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267 lines
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ReStructuredText
267 lines
12 KiB
ReStructuredText
========================
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The libvirt API concepts
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========================
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This page describes the main principles and architecture choices behind
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the definition of the libvirt API:
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.. contents::
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Objects Exposed
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---------------
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As defined in the `goals section <goals.html>`__, the libvirt API is
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designed to expose all the resources needed to manage the virtualization
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support of recent operating systems. The first object manipulated
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through the API is the ``virConnectPtr``, which represents the
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connection to a hypervisor. Any application using libvirt is likely to
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start using the API by calling one of `the virConnectOpen
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functions <html/libvirt-libvirt-host.html#virConnectOpen>`__. You will
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note that those functions take a name argument which is actually a
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`connection URI <uri.html>`__ to select the right hypervisor to open. A
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URI is needed to allow remote connections and also select between
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different possible hypervisors. For example, on a Linux system it may be
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possible to use both KVM and LinuxContainers on the same node. A NULL
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name will default to a preselected hypervisor, but it's probably not a
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wise thing to do in most cases. See the `connection URI <uri.html>`__
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page for a full descriptions of the values allowed.
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OnDevice the application obtains a
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`virConnectPtr <html/libvirt-libvirt-host.html#virConnectPtr>`__
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connection to the hypervisor it can then use it to manage the
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hypervisor's available domains and related virtualization resources,
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such as storage and networking. All those are exposed as first class
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objects and connected to the hypervisor connection (and the node or
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cluster where it is available).
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|first class objects exposed by the API|
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The figure above shows the five main objects exported by the API:
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- `virConnectPtr <html/libvirt-libvirt-host.html#virConnectPtr>`__
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Represents the connection to a hypervisor. Use one of the
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`virConnectOpen <html/libvirt-libvirt-host.html#virConnectOpen>`__
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functions to obtain connection to the hypervisor which is then used
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as a parameter to other connection API's.
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- `virDomainPtr <html/libvirt-libvirt-domain.html#virDomainPtr>`__
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Represents one domain either active or defined (i.e. existing as
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permanent config file and storage but not currently running on that
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node). The function
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`virConnectListAllDomains <html/libvirt-libvirt-domain.html#virConnectListAllDomains>`__
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lists all the domains for the hypervisor.
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- `virNetworkPtr <html/libvirt-libvirt-network.html#virNetworkPtr>`__
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Represents one network either active or defined (i.e. existing as
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permanent config file and storage but not currently activated). The
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function
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`virConnectListAllNetworks <html/libvirt-libvirt-network.html#virConnectListAllNetworks>`__
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lists all the virtualization networks for the hypervisor.
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- `virStorageVolPtr <html/libvirt-libvirt-storage.html#virStorageVolPtr>`__
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Represents one storage volume generally used as a block device
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available to one of the domains. The function
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`virStorageVolLookupByPath <html/libvirt-libvirt-storage.html#virStorageVolLookupByPath>`__
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finds the storage volume object based on its path on the node.
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- `virStoragePoolPtr <html/libvirt-libvirt-storage.html#virStoragePoolPtr>`__
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Represents a storage pool, which is a logical area used to allocate
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and store storage volumes. The function
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`virConnectListAllStoragePools <html/libvirt-libvirt-storage.html#virConnectListAllStoragePools>`__
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lists all of the virtualization storage pools on the hypervisor. The
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function
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`virStoragePoolLookupByVolume <html/libvirt-libvirt-storage.html#virStoragePoolLookupByVolume>`__
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finds the storage pool containing a given storage volume.
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Most objects manipulated by the library can also be represented using
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XML descriptions. This is used primarily to create those object, but is
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also helpful to modify or save their description back.
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Domains, networks, and storage pools can be either ``active`` i.e.
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either running or available for immediate use, or ``defined`` in which
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case they are inactive but there is a permanent definition available in
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the system for them. Based on this they can be activated dynamically in
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order to be used.
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Most objects can also be named in various ways:
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- ``name``
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A user friendly identifier but whose uniqueness cannot be guaranteed
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between two nodes.
