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Ganeti administrator's guide
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============================
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Documents Ganeti version |version|
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.. contents::
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.. highlight:: text
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Introduction
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------------
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Ganeti is a virtualization cluster management software. You are expected
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to be a system administrator familiar with your Linux distribution and
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the Xen or KVM virtualization environments before using it.
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The various components of Ganeti all have man pages and interactive
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help. This manual though will help you getting familiar with the system
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by explaining the most common operations, grouped by related use.
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After a terminology glossary and a section on the prerequisites needed
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to use this manual, the rest of this document is divided in sections
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for the different targets that a command affects: instance, nodes, etc.
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.. _terminology-label:
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Ganeti terminology
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++++++++++++++++++
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This section provides a small introduction to Ganeti terminology, which
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might be useful when reading the rest of the document.
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Cluster
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~~~~~~~
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A set of machines (nodes) that cooperate to offer a coherent, highly
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available virtualization service under a single administration domain.
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Node
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~~~~
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A physical machine which is member of a cluster.  Nodes are the basic
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cluster infrastructure, and they don't need to be fault tolerant in
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order to achieve high availability for instances.
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Node can be added and removed (if they host no instances) at will from
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the cluster. In a HA cluster and only with HA instances, the loss of any
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single node will not cause disk data loss for any instance; of course,
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a node crash will cause the crash of the its primary instances.
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A node belonging to a cluster can be in one of the following roles at a
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given time:
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- *master* node, which is the node from which the cluster is controlled
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- *master candidate* node, only nodes in this role have the full cluster
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  configuration and knowledge, and only master candidates can become the
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  master node
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- *regular* node, which is the state in which most nodes will be on
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  bigger clusters (>20 nodes)
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- *drained* node, nodes in this state are functioning normally but the
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  cannot receive new instances; the intention is that nodes in this role
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  have some issue and they are being evacuated for hardware repairs
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- *offline* node, in which there is a record in the cluster
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  configuration about the node, but the daemons on the master node will
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  not talk to this node; any instances declared as having an offline
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  node as either primary or secondary will be flagged as an error in the
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  cluster verify operation
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Depending on the role, each node will run a set of daemons:
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- the :command:`ganeti-noded` daemon, which control the manipulation of
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  this node's hardware resources; it runs on all nodes which are in a
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  cluster
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- the :command:`ganeti-confd` daemon (Ganeti 2.1+) which runs on all
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  nodes, but is only functional on master candidate nodes
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- the :command:`ganeti-rapi` daemon which runs on the master node and
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  offers an HTTP-based API for the cluster
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- the :command:`ganeti-masterd` daemon which runs on the master node and
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  allows control of the cluster
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Beside the node role, there are other node flags that influence its
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behaviour:
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- the *master_capable* flag denotes whether the node can ever become a
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  master candidate; setting this to 'no' means that auto-promotion will
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  never make this node a master candidate; this flag can be useful for a
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  remote node that only runs local instances, and having it become a
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  master is impractical due to networking or other constraints
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- the *vm_capable* flag denotes whether the node can host instances or
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  not; for example, one might use a non-vm_capable node just as a master
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  candidate, for configuration backups; setting this flag to no
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  disallows placement of instances of this node, deactivates hypervisor
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  and related checks on it (e.g. bridge checks, LVM check, etc.), and
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  removes it from cluster capacity computations
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Instance
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~~~~~~~~
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A virtual machine which runs on a cluster. It can be a fault tolerant,
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highly available entity.
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An instance has various parameters, which are classified in three
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categories: hypervisor related-parameters (called ``hvparams``), general
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parameters (called ``beparams``) and per network-card parameters (called
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``nicparams``). All these parameters can be modified either at instance
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level or via defaults at cluster level.
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Disk template
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~~~~~~~~~~~~~
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The are multiple options for the storage provided to an instance; while
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the instance sees the same virtual drive in all cases, the node-level
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configuration varies between them.
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There are four disk templates you can choose from:
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diskless
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  The instance has no disks. Only used for special purpose operating
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  systems or for testing.
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file
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  The instance will use plain files as backend for its disks. No
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  redundancy is provided, and this is somewhat more difficult to
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  configure for high performance.
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plain
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  The instance will use LVM devices as backend for its disks. No
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  redundancy is provided.
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drbd
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  .. note:: This is only valid for multi-node clusters using DRBD 8.0+
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  A mirror is set between the local node and a remote one, which must be
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  specified with the second value of the --node option. Use this option
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  to obtain a highly available instance that can be failed over to a
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  remote node should the primary one fail.
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IAllocator
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~~~~~~~~~~
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A framework for using external (user-provided) scripts to compute the
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placement of instances on the cluster nodes. This eliminates the need to
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manually specify nodes in instance add, instance moves, node evacuate,
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etc.
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In order for Ganeti to be able to use these scripts, they must be place
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in the iallocator directory (usually ``lib/ganeti/iallocators`` under
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the installation prefix, e.g. ``/usr/local``).
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โ€œPrimaryโ€ and โ€œsecondaryโ€ concepts
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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An instance has a primary and depending on the disk configuration, might
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also have a secondary node. The instance always runs on the primary node
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and only uses its secondary node for disk replication.
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Similarly, the term of primary and secondary instances when talking
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about a node refers to the set of instances having the given node as
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primary, respectively secondary.
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Tags
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~~~~
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Tags are short strings that can be attached to either to cluster itself,
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or to nodes or instances. They are useful as a very simplistic
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information store for helping with cluster administration, for example
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by attaching owner information to each instance after it's created::
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  gnt-instance add โ€ฆ instance1
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  gnt-instance add-tags instance1 owner:user2
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And then by listing each instance and its tags, this information could
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be used for contacting the users of each instance.
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Jobs and OpCodes
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~~~~~~~~~~~~~~~~
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While not directly visible by an end-user, it's useful to know that a
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basic cluster operation (e.g. starting an instance) is represented
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internall by Ganeti as an *OpCode* (abbreviation from operation
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code). These OpCodes are executed as part of a *Job*. The OpCodes in a
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single Job are processed serially by Ganeti, but different Jobs will be
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processed (depending on resource availability) in parallel.
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For example, shutting down the entire cluster can be done by running the
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command ``gnt-instance shutdown --all``, which will submit for each
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instance a separate job containing the โ€œshutdown instanceโ€ OpCode.
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Prerequisites
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+++++++++++++
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You need to have your Ganeti cluster installed and configured before you
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try any of the commands in this document. Please follow the
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:doc:`install` for instructions on how to do that.
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Instance management
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-------------------
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Adding an instance
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++++++++++++++++++
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The add operation might seem complex due to the many parameters it
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accepts, but once you have understood the (few) required parameters and
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the customisation capabilities you will see it is an easy operation.
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The add operation requires at minimum five parameters:
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- the OS for the instance
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- the disk template
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- the disk count and size
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- the node specification or alternatively the iallocator to use
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- and finally the instance name
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The OS for the instance must be visible in the output of the command
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``gnt-os list`` and specifies which guest OS to install on the instance.
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The disk template specifies what kind of storage to use as backend for
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the (virtual) disks presented to the instance; note that for instances
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with multiple virtual disks, they all must be of the same type.
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The node(s) on which the instance will run can be given either manually,
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via the ``-n`` option, or computed automatically by Ganeti, if you have
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installed any iallocator script.
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With the above parameters in mind, the command is::
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  gnt-instance add \
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    -n TARGET_NODE:SECONDARY_NODE \
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    -o OS_TYPE \
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    -t DISK_TEMPLATE -s DISK_SIZE \
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    INSTANCE_NAME
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The instance name must be resolvable (e.g. exist in DNS) and usually
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points to an address in the same subnet as the cluster itself.
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The above command has the minimum required options; other options you
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can give include, among others:
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- The memory size (``-B memory``)
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- The number of virtual CPUs (``-B vcpus``)
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- Arguments for the NICs of the instance; by default, a single-NIC
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  instance is created. The IP and/or bridge of the NIC can be changed
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  via ``--nic 0:ip=IP,bridge=BRIDGE``
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See the manpage for gnt-instance for the detailed option list.
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For example if you want to create an highly available instance, with a
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single disk of 50GB and the default memory size, having primary node
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``node1`` and secondary node ``node3``, use the following command::
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  gnt-instance add -n node1:node3 -o debootstrap -t drbd \
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    instance1
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There is a also a command for batch instance creation from a
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specification file, see the ``batch-create`` operation in the
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gnt-instance manual page.
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Regular instance operations
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+++++++++++++++++++++++++++
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Removal
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~~~~~~~
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Removing an instance is even easier than creating one. This operation is
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irreversible and destroys all the contents of your instance. Use with
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care::
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  gnt-instance remove INSTANCE_NAME
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Startup/shutdown
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~~~~~~~~~~~~~~~~
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Instances are automatically started at instance creation time. To
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manually start one which is currently stopped you can run::
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  gnt-instance startup INSTANCE_NAME
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While the command to stop one is::
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  gnt-instance shutdown INSTANCE_NAME
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.. warning:: Do not use the Xen or KVM commands directly to stop
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   instances. If you run for example ``xm shutdown`` or ``xm destroy``
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   on an instance Ganeti will automatically restart it (via the
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   :command:`ganeti-watcher` command which is launched via cron).
