5kcmV5IENoZXJub3YgPGFj aGVAbmFndWFsLnBwLnJ1PohJBDARAgAJBQJNEuk2Ah0gAAoJEFYOWCuWRHTd/zMA n2pzPKBO1coKoYnz2BmZV4e5SYl/AKC2T5ZaCtRpI3+uI4858PnReR3wnbQhQW5k 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<[email protected]>
pub 1024D/2675AB69 2008-02-17 Key fingerprint = 00D2 E063 2FB0 2990 C602 50FD C1C2 7889 2675 AB69 uid Alexander V. Chernikov <[email protected]> uid Alexander V. Chernikov <[email protected]> uid Alexander V. Chernikov <[email protected]> sub 4096g/BC64F40C 2008-02-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEe4fOYRBADWmfOzx8cXvVytbw87eVlU84SXo3tZYeffxQkJ4JzGoA4Tq79w 2nTLPSnd42W8gTZ/dxEzhbij3RW5mcvc9r6N5YsOw3eKC30NQMM05nV5/yX1owj4 +eZ1YUZdJKUshhWax9dL23BDLEPRWfKsBWS2osqjIPy6WhDgTlDBz9rJGwCgqK5g Z7sULpLNE0nnJPQEWL8zt7MEAIIYKjPXf3BvrDtsOHWpOK4hZgf2X9oCfoFymVdp cQ6oCWsigmKyGuy3JyyA22UDRfZer3TqNCwd/ynHYXMmYl2IZ4TtV23wGGQDGyxw cu1SRhTcPRftCMI2r/6E1vHSqSSdmWwBv6gdN2kVSqx+REchIhuyWWWhMr2A64DI S6rxA/wMn97Q+ayj0S2t9u7NbUXQPcB1hiv5qMXWMFco3NokOsUdvK31v8m5fO4P Zzzz2JceN+6ae901C2Nrc25ZhujjtLs7XviqUB/GPLymfGUaCpRlm0XReKJPYQKo V4jAXxjzrevEWTtNwaC73V0x/w+CKWVhyfUCUcf6HdGkil4CPrQpQWxleGFuZGVy IFYuIENoZXJuaWtvdiA8bWVsaWZhcm9AaXBmdy5ydT6IYAQTEQIAIAUCSeHOPQIb AwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEMHCeIkmdatpMIgAmwQewwBOZf6E EvGSx78VopWKwtyFAJ0Q0gEIyhtgVjHlGgdOhhaN7D7a7bQtQWxleGFuZGVyIFYu IENoZXJuaWtvdiA8bWVsaWZhcm9AZnJlZWJzZC5vcmc+iGIEExECACIFAk6LOVIC GwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEMHCeIkmdatpwXgAn2Sf2rEX g3wYOqke+DBqtgY7TAxPAJ9Qo6HmdRlACa5S3WR3xFFdx5SIYLQwQWxleGFuZGVy IFYuIENoZXJuaWtvdiA8bWVsaWZhcm9AeWFuZGV4LXRlYW0ucnU+iGIEExECACIF Ak6LOc0CGwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEMHCeIkmdatpU64A oIl4yXypO/ve5VmpqWodSg2KpI81AJ4l9hRomH4gu1ku36RcejuWkYoSVLkEDQRH uH1AEBAAxMbUjr0N//HxCwCrCp/zy/yyF+tjYCoVxlFjeui8Uxc3QpDmsxDBgLed YggRT9VEFBHEF9T9edsK+2Rjs96saGcyolKnfeQSxz9ua6Vst39vAdjBzqmVXWJW DEgU9kAMmLsONi5nO5SaB0GpnhNttG5NM9J4lgZ5HUNnyCMEGUCOXa4R8R7sykS9 K2IfJZLsXWmvXXHD53B1uYROPTn+HrDixwdoYFDltedGKez+GPdP28PeBWeIJhQQ f1oxmlgNU8L++BaiGmY/QXBVRm/Z3NOuWi99NupN32LgZNCGdiZLvltgYaQcnYRh 08Br2Imu5vK9XpoDHs8a1AO5OBJVoysdu1ESnyzuvmrRewbG14+8kPi/4EKo8lnP bYGUVwh3R8QrSSzki8v+AZagh7Shf9m37QZtIzsycqqiE/S4o1kCyOk4q8vooRMU 852oXyHyF0BDPd21gfz6b2bKyi7eDT8apzrrZ+Z7yY+4TCg0D9m/LloT9cEag15T XxkuPqOF6gq7vMqm3GDa+X4wXgrVhNwbKHT3hAo/eSoQTdB5PeWELZ5ykV6Ik/6U ccG3GZjPMSbQU217PlmTVKmv2yrwHXxAZECQAlhZUIEkyVBHQBYuSH/37r8DM4im btIL6A++CoJZpf71YjEiPDiQc/ono9CPtMGsbPl3uekhYxdwM9MAAwYQAJRqYdYc Xb2IhEEbcdnE1FKzO/e3d+O1ze+diefS7/Lxd9zAPdmHY9W3duzFgQv50F69kKUr JzZF77o8X1dlpD/ip2Moimh0rb40PrP/AasCiww4hgXKfsDInqSMKDK4KaZZCKFf 4N6yGD2KAqqGnJfNNzIrdxpH0BjeXXZm+Fzmr5M/eWMDGOJZmYnKCSF7dStdwVZH Ld7RUvpQ3cR+lQUI6hYTMhXPqR7mEDAHq7IYzbA1HBp1c1P4vywD/myTi4wevomE 1/GprPYlocXaytWiRjJvGjLw8lg0E6utQRLhoPKIIp9CsNBw8IQRZ+qINtyO6pk5 oxnuq+yan2ixb10hBx1yQg6PLmgUaWqPihjZ+i1qtpLoMV4BGxzWn11+o8Mh0skH rmKP7DEbX6Ctee36gr6ULZATsje4OyC98T9wzNmLDYOV9Zusukd5Kxb4f6MuDO8D B8ky12ZLA9s7+RmT1Vx51pXOj2YnTT7RE2+QWu/gUfm8gWsq8tSwowzuE84QcwfX 2/W3oN4QIVUqWULzC+vUV0TnLO8K5fqgn8AkX2ta5pIYF0t8+KN/nb8mgV81w6cV ii1Uhv1yRMyro7D+eURm07yvpWyeLfILnm4U/PoFx4JK++UehPB+QACs0bKZ9AOh kTjflPiKorAw13Mv/BinmgRPnSJZzqUEW3ILiEkEGBECAAkFAke4fUACGwwACgkQ wcJ4iSZ1q2ldngCgh5mTawBEKWXNJXXVFGfo3CiWc8AAn2wCkHDEhZjrsq+OqQ7b j2THTkZc =2RPV -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/EE278A28 2004-02-08 Sean Chittenden <[email protected]> Key fingerprint = E41F F441 7E91 6CBA 1844 65CF B939 3C78 EE27 8A28 sub 2048g/55321853 2004-02-08
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<[email protected]>
pub 1024D/E60260F5 2002-10-14 CHOI Junho (Work) <[email protected]> Key fingerprint = 1369 7374 A45F F41A F3C0 07E3 4A01 C020 E602 60F5 uid CHOI Junho (Personal) <[email protected]> uid CHOI Junho (FreeBSD) <[email protected]> sub 1024g/04A4FDD8 2002-10-14
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<[email protected]>
pub 1024D/FE886AD3 2002-01-25 Crist J. Clark <[email protected]> Key fingerprint = F04E CCD7 3834 72C2 707F 0A8F 259F 8F4B FE88 6AD3 uid Crist J. Clark <[email protected]> uid Crist J. Clark <[email protected]> sub 1024g/9B6BAB99 2002-01-25
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<[email protected]>
pub 1024D/FE14CF87 2002-03-04 Joe Marcus Clarke (FreeBSD committer address) <[email protected]> Key fingerprint = CC89 6407 73CC 0286 28E4 AFB9 6F68 8F8A FE14 CF87 uid Joe Marcus Clarke <[email protected]> sub 1024g/B9ACE4D2 2002-03-04
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<[email protected]>
pub 1024D/2C37E375 2000-11-09 Nik Clayton <[email protected]> Key fingerprint = 15B8 3FFC DDB4 34B0 AA5F 94B7 93A8 0764 2C37 E375 uid Nik Clayton <[email protected]> uid Nik Clayton <[email protected]> uid Nik Clayton <[email protected]> uid Nik Clayton <[email protected]> sub 1024g/769E298A 2000-11-09
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<[email protected]>
pub 1024D/4842B5B4 2002-04-10 Key fingerprint = F00D C83D 5F7E 5561 DF91 B74D E602 CAA3 4842 B5B4 uid Benjamin Simon Close <[email protected]> uid Benjamin Simon Close <[email protected]> uid Benjamin Simon Close <[email protected]> sub 2048g/3FA8A57E 2002-04-10
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDy0zIgRBACh/FYaouoKpVZdsPe6buzrEmX4WcsR8iPjQVmwQ4lgsfZpWq1o sMhiL870bhH/79xyvnatqU1yi9+kwgE8dZu3aSOgazjx+NVOD8jES7ADXzfi20Pi Rvjz3svuys+vB9dIpl0LORxSTE+k3SGH9PpMb7wZMt+vFVdExYheLk9xtwCg4uCg ulPV+AArye1TUaKrTbSw2IsD/RZpbYly4g/eck63e3QualpecRCWHpiVshtgjz/0 IvKxT1PXSYw2pk3WRFQ/VjBX0fh0KS22LfudVbdMfeXboj97Jw6VFToVDTNIhs6R olpD0RSTNH89dBRtdxijgL53lmAs7pMico2vs2h+nWKWLhv604tDs5UFbJ5BMtQn 9se5BACNtLS3XCo9kDib4wMBPxL/9TWPAYXLAqSrJ8bwbcuVBUu5f4e/5Y5/iawh v3yiluQkxxuriWBkR6H9cyZPkKHWvWwOz8opx+DTBu87JdqRxBl4kqz+zCAi1Xt+ k0kHtdH3fx8IFlk28weUX3k2re4Oxv8KuJPXv2a/pJ2Huwm1dbQpQmVuamFtaW4g U2ltb24gQ2xvc2UgPGJlbmpzY0BGcmVlQlNELm9yZz6IYAQTEQIAIAUCRdO57gIb AwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEOYCyqNIQrW0wPQAoIThGdS9li5S opcG4sIpSvq+LP8KAJ4l9dlSK8TGzOYQNQXtH1nG1VgVnLQ0QmVuamFtaW4gU2lt b24gQ2xvc2UgPEJlbmphbWluLkNsb3NlQGNsZWFyY2hhaW4uY29tPohhBBMRAgAh AhsDBgsJCAcDAgMVAgMDFgIBAh4BAheABQJF07qeAhkBAAoJEOYCyqNIQrW0+X8A nj6vcRrZAym/K50Oh7SzAjpIPPAdAJ4tb10v8+NIKlOWtlJTfymWWclrw4hGBBAR AgAGBQJFtrC4AAoJEOI7fnC0Z/C/9BMAoKyQtUy239PRDHv3tCArmgILCBkOAJwJ HQnXOY8UerFlsojuQUOXzjO9CbQsQmVuamFtaW4gU2ltb24gQ2xvc2UgPGJlbmpz Y0BjbGVhcmNoYWluLmNvbT6IXgQTEQIAHgUCP0XAlAIbAwYLCQgHAwIDFQIDAxYC AQIeAQIXgAAKCRDmAsqjSEK1tF9/AKDFyCSwKZHqpvnnb6nexV1hQv0VSwCfVk71 pMjm3TldaUvv0qXWIM93pVKIRgQQEQIABgUCRbawugAKCRDiO35wtGfwv7P+AKCp Tyc8C0gvNlgXXGVC2uKYKGp4NACfd4lgKHvkWGEhkU8uKgqSZWb2lg60KkJlbmph bWluIFNpbW9uIENsb3NlIDxiZW5qc2NAc2VuZXQuY29tLmF1PohvBDARAgAvBQJF tqbCKB0gU2VuZXQgQWNjb3VudCBpcyBubyBsb25nZXIgb3duZWQgYnkgbXkACgkQ 5gLKo0hCtbRfdgCg195mpBKyK+E//F6a5Zm8aaHl3/MAoNdFYmNi/EuNVc3q1pDw 9H9AHAHkuQINBDy0zKQQCACQzjhHd5xdiSkXCd/LAIm5vmbMZKm658hJMOT833hb k4dKvdNYOkgNSVTr67vUlqt3o9aR8EDchXLvi0I/OtDFrwE0tUgoWjMC8bcSq2Hb uuVvxhD3ZQi0Bhy2dYijj8FGrVD+PJ3XUj4t2F1BheZ1pkar/cj+OEdgRAEnZzQS mjY34P73ijpwiTv60jynOFTA4dX1hHFKdi2fsl2cZOrMstvCFS1XkC/O7kZKhrM5 v6/5fulfNNAa080lUuXfDOg9G/JsjKpmugrSutphxwILWElfiGiRfXdokFvXqbXt sEW0l5r9VSSqMg7UTaWJE03mEnLjb6jrTpm26z2aawYzAAMFB/9ESYyVMFCLDeRC tCcq3nRzMFZCYLE3l8Y17mcyx5GZGkK945jqJRcenG3xWJCqrXlHA3tbZ7+Gc4OF kr3BNBs3vK0CFdtVFFKJT1aiuEEXlHalRDI8eAAAkG91OKMCb7DWudK/zzNmFWTz oJS5ar4Ymb8g42bsfaJ4iI7GsnlgvRQk8HZJAggMdpEEXTIqOLS0L7mjYKwCHdNp se/DgXdFhrbfCT8QF6vZonSfDzRqm1HqGJxR8iIZQJFr+2mdrcPsXkMQ9pX2YzSn ucTolTlqBqES0a1RrnFuzi7QczFk/JzGHkz5O8JQFBdcK6gAxWI9p62LVvR3b05s mdFTJMLKiEYEGBECAAYFAjy0zKQACgkQ5gLKo0hCtbRuIgCfXvphwuXuzadBStxj djDr44BdiAcAoLK+kkFZqHGI0YmMDuKMtYDmU05n =/2rY -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048D/20A0B62B 2010-07-13 Key fingerprint = 39AA F580 6B44 5161 9F86 ED49 7E80 92D8 20A0 B62B uid Tijl Coosemans <[email protected]> uid Tijl Coosemans <[email protected]> sub 2048g/7D71BA74 2010-07-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQMuBEw8inYRCAC0m+IcLYrq65xB7Dkdbgcftj9dec89l9efYgMQir5mB2T9FeP1 PxsCK+RBdjaqNpDfKzGncJQgzRmm1lPjlaU4IG+zpdw2pZlNmQm+dj+H8d99dF1S tWYGkNIUOIStC67ESkqG/Jfz/tRaVxYluavqz/V7JKka+ecqtcRB8FOGUKNavRHT uBRYplhg+SOP35VMfkUmnLNDA4XVlcSeT7JXlxQuX6x3QRAyjmWnk5a26Qsvw8WQ 0PEV68EqyNpKUtp9DrjPj32cZQcBwe2IF0rGSEGUB7AZD1IKZXhVruVdii1rqEI3 /vyDV/ilhIr4OM+npmZDJP4uR/DEiWN+wAnnAQCJTPG+avA2qxNpcgIGaKoB2r3U r+zWatUP/1P/k5XLPwgArRe4u2YCS0KECT+PYbroO24NsPrLXxoCPW8SBGKUvHWJ AheOffbZI3cLx3bY+e2tcYUPJOu+uuRQEOInTa+IqA5gXziTtarhMBL4P1jzFPtp Cw7NWIsCzIwOqRzot3xVKWNpj0NRkHM0A4w2eG7duK5i/QAqozz6IsxRu5iSCJXH zBfYVlatkW5pa2dZVsDQuRoh7EGypxoCvDaFoJj8Xh2YzWwvzj90wA3mzPFIbwh8 Rq8qXW0KQMY94N21kZEMnwrafew/HFXT9gbRC0hdhCx7hc6kPyrce+em9R6he84z ORQP3yAxuxe/7LSneO3+DzmG+BtILbycxcaj6z8nDQgAqTVbHF7RT26U3f5tEg1T 4uBoUBHCWQ2eIxFLa0JF8S9qhyndAn//AveJYOai78PfHCRnTro+t5g8WI0wBE9+ XC0ZsDZCj6fCoEydEHuUQ0EHKiYEyARDRxQOcz+LlR77akX3YaIZG4aEvM4U6dhX LlE2Onx7skoxswyOi9m+AsFLhnwVV8BnJgEkDbUTOoMaXznwhmXxlGikYsqIlhI1 PTmqqZv0a5qtx+6JS0aHsWohxYAVXNMUXY/E8QvNWyYMdjsNtApscfh/CPbkGbUx K6HK/fSPWdEs3UxpNZoS9jR4tXpQGxk/SL5w4BjSSLkt//gJPUO3/rjdgVLGUSjG GrQhVGlqbCBDb29zZW1hbnMgPHRpamxAZnJlZWJzZC5vcmc+iHoEExEIACICGwMG CwkIBwMCBhUIAgkKCwQWAgMBAh4BAheABQJMQXT1AAoJEH6AktggoLYr+R0A/3lm gLXdoJSpUorg5FfBL1cF7jOfXlMfcp4DV59QUFyIAQCGAEZs1BWJnKkvSFypl/pM J8Sq72ELI7JztmTqSdoGC7QjVGlqbCBDb29zZW1hbnMgPHRpamxAY29vc2VtYW5z Lm9yZz6IfQQTEQgAJQIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AFAkxBdPYC GQEACgkQfoCS2CCgtiveRAD8D90DCFmTbS6TEjQUuufyL4QWqOPfg1Lx1hVOYUSf OEoA/RdT58l+jHRib9i5uU73QJLOJqmFj4/A9pdAI7nkz6e3uQINBEw8inYQCAD7 4OILfjW1wNRBie7dUGpKKNSYqjhqmKjKzWnU4PPHBuFhzxiGnKwtM8hBgsKtiR3u teXKfn6jWggriKZpzUcgjnLw3b6N5MGSeTEdlh2DTGLEPm/2j8EHb1QEezIp9Rd6 A4V3YZpCKvxgzV9x5z7k20XF/tlz+0Oo6JmmLWIJEXMyZHNMyLxLi5kqnTiimHmn /u2JjAJU07lIUk0PmCv8tU5bku0QmsYYdLyhAlTpeB/T5n208Lo6G5FnsN3tE5fP N3vB1C51055aaEbVuaQcUXcvg/0dBxTO5h0sibmrQqZdWLWdcLis27vGtH1yR/0T n8tgBqnmqXFU4rtBqdtXAAMFB/0efCK8VYnJBzHjzXOj9Zs7TQMDqf3SZyMA05Us KjOxWI4W1WmoN9s0X/99q+7nfzDbD4VB16qR70u72QYIqhaJ8xdMdnWeQS8VYnxW Kx7tnkUzKAf2xYM5BAGkr+V8EIjDmCAGXCbX5xz9oA83I/LGRXMzWs1GRt2tHAOf gzEk9PXsX+LhDMrCx6cgDSzbAAByYh1VuIOVE06AKOH7Yvizl5M3E03O/b8qszTB sD8sHqj39ShXJCXTgT+JNxWhXw4+xSo3SGIQfSwaGemsS/2VIWZ11a2KNozZM/rY +vmMth9Mi9G6/kXXMo3gG6UVgoX8z1ji1/sOECRVpJbUyHHSiGEEGBEIAAkFAkw8 inYCGwwACgkQfoCS2CCgtivrMwEAiTl/f9HIMpFwzdUSmGwWOzdlAZMDKy5q+I7i e6gXZYsA/idi8cKOdjNsakA7+KFPNPqg3a3mH8NiZv7CIMeb9kfq =JjyN -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/18DCEED6 2011-10-03 Key fingerprint = 6911 54FE BA6E 6106 5789 7099 8DD0 7D21 18DC EED6 uid Raphael Kubo da Costa (Personal key) <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBE6JE6gBEADepD890SrcOODbfeymiA8jKbWIpTKfvbzEB6u6wpRck1VLmXCq DlZNju0M4GkILWp9fP4gBsarYrN3YmNP4H/hpBRIJou5hfPsggCs/q2go6bAPN4g VsJ4IlPXlGDDsMGDMpjqUFmpc911DOPC/b0d0Jzk+BX+ViAKP6AJt/jNcJgQQ1IZ UpQCU31yVdQhO4LjY6KXJgdb9jt5hxgeW75L/eBw802rhLBAMTy6VJBjgR+rKQeY thElDWbs5SlDoADb9HmEx7ws2vTn5jr+6UQAwPqO/sZBd3QunjNh8QPqC16s8+qV cPpV6S0mfm40o1dxN7GOOx6UTYc6jS+9cV+HRwNjm+DwFmHf+yeIVZvmYLuQ5jg4 a8Vo7Lm4up3nHS/lLBi8pt14D7tctSww4eEDdi3ofbbV9XmPsEkhpEsCeSyMIh1+ nIpcE9LAl7LF1BeenyQDekqstBeM8FNCf5rxl/dMi1B5nkTurOaF8F3Ntg0DhNWR 2vMEWVAA9WKu/xl9z0OeOiXfUUis7ntUqLCjtUU6/3gRc6JVSJOXQzfsBqgv452N KdOSrZ0LLv7nIL63vuIMOAWEoijEnpvSTYCcCIqsAf/aFUwEp85Ag89isZk3JY7G M9XExA7bh0eujWMKimr+VHfuZP7jHLoJ8bQg0J9tJ0cVSgdRj9c3IMM2cwARAQAB tDlSYXBoYWVsIEt1Ym8gZGEgQ29zdGEgKFBlcnNvbmFsIGtleSkgPHJha3Vjb0BG cmVlQlNELm9yZz6JAjgEEwECACIFAk6JE6gCGy8GCwkIBwMCBhUIAgkKCwQWAgMB Ah4BAheAAAoJEI3QfSEY3O7WufIP/R61I9pGVqIFW7zDFvt2Pu+kowInTzqePjdI lxRe4a0Rz7KY7Ss/vHcqEO+gR+isLL06kuC7CAOwP7keqV45MD5fEWhub5HLwOQt 25f5GqWiVd2qCR33zWNPA/COIh7k0sqZTrEnu1rObVeLnk8nHsgYyQHnnHcuFJzw M29146oDZ7x4wEcKJk3v5qRISt4has4mocHyksgQ1dgPnEP99VxYXOyKI498yJ4l 5RzgxHNos7u2X1zueLHp0tcY8p1Bga5ULQ64h6l2RUj9JleVTfjS5ukBmNcXkCLe pVIblCNes66Nc0/0BqjVp5PSoVfIUYpUMRAJsO+818NP3RtFh8mfVCKi4bKIp6kP Pj2MC8sTa7X9JwFsBkHXYa1ETf5f8yQoLSorRV9sWNhpItHVQ5+OWkCeH8Dmmkjn OTBSRqUQCqk7dv68N3vMZKLo7DYuTKHsRNpK2tPrhsL3kEXSHupTHHlgqQmwNhJo vZ+4SUwWWAzEDL51wl+BwDYx9Adp09BF+ZpBksaefLu+boPE0ywmyM/lYDytjN8f 72JEIciCk7zeLcxvDQ8LkEn4F8Oinivze64KwGUSmnOcIsFDDXaLvS/fmi82p8g5 2G4fYepJUXRshbFECxc7ByjuvlBnONerxII2iJluYfQOhSJ9gy1c05TtNG8yLFrD Ga+xNN6yiQIcBBABAgAGBQJOiSpAAAoJEPs3PUX4s20oD1YP/jWpI1OnZiyNJW3O nWAdQxIDCnVL5FajHZVSoj+XQc0kBdUXFYsZDN4CMU/OUbNAW2PPctsIgkfFGvP4 OJTKE9Hjn7NzRMbLaFaRLPEV8rDODkXRz9MnlA3GUeuMONqtSHpgdKcNwoct/KYA j3viWP/uWJosGrXVA7GAyyAZQUaGqlK7983RmkfA90gnlEhAwNoKUhVPTydXNa+m UWcAkTiKOHEYHttB2bXj29cleVm1I3sEG5ZZ4Nz2V07F050vPeYN5U/BpUKGXogY VXK7yXztSJWxtgd8aTP2kiqf3b26KSAiEW1ov/4OlRBBaFZI0McHLTjy1LPV3noZ HYgoObnqjVuuPu0RLoJqbD1u74hMXi4pGR/Q0BTmUTYklsbSg7iH9JbB0Q6Vb938 lh860kAfTjoB6pnHNsTKnT8+OhYOB4hFveDuRkpJBdmy70p6KXwhL+oeQztNGFc9 XXuqZX7HH+cAOX2xCmTu/pNg4XdgUddwTo9aZhGciBSmuuz+NyHLkFW+tOiKKCgz YPLVkDJP1h/206YLVGjEomKiSpNDwWmq21eaWMkpVROccXUJqrzQ9lq33dmMlfgX Km7nxDBZeCCenTvwhVMrP5zNMi387G5z7zL+AmsR9j9JRtfnjgehyPqFVv4qEi+F CnnWxLMKpuIcZBJTJj4DevmqihGS =FjO0 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/6AF6F99E 2010-01-29 Key fingerprint = 9A3C AE57 2706 B0E3 4B8A 8374 5787 A72B 6AF6 F99E uid Bruce Cran <[email protected]> uid Bruce Cran <[email protected]> sub 2048R/1D665CEE 2010-01-29
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEti1ioBCACz7CnTd0jZAT+OOYC9dRgBFMw/n/rI5tP0Y9QkQ6452oc0jYWC iHxdsV0YYAEoa1dl8x6aTnzOw41LXxZN4dllj537cf6BW+/gHTiPRReI5nZkWqWw tI6rG1MGK9VRvRVpyXgENA1f2qcA7zRmEmlomFtll2jviwXZ+dIifPcznuKvZext rB1XilX4UMS1gWIyQX1XZqNsokpD8itfkyyNLJu1Jjn3vlka0iwWbgu6Wb/LSzCg NKg0azcyxVDSRY7gEyasNgOKYJQxGYww7q72PE7lysgOjBnZHi5v9t+1oQfJsVYH 8iyf3/V/y7J9NGPAAUtzIt3vPK7ISG6xxko7ABEBAAG0HkJydWNlIENyYW4gPGJy dWNlQGNyYW4ub3JnLnVrPokBOAQTAQIAIgUCS2LWKgIbAwYLCQgHAwIGFQgCCQoL BBYCAwECHgECF4AACgkQV4enK2r2+Z7m4wf+KfpgT8d0t7ecWL9UGqy2XlyqVu47 0SQ9WQA51MBtbHtLBXZIJtSB55OJRwPoWD7UyY0jHfa7CdltP1munjpF7CGXY6dj J3MnAdGMGIvs+dpUHP7g1T5nIBJItQyNJS/mulABsMGes9bIFY3Mk3ulEZI92bMg VwjVs9/MJi9rkI/wN38sZ5nxtFp95Lot95E/f1nbIMas6ybn6HB83n+XO5hgk3wm k7SmNuTO1MI9WzfRLOXS7OhLA6ldXOgd9bYUEmaWqiHg2CB5HC8PsTxbs27Qzgyr FKBTYsHZYcusJ3EHJhwngD5tP+SjZYqe7Of9/mnhKgh0I1DF1YCSy5tLn7QfQnJ1 Y2UgQ3JhbiA8YnJ1Y2VjQEZyZWVCU0Qub3JnPokBOAQTAQIAIgUCS2LWWwIbAwYL CQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQV4enK2r2+Z5aAAf9E+slz3MljqfM zcF97g6oKMEIFHaXlWraELeJ2qasom/M9AayjrAhB69ADTX/0GeGuwa8SqU/J9qY IDpH0Nr9fyp7jiTCsXU4jcvnetuhAbuIcyjNBBmgDcINFsA3aJtllpnePzJNvgdm rFpCqvdBFrV2+B12lvF1E9WAIzKJj04NEMt91f3DiMmBRcL00X4XToXT0EhPuHow Uls2XcbvMMRwWRT9EYsiPWRT+o6IlKP7qB8uS7vOIjzGRRVXBIoB8rnOR3XZ9aB6 P55fzmpQNz3HravpuZCP6RBfJCLRvgqdQwQF+xFJnyxGJU+Ts9vZc/0g/xwj+fl2 Raa+oIWBFbkBDQRLYtYqAQgAwkPY0gb+61cDkFdFWBumgdRHcXCjtWfxcCpFNKuB E8ELyj1ER0YNX03PzgiNOz3ywKTKG00sa1RE3dchBILQbk4DG1xGRgUZzU+SDJoA UgdPinyxbKa1ACNvtieoDnVVbWXafDgySfxj+cLIxH9y+ORUTGNZ01Ij6FgtfJmG Qs63ilWHE/m4k3zsYCfc4N/dMBtlkNjF7UN3Pk1cVvOHDrXsenUr9Ab+r983MlgU LigZ2M7zwJzP4nUSKhAw/uIp8wTPAmWe2C89H4SjMUOSxUHAN9tpgwWPPX1SrajA F610KysdtKXj4Nb3xnlaIF5k+8S5O0rwbQ0jEqG/tQCqSwARAQABiQEfBBgBAgAJ BQJLYtYqAhsMAAoJEFeHpytq9vme1voIAJmo2Td1/ne2DpKK9dSX025pE2lFr2B9 P7JyW69s2LEo5EQBh4ZdCABud+p+1YwFedCb3O1N9+AVpxTbV6DZzzoSXQOgR/EN 5tD2/dCDE0c61IX08KaG3NSTZ+vSxbbFJOhNYOh8wQ1cBzEEWfFw2+fH65jxQ+wX kuQwJfoHNlxDPwoxkRI8iHUM1i8t4g6aGAV3yec73FDFB+2rgs/Exr9AK0WgpaPI wIx2FcHlOoOfxvLYup4BqBTMCMD0rvdnXH5L5Q9ZxNtM4nXiRin5VGBMdhk2T1JB 6k0ky+QKtYoxvRt9055XWPSHiOEBlu8ec7EKb7liplIZVoIdpIh2bgs= =XNzi -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/34876C5B 2006-08-26 Key fingerprint = 50EE CE94 E43E BA85 CB67 262B B739 1A26 3487 6C5B uid Frederic Culot <[email protected]> uid Frederic Culot <[email protected]> sub 2048g/F1EF901F 2006-08-26
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBETwuAsRBACaptn8vJ5o5RZkWQUvr3EpBW91+hZtYLM+oBpk6+BayiPAW02f aAP6XTrl3GE6hK5+lZWMdxeu733Ukq72cLwbSNefpXi1A9/7IU+bsUWKgSRL/O4z HQziOHx+UgFr+uWdKbIssFmIPSJbsI0IOZV1p1mLVDCz97QG8JvyJA7AEwCg7XLC 0Rsiev0R71ErTCHmuZXoVt0D/ilNo5WJyA8mQ7wmfQsRUnV+GXXOYk2OdhrfqPnh B4WVqBd/duf7Hn8TzGF+ee90N7PjlOXa7VH8wQcKKSNUDGWcV++xJQ/ZxeB7g2Ya R+JeQy64fVu2+Zi8IehUt96k85mVZtb09J9C+t4+isRsZUb+A/tlcMLlYxcPSaai vGA+A/sH2RRyDJFTMGfqmpRSpm716mgWE1Oyk8rjqpRLOjlrgmORHNSSIawSpAHs PQrC5ouBWFRe6pCBLpd+xcvaqmnkVBYrVZFmI2ElTYWwviF8aQ7HHP7TVek4EZoE xjQ2YDxKlFN287s9yc8HXIiPcwLO6yPhDa1ZLEoebGLDp+nHI7QjRnJlZGVyaWMg Q3Vsb3QgPGZyZWRlcmljQGN1bG90Lm9yZz6IYAQTEQIAIAUCRPC4CwIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJELc5GiY0h2xbJ9wAoKf/6b8O9hlrKE6kFfr1 h4FuwX/XAJ49WDVUxcf+jFYluXwHmzRW8biSarQiRnJlZGVyaWMgQ3Vsb3QgPGN1 bG90QEZyZWVCU0Qub3JnPohiBBMRAgAiBQJMuXzFAhsDBgsJCAcDAgYVCAIJCgsE FgIDAQIeAQIXgAAKCRC3ORomNIdsW/A0AKDVBYK/Y91Wz31ws7Rxy7/LpvL6DgCg 4jNUurzgT1i0vFuBfPLQx5LEZSe5Ag0ERPC4GBAIAJFsfHsMTmxdNfKtzMpGOJF0 dLMLwwjPyKkVPtZZ5LZclo+7jjyg7dAYvY05o2ppQ1TH0LjTV333qWItSbv88Dkq f/pn8tS0/for45dVnuJbTAkkc+khPHCJ08iZsl/X1IYBj3bteb1z2jZr6M2JEQyN qUbbuop3zDoOVMx++lsR5+Q1/+BVuJGw5SuLVhTdNOjiwta3x+eSH4Jzqfb918SB uiaQyPcdMGBDd1VyVkJZU2dIFp7olJbi6T+leY1+TUdvXvzmBqB/0XtQfOfc3hQb Te5HP9IhiAQkhe9fdsOZpcAJuWS1HvKZT/Ck8UqKTWU3epzTlEN5LiTuisRiUGMA AwYH/3eopRoq31zWXlfWI5bETU/DDna48gzpz/P8cc0ge/7YO/sGyB3jtF3D1htI rS1dp7I1P8+H42vwAje18uxg1IKZeQ/ffFl29BTqWM71rALuPyXR80JjT6gggTRl Bj/YEVUyxD+PXG2qRBNtYOCDLUtKbFzpaGV/ViONkSfzKTNIdjyDlTp8UGWRXteI 903NQSogGxVew/0wrlyXURoBKWZu34Y6awcvQSmDGLzWqEpVbyVofAjjtE06iIXF u9vd3RPua/WkTjZELE2Xs6hkxGoWfsmpnsKuMS4zZDr0olIbBtMiQGp8nbOQrJPe 5ax09EyO4fJYj4KqY7vfHdMMjByISQQYEQIACQUCRPC4GAIbDAAKCRC3ORomNIds Wy+LAJ9s/SE8+ysRtHJq4zYNkOyzXpt6VACgjcPRoqpDhE0y8V+QniOWN6eJ0Ls= =h8ph -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/8811D2A4 2006-06-21 [expires: 2011-06-20] Key fingerprint = 8DE0 3CBB 3692 992F 53EF ACC7 BE56 0A4D 8811 D2A4 uid Aaron Dalton <[email protected]> sub 2048g/304EE8E5 2006-06-21 [expires: 2011-06-20]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBESZZ5YRBADZ18WQp9eda97kmLEVNkYUkTbWn90/9ViXP5lWhWDvdIwXXa+S byVbZI75QkYrvhhyDQPwK2pwF3v/nGaBhQvO666uWWyqBAC+FTjc6GQ/tVTe67Pp dBVlY3X2QadAIWOYHFWNhG58jAXDnuz9po/w/h5t/6wayVElamu/jPBwBwCg48VZ 4q1oQ7M474YPBsyLfmkLEu8EAJwdgos/BxJ0a39PFtI768+6SS4e+B7qt5UDd30l 87rvKoW3gXuf4Vn00Y8m+aK+mUjsWeQfDCF6Kj7/ecGNSkfvwmsEDnRMujyapX6J wuJ6DzKgrc3zEBXVK5g+JBrSZDGetkdl8jndG0lmxIqxqnx1R+uxiWNs9NAdeP1P F7vCBADAPoKaAEW0LlsOE0zIylP5e+LTBd6MQeZ8zISlNqMHDX9F174Fo4CFH/pI nW588yf/ChScuONLPIPbMBkvoC34yLEGluvjZov0cjySqzcTN/TkZ7iH1NrkYe71 /z0Pe6jWY8p4KjK6C6dKok8b1ZI/btmJyuv6bkTzM5kQlxg43bQgQWFyb24gRGFs dG9uIDxhYXJvbkBmcmVlYnNkLm9yZz6IZgQTEQIAJgUCRJlnlgIbIwUJCWYBgAYL CQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEL5WCk2IEdKkTFIAoJwahC11/B2TXIk8 9PioqX0c5nU5AJ0YGkpXIzDzF6QskMWWQq64fMuE6rkCDQREmWehEAgAzFoPIPXW +sMFJs/DzCYMzHglYmNzHr8wCfvNq3hiiHUfk9EtcUaMnVI6TMkoEEF4mXMpf7oc uCjU0+CZMf2GV+bLkxs2rNePyjzTuoig1vsl9RFA+1tMfLrUsUKwoPjLZUbHHApl S1x4k+TaLanT+tSQar//WNuA5JrmxRXSyYXu/2y5VSi+niaNKupNYXfqr53SuW2J xh90I90hzgBzQypWNNDEIN1c/lkgIvWm7RbbBliX9Y23iUeFkzmLbOUcpLSy3zj3 9I3eCshQdFv5UT54N8rMAg6hGC5jfeqy4mVpMLWst3Y/Od+DBv/F9xnaquGW7LYp Pz+H4fJzdC79hwADBQf/XyMpsvO4z1N+8DaVybwMedLd4ExSkIAsAI3MTS1mtNu9 mFm9GQULWvUH1YXBFnVVidibc7zdTwVEAPFhc/uZ5unxqzbUAj5whkCBUF53ZpVv nsskZZ3aUEh4hEM6S1t1kc7+HptpMgaSxEcjy+ylybMEzBQ14Mh38sEavfoeDvfb aP1AtLQh/+ehQZHeA6px3PvdDeevM6zLoAY6yEKtd5QaSrvhIuP91HKeQjPgM8yy IZTWM050axPzKZOCf2VsB78QUNVGcfFrbScleBvaVbdOh/ZgxGOgD7LOhhgivV1m dLQ+3W66/GuUVDHap5hdzPuoUgFTodlzilfqjpaekohPBBgRAgAPBQJEmWehAhsM BQkJZgGAAAoJEL5WCk2IEdKkNGoAoMBfaOMRp7+OtWsx8pkGGlFszVCDAKC0rEFY lBcUW4xcel1cl7I40JK+lQ== =bsX2 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/49A4E84C 2008-11-19 Key fingerprint = A14B A5FC B860 86DE 73E2 B24C F244 ED31 49A4 E84C uid Baptiste Daroussin <[email protected]> uid Baptiste Daroussin <[email protected]> uid Baptiste Daroussin <[email protected]> sub 2048g/54AB46B4 2008-11-19
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEkkLyARBACYi5Qr3qvyrpp0rgqK4cAwteOZbhB3Jt2uxuzrKnKeTw3y4DrG lD+7wAwKmLapXFobxCmndhXNnWw1Viy+hiBN5id8c6TmLF+I4lbxL1Nmzl++ifVr OdOTqXH/L6kbKF80bY3zhgzR6EtH/0UjL6aXNWyLv/2l88+vx+Qrc5NhJwCgwzkS RbUjFKhyAxh7APNTUqV/ZfUD/3nnu/ti17KqQhiRgm6qup2ZPOOpOtlJ8J4dDFtd crmhH/ViE5ze8hPVTymufvLj3dWJXB3gA4CJbMmD9qQMaNJ1q7tEIe1MVNUEVop3 4BEl0oRJyeUlT9QuVqM2GzsBeIiTikZMMpRlZOuuYwm5sbx3nrDHaiBKAkthZF0z l9dlA/9QdSfmViz/x7B9Oa7WfkvmAH4/nMIxaBsliNAtK6peaPFo9M03wgfh0eo0 3JjLAVFbembVkYkA9HqqMFx7Z1W0i1WJAr5SC7gX6Pf3pQPmKIKJKJykXzIRmL6M boUYksuTrtZIDiz/luiEg3wVUONLe6iX18v4RzvS03F3T4HAULQxQmFwdGlzdGUg RGFyb3Vzc2luIDxiYXB0aXN0ZS5kYXJvdXNzaW5AZ21haWwuY29tPohgBBMRAgAg BQJJJC8gAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQ8kTtMUmk6EwjzQCg u6livnP3Mpb8zzzAvfNloYFVW6AAnRwemMVD3FRe1Rn+Ci3lfgySMDmltCVCYXB0 aXN0ZSBEYXJvdXNzaW4gPGJhcHRARnJlZUJTRC5vcmc+iGIEExECACIFAkxO2FcC GwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEPJE7TFJpOhMb0YAnjOkFOYw 8gjML7yPL7w3WNukE/XzAJ94L1XFYK7seJA4zHkMI1nTG3SZjLQnQmFwdGlzdGUg RGFyb3Vzc2luIDxiYXB0QGV0b2lsZWJzZC5uZXQ+iGIEExECACIFAkxO2G4CGwMG CwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEPJE7TFJpOhMSlsAnj1fB+Mtca/J umANnc/GL7iWGjStAKCkEJmZyABghRDR8HxMzJEgfGYZ97kCDQRJJC8gEAgA3nSj 7ISAocQ76ew5bSc+aW/cLqnAvWnEFOtwneahbOOrwpLRt1CtCC7bFsWnkqsFJT6N UFcc1dJl0D0+JMql1+uvyiBK4kLGhw/kayWqGhWVYAwul375lLxyj+Er3zGAMdLv vbGtg4+8vt6jpF1CvKLQzGQ3UJDlCKz3XST/tRUUFoq/5lD58wqJBOyjKgv+nU5g nmVJbmsNtRH8gArX1b1Mld4pnfYdMcRVpbna7Ct78GJDbvsRZnR+YlMMc7De0zd1 /oeYo7TBc8isPRxFvdd6d6GIuDPuiK6EXZphrwzQSqG3/hp9SHgC6of9yVzP3wFi mrVRyyUQKVHYX21u0wADBQgAvbwssU0S6THyBaPr6S+tbTKS8is81SZ87kiUmu1J /qyKHXkl/aiC39DBX+a2nr9hUbtUsdYlEmWf4LMACm4jt0mPKrL2EbAUSRCVqJ0M c9TliU7X+ULExN7DNa7B93ux4TaGr04CjEuQxfdg3Ob1YDeJ6bzKIK8f64eB51as 31mUaWC5Jwsj8O1XgP/yNvKi0vnJb4bBava0h2U75oU9GzeWr644KRnh2FGKwpnX HSqFq3opG/PR4PbSYkf2R2Eeo7Ox46iCWRrNjjgHXK/GjH8skjXoWWmD9S0h73b9 KNDXRPD49G0P4yvNV6p08laVUl3G6A63aA1/cBqVGFsyg4hJBBgRAgAJBQJJJC8g AhsMAAoJEPJE7TFJpOhMLooAoI1+f30zI1xxIXjy08NLxCQv+9nbAKChzUNzc5OI D2+VxC1zkCRqhNa+rg== =NqtT -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/34B7245F 2002-03-08 Key fingerprint = 9C88 EB05 A908 1058 A4AE 9959 A1C7 DCC1 34B7 245F uid Ceri Davies <[email protected]> uid Ceri Davies <[email protected]> uid Ceri Davies <[email protected]> sub 1024g/0C482CBC 2002-03-08
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<[email protected]>
pub 1024D/ED0A754D 2005-05-14 [expires: 2014-02-21] Key fingerprint = 5DFD D1A6 BEEE A6D4 B3F5 4236 D362 3291 ED0A 754D uid Brad Davis <[email protected]> uid Brad Davis <[email protected]> sub 2048g/1F29D404 2005-05-14 [expires: 2014-02-21]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEKGCoMRBADKcY+c0DClCJ6cqBHMdye/IiDENT6SMUV8S1T3Iz8UDUrYjtbR JbM5w3ZrV3+h7HsUZaNGL6hFwxqFFQrnzBU3+BzpgTTTCC78hAX1HIoYWcfNnqjI zrIMjhU7wcS7hwFTdJ25eiqXSRVpoMWEpXo8JSWVTUNIuGkQlg579CZ8JwCg5alM xDHxzIugCp9nuFWwavjus5kD/iznJW8yKOstdRrnosBmhA8Ijq3cv1H2NfEfmloV nw/1g3mY0DtBUnzLGZ3uNUUZhSe82zKI1984dYSKoCCry0y/g4pCuyTswqpl/WTc hc9rSUFleVu05MXKoO70WSSMQGLPYLnd4VrGShz5hPtZKq2CZIQvwiAcacUwoOGJ J/ghA/9HD9/z7QeArsR0KfkLrZ34YH0o5e3Otz3dub3B7M6rU9MuFZ4uThhp5GHo 0E1puC5ay0mpFlWuxikWPCwzOK7kiVuea+89iFLs6u+blUETGI3SM48FbrMKQqDh HZMjBWg6caY9GaWsehNxk3TuGZpA7m7Kf8Udtr9YJdRHr/HifrQcQnJhZCBEYXZp cyA8YnJkQEZyZWVCU0Qub3JnPohmBBMRAgAmAhsDBgsJCAcDAgQVAggDBBYCAwEC HgECF4AFAkmhqiMFCRCBoSAACgkQ02Iyke0KdU1jEgCfR0pvvRQA3M9Z0zM2dV6i YafSCb0AoJotX8m6wArtMpmii/b0QyaT+5HBiEYEExECAAYFAkL1jHAACgkQF47i dPgWcsWHqQCfeR97YtQHwn2yDP2k9oX6fZ9Pt60AniZRZ5BMSkyftCpR3zx6Jxl9 9wd0tBxCcmFkIERhdmlzIDxzbzE0a0BzbzE0ay5jb20+iGQEExECACQCGwMGCwkI BwMCAxUCAwMWAgECHgECF4AFAkmhqigFCRCBoSAACgkQ02Iyke0KdU0iMACbBLqL fva236Xw2c0DMH1sf6ebiOoAoKCawBu8IV9+T0W82BFOaXzyqu6QiEwEExECAAwF AkKHJxkFgwPBSmoACgkQtNcQog5FH33KrQCgswgrktUdXLWjwCmnIOA7087u4ywA nA/Bhi+ww9U9hDQmSBohzbyRoRTCiEYEExECAAYFAkL1jHQACgkQF47idPgWcsXn tgCfSPZ5hwGie++UvBuozWrxv+xiv2gAnj1XiI9dmD3xucoPTbuKRB1CF1jsuQIN BEKGCr8QCACsjQLDvnrcRsGno7O4sUoDRj7C6tAS6ahv779OodNW03c/EL1U1thD qhrNvN6M/BSG+tzuJyFFnSLHfkJXxEn3XQVYcF7dV4HStotxRMSBFRFqFizf4VGX 72mqArAeKEYW3W+mmEGJTqjRvvMxEfl2XRtGUASkSGkKvrXuq6CeJdYPgPLg6PtM NcQ2RlwdvOV5zutUa76zHnKZeQ/fzyR8w5HZNUxPltgjSU2NeVIOLTCakXZRWT8X 7BnUlCUIamRLmLdxTlizW/bHIzHZ0Zl1sA/uDCea90NgV/0s8gz2HFIKnNJQ5332 DIQvtaezFVLT+0hTyDKb/P6QRgmK3TEPAAMHB/9j3bI+ifWv4dp2NzfxXW64P3l8 zcA1nms+EYYn0HlswwPARndsi6zlb7nF+NRluMZYkyqkNAH/0fdUQONQw8U6A4JO 3gS9YQ++mSubtQcLCT8h+vzscS+GVoKsSl7FwuY0IP1cFx6bOuN+lNfZHU/AZDzQ Jyj5OfDvpupbulT92gqUakMSgmz5uqX8AbIDLnqJzJTW1UgJ5Ft7RrFVCFAufJcy nl7grHRf30e8lVL0KqdqsLcwWKNY8ZceBOij6OQwbnFezZlTGV5KyshCur6pyby9 H697clLqFspFH7euqjbq2hICPOIXD/SEl99lgTTGB2LCaVhxTnjgMTttQDgciE8E GBECAA8CGwwFAkmhqU8FCRCBoBAACgkQ02Iyke0KdU2xNwCfQJJkClJonK//zUJ9 vC9Jz8J4J5wAnjPFHkl5oQLsHRM0l7kB4cJDQeos =HfL5 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/B1293F34 2004-02-02 Pawel Jakub Dawidek <[email protected]> Key fingerprint = A3A3 5B4D 9CF9 2312 0783 1B1D 168A EF5D B129 3F34 uid Pawel Jakub Dawidek <[email protected]> uid Pawel Jakub Dawidek <[email protected]> sub 2048g/3EEC50A7 2004-02-02 [expires: 2006-02-01]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEAeUYARBAD2RoYfLkSt38R06MpFesDgXVvgSb7q2GGTiMLZE7iJ8iKQU7Rx DkpW7EkpJ/YGPXro0KumkIGoPCsMF1eLENUhGhyMosN5Yb9Y7DXsOv3QcCKIfBlM P3Y+Y7By0GvSYPvYK9GZI2ZvSXyTraxB1eO/7c+aqS7wdwx3bCsVKnyzBwCg+nXQ izSD3wmwDYxffxN4dawiD2sD/00L95dq5XhM9nISjWJOjGsPJqyzoZZH2pemOgcq SeNimi0yWOWeZh/bxbjUYI5RXdBXGdwQxW6DKFU9o9NFe4se1jZcbPjuRtkbBXqz Mkh4kv2pvZ+rHu41kqzOZ0z+rbZld2U28R76xtx3RI4OXvJ8z01RHzAEwJ1G6s3D wI6iBADy+KSjJmfgP1rAcNPuwW7T7L2H9fLNTp3mmWZZDj6n4fykcwM9Jtz/K4QE i3GHNB2AnmR8yiPE2m87ObsKV7d8UK4WP0OLfbr7d7TZ0jDscBhlyfYgKYDFHaJH 8O+L7df2oQU31wYEvYOP/mSTPO7F5TJZm3/Pygp/JkKnPDCnY7QlUGF3ZWwgSmFr dWIgRGF3aWRlayA8cGpkQEZyZWVCU0Qub3JnPohkBBMRAgAkBQJAHlGAAhsDBQkD wmcABgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEBaK712xKT80dOwAoNjy2Xrebr+p AQroKNQnIzaR2QysAKCXRA9XldUcwxSOzRJNhDktAKQbZbQkUGF3ZWwgSmFrdWIg RGF3aWRlayA8cGpkQEZyZWVCU0QucGw+iGQEExECACQFAkAeUbQCGwMFCQPCZwAG CwkIBwMCAxUCAwMWAgECHgECF4AACgkQForvXbEpPzQudACbB3QlE/GfSY+umOHI y+3UjdMKuGMAn2JC4vrcEPwg8XMF5iEIaEZ0tNmVtCdQYXdlbCBKYWt1YiBEYXdp ZGVrIDxQYXdlbEBEYXdpZGVrLm5ldD6IZAQTEQIAJAUCQB5R1AIbAwUJA8JnAAYL CQgHAwIDFQIDAxYCAQIeAQIXgAAKCRAWiu9dsSk/NByVAJ91gG7VGmIK1H1LyHnW ZPI8T7WRBwCeP644asOCGfje3+NjA0F9OHoL2z+5Ag0EQB5RhhAIALfZ2Kq/Yd1j X4+kdVgCQqHP9tEHjYLwGICL3Y1i+whLqUx/X+MZmt4vNZLaoaqRXhMD8A5c9tN4 06ODB6afzS0feQE/s3j0bKRviTvUedg+CLvt9anqf092gRt1MnKAAWsw+WNqfCNI xsONpWWS5LL11PLyEOhxqsEvcx2IpswjG398MINFwHo7dUielCDpAPgu8tCVLpWb GqUBiWdqzq9jxvIS7obYUmr0VBqElP16LrcvoUs8W+AGvkfTZW3iX6yPhfpnycKy OnStwtO28Ud2BlRrp1YLJWv8oZcYDP5p0GyhbmCbj6qG+BrA8XbIgASFZHK65CWr ++Zc5tztIBMAAwUIAJVrsEErdqxbj7qdJXVebkQZLe/hr5fFOGdOwMmvNbsI2nHj 0B/L8Gfw1v2N6K5ST68mSH5gPpDDkLqDfqY6OcN2LBhVvOdEGJv7kp8x0XK/vsbj jARiO6l7ZrtH4E78oiHzYK1yGFNMi6c5zpO6BXRUAVmKptL/BRu0UPRMfScyIbnP gT0dcOiTazJ5U9Ol+Mjk4S/YLqe/05JQvmzKzSht6E8BbgiZxwsrWB+CLpLwglbg f4NX+BAjApvoesbhkLOY03bSgP6CsRbL7izgVmfAHbOJk5eIYjSEIOcqIMyg3cp0 kZI7omon6uhjl36Ad1uEwjkW7jPgCz9a62bLr3eITwQYEQIADwUCQB5RhgIbDAUJ A8JnAAAKCRAWiu9dsSk/NOa+AKC/grZ0DrDsO9LtCEQKwTcP7EQYBQCgsk9ZmVug 9caBiftOC/+/0ej5qqg= =/cMH -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/723BDEE9 2002-01-23 Brian S. Dean <[email protected]> Key fingerprint = EF49 7ABE 47ED 91B3 FC3D 7EA5 4D90 2FF7 723B DEE9 sub 1024g/4B02F876 2002-01-23
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDxOCiIRBACyyyoMk5OyGdOkR0a4fj8zPJ2AOielQ1BYv7JlIWdNeMHdQ0gj liTgXwDimeBnElw7sNrmdfocfwKbmX33exFPa3AkJgLflBcuH9+xE3ozgzMl6t76 QL90PPIc24Er670NnhF7Smvubus4IdckvM24kuUTINmiuFzVwuwWdXdwvwCght6R HPpuFeiMZHRJAiHmu9AkKrkEAJRLmRGgdqTQ6RRIQobqGS+1grl6AsXHzKfvjx8I //12yrFiUcXE+167I529OW2i4ilmVjBmnwwe3750ZKBIp8OUBkMkfMuTSyCCFD22 CX4N7D68d8eCJiCqv0jMZGnoWoMulmWzdyplcg/FhdLzUfpXLWX7/9gzy9k8hKBT Ou2UBACRLG7zwgKcYx4yjHhsCxuqGOeKtcfF49ghCp1s+wPsnXy8b6ZAY3wFeHC5 LFyUsQFarizV0aeqJoOXEB296xZYPpgW6C+rajd1WVi7zhPxsfYedldX8HtGDMKm FRN88P75OGjMdFOYrpXTqUAJnoTUN4UynLV6WbfM7Cne0syg9rQfQnJpYW4gUy4g RGVhbiA8YnNkQEZyZWVCU0Qub3JnPohXBBMRAgAXBQI8TgoiBQsHCgMEAxUDAgMW AgECF4AACgkQTZAv93I73un4TwCfWqT0UeeEn9qstLTycDZF6oiKUusAn2dZRiNX 06KUv2qJk2g88nUsBXgDuQENBDxOCiQQBADXY+I+CYMmiant5TBMzh5JfqhW2FXa aZDgi5XTVAStL6AaygeLIaVSSUUuOxiD4JB7vxHYB7pyVg71/lg5moud8NP2HNKW YR2mZjCQ9bHRQRqqPBTMrSHJpq10cZ6grxvVmte/oC4cI35wL8HEe2WwChZgk0tS YrA5PRt/UGWLLwAECwP/SxokqxcRa3lZqkpdwLgLWpyx1KNBg7wIJYLmALI0UxpS ezweD7OukikqZ1BYlaaWZ7N++r4sNDR9WTIv0ySNovxJnnlyo6FzD9RD7ijQbAvp nhpikigC+GvdnvmreMXYztc9WvFeJT/S8LGDkDHcm0ECmBDo3EA8W0+sOQsZxk2I RgQYEQIABgUCPE4KJAAKCRBNkC/3cjve6eroAKCCMN4s5AqvTy38BWmspFvSu90I IwCfTGutfs+PGUY9JJoabnnfJhfIgNA= =MFJO -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/FB3B5D38 2013-01-15 Key fingerprint = F0E5 3849 C6C3 668B 68A3 BCC7 6031 E963 FB3B 5D38 uid Carl Delsey <[email protected]> sub 4096R/256F29D3 2013-01-15
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBFD1xcgBEAC3HQc1DEYR8DN4kwDkh3a/Ox4YxYH0ZoIprcsnAyHFmQRONidO UTFl5nx/r2562/N1eofQBFPt3YI0jVSiVkHKLRapoZBdZagPnEa3YH/t9e6CK5b2 Au0Ycj66n6JVwyGwSnFYZAPmOULgWy5qMUpI0IYAyRJsRz+qa1pSMCwgibZ1gPa1 b23if+AI1o0aIPF09KNpiQW4lNt98WKiHvIKPJh6u0fi26tqvNGUHAMeM3SmTbGZ m2S8l469EDPHm4MGE5wFo11IKBCB8mczg/iGzCjfj96DNyGivgDuC0Xdx/7EoP2L sm3batAQoa6kIUCibF3lgnEzszWfQq2O0vuA30g7tq+Eqnc611ErahGiFGKShJY+ GfGFPuc30GFAo0hC6de7VigXDBwBV17vUM14nxwlkBNpXfca+ulkMQyIeY5U1KrC HQBWPV8Iq8XqjvvgIuoGeMHJrRXh/BqjE8er+rUXtyZqXD1MdxHoVpzdRopta9M9 vfUQgB/9yjmZ3VHri5+6pENoTw9wGeLs+pOmdRXdDSbMdVf1S4qxXA7W7uqJW1LR Om7wkC4ezJkuubq9aqqBbgsqXwsXfSbAmuIhtYXZd5kmpQcpHbU2UVzwVWvmNvOe DLY/CBtsoMhMi/8XMHZ6w3x7ezj8rfzLGcoFuibKIfCO+duZAcvTtOFjfwARAQAB tB5DYXJsIERlbHNleSA8Y2FybEBGcmVlQlNELm9yZz6JAjgEEwECACIFAlD1xcgC GwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEGAx6WP7O1048HQP/R4qDGHq D/OdFXB6URU4Z+EvWNcG55KPR0v5/FI8ouOJBBgfEMCdtBrus/F2lMX5lcl5vyeO 6WWwInuL8E710b+siDbawjHpzceG9/B/p3Hee6/dAOooyNrPGMmf1fI2G7o+7vcy SmTe2zb1kitT/IcRi6O2ieX581m+gCVdTkRmVwLG4+kG70vHPrdUCMujzUQVZ2zK sRjjWTXn2WLfGW/h81NsXncdJROhU9CI/DY/BVDCu1syfkopp4hdINBrSKiD3Tmn /9W0RRMTqwGtnuFI0rdEg68RXyOVlugHwl7AxYhxJnW9tqV1SWuCPkFADmcv+RXo 2st1xQbFI5GzkQUMcYfYvguR3/v6YRE6U8yIP3FOUDsorpjrAGIQKPAQ8gVHEpew VmPm/jd5wOWDeUgG4380R9u4ymAYB/31NciA0MpSqwcNzI8hOeQeBOPGXkR4jNN2 DsiXEQgDq/3ONkEf9c0b7ogbsXTiM2YwvLc/sR12QrOQSfrMhABz6oWNKYxLbFCs mIHp64BXslu1V3cewRpl8cqL3qpfc9Fi+tXzer6wpzXlJOx7nZa/vR5cNqGfZqRm bry1X8kRGVRxNWOTrsd5nPZcowovY2VMS/BB6/DrEVN8EELMDvcW7Z0LGe2Q8i/x jioRtTIwxRFNw+e+OkZWKAGIzJh2ButnbDROuQINBFD1xcgBEACjVfkC1YzwqVy5 VyWMaMFyvKe6Ojpt8jb51+N1kf81Mc46r9W1QFMTFZ5VDEJgHabNZ2AyTnrt1sK3 KghiznMycTvNOQHJQSGR/ANe0HiKMru0QoWz7S7nfY/ij0f28HoF0pql8qlUU+2w Namm7lTOCTBUpuniDDFrmuZaOcj9vZlUt9HGtLE+sbMKsdXFmPM6hyWVYX2s1i++ zzAvFEIbsubML9QGDNl6sfK0XsmJEgBFTITiC/wtcguzszVkc1NsHPtRfga9D2Yw cKb+4Sog1NddMICCd/bRGgA2tAh+CP3DqstiRJ3/IRJECOaw65a40B2HRhUGyCTg PmVTDqlr/HKcqhLRHXWbXL1L06mj2xuTa/okaqyKdrbNAg7kIaZGf9k3aXeMngAm CuFpzzh4nyK2v1Mk4Fz8IXwivfR4QB1Wno93tyHH3lHc1bgM7Nj+uoYO/yM0hKco nKtFMRkWVkF+MbNCPqEV1LMnG01Hko1tWZLOsDyxMtUcnLuUqoafYElyO9XjyOyn 7M+eM5lD/wJabrywdt/J+0IGSiW4b3kMZPObkCVn6uITvrbRn5yJXdSqFbWFhdZC KBeqvNTcnD7kpV5tRSnjft5XmeiqGC9d+RtBJnAeidRsvPtnZmlBhLFPGPiIsti/ lhV1PMOyCBrOTLWzWhipHlNNGXpa2QARAQABiQIfBBgBAgAJBQJQ9cXIAhsMAAoJ EGAx6WP7O104AW0P/jxRtYXu6QL4Dv8+qYEGfQ3lL9Rd3YgQbtF4jrbwKFdf/O0r kxboJ5mCdXFjRdkH7/3n5X3VaonvTVPV3J2gpjLxfenLo4IQHw7yKr5XtVjevjpm DmXmUIPnWAvd1o8SnMwUrm4hlFvHjNyP7bOKonNnwOwWdiNSs3WeZ4MoDomPtO3e kRZI5tf14gj5g72AQshy/h1QmgvoWyLS2BMt96V637bomxpaUS8BYG3qucXZvXoC 0csSt1RuH79U+QUnxJADFx6r+kgq0wCUEtHRwF2Sgjm0CTtIHlVVHpTFVnj7zTg5 KuYxEncCydwpCsxkelVXQ62km7XbxfLNojMejYGc7w5NEF5jJ+xXvYfSh9TrfuCJ Pf4OF5/w8DPyIl1PWF8M5ubVPh7ryvdbcrGvrxAdY4qc8aOGVj09i0Yr4ZMkug4n AG2Jvw2+ksLoSpdWXAg0lzYZx7DvmvpcLRRALngu/zv2WozrCQvBMZ4lTYfjxAdN ywiBvWWQerzAYaxb3NIqEdY0sxPk+fNoeRH/t9Q6AOz56I/KeP1PadUEmuOoffxj /4UBZgCwBuHMV1yfcPLulPBFhSQu7K8IknnWMeUDK5W6jdF1IHJiz8X1a/QQTttB EIfympKF2+1xCR6TlNDkXxWm0Ai7DfnwdoWTGIFY2x80oU1IKLE4gFzVDWgY =jP+Z -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F6C1A420 2004-12-08 Key fingerprint = B1D5 04C6 26CC 0D20 9525 14B8 170E 923F F6C1 A420 uid Vasil Dimov <[email protected]> uid Vasil Dimov <[email protected]> sub 4096g/A0148C94 2004-12-08
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEG3FBQRBACTPLU4+bnd9eNmB/xp17OCQdMez/lpGrFWcYRh6w0RqUEt3AAL o2dhleKR/RgaQtkLmNvJQnMVUkrH4dHCTDcPDF7jTUIDxxSa9YmO58Q8ITV9XrjF 8H3bhY4xYA2VGhd13GrRYHtexGtVbBLtAex9Q+U0DBTmKO47C4cnw2cZiwCg44yq qn13lHY4WlhJ7WB75n6t4x8D/2tazzoHbKUZF7gxFaeeFfIDo7Qd2S4Sq0UZgy2b J6Api3TAkD/aL6Znh8YEn5ZyMBQzCrJEt5Fizw//nnUYKL/DMF0nVR2WeU87WnQM wxKSoS1qNHpXRj5y5cDHHqiOSLdDJeBb8VGb9EE9oxG13kX91F5uwRj2m+YcUl7M rdnoA/98GJVhBQLfCT7AIu8AeoWgMYdjUVsBQ7yZfMntrumfDqy47r2gFNEGMgRB oN+wITfGhRW+GPtP/TCZr0iqZkz+H1gqnuK+h0j6Jhvq9hY0kEI4O6JgaoozgvdD 9pZEaN1q8/FiSinUOjJLfnja6RYhxv/P+3fWq7GPdK6Bt2kDlbQbVmFzaWwgRGlt b3YgPHZkQGRhdGFtYXguYmc+iF4EExECAB4FAkG3FBQCGwMGCwkIBwMCAxUCAwMW AgECHgECF4AACgkQFw6SP/bBpCD2FACfao0eHQOosHyTTKE9ClYzi4xsoowAoLZj QYqpUePBscVIoXHwmXcTkN9wtBxWYXNpbCBEaW1vdiA8dmRARnJlZUJTRC5vcmc+ iGAEExECACAFAkPPwzoCGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRAXDpI/ 9sGkIJwpAKDMIALqzizC9vo+vts0rxFYmPZsCACgzmPcOFXV8+xtIx5vUKQTuPiy sT65BA0EQbcViRAQAJbrD3+6HrMUYIlEXlkKm6QrCvwNS6JkxSjisX8rMZHfo9PS kGEg50sDpzrQPQm9/3SyHjmFdrvKLKoAscz1pkzqRq7/Gu3/t36vQ8DbCddwDwf0 hAwpB7ZMUiTkPvCv8C2ZUYdvCZEiDHJSIr2jbdYjYXwU/Ry//aUNzPLoFMwmDzl1 IjUPMLL0FufcJpVH7vJSOTxDAVTnyrXSZbKlKUWYVCxSxoHO7zFvWQ4s6QoIct3a ouFmZIVlySDE4G0MDshDoHOD/Z53d4Mfn41zhPYgEPAtR7g4xcvIq93MVHlFndys d/cSJ5uTOjcRyHmvL0KrApyXUA6f2Qek9XfXIH9bYdAtvQNvDpxKZNpIPEWIoN68 N5en8u/RfvbacQ/WBYvoS9qMqqLmOA1oxHZwnmi0o8pA+CyUcy2hNoVmySj8Bg5w LSMosUHQXYEeH0hUhJIbHu96h+mcy79Mcev0u+zeXM/UN8HLAoHH2T1R6kEOVFba d1Ib4CY1zFFUyVwCbYH5CBDXKEND7CI11T6jmPzvX2WFOPnw9irSnafSyL/Ndebr VyRPQQWLe9uE2Dd/gQagxoaGX2gGVAPkJ9rEToZVtvV6g04RQSdk/31+aLepaj79 4bvt0LJmAa24Cyh9XFC9QNieuz9QxUKD4RyJkfN5HLU7dCHRrdQXbDnFMaTHAAMH D/9hLUMKLDasVD+5L55mWoCep06YexBCt1QLW0uMPNun/fH4TQtVakDC2YM8bufh JzR1zBt8sdfpErWGqQ/+TN4P/9lzr0uDs3p/TQEzaeqEs9ChjccIUFKC/lp2xDYh BB7BqvsKWbvjktZ1HN7ZGHM4YIGxOK/hcQua1ov5WbJ6V9DXEmi6EguVsq2uEtQu V/8DwHtv4JZpPUUQmqL6VKkGPc1uLmiejjbq2aUJmbqsLMZfx7cAe4UbeR7ILaZn +UtQaNdNe04D5OH67E4Ntk4VaZz32uvdJ+v9Yx9TQYJ2nadWd5IuHm/KaPlFzXbk 8vlyFZS8e4hE2Jvaopuzx3fecCg6MIQ6pc5Jxko4EAsoSaGRwGNodQWQGPc2DZxb Isy1BIZO5XrYXU4MzSOkhR4iJtap3UxFJaImxRBeO/z0//MI7BxDOpNw3zUDWt1w lAR2DY/Eyfrsx8SK/MdS4ds2j22rJdFGhuxO+uHJ+eZC70pccVRqRPMMs4uDA77r TpDB6VHEsqC9MTMzkw47Bt5My/qzrn/DbAAw3qkI4kPfynmYmoNwiegtD8fYD0XR JVlvQ7mnU0ZCHKcEh9Gjwqpg21/4kewaPxwlF1NXescn/proYpLv9uUwgVHCHVfy ntTKlGc22bcHlUXrdbCaC7d4Xj8SdhKER1Fl4wqmDGJdY4hJBBgRAgAJBQJBtxWJ AhsMAAoJEBcOkj/2waQgxQEAoN8d1808ijz/VASozvQNLAKOgEdcAKDA7JkB9MnX XmPkHj0KHckscg/fYw== =Yp1b -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/3DC2044C 2006-11-15 Key fingerprint = 6B61 25CA 49BC AAC5 21A9 FA7A 2D51 23E8 3DC2 044C uid Roman Divacky <[email protected]> sub 2048g/39BDCE16 2006-11-15
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEVa4hkRBADRcg44myl39Jv+OO9DMl2XjrS9JwguZSVjCHY2Tj4urjsEjcwf 3ykYpJbXkK0KHHP5VTfoIp0MwoQdS4Xx5uHMHg/re5gws7KU4DXFmc9gWd1+eVXK PEMfWVG94qS7pG9e5aS7znglPNVUUBMKVI0VgD4fsML/92RFJl7iLFY7uwCghVfP 952asGrNrV9T9+GBOxKUjvMD/3be37yXGBcS2f3Py6gHbv4vC0CFtfXUM6Zclz6Z 8FGv0sYDaTW94FPkXqmcUaIjH5KMyig8Y93UquZ04stFgYkxwku1drHZb4hnuqmv NR4qvycMye1dMC9824+FpZkhP6ItjMcbE1PxRhQVU7dyO0dFyUlEEiMrTPhzLiJj aR6pA/9nW7NSJIaSnDrJ8Uq4NEIjyTidU5JCZLJJxTbSbEe5FrOSINENppVbmUzj CMXqyP4sHXtEA53Dl38dDjWz08A/c4dK+lwxtjDQ0NrLpXHrnqWc7tNW3XtayCiH KjYTUbj2kHV4Kva73zJBAlN0N+D58TfQQDisnaw/cGebU+5/ULQkUm9tYW4gRGl2 YWNreSA8cmRpdmFja3lAZnJlZWJzZC5vcmc+iGAEExECACAFAkVa4hkCGwMGCwkI BwMCBBUCCAMEFgIDAQIeAQIXgAAKCRAtUSPoPcIETDXXAJ4t7ojZLL46SN/zLVTT 4qylgoqfNACfSvpuziRIUKGLO/YdkYe1hiJqknG5Ag0ERVriIxAIAInh7G4TY8ky NObKXToSjpvxNhY4JQMsJ43dCHTkT6CwAes96mhAscYF3KfBcIFhv3Oj6LhyMe8l J9A8wcAPnYzOzjiZLrITF0IlVM1L9VT49tkvidOUMykKvluYKMmntH8fCi5pBKc8 Y7FQ5Kc3MZ/2dge5k95mpuWmuAjAVJXKd2ONAPSRwnxplJo1kA7Bvp632TRbDEjx mwtg48FI4Blwu19i8rpwzRf0iCp78UF2ypoyrRqzudLXcMT4yS2yU4z4mbU91qbc PNCkaMP9/HyoHnIA38bs0tMUUawKCeQZgCkTV1R+V/J5uoRIMsSBGfX81RADvEB6 HtYPrUFCYs8ABA0H/0PBej8RqZJmWU7qlpoEX4gEG8FpcsNG2RGNjuSu6l19xk1E RF5tYg2N3hnqioWri1t3BJn1qpHgSL+mJJRqf00c2U5XUKuxAvTWjARyqa2G+WiF hPc1pmE9Ty2n9XkmT7G3jidTNHXbqsjEK0OCZdLJHOkTuStUjn8Mz2PpvlZoj0Mo VYEE3Paet8mFH+Y/EjHKTe30RymAOQOlc3gKEP/2qkp0Zqkb0FqklLCUQvvjn37k /oIcF/lvmIieN/on565dggchLRWCX7dMI6QDtEnd72jwpGo30oVUC3NlKoEggcFA jiVbPR/F4UhBtjcB6GCiLHvREKjL17gCVwMv4mKISQQYEQIACQUCRVriIwIbDAAK CRAtUSPoPcIETGfTAJ4tppNp16pURW2x6Yi3GwY12/Rb9gCdGiT6lz3e0Ffo3EDl 3I1WppEoQQw= =5OWm -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/3C060B44 2004-08-23 Alexey Dokuchaev <[email protected]> Key fingerprint = D970 08A4 922C 8D63 0C19 8D27 F421 76EE 3C06 0B44 sub 1024g/70BAE967 2004-08-23
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEEpzAURBACu7RDb0dP0oorBa7j0Do1auzG1N2wQgTMIHoo7DhspaGjvN0RJ /dozO04jqyWopb/cA7iWMqn/7gX9ckHrKa1ugQRb8P7AhIZNmfc0B5AOCqeGo8gi o9y/XBhFRS3Osxxe0j2bIoL3pk0EBjHaa477yiZyWNjq5j8rPf/h7DudtwCgx14M iEwmKZ4hWMzeaKYcOFTIn1UEAJtUMrBbxMxchDnIuAn3Oz3ESpGpxSDVcTHUxoIl 3A+mizXetzWX8lmEP8GM2oM1/dRCiF+l2v5tcnBO52PT1cFst28W6Ytyf1PamIFC GNL2CZUz/ZVRBPEZb7CfXJYupYd1AiYNCoSyh9bOv4Fin3Uhm+Ds1n6x3yulCFyo PJ9pA/wOMpGwCNSpNLcfz3gG5dh7PR2rhh0D0w7jZbO/l8D/81inThfBRb7B4KIP v1Cl/ynm+M4XS7Fy3xjfPHbUvHY/DNr9rqI0qsGU9qTubuBO+I647tjLFem8gaue yESeoU4okXMPblPXh8r93JIfbmi/rMcuddblJ5kw6U/IYYGGS7QkQWxleGV5IERv a3VjaGFldiA8ZGFuZmVARnJlZUJTRC5vcmc+iF4EExECAB4FAkEpzAUCGwMGCwkI BwMCAxUCAwMWAgECHgECF4AACgkQ9CF27jwGC0QXdwCgwTxjqqG9DppWUVvfQklR 7O7d/QoAnj9qF7prbDCAq43MQJIJ1AP6x/4UuQENBEEpzAYQBACsVmYX94l7jndx byPUZl5SlKLJFSTIymPGLebcdNg8rF86aq/9d8nRrkrqUWtpQtWeAZw2GZn0n/vz kRbmaqMaHkmdg9g9xT2qstOL0rZhCyvLWVeNYUjgkNWi7Be3yjb11RLPOanpug5z Rfu6I/7qjOcVEoa3cjlahdK//xleWwADBQP9EWsXY1iKSQ1k1B3N3+EEWbzuOzaH upo7fLwamIVuX7K95YIqOawMlhERBD8MUxfrzJkOIbVI/81g802Iq1D2Xv46hvCP J8oszCeFjqixsOkg3HmdUyvTHnODBHsQMoy/37r5voAElx/LXc4Dm9DSR0rSTpXh mUdHtM0Y6XYEcoCISQQYEQIACQUCQSnMBgIbDAAKCRD0IXbuPAYLRD9GAJ91NEgg OHfLL9Taov5GEDVjEaD8MACfeTqtFRD4Piuxg64CGOdNBCJ5+p4= =abIH -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/69FAE582 2001-09-04 Key fingerprint = B340 8338 7DA3 4D61 7632 098E 0730 055B 69FA E582 uid Dima Dorfman <[email protected]> uid Dima Dorfman <[email protected]> uid Dima Dorfman <[email protected]> sub 2048g/65AF3B89 2003-08-19 [expires: 2005-08-18] sub 2048g/8DB0CF2C 2005-05-29 [expires: 2007-05-29]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDuVKxQRBACAKP3+q7GJT2OMujrs3EgY2hdrTtLatgzpYGHsyewpckAhMPv0 RGyVpcmXdArWQFMfBdO76TO3r6/CKRTEAAW7UieQwCqflr/qRWfaiMkqIDxll6wU ZdayDmuLPlp76xN7Cvy4p34lq91VNdrZ3FesMXH1xTPrnaJX4zhFEd1/QwCgnmvP UrU63yhExZOs0Cpo9ruLa8ED/0t2nNIoOM2cUghN6Lnh45cY1O+jnjJ4QMOi7bEs XwS4sIZLzZ6F07RCTTbcyRkrrh+WqX89z35ppi6PM2GZS3Zgz+W+gtzvrhhBcIHm 0INVgsJJE8Afa2EzA2HIXsKl462Rojo8hmFXO34lCnQTe5khzLZVlUSxVpdoucvE ew/OA/0Sdos8xBWc5cFz7iycKpDCNjEuvMroPaFH0I9wPAX3ZBQeyHVLsUYDZKFb xDYlfLPfRikkxolxF+kuzqejgPMJe8aBZfPK8fIhn3IJw/5mOETGnaAPSQDCuN81 jIQ20Dancod59Axoj53VB5bvUW49Z5lapV6rGLb78YuYxxQcUbQcRGltYSBEb3Jm bWFuIDxkaW1hQHRyaXQub3JnPohaBBMRAgAaBQsHCgMEAxUDAgMWAgECF4ACGQEF AjvcEb8ACgkQBzAFW2n65YJotACfQgyy6ccNJM++ogr4UI0QItTsSPkAoIYl/xWT hgWobGIOvCQzU2AV+NUgiEYEEBECAAYFAkKZC0EACgkQbDa6AvWDdPy/XgCfVqbe ZkvcFSken2EtrJ8I6husA2cAn2EsQdRTMlE+6A6Iwcg3gjPB6h57iFcEExECABcF AjvcEb4FCwcKAwQDFQMCAxYCAQIXgAAKCRAHMAVbafrlgvGXAJ0ZLXbxOz0dDh94 SFIxkRe8KE8gVgCfcHnXtUP4oWpyHZ61Ptg/vbv+EMyIRgQTEQIABgUCQHWoBwAK CRDsbL+biYKsuZgQAKDQM/ws0qDgBBl78R3+bdiBepazCACfcqjBRkMtZRFL5k/T RD9PZHKVh4G0IURpbWEgRG9yZm1hbiA8ZGltYUB1bml4ZnJlYWsub3JnPohXBBMR AgAXBQI7lSsUBQsHCgMEAxUDAgMWAgECF4AACgkQBzAFW2n65YJTVQCeN8TR8YIV DYcq40EP6zU4UkwR1YYAnRsA1eDMeLWTtOW1DY1ajeoWY5N2iEYEEBECAAYFAkKZ C0QACgkQbDa6AvWDdPzaUQCfSU5c41XaVSRSnB+GbfjwWNksL8gAnjHNveKXl6s1 bFK8FmUxZOQCVfRViEYEExECAAYFAkB1qAwACgkQ7Gy/m4mCrLkHyACgl4+J+DZB ugNnNwBDLvvptU8wS74AmgM/8NVgFiD+lV6xZeqqOecUPfK5tB1EaW1hIERvcmZt YW4gPGRkQGZyZWVic2Qub3JnPohXBBMRAgAXBQI7nKCzBQsHCgMEAxUDAgMWAgEC F4AACgkQBzAFW2n65YLOxgCfQb+DcmfgjgC65ecR/JGVHooiOloAn24vuwXem5o5 5Ghiu8IOXmucO4jMiEYEEBECAAYFAkKZC0QACgkQbDa6AvWDdPxymQCfbffQmqj/ 8wkxEmExYxVeiXEUp7sAoJ+D1qNrbFeKnMo8QhzG6BqYtcuniEYEExECAAYFAkB1 qAwACgkQ7Gy/m4mCrLl2+QCfV1iY/JPWDYMiC6SYtB5T4v7wjeYAoLqi88pkNlBo OwiKsYETI24p/yWhuQENBDuVKxgQBADyhmTjQD9dOI/M4X9sF+Nvt67rQvAu3j3G 0stq7Pu8jtEdbRaz35izFxfwnY+/RHK7PXCVoAHze5yfZu6qxMxKZd/mcy+1C43Y WQ8C0M/pXg/YX3Qm08xTqUm7G8Cx6AS8/1s95MaSuc71E7bfMV5I6ja6+AjcMyD2 hJiu8gewOwADBgQAl5YGq9pqpDqGYpGDFuc0Lwyu/vmEMS46EesbYC2CJGyyPpjs eRx/yitJe0lzURA96Kgb6qwz7OTzZOzyE/Qb+fNLwh3MOwgSbusqeHyRIC0w6ElJ rikyJwpmnGdPPU3Cwerp0oTHpqGRENjbcYOaaHE2iWk0wrw0869ipHnOQReITAQY EQIADAUCO5Ur2AUJA8JnwAAKCRAHMAVbafrlgrCeAJ4nDFNUblhVC9rNBzOMaKJA wqM0lACdGZS6w22ACrd0nHQcl8u34qGcy+65Ag0EP0H2xBAIAKGqfY3rPRteNSuJ c+0DJq+Rlp5eS5gIXI5LZ73WrSrbTuu0gx+ZTm9bz8WnAN8lM0DyJ3JkJfy0FOBR VLh0K/ksQ1NNwKqWrx4ZS4cKV2LMtAZe5IOsLxvYuLV4cPOrCeNZku42ehVV+n4O FR5UjxmXLW31mYdbo2TeNtABUCipszCvOpJ93L1FyBpAFACuBzMEO1DOMvtijXzt DJHDvOISFQLivOnPn9G99TPNJr4IQas7HPkCOqto8Z5kl+AbywYIWqYBJTEPp9f4 VLwEegEGXZXRsdlIRPavwaw1i4pDT1GKEYKr84uw/MEm+LMzNiBKWIe1PjGUWmXT +qMC6bcAAwUIAJsJaBPPPFbO2Jhup4rkt11ea5spnACnte3FLWU3QR3Gm+9EbqHu BhkF1FhMcFNIzJMxbBSCPCxA6tgbw3C0frl6BtraNZDW0FThYcV+xundkZZN4zQc CWk8AS+A1metHy7SFldRo8ApBC8jWsUfdUw57QzKIv6lJoJhUV526pYcMwOkh824 7aIwAD9Aq+QjMFBxvIsQSK2Spoag0/PUSi9gQ5Gs1GeqHHQ1Z93z+xn5y/fuumOW rb16/7b1lWYV77dOU3GqSgR3AlBqiU+zX+J7DEUs1w0HshGwZKOFYEP3RXqn7ePh sSQT2eHhyi5kb30Cjcah5emKagnUw+kcUnSITAQYEQIADAUCP0H2xAUJA8JnAAAK CRAHMAVbafrlgsEXAJwP0lOmgpEO/a658GuZPDFWDF/5WQCgicjIwyEShBkrEKX0 Lwi7CPdGAz25Ag0EQpkMrBAIAOWN8f2FC5Ms8ivOr28XdvkDmUXEoDd9RDmJXcue 4icY2gikIg41w2AoVAOtBO3B24kZaMIyPiprFoQg0S3HKky7uC0h6Hrwdh2BRdgb QSZ7X87yfBwvyKzcwv8vHM3/yQVdz0wXL9lnOJc6TZnATK/NeVJg94Hh+yk/tfOL Mx/NGvdJqzar9ZHP1fRxRRJNdpQfr1jO5CMCI7VQS6M/bhXJZyP3hif6BD0kg20n R1yv1pl7IeLl9XTfkFOrLhezCQCt9zQ3fVF1fDVi+MfDXEaikXZUrHqeEhx1QZcf hpTn8T7ooOrOm/Uv1EgPDsEyrFe9cwbcX70M706hitlFoUMAAwUH/2fd7p0HcUyE qbo0upsnVPsVrBk0ea1TKen+SI3p/QVp7QqoQoSrbQtfk0TbH+xhEv1ZI6PJsafa LOP3z/2ULOj6f9O4sXh4bAMuI8L9Ay4+s4RouTSYcEYr+IDnj0S7IgkHpOJraM7U 6VE3nmoe6TutIAbkvyTVs+AVuPiBCutLKe6inIGGUM8+afdDm8rymfVyJDPpH4jm afsVGIXcKtGh0XdG+cJ3KzJSJp1gwFXBPmcUWuwBpD/MuAXQgkMvh6Eh5BcZ61Q/ evjDpUENG8r+U7qvWG2ncuhrCEWj0qKp+7WFXazoxF7WRPRL76fUpckuJP0nZhYd pOWpB9BV7zKITwQYEQIADwUCQpkMrAIbDAUJA8JnAAAKCRAHMAVbafrlgrQ5AJsF SdOjEfuDShMW+extgDK2AHuqVACfSooNbyT/XUaU6pQQdj4pH0p2+u0= =hGAK -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/3C9B0CF9 2012-04-06 [expires: 2017-04-05] Key fingerprint = 36FE BE99 2F52 80DF 4811 362A 6E78 2AC0 3C9B 0CF9 uid Bryan Drewery <[email protected]> uid Bryan Drewery <[email protected]> uid Bryan Drewery <[email protected]> uid Bryan Drewery <[email protected]> sub 4096R/9E2CE2D3 2012-04-06 [expires: 2017-04-05]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBE9/K2UBEAC9jcJzDtt7Lih/ccwv71FHyVL8X23Fsoa0oMHKhw7o5P2PqRfz x3OKVyjzGUT7wzrmWoYPbzXrPMQlHUMq3I37F2q1XrB60ga+h8JpzrydPwM9opDI HaGmlcYitTFigjko/Gq+ioW+YSMr03lKuxtsPgb0GcDPkrhq4sNMHMXVw3fWCIiW tSHzhr5p6ATjh+gqxTQQ7hmrRCIUIch+QQoaBdsZI9leEWwcvM1rM+BStFhyu5vn bdJVpTGuE/7fhAyV/Ncf1iN1UHDi7Ow0KptMzVe0ENkM9QLvpDK3Aryx5PYUptSx gtnRDLuRwso8rsHZNWOBQAjR9jKpzX9nqhr4bVUMl629KBLqwsZp7e94gCO3+EXr 4Ln+k/aXEZ13j6+/NZcmsJ9nuNHwka25yEVCwBl4FI+8QmJFc0VMHCbZ3+pyoWDR i4WWJiM2/EMur/qyxx67h2DuvqMVC5xrohVo3xzbfOy8Yn0P+tKjLmwlykgIyFPN 0SrkVmwGp6G8YklgH6XhOJJZXKhzTict6t26JmxHk2pbn130awvRWNuBUHhPtkcM n+FRgzp970hM34CJWt+rLg8i3MoblhK0Ca10e3/k39GuFviWkdOXl9iypSRUyi2S KgCV6SdnctOjKYkbGbQtzPT0YtPokoDTrPfjw9iRBwIiGS2dhPdNpWXJSwARAQAB tCBCcnlhbiBEcmV3ZXJ5IDxicnlhbkBzaGF0b3cubmV0PohFBBMRCAAGBQJP0Bzl AAoJEFi7lhvQKwF5e6oAl0qroDYO+wM+MXko5e7a+BrJHlMAn2+k3dPXF7Fgm5+2 w56QPy0vUSLHiEYEEBECAAYFAk+DSSYACgkQWlMewKPdsVUJYACdG6nA81tN1c54 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<[email protected]>
pub 2048R/22431859 2012-05-28 [expires: 2017-05-27] Key fingerprint = C057 112A 4A27 B5F2 CD8F 6C9A FC5A 0167 2243 1859 uid Olivier Duchateau <[email protected]> sub 2048R/63A85BDF 2012-05-28 [expires: 2017-05-27]
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<[email protected]>
pub 1024D/7F463187 2000-12-29 Key fingerprint = 7B79 E1D6 F5A1 6614 792F D906 899B 4D28 7F46 3187 uid Ducrot Bruno (Poup Master) <[email protected]> sub 1024g/40282874 2000-12-29
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<[email protected]>
pub 1024D/CE5F554D 1999-06-27 Alex Dupre <[email protected]> Key fingerprint = DE23 02EA 5927 D5A9 D793 2BA2 8115 E9D8 CE5F 554D uid Alex Dupre <[email protected]> uid [jpeg image of size 5544] uid Alex Dupre <ICQ:5431856> sub 2048g/FD5E2D21 1999-06-27
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aKd48B+wDBoUjU19EbFl0FN1e2Zum2oOBKfEwr8Up6tmBY9vsxCsqY65fP432P3s ILrLh/k81wqVXhuEvUxpkbZMtEePLLCl39G6RXD2M8qe5LsIgjFH+a8uCRwdUWgF Dv/R4HpwKNk5U6u5Jmh3XWh/OoHPshWV1AfbUFCVSwuuu2r7g2VzVhBbWqdlTfLs Cvf8JBbmWwBQOj09F1IQN9hZzXxa5+K5DdaSuFXURglTpRnONTwbkPwM37526h/t VAf3gSKBEtg1jPveLVdKxoGKiEYEGBECAAYFAjd2Z64ACgkQgRXp2M5fVU3vzQCc CC/qqMn8MWKJ0CbiXiTSu7dpojYAnjslrpODNzSntRQ5rK0SawJXsWWk =CMdE -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/D80B4B3F 2004-03-01 Peter Edwards <[email protected]> Key fingerprint = 7A8A 9756 903E BEF2 4D9E 3C94 EE52 52F7 D80B 4B3F uid Peter Edwards <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEBDlWwRBACjdnvu/rCOVEjpYmlmQmmmYZ0hbUdustNozm8dtKpg2w+zED3z 9kHcoXEY2i1jxmJrHd4PPcvMutJB5AuYU4NiBmdMgBgfZvW7yaD+tHfvgozNyEKa 3Gcddamy/ENCFKoSTEuCDxH77zf6DXh/B/Ekjav0sZnGHPqFhUdKzwh21wCg57uM Z3aL0+sIhiNYEJK93yjXt0sD/2F6+T7dj7wjdCPsb3mh5YSTjGeSXjnXHfeFQmmA /dPyOkWOAuTo2uR3AeVRrJ6rslKLqyl773HX+eM5b52gIsFZ+CzSEiHSrHEqOR/o 3jzzGWhZb3Q/dbeWsPrtw32XUOdiijH5h2PyfKQ6reu+lpH8oKTbvOoycguHnsiN 8zt/BACCRoxdjw3f5L4RMfbdxN8/9GLcDzjv27s4Jn17snXuOyNzWxky+hNW5InM wG92m9/a4XtZX6viK4sY8kfFLvAx95vaRiPJOPdUIx6Hk34HHsXdQ6XbUaadlBuG Mxr+aT2o01qzxi+dS8+SWXjCBwT5mRVdOZq7RFYd73I+FrzltLQkUGV0ZXIgRWR3 YXJkcyA8cG1lZHdhcmRzQGVpcmNvbS5uZXQ+iF4EExECAB4FAkBEXVYCGwMGCwkI BwMCAxUCAwMWAgECHgECF4AACgkQ7lJS99gLSz9lewCgtKJX8EySD4x42LoZ8imS gYzQ2AMAnjAlfeFF6q4Lqiv6ikUW7uSGu2WitCJQZXRlciBFZHdhcmRzIDxwZWFk YXJARnJlZUJTRC5vcmc+iGEEExECACECGwMGCwkIBwMCAxUCAwMWAgECHgECF4AF AkBEXiQCGQEACgkQ7lJS99gLSz/1ugCgwj+RyWcUk2WtWZlox7rmTG9ymDsAoJ+r ckrEYUJfPdH0GKonpipJQwL6 =73v6 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/7D15560B 2012-11-17 Key fingerprint = 0039 2133 69CA 14D3 236A E331 361A 68B2 7D15 560B uid Daniel Eischen <[email protected]> sub 4096R/A51F81F7 2012-11-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBFCntAUBEACwjEAEbH8GDWGH+6ciSSocVDFFdMvlLWaoHOEjqsVMmotgP6dz M7oxf221fPVcck+fB/pngSFglsCtyZP1Lp4/3r0ynaOZJSEhSBpoHeIJas2ZA70W 3zMfUZICFqkZkg51XTS5Iv031QHlIZIRx45FOjobVQ5F6romkxpdfyh/7/LDNru3 xy7JVU9TBM48cFWwHmCOBYajDB3NOshSBhXEwiQH3y6Eo17RSaS4TJnwWIWFn1E5 Z6fVArPclwqhRzgiy+vFD6WWfLBS4+AQPqn1y2/7fgo4L4Ai+4hWIcYXtMWpvtMF WpYXF7p0UFUBB7oq22933713RNPQJ+bUQMV0drmuSuy5frJMQrOUgV96l7i5oHMi fkaUVq2PDNZa/rFbMx6CN8cmce8TXEnz8FajRA9NbtHPYfmPUS6LX2F7VjT9KL2r wlF07fLtLbxCnq2aG3O6V2hrkJdWZ+6970s09LsdpTS03gfpSHvEUpoBeQY3jszU fgo0qpzpYGWOVdkTtyvzomhNNOjNMEE9X+718v9vtWn5aK7/0c2edyb4G5uBCcea Qpp1m6QWB7NSfTQ1oSTAaTQOViZrnfBSVluJNwqx51MS30bxxuhkEwQg8yiF106J zFiBNNnMGXPjoT6pnfcOzlB64d3WyF/4Vzrlo7mF6NSYmjiJ4GoU3xDW+QARAQAB tCVEYW5pZWwgRWlzY2hlbiA8ZGVpc2NoZW5ARnJlZUJTRC5vcmc+iQI4BBMBAgAi BQJQp7QFAhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRA2GmiyfRVWCxkk D/9owvhg0m87gtGjQdup5CscStSZdOF+UGSFBzhWF3NySppSDea/KiDk6oLJ55H0 wssYsKg3tUEilrJCp2JxT5AbP6N08xv7CY3iTpiRV7ltcRwNNKfGUAjf53OYX8md SBc4+kjWpqMpkTMDOKeo/B0cepaLkNhbSbUtNfvv/ws+2chXuLNjpFKeSUSuIB3M n0exku1/b5phJEorqfYNrSNro9OljabCF8e2GxdHAhvz8+pU+PI9HvXqgRYPe8F2 DJj+3tOaCGDbmccw1V3pBIrx25GbsThzxPQAbZRSSwqXBwSN1WII2/nIky1n9Xyl e0d7+iHiMSc3L6LcSPc5xmocRadzOj3PVVN+Wyjx9fvJtb0bZ4a2QH3jyKyrouKn 7+zwm81saf9PnUvgdN38xiuY6r4a8GoqecVPpMiGmvo8MtkiFvZURvJYGD/wj/eu anzAPoFyIAiPfIzXJWBCCLKmy1IiRa+OuABsVFMqdS7MUTQSvAG+O87at4wuPjJT nikZtRg+f79LitvwvMjUIDAnERv87A2Y9BQTCu+yVeL5ezT9xKeuKSJ13qs+/kKf feRW7WoSIltPGVWLVSrHErk9Oi4632pBzSWQIYSR3BQeXrnalG4fkXxoA8AyHlRO LlUlTpW6JYkmY8XbD8FPjmvWZb8mRQpmRJ2HTNb27FL81bkCDQRQp7QFARAA1npZ ouUZy+eMJtJcFZvKVxG17m76N4rAOrzLC998bjVJXrWz78k75u+pCU0n298AR8SA 7m980S+1upBxTwYUw9GIIwhQ6EzPtdFAePvWni0IT1AV4SPy97PSFfWSlB+8Df9P YKOU+wG7K/MJqiHxuGCC+tXQrTRjL++VgGxDWyotEEH/5F0ARfYxFIXe6Pzo0su4 TK22jPf37GX/mJmdh+i4pN57pOkCVqFIfxbcAHtVU7zTtrU3f8+mVIJ6KfNeUgoD Xc48Icm5ZemZyHqOkLev6p49a6wRmrKx9CuQTLIDXKAc1fx7NuzvJ/5OMP/b6IUt sxtW9/fI97ueS4X3cMvx678fi3Ukq8NvtXbX0uePOddaS8Bg2EQjtTkKXjMEkNsm 9oxmzLEyIUOQ0XDHE/7JpzJb1qSgEYNKV7yiHev0KX1xWUXfljQ0hV+4ROJ9cm3V LvHQvUxrqBr1gRqzVk/WK3U8WrkbKKSbLrGtL/l2+Db68wvL5DIP4a/P578dX3qv HMh2cDEoNwrZpgN88AtvEgZpmJMco8SY06UrGuaAUI/PbgCJt3go4BklD2BzBFxS y2LNZKQciezphlO4GlD1BG7y4qkPn7SiNSTbB0/8jP7siJquXfzRwS6M+btAIZHC HJ8Flx3jUdkXWh5N26GDxRcQqTavgR1LKp5lSq8AEQEAAYkCHwQYAQIACQUCUKe0 BQIbDAAKCRA2GmiyfRVWCyWmD/4z2vs/MOjXsHp7vBo2MASTPiPuIKZYM7rq4cDV f06FUT+kekugLO8Dhz/3YsiPNctArcuL6UKDpvM5IBE8SnWzOWX1iVpcRuTLdkOS 8ZrXHXTYNDCjXRqh15U3X13mjNON3yyHlqNb9GGe6GwieyeIMjN1Q+aZN4RKsl36 V1Qg/X1/n+7KlH3yaeC5mz0BqK08L7ROECPTLZrnWBmchHZaC5m6xywAnZDSqg9t VXqRiG9D17Ksp0RrG6Cg5zewIh/HmZ/m6RGzW8EaaXWHfftZJPKGFIMvOK9tsQpp X7Dcu/DxmdNwdTC9hyOMbszrF/mQ+rvOJM30+FFY5BqDK2/fw6NxCqoMqbxdqwEP OcB6DavnJ2IBFKFxfweuq6ywOfFaHkCDYq/SFKVsf4JcWAT6VxrEfVZVhxh7YQgE 3zJGU1uOvLCxuq624+rbcV3EQyh78hyUuVzyD4eUBoNT2bfQM3YXTTsaKWqEDUUp LoI/GcYTXMwAYqoVyWtoLGjmEFlPsgNchCLpDtWaAxTiTTZGsN5DwOK6rR++77t/ 0pSQjB82AMC/OyZFTQ7OhnNSuHYTc8OYG8dz40Zr+QzXN3z69+gfp5OHXvevQuPU 0op41UoAM1NqcVu1jWqqrv+jq1CDdPmZ4HqT2SIhDQWrdIGIqs1wC/v97Mr3irL1 bwlGxw== =J3ZL -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/A79DB53C 2004-01-04 Josef El-Rayes <[email protected]> Key fingerprint = 58EB F5B7 2AB9 37FE 33C8 716B 59C5 22D9 A79D B53C uid Josef El-Rayes <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQELBD/4Zd0BCADEH+EDDjEX2ztufB5dele5Bt4XBg3cYncvlTsVEDLR89xtwmFs 3no9Hs0ImTQwplsDgbixBL3DXWi46dwVK0MGYIUycJxLfsgFdlWngcXYkpWF3O8g v4YhytcVi9uSBy8oNB7huiY8IXh4XPgiOKztgCVJZbIgi8ahoif04eHTT9YGOL5x Qu+n7D74zAcgzK0XO+O+WXB8EoO/saJxzcCIeEGzfCjq4VyL6JB+1c9CgWlrpI7K LOpFqrN2qHygIMxCicp/163AdxD9I1hUtlF/sZYY9BpkbweLLqxKf4qtDYAMZLuS xFGfIG8f0imfFeTXt85FgYGxqLMlmdjFefIpAAYptCBKb3NlZiBFbC1SYXllcyA8 am9zZWZAZGFlbW9uLmxpPokBOgQTAQIAJAUCP/hl3QIbAwUJAeEzgAYLCQgHAwID FQIDAxYCAQIeAQIXgAAKCRBZxSLZp521PM0PB/91jWBC7yI2obxE+VGsItduiPhC 0x+Z33suGP8f7ewGBlztKC8y5N9jCGCfG9auwkJ9Xo27zCpMIkba4CfbRqyLxWoh ZluHQg5uge7AGefmsdfDsfZq5mPNtUkB8uVn3tXGwVVsxknw8PGtw25wbDCOXTCi t6L70v1gJfK8UxFhu0VCdOxbRAuQoIkE+bSO6g8bJrt6JFzhVpuHdgxwJbziWYSp nEJUN4Eou4UfCteVQrkh2O7ArHMmAEb89s5xbfNrQ4NdVBXHfsrzEDhWOqgiQ/4m o2DAs8iy2aCbWRaKG6G57g+uwhbqEN3gkeDfjhcpBMLqQy8drqx+erNGVYnKtCJK b3NlZiBFbC1SYXllcyA8am9zZWZARnJlZUJTRC5vcmc+iQE6BBMBAgAkBQJABsPr AhsDBQkB4TOABgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEFnFItmnnbU8miAIALbu Y15l3+9kNlv4Arv26aYrRcIYEUcCLIGZnD93NPnyEza4WwsUbCvYgNpKb/wojAA3 xUdzHtRUfDp++eQU72S7DcRkkTt5vrnwKnH9kMsr2/hCIaO3ESiOVoPeJy91fHEF I9K1qP5noJQjfjr1w4ib86spyVb5LH3QPEnyvDX/UTBYiYu8UUYonitLZ3iHk1Ku x9SQoPszvkxdM1+d25pbG1uSV8JQRym6TsPQp3RwpbCy5hnwMbDLaWl6fbRwtAxZ i6A0cppdbgi+DDrOFoFKuU25YKKOKl76Vy+cpjYPBPRH3mOTYd/i2xliEP56dTJU 4QqDJPpnJdmvXiCFt5k= =UfKm -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C0F769F8 2004-08-27 Key fingerprint = 17FC 08E1 5E09 BD21 489E 2050 29CE 75DA C0F7 69F8 uid Lars Engels <[email protected]> sub 1024g/8AD5BF9D 2004-08-27
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEEvjRYRBAC1jMkUf5HrEQcNSLSK4NogjNTuwxE9d4PjgOiJ04L/haKeUAaB x21REw659FNCOW/HDuCzNH4POFQYoe2dyS3lV4xk+YsoJ50NuoCro/tiigBztKB6 u/Ukq8bReroNwjP1Q2TnCHWxzDIq2HJ2FQtbXXlWKe7ZBu/LFwAsHLenLwCgzkp1 i0gxqzxWrzIApMiKWB+HORED/3Jjom3MOEZfr27aYvY18700uXui6GAkcxTj2/6X s1MVpQt8F/BAgKYkw8Q3qOgoaJPHpnBQXMIB5TXCkXxZYwvUFlLHMOghpZE6/eHn 3+UdvqsxHGa59Ym7HYzS1IExBVNfof4MVsunQtnGaHyQDMrKt2zF2MmTgASzITWW GyOjA/0Qc0K+hUBPsiaVpNcCZs6vPxeU1qSZamyZlVIjfQgRkTGN94bJD7l4qzaK hpmOLF8eD6+pA936HVhLfmPsNFkpFgw10oQQVYIVx/Thj5tOX2o7VbXUdQEkdTTO t75c2UqZIdPKet/btF+NPnnT3P8u0UdVvpvMeq7thLuJLkDDo7QiTGFycyBFbmdl bHMgPGxhcnMuZW5nZWxzQDB4MjAubmV0PoheBBMRAgAeBQJBL40WAhsDBgsJCAcD AgMVAgMDFgIBAh4BAheAAAoJECnOddrA92n4OuIAn08LIWiZX5vZ5GvClSsa30Wp 2LG5AJ98fEToSwavm0tAuDHU1kPoDhPSqohGBBMRAgAGBQJBL48NAAoJEI90JpT7 YBR5I/kAnA3vnk2qg91m3nocHy6nS2tShMUzAJ9RQ1orEGxFGukfgtY9iTTG4Tpg /4hzBBARAgAzBQJCVYkTBYMB4TOAJhpodHRwOi8vd3d3LmNhY2VydC5vcmcvaW5k ZXgucGhwP2lkPTEwAAoJENK7DQFl0P1Yg9UAn0/WHYshCUKP551shW3EtjUFvSF/ AJ9EhPPzNRdgS5cs8Hifvd29McguHohGBBARAgAGBQJD/deEAAoJEAwB9WIgsQYJ 9lYAn3MTmAp+MZn64phFp346NFhy1tRwAJ4xd16I6dRhDMSiNVPQPybwAZTfirkB DQRBL40XEAQAobWOOZBUJm+Twj/sGj0bUdlZ5H1Qos5uWEEjamcElcmN4dG6Dyjl X+X4dmcAQADm2JH5aajdWKKDjDNaTRbdV9XCe/iogYD9UhbPEQuHovTuDaOQrRsF nSCcXH1GABWF+Cp2JA4FVS1gmHykr+u9DZP7CsOosI6PWmOYwySidHsAAwUD/jVL iRLUj2qR3ejYTa61ATT5wb6UtuIohpvBNFj4t3V+LWATXmuOP1mYhy3SmoxUcmFj uULJ2GHHb+wNnP8YpGdxRVFkBV2grnpKqPdCkcm1ON707w2d3aDCEl9KGzhEvg68 c4CF0hVkLGIs0qeZfsOwxE4jdYpPl8YuuRZV2ah3iEkEGBECAAkFAkEvjRcCGwwA CgkQKc512sD3afjgrgCguloybHuwhKsmOnnD6HSp1G/s4mkAn2VeB3Euh8fg6W/9 gcKK4GHoPC8/ =T+Zj -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/E74FA871 1994-07-19 Udo Erdelhoff <[email protected]> Key fingerprint = 8C B1 80 CA 2C 52 73 81 FB A7 B4 03 C5 32 C8 67 uid Udo Erdelhoff <[email protected]> uid Udo Erdelhoff <[email protected]> uid Udo Erdelhoff <[email protected]> uid Udo Erdelhoff <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAi4rWsAAAAEEAM1u8Y60omElX7Wtrh75P8K0L2Gp6omV6iDuwl9kXYhN94jF DE1F4xpkRDWvQxsWbYeIk2F3VYGuN12BhbRNcNqoyniQt2XMmbdEmp6ltumH5WbG jR5Xg0LkJ5AJmxvjJXXA9q+/eTfmyTfPjnCL70cTMWHdUl+EBUPoh1XnT6hxAAUR tCFVZG8gRXJkZWxob2ZmIDx1ZUBuYXRoYW4ucnVoci5kZT6JAJUDBRA0K3Q0Q+iH VedPqHEBAe9vBAC+el5mJpqPkC/+om/SSE7mxyuUqHAx1tNUymL8gTuV3mFB0goM xkxhUOMMYe9z2zyi+RXrECfLT2OqqUA60EZpl6Mgymj8SVZSv4ZwXdU8cgynYNfX T1pC57mN9mxL10vTTJEix7QsrVz0W479/IkBrhW9nTidQtORW1Si5T5IA7QeVWRv IEVyZGVsaG9mZiA8dWVAZnJlZWJzZC5vcmc+iQCVAwUTOwzFWUPoh1XnT6hxAQGl eQP/bLMp1qSdkt2/BKchpx+lhOemCmT3LHQ1sNzelb7dBwnsvE3Z9lOycH2pm1ro j6x3vmcDAqZ1yh2eFEVNK5abfhuI3QH+9QdgvMcSIQgF3VIMer7JXxNtFFX8JRKm +YfLfDifcK+B2HRkpMt9ETY8b3/cYz+gbdKNe4nVde5KPT20IlVkbyBFcmRlbGhv ZmYgPHVlcmRlbGhvQGV1LnV1Lm5ldD6JAJUDBRM7DMX9Q+iHVedPqHEBAYHUA/4l j98KC7y8cjapO4Hi0r/eO7gUwDujvrBMYbWuhmNCO6xlPfwRNm76tnNiTFdqVLat XSrQwEUys9Mq9xe2F2RuqSfYWjmHKX3/gNW3gRJbnBqO1QN6CDqo39a7LgllqFf4 yFj9V6i1c0WSBiOeWy75DHpsfXHupMxZWPPRWh0TnbQfVWRvIEVyZGVsaG9mZiA8 dWVyZGVsaG9AdXUubmV0PokAlQMFEzsMxhFD6IdV50+ocQEBzqsD/0nX9rV5cAcd jFTayQvoAjb/nIN+TJVHumuC/Glp9fKHlfTjMnsUawma+iQESjUB8XgyeJ0WvR8M vQGEMowYr1YTtFiYfFOvrzXZmhB6NfhFV3s34ZLDeBnncUqkas79Pi9G9AP2Y/Mc c//i2owj58xTfocYNT5IxVVYjB72Py+3tB1VZG8gRXJkZWxob2ZmIDx1ZXJAZGUu dXUubmV0PokAlQMFEzsMxiND6IdV50+ocQEBBJsD/1SVP70fNa3ShAn18+yEXOIL TlFYCUmGaBIeAsd7r8tXFYbf5STAOEOiqBB9Y7V1tV4IriACru+9wo5wBQoCLBT1 RNj4NhwVvkGReTDsA+Zz/vUULrbklVKO724DktO0+WRbn/w99trttuUTGvTHRER3 BjuOfJ/QoLlnLAsDBMov =TCJD -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/996E145E 2004-06-02 Ruslan Ermilov (FreeBSD) <[email protected]> Key fingerprint = 274E D201 71ED 11F6 9CCB 0194 A917 E9CC 996E 145E uid Ruslan Ermilov (FreeBSD Ukraine) <[email protected]> uid Ruslan Ermilov (IPNet) <[email protected]> sub 1024g/557E3390 2004-06-02 [expires: 2007-06-02]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEC9nOURBADtxz6jwoFt/gIogEFIebDz4S/7jef4ou9prQaWJKTmLYAe3dB0 b3iZaeUZAN2HnYrtNC9QUlF8ChMpVLsLp00+nL1A7wO8qfPdHXee5iQ30JgsozDG vdoAB6zA5mCe4+maZ59R9CCNrc2aB7binqOxKfiu65h46DocCzLVrBC7BwCgnyWr IQp7gzqOy6L4GVycyOwBArEEANgdO6O3CO2w6ovxe2cvlHV6NiqbEWeCRzCVrCiK ApB69ltrOqUmPn0cHV5+8KPXu0AaBBkmwNjuw0W/etSFq2tachIqY1qMjVFxvk1v qxu+1fq5mB0vTNALJ0nDpG3j4TkKejlqsXOgAYh8/8aYxVhxgxgD5Ni6C4UTBb/B sw+HBAC4UJozMPg6gsSdhYYqY9KCCc+xntaOxFKj4ir+o2EZ9qJ6Yg/FDygDxULP tfCG7MdzRyHAdpMBOXlp+2VB5HbvM+XCiLh+Qfj47HZgT2jR7GgWM8HCNLMydqUs odh3/8NJT/Q0AaYBKDKvEQPrv9siRvNLYfM9fFQ570Nr58wExbQpUnVzbGFuIEVy bWlsb3YgKEZyZWVCU0QpIDxydUBGcmVlQlNELm9yZz6IZwQTEQIAJwIbAwUJBaOa gAYLCQgHAwIDFQIDAxYCAQIeAQIXgAUCQL2d5wIZAQAKCRCpF+nMmW4UXr+4AJ9i Rv0F9CXB6P9s7VxgagGiRgnKJgCgm9ONcZkKiRJz4ThM8+lUVn7/dvSIRgQTEQIA BgUCQYJBHwAKCRAiylhMenujwLSuAJ4vH3muPfL2j7g0i3tBxANH19HJnACfUqbj KgRULoLdd5Xd3xv1TQMtYCKISwQTEQIADAUCQYS5HQWDBNx+SAAKCRCrL1pbFSVp kLOhAKDo7/Q1gjtWnHNj4KkJc0JwrdjLoQCYny4YEuaH0XQZmli1JnYDiezQf4hM BBMRAgAMBQJBhMTSBYME3HKTAAoJEID3vqaVM+drOnUAn0+1xLBukkS1LUENeWwI FkO5+xqCAJ9ML9gITzyOy5XbQzOG0MyH/YkfH4hMBBMRAgAMBQJBhMW+BYME3HGn AAoJEKBP+xt9yunTpSkAn3YtJf9DIdaO4YtRtnPNlYZt4CgHAJ9vnB4AM1SAahY3 pgrhO9z6XIw3qYhMBBMRAgAMBQJBhNROBYME3GMXAAoJEIfaXA0nNZpRPpYAmwXZ /pIjOqugDXN/MQErc8aG7pVwAKCaZXtnm8CT45OWVeVAIu7uDmY0F4hMBBMRAgAM BQJBhPV8BYME3EHpAAoJEL9L0OYEnbh5Jx0AoL0vfYGS3iWE5u66RasB94xyQbIr AKDY22dEDqObs5DwrjkQHX718wiKQohMBBIRAgAMBQJBh7rjBYME2XyCAAoJECRx EX+pUQLB8iIAnijUZVkQloDfwcbVg0w6xuOFiCbOAKC9hggzd3ujHQ3vVnYEoqS9 lv+rYIhMBBMRAgAMBQJBh9AWBYME2WdPAAoJEHPeaYzHFAWilFUAn2MLzNKhtam8 L4s4h68T48QgHB6vAKD64I+m0Z61y2OMH59/j7JYbsZFNoiiBBMBAgAMBQJBjJBK BYME1KcbAAoJEB9/qQgDWPy9MoYD/09F+lAdn5JSk+QE8WOyPO7ZP8uqVoiCid9+ FQynmcneq6PsjhO5KDyHwK+nIxWwsghlKqG5gmCuN4/YF4wkxx+6mVt1O5WFhlSt x9y8lrN8csLMUCQzLaluD7hpYyScT1uGOLI0q6HgZ8pP2XQ05uIGUIfjt17jYbSp DKphh+0ftDRSdXNsYW4gRXJtaWxvdiAoRnJlZUJTRCBVa3JhaW5lKSA8cnVARnJl ZUJTRC5vcmcudWE+iGQEExECACQFAkC9nZsCGwMFCQWjmoAGCwkIBwMCAxUCAwMW AgECHgECF4AACgkQqRfpzJluFF4VOgCffv/mngzbhP+88uSHERTu2BBkefIAnA9H hLGo5SaCSeWNwuqdgK3GvwDqiEYEExECAAYFAkGCQTEACgkQIspYTHp7o8CVcgCe P/DPle+jMtpgrrS7tnk5jeluAg0An2r5PK4eajYFLcIOoDk4aXThHEgviEwEExEC AAwFAkGEuR0FgwTcfkgACgkQqy9aWxUlaZCofwCePa9l9dsyD9k9tV2dm8aNYywD jEIAoJBiWx3/1gqZYmjed+zV6vWa0cKgiEwEExECAAwFAkGExNIFgwTccpMACgkQ gPe+ppUz52ubhwCbB/EXTvUfSYc4vFaQMGa03naiDK8AoJ7rBjM0S4MrH/yISFxF PYQgC+RyiEwEExECAAwFAkGExb4FgwTccacACgkQoE/7G33K6dN60gCgu6O//jpu JSok+bBc4X+AZKJK+qEAn0LswtRsAtUMDkA9jvKnBWCNAxQqiEwEExECAAwFAkGE 1E4FgwTcYxcACgkQh9pcDSc1mlFARwCfXf65/bOAJHXeKIKgyvpbpQUSCk8AoLAK v42dyiYsLhzUH903wR+OK3LCiEwEExECAAwFAkGE9XwFgwTcQekACgkQv0vQ5gSd uHkgFgCdEqxUdKNkt3EsPy1MaHEJWpKbjgEAmgKdjeXG5Q5syxP6AQtgwmm942zH iEwEEhECAAwFAkGHuuMFgwTZfIIACgkQJHERf6lRAsFo4wCfR9sK68UaZUGInWsP jOlbB1RlIGkAnjvuFzUSF2a4PdxNJXTFbps0sa6EiEwEExECAAwFAkGH0BYFgwTZ Z08ACgkQc95pjMcUBaIWYACglNKP7iXD6a3kC5ezCidQ9bw7atgAmQHVg/78odHo v3XEMz6hSYiA7ZB9iKIEEwECAAwFAkGMkEoFgwTUpxsACgkQH3+pCANY/L0sQwP9 FwLOugh4xHDwloS4nfiCVEB4tGcUNUNvyWAirweCorPcAWz1h56EUDM2bEEQLNvN 7KH//KLFl7P7w6HBg5OIsOxOv6pwM4cqFYSfZ1tCrqSVL8JSz2CEuqeBO63vwMIK Zuz5isBHWB3V9jR/FARZFK64pj5jqOdrhXlEsclw/hi0JVJ1c2xhbiBFcm1pbG92 IChJUE5ldCkgPHJ1QGlwLm5ldC51YT6IZAQTEQIAJAUCQL2drwIbAwUJBaOagAYL CQgHAwIDFQIDAxYCAQIeAQIXgAAKCRCpF+nMmW4UXso+AJ9A1bzRrRjjeVPejggh dSb2MBtI+ACfTHHJ5L5tWTM4DaKE1zNslFcKJGCIRgQTEQIABgUCQYJBMQAKCRAi ylhMenujwBtyAJwPbdhli6lM80ElaFp6Z4k26mFmXgCgwOwFHhG8JmphwsK2EuOM IYtRL+qITAQTEQIADAUCQYS5HQWDBNx+SAAKCRCrL1pbFSVpkGDTAKD9L5kXDMJl oEVg8Z9WjA4YZ+DkdwCfcvG9fxWmuFbCieKMwooQhZPjTTiITAQTEQIADAUCQYTE 0gWDBNxykwAKCRCA976mlTPna5OiAKCy1RqGuaaV2KEckQfu5qY4STRbpgCdEESQ rQjwdC53+itYYSYjl24gi02ITAQTEQIADAUCQYTFvgWDBNxxpwAKCRCgT/sbfcrp 04YRAJ9KXOH+0A2gRhQaBpG9wYtycCMPmACfVVrj5SccNfCLfVCagLtwkrPjRkKI TAQTEQIADAUCQYTUTgWDBNxjFwAKCRCH2lwNJzWaUWIQAKCyzJw3bO+6tD4lz32/ osDpvZnClwCeOFWWxTJWZmXa07c7rNhH8co562yITAQTEQIADAUCQYT1fAWDBNxB 6QAKCRC/S9DmBJ24eZFFAJ4/0hvCrenteNbwNeXt9d7EsuJTIACg+3mOLi1EJX/7 sahoqtQzZaxL1zSITAQSEQIADAUCQYe64wWDBNl8ggAKCRAkcRF/qVECwQzhAJwK h9jknd1hm8SPSdePW5y0feAytQCghhaLXPEDYmwIRUYAIbdJMD2hEuiITAQTEQIA DAUCQYfQFgWDBNlnTwAKCRBz3mmMxxQFordLAJ9kzuLcEMrYOwdX/ctHhOuwj5XG YACeLUfYnnx7CcB+KUVZrEscniV1eoaIogQTAQIADAUCQYyQSgWDBNSnGwAKCRAf f6kIA1j8vS0NA/kBfiCUi1miZl3UjuBICQT3tWZHrMuMUQ6MpMnjshiT0vrSvSOG eCGEwGkrBCl1VuFpHO93E9shjcLgzNwPSbtiasK/kzJL32Hyd1+Tc2SGoKrLSXiv 4zJMTxwWBYzFCrniIz3+/XrU9D1WFGtBYc1jsLCvDKEW14RP59qs8TKNV7kBDQRA vZzmEAQAlY3mpmNBVkekHNNxs7W/ansqON4QUvAR0q2BVUvhHunVd02XNyQZTCWO SORhXX5jH2QIzr+igTWLGzm1I4Q6x1519I8N+rZMaQMsflvdNNOYDdfj5jbF8w2h vWcKfi7k4lenw+loDDaQZbEfdzR8qs1sR12oz2ZRc4Lwqxi1d68AAwUD/Rt1poSP 2/xiYhq6yb+dPKEnYSdnAYVYtvH0+qztdSbQyYty5TSnuqJx7fT7apRLJ2g6I455 yJpzyBZR1H8K3AQsH/VixMaVZl4xUUUwxbyiaZLM++WNDl58pjgJAvJueYPRTl/R /QPSo36OBYbqkzlR+U/TDxXnW9OvxSmA9hG5iE8EGBECAA8FAkC9nOYCGwwFCQWj moAACgkQqRfpzJluFF6l2ACfWWiX/0QlAZ9NU7g1wtD10jNJviYAn1qovdOHVYwW xfUIyIEOONF8sN1I =tea/ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F10D06CB 2000-11-23 Lukas Ertl <[email protected]> Key fingerprint = 20CD C5B3 3A1D 974E 065A B524 5588 79A9 F10D 06CB uid Lukas Ertl <[email protected]> uid Lukas Ertl <[email protected]> uid Lukas Ertl <[email protected]> sub 1024g/5960CE8E 2000-11-23
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.2.5 (FreeBSD) mQGiBDoc52gRBADCgyiLgEDhBbalLQ1VGkvfbdazaBHQRdGjsEPwPEG1xSI/5FFm 0497ZJEYkUG4rXbgaNATSSS8yrqJ5i0rX2t3Y1TYOVim8gLq5ntUQtAdhHtnZD3n GbiBLRNRTD/HYd73ta4V789JMheUrQt192IRZZG8iKMjjaW+YQ5Z7nQxZwCglyEp 33kslkv25cFVFWEHUhLvck8D/2iTzX35onmQkXdYEk8S8sS71UoSBgf0q5/4D6aq /Oq4zUYiChC7WGNNMjLSWDPsvt4U01SHfZVMOmbgJXmY6gE88tv32pGkLaIW+f3v BkKLwO8le5GvnfTA+xTyADcrqiZBdtH0zDd1jY61XCsAFyJmMnM+xbwT/dXa+Jtk h3CZA/sFdlpJrH65GHcuyuI/6bGwUkQqpTMCmYeXQjcEsTt2bWQ+knaAFJ7q2+uZ fmmzlhqNuPZ45TTd6BdRFtJFFOndi45yEZsSN7XNBcHGx5MshL4jCEtqQEDfUogd UbwkJtgK0URxFyZ906xhVwgwvX8eW9CzPj0wYsbYLZtGZ4zVobQnTHVrYXMgRXJ0 bCA8YTk0MDQ4NDlAdW5ldC51bml2aWUuYWMuYXQ+iF8EExECABcFAjoc6IYFCwcK AwQDFQMCAxYCAQIXgAASCRBViHmp8Q0GywdlR1BHAAEBbQcAn0oa/bdjZ3ofFKf4 1GT/UYftjziKAJ0Wzsy8sDahkaJbyWzKupp8Q7Uzy4hGBBARAgAGBQI7oHuHAAoJ EKkf+mOb7TNKOesAoIDjx0iq2xsnFfcECkh/zheU5HShAKCpROLbXal5pK3U2XC8 t44oAXDL7IhGBBARAgAGBQI9S8/aAAoJEBBfSR2o12TYudcAoNufp4D+vHXyCX+g K/RMOpcLQmFUAJ9TbuD0ghWzqYY1VGdxrDusUux8dIhGBBARAgAGBQI9O+wTAAoJ EEUnYQZfFVEBfVsAnj/sw5aUDA2vEghr6ZgwzCmzPzeaAKCAMiJxQpog5s1HD71V 3ZhLgk+KWoicBBMBAgAGBQI+sYSdAAoJEC3GaJzjyx7FiZkD/1H+Y2A1iZLXGBb0 16UTUb7Dk2E6VO81SPtviliM8mx4onuvEHHJq789gi8N3TolhLPnPj1ZfEAGslIX 5/JQRx71qhk3hDnGNaszxrgoTkYHQaaoxgZyeoWYP2wVHYF3eTXFLjh3Q8ZAZMGX yNwsYvvdMTIEP9kIQV/5oyuI4H+eiEYEEBECAAYFAkC9Dq0ACgkQ/PmauBrc0r5s +ACfetNYnG+BDKQzDeVgBsP/9depWVkAoI4Ey+1kZmeIdMAwnHOSV8b2TF/GtCBM dWthcyBFcnRsIDxsLmVydGxAdW5pdmllLmFjLmF0PohfBBMRAgAXBQI6HOdoBQsH CgMEAxUDAgMWAgECF4AAEgkQVYh5qfENBssHZUdQRwABASlAAJ497mVoCv4YJtvI begRpjXIpnPRhACffoiU3BSc8pN7gUlWtGZDB8Y1Xh6IRgQQEQIABgUCO6B7gAAK CRCpH/pjm+0zSu47AJ9KbtPOqVhHdF5APDbrc3olf7lyNACfc4M3ZZLSXzG2fsoH LoVX93P4xKaIRgQQEQIABgUCPUvP1AAKCRAQX0kdqNdk2FxfAJ9WA+1axtpqoafb 5KAMCZB0ALSg/ACdFFizbtQM51ebXiNVhcT3rmVorCeIRgQQEQIABgUCPTvsEAAK CRBFJ2EGXxVRAcQuAJ9YP7X9N3xWPpgWF91eHfOtsCS0OQCfdKlgYCv3vJfFNjFj H9pNkBgjrtmInAQTAQIABgUCPrGEmAAKCRAtxmic48sexRS4A/412GhjArnp4sER F50HACd++Dmajzjbaycih0UyFk9Jhx7lkpNMFV0EyNKJq9unBfvuX4ji8kuq62ln I+p/avkjBkpqN9XH0YIQkCYh7X/I5saVWTSqUJGZMPR0HrnJziWyOAiQWEfJc4/A yY6IuS4HMIRvlcVql9MgMWUvsiCwiYhGBBARAgAGBQJAvQ6tAAoJEPz5mrga3NK+ 5uMAmgOksIQqUnvIB9AA/egOVWPNTIABAJ9iWClWufO9VSjm+uKCXFoEZbBAfbQc THVrYXMgRXJ0bCA8bGVAdW5pdmllLmFjLmF0PohfBBMRAgAXBQI6HOhwBQsHCgME AxUDAgMWAgECF4AAEgkQVYh5qfENBssHZUdQRwABAdfRAJ9sUaTyswjTHMCSqZHN ZDAsCVhyDACfehlPEYgA/zu0rHhQW1fFxRlkhTaIRgQQEQIABgUCO6B7hwAKCRCp H/pjm+0zSh21AJ9sa+U9/NyXhVUm+HjhpV/bL0Le7QCfVc80UHqb3b0Dcen+jov7 tiJ3eraIRgQQEQIABgUCPUvP2gAKCRAQX0kdqNdk2A3wAKCR+d/9qrGqzpGoBLQA b9SRAjl/BQCgop5t90WbPwuJm/AVdbE+N6As2w+IRgQQEQIABgUCPTvsEwAKCRBF J2EGXxVRASlFAKCFlpd7McKT98cATC+8Sd4RFNAUVACfRHTANXgfK7hmvvD0pWr5 nofT7p+InAQTAQIABgUCPrGEnQAKCRAtxmic48sexfwPA/9WyE6OAshMZUuCjHvo nHt0G+qomn+6CrPrps9il0ofWAWHEDMM57OkUYu8O1uY4G2WDfcUGx3XrzHxqsch Seeb5/aD4z57ZQzdGz6zRyorJxHJ2S4vTvLv5QWSKCBqYUEEYgPC22C+JHCfvTcx 76bDE41skqjwcJNNo0sPcMHAMYhGBBARAgAGBQJAvQ6tAAoJEPz5mrga3NK+qYEA oLuLq1uPXXdYnrJ4e+c3qI3Te5FBAJ9lkHFlMp+6lcQ/fN3kSxWMrH1ohLQbTHVr YXMgRXJ0bCA8bGVARnJlZUJTRC5vcmc+iF4EExECAB4FAkAmTJ0CGwMGCwkIBwMC AxUCAwMWAgECHgECF4AACgkQVYh5qfENBsty0QCbB6IgEk3WC8br8usvNqWt2t3y 93IAnjwh2DGgCRk9AH7fdNoSF+an6CquiEYEEBECAAYFAkC9DqgACgkQ/PmauBrc 0r7yNgCfegCimXz8NHxxTnfsz3UU++dz4jYAn1nPAh8hwYPh1rWUjHh/ATX356x4 uQENBDoc54kQBACRE1IriFYgaKg3pDeBPDM/BUflmZSlC50NIgCadloOGwu3AFcs ooWwN9nsVehbN9xjfZa34/xXo09Rn14o5kTKYGSqzYY0XbsNjZl5uj0gTGFRmjS7 fNoWpdsfh38xXZAJOghxd/KFRV5fdnKoEPz+ARNo2DRZpiiEJUa14e6lpwAEDQP/ TvA9mc8OEa9dn0AzCRwvITqx80WBRBVBl9bC+fx4R/CCt0O+gtkoPBlAdY/r0+XQ ZhCeOROXy7e1sbAMm0U0QHgckne83VgzV9TAWHtP2dfGgtOzUE4PlUVBerTCGADP FTN+kcvV6U/O+knnJGmnxxOq/9qtkdtEHvyAzWjehPaITgQYEQIABgUCOhzniQAS CRBViHmp8Q0GywdlR1BHAAEBIkQAn19uApjyy6+M+JD7Qt8inbcYjk7cAJ0eNltS Fv2s0kptGIN2izILm1myaA== =qAVp -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/9806EBC1 2010-06-08 [expires: 2012-06-07] Key fingerprint = 2075 ADD3 7634 A4F9 5357 D934 08E7 06D9 9806 EBC1 uid b. f. <[email protected]> sub 2048R/1CD0AD79 2010-06-08 [expires: 2012-06-07]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEwNjXUBCACWeNjUFZ8rzqxrEIdL3wVrvkWVwaf5HW0YwoIMq7ba3hRcPWuv yr3frrdvqJv9rHJYA8f6uE5dCkb7OSI3YXHC5QN/H9xB1bvRuSUyD1MwmuihUX/A 7yk7HzUE3sXy1U3QIMJWgpvnN242OZtH2XlanuSoDdBL4Qh2Fw7ywQaZvzNlZKUa hPF0Ty7wci/5xuKB7T72Qk4vAYYqxUxYJR/5ox8vM/xiAh5XxPbOuAF0p/wQiiRi NjF/f6tluQu6Q6VFwHXGcZvJK39nNNpadsDCegdRCUUFJsHm8dSjlIyi5CTyUsXf btdlagPTlhiBtOYgtcfRZoPBLFjVafjqqL57ABEBAAG0FmIuIGYuIDxiZkBmcmVl YnNkLm9yZz6JAT4EEwECACgFAkwNjXUCGwMFCQPCZwAGCwkIBwMCBhUIAgkKCwQW AgMBAh4BAheAAAoJEAjnBtmYBuvBVG4H/Rc/AqfFfQi+qph0HKggVJyzEKvhVWhR 8RZ+8zS4t72b4kIJT8FUOiHMpq/+qC+Lt5MFPCtxmOETDgpD9GM1EkgJ1rSDrN8m kbXuQ9Z95KztU0tGsv87JT0xSpxeMnYaQ1NWx5bkKG5AOf6ZZaUVas0XH8/9QCFH gqy7Xe2eGsLO52ZH/4AI8cFc0FPF17hSWTIAwIyuxcRLas+KdV1j74xaBu6parX3 2FoquEFRAPoEcuey2aSWoo4OCBCoGYqh4mhWbEuLOac0NP3oLDFjEDJhE7UT+0gx W5LLwPr0FARkAbRZp84vt9rD5MrhNcZy0X3PBpykium4OrEIp5l9OM65AQ0ETA2N dQEIAK1D1POvE2tRnTeNRW6lw/bu9zx8d4PS2R7GepQkbUWQxpgcwSEoB1JGN8jw 0iKD8KRoFLwQx+TizzRShRsOeYj7beK6rY5H1C0DbrQX6T7eMumOVV2RklVFqYiZ HcJh8LGjJN/tKt4k7OnDs40lHOFHxvKW+PiKogfiWDKpc/wns9mAhcXrbT0SZ4Be qbQOsZMfUbvOZUek4+lOZuaCb0M3QU47bsFrJonPn7VEHw7mkhTNL9a6KKc4ZqQw 52ECVq4dKjNIkvaQZyosA7tRCr+CBYUumE6fssk72SdT0RD/tgHgKfgWZ9mxB3R0 l7CCm8v4c24tZQuuGQG26WWeD8sAEQEAAYkBJQQYAQIADwUCTA2NdQIbDAUJA8Jn AAAKCRAI5wbZmAbrwabXB/9ggUz/04tDZdX4pDsfDoBKtnJ9r1yNWrniBBNlcVLZ G+3BwF5EfZAA/q3lSJmC4BVzaDUwrrL/zbPb0WhE5cGG/byLiByXsEDVSId4Kv/Z bLaPyox8RIYUL/wCjt/57FIORwGVhUr8oDDRLeSoIsazXWhvWfx9qCdzcZTabSkN 74Q0WxQuOagvpl4Kcf3eQEQuB+BvxDQx9JvEXUZanurRP018uTdXficJ5MS+SwXq gJUSSPybwVjK/ll1G33185jnSQSFNwGq1udet7vkDjQKNmkcev1SJY1g0S9iFKRz e6dmnydHGtQ0508cCusMPNCQ4HRhQHEW7w5yu1J4t3UY =bgLz -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/56CBD293 2012-04-12 Key fingerprint = F317 2057 E17E 4E3A 3DA5 9E1D 1AE6 860E 56CB D293 uid Guido Falsi <[email protected]> uid Guido Falsi <[email protected]> sub 2048R/1F9772C5 2012-04-12
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE+G+l0BCADi/WBQ0aRJfnE7LBPsM0G3m/m3Yx7OPu4iYFvS84xawmRHtCNj WIntsxuXfptkmEo3Rsw816WUrek8dxoUAYdHd+EcpBcnnDzfDH5LW/TZ4gbrFezr HPdRp7wdxi23GN80qPwHEwXuF0X4Wy5V0OO8B6VT/nA0ADYnBDhXS52HGIJ/GCUj gqJn+phDTdCFLvrSFdmgx4Wlc0W5Z1p5cmDF9l8L/hc959AeyNf7I9dXnjekGM9g Vv7UDUYzCifR3U8T0fnfdMmS8NeI9NC+wuREpRO4lKOkTnj9TtQJRiptlhcHQiAl G1cFqs7EQo57Tqq6cxD1FycZJLuC32bGbgalABEBAAG0Hkd1aWRvIEZhbHNpIDxt YWRAbWFkcGlsb3QubmV0PokBOAQTAQIAIgUCT4b6XQIbAwYLCQgHAwIGFQgCCQoL BBYCAwECHgECF4AACgkQGuaGDlbL0pOWigf/YVTVf3+ZRnzeGP7CjGV1Wrrxzjc8 h8W64NZasV0XLHGFjl5MYwtm9jJ9gbL8Ubtqstey7lYpjOk2fG6YDhY5eptWCpR6 1QqYrioukhCfKbodSk6PnIZcx719nJVK2P7ihdFEN78TavpBwqIf9hGEcKkMpbRF Qv1mYvXDhKVwQGY+8bkH/a/pAWmIyD4qMfKCMurH5DexxEt5SYWu5BB5hd/DWyZ0 wuZ+F79KMPzLBPJW5cpdLNbrvenSqFZGJEGhtTp7GFJJr6lTy8VLBArxmFHiY5jG yR45eZEGDcz86FfGgvPnnpi7aNCc/ROdF7fnZYPh8uZGGjQbd4EYK4xMzbQiR3Vp ZG8gRmFsc2kgPG1hZHBpbG90QEZyZWVCU0Qub3JnPokBOAQTAQIAIgUCT4b7cwIb AwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQGuaGDlbL0pPa4ggAitrBDz1O eoSGLYI4RACHHe6pZm42hLo3KJKCxEKa1KdPYY6AfhRxuv8jftKRXUHcroeSgvqX A3waN/ko6AuqZOITVbdFPBLuXw9K92eMz2LuDfnVHiZOKO3FrAH8lxB/8qB7diqv VXiDof7BBcdRK2YdOFu6m422vNGmG9H97l6RPQVPJV8+alxubryLZvBmcpR7H9M0 gQIHKRiHxv5JgwuEQ1/ZrJGMIhZLYB3u2dMqEy2dLmO1bqqMHLhGhOlAPqhHXEiC RNGVDj2uhUJR90dv5j+SH5T0bUhyg3Li+SD0h893ClJ+c/5ryPQBnWEyc4tnV9ih Cuz7iBUvLwWztLkBDQRPhvpdAQgAsd6mrOq1GSZwlzRscNQa9W2WB/3Tj4ON4PL2 e9B+hc9lT/ny2zB3agXu5wbsXTzwxgJpQT7hNHkCSckW98h3HRjFfhZPNCgInuUG sjcNyVguQh+/47ckhph0s7U+6B4yNuIiqQZk4mo8WgCNj1YIihVmGWEsgDOwMaaj bDYZ0r1/3GkKlYjOXeUuT/WgourrSR5oZJVNA/k4X2H7M3JUr1BSc32L7BJt8M7A ntul6k17J0L8GmkvLvTUtQTO+p+DYQMna2ngD3PbAvQRcbEGnkg9ABrdEF0Wp4Gx +gGGWsyFKlHvPdMtgWAy3JsS+rQapG6LoW3yUJpwpEpA86KdBwARAQABiQEfBBgB AgAJBQJPhvpdAhsMAAoJEBrmhg5Wy9KTNfEH/R0zTYbvDdCEirZkfJYD4SbrvPaz hGvCihGra+H0O4C/oZmDhKmf8hy3D0LxsWwJS0exdEoXirwBJOAdWhcBlCz6NEs7 jtHf1rVTBGxmveSU5v+pn4spljJVn/FInw9TAys8z0ezptMm3qDzPEv0UE26FFNV i6cHeJoPaVSZStMa+eRjkhzX+Ju0vj9ZL5d8YJhI9eM1TKvciQTVhZbECuXIon4e 7BaX7sVnRFW7YCHcacyJii10iwNLzq6CgL8RUxgawat78VenlJmisneR221no5mn 2NbmuXXJ3sPZcaVii3apAtu1bdApLvi7U2N99uVfgQoZ3MDXCSUuyDJgc+s= =pMfj -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/86FD8C68 2004-06-04 Key fingerprint = DC9E 5B4D 2DDA D5C7 B6F8 6E69 D78E 1091 86FD 8C68 uid Rong-En Fan <[email protected]> uid Rong-En Fan <[email protected]> uid Rong-En Fan <[email protected]> sub 2048g/42A8637E 2009-01-25 [expires: 2012-07-08]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEC/6qERBADMYBi8aUI5zAFh1Gix53UN0EyjbxzDxrDvUweitnVYawKbxbUK X/HdtY6ExD7f0QccAtcbhAWNaxeJFMW5my5Hb7HWlrC1x2wnr4juaPaJXz5YoFoR 5uySiip50Bjb3V2f8YglVKGi7Ssz6pmHxm2bGBv2sWngcu/9l9VI47o9zwCgl/m6 9ceyzMejhJw7qZV0dwzzGPED/iOoqKBCpHaGOOBYbBkeqwhc0UFlTjcULcCNg2dT /sSPnPSun477YYEdPqNZ+20bWhZimh6UNad53hChMnvta2kzA17YML4lnZi0eDaZ Ws6uZBXtWhomJF3hkJfbRk8jfF1O7L2RIOnlRNji5VTwlqFMO7s78XPDXC3//9nQ hfVbA/918ya3FYlyfpSmoyZRz5B4mbIInd6QC9G0CtQE+VQsxD5wS1zm/Qm2ToEz zGlyW3toAv3iqfYEMOftrGR6tAyH+t7upQ6rTkllfUJxAdsOu9bqcmLjDLO8Ym4L 1gsvwPfSwiG3yeucSJDPcPzDQd9oeKkFgoucjB9Z1+oty4OdVrQdUm9uZy1FbiBG YW4gPHJhZmFuQGluZm9yLm9yZz6IYQQTEQIAIQIbAwYLCQgHAwIDFQIDAxYCAQIe AQIXgAIZAQUCQL/s5QAKCRDXjhCRhv2MaFg7AJ9Im0OLuvOKl9rVieKeme3kafKr twCglF6TsB5KWLGqPP4MHzCI7lP0B5iIRgQTEQIABgUCQMxqrwAKCRBCpksL8/QZ yLG2AJ9SNd95Tma/PX+H00lN+9o0G04btQCgjFm2EboX4o/CSxx0gXJucSrdOVaI RgQTEQIABgUCQMxsbAAKCRD5CLzYwf5OnnkYAJ9fevQ4aoQbS5hNT/7ZCdpNU16M IwCgri0A+QbNv+uNptSGOo4NK5mjXD6IRgQTEQIABgUCQMx/SwAKCRAFvPnN1LJI gih9AJwKAe1OSAT6xtEjBUDCocJEDCswfwCeMZbZebbvR2a+dlPN3RniUQh5krWI RgQTEQIABgUCQMyGxgAKCRDkwHVW5ykoJTu0AJ9jeSasEBNkKOkMJmRx3RLKXa2p 1QCbBUjDO27rfMBEedeTDBNIuibbWt6IRgQTEQIABgUCQM0MKwAKCRDPwfyGIOvG QVA4AJ9kFU75ANquB7eOpLFnpQxoJRNlEwCgw1qopsGCmVp0ErqfDo/s0WGxxDWI RgQTEQIABgUCQMyBwwAKCRAJAzu3kHaaEPxMAJ46xzMOfMnNQ0FN5pUUCC7+saBE iwCbB4pv5x8Vkc/xzXWWhyEzrMA8u6qIRgQTEQIABgUCQM6ejgAKCRDjIEwfXSux Gn3JAJ49bO/za8L+m3MsFShzFeOiJ6lweQCdHvkytNgUCeJN0vfnrDUG2G1XbayI RgQTEQIABgUCQMyEewAKCRBUt7acd9Qzg63IAJ9sgYplGxHlnHIGxMSUGMjqfZM8 KACgmegztvZWAOKLMTMu/0IN5eWJW0mIRgQTEQIABgUCQNCjBwAKCRBDZXPuA1v3 XL/SAKCnRdZJPFRl5YNNw/mXUPZgId2f2QCfZdc0ddzixI/wRr5MQizgkocQgwCI RgQTEQIABgUCQdOcWAAKCRCsxgFlEcAjgsHKAJsEAyb3UqbdK3mXhm2y4/0Ddq0y qQCg5kBrc5rqtAw2qGVK1npz0UHXGKm0HFJvbmctRW4gRmFuIDxyYWZhbkBjc2ll Lm9yZz6IXgQTEQIAHgIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAUCQL/s5gAKCRDX jhCRhv2MaKNeAJ0dlwH0e0QxS9fwC65JICkf24RUjgCfd4lXf3Jj22m+vC4HNoxe HKRsUtaIRgQTEQIABgUCQMxqswAKCRBCpksL8/QZyLTsAJ4ov20tMw1nqbONvfi+ iJ9fv268RgCdE7wqSDsf1AkB0YBCvw/noRatdEyIRgQTEQIABgUCQMxsbwAKCRD5 CLzYwf5OnmQmAKCm5T8I1Vaf9lwE3yn8DBw0XQr7mACgrTsVIpECqIlQYb/DnSNF BDcgNh+IRgQTEQIABgUCQMx/TQAKCRAFvPnN1LJIgqXRAKCPw+owPogvwPdjoVOX DdchRn1nZgCfbbyAv1gsa5k3gxBetzUhM2QhZg2IRgQTEQIABgUCQM0MLgAKCRDP wfyGIOvGQbDzAJ9Wr9+diK1i8LzvtdfxT+RzPKdfnwCcCm5s5nSrHc/1NstAxOOz BOITimOIRgQTEQIABgUCQMyBxQAKCRAJAzu3kHaaEDEwAJ9VKT84A1QXcTZDpH5u JMe5mQ4f7gCfSRrTUk0k5HvB0KyOM6CHflwRnleIRgQTEQIABgUCQM6ekAAKCRDj IEwfXSuxGlggAJ9aCF9Wa13C3aUWIRbHcALnAoevgQCeOuwd7rdItcPq3D6gP8U7 /FIKY2aIRgQTEQIABgUCQMyEfAAKCRBUt7acd9Qzg3sCAJ0azL0SUJXJx7NcYdQe 6VBBBaIzLACgnyfZ68crJwlv+fRxPhlxdFhgLgaIRgQTEQIABgUCQNCjCgAKCRBD ZXPuA1v3XCeuAJwPrsSVVCrC29F3Xygr6QB3MS4a7QCfeOsqHEfwiXuxt2xjcF09 r0H7/96IRgQTEQIABgUCQdOcWQAKCRCsxgFlEcAjgmKeAJ9dWtZYU93qkd6Cdpo8 jKbYq4y+BwCdFbqSBm3EwGgfzQZfvF42tacT2pW0H1JvbmctRW4gRmFuIDxyYWZh bkBGcmVlQlNELm9yZz6IYAQTEQIAIAUCRJ9B9AIbAwYLCQgHAwIEFQIIAwQWAgMB Ah4BAheAAAoJENeOEJGG/YxoTAcAnijL+htNIYKKgPFUHlz7nVNTnq3vAJ42MgST to4LKus1wHJ+yXQU1y4h57kCDQRAv+rZEAgA9dwiJBaIMOgZCg/X6XqLRWcxPAdS sGy6q+JATYUnndr1mO1QP7ba877G5Z3E+zcUt8fXJCvEzVC+9HhPNr+CQcWzrFwA 4l5PRUvOKp1ZQu8UrhaEUyDtkTvjLCCSDpMKFv10980UGktlLLqGcCin/3mvFIXs 3/r53jbc8NQWiARdtS+GApAEYLOOGXlJwmEagze3/suVVCoAP3BOQxccOzyr0TH9 kEw2ZbAu/SnyqDPy/m5zpHK1Zqi+UQi2NeJAGmDmXydEtuS8lnCsdo3PXs4i6+zc NoEn30mEpzIL4G/ij/uDdqTkMdBGJe6ttqHvrY9y9qv6yXj1HX6DLcwUawADBgf9 FuCIIxzbgQhgW6w8Qnl0JX8P621axNN5XM+KzFxNIuRMAIIla/Ul60V7L/uMcnK+ qmdzvCbaSurMU6Dm3mHjZXgycmShfWTQD0zKXHAII7hXph5ok9pyGZIxpDlY1ydn aemR7bQTFEeSRVVeNXosiLLVssrtGoj/49XOW7xMj4D2LWEpYh8EITWcvSYwLnm8 mw5DeL/VVV8/WLctE1aoLC/Z69CjaYU5c03p6AUUTmwJgV2KApXUhK8DdALmLQ9+ PmZ9ZrD+ebfG8b8kArViLcBIz16w9ORruMXUUtd0V1G8rWi2BSUkJYP15N4ih27W A04fPTwyIZj1Gw6KEaaBQ4hJBCgRAgAJBQJJfAG5Ah0DAAoJENeOEJGG/YxokRMA oJeyIL8CUN7wj31nBuSuet6avyMEAKCRa/oyo1zNL21/N0qEhHgqHLsikIhPBBgR AgAPBQJAv+rZAhsMBQkJZgGAAAoJENeOEJGG/Yxo1CwAn3HA6CdfUMTuQdASFp7u Q69wn8myAJwL3I9d6WttHOCBr7XNkKcP47noPbkCDQRJfADSEAgAxrX3MYpg/UHs Hwlju1XgoVIEzLhYVegcfcp1cWnJ/aoY+i/MJ3BQQs1AOTZ3D2eGKBXbr8BNYY9s o9yW03B7nRcqeq4z9lTF1rDkUscKP76xEA8kcPmQEeYcA3L1GJ/qjt6zixlnJ1n3 dmDqc/wNJe7rQ3XKBCe+GCEkj9EEcKuhpZNbyeBhfa3MRsAPpOl6qg1vXWUxWWsD PfFJ9k5gKDUnfN7DiaEvZg84HzZYt6qNhzeR+LRKXt/BwmUIYqfi2IqucUefEkXA y3wowsDpMeiA6paKkJFRGH8/dcZTGvAd/SYFwJV1vflwWCmDBpVbqq0Icf2pT/Js uFd0RKs5NwADBQf8CcS8DFScqq+wXPDTVz0jjYH+7L/OcXuzLTVgjVgMH7CWSfCq 9zz+2q29sW5J3MJkclCtkCnZYit7DvKO1AijtUhR8UOR1qNSp8GE03jobWG2ZxNO WC0xdRugK6vL5PBIKTBVDJFk/2rNpjgKUxwtHWWxu5GhD6H7iBAEu3SAixKyGo8S a6/ZtOflZHb/5yHzk/5yEUuQzm2getqDogkrZa8HqirTaPjDahkDko0wmsl9wsdL j73MuWdtnvLjhbhFaPlHro/sRxj5RfJu0x0UvXgdrrFbq+iXGNetT8A6p5rO2kiW SiJ3FgSceto3Fk/xp8M/3L9odUoB0c9nPIugi4hPBBgRAgAPBQJJfADSAhsMBQkG fSIAAAoJENeOEJGG/Yxo/xMAnisKbRWCpTgCq+VaAvfvJy/lsl+1AJ49pQg0txDL D/Fet8nCx6Ef1M1J4Q== =1iVI -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/8BEFD15F 2004-03-14 Stefan Farfeleder <[email protected]> Key fingerprint = 4220 FE60 A4A1 A490 5213 27A6 319F 8B28 8BEF D15F uid Stefan Farfeleder <[email protected]> uid Stefan Farfeleder <[email protected]> uid Stefan Farfeleder <[email protected]> sub 2048g/418753E9 2004-03-14 [expires: 2007-03-14]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEBUhZkRBACOyBTXaf9n0gkvq52yhACaPjUpAY4c+Z+xDM5jZZNpcaEyuU5N ipJdvlKIIkfB+Jka5TxiUBskSo6cegPW7k3G9/as+39SeOexEw5aH1WROcrqD1Wq iBTJ/Ey8eVleGTP/3vpbUoT3gcNZuus00J75OmJV06xyTA9M0tSy1/aIxwCgrbCJ Xr3wLOPYiGXf5WbWfy08DmUEAI2xYIycYgZ7ogcqFcu6gShO/uTcXkZL0xOIC8el rAC/HciJagmvYPjQimQeKhqyX+uvnhguiS+XZYx9yqegOG1dSOVWw6FJTYgzKeT7 6tHmaplB4JQLkUSBn8p2fsyXAaIA4M+2c9fYf59El5+OyfOhGfAEJNJv1oGLYWic Bbt0A/98H+rPmPwtv4ntIvCq5xkvjENzmG6WerNF5dXHsoG6Lnhe++4jUquHseEI +u4ou+v1it5vBTnPI2Wz02WP1Oyz7JC0cPAbrTGz+eaaNV+M1wD7yqj1poW74buk 4hJ+myIqC1dRrliAyrr75xHl3pr212+8Cty8RTiNF9xgICtH3bQoU3RlZmFuIEZh cmZlbGVkZXIgPHN0ZWZhbkBmYWZvZS5uYXJmLmF0PohnBBMRAgAnAhsDBQkFo5qA BgsJCAcDAgMVAgMDFgIBAh4BAheABQJAmCd/AhkBAAoJEDGfiyiL79FfqEoAn0cP NQJYvSLWsU4gD/cffKUtLEKiAJ47lf0I7dFdAJSqqxSCOrw7iuWhTrQxU3RlZmFu IEZhcmZlbGVkZXIgPHN0ZWZhbmZAY29tcGxhbmcudHV3aWVuLmFjLmF0PohkBBMR AgAkBQJAVIenAhsDBQkFo5qABgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEDGfiyiL 79FfeOMAnR6XllE6b+BKnoRjBOC06PXfoK0jAJ4yDtL0vkYkW9LRmoFkWpxJYilU ALQnU3RlZmFuIEZhcmZlbGVkZXIgPHN0ZWZhbmZARnJlZUJTRC5vcmc+iGUEExEC ACUFAkCYJIMCGwMFCQWjmoAHCwkIBwMCAQMVAgMDFgIBAh4BAheAAAoJEDGfiyiL 79FfwykAoIes15zWxNJ7iQr1n4rP+x1LidM5AKCDakRpNHAdMiaJJRNrHt9I1kOu FbQlU3RlZmFuIEZhcmZlbGVkZXIgPHN0ZWZhbmZAdGVuMTUub3JnPohlBBMRAgAl BQJAmC7cAhsDBQkFo5qABwsJCAcDAgEDFQIDAxYCAQIeAQIXgAAKCRAxn4soi+/R X//IAKCmPHdkW+JyvXq8Ph/4AcoSYGltQgCeOyA+WXLvjD8s36h1ITQXleLr0Ju5 Ag0EQFSFrBAIANrcNEggDb7bS/TkhZg5CEw0HP0bFOogCowNgGZ/9EzZA1SvABYb vun0RyK0Ceh51Vr0Lb01i6cIDTH/cBVMqXX75YPusncMzsEuMdBCzMqKRPCpimUD jFmMIBrkbtu8OTwaL+Xy1j7/SyfYv8fV6q6ibGWgN4pcyDmItTWYRNnR1G4EdIvl a2CgQr7AgzWPGeeZLrUqUuLjYKwZ5JUqch3ooU4e+eFkYjovMyiC5E23UxZWyDZQ DA1aOizxH7519R5l1YDsrqjZdVz3Ks7iCPYZ+T2QMGM7oUDjbt0xAhQCt15yj2K7 f0m6KtmHWzwgf5Dagcph00anBMldDQ1RqscAAwUIAMReNMLnk1jhYUYoitYNDJTO Pp1X5bk66+b5yHW2Ul9DDboe9tp37AoSJf1hEI7eyB1qkKO3bt9nePKOuAe64ft9 jMYEm70IS3tmo3hHyTbLuOpxF3f7ZHmai2gXPdDmIczDqkE1PneX9gJQadQTqvky 4PVHKVUGTBScI0S830ZBbIsvoYimjGCPMuz4UT0vKR3XLay4RjwCYC6waqRuJoBq rfm/vmx6/GNfb/jwZgN3QYPgTptx65eAdEAy2C3Y7RbMrbx9qqvx5TxaS2yVFy6X 6gIrSmFSFE8rplPDActw1V4YMyuwnyVvGe93pYwYfxzM/BxN09V9QBQUhIa7TMiI TwQYEQIADwUCQFSFrAIbDAUJBaOagAAKCRAxn4soi+/RXy2fAJ99u5jBvCIXuEPa rLB9utH3lU/ymgCcD/fpfY9v7wyOrivOy6Wz3ZWjdnQ= =9khA -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/7C810476 2005-12-22 Key fingerprint = AABD 388F A207 58B4 2EE3 5DFD 4FC1 32C3 7C81 0476 uid Babak Farrokhi <[email protected]> uid Babak Farrokhi <[email protected]> sub 2048g/2A5F93C7 2005-12-22
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEOquWMRBADPeAMeFy9OMbD3PxFjNmPIuY9CMb/fP9G3KNugVwLoHj29pXHS QDo9OGHmA6udL6ZjZt/cWsU6CBwrVmr7nnqIXwOFGsvv4sT4cQJd51ypMFcvrYvi UmdfnNZWeggviCMYdZErMqVdH7QKZyZ/7xB1IBV/66Bu768nQlSpTmqTYwCgwpUr 8V37ACzVXUZ/1CPqtadIe50D/1rlR4GTzMnmJGBbqY4c2nNtaUA2HEzI11QsHvFp jTEcHI/RdhLv8dcFFAD0PmLC+5W7OydXvQXBfWzVXmrEPzFprwOc79wfCB+JzOt9 JzyClVDYvhYd0f2kxrXOR3ddLaBCMU9A/NxvDL05TCE8b3rSuV2VRT6E6A45/88t aKKvA/9ewMdS3zicyyK33FTYTecGJc6Kt1ke/spq6jo6k3+L94Z7eZrZrhXGMRYg Ibbm3VuxoPeIqyY8SujHwNNzP7PqGp8MVefjzktldMyvbJex8oIyB0NMrHTJ2JTp ScJAetOE/mXYhMSACgWbebu6uBEigmaz1D4WNU/ITf8xuX784rQjQmFiYWsgRmFy cm9raGkgPGJhYmFrQGZhcnJva2hpLm5ldD6IYAQTEQIAIAUCQ6q5YwIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJEE/BMsN8gQR2iM4AoKXtRmdbGhmrJ3cW6lcd gP4IUfUkAJ9mqLQk3ztstsPzzovhwV4sIH2VgbQlQmFiYWsgRmFycm9raGkgPGZh cnJva2hpQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJFUO2LAhsDBgsJCAcDAgQVAggD BBYCAwECHgECF4AACgkQT8Eyw3yBBHZd/gCgmHXJVgY+AwvJvL2v2qG6+P2EsP4A nimm5LNueFg2PbDsRb+Iz53zw8d6uQINBEOquXEQCADPKrfxmpqJEbVpJV1PfcLJ KpvF/0s1NEhvrXVnm0GhId8R96n22E9oD7QYTw/+TkdCksw0dcAIvFH2y++HNQoE NVgoyVW32Rw076Va8nizA2icB6hEJwKiI400qKjZknj2pnILPHORq+Zl43sHaXnB imchl5U9gZI4EXCRC0u87oLd0IHuFMUGYEfhsxninLpmFNPjS55zEhPDIBTuFFiN NFZ8aLxq6APGd1lbLJhYnQIYZJreaI3lXc0VYqjkaB5WBeYXKNNF3y39yNY3SXFt /dwIP60IoaIAjARFLqvUNYOsHpjsVAItxxMdTpAlX28VYWsr3quGL97Xhd4NfDvb AAMFB/9ep1jcpFocEOurMYZkIrPE0CdgdeWzlhHhW2F38cZTj46WxoAY21QOfjRx tCcGDrKNNwoHO3TIsuPrEI1OtJ4y8b7Pj2zuv/kUAEMUjl5dutg2kIDz5cs5zxI6 4HhUx17vQGTOK3l1I2JxoNrMKPcDKxegHqYqpzb6vEr3gsKT7GSeMBREq0rvfZfQ ZmZTLfdy0AiQ6KsVt1YV9wUE7Kq5OmhjVZNovhZtxO/tzppQLNX/62wdf1OmFZIn xWrYFHeH/N+QGBmMRf0NMb0oOn4nEMem9QhSRcW9UcyU1K7Usa3m3WG7qrmcq+ri 9RVM7/8wJCKNJD1ej35rMQYVrolIiEkEGBECAAkFAkOquXECGwwACgkQT8Eyw3yB BHZy+ACgqz3KenkNoTQKFv4nrGUHnAqMm5sAn2Z+BhMOzEhuimOTVLXVzKuipov0 =vL0B -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/FE817A50 2000-12-20 Chris D. Faulhaber <[email protected]> Key fingerprint = A47D A838 9216 F921 A456 54FF 39B6 86E0 FE81 7A50 uid Chris D. Faulhaber <[email protected]> sub 2048g/93452698 2000-12-20