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- ``ID``
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A runtime unique identifier provided by the hypervisor for one given
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activation of the object; however, it becomes invalid once the
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resource is deactivated.
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- ``UUID``
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A 16 byte unique identifier as defined in `RFC
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4122 <https://www.ietf.org/rfc/rfc4122.txt>`__, which is guaranteed
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to be unique for long term usage and across a set of nodes.
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Functions and Naming Conventions
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--------------------------------
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The naming of the functions present in the library is usually composed
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by a prefix describing the object associated to the function and a verb
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describing the action on that object.
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For each first class object you will find APIs for the following
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actions:
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- **Lookup** [...LookupBy...]
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Used to perform lookups on objects by some type of identifier, such
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as:
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- `virDomainLookupByID <html/libvirt-libvirt-domain.html#virDomainLookupByID>`__
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- `virDomainLookupByName <html/libvirt-libvirt-domain.html#virDomainLookupByName>`__
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- `virDomainLookupByUUID <html/libvirt-libvirt-domain.html#virDomainLookupByUUID>`__
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- `virDomainLookupByUUIDString <html/libvirt-libvirt-domain.html#virDomainLookupByUUIDString>`__
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- **Enumeration** [virConnectList..., virConnectNumOf...]
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Used to enumerate a set of object available to a given hypervisor
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connection such as:
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- `virConnectListDomains <html/libvirt-libvirt-domain.html#virConnectListDomains>`__
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- `virConnectNumOfDomains <html/libvirt-libvirt-domain.html#virConnectNumOfDomains>`__
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- `virConnectListNetworks <html/libvirt-libvirt-network.html#virConnectListNetworks>`__
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- `virConnectListStoragePools <html/libvirt-libvirt-storage.html#virConnectListStoragePools>`__
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- **Description** [...GetInfo]
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Generic accessor providing a set of generic information about an
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object, such as:
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- `virNodeGetInfo <html/libvirt-libvirt-host.html#virNodeGetInfo>`__
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- `virDomainGetInfo <html/libvirt-libvirt-domain.html#virDomainGetInfo>`__
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- `virStoragePoolGetInfo <html/libvirt-libvirt-storage.html#virStoragePoolGetInfo>`__
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- `virStorageVolGetInfo <html/libvirt-libvirt-storage.html#virStorageVolGetInfo>`__
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- **Accessors** [...Get..., ...Set...]
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Specific accessors used to query or modify data for the given object,
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such as:
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- `virConnectGetType <html/libvirt-libvirt-host.html#virConnectGetType>`__
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- `virDomainGetMaxMemory <html/libvirt-libvirt-domain.html#virDomainGetMaxMemory>`__
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- `virDomainSetMemory <html/libvirt-libvirt-domain.html#virDomainSetMemory>`__
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- `virDomainGetVcpus <html/libvirt-libvirt-domain.html#virDomainGetVcpus>`__
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- `virStoragePoolSetAutostart <html/libvirt-libvirt-storage.html#virStoragePoolSetAutostart>`__
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- `virNetworkGetBridgeName <html/libvirt-libvirt-network.html#virNetworkGetBridgeName>`__
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- **Creation** [...Create, ...CreateXML]
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Used to create and start objects. The ...CreateXML APIs will create
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the object based on an XML description, while the ...Create APIs will
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create the object based on existing object pointer, such as:
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- `virDomainCreate <html/libvirt-libvirt-domain.html#virDomainCreate>`__
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- `virDomainCreateXML <html/libvirt-libvirt-domain.html#virDomainCreateXML>`__
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- `virNetworkCreate <html/libvirt-libvirt-network.html#virNetworkCreate>`__
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- `virNetworkCreateXML <html/libvirt-libvirt-network.html#virNetworkCreateXML>`__
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- **Destruction** [...Destroy]
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Used to shutdown or deactivate and destroy objects, such as:
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- `virDomainDestroy <html/libvirt-libvirt-domain.html#virDomainDestroy>`__
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- `virNetworkDestroy <html/libvirt-libvirt-network.html#virNetworkDestroy>`__
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- `virStoragePoolDestroy <html/libvirt-libvirt-storage.html#virStoragePoolDestroy>`__
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Note: functions returning vir*Ptr (like the virDomainLookup functions)
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allocate memory which needs to be freed by the caller by the
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corresponding vir*Free function (e.g. virDomainFree for a virDomainPtr
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object).