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Querying instances
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~~~~~~~~~~~~~~~~~~
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There are two ways to get information about instances: listing
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instances, which does a tabular output containing a given set of fields
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about each instance, and querying detailed information about a set of
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instances.
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The command to see all the instances configured and their status is::
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  gnt-instance list
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The command can return a custom set of information when using the ``-o``
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option (as always, check the manpage for a detailed specification). Each
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instance will be represented on a line, thus making it easy to parse
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this output via the usual shell utilities (grep, sed, etc.).
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To get more detailed information about an instance, you can run::
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  gnt-instance info INSTANCE
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which will give a multi-line block of information about the instance,
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it's hardware resources (especially its disks and their redundancy
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status), etc. This is harder to parse and is more expensive than the
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list operation, but returns much more detailed information.
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Export/Import
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+++++++++++++
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You can create a snapshot of an instance disk and its Ganeti
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configuration, which then you can backup, or import into another
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cluster. The way to export an instance is::
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  gnt-backup export -n TARGET_NODE INSTANCE_NAME
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The target node can be any node in the cluster with enough space under
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``/srv/ganeti`` to hold the instance image. Use the ``--noshutdown``
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option to snapshot an instance without rebooting it. Note that Ganeti
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only keeps one snapshot for an instance - any previous snapshot of the
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same instance existing cluster-wide under ``/srv/ganeti`` will be
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removed by this operation: if you want to keep them, you need to move
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them out of the Ganeti exports directory.
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Importing an instance is similar to creating a new one, but additionally
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one must specify the location of the snapshot. The command is::
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  gnt-backup import -n TARGET_NODE \
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    --src-node=NODE --src-dir=DIR INSTANCE_NAME
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By default, parameters will be read from the export information, but you
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can of course pass them in via the command line - most of the options
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available for the command :command:`gnt-instance add` are supported here
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too.
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Import of foreign instances
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+++++++++++++++++++++++++++
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There is a possibility to import a foreign instance whose disk data is
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already stored as LVM volumes without going through copying it: the disk
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adoption mode.
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For this, ensure that the original, non-managed instance is stopped,
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then create a Ganeti instance in the usual way, except that instead of
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passing the disk information you specify the current volumes::
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  gnt-instance add -t plain -n HOME_NODE ... \
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    --disk 0:adopt=lv_name[,vg=vg_name] INSTANCE_NAME
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This will take over the given logical volumes, rename them to the Ganeti
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standard (UUID-based), and without installing the OS on them start
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directly the instance. If you configure the hypervisor similar to the
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non-managed configuration that the instance had, the transition should
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be seamless for the instance. For more than one disk, just pass another
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disk parameter (e.g. ``--disk 1:adopt=...``).
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Instance HA features
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--------------------
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.. note:: This section only applies to multi-node clusters
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.. _instance-change-primary-label:
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Changing the primary node
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+++++++++++++++++++++++++
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There are three ways to exchange an instance's primary and secondary
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nodes; the right one to choose depends on how the instance has been
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created and the status of its current primary node. See
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:ref:`rest-redundancy-label` for information on changing the secondary
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node. Note that it's only possible to change the primary node to the
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secondary and vice-versa; a direct change of the primary node with a
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third node, while keeping the current secondary is not possible in a
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single step, only via multiple operations as detailed in
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:ref:`instance-relocation-label`.
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Failing over an instance
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~~~~~~~~~~~~~~~~~~~~~~~~
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If an instance is built in highly available mode you can at any time
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fail it over to its secondary node, even if the primary has somehow
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failed and it's not up anymore. Doing it is really easy, on the master
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node you can just run::
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  gnt-instance failover INSTANCE_NAME
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That's it. After the command completes the secondary node is now the
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primary, and vice-versa.
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Live migrating an instance
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~~~~~~~~~~~~~~~~~~~~~~~~~~
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If an instance is built in highly available mode, it currently runs and
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both its nodes are running fine, you can at migrate it over to its
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secondary node, without downtime. On the master node you need to run::
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  gnt-instance migrate INSTANCE_NAME
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The current load on the instance and its memory size will influence how
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long the migration will take. In any case, for both KVM and Xen
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hypervisors, the migration will be transparent to the instance.
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Moving an instance (offline)
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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If an instance has not been create as mirrored, then the only way to
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change its primary node is to execute the move command::
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  gnt-instance move -n NEW_NODE INSTANCE
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This has a few prerequisites:
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- the instance must be stopped
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- its current primary node must be on-line and healthy
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- the disks of the instance must not have any errors
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Since this operation actually copies the data from the old node to the
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new node, expect it to take proportional to the size of the instance's
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disks and the speed of both the nodes' I/O system and their networking.
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Disk operations
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+++++++++++++++
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Disk failures are a common cause of errors in any server
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deployment. Ganeti offers protection from single-node failure if your
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instances were created in HA mode, and it also offers ways to restore
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redundancy after a failure.
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Preparing for disk operations
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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It is important to note that for Ganeti to be able to do any disk
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operation, the Linux machines on top of which Ganeti must be consistent;
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for LVM, this means that the LVM commands must not return failures; it
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is common that after a complete disk failure, any LVM command aborts
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with an error similar to::
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  # vgs
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  /dev/sdb1: read failed after 0 of 4096 at 0: Input/output error
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  /dev/sdb1: read failed after 0 of 4096 at 750153695232: Input/output
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  error
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  /dev/sdb1: read failed after 0 of 4096 at 0: Input/output error
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  Couldn't find device with uuid
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  't30jmN-4Rcf-Fr5e-CURS-pawt-z0jU-m1TgeJ'.
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  Couldn't find all physical volumes for volume group xenvg.
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Before restoring an instance's disks to healthy status, it's needed to
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fix the volume group used by Ganeti so that we can actually create and
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manage the logical volumes. This is usually done in a multi-step
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process:
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#. first, if the disk is completely gone and LVM commands exit with
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   โ€œCouldn't find device with uuidโ€ฆโ€ then you need to run the command::
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    vgreduce --removemissing VOLUME_GROUP
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#. after the above command, the LVM commands should be executing
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   normally (warnings are normal, but the commands will not fail
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   completely).
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#. if the failed disk is still visible in the output of the ``pvs``
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   command, you need to deactivate it from allocations by running::
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    pvs -x n /dev/DISK
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At this point, the volume group should be consistent and any bad
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physical volumes should not longer be available for allocation.
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Note that since version 2.1 Ganeti provides some commands to automate
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these two operations, see :ref:`storage-units-label`.
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.. _rest-redundancy-label:
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Restoring redundancy for DRBD-based instances
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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A DRBD instance has two nodes, and the storage on one of them has
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failed. Depending on which node (primary or secondary) has failed, you
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have three options at hand:
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- if the storage on the primary node has failed, you need to re-create
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  the disks on it
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- if the storage on the secondary node has failed, you can either
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  re-create the disks on it or change the secondary and recreate
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  redundancy on the new secondary node
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Of course, at any point it's possible to force re-creation of disks even
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though everything is already fine.
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For all three cases, the ``replace-disks`` operation can be used::
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  # re-create disks on the primary node
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  gnt-instance replace-disks -p INSTANCE_NAME
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  # re-create disks on the current secondary
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  gnt-instance replace-disks -s INSTANCE_NAME
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  # change the secondary node, via manual specification
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  gnt-instance replace-disks -n NODE INSTANCE_NAME
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  # change the secondary node, via an iallocator script
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  gnt-instance replace-disks -I SCRIPT INSTANCE_NAME
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  # since Ganeti 2.1: automatically fix the primary or secondary node
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  gnt-instance replace-disks -a INSTANCE_NAME
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Since the process involves copying all data from the working node to the
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target node, it will take a while, depending on the instance's disk
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size, node I/O system and network speed. But it is (baring any network
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interruption) completely transparent for the instance.
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Re-creating disks for non-redundant instances
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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.. versionadded:: 2.1
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For non-redundant instances, there isn't a copy (except backups) to
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re-create the disks. But it's possible to at-least re-create empty
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disks, after which a reinstall can be run, via the ``recreate-disks``
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command::
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  gnt-instance recreate-disks INSTANCE
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Note that this will fail if the disks already exists.
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Conversion of an instance's disk type
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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It is possible to convert between a non-redundant instance of type
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``plain`` (LVM storage) and redundant ``drbd`` via the ``gnt-instance
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modify`` command::
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  # start with a non-redundant instance
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  gnt-instance add -t plain ... INSTANCE
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  # later convert it to redundant
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  gnt-instance stop INSTANCE
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  gnt-instance modify -t drbd -n NEW_SECONDARY INSTANCE
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  gnt-instance start INSTANCE
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  # and convert it back
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  gnt-instance stop INSTANCE
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  gnt-instance modify -t plain INSTANCE
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  gnt-instance start INSTANCE
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The conversion must be done while the instance is stopped, and
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converting from plain to drbd template presents a small risk, especially
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if the instance has multiple disks and/or if one node fails during the
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conversion procedure). As such, it's recommended (as always) to make
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sure that downtime for manual recovery is acceptable and that the
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instance has up-to-date backups.
