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<!DOCTYPE article PUBLIC "-//OASIS//DTD DocBook V4.2//EN" [
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]>
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  <article class="specification">
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  <articleinfo>
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    <title>Ganeti installation tutorial</title>
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  </articleinfo>
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  <para>Documents Ganeti version 1.2</para>
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  <sect1>
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    <title>Introduction</title>
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    <para>
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      Ganeti is a cluster virtualization management system based on
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      Xen. This document explains how to bootstrap a Ganeti node (Xen
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      <literal>dom0</literal>), create a running cluster and install
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      virtual instance (Xen <literal>domU</literal>).  You need to
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      repeat most of the steps in this document for every node you
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      want to install, but of course we recommend creating some
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      semi-automatic procedure if you plan to deploy Ganeti on a
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      medium/large scale.
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    </para>
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    <para>
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      A basic Ganeti terminology glossary is provided in the
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      introductory section of the <emphasis>Ganeti administrator's
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      guide</emphasis>. Please refer to that document if you are
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      uncertain about the terms we are using.
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    </para>
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    <para>
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      Ganeti has been developed for Linux and is
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      distribution-agnostic.  This documentation will use Debian Etch
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      as an example system but the examples can easily be translated
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      to any other distribution.  You are expected to be familiar with
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      your distribution, its package management system, and Xen before
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      trying to use Ganeti.
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    </para>
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    <para>This document is divided into two main sections:
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      <itemizedlist>
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        <listitem>
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          <simpara>Installation of the base system and base
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            components</simpara>
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        </listitem>
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        <listitem>
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          <simpara>Configuration of the environment for
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            Ganeti</simpara>
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        </listitem>
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      </itemizedlist>
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      Each of these is divided into sub-sections. While a full Ganeti system
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      will need all of the steps specified, some are not strictly required for
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      every environment. Which ones they are, and why, is specified in the
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      corresponding sections.
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    </para>
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  </sect1>
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  <sect1>
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    <title>Installing the base system and base components</title>
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    <sect2>
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      <title>Hardware requirements</title>
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      <para>
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        Any system supported by your Linux distribution is fine.  64-bit
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        systems are better as they can support more memory.
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      </para>
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      <para>
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        Any disk drive recognized by Linux
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        (<literal>IDE</literal>/<literal>SCSI</literal>/<literal>SATA</literal>/etc.)
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        is supported in Ganeti. Note that no shared storage (e.g.
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        <literal>SAN</literal>) is needed to get high-availability features. It
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        is highly recommended to use more than one disk drive to improve speed.
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        But Ganeti also works with one disk per machine.
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      </para>
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    <sect2>
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      <title>Installing the base system</title>
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      <para>
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        <emphasis role="strong">Mandatory</emphasis> on all nodes.
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      </para>
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      <para>
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        It is advised to start with a clean, minimal install of the
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        operating system. The only requirement you need to be aware of
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        at this stage is to partition leaving enough space for a big
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        (<emphasis role="strong">minimum
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        <constant>20GiB</constant></emphasis>) LVM volume group which
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        will then host your instance filesystems. The volume group
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        name Ganeti 1.2 uses (by default) is
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        <emphasis>xenvg</emphasis>.
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      </para>
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      <para>
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        While you can use an existing system, please note that the
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        Ganeti installation is intrusive in terms of changes to the
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        system configuration, and it's best to use a newly-installed
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        system without important data on it.
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      </para>
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      <para>
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        Also, for best results, it's advised that the nodes have as
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        much as possible the same hardware and software
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        configuration. This will make administration much easier.
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      </para>
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      <sect3>
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        <title>Hostname issues</title>
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        <para>
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          Note that Ganeti requires the hostnames of the systems
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          (i.e. what the <computeroutput>hostname</computeroutput>
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          command outputs to be a fully-qualified name, not a short
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          name. In other words, you should use
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          <literal>node1.example.com</literal> as a hostname and not
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          just <literal>node1</literal>.
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        </para>
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        <formalpara>
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          <title>Debian</title>
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          <para>
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            Note that Debian Etch configures the hostname differently
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            than you need it for Ganeti. For example, this is what
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            Etch puts in <filename>/etc/hosts</filename> in certain
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            situations:
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<screen>
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127.0.0.1       localhost
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127.0.1.1       node1.example.com node1
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</screen>
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          but for Ganeti you need to have:
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<screen>
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127.0.0.1       localhost
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192.168.1.1     node1.example.com node1
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</screen>
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            replacing <literal>192.168.1.1</literal> with your node's
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            address. Also, the file <filename>/etc/hostname</filename>
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            which configures the hostname of the system should contain
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            <literal>node1.example.com</literal> and not just
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            <literal>node1</literal> (you need to run the command