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For more in-depth details of the storage related APIs see `the storage
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management page <storage.html>`__.
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The libvirt Drivers
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-------------------
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Drivers are the basic building block for libvirt functionality to
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support the capability to handle specific hypervisor driver calls.
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Drivers are discovered and registered during connection processing as
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part of the
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`virInitialize <html/libvirt-libvirt-host.html#virInitialize>`__
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API. Each driver has a registration API which loads up the driver
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specific function references for the libvirt APIs to call. The following
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is a simplistic view of the hypervisor driver mechanism. Consider the
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stacked list of drivers as a series of modules that can be plugged into
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the architecture depending on how libvirt is configured to be built.
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|The libvirt driver architecture|
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The driver architecture is also used to support other virtualization
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components such as storage, storage pools, host device, networking,
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network interfaces, and network filters.
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See the `libvirt drivers <drivers.html>`__ page for more information on
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hypervisor and storage specific drivers.
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Not all drivers support every virtualization function possible. The
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`libvirt API support matrix <hvsupport.html>`__ lists the various
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functions and support found in each driver by the version support was
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added into libvirt.
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Daemon and Remote Access
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------------------------
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Access to libvirt drivers is primarily handled by the libvirtd daemon
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through the `remote <remote.html>`__ driver via an
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`RPC <kbase/internals/rpc.html>`__. Some hypervisors do support client-side
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connections and responses, such as Test, OpenVZ, VMware, VirtualBox
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(vbox), ESX, Hyper-V, Xen, and Virtuozzo. The libvirtd daemon service is
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started on the host at system boot time and can also be restarted at any
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time by a properly privileged user, such as root. The libvirtd daemon
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uses the same libvirt API
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`virInitialize <html/libvirt-libvirt-host.html#virInitialize>`__
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sequence as applications for client-side driver registrations, but then
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extends the registered driver list to encompass all known drivers
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supported for all driver types supported on the host.
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The libvirt client `applications <apps.html>`__ use a `URI <uri.html>`__
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to obtain the ``virConnectPtr``. The ``virConnectPtr`` keeps track of
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the driver connection plus a variety of other connections (network,
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interface, storage, etc.). The ``virConnectPtr`` is then used as a
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parameter to other virtualization functions
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(see `Functions and Naming Conventions`_).
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Depending upon the driver being used, calls will be routed through the remote
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driver to the libvirtd daemon. The daemon will reference the connection
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specific driver in order to retrieve the requested information and then
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pass back status and/or data through the connection back to the
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application. The application can then decide what to do with that data,
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such as display, write log data, etc. `Migration <migration.html>`__ is
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an example of many facets of the architecture in use.
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|The libvirt daemon and remote architecture|
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The key takeaway from the above diagram is that there is a remote driver
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which handles transactions for a majority of the drivers. The libvirtd
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daemon running on the host will receive transaction requests from the
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remote driver and will then query the hypervisor driver as specified in
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the ``virConnectPtr`` in order to fetch the data. The data will then be
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returned through the remote driver to the client application for
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processing.
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If you are interested in contributing to libvirt, read the
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`FAQ <https://wiki.libvirt.org/page/FAQ>`__ and
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`hacking <hacking.html>`__ guidelines to gain an understanding of basic
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rules and guidelines. In order to add new API functionality follow the
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instructions regarding `implementing a new API in
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libvirt <api_extension.html>`__.
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.. |first class objects exposed by the API| image:: images/libvirt-object-model.png
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.. |The libvirt driver architecture| image:: images/libvirt-driver-arch.png
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.. |The libvirt daemon and remote architecture| image:: images/libvirt-daemon-arch.png
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