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Debugging instances
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+++++++++++++++++++
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Accessing an instance's disks
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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From an instance's primary node you can have access to its disks. Never
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ever mount the underlying logical volume manually on a fault tolerant
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instance, or will break replication and your data will be
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inconsistent. The correct way to access an instance's disks is to run
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(on the master node, as usual) the command::
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  gnt-instance activate-disks INSTANCE
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And then, *on the primary node of the instance*, access the device that
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gets created. For example, you could mount the given disks, then edit
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files on the filesystem, etc.
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Note that with partitioned disks (as opposed to whole-disk filesystems),
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you will need to use a tool like :manpage:`kpartx(8)`::
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  node1# gnt-instance activate-disks instance1
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  โ€ฆ
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  node1# ssh node3
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  node3# kpartx -l /dev/โ€ฆ
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  node3# kpartx -a /dev/โ€ฆ
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  node3# mount /dev/mapper/โ€ฆ /mnt/
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  # edit files under mnt as desired
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  node3# umount /mnt/
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  node3# kpartx -d /dev/โ€ฆ
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  node3# exit
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  node1#
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After you've finished you can deactivate them with the deactivate-disks
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command, which works in the same way::
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  gnt-instance deactivate-disks INSTANCE
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Note that if any process started by you is still using the disks, the
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above command will error out, and you **must** cleanup and ensure that
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the above command runs successfully before you start the instance,
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otherwise the instance will suffer corruption.
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Accessing an instance's console
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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The command to access a running instance's console is::
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  gnt-instance console INSTANCE_NAME
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Use the console normally and then type ``^]`` when done, to exit.
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Other instance operations
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+++++++++++++++++++++++++
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Reboot
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~~~~~~
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There is a wrapper command for rebooting instances::
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  gnt-instance reboot instance2
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By default, this does the equivalent of shutting down and then starting
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the instance, but it accepts parameters to perform a soft-reboot (via
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the hypervisor), a hard reboot (hypervisor shutdown and then startup) or
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a full one (the default, which also de-configures and then configures
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again the disks of the instance).
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Instance OS definitions debugging
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+++++++++++++++++++++++++++++++++
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Should you have any problems with instance operating systems the command
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to see a complete status for all your nodes is::
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   gnt-os diagnose
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.. _instance-relocation-label:
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Instance relocation
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~~~~~~~~~~~~~~~~~~~
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While it is not possible to move an instance from nodes ``(A, B)`` to
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nodes ``(C, D)`` in a single move, it is possible to do so in a few
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steps::
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  # instance is located on A, B
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  node1# gnt-instance replace -n nodeC instance1
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  # instance has moved from (A, B) to (A, C)
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  # we now flip the primary/secondary nodes
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  node1# gnt-instance migrate instance1
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  # instance lives on (C, A)
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  # we can then change A to D via:
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  node1# gnt-instance replace -n nodeD instance1
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Which brings it into the final configuration of ``(C, D)``. Note that we
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needed to do two replace-disks operation (two copies of the instance
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disks), because we needed to get rid of both the original nodes (A and
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B).
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Node operations
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---------------
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There are much fewer node operations available than for instances, but
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they are equivalently important for maintaining a healthy cluster.
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Add/readd
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+++++++++
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It is at any time possible to extend the cluster with one more node, by
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using the node add operation::
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  gnt-node add NEW_NODE
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If the cluster has a replication network defined, then you need to pass
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the ``-s REPLICATION_IP`` parameter to this option.
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A variation of this command can be used to re-configure a node if its
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Ganeti configuration is broken, for example if it has been reinstalled
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by mistake::
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  gnt-node add --readd EXISTING_NODE
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This will reinitialise the node as if it's been newly added, but while
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keeping its existing configuration in the cluster (primary/secondary IP,
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etc.), in other words you won't need to use ``-s`` here.
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Changing the node role
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++++++++++++++++++++++
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A node can be in different roles, as explained in the
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:ref:`terminology-label` section. Promoting a node to the master role is
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special, while the other roles are handled all via a single command.
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Failing over the master node
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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If you want to promote a different node to the master role (for whatever
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reason), run on any other master-candidate node the command::
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  gnt-cluster master-failover
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and the node you ran it on is now the new master. In case you try to run
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this on a non master-candidate node, you will get an error telling you
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which nodes are valid.
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Changing between the other roles
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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The ``gnt-node modify`` command can be used to select a new role::
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  # change to master candidate
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  gnt-node modify -C yes NODE
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  # change to drained status
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  gnt-node modify -D yes NODE
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  # change to offline status
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  gnt-node modify -O yes NODE
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  # change to regular mode (reset all flags)
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  gnt-node modify -O no -D no -C no NODE
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Note that the cluster requires that at any point in time, a certain
720 c71a1a3d Iustin Pop
number of nodes are master candidates, so changing from master candidate
721 c71a1a3d Iustin Pop
to other roles might fail. It is recommended to either force the
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operation (via the ``--force`` option) or first change the number of
723 c71a1a3d Iustin Pop
master candidates in the cluster - see :ref:`cluster-config-label`.
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Evacuating nodes
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++++++++++++++++
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There are two steps of moving instances off a node:
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730 c71a1a3d Iustin Pop
- moving the primary instances (actually converting them into secondary
731 c71a1a3d Iustin Pop
  instances)
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- moving the secondary instances (including any instances converted in
733 c71a1a3d Iustin Pop
  the step above)
734 c71a1a3d Iustin Pop
735 c71a1a3d Iustin Pop
Primary instance conversion
736 c71a1a3d Iustin Pop
~~~~~~~~~~~~~~~~~~~~~~~~~~~
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For this step, you can use either individual instance move
739 c71a1a3d Iustin Pop
commands (as seen in :ref:`instance-change-primary-label`) or the bulk
740 c71a1a3d Iustin Pop
per-node versions; these are::
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742 c71a1a3d Iustin Pop
  gnt-node migrate NODE
743 c71a1a3d Iustin Pop
  gnt-node evacuate NODE
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745 c71a1a3d Iustin Pop
Note that the instance โ€œmoveโ€ command doesn't currently have a node
746 c71a1a3d Iustin Pop
equivalent.
747 c71a1a3d Iustin Pop
748 c71a1a3d Iustin Pop
Both these commands, or the equivalent per-instance command, will make
749 c71a1a3d Iustin Pop
this node the secondary node for the respective instances, whereas their
750 c71a1a3d Iustin Pop
current secondary node will become primary. Note that it is not possible
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to change in one step the primary node to another node as primary, while
752 c71a1a3d Iustin Pop
keeping the same secondary node.
753 c71a1a3d Iustin Pop
754 c71a1a3d Iustin Pop
Secondary instance evacuation
755 c71a1a3d Iustin Pop
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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For the evacuation of secondary instances, a command called
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:command:`gnt-node evacuate` is provided and its syntax is::
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760 c71a1a3d Iustin Pop
  gnt-node evacuate -I IALLOCATOR_SCRIPT NODE
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  gnt-node evacuate -n DESTINATION_NODE NODE
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763 c71a1a3d Iustin Pop
The first version will compute the new secondary for each instance in
764 c71a1a3d Iustin Pop
turn using the given iallocator script, whereas the second one will
765 c71a1a3d Iustin Pop
simply move all instances to DESTINATION_NODE.
766 c71a1a3d Iustin Pop
767 c71a1a3d Iustin Pop
Removal
768 c71a1a3d Iustin Pop
+++++++
769 c71a1a3d Iustin Pop
770 c71a1a3d Iustin Pop
Once a node no longer has any instances (neither primary nor secondary),
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it's easy to remove it from the cluster::
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773 c71a1a3d Iustin Pop
  gnt-node remove NODE_NAME
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775 c71a1a3d Iustin Pop
This will deconfigure the node, stop the ganeti daemons on it and leave
776 c71a1a3d Iustin Pop
it hopefully like before it joined to the cluster.
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778 c71a1a3d Iustin Pop
Storage handling
779 c71a1a3d Iustin Pop
++++++++++++++++
780 c71a1a3d Iustin Pop
781 c71a1a3d Iustin Pop
When using LVM (either standalone or with DRBD), it can become tedious
782 c71a1a3d Iustin Pop
to debug and fix it in case of errors. Furthermore, even file-based
783 c71a1a3d Iustin Pop
storage can become complicated to handle manually on many hosts. Ganeti
784 c71a1a3d Iustin Pop
provides a couple of commands to help with automation.
785 c71a1a3d Iustin Pop
786 c71a1a3d Iustin Pop
Logical volumes
787 c71a1a3d Iustin Pop
~~~~~~~~~~~~~~~
788 c71a1a3d Iustin Pop
789 c71a1a3d Iustin Pop
This is a command specific to LVM handling. It allows listing the
790 c71a1a3d Iustin Pop
logical volumes on a given node or on all nodes and their association to
791 c71a1a3d Iustin Pop
instances via the ``volumes`` command::
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793 c71a1a3d Iustin Pop
  node1# gnt-node volumes
794 c71a1a3d Iustin Pop
  Node  PhysDev   VG    Name             Size Instance
795 c71a1a3d Iustin Pop
  node1 /dev/sdb1 xenvg e61fbc97-โ€ฆ.disk0 512M instance17
796 c71a1a3d Iustin Pop
  node1 /dev/sdb1 xenvg ebd1a7d1-โ€ฆ.disk0 512M instance19
797 c71a1a3d Iustin Pop
  node2 /dev/sdb1 xenvg 0af08a3d-โ€ฆ.disk0 512M instance20
798 c71a1a3d Iustin Pop
  node2 /dev/sdb1 xenvg cc012285-โ€ฆ.disk0 512M instance16
799 c71a1a3d Iustin Pop
  node2 /dev/sdb1 xenvg f0fac192-โ€ฆ.disk0 512M instance18
800 c71a1a3d Iustin Pop
801 c71a1a3d Iustin Pop
The above command maps each logical volume to a volume group and
802 c71a1a3d Iustin Pop
underlying physical volume and (possibly) to an instance.
