qapi-schema.json 162.7 KB
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# -*- Mode: Python -*-
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##
# = Introduction
#
# This document describes all commands currently supported by QMP.
#
# Most of the time their usage is exactly the same as in the user Monitor, this
# means that any other document which also describe commands (the manpage,
# QEMU's manual, etc) can and should be consulted.
#
# QMP has two types of commands: regular and query commands. Regular commands
# usually change the Virtual Machine's state someway, while query commands just
# return information. The sections below are divided accordingly.
#
# It's important to observe that all communication examples are formatted in
# a reader-friendly way, so that they're easier to understand. However, in real
# protocol usage, they're emitted as a single line.
#
# Also, the following notation is used to denote data flow:
#
# Example:
#
# | -> data issued by the Client
# | <- Server data response
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#
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# Please, refer to the QMP specification (docs/qmp-spec.txt) for
# detailed information on the Server command and response formats.
#
# = Stability Considerations
#
# The current QMP command set (described in this file) may be useful for a
# number of use cases, however it's limited and several commands have bad
# defined semantics, specially with regard to command completion.
#
# These problems are going to be solved incrementally in the next QEMU releases
# and we're going to establish a deprecation policy for badly defined commands.
#
# If you're planning to adopt QMP, please observe the following:
#
#     1. The deprecation policy will take effect and be documented soon, please
#        check the documentation of each used command as soon as a new release of
#        QEMU is available
#
#     2. DO NOT rely on anything which is not explicit documented
#
#     3. Errors, in special, are not documented. Applications should NOT check
#        for specific errors classes or data (it's strongly recommended to only
#        check for the "error" key)
#
##
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{ 'pragma': { 'doc-required': true } }

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# Whitelists to permit QAPI rule violations; think twice before you
# add to them!
{ 'pragma': {
    # Commands allowed to return a non-dictionary:
    'returns-whitelist': [
        'human-monitor-command',
        'qom-get',
        'query-migrate-cache-size',
        'query-tpm-models',
        'query-tpm-types',
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        'ringbuf-read' ],
    'name-case-whitelist': [
        'ACPISlotType',         # DIMM, visible through query-acpi-ospm-status
        'CpuInfoMIPS',          # PC, visible through query-cpu
        'CpuInfoTricore',       # PC, visible through query-cpu
        'QapiErrorClass',       # all members, visible through errors
        'UuidInfo',             # UUID, visible through query-uuid
        'X86CPURegister32',     # all members, visible indirectly through qom-get
        'q_obj_CpuInfo-base'    # CPU, visible through query-cpu
    ] } }
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# QAPI common definitions
{ 'include': 'qapi/common.json' }
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# QAPI crypto definitions
{ 'include': 'qapi/crypto.json' }

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# QAPI block definitions
{ 'include': 'qapi/block.json' }

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# QAPI event definitions
{ 'include': 'qapi/event.json' }

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# Tracing commands
{ 'include': 'qapi/trace.json' }

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# QAPI introspection
{ 'include': 'qapi/introspect.json' }

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##
# = QMP commands
##

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##
# @qmp_capabilities:
#
# Enable QMP capabilities.
#
# Arguments: None.
#
# Example:
#
# -> { "execute": "qmp_capabilities" }
# <- { "return": {} }
#
# Notes: This command is valid exactly when first connecting: it must be
# issued before any other command will be accepted, and will fail once the
# monitor is accepting other commands. (see qemu docs/qmp-spec.txt)
#
# Since: 0.13
#
##
{ 'command': 'qmp_capabilities' }

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##
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# @LostTickPolicy:
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#
# Policy for handling lost ticks in timer devices.
#
# @discard: throw away the missed tick(s) and continue with future injection
#           normally.  Guest time may be delayed, unless the OS has explicit
#           handling of lost ticks
#
# @delay: continue to deliver ticks at the normal rate.  Guest time will be
#         delayed due to the late tick
#
# @merge: merge the missed tick(s) into one tick and inject.  Guest time
#         may be delayed, depending on how the OS reacts to the merging
#         of ticks
#
# @slew: deliver ticks at a higher rate to catch up with the missed tick. The
#        guest time should not be delayed once catchup is complete.
#
# Since: 2.0
##
{ 'enum': 'LostTickPolicy',
  'data': ['discard', 'delay', 'merge', 'slew' ] }

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##
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# @add_client:
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#
# Allow client connections for VNC, Spice and socket based
# character devices to be passed in to QEMU via SCM_RIGHTS.
#
# @protocol: protocol name. Valid names are "vnc", "spice" or the
#            name of a character device (eg. from -chardev id=XXXX)
#
# @fdname: file descriptor name previously passed via 'getfd' command
#
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# @skipauth: whether to skip authentication. Only applies
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#            to "vnc" and "spice" protocols
#
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# @tls: whether to perform TLS. Only applies to the "spice"
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#       protocol
#
# Returns: nothing on success.
#
# Since: 0.14.0
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#
# Example:
#
# -> { "execute": "add_client", "arguments": { "protocol": "vnc",
#                                              "fdname": "myclient" } }
# <- { "return": {} }
#
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##
{ 'command': 'add_client',
  'data': { 'protocol': 'str', 'fdname': 'str', '*skipauth': 'bool',
            '*tls': 'bool' } }

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##
# @NameInfo:
#
# Guest name information.
#
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# @name: The name of the guest
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#
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# Since: 0.14.0
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##
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{ 'struct': 'NameInfo', 'data': {'*name': 'str'} }
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##
# @query-name:
#
# Return the name information of a guest.
#
# Returns: @NameInfo of the guest
#
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# Since: 0.14.0
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#
# Example:
#
# -> { "execute": "query-name" }
# <- { "return": { "name": "qemu-name" } }
#
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##
{ 'command': 'query-name', 'returns': 'NameInfo' }
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##
# @KvmInfo:
#
# Information about support for KVM acceleration
#
# @enabled: true if KVM acceleration is active
#
# @present: true if KVM acceleration is built into this executable
#
# Since: 0.14.0
##
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{ 'struct': 'KvmInfo', 'data': {'enabled': 'bool', 'present': 'bool'} }
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##
# @query-kvm:
#
# Returns information about KVM acceleration
#
# Returns: @KvmInfo
#
# Since: 0.14.0
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#
# Example:
#
# -> { "execute": "query-kvm" }
# <- { "return": { "enabled": true, "present": true } }
#
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##
{ 'command': 'query-kvm', 'returns': 'KvmInfo' }

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##
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# @RunState:
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#
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# An enumeration of VM run states.
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#
# @debug: QEMU is running on a debugger
#
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# @finish-migrate: guest is paused to finish the migration process
#
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# @inmigrate: guest is paused waiting for an incoming migration.  Note
# that this state does not tell whether the machine will start at the
# end of the migration.  This depends on the command-line -S option and
# any invocation of 'stop' or 'cont' that has happened since QEMU was
# started.
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#
# @internal-error: An internal error that prevents further guest execution
# has occurred
#
# @io-error: the last IOP has failed and the device is configured to pause
# on I/O errors
#
# @paused: guest has been paused via the 'stop' command
#
# @postmigrate: guest is paused following a successful 'migrate'
#
# @prelaunch: QEMU was started with -S and guest has not started
#
# @restore-vm: guest is paused to restore VM state
#
# @running: guest is actively running
#
# @save-vm: guest is paused to save the VM state
#
# @shutdown: guest is shut down (and -no-shutdown is in use)
#
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# @suspended: guest is suspended (ACPI S3)
#
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# @watchdog: the watchdog action is configured to pause and has been triggered
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#
# @guest-panicked: guest has been panicked as a result of guest OS panic
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#
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# @colo: guest is paused to save/restore VM state under colo checkpoint,
#        VM can not get into this state unless colo capability is enabled
#        for migration. (since 2.8)
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##
{ 'enum': 'RunState',
  'data': [ 'debug', 'inmigrate', 'internal-error', 'io-error', 'paused',
            'postmigrate', 'prelaunch', 'finish-migrate', 'restore-vm',
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            'running', 'save-vm', 'shutdown', 'suspended', 'watchdog',
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            'guest-panicked', 'colo' ] }
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##
# @StatusInfo:
#
# Information about VCPU run state
#
# @running: true if all VCPUs are runnable, false if not runnable
#
# @singlestep: true if VCPUs are in single-step mode
#
# @status: the virtual machine @RunState
#
# Since:  0.14.0
#
# Notes: @singlestep is enabled through the GDB stub
##
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{ 'struct': 'StatusInfo',
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  'data': {'running': 'bool', 'singlestep': 'bool', 'status': 'RunState'} }

##
# @query-status:
#
# Query the run status of all VCPUs
#
# Returns: @StatusInfo reflecting all VCPUs
#
# Since:  0.14.0
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#
# Example:
#
# -> { "execute": "query-status" }
# <- { "return": { "running": true,
#                  "singlestep": false,
#                  "status": "running" } }
#
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##
{ 'command': 'query-status', 'returns': 'StatusInfo' }

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##
# @UuidInfo:
#
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# Guest UUID information (Universally Unique Identifier).
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#
# @UUID: the UUID of the guest
#
# Since: 0.14.0
#
# Notes: If no UUID was specified for the guest, a null UUID is returned.
##
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{ 'struct': 'UuidInfo', 'data': {'UUID': 'str'} }
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##
# @query-uuid:
#
# Query the guest UUID information.
#
# Returns: The @UuidInfo for the guest
#
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# Since: 0.14.0
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#
# Example:
#
# -> { "execute": "query-uuid" }
# <- { "return": { "UUID": "550e8400-e29b-41d4-a716-446655440000" } }
#
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##
{ 'command': 'query-uuid', 'returns': 'UuidInfo' }

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##
# @ChardevInfo:
#
# Information about a character device.
#
# @label: the label of the character device
#
# @filename: the filename of the character device
#
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# @frontend-open: shows whether the frontend device attached to this backend
#                 (eg. with the chardev=... option) is in open or closed state
#                 (since 2.1)
#
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# Notes: @filename is encoded using the QEMU command line character device
#        encoding.  See the QEMU man page for details.
#
# Since: 0.14.0
##
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{ 'struct': 'ChardevInfo', 'data': {'label': 'str',
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                                  'filename': 'str',
                                  'frontend-open': 'bool'} }
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##
# @query-chardev:
#
# Returns information about current character devices.
#
# Returns: a list of @ChardevInfo
#
# Since: 0.14.0
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#
# Example:
#
# -> { "execute": "query-chardev" }
# <- {
#       "return": [
#          {
#             "label": "charchannel0",
#             "filename": "unix:/var/lib/libvirt/qemu/seabios.rhel6.agent,server",
#             "frontend-open": false
#          },
#          {
#             "label": "charmonitor",
#             "filename": "unix:/var/lib/libvirt/qemu/seabios.rhel6.monitor,server",
#             "frontend-open": true
#          },
#          {
#             "label": "charserial0",
#             "filename": "pty:/dev/pts/2",
#             "frontend-open": true
#          }
#       ]
#    }
#
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##
{ 'command': 'query-chardev', 'returns': ['ChardevInfo'] }
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##
# @ChardevBackendInfo:
#
# Information about a character device backend
#
# @name: The backend name
#
# Since: 2.0
##
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{ 'struct': 'ChardevBackendInfo', 'data': {'name': 'str'} }
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##
# @query-chardev-backends:
#
# Returns information about character device backends.
#
# Returns: a list of @ChardevBackendInfo
#
# Since: 2.0
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#
# Example:
#
# -> { "execute": "query-chardev-backends" }
# <- {
#       "return":[
#          {
#             "name":"udp"
#          },
#          {
#             "name":"tcp"
#          },
#          {
#             "name":"unix"
#          },
#          {
#             "name":"spiceport"
#          }
#       ]
#    }
#
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##
{ 'command': 'query-chardev-backends', 'returns': ['ChardevBackendInfo'] }

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##
# @DataFormat:
#
# An enumeration of data format.
#
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# @utf8: Data is a UTF-8 string (RFC 3629)
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#
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# @base64: Data is Base64 encoded binary (RFC 3548)
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#
# Since: 1.4
##
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{ 'enum': 'DataFormat',
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  'data': [ 'utf8', 'base64' ] }

##
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# @ringbuf-write:
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#
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# Write to a ring buffer character device.
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#
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# @device: the ring buffer character device name
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#
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# @data: data to write
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#
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# @format: data encoding (default 'utf8').
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#          - base64: data must be base64 encoded text.  Its binary
#            decoding gets written.
#          - utf8: data's UTF-8 encoding is written
#          - data itself is always Unicode regardless of format, like
#            any other string.
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#
# Returns: Nothing on success
#
# Since: 1.4
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#
# Example:
#
# -> { "execute": "ringbuf-write",
#      "arguments": { "device": "foo",
#                     "data": "abcdefgh",
#                     "format": "utf8" } }
# <- { "return": {} }
#
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##
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{ 'command': 'ringbuf-write',
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  'data': {'device': 'str', 'data': 'str',
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           '*format': 'DataFormat'} }

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##
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# @ringbuf-read:
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#
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# Read from a ring buffer character device.
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#
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# @device: the ring buffer character device name
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#
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# @size: how many bytes to read at most
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#
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# @format: data encoding (default 'utf8').
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#          - base64: the data read is returned in base64 encoding.
#          - utf8: the data read is interpreted as UTF-8.
#            Bug: can screw up when the buffer contains invalid UTF-8
#            sequences, NUL characters, after the ring buffer lost
#            data, and when reading stops because the size limit is
#            reached.
#          - The return value is always Unicode regardless of format,
#            like any other string.
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#
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# Returns: data read from the device
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#
# Since: 1.4
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#
# Example:
#
# -> { "execute": "ringbuf-read",
#      "arguments": { "device": "foo",
#                     "size": 1000,
#                     "format": "utf8" } }
# <- { "return": "abcdefgh" }
#
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##
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{ 'command': 'ringbuf-read',
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  'data': {'device': 'str', 'size': 'int', '*format': 'DataFormat'},
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  'returns': 'str' }
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##
# @EventInfo:
#
# Information about a QMP event
#
# @name: The event name
#
# Since: 1.2.0
##
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{ 'struct': 'EventInfo', 'data': {'name': 'str'} }
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##
# @query-events:
#
# Return a list of supported QMP events by this server
#
# Returns: A list of @EventInfo for all supported events
#
# Since: 1.2.0
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#
# Example:
#
# -> { "execute": "query-events" }
# <- {
#      "return": [
#          {
#             "name":"SHUTDOWN"
#          },
#          {
#             "name":"RESET"
#          }
#       ]
#    }
#
# Note: This example has been shortened as the real response is too long.
#
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##
{ 'command': 'query-events', 'returns': ['EventInfo'] }

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##
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# @MigrationStats:
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#
# Detailed migration status.
#
# @transferred: amount of bytes already transferred to the target VM
#
# @remaining: amount of bytes remaining to be transferred to the target VM
#
# @total: total amount of bytes involved in the migration process
#
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# @duplicate: number of duplicate (zero) pages (since 1.2)
#
# @skipped: number of skipped zero pages (since 1.5)
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#
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# @normal: number of normal pages (since 1.2)
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#
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# @normal-bytes: number of normal bytes sent (since 1.2)
#
# @dirty-pages-rate: number of pages dirtied by second by the
#        guest (since 1.3)
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#
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# @mbps: throughput in megabits/sec. (since 1.6)
#
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# @dirty-sync-count: number of times that dirty ram was synchronized (since 2.1)
#
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# @postcopy-requests: The number of page requests received from the destination
#        (since 2.7)
#
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# Since: 0.14.0
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##
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{ 'struct': 'MigrationStats',
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  'data': {'transferred': 'int', 'remaining': 'int', 'total': 'int' ,
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           'duplicate': 'int', 'skipped': 'int', 'normal': 'int',
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           'normal-bytes': 'int', 'dirty-pages-rate' : 'int',
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           'mbps' : 'number', 'dirty-sync-count' : 'int',
           'postcopy-requests' : 'int' } }
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##
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# @XBZRLECacheStats:
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#
# Detailed XBZRLE migration cache statistics
#
# @cache-size: XBZRLE cache size
#
# @bytes: amount of bytes already transferred to the target VM
#
# @pages: amount of pages transferred to the target VM
#
# @cache-miss: number of cache miss
#
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# @cache-miss-rate: rate of cache miss (since 2.1)
#
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# @overflow: number of overflows
#
# Since: 1.2
##
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{ 'struct': 'XBZRLECacheStats',
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  'data': {'cache-size': 'int', 'bytes': 'int', 'pages': 'int',
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           'cache-miss': 'int', 'cache-miss-rate': 'number',
           'overflow': 'int' } }
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##
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# @MigrationStatus:
#
# An enumeration of migration status.
#
# @none: no migration has ever happened.
#
# @setup: migration process has been initiated.
#
# @cancelling: in the process of cancelling migration.
#
# @cancelled: cancelling migration is finished.
#
# @active: in the process of doing migration.
#
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# @postcopy-active: like active, but now in postcopy mode. (since 2.5)
#
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# @completed: migration is finished.
#
# @failed: some error occurred during migration process.
#
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# @colo: VM is in the process of fault tolerance, VM can not get into this
#        state unless colo capability is enabled for migration. (since 2.8)
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#
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# Since: 2.3
#
##
{ 'enum': 'MigrationStatus',
  'data': [ 'none', 'setup', 'cancelling', 'cancelled',
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            'active', 'postcopy-active', 'completed', 'failed', 'colo' ] }
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##
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# @MigrationInfo:
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#
# Information about current migration process.
#
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# @status: @MigrationStatus describing the current migration status.
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#          If this field is not returned, no migration process
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#          has been initiated
#
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# @ram: @MigrationStats containing detailed migration
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#       status, only returned if status is 'active' or
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#       'completed'(since 1.2)
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#
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# @disk: @MigrationStats containing detailed disk migration
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#        status, only returned if status is 'active' and it is a block
#        migration
#
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# @xbzrle-cache: @XBZRLECacheStats containing detailed XBZRLE
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#                migration statistics, only returned if XBZRLE feature is on and
#                status is 'active' or 'completed' (since 1.2)
#
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# @total-time: total amount of milliseconds since migration started.
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#        If migration has ended, it returns the total migration
#        time. (since 1.2)
#
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# @downtime: only present when migration finishes correctly
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#        total downtime in milliseconds for the guest.
#        (since 1.3)
#
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# @expected-downtime: only present while migration is active
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#        expected downtime in milliseconds for the guest in last walk
#        of the dirty bitmap. (since 1.3)
#
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# @setup-time: amount of setup time in milliseconds _before_ the
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#        iterations begin but _after_ the QMP command is issued. This is designed
#        to provide an accounting of any activities (such as RDMA pinning) which
#        may be expensive, but do not actually occur during the iterative
#        migration rounds themselves. (since 1.6)
#
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# @cpu-throttle-percentage: percentage of time guest cpus are being
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#        throttled during auto-converge. This is only present when auto-converge
#        has started throttling guest cpus. (Since 2.7)
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#
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# @error-desc: the human readable error description string, when
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#              @status is 'failed'. Clients should not attempt to parse the
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#              error strings. (Since 2.7)
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#
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# Since: 0.14.0
##
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{ 'struct': 'MigrationInfo',
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  'data': {'*status': 'MigrationStatus', '*ram': 'MigrationStats',
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           '*disk': 'MigrationStats',
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           '*xbzrle-cache': 'XBZRLECacheStats',
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           '*total-time': 'int',
719
           '*expected-downtime': 'int',
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           '*downtime': 'int',
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           '*setup-time': 'int',
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           '*cpu-throttle-percentage': 'int',
           '*error-desc': 'str'} }
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##
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# @query-migrate:
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#
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# Returns information about current migration process. If migration
# is active there will be another json-object with RAM migration
# status and if block migration is active another one with block
# migration status.
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#
# Returns: @MigrationInfo
#
# Since: 0.14.0
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#
# Example:
#
# 1. Before the first migration
#
# -> { "execute": "query-migrate" }
# <- { "return": {} }
#
# 2. Migration is done and has succeeded
#
# -> { "execute": "query-migrate" }
# <- { "return": {
#         "status": "completed",
#         "ram":{
#           "transferred":123,
#           "remaining":123,
#           "total":246,
#           "total-time":12345,
#           "setup-time":12345,
#           "downtime":12345,
#           "duplicate":123,
#           "normal":123,
#           "normal-bytes":123456,
#           "dirty-sync-count":15
#         }
#      }
#    }
#
# 3. Migration is done and has failed
#
# -> { "execute": "query-migrate" }
# <- { "return": { "status": "failed" } }
#
# 4. Migration is being performed and is not a block migration:
#
# -> { "execute": "query-migrate" }
# <- {
#       "return":{
#          "status":"active",
#          "ram":{
#             "transferred":123,
#             "remaining":123,
#             "total":246,
#             "total-time":12345,
#             "setup-time":12345,
#             "expected-downtime":12345,
#             "duplicate":123,
#             "normal":123,
#             "normal-bytes":123456,
#             "dirty-sync-count":15
#          }
#       }
#    }
#
# 5. Migration is being performed and is a block migration:
#
# -> { "execute": "query-migrate" }
# <- {
#       "return":{
#          "status":"active",
#          "ram":{
#             "total":1057024,
#             "remaining":1053304,
#             "transferred":3720,
#             "total-time":12345,
#             "setup-time":12345,
#             "expected-downtime":12345,
#             "duplicate":123,
#             "normal":123,
#             "normal-bytes":123456,
#             "dirty-sync-count":15
#          },
#          "disk":{
#             "total":20971520,
#             "remaining":20880384,
#             "transferred":91136
#          }
#       }
#    }
#
# 6. Migration is being performed and XBZRLE is active:
#
# -> { "execute": "query-migrate" }
# <- {
#       "return":{
#          "status":"active",
#          "capabilities" : [ { "capability": "xbzrle", "state" : true } ],
#          "ram":{
#             "total":1057024,
#             "remaining":1053304,
#             "transferred":3720,
#             "total-time":12345,
#             "setup-time":12345,
#             "expected-downtime":12345,
#             "duplicate":10,
#             "normal":3333,
#             "normal-bytes":3412992,
#             "dirty-sync-count":15
#          },
#          "xbzrle-cache":{
#             "cache-size":67108864,
#             "bytes":20971520,
#             "pages":2444343,
#             "cache-miss":2244,
#             "cache-miss-rate":0.123,
#             "overflow":34434
#          }
#       }
#    }
#
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##
{ 'command': 'query-migrate', 'returns': 'MigrationInfo' }

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##
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# @MigrationCapability:
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#
# Migration capabilities enumeration
#
# @xbzrle: Migration supports xbzrle (Xor Based Zero Run Length Encoding).
#          This feature allows us to minimize migration traffic for certain work
#          loads, by sending compressed difference of the pages
#
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# @rdma-pin-all: Controls whether or not the entire VM memory footprint is
859
#          mlock()'d on demand or all at once. Refer to docs/rdma.txt for usage.
860
#          Disabled by default. (since 2.0)
861
#
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# @zero-blocks: During storage migration encode blocks of zeroes efficiently. This
#          essentially saves 1MB of zeroes per block on the wire. Enabling requires
#          source and target VM to support this feature. To enable it is sufficient
#          to enable the capability on the source VM. The feature is disabled by
#          default. (since 1.6)
#
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# @compress: Use multiple compression threads to accelerate live migration.
#          This feature can help to reduce the migration traffic, by sending
#          compressed pages. Please note that if compress and xbzrle are both
#          on, compress only takes effect in the ram bulk stage, after that,
#          it will be disabled and only xbzrle takes effect, this can help to
#          minimize migration traffic. The feature is disabled by default.
#          (since 2.4 )
#
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# @events: generate events for each migration state change
#          (since 2.4 )
#
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# @auto-converge: If enabled, QEMU will automatically throttle down the guest
#          to speed up convergence of RAM migration. (since 1.6)
#
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# @postcopy-ram: Start executing on the migration target before all of RAM has
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#          been migrated, pulling the remaining pages along as needed. NOTE: If
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#          the migration fails during postcopy the VM will fail.  (since 2.6)
885
#
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# @x-colo: If enabled, migration will never end, and the state of the VM on the
#        primary side will be migrated continuously to the VM on secondary
#        side, this process is called COarse-Grain LOck Stepping (COLO) for
#        Non-stop Service. (since 2.8)
#
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# @release-ram: if enabled, qemu will free the migrated ram pages on the source
#        during postcopy-ram migration. (since 2.9)
#
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# Since: 1.2
##
{ 'enum': 'MigrationCapability',
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  'data': ['xbzrle', 'rdma-pin-all', 'auto-converge', 'zero-blocks',
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           'compress', 'events', 'postcopy-ram', 'x-colo', 'release-ram'] }
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##
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# @MigrationCapabilityStatus:
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#
# Migration capability information
#
# @capability: capability enum
#
# @state: capability state bool
#
# Since: 1.2
##
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{ 'struct': 'MigrationCapabilityStatus',
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  'data': { 'capability' : 'MigrationCapability', 'state' : 'bool' } }

##
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# @migrate-set-capabilities:
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#
# Enable/Disable the following migration capabilities (like xbzrle)
#
# @capabilities: json array of capability modifications to make
#
# Since: 1.2
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#
# Example:
#
# -> { "execute": "migrate-set-capabilities" , "arguments":
#      { "capabilities": [ { "capability": "xbzrle", "state": true } ] } }
#
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##
{ 'command': 'migrate-set-capabilities',
  'data': { 'capabilities': ['MigrationCapabilityStatus'] } }

