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Our test driver lacks implementation for virConnectGetDomainCapabilities(). Provide one, though a trivial one. Mostly so that something else than VIR_ERR_NO_SUPPORT error is returned. Signed-off-by: Michal Privoznik <mprivozn@redhat.com> Reviewed-by: Ján Tomko <jtomko@redhat.com>
799 lines
25 KiB
ReStructuredText
799 lines
25 KiB
ReStructuredText
.. role:: since
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==============================
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Domain capabilities XML format
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==============================
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.. contents::
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Overview
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--------
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Sometimes, when a new domain is to be created it may come handy to know the
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capabilities of the hypervisor so the correct combination of devices and drivers
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is used. For example, when management application is considering the mode for a
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host device's passthrough there are several options depending not only on host,
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but on hypervisor in question too. If the hypervisor is qemu then it needs to be
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more recent to support VFIO, while legacy KVM is achievable just fine with older
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qemus.
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The main difference between
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`virConnectGetCapabilities <html/libvirt-libvirt-host.html#virConnectGetCapabilities>`__
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and the emulator capabilities API is, the former one aims more on the host
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capabilities (e.g. NUMA topology, security models in effect, etc.) while the
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latter one specializes on the hypervisor capabilities.
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While the `Driver Capabilities <formatcaps.html>`__ provides the host
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capabilities (e.g NUMA topology, security models in effect, etc.), the Domain
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Capabilities provides the hypervisor specific capabilities for Management
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Applications to query and make decisions regarding what to utilize.
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The Domain Capabilities can provide information such as the correct combination
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of devices and drivers that are supported. Knowing which host and hypervisor
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specific options are available or supported would allow the management
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application to choose an appropriate mode for a pass-through host device as well
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as which adapter to utilize.
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Some XML elements may be entirely omitted from the domaincapabilities XML,
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depending on what the libvirt driver has filled in. Applications should only act
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on what is explicitly reported in the domaincapabilities XML. For example, if
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<disk supported='yes'/> is present, you can safely assume the driver supports
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<disk> devices. If <disk supported='no'/> is present, you can safely assume the
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driver does NOT support <disk> devices. If the <disk> block is omitted entirely,
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the driver is not indicating one way or the other whether it supports <disk>
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devices, and applications should not interpret the missing block to mean any
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thing in particular.
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Element and attribute overview
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------------------------------
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A new query interface was added to the virConnect API's to retrieve the XML
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listing of the set of domain capabilities ( :since:`Since 1.2.7` ):
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``virConnectGetDomainCapabilities`` (`API docs <html/libvirt-libvirt-domain.html#virConnectGetDomainCapabilities>`__)
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The root element that emulator capability XML document starts with has name
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``domainCapabilities``. It contains at least four direct child elements:
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::
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<domainCapabilities>
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<path>/usr/bin/qemu-system-x86_64</path>
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<domain>kvm</domain>
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<machine>pc-i440fx-2.1</machine>
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<arch>x86_64</arch>
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...
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</domainCapabilities>
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``path``
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The full path to the emulator binary. Since not every hypervisor has a
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notion of emulator binary this element might be omitted in such drivers.
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``domain``
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Describes the `virtualization type <formatdomain.html#element-and-attribute-overview>`__ (or so
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called domain type).
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``machine``
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The domain's `machine type <formatdomain.html#bios-bootloader>`__. Since not
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every hypervisor has a sense of machine types this element might be omitted
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in such drivers.
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``arch``
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The domain's `architecture <formatdomain.html#bios-bootloader>`__.
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CPU Allocation
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~~~~~~~~~~~~~~
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Before any devices capability occurs, there might be info on domain wide
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capabilities, e.g. virtual CPUs:
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::
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<domainCapabilities>
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...
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<vcpu max='255'/>
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...
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</domainCapabilities>
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``vcpu``
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The maximum number of supported virtual CPUs
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BIOS bootloader
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~~~~~~~~~~~~~~~
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Sometimes users might want to tweak some BIOS knobs or use UEFI. For cases like
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that, `os <formatdomain.html#bios-bootloader>`__ element exposes what values can
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be passed to its children.
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::
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<domainCapabilities>
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...
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<os supported='yes'>
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<enum name='firmware'>
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<value>bios</value>
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<value>efi</value>
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</enum>
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<loader supported='yes'>
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<value>/usr/share/OVMF/OVMF_CODE.fd</value>
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<enum name='type'>
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<value>rom</value>
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<value>pflash</value>
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</enum>
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<enum name='readonly'>
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<value>yes</value>
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<value>no</value>
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</enum>
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<enum name='secure'>
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<value>yes</value>
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<value>no</value>
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</enum>
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</loader>
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</os>
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...