803 c71a1a3d Iustin Pop
804 c71a1a3d Iustin Pop
.. _storage-units-label:
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806 c71a1a3d Iustin Pop
Generalized storage handling
807 c71a1a3d Iustin Pop
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
808 c71a1a3d Iustin Pop
809 c71a1a3d Iustin Pop
.. versionadded:: 2.1
810 c71a1a3d Iustin Pop
811 c71a1a3d Iustin Pop
Starting with Ganeti 2.1, a new storage framework has been implemented
812 c71a1a3d Iustin Pop
that tries to abstract the handling of the storage type the cluster
813 c71a1a3d Iustin Pop
uses.
814 c71a1a3d Iustin Pop
815 c71a1a3d Iustin Pop
First is listing the backend storage and their space situation::
816 c71a1a3d Iustin Pop
817 c71a1a3d Iustin Pop
  node1# gnt-node list-storage
818 c71a1a3d Iustin Pop
  Node  Name        Size Used   Free
819 c71a1a3d Iustin Pop
  node1 /dev/sda7 673.8G   0M 673.8G
820 c71a1a3d Iustin Pop
  node1 /dev/sdb1 698.6G 1.5G 697.1G
821 c71a1a3d Iustin Pop
  node2 /dev/sda7 673.8G   0M 673.8G
822 c71a1a3d Iustin Pop
  node2 /dev/sdb1 698.6G 1.0G 697.6G
823 c71a1a3d Iustin Pop
824 c71a1a3d Iustin Pop
The default is to list LVM physical volumes. It's also possible to list
825 c71a1a3d Iustin Pop
the LVM volume groups::
826 c71a1a3d Iustin Pop
827 c71a1a3d Iustin Pop
  node1# gnt-node list-storage -t lvm-vg
828 c71a1a3d Iustin Pop
  Node  Name  Size
829 c71a1a3d Iustin Pop
  node1 xenvg 1.3T
830 c71a1a3d Iustin Pop
  node2 xenvg 1.3T
831 c71a1a3d Iustin Pop
832 c71a1a3d Iustin Pop
Next is repairing storage units, which is currently only implemented for
833 c71a1a3d Iustin Pop
volume groups and does the equivalent of ``vgreduce --removemissing``::
834 c71a1a3d Iustin Pop
835 c71a1a3d Iustin Pop
  node1# gnt-node repair-storage node2 lvm-vg xenvg
836 c71a1a3d Iustin Pop
  Sun Oct 25 22:21:45 2009 Repairing storage unit 'xenvg' on node2 ...
837 c71a1a3d Iustin Pop
838 c71a1a3d Iustin Pop
Last is the modification of volume properties, which is (again) only
839 c71a1a3d Iustin Pop
implemented for LVM physical volumes and allows toggling the
840 c71a1a3d Iustin Pop
``allocatable`` value::
841 c71a1a3d Iustin Pop
842 c71a1a3d Iustin Pop
  node1# gnt-node modify-storage --allocatable=no node2 lvm-pv /dev/sdb1
843 c71a1a3d Iustin Pop
844 c71a1a3d Iustin Pop
Use of the storage commands
845 56c9a709 Iustin Pop
~~~~~~~~~~~~~~~~~~~~~~~~~~~
846 56c9a709 Iustin Pop
847 c71a1a3d Iustin Pop
All these commands are needed when recovering a node from a disk
848 c71a1a3d Iustin Pop
failure:
849 c71a1a3d Iustin Pop
850 c71a1a3d Iustin Pop
- first, we need to recover from complete LVM failure (due to missing
851 c71a1a3d Iustin Pop
  disk), by running the ``repair-storage`` command
852 c71a1a3d Iustin Pop
- second, we need to change allocation on any partially-broken disk
853 c71a1a3d Iustin Pop
  (i.e. LVM still sees it, but it has bad blocks) by running
854 c71a1a3d Iustin Pop
  ``modify-storage``
855 c71a1a3d Iustin Pop
- then we can evacuate the instances as needed
856 56c9a709 Iustin Pop
857 56c9a709 Iustin Pop
858 c71a1a3d Iustin Pop
Cluster operations
859 c71a1a3d Iustin Pop
------------------
860 c71a1a3d Iustin Pop
861 c71a1a3d Iustin Pop
Beside the cluster initialisation command (which is detailed in the
862 c71a1a3d Iustin Pop
:doc:`install` document) and the master failover command which is
863 c71a1a3d Iustin Pop
explained under node handling, there are a couple of other cluster
864 c71a1a3d Iustin Pop
operations available.
865 c71a1a3d Iustin Pop
866 c71a1a3d Iustin Pop
.. _cluster-config-label:
867 c71a1a3d Iustin Pop
868 c71a1a3d Iustin Pop
Standard operations
869 c71a1a3d Iustin Pop
+++++++++++++++++++
870 c71a1a3d Iustin Pop
871 c71a1a3d Iustin Pop
One of the few commands that can be run on any node (not only the
872 c71a1a3d Iustin Pop
master) is the ``getmaster`` command::
873 c71a1a3d Iustin Pop
874 c71a1a3d Iustin Pop
  node2# gnt-cluster getmaster
875 c71a1a3d Iustin Pop
  node1.example.com
876 c71a1a3d Iustin Pop
  node2#
877 c71a1a3d Iustin Pop
878 c71a1a3d Iustin Pop
It is possible to query and change global cluster parameters via the
879 c71a1a3d Iustin Pop
``info`` and ``modify`` commands::
880 c71a1a3d Iustin Pop
881 c71a1a3d Iustin Pop
  node1# gnt-cluster info
882 c71a1a3d Iustin Pop
  Cluster name: cluster.example.com
883 c71a1a3d Iustin Pop
  Cluster UUID: 07805e6f-f0af-4310-95f1-572862ee939c
884 c71a1a3d Iustin Pop
  Creation time: 2009-09-25 05:04:15
885 c71a1a3d Iustin Pop
  Modification time: 2009-10-18 22:11:47
886 c71a1a3d Iustin Pop
  Master node: node1.example.com
887 c71a1a3d Iustin Pop
  Architecture (this node): 64bit (x86_64)
888 c71a1a3d Iustin Pop
  โ€ฆ
889 c71a1a3d Iustin Pop
  Tags: foo
890 c71a1a3d Iustin Pop
  Default hypervisor: xen-pvm
891 c71a1a3d Iustin Pop
  Enabled hypervisors: xen-pvm
892 c71a1a3d Iustin Pop
  Hypervisor parameters:
893 c71a1a3d Iustin Pop
    - xen-pvm:
894 c71a1a3d Iustin Pop
        root_path: /dev/sda1
895 c71a1a3d Iustin Pop
        โ€ฆ
896 c71a1a3d Iustin Pop
  Cluster parameters:
897 c71a1a3d Iustin Pop
    - candidate pool size: 10
898 c71a1a3d Iustin Pop
      โ€ฆ
899 c71a1a3d Iustin Pop
  Default instance parameters:
900 c71a1a3d Iustin Pop
    - default:
901 c71a1a3d Iustin Pop
        memory: 128
902 c71a1a3d Iustin Pop
        โ€ฆ
903 c71a1a3d Iustin Pop
  Default nic parameters:
904 c71a1a3d Iustin Pop
    - default:
905 c71a1a3d Iustin Pop
        link: xen-br0
906 c71a1a3d Iustin Pop
        โ€ฆ
907 c71a1a3d Iustin Pop
908 c71a1a3d Iustin Pop
There various parameters above can be changed via the ``modify``
909 c71a1a3d Iustin Pop
commands as follows:
910 c71a1a3d Iustin Pop
911 c71a1a3d Iustin Pop
- the hypervisor parameters can be changed via ``modify -H
912 c71a1a3d Iustin Pop
  xen-pvm:root_path=โ€ฆ``, and so on for other hypervisors/key/values
913 c71a1a3d Iustin Pop
- the "default instance parameters" are changeable via ``modify -B
914 c71a1a3d Iustin Pop
  parameter=valueโ€ฆ`` syntax
915 c71a1a3d Iustin Pop
- the cluster parameters are changeable via separate options to the
916 c71a1a3d Iustin Pop
  modify command (e.g. ``--candidate-pool-size``, etc.)
917 c71a1a3d Iustin Pop
918 c71a1a3d Iustin Pop
For detailed option list see the :manpage:`gnt-cluster(8)` man page.