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            <computeroutput>/etc/init.d/hostname.sh
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            start</computeroutput> after changing the file).
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          </para>
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        </formalpara>
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      </sect3>
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    </sect2>
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    <sect2>
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      <title>Installing Xen</title>
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      <para>
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        <emphasis role="strong">Mandatory</emphasis> on all nodes.
157
      </para>
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      <para>
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        While Ganeti is developed with the ability to modularly run on
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        different virtualization environments in mind the only one
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        currently useable on a live system is <ulink
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        url="http://xen.xensource.com/">Xen</ulink>. Supported
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        versions are: <simplelist type="inline">
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        <member><literal>3.0.3</literal></member>
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        <member><literal>3.0.4</literal></member>
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        <member><literal>3.1</literal></member> </simplelist>.
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      </para>
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      <para>
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        Please follow your distribution's recommended way to install
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        and set up Xen, or install Xen from the upstream source, if
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        you wish, following their manual.
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      </para>
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      <para>
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        After installing Xen you need to reboot into your Xen-ified
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        dom0 system. On some distributions this might involve
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        configuring GRUB appropriately, whereas others will configure
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        it automatically when you install Xen from a package.
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      </para>
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      <formalpara><title>Debian</title>
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      <para>
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        Under Debian Etch or Sarge+backports you can install the
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        relevant <literal>xen-linux-system</literal> package, which
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        will pull in both the hypervisor and the relevant
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        kernel. Also, if you are installing a 32-bit Etch, you should
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        install the <computeroutput>libc6-xen</computeroutput> package
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        (run <computeroutput>apt-get install
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        libc6-xen</computeroutput>).
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      </para>
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      </formalpara>
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      <sect3>
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        <title>Xen settings</title>
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        <para>
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          It's recommended that dom0 is restricted to a low amount of
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          memory (<constant>512MiB</constant> is reasonable) and that
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          memory ballooning is disabled in the file
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          <filename>/etc/xen/xend-config.sxp</filename> by setting the
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          value <literal>dom0-min-mem</literal> to
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          <constant>0</constant>, like this:
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          <computeroutput>(dom0-min-mem 0)</computeroutput>
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        </para>
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        <para>
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          For optimum performance when running both CPU and I/O
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          intensive instances, it's also recommended that the dom0 is
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          restricted to one CPU only, for example by booting with the
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          kernel parameter <literal>nosmp</literal>.
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        </para>
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        <para>
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          It is recommended that you disable xen's automatic save of virtual
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          machines at system shutdown and subsequent restore of them at reboot.
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          To obtain this make sure the variable
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          <literal>XENDOMAINS_SAVE</literal> in the file
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          <literal>/etc/default/xendomains</literal> is set to an empty value.
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        </para>
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        <formalpara>
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          <title>Debian</title>
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          <para>
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            Besides the ballooning change which you need to set in
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            <filename>/etc/xen/xend-config.sxp</filename>, you need to
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            set the memory and nosmp parameters in the file
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            <filename>/boot/grub/menu.lst</filename>. You need to
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            modify the variable <literal>xenhopt</literal> to add
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            <userinput>dom0_mem=512M</userinput> like this:
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<screen>
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## Xen hypervisor options to use with the default Xen boot option
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# xenhopt=dom0_mem=512M
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</screen>
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            and the <literal>xenkopt</literal> needs to include the
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            <userinput>nosmp</userinput> option like this:
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<screen>
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## Xen Linux kernel options to use with the default Xen boot option
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# xenkopt=nosmp
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</screen>
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          Any existing parameters can be left in place: it's ok to
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          have <computeroutput>xenkopt=console=tty0
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          nosmp</computeroutput>, for example. After modifying the
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          files, you need to run:
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<screen>
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/sbin/update-grub
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</screen>
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          </para>
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        </formalpara>
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      </sect3>
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      <sect3>
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        <title>Selecting the instance kernel</title>
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        <para>
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          After you have installed Xen, you need to tell Ganeti
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          exactly what kernel to use for the instances it will
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          create. This is done by creating a
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          <emphasis>symlink</emphasis> from your actual kernel to
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          <filename>/boot/vmlinuz-2.6-xenU</filename>, and one from
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          your initrd to
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          <filename>/boot/initrd-2.6-xenU</filename>. Note that if you
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          don't use an initrd for the <literal>domU</literal> kernel,
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          you don't need to create the initrd symlink.
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        </para>
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        <formalpara>
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          <title>Debian</title>
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          <para>
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            After installation of the
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            <literal>xen-linux-system</literal> package, you need to
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            run (replace the exact version number with the one you
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            have):
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            <screen>
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cd /boot
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ln -s vmlinuz-2.6.18-5-xen-686 vmlinuz-2.6-xenU
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ln -s initrd.img-2.6.18-5-xen-686 initrd-2.6-xenU
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            </screen>
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          </para>
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        </formalpara>
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      </sect3>
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    </sect2>
287