##
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# @query-migrate-capabilities:
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#
# Returns information about the current migration capabilities status
#
# Returns: @MigrationCapabilitiesStatus
#
# Since: 1.2
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#
# Example:
#
# -> { "execute": "query-migrate-capabilities" }
# <- { "return": [
#       {"state": false, "capability": "xbzrle"},
#       {"state": false, "capability": "rdma-pin-all"},
#       {"state": false, "capability": "auto-converge"},
#       {"state": false, "capability": "zero-blocks"},
#       {"state": false, "capability": "compress"},
#       {"state": true, "capability": "events"},
#       {"state": false, "capability": "postcopy-ram"},
#       {"state": false, "capability": "x-colo"}
#    ]}
#
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##
{ 'command': 'query-migrate-capabilities', 'returns':   ['MigrationCapabilityStatus']}

958
##
959
# @MigrationParameter:
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#
# Migration parameters enumeration
#
# @compress-level: Set the compression level to be used in live migration,
#          the compression level is an integer between 0 and 9, where 0 means
#          no compression, 1 means the best compression speed, and 9 means best
#          compression ratio which will consume more CPU.
#
# @compress-threads: Set compression thread count to be used in live migration,
#          the compression thread count is an integer between 1 and 255.
#
# @decompress-threads: Set decompression thread count to be used in live
#          migration, the decompression thread count is an integer between 1
#          and 255. Usually, decompression is at least 4 times as fast as
#          compression, so set the decompress-threads to the number about 1/4
#          of compress-threads is adequate.
#
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# @cpu-throttle-initial: Initial percentage of time guest cpus are throttled
#                        when migration auto-converge is activated. The
#                        default value is 20. (Since 2.7)
980
#
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# @cpu-throttle-increment: throttle percentage increase each time
#                          auto-converge detects that migration is not making
#                          progress. The default value is 10. (Since 2.7)
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#
# @tls-creds: ID of the 'tls-creds' object that provides credentials for
#             establishing a TLS connection over the migration data channel.
#             On the outgoing side of the migration, the credentials must
#             be for a 'client' endpoint, while for the incoming side the
#             credentials must be for a 'server' endpoint. Setting this
#             will enable TLS for all migrations. The default is unset,
#             resulting in unsecured migration at the QEMU level. (Since 2.7)
#
# @tls-hostname: hostname of the target host for the migration. This is
#                required when using x509 based TLS credentials and the
#                migration URI does not already include a hostname. For
#                example if using fd: or exec: based migration, the
#                hostname must be provided so that the server's x509
998
#                certificate identity can be validated. (Since 2.7)
999
#
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# @max-bandwidth: to set maximum speed for migration. maximum speed in
#                 bytes per second. (Since 2.8)
#
# @downtime-limit: set maximum tolerated downtime for migration. maximum
#                  downtime in milliseconds (Since 2.8)
#
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# @x-checkpoint-delay: The delay time (in ms) between two COLO checkpoints in
#          periodic mode. (Since 2.8)
#
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# Since: 2.4
##
{ 'enum': 'MigrationParameter',
1012
  'data': ['compress-level', 'compress-threads', 'decompress-threads',
1013
           'cpu-throttle-initial', 'cpu-throttle-increment',
1014
           'tls-creds', 'tls-hostname', 'max-bandwidth',
1015
           'downtime-limit', 'x-checkpoint-delay' ] }
1016

1017
##
1018
# @migrate-set-parameters:
1019
#
1020
# Set various migration parameters.  See MigrationParameters for details.
1021
#
1022
# Since: 2.4
1023 1024 1025 1026 1027 1028
#
# Example:
#
# -> { "execute": "migrate-set-parameters" ,
#      "arguments": { "compress-level": 1 } }
#
1029
##
1030
{ 'command': 'migrate-set-parameters', 'boxed': true,
1031
  'data': 'MigrationParameters' }
1032

1033
##
1034
# @MigrationParameters:
1035
#
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# Optional members can be omitted on input ('migrate-set-parameters')
# but most members will always be present on output
# ('query-migrate-parameters'), with the exception of tls-creds and
# tls-hostname.
1040
#
1041
# @compress-level: compression level
1042
#
1043
# @compress-threads: compression thread count
1044
#
1045
# @decompress-threads: decompression thread count
1046
#
1047
# @cpu-throttle-initial: Initial percentage of time guest cpus are
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#                        throttledwhen migration auto-converge is activated.
#                        The default value is 20. (Since 2.7)
#
1051
# @cpu-throttle-increment: throttle percentage increase each time
1052 1053
#                          auto-converge detects that migration is not making
#                          progress. The default value is 10. (Since 2.7)
1054
#
1055
# @tls-creds: ID of the 'tls-creds' object that provides credentials
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#             for establishing a TLS connection over the migration data
#             channel. On the outgoing side of the migration, the credentials
#             must be for a 'client' endpoint, while for the incoming side the
1059 1060
#             credentials must be for a 'server' endpoint. Setting this
#             will enable TLS for all migrations. The default is unset,
1061
#             resulting in unsecured migration at the QEMU level. (Since 2.7)
1062
#
1063
# @tls-hostname: hostname of the target host for the migration. This
1064
#                is required when using x509 based TLS credentials and the
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#                migration URI does not already include a hostname. For
#                example if using fd: or exec: based migration, the
#                hostname must be provided so that the server's x509
1068
#                certificate identity can be validated. (Since 2.7)
1069
#
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# @max-bandwidth: to set maximum speed for migration. maximum speed in
#                 bytes per second. (Since 2.8)
#
# @downtime-limit: set maximum tolerated downtime for migration. maximum
#                  downtime in milliseconds (Since 2.8)
#
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# @x-checkpoint-delay: the delay time between two COLO checkpoints. (Since 2.8)
#
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# Since: 2.4
##
{ 'struct': 'MigrationParameters',
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  'data': { '*compress-level': 'int',
            '*compress-threads': 'int',
            '*decompress-threads': 'int',
            '*cpu-throttle-initial': 'int',
            '*cpu-throttle-increment': 'int',
            '*tls-creds': 'str',
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            '*tls-hostname': 'str',
            '*max-bandwidth': 'int',
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            '*downtime-limit': 'int',
            '*x-checkpoint-delay': 'int'} }
1091

1092
##
1093
# @query-migrate-parameters:
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#
# Returns information about the current migration parameters
#
# Returns: @MigrationParameters
#
# Since: 2.4
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#
# Example:
#
# -> { "execute": "query-migrate-parameters" }
# <- { "return": {
#          "decompress-threads": 2,
#          "cpu-throttle-increment": 10,
#          "compress-threads": 8,
#          "compress-level": 1,
#          "cpu-throttle-initial": 20,
#          "max-bandwidth": 33554432,
#          "downtime-limit": 300
#       }
#    }
#
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##
{ 'command': 'query-migrate-parameters',
  'returns': 'MigrationParameters' }

1119
##
1120
# @client_migrate_info:
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#
# Set migration information for remote display.  This makes the server
# ask the client to automatically reconnect using the new parameters
# once migration finished successfully.  Only implemented for SPICE.
#
# @protocol:     must be "spice"
# @hostname:     migration target hostname
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# @port:         spice tcp port for plaintext channels
# @tls-port:     spice tcp port for tls-secured channels
# @cert-subject: server certificate subject
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#
# Since: 0.14.0
1133 1134 1135 1136 1137 1138 1139 1140 1141
#
# Example:
#
# -> { "execute": "client_migrate_info",
#      "arguments": { "protocol": "spice",
#                     "hostname": "virt42.lab.kraxel.org",
#                     "port": 1234 } }
# <- { "return": {} }
#
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##
{ 'command': 'client_migrate_info',
  'data': { 'protocol': 'str', 'hostname': 'str', '*port': 'int',
            '*tls-port': 'int', '*cert-subject': 'str' } }

1147
##
1148
# @migrate-start-postcopy:
1149
#
1150
# Followup to a migration command to switch the migration to postcopy mode.
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# The postcopy-ram capability must be set before the original migration
1152
# command.
1153 1154
#
# Since: 2.5
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#
# Example:
#
# -> { "execute": "migrate-start-postcopy" }
# <- { "return": {} }
#
1161
##
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{ 'command': 'migrate-start-postcopy' }

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##
1165
# @COLOMessage:
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#
# The message transmission between Primary side and Secondary side.
#
# @checkpoint-ready: Secondary VM (SVM) is ready for checkpointing
#
# @checkpoint-request: Primary VM (PVM) tells SVM to prepare for checkpointing
#
# @checkpoint-reply: SVM gets PVM's checkpoint request
#
# @vmstate-send: VM's state will be sent by PVM.
#
# @vmstate-size: The total size of VMstate.
#
# @vmstate-received: VM's state has been received by SVM.
#
# @vmstate-loaded: VM's state has been loaded by SVM.
#
# Since: 2.8
##
{ 'enum': 'COLOMessage',
  'data': [ 'checkpoint-ready', 'checkpoint-request', 'checkpoint-reply',
            'vmstate-send', 'vmstate-size', 'vmstate-received',
            'vmstate-loaded' ] }

1190
##
1191
# @COLOMode:
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#
# The colo mode
#
# @unknown: unknown mode
#
# @primary: master side
#
# @secondary: slave side
#
# Since: 2.8
##
{ 'enum': 'COLOMode',
  'data': [ 'unknown', 'primary', 'secondary'] }

1206
##
1207
# @FailoverStatus:
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#
# An enumeration of COLO failover status
#
# @none: no failover has ever happened
#
# @require: got failover requirement but not handled
#
# @active: in the process of doing failover
#
# @completed: finish the process of failover
#
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# @relaunch: restart the failover process, from 'none' -> 'completed' (Since 2.9)
#
1221 1222 1223
# Since: 2.8
##
{ 'enum': 'FailoverStatus',
1224
  'data': [ 'none', 'require', 'active', 'completed', 'relaunch' ] }
1225

1226
##
1227
# @x-colo-lost-heartbeat:
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#
# Tell qemu that heartbeat is lost, request it to do takeover procedures.
# If this command is sent to the PVM, the Primary side will exit COLO mode.
# If sent to the Secondary, the Secondary side will run failover work,
# then takes over server operation to become the service VM.
#
# Since: 2.8
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#
# Example:
#
# -> { "execute": "x-colo-lost-heartbeat" }
# <- { "return": {} }
#
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##
{ 'command': 'x-colo-lost-heartbeat' }

##
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# @MouseInfo:
#
# Information about a mouse device.
#
# @name: the name of the mouse device
#
# @index: the index of the mouse device
#
# @current: true if this device is currently receiving mouse events
#
# @absolute: true if this device supports absolute coordinates as input
#
# Since: 0.14.0
##
1259
{ 'struct': 'MouseInfo',
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  'data': {'name': 'str', 'index': 'int', 'current': 'bool',
           'absolute': 'bool'} }

##
# @query-mice:
#
# Returns information about each active mouse device
#
# Returns: a list of @MouseInfo for each device
#
# Since: 0.14.0
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#
# Example:
#
# -> { "execute": "query-mice" }
# <- { "return": [
#          {
#             "name":"QEMU Microsoft Mouse",
#             "index":0,
#             "current":false,
#             "absolute":false
#          },
#          {
#             "name":"QEMU PS/2 Mouse",
#             "index":1,
#             "current":true,
#             "absolute":true
#          }
#       ]
#    }
#
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##
{ 'command': 'query-mice', 'returns': ['MouseInfo'] }

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##
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# @CpuInfoArch:
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#
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# An enumeration of cpu types that enable additional information during
# @query-cpus.
#
# Since: 2.6
##
{ 'enum': 'CpuInfoArch',
  'data': ['x86', 'sparc', 'ppc', 'mips', 'tricore', 'other' ] }

##
1306
# @CpuInfo:
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#
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# Information about a virtual CPU
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#
# @CPU: the index of the virtual CPU
#
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# @current: this only exists for backwards compatibility and should be ignored
1313
#
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# @halted: true if the virtual CPU is in the halt state.  Halt usually refers
#          to a processor specific low power mode.
#
1317 1318
# @qom_path: path to the CPU object in the QOM tree (since 2.4)
#
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# @thread_id: ID of the underlying host thread
#
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# @arch: architecture of the cpu, which determines which additional fields
#        will be listed (since 2.6)
#
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# Since: 0.14.0
#
# Notes: @halted is a transient state that changes frequently.  By the time the
#        data is sent to the client, the guest may no longer be halted.
##
1329 1330 1331 1332
{ 'union': 'CpuInfo',
  'base': {'CPU': 'int', 'current': 'bool', 'halted': 'bool',
           'qom_path': 'str', 'thread_id': 'int', 'arch': 'CpuInfoArch' },
  'discriminator': 'arch',
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  'data': { 'x86': 'CpuInfoX86',
            'sparc': 'CpuInfoSPARC',
            'ppc': 'CpuInfoPPC',
            'mips': 'CpuInfoMIPS',
            'tricore': 'CpuInfoTricore',
            'other': 'CpuInfoOther' } }

##
# @CpuInfoX86:
#
# Additional information about a virtual i386 or x86_64 CPU
#
# @pc: the 64-bit instruction pointer
#
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# Since: 2.6
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##
{ 'struct': 'CpuInfoX86', 'data': { 'pc': 'int' } }

##
# @CpuInfoSPARC:
#
# Additional information about a virtual SPARC CPU
#
# @pc: the PC component of the instruction pointer
#
# @npc: the NPC component of the instruction pointer
#
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# Since: 2.6
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##
{ 'struct': 'CpuInfoSPARC', 'data': { 'pc': 'int', 'npc': 'int' } }

##
# @CpuInfoPPC:
#
# Additional information about a virtual PPC CPU
#
# @nip: the instruction pointer
#
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# Since: 2.6
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##
{ 'struct': 'CpuInfoPPC', 'data': { 'nip': 'int' } }

##
# @CpuInfoMIPS:
#
# Additional information about a virtual MIPS CPU
#
# @PC: the instruction pointer
#
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# Since: 2.6
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##
{ 'struct': 'CpuInfoMIPS', 'data': { 'PC': 'int' } }

##
# @CpuInfoTricore:
#
# Additional information about a virtual Tricore CPU
#
# @PC: the instruction pointer
#
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# Since: 2.6
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##
{ 'struct': 'CpuInfoTricore', 'data': { 'PC': 'int' } }

##
# @CpuInfoOther:
#
# No additional information is available about the virtual CPU
#
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# Since: 2.6
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#
##
{ 'struct': 'CpuInfoOther', 'data': { } }
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##
# @query-cpus:
#
# Returns a list of information about each virtual CPU.
#
# Returns: a list of @CpuInfo for each virtual CPU
#
# Since: 0.14.0
1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440
#
# Example:
#
# -> { "execute": "query-cpus" }
# <- { "return": [
#          {
#             "CPU":0,
#             "current":true,
#             "halted":false,
#             "qom_path":"/machine/unattached/device[0]",
#             "arch":"x86",
#             "pc":3227107138,
#             "thread_id":3134
#          },
#          {
#             "CPU":1,
#             "current":false,
#             "halted":true,
#             "qom_path":"/machine/unattached/device[2]",
#             "arch":"x86",
#             "pc":7108165,
#             "thread_id":3135
#          }
#       ]
#    }
#
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##
{ 'command': 'query-cpus', 'returns': ['CpuInfo'] }

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##
# @IOThreadInfo:
#
# Information about an iothread
#
# @id: the identifier of the iothread
#
# @thread-id: ID of the underlying host thread
#
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# @poll-max-ns: maximum polling time in ns, 0 means polling is disabled
#               (since 2.9)
#
# @poll-grow: how many ns will be added to polling time, 0 means that it's not
#             configured (since 2.9)
#
# @poll-shrink: how many ns will be removed from polling time, 0 means that
#               it's not configured (since 2.9)
#
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# Since: 2.0
##
1464
{ 'struct': 'IOThreadInfo',
1465 1466 1467 1468 1469
  'data': {'id': 'str',
           'thread-id': 'int',
           'poll-max-ns': 'int',
           'poll-grow': 'int',
           'poll-shrink': 'int' } }
1470 1471 1472 1473 1474 1475

##
# @query-iothreads:
#
# Returns a list of information about each iothread.
#
1476
# Note: this list excludes the QEMU main loop thread, which is not declared
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# using the -object iothread command-line option.  It is always the main thread
# of the process.
#
# Returns: a list of @IOThreadInfo for each iothread
#
# Since: 2.0
1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498
#
# Example:
#
# -> { "execute": "query-iothreads" }
# <- { "return": [
#          {
#             "id":"iothread0",
#             "thread-id":3134
#          },
#          {
#             "id":"iothread1",
#             "thread-id":3135
#          }
#       ]
#    }
#
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##
{ 'command': 'query-iothreads', 'returns': ['IOThreadInfo'] }

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##
1503
# @NetworkAddressFamily:
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#
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# The network address family
#
# @ipv4: IPV4 family
#
# @ipv6: IPV6 family
#
# @unix: unix socket
#
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# @vsock: vsock family (since 2.8)
#
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# @unknown: otherwise
#
# Since: 2.1
##
{ 'enum': 'NetworkAddressFamily',
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  'data': [ 'ipv4', 'ipv6', 'unix', 'vsock', 'unknown' ] }
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##
1523
# @VncBasicInfo:
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#
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# The basic information for vnc network connection
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#
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# @host: IP address
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#
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# @service: The service name of the vnc port. This may depend on the host
#           system's service database so symbolic names should not be relied
#           on.
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#
# @family: address family
#
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# @websocket: true in case the socket is a websocket (since 2.3).
#
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# Since: 2.1
##
1539
{ 'struct': 'VncBasicInfo',
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  'data': { 'host': 'str',
            'service': 'str',
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            'family': 'NetworkAddressFamily',
            'websocket': 'bool' } }
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##
1546
# @VncServerInfo:
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#
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# The network connection information for server
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#
1550
# @auth: authentication method used for
1551
#        the plain (non-websocket) VNC server
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#
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# Since: 2.1
##
1555
{ 'struct': 'VncServerInfo',
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  'base': 'VncBasicInfo',
  'data': { '*auth': 'str' } }

##
# @VncClientInfo:
#
# Information about a connected VNC client.
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#
1564
# @x509_dname: If x509 authentication is in use, the Distinguished
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#              Name of the client.
#
1567
# @sasl_username: If SASL authentication is in use, the SASL username
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#                 used for authentication.
#
# Since: 0.14.0
##
1572
{ 'struct': 'VncClientInfo',
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  'base': 'VncBasicInfo',
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  'data': { '*x509_dname': 'str', '*sasl_username': 'str' } }
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##
# @VncInfo:
#
# Information about the VNC session.
#
# @enabled: true if the VNC server is enabled, false otherwise
#
1583
# @host: The hostname the VNC server is bound to.  This depends on
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#        the name resolution on the host and may be an IP address.
#
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# @family: 'ipv6' if the host is listening for IPv6 connections
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#                    'ipv4' if the host is listening for IPv4 connections
#                    'unix' if the host is listening on a unix domain socket
#                    'unknown' otherwise
#
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# @service: The service name of the server's port.  This may depends
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#           on the host system's service database so symbolic names should not
#           be relied on.
#
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# @auth: the current authentication type used by the server
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#        'none' if no authentication is being used
#        'vnc' if VNC authentication is being used
#        'vencrypt+plain' if VEncrypt is used with plain text authentication
#        'vencrypt+tls+none' if VEncrypt is used with TLS and no authentication
#        'vencrypt+tls+vnc' if VEncrypt is used with TLS and VNC authentication
#        'vencrypt+tls+plain' if VEncrypt is used with TLS and plain text auth
#        'vencrypt+x509+none' if VEncrypt is used with x509 and no auth
#        'vencrypt+x509+vnc' if VEncrypt is used with x509 and VNC auth
#        'vencrypt+x509+plain' if VEncrypt is used with x509 and plain text auth
#        'vencrypt+tls+sasl' if VEncrypt is used with TLS and SASL auth
#        'vencrypt+x509+sasl' if VEncrypt is used with x509 and SASL auth
#
# @clients: a list of @VncClientInfo of all currently connected clients
#
# Since: 0.14.0
##
1612
{ 'struct': 'VncInfo',
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  'data': {'enabled': 'bool', '*host': 'str',
           '*family': 'NetworkAddressFamily',
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           '*service': 'str', '*auth': 'str', '*clients': ['VncClientInfo']} }

1617
##
1618
# @VncPrimaryAuth:
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#
# vnc primary authentication method.
#
# Since: 2.3
##
{ 'enum': 'VncPrimaryAuth',
  'data': [ 'none', 'vnc', 'ra2', 'ra2ne', 'tight', 'ultra',
            'tls', 'vencrypt', 'sasl' ] }

##
# @VncVencryptSubAuth:
#
# vnc sub authentication method with vencrypt.
#
# Since: 2.3
##
{ 'enum': 'VncVencryptSubAuth',
  'data': [ 'plain',
            'tls-none',  'x509-none',
            'tls-vnc',   'x509-vnc',
            'tls-plain', 'x509-plain',
            'tls-sasl',  'x509-sasl' ] }

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##
# @VncServerInfo2:
#
# The network connection information for server
#
# @auth: The current authentication type used by the servers
#
1650
# @vencrypt: The vencrypt sub authentication type used by the
1651 1652 1653 1654 1655 1656 1657 1658 1659 1660
#            servers, only specified in case auth == vencrypt.
#
# Since: 2.9
##
{ 'struct': 'VncServerInfo2',
  'base': 'VncBasicInfo',
  'data': { 'auth'      : 'VncPrimaryAuth',
            '*vencrypt' : 'VncVencryptSubAuth' } }


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##
# @VncInfo2:
#
# Information about a vnc server
#
# @id: vnc server name.
#
# @server: A list of @VncBasincInfo describing all listening sockets.
#          The list can be empty (in case the vnc server is disabled).
#          It also may have multiple entries: normal + websocket,
#          possibly also ipv4 + ipv6 in the future.
#
# @clients: A list of @VncClientInfo of all currently connected clients.
#           The list can be empty, for obvious reasons.
#
1676
# @auth: The current authentication type used by the non-websockets servers
1677
#
1678
# @vencrypt: The vencrypt authentication type used by the servers,
1679 1680
#            only specified in case auth == vencrypt.
#
1681
# @display: The display device the vnc server is linked to.
1682 1683 1684
#
# Since: 2.3
##
1685
{ 'struct': 'VncInfo2',
1686
  'data': { 'id'        : 'str',
1687
            'server'    : ['VncServerInfo2'],
1688 1689 1690 1691 1692
            'clients'   : ['VncClientInfo'],
            'auth'      : 'VncPrimaryAuth',
            '*vencrypt' : 'VncVencryptSubAuth',
            '*display'  : 'str' } }

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##
# @query-vnc:
#
# Returns information about the current VNC server
#
# Returns: @VncInfo
#
# Since: 0.14.0
1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720
#
# Example:
#
# -> { "execute": "query-vnc" }
# <- { "return": {
#          "enabled":true,
#          "host":"0.0.0.0",
#          "service":"50402",
#          "auth":"vnc",
#          "family":"ipv4",
#          "clients":[
#             {
#                "host":"127.0.0.1",
#                "service":"50401",
#                "family":"ipv4"
#             }
#          ]
#       }
#    }
#
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##
{ 'command': 'query-vnc', 'returns': 'VncInfo' }

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##
# @query-vnc-servers:
#
# Returns a list of vnc servers.  The list can be empty.
#
# Returns: a list of @VncInfo2
#
# Since: 2.3
##
{ 'command': 'query-vnc-servers', 'returns': ['VncInfo2'] }

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##
1736
# @SpiceBasicInfo:
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#
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# The basic information for SPICE network connection
#
# @host: IP address
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#
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# @port: port number
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#
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# @family: address family
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#
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# Since: 2.1
##
1748
{ 'struct': 'SpiceBasicInfo',
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  'data': { 'host': 'str',
            'port': 'str',
            'family': 'NetworkAddressFamily' } }

##
1754
# @SpiceServerInfo:
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#
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# Information about a SPICE server
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#
1758
# @auth: authentication method
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#
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# Since: 2.1
##
1762
{ 'struct': 'SpiceServerInfo',
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  'base': 'SpiceBasicInfo',
  'data': { '*auth': 'str' } }

##
1767
# @SpiceChannel:
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#
# Information about a SPICE client channel.
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#
# @connection-id: SPICE connection id number.  All channels with the same id
#                 belong to the same SPICE session.
#
1774 1775 1776
# @channel-type: SPICE channel type number.  "1" is the main control
#                channel, filter for this one if you want to track spice
#                sessions only
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#
1778 1779
# @channel-id: SPICE channel ID number.  Usually "0", might be different when
#              multiple channels of the same type exist, such as multiple
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#              display channels in a multihead setup
#
# @tls: true if the channel is encrypted, false otherwise.
#
# Since: 0.14.0
##
1786
{ 'struct': 'SpiceChannel',
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  'base': 'SpiceBasicInfo',
  'data': {'connection-id': 'int', 'channel-type': 'int', 'channel-id': 'int',
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           'tls': 'bool'} }

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##
1792
# @SpiceQueryMouseMode:
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#
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# An enumeration of Spice mouse states.
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#
# @client: Mouse cursor position is determined by the client.
#
# @server: Mouse cursor position is determined by the server.
#
# @unknown: No information is available about mouse mode used by
#           the spice server.
#
# Note: spice/enums.h has a SpiceMouseMode already, hence the name.
#
# Since: 1.1
##
{ 'enum': 'SpiceQueryMouseMode',
  'data': [ 'client', 'server', 'unknown' ] }

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##
1811
# @SpiceInfo:
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#
# Information about the SPICE session.
1814
#
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# @enabled: true if the SPICE server is enabled, false otherwise
#
1817
# @migrated: true if the last guest migration completed and spice
1818
#            migration had completed as well. false otherwise. (since 1.4)
1819
#
1820
# @host: The hostname the SPICE server is bound to.  This depends on
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#        the name resolution on the host and may be an IP address.
#
1823
# @port: The SPICE server's port number.
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#
1825
# @compiled-version: SPICE server version.
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#
1827
# @tls-port: The SPICE server's TLS port number.
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#
1829
# @auth: the current authentication type used by the server
1830 1831 1832
#        'none'  if no authentication is being used
#        'spice' uses SASL or direct TLS authentication, depending on command
#                line options
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#
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# @mouse-mode: The mode in which the mouse cursor is displayed currently. Can
#              be determined by the client or the server, or unknown if spice
1836
#              server doesn't provide this information. (since: 1.1)
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#
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# @channels: a list of @SpiceChannel for each active spice channel
#
# Since: 0.14.0
##
1842
{ 'struct': 'SpiceInfo',
1843
  'data': {'enabled': 'bool', 'migrated': 'bool', '*host': 'str', '*port': 'int',
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           '*tls-port': 'int', '*auth': 'str', '*compiled-version': 'str',
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           'mouse-mode': 'SpiceQueryMouseMode', '*channels': ['SpiceChannel']} }
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##
1848
# @query-spice:
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#
# Returns information about the current SPICE server
#
# Returns: @SpiceInfo
#
# Since: 0.14.0
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#
# Example:
#
# -> { "execute": "query-spice" }
# <- { "return": {
#          "enabled": true,
#          "auth": "spice",
#          "port": 5920,
#          "tls-port": 5921,
#          "host": "0.0.0.0",
#          "channels": [
#             {
#                "port": "54924",
#                "family": "ipv4",
#                "channel-type": 1,
#                "connection-id": 1804289383,
#                "host": "127.0.0.1",
#                "channel-id": 0,
#                "tls": true
#             },
#             {
#                "port": "36710",
#                "family": "ipv4",
#                "channel-type": 4,
#                "connection-id": 1804289383,
#                "host": "127.0.0.1",
#                "channel-id": 0,
#                "tls": false
#             },
#             [ ... more channels follow ... ]
#          ]
#       }
#    }
#
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##
{ 'command': 'query-spice', 'returns': 'SpiceInfo' }

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##
# @BalloonInfo:
#
# Information about the guest balloon device.
#
# @actual: the number of bytes the balloon currently contains
#
# Since: 0.14.0
#
##
1902
{ 'struct': 'BalloonInfo', 'data': {'actual': 'int' } }
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##
# @query-balloon:
#
# Return information about the balloon device.
#
# Returns: @BalloonInfo on success
1910
#
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#          If the balloon driver is enabled but not functional because the KVM
#          kernel module cannot support it, KvmMissingCap
1913
#
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#          If no balloon device is present, DeviceNotActive
#
# Since: 0.14.0
1917 1918 1919 1920 1921 1922 1923 1924 1925
#
# Example:
#
# -> { "execute": "query-balloon" }
# <- { "return": {
#          "actual": 1073741824,
#       }
#    }
#
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##
{ 'command': 'query-balloon', 'returns': 'BalloonInfo' }

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##
# @PciMemoryRange:
#
# A PCI device memory region
#
# @base: the starting address (guest physical)
#
# @limit: the ending address (guest physical)
#
# Since: 0.14.0
##
1940
{ 'struct': 'PciMemoryRange', 'data': {'base': 'int', 'limit': 'int'} }
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##
1943
# @PciMemoryRegion:
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#
# Information about a PCI device I/O region.
#
# @bar: the index of the Base Address Register for this region
#
# @type: 'io' if the region is a PIO region
#        'memory' if the region is a MMIO region
#
1952 1953
# @size: memory size
#
1954
# @prefetch: if @type is 'memory', true if the memory is prefetchable
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#
1956
# @mem_type_64: if @type is 'memory', true if the BAR is 64-bit
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#
# Since: 0.14.0
##
1960
{ 'struct': 'PciMemoryRegion',
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  'data': {'bar': 'int', 'type': 'str', 'address': 'int', 'size': 'int',
           '*prefetch': 'bool', '*mem_type_64': 'bool' } }

##
1965
# @PciBusInfo:
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#
1967
# Information about a bus of a PCI Bridge device
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#
1969 1970
# @number: primary bus interface number.  This should be the number of the
#          bus the device resides on.
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#
1972 1973
# @secondary: secondary bus interface number.  This is the number of the
#             main bus for the bridge
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#
1975 1976
# @subordinate: This is the highest number bus that resides below the
#               bridge.
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#
1978
# @io_range: The PIO range for all devices on this bridge
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#
1980
# @memory_range: The MMIO range for all devices on this bridge
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#
1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998
# @prefetchable_range: The range of prefetchable MMIO for all devices on
#                      this bridge
#
# Since: 2.4
##
{ 'struct': 'PciBusInfo',
  'data': {'number': 'int', 'secondary': 'int', 'subordinate': 'int',
           'io_range': 'PciMemoryRange',
           'memory_range': 'PciMemoryRange',
           'prefetchable_range': 'PciMemoryRange' } }

##
# @PciBridgeInfo:
#
# Information about a PCI Bridge device
#
# @bus: information about the bus the device resides on
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#
# @devices: a list of @PciDeviceInfo for each device on this bridge
#
# Since: 0.14.0
##
2004
{ 'struct': 'PciBridgeInfo',
2005 2006 2007 2008 2009 2010 2011
  'data': {'bus': 'PciBusInfo', '*devices': ['PciDeviceInfo']} }

##
# @PciDeviceClass:
#
# Information about the Class of a PCI device
#
2012
# @desc: a string description of the device's class
2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033
#
# @class: the class code of the device
#
# Since: 2.4
##
{ 'struct': 'PciDeviceClass',
  'data': {'*desc': 'str', 'class': 'int'} }

##
# @PciDeviceId:
#
# Information about the Id of a PCI device
#
# @device: the PCI device id
#
# @vendor: the PCI vendor id
#
# Since: 2.4
##
{ 'struct': 'PciDeviceId',
  'data': {'device': 'int', 'vendor': 'int'} }
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##
# @PciDeviceInfo:
#
# Information about a PCI device
#
# @bus: the bus number of the device
#
# @slot: the slot the device is located in
#
# @function: the function of the slot used by the device
#
2046
# @class_info: the class of the device
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#
2048
# @id: the PCI device id
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#
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# @irq: if an IRQ is assigned to the device, the IRQ number
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#
# @qdev_id: the device name of the PCI device
#
# @pci_bridge: if the device is a PCI bridge, the bridge information
#
# @regions: a list of the PCI I/O regions associated with the device
#
# Notes: the contents of @class_info.desc are not stable and should only be
#        treated as informational.
#
# Since: 0.14.0
##
2063
{ 'struct': 'PciDeviceInfo',
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  'data': {'bus': 'int', 'slot': 'int', 'function': 'int',
2065
           'class_info': 'PciDeviceClass', 'id': 'PciDeviceId',
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           '*irq': 'int', 'qdev_id': 'str', '*pci_bridge': 'PciBridgeInfo',
           'regions': ['PciMemoryRegion']} }

##
# @PciInfo:
#
# Information about a PCI bus
#
# @bus: the bus index
#
# @devices: a list of devices on this bus
#
# Since: 0.14.0
##
2080
{ 'struct': 'PciInfo', 'data': {'bus': 'int', 'devices': ['PciDeviceInfo']} }
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##
# @query-pci:
#
# Return information about the PCI bus topology of the guest.
#
2087 2088 2089 2090
# Returns: a list of @PciInfo for each PCI bus. Each bus is
# represented by a json-object, which has a key with a json-array of
# all PCI devices attached to it. Each device is represented by a
# json-object.
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#
# Since: 0.14.0
2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224
#
# Example:
#
# -> { "execute": "query-pci" }
# <- { "return": [
#          {
#             "bus": 0,
#             "devices": [
#                {
#                   "bus": 0,
#                   "qdev_id": "",
#                   "slot": 0,
#                   "class_info": {
#                      "class": 1536,
#                      "desc": "Host bridge"
#                   },
#                   "id": {
#                      "device": 32902,
#                      "vendor": 4663
#                   },
#                   "function": 0,
#                   "regions": [
#                   ]
#                },
#                {
#                   "bus": 0,
#                   "qdev_id": "",
#                   "slot": 1,
#                   "class_info": {
#                      "class": 1537,
#                      "desc": "ISA bridge"
#                   },
#                   "id": {
#                      "device": 32902,
#                      "vendor": 28672
#                   },
#                   "function": 0,
#                   "regions": [
#                   ]
#                },
#                {
#                   "bus": 0,
#                   "qdev_id": "",
#                   "slot": 1,
#                   "class_info": {
#                      "class": 257,
#                      "desc": "IDE controller"
#                   },
#                   "id": {
#                      "device": 32902,
#                      "vendor": 28688
#                   },
#                   "function": 1,
#                   "regions": [
#                      {
#                         "bar": 4,
#                         "size": 16,
#                         "address": 49152,
#                         "type": "io"
#                      }
#                   ]
#                },
#                {
#                   "bus": 0,
#                   "qdev_id": "",
#                   "slot": 2,
#                   "class_info": {
#                      "class": 768,
#                      "desc": "VGA controller"
#                   },
#                   "id": {
#                      "device": 4115,
#                      "vendor": 184
#                   },
#                   "function": 0,
#                   "regions": [
#                      {
#                         "prefetch": true,
#                         "mem_type_64": false,
#                         "bar": 0,
#                         "size": 33554432,
#                         "address": 4026531840,
#                         "type": "memory"
#                      },
#                      {
#                         "prefetch": false,
#                         "mem_type_64": false,
#                         "bar": 1,
#                         "size": 4096,
#                         "address": 4060086272,
#                         "type": "memory"
#                      },
#                      {
#                         "prefetch": false,
#                         "mem_type_64": false,
#                         "bar": 6,
#                         "size": 65536,
#                         "address": -1,
#                         "type": "memory"
#                      }
#                   ]
#                },
#                {
#                   "bus": 0,
#                   "qdev_id": "",
#                   "irq": 11,
#                   "slot": 4,
#                   "class_info": {
#                      "class": 1280,
#                      "desc": "RAM controller"
#                   },
#                   "id": {
#                      "device": 6900,
#                      "vendor": 4098
#                   },
#                   "function": 0,
#                   "regions": [
#                      {
#                         "bar": 0,
#                         "size": 32,
#                         "address": 49280,
#                         "type": "io"
#                      }
#                   ]
#                }
#             ]
#          }
#       ]
#    }
#
# Note: This example has been shortened as the real response is too long.
#
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##
{ 'command': 'query-pci', 'returns': ['PciInfo'] }

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##
# @quit:
#
# This command will cause the QEMU process to exit gracefully.  While every
# attempt is made to send the QMP response before terminating, this is not
# guaranteed.  When using this interface, a premature EOF would not be
# unexpected.
#
# Since: 0.14.0
2237 2238 2239 2240 2241
#
# Example:
#
# -> { "execute": "quit" }
# <- { "return": {} }
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##
{ 'command': 'quit' }
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##
# @stop:
#
# Stop all guest VCPU execution.
#
# Since:  0.14.0
#
# Notes:  This function will succeed even if the guest is already in the stopped
2253 2254 2255
#         state.  In "inmigrate" state, it will ensure that the guest
#         remains paused once migration finishes, as if the -S option was
#         passed on the command line.
2256 2257 2258 2259 2260 2261
#
# Example:
#
# -> { "execute": "stop" }
# <- { "return": {} }
#
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##
{ 'command': 'stop' }
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##
# @system_reset:
#
# Performs a hard reset of a guest.
#
# Since: 0.14.0
2271 2272 2273 2274 2275 2276
#
# Example:
#
# -> { "execute": "system_reset" }
# <- { "return": {} }
#
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##
{ 'command': 'system_reset' }
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##
# @system_powerdown:
#
# Requests that a guest perform a powerdown operation.
#
# Since: 0.14.0
#
# Notes: A guest may or may not respond to this command.  This command
#        returning does not indicate that a guest has accepted the request or
#        that it has shut down.  Many guests will respond to this command by
#        prompting the user in some way.
2291 2292 2293 2294 2295
# Example:
#
# -> { "execute": "system_powerdown" }
# <- { "return": {} }
#
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##
{ 'command': 'system_powerdown' }
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##
# @cpu:
#
# This command is a nop that is only provided for the purposes of compatibility.
#
# Since: 0.14.0
#
# Notes: Do not use this command.
##
{ 'command': 'cpu', 'data': {'index': 'int'} }
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##
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# @cpu-add:
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#
# Adds CPU with specified ID
#
# @id: ID of CPU to be created, valid values [0..max_cpus)
#
# Returns: Nothing on success
#
2319
# Since: 1.5
2320 2321 2322 2323 2324 2325
#
# Example:
#
# -> { "execute": "cpu-add", "arguments": { "id": 2 } }
# <- { "return": {} }
#
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##
{ 'command': 'cpu-add', 'data': {'id': 'int'} }

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##
# @memsave:
#
# Save a portion of guest memory to a file.
#
# @val: the virtual address of the guest to start from
#
# @size: the size of memory region to save
#
# @filename: the file to save the memory to as binary data
#
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# @cpu-index: the index of the virtual CPU to use for translating the
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#                       virtual address (defaults to CPU 0)
#
# Returns: Nothing on success
#
# Since: 0.14.0
#
# Notes: Errors were not reliably returned until 1.1
2348 2349 2350 2351 2352 2353 2354 2355 2356
#
# Example:
#
# -> { "execute": "memsave",
#      "arguments": { "val": 10,
#                     "size": 100,
#                     "filename": "/tmp/virtual-mem-dump" } }
# <- { "return": {} }
#
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##
{ 'command': 'memsave',
  'data': {'val': 'int', 'size': 'int', 'filename': 'str', '*cpu-index': 'int'} }
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##
# @pmemsave:
#
# Save a portion of guest physical memory to a file.
#
# @val: the physical address of the guest to start from
#
# @size: the size of memory region to save
#
# @filename: the file to save the memory to as binary data
#
# Returns: Nothing on success
#
# Since: 0.14.0
#
# Notes: Errors were not reliably returned until 1.1
2377 2378 2379 2380 2381 2382 2383 2384 2385
#
# Example:
#
# -> { "execute": "pmemsave",
#      "arguments": { "val": 10,
#                     "size": 100,
#                     "filename": "/tmp/physical-mem-dump" } }
# <- { "return": {} }
#
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##
{ 'command': 'pmemsave',
  'data': {'val': 'int', 'size': 'int', 'filename': 'str'} }
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##
# @cont:
#
# Resume guest VCPU execution.
#
# Since:  0.14.0
#
# Returns:  If successful, nothing
#           If QEMU was started with an encrypted block device and a key has
#              not yet been set, DeviceEncrypted.
#
2401 2402 2403 2404 2405
# Notes:  This command will succeed if the guest is currently running.  It
#         will also succeed if the guest is in the "inmigrate" state; in
#         this case, the effect of the command is to make sure the guest
#         starts once migration finishes, removing the effect of the -S
#         command line option if it was passed.
2406 2407 2408 2409 2410 2411
#
# Example:
#
# -> { "execute": "cont" }
# <- { "return": {} }
#
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##
{ 'command': 'cont' }

2415 2416 2417 2418 2419 2420 2421 2422
##
# @system_wakeup:
#
# Wakeup guest from suspend.  Does nothing in case the guest isn't suspended.
#
# Since:  1.1
#
# Returns:  nothing.
2423 2424 2425 2426 2427 2428
#
# Example:
#
# -> { "execute": "system_wakeup" }
# <- { "return": {} }
#
2429 2430 2431
##
{ 'command': 'system_wakeup' }

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##
# @inject-nmi:
#
2435
# Injects a Non-Maskable Interrupt into the default CPU (x86/s390) or all CPUs (ppc64).
2436
# The command fails when the guest doesn't support injecting.
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#
# Returns:  If successful, nothing
#
# Since:  0.14.0
#
2442
# Note: prior to 2.1, this command was only supported for x86 and s390 VMs
2443 2444 2445 2446 2447 2448
#
# Example:
#
# -> { "execute": "inject-nmi" }
# <- { "return": {} }
#
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##
{ 'command': 'inject-nmi' }
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##
# @set_link:
#
# Sets the link status of a virtual network adapter.
#
# @name: the device name of the virtual network adapter
#
# @up: true to set the link status to be up
#
# Returns: Nothing on success
#          If @name is not a valid network device, DeviceNotFound
#
# Since: 0.14.0
#
# Notes: Not all network adapters support setting link status.  This command
#        will succeed even if the network adapter does not support link status
#        notification.
2469 2470 2471 2472 2473 2474 2475
#
# Example:
#
# -> { "execute": "set_link",
#      "arguments": { "name": "e1000.0", "up": false } }
# <- { "return": {} }
#
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##
{ 'command': 'set_link', 'data': {'name': 'str', 'up': 'bool'} }
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##
# @balloon:
#
# Request the balloon driver to change its balloon size.
#
# @value: the target size of the balloon in bytes
#
# Returns: Nothing on success
#          If the balloon driver is enabled but not functional because the KVM
#            kernel module cannot support it, KvmMissingCap
#          If no balloon device is present, DeviceNotActive
#
# Notes: This command just issues a request to the guest.  When it returns,
#        the balloon size may not have changed.  A guest can change the balloon
#        size independent of this command.
#
# Since: 0.14.0
2496 2497 2498 2499 2500 2501
#
# Example:
#
# -> { "execute": "balloon", "arguments": { "value": 536870912 } }
# <- { "return": {} }
#
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##
{ 'command': 'balloon', 'data': {'value': 'int'} }
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2505
##
2506
# @Abort:
2507 2508 2509 2510
#
# This action can be used to test transaction failure.
#
# Since: 1.6
2511
##
2512
{ 'struct': 'Abort',
2513 2514
  'data': { } }

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##
2516
# @ActionCompletionMode:
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#
# An enumeration of Transactional completion modes.
#
# @individual: Do not attempt to cancel any other Actions if any Actions fail
#              after the Transaction request succeeds. All Actions that
#              can complete successfully will do so without waiting on others.
#              This is the default.
#
# @grouped: If any Action fails after the Transaction succeeds, cancel all
#           Actions. Actions do not complete until all Actions are ready to
#           complete. May be rejected by Actions that do not support this
#           completion mode.
#
# Since: 2.5
##
{ 'enum': 'ActionCompletionMode',
  'data': [ 'individual', 'grouped' ] }

2535
##
2536
# @TransactionAction:
2537
#
2538
# A discriminated record of operations that can be performed with
2539
# @transaction. Action @type can be:
2540
#
2541 2542 2543 2544 2545 2546 2547 2548
# - @abort: since 1.6
# - @block-dirty-bitmap-add: since 2.5
# - @block-dirty-bitmap-clear: since 2.5
# - @blockdev-backup: since 2.3
# - @blockdev-snapshot: since 2.5
# - @blockdev-snapshot-internal-sync: since 1.7
# - @blockdev-snapshot-sync: since 1.1
# - @drive-backup: since 1.6
2549
#
2550
# Since: 1.1
2551
##
2552
{ 'union': 'TransactionAction',
2553
  'data': {
2554
       'abort': 'Abort',
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       'block-dirty-bitmap-add': 'BlockDirtyBitmapAdd',
2556 2557 2558 2559 2560 2561
       'block-dirty-bitmap-clear': 'BlockDirtyBitmap',
       'blockdev-backup': 'BlockdevBackup',
       'blockdev-snapshot': 'BlockdevSnapshot',
       'blockdev-snapshot-internal-sync': 'BlockdevSnapshotInternal',
       'blockdev-snapshot-sync': 'BlockdevSnapshotSync',
       'drive-backup': 'DriveBackup'
2562
   } }
2563

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##
2565
# @TransactionProperties:
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#
# Optional arguments to modify the behavior of a Transaction.
#
2569
# @completion-mode: Controls how jobs launched asynchronously by
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#                   Actions will complete or fail as a group.
#                   See @ActionCompletionMode for details.
#
# Since: 2.5
##
{ 'struct': 'TransactionProperties',
  'data': {
       '*completion-mode': 'ActionCompletionMode'
  }
}

2581
##
2582
# @transaction:
2583
#
2584 2585 2586
# Executes a number of transactionable QMP commands atomically. If any
# operation fails, then the entire set of actions will be abandoned and the
# appropriate error returned.
2587
#
2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609
# For external snapshots, the dictionary contains the device, the file to use for
# the new snapshot, and the format.  The default format, if not specified, is
# qcow2.
#
# Each new snapshot defaults to being created by QEMU (wiping any
# contents if the file already exists), but it is also possible to reuse
# an externally-created file.  In the latter case, you should ensure that
# the new image file has the same contents as the current one; QEMU cannot
# perform any meaningful check.  Typically this is achieved by using the
# current image file as the backing file for the new image.
#
# On failure, the original disks pre-snapshot attempt will be used.
#
# For internal snapshots, the dictionary contains the device and the snapshot's
# name.  If an internal snapshot matching name already exists, the request will
# be rejected.  Only some image formats support it, for example, qcow2, rbd,
# and sheepdog.
#
# On failure, qemu will try delete the newly created internal snapshot in the
# transaction.  When an I/O error occurs during deletion, the user needs to fix
# it later with qemu-img or other command.
#
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# @actions: List of @TransactionAction;
#           information needed for the respective operations.
#
2613
# @properties: structure of additional options to control the
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2614 2615
#              execution of the transaction. See @TransactionProperties
#              for additional detail.
2616 2617
#
# Returns: nothing on success
2618
#
2619
#          Errors depend on the operations of the transaction
2620
#
2621 2622
# Note: The transaction aborts on the first failure.  Therefore, there will be
# information on only one failed operation returned in an error condition, and
2623 2624
# subsequent actions will not have been attempted.
#
2625
# Since: 1.1
2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647
#
# Example:
#
# -> { "execute": "transaction",
#      "arguments": { "actions": [
#          { "type": "blockdev-snapshot-sync", "data" : { "device": "ide-hd0",
#                                      "snapshot-file": "/some/place/my-image",
#                                      "format": "qcow2" } },
#          { "type": "blockdev-snapshot-sync", "data" : { "node-name": "myfile",
#                                      "snapshot-file": "/some/place/my-image2",
#                                      "snapshot-node-name": "node3432",
#                                      "mode": "existing",
#                                      "format": "qcow2" } },
#          { "type": "blockdev-snapshot-sync", "data" : { "device": "ide-hd1",
#                                      "snapshot-file": "/some/place/my-image2",
#                                      "mode": "existing",
#                                      "format": "qcow2" } },
#          { "type": "blockdev-snapshot-internal-sync", "data" : {
#                                      "device": "ide-hd2",
#                                      "name": "snapshot0" } } ] } }
# <- { "return": {} }
#
2648
##
2649
{ 'command': 'transaction',
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  'data': { 'actions': [ 'TransactionAction' ],
            '*properties': 'TransactionProperties'
          }
}
2654

2655 2656 2657 2658 2659 2660 2661
##
# @human-monitor-command:
#
# Execute a command on the human monitor and return the output.
#
# @command-line: the command to execute in the human monitor
#
2662
# @cpu-index: The CPU to use for commands that require an implicit CPU
2663 2664 2665
#
# Returns: the output of the command as a string
#
2666
# Since: 0.14.0
2667
#
2668
# Notes: This command only exists as a stop-gap.  Its use is highly
2669 2670 2671 2672 2673
#        discouraged.  The semantics of this command are not
#        guaranteed: this means that command names, arguments and
#        responses can change or be removed at ANY time.  Applications
#        that rely on long term stability guarantees should NOT
#        use this command.
2674
#
2675
#        Known limitations:
2676
#
2677
#        * This command is stateless, this means that commands that depend
2678
#          on state information (such as getfd) might not work
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#
2680 2681
#        * Commands that prompt the user for data (eg. 'cont' when the block
#          device is encrypted) don't currently work
2682 2683 2684 2685 2686 2687 2688
#
# Example:
#
# -> { "execute": "human-monitor-command",
#      "arguments": { "command-line": "info kvm" } }
# <- { "return": "kvm support: enabled\r\n" }
#
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Paolo Bonzini 已提交
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##
2690 2691 2692
{ 'command': 'human-monitor-command',
  'data': {'command-line': 'str', '*cpu-index': 'int'},
  'returns': 'str' }
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Paolo Bonzini 已提交
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##
2695
# @migrate_cancel:
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#
# Cancel the current executing migration process.
#
# Returns: nothing on success
#
# Notes: This command succeeds even if there is no migration process running.
#
# Since: 0.14.0
2704 2705 2706 2707 2708 2709
#
# Example:
#
# -> { "execute": "migrate_cancel" }
# <- { "return": {} }
#
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Luiz Capitulino 已提交
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##
{ 'command': 'migrate_cancel' }
2712 2713

##
2714
# @migrate_set_downtime:
2715 2716 2717 2718 2719 2720 2721
#
# Set maximum tolerated downtime for migration.
#
# @value: maximum downtime in seconds
#
# Returns: nothing on success
#
2722 2723
# Notes: This command is deprecated in favor of 'migrate-set-parameters'
#
2724
# Since: 0.14.0
2725 2726 2727 2728 2729 2730
#
# Example:
#
# -> { "execute": "migrate_set_downtime", "arguments": { "value": 0.1 } }
# <- { "return": {} }
#
2731 2732
##
{ 'command': 'migrate_set_downtime', 'data': {'value': 'number'} }
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2733 2734

##
2735
# @migrate_set_speed:
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#
# Set maximum speed for migration.
#
2739
# @value: maximum speed in bytes per second.
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#
# Returns: nothing on success
#
2743
# Notes: This command is deprecated in favor of 'migrate-set-parameters'
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#
# Since: 0.14.0
2746 2747 2748 2749 2750 2751
#
# Example:
#
# -> { "execute": "migrate_set_speed", "arguments": { "value": 1024 } }
# <- { "return": {} }
#
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Luiz Capitulino 已提交
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##
{ 'command': 'migrate_set_speed', 'data': {'value': 'int'} }
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2755
##
2756
# @migrate-set-cache-size:
2757
#
2758
# Set cache size to be used by XBZRLE migration
2759 2760 2761 2762 2763 2764 2765 2766 2767
#
# @value: cache size in bytes
#
# The size will be rounded down to the nearest power of 2.
# The cache size can be modified before and during ongoing migration
#
# Returns: nothing on success
#
# Since: 1.2
2768 2769 2770 2771 2772 2773 2774
#
# Example:
#
# -> { "execute": "migrate-set-cache-size",
#      "arguments": { "value": 536870912 } }
# <- { "return": {} }
#
2775 2776 2777 2778
##
{ 'command': 'migrate-set-cache-size', 'data': {'value': 'int'} }

##
2779
# @query-migrate-cache-size:
2780
#
2781
# Query migration XBZRLE cache size
2782 2783 2784 2785
#
# Returns: XBZRLE cache size in bytes
#
# Since: 1.2
2786 2787 2788 2789 2790 2791
#
# Example:
#
# -> { "execute": "query-migrate-cache-size" }
# <- { "return": 67108864 }
#
2792 2793 2794
##
{ 'command': 'query-migrate-cache-size', 'returns': 'int' }

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Anthony Liguori 已提交
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##
2796
# @ObjectPropertyInfo:
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#
# @name: the name of the property
#
# @type: the type of the property.  This will typically come in one of four
#        forms:
#
#        1) A primitive type such as 'u8', 'u16', 'bool', 'str', or 'double'.
#           These types are mapped to the appropriate JSON type.
#
2806
#        2) A child type in the form 'child<subtype>' where subtype is a qdev
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#           device type name.  Child properties create the composition tree.
#
2809
#        3) A link type in the form 'link<subtype>' where subtype is a qdev
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#           device type name.  Link properties form the device model graph.
#
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# Since: 1.2
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2813
##
2814
{ 'struct': 'ObjectPropertyInfo',
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  'data': { 'name': 'str', 'type': 'str' } }

##
# @qom-list:
#
2820
# This command will list any properties of a object given a path in the object
A
Anthony Liguori 已提交
2821 2822
# model.
#
2823
# @path: the path within the object model.  See @qom-get for a description of
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Anthony Liguori 已提交
2824 2825
#        this parameter.
#
2826 2827
# Returns: a list of @ObjectPropertyInfo that describe the properties of the
#          object.
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#
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# Since: 1.2
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##
{ 'command': 'qom-list',
  'data': { 'path': 'str' },
2833
  'returns': [ 'ObjectPropertyInfo' ] }
2834 2835 2836 2837

##
# @qom-get:
#
2838
# This command will get a property from a object model path and return the
2839 2840
# value.
#
2841
# @path: The path within the object model.  There are two forms of supported
2842 2843
#        paths--absolute and partial paths.
#
2844
#        Absolute paths are derived from the root object and can follow child<>
2845 2846 2847 2848 2849 2850
#        or link<> properties.  Since they can follow link<> properties, they
#        can be arbitrarily long.  Absolute paths look like absolute filenames
#        and are prefixed  with a leading slash.
#
#        Partial paths look like relative filenames.  They do not begin
#        with a prefix.  The matching rules for partial paths are subtle but
2851
#        designed to make specifying objects easy.  At each level of the
2852 2853 2854 2855 2856 2857 2858 2859
#        composition tree, the partial path is matched as an absolute path.
#        The first match is not returned.  At least two matches are searched
#        for.  A successful result is only returned if only one match is
#        found.  If more than one match is found, a flag is return to
#        indicate that the match was ambiguous.
#
# @property: The property name to read
#
2860 2861 2862 2863
# Returns: The property value.  The type depends on the property
#          type. child<> and link<> properties are returned as #str
#          pathnames.  All integer property types (u8, u16, etc) are
#          returned as #int.
2864
#
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# Since: 1.2
2866 2867 2868
##
{ 'command': 'qom-get',
  'data': { 'path': 'str', 'property': 'str' },
2869
  'returns': 'any' }
2870 2871 2872 2873

##
# @qom-set:
#
2874
# This command will set a property from a object model path.
2875 2876 2877 2878 2879 2880 2881 2882
#
# @path: see @qom-get for a description of this parameter
#
# @property: the property name to set
#
# @value: a value who's type is appropriate for the property type.  See @qom-get
#         for a description of type mapping.
#
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# Since: 1.2
2884 2885
##
{ 'command': 'qom-set',
2886
  'data': { 'path': 'str', 'property': 'str', 'value': 'any' } }
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Luiz Capitulino 已提交
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##
# @set_password:
#
# Sets the password of a remote display session.
#
# @protocol: `vnc' to modify the VNC server password
#            `spice' to modify the Spice server password
#
# @password: the new password
#
2898
# @connected: how to handle existing clients when changing the
2899
#                       password.  If nothing is specified, defaults to `keep'
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#                       `fail' to fail the command if clients are connected
#                       `disconnect' to disconnect existing clients
#                       `keep' to maintain existing clients
#
# Returns: Nothing on success
#          If Spice is not enabled, DeviceNotFound
#
# Since: 0.14.0
2908 2909 2910 2911 2912 2913 2914
#
# Example:
#
# -> { "execute": "set_password", "arguments": { "protocol": "vnc",
#                                                "password": "secret" } }
# <- { "return": {} }
#
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2915 2916 2917
##
{ 'command': 'set_password',
  'data': {'protocol': 'str', 'password': 'str', '*connected': 'str'} }
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2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940

##
# @expire_password:
#
# Expire the password of a remote display server.
#
# @protocol: the name of the remote display protocol `vnc' or `spice'
#
# @time: when to expire the password.
#        `now' to expire the password immediately
#        `never' to cancel password expiration
#        `+INT' where INT is the number of seconds from now (integer)
#        `INT' where INT is the absolute time in seconds
#
# Returns: Nothing on success
#          If @protocol is `spice' and Spice is not active, DeviceNotFound
#
# Since: 0.14.0
#
# Notes: Time is relative to the server and currently there is no way to
#        coordinate server time with client time.  It is not recommended to
#        use the absolute time version of the @time parameter unless you're
#        sure you are on the same machine as the QEMU instance.
2941 2942 2943 2944 2945 2946 2947
#
# Example:
#
# -> { "execute": "expire_password", "arguments": { "protocol": "vnc",
#                                                   "time": "+60" } }
# <- { "return": {} }
#
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2948 2949
##
{ 'command': 'expire_password', 'data': {'protocol': 'str', 'time': 'str'} }
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2951 2952 2953 2954 2955
##
# @change-vnc-password:
#
# Change the VNC server password.
#
2956
# @password:  the new password to use with VNC authentication
2957 2958 2959 2960 2961 2962 2963
#
# Since: 1.1
#
# Notes:  An empty password in this command will set the password to the empty
#         string.  Existing clients are unaffected by executing this command.
##
{ 'command': 'change-vnc-password', 'data': {'password': 'str'} }
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Luiz Capitulino 已提交
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##
# @change:
#
# This command is multiple commands multiplexed together.
#
# @device: This is normally the name of a block device but it may also be 'vnc'.
#          when it's 'vnc', then sub command depends on @target
#
# @target: If @device is a block device, then this is the new filename.
#          If @device is 'vnc', then if the value 'password' selects the vnc
#          change password command.   Otherwise, this specifies a new server URI
#          address to listen to for VNC connections.
#
# @arg:    If @device is a block device, then this is an optional format to open
#          the device with.
#          If @device is 'vnc' and @target is 'password', this is the new VNC
#          password to set.  If this argument is an empty string, then no future
#          logins will be allowed.
#
# Returns: Nothing on success.
#          If @device is not a valid block device, DeviceNotFound
#          If the new block device is encrypted, DeviceEncrypted.  Note that
#          if this error is returned, the device has been opened successfully
#          and an additional call to @block_passwd is required to set the
#          device's password.  The behavior of reads and writes to the block
#          device between when these calls are executed is undefined.
#
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# Notes:  This interface is deprecated, and it is strongly recommended that you
#         avoid using it.  For changing block devices, use
#         blockdev-change-medium; for changing VNC parameters, use
#         change-vnc-password.
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#
# Since: 0.14.0
2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013 3014
#
# Example:
#
# 1. Change a removable medium
#
# -> { "execute": "change",
#      "arguments": { "device": "ide1-cd0",
#                     "target": "/srv/images/Fedora-12-x86_64-DVD.iso" } }
# <- { "return": {} }
#
# 2. Change VNC password
#
# -> { "execute": "change",
#      "arguments": { "device": "vnc", "target": "password",
#                     "arg": "foobar1" } }
# <- { "return": {} }
#
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3015 3016 3017
##
{ 'command': 'change',
  'data': {'device': 'str', 'target': 'str', '*arg': 'str'} }
3018

3019 3020 3021 3022 3023 3024 3025 3026 3027 3028 3029
##
# @ObjectTypeInfo:
#
# This structure describes a search result from @qom-list-types
#
# @name: the type name found in the search
#
# Since: 1.1
#
# Notes: This command is experimental and may change syntax in future releases.
##
3030
{ 'struct': 'ObjectTypeInfo',
3031 3032 3033 3034 3035 3036 3037 3038 3039 3040 3041 3042 3043 3044 3045 3046 3047 3048
  'data': { 'name': 'str' } }

##
# @qom-list-types:
#
# This command will return a list of types given search parameters
#
# @implements: if specified, only return types that implement this type name
#
# @abstract: if true, include abstract types in the results
#
# Returns: a list of @ObjectTypeInfo or an empty list if no results are found
#
# Since: 1.1
##
{ 'command': 'qom-list-types',
  'data': { '*implements': 'str', '*abstract': 'bool' },
  'returns': [ 'ObjectTypeInfo' ] }
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3050 3051 3052 3053 3054 3055 3056
##
# @DevicePropertyInfo:
#
# Information about device properties.
#
# @name: the name of the property
# @type: the typename of the property
3057
# @description: if specified, the description of the property.
3058
#               (since 2.2)
3059 3060 3061
#
# Since: 1.2
##
3062
{ 'struct': 'DevicePropertyInfo',
3063
  'data': { 'name': 'str', 'type': 'str', '*description': 'str' } }
3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079

##
# @device-list-properties:
#
# List properties associated with a device.
#
# @typename: the type name of a device
#
# Returns: a list of DevicePropertyInfo describing a devices properties
#
# Since: 1.2
##
{ 'command': 'device-list-properties',
  'data': { 'typename': 'str'},
  'returns': [ 'DevicePropertyInfo' ] }

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##
3081
# @migrate:
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#
# Migrates the current running guest to another Virtual Machine.
#
# @uri: the Uniform Resource Identifier of the destination VM
#
3087
# @blk: do block migration (full disk copy)
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#
3089
# @inc: incremental disk copy migration
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#
# @detach: this argument exists only for compatibility reasons and
#          is ignored by QEMU
#
# Returns: nothing on success
#
# Since: 0.14.0
3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112
#
# Notes:
#
# 1. The 'query-migrate' command should be used to check migration's progress
#    and final result (this information is provided by the 'status' member)
#
# 2. All boolean arguments default to false
#
# 3. The user Monitor's "detach" argument is invalid in QMP and should not
#    be used
#
# Example:
#
# -> { "execute": "migrate", "arguments": { "uri": "tcp:0:4446" } }
# <- { "return": {} }
#
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##
{ 'command': 'migrate',
  'data': {'uri': 'str', '*blk': 'bool', '*inc': 'bool', '*detach': 'bool' } }
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3117
##
3118
# @migrate-incoming:
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#
# Start an incoming migration, the qemu must have been started
# with -incoming defer
#
# @uri: The Uniform Resource Identifier identifying the source or
#       address to listen on
#
# Returns: nothing on success
#
# Since: 2.3
3129 3130 3131 3132 3133 3134 3135 3136 3137 3138 3139 3140 3141 3142 3143 3144 3145 3146
#
# Notes:
#
# 1. It's a bad idea to use a string for the uri, but it needs to stay
#    compatible with -incoming and the format of the uri is already exposed
#    above libvirt.
#
# 2. QEMU must be started with -incoming defer to allow migrate-incoming to
#    be used.
#
# 3. The uri format is the same as for -incoming
#
# Example:
#
# -> { "execute": "migrate-incoming",
#      "arguments": { "uri": "tcp::4446" } }
# <- { "return": {} }
#
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##
{ 'command': 'migrate-incoming', 'data': {'uri': 'str' } }

3150
##
3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3162
# @xen-save-devices-state:
#
# Save the state of all devices to file. The RAM and the block devices
# of the VM are not saved by this command.
#
# @filename: the file to save the state of the devices to as binary
# data. See xen-save-devices-state.txt for a description of the binary
# format.
#
# Returns: Nothing on success
#
# Since: 1.1
3163 3164 3165 3166 3167 3168 3169
#
# Example:
#
# -> { "execute": "xen-save-devices-state",
#      "arguments": { "filename": "/tmp/save" } }
# <- { "return": {} }
#
3170 3171
##
{ 'command': 'xen-save-devices-state', 'data': {'filename': 'str'} }
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3173
##
3174
# @xen-set-global-dirty-log:
3175 3176 3177 3178 3179 3180 3181 3182
#
# Enable or disable the global dirty log mode.
#
# @enable: true to enable, false to disable.
#
# Returns: nothing
#
# Since: 1.3
3183 3184 3185 3186 3187 3188 3189
#
# Example:
#
# -> { "execute": "xen-set-global-dirty-log",
#      "arguments": { "enable": true } }
# <- { "return": {} }
#
3190 3191 3192
##
{ 'command': 'xen-set-global-dirty-log', 'data': { 'enable': 'bool' } }

3193 3194 3195 3196 3197
##
# @device_add:
#
# @driver: the name of the new device's driver
#
3198
# @bus: the device's parent bus (device tree path)
3199
#
3200
# @id: the device's ID, must be unique
3201 3202 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221
#
# Additional arguments depend on the type.
#
# Add a device.
#
# Notes:
# 1. For detailed information about this command, please refer to the
#    'docs/qdev-device-use.txt' file.
#
# 2. It's possible to list device properties by running QEMU with the
#    "-device DEVICE,help" command-line argument, where DEVICE is the
#    device's name
#
# Example:
#
# -> { "execute": "device_add",
#      "arguments": { "driver": "e1000", "id": "net1",
#                     "bus": "pci.0",
#                     "mac": "52:54:00:12:34:56" } }
# <- { "return": {} }
#
3222
# TODO: This command effectively bypasses QAPI completely due to its
3223 3224 3225 3226 3227 3228 3229
# "additional arguments" business.  It shouldn't have been added to
# the schema in this form.  It should be qapified properly, or
# replaced by a properly qapified command.
#
# Since: 0.13
##
{ 'command': 'device_add',
3230
  'data': {'driver': 'str', '*bus': 'str', '*id': 'str'},
3231 3232
  'gen': false } # so we can get the additional arguments

L
Luiz Capitulino 已提交
3233 3234 3235 3236 3237
##
# @device_del:
#
# Remove a device from a guest
#
3238
# @id: the device's ID or QOM path
L
Luiz Capitulino 已提交
3239 3240 3241 3242 3243 3244 3245
#
# Returns: Nothing on success
#          If @id is not a valid device, DeviceNotFound
#
# Notes: When this command completes, the device may not be removed from the
#        guest.  Hot removal is an operation that requires guest cooperation.
#        This command merely requests that the guest begin the hot removal
M
Michael S. Tsirkin 已提交
3246 3247 3248
#        process.  Completion of the device removal process is signaled with a
#        DEVICE_DELETED event. Guest reset will automatically complete removal
#        for all devices.
L
Luiz Capitulino 已提交
3249 3250
#
# Since: 0.14.0
3251 3252 3253 3254 3255 3256 3257 3258 3259 3260 3261
#
# Example:
#
# -> { "execute": "device_del",
#      "arguments": { "id": "net1" } }
# <- { "return": {} }
#
# -> { "execute": "device_del",
#      "arguments": { "id": "/machine/peripheral-anon/device[0]" } }
# <- { "return": {} }
#
L
Luiz Capitulino 已提交
3262 3263
##
{ 'command': 'device_del', 'data': {'id': 'str'} }
3264

3265 3266 3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280 3281 3282
##
# @DumpGuestMemoryFormat:
#
# An enumeration of guest-memory-dump's format.
#
# @elf: elf format
#
# @kdump-zlib: kdump-compressed format with zlib-compressed
#
# @kdump-lzo: kdump-compressed format with lzo-compressed
#
# @kdump-snappy: kdump-compressed format with snappy-compressed
#
# Since: 2.0
##
{ 'enum': 'DumpGuestMemoryFormat',
  'data': [ 'elf', 'kdump-zlib', 'kdump-lzo', 'kdump-snappy' ] }

3283
##
3284
# @dump-guest-memory:
3285 3286
#
# Dump guest's memory to vmcore. It is a synchronous operation that can take
3287
# very long depending on the amount of guest memory.
3288 3289
#
# @paging: if true, do paging to get guest's memory mapping. This allows
3290
#          using gdb to process the core file.
3291
#
3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302
#          IMPORTANT: this option can make QEMU allocate several gigabytes
#                     of RAM. This can happen for a large guest, or a
#                     malicious guest pretending to be large.
#
#          Also, paging=true has the following limitations:
#
#             1. The guest may be in a catastrophic state or can have corrupted
#                memory, which cannot be trusted
#             2. The guest can be in real-mode even if paging is enabled. For
#                example, the guest uses ACPI to sleep, and ACPI sleep state
#                goes in real-mode
3303
#             3. Currently only supported on i386 and x86_64.
3304
#
3305
# @protocol: the filename or file descriptor of the vmcore. The supported
3306
#            protocols are:
3307
#
3308 3309 3310 3311
#            1. file: the protocol starts with "file:", and the following
#               string is the file's path.
#            2. fd: the protocol starts with "fd:", and the following string
#               is the fd's name.
3312
#
3313
# @detach: if true, QMP will return immediately rather than
P
Peter Xu 已提交
3314 3315
#          waiting for the dump to finish. The user can track progress
#          using "query-dump". (since 2.6).
3316
#
3317
# @begin: if specified, the starting physical address.
3318
#
3319
# @length: if specified, the memory size, in bytes. If you don't
3320 3321
#          want to dump all guest's memory, please specify the start @begin
#          and @length
3322
#
3323
# @format: if specified, the format of guest memory dump. But non-elf
3324 3325 3326 3327
#          format is conflict with paging and filter, ie. @paging, @begin and
#          @length is not allowed to be specified with non-elf @format at the
#          same time (since 2.0)
#
3328 3329
# Note: All boolean arguments default to false
#
3330 3331 3332
# Returns: nothing on success
#
# Since: 1.2
3333 3334 3335 3336 3337 3338 3339
#
# Example:
#
# -> { "execute": "dump-guest-memory",
#      "arguments": { "protocol": "fd:dump" } }
# <- { "return": {} }
#
3340 3341
##
{ 'command': 'dump-guest-memory',
3342 3343 3344
  'data': { 'paging': 'bool', 'protocol': 'str', '*detach': 'bool',
            '*begin': 'int', '*length': 'int',
            '*format': 'DumpGuestMemoryFormat'} }
3345

3346
##
3347
# @DumpStatus:
3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358
#
# Describe the status of a long-running background guest memory dump.
#
# @none: no dump-guest-memory has started yet.
#
# @active: there is one dump running in background.
#
# @completed: the last dump has finished successfully.
#
# @failed: the last dump has failed.
#
3359
# Since: 2.6
3360 3361 3362 3363
##
{ 'enum': 'DumpStatus',
  'data': [ 'none', 'active', 'completed', 'failed' ] }

P
Peter Xu 已提交
3364
##
3365
# @DumpQueryResult:
P
Peter Xu 已提交
3366 3367 3368 3369 3370 3371 3372 3373 3374
#
# The result format for 'query-dump'.
#
# @status: enum of @DumpStatus, which shows current dump status
#
# @completed: bytes written in latest dump (uncompressed)
#
# @total: total bytes to be written in latest dump (uncompressed)
#
3375
# Since: 2.6
P
Peter Xu 已提交
3376 3377 3378 3379 3380 3381 3382
##
{ 'struct': 'DumpQueryResult',
  'data': { 'status': 'DumpStatus',
            'completed': 'int',
            'total': 'int' } }

##
3383
# @query-dump:
P
Peter Xu 已提交
3384 3385 3386 3387 3388 3389
#
# Query latest dump status.
#
# Returns: A @DumpStatus object showing the dump status.
#
# Since: 2.6
3390 3391 3392 3393 3394 3395 3396
#
# Example:
#
# -> { "execute": "query-dump" }
# <- { "return": { "status": "active", "completed": 1024000,
#                  "total": 2048000 } }
#
P
Peter Xu 已提交
3397 3398 3399
##
{ 'command': 'query-dump', 'returns': 'DumpQueryResult' }

3400 3401 3402 3403 3404 3405 3406
##
# @DumpGuestMemoryCapability:
#
# A list of the available formats for dump-guest-memory
#
# Since: 2.0
##
3407
{ 'struct': 'DumpGuestMemoryCapability',
3408 3409 3410 3411 3412 3413 3414 3415 3416 3417 3418 3419
  'data': {
      'formats': ['DumpGuestMemoryFormat'] } }

##
# @query-dump-guest-memory-capability:
#
# Returns the available formats for dump-guest-memory
#
# Returns:  A @DumpGuestMemoryCapability object listing available formats for
#           dump-guest-memory
#
# Since: 2.0
3420 3421 3422 3423 3424 3425 3426
#
# Example:
#
# -> { "execute": "query-dump-guest-memory-capability" }
# <- { "return": { "formats":
#                  ["elf", "kdump-zlib", "kdump-lzo", "kdump-snappy"] }
#
3427 3428 3429
##
{ 'command': 'query-dump-guest-memory-capability',
  'returns': 'DumpGuestMemoryCapability' }
3430

3431
##
3432
# @dump-skeys:
3433 3434 3435 3436 3437 3438 3439 3440
#
# Dump guest's storage keys
#
# @filename: the path to the file to dump to
#
# This command is only supported on s390 architecture.
#
# Since: 2.5
3441 3442 3443 3444 3445 3446 3447
#
# Example:
#
# -> { "execute": "dump-skeys",
#      "arguments": { "filename": "/tmp/skeys" } }
# <- { "return": {} }
#
3448 3449 3450 3451
##
{ 'command': 'dump-skeys',
  'data': { 'filename': 'str' } }

L
Luiz Capitulino 已提交
3452 3453 3454 3455 3456 3457 3458 3459 3460 3461
##
# @netdev_add:
#
# Add a network backend.
#
# @type: the type of network backend.  Current valid values are 'user', 'tap',
#        'vde', 'socket', 'dump' and 'bridge'
#
# @id: the name of the new network backend
#
3462
# Additional arguments depend on the type.
L
Luiz Capitulino 已提交
3463
#
3464
# TODO: This command effectively bypasses QAPI completely due to its
3465 3466 3467
# "additional arguments" business.  It shouldn't have been added to
# the schema in this form.  It should be qapified properly, or
# replaced by a properly qapified command.
L
Luiz Capitulino 已提交
3468 3469 3470 3471 3472
#
# Since: 0.14.0
#
# Returns: Nothing on success
#          If @type is not a valid network backend, DeviceNotFound
3473 3474 3475 3476 3477 3478 3479 3480
#
# Example:
#
# -> { "execute": "netdev_add",
#      "arguments": { "type": "user", "id": "netdev1",
#                     "dnssearch": "example.org" } }
# <- { "return": {} }
#
L
Luiz Capitulino 已提交
3481 3482
##
{ 'command': 'netdev_add',
3483 3484
  'data': {'type': 'str', 'id': 'str'},
  'gen': false }                # so we can get the additional arguments
L
Luiz Capitulino 已提交
3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496

##
# @netdev_del:
#
# Remove a network backend.
#
# @id: the name of the network backend to remove
#
# Returns: Nothing on success
#          If @id is not a valid network backend, DeviceNotFound
#
# Since: 0.14.0
3497 3498 3499 3500 3501 3502
#
# Example:
#
# -> { "execute": "netdev_del", "arguments": { "id": "netdev1" } }
# <- { "return": {} }
#
L
Luiz Capitulino 已提交
3503 3504
##
{ 'command': 'netdev_del', 'data': {'id': 'str'} }
C
Corey Bryant 已提交
3505

3506 3507 3508 3509 3510 3511 3512 3513 3514
##
# @object-add:
#
# Create a QOM object.
#
# @qom-type: the class name for the object to be created
#
# @id: the name of the new object
#
3515
# @props: a dictionary of properties to be passed to the backend
3516 3517 3518 3519 3520
#
# Returns: Nothing on success
#          Error if @qom-type is not a valid class name
#
# Since: 2.0
3521 3522 3523 3524 3525 3526 3527 3528
#
# Example:
#
# -> { "execute": "object-add",
#      "arguments": { "qom-type": "rng-random", "id": "rng1",
#                     "props": { "filename": "/dev/hwrng" } } }
# <- { "return": {} }
#
3529 3530
##
{ 'command': 'object-add',
3531
  'data': {'qom-type': 'str', 'id': 'str', '*props': 'any'} }
3532

3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543
##
# @object-del:
#
# Remove a QOM object.
#
# @id: the name of the QOM object to remove
#
# Returns: Nothing on success
#          Error if @id is not a valid id for a QOM object
#
# Since: 2.0
3544 3545 3546 3547 3548 3549
#
# Example:
#
# -> { "execute": "object-del", "arguments": { "id": "rng1" } }
# <- { "return": {} }
#
3550 3551 3552
##
{ 'command': 'object-del', 'data': {'id': 'str'} }

L
Laszlo Ersek 已提交
3553
##
3554
# @NetdevNoneOptions:
L
Laszlo Ersek 已提交
3555 3556 3557
#
# Use it alone to have zero network devices.
#
3558
# Since: 1.2
L
Laszlo Ersek 已提交
3559
##
3560
{ 'struct': 'NetdevNoneOptions',
L
Laszlo Ersek 已提交
3561 3562 3563
  'data': { } }

##
3564
# @NetLegacyNicOptions:
L
Laszlo Ersek 已提交
3565 3566 3567
#
# Create a new Network Interface Card.
#
3568
# @netdev: id of -netdev to connect to
L
Laszlo Ersek 已提交
3569
#
3570
# @macaddr: MAC address
L
Laszlo Ersek 已提交
3571
#
3572
# @model: device model (e1000, rtl8139, virtio etc.)
L
Laszlo Ersek 已提交
3573
#
3574
# @addr: PCI device address
L
Laszlo Ersek 已提交
3575
#
3576
# @vectors: number of MSI-x vectors, 0 to disable MSI-X
L
Laszlo Ersek 已提交
3577
#
3578
# Since: 1.2
L
Laszlo Ersek 已提交
3579
##
3580
{ 'struct': 'NetLegacyNicOptions',
L
Laszlo Ersek 已提交
3581 3582 3583 3584 3585 3586 3587 3588
  'data': {
    '*netdev':  'str',
    '*macaddr': 'str',
    '*model':   'str',
    '*addr':    'str',
    '*vectors': 'uint32' } }

##
3589
# @String:
L
Laszlo Ersek 已提交
3590 3591 3592
#
# A fat type wrapping 'str', to be embedded in lists.
#
3593
# Since: 1.2
L
Laszlo Ersek 已提交
3594
##
3595
{ 'struct': 'String',
L
Laszlo Ersek 已提交
3596 3597 3598 3599
  'data': {
    'str': 'str' } }

##
3600
# @NetdevUserOptions:
L
Laszlo Ersek 已提交
3601 3602 3603 3604
#
# Use the user mode network stack which requires no administrator privilege to
# run.
#
3605
# @hostname: client hostname reported by the builtin DHCP server
L
Laszlo Ersek 已提交
3606
#
3607
# @restrict: isolate the guest from the host
L
Laszlo Ersek 已提交
3608
#
3609
# @ipv4: whether to support IPv4, default true for enabled
3610 3611
#        (since 2.6)
#
3612
# @ipv6: whether to support IPv6, default true for enabled
3613 3614
#        (since 2.6)
#
3615
# @ip: legacy parameter, use net= instead
L
Laszlo Ersek 已提交
3616
#
3617
# @net: IP network address that the guest will see, in the
S
Samuel Thibault 已提交
3618 3619 3620
#       form addr[/netmask] The netmask is optional, and can be
#       either in the form a.b.c.d or as a number of valid top-most
#       bits. Default is 10.0.2.0/24.
L
Laszlo Ersek 已提交
3621
#
3622
# @host: guest-visible address of the host
L
Laszlo Ersek 已提交
3623
#
3624
# @tftp: root directory of the built-in TFTP server
L
Laszlo Ersek 已提交
3625
#
3626
# @bootfile: BOOTP filename, for use with tftp=
L
Laszlo Ersek 已提交
3627
#
3628
# @dhcpstart: the first of the 16 IPs the built-in DHCP server can
L
Laszlo Ersek 已提交
3629 3630
#             assign
#
3631
# @dns: guest-visible address of the virtual nameserver
L
Laszlo Ersek 已提交
3632
#
3633
# @dnssearch: list of DNS suffixes to search, passed as DHCP option
3634 3635
#             to the guest
#
3636
# @ipv6-prefix: IPv6 network prefix (default is fec0::) (since
S
Samuel Thibault 已提交
3637 3638
#               2.6). The network prefix is given in the usual
#               hexadecimal IPv6 address notation.
3639
#
3640
# @ipv6-prefixlen: IPv6 network prefix length (default is 64)
S
Samuel Thibault 已提交
3641
#                  (since 2.6)
3642
#
3643
# @ipv6-host: guest-visible IPv6 address of the host (since 2.6)
3644
#
3645
# @ipv6-dns: guest-visible IPv6 address of the virtual
S
Samuel Thibault 已提交
3646
#            nameserver (since 2.6)
3647
#
3648
# @smb: root directory of the built-in SMB server
L
Laszlo Ersek 已提交
3649
#
3650
# @smbserver: IP address of the built-in SMB server
L
Laszlo Ersek 已提交
3651
#
3652
# @hostfwd: redirect incoming TCP or UDP host connections to guest
L
Laszlo Ersek 已提交
3653 3654
#           endpoints
#
3655
# @guestfwd: forward guest TCP connections
L
Laszlo Ersek 已提交
3656
#
3657
# Since: 1.2
L
Laszlo Ersek 已提交
3658
##
3659
{ 'struct': 'NetdevUserOptions',
L
Laszlo Ersek 已提交
3660 3661 3662
  'data': {
    '*hostname':  'str',
    '*restrict':  'bool',
3663 3664
    '*ipv4':      'bool',
    '*ipv6':      'bool',
L
Laszlo Ersek 已提交
3665 3666 3667 3668 3669 3670 3671
    '*ip':        'str',
    '*net':       'str',
    '*host':      'str',
    '*tftp':      'str',
    '*bootfile':  'str',
    '*dhcpstart': 'str',
    '*dns':       'str',
3672
    '*dnssearch': ['String'],
S
Samuel Thibault 已提交
3673 3674 3675 3676
    '*ipv6-prefix':      'str',
    '*ipv6-prefixlen':   'int',
    '*ipv6-host':        'str',
    '*ipv6-dns':         'str',
L
Laszlo Ersek 已提交
3677 3678 3679 3680 3681 3682
    '*smb':       'str',
    '*smbserver': 'str',
    '*hostfwd':   ['String'],
    '*guestfwd':  ['String'] } }

##
3683
# @NetdevTapOptions:
L
Laszlo Ersek 已提交
3684 3685 3686
#
# Connect the host TAP network interface name to the VLAN.
#
3687
# @ifname: interface name
L
Laszlo Ersek 已提交
3688
#
3689
# @fd: file descriptor of an already opened tap
L
Laszlo Ersek 已提交
3690
#
3691
# @fds: multiple file descriptors of already opened multiqueue capable
3692 3693
# tap
#
3694
# @script: script to initialize the interface
L
Laszlo Ersek 已提交
3695
#
3696
# @downscript: script to shut down the interface
L
Laszlo Ersek 已提交
3697
#
3698
# @br: bridge name (since 2.8)
3699
#
3700
# @helper: command to execute to configure bridge
L
Laszlo Ersek 已提交
3701
#
3702
# @sndbuf: send buffer limit. Understands [TGMKkb] suffixes.
L
Laszlo Ersek 已提交
3703
#
3704
# @vnet_hdr: enable the IFF_VNET_HDR flag on the tap interface
L
Laszlo Ersek 已提交
3705
#
3706
# @vhost: enable vhost-net network accelerator
L
Laszlo Ersek 已提交
3707
#
3708
# @vhostfd: file descriptor of an already opened vhost net device
L
Laszlo Ersek 已提交
3709
#
3710
# @vhostfds: file descriptors of multiple already opened vhost net
3711 3712
# devices
#
3713
# @vhostforce: vhost on for non-MSIX virtio guests
L
Laszlo Ersek 已提交
3714
#
3715
# @queues: number of queues to be created for multiqueue capable tap
3716
#
3717
# @poll-us: maximum number of microseconds that could
J
Jason Wang 已提交
3718 3719
# be spent on busy polling for tap (since 2.7)
#
3720
# Since: 1.2
L
Laszlo Ersek 已提交
3721
##
3722
{ 'struct': 'NetdevTapOptions',
L
Laszlo Ersek 已提交
3723 3724 3725
  'data': {
    '*ifname':     'str',
    '*fd':         'str',
J
Jason Wang 已提交
3726
    '*fds':        'str',
L
Laszlo Ersek 已提交
3727 3728
    '*script':     'str',
    '*downscript': 'str',
3729
    '*br':         'str',
L
Laszlo Ersek 已提交
3730 3731 3732 3733 3734
    '*helper':     'str',
    '*sndbuf':     'size',
    '*vnet_hdr':   'bool',
    '*vhost':      'bool',
    '*vhostfd':    'str',
J
Jason Wang 已提交
3735 3736
    '*vhostfds':   'str',
    '*vhostforce': 'bool',
J
Jason Wang 已提交
3737 3738
    '*queues':     'uint32',
    '*poll-us':    'uint32'} }
L
Laszlo Ersek 已提交
3739 3740

##
3741
# @NetdevSocketOptions:
L
Laszlo Ersek 已提交
3742 3743 3744 3745
#
# Connect the VLAN to a remote VLAN in another QEMU virtual machine using a TCP
# socket connection.
#
3746
# @fd: file descriptor of an already opened socket
L
Laszlo Ersek 已提交
3747
#
3748
# @listen: port number, and optional hostname, to listen on
L
Laszlo Ersek 已提交
3749
#
3750
# @connect: port number, and optional hostname, to connect to
L
Laszlo Ersek 已提交
3751
#
3752
# @mcast: UDP multicast address and port number
L
Laszlo Ersek 已提交
3753
#
3754
# @localaddr: source address and port for multicast and udp packets
L
Laszlo Ersek 已提交
3755
#
3756
# @udp: UDP unicast address and port number
L
Laszlo Ersek 已提交
3757
#
3758
# Since: 1.2
L
Laszlo Ersek 已提交
3759
##
3760
{ 'struct': 'NetdevSocketOptions',
L
Laszlo Ersek 已提交
3761 3762 3763 3764 3765 3766 3767 3768
  'data': {
    '*fd':        'str',
    '*listen':    'str',
    '*connect':   'str',
    '*mcast':     'str',
    '*localaddr': 'str',
    '*udp':       'str' } }

A
Anton Ivanov 已提交
3769
##
3770
# @NetdevL2TPv3Options:
A
Anton Ivanov 已提交
3771 3772 3773 3774 3775 3776 3777
#
# Connect the VLAN to Ethernet over L2TPv3 Static tunnel
#
# @src: source address
#
# @dst: destination address
#
3778
# @srcport: source port - mandatory for udp, optional for ip
A
Anton Ivanov 已提交
3779
#
3780
# @dstport: destination port - mandatory for udp, optional for ip
A
Anton Ivanov 已提交
3781
#
3782
# @ipv6: force the use of ipv6
A
Anton Ivanov 已提交
3783
#
3784
# @udp: use the udp version of l2tpv3 encapsulation
A
Anton Ivanov 已提交
3785
#
3786
# @cookie64: use 64 bit coookies
A
Anton Ivanov 已提交
3787
#
3788
# @counter: have sequence counter
A
Anton Ivanov 已提交
3789
#
3790
# @pincounter: pin sequence counter to zero -
A
Anton Ivanov 已提交
3791 3792 3793
#              workaround for buggy implementations or
#              networks with packet reorder
#
3794
# @txcookie: 32 or 64 bit transmit cookie
A
Anton Ivanov 已提交
3795
#
3796
# @rxcookie: 32 or 64 bit receive cookie
A
Anton Ivanov 已提交
3797 3798 3799
#
# @txsession: 32 bit transmit session
#
3800
# @rxsession: 32 bit receive session - if not specified
A
Anton Ivanov 已提交
3801 3802
#             set to the same value as transmit
#
3803
# @offset: additional offset - allows the insertion of
A
Anton Ivanov 已提交
3804 3805
#          additional application-specific data before the packet payload
#
3806
# Since: 2.1
A
Anton Ivanov 已提交
3807
##
3808
{ 'struct': 'NetdevL2TPv3Options',
A
Anton Ivanov 已提交
3809 3810 3811 3812 3813 3814 3815 3816 3817 3818 3819 3820 3821 3822 3823 3824
  'data': {
    'src':          'str',
    'dst':          'str',
    '*srcport':     'str',
    '*dstport':     'str',
    '*ipv6':        'bool',
    '*udp':         'bool',
    '*cookie64':    'bool',
    '*counter':     'bool',
    '*pincounter':  'bool',
    '*txcookie':    'uint64',
    '*rxcookie':    'uint64',
    'txsession':    'uint32',
    '*rxsession':   'uint32',
    '*offset':      'uint32' } }

L
Laszlo Ersek 已提交
3825
##
3826
# @NetdevVdeOptions:
L
Laszlo Ersek 已提交
3827 3828 3829
#
# Connect the VLAN to a vde switch running on the host.
#
3830
# @sock: socket path
L
Laszlo Ersek 已提交
3831
#
3832
# @port: port number
L
Laszlo Ersek 已提交
3833
#
3834
# @group: group owner of socket
L
Laszlo Ersek 已提交
3835
#
3836
# @mode: permissions for socket
L
Laszlo Ersek 已提交
3837
#
3838
# Since: 1.2
L
Laszlo Ersek 已提交
3839
##
3840
{ 'struct': 'NetdevVdeOptions',
L
Laszlo Ersek 已提交
3841 3842 3843 3844 3845 3846 3847
  'data': {
    '*sock':  'str',
    '*port':  'uint16',
    '*group': 'str',
    '*mode':  'uint16' } }

##
3848
# @NetdevDumpOptions:
L
Laszlo Ersek 已提交
3849 3850 3851
#
# Dump VLAN network traffic to a file.
#
3852
# @len: per-packet size limit (64k default). Understands [TGMKkb]
L
Laszlo Ersek 已提交
3853 3854
# suffixes.
#
3855
# @file: dump file path (default is qemu-vlan0.pcap)
L
Laszlo Ersek 已提交
3856
#
3857
# Since: 1.2
L
Laszlo Ersek 已提交
3858
##
3859
{ 'struct': 'NetdevDumpOptions',
L
Laszlo Ersek 已提交
3860 3861 3862 3863 3864
  'data': {
    '*len':  'size',
    '*file': 'str' } }

##
3865
# @NetdevBridgeOptions:
L
Laszlo Ersek 已提交
3866 3867 3868
#
# Connect a host TAP network interface to a host bridge device.
#
3869
# @br: bridge name
L
Laszlo Ersek 已提交
3870
#
3871
# @helper: command to execute to configure bridge
L
Laszlo Ersek 已提交
3872
#
3873
# Since: 1.2
L
Laszlo Ersek 已提交
3874
##
3875
{ 'struct': 'NetdevBridgeOptions',
L
Laszlo Ersek 已提交
3876 3877 3878 3879
  'data': {
    '*br':     'str',
    '*helper': 'str' } }

S
Stefan Hajnoczi 已提交
3880
##
3881
# @NetdevHubPortOptions:
S
Stefan Hajnoczi 已提交
3882 3883 3884 3885 3886
#
# Connect two or more net clients through a software hub.
#
# @hubid: hub identifier number
#
3887
# Since: 1.2
S
Stefan Hajnoczi 已提交
3888
##
3889
{ 'struct': 'NetdevHubPortOptions',
S
Stefan Hajnoczi 已提交
3890 3891 3892
  'data': {
    'hubid':     'int32' } }

3893
##
3894
# @NetdevNetmapOptions:
3895 3896 3897 3898 3899 3900 3901 3902 3903 3904
#
# Connect a client to a netmap-enabled NIC or to a VALE switch port
#
# @ifname: Either the name of an existing network interface supported by
#          netmap, or the name of a VALE port (created on the fly).
#          A VALE port name is in the form 'valeXXX:YYY', where XXX and
#          YYY are non-negative integers. XXX identifies a switch and
#          YYY identifies a port of the switch. VALE ports having the
#          same XXX are therefore connected to the same switch.
#
3905
# @devname: path of the netmap device (default: '/dev/netmap').
3906
#
3907
# Since: 2.0
3908
##
3909
{ 'struct': 'NetdevNetmapOptions',
3910 3911 3912 3913
  'data': {
    'ifname':     'str',
    '*devname':    'str' } }

3914
##
3915
# @NetdevVhostUserOptions:
3916 3917 3918 3919 3920
#
# Vhost-user network backend
#
# @chardev: name of a unix socket chardev
#
3921
# @vhostforce: vhost on for non-MSIX virtio guests (default: false).
3922
#
3923
# @queues: number of queues to be created for multiqueue vhost-user
3924 3925
#          (default: 1) (Since 2.5)
#
3926
# Since: 2.1
3927
##
3928
{ 'struct': 'NetdevVhostUserOptions',
3929 3930
  'data': {
    'chardev':        'str',
3931 3932
    '*vhostforce':    'bool',
    '*queues':        'int' } }
3933

L
Laszlo Ersek 已提交
3934
##
3935
# @NetClientDriver:
L
Laszlo Ersek 已提交
3936
#
3937 3938
# Available netdev drivers.
#
3939
# Since: 2.7
3940 3941 3942 3943 3944 3945
##
{ 'enum': 'NetClientDriver',
  'data': [ 'none', 'nic', 'user', 'tap', 'l2tpv3', 'socket', 'vde', 'dump',
            'bridge', 'hubport', 'netmap', 'vhost-user' ] }

##
3946
# @Netdev:
3947 3948 3949 3950 3951 3952
#
# Captures the configuration of a network device.
#
# @id: identifier for monitor commands.
#
# @type: Specify the driver used for interpreting remaining arguments.
L
Laszlo Ersek 已提交
3953
#
3954
# Since: 1.2
A
Anton Ivanov 已提交
3955 3956
#
# 'l2tpv3' - since 2.1
L
Laszlo Ersek 已提交
3957
##
3958 3959 3960
{ 'union': 'Netdev',
  'base': { 'id': 'str', 'type': 'NetClientDriver' },
  'discriminator': 'type',
L
Laszlo Ersek 已提交
3961
  'data': {
S
Stefan Hajnoczi 已提交
3962 3963 3964 3965
    'none':     'NetdevNoneOptions',
    'nic':      'NetLegacyNicOptions',
    'user':     'NetdevUserOptions',
    'tap':      'NetdevTapOptions',
A
Anton Ivanov 已提交
3966
    'l2tpv3':   'NetdevL2TPv3Options',
S
Stefan Hajnoczi 已提交
3967 3968 3969 3970
    'socket':   'NetdevSocketOptions',
    'vde':      'NetdevVdeOptions',
    'dump':     'NetdevDumpOptions',
    'bridge':   'NetdevBridgeOptions',
3971
    'hubport':  'NetdevHubPortOptions',
3972 3973
    'netmap':   'NetdevNetmapOptions',
    'vhost-user': 'NetdevVhostUserOptions' } }
L
Laszlo Ersek 已提交
3974 3975

##
3976
# @NetLegacy:
L
Laszlo Ersek 已提交
3977 3978 3979
#
# Captures the configuration of a network device; legacy.
#
3980
# @vlan: vlan number
L
Laszlo Ersek 已提交
3981
#
3982
# @id: identifier for monitor commands
L
Laszlo Ersek 已提交
3983
#
3984
# @name: identifier for monitor commands, ignored if @id is present
L
Laszlo Ersek 已提交
3985 3986 3987
#
# @opts: device type specific properties (legacy)
#
3988
# Since: 1.2
L
Laszlo Ersek 已提交
3989
##
3990
{ 'struct': 'NetLegacy',
L
Laszlo Ersek 已提交
3991 3992 3993 3994
  'data': {
    '*vlan': 'int32',
    '*id':   'str',
    '*name': 'str',
3995
    'opts':  'NetLegacyOptions' } }
L
Laszlo Ersek 已提交
3996

3997 3998 3999 4000 4001 4002 4003 4004 4005
##
# @NetLegacyOptionsType:
#
# Since: 1.2
##
{ 'enum': 'NetLegacyOptionsType',
  'data': ['none', 'nic', 'user', 'tap', 'l2tpv3', 'socket', 'vde',
           'dump', 'bridge', 'netmap', 'vhost-user'] }

L
Laszlo Ersek 已提交
4006
##
4007
# @NetLegacyOptions:
L
Laszlo Ersek 已提交
4008
#
4009
# Like Netdev, but for use only by the legacy command line options
L
Laszlo Ersek 已提交
4010
#
4011
# Since: 1.2
L
Laszlo Ersek 已提交
4012
##
4013
{ 'union': 'NetLegacyOptions',
4014 4015
  'base': { 'type': 'NetLegacyOptionsType' },
  'discriminator': 'type',
L
Laszlo Ersek 已提交
4016
  'data': {
4017 4018 4019 4020 4021 4022 4023 4024 4025 4026 4027
    'none':     'NetdevNoneOptions',
    'nic':      'NetLegacyNicOptions',
    'user':     'NetdevUserOptions',
    'tap':      'NetdevTapOptions',
    'l2tpv3':   'NetdevL2TPv3Options',
    'socket':   'NetdevSocketOptions',
    'vde':      'NetdevVdeOptions',
    'dump':     'NetdevDumpOptions',
    'bridge':   'NetdevBridgeOptions',
    'netmap':   'NetdevNetmapOptions',
    'vhost-user': 'NetdevVhostUserOptions' } }
L
Laszlo Ersek 已提交
4028

Y
Yang Hongyang 已提交
4029
##
4030
# @NetFilterDirection:
Y
Yang Hongyang 已提交
4031 4032 4033 4034 4035 4036 4037 4038 4039 4040 4041 4042 4043
#
# Indicates whether a netfilter is attached to a netdev's transmit queue or
# receive queue or both.
#
# @all: the filter is attached both to the receive and the transmit
#       queue of the netdev (default).
#
# @rx: the filter is attached to the receive queue of the netdev,
#      where it will receive packets sent to the netdev.
#
# @tx: the filter is attached to the transmit queue of the netdev,
#      where it will receive packets sent by the netdev.
#
4044
# Since: 2.5
Y
Yang Hongyang 已提交
4045 4046 4047 4048
##
{ 'enum': 'NetFilterDirection',
  'data': [ 'all', 'rx', 'tx' ] }

P
Paolo Bonzini 已提交
4049
##
4050
# @InetSocketAddress:
P
Paolo Bonzini 已提交
4051 4052 4053 4054 4055
#
# Captures a socket address or address range in the Internet namespace.
#
# @host: host part of the address
#
4056
# @port: port part of the address, or lowest port if @to is present
P
Paolo Bonzini 已提交
4057
#
4058
# @numeric: true if the host/port are guaranteed to be numeric,
4059 4060 4061
#           false if name resolution should be attempted. Defaults to false.
#           (Since 2.9)
#
P
Paolo Bonzini 已提交
4062 4063 4064 4065 4066 4067
# @to: highest port to try
#
# @ipv4: whether to accept IPv4 addresses, default try both IPv4 and IPv6
#
# @ipv6: whether to accept IPv6 addresses, default try both IPv4 and IPv6
#
4068
# Since: 1.3
P
Paolo Bonzini 已提交
4069
##
4070
{ 'struct': 'InetSocketAddress',
P
Paolo Bonzini 已提交
4071 4072
  'data': {
    'host': 'str',
4073
    'port': 'str',
4074
    '*numeric':  'bool',
P
Paolo Bonzini 已提交
4075 4076 4077 4078 4079
    '*to': 'uint16',
    '*ipv4': 'bool',
    '*ipv6': 'bool' } }

##
4080
# @UnixSocketAddress:
P
Paolo Bonzini 已提交
4081 4082 4083 4084 4085
#
# Captures a socket address in the local ("Unix socket") namespace.
#
# @path: filesystem path to use
#
4086
# Since: 1.3
P
Paolo Bonzini 已提交
4087
##
4088
{ 'struct': 'UnixSocketAddress',
P
Paolo Bonzini 已提交
4089 4090 4091
  'data': {
    'path': 'str' } }

S
Stefan Hajnoczi 已提交
4092
##
4093
# @VsockSocketAddress:
S
Stefan Hajnoczi 已提交
4094 4095 4096 4097 4098 4099
#
# Captures a socket address in the vsock namespace.
#
# @cid: unique host identifier
# @port: port
#
4100
# Note: string types are used to allow for possible future hostname or
S
Stefan Hajnoczi 已提交
4101 4102
# service resolution support.
#
4103
# Since: 2.8
S
Stefan Hajnoczi 已提交
4104 4105 4106 4107 4108 4109
##
{ 'struct': 'VsockSocketAddress',
  'data': {
    'cid': 'str',
    'port': 'str' } }

P
Paolo Bonzini 已提交
4110
##
4111
# @SocketAddress:
P
Paolo Bonzini 已提交
4112 4113 4114
#
# Captures the address of a socket, which could also be a named file descriptor
#
4115
# Since: 1.3
P
Paolo Bonzini 已提交
4116 4117 4118 4119 4120
##
{ 'union': 'SocketAddress',
  'data': {
    'inet': 'InetSocketAddress',
    'unix': 'UnixSocketAddress',
S
Stefan Hajnoczi 已提交
4121
    'vsock': 'VsockSocketAddress',
P
Paolo Bonzini 已提交
4122 4123
    'fd': 'String' } }

4124 4125 4126 4127 4128
##
# @SocketAddressFlatType:
#
# Available SocketAddressFlat types
#
4129
# @inet:  Internet address
4130 4131 4132 4133 4134 4135
#
# @unix:  Unix domain socket
#
# Since: 2.9
##
{ 'enum': 'SocketAddressFlatType',
4136
  'data': [ 'unix', 'inet' ] }
4137 4138 4139 4140 4141 4142 4143 4144 4145 4146 4147 4148 4149 4150