919 c71a1a3d Iustin Pop
920 c71a1a3d Iustin Pop
The cluster version can be obtained via the ``version`` command::
921 c71a1a3d Iustin Pop
  node1# gnt-cluster version
922 c71a1a3d Iustin Pop
  Software version: 2.1.0
923 c71a1a3d Iustin Pop
  Internode protocol: 20
924 c71a1a3d Iustin Pop
  Configuration format: 2010000
925 c71a1a3d Iustin Pop
  OS api version: 15
926 c71a1a3d Iustin Pop
  Export interface: 0
927 c71a1a3d Iustin Pop
928 c71a1a3d Iustin Pop
This is not very useful except when debugging Ganeti.
929 c71a1a3d Iustin Pop
930 c71a1a3d Iustin Pop
Global node commands
931 c71a1a3d Iustin Pop
++++++++++++++++++++
932 c71a1a3d Iustin Pop
933 c71a1a3d Iustin Pop
There are two commands provided for replicating files to all nodes of a
934 c71a1a3d Iustin Pop
cluster and for running commands on all the nodes::
935 c71a1a3d Iustin Pop
936 c71a1a3d Iustin Pop
  node1# gnt-cluster copyfile /path/to/file
937 c71a1a3d Iustin Pop
  node1# gnt-cluster command ls -l /path/to/file
938 c71a1a3d Iustin Pop
939 c71a1a3d Iustin Pop
These are simple wrappers over scp/ssh and more advanced usage can be
940 c71a1a3d Iustin Pop
obtained using :manpage:`dsh(1)` and similar commands. But they are
941 c71a1a3d Iustin Pop
useful to update an OS script from the master node, for example.
942 c71a1a3d Iustin Pop
943 c71a1a3d Iustin Pop
Cluster verification
944 c71a1a3d Iustin Pop
++++++++++++++++++++
945 c71a1a3d Iustin Pop
946 c71a1a3d Iustin Pop
There are three commands that relate to global cluster checks. The first
947 c71a1a3d Iustin Pop
one is ``verify`` which gives an overview on the cluster state,
948 c71a1a3d Iustin Pop
highlighting any issues. In normal operation, this command should return
949 c71a1a3d Iustin Pop
no ``ERROR`` messages::
950 c71a1a3d Iustin Pop
951 c71a1a3d Iustin Pop
  node1# gnt-cluster verify
952 c71a1a3d Iustin Pop
  Sun Oct 25 23:08:58 2009 * Verifying global settings
953 c71a1a3d Iustin Pop
  Sun Oct 25 23:08:58 2009 * Gathering data (2 nodes)
954 c71a1a3d Iustin Pop
  Sun Oct 25 23:09:00 2009 * Verifying node status
955 c71a1a3d Iustin Pop
  Sun Oct 25 23:09:00 2009 * Verifying instance status
956 c71a1a3d Iustin Pop
  Sun Oct 25 23:09:00 2009 * Verifying orphan volumes
957 c71a1a3d Iustin Pop
  Sun Oct 25 23:09:00 2009 * Verifying remaining instances
958 c71a1a3d Iustin Pop
  Sun Oct 25 23:09:00 2009 * Verifying N+1 Memory redundancy
959 c71a1a3d Iustin Pop
  Sun Oct 25 23:09:00 2009 * Other Notes
960 c71a1a3d Iustin Pop
  Sun Oct 25 23:09:00 2009   - NOTICE: 5 non-redundant instance(s) found.
961 c71a1a3d Iustin Pop
  Sun Oct 25 23:09:00 2009 * Hooks Results
962 c71a1a3d Iustin Pop
963 c71a1a3d Iustin Pop
The second command is ``verify-disks``, which checks that the instance's
964 c71a1a3d Iustin Pop
disks have the correct status based on the desired instance state
965 c71a1a3d Iustin Pop
(up/down)::
966 c71a1a3d Iustin Pop
967 c71a1a3d Iustin Pop
  node1# gnt-cluster verify-disks
968 c71a1a3d Iustin Pop
969 c71a1a3d Iustin Pop
Note that this command will show no output when disks are healthy.
970 c71a1a3d Iustin Pop
971 c71a1a3d Iustin Pop
The last command is used to repair any discrepancies in Ganeti's
972 c71a1a3d Iustin Pop
recorded disk size and the actual disk size (disk size information is
973 c71a1a3d Iustin Pop
needed for proper activation and growth of DRBD-based disks)::
974 c71a1a3d Iustin Pop
975 c71a1a3d Iustin Pop
  node1# gnt-cluster repair-disk-sizes
976 c71a1a3d Iustin Pop
  Sun Oct 25 23:13:16 2009  - INFO: Disk 0 of instance instance1 has mismatched size, correcting: recorded 512, actual 2048
977 c71a1a3d Iustin Pop
  Sun Oct 25 23:13:17 2009  - WARNING: Invalid result from node node4, ignoring node results
978 c71a1a3d Iustin Pop
979 c71a1a3d Iustin Pop
The above shows one instance having wrong disk size, and a node which
980 c71a1a3d Iustin Pop
returned invalid data, and thus we ignored all primary instances of that
981 c71a1a3d Iustin Pop
node.
982 c71a1a3d Iustin Pop
983 c71a1a3d Iustin Pop
Configuration redistribution
984 c71a1a3d Iustin Pop
++++++++++++++++++++++++++++
985 c71a1a3d Iustin Pop
986 c71a1a3d Iustin Pop
If the verify command complains about file mismatches between the master
987 c71a1a3d Iustin Pop
and other nodes, due to some node problems or if you manually modified
988 c71a1a3d Iustin Pop
configuration files, you can force an push of the master configuration
989 c71a1a3d Iustin Pop
to all other nodes via the ``redist-conf`` command::
990 c71a1a3d Iustin Pop
991 c71a1a3d Iustin Pop
  node1# gnt-cluster redist-conf
992 c71a1a3d Iustin Pop
  node1#
993 c71a1a3d Iustin Pop
994 c71a1a3d Iustin Pop
This command will be silent unless there are problems sending updates to
995 c71a1a3d Iustin Pop
the other nodes.
996 c71a1a3d Iustin Pop
997 c71a1a3d Iustin Pop
998 c71a1a3d Iustin Pop
Cluster renaming
999 c71a1a3d Iustin Pop
++++++++++++++++
1000 c71a1a3d Iustin Pop
1001 c71a1a3d Iustin Pop
It is possible to rename a cluster, or to change its IP address, via the
1002 c71a1a3d Iustin Pop
``rename`` command. If only the IP has changed, you need to pass the
1003 c71a1a3d Iustin Pop
current name and Ganeti will realise its IP has changed::
1004 c71a1a3d Iustin Pop
1005 c71a1a3d Iustin Pop
  node1# gnt-cluster rename cluster.example.com
1006 c71a1a3d Iustin Pop
  This will rename the cluster to 'cluster.example.com'. If
1007 c71a1a3d Iustin Pop
  you are connected over the network to the cluster name, the operation
1008 c71a1a3d Iustin Pop
  is very dangerous as the IP address will be removed from the node and
1009 c71a1a3d Iustin Pop
  the change may not go through. Continue?
1010 c71a1a3d Iustin Pop
  y/[n]/?: y
1011 c71a1a3d Iustin Pop
  Failure: prerequisites not met for this operation:
1012 c71a1a3d Iustin Pop
  Neither the name nor the IP address of the cluster has changed
1013 c71a1a3d Iustin Pop
1014 c71a1a3d Iustin Pop
In the above output, neither value has changed since the cluster
1015 c71a1a3d Iustin Pop
initialisation so the operation is not completed.
1016 c71a1a3d Iustin Pop
1017 c71a1a3d Iustin Pop
Queue operations
1018 c71a1a3d Iustin Pop
++++++++++++++++
1019 c71a1a3d Iustin Pop
1020 c71a1a3d Iustin Pop
The job queue execution in Ganeti 2.0 and higher can be inspected,
1021 c71a1a3d Iustin Pop
suspended and resumed via the ``queue`` command::
1022 c71a1a3d Iustin Pop
1023 c71a1a3d Iustin Pop
  node1~# gnt-cluster queue info
1024 c71a1a3d Iustin Pop
  The drain flag is unset
1025 c71a1a3d Iustin Pop
  node1~# gnt-cluster queue drain
1026 c71a1a3d Iustin Pop
  node1~# gnt-instance stop instance1
1027 c71a1a3d Iustin Pop
  Failed to submit job for instance1: Job queue is drained, refusing job
1028 c71a1a3d Iustin Pop
  node1~# gnt-cluster queue info
1029 c71a1a3d Iustin Pop
  The drain flag is set
1030 c71a1a3d Iustin Pop
  node1~# gnt-cluster queue undrain
1031 c71a1a3d Iustin Pop
1032 c71a1a3d Iustin Pop
This is most useful if you have an active cluster and you need to
1033 c71a1a3d Iustin Pop
upgrade the Ganeti software, or simply restart the software on any node:
1034 c71a1a3d Iustin Pop
1035 c71a1a3d Iustin Pop
#. suspend the queue via ``queue drain``
1036 c71a1a3d Iustin Pop
#. wait until there are no more running jobs via ``gnt-job list``
1037 c71a1a3d Iustin Pop
#. restart the master or another node, or upgrade the software
1038 c71a1a3d Iustin Pop
#. resume the queue via ``queue undrain``
1039 c71a1a3d Iustin Pop
1040 c71a1a3d Iustin Pop
.. note:: this command only stores a local flag file, and if you
1041 c71a1a3d Iustin Pop
   failover the master, it will not have effect on the new master.