    
288
    <sect2>
289
      <title>Installing DRBD</title>
290

    
291
      <para>
292
        Recommended on all nodes: <ulink
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        url="http://www.drbd.org/">DRBD</ulink> is required if you
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        want to use the high availability (HA) features of Ganeti, but
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        optional if you don't require HA or only run Ganeti on
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        single-node clusters. You can upgrade a non-HA cluster to an
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        HA one later, but you might need to export and re-import all
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        your instances to take advantage of the new features.
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      </para>
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301
      <para>
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        Supported DRBD versions: the <literal>0.7</literal> series
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        <emphasis role="strong">or</emphasis>
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        <literal>8.0.x</literal>. It's recommended to have at least
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        version <literal>0.7.24</literal> if you use
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        <command>udev</command> since older versions have a bug
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        related to device discovery which can be triggered in cases of
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        hard drive failure.
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      </para>
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311
      <para>
312
        Now the bad news: unless your distribution already provides it
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        installing DRBD might involve recompiling your kernel or
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        anyway fiddling with it. Hopefully at least the Xen-ified
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        kernel source to start from will be provided.
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      </para>
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318
      <para>
319
        The good news is that you don't need to configure DRBD at all.
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        Ganeti will do it for you for every instance you set up.  If
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        you have the DRBD utils installed and the module in your
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        kernel you're fine. Please check that your system is
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        configured to load the module at every boot, and that it
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        passes the following option to the module (for
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        <literal>0.7.x</literal>:
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        <computeroutput>minor_count=64</computeroutput> (this will
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        allow you to use up to 32 instances per node) or for
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        <literal>8.0.x</literal> you can use up to
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        <constant>255</constant>
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        (i.e. <computeroutput>minor_count=255</computeroutput>, but
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        for most clusters <constant>128</constant> should be enough).
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      </para>
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334
      <formalpara><title>Debian</title>
335
        <para>
336
         You can just install (build) the DRBD 0.7 module with the
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         following commands (make sure you are running the Xen
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         kernel):
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        </para>
340
      </formalpara>
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342
      <screen>
343
apt-get install drbd0.7-module-source drbd0.7-utils
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m-a update
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m-a a-i drbd0.7
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echo drbd minor_count=64 >> /etc/modules
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modprobe drbd minor_count=64
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      </screen>
349
      <para>or for using DRBD <literal>8.x</literal> from the etch
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      backports:</para>
351
      <screen>
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apt-get install -t etch-backports drbd8-module-source drbd8-utils
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m-a update
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m-a a-i drbd8
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echo drbd minor_count=128 >> /etc/modules
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modprobe drbd minor_count=128
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      </screen>
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359
      <para>
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        It is also recommended that you comment out the default
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        resources in the <filename>/etc/dbrd.conf</filename> file, so
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        that the init script doesn't try to configure any drbd
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        devices. You can do this by prefixing all
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        <literal>resource</literal> lines in the file with the keyword
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        <literal>skip</literal>, like this:
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      </para>
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      <screen>
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skip resource r0 {
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...
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}
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skip resource "r1" {
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...
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}
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      </screen>
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    </sect2>
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380
    <sect2>
381
      <title>Other required software</title>
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383
      <para>Besides Xen and DRBD, you will need to install the
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      following (on all nodes):</para>
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      <itemizedlist>
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        <listitem>
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          <simpara><ulink url="http://sourceware.org/lvm2/">LVM
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          version 2</ulink></simpara>
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        </listitem>
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        <listitem>
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          <simpara><ulink
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          url="http://www.openssl.org/">OpenSSL</ulink></simpara>
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        </listitem>
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        <listitem>
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          <simpara><ulink
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          url="http://www.openssh.com/portable.html">OpenSSH</ulink></simpara>
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        </listitem>
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        <listitem>
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          <simpara><ulink url="http://bridge.sourceforge.net/">Bridge
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          utilities</ulink></simpara>
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        </listitem>
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        <listitem>
404
          <simpara><ulink
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          url="http://developer.osdl.org/dev/iproute2">iproute2</ulink></simpara>
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        </listitem>
407
        <listitem>
408
          <simpara><ulink
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          url="ftp://ftp.inr.ac.ru/ip-routing/iputils-current.tar.gz">arping</ulink>
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          (part of iputils package)</simpara>
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        </listitem>
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        <listitem>
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          <simpara><ulink
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          url="http://www.kernel.org/pub/linux/utils/raid/mdadm/">mdadm</ulink>
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          (Linux Software Raid tools)</simpara>
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        </listitem>
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        <listitem>
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          <simpara><ulink url="http://www.python.org">Python 2.4</ulink></simpara>
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        </listitem>
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        <listitem>
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          <simpara><ulink url="http://twistedmatrix.com/">Python
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          Twisted library</ulink> - the core library is
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          enough</simpara>
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        </listitem>
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        <listitem>
426
          <simpara><ulink
427
          url="http://pyopenssl.sourceforge.net/">Python OpenSSL
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          bindings</ulink></simpara>
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        </listitem>
430
        <listitem>
431
          <simpara><ulink
432
          url="http://www.undefined.org/python/#simplejson">simplejson Python
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          module</ulink></simpara>
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        </listitem>
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        <listitem>
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          <simpara><ulink
437
          url="http://pyparsing.wikispaces.com/">pyparsing Python
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          module</ulink></simpara>
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        </listitem>
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      </itemizedlist>
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442
      <para>
443
        These programs are supplied as part of most Linux
444
        distributions, so usually they can be installed via apt or
445
        similar methods. Also many of them will already be installed
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        on a standard machine.
447
      </para>
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450
      <formalpara><title>Debian</title>
451

    
452
      <para>You can use this command line to install all of them:</para>
453

    
454
      </formalpara>
455
      <screen>
456
# apt-get install lvm2 ssh bridge-utils iproute iputils-arping \
457
  python2.4 python-twisted-core python-pyopenssl openssl \
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  mdadm python-pyparsing python-simplejson
459
      </screen>
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461
    </sect2>
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463
  </sect1>
464

    
465

    
466
  <sect1>
467
    <title>Setting up the environment for Ganeti</title>
468

    
469
    <sect2>
470
      <title>Configuring the network</title>
471

    
472
      <para><emphasis role="strong">Mandatory</emphasis> on all nodes.</para>
473

    
474
      <para>
475
        Ganeti relies on Xen running in "bridge mode", which means the
476
        instances network interfaces will be attached to a software bridge
477
        running in dom0. Xen by default creates such a bridge at startup, but
478
        your distribution might have a different way to do things.
479
      </para>
480

    
481
      <para>
482
        Beware that the default name Ganeti uses is
483
        <hardware>xen-br0</hardware> (which was used in Xen 2.0)
484
        while Xen 3.0 uses <hardware>xenbr0</hardware> by
485
        default. The default bridge your Ganeti cluster will use for new
486
        instances can be specified at cluster initialization time.
487
      </para>
488

    
489
      <formalpara><title>Debian</title>
490
        <para>
491
          The recommended Debian way to configure the Xen bridge is to
492
          edit your <filename>/etc/network/interfaces</filename> file
493
          and substitute your normal Ethernet stanza with the
494
          following snippet:
495

    
496
        <screen>
497
auto xen-br0
498
iface xen-br0 inet static
499
        address <replaceable>YOUR_IP_ADDRESS</replaceable>
500
        netmask <replaceable>YOUR_NETMASK</replaceable>
501
        network <replaceable>YOUR_NETWORK</replaceable>
502
        broadcast <replaceable>YOUR_BROADCAST_ADDRESS</replaceable>
503
        gateway <replaceable>YOUR_GATEWAY</replaceable>
504
        bridge_ports eth0
505
        bridge_stp off
506
        bridge_fd 0
507
        </screen>
508
        </para>
509
      </formalpara>
510

    
511
     <para>
512
The following commands need to be executed on the local console
513
     </para>
514
      <screen>
515
ifdown eth0
516
ifup xen-br0
517
      </screen>
518

    
519
      <para>
520
        To check if the bridge is setup, use <command>ip</command>
521
        and <command>brctl show</command>:
522
      <para>
523

    
524
      <screen>
525
# ip a show xen-br0
526
9: xen-br0: &lt;BROADCAST,MULTICAST,UP,10000&gt; mtu 1500 qdisc noqueue
527
    link/ether 00:20:fc:1e:d5:5d brd ff:ff:ff:ff:ff:ff
528
    inet 10.1.1.200/24 brd 10.1.1.255 scope global xen-br0
529
    inet6 fe80::220:fcff:fe1e:d55d/64 scope link
530
       valid_lft forever preferred_lft forever
531

    
532
# brctl show xen-br0
533
bridge name     bridge id               STP enabled     interfaces
534
xen-br0         8000.0020fc1ed55d       no              eth0
535
      </screen>
536

    
537

    
538
    </sect2>
539

    
540
    <sect2>
541
      <title>Configuring LVM</title>
542

    
543

    
544
      <para><emphasis role="strong">Mandatory</emphasis> on all nodes.</para>
545

    
546
      <note>
547
        <simpara>The volume group is required to be at least
548
        <constant>20GiB</constant>.</simpara>
549
      </note>
550
      <para>
551
        If you haven't configured your LVM volume group at install
552
        time you need to do it before trying to initialize the Ganeti
553
        cluster. This is done by formatting the devices/partitions you
554
        want to use for it and then adding them to the relevant volume
555
        group:
556

    
557
       <screen>
558
pvcreate /dev/sda3
559
vgcreate xenvg /dev/sda3
560
       </screen>
561
or
562
       <screen>
563
pvcreate /dev/sdb1
564
pvcreate /dev/sdc1
565
vgcreate xenvg /dev/sdb1 /dev/sdc1
566
       </screen>
567
      </para>
568

    
569
      <para>
570
	If you want to add a device later you can do so with the
571
	<citerefentry><refentrytitle>vgextend</refentrytitle>
572
	<manvolnum>8</manvolnum></citerefentry> command:
573
      </para>
574

    
575
      <screen>
576
pvcreate /dev/sdd1
577
vgextend xenvg /dev/sdd1
578
      </screen>
579

    
580
      <formalpara>
581
        <title>Optional</title>
582
        <para>
583
          It is recommended to configure LVM not to scan the DRBD
584
          devices for physical volumes. This can be accomplished by
585
          editing <filename>/etc/lvm/lvm.conf</filename> and adding
586
          the <literal>/dev/drbd[0-9]+</literal> regular expression to
587
          the <literal>filter</literal> variable, like this:
588
<screen>
589
    filter = [ "r|/dev/cdrom|", "r|/dev/drbd[0-9]+|" ]
590
</screen>
591
        </para>
592
      </formalpara>
593

    
594
    </sect2>
595

    
596
    <sect2>
597
      <title>Installing Ganeti</title>
598

    
599
      <para><emphasis role="strong">Mandatory</emphasis> on all nodes.</para>
600

    
601
      <para>
602
        It's now time to install the Ganeti software itself.  Download
603
        the source from <ulink
604
        url="http://code.google.com/p/ganeti/"></ulink>.
605
      </para>
606

    
607
        <screen>
608
tar xvzf ganeti-1.2b2.tar.gz
609
cd ganeti-1.2b2
610
./configure --localstatedir=/var --sysconfdir=/etc
611
make
612
make install
613
mkdir /srv/ganeti/ /srv/ganeti/os /srv/ganeti/export
614
        </screen>
615

    
616
      <para>
617
        You also need to copy the file
618
        <filename>doc/examples/ganeti.initd</filename>
619
        from the source archive to
620
        <filename>/etc/init.d/ganeti</filename> and register it with
621
        your distribution's startup scripts, for example in Debian:
622
      </para>
623
      <screen>update-rc.d ganeti defaults 20 80</screen>
624

    
625
      <para>
626
        In order to automatically restart failed instances, you need
627
        to setup a cron job run the
628
        <computeroutput>ganeti-watcher</computeroutput> program. A
629
        sample cron file is provided in the source at
630
        <filename>doc/examples/ganeti.cron</filename> and you can
631
        copy that (eventually altering the path) to
632
        <filename>/etc/cron.d/ganeti</filename>
633
      </para>
634

    
635
    </sect2>
636

    
637
    <sect2>
638
      <title>Installing the Operating System support packages</title>
639

    
640
      <para><emphasis role="strong">Mandatory</emphasis> on all nodes.</para>
641

    
642
      <para>
643
        To be able to install instances you need to have an Operating
644
        System installation script. An example for Debian Etch is
645
        provided on the project web site.  Download it from <ulink
646
        url="http://code.google.com/p/ganeti/"></ulink> and follow the
647
        instructions in the <filename>README</filename> file.  Here is
648
        the installation procedure (replace <constant>0.2</constant>
649
        with the latest version that is compatible with your ganeti
650
        version):
651
      </para>
652

    
653
      <screen>
654
cd /srv/ganeti/os
655
tar xvf ganeti-instance-debian-etch-0.2.tar
656
mv ganeti-instance-debian-etch-0.2 debian-etch
657
      </screen>
658

    
659
      <para>
660
        In order to use this OS definition, you need to have internet
661
        access from your nodes and have the <citerefentry>
662
        <refentrytitle>debootstrap</refentrytitle>
663
        <manvolnum>8</manvolnum></citerefentry>, <citerefentry>
664
        <refentrytitle>dump</refentrytitle><manvolnum>8</manvolnum>
665
        </citerefentry> and <citerefentry>
666
        <refentrytitle>restore</refentrytitle>
667
        <manvolnum>8</manvolnum> </citerefentry> commands installed on
668
        all nodes.
669
      </para>
670
      <formalpara>
671
        <title>Debian</title>
672
        <para>
673
          Use this command on all nodes to install the required
674
          packages:
675

    
676
          <screen>apt-get install debootstrap dump</screen>
677
        </para>
678
      </formalpara>
679

    
680
      <para>
681
        Alternatively, you can create your own OS definitions. See the
682
        manpage
683
        <citerefentry>
684
        <refentrytitle>ganeti-os-interface</refentrytitle>
685
        <manvolnum>8</manvolnum>
686
        </citerefentry>.
687
      </para>
688

    
689
    </sect2>
690

    
691
    <sect2>
692
      <title>Initializing the cluster</title>
693

    
694
      <para><emphasis role="strong">Mandatory:</emphasis> only on one
695
      node per cluster.</para>
696

    
697

    
698
      <para>The last step is to initialize the cluster. After you've repeated
699
        the above process on all of your nodes, choose one as the master, and execute:
700
      </para>
701

    
702
      <screen>
703
gnt-cluster init <replaceable>CLUSTERNAME</replaceable>
704
      </screen>
705

    
706
      <para>
707
        The <replaceable>CLUSTERNAME</replaceable> is a hostname,
708
        which must be resolvable (e.g. it must exist in DNS or in
709
        <filename>/etc/hosts</filename>) by all the nodes in the
710
        cluster. You must choose a name different from any of the
711
        nodes names for a multi-node cluster. In general the best
712
        choice is to have a unique name for a cluster, even if it
713
        consists of only one machine, as you will be able to expand it
714
        later without any problems.
715
      </para>
716

    
717
      <para>
718
        If the bridge name you are using is not
719
        <literal>xen-br0</literal>, use the <option>-b
720
        <replaceable>BRIDGENAME</replaceable></option> option to
721
        specify the bridge name. In this case, you should also use the
722
        <option>--master-netdev
723
        <replaceable>BRIDGENAME</replaceable></option> option with the
724
        same <replaceable>BRIDGENAME</replaceable> argument.
725
      </para>
726

    
727
      <para>
728
        You can use a different name than <literal>xenvg</literal> for
729
        the volume group (but note that the name must be identical on
730
        all nodes). In this case you need to specify it by passing the
731
        <option>-g <replaceable>VGNAME</replaceable></option> option
732
        to <computeroutput>gnt-cluster init</computeroutput>.
733
      </para>
734

    
735
      <para>
736
        You can also invoke the command with the
737
        <option>--help</option> option in order to see all the
738
        possibilities.
739
      </para>
740

    
741
    </sect2>
742

    
743
    <sect2>
744
      <title>Joining the nodes to the cluster</title>
745

    
746
      <para>
747
        <emphasis role="strong">Mandatory:</emphasis> for all the
748
        other nodes.
749
      </para>
750

    
751
      <para>
752
        After you have initialized your cluster you need to join the
753
        other nodes to it. You can do so by executing the following
754
        command on the master node:
755
      </para>
756
        <screen>
757
gnt-node add <replaceable>NODENAME</replaceable>
758
        </screen>
759
    </sect2>
760

    
761
    <sect2>
762
      <title>Separate replication network</title>
763

    
764
      <para><emphasis role="strong">Optional</emphasis></para>
765
      <para>
766
        Ganeti uses DRBD to mirror the disk of the virtual instances
767
        between nodes. To use a dedicated network interface for this
768
        (in order to improve performance or to enhance security) you
769
        need to configure an additional interface for each node.  Use
770
        the <option>-s</option> option with
771
        <computeroutput>gnt-cluster init</computeroutput> and
772
        <computeroutput>gnt-node add</computeroutput> to specify the
773
        IP address of this secondary interface to use for each
774
        node. Note that if you specified this option at cluster setup
775
        time, you must afterwards use it for every node add operation.
776
      </para>
777
    </sect2>
778

    
779
    <sect2>
780
      <title>Testing the setup</title>
781

    
782
      <para>
783
        Execute the <computeroutput>gnt-node list</computeroutput>
784
        command to see all nodes in the cluster:
785
      <screen>
786
# gnt-node list
787
Node              DTotal  DFree MTotal MNode MFree Pinst Sinst
788
node1.example.com 197404 197404   2047  1896   125     0     0
789
      </screen>
790
    </para>
791
  </sect2>
792

    
793
  <sect1>
794
    <title>Setting up and managing virtual instances</title>
795
    <sect2>
796
      <title>Setting up virtual instances</title>
797
      <para>
798
        This step shows how to setup a virtual instance with either
799
        non-mirrored disks (<computeroutput>plain</computeroutput>) or
800
        with network mirrored disks
801
        (<computeroutput>remote_raid1</computeroutput> for drbd 0.7
802
        and <computeroutput>drbd</computeroutput> for drbd 8.x).  All
803
        commands need to be executed on the Ganeti master node (the
804
        one on which <computeroutput>gnt-cluster init</computeroutput>
805
        was run).  Verify that the OS scripts are present on all
806
        cluster nodes with <computeroutput>gnt-os
807
        list</computeroutput>.
808
      </para>
809
      <para>
810
        To create a virtual instance, you need a hostname which is
811
        resolvable (DNS or <filename>/etc/hosts</filename> on all
812
        nodes). The following command will create a non-mirrored
813
        instance for you:
814
      </para>
815
      <screen>
816
gnt-instance add --node=node1 -o debian-etch -t plain inst1.example.com
817
* creating instance disks...
818
adding instance inst1.example.com to cluster config
819
Waiting for instance inst1.example.com to sync disks.
820
Instance inst1.example.com's disks are in sync.
821
creating os for instance inst1.example.com on node node1.example.com
822
* running the instance OS create scripts...
823
      </screen>
824

    
825
      <para>
826
        The above instance will have no network interface enabled.
827
        You can access it over the virtual console with
828
        <computeroutput>gnt-instance console
829
        <literal>inst1</literal></computeroutput>. There is no
830
        password for root.  As this is a Debian instance, you can
831
        modify the <filename>/etc/network/interfaces</filename> file
832
        to setup the network interface (<literal>eth0</literal> is the
833
        name of the interface provided to the instance).
834
      </para>
835

    
836
      <para>
837
        To create a network mirrored instance, change the argument to
838
        the <option>-t</option> option from <literal>plain</literal>
839
        to <literal>remote_raid1</literal> (drbd 0.7) or
840
        <literal>drbd</literal> (drbd 8.0) and specify the node on
841
        which the mirror should reside with the second value of the
842
        <option>--node</option> option, like this:
843
      </para>
844

    
845
      <screen>
846
# gnt-instance add -t remote_raid1 -n node1:node2 -o debian-etch instance2
847
* creating instance disks...
848
adding instance instance2 to cluster config
849
Waiting for instance instance1 to sync disks.
850
- device sdb:  3.50% done, 304 estimated seconds remaining
851
- device sdb: 21.70% done, 270 estimated seconds remaining
852
- device sdb: 39.80% done, 247 estimated seconds remaining
853
- device sdb: 58.10% done, 121 estimated seconds remaining
854
- device sdb: 76.30% done, 72 estimated seconds remaining
855
- device sdb: 94.80% done, 18 estimated seconds remaining
856
Instance instance2's disks are in sync.
857
creating os for instance instance2 on node node1.example.com
858
* running the instance OS create scripts...
859
* starting instance...
860
      </screen>
861

    
862
    </sect2>
863

    
864
    <sect2>
865
      <title>Managing virtual instances</title>
866
      <para>
867
        All commands need to be executed on the Ganeti master node
868
      </para>
869

    
870
      <para>
871
        To access the console of an instance, use
872
        <computeroutput>gnt-instance console
873
        <replaceable>INSTANCENAME</replaceable></computeroutput>.
874
      </para>
875

    
876
      <para>
877
        To shutdown an instance, use <computeroutput>gnt-instance
878
        shutdown
879
        <replaceable>INSTANCENAME</replaceable></computeroutput>. To
880
        startup an instance, use <computeroutput>gnt-instance startup
881
        <replaceable>INSTANCENAME</replaceable></computeroutput>.
882
      </para>
883

    
884
      <para>
885
        To failover an instance to its secondary node (only possible
886
        in <literal>remote_raid1</literal> or <literal>drbd</literal>
887
        disk templates), use <computeroutput>gnt-instance failover
888
        <replaceable>INSTANCENAME</replaceable></computeroutput>.
889
      </para>
890

    
891
      <para>
892
        For more instance and cluster administration details, see the
893
        <emphasis>Ganeti administrator's guide</emphasis>.
894
      </para>
895

    
896
    </sect2>
897

    
898
  </sect1>
899

    
900
  </article>