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<domainCapabilities>
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The ``firmware`` enum corresponds to the ``firmware`` attribute of the ``os``
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element in the domain XML. The presence of this enum means libvirt is capable of
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the so-called firmware auto-selection feature. And the listed firmware values
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represent the accepted input in the domain XML. Note that the ``firmware`` enum
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reports only those values for which a firmware "descriptor file" exists on the
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host. Firmware descriptor file is a small JSON document that describes details
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about a given BIOS or UEFI binary on the host, e.g. the firmware binary path,
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its architecture, supported machine types, NVRAM template, etc. This ensures
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that the reported values won't cause a failure on guest boot.
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For the ``loader`` element, the following can occur:
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``value``
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List of known firmware binary paths. Currently this is used only to advertise
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the known location of OVMF binaries for QEMU. OVMF binaries will only be
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listed if they actually exist on host.
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``type``
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Whether the boot loader is a typical BIOS (``rom``) or a UEFI firmware
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(``pflash``). Each ``value`` sub-element under the ``type`` enum represents a
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possible value for the ``type`` attribute for the <loader/> element in the
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domain XML. E.g. the presence of ``pfalsh`` under the ``type`` enum means
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that a domain XML can use UEFI firmware via: <loader/> type="pflash"
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...>/path/to/the/firmware/binary/</loader>.
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``readonly``
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Options for the ``readonly`` attribute of the <loader/> element in the domain
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XML.
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``secure``
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Options for the ``secure`` attribute of the <loader/> element in the domain
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XML. Note that the value ``yes`` is listed only if libvirt detects a firmware
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descriptor file that has path to an OVMF binary that supports Secure boot,
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and lists its architecture and supported machine type.
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CPU configuration
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~~~~~~~~~~~~~~~~~
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The ``cpu`` element exposes options usable for configuring `guest
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CPUs <formatdomain.html#cpu-model-and-topology>`__.
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::
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<domainCapabilities>
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...
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<cpu>
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<mode name='host-passthrough' supported='yes'>
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<enum name='hostPassthroughMigratable'>
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<value>on</value>
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<value>off</value>
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</enum>
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</mode>
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<mode name='maximum' supported='yes'>
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<enum name='maximumMigratable'>
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<value>on</value>
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<value>off</value>
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</enum>
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</mode>
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<mode name='host-model' supported='yes'>
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<model fallback='allow'>Broadwell</model>
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<vendor>Intel</vendor>
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<maxphysaddr mode="passthrough" limit="39"/>
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<feature policy='disable' name='aes'/>
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<feature policy='require' name='vmx'/>
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</mode>
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<mode name='custom' supported='yes'>
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<model usable='no' deprecated='no' vendor='Intel'>Broadwell</model>
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<model usable='yes' deprecated='no' vendor='Intel'>Broadwell-noTSX</model>
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<model usable='no' deprecated='yes' vendor='Intel'>Haswell</model>
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<model usable='no' deprecated='no' vendor='AMD'>EPYC-Milan</model>
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...
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</mode>
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</cpu>
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...
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<domainCapabilities>
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Each CPU mode understood by libvirt is described with a ``mode`` element which
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tells whether the particular mode is supported and provides (when applicable)
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more details about it:
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``host-passthrough``
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The ``hostPassthroughMigratable`` enum shows possible values of the
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``migratable`` attribute for the <cpu> element with
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``mode='host-passthrough'`` in the domain XML.
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``host-model``
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If ``host-model`` is supported by the hypervisor, the ``mode`` describes the
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guest CPU which will be used when starting a domain with ``host-model`` CPU.
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The hypervisor specifics (such as unsupported CPU models or features, machine
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type, etc.) may be accounted for in this guest CPU specification and thus the
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CPU can be different from the one shown in host capabilities XML. This is
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indicated by the ``fallback`` attribute of the ``model`` sub element:
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``allow`` means not all specifics were accounted for and thus the CPU a guest
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will see may be different; ``forbid`` indicates that the CPU a guest will see
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should match this CPU definition. The optional ``maxphysaddr`` element
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reports physical address size of the host CPU if this value is available and
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applicable for the requested domain type. This is useful for computing
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baseline CPU definition which should be compatible with several hosts.