1042 c71a1a3d Iustin Pop
1043 c71a1a3d Iustin Pop
1044 c71a1a3d Iustin Pop
Watcher control
1045 c71a1a3d Iustin Pop
+++++++++++++++
1046 c71a1a3d Iustin Pop
1047 c71a1a3d Iustin Pop
The :manpage:`ganeti-watcher` is a program, usually scheduled via
1048 c71a1a3d Iustin Pop
``cron``, that takes care of cluster maintenance operations (restarting
1049 c71a1a3d Iustin Pop
downed instances, activating down DRBD disks, etc.). However, during
1050 c71a1a3d Iustin Pop
maintenance and troubleshooting, this can get in your way; disabling it
1051 c71a1a3d Iustin Pop
via commenting out the cron job is not so good as this can be
1052 c71a1a3d Iustin Pop
forgotten. Thus there are some commands for automated control of the
1053 c71a1a3d Iustin Pop
watcher: ``pause``, ``info`` and ``continue``::
1054 c71a1a3d Iustin Pop
1055 c71a1a3d Iustin Pop
  node1~# gnt-cluster watcher info
1056 c71a1a3d Iustin Pop
  The watcher is not paused.
1057 c71a1a3d Iustin Pop
  node1~# gnt-cluster watcher pause 1h
1058 c71a1a3d Iustin Pop
  The watcher is paused until Mon Oct 26 00:30:37 2009.
1059 c71a1a3d Iustin Pop
  node1~# gnt-cluster watcher info
1060 c71a1a3d Iustin Pop
  The watcher is paused until Mon Oct 26 00:30:37 2009.
1061 c71a1a3d Iustin Pop
  node1~# ganeti-watcher -d
1062 c71a1a3d Iustin Pop
  2009-10-25 23:30:47,984:  pid=28867 ganeti-watcher:486 DEBUG Pause has been set, exiting
1063 c71a1a3d Iustin Pop
  node1~# gnt-cluster watcher continue
1064 c71a1a3d Iustin Pop
  The watcher is no longer paused.
1065 c71a1a3d Iustin Pop
  node1~# ganeti-watcher -d
1066 c71a1a3d Iustin Pop
  2009-10-25 23:31:04,789:  pid=28976 ganeti-watcher:345 DEBUG Archived 0 jobs, left 0
1067 c71a1a3d Iustin Pop
  2009-10-25 23:31:05,884:  pid=28976 ganeti-watcher:280 DEBUG Got data from cluster, writing instance status file
1068 c71a1a3d Iustin Pop
  2009-10-25 23:31:06,061:  pid=28976 ganeti-watcher:150 DEBUG Data didn't change, just touching status file
1069 c71a1a3d Iustin Pop
  node1~# gnt-cluster watcher info
1070 c71a1a3d Iustin Pop
  The watcher is not paused.
1071 c71a1a3d Iustin Pop
  node1~#
1072 c71a1a3d Iustin Pop
1073 c71a1a3d Iustin Pop
The exact details of the argument to the ``pause`` command are available
1074 c71a1a3d Iustin Pop
in the manpage.
1075 c71a1a3d Iustin Pop
1076 c71a1a3d Iustin Pop
.. note:: this command only stores a local flag file, and if you
1077 c71a1a3d Iustin Pop
   failover the master, it will not have effect on the new master.
1078 c71a1a3d Iustin Pop
1079 6328fea3 Iustin Pop
Node auto-maintenance
1080 6328fea3 Iustin Pop
+++++++++++++++++++++
1081 6328fea3 Iustin Pop
1082 6328fea3 Iustin Pop
If the cluster parameter ``maintain_node_health`` is enabled (see the
1083 6328fea3 Iustin Pop
manpage for :command:`gnt-cluster`, the init and modify subcommands),
1084 6328fea3 Iustin Pop
then the following will happen automatically:
1085 6328fea3 Iustin Pop
1086 6328fea3 Iustin Pop
- the watcher will shutdown any instances running on offline nodes
1087 6328fea3 Iustin Pop
- the watcher will deactivate any DRBD devices on offline nodes
1088 6328fea3 Iustin Pop
1089 6328fea3 Iustin Pop
In the future, more actions are planned, so only enable this parameter
1090 6328fea3 Iustin Pop
if the nodes are completely dedicated to Ganeti; otherwise it might be
1091 6328fea3 Iustin Pop
possible to lose data due to auto-maintenance actions.
1092 6328fea3 Iustin Pop
1093 c71a1a3d Iustin Pop
Removing a cluster entirely
1094 c71a1a3d Iustin Pop
+++++++++++++++++++++++++++
1095 c71a1a3d Iustin Pop
1096 c71a1a3d Iustin Pop
The usual method to cleanup a cluster is to run ``gnt-cluster destroy``
1097 c71a1a3d Iustin Pop
however if the Ganeti installation is broken in any way then this will
1098 c71a1a3d Iustin Pop
not run.
1099 c71a1a3d Iustin Pop
1100 c71a1a3d Iustin Pop
It is possible in such a case to cleanup manually most if not all traces
1101 c71a1a3d Iustin Pop
of a cluster installation by following these steps on all of the nodes:
1102 c71a1a3d Iustin Pop
1103 c71a1a3d Iustin Pop
1. Shutdown all instances. This depends on the virtualisation method
1104 c71a1a3d Iustin Pop
   used (Xen, KVM, etc.):
1105 56c9a709 Iustin Pop
1106 56c9a709 Iustin Pop
  - Xen: run ``xm list`` and ``xm destroy`` on all the non-Domain-0
1107 56c9a709 Iustin Pop
    instances
1108 56c9a709 Iustin Pop
  - KVM: kill all the KVM processes
1109 56c9a709 Iustin Pop
  - chroot: kill all processes under the chroot mountpoints
1110 56c9a709 Iustin Pop
1111 c71a1a3d Iustin Pop
2. If using DRBD, shutdown all DRBD minors (which should by at this time
1112 c71a1a3d Iustin Pop
   no-longer in use by instances); on each node, run ``drbdsetup
1113 56c9a709 Iustin Pop
   /dev/drbdN down`` for each active DRBD minor.
1114 56c9a709 Iustin Pop
1115 c71a1a3d Iustin Pop
3. If using LVM, cleanup the Ganeti volume group; if only Ganeti created
1116 c71a1a3d Iustin Pop
   logical volumes (and you are not sharing the volume group with the
1117 c71a1a3d Iustin Pop
   OS, for example), then simply running ``lvremove -f xenvg`` (replace
1118 c71a1a3d Iustin Pop
   'xenvg' with your volume group name) should do the required cleanup.
1119 56c9a709 Iustin Pop
1120 56c9a709 Iustin Pop
4. If using file-based storage, remove recursively all files and
1121 56c9a709 Iustin Pop
   directories under your file-storage directory: ``rm -rf
1122 c71a1a3d Iustin Pop
   /srv/ganeti/file-storage/*`` replacing the path with the correct path
1123 c71a1a3d Iustin Pop
   for your cluster.
1124 56c9a709 Iustin Pop
1125 56c9a709 Iustin Pop
5. Stop the ganeti daemons (``/etc/init.d/ganeti stop``) and kill any
1126 56c9a709 Iustin Pop
   that remain alive (``pgrep ganeti`` and ``pkill ganeti``).
1127 56c9a709 Iustin Pop
1128 56c9a709 Iustin Pop
6. Remove the ganeti state directory (``rm -rf /var/lib/ganeti/*``),
1129 56c9a709 Iustin Pop
   replacing the path with the correct path for your installation.
1130 56c9a709 Iustin Pop
1131 56c9a709 Iustin Pop
On the master node, remove the cluster from the master-netdev (usually
1132 c71a1a3d Iustin Pop
``xen-br0`` for bridged mode, otherwise ``eth0`` or similar), by running
1133 c71a1a3d Iustin Pop
``ip a del $clusterip/32 dev xen-br0`` (use the correct cluster ip and
1134 c71a1a3d Iustin Pop
network device name).
1135 56c9a709 Iustin Pop
1136 56c9a709 Iustin Pop
At this point, the machines are ready for a cluster creation; in case
1137 c71a1a3d Iustin Pop
you want to remove Ganeti completely, you need to also undo some of the
1138 c71a1a3d Iustin Pop
SSH changes and log directories:
1139 56c9a709 Iustin Pop
1140 7faf5110 Michael Hanselmann
- ``rm -rf /var/log/ganeti /srv/ganeti`` (replace with the correct
1141 7faf5110 Michael Hanselmann
  paths)
1142 c71a1a3d Iustin Pop
- remove from ``/root/.ssh`` the keys that Ganeti added (check the
1143 c71a1a3d Iustin Pop
  ``authorized_keys`` and ``id_dsa`` files)
1144 56c9a709 Iustin Pop
- regenerate the host's SSH keys (check the OpenSSH startup scripts)
1145 56c9a709 Iustin Pop
- uninstall Ganeti
1146 56c9a709 Iustin Pop
1147 56c9a709 Iustin Pop
Otherwise, if you plan to re-create the cluster, you can just go ahead
1148 56c9a709 Iustin Pop
and rerun ``gnt-cluster init``.