##
# @SocketAddressFlat:
#
# Captures the address of a socket
#
# @type:       Transport type
#
# This is similar to SocketAddress, only distinction:
#
# 1. SocketAddressFlat is a flat union, SocketAddress is a simple union.
#    A flat union is nicer than simple because it avoids nesting
#    (i.e. more {}) on the wire.
#
4151
# 2. SocketAddressFlat supports only types 'unix' and 'inet', because
4152 4153 4154 4155 4156 4157 4158 4159
#    that's what its current users need.
#
# Since: 2.9
##
{ 'union': 'SocketAddressFlat',
  'base': { 'type': 'SocketAddressFlatType' },
  'discriminator': 'type',
  'data': { 'unix': 'UnixSocketAddress',
4160
            'inet': 'InetSocketAddress' } }
4161

C
Corey Bryant 已提交
4162 4163 4164 4165 4166 4167 4168 4169 4170 4171 4172 4173 4174 4175
##
# @getfd:
#
# Receive a file descriptor via SCM rights and assign it a name
#
# @fdname: file descriptor name
#
# Returns: Nothing on success
#
# Since: 0.14.0
#
# Notes: If @fdname already exists, the file descriptor assigned to
#        it will be closed and replaced by the received file
#        descriptor.
4176
#
C
Corey Bryant 已提交
4177 4178
#        The 'closefd' command can be used to explicitly close the
#        file descriptor when it is no longer needed.
4179 4180 4181 4182 4183 4184
#
# Example:
#
# -> { "execute": "getfd", "arguments": { "fdname": "fd1" } }
# <- { "return": {} }
#
C
Corey Bryant 已提交
4185 4186 4187 4188 4189 4190 4191 4192 4193 4194 4195 4196 4197
##
{ 'command': 'getfd', 'data': {'fdname': 'str'} }

##
# @closefd:
#
# Close a file descriptor previously passed via SCM rights
#
# @fdname: file descriptor name
#
# Returns: Nothing on success
#
# Since: 0.14.0
4198 4199 4200 4201 4202 4203
#
# Example:
#
# -> { "execute": "closefd", "arguments": { "fdname": "fd1" } }
# <- { "return": {} }
#
C
Corey Bryant 已提交
4204 4205
##
{ 'command': 'closefd', 'data': {'fdname': 'str'} }
4206 4207 4208 4209 4210 4211 4212 4213

##
# @MachineInfo:
#
# Information describing a machine.
#
# @name: the name of the machine
#
4214
# @alias: an alias for the machine name
4215
#
4216
# @is-default: whether the machine is default
4217
#
4218 4219 4220
# @cpu-max: maximum number of CPUs supported by the machine type
#           (since 1.5.0)
#
4221 4222
# @hotpluggable-cpus: cpu hotplug via -device is supported (since 2.7.0)
#
4223 4224
# Since: 1.2.0
##
4225
{ 'struct': 'MachineInfo',
4226
  'data': { 'name': 'str', '*alias': 'str',
4227 4228
            '*is-default': 'bool', 'cpu-max': 'int',
            'hotpluggable-cpus': 'bool'} }
4229 4230 4231 4232 4233 4234 4235 4236 4237 4238 4239

##
# @query-machines:
#
# Return a list of supported machines
#
# Returns: a list of MachineInfo
#
# Since: 1.2.0
##
{ 'command': 'query-machines', 'returns': ['MachineInfo'] }
4240 4241 4242 4243 4244 4245 4246 4247

##
# @CpuDefinitionInfo:
#
# Virtual CPU definition.
#
# @name: the name of the CPU definition
#
4248
# @migration-safe: whether a CPU definition can be safely used for
4249 4250 4251 4252 4253 4254 4255 4256 4257 4258 4259
#                  migration in combination with a QEMU compatibility machine
#                  when migrating between different QMU versions and between
#                  hosts with different sets of (hardware or software)
#                  capabilities. If not provided, information is not available
#                  and callers should not assume the CPU definition to be
#                  migration-safe. (since 2.8)
#
# @static: whether a CPU definition is static and will not change depending on
#          QEMU version, machine type, machine options and accelerator options.
#          A static model is always migration-safe. (since 2.8)
#
4260
# @unavailable-features: List of properties that prevent
4261 4262
#                        the CPU model from running in the current
#                        host. (since 2.8)
4263 4264 4265
# @typename: Type name that can be used as argument to @device-list-properties,
#            to introspect properties configurable using -cpu or -global.
#            (since 2.9)
4266 4267 4268 4269 4270 4271 4272 4273 4274 4275 4276 4277 4278 4279 4280 4281 4282
#
# @unavailable-features is a list of QOM property names that
# represent CPU model attributes that prevent the CPU from running.
# If the QOM property is read-only, that means there's no known
# way to make the CPU model run in the current host. Implementations
# that choose not to provide specific information return the
# property name "type".
# If the property is read-write, it means that it MAY be possible
# to run the CPU model in the current host if that property is
# changed. Management software can use it as hints to suggest or
# choose an alternative for the user, or just to generate meaningful
# error messages explaining why the CPU model can't be used.
# If @unavailable-features is an empty list, the CPU model is
# runnable using the current host and machine-type.
# If @unavailable-features is not present, runnability
# information for the CPU is not available.
#
4283 4284
# Since: 1.2.0
##
4285
{ 'struct': 'CpuDefinitionInfo',
4286
  'data': { 'name': 'str', '*migration-safe': 'bool', 'static': 'bool',
4287
            '*unavailable-features': [ 'str' ], 'typename': 'str' } }
4288 4289 4290 4291 4292 4293 4294 4295 4296 4297 4298

##
# @query-cpu-definitions:
#
# Return a list of supported virtual CPU definitions
#
# Returns: a list of CpuDefInfo
#
# Since: 1.2.0
##
{ 'command': 'query-cpu-definitions', 'returns': ['CpuDefinitionInfo'] }
4299

4300 4301 4302 4303 4304 4305 4306 4307 4308 4309 4310
##
# @CpuModelInfo:
#
# Virtual CPU model.
#
# A CPU model consists of the name of a CPU definition, to which
# delta changes are applied (e.g. features added/removed). Most magic values
# that an architecture might require should be hidden behind the name.
# However, if required, architectures can expose relevant properties.
#
# @name: the name of the CPU definition the model is based on
4311
# @props: a dictionary of QOM properties to be applied
4312 4313 4314 4315 4316 4317 4318 4319
#
# Since: 2.8.0
##
{ 'struct': 'CpuModelInfo',
  'data': { 'name': 'str',
            '*props': 'any' } }

##
4320
# @CpuModelExpansionType:
4321 4322 4323 4324 4325 4326 4327 4328 4329 4330 4331 4332 4333 4334 4335
#
# An enumeration of CPU model expansion types.
#
# @static: Expand to a static CPU model, a combination of a static base
#          model name and property delta changes. As the static base model will
#          never change, the expanded CPU model will be the same, independant of
#          independent of QEMU version, machine type, machine options, and
#          accelerator options. Therefore, the resulting model can be used by
#          tooling without having to specify a compatibility machine - e.g. when
#          displaying the "host" model. static CPU models are migration-safe.
#
# @full: Expand all properties. The produced model is not guaranteed to be
#        migration-safe, but allows tooling to get an insight and work with
#        model details.
#
4336 4337 4338 4339 4340 4341 4342 4343 4344
# Note: When a non-migration-safe CPU model is expanded in static mode, some
# features enabled by the CPU model may be omitted, because they can't be
# implemented by a static CPU model definition (e.g. cache info passthrough and
# PMU passthrough in x86). If you need an accurate representation of the
# features enabled by a non-migration-safe CPU model, use @full. If you need a
# static representation that will keep ABI compatibility even when changing QEMU
# version or machine-type, use @static (but keep in mind that some features may
# be omitted).
#
4345 4346 4347 4348 4349 4350 4351
# Since: 2.8.0
##
{ 'enum': 'CpuModelExpansionType',
  'data': [ 'static', 'full' ] }


##
4352
# @CpuModelExpansionInfo:
4353 4354 4355 4356 4357 4358 4359 4360 4361 4362 4363 4364 4365 4366 4367 4368 4369 4370 4371 4372 4373 4374 4375 4376 4377 4378 4379 4380 4381 4382 4383 4384 4385
#
# The result of a cpu model expansion.
#
# @model: the expanded CpuModelInfo.
#
# Since: 2.8.0
##
{ 'struct': 'CpuModelExpansionInfo',
  'data': { 'model': 'CpuModelInfo' } }


##
# @query-cpu-model-expansion:
#
# Expands a given CPU model (or a combination of CPU model + additional options)
# to different granularities, allowing tooling to get an understanding what a
# specific CPU model looks like in QEMU under a certain configuration.
#
# This interface can be used to query the "host" CPU model.
#
# The data returned by this command may be affected by:
#
# * QEMU version: CPU models may look different depending on the QEMU version.
#   (Except for CPU models reported as "static" in query-cpu-definitions.)
# * machine-type: CPU model  may look different depending on the machine-type.
#   (Except for CPU models reported as "static" in query-cpu-definitions.)
# * machine options (including accelerator): in some architectures, CPU models
#   may look different depending on machine and accelerator options. (Except for
#   CPU models reported as "static" in query-cpu-definitions.)
# * "-cpu" arguments and global properties: arguments to the -cpu option and
#   global properties may affect expansion of CPU models. Using
#   query-cpu-model-expansion while using these is not advised.
#
4386 4387
# Some architectures may not support all expansion types. s390x supports
# "full" and "static".
4388 4389 4390 4391 4392 4393 4394 4395 4396 4397 4398 4399 4400 4401
#
# Returns: a CpuModelExpansionInfo. Returns an error if expanding CPU models is
#          not supported, if the model cannot be expanded, if the model contains
#          an unknown CPU definition name, unknown properties or properties
#          with a wrong type. Also returns an error if an expansion type is
#          not supported.
#
# Since: 2.8.0
##
{ 'command': 'query-cpu-model-expansion',
  'data': { 'type': 'CpuModelExpansionType',
            'model': 'CpuModelInfo' },
  'returns': 'CpuModelExpansionInfo' }

4402 4403 4404 4405
##
# @CpuModelCompareResult:
#
# An enumeration of CPU model comparation results. The result is usually
4406
# calculated using e.g. CPU features or CPU generations.
4407 4408 4409 4410 4411 4412 4413 4414 4415 4416 4417 4418 4419 4420 4421 4422 4423 4424 4425
#
# @incompatible: If model A is incompatible to model B, model A is not
#                guaranteed to run where model B runs and the other way around.
#
# @identical: If model A is identical to model B, model A is guaranteed to run
#             where model B runs and the other way around.
#
# @superset: If model A is a superset of model B, model B is guaranteed to run
#            where model A runs. There are no guarantees about the other way.
#
# @subset: If model A is a subset of model B, model A is guaranteed to run
#          where model B runs. There are no guarantees about the other way.
#
# Since: 2.8.0
##
{ 'enum': 'CpuModelCompareResult',
  'data': [ 'incompatible', 'identical', 'superset', 'subset' ] }

##
4426
# @CpuModelCompareInfo:
4427 4428 4429 4430 4431 4432 4433 4434 4435 4436 4437 4438 4439 4440 4441 4442 4443 4444 4445 4446 4447 4448 4449 4450 4451 4452 4453 4454 4455 4456 4457 4458
#
# The result of a CPU model comparison.
#
# @result: The result of the compare operation.
# @responsible-properties: List of properties that led to the comparison result
#                          not being identical.
#
# @responsible-properties is a list of QOM property names that led to
# both CPUs not being detected as identical. For identical models, this
# list is empty.
# If a QOM property is read-only, that means there's no known way to make the
# CPU models identical. If the special property name "type" is included, the
# models are by definition not identical and cannot be made identical.
#
# Since: 2.8.0
##
{ 'struct': 'CpuModelCompareInfo',
  'data': {'result': 'CpuModelCompareResult',
           'responsible-properties': ['str']
          }
}

##
# @query-cpu-model-comparison:
#
# Compares two CPU models, returning how they compare in a specific
# configuration. The results indicates how both models compare regarding
# runnability. This result can be used by tooling to make decisions if a
# certain CPU model will run in a certain configuration or if a compatible
# CPU model has to be created by baselining.
#
# Usually, a CPU model is compared against the maximum possible CPU model
4459
# of a certain configuration (e.g. the "host" model for KVM). If that CPU
4460 4461 4462 4463 4464 4465
# model is identical or a subset, it will run in that configuration.
#
# The result returned by this command may be affected by:
#
# * QEMU version: CPU models may look different depending on the QEMU version.
#   (Except for CPU models reported as "static" in query-cpu-definitions.)
4466
# * machine-type: CPU model may look different depending on the machine-type.
4467 4468 4469 4470 4471 4472 4473 4474
#   (Except for CPU models reported as "static" in query-cpu-definitions.)
# * machine options (including accelerator): in some architectures, CPU models
#   may look different depending on machine and accelerator options. (Except for
#   CPU models reported as "static" in query-cpu-definitions.)
# * "-cpu" arguments and global properties: arguments to the -cpu option and
#   global properties may affect expansion of CPU models. Using
#   query-cpu-model-expansion while using these is not advised.
#
4475 4476
# Some architectures may not support comparing CPU models. s390x supports
# comparing CPU models.
4477 4478 4479 4480 4481 4482 4483 4484 4485 4486 4487 4488
#
# Returns: a CpuModelBaselineInfo. Returns an error if comparing CPU models is
#          not supported, if a model cannot be used, if a model contains
#          an unknown cpu definition name, unknown properties or properties
#          with wrong types.
#
# Since: 2.8.0
##
{ 'command': 'query-cpu-model-comparison',
  'data': { 'modela': 'CpuModelInfo', 'modelb': 'CpuModelInfo' },
  'returns': 'CpuModelCompareInfo' }

4489
##
4490
# @CpuModelBaselineInfo:
4491 4492 4493 4494 4495 4496 4497 4498 4499 4500 4501 4502 4503 4504 4505 4506 4507 4508 4509 4510 4511 4512 4513 4514 4515 4516
#
# The result of a CPU model baseline.
#
# @model: the baselined CpuModelInfo.
#
# Since: 2.8.0
##
{ 'struct': 'CpuModelBaselineInfo',
  'data': { 'model': 'CpuModelInfo' } }

##
# @query-cpu-model-baseline:
#
# Baseline two CPU models, creating a compatible third model. The created
# model will always be a static, migration-safe CPU model (see "static"
# CPU model expansion for details).
#
# This interface can be used by tooling to create a compatible CPU model out
# two CPU models. The created CPU model will be identical to or a subset of
# both CPU models when comparing them. Therefore, the created CPU model is
# guaranteed to run where the given CPU models run.
#
# The result returned by this command may be affected by:
#
# * QEMU version: CPU models may look different depending on the QEMU version.
#   (Except for CPU models reported as "static" in query-cpu-definitions.)
4517
# * machine-type: CPU model may look different depending on the machine-type.
4518 4519 4520 4521 4522 4523 4524 4525
#   (Except for CPU models reported as "static" in query-cpu-definitions.)
# * machine options (including accelerator): in some architectures, CPU models
#   may look different depending on machine and accelerator options. (Except for
#   CPU models reported as "static" in query-cpu-definitions.)
# * "-cpu" arguments and global properties: arguments to the -cpu option and
#   global properties may affect expansion of CPU models. Using
#   query-cpu-model-expansion while using these is not advised.
#
4526 4527
# Some architectures may not support baselining CPU models. s390x supports
# baselining CPU models.
4528 4529 4530 4531 4532 4533 4534 4535 4536 4537 4538 4539 4540
#
# Returns: a CpuModelBaselineInfo. Returns an error if baselining CPU models is
#          not supported, if a model cannot be used, if a model contains
#          an unknown cpu definition name, unknown properties or properties
#          with wrong types.
#
# Since: 2.8.0
##
{ 'command': 'query-cpu-model-baseline',
  'data': { 'modela': 'CpuModelInfo',
            'modelb': 'CpuModelInfo' },
  'returns': 'CpuModelBaselineInfo' }

4541
##
4542 4543 4544 4545 4546 4547 4548 4549 4550 4551 4552
# @AddfdInfo:
#
# Information about a file descriptor that was added to an fd set.
#
# @fdset-id: The ID of the fd set that @fd was added to.
#
# @fd: The file descriptor that was received via SCM rights and
#      added to the fd set.
#
# Since: 1.2.0
##
4553
{ 'struct': 'AddfdInfo', 'data': {'fdset-id': 'int', 'fd': 'int'} }
4554 4555 4556 4557 4558 4559

##
# @add-fd:
#
# Add a file descriptor, that was passed via SCM rights, to an fd set.
#
4560
# @fdset-id: The ID of the fd set to add the file descriptor to.
4561
#
4562
# @opaque: A free-form string that can be used to describe the fd.
4563 4564
#
# Returns: @AddfdInfo on success
4565
#
4566
#          If file descriptor was not received, FdNotSupplied
4567
#
4568
#          If @fdset-id is a negative value, InvalidParameterValue
4569 4570 4571 4572 4573 4574
#
# Notes: The list of fd sets is shared by all monitor connections.
#
#        If @fdset-id is not specified, a new fd set will be created.
#
# Since: 1.2.0
4575 4576 4577 4578 4579 4580
#
# Example:
#
# -> { "execute": "add-fd", "arguments": { "fdset-id": 1 } }
# <- { "return": { "fdset-id": 1, "fd": 3 } }
#
4581 4582 4583 4584 4585 4586 4587 4588 4589 4590 4591
##
{ 'command': 'add-fd', 'data': {'*fdset-id': 'int', '*opaque': 'str'},
  'returns': 'AddfdInfo' }

##
# @remove-fd:
#
# Remove a file descriptor from an fd set.
#
# @fdset-id: The ID of the fd set that the file descriptor belongs to.
#
4592
# @fd: The file descriptor that is to be removed.
4593 4594 4595 4596 4597 4598 4599 4600 4601 4602
#
# Returns: Nothing on success
#          If @fdset-id or @fd is not found, FdNotFound
#
# Since: 1.2.0
#
# Notes: The list of fd sets is shared by all monitor connections.
#
#        If @fd is not specified, all file descriptors in @fdset-id
#        will be removed.
4603 4604 4605 4606 4607 4608
#
# Example:
#
# -> { "execute": "remove-fd", "arguments": { "fdset-id": 1, "fd": 3 } }
# <- { "return": {} }
#
4609 4610 4611 4612 4613 4614 4615 4616 4617 4618
##
{ 'command': 'remove-fd', 'data': {'fdset-id': 'int', '*fd': 'int'} }

##
# @FdsetFdInfo:
#
# Information about a file descriptor that belongs to an fd set.
#
# @fd: The file descriptor value.
#
4619
# @opaque: A free-form string that can be used to describe the fd.
4620 4621 4622
#
# Since: 1.2.0
##
4623
{ 'struct': 'FdsetFdInfo',
4624 4625 4626 4627 4628 4629 4630 4631 4632 4633 4634 4635 4636
  'data': {'fd': 'int', '*opaque': 'str'} }

##
# @FdsetInfo:
#
# Information about an fd set.
#
# @fdset-id: The ID of the fd set.
#
# @fds: A list of file descriptors that belong to this fd set.
#
# Since: 1.2.0
##
4637
{ 'struct': 'FdsetInfo',
4638 4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650
  'data': {'fdset-id': 'int', 'fds': ['FdsetFdInfo']} }

##
# @query-fdsets:
#
# Return information describing all fd sets.
#
# Returns: A list of @FdsetInfo
#
# Since: 1.2.0
#
# Note: The list of fd sets is shared by all monitor connections.
#
4651 4652 4653 4654 4655 4656 4657 4658 4659 4660 4661 4662 4663 4664 4665 4666 4667 4668 4669 4670 4671 4672 4673 4674 4675 4676 4677 4678 4679 4680 4681
# Example:
#
# -> { "execute": "query-fdsets" }
# <- { "return": [
#        {
#          "fds": [
#            {
#              "fd": 30,
#              "opaque": "rdonly:/path/to/file"
#            },
#            {
#              "fd": 24,
#              "opaque": "rdwr:/path/to/file"
#            }
#          ],
#          "fdset-id": 1
#        },
#        {
#          "fds": [
#            {
#              "fd": 28
#            },
#            {
#              "fd": 29
#            }
#          ],
#          "fdset-id": 0
#        }
#      ]
#    }
#
4682 4683
##
{ 'command': 'query-fdsets', 'returns': ['FdsetInfo'] }
4684 4685 4686 4687 4688 4689 4690 4691 4692 4693

##
# @TargetInfo:
#
# Information describing the QEMU target.
#
# @arch: the target architecture (eg "x86_64", "i386", etc)
#
# Since: 1.2.0
##
4694
{ 'struct': 'TargetInfo',
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Paolo Bonzini 已提交
4695
  'data': { 'arch': 'str' } }
4696 4697 4698 4699 4700 4701 4702 4703 4704 4705 4706

##
# @query-target:
#
# Return information about the target for this QEMU
#
# Returns: TargetInfo
#
# Since: 1.2.0
##
{ 'command': 'query-target', 'returns': 'TargetInfo' }
A
Amos Kong 已提交
4707 4708 4709 4710

##
# @QKeyCode:
#
4711 4712 4713 4714
# An enumeration of key name.
#
# This is used by the @send-key command.
#
M
Marc-André Lureau 已提交
4715 4716 4717 4718 4719 4720
# @unmapped: since 2.0
# @pause: since 2.0
# @ro: since 2.4
# @kp_comma: since 2.4
# @kp_equals: since 2.6
# @power: since 2.6
4721 4722 4723
# @hiragana: since 2.9
# @henkan: since 2.9
# @yen: since 2.9
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Marc-André Lureau 已提交
4724
#
A
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4725
# Since: 1.3.0
G
Gerd Hoffmann 已提交
4726
#
A
Amos Kong 已提交
4727 4728
##
{ 'enum': 'QKeyCode',
G
Gerd Hoffmann 已提交
4729 4730
  'data': [ 'unmapped',
            'shift', 'shift_r', 'alt', 'alt_r', 'altgr', 'altgr_r', 'ctrl',
A
Amos Kong 已提交
4731 4732 4733 4734 4735 4736 4737 4738 4739 4740 4741 4742 4743
            'ctrl_r', 'menu', 'esc', '1', '2', '3', '4', '5', '6', '7', '8',
            '9', '0', 'minus', 'equal', 'backspace', 'tab', 'q', 'w', 'e',
            'r', 't', 'y', 'u', 'i', 'o', 'p', 'bracket_left', 'bracket_right',
            'ret', 'a', 's', 'd', 'f', 'g', 'h', 'j', 'k', 'l', 'semicolon',
            'apostrophe', 'grave_accent', 'backslash', 'z', 'x', 'c', 'v', 'b',
            'n', 'm', 'comma', 'dot', 'slash', 'asterisk', 'spc', 'caps_lock',
            'f1', 'f2', 'f3', 'f4', 'f5', 'f6', 'f7', 'f8', 'f9', 'f10',
            'num_lock', 'scroll_lock', 'kp_divide', 'kp_multiply',
            'kp_subtract', 'kp_add', 'kp_enter', 'kp_decimal', 'sysrq', 'kp_0',
            'kp_1', 'kp_2', 'kp_3', 'kp_4', 'kp_5', 'kp_6', 'kp_7', 'kp_8',
            'kp_9', 'less', 'f11', 'f12', 'print', 'home', 'pgup', 'pgdn', 'end',
            'left', 'up', 'down', 'right', 'insert', 'delete', 'stop', 'again',
            'props', 'undo', 'front', 'copy', 'open', 'paste', 'find', 'cut',
4744 4745
            'lf', 'help', 'meta_l', 'meta_r', 'compose', 'pause',
            'ro', 'hiragana', 'henkan', 'yen',
4746
            'kp_comma', 'kp_equals', 'power' ] }
A
Amos Kong 已提交
4747

4748
##
4749
# @KeyValue:
4750 4751 4752 4753 4754 4755 4756 4757 4758 4759
#
# Represents a keyboard key.
#
# Since: 1.3.0
##
{ 'union': 'KeyValue',
  'data': {
    'number': 'int',
    'qcode': 'QKeyCode' } }

A
Amos Kong 已提交
4760 4761 4762 4763 4764
##
# @send-key:
#
# Send keys to guest.
#
4765 4766 4767 4768
# @keys: An array of @KeyValue elements. All @KeyValues in this array are
#        simultaneously sent to the guest. A @KeyValue.number value is sent
#        directly to the guest, while @KeyValue.qcode must be a valid
#        @QKeyCode value
A
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4769
#
4770
# @hold-time: time to delay key up events, milliseconds. Defaults
A
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4771 4772 4773 4774 4775 4776 4777
#             to 100
#
# Returns: Nothing on success
#          If key is unknown or redundant, InvalidParameter
#
# Since: 1.3.0
#
4778 4779 4780 4781 4782 4783 4784 4785
# Example:
#
# -> { "execute": "send-key",
#      "arguments": { "keys": [ { "type": "qcode", "data": "ctrl" },
#                               { "type": "qcode", "data": "alt" },
#                               { "type": "qcode", "data": "delete" } ] } }
# <- { "return": {} }
#
A
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4786 4787
##
{ 'command': 'send-key',
4788
  'data': { 'keys': ['KeyValue'], '*hold-time': 'int' } }
L
Luiz Capitulino 已提交
4789 4790 4791 4792 4793 4794 4795 4796 4797 4798 4799

##
# @screendump:
#
# Write a PPM of the VGA screen to a file.
#
# @filename: the path of a new PPM file to store the image
#
# Returns: Nothing on success
#
# Since: 0.14.0
4800 4801 4802 4803 4804 4805 4806
#
# Example:
#
# -> { "execute": "screendump",
#      "arguments": { "filename": "/tmp/image" } }
# <- { "return": {} }
#
L
Luiz Capitulino 已提交
4807 4808
##
{ 'command': 'screendump', 'data': {'filename': 'str'} }
P
Paolo Bonzini 已提交
4809

4810 4811 4812 4813 4814 4815

##
# @ChardevCommon:
#
# Configuration shared across all chardev backends
#
4816 4817
# @logfile: The name of a logfile to save output
# @logappend: true to append instead of truncate
4818 4819 4820 4821 4822 4823 4824
#             (default to false to truncate)
#
# Since: 2.6
##
{ 'struct': 'ChardevCommon', 'data': { '*logfile': 'str',
                                       '*logappend': 'bool' } }

4825 4826 4827 4828 4829
##
# @ChardevFile:
#
# Configuration info for file chardevs.
#
4830
# @in:  The name of the input file
4831
# @out: The name of the output file
4832
# @append: Open the file in append mode (default false to
4833
#          truncate) (Since 2.6)
4834 4835 4836
#
# Since: 1.4
##
4837
{ 'struct': 'ChardevFile', 'data': { '*in' : 'str',
4838
                                   'out' : 'str',
4839 4840
                                   '*append': 'bool' },
  'base': 'ChardevCommon' }
4841

4842
##
4843
# @ChardevHostdev:
4844
#
4845
# Configuration info for device and pipe chardevs.
4846 4847 4848 4849 4850 4851
#
# @device: The name of the special file for the device,
#          i.e. /dev/ttyS0 on Unix or COM1: on Windows
#
# Since: 1.4
##
4852 4853
{ 'struct': 'ChardevHostdev', 'data': { 'device' : 'str' },
  'base': 'ChardevCommon' }
4854

4855 4856 4857
##
# @ChardevSocket:
#
G
Gerd Hoffmann 已提交
4858
# Configuration info for (stream) socket chardevs.
4859 4860 4861
#
# @addr: socket address to listen on (server=true)
#        or connect to (server=false)
4862 4863 4864
# @tls-creds: the ID of the TLS credentials object (since 2.6)
# @server: create server socket (default: true)
# @wait: wait for incoming connection on server
4865
#        sockets (default: false).
4866 4867
# @nodelay: set TCP_NODELAY socket option (default: false)
# @telnet: enable telnet protocol on server
4868
#          sockets (default: false)
4869
# @reconnect: For a client socket, if a socket is disconnected,
4870 4871 4872
#          then attempt a reconnect after the given number of seconds.
#          Setting this to zero disables this function. (default: 0)
#          (Since: 2.2)
4873 4874 4875
#
# Since: 1.4
##
4876
{ 'struct': 'ChardevSocket', 'data': { 'addr'       : 'SocketAddress',
4877
                                     '*tls-creds'  : 'str',
4878 4879 4880 4881
                                     '*server'    : 'bool',
                                     '*wait'      : 'bool',
                                     '*nodelay'   : 'bool',
                                     '*telnet'    : 'bool',
4882 4883
                                     '*reconnect' : 'int' },
  'base': 'ChardevCommon' }
4884

G
Gerd Hoffmann 已提交
4885
##
4886
# @ChardevUdp:
G
Gerd Hoffmann 已提交
4887 4888 4889 4890
#
# Configuration info for datagram socket chardevs.
#
# @remote: remote address
4891
# @local: local address
G
Gerd Hoffmann 已提交
4892 4893 4894
#
# Since: 1.5
##
4895
{ 'struct': 'ChardevUdp', 'data': { 'remote' : 'SocketAddress',
4896 4897
                                  '*local' : 'SocketAddress' },
  'base': 'ChardevCommon' }
G
Gerd Hoffmann 已提交
4898

4899 4900 4901 4902 4903 4904 4905 4906 4907
##
# @ChardevMux:
#
# Configuration info for mux chardevs.
#
# @chardev: name of the base chardev.
#
# Since: 1.5
##
4908 4909
{ 'struct': 'ChardevMux', 'data': { 'chardev' : 'str' },
  'base': 'ChardevCommon' }
4910

4911 4912 4913 4914 4915
##
# @ChardevStdio:
#
# Configuration info for stdio chardevs.
#
4916
# @signal: Allow signals (such as SIGINT triggered by ^C)
4917 4918 4919 4920 4921
#          be delivered to qemu.  Default: true in -nographic mode,
#          false otherwise.
#
# Since: 1.5
##
4922 4923 4924
{ 'struct': 'ChardevStdio', 'data': { '*signal' : 'bool' },
  'base': 'ChardevCommon' }

4925

4926 4927 4928 4929 4930 4931 4932 4933 4934
##
# @ChardevSpiceChannel:
#
# Configuration info for spice vm channel chardevs.
#
# @type: kind of channel (for example vdagent).
#
# Since: 1.5
##
4935 4936
{ 'struct': 'ChardevSpiceChannel', 'data': { 'type'  : 'str' },
  'base': 'ChardevCommon' }
4937 4938 4939 4940 4941 4942 4943 4944 4945 4946

##
# @ChardevSpicePort:
#
# Configuration info for spice port chardevs.
#
# @fqdn: name of the channel (see docs/spice-port-fqdn.txt)
#
# Since: 1.5
##
4947 4948
{ 'struct': 'ChardevSpicePort', 'data': { 'fqdn'  : 'str' },
  'base': 'ChardevCommon' }
4949

G
Gerd Hoffmann 已提交
4950 4951 4952 4953 4954 4955 4956 4957 4958 4959 4960 4961
##
# @ChardevVC:
#
# Configuration info for virtual console chardevs.
#
# @width:  console width,  in pixels
# @height: console height, in pixels
# @cols:   console width,  in chars
# @rows:   console height, in chars
#
# Since: 1.5
##
4962
{ 'struct': 'ChardevVC', 'data': { '*width'  : 'int',
G
Gerd Hoffmann 已提交
4963 4964
                                 '*height' : 'int',
                                 '*cols'   : 'int',
4965 4966
                                 '*rows'   : 'int' },
  'base': 'ChardevCommon' }
G
Gerd Hoffmann 已提交
4967

4968
##
4969
# @ChardevRingbuf:
4970
#
4971
# Configuration info for ring buffer chardevs.
4972
#
4973
# @size: ring buffer size, must be power of two, default is 65536
4974 4975 4976
#
# Since: 1.5
##
4977 4978
{ 'struct': 'ChardevRingbuf', 'data': { '*size'  : 'int' },
  'base': 'ChardevCommon' }
4979

4980 4981 4982 4983 4984
##
# @ChardevBackend:
#
# Configuration info for the new chardev backend.
#
A
Anatoli Huseu1 已提交
4985
# Since: 1.4 (testdev since 2.2, wctablet since 2.9)
4986
##
4987
{ 'union': 'ChardevBackend', 'data': { 'file'   : 'ChardevFile',
4988 4989
                                       'serial' : 'ChardevHostdev',
                                       'parallel': 'ChardevHostdev',
4990
                                       'pipe'   : 'ChardevHostdev',
4991
                                       'socket' : 'ChardevSocket',
4992
                                       'udp'    : 'ChardevUdp',
4993 4994
                                       'pty'    : 'ChardevCommon',
                                       'null'   : 'ChardevCommon',
4995
                                       'mux'    : 'ChardevMux',
4996
                                       'msmouse': 'ChardevCommon',
A
Anatoli Huseu1 已提交
4997
                                       'wctablet' : 'ChardevCommon',
4998 4999
                                       'braille': 'ChardevCommon',
                                       'testdev': 'ChardevCommon',
5000
                                       'stdio'  : 'ChardevStdio',
5001
                                       'console': 'ChardevCommon',
5002
                                       'spicevmc' : 'ChardevSpiceChannel',
G
Gerd Hoffmann 已提交
5003
                                       'spiceport' : 'ChardevSpicePort',
5004
                                       'vc'     : 'ChardevVC',
5005 5006
                                       'ringbuf': 'ChardevRingbuf',
                                       # next one is just for compatibility
5007
                                       'memory' : 'ChardevRingbuf' } }
5008 5009 5010 5011 5012 5013

##
# @ChardevReturn:
#
# Return info about the chardev backend just created.
#
5014
# @pty: name of the slave pseudoterminal device, present if
5015 5016
#       and only if a chardev of type 'pty' was created
#
5017 5018
# Since: 1.4
##
5019
{ 'struct' : 'ChardevReturn', 'data': { '*pty' : 'str' } }
5020 5021 5022 5023

##
# @chardev-add:
#
5024
# Add a character device backend
5025 5026 5027 5028
#
# @id: the chardev's ID, must be unique
# @backend: backend type and parameters
#
5029
# Returns: ChardevReturn.
5030 5031
#
# Since: 1.4
5032 5033 5034 5035 5036 5037 5038 5039 5040 5041 5042 5043 5044 5045 5046 5047 5048 5049 5050
#
# Example:
#
# -> { "execute" : "chardev-add",
#      "arguments" : { "id" : "foo",
#                      "backend" : { "type" : "null", "data" : {} } } }
# <- { "return": {} }
#
# -> { "execute" : "chardev-add",
#      "arguments" : { "id" : "bar",
#                      "backend" : { "type" : "file",
#                                    "data" : { "out" : "/tmp/bar.log" } } } }
# <- { "return": {} }
#
# -> { "execute" : "chardev-add",
#      "arguments" : { "id" : "baz",
#                      "backend" : { "type" : "pty", "data" : {} } } }
# <- { "return": { "pty" : "/dev/pty/42" } }
#
5051 5052 5053 5054 5055 5056 5057 5058
##
{ 'command': 'chardev-add', 'data': {'id'      : 'str',
                                     'backend' : 'ChardevBackend' },
  'returns': 'ChardevReturn' }

##
# @chardev-remove:
#
5059
# Remove a character device backend
5060 5061 5062 5063 5064 5065
#
# @id: the chardev's ID, must exist and not be in use
#
# Returns: Nothing on success
#
# Since: 1.4
5066 5067 5068 5069 5070 5071
#
# Example:
#
# -> { "execute": "chardev-remove", "arguments": { "id" : "foo" } }
# <- { "return": {} }
#
5072 5073
##
{ 'command': 'chardev-remove', 'data': {'id': 'str'} }
5074 5075 5076 5077 5078 5079 5080 5081 5082 5083 5084 5085 5086 5087 5088 5089 5090 5091 5092 5093

##
# @TpmModel:
#
# An enumeration of TPM models
#
# @tpm-tis: TPM TIS model
#
# Since: 1.5
##
{ 'enum': 'TpmModel', 'data': [ 'tpm-tis' ] }

##
# @query-tpm-models:
#
# Return a list of supported TPM models
#
# Returns: a list of TpmModel
#
# Since: 1.5
5094 5095 5096 5097 5098 5099
#
# Example:
#
# -> { "execute": "query-tpm-models" }
# <- { "return": [ "tpm-tis" ] }
#
5100 5101 5102 5103 5104 5105 5106 5107 5108 5109 5110 5111 5112 5113 5114 5115 5116 5117 5118 5119 5120 5121
##
{ 'command': 'query-tpm-models', 'returns': ['TpmModel'] }

##
# @TpmType:
#
# An enumeration of TPM types
#
# @passthrough: TPM passthrough type
#
# Since: 1.5
##
{ 'enum': 'TpmType', 'data': [ 'passthrough' ] }

##
# @query-tpm-types:
#
# Return a list of supported TPM types
#
# Returns: a list of TpmType
#
# Since: 1.5
5122 5123 5124 5125 5126 5127
#
# Example:
#
# -> { "execute": "query-tpm-types" }
# <- { "return": [ "passthrough" ] }
#
5128 5129 5130 5131 5132 5133 5134 5135
##
{ 'command': 'query-tpm-types', 'returns': ['TpmType'] }

##
# @TPMPassthroughOptions:
#
# Information about the TPM passthrough type
#
5136
# @path: string describing the path used for accessing the TPM device
5137
#
5138
# @cancel-path: string showing the TPM's sysfs cancel file
5139 5140 5141 5142
#               for cancellation of TPM commands while they are executing
#
# Since: 1.5
##
5143
{ 'struct': 'TPMPassthroughOptions', 'data': { '*path' : 'str',
5144 5145 5146 5147 5148 5149 5150
                                             '*cancel-path' : 'str'} }

##
# @TpmTypeOptions:
#
# A union referencing different TPM backend types' configuration options
#
5151
# @type: 'passthrough' The configuration options for the TPM passthrough type
5152 5153 5154 5155
#
# Since: 1.5
##
{ 'union': 'TpmTypeOptions',
5156
   'data': { 'passthrough' : 'TPMPassthroughOptions' } }
5157 5158

##
5159
# @TPMInfo:
5160 5161 5162 5163 5164 5165 5166
#
# Information about the TPM
#
# @id: The Id of the TPM
#
# @model: The TPM frontend model
#
5167
# @options: The TPM (backend) type configuration options
5168 5169 5170
#
# Since: 1.5
##
5171
{ 'struct': 'TPMInfo',
5172 5173
  'data': {'id': 'str',
           'model': 'TpmModel',
5174
           'options': 'TpmTypeOptions' } }
5175 5176 5177 5178 5179 5180 5181 5182 5183

##
# @query-tpm:
#
# Return information about the TPM device
#
# Returns: @TPMInfo on success
#
# Since: 1.5
5184 5185 5186 5187 5188 5189 5190 5191 5192 5193 5194 5195 5196 5197 5198 5199 5200 5201 5202
#
# Example:
#
# -> { "execute": "query-tpm" }
# <- { "return":
#      [
#        { "model": "tpm-tis",
#          "options":
#            { "type": "passthrough",
#              "data":
#                { "cancel-path": "/sys/class/misc/tpm0/device/cancel",
#                  "path": "/dev/tpm0"
#                }
#            },
#          "id": "tpm0"
#        }
#      ]
#    }
#
5203 5204
##
{ 'command': 'query-tpm', 'returns': ['TPMInfo'] }
L
Laszlo Ersek 已提交
5205 5206

##
5207
# @AcpiTableOptions:
L
Laszlo Ersek 已提交
5208 5209 5210 5211 5212 5213 5214 5215 5216 5217 5218 5219 5220 5221 5222 5223
#
# Specify an ACPI table on the command line to load.
#
# At most one of @file and @data can be specified. The list of files specified
# by any one of them is loaded and concatenated in order. If both are omitted,
# @data is implied.
#
# Other fields / optargs can be used to override fields of the generic ACPI
# table header; refer to the ACPI specification 5.0, section 5.2.6 System
# Description Table Header. If a header field is not overridden, then the
# corresponding value from the concatenated blob is used (in case of @file), or
# it is filled in with a hard-coded value (in case of @data).
#
# String fields are copied into the matching ACPI member from lowest address
# upwards, and silently truncated / NUL-padded to length.
#
5224
# @sig: table signature / identifier (4 bytes)
L
Laszlo Ersek 已提交
5225
#
5226
# @rev: table revision number (dependent on signature, 1 byte)
L
Laszlo Ersek 已提交
5227
#
5228
# @oem_id: OEM identifier (6 bytes)
L
Laszlo Ersek 已提交
5229
#
5230
# @oem_table_id: OEM table identifier (8 bytes)
L
Laszlo Ersek 已提交
5231
#
5232
# @oem_rev: OEM-supplied revision number (4 bytes)
L
Laszlo Ersek 已提交
5233
#
5234
# @asl_compiler_id: identifier of the utility that created the table
L
Laszlo Ersek 已提交
5235 5236
#                   (4 bytes)
#
5237
# @asl_compiler_rev: revision number of the utility that created the
L
Laszlo Ersek 已提交
5238 5239
#                    table (4 bytes)
#
5240
# @file: colon (:) separated list of pathnames to load and
L
Laszlo Ersek 已提交
5241 5242 5243 5244
#        concatenate as table data. The resultant binary blob is expected to
#        have an ACPI table header. At least one file is required. This field
#        excludes @data.
#
5245
# @data: colon (:) separated list of pathnames to load and
L
Laszlo Ersek 已提交
5246 5247 5248 5249
#        concatenate as table data. The resultant binary blob must not have an
#        ACPI table header. At least one file is required. This field excludes
#        @file.
#
5250
# Since: 1.5
L
Laszlo Ersek 已提交
5251
##
5252
{ 'struct': 'AcpiTableOptions',
L
Laszlo Ersek 已提交
5253 5254 5255 5256 5257 5258 5259 5260 5261 5262
  'data': {
    '*sig':               'str',
    '*rev':               'uint8',
    '*oem_id':            'str',
    '*oem_table_id':      'str',
    '*oem_rev':           'uint32',
    '*asl_compiler_id':   'str',
    '*asl_compiler_rev':  'uint32',
    '*file':              'str',
    '*data':              'str' }}
5263 5264 5265 5266 5267 5268 5269 5270 5271 5272 5273 5274 5275 5276 5277

##
# @CommandLineParameterType:
#
# Possible types for an option parameter.
#
# @string: accepts a character string
#
# @boolean: accepts "on" or "off"
#
# @number: accepts a number
#
# @size: accepts a number followed by an optional suffix (K)ilo,
#        (M)ega, (G)iga, (T)era
#
5278
# Since: 1.5
5279 5280 5281 5282 5283 5284 5285 5286 5287 5288 5289 5290 5291
##
{ 'enum': 'CommandLineParameterType',
  'data': ['string', 'boolean', 'number', 'size'] }

##
# @CommandLineParameterInfo:
#
# Details about a single parameter of a command line option.
#
# @name: parameter name
#
# @type: parameter @CommandLineParameterType
#
5292
# @help: human readable text string, not suitable for parsing.
5293
#
5294
# @default: default value string (since 2.1)
5295
#
5296
# Since: 1.5
5297
##
5298
{ 'struct': 'CommandLineParameterInfo',
5299 5300
  'data': { 'name': 'str',
            'type': 'CommandLineParameterType',
5301 5302
            '*help': 'str',
            '*default': 'str' } }
5303 5304 5305 5306 5307 5308 5309 5310 5311 5312

##
# @CommandLineOptionInfo:
#
# Details about a command line option, including its list of parameter details
#
# @option: option name
#
# @parameters: an array of @CommandLineParameterInfo
#
5313
# Since: 1.5
5314
##
5315
{ 'struct': 'CommandLineOptionInfo',
5316 5317 5318 5319 5320 5321 5322
  'data': { 'option': 'str', 'parameters': ['CommandLineParameterInfo'] } }

##
# @query-command-line-options:
#
# Query command line option schema.
#
5323
# @option: option name
5324 5325 5326 5327
#
# Returns: list of @CommandLineOptionInfo for all options (or for the given
#          @option).  Returns an error if the given @option doesn't exist.
#
5328
# Since: 1.5
5329 5330 5331 5332 5333 5334 5335 5336 5337 5338 5339 5340 5341 5342 5343 5344 5345 5346 5347 5348 5349 5350
#
# Example:
#
# -> { "execute": "query-command-line-options",
#      "arguments": { "option": "option-rom" } }
# <- { "return": [
#         {
#             "parameters": [
#                 {
#                     "name": "romfile",
#                     "type": "string"
#                 },
#                 {
#                     "name": "bootindex",
#                     "type": "number"
#                 }
#             ],
#             "option": "option-rom"
#         }
#      ]
#    }
#
5351 5352 5353
##
{'command': 'query-command-line-options', 'data': { '*option': 'str' },
 'returns': ['CommandLineOptionInfo'] }
5354 5355

##
5356
# @X86CPURegister32:
5357 5358 5359 5360 5361 5362 5363 5364 5365
#
# A X86 32-bit register
#
# Since: 1.5
##
{ 'enum': 'X86CPURegister32',
  'data': [ 'EAX', 'EBX', 'ECX', 'EDX', 'ESP', 'EBP', 'ESI', 'EDI' ] }

##
5366
# @X86CPUFeatureWordInfo:
5367 5368 5369 5370 5371
#
# Information about a X86 CPU feature word
#
# @cpuid-input-eax: Input EAX value for CPUID instruction for that feature word
#
5372
# @cpuid-input-ecx: Input ECX value for CPUID instruction for that
5373 5374 5375 5376 5377 5378 5379 5380
#                   feature word
#
# @cpuid-register: Output register containing the feature bits
#
# @features: value of output register, containing the feature bits
#
# Since: 1.5
##
5381
{ 'struct': 'X86CPUFeatureWordInfo',
5382 5383 5384 5385
  'data': { 'cpuid-input-eax': 'int',
            '*cpuid-input-ecx': 'int',
            'cpuid-register': 'X86CPURegister32',
            'features': 'int' } }
5386

E
Eric Blake 已提交
5387
##
5388
# @DummyForceArrays:
E
Eric Blake 已提交
5389 5390 5391
#
# Not used by QMP; hack to let us use X86CPUFeatureWordInfoList internally
#
5392
# Since: 2.5
E
Eric Blake 已提交
5393 5394 5395 5396 5397
##
{ 'struct': 'DummyForceArrays',
  'data': { 'unused': ['X86CPUFeatureWordInfo'] } }


5398 5399 5400 5401 5402 5403 5404 5405 5406 5407 5408 5409 5410 5411 5412 5413 5414 5415 5416 5417 5418 5419 5420 5421 5422 5423 5424 5425
##
# @RxState:
#
# Packets receiving state
#
# @normal: filter assigned packets according to the mac-table
#
# @none: don't receive any assigned packet
#
# @all: receive all assigned packets
#
# Since: 1.6
##
{ 'enum': 'RxState', 'data': [ 'normal', 'none', 'all' ] }

##
# @RxFilterInfo:
#
# Rx-filter information for a NIC.
#
# @name: net client name
#
# @promiscuous: whether promiscuous mode is enabled
#
# @multicast: multicast receive state
#
# @unicast: unicast receive state
#
5426 5427
# @vlan: vlan receive state (Since 2.0)
#
5428 5429 5430 5431 5432 5433 5434 5435 5436 5437 5438 5439 5440 5441
# @broadcast-allowed: whether to receive broadcast
#
# @multicast-overflow: multicast table is overflowed or not
#
# @unicast-overflow: unicast table is overflowed or not
#
# @main-mac: the main macaddr string
#
# @vlan-table: a list of active vlan id
#
# @unicast-table: a list of unicast macaddr string
#
# @multicast-table: a list of multicast macaddr string
#
5442
# Since: 1.6
5443
##
5444
{ 'struct': 'RxFilterInfo',
5445 5446 5447 5448 5449
  'data': {
    'name':               'str',
    'promiscuous':        'bool',
    'multicast':          'RxState',
    'unicast':            'RxState',
5450
    'vlan':               'RxState',
5451 5452 5453 5454 5455 5456 5457 5458 5459 5460 5461 5462 5463
    'broadcast-allowed':  'bool',
    'multicast-overflow': 'bool',
    'unicast-overflow':   'bool',
    'main-mac':           'str',
    'vlan-table':         ['int'],
    'unicast-table':      ['str'],
    'multicast-table':    ['str'] }}

##
# @query-rx-filter:
#
# Return rx-filter information for all NICs (or for the given NIC).
#
5464
# @name: net client name
5465 5466 5467 5468 5469 5470 5471
#
# Returns: list of @RxFilterInfo for all NICs (or for the given NIC).
#          Returns an error if the given @name doesn't exist, or given
#          NIC doesn't support rx-filter querying, or given net client
#          isn't a NIC.
#
# Since: 1.6
5472 5473 5474 5475 5476 5477 5478 5479 5480 5481 5482 5483 5484 5485 5486 5487 5488 5489 5490 5491 5492 5493 5494 5495 5496 5497 5498 5499 5500 5501
#
# Example:
#
# -> { "execute": "query-rx-filter", "arguments": { "name": "vnet0" } }
# <- { "return": [
#         {
#             "promiscuous": true,
#             "name": "vnet0",
#             "main-mac": "52:54:00:12:34:56",
#             "unicast": "normal",
#             "vlan": "normal",
#             "vlan-table": [
#                 4,
#                 0
#             ],
#             "unicast-table": [
#             ],
#             "multicast": "normal",
#             "multicast-overflow": false,
#             "unicast-overflow": false,
#             "multicast-table": [
#                 "01:00:5e:00:00:01",
#                 "33:33:00:00:00:01",
#                 "33:33:ff:12:34:56"
#             ],
#             "broadcast-allowed": false
#         }
#       ]
#    }
#
5502 5503 5504
##
{ 'command': 'query-rx-filter', 'data': { '*name': 'str' },
  'returns': ['RxFilterInfo'] }
K
Kevin Wolf 已提交
5505

G
Gerd Hoffmann 已提交
5506
##
5507
# @InputButton:
G
Gerd Hoffmann 已提交
5508 5509 5510
#
# Button of a pointer input device (mouse, tablet).
#
5511 5512 5513 5514
# @side: front side button of a 5-button mouse (since 2.9)
#
# @extra: rear side button of a 5-button mouse (since 2.9)
#
G
Gerd Hoffmann 已提交
5515 5516 5517
# Since: 2.0
##
{ 'enum'  : 'InputButton',
5518 5519
  'data'  : [ 'left', 'middle', 'right', 'wheel-up', 'wheel-down', 'side',
  'extra' ] }
G
Gerd Hoffmann 已提交
5520 5521

##
5522
# @InputAxis:
G
Gerd Hoffmann 已提交
5523 5524 5525 5526 5527 5528
#
# Position axis of a pointer input device (mouse, tablet).
#
# Since: 2.0
##
{ 'enum'  : 'InputAxis',
G
Gerd Hoffmann 已提交
5529
  'data'  : [ 'x', 'y' ] }
G
Gerd Hoffmann 已提交
5530 5531

##
5532
# @InputKeyEvent:
G
Gerd Hoffmann 已提交
5533 5534 5535 5536 5537 5538 5539 5540
#
# Keyboard input event.
#
# @key:    Which key this event is for.
# @down:   True for key-down and false for key-up events.
#
# Since: 2.0
##
5541
{ 'struct'  : 'InputKeyEvent',
G
Gerd Hoffmann 已提交
5542 5543 5544 5545
  'data'  : { 'key'     : 'KeyValue',
              'down'    : 'bool' } }

##
5546
# @InputBtnEvent:
G
Gerd Hoffmann 已提交
5547 5548 5549 5550 5551 5552 5553 5554
#
# Pointer button input event.
#
# @button: Which button this event is for.
# @down:   True for key-down and false for key-up events.
#
# Since: 2.0
##
5555
{ 'struct'  : 'InputBtnEvent',
G
Gerd Hoffmann 已提交
5556 5557 5558 5559
  'data'  : { 'button'  : 'InputButton',
              'down'    : 'bool' } }

##
5560
# @InputMoveEvent:
G
Gerd Hoffmann 已提交
5561 5562 5563 5564 5565 5566 5567 5568 5569
#
# Pointer motion input event.
#
# @axis:   Which axis is referenced by @value.
# @value:  Pointer position.  For absolute coordinates the
#          valid range is 0 -> 0x7ffff
#
# Since: 2.0
##
5570
{ 'struct'  : 'InputMoveEvent',
G
Gerd Hoffmann 已提交
5571 5572 5573 5574
  'data'  : { 'axis'    : 'InputAxis',
              'value'   : 'int' } }

##
5575
# @InputEvent:
G
Gerd Hoffmann 已提交
5576 5577 5578
#
# Input event union.
#
5579 5580 5581 5582 5583
# @type: the input type, one of:
#  - 'key': Input event of Keyboard
#  - 'btn': Input event of pointer buttons
#  - 'rel': Input event of relative pointer motion
#  - 'abs': Input event of absolute pointer motion
5584
#
G
Gerd Hoffmann 已提交
5585 5586 5587 5588 5589 5590 5591
# Since: 2.0
##
{ 'union' : 'InputEvent',
  'data'  : { 'key'     : 'InputKeyEvent',
              'btn'     : 'InputBtnEvent',
              'rel'     : 'InputMoveEvent',
              'abs'     : 'InputMoveEvent' } }
5592

M
Marcelo Tosatti 已提交
5593
##
5594
# @input-send-event:
M
Marcelo Tosatti 已提交
5595 5596 5597
#
# Send input event(s) to guest.
#
5598 5599
# @device: display device to send event(s) to.
# @head: head to send event(s) to, in case the
5600
#        display device supports multiple scanouts.
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5601 5602 5603 5604
# @events: List of InputEvent union.
#
# Returns: Nothing on success.
#
5605 5606 5607
# The @device and @head parameters can be used to send the input event
# to specific input devices in case (a) multiple input devices of the
# same kind are added to the virtual machine and (b) you have
5608 5609 5610 5611 5612 5613 5614
# configured input routing (see docs/multiseat.txt) for those input
# devices.  The parameters work exactly like the device and head
# properties of input devices.  If @device is missing, only devices
# that have no input routing config are admissible.  If @device is
# specified, both input devices with and without input routing config
# are admissible, but devices with input routing config take
# precedence.
5615
#
5616
# Since: 2.6
5617 5618 5619 5620 5621 5622 5623 5624 5625 5626 5627 5628 5629 5630 5631 5632 5633 5634 5635 5636 5637 5638 5639 5640 5641 5642 5643 5644 5645 5646 5647 5648 5649 5650 5651 5652 5653 5654 5655 5656 5657 5658
#
# Note: The consoles are visible in the qom tree, under
# /backend/console[$index]. They have a device link and head property,
# so it is possible to map which console belongs to which device and
# display.
#
# Example:
#
# 1. Press left mouse button.
#
# -> { "execute": "input-send-event",
#     "arguments": { "device": "video0",
#                    "events": [ { "type": "btn",
#                    "data" : { "down": true, "button": "left" } } ] } }
# <- { "return": {} }
#
# -> { "execute": "input-send-event",
#     "arguments": { "device": "video0",
#                    "events": [ { "type": "btn",
#                    "data" : { "down": false, "button": "left" } } ] } }
# <- { "return": {} }
#
# 2. Press ctrl-alt-del.
#
# -> { "execute": "input-send-event",
#      "arguments": { "events": [
#         { "type": "key", "data" : { "down": true,
#           "key": {"type": "qcode", "data": "ctrl" } } },
#         { "type": "key", "data" : { "down": true,
#           "key": {"type": "qcode", "data": "alt" } } },
#         { "type": "key", "data" : { "down": true,
#           "key": {"type": "qcode", "data": "delete" } } } ] } }
# <- { "return": {} }
#
# 3. Move mouse pointer to absolute coordinates (20000, 400).
#
# -> { "execute": "input-send-event" ,
#   "arguments": { "events": [
#                { "type": "abs", "data" : { "axis": "x", "value" : 20000 } },
#                { "type": "abs", "data" : { "axis": "y", "value" : 400 } } ] } }
# <- { "return": {} }
#
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5659
##
5660
{ 'command': 'input-send-event',
5661 5662 5663
  'data': { '*device': 'str',
            '*head'  : 'int',
            'events' : [ 'InputEvent' ] } }
M
Marcelo Tosatti 已提交
5664

5665 5666 5667 5668 5669 5670 5671 5672
##
# @NumaOptionsType:
#
# Since: 2.1
##
{ 'enum': 'NumaOptionsType',
  'data': [ 'node' ] }

5673
##
5674
# @NumaOptions:
5675 5676 5677
#
# A discriminated record of NUMA options. (for OptsVisitor)
#
5678
# Since: 2.1
5679 5680
##
{ 'union': 'NumaOptions',
5681 5682
  'base': { 'type': 'NumaOptionsType' },
  'discriminator': 'type',
5683 5684 5685 5686
  'data': {
    'node': 'NumaNodeOptions' }}

##
5687
# @NumaNodeOptions:
5688 5689 5690
#
# Create a guest NUMA node. (for OptsVisitor)
#
5691
# @nodeid: NUMA node ID (increase by 1 from 0 if omitted)
5692
#
5693
# @cpus: VCPUs belonging to this node (assign VCPUS round-robin
5694 5695
#         if omitted)
#
5696
# @mem: memory size of this node; mutually exclusive with @memdev.
5697 5698 5699
#       Equally divide total memory among nodes if both @mem and @memdev are
#       omitted.
#
5700
# @memdev: memory backend object.  If specified for one node,
5701
#          it must be specified for all nodes.
5702 5703 5704
#
# Since: 2.1
##
5705
{ 'struct': 'NumaNodeOptions',
5706 5707 5708
  'data': {
   '*nodeid': 'uint16',
   '*cpus':   ['uint16'],
5709 5710
   '*mem':    'size',
   '*memdev': 'str' }}
5711 5712

##
5713
# @HostMemPolicy:
5714 5715 5716 5717 5718 5719 5720 5721 5722 5723 5724 5725 5726
#
# Host memory policy types
#
# @default: restore default policy, remove any nondefault policy
#
# @preferred: set the preferred host nodes for allocation
#
# @bind: a strict policy that restricts memory allocation to the
#        host nodes specified
#
# @interleave: memory allocations are interleaved across the set
#              of host nodes specified
#
5727
# Since: 2.1
5728 5729 5730
##
{ 'enum': 'HostMemPolicy',
  'data': [ 'default', 'preferred', 'bind', 'interleave' ] }
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5731 5732 5733 5734

##
# @Memdev:
#
5735
# Information about memory backend
H
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5736
#
5737
# @id: backend's ID if backend has 'id' property (since 2.9)
5738
#
5739
# @size: memory backend size
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5740 5741 5742
#
# @merge: enables or disables memory merge support
#
5743
# @dump: includes memory backend's memory in a core dump or not
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5744 5745 5746 5747 5748
#
# @prealloc: enables or disables memory preallocation
#
# @host-nodes: host nodes for its memory policy
#
5749
# @policy: memory policy of memory backend
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5750 5751 5752
#
# Since: 2.1
##
5753
{ 'struct': 'Memdev',
H
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5754
  'data': {
5755
    '*id':        'str',
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5756 5757 5758 5759 5760 5761 5762 5763 5764 5765
    'size':       'size',
    'merge':      'bool',
    'dump':       'bool',
    'prealloc':   'bool',
    'host-nodes': ['uint16'],
    'policy':     'HostMemPolicy' }}

##
# @query-memdev:
#
5766
# Returns information for all memory backends.
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5767 5768 5769 5770
#
# Returns: a list of @Memdev.
#
# Since: 2.1
5771 5772 5773 5774 5775 5776 5777 5778 5779 5780 5781 5782 5783 5784 5785 5786 5787 5788 5789 5790 5791 5792 5793 5794 5795
#
# Example:
#
# -> { "execute": "query-memdev" }
# <- { "return": [
#        {
#          "id": "mem1",
#          "size": 536870912,
#          "merge": false,
#          "dump": true,
#          "prealloc": false,
#          "host-nodes": [0, 1],
#          "policy": "bind"
#        },
#        {
#          "size": 536870912,
#          "merge": false,
#          "dump": true,
#          "prealloc": true,
#          "host-nodes": [2, 3],
#          "policy": "preferred"
#        }
#      ]
#    }
#
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5796 5797
##
{ 'command': 'query-memdev', 'returns': ['Memdev'] }
5798 5799

##
5800 5801 5802 5803
# @PCDIMMDeviceInfo:
#
# PCDIMMDevice state information
#
5804
# @id: device's ID
5805 5806 5807 5808 5809 5810 5811 5812 5813 5814 5815 5816 5817 5818 5819 5820 5821
#
# @addr: physical address, where device is mapped
#
# @size: size of memory that the device provides
#
# @slot: slot number at which device is plugged in
#
# @node: NUMA node number where device is plugged in
#
# @memdev: memory backend linked with device
#
# @hotplugged: true if device was hotplugged
#
# @hotpluggable: true if device if could be added/removed while machine is running
#
# Since: 2.1
##
5822
{ 'struct': 'PCDIMMDeviceInfo',
5823 5824 5825 5826 5827 5828 5829 5830 5831 5832 5833 5834 5835 5836 5837 5838 5839 5840 5841 5842 5843
  'data': { '*id': 'str',
            'addr': 'int',
            'size': 'int',
            'slot': 'int',
            'node': 'int',
            'memdev': 'str',
            'hotplugged': 'bool',
            'hotpluggable': 'bool'
          }
}

##
# @MemoryDeviceInfo:
#
# Union containing information about a memory device
#
# Since: 2.1
##
{ 'union': 'MemoryDeviceInfo', 'data': {'dimm': 'PCDIMMDeviceInfo'} }

##
5844
# @query-memory-devices:
5845 5846 5847 5848
#
# Lists available memory devices and their state
#
# Since: 2.1
5849 5850 5851 5852 5853 5854 5855 5856 5857 5858 5859 5860 5861 5862 5863 5864
#
# Example:
#
# -> { "execute": "query-memory-devices" }
# <- { "return": [ { "data":
#                       { "addr": 5368709120,
#                         "hotpluggable": true,
#                         "hotplugged": true,
#                         "id": "d1",
#                         "memdev": "/objects/memX",
#                         "node": 0,
#                         "size": 1073741824,
#                         "slot": 0},
#                    "type": "dimm"
#                  } ] }
#
5865 5866
##
{ 'command': 'query-memory-devices', 'returns': ['MemoryDeviceInfo'] }
5867

5868
##
5869
# @ACPISlotType:
5870 5871
#
# @DIMM: memory slot
5872
# @CPU: logical CPU slot (since 2.7)
5873
##
5874
{ 'enum': 'ACPISlotType', 'data': [ 'DIMM', 'CPU' ] }
5875

5876
##
5877
# @ACPIOSTInfo:
5878 5879 5880 5881 5882
#
# OSPM Status Indication for a device
# For description of possible values of @source and @status fields
# see "_OST (OSPM Status Indication)" chapter of ACPI5.0 spec.
#
5883
# @device: device ID associated with slot
5884 5885 5886 5887 5888 5889 5890 5891 5892 5893 5894
#
# @slot: slot ID, unique per slot of a given @slot-type
#
# @slot-type: type of the slot
#
# @source: an integer containing the source event
#
# @status: an integer containing the status code
#
# Since: 2.1
##
5895
{ 'struct': 'ACPIOSTInfo',
5896 5897 5898 5899 5900
  'data'  : { '*device': 'str',
              'slot': 'str',
              'slot-type': 'ACPISlotType',
              'source': 'int',
              'status': 'int' } }
5901 5902

##
5903
# @query-acpi-ospm-status:
5904
#
5905 5906
# Return a list of ACPIOSTInfo for devices that support status
# reporting via ACPI _OST method.
5907 5908
#
# Since: 2.1
5909 5910 5911 5912 5913 5914 5915 5916 5917 5918
#
# Example:
#
# -> { "execute": "query-acpi-ospm-status" }
# <- { "return": [ { "device": "d1", "slot": "0", "slot-type": "DIMM", "source": 1, "status": 0},
#                  { "slot": "1", "slot-type": "DIMM", "source": 0, "status": 0},
#                  { "slot": "2", "slot-type": "DIMM", "source": 0, "status": 0},
#                  { "slot": "3", "slot-type": "DIMM", "source": 0, "status": 0}
#    ]}
#
5919 5920
##
{ 'command': 'query-acpi-ospm-status', 'returns': ['ACPIOSTInfo'] }
5921

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5922
##
5923
# @WatchdogExpirationAction:
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5924 5925 5926 5927 5928 5929 5930 5931 5932 5933 5934 5935 5936 5937 5938 5939 5940
#
# An enumeration of the actions taken when the watchdog device's timer is
# expired
#
# @reset: system resets
#
# @shutdown: system shutdown, note that it is similar to @powerdown, which
#            tries to set to system status and notify guest
#
# @poweroff: system poweroff, the emulator program exits
#
# @pause: system pauses, similar to @stop
#
# @debug: system enters debug state
#
# @none: nothing is done
#
5941 5942 5943
# @inject-nmi: a non-maskable interrupt is injected into the first VCPU (all
#              VCPUS on x86) (since 2.4)
#
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5944 5945 5946
# Since: 2.1
##
{ 'enum': 'WatchdogExpirationAction',
5947 5948
  'data': [ 'reset', 'shutdown', 'poweroff', 'pause', 'debug', 'none',
            'inject-nmi' ] }
W
Wenchao Xia 已提交
5949

5950
##
5951
# @IoOperationType:
5952 5953 5954 5955 5956 5957 5958 5959 5960 5961 5962 5963
#
# An enumeration of the I/O operation types
#
# @read: read operation
#
# @write: write operation
#
# Since: 2.1
##
{ 'enum': 'IoOperationType',
  'data': [ 'read', 'write' ] }

W
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5964
##
5965
# @GuestPanicAction:
W
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5966 5967 5968 5969 5970
#
# An enumeration of the actions taken when guest OS panic is detected
#
# @pause: system pauses
#
5971
# Since: 2.1 (poweroff since 2.8)
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Wenchao Xia 已提交
5972 5973
##
{ 'enum': 'GuestPanicAction',
5974
  'data': [ 'pause', 'poweroff' ] }
5975

5976 5977 5978 5979 5980 5981 5982 5983 5984 5985
##
# @GuestPanicInformationType:
#
# An enumeration of the guest panic information types
#
# Since: 2.9
##
{ 'enum': 'GuestPanicInformationType',
  'data': [ 'hyper-v'] }

5986 5987 5988 5989 5990 5991 5992 5993
##
# @GuestPanicInformation:
#
# Information about a guest panic
#
# Since: 2.9
##
{'union': 'GuestPanicInformation',
5994 5995
 'base': {'type': 'GuestPanicInformationType'},
 'discriminator': 'type',
5996 5997 5998 5999 6000 6001 6002 6003 6004 6005 6006 6007 6008 6009 6010 6011
 'data': { 'hyper-v': 'GuestPanicInformationHyperV' } }

##
# @GuestPanicInformationHyperV:
#
# Hyper-V specific guest panic information (HV crash MSRs)
#
# Since: 2.9
##
{'struct': 'GuestPanicInformationHyperV',
 'data': { 'arg1': 'uint64',
           'arg2': 'uint64',
           'arg3': 'uint64',
           'arg4': 'uint64',
           'arg5': 'uint64' } }

6012
##
6013
# @rtc-reset-reinjection:
6014 6015 6016 6017 6018 6019 6020
#
# This command will reset the RTC interrupt reinjection backlog.
# Can be used if another mechanism to synchronize guest time
# is in effect, for example QEMU guest agent's guest-set-time
# command.
#
# Since: 2.1
6021 6022 6023 6024 6025 6026
#
# Example:
#
# -> { "execute": "rtc-reset-reinjection" }
# <- { "return": {} }
#
6027 6028
##
{ 'command': 'rtc-reset-reinjection' }
6029 6030 6031

# Rocker ethernet network switch
{ 'include': 'qapi/rocker.json' }
6032 6033

##
6034
# @ReplayMode:
6035 6036 6037 6038 6039 6040 6041 6042 6043 6044 6045 6046 6047 6048 6049
#
# Mode of the replay subsystem.
#
# @none: normal execution mode. Replay or record are not enabled.
#
# @record: record mode. All non-deterministic data is written into the
#          replay log.
#
# @play: replay mode. Non-deterministic data required for system execution
#        is read from the log.
#
# Since: 2.5
##
{ 'enum': 'ReplayMode',
  'data': [ 'none', 'record', 'play' ] }
6050

6051 6052 6053 6054 6055 6056 6057 6058 6059 6060 6061
##
# @xen-load-devices-state:
#
# Load the state of all devices from file. The RAM and the block devices
# of the VM are not loaded by this command.
#
# @filename: the file to load the state of the devices from as binary
# data. See xen-save-devices-state.txt for a description of the binary
# format.
#
# Since: 2.7
6062 6063 6064 6065 6066 6067 6068
#
# Example:
#
# -> { "execute": "xen-load-devices-state",
#      "arguments": { "filename": "/tmp/resume" } }
# <- { "return": {} }
#
6069 6070 6071
##
{ 'command': 'xen-load-devices-state', 'data': {'filename': 'str'} }

6072 6073 6074 6075 6076 6077 6078 6079 6080
##
# @xen-set-replication:
#
# Enable or disable replication.
#
# @enable: true to enable, false to disable.
#
# @primary: true for primary or false for secondary.
#
6081
# @failover: true to do failover, false to stop. but cannot be
6082 6083 6084 6085 6086 6087 6088 6089 6090 6091 6092 6093 6094 6095 6096
#            specified if 'enable' is true. default value is false.
#
# Returns: nothing.
#
# Example:
#
# -> { "execute": "xen-set-replication",
#      "arguments": {"enable": true, "primary": false} }
# <- { "return": {} }
#
# Since: 2.9
##
{ 'command': 'xen-set-replication',
  'data': { 'enable': 'bool', 'primary': 'bool', '*failover' : 'bool' } }

6097 6098 6099 6100 6101 6102 6103
##
# @ReplicationStatus:
#
# The result format for 'query-xen-replication-status'.
#
# @error: true if an error happened, false if replication is normal.
#
6104
# @desc: the human readable error description string, when
6105 6106 6107 6108 6109 6110 6111 6112 6113 6114 6115 6116 6117 6118 6119 6120 6121 6122 6123 6124 6125 6126 6127 6128 6129 6130 6131 6132 6133 6134 6135 6136 6137 6138 6139 6140 6141 6142 6143 6144
#        @error is 'true'.
#
# Since: 2.9
##
{ 'struct': 'ReplicationStatus',
  'data': { 'error': 'bool', '*desc': 'str' } }

##
# @query-xen-replication-status:
#
# Query replication status while the vm is running.
#
# Returns: A @ReplicationResult object showing the status.
#
# Example:
#
# -> { "execute": "query-xen-replication-status" }
# <- { "return": { "error": false } }
#
# Since: 2.9
##
{ 'command': 'query-xen-replication-status',
  'returns': 'ReplicationStatus' }

##
# @xen-colo-do-checkpoint:
#
# Xen uses this command to notify replication to trigger a checkpoint.
#
# Returns: nothing.
#
# Example:
#
# -> { "execute": "xen-colo-do-checkpoint" }
# <- { "return": {} }
#
# Since: 2.9
##
{ 'command': 'xen-colo-do-checkpoint' }

6145 6146 6147 6148 6149 6150 6151 6152 6153 6154 6155 6156 6157 6158 6159 6160 6161 6162 6163 6164 6165 6166 6167 6168 6169 6170 6171 6172 6173 6174 6175 6176 6177
##
# @GICCapability:
#
# The struct describes capability for a specific GIC (Generic
# Interrupt Controller) version. These bits are not only decided by
# QEMU/KVM software version, but also decided by the hardware that
# the program is running upon.
#
# @version:  version of GIC to be described. Currently, only 2 and 3
#            are supported.
#
# @emulated: whether current QEMU/hardware supports emulated GIC
#            device in user space.
#
# @kernel:   whether current QEMU/hardware supports hardware
#            accelerated GIC device in kernel.
#
# Since: 2.6
##
{ 'struct': 'GICCapability',
  'data': { 'version': 'int',
            'emulated': 'bool',
            'kernel': 'bool' } }

##
# @query-gic-capabilities:
#
# This command is ARM-only. It will return a list of GICCapability
# objects that describe its capability bits.
#
# Returns: a list of GICCapability objects.
#
# Since: 2.6
6178 6179 6180 6181 6182 6183 6184
#
# Example:
#
# -> { "execute": "query-gic-capabilities" }
# <- { "return": [{ "version": 2, "emulated": true, "kernel": false },
#                 { "version": 3, "emulated": false, "kernel": true } ] }
#
6185 6186
##
{ 'command': 'query-gic-capabilities', 'returns': ['GICCapability'] }
I
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6187 6188

##
6189
# @CpuInstanceProperties:
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6190 6191 6192 6193 6194
#
# List of properties to be used for hotplugging a CPU instance,
# it should be passed by management with device_add command when
# a CPU is being hotplugged.
#
6195 6196 6197 6198
# @node-id: NUMA node ID the CPU belongs to
# @socket-id: socket number within node/board the CPU belongs to
# @core-id: core number within socket the CPU belongs to
# @thread-id: thread number within core the CPU belongs to
6199
#
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6200 6201 6202
# Note: currently there are 4 properties that could be present
# but management should be prepared to pass through other
# properties with device_add command to allow for future
6203 6204
# interface extension. This also requires the filed names to be kept in
# sync with the properties passed to -device/device_add.
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6205 6206 6207 6208
#
# Since: 2.7
##
{ 'struct': 'CpuInstanceProperties',
6209 6210 6211 6212
  'data': { '*node-id': 'int',
            '*socket-id': 'int',
            '*core-id': 'int',
            '*thread-id': 'int'
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6213 6214 6215 6216
  }
}

##
6217
# @HotpluggableCPU:
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6218 6219 6220 6221
#
# @type: CPU object type for usage with device_add command
# @props: list of properties to be used for hotplugging CPU
# @vcpus-count: number of logical VCPU threads @HotpluggableCPU provides
6222
# @qom-path: link to existing CPU object if CPU is present or
I
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6223 6224 6225 6226 6227 6228 6229 6230 6231 6232 6233 6234 6235
#            omitted if CPU is not present.
#
# Since: 2.7
##
{ 'struct': 'HotpluggableCPU',
  'data': { 'type': 'str',
            'vcpus-count': 'int',
            'props': 'CpuInstanceProperties',
            '*qom-path': 'str'
          }
}

##
6236
# @query-hotpluggable-cpus:
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6237 6238 6239 6240
#
# Returns: a list of HotpluggableCPU objects.
#
# Since: 2.7
6241 6242 6243 6244 6245 6246 6247 6248 6249 6250 6251 6252 6253 6254 6255 6256 6257 6258 6259 6260 6261 6262 6263 6264 6265 6266 6267 6268
#
# Example:
#
# For pseries machine type started with -smp 2,cores=2,maxcpus=4 -cpu POWER8:
#
# -> { "execute": "query-hotpluggable-cpus" }
# <- {"return": [
#      { "props": { "core": 8 }, "type": "POWER8-spapr-cpu-core",
#        "vcpus-count": 1 },
#      { "props": { "core": 0 }, "type": "POWER8-spapr-cpu-core",
#        "vcpus-count": 1, "qom-path": "/machine/unattached/device[0]"}
#    ]}'
#
# For pc machine type started with -smp 1,maxcpus=2:
#
# -> { "execute": "query-hotpluggable-cpus" }
# <- {"return": [
#      {
#         "type": "qemu64-x86_64-cpu", "vcpus-count": 1,
#         "props": {"core-id": 0, "socket-id": 1, "thread-id": 0}
#      },
#      {
#         "qom-path": "/machine/unattached/device[0]",
#         "type": "qemu64-x86_64-cpu", "vcpus-count": 1,
#         "props": {"core-id": 0, "socket-id": 0, "thread-id": 0}
#      }
#    ]}
#
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Igor Mammedov 已提交
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##
{ 'command': 'query-hotpluggable-cpus', 'returns': ['HotpluggableCPU'] }
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##
# @GuidInfo:
#
# GUID information.
#
# @guid: the globally unique identifier
#
# Since: 2.9
##
{ 'struct': 'GuidInfo', 'data': {'guid': 'str'} }

##
# @query-vm-generation-id:
#
# Show Virtual Machine Generation ID
#
# Since 2.9
##
{ 'command': 'query-vm-generation-id', 'returns': 'GuidInfo' }