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``custom``
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The ``mode`` element contains a list of supported CPU models, each described
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by a dedicated ``model`` element. The ``usable`` attribute specifies whether
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the model can be used directly on the host. A special value ``unknown``
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indicates libvirt does not have enough information to provide the usability
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data. When ``usable='no'`` the corresponding model cannot be used without
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disabling some features that the CPU of such model is expected to have. The
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list of features blocking usability of a particular CPU model is returned
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as disabled features in the result of ``virConnectBaselineHypervisorCPU``
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API (or ``virsh hypervisor-cpu-baseline``) when called on a CPU definition
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using the CPU model and no additional feature elements. Models marked as
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usable (``usable='yes'``) can be safely used in domain XMLs with
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``check='none'`` as the hypervisor guarantees the model can be used on the
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current host and additional checks done by libvirt are redundant. In fact,
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disabling libvirt checks via ``check='none'`` for such models is recommended
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to avoid needless issues with starting domains when libvirt's definition of
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a particular model differs from hypervisor's definition. The
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``deprecated`` attribute reflects the hypervisor's policy on usage of this
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model :since:`(since 7.1.0)`. The ``vendor`` attribute :since:`(since 8.9.0)`
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contains the vendor of the CPU model for users who want to use CPU models
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with specific vendors only. CPU models with undefined vendor will be listed
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with ``vendor='unkwnown'``.
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I/O Threads
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~~~~~~~~~~~
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The ``iothread`` elements indicates whether or not `I/O
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threads <formatdomain.html#iothreads-allocation>`__ are supported.
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::
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<domainCapabilities>
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...
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<iothread supported='yes'/>
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...
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<domainCapabilities>
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Memory Backing
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~~~~~~~~~~~~~~
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The ``memory backing`` element indicates whether or not `memory
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backing <formatdomain.html#memory-backing>`__ is supported.
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::
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<domainCapabilities>
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...
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<memoryBacking supported='yes'>
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<enum name='sourceType'>
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<value>anonymous</value>
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<value>file</value>
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<value>memfd</value>
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</enum>
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</memoryBacking>
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...
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<domainCapabilities>
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``sourceType``
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Options for the ``type`` attribute of the <memoryBacking><source> element.
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Devices
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~~~~~~~
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Another set of XML elements describe the supported devices and their
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capabilities. All devices occur as children of the main ``devices`` element.
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::
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<domainCapabilities>
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...
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<devices>
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<disk supported='yes'>
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<enum name='diskDevice'>
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<value>disk</value>
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<value>cdrom</value>
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<value>floppy</value>
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<value>lun</value>
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</enum>
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...
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</disk>
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<hostdev supported='no'/>
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</devices>
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</domainCapabilities>
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Reported capabilities are expressed as an enumerated list of available options
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for each of the element or attribute. For example, the <disk/> element has an
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attribute ``device`` which can support the values ``disk``, ``cdrom``,
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``floppy``, or ``lun``.
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Hard drives, floppy disks, CDROMs
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^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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Disk capabilities are exposed under the ``disk`` element. For instance:
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::
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<domainCapabilities>
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...
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<devices>
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<disk supported='yes'>
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<enum name='diskDevice'>
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<value>disk</value>
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<value>cdrom</value>
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<value>floppy</value>
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<value>lun</value>
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</enum>
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<enum name='bus'>
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<value>ide</value>
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<value>fdc</value>
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<value>scsi</value>
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<value>virtio</value>
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<value>xen</value>
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<value>usb</value>
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<value>sata</value>
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<value>sd</value>
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</enum>
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</disk>
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...
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</devices>
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</domainCapabilities>
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``diskDevice``
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Options for the ``device`` attribute of the <disk/> element.
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``bus``
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Options for the ``bus`` attribute of the <target/> element for a <disk/>.
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Graphical framebuffers
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^^^^^^^^^^^^^^^^^^^^^^
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Graphics device capabilities are exposed under the ``graphics`` element. For
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instance:
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::
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<domainCapabilities>
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...
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<devices>
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<graphics supported='yes'>
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<enum name='type'>
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<value>sdl</value>
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<value>vnc</value>
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<value>spice</value>
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</enum>
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</graphics>
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...
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</devices>
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</domainCapabilities>
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``type``
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Options for the ``type`` attribute of the <graphics/> element.
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Video device
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^^^^^^^^^^^^
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Video device capabilities are exposed under the ``video`` element. For instance:
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::
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<domainCapabilities>
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...