1149 558fd122 Michael Hanselmann
1150 c71a1a3d Iustin Pop
Tags handling
1151 c71a1a3d Iustin Pop
-------------
1152 c71a1a3d Iustin Pop
1153 c71a1a3d Iustin Pop
The tags handling (addition, removal, listing) is similar for all the
1154 c71a1a3d Iustin Pop
objects that support it (instances, nodes, and the cluster).
1155 c71a1a3d Iustin Pop
1156 c71a1a3d Iustin Pop
Limitations
1157 c71a1a3d Iustin Pop
+++++++++++
1158 c71a1a3d Iustin Pop
1159 c71a1a3d Iustin Pop
Note that the set of characters present in a tag and the maximum tag
1160 c71a1a3d Iustin Pop
length are restricted. Currently the maximum length is 128 characters,
1161 c71a1a3d Iustin Pop
there can be at most 4096 tags per object, and the set of characters is
1162 c71a1a3d Iustin Pop
comprised by alphanumeric characters and additionally ``.+*/:-``.
1163 c71a1a3d Iustin Pop
1164 c71a1a3d Iustin Pop
Operations
1165 c71a1a3d Iustin Pop
++++++++++
1166 c71a1a3d Iustin Pop
1167 c71a1a3d Iustin Pop
Tags can be added via ``add-tags``::
1168 c71a1a3d Iustin Pop
1169 c71a1a3d Iustin Pop
  gnt-instance add-tags INSTANCE a b c
1170 c71a1a3d Iustin Pop
  gnt-node add-tags INSTANCE a b c
1171 c71a1a3d Iustin Pop
  gnt-cluster add-tags a b c
1172 c71a1a3d Iustin Pop
1173 c71a1a3d Iustin Pop
1174 c71a1a3d Iustin Pop
The above commands add three tags to an instance, to a node and to the
1175 c71a1a3d Iustin Pop
cluster. Note that the cluster command only takes tags as arguments,
1176 c71a1a3d Iustin Pop
whereas the node and instance commands first required the node and
1177 c71a1a3d Iustin Pop
instance name.
1178 c71a1a3d Iustin Pop
1179 c71a1a3d Iustin Pop
Tags can also be added from a file, via the ``--from=FILENAME``
1180 c71a1a3d Iustin Pop
argument. The file is expected to contain one tag per line.
1181 c71a1a3d Iustin Pop
1182 c71a1a3d Iustin Pop
Tags can also be remove via a syntax very similar to the add one::
1183 c71a1a3d Iustin Pop
1184 c71a1a3d Iustin Pop
  gnt-instance remove-tags INSTANCE a b c
1185 c71a1a3d Iustin Pop
1186 c71a1a3d Iustin Pop
And listed via::
1187 c71a1a3d Iustin Pop
1188 c71a1a3d Iustin Pop
  gnt-instance list-tags
1189 c71a1a3d Iustin Pop
  gnt-node list-tags
1190 c71a1a3d Iustin Pop
  gnt-cluster list-tags
1191 c71a1a3d Iustin Pop
1192 c71a1a3d Iustin Pop
Global tag search
1193 c71a1a3d Iustin Pop
+++++++++++++++++
1194 c71a1a3d Iustin Pop
1195 c71a1a3d Iustin Pop
It is also possible to execute a global search on the all tags defined
1196 c71a1a3d Iustin Pop
in the cluster configuration, via a cluster command::
1197 c71a1a3d Iustin Pop
1198 c71a1a3d Iustin Pop
  gnt-cluster search-tags REGEXP
1199 c71a1a3d Iustin Pop
1200 c71a1a3d Iustin Pop
The parameter expected is a regular expression (see
1201 c71a1a3d Iustin Pop
:manpage:`regex(7)`). This will return all tags that match the search,
1202 c71a1a3d Iustin Pop
together with the object they are defined in (the names being show in a
1203 c71a1a3d Iustin Pop
hierarchical kind of way)::
1204 c71a1a3d Iustin Pop
1205 c71a1a3d Iustin Pop
  node1# gnt-cluster search-tags o
1206 c71a1a3d Iustin Pop
  /cluster foo
1207 c71a1a3d Iustin Pop
  /instances/instance1 owner:bar
1208 c71a1a3d Iustin Pop
1209 c71a1a3d Iustin Pop
1210 c71a1a3d Iustin Pop
Job operations
1211 c71a1a3d Iustin Pop
--------------
1212 c71a1a3d Iustin Pop
1213 c71a1a3d Iustin Pop
The various jobs submitted by the instance/node/cluster commands can be
1214 c71a1a3d Iustin Pop
examined, canceled and archived by various invocations of the
1215 c71a1a3d Iustin Pop
``gnt-job`` command.
1216 c71a1a3d Iustin Pop
1217 c71a1a3d Iustin Pop
First is the job list command::
1218 c71a1a3d Iustin Pop
1219 c71a1a3d Iustin Pop
  node1# gnt-job list
1220 c71a1a3d Iustin Pop
  17771 success INSTANCE_QUERY_DATA
1221 c71a1a3d Iustin Pop
  17773 success CLUSTER_VERIFY_DISKS
1222 c71a1a3d Iustin Pop
  17775 success CLUSTER_REPAIR_DISK_SIZES
1223 c71a1a3d Iustin Pop
  17776 error   CLUSTER_RENAME(cluster.example.com)
1224 c71a1a3d Iustin Pop
  17780 success CLUSTER_REDIST_CONF
1225 c71a1a3d Iustin Pop
  17792 success INSTANCE_REBOOT(instance1.example.com)
1226 c71a1a3d Iustin Pop
1227 c71a1a3d Iustin Pop
More detailed information about a job can be found via the ``info``
1228 c71a1a3d Iustin Pop
command::
1229 c71a1a3d Iustin Pop
1230 c71a1a3d Iustin Pop
  node1# gnt-job info 17776
1231 c71a1a3d Iustin Pop
  Job ID: 17776
1232 c71a1a3d Iustin Pop
    Status: error
1233 c71a1a3d Iustin Pop
    Received:         2009-10-25 23:18:02.180569
1234 c71a1a3d Iustin Pop
    Processing start: 2009-10-25 23:18:02.200335 (delta 0.019766s)
1235 c71a1a3d Iustin Pop
    Processing end:   2009-10-25 23:18:02.279743 (delta 0.079408s)
1236 c71a1a3d Iustin Pop
    Total processing time: 0.099174 seconds
1237 c71a1a3d Iustin Pop
    Opcodes:
1238 c71a1a3d Iustin Pop
      OP_CLUSTER_RENAME
1239 c71a1a3d Iustin Pop
        Status: error
1240 c71a1a3d Iustin Pop
        Processing start: 2009-10-25 23:18:02.200335
1241 c71a1a3d Iustin Pop
        Processing end:   2009-10-25 23:18:02.252282
1242 c71a1a3d Iustin Pop
        Input fields:
1243 c71a1a3d Iustin Pop
          name: cluster.example.com
1244 c71a1a3d Iustin Pop
        Result:
1245 c71a1a3d Iustin Pop
          OpPrereqError
1246 c71a1a3d Iustin Pop
          [Neither the name nor the IP address of the cluster has changed]
1247 c71a1a3d Iustin Pop
        Execution log:
1248 c71a1a3d Iustin Pop
1249 c71a1a3d Iustin Pop
During the execution of a job, it's possible to follow the output of a
1250 c71a1a3d Iustin Pop
job, similar to the log that one get from the ``gnt-`` commands, via the
1251 c71a1a3d Iustin Pop
watch command::
1252 c71a1a3d Iustin Pop
1253 c71a1a3d Iustin Pop
  node1# gnt-instance add --submit โ€ฆ instance1
1254 c71a1a3d Iustin Pop
  JobID: 17818
1255 c71a1a3d Iustin Pop
  node1# gnt-job watch 17818
1256 c71a1a3d Iustin Pop
  Output from job 17818 follows
1257 c71a1a3d Iustin Pop
  -----------------------------
1258 c71a1a3d Iustin Pop
  Mon Oct 26 00:22:48 2009  - INFO: Selected nodes for instance instance1 via iallocator dumb: node1, node2
1259 c71a1a3d Iustin Pop
  Mon Oct 26 00:22:49 2009 * creating instance disks...
1260 c71a1a3d Iustin Pop
  Mon Oct 26 00:22:52 2009 adding instance instance1 to cluster config
1261 c71a1a3d Iustin Pop
  Mon Oct 26 00:22:52 2009  - INFO: Waiting for instance instance1 to sync disks.
1262 c71a1a3d Iustin Pop
  โ€ฆ
1263 e0897adf Michael Hanselmann
  Mon Oct 26 00:23:03 2009 creating os for instance instance1 on node node1
1264 c71a1a3d Iustin Pop
  Mon Oct 26 00:23:03 2009 * running the instance OS create scripts...
1265 c71a1a3d Iustin Pop
  Mon Oct 26 00:23:13 2009 * starting instance...
1266 c71a1a3d Iustin Pop
  node1#
1267 c71a1a3d Iustin Pop
1268 c71a1a3d Iustin Pop
This is useful if you need to follow a job's progress from multiple
1269 c71a1a3d Iustin Pop
terminals.