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDpBP9wRBACTXnvtFjxGYNH2xj0oZ09ggebJAzNOz6FiQKBkYo76EtyhFU2U s8F6HJmhAVJVEodJiA2V+mbVVI9wG1r+yFxgpC4JCdtozSt2cgKHlfFcrAUn/bVX p3ZiVio4/tWVS4kcOZcN/gfXxykG3Z6IgeMct4P/v+Yby5FKrjFcHUXrYwCgpTuq u89HjAet3e4MOkJ43QDOqf0D/jQTRdivb0N302svCzG1ccc1y7YhiLN7GEY6VttK Dkb9psNQFlgd+GNOpQqXXvh0EhzC0sA+lNo6F6rWZsrtQD/i2vAubzmtvgsF+UIp 268IbgRs1RHW5ZOqzkvDjMN+8/Kk/v4qQ+62WAuP2/iZn6bAjAfBPd5SGa97SZ3E d0sjA/9o+3jTgxhNz56fxQb/e2B4lqPxuIsorxB28hmXliOVRQBHwx4e8XNvN2Xz WklapX3AWKP/D1ZyzxNEaBezu4NBFpl9HqudFDyFeRzyrhGSD/f3XtlDTHD5hv31 +LSprexLW8nxbsKKjX94LnyYItRGcf7gU5z1V73amT0vedaXj7QjQ2hyaXMgRC4g RmF1bGhhYmVyIDxqZWRnYXJAZnhwLm9yZz6IVwQTEQIAFwUCOkE/3AULBwoDBAMV AwIDFgIBAheAAAoJEDm2huD+gXpQaPQAnR/EryK6lqRdUFT3CQkf9a7mds4SAJ9b Uh/4pgPEMHVqh/mYuabRi+D0vYhGBBARAgAGBQI6Zft3AAoJENwfuC7pkT1X3MwA oPeTrHw/8GFopppT/LtI41zM4NZ8AKCEPsKoGwmtolGYwCTGc4sZje1lTIhGBBAR AgAGBQI6Z05CAAoJENh2/K3Z1dz40l4AoLHYYCgZoCWLtS4ybw7MZK5ZbIkXAJoC C5q0lY5Kg+UReRewOH1vzz/wyYhGBBARAgAGBQI6gqxpAAoJEJ0r034T/C2b5uYA oK8oK8CubWexgX1rJoKRINWBjEtoAJoCOat7l1Q6xjBN1E8fqn7f09Vfo7QnQ2hy aXMgRC4gRmF1bGhhYmVyIDxqZWRnYXJARnJlZUJTRC5vcmc+iFcEExECABcFAjpB aRwFCwcKAwQDFQMCAxYCAQIXgAAKCRA5tobg/oF6UJDOAJwKrq6xPbruIKSiL3O0 0Npnq1h4yACfXIkxgKsR5KxKk6kr58ZxZd2Dsn6IRgQQEQIABgUCOmdOSQAKCRDY dvyt2dXc+AxbAKCzZ1Rvjn6P2kLaCo7/2A6LOetihQCfdL8Wo82cTXSpsGTJg4LU FjlE9XGIRgQQEQIABgUCOoKsdgAKCRCdK9N+E/wtm+CiAKCCd05PPCM3ffd85LKm +cRR3PTybgCgu5y+kYYTJB3hBchxggLCrJ166wm5Ag0EOkFAfBAIANHkcMb9WQWx 1A390MV8UFdR8eqiYZfuFHaNwgT3Ou+0QcawP6uC9gbeqEpNnlHrE3giJvP7BrNM zut7Y2Ca5FJ1oy0m48OwmZY5AP2lN1CsIoU1bOCQ48R3KCB6Wb2dE442MEdMen73 +HzNnLiFGwifqn5yAHVIzfKilhpRUFr5lbZJkBk5NIc+Ny+ZK1JHXuJZ3jdKFBu/ Gusip9Dpd+UANyF8Tq+S3YfP8lFu7zA1JAHu5LnDOo/K1gZ6EZJxc5hYUu98Y6Xv 6EJLEwjKHNZLI8skX2uXR/0zQsZNz5FbSVGdQfYJlq9q3eDZBBoibc4Pf8LPOXLM HhKyj39FE4sAAwUIALTlJVYI4353pzebM8D9mtqXrXY1qusNqm63pWHosPuG75XT 2hOmjuFFyoC7TEsMe57BUag3HiWyNR/CrVw9AppqZ1s4O/zAo4HlkJbZ9rhv9IO9 FiTR5FWtNCArAQJWpflRMYuVthZVVTGEM+zx2BTNhBdU4LEtRMz28E/r+tn72sMc ypZv6/FSs5Rn0/rO4zYiIisk3ZLYCbJMHQIxjAIdwH2XJBYbbuyN9GbCLVOcIlkt sbdwCNIQXY7rBX7g4Br16NCo0g35p/92s9QFFN6GJIzdOpbq7JVHnkZhMLfJgGhm JIS85paJGy0bbb4qPnE+Tmi3apYe3tZ8FjkKRfKIRgQYEQIABgUCOkFAfAAKCRA5 tobg/oF6UKe8AJ9QmSqCD+d8ex1kMxJ0SZZqIcSO+gCfUUTrdZCUu9yC3KJIjvzH 6r7mPk8= =R6MH -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/41C13DE3 2000-01-11 Brian Fundakowski Feldman <[email protected]> Key fingerprint = 6A32 733A 1BF6 E07B 5B8D AE14 CC9D DCA2 41C1 3DE3 sub 1024g/A98B9FCC 2000-01-11 [expires: 2001-01-10] pub 1024D/773905D6 2000-09-02 Brian Fundakowski Feldman <[email protected]> Key fingerprint = FE23 7481 91EA 5E58 45EA 6A01 B552 B043 7739 05D6 sub 2048g/D2009B98 2000-09-02
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDh63HoRBADnIWpOjAts71A8JG07tKjUYV72Ky0nWN9HAtS8FJTGeT1eXwGI Wxgl0mTrmb+fUWuEt1xyB+0h9uzwbWgrojBiVEyPbfdORFvOlWQ5VXub41vxz0Es AvQt/HptyH5UKPHCtK/5WbgAHPZldlp5rBPA/E9OnsfgVeSf23eyqkup8wCgi7g5 nKKJ1LaE0Y1eVhGLaOSYP+MD/0j69SjwjUpIAe47u1SJLsx/K+vP6Mx7oqw2gD1v Ap6sJnpNVx9vpr+DozYGrGFb+LnnML2/JqU2OQswCBRWmqkATJDrrdg+VyXIdyXV slk/6paQ/qPjcnyLFXWgQuyoL1me+4e36LFCxFTRVcfvO6kidOXGmDQ2ue/Khjef XLRWBADK40RjC89IrGX4PuapS9fOSj++GfWHZsdxuxSYT205sZhMOiTECR+DPZ5p 06si2rPf6GbS/3zPEYd8J5wzHTS5kk3venhpxjze1ltloDQm6hD7/yJdK9poBa8P kRuEYqM8RNWpwNKu1x8SsqyyYy/JzceAAXs1zAs3g7CoLHGag7QtQnJpYW4gRnVu ZGFrb3dza2kgRmVsZG1hbiA8Z3JlZW5ARnJlZUJTRC5vcmc+iFwEExECABwFAjh6 3HoFCQHhM4AECwoEAwMVAwIDFgIBAheAAAoJEMyd3KJBwT3j9EAAn0c1DQKEVawy t2zfgVxyIYsw+ca+AJ9CrtFiZ3yQIp0Y2alhcRBhM+13I7kBDQQ4etyeEAQAhBiJ oc5q7eotOiSkna9BDGxlxg8fM2+wb/MBTrOUZ+BkbsVYRNBQnzzYtczS7uwXt4Fc Oy0iBD+uOEhVDZgXNQLFg6HxyN+xikgWiPx0vKjQVIfKB1R1Uqh2VIslGc90TS8f WTo+7gkcwR5Kjq6m8rs8qeFa0GqrtTP+bRBoj9sAAwUD/AvVkkCNJK7pRWDWVSJk NPmvEJ/8i+YahBLcUkg+4H8nSh+fNdhI2ED6CN5ZU7yYiTN5iAc9HJLDLFzHRIDX KyGS3JqzwrT6+HKTaS2fVKFVeGVgzlTvczWizabEZAOMQOrV3F46ei4STqBjM09/ nNhGlL2ce641KZ6zgdtCG6PaiEwEGBECAAwFAjh63J4FCQHhM4AACgkQzJ3cokHB PeNuVgCfdFUKo5EQLwqnGxcw5zAzqDnFVkcAn0o58BEAPRr2RoAHHWWJn5JoyJD1 mQGiBDmwog8RBAC+zE0IpGNV1naZh9os6S//ct1MfEMBoHH2TQhajIfLVraWA1I9 AbOTuYYsPgxqK44ZnPUnNLmgIRBeVJXklXsdvjtMrh7QMj7evAGneT4vVdVj/9aY 7mEBuQephgvE4bUM7RPvOc/paiY08+HANljrvxcmMhygDTP5SEp/QJn7zwCghB66 YVHI5u4xBAcHiHbyJWShmekEAIUWEIL4I33C9/yuenYogKLLS2/wmMYMCM5uMTkF jls9KtfW/TQz8M8ZU6xdVBQjvDpw9G96l78amjiMN9Gm32C8m3HJaN0V+4SGJjiQ fL07gu60LG0phnk1CtWLVQnH0LuIyB8jJeoaeYmS2Xv0rLLeMQ/hgUcQB8xu61Z4 n1shBACf1w7B9ivEhBGWBsjuX2gTfW2eS4Mprs7FD1/8f/wbdvhitMdjZOFjOIO8 yi/2W6B6T3suTcUgdC2qFmXkiWUun5kpGp/KRvrYm2eKpfveOL0HgD7juEZtBJcT zV4oMel8TlZidIjIgLUeTbGfxbYPm0gONEGZHsymlZg9/7sDS7QtQnJpYW4gRnVu ZGFrb3dza2kgRmVsZG1hbiA8Z3JlZW5ARnJlZUJTRC5vcmc+iFYEExECABYFAjmw og8ECwoEAwMVAwIDFgIBAheAAAoJELVSsEN3OQXWVdUAnR13DerFrFdS3xufFox/ m9T+VKs6AJ0Y7mgJalqPTTalJB3fbWUeIsZBsLkCDQQ5sKJfEAgA5LI3C4rGWWbG cGZMLDhuBhjcoSFeWnrVVVZAPEm92+LcrfoT1Slp/2+KcKTJN/uQA0EpNmgUFBYr 3vSoVoVm10xBxBIX0zP7uPQNYKoJX3gLBiRZ3xOo4A6VqEpRbo5yjj3rshN4IO9B T9zqx0ZoHSSsCds0Ax/m+0eSTghl+Shle1tbJstgcoxf6peKa6XcOAJWtQ+r6hZB Z1tpjmIrfaeG/26da858C4TcogNhi1cpbyfQTZA7070JBnpRjhcQpELT4hRsJV2G BX0dZn2hJOb5J5zl2M0N0Yx2BHM6mVT+oUc4EvfRn6fuhVRwIuckxwXaA31vWNPh v+S9VD5BqwADBQgAjOXR9HNAh/teG0p4ynOlWx5G+tBWSfqWAKOSpi9SKb2Zipjg bVNjmO4zNYhdAK6YbyQgrDrwUVPWoc8OieUACujklkY11eg8QFGr+tJow7iCMOPL ES5vW1sBUl7dN+4tf5QTg5q9EGHL2rTndEVeutFbcKPR8YQXdu/U5hdO9zha5fd0 RWjG7zLTaukO4mT2bTuojgCrnsvZ4D0XRW+SUcfXZrbKcsoFiU3q+EvlOuWg0W5b FcFfAXSAzC2CpZlQV3hhSDkgeM3cbnb0hv7feSIizFpqFbNyOgarqymZIU07HcX5 c44etbO++GQ/tMI7oCPUb9a5jIt/YqPvIvmPDohGBBgRAgAGBQI5sKJfAAoJELVS sEN3OQXWr4MAnjpZdSq11IEN34VjwhD+eBMcxjqaAJ4yDvFd8u5ehurCY+KjWSXo uPPUsA== =oR1w -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/75A63712 2006-02-23 [expires: 2007-02-23] Key fingerprint = 42F2 2F74 8EF9 5296 898F C981 E9CF 463B 75A6 3712 uid Mario Sergio Fujikawa Ferreira (lioux) <[email protected]> uid Mario Sergio Fujikawa Ferreira <[email protected]> sub 4096g/BB7D80F2 2006-02-23 [expires: 2007-02-23]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEP9+FkRBACKcQPLBb7vcUuQTM+Zqfwsd44vzULREV7qHVvTqJWDsFyQd4hz /rX86mmHiS/fOh68SonP6QdXO2i+d+LshgLTVPBlW92TXsFYP09FUWWx2dm0P249 P7xoIcQ7slhHnSVuPDObzm5T7yDXL02OeO6qonN62IjjxB8xzFo+W6SsAwCg2BtA gvPq1hyeXVXlbItG/9Hbul8D/0yjvmED7dj7eQpm6LvjswjkMoRdg6cgR+/N9LdP GIdjGHkfFnW8hRg7QAPzmstkhtY1I3zEjVVCcYjJrIibaqBAUAx0v5HszLKKRnrI ZZm4IXKFpkVC2sV475FpFTPXIiHmyzq1lbpgAQXX71yFNJ7hsEuYx1z2Ihblz/B+ KHJ8A/9UNVEPc4s2YgjntQSDWRY+Vcr6M4bN/+ogCJ7XYN5lcHjB+gUD8kAWupEH 1hDV3WFahpG1i0MusOZM+dggTXSshd76z0JlOJjbywEv2Z2nb+1b1GU4EY+2RlTi nP9rO7EqtPhHjNkpXfsSHFOC3qfcsDhphXOJeOFwwhMhkxmkHbQxTWFyaW8gU2Vy Z2lvIEZ1amlrYXdhIEZlcnJlaXJhIDxsaW91eEB1b2wuY29tLmJyPohmBBMRAgAm BQJD/fhZAhsDBQkB4TOABgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQ6c9GO3Wm NxJtqwCfZrWhCzRFNX2TkVEW1zMS0mw5aLwAnRUNKvayClkvdqHMLksYTFtUu4RT tDpNYXJpbyBTZXJnaW8gRnVqaWthd2EgRmVycmVpcmEgKGxpb3V4KSA8bGlvdXhA RnJlZUJTRC5vcmc+iGYEExECACYFAkP9+lYCGwMFCQHhM4AGCwkIBwMCBBUCCAME FgIDAQIeAQIXgAAKCRDpz0Y7daY3EiNhAKCLZTyIxlE0tU91Cy6YxRKCu1Kv5ACg rbLcuizHmkAx/du+XaG+aveC4Ui5BA0EQ/35pBAQAL9uIr9y2BwxMeHbj6LLmoPC DmQnzXWWWIZPtEyWlUv6ANLvtNX8M0ZWzfy4Z4EXof6/m3Z8KsAEZf22AObR+CA1 mgRRmDxVfWDU3fYYIVwMTQ/IqjWz5TPfldXySqxtW/Zm16ODYv3c+tnu/KX/M/WQ 1l9pLfIB9G3NlnHwHTWBdIQhomXLzurW0yuq4LXobA/nQmOWmrQwjXNk1zzO+p5t v18thaXoF9pGObS86oCCfwaUMg4RD6PtizVUSA+frFmcR0/kpNGAWw4gIqHY++9c Ri+Tjvbii0ZhBZNb3l2spqhg7zMAqzQ/wR0kJt09FegN6vClMLDBJW5Rveb7u4XT e01JY5E9h2Nt/RaJQ2RgaoD0bNLx32Zda0GOzidFAK+0QzOGvfMKimaye3YkWRXg GFZFHH4k0FIcRd461ta4aN0VMKbpRbYxZP8oxmN3VrJdrf91Qqton2Ljrqk4ndQA xb6zbtJeobx6MiYlDf4GB4Wgm4g2L/BYH+ObV5QqnTnwMIjP6Y3BvP941d7eX6VM cpJq3ueDK+FHbF+KEozHycvlZrj+el5SuWXtNdOVma/DUQjHJ1DHMmciVqZwArnm Ygg7f0G7dMxBi4n4OdHHSkJXwth4ojbZf+zDDQnHmt7J04/EArgEvBKxOGEh8EcR evS6bR8NvH7lfXjl+7AbAAMFD/9DHsJNi6bx5sciwo7xvwx9NZY2MTHBxaWV3iWj 9OIoiklZt8Ca8a4ukDc5d2t/DrGr/rtKsUyQ7utEhfdKr17TYZH9mW9ZzOKp5sjO aWOcmFCGMjemejPedAlH8sBD4I4zg+Ph/tMRgAjyw/ZkhXlUbVJ4ooibU1uix5Wy AcxXSyrCOCLbVfpcCphiXCRlFsVuyiTkjM1D3STr6M6YSq5vTpbWkUvHs9c1pgqh 51SoGR8tcyUM3JUvY5fTos1sRlIS6XexXEvmBe51jcuV+4I9cI2cXWVpWU09zBTE mF0WSgs2pXZftMpbLwaTSjzGA4VNQQ5jocsfWUP58HgBCyO4x8G+N1A9PWYtKUoB WVcjjl2ak8G0mbTGb03QaIDAy2CVkeKYVws6ZTQBZtfKiO8Vz2UQcklRNTPTxYHo 69kIY47+6WW44huXc81ACGx2GXXDZtqxasysRtzAzl6U/FKy2lHE7Buyjh7VKYI1 7IncPhl/XyEBWTESAppWvd3WiCdT0zq6wpwxrdpLprWblqxLRttK2Emwe2KhvDk4 3jdj/KOlMi2OUa600mbRfjX78MbNHisLUEG1ceMXaQY3quaerb3Q1N8Rptn8sT1U RMqbVlP4fxFwJg9F8nyLYzBcVm1H9WGFoojCqQ3htuvI8kca6I/UQxHG7V9Meqbm uFqP7YhPBBgRAgAPBQJD/fmkAhsMBQkB4TOAAAoJEOnPRjt1pjcSt1UAn19TWL7b atBvRWIroNaSp6+y2jWHAJwMSHg8w1dVEw3XxYR1fhEhE1hBWA== =lXvC -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/A783DAA2 2012-11-22 [expires: 2016-11-22] Key fingerprint = 773F E069 BE98 CE96 4AC6 B8AB 1A1B 255E A783 DAA2 uid Matthew D Fleming <[email protected]> uid Matthew D Fleming <[email protected]> sub 2048R/4015B7AA 2012-11-22 [expires: 2016-11-22]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFCuekUBCACkHoIh2nUlNPfiYBtDsfHcNhFhEsTdDfkNehRjZ3s+1awLJlqJ tHCVH/EW9qfwe8zw402ApJDrY335Z2kNWwKAYRzi83v/LhWKRlg6ppZwPFOEHuy1 COlNTM/zDWSt5Iz/e3FSZfZojo5qzd27Urnox9waDv19XL/oxw0un99rCveCpkq5 J9CjfDJWGgzQgN557jZb7AICHBU7YtUmieyelutaWjVmPNmrg6vPoC98WvRYCzL4 +tKMssvEC17Eh3ON8gFqwooX7x7o3v3DlIk9twZ2EUVSjsDR3h/10G0+mql9Wev+ 2W8B9Hug2PYJo0DQFySIk9kqsF4UTWzrfwY3ABEBAAG0JE1hdHRoZXcgRCBGbGVt aW5nIDxtZGYzNTZAZ21haWwuY29tPokBQgQTAQIALAIbLwUJB4YfgAcLCQgHAwIB BhUIAgkKCwQWAgMBAh4BAheABQJQrnpyAhkBAAoJEBobJV6ng9qiURIH/jABasim 3nP4RejGOOjO0o5WJIAtVF2eIXxHqBbHN5fd0550VIc5EaN85zoUsFtPxDdA1HJU oJFY2TjF4dWA10JoAAkRaxQVl4XXd4BjHRNuObjdda8t631k68fjO1SPWLutOC2T kQx2CjxNx5FHosd5J9YkMDfEPSFOqEO8P5sc6MFmtB29jHm1XLQvqdC0DuDTBQe8 feLMA3AkCZj3NhzrslMBij/nSUreOBxv824E9CnBvCwkToYXNkvhIRw6cyJ8fCrt jKTSMYnLfGv+IJ5+U6Oe5+IQGjNA3iRghxxmQwta3IKu+5QsQDeqlrqOTxMdyZW5 qD2zWa8sUt5TUby0I01hdHRoZXcgRCBGbGVtaW5nIDxtZGZARnJlZUJTRC5vcmc+ iQE/BBMBAgApBQJQrnqIAhsvBQkHhh+ABwsJCAcDAgEGFQgCCQoLBBYCAwECHgEC F4AACgkQGhslXqeD2qLP2AgAnUy3PJwZHgDdr5oEqHxVCESOKsUpM3LYvp4YXrJL rAcVPZbdWN0ZfkytxZNDQXugiIEMbGgsuOw59f80L+GBHP1sHiTR9J2oEUtg/bW8 yyqjFSE3fc7maKf/0pFskC+GGyFjRxpMj13oCdMyb1/mn5NjlCJjtMb+f7fy+8Sm m5rcBxTWiQDM3FJrNH0WmP9EVYtsBbBkSqPRRsVsbjFTSBzdecTnzJ+k64NDzmw+ Hss1DeJtcVncykCbQMEvnwmeRvaiCU1kPqo7SAeQZxgbIBc0DZEKYXoF+QEmxGSR ojSV6wEIt4YS8Jf1ERvF7uiytXMXA7tfLGpeIyTEpgWrWrkBDQRQrnpFAQgAm/oq amIJqQdoQdKiy1+fsOvyULpkDTwzi2nx/A/Jmgh2UZp5ezuGDILfLklM3GbNUACW KLDti59xu74x3km7g2MrVHzWzl2Xc0NZDk3sAE2xohrMq342w5ckUXLCuMQ38zU0 BqQ1jJ6yVeu1zQg46q2NbeW4TA96a3Ac1arVphN9VjrXFCUVeGQLPFQpHklRIZPC mDzGEibZvpd0WpJix6E+MOhmDBaoWk0Fu7i6sSD3z1CP++kv9UYItrgSJCPM1Q1I brA1AN3LaZBlNoxBIPtXmM1lSQFuimlvM5ECmJcgbXYiJGP2Sd1AWFQDxkqmRhN7 4MBnZIE2nzIQ1nAa2wARAQABiQJEBBgBAgAPBQJQrnpFAhsuBQkHhh+AASkJEBob JV6ng9qiwF0gBBkBAgAGBQJQrnpFAAoJEI7H4BFAFbeqDBwH/R9b90wBmSTIBKrQ M5k1SU4AcsPzpBkwV7PmXNgsolzlP6yDPeovDx5sHBKdZwNd/Ac1mCCjAgnbFFy4 b0s7syUtpF7Bql25kCzgqUFHfrdYqvC99J32a1mJze3U3bNydCvvF3wKVH9RiSb8 Gu7dtdOVV9rXbloF/sDzOnFsOuZMjDP9wovTZLLP0ohKDDG0sb+ReBa3Om+p2xUq NiaZL2VQoOfT4ptjhNJEiokfCYUYh8bjG9stAbuXLuDaCWg5C+7uyosIQtuojzbj 9Ss1NKe+2SPSq+4a4wc7I/Xa5ytOYyJANYaAyPpnFoIc18VY1hi8eWHnbsXNv4JT +VZOWSOeWAgAjXryQBZ5L3zamdC/YvVHRLyeQ0ZoHihRbOdNygFTIr7NnR3NUrCT gKB/I5kzznroNc8NsR3Vhsfs4XVbb5EIYb3gi3b/0c0j5JzcD9/c/SHuf4xtgu5i nx5UhQYTceNmDnjact7UUi+1CdqUN4Pyt/Njwim/pW/ZfkvSM2fWkTWshngYVnXu Ph4pEb/NkOXG3csWCM0SfjJz1xCQPkTBRoz0d6f2pUmhPHwiGpSbMMlcrO5Pfk1J dKK6o7rJO/Ts16Yq8Fsh/WA3kJpSKJ2CrzIhKWKcBOoQh0L0qND+ZX3dNgb9OURU 156vpSWN4W+DpFUoSSRJYJNqlyOf13a1rQ== =BME2 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/84C71B6E 2002-05-03 Tony Finch <[email protected]> Key fingerprint = 199C F25B 2679 6D04 63C5 2159 FFC0 F14C 84C7 1B6E uid Tony Finch <[email protected]> uid Tony Finch <[email protected]> uid Tony Finch <[email protected]> sub 2048g/FD101E8B 2002-05-03
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.7 (FreeBSD) mQGiBDzS0/URBACREmlUnPeSzfnC0m2oQV4eSzgYjskiLfwZ++Ql3zErPw0AphH7 m95dZwAscTm3CQRHDDd/RYxkJMAYA+jmw8cVX1rXtQ2URRmzy2/I+qBU1NCPrqBj KRqrav9uhLCLGvEwdqWg2dqn8TMwNdlETbH+R0QQ/1lK8XtW0NiHC8I+NwCgj/8A v8ifdpVSnFp1QesTAVwdTbMD/icRYOZ5I94DSRk5GGnmD+lyhfj+ejYbuVEgg2ig V9HuXJMnBKTnuwriuskTreeNQBvBCTltHrRe1LujAtlsbixooTgUU5jkzY+J/PeN fLd1J9uoqTGQ7GjT4SMfKuetSRBhcRZYvm9FM+54vsumKcXGK+qBfPVBHo1bk8go JxgBA/9tnrAoLIUPvs4d4ce9h5BGA2yG9Synz3w1l8Zr+4coomUjbJFV86ZWKPM6 nyb2RhDb20ESkZnCoDxZY+p5t9c3aiQJKQQV8Gj0tj3c7/OKoyMePgabH9752Q6u piZ5Ml3mfse/Kja4THRoPEjkQzAn77jxfvesKiEh+fu6gsJ3cLQdVG9ueSBGaW5j aCA8ZmFuZkBGcmVlQlNELm9yZz6IVwQTEQIAFwUCPNLYkwULBwoDBAMVAwIDFgIB AheAAAoJEP/A8UyExxtu8J8Anixqe2bmDbJpcPb0IoT84nnhJ3kvAJ9sOLAQjWYv K7SdJyMF10YX0CIfHohGBBARAgAGBQI9c+arAAoJECm+XSJo/VSfOQ0An0ygDe/V bqSTjYJwlIE8YYpty4jLAJ47UkBPjTiVre6ew5VF19jMKvdsE4hGBBMRAgAGBQI9 c+V+AAoJEPbdMwIQ+kzRlegAoISM0MmY8lkBCBTsow3Joc7tLgn9AJ0QrUzWpq7N 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<[email protected]>
pub 1024D/4F8E74E8 2004-12-25 Marc Fonvieille <[email protected]> Key fingerprint = 55D3 4883 4A04 828A A139 A5CF CD0F 51C0 4F8E 74E8 uid Marc Fonvieille <[email protected]> uid Marc Fonvieille <[email protected]> sub 1024g/37AD4E7D 2004-12-25
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEHNnEURBADK+anixdFH+aSxIGLw1soiwMXSiVPD56dmoA/VAFqrE3XVo/y6 bPqpSNwvvhL8Um2v9G/7EDMorqekYErS3sgUOtrA05NSJlOUJk/97ZFzAlGZ4/u3 CwtpFBdiATaCvAdMocWhxVkyIFvo6AqVNz6RkTldJUuwVzGelXWk9IfI1wCg586A r7CU9HIsVJD7/vIbIIsKDncEAKYh6XKEBHWI1pF3Ony+rPhlXCV9W3yraiBb/YXS XaPr2Wy3XC86ufHZs8ewug40DqcSfRobj7qV5II1CMoVrwhUuJ9Y087ETjt7xC9d xI4jrkVZlaRt0m/LUKLLfz6L9KaLWRkBfFhOjJH6TAv779q0n/KfaiU48Xuue6ff KNDtA/96/oTg9+NWjm47zCdQeyZGzEE27btvzbrLZuG6TcP7gAV0F6udGbImgw1f mKrQZn4ZtVKCKS8IzTn/UM/P26Pn9JOzDKd2voPE9Ee8D0L8ywg3mxmBdm+TY9vs r2OEV89Nc2sJZm5CeiqEvfACI8KwbExqWy5TW7Qz+zLi3zk+ErQjTWFyYyBGb252 aWVpbGxlIDxtYXJjQGJsYWNrZW5kLm9yZz6IXgQTEQIAHgIbAwYLCQgHAwIDFQID AxYCAQIeAQIXgAUCQhzb7QAKCRDND1HAT4506BdRAKCaBqu+lvdAp3fhgIJxL0XY YG6vhgCeIyaLMYFzQfii5s20wePEhG3rfMq0JU1hcmMgRm9udmllaWxsZSA8bWFy Y0BmcmVlYnNkLWZyLm9yZz6IXgQTEQIAHgUCQc2dRAIbAwYLCQgHAwIDFQIDAxYC AQIeAQIXgAAKCRDND1HAT4506PmiAKDanV0mSeUSRJuDmfA13o4ELsQ38gCfaEgn LyzKfRawEhJdqsGPWW/fnte0Jk1hcmMgRm9udmllaWxsZSA8YmxhY2tlbmRARnJl ZUJTRC5vcmc+iGEEExECACECGwMGCwkIBwMCAxUCAwMWAgECHgECF4AFAkIc2/AC GQEACgkQzQ9RwE+OdOisEwCfY8xxYIhN0w9CSUbsN1/EoYp0D+gAoLedf7wiwvmQ O0XpcJaXgtlO4x6fuQENBEHNnEgQBADPHKv6eOKxk2HPrm180rVAM6/d3LQkBEGL Ma4QuSXXbTDXpzfrt6YOLi+ILe/hu5DNnGbQyvkBB1lLdmqW03lat1ape9wytNoA kHOX2C4kom2WA3FvtAoxojmylEn8S0koH7RUuhhTM29rVBap0W+UpwpnxmtbGXEO NciLWy5CzwADBQP8CSp5Hh4+7uXIRpp+RQ8PKJ2vQVnf7c+QTPDN5MLXEv1UK9gK vtb4sms2yr2IuBMP1FSAFN6DpedjoZSKimxqCyMNbyy0io2pMrNDCpqCadKOyLWN gJhJTxE+3kYeZqzZExvf8q+faQqXp91bbS4XZ4JzgAkT3B0mvQ1OHlVlAauISQQY EQIACQUCQc2cSAIbDAAKCRDND1HAT4506PAVAKCWlLnQdfJsRZtt0Q880glcLzc8 SwCg47K+qs1q5klc1cCIaCj+/TtsLCk= =rg/z -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/74B91CFD 2001-01-30 Pete Fritchman <[email protected]> Key fingerprint = 9A9F 8A13 DB0D 7777 8D8E 1CB2 C5C9 A08F 74B9 1CFD uid Pete Fritchman <[email protected]> uid Pete Fritchman <[email protected]> sub 1024g/0C02AF0C 2001-01-30
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDp2C0ERBADDEONsb7B2tbhvATFEmuw64H7A+W9Kk6NMunEF9kp1VguwRP2w pjtAon2QbvM7HABE7t3IHnDhhS61kLpN3Zxdxwt994s+jRMZ1s/p/XIP5/eIx5ds BgKZk45sm2qdg0vRKAPF+On5voQttbBvBdOVMWOmr60Fc3I+BTNuAgaEHwCg++GC 1P4Upv9OHJCQ7JI7gKa3qQcD/3HWzaGMwyuvcuzWFDLpfv2kuYxNutg75+l0K83p hCFxorUVw16+j4r1/464GnTAhvfp16Z7ReODy53NOlG9/fQXAE1nHZp93kFnkgLF uIQZQKTiYsHP5eqt42gOGmX4lBRpJlpTNsdlSr8CC9VUvzqZ+H6wG4epDE2jUnFD +kmRA/oCBoq5k3Hm4gyi3Y1F8cLUGU9YFDzhzTkDQiZc1Wqd/QlnvMW6vci7MRKv eeeZHQOpzOSxzuPo+b/Prn1ssluAi2IIPObxrq5Gcz9lQ7/xqrvQH5EosbpH5zQM 35ku8psPGcRqcRKG7OecAoYpioLLWc5UJ/SoKAoxqzecICf3qLQjUGV0ZSBGcml0 Y2htYW4gPHBldGVmQGRhdGFiaXRzLm5ldD6IVwQTEQIAFwUCPCEaTAULBwoDBAMV AwIDFgIBAheAAAoJEMXJoI90uRz9hSgAn0Yp/3lUexQCv3MEjwm7l7XhZi5IAKC8 Qnw/RCmcFjahkHQTXXZmW+rSwokCFQMFEDrzKkoSaX0gm5SkDQEBszoQAKvEeQYp zt242YB6MVU88HavNYkonemSqA5s1fbg3dwA4TT6TTJ/757W47vbFnzjb/AmGIJb r8moK8rC+6mnSC2IewsaFqkDRFSRp42XLxyVdwdkJKY/L0Of8rOpWlUsW/Zk6dIE XFUs+5bjSEO9DiMQjmd4upPTF6r4o0jddW+wn0thrqNk+3ghd35q4HjtFnYMruMv BKzLUYfyLkYA16w45nOF9Lr1Tz6oNzdVEJXrubpdHsHMs2sFQlrnD9A6EMog/ouD g2N1ASr6UycE9s2nyVXM5W0WVahAhdMosrUCuzDlhGWv6mQqjTNZfl27/+LJd5sM QEv0MQoTf/fzOI7kJdPsNGTibnnTuE99atLXpbNhsKj82BjYgAAeycutTw3Qy6CX B6fpdWa1PE+BNSdOUbiAtxyV4XPcw84C6rvk7mZepYVBYPKUrupPM9OY1d/mCEE4 zDFv6o9UjiZabQmzKq7T8wKZgV+Pl14dpHcR+xd7tZP79duLdyIkxOe6Z2xbnqY5 NlOar2AfMNtes7GIkknx1p+2koRfqh+W1mPH02Vjgi09ru+kY27jzxHmswRlu67q 3r69rGouXBgIJQ1OnyOPXLKY/iglgkRIXGmAoU2R3Ii/X0lsQRYA5XdtiBodezQd gCuJ1XfK6W4xWjZsONGmEhNN9RezUJKoMSeziEYEEBECAAYFAjwhG2AACgkQF47i dPgWcsVClwCcDW2kRANOyFNhbBhDE4OHOPTAau4AnA/8TasNnyJLhAxeYFiQhpuI fiRDiEYEEBECAAYFAjv9fJwACgkQXvSymrg2XlXuQgCeNou9DlCKpHZF7os0/9K3 xV/hva8AnjNqFXvpIZPylro1vJkzgHh3I4SkiEYEEBECAAYFAjxOdVEACgkQ2z94 QKW3O1wm8QCgx5i66wSVMIhs+Yvb0He27mJFW64Amwdkruw5+oN0NUm8HHHCAqFV S4HitCJQZXRlIEZyaXRjaG1hbiA8cGV0ZWZARnJlZUJTRC5vcmc+iFcEExECABcF AjwhGlEFCwcKAwQDFQMCAxYCAQIXgAAKCRDFyaCPdLkc/VorAKD3J94O/gJeEgYW R+adK3SewjnB6QCfQK+70Io6Jlz3GmoS8+/c3o2hSUyIRgQQEQIABgUCPCEbYgAK CRAXjuJ0+BZyxSERAJ4z//S1Bzb2OUl7ozm899AYR8W1LQCbBkDibniWmMf6Gwy7 fL9Flyks7yKIRgQQEQIABgUCO/18pgAKCRBe9LKauDZeVd66AJ44EAAjhGopDGym iCGXJV0EvKo01QCgiGW4Tr5DZG2mY1aqCtBgl9UIz/qIRgQQEQIABgUCPE51VwAK CRDbP3hApbc7XBD4AJ0Q7a37xCQKlc/m1uxQ62JxgvgHWgCfQFAKfveCwE3W/Fpy +glLmP0/ZTe0IlBldGUgRnJpdGNobWFuIDxwZXRlZkBjc2gucml0LmVkdT6IVwQT EQIAFwUCPCEaUQULBwoDBAMVAwIDFgIBAheAAAoJEMXJoI90uRz9gnoAoPosyzKa niM7FvhR4xLDLaazqe/gAJ9eE0hFz6NDr5h9nRZ1qfU8BK6NM4hGBBARAgAGBQI8 IRtjAAoJEBeO4nT4FnLF08EAmwXdi9L+Yq3liDz2FYledwRRqO8ZAJ9hax4xk4ue E2B8IogV9WHnnRSci4hGBBARAgAGBQI7/XymAAoJEF70spq4Nl5V7ucAn2K6WfjX 4vncJacQLGLVuh3tMCAWAJ430sgOCEmwY2bAdNfu/+WYe6YxwIhGBBARAgAGBQI8 TnVXAAoJENs/eECltztcBPoAn3zovCq0kHyFqm1x0QPDtlAkRG4gAJ4gCD4Le8Rq 43M+s91wrrTyNOutobkBDQQ6dgtUEAQA3sN519zCh7owShpNYRObr//qeAZnPcx1 69ZscNuVDy4EoKeyiLletkmnwNes1IDpq1RslCkHa8UOjFy0jby9cjePCJNo0b8Q 5qG/4iJf1020PT8AMxvL/H/SZH27ueF6PxkpSgDSsz/e92c7CeYpTu+n+xBYsLO9 GtNi5asTvKcAAwcEAL+HRDhWp0dDD4AxTa5evEl7GFy22y5sFVDHA9eukt70/d0d nAi5d14uA/LbAIWyLCE6KC23MAJOgrQSc2PbOa2O45rx3dDw5RoqXDqyn9xPM304 hFzXgllOFOTYKMy6G4DBOv5KWKgVOx03XyIPqAVAObw3rHzewU0wXhD5Qk/QiEYE GBECAAYFAjwhGssACgkQxcmgj3S5HP24HgCfdErc/JU9fVJIH/iLTbWo28vu5yMA oIDNzwMAwpXoLZkEkk/dMUDTsFCy =ZbG1 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/CF5840D4 2008-01-07 [expires: 2015-05-05] Key fingerprint = 47F6 BDF1 DF9E 81E2 2C54 8A06 E796 7A5A CF58 40D4 uid Bernhard Fröhlich <[email protected]> uid Bernhard Fröhlich <[email protected]> sub 2048g/4E51CE79 2008-01-07
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEeCHjoRBACSaB/CWwMs6NSHptLM0nqOigdiEMILpAOtekIVkzQ/0zB+G/fw J/vtVPoRZu0NlINwCSfnnOSpx0yZuX7CDJVVcGxWf2wt2Ly+1U/j5CnP1QV6dLhz iCbrvfV0GwXGvmJVhxX5lbVB3adzODgPa5S1v/Cj2Dbmqx6KFyMRsaepUwCg/dSE ZQdHiAOL7zh21WTtNbXvXqMEAIdk1WvclSjR8tv5HRQYOzlXZo2+EIeJklxNuBe9 BuGNax1Su2R+Feq/qH0xSTayZmkKV1U7ECFq6PFYUpbn2aroSMmJTQKifsBk5M+J 8Yrxg/tulUTiwi3FlrKkVyf3JNCmtDZbZGgCHAXUgIJbnHNzW2nRYk3LeeBJ4T74 3VTZA/0Z8Gti+9zYP4RvCnbufsBO8dS7H3qMaaDa+Jnj2KYnLbQXhUH0hSRPePZd ylPSYMYhbvZxLF+kVoxRPKn4o5o524ECkO4tJuQwZV72xCRemyMalhyObfPUv3Pv 2c9DTpeP6fiO+lK4jPSqjFUQ+wdJz/qxXYdvCnfperQftmGvILQmQmVybmhhcmQg RnLDtmhsaWNoIDxkZWNrZUBibHVlbGlmZS5hdD6IZAQTEQIAJAIbAwYLCQgHAwID FQIDAxYCAQIeAQIXgAUCS+MdjgUJDccA1AAKCRDnlnpaz1hA1JVIAKCMAnvJIfw1 +r+G0Ke38mRrnhzJRACgnnSswoyJD0lvmZR8VIGvBOQ72AK0JkJlcm5oYXJkIEZy w7ZobGljaCA8ZGVja2VARnJlZUJTRC5vcmc+iGgEExECACgFAkvjHfsCGwMFCQ3H ANQGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEOeWelrPWEDUO+cAn3ccQBd/ abvhD/0pllCsWvT/ULv8AKDx/E1tUCqUkenPB1JcIv5sQ6e/DLkCDQRHgh5eEAgA mjk/OYgnOp2A6FTh7AlWOVlrpo+DPQ4bxGXUYtudxptm3hUtaV64zWzL1EF5Ky7u YNuJw3CGHX6tDV0KZ6kYGphkcjkv9i/T3U1YaqTklgmbzkSgIcuCzHP+6z91SnjY VL+HG4egz3GPBn+vWORt78JxgLjLlLQoLQhAliQK4v0+J11kXMT5mZc6IUpilJNw qLbsMKPUxYV8bco3NTMfmkcdJah9ymGQOiRHsTt9VCuvXClnpDF7TpxRd/BICfdZ JyNQYTvVV0d/g24zumsyxgcI0qup+NKic/M3G/+4Bo+f57FRRndARktAUqc2NSGK mTlqsOuJZ0RPDmwGTIcPAwADBQf/dZUT6idKhsd0kpaHpX0V/LES8kFdh3mNiU3s IEOeF9jslZEg3Bl2/AmOIVKWheu8396CjqKr+vjmXlEKABj3YF2ARFj9yg/epZdq OGyVjWkw4JhigVmtbc/BhNX1uMy/SlBpZUIyubvtp21f8YOdLQcV2in+x/Vfovhj kp2ms7fX0PnfwSy3Q27B5bvlU/jPxsog8dJ9Mf0tfoEWs0DBrPkDjBbvwu0VM2Qq JOasZHOS2qAAnE77X0dkA1c1eQeXtgoLbqMrWdp6tS532KiTQN85GRMJbECocMUE pfez5pVX7oYxsotEqIfBHqqgx4Zv//oA0fE9dIAc+RawKq64C4hJBBgRAgAJBQJH gh5eAhsMAAoJEOeWelrPWEDUtV4AnA6B3aXqQMK3LGBF5RYuPqIf2BeZAKCo6fV+ qu2NvCjYzT8RrLvqANb1wQ== =ucJ/ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/7F868268 2000-12-07 Bill Fumerola (FreeBSD Developer) <[email protected]> Key fingerprint = 5B2D 908E 4C2B F253 DAEB FC01 8436 B70B 7F86 8268 uid Bill Fumerola (Security Yahoo) <[email protected]> sub 1024g/43980DA9 2000-12-07
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGhBDov9skRBADzrOg1JwL+kHv1dTePFR2lNrErbMe+WVeP1sdGuKcYTP15VQyJ WV/6ZoUGsihAmFGcGyJuhcUJbvlvqRf4ZlwD80a1y33SNxxsqe8n5dm4Wy9FElL5 bjs4L0kGJlSL8KnYYUTQKEDBcTch3+GTjgS4NQBZWy4h0W6EWqgxr7CZYwCgpeB3 tnDcY3ELA5EP6Bx8wZN97zUEAJo972g6HplZyuyjqqTjdztXNgD+DlsyNpNkEfqs AnZcr4aqEeyMNtGl8gPIc9JwPPSlX5OfmjCm3zWtEjwrHway6YPggXqX8efuY3lo LxVfjRt6NLI0TuV0FhojgHuJYB9RsXQFZxbYH8A/j6jQHbiN3wTyYHtaAJJ/iELg 82oWA/dTeR0kjvjgrfB1MiFCH4AL77bZWuxSv1CvV09DlYtSxfLpyBm4OHvDZmOv V6zT9COM2+f2/EMI15cNllYXB3WnwfYit9tZtEFBl1+OshqYBbcNkser1pBd5jP7 fDAkpDYGx5OgpqAS8hz4XLPZdS/HXSegodYKinU0p0Rzza6KtDdCaWxsIEZ1bWVy b2xhIChTZWN1cml0eSBZYWhvbykgPGZ1bWVyb2xhQHlhaG9vLWluYy5jb20+iFcE ExECABcFAjov9skFCwcKAwQDFQMCAxYCAQIXgAAKCRCENrcLf4aCaPIbAJ41RzBA OuxYwZFUSbMbU5PHENe6ngCfcnVzDC5+lkssh628m3GTG0EjINS0NUJpbGwgRnVt ZXJvbGEgKEZyZWVCU0QgRGV2ZWxvcGVyKSA8YmlsbGZARnJlZUJTRC5vcmc+iFcE ExECABcFAjvw0YEFCwcKAwQDFQMCAxYCAQIXgAAKCRCENrcLf4aCaMcVAJ9brBw2 LPC2RcZpsm5S//dETM/qFwCgiuPpVVwBP7ibzn5xQVNAdB12xOa5AQ0EOi/2yxAE AL/FYZQw0b7NrD04j6dxrp7wBjgd19ux4zQocXgXPlzpBZxQ4A4/icGOLnIU+vDu ltbpf7aMTd/mJokJwx9pE82pOgxk6i42c5qKkwkmjhO2/4FFk8HXco2DJ9roRi0n eBJztXskUY4cVavKdXNeJY2JUeBYvmrnREWG1W2/0ZMzAAMFA/4ytkv46phPokQe s7yy67bEeHiydjvf3uM+v1z3xWoLw5ZU+8hLdFkESpZ7u+qA1mj3i7LNBZhfA5Bt Cgl10v9DWX9cda2HlMjyyI9p3dfPlOcAh69PMwexJ1VYPtizK4ZkC8dNk0rTVPOf SYftSsFGdDbUAq3ZokhjLkVRFY1LxYhGBBgRAgAGBQI6L/bLAAoJEIQ2twt/hoJo ewUAnRRikiShfD9wCuyMazVJ9+FZLWiiAJ0YFgos24sNEFq5rA4I8UZU0LZ5Iw== =y5FR -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/A651FE2F 2009-02-16 Key fingerprint = F234 4D58 DEFF 5E3A 4E0F 13BC 74A5 2D27 A651 FE2F uid Andriy Gapon (FreeBSD) <[email protected]> uid Andriy Gapon (FreeBSD) <[email protected]> uid Andriy Gapon (FreeBSD) <[email protected]> sub 4096R/F9A4D312 2009-02-16
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEmZYYwBCADCrWmjbSj/846S7irndSa66XI//DVoOrTu/thqFyluQQmhhRuB +ndX79CWe2IRvr3l4bIaD3Lx2pq6OsUPWOsOAJSt90FGkynqSmO9MbcjD8ZE9Hkb mgqIW2NtEnCiVw20OlI2OfjhyavEcFAHxHsITRFVDlmjxutlyDkPmWXPNjsjfCaI FmzObn+W1adLT3r835x5mst9vBfuRFCTnm/yCHStkPTpW2mZ3njfDWEiQKc0ANaw EOEthnekr0jRvJmnC53JsJlwVH9yv9CY5EM5gVehmKuRok8NcVaPdNA7M9CATpaC eYQ+by4j5RBSMgXlFxhjHxM6VfGNv5vb6KG/ABEBAAG0KEFuZHJpeSBHYXBvbiAo RnJlZUJTRCkgPGF2Z0BmcmVlYnNkLm9yZz6JATYEEwECACACGwMGCwkIBwMCBBUC CAMEFgIDAQIeAQIXgAUCTZIc5wAKCRB0pS0nplH+Lza+B/9yy9a2zLMK9TmzETmI sE+1gPZiV5BjnM5lAFhdeENb23cRhHAKfzZ3k/A/op/Dzode5926x+naJ21fouo6 2eZBckvQ1A3HZSST1aVkgjxGW3l33JkE8hOcT1cjrjTcf2eePsQ88roQaDnyqzB3 rVq2sAvmREyNEMA6NoKImKZSzWEOHg453riYhFYGoxSf9UjpLWpn6slx0E6iNjwO J3yGBTuKufnRvV2PInFvZMWZV3G5NECT5XfHcEOswx4nKUx3dV2NYKkSqJm3rCHL qamRmCfYPIHTfrw46dLRzF018AhG8Rh5rEX1vho/Ooy9ePWLBs+nLXHzu+pLMMiL d5UQiQE2BBMBAgAgBQJJmWGMAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQ dKUtJ6ZR/i/z5ggAqDEr8y18n4KkBz8c9HckXLyNYSQVqcqBggKXPJ0Rvc40eSEX M0hQkh08c2rg0alZPuwomDu7/SiOM+4Aj7ICeIPrfYqLqrYwYFmnuNWWXgHerf7A q9pNP6H5DVS82M6ZNtNloeJ9E/q58E2OVDgGhcVSlhgsY1wfxlqXkbcJwFYCx9e3 SIAzmYtVWkkTNpBMMUIQql5IieGIpjEbIUZ0Zx9+v3yxRmEut3HY+XkfWEPob4MF FhktdqDtwS6Y+O6KSuDFk0B4cTLPdB+E8WGXpgkqbscHLcM3CuDnv6MMEfHsBa+K rzszNTVedZaezkWLVYs9KXIApIZYweohN+Ps2ohGBBARAgAGBQJJmYZWAAoJEHw/ DPwEk8oCXQ4An06+0XBfrYPk5+hn6PC1GRqq/WxyAJ4utLidh5rYkF1WYOL11L93 gt04XbQoQW5kcml5IEdhcG9uIChGcmVlQlNEKSA8YXZnQGljeWIubmV0LnVhPokB NgQTAQIAIAUCSZliXgIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEHSlLSem Uf4vGu8H/RHu6JgpkTreeoxsvY/2aqtukLc+asDRs2l+ie7jBI7K+B4r/EnQxOdJ RO/kstvWD6oXjktlKRheyOdwP6Id8sgPryJIcFJbFDCAt483VwSkOBx5z/ZhOlYF 3OULpDgS0a6dmzmOEQL1rjAOoHG5HOF7E0MSJHM3RtnCqD8TZPt5jShd+nCl3Cx8 B64+eITAQlIWNKt4zCDvXA8gBvkdy4yJ4qfGOWoMRbvFDSetPJ1aeHFW8mh5V0H3 eYqeaG1D0r8bpxXSrvkC7mrLRq7O2ZeLxdor+nJjEJuaFI9EL+7oGj0ruvHr4zG0 ZfxhB3VUsLWR80LHcl8RMDw/VASclCy0KEFuZHJpeSBHYXBvbiAoRnJlZUJTRCkg PGF2Z0BGcmVlQlNELm9yZz6JATsEEwECACUCGwMGCwkIBwMCBhUIAgkKCwQWAgMB Ah4BAheABQJNkhznAhkBAAoJEHSlLSemUf4v3jcH/1/K3ismEtZOFHWXL4lbH5WS /XdfVyFvrZtDwZYtFZJYKv6KVW0uyk1wc9PMR7Zj5c85krTwUxMbYxXWAqxuVJMq 2iqCkny8MSReJcLPYuBzmAaSIGy9MOsh2ZNtcXTB8zHAMH51hYUK+QPpM/HuTrqr 4F+wLxnl0udi4BUbo3pIvxexneGdxxVi2mbTtMzjJGwS4JwnrGdmUJaZDDb8FL/U Ev98KIJK4HqXJPZYEBoSqwCgDaWh032l3JM5yZ+qsT9er+dwOhG+zHNliQ6bIkou 2geD+/6//UmsY0gXsvLJrlhASQoXUZ72Mh6tiQpOvCqm4m25nYyIspnQBK7u9hu5 Ag0ESZlhwAEQANe1Q5ZfTOc+6I7SS7KBrbz+Rdo0iEg6or7rrKUC62Vm8aX97yzB sgXzwQXBjD64DiJ1Lely+RRdE1Rs77/b81WHOYYBExtrcNXmbwxWqSs7Vxf8yBd/ uB9n24sf2KhbVFKOeGXiB+76Ls6QF3cOmQeeyGR+Rk7Trk4O/UxUPnoGFTM7yuFj Znf5R2c2BfprUvZ1OdIax3BxqDAkTF1BvmdAYeTqf+45+2DY1qD5w0o5AcCOovOk 0mj/3qUbFMngtaVgiEnQEUYpH8RKvFecaB13JAOjvcf8HppNtMiY/WC2vKeBI8XT VP4JB8h0agalQUabcXpMdA+J8Q5s0zFAueYfzfDOtjxjgoA3c7GKk8Hkj4rtaa1n bTgIGJ4of+gpuNSA+AmLOPrLAcSmxQWsayfvrMdCWIwjSkbqB4yAiffIdI11buH4 4XmU9VoB/EuyxZ0eWft61kBQIKtMES+YMiEEEHb8R8I/2wgJx35hywHUlOKn163e m8Rcwbm/i9Myx4pc9RVSsz9IBsUebHOi3v0kfVrxLIwpqfUc/Ryla/+BW3W08WeJ 5AW/hv+OU7HHnNTaBeNTX0MRe6BxjbDYT+M0iizIU7itI8Ki/wDYhhbwKq+WLvoz PHoHQv4rRnuwdvW8LQmdrIE21k+5XrphH1jIOMo3GosT2wEopaIbjC9dABEBAAGJ AR8EGAECAAkFAkmZYcACGwwACgkQdKUtJ6ZR/i8Gswf/WvKsYhmIPPzshU9e2LYX CNYSsoaayqcwpH4z2UzFOQ6GdOJqDaPYCvFS+gllkktfKJ+qXjvwMrJOyyONVIr3 4XJTKc+5dX2kKMu/CnSNkBD+nfDotUk9Hd1Z5zGaNrPwy02y9KWqYASKIWNNFItt L0XEnMfW8CLWQrLzmKRlxWZPC1LkTnYVtxH7RrM3VTbBBfyeMypbdj7Wc1/kEu4x qXgTI6FhXkgTR8Ag1LGP4x32rzBSQtuMayhOSUUQZrJpcQYQpSl3j/AGaXuC4sHR pgpomR3B98cCUwcJuQJtCK03W57UmaATzhsOLAzTARzC9+OmDsItyFnveYUKQQEU wg== =/KPo -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/774249DB 2009-01-28 [expires: 2014-01-27] Key fingerprint = C410 3187 5B29 DD02 745F 0890 40C5 BCF7 7742 49DB uid Beat Gaetzi <[email protected]> sub 2048g/173CFFCA 2009-01-28 [expires: 2014-01-27]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEmAbU8RBACOi7LAumjK/zBMpQDMrR55L9xJh1vTYpiKayLth9ZPlsg57pa8 4p93pSTs7XKcHIO8zqr+LpFFxtafUVoFwzDhwwhO8mX97oakPK/LG2ItUYYZ5302 RX0UclTrMNt2UM+0nrTI/uoh/azn5S+gJNYYTEJy96QzOtY0eGj/dDvOWwCgg3hb fN0crXO6FKY+fshrgQUdKX8D/1PWjcXge7sM3tlR9z0ETZe35qEljmTXpT4sPky6 KmUF4ymBqhWCTn10WQjuOjhEXhF3rHQ/omgOr/dBQFZefBtcYKHUBq3lvmd0cuFB xVJRQErw5U8r343EeaZOFY+ale9iNTfwkl8AyrkaazUH/j3qu4ZnGdf+Wum1P/SF 8ijyA/9XcujJJuXMT717d5yY1Vx1Dn+aYLV4y3OiniJBQFP9CU2lX+Iw1sfuTGml zx8+RPTlL+S3+nz2XkiYwHVi6wlthhGIOgE5DfG1r9FG5PZJtBr3pQau9BilT1TU 3rXZp2z/tkNEQTagSB4ObCAQ5bTOuxli41TPFuHxmn4Q1YrmkLQeQmVhdCBHYWV0 emkgPGJlYXRARnJlZUJTRC5vcmc+iGYEExECACYFAkmAbU8CGyMFCQlmAYAGCwkI BwMCBBUCCAMEFgIDAQIeAQIXgAAKCRBAxbz3d0JJ20jPAJwOdzYWw9hZSEFtUf40 lGSurerRAwCfWN8iMDBntKPMBt3j5QQWWSkPxx25Ag0ESYBtTxAIAK2WncBXO3CK VTcGY5jvbqKWsJ+JUJqZylaV3FW6YzAMKKw380m2khT823qgC5XBja+nm0IQn2ec 34D3XKl8gjf4WWJog6y/DAnxvwdtsS+Wwq0/ownCF1pvFiIt1tAw54i5fmqpwZj1 UPQE2IRc54y9yFdGNSuV0He9ZdJGxXKx2GW71rHlgWCfxXmD+GtwzFs76jn04bwk lj3YM/AVr+6C3OGrUv0lIzD26kPxpbZHPSx2a6imBk5HQKVsuYqqeI5ZMOnkbwPn GuEu7tVn0Y0lwVyBqYf1qe4u2e/38Kg7e/X7Vk/OTSh0FMJ5ZsakKUjedvJ5DA91 gUJBmGkopmMAAwUH/jQX8T1IlDgmZN2T8FUc3hnQjcYdOPRJv2Qx2DeXK4OI4DCX KWxVGXeGVd+EpKgYCSmBYx5UA6MKN17nmoQei2MuVigxE07cCx6BjASTmHxex3r9 EGl8luGmEkzhTajYfu+13dvMMQVYuyQTwB6dMioaw7j6lE5GBG06NvRfzik3mI5n ms487lKYcqAJ+iFk1a8Lbtof3xoHi9gYl3pWQ/rXirY8sp02e2FgC6iFvE/4+hD+ DCdkkCZOJMIl23JVm4VLWC8Ak1Z5PnOXPzXwS1hEX1KjRyrW/Z1EwNcCK8zSNQH+ bknf8dxan+46/iwig5ejA9N0lyy6gooFXeiYCQqITwQYEQIADwUCSYBtTwIbDAUJ CWYBgAAKCRBAxbz3d0JJ28NNAJ9II48hjLq4PRAYpsDHXGH+2wSr1wCdF1Kq1fEU WlCtH7Ew40yBxy/bVJ0= =h59X -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/DA913352 2007-08-30 [expires: 2008-08-29] Key fingerprint = 7372 3F15 F839 AFF5 4052 CAC7 1ADA C204 DA91 3352 uid Daniel Gerzo <[email protected]> uid Daniel Gerzo <[email protected]> uid Daniel Gerzo (The FreeBSD Project) <[email protected]> uid Daniel Gerzo (Micronet, a.s.) <[email protected]> sub 2048g/C5D57BDC 2007-08-30 [expires: 2008-08-29]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEbXBHMRBACh5wwMt0bmOk2lR4xDsjHRiJI8lIOUzLDmSW/1DJHsKQ+ipDBw lMg9cIx6Yp0JS6GQxhd14pFkJ0VKVVt9oVcXWc0OYBcnrPtVcRFietE7wTG6fcrM Iw+ZQLuIn/UkFUhwN7254W2k+krFKjq9EDGExL0s3P8FwWkGuBKAM3HUpwCgvuW8 jn5wGoIU1pLDmIYzKCxXDJsD+wfuIQIUMW5GEfFwkEl1i8C64fkCjVXv5y23J5uE PfBHEJK8dFv55re6fnZKqAJMnARHAFY0Z2IH/538wZc787P7PULYxsGrB4DQgnlL af8AWgpcGFm6mz6QA7mLj9h8zv/PwZmcrfawV8YDJNiow4CsSGB5A1UUZUU6lSsk IP0jA/4wjVIOamzJZUJyVPIM1WqMUag2VBieUFmgf6M0sn8wlyR7feAUJbnmkeAH j24T6DPd+A3HgKKMZrfRqGc253VsyxbtX/M6F+85mmsecV0vmRl0oVJgIg7Aq+bB 0TMBtANZR50ouQqWs1uLku0F5VhODoVUDw97LZPv5ei7P/p+a7QeRGFuaWVsIEdl cnpvIDxkYW5nZXJAcnVsZXouc2s+iGYEExECACYFAkbXBHMCGwMFCQHhM4AGCwkI BwMCBBUCCAMEFgIDAQIeAQIXgAAKCRAa2sIE2pEzUlHJAKC+SEfHXVuLZ+lghF3I MU+e1em9cQCdHcVupnW+57s9mcD5NZuzDASBHcG0N0RhbmllbCBHZXJ6byAoVGhl IEZyZWVCU0QgUHJvamVjdCkgPGRhbmdlckBGcmVlQlNELm9yZz6IZgQTEQIAJgUC RtcIXAIbAwUJAeEzgAYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEBrawgTakTNS fwEAn16FpSi/Lctq/aV5Mh1XpFD0ses5AJ4z4w938apaw0vzw9RiqDEBvbHqBLQx RGFuaWVsIEdlcnpvIChNaWNyb25ldCwgYS5zLikgPGdlcnpvQG1pY3JvbmV0LnNr PohmBBMRAgAmBQJG1wiAAhsDBQkB4TOABgsJCAcDAgQVAggDBBYCAwECHgECF4AA CgkQGtrCBNqRM1LpSACgh1YZQWrHaL4asAutBLgbuR5q0CsAmwbzvWAC7MZvRvKF oE3NWnDztIwutB1EYW5pZWwgR2Vyem8gPGdlcnpvQHJ1bGV6LnNrPohmBBMRAgAm BQJG1wijAhsDBQkB4TOABgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQGtrCBNqR M1IX9ACdFDZd8fIFjkuVujkVlgvHn85h+n4AnR7VpjT3dETOfjCqKrqB7O+OmzGt uQINBEbXBHgQCACba+8VX1EqhOGaDuZSu+PXgk0W0muTckSA3l+tPvpjeiTqW8mc JBwE437fzy/cVYx8m+fEoixFo4D5kcDORm65e5M4B9ECiJjw1hojXoVWF2aliLhV cjyL6v5VQ4SKuYny4cceX7igyFWb1Jcx4zBzC2TGLprq6v2JJyyPJsiksjMQZiZv otSkbc4jFDkJU1P8mst8hAYe7aZdjO0ccFw3Lii2NlXAjlM6XYGHUCEeW05S+NkP S8dmWCFfKdAGhYXC20Y5F/MrYTpP0mKUPAuVlL0Qa+scqBcceHcXgPywID3df2pe 2WdcEojzW3BEtLGVZw7LEexYBEQz8ngGUT+fAAMFB/923hvNPjOEG9EA/5GaLivR vZftvACEUxzZc7nCpEqWXEeH/Hh536Lj2SKi4MxzXHH44KpfzjAoa/NBk3VrSu1w zZPBv+/lJvAj2HOych16CNpwfx57BTWYBpilcQ7j8BeWB9F5VsQ4ffGrnW+xZRfq JTTG+sNKG7LMGhvuHB2NAdlEyoEX+XrzJw4WzA+eZo7g9kzLOGY/hdK3V846Nl3b pA3iSpVOaI7gprhmjK1ESz58/fLFVyFYh0ZXradk80K1cxiUV93Zo79Uvw5K8tde gr+9LUWouND7BXxRJ5AiaiwSwa64D6Qq8OREYF4c8qIl9cwWmE6qlR86Yc+C7f3k iE8EGBECAA8FAkbXBHgCGwwFCQHhM4AACgkQGtrCBNqRM1L9mQCfb+hnPmlNyP3H FyIZslqXMLP79BQAnR09l4FnL36xldwsMrqll6kRxh+K =z5Yc -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/B6CC76BF 2002-06-12 Key fingerprint = F3BA D6CB E1F8 02EA 705F BCAD 6125 F840 B6CC 76BF uid Simon J. Gerraty <[email protected]> uid Simon J. Gerraty <[email protected]> uid Simon J. Gerraty <[email protected]> uid Simon J. Gerraty <[email protected]> sub 1024g/D94B72B9 2002-06-12
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD0HgfwRBAD1ot+1Z3HB+9TlPHseSUNVDa5Br2bHYbCs/A9KT811yU1l3Ac3 N2PfoTQ8Ab33KIikHVPHVVJCf4AFrzwwEfHnesj8fb4fi2IJA98rMI4eJwAmwygY /JtLa+XvRV6csY4LGIeoLk6zFyTSoRJru2x8riKpLpnW99ikDCmZ9Lb99wCgsRYc YbxxmF7pnwLIJSr+rRjNGb8EAMAg08/cjOkGvKAH6G3F1SZ1iLM3i8U4XnsYIHBS CKtYhAFoxb1qZZrKj2jdrrnHVRcbX/CDrLa7BHTevn6zLR55dL8syqLQLszZhWU4 1LP/F5Ip4dde1cI3Bk42tQffSsTdcKjY5ZS3+454zv4zwlab3UsxCjhbFTJ87y22 1xCtA/9WrgV4BB3k3aUufvfPBdD4C5kTL9M+1wH4dk/gTQVN3NUAV2pmjAxamV8X dBniQ4FV/Xie+ZQ5icjU7Z7RxrujTdpWDik6PseZ6uMFhUGD6OJ7YjsbrGNrqxNR kdqher1uOFpKS8xNF3VOY6pu5ZMSOxHp4aIVDIloo/7imz73frQhU2ltb24gSi4g R2VycmF0eSA8c2pnQGNydWZ0eS5uZXQ+iFwEExECABwECwcDAgMVAgMDFgIBAh4B AheABQJBVLglAhkBAAoJEGEl+EC2zHa/vLkAn08uo+1C8nmjMBZnUf7MeFpDAXER AKCHVoJsQYlfiYI96SQcej7ARU6AW4hGBBMRAgAGBQJBLnfaAAoJEKQYbZp/MyRy BPoAn37FZUlR7U3IQ+32g+IzPyfrg8UcAJ0QtNVK49vVOLhj+szbyWcDEVo4e4ic BBABAgAGBQI9s034AAoJENH1egG0XgGRVkwD/1pTJ5Ml5O0gmZMxqPZhGKRVeqCe XdPJ3iYki6j3XUhm6ZtKoXusJWnxzpKlheAW9O+ndC3H8/7fwwsv4jy97kuMvJfc +P3vWXNf350JnOwt72SmGloMGzodXRXr4uw8dLgtA1FElj37mPJOzWNOGfeu4VpF i61PmW2hTgE2Wx5iiEYEEhECAAYFAkFUVloACgkQDsmuPPFOO2fY0QCbBXDHMZQK lLNt5kbmjOxXt6uQJvoAnRniqwYc39bzrFS8ctILeYqgBL8YiEYEEhECAAYFAkFU VmYACgkQ3x41pRYZE/igXACfUTD4mGJ5MmzeRM7o3s7yT2XflCwAn38mei5uuyBz 9jGaaOzNkDMLABUSiEYEEhECAAYFAkFUVtEACgkQBvNiUvznL2W34QCfZbhz7i5O EvvtFlMCjJ8TTSF6f4QAoJu3rlR1zA6dUpHng3sLQjIjFAOziJwEEgECAAYFAkFU Vv8ACgkQ1Fm8Ub+2PWH/cgP9HSR5dpy6aDgBJ19ii38gk41NCpt83t3Sa91G/KBc GmjrwxjwFbQEy5ovfmsveDYahYMxa2J97OZ2zhNGYOP1Fu124glJb3x23ADsWfZG srJwRMhsfKyZr9LaScQOGRD44eHo7tOlIEL8cYPWmijJGwK48ixNRr3ocoIkgS9C G7iIRgQSEQIABgUCQVRXKwAKCRAHduAdKGef/O0VAJ9vtJgR1RRVR/6fAdJ+SKrF gWk4DQCdHojx0q5/4YpSjZpoqq7g9YXQb7e0IlNpbW9uIEouIEdlcnJhdHkgPHNq Z0BqdW5pcGVyLm5ldD6IXAQTEQIAHAUCQS0p/gIbAwQLBwMCAxUCAwMWAgECHgEC F4AACgkQYSX4QLbMdr+osgCeIpK1DebkokoLNgzCLjCwhKBUd5MAn2+0m7H4S9ka iMdlGW6amQZcOeVoiEYEEhECAAYFAkFUVlcACgkQDsmuPPFOO2eGiACeJlmOfMUg 5CzUeUaCd/xUMlVUldkAnjBo/YpM+c3Nh86ETrC9+LsHfJjziEYEEhECAAYFAkFU VmQACgkQ3x41pRYZE/jCQACcCcwD+Yql8BRsY4GKaWrxA+kLrPsAni/dyq7k36ka u4gdyTbedyPvo6cfiEYEEhECAAYFAkFUVssACgkQBvNiUvznL2UlvwCgwzsZtAf3 o/a3Q9J9VcaFZkjoAugAn0BmYr/OdysRhmkQrAzdk+n42lNYiJwEEgECAAYFAkFU VvcACgkQ1Fm8Ub+2PWFQzAP/dypY/ZPmmy8h649R9hyTC3x5qQWpagqPwCsoLJAq VHOP34X+ZlXaI1v0m2SqduvDiVk0wXIwRWrLuCnxki0wej5JUqRz/Su0MQQ9x3Ao blF9wRFX4NSvq5T8Dyf+g9dJKWHGpy9Ggqd+z3SGavEzgb/SvnbxBl9N3oOO666M x0eIRgQSEQIABgUCQVRXKAAKCRAHduAdKGef/GvjAKCNDifMvJ9+JkVZbCxZr6Uh DNUHqwCgnKPy9JoVDtg19pDRYxRlWy9f67O0IVNpbW9uIEouIEdlcnJhdHkgPHNq Z0BOZXRCU0Qub3JnPohcBBMRAgAcBQJBLSnNAhsDBAsHAwIDFQIDAxYCAQIeAQIX gAAKCRBhJfhAtsx2v0A/AJ9bog4D7lZtM6ay0AXi1ox7vmJNPwCfTWghbU2l3kIH a6v5sRXnvUucFjS0IlNpbW9uIEouIEdlcnJhdHkgPHNqZ0BGcmVlQlNELm9yZz6I YAQTEQIAIAUCUIXB7AIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEGEl+EC2 zHa/F9oAnj9jk2P0r97KtjAGdtMXDhoYz4VTAKCBBrRtjYhyt7lxW/PKO/7RtChR nLkBDQQ9B4H+EAQAnl0L2SS4Q/2CgxD7f9t9m8ODaQw2ODdk0Gi+FFGRWNfWVti3 RUnea/Vv+SLn34QQuZhfhBVhUmnCNNz4Z3tg9YJhbfsXhduXuENgVyqHKFiO2VPC aowekPWknKTWogNZplIwtKh8yP0SXp0LXqhgfNWkE0JxVkX9aRDhjzHQD1cAAwUD /j3LKByGwW86ZDPeGwNDs/j1BxTggiXQdgsZNd26H47ZDgEvaKsuaPiIayyk/Zpw 4L0z7HQsrXIfu/k8UJTeQUNaT//pVQMsYrZVB3B5Zq3H/fAWiFB1ZiLlpnu8xY0i RVyTc49glth8sB7uwGkkLzu3hPxx6rE9QJZ+OwrhpWYiiEYEGBECAAYFAj0Hgf4A CgkQYSX4QLbMdr+pYgCdHb/l5Z5GYen/nafceceLNUiRVXsAmwZX5knj6YwlLZZg U4BS88b/Bo4u =onBO -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/45A4FC2F 2012-02-10 Key fingerprint = B98A C3AB 412B 094B D6FE E713 FA5A 1E30 45A4 FC2F uid Justin T. Gibbs <[email protected]> uid Justin T. Gibbs <[email protected]> uid Justin T. Gibbs <[email protected]> sub 2048R/AF6927F8 2012-02-10
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE81gtkBCADBTdiqSfNlj7xp76ZXuzlpSJfsKmdlVRUQAuIbSGRg1iyMYURU TB03QsHsQYXyBtF0IV1tgrjOssFcIzbnjfoN93JQgR1ECJjhSwa2LfeEc2YKtgrX tZUUoKKBFqPcEgzoX/K7Lqg5Gl9cxwqaYg0fIyIq1t2qh3CrSeP4QFqIoJF/VuA0 2B7pGh6GDRtBiQ5QxKqQ7ZsZF8nZd6RQlR+9jn3bAV/NP3RzswfjyodSQnLQB350 KrP23AOgFKk8kkVJWG5fR0GGfjj/AhVIaewQIvCoitXEaxXZMZHgJISRe4HkZQFY 1ZGRvb5ATX0P/STPT257LK0Q/+dFROpCQxYlABEBAAG0LUp1c3RpbiBULiBHaWJi cyA8Z2liYnNARnJlZUJTREZvdW5kYXRpb24ub3JnPokBOAQTAQIAIgUCTzWDogIb LwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQ+loeMEWk/C+OnAf9Ei7DeVjV Urcap8ryNrG/wNWRyJ5SJdlF35C26vsQ56wcQMktDgJ7/3o/Of7vSpLv1+OHz72+ xmDRUreWIec2xK/1vPCqfwbArVpsVqR9lWCS1Q0/wL/3SvQlpJ7jiFPE2v3D4FzV xxuR70C4iA09fWoje0Nr9VjG9vgvoM/0iY8Tnpd9eE1/pCEKir9hNMRbtQqvL5ig QIZeVBTBjPvf1QKQzAIIv1tE+aQXxXvXl5i6WcEGR7FBpit+/34jLtXHtv2EThiF +k9SljudfIZJm7ZoECFzBhm3lbz9s6mny3xRu0FlovYmVO13pQAfVDoVTSBKRfGS F2Ed6K9yVOxgKrQjSnVzdGluIFQuIEdpYmJzIDxnaWJic0BzY3NpZ3V5LmNvbT6J ATgEEwECACIFAk81gtkCGy8GCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEPpa HjBFpPwvF1gH/37hwu8Ac+pJMWb0u0WeDtZIUAhswqHcJ2XHWWTTT6WXqEyen4NJ VI6+FRK7NZJ7Ndk0CPuiA74ijWVCJOLDv4aWjpLjHA/x6kQpd0l1TIDQ7KhpTGGh +YCUS113b4wBRD3vCn6XgTOeJ7+T8CEiNu6fvll7oPCbirjfz/q4hUPPjH5xy/ja 4UywsNSMOTU1jXUgK0+Rx+q/R83tV1UTNTvOCfcqjZjYGhJojpA5/Zhzs6qklX0o wckrl7nUZqYPT3cASBgdlLUnaM57hqRnNHHouxiLf9eNddMjjnFck/zgppflhpWO Csk4JE7OLV33gfAOyrV6plIE9D+i1WDKsPS0I0p1c3RpbiBULiBHaWJicyA8Z2li YnNARnJlZUJTRC5vcmc+iQE4BBMBAgAiBQJPNYPKAhsvBgsJCAcDAgYVCAIJCgsE FgIDAQIeAQIXgAAKCRD6Wh4wRaT8L4SdCACNxgQwEp5EwBnzxN8y2jMcFIGBqeI9 YiGEa+fF9yvQ7uQ+KGAIpV3yqqV6pYrbSj6OvWg9Gw9GVvQyR00XftNxQ2OGfXfL a2ejx7h2JvEgJrPryLRd6pwiMm9CXMJnf3vBYRU+Szg4Cf2sMmLtDJpeLXCq9RHT bDfOhA4Z2NL6osdr39EZOCrJ3lEqtFSNYLqV69vC4VRxr3W2CEYjt3JeJeSeGNBj RQ8vHF7m/SL6PCK0lRv7iB3UmJyYA8hoo13jUqPWn8mDdNjgSVnfOwOUCqe2l73s Y+P99m+nyC8iNilNL88NvdbXujNTGY+meo+DPLCeYFiW2pUtQMIQr9SLuQENBE81 gtkBCADFt/8yGtnWeqruGZHf5tJDCNLJ8YJ49k2qB2L/ytycqb0JOeG1gSj42D13 9+kgqf9vunZg1n9alP7R14qsponE9n6RAdTFXYEGyHLCwt+TgNiI9V49AyGaXxnC BlO48nZO47zCN6CHqx/MEfCTabwOCFPXs2uMXQwYki0R3DJ/So+OSOE7CPsZGbcH U+ruDmei+tP49AC4cUm8XB0LrsoSRh34XpZ2pup6Xw1Fd/dyQ2FtM68vh7cGV+Hq HdjvoeM9eF4+wpN6Yij0tYekYDqexlQDRh+1v4Eeq3rznZhXZFW4KxGB1uXATHMA 8J7/XORlhRXYpH9aLiE/tlsBCUHPABEBAAGJAj4EGAECAAkFAk81gtkCGy4BKQkQ +loeMEWk/C/AXSAEGQECAAYFAk81gtkACgkQP2fwK69pJ/jmZQf/Rc/AH+736Fh7 aLhbhF+Ag71Hkph9ByBIoSdbUUgFf67foTjze0r9f4/qH6jLxg9c377ttSwmivUY UXT6Xt/NQ7hkd+BpxbBocgBaRS9fq+QfZ22GCuJDsFVvMA6eioYUMg9rHkhO3Ep6 ysNhPphbCsNjRAMZTJA8UBI+FS3+MkpBzkQSMyrH0DlyoYsk3Am99uLn/wZlWCME Gg9tSpseJ6N1YKKor0wZBkBLvpHWJefu/E9h7JJ6Qci78pdjeMvoD2tx5t56eweR QUx8O5smlcU6PNUW0LFQdrSF32cTy7gqqMzOHK6xqaqliCyrc6L0HlrvB64fNCSn 4Q1RVEfTPRepCACMNNNNq6dJlw+cPHQBSVyYIZzRkuZkdKUJLnaUduzePV4NrzPg AG1gkDqk8zlat/kdOoHCiI7D8agWluCEa/dy7So2WD0F+Hs8p/3yYXLjGfRBSDyJ R+fHozVRiZukEOQtElV5M2BwJ6ql5mmL3cFszDfvXAvM8JaJDa0D/8qndLaxBtC3 U0K/APQxUPvpcOWAJO2lt8GaVr1nRsRTW91z8wSq+iwBCqIqPY4SAbLDaSPoe3Lk QMf92sOvKDojCx1WcjHBedyREyeZKNdWyauvYQAJm3oYpgkU0Qdnq+yb/F8homjq p74XqpZ/mgqZi+JmS/oDsRIZVbUjIyFB66IX =nVkv -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048D/422BDFE4 2011-12-06 Key fingerprint = A12B 7C6B 54C0 921B C64F 7B35 58DF 6813 422B DFE4 uid Pedro Giffuni (FreeBSD key signature) <[email protected]> sub 2048g/43A91DE0 2011-12-06
-----BEGIN PGP PUBLIC KEY BLOCK----- mQMuBE7db1cRCACtLqHlWpOFR3RqqXWBlItnk4Gm6NqT94ZbMoY+GSkLVbOxa2tL +ScfosjZ11Fl5UGaM2fQSVG4LgggZEDlMZrCTCRRepNX0sWcbb3QGGShERESzkjj wOm2PW5ta9hPCdACvNjRPzvueZjWJdmlhQNO0BzaHznwqhoqk6LqmEEtFNu7WFCy PzECfCkgRqJU3Z/EJaLd9kMZ6d2CqCz3sYF+P3/NyXrugK20PKQr/Lb1uL2R9FOl S6019GD/xfwMkNVn0CzvMXFTp4V/ecGB26Y0gt9JJBS+32JaY+aG7ULDGVs3zv1R 1Fi1ohEyqVsuxjM8+NTaIQ/28rNSzI7EoBczAQDIh2oMj891s/47H8i69e8XR4xj fxJ3VZDgAYCss8qGBQgAguxmf5x4EVfCDjucL1cHgFMv3x4Jdv0RwrqOdOztGvEJ XyKJi8H5uIuLO543Q0Rj0GKqzYA4f43J13BCdXHoh6b/Tp1i8Q5nrk7gFQRy1fF0 O3kbpl9nt1XH1+GVQdBEs3lHAFYNcJIsYW8KAm1FpfjGRdelVYprmM6ErEIwnDR/ twDp6JNxBl0lyDjCYVbax4n0Bheit42CDSGn8MDraZBenRp2M6TxC64jQEYV8tW2 J+W2gAyZJeDXUq5Yp5X59ZzvF7aXr1DZ1b3J3l9ySPkxMWoxdbp5Sxkko04SdE0F Db+DmyIbUlN6Q1hKBnDDJ0yIJXFJ+w7Lqa/lEKh/eQf9F+4Ugh0MQOqLv2nDPF91 4y9vDFB5Po1Vt9PwZSEC10oTYEZ1udjwhlu7cz3KvdZHoo9c8xXma/IDx+cTzWbF hMUlTH6txcx+4KEPqf2MCPJHhGNPNrnN4pRgGbDy/iGrJzOXSgh+sIltgM142W/J n7saCWgidxfsR6EIrVD3pFIYgKS7FT0dadSrHsqRuION8pbqJwwXMwu7o192tdHM ZGk3JyjUWFOnuug5O1MHd6hTQUkf/ZZukW/h+ROgMmghVobIGZ0ne1tlUD0hLLRq FnJb3EIlS0fNb740X40OA57V90hQtJvcrjL26lRMbS2MeRDnCwZcI/3YJ/p47xFv RLQ3UGVkcm8gR2lmZnVuaSAoRnJlZUJTRCBrZXkgc2lnbmF0dXJlKSA8cGZnQEZy ZWVCU0Qub3JnPoh6BBMRCAAiBQJO3W9XAhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIe AQIXgAAKCRBY32gTQivf5NcqAQCdccZvB3SGbyf6fljXVIwOQx8/3SLs9gHT3KQd YCu8ggEAootBvhSjxTJUyhwveMJSQKstb6VfUynyaDDAz8EF5Nu5Ag0ETt1vVxAI ALpKZlQRfMMr7zbN64GtgGL0ouSDoGeuQbRLcrePZ0RaNmBkvz7TbGk5AdLjE6vY ybMKjKCXNvjvvdOCghyl9M9xIG/rjttgiOEGMzfLXqgjZZXVUvXAk/2x5c6jg6IF vHmGrXfk1Oqw3u1IV9KbveGQ1HVJxYsi8jt/7uRnneYmTvzE16Puj23xM9fvDoMS MHAMudWiKt7qjwBy3Eq4KZbO8DwzIUno+ECKb+De9P2Dy6ikFGCcweGADLTVLE47 ySVKtBdiLzieefJbd8Qhe28kF/glJuFVKnTYceYpVGgs+Ul7WxQIgRCdFfo2P/Jn BtN9NFBPAw0WNPNDjg/cPrsAAwUH/R+lrO8j/OupArfnuvZc90cbCXYEeqMu6jME X2AcUSGo934F9qPPQxWnX4qJD1cztGGrTFOKWxt+aGN2+qe6Q/fIvaNYTb+Duh1l oTNtGmVYPX/HGF/XTm0Vd3BgcpXXEv0XNs2gQwNgCyQCwEMmYUt/DUuW6qzkZs9l ZA2Sjm0eBTPat2DBORp0KUvqe//STk93ZNcLDnj1EnVqa0piJk9zcDivEy6zx4gP tGFPdY0qWCDZjiFk+wB6/XzEDu+jFMERxPCB2FFateKjxswRlBGL34xThCv1SBEZ XoD+w6FJ9bx/jPy/muMe7ku+SDm8smRBipOm5V90y04a8AHxF3uIYQQYEQgACQUC Tt1vVwIbDAAKCRBY32gTQivf5Lq0AQC7xOYsjWskIoge0aL6RwWAXhYwFOejC4Js h5BxxBSeRgD6AqolGR9yRNeSdg0ee9GfNWC1UZKNOIiQ3NDvwOjvb9c= =fr2c -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/DB9B8C1C 2008-04-15 Key fingerprint = B90B FBC3 A3A1 C71A 8E70 3F8C 75B8 8FFB DB9B 8C1C uid Philip M. Gollucci (FreeBSD Foundation) <[email protected]> uid Philip M. Gollucci (Riderway Inc.) <[email protected]> uid Philip M. Gollucci <[email protected]> uid Philip M. Gollucci (ASF) <[email protected]> sub 2048g/73943732 2008-04-15
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEgER9QRBADEnqKDo2SQwM99dEQW6sEoFafQm592R98bDFZC1CqmBhZaj9nG ksxyX82s/PaOoosKZR3hsMcDOJgYkHfTKIMU6aDVMrONfsgLF4V6meTaBHW5uSOI cJBsW/TSTsOq21yrp6995jSTsHZxV0CpFDZWGCowefxvbRoAz/89pUBxYwCglOYk btty+eanC+la8LUuLn1na1kEAI9wXI6wRbc4Qv4dppmNwiBsu0aDW2bOe6TNU5nj MMU5dMQkQ+FkHBFNyF3Fy5Uvm5zhGhlPKRTW9nOmLzZQBf9kj1G2giq5MN3fs4jg k15/93Jm3TnyV8LZxP4cBU42HhuL3b6rzFFNVgDLw4PJuSqjt/JTNhNtCwYW+nqS g08zBAC0FuxTJzna5X8Y2o5o+J2yU0kIB+y+fmGeaN5zg4VsM64Nexhc2X3HJbXd 31hPqySdBl6DQP/I9U00S/C2Qb6MVwTDYR2DBltoeqoHOJKGLvqB5N01DAVg8kAK 31PpMdFhkfZwM2ZsHfoGbnEB2fMd4Fb/+DwbjrckwdG1w8P2t7Q7UGhpbGlwIE0u IEdvbGx1Y2NpIChSaWRlcndheSBJbmMuKSA8cGdvbGx1Y2NpQHJpZGVyd2F5LmNv bT6IYAQTEQIAIAUCSARRtAIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEHW4 j/vbm4wcSz8Anj92jZBlcifpDwdiUvTZdGO28CjQAKCT4jeiJcLCbhnXaXonBCzw DRw5s7QpUGhpbGlwIE0uIEdvbGx1Y2NpIDxwZ29sbHVjY2lAcDZtN2c4LmNvbT6I YAQTEQIAIAUCSARH1AIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEHW4j/vb m4wcM20An10tzTX41D6qcEjOBqMzwyydrYoyAJ0Qs9fj/ct7iDCphvNwCcjNGMlx ZrQvUGhpbGlwIE0uIEdvbGx1Y2NpIChBU0YpIDxwZ29sbHVjY2lAYXBhY2hlLm9y Zz6IYAQTEQIAIAUCSARRmwIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEHW4 j/vbm4wchSkAn2DyHStIDMIXwKH8LAgut1wpf4sgAJwNKynACF0+sok5YupxxZkm QFJsNbQ/UGhpbGlwIE0uIEdvbGx1Y2NpIChGcmVlQlNEIEZvdW5kYXRpb24pIDxw Z29sbHVjY2lAZnJlZWJzZC5vcmc+iGAEExECACAFAkiGRaMCGwMGCwkIBwMCBBUC CAMEFgIDAQIeAQIXgAAKCRB1uI/725uMHK3IAJ9n6VjOWpymuzHE7xN/xlJu2j5l uACeIqegqdXAaqRS4+olfTDN/nvoYWe5Ag0ESARH1BAIAJGalt0PcCClgFjAWdKr 2+wNm8CrgW8cm62p1KZ9rxTHqpDEQopa8Y2G86pKDmhjJQmPmepcZx2ZhnBc0UVj qBA9bEDnVJU/ysuxjYrjswYNP+5ZemUsk5IZgnZOLQod6ewWtcdZ7EPJYOfKNAvo 1TMNFZqA6CLKUgjPpokRdolseRkyuS5q5XM4InraptSvv6G6SXRiDBwChbwfbJG/ 82ClmnuInhDzmc4gg5flrU6RprLu/PPx8SSIRkVHNZdPL3cF5pocETruqdkcb8yD aC4kIIqsn1XeBYLXS5lYbZBexR0i4i0xkjXnErrGu2lgGm65RwF+hvRsDC7RIC0c 9hMAAwUH/0UY8w+pGeGMgZJHiLSoaK6pTXv1/ega4na1vGglnBeGXB2Cj6jKgv3j 6a9XLRtaw5owhTLAX0uWt1XOw8ojm+vgVBvXJO7ljUI99/Zov5IQRZfy4TN8dOY4 1TNgGiwaUU/rh+MIQy5hFCQPGRjIUKIkOGEBKOaZEkTV6Hr9rFCokpcTILF73JB+ hI2EHwnXzpFKmzB1zwbNvtv4QiyozROvc558n13WP8OdmdGNv0jNcytqEIaB+PZM wMcLMjikPHKUxfHcdmwCezpIBKG2T/5xgzTCMxQ0UbfIYLnsOfJrCm+akw2VbQ+R TdP5dVLKITdFUk3nydirHpN5JYkH31WISQQYEQIACQUCSARH1AIbDAAKCRB1uI/7 25uMHPq4AKCSdNolzpw8MfWfj4LU2ZVlbflHHQCfWUK39VTu4mNu5nPmuM6gmewD rNE= =SgIy -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/09EBADD6 2002-09-25 Daichi GOTO <[email protected]> Key fingerprint = 620A 9A34 57FB 5E93 0828 28C7 C360 C6ED 09EB ADD6 sub 1024g/F0B1F1CA 2002-09-25
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.2.0 (FreeBSD) mQGiBD2RGpURBACZe4DKSXi6jCkn4eZHJr7nGPISQr4YUq3rDqcOSUlFPBZlVd8S pYnfkNNW8HTxl0+qd5kIXiQxuvWxCrTNzoS0gPO3IQcICkAqbIICK0A1KFFx4Zen +muTp/e7bDhStcMEelXc+/3mLReBJf/d6e4For6P/rqVmMAcm5A2GO4quwCgmrSD fLt9NGJ+mtiXFxloHe57l/sD/3nanV7H4zk9gPJZA9b8UKpbZZmsyljTuYOAULL1 oh3CZDYvKZZ3E1v9exVDadSGvbps1bL1okku27nNd9BnlnSxZ+sQbfJtvEoBMUwH HJnAhTU5sW0UJv6K7goZ283npX8fFjyDWJ4+XJ1Qq1e+VMF5QeZVRFiIJ6NztM7F 6b1NA/0dwFApYGf2r8YV5uJPeSsWH94Mx4PTtIXp+WOovQ434wzuBUMiHxeeuv4z LP9Vjf40s0GoC0TLz8wB2awUrO8aWwgg9SUf5yO+jKZ9BchBgnqjju81zAG5sbUc ogMUrENjqIJgFCkHcnbxo2IHOygwjezvZeM/svcxJ1bW/gZlwLQgRGFpY2hpIEdP VE8gPGRhaWNoaUBmcmVlYnNkLm9yZz6IWQQTEQIAGQUCPZEalQQLBwMCAxUCAwMW AgECHgECF4AACgkQw2DG7QnrrdZetACfY5hq9W8pDo/vGEaCZWQtpTpW+EUAn0jx G2nWbw6EDoGxa62mmqy9rFyMuQENBD2RGpYQBADjmTUn3Gk/tkVzIgVm8wdfuMPb n08JkuNLUDYjxWRfRmVZHpT3L+e7rUwKFrcmMRM+kMSsnWKhmhwpkI4Tqgi5/lmg kN8R+kr6gm40lEAc8tNPNzbE4ueKSAwW8QKqC2iHAqe0l4SjvDEns5M3mARPEtfn tdEsQGeyGYlxsG+MhwADBQQA0HSyz2a2mMvyn7IfG7f7t3zuL5tXoFARYQ2FYMWn VSkydfzYuBc6kX3oskR1QMv4EDgX0hIUglvTIb918Qj+4tx5CKsUKnZFflGYfY2C qwVwR9SPPdX7rhytqkalH8HyuLm2XuRaf/pzo23tAivSXNFhfQhvybFtLdPBJ6yK 3XaIRgQYEQIABgUCPZEalgAKCRDDYMbtCeut1qqBAKCDnLRYCpUm4eyVG+Ycsn6B giZvyQCeKeQZPCnz6RKllxb8E/E17bdhN24= =T2MZ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/CDCC273F 2005-09-15 [expires: 2010-09-14] Key fingerprint = 57F9 DEC1 5BBF 06DE 44A5 9A4A 8BEE 5F3A CDCC 273F uid Marcus Alves Grando <[email protected]> uid Marcus Alves Grando <[email protected]> uid Marcus Alves Grando <[email protected]> sub 2048g/698AC00C 2005-09-15 [expires: 2010-09-14]
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.4.2 (FreeBSD) mQGiBEMpwEsRBADcnD1kRdYoPvpKLjT1w1T5p1fT/LAimANGHXVoZxusjNdJjleF 7SNfN6V+sjm8bdUjZb3VJr3oA21sdwIKXzamhtbaDRAAvKdYIRecTaLId8SqI3dO mZtLVo0A7XNkjVMtyLn8lPKpdiHPOc05/x8sVLNZ2LR/xFJnbdT5bomy2wCgmIOF EaoJmSuh5trZRiKIAeIodfMD/3zaTMjI7eLziJG2IWdxceN40vUX555gCpeFEQtD DfVV++32c7BN0j9o8VFl3W1vsQ3Elhm9GRlb5hZbRo53Z1YTJEzogXTGBVipJGID cDo/bCmRuMSarsT+M6R1NF6uToSBeVZyCtA/DDbJHNvYD5VeOJKsdaQ7hYtctoJ6 ms7hBADD8AeV5gLZOjOIFTAkX1ibEksxz/P8aUFjnj0QmPe98/RI02e/iYVVdPgz HgrTA+gF0X7nIicn+KhBgOT0MTx6bf9DFzmk1KaFBA6vnQ9alw1WtRHGsIm0OgD/ Jn5tRQFriUS5PWQP8FKXcUfmqOd0WtLebPicX66nOba+NKdU+LQvTWFyY3VzIEFs dmVzIEdyYW5kbyA8bWFyY3VzQGNvcnAuZ3J1cG9zLmNvbS5icj6IZgQTEQIAJgUC QynBHgIbAwUJCWYBgAYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEIvuXzrNzCc/ UUwAmwVe85K4Ljml9AgBKbNn5juVRkr7AJ96PWlTFr/IdKq+1m3Zw7Hyt93cf7Qm TWFyY3VzIEFsdmVzIEdyYW5kbyA8bW5hZ0BGcmVlQlNELm9yZz6IZgQTEQIAJgUC QynASwIbAwUJCWYBgAYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEIvuXzrNzCc/ 6koAnjbYaFve7vZz3DW2qTBnYXp/n5IAAJ9+2EStzCP3tnKb/hjOxotstQufCrQn TWFyY3VzIEFsdmVzIEdyYW5kbyA8bWFyY3VzQHNiaC5lbmcuYnI+iGYEExECACYF AkMpzVMCGwMFCQlmAYAGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRCL7l86zcwn P+oFAJ4tcY+w4DVH+x7euh4K6ECBqM73PACbB2QBuJrDOtTxoYdmiH3XdHCytT+5 Ag0EQynAUhAIAKD52CU2Xp69qfo/j/1aLgiMhgLpx56ySAb9SzZySUHadyptFpJR i3glUnoUh9dfU1jr8Y0f1oChCmm9TOZnQJWR7LOrO+av3gxnRtVMkvVr8eAPG3o6 C3VZop7FPxR05Jmy0EtIxweEgNGmCX/p58T9LAM50E9FacmwYAIn77O5zXcJVnBI m9Ih05Hy4nGIoyF4iBA/NZQL10glMnwc6p82AiMj1FI6i6iDdPYBeiHKUXkyZ+Q7 Df+HkelT3zot4DPKBeGBSFyQENOjHCp4wl27DsfiJXViy2NRz5lzrSFgvc0ZIUus Ia5d9nG+OE67JKU4qT5xgJL5+eOe1lXsHgcAAwUIAJKuSmq6lvF4NWN8HWDimXBE Ol8jNHf+miaLgMxOhAOeD4TQHpqgEhnf02koUbGDbli/AS1oC6WGhKSekgYKZCkf zmvRNEkCJCOMG3bOcKEokHiujcyQHWf8k4WmBQe0hGalrE+oaLti5H2/jAqUqYFi tHWRUeJDgfwOXRalI3YJJyjfBzE6ckE1kFWoEeXDuZdER9kusWWVrX38mdniwoKj 7e+GtfYo+riB4Nb/TSuQjw45DKVaqYNi13P2P1EmHwmrSjnL3Yrck3x/vDrCKa0c 2+BAMAaLVnOGdaYT1xsaMBGcgSkybQoOmvMm5hdtxURqi7k/TbaNhV/etSzfB/CI TwQYEQIADwUCQynAUgIbDAUJCWYBgAAKCRCL7l86zcwnPw4iAJ9rVaOA1zKrzwRX CLE2Xxf/FkN6JQCfZU7PjkJvE9jqgsBVfMhi6S6kNZ8= =rDV2 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/EA45EA7D 2004-07-13 Peter Grehan <[email protected]> Key fingerprint = 84AD 73DC 370E 15CA 7556 43C8 F5C8 4450 EA45 EA7D sub 2048g/0E122D70 2004-07-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEDzjb8RBADNg1Ak3kReZLn5N6aGm/0ofeBsZDK31HgXFoQnXpZWuPf4Dcuz EztxDMfAhCdQPuFm+u2av7YiOc4Xmxmety18CwBP4E0w2Wf2RKdI7CdeVshn5epo kTMTn8pDu3ZDzui6Uvnjuc6y51VzL4zJwNNZAF5Vs1gXr+V7aDbvb1/6PwCgtX5K XQHfTdms5d6yhYwyQ4SrJ6sD/izS3iZBHe/nDdTBnSIA4sIdcZUn+sRfX7/GPs3H 9JgYbI/+fatLEUShiKaNTCCibNRXx1OqFk0w+vs1pRz/ziE+G7uV7tglS3h8LMnO Q/6y8WwTMiv2seCKyiuvGxG2NMT7OAdrSNe8xPIlNRBdxvANFlgnfPsypXRfjJ5g 1mqxBACaho98/zNgFpClOwAxw1Il0TX1c2EGB0e10FJ77rDNiPCWSnsPu5LB8mhL FfeGdx+zVVj5G4tMVIdJgZ5T4IpELPY1rpqf75F4mBrWTnmd7g9X1S//U8j7pNet JDVlymYg9DJvtKnfOHXqViwV8g2X0EwKsOpjo3IBZ0Oepw3wfbQhUGV0ZXIgR3Jl aGFuIDxncmVoYW5AZnJlZWJzZC5vcmc+iFsEExECABsFAkDzjb8GCwkIBwMCAxUC AwMWAgECHgECF4AACgkQ9chEUOpF6n19yACeNpRdDKA7qDA1vKGyjJIEdeAhqT4A nRC1CUpFTve3psN3cPWymDzSiHl5uQINBEDzjcsQCACkCgzuJRaPnoWmOZCk58ya +2Tbxd3qHtDDwMnY8NKi15FA0Cs40PUffHtWrxW1qcmm7QRmhHpR49tR1f7xT7CR OX5QKPa2axjv1mk9MKC4BtMe851UIMZ8vWbm/Obo9UdNYqEQEXT5TY6PbkiC8tDH 5i00MBg6mkYtK9xU1OjJUp1YHuqalWgMEW1nUFM1CV1Fbk/SqLzyNcC0biTRMUkZ aZ1MgF6oxBIj/InO0f7gVoL3Jb5BC9bOUo3NkHCUQDBPwfLXR3lfrQLo7fLckYaN j85Ap6NXJr88vINfU+xn/MeVwTGYw9ejh4sujp3d57wP9Ym3PaR2SkoPdZO323oH AAQLB/wMC99y55a2jnP9IOsI+UIgWFWDmVqDhdgdp7asKjW2aUhX1k4CGPw7AdTL dtBdxqxFNp72fZPZ53ZIn0z2bogyYOOT4aWbTFiqKyU6CScCpeunKs+/qz0pw0f5 /TdHgDCBrlMLihNiC0Tvtf/BzTLR3pqDshts8x82qKSjhxExazbBxJ23A4El53I8 zZLQLD+vqJaFylhze8DNC3J/V4NgD1Vdporrz9L+QZuJXDGUyp6Gj4uteAu0W/My 4+5zrs9Ym/TSmC4y3PLoqAeJv5I3E+6YqMo4c7XcLuJWO8jzg6aRlQmc/WgvVANW juieqW0bcYqNu2F/GeUcgvD3dWt7iEYEGBECAAYFAkDzjcsACgkQ9chEUOpF6n2l QACglTS9Ryv4oLwvXTNK2j2RLiH1VZEAn1YaLCp5rtafXPpdMdCOuJXo7MjC =UNPF -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/8832CB7F 2009-01-29 Key fingerprint = 34F8 1E62 C7A5 7CB9 A91F 7864 8C5A F85E 8832 CB7F uid James Gritton <[email protected]> sub 2048g/94E3594D 2009-01-29
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEmCOzURBACOSQ8S2bwRYqXrfV9/pT8BmnGl7GYrkbDtJqL0IaTV1Bmdw7ed qcDjMT55c2LEQlO7w2EG5z7JfaBnP+jV3X/gtH37gcqClcJRxJ2uhT7fShzmRR/U 5iTbAt0BwDF/W5LFmxajhZvw8NJKeMk8j0kUwdTzSKalN+iAhXEhqx/uWwCgz2qg 9utCYdwfeSmRwebBIQhPq4MD/2bWpo3/Vw3PZzNsja1l/s8jQjxkMoXJ8LlYFoYW vc5lMBeR0nb1lZrnBvQGkEJVSPLXLvTBYireyqai8pt+Uk7D1oRevpsD/rIsSZBV MVSa8jUqPF0HC0vWrDd98HDq/RJ3SD4HHhiWJ2wA8YrftyeHzZ0kiJYzggQ3UPM6 +x52A/0U2kBqBq+HqA7YWTEo4pn2W3adZCT8mwmsDdEnC/uTvA0BHBN1HfgCxwee TSqOwssFioHCVu+N/lxKjqy9ftHI4ljSuYOPpC3q+LwFdVjbCQ6ynILNKp89QiK6 B5TphmOTQJ4ytVxr/tcvzDOCxbtyG6t7eCJBlfEgGjZLQu7uYrQhSmFtZXMgR3Jp dHRvbiA8amFtaWVARnJlZUJTRC5vcmc+iGAEExECACAFAkmCOzUCGwMGCwkIBwMC BBUCCAMEFgIDAQIeAQIXgAAKCRCMWvheiDLLfwhyAKCP4JGKCayDfY1f7sBXhYSa 6Zr5KwCfSy1evNxNmp5TwB7RBpEZpL2R2C+5Ag0ESYI7NRAIANiluE6e3GNLyLTc cc/SQ5NdW4/B89yDQkZi/f7mUAMiS73iKoe555EVI/JIFsHUduHeYMB/ERDHNSUj RmWVkb4r8eVSlMVvoU8sBYGqihoYtFXYT7rj8vvq6ufkF9RtBJLTLzikEg07jfQk EzKr1eFOl0v76UGnmqrYiTXOAJoXQIH4+Kt3pWd8jz0Lsc3Kd4+eMW2A+eXSpShb yuQhvtIkSdOLDa9PV03Y/GweSCbTKa5+oTmCoKvXJYjDHwkuj7n2dog8vo64Oy1h z8mPPFyDXr1OitDdA78Vvpu8afz3Uev9DMaKd6WIEtVUprLOXyuSixn0x0rvImes t6lHX3MAAwUIANKigPUT7boxzc93BdWUOKrZEnjN7zVnIqUMizVgi0K9nLM+lSpm exPfoEZqCIBmAmDRYO50Y5Lwb2R6V0qHFBmIvZZ9Ih4YosXuu6oFhKHjamRK6JXI hh5mMrOZnfDRn5YGEr3ZCEOGzdW0pY1t8THd6mtXmK7iIKKy+3u/WHf0tCJDRXk6 7ETBWwqFTE3XpZz09aHRV2470GKESSbs1Q4Cobc8ZIifNzr8kfnWPm/EH2UCNpnZ K2UvAxi6SRYVWIY11SRS/am+DRGweKfm9+NZpHEk2yJknHd95Q3IVw+fX+2yKVQe L+X9H5BR1y6XxKbxqrlWF5I2FDJo4BzOA1eISQQYEQIACQUCSYI7NQIbDAAKCRCM WvheiDLLf1rdAJ976PPYVcvK8Q/zKQrMv7pff09z2QCgut3uY8LEhlK39qZCF9Cl 2+bu5gU= =Uux7 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/3DF5F750 2012-11-13 Key fingerprint = D367 F6C8 2A5F 2921 70D2 B446 27DD 6FD6 3DF5 F750 uid Barbara Guida <[email protected]> uid Barbara Guida <[email protected]> sub 2048R/1DF7506C 2012-11-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFChmNUBCAD6H/nOlsSUv1C4GJUHns+0YmdcqwpoF06+mcfJXQ9ZIYz0mNqd 7b03NpOzSscwiBHazZfACldGB3+6A8cNMvCH5BbENjeX6m89i8tEzYA2eDf74fw/ 0ldHyHZdnZuXJSQgooztjRmzo/5I2g2ScdhhYAOW5aqEqlFrQexD+0ijhwUU7ylR BtMlSwGozHpoynwtSNsOZVyXtEQ4CidgDY6sKx3jhGePh1Pqh4KI4mDCNh7hT48I v5elyTTHKj8Fw435SNfFqCzVE6M+POuN5Zydetk2ru57RD+0fnCsNc9sngLRVBM0 xxOokNE7FpzsIBQ6tzLz+lZCz9L9uzuHjHdXABEBAAG0KUJhcmJhcmEgR3VpZGEg PGJhcmJhcmEuZnJlZWJzZEBnbWFpbC5jb20+iQE4BBMBAgAiBQJQoZjVAhsjBgsJ CAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRAn3W/WPfX3UKDpB/wJijev63A8tQ64 IqQvakpS5RAsrVJ0WqtP31Cb7aFWkelmyIabwOgfzeNgTyF2pdAI1+6mx24/C9AB ke2HwFvg7rXGeIm4S34tCvixDiJ85WHX08/V7f97//brueXE9EPjNZx9g9+fjPXE I9XAmVRMi1ZfF8HUHZUrJoEAUCK7lpa7WKmcItW/T/ojLVFSl3j3FJP1dJk6iHKW upKLjZ1gA33IriHkYkieXkPLCvZw/LD+Ei7KYyf7UacumQjx/T/jp2q282qyJ25A p7FEYY2oBQS7GHd+RLvkxZ2PeQJTgyoEoQEd0C6XU0oHpo658NToc91FKA0jfjcD cjESoWDRtB9CYXJiYXJhIEd1aWRhIDxiYXJARnJlZUJTRC5vcmc+iQE4BBMBAgAi BQJQsk/8AhsjBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRAn3W/WPfX3UH9V B/0a5kosi/15TTmv+Y2cFNtMm+LxGUv/xCZ+oaWJyTUAWojEWvaek4//PZ3XMVxh K48VvQNxMWZOsZc6mo/gelEaUZJ0mtR/FdK8CiMynKQkfifsjsz1Sjf0o8WdCr5U ghGKdj33ssw/z4cxPUTgeGGwPjnI4O+ZuD4SIk0MydQREaltmdBxpAm68mKLZCjB /lT6TiD7NRKVM+2KZXgNzdjiSQG4aSa21V/d2bk0mZWVvj51Oqx+vlfs3/u+cO6A msslous7RMR4fuZAh6Uewky4OsDdyEcVCsTciG6QatqYVXfCXM/3bOXX53eisfIJ iTcbOJdO+qBzqC5e37ffOG1IuQENBFChmNUBCADOHnVkZkSyHz9iagHZcJ8UlA91 87movEUtJLFRQbgRK3T7qqxwVMJMKGPrOZpkg8l6zPENbbvVWBQmjjoN8v5T6WWH tRY14AB4I0tJMfNSYoU3Jg6u/vthw86y7SBrcapvrABJ1vVHGm8W3Zsjftcs2sEr iEp33O9hh8QU/Ynr1GUg1IKAC/14mthymSi534DGjnVID6H+Hcpm1pvKJpkf0AvZ d0/pcI8vySZpHw4DKO8bF2zPoeT/E46xPj8U+PP9aCrryOVCh7lc2nnVJeIe6jgC JO3ka/qRyHb8Er1mJpl2IISfG3Sg60vQVKou+/xsOp3GkrZYj2YHwTKk4ckRABEB AAGJAR8EGAECAAkFAlChmNUCGwwACgkQJ91v1j3191Atbgf/e9uK+1tHJgRl5rdU gzRHHrR1S4BtoYe/dYC1UvbXjZOthbVAoLOZDcU/eU9qTQI57Bcl+JdjQr9ZClbc akxYNKp7PtTDARBwNmbU96Dpf1ef8XdwiyD7Ifl6mgDkevE9AaSxOQjQzaePiK9h r8DSxlL7wDQ2QqsDU0mdnOxS99v0le4FoItlpujtcWwXG5eTnEejD1VmCorumNTD cksouKVOSfzl67swNUr5/8gx1PV0WvCmCCzVoXjg5Mpn7rtBxH8nOUDrXKTuRtRr KQmTCRJk7gkKyUDkdfhyoPXo0E2rRzVKw+BvzmmHRqGd9K7ixac/5QFHfvuNtYyn AA+Qvw== =8co3 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/6D3FA396 2011-03-03 [expires: 2016-03-01] Key fingerprint = 54BA 873B 6515 3F10 9E88 9322 9CB1 8F74 6D3F A396 uid John-Mark Gurney <[email protected]> uid John-Mark Gurney <[email protected]> sub 4096g/0A4C095E 2011-03-03 [expires: 2016-03-01]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBE1v4mkRBADosekDv7XPyOWmKL+iT+Oc1/FUHxO3U5OC8CHEYQxoLod4jJjy x1GJ+nqZcwtnhww2/1+ty3LwHvsCYj5jeIsCMpjHp456+2Hdw1w2fC8hH0ENZR85 5SnQGh/Ev7N3m00znbZLf0xPoaUZKFxa6Tmv0KflCw2Y2WCsN4qyhYCkVwCgzjni jXdXdi8ejv+dFKBmb5Vo6GUEAIlLD2ofYOsa3gQtdIyh9irx8PSri8qRAA05VcFM cE8r6F5pU53f9wFcD5KFVLXNRby8cdNhWar+K6WAhICGnck6ytmqVE/udZzLLmjX 6qedsMpQSmkXB6xmUnBx8DQAfH4+V68l00qsZ9pJphNG3+L9uUERQwWDQP/ZYzVp R3hVA/9PXTqcF1384HKOeeddBowCPDJUmYeVm0d9jZatOwnrnhDnZgT+LDS96xm0 R1yO577ka67c2bsDT2pbSYL5hkLWytXtLZr0nbTcczMJ1Bg4XIW+/QTkh09c/xhV J3pol7PAnrflYqAAaioxffVapFoyBdOui1KjrmPfVruHjj10RbQjSm9obi1NYXJr IEd1cm5leSA8am1nQGZ1bmt0aGF0LmNvbT6IZgQTEQIAJgUCTW/iaQIbAwUJCWYB gAYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEJyxj3RtP6OWS0EAoJE6fKmBrwM2 vBWK7mVbThebaQuNAKCbgANUv2cKs5Jy2hAVjTjno5rr3rQiSm9obi1NYXJrIEd1 cm5leSA8am1nQEZyZWVCU0Qub3JnPohmBBMRAgAmBQJNb+MKAhsDBQkJZgGABgsJ CAcDAgQVAggDBBYCAwECHgECF4AACgkQnLGPdG0/o5aKVQCfZiykMZLK0FR9vGuc QGBtjzNLs2sAmwfgI2Cnbzk8JXGxMGOFbHY4YV7zuQQNBE1v4mkQEADPw1wOhnre 1LzHlU58meteE/Vy+OnwbYf5zzVqo04Sdl/BYGZhI/M7EQwSGV1FZV4r9JQg7j18 rrPKT3vf5TYFBpXfgRYxxYxM2g8zCbqeJe5B1BmRu3Hj5hHi1m5P7M+cLSGUE03P pAMD11zyqJK1f7oF6ywpWD8Lcxc4n/tHzVUrH/fM6DuQE4Yb5RWQ+nVVDTyJ51Qf seD9PAIcLzCCjOB6qP882auQ+jfvld4+yWbpl0wQF0K8YXHtZyAaQUMANcgd6Lyd eQMwSN6gi6GxZVaUniAMPJr1lKd/tiLDxBcDDAdYYoDaHiCyab2dXcrhG4fCRmPT IYZbO3SPstlCKoo5ff8AUiF/K9gz6ON3MloYp7fdDBjgQtUIVXfb9NRxElNLsGvf qIVHOCVe3s1e1hCg7YRuDHLLsmVQfol9k2MhFiGIphaxgr4keurGdUN4S8KnzJTW KiTJ2U+P00oi6/McNqRRulbh3kk1UTlkjWtfHDfWwCsZtT1XaX5dD+7QCUJDOXF4 gbdX4K943uQIrcbO1G+n9dMGCahHlTnrLa+AYaHkv4P0mRvxB4P6t1GHGJ2vBsSX YEi8iUP/ee3WM1TGnhL4lleuklsxpVLyZ8TrSpbjrbLgpHPgrAmheGt1agPr6oJ7 0UZw/CTDBrzC4ASHPMhIjwZOgyVYs8+AIwADBRAAhAfgy4b32n2bbR4Qo2GhA4Qw LVRkB81cBzuP8iVuLHYHy887HEYITmD6+Em0TxUpavuntHUIDlHfNNPgTIv/j2Na am1cPziXCCOvEfM2nEhi3cyo88kT5/aUO5PcuLX1p1oJQJTK25wYzdduuyHozsyR 2XYb/UfIrxtuSyyHuJEhXrdbL7tp2b0PsQn3Fv45UOtaHqp+J20UnFwkTqKakx6w oUwCNj+jTCthbnBmwNIuo4+Gu2ipYbWZ67lJLVE6zJ0/kJk3JAcTooZsIfIlSUUe F4Z40LJipOitIsGwGwYCUHQLiYBfcnJNoT2PWatACnrhO4SQAl3EHls2oOFObXWN FVCj2XD76Q/6TZ4Gxbzkf3ExVQapTeoBVtxpU/Bxa3TFy4fN8Ogvf+XAn/CTH9N5 TwbxxvFd8RXolTVdKAPE3EoZNkNW9bO2oQOCrh2dNlvVOye8H33y5kJie8kM6CrI O79tyV3owu2hD7wNOIan7Pkh0VN4d4F0fTWrO1VdyKDdHKY9XQKYXQnMo7kBvFd4 sSu8ljkaeDMTeQYSJrc+YdsthmA3E69y9OATObiS0gcl/Y7teP9dF/K1DIate8Z5 6b333Fg0yesBl997Z6kQSMAFhwQlkq959hC+urfYd5fx4/306WoUJqy+ZR1eN0cZ CnZoL8O3SmZG9WTMYOaITwQYEQIADwUCTW/iaQIbDAUJCWYBgAAKCRCcsY90bT+j lrfTAKDLLzG4jeNeYJYz5lfmsgnt9A8YGgCgw78CtZGQhCM1stwwnMKXzADhlU0= =HmsJ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/21489259 2012-06-03 Key fingerprint = 3A9F 25FF ABF6 BB23 5C70 C61B 96D3 5178 2148 9259 uid Mateusz Guzik <[email protected]> sub 2048R/EA19FE8D 2012-06-03
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE/LxOsBCAClEi5g5IYj8O/1uc7Li2lpx/0fPAZ6/LwOMjvzRHDHEc/yCo9N /zTYToL+dQBgIxYj07PVyPp584CuxvesS4VYU+VXXJxxdtMq9gEi+siVCt0cwpWm bVGTZgLcqZqUT/sJfPqyREmU+hUcR+ELHGjD2zEiOJZg2dB+EoqE9NLFcoUGasRq WKpfqdm50ipVbTU3SdK2mh5CnqC4xp5LXgBYa0tZkQFNh9mSf1PXouj7Zn89Ghzk TaS+ZbyBWgftvZRxqUaxtK34N1zdMKcWzcLsOAaWLyepBkvDzh2tZ55PYml7f+Zf 7s0e1n5Sr5T9GysJAazd4Sny/6Gcu+Bm4ToLABEBAAG0H01hdGV1c3ogR3V6aWsg PG1qZ0BmcmVlYnNkLm9yZz6JATgEEwECACIFAk/LxOsCGwMGCwkIBwMCBhUIAgkK CwQWAgMBAh4BAheAAAoJEJbTUXghSJJZBlAH/0i5SyqIB9CBKrtUGrvytgCRc3Ji 4bPlXc9uLRs88AFj0Y9G79vioIgg3Rnm0B7fOtlcBsFTV/kZqUEcO3iR8MJDR7oZ rAEyEG/fn++afroh1iqgEyOIaO7msQvNqb0NB/HJIj1EknWqVAYBZ4WiRcli7R5A P/JT0ArgTLuKu17MkOhn0sBiZdrep3fN7z2OgY+BNgbydb7O/T6B8hjah+TX7rAB R+EmggzXVwQbDQBTah+BjeER3jSd11zP7e4mO7CEkg5b8dXnWaF+n2aj05iM/axK Pms+tZwO47/OKI17ZjeAjxAWrZcWuavWY2BDNzmCYpuq+x3x8D75VUMBnX65AQ0E T8vE6wEIANUeU+eTvPlGr2ODloNKL+KWTHDpcpdKyljCvKA/7pI0FX8Ojp7dCtvz UyXRhL0EuzG8ywUhxpf+KkuOlxD23Q6+FiKDL3oTtwAmYaaslo69zgLEX0ohN51K 6QOPQlGFdAxHbp7DVb5peJyC43G2+5JWdwNq13Ha3nGWvWn1Qql3A9xik7/oFRit NATwdp2oecyFBkfhkQrGbecOmaa/hEW8eUg6pgfz8A+Tk9KjaKqJGc5vplANvddo 3ngU/PfIoUb40onLz6ytzUdYyHXiEkcx+Dgu6Pb6t17osFHjb5FlcnYnrKen64hU IAAH9ckP5HqsOE5wIM9M+X5JczNtY78AEQEAAYkBHgQYAQIACQUCT8vE6wIbDAAK CRCW01F4IUiSWRr7B/dr9JsKVhfaXzF0L7cnzYWV5QqJCkvCuklEqd+yOdKPfJig ZJVtjFVlRO8u4l/Z+F433Pw+gvBkR8vVTw2Ni62vyIspR1CTG0X06Vp+5qHzVOZd LWkQWlbVDgWedAY6i5ABscW2VM9wenrDJu0DuSMHTdsCp8Z3L+rvBjRLmA4WzyQd O/IUyrZmyJP87S9RgEe4L7JhDcWNDglJEEgX+Qgd7FJOUBASlRr5aUZ0iYM00mth d/EdBbJp+tCbCOfxFhXp6ULDkS9ExN/NwVDL/GBXu5ckU1shOVoDwPO2Ib0lfXkA r7vGsL7VXiKw7ITHQKDJ/dc8ab83QPdl3W3QeSc= =gTKh -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 3072D/8F2E5907 2012-09-07 Key fingerprint = 009C 54BF 32D0 F373 8126 C8A1 D8DD 2CA4 8F2E 5907 uid Jason E. Hale <[email protected]> uid Jason E. Hale <[email protected]> sub 4096g/7081A001 2012-09-07
-----BEGIN PGP PUBLIC KEY BLOCK----- mQSuBFBJ7kMRDACdF9DTaE8bAAGh3Q/Dd5Ckst0s8Qs7cJrb0qWGRUqV8vmvJr3J b5v+Bgb4wSN2UM+Gl9EJ485e2zJ5TkzrUgo3rFu1quPLnPehHDI97fYtA3CxbNCm j9tyvqmMKbkKwHkTvyIV+Rk8HBbWQcF3fSaVDqqi/XodkpXUrn2zom6Cy2/yC2+J H4+ebR9QjQYoXxYl3MlM8p/W8QBU/65TZPCFAdvI9bWL2f8qHdU9TdIOvboGiWbh gsDIYqEmI+2GzOrPvnuTPoKLuaJv+6MVdnnnqKGo/xMVml3Kj5QgDzjvs4+xVVAx D+7mCXs9LBYwujO/Wraq7ljr2+5ZER1EiW/jQgNc7jeg4rVQk35eF1Jiar/ztwhg Sll1xbynuY41si+1O/dMxtP/Wa7ouvcinpzAVdT1JfAr1P/nm4ASicGCKlLkhROb OdNaxvckoFB2W5PLccsRPOmCMveck3HrbCYh7Wj4GMPcnai4pvwG7Wd0xHjtQ4yj rXqvB7mf+DL6sZMBAIroA/8lcVGnVc1avUWb2sJ0Yy8r8xZfGYb6b74XnhHNC/45 iQx3kLh9oUp8I6VygyYM0G2dbDOaN75omszFgFhxzzD6nRXZweTRd7j4Z5BRclsK MVzZLI5ZRC3wOmcwxlELbANE6kaME8RU4g8ywXUHeR3hD6nJ02SQIJpUojFxezz8 7cTwK3s2O+8f9d9UqMUXq+xpBBg26pDLrr+eITHxiY4Tecbnc+76W5rgfvaJaCM9 yl6sMESUztG3qqibJ2iYy4tB2UmLWBMCu1tvSkA3B+jj2MLLMRs2OZunsbmozI9p OdPqkPScQuAlYHpDgVp/eMmd+vO7lLuWc1feSJ8HHL5l27i/kSnstDe/NVF8QHsL dKShZsITn94h80HG5rmgaGyTnw+t+K4dN6rb1+Xsm9Vx6i3E+57HTcQi37o/R2Vv jgHp6wtvv09mubWdvHk01+tZRV9md0+EPjDsmBA5DSDp9Ccr2D4k1B4ovezEqltT R8ctjkhPtZ1cv6UD81volzTE3N432Uz6Q1RvpROn2MzitirogG1LBYjhnfdhRfML /Ag1LAu8EiEhDpt1GANT7NuQ/0zl7VwhEDFbEW7F8g9qgG3YnrXdbg41PrELJ6xu VIrtz8tr8M5GbhbaZhRx88X/4XQFW7EiA4dmOlymwi5oxe1cgwzz/Z7khhNU7XAI poByqiUzEO5viWP2nYL07ewu9nJ1EVcsdffH2FNooSMfAcH+ZmdMoK+kMOfb/G9E DNYX3+RmrHfSnVbYJD45qIuYm8P8OgOcGTE6cgmSlRn6ki93e+to44ThwTSMWM/z NmleNL2CwsX/whKGqZAaO3yRyAnTHIDOEfgf66wXMudvA0otEybHFxZnyj/KreQw 3SUWQkHBBxuaO1lVaPSE4qt+RIGsJM2ZzWZaDWkMN+qnJPJbr0tUjCVF1g+NUqCa 5gPmvJHDrLdmTBtlJbXfL255TnaGGwkN8zhYoqEyRa5MDz1tlYkD+cnbVU6xyXRC nk7GZBR46j0uNl2W+rX9xoHFwNncGRrjKcr5z8+3R/e8CBYrvCwLebYhehegfo/u MrQjSmFzb24gRS4gSGFsZSA8YnNka2FmZmVlQGdtYWlsLmNvbT6IegQTEQgAIgUC UEnuQwIbIwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQ2N0spI8uWQf5/QD+ JvzZL8okil73+M92RWXntxmwzZqylmCu8Id/St350ekA/2L4pbH+x1CDqWWHzL8v qN6nyTkvwzgJQmANRIHKISb8tCFKYXNvbiBFLiBIYWxlIDxqaGFsZUBGcmVlQlNE Lm9yZz6IegQTEQgAIgUCUE51KQIbIwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AA CgkQ2N0spI8uWQcMagD+J4u9BeA16uYSEFwc+eyklyH6qjJtnSoo/7NKefYULBwA /A6wPS6lXIgwV/ErxBPLooDOUBDpd9FGVAlo/Bru4DrnuQQNBFBJ7kMQEACBiPvP Klj+EbBXY7U0FYVLwONECLJ71B6dolunqQ08rGniXFaOO7B4a1ho5AJzfpCOWPq4 20rmo59H+5HaGUuT8JJfk1V8zfxaMV6ze+qOacRt+0uAfMiBvtanAbnIojcdnhWK pxWZkV1VNma0xBkxNuZDy0D8rQ8c/wPlD2Lv/b7QXvk1rlSSNzw5JuwVk6TAGD66 o+QG9wCkV/jfZUgRpiKSuiYrgGxQZAsAcW5xDlfHA9rPPfmcCRzKwxq+63AIbwcE LFJQPYO19JNzDBJ8RskTVnQfhL28U2Dx8jiDB/Qsy3m4fC+L29hLx8+YVQBsq1YX uDaqtfKEnYO/495ydsCMH9qv6LxdrXuRXNglov1TCLXiDt0s6rCdCAkpTEDta7gv RH8Ncycwo3YFOniQwwvV18n1dJlzue8o7OeGaw9YwA2JZlecJ5YPKOPpmmxaIrZy m4aR7NUKVSOa2eg5jPc9rMRCnduZAu/nVRtOlEPQWHIsebq5o4UBDi3Nd4bCcRGy 3Fv+rWl8hC6oK31X/s545TTIJbsLbVSYA58rCMwGkwa6UjJJybOzhD/AgiRU4S4g aQT0Yt0c3cBZyjJteCOG4BG5TJexi/59mOcC4dhQuD3du3sfpI0g+PFoZXQYJ3+g xwAqLjHCnTe971RB6+Kud2UJc6uzSqBeH+z36wADBQ/+LXh7HQiC0GaB1p9SrbiL X4d9vjQgjmbI1Zz76C8Cfd+Vk6LGiU00VKTdNKs1QnKfcOaJqly+xEsxj9prE2zr jmU9RzYKSBDXKMdmfBFbvF30QSRlmiFuOwSNUHNOG31c5J4c0zluJFbZzSw5zFGy cKiRBZ7DlZuSnNviGqyl/AUkVVLQLnHbBUAEvlCXcvaFhwfTzT5sUgSWcUL0O1Kt 89w2pmTjRSIKBsANb48WyujoeD0NjkBXVXDN1n7+1EjKh0v/DzhQgz6kuhY8PK8j NKzolth2cDeOlGlR/xupyNZW1KpLmYOB37tACJtFWcRG0NKMqzTfzAVAl1Hll1Vp qA0Ccou16KmCvUqwLWtEsmTswPCS0V3QKt2K0RccfpLQFNjKE5Qj1oguqhheFcB6 TjU2XPEShGelPtB18FCcE9i/DYsNfRAfaN2DevPLGeZBUqV2Vbz94+4oJRSZCO94 nUCAvp8l65euazPVsU/Xa74r9R3jmZa98XnoxlNWVgQ8mT+XcXfEqKow7kuO46vO 6QKPR4qi33oKV0qt4v4hztypHNTzkhSbSSM9lhy68kNho6o42EqcTsJFpaKMW9SF PT0DcXLNQFhXJYH9nSdaW3VE+/2xygCEzNz4NROfaXU67wopqIb2GIx1NmZpgaA5 be4BWQaHtyiLjJj6PIDWjLWIYQQYEQgACQUCUEnuQwIbDAAKCRDY3Sykjy5ZBwCX AP9elLKCOSeYFcEqwlvEZd3GASS4tAJPf7hPU04NEX4ntAD/QVdcx3kXm7z2IxLS qpi7F0myf/uBWfkmV1doJFiQMf4= =b+Om -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/84D0D7E7 2001-01-15 Daniel Harris <[email protected]> Key fingerprint = 3C61 B8A1 3F09 D194 3259 7173 6C63 DA04 84D0 D7E7 uid Daniel Harris <[email protected]> uid Daniel Harris <[email protected]> uid Daniel Harris <[email protected]> sub 1024g/9DF0231A 2001-01-15
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.7 (FreeBSD) mQGiBDpjbB4RBADW+4fkXvVjAZ0A1X4wgXJQ4Eyes1LH7sTexP/Zm7sg1D/R9zV5 w2kBwOhICRX/hxVL76YZv2MTNL/d3pV3ZW2yV3Z6H7Pq7s4oVn2q35owUwLQZfSI SBTnBiVN7NqMZ/kzCCdWBwg/4G2FVNFwc7RyuOFQL3ly1PBtgbANbpCyfwCg3QXB K6AtFaEP2MA+SWWHQD2dNxcEAI11cbOHbYU8asIxbqYYyPOMgPsaLlPiTh6JQOO0 2OiGxoQlmZvkhlWf8B9ahCeYoKgA1zPqdHA2C9YMvOV2LvN+/Qi0n3hpqkfM7lLC QMJgm1KxIzccWY9Iz09GRlIFm2JPaCVLsKh1QPW50c3yO9TMSa6lXwiRgvxPz76C JHniBACa25NHH3x8zx5KA0FgMM15Wc481777CFVsKazNay00G0HogSICZ5lHffdi 1O5u+qQHchVKL0Lbe1zhdbVHdSAbEqnKTqseVMQ6I1TVu4gO89B72aY1RxAnAYjh PAb5W/RhZBSR5NDVZyANnqaGE7U7KMqn4/E0lC7w1TzoIZvDMrQkRGFuaWVsIEhh cnJpcyA8ZGFubnlib3lAZnJlZWJzZC5vcmc+iFcEExECABcFAjpjbB4FCwcKAwQD FQMCAxYCAQIXgAAKCRBsY9oEhNDX55peAJ9NKai2qEcFLxzC14qDz80zBGwP0ACf YhsW5qhTw/Rck1Id2W1alUEXMre0KURhbmllbCBIYXJyaXMgPGRhbm55Ym95QHdv cmtzZm9yZm9vZC5jb20+iFoEExECABoFCwcKAwQDFQMCAxYCAQIXgAIZAQUCOmOL hgAKCRBsY9oEhNDX5wXyAKC6VLe3svRc+FgmmjPS/EWvi83sDACeOpmPRbViajOw 4MUhKA7hxnRlBeG0HERhbmllbCBIYXJyaXMgPGRoQGFza2RoLmNvbT6IXAQTEQIA HAUCPSJfQAIbAwQLBwMCAxUCAwMWAgECHgECF4AACgkQbGPaBITQ1+dSxQCgsBwM uDviakYEKswiv6zMHfYBBCEAnjMyu+oxjKOWOo+of2qmtQH2LNg9tCJEYW5pZWwg SGFycmlzIDxkaEB3b3JkYXNzYXVsdC5jb20+iFwEExECABwFAj0iX2ACGwMECwcD AgMVAgMDFgIBAh4BAheAAAoJEGxj2gSE0Nfn6bIAoJlPaQlqk4wbNGoscjigAp0R B9ooAJ41JxSh9w2S16mFTGNKvVpjXw15BbQyRGFuaWVsIEhhcnJpcyA8ZGFubnli b3lAZGFubnlib3kud29ya3Nmb3Jmb29kLmNvbT6ISQQwEQIACQUCPSJiFAIdIAAK CRBsY9oEhNDX558OAJ9iOqCDUX4cdNMSZ1KBQg1gfTn1yACfZNL6BY+mYC+XV83L 7DXacstXHlSIVwQTEQIAFwUCOmOLtgULBwoDBAMVAwIDFgIBAheAAAoJEGxj2gSE 0NfnaM4An1YVu3iDtrG314UIuZoTw3zd9ucxAJ4yg3vWB6ceg06KuyaGTJSdZ1Oa p7kBDQQ6Y2wkEAQA0RSR8vkmX33oyYl+LwlOmemSKbSQFZNImw5TDcRYX83fa1Z1 4oIgJSk1h5l2jx/+29chVR1nTNqPYlRQEDMxVby9rMq2RAnjorM6oDdtIQIBNJ63 vmUcUiORGnKhC0waajpmZibcxoUFk1KcLyfxOT0JTOLgsJfqdqUENIc6NqsAAwUE ALaLYnBOoIr5Wm/KC7wRtS4gHeeOeskZyyoa3+AeBorDl0VvpgYwlNdAaP4xJrx+ CH6UYnxrMgCXG1l4dupkGXOCRPlAcM2ouEyDIGHRTVqHy40khZnWzN7xfZhKNcVd FxeHqOG61ZrhcMboxZrdJC7hK+sYrbngeKRiDs4VRoOuiEYEGBECAAYFAjpjbCQA CgkQbGPaBITQ1+foeACgme+2LKdFkytbn/JUhBqPYVAD8KQAnjP+IDVQ3PDEKRkv AFGJ6i5SrWJ6 =j+GD -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/6A3A7409 1994-08-15 Daniel Hartmeier <[email protected]> Key fingerprint = 13 7E 9A F3 36 82 09 FE FD 57 B8 5C 2B 81 7E 1F
-----BEGIN PGP PUBLIC KEY BLOCK----- mQCNAi5P5owAAAEEAMIKNuDnLGiTOzk3kGMmz1ii9FbYEM6fKdf0jSi0YSTxSWAn 7EZbBehJ3yTAYuCaGSEGXEWismycc98LnH2Fb0uI2EsJ0CVLJqxsOL3DK8XE0YOk HjSKUpmJkh/BKrMAmUnqhbD6YIBiKnZh3ABt9+a7A+SakJQxvtQ9cYxqOnQJAAUR tFVEYW5pZWwgSGFydG1laWVyIChMYW5nYWNrZXJzdHJhc3NlIDE2LCA2MzMwIENo YW0sIFN3aXR6ZXJsYW5kKSA8ZGFuaWVsQGJlbnplZHJpbmUuY3g+iQCVAwUQQGso RdQ9cYxqOnQJAQFBSwP+IIm2bFprpayabQ/VgXp10OD3sgIEtH8c99sU91LyotNT ySif8DS+ujliDk5wVnaOlzqrV4sga8d2ybM81hdW0nxI9dNxLIp+ti90OecZMF6M 4PlsdkYGnqZDzXlFg4o70GSAWKjL9RTG5JvNnYWS453mCjYc3O4dm+1zzADfgcy0 J0RhbmllbCBIYXJ0bWVpZXIgPGRoYXJ0bWVpQG9wZW5ic2Qub3JnPokAlQIFE0Br JFTUPXGMajp0CQEBkqMD/0D1K1hTJc8u5K3gpsk9LrnOVYpP3zHbSe94oLO5tHv/ b/Y1626xqcMKYfAIk435asuPnGRkMjgpsxPUKksfWMlUqW4aIiX7di6aMuWkgSBI BXguu1Dk/qRImOZkNzWc3V+/CQ+PIauy2rZubfW2+oVkW1iEmmO7I/nPqDxDBNBI tCdEYW5pZWwgSGFydG1laWVyIDxkaGFydG1laUBmcmVlYnNkLm9yZz6JAJUDBRBA cX8u1D1xjGo6dAkBATkoA/9aDk7yNvh6urP9EWcPv5mjJt0yYIIjGpV7VH2P+mTa dK14ah24HSaTjh4psJg/uFw4egAs2XxDKXrf1SHCaaVajC3VQGvKq6V2Ytmgw6qe Rtt+NtrXVJn5EUnMY3+G8YCXugulym6bUWaC1x6PC0Y2IEzRkM3H5Et78gd2zujB o7QqRGFuaWVsIEhhcnRtZWllciA8ZGhhcnRtZWlAanVuaXNwaGVyZS5uZXQ+iQCV AgUTQGsk+NQ9cYxqOnQJAQEV6QP/ZFHefmwjiex7zEU9uhzjEdZhDlM0szKULUoo TB4x3yiXiYlzK2aqppXbV+vl+t2VLhd3McH+SKSiKwoBVWrdqsXguruIjUYGMAJI aE+Zh3OGUs8sZhtQqn3nE4+VngpyXwPwXPrDhQiwwJRxj+01lupNwS0Z6cAPmD4A W1L0aSc= =HsTV -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/5D008F1A 2010-07-26 Key fingerprint = E9EE C9A5 EB4C BD29 74D7 9178 E56E 06B3 5D00 8F1A uid olli hauer <[email protected]> uid olli hauer <[email protected]> sub 2048R/5E25776E 2010-07-26
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBExNy2wBCACnfGsjuSER/VsGsmS+w4R/Z7t1nnLydNTHCLkQn/UHpCFrmtZL +Mil1qgsE3+japETQ5LOsJaJOhrfGXtqD51baVm/CqCkj6Hl7I5Ex0GDqmKyMBrx SqBKvxRLwQF4yrvfoqQsfbMVnPPysFabbJrnMS+6vCfu8DnYkg1RgJTq3j/WZUHw fuHT3zJwliyKJjQrWEFLeHXsOvtfBIJ5XX0s3NKrfBITsScTXgjCMUZwyadKC3q6 Y++c4iOfZFbzPA/8+mt3EAhBrYbD2nIJUIqM+PJkaCfP5IqDgSb7bKPCjof4M8CX OwjWCMh1kfYVmf+j26tkBmM7ueIq4eTMHFSLABEBAAG0H29sbGkgaGF1ZXIgPG9o YXVlckBGcmVlQlNELm9yZz6JATgEEwECACIFAkxNy2wCGwMGCwkIBwMCBhUIAgkK CwQWAgMBAh4BAheAAAoJEOVuBrNdAI8adCIH/iNoEYrMzla448FSilwIolYjcX4x 6F2y4diB4OMdv7WE7D3dPVhrgYAZlfNqT3QZt1ADQePt4/v/QjgQ+03SS1/UdRRJ Pc82L/TWZ4Jd6r7H+yIoTKLDwcMW6vpcP0uFoduLw1Cg3u6VNiW3fSGtjU8FfLa/ TaohaA2Dxq25Vd7B8/6tmRsZ36oIPecEWQ4XqpNrR7DBhbgJmY2TPIOD6cQlmnZG x4TfzYKFtCG4PaX4v8VIuwpyhBzjWuKoFi44N7l/mYreD5et0G3865HK1ZtJ01ax VDyyMWOadFK736w7iGmPRKi19XU0bhdvt1PX9dSWe5dvRGaqpTyyEEHx9sS0Gm9s bGkgaGF1ZXIgPG9oYXVlckBnbXguZGU+iQE4BBMBAgAiBQJMTcuLAhsDBgsJCAcD AgYVCAIJCgsEFgIDAQIeAQIXgAAKCRDlbgazXQCPGrckCACebFzIU4TmOaQA/kaV djHZ6A6oxaFWQVC3NLOYQlOoarXr4KHdtjnlBrXvQP/a8L/RPdrlNteBbk2FrXxz 3BpCGHE13ScSm9HVtM94WyZiUUzERc3QOLHNM20236a8PstePRjy59G/gH/rgrdq j0iCKg7hF3jaYRAm6DNgivFb8QWZ3e6wt/QBMovZj6Mlhy8xR+fjUjlslNAeJ9dX 4ozeoFXp+IaSztdBzZsUsbourE0L6CfSuI0EYn+wIXuyu8xQs1eqmJ3NyBYNoedm ko68wqVQCd0MCWRJbpikaxvkMLDVUt09raWDEkgLkRDSYIDwCQrioGUXndZpeBkd W8vmuQENBExNy2wBCADFHqQ/L3Iyj4Sx35/ljLYje0XRXR0WI3QN0ZZSSMXF1RpV LQKH2RMUV0KC3eUfb6yYZoKzNiY6V8CTkglTaBAy24a5gVm5sI4SO4mY0ml54TwM GDMp1kbVEjTscwzlKp20LHua0W+P9oj9kn9HkKt5CrZvx4nuE1lIMxzIyXVLKSmQ GxtzpFA59oObzw6+h5klahFP5HCeD9p1ikUaKRQDWLKldf221pU1DbM0YLrVCG3m bA/kxfrghP44R4uQDs9SWi1Ezot9f7DvOeVFmPINaFHnF95eEDfuaqJEZbG6j758 YyasYjK+Ed5oi3NZVGjMZFThA9Px0rdYkMXgl8QvABEBAAGJAR8EGAECAAkFAkxN y2wCGwwACgkQ5W4Gs10AjxooWAf8C/e9xYKOFsuKRaP9Z48KJ4fMJSlzIVwolBAY 5+Ok7X9gJ7gMw/WvXFsi+zammuHOseFICsELWKW4wmmv20rIu8o8Grk//M1E8Baj t0RpRG6ZUa0Emn7DALYI079DXofjWfzN6J8Ff7u7OY4rkq3CRYomAOUKsKQNtF7A saFIZz9GEhZQ0DnONsi+k87yt8U3N1Pjf7sv7dIouVuoT7AMGA8IfGjyGxaBqydA 4bWSIHO1pZbuuxxNidE42C7SIFQplwyEHEKPl1mteMDJxKGnR7sb5SNvDsf5t4B1 9C9j9upXeOqx2OqfUoN7dXT7uNmc9My6Ng9yJwFTHat6xPSgjg== =cHUi -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 3072D/329A273C 2012-11-17 [expires: 2013-11-17] Key fingerprint = 920C A49A 5A23 F9E3 4EB0 4387 AB90 5C56 329A 273C uid Emanuel Haupt <[email protected]> sub 3072g/70183B96 2012-11-17 [expires: 2013-11-17]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQSuBFCnfG4RDADPgmrXmj/FXtx0ilhLSpDYevUYhhoyLywIWmgjrcBBTCPcO0IC Vn2aQI68hnTI4BTWc+aDXbzDOK7KT1o9E+2Rw12qKcbV/psrkmi+Hg0mFttB47aW rZG9lYPM/KBudXCoojlF/Ip2n+KkLX/QHN8ip8A8RkOsMk2dAgVyXT9RK78MTVx0 CkTXhhJcmYJkYuyZdy8y1nlTt1LhO3GPmKRmdqkFG+H5B/zhgHy0tpSKJ67or8yX 1RvPIxv4Wr4vTengA4p//kibbLOa9rsa4aSjjZvDvOHA/o7Lo3ZypRj+0kYtbT0R vP4w4+I8x7Dtgdjl7m05m7MSVMwQHn8alV61EHket8F1wXaxJ5HxbJDeuZkQCgpK g6I9CPoNmc5qgmd0Ad9QKWNhDPaWmx8fMCXTJB0+QBX+4ENJHzFioev4ynOxesxL L3UZqxV54/QDPcYfZxyfu0K4K9OASEOwrrLpqAil1bahMmZKkO5JfcIw5dJLb9TQ jNLz5kudt0qGwrcBAJTo8KTz7pPqnQVKABgwm8gJzZRtTOkb8WqRMYsTJRFpC/9L Xy2DnVGmkD4mWD4rWr/mDG2l+FT66cP1HiDBQoJAkGJXgx5DLcPgQwVu7vS1utFb x1/nawvnq6Qp/yaAe4UentHUZADgVdogx0AEbCf1QN1e6l3h/S5UKZjLHBu6FKDs 0HX2rPGwxGTHWw3WiXfM0NHgpAvzg1j3cdjQhT/NDKek8Z0Gr4CnNdVgfbOBM12y rSGKlEeVpCf8DFYbMEMu9zFJ6J3JiNBR2U5/EOImYZe79qRr9MS8x58/nj+pc/jx MDa7C/ckXIauo2qN4XWsiTFITlsKpQMtIpdNkfd/kZQ9fl6i4w1eWwtCVrcqYs/d TI3o489D57jGaeppRjT3yEXyOYgyb4Amd10rzW8PtAA+S+CK7S0enY1vXznotG/u 5/lhDrldnxJ3cq8LfqG5KePfdcUy1dQK4Vfnlbf3dyIpuSPwXNJd78x2wcElKYrk almK070xn/Lf00HuczwxCCHNZ6HdrZAkvO9u9MI7mxp28Y6RZCMq1Ieh7Y+k/6sL /38tgyFk44ekdbwLuXveFfEivqoRHPoFyP8UYK/c91bnBGF9Bs6eCcX6W7sENv36 QzbUgZe8RQJWxQjpU3GvRahe6mG3B5bOySnCTqsJjlPxuKI6XKfhl1UE1K1tqi1p 3CtUNCLLgmsPNyFq+JNBh2OjFdz/tQA6aKN6aXU006amKbctY1J55xlgIONgt3fy LJYb1S30+H0FFm7SCtPX6Q80IgMJv3bvYg/vcEcE7Wz7k8gtiVZhv4synviVgXAq jOR1j3Gtf5K1gev9iNTmSxKyJgmZcxUEQuJxGI9Y3sxxKGVomT3Fv0PLF98KNM4z s8bGH4ha2epy9BuY8kHNnlEvY9IN5cxyDbgmkK8Gj3YwH00wNcz6YocAC+AGhMmJ hBb5BiDZaFAv8tBQO0rEPwMhPs57xZC+0OtFcYfWLO8OYA0QjrqfncgbJEcw2v/Y 6tV5WiWgpKgcKwgDzFVkAJgrmyd8I5aYlmdLE8uqEMvPLAnrbnnX9MnbXnLfC/t6 WrQiRW1hbnVlbCBIYXVwdCA8ZWhhdXB0QEZyZWVCU0Qub3JnPoiABBMRCAAoBQJQ p3xuAhsDBQkB4TOABgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRCrkFxWMpon PKQgAQCJe+bYbZTr6ULASwjtBNV0Yrigpsnm6qzAlqYkPuEpmwD/T7OiSNqV9vvY FeHu/gyUyfDgsL+CWNwvcqWYMenQ6Cu5Aw0EUKd8bhAMAO9ELP2diWa2I54Mcg84 RjtV1Rf6qHz7vfZC55UYnQhqnXu0Tl9L925GWoRFZFebhSLXD33W/zc/s0/olv9F caPUnM2hHKbLATEIeFqmtJ0OLSvvmTk9CubFby1c5HKPXtKlZZFSp8lh26Mtoi+e BH4TL6AUuYTjIHvr6QRaj26k/D8GY3wINikipl8epwka3xTL0BPN/ANQZVDk1Sal 5dTIVj29QLVe6iE9Ijw9UQsq8rR3Ik0fYfjQYhkzm0yH5cSw5L4uDIU4gOEu5C8L SyxY6qmZDn7ElIVv78lSmDgIcOTCuSFFyyqj1P4QB3UPyR/ClnTX/uambNu8qIa2 0XwNSLhu70rsY2ln6URFXmuTk7d535LLPCRaf/PRnz7M41iAOOMhJRjhf3WZ+6wV f6akRVsSm27j2w6N/ZtiM45A29MmJz/ujcuG3CGz3Ha72dNtgS/UC4kXbbnXUklo SVjaUzRGhjpN+x93h/Kp5qFKeC9W0jhUeECk/M60D+LsuwADBQv/faGAWHcWWGVY PgbSyguLTT8NlSrkGYgcwTLiOyEgLXJNfdlJrKq7gp9xQtKs7CccFfEsY8j9+3qo /xqiuxUtLo3ur6k3yFtvwU0k16fq/aSdo70VFBnHYefjky0r2WRPTSO3PTvRmRkO hBcJ4ZOwn8JIPxTH7mNcdJMGwW08kJFZOC1nQaBSvg30U5vlfiREBXMBidCv3BDl fRFeaBPCUQsXacLoFmOEzXOfWQrZ/y1HUxPOFMQqFwLtEeaQq5hf/uG1wdUMfb1B FDlXtSYAk20LHBLsAQRnOlQDS9g8geLy2tttbcPpdTehI/pIrcay8gXEEestLm5E cqfoR5fg+7tnPyf9wcc+GsWhgWw6PM75whraLaEvPNd9nXl4GooHgykw/nVFOEK4 7WU2pPcXEi7DV66tssOBWXZxMtJ29zQeT8siH0fUdnBriQyzBoFeNRXhF33pcHPn DTY5IW1KzI86GT34IF6p8xQCp6g4TRTMZfU95+GhcCDSK6Fny1sLiGcEGBEIAA8F AlCnfG4CGwwFCQHhM4AACgkQq5BcVjKaJzwQpAD/UfTcReU55HdN/5tI/0Fr6Kku 0ZbDaulknl6JnRmdK4kA/1YU7l50NXukqvMxsaGhde7X0XYDptq/FZN2J1xKTsqN =MqAu -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/A9275B93 2000-05-10 John Hay <[email protected]> Key fingerprint = E7 95 F4 B9 D4 A7 49 6A 83 B9 77 49 28 9E 37 70 uid John Hay <[email protected]> uid Thawte Freemail Member <[email protected]> uid John Hay <[email protected]> uid John Hay <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQENAzkZeP4AAAEIAMKg3LRpUCJdg9V9Pr0KIdvaQeItf5Fcrbh0GE4skfNPKeTg TQifwdG/GrMPYJBPHU8JnFqumLUnd2VSoFEJ/6W5SOZP2l5ZCq496pGCSekpe+kR dN3Ra+GoR+cWVLKuXj+IxA0Ziv2WEl027TnMhWGf/DHLdoWvSwJdVrGnk0KjBJGr HwWE6VGlhBSoOWMa9T0tb3sRVTEIJXDCn8f12eixx8XCzwIQJSgWC+ThrY+ZO/hz FRR5yl+izJfffQiLjc4yY0rXqDu9K3i+/0lWywcbnqMtRj8Pnr3j3Lzft+xex2ml qX68fE6dxof6Tc3GQCEqelj0IOAb8Zqy2qknW5MABRG0IkpvaG4gSGF5IDxqaGF5 QGljb210ZWsuY3Npci5jby56YT6JARUDBRA8TDj/8Zqy2qknW5MBAeMwB/9R+Nvd bPPkvll4Qaw9I1FwM3iaMDM4IkqR6r+Gsi+RYIClYmRBU1HXZzKyNR/Ysy0thnIe YO2yg7U2nYJ00ysSZl1Hd7R9EQBuYZk647PMKbQ+pQ4k9KiO1ObT9JivWz6u6R3l gJMnCUEi6s+xW88eeTDBO/AKE9eUUBDZ765M3WcVmGfDYNpW/D3tX7taGcFT80DG VXKnFHAP2Um8IZeHXKGqh/jTTNCqwz7oj3GfVzzGEnmwI+goZScQWUl5J708MnOf uxiuOMBs7SLsvg1d7iEkO1oCDClv72i2Sr4rPuybIPMMPIpx/DpAZAIiMYHJ6PdK nMXSYgk0GOjx72pttCBKb2huIEhheSA8amhheUBtaWtvbS5jc2lyLmNvLnphPokB FQMFEDkZeP7xmrLaqSdbkwEBzGMIAJLwFCCICbR+kqejjFh2BznIOT69PIfE422e C2yD23fC/lqZ6LixxGrsZK5TxRycWw7fq06h77kd/RX8UMFErphMTkIapt+wLLoX qGLcY1dVyNhW34SutdHzXkMFo6T8COAautpnAMhrSh4dBw6XQUreVqc1BsyXL4vT LyI1/E8E3wELJZHldWQ7ldvXPUOaoJp5PJ0FIV3Nvme9g8U0BrZT/NjH06mYgsKW +40ZjeRycvA9Yjh+ONAOdX5ijn7QbixjSehFsmdpx+KdNyZbp6iAIurf7ysEp2Qm N6K/3EukEnVvy7Nn1L8+7K4IDkK+TocpG/m/P67w1AlrW0tNAMe0LlRoYXd0ZSBG cmVlbWFpbCBNZW1iZXIgPGpoYXlAbWlrb20uY3Npci5jby56YT6JAJUDBRA5HN4y wnPlMN5G9U8BAQVeA/0V4alPthF5+FVL7GJ14R7IQee3NkepbsCQrWfDl11DJkyn DxyISqzQd/ur1v5gziOMppQ35rekRYxqqmcKSg8oZtcQ8WFfrMPOYDDn8uTXmwX4 OgLuW2EnJc0y1JiKuew1tHRQuoObZtO9yePRKkq+cPgLn+yrjPjGAJ1AuUL56bQa Sm9obiBIYXkgPGpoYXlAY3Npci5jby56YT6JARUDBRA5HOfE8Zqy2qknW5MBAXAc B/9QuIZEQJDfYJyv5Ztu9mtEUZoFfavYmLnLvbUz0rwZOzv8/krEQtkdVvkWYWQc JSal11h7L1EyY1YzrTnANkq4KUboeiR3X6RZ+z0p1pg5C0imWFdMpqnY3croHkQy 0zU/d/kDd9mU3xismVbDa9xSJHbFh5KDpvnbeRxh5VIXcdiJ+RbM9VNqsMmZwCBS DgY/pyRuyiMM91L9IfWlOUwllAEHwedQg+ja4/M1gyiGKr7rmiE5LH9xbInvRR2F rQKDtmU49MS7ybHoLfZ9GXKo8iTNOuXE7OGOx8kIuapiNwKm2wayng8utIxGacoO hp8D0uj3dgTFUZ3pcMSxtjWEtBtKb2huIEhheSA8amhheUBGcmVlQlNELk9SRz6J ARUDBRA5HOgL8Zqy2qknW5MBATYEB/90qkiF+JTQZMN2wwlLkXiadUd1uHK8Um7q f19t1pI2Is0BNxtBwVY1OlrkpFkSkpSUHEmVKUVhHjsHVV+r+EdJ4dTcsT6c5cCJ i7avfz8duVbym09yDLytnBGr3te7tkmalwk3JkjXJhiMuUW9w9woCuVWRexlABDm Md8JjvyLqIe6bNkIcE9GvHhQQUYegYqVhDqzKH+cme1olSYDDjt458yMYo6UXu+x g7gESluIgGpK5hKI/MAw3r/XgOliBa9igg816jrTFiX1oZT6dgDKlzxNS7J/O/EM GOmNi8N03Qx819oKlUaMHAFPNeUfdT74bqVYbDo/GJptzaQtUiMv =l5Xu -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/74A06ACD 2002-06-20 Sheldon Hearn <[email protected]> Key fingerprint = 01A3 EF91 9C5A 3633 4E01 8085 A462 57F1 74A0 6ACD sub 1536g/C42F8AC8 2002-06-20
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBD0R0hQRBACPEDZc2XKdvIq9F4ofeq/EUB8ISFQ6kaVPcb5ingy5ND+0MUbz K9U+q6Ik8d67KfHHvqGn7XTOXxGu2WS6rIa4ElFHtG/9lpgYtOFRZJxM8nv5+zCn elu18skUNup1y3uIwvhNUY3OPSzVkHC+tUPWfW/8DqdJzud/l8sDFDRtBwCgtixB FHJ2jRXInApVzwLcjpgVJq8D/ixzt0O/Zg2p62/qyAHac7M1sEc2QarCAGwRbuNw jHRtglxQw/GT2NACWqy7lVHKd37ciCrXg9QrTjotJtMcoJbCitYvbQo2RHfEeIyN yw7rffTQ4CpB51KxNhUWHcUfe6Jhx2hgHzehJg7hYnbtSv5hJcn2DXMSHHyHwBri hpldBACI7iJxl2MtFUHBo3XW27WYDzTNTh2LUaMcIaowMW/+vIDds6EI71dCAjuU Ai8DcNacMtE0xRdtNzDMS8vgYWBVLkHv2ENVdLfpxhM72iu4tmPKGF5AXK191dvJ qPge41Z2/57191Xt+keYtuSQDtXwZfSu1uLOHBa0BBvmppBOtrQmU2hlbGRvbiBI ZWFybiA8c2hlbGRvbmhAc3Rhcmp1aWNlLm5ldD6IVwQTEQIAFwUCPRHSFAULBwoD BAMVAwIDFgIBAheAAAoJEKRiV/F0oGrNMRsAnAlWdC5LkmEF3hZjNAIA8gMxkfnZ AJ4k6LXdmHMSSPbd48MbDYq67yzOG7kBjQQ9EdIrEAYAib54xuFqjHpvLxXmqFRl qAgAD5XpavuJisxGjfm7aTVWIpR/OOVFYkW59YInHM7dDHL0Y7tQETeEKf9pj6kF TMyWFoBjtdazqSmq2YXOvI00N27IKT9eqxJ/qR8QgIqBMNkraP9QKi60ASDIRUtl OZSfokSbAKkZMTyS086CgWw0bCPXRCvQLHDjga3KCbht0AjrZFkGmi6r4+rXFnT6 D3JrNSQ0Hj2qFEixHtZvXTsqgsEkOEtoe5taMFSygM0jAAMFBf97Ip2a/kPkXNt0 p+2xmWIFEDim7J9Cwl5viTb1t8fOKx69hFDQ2BwPNDZd1HvlrYTpuJ23uTrDOZsw IT/wVc/IQ9nn4+mkxOmq9iTHCBS99OXz4IsODT3W1sgzUfl+mdqJP8xfEnsyqy6G ivOoR3QdZg7rxvOU98HhDQ1iJX3rCtLNFGisrovDF33oHMEE4oHvSMXeg65JXWiU EpEpioINjrA3P+TL+fMv1tb4+wSUPqTWX34Gx4UfDKnMedxl6j2IRgQYEQIABgUC PRHSKwAKCRCkYlfxdKBqzVtaAJ42mqzwmJCpk8fdsfkHUt5uGTN8sgCfdmDni1OD NWQi1mhQOXZX9oGgyso= =PTeT -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/CDECBF99 2001-02-02 Michael Heffner <[email protected]> Key fingerprint = AFAB CCEB 68C7 573F 5110 9285 1689 1942 CDEC BF99 uid Michael Heffner <[email protected]> uid Michael Heffner <[email protected]> uid Michael Heffner <[email protected]> uid Michael Heffner (ACM sysadmin) <[email protected]> sub 1024g/3FE83FB5 2001-02-02
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDp6LpYRBACHINF1K2lJiWCFAgY36X+NFDvgbRe9U7BKy2Q8ZPouMOi/GIwW iocDyVwRnK8tC3D1BM3THs3cFW0aPsSOTGngZE8rTs8lm53UWi1UApTUztjH3odp OynMb/Dj3k8SOWkq5mYYzl+38jsz067tRDlij4s4I3EjwcBQJOhnUUWV0wCgpDBc wAx9TBVCSY9H5YLtCrJbnOED/iwQH58xpFLxQO1FDYlUCZgZaASm0luft13HuCrM Zj2oDgJZOcuP2AshoJXnKavDjwBIvgf/p6cPZ9CS0sF8WI+v/LHN/EUQQoXXNzD5 ZujgMh1w35nMvl7fSJRDaie9HggnUx+ODtWimmROpiicDXb849asCrUUEcpU0V3G wYaxA/96OWzf/TCr6CZABFBCLq2VwX3Run3ttBiXOVI69gEDj95mfeDUxPQH4JNt /hI1B61Ab3/yDWmjzrW7Kb2i9URK4OKw/95YjoC2g0t/CFrmFi82UwMsmUp4mIqJ eUrQ202IY2zCqCEtHcTbUdXrP1eFkGmi77s+KzzzknO63+efXbQhTWljaGFlbCBI ZWZmbmVyIDxtaGVmZm5lckB2dC5lZHU+iFcEExECABcFAjp6LpYFCwcKAwQDFQMC AxYCAQIXgAAKCRAWiRlCzey/mTswAJ9uujS3rA/mJcR8TH33q6SRhZSeFgCePzaT lOAkDv2LVm0F+V5CBex2gkqIRgQQEQIABgUCOs49wgAKCRDCpSwr0i8VsUrfAKDi Cffo5C6Ei5xHtWRA0DpHChOoOgCgqwDeqC4zLU/lB/jKYdGX37VPMQO0I01pY2hh ZWwgSGVmZm5lciA8bWlrZWhARnJlZUJTRC5vcmc+iFcEExECABcFAjp/gWcFCwcK AwQDFQMCAxYCAQIXgAAKCRAWiRlCzey/mRbDAJ9BS5FWb+Dj4IHlRYsr6IHCXxet LQCgmpN9GwBWNxzBlbAQEw1O8anp5xiIRgQQEQIABgUCOs491gAKCRDCpSwr0i8V sfQXAKDW4IsDEKGr1rYpO4IIZPMl2hVLJQCcCRUr0Mfce6AXKUYBfjAlZmddN0u0 JE1pY2hhZWwgSGVmZm5lciA8c3BvY2tAdGVjaGZvdXIubmV0PohXBBMRAgAXBQI6 f4GRBQsHCgMEAxUDAgMWAgECF4AACgkQFokZQs3sv5mRMwCffitElKCHTC+tF8hQ R9Tdb87+PH4An3jlIX+TAD/u6CjyAZ9fR8nEXeVUtDRNaWNoYWVsIEhlZmZuZXIg KEFDTSBzeXNhZG1pbikgPG1oZWZmbmVyQGFjbS52dC5lZHU+iFcEExECABcFAjrF NgQFCwcKAwQDFQMCAxYCAQIXgAAKCRAWiRlCzey/mTbAAJsEIOjmXPBxqyrpS0QF lrJtDENffQCgmWgC/5AezMfJwtu+s001BNw7oRmIRgQQEQIABgUCOs493QAKCRDC pSwr0i8VsWB7AKCZe9euDml2vgJAaaPt34ptUl4UHACg4SZK21iSMmLW+cI6L8iw gGvDcPe0Kk1pY2hhZWwgSGVmZm5lciA8bWhlZmZuZXJAbm92YWNveG1haWwuY29t PohXBBMRAgAXBQI7RpsRBQsHCgMEAxUDAgMWAgECF4AACgkQFokZQs3sv5m0ogCf RV9e/JXy1ixgKCVoqzaIQ3j2MBQAoJwtV25V4gpucQxysqRrWTB65Ja+uQENBDp6 LqIQBACFcO+vvM6/ItdzUhX3vIihiKENou4FchXwc/u7uchsLs589+PwaYWXqtPH E9YSjXYo9y87Sl6ciOagBL6rJZ8oNKc/ylRmx42iSTdAdEKCgK355kmXiWgaAm/W CT5YIETaY+D9TrBDD+c+ofB8vhekxAlr30FAnX6VmUJFi5xfrwADBwP+LiUdpsML kdJj0Y8PmbB3Gxle3X9w+6hBkoP8Z0q5dzG3Y3mGYpgLd4Ytf1KEKUm68BDJgcvf 41B2Y6Ptp7mSRAufbymIRihNKH78fleaziWsux2CYJGZvsJzuYrlzgwuTzcLQKL6 MfRXZHPyt+1SwQeV6pIE0DBZLHg9a0Ak5sqIRgQYEQIABgUCOnouogAKCRAWiRlC zey/mfYtAKCVze8DK+0HP1fTQyDajO7o9RTIVACeIwhXBEbRN8cH0BsG/8Qn5sZo 2Q8= =/joR -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/116C5C85 2002-06-17 Martin Heinen <[email protected]> Key fingerprint = C898 3FCD EEA0 17ED BEA9 564D E5A6 AFF2 116C 5C85 uid Martin Heinen <[email protected]> sub 1024g/EA67506B 2002-06-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD0NjbIRBACZTF4rK66+y43uXsV8CHSefx5lRHaLPFMNga+sUBRIFcwu9WbS KSP/r60Gf/mNK4EUX3/+3gVljrgpAbQL9X9MV/SO50aZM8JMrUkUwjuzzzFKplT7 bdB2zWhexWemFsE0F1G5NpxkqMg/E0aiZb5P9MVJyGLlF1hCwhWsNG0OewCgzQ/b yAEMk03PPk3DOaM4d/Vdf38D/j4O+TJPSjMf58wRGkrT+BmLCvFvg1OsUOMgyQPC Y07yO6WmSiZV5ynqb4bS5m3jfQmG1I2wK+dIf8SHyaVgqZiUpfqrsFV2qwfZXcod C8a8b/kmEbdMk1j+jZ8qxSScrKCHKqdEs1UihCt/F1kVVd8gqYbWouICxF4GoU4Z ANmHA/4xVNIInKVghFk9lMaK9lDgQs02laaTWLWzcSfe28ADds3Jdur0Ox06tgeU zdktWQvRYpIjqiQCCFLN18l6Lc5qyTg6fnx2yWpWJMb/xumUz7A79X0TBN8WG71n zfJLHtn7fCjsi5009s7Ahu//Q7pGN8FvkrZHZ3xNw+3pAaoawrQfTWFydGluIEhl aW5lbiA8bWFydGluQHN1bXVrLmRlPohZBBMRAgAZBQI9DY2yBAsHAwIDFQIDAxYC AQIeAQIXgAAKCRDlpq/yEWxchZjRAJ4s0v1VXJmkm7kj3kMM0Z8xMNoJaACgkcMu T1ID/2v+A1X7+suOzrWMr5aIRgQTEQIABgUCPZGohAAKCRCteU9X9uLnUzW3AJ9T 0Hzs6ZZq3HAYuSVkLReaZEhyGQCfb7goCt5RLbxx+3AMyyX5uh1boQmIRgQTEQIA BgUCPZGlrAAKCRD5Ay7lt7i0eYdWAKDEeKMbkRTSZKsKelQwiD+T3me3tQCfVMLi 9mkjolOAXpAOVX3Igy5QHUS0I01hcnRpbiBIZWluZW4gPG1oZWluZW5AZnJlZWJz ZC5vcmc+iFwEExECABwFAj/Q6/UCGwMECwcDAgMVAgMDFgIBAh4BAheAAAoJEOWm r/IRbFyFjSMAniK+uu6ts+tLchT7+npgPJ0wmyCXAKCmCmXrSUTnPG5DwiVD66h6 aL2GHbkBDQQ9DY20EAQAh4G77oKy6pQB1+dhbbLsfb3UeRWv7i/w21Y1tSriZ5gm HhofJRuczvrhI9V23wRVOKs417TGJzytDIfp/huycYMigAQXikmFBJSqIC2ktJEi 0DGhhne4XBdJENiHV8rb3/mk+Ffes/88DmoU45fpAwY1YN1jH8WO5mEq2aKCjHcA AwUD/jBsaAoUeNO00hwuZuWYNM4nvX57nptObVzP54/TfKs4GmdWzcfI2JB+5eFp rjtNCK+tosTQd73VzMWKk0fwiIew+GsB+g/ibK/WJW0lS6fktW2nPG2mGRblLtf4 8W4ZmtZUqFTBSbmZOcsxQ/LahRosX82NbQyFPwuFMEBqYho5iEYEGBECAAYFAj0N jbQACgkQ5aav8hFsXIU0ogCeLnzxBftyPv5iS52Ear+q/mPZL7oAniB0B6mFArQV gtLJNL6KejWqSh3V =Z84i -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/5FE39B80 2004-12-06 Niels Heinen <[email protected]> Key fingerprint = 75D8 4100 CF5B 3280 543F 930C 613E 71AA 5FE3 9B80 uid Niels Heinen <[email protected]> uid Niels Heinen <[email protected]> uid Niels Heinen <[email protected]> sub 2048g/057F4DA7 2004-12-06
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEG0KFcRBACgVFt+tcJtDzCAHLta1UxWlT5ucTeSfsNyhfYRdoz+IBtJ7bE+ 8ydX/y8ZG9Rbb6SCP176Cq/sHj5hDlxp62k/7csOcLvjqPC5dbZG8hgxerygXLE4 b76zjI5KLOyCDRyqh+DEBO4uuopZ7ACoJMRhCWyfgqJomlGy0Mr/BzfffwCghsiF 7TsOUyQcV0vlxSXBF5bZ5I0D+gIVZSjLsS8IXUIZiK3dRFvHm4aWrcxwlGKsfJ4J wGvOMR5laNHXINUYaoEBdiUaCWW6J5lesluX7/g9+X8t9mvfMmDrVlrJKoc8zlhM o29TB4oL5mM7jHjy0Dw8q/n1i1ydWQgu8a3v7giuoYaOKX4N58qWDDGBbd1jOkol bnqIA/9+kVIr92q211LsR3GJTFMMs/f6nbDwiyZdpzxE7b2Xu5d175wjX1wqJT9C pgS+8p8+Puj+KyVJCGQTw31Cba7W54bOxfbJ62rheh/xVBwfDwdus3XH3WEH9KRm pLXRowTqliAzl3CEu+iFqJKqUQ5AYe0PhhcT1Tbf6PHp7iQdTrQmTmllbHMgSGVp bmVuIDxuaWVscy5oZWluZW5AdWJpemVuLmNvbT6IYQQTEQIAIQIbAwYLCQgHAwID FQIDAxYCAQIeAQIXgAUCQbQ42AIZAQAKCRBhPnGqX+ObgGqSAJ4/ld+x0v6/64Up +1IPobpSdvjgzgCeI7Kp4K1Td7QNQG6Afc9nY4WTj+60H05pZWxzIEhlaW5lbiA8 bmllbHNAZGVmYWNlZC5iZT6IXgQTEQIAHgUCQbQrdgIbAwYLCQgHAwIDFQIDAxYC AQIeAQIXgAAKCRBhPnGqX+ObgIDjAJ9iqh9KLsBXEl3T9U4xsLpqKHoPugCfWm4T jRLWPt0TEGm+0nmtlG1dP4+0Hk5pZWxzIEhlaW5lbiA8bmllbHNAaGVpbmVuLndz PoheBBMRAgAeBQJBtChXAhsDBgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEGE+capf 45uAc5kAoIIA2lj2dycq87whxsoWq/vpdb6sAJ4iHMxJ8xN9QiJ+NiFZkNds4+iZ uLQgTmllbHMgSGVpbmVuIDxuaWVsc0BGcmVlQlNELm9yZz6IXgQTEQIAHgUCQb1m XAIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRBhPnGqX+ObgB8fAJ9xsptfCNqT ceHQzE6KvCAGUvTSQgCeMNrLow2tqvi1cbrKyJHNwb8uace5Ag0EQbQoZRAIAMCB AJMtUeb1EZKoeHhMiaOoIfQP1u9CAEeLEcv6QhqqY/8qQdoQXLpdfjXkKV5K1DcK 1nYzBatU3DIHqP0qVD1Sfm8tqV55Y42wKmMlA0nM/ryJrf+9b2kx0p3Uff6PIErU 6KA9BE8a07j/bJKaA5Qfr2WNlzsV7Pvj7kyx/wCOB1zCPlZGDIlCW0vYrT9rRmz0 EINBEPqJLYAFBZ3eJ1+0a8lWf1ERhmF2nzz9Kr03nN5NA1iiQj3G6M3VgCMcC7XX DgDVycSt7ipFV7+2fUtRxKFJgIwvvkaDKsWb2vpzEcj+D7rAoGEiJmfwBbFDMB81 N9lBLHbAQ8fl9pdaHiMAAwYH/ReHUkVakaHWhC02VAwYudIcTIwJ8FnZ6afU8av8 mHSZFoL0ytUguxeJW4009z4TKU/9EfWt9V2HqnUQpff98YI/ysHkWuGLwplIe0N+ l2TNpIBYoYkyQwjHygqR+PaYG6X7ncICFqJTgbjFDjCPu4v+um8CNoT3dlzqYXIH T2AX9zkS7600dRLqE1Zl684atsYQduYWdVPwh9fzER5zjwRk3My61fR7uYGpxwoc SxZOQOU17s21G/pgqv/oZAPqLdUfLXQ2ZG+naMfp8xMpsbJpWPF0Fnqklx3VZKM8 Zx2MStJaqeoPVDjlvAbLPvOioFCUAcIO62N0IcK4yV69YJyISQQYEQIACQUCQbQo ZQIbDAAKCRBhPnGqX+ObgBR1AJ4itGc8L05AY6C35TL+ilvXDp1uagCfR9Dxmg2u 9RkYrA9581ilMd2RCkU= =x4MH -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/53CCB781 2009-10-01 [expires: 2014-09-30] Key fingerprint = 3AED A2B6 B63D D771 1AFD 25FA DFDF 5B89 53CC B781 uid Jaakko Heinonen (FreeBSD) <[email protected]> sub 4096g/BB97397E 2009-10-01 [expires: 2014-09-30]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBErEzQERBADR7BDREKjIL93LbSG2d9n/wdzYYYwKk41zpPeIWy7CbUgTwDho 66nNEpHQ+bjRK2cV5f24M0wh82ZQJA/smqaHCAGNpL2/LVZumXRaK0RLLpUZHqXS NGs6/4/tBSPMIyLyJPiQC/gWRfevDVHeGKEUyHE7eWqUavuZ6WVnYFhAVwCgj7Iv ZewKUicKkfjG1JsIozm82nEEAKA8rJ3awfRLx8dxlOkv8R2UgEGY8OOLpFbr+P4X vnkxBp/lhlAFQCFKesO+T5ijE+QNsZHdcIcsfbAlfrUGJnd4IrdhXe1Y3yxYI8m2 E4kckHIUG80Y5vqSM/oxn195AbWDCKZ7/y838gr1fU3xEt6Np7VeZs7hSqXaur6n GVYpA/4uoFquzOTGGTNMQQRlhAB+09kt4BMpX5dAQ4J11v5YE6YTikm9q+U2N5IG OZkHOPMSHHlUGjwXQHhEzXuDdUurMwS8YEZzdj2DE6F8S3p3SPCDC5om27mY55/o rzT+J2M1kCh11HLxXmOsO0CcAi/6Mzo7smi7+SpFj4MwuQX+frQqSmFha2tvIEhl aW5vbmVuIChGcmVlQlNEKSA8amhARnJlZUJTRC5vcmc+iGYEExECACYFAkrEzQEC GwMFCQlmAYAGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRDf31uJU8y3gXT3AJ9a owVGvneYWqJMSeg3EL4ayEMiUACdE3r0oaRkUbDlJYLZ8eVgRINpen+5BA0ESsTN ARAQANEvv0rWyXcy/gucz7AZdbGQwjfM+rw2kRDYW2osDtBx9os7DFnzK/AtqJNX vW3YPbLGcrQxw4Tm0Ye6V2edkTSWN/jnvbsLiHrsphPSRi2nFU9XYjdKzqvMy5uM P6iHlQ4/TNoH/kCrFiMLzRvYkllZ6g3y2LnrVXjSgW+LIX8x63O57k44CGx/OeWP nG/eBEccmdRHA5FNYnzVDQxCJG/lrKv/V3L1tYIiKYo9oR7Ma6+5sCPz5udWX8l2 VRmi6pe2nUA6H8reyuIUu91UfyIUn1CcgRnfhu7kJRYcFeCka3p2aLqP1L9dZ+Qu 6YMqDsGFXKt1yZwhzUkmwnB+PgOq4Nr8YxJ97Q7ErjSBtaJ8rCHPVscV/Due5ZNB x0MoFtdu5t6QkDYeJlJlo+gVu3oIg2N8rlHYvEFL6kboNC3b2eejZR1vMYLajrJC hQe8qE00TT3rcnpGUWm6aJS0CTehGZtj4mD4PEvo9lZprC3xY5D/HA1+WIadXt7K /I93BDGw+WXlMq/+q1u9kYJiuCqKnFW9zs58v3tYcs2zorpO8Pb5wDmewAMxEQkf /4PiRB22RX4ivF5fqAoP1SRpgtqe3HjqDcS51FgRHpt8mIk/3C/WHQcNy3nLjRN9 JzKzDdzNRv0U8HO0tibhdhiFcR+3Hyv/ncahF2lMx+cUOWszAAMGD/49jCbzC9D2 Nh/6gOj0arpIE6iQNGZx6AxRvOdU2ibdaLGKLoHNVGqvCXxkPND5ySfnsGvrmzlO r5Dbvc7wfJojqqqQl0O4CfoIOl1oG42qilTiw8ClbW63lmRNkpd3XWGiraKo15fG RoIR/y9b0wl3zcZqqZswHf890XjDen0Ue04fkiRpad93QsVV4YB96oesSXP55d/5 r8ZbOgwgEie210iijW4P1OTyv3xQCvxecRVcU4xIplcfHAKXtk3S62BUJq+/w36U IkQDhX053iw4V5XHgd0U7/JSaOM6bv+KbOyL3cLq+HURohUbgq3NsriR3ZxAZlBC vBchVGJojdZlsBCwjSjdXgcM9GLuf/yR9bu6TAvXyfZV2ad2LQQowtOrEVnteyOl Cy57oQ2NPfxZUYohTu6Bqp3GO9Zr9Q7NsFF0oefm26oXOq2+HW3r7xRyWTr1G4ir PZtdEUO/aG8d2BrrAtAMy8OkgxZBXDqG3RgcqJ1y8nIUAqNRvcQemGLVBg/R0oeT iRpH0s2gvdx9vWnnFk2BuR5b7Qt2kl7s3rfhHqx2Ruc+2kJLqLzq59Twp7G/RmPA ZKat/ioGXqOXgVKypaV13fFgdZb/EBfuXe62s+nZ6Cppblq/k1J/Ok0j/RV1MW4J jSkn3JVQuBLREdGxuhOzQChVIrAmiror34hPBBgRAgAPBQJKxM0BAhsMBQkJZgGA AAoJEN/fW4lTzLeBzc4Aniw1FfFM0wsfY8siG2dk/ZQJbavVAJ0e7JR01Dfum7WB T5KpyVoV09QzVQ== =YKVk -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/4150D3DC 2011-12-18 [expires: 2021-12-15] Key fingerprint = 8E0D C457 9A0F C91C 23F3 0454 2059 9A63 4150 D3DC uid Jason Helfman <[email protected]> sub 2048R/695B1B92 2011-12-18 [expires: 2021-12-15]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE7uUe0BCAC2rJ274YwwpqkG1SvbLlcdJPQqctt3ELAv/3Jhw7LJ1RjMbZs2 3QNs4oz/Qb0Ge2kj6/NhJ/VpBqDcv0av9mwbZvN4NR+eA78Nj8tKgRYB67Daf8EA NtmJJ1sfzMhEceRWjiDK71XBSGSzaUqGG3x2oJBpoWuaRAUEDl7TvjZAOUTw1/1v dXZvO5+cFIlBAhbsuiKSQ5IiWzlv9toqO6biicQak8e27pM8XCfj5Vx/xs3OtSbf lX6QZCIVW5lBgRihDjfR695w1fBe5nM+9GwifIhIBXA2sjAvsb1j+4te9PIpNo5q u/vn/y5Bh0S201zg8gbdAic/XJ+OpN5CptJdABEBAAG0H0phc29uIEhlbGZtYW4g PGpnaEBGcmVlQlNELm9yZz6JAT4EEwECACgFAk7uUe0CGwMFCRLMAwAGCwkIBwMC BhUIAgkKCwQWAgMBAh4BAheAAAoJECBZmmNBUNPcKtEIALSkfF5Sem7A9X6f2jN3 u0/sshrmMzM2irUiFvgbXp4F5vbZk58Nb3O35ds3rSZ9AZ1kbrAWvXnbaMH1pyzo bnx7HNkibErZ4UmIG8i8b9Vrtllho2iIVaHJlBEAaq3OlCXzkvKeQbR1n83V4jB1 d+zeMRTzO1ItnxlqZajxDpiHAgopP7covZU456YvnrmI6Xf3ZP0t7gJCotOdYcTO EY97pEJQKT8CuA/j/rkSDW8GfUBb+T65L/h2zysQn8pMQfrLO2+wUwYUc0QyGZSs 9mdnmZs4XQmmQQUIwyzftzEMjM9KJKmJ6qhZ+Apm8UZ8snKy9jH8AWS2O+SaGrgP Ryq5AQ0ETu5R7QEIAKpA5Or5loBPXoTa2UWpSI22MHqHlKz8wHDjyWe2yyK13hjs VSi31Dx0KZ0K0PMD19OUXzsAb54UQSZZtbKjXdJeiJpzyzh9eVEBy11tl6AC0H4o 2qWLZFUOMbxaGDvfKWf6xkzIdjiPk+mBUx6AEsDUHX0alACmBgiulMzof9btGgQc oYcR63kscoNz2tx7M1pJ6Za50Eaal6DZCYkmp4yHv2xCkZ1cnTH94mN5YwmlWotS ysMUy+05qTrL5ZXn+Az1Bewo62n1pkOHWIgiogcTUpibAflZsgI9iFEQbJns3U+C kyQh9xiXs6I2CHTFTngG6S2a1NcFGplSxEBVuG8AEQEAAYkBJQQYAQIADwUCTu5R 7QIbDAUJEswDAAAKCRAgWZpjQVDT3POnB/0XZUzuA8ytqhnzkxY25Kr/Oc8wczM3 XYs4DpL1TnghePjkjdEKhbC+1qDyg1kSQmf7L/uGV7n1pLFLBLwv72lYnaAMmbOk Xidc1LhB4YMrxc6tyFfER+ypw26FqfuvNk3QAGdqWvFQqq8dSyvA8KKDaP3ehKha /pmEJOC80jqIp5Ofa7J2QMPJ/kfegsjAMbQEqgcBmt8Rb7xM7NrFkPDcWRoB75Ca xoRV2eiDxMmNoTPDnjGyycndaaOgoAhXwpoAnmxIVVHs26qOxOyoq9ZYhVgx9o/S dAHXDxMry5RLmXQj4uDPTrUvGpxcEbOzVPBWrmoqDJe5Ll0rwaQ/DXZG =hr4n -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/8F1CEBC4 2012-05-22 Key fingerprint = 483E 9E6C C644 2520 C9FE 4E87 9989 CCAF 8F1C EBC4 uid Guy Helmer <[email protected]> uid Guy Helmer <[email protected]> uid Guy Helmer <[email protected]> sub 2048R/2073E3F8 2012-05-22 pub 1024R/35F4ED2D 1997-01-26 Guy G. Helmer <[email protected]> Key fingerprint = A2 59 4B 92 02 5B 9E B1 B9 4E 2E 03 29 D5 DC 3A uid Guy G. Helmer <[email protected]> uid Guy G. Helmer <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- Comment: GPGTools - http://gpgtools.org mQENBE+7tGoBCAC7+hE4BIgc5qCn78MQ4cCtCC+hHhIx1FGuJwnchrD7SprF9oPG YYUGIlxq5xdS+SIhCPWlRCZh6iyOgnnRI31Lc0ZwU61iietn0zaT6foJiOmSwmeZ chNSeVY1jd2D8Kfj5H2mcLsL3ViBtPG2SW6ru3cWbH86fcYSSFQzOX29MoaPkV1u WNh8nzT4ztbzEz9RHZni6z2bPxMEwkDkU4H113XUK9VOxN/+XeUSVQcX1EPxqqYu xBlzRKbQ9WdsMMxp5S38NoQQlg36n0pISIFVfUdO/m9HX8fhkzYtfcdb12NvBZpZ /TQk3B5t1x/i1BR63RBPFmddqHcFyrT6m3YxABEBAAG0IUd1eSBIZWxtZXIgPGd1 eS5oZWxtZXJAZ21haWwuY29tPokBOQQTAQIAIwUCT7vZWgIbAwcLCQgHAwIBBhUI AgkKCwQWAgMBAh4BAheAAAoJEJmJzK+PHOvENL8H/10XQDIj6H9c2twS+F2LejHD /ucyN1WjN/dMTH4W3adzqtPSlCnLFvzIFY9udxkHQiDY5l07WLAbPr60pR0h2f6A bO298TtX7j/7ciNzhMyyakucla0S3y4JMiVg6vpPb+eo3z2RcgDSyLRY7DV8CHHn EzBFbtaCtNbULprtdXlN7y4T59wiYyixXKAS5J31iOfDh9YVkaQBfmT6grmVhunf FyIpPo3jjiHY6JR81mtX1/P05X4oUpgVJF+2nj5f5VKmBNmulJk9w8XlA76Ct6gM ZiFF02gBmi4xe5QnrOZZewH2zwMsPAA1Ltvm3lmO5HLQwLaLU9vadkCFwuoz30G0 IEd1eSBIZWxtZXIgPGdoZWxtZXJAZnJlZWJzZC5vcmc+iQE5BBMBAgAjBQJPu9k5 AhsDBwsJCAcDAgEGFQgCCQoLBBYCAwECHgECF4AACgkQmYnMr48c68RvCAf9FANU RoGTxm+K7VZZf/zZuiSuNtzDV+cVfRvTLIjlO+qU3z45iCTzl6ldrZbhATQz4U22 KyBlURCuPbZikec8XcKZo5j6NPe6g9bR22dgqhx0btwGZPeiMf7c3lHvuq2nQO1d GAz8ZWwgrOKfZTqRQLhE+CJZyblX3u9PMwel39l4wXXkOaJ8ln0IqXMy0KL2YwIC B+55ocoNFRDjoyv1mNTLRaTL1PzC1cLilmXiiT3ws3FBchb0rP80+mFRU4+4gt5X 0FrJVN3ALsnLC1NWQkAK6XGNBCaklM/feTPaEsv2GuttGvlBuaI1lTn01/B2aJlR BA8QioJmHYg6MzygVbQrR3V5IEhlbG1lciA8Z3V5LmhlbG1lckBwYWxpc2FkZXN5 c3RlbXMuY29tPokBOwQTAQIAJQIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AF Ak+8DFwCGQEACgkQmYnMr48c68QClgf/faCi2pId3tPhXNFsly7n+eWFJ3TOaLSi 7Y6mQMIFlO5Q6R582xJj9szQR2BuUFeV/TzJNJz0X7UbsgvHrAfDlxByp4R3RL5A Av952UlQe4CTEIAcYB4714iSdbIM5WGtKog6jYale+ZUT4zgit8vhMHmjcw7Dviv OYFRxOKZ3bV3NCXZdkLFyLRUQUEooaUNb3tBbl9SOd2mY2NVMxXhXA8NQxRpNkWz WXQpISbfFI8oXkRVPl5z6oLaJE1D+TTrV9juo5j4qY47yXr0FPItd+wQ0QhxwuH+ goHdJFlZ2R03tcnfg+JtXCslKYAHk/mKJXwFCVLc7l+NjTud6y4PVrkBDQRPu7Rq AQgAwcKaIzsFOXe5xRo8RxUpTVXUnEish6KCcaQL+U4Hat3Satg/Pk+8BRI2CgJL 7GFgmSYcoRtDRYrPkv2I4yNJIVHW5CvAktUCw8IEOdav05bO7Y8QUI2RkQOyDXOa JXoUk5VTrJOjV/J7SrY3dJ1AaCDsOtRQf8ZKaU/rW6CzZE+biFXctktWhCzm8wje uyjA0Qw+AZ6htOo24RqaFrK0DwTu9wtMP3m5M25MimiA/pXQ2ogJlNVHOywKhlYl tEEeMwm67IFgwIzr7fmbO4V2CJulS0JKVvJFQfC+eE9oTjJN65GP93hfUARTeeL5 R8a7uQ7wcPKfRIm8xpEilip0+QARAQABiQEfBBgBAgAJBQJPu7RqAhsMAAoJEJmJ zK+PHOvE83oH/0xBhkMPYCw0Hz5xbBSnh0F0nM8EmrtjJaKaCnBCSDOEX7FoWjnw fsC4eNrCtv9pnk+7c5IbXxUO8bxeNmhL5WEwt2YteYgrq4oTzTtP5V7XufXXq4oX MEfU0sy11OTMz5nHxoV/NMlMKCdQQEy4jIXV8yrB+2BpU90u60Tkis5LL/jvuQi4 24QTk9VhOEKwhHbrW5+iOSs/KBUdSEO8TqjjiNvpkNR6AST2swjsUSoqKtIOcnYL OaMgiZygedIDrWXmZ0cRH1ehSp7tx4CIuEeF3JJyAhOzyYgm6o9l4zh97ZehMDaN LHJVsBw1wu7qPsG6jx0IC/eMXZKIPSk/c+s= =p7q+ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/881D4806 2003-01-09 Maxime Henrion <[email protected]> Key fingerprint = 81F1 BE2D 12F1 184A 77E4 ACD0 5563 7614 881D 4806 sub 2048g/D0B510C0 2003-01-09
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.2.1 (FreeBSD) mQGiBD4dlrYRBADhXves+DDbhv8dD1LyC7e+RIASp8rEN0mJDVarhEy45KxRZcD2 hE9dLXZU/5hcdK7yfatneg5xGFiedFJ+u/HcsMkxeb60+RUcF6Ec5L8PJmCwIQl3 3xP7UmC203YufvyidQSayOk4LDyg5WVGEXiN5KuShJC+feAwvtAao5eHnwCg5CmE y6rO8Bh/K2MQxP8CXCoLG80EAINd8twMsRIIqAxtVWeG0yudtgYdvhpbGrNKoq2b cxmfunLAQmHim1jL5run1St3ZACyuP4brckPiBAOxVoRcIMOGPk04Lw3blKQ7u02 6aOKKlGvW2pF5/Wh6v/q7gzAucn1HJYcGK7Xc8IvfdIZJl/tTeCo0/smxND4EWhU C94zA/0bvNhgntEwLF8x6UJnZXfQ8/LGl/NkSTyTMA1QqRrrik1oN4mYOAHE05Y4 Oija6MSgD8YDRcrxxr8Dwh4pqS/+FlEsV5y4A4OoYbPW5L6FAbEpKO86jbE3FK20 lX9Li5+woBWaTuLRcU2Tk69WLeOTdOrs+f50S1xWB4DJKBjmu7QgTWF4aW1lIEhl bnJpb24gPG11eEBGcmVlQlNELm9yZz6IWQQTEQIAGQUCPh2WtgQLBwMCAxUCAwMW AgECHgECF4AACgkQVWN2FIgdSAaZtQCcDxSj1KNFQXWXPl+U27Sl2/IbKEgAoNDq Yn86zUh4NPJZJb3P174CFRK0uQINBD4dlxYQCADaMWMhYNWemjrdioJoZU3vYkup IcQg422OZoxWYcUz6zKVHZuPdXSAFO+Edrt8QwvYrjhSiOSF9NNnFgNGMBGmqOg9 Kfk5rIKnENNQP8H8CZtzlDjJXVoMAeTfaeV9+ztHwWKk6XagjLApl9Fx42Quu4Po JdvJNHhq5Bf299jecRsWmSo7DtpNnzGC2HFWRkGdkkNmpK7hFe9m3YsFuP3nCFps RXCFMx9t2Bneh1eM+NqogjON+vyZzOUB32WY+x9Kz6Xf29auU1PSNYz+1LC7JAYk f4CrFA6wexQHKe/nXwlik3/JeFSPAsp/VsmvaHOenZTOfmtBT4ruOwqn8DGzAAMF B/4tHAo7/sAMgvkz0qHAxV1DjOjB5AQSs4phksYWYN1uaJq2//oD/jjifmmkhAq0 JLEeKDquvuNot9dtJ/75DF/XNa0Upt4Hq509Wm4o5NBN/CxRzMn6oU+K86S6RF1x JidNNI+CsTfdkNnCn0x6OjRsG0j+CUbwRrs4CJ/7ZWkuMCclLBKoI+rAwd5YM4eI noSrSZ4/2Uct7CyVm2aGIh5ofR75L7k92qZ/D5hN0wwKrL42bO8gJqPGPgsCtr9m OcT2DtOxkS9ir2QRyD7SelKM4pmSbxvk8S/IzrNS7dvKiO0xQXsvf+sG9rZOJ2vF i3in0uB9SeXAzsqNCqtEkSbeiEYEGBECAAYFAj4dlxYACgkQVWN2FIgdSAadQACg z3dGbsy32PBhRn/t1lXp1120VrAAn04hxsFX0HEKt6sqAcpIuzdTVrEM =8gWX -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/A03F07DA 2012-12-10 Key fingerprint = 0258 F2C7 C123 E627 9E14 B4BA 270F 30AA A03F 07DA uid Wen Heping (wen) <[email protected]> sub 2048R/CFC8D6A9 2012-12-10
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFDFsuEBCACSJ//UOaDvnQbfeQIiQsRcg1fc2GlcyKnJxTv8H4N0NVw4c579 D/zEPhRIQTcwrEL677xdeNWtxvYkQeePdrvu4OhXW6IfrZp5H8tedMNqh34MxykE J3EC7HmH8J85ondMFSsg8OtBolpDB7KLMJBuIbQ0GDXniijcp9muVVbiRCZ7vhqC 1J8BJKZDGALD7GLttTfkK56xvp2H69aodYBeNsJcUxAj09gYW5rBLId8NgyPwQhR vR7C+VQgz1vlVT/YTvzMX6ZigbaH2nCJTgC1/LK1HJT9hkJIeUNskZwcAOoBA2L1 DXhgTdkxFKVOb8F0d6wvYSdeVfAWZc8xzWVdABEBAAG0IldlbiBIZXBpbmcgKHdl bikgPHdlbkBGcmVlQlNELm9yZz6JATgEEwECACIFAlDFsuECGwMGCwkIBwMCBhUI AgkKCwQWAgMBAh4BAheAAAoJECcPMKqgPwfafzkH+wWio4GRrgvK8K5DoIkGgmk4 bVdXd6g9T+sVGw7F5HTkCbiW83BAmTb49a8uDI4qRSDIEPLOSBbbSlzYcBqHZ9gf 1/G2JaL6UzlMhdoUZUS3biIoGKFDGXrKBmFoSvMN3MKNnAajAP1rTyzk2bC5EhNV CsGL+KOC/JXBfHZ/wxXTgk++Wvm8bcZDXmYMptWsRaHMZKbkdakX9dmPtHmv1g7N 3AIPSLrrjYDdWfejK8KvPKQuHnq0A9tLS4NOnSY8Ls1Wg3WfE1qvYZ2oEziVrMEu GIAxDQfFAN31GR81lDFW9FybAPqeuakD/cUuuyJ+15hUYb4fcmk7RHbxQrTcfHm5 AQ0EUMWy4QEIANmhcffZZcinDeNMTFba+m4hSV28diXeGyoXfeRWkdk3+fOGywNl +/HfYrXXSoDcfkmooUljMvGCj+vupP4obXeOY4MrcnzUYnUWjpfY6mQXejXGgAQy x2lcNF6W/g8jl80nnz+hfTEncg0xzNwFDE9ZzR7+G5x6uub0Xl30Rsc+3z6eabFS AQ5fFw1lEvt6Y8CGXCx86CPB6SQIJ0FddoHPL2LElSiuenaS7AKnnau9XqxwouD6 MdFqDQJ601lZBhEWmIlWRBj9YAEwwgnvK6/OFCHcIRjFl6beQVFO2xyk35SZOq4I HL7GPs0+bg5D+f7a3ugzqt876LlMVuUQmEkAEQEAAYkBHwQYAQIACQUCUMWy4QIb DAAKCRAnDzCqoD8H2v+UB/9mpvePA5lZrFne+s/PyTZu0rI7+Mj67Yj3DywxVf3j pqzjeRlZgVoZ0HbVry+2wUk1IN2eWMJy1PECTAyK5tybdtl8ckNvGhrMi9ilF6gk WIn9wXRiduuCZ0hj+STtlsdGBCThz9JqMVr093uqHqe+kB6TSu6/uVMZ3LhyMEeQ oUkoDMlG3wMMKpD/mzLeJTTycXSZ9VzDmQMOOZAC7UypLri9ykjRAVc8J5c+1RA+ +dsNw0DTEtGxHsObfdTlrCP0vohTxOdGjWuXHKYTttrM5koc7M2eM4WSEXkpIKb7 g7S0ogl+qD7RokD6CChkH7fnFesT2ksU8KvE/0a+/8Un =7kGj -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/F7CDCAA1 2012-08-26 Key fingerprint = 0587 E730 68A6 2646 A991 505D CD9B 3A87 F7CD CAA1 uid Dennis 'dhn' Herrmann (Everybody wants to go to heaven, but nobody wants to die) <[email protected]> sub 4096R/0A6D554F 2012-08-26
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<[email protected]>
pub 2048R/37BE2DB9 2011-12-01 Key fingerprint = 8A12 7064 4F3D 339A 191D AD52 30C7 858E 37BE 2DB9 uid Justin Hibbits <[email protected]> uid Justin Hibbits <[email protected]> uid Justin Hibbits <[email protected]> sub 2048R/A8DA156F 2011-12-01
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<[email protected]>
pub 1024D/CF244E81 2008-11-17 Key fingerprint = BE9B 32D8 89F1 F285 00E4 E4C5 EF3F B4B5 CF24 4E81 uid Peter Holm <[email protected]> sub 2048g/E20A409F 2008-11-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEkh8ugRBAC6djNybj/k+sW8z4TZeC9M1PuSSuJlmCxF/h35rN1bJMHiaVaz umG5AjNwYtKilXO+bpj3OUQDz86j/vMpETy44lOaxr5f65lkP/tXATjVpSkxuimp vUHi6wRaCHLbyMGHRfuOX1E1yrYm6E3UvjrNnl8bhOJ9paUkk3El+gKm/wCgtIS4 07Fb+Mft+7a9Ti8cUKP4rSEEALh/nGAsKInUmw3ybZ4c68yVjOUOhbDgAjU8zwb7 vVzVpCythAEailx0l5UDzVSD8oszLiSDFLf93rfS7AyWx2/C/6kayLH7nYnmHmI6 Evv/uZ/o4Tw8l2BmqEMwMIBRi37et9tTJNEKMAAUaah81KRcE9CPp91f3oKutOAq BkG6A/9e2II1FvJRLzeGRB4FuNm4yqnRvA+LCPE24qEWGoVu55KvSsrb/kQEUxHh 46K6d1UCWYIlAPhV/CGstv2CfW4zDXOBlDg8kdQz9VFlzyz8sSs6ZP6b7kUzrSRp tq6mgiLKaTFYtm/BaUgYXpSI2uTlgujhC2v40pzeKN65Ph2H8bQcUGV0ZXIgSG9s bSA8cGhvQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJJIfLoAhsDBgsJCAcDAgQVAggD BBYCAwECHgECF4AACgkQ7z+0tc8kToFTVgCfU8q5hy5tJ9ZEs9ScXPuIZ/vA4XkA njuLqq+giT5SvrrckuA8I1iFgsezuQINBEkh8ugQCADzK4XaJN07zeKtivb4sass fejhXyMJ5kwNqK+DRqMcHkbh6PCKpoOo7xjnk7e1MdTp2UeGifzTUEXz9iPdLFoW 0O2iCppIgUEVfeShzOqEtiP0qpdDmc9RHbA17R8V8jaNWxmJtbI3Oid/7ubVPBfv KkPlsyut4A0yXBSxhqpLnaDpDVfMuUFbdMK+aYLABZMQaj6SJOf8bsHrBL6/j05T A0ZJkwPrV+ATbCXLUCAQ8q9rza292OFdLq5/iOQQa8mXhR+egd+NP1GLDEze/kx7 5gNQJLnfS5GUBJMSIzLIC5Nn+WPzdmK5tMT/NLhzRbtqmWoAfQcW/kcEAUlNbGJP AAMFCADe1t3CP+Utgy0QAmqkipgKwvs32CsRgye2ocxtrN8GRaunFSutyESBNCHP VH/jh2rTZ6KjVvgBcruaT8B83YtYgOnFpe+4FZr7iwlSVL1CcEwWRDD+oujebAUL MaLTcToWbggvbUbOtu+VNKooDYFbFoZvUs9I/49RRdcLfC7dxOfl0+51WTUTB4g+ d/rxtExYkvh19QEWsj6lyR6icwRhtrn2S+0oZ0JQ/mjCoqdrGNiiGPXzKrUnpSK1 b1hrtZ3E5BoWJuXu4Y4hHHzoxGW3ggVeTp/+X2K0DfKu0itGJML98oe1hXbbDaht O+s3+Nrro2j0Hx3JiQB1wB9merWsiEkEGBECAAkFAkkh8ugCGwwACgkQ7z+0tc8k ToElPACgjLamE6WKd9zLyyoyZcV2H55qlZAAnitC7OHmghbHiw+LuQZ5Je7M6sik =KODn -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/0F55F6BE 2001-08-07 Michael L. Hostbaek <[email protected]> Key fingerprint = 4D62 9396 B19F 38D3 5C99 1663 7B0A 5212 0F55 F6BE uid Michael L. Hostbaek <[email protected]> uid Michael L. Hostbaek <[email protected]> uid Micahel L. Hostbaek <[email protected]> uid Michael L. Hostbaek <[email protected]> uid Michael L. Hostbaek <[email protected]> sub 1024g/8BE4E30F 2001-08-07
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<[email protected]>
pub 4096R/CC57E36B 2010-09-21 Key fingerprint = 8AD8 68F2 7D2B 0A10 7E9B 8CC0 DC44 247E CC57 E36B uid Po-Chuan Hsieh (FreeBSD) <[email protected]> uid Po-Chuan Hsieh (sunpoet) <[email protected]> sub 4096R/ADE9E203 2010-09-21
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<[email protected]>
pub 1024D/2897B228 2005-01-16 Key fingerprint = B6F7 170A 6DC6 5D1A BD4B D86A 416B 0E39 2897 B228 uid Li-wen Hsu <[email protected]> uid Li-wen Hsu <[email protected]> uid Li-wen Hsu <[email protected]> uid Li-wen Hsu <[email protected]> uid Li-wen Hsu <[email protected]> uid Li-wen Hsu <[email protected]> uid Li-wen Hsu <[email protected]> uid Li-wen Hsu <[email protected]> uid Li-Wen Hsu <[email protected]> sub 2048g/16F82238 2005-01-16
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEHqTvcRBADP+Q221qvMPX+Dweyy/FN00fiDzAcR0jLz6wdIMoyVB9A88STi QX5dNU97F8nDpefPL1WD3K62je3enfakfVIhJ0MvYFQXzJhNtLy3kI61ZhUa4UuJ I0u7XeQCI/yMDZUxo7H2H1A9CkUweRs3E0MsgqDCVDBRUi9tT7/rjhDacwCgsJqS ARkBCjY20J7zlyH198zKJDMD/18hFpRDQRd9yvzUbKiOEr4A3/k3uTqazG7Oyyq4 6Q8Qk1T8H319u48ghYHH390Ectpau/RnDCWO2gie2zyuAwxcnSI3TR62OJ6MjPjp HX6Qcv12jLGBSgFB2y5tAU45775dSgK0I7L4lWvSUl4lQoMeGtmw3G4R9DPGD9LY ROxRA/43ZE6W6/TxZWNuB7HchliXJbJJpz28rGTk+YpcqT1eYPr/UG5xYHA/ng3V v0nvvnQC5yg3Y+QZzMUGH7yHXXsjwhjloqE3tnASRmVH/tLSN4EdqMzSj/cNIhbh QeB5/ceJn2b/LaIQHHlZRqQ/GcTlBc15KuT22djds+EuOmZ6cLQcTGktd2VuIEhz dSA8bHdoc3VAbHdoc3Uub3JnPohjBBMRAgAjAhsDBgsJCAcDAgQVAggDBBYCAwEC HgECF4AFAkYR+1oCGQEACgkQQWsOOSiXsigCXQCeI9z4NhiiMWt0+KvSpJgb6cay 4JIAn1V8pCjQBzl9h0LYHJUYRMloZW89tCVMaS13ZW4gSHN1IDxsd2hzdUBsd2hz dS5ja2VmZ2lzYy5vcmc+iF4EExECAB4CGwMGCwkIBwMCAxUCAwMWAgECHgECF4AF AkYR+1YACgkQQWsOOSiXsigUMwCdG9CjWDICffzc6Vf8piqPltHR3kUAoK0L5tyn XSvubm3/ZG69ib0lIRyDiEYEEBECAAYFAkMQYP4ACgkQOl4Wbdx2/rkfFACfQNNe 0TQp4hKFtNv0vkfrHDtyKOYAn2mIMC8V3kLDWNqvMUc8/5+xsruHtCFMaS13ZW4g SHN1IDxsd2hzdUBsd2hzdS5jc2llLm5ldD6IXgQTEQIAHgUCQepRxQIbAwYLCQgH AwIDFQIDAxYCAQIeAQIXgAAKCRBBaw45KJeyKJYxAKCFkYQ+TSt4kRH8w+ACWxs3 6qyrVACfdiuMVpWWxB+3BgwBFCkUuEOVl9OIRgQQEQIABgUCQxBhAAAKCRA6XhZt 3Hb+uSD2AJ4jZxlc4Heyhw0Q5d8d2VuVI1vergCggEKzeYfumSfnuAjXAIFSGpS7 DgW0H0xpLXdlbiBIc3UgPGx3aHN1QGNrZWZnaXNjLm9yZz6IXgQTEQIAHgUCQepQ xgIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRBBaw45KJeyKKjJAJ9Flo61BT2X 3BQ5u5iOnusFx/4q6QCgn30dMlmfOF0TPwpWsTCk9GbUMi2IRgQQEQIABgUCQxBh AAAKCRA6XhZt3Hb+uaKdAKCkrpXaqUB55v7uBABMnaqgfoZB5gCePmp/WY3HFXCS 8xxrAA1BLaTk0Ay0I0xpLXdlbiBIc3UgPGx3aHN1QGNzaWUubmN0dS5lZHUudHc+ iF4EExECAB4FAkHqTvcCGwMGCwkIBwMCAxUCAwMWAgECHgECF4AACgkQQWsOOSiX sih8KACfflM50pxzQ0d2X46BDKZFrFXK0dAAoJp2iqma9MK+pozZrHNU5yJrZ1Dw iEYEEBECAAYFAkMQYQAACgkQOl4Wbdx2/rnwwgCgg3/pjsqknto8cjq1xeOUr24O i2oAn3RKRLYT2nN1LrsxljBqNspO0ZuUtCNMaS13ZW4gSHN1IDxsd2hzdUBjY2Nh Lm5jdHUuZWR1LnR3PohgBBMRAgAgBQJC8jOKAhsDBgsJCAcDAgQVAggDBBYCAwEC HgECF4AACgkQQWsOOSiXsihfAgCgnha7UtlqUbcHsJIalJg/+CeQpa8AnjvsJo8I IYl//PVhLHS2iO2m+7aOiEYEEBECAAYFAkMQYQAACgkQOl4Wbdx2/rlIowCffTdU DbUBqY4dn/d44aygEZUfozsAoIXB8+STvXmn2FTbqE9alVpVbWkqtCRMaS13ZW4g SHN1IDxsd2hzdUBpaXMuc2luaWNhLmVkdS50dz6IXwQTEQIAIAUCQveLcAIbAwYL CQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEEFrDjkol7IoAT8Al3omyiFP/jRhmTKI Az86Bj19h8sAoJRgTS43Dtp6dGMSbu1I6/elRAJoiEYEEBECAAYFAkMQYQAACgkQ Ol4Wbdx2/rnTkACfZNFUg7qbpMP52aeXAzbJj0e6OGAAnRcK6A3SR6medWLOu/m+ 7rbTump5tCFMaS13ZW4gSHN1IDxsd2hzdUBjcy5uY3R1LmVkdS50dz6IYAQTEQIA IAUCREMMaQIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEEFrDjkol7IoJjkA oIhMekhRo0dGN0pnP7oXQQfnYQEGAJoCjUvsMh2a9gxy9693BgU5r/lv2LQeTGkt V2VuIEhzdSA8bHdoc3VARnJlZUJTRC5vcmc+iGAEExECACAFAkYR9F0CGwMGCwkI BwMCBBUCCAMEFgIDAQIeAQIXgAAKCRBBaw45KJeyKAQtAJ0a2zPC9awCbSB0zgrs Bl1Qnhd6GwCeJfSTTHOQDzPQfe4DI59amsrTjZ+5Ag0EQepPLRAIALLltW3u2Laq cKyQl59v0+TfH8Zt3pRPtjLzuTe8rSdPueCZuAMAntHFevtFGhwLseF305ytRb/y y4CuGEoU07qjQHZdGuDTKsZF1Yjdj1ANA7J1uTOlVVZxYLH15p43prUBbtUwL963 r2Op0tltM1QgEcvqg7pbb14H4XiI6n23dpwmvqMsccDxzxQO2uHYE3dYh7hXLbiA jW0+KB7dw33f5zIYPuv0jixsPLxx+S4vp9jd5mr+lMm5C0PhyRun/doAYOP+UEwh b7A199br6mGHJgsOX3Gh76NukpExMOIdTLNd+Dkf4BtoQyhSnbz58bQE6UuNplb0 qp784OllPJ8ABAsH/A8cJ7GMutCmMQOrMZkcR0OYc4cOjFGK98CFp14/VvTgIMbs joMA7p/U8COrNvufEzMvHoeuTWGVY4rCgtggGuAyv7FnIMoldUrSpYNvKgHve74D zKGk5RlhK8V5lTtRnuBdJ2JN4ugxTODeCnRaRHgUDuErSOYEhgXznwBlx38Qk9BM 82FBNCThg55QHhFktXt7YMsnxJkrek52MrH2FfbJwEMo29q+aaGtQCLjlqKLlfDJ hVXaieoeskOZFDMt2JPvXvtthxRN6IYPKQ02AMKroNFKQn0P5DFyT0VhxgkjWsLD 97CP/CSEmms8BopwGjaulFylIWLRwdS5ej7Sz1uISQQYEQIACQUCQepPLQIbDAAK CRBBaw45KJeyKPY6AKCIR/vAbC8oqyr9HrlhDtfxHgmf2QCfZBeYLPercGOTQ2OX MTZHdxZQQYQ= =uV7d -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/4E9BCA59 2003-09-01 Foxfair Hu <[email protected]> Key fingerprint = 280C A846 CA1B CAC9 DDCF F4CB D553 4BD5 4E9B CA59 uid Foxfair Hu <[email protected]> uid Howard Hu <[email protected]> sub 1024g/3356D8C1 2003-09-01
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD9TDBwRBACs0PcLGuginQVidy1QScHuKS9G7gd8smYI2FcSsk/AkBhqIkWv hieu+iXlpxyZYCDDPKPhieDLkTHc9hYOGG7oTJhBMXUrUqBIk+sqeeUAl/eh0grX wUU2khj8EkYC1f6p9AKu25zoyXHxjnKulMhrZRIItg7jVJLaFQn2A9KCkwCgyVeF jCegTvZWikBuoXmDI/K3OuUD/19Za3DHV+H0dmfAG7JdVwTW7mJ3nCWJFvlpTSSU 9Di4VCVj8kUGmo/kRgpZ6gwlCaPmwh/wWiT/vHVQqdd+EH/k/ITs+zWrPOnWCxLY zV0BEKtW4kdaP5H9ttNh3Wj1GRpyxh/FrMP7zJfdgze2WoRY57j+H9Kuw2s/42RU zYDAA/9wIriNXAj6pFB+J2sCqYXIMNDNDQh6lYFNFgTS/WPYJoA8PWY62oFc0V6n ES8GOXjyEya428vedVy/G9kj7cB/IiTTy8Hj7JjhUk/rSIPXMMtNyvM6vQ++f1IV 1qSzR9sijpmpk/M2RusUQwBP131PnCzSCmAZB8gvcNSlbA9gnrQmRm94ZmFpciBI dSA8Zm94ZmFpckBkcmFnby5mb21va2thLm5ldD6IXgQTEQIAHgIbAwYLCQgHAwID FQIDAxYCAQIeAQIXgAUCQh1SIQAKCRDVU0vVTpvKWcmhAJ996hkp7RKzCsO1R4wh 81QBqxZ87QCdH2JXwcclPFAF/XKpS5kbQbKdW8a0IEZveGZhaXIgSHUgPGZveGZh aXJARnJlZUJTRC5vcmc+iGEEExECACECGwMGCwkIBwMCAxUCAwMWAgECHgECF4AF AkIdUuwCGQEACgkQ1VNL1U6bylmL+gCgle9BEVLP/FKDTEsz6pYH/hdVMzgAn2kg KyplWAdJKjQ4AHlKOzi1DKj0tCJIb3dhcmQgSHUgPGhvd2FyZGh1QHlhaG9vLWlu Yy5jb20+iF4EExECAB4CGwMGCwkIBwMCAxUCAwMWAgECHgECF4AFAkIdUiUACgkQ 1VNL1U6bylmacACglEvdvs5wMSB3EEP4qp46uKdXlt8Anivwqzf9dhjw07omH35k Ll7D5wGouQENBD9TDB8QBAD+sEewy1REDPQWycqdZVWzxmiS1X+TzSAgfcc7/QKv AZEsGADvhHcvaACTBuYRVr8DyzUxFUxeNByWSkLe7N5Hmaqauw681zsI+2osfXbW Jkp3JUybeFSIN5pacLNP5+DEAOzzphCF8ALv9H/MB8J9dRhZwDkY7SKt/cSNh4Cz xwADBQP/aD4exhzoF1iXR4879xEAAsRy3CCaoiPNeE4Aj9mWmjqEMzWYOjDeZ2zF W8Jrn2i+tOVGFpg2FKwtuqU8JRs/lqbedYUlM3UQl2pqGSV2tAziuLKKkzPnKWo6 79hIhrjQCEPk1MqipoL6l8qZb8vbBpoCee5NF772jR85ai0ZdGmISQQYEQIACQIb DAUCP3rhagAKCRDVU0vVTpvKWU/OAKCE4tEk79yRFtmSNNa+ddafxcuyagCeI9MA byQOCAi708pPSIquH3oiM8o= =P50z -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/350EECFA 2006-10-04 Key fingerprint = 1C4D 0C9E 0E68 DB74 0688 CE43 D2A5 3F82 350E ECFA uid Chin-San Huang (lab) <[email protected]> uid Chin-San Huang (FreeBSD committer) <[email protected]> uid Chin-San Huang (Gmail) <[email protected]> sub 2048g/35F75A30 2006-10-04
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEUjcNoRBACNcrOsDaRrFQMnMjnNViPfgBakMnwy28P/tfZvg+vx/5iRt73p 5RrBE3dJZyAIOg+3st7sgtVuqeymh8JmoRlVFqLKEpCM1NNqq6TNHhlLBAuIYtTL hqN2knPM1m/IZp1Y4a5Z1OVnM6/fqItkxql4SX+GJ5815Lvh+1lokr8eMwCg9w2Q HgsgytJkYiFGJpkw1YOfwFUD/2oALyshDDCQIshX2xHPk+zLTMQva7uqDy8AUJLO o0DfaofDhkGjZnLpuFrc16eyfaYZw+mO149WTMpWrzCi+SmCXje6MSywINHneql+ X6OzJCazYCGUfkSbwtAH89gIRKJiQKQfi4xhDrn8Iu+x3YtOKKxnrEVGX2S8fKka 6YJ9A/99q0NX+543o6/kjfOz6Q44xzoyalBXT36THsFm239AaOejufu+HeyTZs02 rvrF7IGgga1eUeQwx9gvRNFX65CkUc3AOTVfK2Tn36QJcGfm6r3ZYFWKjAMJ3haf aElE7Bs2zGergI0KNOid8rjC6osA3NVYSGI4mKIuQcBoxUNf6bQ4Q2hpbi1TYW4g SHVhbmcgKEZyZWVCU0QgY29tbWl0dGVyKSA8Y2hpbnNhbkBGcmVlQlNELm9yZz6I YAQTEQIAIAUCRSNw2gIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJENKlP4I1 Duz6zsMAn1oP0sY1yRMo8jr7iCCdGtw2FuISAJ9crrnri2tcPS3281HX/4xk66dq c7QtQ2hpbi1TYW4gSHVhbmcgKEdtYWlsKSA8Y2hpbnNhbi50d0BnbWFpbC5jb20+ iGAEExECACAFAkUjdFgCGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRDSpT+C NQ7s+pzxAJ98bMcpWM9Vd/YvB2tx2tK3zH89GQCgqOGeoJQvB+MWFM1oVbP5jmJS wDu0MUNoaW4tU2FuIEh1YW5nIChsYWIpIDxjaGluc2FuQGNoaW5zYW4yLnR3YmJz Lm9yZz6IYAQTEQIAIAUCRSN1FwIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJ ENKlP4I1Duz6QX0AnRiAfY8Ngh14cBzYH193/LSIuebEAJ9wY9Gz9WQbwb7QlJEX cOmrejGiTbkCDQRFI3FNEAgAsPAXITBR7gx+9AyYwzvtIUjzo+viSfVHusyZccu8 82qzPKYF3J1QewFczrL6GbPCNqw2c/IZ0Sn8leGgVw5cwP+eUNtcbuQIa8Hpgl0Y Ns5WZlr94NXTdU8+mO8WXugzsumUnScnKFhrzEQQKYbbAIavBAzVAoj8Bu2UDaCB fCc4S6OwHgUTuLHDRA0b8YXe4Zc/VbblSIZFosga3vishPOCuj0YWjLjdkXHFZ+Y We4oDxnMT/yPBcp1/7wqEhTid1dgJvu9R2N9IFSxHTxoHiEsEFa9z619/imVPXGF rmcoJb5vG/NSH6cMHr5KP60H4ze0pwMKJ3had+YJSIJGBwADBQgAm9eGbCZ3RUin Kh/AJSsVfzW0snA4V1sv3ovSOekROs9YoUkalx8Ywt4fZkGHFWvYXLVb1KnmW3+O juhfrjsgmaizQhSMHT47C21XJSvAWuXXZrF6PaIiPAo6q56wjfSS62ycj7z1UlSS SDEusPgFG3LfYBuM2wjRYYXZ2plAcxhGt2oM5Mf4Tjom1Y1GHp4m9VOIa+0D0HZI +oNYlOteR6I2tWg90bXJcAd6VlSwYi25b/KRkzYyHlU84o11UJnBnG8HgaN6E92w QAQTtIUd6PxLWYBG0ni4vtD2ZwyGKAH26QJIUC4bLYdfoZ7V7/MbwI4JEliGjZCl INqt4mrYsohJBBgRAgAJBQJFI3FNAhsMAAoJENKlP4I1Duz6TJkAoNRkeWHFV+q1 WHzk4XJLFtL8cNyBAJ4u3Mfd7xo3Bx8pAs1vSTWooWb7Pg== =IROz -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/4CB47484 2012-01-17 Key fingerprint = B5C9 77F5 1E67 D110 8D19 7587 EB95 EA82 4CB4 7484 uid Davide Italiano <[email protected]> sub 2048R/91F7443D 2012-01-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE8WAbIBCADhylJPj/E3+cPj2CH/96OKzQ1sjdiyzgQVeLinmztCCk+McsEf qOwyc5iZfZC0MPJUr7y/3E71HKPC+rTMkOQBHsCL4UWcbJB+3AsA5Ii5WsZKFfQn 85q8kT9m99MFn8oqZWuzMFkU8zAOEB56+em0xrAI67SyrCPHVS1oWd4Rj45YSUKr em7JmyrYEcTRg7rMkPYJyuiWkDR3nAaJw2lScobg+JaHN757QZTtspS6x277Nx8c CU7pYauCI/CNdEPUcLAMBH561396IajWvTKirtL7jYZWw0FYpamof2sBCq672Uzb XJXufe4Urg4vKoR9giG7Y1kI49XCLmplwnWVABEBAAG0JERhdmlkZSBJdGFsaWFu byA8ZGF2aWRlQEZyZWVCU0Qub3JnPokBOAQTAQIAIgUCTxYBsgIbAwYLCQgHAwIG FQgCCQoLBBYCAwECHgECF4AACgkQ65Xqgky0dITCvwf/feerE+d+AGvbecD7lQyk d/LJs2bshZz+CnsCsbF/mArpbPMJTlgYCMZmEKKSR//nEo0cFyi0B6RR5QzQsouL uadHPuwxpuw/7ECdS9QhqEU2O7uoWdgh6kJSR37cbRmmmu0zNp0pMYv2TKrHabQz 432iuF8I8puOc9++sYLrlFBXfs80TTU7S2+qAfTRqgqAz5IdWZM7F4w+CbbJGfqj ePWoXCB7+6MhYby+5JXkpCEpdyGMRL8WZElpB2W91k3zBmkE5bZG2r3Z99hMc/dN +nJxI94zYN13HtD+Yoaej2/RJh9zmTWF/pUT58tb63EOLlrOfiiw6NJ6x8PVM9v7 JrkBDQRPFgGyAQgAvKmBYKFSJur0CiXeY6m3CW0JTS8mK1FYjKp+QckbnRomG2Vf olXjcjlTLkLcq46vff2uI8MDNviE5rGYWSJxwYjAbY3QJR36pbdI+ulYEJqnFNii jFWv9wvbddNc/L34Pa9o5P/NUf733r+V4gvyqb/Rh5dWQGH8IJCgnZZZYK8YnRiq UFnisiZ6gsIXk9rbxd4JHOiOxUop8xSxdeRHEkxe2FQvN8S+HzxrH8lucoIvH1Fp red8KUSjOLD1O9LFFSabJ6lA8ytAJ01KP+4svBk/J6bEMwmNXITVtmW+dyTSmS7z ynOMre7AG6s8OpdWX2lAKyLL4yosGLiOFjDW9QARAQABiQEfBBgBAgAJBQJPFgGy AhsMAAoJEOuV6oJMtHSEJhQIAI6NAWdB4IRBoDfEuo3myxdTn+hKtUDk8jgsmfV9 6yphv3BDwvQDIoAPjxMewp0UrIH0yEyIduPdZ6Gs9VcDfqWxyP1kGxt0GbKJmHzK glmLF5VZbuGKsZDhv0JtWbi17NOt7uiXY9sW9efqaDxgvNSXrXHtDPNzePuo2wLg LZcw5VlCg+JftFb7OA72Brcir1zj6EyMgtdo5P2Z2iW/MgWiaKb98hi8tnycIDiu tyawSXvl7k/AfQ5hHjwz4zKf+2bQ9cf8ou7wsJ6pOT35AKP9/CeIOslj6cqXE3dL MjKE+ZKsBG1d7NkQSQk9MEDk6PdAtigwAgwdYpPhX8Sl2es= =pP7Y -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/8E542D5D 1996-04-04 Jordan K. Hubbard <[email protected]> Key fingerprint = 3C F2 27 7E 4A 6C 09 0A 4B C9 47 CD 4F 4D 0B 20
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAzFjX0IAAAEEAML+nm9/kDNPp43ZUZGjYkm2QLtoC1Wxr8JulZXqk7qmhYcQ jvX+fyoriJ6/7ZlnLe2oG5j9tZOnRLPvMaz0g9CpW6Dz3nkXrNPkmOFV9B8D94Mk tyFeRJFqnkCuqBj6D+H8FtBwEeeTecSh2tJ0bZZTXnAMhxeOdvUVW/uOVC1dAAUR tCNKb3JkYW4gSy4gSHViYmFyZCA8amtoQEZyZWVCU0Qub3JnPog/AwUQND7kZgis sbaj1yqUEQIhvACeJ58983s/0jjThuj6WeTP6hLZNHgAn0o2KINvhw+Oc8uQk5m2 aTiVgVQxiQEVAwUQNcJNdAyPjrKngh89AQHA7wgAg3QnT0BcF/zp0VRMUZwAysRC o4Xkgv4oaisCPO5jERGEp8NlXuMD6wJCrGRZ9xVwTbSRXJVirNkiSKj1rnNc/pPA DbjsmQ+3nhLU+YwNgc2VEhiVpeU2iOL7ircc/YN8epdFPbzn2timb98b+/qlaSiz m+g8pxnY4USn1b4CnzyirD7mvHhV61k0mrUSmaKzgg2Ppeo2qPzn4w44hgT5/jjm iEMzoH8zFrN3pwcUYYhH5rNWNnqUIMwuPOEHn4Wp+sMti4yOqQxNHnP0Mv6mxS8+ UKRhtDXU0Ra0SaIhaNRw0k0YLEbO/lteTRc+7cAPBs+QUTa6xbVxIzsBAWLC7IkA lQMFEDF8ldoff6kIA1j8vQEBDH4D/0Zm0oNlpXrAE1EOFrmp43HURHbij8n0Gra1 w9sbfo4PV+/HU8ojTdWLy6r0+prH7NODCkgtIQNpqLuqM8PF2pPtUJj9HwTmSqfa T/LMztfPA6PQcsyT7xxdXl0+4xTDl1avGSJfYsI8XCAy85cTs+PQwuyzugE/iykJ O1Bnj/paiD8DBRA0FhC0XatM0mFMec0RAgaSAJ4kHkYXQO/74W5m/7ZvQa3CPR8E /QCgpHafK/S6PWQsSOChmVjwrZDVP8qJAJUDBRAxe+Q9a1pnjYGyp3kBAV7XA/oC SL/Cc2USpQ2ckwkGpyvIkYBPszIcabSNJAzm2hsU9Qa6WOPxD8olDddBuJNiW/gz nPC4NsQ0N8Zr4IqRX/TTDVf04WhLmd8AN9SOrVv2q0BKgU6fLuk979tJutrewH6P R2qBOjAaR0FJNk4pcYAHeT+e7KaKy96YFvWKIyDvc4hGBBARAgAGBQI1f/BdAAoJ ELwCvAMsr1lwqUEAnjOz1VWwJeI2QZMNEHO8RLURWHSYAKDqG+S3NzCeiKM3RRzc FubwdsfYLIhGBBARAgAGBQI5ZAxAAAoJEMN1Z4b84RmYUt4AoOtidEj2yIZubvvT kB+moQ1+ZscyAJ9dhz4GLNev7zNNfdAKi8JqoqfMlokAlQMFEDF75Qb1FVv7jlQt XQEBdn0D/0X2Auka6RU2R46NqrFB0kZNL5rGH8BuTRz+cqEATLGkCXknJDeJ9iTo EeE++VOL0utmhcYDyyT95Th5FNlXO8YQLgb7Gxq+UT/HOS7zznlBMs+mQK6dSlB6 7XDNoitRQTpmOHTmKYVsljJA4GBMWm6pawKuxSmX7aavwgYjEbmsiEYEEBECAAYF AjmtSQAACgkQLKRaTx+AVKjiTQCg9FfHlNeMts2GcXWplPQya7GEQtMAn0nrzupn fRNx6+Gi0Km+WSlUQkMF =ZyVN -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/A01C218A 2008-10-28 Key fingerprint = A805 21DC 859F E941 D2EA 9986 2264 8E5D A01C 218A uid Konrad Jankowski <[email protected]> sub 2048g/56AE1959 2008-10-28
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEkHYgARBACdbmFESh/3csPP37dJBDTkAfWcUck6myVTVYu3dFgwDPA0iCs9 HolmEV9qZA6m/ljZYG6b9ycHe2M7Xq3Mopdvw7Sa3ab7b2PRLu1WbKUIS/HlOXNH p3Dg3/Zhf1raBKMg4F0x0pbQm9+friN44SlnLlQK5M2224X786/VTlVv/wCg3YFE CufrZUsIPZndUVGh+/seBbMD/2fhNQhreWxF9QFCMohC/pGSfg1sddpWMqh6R0bF aSXfJwYivDLcTp4JYPpZilScBFgSxsfLKboRBElj+k7cj2e8nK4xzfoX+xsGrRDm t8uPqISnw8bvRGS3bZNuTt3NqHpXeiL1aEEEEMk7tKuGwlwf/KmA4BYq+eWDM7Hz EWPLA/kBJn5jAO99l/h1yGzYiWwy4a5iQd2sZg+M60bC3s9xP8ZvCPhm4qGuis9/ dxzKxz7hPQ2CamU9DlpnoCeZQ8mttyqnipsnMVniI3A79xSjCP2dNkVWvimc5uWw e9ME6DAa2ldmN7fkj/b6ahvCiBZLVc2jv/fcmHcP8IzvhHLhT7QlS29ucmFkIEph bmtvd3NraSA8dmVyc3VzQGZyZWVic2Qub3JnPohgBBMRAgAgBQJJB2IAAhsDBgsJ CAcDAgQVAggDBBYCAwECHgECF4AACgkQImSOXaAcIYr8cwCgzjJgksYSmXwES8lI vri3HicZZUIAoKfdyp1VxyUvbm39iwIMsUBpMCTduQINBEkHYgAQCACT3lbgvRwF lzEkL7JnyMaHkw5Lh77Sl2cRu1+fouQeGxRw5CZFwcIUkZWJDgBLxFHJiAtjw5xz UnVDm1RWBLXdNn4/KvWOUx2ElPweL58q+j/45qfwISg7JyJckRAvACQ2bLT+2jlc iDInZiV9OAnwT3OhBb0a6dvMsbDcIk25QlcS/axVdCYp/ELN4jlgL3Vk0NoQfalo rtj/vALu5soRJgq5keyroDlCc2fDp3iISCBngx1xoFBaYaJHo7XSbXnCes3NhAEd DkY0QCBWQGyqW/ULGrIdgyGtszpxSlecPmaRlxpmTjAQT0mX+rGE8vBkgH/pDgqt icql1p3f9ofnAAMFB/9NCp6oARpDfPTG6upM+oUPwginu23w2ux7uecZuouL640w Yj4vssTGDhuP3QRQsDrlhXdHdkUvSuguXpG8EGf4GjflV/AvvXJDmOO3LB4TCQmw I+Umsc/4BCP6r/YowSyYmQENJ8VIf+Ps+WfoeGS6UzbEpZbAFfBMpNSQbzwDSa+6 kh+eAHOZiPUjtoao+eyrvqEK+rpydN3G2D3UOJVsbYbG/3R0zD1sBnNBaqAub4zr vMBB0Fuml/pBzhFl+2VrS420Bfy6d83uPriNmlXlTyrX/kSxYVMkVm+lfqrjhSO9 dj2t5lqpUSCRLO3Wbs/97zIi6Vn2fphH5iA1qI/fiEkEGBECAAkFAkkHYgACGwwA CgkQImSOXaAcIYoobwCeK8Jy/4hOkaFBHbi/WJ/SHaJGyNkAn35fpqrdHuOO2L6C Tuizqar0AwZZ =xCbj -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/22354D7A 2007-12-28 Key fingerprint = 138E 7115 A86F AA40 B509 5883 B387 DCE9 2235 4D7A uid Weongyo Jeong <[email protected]> uid Weongyo Jeong <[email protected]> sub 2048g/9AE6DAEE 2007-12-28
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEd0e+0RBACwYdXNeIplh+WEQ9ywP1wJyTpGe2rVvkOLlJNpTJpVX7JT508G KuYI2B+Rn/V+1+AicL9tsUAnWX/tDma3bYw0Ls68LvD/571k2GYG3CMTy5FSrrtp 3v3N75jHDsfulUzHL3LHsa/CA5qzuL819KIaUfTKY0A107vcI3m0v4emEwCg2BaW OyiO9pic/WnPi4tuFjLpeEcEAIzLSKzAiZZ7U8ESKAtonwYqdu0BIRFpp0kedXqD M9cTts8VjqjdMOm55xvI7h9EGjH+crFZBlZD0NWXD00NrrQdHifulSrv5l3Wtgn8 xilqUhiYUcPQu2DHSuVlShvNZO6/rYA8R45axAfQv8rFo8NV0oElH+bvGq1mwRKY ciJ0A/9lN68t6G3LKmaSfWz13IUJT0E2qy27NnSb4RuKE2TuqyIMFzXh5+jjnp3U zRDX6KrYLju5Ire9GGJEMsGs28B5r3HXUPADqVIS8i6dW/npZlyizU7MfoRDFiRe btMpnYx7d4qnpKMpEm1J15JF84YrNGvkE55z7+g5zG0ua9KZgLQjV2Vvbmd5byBK ZW9uZyA8d2Vvbmd5b0BmcmVlYnNkLm9yZz6IYAQTEQIAIAUCR3R77QIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJELOH3OkiNU16VAEAoKnaR60kp0PF+O70GH7y v4k26FJqAKCycX2eM5PzjVzbAKHq0yMRj7tkbbQnV2Vvbmd5byBKZW9uZyA8d2Vv bmd5by5qZW9uZ0BnbWFpbC5jb20+iGAEExECACAFAkd0fKQCGwMGCwkIBwMCBBUC CAMEFgIDAQIeAQIXgAAKCRCzh9zpIjVNenkDAKCGZSCJTG2dSCbEH3kLTpYdAnfM gwCfay7fmNNMrN31IhC2jddWylvSDlW5Ag0ER3R8ARAIALZoci+sXDkhF0ahtePy ZszOeKUg8MHIac5RID5CfjGsTsbfAv7eM7TBocAJOKBxhD/suqsdomMBMwoMKYdv R4tKCosDopYGwNFNtryXrOQctNKxIf31kc8UnqGfgRAwjABorBRJCQdBZEBm+93k lDl0azEWPFuwzZ+dA12dw0jF1/n7TAIkvaA7joFfNvZ8a2WAfJvoal0/nUqmJCmB ntaWEdZP5rOEUvVBn117W8D5B8YHp//TM7T3eT4M4Lp7wUQIiwT7fGgRWCIfIrGd GZSEykjB/keyIip2Hh//0Ft0Ot8D+4wYz9YhH/RRmfBDMBhW898B1rEewhc0wmjH txMAAwUH/iB1/HLYV9ckHT6i/UDl8lEsw5CMxftnEI6wY2i9MWqTSTiuoNE+PQAA kicGwxrxxtvLccdFE4WOOQsh9oyzbOeWWBrtxzloRBzaxC9dx+tQaOzzJAUjaEaV wneSg2x62naLiztaQ9U66g81BwSyT8NF7uYjsCyvPsrHwDELNcPdDXQ2q0GKj0I5 tSgqMOPwohYRRS3hYfoPnYZOshdwYErtMCola0hZn7LXJopRByQyT/x2N6WW0zGY YxJemF80JqLrf9RtZVSsTeqT7Sd0+kcgPq3wcoqDXKTEQ+K4yjcE7c3hqhowQU72 2S6S4JjYQhKvdJykZRuvynQGeuT8H8KISQQYEQIACQUCR3R8AQIbDAAKCRCzh9zp IjVNepJjAKCIgdGxVdwuToMZ7z1n2mJEulHr8wCfdimx3iKjNLlAE154wBx3v9Rr trI= =5yOU -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F00FB887 2005-10-20 Key fingerprint = 0BF7 7A72 5894 EBE6 4F4D 7EEE FE8A 47BF F00F B887 uid Peter Jeremy <[email protected]> uid [jpeg image of size 4413] uid Peter Jeremy <[email protected]> uid Peter Jeremy <[email protected]> uid Peter Jeremy (preferred) <[email protected]> uid Peter Jeremy <[email protected]> sub 2048g/7E0B423B 2005-10-20
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<[email protected]>
pub 1024D/ABA82228 2002-08-15 Key fingerprint = BB70 3050 EE39 BE00 48BB A5F3 5892 F203 ABA8 2228 uid JINMEI Tatuya <[email protected]> uid JINMEI Tatuya <[email protected]> uid JINMEI Tatuya (the KAME project) <[email protected]> sub 1024g/8B43CF66 2002-08-15
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD1b+Q4RBACetpZD+bWytVmQ3Itmu0ZBfSDF6FVyUQuKS3OZmvsZHxxqq1+u erHNhmyte/aCI/YrEUzHPT5LU+9LMpRQD0AwSs3Ot2vUzokSiTu8ZqhoWBcsosKK eKM73V7NiTgBGuJ3UxVmKNXzUZhRjGHuekB/ZCCv1pDg9B3HPL8ty+2M6wCgu02T +vMZW0VeByn79Lpmm2nu/F0D/3NN4e8ZtLTbUJxJb/hHhLzOr8XahZCqsNF2bj0C 0u2SzkelDa5iVDWwiOkg7xI154REAALOG1FnLyO4bRPkcQ/EO5tbzXoVn0I6MPWA EiwBfVRXzP10MDHhqH0NvT8pyA4ex/BflaeFem9HItRjfojdqEUYVAACceAdLQLG MknWA/4hfAAp+dPcU8iHmd7AemuGoOhu5AAKbp2S4vwozJEFiv67wD/+WFXVggUx wbQ3X7oNiOLeg9OASDV5qtbGPATHikYagWVjndqmvxO1FiL6BnQBnzAVzOEN3L2K Ex566bUw/2R/dr/zhOc3BKxCV50T2Xe4u/cEiYkUbLj6+Y8V2bQhSklOTUVJIFRh dHV5YSA8amlubWVpQGppbm1laS5vcmc+iGAEExECACAFAkYDPqYCGyMGCwkIBwMC BBUCCAMEFgIDAQIeAQIXgAAKCRBYkvIDq6giKEOZAJ0Z/iUCa6UrrsVmKiP4a9qB 0jFUCgCgn/3mQxdtXTA6SOlFFsisaxsIXIW0P0pJTk1FSSBUYXR1eWEgKHRoZSBL QU1FIHByb2plY3QpIDxqaW5tZWlAaXNsLnJkYy50b3NoaWJhLmNvLmpwPohZBBMR AgAZBQI9W/kOBAsHAwIDFQIDAxYCAQIeAQIXgAAKCRBYkvIDq6giKBtcAJ9DRqXt h8WEpjgr+sD9OuaYqmV8nACfSdo2Ml+Qfz2Rad9OtZodmELCCi20IkpJTk1FSSBU YXR1eWEgPGppbm1laUBGcmVlQlNELm9yZz6IYAQTEQIAIAUCRhkdkgIbIwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJEFiS8gOrqCIo11cAoIJT7N2GMSNXAujnuIvc HnBtgk5zAJ4qDo/En3ic8E7h7zc4lT/WQQDhRrkBDQQ9W/kQEAQA1Q07/j0kScL1 WF9EeXVEyLpTxHZ7owTI+KrRcQ6Vc6KABu1cwhE78ANVfn/CkWVXHyDEnWEIvaz2 QYwz47sqOxdOg/AmHFVd8xouengw32KNjViVBMsW/l8VzyAVvvGGNuQ+f7zDZ/P9 v9WwwRcrgL9g+uAnrJJo/wttIBqhSk8AAwUEAIqcIez2zlkwGayFeLqgwuw4PCbd kGtXs0l2mQljv8GWuTRJ5D8aD0nlM9MNaSLB7xq6igMriP/NyfIVv0aLJwRH8ilx RBYosGvm+nEmUtakhU/77uXcLtipoUGi+y1reFRVSoypJil6lqDTjKtWQlWA7xOG QzGMdgoBC1d55jXXiEYEGBECAAYFAj1b+RAACgkQWJLyA6uoIigNBwCgsUFgZMfR sEybYW4cWwBNhNTqE9wAnRf9BFkzpn3ZyD+NBkjx2INcitoD =ISn8 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/3C046FD6 2004-10-29 Michael Johnson (FreeBSD key) <[email protected]> Key fingerprint = 363C 6ABA ED24 C23B 5F0C 3AB4 9F8B AA7D 3C04 6FD6 uid Michael Johnson (pgp key) <[email protected]> sub 2048g/FA334AE3 2004-10-29
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEGCy1ARBAD/K2SbL6XiTJ3Rn/weuN/L78ROUltIoRGOkZE4971fLcAbtIsf nANWDrpDqbhLgEbZLeCn/EIWOPqrYyKpCGu/IoZ6kx7UPtUH4eooJBarrrQPJVV1 mfW5ktDry3AoiaUH+jL47AxFCb/bh7Rc11vrhLKdnc74wI+nu2cyk2llkwCgwX78 nlN2qTrbXxOEAPpJjMontfsEAL+4sS9DOay7NkZq2B2p9AZnSsXQg6/r8Epqznqj yPQBm489UcIZy2FiBwaUR7w0fMh5xNX0FE3xFiTd4VUTgUJUSqpYtdfI7IHvJXml P/VK14CtgRY2B24wpDPMae32hGBFUwSE9Frb5NiKlxMC4+fR71wZS7MtxTnwJ1v/ MoVaA/9FyoKCAw3Dqnf5W89dj5W5x35jLKSLobEhhUB2S2LPiwBa5A79euMvgtk0 gKeh6IslXKOmCO148ws7HSaErBIBVBDpfOsqcQJTcd5lvEbslp+z2oCKeQK3pgQ5 aEHp8IJ3YgQEHz+YityOF0jCMGNJTFAz18U4RzVxSe55iyT/17QpTWljaGFlbCBK b2huc29uIChwZ3Aga2V5KSA8YWh6ZUBhaHplLm5ldD6IWwQTEQIAGwUCQYLLUAYL CQgHAwIDFQIDAxYCAQIeAQIXgAAKCRCfi6p9PARv1oW2AKC0xjNgjhL1EHPtFOXH kGz24lF4QQCfQxkoJBq0CkLQrYvdA3MLP+IJ6ba0ME1pY2hhZWwgSm9obnNvbiAo RnJlZUJTRCBrZXkpIDxhaHplQEZyZWVCU0Qub3JnPoheBBMRAgAeBQJBgtexAhsD BgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEJ+Lqn08BG/W4JwAoJaU6MbisTlg4EMF jfE+wNptwO4kAJ46A0W6SiLWbK09gu7YlgfLgdYAmbkCDQRBgstcEAgAvD4PzCsh muLtNkPVKSlk2eZbqlIuyapbuIo6rHk8fo7fkfqVOOrnGOrAT5/sflmnG3H0BLvF 4pkk7tyRtg3hz8qGACCA4SRf48TxRERpIUoW5R2cVBsMBTnpspRaFu8OdBL0dwXs LmH797gxDXCGXzSU5xKBSQN4LfoEuLr1qQmPbuPW+Rdi3hrdk1eGsJ03rU5RExzQ ck+J7a5VWsyghNCSj1Rzuw+0OVGBijJW51FD9QU+Eqb3seL7E19mWC3FMU34RFwn 5lbxolY43iPV0jc0MFcV4POHUSZ8ot9xbQpcAClTyXZh21QEIFzYjJe9ZeVWKOqH UZS1naB4k98G6wADBggAnRlPolzcjJvqvv5Hfv7oDeDARNxqeKTj+fPXIHR0Gh34 8HMfmxsFzS6nsrrVc43Q6Iaso5hbdP4UvE0/HzhPALzCTeZGpZF54pffg9Pqb84U p+D59I+b88RDBvvfwF0OBg6du08Rdkv9JfG3R+QZembK+IhUa5yxhtfbQmI6Y01r phtx4FAKZw4Xp2eb7IBoZWktfcOE99UJcl9hUmBHJXRznQoCHz5OwAKA6a/0b7j7 B3bPxj+tLlQksdmRbEJKVBa3LQm09PkxfZj8iahvQbp23p5VSJDKzNDrgmsqaCpV CFNgMvYLvtxC2xA0uNtaRpdZRLS/11NUj3oJIULv8IhGBBgRAgAGBQJBgstcAAoJ EJ+Lqn08BG/WFK0AnjdWWBxG7slwI8u1W+7uRsuh6NXMAJ9r+6Br6mlEtsoWrMel IlhG1mVq6A== =I7wA -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/80A62628 2012-12-19 Key fingerprint = AFEF AD33 1C4E FFE5 141E 0157 05A4 DA8B 80A6 2628 uid Mark Johnston <[email protected]> sub 2048R/47C7D3C2 2012-12-19
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFDRQycBCADMNjnbsXUOlvy35VnAJWE3zHAPqmXKqUTh0t0LWEtaD8KaNMHY egadQNWYwJAjzAI07+3grk8xcJLVjbbB+rC45tNPAxjAf9Jd5WZkZO7vKX0tIDLc Kteqp/5UB8SZ+XuhrtzLkObbEccwt66CF8vsUps5hWm1d+Nfxd798sjGmB8uzRJm gO2RrVtrOW7OQG+aFjBwlQvaiYavQ08z/xE2b83Y4Jp7c1FlqneFmK4xWSMO1qEE Qre8+iizDnPkGVabSLGJxE/EjTpHVBSawkXBgs9AOBoUR95fRr2Qc7GtP0NCHiNP FecGq5vCdIVyejUVzWmviYP7y0roG3yE+AppABEBAAG0IU1hcmsgSm9obnN0b24g PG1hcmtqQGZyZWVic2Qub3JnPokBOAQTAQIAIgUCUNFDJwIbAwYLCQgHAwIGFQgC CQoLBBYCAwECHgECF4AACgkQBaTai4CmJihAPwgAn9yH8EQiyS2x2qy5Zecl80Yz sLHSjc0uCBCNyzaLgGnMkqQDljyJzgY8DOL2vCWgSO0uJvb52Zl3nwxNoeMpwA3f rcaurFUUTCNmq4YfAHxjkbi5vQI0uJP7StFcFRPcnBOF/ddi+KUdc++xhqvcKBF9 uHVLK+6MMp4I9ofXNdrenfqXaODDTIaSO3SnL690OFSAAkueDN5hjJRuuEprbZFP qyfzwHAot/Owy6Db7LA9MrE4GQFDszA+wvXrreMDdPIVV8dXXZvuS2oEVV9XoTUY +VkcOdO+UlD1DWyEP1cZYhyzhwJo8G7ZZJO7JpLB6M6c5bdAyMtHW/aAinh+J7kB DQRQ0UMnAQgAxnBvgp1D8Ek07hhV89yhPkucEuxi5Gz8doYedzB6uOUGFdUK8y9B gwo8dSjIY3i4rVpJlarJNvd1XE2Pu3YlwvW1Gyo4pa1M5Q/QeQ8thW4k8F4r+RGN 6qqk085diUKWSwyhjAULOYSWBEbRaPp9L3FNr3uYncrAFhKN3n/o3+18DG2tS++/ DavKZdNgFKnoLEZeTSOAdvwkTjcWV6lRVcI8vsbi1bl5dA7qCbhfRmJJEaMqhCG8 bEIJ6r5JtmDNwOzCnl2wS0UsmsMV2lj5BGiRmyw3xdxDGYTICm0j+YUce9lb2V6H PWcHCil+Jcg1pJ5oKai4uR1Oo97slmoiXQARAQABiQEfBBgBAgAJBQJQ0UMnAhsM AAoJEAWk2ouApiYoo+QH/RLaL2ouB/bxkED60YgdaiOHX+3ZUeXwh5SHapS2cFXU ySUcYmFe3fbsXoyeOi4E1AG2k2PyVk/cA/HDNr8eiqgFO91dQ6RnY+VnbN+DGRGl 9oW7kqY/7kV0ExXpPGSmxdobpeCVkSO3WzY9XKC5VUosc/jCm3+6NqZaCnIIMUNA qUD25P9stIBvEv+QrkRn+9vnSHbyvnQvaHWMLrItMgyjrZdd4LevLQaCo3bc5+eI 4ZhBjHErzC4PmeKgy0ancqWMNfgdZ3fzk8Tcwfy20S+b+TicU0xlQnx8bkPlksCJ h7pRVYuHo9VkueYsh5UoyrMJhYe7DQ4lGbv2fj9KHZ4= =b1OB -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/3A3EA137 2000-04-20 Trevor Johnson <[email protected]> Key fingerprint = 7ED1 5A92 76C1 FFCB E5E3 A998 F037 5A0B 3A3E A137 sub 1024g/46C24F1E 2000-04-20
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDj+agARBAC1AfvgGQEVdLwS0dirwaN+pDDWWiaSWBNRNo4T4KKG2vyhhnUi f2PcjPx8rYLvbokJFltoTWos3lS8hD8PZGBDlImOPzffdm/GYEmr1mE8fQvzjdKD iOTqQi5IYYhLZIMmUpBTK7XN2zrM8VrkgCpb5TYtBrQUPheWs/SZ31EvLwCglUPA T54Joolfvk0Y8I6dSGYctpUD/3teZiYwem99CE3b1tsqavQ1MUfjwSPZQq8wjVe8 GZUtwaeExugAxNjXIJeXiaCij7S6JSTS0ytyxZ5/O1QFmBhuD/7zjNFD8yB8nu8x slma7mVhMuhqkwU06hTkp6MNNJ7kRItoVETtLqR5mW+0UUSZyePQFIH9U7TKPG3W vYMIA/9btsMQD/7QA9p/m5OP4sfdVdNCZ32tJ534bMjDYyf/P8k7QzvDWU8f7lbk 3vX5pSmHplws0PwSZITmRarMdEH9ucP+24m06MQ7YmDYyLlUCestT2gAxnB5/X1h fJnmdCLi/Vt19WrVM79ebddbCqCaoz0xv+1qOQmPue/vKXIH87QfVHJldm9yIEpv aG5zb24gPHRyZXZvckBqcGoubmV0PohWBBMRAgAWBQI4/moABAsKBAMDFQMCAxYC AQIXgAAKCRDwN1oLOj6hN4YuAJwOTOURcLpgAx4HT43jNxDYCsT7DACdFdGCwsi4 w5ZiCeoizmoBMFvYTa65AQ0EOP5qIhAEAMAerdyvcs7DOxpsli24gkKJxCwHSq9U 23k283XpZHOp/0eS6WEJMHMyQ7BRrx3X6mkSgBEnHdO6MetBQjOHdjSb8ycotrJa H9eMkZ/Iky6dbiWpPLI4ytS4Q8Z4oEGjUTm7pJiE/pgmaCX/kv0WMs/35En+42sY VoVU9bDI+X+3AAMFA/435RbM6ywO/kL8D3lhwINGEIqmxWpJDlXPPJf2pLiWZZVK MLGkHOTe2kUdd+E6WcoRZdGblOKxLACrlKpJa91aw1ftQT6rt0k8GDCGLT/33FWx 2IRSf5sHmz8IOm6L8TcZU31hdWqpDLmiIj+IjUCx8+eAUjZcVRoj6BYnWc1Z64hG BBgRAgAGBQI4/moiAAoJEPA3Wgs6PqE3PKYAnikfYo//UA7/jrDuTXzqPmi/Un5f AKCFsfcXDbLGfWaAqe2YzeDR2Z55/A== =N4HT -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/81E22216 2012-05-27 [expires: 2017-05-26] Key fingerprint = 8EF8 36C8 44A6 9576 6ADB EB0E 4252 33DC 81E2 2216 uid Tom Judge <[email protected]> uid Tom Judge <[email protected]> uid Tom Judge <[email protected]> sub 2048R/2CA4AA0D 2012-05-27 [expires: 2017-05-26]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE/CXmEBCAC8MHbsbti3GMu7pJN9c7MjfHOyY7ZFGZ5KWET7KCgYr2uUydwB ZNaNIZczdNuYTE3Q1o4F7A7EW9bsfD5b8zZZK9usE5kBZJQdZhEnd6mJSKsV2CwM CBwnl+e1+9ITMOxD1CL8rjQ2JhIUi6DADtVO6N5eSB4I1qKE2rd9uyvQkjBWNOjF d8QgfcFEzvXL28zzkBPMoYJuZOQ2RrUZUr2GQZJkLbWi1GZPwEJ8bxuHXyAkvRgp SDQNW9jnM3mhcsSn1rm568JLGJVz17pjxoM7CJLOYm63vl2nJWo5e/VDyIYu3XA2 H+9UXMaoar+2wNSk1bDe4QDSqjQr6bjkiODdABEBAAG0IVRvbSBKdWRnZSA8dGp1 ZGdlQHNvdXJjZWZpcmUuY29tPokBPgQTAQIAKAUCT8JetQIbIwUJCWYBgAYLCQgH AwIGFQgCCQoLBBYCAwECHgECF4AACgkQQlIz3IHiIhaP7gf+OHV0TjB9DAVbiuKM 7itp9AsWvXAtEJaydaYyDJgBkJdncshtG+dzhKTDxoYExGVGaNDCvw6sNld2fINb staofgMYs3ZucuKaGL2V0vcPvAR8y/6a+k2xKfdHW6UE8YCYbJJMNOP6gdGvF7Rx OP169r/YJulOi9fzPkU7YuH7Bc3/mumLK+n7jpd14uEvpQlER5OydA9j4inS/sMH 7yOEJP5jIRmp2RzJid0zJj6Mm4IJo72gjqK8/3OdY0ZspI3VJIZAMLDrKpEMWI2i qkDovYBGI3sCAnyxAf66II44MaZs5Zg99kJ09mUjw8Yzn72lU1W+A0v5DqfpskKf 1u3fubQaVG9tIEp1ZGdlIDx0akBmcmVlYnNkLm9yZz6JAT4EEwECACgFAk/CXqcC GyMFCQlmAYAGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEEJSM9yB4iIWssIH /1GsA1JAt11mheL4sVZ5g6lrokXsDrpSNQ2QrECJs5ZfDLn1z8Zhi8SdP6vyQ16B /bHwnGFHzwxmbUq5jhDJyhZO16halh+ZQSFVbfjJXAu3T4D1Zxl8HFSf5WccalKW vkFtr9J0dGEH/xOSj5zUtF9/eO7AEMYdgevpzT2tqztY8r8Ka3TFTaK1uV3ZfqV9 qpavwNPzJ7c3Td5fsYHAai45eb5UFFHfWfT3nbo0718TE9NXbP4JGZghdawmQUf6 W8KbQuGmg2qwlO7hpMYXHrf7nv6C05iYwWuJ8j7LLfnlN0s3FiaNw5W0IrKmOxxI jmSO+2dkr5hjidy0hlkHCym0HFRvbSBKdWRnZSA8dG9tQHRvbWp1ZGdlLmNvbT6J AUEEEwECACsCGyMFCQlmAYAGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheABQJPwl7M AhkBAAoJEEJSM9yB4iIWO7wIAKdLANMK1j4s9FG8qzxnchCeXEwygGYvXy3nfOXa H1vM6641ADlA/8B1Y8JqU7Zg5AyR/8fv3SDLpGAre5wJX5Rxdd8/zn1B6tcbgno5 KtGC1s6Gug3UtFWmLxCNMdM7cFByQc5Yz966j/VxDEDvjXyymqizvGMtEzH430gR UnC9BqZnq7KUeh97qwZr+G5pSBdKRASUcCDgCB48AAknY4cZLoxOJs2GJXzOPlnE /gQsv5ZC/eBS2f9fjQzgP2RDL5yMgdpUQjwZgkXW9q167aIwJwzExkD4zf2hLW2w E/KYi5LRjV7UgIu4kUu7bQZAmfBE44nd//qzp06ikF3jWeCJAT4EEwECACgFAk/C XmECGyMFCQlmAYAGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEEJSM9yB4iIW HkoH/ib5LvcVNUcwcrrQU5w5W2AbuQG8DmSWgaWWZa6Fd/76hYq8UtUkRX4eXIem Ju1/aAo3YpaiMJ81AnQopWZixbxTgDOM9P7javlMMo36qDwe2N++BcsojfJaCf4H H/vt/dvIahKKLNsy5nDMPAZl+Cb/33uZjjbBkOP9YFvxKJcrkBjoF7rkmT8kewT8 Va6LPVCxLSORAivr5nEo7lr8Of4CuGHChSNBQofZEqlujipVwEUYt4x7rRCE6c3g xG+d7omaNOSYDtT35Wk85UVzE9S09RdLEieJ3rgpaYW0hr/D/19qL72TCUxBoUbs /wASrbtxYEiSHIo5Mp494fSkdd25AQ0ET8JeYQEIAKToUksGvdHmeqiC1nOZWUjF y5GRBue8pDwIKDy7uWMZvS+a+au5YEIFsKl7uusoYYu1mKuAE4qebnPlY9us/PlP EDPFK9YIYVnmk+NAQFMxE46TQpfAXT0QFxPcKYE6MR4YezoDOdvDjd23dqYe5deD sjrbYenlJJleFWRYWwFQ187tgNnMXgwEURCjYUc4jop1d8IBq128v5PW1cuEqKJ0 4YsWp2C1TToxvhw24ZBqKW0BvDMP17omDk7IyD/Q3BnImU1fB/9T8TIYGp7Fp1ey /Abu63bkkixUpJAs9RbNfyZ2dQBFzlYGWuVfcYKleZGNKP9tXdRXKU6FWDyTgyMA EQEAAYkBJQQYAQIADwUCT8JeYQIbDAUJCWYBgAAKCRBCUjPcgeIiFow/CACyVF2z V/2AenlR6b/oEEOHHOrRCUjRFdNdfJyd5xB9tY83RPnxOIN+ImHKTHpCbO8XXPr+ /69y9SyFSbeIXssKpQkoDpBxoLBTLRHWvLxIsMvj1MS3yt3Y45mcKGLYUTUCFoLL ZBfTFUbhV7Inhrw57nKMO+F43JV35wO/2HvgtVXhMyvSOwSuh+rmWyvBI+bbQTeW L/16IV6bqLvKPF64Udc636mr2As1gDyFYYbzoKunXGfs9V2e9tHOg7MhbGh+RGTQ QsYzGa7JqrqvENdXRniOZG9PVQ6okKNPWyaSF93R0dkuJ3nN7j/dcBWcvLKZ5q1M Zm0FKdW5eJP4ewW8 =jKVY -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C9BE5D96 2002-07-01 Key fingerprint = 7474 A847 DBF5 50A5 FC3E F223 43AC F58C C9BE 5D96 uid Alexander Kabaev <[email protected]> uid Alexander Kabaev (FreeBSD committer account ID) <[email protected]> sub 1024g/534D9E06 2002-07-01
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD0fyVQRBAC6DXZDVJoFc4CPKODmJmep0t5dD+ObG0hYiMfo4ygDAvsftJPv ZR69EUbKCqVOXPy5InOR1o1xwERvNVXxBGOFwAdoU4eJt/f3ttR6YSLWDG3iHWRQ Fze9mtZ3bCBcdv8V0pXint/w41y9nBmG03F+Ag2toD5mHYqV+9vqH3XTmwCg7Rq9 K/Pk7Z5lAR/XWyJv6Bk8op0D/j6Jef2ate9+NwBAti+9GgIocBGx36X/SpZonGOV xtX5E2MranZGCVnbdW1hXfKLaiRrooSxbGpMnFbjqY+peHZ905pd+3v++L0sGSUA gLbGL+5GFDO/WGay0vTUBs7Bl+1cbsdeQ67+08WuIRfcbDjA9fYxI9LLTb4J+IrD Ni36A/9WBGxkXNJCTrtAqhCoHRgfo1CHNk+U3KiIlwFfvi1WRkqEgFNQ6aLNsPcT DkIoPLj2hqKf0Pfrr1MWGcQF1uYxtW8diFH9FzlZpkwXvHPOBsJSWtH8qcZ7atFC EIwvZzurMbYWaTGNYMEL3kj9aRjKb2OnsKABZ25H1cioFReMx7QnQWxleGFuZGVy IEthYmFldiA8a2FuQGthbi5kbnNhbGlhcy5uZXQ+iEkEMBECAAkFAlCtcHYCHSAA CgkQQ6z1jMm+XZYzSwCgx20s6h6+tB6nj7gs0mHRmXEd9rkAn3PbiVCY7AvRcQKd jzMg1fh609+NiF4EExECAB4FAkLcBooCGyMGCwkIBwMCAxUCAwMWAgECHgECF4AA CgkQQ6z1jMm+XZYJIACePCBQpk+mw0WvLAkE7I5DkeCv4w0An3MKAuq3Acnzxw5J 1U5XsB0nooiStEFBbGV4YW5kZXIgS2FiYWV2IChGcmVlQlNEIGNvbW1pdHRlciBh Y2NvdW50IElEKSA8a2FuQEZyZWVCU0QuT1JHPohZBBMRAgAZBQI9H8lUBAsHAwID FQIDAxYCAQIeAQIXgAAKCRBDrPWMyb5dltYPAKDD2YYKr7ZDEbVKAdyHOyF5dl+h 3wCdFWg9dC8w6dD7nUKvg9b8cq91byy0I0FsZXhhbmRlciBLYWJhZXYgPGthYmFl dkBnbWFpbC5jb20+iF4EExECAB4FAkLcBkICGyMGCwkIBwMCAxUCAwMWAgECHgEC F4AACgkQQ6z1jMm+XZadUgCggxcqTFp+zV2YOM+cDlVtreVZDo0An1kXV2vUaxap 0fQTq2QMfGyMbsG8uQENBD0fyVQQBADOlRurkQxMzKcXE8Wfb9dimYC9gyNso19f yKAJGxD1lgvJeVyf2OR4k/d6ctQAcNuv3qT0al9rE5DQMiI3fC6xLA/xJekqDCu6 LLjdwLYXJtjSq6HyY2qUS4+sdPJSpVadaMKE1jLVEYCtXi/Q1gTfwPDQp0GzSS7i gyouzi3QuwADBQP/d8b4C53pgkrcHQ/xOv4UW5KQrJg5DZMMxZ6gF3IGFGF99kHi d+zBtrzzlq6PmFpDf69LRaISk0qnjDAsrRt/ypnsRnQ6YOmTSSOKK6y7runPTwaP /gSFeDFk+9ZNxjebpcoN6SHFxi3V/4ITVJfXQJIU/BT05A6LeZGYykTdrCOIRgQY EQIABgUCPR/JVAAKCRBDrPWMyb5dlpHKAJ4x+Ltw0UyNi82weZpghm6b02OVvQCb BB6jh/RjnfLoZ/Cq2dke6K5Heok= =4r9K -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/8302FE9F 2011-08-20 [expires: 2013-07-21] Key fingerprint = 9FD9 F966 D914 5101 BE59 FE13 2D29 EEED 8302 FE9F uid Benjamin Kaduk <[email protected]> sub 4096R/28698ABE 2011-08-20 [expires: 2013-08-19]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBE5QM/IBEAD4VgPZlyj/d8iPgLAUdW/bOXUe6yY04TBmrf9V2q4U7bzpa1/a tuwfiachcg4xogW4jPDIBSfGyKRF/2EyKiQjIr9lT+oj05H4JeFNJe5zojIg3M2y iAfSkHcz1NhKQztSQe9jD6qx1samNugyD8CmNorUz43WS9ZCHI1lVFXTBzjAB7D3 WNQvq0azhmph6EPNmFVjLuOeYpWNt+4ZfaSIbifSO+7fwfI/AN1+dTtiwBFaFvJI QR6P42bQY73fBL3I8nVEF2Yk1MT9pnm8s2gA/kDPNCM7qTnyDmF8R/7jsdqMXaHh ChDEdD8arAo01DHQdlMNBHUkMOLyw0h8WGhtBPoAr8VpvnEReNqP/utnk0slM4Kp uRIo0ktB1oldgYJgj/Bj7dal7wtMMA5uttYzNCvoAyiZmj4YxurfiiBd4+MM2hWG vP8FJj/GaAADICE0d6V0NUOkB4duzw6avCnoCXnUNYrTJrdqCisumOWydfGHGx+f 8ktj0gajCKE1VUe6lw9oT26VR0j2M7Cn63hpmRY9j72zle7cFVBElEUu3nA/25H6 XHoiDX4W3sU8CCiAydWnhVkK75RosD9CedmUMtMe+X/1IaCe+VI7QkxF1/Qk/VBM AVnMoxQbNSqHUMAPUQ+J+V66qgGPneF0x0P/xSrlGhrBUEmlqFXl7TMZ5wARAQAB tCBCZW5qYW1pbiBLYWR1ayA8YmprQEZyZWVCU0Qub3JnPokCQQQTAQIAKwIbAwUJ A5sm6wYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AFAk9ZaRsCGQEACgkQLSnu7YMC /p/GlhAAwOROwxkzieQG28HJ9hg0trVGM5z/MtBaUFLIihKjcPJhMIv41iatynj7 1FOAfmWbnJuWCOUzHOEzUo6Slkowu9FP1rl/NMVFgohnrMkUsYnZHIGr7lCtNo9E kwGlp0sFAS2KlvsOZszqlWVYtlpVkkAaAPz+YoTFOAmNNUC3aKXbnRCOFVTDCn4p nMKmubAui0V9cr/1gG2lT2xs7+le5iriFj49TK/+JnVtY7sZ8iF+K8PFPO8H/1lc eQupOIqv3D0FbvnFVlc6bqO6yWsedtS7qSGatdC9FznbcsET2SruarklyLPTfS6c Srw284iVkdDgqjFg/CTy8A9ve6BFe/fa8Mp2YbZVivDxZVMZQ5csRqwttZJaiV43 TktAtKC4tRnMDBENgCKFysV4n8ihrR53P2Q2DwoOcwFZu4MbJ4pxeN4wevrzNJ9g VhNlverp7qakFMY6UxcW8iZ521WaPxDOMW1ewr39kEFVZDPwfhflWtaSVC9CcbFs 6+QINcrb0ExtDU19TznAc2OlFBHEao2Kgf9r8DjVuHTqeVbZUN+p8QmVNwAeCHoG 03lvMv8uRSWMftBmfsR8DdM13Fgaeywd8odmAw5tILmM2KZYWX5lcz4nEwXlG4wg LIRqWv2zXxv49ZjCZy3q0XqGcgUZaEPBIue0tluTJKljHSsh7Zq5Ag0ETlA0OQEQ AM08zan83E8KDfJGmXQKmH389BbmNxYswsAgvLVjOua7hOMw0VQp9R1/Ku9r97p2 g7OOKan45BkVDJUwj01oyjBcbYhi2mjq0W3wIWkVn75cVyqGMNBoDywB8N/Ara+k 2QXjR/MOQUBuC3HfcExtUj8UKur5ud0gRMwg5lABuXcCqWVcbfQBJ2fu2zbFPWha NVtq6cm6CQIzZm6mqMJ7lVzBpgp/TsDlLbkiTjUxyjNTNvjuGhg2nSvalkqz5J2K Vyz1lVNm/yLm6tG7PIxKeVlHgtj1M8nCbiCSpU/bkmBP4qirZMe+MjUER2B6xf6p ydqLSKEZ31qRPDaUhaH9kVv96+zvO3PacE1ecAv/mlO8YwStLO9tcRZX8rXP6jLA uJ7yjSy47RXbfh296NqanplWz6XctSplLqXTFiN+DNiNEPFCgRucQMwbsqKkX8ro 61EYwuKk0k0g0P3Q/06MQ9yf8McOLCNAdM4WJR1B7fCT5CDI3siOJ40lKbgjgaJ6 HcvjP9n0ymZEgNCvP7BRclsGTV5G3LZrYyGOsJTCcjmTG9qHFJ32ADM+K38OHFO6 G6lvciHQ8jfsJQg4XmIwpBLtCLNpGvObDwZLst7kdztdtKXnZUXoFLhGvEb8GMds CILLXdJ1o0nGXyX1Jg6JQWLdVZKyFInCsCxqjSQtPgezABEBAAGJAiUEGAECAA8F Ak5QNDkCGwwFCQPCZwAACgkQLSnu7YMC/p8UxhAArTP7S5Jor0148D6kDqFvJiBt ny+LTLOWC5/Nj70KgmhLxzuClg9784+mXWwi7Dp3uNpBbgC1OqUh3WuDw4YNommz qW+9xy7otBfEMn6slxRyla+o2l9kCrwWdA8e1gYHVjWxV6hlFiF7mWPwewqoW73+ UDlesC0iuqctxKhXodPZn92DE6XJjJPCDvFHNj0ukuQ6K4U6jIZy6DHomp+Mcwhz 0q907AKMOZOLm/ISUSwbACRf6UgvQO5frJItoA3vKVF88LvmbdnorCkUjz7A4VTV 4sFnUtZ6PUWubFAhVEhlBl2FIgpKayZa0gdrRC/gpZKEhVP/C4SpHBPssyT7UU5o KX4zYy6sC1dkhlF5v1JEFVZFkOe+FC8QFsVPRQThkCAXEv/aAkX1fHRVzE2LuD8M 0jujPxw9lupuTyRVztT5bLhvSv4VwbEHqUAEYrNBKdgLGSWEpwaEr612QZ2al6jU wngtmeuV3waKVAmrEOa4j56mxk3gDiSD2pVuDiEKzhOheRIpWxhbw8pfUrVF0Ta6 4y5n7f+J60i4k5oHp0kUeux9vlV1WbNJWTWwvL9wQHL28UZTp5EGz1ishp40slHh mvLOEdAUP6o76clFDaqzmzSw9lR18qrRsyyiKDyLo8WwTjeBu0zVCdaaRt84QS+g umeN61KbYXYUxVazdIg= =hh9s -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/0358FCBD 1995-08-01 Poul-Henning Kamp <[email protected]> Key fingerprint = A3 F3 88 28 2F 9B 99 A2 49 F4 E2 FA 5A 78 8B 3E
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAzAdpMIAAAEEALHDgrFUwhZtb7PbXg3upELoDVEUPFRwnmpJH1rRqyROUGcI ooVe7u+FQlIs5OsXK8ECs/5Wpe2UrZSzHvjwBYOND5H42YtI5UULZLRCo5bFfTVA K9Rpo5icfTsYihrzU2nmnycwFMk+jYXyT/ZDYWDP/BM9iLjj0x9/qQgDWPy9AAUR tCNQb3VsLUhlbm5pbmcgS2FtcCA8cGhrQEZyZWVCU0Qub3JnPokAlQMFEDDmryQA 8tkJ67sbQQEBPdsEALCj6v1OBuJLLJTlxmmrkqAZPVzt5QdeO3Eqa2tcPWcU0nqP vHYMzZcZ7oFg58NZsWrhSQQDIB5e+K65Q/h6dC7W/aDskZd64jxtEznX2kt0/MOr 8OdsDis1K2f9KQftrAx81KmVwW4Tqtzl7NWTDXt44fMOtibCwVq8v2DFkTJyiD8D BRA0Pu7GCKyxtqPXKpQRAhhSAJ9Z/WCnDtISX4FU9bF/5QKEvmvtGgCgsKyY1mk7 0ow22bUmdvPOz9zJxQOJAHUDBRAwIIYjCn10cvEMm80BAVrEAv9+1GycVrDVEVEX cNTQ3CX+HiZKNXsNWruNcrU2+/djtR4l069ZysWvx14NPtnefRxspzlUH6CrRMNg R2pGJTUDZNZs58RsYv+BdHE4V/oZifP1fMI7ZuW0NIRjHhUIweGJAJUDBRAxSx5c H3+pCANY/L0BAY+TA/9YQPISXYaS+5r0I60wCJ+i3a9PC69Zak2ikgTHQi97LhpV tEsP3SAYInDw4YMS2oU9w1XxoiLLd9hUpcZlmO8Ip3vNF+E2ZCfR4sNzKarY5fdo +sxzatGWRPgnHjbm6RHWCw6qJACDD3VpaFjx2XD8QrOTyiObnbHhWBdoEAIyNohG BBARAgAGBQI5rUlcAAoJECykWk8fgFSoTiIAoJa59BqzeoS1ytJdiFLzK6GjEl+c AJ9AErDKZKYLaAYa7LSLzt78zlN4+YkAlQMFEDF+jX1rWmeNgbKneQEBCrID/i/r i8/eXUXRJp2fqJqzvrWGTP9Ix1O4vMguah9IILijgpYyOJYkezZKijjVCVmLX7Ew fNXfYkqLAWUa08eov4QfJfJDgfe+Z/3/UoX7RcJoy2AjTBZQzOI9JMkrzFdtFGYw Mr/QXhOdVVpSGeZ/6Hkrs7pd2Z6MNNrRf81ZyJyYiQCVAwUQNBDRpnW7bjh2o/ex AQG7ggP+NcUV4mCzYx1MM05kz8Vt8OEjirEBthSypLf5FrXrJ3xZ38CNX4gckTY2 iYVaXxStSMIaKdeLDM+ArU58UmtL06DXBAu8CXRfzgEDwxM/0FCvjDvoj9FuSyBR KtUIg7wwnCXJ2NI+hxYYF5eVWNtnFfPK4mTsf5Mb7O4jkG4Fw0iJAJUDBRAzBiva s1pi61mfMj0BAeIhA/9fG0FYVdoFGBUsSFE2lLTth1T4uxkaUs5l6E30vhSckUdB A806kx7LaAXtj3loE7Dn/XFLm+VCnCZEUKe1ayb+Cp3Mrqu6V+vWvkDL3gs7lMAL q5w27f3pji+jVPIPVJOdELjroqW+a1C0C0UaBeU5FYsv1REvNxEV3WEPTJd31okA lQMFEDjGXEvKbyuD/AwC1QEBMcwD+wWwOmzXE7wpIEZ1p5KsRiVBQ4F1VEo4LviQ kE0jUx8/i0/Y+kRpb3sZc+yh84qYA9vrRe8IDqc1a66ZvGUPZOsfiICpJoH4ftPz 8xMLgyfHZrSR+wICStXNAKok8Oq6a56+Vxjh7wpNDoObN5XfYyAr23yNoPh07pP7 dXNRfGKiiQCVAwUQMTlDoO9huekR1Y7VAQGy+AP/Rzp+UGtJavbSiPx5EnXOXxkA /+ulXQgQG9vdkWwewkvxDNOzHW3KkUWCGtPtIMENznbFj3QlYB+USIaf1ogvlD5E dXGPDfTINpE8CX2WXzajfgYFpYETDzduwjoWDZfEN9zZfQqQS62VgAReOIz3k9BL 708z/+WUO0++RLGCmImJAJUDBRAxfJXn9RVb+45ULV0BAXJ8A/9K6NT6VLZZC5q3 g7bBk5DWuzBS3oK2Ebww6xzsD2R9edltoz1J3GPngK0CWpHh4kw5iTaRWoC2YJYR NG6icnGvlMAl1/urqQHJVhxATINm8oljDKsj1RBJ6VKBzNbCJIHTVpX0AJoqUQX2 Idi8goFr0fAm7cD2CBb1JhoAdzEfO4g/AwUQNX+5mPxGGtR+MqsrEQI2aQCgmSzO SfQxEtKMshB0VJCgAi9exqgAoNosC8C/0kFMiGI8djBrxiQ1O2vpiQCVAwUQOa+C q6WQ7KI7msylAQFqcQP/e5kOmx+qu99qwEkrwpTWzpfpgGl1BuEsKDIRk6VOmo7o egtd8kzRjL+S2OUgUWA9l6i4uUXsTJWIDzqPOc8i2vI/OfelnKIGu/uTZ/A2Az8V 7+6hhPhIZ+JHZ3ep5rTd++4+SyCFLXWiCl8NmQwdhmJpsWUtHavEsC3NBgW+5rOI RgQQEQIABgUCOe5/HwAKCRAj54bpvu2UbkMWAKCLrzhdCCmJoA1/ljX7HbXDuf3u cACgrwhPV6ZGrKEn1Hkl7Z88ICwAGXSJAJUDBRA57n6ATVYoIXkFDBEBAficA/4s HQMoCC4q6OHVor7iZt33ypvjvaKRiS58A/SgAc0Y8P60GqpuAEcLUl07V5/hAcwW WKGGX1LwBmRxvhbNn2tHUVAj3oB7UM0KSUa7KvltcaqXFYIyjYkAROkgm7oTWMaY vN5H6JucyOJdlkqzvAACtagXntUEwxJ4ptHxwpylJohGBBARAgAGBQI57nf5AAoJ EF1SHIzmsVAWoJgAnR/1FVW1EE7BnHJDt/GpIR5mq11kAJ9RmTUUaedL+I/xCn8g OViHwwcea4hGBBARAgAGBQI57oQcAAoJECAVMdWEXf7dOzsAnApDRHpSZZwB7DbE 03ZPUqZUaCV4AJ9pGurLhFjYo0jVR+CH1MrqkjxVWw== =GwRf -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/10607419 2010-10-04 Key fingerprint = 020B EC25 7E1F 8BC5 C42C 513B 3F4E 97BA 1060 7419 uid Sergey Kandaurov (freebsd) <[email protected]> uid Sergey Kandaurov <[email protected]> sub 2048R/5711F73B 2010-10-04
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEyp1pcBCAC1kRi74jv2nnEhN+nPwBiru4aEDeR+REKtg96ZF5kocDbHsDWD tmU84sfsPEFCXj12qEPRzucS4VwIjWND6EC0rYPBHXlFDzHnZLBXyIKYcKIU5eHA 1tA+41J9ZaRX4268ODvLIf9gz0hAh2suQ3v3dbX8dnec7ZHUJEOH9zg1BTFoZ2jj Xv9PHI5aPsNA9qMcgQpVWDayw3mp5/guyw0lN1SBIQqm/lC7L7qcYexHxkq2+LQf fy3pPQxkAVbk8PHyRkGrJnC2CLf9ixqtXRLNmNiHa72at9Js/xLsYcc5aVX056wh 9nxghZuRzg3gtLpDV0Ae3BQUU9/ljdKmjkfpABEBAAG0JFNlcmdleSBLYW5kYXVy b3YgPHBsdWtuZXRAZ21haWwuY29tPokBOAQTAQIAIgUCTKnWlwIbAwYLCQgHAwIG FQgCCQoLBBYCAwECHgECF4AACgkQP06XuhBgdBmo9AgAtPBg2HTHzJN9qrhMgzKL g3VbZ2+pBNMTzpGjcMJTiCn6Ch9YmIX9IAknQk5lgQuQAliGEBNIARb3An8JtjPr NbpHyRLXwjLL1aIUnvUmVjJfCKy3W3GFUiK9e85kUH/wFBjX+G+YPHho1kGvb5N9 yAG9SbzBl8sfYyR9sblDwMsST1SNRxOF/LClKcFD2VrgTvMcQ6+jS74F/cQEIqxw vbd1pUEdd13EfezwSg0dO7ZPmd146wLXIJzJ9cvijOqNYZRsuEYJemCT8CZu/0B4 /PQBozdKZWOWkGctxw1WUT2yQaL/3rIby8hPzp9d7BhB6Sqv4I9kpkx+iRrv7xrf /7QwU2VyZ2V5IEthbmRhdXJvdiAoZnJlZWJzZCkgPHBsdWtuZXRAZnJlZWJzZC5v cmc+iQE4BBMBAgAiBQJMqeGtAhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAK CRA/Tpe6EGB0GVy1B/9rz6f/CMS2dnq2dBudDPIX9Boz7FLf21QG3deapV02Rjv8 WuSWO/dhanDHVvFRNe8DmxfNgwvNr+ODLc3nTh3PGUVJdQ6VIJnMuIOLroc/w+TI CgeEqe6a3sC0GJuJU+paDmh4rOciyfAvzwhDc6qBiwOIjcwjOLOWSjBlJT8CS1jk TpOt3akFUTG9vD/svjSWQdreTL9DicwmefNS2+oWBuLXN5dqQB9FDl83+G7IenX7 it5E9/tvcVVi7OqdUwGeV2eDoQFFrEzzII5KLwt3CwzpSEgCmu81t8hJHbbuTbqK ZcOx3d7Lq2h/td6WDkHXbF0vNSUboSRX/uN0m2A+uQENBEyp1pcBCADpKKpK8I/7 GlsNAntUUFZqwXniLdRxJUmGLh0ZNKnagGYjz1v5kunomAy4fyIPTqHKUWP8c9E1 pV6r5CD2JupM6lHv7INCcSaYNVBOTKTEe2i6L8GHzhCLGWQLU9JRHuRPNesDwo2b 0zpuXtsS1DEg3cpp5IVCCFNV9HW6bN93jL1+HDI64aisiRdAXKiol+w6t5Ev70YM VvQK/YF3aBWw1HETJkPwoondfZ4XMpMlkbk5MjJOS76T65uGQYAuhcd6PN/J/mtH KnS2waj7q1dvDBeXaTAwKm/Oeew3s8ggcz3JDQ/EcB48xfi1k4vQWc3j6UteYrqU PqIKoCV/bT7RABEBAAGJAR8EGAECAAkFAkyp1pcCGwwACgkQP06XuhBgdBnTzQf+ PFVidYjiACW+9CsL/zoA1QqPm2IhTBDp9S6GrfSruEFNfbthEOuSuAX7VqZPT2GG S1aRaY9LduOGrzdtvRfLvnSsz31wjwG2Rkb6OUbX/jzPaL/KYikt++VCdR9T/S4W B1QeLzybuQWQQMnDyb+kMpxmF7lHkhJgQhzElhEuZlkYhiALLS2AkXOQi3tmBe7r sF5/J4jcjI4O45jx/Mdhdx4I4Fn5pN4TXQjBC0kFOaldy7l6WVk/yZzKNJjBoASv JMyuua8AiGc8fvez9PeSIqkrNJcrCcDaLxpmXzMjxbwKgulfBk4NY5YXKC9/Vi1D ZHTrB5rRodo5ARlH/LF9IQ== =RXWt -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C5DAB797 2007-07-22 Key fingerprint = FC09 F326 4318 E714 DE45 6CB0 70C4 B141 C5DA B797 uid Coleman Kane (Personal PGP Key) <[email protected]> uid Coleman Kane (Personal PGP Key) <[email protected]> sub 2048g/5C680129 2007-07-22
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEaj6Z4RBADnHGSN+HpgYx4kwj2c//kuW91OOYhYlstDCeVTlNc/7YpbgF3T KQKBWHu7uqygI7IeboCuCltP7D+PcXTVdBlh6X4aiwV0XSBCAF4ZngCb56OsSBYd MPjygHV3TH2TKe4PGqH+MZ3umogB3TZVMLpz4S0WyxXjUxLm5tYn7rOCCwCghTRd 00JiGg0u59cT1/GiD2KYE40D/03DKCm4IvMRFsxc3IGhXQc3rQJVhBBAxnnzBA+s R3i0xKzGqBslEUG+AxUMFjohjQgTWjFRa1PTFgHih95Z1lR0/oO5teyDfxjeAPA5 2hUoB3PF5NUFeMWXPCoSyb48uswJ5CCeX/IA5lVO891+jQh1LHIFQDa/rB6zeYzQ HaSXBAC3RheXdRaEFGt2JkNqAZxEQVtiWe5tebdm2oh1RaIfMQ+U1p4X9EBQQjGq 6JeeUsO56HXECEgCyk46fgo2xNwIXqYi42sQlIGn8JDBwOLyjD4iJpz2uxC2NO9J GKUOMdsdydUpfdkF7tWu1rGXXmzGcUUkHXgKsF3jf739FyGAubQzQ29sZW1hbiBL YW5lIChQZXJzb25hbCBQR1AgS2V5KSA8Y29rYW5lQGNva2FuZS5vcmc+iGMEExEC ACMCGyMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAUCRqPskwIZAQAKCRBwxLFBxdq3 l7aXAJ9829PUx9ST75k3L6/nfkejftuUFwCeN5vqGr5uZlkCQr+Bx45HbcyFQp+0 NENvbGVtYW4gS2FuZSAoUGVyc29uYWwgUEdQIEtleSkgPGNva2FuZUBGcmVlQlNE Lm9yZz6IYAQTEQIAIAUCRqPstQIbIwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJ EHDEsUHF2reXPTgAn2uPDHMfAoaLp+Eg2FfIuMlVNgfEAJ9xBcFz8kLTrAbKnthL S0yBqAUrv7kCDQRGo+meEAgA22OriKy6l+mvGIqbwk67Yz2zcVtHx8Jq8uuyt4Ue JfuK9H8rDOz783oF3++ywf07xqtl70rH+KHSNfVyXUetVXfBUZfo5bTwxokQWE54 eJukJyZeDYXpaJ8ro083lkHsqE9vtTSwJfU4rqRpu67nC80WSkke0t/35sHKqwJI WXlHniGD3dJt+ZTy6hxzcx3WjlNDNUEq6iSl28XNzWdvpKIrah/ksO5O2akmaZcB SXtHthWdX58hOCHBhS1QQSKvThL3VlFtsi7EhW4/rNekDomypLxHGErprjMGV3GF 509kI2vn7NoA1G4sxrESZK9sNIC+KmdWO0MQ4NYhB0NAnwADBQf/XFiDa83fYJUN LBqGGgeOPE+pyBS6gVrw6Kz62nFFgfW9hHtYgItzS4XrDHCc8TCSG4zOBqBY4Qvh HgJ1Fa8rppbMUMI32egtfY0/cu8NVWtHlYp9aQp5tM/0zPu5RaRpQxafs9e5j4gf fd6mY3ro3vJjZ6UczORKFBHxLDg/F6UCeOZsv8Ii72YDqzZEFdBUMJH7ArHFKndd ZxkN7+iGXZorHnTJj8mXSDYmvyaI+Gfn/dea9RDp9h75257cHhnbaDd4ZvlUK7JQ 8HFb6jM0LsadfDuSSMLUYFozqeG1MVCJgn/Rv0i4FMlI0QK/6r7njvvfR6p4mLl5 n9r0NOG11YhJBBgRAgAJBQJGo+meAhsMAAoJEHDEsUHF2reXJO0AnitUss1PV58K ++igcU+jU/EAsjbNAJkBlxLkkDzmxfWATLWri1+qzA5WDA== =L430 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/3CF9ACE7 2012-10-02 Key fingerprint = 5B72 AEF9 B2F9 069D 54FE CF60 444F 91C8 3CF9 ACE7 uid KATO Takenori <[email protected]> uid KATO Takenori <[email protected]> sub 4096R/1C593356 2012-10-02
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBFBqmsMBEAC90DnVvsY6rkCOX0qBI41V5vtTmI/dAJ2bdyHoehdXYDTmMr+l EhbiNNCk2UGvrfeQBhC4AbVrDb6CPXvM3A+WJHZZb2CHQWva5281fZorQ8oT54UR cJirR56jz9VJeBALVV4SkyRVC1YN4xPbscb0K764jVNad2m/vJbrAYJ/ma8UQrfj EsdTjcXJPzTJkvpJt29nGWG4rDbcsboZ+KIjDkWLVG4JJ6VhHFH2wAriseZtgpx5 d6p6qABKqvB//pTEF25eQgM0fViH/y+ZSjfwG1A0S1DjdowJD4DHpknryyfGctFe cF/c2G7NH0BqA7xQja2+sSR/9WoPbd6UiM/RBUdsUr838ubgRcF0omWgCKHlHCcH YNbh2BAITlutH2H0xgLavjS2MWbwuekAeHrvgg2epmg9so41LrMVqDuj+myML6ch TluMqAq/NPZmG77A1K50DIEwv5+zarP8LppfJJDs74Y+VhAq4rrwjyMnRFLZiZ0/ DwjTdW9NC1QlHI9SVHb7P3Qwm1zvY6b6RWoAbh3v3y2nvLhT0fQPVQcuahlnLFyW AstSjEqWAf1Sji6A83sPdf8sqUHoHaT5INFrAyKhbigwNkHD7tn4KAgKiQP5h2Hd d5aWrlSW4naam3ezVc3w/R9AIEm18h10feX5U6BydasJ1P4BJOcN+fjYEQARAQAB tCpLQVRPIFRha2Vub3JpIDxrYXRvQG5lbmRhaS5uYWdveWEtdS5hYy5qcD6JAjgE EwECACICGwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheABQJQaptzAAoJEERPkcg8 +azng9YP/AzK6MYRv9VzDCZ3rLmVPDlSN8IpaGtuWsOvqLMSuGUPCsHMZYA4vYni DJFWINabOtwyzW0ol9Sosnx+/mL3EeqARkVbIN4J8zFe+1FZk0tFs+72Sai0OF8c o9i16GPhdLaLC5PvPhcVpxteG2StmPvi4zJ8ALCJ/sUODXrmeWLDXG4jwmx14fIz 52T+Jw30hXwf2j5XDeP87ApPPAueAu2WuK//Ez2zl/A7AExuP+iqYkmgqBf6QDxB c57UAHg6p70x8lgqku/QLdIb4O2CgkG38LySSM9epfXOFApd3hPFWZMKrPp9wbak 0PlLmf/OmcmRMBRF5YNF/9Qax/Xs1zpAvBiLgbXpEjOhlA6wrZPGD/Dcf4EbxJYP 2Er5eddT2ymDs7W8dZXmoESP+EzGOwzx3fj+x/yssQ8j2p3Kwd35+LUFfIVBnT3U QBper1r3fjmwRa90DZ6JWSKMx2WylJWSKTevPpuj3CtYbfBlWQWBbr/rqC25FfmB EeK7tb0GpNk3E2S5pGFBS3SzpmsG0LPiyawYqcKKmyu1QCHqfQzdv2y7XfwJntZS 53+TRnybZifAPZtmoHzWjTFC5E0h15CUjN9Wh2n23MIkcXcELjHUF/QIs8ZO5xTd EaSM9UY89PnL62lEH3Bd8HYiFvYtwIenzULSuV797rsI/nrpfOkWtCBLQVRPIFRh a2Vub3JpIDxrYXRvQEZyZWVCU0Qub3JnPokCOAQTAQIAIgIbAwYLCQgHAwIGFQgC CQoLBBYCAwECHgECF4AFAlBqm3YACgkQRE+RyDz5rOdSxg/9Fw3Pf2rYwxLS13ro 2Ssh1MGhYTsGAgLmMgpdtEWZefXI1C6bh7yVAd/yb8E2rP3dI1GgVlKHOW+2y6Qd ii5DVT/mcQtAx0YYyXTmX47QijvU4FYILwKugq7ck0ifuocON459sRgP0BmeAy3d ufGZELJv/aTbLlgBH9Ig/oV2+t0yWl6RhpQwcqf5WgUH6UYbrdg615gOn/egPRav u476WUuKDHJWgLppa+LYffO3fx9Di3MMJ8r/lF4aRyFUsnJ7yAbbSpHb4a2+qEMN O0IH76VRQf7HbkBAr7wsYUOD7AOFJMquPXD2zdv+cf8qC5ePd2CNjgKgogkxJxB7 oyxhcKQdmaZJrKY24rIjSqrc/yYV1ibqGM+5oym8lSp231t/F7KwIMWybIyXZK6q VIRxeQ6M7bMGTSE7qx1RyfW/qpW86cNkFC3qk+KPJNF3hnD20bAFygZJLqVD+FLI 4iQNS0zk4DZJqzgnDde9961ErXpCFr/UZeorM/ikTzGOEi11j6SgxZD8zenQCE8L dxSDVIoAIiJYANsQeENhJYlLz/42IfECT5WHYibG3OMUbVGpOM2lWz4UV71vwaCj Q9uTUfgi5CL/49GmH1zbpobVs+ug/P4xkS3RNYjk6dGz3AxAjeKtSzCfoL60q0EW D4lEnOesaTBIUlF+uuJHVs7MjJ65Ag0EUGqawwEQANEtPnmoB3ESxmMjtirpPhQX IOoghAictNWkYNj22y2Bu0vc2TjxWmcteCqTLlGfep8SOD26w7wi1TaR47qupglU H50XuTpT1GZFxsJnk2jqMDeYkmaQxVFJNdURc4G1yUdBnJ+t08ywchhhvsIYVxq6 xQeaBId6Hm3MjVxxzpkW3EdTxl+R4chUP6YlpCTASj+W5XOjt+iXjgjYvFzoD1f7 Ov3eAqzx5WCqhxsz6Z/7GcDaQSD3zduqVUpOFz1xe/RwXmawxbztv6A6tPZdn+jE IscyDMRQ4S7z45/JZo9dCAL9Dwx0ZYxnqE4KFGvUmSkEpEu7Wv34IiMxm18mGgFO DFYrprNSbIpf4Ag9WGhQO4/vJ/0gdcNPIva9WzJczwq3lDC45zu/b/ovv4r74isb rgBlUpvc/0R7vaXdJ+zIYFanHa+OT9qv2V5UiUgxhpGQaaohh4b3BNqNmHSVYzyw JsQmg5RxaPFouyOMUf/QNeByRmXW/MrAhM/jbUA2/p6AYV0YK8Jjwx2NzRAKjVIq XJNd0Ux+XLrV7kjRAR4sN/3/mWTOTPfhfuC+zuqN3inbhkISO0DBa9a6Afh871ON gvlTWuHLQtjZlAhKBamKh+RvN0xIvYhE96LfgMgIFn3ooscksiArS0SgEcygHYRH CMbAPBroFjodIlhiTM1tABEBAAGJAh8EGAECAAkFAlBqmsMCGwwACgkQRE+RyDz5 rOfoFhAAurRAxoVkhBCrTk1Zx75q6MP9zR4IvazkShRlemE1uXMtymJiY/gcRwIP TJyYKuSxWookp0bzaiJG0nts6y76F7jculvf0GQrOyGgGqA3EMVT6Rh9ZZHTfvGe ZIjZeKje4Xr02WjxzG8JJCLjZw2hM7raeYmTGK/4WUgxq36qBdT5WI1d3ok6CN2b KgZHvkBkvQrRMxnXCunBHqHcPS+V/JXngorfjnABWlOeHwyL41pLvxo0PqCcFO0X aW+1m94LXdbIWCPCaXvDlf+1+kwIhx+hG5tiPRAerZrkhoDqfxltOePhKhaYSxNh iQfGwPukKCDcZaxi6Atz4MySFSCUYeV03n/mfKoJ2TpFqebkhIukI/CEqNe8IaHU 21YD+X3b7HlPGkfReLCFo+C8Pq07XgDupTK0846szVR+VVPDnXTW1O4LjeegXU+J 8lmBYlHhEzNw6twujNIwdkRIJlLIbSP1KU1e05vizf0h75T8ZpeZPgSojF2ujk9x UUjE0FKoc2bZmWdiPpoQCezAkY3TZ8/nByyZK66VC39Dn06nmNYvJjWTard5wRUP 8GY6UEtAU6wvthrPo40UwxTcTO8C8kzMr44DlPwwIWFYrNcpQqYjinCgyG/Xulpu FpvjPC8fF6emgWE1QyRgZqcjBdFpOqlBQH8nyjchmfhodkiS+EA= =jQtb -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/E6B15016 2000-10-19 Josef Karthauser <[email protected]> Key fingerprint = 7266 8EAF 82C2 D439 5642 AC26 5D52 1C8C E6B1 5016 uid Josef Karthauser <[email protected]> uid Josef Karthauser <[email protected]> uid [revoked] Josef Karthauser <[email protected]> uid [revoked] Josef Karthauser <[email protected]> sub 2048g/1178B692 2000-10-19
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDnuWJERBAChyOg7jb+Cj5UDqGfChHZDAN5GqF28W0GwrvV0RVWqlGx3pn+S XzDur7ijNQfj3jAAGgFErCptXWcDz7CLzS2GxddaMAaQcPWP9hDjJtUJ633xwjU6 H0U0VPdLcWtJJCva1LvKp67ICkM4Wx8OdVHhCQN4akvNkYzdt4AG+s9vFwCg8Ddq naF901g4VlK1IUqWTxPUtocEAJROiv4o3aIWrXvD9YBxkwIrrvtR8V+QaB6drOer AU9NC3T2Vkm90lgmUpP+HCmpZt/T2v1t5a4HHjyf2ljD5ANeznAZORA6SowuWRhv ObmYoN9B+vzHCitVTXLNksJCK9kpEvbS5shzbU6UsecCUTohjCU4po2RrsSSILqE oXYjA/4/j3Qg/w0RabnS6RJyGDls3FBqS4gyVByaJpH81snvZUbw/y9aT9xdo1YW gUaLcEW09whi00M50vaMzXJ0KYcWHZzk7LrhOqcIiCAUm5Dfve3dwk0DbgVD6iCb LRI7NuB1Tm8YyvZRRqG2ZcfYVPZgVm3zj748sRaRSPWfb4wGgbQhSm9zZWYgS2Fy dGhhdXNlciA8am9lQHRhby5vcmcudWs+iF0EExECAB0FAjpsFVcFCQvE8cYFCwcK AwQDFQMCAxYCAQIXgAAKCRBdUhyM5rFQFnG1AJ95ZZo5g7AhYtfJOrmrP5fboYCV XQCeKruSz2WhPM0ss7qsTA/e94XlAeyIpwQQAQEAEQUCOe5hEwoGYWRwcHJ0bXMA AAoJEDGmPZbsFAuB22UD/Am9JP6EHolhUPH4vccPMoaZ7u8ng06npVXXYjnLGbC8 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<[email protected]>
pub 1024R/04FCCDD3 2004-02-19 Vinod Kashyap (gnupg key) <[email protected]> Key fingerprint = 9B83 0B55 604F E491 B7D2 759D DF92 DAA0 04FC CDD3
-----BEGIN PGP PUBLIC KEY BLOCK----- mIsEQDQwdAEEANxnThVC8GNO9VXTjWFhJh7XgMLHf9jDd0B1804WUqc3c76r8y/k AXZ8e3kNH1rpa+VJ0rYQnurQg5BeFQny8TzU6PC9QSdqNKSCvhai6B+w3t15sKJK nGZ7DwyoyuShMFNMVF250KS7dEZnYy8yrtopCIWJAWzuzuQQtmUYk4B5AAYptDBW aW5vZCBLYXNoeWFwIChnbnVwZyBrZXkpIDx2a2FzaHlhcEBmcmVlYnNkLm9yZz6I tAQTAQIAHgUCQDQwdAIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRDfktqgBPzN 031cA/9ZuwCRbYhTHWzOhQuT8dm7Bby0wEq+KzkULXd/ExgxCu/54t9M7csD378X /Fg2erLP2J8cYIcVXmdtIJO8AwZRw5GgmVP+h1sEY+KT8jiJNlX2hB/9qCmng3FY ItLBY2t7XVmTPMw8BLANE7PJ1LKT/OoUHEk0OjK53KKGNU2oUA== =VzLE -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/68E840A5 2000-01-14 Kris Kennaway <[email protected]> Key fingerprint = E65D 0E7D 7E16 B212 1BD6 39EE 5ABC B405 68E8 40A5 uid Kris Kennaway <[email protected]> uid Kris Kennaway <[email protected]> sub 2048g/03A41C45 2000-01-14 [expires: 2006-01-14]
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDh+mV0RBADir7YUHYRLlc0EN9H9OwMtvatKsJGA/BSvvbcVGdXxcDZODZb8 5UNUDltKTmfgOxMxz5Agadl9M9TJwAUyhRjkc5Ua9LWskx1HnYlsPx6/saFYU6IZ SLrBcfpX62hvpS5x+GJ8VENoRcIc//YFG/zEA5XRQEWG5mNg3KSL/DZRiwCg/6tF 0f8E7vABNKqDRFx2JEkeERED/32z9UUXbg7y26ziUz6oXaXDknCD9HeUdA1lmyjj Vovy7Hmk67OrbuuD6t3p3SI5vUvxfOnzpqMk0lAPtkZmSCmOhvmyGYqbrpIGLV34 wNlLwcNRTUDtfUGu4JL0PMOtpOQXdxhfXGI09VwV0eavq6Kzg1Ce/CFD7k5xdWzy F0J4A/4/eUoXG6KGd4gCTp9werF9ZnUdrtIMkXCgx3D3mrhEIYEBiQ1jeotLK7wv TCk/u9ki7owWdKgvLkMNI3nLp19+NgivoGWklVvhs7URn8Wxv1gMyvJM8k+ZRl/P RQP7V84s2qDQuOKLR/U0gOJeLmHA9leLLeAjxtN0zr4mjV7u/rQgS3JpcyBLZW5u YXdheSA8a3Jpc0BGcmVlQlNELm9yZz6IRgQQEQIABgUCOfDM9gAKCRAgFTHVhF3+ 3YO7AJ0ZJwzhG6FohqEaSFrg45j/GjS9CgCfanJh6tPlubkjpOSFNnJqJcSef2qJ AJUDBRA58LyFTVYoIXkFDBEBAVrXBACxSj5Ou8meYSixH+tPBUPgdbqTWQ6JgdvG zQSQK7q0OvRt/QbM4ewXEr7DRZlJe4pXlQqMn+CUieETjk0vaOsGYrMOj1NWp5jY Kft2xFg+5HehlkM3h7/tXKrz3Bc5v2romFfR/6RebtbWHyf1mg6CJ8AbIRHjCj91 ca6wEOIBAIhRBBARAgARBQI4fpldBQkB4TOABAsDAQIACgkQWry0BWjoQKUFDACg vnqlh6u1d0xcsPF2B4fbo0sF0MoAoNF7E6y4G47o7oFWoL0HCzaXsRkuiD8DBRA5 IjpBhqlMgi1qJksRAqL+AKDIm4mvwS568j9ZkKqI86XOySm6oACfd6RDWR+crZ1u lKLEkSiQCLlFPDCIPwMFEDn8wmF3zinFj6EuIBEC7GgAnj40RzKQEJK1+Lw40ojV /Eav3C0ZAKC7b4D63pTGOWitAWOtpEGV28Yma4kBHgQQFAMABgUCOjKA2QAKCRC7 7G7kaPPBBCLjA/9RQV0lMtKqHQLag6spTWV6DUADkNPfgs56WX6JsATO9B95oxcl ehhMzeP+mbwZgJjR5GraAdoWXYbnWzpfPaKcztYrt90jtDPDcAuAJis6CHGAmych FKeXoCr2m2OGcaQ9V41NNORNm79dX6v+AMyIL0oxHZC1f51bXHamlbyaCAP7BlZ8 K8TPbpYLzQCiBZrszhTlnuhQ7+gSyY77WH9pJRklFqCeFNxDb5988nxwHL7QioRY OAkbgEFzCIdzjtEWjnlv0ZkhXc0qds07ESnGHaqK2r6P/IrRbtXWwsiiY451R113 Bglm7OF+KP9itMJi9Vg8cLj+T8wieTwPd1Y4wpyIVwQTEQIAFwUCOmFZqQULBwoD BAMVAwIDFgIBAheAAAoJEFq8tAVo6EClvYoAnRmzFfvkql3W2b6TQH+nvi7T6cXW AKC5eJxh21XWyRYiD9ZxIVgONzuZzYhGBBARAgAGBQI6hHsWAAoJEC4gTJuLBr51 YY8Anj5qnIMIoyHAesDA7f/sAIjzQIPBAJ97gyIC8sm+vZssS9yusnyWb/oLgohF BBARAgAGBQI7r66LAAoJEIwyjP8WBtuVA88Al34X1C28UykPaRha+9fqLfmuiyQA nR3vk6YF7kIeq2b96dxIF24/reNqiQEVAwUQO6+u12fCgI8zwWJ7AQHIFQf+NW6I Od9DJWW8jIXYrnwp3B61C1emDRrRbEMdW68s1fng6j013f4NF68SK6RLcl0GzTl1 IjxM4tn6akBjqkvIk5FiPJgs7i8WW0Xq0jGqaSaJnbTONRpemCk9lwJOhKa1LVRi c/wHnXP6IXeEwBjJ57H3YUjFc9AW1smWMpUZ18sRBzCp2BHcfTCACz7fFseDtYdA +UNJ4NWSqIJOct5cOGOsumP781JWLSsDiuRFoghYQqUR/xbk1aKHXuRlUYrTY2gk +Z4yzNB3MMCdK1G9jQOMtsN7LZL7E7T8MFU9d6WFIh4h7/xE63AMNlv5t/m5ps07 /ZDuPaxwCKhCA05L+LQjS3JpcyBLZW5uYXdheSA8a3Jpc0BjaXR1c2MudXNjLmVk dT6IVwQTEQIAFwUCOnIVfwULBwoDBAMVAwIDFgIBAheAAAoJEFq8tAVo6EClTaAA mgLzJd8N1dIgO7yB3oL1+y9egIjqAKD5ZipcQcBa1sOTs1EV7czWAkHvbIhGBBAR AgAGBQI6hHsZAAoJEC4gTJuLBr51aD0AoKVQAAjIJ/ZUeqDXcStPYVEjXbQqAJ9w dU4rJbpmPzrDNxVjA/XsxpCAQLQjS3JpcyBLZW5uYXdheSA8a3Jpc0BvYnNlY3Vy aXR5Lm9yZz6IVwQTEQIAFwUCOnIVKwULBwoDBAMVAwIDFgIBAheAAAoJEFq8tAVo 6ECluiEAn1rxQ3Zytp5ewztR0Nx3WZ0PZ8j0AKCvalnlLFWNZvDg9+WHRU8rSy2r +YhGBBARAgAGBQI6hHsZAAoJEC4gTJuLBr51hQAAn35wVfmGgyJGaK7SymU8I9tI GuDNAKCLXoshUwSFXMKcgnGh2WU54FVLWIhGBBARAgAGBQI7r66jAAoJEIwyjP8W BtuVa94AoIcrbj8nl78EMmq4npDs7k7hdJR5AKCYkC2kiIaCwaNyWFOJYeVfTBfO mIkBFQMFEDuvruhnwoCPM8FiewEBQB0H/AnWue1FzgheVvRhdIIWszOvgamNjkum OxbaWFdTOzYkunMDq7zHEP3Z05ZbP8QnfHaXyH0/Dr0Vz2/6W+EMLlW1PXWKJhrz F6GwxvzZpvPmuZkxmngvS/evDVaibXcLSw35mIgRSu18DPb/LxxfBQ6pjMkEBTco +55cgCISAHjGrtlJUZZA8M33Mpbm1Mn62x6tM9jHG9n2Yhyxx4ME9C0PzjywG5DY XaYT1c1WdcO1HrNMbgFch2E7bo/V8IvSsAu198aRXMgmqgi4ZYQI8Wq4XBVIVmMk TZ7bIRvvj6MHqiSk8eIQQL5fNEioUSuPtx1XhaG8M04Er0OFyn/5psa5Ag0EOH6Z XRAIAPZCV7cIfwgXcqK61qlC8wXo+VMROU+28W65Szgg2gGnVqMU6Y9AVfPQB8bL Q6mUrfdMZIZJ+AyDvWXpF9Sh01D49Vlf3HZSTz09jdvOmeFXklnN/biudE/F/Ha8 g8VHMGHOfMlm/xX5u/2RXscBqtNbno2gpXI61Brwv0YAWCvl9Ij9WE5J280gtJ3k kQc2azNsOA1FHQ98iLMcfFstjvbzySPAQ/ClWxiNjrtVjLhdONM0/XwXV0OjHRhs 3jMhLLUq/zzhsSlAGBGNfISnCnLWhsQDGcgHKXrKlQzZlp+r0ApQmwJG0wg9ZqRd QZ+cfL2JSyIZJrqrol7DVekyCzsAAgIIAJ0sC3USd4/7JuScntlGrqL71IFH0Vj1 r6jMSitZyLrL++eDASLf1rFOPDGJMvOGhrV9CvhUvsyLFI1fwoPmwp6pmZv5BU43 MgSbGKYIgkCZ2pGBYg5sTl4iiy8A8Vp4EqrUQhhk1lk1Hy6+Xy+wB4uFIRKuvRiB wGd4MXjfBtzg9vL4tj31kAG0KZ0R92U9qiWkbmAgBHB2wbw+WV45hYNA2Xuurn+S WjSCHrQr08SP966Cl7j96BiOFFg+gJpfjmQTrvB+WuPe7wT4xEQ4Tv2/vTVgO4q9 c84Bi2/Rc+N75MC0MOp+0BVa00cD8DsQBHMFlwea1GikqzDUIcfQb66ITAQYEQIA DAUCOH6ZXQUJAeEzgAAKCRBavLQFaOhApc4CAJ9ZFjZXo1Lex1rHoXZH+LgxlekQ xQCfdkWHAEkV6UyZ98vsnu/ZlHcDwo6ITAQYEQIADAUCOmFZxAUJBaUnZwAKCRBa vLQFaOhApcsjAKCcLm6aVjFIGQxluSHDt/OT41pPEACg0shCNM43tvfaRfzrgDb5 8fGalkiITAQYEQIADAUCOmM/7AUJC0qoDwAKCRBavLQFaOhApZDuAKDZcYc9bnZl iPF6/kmr9BBQtr2aUQCfb2ycB69cTi+09jXD31k8PffbIis= =nTL1 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/318603B6 2001-09-21 Key fingerprint = C1EB 0653 DB8B A557 3829 00F9 D60F 941A 3186 03B6 uid Giorgos Keramidas <[email protected]> uid Giorgos Keramidas <[email protected]> uid Giorgos Keramidas <[email protected]> uid Giorgos Keramidas <[email protected]> uid Giorgos Keramidas <[email protected]> sub 1024g/50FDBAD1 2001-09-21
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDuqmfwRBACakPfvtnWVymPgHktoM/fjtoJT49oIkRG6DWXLzr6M6E6ReOAJ LCTCo42xgy6vndGb/GUTYIS8JMZSZB0qkTEvPorP70Y0RpD32z+51UYrDtMykohW lnTGjSS/+IwT8cTePzu2C+RTAcvlMktOZ4xHRRZHzi6iEZrrok24cRXLSwCgx1/D GsEQB415mu3t9REREVaPehkD+gMQ2EYZQSj7ZChSghDR3p8hHvzNmN0MgrxNWSbq KID+pO3kBT58SMhOdf206jRAPchoq8aF6Y1h7sZpZCarA1g5M5vomWKdWRde7j4i kRsAa5ntUbW1wIQV+cTO2SVcynlP8sZ/1RHapzy4GD3mH1qspJTAKdfSzjNMUMZJ zB80A/93O5RBrYqnZUW6TfUbCdSNudb+FYYyEF7/0YFf2BfgCn+HWpp6a9hHgbjM zvy4DkkjLu0UjoNeIRGbkLUgZwY0JpMZ1qQZSdQHy13Vt3LkG9I3qnBXqzKRdxQv Hl6+vHUIagar1tGZNK6sTvbGt7TRhy8RDLV+wSvU4YTvAGtqWLQoR2lvcmdvcyBL ZXJhbWlkYXMgPGtlcmFtaWRhQEZyZWVCU0Qub3JnPohpBBMRAgAhAheAAhkBBQJK AYU2BQsJCAcDBRUKCQgLBRYCAwEAAh4BABIHZUdQRwABAQkQ1g+UGjGGA7bxAgCg niwGwBeGiBVDyAxFchQEgFCszW8AoMbjoRbYJN9jlatxmMwX85vEmC47iEYEEBEC AAYFAkfk+RYACgkQ7mLPpwWzXzIosgCdH83Uz9ebqm9MiIv2wAcFjfjGEK8AoI4n B7M+D5DtEeTpjgoDHQCSLsrJiEYEEBECAAYFAkfk+ZIACgkQKt4hMb5mZr+lKQCc 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<[email protected]>
pub 1024D/6B87E212 2009-02-17 Key fingerprint = 124D EC6C 6365 D41A 497A 9C3E FCF3 8708 6B87 E212 uid Max Khon <[email protected]> uid Max Khon <[email protected]> sub 2048g/CB71491D 2009-02-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEmbEFERBACe5xJF2u+R6020qrAb42ZcqdTUFDepqVWI/qrxXoEpC+fxAD4x 9s8zilNIZkG6NVpEr7swAWG3+XMSqM5vdtGDj09JFsGEuREB05JTzIBtqGGKWuEn Mhg/3K1ZxPPwAokm0Sr3kiGk0Q0O+dTesc1kq6xjuDYC1CrLKwVewp8GqwCg2irJ MsYAfODJFAXdK37hG9T5TB0D/2CqorXSukQ2L4U7aFOYlWtDnY61c+gLC9JKJSD1 TfNTjlJqfu7/1LqVglFZ54Pp6mXYSheq1N853jBFFKAfByiTvD8BFbUsCue/aJHc W+STjM8J9fY+oyi/OMZdgdseQ9fn4Y87sK9As/JsE/z4V+kn0V7+x2mqTJwqsSNe 1JyPBACeQ+yEVchDkoyK+lPgjHYQIqrPbu4SrRalR/WkAwPE95b3j8RHNsX9PL6T J3yDxXTOxQgfoCVhS0KPgLoLKTfRf3CvSZYduFkWJgeCtoKaYn9nBzcnlnCjrGvh 1bplgiOX/4x07aHEYgVRan1Wed2pPjpT7WWy6NDC0VP2HmvpN7QeTWF4IEtob24g PGZqb2VAc2Ftb2RlbGtpbi5uZXQ+iGAEExECACAFAkmbEFECGwMGCwkIBwMCBBUC CAMEFgIDAQIeAQIXgAAKCRD884cIa4fiEr9CAKCYt+Yc1AiBqAkz1fwDxLC6Kim4 LQCfXGLJOc7rvsR7lNT8ftexwa36dq+0G01heCBLaG9uIDxmam9lQEZyZWVCU0Qu b3JnPohgBBMRAgAgBQJJmxB0AhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQ /POHCGuH4hLIcgCfZ8MJjAT+wFB5DfbtNELP72xoTqoAoNXtUquEkBo3pkt2M089 xPqKnBDvuQINBEmbEFEQCAD49pzUGeoNT6HqnHx56l/+eqMljCm9OMUpt3CeNU5j UisWVb4yv83VP8cliLDYw5pWCm4TTSbsG+OdYrwm2l+lIVIUeST0XMxK4VeoNTJF DavUs2r6XS0Lspr60Ynnp8z8bA5/O/C82DB9AGo4dpew6ybQoXRyY3O1JAWBucuh Y/ti5hGtKT/n82XHYtD/Z8BcHN6DVEsU+tn6FWeKu1yZqen98ZN/KOO0GhBAgTn0 AyxVYC7sbsul8OHBgNKhUvukIBIHCjZWPYTqJwrwKwlrGLENiUd0sgcugRP7sEEI iGdqT3/uy+IcaKP8iHPWUD3lrqV9d74JXjFu7GZoMId3AAMFB/9MT4CxcJGMBBs6 +icdnFwHIGAxBkUXFCSgQsVr4OyhHx8Ac+WDIIeHLF83kd1PKG+ecAxhxwF+MlgG kU/Qk9pVwBJBM/Gs+hrwOQODsf5+sp3CcudICSzAXtzm1A01CQVfqQYCscZDQvW6 ikJZspLLJkbHG+p103C6xsmcOM3qFJN3erQpwRfhqwvKSwH7/pjxijEc6tvTzj3X nW/rAUZIHlB4PzSlLZ4plFLgYMBt73ewlt6lKXmMrnhFwJtcA+2bIQd3dAWo3Eba feGK5hqHATowvVgLjx+ihE4TdpA7kXyfZ+nP2bGFaCR8JnWVtKZkTqaWrU9xRPpB 3YwQNOtBiEkEGBECAAkFAkmbEFECGwwACgkQ/POHCGuH4hLFaQCfbr9tE8O9EUjf Mre0CBDDd2Ck2sIAnigLJE2wP8hPmK9bSvzEcd1qKpnT =3qdH -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/6E0FB494 2006-08-22 Key fingerprint = F820 5AAF 7112 2CDD 23D8 3BDF 67F3 311A 6E0F B494 uid Manolis Kiagias <[email protected]> uid Manolis Kiagias <[email protected]> uid Manolis Kiagias (A.K.A. sonic, sonicy, sonic2000gr) <[email protected]> sub 2048g/EB94B411 2006-08-22
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBETrHk0RBADYhjqulMVEFFnTMQcFbUpNad/uZ589qbTFE0wzbEy1EOQZfcCW p1m6gq5e/aijOC5cj7bg1OBPSiDZWXT2/Y22eiEYK0ghpTrb0Y69xhLtZI5om5eD HmdNhytM48cyhvc7gqm3hBNtLWVNskcHRQU7rd/S1cjQHS5LnHgpPgnVrwCghFub wCn4j+jZtbwjuksX9TIreC8D/jlA2Q4CfoJuXTBkTCIXwFSXWRg71VIP/Mv54JaN g778e5QxiEowNJ6OwYfbkOa491QEERGWxs1FI0WCrrc1OXJVCUau3/kiKpZYC/cW CiTEDIeEsw2AHKuOVWhkbbhtUTms57gBqQ2+9IHmkcmKcusw9I5mAiGLLfGLgfBC VpDrBACc8jLhV8kMmfW1x0QGYkQ0/k/rA8/nDo2bfe7+bXoGmGjFvUKiMJT7C54O nnMfTKWlOvSrc6HZ3ijKNMTL/NteI5TeBO7Cd24BzzwEnqyAx+2wI4WUSKcxmew7 BcXQi1UYhim+bobn1ksQ/vlDDWBBqYyyh+l/h4m5S5lG5dXGebQiTWFub2xpcyBL aWFnaWFzIDxzb25pY3lAb3RlbmV0LmdyPohgBBMRAgAgBQJGX/+iAhsDBgsJCAcD AgQVAggDBBYCAwECHgECF4AACgkQZ/MxGm4PtJRMsACePa4SsmNDWV8DXv/oo5D7 XJwoAlUAn2sO1W8dSzyt8dKcU4a9/8/7UGSniEYEEBECAAYFAkfmBh8ACgkQ1g+U GjGGA7YpWACfa0OiwJ498UvMtC7FO1IDaz1XCCUAnApZ6SbLcInAs8HiWc7MxwQy CYAmtE1NYW5vbGlzIEtpYWdpYXMgKEEuSy5BLiBzb25pYywgc29uaWN5LCBzb25p YzIwMDBncikgPHNvbmljQGRpa3RpYS5keW5kbnMub3JnPoheBBMRAgAeBQJE6x5N AhsDBgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEGfzMRpuD7SUA84An2lUyH/uT4WO 6VnWvAojQn67VlI1AJ97ZjmCpjDzesP/ymHtsfLqZN7BqoheBBMRAgAeBQJE6x5N AhsDBgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEGfzMRpuD7SUA84An3wjXvFKgYi2 3n0tI1s+fmhvW6+0AJ9tLgfRP8kfsJ5k5cIQiGp2+NbGsohGBBARAgAGBQJH5gYf AAoJENYPlBoxhgO2nnwAoLD6IlMVRwFPZwJUpdnaBvllZshiAKCImg/wIzfQ1OOg +325y5Ym+a0TWbQlTWFub2xpcyBLaWFnaWFzIDxtYW5vbGlzQEZyZWVCU0Qub3Jn PohgBBMRAgAgBQJIMxZ9AhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQZ/Mx Gm4PtJSDCgCZARCfhV4ITYxz5lOJrhpLlBmFjhsAnisPyWloawVqmZgq/k46r8Om IgyxuQINBETrHnEQCACMx04CokMkxgtf1Jt/XqIFL7PT+ieA5n4cSkUwMmFcHN/Z W26WjAbhOXYCgnMH58fZa8qD25ao5KGdYbL7t1Zbt01hbyQiZgh1J92jvSQ9cg1A q6cq465Wng9W16X1D4MNi97F37DEp5g0T4sFVBoAnApGU4kVpjfKcdb0IU//eQBJ KGuhG8BtHM8w2RmAvHV4Kyf3VROXh9Hsk+VRDmCQRO9D9ZZFC8zxG0KNcqtC3hym qlIgIpZVK/INqRocdLMhQxL2ULZpneGzHDTqVCmfSSeNfnFr9d5GLd7ROMBuYMTx KS7TQyAN/xC3RMKyZmFSliSpQFw/AOUnG9i0Z/nDAAMFB/wIarW6c1h+lgP+B6vn sRI9StPYzS9QYogCpK6jwEMsmAzRGUrWgw+uIyxujKqcIlWypELDzPZJ34sjoRYy CCIHfdyNhFAGiZXKmdjETFFsFEN+Q3c58mXHYnVg65taQU01ISpwRhL0wsG4uws6 QFVzX6lgIwtoIEPUr7ptr8N0zLUI9BE3S077WuscEnQMUiRcY9XmnP3ms1tQviVa ShTRG0yhVAg77YH7/PAS5tflVD8RlY5B3QFX9gTEXz9vhfgIy3FxWppP3GiVkXsy 29GMMW8/sq9k8cpJrBRyfEXGhR+FCpgT9Vixo60iWpIfF2RaxxI0yUu5XnjcyAQj tWO6iEkEGBECAAkFAkTrHnECGwwACgkQZ/MxGm4PtJTy8QCfY3IIv45shk4Um8ts x4PX/wzHxscAoIHPNcR8OKoESON7vCoepxdHTQ9n =3/vj -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/D932A1CE 2012-11-19 Key fingerprint = 2202 B5FB 78B7 A303 4919 B7C7 25E9 69B1 D932 A1CE uid Jung-uk Kim <[email protected]> sub 2048R/41858FC6 2012-11-19
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFCqm1kBCADdoV45Z2rQ1wOqE1kuEJah67+nsKRI13YlHvg1ILW72ny/Ku+p +CT7E0ZpIxYUwc1P6KmheCXq234wRjmSZ7/krDHdFezT2ZUiwRZlWnnDjEIpzxok m92W18Qi7o8CMTou3iTKtTVq/c2R5TcrcC8y/TACXPFABhpHNngmIbIrQGUsHifE YuJwiETr8s76HhdJwtZIWPGSjFW+Yl817e9X0Pa4A1/Y3bsA/KNmZW+CIkv/zy5k g8wpGomR+JrLdt+5MUziZA8gqCJycZa640RUGAF3QtdMHd2t1/ERQx/wje0LXBdD p+0fG5b9IUH/UBtT4OJr3WjNJr7Lufz2KElPABEBAAG0Hkp1bmctdWsgS2ltIDxq a2ltQEZyZWVCU0Qub3JnPokBOAQTAQIAIgUCUKqbWQIbAwYLCQgHAwIGFQgCCQoL BBYCAwECHgECF4AACgkQJelpsdkyoc6sbwf/YC84nBelpcachGrIhPV4DLcvCA4e T5e1G5WN6WWehpio7yMoM3G4TbTvrDpzrlFIIYxVKEyNRxfRLKeKIDjb4S/vzVbY nH8kuwYSlaVSmHOzu9fwfgiceElKMukVbQRTOBa3e8JLxoRG3A1TCo6AZXMY+PnN 8UIWHbrwjyqOprXlZMC7BLyE5cu7oEHWpiwkXIuy3FJzfs06yzPSxH6DNGJSFZVk oHReo8fUBMs1Imn6w1DrDunepan88WAhRTQjM0kM0MrWI8oEnhtoYwWSm9FMpwK/ mdcdxTMuak4+GqKgZiOj02vMzqRYYEijCrUx4dKsU6SGJ6SMNJd01ETu/YhGBBMR AgAGBQJQqpyZAAoJEJpWstW/ap1TgYcAoM4MdE4GFn11n3b0nrEA+LzYQgDlAJ9j 0YnyI/0Il/zsgOuXLvt8+MeJSrkBDQRQqptZAQgApPIqqTzBVG6NukFvKzak0CrC 4zrsRfUGskoYXQTqdeM+ajRdZ/zMebcFdut/RDwJhPMJ4UV8HfGGwhae0Yy/qWs2 9NoNsmhicj+jrrSZLYsnjrnDqCjJ6wLHOEKhcPd9e/J3QdUlfI3tll+i1eqvr2xW kd+ct6IownrdvEhBzQsEQBgJYKy+pQ0KqAoJ9x5bnRN8dXzdq8o1FoVEN6zXNeGt n7TT9xMDMyJeItlvOOQyDr30Ne0vBBlPKJX7oiqEri/N4CeIDhUS6fd6qk9/ENwI jEThKJB1xJFzXWKpeZ9XsxPVSJn7KpBiiWYhh3Bphs+oitaTntpo3GYWfyzf+QAR AQABiQEfBBgBAgAJBQJQqptZAhsMAAoJECXpabHZMqHO6KkH/R1KWRN+t6zZRJ7h Xkf39iZ7DgentWwnSjKTUryPsUrr2IliFo/z2vef3dlV+RxoTIvK38Tj6hcN8KtS YSdCDuQrmGg6x6JzoO0RnFhZz753JqMVCeWnLKcUZXd2j3fanOAE/vvvYFFS5aq2 KYb99fj3Cf6q9TkRIKpjD4/P1XBcOrmrJLbsWAqNhESCFlTgXdTF0hdsRsoelebw watpgAdCNH6aPbx7DjAyVI6HxNODbWrwFGOxRRJvmP5dyGOD+LuFNJtmjJKwrZK7 ODRzrEZSW7T0Ghor/LWs8r7UDP9HWibxLF5K6Vsgh78ncA9PHxDsXGIMbgkynyfm ONweM/o= =cRAI -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/1A725562 2010-11-05 Zack Kirsch <[email protected]> Key fingerprint = A8CC AA5E FB47 A386 E757 A2B8 BDD2 0684 1A72 5562 sub 1024g/6BFE2C06 2010-11-05
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEzUTbERBACySFcOGxN2msGiMvx9yhyQuklGdDgYKAzm/TNlImVQF6q3qhcb CJ6FaE99kFG5EmQXT8uCRSzb3/dIvNrhjTxrmT63kjs67mKnyHky3wP0NHCNSmZs b5Ky3h/SPOpb06S4zmhI7MGEm/xwBkQqc2YqfYTzRW83VNS9e/sTNzzwBwCguOPz Hr++4PFj0nr8I6r5HKMrfzcD/i5B4dhi25M/KlQsM2dh3r/z8KZ/79gmHKBJMrHg zI3sczQvXNo7jgaJwqgSInlfSoKKFyBw6Oqr0kP31E0K6ZKdrbpH982BSx5qtGe2 xnDJNHrSOtgFqg3EW9DaYImdUmUOeW31evMwhjCYGSZF6iNVh6sahfZNFwmEgUXU +zBJA/0YeIPcQNdOapJ8H/ATRH7SLyMME+GIOx+85VCD2VBOq+WCSN8U7gJ/FFTn 0NCVAVtPt/IAOMCZTob2as0C4w3Ho3YZTnl0jl1taYCRQnENQoVoT7cCqN4auypU 0H2EvGPGUie+iZ4r+G2LLdrqPMiR5UTRcZuPk9O3VWXPpeJuoLQeWmFjayBLaXJz Y2ggPHphY2tAZnJlZWJzZC5vcmc+iF4EExECAB4FAkzUTbECGwMGCwkIBwMCAxUC AwMWAgECHgECF4AACgkQvdIGhBpyVWKvcwCfXGP1APXbQMWyacrwv4vfCjdTUpYA njYDgW1ok7AiabZjdT6APpGeqDKyuQENBEzUTbIQBACYKMjEfC82aby7YMRmNqCR IDU43ipbpRsUSz+TdHe61OYBL3eOFM5N4gp7tTmLisoW7AzFdiDgM9CUv9V/+ucO cM+Kmloqe65XWyCQchCISe5+8mMqFG617aDvQihHjho473IxlersxGS76WG7RDUn EP7gQeU/MzBcKi5Wk1ocOwADBQP/ZAgj3Oub0ntbBealsqEydjhysMMCOjOWJ75h lmBfH++UXiN3rFdzHzGlwLhTLY6I992YZM5fYPw/ta3w5Y2Cm8c3QqG+RcoyK+dH c9ce80Ddq1DV4F7RWNhjl3ej9kOneb0XhPdZ3FVDlc0P/88+5nL4bRLMuzp7g5rI ONhG5W+ISQQYEQIACQUCTNRNsgIbDAAKCRC90gaEGnJVYhriAJ0Y6dyrFOU4sLuR +KLw5h/8RgCNPwCfVayO/zLdURlB+BOpbmyxn6WnCLg= =sdsn -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/2AAEA67D 2011-09-27 Key fingerprint = 40D6 097A 174F 511B 80EB F3A3 0946 4193 2AAE A67D uid Jakub Klama <[email protected]> sub 2048R/5291BC4D 2011-09-27
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE6BwQkBCACllA3LvksIethpx05Q3MwzG/bAcPBlclrl/tRlPtPGYqYlSfRc iVWKzOHq7k9+vVkaMmGwCyjj7/AE4vw2MPWCKODX2awW7xG7mcHWUZBYBcK4b+Wp 2kpUrxyeZwSmzdqj3p4t9vSyY9njTNkRaJ3B1ozlEx+8vq3SgFHZFglHjuyyDi0R S8jMIXrHJb3mhnTABRh90vIj0eHHsuq75YwnWdBNyFU8t50zT/mshUCGlX7UWqEX WhsXXlqNqcFRW/AGpqwj8lHcLC7SyrNB8wu37L+duIqcmnTeT6aOjHc57Zle8Jdj EtUVtRoJ4txRnHLQM3B4sZ7ybP3sCTMnPzV/ABEBAAG0H0pha3ViIEtsYW1hIDxq Y2VlbEBGcmVlQlNELm9yZz6JATgEEwECACIFAk6BwQkCGwMGCwkIBwMCBhUIAgkK CwQWAgMBAh4BAheAAAoJEAlGQZMqrqZ9C9wH+gJzw7uvpz5VwJRN3buK4n46v8qU YFQrWwGzVO0R5QMrFcN6x7FzZupLFx3BOih1ak3UPVyJ3fcMCORAHU1QkCnwCBnm IUNRGPwC2WvD0hiBcBXpe6BRbshyeWkvqaclnSvcOWUZP58gmJnLZjCs5ke+se/T gZgSTTuN7mMFCG7MA4EXcvtIX8VWXWVyXufXFdBQnQkuLtboetYE692063YUIslK URw53loB9jonBkZ2lWPkN6Q0HF/34HrP/Bw4ZZnYZ/gzfFhoQdrRxCBaK7R2TrJ2 kF2FSUtsCHJWgLq0cYygf4pCz7oYTt9x5IuubH4SDAjV65JgMic2RKkehE25AQ0E ToHBCQEIAMopCcGmuQPYBVgEcl1bEtwG87mJJzpTNBlOaE7JCUK7KSI+9qE5o5Tu jqFF39mu3Gr1kecsmtNNfCNW+ja9MtTatcnsMWMhZ5uNFUG3y2+Kotp1DEWTAZcM 9TnX9IrnyLQvyLVJT5LI4qEcsAYHrLyJMrCu7c53M+RVigvimniKvW0yBZECxqYv nq/b0BSJovmtdXnO3wHLgz3dDcMnOAgGNsMpBztoRjiC5ssSCEfnCMLXVjmOa6Ji kRL740TTNK1HK00Wk0pfi5NEiTq+XTyFg0ekeMZIIIRQZHkFFA/ThJoEvvOb9pv5 vkxifCjz0NFTecttnpVDSPWq77KYM7UAEQEAAYkBHwQYAQIACQUCToHBCQIbDAAK CRAJRkGTKq6mfXU6B/93a1Us9ESZfzwjg5kd2Rf9GtzJkEUlEKKJWkG7eK/6p3pr Qlrv2S4coikPCbasdxi4INbQbtDP44Hr6LNCRXB4VCeDbOA0W5H4hO4y1kWXbdTN X1pTXBPgj5kFe9lFQK9arHDgJsJaqKtDETlTmH/iI9xc51ZM5aeB4i963KixnPFy KFHjjAynTZSIMd8JXYul+kWpSSP5dckvW4G97PPoqbz4lsDUsgjf5Lg1lhThjlDz Jwm8yXz0fqORkB+wlEj1fsF5itmP+sG0YipncjFXGf/0ToggRucsSlDWBV7l9wBo HeAGT9bpY64DAhB5SLQBDphtBChiit4TJqkWVs/4 =Rt4u -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/6C6F6CBA 2001-01-06 Andreas Klemm <[email protected]> Key fingerprint = F028 D51A 0D42 DD67 4109 19A3 777A 3E94 6C6F 6CBA uid Andreas Klemm <[email protected]> uid Andreas Klemm <[email protected]> uid Andreas Klemm <[email protected]> sub 2048g/FE23F866 2001-01-06
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDpXnNsRBACosqQnFwHgBcl+H2TXLWG/uAAdcZ3d4vlC9tKIPif/WovfOTuA CM5KMb1Of2uAQm5S6KpSCDSudZIZw2az3ka5ESQt82kgd/1Ue8FJDdPkGY1RZrEp Zq7VDPfENAM8NuYCXIdVYpd860tIfongUbpgHq9dA/bgoDDHXlaBQzUMNwCgurYO XH1FSx7vApyBFqaE9ZKglRED/jbd0UeQ8E2Y8jvoHgn9kDGjqgTxNerLK2g7gRgx o0U2do7kjKKWoUfij/x3RRpGUDzkB9xhibyoPQKuVim4NVNdoUoqjuSDnoDT+XtL B8bYGXAAROPXu1AT1r/P5k3kSHDExu1qfLEk9Sch7CKrVdNaZHsrknbmFPPmhdsf zz17A/oCfA5tXthQ4YOlmyjJXiMmiD/aX1fQovjayQDD/diNYQ/z3JUuaA01Nhw4 02LDFCk0xO2T8wWIC8Ox9J7twKKBT9Ep1MpZw/mY7XlpTFP82ls15pNIshogjlX8 23aBC+xrRda6SqTAnqsneyxGujSkS4sNubUWaQf0UUfcxZpA77QlQW5kcmVhcyBL bGVtbSA8YW5kcmVhc0BrbGVtbS5ndG4uY29tPohXBBMRAgAXBQI6V5zbBQsHCgME AxUDAgMWAgECF4AACgkQd3o+lGxvbLqQrwCbBNMKCTamyfzbL+69hya4MTApyOgA oIBKu//LaM9gC+rfYUSFRaVY5PJetCNBbmRyZWFzIEtsZW1tIDxhbmRyZWFzQEZy ZWVCU0Qub3JnPohXBBMRAgAXBQI6V51BBQsHCgMEAxUDAgMWAgECF4AACgkQd3o+ lGxvbLpvuACeJLJc2HBP42h8lVDWTZwV3qstGXUAn3yIgz/FK7+//Ax2ceO115u9 T76ptCVBbmRyZWFzIEtsZW1tIDxhbmRyZWFzQGFwc2ZpbHRlci5vcmc+iFcEExEC ABcFAjpXnVgFCwcKAwQDFQMCAxYCAQIXgAAKCRB3ej6UbG9suq2VAJ9TDD3a6fsP E79VBmop25fpGRsmAACgobOH43x4KJJxNSFM+sOY2QCv+rS0K0FuZHJlYXMgS2xl bW0gPGFuZHJlYXMua2xlbW1AZXUuZGlkYXRhLmNvbT6IVwQTEQIAFwUCOledhAUL BwoDBAMVAwIDFgIBAheAAAoJEHd6PpRsb2y6vC8AoIPWrHd+jYEXzo838pxFoJ+x v0N5AJ9kyfJz4y0UjGdwMrfLCRL1+h/OwLkCDQQ6V50XEAgA7nyqQb43D5Nl+4bd pwt+JqTn9/MnmG1Cw0h3++JAMijW/WTGGrpgpuFhtvfjs0nJ3FZMlDjdRfJ2LKa4 xR4J/2gIkYzvuI+JaiojvyaKnO/VZC10zH+kQmEfAZTSONucKPOPPrOX87fJ/SLC RRPJdjR/kcub/yR7lZ9jI+5fKmv06Vgdx5agvL92eY14FdEhg4BiN99CKyOIdTPF xgj2bCultqldQ0FhB5Iw+IYwqV6BJsRewrNJNoXcYLeHkOyf3ULxYwYmu/wh24jW ibfotTy/hvRO6CBG1+r+Svqxj161T8vtFWEDdlMW9Efog3O7zjI8lXWF2pOgGWt3 7g99GwADBQf7BlcqJ8R4BrI/Z8cJbvWWBftMC/dx8F63ISjq65PKc5izq4fSlJWb AEDyTv59Gv7qDSQ+ECnjivw+FBu//BY993kXLIE2KB0AY6jgMz7F4JsBhYofGMSE uCFgvh9c3EO326RtkgsQKM4pOC6LFZRAedjo6LZzm9k2JZK2Xv8fsLZIW9dSEtqG ch32Uu9AfThrFnZ6cApeRnxWZe3btBXbgxK2w3jT16j+CtIbeJGWdF8NN7IZ4+4v PzdDAVBwAR2iUz9vn/d0fGhVYLHBFekfB0jyl9gfgPLkXyMorDOhJ1nhdAI9Jm6g 7FThPfNDzfgEPEgSyVuMqEoti01u0dw7AIhGBBgRAgAGBQI6V50XAAoJEHd6PpRs b2y6l8wAmQHMTVyf5sddE7j9+RCEC9L3VluJAJsFafICjeu6dBMwi4QQaB0zqja4 7A== =E/l3 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/DD61C2D8 2004-06-27 Johann Kois <[email protected]> Key fingerprint = 8B70 03DB 3C45 E71D 0ED4 4825 FEB0 EBEF DD61 C2D8 uid Johann Kois <[email protected]> sub 1024g/568307CB 2004-06-27
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEDetekRBAD7mBgP351FCNnqp360OUy+ZKCr2IxUU/Tyffqyrrgiol16kTEO bpImo5cgZcw+y3wTSgGxwbb+UmUcJhLDO0olDNOCOYdBzzKfTyZwLzgVaC/XZ2dE LQa+3FnIp0btyU9vermk7GqWJqvVUTnMSjinqWS0MfgrcuEXjXTQ1b3b6wCgutKz BhEasg38JthFvIownezYwHcEALNJsxEnsfEMm+DQXPUvWTiScu2QR2v0BVVzfg1w DMaEnSjw44NF+cyyKXfqx3hYkboRw66GMvcbfl7AYh7ThfDjof5MHfBbe6aeJwd+ pyVS9BRiXMDbwnuPm31K1zsyCr6XeQquM204Jb1fdMiFEi22A2VxQxAY4cjenvgx 2UIFBACBHtPfsK8QyAXlNtTQqvMEQe01pXm3u90pL8DBoWsWR9vDIlnJLaMgi2jG xBNQp9UP9ZxS+BiAoEkUficsoPvoMkzQBSnfcDJfnyCXranBuuhsF4mzvEO8uLJw 4NwT+7jij0udeWe3Ymd4ppWHEADhx7PLdYdq4Kczuu0XcGqHarQbSm9oYW5uIEtv aXMgPEouS29pc0B3ZWIuZGU+iGEEExECACECGwMGCwkIBwMCAxUCAwMWAgECHgEC F4AFAkGV02gCGQEACgkQ/rDr791hwtgJbwCfeBGfFaR0IIUhvfVy7GYFQUjHuYQA nR0Vl/9xS9SbGpk9nqDCHooXgrCPtB9Kb2hhbm4gS29pcyA8amtvaXNAZnJlZWJz ZC5vcmc+iF4EExECAB4FAkGTw+cCGwMGCwkIBwMCAxUCAwMWAgECHgECF4AACgkQ /rDr791hwtg4zgCeNkjhClKqeDjTWvoSuh805WDuXnUAoKFid8813Hg7HATB4UwD 3KvmHBIFuQENBEDetekQBADtrxEvnshp47wNGP33Vwas4RtDVp40lC51yVFj9Ior zXhq9SD20gz8qPCwG3a4Srhbh3rgjPvzzqcjSE/axk5+LwJ2KHySlpfwu4wTtddf o6JzlJYWtQE+bcp65vnd6L5DGJsm1KmRTOZOL6wWxTXft4lgxfg1MEbzOKcL5YnU BwADBQP9FCPfDZYwAsZya5h3aAd9yg6dvDsObs1D1MMIiygr54/cmGUiPcI6zaga hTfDiDGanlBk1idFVKh0A6ZEza55NA45lJ02W9amWvrjG+PB8wTX4IWRAmDN4ql4 QuahtHsciUVzw4BtHhPtM1+DpT+C6aPwclpmxX2Az8tHDjHKdq+ISQQYEQIACQUC QN616QIbDAAKCRD+sOvv3WHC2ICsAJ0fvZ0rq70bwTIWfgYq3N3fSZfR6wCfdrgZ /8nwcdMpTA2LAo1YbndxFW8= =VCND -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/3BA53401 2003-10-10 Sergei Kolobov <[email protected]> Key fingerprint = A2F4 5F34 0586 CC9C 493A 347C 14EC 6E69 3BA5 3401 uid Sergei Kolobov <[email protected]> sub 2048g/F8243671 2003-10-10
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD+GP80RBACjmIRFKqJ337zOjW51eExucWRny0pu5fuGaxuJmGSbKaJRAORU 1jx9i/Cxcw7iwrnbR5xeyjWLDb7FIAemPltBItt0tE9H4pQXgP8d8VL3eehguMda o0yfP7WUm3U9uriJEJ8141Yql5IR0e8isQa+YsYbkd2RmDdCMDdC3W0Q9wCgsquv jc1gvAh7ypvhk8VLhflAeZcD/jQclE6S2zLZ1DSP2Q5mmuMS2ouRV6Z+fbWKF9XF TSxdLevWcXmPqvsXFT75cz8pcBIw4c/wVd8OsPU2fd+1LZCFdms1PqLjhUfXgVbP Q1Pl8zCAyriSnR2+BDwUMGzEgidkTjmjlbwhGzPsSJ8rv4i18xYs/JbmkeAV/ZBA e6jrA/wMU3ho5aIJ69KxZb3bmPVHYrqL8Q3n51uYausLxdHDMxVvjL06VAGWbF/h TdiFJ1ngMKfcfzI5/awpKwb9FPbERuNvmT10MDKumFW3xSAJMRzxh7O61u8N7dmc xLdirICQMRN2jPo3v8T2ANsdydVTn89nqdpg4Bo9Rsz/Fdnrm7QjU2VyZ2VpIEtv bG9ib3YgPHNlcmdlaUBrb2xvYm92LmNvbT6IXgQTEQIAHgUCP4Y/zQIbAwYLCQgH AwIDFQIDAxYCAQIeAQIXgAAKCRAU7G5pO6U0ASlRAJ4mnVHx0rA5dhw0scFGOddP cH/w9wCdG6HPWlDpXFB5nkpQalMnGzLAkka0I1NlcmdlaSBLb2xvYm92IDxzZXJn ZWlARnJlZUJTRC5vcmc+iF4EExECAB4FAj+VJGgCGwMGCwkIBwMCAxUCAwMWAgEC HgECF4AACgkQFOxuaTulNAHJ7wCfbcMzZiTmwuTD7wLTxvzC35OQE1YAn3et7KAt aLZuVXYIDROr33RIlfcUuQINBD+GQA4QCACIrLJbs3SkUJpuvYC1N/iykFYGHKPM L+XCCK3A4HL6f+GyCpvajz62cjUfuXv/pkLjcYANnqKKPJu6Bj2rFmOG785R/RPD o2dl+zlZ0fggQAv8zZqIP2KyQRSVa44Pxc/G1V5odcg/QOcKU+FZrkRXoz8SqfDU OEfarQP687+DU+Th0Nwn5M20+0ml7yw0/y9DtggWXzlWyIdYfhU+8HckvzgXnUFA tPdfDUzUxEjvVBUwZ5iHtUlId6sHiiTCS/fbnRzwJA1Pu1E52B2AfsLxFrwV5cRC ASfi7IGhZazGCctqZi4hbWQCB/+ipEVGct+bD9BpW9yS/JiMAxcwE0ubAAMFB/9F k6mZUzBbxQkSbXP4w1VSxf2m/lIV9v9M0LCMwjmcsJzsdLUG/i3Zo+hAjT+GznMU DVzPHq55LiNs2MKC8WKHXgXFCB2uoZvlGu88I2JjucoeibtC7zbKmVOntuY55zTk uiGkGRawIIKC6oqVFV0EGXxrcJ6v3/0vgBQSva08reETZaUFe3ivt0rU0NSbhVJ0 1WiPXk9wFY0ccemUVmdcX4hhC0yyBB0px4qbEBY3+mtHpFVh/r24GXvWXkbLowGd nmKeigX/tlRyYgPHLM2goUHUYe0erbKp2fyeQhockLOWY0DBFcFRK2kSx9HYdtcI N45tvtkBza2O8C7uCtwgiEkEGBECAAkFAj+GQA4CGwwACgkQFOxuaTulNAGwbwCe P3RXUuqmNGYCM0IXPlop9XLZIcQAn1B9zRfHFJm7tgMI0A6Avybs7V8i =EDjf -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/2C172083 2002-05-21 Maxim Konovalov <[email protected]> Key fingerprint = 6550 6C02 EFC2 50F1 B7A3 D694 ECF0 E90B 2C17 2083 uid Maxim Konovalov <[email protected]> sub 1024g/F305DDCA 2002-05-21
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<[email protected]>
pub 1024D/8ACCC68B 2010-03-30 Key fingerprint = 5128 2A8B 9BC1 A664 21E0 1E61 D838 54D3 8ACC C68B uid Taras Korenko <[email protected]> uid Taras Korenko <[email protected]> uid Taras Korenko <[email protected]> sub 2048g/8D7CC0FA 2010-03-30 [expires: 2015-03-29]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEuyDPQRBACLuLqogLkae6WFGyvW6JQ5J670eCEbey6vtH6xpb8DLeJR4VDC qAMPhDc9QbDz/ynz3dd2p5T2OYQd7q2CKY/DiwPdelUIpaiPPx+PweANvy2kFOXr Ahj9Bmpb28BMj1n9nXj3/hJLwgmQz8YDkHp1NDPCRV8u9/v4LT3vaVbdUwCg46LD cPg9RlzeFcIhiYM5J6Q1wzED/3uUNgjFrz2Ak/FTQ+3FDuG0IR7rfJ+nbqX1HgvL qsCPB6tRZTC4S5V51D6Uy6dJ5oE9HB4hTcwzalQ0CkjVoJm2qZ9bG1AOUlJRpPch Q9rK9ZuDrZfDFxUvpVsMPfaX74esmstIDsJsCrSeFANpSNYVxkf78YZH9ZkNu1yP ra3kA/41pO5rHBROKKLB8qVnKisApiYK7WX87yroiZXQKMzVXWn/t9NMkWTatmJC Yc7IARco/MoW1OD6FB1Xy+oUJcusTBcVsbPbERd4j5Q5LBHD8O7EBmHNP8HsNh+2 q8QugNyEQVcY5Fjv5OkrIj8A0EDt982Ow/bt78KlO26Jzqmg77QdVGFyYXMgS29y ZW5rbyA8ZHNAdWtyaHViLm5ldD6IYgQTEQIAIgIbAwYLCQgHAwIGFQgCCQoLBBYC AwECHgECF4AFAkwjcFEACgkQ2DhU04rMxoufqwCaAsi0A/6lMNrT5UsXoPnL/WZQ M74AoNLInd8Jk/uJinoIjzOQdJs7+wQfiGgEExECACgFAkuyDPQCGwMFCQlmAYAG CwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJENg4VNOKzMaL0QkAoJ1hd9N1zvKL ug2Nn6GmYkLM6wAUAJ4vTyU1ST3Xq9Rt72F4iq/Tmb9HiLQlVGFyYXMgS29yZW5r byA8dGFyYXNpc2hjaGVAZ21haWwuY29tPohiBBMRAgAiAhsDBgsJCAcDAgYVCAIJ CgsEFgIDAQIeAQIXgAUCS7WyBQAKCRDYOFTTiszGi7F4AJ9++/0INO37orBkdKbQ LvgVAjO6ZgCg0b6qRXhDz8P0Nj1P9ZgmfLZa2He0HlRhcmFzIEtvcmVua28gPGRz QHVrci1jb20ubmV0PohJBDARAgAJBQJLtcNSAh0AAAoJENg4VNOKzMaLRewAoJy7 QuyfXZ4kk2AxY27dgdGi9W/HAKCYEbgwje7vSQNP8AKJQ3Bxg8d4yIhJBDARAgAJ BQJLtdgqAh0AAAoJENg4VNOKzMaL5zkAniFyFwkqpbjsbi62NX4QE9nfqbwNAKCt Mj8TW9/cPWFUfXbRA7MEusx+h4hiBBMRAgAiBQJLtcLvAhsDBgsJCAcDAgYVCAIJ CgsEFgIDAQIeAQIXgAAKCRDYOFTTiszGi+U+AJ9cYLWPHrsh24iCVlopHKflDlaI 4wCdG3zN13yfxr4d2WUoRGC0Wh0lwIqIYgQTEQIAIgUCS7XXLgIbAwYLCQgHAwIG FQgCCQoLBBYCAwECHgECF4AACgkQ2DhU04rMxotK3ACg3NdQFkLLbzTfw8IZ9Egf v4kRyJ4AoIUiDHa6q4BRSmjAFa9ml3kJowRWtCFUYXJhcyBLb3JlbmtvIDx0YXJh c0BmcmVlYnNkLm9yZz6IZQQTEQIAJQIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgEC F4AFAkwjcFECGQEACgkQ2DhU04rMxovdVgCfSRNVxs+9vDTZT9h90xDfEZLlRkoA njBF2lvR+2aLQOYiJNxzkk917ESKuQINBEuyDPQQCADACvXGQJxNsMPvXwnE9VEm zUzW9bppWJ/Qa50Jmh2yRxvxtrxjLTA97Juiee7gUWFrD1OFFsDf529wrl1sWsTj L6Qi3VhwQA2EP4wRRdIoNYl9dIUQJu+8ZpH6YaV54qiSoUeGR/hOBt7/GP+p7wGX RavX2RKY+vAYSqTNWsbRMJLtnUYMNtPBcOZgp0QP1Lo5JQS3iBMwY/1mfF0XBT9t ckbn0eMsPKIEr/1XAaCSbPuJknyvMQPwhM/ziQFAZwDYpYOh2Dy5Op2Y9tR5DBQv R8b1Qh2S7HYn7CcS5I9ADXwgFp7652YNLDt9rfPj+pY9IdhmfZQ2idWiQUjPPe83 AAMFB/9ax486+NgOULnbm7rV3Bmc9ofNicuD2KmpIXkNxPve03KQJo1nKOi3G7dn FVO7XlL5O6+h+4LpbFJz71eLCSjjgVdokO6Z3X+HjUKn12vl/0X7hZCUsRD6MheJ bfvD4XJWyP34rcWZcn43YHb9audmMTlOBfQU2HRw8kF7S5IDSqqxU3CcTGQ3zn8x Z7PdN6IHATkLFXNx6DKyVGyYE2FNz1ne/OZSn/rIa+uwvWzlzp6FEtMzd2YZ7hzl JPaa0C7kX4L/h28gLURrBaPwTcTbNoRYP+/FniNbzq4AfnW8EUypHI3XzOI9tGVe NkhSfmgVGMMhWj4iAl7mRzarSjCKiE8EGBECAA8FAkuyDPQCGwwFCQlmAYAACgkQ 2DhU04rMxotsaACfY4fC/jfZOwrRFRr7iNNMrcN+42QAoK4HfkkuKzKb0Nx/JVyi EsKTn7/B =meSB -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/D93798B6 2001-12-21 Joseph Koshy (FreeBSD) <[email protected]> Key fingerprint = 0DE3 62F3 EF24 939F 62AA 2E3D ABB8 6ED3 D937 98B6 sub 1024g/43FD68E9 2001-12-21
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDwi3FcRBADkiWSSJSOX38CIPgbUnnDQ8S79eZ0zQYnYn5aeRMi7w0B4SnQP 1DcFZ/EHNtQWJTCaQBWQZZWvL1ZjdK284YrpSKs7gfoV5BufcFqKatewWZUfsUad FEKTXLXlZa55151UtFy9erkA22VWHmqkauDFYl4DiOtaUWCX1Gg8xCvB3wCg0sbC /VtANEu2XbxUp5pGmReNn50EAM4vLWfZk3T2woHN0VBOwEk0BM216zfJQGLFUFqT nLKezO/QqoCCcVpH7rwV0V6NI1w6YOSx14CU+s83iyyO0KlRypoptWKBoA+cjs/y 3Iy05K147YfWUhgkKcyw/Qwx8wCDaetG+qZCX4nY0EByezFe504uDkcxk5BrqBX8 E6kzA/9vSG+J4aejKRw9z7Ku5cLV9ygXCksu325uY2t+J6b+48cT8eFMOpgUHyNV m5ypOL31KYRPkOzK+iiDoTPODh4Zg8YZLsgWdTrC0ZQW2nWPNd3Zv+tLAmiwVjIV x4XqtFXh4nhI2eM/PXhdN37R48OKB0DmrvdH819/2+9upNvO/bQrSm9zZXBoIEtv c2h5IChGcmVlQlNEKSA8amtvc2h5QGZyZWVic2Qub3JnPohXBBMRAgAXBQI8IuKv BQsHCgMEAxUDAgMWAgECF4AACgkQq7hu09k3mLaWwQCbBEeFWt8z4HlnAys0FYB8 /U63eqkAnjKz2Lxj14N8QYtbtFThZRB5fq5cuQENBDwi3GIQBAC79Y5tcPi18bZd REXZmDOnLc0gHD9y6PHgR92BUCWQuafcxfQqqY2ESF/JQ0dFfBEkCAmYU2YkPZA5 A7skmv9zHun/bXAP02hrvMU1Gt0ZHIzDV0EaO+uxY8eSKg4JuxZzpgzWCIxI/6uh ZhOuEF/uql7IDKMQcOfsvVrF8cZfNwAECwP/UvxNG/RUOlOHdRo3hY3H5l7zmaCi AwUU6Z+LxDn+fwERX7wL5rasafi1r7/9VvGADfelpxKR0kZM1eKYPtri1zS6Zm5a CC+QVyyoTcb+x0mWForq6FxLDf7+l/O0TuEG7VOH4RgLaT2N33yoScEvxdB/Qo4w KnT39F7lYjbzBvGIRgQYEQIABgUCPCLcYgAKCRCruG7T2TeYth30AKCzp2KXBqsa N6wOyM+tHQ4DKNMasgCglJCipoxpnnvCsGiZJv9AgNQFDGM= =a9D2 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C9F25145 2006-02-15 Key fingerprint = 6E56 C571 9D33 D23E 9A61 8E50 623C AD62 C9F2 5145 uid Wojciech A. Koszek <[email protected]> uid Wojciech A. Koszek <[email protected]> sub 4096g/3BBD20A5 2006-02-15
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEPzlGcRBADVxGiWQYCSd/HJfQi958sIFwxgfaFLyKaD4u8yhdG6s7SOz6mR 0jTdoMfg90n8CUvDIXeHj8Hhot2gLLmOK8BHXdR5/PBkvoOEAiqWjmFSsxUKyKTU ntYgpIwNtitVVdunp/kBk/w36Ue5veNL2GtqbVRMgp//ebV3GBZtAr/QowCg+w6K 5vebaggZg2H4EcdAJ8N+5wcEAK4PGjLtf6KWwFh81TihtD91EAVIMjsZO6vzofK0 QpMdHDI0QZgvraCpsoLppYpj3dp5XL6mxRCCpFpWhhRP8aocR2ujvXYJY49qGi/5 EowE0UuIrdv52ubCHlUWcyYdrnIa/QAh9JpHJIGdIVlysjRujygctUH1HK6zZYSa 8R0DA/4o0up4kfwkdm7FGbFy5arNR/Zbe51dsgkA4aPPn3MymIBR1Tb4z+M0uHya VKyER9ISP7gafpjpZ9y4D5lDWwL0m5oLfgm4PqMJ6/44D4chDRlnkM8w/l6VqSq8 XVmU9iKH0J+O3/jX0tE2Mbk2gL0pZKeBPcnkBHLSkLUHWNrETrQoV29qY2llY2gg QS4gS29zemVrIDx3a29zemVrQEZyZWVCU0Qub3JnPoheBBMRAgAeBQJD85RnAhsD BgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEGI8rWLJ8lFF8hAAoJemHjhjIrhB/WY+ pFmKwfqNWN4YAKDzV97FKMrQsq2ECzvWSV6hF7QMkLQtV29qY2llY2ggQS4gS29z emVrIDxkdW5zdGFuQEZyZWVCU0QuY3plc3QucGw+iF4EExECAB4FAkPzlaYCGwMG CwkIBwMCAxUCAwMWAgECHgECF4AACgkQYjytYsnyUUXbMwCgqqKc+pI+XY398xJS phO65/Z5dQAAnRVA0RLAJHRzSN9aHy9RyCucN5oJuQQNBEPzlJEQEAD7Lq9Bd3jR e4C1u6kZCnKsbkNl5Ogor3cwoowydWrwrP9KBis6s7e4Zsek4ylR1QzV77G1ar5/ 9ecjDM+Vok/R0sGkufRUfD7XBI1mG1KJwnxZYm8aRYCERTRoXDThoJwUoHzwVn9y Xi3gyvS8GRLCWlAXYwJrYHn5ccCKfrOSdQG10ZWEj45zDUGFw+PSRtAOfCze5cAl txiDbiOER1/ryQaKutMPT3A0zDbTuG30/m9F7XDXsF/S+7kWzyfO0156xKORcJSD pYMILFsadN4WzSJSJFvUTVSJ4b7ljomKEJCjZF+cbPDNoiNUobLedTAkMPpPigF0 KjVGX/yaUEaMR1GvDQ+UF7zf8ncyrdcOUtacvc7M3hL9Q5noO/CbHvqRW0g3Gvys kHkQJNL215gd8wxCrTv0OWfDWhOOIHjiCFTA1JGukVh49wt1bYAzn0uz+QOGfcIt JllvKP5vrvjtL9LpXsWgoKO96Ijr2t72ofuG+q702u0/E9G8oTNSzyi7t+KThxEB 5VpoJItTE7A8nmuqubArIzHKyVvThsQE/xMeTE5zruN/PmsdV5zWHuJU6MArtYUa tNr5KXzK6UDsmdHG4bUjShjUh3wrAHLIodR0gRISM8Nnyf1l5XBh+iiCoqQmscZ2 +4la+9Z5j6FrRDf16CDx1n7bx6vTkMYG6wADBQ//SJf5I+N2pAKpV8u60B1LI85i 84JOGvCenEeLqnK7td1IRAkKkv0anyqMSpxTFdxect8tUPKttvTSkn8x44Seexx3 1bfwgYoCnUUwxNegu3kv+gLfCJwsIbXjXyHqEapPHNmbTPmlZKWa26TO1Cx3W5QA UahlUkhFhMhbfnsxu4hJsMD/i6SPCGEhbp0jfHvXQc0VdUGJla8TOJXzfdPtwozn skDrrmugYtt3x2Dzf3eYr+p3EScE18uMBvcSvbN1w2ZOz9jIaO/mQ6dGpFGejo9n D+8KAb3ke/ZQ0ov4gnWXsKQLdQsVUuPt14cLsXfK1jhlaydtEmP8h24pR2CVUkow 2N2E7KzXsE0ZPc6na1r9WkI85Hd1y5qZ0zxOVijraFYu436LXewqgPSXvwlc0jMe Uw2DgMEHK+AvMpNVwVGs8IYwVfy1EYLRguP/DR9NsmzVONEfkQxVSzUoGlk//m0b bSqpA99Mbye+clfEjh0H8kgx9xOYmKTyygZRCC9sKD8W4WstZQ+33UxssaVu9qrf m7qDl9+GYT+s8JDhzUazNvKi+xbiy7wJtIE0dShMJKN2/m2iP+PH6RE3GMfWaxjB Pp0qn5VxJ3Ev/VFervSP6SnMuE3BqJ+aU/bSVx9mZMMLsrHuG+qA5vCC5vOtnHJQ zJ7o8u8XzbuX+v2pq9SISQQYEQIACQUCQ/OUkQIbDAAKCRBiPK1iyfJRRZQ0AKC4 7SDQifU3JEpy7s5MsTtZQ+DuUQCeInUZzNAQW4xzNapS3xMV2mJ+6tY= =sg8v -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/0D1D29A0 2012-03-01 [expires: 2024-02-27] Key fingerprint = 7774 4FCF 6AC9 126B BD0E DBF3 5EBF 4968 0D1D 29A0 uid Alex Kozlov <[email protected]> sub 2048R/2DD82C65 2012-03-01 [expires: 2024-02-27]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE9PQzABCADlsyzEaEjFoIM3Z0ob7pYdIDXZD9T1p1+4o3AMTlS1Bq4WWJb9 Y5er+hcpISDHVmn4FAnIJfstZa4x5jBpbs7D3NzF07yj+jrxJ85A1FEGrViS0YPI I2kannA53W9q+bSkj7PztFVnj3JR7HQR2yTCxWE0M9BTuXpmwJCMOD+GUJkB9/2M jCRmuZhB+0QD26BC20VDiLQcXN7Y3iQOkc/k4QUt0/bN8cTXghNnJEbWT7uFdPZv XPKmGfmNnfnI7cuK+Wc16OTe+24fn7y3CTnHm3tEai23ZbeT7qCkfsFG/5e5BRhQ XJNeMXbQ/Um3kHPD7LBkO8mPab/qsOXrkeO3ABEBAAG0HEFsZXggS296bG92IDxh a0BmcmVlYnNkLm9yZz6JAT4EEwECACgFAk9PQzACGwMFCRaOagAGCwkIBwMCBhUI AgkKCwQWAgMBAh4BAheAAAoJEF6/SWgNHSmgIzgIANNwch8RoaAW2rnpWVDGyLjP 476zCfJVIA3DDEhM5dhAIlEyqe7jYh4kwWw7+Dk8yZQMEnZZ1Dst3qasiD+CviQc pQgKOy2kERvPkYyLES8GiS6RD178RSRzZIpnhaE9Fl/rdjfSOOdtNlNFdmUK4WLz GCxaJx+betmXKzImIIhkgGhisvhTg+P9saDRiVV5CwQNPJnlJXUUraaxXoNMosVx BZX24aQQByaRxY2CyA0IVGhnwhgd5dCh/TI37/h/CW9RBTahvxhQcgaC2pCgPvl/ Pu6EdT2w5vAmWv4dF+QRBoEqZpdhUoOe70W4xh6oV3MhA+BwWMoPuZsYCLjfPbu5 AQ0ET09DMAEIAOkzC6DXsskYWl4NRlFnakaf/My802Jkw42cNuCIrClkl2R/sJZD wMLq0JDPcffNJJD8CP3ivo0huh6m17Jw/Gg92iijmfoL1YPPx2ZO3HOv+li0JMy7 yYOUYRNccUP3RqBpja1upldDLXharu9CN0H7VzIJxSwmQkqcRWvcw/PkM9brJ071 ghyp99p26pT2II65O6pQOnBN2MSeWP4QY/EiqLn2ldOm+aeH1VfoiAKyiObrgJ8h tEJrFfkdKYa4+mEQze47lVJAywTeojLKumswHctp+UiF/+Msk6Sutnkj0i/a23h/ pqYekr6fod0QkwJxdopfBHGLUyh7aHUwIi0AEQEAAYkBJAQYAQIADwUCT09DMAIb DAUJFo5qAAAKCRBev0loDR0poDDXB/ddOa8+TBg5aU0oVPQ+bDA60b7sRb0rmrn+ hB1mXpdMtI0kHnJxUUI6Rx3tlfD2XE9P89oFyDxiOKjLFLAs6Rj9fCzp3EijARzu 7EUl9+Guo9p4jAOiQ0e52XN+Qz+eYa3SLDj/A3Ql2hbp7jWKa8xtM32oyC5nAL1Z YRx+p9eVNT1UwwQkpiYG8VviSZZQBVoiG9h1mLzkzDj6EmEOaI78L/MjTJV4Gvcy tn0QaaYzTPIYUVbm269WNbuRaNbVdw3u0yhgV4OKaWjTpx6Ngv7EMJ8+SK74udGk nejHYo4sCxROs2Je3yo1hYgrVxj/8tNWj8Phl6nWoSssGpbdIOs= =iXGb -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/E0D6F907 2009-03-16 [expires: 2013-04-25] Key fingerprint = 8D8F 14D6 ED9F 6BD0 7756 7A46 66BA B4B6 E0D6 F907 uid Steven Kreuzer <[email protected]> uid Steven Kreuzer <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEm+VN4RBACfYJ2U3THLZz/soW+0z18vsGdndRtf/i1FDPxr6gy53/VVOMPx a1usmGriEtK0En7cwWlPQlr5SdXl/pUNKsIZkClkZnctWPeSM3mYj6zC3HcUyruV rDNKUYLOYP8dCEtWu7IN0TQKH6xnqLljCFCQYK7lA4zRL7N1S/hExcBsbwCgzT6V aI0NyeWVcAjs/+t8s4RJkC8D/jNpGb6IuRumkjYZ5GmElelckkmIQvGs2aiBkbE8 IRtDS3VnSUWCN8rWJqqHuwg0QgaDVIHPz5KnMQfv7gbsoGilTx8mTgDEk1P62t4b Y4YLKJhriaXyrSuQETPinqM3qYvEKysm5bkgiRNEcFHGUZznec2LGtFxPOGAacKn EwcpA/9UIKdxxsPx8sHCU6L+Teq9DXpeRLRCy/1DJAHXs2BixAGX8kTvvdKnGjNR CoZ+SLAc4OUqotg649y8nrQi+xGcZbP+9p+2MXD0AlQogBcpNPNJdsNtagPEgkZi NLoS9UwYdY3+HM7zWAgiOg0Anrf+6CUG+9xVz+cRf5hClLFGJ7QlU3RldmVuIEty ZXV6ZXIgPHNrcmV1emVyQGZyZWVic2Qub3JnPohmBBMRAgAmAhsDBgsJCAcDAgQV AggDBBYCAwECHgECF4AFAk23P6oFCQe7UcwACgkQZrq0tuDW+QfKqACgvzI4CWz2 hEt03iQ+qoP5NbYAxu0AniE9DLJRYuevocbjNpB/U1IHGxsTtChTdGV2ZW4gS3Jl dXplciA8c2tyZXV6ZXJAZXhpdDJzaGVsbC5jb20+iGYEExECACYCGwMGCwkIBwMC BBUCCAMEFgIDAQIeAQIXgAUCTbc/twUJB7tRzAAKCRBmurS24Nb5B5zBAKDKEAfh 5zGnGMhId4CwBWzTjjSCbgCfYARIZbqf4jet43O5LmU8sPiLFyy5BA0ESb5U3hAQ AN+WjDnYNXdKX5rhlhmsnrvcvfFX+75SN99VPTEMYqH5g+u1pVWV0gthfyanx0cs 3hID/9d9afGmhsN0o0KwRTetGLDXkg5kF8OtOmh70+HEwU4kkWPgI/K4SbRVzIIX 3Z8BRb+T5cZkMyIH2Xk5SkhATDGygHaGbYQUr+AJEstEU2NmdwZUejz7jl5hS970 4rrEmoRE29VxsVD46Lqtm9GoeSyaRjeC5MsAHTIbvZrY4Uibm9kWgIc8z7397Jf9 x4LNbrDRzikScPD34NRnaxBh2cWFzj/75/cz3rZEnmkqATTz768A7gCMXHsDpj+i dr2VlKR1TINas7N8FsiWwdcX1q/+5w+jeZU5wEMtZ7EU8adOQ9/8A0rM+Pt6DWaW euHrW1zhKG+FTzVR4dAedY3B5nmBwYLTS8fVdLaCc6oItD8v74pl4eTPNu/99eUK OVxZX4j4r15ISobcz5BGqTD88H7o7yceVZEyF83Xyuu76t2jnziunvPIUvyurTIR qK12Xn2xdYA1fW5zMCG4fX7G3y3CDM/MRz0Zai7XrhB+hRoB0LcJM3e1mAvi7mgB xdAiFWhjyPqiXGKtNeoj3YB+x7AiRM2+cNCZtAa17Q6EJPDCw9paI7z9ZGp+0ZUk hw43hw6eROffNJGxM5iuCphgJq98sHmGlK88OIeSO4WrAAMGEACYmu8vX8DZ74qf 0D57roBD30hqtYtubvGxByebo3kQFPibiCGtp1tF3mF6a3VNDrDHWyTk8j5QSMdI KhKhxp6SwsYZ9ctbuF4jTmQzj0LTbxTu2LJH35tvfr6BmIzdc/3DoX9g80ab2vZf fkEsAOrpCaWWZkyMiOR5AWZlKTKBdhw/InAYHMMsnfl9zPOmVuemIn7SbEyTBlIt 6kFXoBM6Qh25bK4Oa54s1l9GbwQ8Wn11gWO3Q9x1xrnuf4Sk+9ZMACB6UaEnNIFg ht/nZ9jSPKve+x8id8QJI2ffulvyq0vf2lsFoHldEsmjPmw+cYiBiL/h3otD0epq HRryygU5aPT8+C6bsF0zAIj0TEdRd0Ka7dl0cJeUQ2fYzitAXW+fHMgV8FNrWAtK 5meZq6VdH3+OMGja0MpgT4liN5y+Pl1yxgWNKvh2eQNC3FMghEv1orAjf4sOVtb8 YvMiIIXUOqW8EGFUTOxmbeejR6v6zNwJ/oLdvxa2AbBzca8wvGL2Xn6GzYJdhNEo we1Ks3t2T3bYV9oPGGSvTonCmktMQqV5Gn5HTlcun9Y120i/xingh0wvUkG8I9U5 KZl8KGZvL3yjLRmBQvslUodh4SnFKWyryEz+fCDttMu3fxb4aLoReEloFg0kzECs yNbcDR+xYG4HW9OvkVSATFCdTHA+NYhPBBgRAgAPBQJJvlTeAhsMBQkDwmcAAAoJ EGa6tLbg1vkH8+AAoMqNZ50ShwH+0Npym64qgJNi+NuDAKCO9MAnFB77gBU7LJnn 97ttC8vSig== =hOc2 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/2373A6B1 2006-12-05 Key fingerprint = A42A 10D6 834B BEC0 26F0 29B1 902D D04F 2373 A6B1 uid Gabor Kovesdan <[email protected]> sub 2048g/92B0A104 2006-12-05
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEV1zhcRBAC4T9pbx3J+/0qY5k3IVGMGpI31SZHwtO0ijDBA3V0mIOUpty/E 2AnAQ/7GZEvWtMd3pE5xwoicgSQbPcnsHG9kqG43vvr2DdByY9lavqoXPOXKeQnr U/Z5eYvOgT5Da6USxXI5obFdNsCwwKYt7Sbvfj6L+FVWSS8HW54f9xuqLwCgwCRv TxVBZJ4xERWsk3nJH4B/GKkD/20ddbTHSTBuBpulmoOUNBcrnIEYPRCDvF/e07yz sp3KJeMegdPEwBoy6bF9R8HkVgSEx/jdMSZNeMeAOpAKDlTUyTNJRgzVwqu+SgOj GT8IzhLNFaZ7wiKoA0yRhGb77C3IPzjSbcOI9A3vn9DkStWfDtjTIOxh7FxF9+H5 c5z9A/9++LOF8L9VPHUNi4h/L/jE6CWSZgeTUIMkSwALrochNi9xIr+kS5pPxUPZ MHVdG0+gK3wNLD6KGpBnHB65wWbb85fukY9y4YgEv0+TjpPwkbwlAbKtt7cf7RA1 mYtYStbOedPBAE8Y89cAcmQ4a4ViJFWfSTLJorAAy73pVns7ibQiR2Fib3IgS292 ZXNkYW4gPGdhYm9yQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJFdc4XAhsDBgsJCAcD AgQVAggDBBYCAwECHgECF4AACgkQkC3QTyNzprFGOACfYLDfWSz4Ke3HN+suyrD4 iwnZpycAni9084/VZ5iAadc6I1o81cGFX9GtuQINBEV1ziAQCADQBlmiWzgTaAem j1rFzVhEe3bSRg4qmcyiUyIbVWj8Ecc71c33fSHdgjHnAqKGjxKIkf7qoSziLWL7 b2dxUiI/M7OUTi2Tdy3nJa/GJ+PK3CK4oM/oSMGOSUz7d3ZaKwZX4d/GmpCZ6U6w XFPymLOQtlDRTyz31QPCQXnI2CD2yswSdrHID/LuBDx+24vA2NyGy7WdUmSSchnE aw0fYTiHbjqI4xsTS6wkRJ4QRcHg8vyXc9Xd0/TKtaFBURWfHDC9RWNjisrhc6q1 89o0QHBW+UqcYdWPUgTO38hr7k8U8LNJT0a7axsgwiwLr1oSS8z/RjdiFwuArM5M PQgkvMYLAAMFCACIMIO2gjtPL64mLy6If2TPBTqb+g+HaWWk4lxsUN3A7A5y9TXk w3Hx2jcig6P95jIKyiTJkV5ZqcUuwtEWK/nK6M4o8x7QQwLAfH6x/wfsb9Gays+K wT448Xhi05cOnIuKyFXXzaNRgGe/G+fxpxqEjmgP5y2NjB+KG/h4/Am25h9Ylm+P EYq8QMxwYS+3TpfCMmgnqTymegNZpbQ32nJYKnxn9j58sLqgp7BjekgAYi79z+Zx 0HoeGPiehGLdymoj5aaiTCZfTB5CRMyn+dbvXUpl8hdAEG72q5D7JH8yicOANHUd NdMIcDxTJcHnDQeXdSrVWGTQmt4iuwfweKlmiEkEGBECAAkFAkV1ziACGwwACgkQ kC3QTyNzprFoGQCfZdGMd7cQFoCW1DBGMnNJ9AO5WmQAoIM4BtfriXvx3Tov88ES DHOhFMi+ =jLzS -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/510D23BB 2010-04-18 Key fingerprint = 0A9B 0ABB 0E1C B5A4 3408 398F 778A C3B4 510D 23BB uid Ana Kukec <[email protected]> sub 2048R/699E4DDA 2010-04-18
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEvLStoBCACxnU/0ujcU5D0Ph4eGJhRfFSxoH/CBIH1AnaQyrsmzMCfdFav+ IS9qdAHeNN1GugOKwvbP1TQQWQjGNiPMaUzWVE55PrLfQhTq3q2t6Q/9MUIXEKkX p3bruBe7eruQb4sN9Q113lLTZBTs8GsWI+iAqaeuT2eKhYuJlqI37Zp/36k87cTE sQg37HtSfkjLOCEbxH9q6JGCi0rwa4DqlPfwoPEyyMuTcwcRm4QhNKUvJ9jRFze9 YYMXQIgBMX5L0j94mnq52HkXstv2rK0xURKANtXcqb0ciQUoXTRN0K0cYHPbNHWS PqZMhpTYd9d+SKYHuOGUJbsLhtaGzBLK9SQ3ABEBAAG0HkFuYSBLdWtlYyA8YW5j aGllQEZyZWVCU0Qub3JnPokBOAQTAQIAIgUCS8tK2gIbAwYLCQgHAwIGFQgCCQoL BBYCAwECHgECF4AACgkQd4rDtFENI7ub6gf9HsBwaT7CmPenZPPJk+/GXDiNWPW+ Q7c6rAEA3072j+h/RDTnhKip9R6/4SankmrQSA0NCO1EiTzsgV/3cS0k4v0XKBrT 10B1WrxI5Tx0osEYNP4GhPWkEO/6jCTF+8EsKyPujOvw9ps/OBgdYhD+gwv94SX5 IymGWrBeyncmJDefcvA1UoL5XjhgGtv6qhmzPmN0+PamJlPd0X2W0fb/w9/od+5+ o7olzxiy0kVaYXBizKVQ482x/oN3kXwzMmxkhN4zmoJpOzvjBOw4Ar5WiYldgL8x ZggWcR0NLVejeyi5VBPxsPh3vfvfvvjhxfHuS/bLGyBa/tO0bKxTpbD9frkBDQRL y0raAQgAsOEgWecCnr55Ny/V3LI+apr6wq5Rt37E+szExLEzGPQCeSE2BKWDNHGv KWYuTow6dZtCySg7GXW0fEV+QEvWvDa3y/zGjZOSVwcm7pk3Vm3Pnuv9a52wG6gm +a0M/68T121UK37+u5u25OHZaMaGl2poaeD/D+jzzvYvEDk6C84FNDmLXZjMtiuS NmLsc+kZodFbsrUjdFZXykFKP4a4D8Gq4nPLvDjRB5ZNKFjy1HQxpOJAkZpK0wgz t1AymA+9oom984jiPlV3DSrxrJoAndQeHoKDz2dhdZ9E1CC0Al5aAhVn94nfdwee GEL8N1KTtQLBmP4QXFtOAupBiqq0IQARAQABiQEfBBgBAgAJBQJLy0raAhsMAAoJ EHeKw7RRDSO7B1gH/3I75IrWb9AAEQRYIoGJW4/vPB2CQ0juG2XX657wzgDzL8uD E8Lb4zQJa1RtSj8Ma/Qx+cL7BNWypZAUIrXrhZiVdAjvnQ87CyW2bjZ1w4zsv1Qm mbKT6TmfMuGQLUjnoOwdRh77TfyLirKsXx1535UY6gH3YFAiZaf5H4yosC49tizF l5WNOv4DmHSJ5npLItAORSrBDeJWk2wLjp7N+7Hy9lbyMegAwYMQSrQTwNRGok0K ufjKvZwbUTmo/MYaLncTWpWl/ZFL21s90vBM36q0RiPDVCkZvqrdwyqb56Fr4KUH yl7TOEgJibW2V19o1SPGrF7QFfC3nE7S407UmRc= =+R9q -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C8550F4C 2005-12-16 [expires: 2008-12-15] Key fingerprint = 25BB 789A 6E07 E654 8E59 0FA9 42B1 937C C855 0F4C uid Roman Kurakin <[email protected]> sub 2048g/D15F2AB6 2005-12-16 [expires: 2008-12-15]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEOikikRBADU4oWe1rkbd6R8HeOR5I/Uw6gGk0zrBPNkyT9PAtNKFYgAOotZ fJbo1czDlN5cstvqBOUKbmeOwqkMi3/DT1N0VjGq6eocBCvBhHZ/PIyIonV18JGI /wYYQ2k0jAOpehd7QYYB6w06gi+siJ9UY6iEhVxrO8rF5Er7RYXICubDEwCgszsF U/rIMr+yw52uGDe4d1wyICkEAKI7uw05tkwQutLzjx1ZOCu1o8zLepZ1QMRDn8io EyMRY/pCvge7k1kjmm/6eZ3M39fPrvwcpfsRF/dlgEeQI9Pn0HDJWG7eU/zg0wrQ VkvELJ6qtJvlQRKMh51EfLkR00Fy0HsBWfc4U82GvBLU5fPL1FujMeVLJtZ0W3q+ nHjUA/4z0JVp6vNCkPOr+BiJhdJsiAYkGUdqHR/mZcChcRD9jJVRO1JDQQSvP3o1 GvFqqRU5VsvYXKVKlVoWQiKGu0Hf/ZIOnY8ek49nTsUTm1MDPIFqMl182uxr3s40 DhBmKzhufDBkgtNdpC2SU0h5mwkF09Xo1goVMn5DTbQfRfNfF7QfUm9tYW4gS3Vy YWtpbiA8cmlrQEZyZWVCU0Qub3JnPohmBBMRAgAmBQJDopIpAhsDBQkFo5qABgsJ CAcDAgQVAggDBBYCAwECHgECF4AACgkQQrGTfMhVD0yS6gCfQyXa2JPiyfy0EFzQ HGwWrDPjzjsAn0IJZGfMUiTegcmtpu0lNv6nMUiEiEYEEBECAAYFAkOjJ6YACgkQ TclL2LcfYF1uNACgxXMrlmzdzmMwriLK+T4OKcffa/sAoOCL19v4pPw4R4KI3o7O MOacY9bIiEYEEBECAAYFAkOjvw0ACgkQryLc73jOEF8XvQCfWcxEwIwZ4eZld/Qf eB1hsxJeDxUAnA/ftOsZtbG4o299udw71y57GHMPiEYEEBECAAYFAkOj44IACgkQ hdRQRWtpGwOERQCdH2AVEiuQohXgOX2PdCIZYiufCEEAoJgGONTdR1U3cp1X4Hhc cuAX+Z1IiEYEEBECAAYFAkOj7gcACgkQXeTX/hlJ3IB1CgCfbgMdPkgLWLQ0HHKx rR1nB3hzAiIAnjOwE3TRytoNLPAAuECgudqkqpnRuQINBEOiklMQCACBiZ5wcv8t jUjCX2iZ7D5qQiWuJYPhMpBS4hV4mZXhM+pSjFctc9PFw+WHlaRFXn7zGYP404AS tvqmnZBInBdal+L7r9OhPj7vrQcYDHJTMDflHK/YhfBwMj8/r2jkV4Ja4ji9nazr Gbq1wJpP1jrsBuFU0Qy4HRZwSyKrFNGqAEsiZPxgMAY16fi3IuVbE78HlUq+0I6Z C90z5MbGFGSsZRbWJSxSCOqQ7YxqoaCqxxNeF6fIYQdL4hatuH287dqmru6ST6j0 ApQF+mnmlwKnrLSzXw0Hbvfj8ZrGyAc9cLz2oCwVwvLsP+ohiNBDHc+FFXcBxIcy kZi1+6AxjhXfAAMFB/9abRCZ9AoTa+Hd6ajC77l/Ul4jlj+R+DKQ466kj+WYOdeO XQtF3e1g89cEX1S3lnjIZGS3uGZ9YehtxMwBXlOCIyyLhNxlRWS4YJeC2E1q1kZm +xs6IC47g1E5yVpm3qcUp6HKwO0SGLQiN3ECSZfBtNEcEScAFGq802lLLKnMRBfV DpwXP4jop+90NSKP4RKzgYdXXz3SAq3heKeuBOHl3biaTmvh/FSoZtcGSqWLPR85 d+5GZVJRzrwGqrGN/3zRvd1PbTpeJ/pbT/saFtsVCmlPoUOpKeyDHGlPotQo67gu 1cwcr8h0D+oYPMLlspZFuMXvLPxaNB8oRLyxVzUhiE8EGBECAA8FAkOiklMCGwwF CQWjmoAACgkQQrGTfMhVD0wzaQCglkceiB8ksT3+rwFRApwaWTO8ey0An3w0Diff 8juSFfJ2ZBIPyPzTGgMu =0i68 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/439ADC57 2002-03-22 Hideyuki KURASHINA <[email protected]> Key fingerprint = A052 6F98 6146 6FE3 91E2 DA6B F2FA 2088 439A DC57 uid Hideyuki KURASHINA <[email protected]> uid Hideyuki KURASHINA <[email protected]> sub 1024g/64764D16 2002-03-22
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.2.1 (FreeBSD) mQGiBDybt48RBAC/KCE5CLVZsYvpmgrbum7JHgIgnX39EPMQmL9Y3LmYy6Iwh+OF iIjIqW6cDeCcxHoJBwbSUerC5ueriwZCh46gSnLVjnmBLlGFXyxYbSfFGetMVVSR 6OpiQuITp4ZhVw/UoCGloNsIFKg6l4JMwqZmsrZPdl+zUU79RV9Zb4XhFwCgsRIo 1mf9I3rNZ8f1Jv69nUR/lJkEAJB6fY1rtUNUwq+JXOnFGD0KnC8isQNyOeQ7Y1il HQ9mGVKuUC3Zh0FzvdsU7Ks2ss9ynxfbFXnyyAOqXwTzU9pMuW5oLOUmjqwEfAhV 4S0xcnPcfGGJ671NNeqa8X4LQv6ECWai6O4CbA4aluRqhHNxT9dgEai8RN434LQE tGxcA/4mIlvVoM2c2DRjD4+/Oj+i80ZMpOgE1RkuQmXoZ/DwLD3EHbIBX4cNffOd FzxYrKCrXD50MehIw/IhFfHN/GdEN7NT87M3j/ydSYFluoiLv8FXO00mr8cDi3wF q+LGbniEhVcW6wpUz9zVFmdLAp3HQi1uRAHqYmdSs6gqjl/+pLQqSGlkZXl1a2kg S1VSQVNISU5BIDxydXNoYW5pQGJsLm1tdHIub3IuanA+iF8EExECAB8CGwMECwcD AgMVAgMDFgIBAh4BAheAAhkBBQI+L/K/AAoJEPL6IIhDmtxXgj8An1YuXcp0iurB ZYHiaYMzAb+lYhALAJsEAKTyeqO0plIvHBV49L5CErZo87QoSGlkZXl1a2kgS1VS QVNISU5BIDxydXNoYW5pQEZyZWVCU0Qub3JnPohcBBMRAgAcBQI+OM7uAhsDBAsH AwIDFQIDAxYCAQIeAQIXgAAKCRDy+iCIQ5rcVwyNAJ9Y5N6lIMXVy4sYCdgQvqDR xkUN0gCgrsbQwfTOBcy8Mw/UmGOE4/fwrNa0K0hpZGV5dWtpIEtVUkFTSElOQSA8 cnVzaGFuaUBqcC5GcmVlQlNELm9yZz6IXAQTEQIAHAUCPjjO/wIbAwQLBwMCAxUC AwMWAgECHgECF4AACgkQ8vogiEOa3FerLwCfRPWW7lC/pAVdD2Jo+8rcWTKQ1xEA oIQ/on62k7YBO+buO+K472a/cW2MuQENBDybt6UQBAD/ZGmvwhzt9YWhF9q7mLOT iEMzL2AzBryLzzUphejgDlJN/TIoDtaJfMyNkO16FbUq/WLQbKYFKfDunqx+eVSi PsneeYw9nAdlcXVgHRjoL3vj5O7PIg4qqps2mnLKEOXLAH2PNTYY6+8T0NQicdht YIraowzLoKRdINuDQrCpEwADBgP9H4CwbNJtQAHwS9ATmfL6F2Bg9LWe1godSWkM N+nBxKvMqrajJWfxV09f9gzn0qmMZT9u2DwcADzRQLC3jkzgOD1f8UiAuCuDEE1a vg1iCuyiI6m+MMWCkOCj/69wIu1ilmWqkn8SeoEwN+hwqHa20ue7vBhXreQanJim sq38ZdCIRgQYEQIABgUCPJu3pQAKCRDy+iCIQ5rcVzT/AKCgYOyEMpIxXYVI5gYM CwQ3hkJ28gCePnTu3Ke6lPoQsMAo3TzKkUO9Wj0= =cXJQ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/FE3B59CD 1998-11-23 Jun Kuriyama <[email protected]> Key fingerprint = 5219 55CE AC84 C296 3A3B B076 EE3C 4DBB FE3B 59CD uid Jun Kuriyama <[email protected]> uid Jun Kuriyama <[email protected]> sub 2048g/1CF20D27 1998-11-23
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDZZXiQRBACWc1PcCjIpTl6aCyOMVfz4jlRSKblwib2s07TBwbgR1zMhbPie O2K4ZJqTcG4EnbMLEyYMbYwvNdOfUIjMW3VI1PJhRwWthTcbUjubzTu8Zxw+sKME ansth0xZW7Ax29UWQcTPxs4SRsCPFO8t+aWwZOm6z0fb5l1vMmKNJuw1+wCg3ZZB qK93hQPaOObwglnAIrgNpScD/j0VCEeC8fTMk+ZIo+z0+bUGPGU5cq+4XVXABYLn wMfR6Wr5Ys/3VCx4Oyzzgp/HBzcE5HxJukJ2ur3m9IE+uFfY4+HEFiwL++Ke4TWU 7rn4rKjJYhGJ6iqGFwuxwmHdjcBh/38X0kmrCxyPYpt6xO+sJBP+QOABw3PFlMkF PUY5A/9RGU4mm6K7cteNdbHDI8yFNorQs8W8fRb8yP8bw1T8qB5+/rQ5jxAfA5sr FCuZsKNFdph9z/I3eFYVW4P8+9gmI2FAAAocWheSyKttAFHx63JRyBqXq9xmHKST kuaoQVXeFycSULAPkV67j0/zDL2mis6bRpPopINGgjkia16u6LQjSnVuIEt1cml5 YW1hIDxrdXJpeWFtYUBGcmVlQlNELm9yZz6IVwQTEQIAFwUCOmRRlgULBwoDBAMV AwIDFgIBAheAAAoJEO48Tbv+O1nN4+YAoKeQztEcbPBbbX7DZAHOsGZLrZ2NAJ9a WEoFGMT3keQDjtjUI9c8IMh/l7QmSnVuIEt1cml5YW1hIDxrdXJpeWFtYUBqcC5G cmVlQlNELm9yZz6IVwQTEQIAFwUCPE3sswULBwoDBAMVAwIDFgIBAheAAAoJEO48 Tbv+O1nNMp4An22RFzdv9zdNLlcY9GLPFyUrniqiAJ9F9Rhic6qBaXynksNw51Do +cLWkbQkSnVuIEt1cml5YW1hIDxrdXJpeWFtYUBpbWdzcmMuY28uanA+iFcEExEC ABcFAjxN7RoFCwcKAwQDFQMCAxYCAQIXgAAKCRDuPE27/jtZzYFdAJ9BFckSo4/r SMe9UqbRMPK+8FUumwCfYH1pt4t6jFlulLk+9wYA9wISL3e5Ag0ENllesBAIAMSU hrKdEdKzQXHzkoE4Nzl3hb6dtDmjgYr+3X95wBkUvtrk2CeYG3RC1PNwd1sEFEWp IiSzOaQDzxZmtBGpMkQ1It+CW4sC5Cs2TQ59VHLFw7HWSYMNj+RchWuWkhwipnX5 8wu6To12Mu2MnyLszX2QIUxrQme7UpKkJgCct60C1DZLoQuZmfEZEyXmSfJsizeq eeJuusZwOWDH0ixuFVK/5A2RwaWFMftdhh/Vw0EkxdQnMJ+7zJ/hbY64VR7uz8oI 5smfjVe0yqXMACREUzXmqn+Dc6Pz6ESVTv2XwIy0UxqxiYk1J98Cf3ffi5+e/q1d rej2PzArpfzaygu88uMAAwUIAI/IiiQJupz9BaCws/K6j4Qs5iWRiSB7vaZfgCr9 c6vx+mIXX1Pblity5TOn9qXMv7vUM/dgmWSBbkkrvfD++H4ybJjpcOZN+peeGd0G /UfiQFMarsj9MozAmhzI5L00JqLOf4u/XBv0rh5HOX6t+M9MfZYL3C7bn/LxmDif prT8jxoA2SC+lPGSzI+M+ay/mz8kDmGD7fCS+uAFo5T1kjU+ed2dhXnl16gRR8NO 6yAdURIC+xs6P+7L8uOiZfuk0gzn5RC6CYrEKiGZf9VqTRA2vcirPNEZR44jYXS3 nL7x9pIsHyCyxEvojut7iGWO6qbaW/c+MRjcA8jgp9OuFROIRgQYEQIABgUCNlle sAAKCRDuPE27/jtZzZksAKDbznARmDIIxZjHfAry2UJFBPQbvgCgl/ERQfF++Uvw hLaVfesP/NCIt5Y= =AoU9 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/0A3789B7 2012-11-18 Key fingerprint = 101A 716B 162B 00E5 5BED EA05 ADBB F861 0A37 89B7 uid René Ladan <[email protected]> sub 4096R/B67184C6 2012-11-18
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<[email protected]>
pub 2048R/6AEBE420 2011-06-06 Key fingerprint = 031A B449 B383 5C3B B618 E2F4 BAD0 0F0E 6AEB E420 uid Julien Laffaye <[email protected]> sub 2048R/538B8D5B 2011-06-06
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE3sxXABCADDNxQCO8nHrTUJMV3tTT4Q1m9Cx0ZVeo1f/qUF3IMO346VYbQ7 4ghzG7cwW2Ey8uGJmMl25p6CLIMG8eFPJHvtwCFa2CB8abab/WsfELNUOuMFyW8c HrnZp7B3I5YnlcIhm8RlP4labHTcU8mkjd9tlabmvWcXIIMKZO6IxSk43h8Btnol AUW8eyHi9so5ohwnGT/0OYskYlPKpBUAIXIOmaXmg08bdix/EjWtWRaHVWxdMIQl ZMseByIlSTGCSdEooZOFELfaPWOWFFQ0wTi/fiepDWB9WG8VvZH+1wcxotlCOVnZ jcpYeK2scPg4BabHtd/r2UxDsxMClZkg8LG/ABEBAAG0JUp1bGllbiBMYWZmYXll IDxqbGFmZmF5ZUBGcmVlQlNELm9yZz6JATgEEwECACIFAk3sxXACGwMGCwkIBwMC BhUIAgkKCwQWAgMBAh4BAheAAAoJELrQDw5q6+QgIl4IAMEHNmSxHv8XxeGDNWwJ iw6RirQOcm4WPpWGtvChlvZ8uTuZgPlqdSBQEGu7bSWTTK6zplOVmK4DYpUL2Hl3 /2/SursUjkKO2QUkny7m/fT9qlJP+PAbXiqVa2naI55QvOuXNNx4zSusP8q7abbR bCtYHDeFE/DPNLI8GD/0Hmd8NWrPvHIwhGsK2ZzTuoGUV8q7zqgjlu7JB2JwH9dI tdMrVM2OgFLt3Mrb5F1C5J26nut/UVSkHPC1eW7mg8HnvCUK41HA1tKhkbXD8uMP 7D3zgsuU35GHA5p9ARlETIauiVNsDzNgxWwU57BJ5hvGsmycF4M5i2/IOx/V5p2g yr25AQ0ETezFcAEIAMI/+5rGOIwZwC8qGny1upk8z/XxCReW3liTVOe+f1CaPOIh nLTpyD7+Mxts64IDO2tYQWZTw98yayGP8xCRKjBkgjOIgX/SInoAc5YAUMWMOtl4 3kGqR+RboQWKKq83VPNGRnwTXu3RMlonyt5T2RV86lgIbDSabaAUnLjWDpgP7POI /IrpKLSJp21TXHMGobpxeLcXqPApRdKgJL9bP3+jLqbKJmLzhgwzjxpIosAWqRkb PJdZejCfdC8mU1DpKCDUQRLVD0Sbh69jsSiepSh6BIn+lDpfRH1nLoGAhomG6kwC pG4hCXAB6V2EvF0EBQmDMmORlDJFejDpHEbXxlEAEQEAAYkBHgQYAQIACQUCTezF cAIbDAAKCRC60A8OauvkIN0qB/iBrnK5dmFQ4aGQesa+2myOCMgiszggnbzXDFA/ eky/jkIQiAr2xUAwQZz3iPrwzSpopCcPXKHnN7gsfRBUZ7ns2JmJWmyU4gxadbFl kMvB+i24Cav9/ucE8r0wyJKcquI3PiS4qpUzDEdNG/k+B9/Z4oqKRCcxrjSrwnuy iNFiIUl3AQvTgHQBpZGl9DA9zdAM+iPbm7zFwQBCpFeysEOv4bCAfHFuRGJ4xKyq tM+aBqAYzEWQTj+WBz+zYBHOY8VOn42fwBRWeR8+Ml0BxebrNh/uJZOjJp/IBZbc 39ZjPt8SvaBUTAfKGXPZ9O2NSNEExRAKFQ01NDQfN8xxH/Y= =QYhu -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/0723BA1D 2003-12-13 Clement Laforet (FreeBSD committer address) <[email protected]> Key fingerprint = 3638 4B14 8463 A67B DC7E 641C B118 5F8F 0723 BA1D uid Clement Laforet <[email protected]> uid Clement Laforet <[email protected]> sub 2048g/23D57658 2003-12-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD/bH3wRBADoVem06r8ivhxQhCOEH06GAg5J6iqqlKIo5BmOiQ8IHo8JzA9z TwFNbhUCMWzUusH56nNHKOTuFV7wHiR8nvK0y2yU5qTK3MHbfSeMVy4rFAKgyZae Wf1lxRHU+W/EksFaC31ljkF01TGHVMtpKPzDSttgrrMtgstT7QKWTKcggwCg8bVn g7MH9udGaSNY5hO3l9wIcusEAMD+erpSZgVfwojT/pliCwnvKRwNByhIWqz2y3Ly M2+VR/IjFlpOvT4Ytrn2VC4V1duahdowNQh5x0vUPagRRYKx67OEbIcisKsGQTnT m4FSRUfULKZ3M016uSsYNbuopctjrxHE1YJfskHmLnIHjnXhJjfmouQqOX8nQSh0 ryjCBADTi6z4ZvH3CF/C1egPsmYzJ14H2t51JUSHwEWWaj3LkILEGvHsywCIT7Xd R34B0hPIn/ihsJF4XBEiqJlZmFhfFUmSR3/No4TYKOtMAzfo6GtMv8q19U/LQaVY 1wYY0rWCqfzwcH9vSLlpHL9afqNBnVK3XiBGMCmXZw+4klu+f7QvQ2xlbWVudCBM YWZvcmV0IDxzaGVlcGtpbGxlckBjdWx0ZGVhZHNoZWVwLm9yZz6IXgQTEQIAHgIb AwIeAQIXgAUCP9sirQYLCQgHAwIDFQIDAxYCAQAKCRCxGF+PByO6HcPlAJ9gLehC AhRMepAZrGdPsPFoMB283gCbB6y04aeQlXaa9+xAm6C0ciAiXj+0K0NsZW1lbnQg TGFmb3JldCA8Y2xlbWVudC5sYWZvcmV0QGNvdGRzLm9yZz6IXgQTEQIAHgIbAwIe AQIXgAUCP9siqgYLCQgHAwIDFQIDAxYCAQAKCRCxGF+PByO6HT+eAKCBj8MXtxmq l0PuLGLnR04gnauqPACg8Rtgb2XwCrgcZFcjS1Fl7/SmTE20QUNsZW1lbnQgTGFm b3JldCAoRnJlZUJTRCBjb21taXR0ZXIgYWRkcmVzcykgPGNsZW1lbnRARnJlZUJT RC5vcmc+iF4EExECAB4FAj/gQ+4CGwMGCwkIBwMCAxUCAwMWAgECHgECF4AACgkQ sRhfjwcjuh2wLwCfZ0Sqh6DY5U2ZDj+JrdqX1qzEaGMAn30UALtH14r1jMPPq6xn UuMfFjyLuQINBD/bH4QQCACbO8LantesOQKcxZS6WPSLhIoZerdMJ/b4DCd22GGu IM4eoWiYPX73cTMbN9cTEObaA0hvXEdn8vWl9/RBV6aL/fYhAqTVGWhXu6MBJiAv 0zFeliJl2+7MqzZjjr8GSFkhM3tXEzFr+7r7/Bqnp8hdzMFUS2dLcL+ZTXJuq9s+ xUNnwt0+Qy13VQU9whTZNZy3PHHa3XRc5IbZ5FnqMM3D7twlt0sS6j253b3CXw31 qEREoLutw25X8pbQeYJW8st0xIEY9z0MikBOJvKPAUani5+eWjuJC0FlXYM4qSnz zhBpDbQBuhQu5JgPPiXlBq+ta/prm6FyJjcK+EyJsMGnAAMFB/9DIGugG/5F+4XC dTvFluD8zbP6zwqWRuHX9JmA+oso6ruDHiZ+Ckdz0xBfD8yoyENIRnLmBxx11uZN upAlM2itsvAwHMm6zKGLwlN+74vhoCTzvDFtnyTSgC8as4kk4XCax2QMAueFpW+2 8/SSLqIK2UWT8/5SkP0QaN5qSFgRwhGxYgyVP8pflrjL32u+fEwo8EjNnOUHX4WY uzdzq1t+0K2AnZH5TiUCPy9iLP8o3rBm89Qdh45wzqN9DOGePoc0v4opQK9+3TRa vYAx6izrRajiGgUHLcYeL2nQxyi3LBkKvbp4Bw/dpxGTdmPhtyU8jYqdP5SQbrFJ 4DwXqs4biEkEGBECAAkFAj/bH4QCGwwACgkQsRhfjwcjuh3mfgCguHMdGD3Orm8e pAU+aCOCPVkkx7AAn2yhe79FYbHDx5Dx2LAfRRRyfxjR =lVoL -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/3EB6046D 2004-02-09 Key fingerprint = 917E 7F25 E90F 77A4 F746 2E8D 5F2C 84A1 3EB6 046D uid Max Laier <[email protected]> uid Max Laier <[email protected]> uid Max Laier <[email protected]> uid Max Laier <[email protected]> sub 4096g/EDD08B9B 2005-06-28
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<[email protected]>
pub 1024D/15256990 1998-07-03 Key fingerprint = FB58 9797 299A F18E 2D3E 73D6 AB2F 5A5B 1525 6990 uid Erwin Lansing <[email protected]> uid Erwin Lansing <[email protected]> uid Erwin Lansing <[email protected]> uid Erwin Lansing <[email protected]> uid Erwin Lansing <[email protected]> sub 2048g/7C64013D 1998-07-03
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<[email protected]>
pub 1024D/10B87391 2006-01-13 Key fingerprint = D59D 984D 8988 7BB9 DA37 BA77 757E D5F0 10B8 7391 uid Ganael LAPLANCHE <[email protected]> uid Ganael LAPLANCHE <[email protected]> uid Ganael LAPLANCHE <[email protected]> uid Ganael LAPLANCHE <[email protected]> uid Ganael LAPLANCHE <[email protected]> uid Ganael LAPLANCHE <[email protected]> uid Ganael LAPLANCHE <[email protected]> sub 2048g/D65069D5 2006-01-13
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<[email protected]>
pub 1024D/1C940290 2003-10-09 Key fingerprint = 8A4A 80AA F26C 8C2C D01B 94C6 D2C4 68B8 1C94 0290 uid Greg Larkin (The FreeBSD Project) <[email protected]> uid Gregory C. Larkin (SourceHosting.Net, LLC) <[email protected]> uid [jpeg image of size 6695] sub 2048g/47674316 2003-10-09
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<[email protected]>
pub 4096R/012360EC 2006-11-06 [expires: 2011-11-05] Key fingerprint = 3D93 21DB B5CC 1339 E4B4 1BC4 AD50 C17C 0123 60EC uid Frank J. Laszlo <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBEVPgQYBEACvR8zsof8gLi7pF4331BIVluP61Z4ICzkg2lWLB0Gj1feCbBcA neds8gqHJ7vxArQeYTBV6Gefk4mvCecxo2LGFEcsDuns2X1hf1pXz4AKvtYoVL0e ytW5s3bRdxX+gekv3KxVQjv4tJU2surbW0Hv17Z4m4ZbRfn17dzvpMwtiZmP3kMX N0qAeBs4MZxmWhfYHapc8du75XfpvvD2W4I9VBJXd6DLKNksjq0/Ih3Ygh4kEVxH 6xQT+lL+6yVWTl8XQpJs3u0OPpY/dVjI98DaZucW/Lkh/+uxZm5ndExi4bFJ40rY KfqCsbGAYPOj4HKDkcgNZu+MbC6nIuIuh/eK8ZIpSlSdkzJ2r46wOBHLUJlJoxH/ P4Ly5cXu5lUX2Mf8/HahPSY++5xIoSI1mpqruJyQZxhF4J56X1Bn0BnMmFt+uXF7 O8bjQi4XQJBurcSkAuBnTQlohuAXDfIqeGqqMN6iDGTGCOL9R5WZ6nasyDL+qPA5 WK/ooxINQWPWbTikYb3PZK7v8ABBj6TYAAGxAYrly7boIVKxYUFbotH4Y8dmXUEr p8Hj+tFZCk6AKBn/lCLsM/vTs0ylaSHJOhQc49fj/PETGSQLVjd8iH0l87MfLd9i iLnd0m/Y+ecCobgQDGnDQiFqvsJF6VI+/bisOJiE/HdOyo9j9K3jJ1l4gQARAQAB tCVGcmFuayBKLiBMYXN6bG8gPGxhc3psb2ZARnJlZUJTRC5vcmc+iQI8BBMBAgAm BQJFT4EGAhsDBQkJZgGABgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQrVDBfAEj YOwJtw/+Pe7qOPCqTUyi+w9k0829sinZIkLxpqJPSzzYaHQ1QGIOg4wO5yCER49n Sp7V/S1cNKXTIR+YU2Pf2dj/s7Ot6bRXl9dDnUgMjkvNEEIO6a9gazZSfD6+5ECL DFEcJ6n4En02dCjsZQ3uR9DITAZcd/Y3Gczaplwd9LHpUoh/nG1Dj02+6fB0E1wQ ebm518PDvbCaQvggYIPc8DvS5DO3GSRLQ64a2bILYOP1UXPGn4X/0yoayieyO6lD HFA1gVCROtgG1II0ylDWH+Klp4nAyRcqoYfF5kHWsvQS9N27gf90F0XEALjxCCEu Osy4rtDvg1mU1AK0eflyZImJBFfEOXZrEM2TYo+H5X1KLEMlCzgz/5MoOQ3F896u K1Rb95LuF2BJOJsnYbHTEURwloif0U5VIbuH6s37bVjkXDbHcQo1UGwQM/v6tPaG YirZCgh+NpKChuO43XvQTG7CL21qqten+DOh6MBPtBK9TeZIeuGPiUkS1WcCwRbp QwmK2wZeVaZKReqLJO0QXq06dgd4iaiN7W8p6HZe3LYbnR5d8SWyPp2RQxESOOF7 3atOTQXB5hn+pXuHpH1qKK6RkiD62pMd2RgRJlCdKZXM5UKjpAV7w/k15qiZuZg+ N0Jkod50e8O7CLTZdXTTYpifOkjdnycBY24X1Ra0IqkTC69zPrs= =xm1s -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/32708C59 2003-08-14 Key fingerprint = 1056 2A02 5247 64D4 538D 6975 8851 7134 3270 8C59 uid Sam Lawrance <[email protected]> uid Sam Lawrance <[email protected]> sub 2048g/0F9CCF92 2003-08-14
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD87mDQRBADpSK4q7J5JpjHMPdlp4ieo4jJR9V63tvptpBOAk/nuhWnY3fpu Z7pcxOy5I5hZDIu2kn2zkBv4CTsn9yxdWgJaSKU9nQMYpfFdCnajo0HTwV72+7eK u86VDWZeWuuUIiHVNBUILClbOadmRFDxuCCjyE+V97o4CiUu350M28YdBwCg6LE8 dpO9NELy9LJxyhPBE51iS4cD/2CdsCXzmKaFTa+w5fCOSBzNv516qY1GEkNvmDrD e3dgeyxaembidWjjU2vqOZmWFP64jgayvyFZChGMlRab78GKXH7DIGGrXWp9v7B9 JjCqDyuX3NGaxCDFUNJYR6nt7Q93sAT85oAV9EPeFFEx7Ksd4C1iKlGlohGwleb5 TCngBADX+A5DR9eI9E8loh9NmT4HVzvjk9kvk/vq9i0MqxgcEBodgRPibVKWTWOj MR0T+3qOzLGiVjIL2FzVF1na27hGJmXupxU4dWoKVGR85JYNOoFBNuR2HZsim+iy sX0gK6ejsxVhhx6Q+CQgCQ80TzuY/dD2qFuOGkda0P9Ro62yt7QkU2FtIExhd3Jh bmNlIDxib3Jpc0Bicm9va25ldC5jb20uYXU+iFsEExECABsFAj87mDQGCwkIBwMC AxUCAwMWAgECHgECF4AACgkQiFFxNDJwjFmBaQCcDJfb0SfPgEimiFVhsQOJccxJ F1UAoKJrgMOoY10RAqM822JzOnn9mGXutCNTYW0gTGF3cmFuY2UgPGxhd3JhbmNl QEZyZWVCU0Qub3JnPoheBBMRAgAeBQJCWzEGAhsjBgsJCAcDAgMVAgMDFgIBAh4B AheAAAoJEIhRcTQycIxZWoEAoNefUsJBBCoZSmfVIPEh4g1oDmOFAJ9H6Q4/hfh4 hFTLxU7p2bLgbdjGHbkCDQQ/O5hBEAgA5LFaiwqsnyrdVB+Y7S511ZPmQOi8UwfQ 04PIWyt9a1MwGSYdUpzGAieMLe4KG6olMlLH0X/qxkVjbukwPyybeN7RNUZE1DD7 KGbVOWpyQHhAB4EPfzRJFYQEmT1x7tk0nVbF7emuK9iG+Z3et6Io58QjOgyEMLYU UjwzCE2NYjJmMLEy1e+icfEkOs30s8XPrus/GNffVlsxmHEzxtsicw+AVnlrjLtG xZ5DsNRqJM14L9X5qR3O0dq3BnKGZPOctIF6bRv0AC9lX9kQ1saFqv8iEHoHZ2vD 2eIplYu/bviD+lI+w6zrq/KgNHQ1n9ngzs/N14lN9C57dHTS7U9nJwADBQgAhWSk YnYr5vUskZgVmf0joVgYNBqXIBKo3qXx0DYxGOT18EbKhtSYCar4Uhjob9fUhQop nEd00GQVZwDTL3/STCXUUSaHRJhK9yCwgvQ+/q58yW1JvMrCA6uaca89y9DnfWxv 0lFbOdLJJQNrgLCyNweLhZcEjOSTQO6EZB5OX+z4Dgfxd/5DKWr19JKw54Qtus3s 9zZhVoQoXzWiDlYdtuGUjnVQvycegOxwjFN/TP9IQpQS8HFMfEu5GLTbRAQ3zirS W4FtGaeI7cUqap6ot2BRd1prAXyThXHxYAARaYib/xvCLRDTfXCHgJXbqEiJ72Yy FgGYqFTRrTTgxiXo9IhGBBgRAgAGBQI/O5hBAAoJEIhRcTQycIxZLQgAniGrL6cw +rQG5xLeJ6hrbllYV+8cAKCmIpsp54t97HWvJTKN9GhbpQhojQ== =iBxM -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/60E5AC11 2007-02-07 Key fingerprint = 18E2 7E5A FD6A 199B B08B E9FB 73C8 DB67 60E5 AC11 uid Nate Lawson <[email protected]> sub 2048g/CDBC7E1B 2007-02-07
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEXKYeQRBACVxgl1l+IwFK3aZ96X+BHzeUuGfAAWSqzZuJq0rVXhUU0KnGy6 r2HLJKwGlSQ0tP7rsYy34fDZy5BB1JajHNUIhb5SJFZH3VltQuZ3mnaLWJajm4Q2 c3TRBVVFcm4y0x/QiCcz3JvCUWHaPUUWlpbrkt57O5NTVlneOtruZtYPwwCg+3Ft WjNU4ppXEbbsLHsIri5gPCUD/2e7RFkq1KaaqA0wfwictFgxuOZX00Do1kIFfoE6 0jKSxU3P8E01H68vZs8vGuVOLVE1pXoWoJa68zVOWkLCTE1z2U5YJumZL1mDRRHt VfqlsaHNBLIRd9qAZsj3F5aSFu1/hCOiUkgLWQa9e/BAv76L+mCIJ+g5bU0YTEhx XoFwA/9dF3JFdQCkrzbhS9/BSjEIXDCl7e9Yt4/6jTg14fr9Pb5hyUYYxu6i5v59 TgSdxSFUd3MaZmH3Kewg++9oqewNEYdOu/gmx7GiSKr3k0FlX+aK7UsVDjEr55Gi XH5pqUce7y8bmx03a/pa0Lq5WLvPnfUaplWeoCmmAXeYmRFYqbQbTmF0ZSBMYXdz b24gPG5hdGVAcm9vdC5vcmc+iGAEExECACAFAkXKYeQCGwMGCwkIBwMCBBUCCAME FgIDAQIeAQIXgAAKCRBzyNtnYOWsEUGfAKC9mTqJd/PjHdTG0YZkBr0Y0PLmCwCb Bl/VHprr5SrFDBdZy+vB5GIEhme5Ag0ERcph7BAIAJKt5PBfx/CEqBDS+JkDyYLG RA3johtfG5HPVPOX1iFJgDLx/5ZKIsK3oxJLkkZQDBjzJgU+GcffBwafaTObEbid D2rtwtqfM2EgoSntvJhrP09Qfx1/MOZs4MVJbGEec9egMgFRzUSKZ2xiYNqKOWL4 dL0TOyeLg7HQne1fuOOFEJZJtCxHAm75z6Q8deYHr7bQQ6NZuYc2qsOLjBX+M6Ig d+r5p3vhkeg0uUzkRR9bAmtaDT3BFfxfMG0b4iTBpDW5UQ2Cp0NG+SAEaXVCYNcA kKHZGTTI9e6a8AimsP1wOKs1TsE7WSLsk0Y1U6E7OuHLdmGwZygipfkUXR5v/hMA AwUH/jLrMCAzZaCh6m6mrJ2HYCASRSfGKAbmfqPymEICfZ3Y+FeCCFopeatMZPyE R6gEzHyu1hlSHV6yTfxRDV+gO6Pl9snsucJtD//ZnfNZenKsFoGJM8qu758jBA5m FY5bTlkySmFJYHGAtpMap85j32iA3B24VmgIZ+rE/YVQUbbkaFrKN7Crvm+PgH1u xbLrkjypklyo3iZZQo75W7SobSvyqnG3LRXkXsS1U1m3QWcLqIjKZTrrhbV3IIRK +A0rSRKXpDt5lOYIqbJ+PwwGexlgzb31vJa0+N8qjdvbbMZIOA7mDVauEYsETkU0 Wtl5Rc1M8Qx2IISH+K3AGXHqn3iISQQYEQIACQUCRcph7AIbDAAKCRBzyNtnYOWs EcVTAKDj9JrwUwygZFNG+oWsOA3/ikA7qQCfQkYnj9q6E0Z21p/ZTDptic+qSEI= =yO1b -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048D/8BF6CF92 2012-04-18 Key fingerprint = 66C9 B361 16CA BFF6 5C07 DA0A 28DE 3702 8BF6 CF92 uid Jeremie Le Hen <[email protected]> uid Jeremie Le Hen <[email protected]> uid Jeremie Le Hen <[email protected]> uid Jeremie Le Hen <[email protected]> sub 2048g/045479A3 2012-04-18
-----BEGIN PGP PUBLIC KEY BLOCK----- mQMuBE+PH+QRCAD+9DigWKR9oHUdgiW3x6ALCp0hB6yc/lyVyGTJ82NMpec6LxTr FKkn3aI+jLWuuq0hzIdUodYpNHUlk676ycv+m7CXpR2yOw2mBC6NcmeP4WrO95ot hA/wumg3eOoJ2MqLXJMs8K4kleOzgdel5Q5W7617e8r/hF47kkB5OztKexAwz6hd Kjm6CQAxWAttwwxsXcitCGhW1PF7uOTeXVTjsV7sEP60dgx7nkchsxyZsMgaxFf3 bUZk/AK/6abLy1odBthcUL3ChKg2ll+9adtOIbJybxff0iQu0SwKWI3yKqqGum7N BKOzOrZyQ0Bm8u03AwVprr37INaTJEu6HDUzAQDwVp4V/HR8vExiBDPl5y6EYZGd MXtUqn4OalYcTxHqxQf9G25QRAw4/G5HN95123Yz7CMSgS1UaAoTEYLhLQwMIdko t9jM42Wm7sDOUOPCnb1Q4tzpPSyWKVgqeqnet7ON14Juashp5CrRtvscD7SPIj/e rTsSp+qg9U2vsbZC5F/SKSMXdwR3Ws019iPXMtJHk4zalxCPh9Ve72vZrYhOpfm4 msuTNFQkUwaO86nDv5oZ231koz2vRMB0pVvkHP/0+o9DRziNwJ9L0yh5XUInXH9g pP4IHdLrxGsSBamTbBQ8y62YIHjj3yKUneXE6gukgcRQC/kH0z2ObIeLN8q1J74K m6Gm6qjuAg35v8nlgdNaqnMRO9oL7iAtbcu9eWVZnAf+KuVFPeQ/u0QkhGHRj6ko 85PfhOK1mKCbY0P6PUzS42j+UR7SgkR3Q0ei4akmmr2RfUcarqSLKr6GJecgnXh4 5vss5e9MtAcv40YM5H2b2C9ItvdbyGzVkgqiFBjWdWHWisk9uQOZMhMqZr2vjeXm 6PrD3mOfwEz3d76TOE66v6l8SvOZRpTSqtLwDlsk3EiqXKZotoS+DTBvhgORx5eR 70tktFA11kh/E7FY/7oZWTIebOy9BWPELTvUPXZOnmhanP/6P8I7dXFqlwibGqQU sEwDCwjSX40XxU8cVtkmiIuPhYLH0JYOkfUhwCZZWDQY+4LNtMmkt9g7tACcbfBM 3bQjSmVyZW1pZSBMZSBIZW4gPGplcmVtaWVAbGUtaGVuLm9yZz6IfQQTEQgAJQIb AwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AFAk+PJmACGQEACgkQKN43Aov2z5Ku cQD+MY79NgwOxF3ZM5y+Fnh+YxG0wSi6r0hpCC4N/ziJYNEA/RxGmaqbSvakJLDh tc8ZHuXP+YW76DbPVcwzqQ3VP5XBiHoEExEIACIFAk+PH+QCGwMGCwkIBwMCBhUI AgkKCwQWAgMBAh4BAheAAAoJECjeNwKL9s+SytYBAKQDnxMcties2UjE3EbZhz11 vuEyUjef+qfPbUSE9gd3AQDSGizxLvaOiStv0KofZAk/rtlcNpEc4X5VblZq/nd2 LYkCHAQQAQIABgUCT48uPgAKCRCsDK44yFFsRZ3AD/9IQTuc25fCN7SdTOls9rh2 0WdRxLV9FNeIq7q6OyMcuM4sL8L2KjXIr3QheYm718tHm9kuryhownrB3Ncrw596 D0ufZxHg9wU6CaAUCJUDZre8JMvRFmiX5SlcIgcSU5XzQjmCGBNMEuAhn+KtuYVC GjRuTYblqeXk6qqeswO3CKFrdYRJvy+80QoaxO80c7Fn9coDOKf8/geO29ngeOFl LAM5JCM/fGLBsO3mC26AZh6egs2EodZvdqB0ZxozfO4Gtb//y5LUwairsUzbrXa5 VOo3FOxWto9BTpHMGwY+o2O/6vwPDRjnH7fJxP0jRcRkQQVD8Fp383Qizg+NZUMa Yy86rpOFWLu7uCglWngnbWzhgq/TRS0cFw24oRiBaBqT+LSEF7OdJR6gpyigQoSX AzMBmPivpnAEmQWPPGo/REiNpamgmV94YdGRRnh+buP2Ad9Afj+8hptb9gV36Hv7 bLoiWXONPtfqGzgpMjPl0glNuG+XYTzBDXyIINAVXH6eA7eY1oSeWseDX2FMR2sc WzPwesNzC6OfqURiN4C3XyiEEGwdrtc23kUw/STPqlmJ47CFEP9tKpmdq2avXNJc gEociTE/hqmnvIjxNeKmMmPrWTMEDLrNuSEGZAPCjBdAcMpM6OFf84vVqv8rAcEC prvcaHdbjuzCh+SrUnnbzLQiSmVyZW1pZSBMZSBIZW4gPGplcmVtaWVAbGVoZW4u b3JnPoh6BBMRCAAiBQJPjyQEAhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAK CRAo3jcCi/bPkvXmAP0SV8bEYnr8ujohKtyIqx1b17rBEgJIzZWkmYRUAr4UhAEA vBjzrk2m2ivDBoupHP+xN/JzCV/dJ1ryGFZgKBv128KJAhwEEAECAAYFAk+PLkoA CgkQrAyuOMhRbEVGAg//TyjkH+bWunScIJyPWiploJc/Whg7Q3aiXVt85WktA4EU UQgadoKxIpwroJFC+iIKS4K+wFn3QoAHFxeAwoxb7mYRZeuWWGY4fxoWUc2fcsYh +4YH7ntlGvk/UDROHgiyA1ysnH7V9N3mcyyJOA+Teznl+Q4JXlgvZhIf2hvjlnbe oiZN5+jlmUHpf00D83VLUXQqSzSXrLi94Q87atZ/hH90PJ7o3UefAQsMZ/8yA6c9 /U+CHib382D9/8ZqOI8gTItS5OjKI4kvKzKJ0i0ka5CmEjj7Fu5Kmt6dtsTb7zmA JGEBPU7+rWU+wbUsfXmOm/eCO3HWaba6Z1Ia6P5LM8mXyntsxhcgLRdax13d2YeS Y6pyMcouk9sUlVbv3qxFxR7LRTEDMk1/y24lgY/rlSAhCsyWeZFfAp2E3ynLdOND s5SBYvFCHYvSC4y7jr1/RacBb3GXKUGEyvvV+PD6WS3mDDiGvrrCL7ogRf5bIehV 1YQ4x/zUrXuG4rlYiOVZfuMHpmWaSEd8Fz8Lh6b6nlIpDGx6twpaxGkd3Al2VHQt MvXEqFzpWRYu3WIXhZNh8ED3yEn1a6AyBJAhu6nnHeMqxoyPqFuNsa/Rp3HStePs OvGvAlU13OXeflRtVRi1tXuaF8t7nzowmYpl1en1I7yHJNZ6t4y7HKJ0IjN6eVC0 IEplcmVtaWUgTGUgSGVuIDx0dHpAY2hjaGlsZS5vcmc+iHoEExEIACIFAk+Qg/AC GwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJECjeNwKL9s+SILoA/0jztZsp a3CsTVAXaCylXCBseirgjxiirtr6ldQQY1znAP4zq+D4tJjjy2Tpl6oqvj/77jQD 3pOkNLfYV8GevRoQcLQgSmVyZW1pZSBMZSBIZW4gPGpsaEBGcmVlQlNELm9yZz6I egQTEQgAIgUCT5FuSgIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQKN43 Aov2z5IePAEAyEMh/X6UonF1BryPkS54gJpXwgysLNMHmXBD47fCVQABAOTI3ZVz Z7/uX69ZNoOPrZMRAJtfMsZvKH5rAgzdpLH5uQINBE+PH+QQCADJ7uugXPLuUEwr M+e37WwHVxFWQUByBA6rbokXhsiiYJcwFp+7O3dH3RGrcGO6Zlfc1ONV1mBjvwiJ BVskAw+O3m+yF5oSJzyNDuLgX+GJ3elHpOrjRKDYaH7d6kqJu5Veh7/FC2hSD9yk LSIhlDp+EL9MC+epkohG+SaK/76uTfsU6d9jTnd14WsiE7RWnMtqigpkHXINOWBy PATG6HXixdKOjaE6DI4WBDLrr1Kc8ES32VwmPXQtO2eEjeZrbcrZ3PkA7a7XISBp lgoS6ucprjVzim5Qp4csV6NO9sX/HpPkMOoR5kCfdtktU9LhuaQsv/j0gvSO41t6 dg2wH+m7AAMFB/4nYOxBm6IucZuVQ3aQK+dRTp23ogM7+SVDnYL0iIQ2qB73izMP xIgJuG69Bntx9QQ36uso2nPt0ZmP0IEG2ykqS7GgFoqDR0DmAzc1H0tD7PS1Mqv7 5VtIv8+QOj9x1IEJ2O4UOb5J85PHXiBwIXSDLvwcSgFvayLeWcBl/hI45XQKXwSo DpMxz02OygTD05Ksi9NfE/A3bFU0VJO6TOlmL4G8iuCUwldQojnU4ZCd0WbSr5XM 9eEB9+FflOyNDkS3JHOtHuHIJRLSLvirbZ0qx+9Cg3tc3If5DsS5L0c1P3yWMKJr MhoyCPtlbd1DnwVvVa0jaEdED7MhAW4GTnXaiGEEGBEIAAkFAk+PH+QCGwwACgkQ KN43Aov2z5IL7wEA2Yyq/kngs1IhurNm6HxoL1p3RCBQJu7ZI0EJvF1TRkEA/0ft UKKVCUMfZqGpV5v3omGhzzE5C56S6ilzU7nRDYwU =kKtL -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/93FA8BD6 2007-05-21 Key fingerprint = DEC4 6E7F 69C0 4AC3 21ED EE65 6C0E 9257 93FA 8BD6 uid Yen-Ming Lee <[email protected]> sub 2048g/899A3931 2007-05-21
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEZQ5iYRBADg09p5ljHhIDwhH8i265BFEL1AyW3EPEOb0CyFErp3K4H7+IpG FeaHUrB2i4MYs2r9gAMHadBMTXZJv7ECq2AUQfm3vTKeBjVVz/N7jsEDcmH6bObY XvfRlp9618IBRCDdcbD3Qs0Bv4tM+e0oNYBTsOWAO+bfpHYPk5wORxq6ewCg8DWN J/THLd42Fd4HTfxTC4tTa6UEAMPz7iASUbyJr7//O/Uu+05MBKX8wuNdrH2XPUWq MwLcgEpKSFl0xjpJUMpr3eWGvAg0Vz1UzxDUvZUwbj/5nXh2olNoMH2LQY0QwXGG TPudevBeJ6W+UaEGCAH4Yy25hxxr9h8XI5KRlPCOjQ8i6H+EZbLRTLgOrvBWvD8B Ob8dBACGxoySAQP+leHIe9nrKyZ00tkNI6WPEPAG+14yiCgWLJnWKi7maIHzjG+1 1Fz5+nyMUtHofmLvNyDA/V1e2LFXDjH3v/PcTCQON8EnHAoYmqSRAZMBMmDpU1Af f/vbiOg1zwhwAhdO8y6GZHcJGJjJ8lJYs151ehSS2Oa+NRCfH7QeWWVuLU1pbmcg TGVlIDxsZWV5bUBsZWV5bS5jb20+iGAEExECACAFAkZQ5iYCGwMGCwkIBwMCBBUC CAMEFgIDAQIeAQIXgAAKCRBsDpJXk/qL1q9tAJ0fy0MkFt+hNcvb0OMqTRJvjYlB KACgluazpF5ATo+dNtJifOd8kMBxB+C5Ag0ERlDmLBAIAKOlmONAuOtrVXvRw2gr wYNA4bjQrv44PLCMGuicddC1S6+Ngp+F2bjq43iyDk06i4eXBop0uqzkGA56pCVW 51mSLThl5q/1dixiLDOSy/9Scuei57KuP5MOk5GpFBU/OZv0R+1ZaK+718+jI8/E NGOt/rZ3ZaTR94rAn9yQzVp4prVw4F7r6Vrp9mVu2qgoYKpwpfuR4nw1kq80Z1R8 TxtUrGFYSY7nRTPI6FI6fo6BVPMAw01Xh3oKfDfrecaNtNNgM/DvkrBvZsVHu3NO M2yAVL6LP/Sjv0uF1pK/WjP27hzvO3yha2KYS3oBu4zysyVbi7QuFvm5FmF0mKik JosAAwYH/RWHzWWtpgXdbMUrPxFTmFhXCVVuyiHG0h3bMZigKtAMcjjYRMenhiRm e5Z5si4VzzpaaZaVY6T7hmzM3cran4VH6dFdZy6qhBFzlJphpLwnJti/FMrF2CdY 1kthUC0fxeEDPBkYvV1izBrPQ915XYXuXdJjbk/ATqeIKsqEHWSmTCLcLLtWn9Nt X8DWU+GHMbaMAbtEfL+i8vg0WIOeSE4tlQwIkvSzfXh6Rysr7NtOuYzADD6ORRkg Q9K802n7IYXqWhZTWKijXpf+n+NzWdXC/1UZambcfo1gcS1fotmrO3Fmq3+FgJ/A YPmudGbHwUlAXVfJ47Atxggoe0znf5CISQQYEQIACQUCRlDmLAIbDAAKCRBsDpJX k/qL1tpnAJ9MKjKh4P+ePXeQ+yIwfPza+MnFcwCgvVONrkQ6Byi+tZ1ilTlKR+8+ xnc= =XiOT -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/BD147743 2005-03-28 Key fingerprint = F618 F2FC 176B D201 D91C 67C6 2E33 A957 BD14 7743 uid Samuel J. Leffler <[email protected]> sub 2048g/8BA91D05 2005-03-28
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEJHnP8RBACRTtM4Fb2oRITEwfTLIKSa5Mk0m1A7Pitd1qkjtAyFCi5V6uF/ 2FXPP3Ux3M8xzrvkQNnWkYvGh5MSgkkJ0nszUvh63m5Lp1Yr/EMQr03v1HfqGKF2 SALv7eVJ3XHEEGsYq6KOcJ+2n3FkL6bwGXkXSya85a+EwQ+/aBhpEOEKwwCgl4N4 oTMEgh2Z06ZkMJrqbf4/P38EAIAN93nvAN14v41zw25b4USFzqH/JFTG3utAVxiB NgTEkD+OkktxJFoTrZxfxoU6Od4tl+yIyhKJgj/QlH5pA/mpMeaXh+TQ0/EQAzml d/sw7vXV3WJ+zXIZeh51yuHBY817e7izcnfmY33UrOdf4DtcplmUrfQd1eVMSo45 K2b3A/9a0tg7NhdfkL06b97oyKb0L8F92Q1sO6J5sgsEjNrUVrFnNU0DIDgbi/0t oBpnqIDa09hhBJ1XYcxU4KMxBLpuIeuk2cDCUCVeeEDmx98GIss3hKO8YWzB40y6 7vtdh5lveaNV4+CA2xL/cDXscl+poRQA5tR0efR16jckEaEcVrQjU2FtdWVsIEou IExlZmZsZXIgPHNhbUBmcmVlYnNkLm9yZz6IXgQTEQIAHgUCQkec/wIbAwYLCQgH AwIDFQIDAxYCAQIeAQIXgAAKCRAuM6lXvRR3Q7whAJ9e9jjfVscKVirvWN5IM2j0 60Q50QCglAppekJH6jWStTwoq1EroBFPKUy5Ag0EQkedCBAIAKmxNvJW/W+PrE+T JjKw6dbqUqAUNIGWnr6xgL7KYBpx5eo0XH3RCVzvRSfboA1+nXauTn/FhOtWMw0J dkHrMQhxKSDhWOxeftKuiRiVLPXxF7PX0JMOadxOuqNSt1VWcuTxxBB2wva2Rb48 JscdFbT2u7+PHNarDgUnEobobdvbzh4F1ACaesUq4s2y8jH+YJTaBqJJuZLjLwti C2zv7skf40I5ldud4/7ARGuumpjTrqZFQeQwPKX975X+jw5SBUJXA1ckKcgTp0s5 Yk+O5+yUkt6yzDO+CAYEaZ/xfpOhwmqSIXtdo+ilm2q3y5l+nyEVidYncRWRWYyO iaXOJdcAAwUH/0Ixl92WezOXBqMrKVaA+abCN6t6n9zxSnwfVo92Vlfqj8Huz3Hk 55e1in3P01xXdNKnapYNkCg70WbtNQtCh0nJdGGDEWVqJsjiqDDMYa7QLahV7HPB RyOtoAXnTWPpyk0d5WEXPLJ3vPjxqv5wKTmav3JcvVahSVWi2wmWAgfQJXYRvCU3 EEQ5KqtCBrQNdBsSRnzgDsMY2kAh02VuGTbkVlQz/rI7HAYEOL8SoR489O/MTE+b 5HtUT70rk57/3jR3QtiH/3Q7OqnPh/ATjO+pnPuhfqHiQWLWRDigJNheH/B+1Hmn sHiSWrUmlaI0bzyIVW4Xft3nu/wH3QVSSWOISQQYEQIACQUCQkedCAIbDAAKCRAu M6lXvRR3Q1SUAJ45iX7Ka9rb5pwAmY+fyfpuO4qgJwCfW4VAl3+NLCCP4A0Y8wlb UtEtg3M= =kR9a -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/A3B8006A 2002-09-07 Key fingerprint = CC99 D1B0 8E44 293D 32F7 D92E CB30 FB51 A3B8 006A uid Jean-Yves Lefort <[email protected]> uid Jean-Yves Lefort <[email protected]> sub 4096g/C9271AFC 2002-09-07
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD16LoERBACHLA0g5LE31OgOwlPPpQHnOciC0S7/mTj+XBGMi3uS8ts2K2pM biEm7+xsyakCP98ucTs/OQmCizSrqMRJbCSX6TW/qx2hWw+QREZWZhTL+3pRJ2eX ip+wyuOuUjlFJ28fIlil7XPAv2ly4tP6umC41+jT2BTgQObegm+17uzsmwCggCZg VopF7lI3hUtJd58PTatZt/MD/RLMBRG2eZYfOGpHLF9jg7AoUNouMFSMADyYRLwS vlUrcR3HlwjqKq99WucWCAkneBym7yRuNDUeZI1VBxasG8/KQKL9mEB9iweufSiT qF4v5Hk95wpkbE4v2jGvLsvzE1D0Jj4fJgdm+Oiq/wrFIYeL6R2gzbhLn96X313x appTA/wJix+jwlo8cgvmaCrJMVcHlaCiSkDM1UlKDQSPB5VxXazeW4EvN9YpIr54 aWzQ5elL3zhGfJZwtY+KwqBWeaHrvE6VJ8kjl9Ol0+VP7MObgfxgb9VB1oktKGuL zbeVnCVZXbaqkxeym9kB+VUJPYJJiLGOztUHBjvxGazIxTXhIbQmSmVhbi1ZdmVz IExlZm9ydCA8anlsZWZvcnRAYnJ1dGVsZS5iZT6IWQQTEQIAGQUCPXougQQLBwMC AxUCAwMWAgECHgECF4AACgkQyzD7UaO4AGqT/ACfRmyJHE6XFGGVvNU3Gx1E0vpe scsAn1yHaROu1BCUra0S4BNPVidE50iitCdKZWFuLVl2ZXMgTGVmb3J0IDxqeWxl Zm9ydEBGcmVlQlNELm9yZz6IXgQTEQIAHgUCQlv5mQIbIwYLCQgHAwIDFQIDAxYC AQIeAQIXgAAKCRDLMPtRo7gAahOSAJ4qAsR/hQO7F1SZ8CrRqRQoz39GXACeJxqC bP08SjMi0oW2ZGGQH7A5oH25BA0EPXovJBAQAIf12QdmBkGQYGGEBhmFUk9XU9Au 9fxbrEc94kDisD2zpXPRuOblVTE2lVNaxXN/aVdf1AJHtpexdKjc/opvIa4TJuTI vBA5gZk6AEpkAgJYHme3joJIHJtyHEms4HNO+yvnYXBGmFTkc/ak1o+rBwbWkvUw IbksCSBpUWolzyThbVrRR5P7+HNsp+RcKgo8dJsU7SaP6VVmAIBTWyObXZm+eRpJ yJMnTXUxWz7W4ywvMu9OF6C/4e4x+ueBQJ5xYRpyZbEol0BdiVQRoxEnsc1I2S4A c5YWZuMnzRtkQV4mQfhqWrPQ5nLfVc1V5yp7PGyeJRAwIZCbTBD4wNBePXhTQ+CP JDVVaJW7W2ComgI/1tjy9K5IYMLSXSmbvCg+A/qxEuhQQHPhlvZA4FLhxZaTZpXl EHyvxyLxridyRfRzmE6SVCA3eyr12ewKaTXimBmcRvP0vrt4nL/SS5rlKh6RsJbQ k0ETLBi6Zq3y0HIcA/8He2OSusyhgEBJaO8de9RF2APUOCcbt7Dz0f40iVz11pGN 8yfFb5BW7XYwnprZbD43QXjB/N7lD7lTRghLxLl0QSLs7GoQj2fXQiGenOnhsMIo pQ0b8G8J2jCJleBBdNGQ2tedBzyUVgap3zFuy6yPIoKsip8JJNOJEz4WcpZrBJPc UE6VNqkUzb/MHcxPAAMHD/0f8AUCDh2x8Kv1YENpefaN8WCQw1NeSgZtLuPYg9Op 7znNk+Xkl7WpZROz9s0S8AIGNr5BCpDxCg/AtdA1+fsiQXi05bV5N63LPQZNtLjV oAvsnyn+p/ZGVnW6JhfPedJQY62jDmty4dnYNYSZWvIXnVDdRILIgGGnPp1Or6HQ nurqIdKSnGIO1Zz00e5hGMPUsylsNBvesrHKbbzKbgp59cwvhoHk2oet5aK0+Ici aIcCaWyjCGH/d53YTIf5ZRx3glDWbgRadPCVZiaDGdNQenF6zAVyXiJOa912sW2x WcyhEa86imh0lfYSm1KJFYgnXLv33hlmQ2iiF4kBVk8Y6qU4BIDRJYDcPToNjmEt lOwA3m3gkembU8uxy3mpE1L/iNb73i68xwfCHlZ1LzCnUShOl8aw5fu7C3qcytUp t3gaD0TeHuqS4XIYBgDjNRPILW6e7IlK+3yQE9cLgMb6+vNQuHfkYr4TuRSUTWlM sWK2opEq/z7e3LWdJrU78yHTBTVV9Myf46JpcWE2KYrCRHk564329Jvfe+uByYSJ lCXogYpFo3HbaAyIjmcZDgbDHFaYnJ0dq/NZmK1rFVbBm2Z6qW1laG1X6ke+KcNY HoUwEqEkYeOsovwkH0veLxvfDzBGtp33V3OgVuYa6WA51tpJQH7KgTvh5ETJBHzY TYhGBBgRAgAGBQI9ei8kAAoJEMsw+1GjuABqd9EAn3E2CMMkEWdOtVjwTu+wWhuv 3bMQAJ4soo0qCyPCVz4Y0Ly5jvYWToXt0w== =kszM -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/72077137 2002-01-31 Key fingerprint = AA3A 8F69 B214 6BBD 5E73 C9A0 C604 3C56 7207 7137 uid Alexander Leidinger <[email protected]> uid [jpeg image of size 19667] sub 2048g/8C9828D3 2002-01-31
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDxZg2YRBADEFCcKKsa/VS6z7aq+04C4rJ925MPEdQnGo4EVKtRv38AnqUaW M6w2CJuDQ4iS+FL+nWaSwRnfGufftkEx0mSum1FMXQQ6+buC11LkgUYcF2f0wlak HGr6Vo48RGz76Vi7u5tcoEaLb6uYjJfOOAzYX1aOv/T+qeGVc+JJG4LhNwCggBHB 1DpYSy35o1I7EyVufjruQJkEAKp11sHwuPcc6Q4q5hSKG3VM5TJKHwRkdoRxgfjT UJGecH9GA4Td7vh11dMyS22RnFNS5hcCdCdoe9PkDEvwp+w30pi8uNOFmpCF9TlA FRgwFC9pq6VveHd1PHWSRgiTFxeTXgJ0Y/zCZSitURCtlqMXMg9qnUe1tTAF99yp zmQZA/sFaFGTLzCbPrUY+2q13b5PSQsv2D5FHFGuH3FL/rIyPexKmm9Fcs+LAQM7 rx94ipa0OpwapUwCFPg6zNqQ+67JM4KCzRsoSQPsVtCNNcEODQRMXqx6DK1tYUvf ymCAmXUqqqVXARyDh954uBqTfRSASsqPsVAxtwmVA7rceEcIfrQqQWxleGFuZGVy IExlaWRpbmdlciA8bmV0Y2hpbGRARnJlZUJTRC5vcmc+iF8EExECABcFAjxZg2YF CwcKAwQDFQMCAxYCAQIXgAASCRDGBDxWcgdxNwdlR1BHAAEBQuIAnRn2yTAmJACp PB9Nc1WjeQpipeDAAJ900VXCYeRbwhfldpGMbiGlkj4Ly4hGBBARAgAGBQI8WYOm AAoJEHninGCwBj/nkIMAoLd0ACBW+D47AAGAHLvbnoVOUcysAJ48WGg7PqFVvxq5 66+s+xtIsYOK1YhGBBARAgAGBQI8WsZXAAoJEPSMqBtpqFhziTsAn1jBAxq4biI6 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<[email protected]>
pub 2048R/10C8A17A 2010-05-29 Key fingerprint = E659 1E1B 41DA 1516 F0C9 BC00 01C5 EA04 10C8 A17A uid Andrey V. Elsukov <[email protected]> uid Andrey V. Elsukov <[email protected]> sub 2048R/0F6D64C5 2010-05-29
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEwBF1kBCADB9sXFhBEUy8qQ4X63Y8eBatYMHGEFWN9ypS5lI3RE6qQW2EYb xNk7qUC521YIIS1mMFVBEfvR7J9uc7yaYgFCEb6Sce1RSO4ULN2mRKGHP3/Sl0ij ZEjWHV91hY1YTHEFZW/0GYinDf56sYpDDehaBF5wkWIo1+QK5nmj3vl0DIDCMNd7 QEiWpyLVwECgLX2eOAXByT8BbCqVhJGcG6iFP7/B9Ll6uX5gb8thM9LM+ibwErDB VDGiOgvfxqidab7fdkh893IBCXa82H9NCNwnEtcgzh+BSKK5BgvPohFMgRwjti37 TSxwLu63QejRGbZWSz3OK3jMOoF63tCgn7FvABEBAAG0JUFuZHJleSBWLiBFbHN1 a292IDxidTdjaGVyQHlhbmRleC5ydT6JATgEEwECACIFAkwBF1kCGwMGCwkIBwMC BhUIAgkKCwQWAgMBAh4BAheAAAoJEAHF6gQQyKF6qmYIAI6ekfm1VA4TvqankI1I SE6ku4jV7UlpIQlEbE7/8n3Zd6teJ+pGOQhN5qk8QE7utdPdbktAzi+x7LIJVzUw 4TywZLXGrkP7VKYkfg6oyCGyzITghefQeJtr2TN4hYCkzPWpylkue8MtmqfZv/6r oyqwTbN++E09FQNvTgRUYJYTeQ1qOsxNRycwvw3dr2rOfuxShbzaHBB1pBIjGrMg 8fC5pd65ACH5zuFVA0CoTNGMDrEZSfBkTW604UUHFFXeCoC3dwDZRKOWJ3GmMXns 65Ai5YkA63BSHEE1Qle3VBhdcG1w0CB5FBV3pB27UVnf0jEbysrDqW4qN7XMRFSW NAy0IkFuZHJleSBWLiBFbHN1a292IDxhZUBmcmVlYnNkLm9yZz6JATsEEwECACUC GwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheABQJMB/ruAhkBAAoJEAHF6gQQyKF6 MLwH/3Ri/TZl9uo0SepYWXOnxL6EaDVXDA+dLb1eLKC4PRBBjX29ttQ0KaWapiE6 y5/AfzOPmRtHLrHYHjd/aiHXGMLHcYRXD+5GvdkK8iMALrZ28X0JXyuuZa8rAxWI WmCbYHNSBy2unqWgTI04Erodk90IALgM9JeHN9sFqTM6zalrMnTzlcmel4kcjT3l yYw3vOKgoYLtsLhKZSbJoVVVlvRlGBpHFJI5AoYJSyfXoN0rcX6k9X7Isp2K50Yj qxV4v78xluh1puhwZyC0p8IShPrmrp9Oy9JkMX90o6UAXdGUKfdExJuGJfUZOFBT tNIMNIAKfMTjhpRhxONIr0emxxC5AQ0ETAEXWQEIAJ2p6l9LBoqdH/0JPEFDY2t2 gTvAuzz+8zs3R03dFuHcNbOwjvWCG0aOmVpAzkRa8egn5JB4sZaFUtKPYJEQ1Iu+ LUBwgvtXf4vWpzC67zs2dDuiW4LamH5p6xkTD61aHR7mCB3bg2TUjrDWn2Jt44cv oYxj3dz4S49U1rc9ZPgD5axCNv45j72tggWlZvpefThP7xT1OlNTUqye2gAwQrav XpZkl5JG4eOqJVIUX316iE3qso0iXRUtO7OseBf0PiVmk+wCahdreHOeOxK5jMhY kPKVn7z1sZiB7W2H2TojbmcKHZC22sz7Z/H36Lhg1+/RCnGzdEcjGc8oFHXHCxUA EQEAAYkBHwQYAQIACQUCTAEXWQIbDAAKCRABxeoEEMihegkYCAC3ivGYNe2taNm/ 4Nx5GPdzuaAJGKWksV+w9mo7dQvU+NmI2az5w8vw98OmX7G0OV9snxMW+6cyNqBr VFTu33VVNzz9pnqNCHxGvj5dL5ltP160JV2zw2bUwJBYsgYQWfyJJIM7l3gv5ZS3 DGqaGIm9gOK1ANxfrR5PgPzvI9VxDhlr2juEVMZYAqPLEJe+SSxbwLozBcFCNdDA yXcaAzXsx/E02YWm1hIWNRxanAe7Vlg7OL+gvLpdtrYCMg28PNqKNyrQ87LQ49O9 50IIZDOtNFeR0FGucjcLPdS9PiEqCoH7/waJxWp6ydJ+g4OYRBYNM0EmMgy1N85J JrV1mi5i =KVzv -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/96C5221F 2004-08-18 Dejan Lesjak <[email protected]> Key fingerprint = 2C5C 02EA 1060 1D6D 9982 38C0 1DA7 DBC4 96C5 221F uid Dejan Lesjak <[email protected]> sub 1024g/E0A69278 2004-08-18
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEEj2LwRBACdxv/Z/TqPsaxTmKrXZSOPnQca8L9UksW+71kI7YouAkbnnTyB maf7zCs0BDcUU6t2mO5ijJlxXe7Y4yMx/3mwGX9iWfWh5U9xobG0STcU8ET3ZQmZ /AM1vSL/weLK42YHxyqSrudt/oWxH4iDZFz5I/HI1DRwZMFhft3ja+pdYwCggAu5 GwYrQlQJHJcCFbxnYUGJX/sEAJXyzea8rzP7dTUsaOYcLitIpy/eDI3vkB0aW7Uh JSicWASPW2erv99f1p2gkVQ0b0lrpMwPrysotfN6wLLYR0fowCWHm7hnASgohFpq VwB7aj0HDEHne7EIr6geSpnO8Y4QUtbFVWo9cq7HGzrB8NhwpLXQ5g9RgB+H9SS7 SzVXA/4qPOAoJ8Fp+ZSznd46yd+dgFmVpSJuTs3g+hFolSioEkbi66fHwPMWeifS i02AkU8m/qiGMAXRwBm7s5jeLwQyJX38S4PnupPg8pOjZtLVYoTWaM19yuMGS5S/ ryF5MaCGtuB72Wnsp67aZIkaHjfS4QAKo0WVH8yucnyOS+BFsrQiRGVqYW4gTGVz amFrIDxkZWphbi5sZXNqYWtAaWpzLnNpPoheBBMRAgAeBQJBI9i8AhsDBgsJCAcD AgMVAgMDFgIBAh4BAheAAAoJEB2n28SWxSIfMJkAnjxPSokKlZtVhYhAcgX9as76 sadXAJ4yo003F9ilZw6avaThCBltR/MqWbQfRGVqYW4gTGVzamFrIDxsZXNpQEZy ZWVCU0Qub3JnPoheBBMRAgAeBQJBJQwqAhsDBgsJCAcDAgMVAgMDFgIBAh4BAheA AAoJEB2n28SWxSIfOHYAnA9quQ97rU3eJHb1LzOTpwZVMSDxAJwJnLzSFQHfJu1f seG9fTyt5UpBAbkBDQRBI9jCEAQAza9XDZevfbu9BYjDESbKo38SRgyTd5/lIgzH IlF+9zGr2e9PH1WOIPr0m9m3LYQzkL3YiUm23UoJO7uhvWvCpxfChwVx3VFwM7Yz WqWBV+W27aZNROEmh5KheJACE/m6j0R6UECiRHZS/EsHP8FNG8roWro23ApNR0Vh zZ6iVNcABAsD/3glWDyCWMA/eX/YGPw3xN3hkENgruwtWKkK6TW6kYv94k4iD/b5 bRsmIvGd31AM5/Qv/IQd7epXb2ovDaKvMl6+jAJb1NMCSzOkCnoqcQoKB0ed33d0 JOVWuA34WCMZ2zHLFEtwuQkHZqmyNQcxRLGLkODo4WWsYNU7KeGHvAJDiEkEGBEC AAkFAkEj2MICGwwACgkQHafbxJbFIh9+8ACeNr7M+KLI/eWu6Nig8877cjrEP3QA n1Kfo14Pijwx26kysheLFV1jutrq =IfeN -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/8FFC2B87 2006-02-13 Key fingerprint = 6872 923F 5012 F88B 394C 2F69 37B4 8171 8FFC 2B87 uid Charles E. Lever <[email protected]> sub 2048g/9BCE0459 2006-02-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEPxAWERBACkn7HyvqMEJbJcf5eSJ57WR4Xoo1PU1GIsAYhdFhDOvmeWRZcH kwUyFyol4X3P7RyibrvZwnvc+nrqXqATzVeDHT2NhcTTeG7fq4E4a3VpdqR10uV5 nswMRw/Arci7vuAQnmHzOYfnNP1ng6qLjA/CUizQ01WakhQeHGtbM9Q5XwCg2GEW H6d78/rWY2Lb2wo6cS+9Du0D/01cO9zPg+Mh2T43XdLMjnVp17jR99SuNajqJbBJ pNehq8yA6wb3ahZPjKtXpgELu7YI7omxhqcq1mxKvXa262aV72qdWqWoqvZzX0hU lOckg6Q6EO7qGvU/jOY02/tmHdzQy6UJzHB7JVsfZ9DGH5xW23AYmbD4WF8jXtyL Ey2eA/91IZpxEK7guIBt0FE0qMSCh5VOOlzOQkV+KtLswzEVPOWw/93wGpd/uilx jZESPZ70cSWuCWwY15FEFts/gs5gPhCs1h4asQI0Shft3sgQrBhE1/hg2uENccHR y1Af75hwezkwFkE2DUXFQqLuUlGu0sOtG+b7+IPrYuaGAB/yBLQiQ2hhcmxlcyBF LiBMZXZlciA8Y2VsQGZyZWVic2Qub3JnPohgBBMRAgAgBQJD8QFhAhsDBgsJCAcD AgQVAggDBBYCAwECHgECF4AACgkQN7SBcY/8K4dpvQCeMv7yFBMFOPxa8lF15IYP 8LRYjaYAoJyIupvj/RgaM5zZXZdPUS+gro9SuQINBEPxAWkQCACPOzcRL0LbFubW 3c8aJODeBG91aQRPz+ndMItFW6/+CW3EmyCGyaG8uxdtY0SOx0yALj4PiSj35s8u wqfsWFRuNixODl9lE8ihq4d5qfeiwpcAR9wVNwgnXD9boKXOOFwb70W+9pI/I4zX igHFxZQpndROhIFO1RLdoBlB89vV5iX/qzPKHFfmbbIkY4zvAsvW2MCly1WiEC2y GT5GJTFZgko5/VBFzb3VDvA0grCGGTbHK1hnfuuvouQPnbuawdSZO2XGMc2pFcKW gh+fgdw5Y/oQZelJKhLaL8Lz27buTz2sj5O/cYv5n7wDD/kSnb7+pd//qagox3JZ bGXKTED3AAMFB/42KW+FULr4keaGuhAZ07hrNs73Uw3QTTNIUYYOkSJVvgold8RX HMP38WANIkHtB3LBaZBxhqAOp2R5AppIPfyDrp1q0lTOGpzWfsQNQd10KRsXZGkf K6INVa6kpzQhNDxBUyLh4onp7hZyt9zXdZrfYJLexbxrxkP1LDRDNJJAY29LnVR2 vyDHPrB6mmgijy07S6yKwC6iJIRoU8w4X3xFqIQ+KcA6VBhXqtqxSjk7GQnwyB7Z 7l4Qg8iZvX5qj753w6BDEwDtXlCCbocDVsu5xcLRPwMN8BgH7XcYCwmZFEU7IgEk RAhqiHsjpnO7al5a+HQJi/KMOs5aDfwdkI48iEkEGBECAAkFAkPxAWkCGwwACgkQ N7SBcY/8K4fTZgCgiVDpYWzuROUmau+CUT/UVCatpHUAoIyg/KnHhe9PUB9Gav5+ /KWhtyRy =T2Vu -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/1BB6D9E0 2002-03-05 Greg Lewis (FreeBSD) <[email protected]> Key fingerprint = 2410 DA6D 5A3C D801 65FE C8DB DEEA 9923 1BB6 D9E0 uid Greg Lewis <[email protected]> sub 2048g/45E67D60 2002-03-05
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDyFNecRBACKn+4b36n2/e55yTfpLXS9a57gQNgx0WXBfbK9LMLf2D8otD+0 z1DW2eclAOwJVtPftjvYP0HKFVC8Pes9Wvp6Z0sIEPpdkL2NPlUuxXUyh1b92u7n Bpt7Uwsom88fnn+BOPrvvPL8Arg3JBen+Jd8o9yRoABCYku8vQF6CEUDcwCgmHJd 9hZ/kRb1rLdSLssB4VMQ3zED/0/SVm+6XV+2ObXn9FKQpCC6sMSq+PCoR9NzAVRI njTtkpyR0fjJZr69IN2E2MWPonv38Xg1tWJnR3fKUOnNqwiVHBQKKrKa9lGWsZQp TrR+ihtJ9hC626dCq9JDb1Ls7TXn9ha+d0WNuqiwugto/myHm/GVlCANhGzUuDNU Mo27A/46YEAMuhSQWOxgSZ/Z5g0ybgpswVePrxvD4sX2/AVfKClOYpPiNJe+S7YT JmfIPkpP2P7v+87BaN/uWgaFmxlhpUOIuat44w52EwwGB+K24cGgq52XncZsYTYH SrLitkRtt35tVdnn1v3gmDi83M8W/YunflpeJAgJC0QzxKuar7QiR3JlZyBMZXdp cyA8Z2xld2lzQGV5ZXNiZXlvbmQuY29tPohXBBMRAgAXBQI8hTXnBQsHCgMEAxUD AgMWAgECF4AACgkQ3uqZIxu22eCkCACfUuNYpGGlFboDl5FZeXlor/k/hogAnjyq /Vw8amjEN34PGuqBPQpMnFrwtClHcmVnIExld2lzIChGcmVlQlNEKSA8Z2xld2lz QEZyZWVCU0Qub3JnPoheBBMRAgAeBQJA/XNpAhsDBgsJCAcDAgMVAgMDFgIBAh4B AheAAAoJEN7qmSMbttnguMYAn14cqGfabS626P1D4GMcSkSagzaZAJ9LyH+vMrfn OI2x9+VLyaTSAvm4zbkCDQQ8hTajEAgAmuQukPFaefkzE7DTIgSDIc5vRmUHDs01 bGp36R7f5GEmXwNtCZ+Mf+H54QSzuNh1QaJ6Nq/iYd35LA03/I7AgUFwSX1cEc/n fNjxqS27CAab6nIt9Syb9WAAKUKDMwZCjHBNv49CAPyVVb1aTUCJyUcv1gGSMNHX r2bkWpa4nIN4+rqD3hifHCX1j/2XMkmYY8NCVTY52zqO4sCbh+ohAMfYtW2yV2Iz z4ngppp0fUbmlGV6DVvTC1Mi61UCDkhO+TZFlE3qXeGlP5GR0SbpdQmPiI0Jpinq Zs43gcd2xtiUBM7HAMoQDpyFirDuyDKUgMWJrtJtAwWa4cf4Luh/fwAFEQf/dqpH bl48tu+REAPrjk9NWaGVqi1vv0r4LJXo8db9aGxwwAzKXDhwqHo69E6l4/Rd+hsa sIJE7vGNbGK+uerTg/W3jot90MqraplXHuS54TjOMyzWSSG7S6ypmDf5YnK3xQE4 NfTYvC2GxphotkE+QmBzmeft/Mo3opVYlv3OOBqiQoCYB348rXczxEUPam3bFBw1 wp5XjA0kqYRcUbxNE5AK9c+g6R2c/jT96EnDZDpMRCNZiAKHFLEjtHy66BiVHKvg tijWD0kxtlWV8KAKN6OhUpSSsCv53jsCIntNARAVENOKOV0RQVDfJgykeK+3eeNr UdIjAWFAWcVOEw5TQohGBBgRAgAGBQI8hTajAAoJEN7qmSMbttngHb4An37mZU8r E3SGCAlTJCLV1JxRDXVyAJsFBVshxisn1GycdT3UCwcJVAHJ5Q== =bx2+ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/CAEEB8C0 2004-01-28 Key fingerprint = 43B8 B703 B8DD 0231 B333 DC28 39FB 93A0 CAEE B8C0 uid Xin LI <[email protected]> uid Xin LI <[email protected]> uid Xin LI <[email protected]> uid Xin LI <[email protected]> pub 1024D/42EA8A4B 2006-01-27 [expired: 2008-01-01] Key fingerprint = F19C 2616 FA97 9C13 2581 C6F3 85C5 1CCE 42EA 8A4B uid Xin LI <[email protected]> uid Xin LI <[email protected]> uid Xin LI <[email protected]> pub 1024D/18EDEBA0 2008-01-02 [expired: 2010-01-02] Key fingerprint = 79A6 CF42 F917 DDCA F1C2 C926 8BEB DB04 18ED EBA0 uid Xin LI <[email protected]> uid Xin LI <[email protected]> uid Xin LI <[email protected]> pub 2048R/3FCA37C1 2010-01-10 [expired: 2012-01-10] Key fingerprint = 27EA 5D6C 9398 BA7F B205 8F70 04CE F812 3FCA 37C1 uid Xin LI <[email protected]> uid Xin LI <[email protected]> uid Xin LI <[email protected]> uid Xin LI <[email protected]> pub 4096R/2E54AB2C 2011-12-05 Key fingerprint = D95C D3C3 8FA8 25C2 C62B 9FEA 0887 6D93 2E54 AB2C uid Xin Li <[email protected]> uid Xin Li <[email protected]> uid Xin Li <[email protected]> sub 4096R/7832B740 2011-12-05 sub 2048R/BC50FBB3 2011-12-05 [expires: 2013-12-05] sub 2048R/C894647D 2011-12-05 [expires: 2013-12-05]
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<[email protected]>
pub 1024R/F4013AB1 1998-05-13 Tai-hwa Liang <[email protected]> Key fingerprint = 5B 05 1D 37 7F 35 31 4E 5D 38 BD 07 10 32 B9 D0 uid Tai-hwa Liang <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQCNAzVZoYQAAAEEANP5N0PqWEDO1ml4yfxXCQ+hEhaXyaGyNboh6uLX7uNPXQTI 9veETXNd20Fu+8yuzVFJk+KmmGerUzduHLXm6q+szHBvEQoJ2ZGk9AL9jj2JjFRj rCRsf6mk8SWuL0xDBTu04bZZ2ttNDxNiymNTqdBVZmX6Mdg/T2i3mv/0ATqxAAUR tCtUYWktaHdhIExpYW5nIDxhdmF0YXJAbW1sYWIuY3NlLnl6dS5lZHUudHc+iQCV AwUTNz0HC2i3mv/0ATqxAQGQ2QQAww0WfeHFmupfTBWWdmNSX9eCDIfN7Wsuiu54 DgCi7T7ixQa6reIsMAKx1KHNX/GSBr+t3nyHT7N12Ee09qKXywQAw9W2nrdMGE1V nENHEFgJtvnoN76U1goANEfZGnLLhyuDoMyZGCZmVG6FiV6EoKrWxfwq+jV0Y9K0 3AI/Cny0IlRhaS1od2EgTGlhbmcgPGF2YXRhckBGcmVlQlNELm9yZz6JAJUDBRNC H/ubaLea//QBOrEBASTEA/9H+78uZl6JvHwGKOXyZkrRCLTUgifJcR3thVfynGrM AImheJwqgVP7FQojDk8xBCBQ1b3tpwpeRPwE0V/Dr5MkFLfiaVgCIfMibqcc9zuH i4RYcRqKswiO3pFeDMyHiSxylURcHfx73CYijIDyG+HPiCQ4OGd95VJywUzOVddn +g== =jIT8 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/11C02382 2001-01-09 Ying-Chieh Liao <[email protected]> Key fingerprint = 4E98 55CC 2866 7A90 EFD7 9DA5 ACC6 0165 11C0 2382 uid Ying-Chieh Liao <[email protected]> uid Ying-Chieh Liao <[email protected]> uid Ying-Chieh Liao <[email protected]> uid Ying-Chieh Liao <[email protected]> sub 4096g/C1E16E89 2001-01-09
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDpaoxQRBADcF3xUpV2Vs8pV5QnfwFvTzBY1fnczFB149fe1+plAQEARu5xk Dn6dpnPw9CM49eC0ouEYwPByhICcSwlUGBgxKsOqGjlkIlge9vtQdwI9i4xxHv+h OxTyhdHYI8hQjyFJaQNmzim7SdfX8bvx5bcuNV9n/sVIsKoy5rbXo2rWmwCg/+rX A79Ki8IORrhyEGd3+JS/rGMEAKpXT8Z6MNOJa8xL2mrVd9ZlKDMSZXPMxYowddI3 hZQqjtbssHvB6qpmbrQ0geNF7aaBCIAnVR8tAMxacdSBpbz0ittXA9i86gyjMri5 6xSgd6CrdcbibDD5TIOSBeYcFBb+4UkZ85kQYil/gcksp81NZg53H5eI5Wrw6sBM /nYCBACEGldPZ2DdUPPvsfNQme7N4Yd6jS3BvXbXhqCYfHiCNiRS09fcLGEnO4br 6mQ9/K8kLx7R7GXSNOevoMNLLJ5kc1DIFYXQeS1weB86HY596nNqn914C8UWhcoR wZBv4bkgZpAirBGPvrO+Z9YM3B1N0a+xu1rZzYSsBya97wsverQkWWluZy1DaGll aCBMaWFvIDxpamxpYW9ARnJlZUJTRC5vcmc+iEsEEBECAAsFAjpaoxQECwMBAgAK CRCsxgFlEcAjgrpCAKCHxIaNLyp4tT6j2UrFEyINUY1apACgnv8EuncpGD+Zm+Em o8HOKUG5Mv6IRgQQEQIABgUCOyeEvgAKCRBr2cjSd5gysdAvAJ92xR6Wv4jg8DBn VMypazvpAM7fNwCfbsK/olkpB8NQGt5YaixPvu8IWF+JARUDBRA7Mhy1w33D30O5 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<[email protected]>
pub 1024D/ADE1B837 2009-08-19 [expires: 2014-08-18] Key fingerprint = 3822 B4E6 6D1C 6F71 4AA8 7A27 ADDF C400 ADE1 B837 uid Ulf Lilleengen <[email protected]> uid Ulf Lilleengen <[email protected]> uid Ulf Lilleengen <[email protected]> uid Ulf Lilleengen <[email protected]> uid Ulf Lilleengen <[email protected]> sub 2048g/B5409122 2009-08-19 [expires: 2014-08-18]
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<[email protected]>
pub 1024D/A008C03E 2001-07-30 Clive Lin <[email protected]> Key fingerprint = FA3F 20B6 A77A 6CEC 1856 09B0 7455 2805 A008 C03E uid Clive Lin <[email protected]> uid Clive Lin <[email protected]> sub 1024g/03C2DC87 2001-07-30 [expires: 2005-08-25]
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<[email protected]>
pub 2048R/A34C6A8A 2009-07-20 Key fingerprint = 7E3A E981 BB7C 5D73 9534 ED39 0222 04D3 A34C 6A8A uid Yi-Jheng Lin (FreeBSD) <[email protected]> sub 2048R/B4D776FE 2009-07-20
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEpkXvABCADnsekA8rnN29OpRPBgLBo2RzYI3b+FCSkPqDatHJuGSfTqFUgi 2WI8QItI0toqcePNpNtgyHie5jqsX3/yFBRGO1xyCSIEMSbMiOtZZizYLqlLW9pZ seNxwHBetogToNoveYHXNGsrptkqir5mx+vtSO5o6DFcDZYQRgZq9NTnKnuJkYwK wnujkHcTpUVw9pmnwj6ZxZ5V8fboCzd9ET1SmWH6194tpJ0Fq/HX9qGfF/c6Kl+e Hwz7TFi/hpMwsdwjz07SrDi8bumuWNpwZprOzHKORbHfdg3GZaEPcLhF7qjvYunk osYrnyUmz7+FpTJVg3u2Pp3eL0xdXU4TuwTfABEBAAG0KllpLUpoZW5nIExpbiAo RnJlZUJTRCkgPHl6bGluQEZyZWVCU0Qub3JnPokBNgQTAQIAIAUCSmRe8AIbAwYL CQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEAIiBNOjTGqKQTYH/3kkQL00ibVSNCHH 2VNfnV9tyIDBIorMHFctEZ+zTQ/mQRxXUS3gpD9pg4nYNJtrstIWxH9Y8GxDTjQ/ pJsVbZ6WcYXANwihoH1jQetSR4ZZDLrVynSWQ2WeYg0XEedKxV6ZmxZQPAbN742o T8ehZpThFSaPVDtIYFh0eVnPkwsmR/mC5DQDGkwb2p2bsxdbkYCWLLRiS5buGFyZ iHZSe+D+mRJq5kxZriy2pSXcQUlqZk3jvpC9mXr8QzAwyzbPwHRak5NNuQxxCJGh CBDzTSB9OsJrLd7WOxISii2k9ZszP69EymO3wTpSnoCPyUllOsdMa0291xv8kw0c 3ytWz/65AQ0ESmRe8AEIAMYk6s/25zGN9qnfbTjwtxPD2/K5AeyJaQ+kZ5kiOZqn DlpMawMccq+yvh25oX3j0NUug4j35FKFZqnzpLx4KizbJjhZX+V826lVsf9kx6mR UmpYAlOb1qQUZMuR2+41eVnuieAqNyFH4pjp2zR6mhaoI82a1AMeOdhVOLfTl1+Z mj2sL+1J+fkcBxuhMEC30elVKxuQo/8NphZlnZe/819Q3HDsuw2mEiQMWH2y/5B3 aSpm7/LY/L13YI8oUNWZrvjJZYSYyFyhDryzkP60251Dhfwlu2792Jt2Y4dm/zVW Yi/QpUdoPLRqEQjipiBg1sWLH1UGYys4muUxBoUQItcAEQEAAYkBHwQYAQIACQUC SmRe8AIbDAAKCRACIgTTo0xqimB4CAC9MJzYzpUgnlhh275aZs6pXJnK9dty7HpQ zJ6UpoR7oBcmYivlAXaFBB0jxsAAzu3wKXwC9IOZZAB5y9keXWkG/2zdutJJ687a HAjXUUPi3QIF1uPGgvpEQPNfn+Gki8c3B/QOCVhKg9UEtewRzT8tZqCubeZLmc7L NbNX5xOta92KD29XOCXX+6htRJ3aBTn6nNzRdBpuVxKhzd+eLg4gRMKJebDfDXrG fkDmHta2l1EdhlLxyLCvLd0x0mMGS9rMBuEaTvc5hka6YsM7hhGMZe//CjCO8mGl CZyUepEymoFG7nCPpMTgZFxCHzOOljsoaEeOxg6aS2kNv2sTcDkJ =cF/N -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/84C83473 2003-10-09 Key fingerprint = 8D43 1B55 D127 0BFC 842E 1C96 803C 5A34 84C8 3473 uid Mark Linimon <[email protected]> uid Mark Linimon <[email protected]> sub 1024g/24BFF840 2003-10-09
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD+E2XERBADU5F4DbwP8KaHN1H+yz8zaPjOSLJushNA8Qu0hN7GXqd5vgRDc zzzeZIzVVxPVdrQ+I24UwSIYu4ww6nfum6kRv/i5khxbYM4zGGPG7s5pmqIECum1 tKvJ21IE823lcJtUp0C4qhCTZvoc3lADMn9cPgOSJClzHjAYDasOTy9hhwCgsTqP aHntu6Uj3BYpurWHJSePWrED+QExF2asNPehIOZ4l7dwpaeGSTxeINH1FYnlF+J1 N8lvpFQ2H3sfSViVgAtqM27Y/jOf3EkQH0Wym0iCczOxEUFbNH5NWAm6IOVT9owo tkh2PZgyfN0AJZBPh9d/oMN2MEKPb6wcqr3c67ZmQG7B+LGliBSVYhWDbd6E2YHb bvKVBAC0pL8fzNldEQUUYDTTrWhMVCr7IGzwrd6cEhIZ6b5kqQd1IsIChVG3jCVL wWGSgmXY4J7i4Ujsx8k/f6CluNLwmP5t9caycz32QdJAWkzQq2x4AQUy56HDbvui QFOqD+PGWqvoUUyJqLbzoASI5dcV35OY+m37Z1Wxhsn22WBE0rQjTWFyayBMaW5p bW9uIDxsaW5pbW9uQGxvbmVzb21lLmNvbT6IWwQTEQIAGwUCP4TZcQYLCQgHAwID FQIDAxYCAQIeAQIXgAAKCRCAPFo0hMg0c5j/AJwO+VSVExRY8saToDKF3hVe4wNE EwCeKFf5ysZjQIJY3pJ9tUzm8o3tX+i0Ik1hcmsgTGluaW1vbiA8bGluaW1vbkBG cmVlQlNELm9yZz6IXgQTEQIAHgUCP4yK4wIbAwYLCQgHAwIDFQIDAxYCAQIeAQIX gAAKCRCAPFo0hMg0c8c4AJ99m0hHLctAVXjfZYurZBnl2dUL7gCgiG83BXm30rBa POtWm2AstMb6uVm5AQ0EP4TZcxAEAMQPPoRMfBR3cRc/T5NsWunFlZA6nB+3BkVd p0ham4FoseEh7q+hqa8udARMpTc4LIIL4FU6lIa4L0s3Z77d4bXfJmwlUHuUMSk0 tnG003D4VDBc3HWSSX/W/CRyN+OBxPljJywTjI4goyXx9Lc31qwpGqYy5Ao8X6EA TT9g3IgzAAMFA/wMgON1JxPGr8MSvSLHLMY/xn2PR8lSVZmOlbhNE5hL2FzyFME+ Pnc8hR31cohFjSXR7hb6SOWrZjYpdIVsa6qdqXIRDbcb5sKEGv9959W8yt+L/kNr RlN3oExA2pkYpEQfLpH0HdMmbU61NR0cI6p4ZZly4p6JR0kEajaUOlq/cohGBBgR AgAGBQI/hNlzAAoJEIA8WjSEyDRz9lwAn0pJVzrxxaB/PqtJsu034bH5PnlDAJ9G axdzE7A6F/UPmrURep9QFDq70w== =GflG -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/807AC53A 2002-06-03 [expires: 2013-09-07] Key fingerprint = A92F 344F 31A8 B8DE DDFA 7FB4 7C22 C39F 807A C53A uid Tilman Keskinöz <[email protected]> uid Tilman Keskinöz <[email protected]> sub 1024g/FA351986 2002-06-03 [expires: 2013-09-07]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDz715ERBACtUda6yExghzQAimIJ+aH4fKEXDYUXk07t8KURPZD+LOCuQkwG DF71fklUC5tC/aYOXtHkBD0trw1rxtCuJxtdwSioeCi/gslrd0X4iTmsd6cPsJ0v ZFmMcJpwy1TappXGeaZ1q67MS59itR/TTRv++z57mJBVtqPLYGLUH/H6mwCgkibF 7hxfeFLg5UEQP1EKw/JWZ0EEAISeVnxqgJDaf5VsRRfdr81bxTVh5G5DksisElrr +ipHE0a68UicR+ci8Hg9mPxsJB9Qpr5fQ5NTd1UtEJx2C40LaJvebtFB2UJu7SEY jwQ1KzoJtbU0IfnHUGIqog+l2iLFDJdwho319kJzsatHlt1HT6Kt2ZCV6w0G/PbH +gDlA/9ocHK/4MuyM1bbHP2dYv+bbY9PgprgdNQYCowqRsjGFuuV12Oc1CJm5Ksl tLunUsa2DupQUe19Fw5A7nyU1Em5sRESCNs0RE6YgxKb22OuoejPS+u5C9agDKa1 /6yHHm0Yk3FdsQh8uiCvGo04y32riGQZxwX8UHGQdd7KSSCDkLQhVGlsbWFuIEtl c2tpbsO2eiA8YXJ2ZWRAYXJ2ZWQuYXQ+iGgEExECACgFAkyHxYICGwMFCRUvhGUG CwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEHwiw5+AesU6t0gAnR1vfSnqzBeW ZMfloD9duNt2e6NIAJ4w2P2K7U+RiJ58vykWWlCoLT8gkLQjVGlsbWFuIExpbm5l d2VoIDxhcnZlZEBGcmVlQlNELm9yZz6ISQQwEQIACQUCTIfFoAIdAAAKCRB8IsOf gHrFOmOEAJ94FRGDYV+/TVAj6akdxTh9Qz3rFQCghXKiqhEEKEfSj+zJoL3IgO5q 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<[email protected]>
pub 1024D/77B67874 2005-01-28 Key fingerprint = 8D7C F82D D28D 07E5 EF7F CD25 6B5B 78A8 77B6 7874 uid Dryice Dong Liu (Dryice) <[email protected]> uid Dryice Dong Liu (Dryice) <[email protected]> uid Dryice Dong Liu (Dryice) <[email protected]> uid Dryice Dong Liu (Dryice) <[email protected]> uid Dryice Dong Liu (Dryice) <[email protected]> sub 2048g/ECFA49E4 2005-01-28
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEH5vYcRBACrnHaj1X13n0hL3jIXgjAzr63mBoKyJ4YOxJmRZ0Zg/PqmV3m8 a6JoUrzIeDpgGIqzYqoTRM2vj6qCh57vml3CWJJo1armgTkhOaZRQprrpQ/Hwl6Y dTw/ptyZoh5IGrplm/UHiYy+aeQok19cNh7Jd/DePkrSm0IwtafWV4Z6twCgkzpM /oO2360jPUbYhr3blugFy3sD/jaj15xl8GU2d7EFW4xXvK+nZFaxfo7frC/OCae9 k2LmAvgYfG5PrRhiGFERwWx5+a35N5hXhsGktK79QJaHk/8Eir54a7eCDN/nLXu7 6D11DQJHMUvIISgvffeAJODNjnYu8qMOD3x6S7kmp3BsrVnlO+SJ3L63sO85SdAq txC4A/9BobGoDqZGEfgDlDyWNLa1OSWr9Ummg+NvgGo+twKtxDfVgTm2K2G8xvVY IBvnYbOMhyokT0TLHwX8ALO2uWhlupmSaF9U4JbUBBeLB0vPuE8wRXq1/L/+PVQ6 7vNqUIK/rDKtf8XkKOXFpJcv2YyMXkwpx2ZbkJfQ2LQqyR94T7QsRHJ5aWNlIERv bmcgTGl1IChEcnlpY2UpIDxkcnlpY2VAbGl1LmNvbS5jbj6IdgQTEQIANgIbAwYL CQgHAwIDFQIDAxYCAQIeAQIXgBcYaHR0cDovL3d3d2tleXMucGdwLm5ldAUCRZC5 RgAKCRBrW3iod7Z4dNAnAJ9VuaLBzcQ8Uo9Pqgz5WgxeuB5BIgCbBhak9RpYegH2 VrTH1RPKTW/3ZhC0LERyeWljZSBEb25nIExpdSAoRHJ5aWNlKSA8ZHJ5aWNlQGhv dHBvcC5jb20+iHYEExECADYCGwMGCwkIBwMCAxUCAwMWAgECHgECF4AXGGh0dHA6 Ly93d3drZXlzLnBncC5uZXQFAkWQuU4ACgkQa1t4qHe2eHSKeACeNUVs50MWpAtb J3InqDgm4Dq4Q9oAmwfIY6EOBFTjAnezfC8IPtK2heAytC5EcnlpY2UgRG9uZyBM aXUgKERyeWljZSkgPGRyeWljZWxpdUBnbWFpbC5jb20+iHYEExECADYCGwMGCwkI BwMCAxUCAwMWAgECHgECF4AXGGh0dHA6Ly93d3drZXlzLnBncC5uZXQFAkWQuU4A CgkQa1t4qHe2eHTGLwCfUBZ0JjgK8wSPAM5Ym3qHZVaVIvMAn3sQ6SY+k4MMG4rg aArF3cV+64uLtC1EcnlpY2UgRG9uZyBMaXUgKERyeWljZSkgPGRyeWljZUBkcnlp Y2UubmFtZT6IYAQTEQIAIAIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheABQJFkLlO AAoJEGtbeKh3tnh0smEAn0EP6UJC0Nk2QkbSIqU+vka21Y/vAJ9DEriyRKcuxU4M 9/cF5Veh5j/wDLQtRHJ5aWNlIERvbmcgTGl1IChEcnlpY2UpIDxkcnlpY2VARnJl ZUJTRC5vcmc+iGMEExECACMCGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAIZAQUC RZC5TgAKCRBrW3iod7Z4dD3eAJ9Y9J2jCe6ZXtkC163oUSruBS3zFACeKTP7ggGE +jYjWiWA2usVKjARdIm5Ag0EQfm9wBAIALlY2EbWQGEJ+8JPbKxUYra75P/ng1h6 BTK2SSiSCq5y64acd3dRtkhRr5RKsEFN/6KApRlrwgYMl7hIQHL39oFKf9NatTgs aUxX/tmy1SYPKwkxXGIH1XMOwyPVcSMGFOf/y542xdYg3X/Vdm2KrDWGeVGOtY8M dtOA4yXaA987meCbtTmPCpLx40z0QCZHQ/llZ9k1sVNlSsUodRz1FFdhfYKX30+B 76J4PuCvi1al95FS2CulesoNkDKVTZOCydM5wYPbMilr9fDd914q5U2Kv4MRWTRn CyFazvr5qn5QXm/4DrAjn6QhgFhTJOlSbW1RbKPOibQNVwShJkis4uMAAwUIAJUz L2r6tFmgtw4pb3+INO07UzJaQ9EuOy3R+cdFOOJjXVCiXUu1hXmr37TXq/UJMU1f V+BFhw1JfK7r8nqGo0Uh934uHULku29cCm7mdvoqere+SqeD82UClZWwIJUokS84 LJSDjNdGt31SuogziM9kEpxdWnMODOfAGTKA9Vb/KYE4hMut3jreEACHpDXEyjJf mBmYNzav93sJhUn0RaTDtpnAz3zPCNOYmWcX1u0e3i4Dr0Ll1jms6YilGoov9CiF F6ES3z1qZflpYDtqFNJQsKKzjrRIkQoZAnyWnl5mMGYbZIQiNNChpjlDkXdj3waV ZVYhiqyJJx7OwGR54qCISQQYEQIACQUCQfm9wAIbDAAKCRBrW3iod7Z4dAKpAKCH NB6TLQ63B4potbH4PhOgr2MgaACdF7mPUJhqXN6mPboqNZdkVkmnjEU= =No5H -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/ECC7C907 2007-07-10 Key fingerprint = B62E 3109 896B B283 E2FA 60FE A1BA F92E ECC7 C907 uid Tong LIU <[email protected]> sub 4096g/B6D7B15D 2007-07-10
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEaS8qERBACaZz5sEl2I6ZKN0bcqTm2G2jrxPKmX7jBxXhlwonMSfX725Jz6 fiYxo8MN0709R1xk4tKLJZGM1cxNItFVi0+8bdfdqc88u3cabTM9qYd1hoy3uJtO Z8YHGbwzcQfU81r0cs/7xHYROjU1DjM7ixa3aVqokoq+N0nIHNztsDzNkwCgjQrV NoU5rFgzsvxbzNmrLSMxpckD/39CGIg1ic4qeuNHEHoTRIGgCffFGr/VOW1m1zYL h5nX0qpE8e3y3c7YwX9yxueJtVTZV2HSP8/yILkBMb48ggUcYLaaPFthGAnggx7g XB0bLw1TYxeykQoV6MIUf+LXVggJV8js2lZmpC/eUwnbGtDj8ShidE4RlqyMvwtW /K7BA/9ZrFZkf/2KysdzweIV4HJG3tntx/bOJDGN/ndp7s7E54iTpTIQLEaXs4r+ Fb4tEork0p/BrsH2VpDp+O6SjsvpxlOxUN94BkUtwvNj0v2rAXwjEz8RNCXWPoVJ G8juOTAtLmgG5Bj+8JOHlHdO1nMZXfAzxYWwVAjE9K1z71kEFbQeVG9uZyBMSVUg PG5lbW9saXVARnJlZUJTRC5vcmc+iGAEExECACAFAkaS8qECGwMGCwkIBwMCBBUC CAMEFgIDAQIeAQIXgAAKCRChuvku7MfJB2bKAJsHeFHOGni/1CmTS/IcyOYMmChi rQCfSjwIUFej0kqsSo0VqLTAjYO0Xxi5BA0ERpLyoRAQAMrvUD7fP2937y24s55C MmmGiMxUsutflqt4mIpGf5Ssj0//h2bjFxknChyx7uc9BhnxXPMc1zN+V1onm64N eDMZon6LL3ThZvIVFbrjkRv+O1Iqh82k66HNTSl21/FQ8mL3/0E77yfrd8uZSrTa cQOdFNYMN5qUbG5U3R6S76CaYX6oN8ctJFXN8PLO2CCn5KBAJ3CWvdcmoadWq6rf w7qA0Q6FNXYQq+PxvxNKei9w6xcnDc0DA0/TzaOm3lUQnIQWivgtMa7zkM98LfRu wAV7Nn2Op6IeQv2e1i5zT9tL7Au7hUiDXzO2upae3D70tPcUER7k6J7NfWaBfsZA CZ9X+jNxECL1RzZnsNRtLMHfIE6YJCc6Onw+PuBE8147hF4bNv79+5JX5XkB7UBd 8KMHkpCUA4ANo9WTt29JdhUi2hChdATXiIKodWLuUjXjOczDe1HA69BPA6w/RL1C OChSEm0M6rYLx8a2X2rpIE+fONE1l9gtWPB1OBOs3/yKO+ozknnbUpMIZpCdq5mP BTuLaNAEWTpQUVEJ/32lLdSf0qYtqpn+WycSGXYA0cqRWXYCldTRaA5n4kYC+9ho yIueGCwW0D68QGXo+s4VuSaRwTu3kwkQ1H+srwK+pd1wMSabzaN3YgOT6g/L5lrI el3jspkgLpEHXYCk8WIZtaCjAAMGEADAsLKwES5Ig7Z3+LFMTFxK3rGMIoUizQpW kHUAcwO58jud6t0pxyz5RtYyoAXeCxEGYt5xhYgdcnbWDjraEN94ptOdLeFRa1IG y+LIr3+oWF4s4aJqe2WiFd8Fbhlw29YH+CF7E27m6byeYiH6mSB/KuBH9cFicG9B mSf6li6ZkL8NGNZ9l1ouOH1TA9hePO7RsHjP38unUFbSg6l9gfiaZF+sNXddZoQc qcstmQ2VJQkatqAAPTLwMEIYJvjY+DeKZAHbHfv97eMIe9F2aQ1OdAmL4lyownVk fILsTGZ4OOI6KvJD8QcQxn9g5bUwoxIoR1y7AoIYUe84sX5xqo7byzOqlcGQIa5B ss21LvP+0gJxrxb8Y1+jDqn8Y3wEe7V5pEchMU9BsTpPD6MNqdkZSiUCA+Yz1P90 WgO3UbzlDTp19XeOmfCN5srlI2irtijkmKnzLmJFPU3oVnS70vxTZ6JghBERuxa0 8si44lj1uPztWIc86BmYfEPZ8yuaVve8bI0Cmr/IDUfHlX8/wQ59TV+utMvPrx+e ukPoY3Ybxg1r/M2JSEqUmh8czViNrJDqWtEdOYf/oriSJ1mtenq+mEyxwlrgJR5x ZAFB/X2eZm/vEnlXttxgRlhT4HBAw6j8ju70BXbUm2boDlQDyQnPG2jA4RbTnvUw 2aN3vWATPohJBBgRAgAJBQJGkvKhAhsMAAoJEKG6+S7sx8kHi2gAn2xTy641n6vL QzMTDTvTKnwMTWoMAKCDsxLiKzQoXpl9Z24xb9BxFdIgLA== =nL7g -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/4D65492D 2009-05-26 Key fingerprint = E513 4AE9 5D6D 8BF9 1CD3 4389 4860 D79B 4D65 492D uid Zachary Loafman <[email protected]> sub 2048g/1AD659F0 2009-05-26
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEocVOYRBACUSj+Rt8ZAKD0QoT4yHgh+f74lmw0pegpzvQ1DNBhGdVWfIM77 n6hK4QSYPhSNT/Zz6qqsZlcnuSyXwKDcu82rOUJmo44UalWbWF/wvz4ICuMMttCy WRko6Z+lfzILBr+simnAUX2v9mIxfnkg8mEN5/rMc4rOda49Vbcdc0aFEwCg4/or HctUnKwa6r+ArXlZ8bxLX4sD/2A3JzXegkrD6LOwGA/STqNhuolad6ZZpvJGpr1n gsYX5ihLaYuxBBWK1ech3Rm8GojvsOpmcc5YTtjb37n/YU9WYoKcmpJukdEYNeSZ BQPi7jVXUb3joJobOT1LFYjrOX8/MoOgIxPI7RBM27G5Uarxe0RpF8r94bUxEqMb SkgHA/9KqKfxHB7suexO993OtM4fTcnJjCfarcL8qpBOQlYLAP2Q3IGZpjE39Bmy tnDNwrZ/8jZrJxBttZ5Fjt01pvMAEpFVHm+QNheqBOqpyN4jmyOsvmSjd4YL5ZZQ hUhuPS/dtInONvWvBmOHBsoKdrgoUPO2EuMW1pCm/0i7xHGCtLQhWmFjaGFyeSBM b2FmbWFuIDx6bWxARnJlZUJTRC5vcmc+iGAEExECACAFAkocVOYCGwMGCwkIBwMC BBUCCAMEFgIDAQIeAQIXgAAKCRBIYNebTWVJLe4bAJ0Q8l/7TIpaYFGoaHUkv/YF VdcR/QCfVOdEcCe3gPZ2k5KLC1D8V4ESKue5Ag0EShxU5hAIAI7OSBr9s4l3skaB +lVNxA/eEkigb0ghP+OoLVRvd7k3LZpjM27jqMhdmu/8U9bTRTX6kA7Ur7uRF1La aSrc6unoufkWcm+w7M9sQv1vwdxOg/D9CZttjMxNJs18VRQokair4OAR9mMXybMT hBw3H8B+H0AZh7eLTMXUX8q6fc/Dy7u+sOq6fnCY3vIVUUDaw5XaRKI/mWDmQcMa 4hB79gvNxHjCs2oF5ntyaCF4nsggmZ2guOjN9oBoo6gm09QFlVA5Nwz/g5s84m0t Gtz8sGSPK339kwaT2Tym6yR8UszENlyjG1wVVaQhBPHvE706jOlPXc2JasNKoSqX Flyj7icAAwUH/0z2SEPs78Ws3eZq58axkafUowgB31tEM9Ke0jLNy1nGkcC+poyh Shl4DNyUbLb86J4FrkFa7bmJi8VHteZYjTxrY9usKLKGkbZV8qNd8ry1emG0Lx2g JM5jcRp6ghT2qufHF9PukKwkmNRJJgvAbgSgLi9dWkMymmpo0LsKfKmnoVCy34tV 704K7JOOBHob6Gi9vMXLYkBUPJCn8BALbZi0WRR/D5bB+OHucjJpEp6lHXYihkX7 xgSyrzkI2fvDLmJg6/jmtsrQwJFScf2E24IWO5JGLRsuqoE1UUcnmqQKLZ+iH7vI fSYNaY/TcB55V2TmpzpYmkGBgI8G1dygrAqISQQYEQIACQUCShxU5gIbDAAKCRBI YNebTWVJLTvyAKC5FWGAM6MJaj/cNvWfkdMFaZqAGgCfaktgPFqyozZiZQuoJM5D +FztFoI= =isE1 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/1B6BFBFD 2006-12-22 Key fingerprint = 33A7 7FAE 51AF 00BC F0D3 ECCE FAFD 34C1 1B6B FBFD uid Juergen Lock <[email protected]> sub 2048g/251229D1 2006-12-22
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEWMWfERBAC6P55NRPt7PWHQk3e3cp6yAYpxsNH4TyMZUNKFjE9E+g4GDe1F fd1ebE/as+qcZ7rnIoEqXMYyXW/8X8kdE7FJVoJBmH3RdlaJhHSxogrAHZJ87PWH yGC4mP7F2zvLjUqB2fUC6gYUJybmYi7F6run1zPKLr5A5Polx/SpqL52IwCg/5Kq vo2Lc3ceBT0L5BKOWFLHBWMEAI/OIOXhv4Hsu0k0Ol+Zdwp3vkw+geBo0MVHp0/P XItW5TM5Xi0iqQAcBU2KmPKUinaIJEEPAat5sPMZ/0BUsdmhlD6BqIp0qC8LXm9g Tqmenm3WpiJPsd486lW6dxzFqOZKdb6qq87SJ7ajnPB12SykRW26VkyHzNCqiETL LigDA/sFPsm499ccL62BwkRGax93iYylhsrV7zXT8FXAPIS/S7JasvaiyHTvRv8K u9XSO453WZtzN7TkNp6i3Vw1SSxbrwCRZZ7nspEdMXWF9ZdTtSq8mpA3R74X7dKM SXPbbsTFfQ5JR9v8x5T201nFiM/jPteU6WbfyQc1MuMCUqwzm7QeSnVlcmdlbiBM b2NrIDxub3hARnJlZUJTRC5vcmc+iGAEExECACAFAkWMWfECGwMGCwkIBwMCBBUC CAMEFgIDAQIeAQIXgAAKCRD6/TTBG2v7/bkFAJ9/NodQJ3G3mLhNkT/rv4ncgpOV KQCdGm6jx53ESn4s8YJAPKWgym0AKTq5Ag0ERYxZ/RAIAMR6vbusFDGVMpB6AWhC cru/N6Qz/kfB6+Ufy2nXcYMMaD2c4MiSUSV6pF08s+xx8oqh6DiGdPvdJQ19ZAdw BJaD3tc2EeIv7Eh0upHhC7CuRk3eHHd+KaKFquLGU4HNMEvxXkW+DZ0wWrbVIu0N vRBYXJlil7B3RE9+9yQLdoK1IA/N7DtUvbezVC3Px/ZuNe+cnI5neXZVnm9ks9E4 qlghKSdb2LLghwfBy0JRqssZnvvqS+kRz0LJgKIX57pSrHfx0L5Rwu1JWqvmWKYV hkCogZFXpn31ArmmJ54O5KEP4hYNR2FcF8hwNjMqfij29QRi7xpxDLQYgUjM/kTl g1MAAwUH/2TJn6E3LtPX7ceMUKVyJRO/OsS7/r8nX8hPRmX/cnnoHTtYOQ1S2F9J 0IFTZKubxfyhp9ldRx55GiDWyRvGhhjCOuUH7VCSPMCURbMOHi67EDfqbHPzhKcZ 1lmeqpETmPx4SbVQ9vQ1802gsyZzNy3BQcoK9GIw1Bg6KLYVQ/9rcSDHAB+ULVF+ YkthjJcPDQPdcn8Zy+xGDuciav9HPaeRXK8nXvx8ERDti99GiuHI/S5+t3wDeTPT dZuMiiJYsVc3QuuEN4eMseohFUX6R/Mnm2L0qFc43k3h0vmOoTu65dMEnYZdsKiI wXTiy7GaMXH69Iuq9QK5wAQGHwTDbJGISQQYEQIACQUCRYxZ/QIbDAAKCRD6/TTB G2v7/Z/1AJ9MfhLFFNtQHDgvIwjgQa2xJX+N5QCfQKUy9vBwNhrVvrH86hoDMhjV d1Y= =E5fg -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/3F774079 2012-11-11 [expires: 2016-11-11] Key fingerprint = 7EE4 C4AF DCA3 E0B4 479B A344 7135 8ED6 3F77 4079 uid Remko Lodder <[email protected]> sub 4096R/59F38CB0 2012-11-11 [expires: 2016-11-11]
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<[email protected]>
pub 1024D/1C47D5C0 2009-05-28 Key fingerprint = 8B5F 880A 382B 075E E707 9DB2 E135 4176 1C47 D5C0 uid Alexander Logvinov <[email protected]> uid Alexander Logvinov (FreeBSD Ports Committer) <[email protected]> uid Alexander Logvinov <[email protected]> uid Alexander Logvinov <[email protected]> uid Alexander Logvinov <[email protected]> sub 2048g/60BDD4BB 2009-05-28
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEoeNvgRBADOJSDLfbgPuLl4Y1QO/1BjX2MFveYtMacSLpaJURRewkBmoKBz iXa9a5A+uKiQTtX8S8bnkvwmpzEua8RMWUN/XXb8aZc7DPcZbP9NFNaNZ8BLgnLC FK1gIEpJpcodAQ0K5HAGiLwjsK3RdM78pvDUJDDmWPaflk8llx4H7kjjTwCgwIRy /8f8FHQV3zUIGqmJDt5019cEALE+LTHjCOZkk0YKqVETY7IAKX48t/o3t+ybkqcC zFYIRA0v7FR/ipxkNgSzi+tKMaExDuFuV9aZEhepS54eXriXyGmzvevINlHlFgh+ 60WrUGIlkVtQYCW4EeP7kB66u6uV6PnKqFUXPLoF7MDg5nrJqaX7r4+9d0JopClN 1L52BADKV1retnbON3PP460z4j9IJspst9n1AZ3y9S5ojZ0IvhL9UsjazvRheTCm fArizJMTtDUo9SxWXCtpfxruYJSB5jlhkZFMC1oj484mxm/MgNxJ8mov2RAT1Pu4 85PjDNtAKq7yrTf8x7PbNVpoJkU98lZQ84Bt4RbaqechA3l/l7QrQWxleGFuZGVy IExvZ3Zpbm92IDxhbGV4YW5kZXJAbG9ndmlub3YuY29tPohjBBMRAgAjAhsDBgsJ CAcDAgQVAggDBBYCAwECHgECF4AFAkoeN8wCGQEACgkQ4TVBdhxH1cBPpgCfYR9i yz3P8GnzGKzKacDhYSSRdlAAnikohHSQEqzFyKimalh+Vk+yv1mutD5BbGV4YW5k ZXIgTG9ndmlub3YgKEZyZWVCU0QgUG9ydHMgQ29tbWl0dGVyKSA8YXZsQEZyZWVC U0Qub3JnPohgBBMRAgAgBQJKHjeCAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AA CgkQ4TVBdhxH1cCloQCdGWWbAGInaDd3AqGI07kIeHUfZjMAoKmujjBeu/1n8bsO OwUIcOutIiBRtCdBbGV4YW5kZXIgTG9ndmlub3YgPHBvcnRzQGxvZ3Zpbm92LmNv bT6IYAQTEQIAIAUCSh43kwIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEOE1 QXYcR9XA8FUAn2F8Y9LTsvK/GJAMU2gboZY1DCxnAJ9XnCdD3w7uQscd+sqIJKuV KlYsDbQnQWxleGFuZGVyIExvZ3Zpbm92IDxsb2d2aW5vdkBnbWFpbC5jb20+iGAE ExECACAFAkoeN6UCGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRDhNUF2HEfV wG/MAJoDJLimxPsysGqpRWMYb36855NBLACgn8ICeVtfyqCoxAv0YIYk3K0M9we0 J0FsZXhhbmRlciBMb2d2aW5vdiA8bG9ndmlub3ZAeWFuZGV4LnJ1PohgBBMRAgAg BQJKHje5AhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQ4TVBdhxH1cBWygCf fvEVUFOSzEPylUJMZt2NKaiwomQAoKY66bHiWUIReF5NliBlsM3bv5qyuQINBEoe NvgQCACVC9Ks/nhrOVuHu9rj52KRW5J7S+20ZOZFOb90iVFCwFSn3/TstqGnao9X NQBiopv+i5s5AdmVjUyHnTSMggqVGfxltgG6ttxmY+iU7N/+aIXkbPzHZ/qZgKv5 ey5MhS+kFV8Jh2IGV6beaQM0KNJ9LV9Hq1+V4ae0ulaGYFrNnbwI/rdXZ7vEETCF EVM3NP6xsgiw1NQ/V6b7iriTroeRytu7XoRlchik/7sQBLBwUvIVAD7BdHqjQ1NF SILyTr3aPagu1CxARmkCCDX2sfcqT2/9wVECubbgcUMRjVHm7k5BsZK7fGmHcBZg /5Rl7ngtUYwsR4h47A0aH4IPZ7AzAAMFB/47qL+Rb4wqF+sCWM/QqCrgFqMwz1JI qc26U0+a6bZ6kJBbMzvBcdrVFRfn52qacCdfFpdI6Yz3fWQyzrAZwqjCTPaGBeEd rSVbonW5dDjJTkSiKMlo53D19PcNklSjFnCrPeF4aFQ4VbT3RioWh9P00xhCHPQB hsg+cU9rm5ZASMht3K+k+bgpHT9gPVzckZTC73l3xaNetTDnHlRDw8ATvBYcUfYr kDp3tgkZ7a1pPRMz1oOKNWtxW5Z07HLj0Lt2xyZDe0BSImiAa7MYC4PKLi5VlDKB GPjLDrM9K1XUM3Gp8O3bd5qjnsueu6XOdGZA93g4wjXmzDqhFIXy5T69iEkEGBEC AAkFAkoeNvgCGwwACgkQ4TVBdhxH1cA3KwCfV8uCW9P5gm0+Dfm1miO/j6rvexcA niBfAchAUVjJn+UKjAd5RD1SFTAm =bSSP -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/EB83C2BD 2009-09-26 Key fingerprint = D55A 42E7 0974 EFD9 3939 56B9 6E6B E425 EB83 C2BD uid Isabell Long <[email protected]> uid Isabell Long <[email protected]> uid Isabell Long <[email protected]> uid Isabell Long (BitFolk Ltd.) <[email protected]> uid Isabell Long (College) <[email protected]> uid Isabell Long (The Open University) <[email protected]> uid Isabell Long (Mailing lists address.) <[email protected]> uid Isabell Long (YRS) <[email protected]> uid Isabell Long (FreeBSD) <[email protected]>
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<[email protected]>
pub 1024D/017C5EBF 2003-01-18 Scott A. Long (This is my official FreeBSD key) <[email protected]> Key fingerprint = 34EA BD06 44F7 F8C3 22BC B52C 1D3A F6D1 017C 5EBF sub 1024g/F61C8F91 2003-01-18
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.2.1 (FreeBSD) mQGiBD4p5ccRBAC+tbiJm4bc9dO8oaRhVGqWmNhYfi2GnX4AM2h+L7bcIU/7jWVn uWGe/PFHDcuOpEov/XRw1gmgoNh2DopTxf363DVMevmGW3R1842YMmLvCYZ7C0Rd 0GdbHW1xXeRSygs6peLcPGQ/7ISK0BHMudFim5FrpD0tq3qrqRmuGgls2wCgyF37 u+ZoP3xiP0wANhoWJtyBWQEEAIeYSHvIPKFIo9FG/+wckx9Fc+hLXPKwoETBPof7 Wft9zXiYyowuGj6/ydb6v229nI3lJwVPR8X6Ptjf6rO1vjf7uUED9dNBLr10vdW6 jYClBT8lqJAq3DzEpDk2kOlhYwtrykyld9Ys/7vgliuBB0XRUxGVNieqDck7PZWL ewz5A/947m/ZrlZbn6+jsshGk30/pEXZUhcDnUBwW26GuFk0TGlXBha3N0NFwqz3 a7qnJcvSTKfeZJY5NCwqzCo/rLpmaNd9JCUrgwSd1MI9Txrbj3lDRy5dj4FZBQ2N BVgni7SRKaiPw1KeEprSOR8yiM9ZjbV1g5zPeZ2bZhSMCP7mdbREU2NvdHQgQS4g TG9uZyAoVGhpcyBpcyBteSBvZmZpY2lhbCBGcmVlQlNEIGtleSkgPHNjb3R0bEBm cmVlYnNkLm9yZz6IWQQTEQIAGQUCPinlxwQLBwMCAxUCAwMWAgECHgECF4AACgkQ HTr20QF8Xr9fvgCfUMy+qlN9qQtwMFAKWViSllk0xYgAnApLMv95d6Ecrj7+U9Et liAwNQXWiEYEEhECAAYFAj4p8nkACgkQtNcQog5FH332EQCghR98TNpvYGdrsg6Q S3BngO5n3VgAn1zo89iPy8VMP/kXq2jlzs/74+i2iEYEExECAAYFAj4p9igACgkQ 2MoxcVugUsOwsQCfY34hwJIc8MapwIy8fWmCeLs4T0IAn0aVpewWF99H6SapelNP hvDzTYLIiQCVAwUQPioA7mVgqaw0+fnVAQEUHgP9EJXxzQlkaN8VsfRJo/UFmC4z wGkwu2yatUjMSZR58VpS9rF6CH1rzmNFtZZmIh6ItQ/mPaUDW2yObWBRL2r9vkVx e+DPcpcZAebM3ibjsOg05cftcphv41rLak0C2Nec3MXnxT15O7fcO6aO+d4oJ2Yi oL7YJX6RHrqNCTQn6/65AQ0EPinlyxAEAIGtuZXdf7K51Gb9jijgdV1NMPKwujoq K9f1PZocpDve0vwXN6AvzJ1L/LTrZPvBZ0UCAJR/zVtz4H2bnSqalbd8j8bmxfYx 0SA3QNAKJhgBGNlnK4HvAGJCs8oXYp+6Ph9WWlTcPzkfscPFc42VcUEdfL/5kyLr OvGAUW6D7iCnAAMFA/9CWXarz2QMrkduiasc8bhSmv2lVOfUVcIdz9imc72Z5GUk FBiQJ2kuqJrxMUqAgoccnJ9R0QVZwCaQyRNakEQEcENBKq9Haa5LLo7nD3CAiqIi URqloJORSzXoQCrw8OelbBp9RaEqVdCecbNqAbA8Ru4NIwcyZCgvnX/bUTKq54hG BBgRAgAGBQI+KeXLAAoJEB069tEBfF6/XBkAoJtQ4ECj3ntS2xlODgB8N+cKIsdb AJ9Lwk2EEIZhvzhwvhpwIKAhWhHcmQ== =C3Jv -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/7FB9C5F1 2009-04-05 Key fingerprint = B9EA 767A F6F3 3786 E0C7 434A 05C6 70D6 7FB9 C5F1 uid Rick Macklem <[email protected]> sub 1024g/D0B20E8A 2009-04-05
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEnY+RIRBAClGSwgcIr4i7G4CYEa2cBHRC2UOB75/AXFqxmzAOcype8WInbX f4xLBa63VMoM7eis27BouVRcHI64oREIL9yvvMPwRD2ZINY5UD/zkls7fw9F2NyJ AgntQEPRDkk14AEiIX5uvB3l+JyKmbMNpJuhrKpbxc5qvaDTgD02y9TurwCgguAy pMVQu2mtVccXkSb7WEh95SkD/0jTFzDTcuowbxALrPgQtlGEXo7RYLPIFxTI748F h8Tgra3flWp2QPAnWBJEzrz+9rl8wqQ2ddb9IydwtY49BjKIrXhj2Lh+8l/1oDKr RXzRbNH/lGHhmphW42DgM9mOCCoSWugUEu458I89FjuoncdBiDdi7HUxPy/rZ5MA tnRRBACWL22M5MPfD9dl9SHvnoBz47nwlBeg0Oxl22oNfiyTQdJ1q+g/wGpDPAll eqs3Svky7gj+f5375K/DEYaeFSRynXeetpdqpkBDlp4mRdDGcpd/4ImAx6deQTXo EraidVlZ0Fjr5cP+mFzoI41LAhTJa/VUoUkMxq+gJAsXsSF39LQjUmljayBNYWNr bGVtIDxybWFja2xlbUBmcmVlYnNkLm9yZz6IWQQTEQIAGQUCSdj5EgQLBwMCAxUC AwMWAgECHgECF4AACgkQBcZw1n+5xfFFBQCfbFJpzSEXUgmoEl4RBgoPNzu9SOgA mwW8fBCx0RDGfho/8S/PjZLQ38JCuQENBEnY+RYQBADMlW1YS4ZhBh4PCOXTJsjT Vda2DEn1W+2BzZw9j/DFAFjm0U05rlEsfz584Y/SLlPNbCZ979//3K7XxicRw7zm E1Mzahy2jrmGGJv2GfAZ+YyJPGA/xndNA3/ocT1x03LMWNbZwFBe4Kk5ShoqPgl3 cO28w3TJUnrUZyo+h3WhpwAEDQQAkwVB18LmtI0CW4H0/jMgiz5B0z3yZdlinbif +EEFHhhdp1tXtxA/jyp3FsW7hOlGXQi/tACcxJ2UBcYAZh03+x7bUMnJpisPDnJ3 UilCuwk5cAkQmGeAQ7ukNNBwVhJ0ZfW7p2lZ2RwW7zSjPK7RMW1EL4Scwpey/ojb Tv9fVXmIRgQYEQIABgUCSdj5FgAKCRAFxnDWf7nF8WUfAJ0TTs+DTEkwHeE4mHAA CqfpXJXMhACggkoKIIAH+lHNqv3Uy9q5RFd8t3I= =F39a -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/5BA052C3 1997-12-08 Key fingerprint = F829 B805 207D 14C7 7197 7832 D8CA 3171 5BA0 52C3 uid Bruce A. Mah <[email protected]> uid Bruce A. Mah <[email protected]> uid Bruce A. Mah <[email protected]> uid Bruce A. Mah <[email protected]> uid Bruce A. Mah <[email protected]> uid Bruce A. Mah <[email protected]> uid Bruce A. Mah <[email protected]> uid Bruce A. Mah <[email protected]> sub 2048g/B4E60EA1 1997-12-08
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<[email protected]>
pub 2048R/F60D756F 2011-11-10 Key fingerprint = 9D18 8A88 304C B78B 8003 0379 4574 0BAF F60D 756F uid Ruslan Mahmatkhanov <[email protected]> sub 2048R/B658C269 2011-11-10
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE67bzoBCAC/blN8XOxBx7pBlsAAwFJgxYOSYCw4fTFMoyoUBWEHuq0LcNIn BO4CqVyCiWcwMl/cLIh/1OHLjpU9orNrMSnJGdCvB2FAFYNm204ZMi3guRMe5xXZ zvxSa0v6zQtTRCEs5ny44XryxbZkPE5GGgyd4+sZVAcW65SX8hbmoIvL3v33Fq1w eom0nYBxU1EDIwZMl09FWaL02vBvlbSh3CYvmDTS6WD2t1ItDxhUG06+zoJs2YCb 6f+iUk3ZLYon06aX3VB3lmT6ffSdAEX6uT4V5NJ0B60xhQP7WAEmSm9ScbnFIme2 jpZcun5TKywwm7OSyOk36Z3EQyyxOSHRNJ3nABEBAAG0JFJ1c2xhbiBNYWhtYXRr aGFub3YgPHJtQEZyZWVCU0Qub3JnPokBOAQTAQIAIgUCTrtvOgIbAwYLCQgHAwIG FQgCCQoLBBYCAwECHgECF4AACgkQRXQLr/YNdW96jgf+Kyc7hvCTNlkisTOAYZ9+ 9n85WGcPLO+vyZJ6xlP41V02opzCjCVrddz3t4sq7eCFw7DTSIFovC6Cw7rAWgx5 pa2idb6fhk/DMUwpd9I9CG9dm41WBWVkxRV3KMYyF2TYwH7VgL8KdvX1C7ZkD39V NKWHcSPwWxCEnrvfcGZz+wOHeZytSeC4Gpd4sEnAVj0HjulLXmF4YHN/cNy9Zl52 +Pt1iSzjV5WJ9ywbruhOxQ7B8q9DQDveWdtSMbaZNzW8JHlj+gy8Ww/UvdsesjQu NE6Tc+QPIigBsx+MTbAwByDY6xj9OOCGNPeAxQFjNpz+iRS3Yuz04VxMy+z3cD5t YrkBDQROu286AQgA5FORCn/VS3x+aUO0zAHm/WmTJZFRxrmdkDexFZgxuHjidGUU fbGzvyu/1fRtft/3Np/M4aRpSI96qbYXLyCeJgQjNp36YRKqJkBiPBDQ9QLZpP6L nJn/NzF6/5pKLt+Sg3SdOV1x/4t+tkmcMa2+Y+yEjd9YWE67Cc5RevfO1As4B00v jFTl5LWxOc2kzVoB4OxxOLCdj/2zkIyxEPe4z/KswGDQsmsAfivHVcT1Kpas6Jr+ sxCwZhSNy/BSuYtwHqGV8xw8vZlJkrOIn25StwW7hVf1oNYQnwTSBRwGnU8WVsqH /2VfIatSzoJ9L5EzoVjkgNxQ+9T5xrqf8G2ddQARAQABiQEfBBgBAgAJBQJOu286 AhsMAAoJEEV0C6/2DXVvDjcH/1/sV6J33aR2Wk4fT8ChWWuUl3Dx7CnDUuCvKo/v oppP/bW473lbV+AlbG8WUpsCUqKy5WkU4uHjSfp3F1UAPDBTU0lgcj30jr13sGLH n4+WReFFZfDIwIBWNHqbLmPHEG2jItF7ssxL/nsYqTo1UWsI+3fToJX98Irz0PXL mX0e8pWdDe+pR34OcYDRB6Fe17cKE/5wpVSvd3+YZ7AYuq5wxfwvZVdOhcXSnWS0 ksMRQMkG5A6BEY0ZpAZWNwRO1TcVqEJC4L6ujls1/sZEOIKSDj9UU1OC4tQYAsx2 /yW99HFkq/4I+yL4zFzmqPug4j3GXKkNGqFNmExVys5uXv4= =Ykam -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/7CD41F55 2004-02-06 Michael Telahun Makonnen <[email protected]> Key fingerprint = AC7B 5672 2D11 F4D0 EBF8 5279 5359 2B82 7CD4 1F55 uid Michael Telahun Makonnen <[email protected]> uid Mike Makonnen <[email protected]> uid Michael Telahun Makonnen <[email protected]> sub 2048g/E7DC936B 2004-02-06
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEAj2wYRBACHexVRaQ9QldEPYx/ukn2dcSi1H0ZFByRZvdB4ukm+z4FxfhWt mw9gaq88mWLySchgnv7tkJDVGeZa4PLxDTdOpnEC1dDcjOCJiHAlo6gmBKGSP4hn h5XfpEvyS8EQqbMD47CBAYstj9upnLYwpGYfU8x72tUUaJv9+mww9MC1gwCg5xYP /iBwPb87nkOdB93/pQnxLW8D/iGeIKt0Zw602CTQvNnFjB/0RcO3JpwU7wn0ptCr 5/1OAKWEyYGfHGt6DZtNPzRLJBXmLmlYpCXDn7ZB48sz4Xgrf+05j0/lPHsAdrPK OKCz/CJR/aGIPPTLQNTbMWg3pL47F+cfFhDwgQ8yzzYdQZlyDSv3ANPm+YZQKXKr LhwLA/4mX5+hW2ntcnPXUOfnya6/KIufDBqjl620heB6cbrFLv9IcqVvDiVfICYH jluYx+wqtKMVLa35fs5nF1Qv+wLelLjay+YdlYpeCCG5MzA3w5WJOK28vk5uAaDi 1rSep5ePi5ENmhiWRprvx4qPZef7MDWQ6rTR88781J/ENdV2JLQrTWljaGFlbCBU ZWxhaHVuIE1ha29ubmVuIDxtdG1AdG1zYS1pbmMuY29tPoheBBMRAgAeBQJAI/Zg AhsDBgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEFNZK4J81B9V7aQAn1mBnIqieZIE T0IJd3Lk168oZKodAKDVaBuIZerbQDHPIPaJUSrUAe1NUrQqTWljaGFlbCBUZWxh aHVuIE1ha29ubmVuIDxtdG1ARnJlZUJTRC5Pcmc+iGEEExECACECGwMGCwkIBwMC AxUCAwMWAgECHgECF4AFAkAj9w0CGQEACgkQU1krgnzUH1VdiQCfcLWbaIY470p+ h04RXpg+xQm4I5cAni9caDZovhablGxWXnMYcYADz7W/tB5NaWtlIE1ha29ubmVu IDxtdG1AaWRlbnRkLm5ldD6IXgQTEQIAHgUCQCP1xwIbAwYLCQgHAwIDFQIDAxYC AQIeAQIXgAAKCRBTWSuCfNQfVXYXAJ96JaLB3DA9YSZU6Aan4Sej2jb8NwCfTw0e Q3zx1z4ckf84ZHO6+U5tGeO0KU1pY2hhZWwgVGVsYWh1biBNYWtvbm5lbiA8bXRt QGFjcy1ldC5jb20+iF4EExECAB4FAkAj9jMCGwMGCwkIBwMCAxUCAwMWAgECHgEC F4AACgkQU1krgnzUH1VKpACdGThHL9XMCCm+XANPFsq8JJL7uPIAmQFoL7uMxJFX ZkmGhFi9jN2DadQsuQINBEAj2xEQCACtWPMKOwphtmOC82oyZf3PQRcyhd0BtDl3 P8EJg3fonvnZIKkiIdo5QMnFlCUd33lqkiLaduwk64SYBHHHkMGCtaViRC+1ukcA ehJuv7QaybNCpPUdXXA8MUm1MqSflIKI164OpoFNFHIC2aWG65QNaMOkbHLcAu17 5czXYMN9d5iXeZSur9DSrCLz0vRxjaWZ2ksr0jvijFasXsfydiCB0MXE3reZ8Yln koRIMCsLcPOGZVi/7Gn3FRWpCd0H9Z3UUVRAHLDfNySwI3+NqZWdUwk2gu/jZ7at 3b/PmGR12zHj2sL0OPg+f7rDSfOZfeR7YnM38McGhhd/XXg2+4yvAAMFCACSzNxE ibtE9JfVIBhA3UD4qE8jFug5Uy13/NM672gDr7lnPY3d3pZeVKWnWEqQQhrKF8Tl G6vOT/noCeTLO1Mcz+JeUY2WlTj5AGktehT2bLgV6PAGIUUP0zifqR47kx32b8qA ZSwTUqus1QFD9YIbSfqbZu17FLk4AN8BSeUfM6Ktq5nR26+5v8WqMsGfXPvZSGRG GqwTN94sW2B2GV2ep4OghClycSdl9CBfhawpaR1NjNXadtEWv0Ww8ctGfojR8Qoo SVWPeXcmMGIF84gnmzeCOdAZU2psqBJ5XCus9HArm09enyVReMxrWAgcKxroRK6V KzjDkeYkYI7PySStiEkEGBECAAkFAkAj2xECGwwACgkQU1krgnzUH1WPyACggAOh k3grQGtqSllXt/GlhTaCdogAn24UzgrsnW6yzrpNeoWcmyDFJ4nR =TuyI -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 512/40378991 1994/04/21 David Malone <[email protected]> Key fingerprint = 86 A7 F4 86 39 2C 47 2C C1 C2 35 78 8E 2F B8 F5
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: 2.6.3ia mQBNAi22tqgAAAECAPARUB5VpJvYQyHAzL0WITkJmKG1lpwFMPz4jenjJRplPr33 OvKxQcXh1bAWNVFiJVDJsWwnfif94wQdVUA3iZEABRG0JERhdmlkIE1hbG9uZSA8 ZHdtYWxvbmVAbWF0aHMudGNkLmllPokAlQIFEDCwQ4yqxsuiiP+uKQEBricEAKAE f18kbKpFKU/DPRVhVYlLHCkzXLzZCiTxBUGjMaXZswKwrjVLF2l8mrNQhqC9L953 AGyUYNfPLtqw7b088v3ATCIrZ+izWyE27IrjZWSS57GZiDtnkm6moarG79yANBql LBc0sK077cHEC+/gDwXNBLg0NNpHkaVXPxixt/ETiQBVAgUQMK+p+pFKk8pIl/up AQF0QQH+ME6vPoS2+FgSN1q9R1hwmwEPAaYdyfhv2lj1/6KYDEaO9Lhw2u57nW7z CDpir9gNN0X9U3XrIxlJ7wWxa1k2PokAVQIFEC7vu/zjBB1VQDeJkQEBWFsCANX+ qJO8J6qeJW8gcrmxMBA0l2MjEHcu8XNky6YT3yS6So72yL1lZbG78Sew03fXnWNS GyhRrPz7sURNLtJDNDo= =wpn4 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F9D2F77D 2008-06-15 [expires: 2010-06-15] Key fingerprint = 55B5 0596 FF1E 8D84 5F56 9510 D35A 80DD F9D2 F77D uid Dmitry Marakasov <[email protected]> uid Dmitry Marakasov <[email protected]> sub 2048g/2042CDD8 2008-06-15
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEhVTssRBADF9Mfvn18A7k1V8XOzgZGrqf2jbzWMklD5IgPtziN2vla1gTk4 OuvL3aR52ZGE95LjD4iy52jNpAijefBhR/vmgF3IAuLTLXYJTFR5qck9nXNhO2hK OtS2yuzoUVEHUSENuj3WFieQJJGyyLZv88iAv85VSyhFqYWG4apkKMnJtwCgmMkC DWhsfLPvVSd+pDVGE7A38nED/3b4xN3fhfbmoa84s80GsVVRZaYLWmb+aWgTJatS y362CQkLjTAzO6G/6hVyEDJpJCJs81uEq61QZAiGBmru+vK16JNhQ0Ic5l2GBI+a VPcXm7O56Na8G1CVF32L0HePwflxl3hB+t6wR4OUj/Vy17Sz1+qjb2ixEUoaGw7r hagVBADCu8vNQkg/lplaSj5gz+aoaf8qyE9teS6yq9nZjHGWKa106NJlWtFIYJin X2FGpXJ8HCPMU10jDLFmgrYw6y1Tdb+hUhwd2MXXyvWZ5wY+j9PSN1p9Nii/N4Ak tu0impFfhzGPD2Fnn04xQ0BMtulqT/tNvirVZBraAiGcZXlzhrQlRG1pdHJ5IE1h cmFrYXNvdiA8YW1kbWkzQEZyZWVCU0Qub3JnPohmBBMRAgAmAhsDBgsJCAcDAgQV AggDBBYCAwECHgECF4AFAkhVYGkFCQPCeJ4ACgkQ01qA3fnS930PKQCeLA7oB70W N3cHh9wXFsa49it52mMAoJS21FFsCD2BkEyMiBPZ0dGF7yo7iGAEExECACAFAkhV T6sCGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRDTWoDd+dL3fcmrAJkBW8ne ngKYN3trV8KemDfCdzbOJACfbGHkP1as9MXV4CfPKBOxLirwT1OIZgQTEQIAJgIb AwYLCQgHAwIEFQIIAwQWAgMBAh4BAheABQJIVVwVBQkFo6fKAAoJENNagN350vd9 JhkAnjJ33/8+hUAx//V6LfbBQKOTQI45AKCD5f3aw8qIijQTBfdcnI6cpga3SYhg BBMRAgAgAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AFAkhVXOkACgkQ01qA3fnS 931VNQCfeOrFql3/Fn/ipRBXS2BaP2orubwAniIwTnODjmBSEa+NPXbA+WHUTVR5 tCNEbWl0cnkgTWFyYWthc292IDxhbWRtaTNAYW1kbWkzLnJ1PohpBBMRAgApAhsD BgsJCAcDAgQVAggDBBYCAwECHgECF4AFCQPCeJ4FAkhVYMwCGQEACgkQ01qA3fnS 933XmQCeOCTQYuvEkbBZBRmxqqqtjwTD1pMAoIbdfbVz52in24ws8rR3aqKEwcLc iGAEExECACAFAkhVTssCGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRDTWoDd +dL3fd8aAJ0ZeDCt4wLmXKwmUReY18i73YkkowCfcNljbcOGtI+36MlO8uwC1Xhf g/2IZgQTEQIAJgIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheABQJIVVwkBQkFo6fK AAoJENNagN350vd9XSEAnj5MNrTagKZ6x+tPpVybpg1m1JRkAJ4yjqDpLITy239m 4YdPgEpJDxlCNohgBBMRAgAgAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AFAkhV XN0ACgkQ01qA3fnS931rwgCglmXVTHyg3qrLjNqWr8Rnv9BfGAUAn12fqUCfYaun jvLwWDxuk2vFkms6uQINBEhVTssQCADL4G5MUKbIROpcZnDNjMHsDKI78U01JOpR RVzN4v0rvECH0KsrR0zg0XI9/ljSC4KdqrOZyI1f4gTZ07XGMkaXRET4bfvcJE4d TUcYzGNdx6+uICWf7PJt/wc4SpdzK+SlskZO/MmgClUXl0YeuADBTXolnB0BTpAA dUM4Hy0jgXJoOZ5xj95+ejQU2BhrKEr6aSBrbCcZ9ToWLRAMAJwc239cOlQfX0ba dBu+FF9rPdsvi2cSy1ALis5fmjBkTDsNCOanxB4GMTdkIkNztNVnnuHyJplOoArD SdZJlps+McfLxPHKM6aN+iJY/ndL82bISlohJRxfv9K67ur+OKmXAAMFB/9hqaE0 vONs13OVlZMJGWYZND+WcVc4Q/WtiPBPy+8ZH+Fh1P60sZsJup/vcl5esdbrtaMd YASOh5nPhBRsSQ3Yr2F/acuXhTA2NT7ubbpYi1/PV10BgYvz4ijgnknNVGoRZOeR IlZE4ZmpYIXk56IbhjHFhOCHefNGNDVMF9xMwMcwO+nii+GfhfvaiSG34SnCRYyR SxcEudqunMPOJQdGqdRTlQLE3i+xDJk15VKWjUF4ZGIxVhG0aVepEDKXXFdFx5s0 ax7k+B7SQyP17+7sL8gGNjUpQYEdJLpxaB9gs0jF31Yh0tGHY2Yk4kb7U91gszAI m8q4owrHaOzUC4RViEkEGBECAAkFAkhVTssCGwwACgkQ01qA3fnS931r1wCfajgY wFcbQu8CJvmbDXSYZi5aFfwAoILimrxBtjaW0XbsHY9YfjAST2Q2 =6qxA -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F95426DA 2004-09-10 Koop Mast <[email protected]> Key fingerprint = C66F 1835 0548 3440 8576 0FFE 6879 B7CD F954 26DA uid Koop Mast <[email protected]> sub 1024g/A782EEDD 2004-09-10
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.2.6 (FreeBSD) mQGiBEFCGHYRBACI9ERMi5j2009Juy2kpXS860i9tJJ10mM9TNuCZVYcPRRTiSWe Q+YySmBtR9TA3OZfd6BA9EqusEgcwUJpxjZ8zjGzirj/OjcPtKwM9ZO6dadeMNaE wT32bJDUw//2ky2xflJCsjg+TSO7PxQi3g/YEWfau6Istg8PKfzHQan0EwCgxwrV 6JijZQ85jIgQoceJjkwBLHsD+gKeeSUG7g2CO+NJf2d0tBj+l22QzmeAtlnuUskd nHKDAzzty80e4HXkUYw8IMueR7Fe2Tjx20OvVSkzMwiZYqevIJHVhiouCFZxYpSa JQHPYLpMXMVZ1X8d17tjbFRBXWmNrDcEhb4m3WoDKfQD/qbMCwBErsQ0t15dddnQ BVyqA/93dSzMYRC+Zm6Hzfk5Dz2MsvsxEE30ysSwFjIZ06RtYPKlN0x3ABCGba8f o5H0P6+gobJRLTQfK4xDS4J3G/d7TWO1bZGk9MPEzCJDexTt5yfKsY2jZRVRrikE fIbdSUgLnczBdUno5qC9IyMhGNa8O92GsjleDm7D+p+wkkoyCrQbS29vcCBNYXN0 IDxrd21ARnJlZUJTRC5vcmc+iF4EExECAB4FAkFCGHYCGwMGCwkIBwMCAxUCAwMW AgECHgECF4AACgkQaHm3zflUJtqlWgCfWKIRLzsvZjBjuck31Ep8sEDP0GgAn17m X0hYq8W+2gbHbmYeqIFefHs9tCFLb29wIE1hc3QgPGt3bUByYWluYm93LXJ1bm5l ci5ubD6IXgQTEQIAHgUCQUK9MgIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRBo ebfN+VQm2sH2AKCnwIQ3C8+62/uQh05mqXqdzAaU8gCdEkRN+L9HY1OwFlSDi6Tc OAWLTPG5AQ0EQUIYdxAEAItGBQMO4f4rHYh9zc4fd62RhBfMHJpY1ex6HeiHt3pb i6KfBUai1zRYxgq9F+8qR9WgBLF1VhA4O0nCU9/FKOChc19W7xKa2auvE22Kq1ta xjCszahtPTDGIBs4K8u0fH/Gx4VSikQcfIGNd3IK4vALbLfH+iK/1RJNXPzQ9A4H AAMFA/4+UBNqZPucstZgmEwVB2H1Bt671fQqODpWj2eOMIYJWXKraUxdIjUqzm9K QhC7LBj9ihsn+LRsO49oWIAv5bks4zC0STACJ+Lx+FMb1i5ayAp/03DoZyrjRnGb SIY8Dtqonut2nic0NQ4XD5uqTkx2t7xlKJay/n4Nop2uqwajOYhJBBgRAgAJBQJB Qhh3AhsMAAoJEGh5t835VCbaOZEAn3wkQ7xISlGUox1/aiPU1CafRrZyAKCXgDLa wlCa23ftqh2DPxkAXtCnEA== =FIQv -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/50A17BF4 2012-12-18 Key fingerprint = 0C08 ECC9 3A0A 8500 AB95 B553 49C4 7851 50A1 7BF4 uid Ed Maste <[email protected]> sub 2048R/08FA5F72 2012-12-18
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFDQkJMBCADPPfZXZY16ONN40Z6afHF3hxGZsczwVUQ7qlNQzjfvUk5MJV7H VeKpLAN9pHLk9tg2xTXzcMbGe/baBQrw4kt23SwvQ1Q034nRcolio6rx4sq/E7EH vxRmwCgn4n/g1b/S8xzcXqFeDpdhY1RAbWdpQwscaj4hSCEAo2KrJ3tlsZqVRu35 wKAW5eVlrPZghi3jTPQxzdz4QNqLFR5aQdp5MrxhKcm6rnC7JeyuLAFruWoHBoqg 5P8dKjEMNPBzIJdWC2iEWqsiVOrJZ5YbCpZtbPlM82oGCUoC1QmW4kip3BJSBAJK wZlwRvHiMbjhjDGJaliHVx8G8NiJPrdDZlMdABEBAAG0HUVkIE1hc3RlIDxlbWFz dGVAZnJlZWJzZC5vcmc+iQE4BBMBAgAiBQJQ0JCTAhsDBgsJCAcDAgYVCAIJCgsE FgIDAQIeAQIXgAAKCRBJxHhRUKF79BotCADC09bvfZqcpiFH3HeQbH2SKeK6vNpI v1Uoib443EBajOKw19JkjOmPzwnFrKF1WSXrKYpp1iwUlvNgR1C+nMeGPOQCtLzU g49uuoC5q6FdMJIdYKjbVziga96UZme6kuSUUdv5/aumEuOfVvHewZQNWUdq1zbj RuBBesSKWULmUW4K7cBRGGvmAqIpWLL2lmZheT3WHzmLIwwqE4Xs8sgfijxxXrzz tAi7NVVEbOtDxlKZYINKXGXm4xfomuY4eAg+pCH58kEwgEudEspNQP+axJ0Bovh5 yq7cVm7zHbmrxSWSzLjAfprs84m3XIoX9wzlit2tydUbQxlALqcqpDffuQENBFDQ kJMBCADODYSrW+MNgYsqOZpg7hQL+oWPak+DJW+mAe93D0T6iS7g7ZDX7XSSl+LE R/9bLa6alA7qXDJFf41yl9Gw7vP7k5SFAT0mukffR4wiXqsTKcdGj8LxV8JllAQT h3r38gNhZRDr4UQ1MZxWseeZx6myj8vskCiv4Rd0qEOlOE7AgiJdUdUoVLnjZkDE o+UbOhqSfSCWEQNItJ7dRGsmxGAUH4pIZcdu4NIYINt2yNIQCO/NTDFj80dpIWxt Q1BNqL45ZkWG0B3J1j4tsze7dGvWnXZfJQyvTeNeSg6WteyqQSQ98WgvFQkWceUv 1ooA5bHG0xAtg2OI4L2ZvzLINfrRABEBAAGJAR8EGAECAAkFAlDQkJMCGwwACgkQ ScR4UVChe/RV3wf9F+TfpN7DC7m7+5aACXpDB86xCSGG4COtSyU8Gs0tgS84aE/b KUCdRZOwvz5dHAQUaPcgRNuNYscu2aAN4DYdPWrU59tn1s6+xYvWpgkzt+GGsni3 gsz7vot3vUEzf7kOMV+NgdBEEIKgUT3TuIU5wQ/fevYGN1gdMeXiYSJ+PSfaZWnr Eee3zGU6TtR1WUgjQLoSdvDPzsFaNYSbCGYKXwSQOw7ysp1tY6Wai3teMb1Q9YNe BpQCsjEhGSuocr1R34+Nvmo6OcOpSeqEN3XRlz4PIGcXUY9Jp9gtGBSeFLasihfC SDQa/FThS6824wFQfaya638NZbjhCzrtxx4gdA== =aAkV -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/2D066FE1 2007-05-22 Key fingerprint = FBF1 89FF 81BB E1C7 6C1B 378D 3438 20E9 2D06 6FE1 uid Cherry G. Mathew (FreeBSD email) <[email protected]> uid "Cherry G. Mathew" (NetBSD email) <[email protected]> sub 2048R/7B2C4166 2007-05-22
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<[email protected]>
pub 1024D/20544576 1999-04-18 Key fingerprint = 71B6 13BF B262 2DD8 2B7C 6CD0 EB2D 4147 2054 4576 uid Makoto Matsushita <[email protected]> uid Makoto Matsushita <[email protected]> uid Makoto Matsushita <[email protected]> uid Makoto Matsushita <[email protected]> sub 1024g/F1F3C94D 1999-04-18
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<[email protected]>
pub 1024D/4261B0D1 2007-02-05 Key fingerprint = 17C4 3F32 B3DE 3ED7 E84E 5592 A76B 8B03 4261 B0D1 uid Martin Matuska <[email protected]> uid Martin Matuska <[email protected]> uid Martin Matuska <[email protected]> sub 2048g/3AC9A5A6 2007-02-05
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<[email protected]>
pub 1024D/B71F605D 1999-10-13 Key fingerprint = 4704 F374 DB28 BEC6 51C8 1322 4DC9 4BD8 B71F 605D uid Sergey Matveychuk <[email protected]> uid Sergey Matveychuk <[email protected]> uid Sergey Matveychuk <[email protected]> sub 2048g/DEAF9D91 1999-10-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDgEenYRBADgT1f4m9S5l4Eu6t+PAji9dZbgMDbxE3QFh2H86bneL3ufAuCk aBX8YnBrgXc9c+R8RLwdXpUjbt7i/tbQl7b/iaOcJgpo0yAWObpqxdmn+k7nkksd 1kMUQCi9X0mK44rbYAgCIKvXQovaZtoS8FhTdEci/6IhQf0WuJT0pN1BfwCg/9WM KyzUPqB2LNLDwQetKhYcoO0D/iPI0UOVOeQUyYmu2i5JQD2K+A08jwIs+r5N54hE bBbWQQkZnS8zfPh/HEudW9C5HD0a+BB/Lbq8aFq5Fh8NtU6k8sFqNtKXP/8mcDbt rnSnoG3XRdtBioDG2sQUgHjQJmV6+ZYeqMe+4FIr9UIijm91RmKKQ/1pcUfxiK9Z JO/hA/9DRRdTRDz1B5ttKJ0NQBfsUOFwwBAPTtoFDao5qJjz5QhVGlxybaLMwcRo i3/5qPH8tCiQr8e7RlKGOccoROr6zvEgLERKCCtALVNPfZUA0avH8ORZz7KUopTv 8gaVOf6zSuxDlbndAhngU+RBh+EukzTZAsQrFDsVVC6irWm+nrQfU2VyZ2V5IE1h dHZleWNodWsgPHNlbUBjaWFtLnJ1PohdBBARAgAdBgsJCAcDAgQVAggDBBYCAwEC HgECF4AFAkOfCa8ACgkQTclL2LcfYF3sAQCg1tnkwCjzX30YVnXXa3jm8Ylsf4gA n2b0W8dI/Y/1uXrSDu1uz/JYRDNuiEYEEBECAAYFAkOj/coACgkQQrGTfMhVD0wi gwCgp9iZjDtysUtACZze58VROjl6r18AoJiR2rnEvcHQDsBv3PJRE5XCmBBKiE4E EBECAA4FAjgEenYECwMCAQIZAQAKCRBNyUvYtx9gXZXjAKCzqI2PzQRRFWlI5veV 4U+x5Lc7lgCeIONnpV1VJCkCkKGHKvpkTrZ2+GyIYAQQEQIAIAIZAQUCQ529rwYL CQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEE3JS9i3H2BdsagAnjcGi6aqhDzX76mG QSSzhE9os8/WAJ4oAA925eHCvzUJ70KuzOd/ur6KBYhbBBARAgAbBgsJCAcDAgMV AgMDFgIBAh4BAheABQJDpoPmAAoJEE3JS9i3H2BdAfkAn2wNyDpu0mSzknbTiwn0 ZtULGUzdAJ0YTvvLi0fJwMKpSVRk9M92RxDep4hGBBARAgAGBQJDoaY2AAoJEERt DDCMkWQoLHQAnjPyol0c+TwTcwmKmhx9m2q11hmjAKDEnF/ZMvEK0DA+tz7bcIQd 1ZpoU4hGBBARAgAGBQJEovYVAAoJEKkX6cyZbhRegKwAniqOkIAm+pPxZeaqLM8w Fae7PtPHAJ9/Cv+mMbOuukx4D9pBtFTUgyQZjYhGBBARAgAGBQJEowRwAAoJEGwD cmOt/VyaB/wAn12/XGsruhluMLWeGcZ8P8/w0KZkAJ4+SfQ9/kPGZy9bMdvf/Kow ZW58aIkBIgQQAQIADAUCQ7BQKQUDABJ1AAAKCRCXELibyletfHV5CACOuLT1gjq2 g4Tm7hMbGpC9NnK78HWHZr65dr25WlVekwapDmvO75kixqhwZ3hrDRfDtQsUrrCa 0n2zS6jbGWWkFUVjEHZaKZjLF8HbLJbU/J7AHx2im9RUVx+eD8VI0T8iNvW2ODo4 bL2CqEYz7k9lUGXi3RZm31Y13dOislyEA5dO4lqh56tXynYFa963xGOXgulHX+vz SCbltc5mQt6uZ+bKmUsl/ffA3bzZ/aM/DInD5RKuU024eibxOQ0QUPlHq6tF60Uv xEofeYRdZo+hdyOvmRlpkFJvcpBSZ0U7f/r7IwwqMDKTImbee5DtxgbKLJNR6IG9 INvjWLHdxoMPtCNTZXJnZXkgTWF0dmV5Y2h1ayA8c2VtQEZyZWVCU0Qub3JnPohj BBMRAgAjAhsjBgsJCAcDAgQVAggDBBYCAwECHgECF4AFAkOfCbgCGQEACgkQTclL 2LcfYF3TtwCeMK4gZteXRp5TTj+wc1mZIinw8RIAoJbG8NI+Sz70Pd6Cs1TEnj/C BXA3iEYEEBECAAYFAkOjvpUACgkQryLc73jOEF+NYACeNUDUL7kHITLt8KaEW5Rd lDQ88OAAn2WCdl6evL/PYG0rJJvpi/PNphzziEYEEBECAAYFAkOj42UACgkQhdRQ RWtpGwOABwCgnYyAqsVrdLU67vXl30UhR93KSC0AnRNCks1LaxSlRQ/0FUCiBYoe rPDKiEYEEBECAAYFAkOj7Z8ACgkQXeTX/hlJ3ICndwCeNwDoLdZ/uQPAmZWU7w9x 4LvGsMEAn0/tU75Pnk5htx3aKgHNZrbgC8MgiEYEEBECAAYFAkOj/boACgkQQrGT fMhVD0x5kQCgon3OpWC9aDJTiozvGTiDE5w5hLQAoJq2i4yaC6kRT41B3aOfjXKk SLjgiGAEExECACAFAkOdwYoCGyMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRBN yUvYtx9gXZ/NAKC9I2cSvVQrE7IFrBSatdxwMHzMUACeL8+qkqtWdfhEJpSJFcln Xw6tW5mIYQQTEQIAIQIbIwIeAQIXgAIZAQUCQ6K3EwYLCQgHAwIDFQIDAxYCAQAK CRBNyUvYtx9gXftKAJ95Qiq5aPWFS9UnIb4w19TPIq7OKgCg1o3+/16rNohsn74a 1zlK+JkIJSeIRgQQEQIABgUCQ6GmOgAKCRBEbQwwjJFkKObbAJ0ZwW3xBEGFsZfF tGBveNQjLzURDgCfRIqdpUtPlcHLWc2n8YUx6FpFaWOIRgQQEQIABgUCQ6Z7zwAK CRBEidDtZ5uBGQQBAJ0VZPlNoataRuQdzULUXyc+iSfPewCfUZYcvAOpaQ1z+eJ7 /H11zmZ2mSqIRgQQEQIABgUCRKL2EgAKCRCpF+nMmW4UXv5NAJ0XVv2BGFs9zhJW jdD3xbkZcG/YSACggDGixZ0HT9+FAC3qnJzxYjER0U+IRgQQEQIABgUCRKMEZgAK CRBsA3Jjrf1cmmk3AKCRv6qI+NOMGiKIj3c7RzN/UC55ZgCfaNfE8Eeym+wUJGH8 a5lMOEBDfHO0JFNlcmdleSBNYXR2ZXljaHVrIDxzZW1AY29yZS5pbmVjLnJ1Pohg BBMRAgAgBQJDncG9AhsjBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQTclL2Lcf YF1AdACbBMS809aBX96UVFp8cqx4RAg75bQAoKBvCCEBY3hJ2KbrXu+TfGcNGfCt iEYEEBECAAYFAkOj/coACgkQQrGTfMhVD0wGxgCgrZA+my8MDGgaRF57rnP60Iqe oRMAoK5UbrYtXL23ao8O6m9S5EG6g+pWiF4EExECAB4CGyMCHgECF4AFAkOitx0G CwkIBwMCAxUCAwMWAgEACgkQTclL2LcfYF2HYgCdGLs9tjadS8Samc2GGMRAeP/6 R2UAoLVh92UM7g2o9XFIOTVrPraOwC0/iEYEEBECAAYFAkOhpjoACgkQRG0MMIyR ZCj8nACfbLM24O4P/h/V3A0Bfk2se84M644AoIqFIZGr6T/BTkRjtONJyVmKAg85 iEYEEBECAAYFAkSi9hYACgkQqRfpzJluFF7rFgCdGsz/KQy4veazVW+VDfstOdRd 3R0AoJmXvEXiXHyqWEKNxQ+CKBQsJdDCiEYEEBECAAYFAkSjBHAACgkQbANyY639 XJpCxQCcCFudoNU7Fztnkavjsli0Dsu8ptYAn0qgc7RJVmWV8sW2+ypTK+l4VWkr uQINBDgEenYQCAD2Qle3CH8IF3KiutapQvMF6PlTETlPtvFuuUs4INoBp1ajFOmP QFXz0AfGy0OplK33TGSGSfgMg71l6RfUodNQ+PVZX9x2Uk89PY3bzpnhV5JZzf24 rnRPxfx2vIPFRzBhznzJZv8V+bv9kV7HAarTW56NoKVyOtQa8L9GAFgr5fSI/VhO SdvNILSd5JEHNmszbDgNRR0PfIizHHxbLY7288kjwEPwpVsYjY67VYy4XTjTNP18 F1dDox0YbN4zISy1Kv884bEpQBgRjXyEpwpy1obEAxnIByl6ypUM2Zafq9AKUJsC RtMIPWakXUGfnHy9iUsiGSa6q6Jew1XpMgs7AAICCACewsZfxk8RG2OlA5Xwu2qv tTq6dyC6sPQQBZJaPrd9ZOC4xh6mY8ymybkHSjG0sUbz98l9WaFHGiEv53nHQIJc hOF0pBGhIuVPUAB9Oj3W4xk3xOw4PT8MYWbjExMLwUuNVDQCWeB84GLxmRJslDMr ZFv+/39J4reVXdY6H/bLGknWs9Gl06h8dsL8Sc+PBj2Yfjf+BBdaKCl26Jw2trVm yCLlm6QY84veNoDpsK+hT6IAAi5h29bITYGiWT3MLFmplDT+gtqaJifCBGh0VgUk 4mnWhL1jsEFrqoEpzOkCWEwLwYvrdCMElc80c7jk8pVeJiZGFgaRckyjGeacXe2V iEYEGBECAAYFAjgEenYACgkQTclL2LcfYF2z4gCeLX+cbR0xy/B7v2wFZPABVHWd /CYAn14opUDUCjxXXd3vrkwzNCIrYQ5i =iDu9 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/E2F7B3D8 2005-05-24 Key fingerprint = 7692 B222 8D23 CF94 1993 0138 E339 E225 E2F7 B3D8 uid Tom McLaughlin (Personal email address) <[email protected]> uid Tom McLaughlin (Work email address) <[email protected]> uid Tom McLaughlin (FreeBSD email address) <[email protected]> sub 2048g/16838F62 2005-05-24
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEKSlvMRBACEIyrOE2NlPjwg7bS3nUC4S/D1nPV22eEJ0ga9+LNHlQnsJON3 lGOU6iMGa6QaBoqg7Qw3aL6FaJlogNQfIPWZCRZdfJjlbw0Yd6EzCpMqoowB+4y6 XuObOhie5bdHFK8NVk9n1BZGUELcnPGMdhPPIQ/UHq7Rlhbqh8qkcA0imwCgzNEV oPAY1SeozW0kBE6YUXXGQXkD+wRzl9As4+1CE3ZgxUWtoNqYvZMNWYTbO0ZWMx6i YWJ5GkLCMdVqNZ7iCteeDBVoRzLEbD/FyVzazPm7FBSxzK71EC+C4Ybt2IQPWfBK Q0GI+2ghQ/HyLh4gLCLP5XEk9aw9DwXGJt2q7HngEJli5o8LFVo3Qiu5X+QeC7QN r6uGA/9/raZnDF33jfAlx1jrHnFVEa1xzs81q2LK2ii+RdU5bvTJQchoHFRKZMBW HszbXB4f+wqkSkj6B7od8hBINJwdumQXdjO6nybh2abkCT2f/nyK7ktCcq027AD4 BjWWFltUZpvspzq724SOEyBsbYJp4YTB2wys+gcyDF/ugaJCl7Q+VG9tIE1jTGF1 Z2hsaW4gKFdvcmsgZW1haWwgYWRkcmVzcykgPHRtY2xhdWdobGluQG1lZGl0ZWNo LmNvbT6IYAQTEQIAIAUCQyJDcgIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJ EOM54iXi97PYq4MAoJeuQSfnGZsPBIpzOZ0vHmf/ZV4ZAJ4kKyQrqbxup6u/vMWG lS9JqYlZj4hGBBARAgAGBQJDnF0IAAoJEMYEPFZyB3E3kccAnRcxLZQIxgo0T22x GUDB8tkAUUOTAJ93N4aVydp/zrDo+OE1HStNFEsWvohGBBARAgAGBQJDnGKmAAoJ EHninGCwBj/nLhoAn3sa1+X0ccAhA+iPHo1mypN2uKUqAJ9B46J73q8E7PU17U6k RHY/7eCLaIkBIgQQAQIADAUCQ826swUDABJ1AAAKCRCXELibyletfK2IB/9GoKeE G2qDTfQbwG2Gbj4sW2FjaeNryneSTxXRMpK5dBwiMi07iM8Ze+8NdE9KlOzA9I1r tkYgR32UCfteyQXU8YvsKf6Q4wRqKbpckqI43zXMdvXyzG23P6/gR/Ozqh96Z9vA i6WdnvxjZaY6jItk357LJPQDP6zQncKFfcw7W+QAPx2N8BrUUy8U94kW6URhS01R d3NP8JylEXqqF6L7cSxcmO3A2QAVjzDpmfWu6AvREuYY7dkSSZWGK9hpoEjPN5GS LDgwRaiYZKHYz8Bx2UUA6sqaoebqAHY09bHIZ4fMiEkm7SSf5PsoS0emb9O0q5U1 tHI8+6LkM6Zhs57CtENUb20gTWNMYXVnaGxpbiAoUGVyc29uYWwgZW1haWwgYWRk cmVzcykgPHRtY2xhdWdoQHNkZi5sb25lc3Rhci5vcmc+iGMEExECACMCGwMGCwkI BwMCBBUCCAMEFgIDAQIeAQIXgAUCQyJDgwIZAQAKCRDjOeIl4vez2IaCAJ98fPNG gmITFIYH+M3UBkw1YTvfAgCfQdAkDAFJxVrvDZBDliO2NB6jAu+IRgQQEQIABgUC Q5xdBgAKCRDGBDxWcgdxN2PzAJ9d7HmdkCyM5CN7cgG6BaZ87AHY5wCfUjblYg9y tsrTj2+ip8f05PC7zhCIRgQQEQIABgUCQ5xipAAKCRB54pxgsAY/5+exAJ94yol5 HuRwmESdxzjj9S70GoYbsgCgxad9osFjtuxHHX37vaxUgJyLEbGJASIEEAECAAwF AkPNurMFAwASdQAACgkQlxC4m8pXrXxT7wf+Ji6vtaE5wjEI3/puKsHfGJmmHklL UBkcl5acntPLPxhXa2Z742ZZW+3QXeUyyXnqU1/BSn6/NBYO6I8yUJc5QptnlCvQ sJpwJlnTd7jBhSzN+L1xGxxvmmq2LfzLIleW8ye27vBOW4JDPDSgz4gVTKRqc0JV 1EYULkWCGpfDA/xPP+4Lhizz57Q6EqLVurxMjNLE2mqV7feIvYoGLxOX0RxbNSpT +uJ+6ydpyE8UhykkQwgN0vhaokwSHC1KWWFH0ET38hcdFvaVrWZsrG/GwGg0T0mG 23CvIdBUGH9U0roJjUa6CDDQz8ohR0P04lFpVsgDi9AVPEFWTX4gcUwyILQ9VG9t IE1jTGF1Z2hsaW4gKEZyZWVCU0QgZW1haWwgYWRkcmVzcykgPHRtY2xhdWdoQEZy ZWVCU0Qub3JnPohgBBMRAgAgBQJDIkMNAhsDBgsJCAcDAgQVAggDBBYCAwECHgEC F4AACgkQ4zniJeL3s9hsCQCgjLOKwwiG6bABO6ue0mjHpvR6nhUAnidSAywDgVQa nv8Ev+hIv4/QpD2PiEYEEBECAAYFAkOcXQgACgkQxgQ8VnIHcTcenACeNyN5PiZU TJ72eTxbc60q6PpkVOIAnRInAWvK8iW8I7uGOMBmyYtZWfu8iEYEEBECAAYFAkOc YqYACgkQeeKcYLAGP+czFwCgkAtsuKGoojwfo/Rg6p9RCazIUjYAoJ0xxWeuZ/df 7lkbyqcRGJOfLeBBiQEiBBABAgAMBQJDzbqzBQMAEnUAAAoJEJcQuJvKV618rKkH /1kUl4Cqj3n9a+acjUnl5gH1r6SVUuNK6pPJPVpBXDOGWQQPfVYl2LTtFfzIh+e0 q7J5os8timFbi/6HaI3RNV21XoqrDVgmRA8lApxM3dfB0hlJ6jx9eoUjHgi4n08w nX3g43I0zoRc3lQPHFc0jV9yRhgAln2yHmrvdcW0SUb8Zv/FvyG26W1gyEvl0cPE /AvKerTr2oP3aKnWtQfylovIw6Y+MmP3AynlvYghY7qw5QSnw3PhITvoFh4Lg4hI c/AoY69TAdf4d+kHtbo9vssMoT/NAIaAN3K8hdzSmJ0Ifsj7/K9+qtYz3r3c/+Qz 1pH6hqz1u13upXLo/slPV7S5Ag0EQpKW9hAIANJJ8W4+BYSzM6ihW2ElYyt3h2hp WXptNPnrZDAoqx7YtCyPnUpn6dJrlsz2NTJiW7ahdsCQqrCyMTRCzAZAbFN1s8Se 0hlREeHxGBIw+trapap/B2u0VQHDfVEL/9ib+jUFm+Gp3izgcgf4y3tvJRmmPCgj Y9fFcFu7PrntYsK91OkgungUriZ1fbjx0OkHRaz7nnq+On+dVElFh2iTwpZKrG3L 7Qws/iVWamLOSQ14d3fzWN/Y7pF09QjOo5i/iyN1QEYiOffYaUthWr7lJ35muuaH yEMeodSNkKCF+BqpmmWKgJohopQ1/f36WjwlaVKaRh0zCIxcpX5xPtSoMzMAAwYH /2OiL+gBLaaTC5okydoeHAE+G5TobT4CI2fw2P9htDWVYf1eIriTRYKywSyjF+YS nCc8hleBDCwrUY03GXCFEOq0SAR97cfRhzxlHps3n3iAuZp9TwcGDiskL0wAaNS8 43AKNHlKRNWxXoCE4oBlq/t1+DV+7BnjdI+MCAUe8h4y/jACIxpxnRKjmAcN2qDh THauJKvmUjw5W9SvgDU8sHNXRAdTbCrDj3iEAvZ2bTUMLmh9h0tKhwmVD14IMpDp 7ZELqCgJgtHjv9kAg0Yz/Dy34jdLgypTJzUreQcJYvv5Krp1QLRTMMtoMtkop56+ oKcUsj5bqschZLFzuL2hj3WISQQYEQIACQUCQpKW9gIbDAAKCRDjOeIl4vez2KQu AJ999gXGK70qxOzC8xOb3luxRKE/TwCgleUyV4VszS8i918p+td30+xsf1M= =DTOK -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/AA5114BF 2006-03-03 Key fingerprint = 826D C2AA 6CF2 E29A EBE7 4776 D38A AB83 AA51 14BF uid Jean Milanez Melo <[email protected]> uid Jean Milanez Melo <[email protected]> sub 4096g/E9E1CBD9 2006-03-03
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<[email protected]>
pub 1024D/54C745B5 2000-05-15 Kenneth D. Merry <[email protected]> Key fingerprint = D25E EBC5 F17A 9E52 84B4 BF14 9248 F0DA 54C7 45B5 uid Kenneth D. Merry <[email protected]> sub 2048g/89D0F797 2000-05-15 pub 1024R/2FA0A505 1995-10-30 Kenneth D. Merry <[email protected]> Key fingerprint = FD FA 85 85 95 C4 8E E8 98 1A CA 18 56 F0 00 1F
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAzCUT6IAAAEEAL6dJExgqBvPOEKuRtkeb1b+bcUkMV+TtiT5GPXcYlYeYuDH Veh5BK+ib0sULahN2lGdgIWEwcnyGokELvc9ZwWyjgcopWRCoY+VkCzz4YIqtiHy T8VUw6bIidslytDjG6wAp2zDtAR75uOM0bLDMsoXQ1s6sP0HMRv1TA4voKUFAAUR tCRLZW5uZXRoIEQuIE1lcnJ5IDxrZW5AcGx1dG90ZWNoLmNvbT6JAJUDBRA5NLf9 G/VMDi+gpQUBAf4sBAC21xtMkZsdR/FoHzg8fppFN623p/ALXJVBEA52W/FPfqVd 4tAJeViU6UgtFBxvu1J7ctXM9O4r+xd040ZTtWVDZSRhssZN3hBGx31El66niUIU IfJBco0nkfUreuKw3MX6vrZkuNc/WGFaQo96JCsYTt7OSzZQu/vpa3gLH5kThJkB ogQ5H426EQQAxAaz+YSEAmOES6KLRJW0otN/whsuTPIbksydLGrRUpvGivG9Ohe6 khLnXE0ApknWxb2aqvP5oRHfB2nx0ZPpm1hdrjMgD/574GT4gskyTdRKd9hdCUrc lcS0WohvsI8si7kKJawa5F0zy08pNOIFstL1YRdQBzfFYHl30aGAXFcAoOnEpqZ6 ffE4E19IexMDmb1KA+s/A/0ctHXLB/5vlUjOpGB7bI3yHHgTT6r1C56WkXQ49SV9 Ad2sN4nrvNKdNBJcN1oAvPh49WBWcSAwTTpub87rl5B8vQEoUHOBWQMUrGCU3/yD KopmHBvtROsP/3KGiCfrteWCdy6aonQLv4TXOeqYMstbU0MjNBVgmAItoxqz1237 CgQAlO/5jMCLdxricI+1f7Gd0zwbxHe1JUV7kjLqMx1JZ75LlxuIiQbJgMpWVNXu j0O8df5mbhh1+G4K9O/p+Cg19+r5ghc8Ms0YOEkYRlKp0be8uzrCu7qItGfLKMsP t1eU2RJ5YPkD0bOjcVxlFQmXkQ791jncpOdrz2O1qgMLpr+0Hktlbm5ldGggRC4g TWVycnkgPGtlbkBrZG0ub3JnPohWBBMRAgAWBQI5H426BAsKBAMDFQMCAxYCAQIX gAAKCRCSSPDaVMdFtRS5AJ49YIU1IAJl2cs1g5gDgXPoY/RdsACffJZMBGaXpcfm ZpRRIAtzq+Vv5Yi0Iktlbm5ldGggRC4gTWVycnkgPGtlbkBGcmVlQlNELm9yZz6I VwQTEQIAFwUCPE+i4AULBwoDBAMVAwIDFgIBAheAAAoJEJJI8NpUx0W1RBgAn01T zuWhCWOShHSfKM+sXcD1YrwPAJ4jr1tE0c1rZ1Lnz5YYZefpSnt2mLkCDQQ5H451 EAgA0k1+aZvnxXw7WBcuEcT8VRBUfdYSrXVEi8R7xjKrw06U92cDSkqdA16rImto u0SSTFTnUXXHLdAuf2nsHplrzjEAgrMUWTtRTtaPKrtCwWE9Tk6lSxOO3+HA3mGn I3Hl1KgTErIbqIAIhftJXpW63Xt1CZtJ5fOKCyNAL4obe+gkmsyNTPwYw1iEVG1N exIdkm4Rr8TWohJ/b0ql3rEv9y/nKRj23OYGDGKKGY03svz5Q/TB1CdQdlfXhtEN Uz674NimuiP0NyBp0Un+hPnr9IuoEILuQhAYOnji3G1OVEQCBFONGT6CLugoPrgQ 0/KeCgIxB59TVkLm41yukcukzwAEDQf9EpA2dTA4k5rr451jRPbR1a19knOAz7Z9 J0tWWbySXGw1ZMLMf7BA7bnnIqDeuKLkxIwc4UGQqiXmmKbbdy0pYPQSC6dxIsFE 8vnL7RLZKhTLi6bFPj6Wspik0H1GnmvRwlaJ+Fn8g7pG6Pi1B497dTmZU3TX8s11 XT09jftPjHLeziCBXu4OE/a0Gqc59r0A0bG94RbaW1rVmnX9KuvMpv9Wfx1AN2eB jrfpDPoMd8JU5Fn8KATvLlXPkSqQ+iQxOvYs6iXhoDrugPuo5bEF6sJBc/iC7ZmR kuy9zUh6K1uAYJoZferxiaglJH+pyrkBBDLjj3Akw5pSmJesekGwsohGBBgRAgAG BQI5H451AAoJEJJI8NpUx0W1UJMAoIrd17bhiZx3eYtAgi+1IwaTx8QeAJ4plmqJ sGDiYyJDVnPYxZcEN0h06w== =CRmh -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/331CDA5D 1995-06-04 Dirk Meyer <[email protected]> Key fingerprint = 44 16 EC 0A D3 3A 4F 28 8A 8A 47 93 F1 CF 2F 12 uid Dirk Meyer <[email protected]> uid Dirk Meyer <[email protected]>
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<[email protected]>
pub 1024R/391C5D69 1996-11-21 [email protected] Key fingerprint = EC 04 30 24 B0 6C 1E 63 5F 5D 25 59 3E 83 64 51 uid MIHIRA Yoshiro <[email protected]> uid Yoshiro MIHIRA <[email protected]> uid MIHIRA Yoshiro <[email protected]> uid MIHIRA Yoshiro <[email protected]> uid MIHIRA Yoshiro <[email protected]> uid MIHIRA Yoshiro <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAzKTzO0AAAEEAMVsAcUX89qHkwlI03RlAYBqQa00TFmgPwZs8sWvNUqTGtlK kOXcN9WNBvwzMYtEk/u5C1HukqISnFkDW7ZKYm+Um1sQPioFHTwDC6R2HRDZBCV7 0fROlQpb479iBlr8wNAYDhOs0rl25FpE/uAXYThW9Ik/apgXN4rTGxk5HF1pAAUR tCJNSUhJUkEgWW9zaGlybyA8c2FucGVpQHNhbnBlaS5vcmc+iQCVAwUQNu4ch4rT Gxk5HF1pAQHYiQP+IoxOpfpSPg8Gr7MUtoU3WZPY/5IuKoOwnFNFcSyuhrgn/OOB pbxkYjTO3MLh7Xa+9sPigevHy/sNA4vVZdjk05sjRfAZxIWPrinRy/kzva0KOY69 u1QfX+Vx2mfq/EfMJMHP/Am0H71nOfAZsscKlb/jmuo1TxIpCUx+wWmNn5+0I1lv c2hpcm8gTUlISVJBIDxzYW5wZWlARnJlZUJTRC5vcmc+iQCVAwUQOY7IlorTGxk5 HF1pAQGQBgP+MXSjPfcnNhNfUmeLu8sM63DnrFIfRP9E+n/yhZT0wO51r2LmF4ZX YI04IJCywJiPjEpCFXNAhqDfypkTXWcbLTxX6gE5GNqii5iq+z+UuO4panpJO5OY 4H0/90cH6I/zl93EZN9wfZJghn66vgL4tDTgILdRPekIOB23JQIXsf60KE1JSElS QSBZb3NoaXJvIDxzYW5wZWlAeXkuY3Mua2Vpby5hYy5qcD6JAJUDBRAyk8ztitMb GTkcXWkBAf3zA/9sDB0n/UlsH9hzaw4r2k0FT9F7Ixtk2i/vqmHDUUcrlEqGaeko /3Q+et2KzepX981mI7N2jdClqJgjlHapGoIQWZL3Jy7ocgCXDTYwGU2cFRF7kzkz h3FyYotm6bMi5F53GamkVbYZfogLo1MW7jmqIydJNdT1oseDbrwkjvXwdLQlTUlI SVJBIFlvc2hpcm8gPHNhbnBlaUBjYy5rZWlvLmFjLmpwPokAlQMFEDKUUFiK0xsZ ORxdaQEBjuIEALtVC6fjyDiRnZ3ReckdTO7k83VUTZiQH+2cMFNd8gi+O2sZ3YnW 6veQI45VB3oHD9kzMjol3B1ld7iKcQzHC6qUEviW+mTRRN2Y26DB704FNeUrqm1A LO8NPL6iNKFvUNsu3T0ZRY7oX9a9nMmcD7M2bm6jxrhckS8hY7x1D0xftCpNSUhJ UkEgWW9zaGlybyA8c2FucGVpQGVkdWMuY2Mua2Vpby5hYy5qcD6JAJUDBRAylFA5 itMbGTkcXWkBARgCA/0RBudh/8z/HWdX0GC0m3I0zIAOiGfmnJMPkzLryXuOQsbE dg28b193QnwTz6/ASF6PLJkivcd1vREXCz3C+jHz6OGs5jUKcSf5c0ZaIE4T21Hq LPKHSj0cYxgiC0auwY46m/yfO8I0bdiM6Ki3fSBTlTmDlNhWxOQ4Ic2RamKNNrQl TUlISVJBIFlvc2hpcm8gPHNhbnBlaUBzdC5rZWlvLmFjLmpwPokAlQMFEDKUTtSK 0xsZORxdaQEBjWYD/i3EOU8lEoje9jTBHfQaps9BQgviFSaHk0G41emKszLSLnGQ BeMGZTyWda6sTSqeLKg56HEmmVGzC/nHlhwspC6bdYaBmOpnSmmzxVstcYq8oiXI mlfFEcL5DJEau1VTBP56Fk4GCffaibCTRGYrQcJz4yLfATjYsni5Y8zXqhWItBdz YW5wZWlAU0VBUExFLklDQy5ORS5KUIkAlQMFEDrvMx2K0xsZORxdaQEBTgAD/jO7 tb78V3muNw+rfD8tA+yWXw8IdC4QHCa+Ga6Uwf9nw0WD+fuuz0I2La4iaC3FPtTs 1hz1QlmrztffL3tfsePDeN59nz89m+WPW/Cu+mLY2Eim2Hm6AWKVvtxtndunOSls xQLr0uhvNN5BOzEqv2V+l0MrwadPxUrHG0izqmGJ =cmvD -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/DEA2C38E 2009-08-14 Key fingerprint = A537 F029 AAAE 0E9C 39A7 C22C BB9D 98D9 DEA2 C38E uid Robert Millan <[email protected]> uid Robert Millan <[email protected]> uid Robert Millan <[email protected]> sub 4096R/65A0A9CE 2009-08-14 sub 4096R/41F37946 2009-08-14
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<[email protected]>
pub 2048R/9A92D807 2011-06-14 Key fingerprint = 2B61 D82E 168E F08B 6E08 712E 2DF1 2BD1 9A92 D807 uid Stephen Montgomery-Smith <[email protected]> sub 2048R/A4BA6560 2011-06-14
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE32uWIBCADUDbhOVgIwECdOVmR/GT/P3L2S9r/E079PRooPFPxLoqAxC+Me DoxyYoAR0RFWBs3Qcrf6bilhuovPdZOJ9+BgkGNp/Nu6QayC+4m2IvEZqFhV4Lqn 5Dk+qmHGbCaM4K8L+vebdzDf6CAdIWo/ufaxBW2OzsuTi43QjYTH1/bs4NhpJRc1 vLgXEgxE9JJ1TJVm+B0Oa7tnsr6VUZg5BszByFtSnnt0sV0pFaQ33/WSU6XdYUZ+ RT1nhxfJ/p5NiP6e9h+IqnGf9yz/DtXiW9sqs4bYHs3qjZUB6HhECsSZMyaei1eh lvzQR23irMXHYHLI0aJUuNoC3f0qDLjzqJTdABEBAAG0LlN0ZXBoZW4gTW9udGdv bWVyeS1TbWl0aCA8c3RlcGhlbkBmcmVlYnNkLm9yZz6JATgEEwECACIFAk32uWIC GwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEC3xK9GaktgH4DcH/3NBVtRd HMfrieIAMyUYkjw0ddcAsBqakaDPDkNauv2+pAUDNhvJ4XUBPUxRm2OyLatHnHPe CPPTibNyb3OYgrbccBI1aMQPnKn5s03X0+5Y2Y/5qYzls6bA97MlJWNaWDl9rI7J hV7T6YPxzwkva7R8VRHdMoOY8qsErfA168Iy0pm3m28KBU+dnOHxcdA7GHqkggVm T+KpkuRnTv3Z1wrna4ejkbl+VEF2VXh6e1AOENSel7ujgWg3j2ZfOwy4wzBGxe4m h7GO/7AxvMfBqP10KXBOc6Vp6bw54O4n8CTX+CjGKP2ZvrwntOwvLThj4o1y2lyZ ojqcoYjGwIxx72e5AQ0ETfa5YgEIAJgDBvxMoNpKwuKJIbi85a97J8dHGr16XADU 3xBQe87nNAgOKj4/LYaO93syaFHoiP4KgU+A3l93tKXrd9vOpyBASID1VJehDPp0 3wHpQHGdVuleaobWJjSGJqCxT+fIa9s0vZgX4uGqa++neFKYTKsYC0T4ZglWsVfQ /ZFYLZekCjmW+GUR1k8pfR+n8YN1Tnc1kBN/iytQ7BZg01HA3376KyoKbQDR3XgO /fQPySu0JUJ67xNyxz0HsxPEvn3q4+34+SwNjh8pf/7dS9iyfr72juo/MqxU3sSa xz18l0RsvZk2YBpewnN7AFQf7fIXObFzr8RXpOGE7OVI6tAMvEEAEQEAAYkBHwQY AQIACQUCTfa5YgIbDAAKCRAt8SvRmpLYB7krB/48W8EaOYk8dWPMw4QF55ozMFD0 H4ooqQdRV+83ddWg3BNjX8w3aX6kxG4JZkrIesrl+ZLh6HCtinGehociZXNhxYMI P7FwGl+Q2i8YcMqHih3/7/Hfh9d7C7F9JWB2Y048tfs2jXwpnGY1NRngrnWE8mJ0 XWQ+5Fk51xR+0qdb62ly0PVv3zigypBLmkOFK6knmrZo2E1s+rAGyadcDZSrHodU tgvV8afN+V95Qp5vH2WGlK7wBPyteqXLrIO5JL+cTcKuZBAbpmUrxmHlUE3t2QTm BuJg0zCxtNGxMlx3WeX9LtWqsGx4VFOpfTwF+DC8w976faOY4QcGgD5WcV0y =DJbN -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/61EE89F6 2002-02-09 Marcel Moolenaar <[email protected]> Key fingerprint = 68BB E2B7 49AA FF69 CA3A DF71 A605 A52D 61EE 89F6 sub 1024g/6EAAB456 2002-02-09
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDxk42sRBACyzSSCLYA90zaZoMlg4zhMXhciG/YuiBZ005q0s9W9cuFFxwOM 0mLFbBHQKj5TG5TNswnf9VreRg8lRPCzgQ63atc10RU2tfa88hIjWZ4G4WEFDeXS hlj4dIA6KO93UEoJmIyR7hswisb086mK4dM9hq9FxJT7YQ63PkUYmd+pfwCgjX/y xM6+aPj0sXuOvAcVVmrnp8UD/2pEd8kxAKIaWmxOm9aGB0/E6vjZWxCk1+CO7tgG 4gInFYUnqniPB4JOXOWriwBGPx5IqWYwYpgeuoi/KeE/Wn7bRUEeCbBGEmJkHO9l 3xJuPX8JKDkGuTNDvR3SINKSzx7gb77eGorwxV7e4FXBeXOyXLxgDqDhh7Sjv5/4 ikr2A/99b5t1akHlNe1ITpuEETDNRcfu38/KW/nF3p1IKQ4Q+exSlEJzPFupYNoZ O7uD3A0YCNf3jIY52ufkZXqhqfsp6aRLetbqDcKVrZWSudAzGAEk3Q85a6Ei4mUB tfv4dmXQOLzfAFHezhCQIt5LIPJ5Dmz/a26+u0DmlfisgP5ltbQkTWFyY2VsIE1v b2xlbmFhciA8bWFyY2VsQHhjbGxudC5uZXQ+iFcEExECABcFAjxk42sFCwcKAwQD FQMCAxYCAQIXgAAKCRCmBaUtYe6J9pN3AJ982m/rtLgyiuHl1IM+/xfsZ460SACb BM7V955SU4T2b+1FW1ieOuuZEKC5AQ0EPGTjbBAEAKbxUKuiOJsAQnGKTXtbyRdR Y6BZQK9tPNXEIjIUZ94Crs9lVq/P3kyvpR/ziL+Yt3agUAELiX+cggUZ5KRzKBmo PJ6ZdWOuKLRN2+PfK1QVOQayeZV11XZAsPwyHI2v/hvjJnFvQNTEXWLZsBNnfTdx 0zi5RBNhf5Gt1hyuT4cvAAMFA/9xKQ7aKkvi+C7KafwH6B5X6lIQxRbTQuaZaqKL M8pDmVLqo3er7S1ullwMWfarQLHtlwirX9IOQN833TCDev9QeeYZZ5g2MpWO5nx4 kxEOAK6Lg+QBg4RcoLK9CpHUpLoChGQzNaDudztUixwVaaigj21O4PXFr9pmLLZk vj7AN4hGBBgRAgAGBQI8ZONsAAoJEKYFpS1h7on2XgAAnj0B9B7g4XPMXjizKVNP YLC2BYjgAJ4tZI/tGYxHex5RCeFv/fG4wN593g== =R/4a -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/6294612C 2009-05-26 Key fingerprint = 8B70 9876 346F 1F97 5687 6950 4C92 D789 6294 612C uid Kris Moore <[email protected]> sub 2048g/A7FFE8FB 2009-05-26
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEob9xURBACHaqCbAqwyIXO0HHHCAVYPqVkhhr2FIS+yTvVJnCQa6G1KIasT LKGK0Z/Ae+suMsQoT9e1Pw/zhErm++aRSYqdTzyuMUjEDXtgsfp27rdQZRNiWDwz 2/gd1nSEWYAKqUh5i0iJ89tkiL3JJx7/FD1+Nfp2sk318usUshT9/T+L6wCgmRvG A61Yo0rszOQexAwZ6PqE9fUD/3tGobQB17xQIca/AwUDyR2cw1lGs3S2ZN2G5xAT QL+h30wplhrrIO3lkyZQ7p71ZTPiAf5b5eTrXWrXVtO2Um3+wU04yhBVcmO9DeO/ F6SLVzJLCRyTSNUSZNmWrl1EOFWooNnfBI4Emjke46g89hIbhYlS+qRL+qN0ugpR SnfmA/9d/UiazKlhp3fX9EwYRQmOC4WXDxuWS91I7kH0xsbHR/BHFJbUHDr0shsB lNRmfxwaZjiC6oHsJE0Du6FcSncYSfAChLrt+fqGvNgXf4hDIjsUtu2d5sxgoarv EvaSwfh/gelNuTnsgQll26LaeYjgmJgwf4Hb7I62UkkPuU5LMrQfS3JpcyBNb29y ZSA8a21vb3JlQGZyZWVic2Qub3JnPohgBBMRAgAgBQJKG/cVAhsDBgsJCAcDAgQV AggDBBYCAwECHgECF4AACgkQTJLXiWKUYSypOQCcCQagomGK/P/P4OedoFUDw5ZY 2qIAnjRRTC0mRqUbIjaf/FWNuU2qtbiMuQINBEob9xUQCAD/zeiP1+Ru7ffCZwZo QTPjuYvm/PnAeeL2fBqN/Q367UuqR6RlqV03lo5nFxD1phheP0BmH6b0qyMh2dxi /6nq32g9b0Wb8s93pqYimxtujpNnWmZhwparaUm9tPyIGRdJ6wj8G43gOwyjDdwi GBPDAdSAqVZI0m+l59F5lsPiYJDGSkYENjLd6T7aAd0JzDjd0YLTx1+WLir6OrLG p1j81rBRCGRNipN7tGB0/pEB/mutU8GlDTTFaD1cWT4X3RGGP9MOH1UuS4wZXzJX 8duq+4fKlpKEPOyJ9R51D25a9V71Dybdx/5mo+Bsec8T5+N0f4hK6utrnJvSQTes vinLAAMGB/wNS78TRKqFdjz83F/LB42srwFqDCKz03Pns6Fzespha8zWKOTiNOk7 2WuXl6qWXhZ1aSithGzoWX3Xm6m0m3ZYk9wE+rDqT7Z3/T0tKiHmwG5z3QpuLOnp LGuBH/ra2gbyC+Ycj/faYXOz6Chf0e67bNRru9OGf289Q/EVcm39DinYBK1jrHcq xZ+b8jxtOWygo2D0SIS/hl4ljMDMaj/J8itwJXj0OyuoJ1IZkW32L4RN3jIXTUgn pGyhtw3wO4V5nhdj+YgvhP2VW1K2SVW1SqExlYdvB+HigKV5oHzTNluILcJgs4BY ntHqlJQ57QKxWImxvFZmS9MBaf69Tb68iEkEGBECAAkFAkob9xUCGwwACgkQTJLX iWKUYSziLQCeOWM0aLs+/NIGsNo/Lc2N4YTQ4pUAn0rL6J3fe3flPx5pBoj/SSto jjB9 =yaw0 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/6B691B03 2001-07-20 Key fingerprint = 39AC E336 F03D C0F8 5305 B725 85D4 5045 6B69 1B03 uid Dmitry Morozovsky <[email protected]> uid Dmitry Morozovsky <[email protected]> sub 2048g/44D656F8 2001-07-20
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDtYTkERBAC9AbWM/ZdPmvE9Fq9NkLKrhuVHQnKhmLUUS6aQI+XETRY0v39X 2f68rVcazOuqZQ/Y/011VmFLsS2dTMeVoXobEcGPo1wgogn2MHko7dUlcb/ra/4P vq0En66bqgDwZgyXgr371E0tqROl+92sY7+Pzk2EpGO4cWDg20ika//ZmwCgnyy8 v/e91AQ/+6ItDJ4iLpvlua8D/15W4Oq0iwhVvnQu+3ZyyjXLaRKzfg/kmun0NeTb O3jppzmizaG3OgZfNa+P7N75BlDZzT4aUGUebYSmruLBncmueJE89EEa6iaewiAa akR64JByffhCYjlknpKiY8r76tsrSyAEdGnttFbJw3ez0Yroy2QKnxTt0RmNhgDZ u5BiBACzO+P+O2y8HTgFL3P0m4WSnjkFmjd3fsNhkap5hzvAosi2Pbr458zreQVb AKomKv4Kq7kFWJGrDfgO8eZRE5uvhdUzlhRoomOECgSUkJv0mib0M04p6ZlRCuIt B9fQ5WUCZCsBOqulxnPxVtAChsrgU7kLln0P4iCfCLTnRRykBbQiRG1pdHJ5IE1v cm96b3Zza3kgPG1hcmNrQHJpbmV0LnJ1PohGBBARAgAGBQI7XBCKAAoJEPTmR373 xeGT+cUAoM+v9P+SeUiitrLtEM5yqNOVROdwAJ40tfqN++jDwAqcHeVoL9iau34B KYhGBBARAgAGBQI8RdG/AAoJELP9zVSEUUVRvtAAn1pLD3cZw5QIqRrJXeIfceBk C3X8AKDnGkwPGbxalnqrz1G1I3QdIyIFCYhGBBARAgAGBQI/FTaTAAoJELQQOaJZ OQTM4ykAn3HBhIBJdK1goaUYWv4AxawOD/X/AJ4q10Ec4hwj/OCvoPr7EDE16AYn 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AJ9B0laWrFnyRvVGo/NVQHmv6xkKhwCbBo5yKzSSgAUpfzjAw5PKW481T6g= =iYsU -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/0577BACA 2007-04-20 [expires: 2012-04-18] Key fingerprint = 0E84 B263 E97D 3E48 161B 98A2 D240 A09E 0577 BACA uid Alexander Motin <[email protected]> uid Alexander Motin <[email protected]> uid Alexander Motin <[email protected]> sub 2048g/4D59D1C2 2007-04-20 [expires: 2012-04-18]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEYouBIRBACKCnll/QyL7oh1g8bNwX4mX4QDz26jOjGW624VOCOb0jarxzV/ s8NF5V7ddCLMbf8wqA2QqeyrNm+e0FdsLbxVAN6NtF6hRCK0Uwc438toERXBLq5j Ss6Ofc3n9KBdTbUDfTp3t9Tda1oajF7JqembMz6cIWXmcU5P+7a5b48KCwCg6dhG X2f8H0s3WZkFi4gDXkUOMMUD/AxfkpYNv3CMGZx/6XVAlNltOoNRG2j41tn1Bhkz 3xgPueod38HbXewTESMVm1qPW3IdNLCrVXg8/TxeUw97h8d1Xa3wfX2DEDfUSCWp IyH+gAchvZxJebdf8UpGtXMrJPzVznMHmChs8pavhnZfqtJ2tplFEf18HLbvzU8r 0GpGA/4hNHGvKtts3CTV7XoQlQrWqhl9okjAUarLjrf2iCVsUhyE3UpXmp0il5bq mhfVv5b4FHUkrSipOsJmVSLgoc0muL9G0BNvLkMi3/vUi/6TOjANYOCnUF324cKv 9o7ojNylp6eTh79wx80tHt99ZgNh1butSlQAQSTXk0aLLbOSqrQjQWxleGFuZGVy IE1vdGluIDxtYXZAbWF2aG9tZS5kcC51YT6IZgQTEQIAJgUCRii9JQIbIwUJCWYB gAYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJENJAoJ4Fd7rKBAsAnR3+WbuhVRDu 7AVndqKop+Qwg68hAJ9W8/4LOHr2XjLT37RQyxPgtodbvrQfQWxleGFuZGVyIE1v dGluIDxtYXZAYWxrYXIubmV0PohmBBMRAgAmBQJGKL0GAhsjBQkJZgGABgsJCAcD AgQVAggDBBYCAwECHgECF4AACgkQ0kCgngV3uspZMgCfafiI8rCSzlLwyWRXCpyH smEYsgcAoMuqcyGJ9P1yzcddYw9SZUjkoj1dtCFBbGV4YW5kZXIgTW90aW4gPG1h dkBmcmVlYnNkLm9yZz6IaQQTEQIAKQIbIwUJCWYBgAYLCQgHAwIEFQIIAwQWAgMB Ah4BAheABQJGKL0sAhkBAAoJENJAoJ4Fd7rKJFoAoNe3pxIgHjKb+mjocFUrzkAn O5pkAKClil44JNQKWePpy+xNRNG8ko5487kCDQRGKLgSEAgA8Y2EXU8EbnSyZ5AL RyHn7axmxr7p2qzEkDI8EidMlJOxfyCj7b3t+5QbIbieb/pnDMGuXPc+7lcK7Owf pu9DTvWPdLRjvXNFJbuRH5mXVUdHS3j7GnAqqgb8ydTbUrKRwY2BijJaU8imXibc +ujXgO/ZVrvYpiXtZx38cwfoIDA+LFpQlLBUUkV7GRpBYcrkrVEGMrLBAPht+l71 Y/IBMht4z5VBFMxJ13TogMseOKKDrRVsxmMqbBjr/S23pVZqpjQYGwkNo96+JxeD pQGlbbbRftiuObXEZsk4yGp56jXTieZLUlq9L1ELkzHIjPhNoeudx/tdtgZPSwsp I6M7SwADBQgA2eUilFtIbEsAizp1Jd88J+2Z/dZ3M0LK7rqZuBVQdeJZbpYBfL9v +JEbjw1e8HV2goYtwkVgfP3tJX/xqzmwIZxd3wLLzDucPrtmQJfDDcD3fDBVvCeZ Z+EjaGp8/rIE/h0LCk9XXHjK+JOZaKt8tsCtkpp5nbAMaPRBrCm9sGB9Oyt0rrU2 /ryvMIf4W602iKDka5oUl1fhNP7R2lnkLRK8OPEPdboVxOrzzdBB8XN67B3kzDRt +nBHqFZNn6GafIYpvoJS1jqAskug2IjmEUIxDxEuD2EhIiayLAuwmGnR8d3iPVcJ /KF/URy/Y7PBtkE2amogd725uRTxXOXAA4hPBBgRAgAPBQJGKLgSAhsMBQkJZgGA AAoJENJAoJ4Fd7rKMlYAoNZbw8I7WBascnxVyObkqE5rLKxJAJ46TGlVlvBS+PXT L4EaOMcBYbTvTg== =ZML6 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F2CF7DAE 2008-09-02 [expires: 2010-09-02] Key fingerprint = 0532 A900 286D DAFD 099D 394D 231B AF20 F2CF 7DAE uid Felippe de Meirelles Motta (FreeBSD Ports Committer) <[email protected]> sub 2048g/38E8EEF3 2008-09-02 [expires: 2010-09-02]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEi8sBIRBADJt1SLW/mX5HmXKgbG72GXupRR8V+lDbtquXx6dJ+3E62S9xFx KehNrX8YcYnp+dcuHktXxQPJ/BAzOnvPdHKgzdXMARO5ApOfQ2VDgZgAcs0dVEnn LILvxiwQ7YlyJjOTJwbcHBpsTdolhNooi2FEE3N5ShSMRlPoH3GXF1qdnwCgqV/g IlQTCLudKrApFqNIbDCrPh8D/AmN2MdnlnIk6d7zUgLWuu3coohYIYOxaZ+ovKDb S8siSZ5uaEZOhWHVLVGYXTmzLrCK7TUBKdK1sW7YrYKQdPjhYnYXrwS4AaWupWwX K+fZWTaZsJiGLbOIrszAd2hRHUgQ5VeeoM0eD9eyAWHp5SVi9YcixMUNbn5ERPu4 ppK2A/sHynDjmkXHXzuNwN8dwcUjTMTVt9bxGrLVJHcJUsK527dv6/UG1CfZYnzT nca4GNO42/FBjQtyJaTQd76aJQ/PSU88MMGuMUh9LYl9rRdMQKn4FXm/6t7NZOqx qvXzEC8jFw1BOvxhmykSEZDlwZFwQngDre9Ux68Eu6Nut554yrRIRmVsaXBwZSBk ZSBNZWlyZWxsZXMgTW90dGEgKEZyZWVCU0QgUG9ydHMgQ29tbWl0dGVyKSA8bGlw cGVARnJlZUJTRC5vcmc+iGYEExECACYFAki8sBICGwMFCQPCZwAGCwkIBwMCBBUC CAMEFgIDAQIeAQIXgAAKCRAjG68g8s99rlhsAJwNTFc1W0eu3Em6+RjD9WZWtX/1 0QCfb2riDssKYX42D7HhVjDvTe1BtXq5Ag0ESLywEhAIAOQrj0PRt1WOC3Gh1njF KDacQl1aJ5f52yaz0FLpu7igTRS/8ET1+uHvIwzcSbbG/4xWqPwirMxpNZwpFMzX 9l8bURIX5szmJ+bEl4VH+La1p+w31YswBn0PDTSYtWhaIn1LMXED4e2Kg/wUCpLT M8htMa1pg0F2ZcmvbNZFuXMd3BBAkvWrRJTYuDXy8HHnbALjUd40laUDT3Wi6FRB W3HFj5lIiEjnJG52iTSxWVEkoChy7l/qDQ0zsguCCZZvLfdQz2DAFscjX/HltuUK s/gkzVR4jZDVMQPqCATuCvDYHrDWJnfU/R317Eg2kp2tJrNibrnFX+ciISSuq1+t UmMAAwUH/1XXvFtLACv8NFLVFVWM9wA70ZTLjZEEfewbWRYgT1yvOChn7H2ef3mn I7/WoLF3ntm8Qcw6TcSrzVbZjgdWpS65Wc5YZn1rMb6nP419kjDQPjvB8RUA1g9v 7LuOv8qeqqo1/mT6PIh8ZnhWR42ei8l3QcbyGJMQGPHyUZk84qbd1TI9gO5GjWHZ LIi80DPb0cpazMCIgYjrqZsOoq4XcYJZah85Eu9jdqbx8aDNnag4NeO+9jhy1msg xC7WuLYPctfFZ3q5ZwdvvtfluyeKjqY5mzkAuXKbtK66yMLugU4NnR1IeS7oI212 NF2FmCRAkCMB26n8sd7xavpd9uF+6ciITwQYEQIADwUCSLywEgIbDAUJA8JnAAAK CRAjG68g8s99rkWyAJ9b53BhFJ6+49cr0IIZLxVBGlWNnACfX4O3OOhx8kClRzsH 1wm6VFjn7qg= =q3W+ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/583443A9 1995-03-31 Rich Murphey <[email protected]> Key fingerprint = AF A0 60 C4 84 D6 0C 73 D1 EF C0 E9 9D 21 DB E4
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAy97V+MAAAEEALiNM3FCwm3qrCe81E20UOSlNclOWfZHNAyOyj1ahHeINvo1 FBF2Gd5Lbj0y8SLMno5yJ6P4F4r+x3jwHZrzAIwMs/lxDXRtB0VeVWnlj6a3Rezs wbfaTeSVyh5JohEcKdoYiMG5wjATOwK/NAwIPthB1RzRjnEeer3HI3ZYNEOpAAUR tCRSaWNoIE11cnBoZXkgPHJpY2hAbGFtcHJleS51dG1iLmVkdT6JAJUDBRAve15W vccjdlg0Q6kBAZTZBACcNd/LiVnMFURPrO4pVRn1sVQeokVX7izeWQ7siE31Iy7g Sb97WRLEYDi686osaGfsuKNA87Rm+q5F+jxeUV4w4szoqp60gGvCbD0KCB2hWraP /2s2qdVAxhfcoTin/Qp1ZWvXxFF7imGA/IjYIfB42VkaRYu6BwLEm3YAGfGcSw== =QoiM -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/9FD9E1EE 2000-03-21 Akinori MUSHA <[email protected]> Key fingerprint = 081D 099C 1705 861D 4B70 B04A 920B EFC7 9FD9 E1EE uid Akinori MUSHA <[email protected]> uid Akinori MUSHA <[email protected]> uid Akinori MUSHA <[email protected]> sub 1024g/71BA9D45 2000-03-21
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDjXWqERBACDCxgN9+yMfpm3yvkYp+P4Uw6xxPdcZ9RvnTRkBX9zXaRgSPmM zeZ63LpB99uVphVZrv/EdlyTf+cRdz6VXXRcTBloA/FsyY86IluBnWCH054WyXzr 7az5WB9yDbPnlwcSL919bq0UqTuQUlQswdQAoDQG5LNNZNa0T01ydYtNlwCg3weS I/nEJrGCXGy2wrjg8LiwQ28D/Re2JHQPTYqDEZl6wj5U83wT55ChnTrjPRbGmr/C UdJP6CZQg6+DXYGYulcp3oL4btcdFDRFglJzmQNkUYmqiVC20SMVKUctrOCAI60P 7VE40UtXz9EounPSRQQ1lSdMNeRwrZ9o7IcrSj0EBw8lw3d2WxyM2Rs2crZWfOI2 mu8dA/9LbmAw5sLk5Lo5i41nAWP76pyuGxSia6zMRdML6ynoC5kmyrI9TwW5LNU/ Lsq1Ru2XSA+CwSBpTt0vdwS88dDwPGxRuUHhWVpa1M5t7K7uYODB1cD5AyNoNnR/ lHpxfPZOJNdA3OPgfssN9K+PIuhbBU5xONCoAcdC9TEqSezfUrQfQWtpbm9yaSBN VVNIQSA8a251QEZyZWVCU0Qub3JnPohWBBMRAgAWBQI411qhBAsKBAMDFQMCAxYC AQIXgAAKCRCSC+/Hn9nh7n1bAJ4vkEQX0JkcYgltt0Vv5qkS3bGqNgCguxfhuEzZ vBzpAW9/XdstjA/DSPS0HUFraW5vcmkgTVVTSEEgPGtudUBhbmQub3IuanA+iFYE ExECABYFAjnly3oECwoEAwMVAwIDFgIBAheAAAoJEJIL78ef2eHu7RoAoKn5Lw0y C+/lju5+pV0WI5dmxTzxAKDJRtsRSTBcJ7ohvzztxZqyjfSK+bQgQWtpbm9yaSBN VVNIQSA8a251QGlkYWVtb25zLm9yZz6IVgQTEQIAFgUCOZGiowQLCgQDAxUDAgMW AgECF4AACgkQkgvvx5/Z4e4t+ACgnr8RmYw81/oC7MKS2CSoFb9cg6sAnjKay6ho 14iMG+YcFNbjxwGvSE9EtCFBa2lub3JpIE1VU0hBIDxrbnVAcnVieS1sYW5nLm9y Zz6IVgQTEQIAFgUCOeXLZwQLCgQDAxUDAgMWAgECF4AACgkQkgvvx5/Z4e5+zQCf Z/09J5FOgAqw3UrTTAzR6QWicG0AoJdlBcdUltEO4WV+q3FRlw4RVnA8uQENBDjX WqwQBAC09OxAmKbGn9FETdMA/5abvOY7JgNcFhQutEVnJ90mF/npBucWkCRbOr83 t+NB0h5Te+lV/c+mjPyOemfWdAK4R9zQsat+ZqATv4Vgiy0UbJ/5TPfSraNK+QkX nxcDrhpcJXZhX6VYzbWdRSn8xSZzPT19qq0BFafz9UhZKXnLDwAEDQP/dpZe0jWw rED/Kbyr8CDoEKuun/5gPi5xmNz9iJlyvcsdOgok7yen0HHWgdaZAGX3GzjpB5gA aISX/kK66s+NeM1XQ7YXpcI8naf0jPa6N3SNWjLf3xPxLbMk0SyaGnrnSQNikk/H Bk2Nqyn0kcEaaBbdfrgkuuQWPnBDrq2EdOOIRgQYEQIABgUCONdarAAKCRCSC+/H n9nh7oxxAKC+gMyhZmSZdTvT3a2Y0RDOx5kRLACeP3JEvGZAZuo1sJeEw504+jr8 1Xo= =M+Al -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/419C776C 2000-11-28 Thomas Moestl <[email protected]> Key fingerprint = 1C97 A604 2BD0 E492 51D0 9C0F 1FE6 4F1D 419C 776C uid Thomas Moestl <[email protected]> uid Thomas Moestl <[email protected]> sub 2048g/ECE63CE6 2000-11-28
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDoj/ekRBACnO84k2i5lLHZKscyV8tjQSkkr26hasdbc/uyV7HTiPhMUjEAz Pamk+bDmy/Ls8k0SJ1l0vILBBd31G5VYtKonIrgp4vZ9gV0fBdCyFDXb8bh11Pk3 pEZiG9vJevq40OPvsThLKHCLNhZ5zLPp6gd0IHwRJ0LU94pouFXd33MzrwCg4gTJ K00Dw0w1hFtUsq6WjNC+1B8D/2WiEuzBMnO6gz0p/eJ1eZ7mvrBXLQZ0u5vJ3eg2 CCPrtS1ZITq3ICPDN6biEiMgtRmlYn/VYvDQqxwNE0X2yMfB/9sdah45zma9EeVn Iy8meaCFDLhm4aIYc1foUuz3WbCNlJFY5xYPXCMXLkC65xdybHKng5TXh6NOOWf3 PfCWBACPMotTRKttAuw5YcZE5VDrSXPYHu/jm2CpIVmrac7+kDj9pGH9sB7BdUxw vczqtAT0jk7MrT+u3FH9wBtEFTXl7ksGTmDOFWJgYn3ZOEaVaX/OqD89UNhrOA2v ZOaaoKMYxK/pszPdr1Ghd6BQCmYKtLBlFYiTDRM5UMVHTqN7VrQfVGhvbWFzIE1v ZXN0bCA8dG1vZXN0bEBnbXgubmV0PohXBBMRAgAXBQI6I/3pBQsHCgMEAxUDAgMW AgECF4AACgkQH+ZPHUGcd2xMLwCfdEkPZVBgEmYnlyOKfyTSslMhud0AoKDKZNXA huNslb4KF8yKWBNRwfPStCFUaG9tYXMgTW9lc3RsIDx0Lm1vZXN0bEB0dS1icy5k ZT6IVwQTEQIAFwUCOo01FgULBwoDBAMVAwIDFgIBAheAAAoJEB/mTx1BnHdsOfMA n1xd4f7iAe6id42DLg4W3fibsCwsAJ0cT2lf08RhHkT+zLVoubyIDoY6ILQfVGhv bWFzIE1vZXN0bCA8dG1tQEZyZWVCU0Qub3JnPohXBBMRAgAXBQI6pO9pBQsHCgME AxUDAgMWAgECF4AACgkQH+ZPHUGcd2z+7gCdF5fq/lebn3/gp40O8xP/J0XFbiIA oKJP186L04qpSNamc/qG3gs7h3DGuQINBDoj/wkQCACl8M8ObSTJaOY4SgoQkKgB CkJJP5ScUpfYV9w3dxKL/77cyfghfYsnAWuA9yXJcjA0F+u+jRf8gS7OaHD9H9Mm pMGq54Aa0KUQaDbL/Jzf5zrKS/RASHzl1vYXuZB1OIzPfeAIx9u3UaziVEGXJha3 1KgTur+TU+F94ZFTi8uApq2VoNT6sFi/V2x79bxlLFr9M9yD/0+kMZKovWRODy6T gWJzzcdd//dkvKp22tNf6C2wq8Bu60cWR81+awgG2otgZjCPUs2Bwhqa5opeUqGn J+f+PXo6+m2UF21m1vLARENuumu6SXf3XqGIUiQbT6jCdJORzwaxeCiMfu0qNnUX AAQLB/9u9gZN0N0r21ZjM6ZRmDC/REouCdYHEj49+f9g/xLXCfacpWVcrK9lIrcg hxRE2mQ/nlQLeHroC3Dp1AfThKSPFX3PRD/9CcRu480imT84ljf+6vonAZ20Edm5 vVO+UoJMZQ2G+rWRRf4bDfwFoyDw3DsNmUL4yH8m2RpTxXn0pQtD2riJD8CBCXEP K95TYT4MomJ7Szg7O5/QLngfw0q6QdKRm1vEIP7r6t+UbVNp9+5g9qvz4aqm3beY pw1QCDHcqpDITnlTxTdV2SgNpF8JPg7joaOa36AxWwRzfLFyzyw/JGQE8RwJa8BN iTu0IrKuiF1biRxqiYO887GBA/8QiEYEGBECAAYFAjoj/wkACgkQH+ZPHUGcd2xN TACgkS0AGqqd2nLtWhpbE72tD660tv8AoI24cRkUa2op32mti5zfLLMsM4AZ =76WN -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/CE356B59 2000-02-19 Masafumi NAKANE <[email protected]> Key fingerprint = EB40 BCAB 4CE5 0764 9942 378C 9596 159E CE35 6B59 uid Masafumi NAKANE <[email protected]> uid Masafumi NAKANE <[email protected]> uid Masafumi NAKANE <[email protected]> sub 1024g/FA9BD48B 2000-02-19
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.2.2 (FreeBSD) mQGiBDiuMYURBACEgL3d4mL0pojugj8TZFEQef+MKkXB3lazrqV2ahgWqt6K24qr 5fZrGkI8vxmYR4VkI1eLfe0Q4LoBZifL5nJYEvMvWPmdLuYjp4iwjgBdzLnwr59+ k8+T/fohGDOqx45voCdq68Jmxg283zFGQ4FChMP3ZMlOPmFRIp01C84xxwCguNFG BVPeuM0y7JH0ucRygUqc4acD/jfe/UEjGBWxOCfZYOnXEp4NXWis3xRyUDO3cuoG 8M8MEmg0dX0onFuNU5yrEBFtzPw2GO6DMM8h5hJXdSWkiyusn05PGk/jVSP9/MD5 TYyqKL1tG/fKUgtevZSi7o1x/N0bgIBqmzd30Cqx29p7juVV+SBcKCRT1qloz6fc a5B6A/wJD5n3HOAStsWpZ6To/Apdb4A3PD4+ePfQxSICsHCFg/M04FkrG48So2qc 7dSq6UH3xLsoiRIUonwCQsT+PaQQMrZNKjfal9xlEFfw1TV/squ+oNE8E24Lkzxt 8Kkn86Ec5uiUlRulSMG9HJuWM+9Qu7TF76FWP8llVp6ELkYCGrQhTWFzYWZ1bWkg TkFLQU5FIDxtYXhARnJlZUJTRC5vcmc+iFcEExECABcFAjv4RDQFCwcKAwQDFQMC AxYCAQIXgAAKCRCVlhWezjVrWUEIAKCgwVSawCg1Lzrbf8uZdMAfeOWFXQCcD7EF tsdhbEV62AOUeQQWPr9de1O0J01hc2FmdW1pIE5BS0FORSA8bWF4QGFjY2Vzc2li aWxpdHkub3JnPohXBBMRAgAXBQI7+ERfBQsHCgMEAxUDAgMWAgECF4AACgkQlZYV ns41a1lUuwCgsIhWJdtPBebkV6w+NQ/8jlkJgrwAnj9lZkiTAgl1E/vcF7yPbY7f HlHetCBNYXNhZnVtaSBOQUtBTkUgPGtkNXBkaUBxc2wubmV0PohXBBMRAgAXBQI7 +ESBBQsHCgMEAxUDAgMWAgECF4AACgkQlZYVns41a1nv1ACggYgtKhaprmMs30oz yoC0NatFJ44AoI0XSPh2G9zHEjF8AyYAe6sVCLqvtCBNYXNhZnVtaSBOQUtBTkUg PG1heEB3aWRlLmFkLmpwPohXBBMRAgAXBQI7+EljBQsHCgMEAxUDAgMWAgECF4AA CgkQlZYVns41a1lYRwCcC8l4PdrwHKNrZlTW6vod6kYgR3YAni8iLUZW5Se6nTH9 WuN0XYPpZRG5uQENBDiuMdYQBADVzBBn5+1UQVCLS51y6eCD3TidT/uJAr+eeiWZ IbTmXrltNm5rGs7OT9QYNLhCFFPYKJxa9hFbrGpgserEFnqBfxcbMLa/wyIm9m/l MI+NNCAU4IpgDWtgjf1kjzwnJPwH69YzcqS2jlEKIjkCrEa/Bpr1Nvo4aLvqlTR8 tJh+1wAECwP/YBMEMx/zgTvS3Jtji6nPceRe8icGRHb4SD7MVF/WxYu5VK7wlmuw 9I9WXnHyYaL4c6Q49FAvwhkppByqJFL0txyJ8+nNa6H5mit8m6dcsCMG3NzyvxBP 082h/MWbJn3Xdg89lp4UG3UP8sV1oWyIchd8rqxFk/EVB7fVQWNz/gKIRgQYEQIA BgUCOK4x1gAKCRCVlhWezjVrWUlcAJ467I5lFNlkwcENe5vND+DPaWyreQCfddOu 6Va2/bf7Ln4TKyl17uRro7Y= =VmY5 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F28B4069 2009-02-09 Key fingerprint = 3FE4 99A9 6F41 8161 4F5F 240C 8615 A60C F28B 4069 uid Maho NAKATA (NAKATA's FreeBSD.org alias) <[email protected]> sub 2048g/6B49098E 2009-02-09
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEmPtPkRBADEcSQQGME+Df6I9jnjUBNMxvX8aMAH0+SKJEn0xTZvu9WLQmJv Bx1Hh6AN8fD7OONFBYGsDAxbbgFnwxc/KPBctXHUxoTE3lRTFRwYJJKIKvrDhFjr qDWwLJ9TsUn/pDsBflPFe57okBlPgSywTLGLuurOaT7oda6Z2K0FOiALVwCgn/b2 7R19gm0uKjzsEPejafW6lZMD+wQK4qETffrdqRoVRnzzpTa+xa60kQxxsIeibffy dovqH7HIWeqiqDwls17zmbMc7auNliyN7VJ1bQ2C5SkojMUqgEsVle/8gfe0cWhS 2jJ8A3Xg+/IzYwj+TtlWqUkzx/b1Ck8v/9aRmLtTNo9OdC8H9Nu1onF3Cp0WqsiN gwNHA/4+8w5D5gouNWfuYkkzoQQ2jIFJ4zhe0GCb2MIrqKrf0N40NOcYFLi4eJ8F W1DAdQbQjfMMlYAknm7MBpnsagTqjS9MniPVygYUUre/xMx0tszvWdGdRSjEY/5U AXoCevBci0meKTm5ZSDb2RPOLezF/zOV82IY3T+OKXTHcLSeubQ7TWFobyBOQUtB VEEgKE5BS0FUQSdzIEZyZWVCU0Qub3JnIGFsaWFzKSA8bWFob0BGcmVlQlNELm9y Zz6IYAQTEQIAIAUCSY+0+QIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEIYV pgzyi0Bpf4UAnjOqrSHlb4NdW+ulVFu3o8W1hbTKAJwIdn91S2W9V3ueKsbFqq62 8dPYsbkCDQRJj7T5EAgAuaHr5IuEXaxoUcoZryGZweRs+G2Oh+jsMIvMABVGMZJ1 iov7vSypm1EF6/cO3O+rn+Zcpuf4XKPP3TK1oKWLIYRgdkvTWwzVc/PGWRHdr6/S fo1B8/jr9tWW50p+s+KZoMPV/Rdz84AN8bNZVAMxNWXooYrGMxMvEDg3rX8KZW57 25KF+GlYYBoIXxatMYGlZKz2lcaeD7Mf9EFs9jtpyZ2lhlXjWu3NZBdf4ClzWt/C uQI2mM2oEX6oZEDCgWvGoIPKzMruI/lAPi8I4Q9A3fH7azEz/BHW6yqLcXfmUrMe jsGTS/ovpV/dyxqNzsVpt203ZBxSSkSjOOMO4OzBOwADBQf+LVc888G6GxeCJGxp X+uACx6ziuaGO2AIvfUWN2KlDEpiCHwKf1L4FBE6mKm2l9ZloNyisnL8nvC/lmes whiTQkiVgB014EDhR7IoljZQJwpJqWC6HCwED08In2O/fI4JX3XiPbUzYSmQSpd0 tMMBVBwkB3m8SnTaF7cnYrZVGL2oCrBxfbYYhxDtxmGnD3q1/me7dixUJLbEHSmj wXvORtzMuADmNuz3RkkEKrtHXgqtqYluZwb3VNlRa9T/MxMYMfMA9V8IYw4gQkM0 xEM4UOUuweNyXRUSyuvcLQJthhWiw+Yfi9ATzdbnbwh1rwwVOoIhcM4QHBgPhnir vrn/k4hJBBgRAgAJBQJJj7T5AhsMAAoJEIYVpgzyi0BpqXQAnjkUgOmypg8bF5kd ZDVC/M0s8sUfAJwIJuJHTepRSP6qVkZKiXF5TRMt2A== =Rtch -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/E0788E46 2000-12-28 Yoichi NAKAYAMA <[email protected]> Key fingerprint = 1550 2662 46B3 096C 0460 BC03 800D 0C8A E078 8E46 uid Yoichi NAKAYAMA <[email protected]> uid Yoichi NAKAYAMA <[email protected]> sub 1024g/B987A394 2000-12-28
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (GNU/Linux) Comment: KUHASIKU WA http://www.gnupg.org/ WO GORANKUDASAI mQGiBDpK8uIRBACY5SwFQXiqzDlO1k/syoFoiFIFl/Dp+QmwK2oovIvlBVo/1gbx EhXrKRrfC67KSxxdUsgN290v/VVTmq8Opy1/RF+RAdxM3JrUfkcm5+IBWbSUfXFP i8OXBVgh7wNENVtwwD52F+0CFIWZXkClaif4DGkf38V6LJ6hBIycxuNDQwCggXTT Kj5SP2hFC0ueyQtPDoJEgbED/0bPL9R08io82IQqksOR9IUy0OdFJkLVWLnollEY LGjXa/AHgE8L8oWU/2eF1WM4JrtVRdcKe0Ja2e9LuH6IonGAdwqUeeAOwA/RdGj3 63EglH5ugv4rZZKWZ3/piuNXvtq0bhAfl6zBHi5iUB4bgPVoVJGn3VyykPWxdqfX sT5+A/wIml11cFMogN3RXy/2Y3JRWeBtUCfdoRjeQPgK8++krm2Pr/AtHgcqNSjI W0slX4cLou2TEhV3BHb/4npsdaY0BzYgL7V1YggCv0Pu1s2D53Nzi30V66SRP0BZ OlNTA88WdMfoF3ttb04swSenG9X8dbpyYEdlvxNbbKKbUiBORbQxWW9pY2hpIE5B S0FZQU1BIDx5b2ljaGlAZWtlbi5waHlzLm5hZ295YS11LmFjLmpwPohXBBMRAgAX BQI6SvLiBQsHCgMEAxUDAgMWAgECF4AACgkQgA0MiuB4jkZz3wCeIi857V2zyRA7 gRVsx+DcoCLeC3YAn2G3gFd+v14iZHXrPaqpd1gSjjayiEYEEhECAAYFAj2pty0A CgkQFwU5DuZsm7CchQCfdD/itI8d/uhmH9A0upJYYoYS46YAoOAfpFKvAGe/vBpw dy40SxBG/qELtCRZb2ljaGkgTkFLQVlBTUEgPHlvaWNoaUBGcmVlQlNELm9yZz6I VwQTEQIAFwUCPai4HwULBwoDBAMVAwIDFgIBAheAAAoJEIANDIrgeI5GKx0An1kh KzDAfR7Fzba/V7DHq2BRLcRQAJ9nZFgBncerxFMYAanwJruIYtPnJYhGBBIRAgAG BQI9qbcxAAoJEBcFOQ7mbJuwe4kAn1E2VVFpLajGFYgipCmMgpxRXPmxAKCUa/ee BEW5LPNf8xhaeIGlAtPZm7Q0WW9pY2hpIE5BS0FZQU1BIDx5b2ljaGlAYXNzaXN0 Lm1lZGlhLm5hZ295YS11LmFjLmpwPohXBBMRAgAXBQI9qLhMBQsHCgMEAxUDAgMW AgECF4AACgkQgA0MiuB4jkYrnQCfUgkHO/ioUTHeBtYJHGeL9qthlnMAnikYzk6K gDV8cHI/ETcNoh542Q6piEYEEhECAAYFAj2ptzEACgkQFwU5DuZsm7A/JgCgvX8u hjU7WPofTfM2d11+j+ywHm4AnRS8iRNMqbP9+crcNzCRSQ7OZFqluQENBDpK8vEQ BAClmz0m/wuG01nst/7X+riyNgZ3j3oRurb9Fg2pb7wkci6nlhzCHTcFNCZiY1nS Vp+/3tRkC7HQPz3zhYo3ieCf12NUweJ8jhbZubp1fYY9ubKoj12I+LXTfZf3kA5G UD/n1nkAqxH2yP3eVz1BpKUc+Lz+5USiDo+XfrvfxQcZHwADBQP9GejakrIdVKcA /4UTWnMh8HK2b7tDLwLKyJg/8lagBkIAH5tPpCXi1qXuvHe+T9SjbdwW/lyxSARV FAz1ejp4QEWsAGQ/pchjb+S+iYvNq0VfzkZPqFFllLMaQc9mo6blgGgSEqLNpba6 gDmVTJZ5jAhVxFBhRPwchSdPP3ewVRWIRgQYEQIABgUCOkry8QAKCRCADQyK4HiO RpwtAJ0alZHYWdBCXaPF9G9HCl/T40wzJQCdF5K4aEEsIG1P0WmNjbY4PEAVndc= =NZ/b -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/8E53F00E 2007-04-13 Key fingerprint = DD8F 91B0 12D9 6237 42D9 DBE1 AFC8 CDE9 8E53 F00E uid Edward Tomasz Napierala <[email protected]> sub 2048g/7C1F5D67 2007-04-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEYfTV8RBADcVRh6fWX1XI43cTrdJBctCOxf9jZ6eedmhajkpMRhg7b0JPPL cYL6H1x1xqKbXtKxWE+BzQfdDJNJhwjQIwaXityWHihnkw5XBCRMuCGrUuaW/pPQ 31EX1Am9d8k+ckUK8tPMNuWM8+ZYjXTJppLg20pIPBRwvmRR/hrHDhMvbwCglDGC ZfTHYkv36MFnkPHJH4iaQIkEAKoy+bcyOiJK0iuAx5KeF3CxP53Nd4sbsHKcbibP OsWJKKUHPlVTts6bUvM6RH+zUHOeWpXmgNvZTsvmoLU/E0I80BN5ngdOwV7oqeAk V03iltsBGIeBv5B0xxYDyQBuo52LV5CGZ7F65o1jGF8LWfZbtPh02gTmhYymmLeV QryDA/0WbmKavL5Dh7L4Ugz1JVIC6miD399IsLV+XewJjcaXnnngIplz0ZjK9hHx kuG4w3pi450z6gMTmpY1IPC7R158j/fLhygYLhB0sffXaGs50nizBlBoZNR/RZRJ 7Ik1Q1E4dV5kVhgqBs6qPCfAdVMKGTWpM3xF2uyFT5xbuVPxIbQrRWR3YXJkIFRv bWFzeiBOYXBpZXJhbGEgPHRyYXN6QEZyZWVCU0Qub3JnPohgBBMRAgAgBQJGH01f AhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQr8jN6Y5T8A7L7wCfa7dxDhHm WYOcaZ3PiBCxbMyMeW4An2regIquPmK4ZyrJkfXGd7BmmgGKuQINBEYfTV8QCACv /cPnRLjvnYJdozvbzoBqC4m2sAmBClDV9cRtIGXu//ULZ0CnDmEByfp7W2Aqlm4a +WnDBlbKaP4td0uwvly3m2hNH3DS/7/aBaDYhPUeetmIP3GZrelGlQHqe1ldJuwD KEiR0ANagAikuSiO8Fv76YY2dFmUSWh6mNd6+/F6hYahByJbDXrsYNSMI7BtpH/C fPaSew66982uu86IGIZPREfKSYouLuuHPUwrGRbcwyeIL5y/0i6Eyxi3JuPHCYSa a0jX5VQ8Gn3P3SukTdK+rWaJQMlzjbdaZknB/GeRDEc6ND3eqdmQa/PdnkGVwHeI S17IutKHDCsxDqSJgak7AAMGCACJtwmr70SqnOxtHugDB0G4tAEN+poeol9zfEnE A1nZImvDNLUoX11YZRLHCc9nz2V7HIzTacNL8ue5DenmtSs72S3zHM/DnIhXjx8r hBFrSW/DdJB80LLcC/NhRcl3U6sof4nzYuipkgr7evAeoZqWpHiYcuag0ZRRH5Jv 4Yh3R8zFYAg2NSKs2Q3CCX4c0vs1boZ1f2x4QQhxTpsDkjJxGPJ8OEAR7W5BjDOY KZBL9+02bzJKnOcbrtRkbylGZAQCxX9DoZDGHSCqaUBZMJZzWauW6xcwd4s91pMQ MVG1u5WHvZlOEo1Cg3Y9QSyehMKkcLwyuBj2zP+ijlkIBuFhiEkEGBECAAkFAkYf TV8CGwwACgkQr8jN6Y5T8A6VnwCfZdSh5TaDbb0wjcyUkVYAWZIo4n0AoJOfSvnF MeOHsJ51PEblZGwvjW0k =hc/r -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/FF6916B2 2008-04-09 Key fingerprint = 6540 B47C 54AA 3EBA B23B 58AC 51A6 8580 FF69 16B2 uid David Naylor <[email protected]> uid David Naylor <[email protected]> sub 4096g/77FA885C 2008-04-09
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEf9J+oRBACuI27aa4Vrp/GkerkQPTMlag96B5Kyi4rxtz2rVyHuR0eROYEb L8h1YxtfQhJpFc1FeCO2URZxwUeQoIdHhosIOEF5NQfH9ach7HN3uAo+CgXE8O2w NW4fyhnCchCvQ+1QZ5bD4fAdHLuGbOIQYZHy5rtvZXY6O1iIgK0VfCzJJwCgj12j VqgqLxRsNoqA+aqmyDeDJ7UD/jMduH2sxw5NPkCRK/sAXVd5fvdNVqJbHifE9gnh h+qF6xXUAe8wEP+OPoxj8oOrRjnUIpuw0wAhuLi3OAY07HoAZGn86I+u2puwL9aF ptmw+R5t4CXGgzoWJy297TcXNK+AeOULo58MxsetS9oH0daLuhmCYW939ADWYSZK SrQEA/sFxpY1EqrIrIiAmr035NwkKJQTU6qISudJtHrejMYuTtzBb8sUKwEFAnOd Advg6OfXlNFkfBFi0nTW5J7Jv5BZngLkP6+Pog524kmKWHzxJXrCYhBTknGOde4t O1ZyBXuV/Pc0BnKdmS3y06mp9/f7+n0SDPS299W/m0+I3ZjcWLQnRGF2aWQgTmF5 bG9yIDxuYXlsb3IuYi5kYXZpZEBnbWFpbC5jb20+iGAEExECACAFAkf9J+oCGyMG CwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRBRpoWA/2kWskfcAKCNC1yYmCXCTJjX p2KtstdaP5qxKACfd8xTJZ4M3rlsylHi4OSjAr073Lu0HkRhdmlkIE5heWxvciA8 ZGJuQGZyZWVic2Qub3JnPohiBBMRAgAiBQJQ8mYdAhsjBgsJCAcDAgYVCAIJCgsE FgIDAQIeAQIXgAAKCRBRpoWA/2kWsotrAJ4z49iqbPtwpgO6ejJECj49LeMinACf bGofnCJ8e4cL5OoL7eFW5ancTxu5BA0ER/0n/hAQAPH8yN5SncUXBzP8WdTsLQbN +eGCGh65e8JYt1ZomY7LQYnUS5paZ7exD3YRcEdLvo5i2N7ntvBBMad7Z00k61mQ 9HxEp9AUV4tNjAcELdUNTzYbx425UtwtcJCCrYOw1QGcTGuvEy3pGWOxTPJul8kb strYIVXoslbH8UZHpf7tmLCTV6e/Ta65WeVKVVcxC+PORIRFIq+Ft6ynJIIXIkK1 LGn68yV05mlzWhohZBixkMr4Kolh6hwUZNZvfc3aAAc0z0FI+YqmOgX2SifVhAOe niA4fI8u0txDwhARATIp5ES8epCXvvI06EplVJUmpeX1nXs1GegOrFJtHjuNkH7I 9irNIQzXouR+PBE0EhDgEkGQ7hM6xAk8khnoQUZxYfytaZvpRGvXupFPWAbhY2EK Ag4W/k5UMz4zS/gBHOcWUqOC+YRrcfB/9CfFz7/p2YrCPXeQD92p54nfJwtGIEKi kvTd+4Qg0qlUXxdKZAoW1p+8lO9Z2UeypmmbR/ixqQzqDJPyt+mMaQxom8trdi82 Q5D+CDoRHsDtdCmeocLhjuNgqEfPTHYBvnkD7daEyJUlFh6Ir/s31bQq/vy4JZuo 3QUwn96upPvYdJ6Ova9+AvQejdVgECi6L4re8unX81K0Y7guTR6R67n1mvhvA2P6 sXe/m2mJU4Qzx6FV6iIrAAMFEADafXKtPRTuPNSXx3UIEfA+eN/zgdeli8wgL/I5 XGYt9N61Yk+CzayNGgdd0dW/wEKjeaARylzh4Fnt8flciXluarVvhbTKZ2H3cGEk fy8K6+ciQZWc9xXyIalitS/0IBpLEqH1fysKZkdsEaqabPrft/233WY0NT8P/dXG p6ZIrDLS2QHvzu6+jiymE95eN6sXxN211S4kk9ylsq2eRTNTLIvG4SEmb6dsZ/XH fQ2vu5B83DI1K/tZzOdUeUnJ/LrmknHPNOyMoFzjr35m6avuQNi6W5DsqjSnowfh 7Q59ycRYW2Thqenigukjwka3vtDgBQmL95q1ChL0rrU+ilAmFZ1Hql+Fy5K3a0Ez QtLg+0Up9EqUsdBU/+agIeR6abS1jk4ZX73sWgZhoyy/J2TtUNDXkyu8FM1LwMbZ L9F2fsAXUKzP+7Ec8t72Y1oCGdnDhAVZ6fP331E860urCU7GVew/B4mP8ntL9L0O kR5LhDHRoe7CguqFuP2fK0mMeD0FOzCJax5jfeFlT8DVwyZTcvifPUd6rIXuahLZ Mxdj8jc0aiwSB0028D24i4NfstKte/CqXNUwFbfvz+gGyHjJxvi5C7zxyHqwNIhU oByeBFBpaLf5eQYAYbTOxN5GqM5X8EZsFiFNTS+4iq+SlJogINVjiYSNaBaK0RDl XBsV7IhJBBgRAgAJBQJH/Sf+AhsMAAoJEFGmhYD/aRay0pIAnRKVCvAwdHYoVWQL zVPFqfdKGvieAKCEVFYc/8pBcdFH6X/+68UlQbSqrg== =0MGk -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/D004116C 2003-08-14 Alexander Nedotsukov <[email protected]> Key fingerprint = 35E2 5020 55FC 2071 4ADD 1A4A 86B6 8A5D D004 116C sub 1024g/1CCA8D46 2003-08-14
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD87tOARBACkfv0/19ar/kUNsj2vL+APjo/cx0A0bubEmaPhwNuLOjtafdNm /pUULYi28lDVDxQJ8UM1voqrCcue+finCyy+k2L0nR37tlUA4t/+GH4gq4y2xL7S o/D5DqHDA0cTDAIQCbdD/rj3Z7nJw2Vkn3tAwZ6NUXV7OdLS+csbpJIjmwCg0HB1 tzahpgegUe5XauCly+NXNMMD/3UcnNA7kBKSZMcuOVq7TkqYYvQZPoroK3yYcAZL Yo4WoPEyjtlD/ZpZVysQiSMxLXRHjsEbMAMZL7Tx/Sav01XUiBHBGDHXaWWVdqmg efxtBeoG7MZxAAXBLfcSeV0bjkd9oGWW/inHrl0NgEljZQqo1kbIEb5asooyT18v vZgjA/9l8xZdOlSJv7Ct+VGrfMStMmpBCn7IRSjeJRq2pNe0pbJtzXAnAwyrB62X gF6n7ONKdLk/WPihRdfrc4BZnNIWZU0q5P11rOENQEnToprAOYebhmS6cY0lx0SR M00HVTTgzsNVWDy9h+uOobicBSHPh2La7KGnFRtMb6pZFg5Y2LQoQWxleGFuZGVy IE5lZG90c3Vrb3YgPGJsYW5kQEZyZWVCU0Qub3JnPohbBBMRAgAbBQI/O7TgBgsJ CAcDAgMVAgMDFgIBAh4BAheAAAoJEIa2il3QBBFsAUoAoIGf7gn1DPL+Miw3/2W1 YdJPT3TjAJ9LOVjgV1mZks+FjRdl1IETcJ4fPLkBDQQ/O7TjEAQA9yIaEvU/Vbj0 L1xFjIOGEyM5vFvn5xP2LibOI7hUH+cMDaWkBgrSLqsI7k6P3HSTVWpkKUTl+vJe OJnIx1gFE/WJDPK5trnjzHQI9kWf6j8EREXCFuuvDy3QhuJiHTjB+I8IVYh+oiXl 6SNo0ekvQd6KZlkPUXy8rczb8Y+A7GsAAwUD/iPYrIWC4xSX8kL6HFjaE2fS42EW iyfyb7slFSE2xtRf+xZyBa2Mu5XQsg+vJcSBsjrxpYdd+OuyTLuYRsYvuLZnB65H tTli1/ous2J56useJyeik9wJfFyZBlOtmw1QFLxELly+XgKiyGRNkTrws+smyFjC GWwhlhc40r824oWPiEYEGBECAAYFAj87tOMACgkQhraKXdAEEWySXACgwFVr9ZgH TYnmgWGXAmQWvJV+xAQAn2HlGDmOpuTDzfO5PvXOOWnFjvIt =bcPN -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/440A33D2 2002-09-17 Key fingerprint = AF66 410F CC8D 1FC9 17DB 6225 61D8 76C1 440A 33D2 uid George V. Neville-Neil <[email protected]> uid George V. Neville-Neil <[email protected]> sub 2048g/95A74F6E 2002-09-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD2Gwe4RBACw78PVfE2fA9U0mISJrV1ohjdkzVTly0WQ/YwMgyB/J/Z/M35G zIc8yKi8YR/6QYGqgEzeKAhrUIDyBfudhaJ527gyR3Xi+QHgWMQDvd41NlqM5DBn yIVKj10DmDYjcHm29M1OHAkXKZT6tHCqp1dKFD7EXtY1bOakvN7TIKld7wCg6AS/ iPmIvGE7wpFlcFkYIjjL4ksD/iKpKneEwB7dEksyDQX8l18v58x0lH334WDgRO5a X3Wlc4He8b3kWzBWK0z81XE8Z7ip0Io13LHhamLp1P1eDX4sWKQpJmdRtHziC9R6 4GwW9P7aCUCCf91XxaYEU2j755u1Zby3gF1tbookwO1iXQERYuo3ZHezH1bkdRk2 HNecA/9+HCfVESjRFPfOEVqljx+Lm5atTx5VX/D/6iprDUARn0YgW5xrwM8doeNI UxkBOUszEUPDpXPnMI5RWB+0siQhZl3yX+lUPtASrEj84rpOSXZtNPAkHit/iwva pW75gZjt9yN7IhVQVw8O2OMTRGNoWsshzKzznqxNP3p1JYYq/rQtR2VvcmdlIFYu IE5ldmlsbGUtTmVpbCA8Z25uQG5ldmlsbGUtbmVpbC5jb20+iFkEExECABkFAj2G we4ECwcDAgMVAgMDFgIBAh4BAheAAAoJEGHYdsFECjPS6hUAni/U8Zbrr+TFHLt3 cLg0VWnWxCI/AKCNqxRmA/HlZLPRzhVCQODgfbOG4LQoR2VvcmdlIFYuIE5ldmls bGUtTmVpbCA8Z25uQGZyZWVic2Qub3JnPohgBBMRAgAgBQJDtkW7AhsjBgsJCAcD AgQVAggDBBYCAwECHgECF4AACgkQYdh2wUQKM9LtQACfTi75crWjtxxVJUmGSn2+ CDnlCesAnRqM+XSv9/KnZ3O/GRtpkNwT9NCJuQINBD2GwgUQCACvJfoCKfRo3y1J kaisLLtSVsqCeF1mlwfBGyvD0Lu0VnDGuy9aHExafNEbUaW+OQe0YXtZeX70CUPF nizBcDEsHEj1pC9HoZCSoYXtqORBa3ZIUwz+jJbjHJErs7XM/EshhAollC14rXKt K7+UVCw5JkCmialF7LAyWgqeBilwtKUBpIaXquf0/qws+uOikcZb3UttamQFUW0Y l4KKHP24cvCOXSlx8Kl9l2rQzfedjQPXI98zkcR3SEjZ07cDs+mQOTax2OgVS3F2 nDUEqLQmAiftHFWQ0h3RBpEYLGTNd3gXXxJPxZdR7YIBnxvJ7RZM5qGgZfTc0Jm4 aM5s+As3AAMFB/0dVB40Fvk74U6mwHLMwEkzHiZoVVZPBUMsuqb3FlgZrMYmwa3q APNhPhWSO9pLQlPJ99nFFj1lRUU7OO/oihsdKLEfT2CT5tqa6fAWoiSQIKBBbkrm bQedeXPWtvJezS0FY17rOfK8242Lnq+djS8ihBxSKpCVbwWO1DPktu6hGzWQz+x2 B91jbMfM9/n00xEkZ4Z2H0dSZNY2WKqK+MkqAiYf6uJBs7BZV391WWQ1fagCP/Tf HPM0gDnwFfqSJmxJzPm3upTmYgoSRqri7NH3Wec5pY15b67JFHMpMFbgauEsiDSi CCk4YxHfge4SMe6noPICAjN6PCkIMDldxi+ZiEYEGBECAAYFAj2GwgUACgkQYdh2 wUQKM9KJgACgwzfFmUB4diy5sTzLVLE3TCqwnJYAn39ByQnv/FeLGSY/blYrVsQK aCpC =SotO -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/FF7490AB 2007-01-14 Key fingerprint = 4E92 BA8D E45E 85E2 0380 B264 049C 7480 FF74 90AB uid Simon L. Nielsen <[email protected]> uid Simon L. Nielsen <[email protected]> sub 2048g/E3F5A76E 2007-01-14
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEWqLYARBADUgEaHYK73qi4nXVO1DfcVKqzWZw0lDYXv3mVQO74Y41hP7QV4 IyvRuuWmKK0vm+ibh4WQTRGhqeSr+tDrgUIqs/tavDVx27DdBeOi5fQwFiyM0s3B 1o3VOzfmW3nOEAEEfAd/zQJVrz0GG6ao22zFSVRHEpJle8QD/HTsZ5sWIwCgiYNX Ok6oK9IdCky3kl0xwE/wkpMD/jKoZaj2/rc7t8ZtwBf9mQFECou+SsM5YFFMx2JV nHShx/6z/d1PWu59fnPOP/t+QkqBa4ds5msot4wJFqsFwuTmtCYySsK8j9yBbh6B KH2Iyjwnr3IFU2PopIxzscuGT4EKbLes925X6tjCfx+r4uGIVSJ6Xzu+9jGXK0KI TZshBADIuS+wneCYZ1Wnc/cwaG3SMXaVTOkThQS+l66o3BfXX77TN0HbjB+/CmP/ lWjcUv4tTYfmI5kQg4pRA7rSEsMBwec19CIy+mf9QD1HDVNGex1tGdGNz7oaOvwm oT2nug8mCt+77q4ESQOmfHzLjIQqKh9D8zX08atp7EVhHw2sH7QhU2ltb24gTC4g TmllbHNlbiA8c2ltb25Abml0cm8uZGs+iGAEExECACAFAkWqLeQCGwMGCwkIBwMC BBUCCAMEFgIDAQIeAQIXgAAKCRAEnHSA/3SQqxOqAJ9qfsJx+6hT6qXy9k0Hkuto pyh+lgCfS+cAvWkzwcTlZwmj7xnVMqex1T2IRgQQEQIABgUCRao0HgAKCRAV1ogE ymzfsoOMAJ4qsIQaHkhYT6FB06o9Hjd0JElbzACgkPVfATTcp5dDhiry+UMCPxfl 4Wu0JFNpbW9uIEwuIE5pZWxzZW4gPHNpbW9uQEZyZWVCU0Qub3JnPohjBBMRAgAj AhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AFAkWqMP8CGQEACgkQBJx0gP90kKtq rwCfc6UlwvCI+OQ8PV4Y7xVVNK8ZWLsAnjAOOQET1C1XacStkK9icK7u/n/fiEYE EBECAAYFAkWqNBwACgkQFdaIBMps37LD1wCgmeJUFusBpliqQMpOYaP3KL9/HDIA oJox4FwHo8yhvqG7ww92FMeknNCxuQINBEWqLa0QCADNQVSiZOL9KwsEGkCLtUGQ l7hmf9iuis/GxokTE/9aPYiCKx29wjo4b4pURS/gHdNGU70KNfqli96Q1zlS9CGY KhQoce0ZDOxpO/6ZZzaOtLw5x2/8M45BDJU45STx54+F/7Lt3hZMNMlNvjZGF/W7 f5vcsPHqGAyFjDkjuL8QQqhsbaPsCTlqngFYh8/4F06+cd4GM85xGu/LM9M91TP6 9ulvz4H/5TiUNvDjt1e82soRhwY9bwHxq7b6s3Q4Wgwo9l2Y2oW4T+TVpcCvgu2D vUSXo4U1ygPFl/CQ2Mz5IEp7e0aanzOU5FhMeEoAkJewRq5747noEcnygiPUuoOT AAMFB/9KyjWpXwovVjmNITIB1JPuZSO7NLhA10SpeFz0YXJVIiteQcHnUHOUn+7i tO8XbOg79a2Pz/5tLuX8YqNQQjODFKpFnFymlFr+aPpzEJPoXWHG1FkcM7rjmLpy gj6eokmEdQdr5CflY+IkJMNC0DxDfhsI17fQVAsaScWgnmSgfCNYT7uPFw8K8omH WawyIlZuAKa+l1Q03IFt0oDLqLrcMK7DnSJvSkyM7WcH+3ObsMaCXVziD9LOlW5B M3mZyXS3Z5A8/menv1lRYm7kxCt17HEmhxnHM5waqFyK0y++X86lNpwmBQZgzTN0 2bCE2wlPqyT1LCVu4s9RAyET4hy6iEkEGBECAAkFAkWqLa0CGwwACgkQBJx0gP90 kKt1pACfS9WAfr2P8Vx/ps3WYdd8QYumnQsAnAwoaIe1d968x4FIKOewpptF/JdB =ggBj -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/8A9F44E3 2007-07-24 Key fingerprint = 107A 0C87 E9D0 E581 677B 2A28 3384 EB43 8A9F 44E3 uid Robert C. Noland III <[email protected]> uid Robert C. Noland III (Personal Key) <[email protected]> sub 2048g/76C3CF00 2007-07-24
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEamZvMRBACgUM3B+Z/7yw5DtYP+4jNaSvvJBNPtLbHeCcXzAytD/Le3Tx/g /joJFJZS92agbQSt6p9SPnw1xguQ2YMdBQ5LFbE5ZgrXnDX9JUWjhyjTPKRbkFPx 5G+JkTG9I75/ZVq6AhcOjXwsq/mkANhu87uOPRO2Uf/e01o3CplYIjRVPwCgiqwz wycuIxPvmWX3ao5gkV5iUgMD/2cVqZQ/uareIN2HF559LZkfjGdBA7U4H1cOD7hr pK27HTNcSAMpHP368AY5nSEUezQ8iOArCxx2xYMIvyxeaQ5wFgQ0kuwb21JieUdm 6+cQ3uynJMSVVic5T4qoyC3mpu00VNBpCLJIk2zLk8CPDPQot6yB41622xXXHaix 1efSA/9oJBP+6Ffdrni7hxAEgP2uG/lXQ/oG67UljMC1LFkiV0irE9O6G5UXFEVE FOQfXmXqLRoIjWaqDLdfADerSl6jeva70UfbiGfxHHkbltMZi2v3Xd6H2wmZKcSl RDYhdvNIhNDXfGAoaYneHN+JWYPDYebG5MyN1QyU5+kB7n7grrQ2Um9iZXJ0IEMu IE5vbGFuZCBJSUkgKFBlcnNvbmFsIEtleSkgPHJub2xhbmRAMmhpcC5uZXQ+iGAE ExECACAFAkamZvMCGyMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRAzhOtDip9E 47ceAKCI+rqu84IxKD8Rb+a1hL/+NqHotACeIg6ZGwFCNA2OOUchxF3hXvJ+mfqI RgQQEQIABgUCRqZ50wAKCRACwq9DxPQf7Ay9AJ9xShA298xcySmevKvX8sWC3LQ4 iwCfbsQ7+AB2L4j25YgHK9CjF6f8s2K0KlJvYmVydCBDLiBOb2xhbmQgSUlJIDxy bm9sYW5kQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJIhOEYAhsjBgsJCAcDAgQVAggD BBYCAwECHgECF4AACgkQM4TrQ4qfROOE6QCcC085r5aDgvzVDPvrZU+pSitB+BgA niwufou7zDg3AJGyf1MeuuFaZ1r9uQINBEamZvMQCACOvnyHYPRaWC7fFfrdqGxj C5ZnjHjYTg4vIUgVmPE096H+WflesmgOZ8bQH6J+3Pzpf+l6HimYtF+gMvDLIz0I HD1K2z75Ne6WlPKh8Is4lty1+knbOIDLqCSgFWcU1hAkj+Yr//oqUTlJ9qIrghoj L4w7QdMHGb7jMMLL/VHg+MXnQliD/UFAk9oF+/UbTfQwsanJXaydby0yjmXecyMo X20orSA/UKJe59Rc7sGOHf7uFoVByqsWQ/yesRmVsjxMNFGNMz1ekKFKHop7xcAj 8DLYnrvdilD3MuC28USAZjSa2b84+oQJADQL1r+wT1bqWCEUvaIqf64b3Tpt8bIf AAMFB/9J9pOfPljyE3D0jy2azVr41mK7FG32FBpz4S1SIeq8DAz9OI+XuCoXd2Ol FA6oSepyBxG1Cz2dzhkobE3COPzwS6jRzPdsmZtkJ1Lp/t7w0FSMlOYqNkdD9OCb OxraGoL4PfoPgCsH80dY/On7e8COQs6rRPTOmx+FGqkdEaNXVyF8A7EoIUNi881j Cn82QjfR4pwFJ4KNeJRt+kBVE2j//VmsqlMcc1xBPzSwcO2YaURhF90qB9ql+bZx ENkoYgqdbkQwcPugdKJm4GzaX7OhdGprjH/E7Yj7fFmXhE2VsyQ8heGjKrRHgy/g 4mTYKTTJnYHSXO+MThJ6JPwcgHxUiEkEGBECAAkFAkamZvMCGwwACgkQM4TrQ4qf ROMFAgCfYpxRT6ReISfiSqGLMBQndCh2ol0Anie8hp/BanOvY2jOiUUcfvyhIqrZ =bQIC -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/00835956 2000-08-13 Anders Nordby <[email protected]> Key fingerprint = 1E0F C53C D8DF 6A8F EAAD 19C5 D12A BC9F 0083 5956 uid Anders Nordby <[email protected]> sub 2048g/4B160901 2000-08-13
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDmXNAsRBAD0WcmPy11DRvDsEpadBPCATmPrvAImfj5XjcxBAJlBJoc9fiq4 8OcnipVdId6STdVKvB3K3h9aNsb75+rD/W3nMi8MumjyXJoHAf8d68cnjppizcPd uQPOy76lkbiyV9OYBtaNQqmU8hE8MTr5Kew9NBCoC4SB4NX8kVh8iglrZwCg8J4F ltBYDz+Z5ZGoh54fnYN6IAED/jO7ISCvWbFtnzCw1FOghcgueqrWoy0OYKq8ZfuO m046fuIlHcswJOKLLexTajsYAC0WWe9H3SvKvv1etexMh5SsrgWTsSuIvlPfG4oj D5vIYqvH5NiqJdh9qiFEzGsv44jgESDVy9qaErbXRVe9htuRZqbtEPnB5cRRwTr1 WhfuBADW1VLXj3UGw4OeBBd5KPIYXCx7RKS4nfrlBCqMcIaiD+K42U+7PXEJB8uM 2sJ6uRYs0j4tTLBbDC2TC1QfT5NIVLG5wWkIh+jL7PODH+i4LF8n0pQyuLwJOFAx s6RIHNPB2fdI5sqB9lMIBszlb896wVJf9PPWFAt/5Aekw7eTLbQiQW5kZXJzIE5v cmRieSA8YW5kZXJzQEZyZWVCU0Qub3JnPohXBBMRAgAXBQI76xZsBQsHCgMEAxUD AgMWAgECF4AACgkQ0Sq8nwCDWVZnYgCg4fzk40pYLg3iNayO9dDNp4yHS/MAoLi/ WCYhNOS0TMpap9SQXC/2e0MZtB1BbmRlcnMgTm9yZGJ5IDxhbmRlcnNAZml4Lm5v PohXBBMRAgAXBQI76xekBQsHCgMEAxUDAgMWAgECF4AACgkQ0Sq8nwCDWVaoNACd HR57Uuyyti+OqVr4zaVEIgg+bYwAoMcFR3xdqArQmp561541p+k1IBUWuQINBDmX NGsQCADRkDqg2uW9mn5YCXlzx9KlhAfPRny6kF4+B+ga0ZaIzJng2pY8EsAxKn88 yH6ERs/PYdsy/AyksG8vzuc9CalW8JFEc+kvtJIL0HhBonlInaeUWHPixGEcOPcW ab8dPhW3zfEgOqquky21d8Zg+G3Z29tmKGcYKSQgt6W59z7vITK7+gv7tOGp2IpZ 1kGqPZn+JqvB3n/uWo3rTxOGA/tduMwfESA5gHmEzKmU/17yIkE0SflKOp0VIGdl Fp1A1ULJDDVXjtDkxFvZ1I+WpqF7p9FCgy/OHUfUa0py3uHIEKMahqpAZ9e8D+GI nGizPR33ZY5PfM72ABXeGhFnweP/AAQNB/9HPBzxoJJFJNLyosSlI+Wkmh51K/nC EawQG6a+tgL6cPHgJQkgthPUywkI+2g7SUSurgPz0hRCPg2PjHP3PwVhjKzUgfAj y9eVnu+JSpst/a0Y5LEQdNnwG+Y+Cs0q9xj4T1VXw8B9fA3y1wS1a13zCQjfLrZP ziIGjHIBvpOFrSU3ML1rRaVfQpm2wQXsGHzjkaZq7HQy2EOVLzik34XkPBY1DrnY nSEwSurfjTrKTLNYsN53xCGwJ2w2347qXr04j87XhRmGCJQ/Nrrin4z4LQ/zNm5Z bErlts8PAfR13kqP7rx/H1n5obhpOoXUqb4Rm94c0r/s9JRah9ppgADRiEYEGBEC AAYFAjmXNGsACgkQ0Sq8nwCDWVbTvwCcCG0X50Tq7V4NeGgREttltmR7UlYAoOgK 1OFsIdCCq6JjrwvfN7ry3pwc =clge -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/6B2974B0 2002-06-06 Michael Nottebrock <[email protected]> Key fingerprint = 1079 3C72 0726 F300 B8EC 60F9 5E17 3AF1 6B29 74B0 uid Michael Nottebrock <[email protected]> uid Michael Nottebrock <[email protected]> uid Michael Nottebrock <[email protected]> uid Michael Nottebrock <[email protected]> uid Michael Nottebrock <[email protected]> sub 1024g/EF652E04 2002-06-06 [expires: 2004-06-15]
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<[email protected]>
pub 1024R/34F9F9D5 1995-04-23 David E. O'Brien <defunct - [email protected]> Key fingerprint = B7 4D 3E E9 11 39 5F A3 90 76 5D 69 58 D9 98 7A uid David E. O'Brien <[email protected]> uid [email protected] uid David E. O'Brien <whois Do38> uid David E. O'Brien <[email protected]> uid David E. O'Brien <[email protected]> uid David E. O'Brien <[email protected]> uid David E. O'Brien <defunct - [email protected]> uid David E. O'Brien <[email protected]> uid David E. O'Brien <[email protected]> pub 1024D/7F9A9BA2 1998-06-10 "David E. O'Brien" <[email protected]> Key fingerprint = 02FD 495F D03C 9AF2 5DB7 F496 6FC8 DABD 7F9A 9BA2 uid "David E. O'Brien" <[email protected]> uid "David E. O'Brien" <[email protected]> sub 3072g/BA32C20D 1998-06-10
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<[email protected]>
pub 2048R/6450AE47 2012-11-01 Key fingerprint = 7133 AB4D DFC8 0A0D F891 B0D2 90B7 A98E 6450 AE47 uid Giacomo Olgeni <[email protected]> uid Jimmy Olgeni <[email protected]> uid Giacomo Olgeni <[email protected]> uid Giacomo Olgeni <[email protected]> uid Giacomo Olgeni <[email protected]> uid Giacomo Olgeni <[email protected]> uid Giacomo Olgeni <[email protected]> sub 2048R/1988BB4B 2012-11-01
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFCShBsBCADV4TxtvfJQpseeg4XIKiAFDZAaTED4KRg2PM9ZRVcVbrrUOySH 9oM5CnEbsmW+pc0XrgugY4i0NSbofzygRs3g8iqOIogRKu5FPobWyOe+E/dr3vwI bx2d1kB9LI8x6QVCp/d9Pr/t78SYL/pigyMQubMiDctBRRN9AucT/us76KgkHbih Le0SL44WX0Jj9nY8ViYpKg0BOfwvjnpUMyHYP0lTbX+THvhzvEcdai9szjOemlyJ lPWfUzBQNq+mBkj4JMRd9Yi+mIr8ZDHTLmGkfiFQeEeqmp2Rz+T4Iog43jrOCEH6 x/91tIOTV7ttzPuJAhqibvyPgYjpOeZdEskZABEBAAG0IUppbW15IE9sZ2VuaSA8 b2xnZW5pQEZyZWVCU0Qub3JnPokBOAQTAQIAIgIbAwYLCQgHAwIGFQgCCQoLBBYC AwECHgECF4AFAlCo+QwACgkQkLepjmRQrkf0VAf/WAqG2qhbB0OQJYvgx6eP00Bs jAqFEA2fLJly4DSlqvImaKKXM8gXiEApB/PEZPU+R2oKfWllzYo58RwcMAhFWBI0 UjTUnzguZe7lj+/Nqsjb+cVbOwk6aKGuuM4XAXpc64G7WQGr4p7Oo+wu91elrKEH PQhpID4kqep96xaTFYXprQCMVx3GaYC+fFDqkBI58McZ1ogtmDupvRyr0/X+4BZW Jj+2GjCRc0myaf82vWkx9bi8NCa4yvRd4cl6yFyop0XwA1hbjdA7aYc72iZQgOez n2LpNp62nddYcsl0GtlcOjVyOTOjbCJoBE1Z3yOQAn+xD4btLoEoqvHJXnm7HbQo R2lhY29tbyBPbGdlbmkgPG9sZ2VuaUBtb3ZpZXJlYWRpbmcuY29tPokBOAQTAQIA IgIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AFAlCo+QkACgkQkLepjmRQrkex BAf/fRicwogdA7FDFYLQv2sBMnUi88xSvG6Ay374Z1DXMZjdEd3DSEp62vKIfDCe YOSOnapQvZ+XMwkmGW2GkAfOkTHNidB6oRkGmE/2+wOLZvOP7wpr3IPnM+BBC3Qx vLwrQbQq07wOzgPZN2tVTxg0e1OBZBYOJKMkBvXBamHhJoUHx7zj0Fp9lPZpJtKP ckSPF1X0kY8JD/x8SyticxvANEKEoiGj5T2f7kowT5uorLu+nRtj57KDjRpgJYsH gIKozlr03uZxjxHQJTSfGOqQl7KKBsqsSQP83viUmES3aLiJ2aACStGq2USxoLkW pqAERsyGfbL55PRZFSY+TD5z+bQmR2lhY29tbyBPbGdlbmkgPG9sZ2VuaUB1bmlt YWNjZXNzLmNvbT6JATgEEwECACICGwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheA BQJQqPkDAAoJEJC3qY5kUK5HWPkH/iwolry28OtjjjkcfnlgzgONm9OCPk3wjiV8 CuqicB3ePfJgHrc+S/iZEvcLByY5u1pEdIhpZUtrxmjDCQOKUpIkaa1FwWjM57rK LVrVOdgD62uDpq81XUNkrJM7rMxO3Pxh+w1JUZlmr8rF+A1CNXIit4tWsSdID5Br 8w068lKjhNpPu4/GRgnZ7miLwGT/raoAl9UQoaeIGPYrmraWU9PfgVe8w2X4VApi JqkWniajRN/3wGOIJBd0OkL3Jm1SbBiqhcEQjqmWz1j9Zk3ZtRz8O0SNQZs25VJg 7q2m6YCOh3FpoFa3XuRTr+a3nz90NzGIKDl9aRH4LjaEZawkuza0IEdpYWNvbW8g T2xnZW5pIDxvbGdlbmlAY29sYnkuaXQ+iQE4BBMBAgAiAhsDBgsJCAcDAgYVCAIJ CgsEFgIDAQIeAQIXgAUCUKj5AAAKCRCQt6mOZFCuR0KQCACYnnPZdH4k6zYMHuFq fG+9wQYHF+UXCj1NQInijuZUS3oZBmbTNCvufP21tnLSw2f7Xlz6gTU9rVDtk9hk KIhnsaXrfaZSgAWRAx105K1cnflG4LVqqHFhqD1Vh1HgTkyLBrtkMdRW3yXa612O /H84COTAgMuqjYCzJ6KUJjjYeaqkPGYz8wPgEC2iYTIhU74vowQlSaVFsLiFCq76 xzfygfOefCKeLG7+feg57dlvHXkJzLNn6Sa9RbotMufzysdGB/HaRJaI2OgDcFFV l4LTfFKe7E54irwtaHDS8ov7ozDsPNJ+si5nZSP4HrCR9/xAwTmPdRxHNbPGPJdd mNmqtCBHaWFjb21vIE9sZ2VuaSA8b2xnZW5pQGNvbGJ5LmV1PokBOAQTAQIAIgIb AwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AFAlCo+PcACgkQkLepjmRQrkeHYAgA kxP3iKWhUvJsvw0N+pNFsIz2BNSmId80g2Rk/Dpsg2PLqr7mXsHelTPtk3xfG9Al YyvZDQgS6np0J3DVuw+5ywmE+VYCdrNDw/nWhrmnSpkdPMTzl5UrHQycaEQskuEt ea5l1cYT1AHNJ+iOqbIX9ya3+X2tY0QIFokxR+HCIU4LLeR71WA1l3qk4pTmzZu6 PS31WsmRpbNqZ8vpqTSCBR2e6NVm7YbX5ynfqAqDYZ8iNALGgmuX+5QLM86WG0vq jgpHs+Rcno+/h4CCuEDT/rzJiG/ncCozsaj3K88e9uNEfYUFV5t9GUK24Nl/tT5G OCrCjH+wXt3Rl5ZtSLKw57QgR2lhY29tbyBPbGdlbmkgPG9sZ2VuaUBjb2xieS50 dj6JATgEEwECACICGwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheABQJQqPjyAAoJ EJC3qY5kUK5HIlgH/j1I4VnoTpdDcX0KB5yJrF55X48xd8zj4EPve7VYhpg7uwxL 4GC25wC4aaBhsoJ8OrN6JwJSgdTucVU23nzwVZL9U+TRteSu4DpNMadhnCXtbLKV 3qWYPHZVRKbSOADng+DNKa8/rXq+ENFtTPXFk8MwH5ZGIQU46Dscw9EbmpImgePm Rr8otGcpBM/aIiOa54yDRDC8GVm6Ear3JVLF5Bza88E2ARafaMnONG4hlKiQS5d5 SV6QlaBi15sDt/fPWf3ohgQo23GxF+muxHBccI1IuYzkeeXZvaZhT1DxgLNtjqmx qHpzqI9Cv8d0KE1ODpqkN6u+AnhcujtlFQryr7S0IkdpYWNvbW8gT2xnZW5pIDxv bGdlbmlAb2xnZW5pLmNvbT6JATsEEwECACUCGwMGCwkIBwMCBhUIAgkKCwQWAgMB Ah4BAheABQJQqPkMAhkBAAoJEJC3qY5kUK5HD9UIAMOfyqMKcA0MhQuwHbPuw+CV JHokzmF5Vuj/l/lqc+SxAuqPYXu4CLDp7BklDLrSEjFoEHMVmUIPqfUSZ9JHYuaN 9NL6LkS7nGggDfv203RjlnY0+kaP/1ZoPkJwGwYB2CpdUCeLnEgAKz1iDwgZAM64 srxBwGuadkPO+EaEuShe5+IS9mM1qfT7qvAYkYtNcoQD4j2rXe6+PftIJzZY6l+l Em7lCvqtoun9RDrRqh0HJi5BPYFRkI1/WUG5kvRNryru0QG/Z9hZZIcNEJtA/ao0 maCYUolS1Hzp6PdtKyO2djYqFNSodlK84DoOxBLPd44dHkp8A6Vuc9WeWRBAP9S5 AQ0EUJKEGwEIAJyRBRFrAsFkPibopH4yDzsBwp3Wruyy8D4qm+AriqkNiOMwkwsW 4w2C4JbeTdGLIO837wGEBj63P7PaS4w99yB+swqWqvm2w5Ay/kIzN5iG88utICyZ HGpKwYlYKtb1+cvVeXtWDSuf7Cz15vDy94NQtmJUarsERCV3+U+Oqxtn5NaDysMP ZeFT0C5LEP2cukcM9cjfnMZXFTdwDx9MbT6Eg30KclBEPVl9AsixrStipTNiOZ/X e3qfMpv1XvpmoXIyZKqvVqEzUzTWyqNg7Y7R0ELaPbJt8hDA0MCiNcCw8y6dM406 PD9f0vKm8mcP5zIGqTyq53Ix9Nka3HwTDh0AEQEAAYkBHwQYAQIACQUCUJKEGwIb DAAKCRCQt6mOZFCuR8HcB/464k2rw9dfp5MCsbpw/mJSVSawMDSUIKgQknubMmnR wB65CBeIH5DZNfGgEfvT8Xn0cv1tpF9lluJ+yS9vMVxCS09qdF/ibZuCPEjLiSVs bzrU0X55smka9ZJtBFZCuvRAIswAKpzrcrUS8rnrCROMdaW1cri+IKgO+Mntxb4d igsmZqAsdaWbrQ9wsDvRFh5FNErCgjp2oQCSytZC1Eyih+aFRlyYH6yAJt+CRd3s nOjdxNeqkYAC9g6QO1C+scyua9NDH5byjV8AbtBSmh+NTxs3PEYqeexo+AVPyyfv F9RpaqHRxeuchYZH3JlhZ4NLHKYCMm9vwnBDpa61tH8I =1fdp -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/C5D34D05 2006-10-22 Key fingerprint = 356B AE02 4763 F739 2FA2 E438 2649 E628 C5D3 4D05 uid Philip Paeps <[email protected]> uid Philip Paeps <[email protected]> uid Philip Paeps <[email protected]> uid Philip Paeps <[email protected]> uid Philip Paeps <[email protected]> sub 1024D/035EFC58 2006-10-22 [expires: 2010-10-13] sub 2048g/6E5FD7D6 2006-10-22 [expires: 2010-10-14]
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<[email protected]>
pub 2048D/F6F63F01 2012-09-21 Key fingerprint = 1D8D 506E B58C BD10 DC8C 97E1 D6AD 8621 F6F6 3F01 uid Josh Paetzel <[email protected]> uid Josh Paetzel <[email protected]> uid Josh Paetzel <[email protected]> sub 2048R/F32EF801 2012-09-21 sub 2048R/51F1335D 2012-09-21 sub 2048g/9BC280CD 2012-09-21 sub 2048g/CC793500 2012-09-21
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-----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/9E3F9BE6 2008-04-17 [expires: 2013-04-16] Key fingerprint = DA0B 2143 0FC8 EE5F E211 D329 7D4B 6E18 9E3F 9BE6 uid Gabor PALI <[email protected]> uid PÁLI Gábor János <[email protected]> sub 2048g/A780C60B 2008-04-17 [expires: 2013-04-16]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEgGzt8RBADdmkWC/Q4tpLhYpw9oidgWjyRRx/MgPRrGhtAvVdNTjbVoT4bl 5e+v3CHoBih7KIh0BVQrux+H4UJ1Fou1wwwCrPH6ismBR5P9iZEGmBR/K0+1gBph /aUBANM1QG1FpAKMsYytqXiNk7mH/+oxomsbXBg8ZFGzlOWCwp3gvMZBGwCg7UY8 YtV9L46nZMFIfzlj/tkNzh8EAMeF8nLv2qFsBT3ihYJRb27c/GtsnSUCQgwU5CVS Zx0QVb/zpy0syLHO+AeJnUIQWBKOhPpysXRlyMpjDlPu2b/VS9av01uLeHCCR9YE G/Jp4mCNswD0RLoQh0WrNtdr0kR0htr8mZrkRbZo+YoZPCdp/lD5JNq6fkS/Dgc+ OGBsBACIOunHi0iEMnThJNznfLSA4hmjSdkrI249U5Ie8KfA5aXxaCX5o68tMgUV s/9hUBIc9cKoAkUf8t1XEADTik544HYm9FNULU55K1yEoG6dQrVm1HYVSl7uklE2 mHkkg15nqapedChp2a+UhXYK4IthrBYcI4YVvQMBsMIFvo63krQqUMOBTEkgR8Oh Ym9yIErDoW5vcyA8cGFsaS5nYWJvckBnbWFpbC5jb20+iGYEExECACYFAkgG0YIC GyMFCQlmAYAGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRB9S24Ynj+b5rQSAKCs f7zv5XU0wXzKF9Y/9kIH2CKg2ACcDIvhQGclbBZy1NWr96IEkesPVd20HEdhYm9y IFBBTEkgPHBnakBGcmVlQlNELm9yZz6IaQQTEQIAKQIbIwUJCWYBgAYLCQgHAwIE FQIIAwQWAgMBAh4BAheABQJIBtGPAhkBAAoJEH1LbhieP5vmlK8An3aLBPTXu/f0 dWAovygPqgvjreGXAKDUrndv2PP84EhK4f4HDDwfeIVyPbkCDQRIBs7fEAgAyLRw XdnvIKENQFgcjI2XyPtcbe+mCs2miAdRWKPRq+RuVLu7ub1kYK13W9pYTJL5LAiF TBVm31uuoiN/sQaJMDz/Hz2DOLRsEcb+d5f/9ssiPUxMdYKnE+kYwXRvm15y6Z6G dNhFZWleNpFRuPYqy/HaUb5q8/quF5VcH/cDVS1tSTErPtM7i3mmnJOpdIdBrCPe VVJXZo5MWUp1wG2IIuyap8ddM5S/kHhhyujLxLNDnlTxYogGZz0qad/R3LeiYTfl Drn9cZzvFdPlmrSvdw78RH0tB09fRLoI8KjGHi/bTiF9Pai75OUwVMv4PmxjAF6s OLU9q8zGpr8XE2ykwwADBQf/XVmkCPL+BRd45e40ayCo4sqfMoh0mK6dP66FmO90 tAHtlIfkK74mcb/XrHC0KoX7c/TSaG9C8uJ7NGYzEFQzlzY8LlAfW/P+LjIpXjk5 frEItGm0fCNU/+eBwcobO9gfWHDHucfocar8/pnot2PhwJpRFy1/xUa8oHXxNfW5 IXnb67uCDPl4xFy9GkPPsgFZ4QI9+S7do0XYDEwfvzELeNTANAzMK+jIs5yzJ7mB mwI9orFltPfmc1y/EVc08LlR7qCsbosb/HMHO3jaMeKq1NIHyzRd70RZn5ow4B0Z zPQTJCWzfM0L5vAF96N/Rmrigwsg83+dE/a5e2791WRCRIhPBBgRAgAPBQJIBs7f AhsMBQkJZgGAAAoJEH1LbhieP5vmWAMAn2t7GwTeP9Hq3t1I1uU8AUGgS47cAJ0Q 0CAkpRuxhi2FZn58aNBhvQPcog== =JvPF -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/938CACA8 2004-02-13 Hiten Pandya (FreeBSD) <[email protected]> Key fingerprint = 84EB C75E C75A 50ED 304E E446 D974 7842 938C ACA8 uid Hiten Pandya <[email protected]> sub 2048g/783874B5 2004-02-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEAscLQRBADERe+RX2eJpYLoaJ7d29B8YcTYzNlsfzghM1R1/Dx2RDy5poKa Jn9j+Iptq1qS9GkTHXFcQh8LT2K7wnE/MZTCxkZvg2ZkfQbJ4Z+0z3A1A6Kvg0tH X5aqmPUeLXvnps7nqZxkhl2ibcjhH/VYZK3mdRikd1wtJD1EhbbeqaR8BwCgkQAG vdJHN9gfjLLcM12EitkjoUcEALoo1bPoULWd4YhVH7W5L3Qp0dr1vf5pYC/V7FQ+ 8yPXZtGzMvIld8iX1sv/zsw4EoXXsaRzJo/ixdCS1WYBPowryu0G/LX5w0RTTGHc ihcHLm6ZmyNuIsTQ1ifLNASJoLkNBlQAuA0VG4evAujrmaWyEHbbIDSQKUJOjL9u jb2HA/9pycrr3+735Aa7B5jThN6p1XEC8GQg5MDx23QnTPj9QHXH4qs7s+hwxZq9 3WkVFBcJtDBi8PeEVqfD/QPeU3ewbnNnfaF46miGV1iG1mzU4zMq4n5oBdijf5eL cRRdOJytYKTvlSCe8gf0MzfaB3RqD8+Cjcs3PtQOy1VT4aQiv7QgSGl0ZW4gUGFu ZHlhIDxobXBAYmFja3BsYW5lLmNvbT6IXgQTEQIAHgUCQCxw7AIbAwYLCQgHAwID FQIDAxYCAQIeAQIXgAAKCRDZdHhCk4ysqEPZAJ9ByMndfTtnnVIbsyHc2NjDp5F/ vgCeP6o87Lw4aHuGo5guA9yeWwtwAla0KEhpdGVuIFBhbmR5YSAoRnJlZUJTRCkg PGhtcEBGcmVlQlNELm9yZz6IYQQTEQIAIQIbAwYLCQgHAwIDFQIDAxYCAQIeAQIX gAUCQCxxDgIZAQAKCRDZdHhCk4ysqLchAJ4+01/uQVdqdDeESGodcvgKsrieqACb BIW7HMvh85WqofTeAK5pJu7hCM25Ag0EQCxw2BAIAPXEkkg6lSxGRmVH1yzRnSKr /M48xyRXYDrRPaVVBFkC4Af3CR5MjncJtjbzm7xH82glC67cksRTfTZRs7kJsid+ g62V53dAu1Uoj8ecSDhblb8yW3rTLKVqGcliGcTRFivcm+ZFm0kc0xCQE3rd1COX NLEomMV6xuZ9PVzDAbJwAoGdpCYsCl09eZrTErueQ7pEVsLx9/0zQSmC/uDFEVZ7 23GsJg23+EUBT5KuTxQ4i0k++Ccr4HR/OiUy6KmyXSNsKsBsXwm3map3Debqqqx1 ssrDXa+PHkKEUrONQBoYbZ17DpPZb+NKWibi0Vp1HKPP2vZl4NZQC0GBLXbEudMA AwYIAOYhwVTWKQSgeEZUNe4PwvHczx8/3VNjYZGY6/ZRjgmfO3+MagjonZqfxYha GpsEV17NXm4WIg6HWtI43JwIWfkUybsdxQVH4i5lWYuA26wD6UtNXw9laPHKXonR DvmKDC6K0iFbSxTqXRZVQ//wMxh58/Yw/fX+fYtmH6u6kPaL+CPRkhQLezTzZWHj 2wF6v+frdglW1/LpwpCFndb1i5+36ogZ5ZudG/iz53QzlOF0IZSGHIb9tlQ+4gUn KfxpQloI+5vAyqpHDKIH9K26wTBzKsp5Mt4W6cLfgjXs7TNc8BVT8d4rmmbGpGnG pSjj7b1q6EhpIVBkAMLw7qanLlCISQQYEQIACQUCQCxw2AIbDAAKCRDZdHhCk4ys qAuZAJ0VNEtJSZOAGetxBJ/BMWahVD8xeQCfVKwTHdPh83Qcf28xx81icY5OKY0= =rF4D -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/93E3B018 2006-11-08 Key fingerprint = C73E 2B72 1FFD 61BD E206 1234 A626 76ED 93E3 B018 uid Dima Panov (FreeBSD.ORG Committer) <[email protected]> uid Dima Panov (at home) <[email protected]> uid Dima Panov (at home) <[email protected]> sub 2048g/89047419 2006-11-08 pub 4096R/D5398F29 2009-08-09 Key fingerprint = 2D30 2CCB 9984 130C 6F87 BAFC FB8B A09D D539 8F29 uid Dima Panov (FreeBSD.ORG Committer) <[email protected]> uid Dima Panov (at Home) <[email protected]> uid Dima Panov (at GMail) <[email protected]> sub 4096R/915A7785 2009-08-09
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<[email protected]>
pub 1024D/6F38A569 2006-05-06 Key fingerprint = 4E94 994A C2EF CB86 C144 3B04 3381 67C0 6F38 A569 uid Andrew Pantyukhin <[email protected]> uid Andrew Pantyukhin <[email protected]> uid Andrew Pantyukhin <[email protected]> uid Andrew Pantyukhin <[email protected]> sub 2048g/5BD4D469 2006-05-06
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<[email protected]>
pub 1024D/ACAB8812 2009-06-08 Key fingerprint = C897 7AFB AFC0 4DA9 7B76 D991 CAB2 2B93 ACAB 8812 uid Navdeep Parhar <[email protected]> sub 2048g/AB61D2DC 2009-06-08
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEosaGcRBACOXnXquGEW53BjpMt2jViod/TUf1xgjMekcbDxqOODPeX7eYfr wJ8G6BCNOpGjBmWDu/JcNj4Z+gmTilJ6WLZQ7ecFZfEeO91pt6ys0cyWh0xfO+/m T83D7W81S/kqrJBkQbBIdV6LumevdErHo272r8RcMELC4Ru87eRtX3hmEwCgnnGN JMpQFUfYTt5XE7nY0yQoeV8D/0OcWmJbEZWxX9O7AuliCe3zd2Dw0B4LB9SZ2Dis 7+gpVd3xVgYnt5wRE9kM+ThgrMA/wqr807qmEG6bcfUsfwwGN9YUtNF3xAN07cXT s026sCIFNZK816PrThBzCgkwR7pDpkMzGWIBr8WiXXy0eB+JlQ6UV4PEiXuZ5ulz P0b1A/9CZm3wJfrNC0r1gMyrfVedg4zwKU997bmPLGcYs+rWXDTI9CvMseOUYn4C oDZQCp/9zxuHK+VU7Y/w0c/hVE5ERACSn4SjN2unEDstK9njZBMHEPVkAe/YvSG5 cmc97SHlVE+eu/bbLKcvFb6rRLPOaVFQJMJA2VJEGWtYhvP7ZbQfTmF2ZGVlcCBQ YXJoYXIgPG5wQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJKLGhnAhsDBgsJCAcDAgQV AggDBBYCAwECHgECF4AACgkQyrIrk6yriBL0MQCfUJOiS2PbJFDeiav1ylcXXwfp ggAAoJRoS7GDENGyM4BzjJ4b0ptZqTLRuQINBEosaGcQCACFCWs47SL4DQA6bNDl VJu4w8wLf8uVOyatuGmdXX8Y/OTVQJgA3vS+ODNVJCxhKVlvhcn7bhBdGdWKS9K+ lr8+eEvr4hf2bQpesoHC+uFgKyILkCBNL8raixbhysyq0pfZWWDJMyn+G42BG1yJ Ji+bykygdpYnbIVA8dYHmBibI8mkPKOHSohjXT1SRfGGn+l1w54OO4NlJhCXMkjT A/Z9Bt4XeaiR85uJi0UUfV8FGZHhgSvT+/P1xIvz+nytuehSP/QLXl13CtAG/nKV kAcZnsT/3NrJ4Z2r45k+c50Wrf210scAaBogrrV5eIHfNGgOANApN8+8vj+aXO4p XRuXAAMFB/44ea8rd+P5N3OMrfuM8i91Qe1bJ+BIoroKPOr8jvCry0h3QpdfLKUN IgaqbS3JZeBJ8HHnWSGCF+o6H5gzRe1hvylPEclLPDCuPe7T746h9Mzejf2hNDJv Og+BuweDZW4KhovVbdS+syJEvpGF4bO8qgHT2CKgruXSHbFetdQWbkM0rfMmTuo0 GcR2BEVrPb/SPFv64ZZyAZzmnGO4vT1bzClnTzJixrDpH74M3vSEYegMB4KdbLYB i8Jx4QUKgVEhJHjJubKWX4etyU/uuehOC3xYrmr1UXvsom3U8r36Dvdo77Yr3dgD VXa7bolNx0TIhdWxZI+R4z9E75QY+/wgiEkEGBECAAkFAkosaGcCGwwACgkQyrIr k6yriBI+JQCfUxgyqGtzZvLh5Al7gsTmRc11PLwAniD3NfWGRcO2+9uxSSQqRH1y wC4n =tqY8 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/39CB4153 2010-02-03 Key fingerprint = ABE8 8465 DE8F F04D E9C8 3FF6 AF89 B2E6 39CB 4153 uid Rui Paulo <[email protected]> uid Rui Paulo <[email protected]> sub 4096R/F87D2F34 2010-02-03
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<[email protected]>
pub 1024D/330D4D01 2002-01-27 Mark Peek <[email protected]> Key fingerprint = 510C 96EE B4FB 1B0A 2CF8 A0AF 74B0 0B0E 330D 4D01 sub 1024g/9C6CAC09 2002-01-27
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDxThkERBACPf5/QHmyM944qrl3hWlWvK9fZZR2c37rhxAeqDJ8WsEMPBTZK WPn9BsMk+2d8e62FkzYo6L5juekd8invwd1nnszFFJdTDWx+vpMMgYuHBmme0QuP OnlU2FwJUCknw5Ed5pYV8F6azGgUNjYKIIJi/L3D9S2qDZ7l+3DgD0knKwCg4o8Z ZE2vd9uQw0AZ7lIa+li3hB8D/jHrVZqHxhOuUbxIXoJG3g54mH4i9GF8uN8ZdhA0 9AxLVLzjLr4CQd97++LdSLagSvgD9N6OrtMPeqge4Frr1anJ+LRPDeOQhd0meJZB iCiekil4DSOsowqgmIG7DlAJx+PNV66qO1ExX1fv1ugyoWHJqYmdBSF9x1fHU788 GxCtBACC9DLBMmMVu1Fsw3rnkZaR7xX1a1Bu95ZUu6TKJP6qUS5GnQOxF7dDjuwX /uRinkQ7W9vR4UuVvcV+Ct5R/yq7e+SfLb+YFQ2BmWeGNs5AVLxIZsZ0ar16fwB9 XdxxHU/IkA3kYo4JfTvi3QXjLn4mbYUuBIVGAL63UO1kx1c8crQaTWFyayBQZWVr IDxtcEBGcmVlQlNELm9yZz6IVwQTEQIAFwUCPFOGQQULBwoDBAMVAwIDFgIBAheA AAoJEHSwCw4zDU0BXeQAoMlSoeOO5WtFMyC8viNAafpPcT6hAKCcjmQyI/cI0id2 PMX9ZOfrKd/ma7kBDQQ8U4ZDEAQAw9gcDj02cAlUh8G9bLIQazPLJnX0fah7KB3O kxh8wFn0LliP7W7HLB+nQNyO4TfNgI0bhVyKDQQbKI2xJ4hylo9Z1K2R7GilgCnB FUqIp0MdqAswX2Dq7KXoyYAZRBOnQounUMaQ+6cfRI37mWc6dC2uY5qHne4zmLML /lVOjVMAAwYD/1ZArkN4IDk/VALPnzW4VYcCcT+101DMZfIMvHK2MiwWFmO+Er/K gIo9DrybHNQ6+bVQh/F6PSlxDrgWey7dQbHQSssC364v3RPOCmuBJCMTEszaais3 VekHF9i9NMsUzbGpowaQv+YKMFQu4Rtlwaq7NUp/cD4a+jaxto9ij4EliEYEGBEC AAYFAjxThkMACgkQdLALDjMNTQHvuQCg1PrMlcafQ3BUaXAQRlGoyvF2WcQAn17c HA1RAO/MXM99nT62+AKLlpeb =mfY+ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/16194553 2002-02-01 Key fingerprint = FDBA FD79 C26F 3C51 C95E DF9E ED18 B68D 1619 4553 uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> sub 1024g/7074473C 2002-02-01 pub 4096R/2527DF13 2009-10-16 Key fingerprint = 2EE7 A7A5 17FC 124C F115 C354 651E EFB0 2527 DF13 uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> uid Peter Pentchev <[email protected]> sub 4096R/D0B337AA 2009-10-16
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<[email protected]>
pub 1024D/485DDDF5 2003-09-11 Denis Peplin <[email protected]> Key fingerprint = 495D 158C 8EC9 C2C1 80F5 EA96 6F72 7C1C 485D DDF5 sub 1024g/E70BA158 2003-09-11
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD9gSfARBAC0ZC5VEuEzqk8KQ3tFam5rugDTaigVzYDmT6XBrQuVwYrFY5zj gz3o87e/KGmvh0FgpulhoJpkOW9l7oPQpp0wvEm45WRq17+7quW9VppgVCzs79FL Cc77A4g5LAuO27i1yygfMfPrr6J/M5bM2FyuUS35QvKBTlkZiB/Zt1d1QwCgzJML PdRvozXQdg6/bPc+M3Wh9AsD/0NxL7cwGExg57hnxA3oNB4M7IM1MwbDDaEQvJbW Ls8c+x2UMzdE4XHMhr940GiwUzEa1lyy0M7FmB+cdFgqhJ1VFjYE6VyGkyYtticL my6Im5S4Pfvx7pO2qLmYW+OnbnC6FFgFPbsAZVl/1fy4hN7U2zQIMw3kIodFBnyN RMsvA/9uzITCim3ov/9x4OYX0BfUNNmczIZMvXbmcuDH+NfwkGu9pmRitx/AWHGJ chOv4vMuMnBHU12TV1dstlWrb+Q5DVrnbVUq90mUbxg2emvlv+xK2oZ9EBKjAv/z NFqySi52vd+OmgopbVI6bI2+VdKrKeNcDByt/2zRGo9Y9hDULbQeRGVuaXMgUGVw bGluIDxkZW5ARnJlZUJTRC5vcmc+iFsEExECABsFAj9gSfAGCwkIBwMCAxUCAwMW AgECHgECF4AACgkQb3J8HEhd3fUzKwCgj1hA+IDNLHGdD+ua2bs3nPcL+vMAnjR8 6CwsvOZIL5cr0EyveMsGNWqnuQENBD9gSfIQBAD+YKY2v46TD994B3h0KtAI8/Zd aJ+K1yUNIDxjueo7v+c3jKaWPgX1h+Cr/O936IVnG1zg81zEF0Ly6NcwWrj70UDO deA4tvx8HQoYfjwRA2kYAv73yvt+UG6WS3cGkX28dcLb8/JEV5M64AYKhgqRX12m VJWIKdqMYzho8n0mCwADBQQA9WcaZB8RVj22I88DA6okYxiU2vqAN+QUvZfX0X1/ 7Rh3mB8iAXBuASEw6NbQnGtky8RlkTDgYu1UJt0aSV2U2CXKOyPCJut0Ka+YYtOM prdHmnNSksNvwThju8F6js51nrf3D/7L9SFhc+W8JTfa8iz9Zfgq1HQkZ3foSO5J W0CIRgQYEQIABgUCP2BJ8gAKCRBvcnwcSF3d9Ut3AJ9WFh2gFxmqE8O3B85dO4yx z/OvxQCgsQynjVGZI9JJn1W0KOAYSbihdu4= =kQUf -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/033FA33C 2009-05-16 Key fingerprint = 74AA 6040 89A7 936E D970 DDC0 CC71 6954 033F A33C uid Christian S.J. Peron <[email protected]> sub 2048g/856B194A 2009-05-16
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEoO/iURBAC3FVq7xH4uRIEWRvmPzD1azqtwlQE3zipCf4K9B4EjKidksgP0 56qAkWMvngWG7OW9YNCtZYgDNAINOGdw2pZYioERq7U+cdIPKSZrIP5WrpORdi8A 4i3VmRKh19ztJEGb8jvthYDlEyvoABXmz/Bi3YHDkfjT0py02SnkcjikxwCgkGkL rNwWGviRd6hsBZZEeximSKcD/0OAthVoMmk4bMByWPoEWf5i3I3JHDeC4g3oEgYp 7dxMaxboqjFmiTZ2xMwdR9wlpwE0ITSeVj5pMtswr8q3ghLdlXOpd4wn/vLu51/G ra7cFgNex3kCb+5tLfqZQCiK/Y8fQ6TJdowaxN0xtrdGbTtUR0BJMi7/AhNF1GxW HeE6A/4n/K5Z8EDq7e5HZ5S0lx3MAKy1QgS1tnO0aaHK3v+DtD4xbe9aV2ls39sh 2Xu+z5QGkrx7q3HOSnC/DzMSYDG5I45GGNdDoBVmJ6IfvNICzXgM4hDh8KgIXNZZ PEkHN+uwTWCnIj1yhothpk86XBvyiEAbCTwQ5jWBmZkvLI2GdrQnQ2hyaXN0aWFu IFMuSi4gUGVyb24gPGNzanBARnJlZUJTRC5PUkc+iGAEExECACAFAkoO/iUCGwMG CwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRDMcWlUAz+jPOYNAJ9WfWDy0ZlOC7q7 KUyrq7e49no1SgCeO4nUcK5nLZKkyGXxTbnghFZegGS5Ag0ESg7+JRAIAM8UbDPn dVBYrvJqBwdWQA17XN6jycQC2smWLnJ6geaQfBgXAff5/Hn1LtPPG58k048yF6QF xOCzPOTrkjaL8GlyKGLK9jfctyC+zRl5FvNyJIBIgFRsJjBB9K3FpZEsxWltSyqc 5mxf4D8VwJeDfWdgeqVgORapBruHm3MAf5B13PfBN8lV2Yqbo520U6ZWUtdTscsL 2QLTZcrIN5aq5Wsuy4r8H90h3JYcOUK4PJTBNLmlmLEuTlENbv8E5YVvvgx/ZJ9H lX9FWz+w/hrEQIR2xnF8MJeAaOR3Q6cKgvFrH7PUHwvYxAXkXGWv6xsJ4VEA7a3g IOytL1l/8Zo0fiMAAwYH/3Sn6JzdbiF7peLiQ3SqbNSQV3aKxNP+PuGvuALiHKKd WgF5xjrBfgSjJbybwm4YtNfqLU/x8SEtEXVkyMozgWSMn2K/vFrgwURjG92IhDXJ bOzEDyx86/iJosMn2glcb9eBYGrmz92H+9a1Q1xMyuk7uD/+nFcJOj3GqnuFK54L //A6ott10Ddgg8JB3jehrzrOeg8/IdPifhT845X9q24b3kG0orzCIOk0/xyUyps+ 9A3j54Fp/atyVmHFPRedjGMwYPIqKQvFnzYuaoN/NT1yJZEFbyud/h1Kpi4+Z2/C Te9glz71eqlUSond5WFnLSd7GSuUxXprwC0bGQ61tASISQQYEQIACQUCSg7+JQIb DAAKCRDMcWlUAz+jPNDzAJ4lJdUYDs8aONEFRW/TpLMiepzPqACeN0HmbLJjwaVk tI1h5vM9MqGGVwo= =p6fK -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/745C015A 1999-11-09 Gerald Pfeifer <[email protected]> Key fingerprint = B215 C163 3BCA 0477 615F 1B35 A5B3 A004 745C 015A uid Gerald Pfeifer <[email protected]> uid Gerald Pfeifer <[email protected]> uid Gerald Pfeifer <[email protected]> uid Gerald Pfeifer <[email protected]> sub 1536g/F0156927 1999-11-09
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<[email protected]>
pub 4096R/8B9F4B8B 2006-03-08 Key fingerprint = 31AD 73AE 0EC0 16E5 4108 8391 D942 5F20 8B9F 4B8B uid Giuseppe Pilichi (Jacula Modyun) <[email protected]> uid Giuseppe Pilichi (Jacula Modyun) <[email protected]> uid Giuseppe Pilichi (Jacula Modyun) <[email protected]> uid Giuseppe Pilichi (Jacula Modyun) <[email protected]> sub 4096R/FB4D05A3 2006-03-08
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<[email protected]>
pub 1024R/BFBCF449 1997-02-14 John D. Polstra <[email protected]> Key fingerprint = 54 3A 90 59 6B A4 9D 61 BF 1D 03 09 35 8D F6 0D
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAzMElMEAAAEEALizp6ZW9QifQgWoFmG3cXhzQ1+Gt+a4S1adC/TdHdBvw1M/ I6Ok7TC0dKF8blW3VRgeHo4F3XhGn+n9MqIdboh4HJC5Iiy63m98sVLJSwyGO4oM dkEGyyCLxqP6h/DU/tzNBdqFzetGtYvU4ftt3RO0a506cr2CHcdm8Q+/vPRJAAUR tCFKb2huIEQuIFBvbHN0cmEgPGpkcEBwb2xzdHJhLmNvbT6JAJUDBRAzBNBE9RVb +45ULV0BAWgiA/0WWO3+c3qlptPCHJ3DFm6gG/qNKsY94agL/mHOr0fxMP5l2qKX O6a1bWkvGoYq0EwoKGFfn0QeHiCl6jVi3CdBX+W7bObMcoi+foqZ6zluOWBC1Jdk WQ5/DeqQGYXqbYjqO8voCScTAPge3XlMwVpMZTv24u+nYxtLkE0ZcwtY9IkAlQMF EDMEt/DHZvEPv7z0SQEBXh8D/2egM5ckIRpGz9kcFTDClgdWWtlgwC1iI2p9gEhq aufy+FUJlZS4GSQLWB0BlrTmDC9HuyQ+KZqKFRbVZLyzkH7WFs4zDmwQryLV5wkN C4BRRBXZfWy8s4+zT2WQD1aPO+ZsgRauYLkJgTvXTPU2JCN62Nsd8R7bJS5tuHEm 7HGmiQCVAwUQMwSvHB9/qQgDWPy9AQFAhAQAgJ1AlbKITrEoJ0+pLIsov3eQ348m SVHEBGIkU3Xznjr8NzT9aYtq4TIzt8jplqP3QoV1ka1yYpZf0NjvfZ+ffYp/sIaU wPbEpgtmHnVWJAebMbNs/Ad1w8GDvxEt9IaCbMJGZnHmfnEqOBIxF7VBDPHHoJxM V31K/PIoYsHAy5w= =cHFa -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/AEB426E5 2002-04-07 Key fingerprint = 58E7 B953 57A2 D9DD 4960 2A2D 402D 46E9 AEB4 26E5 uid Kirill Ponomarew <[email protected]> uid Kirill Ponomarew <[email protected]> uid Kirill Ponomarew <[email protected]> sub 1024D/05AC7CA0 2006-01-30 [expires: 2008-01-30] sub 2048g/C3EE5537 2006-01-30 [expires: 2008-01-30]
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<[email protected]>
pub 1024D/3097FE7B 2002-08-06 Key fingerprint = 6B56 62FA ADE1 6F46 BB62 8B1C 99D3 97B5 3097 FE7B uid Stephane E. Potvin <[email protected]> uid Stephane E. Potvin <[email protected]> uid Stephane E. Potvin <[email protected]> uid Stephane E. Potvin <[email protected]> sub 2048g/0C427BC9 2002-08-06
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD1QNM0RBADbw1IMsD6ShBkXQirwG9TUFkBfZOaGUB9nZZTGZzkDWsj9/8FP TacAKze6REEdtfADFyYolZrps+o0xVUI3ib5kzXnzz8yj41HTzR7PG0FcgINt5Ls yuq+d3ETSu2AALwNfolKy/9yIIcRFl1bI5cawOua5MB4VUaf4JHiyOikfwCg/zsO QReMvoKLcZkn9pcCH6EZHtkEAIxZKMcRaIuGe0vF3oP4GfuEXIa7K7R9ez0u3iiD inNPQ5vQuY0qJMLbZAu6wyqEP9wVXCdAiclBbPYRb9tabcV5gFkuXpLvq5E7pGkN hRF/rUeDxf/EKIklqe63KNqgzMZ2nM8lvoDkUrdSQL5dc2Y5a6VIq22QsgaraYmo j4p7BACAfCiZjND9VcNAQmTvEyNGslQ63gzUfE7D8Xlx2Glv4PP9AmZ2X+FRliY4 YaARKDK+62bNTrJjQGiaIzz9LsFV5zpYvHBQ9KP6NIp5bP3ljaUwyAJt5+GT8sGZ ZOBpSmau+s8RmSPajjvSwACjWF9tP19IJMtnk+pMn1SGiVbMA7QqU3RlcGhhbmUg RS4gUG90dmluIDxzZXBvdHZpbkB2aWRlb3Ryb24uY2E+iEYEEBECAAYFAj3s8qYA CgkQpvaYsfdm3ZH1VgCg3x3Qbvq/n5W/xonGXqI6+LJXLw0Anj5AgE0GPTC1naYn KpFmD9Hb+m6LiFgEEBECABgFAj1QNM0ICwMJCAcCAQoCGQEFGwMAAAAACgkQmdOX tTCX/nvccgCeIGN+hK7GND/4+9BbHpXOOnnlsJ0AoOavUpZeUj/t6pw+ld4CU7t5 iUrhtDVTdGVwaGFuZSBFLiBQb3R2aW4gPHN0ZXBoYW5lLnBvdHZpbkB0ZWxjb2Jy aWRnZXMuY29tPohGBBARAgAGBQI94tEZAAoJEJnTl7Uwl/57WiQAniYT7h0K32tZ 1+PkyM0UUvu/Vg3JAKD2VXNsiI3w3o/xm20IqR/UwZtAVLQ1U3RlcGhhbmUgRS4g UG90dmluIDxzdGVwaGFuZV9wb3R2aW5AdGVsY29icmlkZ2VzLmNvbT6IRgQQEQIA BgUCPeLNjQAKCRCZ05e1MJf+e0K7AJ9YssAR7btTX0oE9MNYYVQBbfYNpACfdyiD QeQhD+7FNqs4cZ+GEsWMxJ+0LVN0ZXBoYW5lIEUuIFBvdHZpbiA8c3RlcGhhbmVf cG90dmluQG5tc3MuY29tPohxBDARAgAxBQJD6jKhKh0gSSBubyBsb25nZXIgd29y ayBmb3IgTk1TIENvbW11bmljYXRpb25zLgAKCRCZ05e1MJf+ewE7AJsEexwRGNC9 uR8JUPjttVJG012/VQCfVg4M1xq2+h3Ys/DecKUVxt0uVsK0KVN0ZXBoYW5lIEUu IFBvdHZpbiA8c2Vwb3R2aW5ARnJlZUJTRC5vcmc+iGAEExECACAFAkXQf8MCGwMG CwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRCZ05e1MJf+ey10AJsHFjVs9WEaui/i L9xfITeCmwkd/gCcDlRcmGUW3ov/jmeDzGFrE+MQsqK5Ag0EPVA0zRAIAPZCV7cI fwgXcqK61qlC8wXo+VMROU+28W65Szgg2gGnVqMU6Y9AVfPQB8bLQ6mUrfdMZIZJ +AyDvWXpF9Sh01D49Vlf3HZSTz09jdvOmeFXklnN/biudE/F/Ha8g8VHMGHOfMlm /xX5u/2RXscBqtNbno2gpXI61Brwv0YAWCvl9Ij9WE5J280gtJ3kkQc2azNsOA1F HQ98iLMcfFstjvbzySPAQ/ClWxiNjrtVjLhdONM0/XwXV0OjHRhs3jMhLLUq/zzh sSlAGBGNfISnCnLWhsQDGcgHKXrKlQzZlp+r0ApQmwJG0wg9ZqRdQZ+cfL2JSyIZ Jrqrol7DVekyCzsAAgIH/3fG4jw0qo+iUk3wwS3oLPf5USbiPYOjUZ9jpaII8pYE iH7i741cPL8qNpFgshJANd4sz3Iu/hu3xj8aWaZ+jDOM674U69lcv1hl/rrHESIR oHIwfjmExLtnFl/2NvQ7uKM2jKoJNERtbi5P7PfLqD2Y8xK1W8cFZmPuD404SBRu ubk5BrYXv94VU8rxE34uhOEuAW/I6uv7DhCcr+bVJzJQYCsHxHh79kHsHEW6KAGb W34S96t9m8mgl7Kb+KCS7CqmqlmP4/itf/26wfXf5ynhRrWpUuc+jbf6n9afjjzm 0CWCBS6/f2OALgJX+J5DUG5TggtFVKMMQRf5Bv79F0mITAQYEQIADAUCPVA0zQUb DAAAAAAKCRCZ05e1MJf+e4YEAKD8ArLrD9l/sJDn45ZDBjs3PxAEWwCgoy+go5Wt 0MmiyLIGfKRYTeFnh6A= =AbPN -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/182C368F 2000-05-10 Mark Pulford <[email protected]> Key fingerprint = 58C9 C9BF C758 D8D4 7022 8EF5 559F 7F7B 182C 368F uid Mark Pulford <[email protected]> sub 2048g/380573E8 2000-05-10
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDkY4OYRBADvB+3Uh68SGrlbrq1MTAN/gnVaj4ztmA15X13bunGYdLKLEJdq rd9xFv5OgxGZXJ+sDhbKomJ7yrBGtUwC5kIrKXN+MPbO60yy30+kIVLKjXIv1d+c MlWhjFzHra7WGFmvhzYnbOI/zjlOR68iKHnwxhtKFOK9m2O3voURWLEuqwCgzK/S j4UGrPUmZf9XOZcKdnN07nMEAJrNh6aoVgK1xwpyO9uTURuCppqAUym/fr4xNQqh mngblwIACnV9FpBi1ogtX1iDo4YeQa7t7ALgdwTBbU8upVFYzoVByid9ibNu3OKv j9JvL55jUVg0wv6a8bEWjxnNK/zVa/HCzTbAzHob0CSgH9WmEJJEUIqI2/PG2dj+ ZX3QA/4y6Gon6iya2wk0Zs7mrTj80kxLRMnuPN6geTGVNTfrxat+sA1PVpT2WWSo qOrPoyxcpUBbJ3VlFmuYDDgld4lJiGD/2SG5BkD6OoGlRnD5AMgUxQtQFnkloao0 3md8UDucIJnJRF94pttQtv4lVKaocm4z0Fx6cWC4Ysupj1AG0rQfTWFyayBQdWxm b3JkIDxtYXJrQGt5bmUuY29tLmF1PohWBBMRAgAWBQI5GODmBAsKBAMDFQMCAxYC AQIXgAAKCRBVn397GCw2jxyVAKCbPwK2rDZx/oahfd4M7XJ4GoF0xQCcDExtL+DK wOugUQwfVIExB+HBM3y0IE1hcmsgUHVsZm9yZCA8bWFya3BARnJlZUJTRC5vcmc+ iFcEExECABcFAjse9k4FCwcKAwQDFQMCAxYCAQIXgAAKCRBVn397GCw2j/OXAJsF bdYQGgCs3sXMOdb7pNUi2DL2kgCdFOFSojmWV9mulpzH6ceb/fKgoJC5Ag0EORjh UxAIAMrmc2VXtnp/WWhGne6yTirnnWjR/c+rSK8ixbAqTkdYnocY6gtBJliR7LSh Cv2RD8TaUc0ZZseHC5vR7VZKXobXUF7QqB1Rgzz/CpsFeEmxxQxZrVKNjwcMloSt wmH17yW5tBDg8+6KhFwHj40oV88/49L8utVMEW80gh9O9TlYw5qCAp5QKqkFS52A hO54xjTNdEpv/9yXpwQfgUqkAHM8MQhsaxmKCIQXUGt6Lp13aHDAYtMizED0LBjV 3P3qCoc03P9k2nWwGGU7dukncYNNuLDW9xwkAfV9VQuPYCHEBiPTcRnn99imyvNz FNhOElHDttCyKtt1FdZZVAQzXusAAwYH/18mnEMMv4rMZglYb0PRCxaxwQYkxESt KyXEclTc0kgyaZnf4Vbdz1rroxxZLIf+16p/MVNFierz/7d5FbJYggCDSsBAaj4r Qe2/Os3oCnHyyQY+zF9Ac30CsxzgDxMYxYGJHr6x+s9cloZ3WwBFAO0bMoS/9T/9 /S7L0d0litecox5et2yEw4AqHdCslGx5mX0os66uh99eeEwW2EQHSLklwUPReb7U 6m+fNyWxq5w+qTPG+zcXdiW/117T1aONVmg29tSNW8S/syha2PCJ+IoordBus4mU kfa49yCuXyZAYDNLbkiqMVTDCqrH2+n1mbUuhRBaSZEvgqVfVLZzRziIRgQYEQIA BgUCORjhUwAKCRBVn397GCw2j7T3AJ0ZDGzVqNQBE07ntRKuzQQmou8YhwCgibYR ZJyP31xlO+Lt5FgzzeqcQwU= =DKp2 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/945C3F61 2005-11-13 Key fingerprint = 085F E8A2 4896 4B19 42A4 4179 895D 3912 945C 3F61 uid Alejandro Pulver (Ale's GPG key pair) <[email protected]> uid Alejandro Pulver (Ale's GPG key pair) <[email protected]> sub 2048g/6890C6CA 2005-11-13
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<[email protected]>
pub 1024D/393D2469 1999-09-23 Thomas Quinot <[email protected]> Empreinte de la clé = 4737 A0AD E596 6D30 4356 29B8 004D 54B8 393D 2469 uid Thomas Quinot <[email protected]> uid Thomas Quinot <[email protected]> sub 1024g/8DE13BB2 1999-09-23
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<[email protected]>
pub 1024D/85AC8A80 2004-07-22 Herve Quiroz <[email protected]> Key fingerprint = 14F5 BC56 D736 102D 41AF A07B 1D97 CE6C 85AC 8A80 uid Herve Quiroz <[email protected]> sub 1024g/8ECCAFED 2004-07-22
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBED/zxERBADJcZlF+Rzm8wL5lPTTPA1zLwa9u4ZZeVheS9vRGTOC6Sfi2NV9 feWCM4TR9CVtp2tAcVlrXjBzvhbeNajssCPn94qUh4z8ERJKT1R8n4zlilTcMTSQ qZ9t7mIpcpsmpCO1FvfozjfexpUSeLHONKlwHhXXQFdJm6bw3X+kZKUeQwCgut4g ilrxtY66n6pzC7jt8GaM1ikD+gLzk88lPNHA8hZurRaYoRD2cD7jOMk0WNuuRZLA 4LsG+hJUyrPU5vLKou+2iXl6MBvjlYwY3FS5wc1PZ9tRRbMNIq71xCTXmSapks50 M+/cVYhJhQTVWCFhY+HZLDJpiaeMEkTHqoXo6ePVSMgFDQXADv/hMIPkNheXzmXM yhw0BAC75FBSMcRJz8jOaHXSZ7AM9EdMhH4mru1YyfLzwqk0DQS7ToXc8mEpo9SJ c/rYfSHf6Egx9856sncCfLvoTScZDwWXvB7kJPOfXK0u8KK1uZBDAqEacmm2oEHd Xi0KbfW1zyqIPnLKjgu57OqSGyDBKzC2XuQvWcNk7Sol/Yxp9rQsSGVydmUgUXVp cm96IDxoZXJ2ZS5xdWlyb3pAZXNpbC51bml2LW1ycy5mcj6IXgQTEQIAHgUCQP/P EQIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRAdl85shayKgHKNAJ9/qmkJgaMW zOFnMUGcH/fc9ksrZwCbBhYIuo/nnHe9tC53mIlqDoXOz/a0HUhlcnZlIFF1aXJv eiA8aHFARnJlZUJTRC5vcmc+iF4EExECAB4FAkEOc8MCGwMGCwkIBwMCAxUCAwMW AgECHgECF4AACgkQHZfObIWsioA0SgCdF2eAlmqyihMQVf/T8r/x6x385vIAoIhZ hhYxTsWZ4dUA1XmbEfZxMQPvuQENBED/zxMQBAC8M+1oDgxVjVnYlhapOHWNMDlU 1LolN2B9sUm56K0UaCpnCsrm2Jc/kzr1egmjqxGkV1dIih65W+oPZQOBqq4mAvPI SRlE0MrcPCeRyzN4zSwqwu1o0rcCWaacPpNxnG5icluD1RPBDucRPhc8gFMmcfEq 5pgw3LU58ZIrvB3FLwADBQQAjM9l/u6o0CVwRZ6XshuJQnc7Kt+su/xyZjkYqURp sZ8Q9xWgKI4Tv/x+IbgkU5D2vCu6FyfDpBMWsNnSxVJ8FaHCWDKLpDHxB0+RUcme HRcpvV+HnLvJtF1V0dRB3XVtD8h6TcGuntFlKHFTKKQk4H5X+fbsUdq4ycNwgNm/ IfyISQQYEQIACQUCQP/PEwIbDAAKCRAdl85shayKgJrjAJ9S1aS1G9Vpq0kYjZHp pFmvrw+CbgCeIgeeepmX9+n+2YEAuWfJlX2KZCs= =Snnd -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/59F57821 2004-02-07 Key fingerprint = 9451 C4FE 1A7E 117B B95F 1F8F B123 456E 59F5 7821 uid Doug Rabson <[email protected]> sub 1024g/6207AA32 2004-02-07
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEAlXqcRBADYFElOoUIMntNwwMiVO/7bQQGYgo0HOz2ih10GpP3iyNletvOt AbH7AFCB/D6eHO/pOs3khk3ys3xL618e8vxttN7/jC+GWlPb6zReE92A75iP7+ud aDCccDlpfsoLfTt8FlZnFuA+d6gJ48Aie5meq1T/IlFV/EJGZ3BfTyKkAwCg545G dnVFL0hRjIJkz6Bs5xKqpxUEAIpfe1Ik8aXgwgbW35dZPUtUNDU3OmullZO8z2BU HefkZDyL+y5MBO/9aGtjN+TpnhmhWcVKD7rhTsL4w8v719Kq3cGFfNL/E1D6YyCp /BU0/Hm9+1MMxPg+nIUkhU4HmtZGoLT71xRSendbZjCr+s31XXxA5YbLruztTRFT YcNyA/oDbsyMIcEemO7F2ypq2FPlnjjCISS2Fr0HsBQltedY1Kr+hfOnjYAcMfIQ QyojMPl3bV4IFcavIhkiQBPBwGJsj/SNgNhOek9v9c4iuLpXzzbOfO4WiRBkpUY/ Fzefogi7d+9t/PyPVzd5Rzwx4eqrTYOeMT8TJmGLWkoUwbMe1rQfRG91ZyBSYWJz b24gPGRmckBubHN5c3RlbXMuY29tPohbBBMRAgAbBQJAJV6nBgsJCAcDAgMVAgMD FgIBAh4BAheAAAoJELEjRW5Z9Xghhw8An02BsS5+rEgyF+f+byeZy5sIrDnJAKDK GpoGPWfwZ8leK1MqENlxZZerx7kBDQRAJV6oEAQAvo0FvU58ew8t5XAo27wvwpxV pdWoKRTF7lS7ENfhwoiHVW2qsX/TfxyRw50BEtDUlFe7lBqSyskJ/3ejcVXuJ5cm vYmxrUEfas57AnBsJqFerQhqB2Pr6BwDUU9kpmJv9vAlt/vdX6lIkXTfvGcrSFWF 7cDEL++0tD63ULOVQ4sAAwYD/1CUpkXjwmFkg72LddRrvmXtKxk3crql4dYj/wjQ JeWeZQT+HKOOIHYFENZAqC8GSfQ621DeFD+TIN9SNeBG8K1LNqxUk71QAwiYSz2R Cm3n97esKKD2SB0yJDQJo+MsQ7PKdQPJtCDk34x0JvA4eijiTj9yGdQX8jWi8Sd7 H0NPiEYEGBECAAYFAkAlXqgACgkQsSNFbln1eCGOuwCeLy66OJdIebn1pU3UXo8O xlFnyncAoOYrXS8vPETOhlx/yeBVsgfX1vcL =ZXPM -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/9EF6F27F 2006-04-30 Key fingerprint = F251 28B7 897C 293E 04F8 71EE 4697 F477 9EF6 F27F uid Lars Balker Rasmussen <[email protected]> sub 2048g/A8C1CFD4 2006-04-30
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBERUw7QRBADJY85JY9QB4nxv3rXAPnlW59gLmWzuuVNnKBrQsoD5jq6WrDEs fqqU2h/JwHB06RZMm/VUSH9MnsrxpGGKbIuJ9bRn9zA4qbgP0kPCMoyb9AmyGEYx bIp0N1PeYni64IQH3XGaycloWNhNDDLv6o+c6e+wNnRfUv1qygKhM8vf5wCgyN3/ KgxrTIo27FnrLDatjxYgHeMEAKtOpeyGk8VhkxXX7t6/sD1HPvDiuYLfM/14VKWB ZXaWcOzhytZRFbu/DDG2sMiMFdK8Xu7a1Zsfa683kmpgqHkG0FYcS14Y8yHDU1IM GpCRz18v8tZwW4N1npJ/vthpL1B4Hx0SUhGo2HgE85pRHdsDbhp0S6pZW2ff25wZ ljhABACI2/zM6SbfibbyRsvJcyW/TOfnEOxHUFfqT3SFYAP79hRBsqCN8v4fSR54 Tf+jHv7uYVH2lK3zED3sXn2VCgjD3jJNLkeGB6qY/WnWYCB63YwUXk2igOqGijJq XEVplNG6ExaQIco5vilOseqWuW5ONJKMM+iEi5TpfV1cPGFpAbQnTGFycyBCYWxr ZXIgUmFzbXVzc2VuIDxsYnJARnJlZUJTRC5vcmc+iGAEExECACAFAkRUw7QCGwMG CwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRBGl/R3nvbyf/xeAJ98F2AdELJxK6Po 3rTPUqnJK+GZawCfX/0jvc82JWnGwbDcpyp0+xUJ/xe5Ag0ERFTEKxAIAP2AWduS +WfuTAqZlD2aIzyvzZPOJ7a8ZDmUtBDxbxuBetLMqC3oFMoZ1/857wV3J7Jvxx7u LFbpdYS/0zXTjyKE/NWqeHIuGH9fDOIDuUKT1ZkEh+OzfWQaUihYTib330LwWP1s 9J8zLCJM1SdQSHVDOG9m+28JXH4ITmK3LkR3zdb/QYEOyFmHfhSqVQpZ/KEBYZ1K Kn0gItwqDILuk4v8BvR3ioWF1Ywod6JEMAgJvwypyDlyglvVVvav8UcOYIYfyv2i 6g2EjIqmCpzaEa3m/RumCWaCLIIeZUqpM+rIfQyKcjgU8J254dFMqFYFIX7iFGnO FVhT8tyNXolkKWMAAwYIAPrna0LxXoNVdwCyAW6pcNR9LkWsalQ+cCTS15jnguq5 V6HmMHsbAIwcXqZn6benX5g6Gx68gIrSS/c3iBMS3jiauIu/bjvhdTMLr0v/jXpp 7HjdOkgwfdE184hxVzsO0w3UeWFVhmb6sW/Wb9OtdRTj160mHj5UsCycg7Q75R20 2sBke5vP6o22CCNOZQxM615oFDgotYO/D5I8h/x08IQHlyxzgG2VXFbb/vvibOVs iFA246TaRzxYjo4pJ7apRKhXWX9Bm6Tl/X3X41idqbkZXXcdOV8i1jjJ+8hvmUXX BTrU4DyOHeRrKD2GRBGMn8WxhPL0DN+w2zBRpRdM7sWISQQYEQIACQUCRFTEKwIb DAAKCRBGl/R3nvbyfw7kAKCnpl/jNh5Hx0mkJ6BEDWlmGzuvMACeM95BWxxghmcn J6BmOEuZ+TPmHxc= =6byw -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/1E12E96A 2012-08-26 Key fingerprint = 8C57 BE3B D320 5FFC C4C3 C0B0 900F 45A6 1E12 E96A uid Chris Rees <[email protected]> sub 2048R/C10740CD 2012-08-26 [expires: 2013-08-26]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBFA55DwBCADLmiSSORwcGwNoCi2X02jPmS2lcZXWp5uCtzx0ybPM65tIQAII L5e8QzyrV+r/yyNdGJIKtl4ty69aVodQ6n6Xf2BGqmm/x6jlvg2BrJgNHYfAjkIV tugkbwsMQxHkNmOlB+fURVPJk9xub4pz9kRRdtXJ3DiImQRw5XVe2ZvBXZuu2nOz jw2zArEaBSLbjo1MlXWJvvuyA2ktaKcAjFyfz/VJ8M/RDbJdfYDB9Q78jrr4uwIM lyWSWUD8RxAvbWw0My2tr1Nu9FDvsydbKygGnZ+7oo4zvqncGZ+0am6D3XSsOcaf /bzB8pIGJ1hsSe9JHvYpLvnWCwP+AJtKTPwFABEBAAG0HkNocmlzIFJlZXMgPGNy ZWVzQEZyZWVCU0Qub3JnPokBOAQTAQIAIgUCUDnkPAIbAwYLCQgHAwIGFQgCCQoL BBYCAwECHgECF4AACgkQkA9Fph4S6WoK/gf/eghgBaGoxfXXbNZwZNIC0NUhISas XVYnKNpKCojFl80ZGzI5mPAFUiQm6aMh3fSrzTIB1uxxd9T9A3KN5ghf9jjtOmpU +uYEm1aW4wHYSWzKDfgfV3QlFOROBn02V8xc1XPaZr0pqBCSJ18BDVwsI8UG9odw /vPrrcE/Gm3psKJRwaHVGTtvJYPZYB5dQM5XD0shvj7DDSdut5l7DGDGUhp6Q8R3 2iMkCSTbaJEQNMzUqoIIw/oPrgsVeNxG7zFrkxbdl4YLmuzy9nZhRPLZ7lWpoRrf 3lsvo7WktMEXiW+uAX23wKH3P0gSypcsJ/jbb0nfV1r13/8O8plXwo5Z9LkBDQRQ OeTHAQgA5GzHZKoE3obEg4Ey/hW5xp/OvyQr9hruwwd5CSxendMJWlmwT9V4QTDl RNtn6n37n70wJxjUHdDrr34ItKhWN0AGy71LKcGBrfMenSW2IugB06/kSik3ti2m fVI9TJ/gTT4uSppM2MTMmRPw1YR9VOGvO3CED4NfVa4EajCUtMMoEVaFCk6hPhzs pSLcnvN+DUVR00RwGQJveHObRCDR10olA0PrLn7hqU2XAlnCAnclSPLjj3pLH9hi vWkoeXr8PKNC50yWqclyuTKo+HsUkanDLgfC9kq+ffLvebUayaYfGyYpBKcxzcBs uLEJhbh26NBqVfp1q7fTnxvNMVMUnwARAQABiQElBBgBAgAPBQJQOeTHAhsMBQkB 4TOAAAoJEJAPRaYeEulqcrIH/iO/VQq5gLquEQfzFdIl0I2HIyey/bNpkhDLiLNv xPVpflymH9c90fdEXUYrI1HSbYKuACRsiXhu+SaQ0uvfBZuPDQZ7XWweuPB8y+fe s86MmAyFXGs8gLisYREnGyltNK3goX+FiZeXdMkE7u+FfFSgMgP02/Ki85F2hj7B nFAyaERP9vCeK20dUKSXn+y7+xqbTZBg7Ic9krSNsi77IyuAQ11BMe+vQVVoEhGO TdjgE2VJzDiS1FXcvFWh93f3AQ9yAUqkstHMzKAfkwqm4y3SFYCS1xK5YUszImAa 2T9qZkw+R7dFEM20OWtNiz6P80+BRw/KAL0PwDFCyU4MoC4= =QoyM -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 512/B623C791 1995/02/21 Jim Rees <[email protected]> Key fingerprint = 02 5F 1B 15 B4 6E F1 3E F1 C5 E0 1D EA CC 17 88
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.7 (OpenBSD) mQBNAi9Kb+IAAAECAOaa/3k5Zo+9i/fUPQfU4fzrRFwNifp7ujcxLNFsnMgcWeJZ XMd6iGiomTlBSlIHeNKa+JMGPmBTRrL7I7Yjx5EABRG0GUppbSBSZWVzIDxyZWVz QHVtaWNoLmVkdT6JAFUDBRBDA7AqRrL7I7Yjx5EBAQSTAf0WL+tTm+n0NFF2xQUO ZfxpuqnERjNQY5KaWQuC6qk4UOVCwoBNA24ZxY7TifvhsNErMHMc6HTKGvzhyGyV q/pGiQEVAwUQOhrmBjZ8FqYKL4flAQGcEwgAwPj2xt3ITbeUWf6HiqA1u6FiIy+w T+GZC2Mit4UQNdjKuNJad7t56Wqem57IhOGDWGYZJoZki65y9jD0BB7MixjuQhhW CV/vjdiX+pDxa0HG/75CNS7PVribIuhpbTFR2tG/EZh0sl8yMUpYho81yUDMeHVN UV8YqerlqntgqVra2cfPanScFve9YYXVgEbM2wQyWnEG6q0wPL+upmoZ8ppozHfr dVYiOonwl6QrgtzavI3tHTHtxDajMJpnQLC0rWHQRmY0Xd9xs+YUpaoUcOQFUH8L PEp7d1OQDd6KJOV+mQ/Bf7tZwl7as3cl/16nCMZoDJVGNGCuug4vEeV36IkAlQIF EDMEqXeGvtRXff+FMwEBX3sD/1Uf0sqHFBfFtuphKG5ZK9cz12NRANLpVf0welRX Y/Yp9AIL9xGGiEFvlma1TN8IA50Gxgxq7cEiHDWT2Zh4Hps0VWmuH9vGwc84D6PW JXuuPV4sdfCZnJUj+g13P7ypSlPSS8WIDVET5vG+K5m8jOQJ0NPsWGaZMGknXfLT ZDWDiQCVAwUQL8yKYkDqOE5/AdFlAQEmFgP/VwyNP37Vaunu7DdvBblDMpfMStds 9GY0Jmhe7q1EkkGjwSJHtkn31yPwdb/93d25puCU6rZ1+qw5jKMY9qa8RvCOnnNF vN0fOqGso+We3q2rGamjBYtVnihYBni7jCBTJ1lvHixWM5XjyGkIQsRBoh3qNUNA I3LeH1ArE3IHzDSJAJUDBRAvxTnlxS1HbQ2/kG0BAeaxA/wPKsCrDl3qJsxrLPUP tMfXhGBeOZWPMx1rulCknHpTgfjPpA7soh7K9zi9LAatR08sotD7oAFWslP/OR/F DsaLWztFjSmu1laZyU5E7yCIsHgILX0aIsazYW0UoYqCm87FDzHP1kjXs7c6mgOJ g2YIY6o3UH4azIigo37B52J6Ng== =O0QA -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/4A819348 2009-05-24 Key fingerprint = 2D8C BDF9 30FA 75A5 A0DF D724 4D26 502E 4A81 9348 uid Benedict Reuschling <[email protected]> sub 2048g/8DA16EDD 2009-05-24
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEoZOPQRBADIhhxLB7VS78ooK4j9HuEjamF7QZTXvti7rtJdnJRZtpHW2Tzo GWbmlyYBQoGTk8DVuUoQCO6yy0PNe9CVUDxyXz5dUL8/fSfAOhwZowXF7X5mSP5I 2G70oN9PgdMhxazIPoUlRFAtuDEZl8udtCOVyhiLylXnHj3LJS6XG2oetwCg33hC UWM/ZW2XZUt7+LQfdbTvgycD/AqrDrqazX86fI5MjeRuXB75i6OCUGorcWH2T8i+ P6r3+1A1zjxhXcYMsCI4CDBHo2Z9oq2LN7ullvutfQA3sFR2KxuJmOa7GqHFI7Zl PYiRD4Zkuma2bAxIzer65IwQaaC58MCoBxTUqyKys4cv0Lalj6bh+yVArG0v8is2 5E8aBAC4GptIHT6kfx1515W/1aBiPo+2Qu3227FLyNypKu3x/EwmFu3igbir6EOf uQLbjWclnJv2IXZhxiS08EoD6sFFrgDYAcXa3qPpIMjYEEmH5RziISGDwqCazgFY 63paO2B8aHJB1W+A7jz7PYMsLNXt0JhwG4hLgK8fWT0NKG2TSLQlQmVuZWRpY3Qg UmV1c2NobGluZyA8YmNyQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJKGTj0AhsjBgsJ CAcDAgQVAggDBBYCAwECHgECF4AACgkQTSZQLkqBk0hwvACeKQW/gMO7z6hv57J2 4Ed012vx6mIAoL2JyQyqhtwjM3QJ90ZCvB073uTmuQINBEoZOPQQCACi/zTUlqiY dA+XNPPH93JSArILJcRIamP8n+Ans6akcluVONe5qRG1txgpclh9/v0Cv3qkr3hM Whm3Hh0zCtlrpZbd3oS1qdejpnCJxWTyISI/n6LXyoZ9YHI+IdYkcQowxxFDw+0J jIF/ROzHRyAmHqN0ORPyN0a+Xu4st+lgWBCj84op2xzzId+d4mTTyjvlAzbBaijI xMdbca3R5V4ISFzGiOHtEWQYb0lUz/DZVXYC22JnQdqtOJy/vZ9IMsSdi0tWsugo DGRtfdLAsg6PHIQZgTwbfehQmdSsLAAy43uvs1ywT7Nh0ffCmQawvvOhUOlIrYXU jxnIxQkncTqDAAMFB/91mznM5M2NWRhEIG5p0SKJaq4rrXUngMA0Tl4dhrJhlkol TfTTlS2u8jSjEK+39Lbs8uWZDXg8PHK2i8LOmgmuf1JfRV0clJMa01D/ZHIBRVB/ TrJ3ia9rM7EG+2GBFzjkuMEpKBFrW/YLtCJZUdYfyQRjtLRCa3NEfQolvUvA3V+W ehixnxIpUJrz3JjLGcDVJx0tkgtFV8f1D6O9WEUc9jLzAM7ehrqbA1QQFlnwDcZo T1m0+Js3cIOfiLMqHB6iZi0tBTj5A2h5C/lWVCdw0HYjZkRKc2uG7nFfv++9mqS4 HyiCcDiyStR01S/CuV5TCLZ17tW1Ihi53EGO8K3hiEkEGBECAAkFAkoZOPQCGwwA CgkQTSZQLkqBk0jJ8ACcDgRWhxql58ou07O1MZZbCBzDnkwAoI0ngzxuGBDgIIyx vPpqAjKmWnR2 =WFIY -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/FB7D88E1 2008-05-07 Key fingerprint = 8279 3100 2DF2 F00E 7FDD AC2C 5776 23AB FB7D 88E1 uid Tom Rhodes (trhodes) <[email protected]> sub 4096g/7B0CD79F 2008-05-07
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v2.0.9 (FreeBSD) mQGiBEghRtARBACBmf/XQ3g+mMyEodjtSWZ7wkXEPiOog5koWRiUmR29y/yBWfFu M4YUau2au6+VushGJOvF7u5qR0Ii/2MPI0CzUZ3qQ3/WaQvMAIM1N5QXWIpFbcJ5 5hl1sS3oGQahu0TYbXR9TeXfMmH2dq/UMnW8ACZjZubdGirQQ+ST3kLSTwCg88c4 H5T9wIRgyFixvOoMZAHXz2sD/1NST3YT98MXJAuJhKwDqf20RLB4nLysohLNBKIp v/YBv4LBlOJznsTdGCRgsEnRjG8u6sXGxfp0iFC4P0T7J/zUwV054Sbrqzmo43oI 0f5qUhYDt/D+WYSdnM/PjNdLm2v+DReiiQmRcDModoBU9eDHJDhonUShIeR7D9zA H4C3A/41Y3Zbue9A225HkJDBSnswc+D9dBQ3oOebUvboGq9kP/ItWEZRq6suZbzZ 2wGUJbB6GpStU6KjY2YpVtty48VS/E8O3lYOoBA/UWZRo/d/z2nVtdBdN7Wpii8L OS8pFPNzqKCHZJa3AXjbF+i/KQtIh7cS14PCTH+2Y4xXx8FstbQqVG9tIFJob2Rl cyAodHJob2RlcykgPHRyaG9kZXNARnJlZUJTRC5vcmc+iGAEExECACAFAkghRtAC GwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRBXdiOr+32I4W6kAKDazwoit6cJ Pfb20vKzvBGIAeVY+QCdF0y43ZXQvF+xVK0zYN7SHC646lq5BA0ESCFG0BAQAKYg s+2gPS9eP9zIgsKa46liNInASY+ECaE4qKbFeSnMQwlhl0hu2+SI8ZaoyUDhNeBY h1C/f+PQ3YDYbtRe62f/aDQyOxKe+p8FEG/RregBrZviSxawo2zioHiTkbV17/Vv T64Vj2pwupXAUzwfIq9p8I7XIA+sG9vHVKiathXxygWYlQAeGnGVYFUyPAv6KJFs d/bOIB0+3MqwdQ+rDKvBS+dGOXnf8WVEXDQXcf/E0xV9rE2+jd96NkawuuGRGiV9 KvI0YHL6lCeR0ZOMqdygAgeyi/C4ee4IdToKzsXQVs3CAXLAI0FX9lFTuaAyRCQy OY9vbf5LyBFnyf/XqYIJE3xPp5M9doLYRf4X9pAxc1560Gb/OJw+STJGtEpuhN9p S+S5CLD99dc0ehxYdsvkXDNYFCiDEVo56uwkNsHu0TIsYvD/hkh3P8a7OZxpY/QO pbbat7KtCWgToKvTMt1UAF+vDPYcTKr1o3Fr1+HsbOZJrQNXPHx8pvfD5gkIYsZT utZYTKttCw/OE2aTlCe2U8Vvz1p0mcaxqKRkIjPja3fKkDzvy7xc4CUZRioWvBml X31N8XDMS5D+1nXz1RgXfVHnMqixmKRgSQj80sQK4Dk02a8l/TMgLMeWkK4tL7Tn /JCD4m86wHq1SgNHxoBh2b42aDUE4SN44Gj45EwzAAMGD/45ZzhhhaImBtWmAawR SOW/9UbK2rnxqK0+NN5Jr/5e/l/5vGfsVVMROx2X3qY/YOjjNoea/sTjLezvuSnV nJn91Gxw2RhnvUC4UcxU7QjLIfg3g+TS9cgKSAMQ1HHrMKUh7mbd+xg3XjqTCes0 UEd4HNCgajgojwFxhpESEsUXkuwTeei46jDN41EscvQQCkn/tpwW+OwHEO4uVJ1h NvesKvb/cvDjX1BVpPWc/sN8YguUq6Fcqmhhy4td2pTnuMDjF0va5HsVQrRqr6SV suAu+L+Ni5mNiY+vnqx8UkHkZoJml8FgbCR2Ftbuqi1+PCyfuW/qJOAJXLaeg2dq eze0ZzYHVtXTbVKZO/w37H2TKO6K4ElbJjTZi5EVoAn8VaSlx6uv0pfoZn9U9mrb UbOvb7DdDlgIRSp1RY+viJgiJ5yNNJYaFg8/SOfZo7Ypxhhs8oHXdOyMnbUU+a7g bTQdQJ/1BhAh+IYWfbbTYXqv/JKs1ZSjs/dimUKTWmDjaBPiuySQ+GKjvXVJErrL qPdEso8oeJ9r81X6u0GI6ZfUNTO/2WwdkkqDzixtcTHpTf5F5IKNC2k2VU1aVHB3 wR0HV706dUi9PNCGOczpV0nWwiqM2vMWqf6B5ok94hQGur7pWHHpRmR+yTH+fNbj dsMVspd6Jf0Kf5EEhCYSMoruHYhJBBgRAgAJBQJIIUbQAhsMAAoJEFd2I6v7fYjh N8MAnA0vfLesP3eTe8VtzfnKtUWHWHGlAJ9a6oA2KcW/v4vCLDjFXJLruKKGjg== =S+Kg -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/87C59909 2002-01-16 Benno Rice <[email protected]> Key fingerprint = CE27 DADA 08E3 FAA3 88F1 5B31 5E34 705A 87C5 9909 uid Benno Rice <[email protected]> sub 1024g/4F7C2BAD 2002-01-16 [expires: 2007-01-15]
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.7 (FreeBSD) mQGiBDxFDgwRBADSAPXXRSDeS8jX0younPZ8dPSW9UBSCn9GKgyV37q6rrwaHlSm CspUTL/92h92nhosLkNa8Xq4P7oZJ1NUijPGIXAxuwOjkE2lxBP+0Kxzkjrc0FF/ ZQK6cqpVjtrTCGBo3+im6v/dw2UnmILM1GrV+TpcmTvyGMJjXT4VB+xtiwCgiv56 PVM6qCrd5p3NXlveaiYoXwMD/Rza1QobPGHlpX0hkj7bPS0YApNEY8F82yZ0vArY NHiQ7lUW+wLWL3+/+h/O8T6tjE7FeKdoI9+U/EQ+3tIbUVpDWbURJtJVyCE/rD/M 9kDjXxp/74aICSIlRxPMA8AGAP2Zv7a4GZIlhBVmDu3tKlDvatUiRU9HPACOZqQU FpR/A/wJRDr64ICA5/N0qB3e9Rgxg66LcjFl40jwM1Hd/8c6JlLE/vcdowcqxHPd yEgKZoJoKYN5Y7WXnQUvrkD5O3b68MGfJRjlvxCML+yedD0lDntzJE2O8NQdATnB cj1CraaXHvtN5sddw8Gtih6/8p835fcsQyr/V1BKhoTGCTtkpLQfQmVubm8gUmlj ZSA8YmVubm9AamVhbWxhbmQubmV0PohdBBMRAgAdBQI8RQ4MBQkJZgGABQsHCgME AxUDAgMWAgECF4AACgkQXjRwWofFmQmD1QCggnxa96nN9TOz2aLsVQ2qszwzBBQA oIHKFC8JXYP8FH0fA91zLnceWeLDiEYEEBECAAYFAjxaJggACgkQo8kg3R/NoURX hgCfY64+KES+rcptZLiA5hoAvX13gsAAoMOiUC/0Non6V/srofbjO8HFM/IziEYE EBECAAYFAjxYkvYACgkQDCFCcmAm26bQlgCgjapRIU7hMjz5HBnZgNr418+JVRkA oI2DYOP10H4gBZPwT574rkvlrXiKiQEVAwUQPGs/CGfCgI8zwWJ7AQFkGQf+LQO4 gNf0j9z/LIyKA2mCT5C8Zjh0h7DmRxiiU+4N+bIUuZy7hSVlyWnJMG1JTKMiK1Ss nUReCTkNM70rBnxOQV3BlcHksb9ZsrECy8icfslRJGpQmQlrUxppHSyb7UJh5d69 C5xpDEFUBpTgSZw5JKDOui8gZL14TcthoP5vuj9geo+DWWogyYq0umiaZSDzGeSa ST6+ebL1ne+F8hVdxSHcTChFVfrHDWdgAhkGBantTsfbETTwnBHH/k+INu6LxBkC JAZMw50vKs739Z+Zxx/gSRd2CDnSlUsoMgJGKLX5MGWmCqEPw8uyBT/T9t8GOAg+ sx5XjhBhe3PmVPTKNIkAlQMFEDxrQDpVLh4uc9KIpQEBgk4D/RaNrMtwjUoITVdY UwNLGdh2JC2d3pM2b0DUoL1rcXwctmc5z3I5co2c/r9k00PGzWv6D3LYboTd/bxk lPvn+6uIYmisl7CknFnCLO7lbILkEBGpQHE/8Z7EAI2zUZ/bi3VKcKAFooNPv+2p HteKkkVc6z82BWCI0bzH+v/Z0Yu+iEYEEBECAAYFAjxrRMMACgkQUgAclY4JAiON BQCgiIf8HrEU/qOoM9BMRwW/1RYeVhIAnjWu/jgHWJVvdPpfG4UIJKpk8DaliEYE EBECAAYFAjxrRR4ACgkQjDKM/xYG25XSygCffF0SdJ+WNXkxspiC2BzQAldql78A n27raDOotEaHxv5/qatznaWJja5UiEYEEBECAAYFAjxrS7EACgkQGPUDgCTCeAJj kwCfa3fOqwWcLbVO9we8um2rkZl4qZoAoKLH4FUXz3qldvVyRvhbSlDWGwP0iEYE EBECAAYFAjxrS58ACgkQIfnFvPdqm/WWRgCfaGeUlRGzWSQQZzg2pMz+eC/yFuAA n1+qQO7UVEzxTnoD3hAg1T/mLsaDiEYEEBECAAYFAjzPTrEACgkQzerIIuwxO7XE yACg5rmr96yl/M/qQ3DIFrx/Md6eJYAAoOStOGPS/9Fly4Dv7T9Cx7Dsz4QDtB5C ZW5ubyBSaWNlIDxiZW5ub0BGcmVlQlNELm9yZz6IXQQTEQIAHQUCPEUPdgUJCWYB gAULBwoDBAMVAwIDFgIBAheAAAoJEF40cFqHxZkJlowAnA4n58ngka4X6ycZCpXo YNRu1R8iAJ46BzE35MLJtgJQztGSnWngoLhCVohGBBARAgAGBQI8WiYKAAoJEKPJ IN0fzaFEho0AniKI34jtQurc2v0PlnTAze7AKRmmAJ0Qfp0DhFEbuWqv2dJbJCnh 9wYOs4hGBBARAgAGBQI8WJL6AAoJEAwhQnJgJtumuDgAn2NODtyfzrThSVz9xls5 A4CrpDvHAKCywVtdpH4aYFNtHZPt48wxar+mgYkBFQMFEDxrPxRnwoCPM8FiewEB nH8IAJ6w9TU1kRNm4ifVR9yp3/FMBZXNnor4FykOjOZISowfFGY3wwNWGnbCSa7B 5spkDiqnBFwMwbcTQXo56OEWNAir0hAkUEQD7GUMcZmEWy8ZaQIedN3SHhydfR6X aNar7uHyi0yi19sgq1/Jnu8DLsPio75gSv1h95anIvoGE1YpkTNGemQ6SyGs7rQ5 7QuYXqN6P60cJLC0kwEZ4YbcN1OuZ6iSj31TDVp8EzDCkFm6eMQ0wI6UPpdlymxE gfFAV3oDlj4ZG6pzNw/ZcvQFeqMNgM+c0j+omZsFlPvW4wfZAV+cevVV5ATosYSd PMas2WxPXG7pAwhyRIgyq33/09yJAJUDBRA8a0A+VS4eLnPSiKUBAWl9A/9kN+3x nxr8iU8sZMef8PpFMUNj4gp5ARDw/Q3Sx7jlGJEyuLGbeH0Zu/mTvpV6vQzcm3NQ EB51WQx8EmizIbtX1PfpyRgKLOXGll0M8D0c5JOdZAAAXYVa6AtFm36rZ9dbM2UM XGNClNt9zXUXK/sufCVC1z6vm87I+RJOUhF91YhGBBARAgAGBQI8a0SzAAoJEFIA HJWOCQIj7r8An2XwJ4WHnootgfqCUcIfbr4y70QgAJ9ngcIvPy1q8UKMdLk/Y5Ti V8TlE4hGBBARAgAGBQI8a0UkAAoJEIwyjP8WBtuV9uMAn0BBM8hO1iCUp9UD8bQ3 Ptp3xrC1AJ9Bn+yVzTVl1x55X71sglUWxtQixIhGBBARAgAGBQI8a0u0AAoJEBj1 A4AkwngCupEAoMzM2E10s/451EDjYkdr1fKo9tV/AKDfSYJ2vOJx7JzciRfj5hQJ v+81GIhGBBARAgAGBQI8a0uiAAoJECH5xbz3apv1pQQAoNKsi+LOvlXM2GGkzQoY Pz9xDxs/AKDgm87TPdaMYhI2P0AzCTHJenYalYhGBBARAgAGBQI8z063AAoJEM3q yCLsMTu16gsAn2OJb5oK/QYgO0EpREcYF6EVOLegAKCipUzr16GCumxYGj5cEngb 7ZkFfLkBDQQ8RQ4OEAQAu5zqbppTM975ccYXxCUx2OECAdzxoSgsJe3kunbvZOSy i28t4V+H1+54ks8AOlihN5XBgZAR0ohJ7RTe/5l/EV9rZcY+Tnf75UskLbjifzZP Qxd9zYZ2sUbv9oJnX8ORiphIRKlfVjbe8tqdaexQ382FQwUVcC+yc1u2Ye5vffcA AwUEALlq/J7TvHXtjeY4BgKsApAxGzyf4roPuXADurCLoaXrUclUsU3KWOFOToW+ rxQQYAjz1T/lXSOGVzDCaQf6IVIWBYEVu3ZWTI8/amp37hoLdiiU/x0VWVkgjyfX VTdIdsmnDaoTAVq+r+JyIubzRcr79SpOEIo5bPl+km/6R/S3iEwEGBECAAwFAjxF Dg4FCQlmAYAACgkQXjRwWofFmQkGSwCdEHZJnes6qzSKL6bXiBr0veCSQNoAn0PD YbCuiDguaEN052KDrSoDvk4S =L0S4 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/ECBFDC44 2011-08-29 Key fingerprint = 6921 47CC 8B61 7C02 70EF 4D00 16B4 EAB7 ECBF DC44 uid Beech Rintoul <[email protected]> sub 1024g/F1FD1C3D 2011-08-29
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<[email protected]>
pub 1024D/1EC56BEC 2003-01-05 [expires: 2009-09-07] Key fingerprint = F0F3 1B43 035D 65B1 08E9 4D66 D8CA 78A5 1EC5 6BEC uid Matteo Riondato (Rionda) <[email protected]> uid Matteo Riondato (Rionda) <[email protected]> uid Matteo Riondato (Rionda) <[email protected]> uid Matteo Riondato (Rionda) <[email protected]> uid Matteo Riondato (Rionda) <[email protected]> uid Matteo Riondato (Rionda) <[email protected]> uid Matteo Riondato (Rionda) <[email protected]> sub 2048g/87C44A55 2008-09-23 [expires: 2009-09-23]
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<[email protected]>
pub 1024D/7DCAE9D3 1997-08-21 Key fingerprint = 2945 61E7 D4E5 1D32 C100 DBEC A04F FB1B 7DCA E9D3 uid Ollivier Robert <[email protected]> uid Ollivier Robert <[email protected]> sub 2048g/C267084D 1997-08-21
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<[email protected]>
pub 1024D/3998479D 2005-05-20 Key fingerprint = F01F EBE6 F5C8 6DC2 954F 098F D20A 8A2A 3998 479D uid Craig Rodrigues <[email protected]> uid Craig Rodrigues <[email protected]> sub 2048g/AA77E09B 2005-05-20
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEKOK8MRBADOO9VIucM2dGygVera0+Hcu9ud2f3MrcfVgsB7/awfE/MgIYtC CFtCJrD1Ml+p/spmiuzJNDSamT8NHywsG5R+GO0EC76+mfL3hwXvGUJoQV+NcDu6 99s6OUWTimi5OPOURzG7lXYpO0wVysx3R5Nzg7tIC06fmXNXuj02JvCm+wCgqkPx nZgCFoqq2mHoiLL59CUExbED/iOnglDOuZsncR9xRZJfbSLUJf5z9NE413FXAx3f THY7+akGk8kWChrOeyIvLvSGmkHHFQXgh1umG4fFd7TCJ0Sexh44s5q0ROjEK4ge nwAsS0iheMB6JqW8ibBfawr2iwu3ZAkqfelU+NSbHm4sEeHxEGyJtZKA7rOPGDm8 YOBZA/45n2E/Z6hv6D4Bm1xEDGNICK28uTqzXh0wyCJJtVOortd4CmKZZrZJj7am 3aDdtFUZ1yZc5FW2E0xLa7Oz8HUj7eMT7Ljfd0c5yNna7WcNjqWNAz6WMhHByRZv nOPiUMQNvCbyrKw9OsFKNNbrSnjQcc/5yy0SiIMVm4rydXzK0bQoQ3JhaWcgUm9k cmlndWVzIDxyb2RyaWdjQGNyb2RyaWd1ZXMub3JnPoheBBMRAgAeBQJCjivDAhsD BgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJENIKiio5mEedzB0AoIXeENkxV41KlJMV z0ozHJ/q1ESdAKCimzfOMwz7Qyauo4VHs4rk7NEPerQlQ3JhaWcgUm9kcmlndWVz IDxyb2RyaWdjQGZyZWVic2Qub3JnPoheBBMRAgAeBQJCjjVzAhsDBgsJCAcDAgMV AgMDFgIBAh4BAheAAAoJENIKiio5mEedT6wAn0IjcGqARj8Qe+JZThbQCQbH0ERp AJ4w1pYLdsKphwaEB8GakvaeRsrBTLkCDQRCjivkEAgAo5DHUcjEBK54Vo2S403y InnfqiiUDXqb8Oof18CICB6JgA3NjP5g9BE5+7dI8relt4Q0ILg2IJvISIlfmyDl +GuegA3dMo1IrghmtI5+IWN2mm1iNy96jpJ1TQhvHTFDlETdV/BE57CcO1ZnKHiW m9G3GjnMrunVyLMEY+6TJ6ykqP2VzYBsc847iCv477LdYFe1+vedZb8Bk9xpeeZJ tuT3O+JiR+B/SHISpycxyM3ei+C7eRRC8wV+khOw/8xirJ1Wzyg3GrolQPtJsTNG mqg6DXIYPY5wbF3SUBT5ZA7pLPxXhUWNewU/8mXisuM0hp7nz9VLQ4JfbMuvGF2j wwADBQf/SCUw06q5l8qdJ9G3WFfPOE449mq5uXHGlfeamCkjx9/SzI/8yldrxwdF 5XiAZWRpeQoksUbPI+tmxWqi8NDxt+KLDNhSCg0+C8KRFBY0ZI4CDmUg+MX9Mix2 ir/RK6eoEYNXdt32raX7MzQP87LTL+cnxJzbQ702HYpVqrJUOgSRwQ3posbp7hwV djfiE38r9Hd/E4ZxxAIT3GafZ12KzxQZ8dSxoa/2tP8VfAfe9jt/XX4F0QD2yIGV 2wJMd/CZWTZgDfNW1anGR+9AyV9dT+8cYi36fkgTQb5rN25rJKzHd9RA/EGJXSU4 l1hNG4gBpYjF5gD/UTuSgGI6XInycYhJBBgRAgAJBQJCjivkAhsMAAoJENIKiio5 mEedTS8AoIa+gNX84jClqNvPR5lMlQGKeB4HAKCaEmhTA9kGSY5JW3hsfDiwfr0a PA== =hHZm -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/599F323D 1996-05-18 Guido van Rooij <[email protected]> Key fingerprint = 16 79 09 F3 C0 E4 28 A7 32 62 FA F6 60 31 C0 ED uid Guido van Rooij <[email protected]> pub 1024D/A95102C1 2000-10-25 Guido van Rooij <[email protected]> Key fingerprint = 5B3E 51B7 0E7A D170 0574 1E51 2471 117F A951 02C1 uid Guido van Rooij <[email protected]> sub 1024g/A5F20553 2000-10-25
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAzGeO84AAAEEAKKAY91Na//DXwlUusr9GVESSlVwVP6DyH1wcZXhfN1fyZHq SwhMCEdHYoojQds+VqD1iiZQvv1RLByBgj622PDAPN4+Z49HjGs7YbZsUNuQqPPU wRPpP6ty69x1hPKq1sQIB5MS4radpCM+4wbZbhxv7l4rP3RWUbNaYutZnzI9AAUR tCZHdWlkbyB2YW4gUm9vaWogPGd1aWRvQGd2ci53aW4udHVlLm5sPokAlQMFEDIE 1nMEJn15jgpJ0QEBW6kEAKqN8XSgzTqfCrxFXT07MlHhfdbKUTNUoboxCGCLNW05 vf1A8F5fdE5i14LiwkldWIzPxWD+Sa3LfNPCfCZTaCiyGcLyTzVfBHA18MBAOOX6 JiTpdcm22jLGUWBf/aJK3yz/nfbWntd/LRHysIdVp29lP5BF+J9/Lzbb/9LxP1ta iQB1AwUQMgYGsgS4QK9eGvw1AQFKxwMAgFh/hThe6nT9YUONHIdxWNaL8zUx5SEq 7WDCOTYqUCJoXJzwRcIlyHaZOO1OubsnOMyNWpR5PxDEfoXyV58UY1RH4cXiP55e yAgEtWQF6RtAvl7ikZmRxFr3QAVQ3QxmiQCVAwUQMwYdyB9/qQgDWPy9AQFtiAP+ Ob3Ee5S5j6JcOQ7OkJcFgAJgRkNX3XcyO3IECZpWpihGHkcWKaQZd76sKjvwBq7S Fznt8UxOwmqe5YSpW3cZGrbyFIrUU5nueL39eJsdyY2u3bK6CXeFikKWKOjiesMv U3GJttqaQZb+8UZyWNLSOpfPo0NVsbHk6jscEHLEHLOJAJUDBRAyCihxOgN22FUM 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<[email protected]>
pub 3072D/8152ECFB 2010-10-27 Key fingerprint = 82FE 06BC D497 C0DE 49EC 4FF0 16AF 9EAE 8152 ECFB uid Eygene Ryabinkin <[email protected]> uid Eygene Ryabinkin <[email protected]> uid Eygene Ryabinkin <[email protected]> sub 3072g/5FC03749 2010-10-27
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<[email protected]>
pub 2048R/4B7B7A4E 2011-05-24 Key fingerprint = BB9F D01D 7327 0B33 B2F5 6C72 EC49 E6ED 4B7B 7A4E uid Aleksandr Rybalko (Aleksandr Rybalko FreeBSD project identification) <[email protected]> sub 2048R/99F9F9EF 2011-05-24
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE3b+zABCACwiwsbEdmRqU1Tsb/ErrEGYPO6uGPy04niDFSwT4EoW9tJmX94 bZSfD07hMUHm3yk3sSNBVPYYqvolCd+Wa/aSBo22Ru8MT5gtFT6QmRmo0r4ye6hp 0jddGbTE3gS62ojQCDayRrSWhqYDtxMTVhF28+GVf9Yb8xD7booHz+soOEOp/lyi rMbAKKpAKKzlbTg+JF4xuNAOCQeYq/iw+5/Yv0WRdlPFlAhefpC9HGnm7Ci2oX9O yadz6O5B8Z3mvXrprHVf/gZaxpMbqHtiCwUCOjyu+65AJxZ2RtXOZGlgixVldzZ5 1/PkPjf66PNOE/jei7lQfoiXSelbMsn/0m89ABEBAAG0VkFsZWtzYW5kciBSeWJh bGtvIChBbGVrc2FuZHIgUnliYWxrbyBGcmVlQlNEIHByb2plY3QgaWRlbnRpZmlj YXRpb24pIDxyYXlAZnJlZWJzZC5vcmc+iQE4BBMBAgAiBQJN2/swAhsDBgsJCAcD AgYVCAIJCgsEFgIDAQIeAQIXgAAKCRDsSebtS3t6TkqnCACNpw7DnH7mPLVtJ9Hk 5V6kzsY0Fkt155HcOw5IqK2UJUqGZTa1Y6SMjqC7Joq7P/3myjWOyN62xByQ/kcL VT3Ee9Nonknkjx1S/7Y9aVlCoT3koB/no9BQRgTsWX2oHUEakBftYq/8sx/1jzAc YN9DffiOIfXH43435MtYc5dct8lRaQkMXL6hDrswqqnsC2lefISiRojWgSpX2Iax VsR9KA/gDGXcFQLYG19ivgQ/MWMwfHCQd5EyPa3JGsx/G3Me0uA2YC8igzuEG/PJ 29G2eAhA48T1iDbmD7rHsMRdNvr9+0vHemNLyBysyzS+d1opwAE3HPeFYslbRfQp UxJuuQENBE3b+zABCADfEA5d/HafarrCijuoKqv7miY4JeknD9CezUiI9KgsjIAQ Nv6ObNUoAAZyO/tmKyK1c6ohOQn1m5knH9ldSU0aj/loeBwD/tSjqenqI3rk+XH9 ZUW1t8U/2fEt152hbaZIeW3X5ovSwNJxL5GCjvqiy1bNq6rV7hiQfnwET3cV/FmA KJUlxRZKNbJn3VutSIF4vgOVJTdZy/0dDcpUubHcfVFXeZRiBMQiBqy/WW80VL9l /RZ8js/ArM7fNqnHtGN4Hgxfh5HEUJtQncYs1JNkFiUD6aYL3zsJAbcXcfyEwo6Y Hpsn8hxuEYpAVzsaO7E63Vdgyag1b8ELRBbYpranABEBAAGJAR8EGAECAAkFAk3b +zACGwwACgkQ7Enm7Ut7ek5nnwf/V0kzZ9N92h8oes2ZWwnuWWbZewdp5p1AZmaj FDeM2Usiqb9tOWizJwKI6B9Z66S2TdLTrCwtcPWhrr/MPfWTNffCgrVI4jOczCeT Jm9Y6OBVdlT16sqF2gskwLlA73R64TYJxS7uYAjOMvhFzXeZuJv2BLxSI2NBvpfh HfvoeBAM7NRmuJrUXz90ik117bzEcuEBwIDRc/fGUvSdWm3a+AmbVtyPR24RFMGb OK2UWrTXa9TiTAKKLWKyDDYf/B4nOtGoF+OCkpwLgTNJE5kwh+PnJjN7wsdiAvL0 2cUXjLV5wX/C2w1FFMtM7PA/7aURr6CNmS+00mriikVFT++FDA== =Q1YE -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C822A476 2004-03-09 Niklas Saers <[email protected]> Key fingerprint = C41E F734 AF0E 3D21 7499 9EB1 9A31 2E7E C822 A476 sub 1024g/81E2FF36 2004-03-09
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEBNxyoRBAC22NnMqcH1hXXkz+jC+U2QGzOJdGHZtLRXDRpS4blFtRgAf4ab tZY6LJUMnjmdgaPP3Mc7YE/ITF1hGnzYF2jbJazNm17nMSP/66dGJt9dK4XAE4cc 5nYo3GnEkacAa1zUvM6e9OGaAIkndBDUW6+a9aSQNcNyMnYL1/APv+wdIwCg2G4C N221QrjrGbxVQPiBM51lY98D/11d/h8aOHYkf+nirhIj9GvRmXJfD3RANZUDjOsj OKGgUNlXm/AT6I226v9urfdtrhMg+5zdO+I2p7dZMad/RpnSYo0GMdLRzOlN6aoI +4JYoACq2C7iR8pmItb+L4Nl5nNBwmcLBXD+HaZebGffZy9Uvy/A5G0ty08I8LKm 5STvA/kBMybZhX+RTq5v1Kzau63bMBJR8MPHyWYAIBW2wTMJM1ndW5RrbIMJ71qC 8DFFTHFJd97s/fqBMQ9rj094CdDxCYQJUkZy5+qiBkRta//iSlgsi54Xhj9prgPj nBMWxUjAI5Ih0VPIp3/z/q5aQRvey8Ro5JWmduzH0KpLv2Qe17QfTmlrbGFzIFNh ZXJzIDxuaWtsYXNAc2FlcnMuY29tPoheBBMRAgAeBQJATccqAhsDBgsJCAcDAgMV AgMDFgIBAh4BAheAAAoJEJoxLn7IIqR2/y0AnRetbhzvjj3kKOV28bx2Qt+YRA/j AJ4yY9wDPJpwq63IsGeo3BYXi32zPbkBDQRATcc5EAQA2SipeeJJjvrzqqILHNA7 X+m/PAJonO4QhyIEXXMhzNGdiUVJ7wli23gGVF0Cj3V97Yw5KFGco3qOvvsWkO4c CLwd3NHbVL6OHKM36LcFd+a6RiJO9qAGGixyqUIkqYeWCmpObihrkZy9WADsSJTc /qOrLghJ0GyR4Ga8CoFNT/sAAwUEANfA3lWeTj3QZcDnJZYejt1aJWt7oUBQ/KOc HhTjY/A7zkQsAdgbcmuhzSiIH6eoofTwNOl/Kl0ieSdIyFMFfVxrmYEN/HUUUI4q J+BgWZgppinaeUEabnZPfY03T+ZanJ3DmB8s8x4HdpFi3jgtWY0KfDhDfHtNIeRu CYmLAzjYiEkEGBECAAkFAkBNxzkCGwwACgkQmjEufsgipHbIOQCfSaudT6wnsh4G 6D9TZkji6aDqUBwAoKqxWnOya/v/MqcgrXGSCih7phIL =Hz+C -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/ADFD5C9A 2006-06-21 Key fingerprint = 81AA FED0 6050 208C 0303 4007 6C03 7263 ADFD 5C9A uid Boris Samorodov (FreeBSD) <[email protected]> sub 2048g/7753A3F1 2006-06-21
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBESZt5sRBACyDUDxsmkdq0XNNJfbsdVO07/vtUc+rP5hBEdMzbetPnLdujSX JtwzS2b5kQFk1ONAuTs9udlcZhhq5T2FIyhqpvgLG3tnt4gDabRgFsOL6oB4dFKv yL5emRwnch+wYlwfaoWXsXpWfdHQCwFfL39lsYLIR/aXcMwjXF1wl9yl6wCglkCt NECUgmsoUYE1iOyC5PnqHkMD/088reqeJuH2hWHupCOihIOOddQPiKX3EY1Y6piO I3aQFxOq8BdYw+3WAlBs4vegMmzk9MYEwP2STsVcPE+eu55m1GCRRds++oyv9tQO TFZVsYEuvJALvHSW3InTGHWfhQPrHcdodyRjhgo2bKY1RwO3RHYDRRQj5i8LDn/9 kRSiA/9Y9Cl8Abr7kuPbgw7uWb8lRta9/le1UWQXpU6GAZHXEgppHenDaRqvbaag MhXXiKuuFAz4LNHf8UDqyQ4fjjfR0EajIivV17hpzagPWIzzEdr4j3RBpwHMYLbV 1yfyml5QT46amMd2Vwq83Zgn0cUObu8E0IITqTMkweEvH+soOrQsQm9yaXMgU2Ft b3JvZG92IChGcmVlQlNEKSA8YnNhbUBmcmVlYnNkLm9yZz6IYAQTEQIAIAUCRJm3 mwIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEGwDcmOt/Vyam2gAoJHvCp76 i+XiNv4R3pJgG0ZxTCjOAJ0S46VswPDByVJZNF95pfy1qEDb/rkCDQREmbekEAgA vAUui6QrSn//3FHeSvH1smd0432C1r8IHvR7m0Ki+F1cRolkWF29y6JMpoPcXrWC D5OpGfZaZQ9SwhedFr776xAwMDWAHlrHEpPC4OE3RPq7YWENc40hL+ZKfsZhGA89 H8fiU18UdDlARgg1PDBbVi+F4ZFfKSyNcTUO3brIIpUy5OfAdTkgl3JFKERlqZic ZWjS9PXjsyaeTYn1Ny2T9WZqbk9Ghsb2/t8bIyayu9KNnI+vRSafRtaomeUEsKme YZyU4pLutea2Zj6u8BtEVyxp9Gcy0Whn/HwQc/FZE91Z6UzViucBqKmFmw3A/OHF HV3DAxd2ctkBrt5jzgJA2wADBQf/dD7RVzfD2ea+jpgqJW5EFDqYebjPLab5GZJ6 uUWWZu73ynDm92lemzcT67JYirU0H0sQ6QmcZ9ZwqqdW/taCjvpsXPFb88B9AL9c aQD41otxgpCF/zMQwgS24DCrdtPXiKceTjHNEAMOM9xS3FBNAWjy23Jz6rIt3ROD o0X3iAta9cT71Q6/u6BYo1YRuLIAWZ1rpkELb06NUxsVuEQmBKGMBKf00LEw+AV8 0FkaEukzFuG1u3k2qkeFJEZW0C6d04JT5jsskRiTrIzkd1FTyaEdueaZoiPBQybX KE9GyClXn1RMWA+dzAjjNvJOo556NAIpebgvXMd1rHSRxumHdIhJBBgRAgAJBQJE mbekAhsMAAoJEGwDcmOt/VyaOikAnRQNCxBdrbQSOLIxrChaMU5tNejQAJ4hpoO4 tGfWhh+Ib0+vCD7UaSphYg== =fafd -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/DBE7EB8E 2005-03-08 Key fingerprint = C0F0 44F3 3F15 520F 6E32 186B BE0A BA42 DBE7 EB8E uid Mark Santcroos <[email protected]> uid Mark Santcroos <[email protected]> uid Mark Santcroos <[email protected]> sub 2048g/FFF80F85 2005-03-08
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEItZGARBADLwd04ILGjaq1OV/1cNTU36Ggwx2fKt1OQSFgfzkQDB2Ff0R/P xXLBhx3mVEcTt/vNcniqyOA3Pdla6nVtxFFMDcXhEN/d6Xsv6UY0s5B6zoJ6tx9J 2lpP2YQeA0sCGPnl6QjFYX1pbehPO7CSen0ApDBmfJx/B0J8AwCh9utzmwCgwmBt KvC79obIrPNdTr8quYyYZf0EALQbGGXPhgZN8A8u+PebwIajKxMTxqPnJbcImwRd GOjdRQ79BT2Ze3g97ReKjQCCqOFY0Gz9XMd+OGfG5MfDwe4pGXx6DUxOYOJqL+2p 5MjDbpmcmemtIaC1AwchhCsqcQVo7jbH4ewsxsb33cIktX6lidVxjUZQaTioPcah t0eABACy2edSB2D3KXk7zoNMnfo2ew++Aot8EsL4TOVOrJkx9p0gEKKgL4ED+y8Q 4cw6chINnqQWIQ4WxyTHeVjw/SIgVfOBEFhvaZFtC9wfDTk+1G2DeMuyw/KDK7fi J9KOUhAtKPKTl4D0nZN5rOULgPDgq5WaTjxkWLcs9UjcpDCQhrQjTWFyayBTYW50 Y3Jvb3MgPG1hcmtAc2FudGNyb29zLm5ldD6IXgQTEQIAHgUCQi1kYAIbAwYLCQgH AwIDFQIDAxYCAQIeAQIXgAAKCRC+CrpC2+frjrUsAKCWZHuLZGVk+bWwOh9E/eH1 I5FTzACeII0hwrpqPwlxOyNHMiF32+SYc9+IRgQTEQIABgUCQl9moAAKCRAVEq5S cndxfy5TAJ4o2kmigp9+7Pg8vtGQeJwSgk9dSwCfXo/xBlHKAF1q0MF24MDcLx1q 4m+0Ik1hcmsgU2FudGNyb29zIDxtYXJrc0BmcmVlYnNkLm9yZz6IXgQTEQIAHgUC Ql9s1gIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRC+CrpC2+frjsirAKCdbg00 iJcryV1H8H7POuWA5cpqBwCeJC7RbQcBAU4hg5kY3Q6yuVLYD9m0H01hcmsgU2Fu dGNyb29zIDxtYXJrc0ByaXBlLm5ldD6IXgQTEQIAHgUCQl9s8QIbAwYLCQgHAwID FQIDAxYCAQIeAQIXgAAKCRC+CrpC2+frjqw4AJ42EWPG0JCtzDpUx2fCWM73SJ0x NACfRxkme8yMSHLPRDYFQ6up3y98+VS5Ag0EQi1kixAIALfhPatM8pRDvjbMuw+x z046aF+ygNF3Z+jQYMv2+TNx72MUa2GMM8WloInYu/sbJLuv6yMXKbtGx2wQAAkB Ayd8Ink2dniabAummzHuRPLycQ869QJGg0+xCq8pifCsUXh3Nec4IFjkVs73hn3+ fcyN/bSO5uVzAsLgRczJX1zhipi0joFijFW8V3hk61VPDuB3UM0EzqelA8VMsreu wrs6N4BCRVcqDvncTrV+8CAPdRuBMk1NFffQTM79G68UIq64OZSs7uJTOsqLj4uh EE8V1rbqoaxNUq1KKIcQxIOMtyMbXnDuM5fXTqKD+2MEmiJE1D7nE2qzmczOFJ+9 qZ8AAwUH/Rvg8dNLeZXrsYL5A249GjKZOdv9NpmSpEBtjp2mMeodZBVO6u1KlcfT N078WY3f/Z3vTt8mqg6woWS4M3l37mDbNb7508HjVC8rALC3ZueCRb/COvTssxBV TCvRcJmDYdhGxGAAIRGPiYx+9UF94AE37UgxAiLbTHCCimJmMn/tXvNsX2Qr1oKL oYI6kINNYE7uZ9oqZ72zQoJdCBBxyBwRRHj0axzNgtXjK55yUrHDYDnLvu1dr23K 85Wje6ZVWbKp1+qbZ0tPmPPWb7QYH728MDHzkdcPp+B/QSiJPBxv25CXn9hZBLYQ sAUeOwsaps1T4OJoybYNQihLifueGC+ISQQYEQIACQUCQi1kiwIbDAAKCRC+CrpC 2+frjhtvAKC8dlrD4umaE+9r0LyOx/+il2rXeQCgvUTSvbtlZo87oKp0EtGn++rf IdA= =F4/l -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/5F754FBC 2009-06-15 Key fingerprint = 6B87 C8A9 6BA5 6B18 11CF 8C38 A1B7 0731 5F75 4FBC uid Bernhard Schmidt <[email protected]> uid Bernhard Schmidt <[email protected]> sub 1024g/1945DC1D 2009-06-15
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEo2DaERBAD6iTY24oR5YgIAGmKudAPxNNLLaZPm5tsa1eQjNCRp/WPLIXCS /x2oZPk8JoKOPnHNuvfzKnDwh3sB/hKAQOwSTHmtKQ7Gq9Uq/IpuQXHOfF3JqJ8p 4pOEHCSdJPv1rGNdv2Uh5Pmas3qfkI1pcn44B/XAYDVoYC2CsHmTHSMfwwCgwKIP BELVfQZDMaV/Zkv1etazaLsEAJXHS06o4TFVmrHzvhMPlBmS/MDJyt04MaqJwCkh IzZGpJ6c2rS+a9UOj5Fy8zeim3f94U5L4pUJUmn2SitHTGm14A+ZN7r2dmBC8jw5 Oki0tbz3yObM6KSzYV2BuZ7BLP65KXAlUnHM5h4rw/EJaTL6bm0Z0sOLpc74KnZd qgi9BADzkJnZ0VKRRZ18xfdbPqa8FMeHJI/IhlBrwEPSeRqEjZCtTYfePzutbpm7 YRpXk2cMe+k6Xt+FrSVF4elNT5/b3SjWjmZr7jLQ+/RvN+AH/5Ru9bQHVfuL6uSY zoHgl9Y5RKJMkzWfdn1LknaRIqE/ciWq22cESYJ8e/Wrk8lFVLQpQmVybmhhcmQg U2NobWlkdCA8YnNjaG1pZHRAdGVjaHdpcmVzLm5ldD6IYAQTEQIAIAUCSjYNoQIb AwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEKG3BzFfdU+8UXMAnRd2NUzksPzw xY9oQMyjeP1cg1R/AKCWoPmmPjJDsf1/CQIkMFMb7RuTDLQnQmVybmhhcmQgU2No bWlkdCA8YnNjaG1pZHRARnJlZUJTRC5vcmc+iGIEExECACIFAkttpeICGwMGCwkI BwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEKG3BzFfdU+8Ht8AoJS8LxsUX8jA7J6S WKwM9JPJ+adJAKCPcJC5vcz1C78IB2XBmnbbKmrYLLkBDQRKNg2hEAQAzfaS1s2p EOwwH6ZS9JJ0mnoEfVUkO2I3yfMvXZ4HVkf/lmjQziSsgtbOUPIsIZxh/0V7sDU6 4ShmeYcY2GpBRE5NFAOo721nOMzXtSbwhUt8ZNZkWXLOCXE/oaS1UoPTQ8KW21IN prsFPuVORaZPn1BKXSt/g0l2mkKDdgjMLe8AAwUD/RCMR4fDfuKULk+PG4DrGuyz sz/6MC7cmxH76SBzLARw7HOKFXQoVPUfBbQ8oi5ynqFobgENEL5iiWrPhRHLYiJ1 ee/RiroqJlDxSHno5qU4FIjVGm6b1WbunQ1m3bmK4ExFrygOvHwI0RhoySoAhxiR vttEGBF27GMdkRaaUyniiEkEGBECAAkFAko2DaECGwwACgkQobcHMV91T7wEHwCg tY2Mbu5ssnZVqMYfEKlx2QIJvZYAnRkudrXyV2F4QME4eLCgAXrjDptm =FKOV -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
Type Bits/KeyID Date User ID pub 1024/2B7181AD 1997/08/09 Wolfram Schneider <[email protected]> Key fingerprint = CA 16 91 D9 75 33 F1 07 1B F0 B4 9F 3E 95 B6 09
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: 2.6.3ia mQCNAzPs+aEAAAEEAJqqMm2I9CxWMuHDvuVO/uh0QT0az5ByOktwYLxGXQmqPG1G Q3hVuHWYs5Vfm/ARU9CRcVHFyqGQ3LepoRhDHk+JcASHan7ptdFsz7xk1iNNEoe0 vE2rns38HIbiyQ/2OZd4XsyhFOFtExNoBuyDyNoe3HbHVBQT7TmN/mkrcYGtAAUR tCVXb2xmcmFtIFNjaG5laWRlciA8d29zY2hARnJlZUJTRC5vcmc+iQCVAwUQNxnH AzmN/mkrcYGtAQF5vgP/SLOiI4AwuPHGwUFkwWPRtRzYSySXqwaPCop5mVak27wk pCxGdzoJO2UgcE812Jt92Qas91yTT0gsSvOVNATaf0TM3KnKg5ZXT1QIzYevWtuv 2ovAG4au3lwiFPDJstnNAPcgLF3OPni5RCUqBjpZFhb/8YDfWYsMcyn4IEaJKre0 JFdvbGZyYW0gU2NobmVpZGVyIDxzY2huZWlkZXJAemliLmRlPokAlQMFEDcZxu85 jf5pK3GBrQEBCRgD/jPj1Ogx4O769soiguL1XEHcxhqtrpKZkKwxmDLRa0kJFwLp bBJ3Qz3vwaB7n5gQU0JiL1B2M7IxVeHbiIV5pKp7FD248sm+HZvBg6aSnCg2JPUh sHd1tK5X4SB5cjFt3Cj0LIN9/c9EUxm3SoML9bovmze60DckErrRNOuTk1IntCJX b2xmcmFtIFNjaG5laWRlciA8d29zY2hAYXBmZWwuZGU+iQEVAwUQNmfWXAjJLLJO sC7dAQEASAgAnE4g2fwMmFkQy17ATivljEaDZN/m0GdXHctdZ8CaPrWk/9/PTNK+ U6xCewqIKVwtqxVBMU1VpXUhWXfANWCB7a07D+2GrlB9JwO5NMFJ6g0WI/GCUXjC xb3NTkNsvppL8Rdgc8wc4f23GG4CXVggdTD2oUjUH5Bl7afgOT4xLPAqePhS7hFB UnMsbA94OfxPtHe5oqyaXt6cXH/SgphRhzPPZq0yjg0Ef+zfHVamvZ6Xl2aLZmSv Cc/rb0ShYDYi39ly9OPPiBPGbSVw2Gg804qx3XAKiTFkLsbYQnRt7WuCPsOVjFkf CbQS31TaclOyzenZdCAezubGIcrJAKZjMIkAlQMFEDPs+aE5jf5pK3GBrQEBlIAD /3CRq6P0m1fi9fbPxnptuipnoFB/m3yF6IdhM8kSe4XlXcm7tS60gxQKZgBO3bDA 5QANcHdl41Vg95yBAZepPie6iQeAAoylRrONeIy6XShjx3S0WKmA4+C8kBTL+vwa UqF9YJ1qesZQtsXlkWp/Z7N12RkueVAVQ7wRPwfnz6E3tC5Xb2xmcmFtIFNjaG5l aWRlciA8d29zY2hAcGFua2UuZGUuZnJlZWJzZC5vcmc+iQCVAwUQNxnEqTmN/mkr cYGtAQFnpQP9EpRZdG6oYN7d5abvIMN82Z9x71a4QBER+R62mU47wqdRG2b6jMMh 3k07b2oiprVuPhRw/GEPPQevb6RRT6SD9CPYAGfK3MDE8ZkMj4d+7cZDRJQ35sxv gAzQwuA9l7kS0mt5jFRPcEg5/KpuyehRLckjx8jpEM7cEJDHXhBIuVg= =3V1R -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/3491A2BB 2011-03-12 [expires: 2016-03-10] Key fingerprint = A110 5982 A887 74A2 F4B1 D70A 6E5E D8FE 3491 A2BB uid Ed Schouten (The FreeBSD Project) <[email protected]> uid Ed Schouten <[email protected]> sub 4096R/81BB41E6 2011-03-12 [expires: 2016-03-10]
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<[email protected]>
pub 1024D/BE848B57 2001-07-19 David Schultz <[email protected]> Key fingerprint = 0C12 797B A9CB 19D9 FDAF 2A39 2D76 A2DB BE84 8B57 uid David Schultz <[email protected]> uid David Schultz <[email protected]> sub 2048g/69206E8E 2001-07-19
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBDtXc9MRBADg4tN94el8rq0ZMUqB2jEVACg/UfYjtsaboDL4HBBUH+P+Wxic 9JqotcTbT8pJGeRpeXbfO0YHaAFnUfilhoFkeLyAgDvnUP9Z77DjFpliLAKlvuCz Lxi4UxgQXRdedNCg3omrxQWx7Yx067GT/yw4RgvogOuYBX0l3AJ25/WBxQCg/6Dj TMTu6iYR2Y6dEL4NGs9PnBMEAKBlhelAhzYoMpcWpk2VITUgONMW+Oi2JDTmwDd+ 1FAUDc1mHSoNBKPUrCWyXiwfzL09/ROlK/KMR6YoYtV6d66zZ/dQNuzrMhsis+Ou PCtvcaR5NGln49THgcw7/K5gTjwrG1xA/wcwnvUp6sxjh4p88meI/LNBAstixb3z FiLDA/9pAqn42B9ZBL1le98DTiLDemHvQFgXu8Oj20IIF0umyJRBfKwDY6iIx0gd 1rUKua6XnqMSEg+LmHmSfDBaAOsFTdnL7wVU0tLF0V9goxU4qDZjw5EeMEqnk7tg /6REIvtdOA/GLOmr/Q0WA4JEukcih3AQ9iFnwg7WAp0S4GF6gLQsRGF2aWQgU2No dWx0eiA8ZHNjaHVsdHpAdWNsaW5rLkJlcmtlbGV5LkVEVT6JAEsEEBECAAsFAjtX c9MECwMBAgAKCRAtdqLbvoSLV78JAKD4iJ2kNeTsYQnWZ2DeytAeqVaKFwCfTIQE lFPZyaQr7yjthREE+8SPZCG0H0RhdmlkIFNjaHVsdHogPGRhc0BGcmVlQlNELk9S Rz6JAEsEEBECAAsFAj5S1iEECwMBAgAKCRAtdqLbvoSLV4b5AKCljokqRgi/pbDa ZebYLluQCIkbgQCg+jSKAIi1r+CZiaCJdqk193IZVnm5Ag0EO1dz0xAIAPZCV7cI fwgXcqK61qlC8wXo+VMROU+28W65Szgg2gGnVqMU6Y9AVfPQB8bLQ6mUrfdMZIZJ +AyDvWXpF9Sh01D49Vlf3HZSTz09jdvOmeFXklnN/biudE/F/Ha8g8VHMGHOfMlm /xX5u/2RXscBqtNbno2gpXI61Brwv0YAWCvl9Ij9WE5J280gtJ3kkQc2azNsOA1F HQ98iLMcfFstjvbzySPAQ/ClWxiNjrtVjLhdONM0/XwXV0OjHRhs3jMhLLUq/zzh sSlAGBGNfISnCnLWhsQDGcgHKXrKlQzZlp+r0ApQmwJG0wg9ZqRdQZ+cfL2JSyIZ Jrqrol7DVekyCzsAAgIH/1AtvAGCJchvLFoaR5KNocKcoUMe2NrpRrFS3DsYOsXU 0U95pmAHJaMt+wv4UDs/wNzOzC6stRML+3lg6sYnSgddH+N/DA0b5jQSAyNWlL87 j08h3ATaPeDD6qhqFRe3uzpQMAJJWbeTdyiT2vwgglgcaJWuVjYSfkkxX7AVDFHw C4IOuZ0aQhHyHQsGQURTg+sotMx+kX68o7oGZqBBOcr8VdFyrlq0Tq1b/i0fJnn2 Nz5hY+OOXbyeoJbaY0KiGnnMwHmeZ2eJWk1cCHUZnrY5WOxYQHail2KHXxhYuPoI xsL0y+XdErX+lc2BiEbvXROs+VxEo/3/BVJXAIar3nCJAD8DBRg7V3PTLXai276E i1cRAsj2AKC26JMJWsvd93UUWRXDKmU46MgLggCfTOIjPheQwY9VCN3jO9YROzij QVE= =qhh7 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/34622C1D 2011-11-16 Key fingerprint = 0A0C 9ECA 18EC 47AC C715 2187 91B9 F9FE 3462 2C1D uid Michael Scheidell <[email protected]> sub 2048R/8F241971 2011-11-16
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBE7EJJwBCACw/7AoltcqlzLBZfdNZTb/9zMBRV2X7Qz8jtOrmFj10GpasMCe oHWLXHyWbuVgsu2QeANorUcEMvVpkCkNWG8EewKH5QbUcehqPfs8L51N+8Xxdzr3 LlAoOiDFI6FWhDrHvdXRgzWM0xU7OMAxPkXpVNhT4cTmLwWGXmVNtxL48MRTsUz4 XRMkXpfEEfXJ0xGsz+Q5AMSUbUIAOq6cKCreIk1s2Ir9UHHBJ5E68W4jHFk/PnYP WAx1z+PugI932b1RmnZEycjs2U+QN925vJ+V1172tU31TOPF3yTVkeltV/R7yXgB Pn5iDDrhILjOjWxj3xOGXJja/ikERYAPUEqLABEBAAG0KU1pY2hhZWwgU2NoZWlk ZWxsIDxzY2hlaWRlbGxAZnJlZWJzZC5vcmc+iQE4BBMBAgAiBQJOxCScAhsDBgsJ CAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRCRufn+NGIsHabBCACaxRmi/WgvVt5y r/9DfYDKMBRZwdvTmPqSc3qa/HyCH5b8pIzEep0UsVw977LmOnMbHr9TEzU9YuF0 XyA1WZNdzjnVjlRl2VW6/Cwo28jnwnESiGD/KNdU0e0T4ntqP4eLEd7t4Y4WhpTk JBidX0r6d2+CQyCFk74zDc5eTXS/sLZZJommr5JIo75L7LWetuxR6AFrZ3SDdanc ktHJspZAN69yVb3XxoDveVF0XXE/RSeStWtWHLJNN0r+6Oq2CAf1fJZhFOZybPhs zYy6xWFp3N+myhq9HgPmlQcB8BCPHu++S55Ybe+4ZDqtuLaALQaT20zr73Vv4VHi QMiB/TYnuQENBE7EJJwBCAC7Qjm0lGOxZy0JoPTkZ32KW84TxsQ8IH/6QhAP2AVN kCaVrlZcGaZKd2WBQIcd0Br6FErD+jrYB9+hv1kGj/2Q3dL9UbB/Ee7ywm6++rLc RdRhlyeG1or+zjcQEvJyYEzyGdJi4R1+6SIQLaJiPrGL2GvGWfx7xk7UoJe9vayX ie9LNBoqq/qlXNRRRAu8DvOk4LIRcZHwv1urwZIGoK/Kmj0DQJ8+mrqXBugkI35G /XVeIgOzAoDGHkIR+eHGp7iOaAxDWwRGgtcYp8hgUASLgMxOM7npc1agozdFD20A PmI5uLqS0nmHiGaQYbS9azkZh5zwDKXaq6xz0LDuBcgHABEBAAGJAR8EGAECAAkF Ak7EJJwCGwwACgkQkbn5/jRiLB1lPwf/bQmsQnuQIM1O4cWxS8zKqFp30k1GaU9k GEAUEeY9JB6z/vhhleNwiMV6DbIfzFN71JWs00iyI0NAXDjNp+PLR+lBXH0Ztca0 C4N7vqNnbsg5CleKK5n66fOc/HVB86rpmBFU2ji2ZQ3NO+A47XlGKyHgPvZ//XfW +WfeuCJ3tCWnx7lVTFXh/tIKO4fPyJ+dmp0JzumT7lmwG9YPwKovx6s42DD+62NM kf1yKac03ta650N6s90zB6XswCa8Geb4pn2f2PGkobY7OUfqymf+Rnj/kfnkRFo6 sHoeErC1UGxAi59bZaVJ69y1/fmJrRD92ymTEj4DZowEs02c5NhwtA== =S4If -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/0FF231FD 2002-01-27 Jens Schweikhardt <[email protected]> Key fingerprint = 3F35 E705 F02F 35A1 A23E 330E 16FE EA33 0FF2 31FD uid Jens Schweikhardt <[email protected]> sub 1024g/6E93CACC 2002-01-27 [expires: 2005-01-26]
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDxUIHoRBACGAbIspofa2HTwV0Y81ZgrizVgvsHduKRMYmu9scX6eFSQWC2a JLXXnMJMK97LG2m6qX/hzjxZKU/n2eNpHa3h9zLYQ/8VdN+AFHGZtgmZ7xe7UpBI V2YohykdmgKqg8WuVQGrNTwbkaAFeLnG3yXhR83qukRvv+qFfXbEF+1S2wCg6lLg YJ6U4J1pfTO95Rd4hw5v6DsD/0hUfa6C6C6xjME6P7r/ORd91+nJsfO0pcV1rK0s yCMdAy/zdUlKpsNF9vS0qhCFonuOHWxMEe7D8L80oUAwlk4RrFBm+Ch7RoBGYGru aEom/7JGNoRqUD2CKbFnkAYi9HP6XlXcpgm3GO4c4VtIcEbgywjw7rNhmNoYLrZV YUb0A/9mNCqpPTd8ngm7kPyTTMJitYEVaBPXEdiPueYJND+eI9AQkcqYhs6LWq4c jgmTNeImQ+kR1UeDj3dOwUDqhGmLPN60nD+Q2oHHBif8NJOu47mx1dgdriM9FsTN 3UbeSve+mY8Z8zcPIYKl2UJLPZckWgq4pZRrE147cnKHSHHM9LQtSmVucyBTY2h3 ZWlraGFyZHQgPHNjaHdlaWtoQHNjaHdlaWtoYXJkdC5uZXQ+iF0EExECAB0FAjxU IHoFCQWjmoAFCwcKAwQDFQMCAxYCAQIXgAAKCRAW/uozD/Ix/ZB8AJ989jyDH1G2 T1KMoNd7gPk9tAw1VACfXJgkrI42ShC4cHz37xrVLXeJp9i0KEplbnMgU2Nod2Vp a2hhcmR0IDxzY2h3ZWlraEBGcmVlQlNELm9yZz6IXQQTEQIAHQUCPFQ+0AUJBaOa gAULBwoDBAMVAwIDFgIBAheAAAoJEBb+6jMP8jH9P+YAoM72fnNwxxcDjb+3Mv3A CfbHonYCAJ9lfK9fIbkgfAHo+2kwnOEN4yWxzLkBDQQ8VCB/EAQAzzIqOgms7u+e UKampP/5U9G78HA3GIkVLcAeq5FfpFtls4NmSKz240zNxXmABWTSlBmOQvMdhB08 vRbzEsxPoVdNaF+QvRZYEr5+2bOM1pnHqYYMyUKwN83LXgTDnXxas4mtrkgngZTe tGdFQ3PIVqW4jV0MmnEmaqde0nMJ6XsAAwUD/2z82PDDwFBu1Ogogh63qE69HSQt 8weHX+Skmi75jE3r2niUlx6B0IfLXzFqP33vyrsov7QHgAuOjNficisbC73o3gjp voJ2RYB2IfUCgeFvipLpqY1TWJ3bF52TYnJg4rrEWd5OWs4FB0iaJ78LVWgq3WsN zfgcgfQ38d+scJu4iEwEGBECAAwFAjxUIH8FCQWjmoAACgkQFv7qMw/yMf1PIwCg nSP0i+q9jhEf9T5xA0+qg2yYB/IAnjvd/tA+2/5bP4pObE/oRNjIVZBZ =YPu9 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/60AE908C 2005-12-17 [expires: 2012-03-21] Key fingerprint = B555 2A96 274E D248 5734 0EB4 F0C8 E4E7 60AE 908C uid Matthew Seaman <[email protected]> uid Matthew Seaman <[email protected]> uid Matthew Seaman <[email protected]> sub 2048g/58BFDA29 2005-12-17 [expires: 2012-03-21] sub 1024D/9B19F956 2006-12-18 [expires: 2012-03-21]
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<[email protected]>
pub 4096R/092FD9F0 2009-05-23 Key fingerprint = B83A B15D 929A 364A D8BC B3F9 BF25 A231 092F D9F0 uid Stanislav Sedov <[email protected]> uid Stanislav Sedov <[email protected]> uid Stanislav Sedov (Corporate email) <[email protected]> uid Stanislav Sedov (Corporate email) <[email protected]> uid Stanislav Sedov (Corporate email) <[email protected]> uid Stanislav Sedov <[email protected]> uid Stanislav Sedov (Corporate email) <[email protected]> sub 4096R/6FD2025F 2009-05-23
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<[email protected]>
pub 4096R/D3AE8D3A 2009-09-01 Key fingerprint = 31C8 D089 DDB6 96C6 F3C1 29C0 A9C8 6C8D D3AE 8D3A uid Johan van Selst uid Johan van Selst <[email protected]> uid Johan van Selst <[email protected]> uid Johan van Selst <[email protected]> uid Johan van Selst (GSWoT:NL50) <[email protected]> sub 2048R/B002E38C 2009-09-01 sub 2048R/1EBCAECB 2009-09-01 sub 2048R/639A1446 2009-09-01 sub 3072D/6F2708F4 2009-09-01 sub 4096g/D6F89E83 2009-09-01
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<[email protected]>
pub 1024D/86AEE4CB 2006-04-20 Key fingerprint = 0389 26E8 381C 6980 AEC0 10A5 E540 A157 86AE E4CB uid Bakul Shah <[email protected]> sub 2048g/5C3DCC24 2006-04-20
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<[email protected]>
pub 1024R/4FBE2ADD 2000-10-13 Gregory Neil Shapiro <[email protected]> Key fingerprint = 56 D5 FF A7 A6 54 A6 B5 59 10 00 B9 5F 5F 20 09 uid Gregory Neil Shapiro <[email protected]> pub 1024D/F76A9BF5 2001-11-14 Gregory Neil Shapiro <[email protected]> Key fingerprint = 3B5E DAF1 4B04 97BA EE20 F841 21F9 C5BC F76A 9BF5 uid Gregory Neil Shapiro <[email protected]> sub 2048g/935657DC 2001-11-14 pub 1024D/FCE56561 2000-10-14 Gregory Neil Shapiro <[email protected]> Key fingerprint = 42C4 A87A FD85 C34F E77F 5EA1 88E1 7B1D FCE5 6561 uid Gregory Neil Shapiro <[email protected]> sub 1024g/285DC8A0 2000-10-14 [expires: 2001-10-14]
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<[email protected]>
pub 1024D/7D112181 2003-03-06 Arun Sharma <[email protected]> Key fingerprint = A074 41D6 8537 C7D5 070E 0F78 0247 1AE2 7D11 2181 uid Arun Sharma <[email protected]> uid Arun Sharma <[email protected]> sub 1024g/ACAD98DA 2003-03-06 [expires: 2005-03-05]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD5my2cRBADKOgeJz+IX/4UT65iwvAMoR5SMctMAEGNHvTk96H0DSYmDmqPE 6D4PWxjiAmbFdMmxGvmPlZDGRk7IpZhrvmsAuAvwImA/UyGb3Qnb0zOoOlAIQiGz NXRvum8vzoTeW5r9ghLOKkBuze1qi8PZdT+ztreaYcPPZBI9zPNfnZd29wCg4Sqo eWA46NgWICUsOpC3dkhAmdMEAKBUmh8p4kOZQq5LPv3y1fo+5MBI1gnawiJoO955 nzVuisH5h1yaNjz0nkB5VtEG2Ub2mhBjckze4EP4FzPgIpOhSMdGfNh67rrByvv5 DD/SBwjULSEGbBlywn462QDb1X0PxFX5C6IYK2Q6i/vbWkOFMI2dVuQX0PUq9zjN D5QJA/sFeXR7NcutCUaLknFCaV1cBTITJNurKn5Vm3QQq5s6R2cFTxdouHcSNkto EbhcAvMapxlWl146h7mAtLsXXa5s3wuMWq+igOXUk0wkcm8CqvSQtnVYl4Xy/Ll3 zXKxtzKHZ1YxAdYQXGkesBuaSafCN6VYDFFSEwChHrwe1sV9obQiQXJ1biBTaGFy bWEgPGFydW5Ac2hhcm1hLWhvbWUubmV0PohiBBMRAgAiBQkDwmcABAsHAwIDFQID AxYCAQIeAQIXgAIZAQUCPmbLaAAKCRACRxrifREhgYRWAJwLdcAEvjkJf5bHy975 R7q7Rp4KUACgq214dvKu35ysWriNNxu2jtIj1he0HkFydW4gU2hhcm1hIDxhcnVu QGZyZWVic2Qub3JnPohiBBMRAgAiBQI+ZsydAhsDBQkDwmcABAsHAwIDFQIDAxYC AQIeAQIXgAAKCRACRxrifREhgVrxAKCXiBsYhu++BPQX9prGf2BeKNYaswCfaS2Z eNyZsxSNedBb26k8ARWrZzq0I0FydW4gU2hhcm1hIDxhcnVuLnNoYXJtYUBpbnRl bC5jb20+iGIEExECACIFAj5q4pcCGwMFCQPCZwAECwcDAgMVAgMDFgIBAh4BAheA AAoJEAJHGuJ9ESGBbWIAnRAlo9PVZzdar5pmWDGspeyGk63ZAJ9X3x6ZQSD7uYeB ajKe61NpPAamJbkBDQQ+ZstqEAQAkgu4UWlgyF1IeMM+vwHQ43zik3Rn6nhpJXRb Arpg4QyVHQNQshVT4XsmSvcgw0TSUub0x5m23dqnhcoB/mk0kAIymVQiEaa4SLjI tTXd93yRvSgPd8JEUNFwcSE43ZJrrmSAqIc6MUJ0hI/pAeCFvRWYQ80+82xx30Vn fJLOJR8AAwUD/R2xFX5geJ7W8OyLtB5XQirkL1YPGLNNx4lyAPXFJc1s1KwfZ90q LYNw2qLRIacYKmY2X9BrWADXPrEZIDKljn+Awz34lSwerLHWwYDDoeyjfMt4Mmra MsV8UIjaBGO1ptbqEDSVeb1tiWQGa622pT5YaZp/r/OFdlmg+JvkAzHkiEwEGBEC AAwFAj5my2oFCQPCZwAACgkQAkca4n0RIYGWkgCgxhDAezhK5kiSC4N74g9ifsF2 jl8AnjujFRJcMfV2R28jiZ2BS9mnvqjU =klyl -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/17F0AA37 2007-12-27 Key fingerprint = 96D1 2E6B F61C 2F3D 83EF 8F0B BE54 310C 17F0 AA37 uid Wesley Shields <[email protected]> uid Wesley Shields <[email protected]> sub 2048g/2EDA1BB8 2007-12-27
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEdzy+MRBACwXYsfLwZzbzYru+XqMIFKVIIszXJK61UejvQqcuaZRNLSQyM8 Fc5dI6AfciZV9tH8LDqYmd/vDtzjmBp/h2SPqQfiVuREQ0+c+aplvWvWc2TjFQg6 CZbb730TtazPXbObZvSMRvLeRM32W9Abj5L8DXoQbpMtC8cllG21fsY4hwCgyngp xK9e32zih9ddXk+NgjK627MD/iPPyo0N4cb9omNwOCot8YIRpdJhmvR/yPh+8rmW NUu61gV8jn2XB6Ldto8/dR7chqqbBU7bS+hsk/lmbOuLNe2XkQA3e7dd0EEHSYYf mx6zjw/dEb9EBANAWI6QOyjNM9npWb/shZi8Pehcty08t2eytd4M7wPI9zLAXsMV M3nUBACgxIoW4e9yXeNQ3CI2KD/Dbup+SNha1uCEmzN5A0VfPJzyi4Avdtl9URGC HUFnUAs5B366yQTgmkjUcfcWqTKBicp4TAZ2KbuDzMX6f6cikb9bdbl4P62vN718 5iclN77KfTfc6j4aOdIbnc6J9GStvYY0R2eZRKkr3CsqSuebxrQjV2VzbGV5IFNo aWVsZHMgPHd4c0BhdGFyaW5pbmphLm9yZz6IYAQTEQIAIAUCR3PL4wIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJEL5UMQwX8Ko3juoAn3bIDWeVAWOfi1XjXdaA HN7HKkMKAJ9RJ4F67NZKo37U5E3UnnVSRLCZ27QgV2VzbGV5IFNoaWVsZHMgPHd4 c0BGcmVlQlNELm9yZz6IYAQTEQIAIAUCR348ggIbAwYLCQgHAwIEFQIIAwQWAgMB Ah4BAheAAAoJEL5UMQwX8Ko3KPQAoJYfbksQ/n/1FitmpqJb+AmpOmkPAKCVXF0g Clk43/Af2rVb3Vm91NmuvLkCDQRHc8voEAgA6Tped4TSVLcdXmDMeHvt29i/9rGw EO6lbwUZfamHGasMALyhWC2/nWhoCdo6tTP2XT9guEX5eu/FoN+nAEIKKHqNiiuZ 6jyOuzUFD/d6n8pUkjHRLqLxFznbgW8f0aaG4rNJTQEQy6+X4/yKEvzRxjroNbZQ l300+liw6Q5OztzgMjhkcva4Gxf+aVhVMueGVuANj1QhPPqvIT2roRsBY6PPNCGY AaymLWBq51UbvE5j2jtCF2nfxYnajauqnJpZK0tSkLMkxWd/Khvv7GmO4v47qx/U DTx6iQP/i43JZIqSg8zSGjY9Lr9XJpzxr4FVyW/rs5X3Fp9ZCQxF3Sty5wAECwf/ Zs93KXphXLWhCal07JQsu0T2y81+EXRue7QltZs+VTHvGZuc949dgnZrq6iRckpD unMRJUXNrKP6BFNOJuDAVRVOxxDQc+ydVGwpQFzJes8/9C0TYOaw0k+ayCZapfVf L6zktK+g8oYOXVjjdo8hX9xsus5ie69x73Csve59VmGgCwvywuLUcjCWEgMZGRY0 hBL9ec4uRDVRIdsl15hQ3NGwdxiDEPkJu8QzQv/t4cde+omnI0UdH+Ywk6FZ2qxj 62QaoTvFhuNfWUdmnEAbIkfRCFnHVEL5KcQs0Z9CM2V6qS4kdD9wzthhYtcRgWjS paW/fPyNYLmXuYgvfyk8XIhJBBgRAgAJBQJHc8voAhsMAAoJEL5UMQwX8Ko3AxYA mgKQnqx2baAJtOI7VsgWeTBFEi+HAKCaIQDFpsRsUtsuEYpqj+/zH1bwhA== =kNwv -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/7104EA4E 2005-02-14 Key fingerprint = 9580 60A3 B58A 0864 79CB 779A 6FAE 229B 7104 EA4E uid Norikatsu Shigemura <[email protected]> uid Norikatsu Shigemura <[email protected]> uid Norikatsu Shigemura <[email protected]> sub 4096g/EF56997E 2005-02-14
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEIQ08kRBACP8kqP9uJbHt3w8lPR08oRyvhkUgDO4ZtkragusqjwQ2qfv1GM P/cr01I7QH5k8cexhrjroWoaeXIcMUvNtMOODgj+BhjF+9mj66FG4ed9RkVxvqo4 3v41Hed0bX3z1vrnTNC4KBfS2HZChIZr1ZnQbosW+MRAcvclgOkF4RFYZwCgtdPh WQv9+Lo5QHqpt2hgz8tWklUD/RXBD2HpVfbQX0zkwKUYrHIoE+0oMizzFTdQe4RP HsGiCfZ19msSb4Pjewm1K+Rhg6wUq9hCE0gX2U9J1BUtXtqAoy4xY1JSPg40bigo +kjEAIJ6mA/a1UJXpJ7lDMBzKtwWfxc7F48M2iIJLUaXQzSVyWcZ/V5e9y/1VBsS MclmA/9+1Zr0zrpl8/HnqLfHiyT/3CNGKPodqfEb6qkSP2M9RtYRTmeX9BBVh9of JyfAlkD3XlDyT+wmLSZKTRvAVeenBe9ApvJIYvShVU3m0R6nfDtREmWtILtFf3Jf fwDvNJRoRL0UwkR3AbbMEkhe+6fzUHir5jRCPlV2EiJYrurEsrQpTm9yaWthdHN1 IFNoaWdlbXVyYSA8bm9ya0BuaW50aC1uaW5lLmNvbT6IXgQTEQIAHgUCQhDTyQIb AwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRBvriKbcQTqTkIIAJ4vawXwVjgwFZGT wx+99FNG27QbygCeMaOv1igYzwl3AR2Ex5DQA4kSHPi0Jk5vcmlrYXRzdSBTaGln ZW11cmEgPG5vcmtARnJlZUJTRC5vcmc+iF4EExECAB4FAkIRRbQCGwMGCwkIBwMC AxUCAwMWAgECHgECF4AACgkQb64im3EE6k70XQCgkVmB4DE5TioLKXQjDLhFarws 7VoAn34rlYTkNXPKyyCfYNKnFy4Kvtd9tC1Ob3Jpa2F0c3UgU2hpZ2VtdXJhIDxu b3JrQGNpdHlmdWppc2F3YS5uZS5qcD6IXgQTEQIAHgUCQhFFyAIbAwYLCQgHAwID FQIDAxYCAQIeAQIXgAAKCRBvriKbcQTqTka+AKCkKxW56I7qwivXmENPOmIpSCoq kgCgkXJC9xya2xLdpejt0QHA5vKdqDO5BA0EQhDUlxAQAL3egLJ0c9xHZnD4u5c5 xVixwR7I0AvHynNRNqbXKPg2sPBAwDjh/zN8EUSR6tOL28WGlk35x6iYopvixb91 NKwFzk47Zv9k+71JGKtaSVpxhttI6gO8AabD5mkpxXbaZZhj/mw/7+pliDLZQXRW aDJgCwD7XngxVIVkUetTmLT7Zchmj6332X/B0NdG8zRDXoH8CStJdJJdegwJ+zQe U0MRZRl9VoHjSAagL2Hk9rrlDwMUN00ectEGurih5CA6qVWAL18GIConndLwD2KK a9J854xf1y/VtQKDzU2I3f7eQfgUZs+f6XBGm4mqFJg3+h1dEx+i7wgVZfEN9b9o i2JyVk4kHNvuHQt6Eg6oL42Y58v/sbqIrroxtVPciBvYaw2bfQfhfzOS7Ho/P53O TXGNUBznH2RIW/GWhJlT9zgfqnchn2D3YUZ2Fa63gItvUwVYoRDPygxMhGqxGRsr HIr0envWXjpmozE+aBV89rsWk8f4bt1mp4jiMHKRo6Z8/50wkzWDBtSSguzig2ac gMDhGG2QWEKTuOYS7EM6FEz4vhX4KZKk1DGVNkpK5736QE6MNqILlcsPcfGsT3QU +7u4DFHQHGg7rdLFpBnKH5KtzHaJugChrxKhJiRTuriM8GzFYvKwOMVrtfThsX65 ZEzXsIirWKNmDoetffGx9MuTAAMFD/42QLAegFaiqHwjiK5ju+YUu0kme/VMu2/O 0rXIHDFruxCV9wWzICsvb5Ung7DBFgVTumI2FVLepzVkqXjhye0XJE0IiFdyydMc 2ahcuwoKsTlCbGzqqsgLcVXmSbrSyDZUjvfPnuOWZjSy3QALssLvbWl33bFl88H2 VvxRjk4AIDkJm6Q9i8fTp7tbyJfdtJqCFMU2MHK46vPVP8jQqg+mLhh/hPOhoknU mlE9DrTGLOqoa8A9hOXjyrZuNeIb8+PMc8YPytFaIOL1Kt93qjJrF1wauzEaeZx2 fQMpHW5Ud7x+CwSrDK3QV4MLWLMFzP6bb4a7bf57Y9OLn30KWx6ia/Ff5ZYHANH/ 4fK0fgaD1TropYUMkTXn+CjN8GeaEM3tz6FUWYUBjqa2n2coLfFR5kSBK/sO2MmO BpFXNqcUiZ198exbqmaF6fpbBaIn2eo3LGGbw4gK4/nmGQb9wvoBPwJFcMXmhN8R ymYE+jOFvMJ3W+9DHnryYK9t3b/+5Us3BC/oQKu13e+snXAAcQhtgNTjExU7qzcJ CsEwOOdwZF8Zf/0aPgFmkm/PXghZYJfdbmLLbhEdSOmikm3B7pBx2S1ZTAAoXIuB uofutdCctHUJs9Qj3ZRE8L+vRWlnzufhX2knX//WegDRpD0wdc94g0BqZpOT0Iuq fBx0K+foFYhJBBgRAgAJBQJCENSXAhsMAAoJEG+uIptxBOpOFfoAn20qdgTPaPmI Dx8oV0GpgT6zW3ITAKC0fDtfsq7z1vlOerBQRbCc4Rtmeg== =/u/r -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/1C139BC5 2006-10-07 Key fingerprint = B83D 2451 27AB B767 504F CB85 4FB1 C88B 1C13 9BC5 uid Shteryana Shopova (syrinx) <[email protected]> sub 2048g/6D2E9C98 2006-10-07
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEUn9lsRBADbufFsrk3YtL2jzdLYUufYV9goSp7joMMOwSLhSWf/98DoaW/d 1bhwr9yAFfA81/ByuCEkigZl6jUW5AEEDuoJ4hxZG6th7OasSMCLHrGv4QCIDsiR Yo3TUFlh3Fg7SYZAxmGsMm44u/nB/0oZOWJeTzu4IkoG2QCfoRi+RUIEZwCgupdk xn2tovdQA+y5l7uxhm6MW2ED/Am3BVCM5EojGESa8QKTynKoWOzPFSvUvarqORru pEpmy5JdPjmf5mnfPvWcyccgAIi4VyuyGeqckFOJBBUaQ7w0Es7G9p+egp/e7UVC vgAVRKtSzix3TuXaaB04K3IJVY9vmEwTGO8Jy70Ab1hI/R4MbUUfzuWVaKUic9jB p3oRBAC8RgIM9zBTOtbsFTQ/LpiBL2X6oSRrJBvaLtFZEyG4aDGPxF/ESdfzIPrW 3YePPinAgB1EhVawmP/uj3zhZQML3g69tVu9YhMhRb6C7v1h/nVC73wT3KDnGrPS eZzFhgHDr4zfEomXoR+HLjP3u9EMguyzlCfEO58QtTgeXKzZcrQyU2h0ZXJ5YW5h IFNob3BvdmEgKHN5cmlueCkgPHNodGVyeWFuYUBGcmVlQlNELm9yZz6IYAQTEQIA IAUCRSf2WwIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEE+xyIscE5vFGEEA nAhEEHq5H3tzKRdgX+PFn8wyzSgqAJsECHYU7maqvBfs8l34AOwuoK+TR7kCDQRF J/Z0EAgAxyVxRfbMBrSUGeCXI1FSWvqZJkrLUeQ2aCN0FiEmrjUMqTgkiZcxortS BS9Iuk8aEXv7d4S6qhJLfidM5XgxZs/wXFHNO30S+HHw5EwQuSDg1OGM/vY2i5y0 hJqZuQos3SpUWx2Hl3y/BlExt+D5jwFyU9hUE1nNru3SltmryJwr+6PDFfom5iYc 1FZpfnm60ZPK0cWDYk04uMYebgXd55acArmPvZMdzEYl/ChrB2GEv/JTVCJZZY0q rfI7WE2wwPb6/+WK+QINb9fqAdGsOlpOgkuFo7Xu+iKdH/EDGWnKQkLMPClM1xMK dclJKMz5y+l/GB/dTYWH4NtGeiIk5wADBwf/TLTluCRCFKDHkBuV68mJs/ShXpXw tnhaFF5snAmmtAH0zk81byw4Wt1+MUMYZ1rYrmhqyhXcqnAcHYatUbj2lyvzvCxo W2qdW6CE+0bj/pCM41oeRZi4LzJx3pYwSS2fPWaBWAeWZ6qLrHWT8lc0RrJMlteJ kDnchDP9AVxmi4bvpmUbNPdERDEE66XFtQ3zXpzmb0hLV1Hcv60KVYd3zzRADOaM tRnRMN53/yC0C+DDDoV6H4TJwxiTo5MTT7s9a9H/EfMY40RxFGjwojRukCTGWpuh pJf2WBCsnvBqVsqJLeOHyxwlbJhm/KXVRbFoAp6rZTshQ8M2kplmygIJEYhJBBgR AgAJBQJFJ/Z0AhsMAAoJEE+xyIscE5vFzHMAnjcjCi17pcNEGqdUuGWLXFCyQ5X/ AKCNc4ZJinPdFRM5W3TXJmKRuGTOVw== =DE3R -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/ACE75853 2001-11-20 Vanilla I. Shu <[email protected]> Key fingerprint = 290F 9DB8 42A3 6257 5D9A 5585 B25A 909E ACE7 5853 sub 1024g/CE695D0E 2001-11-20
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDv5ys0RBACm/dkRFFWNFb6pafzsHX3YHfyYBQAhyoT5ZPvvh7e6RdHYdxYc tYjgtOid4jL20Uz7kXYwT5OVYo/l9j/AqknacYoboO5AHcJrfO3QjfztJaorUSqv w9dv6DSOQWwTmexeshp6v5aEsOpDbfPtUnFBwcJe5lOBsokk2CqkzI/XqwCgv49G uNLbdtIN87CrUwyiLG5nsSED/35/A/9b/KNwjBoBbheCJDByHNPd9svQIpVWTuk5 i5RKVQQET4ZD5tPQWPnSZ95ztkkwcjjOak+esHK85yTYXXjrfcP7JiE3HIZhyj3S dxWaOFEbSE3Xc0BT+8BOAPFfb2WMSdCQFowkRqbMiFudLnz4tZnBmTQcuxqp4G7S AFh8A/4jBhhkKaw0KeWtkFKugVgUWZNWZ54aJhUaLg5wGbSTNME74YLO0Xc+wkjY id3gG5ayJyecZXCMUf175/ZaSPeNRCBOfMjDnl3G05b/huBFUnXzxTkWCcmopOwW 5tz4C69UVP1UHg4XMu+f6D48srIaFu+DOMTwniL95vqcGkCUJrQkVmFuaWxsYSBJ LiBTaHUgPHZhbmlsbGFARnJlZUJTRC5vcmc+iFcEExECABcFAjv5ys0FCwcKAwQD FQMCAxYCAQIXgAAKCRCyWpCerOdYU/oHAJ4kKjpX6iMF1Y0FjPMyFiyUlgjT7ACf a3czQMrflxJC/VNuzMAmzA19j3y5AQ0EO/nKzRAEALHq1lBY0OBQBeV7sGOvTaBN itMZeVDrGDYUQ9xunaDsEHfz2fD3jXCZLaUayv4LZeWzRr4DbnK4F0AmZLR1v5h3 LxBuvqHPRma5RyyFRftwTNHM+DWu6TSqnE43QS7Ci+z8ua96CmcDa+PnEfubyNLE dco8gfE4oHDqni1R2qVfAAMFA/4uVSYj/DvIzckbZ05FjG+pg4HKsyxyFeFsrm9D 8JD9tC26k4YxLG5FPBdKRsDrN/lZbnLWHTtZqhE3WlX6DRlea93T9Vi2skbujKcN mbao5pyVXWl1dboFquP8ku91CRTZvmdLF6IBnPo0LfOu4jD6DsD5O0UZ7lD/Y+6p 8WcDfohGBBgRAgAGBQI7+crNAAoJELJakJ6s51hTsJUAoIB80SN0z90ocSdxYGwl xkOSm2cvAJ93DigXb3moOsw3BRLlLPQRS6TZxg== =aR5H -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/E74FA4B0 2010-04-13 Key fingerprint = F682 CDCC 39DC 0FEA E116 20B6 C746 CFA9 E74F A4B0 uid Ashish SHUKLA <[email protected]> uid Ashish SHUKLA <[email protected]> uid Ashish SHUKLA <[email protected]> uid Ashish SHUKLA <[email protected]> uid Ashish SHUKLA <[email protected]> uid Ashish SHUKLA <[email protected]> uid Ashish SHUKLA <[email protected]> uid Ashish SHUKLA <[email protected]> uid Ashish SHUKLA <[email protected]> uid Ashish SHUKLA <[email protected]> uid [jpeg image of size 4655] uid Ashish SHUKLA (FreeBSD Committer Address) <[email protected]> sub 4096R/F20D202D 2010-04-13
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<[email protected]>
pub 1024D/860DB53B 2003-08-06 Bruce M Simpson <[email protected]> Key fingerprint = 0D5F 1571 44DF 51B7 8B12 041E B9E5 2901 860D B53B sub 2048g/A2A32D8B 2003-08-06 [expires: 2006-08-05]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD8xcj4RBADp/ttN/vrU8xXimyZDEJ3NbJXMRAdWin8hhY5cVDT6n6t6Kih2 5Z+orVfRUA77yyYprxpkMKJvfsRspWvJeM9/7duQe6C7CSUNwB3bXCj5Q7PG9Oqa a6ZNPQ8k0EGZkFRgbbkru8wpcttMr4ngsdIm5cU7Y/bk3O2L8kh/Do1XwwCgraUA 0z9KKZR+PpMgM6YXmAy0fh0D/3EP//MLIF7RW+wyabjmTGxMB9RapZXlZLTjFFeX sOrAhgcjFodwigDHEqLtG5I75wz+z2vuyaLtTPHYy9fkFxKXNE8wNWj++6GMJO3l OWRyWNlDLX0d3D22vVWOeh/rLq+PvsEHso1TnOJrYn4Dn4VwVXzSIaGmzGAPuPoO KaT7A/9Pgc8gwGPtG31yrp6AixoMZ32wVdxuqndD3M9XK+jtcdDtKvICQcMWCL5T E8dwmb2qzN13bBILJHktut5JvjgOgYOJeLZKPAMRZz4MON7KcKNZKmPBuNw1a6cF KGkBJfbCh1GIx7DyF/CcFeg4/7IhQoANYZQNc9Zm/tRbg531SLQhQnJ1Y2UgTSBT aW1wc29uIDxibXNAZnJlZWJzZC5vcmc+iGEEExECACEFAj8xcj4FCQWjmoAGCwkI BwMCAxUCAwMWAgECHgECF4AACgkQueUpAYYNtTv0bgCgkdyW3YFhooTeMExQJT5Q FbCTYS4AnReju20M/WngliTt9bdbnbmPeGFOuQINBD8xclEQCADhc4W1TgKJBO6M bEnWC16IXR3U8sXU7meMMbclb5vWt3j1jHVczrYVdkEyGxzu+ydxVlPhdGXtxT1W 8CBjXsfz8DRKs9nMttqPj5u6KQdr+O0zWiZZkoqOdT29X7WZNKWQreKK10PgvmDu 1rzf0Y87B7M0qnqjKjhqinVhLrOHqJIwfFQmB/E06MOhE3BQqYXc5qvBuq4U9y7X Qt/Cxfobw47iwAJEJIExai4mMsbXXtydsj9O1tg20c7IBzJEEDecOFJPhIKtcQ7p kRNjVGwAkQhWmXsPZHKkMjgnkhTmH0L7MT2YGK6LHvLiuAbjULYiSZ7WLXMDe3iJ al4lDNSrAAMGB/9X9K1Dmdu6pWOub3zkgNybFFh8OoguKJkdO/bh1RejzeNfI9Q1 M8gO3ePzgXF3+BgJIblOA77t6OhNUQLRcjSs/xZwXG5KVQjRF3XJGkLZQIl3JGmB i5eNE/rBIMHSPn4GM8FSDZ8bPGzgaTBhEIos/8nCMpyxf70f+gsbjjW/Dq2HXHNr wToHezXX1LzzCqIl2fJgubrMXVbKYQBLy7d/IQnfZp1sGfvTcSJSZXT3wo6MH1EP jUpwmfVOGDN1NDQTbuu1vYqSETt2xzIq4R/+y8/xbm8YKBYDCL2EyCGQcwWhFU4C RAgXFkuWPiXx/PjfYC4YpKd57/7xgRO9i++LiEwEGBECAAwFAj8xclEFCQWjmoAA CgkQueUpAYYNtTtwzQCfc42CUSzItmXxtmWaVRxFSbnwJTsAoKPQ1LsUmEHNo+1s X7criQoU0Axa =iL/w -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/13D5DF80 2002-03-18 Dmitry Sivachenko <[email protected]> Key fingerprint = 72A9 12C9 BB02 46D4 4B13 E5FE 1194 9963 13D5 DF80 uid Dmitry S. Sivachenko <[email protected]> sub 1024g/060F6DBD 2002-03-18
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDyVYkARBAC2Z/8odq3zwRIQZ9XOF4ZoQ8ITJRrTUwwYjwOf4Kz6gTH+zIGt Q57m5w1Scse3J/fDdIZzw0gJgH0XRpKOonWi23di4B3Oyvrdr1Zm6OlqUjoty8CC 7jo5WlLF/05Vai2HCUmFeqiukCN0mfm3Fd8S+hf1IpE1gaIxCKNvYaf14wCgpoVG Tqi+lIMCktV/vxUf3h7KgOsD/3nBeANz3U+Izr9g/AsF/FnHXeawl2m7USaIB7b1 4CFrQp8FDl6TCAtPHQyQ6pdnh0HZ3h+7cfPB1poRaXUvDimQZR9KHZO9uIilpC2n MdBjbkXmvVQ5FhOJz49cXw51Lck11n/+OuP4N4TcIHdt0DQJoUrGIB6X6Op9aOrP Ob70A/sFsFfebYdfH8loLsJkHU8VbB2Y0KZBXSnhysQ9muvj1HqT+n66o/3SliCE R3cNVMgg51pqxzUC0o6qTVKJbfOrI5b2tbYjvx87ejugQwafhKu8t1liDuUYQK0Q S549pzLKUr/NUvJaYU//6QlFIPNSzwB6x4wjrWAKBv6Vn+x0c7QoRG1pdHJ5IFMu IFNpdmFjaGVua28gPGRlbW9uQEZyZWVCU0Qub3JnPohXBBMRAgAXBQI8lWJABQsH CgMEAxUDAgMWAgECF4AACgkQEZSZYxPV34DFVgCfREoIUfpKaEeGyzl0zKThVC7J XccAnjiB85SwuNAxMraQuGDJXojukUfwtCVEbWl0cnkgU2l2YWNoZW5rbyA8bWl0 eWFAY2F2aWEucHAucnU+iFcEExECABcFAjyVY4cFCwcKAwQDFQMCAxYCAQIXgAAK CRARlJljE9XfgA6GAJ9RFwXlNqYap2SI14IPRjX9ZAzvjACeOC/Elh0HkwQ2HZMT edpgzOuknUK5AQ0EPJViRRAEAO4VdFfYGd/amgG2MDGqD269Kb5vTFbS5mDczgjM 6gXZgOjhbvj3x2auo+Pfos6M/bOtHuIk7QFOeOEJ1wcg8wgE3L3kFQPeEPeOgKBk /eA1ExIW3hiPeuwNxT3iWEv0GF/rvCSeSK3nuuDBNmkSpJ4LHIyO8Kf5YJNp8+6D yJ8rAAMFA/4jaulRHxSsWlFIm3gpBR9aiXGGX1pZTuJpXqjAQcRzDa9cuVatiSJS H9wzfE8R4353s5HpaY3AkVRjY6s9AB8bygGdUCQjuIuifTS4+tG/wmaXNgyqBqaB 6V9gTgfW/7XqcJUGeLLMUpccSRZhlQvHd18aTfPWPB49xu2+arw6P4hGBBgRAgAG BQI8lWJFAAoJEBGUmWMT1d+AYlgAoKZWZs7rDLdQbn2d0CVwmWb6hQLhAJ9E/r8N n3jf2PI8Psl2wtgvWazpaA== =mkxU -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F9561C31 2001-03-09 Jesper Skriver <[email protected]> Key fingerprint = 6B88 9CE8 66E9 E631 C9C5 5EB4 22AB F0EC F956 1C31 uid Jesper Skriver <[email protected]> uid Jesper Skriver <[email protected]> sub 1024g/777C378C 2001-03-09
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDqpHqIRBACDazER4MfiNd6QrTZ925IKM0HuYP1YN6uodGYhCuBGb1a4cFnt 0Xuw1fuaGqahBnNmBg7Rsetaf7b7/w90Of286mRBgIJIr33VxaKd+lW8l6ORQK9K bDR8/IpgHxjt8LXNdBr0/Eddj6mOPojooIDOmoGyj0XOlRb5bq+xWlDtAwCgnjQa KG01en2qMUwrvPPZzyWg/qkD/3q+NyOVyi0MAgXdYNxI0tMrDPsRzmbvG8wxZQ1S fGHGJEvlKhksePCteX3cLicrxRZazfIteiBXL+0iEvSauF7JZzhG5OfbLTQS2MKr d0rFCSmez4VAJfx8nqJoA4C+yTphxAlyP53JKF2BmRbfSuz4vIbi0e+zsc+kZehS 7Tw+A/9tanL63z5D8qmPZAE1JqRJfyDnTthzUPPY9h1CEZN4jtcdL/FLME2TmKva 5kcgp0WTAGK0tHsyHvij7KZDAp8Z2R8/456DpS0Rk5vTBy+WKMWV+j+RlRlSAr1U bkg6cEtMKCImXsprST8UImfJH0DFUXt15gQ4ogog2xPnuvk3/LQiSmVzcGVyIFNr cml2ZXIgPGplc3BlckBza3JpdmVyLmRrPohXBBMRAgAXBQI6qR6iBQsHCgMEAxUD AgMWAgECF4AACgkQIqvw7PlWHDE3ugCfa3zgBbxwCmIGGlSrwWPP0q+IGsAAnjuy GZPJgHaWjAn+SrRftnZu9M0biJwEEAEBAAYFAjqpRasACgkQH3+pCANY/L0+bwP/ YrW19JdTDG7fDCYbwgn1ngA1y+nRT25G+ozBUJt5q0H8VL6nrWwcbfk9Yg6jWkIx Qs2SF1A9yv0YXFqN1ihGYk0iTU/peZ17wP/TIvd+zkcrzXpdHrfrOy+xgalbi7+c v52W/49xYvqBsmk0CDRSkdkYt3VgvK4Bo7xoBF4IEl6IRgQQEQIABgUCOqoEkQAK CRBHg9f1XdH7jORAAKCxXIkp49PFrGbiM+JBIsMS+Ig2bwCfXeekX2maFMz4I8pf AorI1IepXYaIRgQQEQIABgUCOqqpywAKCRA5SqH23klAVvt2AJ9kzNRR0EjI09CQ TQ/m/Rr1/LCjCQCguXoX2XJHP/+HEFs2THnDfoLU/taIRgQQEQIABgUCOqzL6QAK CRAKdbF0qMx7Ulw4AJ4oKf0ufrvJ5tus51E5w8dRFTx4PQCeOfwDs+ergM+7Rp2N Borm6mrF18qIRgQQEQIABgUCOrIYawAKCRBMkXPzcEhgNMzHAJ4oa4hCoZOp4bG9 +9pCThBAKY2NYwCg7tQ9eNJdqMCEXGK/4m267Ln9QfGIRgQQEQIABgUCOrIYegAK CRAwsbGPZ4yL3Zh/AKClN3cei8gFogDQH61mdjagTzuGBwCcDCt4N+tz+Vwb6zlF vrUUqSdTMe6IRgQQEQIABgUCOrWzFAAKCRCykdjYZOuTLtrtAKCXRt59ypkFvQQc f1HY29CrzPvh9QCgmpBh23D7Tb11yoM3i0/g37vIQ4CIRgQQEQIABgUCO3lDNgAK CRDXYxq7nko3rv1CAKCLUGNAVyZsp5TXrCuse0/yF96vSwCbBl4Tm2/MZj/phNKC UwjGw2eTN4OIRgQQEQIABgUCPBdmcQAKCRBJ9Xw5GLJJGyr3AKCZx1BGvYveU2GT TaZ8X32klZsx9QCgzO/N422XbR5PIpnxt0FXKqSMFxiIRgQQEQIABgUCPEnw/wAK CRBUdQxFFW0hZNZjAJ4tMdQoxwZQj3il91ndSrGUD5cWUgCePQueyaYG8JCruXDX KTB5f1YZN3G0IEplc3BlciBTa3JpdmVyIDxqZXNwZXJAd2hlZWwuZGs+iFcEExEC ABcFAjqpKJgFCwcKAwQDFQMCAxYCAQIXgAAKCRAiq/Ds+VYcMazBAKCMqcWbk7gC hYm53EL6HVDoxaeDOQCfa6bEjXrcxW/EST0FlCMcs2LKoXSInAQQAQEABgUCOqlF vwAKCRAff6kIA1j8vQA+A/4+e1LpjSu8NFfeky2GG2Mjk1xqzb1nzVDQlKmaPXY3 dLtqw5tVHA1FLNaSFXDg05NowqQj6OIfavs26orerWyRrD3OJZQBBde5gf/IZBVO bk4WzE0hZmHQvchrWR/gDiHJRYnSw+4Sx5MnKBlgccZbIPxabHudUnx12iuNtTl6 O4hGBBARAgAGBQI6qgSmAAoJEEeD1/Vd0fuMdi0AoJdRZoDG9YwxVyp3wb+e/e0r UPwdAJ9fFipa2TGSkCjO61unpDtawmJCLYhGBBARAgAGBQI6qq0MAAoJEDlKofbe SUBW+xcAoKmJ3XWnXwJyFMD8CZfNABbBeYNvAJ47O8mk5vhbl7rl9LneJMNEMama v4hGBBARAgAGBQI6rMvsAAoJEAp1sXSozHtSFmUAnAqhsMdq6Ihz1LQwrNuKXS0n eaO0AJ0dIWyChTlqADHbW7Kfq4OZw7yyfIhGBBARAgAGBQI6tbRMAAoJELKR2Nhk 65Mu8CEAoOhXx5OkCJtIOBUbobpphx3QxZQFAJ9BZ7bxk3VdhpQUrEdlZp9vP3S/ xIhGBBARAgAGBQI7eUM4AAoJENdjGrueSjeuDXEAni1RAvL4LqDhx2GT4QLH36Zg VoGZAJ4qq2IR+g4plSyfFC+DxfXgi/ASQohGBBARAgAGBQI8SfECAAoJEFR1DEUV bSFkYvgAoLXHkVuyK7iXyhYrSTMeSZeYp8tNAKCloJ4rZB/E51xD49UAH1P5PV7v orQjSmVzcGVyIFNrcml2ZXIgPGplc3BlckBGcmVlQlNELm9yZz6IVwQTEQIAFwUC OqkorQULBwoDBAMVAwIDFgIBAheAAAoJECKr8Oz5VhwxEjUAn1QJFvqeDJ8gU8rt gz3CmnjlsAAmAJ9BqfYvV5zxGvgkOKRyMu6i2Qa5m4icBBABAQAGBQI6qUWXAAoJ EB9/qQgDWPy9FkYEAKwpmiuxudlg5EK/ZJ4ClDDdL+Nr9TXY0sKLSwJdDWpgqBAj jovInON6rEeqa7CSvSlDozqzf97IdKRjBQFkogPbVSfvgamz0zJZtWkfE7Hvw52X 8U7PyWthoTwECIvzYKH35+NiecJQqXf+AfGRLF0pCSBLSXR2zi3Bqee3nZ3BiEYE EBECAAYFAjqqBKYACgkQR4PX9V3R+4wBdgCfdPlMBWMvvNAcseruEfvAoRpkVGwA oOGKx9zFdxeJMh1g+y7S5/9fRbf3iEYEEBECAAYFAjqqrRAACgkQOUqh9t5JQFbO owCfXo3a9iJoed3J1BlGTxmGmUJj9coAnif3VT+yBgedsiHlhQSgtGzA3JnAiEYE EBECAAYFAjqsy+wACgkQCnWxdKjMe1JWqQCeOyD7vywbVSEtL50PIpKC/OLOpWsA njBP5yLKAJESHopfPxDbn2FKBN/2iEYEEBECAAYFAjq1tF4ACgkQspHY2GTrky4n kACgpwg68nagqKErqB9OZD8yqrUqn/YAoI3YNI2VWY518f8pW2G06+a5nmtfiEYE EBECAAYFAjt5QzgACgkQ12Mau55KN64LuwCfU7FdiOvvFKloFqFNKnypvZrh5H4A n2giMNGYRQ5DYUPPcmmi5I9vx/JhiEYEEBECAAYFAjxJ8QIACgkQVHUMRRVtIWTJ ZwCg8nPl82ZIFs4+2Opuoeg1AobzO9cAn2EbkcY5WfaCFO/cpflXpEgX6V5quQEN BDqpHqoQBAD69+DjZ00uDr48npfWtrVxuDmZb2jzS3Tdt0p6V2gVuengjobHNb1T 6o4BIjPu/yQ8qDlDOb+OF63wfowMCIU+qNBBtmoSDKmQu0M9hREHA9PeHjIsN2dk wpIAnM7kXHAE0T00QlBCLzjvef/xooKGdcaA4Zse+wLMixgwJbto0wADBQP9Hlh+ SI7YcYZV+nOhNnPdBG98UHNhDiheklrZ5BQMLzPEn+qHkaZTeX0SrEbPmm4D7nRk UGTh1H2CIL/YaffqVYVKw/8HTIJeXZMgJwdq+j3S5P/Vnc/g83uZpuzdW8PNp6A2 u1JHPq9M1haoszxtTirQXxo4Ht4/DWaY1DtDkZWIRgQYEQIABgUCOqkeqgAKCRAi q/Ds+VYcMQbsAJ9J+QGEzdNcvYY0lAXZAnLBnW7lDwCeNJmcu4gVYPvBDLe2Xu7Q Crfzumk= =Ru0+ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/BCD241CB 2002-04-07 Ville Skyttä <[email protected]> Key fingerprint = 4E0D EBAB 3106 F1FA 3FA9 B875 D98C D635 BCD2 41CB uid Ville Skyttä <[email protected]> uid Ville Skyttä <[email protected]> sub 2048g/9426F4D1 2002-04-07
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.7 (GNU/Linux) mQGiBDywu5YRBACKxY/5WzdUtpL2aK2Yy/Yde2spYiEP2vKj3bs+ovV7a9129lki ldCu8PhoJO+x+96+AwbrR/T5FlXyQrInMa9U5os/8/HQjTXtY/oeq+UNDNFZrnMR Gu0zYICbzgd1rW/tnZJBkB3X2Ao6k0hSATGmP5/sowT7EBSdaM7ZhhqOywCg5A5n J7+062MfzdS/3KoSn+Utex8D/2BN/BMLvrItQBUjy0tn8Vsomx+FHbFKOm1cuOeq smhsOmsANwIafiZnK4+SnQlVbXJLM6exNTqSimH93y7Q9BX7hmWYl0XVpUui0mBR UrVG00PEa0jTLasOkvlyYBS1En4gZ5J2ArE2cYFPkv7jndqJ/pAAZkG+tQnXJ8l5 g0SLA/4tJHLJ6kPad98V3cVbTfhY2Dn/i+QbHvzBbBj+bETLEUdqOKzADGrWoJeE fADfxYi24wHkpH3U781p4SldZpOUvkyYj7YmjqZP0AH6SsKI3i52z1BDQF49gRcD uc0sSmv57yvjKCk1Cehen4/qaVcqXWTZ5NfyGb+hbHLtA2FxSrQjVmlsbGUgU2t5 dHTDpCA8dmlsbGUuc2t5dHRhQGlraS5maT6IWgQTEQIAGgULBwoDBAMVAwIDFgIB AheAAhkBBQI8sLuXAAoJENmM1jW80kHL8KkAn1yTiwsMLq9GsqA44hkh1Sk0etM/ AJ9BiDSqgX0S/wzyXAqfYcsmxS96qbQnVmlsbGUgU2t5dHTDpCA8dmlsbGUuc2t5 dHRhQHhlbWFjcy5vcmc+iFcEExECABcFAj0dWzwFCwcKAwQDFQMCAxYCAQIXgAAK CRDZjNY1vNJBywFtAJ9NCVHRa6GxtfTxae+6ZkTh08xQZQCfcGNMwhcSGJUyjKI2 eYucgrkwp2C0IFZpbGxlIFNreXR0w6QgPHNjb3BARnJlZUJTRC5vcmc+iFwEExEC ABwFAj0di4oCGwMECwcDAgMVAgMDFgIBAh4BAheAAAoJENmM1jW80kHLzoYAoLqR 3unds+O73Z3EppJna4gECkQ0AJ0Uye7ZXLMTJo7pNmZSBSz6bA/qFLkCDQQ8sLvS EAgAinenfe1g5Cdp8bf72+idBePq0zHyPUOpCuFGkiKXecXpgQUHCVYM8IiafB1M Or9V97vy1H56sr+HaBsC75mpuPC7lnltoY+zq0zIkNbi20+p/546W7A5MV66xtTx D6uUSyZ3jksAaVch+6yQNNxr3CDWiNSjomkK1ExPsjaPAA82L4yExAJJGwUYAPOS B1Gw6N3dUtoNuQwJdcw8fjsaRektXsHm6Nnm++3gB0YJ4/x3gcvxlNlONHNp5vdW msQAJtWj4isSMfqi6Y4SQsw2MWOKrYr8Lt++m4cQC6/VZXafTR/TrDZCqYhwovyX vgLMdKfxTZLqsyZwgWDxFKOEewADBQf8CCEh65lRfWQG3MopboOs2fFp3BsfVMvA stV5AYktLHvwGXTW0rx7sCdb3kBtKjiuNFob3gis2Nd05NUxFrzrZsyaktyDiZmT gjmEL1LvodDg/mXLRQgl3QDzUL1nlfFQRkcKqlDfCYezbgYFxCy4EGsC86cf8s8F ZI0hyXXY+zir+xJ/w4KBtL+cY5LJExh0FyPfNnL+tXUthRuN9wxZwVyQ9I4RTlkv ybb8VTWEgzkIf5BiDZalvcOJNAujptlgz2cLnV4Kzu55Xy7jOi5YfYjMbSDa6W5c vO/wbcAG3gwZOoeHBRjwTNkn4iBkDPq71o1LDDxHvWUVAO+jU3TrZYhGBBgRAgAG BQI8sLvSAAoJENmM1jW80kHL1RMAoNsmDIuxlUf3YwjAr/fSqBOKWgN0AKDc0CBV uZAqlAL0tDv8Fiz3HvICMQ== =mEvy -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/AE7B5418 2005-12-12 Key fingerprint = DE70 C24B 55A0 4A06 68A1 D425 3C59 9A9B AE7B 5418 uid Andrey Slusar <[email protected]> uid Andrey Slusar <[email protected]> uid Andrey Slusar <[email protected]> sub 2048g/7D0EB77D 2005-12-12
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<[email protected]>
pub 1024D/C942BF09 2008-10-24 Key fingerprint = 54BB 157B 8DB2 9E46 4A3C 69AB 6A9A 3C3F C942 BF09 uid Florian Smeets <[email protected]> uid Florian Smeets <[email protected]> uid Florian Smeets <[email protected]> sub 2048g/4AAF040E 2008-10-24
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEkBvUMRBADvY21WeriAMR1JjTxq3UGnj/gJL1WLXxym4OkZqIOmwcMdL4Rg BWzbp5n0eTiY4+p463NC0rRWSoJYnuncUD9uJNW8Hsne/MZ//eUC0TVQOmQeX4vy vdeCj2H/Q+oAa/AFqbBAA2bcvqWuwiQ6vg3aSWHXzYtrVPoWFqc0myW2mwCg5j+l GKb8J4zs3RX6koAzT++JrcED/RxUcUp9Hh0/J53qwq/OrhdG8R+TVUSqA8Zdc8Gj YTqmr58Rrlb5C6EpiWL716B7+iS2sxU0pDlrOhK2xzCnBhaViNjrrEMCiYPm1OyM QJAwAlV8aulWKK5bullZ/IoOwfN0Y/3xqcyb8pvNNk6FGueb+c4CCRZA069Arrxd ix2IBAC7QAMM8TKpZjuMtRdP+InmJhIkq4YRDXcdIzQopTSuaQlAZ55SX1YPHcn+ kYQDZhsJr1mQYcpxNSV/+GJmnMNcaLMOdtM6IwyV6B75k+FRr2TDDAHmLXl9+SvI QXCqy47IFLWrAtByq6bmnngMqDz+YQJF+yZIoRvLRtBf21g80bQeRmxvcmlhbiBT bWVldHMgPGZsb0BzbWVldHMuaW0+iGMEExECACMCGwMGCwkIBwMCBBUCCAMEFgID AQIeAQIXgAIZAQUCTOudOgAKCRBqmjw/yUK/CR7LAJ4+IhYW52GMrD3HFP6aMcbi a6i49wCgkDLQgMjlhmrxqZBcrNSGzKHXmhi0IEZsb3JpYW4gU21lZXRzIDxmbG9A a2FzaW1pci5jb20+iGAEExECACACGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAUC TOudOgAKCRBqmjw/yUK/CRckAKCuViBlM0f2r8KK+KLl8pyfVBXJ3QCbBifsn5Tm NFB5i5+GQqr6rbl1yZ+0IEZsb3JpYW4gU21lZXRzIDxmbG9ARnJlZUJTRC5vcmc+ iGIEExECACIFAkz1m1sCGwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEGqa PD/JQr8JCcMAoNtjrCmNfjb1ZjLZ8uZwN7R31DpNAJ9q3fORQoIZcYmBl6b1X1Xd v6+VYbkCDARJAb1DEAgAvVokUAGgNoLIb5atFee/teRvn8+WDIOwWHNMZ/F3w9fO 1kPovV97Ux0n8mt6O0Z5bERo7rnK5vAqbd9xvW8HXjSdJxvYT23FyrwPyEKnvXvA 92/yuZ+y7L+xxoHn4RqtFGg1d8iM3C5yGS3o1P54RRAbZ+8oc1p08k1kYosI2a06 gIKKbvxVZH3ePv1Xl1b25gQKhj14GHm87xq3qclFtiDdP2fZIX5+H2uLwqJGhcPY ab3sl8DVLlSr/r4fUzPhSI6vk6MsuVCPUqqwTBybbIFrGMQxmJQjr8UCb/455gZw 8eRDAxAgPttnk8Iqql/VTxEY3MzlQLGquCC0CpreBwADBQf41qghbeUBIng/1/NT 6BJkk8irsNCfNeHHCPjkeaR+Dz/3lQb7tJyQ8TVD3i51rDhqaThONi3NqIrs9tLg zJOWBvooOzoQ5sGAi/ZtwmIFpRwX2vIm359ZXw2Z8C8HdFshDKcQ2k8cV4z7mbOg HVQHPIzXaySglp1m0KHkB9F2ph60l/QNYojXyNI2q+T/vBJMnf9OnF18lPOui2Sp peb0CFQ01KSUMXR+oK4p1JKjq52ua4eAo1gk0U931rBr9kZfN1mhcUvD3eSVUwZS wKmgZuZLu38IACQGrSBcgHDcBlc5eHTFuoKUn1cEJWi6J4wG6xFsrsYguyN0HF7m CVi1iEkEGBECAAkCGwwFAkz1UBQACgkQapo8P8lCvwmVNgCfcS6lzlVs9R2ut11P Qpic1Iujn8EAnjI/dpcnSOomuzyI7ZC3xvZLCtch =Bnxg -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/1949DC80 2003-08-25 Key fingerprint = 872C E14A 2F03 A3E8 D882 026E 5DE4 D7FE 1949 DC80 uid Gleb Smirnoff <[email protected]> uid Gleb Smirnoff <[email protected]> uid Gleb Smirnoff <[email protected]> uid Gleb Smirnoff <[email protected]> uid Gleb Smirnoff <[email protected]> uid Gleb Smirnoff <[email protected]> sub 1024g/A05118BD 2003-08-25
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD9J8QsRBACUyUv4bahsxZl2FID6EMQWhx0jTm3USIrxLV/Gc2z6k2gpFPtO V6qVzHSVV8uaIRGf+7Yh+uJINWeMJpmljvB2bjr4kSJcIKPA9O6QwlCS2eCEKLRw pLz5T7NAE3+unm+jI+cTEF6E+oBJX1AoRDdxxfbrwKwHDs4GVnvw59sWCwCg5gc0 QfYCexqGbOx7s+xjcXRxitMD/1ueSCsb2RLvV9hZzwsFOV3p6lahZPyC/TZaL+5D 5xwQnEvU7VXFhgd+G/XcQ7RwNLYkNVK4yhSoKK1WT36zs16/1elfqXWmslJpquIE OL5AEeVapZMrY6Q6/W8YzsydZGvt+t4vQmswlHurUW5kt1KrCNw0HcalN49Z89bC DMLOA/9JNuDx7FwK9IotF+HStr10OQP8pFuQWdFJp1x1+Pj6EzZgP73997uyQKx9 mVHCWmKRR6vbhGvczoPbZtJH15XBmxhkKL8lXUSTkmCM5uOj++lSIGExIyfF4WY/ pq5u2zx+n5iDUPwGEQ7pYKg1imEUztdlbtQL/JHFaRNE2uZETrQjR2xlYiBTbWly bm9mZiA8Z2xlYml1c0BGcmVlQlNELm9yZz6IYQQTEQIAIQIbAwYLCQgHAwIDFQID AxYCAQIeAQIXgAUCQ6PhZwIZAQAKCRBd5Nf+GUncgGV9AJ0X9u5RVsjPEDqcbPW1 v9m6L8Q1awCeN9KlEFA98q410EuJ4p+jMagRF06IRgQQEQIABgUCQ6NFQAAKCRDs 8OkLLBcgg0NtAJ9C9g0IiwqcovPX8OxitOfNBKr0/ACeK5tVzTjtD7CPT2Te5Lyf PRrrI76IRgQQEQIABgUCQ6O9hgAKCRCvItzveM4QX6Y5AJ4kuc0XU3IVheKTg4xW 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<[email protected]>
pub 1024D/29AEA7F6 2003-12-02 Ken Smith <[email protected]> Key fingerprint = 4AB7 D302 0753 8215 31E7 F1AD FC6D 7855 29AE A7F6 uid Ken Smith <[email protected]> sub 1024g/0D509C6C 2003-12-02
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD/MDZIRBACfyWbQW/cZnu504r57DAQbCbTYNG7V/TgfZwphIPyC8YnLtmJv vLdtl7+ToiG7UJUJsBE9OJdb1qA7JP5+jha/TlzIAUMW8doWNyI52nM1zHzBAZVE aB4Gxy7pib9yBsrGYiLbuV5YfB7TUyea31OXpZ4jPl1E6RxlYdVuzEhq0wCgnOeC SuO0cJZMXisY7DhoF1Q8ucEEAIALzShJ6bbjABbcvMWmoRwXvIcBsAcjKSdRcIp0 AP+9i3PSZkNXV7rfYM3+SydTa3sJIVBbdXChQakcZqu9+rmfL53rErErYuRwKqhX mkp4+3GO7cKm0Oya1xLF9es/OfkKcQ9LxkEytNEnU7xlUNoP8fkCMJcBIwagzPfY 7UAzBACEwGP/o1e0R36jOAjrUZsxe63Zopz5138bYdZtmsqwI+QHK6+/tS5I7FCL EQZL6fEjR7gF1lcj3gC2nypjO1aqodx0hShlNnz9d3uJ0q8EChjJuc30UhjgTcbb ZQv3hssKHkvTJ5ch0x+ohYCfH+Gcd8jbXCZvvS8PcI66DRaz3rQgS2VuIFNtaXRo IDxrZW5zbWl0aEBmcmVlYnNkLm9yZz6IXgQTEQIAHgUCP8wW5gIbAwYLCQgHAwID FQIDAxYCAQIeAQIXgAAKCRD8bXhVKa6n9nfpAJ9MHcwNehlbFRJn8B9tlLBE2JvU aQCeLuore1PhiLZPjHriz0/npGn9xDuIRgQTEQIABgUCQLQblAAKCRDYyjFxW6BS wyFIAJkBI9/2PBvvTvB0FZUF2yd3JEQJMgCgpWVGTdChec2z/YGMQ/EeTgNDThy0 JEtlbiBTbWl0aCA8a2Vuc21pdGhAY3NlLmJ1ZmZhbG8uZWR1PohhBBMRAgAhAhsD BgsJCAcDAgMVAgMDFgIBAh4BAheABQI/zB/pAhkBAAoJEPxteFUprqf2oVkAnj0Y vcFOkVU9JWyJJKieWL/+OuNSAJkBvi/uFt2RgkNgUOvHR61SxZrGeYhGBBMRAgAG BQJAtBtxAAoJENjKMXFboFLDvxkAn21uVgtvwLN82vOpKTvBzwAUVK/gAKCKEQDk vfyMyQZayoFeC8cMagaUCbkBDQQ/zA2UEAQAqYnqd58qHyrKfsw3SrTE74/4qneU ra7FY74jcUhGhrxOElG5hXrHHEHo+0M+0zFwhqedecj2GZbrzGEl5SxVsme3slAf Gt5OaAk/ojOY5d5rTezG5v7jSr4EX0JKDkdlve8RozHsutXznsXmUY/BfO1qACek herQeczznycJPZ8AAwUD/1MF+jo626W+4/gMgjgCQ+saOiNI6AnGlS879MUjV0Ef j6aPfAJ5Xi7zNqkM+HdNBxjPtyxIK8RqmdAjHDMR8FjlZjf+svwuL2CfXk4jCk02 OXD4dxJK74w/ZTK2kSW1VW63+5K1lgsRmZvnTpGZ4ijxj4H0r2bJFQ7iUd2kNxpO iEkEGBECAAkFAj/MDZQCGwwACgkQ/G14VSmup/YeOgCfcaCQpDfKaEvYiw7XJryW b4OXclEAnArceW10G489Csi2QR94q7clHU0G =gLKU -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/2CEF442C 2001-07-11 Ben Smithurst <[email protected]> Key fingerprint = 355D 0FFF B83A 90A9 D648 E409 6CFC C9FB 2CEF 442C uid Ben Smithurst <[email protected]> uid Ben Smithurst <[email protected]> uid Ben Smithurst <[email protected]> uid Ben Smithurst <[email protected]> uid Ben Smithurst <[email protected]> sub 1024g/347071FF 2001-07-11
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDtMtwMRBADrWbrHZdss5Nlj/VpLW92lUpmYdmw5l2wYRtTTeHXrfvUk++pX dJ0l1bSC829hokrlQiJZJdiPqu0fGnhxXoeA5QMvrtjMAG8E+MRSLIUaay08SLeJ NhQR/ymiLFmh5ZyzXyG+qhZj7/xw3ynHLQ/KHPhRJpAs9ef0x0rgMZxJQwCg00Y2 8eIQKg3mikkLllnK7OHgMYED/jEhj6G2BLjKc/QliKn7KZZ2Ev4MMKUj36LPgzqH VTEhliqbRylW/nCFWhMyxbqzRjR0t6ng3PJYlSltcwwJheySHRogxV/gUvYMwQau WKkyFZfiO8/OBZkbuQotLI+4tU2cQFzBTuFIogh3Eg6PRDKUFx6g1AlbloFgmimX mdHABADTVFYFKHY9YuUTfpD0S0uLFQrtj3xyZGfA4tjXtc1xCgSmkxIVUoTzg09u EtcEvo8FzmmH5JQQV7cM8TTZutSFcHuCftwbhoMH562YkbuY160TCDHB9xc7hzk3 uzij7HKskm0b6QmMCI6LAYHhAuTk1IKY03DwLBIgEX8g68wyBbQjQmVuIFNtaXRo dXJzdCA8YmVuQHZpbm9zeXN0ZW1zLmNvbT6IVwQTEQIAFwUCO0y3AwULBwoDBAMV AwIDFgIBAheAAAoJEGz8yfss70Qsc6oAn2Kxzsk/d1GDM4VssT3U3jaHDX5FAJ9l jFv088oFIgnhUiBOmoPEcwnozrQhQmVuIFNtaXRodXJzdCA8YmVuQHNtaXRodXJz dC5vcmc+iFcEExECABcFAjtMvDsFCwcKAwQDFQMCAxYCAQIXgAAKCRBs/Mn7LO9E LEV6AKClm5AuE0PobuyUVri0ZPT4Qzn/SwCfUO4Q/dz2kXJfcoi+svIdboVWsz60 H0JlbiBTbWl0aHVyc3QgPGJlbkBGcmVlQlNELm9yZz6IVwQTEQIAFwUCO0y8XgUL BwoDBAMVAwIDFgIBAheAAAoJEGz8yfss70QsqkIAn3CdGD3kdBP8cNCWB/mmdlJJ 2Ba5AJsGjmI0R+adewxQuNIGxPuwfuhqSrQnQmVuIFNtaXRodXJzdCA8Y3N4YmNz QGNvbXAubGVlZHMuYWMudWs+iFcEExECABcFAjtMv/4FCwcKAwQDFQMCAxYCAQIX gAAKCRBs/Mn7LO9ELCM3AJsF3zHJhMdP7zGhP1Sbwh0vOA8WYQCgxONfpOQhAWu/ WwnZZnwNjUcnbh+0KEJlbiBTbWl0aHVyc3QgPGJlbkBzY2llbnRpYS5kZW1vbi5j by51az6IVwQTEQIAFwUCO0zAYQULBwoDBAMVAwIDFgIBAheAAAoJEGz8yfss70Qs txUAoKltbmA6D+5e4f43LWOOqfv6P/jOAJ0eUczvTczRuBzg+7fs0MsrtYtteLQd QmVuIFNtaXRodXJzdCA8YmVuQExTUmZtLmNvbT6IVwQTEQIAFwUCO0zAkgULBwoD BAMVAwIDFgIBAheAAAoJEGz8yfss70Qs57MAoK3vUyOUBVsEoHitX5eXJDos2JnX AKC4pG7X9x0EziSKSi/SFmRRNhx267kBDQQ7TLcHEAQAoByKPA5d5RrBOmmVb6cA 5T0sQvYBsgHpn5INcPr4/B3pAXROzu+SveIh1yg6f5poE4LhxQ0Yva0sCPVI3WPU YDpOSu4l0BikO26sQ1WdGYpRiTxuFaqzKLapIiDOz1lpY4o5yChEKtJw6t94Hckr Ss6dPH9uE4hoaWxdbvquTrMAAwUD/RrkuvBBqAjN7flRrnNuQA04j8Oc5/znRiHQ Ojq8i0w7t1qrT5zCNbd1S4Avo8hc5+G6ap9nv5KA3G9TKsgBQjcCB038k/k0pzRg JZhIOVBXpbPb8ZahMk7Tdm7nGgILJzfW0cg2AwToKpEcxEVrhdtTjc11/J4q+wBO 07lDXfYgiEYEGBECAAYFAjtMtwcACgkQbPzJ+yzvRCzdZwCZAXcRSox3VdhHpoJV FlnCmFbg4FAAmgPfaRZc9BE1SF825LsiKDAvUzs+ =D508 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/64EBE220 2006-11-11 [expires: 2012-12-31] Key fingerprint = 3A1C 8E68 952C 3305 6984 6486 30D4 3A6E 64EB E220 uid Dag-Erling Smørgrav <[email protected]> uid Dag-Erling Smørgrav <[email protected]> uid Dag-Erling Smørgrav <[email protected]> uid [jpeg image of size 3315] sub 2048g/920C3313 2006-11-11 [expires: 2012-12-31]
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<[email protected]>
pub 1024D/888205AF 2001-11-21 Maxim Sobolev <[email protected]> Key fingerprint = 85C9 DCB0 6828 087C C977 3034 A0DB B9B7 8882 05AF uid Maxim Sobolev <[email protected]> uid Maxim Sobolev <[email protected]> uid Maxim Sobolev <[email protected]> pub 1024D/468EE6D8 2003-03-21 Maxim Sobolev <[email protected]> Key fingerprint = 711B D315 3360 A58F 9A0E 89DB 6D40 2558 468E E6D8 uid Maxim Sobolev <[email protected]> uid Maxim Sobolev <[email protected]> uid Maxim Sobolev <[email protected]> pub 1024D/6BEC980A 2004-02-13 Maxim Sobolev <[email protected]> Key fingerprint = 09D5 47B4 8D23 626F B643 76EB DFEE 3794 6BEC 980A uid Maxim Sobolev <[email protected]> uid Maksym Sobolyev (It's how they call me in official documents. Pretty lame...) <[email protected]> uid Maksym Sobolyev (It's how they call me in official documents. Pretty lame...) <[email protected]> sub 2048g/16D049AB 2004-02-13 [expires: 2005-02-12]
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<[email protected]>
pub 1024R/666A7421 1997-04-30 Brian Somers <[email protected]> Key fingerprint = 2D 91 BD C2 94 2C 46 8F 8F 09 C4 FC AD 12 3B 21 uid Brian Somers <[email protected]> uid Brian Somers <[email protected]> uid Brian Somers <[email protected]> uid Brian Somers <[email protected]> uid Brian Somers <[email protected]>
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<[email protected]>
pub 1024D/CE8319F3 2008-07-08 Key fingerprint = 64C7 8D92 C1DF B940 1171 5ED3 186A 758A CE83 19F3 uid Stacey Son <[email protected]> uid Stacey Son <[email protected]> uid Stacey Son <[email protected]> uid Stacey Son <[email protected]> uid Stacey Son <[email protected]> sub 2048g/0F724E52 2008-07-08
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEhzbmMRBADtX9HSSMMgEPkwKw0xpJHuBOudjSkMwJRm3CfUZrWpgBhybof0 wGTZZRk1wdaMZL+4MoZoxG1OObzeLitFt7GAZMNb+8hhGMc91rF/Ayyg9e51rnRE DetvoKwMHo12Qj003HSiyhjrWQQRmsUCQeRmVWzPmXZLI4JJgXryrl0pqwCg9cn+ lMFo9RgnmBGM6+pKXnLYQWED/35bjcbiL3zBXczPz4ERjVn+7N0w5x6aSR1luvq3 7RzkzZ14tbbNetniPJwitL/PCrZIeA4K0/qiE+YendJfihOJ+NtFlpELBv/FmHHZ NlAnyT6CzvtLZm5JccSuNO7Jslg82mzPfSwxZOzwwilF/WEpJ1cw7HDXvpSfWu7Q CMlVA/4irRd9oq187iFDgDodFzKEvoZYvmn9evcNhXUkoOADMoph2NUgy3x6WUUG syeXSTZFTGjRVTpOaHHGyaO1WC2cbAUqDowhURBgQMWyRTzBQ0MJ12ZmaLpwt79r SqCQgtMV/nhbPJ33oFoB+K4gL8bNB3ts5OOFI3K34XA8x24OxbQbU3RhY2V5IFNv biA8c3RhY2V5QHNvbi5vcmc+iGAEExECACAFAkhzbmMCGwMGCwkIBwMCBBUCCAME FgIDAQIeAQIXgAAKCRAYanWKzoMZ8/sRAKDBQ5RTKLb5A7ZYLOdWtExokCppnQCb Bc5ODSrb1mHH7zyAWd1EMN9vO1a0GVN0YWNleSBTb24gPHNzb25AYnl1Lm5ldD6I YAQTEQIAIAUCSHNu2wIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEBhqdYrO gxnzK2sAn0o03XkCjtXNFfyc39//6SDtT/jhAJ9mtqaGZSlyc96GmkevNo6XZ8Ft bLQcU3RhY2V5IFNvbiA8c3NvbkBzZWN1cmUubmV0PohgBBMRAgAgBQJIc28YAhsD BgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQGGp1is6DGfMKAgCgyqafXmVhbY3o refBOqWKwQSuIRcAoN9jKw1ATmoDYxJT4l9CkvML+EPntCBTdGFjZXkgU29uIDxz c29uQGRldi1yYW5kb20uY29tPohgBBMRAgAgBQJIc29CAhsDBgsJCAcDAgQVAggD BBYCAwECHgECF4AACgkQGGp1is6DGfO2LwCg3bPn+JtwFDh/BLifAQ/73N7N/4YA oL+f1VMA8fiO/C7w3ccGttIB8cXNtB1TdGFjZXkgU29uIDxzc29uQEZyZWVCU0Qu b3JnPohgBBMRAgAgBQJIc29iAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQ GGp1is6DGfPuewCgtH+NgftuvDOsUoL+Aa9oVWnHCSAAoIFUzeQYjAgXUeLZeX+5 AO4UNMAyuQINBEhzbmMQCACDtZg1SKY/SydXiG+9BhIgZ9A3Kr2+AbcYWHqhr82U 4+hjTSrOuvfqGsiI+CXBKeZqCsyntT8bG+NFfPIqP9mIy/6qQjftcPIP9q3Ib5is yJ/vO8mQrN1StiLzwqCfHhlUOKv4K3AZGeSF/WxLve0hPLnMI+D0BlP5kf6u8sjS QLW0Mtwjvkq4quOGcEiAN/r75xmPketPwME8JdzecSAWkixM4rkkm/weLRe32bjK 564Sm0JDuRWgCyUSQjyEXjAzgrIjstxPvZleilucbBBy8ngbLu4rei3erbhGOtdZ Z3RWbB1WaVopWcmBLpQ+qcG1XuK+FkD0otHTEl+lT4rrAAMGB/0QA6PGZI31Vzce 6k08p27J+vHdr0rK3O5KCJCQ05OUzhg3Vp/9HeOvQqJYK+C1f8EmNwfuJpL04tV0 gBmX7DJU6SYhT+iyVRruauHttsh3Us9q6JaeDKO6lvzPhZeLYbi5cpWu40maiOH3 dkhpnYSb/V/gipfu9k8PCZX6WJmzDcF34kF1e/hcRzPeYVjACILf9qn4QkJf1SJm IHJqN96/YjzQsO/SRB9q46RFagz2CMknchh2n9X51J/a/fEVHKR0Anv7Orxia+Jw i88yO43uKOTpaNEumFrhKHoJoEA5LqHGGzHRQJOoxN6h4ydq7AkPSVBZwqoIDTaB RiKVn6R6iEkEGBECAAkFAkhzbmMCGwwACgkQGGp1is6DGfNzzQCgtC62/2mZeZs3 7LcMsO/q+4VdAk4An12bm3nDCYxciQr72p+ASCei0tkD =uagC -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C744F18B 2002-02-13 Nicholas Souchu <[email protected]> Key fingerprint = 992A 144F AC0F 40BA 55AE DE6D 752D 0A6C C744 F18B sub 1024g/90BD3231 2002-02-13
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: Pour information voir http://www.gnupg.org mQGiBDxq4ZARBACJSN3t0e7d8A7LNfvsKsNNfMWbANu/f3vEhDEj4D4X2QLKyk8t Ti5/wO2Z7HJiT5QfI3zeRWetvHMWXhAYc24GrTUMdCt2zhUjufi5BdysmcbLiZFt 9wjJpJITW4A6W7YP55ORkZs6ye/j4Luf7YN4xISWvM9/kzpUtU8R6txC3wCgq28H 0tdFPUDvyAwr+97vHs97z/UEAIFPSIAsrH00DuudiLpqZB0LE+BcDsSKgxBQsZJT 06EQQaE9XMN4f46nAtxzFhSbGZL4qIBUO3Ny1Pp0rqjCfumuwONLXZSK829LaaJn WfZ5ux9ZjvfYJ86NgUV2tFnwZm2UYQXc4234FfzfebeiSmYI27BMvLJ28xXU+pNw vUvhA/9uPu+i3Dk+ha+0UaBTp/HNTAveoTKH6lNOS12XhCNNPQUL0gonJTeWThRO z4YttxgLa5I/MoNsub0+GtNrlyhLyHKzjBBHEqJHJp7+zkyfCODnJaxUqoKskUSD QF5VX6v6vEQl5UBjGwonHmzsrnuqTb9pyYhfPTch9n22eS6ZqrQkTmljaG9sYXMg U291Y2h1IDxuc291Y2hAZnJlZWJzZC5vcmc+iFcEExECABcFAjxq4ZAFCwcKAwQD FQMCAxYCAQIXgAAKCRB1LQpsx0Txi0J7AJ9q3/ulyXnWjGWlR0L+3QtfPKI5EgCf WTLlr+SXYF+nrW4VvQcJvuyzZyG5AQ0EPGrhlBAEAKQjsjIRO+kHT+9qCYsw6HPi BYzH++xP0i5143trUJ66FoEfqOl4UqHwNJ7GEXq9MWgzBH9wDL69Bb4kSKQ9vKwD EgAnXObS3FOUPLK5AMXc5jy8rRaUru58+cGs1cNIg69zgQ3FQyWF0FHI7kGsAdz9 8iUZhXL22I7+EVBgd9DLAAMGA/9oK+Xjo7xdLZvkW8b4nNIA7Xyml2uMLYjg/OVg qRkVU5f7KM2oHna7+VtvdJrIl9bTVc6mrTl6GY1/0GYb1edgSu2Axg+msj3fVkGd 8hWuNQ/T5v45kgPcoJxWLzaWWkDeLQAf5tq/QVmN8hofl6UsrsNDvYTBbl7129uo 3BJbG4hGBBgRAgAGBQI8auGUAAoJEHUtCmzHRPGLta8An39UVQwz3OgsZQ5e8upC VEBCvTUmAJ9/8mbmXF+Ii/JdY6STmU1MMfmQvQ== =A6my -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/2EA50469 2004-07-24 Suleiman Souhlal <[email protected]> Key fingerprint = DACF 89DB 54C7 DA1D 37AF 9A94 EB55 E272 2EA5 0469 sub 2048g/0CDCC535 2004-07-24
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEECPOARBACeiKSpedo952tApwSI+rrDIrp5LOC5FG1crAiTpAqy6aP+n60z c2euoVDGjH/ncUZ+TxUK/MkzSOFXTjU0TETFgq2UMxSzZCLwPrmQibfHbmnF08+g 0EjlslsszccPgTEZz6F85aZGYWjU4dhQ1VYP+y5Im88CgahggCB6J+8hHwCggMu3 f51egcdCrodzFvL8poUYKi8D/i644gOjVN/YamHS5QUGNPJ9xkcq5G4OfK+Ubjq8 6T1dd7UkJ22sePpKGtRhPNATeEar/HwzLB7r2h+UAD4Yrl6+//EwWB73BgxyCqcB X57s57K3+UMblbLR3NWJAD/HpxIBFxXfj55VPk6aH6GX5LzayMxfZVYccMyWOcsK UZaNA/0aJkearTpmitBL49fOhz8Je/QIF6riigkdOuyx62yAtYRNrVbDrQvvornR Z1CLUp+mixUc3bT+emLFpz2ZXmGqCr9BMAqENh0gayGeekyk8IYLQudFSidL3yHo WErc76neXoBE/5M/v7jZCrQS9loS0vITFsui0Rv95BcsNbV0iLQnU3VsZWltYW4g U291aGxhbCA8c3NvdWhsYWxARnJlZUJTRC5vcmc+iF4EExECAB4FAkECPOACGwMG CwkIBwMCAxUCAwMWAgECHgECF4AACgkQ61Xici6lBGkj0QCbBe+RP2fX0+t1fiU/ oOcORVeRc3UAn3Y7M2TfTKmSh+5RXsaxcVKWDqZauQINBEECPPgQCACOxltxnJKq MHIW1P1u4pjby/v0ZsVWbhqmPzW1L/o0SHbBdPkLn+NZmOKG3sXFkitq1nnXQMq0 pdWwEK55rN3+iYMpq2OJgubsEDJbo39Lom49w3xXs3ElHKWmgjNUMmiGi3yA3Q5P p9E13ze+ZBTTZrlj9xtTsXYPCkoihcjA8iD1G52CJYuVQOCxeKo3d8EZi4sFXhTs yGfK7ipLN2jO4H8LSrImMlT5z/ePmhTgo59A+vsIShklJpRlHqYB861sMobUlbCd 0n7Fng8pD9jIG63usHJgU32AVEeZ9BMaZ5Gjsm7KvIwJH+w8DGnR7016hleSXSEk wVbS7zjXKfAPAAQNB/9GQcWpnuKYlVa7olq9XOVHe2pHrnK20wLy14ormB245Aip gTCN/SEIgwc09nF2QXXXhzZrxsFCPphgJh7CT8g25LCJ2rchOhCpShNS43I1ol3d II4nK0DtXUJc/3qG5PgPaNLHHyskwIIyfL2rKRlufTgByzF3AKXHweJQ9suxGkGS i2+l1NBwLwsjee59gEyKXT/cbfkV/IgA+NBpj7QaDs0yhsbPSDAJszbo53aBAB9U sZjWP9tkrzaP1eoSbl+LFttLtrivG/v8HZuPlI4lELeRboslI1aUUfZVt7xx4A6P u3L1DWOYm9rQ0q1KMlhGQKa/JBtaKy73wwzZujSWiEkEGBECAAkFAkECPPgCGwwA CgkQ61Xici6lBGnrNQCbBljRUNo/9EHyCk0D07YM27DYC+8Anj9wU0uuZE798XZ6 n4y0m1iMcuSh =Fl75 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/4AAF82CE 2010-01-27 [expires: 2015-01-26] Key fingerprint = 08DF A6A0 B1EB 98A5 EDDA 9005 A3A6 9864 4AAF 82CE uid Ulrich Spörlein <[email protected]> uid Ulrich Spoerlein <[email protected]> uid Ulrich Spörlein (The FreeBSD Project) <[email protected]> uid Ulrich Spörlein <[email protected]> sub 2048R/162E8BD2 2010-01-27 [expires: 2015-01-26]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEtgnPMBCAC3bCUDqq+6pLElEuqGoN33TBfDGjX3CPciCBGBY33u0ThbKFHO 8VYStfwkwofutees9itDAjbQbJ7vIiQSe/1gt9WLfVUhgo6j57i5lbuVi/P3RMMA QjJBSZM/0r67XBqUXdye0xnPuJDKs5LmfY+23AWiWroRieeEBhbkJBQOyvY/fEdE dQ4A26/aLR+PDIxB8vrmsTRgwLYmxpnXqPkbmQ1tjS3MtsPgUMAaEQQOyoZJ7A9k loivX3S44GGTmehrKaCOivMtK21zR66Sslfr2zCCvzHXp8votrRorTBOGSTMC9ed Gp4ZlCAWa243NOVgCYWLsUAT7sutuI97VZunABEBAAG0J1VscmljaCBTcG9lcmxl aW4gPHVzcG9lcmxlaW5AZ21haWwuY29tPokBPwQTAQIAKQUCS2CfxQIbAwUJCWYB gAcLCQgHAwIBBhUIAgkKCwQWAgMBAh4BAheAAAoJEKOmmGRKr4LOtLIH/0G99k70 FWtU8wLnHAw4d5dkV+MpSJOiNK3xfqoEgzcBSnK8h4kkEibwzsUggtIvIQ/xkLzF oihFGhL/14+yM9aiyp3cVjPT7TqCN7j0kfKxwDOf7otAAwI+hYUrVG1XVM7qe7Gq sIS6ucEAnhjK5s/vxI2wJM8xcEQvx2ubPPtuSYAn3k/+JryIfSJaAiSmxuAfYEsf TBKmACwQ0CfthLkOSnBp3xNbmXnOJ7mVA/wZwTZjD2Vm4Iu9SGBNF+gsx7Jhs0/X ow6JpY4YsoZehFHzeLg3RINUdq5qmB0eqg0VbYV3YcH0a31nOUTGqrztfJs/V4Ap M8pJ3WbDrPugqDaISgQQEQIACgUCS2CgGwMFAngACgkQ524iJyD+6d3PZgCfZ+Ow SV3Z2p3IE3rQgIf+f67SZxEAn08H7gIDjHWv6P9Mt0JveEgBqqaftCRVbHJpY2gg U3DDtnJsZWluIDx1cXNAc3BvZXJsZWluLm5ldD6JAUEEEwECACsCGwMFCQlmAYAG CwkIBwMCBhUIAgkKCwQWAgMBAh4BAheABQJLYKDuAhkBAAoJEKOmmGRKr4LODJYH /j7RKNrmeszuP7hQ0sQpnn+8xmbp6bmNyXK+h3L78y1mVagMWlrJRbPe8QVLR9xq AmI7jIR4oVkcLhm/jnYnlqIAIyNLgrOQ6dIFMbwzd26AYS/Ozy7Grl+THXZJMcZ1 YTNNcPpmUsC7U76viLLw2CKTMzP3LHribNCoNmfhvplGdZibwW3so+ZjEzrhmjtP efLnYmD2AlsJADMhmOy7vgEUSdz7UnIiVgInpf11yQQWarAwAoiKxDSR1D3MaQcW JmyG8mhRqyJmFtbmARZaH/eGm+QyZKYuFY//NY9/ugt8xBhhUTeWN80dwZnx2rw2 6kLsWh3iy36yWNRF1sY7x4WISgQQEQIACgUCS2Ce8wMFAngACgkQ524iJyD+6d35 ogCghywJlVYXlcjHCqUJkZ4mc8/sW9cAnjUU3AThywjlZFNaB4ngPYGIXHZxtDhV bHJpY2ggU3DDtnJsZWluIChUaGUgRnJlZUJTRCBQcm9qZWN0KSA8dXFzQEZyZWVC U0Qub3JnPokBPwQTAQIAKQUCS2CfRwIbAwUJCWYBgAcLCQgHAwIBBhUIAgkKCwQW AgMBAh4BAheAAAoJEKOmmGRKr4LOELkH+gOD9ML6IDd4Hdu5I7JcmquHejOJoEQ9 rJRmbExegiCLtTtxI98f2GF9fMgYbKEZ2DRv9dT4tRYhJgm2ko6kf+BsLv1ilP9j MRJmzFe5RtVt+ot03+8bgN2TAQ6J0DknMT4sbpKWfMKgw8DQCDgK6aUxAHE/PO2f 49Wdb6ZxXIwYQKBUsPhAB/a4Jn7C3cjG/CqtkcsWm/INNdrr8wmqFQlQByYkE8bN U/LS8UEIf64o59sQW8qmZfMwy7MWsL5VDvJwG/llAAYK5V+Uu+kLDwn3Vuxp5144 rR7HgAgt+lX3IuMjvM72bc0ooljxqfGRwyfXkVqS0u7YKMIylibWlwmISgQQEQIA CgUCS2CfegMFAngACgkQ524iJyD+6d2hcQCfXmKCFRSNF7KxaIqfFbAZUFhHR6MA n0G6al32pXWhiV2i3sHyjDq3YCrCtCpVbHJpY2ggU3DDtnJsZWluIDx1bHJpY2gu c3BvZXJsZWluQHdlYi5kZT6JAT8EEwECACkFAktgn6MCGwMFCQlmAYAHCwkIBwMC AQYVCAIJCgsEFgIDAQIeAQIXgAAKCRCjpphkSq+CzppbB/9X2o72Knam5vdu9nAK vmkXmOmKMtp9gJ6MDXLCG/a8DME5weE37i3lmHkm/lKThNRteLajeWz1OWTEODSD 4lq9BOpr0fDVtSEGsrgQOIj6m/RGpKhmKmyZcsGhTC9OXpcrUk5QnFFb47+25PhC I6cfzADL06WGPDkTEFsB2f7ugJw00iC2Kcr35YG5TvvSR/tGRCo6HZ7ooTbLAVmu wMrAxwIsPv/ycFBZ5e4DQiIaxsVDPS5sQDHmoIhhRgOovoIinXXCpEl0JvnkegLG P9ZWHsmUEIlzU20iMBDmwDmxbsMhtiIFpSNNwA1c3wE786mTQ31vcvscR5p6JJCe v9yHiEoEEBECAAoFAktgn/4DBQJ4AAoJEOduIicg/undB58AniViZmymFbmu6LcB IQdX7tOfkKQKAKC1L+dB4cKQwTLHMv+PTm3ZZQUCiLkBDQRLYJzzAQgAs/C4imB/ b+pPBbSm85RC5tgzng8RgF9S1WXVUJupa7QEetNn58yodQr+j+ACoNeX3EKHd58m Ja2HyU/cKo0UwNOJA6iKwfrWXOGj7DigxdZdZ9QE/IyzsyrQPIbAVxZn1v3zmpTn ngueh9dUda0KKzeq8n5J6OjpS+G6wrMe1tnicM1vh18wIS1JNU/EgQ3hQ5y6Docs 4xjiYmmO+UlmW/SiiFhwR0b5pwEaQwSLLX4OjEdpxb4E2gxh4+V0Bk1BzpS6GygU Qvk1Ct/elQZX3Cyo88OlLSG/UiYGI04JDuyA8wwbriQezVMn0PbVXdo6tR7pqpCD QAtI+LFEM9VjbwARAQABiQElBBgBAgAPBQJLYJzzAhsMBQkJZgGAAAoJEKOmmGRK r4LOtMEIAIrN0mDZgdvcsV6RmSfoWWawDOklTOh96B20iKYKWxBSOrGNwAAkJRfL 4E+y/fu3DMoNUKJAAUZvjTOAl2YXv6U5LNK6IDQ5vGtERKS4VukBeDdgK9bLj95P cOQ2khuq4RVRL+4H4sdZyxLDD7Dad77rsuavECIK72Dlb9KX+/HJuHERxpqPNAjs FlQv2pfbfbr+SoOTjknLCIjct+lDV//y72WwlJeEYWQhKjVJupxPBGOyQEDCofML FvzDnuVl4Ft3qP/dLNwObtfghIz604M0aCpYwtItHA35zHRI/R7u24VtluA4D+Bc vKKK08LFvCJ5WIK8LKm1Ad/oQh3yuwI= =h+sB -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/ECEDBFFF 2003-09-19 Key fingerprint = A8BE 9C82 9B81 4289 A905 418D 6F73 BAD2 ECED BFFF uid Rink Springer <[email protected]> uid Rink Springer (FreeBSD Project) <[email protected]> uid Rink Springer <[email protected]> sub 2048g/3BC3E67E 2003-09-19
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBD9quKgRBADeV4lxkbaQyNZMKsSxS5DJHYKbIy150H97+m+J3vYI9IPhBtlc oqnlQTaIpoSn3N8ExxwMADRmevRhTHLhXxgfym5iDEAlIAr5uDMKPfwc3yUPPjkG CKKUQhEZeRvrPZyE8D/CicuSDtunnsXttK+7xLsWAS00gCr+cHsMPebivwCgyMiT z4YpZ8AlVx1ZDxHIR1CgZMEEAIIcBI4MB9cfOhu9Mje++qIHyAz2jsK6d7/Xu4ua r2eyDKb5zsbQCwALBRi/vXdR8lt4XvDjvmHQ36J5vGDnfA5t+KtgmQ3EXInggk0M ZTEvnFL1q3H+bHCKsf436Cb4Nq/bPQMCznPQ7IQjiMBWJPRd6Fv93kowNKdtEAlG cOn3BADGc8z7dEq+xwNmeXvc0jWJpZXTzT+9eRSQK61wqyJH2gWu8wd1T37pa32H Efp3Wod5IUFaS7E5P7kthuoMwhKYu5YJJBOA/iV4a1BAKjTJO7sGPwXXIvKMpoYS wcnicf1rhZ1kSLmX06PA8x+2GFPK9ZSBU0XXhbV09JcpTSbScLQyUmluayBTcHJp bmdlciAoRnJlZUJTRCBQcm9qZWN0KSA8cmlua0BGcmVlQlNELm9yZz6IYAQTEQIA IAUCQ8tX5wIbAwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEG9zutLs7b//Bm8A oKysvuif0y9iIRSvLA0KBBDYBA1MAKCWEpH45Gv3c5lR4keGHo6O1EuFv7QdUmlu ayBTcHJpbmdlciA8cmlua0BzdGFjay5ubD6IXgQTEQIAHgUCQb6gRgIbAwYLCQgH AwIDFQIDAxYCAQIeAQIXgAAKCRBvc7rS7O2//ygBAJ9uO+LYKzNfgcKAv8EwEmKg UWvd+ACgstc4SYQz7IDk2V9ELXsLZNJHu+G0IVJpbmsgU3ByaW5nZXIgPHJpbmtA aWwuZm9udHlzLm5sPohhBBMRAgAhAhsDBgsJCAcDAgMVAgMDFgIBAh4BAheABQJD y1ntAhkBAAoJEG9zutLs7b//5pEAniSKnGBZhNgxgPI4xFrBefn1FX1nAKCJ7l21 9H5w2fIng8oy+Mc/lipRE4hGBBIRAgAGBQI/un1kAAoJEAahzEOamxxah3cAoK6L o2tmYvVDKzXSuyODzWGMIPO3AKCoqHpnLbHUVCK6uNCtUMsP10k4EYhGBBMRAgAG BQI/unuMAAoJEAdJki0OPZOdHooAoIY0GBH5xaMQHLT7U/H4kEJoy8gqAKCEFO00 fn3ipm+gEe1xpp+B4ghWOIhGBBMRAgAGBQJBdq2kAAoJEOU3f22J7zgDoi0AnRHx J54/6qgkzk3XYWytM8kORJ8LAJ4kbjFKaxN4FMrfmCXyiobPAdFX4ohGBBARAgAG BQJA30+nAAoJEMsdesnWoa8+Ql8AnA7jacrDH6VeCyCVPG3bCehRJGFlAJ9cy75M r+7vyd7HiIDkumKda0v1yYhGBBARAgAGBQJCLf29AAoJEHs456GxToKx7HoAoKDH l2h5HvFTNZR2yeHfjMr4XKqqAJwPng1h5Oq444Na6toMTxeYmfiQCIhGBBMRAgAG BQJCLf3cAAoJEGjhJSt9pcU7QtsAoJFIRKi0yuJBTyaZHUYc9/CspFwOAKCv2fGI ZYVRDvIILnXZayCVPJbtsIhGBBIRAgAGBQJBp3poAAoJEFECJ1+oE9XuIDMAoN+y gQsgchoxgjgj7xvc+phiXrx0AJ0Wrk5qkVMxH4SThHTmUcWtgUy08ohGBBARAgAG BQJCoEL0AAoJEJlSOEh18JoRhu0AoJM7SvWSprG7QDHKOnEXf6naqFjoAJ9r0RXn b38Vh6C/S1mkkvlLMhrObYhGBBARAgAGBQJCwePKAAoJEDYDstQq8oA+VQMAniJr UHQpCWO9Gl7P2U9mSUM9bmXGAJ44+xRxWgmcbaB5MfNxc/+EhttYoIhGBBARAgAG BQJCwln/AAoJECtXItZQPuZ/ie4An23xXBcj8uubd0RH4T4eytcsT/APAJ9UVS4C +A6oZ2syWMhLwhM8De7aaYhGBBARAgAGBQJCwl/cAAoJELm9u3R/Ejcr/sEAnAmt TRDaCx52VtTFUCZ3gqdJJ2nNAJ9LiD6qEUEsR78lj8KtHIFd3gJyXYhGBBARAgAG BQJCwl/jAAoJEO0ktfyslxhcw1kAoIeAi1yRgvSjscfriPPLJsfItirAAJ4svEJC OZRTtcLaPTCGljgzNHe1mYhGBBARAgAGBQJCwnenAAoJELa66j1B5mvZtVwAnibO IGxb784vCzraDVqA/eewItNfAJ9FqdOZYw/CovHLAj3w2nXFTsGvx4hGBBARAgAG BQJCwr9aAAoJELOADYxWullRPjYAoIJm0zbOeXuCRFTtpHMyjVb1VLPQAJ0RAtgr Ms9M9CZrOhojTARULOlEYIhGBBMRAgAGBQJCwZauAAoJEEJrd6pui7AhX0gAoMAp 9Xqrbmk/RMZrNc0l1qo7Z81TAKCfroUBS3Ecih8v1jGmTgPUSkTV8ohGBBARAgAG BQJDHqqEAAoJEAYGnPKWlFfwIZ8An3dUfKJR8MQkDF46pY7ehQzyjoyhAJ9I4yiG pkBKVRlQnl83NxXeL9jGuYhGBBARAgAGBQJDIKKmAAoJEF924XqIxu326E8AnRSy bi01ic4Un4XXDT7zs9BX0GtCAJsEgPknCSS/yYPgK+Duk45J3jdf2IhGBBIRAgAG BQJCywt8AAoJECdq1e/TZ18Ig28AoJbmYoCkCeUozLToGrESAo5OuhWGAKCYdOzJ 9sPgsvr8x/xa8whXrdIB8YhGBBMRAgAGBQJC0F7lAAoJEBLMC0rbivl4Qu4An21t BQWlJyrHZ8ZxLeWb3bLC5RjtAJ9zdPh+fDYt4/Z4h9twvCe3nKfAeLkCDQQ/ari1 EAgA8g7iohL/Ws7gm0fHBa1iStYxJxK6p9oy5zvuN8vfgVsj4Efjm/eS2l1RH6lP jw27XdtAMBuEctGFAhtBajgdYhryBhOKeUIOZo94QkRLMRf2mw1gAM/yaTVlixTt imq2S8KfLYLTKb8T/ysQQLhaGHuI37pN4BIdISskMiFpDS3vuquN1Q7y6i3cmUUa 8z7km9Gx98uQfPesUPn+pcAgkL0f5LBH5smNeobJ2TbVTfqKm8070NZ4md8kYtZX 9YvF7W+6CT/gK0mYwbMkoJdyiGHXLmzbWwnhf8LrOH4cB+2SaGowaNwNon93KHX5 gyTo5Ok/VSWqtacxKg0i7JBT2wADBQf9EDMyjJ8AoCH2/fGePWfpTb6y+z465AO6 UA0LUNcMjVO3Fm8KrgvIf/k0SFuEkXfchVPmeBdR8uGR47+A3U/49wJObRrnKjNJ BtNZBxqW5rtWHAO470MQ1B89c7Wu2f5SJfqu4HJjy7LAWNCJ//KQ+tsLYrhVawbZ /fmmt1cur1qJA/C0OqNhay3CBw00dr4IE5nzUw1qjXQ1Oc1h82JMV3IimPG/Mqkr cmwbg++OY0U21uEcya002rhfWSNiNLxlAthFHqK1LNDd5EsePRHkUbRXKM0TWvV1 8fSN39nNtd3O8nMZn9KvmFyKY6uDAYegHv+Qg3L47VJu2UKVrVVhYIhJBBgRAgAJ BQI/ari1AhsMAAoJEG9zutLs7b//78UAoLxcADrltOZuLTJMieSR9zw7nruqAJ98 hpneRV17ciF5APqU2SSiDrugQg== =Gfya -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/90081437 2012-05-16 [expires: 2017-05-15] Key fingerprint = DD9A 126C E675 1EA5 2A97 04A3 0764 7B67 9008 1437 uid Vsevolod Stakhov <[email protected]> sub 4096R/4A5A0B54 2012-05-16 [expires: 2017-05-15]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBE+zi7oBEADSVzrn0+T2LBXDUHA+NvgRGwGPoYQ/FqnDDE9GlYVPH1xAsUIU 9d+YHC50qiAs8HoDyH2k286VHKqfkB3WOv5Ruw/SIwt0deTLadJbuO2vGim5KKK6 hW64jQxwYREcwqW70RYaokmHfJrrwlOWNRj+PW+bolqLQLJSYJY3CdKsFa2AkmGH wy8lbIX40uCJrL7Out8o5uMwUgdvjUm+U5xqcF43eKTKm7b3D7p5UYhZxr5vySKH OHOqO/vzZHKU495dzoRTuUy0gmhztzbnSURdkLaXdjSGOxziMjfrbU0bzmGv92iP BA9sMxQtxUm3RZ5SLISmfbJX8/P8SvWW5dOkNKYicL502YLjv8DPeHbnwqqOLKmv 4JLNPWjbpYjH6Hxt1AdomFH1AYw0UxDreWfBKpNrpyKm0dYzBYyt3PMfEMcdmIDf TE6M975wz5j23SecAb2H6snEgcIDE63/yMstskl1tDS0PwjuDLiNxHRv4QweV3Aw iszxNxqB5N/A5RdrBta88lI+HmMSL9YbwBRyKmsMqadcgUnJP/HP7cn1cBV2t5RI tGW85fPpHl3NNQ4lSzlj0cYI07mqPCpRxLwU+3pqc6qOe+lEU/DKoufIoH5C4cq6 UjjnQtIqRJBOTyOV2WCIcF/SwYhb+GZq2MOx+TdugSoBRiobz4RpweF28wARAQAB tCdWc2V2b2xvZCBTdGFraG92IDx2c2V2b2xvZEBGcmVlQlNELm9yZz6JAj4EEwEC ACgFAk+zi7oCGwMFCQlmAYAGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEAdk e2eQCBQ3SloP/18wYAAZHQ1dBRapE3bYOtrDx1P0Vx34+6ZkeM7W41bIZTEaURH3 sF7Dkz99HYHh7E6SAazTqze7Y4CwT8KNeR+J60hYLJOpDfRXphaL01lke5kMOh7A C2OxlWtttN7gOrGzLVsdJmJDRHPvIs9hAku+FWdbjXTcTp8ZbGpzMgQ0455p2TRk 8RPziWZYW48DXeB1lIc76b5A+6yvloaGDTkZujttwzWMhqcM4+v2B43g4MJ+CMnw z5ve8jNRmPtdWhoIQreQk/ahibjmi/T83bvEIBkeOZpDcDZoTmjgvUbDxJgyh8uJ wjkFAiUg/lKn37H/3JhXV0gteLG8Rg7Aa4JdozVth5qRsMqECBz4K7EE4cPmN7St /1may13JI4AIALYxS8ZF7lNEBI1K0TeNlx0rDui48ZPM3vsu3NcxWucGWoxCvPlr UhNLRa7ftHcd2wPW5n/GVa3OzLsYCfJ4a6o4lwM4hDxWuFINfq/zuDoOJZLzcvw5 Htv5tYbi0MjQqibQPOVKQiRwUr1nWv7fUpu4OhRDbdJA+srfmQorBKkU/q0E8E+Z eO5kM8m606+LfjvcU64Kt2f8i0PIZNv7+tvPym1GPjKzF0eAGFEcaItlXGy8fOSe E/EmzfQO9O7S0PLihgWROnoVw9OQ0wshDYKUX3qteCZQ3/CU64FMGJT2uQINBE+z i7oBEADrRY3nyIHRwWIyCIALje4U5useU9BmEkKCcMJglfD+DGC0PPK1JOsOBpZu WaBSFo6V2cmbz+19YghogjYkxNDQdrlQ/P9smye70BczdAYcQ8CmzNIE0I4JjbNb U2FsZ3q+T6rvINcU00H+86bnoVPCmxXbpqwET+0c+Z9uK9Xrs8aZlEq19XdUH2pj 60/Xieb+Js5MEhI37BsXpR8DoTpl0rCF1VRMnloDxA9fHeTjUsOBb2TeXJPYPN4H IhNlCye6EScOJQ2u4VNBIOSOOmG2H/UgyLhVL4sVeRqDVfvGYGoGO8uyhJfAosge n1QcFm6qpsuUjSSQZnwiSR694vHZo/P/7eRFxwFp0WXcIy5AJEd0hn7Gr4sYLOZl VNc1mWMS8YJH6kr58h5iymcdMQo6dge2HrgE6qVvPf9OozeNes6bFtYjw+1AQ6ut OJ+7qHplFvjLI5Nz6wK15fooeGK3s0r2suLPTQO4bHywTahYiUB0page9IJmrCTl rTcPtDj9wuSE1Hj+IlQy8OIAr/Fu4TRIbUezJBTdq/aJTC/zDtaXRjCxqhAfCqu5 q1qDi+K1ezXvbzCwuLn85qSwbCmTX9p7MKmlAk2ldAxB26x6g7CWRupRZgnU+AUw 3IA7lxysOJxyqcKqoLwz804Mb/8UTTXU/tbi7e9u8Klou4S/lwARAQABiQIlBBgB AgAPBQJPs4u6AhsMBQkJZgGAAAoJEAdke2eQCBQ3/hAP/3LWc9/s5rgHFKiBjlRs ELVKgLpcoNvyEEETdDvkluQZ2kL4XteyiKgyya+6AX70X1uRn08PwGO4sgvEEj4L vRJhPORNegy3v0CZ5wH0bOeDQF+DA2yNFOFHSjKVeEnKWTHE7NdB6bBlH9n5R5ZY nBhvajXTsi94vXBnZtTQMpzjhdZNxQHhKOC0Y9on5JIMnMBeCOT4PRyGoDm6XBjl hfZYt3mJ1Hy4QrsLVA5dNhhbK2dKaYm3APvpJBl3aFCUzH4eyLOx5YSOoeJLxUTQ shrn/D2BClKOCC1nx7T3qs8Svf9R/vO2T1EOWn4f6J/fqUl5LT5xi62OvdbfDxaw tjW1q2HDwS15xoXkEyrYXCEMCD9Fi8PmuY0HMLlldngNDVNI/JlIq+CTX/84Of4m toMd48Vw71TDmIsfdo2Fn+MkOva0LTb2/TtvvDmvRf9mGZL1jv67m2J/lNTFGd3i f1b9xv49lPYg5ZbsStHsn923azxpgvrPeE5CxqHCjWjrfEMG1xYwWdGMvLfunj9m 5qkfns3r8YIDAwSRGKinf/THjZWyfNA1+It5UdTiilfJ6iMNQPxOl/TMDjEOUIEe VZEeXRSqCwfwq78hD+I0f+ityKiQWZpnSTTrXLLXJVcd0P0HJwiz3fLuBkjRdKJ1 XCbWVeYyJqaMXExTQIx+F+uj =EHpi -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/7AD7FAF2 2004-01-21 Key fingerprint = EF36 D45A 5CA9 28B1 A550 18CD A43C D111 7AD7 FAF2 uid Ryan Steinmetz <[email protected]> uid Ryan Steinmetz <[email protected]> uid Ryan Steinmetz <[email protected]> sub 1024g/058BC057 2004-01-21 sub 4096g/0EB108D2 2006-02-27 sub 1024D/FEF36DD7 2006-02-27
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEAO4+ARBACIMxKRWYAPaeAW2k6Qqlf1mWoRkJV+FWxFrrkPM1z6FWsiBFWc ZNWYAQ5BvtY+5qtga1FHBMhExINCcgtJf+NQh+U38OjfpIOnTZXku+Sw1Gll1fH2 Ws+v/wwgC/SCh3RtUSYc1u7oa3i1QTvi2Dnk57AIfvVUv2hm9f4bg83/iwCg9yVU QkFFxz0TYPQmTUE98bxy//cD/ijSfviyGs+QyDpCB7l8I03VeZqZlk4zct/wNGeh DuYITyMzb5eqhffvo9LrovAPbuEc2voPmYdRXhW/kEXc6PLu+84mY73A1EQSKPje R1iQ4ska23zu/hNGLhQYQwX6kVX9PzG30X1MLuVFn3rEy9FxS6CpY+36x1U3zmnr lYHBA/sHE0Zrvm2fE+F0BKyEhZJ7+Vj3hwqtpkKdFW9+4xgPXUylFtMMhB5cgFSY R/LEqAqmJmPOdgs/961yFrDZliLtvjVrfpOOQ78JbkO01WF7EdARrdV6ii9VaQ6D sbZFrX976wqzDGdLvQIOGjGMILO7bxCs3k3dGdD5WyxJQusANrQeUnlhbiBTdGVp bm1ldHogPHJwc2ZhQHJpdC5lZHU+iGAEExECACAFAkQChWECGwMGCwkIBwMCBBUC CAMEFgIDAQIeAQIXgAAKCRCkPNERetf68mWkAJ9F+kZDo7hh/zf9vaIzFIJP20Gs aQCdEtZrQIm/2mxcXY4abobIVk3XCC60HFJ5YW4gU3RlaW5tZXR6IDx6aUB6aTBy LmNvbT6IXgQTEQIAHgUCQA7o7QIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRCk PNERetf68jeoAJ9I2uKiZnKtElTpIrGZhPFpU2iZYwCghNN3q8Qrcn4bRj/bo/UL LA0wUNO0H1J5YW4gU3RlaW5tZXR6IDx6aUBGcmVlQlNELm9yZz6IYgQTEQIAIgUC Th+NnwIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQpDzREXrX+vKSiQCg rkCRl23wMtHw3Q36BsDCJ/4UMs0An3Nfjjgg/+PC8TQmaL/mnATr0PDbuQENBEAO 4/AQBAC1qtLY3Zx/gesnPL7Rm9kCE7L5YP1heENlm0FWSzd0zCH4qHjqzSGRVyb+ 0s+ZRRW4heECpF1+eS4W2f2PX8siVrm+hg1q+Tx5Ag1q2Qf8MaQU2nmk9FBWUhCS 83EK/a7DGAELezGIZ3wKR6MQwZty7+oasM2XKfqIzd+c73375wADBwP+M7AQzrba JtrPooPANNO7a1i7gxU9Yz9UmQTYJbiq8GRExMpFJU7l0UkiiT5vN2q+rSBpIobg /bADCqODiV0QkqhQ6ASQiUK4ZGvy8Xn+QOQQJtM4YfSUl5bUapRGPND9LgxcCEk7 Ts2EA916rQf06qCi0tgBf1FNTT1LIjoQdxaISQQYEQIACQUCQA7j8AIbDAAKCRCk PNERetf68jxHAJ9xEUFCrSG9NHMTwqXDIe4qkC7SGQCgjRZlBZUz7kXN0TFj3olD TJbmAAW5BA0ERAKKIBAQAKTtcqjWCqgwrXL8goWyb2G9a/DvVSj1iYXpXz1O0neO BF+Vd8+S0/6XW4bHCMhqWKNAbq4LSUsukxpHcGtMTdAu51/dhyFd97exGNYFFa0y 7jeQNkkMoElia9s7/SZjfLkdoWr/ULCfSvwuhlO2KzynVffrskJzrG6XeCZZWnHP 7/YVl2BjOxLj0hQDMgy9me4QMEwBwO37p8y/j+6ckZ8+6tw9GckWq/mvfZSAvWNO HIt23jt6AGmfvYu3NWbAnBMHOOtqfZEHlp70ST3Ss8pMjBYTy4vdBJk6aJfzPdF/ lyoSna1tAu3PteM50h1y/iz1RnzTOJ6X+80nR3jDRRsT/SskZ6c/jmBpLT4f4eBU uuOLd/pBwkLKlsBVDzszQJIMNNpsptt/t280aJ5w+qbwD8RkG1bSTI7lLzk/++b4 qqwkcjlHAxKpL5BrI0iiKgpQv051b3YKD5YBj/oBTSLuPapABiIOWJeWNPEg7A7m z036iQjlTKSw0DToT2FuwkDNs4vrI+ZKVxXdOnSjP2Do2scVz+Xi1s1X/U+1UgBp j+RWQv3dRXQedhUU/OtLf6tV0z86nALFw3DTW6bYEy4OzO+JB6erBBvbmjZrmeZf Tc7sfvK6ObnEfHHOxLMhONv2rjwISeor0SrfaYRxSiJmUHL3bwjcERuJd4eZe/FH AAQLD/4gTmCxHIAuMhieUzmLxe3SFDI3yhOq83lhiH4vTnAGkC5flgi9NizOPjci FeeUCBXF2STNfprqT/1539RII3PBEdIjGaNTTSui7AEaoox/2yG3UxVUU7UwIliH CtqEQAv4vva1TSp+dz7yiDVFYdCSyc6oXzwk0JlI3rZYo/TqGL5AdO53XsWvHHQZ jN2NkFJ5n8EuT2ZrDZPlCYsj+pGfdLR3jhC5M+vf+pFSZQF1R47oG2gC+I7z3W+U d0FYjSVscBFNDoUu6eBewsklN0RFsi119lCT4HDt7DX75mjDyjh65neR+nBlLDKo Bf5J9TKmTZZH0HCVWFwuKGTDpkgfWpeXk92HJTdmUZGCAs11GbQVQrEZOHNrm6UV Ie95E58NhYm6QmQI89BAHFl7ALdNSJ4IphJtcdpOK4iGH1ST7twviXaeppf0d9H2 Bel7se+CRgnRWNxlSuyvvO0IHH0DvPdakMe7orY7cf247J+cRFLCDZkTmEjLdWF9 WPgq3lGbVujO3WB/AIL1c5lHt8tRDMVE6xY2m18Qk7Cpn86l4d7jk5WIn9yT7/kw I7LTREviKwpBtxHPg69ezvk+pLsgtzPXZG05wAAiCWPn806JZsydV/M2QeHifpjC MxfCGjtqGkxHInlHorwQWqzBsrzAGJ/X1pvnrly3kdAtpIIt5YhJBBgRAgAJBQJE AoogAhsMAAoJEKQ80RF61/ryIdAAoNFlpXW7Ppd8VTNDlIlDyOt+AbarAJ9DDpM2 igWchUGfMc58ROj90F+UL7kBogREAopcEQQAoerIQGAyddxqLupWOIO2Qhcwrwyl yF8LBL3JnTCcGamKHN9d72hIHZdyb5lAI+f5LKbozE3Eew23WaVWNRnonkTpVVKu x8n50O2O7zD/cVgJ+b8rWCkoUX41GhTX+IZOJoNRqhxA7VG20hmH8320T3DJmhpR PtshG2GkKlpdaLcAoPhJo8KXeaTisvCDiWXYxrVWV6hJA/9SEDTAgHH6Hejb4URi REoYswQ+WLFBhcT43iZyrZFodsc0B0gY2jGdJMcELDrLaTqwsotDD/5NMvDfOVww zw/ci6vTC+2q1kpvu7tcVYvUdSI3kr2zjW+7sZIKdoZYegxK3CmKsjOY4W+u8JlK tzAHPLzvHM9f/jVCiQWSJGBfPAQAg/iM1PZOZqs4M+WgcpxMrgLSLhLAL1tZD0gs BBBOtOQArt7DSojzlKGjpkClnkuBO5GU2jkqejAorI+WWoZ49gjkaXsqoHG0lH0H vhuH59NEAzT8fUg4oVmoOs2lf+hW8sEpXEvD+aZNaiiYOyWDPX0m4YSmvQJzSqN1 /b1VJ1SIkQQYEQIACQIbAgUCTgfd1ABSRyAEGRECAAYFAk4H3c8ACgkQ0sPSsv7z bdd7IwCaAgx3ViZioKiAwMTsKZayZk9RTmQAoKRETnJf1b9965mcbGSQ3f+dz/TE CRCkPNERetf68pz3AKDInU4gBEw57s2XC3trJMB8HpYTWwCgsuZ8XADa3kCnjG8Z ZTV4zXhavRs= =wi3x -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/0373B8B2 2006-09-01 Key fingerprint = 74A6 810E 6DEA D69B 6496 5FA9 8AEF 4166 0373 B8B2 uid Randall R Stewart <[email protected]> uid Randall R Stewart <[email protected]> uid Randall R Stewart <[email protected]> sub 2048g/88027C0B 2006-09-01
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBET3848RBADitK8bahB8Ftqi9wtYsFRGfdm645cTF5fAnxFjC+ouPfLk+cfD I6VG1Vib3T+SYTTJ3xPm7tV6RLLlRsdAfSE4P73o5qVe85Dq4JBKYgdCms+0Z7B+ O0yB7B0KClaXhZpsQtK8yLtROjiJxw1WQ9uOS/me5AHi2cZruoOcYxkzbwCguMmd tOy1SL5V2RLfJiQKAFQ23M8D/3m42RjkoMB791fuJ/pH3i98EuXhCwrSv7eZ3xYU TY93OwMEwPYaABK3jSygMETj9hu2pYFbrAFKSHQVPLcUBrKYw9+Fjd4XTOOxYZeI /+n0xSRk4W+sIQX97jCbvCrtk9jqIz2NQt9IlKxG0Xniio/Q8PsNNbO+jd5HSXqE ja2oA/9+r3LUi3jKH9rpY6x4Qz/DBpcNK4v5Fz24mtkwTfjyfC2nTlG58bSbmulE 1tfOLDL5BHmGoyWIqaFzIVIA5oGo9EYG2RCx7Vr+WgsY6jr5tX7HlhByoE5Wemoz YN5CDC9KCKe7TCpVJtlq57c02kE0OT3gqYsflidfV50Qzt9jI7QhUmFuZGFsbCBS IFN0ZXdhcnQgPHJyc0BjaXNjby5jb20+iGAEExECACAFAkT3848CGwMGCwkIBwMC BBUCCAMEFgIDAQIeAQIXgAAKCRCK70FmA3O4suHBAJ9kvtlm5qy8c6qSizjcvuzj q4gFJQCgqthVasQ5jNFZf1p4vM+gD1T84M+0I1JhbmRhbGwgUiBTdGV3YXJ0IDxy cnNARnJlZUJTRC5vcmc+iGAEExECACAFAkT39KoCGwMGCwkIBwMCBBUCCAMEFgID AQIeAQIXgAAKCRCK70FmA3O4slQYAKCNWFpgxPkfqz7PoTUcobiXbu7EAQCcCj0F mj5AKPyuPbwP3JT7Cyf4Fs60KFJhbmRhbGwgUiBTdGV3YXJ0IDxyYW5kYWxsQGxh a2VyZXN0Lm5ldD6IYAQTEQIAIAUCRPf07QIbAwYLCQgHAwIEFQIIAwQWAgMBAh4B AheAAAoJEIrvQWYDc7iyy60AmgLBwWw0LjdY6+zyUyUhRm9s4vZEAJ9F6dw61khm NQlfhpvoBh24pl6GTrkCDQRE9/OUEAgA7GAeZ2BgjNDYa42+GV6uo1FxadTNppdN gG22xgg+4SXnWZ25O8dofrHIwP9rk/qomw452MoAlVevV20uYthVqAXBWRGEhO/q zKfyZxTe8aCOs1mjCKu9fPkSgNUDoCl6jCac/5mDdcLdVT3domBJvGiqqSQ/B1JA 3YWrYCnnLTUN2a2aPW0ZK14zCSjaWQFDcm8kPi1WwKu9yldGnAPoT03+JF4KN0kB YkdmfEAFOJ4kjm2UROJc2aVUtjeMH3nqvdlTmuw6c6cmMMSIlXkcrTO7gRLmnx2J HgSdukq0vEtgND6O/o0n9Rnr+UccOCCz6EJkltL9knjKwutdQz9x8wADBQgAkEfc D/VQ1sUCgS5xyrer45zxW5NdeuFI+h12D94MKopczr73p+7Tc1bSDZK1M4e432qV 8hNy8Q6gYowhuuBqxI0LYcEtrJld0ma4cnMraRjkId2jmyK82c+O/K1w+vcGUsYu nxYBiGwtTTo/R+202kp6VGD7jnIxGQs5WsMmnh8EL1m4BXeFm6BzfT29SuV4bdoZ 6/YHyPLGVgtnPBCNQUjLvXqdaOlk3E1wCBd4A90pC1dDiN1rsAxOTcxwgyKfasXx CZsdBaXEYYUIfm9WrAFc1S/baV613184I1duBfCJWMKxGXMSr68CeFQ+I1036lsZ IdHoq+Y3nZ5jPRUIYohJBBgRAgAJBQJE9/OUAhsMAAoJEIrvQWYDc7iyXiAAn3XC FR1XLpBIlAr5dn8ozSpbwfoHAJ9ZDFSqbQt/EDawxqaoYP+4p4Q85w== =jM4N -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/0E451F7D 2001-02-12 Murray Stokely <[email protected]> Key fingerprint = E2CA 411D DD44 53FD BB4B 3CB5 B4D7 10A2 0E45 1F7D sub 1024g/965A770C 2001-02-12
-----BEGIN PGP PUBLIC KEY BLOCK----- Comment: For info see http://www.gnupg.org mQGiBDqHuqsRBACMfFOo/NFWEADUNcCq/6yvGLAZL1V4okeB+zTlIf/NJCiA/AT2 AKiFNd4T3lYLlUjm44/OcPhelAqFSrtgmBLovWJibt7nva0dlOIXStQQSikzMOzV 4tgtiQF2ONXIqFlGcEfKo5/fcxrsJ2EpQqNX7ujGtsKHpsZpkqrcL74GowCgzuwK PxnD+AHoa6YiX6LIhZA3ciMEAIS1vMlXFQJD1m7831ej8gBtdRVqYVHS3RohJmyY 91eGsVdDnDtywmWUA3sg/LTRRU77zx36MbAp40XZJJeSfLUp3UeKrcxSoxpI3L/V C/V6BBnOLDQ5GcUiRwQTSClh8Ck2Hyi1msA00FZJxTdgPpa+CJANwAM5M+y3DJ6+ uZSpA/9/CNa8aRcI/OPfs5SeTA/m9SSV+ITSAIfcaVYflquqQwnNh+c7SJ+3Poys BUahaTVcFHRrRmrVGUytek18i77cNe4ZItlUn1qu/yZwbVyTdGek8Zbv3pGIzP8r 8r57HwL8Gi252Yv5ovCRThzsshEfN5yQizbKgHiWWmr/1FEyUbQjTXVycmF5IFN0 b2tlbHkgPG11cnJheUBmcmVlYnNkLm9yZz6JAJUDBRA7PNuWDu2852ZqdCEBAbUv A/9SDqoqWGmNNtNG9prUMqe+Rx3HqkukymKicFzvEkCjULQa1sH2TeM7ZxfqDh86 hbtJEzF2/AsbYIhk6fg7adEV4+8WfZs3TRCHxBlWY2BXEW/9zWmSL/4YNox+BQSQ yo7ue4S2K2wfk2JgJeh1e/rEuBk1oR+G9NxfT7eKNT8W4IhGBBARAgAGBQI7cIWo AAoJEA9QMphcQTsIRsEAn0QX5oqWK3a6wPhbNHPjkhUH6jfFAJ9+kLllZ+J8AkVl LwTQ+owZAVuSA4hGBBARAgAGBQI6r/ZnAAoJECAVMdWEXf7dtnoAnj373ngJc4AU WJ+B6QXGhLmBJ988AJ4+qzDA2FJQqDUr+u+iW50y0QAYAIhGBBARAgAGBQI8XEdU AAoJECjR4s8DTnOXdFcAoO9z1mz2n/TRMnWu9TbnOBEoWxDZAJ912Q+CPxILPTWf 0vZNhA/86cW354kAlQMFEDqeC5tlYKmsNPn51QEB+cMEAKc0MMTo/JO7QRQEqBTi VWRLXfCjPaA0XCXtw8/oc1OY2wpECRg8baemNZKnpXy1y6iQdUfJGXU8UfiK0Tvg e10Rr7v7AdLugriggcElksLLYhgfALy8C6dr5yCcT/gcQN6qCJ4/144eBIry8EaZ MYdxqIM7/5Exb8E7wK2gY2wviEYEEBECAAYFAjtNN/gACgkQbCk0DjIZ+YLIQACd Fk/ofe08SuTTYiTGHY0lCeSfIicAn2WzGB3b8n2lcA2q6xZhFVGCjXbUiD8DBRA7 PMC4d84pxY+hLiARAncDAKC/Ote5mlNMwt/N6uJAJEnVLk6fMgCfXXwjERQ4uNfT btsBo3oR93gSuLOIRgQQEQIABgUCOzub0QAKCRCTqAdkLDfjdVI2AJ0QHSmZV7v+ Vf5ZL/iydysCTabdpgCeP3/6CAiw7KjlAYhMatYRwIUSpFCIVwQTEQIAFwUCOoe6 qwULBwoDBAMVAwIDFgIBAheAAAoJELTXEKIORR995IcAniQ+bgl1JAocyhGbknOz z55c9i+XAJ0Q4/tU3vPZ3TkrU8xK8Zct2qvkNIhGBBARAgAGBQI7jq3rAAoJEMiT /MUn0FXbpeoAnA3VZSq+WIMQWoBffOxa3qQ4gZaqAKDVf3cq9j8JxhINE55bNjpw 6HLiAohGBBARAgAGBQI7c/gUAAoJEOd14yTbQbOH8ksAnR4yNm3N9dlHZzG8SG2h 6jVXStWgAKCFQPVqEYS072jmEQc+pwhoKE5aN4kAlQMFEDqdf131FVv7jlQtXQEB YWQD/jEXwixBkuVVuLboFETpUCdMeVc6BpPzrHdfa52aPFKHqt416fAeeeXRly6l AxMDdJPxU2ZG3abR4iiaqDKWwiluFkEwLBL0AE2Qx2R/nNZqEYNB0BSUQNPH/Q// kG6mLOAVVvRLAL5R3MEeK/Y0ErH/7JXn8JPrl/rKqwCbIsL1iQCVAwUQPMskr22D N4pRurLtAQGBKwQAiXOCEjXh0ItyqSJltkb/6Z2DYJw6ypRikRJ+yTypNHD1EobE s1wOQS0EHzyXyIu7y2lj9pMhf4aVdYnMObBarg2IDx20qUkCKVEr+evccPxIsXt6 CZh9Q6D5eaSyjziS0RuHpEubzVPY+raR0u90VJKU4YNzmht9D+ZNKRuTupiIRgQQ EQIABgUCPMskzAAKCRDTST7w0perjoE8AJ4uqL6O5gfCXSPKxcGF4scxAu9nQACc DpJ7Vx5Y7fMJMmDWAiox1+uHE9m5AQ0EOoe6rRAEAPF15Mz5Kg25Az3g+7OB37Qf ZukClm8gdjR9ziTS+rkjYxeP+j+BmrQNyqdyM+dNGiEk+TgJiBy6otjE3RSQHuVw xin9yMIuTxa6xh0PX+sV5aW03YUViglWkevdMDLTAaEUwc0y2fZv1as6Huk4k5LK NanNMRnU2giytGuCTyq7AAMFA/wMMI9Px5Q0/p3iNDXZ5YQ6zbDR/aC/q2lxN38F UJOEnMaSpZvD/EE/gpmI2naHQuGS5C3RrCrX3/7IGGEVE9U0dl+krreVDDxz/yXY hX2D+5ZvriekJZHPmek20gT9i9gm3xLl2e0zS1zQ6BcYCtX5kVwIW5PTs09/MVvw scShNohGBBgRAgAGBQI6h7qtAAoJELTXEKIORR99rLsAn2+OxqxPJK8ZmYPKX1JK qN+IdvKuAKC6p9c3lJBbYHFlhxPDhBvgBaSOKw== =WyeV -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/3FD1B6B5 1998-06-16 Volker Stolz <[email protected]> Key fingerprint = 69 6F BD A0 2E FE 19 66 CF B9 68 6E 41 7D F9 B9 uid Volker Stolz <[email protected]> (LSK) uid Volker Stolz <[email protected]>
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<[email protected]>
pub 1024D/3141B73A 2010-04-13 Key fingerprint = 4A6D DC04 DDC5 0822 2687 A086 FD3F 16CB 3141 B73A uid Ryan Stone (FreeBSD) <[email protected]> sub 2048g/A8500B5F 2010-04-13
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEvD5ncRBADjSSeOophd6EZMLRUyyqvBTYhHJiCmYqDfog+PG84/Fsb7sXXe 3W8uZ/Wob/wF8vZey+7V9aK8eoJP9aK52SIMFUR8hdbXTrwhHlTc1QrFWLXjVqJ7 Ct+ORGcqsUO9P/KwG6Waf8UG1Dnb4IZ2bQCoy+hEXpwiE8KLhR5X3vdq3wCgjARv ef8JXQvjUiiGUmPTtwumbmMD/0QmTbZOhdjC1TbIEOoj5BRZKWUv6rj2bXJL+miw DCTdpwwn5VfmZiYHeTcCclyPH+GfkNAhrYf4XQ0qUBtB054A+0ZuK/oEbHpqw8ky 0qj2GGCt0m1LybiX0g9MhEZU9/Coq69TGoAFcysGisrEq4gJm29oc1gcXKXdXAem pP9NA/wLMp4p5BTd7Q+9fVJo2X7JTAtCL3djhvFpgbSeExhKCHflH+g0gw7qiMKv po1ozRY0r0fwr/gv/LcIh/XBImeyodj9Hnx3xd1jhToGoVP4Olm54PxNKLtcRize 7CfrQr8TPG6MCY10EGVczIz6Qel7izPdqacXeeB8u8RYnoh4d7QpUnlhbiBTdG9u ZSAoRnJlZUJTRCkgPHJzdG9uZUBmcmVlYnNkLm9yZz6IYAQTEQIAIAUCS8PmdwIb AwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEP0/FssxQbc6NYEAn3Mm+6fmwl8H JuLh1vhMkmO+liK4AJ9m5Btl2vy1eKMfijZ2a/zIbGcydrkCDQRLw+Z3EAgA9LNT KPMCyYCuRn0OjAMiCcHiaj20sbY5kO8o6GSOT3Gk8cXxNQgglcvfYxuGxKjG3uIs 9+1Sa1uGkyVwTCt9DUo9EGvtLxZx/AUU88M3aVF8kt3WiIjTEow2EiS1D7gmancP PI2snFh3qqbkN3oWcD3rg9uEwxa9i7ptb/45KnCFJ1bB4jDkuNRqeEOGg7uPV8sZ /s8EYFqTl5mW8hTvUY/XgKZl8TvFHxDDXQlA83OWa7RW1JI6G6zuJPHA7q1zwKFF DZTabKaXB/gQHYj+j5fx8FgzIa3J7s6MUnZLq4e3xf/3yWOgfsRAxgMjL4WUe/GF 6vOvE3oxTbUMrQ8FQwADBQf/awmIQZWNMi1aVo2Jls5GpvcV0QZTo5HCcItzoEax rY8HMaaApvbiGFckN75O08GuKPEtoet232CEBet2D0NS+VKqp3yBcRwKELTttOFl fi0ZUWH/Mk5NEJUSR+lUzptNGRmtu4ftPW/apjrtzRTR6k7KxVPZ0q171qQfF90n zFeWklDK1lw1PGWk5X0p4qHCCMs+6l+TEgYjCXZdaDJ/e29bNmXdz3ZBiWbu/Kjw jk4s6/17TVXl/KhDAyvfZ3IN3d9BN6h+R1gqE/cp7tGvgDTVZ4+nPm8NVaOr5sOl 4L9EagqjMAqQzcbhtWHG8PE76P7wnbU2I5pHbexqLlTpGIhJBBgRAgAJBQJLw+Z3 AhsMAAoJEP0/FssxQbc6JK4AnjiZo91wrPy2ZqMytQaPL3SJcmv8AJ9Q9jvmFruu qi/JXA9b5UcmNn7xoA== =J2di -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/E683AD40 2006-09-28 Key fingerprint = 8A0E 7E57 144B BC25 24A9 EC1A 0DBC 3408 E683 AD40 uid Soeren Straarup <[email protected]> uid Soeren Straarup <[email protected]> uid Soeren Straarup <[email protected]> sub 2048g/2B18B3B8 2006-09-28
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEUcBVMRBACN3a/+siykVNlKvwCmd4HVMogG+Oljeu9wyLsI8dJ9Y81bkY0h fi7ve3Tfu4GeRcirnrc2FV9Fcsv4dt9DtYQ7PQTPH8kjrSXr3kQoiHE4fGGJl4IK IVIHj+iC26JJgbqFcSU7CKGdvZIOJ17IPPh/HhunKBv9ljNJ5MM+WL8kJwCg20Ez J3CRnHM90EFk/nfAlJRvXk0D/3rqR1ODyY/8fFDtpOIjkApkw7k2eoJsfqy7tbtX YwdMKQptAvz2NxW4Qjfo3NbgGbfN6eAlhoy9Srcfm886KPMA22ZAvCWopFNbqAGX e2iOEwbU4JflSq5vLsIhOVz133W6mK1c7VJ0cf2zl+iRWtISES4fOY5s9rEacIjA NcAHA/0ak6bks8LqzC64zFdI6bj2FfJbOoTrga1/FQEBSw8bET14S20G/713ZCD+ tQXXrs8I9YjBQREsKYmy0ixFYFmxMvG0NxkIyrwD/GEqpBbNdkJlx7pUhqv3zyRY rzvcmca7jIguu6K9nYi3t45nmCVo4ku9EE34YHzvgFQ15+1LdbQjU29lcmVuIFN0 cmFhcnVwIDx4cmlkZUBGcmVlQlNELm9yZz6IYAQTEQIAIAUCRRwGPAIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJEA28NAjmg61AFysAmgIisxdd6032Jk2xeI17 gcHuzXvuAKC5z1x4XxCwELWC9mk9HUlVTWcMW7QeU29lcmVuIFN0cmFhcnVwIDx4 cmlkZUB4MTIuZGs+iGAEExECACAFAkUcBVMCGwMGCwkIBwMCBBUCCAMEFgIDAQIe AQIXgAAKCRANvDQI5oOtQAvaAJwIhTZcNVO1HKFwW5+hfnpE55hAMwCgtgTvelBA dhl0HgdkEN+HWtZzEnC0IFNvZXJlbiBTdHJhYXJ1cCA8eHJpZGVAeHJpZGUuZGs+ iGAEExECACAFAkUcBtACGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRANvDQI 5oOtQBgzAJ0e+6mp3n17yH4hAzcE2toJ/CPBPgCgrDC3mRdXEOD8Gegm80agUykc Fq65Ag0ERRwFhBAIAPf3jtvf8pJMZoO7SQ3/Et3jla1POUcJuk9T70om/Fqi9Y1b mxTXR7yu5Rue/ZSN20laoywnJQAJ3BENx7mZHZwCzZDfEU9QU6WipPykt7KbhBG7 DjXBONGY34wl4RearvGn61FuL77/pkSA1XQ4+5U/hWIisTWnHRufxoykhlyo7QTN x/S1bEXA6eTtfT7acA8sZfMRiqb8opOtJPiSMO7vBEYHfkleUGhSJwI7R7ghux2z y92Sp1sFO7xb7ZVlKVPo+edqbu5mKRLvhykLiA7keNv/YGkfVjPgLthAo14JIL3b 95dOkGV/iI+DlYWPa/sDOM2KL0S/wJ7dXMtMVO8AAwUIANqJ9nqvDnWMoiJ2/Zuc H9y7CMmSZEdzQwKqaJysyDqiV6LAK9TXsxzzl1UXximPMCb2qwtVGOaRKAPR8qjD 9GQc0Lb/BCFQ213o0eb+pvq7fFmUxrt7kMUvbwRGhiRbHyo1qf/z+VA2bntosYmW 9YSpa9eoE3iXr3cF6wQVw/nUF7jm6QQ4M3ak1MiaoICxxCy1x2WzW9mrUePPWz25 x0Pj0+R3mnWMTewLC6kk3QFM3usdxudGXJqDVch3w47BHV59WgSnzYPshGFp0VlU xeJNWJYu0DM/8WeOvRdf/5VdxwJGDtxRyQSDX6niYHWg6tL2Bx1cCxJnnzLLnXDp PziISQQYEQIACQUCRRwFhAIbDAAKCRANvDQI5oOtQObqAJ4gRDoYRjl6DWCd2DgO ECDwvMM5wACgiAYFjP/BOSY6RZdSBTxOSdyeVdk= =Dgd4 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/E0AC6F8D 2004-04-16 Key fingerprint = 3A6C 4FB1 8BB9 4F2E BDDC 4AB6 D035 799C E0AC 6F8D uid Marius Strobl <[email protected]> uid Marius Strobl <[email protected]> sub 1024g/08BBD875 2004-04-16
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<[email protected]>
pub 3072R/D06F0BD7 2012-11-25 [expires: 2017-11-24] Key fingerprint = 61A4 F2B8 2A6C B81E 5557 0798 78E7 DE70 D06F 0BD7 uid Carlo Strub <[email protected]> uid Carlo Strub <[email protected]> sub 3072R/71C75997 2012-11-25 [expires: 2017-11-24] sub 3072R/318AEB16 2012-11-25 [expires: 2017-11-24]
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<[email protected]>
pub 1024D/956E8BC1 2003-09-12 Cheng-Lung Sung <[email protected]> Key fingerprint = E0BC 57F9 F44B 46C6 DB53 8462 F807 89F3 956E 8BC1 uid Cheng-Lung Sung (Software Engineer) <[email protected]> uid Cheng-Lung Sung (Alumnus of CSIE, NCTU, Taiwan) <[email protected]> uid Cheng-Lung Sung (AlanSung) <[email protected]> uid Cheng-Lung Sung (FreeBSD@Taiwan) <[email protected]> uid Cheng-Lung Sung (Ph.D. Student of NTU.EECS) <[email protected]> uid Cheng-Lung Sung (FreeBSD Freshman) <[email protected]> uid Cheng-Lung Sung (ports committer) <[email protected]> sub 1024g/1FB800C2 2003-09-12
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<[email protected]>
pub 1024D/845DFEDD 2000-10-10 Gregory S. Sutter <[email protected]> Key fingerprint = D161 E4EA 4BFA 2427 F3F9 5B1F 2015 31D5 845D FEDD uid Gregory S. Sutter <[email protected]> uid Gregory S. Sutter <[email protected]> uid Gregory S. Sutter <[email protected]> sub 2048g/0A37BBCE 2000-10-10
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<[email protected]>
pub 1024D/AE562682 2004-05-23 SUZUKI Koichi <[email protected]> Key fingerprint = 92B9 A202 B5AB 8CB6 89FC 6DD1 5737 C702 AE56 2682 sub 4096g/730E604B 2004-05-23
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBECwLW0RBACY/obrnveQb489t+RYYeX4nXBW31V2DeDxv7YwEy4lA1K1ExoX lcmeLh/uQT1hoH9woQW0BXIM5ilBkrf55DVfrjJ6usonwPVoBoiShdWy8jOJ1SAl l2jJsWK2jMrPSqu4NBZoqpaJQ4pofLsI7WFtqC1zV5CWFcl8vMbNrZZT+wCg1HCw NXUwCl5TYkrlTNCZfGh/QrED/RbVx2hctxSwy2FpG+xxKKpahtGrSfHXOotxFz3R nx8ohWaBEnUjuT0ahJrFsa7yxmPNp78+0a7BgaxIMLEe0z2bprcAEqz9xDgwS5qG rxL+so/837fuqMfMyOC9TNgQ4UzzFv7Q/MSP/vgxWZdjtSWZGyduFkFRzNmNLdRA wlGWA/9QuX7ob5EQBGsAMABhcMwLahjKuXNcFDfa3He8km4fnzxFL7ySePKioxZZ eVt9zK/QDVCYTtHXPiLGDQ+FphIKWZy0lv9fSuwH/VWE+QBTO9CUCuiFBRX20tPN WSHiZIlbZc81dStuq8EZp0HL+1iHhtftHWHH+Vy708g74cXYUbQhU1VaVUtJIEtv aWNoaSA8bWV0YWxARnJlZUJTRC5vcmc+iF4EExECAB4FAkCwLW0CGwMGCwkIBwMC AxUCAwMWAgECHgECF4AACgkQVzfHAq5WJoL1tgCgt1IVzmHVdA3C5YtLbxOqyo5p k/oAn04MSF3ffr2jxFjUvCoPIVu/dOGXuQQNBECwLi4QEACR+yJIOCf/CfQOp2yY Ny1QpBm4Rm+NnkJLaPX0ZKxxfa5cHQpqRQl0anbbihRYA3x+TlmD7zR9rTX/Hg+z nMLdVE9mGz57Mex+GZMUa5RfXBP6RgGsnDfXVAXBjqW1ZAZ4zFiO4vQx8SCwGK6r 67etzvTM+iujcPK2lzQippkG8AmaBNHlhL+vhV+ILplP+OY5Z8YY617DZFLB58ir dxO43vL5P1vQjFCpD6gJ0nIyAdJO0aT3ALUtrtXoIn+6Cf7sh/qtcNbR6I4FIutx Le1ujb4nniziZ1iOTW1AkNxqwwD0eYQjxZrHEK0CTkEOBmUsR5iQp3Zghq46yVYv VdFmbdZJ2rjGZJqZDMqUtNqpaqK3rPLknJt30IzOuDWoZ5ttNf+XmfM+4mrEuHTV 0xpAbW5AL1BpUskMBAcqM30/aEBarDi4cKoVkBNs3m3FM/KGFMjGZc781DGKLhyr aVNPj6Bmvk1z05f0o+UHhavLhz8becfDRA+9ue2mmtFdZXdGMz6LL8cPKRLegZlo 4vbQ4hz/9UZGBUJVWJG8X85x6fhtrkRglTAGentGvZdOTmOPMODMoECtALPSJKXd P3iJlL2iaPaMUNJSI6449aku6aT6J77/OFTWcNLaYNtF1goNLTQiTBjKj+ESwfVs WznjFNx8+boTYkXj/HjZq9KtdwADBw/8DDW5LTYmzCvpZk8z0vG6lKjdPurn+97b epaw26XlbQvXnxAg40ho1Maki94vDzPHtxj9rLaAv1xtoShtzBfKXum2umFxA+eo WTnQwGaU+t3U6ndDU7PIqKgjl3x7ufaDT9pjR5BnfWmg59uQ0sJPCdMFpe9MIcxa dS5yU9fyPcadmSvfFPr+4vYe5IWFdijfTDc89eTAeR6eTKvhRyAwrJPOpjeytTfM yYwmflv2vZ5RHh1BmNfVVQ35PmeySgGKCbu674m4MLeNsyyoLtZrnhGt+UfB0oCr ImbmI/OIggehV7jJlGdNQtZXbHJpr2R4GiJSFe0V3Dh33jkw3xS6iroG8+n2SMCg E8iuOM1S/9rrjSVtmJi9ziaqdPtZuX2GHFBfDO9dXCF76Vc+c2JlDM0w7ZWyzwgw W7IQtnX/ld2TkBcWq5bCs7/G0YOGxwWF+5PGE7ajwNtnEDoFVHRdbiFQk0i0Ve+R /yKEpDsCGI0LenCekQiefNSsTVJ2KkF5u5WZew/hcmtlKzQ+Iwt7OxpriEeak/y5 UJn/e2nX52BWQA8x1x2gOFwVoyeXTe12AxLpLKcIXZTi2IT2wK7Xs/rJtypwIOkv j60zDWQpu0tzKcPm8Bl7SYTZDD5NhoHD19io6IAw4VCaUsne+VQgI42KPap8XJnK fOCo/EDR+ymISQQYEQIACQUCQLAuLgIbDAAKCRBXN8cCrlYmgsupAJ4iTiPj5Eh8 HfhJj3uNv7V2KbhIOQCfacugQ/nUetHWqzg9Pv5WEbCKjEQ= =xwme -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/63D29724 2009-12-18 Key fingerprint = B108 7109 2E62 BECB 0F78 FE65 1B9A D1BE 63D2 9724 uid Ryusuke SUZUKI <[email protected]> uid Ryusuke SUZUKI <[email protected]> sub 1024g/5E4DD044 2009-12-18
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEsqyesRBACDA3KsPNZg2Q88N9Vhp0kpoLW2Yp0xWbJ01tD2PPcGCq4nGE0W NgEvynvUwVJ4ODryLEIL3Po79fBIpkOhjraWdFH4LMcXjOequoERDWCMLOSBzP4R PKPqhSvOGw0H54357fcjzo3X2ze9HnfiOI5d94qaUpnPeE8JioJQcTEW9wCg9wKy KijAwG/TQBIHrS/bp6F/4GED/iCdSQ09Q6ZQF497zS1oNTgXDmD/qaAzW8F0bu/D rp9v5GVWeN1vfXHAtvug7/kIOO/eFZqU7IZRIf9bSerWXtaSV34QZSS81UZOr4u9 YUGG1qk/A2a06GFzPCzB80c57G1b2c7i9Ktbw5cQ5o01eLcbqkdLmc3OcjIjnmCy /wnfA/9tlfS50UU7RFfwj199z7R6vxZ8HNoW0DwyNT0G/Sumj96o7+GXqU6NGZ3c X4g0qQbF1NY5h3cXkR9y3w3TP+guQFWtJEqyXxykYHZWAmUfNbaG7xiWdP0iGa6N pAWzMjpeHFXKCLmD4WzRx82TPvxSaw8W7H3PQwi/QIj1yBFot7QnUnl1c3VrZSBT VVpVS0kgPHJ5dXN1a2VAanAuRnJlZUJTRC5vcmc+iGIEExECACIFAksqyesCGwMG CwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEBua0b5j0pckoPcAoNDzMLDEsOm+ GxbYMxiTpRNqR3/IAJ9TZ2g1dD8D99ipOUIADN8DyEZRBbQkUnl1c3VrZSBTVVpV S0kgPHJ5dXN1a2VARnJlZUJTRC5vcmc+iGIEExECACIFAksqzV4CGwMGCwkIBwMC BhUIAgkKCwQWAgMBAh4BAheAAAoJEBua0b5j0pckOEIAn1Q0VUudnFwmFG2/Gim1 u+C8cmZpAJ41a06jrPg/BwDeHLHVhd5FzmXyqrkBDQRLKsnrEAQAg7+aWadgT2+8 C6Hb2GzSs3/sJnLUWCGfmzBqKNQwyTMAlXEBD1w6MIeYURz7PuPgkOvB8v8b5+2Y JBU6i1289khWYSq1pn7XgX988+GsX//IfqCHl9i/RnuO4dVL9KXl3lGFvftpsm+A /l+4NkyWo5T/wpzyrmNfuDrsuDUf92cABRMD/0NsHSpAxZpt67PoIrnAXIByQU9g grORKLEHjYe6XpuVsz8XPARBjskYScU9VcPEtWIUWh6PXCjNk4aiKwE0jY7XX0pE DeiZwa2WG2eFlDqJ03aPgxTQouwEKu3zuo7Xnd/dlAThHK0wZdNWmV6ebYah8rrt TJ3PrsYQNptn8iogiEkEGBECAAkFAksqyesCGwwACgkQG5rRvmPSlyQyTACeNfIm DBCNKmYGktQUlB1U9kf7o2MAoK1PxWrRo9/d+uKirJNnzdYXTJk4 =69IH -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/FAA48AD5 2005-08-22 [expires: 2007-08-22] Key fingerprint = 8292 CC3E 81B5 E54F E3DD F987 FA52 E643 FAA4 8AD5 uid Gary W. Swearingen <[email protected]> sub 2048g/E34C3CA0 2005-08-22 [expires: 2007-08-22]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEMJW1ERBACGUsHdqFuQjrrtjpvx2pQ7GpZYl+HS/jVPn+0MjMcZwRtk2T+g b0/EzS/0oeOqv1biX/aZN19T31JGdlSm8FumpTc9zPgh830omlJx8V3g8wi0ZHzl UjGa2MkmkaCEVeP5bX/NyRljP6fpnOy+5h4F0WcpkqwlXRuhOzM8UgpXlwCgjjPk 0CLI2jSVsnqIKtMdunOfsd0D/RaALnZrVkGtQfDX6MDo1Ws+ADGj8rGtmdN5TIoo ivJvilG/5HSL2nsqOcIKWA+C4lZqzMIlo5iPSz3BijMc1Ni6LaQo4E4zvh7ID5fs fXsMhiE7H2KNSGTjmmL/8Weq8Zgpu9TBD8CHUZLD6BU4Wmm9I/R49A16T5Gbylgs fEwaA/0VYP+u8TEechtQKLuAfOwL2ruFE0YKmnXq2S7MixFvSNaRilB/t41I1YcZ mcWbRlIBezvchln5qRommEKfp/sWVcocR+AuSTcLT3683SkeJ+9205bFx9xXJnrE PBhqjMmRNNlmijcBFZHk+W7tCJQBbLGJkpLfqllfVkJ+rY/NVrQmR2FyeSBXLiBT d2VhcmluZ2VuIDxnYXJ5c0BmcmVlYnNkLm9yZz6IZgQTEQIAJgUCQwlbUQIbAwUJ A8JnAAYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEPpS5kP6pIrVGPkAn0i58Ikn S9M9e7cMI9Fis6lXDoAxAJ9eRxZEgPn3aQ4DZ2ObnuKbKSqcw7kCDQRDCVtWEAgA 7jU7l7ssKXwc+/ynNfiLAm9nvCY4jMw+CK6hwhtuOmrgFH14jeEY8wRVBrOUkVi9 Y13Z3qkTk5DD4iX9f25iK8PJELU5XJWStuX64hIEyqowRZ5KkvsdydHjQ1x2koS5 oTW5kD2nWChnBKI7iWPgRnFnfthrXE83ZY1sV+/OBRZH1ZS5KVxOzClcoTiTE5Q0 Q4Py1vlS/Bw95Nhejef7gSf6fN+iV2DQn8KDF81+MIj1jTWt5LDa80G+T5yGWeuz asAZVzBfPEHbWbVmRjT9Ajmump1D/0gUvxSr0fpnVfPtEFJ/MbLdcV1kyTtI9YLm EWnov/J31bGCDlhGjYfaLwADBwf/TBu+b48oClOPFJznnNGVVJUdD528hfVor4Wy 3ph3KXSfaysOmG1xo+nQ3JpdzbC3nXgfVGM2wGvFEgq7ogBZ9YZNzwSP0vseJlwn oXNKvKKDdCyVJC6Xi0Pd6L4beJRTjxf0LPQUjYdQbwrk2RqHXZ/RUapYjlfOWS2l 4ZqHiMoO7ZIAj/bdBKxySu8qVs3zmu59SE+ZQgxSXwxw2mF09XWOLgXsKTfhXlkl ZyKhjcSlVfjy4SXiXy2zFCh9+T0eiCeEzz5kS0QkA3npOooIFftI2q0IKbHOExSA YwOocuVEW7eLzeBfCoDa0SoapeXcjyF7KbiDwQ8xu9gEIUkpXYhPBBgRAgAPBQJD CVtWAhsMBQkDwmcAAAoJEPpS5kP6pIrV3wIAniAehy9Ttb00FbjcevJetKN5PWe9 AJ9XhpsYKAyHxoZLFzGdR3EGBJNAbQ== =EQll -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/6624859E 2012-11-18 Key fingerprint = 1CA5 445E 7ABD BC21 AEC0 7B89 47D7 4EFF 6624 859E uid Yoshihiro TAKAHASHI <[email protected]> uid Yoshihiro TAKAHASHI <[email protected]> uid Yoshihiro TAKAHASHI <[email protected]> sub 4096R/362726EA 2012-11-18
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBFCoqBgBEADvAhhsueXLy9p5o64s9mJurSLsMqeGPVi5HJHG4TezSFdYbcnM kb182B/1L7Fx8lAU8c63g2x24n5xCcqZtXD/sgwNrceIaqJl1zh0TQIUw+omZoIs ZR7Zd+KiYBo1TuypXGnjs+S/bRX14gbdfzdUH6wp0RGdvjjXW6n8n1lkDwgGNVZm iz0nAoMqMLlSqaue8tECVG/JFRxQVA/b7lXqJPO/LGdLdqjzfiwHq9FoSveTU5Tw tYicKlMW8PInDkG/kH++MjVXQL+ALhL2Uuf2hw1RLvQE99qcMaqc/QjdFzb6Dhcn 8iqWfgs6ZuL2ftB6vCe/hSTstPh55HybnJkWM4FTm5UBFxFpvMK+xulu/hLbUTjd jQ7mT7AHOsD4uCGOcppVI8r4cU1jHj9+SI/Z51gE7Ma1h5t4NxqlLUJWvLBRMuYW B0/uKMzxkwaSgXKLdtP9uBLh34whhOyOh8jqBzz4UWmLTFNFJTjbYYCMzvcNeelA lhUrmraRAbdYXRFcqTruLeXXWJxfUf/uJjqqK209u9QhKZWLPupD8PVJge6ywir1 Hh9R8prmAjh2O7dEkUfHiGCI7DEeHnzyxP90wzw0IyzUbjKw+53kmBIi0ZtoA0+s 4CUipFaWRFHxck2jl/zwQQOyDgdbA4l/2CctfBALstR5W9TgutCjf3JfOQARAQAB tCVZb3NoaWhpcm8gVEFLQUhBU0hJIDxueWFuQGZ1cmlydS5vcmc+iQI7BBMBAgAl AhsDBgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAUCUKt6/wIZAQAKCRBH107/ZiSF nojtD/9/zby5aUYThgdliz2sU5gx7J6tC+XCVJpAQ9ZRzkWHiZ1d8gvVFd9LDyxJ 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<[email protected]>
pub 2048R/C016D977 2010-04-08 Key fingerprint = 6AD2 BA99 8E3A 8DA6 DFC1 53CF DBD0 6001 C016 D977 uid Sahil Tandon <[email protected]> uid Sahil Tandon <[email protected]> sub 2048R/F7776FBC 2010-04-08
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEu9UIUBCADIzpO4fbzj8VTUxcUiw0+H8JhZeU7ItggiSPf2KYJ3LHsfM1Ch BCewETgOM2LCAWkH+fwZkqdkl3NqIuE/9vv9gpoTkW7ezlnKNFhSqoFDjOnt+8fx KUo0Qb7l7HuctYBPx0FXwWNuYn2V97di1Ef3l5wRzQklwiJL3L9+Z+2AiZ3x62Gl H/88oeR8NeVSD5IvpcLQ9y8ksyZ9jw28YcnAKgUcOJwBX6/HOJoWM2QxwJ042dCp KG7nFE6SOsl0Ll8+ZxrHlPtPDUMSjuC7Fy1l3K2ruA4cpCf4K28N0kKwVDIIW0pn /V279skrDvkYkNnSbqSazshAifHWmEWVQFkTABEBAAG0IFNhaGlsIFRhbmRvbiA8 c2FoaWxARnJlZUJTRC5vcmc+iQE2BBMBAgAgBQJLvVCFAhsDBgsJCAcDAgQVAggD BBYCAwECHgECF4AACgkQ29BgAcAW2XfhJQgAxhM07wUXZoxGt1+xNiLwdfmM/ipV l/vHLs4G0uu89Vej3mw3dXq74VGNdepWTp9F+CnmvF75QYyuT4rrYk90OVlTV+Nk PvTmxL5G8EzlO4Tb85ipGEdm/tKydP5qrjboCGijyrBBrZXarCT9YsJXYivyThE+ CLQNSSF6ZC7k78izDA6J6gn91psVru9q39UL4TAop0+PRwQWwUc3P1LMw2sb+GpV er9BtfDD8uaEcO9atazPBp1tv0OTrlFB36DUtJGKXjAErlx8jxsQWsP0s+ypHohs 0TEovHkx2g+XR5yr7djMqqV+ffJHADHyccBRhvQajwk8lKrBhAY/6pOxWbQfU2Fo aWwgVGFuZG9uIDxzYWhpbEB0YW5kb24ubmV0PokBNgQTAQIAIAUCS71SowIbAwYL CQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJENvQYAHAFtl3LnwIAJsO+cEo1+2JJekC lTvgOF2dUf46xwU9x7c5AbeVUSgBpSIctPQgO8ILs0u3VpN3CWx/tfAw2R+Z9s0c 8MgIERuKAMwr3Vfua/KN8qwD77/GCDylbndnxgd1cTJhvUArYJCm+ChN7wAcFXt4 Bs6jJ/gSEtdT+Yk34ygOq0aRRTl5uXaKoSzZ9KVcf/57dgmVSD3JxnzbXJF+6Hv5 FRIUZI6L+pbv4vf3nv0lvoR9ykuA8FgfDc5TPGX2eXFDECcKtME6qfxkM0l2aGHI gcEQyUoiOQV299Kj4xw9i+mQTWf4S+qOyBsJYJGe8tbGJNm8c0iSoXG9hUz88Zak HpD8VI65AQ0ES71QhQEIANV6IEZPecqdnNEykNoCOitjHjvHAOJB3HZBBPaNKO6n TAMntmsgvpnC+mv0GYYzDpGtQ+nfpOQkHpaOrs9K7b5JA7MABnursTn91p/sveRb en0g7IWjnddwVyy8G51QEd/0Pa76yjsOmdQ0EE5gSarBCQwpmV0mBSgaJ2xUIu1F +wcd2I6g5ii30B5TNd60J81USoTTYCdcYtus5ZwPkBew1FD4CZNhstWka6iSKBpb falSp8ZAZvEuOEA+WSf4OYVC3nQb18ULnv1DfkKUukxRdQg+OSWkwIJbyRbixiGZ KMTBM2xiiay8sjXupmEzruk7Fj/xK9aPrksgf1LTq3kAEQEAAYkBHwQYAQIACQUC S71QhQIbDAAKCRDb0GABwBbZd0FYB/4jYDlkWSPEsUSWT3kxHoxKukBtPvpnin/p Zq/ISHN/tijiSZ9jMjn5/2AN/C8IGcUqKR7iOFd8J035ZA2qGPTTrIIwYQ62No5U 1RjM/OZPOL4jy6MWyvq44VOW46obr5REsZ3Zhf9yLFIjGDSGqAvWuiy3EMve99Tu s9CDZBaZ2pXLiQC7Zg8LNatfdrSra/F+lXYKdFi2ddNRsTC2wR3fTnGJjL+fOM8r zUwkMqiqxG28TUDiyuFl0wyZIV8KJC8+wfSKLuySH337iSSzPWBKROiOtFfE2j4Q f7QcTMOmDn31HgY/JpcmnsChPtGs5W8Ao9Dp3d6tlzA6iQSZ6iRQ =jPKa -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/67F58F29 2009-05-17 Key fingerprint = 6940 B575 FC4A FA26 C094 279A 4B9B 6326 67F5 8F29 uid TAKATSU Tomonari <[email protected]> sub 2048g/18B112CD 2009-05-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEoPodURBACCCL74hQbB00H/yUtv9No6sBynaWyH/blLogfrVbNL+86XIKDz yricgZ6/GDT4tbpaxs+o0wPdI0SrvvZuvvLfiV4ZxiCa8TNJF5/4GEzjKE89Pmtr DMK/i4RCzhRfs+PfzQdTRA7aQ77mds/tYGJYsqk3m1bWwOGggMti4TBk4wCg21tx RTopEa+HVDn1NTLgsAs9a/0D/3lvX6trmF07ENwCp4VGzBRTAZUAGgXziQ2zdjVD WcIWPO9PLxM1C1Crifbh5IOFoCsrUZeEsuLalzEVWZ2O4NqLRiRfuSD4ku6Rnd/k DBwkHiDy03JfGybBNEKUGvhXhhu53uij6ZXxNW9xR0KclDmrBxxEyj/Y/GYMte3b gV0SA/97szSEf8LmQmUD1sd+VHDBaJ9QUe5xNEJ9+8ZfCsVh0zamLvrAOLnZY0mU hPr61esTetdjDv1UAbn/OPTMfp4oY6/4Xa59APshxuK6urXaKExwWrvio4OYTHq5 N0Bq73HwZV1beY+yP8wRRI4AzPoeHa+vIOhfIIJO++v5u9Hrp7QjVEFLQVRTVSBU b21vbmFyaSA8dG90YUBGcmVlQlNELm9yZz6IYAQTEQIAIAUCSg+h1QIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJEEubYyZn9Y8pRqYAoIpC8dx4p/BaKVxueFll Jm/w5qD5AKCC5KSc0zMxM0Iq3FigA/tDjiyj9LkCDQRKD6HVEAgAqVPZwxV9bFbv PU20xAQ6HA8YxPp6QYUbb+r8AoRmqPNLoDqfNglhMimj5nPEFLvBgDHQaPQcqcja 5Qiz7j3I8xFrBbkCrx8xp4XYAQB8An4iy8np4Ys/YjvDjittYUn8CywN4rVGIppz S8BDY9Ufjy6v9iFERXGEGcW3x5gFA3S1hGJZ308QhlWMw6OachMadUnAXcoO30fe q8eITtyJZN2MESq7G5TtaywDHz3Gg1K7m68bPeQaeAHwkQBwC/0xvDtJ4uyq/Yp6 sQrlWJN50vaTnSAQ9q+b0tHQMVxQnxU0dVYgtE50jpPHApbc21Krc6H7a8VhNu9R JIanzAEUEwADBggAgJ1JY8XGrOVeYJ9F6S7F6pZKxyj/pYYBYA5dAIOm1df+cpvu Knen7UTOb6CgkZqGlX0BbYwYsfzr3B4oS0P5ScqE5gNVeWrCItZrZV6fuA1ZGnNn bvnEZ3xCZsb49CtfUcMLqNp1KGVGg1iVvh5YA7mtBmp6W12sq5YM4jx20ph+AHrs 8/eIts+MMJ70QDI+GoXtwgS5IfFQK4x62K8W0RAmp77/qvRE4hrdsL55UYwD1zuY qzwfQVNaPNUUiVDEyL6K3K5GYfkZ5zPz8iJ6sWtsuLEyG4CSWLwkAtJj0Xuc71vN W/gkbM4ZpQgqQGQDZvN44Sj/prcJlnbyh26ajohJBBgRAgAJBQJKD6HVAhsMAAoJ EEubYyZn9Y8p4EkAoI+bYGMuNB+i74EdgubvW/fTinfPAKDGBmZorrcBfYrnictP T1jCoBbEow== =0Wta -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 3072R/5112336F 2010-04-09 Key fingerprint = 8234 9A78 E7C0 B807 0B59 80FF BA4D 1D95 5112 336F uid Romain Tartière <[email protected]> uid Romain Tartière (FreeBSD) <[email protected]> sub 3072R/C1B2B656 2010-04-09 sub 3072R/8F8125F4 2010-04-09
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGNBEu/ZS8BDADJmVznn4GFY+QaW2+bVErjMm7tNhbwZ5oP4q1eAqiIXM7td/2h adGXRfIS8QvswU22+Y2AoSoe61kAsBnZWZ81eIbFrJDkz092S3s5dSBs4gj1ImKa eRnJmb8pj9Bb/z++pwvyGJWowRiisxLy/9FBD0gNLDCVGuAeCMf+lHkc0bvwIdFb xyndAni0o25LxZ1z4wbSGAr+zQ3LniOZvn+ESc9fapIeue387sxWdURfEMHSZCE6 OjHfj4Jr7Wol1xafJ7zaGQ0dhn31B3/WGx+m0vhPBdpb1j9IUQC4kzsh+m/bWX7p +9TETcefIruLmkOzbgVnQzLyvTsjFoM6UNG+KMrpp7nMDmfrMkmVSnPns4GS7dB1 WKFDL0hn53Fa6LTVvy3fnlIpzhPBOOfQVDrEADlc81JrVAW3sjqXMvFmNym2uAEy zfAi90auI9gUhaGHqBHRaTv0XfDfg38lflRjE+OZq5tkOf5br8DwxK2c/+ryBElX Fdvwt6GMDaGCjPcAEQEAAbQmUm9tYWluIFRhcnRpw6hyZSA8cm9tYWluQGJsb2dy ZWVuLm9yZz6JAbsEEwECACUCGwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheABQJL v2ZXAhkBAAoJELpNHZVREjNvKhoL/RzzpVCNZWi7WEsOm9iM0KXRnGbsQ/OBKiNk VDt9PpBHNAvyyeOcmlgBqysmSXlElir1hTqcj+Hlpx1rGv2+7M9faaIQGOcA87oV pDJDv0rlqlSdSStIKNkMs2Zh1lhUyB5NJCipYJJ2/ZjYVYrEp+vYQQBW1aKZPyXg byp7ruikcU/ulHD07afqby59dYTHHfXqVTfhRmh3d+QL015TyY1kdZmrLUXDDgEo Qa5sT6MR5HMpagrg6KyytgLB7KoE7ohGdJAuJLX2me2/tKJw3HzSpPk4PRahSEh+ 3pn8S1DAjKvC7q23gaYbzfziid9QzJI5wLLPoint4elhDT3LKebU+ado3V0HGEOO FL2XxoowP7qviufUfYg8SVtIMk+KMdPduj9fNVVHIUqus9pWgMhyomRjXfX/UbJj BbaLArJp5Pbil2bRNXgKAJt4tBctwL4xpEOBcotBbhafP5gFSXf7vfKcM5U6/L7a 9/TVD6xgWiAu7bzpDwm6hNVz0WPlX4hGBBARAgAGBQJLv2wiAAoJENjpoz//Vv9D D8oAnj3Pw9kZ9kwEi7VQQL8TwO2Qks0oAJ9dznX6xi8TZeszszNBagTSjyEQkrQv Um9tYWluIFRhcnRpw6hyZSAoRnJlZUJTRCkgPHJvbWFpbkBGcmVlQlNELm9yZz6J AbgEEwECACIFAku/ZlACGwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJELpN HZVREjNvVRoMAKc80hlxuH+aDERjLg0ashDlHRy3+wbIkDnG9mVFiZ+iElsxKNvA 7vxxhW/DPdMFMXXb056XfyRp4Y3ST2uWlws2TxgPRFtH1ddimYgyGWwOqAp4KUpB Tju4mL9wZC13me2F2V93vOX2VoyLCJMvW81GwEBlTtXD39q9heuKmKwOdJiFpod9 5UPS/Pirs31STd6yAvSwiYHzAf9+AJqvS1xqbqZSUgi5DfgJbkamQtXZngDrNLyF pv4KjT3HMZptsvrVC9BPq6Qva5DIeJiWV8r6uP/K9kwoQNxcEMSNtXimHVK01C4j aVRBoCDY269ts7E37VgWfrooVn25xnzIvyXOSH7+cLqw8Bl9JUss+rXQe5v7fCmf jbH/1OnQf3q0Y3vaf0AlY69d+E14VZ5dOZfRWZO1sbslUX+NkGi+SvDVB/HzLLo2 f46p/ceX7bpmML3WoUmyiXYuBR7+yq34/o9S4XhRJH8M43/B/7pfTt6g9K9966iJ bzQXflsuZnXibohGBBARAgAGBQJLv2wxAAoJENjpoz//Vv9DmuAAn3hysmbrg3yW 2Yz5oFA1R7CeQqcOAJ4stWRNYGLons/lPJWOid/UD3bsn7kBjQRLv2UvAQwApJpj R4g/Bmhjq9iUi6nD4aEyv/7fZNIdSdz3GhKhjLG4cyyzmlBdjW/cgiEkBqfckDnd skdYloPj1p1u/R3oG5uhj8jfLTLY/Vs15nkSJUt0D0GG70ZLNETUdCxcEpcgag6x zr1+bc4AXIehrMZKBESXYMsBMXeXH7CYDesFJ0srGdDlUDbzHJZXRA3b++i8ZWTn /zN4MmHigzVwlyaNXOUHQwf/XN7Hkm2L+ogmEBGJgmwC6gsV8TIlMBhR9jRZ2VfS 3F0uLvaUoBL3e4CaA4lEVp7NsP4L8xwXokmUQYmgR5gBh5vWqJ6fOQAak6RRcgYq aGB5BNVJgczZ/y+Dbc/SYrZRTR5AZ3C7yXWU8yB1iGwI6n6luGYdfTtO/yHY2tPK pJ5uGyZQMtyLKm9FIzF3CC8dby4SBA2lIKvnJetnHcUztdo0m4mmXpLF2/UIuwQO jsDGExOpqfdLMqLMKfxvOv+1+Ho2wEUp5A5rddkawe71DjWjPNsMMzCwe+2pABEB AAGJAZ8EGAECAAkFAku/ZS8CGwwACgkQuk0dlVESM2/LEAv/UOe7gYPimHpd+vnn QTMKrx4PNbC7N/RlMY1i4Kr6e3TZ8CKPe3yh14MkyTeTxQjoXlE9/r1n2iaVWY1F vrj22MR4MO04rUJWvWDze3FFZzLhhelUw5wTAJPLm/cC9TkKW8+VpXc62TN05FKD T+1arVlp5ZbkuI09W/LhJU4NuYVpRcTdmipOcK+k+DAShkFAU3o79JLqqQ6aBbXN 2wtTGLhTGVuYVL1UzpiFwfUP0eHJjXWvx3r7OXyRYWStxwHo4MgVCDFahGrUEUxt lLe3bWCbBbdILO5dTvo1hYPDY6togf6jOwZ2i9G2CyB6blM3U7+eRIXYiIaABMr7 ibxqz9F2ZmzgiA64LRCBcvnxmJu2ZDUzjKh4URTFWMMw1Cw062zLVIJk0Rxry34l HGPv0/X8ebLUY6sFN08qu4TyjG+lHfrXZTcCOQ7JA//dSx/8cGmaQo4muEYJal2B 9PEvbrYgcdpGrwZ+VOmS2O4j/RvZJdJHUX8C0FXrlC6Ng3CnuQGNBEu/ZY8BDADe UZmEJuCavuK6buMHgzw6u9BdCpQMuDRpM+3T7EIthnkYz9CjXpYNqiG4z407YKSZ 6hpBnuN22a67wiZKV1gsSzhVmk12hmOm3f4MZOcpLQfjo0jXwoTevuEvGiN3aBbG lUDRW5/qrAf5duGBiW0/Qruus9Kiedn294Z7KkuijhESR9RXGXs/EegNr/vsGxzX cfpJBhO76ZYt8xpb2tNDPGIqik/8gV5T5QjlDtS1nzav4BgPAeVnXURFx0PSCNfQ Sn25Y12ZM9iltHFfTECNcXDCJEuMQ61o34JZI7zw8wTxRYxhCc9QkZSj2Cre3+/J R7RGpuZ9m7Ftu8og+XetsCkEvToecF/9I19Fc3Lw+vv7Vq+hW7nKJuWgsAlHMnOL Pkv7IHDmV/PIddvfBrtI4ltPXJLp65HpYkG7xbdT+8KwTayVu2d/PHR1rqb3WZ6G LAORw9kSkxKRBQYyoUHE8YntGb497GxgF3xM1/+o2PuOoBE2i02C6YXx1MktbxkA EQEAAYkBnwQYAQIACQUCS79ljwIbIAAKCRC6TR2VURIzb2ITDACgjTjkS8PrSULW hZnRYhRG0j68jyYnCaIpvrpjNmoyBsk/9fHGJ7J3kLTThQM7mBbRtzJh1eysQaZ4 JFupPYdkYnVDfnNfbzxQ2YH7nA7MakCatX6bavIALxLfdrN5+CzcOVJZVlWMOYIs XHsj8+s1xQ2qFc5Ulc2ZzqLWzcp95owuRnPM8h+1p/2md/nYqpWvrvUtAfNstV3q Wu05dwdd77vTbHHZtN01oTKh1m99vNRMD9c4MGGMij5BuPELfdap/sip00tyfk1E ZH1H+FBEebQ8hXEBm9DvuWSODRps6JvcQoYd6lNn0IgXnYDwQ7sJ5Mz6XfRjJVTH aO4SQiU8z4/y/YvOp2ASCM8dGxWzflFMQXs4Px/5ZFxm3Mo1MKC4PXDlTOTLu7jS Le1th0r5YhRtws9dpmcly2aRohF/7WcX8oGgHFlrLdrVX4SQda8pTny2MU02+bt0 D0I9xnspW9gc/oMcZf1G8kE/+iG0SeMnRQzEMxb6R/Q7ZPsT5cc= =AUXU -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/AA7395A1 2009-10-28 Key fingerprint = B319 6AAF 0016 4308 6D93 E652 3C5F 21A2 AA73 95A1 uid Sylvio Cesar Teixeira (My key) <[email protected]> sub 2048R/F758F556 2009-10-28
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEroxHYBCAD8d4HA1tGibcHpjyOTeiQ7+yclqvB8bzWazJf1OeHwHcY+Rt46 gVxADP5QPLhMaiw4nYNr+bSg+RDIOG3bmxqDZpmw38508NWd/W8XjgQSV/PhnjU0 pfrvhXfmGG/f6C5D5D+IRJ5dffW65YuDXtsIPTOuBCwmq9NSRK0/w4VZBL1+ihDi oDhAWnkxfaFXN5luY98o1GVxQNpd/ZKjb+lsvAwsoXDSjn3R2bGZbA2LBIFh1Y2f KHa1vL4p5ZaNp0hnHyGW0mxC+SWse7zA3c500Erbm5d5I0HUgCEGNdE6tEryklFT zr4HfPxclml+QnlCDVZDSAf3+ExKfNLlSwjdABEBAAG0M1N5bHZpbyBDZXNhciBU ZWl4ZWlyYSAoTXkga2V5KSA8c3lsdmlvQEZyZWVCU0Qub3JnPokBOAQTAQIAIgUC SujEdgIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQPF8hoqpzlaFKYQgA mO/vudKdpx8jYDFmCOIE0OorvjqXNue+0VowONs2qSWiGwsvwh7YDUg8ZKEiBZHZ KV29T32y0JIQJ8tKloCF+XS3IktqWA0hlXqnN+Kmw3H0+MmzjgzCPhfTxG8jUUns r3qnYrFQDLzQXr64rUi0o6SQsxcsyb3m3VZX/NWXLyZm3RlCOfQzIRHWKGsP7Q5+ sMcLA/obV+C2cEOlsrT1EQWw6pBdhoPr55ssNG9Gs1oZtPhepoKjTq4X3VRIkm5n LEcR5WUOe9qOJxxLWSWI2lWl7KAMuGt7KmOpbSYZNWi6Z4ASm2U8KhtFIDmQINzJ Th4Qkph0TDAr1mhKSaRVZbkBDQRK6MR2AQgApzi1h0Oy/HVxC82JSxsfcQKNgQbF 6H9d3gkyb57koVVP52jBhcXx4vpce7oSpyWkm/uH6ZGZi5qkjSBliy1SdE+daymV 8FEh9KQCMPvM3BArrDlbHUzpgRDwxJ5E25FfY/ggFF6/uzY0vLsAtLdyWowOh5ZM Dt0sKXsAMzBRaZ8VsWeBfxJJpecRLa6igK7w0+oehWQ7v9iC+XqBpfXR2S4pxTi5 bshXeEfezqkut0wg9UBQdOZwMdzV3kw2Zis/qvi6jte19FrH3JVe3jhuoZCVKxec aTL2nawtQHqCN+7MhTog3ap+ZhghWr7NK3wlPWYmk0fDCRLW2bzh7e8OawARAQAB iQEfBBgBAgAJBQJK6MR2AhsMAAoJEDxfIaKqc5WhBt4H/ArRP3bzyv5ejeCZ25fr OCR7Z1vwdFFWvWqEAPO70x9XolGZMEhuF7OVjZpIXFgjDPBAoN5nxn4A3SJqMcXg zDsfqOJC4N2JHwWluX4D/CZ6caWOfI0p0sM7hYyXaoAEouknPO97IvermEvmiqnO gpcqUHbDL9DRKBnMyqDsSE3S83kEyuwD86x+UXJNCJk6awcUTWoETg6tVrpJ6Jma ccMPVsn4QucbRYyY2e9tIvJ1YbcqZH2munFGa4UXeY5+UemX88tg0rHHIYoN1B0d qMSWsm6YwNRBuyFC4f6RkK5x3FQExsTd36UaDkxMbimkyAf2y9uMmHf49+anaTUb QaI= =7/gk -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/F0808380 2012-11-19 [expires: 2014-11-19] Key fingerprint = BAEC BFED 67D8 7529 5B53 C636 C922 F9F4 F080 8380 uid Ion-Mihai "IOnut" Tetcu <[email protected]> sub 4096R/54B3FFA0 2012-11-19 [expires: 2014-11-19]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBFCqY88BEADC4PsjeErkHL2ZzVDqQ1pWaQ3GMcqt43lws6RvSlMG8tBAEyb/ tJlZEoEmLpPirSPk0exFQtscONTtNKVnLzjt4UXJX/tKtKE51EID2TZ+4fPPZeUn 8B76Pqm69m0XPQQpcuQ9aykQ1wTXljFk8FFjh7D0XAcqezo5o++NEcluqJ69FJyI zwfCvzG7IdO+y5TkIgfeauqeYw/53lMv1KCIOkYfxNMCPbTO4+grfKOOL4WLJeTu PDjjd3BpgEFmbgJAmyuxJsVNWSWmDlquS78qrdNXbMSudb6jBZWP4fgK7ycQnYbE Lp27KORrUwrwLdthz/5ZBTo6hGehs/d5aGor7F+12Lwl3Vp0eHsEhklP3cmel+20 i3RrOsuc8ijrkbLT6V/A3urz0t/qV4ijs1lYMLlq++YMuG4AZ08QBWiWGAKn4ust 3DD/XFfogYiON7Mm4JwuGrQi8TuJXDNjZ6J9bdZPIwD9rmad6XjlcObF3BgZz9sN w92CDxwnlK+Jvex74c3tau2xPjGTPFe+Ld56cs1TcYNp7utg0DFe9FrZ4Cx3FpLU YDLQLHRbf4pbNz5KTK7swInkzsDUc4ZwPEnpSYiK0cCb0yGjx6P4nslQjS4zEeN3 OeKbYIiQx7saZvGjmbcQ7A+wh6Qxg1DAoZa4HQ2hMtEWRLDJ6U8rBGNeNwARAQAB tCxJb24tTWloYWkgIklPbnV0IiBUZXRjdSA8aXRldGN1QEZyZWVCU0Qub3JnPokC PgQTAQIAKAUCUKpjzwIbLwUJA8JnAAYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AA CgkQySL59PCAg4DWkBAAiuYdL+cwFcsfUPXvNjNTURh91AnCJiU7MPev9nu6nqyk YWowa171FTcWZAm2JPvKqGEpqZr2sJtGDA1jgrtKpapN2u3S4E5ANDcMQSDjAdJ6 XzmWhGW/62pZNtvZAkvxwsWNcXeRxLcTFZmPXKkNBMkFx/Q2Ww/m9nR6qtMkrOaE llVd92wXOviCrMLtnRsPmMSrZACM/lVTC2L+c+QUfggyAG/KQfiuuttmFqGnqKr6 Ym3qYVkVWMiPrbauC5aHV0I4RmpaEaYBkxx85U+2sV5pAQZjeDiyqjuMirlgVMsF NcQ9jjjbHSVTHpFbvo6eAYritts0mYKnrqrb0pBuC9C5b3FQIIGSy0z0dPXz3d0q VFIIP7DMOJLr/WWzjRqOobQ7nH3P2nvQiZc9TnkgFPG5hKMBWAqaM5gZS7HJC10S PUvTL2P3f2UZJ+9poHB9O/AewUZCt/gmXa6GoQEUCZgQLGCu7YhtIkKf8duDaIPw 6myVMU8tiwz6dYo635rUBA21amjcMR3SF6LgipF9+8Ul9fISrHLjNan3Yz4PCgc7 mIc71wW2LYGvAq+cw2NBkgkxDPFj97CUkXljjdy/zsbnR19mKDwM0MTiAGmFs3BV bkF1KTlnw/tGj2T7mntY6+hNei/kjOgbpX5h7VArR8bgLouD5ce3p/tVl1DJxCu5 Ag0EUKpjzwEQAKefY+dwYoax3I9GT+xcd86k0rExqXFJGEDM74UeQ9C02aegdSsP qB89WNW5UWS0RifjfBb+9gyc9hVCrrZV2GEeACRJDitoUhMa/sM0R5n41w3poBqw sf6PBkzu0UGs0JURFDGsWNV32wdD5n0swqEplWpAsLkT1GNeIxI0h9rA+h7jInTK u6yvoUxKu2fTwEjQQuPi7iJ3tooaBgfGs3YDpOgxqiiK81X1gSJVSONFawtTglwI xV4cuaug3PeYj7/dKV4Z/PRzzUd/KsXWPn2P95sr/7lVimYT6wAZfmUuCE7qQPsZ HQgNaRBlJ6p5HjbP1B0aZ3hVvlkn9su0Vo3MinZkaPjwbRu90DKxEryYQcrjjWMz +pXFUfi0Qzd1E9/b6vT87cHAOh/WhLN5oBYQl2aZUuVTwtGtJpLSOeKXk8f7QRHC wx0OO81S/Q1hkHRgUSzuNdsbfSnk/Jum8GED9E9kGPOS/PFJq+Ut2/JGMvGhkEWx s3UWFXB3hP+hFutqeq1EESeOFKBvTirWaKeLxPZnDI2zUumCZQDtZLrZL0q9f92S 3w/mJr2jWJhfiFnZDewNOyucOrAzEDEiniRWIlY++HLUwxPTSKQ9cyU+8IVUkpwV n3DhJ86h53YY6XKxhD+0fKLLuhcu5phVc1oBpy2p96AtIVtBZQjn5Uu5ABEBAAGJ BEQEGAECAA8FAlCqY88CGy4FCQPCZwACKQkQySL59PCAg4DBXSAEGQECAAYFAlCq Y88ACgkQ5YhbO1Sz/6BJMQ/+ID8KXvH1tK4Ut93AL6fFAXVAHmQugiebUKQ5gp62 p3L1+tLSm4ixC9iDqWdCpjJ+FaHWKpMTs7AOheRsaudyOtkdiIcMLvauoONxbWId Nwr/5sMmI+tJCdqUfhxPtr7dK7joUSEoVhHptiDUhUg6XmGz5skI56AWUGHqvH7e 1x/XtfA5cykUkmBY+ngKa73I3qAcNNKYcaoIojo9IsZJqKeuGsEwM5LvLLzjUhjP UgFHYMgUaG88zul+Mc6iNzGzEx/08XOdravQ094NPjVhUQz84crQ1K/xskpubddu qPNtfeTAwXNkDM83jACTZ+Rl73yUOuUaLMbMZIwYbIlOfacY+E5JBgFEtBIxQ0oL moyH57RpfOKISjVSTuksT7PloORmHhbPNfiCFtcljGMGKxCiqSpW5VVmLt7BR5F4 QSLR0F2GkCh1dibra4W8wBBJh/UKIO37n3iDFmuGXd7bmJbr+wHtTSMUwmrYrz9+ oRjwjWwLF2IOTykFv+MejfsDm7vsRalXRsapeK2GHMZuCXTY4BLTNLdCYHjSzoLV Pr75Ux/qmRUTXUNrdGFA0NsPSVWaP2Wq67w0cbSTQllMhiq64Cps9+WuFq4moyD4 jK32oPMWcuBn47UBTsIu5oQine+AxZtrMxmryGpG7N8bo0whJ6hoUedktAgB6jVs kNbopQ//e2NgZj6EFuM4x4wmeORGP9i6wKHnIC0aHwAakUPBij5MKsE+euyXn/ha eJHSfTmqsdfzE5AIapxTKqnxLM4nQxq9n7ZXd6lTedVIXlpZX9lo1Q1b055hPfcQ JNFF/9VZsdlzkFzlGjk8eOwxV2gL8epXN88ZSdwaNQFqQJCP908cDLfPWWGcb4Ua Mu1rKXgs/IVkbLHVg6h7juBEwjFUYH32M2csxaKPhGqj5/WYG0kgKceaIN+KSFqM bax6Lk9jq2SwmFP4SY3TlsBwek5wfT207p/UyuZNYclmkqfTW6UwdT3w/r8zNASy nLjYUxb1hH7ief/i4OV8NYs/Jtlnp5phhIcmlTXrqENEP7QGucEpPD3Rm2OJI9Mu uFrTZ7sOE+olIUzc7GPDziFHg03YsznF/+Kdm+Wm4qgSw3zng6/Vpfs0h8POTMB+ Z7I37sCWNGyN7D+AzHNioJY+YUphYV1blPl2APQzSDly9JgCpYuXzjWtSDSulFaC ShcRS2prskb+Q0koUOXm4QgoohWEgxlnfLFlwK3XGSRWVI4YPDUQetwTIk++vJL/ U3lrm+pbtqjjHAtJuL3gQDcHeZ3TpEjAVgeRXcXcoIlENf7rpHYH8E0rB/WdJutb ag1HZ2aiS78/akwbfCJ/nsf3OL4r9kdUBc/XT0pF37wMyeK97NY= =o4Z4 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024R/3FC71479 1995-09-08 Mikhail Teterin <[email protected]> Key fingerprint = 5F 15 EA 78 A5 40 6A 0F 14 D7 D9 EA 6E 2B DA A4
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQCNAzBPh/0AAAEEAKiF0rNVbbuQue8Mo+knlGKtZJXWkLOhmdzE+FPxTSRv3TOS OHOfFbEbTlcuplvYv1US6o4liAyyx6vGLGa7ZW0zLFAtTOJTfwW3GPmcMTieOIK3 wwzJtjH+wi7VeXIQCU/mOcLC9A8QaLqhJ86e3m9FODSFMIluSoucrgI/xxR5AAUR tC1NaWtoYWlsIFRldGVyaW4gPG1pQGFsZGFuLnN0YXI4OS5nYWxzdGFyLmNvbT6J AJUDBRAwT4kMH2ldntvsCqUBAVAcA/4x53VCfOx5Bm+BtneQNEvHgV8aqWW0tM4r 31KtsSjMwuHF3kl7PJtCfVk4OpRvog4u9V5G7gtUhUIOi/Qfuia2YHvvxIh3sx7Z Gg22e4FxNzNob3qV+YiPOr+Aa6EoYfHB45eHSLFXryCBS60a0CfZies+CSzcHBy9 /Zu51dCtnQ== =f57V -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/357D65FB 2002-05-14 Gordon Tetlow <[email protected]> Key fingerprint = 34EF AD12 10AF 560E C3AE CE55 46ED ADF4 357D 65FB uid Gordon Tetlow <[email protected]> sub 1024g/243694AB 2002-05-14
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.7 (FreeBSD) mQGiBDzhleARBACRg1KdGeSzgkTXaRoBCqnjTjxoBZR8HzRn2hs1hS3CBJVGfAKQ NOCyKFQWWqYIlKDIEA38767uW3yyKNSnQQI3Ad17ifWp37M1B4wdgGGmEAiyE3Z5 v63120MJgRhejyZph2d2CfAPiLPq2LXy6UIUipuYQl0BICZnL6rDm+QAwwCg164x uMUutYhSdB9/hBLPECwtXeED/iE9eyJVcXvdambHZfcvySg5e5+z7Y8FMWQuhcO0 svBIrhU/gr7S9lkwudOj3LPIffwCUBNerVDGuDUhu7iR0YIRDX6aN+LCkHFXK9x5 ScLHIj0HHpbQLJeCeGAZnPpuIluFjRSaklVERHvio9gR2cOlo+iXRku/SbzPEzA4 BTvYBACCKxLHWNFdyiZLIMsSVn4pJtgUzIfSw/auBALMft03fvXD0cNOm2RfhJj2 Yc5U4k6PBBtoTTAaKVQ+D7CRHBhlg+Ls/aJSk7Dj8XJHdv0w1AkGz/OAJlJIDj9M RRCPyfhTq4nlsbFOrJuTcq5XMxbdd+voohkhgaiz9Lk+KNCQX7QiR29yZG9uIFRl dGxvdyA8Z29yZG9uQEZyZWVCU0Qub3JnPohZBBMRAgAZBQI84ZXgBAsHAwIDFQID AxYCAQIeAQIXgAAKCRBG7a30NX1l+5DrAJ4gSRjBxPBeGI8qjBCAEFlKA8MOawCc Cm2cEju+gP+x2a/op28O02bg7NWIRgQTEQIABgUCPQegzwAKCRAgFTHVhF3+3ahu AJ0S9r2mcQEfQ21ZzacV6sTyJkXtoACfSxld9fOItvrLPh6C52JecXfraCiIRgQT EQIABgUCPQeutAAKCRBdjovp8jga1Je6AJ4hlXGQAixShrEIb5bwTPWNKpQEbQCg 5XcnCDTpR7MIjRHd1Dg1Q9DgpvKIRgQSEQIABgUCPQeyOAAKCRAY9QOAJMJ4Apoj AJ9Dp5QAmcAR6LVlPdE0usEtw2bgwgCg7pXfhaGhtMDvjJOWIardnhtKQ2eIRgQS EQIABgUCPQeyVgAKCRAh+cW892qb9Se9AJ425mHg4dJf88ye13TsQkMAsSgC4QCg jbqcE3gINIe3HJLam4stKTGcknCInAQSAQEABgUCPQeyQgAKCRB8S2dtoA4VY0ow A/9gHpO8ZsTMx17LtBEL0+p2x6Uf7QzWJRilbgVr7/nCiMoj04rdbft27DnQg1pU xu/Lzv32kkDLsWBfwV4bR9efa6Q9N5o+/eJZUuNVypxK1QHCrJ/oG2yeTtvVyixR zXoFGAGiQ8xJplAJ8keY3NKjYHssFogU2GmYc4EIak9HDIicBBIBAQAGBQI9B7JL AAoJENbgof5PvirdwdkEAKM7iNtj5DGZ0yOLFgumLiRr2a9IwAHu+su08Pjb9lj7 oUO/TlMIKf7Y8xG61ydotBL7t4eZFAWyT9ej+UBp9sBh2O5mY6CLeBLnXlka41mP JyiDjK1hhTf2ccrkwrlCSDx19R1RQrjsndaTcb4AA9yZQdoetslI2FNqvXfsvtyO iJwEEwEBAAYFAj0HuzwACgkQtoTxfMEKh015jgQAiZAHy0Ql+xB5zTRTkRziZSt7 uqHwF9KALoUd0UByFJPcqqtv0sWNcYVPu/rAAQFveG9bqi9rDPmxIuuEGl3TAyx+ ZKtXQ5re6E4G0AoJCKOpUAZaRQHak/iJZHgpl1Yyy2dB56kt9xz6Q+rCPS8O3t7e giQzGOF5csFv465gB52IRgQQEQIABgUCPQewBQAKCRC1UrBDdzkF1ujVAKCAJrrj PUzvNvCSuGMNmf9Dyua5AQCfTEJusbNkJKgu7CxHqyzTMvVlQtyIRgQSEQIABgUC PQggAwAKCRDYyjFxW6BSw/5SAJ972HfP7sNl9poX8YGE0T3vN8apBQCg+WiUgSJO ZeYEQMiZKLwAxoMbape0H0dvcmRvbiBUZXRsb3cgPGdvcmRvbnRAZ25mLm9yZz6I XAQTEQIAHAUCPOGhOAIbAwQLBwMCAxUCAwMWAgECHgECF4AACgkQRu2t9DV9ZftV aQCfYIv+czm8hMN3wjxF6sA5D43vrMQAoKRTxRmyjxDnRe4QoAZRRzogt6stiEYE ExECAAYFAj0HoNIACgkQIBUx1YRd/t2B0QCbBG60aRGEgrQzMkpodzJbU5Itys4A oIS56noACXYphdM25tdfKPS+QesfiEYEExECAAYFAj0HrrcACgkQXY6L6fI4GtTj FACgiAuFsZW43/A3A9EATgD8s0tEmoMAoLHpxQUAQkvYlHobnsU2jSEImhDZiEYE EhECAAYFAj0HsjsACgkQGPUDgCTCeALbewCgokMlypquzasL3SExbdbXS27xCwoA ni4XvyoNd3GBePs4fy4yUjKyOTJqiEYEEhECAAYFAj0HslkACgkQIfnFvPdqm/V0 MwCeOBidsDe/z1EzCFK3LJPDkBvQCP4An0UYz4df9J69dxmP2Eqn8JJsdUdIiJwE EgEBAAYFAj0HskUACgkQfEtnbaAOFWNKxgP8CfH/yozXDafD//91tmXwS6x4MSTX stkfOGfOT6dLqla201Z+CDsHayQwfwVzJdcVYU+5Xe8dwb/sK8JjLiwb2ASnnhZx nZLeHZYAi3U0oNscxrPZJ7Qz93KFrNf/No8HrmryU9TUFzhSHKjHyNeBH+TJEOj6 PRLftHPubEkO1q2InAQSAQEABgUCPQeyTgAKCRDW4KH+T74q3YoXA/wIaJzGfsFF d3nlZKK8hfZD89eUSR8swV/Oy6Ctl8qOSk4XWFxtjRRzNS9BM/TYjd7cJBUOQDQK u+wQFMztJdKdmntwoBTrdg7HGMGtKnR5Ppzv2XuGOKuoXy2y3yDgRsZc3iFEweZR Ao42FBFU1wtDCV3+B1X4Gj6CJDMT9R3ItYicBBMBAQAGBQI9B7s/AAoJELaE8XzB CodNgcgD/RYAFt6mLWS+CGSk2MdB4eA1McDDJY3d+On8c672z1BdQjPeYdd/zWHj aqeMoc1j/ctisGogN1HUwujoI+xo4puraFnFiYyJR9lKFK9uMBVw/eRvp+29QYa7 RY/6U/OD7cfUo0BMBS9ZhZHNg6GMPSlJWd87pF8N3mFrwRK1dVOziEYEEBECAAYF Aj0HsAoACgkQtVKwQ3c5BdYl0QCZAQrSvVWxwmwJq4qS4m9FgdWTucoAn2Dea8HQ oOPvLRj9IRh0jdzOWk45iEYEEhECAAYFAj0IIAYACgkQ2MoxcVugUsNSiQCgktJN 6aCAHnusQajUnJ9expOWxYEAn18BPBKs8vdWvTJjNwqI9BAe6WUduQENBDzhleEQ BACPsAZpNNdGXIlKMXJhYOeg/CuPG5dt0Ucaq9YhmmUJw8tmuLL5D839BC79qaSr B9UTcuKdi0Kmaiu0nTas3h6ThDu+nqLpiGAUqkSST8jhJXF7e/X/ggMLatkBIvNs nDf4owUFjzsm9nmb2GPPecWGsyArPkRGCmV+nfEYvhBo+wADBgP/QZ29lUpgOu4b nhgE2LP3641zQHjMqvYrZKnHbmHVYUjZwuV2YUvdFPI21OYWlsAYyid8OUTN9RKS +CcDcHZhS9SS5otQLG9P/aKVh/C9H2mnRU0GbSt8hf0HX+y6nuzPe3iwE9O5rbxe S0c/zhrPuz3ZK0Y3e0Zb+tdd4NpOVxuIRgQYEQIABgUCPOGV4QAKCRBG7a30NX1l +wSEAKCHPJh+3QRUcI1DG53fij95oTDMaQCfU2DJ5U/pKSfJFjFvN7XRpacDZZI= =1nJ4 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/56B0CA08 2004-05-31 Lars Thegler <[email protected]> Key fingerprint = ABAE F98C EA78 1C8D 6FDD CB27 1CA9 5A63 56B0 CA08 uid Lars Thegler <[email protected]> sub 1024g/E8C58EF3 2004-05-31
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<[email protected]>
pub 3072R/3EEAF1EB 2012-05-30 Key fingerprint = F5FB 959F CF1B 6550 054E 2819 A484 BCDB 3EEA F1EB uid Jase Thew (FreeBSD) <[email protected]> uid Jase Thew <[email protected]>
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<[email protected]>
pub 1024D/A887A9B4 2006-11-30 [expires: 2011-11-29] Key fingerprint = F08F 6A12 738F C9DF 51AC 8C62 1E30 7CBE A887 A9B4 uid David Thiel <[email protected]> sub 2048g/B9BD92C5 2006-11-30 [expires: 2011-11-29]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEVueHgRBACBqHSbbyc8BoznmojkguHMrDQtqISv33b9tpIsNSHDgz4Wpoqs MRwMPZpStu/FwULPzRUkceoYFIkyRyBwyIqTAD3uq2nisPR23ffDKRe8Q44Y8ccz sAtc7zPz/XpoI+2tLVGBCZyk9UOuIK1HkrmEjJ8uG2/eqyuckjO39oA/3wCgorer I3uzG/mJG7V0hHaCEkhQVx8D/3/i9YwqVVf2kqfKEGUASik/PXDpoeHfC/v6GFik Ss47TSaiuMOCoxF92m9EcOSoYCHOmdkJ1l+AVAWCZvKHKDM6J20dRr1zNqvR37jf FlmbF5B/MhRcjaSvrOLnZsP1wlz5sRkdAOdHNN/J/mwqkaatkFwtf7XcFMheB2qi 1XvRA/kBi8lvPw7/PGibDIZXBxUmWVHLCU0dtrwKjbHE1HIpMwgjbTFrvh0pjmXh +qjn9VTcduP50Lrd/J3bh6WSgdc16xT2zxSAg9G8nJctDSJVgOJiYFUfLBpPBeLS O5ZN3GHw3TyLnDV/NvaAfzp1GXaGUB4kEuIaiaxxNugT82R3OLQcRGF2aWQgVGhp ZWwgPGx4QEZyZWVCU0Qub3JnPohmBBMRAgAmBQJFbnh4AhsDBQkJZgGABgsJCAcD AgQVAggDBBYCAwECHgECF4AACgkQHjB8vqiHqbTvNQCghqU1WwfsIQgI4bQn94M7 z3PY/ZYAnRPT7soJ0GrlKAMRplxFoRWH1C1TuQINBEVueIUQCAC2nNYNyuKG/uCP l6/GUoumFRE8tcbH1jW5yrFbi8ahcoi71iCQ6Ozdx+XM/qIu13/iEJmTOvoVyOFf 0pn0vVjgJ6yWek2oZmqh9Loj0WX2bRvV2uemOfvNwqUvDLCvbdftHgQAHOff5Tij GJxEBzDylhkAlF7MlZbCejiIJ7Of9fMC066Yi5M1lg5wAX1gPG27PiXJLMjcLI1B BsaIEtJsInd+UWsgjUE4tq1xoFhCeDZZWHCAyc7XyI7cy9FFQIII7SWkZ8TkZwKO T4UYyIHKtRFtgrMTkcXAc/Eul0LEo2z2e4L/G+8vF7q9LicIyv3/BF62fgx3iCKe HkJRWueDAAMFB/4lX+vF95ESlWuZ6DH1orSDKMzWlaJfl8ImE8nCT+QN/3ZauO7Y 4kQ11jy2Q+vURzltl5r1uMgAheBR//qDp4OTlqxqSyYFx49iysd3rjP0vnc8WGD9 BpGobsbcgw9axW6z278IZzJ7aroYBaceOHkEM6nNboZ1aKCn7jYqxFyzNUuJqqEY 0vxx82C2wHIPb+b9k5LCz+kMrq8fGDPERYYcFFKHMuKZ9oyide/8hQ83KadXbvJB /GAqx+prMs8axuAMoGgksMRV7Er+eRZNqYyeCr31j+Oh4qpUbe1q3UPzkoUg9OMI qJXvBn5S1M2B8epkggu4y6HDsbVXqgT+NCaWiE8EGBECAA8FAkVueIUCGwwFCQlm AYAACgkQHjB8vqiHqbS5dACfWGE7OYOJs3lJUh0fHYJEYGfcOKMAn3Spx9LXSIcR mVETDDKHRmZTSiZX =iAPM -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/07745930 2009-03-16 Key fingerprint = D8AC EFA2 2FBD 7788 9628 4E8D 3F35 3B88 0774 5930 uid Fabien Thomas <[email protected]> sub 2048g/BC173395 2009-03-16
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEm+vTYRBAC03EXAZTDbUh/ShE+8WHHaB98hrIyAlHsMBRpWdouqNVbvEWBQ 08to2fDMF8zpWY7GB6U1w8bH274bWjIFk9KkK9fLbfoKnwQOWBEB1IFOei/G/4Ro xfufEQUOWGjAcVlZp+/crXEJQEljWe4OOjh2Seruxo86qWmm6Pp8LkmPvwCg5+t8 iQL/1Ud2c8fyLAS+AARuAhsD/R6MSZtQSselAtbGB5S01reSKO4enb7yFdU7Pcbp iBAqgE0khMZqcQFeOWyAiTFTqyt4t076R1s0G9uBoTCI5/sDslVvyaglnGVrL/Ej 6WEyBEHXFHOS+pf7Aofke0wHyQhl9YrN22cEFEKWNDMCu2T+K0mP1AVKtnbLqwVG clIuA/9+qeScAK7n1Nu33c4WTkbhxdpxqcQGuUti+vHLrSy+wpZgEP4e3A1AurRs JXUGTuqT0g8wxpCMEassWuoOphrNUz3Y3ckspvo3PLbht8iWhkAS+YjvTgBPu+at rxqS4vuog8z12Gl5C69oUihXozh0c+9WNQUahsy2RM4ldFu3qbQjRmFiaWVuIFRo b21hcyA8ZmFiaWVudEBGcmVlQlNELm9yZz6IYAQTEQIAIAUCSb69NgIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJED81O4gHdFkwWz4An1Jps5d16oHpy7qh7jro 87IPMczmAJ0f4rYdOnxuFuRDnBLwVbdb1gLQcbkCDQRJvr02EAgAlrdKSnI726B0 hGobE1BE7jwjS+u0ozmeTh1JLZH1rKNJd/LszO7ubB6X0VGA5ustPYVb1eVoSn6L LkvbspsdvNitklU8Ys4FF0dI9+AvrT4u84f8AjKKSTMHoTu6vv07Vm0qEdt2ZTim YTwG0OKuRbwCDNaMNzshkncWxWNd/KgrP9NlfdVJ/3NxlEl/GUm6v4bw1CM3F+n8 DanJa1jKPk0krg0bdZc90flknwaH1rQckFrxICLa/9MnV8HjZEiE/h6M4Ay3Okb8 zQnYywHqklRfvi2nUm85AZ+fJ1X06QCJD+Idg+/Tgk2SZ3oG+yOBS5GASiYiY5Bu 3fUtBVc3CwADBQf+NFw7Lw9mLYqd7E8VFr81U6JH4WU2sG7YEqbcZ95jqiaOby99 jaSZ0FKPGvm2V3VpgvXchzf7noqNMWUXbQadg5U/iJnRRhdhnVUbMq/T/mx5u9RL jH8Bp3zF5hElGpa/rPQ0TJSI9lltUUHD4c59FbgEXqmG69sTNcXBeH+w1LBoqmyS VQvLsPKan6FKfFDzvvuOxdP2SFor36zu7ecEuDz+teETk5ixRiu5wpEq7geqgZfW rgO/2HN5OgHJCIGvQfttUwzrDLw+RHiy5wM2f+S8wSi1bka3ggE39KPODMHQR6z8 zunYn+Xjw+jL3zrDu/FAa58nbaFRuuFEqG/V5YhJBBgRAgAJBQJJvr02AhsMAAoJ ED81O4gHdFkwb+AAoKtrw8aIkc31k+gGotiqv2Z+v6ZoAKDKsv5LDbNe2fncnihP 0wGrqiKLdg== =HImo -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C71405A2 1997-10-11 Key fingerprint = 3BB8 F358 C2F1 776C 65C9 AE51 73DE 698C C714 05A2 uid Thierry Thomas <[email protected]> uid Thierry Thomas <[email protected]> uid Thierry Thomas (FreeBSD committer) <[email protected]> sub 1024R/C5529925 2003-11-26 sub 2048g/05CF3992 2008-02-05
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<[email protected]>
pub 1024D/BC6B839B 2005-05-05 Key fingerprint = DE74 3F49 B97C A170 C8F1 8423 CAB6 9D57 BC6B 839B uid Andrew Thompson <[email protected]> uid Andrew Thompson <[email protected]> sub 2048g/92E370FB 2005-05-05
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEJ5esIRBACGrMoYYIu2yCvXUOUgySagPjKetJ5zKOCFDa/Gl65tFtCcc3YR IjSDCvKuxcuS/qPo87pNP1sHPT0gVhMr+zcTrj8rgLWfC+CTzV3FPTdIA7LhVwer +evZ1jSHo/MY+GHTYBiDj/GiDkk8zBk6Sppo0OdzqZ0O8IW6tvh9n7RNZwCgrPYX rzBYHlAZxmZfQTDhgi8rPPcD/jH740waoG4l564X9hfkHDbxe2mrwKrcxfUbNi0h yIOTyl3glTULTno/xG6zxh4qG/COxIWhjC3Nkwllq+VzWqzYFoPIV4E/nvPNrLLY 5a4/19ANLLkrw2kiLxNKLPu+SwnAF6cLdnbpPrGZSGOg/DhquXulAs8foTxv0SVN F5dAA/9O9GFOk9IcZ6D77A7Unysoxoa3WwqNHikJTo+bHvENJJw6BM1e93keLXbo bljw02y2cBXMz+cwd0S3ysj2tEPvEWpUJCVbCk7bB565R1TBb8SJB08MQ7PuOzbh PCCc9nB2TditjUTuL1yTrOW4qki1fHMA8ySNuYBiw/iUOkHgbbQhQW5kcmV3IFRo b21wc29uIDxhbmR5QGZ1ZC5vcmcubno+iF4EExECAB4FAkJ5esICGwMGCwkIBwMC AxUCAwMWAgECHgECF4AACgkQyradV7xrg5vQjACfboFkm4m9zZmor2J1+T5IknZ2 z2EAnjX7sCxeTxGAUp0gv1+ijFir8Ju4tCVBbmRyZXcgVGhvbXBzb24gPHRob21w c2FAZnJlZWJzZC5vcmc+iF4EExECAB4FAkKUyikCGwMGCwkIBwMCAxUCAwMWAgEC HgECF4AACgkQyradV7xrg5tJswCdHh+UXADhzk4yJKgLuJlLYsSCK4YAn26SPktp Q2fQpBC3mGRRUYVRowhZuQINBEJ5eu8QCADgBVHTfrvthg1lDFvuZVlSgZueFEuq dBn0tyJULht4MyHAYzY1fBkKtRPxp/c+sGKzd/nXZ+zqQIJRYtrAviGAi9CyHTiI URcpMACCvofuRoMJ8djl35UzioL8O+icL2aoSq1w0MBzzkwTDcmaiceWVIC/RZka U0/irf31HSzAxGYO1wXtZuYp6BrEwcRezDZQUkO/riGKT9+UUppnTFVBbyelvVjt D9iyeRnL3GEOH0IvXbPRo400EwOHs4ieOZhNO4xyzj2qexMcbFq2nUis/qctukth lynv0mYVstLgS+GQiX8+VsbmK1QkTfKTY2ufTQDPJTcAa7Kneb+luDYzAAMFB/wP UyXix1pw1+qSJS6m6T7m6wmPj93/BoB+sadJvmjdaGcE5yKtCLdQYHZyI8Pvl3aA uktn+k/IxqSwLgJCSHv9CQ0AwN+kuIPHyy+hsJk1w5C8Qd4q8sYWecyt+aycYz7X Op9EB2rpKgg5E+RHFsuyx/X2dI4/n9XsF0xTDXmvBYHLw1E22rliiS9WlJ1C8UHn gjVZ8nqd4bI9HcwQMadtjXj0EcyarnJnrqLkJopzmLSJfOtnQvXyaTzwfS7fyQYs lnj+k/jJFULvgolWLmmfx149+3ou9c6c9KItAE8kfl7dSaEwOo4oE9cKluzhFHeC ezponq9OPdSpXUwBXjJgiEkEGBECAAkFAkJ5eu8CGwwACgkQyradV7xrg5szjQCf WQNYMndCd/TFxFqNF8k6Nu45/lIAn3oxSJ0Gc09OwQB4oiL6kHscyL/z =SFfV -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/5147DCF4 2004-12-04 Key fingerprint = D203 AF5F F31A 63E2 BFD5 742B 3311 246D 5147 DCF4 uid Florent Thoumie (FreeBSD committer address) <[email protected]> uid Florent Thoumie (flz) <[email protected]> uid Florent Thoumie (flz) <[email protected]> uid [jpeg image of size 1796] sub 2048g/15D930B9 2004-12-04
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEGyCSARBACWd64iJ+56C42einT4AIwy9qon61Lx+LO4BOMgeaQTGy9/fKq0 XqQmPddhp9awRtm0+QoeZQ00q2qyY6ufmSZJCr9iQg2a1b/fG/UKZSIKBguDuCCk O6acsAd3H0fmZRu8jAD+pMsJb9gO5T6YLIHK9p8uVPG0lRKzulTXm5zsEwCgkoi9 h+S/dIPXfX94thtJgVcUeLEEAJK9ZO2KFfGx+YRKDpbj7ocGgjqMlhkDFw13Lycq jopPipNwpey4ZKjJa2w2fmIbcqpUZW3EH1Ld8KBOt1bhGlI92uqvrssalNH82PGL cbiuvYMHXOfE05tOWD2JgxJE5tY0KtED4SDaF77RAcy4z9nFt4og4YknB/seOQZ/ 5oSKA/980pHAvnm3TFK7jQN+AIckWxOS3mXxvwHmvM/MzQEVUrFAPp0C/aCh4JJF 7Tvy54cRKEUJQpXuTeyBT0pMU0ataaESMfk4hM/WDhvlV0AXebah44uJfBAcHwJt f/d3c+1I5eRkWuN+ey+6FfBCooW4KvqVCnrWC/Kk16VqAyn9UrQrRmxvcmVudCBU aG91bWllIChmbHopIDxmbG9yZW50QHRob3VtaWUubmV0PoheBBMRAgAeBQJBsgpP AhsDBgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJEDMRJG1RR9z0Y7sAmwT9GkO3Wcrl y9KcPtsQV4x6dvJhAJ0cGtclPmdOM34jMC7U5NQol2bV/rQkRmxvcmVudCBUaG91 bWllIChmbHopIDxmbHpAeGJzZC5vcmc+iF4EExECAB4FAkGyCSACGwMGCwkIBwMC AxUCAwMWAgECHgECF4AACgkQMxEkbVFH3PQ5igCgiRkJPRjrvitfZOrvLhx+oScK 3moAnifC/FHLFLr7hG/NlgLbF2yjN7Fv0cZXxlUBEAABAQAAAAAAAAAAAAAAAP/Y /+AAEEpGSUYAAQEAAAEAAQAA//4AbwoKQ1JFQVRPUjogWFYgVmVyc2lvbiAzLjEw YSBSZXY6IDEyLzI5Lzk0IChqcC1leHRlbnNpb24gNS4zLjMgKyBQTkcgcGF0Y2gg MS4yZCkgIFF1YWxpdHkgPSA3NSwgU21vb3RoaW5nID0gMAr/2wBDAAgGBgcGBQgH BwcJCQgKDBQNDAsLDBkSEw8UHRofHh0aHBwgJC4nICIsIxwcKDcpLDAxNDQ0Hyc5 PTgyPC4zNDL/2wBDAQkJCQwLDBgNDRgyIRwhMjIyMjIyMjIyMjIyMjIyMjIyMjIy MjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjL/wAARCABgAGADASIAAhEBAxEB /8QAHwAAAQUBAQEBAQEAAAAAAAAAAAECAwQFBgcICQoL/8QAtRAAAgEDAwIEAwUF BAQAAAF9AQIDAAQRBRIhMUEGE1FhByJxFDKBkaEII0KxwRVS0fAkM2JyggkKFhcY GRolJicoKSo0NTY3ODk6Q0RFRkdISUpTVFVWV1hZWmNkZWZnaGlqc3R1dnd4eXqD hIWGh4iJipKTlJWWl5iZmqKjpKWmp6ipqrKztLW2t7i5usLDxMXGx8jJytLT1NXW 19jZ2uHi4+Tl5ufo6erx8vP09fb3+Pn6/8QAHwEAAwEBAQEBAQEBAQAAAAAAAAEC AwQFBgcICQoL/8QAtREAAgECBAQDBAcFBAQAAQJ3AAECAxEEBSExBhJBUQdhcRMi MoEIFEKRobHBCSMzUvAVYnLRChYkNOEl8RcYGRomJygpKjU2Nzg5OkNERUZHSElK U1RVVldYWVpjZGVmZ2hpanN0dXZ3eHl6goOEhYaHiImKkpOUlZaXmJmaoqOkpaan qKmqsrO0tba3uLm6wsPExcbHyMnK0tPU1dbX2Nna4uPk5ebn6Onq8vP09fb3+Pn6 /9oADAMBAAIRAxEAPwD3Fic02nkAmmleagsSiikJ496AAnsOtN3Y7ivNfHnxL/sb dY6KFmuwcPcHlIiDggf3m/T8a8b1DxL4h1KYtdaheyZ6BpTgfQDgflTsGp9W5z1o zivlTT/E/iDS5EaDVL2IKwOwTttOD3XofxFe1+BviNB4hCWGokR6l/CyKQswx/46 evH5Z6UWA9CDetOqPqKkpANY9qRetOIzTQMGgCbuaKO5ooARq4z4ja3Jpegra28p juL4mIMOyfx49DggZ7ZJ7V2bV538Qrb7brWgwAH70mT+KZ/lQJnPaV4Ksrq1iuNR V5ZnAJTdgKOw4rbTwdoaqQunoAePvsf61qoViVRwAOBVtCPUUyTl5/BHh90I+wfj 5jf41y+reC4tMzf6W7L5RD7CfTuD7V6XK2AefyrKv4i9tIigncCOKAub3gvWJtb8 MwXV04e4BaN3wBuIJwSBxnBXPvXSVwHwwR49Kv42PCXRGMYwdozXfg0ikFJjnNLQ aBj+5oo7mkbpQA0k5riPFbef4h0pYlO6DzDIew3KMfoDXb1yWqwka60jEY2Zxt68 Yxn9aBM4nXLHTPtDTarq00MjD5c3GwD2VfSm+FLpk1CS2t7me5t8ZSR3yufyFdjJ bwzYLoG+vSoEt4oZSYkVQPTigk5HXdUl/tUWZ1A2MQ+/KSB1x3Jqewto/PWW0125 uwD8yvIrxsO/QcH8eK2PscN3dN50YJxwatJYW9mC0SBQeTgUAaXg2OK2/tKIMPNk uml2ei4XBrrFOOpri/DsSt4huJDnIhI5Hrt6V2QznmgpElBooNAx/emsOc07uaCM 0AMrP1GyEw8zdgqCenXitCkcAoQfSgRx7/KccYNZl3aiS6SV5nXYCFXdgZIx071q XjYkePHy5INZU1haqv7u0i+gjXH6igkr2dmLSeR1vHm3ndseTdtPt6fStNnDKM1m pp9shEhgQewjVR+grTtUFxNFGCBvYLQBvaTpotR9obG+QYGOw61r0iqFUKv3RwPY VIBigpC0GiigY8/e9qKD3ppb060ABGKgunlS2kMADShTtB6ZxxUjPmm4oEcZI0rf vHGHYAuAO561WZ2544+tdHfaY24yxZZWOWUDJB9h/n+lY32dZdwXkg4IHY0EmTNO FHzH8BzRHLIq+bkrjlQDyKuSWaLy4PHrSJYSaj+6tvmUkq0gGUX13H19utAGj4H1 u91GC7ivyW+zyBEc8kgjPJHX8u4rrwQ3Q5rI0zSoNMtEt4tzYJZnbGXY9Scfl9AK vD5TkZFBSLVFRCQj7wz71IjgnigY5+tNbpTn+8KSgCOipKYRg0AJUE1pbyv5kkMZ fpv2/N+fWp6PrQBntpNizBntkfHQSEuPyJIq2iKiBFVVUcBRwB9KlwPSigQzAowK UjHNJ3oGFNI+bjinUHoKAP/ZiF4EExECAB4FAkGyCogCGwMGCwkIBwMCAxUCAwMW AgECHgECF4AACgkQMxEkbVFH3PS/SQCggF9s0hwG9YgT2YoPMeDIusPHRh8AninU 7DwI6KO+MKC0H1ORHNA1JBtTtD1GbG9yZW50IFRob3VtaWUgKEZyZWVCU0QgY29t bWl0dGVyIGFkZHJlc3MpIDxmbHpARnJlZUJTRC5vcmc+iF4EExECAB4FAkIkR+QC GwMGCwkIBwMCAxUCAwMWAgECHgECF4AACgkQMxEkbVFH3PSJigCgitESQxggf7Da JFyrE7EnrNUogzkAn1zo1mdvA6eSCgI9365H/eqn0tVluQINBEGyCScQCAC6HHO3 jSLdJyP19/3vvIAaj3BAH4gLjq3elkLLKRwaxSheJ6gxs55itXPjd6f/HODVSHBx puPZZ+QU11kenX7ms0cvfqROdk/5WPD8NYEjAz0nzQURK+hksFdIQdz2gZ3PyCJX T5JoQ5DRbQMadBKjtvExGGXwojmw5w5ftYx8k4QTigvXWWeMRnLtm+9Y93RTcHwR cx3tb3kudexpElECH+cYq6ZRzdjLrVupMHHFQYD1Jf6G+NEd+jbKoMi5WJISQBy0 LdGeJN3OxRxomwuLbuxGEBtp1kz2pKToxU39+WCbDP69ZtfIRAMSFFRS4WdDejhE tcPKXJHf1mLuoiLTAAMFB/41HYky3Wbr46vZxBV+glPXrS7hWgLUiriRPGKNUW0j FV8HmQ7AyyVpQl3FFBRvnvhSS8wKFkyxHGA0yg0WuIP6u9rDlJRGUNcMBGobO+rA i2VOIUVAcKULtAV/AHyAC1zClXMBEbNkfAjX6AXFJpyHQyFheOepoHbZ4LwGUakt D4+Au8ndr4RlLemr2umKGOrNzRUK3nT5FL7H56QcTmGk5p7YPJxYE2DOx6LV8GzD BBREXfrFx//ESZJB3guiiJZslIQ1LFC58AsRLIimxgDTJj3WJ7fWO3QcCAQuY1KU DKflsjiw1WEHDzHzg79eW0esg3QRUQ7gty8fWileLHrFiEkEGBECAAkFAkGyCScC GwwACgkQMxEkbVFH3PRfkACcCAORPSVW6fQLJfJn47Qnp+ctFlMAnRrXkXik0fku YhEx5U7AKdGZ55po =hxwJ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/EA04CF5A 2008-08-31 Key fingerprint = C063 6788 AFF2 A62F 06B7 516D 200F 06AF EA04 CF5A uid Yar Tikhiy <[email protected]> sub 2048g/20443F06 2008-08-31
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEi6nDMRBADDmOkKUcTtDy4VHqTIJfILJsWmfnYBNzEzqQiRTO9qWDpmt9ah 8lb2/MYT45AMdpUQu3NagY9oZq8bkUsUZ527gDHYOIclgwVulGEcDuwGSJrUi7mV 5SrEWqi9FspzRgaEwjVSB1XDXqb60J7UHXzyxcUb//f5Qibxco2k9fqzxwCgtZF9 XBidVm+Vsj/cKoJ1FXm9NWsD/RgYQzE4WUlZ3wVw+EX4+kIgHgPh5vfx2KdK4R1u KdWLOnamegQRQG1pe/4nAHH8WTZOkoL+eN0Vgd4Y/2/vrohQWEknqz5f4uxpOXgA cWp9B4Dfk4i280vNvWWoCclDTvk5Ukm305YaR4sSVHpSdwu8s+KBIZ9ia5LXpZIQ iKVvBACT6K15alAx71Shv8XRGiU8aYiRHq2/vBzDOPsEwomM1mIeCrJddZbangab GtbyizFtz4ZG2aA7ctOFVDnfbU9PHfXD1wywkjz+LBHAr32z5QU1irSUJSRGP8vr pOvNsrLaSS/L4Ux+kjfrJ1o/sX7isr9izsxuob2RKULBZMFx+rQcWWFyIFRpa2hp eSA8eWFyQGZyZWVic2Qub3JnPohgBBMRAgAgBQJIupwzAhsDBgsJCAcDAgQVAggD BBYCAwECHgECF4AACgkQIA8Gr+oEz1omLwCgkAutx32AF5bws/pj7R+zSWy6bcIA oLC9q/1fLyeiFMyurmx92vT9d9W9uQINBEi6nDMQCACnALycl1uAKREjUAYiWjO1 CjLEmjFXNM4gryW+gm2ZMk0kWCFzdCSMTyk0pkMV33wa2H+BOMRk5XhwY3AdPnmN mwYwNnptRxeIrHc4J8RuQkI4apKwZ8Z62iA+c56LZCYluJGzNCrQa65LgW70fDuP Z6BeBCvF0pSAmUCaivezhJPQAuiZg3B2Nf2Ty7ZsX2DwuyvJVwx5mGudQ+b9YKS6 A+nkBke0AE7Q/CS04LpCewlK+acNka3b2JlAtDpOLSvx5bzzFsZcyMmhJYF8Am2C 4yv0F6aD4cTdH7mSvFRND9pkDtpUYDuPpJt+RgSSelXEp+nksvwTIqX3tM+vn7qL AAMFB/wO3l7LM8z3QaQB/eMZV4U+14wJLsWvVU1vAAR0GG5GqefSgDQOvcw1MmSm YsX50lGKBdtpaq6UqXcEVKJtyg84HySwMBNRGFeibiiTO2ldaWaGS4c9e0eVu7vY Pch+DA2rrCNuE+lb2bWlDfkDsrK/doOiYVu0XiIQK3WFF8bTXRW+9T2OWyCjAcTl Yml4eKqedob/PWApJPMvMzLpg1h+VfV1JPcG1xmeoT+mtRSDME14GZwoF8JLfci8 Gnp4odmfgx5f7dTU60DPbpps94idR7dkFrTeWervPeXvFWb4+hSENb6fgJKoBkt+ SsC+h7OmCBsWu3GCEVQ1XhB6jezfiEkEGBECAAkFAki6nDMCGwwACgkQIA8Gr+oE z1qM4wCfc6TUkmIxEfS6j6S358z+qkLadQ0AoK6vPNvtYK734zGuUg7w0Lm4KmHY =xzp4 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 4096R/D5AE6220 2011-07-02 Key fingerprint = 4AF5 F1CC BDD7 700B F005 79A4 A2C4 C4D4 D5AE 6220 uid Jilles Tjoelker <[email protected]> uid Jilles Tjoelker <[email protected]> uid Jilles Tjoelker (FreeBSD) <[email protected]> sub 4096R/14CB5775 2011-07-02
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<[email protected]>
pub 1024D/78F6425E 2008-02-26 [expires: 2013-02-24] Key fingerprint = 9B8E DC41 D3F4 F7FC D8EA 417C D4F7 2AEF 78F6 425E uid Ganbold <[email protected]> sub 2048g/716FCBF9 2008-02-26 [expires: 2013-02-24]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEfEDpoRBACh+3G72OFXvEjpBhfsiLhudF39C+E4zZ47xuWC9oAV/8y4jJdD 70TjTBYydonraDCxhx+GdjfCzaN3PYw5fOMTric9xi3g8s11oKtzHG5NfgHfMIMV R1+7D2uXzgl/10JeYIz8DriaUBdHSKOhge5eNyXy6l1z1dPvnkP+/sQ0QwCgnaaU gIVvEj7qRiemJG0WRtWPU5sEAII5NYtidbx5SKM7/JzRtRI/BG497VVrcNVKbEZF jH5WklnTTQ1v9TnQfP7iksTZ6Ik6k86/opOagqtCRZ/Pdm9ldU/dZNFoA2f/4iER Od4Hhnm4rQ/rSUwXl6aZfE/26iBmH4/KkfkOX/mnRHAhs4EttXl1Nt7ew1BYwIAu +1eFA/40VV0lL93ab5aqvZ0fX6MmbXWjZXQ4q7YscqKclvGJK/BL4C7GTHk5Sn38 uv+b9l39YR5yuZt2mByWyNCBBu8nXQ/vSjQ2V6wzFizAVZv3b6k13aGj4/ZUZiV3 Q1WuU6qHvafvl0BJJBw4ywOC5gSU9eR2roGQb37fvcwH7nd747QdR2FuYm9sZCA8 Z2FuYm9sZEBmcmVlYnNkLm9yZz6IZgQTEQIAJgUCR8QOmgIbIwUJCWYBgAYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJENT3Ku949kJe/EAAoIFqc0wekId4QcEDk35R OBMT0mpPAJsE2LsdqX17BXJLuVfuQuxIR9RLP7kCDQRHxA6aEAgA4w40fvHBJOqJ 1RtowjBEX8uDEOwH2LlnKK7S5P5Z0PRM4/p+a4/P7KKRYAVehaBPc56TW4eqIXWE sjGNoJd8SIS+M7LIhlgBe0E0qKO1PXq7Alr5QMSR9aSS3z8NPWdKHU6+bJRomM8h 1v8l0dBfFdYsrP11FXoAtRhkRnxB5E+A3rMJ35Uz5WPs/omz422M6SNziVn9lTXT N0Xk/pg3KHIVjosIakfbV25ZbrX0XYWNvh3zEhGyvbV5A4QuEXg4HSjYd43l5p+z FreZCrQh7IN4Oj1SfIbWzsoIygn9IacXQW/iASvpVcqP3yozcL8oi3VNSZtWY4fg jZZTIEJ04wADBggAoha5dSArTS2Tq04ArO/Mew4ZSZyOYg8Zay2TURrx1y2BU6on F56WwV2/C1qPzCOGDeVnYiXKKHnc9bNIefzKTMsJdIihw9N1CfD9h8MZ23GbhKcg VbiRC6t1b2BR1C7H52rPs8mXtywSGiI9pjzl8bA+ARCsvWHKe8R8iwL+jw+IVF6R 94xcbHtK9EKOD7U2bVhiRb/uQiY6df6+VjL9lLoJMSLSWXWMtk3KJoFt6peB/XVu NIvbdxcU+xpgqz/SBPUs3MIgt9dG29UBsez56l0hgDAU7lcR0EIpCeBA4MskhInp AEJ38BJ6zL5MNmOOXWki2+FT4PbLjndwqxP0Y4hPBBgRAgAPBQJHxA6aAhsMBQkJ ZgGAAAoJENT3Ku949kJeYScAnAxcM/ZxE+XdjWrIazFTBJITMR0LAKCdaevdwU2m HFVwUGCsG1R5u7ctUQ== =rUEt -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/04EEDABE 2009-06-08 Key fingerprint = 493A CCB8 60E6 5510 A01D 360E 8497 B854 04EE DABE uid Michael Tuexen <[email protected]> sub 2048g/F653AA03 2009-06-08
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEos/K0RBACA1Ck3ZLIpeSiYRNYG8RXCxbvHFOsI56DCwbRm6VXwjbbH32wv FZTxIR+A6LQQLCLDEvfklgI06Ksi4uWfAoLRB/CoiX7crEZGvYDc4kYSVjumjORh OzDtUiechd17/gyo4j+u1PDtw/5XXpSaTIRJO3g/UobVpUPjl4dMz4Ks/wCg25PC MPQI2rqriwffFak4PZdJ/JED/RSqsLqjsBOpk0hrY22VQrDhCHrWsVopq5hcqElw W1iuLMBhGK/Lursari5M8pSmjJVeWMEQwDqfF64MctbbfmOfMaRRggX2meVdMq3c o7bAWWEfstFB5WlUkCg6TIQjLV/4QbATfX2YkIcwuxiwC+CMq2trAJ/X8A6VdaOY tkHaA/4iyk4gCbvCxB1bhDp2HiDZfAWm5OlkHefzWeMIY7O4k5+vpaS69ui1xgYO WhXKB6RpDXcJzvZdBQqrXqFXdfBgOwhbUj1uOgkBCMpC7EXT07sxzvrnaW/RR51f KTeplrRMX0tXMij7nFh/WzJFSfFK+0W6+yaRVzXa42ds+VARd7QjTWljaGFlbCBU dWV4ZW4gPHR1ZXhlbkBGcmVlQlNELm9yZz6IYAQTEQIAIAUCSiz8rQIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJEISXuFQE7tq+FHAAn36ou5m91emjHT6ziIWw 80iHtiyiAJ9RL3W/bShdgmG0U3UKDnPrSwebdLkCDQRKLPytEAgApnToBctsJKyI YBJp2wusPzd+8H1Ab0VCcL4pcKWzCIy7dTJSknLpJV7c6ts82+pZBKUMp1XHfnsT Q8YwoaIUOQjkBqqlkrxqkexidwj3VVZfUvHfXvU8Hw4JM862MtYa6ZHRoz+ZSVQi x8idPMFhs+zD9Pb0ct6YsINeKiEGTGnanm3XJIIeNg1bOlrTjDiWB6KnlMmmeZ/R o4vGdnO7wsP03VtJBUnPNaQ8luAs4SHBTmC+tXNhBYwn7Kh5PGR1TVH2ROpPOYTS StOktseR6iMJ//6mJEBOt3cypOx2d7hbXfy/LOijg5Ku4FkUUmJrM4yDMgN/2bPw RGw8KgOvFwAFEQgAlw5VA4FwTgo/2+pDtQxtp96WuvQxw1IL1fPPNwGO7b2TVlj5 KTqvsqx5MP9jLCTPi93KKAFzwFfzXxOD+Isd6AxeuotlxLOUXeCdcpeyYHepURYT 7bjYg0DaaoqZopm0L+8c+hvOLfPaJLWVbUCEy219SeCA3xtGvRtFY1JXIFk9sbgZ y23S592sG/5CAantKyI+SHzZim2mj4iRiI9HlGDLpGn6QAyz5HX6a+TXdHijg/xK 3T0xfBLn/xh5tSlBdzKR7cXSmzbtP9HL5rewVgVAqqg/Mzc93nD+gY67bMwAeyHq u2OCE6YkLNJz9kSqsSygcMDI8vKoPU8cqDvyyohJBBgRAgAJBQJKLPytAhsMAAoJ EISXuFQE7tq+/EgAoLrfM3GP7IAcTezTbs+BjUQcoWHhAJ9sJmO1S8JcXD8f9G2J AOE2UIkbvg== =adk0 -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/31B31614 2010-07-01 Key fingerprint = 08AC 2C57 F14F FDD1 2232 B5CD AA16 EFB8 31B3 1614 uid Andrew Turner <[email protected]> uid Andrew Turner <[email protected]> sub 2048R/9ACBF138 2010-07-01
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEwtKAIBCADBws3xAl7jWnOOAlcH/7Vv72z8eZyzSs8VqriCGftQNju024OM SglSEJFaM9wo1EmPwBDRbnCE3d0wKXstEUGvrPRDFokqunngQWTM6B7X7CLtm+pG +qdZ6rA3UOKw+WxP6ELaedg12+Nzz7KEMq6DXIrGz0vQaMwq8KcIIyOkoFU2Nhlc cRmvONus+WYd6I/kFj/u5k/8ILU20VyCg7fiAkZHwXzGUisCcKhyUeuENZi4yC35 n2YtBEls2myhM49KD6vTlFVBhykV7KjoZcZ/Z4RO9pkvaWf97fEtWz1SaD+QY3kh tv/x9H+IAggoFMlRIy11pkJPNHAbPD4vaoU5ABEBAAG0JEFuZHJldyBUdXJuZXIg PGFuZHJld0BmdWJhci5nZWVrLm56PokBOAQTAQIAIgUCTC0oAgIbAwYLCQgHAwIG FQgCCQoLBBYCAwECHgECF4AACgkQqhbvuDGzFhS3twf+L8P3sOEqPQM+3+n8Wno0 fCRtkw2XnOlAOsQec+YkRMmaRkRnW1aZb916s/KDbnKY4tbNZcVDuKuUVM2vzZy2 krzEDx6eszV/VaweNHuM9FB0udtbmtYAu4tunipNtPK08+WQjZoiWjeq4HJEd+YM I0djeIE+m7O46LVh4mWwQEgVeLftFiexEWR3prHwgZDSND+02St5Y3zJZh1Yaogy xL1Hoh9H4zjWkVY/9FwpLORCiTsrnDp5bOCBxizBRJOIl7XnhPNoXv8gOJAqiBh/ yx/0Oe0z5tqYkh5HsHgynueB9aMkTpVDryqEq8ArtF2L9PYwynsR9akannnFe65C krQiQW5kcmV3IFR1cm5lciA8YW5kcmV3QGZyZWVic2Qub3JnPokBOAQTAQIAIgUC TEFGsQIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQqhbvuDGzFhTBJgf/ TwNZaesYaHdZVhFRYoGd/+GxvbltvvbOpKILvdqzM90jL2i6ap1Tj0sFggBAkiCP GAzlqGqqwqMQToYho1Q6NMMqzHsBMG0qInzkfQFFejB4hbrlW3yebvy3oHZ2iXzA o6ufEsD0YUGRVrUUN4/pLKA9DOeTcAkVBhMd7d9ty6eN5AM1oPzB8giMyVHZXII6 InxkF1ULBgYvtypkq1bj+iXRMEd3vP8O+6PqECSIayWubiGAR2sHfrLje7qZuIu3 3yv1WutpgkU0TLc5aZFXvglc3yH9Hr8+Uj0qkE2kh/4VJLqQJgcRo9qolM6R1A+i J0UzjIrqw5rkzyzL2Yo3F7kBDQRMLSgCAQgAyfM2CUuc5W7fYL5CyUd+kHvaXoIQ ZsEF9q9IlZEmCQlDzJhI4kIwZjdQvB2Q70Axdyo1XAF60CzVEx3oJPyGSstYI94d 7MVKD4I18hCi3/EI9NfTCiujU5K8HclF4lFZdEyCgKidN1rOvvkCu+pKDy4bB3wr Afrire6WAH/jFeOOowshfcN4o/T4RByCFJSBQWMGN599JQvVBQSzbSFUDwNCE3E/ Ob3EgYwIsqLQVY3y1UkeZri1QOqLHA92IRK+fZDnnjwHv+MWaARKACCVDbCSM2X6 utvmzbPu9OnxTKzq85RzOKi8tiZykUf3Sc8GFItg8Fytma80GadB3NThCwARAQAB iQEfBBgBAgAJBQJMLSgCAhsMAAoJEKoW77gxsxYUCsEH/Ah4NUVLoDCA5Kt9mC+h Xh6u6n09DNBw6vrdAmRQVxmb999tKyYbp4oYdpr03KXO/I+gzAiSoY2QwZ+NB6b1 6cUDgWTPmMdwLHGAjmegnEYst1pGbhSHOrePrWucVtKrMS9u4pZ2DIZo5urBJU/D cAPFBjQI6lkw9pw8O35ziArQ4h8brmFE0Kj0VYvcl9oAtLTc/yOCQZARalhMarcU TNmzmJnfSeYFvP/CwzarAiBFIkcNGq4ffC2WtnEgfZJRUapFRPF/XVx61Eu2tPSn pMx/kLUoZNpzT1Polj1ZXtBnWCocQKEQJBKh7ZMuNHIICpiHVLHQV9T9ZR/5Aba7 BuY= =WLSs -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/BF9071FE 2005-03-17 Key fingerprint = 1F00 0B9E 2164 70FC 6DC5 BF5F 04E9 F086 BF90 71FE uid Hajimu UMEMOTO <[email protected]> uid Hajimu UMEMOTO <[email protected]> uid Hajimu UMEMOTO <[email protected]> sub 2048g/748DB3B0 2005-03-17
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEI5K/4RBAD0LiHx/Tl4UyaX8yFUGjX1+PvATTJloNZGXl+jagSUQxCOp6Hv emDinSPskld/viupoAxjRImlkP905Y0Q6iDMne4s5fM/75lpeG9ztKRSgDQrQLTL HhXPXKNMtDV91yDqFEkwptS+0MaTMY0KrlR29RtGnpjoa347TU2BzU6TcwCgw+SL YdOWeSGs/7LKdUIyYlrldjkEAMqIQwnDl14vZBe9EOCrjSA4gHv6g2IQP1TRCpBu +/Fpi2+xcj117xO++uqMMzoi3aWwsqarao0/VSJ7ZD81by1H56Hnsp1d0r67neJy PKsyh2JfSQww9cxVkQjuZAjZNN1SLzDeA6xtSZrcmim+f0GIxlz3JFS9za/scs8x mGqzBADRF2My4V5HEMeScREj2hoquRv/uG727Nw+jftwiE+7TB7+JUwwyakAStNv x4+YEFAVSpKxyWgOeMqOWYd9bOSwJk40t9y1Gk6TTgV2C6sYwGHMSNOWYZbhYX7c 84cxm2PtQFIq7g4Q30IkfAhYFzEwKmPJ8eV1zO0uNIhE+SO9QbQgSGFqaW11IFVN RU1PVE8gPHVtZUBGcmVlQlNELm9yZz6IXgQTEQIAHgIbAwYLCQgHAwIDFQIDAxYC AQIeAQIXgAUCQjxiFQAKCRAE6fCGv5Bx/qe3AJ99w7Ipfxs4CF3/+eCf53HO3FuI +wCdF/xyvVjjNdAYXCMxCHtUF85bD++0IUhhamltdSBVTUVNT1RPIDx1bWVAbWFo b3JvYmEub3JnPohhBBMRAgAhAhsDBgsJCAcDAgMVAgMDFgIBAh4BAheABQJCPGIY AhkBAAoJEATp8Ia/kHH+3c4An3RGo6JduyjPTZFh0eCBezNgzxdnAJsGRRE6ERs8 nyORm56bvSgRTw9VKLQjSGFqaW11IFVNRU1PVE8gPHVtZUBqcC5GcmVlQlNELm9y Zz6IXgQTEQIAHgUCQjxgkwIbAwYLCQgHAwIDFQIDAxYCAQIeAQIXgAAKCRAE6fCG v5Bx/iTtAKC+8mS7jAYMz3QsCe4dJeIPaJcFGQCcDQITgNpJcUmBZ5u21Jotvp1X T/y5Ag0EQjksbhAIAP1+LeYSauTBi/ST3343W0lkqYr6HgZMNS7RtoCGFWcjfiYU 99ybRgr0XwH5yJrn6JASp27f/ve5cwt/7ERLZ7flcfFi53AekeuRjFDkThLx2N4I s29ZQZsYubdOKHapnMflnFE3PQfkB7Og1MoFxkp0kOAEP/rOyuLMc9CbUaWczxWo FS8bmZDJ5ZNzAQ2vQFu5ExxomOENApy3ZCm/Z6MU5YJ2trsP3dkYStyG+1pT4NsU R4+TIbQfFzwZjowiC5w8rM4FIV4FMQ+3YvIEVkT+M/93hLGakh5tQENsitj7JsrC VA2mkomV4Hnjj94YCxUiPu59kHgiKGgXbdnceX8AAwUIALF64I+guwCaHbjoRPVg HWRuU2NzuKN93xii+xyIpImf+S30aTbFy0D6ZTQRSCs34oVNMSkUzySVcVn9DTG5 +KVCHCOnGMH/Iv3dRWlHZ3HX6Gvr/cRyhDfWYDEec7KCDGT7Q87UbmTZ9cmOh+/h M4ND0NoYU6/EaaOqyRH4D8/LAeg0YsEpilClYWhlXT7VS7noOBf1JuB9Q0nOGycR DstkHWJf5om82lH5FzAuh9kEAduv8JdBdsMh3Zh4N80tCV7OyBQFWHV0UgjARSLY msEuelzzaFcfR2vIrmpYIElr6JzHGBiux0XK3Qk98kexGRdbrDFpaxbrsjs1/8m9 MVOISQQYEQIACQUCQjksbgIbDAAKCRAE6fCGv5Bx/mRWAKCAQQ67iDvQq08n+bHa QkK3EDOmqACfZmJe9AepCkPAUkvp0ketnOPBXAE= =QZ8N -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/D684B04A 2004-10-06 Stephan Uphoff <[email protected]> Key fingerprint = B5D2 04AE CA8F 7055 7474 3C85 F908 7F55 D684 B04A uid Stephan Uphoff <[email protected]> sub 2048R/A15F921B 2004-10-06
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<[email protected]>
pub 4096R/E97DB7DB 2012-11-05 Key fingerprint = 0F8F 11EF F4D2 EDCA ECEA CB16 744C BF25 E97D B7DB uid Bryan Venteicher (DITC) <[email protected]> uid Bryan Venteicher (FreeBSD) <[email protected]> sub 4096R/2EBC1A46 2012-11-05
-----BEGIN PGP PUBLIC KEY BLOCK----- mQINBFCXauUBEACj+NbRz1VJJmbIz6PO3fV3bTeCaAIcBjKWzsaKogvEpuFaVlPX eqwKqoRqqbxHxRKfs3Matco+e1EwiWVfna426PB2S5g0+0AuNKo7lq/XtpsSZXp4 vCPUvZUwpCio6ZYqiu26lVzQ2iZqz4wlsBmsh6pYaP9tNKuf08gPYu80kaclov+a /o6uC5A+cNS5u4v2Z+nojMKAOZ3IP5TECKtNVTvmEBlRwGQWKg9tgCGo8g0YOU8s XG0hltfpFTe0JAeVWY6k+fI6CXXTfa8U6mBBb5hhmM6Aaxx9j9e5XLXV+VhQck+V vJMRKnekfqACauhNvRQQHZsDnduCwn++ohW1kwm8/a0UPPrG0WkJa++GymTmUQwP hJ1/HBD3GS9LuxSb7oBCzqOSfiYhYzq1Mh+LiR94pzMfsykJDA2d/PG5uOO7xvL3 lEdPMB8k/g9YFkWpNUEmVLKPt5vkZwRt2GcMhbIiexxXfOg0A6UhQJy7BWV9bXu1 DqCeOzdUP1MBF0d/PrdxiF1yjPEHe5s5pVlwoT1PKfTYhVmtiakJINe5M9r79/h5 Nvd7R/289x1pNLm4CiKcT75mnmb+p0ftQB/QCpk7xngc8xf1uoCPszpFYjp+ktVQ XAV8AKjAwjknfhwxxCX7+ijPjYQXVUNVVrFfgZZeJqoBnDTHXsuMDCZcmQARAQAB tC9CcnlhbiBWZW50ZWljaGVyIChGcmVlQlNEKSA8YnJ5YW52QGZyZWVic2Qub3Jn PokCOAQTAQIAIgUCUJdq5QIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQ dEy/Jel9t9vFUA/+K8LrI1I9pbN7hUlFQwxj/T6b6sQR/2vneKkNq0q6uj2GxoVo Y+r09sAtKENKi1rQBVPMGeZyt+gSWm4yk5pudzsLglHub+7ArFvzo4PzOd+y3j6h 0r8zUtPZLQxg4gG9K2M0hev+Wmvvksh+NRUyEvbEgRmD2vP/aurAzMl8mIxKi5jK cSraBTP7slbuz7GR95/BCFV29ET1fczYOGrLEYfC9ucvHTWh6VVrEIFqjhJTrsMQ 6X6cfTBm5Mv0VVnm9g5x610X3OH7YdRS9qlDr73vWCoFSCzzjawwv4j56tJIMLM7 at5ZGsmBYEms2Fl5SOTcb2s12c2qPFf2e0YDcJjQiiX//hgV9/Dw+JEKkkZ739Ut r6TTP+icDMCAS7owOW555oYIxDakOsi46xU4XQ9lXjYqmOM68NF5clEw2cfC6H2i /smHClty57Ra3+RD55YOaT11qy9jJ6z5w0SwHMxVKnmuLL+wLrO8xFvz8YGtwTJx ULUgkyMU/g1NEDoiWetkydmjWa87J34/F3qo+Znz8FpTSx3syGJPtjirC242P0Hv aFEpobg+IieYj/y+tcBDrK7DcFhy+ddlPRikC33obf/pMe7Tq7XUDeGsAwRMDrZ8 5Nz77ShoTyNVbQrjvMZ3mWUL6aIqQQiXYb30YX65qSfkbjeWFV/UqVWXwPe0NkJy eWFuIFZlbnRlaWNoZXIgKERJVEMpIDxicnlhbnZAZGFlbW9uaW50aGVjbG9zZXQu b3JnPokCOAQTAQIAIgUCUJdwvQIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AA CgkQdEy/Jel9t9v81g/9EgilQhRDnX+jbfI7wvIx7M2i1QeOV+Zige7fZiHS3038 jbl0o/FylG+UfZiGRS6dr56wg52apG0GZMYN8v15b+w34x1jroCMp/NAXJFAb6Ju 6molIDL07B8yWPRV78LJ71eG3lAsTmsXo72WvsbObAKmRKT1bOJkCnu6HCc4rMt8 Gc2DVAfWM88/pnYu4VhDrs5q8hp5iblojiOu7wgDEapTd8+5aTCq1LEZYRit+k2L nl2FAXfswp6s+RhXS/4mNO9Bqr9Rj6SGLjbjEXUpNDzwjjyjaL+FgNvi/31yANml 4rWEORrdzcFGdvgwKgSP25Xn85iMrJAme68fB1/4tMzyZ5TNugNU4X1ieL7gNNgN c3a18N+d1pnmfAkAqs6qvnysLrMJu/2wKbOmu42uZX3fEdAWkR8r233QJIvAp59n qEm3zRXZEOUUP3Pt0VCGZXQ4ztYP33kCWRJ7f/pIGq/gOZC5GZ2VRqDSv1VePoAH D9RJSKkxIFq62AvtJoyM5ahC6YpTf8DrdSsRW6/s1QdwSFIvd88wrfcVp4mwHyWm hGHIdcr2N/sppKdjFM0RVGEBh5X6XrQnWXfYYC8aNnYms1FYz3c1o2aYshT+FkC+ fJ5QyMQeB/4VcOd6g3+BcFhb5ZYW4W9//D7jrYfkVyHloF2s81wGIOqqVywjwLS5 Ag0EUJdq5QEQAKAFUhykhpw7uQe61dbFxCK/ZVzikZEjtcRfRZFQt4kXvd2PhyDc t+DyT8i/ZDSnP0UblRsSwTt4Ja6Yg0KUMbo9EIuvC5n7PVVktGAsIKZC1PrtMm84 Gw1bBCm53LEwnrjhiPxXb2l3vX58wRXPRichZACxv5LsaFWlYAjqub9mkTV/MbFD 4AG5X51gkqXQovTaOl3s0D/kpou9wv9nY9R0rKTis5z0K+hDrbl+l2WqaacZZWK/ sPb+EjnAFvfNH3Y4jkp5Si0olmv9aKhCDuUMslENPN5j74Heap0zXWxXPlmVLBki wBwBaGsSKB6blnI+eJw5xqd3ast6qMUkW9JopCKztO1yrD5lB8dkRLxl2SepL2Z3 QrYW5DVSlqX1mQyGoJ02Q1Z1bLipjqNoePwkjpsv4AAP4rXkWOZ50Yhi+DjVDpOs AsHCBSBE2GK6evzE0VIsHU+hKNHkcHhBmj8BnIJkhEVLPYF+r8ghLIGemtmkmSS5 QzyCfr5KS3rELO3H1ZprvCddamOqbeWkeixcaz04NTCLBswTNPtqCueo77uo49IS kU52PVXjdOOea4nLiH8coUsxb1D9uEDBLPTI5zBM3BK9Xwv5jLjNLCm5e5HZTnJq 2MDkqjruNTMQ9A3IFNcGKeNXILm5qm+HRJPDRmWSt90mq2mxWVr1i9stABEBAAGJ Ah8EGAECAAkFAlCXauUCGwwACgkQdEy/Jel9t9t2mQ//Sw5dWgrWDMDlVX7tJLtR I16tBJEvELkjUTTJkBRFazE6qT5L6Bvx+rewTkcq31cUqT8eAfqkk+mvVz6+L8XD N5pyMeUBSlZMrNF1Wsfc8F5nxLi8BnNixdAOpP9KJhC7KLzQuNpycSJMdX9nAfDx QHfQ8CVuqmnkYB34R6rpmyHHgN0kYBdA5q6MJzzlVATwO8oON9nCca60rFCbPZAX f6ZLRcFn+CIkZaEEmsEFK43mCy4jmH7DsabKtjyJdeaLAxyED1IxnQ1YWKSd4LBC ooYj87aZ34df7VpxBZe8/q4prwm+gEjM9V0gf2F+CgEB7m8JXmqXZ2id7p84PE7k UZJOBMTL1UegkiPXLb1thuCaSJodOLrf6t2W95v8auBb7fUAOXWNbQ2EId1IHPT7 FOw2Yo32VjFOa/QUjKc98XlZBU4+0TZz1hZmsUaVRhhULqEc359DRdmNUfEDWv+P bDGiRwejjybGpb2f3lqnne3+7b1jEcLCI8k9VTklhj1l3flMWa5l0ubz57X2W9JM LkwHPSTICFJmJOU9KtWo6ujC1Rx20e5y+T8SMF4A9oDb/SuNRi+k0jhrYGsT+mWx De/WZ2m39Eshkbdd5R2izcYLuLV+nEcbj35ZsK+wgXkQqnSZK8JrjCArQvJuiJUl hvaQWSxKvtCA3RdI3vmKyQc= =6YAA -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/33C1627B 2001-07-05 Jacques A. Vidrine <[email protected]> Key fingerprint = CB CE 7D A0 6E 01 DC 61 E5 91 0A BE 79 17 D3 82 uid Jacques A. Vidrine <[email protected]> uid Jacques A. Vidrine <[email protected]> uid Jacques A. Vidrine <[email protected]> uid Jacques A. Vidrine <[email protected]> uid Jacques A. Vidrine <[email protected]> pub 1024D/1606DB95 2001-07-05 Jacques A. Vidrine <[email protected]> Key fingerprint = 46BC EA5B F70A CC81 5332 0832 8C32 8CFF 1606 DB95 uid Jacques A. Vidrine <[email protected]> uid Jacques A. Vidrine <[email protected]> uid Jacques A. Vidrine <[email protected]> uid Jacques A. Vidrine <[email protected]> uid Jacques A. Vidrine <[email protected]> sub 2048g/57EDEA6F 2001-07-05
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<[email protected]>
pub 1024R/44350A8B 2010-01-24 Key fingerprint = F740 CE4E EDDD DA9B 4A1B 1445 DF18 82EA 4435 0A8B uid Alberto Villa <[email protected]> sub 1024R/F7C8254C 2010-01-24
-----BEGIN PGP PUBLIC KEY BLOCK----- mI0ES1vM6gEEAMBJJFEzIesoeff/XaJ5baSLJwdZ87H26x51KPodOiCK4pvhSOvA 1Cl+/moYBVOqhqzfNw2pX+EPWJpwRHToqZMba0rxALNhRaQgQAVk29V3bqsQhwBS yfwQirouhXGNaUGbdYh4ay0ZoyY0FUtKsj4GxhpWdHlKrjsHAliHM6U3ABEBAAG0 IkFsYmVydG8gVmlsbGEgPGF2aWxsYUBGcmVlQlNELm9yZz6IuAQTAQIAIgUCS1vM 6gIbAwYLCQgHAwIGFQgCCQoLBBYCAwECHgECF4AACgkQ3xiC6kQ1CoucYwP+N72o Hafp9Oj0004/rsgDKSLSfru89cusN7G7FyBYICjFQXJfwRAr3Mqo+4JwMVHPbQ6z ReRiMKN362M3e2cA5GMhtYqDTq7FSJzsWBUyfMhJmKOcP5rtQlm7sIt+XFGvOxRx 6HXoduhiDmqmDUrxVxBYQTU5qGqkOXsIA/lITJ+4jQRLW8zqAQQA2HR/E+7JRr4r 6WkpHb5WVe8w6ipuOpVRh9KjLOeDtxlCCuZ61asE6dVTYxhLrxhmzXcz7WQLJb++ 89DaQj5bSAFy3BfujeO+HUik9qB9Dv+t6eNh8SlPByxObyNx+NNNP6k5xiyx0cMC AMfUJbbZ91SN4gh+21yf2VqlS5uAlWUAEQEAAYifBBgBAgAJBQJLW8zqAhsMAAoJ EN8YgupENQqLLXUD/3qVTKnHAvQqu7EcdV4SEMbXtxHauN6tushMAbTiSI1tCz+3 2nThTiXvLp4mQfwdH8uTQL+n3Yf3xZATAXe6Y/7Q+TvUp/Em3/5QOzdTEHirQDDe Cpks3VK9i/ud2nOl/TD1sy/5ad2aBKE2sAYgtILxAsdnxh4Cn4oBYc8Obg0N =UkFd -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/F11699E5 2006-12-05 Key fingerprint = 2C17 C591 2C6D 82BD F3DB F1BF 8FC9 6763 F116 99E5 uid Nicola Vitale (Public key for [email protected]) <[email protected]> sub 2048g/4C90805D 2006-12-05
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<[email protected]>
pub 1024D/569C05C8 2000-05-24 Key fingerprint = AB9A A555 C47C B61D BF83 154C 95D9 C041 569C 05C8 uid Ivan Voras <[email protected]> uid Ivan Voras <[email protected]> uid Ivan Voras <[email protected]> uid [jpeg image of size 4567] uid Ivan Voras <[email protected]> uid Ivan Voras <[email protected]> uid Ivan Voras <[email protected]> uid Ivan Voras <[email protected]> uid Ivan Voras <[email protected]> sub 1536g/149FDD60 2000-05-24
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BLOCK-----
<[email protected]>
pub 3072R/12B9E0B3 2003-03-06 Key fingerprint = 85D8 6A49 22C7 6CD9 B011 5D6A 5691 111B 12B9 E0B3 uid Stefan Walter <[email protected]> uid Stefan Walter <[email protected]> sub 3072R/6D35457A 2003-03-06
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGLBD5nXBoBDAC8weeyNQOMLmXMQ9r5UyPNpdmEsZa8bYmU9RGQ02Yb4R/81ucL AIT1iZzot9feJq16YowWxl+BeSv2XQEjwKFB+KEz9p8HLG2Yj5XX3jO1wPHtwW4y /zO5BwFKhBeEu/69eTw2JY3Q0cR/iQL0QKht7sPwS9aBqbWyMjaLpGQdn///P0B/ MxNZ7iXHpAQR6sKq2MUbiwWtpdlLEKLbUiPqvLGg7C88CkACqXc4NGJrWL4eXtgL JmMv05JLhdI6nQhVNo+9WwBvcyqvEAd6i0FBTazh0SfrvVH8zQJ91QwnbsMLKo21 83GkH/p0zt19oilrt18C4IpW3mWBheTaffl4PBVH6lvcPIRkEPhZZ5tkyG67rwfR r/vEo+//99XAwxwzGaiVKRlW2r0mVqmCLAjQpEkvfT2JiJt1okGwzCaWnjYAqk1r EDuaCBKwxPpk3pyb8MelybP3awbR+FrkYJzZf6LqzihS6StyERJKW8QbIf/+71PF iVciJtQ8at8n0dMABim0JFN0ZWZhbiBXYWx0ZXIgPHN3QGdlZ2VudW5lbmRsaWNo LmRlPokBsgQTAQIAHAUCPmdcGgIbAwQLBwMCAxUCAwMWAgECHgECF4AACgkQVpER GxK54LPAQwwAjA8bv7DeyVbTEIq1yyd+RDCEGwSRQPFxUCQW0tWwJoN0p+lNioIO zIYy3+cqQ9rr71EMMEl650NcYibo3ECPFZrjkN9mie79gNa33hGfAaG+2A8LbkRa HUyfRpFPmWPZ7XaXQHr2vRc6w9EuW1KGEVEEYElLM7YQSXENAqi/dN4DWQU/UFD6 wMrOLDfftVhnJaeL9z6wQLN3+lY/EvBf8vzKFr6D2T0isx61tpqydMA+/hOcZOw+ 9mMJqYGWBSCp9hARDmd8wnL5O+jgiMAC7aXUWEk5uiQVVhCPxj2PN31j2YFwzEhl 2NLVOHuu0A4dFpXH7wIXT6cEIltRis3/ReE7VuTQ5oplAXl24/OPp2VZKYOf0LX9 NL6Z2Ea5rjuIQdVmXWtyJ2jZnxWqfiXiIKZoCMXHkE2eN+D+dpGWpWYWX87T0vUp O4Wo/m3PBN6Mvey99nBgRfHWICzzVkKGBoSNSYjN0w6m5pU1F6t0W/WFI6Jq3CcU QcJGQ4RK1zbCtCJTdGVmYW4gV2FsdGVyIDxzdGVmYW5AZnJlZWJzZC5vcmc+iQG2 BBMBAgAgBQJEXbEzAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQVpERGxK5 4LO6sAwApkJmvdlJwP/cBDD49IjKbUwjYRq5psU4dG9srDet0eLoUQtlI2KjdmSR aXAX995xXxzaO5jMSKNPQYIoSU3Ne+TaG8/yz9Ckb9uBgPvA8kJvcr2cyIwierz8 ztvLEUV8/TAJTLA71Xzo5GBoM6wVoRXjYxZX+6ro1GagP5RJbotamn9q5Au66Ixi J4r8xeTQAKduQKgLwZadD0b5VJr9mJ4IsUTGQYmcob9UaHorU7ja6Q7WDtZYVfqT 8CJxBBntmzlniYJXFFlvDJgiCxTcIFR3hlCPpvZ4X6YZ7uWTiK+UWrdJkJtwHu/t qiE4EN5dn+wvRVNX4iBmRR130tswGHfzA+O8wFqlMnYhkkZt5l5sHrMalSyczyEO 3XfZEpRAcxxGeFTrMloeDWMIPBDUsKJdQhHniJ9HmjIEvh4c5IXnkUYd+pLZVShx ggXDyUVNaWjhVvwGz853mkWsto9DAe1dib9cn6xwa+WIxhlWnt+bjDzv1KM1gVh/ p5LxDPeXuQGLBD5nXIIBDACletuXpBWOf2+nP4h+uU4gNP63bRh0bBznGnTORDJg 5vQRmO2KKt3GTAWGC5pgWqF7GULGB494uSMX7WvIfwSYhzgZ0k1DT33WyPgo7whl JGNVyyyk/STEqijZCdzbti3zaFartl3oRl8UxJXMOC+jmt6XTnVl0WLfUkVFUIsV shXdqVntMJkoB/iGfKsn7KvzT/tQ8pNe476uuOQvzOFcZlipzWvFmK8p37oIjeZp ngFAleClsotOVL2VoRAdAmT6P+OxHCzk0Zcz6vz/3NA+WBxDPy/nk26Sd6suU5jb sT5hD2IGVcjZ7PuErJkAkvVJU2CrWpH7mw0mFNM6LKwFEdPkjlbndUMqMAn4z0W6 hraotI9RySLoYJBpABjD5H7wjhf8OWu1i2ZiQuIX9hpab/RTm0jGNViothyNV6Sl udihv2cSuCSwVdOC+v6MDKsvWwBQteMO6LG8e7OTSRCF8r+EDdfw/ly7mGJJrx1G kwuSCQn+sbCFRxMXZ6BYomcABimJAZ8EGAECAAkFAj5nXIICGwwACgkQVpERGxK5 4LPiHwv+L+BP/SknUreGZHfnNR0tEafVQTmQdbULOIJ0herPJzoLb6pPEe0GvsWp qQH/26hQusFrUtazAc89hYDFr3nLgdq4xiXY024ecVY2bU93Yz5K6GoiWcNwTJh3 4IcP6xr08j1v9LjgEHwFo4DkBKe02JjhAr1WcO0Gt74lJIDElIYuKZW81DT16Kly 45EPHdfjlC2PyvrhXk9fphB2T59H4DEkzlHrRK8EPr4zIXefDb82FFjVS38nD8TX grJAG7Czq0/wCcKsnOvuhT0ICNJsSSz/QVboKCbN2upUvuWyTti6NRevaF6FDbYf TVsdukZSt8/UBNHwCInbeLuorIMkPwcVr8r6oLv/JhWOS34y2V9OA2Zlx69cYQrp ssmXJmwaIJQ0h6E1MQzTUD4y4VUaTvdgvEN4vC6t8NfC1AN0xErjCGrwuZebE7ph 8fLm/wloEhZv5v+UF/J1kOcxyFSQN/A/usPWgmUmmpghiRM4+Qk9nNbzoKRyfP0o Sjk9E6QR =iXXA -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/AEB910EB 2006-09-27 Key fingerprint = 3534 10A3 F143 B760 EF3E BEDF 8509 6A06 AEB9 10EB uid Kai Wang <[email protected]> uid Kai Wang <[email protected]> uid Kai Wang <[email protected]> uid Kai Wang <[email protected]> sub 2048g/1D5AA4DD 2006-09-27
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEUZ6yURBAD9qQ4Pz+LEm54dEtrDII566La8mVjMpZfp/xcPSY4Jsj9Rin4o XiJ4cevwTiAr7KBGbO4uJ/hRwOQMlql8vzwO+Bc66zLxwQfGpLniTvdEnsRmiwXn MOlc6Kd1SwxOk4rV/B6p1iJLZ6sXQPx9IlDskyJ0OhIYKBaYx4sjN4W3wwCg5QB7 QSrzEldBYnrxVFLHfmQO6ikD/3sW06q+gAdSFwFCFEZmE0kaCVzQUrTwnyKWlRPx Fvk0PftHhbofybxiv3OFp/zHZMHRlcVqcYf7WRLww+QXRgFh6x5kkOoAFMVJzhYH xKcXSnqPph6M4H1GvRVo4G1FkdqEZ5z2hRwiryugSfuzRRHil4ewpZQeB4am+Llu H3UeA/wO4eqG62W13pRephwYO0ramQai+WV34z+DUGoKY2EMpsbE6+J85aiySvor BTfWq1Lh5Mg3RYGWLmLay+GDQE2YIc1EUrCgHlUpB+vB+3pqPq+5ssOixktylJna R40BAqOP/gO/sSBnCZpI9nNqtKDpONfS8xwDArEKaoqxxphD2LQjS2FpIFdhbmcg PGthaXdAc3R1ZGVudC5jaGFsbWVycy5zZT6IYAQTEQIAIAUCRgD96wIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJEIUJagauuRDrMosAoIPJziIJtz3GBALxa4SG nIUGNliZAKC8yMp144zGxaumG1n4HZLNdaMwVLQeS2FpIFdhbmcgPGthaXdhbmcy N0BnbWFpbC5jb20+iGAEExECACAFAkUZ6yUCGwMGCwkIBwMCBBUCCAMEFgIDAQIe AQIXgAAKCRCFCWoGrrkQ69oVAJ9gWVClx+v3Hhvw2AjOyFaDT4hpnwCeP2ppw3M2 nNkuXRtTI3uY+jwCSmm0G0thaSBXYW5nIDxrYWl3MjdAZ21haWwuY29tPohgBBMR AgAgBQJGAP2+AhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQhQlqBq65EOtj DQCfZOhljB+TJQncoZWMf/CvbT5I/ZYAnimgyJtouIZGXSTqU172qsr721aTtBtL YWkgV2FuZyA8a2Fpd0BGcmVlQlNELm9yZz6IYAQTEQIAIAUCRvwuFAIbAwYLCQgH AwIEFQIIAwQWAgMBAh4BAheAAAoJEIUJagauuRDr8iYAn0PbQX8TzGfG4VJkI/W1 9Y2lQruoAJ4jtv0WxAV5CxIbBccVErg9rEdBdLkCDQRFGeswEAgA3/ArJRAwAXv5 AOSioc12EGWSX9bpYWfcODoJL5ggaBLQKE8SiA+evSXgvfW9AD8S9T5ltLSAYXUb pbIWw/Nnp7w9+hC81fQI7mHoDe7oSsJa1mnyzibnqRczxy3V23cjqPLeZiRr3AkD mhBkONQron7mk23x1lTsHCgFmxBZWxNdnkIprmN37YkiUB0ky3/x3s7BVdat3hqQ ot3OF3i/6ugqW3qH8+Z3uEpWZr2yx5KwEJbUQNvgQqONlZsMDCp03jJuPIgnR/kA iRFIUmGLocgOqfL3JL+l7MflVQFFlzZNQqKK+WK2kXOc/C31AsVY0YJ4CsjTQyBa 775LqpnTtwADBQf/WOJ8AztEUxh75zndmMV6tsUhq8K+cfaWR0e96zOP0eiO5IRW Z4muIXIBC7FxgyR628XAPm3a/IbMpD0Usure0MIQkmaza5ktGXG03KCpQYYhveJr 3I69jJHUM7Vvrcl+a9wY3Ni5UgIfmWQzdpsVW707/SjZDcD9e3MWhASOThKb1wIM II7zgKICwGBr4VSwNVdikdHJ2wNhziuwJQHFxQs8rsXTLzHeJcWJfpZ1bi1P4Csw lsWosIFeKESAHoPsbpHHcS46cd6CXbOTLkonsUDqW5DZoN959MI8txkh54heZdXv al72Ksb969EL5ef//lDo/ex8aaVYaYwiI0H3VYhJBBgRAgAJBQJFGeswAhsMAAoJ EIUJagauuRDrkbkAoIe8dlhn35cPrbpcy4AtUGFlR0HTAJ96MT6WOnFqjfJJxo97 Hps0V71KXA== =v7/U -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048D/C57CF3A8 2012-11-15 Key fingerprint = CCD9 F28A BD1D 50A1 8D08 18A7 F48B B195 C57C F3A8 uid Adam Weinberger (FreeBSD) <[email protected]> uid Adam Weinberger (adamw.org) <[email protected]> sub 2048g/9C6D0E30 2012-11-15
-----BEGIN PGP PUBLIC KEY BLOCK----- mQMuBFCkUjkRCACqWld1dYoNJjLlFZW1xjt524wQNaeDzl3GdNX81kkGUzsyseYg mmtlLXRSd2OqNHsTDwSqD9AmNErnn7tsOQL7bbUTxMdO3EOptiNwE9Xj9WKTuTSE Vy+jXusZAcBsg3TO4jccawanbbjOLUzi5X79J491/sr7dcTsJXcvkmAJWSeD7ho+ U8HKFlXfU8qqWi2tkCVYJJlLUFBzuN3V6i4x0odTxDMKYUQ4dFx/96cwTbSHF92V 3/jqeZMTglv8gKFHpK69M+uXN7/luRvj7mJ2e+kPFrBlC5dt13y2Q9PA328dqHBT dJMYS2oA5tSoTKWLLPIJYKGmEiEo8Qz+EQ4nAQCyuaILVdoSQLxJfU9hjkv3e4Ik 9NjWOtUz3YdzLyRg8Qf+KjZj5e1k2MHnk0UJKLwCaeXaRfVpA9KpcJk/uUek6VSs aYWp92IHshvaDVyb8DfpSAbgtu+jvafbXDy87Wwp1Da+O9GV1pHqhNNLA4lrgDjF JkScn7M24x+y8dRbXy4gMe3/j+qdtDrhYoUicoQYHW6S/UrJg2p3QrN5V9aZj8Dj xY4xbURtzve9sSz5oeDjnQsJaDgLxX6UOn6JUMgV7pCCgfknw5nfGZBdzsOPz1da v9Gwh4QvMVx6O0JNfrkYI45xJ8AAWTRAlycTFifPmt+9niWmYFUAlKXtRbW+FPym cTQIsK3t0vxrOaBH1ml4uMTbrET8eJlLflfr3cJSkAf+NQ5JQe6vlr4+9AOTf8Q+ h7KktDsscdCMYjjQ4aoCDuVfZQHXABeicgB1s9Cklha/QNy4VG43dkwIL8FWwGyc ueqnu9tlxY16sT/P6vk9/yTsRMVcKEBAKEtXQuTq04WD4Id1gkzbBD0wzwCbEo/F CjI/SxWMH/j0lVixcJYIpKgGj633rFOtUSoLsOWeJzNOIhcHIdz/qwlby14+Vd6u uzt3cDQ9SEd3G9DZQYIW2//ZkUnvxD3qK+sJIjJmL+ZU9eUXD8vvE79tDAOtknLw BbdLzwmJtNfP3v5DIWSmBYZfRTNRE7/W3Hn5cNe/DLO7hSQ5brWDmjMfXq9ovsRX j7QtQWRhbSBXZWluYmVyZ2VyIChhZGFtdy5vcmcpIDxhZGFtd0BhZGFtdy5vcmc+ iHoEExEIACIFAlCkUjkCGwMGCwkIBwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEPSL sZXFfPOoM24A/ielXNpbFz2W4YDt5b6tR7cDzGuDHSQeqVlXpJ9zhLc5AP98s/06 OkAXtmf98/FLU3NdouT7fIIm0Op19zfwEPxat7QtQWRhbSBXZWluYmVyZ2VyIChG cmVlQlNEKSA8YWRhbXdARnJlZUJTRC5vcmc+iHoEExEIACIFAlCkUysCGwMGCwkI BwMCBhUIAgkKCwQWAgMBAh4BAheAAAoJEPSLsZXFfPOoo94BAJkElhY9dt+9lk4Q AE5EjqxRvO1y8DFFb02qzphA68bVAQCAAeMt3ywQ9xPqPEal2IafGv4zF9CIJjFM r0HQMuD+HbkCDQRQpFI5EAgA+tX4pvhc37IfSmy4fYdxjbjB/B0s8me2nZn1kMHj +uJmUB+7WZUVrCXZwmsn4byN6i1jThQXvrZ+dLvUfxaQD6jOaiW81QwxeNYt1VJ0 +8011m/eBw5xuu/Ozk07SChGLvg8Xhf4yryOgOpxEc83QXPGDbBGKhMhHecvCai0 1/S+/VSPrx2fYSGiPqnWVpE1EqhaOSZ/iEpMDQhQF9nCbmeP5xJAUKIv3vv/82CP 5b6eeHLaNCsvIrDYQha2d6mJewiiZnpnwkARwJMJRje6WCMrs/g/CUgeTHeyhScK E2iZk8DgIS0Cqr6DY6yjZLGkjLmUpLuzAFCFDac5sT8I2wADBgf+N1t6ab7/OYmh vVex7CjPuqmK9FFUiZj7CstKltjOBajRKh7oz6KqDGcXwjRCWA4cuU/7I7q6IaIS L5+hWwzrK5Y63YxA8/csZ41wTGQSVoD4blCEFqdhCaR/J0kz4KQqIGM9OmT3zi8R +H+gb4e1oXApX20j5lxeQifHTI9KTbB/SFd1GAIZBLfWRO6I1vqQtuqFVOvKZeIk kIErHBdQnhGsAaEPKdxqaEUaqMUmM+/3dLhj0qw06+KKpRU9FF02ADRDwfIYP2Tr v7QJOn5Dn/TIJVq1gpPLu+lBUKugezwnabkFZuB26gJQ3Aaqnb0W/rdRlMtmxXCw jRujwCiTGIhhBBgRCAAJBQJQpFI5AhsMAAoJEPSLsZXFfPOosIUA/3Rt/SEgBJdJ E8fbDlkdsC8RMIQLJ9lbBjP4EF6HQPsyAQCm7eszYZZzL7nRse7NVQop+HPULeox IpuNrKfM7zuBiw== =yHIG -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/7277717F 2003-12-14 Peter Wemm <[email protected]> Key fingerprint = 622B 2282 E92B 3BAB 57D1 A417 1512 AE52 7277 717F uid Peter Wemm <[email protected]> sub 1024g/8B40D9D1 2003-12-14 pub 1024R/D89CE319 1995-04-02 Peter Wemm <[email protected]> Key fingerprint = 47 05 04 CA 4C EE F8 93 F6 DB 02 92 6D F5 58 8A uid Peter Wemm <[email protected]> uid Peter Wemm <[email protected]>
-----BEGIN PGP PUBLIC KEY BLOCK----- mQCNAy9/FJwAAAEEALxs9dE9tFd0Ru1TXdq301KfEoe5uYKKuldHRBOacG2Wny6/ W3Ill57hOi2+xmq5X/mHkapywxvy4cyLdt31i4GEKDvxpDvEzAYcy2n9dIup/eg2 kEhRBX9G5k/LKM4NQsRIieaIEGGgCZRm0lINqw495aZYrPpO4EqGN2HYnOMZAAUT tCFQZXRlciBXZW1tIDxwZXRlckBuZXRwbGV4LmNvbS5hdT6JAJUDBRA0OJBeSoY3 Ydic4xkBAREgBACBqWM1pZHF5MqOpsxyCeNdxsp8VXUSoReSmaZPeSY5caIV0NgN cUw4AdSKPOu2jDeRSQNzkUk7+/PyK6k9dunZJS4Dnze5QqvTUgi+rHYnEs+DFBRT CcMERiSftaP3gDqK3XyWgXDvLXxAkhiWp9yd/QsnZ1+ahz/qACVi+JxdB7QlUGV0 ZXIgV2VtbSA8cGV0ZXJAcGVydGguZGlhbGl4Lm96LmF1PokAlQMFEDGxFCFKhjdh 2JzjGQEB6XkD/2HOwfuFrnQUtdwFPUkgtEqNeSr64jQ3Maz8xgEtbaw/ym1PbhbC k311UWQq4+izZE2xktHTFClJfaMnxVIfboPyuiSF99KHiWnf/Gspet0S7m/+RXIw Zi1qSqvAanxMiA7kKgFSCmchzas8TQcyyXHtn/gl9v0khJkb/fv3R20biEYEExEC AAYFAj/dD9YACgkQFRKuUnJ3cX9ejgCfbm0bT5x6nuCY4BD2scsMVKV8Pb8An1lj aVb0KRqDjPRrd6FUZoMGWT/3iQCVAwUQNA+txx9/qQgDWPy9AQGHRAP7Bzyo2Hvu 049m44kNFgH7Kkg60SetOcYWzGKVe1nEEvBKWCMgICCfh5nHY1q/xv7pQjCBLQS4 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<[email protected]>
pub 1024D/FC118258 2008-07-03 Key fingerprint = A399 BEA0 8D2B 63B3 47B5 056D 8513 5B96 FC11 8258 uid Nathan Whitehorn <[email protected]> uid Nathan Whitehorn <[email protected]> uid Nathan Whitehorn <[email protected]> uid Nathan Whitehorn <[email protected]> sub 2048g/EDB55363 2008-07-03
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEhs+ZMRBACu6CWtdlJ/GkGO4O6epy4SKwxV2s64od5j3ZG/+CkdXfHVnvDf NAdvytDwRPjFdQtwDmLTcotdm9akMpmoI+nuTDOC/wyoojh3NlTp/YmzSLntBoaQ W2uwp8oAW4dszTMptgb3Dpce17cHQcCuQ8Ql9tnZlFOvm4XCP00y7pmGrwCg65cu 0wxbDYVp2fpPIG0D67q03j8D/01g68qU+JQqCZtCTDSJ7tG4w5zlOH6Hu7Q9wRhb XBDKX6fiO9CiRDorgi54DoKqjQoHWnFXrKBcAughLEjle5BSZ+Z+eu/tfMwDEfhL FMMPuvT9BVG/nukn4ufmk8BqPbw5PGalYGbdJvvjbyWhVIu/dexqGe9mT3DD7gk0 WZArA/95nvE5+LRH31Jugq1GJ7cqjJyd/IPQC96z7JXdme7oPQ8IYDsLjsT982MO 8WvwNbQPnRrj3Sgjp7EcuaFt/J66P7KvpU1lQKJDfZgk1LTL0Nm8wzLj2tXSwZWg tSOZewMItr2yKwBlpGDsS5K7CCpbocsndrI5DOPEzuYr7y+56rQuTmF0aGFuIFdo aXRlaG9ybiA8bndoaXRlaG9ybkBpY2VjdWJlLndpc2MuZWR1PohgBBMRAgAgBQJI bPmTAhsDBgsJCAcDAgQVAggDBBYCAwECHgECF4AACgkQhRNblvwRglgkxwCgmC82 iM6zfYaJwcFsqETyxS+9Vv4AoJCemsKBmBQiN7o5K84/DuaCZTWutC5OYXRoYW4g V2hpdGVob3JuIDxud2hpdGVob3JuQHBoeXNpY3Mud2lzYy5lZHU+iGAEExECACAF Akhs+tgCGwMGCwkIBwMCBBUCCAMEFgIDAQIeAQIXgAAKCRCFE1uW/BGCWCFSAJwL f5HwF8PEUIEo/25Dwr72JCW6DwCeIm2wQjiyXl+wy1QIP5eX5Emy+Pa0JU5hdGhh biBXaGl0ZWhvcm4gPHdoaXRlaG9ybkB3aXNjLmVkdT6IYAQTEQIAIAUCSGz66wIb AwYLCQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEIUTW5b8EYJY+GsAoINx6fjsHpdy JT0UWgiIr48kEhtcAKDetW0OzAVCF8HmXMHWR/zyjVqHSLQpTmF0aGFuIFdoaXRl aG9ybiA8bndoaXRlaG9ybkBmcmVlYnNkLm9yZz6IYAQTEQIAIAUCSGz7AQIbAwYL CQgHAwIEFQIIAwQWAgMBAh4BAheAAAoJEIUTW5b8EYJYgiQAoM04WRCQ0LI5L78O d4VFwQSiUiDtAJ43eEJzvlPmvR2geTEaB6lJGNrBMrkCDQRIbPmTEAgAypfp7UhW ZPvGO8EfI90WkCclB/H7hSfpTgcZfQafWis6YllJ/EC+orAdQ79I/vdp5x5as6VS HsvN/IXXxoL30uHj2PTFV4qi0Tx8YMcw3xUK+wskQ0HonWsmZZvqHBSMbh0+JpXg 75ZHXxOg/kpaFIjYz7cML9jSFBxD1S1/kmHqFnJISJ5wFAeXJj1loPfTbu6x5NB5 BGbR/ysii9FidJUAXPk2EviD82oltntcNrUJS29ghFwM3FO/sZFdStQppNTgDnwO mUFyYxpwzG8vMjWYl3DWlc8ozXtKRotGzzsXuwUvdnC9e9MRX8xsF7x1vMrV5j6+ 5SGMnz6KvRzRIwADBQgAhDEuTI6+glgo0Kale3FKlKaOdz9R26uTCWVlK32O98jp mrdCfG1u1cknYrLlIVZIlrTgu3WqjRS9j23z8mIKQNW6wudu+/50/N7wtlV8k/s3 DKmoUjcXH1b7vPxxnhFbtg41COFOUziIyXkupHEOJeaF+Sz4EEi8nXMKBEoGFlYD rh61rOFsfrf24E3dIwdLyjoTify8trdL5pgug27pHPMgXXx5cjLooq73VFvzlqCA 3zFyypgED7UsYMH9NjmyLlA77gK4gfuAlGXwEWyh99SVksrvvHqntHyg9p+HdCQJ GyYwRMNUXTfdSn4cWVc+Qip1jpgdH/bbIwZeTIMaIYhJBBgRAgAJBQJIbPmTAhsM AAoJEIUTW5b8EYJYA0wAoJ5oqyCt4TZRVfofTeTGcm8K+a8lAJ0YGUPg2rEaTf06 QaoupCN+daK2wQ== =hP6F -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/B1E6FCE9 2009-01-31 Key fingerprint = C022 7D60 F598 8188 2635 0F6E 74B2 4884 B1E6 FCE9 uid Martin Wilke <[email protected]> sub 4096g/096DA69D 2009-01-31
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEmE02QRBACEWV7eL0shCAA+vdpkBCMxrQkbRAceOs8+uhsaocAai3TCiyUg Byzo9OKlenJ+bcZHFsBx0mUDPBRFF/NJPfhh0EpkMRc6VKvCHsuvjr1717gcWbLa ibbvard6cFAAUDXGIn0/hPABtBidFcA4vIb3EQES0PbnXEVfOz1gymojlwCg4/8D 0ZICstqkxQMN+K6p/bpCV9cD/iMHVKnPCD9z9Bk9IJtkDGQ66OQpopY+oxUy9ZZE yO6Gnf8vDjPmPZ5RcDXu0XHlUpUF4yYkdnUKt9u71SVeDlBAQeFwRgDj0zbYKskA Py9YdR7bXbDPIuuAZyJv/93MKryHAEyr8aieAoRZ5zslRcOUrRbzueKi68P01xM2 H6Y3A/0bE+8jz0WWugB4d/D1qmpnxIHIbzWN4S2NICJmMcj/jgoC+p+DTl7TH6Rw KfTt199A4n/g8bfrI86hOQWNY9l9CcBqxwJNMhlY5a3Y6y81tj98oIFuTonyZEDd GZmXp4JBDEIYHVVL0XyD6pvFT2NLr0UHWAFZwsiWK+W0IrByWLQfTWFydGluIFdp bGtlIDxtaXdpQEZyZWVCU0Qub3JnPohgBBMRAgAgBQJJhNNkAhsDBgsJCAcDAgQV AggDBBYCAwECHgECF4AACgkQdLJIhLHm/OnvuACg499DhQhK0dsl+rDk2l+Y40Ec DiMAoNVTN6ybdr16bfoIoYddjsnKn9rPuQQNBEmE02QQEACo7w/pIuz1jhyXiKMh n6/LWwQNdIl5WT4E4DSB2/NmIVkGTwyyUET1nE4NyOVJWeHujK+PxZbtmx7OVe6J niwxv2NeWJ7EkLoeDTrSBKrFCqWRHpbN3bSUAaXiwU9HeHMbGjvvVRg86gzrPKlG I5blbT5N5QgQESuvS5eOgGZLbUptNIGwA0hUWOPN1YR6584XGeV0N18GzcB2nXn3 4Tj82IpeqF/iRY2VxZU3EcN4BoeDYcibPygA3521jWvPOnC9/uqeY/RsORKvyLsT CsEx3pRew0vhbJ8me8WkFPwVczJNWqdhEjxMm0NS9FyBDRgXTn7cROJiuonrGWtY 6HOEHIFsCIzCTfXG0zDaC6kc3k7g4Xlz3juzOL/mhDjnbH+G6VlqfHb6KP3YZnU5 fXtwFTRF/AFDv58m7PFGwAWjIU3mARzbhdKN71FQnp6aEdWIY/3ZyTAs+En1RWgR bHEO7Jg+55V6pH/Cn1p/aIXYDOqIp9HMi9w8nxM2mFt55MiqdUX4RkPxwUdy6BPK 22LxmxYBv4XrdQNbwy2n7k8H+wfQrKhP+oEKM9WFLTXpKPf52xTB4svJMd1yBZXZ FJZSArffJ/QlZ2HgC37V2HcXUOlvU1K+tan/xY2NbJmuetMU7N/ePUWyi4mg3Nww EzUpR59KjrqNI2if2qX7yjCB7wADBQ/8D2LYxz9SCqp6iebELuTBWbHtBX2r5xyl Z6CuDyjHQy+LOW2D2WEq3b1jI46HFp5O381jKNDJxx2z6o9E9dV63wFbGWIxoAec TEdbtf5NBKljFsEtdSg8xdaQa/8FdnTm9EK1MV3C8KqH8e1VBGaHDOlPU1t9zrhO Nc96n8OCl4yk+VldoVycqIgdpta4e8jR6kMGLlCXq4Mq6xR5usUoo6jSab4PSEC4 BZDE4WCzbrahrsJGK4hVmpzi9ofGiqOPf0+XUWG7Na6HyW4GJPohVmjJHyjwc4rf bHtJTu53Hk6S10HHYwbRJz1YO+08KrybtvdzXgTv2C/dYBmjheN2ylKmaXYo6bAa GcVmW3gFEUTWQd8qQtUJzL6LgreUjuY9xv7Z9nUc7SL63XfAjs3H75vavNWZ8Y/J Su/WuKXKxkJDLwzcKHnUVOegEXe0Q6+Khe056WSJ3VtF8+tAaksN7RRslrf1MmVt nVag81z/1UvOwNsyLVEucPnh/8LZxD3plUvscKm3w7rsuWiQ/Wtn/NCW9MBeZuxR QAUnfWbvHPBo1Dgo1essw+Q4crMGAprk/T8/kPuxrHQ3ZydT0e+t+noDCxcLeoP+ oqS1A/Za+idThWujkwos8clIyW4HryqAejrFhtzhfC8ELkpkjq0B7Yd/8Zv52O1T haaPTklRPcuISQQYEQIACQUCSYTTZAIbDAAKCRB0skiEseb86WULAKC5M2ASX7/v bNgnr3BzKKDpkqoskACfcKvwwi1c4AsPtLPxbySr6dUwhlg= =S3Qn -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C2AC6BA4 2002-01-28 Nate Williams (FreeBSD) <[email protected]> Key fingerprint = 8EE8 5E72 8A94 51FA EA68 E001 FFF9 8AA9 C2AC 6BA4 sub 1024g/03EE46D2 2002-01-28
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDxVl7cRBADbXnR4t/xRvvOSiPuGPnOGeamrphPbpPXsWD8Nm/pjfN3fhSfa 0gv3Y2n/IyLTg93gWZhWloMznkdg59Oj0oPSUxjgPauVw4q6l3JJIcurJNlp/Q7l DH0KLFJ8GuL6zxAz7Jcx1BpAIEu+G2SnI8+ZuGvq+YwaDxPFavfCqmVaBwCg/iPu OI+84/W54yZXvxfUN7dkDmED/3CxYLGeWqPqE8B8Eq8BlmgfP/FwaqXXb6xR7jsE XBaqNOIita6Iz49sYTYKYY2rMv6dMXjX1FM13wNW3rS73xkNvuJz0WU6sWl9Hw1e kjNjCN2oIqkqB5/1H14NMSOcUPLqERP7goFIK7OAJejUmm5Nc3KjG1S2G97xxjPe 39mlBAC0QFfa8J0Z6TORFa8Uqyx90pC/Y+I/S+y0vP/59ReP/PnQq/aUdDPLt5OZ edtpz7M4A2GtoVkWtedPRsw0hYK+Q3CtOMemQSnlfVjTZq5edL05Po09N89M/WMz hB9aRcdY7IN/btsQ0H12ZH+rEj+O4Adu+qEjsWePfW60Uj74GbQqTmF0ZSBXaWxs aWFtcyAoRnJlZUJTRCkgPG5hdGVARnJlZUJTRC5vcmc+iFcEExECABcFAjxVl7cF CwcKAwQDFQMCAxYCAQIXgAAKCRD/+YqpwqxrpMSwAKCVuyt4B1Pc1tAwRMEOmmZw 2nGIIQCgyRvB49snyBl86TikYv97ZifyLmK5AQ0EPFWXuRAEAIghycOZtElvBhfw r7TisjtVtzKhbF0Kj9cGg5brCC8/bJLK7PxNe48NSdlqMJ7algumsgYR37b/QBmq sOSEa2wXCnvCSD0ol+bdPn+Psb+hyi+AVNmVgdlJwuxHUHny0lWQnxeQLrt07SAw Ye/Nnc+arH6GXzBwXSpsQ2sOaMajAAMGA/9Hzjkv6HmJkPlKT2TNx33mbLaDk8xv vAJXxogxDcUqDDwqszWPcqShaW0IkMZo+grZfykZJjA0/8QUCaEUwhnYIwHMQRdA uNegCF/D2x4yzkF4d9gKYCCykDUrwvFDztIhGkinyzu6+xwe9qFcL/esIxnnonz7 Wx8/3e7pRvS2QIhGBBgRAgAGBQI8VZe5AAoJEP/5iqnCrGukuikAnAt8uA1EIv/5 WDCIpvNp0lgmwes9AJ4vD1R35+Db6UIw+R5EJaxNBY84zg== =xbGI -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 2048R/207B1BA1 2010-09-02 [expires: 2011-09-02] Key fingerprint = 98FA 414A 5C2A 0EF9 CFD0 AD0D F5CF 62B3 207B 1BA1 uid Steve Wills <[email protected]> uid Steve Wills <[email protected]> sub 2048R/E9B254FD 2010-09-02 [expires: 2011-09-02]
-----BEGIN PGP PUBLIC KEY BLOCK----- mQENBEx/EzEBCAC1Zje8FA0qGnqKv606untNjiluqEWTuwHOLPKLm0d1Pepb7A21 33kagHn5I8n6k/H/0jE+a2omlmPo5yilKszJLfPYXmqfkb8ZThwYG9Ly+kb3d/i9 m8qxlVktJ/Y/Cnzo1OzhUdxY4Icp0t4nVPZrHUkeA2DeuYK9zl4fq/wah6Z900/K tKBZqn8aPMbkjK6lFJAHNJ5gPNdyT74/nXyhyRMMLqRv0SfRRDRVcxdYW1RpZj7g d/CF/K7zAnG0uCeQA03/F2Mqagp0VW/4/QDF9+Y5Dia2oO01C7wAvyNjQsXjughh MRnYOfcescpw6r46mh1iLRGQa73X5V2vIwGDABEBAAG0HFN0ZXZlIFdpbGxzIDxz dGV2ZUBtb3VmLm5ldD6JAT4EEwECACgFAkx/EzECGwMFCQHhM4AGCwkIBwMCBhUI AgkKCwQWAgMBAh4BAheAAAoJEPXPYrMgexuhSr0IAKoef8NOJVAcFSPp8ke84k5Q ypyBtQLipQFjfhwyGiuP3H1+iC8BdSHSHYLKe/c3eC6V+3ybE0eSVr+AHRMMxyKQ DKi4W3VzZOpCjJ2CohhmywbDBTBK8svpbQsjanBPVIQGX8SDbnW2e7uocDbpOBkh wnpLCXsSe4He7XgMNHbEMsZ96xCXvPnn12Qtk8nE04ugUNMpCDFSvzsr5XYMoi+t fHtsGjYZzLju/zRV6hKTd0yqcrhq+8AR+9gtMGBzQQ5WOjQLaTQNXL/6UhlDJBaP AaaOM9mudn2UR0dkPKNfpSP76X82Q1N6iNrrkIYt4t3k/iFgIalcLDhiw3FKv7q0 IFN0ZXZlIFdpbGxzIDxzd2lsbHNAZnJlZWJzZC5vcmc+iQE+BBMBAgAoBQJMgWXP AhsDBQkB4TOABgsJCAcDAgYVCAIJCgsEFgIDAQIeAQIXgAAKCRD1z2KzIHsboQUS B/4vQDhgf5SM8SZEGh3nMd0aBqXnxQ4wHMZ3Du/SdA8ezQ7bmtb2UOkkj+SknBVR AlDpXXCrqwUZfBvcnc6it1OmMyT/7TGkt5TaKyO5DM5lV8DKBGJI89CRGUT0GzxD pi8u3g2jH8gMFY9AZYWZ+xkQ070G86kSMyrtJIXvJXZ8EnT8+32Xpak/up4Tsxro 3h6SYb2ZxTioSc2OhhPu0l8IydQcFON4tLjynmSvyrHyd0rQtQe9+yCdXHt5ceT7 eLRGCQDZ7ANlqNGn/DZqELdAzo85uzavTliu4KMp4EO+OvWoYOP77MnHEtQJX2Sw f9W8z/oAk+Xfc3XY6xFsJ4wouQENBEx/EzEBCACqJlb0BTVxCWzmT4teI4g34tVX hAqQAIp853VCcIGXYUsQ5SeejhPpc5/8jxq2ntyY3H/l6CjcVAfMTARF+/yUMkGe vDopAsWD2m4PKgE8upaEP7/qfjsH5Izl6Oj79XFelwACvr6bi+rsDXr/UAwVqN3V d4pSHlZHpj/T+eu6+bM3y3Uhtkt+CtzMtPhtflAjiERhWc44qRAyLhiIuJe8Ubzd vDqsNo8kaYSJfHjrdJFdHgpvz9eiyHuAly+CF6Ne+FqBX/5OI2Hm4Amsxw7ycyrb lLoGVi7mn00eBT/B4ocb5GSaWuniBedip8hi5h7oK8JFqICA4BRYS0CO0WLnABEB AAGJASUEGAECAA8FAkx/EzECGwwFCQHhM4AACgkQ9c9isyB7G6Fgdgf+NFFmqmRr EbH0U813djSroqF6TjpsXS/XBYH3LnwiRojqNq7yBG9I2nWIRSZ3pGjDx8va9eZr 9VPqdx0khKVKPl1TH1FMJYi+qvbkUqIQKc4UiFC4CHWbpCFe11HLi34L/uQWyWxq ityTpZFy9mlH1xsS2Fz1TVYiuwqe8e4fYasr1DOnWjyDU3c1UNoY8ZcIqckyFEUJ HJqlkdQ+bqO7wvzpk70pQU+Y9Ab61lANZnUkNSn0kzdqg1jJcMZpjEwsHo4zFbgw eMQuxxC31F4FhX/4XJGeFk/CgVNrJq/HJXAIRDbuOybQ6i7AqIhEGFPidlAcw3fz eYhPE7EaCOyuAA== =7zxq -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/C45CB978 2006-01-08 Key fingerprint = 04EE 8114 7C6D 22CE CDC8 D7F8 112D 01DB C45C B978 uid Thomas Wintergerst <[email protected]> uid Thomas Wintergerst <[email protected]> uid Thomas Wintergerst uid Thomas Wintergerst <[email protected]> uid Thomas Wintergerst <[email protected]> sub 2048g/3BEBEF8A 2006-01-08 sub 1024D/8F631374 2006-01-08 sub 2048g/34F631DC 2006-01-08
-----BEGIN PGP PUBLIC KEY BLOCK----- mQGiBEPBdXQRBACT86OgiQJqRNqy+gSXuAmYH5Cpqz1iBuv6o+uye7O3x6cTLg/r 5JKnhu+rgW3fd1QgAZn07fwjcJQLAx5BcS/3R3aGYS+r7IH0M1+NoENjwXjOed2B E50r9DYyZjO+GtxqAp0SQI59aZOTaA3UDV0sRzM5xn3i+7P0GoBSHTtszwCgwVYb ixCmah6KYSvA7sy7RgEk3bUD/jhSchFtQV64L7AuUbci3plpwFYweSWYliFNjlL/ g41uPjhIP5L38yG2R7sDY7sjdnvJ8b9ZTB43uCe6/HxHNTj8zX8i5c3AP+KxS87D NGnrcAYS2eR85w+EdGGQWcDMtQj6/JoW8BF8VdmDgpOmVMlqxrtGcQcY7fxUat1q slJCA/41xOy+1aJgWak2JRhOMEeyb+k0bTFKWUIZiVHIGk8RbegW0isRa20Fj8r7 hT+oNEeCtIRyO16z3koVzZ0gLA8+JUPn0wEU5VuKpNsqiafFLjYy/mjaxlt7Pscn d2V53y+usYoOLFQs7GQooo6PPh6GluTBooFqmLea3U0CTs8MCLQkVGhvbWFzIFdp bnRlcmdlcnN0IDx0d2ludGVyZ0BnbXguZGU+iGEEExECACECGwMGCwkIBwMCAxUC AwMWAgECHgECF4AFAkPBgKICGQEACgkQES0B28RcuXhHPQCgrf5qxNn53vvWganB OLg9rU482DoAn398pRFSUp5aFo7Dz9+1e0wY+JGjtClUaG9tYXMgV2ludGVyZ2Vy c3QgPHR3aW50ZXJnQGZyZWVic2Qub3JnPoheBBMRAgAeBQJDwX1AAhsDBgsJCAcD AgMVAgMDFgIBAh4BAheAAAoJEBEtAdvEXLl4uEIAnjRG8femt+4gnF68wbKZJKnF eVcOAKCFNb+kdu2S2iU5yJehGPC2Yfi4VbQSVGhvbWFzIFdpbnRlcmdlcnN0iF4E ExECAB4FAkPBdXQCGwMGCwkIBwMCAxUCAwMWAgECHgECF4AACgkQES0B28RcuXgg 6QCeOPFerndygwnAqnSgBEOXKl8jhpUAoIPLowj1HWWdva2jId1LfiuIdu3qtDRU aG9tYXMgV2ludGVyZ2Vyc3QgPHRob21hcy53aW50ZXJnZXJzdEBub3JkLWNvbS5u ZXQ+iF4EExECAB4FAkPBfOECGwMGCwkIBwMCAxUCAwMWAgECHgECF4AACgkQES0B 28RcuXixFwCgjqi4KzU5QCpXPIAxX2pI0SIIBGAAn2qA0BNdstMGSPqCKuk2aeKK qr7dtDJUaG9tYXMgV2ludGVyZ2Vyc3QgPHRob21hcy53aW50ZXJnZXJzdEBtYXRl cm5hLmRlPoheBBMRAgAeBQJDwX0dAhsDBgsJCAcDAgMVAgMDFgIBAh4BAheAAAoJ EBEtAdvEXLl4n/8AoJddHunNAucAY+h66q2tF3hVIkwxAJoDvR58qhnLKR5zMIBC dgXKrtddILkCDQRDwXV7EAgAxeuBjuCZYxu9VwWjra5SIuPSBvGtDXFZ+8AVl6YZ 12wi/KtEQvB3viClH85CYu0CMi7nV0DWjDsqvot3NitKBLMnzxNWp2NBM8btCIRW m1/nmM/dHDrbbEXDQeLwP5CTcK9Lq5x2psoLYLuuN5dxXGAuyOekfRpO6rVuLAvU r5lrV8Yr2T4Wwhe/uxZU3JRww7JqPjaEHT/AlAGwVLqbtPLmdgwK5Bb8NRAvxEmm Dea5ypFUsLQC3C297kKZ80I4cBXj14iBEnceB+M/kHH66aD+6oecTadCtlWh3051 15nZFVZC+rRbf/VazjgXN9KdUsrxJ4hPAK9dCPjV8Z7eNwADBQf9E/Q0/OGNmGA6 bdJSNvPSBD7i+RXkVRI4AiWhYLTw3sAvD5Zb4DPuSACwsoZegNqUqHH/aTqrb7Jg yQVgCBXUHsu3Kjjdaz5VgzLI/6v5nE7vyVaL80cU8xFnRdLKLCZ1S76bsGGnhKHQ 7APJTTXX3TusdVKFo0tdx3o4oSBwRt939p74N33/PLp6NTpg2uNa2R29O+d8Ib00 F68GuUmUMgGFpK+RVMgHO0ON/DGQjytTb5C8reethVstFXRnw7318bYdloN7wp5V KMuaVvR8sHcUIqpC+eYXJw7GxZO+4YRMAb3rkVN+AIgeoS7EnU1GbgyM6yXWV/Qo 2xHt2gIwNIhJBBgRAgAJBQJDwXV7AhsMAAoJEBEtAdvEXLl4r40An01vu+UirSJP ABcaIIYdh5NW8fFOAJ9AosnjpsIlvpO2Rblw6tBoAvdxvrkBogRDwXyJEQQA7zb7 /Lc8rllk/qKxtSK5USD9qc21tjV4oH8cX1pAzVfh67OqK6EWofRBejKs5z4wuIGU pi8I9YQa6o+TBe4Z/w0ZupWwoNxFtSKXedWPFplJ/GkMLZtIoG5n6Uec4zfEXMNV yeIMDkioZE/9AiZZXK2r5uKOFrbp2jutZIfIPGsAoKF+KSKZLfSukvQGySH/vVTt MwzZBACWeSOP/Iay+yK/oL5u+9ALiUpcWglFMHwaNbGUxGEIFptO7Zdk/K4uMrQh mspPzGT3FndAMoamA0Wq/OxUBJVjrUvSzckR/G5/MpIXuXjgYwrCuqf8B4PYOeRo 2FKRHRcVpBRlQBC/pDbmvgx0Vy8OFoluOk9tgvWezOB5DC9GpQP+PsmlUePAbGI6 /sb9tEfbC+8cjsaRZL+LGCSfXOn4q2jFhVxdY3941N0wwFu5cSzxp7iXFVAiGI9H qk1RapQ6gW+GTO/K9hVbccLXB3tdllpHJKRM27HXNieXe3DJ7tJxCFFfhGoPWpcF kQWy45AVPOWzSAWoLC6ecj9Ukouaij+ISQQYEQIACQUCQ8F8iQIbAgAKCRARLQHb xFy5eHBtAJ0SPgJdqpiKhzRCduBUr0vzOHqFoQCdFG3I2UC0Pb6Peszs8HZdVeKm NaC5Ag0EQ8F8sxAIAMi89otKQxeJCb0LKBtlrq3ogt3RCQPJ1sPir3D7EBm/VkKC WhlbliF75VTW8qWD2HA4DqPU81N9o7ZjCMX4Q2LwzfCv8liJ+ZXlHZsPuXlLmZHV jAqKBtc3zuE1nTd5fHQP4GtaGQKG+3v8p0t3JfpXgit4OGYANFbF1i3174Rfpp9T 3LxRHX1iPDsj67FP79Ycr8w4tmdPBw2Z2Gh6M58hp9Z4ytEFfBUU1gD4tfl74L02 IAoSpkH56d85z264k+bRK2D6aBnxCKU7BLztG8RAK/9GCAOqxv16I3oByvZNGMx7 ECd13dkh4r3kXNliLg0bF3oMHaN0uqFt0Eoqif8AAwUH/2t7GFrqviBQwtr2em+o 1Ac/dyqj8F/ciYPnlaomOEypdhI/M8lMFySkH7M54xl7e0FVHvWvxhHu2D3CWgxh 0FW0gLS97HBbNxjYQCIFfNbT5WmRMPvihG5ym3TCOdo9UD445a4+DSqSLo/SZi8z G5lUuuI8OYRJQ/43ka4lzbdUAI8YjJnyk6YQlZ3t7eYTkeHWmOrlTCSz6c7jQoNQ rbIxrrkVi8kewd91853OekuLFZ6oZQtU/YLYFicacz8HE/r42uPsG2azeqqd19XF NJOFuTut4fdAYbVeztIN6xYdgx+tI/LGzTSoMurOYI/U5kk65ABqxC3kgyG0ad+W AYCISQQYEQIACQUCQ8F8swIbDAAKCRARLQHbxFy5eGGAAKC+QKCN4M/grwaBbTer B5lKgt0VCQCfdhlL5hMDBDoaMdMtBZXFL4/Vn10= =ArNG -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/0B92FAEA 2000-01-20 Garrett Wollman <[email protected]> Key fingerprint = 4627 19AF 4649 31BF DE2E 3C66 3ECF 741B 0B92 FAEA sub 1024g/90D5EBC2 2000-01-20
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.0.6 (FreeBSD) Comment: For info see http://www.gnupg.org mQGiBDiHU3wRBADX+GS3fClPc0K3s2RePf2YeV+w7X3cmnWb0FLhAekfIzjLSHl8 PWxXXQRtFyjR4KpsiwpGusX/nIJmaEoAdyqROKvpqYZPa3CjI2ldq1t1mj8lUOLo +ktQvgR/fZoveOl+HT1yIRZDsLrQWYE96lC8Xx2Iiip/16whzhE4rJfWvwCgyb+G a2jW0JaqmVRmyEqwzudoeqEEAKNUV5lmGRcs/GxwAJ7JRcxMI5QtoUBTfDKYyJZi t6pudVC9STIpMoEw9m4c5KRFixdiHno/dbkECvSzpTA1qAHiC2WxeTXAz91ySTfk iGNVlc670A+eC7Qi3ZGYhWKgKAvm0hOlYxOrU83u9naHKA+l4dOIGCQoZ7ElcfdO 77T8BADQG/nzZcaoS0o9za11YcYMAWDiEHX2JyWF7+O+qJc7UmAGMZ4YHeYOBTkT 6ybzjn5JhQtSr9YQglweYFjFYdeOmQAYow1MJxJvh0e0eoXwzOgdwJ8fzbxpHeAQ W9uuI754sm3U80ag7RvzgeWRX7HdETCtbFF8ZCWHSE7sj29ZB7QlR2FycmV0dCBX b2xsbWFuIDx3b2xsbWFuQEZyZWVCU0Qub3JnPohWBBMRAgAWBQI4h1N9BAsKBAMD FQMCAxYCAQIXgAAKCRA+z3QbC5L66jfWAJ9QRUBS9u2D9s861txzAAGDur0x/gCd ELqxcKVno9Q/l0DFb6c2ZIlkTT2IRgQQEQIABgUCOIdUpAAKCRAj54bpvu2UbtDT AJ9anhNRzF+bPhzGsoVJG1M0+aqsWgCfV6grZerQHY0jrzh7AcGCMNNDNYaInAQQ AQEABgUCOe58UwAKCRAff6kIA1j8vYq/BACbNYb6vCIi7/qEYF6dcBrEKf3sQ9mR U+ign91BqI1XR6KWREzMb7C/j/8ClreLp+UYpzf2dGiMtg6wo05VM9/wNTgQ9XGQ lm8VHRuMG6nKMxzMmugVhoKM16g4ongkLwV2GP7i/UULLl/YtBY0HHeZrvX5dFTI e0I71GmWy38WDIkAlQMFEDnug1NNVigheQUMEQEBX6EEAKTQbXGBs5XC1NuI3UdO DRvpRnzwY1KXlcJNWEUBFnwKqNdu23XyWT9VoMSHQwntTH1LkdYrrZJDQIlCchHS bRoobiveoUEqqHtWx9enhADBbSyl+SeDanOd1rx3jieplg8rseeqS7j2k5EUCaus wsk2W7zn4mpRNR25WuO8JOhjiD8DBRA57ojmGPUDgCTCeAIRAvbfAJ9SwgJaBMEF FYpRIoNsgvnHRaBmvACfVf1DdCW4EiCwtstuphmkZU9uv0aIPwMFEDnuiMGI4Xsd /OVlYRECVBkAnRJA6imAt+d9i2csxiReRI2xCrC/AKDjL3Wlp0ustkS1SkXiEZmX OcGfk4hGBBARAgAGBQI57oOaAAoJECAVMdWEXf7dfowAn3es+GZFfAzNl1BY3IdA kHBkpybbAJ0SghHeM67I6UvsD3OY4aKDu7D/g4hGBBARAgAGBQI57pd1AAoJEML8 hqolOUaLhLEAoOj8APJHlYELhru0tPRZSfZYovDmAKD9rBzlJZzxeN36SfwkYiNW nnl0A4g/AwUQOfXFQNjKMXFboFLDEQK0OQCg2TuAY5h0Q7dgZgDe3dW/1zlLjskA oOFLVMM9s8oA8sTCTGAMqnca/3GduQENBDiHU6IQBACjT3ldbYOk2zYwEcaYhxom HuhAht9WhqRkBstdrJbmHw04zMNdRyodfbZk/DunKPnYPjSXVL2m3aXXdzPLXmMJ WTA7WykvMxBZX9A7GONMwWKOoZcEJheNagfgOa+be4rZ/S19AnUDBXQGDCgbXlYa BCrSRuAmfOVQ4VLW+3OovwAECwP/Z1P1kKWACm9Ual6GAlk+R1pASGOJS2kOyYkt 0VvV9BBfYaxD+4E1xp6T4FEkdQk2Lz+91q/b6z7CA0Ed/2yNtm1HmVGyMc5yFRoj U38i0Lrxf0fo06g+ewwIXXEEuZrdGEFaxQpWTZ/uCFiGe1wtnGT91B4FDENxuIQ/ IbrSxgOIRgQYEQIABgUCOIdTogAKCRA+z3QbC5L66mpDAKC1YD/4KeNybL31f9B9 iq7OH/kskwCfeEvJINcMBk0UEdjpgO85woB6QKI= =stB+ -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/69A85873 2001-12-11 Joerg Wunsch <[email protected]> Key fingerprint = 5E84 F980 C3CA FD4B B584 1070 F48C A81B 69A8 5873 pub 1024D/69A85873 2001-12-11 Joerg Wunsch <[email protected]> uid Joerg Wunsch <[email protected]> uid Joerg Wunsch <[email protected]> uid Joerg Wunsch <[email protected]> sub 1024g/21DC9924 2001-12-11
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<[email protected]>
pub 1024D/48F2BDAB 2006-07-13 [expires: 2009-07-12] Key fingerprint = 7182 434F 8809 A4AF 9AE8 F1B5 12F6 3390 48F2 BDAB uid David Xu <[email protected]> sub 4096g/ED7DB38A 2006-07-13 [expires: 2009-07-12]
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<[email protected]>
pub 1024D/F050D2DD 2003-10-01 Maksim Yevmenkin <[email protected]> Key fingerprint = 8F3F D359 E318 5641 8C81 34AD 791D 53F5 F050 D2DD
-----BEGIN PGP PUBLIC KEY BLOCK----- Version: GnuPG v1.2.2 (FreeBSD) mQGiBD97XL8RBACC3CMLdwZY/RcLw4PM6h2KYj+cG7TNSfNWszZO5HdQYrd6HZKQ h0cL7cyW1Low8a2ZulxtEjM1SfofzDlhNaTYhyjlO4xBnJM13dMFchmM4j4qF0Mu al1MEeO3EbLntFsh/aDX2sOKEavz5id8eKmAZKez2O5Z27bymkFf4o2UbwCg841B WuuWHsy4O1zrac0WidkS3G0D/jeVbYA09gylZA1KSd3djHE55lQDQrUt3+2xWxjG Lg60WIqys/yxei6nVO7/Wr6Q1WISiX0bYXAxHCZZQrT6cuNtEBntPPa9PnXRewUx 8xwVCBIuSLK5Kw2WZ2FMuQWTzfd4fwt8P9vghJlaV3h5Byw3e6/MdoDID9Jkg/ml f5FuA/9kZBwtE4zKJvx3Pv7EG6T0w82QA0SFtcFyRnNarUIfqyUsFXNkr8hoQT3Z J5haO/lW2HW70KMr26GxK61XcF8LQtfvphv9M+4yF3+DZSu1YxUM1Vs/q27EQhXa 3Cs4kJkKdzW2xDbIbuD5ZJQqFAzWX7IiTTNXnEGZStPTQMYZLbQnTWFrc2ltIFll dm1lbmtpbiA8bV9ldm1lbmtpbkB5YWhvby5jb20+iFsEExECABsFAj97XL8GCwkI BwMCAxUCAwMWAgECHgECF4AACgkQeR1T9fBQ0t01FQCfUR367fJJ37Wl4HvZVBoF peBX9ZEAniaaK/D+n/JttkgY8jJf2ZvjF0SSuQENBD97XMIQBACPpJjDdDw42++u vPMW/R7Iwqdpgs22T/bzVlFxDGx2uD9xaoNKI03jkOyUWiFlHbuifMRhxTwO5Vyg nj91Y0fk8hdd9bjT0ee7lJuQ8PBqzb/uEVGFIC+56/ocFzuBANdN5fzEfxp5AA0o zAPotyGEmLLK8+3ApZmAbsnQEveOwwADBQP+KgIxPzWAxYSn/MFPK2QBEjHuCCsS JB+VOShc/QaSn/wFEKc8Brjpr1KeAEi7dFrK4Sa2Rn2+k9tRSJptxi1m3Hrr0J2z 0JofnF6cKkvmIsCse5OGCK/LJmuWHuNVqYI2X9Q0am+soHEYsRaqB/BDLT5Mw0mE 5NO6455cKEcyizmIRgQYEQIABgUCP3tcwgAKCRB5HVP18FDS3b1HAJ9ZjWomBkE4 1vaMSXyIopmSQNVxSQCg3J+fBmk0yhD2A8CIfxhpSRJDwus= =wV5Z -----END PGP PUBLIC KEY BLOCK-----
<[email protected]>
pub 1024D/3CCF1842 2007-02-20 Key fingerprint = 1400 3F19 8FEF A3E7 7207 EE8D 2B58 B8F8 3CCF 1842 uid Bjoern A. Zeeb <[email protected]> uid Bjoern A. Zeeb <[email protected]> uid Bjoern A. Zeeb <[email protected]> uid Bjoern A. Zeeb <[email protected]> sub 4096g/F36BDC5D 2007-02-20
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<[email protected]>
pub 4096R/EA4BF1EC 2012-11-28 [expires: 2013-12-31] Key fingerprint = A8DE D126 D346 E9CB 6176 AECB 0401 4392 EA4B F1EC uid Niclas Zeising <[email protected]> uid Niclas Zeising (FreeBSD Project) <[email protected]> uid Niclas Zeising (Lysator ACS) <[email protected]> sub 4096R/BB8B5551 2012-11-29 [expires: 2013-12-31] sub 4096R/B8D43CD2 2012-11-29 [expires: 2013-12-31]
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<[email protected]>
pub 1024D/9196B7D9 2002-01-28 Alexey Zelkin <[email protected]> Key fingerprint = 4465 F2A4 28C1 C2E4 BB95 1EA0 C70D 4964 9196 B7D9 sub 1024g/E590ABA4 2002-01-28
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<[email protected]>
pub 2048R/3E51FB42 2005-10-21 Key fingerprint = 5F47 3861 7ABA 8773 9E32 0474 5C33 841C 3E51 FB42 uid Sepherosa Ziehau (freebsd) <[email protected]> uid Sepherosa Ziehau (sephe) <[email protected]> sub 2048R/7AA31321 2005-10-21
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<[email protected]>
pub 2048R/E8A68B1C 2012-08-17 [expires: 2016-08-17] Key fingerprint = 3DFF AA2F C10A A979 2FB9 A764 F145 4BB6 E8A6 8B1C uid Andrey Zonov <[email protected]> uid Andrey Zonov <[email protected]> sub 2048R/57FC2BD3 2012-08-17 [expires: 2016-08-17]
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<[email protected]>
pub 2048R/43788F78 2012-11-21 Key fingerprint = 31CE 242E 6F4F F24F EEF4 D9BB 0890 2C5F 4378 8F78 uid Takuya ASADA <[email protected]> sub 2048R/A87B0906 2012-11-21
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This glossary contains terms and acronyms used within the FreeBSD community and documentation.
See: Access Control List
See: ACPI Source Language
Pseudocode, interpreted by a virtual machine within an ACPI-compliant operating system, providing a layer between the underlying hardware and the documented interface presented to the OS.
The programming language AML is written in.
A list of permissions attached to an object, usually either a file or a network device.
A specification which provides an abstraction of the interface the hardware presents to the operating system, so that the operating system should need to know nothing about the underlying hardware to make the most of it. ACPI evolves and supersedes the functionality provided previously by APM, PNPBIOS and other technologies, and provides facilities for controlling power consumption, machine suspension, device enabling and disabling, etc.
A set of procedures, protocols and tools that specify the canonical interaction of one or more program parts; how, when and why they do work together, and what data they share or operate on.
An API enabling the operating system to work in conjunction with the BIOS in order to achieve power management. APM has been superseded by the much more generic and powerful ACPI specification for most applications.
A daemon that automatically mounts a filesystem when a file or directory within that filesystem is accessed.
The registers that determine which address range a PCI device will respond to.
The definition of BIOS depends a bit on the context. Some people refer to it as the ROM chip with a basic set of routines to provide an interface between software and hardware. Others refer to it as the set of routines contained in the chip that help in bootstrapping the system. Some might also refer to it as the screen used to configure the boostrapping process. The BIOS is PC-specific but other systems have something similar.
An implementation of the DNS protocols.
This is the name that the Computer Systems Research Group (CSRG) at The University of California at Berkeley gave to their improvements and modifications to AT&T's 32V UNIX. FreeBSD is a descendant of the CSRG work.
A phenomenon whereby many people will give an opinion on an uncomplicated topic, whilst a complex topic receives little or no discussion. See the FAQ for the origin of the term.
See: Carrier Detect
See: Clear To Send
An RS232C signal indicating that a carrier has been detected.
Also known as the processor. This is the brain of the computer where all calculations take place. There are a number of different architectures with different instruction sets. Among the more well-known are the Intel-x86 and derivatives, Sun SPARC, PowerPC, and Alpha.
A method of authenticating a user, based on a secret shared between client and server.
An RS232C signal giving the remote system permission to send data.
See Also: Request To Send.
A version control system, providing a method of working with and keeping track of many different revisions of files. CVS provides the ability to extract, merge and revert individual changes or sets of changes, and offers the ability to keep track of which changes were made, by who and for what reason.
See: Debugger
See: Domain Name System
See: Data Set Ready
See: Data Terminal Ready
A method of encrypting information, traditionally used as the method of encryption for UNIX passwords and the crypt(3) function.
An RS232C signal sent from the modem to the computer or terminal indicating a readiness to send and receive data.
See Also: Data Terminal Ready.
An RS232C signal sent from the computer or terminal to the modem indicating a readiness to send and receive data.
An interactive in-kernel facility for examining the status of a system, often used after a system has crashed to establish the events surrounding the failure.
An ACPI table, supplying basic configuration information about the base system.
The system that converts humanly readable hostnames (i.e., mail.example.net) to Internet addresses and vice versa.
A protocol that dynamically assigns IP addresses to a computer (host) when it requests one from the server. The address assignment is called a “lease”.
See: Extended COFF
The name of a mutual exclusion mechanism (a sleep mutex) that protects a large set of kernel resources. Although a simple locking mechanism was adequate in the days where a machine might have only a few dozen processes, one networking card, and certainly only one processor, in current times it is an unacceptable performance bottleneck. FreeBSD developers are actively working to replace it with locks that protect individual resources, which will allow a much greater degree of parallelism for both single-processor and multi-processor machines.
A system where the user and computer interact with graphics.
See: HangUp
The markup language used to create web pages.
See: Input/Output
See: Intel’s ASL compiler
See: Internet Protocol
See: IP Firewall
See: IP Version 4
See: IP Version 6
The IP protocol version 4, which uses 32 bits for addressing. This version is still the most widely used, but it is slowly being replaced with IPv6.
See Also: IP Version 6.
The new IP protocol. Invented because the address space in IPv4 is running out. Uses 128 bits for addressing.
Intel’s compiler for converting ASL into AML.
A protocol for accessing email messages on a mail server, characterised by the messages usually being kept on the server as opposed to being downloaded to the mail reader client.
See Also: Post Office Protocol Version 3.
The packet transmitting protocol that is the basic protocol on the Internet. Originally developed at the U.S. Department of Defense and an extremely important part of the TCP/IP stack. Without the Internet Protocol, the Internet would not have become what it is today. For more information, see RFC 791.
A company that provides access to the Internet.
Japanese for “turtle”, the term KAME is used in computing circles to refer to the KAME Project, who work on an implementation of IPv6.
See: Kilo Bits Per Second
A method of dynamically loading functionality into a FreeBSD kernel without rebooting the system.
A kernel-supported threading system. See the project home page for further details.
Used to measure bandwidth (how much data can pass a given point at a specified amount of time). Alternates to the Kilo prefix include Mega, Giga, Tera, and so forth.
See: Local Area Network
See: Lock Order Reversal
See: Line Printer Daemon
A network used on a local area, e.g. office, home, or so forth.
The FreeBSD kernel uses a number of resource locks to arbitrate contention for those resources. A run-time lock diagnostic system found in FreeBSD-CURRENT kernels (but removed for releases), called witness(4), detects the potential for deadlocks due to locking errors. (witness(4) is actually slightly conservative, so it is possible to get false positives.) A true positive report indicates that “if you were unlucky, a deadlock would have happened here”.
True positive LORs tend to get fixed quickly, so check http://lists.FreeBSD.org/mailman/listinfo/freebsd-current and the LORs Seen page before posting to the mailing lists.
See: Merge From Current
See: Merge From Perforce
See: Merge From Stable
See: Multi-Level Security
See: Message Of The Day
See: Mail Transfer Agent
See: Mail User Agent
An application used to transfer email. An MTA has traditionally been part of the BSD base system. Today Sendmail is included in the base system, but there are many other MTAs, such as postfix, qmail and Exim.
An application used by users to display and write email.
To merge functionality or a patch from the -CURRENT branch to another, most often -STABLE.
To merge functionality or a patch from the Perforce repository to the -CURRENT branch.
See Also: Perforce.
In the normal course of FreeBSD development, a change will be committed to the -CURRENT branch for testing before being merged to -STABLE. On rare occasions, a change will go into -STABLE first and then be merged to -CURRENT.
This term is also used when a patch is merged from -STABLE to a security branch.
See Also: Merge From Current.
A message, usually shown on login, often used to distribute information to users of the system.
See: Project Evil
See: Network File System
A technique where IP packets are rewritten on the way through a gateway, enabling many machines behind the gateway to effectively share a single IP address.
A filesystem developed by Microsoft and available in its “New Technology” operating systems, such as Windows 2000, Windows NT and Windows XP.
A means of synchronizing clocks over a network.
See: Overtaken By Events
See: On-Demand Mail Relay
See: Operating System
A set of programs, libraries and tools that provide access to the hardware resources of a computer. Operating systems range today from simplistic designs that support only one program running at a time, accessing only one device to fully multi-user, multi-tasking and multi-process systems that can serve thousands of users simultaneously, each of them running dozens of different applications.
Indicates a suggested change (such as a Problem Report or a feature request) which is no longer relevant or applicable due to such things as later changes to FreeBSD, changes in networking standards, the affected hardware having since become obsolete, and so forth.
See: Perforce
See: Personal Computer
See: Process ID
See: Post Office Protocol
See: PPP over ATM
See: PPP over Ethernet
See: Problem Report
A source code control product made by Perforce Software which is more advanced than CVS. Although not open source, its use is free of charge to open-source projects such as FreeBSD.
Some FreeBSD developers use a Perforce repository as a staging area for code that is considered too experimental for the -CURRENT branch.
A method of enabling access to up to 64 GB of RAM on systems which only physically have a 32-bit wide address space (and would therefore be limited to 4 GB without PAE).
A mythical piece of headgear, much like a dunce cap, awarded to any FreeBSD committer who breaks the build, makes revision numbers go backwards, or creates any other kind of havoc in the source base. Any committer worth his or her salt will soon accumulate a large collection. The usage is (almost always?) humorous.
See Also: Post Office Protocol Version 3.
A protocol for accessing email messages on a mail server, characterised by the messages usually being downloaded from the server to the client, as opposed to remaining on the server.
See Also: Internet Message Access Protocol.
As FreeBSD evolves, changes visible to the user should be kept as unsurprising as possible. For example, arbitrarily rearranging system startup variables in /etc/defaults/rc.conf violates POLA. Developers consider POLA when contemplating user-visible system changes.
A description of some kind of problem that has been found in either the FreeBSD source or documentation. See Writing FreeBSD Problem Reports.
A number, unique to a particular process on a system, which identifies it and allows actions to be taken against it.
The working title for the NDISulator, written by Bill Paul, who named it referring to how awful it is (from a philosophical standpoint) to need to have something like this in the first place. The NDISulator is a special compatibility module to allow Microsoft Windows™ NDIS miniport network drivers to be used with FreeBSD/i386. This is usually the only way to use cards where the driver is closed-source. See src/sys/compat/ndis/subr_ndis.c.
See: Router Advertisement
See: Random Access Memory
See: Received Data
See: Request For Comments
See: Request To Send
The Revision Control System (RCS) is one of the oldest software suites that implement “revision control” for plain files. It allows the storage, retrieval, archival, logging, identification and merging of multiple revisions for each file. RCS consists of many small tools that work together. It lacks some of the features found in more modern revision control systems, like CVS or Subversion, but it is very simple to install, configure, and start using for a small set of files. Implementations of RCS can be found on every major UNIX-like OS.
See Also: Concurrent Versions System, Subversion.
An RS232C pin or wire that data is received on.
See Also: Transmitted Data.
A standard for communications between serial devices.
An approach to processor design where the operations the hardware can perform are simplified but made as general purpose as possible. This can lead to lower power consumption, fewer transistors and in some cases, better performance and increased code density. Examples of RISC processors include the Alpha, SPARC, ARM and PowerPC.
See: Repository Copy
A direct copying of files within the CVS repository.
Without a repocopy, if a file needed to be copied or moved to another place in the repository, the committer would run cvs add to put the file in its new location, and then cvs rm on the old file if the old copy was being removed.
The disadvantage of this method is that the history (i.e. the entries in the CVS logs) of the file would not be copied to the new location. As the FreeBSD Project considers this history very useful, a repository copy is often used instead. This is a process where one of the repository meisters will copy the files directly within the repository, rather than using the cvs(1) program.
A set of documents defining Internet standards, protocols, and so forth. See www.rfc-editor.org.
Also used as a general term when someone has a suggested change and wants feedback.
An RS232C signal requesting that the remote system commences transmission of data.
See Also: Clear To Send.
See: Signal Ground
See: Server Message Block
See: SMTP Authentication
See: Secure Shell
See: Suspend To RAM
See: Subversion
An RS232 pin or wire that is the ground reference for the signal.
Subversion is a version control system, similar to CVS, but with an expanded feature list.
See Also: Concurrent Versions System.
See: Transmitted Data
See: Trivial FTP
See: Time Stamp Counter
A profiling counter internal to modern Pentium processors that counts core frequency clock ticks.
A protocol that sits on top of (e.g.) the IP protocol and guarantees that packets are delivered in a reliable, ordered, fashion.
The term for the combination of the TCP protocol running over the IP protocol. Much of the Internet runs over TCP/IP.
An RS232C pin or wire that data is transmitted on.
See Also: Received Data.
See: User ID
See: Universal Serial Bus
A method of locating a resource, such as a document on the Internet and a means to identify that resource.
The original UNIX file system, sometimes called the Berkeley Fast File System.
An extension to UFS1, introduced in FreeBSD 5-CURRENT. UFS2 adds 64 bit block pointers (breaking the 1T barrier), support for extended file storage and other features.
A hardware standard used to connect a wide variety of computer peripherals to a universal interface.
A unique number assigned to each user of a computer, by which the resources and permissions assigned to that user can be identified.
A simple, unreliable datagram protocol which is used for exchanging data on a TCP/IP network. UDP does not provide error checking and correction like TCP.
This book is the combined work of hundreds of contributors to “The FreeBSD Documentation Project”. The text is authored in SGML according to the DocBook DTD and is formatted from SGML into many different presentation formats using Jade, an open source DSSSL engine. Norm Walsh's DSSSL stylesheets were used with an additional customization layer to provide the presentation instructions for Jade. The printed version of this document would not be possible without Donald Knuth's TeX typesetting language, Leslie Lamport's LaTeX, or Sebastian Rahtz's JadeTeX macro package.
[1] |
This is what i386 means. Note that even if you are not running FreeBSD on an Intel 386 CPU, this is going to be i386. It is not the type of your processor, but the processor “architecture” that is shown here. |
[2] |
Startup scripts are programs that are run automatically by FreeBSD when booting. Their main function is to set things up for everything else to run, and start any services that you have configured to run in the background doing useful things. |
[3] |
A fairly technical and accurate description of all the details of the FreeBSD console and keyboard drivers can be found in the manual pages of syscons(4), atkbd(4), vidcontrol(1) and kbdcontrol(1). We will not expand on the details here, but the interested reader can always consult the manual pages for a more detailed and thorough explanation of how things work. |
[4] |
Not quite true—there are a few things that can not be interrupted. For example, if the process is trying to read from a file that is on another computer on the network, and the other computer has gone away for some reason (been turned off, or the network has a fault), then the process is said to be “uninterruptible”. Eventually the process will time out, typically after two minutes. As soon as this time out occurs the process will be killed. |
[5] |
The auto-tuning algorithm sets maxusers equal to the amount of memory in the system, with a minimum of 32, and a maximum of 384. |
[6] |
Well, unless you hook up multiple terminals, but we will save that for Chapter 27. |
[7] |
It is possible to use UID/GIDs as large as 4294967295, but such IDs can cause serious problems with software that makes assumptions about the values of IDs. |
[8] |
Under FreeBSD the standard login password may be up to 128 characters in length. |
[9] |
Other conditions may produce different failures. For instance, the file may not be owned by the user attempting to relabel the object, the object may not exist or may be read only. A mandatory policy will not allow the process to relabel the file, maybe because of a property of the file, a property of the process, or a property of the proposed new label value. For example: a user running at low integrity tries to change the label of a high integrity file. Or perhaps a user running at low integrity tries to change the label of a low integrity file to a high integrity label. |
[10] |
For tips on how to select a secure passphrase that is easy to remember, see the Diceware Passphrase website. |
[11] |
RAID stands for Redundant Array of Inexpensive Disks and offers various forms of fault tolerance, though the latter term is somewhat misleading: it provides no redundancy. |
[12] |
That is not quite true. We can not continue to support old releases of FreeBSD forever, although we do support them for many years. For a complete description of the current security policy for old releases of FreeBSD, please see http://www.FreeBSD.org/security/. |
[13] |