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<devices>
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<video supported='yes'>
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<enum name='modelType'>
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<value>vga</value>
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<value>cirrus</value>
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<value>vmvga</value>
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<value>qxl</value>
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<value>virtio</value>
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</enum>
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</video>
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...
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</devices>
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</domainCapabilities>
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``modelType``
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Options for the ``type`` attribute of the <video><model> element.
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Host device assignment
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^^^^^^^^^^^^^^^^^^^^^^
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Some host devices can be passed through to a guest (e.g. USB, PCI and SCSI).
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Well, only if the following is enabled:
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::
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<domainCapabilities>
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...
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<devices>
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<hostdev supported='yes'>
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<enum name='mode'>
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<value>subsystem</value>
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<value>capabilities</value>
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</enum>
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<enum name='startupPolicy'>
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<value>default</value>
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<value>mandatory</value>
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<value>requisite</value>
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<value>optional</value>
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</enum>
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<enum name='subsysType'>
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<value>usb</value>
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<value>pci</value>
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<value>scsi</value>
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</enum>
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<enum name='capsType'>
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<value>storage</value>
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<value>misc</value>
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<value>net</value>
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</enum>
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<enum name='pciBackend'>
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<value>default</value>
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<value>kvm</value>
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<value>vfio</value>
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<value>xen</value>
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</enum>
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</hostdev>
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</devices>
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</domainCapabilities>
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``mode``
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Options for the ``mode`` attribute of the <hostdev/> element.
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``startupPolicy``
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Options for the ``startupPolicy`` attribute of the <hostdev/> element.
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``subsysType``
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Options for the ``type`` attribute of the <hostdev/> element in case of
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``mode="subsystem"``.
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``capsType``
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Options for the ``type`` attribute of the <hostdev/> element in case of
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``mode="capabilities"``.
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``pciBackend``
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Options for the ``name`` attribute of the <driver/> element.
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RNG device
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^^^^^^^^^^
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RNG device capabilities are exposed under the ``rng`` element. For instance:
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::
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<domainCapabilities>
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...
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<devices>
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<rng supported='yes'>
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<enum name='model'>
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<value>virtio</value>
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<value>virtio-transitional</value>
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<value>virtio-non-transitional</value>
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</enum>
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<enum name='backendModel'>
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<value>random</value>
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<value>egd</value>
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<value>builtin</value>
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</enum>
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</rng>
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...
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</devices>
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</domainCapabilities>
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``model``
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Options for the ``model`` attribute of the <rng> element.
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``backendModel``
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Options for the ``model`` attribute of the <rng><backend> element.
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Filesystem device
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|
^^^^^^^^^^^^^^^^^
|
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|
Filesystem device capabilities are exposed under the ``filesystem`` element. For
|
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instance:
|
|
|
|
::
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<domainCapabilities>
|
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...
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<devices>
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<filesystem supported='yes'>
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<enum name='driverType'>
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<value>default</value>
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<value>path</value>
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<value>handle</value>
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<value>virtiofs</value>
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</enum>
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</filesystem>
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...
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</devices>
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</domainCapabilities>
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``driverType``
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Options for the ``type`` attribute of the <filesystem><driver> element.
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|
TPM device
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|
^^^^^^^^^^
|
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|
TPM device capabilities are exposed under the ``tpm`` element. For instance:
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|
::
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<domainCapabilities>
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...
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<devices>
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<tpm supported='yes'>
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<enum name='model'>
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<value>tpm-tis</value>
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<value>tpm-crb</value>
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</enum>
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<enum name='backendModel'>
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<value>passthrough</value>
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<value>emulator</value>
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</enum>
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<enum name='backendVersion'>
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<value>1.2</value>
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<value>2.0</value>
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</enum>
|
|
</tpm>
|
|
...
|
|
</devices>
|
|
</domainCapabilities>
|
|
|
|
``model``
|
|
Options for the ``model`` attribute of the ``<tpm/>`` element.
|
|
``backendModel``
|
|
Options for the ``type`` attribute of the ``<tpm><backend/>`` element.
|
|
``backendVersion``
|
|
Options for the ``version`` attribute of the ``<tpm><backend/>`` element.
|
|
|
|
USB redirect device
|
|
^^^^^^^^^^^^^^^^^^^
|
|
|
|
USB redirdev device capabilities are exposed under the ``redirdev`` element. For instance:
|
|
|
|
::
|
|
|
|
<domainCapabilities>
|
|
...
|
|
<devices>
|
|
<redirdev supported='yes'>
|
|
<enum name='bus'>
|
|
<value>usb</value>
|
|
</enum>
|
|
</redirdev>
|
|
...
|
|
</devices>
|
|
</domainCapabilities>
|
|
|
|
``bus``
|
|
Options for the ``bus`` attribute of the ``<redirdev/>`` element.
|
|
|
|
Channel device
|
|
^^^^^^^^^^^^^^
|
|
|
|
Channel device capabilities are exposed under the ``channel`` element. For instance:
|
|
|
|
::
|
|
|
|
<domainCapabilities>
|
|
...
|
|
<devices>
|
|
<channel supported='yes'>
|
|
<enum name='type'>
|
|
<value>pty</value>
|
|
<value>unix</value>
|
|
<value>spicevmc</value>
|
|
</enum>
|
|
</channel
|
|
...
|
|
</devices>
|
|
</domainCapabilities>
|
|
|
|
``type``
|
|
Options for the ``type`` attribute of the ``<channel/>`` element.
|
|
|
|
Crypto device
|
|
^^^^^^^^^^^^^^
|
|
|
|
Crypto device capabilities are exposed under the ``crypto`` element. For instance:
|
|
|
|
::
|
|
|
|
<domainCapabilities>
|
|
...
|
|
<devices>
|
|
<crypto supported='yes'>
|
|
<enum name='model'>
|
|
<value>virtio</value>
|
|
</enum>
|
|
<enum name='type'>
|
|
<value>qemu</value>
|
|
</enum>
|
|
<enum name='backendModel'>
|
|
<value>builtin</value>
|
|
<value>lkcf</value>
|
|
</enum>
|
|
</crypto>
|
|
...
|
|
</devices>
|
|
</domainCapabilities>
|
|
|
|
``model``
|
|
Options for the ``model`` attribute of the ``<crypto/>`` element.
|
|
``type``
|
|
Options for the ``type`` attribute of the ``<crypto/>`` element.
|
|
``backendModel``
|
|
Options for the ``backendModel`` attribute of the ``<crypto><backend/>`` element.
|
|
|
|
Features
|
|
~~~~~~~~
|
|
|
|
One more set of XML elements describe the supported features and their
|
|
capabilities. All features occur as children of the main ``features`` element.
|
|
|
|
::
|
|
|
|
<domainCapabilities>
|
|
...
|
|
<features>
|
|
<gic supported='yes'>
|
|
<enum name='version'>
|
|
<value>2</value>
|
|
<value>3</value>
|
|
</enum>
|
|
</gic>
|
|
<vmcoreinfo supported='yes'/>
|
|
<genid supported='yes'/>
|
|
<backingStoreInput supported='yes'/>
|
|
<backup supported='yes'/>
|
|
<async-teardown supported='yes'/>
|
|
<sev>
|
|
<cbitpos>47</cbitpos>
|
|
<reduced-phys-bits>1</reduced-phys-bits>
|
|
</sev>
|
|
<sgx supported='yes'>
|
|
<flc>no</flc>
|
|
<sgx1>yes</sgx1>
|
|
<sgx2>no</sgx2>
|
|
<section_size unit='KiB'>524288</section_size>
|
|
<sections>
|
|
<section node='0' size='262144' unit='KiB'/>
|
|
<section node='1' size='262144' unit='KiB'/>
|
|
</sections>
|
|
</sgx>
|
|
<hyperv supported='yes'>
|
|
<enum name='features'>
|
|
<value>relaxed</value>
|
|
<value>vapic</value>
|
|
</enum>
|
|
</hyperv>
|
|
</features>
|
|
</domainCapabilities>
|
|
|
|
Reported capabilities are expressed as an enumerated list of possible values for
|
|
each of the elements or attributes. For example, the ``gic`` element has an
|
|
attribute ``version`` which can support the values ``2`` or ``3``.
|
|
|
|
For information about the purpose of each feature, see the `relevant
|
|
section <formatdomain.html#hypervisor-features>`__ in the domain XML documentation.
|
|
|
|
GIC capabilities
|
|
^^^^^^^^^^^^^^^^
|
|
|
|
GIC capabilities are exposed under the ``gic`` element.
|
|
|
|
``version``
|
|
Options for the ``version`` attribute of the ``gic`` element.
|
|
|
|
vmcoreinfo
|
|
^^^^^^^^^^
|
|
|
|
Reports whether the vmcoreinfo feature can be enabled.
|
|
|
|
genid
|
|
^^^^^
|
|
|
|
Reports whether the genid feature can be used by the domain.
|
|
|
|
backingStoreInput
|
|
^^^^^^^^^^^^^^^^^
|
|
|
|
Reports whether the hypervisor will obey the <backingStore> elements configured
|
|
for a <disk> when booting the guest, hotplugging the disk to a running guest, or
|
|
similar. :since:`(Since 5.10)`
|
|
|
|
backup
|
|
^^^^^^
|
|
|
|
Reports whether the hypervisor supports the backup, checkpoint, and related
|
|
features. (``virDomainBackupBegin``, ``virDomainCheckpointCreateXML`` etc). The
|
|
presence of the ``backup`` element even if ``supported='no'`` implies that the
|
|
``VIR_DOMAIN_UNDEFINE_CHECKPOINTS_METADATA`` flag for ``virDomainUndefine`` is
|
|
supported.
|
|
|
|
async-teardown
|
|
^^^^^^^^^^^^^^
|
|
|
|
Reports whether the asynchronous teardown feature can be enabled.
|
|
|
|
s390-pv capability
|
|
^^^^^^^^^^^^^^^^^^
|
|
|
|
Reports whether the hypervisor supports the Protected Virtualization. In order
|
|
to use Protected Virtualization with libvirt have a look at the `launchSecurity
|
|
element in the domain XML <formatdomain.html#launch-security>`__. For more
|
|
details on the Protected Virtualization feature please see `Protected
|
|
Virtualization on s390 <kbase/s390_protected_virt.html>`__.
|
|
|
|
SEV capabilities
|
|
^^^^^^^^^^^^^^^^
|
|
|
|
AMD Secure Encrypted Virtualization (SEV) capabilities are exposed under the
|
|
``sev`` element. SEV is an extension to the AMD-V architecture which supports
|
|
running virtual machines (VMs) under the control of a hypervisor. When
|
|
supported, guest owner can create a VM whose memory contents will be
|
|
transparently encrypted with a key unique to that VM.
|
|
|
|
For more details on the SEV feature, please follow resources in the AMD
|
|
developer's document store. In order to use SEV with libvirt have a look at `SEV
|
|
in domain XML <formatdomain.html#launch-security>`__
|
|
|
|
``cbitpos``
|
|
When memory encryption is enabled, one of the physical address bits (aka the
|
|
C-bit) is utilized to mark if a memory page is protected. The C-bit position
|
|
is Hypervisor dependent.
|
|
``reducedPhysBits``
|
|
When memory encryption is enabled, we lose certain bits in physical address
|
|
space. The number of bits we lose is hypervisor dependent.
|
|
``maxGuests``
|
|
The maximum number of SEV guests that can be launched on the host. This value
|
|
may be configurable in the firmware for some hosts.
|
|
``maxESGuests``
|
|
The maximum number of SEV-ES guests that can be launched on the host. This
|
|
value may be configurable in the firmware for some hosts.
|
|
|
|
SGX capabilities
|
|
^^^^^^^^^^^^^^^^
|
|
|
|
Intel Software Guard Extensions (Intel SGX) capabilities are exposed under the
|
|
``sgx`` element.
|
|
|
|
Intel SGX helps protect data in use via unique application isolation technology.
|
|
Protect selected code and data from modification using hardened enclaves with
|
|
Intel SGX.
|
|
|
|
For more details on the SGX feature, please follow resources in the SGX developer's
|
|
document store. In order to use SGX with libvirt have a look at `SGX in domain XML
|
|
<formatdomain.html#memory-devices>`__
|
|
|
|
``flc``
|
|
FLC (Flexible Launch Control), not strictly part of SGX2, but was not part of
|
|
original SGX hardware either.
|
|
|
|
``sgx1``
|
|
the sgx version 1.
|
|
|
|
``sgx2``
|
|
The sgx version 2.
|
|
|
|
``section_size``
|
|
The size of the SGX enclave page cache (called EPC).
|
|
|
|
``sections``
|
|
The sections of the SGX enclave page cache (called EPC).
|
|
|
|
|
|
Hyper-V Enlightenments
|
|
^^^^^^^^^^^^^^^^^^^^^^
|
|
|
|
Report which features improving behavior of guests running Microsoft Windows
|
|
are supported. The ``features`` enum corresponds to the ``<hyperv/>`` element
|
|
(well, its children) as documented in `Hypervisor features
|
|
<formatdomain.html#hypervisor-features>`__.
|
|
|
|
Please note that depending on the QEMU version some capabilities might be
|
|
missing even though QEMU does support them. This is because prior to QEMU-6.1.0
|
|
not all features were reported by QEMU.
|