1270 c71a1a3d Iustin Pop
1271 c71a1a3d Iustin Pop
A job that has not yet started to run can be canceled::
1272 c71a1a3d Iustin Pop
1273 c71a1a3d Iustin Pop
  node1# gnt-job cancel 17810
1274 c71a1a3d Iustin Pop
1275 c71a1a3d Iustin Pop
But not one that has already started execution::
1276 c71a1a3d Iustin Pop
1277 c71a1a3d Iustin Pop
  node1# gnt-job cancel 17805
1278 c71a1a3d Iustin Pop
  Job 17805 is no longer waiting in the queue
1279 c71a1a3d Iustin Pop
1280 c71a1a3d Iustin Pop
There are two queues for jobs: the *current* and the *archive*
1281 c71a1a3d Iustin Pop
queue. Jobs are initially submitted to the current queue, and they stay
1282 c71a1a3d Iustin Pop
in that queue until they have finished execution (either successfully or
1283 c71a1a3d Iustin Pop
not). At that point, they can be moved into the archive queue, and the
1284 c71a1a3d Iustin Pop
ganeti-watcher script will do this automatically after 6 hours. The
1285 c71a1a3d Iustin Pop
ganeti-cleaner script will remove the jobs from the archive directory
1286 c71a1a3d Iustin Pop
after three weeks.
1287 c71a1a3d Iustin Pop
1288 c71a1a3d Iustin Pop
Note that only jobs in the current queue can be viewed via the list and
1289 c71a1a3d Iustin Pop
info commands; Ganeti itself doesn't examine the archive directory. If
1290 c71a1a3d Iustin Pop
you need to see an older job, either move the file manually in the
1291 c71a1a3d Iustin Pop
top-level queue directory, or look at its contents (it's a
1292 c71a1a3d Iustin Pop
JSON-formatted file).
1293 c71a1a3d Iustin Pop
1294 c71a1a3d Iustin Pop
Ganeti tools
1295 c71a1a3d Iustin Pop
------------
1296 c71a1a3d Iustin Pop
1297 c71a1a3d Iustin Pop
Beside the usual ``gnt-`` and ``ganeti-`` commands which are provided
1298 c71a1a3d Iustin Pop
and installed in ``$prefix/sbin`` at install time, there are a couple of
1299 c71a1a3d Iustin Pop
other tools installed which are used seldom but can be helpful in some
1300 c71a1a3d Iustin Pop
cases.
1301 c71a1a3d Iustin Pop
1302 c71a1a3d Iustin Pop
lvmstrap
1303 c71a1a3d Iustin Pop
++++++++
1304 c71a1a3d Iustin Pop
1305 c71a1a3d Iustin Pop
The ``lvmstrap`` tool, introduced in :ref:`configure-lvm-label` section,
1306 c71a1a3d Iustin Pop
has two modes of operation:
1307 c71a1a3d Iustin Pop
1308 c71a1a3d Iustin Pop
- ``diskinfo`` shows the discovered disks on the system and their status
1309 c71a1a3d Iustin Pop
- ``create`` takes all not-in-use disks and creates a volume group out
1310 c71a1a3d Iustin Pop
  of them
1311 c71a1a3d Iustin Pop
1312 c71a1a3d Iustin Pop
.. warning:: The ``create`` argument to this command causes data-loss!
1313 c71a1a3d Iustin Pop
1314 c71a1a3d Iustin Pop
cfgupgrade
1315 c71a1a3d Iustin Pop
++++++++++
1316 c71a1a3d Iustin Pop
1317 c71a1a3d Iustin Pop
The ``cfgupgrade`` tools is used to upgrade between major (and minor)
1318 c71a1a3d Iustin Pop
Ganeti versions. Point-releases are usually transparent for the admin.
1319 c71a1a3d Iustin Pop
1320 c71a1a3d Iustin Pop
More information about the upgrade procedure is listed on the wiki at
1321 c71a1a3d Iustin Pop
http://code.google.com/p/ganeti/wiki/UpgradeNotes.
1322 c71a1a3d Iustin Pop
1323 b5672ea0 Iustin Pop
There is also a script designed to upgrade from Ganeti 1.2 to 2.0,
1324 b5672ea0 Iustin Pop
called ``cfgupgrade12``.
1325 b5672ea0 Iustin Pop
1326 c71a1a3d Iustin Pop
cfgshell
1327 c71a1a3d Iustin Pop
++++++++
1328 c71a1a3d Iustin Pop
1329 c71a1a3d Iustin Pop
.. note:: This command is not actively maintained; make sure you backup
1330 c71a1a3d Iustin Pop
   your configuration before using it
1331 c71a1a3d Iustin Pop
1332 c71a1a3d Iustin Pop
This can be used as an alternative to direct editing of the
1333 c71a1a3d Iustin Pop
main configuration file if Ganeti has a bug and prevents you, for
1334 c71a1a3d Iustin Pop
example, from removing an instance or a node from the configuration
1335 c71a1a3d Iustin Pop
file.
1336 c71a1a3d Iustin Pop
1337 c71a1a3d Iustin Pop
.. _burnin-label:
1338 c71a1a3d Iustin Pop
1339 c71a1a3d Iustin Pop
burnin
1340 c71a1a3d Iustin Pop
++++++
1341 c71a1a3d Iustin Pop
1342 c71a1a3d Iustin Pop
.. warning:: This command will erase existing instances if given as
1343 c71a1a3d Iustin Pop
   arguments!
1344 c71a1a3d Iustin Pop
1345 c71a1a3d Iustin Pop
This tool is used to exercise either the hardware of machines or
1346 c71a1a3d Iustin Pop
alternatively the Ganeti software. It is safe to run on an existing
1347 c71a1a3d Iustin Pop
cluster **as long as you don't pass it existing instance names**.
1348 c71a1a3d Iustin Pop
1349 c71a1a3d Iustin Pop
The command will, by default, execute a comprehensive set of operations
1350 c71a1a3d Iustin Pop
against a list of instances, these being:
1351 c71a1a3d Iustin Pop
1352 c71a1a3d Iustin Pop
- creation
1353 c71a1a3d Iustin Pop
- disk replacement (for redundant instances)
1354 c71a1a3d Iustin Pop
- failover and migration (for redundant instances)
1355 c71a1a3d Iustin Pop
- move (for non-redundant instances)
1356 c71a1a3d Iustin Pop
- disk growth
1357 c71a1a3d Iustin Pop
- add disks, remove disk
1358 c71a1a3d Iustin Pop
- add NICs, remove NICs
1359 c71a1a3d Iustin Pop
- export and then import
1360 c71a1a3d Iustin Pop
- rename
1361 c71a1a3d Iustin Pop
- reboot
1362 c71a1a3d Iustin Pop
- shutdown/startup
1363 c71a1a3d Iustin Pop
- and finally removal of the test instances
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Executing all these operations will test that the hardware performs
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well: the creation, disk replace, disk add and disk growth will exercise
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the storage and network; the migrate command will test the memory of the
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systems. Depending on the passed options, it can also test that the
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instance OS definitions are executing properly the rename, import and
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export operations.
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sanitize-config
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+++++++++++++++
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This tool takes the Ganeti configuration and outputs a "sanitized"
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version, by randomizing or clearing:
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- DRBD secrets and cluster public key (always)
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- host names (optional)
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- IPs (optional)
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- OS names (optional)
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- LV names (optional, only useful for very old clusters which still have
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  instances whose LVs are based on the instance name)
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By default, all optional items are activated except the LV name
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randomization. When passing ``--no-randomization``, which disables the
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optional items (i.e. just the DRBD secrets and cluster public keys are
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randomized), the resulting file can be used as a safety copy of the
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cluster config - while not trivial, the layout of the cluster can be
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recreated from it and if the instance disks have not been lost it
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permits recovery from the loss of all master candidates.
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1393 e0897adf Michael Hanselmann
move-instance
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+++++++++++++
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See :doc:`separate documentation for move-instance <move-instance>`.
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.. TODO: document cluster-merge tool
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Other Ganeti projects
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---------------------
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There are two other Ganeti-related projects that can be useful in a
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Ganeti deployment. These can be downloaded from the project site
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(http://code.google.com/p/ganeti/) and the repositories are also on the
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project git site (http://git.ganeti.org).
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NBMA tools
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++++++++++
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The ``ganeti-nbma`` software is designed to allow instances to live on a
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separate, virtual network from the nodes, and in an environment where
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nodes are not guaranteed to be able to reach each other via multicasting
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or broadcasting. For more information see the README in the source
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archive.
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ganeti-htools
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+++++++++++++
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The ``ganeti-htools`` software consists of a set of tools:
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- ``hail``: an advanced iallocator script compared to Ganeti's builtin
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  one
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- ``hbal``: a tool for rebalancing the cluster, i.e. moving instances
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  around in order to better use the resources on the nodes
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- ``hspace``: a tool for estimating the available capacity of a cluster,
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  so that capacity planning can be done efficiently
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For more information and installation instructions, see the README file
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in the source archive.
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1433 558fd122 Michael Hanselmann
.. vim: set textwidth=72 :
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.. Local Variables:
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.. mode: rst
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.. fill-column: 72
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.. End: