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1# -*- Mode: Python -*-
2#
3# QAPI Schema
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5# QAPI common definitions
6{ 'include': 'qapi/common.json' }
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8# QAPI block definitions
9{ 'include': 'qapi/block.json' }
10
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11# QAPI event definitions
12{ 'include': 'qapi/event.json' }
13
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14# Tracing commands
15{ 'include': 'qapi/trace.json' }
16
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17##
18# LostTickPolicy:
19#
20# Policy for handling lost ticks in timer devices.
21#
22# @discard: throw away the missed tick(s) and continue with future injection
23# normally. Guest time may be delayed, unless the OS has explicit
24# handling of lost ticks
25#
26# @delay: continue to deliver ticks at the normal rate. Guest time will be
27# delayed due to the late tick
28#
29# @merge: merge the missed tick(s) into one tick and inject. Guest time
30# may be delayed, depending on how the OS reacts to the merging
31# of ticks
32#
33# @slew: deliver ticks at a higher rate to catch up with the missed tick. The
34# guest time should not be delayed once catchup is complete.
35#
36# Since: 2.0
37##
38{ 'enum': 'LostTickPolicy',
39 'data': ['discard', 'delay', 'merge', 'slew' ] }
40
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41# @add_client
42#
43# Allow client connections for VNC, Spice and socket based
44# character devices to be passed in to QEMU via SCM_RIGHTS.
45#
46# @protocol: protocol name. Valid names are "vnc", "spice" or the
47# name of a character device (eg. from -chardev id=XXXX)
48#
49# @fdname: file descriptor name previously passed via 'getfd' command
50#
51# @skipauth: #optional whether to skip authentication. Only applies
52# to "vnc" and "spice" protocols
53#
54# @tls: #optional whether to perform TLS. Only applies to the "spice"
55# protocol
56#
57# Returns: nothing on success.
58#
59# Since: 0.14.0
60##
61{ 'command': 'add_client',
62 'data': { 'protocol': 'str', 'fdname': 'str', '*skipauth': 'bool',
63 '*tls': 'bool' } }
64
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65##
66# @NameInfo:
67#
68# Guest name information.
69#
70# @name: #optional The name of the guest
71#
72# Since 0.14.0
73##
74{ 'type': 'NameInfo', 'data': {'*name': 'str'} }
75
76##
77# @query-name:
78#
79# Return the name information of a guest.
80#
81# Returns: @NameInfo of the guest
82#
83# Since 0.14.0
84##
85{ 'command': 'query-name', 'returns': 'NameInfo' }
b9c15f16 86
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87##
88# @KvmInfo:
89#
90# Information about support for KVM acceleration
91#
92# @enabled: true if KVM acceleration is active
93#
94# @present: true if KVM acceleration is built into this executable
95#
96# Since: 0.14.0
97##
98{ 'type': 'KvmInfo', 'data': {'enabled': 'bool', 'present': 'bool'} }
99
100##
101# @query-kvm:
102#
103# Returns information about KVM acceleration
104#
105# Returns: @KvmInfo
106#
107# Since: 0.14.0
108##
109{ 'command': 'query-kvm', 'returns': 'KvmInfo' }
110
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111##
112# @RunState
113#
6932a69b 114# An enumeration of VM run states.
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115#
116# @debug: QEMU is running on a debugger
117#
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118# @finish-migrate: guest is paused to finish the migration process
119#
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120# @inmigrate: guest is paused waiting for an incoming migration. Note
121# that this state does not tell whether the machine will start at the
122# end of the migration. This depends on the command-line -S option and
123# any invocation of 'stop' or 'cont' that has happened since QEMU was
124# started.
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125#
126# @internal-error: An internal error that prevents further guest execution
127# has occurred
128#
129# @io-error: the last IOP has failed and the device is configured to pause
130# on I/O errors
131#
132# @paused: guest has been paused via the 'stop' command
133#
134# @postmigrate: guest is paused following a successful 'migrate'
135#
136# @prelaunch: QEMU was started with -S and guest has not started
137#
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138# @restore-vm: guest is paused to restore VM state
139#
140# @running: guest is actively running
141#
142# @save-vm: guest is paused to save the VM state
143#
144# @shutdown: guest is shut down (and -no-shutdown is in use)
145#
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146# @suspended: guest is suspended (ACPI S3)
147#
1fa9a5e4 148# @watchdog: the watchdog action is configured to pause and has been triggered
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149#
150# @guest-panicked: guest has been panicked as a result of guest OS panic
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151##
152{ 'enum': 'RunState',
153 'data': [ 'debug', 'inmigrate', 'internal-error', 'io-error', 'paused',
154 'postmigrate', 'prelaunch', 'finish-migrate', 'restore-vm',
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155 'running', 'save-vm', 'shutdown', 'suspended', 'watchdog',
156 'guest-panicked' ] }
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157
158##
159# @StatusInfo:
160#
161# Information about VCPU run state
162#
163# @running: true if all VCPUs are runnable, false if not runnable
164#
165# @singlestep: true if VCPUs are in single-step mode
166#
167# @status: the virtual machine @RunState
168#
169# Since: 0.14.0
170#
171# Notes: @singlestep is enabled through the GDB stub
172##
173{ 'type': 'StatusInfo',
174 'data': {'running': 'bool', 'singlestep': 'bool', 'status': 'RunState'} }
175
176##
177# @query-status:
178#
179# Query the run status of all VCPUs
180#
181# Returns: @StatusInfo reflecting all VCPUs
182#
183# Since: 0.14.0
184##
185{ 'command': 'query-status', 'returns': 'StatusInfo' }
186
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187##
188# @UuidInfo:
189#
190# Guest UUID information.
191#
192# @UUID: the UUID of the guest
193#
194# Since: 0.14.0
195#
196# Notes: If no UUID was specified for the guest, a null UUID is returned.
197##
198{ 'type': 'UuidInfo', 'data': {'UUID': 'str'} }
199
200##
201# @query-uuid:
202#
203# Query the guest UUID information.
204#
205# Returns: The @UuidInfo for the guest
206#
207# Since 0.14.0
208##
209{ 'command': 'query-uuid', 'returns': 'UuidInfo' }
210
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211##
212# @ChardevInfo:
213#
214# Information about a character device.
215#
216# @label: the label of the character device
217#
218# @filename: the filename of the character device
219#
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220# @frontend-open: shows whether the frontend device attached to this backend
221# (eg. with the chardev=... option) is in open or closed state
222# (since 2.1)
223#
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224# Notes: @filename is encoded using the QEMU command line character device
225# encoding. See the QEMU man page for details.
226#
227# Since: 0.14.0
228##
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229{ 'type': 'ChardevInfo', 'data': {'label': 'str',
230 'filename': 'str',
231 'frontend-open': 'bool'} }
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232
233##
234# @query-chardev:
235#
236# Returns information about current character devices.
237#
238# Returns: a list of @ChardevInfo
239#
240# Since: 0.14.0
241##
242{ 'command': 'query-chardev', 'returns': ['ChardevInfo'] }
aa9b79bc 243
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244##
245# @ChardevBackendInfo:
246#
247# Information about a character device backend
248#
249# @name: The backend name
250#
251# Since: 2.0
252##
253{ 'type': 'ChardevBackendInfo', 'data': {'name': 'str'} }
254
255##
256# @query-chardev-backends:
257#
258# Returns information about character device backends.
259#
260# Returns: a list of @ChardevBackendInfo
261#
262# Since: 2.0
263##
264{ 'command': 'query-chardev-backends', 'returns': ['ChardevBackendInfo'] }
265
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266##
267# @DataFormat:
268#
269# An enumeration of data format.
270#
3949e594 271# @utf8: Data is a UTF-8 string (RFC 3629)
1f590cf9 272#
3949e594 273# @base64: Data is Base64 encoded binary (RFC 3548)
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274#
275# Since: 1.4
276##
ad0f171e 277{ 'enum': 'DataFormat',
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278 'data': [ 'utf8', 'base64' ] }
279
280##
3949e594 281# @ringbuf-write:
1f590cf9 282#
3949e594 283# Write to a ring buffer character device.
1f590cf9 284#
3949e594 285# @device: the ring buffer character device name
1f590cf9 286#
3949e594 287# @data: data to write
1f590cf9 288#
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289# @format: #optional data encoding (default 'utf8').
290# - base64: data must be base64 encoded text. Its binary
291# decoding gets written.
292# Bug: invalid base64 is currently not rejected.
293# Whitespace *is* invalid.
294# - utf8: data's UTF-8 encoding is written
295# - data itself is always Unicode regardless of format, like
296# any other string.
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297#
298# Returns: Nothing on success
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299#
300# Since: 1.4
301##
3949e594 302{ 'command': 'ringbuf-write',
82e59a67 303 'data': {'device': 'str', 'data': 'str',
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304 '*format': 'DataFormat'} }
305
49b6d722 306##
3949e594 307# @ringbuf-read:
49b6d722 308#
3949e594 309# Read from a ring buffer character device.
49b6d722 310#
3949e594 311# @device: the ring buffer character device name
49b6d722 312#
3949e594 313# @size: how many bytes to read at most
49b6d722 314#
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315# @format: #optional data encoding (default 'utf8').
316# - base64: the data read is returned in base64 encoding.
317# - utf8: the data read is interpreted as UTF-8.
318# Bug: can screw up when the buffer contains invalid UTF-8
319# sequences, NUL characters, after the ring buffer lost
320# data, and when reading stops because the size limit is
321# reached.
322# - The return value is always Unicode regardless of format,
323# like any other string.
49b6d722 324#
3ab651fc 325# Returns: data read from the device
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326#
327# Since: 1.4
328##
3949e594 329{ 'command': 'ringbuf-read',
49b6d722 330 'data': {'device': 'str', 'size': 'int', '*format': 'DataFormat'},
3ab651fc 331 'returns': 'str' }
49b6d722 332
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333##
334# @EventInfo:
335#
336# Information about a QMP event
337#
338# @name: The event name
339#
340# Since: 1.2.0
341##
342{ 'type': 'EventInfo', 'data': {'name': 'str'} }
343
344##
345# @query-events:
346#
347# Return a list of supported QMP events by this server
348#
349# Returns: A list of @EventInfo for all supported events
350#
351# Since: 1.2.0
352##
353{ 'command': 'query-events', 'returns': ['EventInfo'] }
354
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355##
356# @MigrationStats
357#
358# Detailed migration status.
359#
360# @transferred: amount of bytes already transferred to the target VM
361#
362# @remaining: amount of bytes remaining to be transferred to the target VM
363#
364# @total: total amount of bytes involved in the migration process
365#
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366# @duplicate: number of duplicate (zero) pages (since 1.2)
367#
368# @skipped: number of skipped zero pages (since 1.5)
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369#
370# @normal : number of normal pages (since 1.2)
371#
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372# @normal-bytes: number of normal bytes sent (since 1.2)
373#
374# @dirty-pages-rate: number of pages dirtied by second by the
375# guest (since 1.3)
004d4c10 376#
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377# @mbps: throughput in megabits/sec. (since 1.6)
378#
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379# @dirty-sync-count: number of times that dirty ram was synchronized (since 2.1)
380#
004d4c10 381# Since: 0.14.0
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382##
383{ 'type': 'MigrationStats',
d5f8a570 384 'data': {'transferred': 'int', 'remaining': 'int', 'total': 'int' ,
f1c72795 385 'duplicate': 'int', 'skipped': 'int', 'normal': 'int',
7e114f8c 386 'normal-bytes': 'int', 'dirty-pages-rate' : 'int',
58570ed8 387 'mbps' : 'number', 'dirty-sync-count' : 'int' } }
791e7c82 388
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389##
390# @XBZRLECacheStats
391#
392# Detailed XBZRLE migration cache statistics
393#
394# @cache-size: XBZRLE cache size
395#
396# @bytes: amount of bytes already transferred to the target VM
397#
398# @pages: amount of pages transferred to the target VM
399#
400# @cache-miss: number of cache miss
401#
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402# @cache-miss-rate: rate of cache miss (since 2.1)
403#
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404# @overflow: number of overflows
405#
406# Since: 1.2
407##
408{ 'type': 'XBZRLECacheStats',
409 'data': {'cache-size': 'int', 'bytes': 'int', 'pages': 'int',
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410 'cache-miss': 'int', 'cache-miss-rate': 'number',
411 'overflow': 'int' } }
f36d55af 412
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413##
414# @MigrationInfo
415#
416# Information about current migration process.
417#
418# @status: #optional string describing the current migration status.
3b695950 419# As of 0.14.0 this can be 'setup', 'active', 'completed', 'failed' or
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420# 'cancelled'. If this field is not returned, no migration process
421# has been initiated
422#
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423# @ram: #optional @MigrationStats containing detailed migration
424# status, only returned if status is 'active' or
425# 'completed'. 'comppleted' (since 1.2)
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426#
427# @disk: #optional @MigrationStats containing detailed disk migration
428# status, only returned if status is 'active' and it is a block
429# migration
430#
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431# @xbzrle-cache: #optional @XBZRLECacheStats containing detailed XBZRLE
432# migration statistics, only returned if XBZRLE feature is on and
433# status is 'active' or 'completed' (since 1.2)
434#
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435# @total-time: #optional total amount of milliseconds since migration started.
436# If migration has ended, it returns the total migration
437# time. (since 1.2)
438#
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439# @downtime: #optional only present when migration finishes correctly
440# total downtime in milliseconds for the guest.
441# (since 1.3)
442#
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443# @expected-downtime: #optional only present while migration is active
444# expected downtime in milliseconds for the guest in last walk
445# of the dirty bitmap. (since 1.3)
446#
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447# @setup-time: #optional amount of setup time in milliseconds _before_ the
448# iterations begin but _after_ the QMP command is issued. This is designed
449# to provide an accounting of any activities (such as RDMA pinning) which
450# may be expensive, but do not actually occur during the iterative
451# migration rounds themselves. (since 1.6)
452#
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453# Since: 0.14.0
454##
455{ 'type': 'MigrationInfo',
456 'data': {'*status': 'str', '*ram': 'MigrationStats',
f36d55af 457 '*disk': 'MigrationStats',
7aa939af 458 '*xbzrle-cache': 'XBZRLECacheStats',
9c5a9fcf 459 '*total-time': 'int',
2c52ddf1 460 '*expected-downtime': 'int',
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461 '*downtime': 'int',
462 '*setup-time': 'int'} }
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463
464##
465# @query-migrate
466#
467# Returns information about current migration process.
468#
469# Returns: @MigrationInfo
470#
471# Since: 0.14.0
472##
473{ 'command': 'query-migrate', 'returns': 'MigrationInfo' }
474
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475##
476# @MigrationCapability
477#
478# Migration capabilities enumeration
479#
480# @xbzrle: Migration supports xbzrle (Xor Based Zero Run Length Encoding).
481# This feature allows us to minimize migration traffic for certain work
482# loads, by sending compressed difference of the pages
483#
41310c68 484# @rdma-pin-all: Controls whether or not the entire VM memory footprint is
60d9222c 485# mlock()'d on demand or all at once. Refer to docs/rdma.txt for usage.
41310c68 486# Disabled by default. (since 2.0)
60d9222c 487#
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488# @zero-blocks: During storage migration encode blocks of zeroes efficiently. This
489# essentially saves 1MB of zeroes per block on the wire. Enabling requires
490# source and target VM to support this feature. To enable it is sufficient
491# to enable the capability on the source VM. The feature is disabled by
492# default. (since 1.6)
493#
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494# @auto-converge: If enabled, QEMU will automatically throttle down the guest
495# to speed up convergence of RAM migration. (since 1.6)
496#
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497# Since: 1.2
498##
499{ 'enum': 'MigrationCapability',
41310c68 500 'data': ['xbzrle', 'rdma-pin-all', 'auto-converge', 'zero-blocks'] }
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501
502##
503# @MigrationCapabilityStatus
504#
505# Migration capability information
506#
507# @capability: capability enum
508#
509# @state: capability state bool
510#
511# Since: 1.2
512##
513{ 'type': 'MigrationCapabilityStatus',
514 'data': { 'capability' : 'MigrationCapability', 'state' : 'bool' } }
515
516##
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517# @migrate-set-capabilities
518#
519# Enable/Disable the following migration capabilities (like xbzrle)
520#
521# @capabilities: json array of capability modifications to make
522#
523# Since: 1.2
524##
525{ 'command': 'migrate-set-capabilities',
526 'data': { 'capabilities': ['MigrationCapabilityStatus'] } }
527
528##
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529# @query-migrate-capabilities
530#
531# Returns information about the current migration capabilities status
532#
533# Returns: @MigrationCapabilitiesStatus
534#
535# Since: 1.2
536##
537{ 'command': 'query-migrate-capabilities', 'returns': ['MigrationCapabilityStatus']}
538
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539##
540# @MouseInfo:
541#
542# Information about a mouse device.
543#
544# @name: the name of the mouse device
545#
546# @index: the index of the mouse device
547#
548# @current: true if this device is currently receiving mouse events
549#
550# @absolute: true if this device supports absolute coordinates as input
551#
552# Since: 0.14.0
553##
554{ 'type': 'MouseInfo',
555 'data': {'name': 'str', 'index': 'int', 'current': 'bool',
556 'absolute': 'bool'} }
557
558##
559# @query-mice:
560#
561# Returns information about each active mouse device
562#
563# Returns: a list of @MouseInfo for each device
564#
565# Since: 0.14.0
566##
567{ 'command': 'query-mice', 'returns': ['MouseInfo'] }
568
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569##
570# @CpuInfo:
571#
572# Information about a virtual CPU
573#
574# @CPU: the index of the virtual CPU
575#
576# @current: this only exists for backwards compatible and should be ignored
b80e560b 577#
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578# @halted: true if the virtual CPU is in the halt state. Halt usually refers
579# to a processor specific low power mode.
580#
581# @pc: #optional If the target is i386 or x86_64, this is the 64-bit instruction
582# pointer.
583# If the target is Sparc, this is the PC component of the
584# instruction pointer.
585#
586# @nip: #optional If the target is PPC, the instruction pointer
587#
588# @npc: #optional If the target is Sparc, the NPC component of the instruction
589# pointer
590#
591# @PC: #optional If the target is MIPS, the instruction pointer
592#
593# @thread_id: ID of the underlying host thread
594#
595# Since: 0.14.0
596#
597# Notes: @halted is a transient state that changes frequently. By the time the
598# data is sent to the client, the guest may no longer be halted.
599##
600{ 'type': 'CpuInfo',
601 'data': {'CPU': 'int', 'current': 'bool', 'halted': 'bool', '*pc': 'int',
602 '*nip': 'int', '*npc': 'int', '*PC': 'int', 'thread_id': 'int'} }
603
604##
605# @query-cpus:
606#
607# Returns a list of information about each virtual CPU.
608#
609# Returns: a list of @CpuInfo for each virtual CPU
610#
611# Since: 0.14.0
612##
613{ 'command': 'query-cpus', 'returns': ['CpuInfo'] }
614
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615##
616# @IOThreadInfo:
617#
618# Information about an iothread
619#
620# @id: the identifier of the iothread
621#
622# @thread-id: ID of the underlying host thread
623#
624# Since: 2.0
625##
626{ 'type': 'IOThreadInfo',
627 'data': {'id': 'str', 'thread-id': 'int'} }
628
629##
630# @query-iothreads:
631#
632# Returns a list of information about each iothread.
633#
634# Note this list excludes the QEMU main loop thread, which is not declared
635# using the -object iothread command-line option. It is always the main thread
636# of the process.
637#
638# Returns: a list of @IOThreadInfo for each iothread
639#
640# Since: 2.0
641##
642{ 'command': 'query-iothreads', 'returns': ['IOThreadInfo'] }
643
2b54aa87 644##
a589569f 645# @NetworkAddressFamily
2b54aa87 646#
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647# The network address family
648#
649# @ipv4: IPV4 family
650#
651# @ipv6: IPV6 family
652#
653# @unix: unix socket
654#
655# @unknown: otherwise
656#
657# Since: 2.1
658##
659{ 'enum': 'NetworkAddressFamily',
660 'data': [ 'ipv4', 'ipv6', 'unix', 'unknown' ] }
661
662##
663# @VncBasicInfo
2b54aa87 664#
a589569f 665# The basic information for vnc network connection
2b54aa87 666#
a589569f 667# @host: IP address
2b54aa87 668#
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669# @service: The service name of the vnc port. This may depend on the host
670# system's service database so symbolic names should not be relied
671# on.
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672#
673# @family: address family
674#
675# Since: 2.1
676##
677{ 'type': 'VncBasicInfo',
678 'data': { 'host': 'str',
679 'service': 'str',
680 'family': 'NetworkAddressFamily' } }
681
682##
683# @VncServerInfo
2b54aa87 684#
a589569f 685# The network connection information for server
2b54aa87 686#
a589569f 687# @auth: #optional, authentication method
2b54aa87 688#
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689# Since: 2.1
690##
691{ 'type': 'VncServerInfo',
692 'base': 'VncBasicInfo',
693 'data': { '*auth': 'str' } }
694
695##
696# @VncClientInfo:
697#
698# Information about a connected VNC client.
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699#
700# @x509_dname: #optional If x509 authentication is in use, the Distinguished
701# Name of the client.
702#
703# @sasl_username: #optional If SASL authentication is in use, the SASL username
704# used for authentication.
705#
706# Since: 0.14.0
707##
708{ 'type': 'VncClientInfo',
a589569f 709 'base': 'VncBasicInfo',
2f44a08b 710 'data': { '*x509_dname': 'str', '*sasl_username': 'str' } }
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711
712##
713# @VncInfo:
714#
715# Information about the VNC session.
716#
717# @enabled: true if the VNC server is enabled, false otherwise
718#
719# @host: #optional The hostname the VNC server is bound to. This depends on
720# the name resolution on the host and may be an IP address.
721#
722# @family: #optional 'ipv6' if the host is listening for IPv6 connections
723# 'ipv4' if the host is listening for IPv4 connections
724# 'unix' if the host is listening on a unix domain socket
725# 'unknown' otherwise
726#
727# @service: #optional The service name of the server's port. This may depends
728# on the host system's service database so symbolic names should not
729# be relied on.
730#
731# @auth: #optional the current authentication type used by the server
732# 'none' if no authentication is being used
733# 'vnc' if VNC authentication is being used
734# 'vencrypt+plain' if VEncrypt is used with plain text authentication
735# 'vencrypt+tls+none' if VEncrypt is used with TLS and no authentication
736# 'vencrypt+tls+vnc' if VEncrypt is used with TLS and VNC authentication
737# 'vencrypt+tls+plain' if VEncrypt is used with TLS and plain text auth
738# 'vencrypt+x509+none' if VEncrypt is used with x509 and no auth
739# 'vencrypt+x509+vnc' if VEncrypt is used with x509 and VNC auth
740# 'vencrypt+x509+plain' if VEncrypt is used with x509 and plain text auth
741# 'vencrypt+tls+sasl' if VEncrypt is used with TLS and SASL auth
742# 'vencrypt+x509+sasl' if VEncrypt is used with x509 and SASL auth
743#
744# @clients: a list of @VncClientInfo of all currently connected clients
745#
746# Since: 0.14.0
747##
748{ 'type': 'VncInfo',
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749 'data': {'enabled': 'bool', '*host': 'str',
750 '*family': 'NetworkAddressFamily',
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751 '*service': 'str', '*auth': 'str', '*clients': ['VncClientInfo']} }
752
753##
754# @query-vnc:
755#
756# Returns information about the current VNC server
757#
758# Returns: @VncInfo
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759#
760# Since: 0.14.0
761##
762{ 'command': 'query-vnc', 'returns': 'VncInfo' }
763
d1f29646 764##
a589569f 765# @SpiceBasicInfo
d1f29646 766#
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767# The basic information for SPICE network connection
768#
769# @host: IP address
d1f29646 770#
a589569f 771# @port: port number
d1f29646 772#
a589569f 773# @family: address family
d1f29646 774#
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775# Since: 2.1
776##
777{ 'type': 'SpiceBasicInfo',
778 'data': { 'host': 'str',
779 'port': 'str',
780 'family': 'NetworkAddressFamily' } }
781
782##
783# @SpiceServerInfo
d1f29646 784#
a589569f 785# Information about a SPICE server
d1f29646 786#
a589569f 787# @auth: #optional, authentication method
d1f29646 788#
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789# Since: 2.1
790##
791{ 'type': 'SpiceServerInfo',
792 'base': 'SpiceBasicInfo',
793 'data': { '*auth': 'str' } }
794
795##
796# @SpiceChannel
797#
798# Information about a SPICE client channel.
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799#
800# @connection-id: SPICE connection id number. All channels with the same id
801# belong to the same SPICE session.
802#
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803# @connection-type: SPICE channel type number. "1" is the main control
804# channel, filter for this one if you want to track spice
805# sessions only
d1f29646 806#
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807# @channel-id: SPICE channel ID number. Usually "0", might be different when
808# multiple channels of the same type exist, such as multiple
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809# display channels in a multihead setup
810#
811# @tls: true if the channel is encrypted, false otherwise.
812#
813# Since: 0.14.0
814##
815{ 'type': 'SpiceChannel',
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816 'base': 'SpiceBasicInfo',
817 'data': {'connection-id': 'int', 'channel-type': 'int', 'channel-id': 'int',
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818 'tls': 'bool'} }
819
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820##
821# @SpiceQueryMouseMode
822#
6932a69b 823# An enumeration of Spice mouse states.
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824#
825# @client: Mouse cursor position is determined by the client.
826#
827# @server: Mouse cursor position is determined by the server.
828#
829# @unknown: No information is available about mouse mode used by
830# the spice server.
831#
832# Note: spice/enums.h has a SpiceMouseMode already, hence the name.
833#
834# Since: 1.1
835##
836{ 'enum': 'SpiceQueryMouseMode',
837 'data': [ 'client', 'server', 'unknown' ] }
838
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839##
840# @SpiceInfo
841#
842# Information about the SPICE session.
b80e560b 843#
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844# @enabled: true if the SPICE server is enabled, false otherwise
845#
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YH
846# @migrated: true if the last guest migration completed and spice
847# migration had completed as well. false otherwise.
848#
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849# @host: #optional The hostname the SPICE server is bound to. This depends on
850# the name resolution on the host and may be an IP address.
851#
852# @port: #optional The SPICE server's port number.
853#
854# @compiled-version: #optional SPICE server version.
855#
856# @tls-port: #optional The SPICE server's TLS port number.
857#
858# @auth: #optional the current authentication type used by the server
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859# 'none' if no authentication is being used
860# 'spice' uses SASL or direct TLS authentication, depending on command
861# line options
d1f29646 862#
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863# @mouse-mode: The mode in which the mouse cursor is displayed currently. Can
864# be determined by the client or the server, or unknown if spice
865# server doesn't provide this information.
866#
867# Since: 1.1
868#
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869# @channels: a list of @SpiceChannel for each active spice channel
870#
871# Since: 0.14.0
872##
873{ 'type': 'SpiceInfo',
61c4efe2 874 'data': {'enabled': 'bool', 'migrated': 'bool', '*host': 'str', '*port': 'int',
d1f29646 875 '*tls-port': 'int', '*auth': 'str', '*compiled-version': 'str',
4efee029 876 'mouse-mode': 'SpiceQueryMouseMode', '*channels': ['SpiceChannel']} }
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877
878##
879# @query-spice
880#
881# Returns information about the current SPICE server
882#
883# Returns: @SpiceInfo
884#
885# Since: 0.14.0
886##
887{ 'command': 'query-spice', 'returns': 'SpiceInfo' }
888
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889##
890# @BalloonInfo:
891#
892# Information about the guest balloon device.
893#
894# @actual: the number of bytes the balloon currently contains
895#
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896# Since: 0.14.0
897#
96637bcd 898##
01ceb97e 899{ 'type': 'BalloonInfo', 'data': {'actual': 'int' } }
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900
901##
902# @query-balloon:
903#
904# Return information about the balloon device.
905#
906# Returns: @BalloonInfo on success
907# If the balloon driver is enabled but not functional because the KVM
908# kernel module cannot support it, KvmMissingCap
909# If no balloon device is present, DeviceNotActive
910#
911# Since: 0.14.0
912##
913{ 'command': 'query-balloon', 'returns': 'BalloonInfo' }
914
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915##
916# @PciMemoryRange:
917#
918# A PCI device memory region
919#
920# @base: the starting address (guest physical)
921#
922# @limit: the ending address (guest physical)
923#
924# Since: 0.14.0
925##
926{ 'type': 'PciMemoryRange', 'data': {'base': 'int', 'limit': 'int'} }
927
928##
929# @PciMemoryRegion
930#
931# Information about a PCI device I/O region.
932#
933# @bar: the index of the Base Address Register for this region
934#
935# @type: 'io' if the region is a PIO region
936# 'memory' if the region is a MMIO region
937#
938# @prefetch: #optional if @type is 'memory', true if the memory is prefetchable
939#
940# @mem_type_64: #optional if @type is 'memory', true if the BAR is 64-bit
941#
942# Since: 0.14.0
943##
944{ 'type': 'PciMemoryRegion',
945 'data': {'bar': 'int', 'type': 'str', 'address': 'int', 'size': 'int',
946 '*prefetch': 'bool', '*mem_type_64': 'bool' } }
947
948##
949# @PciBridgeInfo:
950#
951# Information about a PCI Bridge device
952#
953# @bus.number: primary bus interface number. This should be the number of the
954# bus the device resides on.
955#
956# @bus.secondary: secondary bus interface number. This is the number of the
957# main bus for the bridge
958#
959# @bus.subordinate: This is the highest number bus that resides below the
960# bridge.
961#
962# @bus.io_range: The PIO range for all devices on this bridge
963#
964# @bus.memory_range: The MMIO range for all devices on this bridge
965#
966# @bus.prefetchable_range: The range of prefetchable MMIO for all devices on
967# this bridge
968#
969# @devices: a list of @PciDeviceInfo for each device on this bridge
970#
971# Since: 0.14.0
972##
973{ 'type': 'PciBridgeInfo',
974 'data': {'bus': { 'number': 'int', 'secondary': 'int', 'subordinate': 'int',
975 'io_range': 'PciMemoryRange',
976 'memory_range': 'PciMemoryRange',
977 'prefetchable_range': 'PciMemoryRange' },
978 '*devices': ['PciDeviceInfo']} }
979
980##
981# @PciDeviceInfo:
982#
983# Information about a PCI device
984#
985# @bus: the bus number of the device
986#
987# @slot: the slot the device is located in
988#
989# @function: the function of the slot used by the device
990#
991# @class_info.desc: #optional a string description of the device's class
992#
993# @class_info.class: the class code of the device
994#
995# @id.device: the PCI device id
996#
997# @id.vendor: the PCI vendor id
998#
999# @irq: #optional if an IRQ is assigned to the device, the IRQ number
1000#
1001# @qdev_id: the device name of the PCI device
1002#
1003# @pci_bridge: if the device is a PCI bridge, the bridge information
1004#
1005# @regions: a list of the PCI I/O regions associated with the device
1006#
1007# Notes: the contents of @class_info.desc are not stable and should only be
1008# treated as informational.
1009#
1010# Since: 0.14.0
1011##
1012{ 'type': 'PciDeviceInfo',
1013 'data': {'bus': 'int', 'slot': 'int', 'function': 'int',
1014 'class_info': {'*desc': 'str', 'class': 'int'},
1015 'id': {'device': 'int', 'vendor': 'int'},
1016 '*irq': 'int', 'qdev_id': 'str', '*pci_bridge': 'PciBridgeInfo',
1017 'regions': ['PciMemoryRegion']} }
1018
1019##
1020# @PciInfo:
1021#
1022# Information about a PCI bus
1023#
1024# @bus: the bus index
1025#
1026# @devices: a list of devices on this bus
1027#
1028# Since: 0.14.0
1029##
1030{ 'type': 'PciInfo', 'data': {'bus': 'int', 'devices': ['PciDeviceInfo']} }
1031
1032##
1033# @query-pci:
1034#
1035# Return information about the PCI bus topology of the guest.
1036#
1037# Returns: a list of @PciInfo for each PCI bus
1038#
1039# Since: 0.14.0
1040##
1041{ 'command': 'query-pci', 'returns': ['PciInfo'] }
1042
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1043##
1044# @quit:
1045#
1046# This command will cause the QEMU process to exit gracefully. While every
1047# attempt is made to send the QMP response before terminating, this is not
1048# guaranteed. When using this interface, a premature EOF would not be
1049# unexpected.
1050#
1051# Since: 0.14.0
1052##
1053{ 'command': 'quit' }
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1054
1055##
1056# @stop:
1057#
1058# Stop all guest VCPU execution.
1059#
1060# Since: 0.14.0
1061#
1062# Notes: This function will succeed even if the guest is already in the stopped
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PB
1063# state. In "inmigrate" state, it will ensure that the guest
1064# remains paused once migration finishes, as if the -S option was
1065# passed on the command line.
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LC
1066##
1067{ 'command': 'stop' }
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LC
1068
1069##
1070# @system_reset:
1071#
1072# Performs a hard reset of a guest.
1073#
1074# Since: 0.14.0
1075##
1076{ 'command': 'system_reset' }
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LC
1077
1078##
1079# @system_powerdown:
1080#
1081# Requests that a guest perform a powerdown operation.
1082#
1083# Since: 0.14.0
1084#
1085# Notes: A guest may or may not respond to this command. This command
1086# returning does not indicate that a guest has accepted the request or
1087# that it has shut down. Many guests will respond to this command by
1088# prompting the user in some way.
1089##
1090{ 'command': 'system_powerdown' }
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1091
1092##
1093# @cpu:
1094#
1095# This command is a nop that is only provided for the purposes of compatibility.
1096#
1097# Since: 0.14.0
1098#
1099# Notes: Do not use this command.
1100##
1101{ 'command': 'cpu', 'data': {'index': 'int'} }
0cfd6a9a 1102
69ca3ea5
IM
1103##
1104# @cpu-add
1105#
1106# Adds CPU with specified ID
1107#
1108# @id: ID of CPU to be created, valid values [0..max_cpus)
1109#
1110# Returns: Nothing on success
1111#
1112# Since 1.5
1113##
1114{ 'command': 'cpu-add', 'data': {'id': 'int'} }
1115
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1116##
1117# @memsave:
1118#
1119# Save a portion of guest memory to a file.
1120#
1121# @val: the virtual address of the guest to start from
1122#
1123# @size: the size of memory region to save
1124#
1125# @filename: the file to save the memory to as binary data
1126#
1127# @cpu-index: #optional the index of the virtual CPU to use for translating the
1128# virtual address (defaults to CPU 0)
1129#
1130# Returns: Nothing on success
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1131#
1132# Since: 0.14.0
1133#
1134# Notes: Errors were not reliably returned until 1.1
1135##
1136{ 'command': 'memsave',
1137 'data': {'val': 'int', 'size': 'int', 'filename': 'str', '*cpu-index': 'int'} }
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1138
1139##
1140# @pmemsave:
1141#
1142# Save a portion of guest physical memory to a file.
1143#
1144# @val: the physical address of the guest to start from
1145#
1146# @size: the size of memory region to save
1147#
1148# @filename: the file to save the memory to as binary data
1149#
1150# Returns: Nothing on success
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1151#
1152# Since: 0.14.0
1153#
1154# Notes: Errors were not reliably returned until 1.1
1155##
1156{ 'command': 'pmemsave',
1157 'data': {'val': 'int', 'size': 'int', 'filename': 'str'} }
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1158
1159##
1160# @cont:
1161#
1162# Resume guest VCPU execution.
1163#
1164# Since: 0.14.0
1165#
1166# Returns: If successful, nothing
e42e818b
LC
1167# If QEMU was started with an encrypted block device and a key has
1168# not yet been set, DeviceEncrypted.
1169#
1e998146
PB
1170# Notes: This command will succeed if the guest is currently running. It
1171# will also succeed if the guest is in the "inmigrate" state; in
1172# this case, the effect of the command is to make sure the guest
1173# starts once migration finishes, removing the effect of the -S
1174# command line option if it was passed.
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LC
1175##
1176{ 'command': 'cont' }
1177
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GH
1178##
1179# @system_wakeup:
1180#
1181# Wakeup guest from suspend. Does nothing in case the guest isn't suspended.
1182#
1183# Since: 1.1
1184#
1185# Returns: nothing.
1186##
1187{ 'command': 'system_wakeup' }
1188
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1189##
1190# @inject-nmi:
1191#
9cb805fd 1192# Injects a Non-Maskable Interrupt into the default CPU (x86/s390) or all CPUs (ppc64).
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LC
1193#
1194# Returns: If successful, nothing
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1195#
1196# Since: 0.14.0
1197#
9cb805fd 1198# Note: prior to 2.1, this command was only supported for x86 and s390 VMs
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1199##
1200{ 'command': 'inject-nmi' }
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1201
1202##
1203# @set_link:
1204#
1205# Sets the link status of a virtual network adapter.
1206#
1207# @name: the device name of the virtual network adapter
1208#
1209# @up: true to set the link status to be up
1210#
1211# Returns: Nothing on success
1212# If @name is not a valid network device, DeviceNotFound
1213#
1214# Since: 0.14.0
1215#
1216# Notes: Not all network adapters support setting link status. This command
1217# will succeed even if the network adapter does not support link status
1218# notification.
1219##
1220{ 'command': 'set_link', 'data': {'name': 'str', 'up': 'bool'} }
a4dea8a9 1221
d72f3264
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1222##
1223# @balloon:
1224#
1225# Request the balloon driver to change its balloon size.
1226#
1227# @value: the target size of the balloon in bytes
1228#
1229# Returns: Nothing on success
1230# If the balloon driver is enabled but not functional because the KVM
1231# kernel module cannot support it, KvmMissingCap
1232# If no balloon device is present, DeviceNotActive
1233#
1234# Notes: This command just issues a request to the guest. When it returns,
1235# the balloon size may not have changed. A guest can change the balloon
1236# size independent of this command.
1237#
1238# Since: 0.14.0
1239##
1240{ 'command': 'balloon', 'data': {'value': 'int'} }
5e7caacb 1241
78b18b78
SH
1242##
1243# @Abort
1244#
1245# This action can be used to test transaction failure.
1246#
1247# Since: 1.6
1248###
1249{ 'type': 'Abort',
1250 'data': { } }
1251
8802d1fd 1252##
c8a83e85 1253# @TransactionAction
8802d1fd 1254#
52e7c241
PB
1255# A discriminated record of operations that can be performed with
1256# @transaction.
8802d1fd 1257##
c8a83e85 1258{ 'union': 'TransactionAction',
52e7c241 1259 'data': {
3037f364 1260 'blockdev-snapshot-sync': 'BlockdevSnapshot',
78b18b78 1261 'drive-backup': 'DriveBackup',
bbe86010
WX
1262 'abort': 'Abort',
1263 'blockdev-snapshot-internal-sync': 'BlockdevSnapshotInternal'
52e7c241 1264 } }
8802d1fd
JC
1265
1266##
52e7c241 1267# @transaction
8802d1fd 1268#
c8a83e85
KW
1269# Executes a number of transactionable QMP commands atomically. If any
1270# operation fails, then the entire set of actions will be abandoned and the
1271# appropriate error returned.
8802d1fd
JC
1272#
1273# List of:
c8a83e85 1274# @TransactionAction: information needed for the respective operation
8802d1fd
JC
1275#
1276# Returns: nothing on success
c8a83e85 1277# Errors depend on the operations of the transaction
8802d1fd 1278#
c8a83e85
KW
1279# Note: The transaction aborts on the first failure. Therefore, there will be
1280# information on only one failed operation returned in an error condition, and
52e7c241
PB
1281# subsequent actions will not have been attempted.
1282#
1283# Since 1.1
8802d1fd 1284##
52e7c241 1285{ 'command': 'transaction',
c8a83e85 1286 'data': { 'actions': [ 'TransactionAction' ] } }
8802d1fd 1287
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1288##
1289# @human-monitor-command:
1290#
1291# Execute a command on the human monitor and return the output.
1292#
1293# @command-line: the command to execute in the human monitor
1294#
1295# @cpu-index: #optional The CPU to use for commands that require an implicit CPU
1296#
1297# Returns: the output of the command as a string
1298#
1ad166b6 1299# Since: 0.14.0
08e4ed6c 1300#
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BC
1301# Notes: This command only exists as a stop-gap. Its use is highly
1302# discouraged. The semantics of this command are not guaranteed.
b952b558 1303#
1ad166b6 1304# Known limitations:
b952b558 1305#
1ad166b6
BC
1306# o This command is stateless, this means that commands that depend
1307# on state information (such as getfd) might not work
d9b902db 1308#
1ad166b6
BC
1309# o Commands that prompt the user for data (eg. 'cont' when the block
1310# device is encrypted) don't currently work
d9b902db 1311##
1ad166b6
BC
1312{ 'command': 'human-monitor-command',
1313 'data': {'command-line': 'str', '*cpu-index': 'int'},
1314 'returns': 'str' }
d9b902db
PB
1315
1316##
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1317# @migrate_cancel
1318#
1319# Cancel the current executing migration process.
1320#
1321# Returns: nothing on success
1322#
1323# Notes: This command succeeds even if there is no migration process running.
1324#
1325# Since: 0.14.0
1326##
1327{ 'command': 'migrate_cancel' }
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1328
1329##
1330# @migrate_set_downtime
1331#
1332# Set maximum tolerated downtime for migration.
1333#
1334# @value: maximum downtime in seconds
1335#
1336# Returns: nothing on success
1337#
1338# Since: 0.14.0
1339##
1340{ 'command': 'migrate_set_downtime', 'data': {'value': 'number'} }
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1341
1342##
1343# @migrate_set_speed
1344#
1345# Set maximum speed for migration.
1346#
1347# @value: maximum speed in bytes.
1348#
1349# Returns: nothing on success
1350#
1351# Notes: A value lesser than zero will be automatically round up to zero.
1352#
1353# Since: 0.14.0
1354##
1355{ 'command': 'migrate_set_speed', 'data': {'value': 'int'} }
b4b12c62 1356
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1357##
1358# @migrate-set-cache-size
1359#
1360# Set XBZRLE cache size
1361#
1362# @value: cache size in bytes
1363#
1364# The size will be rounded down to the nearest power of 2.
1365# The cache size can be modified before and during ongoing migration
1366#
1367# Returns: nothing on success
1368#
1369# Since: 1.2
1370##
1371{ 'command': 'migrate-set-cache-size', 'data': {'value': 'int'} }
1372
1373##
1374# @query-migrate-cache-size
1375#
1376# query XBZRLE cache size
1377#
1378# Returns: XBZRLE cache size in bytes
1379#
1380# Since: 1.2
1381##
1382{ 'command': 'query-migrate-cache-size', 'returns': 'int' }
1383
b4b12c62 1384##
d03ee401 1385# @ObjectPropertyInfo:
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1386#
1387# @name: the name of the property
1388#
1389# @type: the type of the property. This will typically come in one of four
1390# forms:
1391#
1392# 1) A primitive type such as 'u8', 'u16', 'bool', 'str', or 'double'.
1393# These types are mapped to the appropriate JSON type.
1394#
1395# 2) A legacy type in the form 'legacy<subtype>' where subtype is the
1396# legacy qdev typename. These types are always treated as strings.
1397#
1398# 3) A child type in the form 'child<subtype>' where subtype is a qdev
1399# device type name. Child properties create the composition tree.
1400#
1401# 4) A link type in the form 'link<subtype>' where subtype is a qdev
1402# device type name. Link properties form the device model graph.
1403#
51920820 1404# Since: 1.2
b4b12c62 1405##
57c9fafe 1406{ 'type': 'ObjectPropertyInfo',
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1407 'data': { 'name': 'str', 'type': 'str' } }
1408
1409##
1410# @qom-list:
1411#
57c9fafe 1412# This command will list any properties of a object given a path in the object
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AL
1413# model.
1414#
57c9fafe 1415# @path: the path within the object model. See @qom-get for a description of
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1416# this parameter.
1417#
57c9fafe
AL
1418# Returns: a list of @ObjectPropertyInfo that describe the properties of the
1419# object.
b4b12c62 1420#
51920820 1421# Since: 1.2
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1422##
1423{ 'command': 'qom-list',
1424 'data': { 'path': 'str' },
57c9fafe 1425 'returns': [ 'ObjectPropertyInfo' ] }
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AL
1426
1427##
1428# @qom-get:
1429#
57c9fafe 1430# This command will get a property from a object model path and return the
eb6e8ea5
AL
1431# value.
1432#
57c9fafe 1433# @path: The path within the object model. There are two forms of supported
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1434# paths--absolute and partial paths.
1435#
57c9fafe 1436# Absolute paths are derived from the root object and can follow child<>
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1437# or link<> properties. Since they can follow link<> properties, they
1438# can be arbitrarily long. Absolute paths look like absolute filenames
1439# and are prefixed with a leading slash.
1440#
1441# Partial paths look like relative filenames. They do not begin
1442# with a prefix. The matching rules for partial paths are subtle but
57c9fafe 1443# designed to make specifying objects easy. At each level of the
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1444# composition tree, the partial path is matched as an absolute path.
1445# The first match is not returned. At least two matches are searched
1446# for. A successful result is only returned if only one match is
1447# found. If more than one match is found, a flag is return to
1448# indicate that the match was ambiguous.
1449#
1450# @property: The property name to read
1451#
1452# Returns: The property value. The type depends on the property type. legacy<>
1453# properties are returned as #str. child<> and link<> properties are
1454# returns as #str pathnames. All integer property types (u8, u16, etc)
1455# are returned as #int.
1456#
51920820 1457# Since: 1.2
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AL
1458##
1459{ 'command': 'qom-get',
1460 'data': { 'path': 'str', 'property': 'str' },
1461 'returns': 'visitor',
1462 'gen': 'no' }
1463
1464##
1465# @qom-set:
1466#
57c9fafe 1467# This command will set a property from a object model path.
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1468#
1469# @path: see @qom-get for a description of this parameter
1470#
1471# @property: the property name to set
1472#
1473# @value: a value who's type is appropriate for the property type. See @qom-get
1474# for a description of type mapping.
1475#
51920820 1476# Since: 1.2
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1477##
1478{ 'command': 'qom-set',
1479 'data': { 'path': 'str', 'property': 'str', 'value': 'visitor' },
1480 'gen': 'no' }
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LC
1481
1482##
1483# @set_password:
1484#
1485# Sets the password of a remote display session.
1486#
1487# @protocol: `vnc' to modify the VNC server password
1488# `spice' to modify the Spice server password
1489#
1490# @password: the new password
1491#
1492# @connected: #optional how to handle existing clients when changing the
b80e560b 1493# password. If nothing is specified, defaults to `keep'
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LC
1494# `fail' to fail the command if clients are connected
1495# `disconnect' to disconnect existing clients
1496# `keep' to maintain existing clients
1497#
1498# Returns: Nothing on success
1499# If Spice is not enabled, DeviceNotFound
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LC
1500#
1501# Since: 0.14.0
1502##
1503{ 'command': 'set_password',
1504 'data': {'protocol': 'str', 'password': 'str', '*connected': 'str'} }
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1505
1506##
1507# @expire_password:
1508#
1509# Expire the password of a remote display server.
1510#
1511# @protocol: the name of the remote display protocol `vnc' or `spice'
1512#
1513# @time: when to expire the password.
1514# `now' to expire the password immediately
1515# `never' to cancel password expiration
1516# `+INT' where INT is the number of seconds from now (integer)
1517# `INT' where INT is the absolute time in seconds
1518#
1519# Returns: Nothing on success
1520# If @protocol is `spice' and Spice is not active, DeviceNotFound
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LC
1521#
1522# Since: 0.14.0
1523#
1524# Notes: Time is relative to the server and currently there is no way to
1525# coordinate server time with client time. It is not recommended to
1526# use the absolute time version of the @time parameter unless you're
1527# sure you are on the same machine as the QEMU instance.
1528##
1529{ 'command': 'expire_password', 'data': {'protocol': 'str', 'time': 'str'} }
c245b6a3 1530
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1531##
1532# @change-vnc-password:
1533#
1534# Change the VNC server password.
1535#
1c854067 1536# @password: the new password to use with VNC authentication
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LC
1537#
1538# Since: 1.1
1539#
1540# Notes: An empty password in this command will set the password to the empty
1541# string. Existing clients are unaffected by executing this command.
1542##
1543{ 'command': 'change-vnc-password', 'data': {'password': 'str'} }
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1544
1545##
1546# @change:
1547#
1548# This command is multiple commands multiplexed together.
1549#
1550# @device: This is normally the name of a block device but it may also be 'vnc'.
1551# when it's 'vnc', then sub command depends on @target
1552#
1553# @target: If @device is a block device, then this is the new filename.
1554# If @device is 'vnc', then if the value 'password' selects the vnc
1555# change password command. Otherwise, this specifies a new server URI
1556# address to listen to for VNC connections.
1557#
1558# @arg: If @device is a block device, then this is an optional format to open
1559# the device with.
1560# If @device is 'vnc' and @target is 'password', this is the new VNC
1561# password to set. If this argument is an empty string, then no future
1562# logins will be allowed.
1563#
1564# Returns: Nothing on success.
1565# If @device is not a valid block device, DeviceNotFound
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1566# If the new block device is encrypted, DeviceEncrypted. Note that
1567# if this error is returned, the device has been opened successfully
1568# and an additional call to @block_passwd is required to set the
1569# device's password. The behavior of reads and writes to the block
1570# device between when these calls are executed is undefined.
1571#
1572# Notes: It is strongly recommended that this interface is not used especially
1573# for changing block devices.
1574#
1575# Since: 0.14.0
1576##
1577{ 'command': 'change',
1578 'data': {'device': 'str', 'target': 'str', '*arg': 'str'} }
80047da5 1579
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1580##
1581# @ObjectTypeInfo:
1582#
1583# This structure describes a search result from @qom-list-types
1584#
1585# @name: the type name found in the search
1586#
1587# Since: 1.1
1588#
1589# Notes: This command is experimental and may change syntax in future releases.
1590##
1591{ 'type': 'ObjectTypeInfo',
1592 'data': { 'name': 'str' } }
1593
1594##
1595# @qom-list-types:
1596#
1597# This command will return a list of types given search parameters
1598#
1599# @implements: if specified, only return types that implement this type name
1600#
1601# @abstract: if true, include abstract types in the results
1602#
1603# Returns: a list of @ObjectTypeInfo or an empty list if no results are found
1604#
1605# Since: 1.1
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1606##
1607{ 'command': 'qom-list-types',
1608 'data': { '*implements': 'str', '*abstract': 'bool' },
1609 'returns': [ 'ObjectTypeInfo' ] }
e1c37d0e 1610
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1611##
1612# @DevicePropertyInfo:
1613#
1614# Information about device properties.
1615#
1616# @name: the name of the property
1617# @type: the typename of the property
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GA
1618# @description: #optional if specified, the description of the property.
1619# (since 2.2)
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1620#
1621# Since: 1.2
1622##
1623{ 'type': 'DevicePropertyInfo',
07d09c58 1624 'data': { 'name': 'str', 'type': 'str', '*description': 'str' } }
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1625
1626##
1627# @device-list-properties:
1628#
1629# List properties associated with a device.
1630#
1631# @typename: the type name of a device
1632#
1633# Returns: a list of DevicePropertyInfo describing a devices properties
1634#
1635# Since: 1.2
1636##
1637{ 'command': 'device-list-properties',
1638 'data': { 'typename': 'str'},
1639 'returns': [ 'DevicePropertyInfo' ] }
1640
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LC
1641##
1642# @migrate
1643#
1644# Migrates the current running guest to another Virtual Machine.
1645#
1646# @uri: the Uniform Resource Identifier of the destination VM
1647#
1648# @blk: #optional do block migration (full disk copy)
1649#
1650# @inc: #optional incremental disk copy migration
1651#
1652# @detach: this argument exists only for compatibility reasons and
1653# is ignored by QEMU
1654#
1655# Returns: nothing on success
1656#
1657# Since: 0.14.0
1658##
1659{ 'command': 'migrate',
1660 'data': {'uri': 'str', '*blk': 'bool', '*inc': 'bool', '*detach': 'bool' } }
33cf629a 1661
a7ae8355
SS
1662# @xen-save-devices-state:
1663#
1664# Save the state of all devices to file. The RAM and the block devices
1665# of the VM are not saved by this command.
1666#
1667# @filename: the file to save the state of the devices to as binary
1668# data. See xen-save-devices-state.txt for a description of the binary
1669# format.
1670#
1671# Returns: Nothing on success
a7ae8355
SS
1672#
1673# Since: 1.1
1674##
1675{ 'command': 'xen-save-devices-state', 'data': {'filename': 'str'} }
a15fef21 1676
39f42439
AP
1677##
1678# @xen-set-global-dirty-log
1679#
1680# Enable or disable the global dirty log mode.
1681#
1682# @enable: true to enable, false to disable.
1683#
1684# Returns: nothing
1685#
1686# Since: 1.3
1687##
1688{ 'command': 'xen-set-global-dirty-log', 'data': { 'enable': 'bool' } }
1689
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LC
1690##
1691# @device_del:
1692#
1693# Remove a device from a guest
1694#
1695# @id: the name of the device
1696#
1697# Returns: Nothing on success
1698# If @id is not a valid device, DeviceNotFound
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1699#
1700# Notes: When this command completes, the device may not be removed from the
1701# guest. Hot removal is an operation that requires guest cooperation.
1702# This command merely requests that the guest begin the hot removal
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MT
1703# process. Completion of the device removal process is signaled with a
1704# DEVICE_DELETED event. Guest reset will automatically complete removal
1705# for all devices.
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1706#
1707# Since: 0.14.0
1708##
1709{ 'command': 'device_del', 'data': {'id': 'str'} }
783e9b48 1710
b53ccc30
QN
1711##
1712# @DumpGuestMemoryFormat:
1713#
1714# An enumeration of guest-memory-dump's format.
1715#
1716# @elf: elf format
1717#
1718# @kdump-zlib: kdump-compressed format with zlib-compressed
1719#
1720# @kdump-lzo: kdump-compressed format with lzo-compressed
1721#
1722# @kdump-snappy: kdump-compressed format with snappy-compressed
1723#
1724# Since: 2.0
1725##
1726{ 'enum': 'DumpGuestMemoryFormat',
1727 'data': [ 'elf', 'kdump-zlib', 'kdump-lzo', 'kdump-snappy' ] }
1728
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1729##
1730# @dump-guest-memory
1731#
1732# Dump guest's memory to vmcore. It is a synchronous operation that can take
1733# very long depending on the amount of guest memory. This command is only
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1734# supported on i386 and x86_64.
1735#
1736# @paging: if true, do paging to get guest's memory mapping. This allows
d691180e 1737# using gdb to process the core file.
f5b0d93b 1738#
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1739# IMPORTANT: this option can make QEMU allocate several gigabytes
1740# of RAM. This can happen for a large guest, or a
1741# malicious guest pretending to be large.
1742#
1743# Also, paging=true has the following limitations:
1744#
1745# 1. The guest may be in a catastrophic state or can have corrupted
1746# memory, which cannot be trusted
1747# 2. The guest can be in real-mode even if paging is enabled. For
1748# example, the guest uses ACPI to sleep, and ACPI sleep state
1749# goes in real-mode
f5b0d93b 1750#
783e9b48 1751# @protocol: the filename or file descriptor of the vmcore. The supported
d691180e 1752# protocols are:
f5b0d93b 1753#
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1754# 1. file: the protocol starts with "file:", and the following
1755# string is the file's path.
1756# 2. fd: the protocol starts with "fd:", and the following string
1757# is the fd's name.
f5b0d93b 1758#
783e9b48 1759# @begin: #optional if specified, the starting physical address.
f5b0d93b 1760#
783e9b48 1761# @length: #optional if specified, the memory size, in bytes. If you don't
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1762# want to dump all guest's memory, please specify the start @begin
1763# and @length
783e9b48 1764#
b53ccc30
QN
1765# @format: #optional if specified, the format of guest memory dump. But non-elf
1766# format is conflict with paging and filter, ie. @paging, @begin and
1767# @length is not allowed to be specified with non-elf @format at the
1768# same time (since 2.0)
1769#
783e9b48 1770# Returns: nothing on success
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WC
1771#
1772# Since: 1.2
1773##
1774{ 'command': 'dump-guest-memory',
1775 'data': { 'paging': 'bool', 'protocol': 'str', '*begin': 'int',
b53ccc30 1776 '*length': 'int', '*format': 'DumpGuestMemoryFormat' } }
d691180e 1777
7d6dc7f3
QN
1778##
1779# @DumpGuestMemoryCapability:
1780#
1781# A list of the available formats for dump-guest-memory
1782#
1783# Since: 2.0
1784##
1785{ 'type': 'DumpGuestMemoryCapability',
1786 'data': {
1787 'formats': ['DumpGuestMemoryFormat'] } }
1788
1789##
1790# @query-dump-guest-memory-capability:
1791#
1792# Returns the available formats for dump-guest-memory
1793#
1794# Returns: A @DumpGuestMemoryCapability object listing available formats for
1795# dump-guest-memory
1796#
1797# Since: 2.0
1798##
1799{ 'command': 'query-dump-guest-memory-capability',
1800 'returns': 'DumpGuestMemoryCapability' }
d691180e 1801
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1802##
1803# @netdev_add:
1804#
1805# Add a network backend.
1806#
1807# @type: the type of network backend. Current valid values are 'user', 'tap',
1808# 'vde', 'socket', 'dump' and 'bridge'
1809#
1810# @id: the name of the new network backend
1811#
1812# @props: #optional a list of properties to be passed to the backend in
1813# the format 'name=value', like 'ifname=tap0,script=no'
1814#
1815# Notes: The semantics of @props is not well defined. Future commands will be
1816# introduced that provide stronger typing for backend creation.
1817#
1818# Since: 0.14.0
1819#
1820# Returns: Nothing on success
1821# If @type is not a valid network backend, DeviceNotFound
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1822##
1823{ 'command': 'netdev_add',
1824 'data': {'type': 'str', 'id': 'str', '*props': '**'},
1825 'gen': 'no' }
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1826
1827##
1828# @netdev_del:
1829#
1830# Remove a network backend.
1831#
1832# @id: the name of the network backend to remove
1833#
1834# Returns: Nothing on success
1835# If @id is not a valid network backend, DeviceNotFound
1836#
1837# Since: 0.14.0
1838##
1839{ 'command': 'netdev_del', 'data': {'id': 'str'} }
208c9d1b 1840
cff8b2c6
PB
1841##
1842# @object-add:
1843#
1844# Create a QOM object.
1845#
1846# @qom-type: the class name for the object to be created
1847#
1848# @id: the name of the new object
1849#
1850# @props: #optional a dictionary of properties to be passed to the backend
1851#
1852# Returns: Nothing on success
1853# Error if @qom-type is not a valid class name
1854#
1855# Since: 2.0
1856##
1857{ 'command': 'object-add',
1858 'data': {'qom-type': 'str', 'id': 'str', '*props': 'dict'},
1859 'gen': 'no' }
1860
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PB
1861##
1862# @object-del:
1863#
1864# Remove a QOM object.
1865#
1866# @id: the name of the QOM object to remove
1867#
1868# Returns: Nothing on success
1869# Error if @id is not a valid id for a QOM object
1870#
1871# Since: 2.0
1872##
1873{ 'command': 'object-del', 'data': {'id': 'str'} }
1874
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1875##
1876# @NetdevNoneOptions
1877#
1878# Use it alone to have zero network devices.
1879#
1880# Since 1.2
1881##
1882{ 'type': 'NetdevNoneOptions',
1883 'data': { } }
1884
1885##
1886# @NetLegacyNicOptions
1887#
1888# Create a new Network Interface Card.
1889#
1890# @netdev: #optional id of -netdev to connect to
1891#
1892# @macaddr: #optional MAC address
1893#
1894# @model: #optional device model (e1000, rtl8139, virtio etc.)
1895#
1896# @addr: #optional PCI device address
1897#
1898# @vectors: #optional number of MSI-x vectors, 0 to disable MSI-X
1899#
1900# Since 1.2
1901##
1902{ 'type': 'NetLegacyNicOptions',
1903 'data': {
1904 '*netdev': 'str',
1905 '*macaddr': 'str',
1906 '*model': 'str',
1907 '*addr': 'str',
1908 '*vectors': 'uint32' } }
1909
1910##
1911# @String
1912#
1913# A fat type wrapping 'str', to be embedded in lists.
1914#
1915# Since 1.2
1916##
1917{ 'type': 'String',
1918 'data': {
1919 'str': 'str' } }
1920
1921##
1922# @NetdevUserOptions
1923#
1924# Use the user mode network stack which requires no administrator privilege to
1925# run.
1926#
1927# @hostname: #optional client hostname reported by the builtin DHCP server
1928#
1929# @restrict: #optional isolate the guest from the host
1930#
1931# @ip: #optional legacy parameter, use net= instead
1932#
1933# @net: #optional IP address and optional netmask
1934#
1935# @host: #optional guest-visible address of the host
1936#
1937# @tftp: #optional root directory of the built-in TFTP server
1938#
1939# @bootfile: #optional BOOTP filename, for use with tftp=
1940#
1941# @dhcpstart: #optional the first of the 16 IPs the built-in DHCP server can
1942# assign
1943#
1944# @dns: #optional guest-visible address of the virtual nameserver
1945#
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1946# @dnssearch: #optional list of DNS suffixes to search, passed as DHCP option
1947# to the guest
1948#
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1949# @smb: #optional root directory of the built-in SMB server
1950#
1951# @smbserver: #optional IP address of the built-in SMB server
1952#
1953# @hostfwd: #optional redirect incoming TCP or UDP host connections to guest
1954# endpoints
1955#
1956# @guestfwd: #optional forward guest TCP connections
1957#
1958# Since 1.2
1959##
1960{ 'type': 'NetdevUserOptions',
1961 'data': {
1962 '*hostname': 'str',
1963 '*restrict': 'bool',
1964 '*ip': 'str',
1965 '*net': 'str',
1966 '*host': 'str',
1967 '*tftp': 'str',
1968 '*bootfile': 'str',
1969 '*dhcpstart': 'str',
1970 '*dns': 'str',
63d2960b 1971 '*dnssearch': ['String'],
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1972 '*smb': 'str',
1973 '*smbserver': 'str',
1974 '*hostfwd': ['String'],
1975 '*guestfwd': ['String'] } }
1976
1977##
1978# @NetdevTapOptions
1979#
1980# Connect the host TAP network interface name to the VLAN.
1981#
1982# @ifname: #optional interface name
1983#
1984# @fd: #optional file descriptor of an already opened tap
1985#
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1986# @fds: #optional multiple file descriptors of already opened multiqueue capable
1987# tap
1988#
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1989# @script: #optional script to initialize the interface
1990#
1991# @downscript: #optional script to shut down the interface
1992#
1993# @helper: #optional command to execute to configure bridge
1994#
1995# @sndbuf: #optional send buffer limit. Understands [TGMKkb] suffixes.
1996#
1997# @vnet_hdr: #optional enable the IFF_VNET_HDR flag on the tap interface
1998#
1999# @vhost: #optional enable vhost-net network accelerator
2000#
2001# @vhostfd: #optional file descriptor of an already opened vhost net device
2002#
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2003# @vhostfds: #optional file descriptors of multiple already opened vhost net
2004# devices
2005#
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2006# @vhostforce: #optional vhost on for non-MSIX virtio guests
2007#
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2008# @queues: #optional number of queues to be created for multiqueue capable tap
2009#
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2010# Since 1.2
2011##
2012{ 'type': 'NetdevTapOptions',
2013 'data': {
2014 '*ifname': 'str',
2015 '*fd': 'str',
264986e2 2016 '*fds': 'str',
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2017 '*script': 'str',
2018 '*downscript': 'str',
2019 '*helper': 'str',
2020 '*sndbuf': 'size',
2021 '*vnet_hdr': 'bool',
2022 '*vhost': 'bool',
2023 '*vhostfd': 'str',
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JW
2024 '*vhostfds': 'str',
2025 '*vhostforce': 'bool',
2026 '*queues': 'uint32'} }
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2027
2028##
2029# @NetdevSocketOptions
2030#
2031# Connect the VLAN to a remote VLAN in another QEMU virtual machine using a TCP
2032# socket connection.
2033#
2034# @fd: #optional file descriptor of an already opened socket
2035#
2036# @listen: #optional port number, and optional hostname, to listen on
2037#
2038# @connect: #optional port number, and optional hostname, to connect to
2039#
2040# @mcast: #optional UDP multicast address and port number
2041#
2042# @localaddr: #optional source address and port for multicast and udp packets
2043#
2044# @udp: #optional UDP unicast address and port number
2045#
2046# Since 1.2
2047##
2048{ 'type': 'NetdevSocketOptions',
2049 'data': {
2050 '*fd': 'str',
2051 '*listen': 'str',
2052 '*connect': 'str',
2053 '*mcast': 'str',
2054 '*localaddr': 'str',
2055 '*udp': 'str' } }
2056
3fb69aa1
AI
2057##
2058# @NetdevL2TPv3Options
2059#
2060# Connect the VLAN to Ethernet over L2TPv3 Static tunnel
2061#
2062# @src: source address
2063#
2064# @dst: destination address
2065#
2066# @srcport: #optional source port - mandatory for udp, optional for ip
2067#
2068# @dstport: #optional destination port - mandatory for udp, optional for ip
2069#
2070# @ipv6: #optional - force the use of ipv6
2071#
2072# @udp: #optional - use the udp version of l2tpv3 encapsulation
2073#
2074# @cookie64: #optional - use 64 bit coookies
2075#
2076# @counter: #optional have sequence counter
2077#
2078# @pincounter: #optional pin sequence counter to zero -
2079# workaround for buggy implementations or
2080# networks with packet reorder
2081#
2082# @txcookie: #optional 32 or 64 bit transmit cookie
2083#
2084# @rxcookie: #optional 32 or 64 bit receive cookie
2085#
2086# @txsession: 32 bit transmit session
2087#
2088# @rxsession: #optional 32 bit receive session - if not specified
2089# set to the same value as transmit
2090#
2091# @offset: #optional additional offset - allows the insertion of
2092# additional application-specific data before the packet payload
2093#
2094# Since 2.1
2095##
2096{ 'type': 'NetdevL2TPv3Options',
2097 'data': {
2098 'src': 'str',
2099 'dst': 'str',
2100 '*srcport': 'str',
2101 '*dstport': 'str',
2102 '*ipv6': 'bool',
2103 '*udp': 'bool',
2104 '*cookie64': 'bool',
2105 '*counter': 'bool',
2106 '*pincounter': 'bool',
2107 '*txcookie': 'uint64',
2108 '*rxcookie': 'uint64',
2109 'txsession': 'uint32',
2110 '*rxsession': 'uint32',
2111 '*offset': 'uint32' } }
2112
14aa0c2d
LE
2113##
2114# @NetdevVdeOptions
2115#
2116# Connect the VLAN to a vde switch running on the host.
2117#
2118# @sock: #optional socket path
2119#
2120# @port: #optional port number
2121#
2122# @group: #optional group owner of socket
2123#
2124# @mode: #optional permissions for socket
2125#
2126# Since 1.2
2127##
2128{ 'type': 'NetdevVdeOptions',
2129 'data': {
2130 '*sock': 'str',
2131 '*port': 'uint16',
2132 '*group': 'str',
2133 '*mode': 'uint16' } }
2134
2135##
2136# @NetdevDumpOptions
2137#
2138# Dump VLAN network traffic to a file.
2139#
2140# @len: #optional per-packet size limit (64k default). Understands [TGMKkb]
2141# suffixes.
2142#
2143# @file: #optional dump file path (default is qemu-vlan0.pcap)
2144#
2145# Since 1.2
2146##
2147{ 'type': 'NetdevDumpOptions',
2148 'data': {
2149 '*len': 'size',
2150 '*file': 'str' } }
2151
2152##
2153# @NetdevBridgeOptions
2154#
2155# Connect a host TAP network interface to a host bridge device.
2156#
2157# @br: #optional bridge name
2158#
2159# @helper: #optional command to execute to configure bridge
2160#
2161# Since 1.2
2162##
2163{ 'type': 'NetdevBridgeOptions',
2164 'data': {
2165 '*br': 'str',
2166 '*helper': 'str' } }
2167
f6c874e3
SH
2168##
2169# @NetdevHubPortOptions
2170#
2171# Connect two or more net clients through a software hub.
2172#
2173# @hubid: hub identifier number
2174#
2175# Since 1.2
2176##
2177{ 'type': 'NetdevHubPortOptions',
2178 'data': {
2179 'hubid': 'int32' } }
2180
58952137
VM
2181##
2182# @NetdevNetmapOptions
2183#
2184# Connect a client to a netmap-enabled NIC or to a VALE switch port
2185#
2186# @ifname: Either the name of an existing network interface supported by
2187# netmap, or the name of a VALE port (created on the fly).
2188# A VALE port name is in the form 'valeXXX:YYY', where XXX and
2189# YYY are non-negative integers. XXX identifies a switch and
2190# YYY identifies a port of the switch. VALE ports having the
2191# same XXX are therefore connected to the same switch.
2192#
2193# @devname: #optional path of the netmap device (default: '/dev/netmap').
2194#
c27de2a3 2195# Since 2.0
58952137
VM
2196##
2197{ 'type': 'NetdevNetmapOptions',
2198 'data': {
2199 'ifname': 'str',
2200 '*devname': 'str' } }
2201
03ce5744
NN
2202##
2203# @NetdevVhostUserOptions
2204#
2205# Vhost-user network backend
2206#
2207# @chardev: name of a unix socket chardev
2208#
2209# @vhostforce: #optional vhost on for non-MSIX virtio guests (default: false).
2210#
2211# Since 2.1
2212##
2213{ 'type': 'NetdevVhostUserOptions',
2214 'data': {
2215 'chardev': 'str',
2216 '*vhostforce': 'bool' } }
2217
14aa0c2d
LE
2218##
2219# @NetClientOptions
2220#
2221# A discriminated record of network device traits.
2222#
2223# Since 1.2
3fb69aa1
AI
2224#
2225# 'l2tpv3' - since 2.1
2226#
14aa0c2d
LE
2227##
2228{ 'union': 'NetClientOptions',
2229 'data': {
f6c874e3
SH
2230 'none': 'NetdevNoneOptions',
2231 'nic': 'NetLegacyNicOptions',
2232 'user': 'NetdevUserOptions',
2233 'tap': 'NetdevTapOptions',
3fb69aa1 2234 'l2tpv3': 'NetdevL2TPv3Options',
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SH
2235 'socket': 'NetdevSocketOptions',
2236 'vde': 'NetdevVdeOptions',
2237 'dump': 'NetdevDumpOptions',
2238 'bridge': 'NetdevBridgeOptions',
58952137 2239 'hubport': 'NetdevHubPortOptions',
03ce5744
NN
2240 'netmap': 'NetdevNetmapOptions',
2241 'vhost-user': 'NetdevVhostUserOptions' } }
14aa0c2d
LE
2242
2243##
2244# @NetLegacy
2245#
2246# Captures the configuration of a network device; legacy.
2247#
2248# @vlan: #optional vlan number
2249#
2250# @id: #optional identifier for monitor commands
2251#
2252# @name: #optional identifier for monitor commands, ignored if @id is present
2253#
2254# @opts: device type specific properties (legacy)
2255#
2256# Since 1.2
2257##
2258{ 'type': 'NetLegacy',
2259 'data': {
2260 '*vlan': 'int32',
2261 '*id': 'str',
2262 '*name': 'str',
2263 'opts': 'NetClientOptions' } }
2264
2265##
2266# @Netdev
2267#
2268# Captures the configuration of a network device.
2269#
2270# @id: identifier for monitor commands.
2271#
2272# @opts: device type specific properties
2273#
2274# Since 1.2
2275##
2276{ 'type': 'Netdev',
2277 'data': {
2278 'id': 'str',
2279 'opts': 'NetClientOptions' } }
2280
5be8c759
PB
2281##
2282# @InetSocketAddress
2283#
2284# Captures a socket address or address range in the Internet namespace.
2285#
2286# @host: host part of the address
2287#
2288# @port: port part of the address, or lowest port if @to is present
2289#
2290# @to: highest port to try
2291#
2292# @ipv4: whether to accept IPv4 addresses, default try both IPv4 and IPv6
2293# #optional
2294#
2295# @ipv6: whether to accept IPv6 addresses, default try both IPv4 and IPv6
2296# #optional
2297#
2298# Since 1.3
2299##
2300{ 'type': 'InetSocketAddress',
2301 'data': {
2302 'host': 'str',
2303 'port': 'str',
2304 '*to': 'uint16',
2305 '*ipv4': 'bool',
2306 '*ipv6': 'bool' } }
2307
2308##
2309# @UnixSocketAddress
2310#
2311# Captures a socket address in the local ("Unix socket") namespace.
2312#
2313# @path: filesystem path to use
2314#
2315# Since 1.3
2316##
2317{ 'type': 'UnixSocketAddress',
2318 'data': {
2319 'path': 'str' } }
2320
2321##
2322# @SocketAddress
2323#
2324# Captures the address of a socket, which could also be a named file descriptor
2325#
2326# Since 1.3
2327##
2328{ 'union': 'SocketAddress',
2329 'data': {
2330 'inet': 'InetSocketAddress',
2331 'unix': 'UnixSocketAddress',
2332 'fd': 'String' } }
2333
208c9d1b
CB
2334##
2335# @getfd:
2336#
2337# Receive a file descriptor via SCM rights and assign it a name
2338#
2339# @fdname: file descriptor name
2340#
2341# Returns: Nothing on success
208c9d1b
CB
2342#
2343# Since: 0.14.0
2344#
2345# Notes: If @fdname already exists, the file descriptor assigned to
2346# it will be closed and replaced by the received file
2347# descriptor.
2348# The 'closefd' command can be used to explicitly close the
2349# file descriptor when it is no longer needed.
2350##
2351{ 'command': 'getfd', 'data': {'fdname': 'str'} }
2352
2353##
2354# @closefd:
2355#
2356# Close a file descriptor previously passed via SCM rights
2357#
2358# @fdname: file descriptor name
2359#
2360# Returns: Nothing on success
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CB
2361#
2362# Since: 0.14.0
2363##
2364{ 'command': 'closefd', 'data': {'fdname': 'str'} }
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AL
2365
2366##
2367# @MachineInfo:
2368#
2369# Information describing a machine.
2370#
2371# @name: the name of the machine
2372#
2373# @alias: #optional an alias for the machine name
2374#
2375# @default: #optional whether the machine is default
2376#
c72e7688
MN
2377# @cpu-max: maximum number of CPUs supported by the machine type
2378# (since 1.5.0)
2379#
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AL
2380# Since: 1.2.0
2381##
2382{ 'type': 'MachineInfo',
2383 'data': { 'name': 'str', '*alias': 'str',
c72e7688 2384 '*is-default': 'bool', 'cpu-max': 'int' } }
01d3c80d
AL
2385
2386##
2387# @query-machines:
2388#
2389# Return a list of supported machines
2390#
2391# Returns: a list of MachineInfo
2392#
2393# Since: 1.2.0
2394##
2395{ 'command': 'query-machines', 'returns': ['MachineInfo'] }
e4e31c63
AL
2396
2397##
2398# @CpuDefinitionInfo:
2399#
2400# Virtual CPU definition.
2401#
2402# @name: the name of the CPU definition
2403#
2404# Since: 1.2.0
2405##
2406{ 'type': 'CpuDefinitionInfo',
2407 'data': { 'name': 'str' } }
2408
2409##
2410# @query-cpu-definitions:
2411#
2412# Return a list of supported virtual CPU definitions
2413#
2414# Returns: a list of CpuDefInfo
2415#
2416# Since: 1.2.0
2417##
2418{ 'command': 'query-cpu-definitions', 'returns': ['CpuDefinitionInfo'] }
ba1c048a
CB
2419
2420# @AddfdInfo:
2421#
2422# Information about a file descriptor that was added to an fd set.
2423#
2424# @fdset-id: The ID of the fd set that @fd was added to.
2425#
2426# @fd: The file descriptor that was received via SCM rights and
2427# added to the fd set.
2428#
2429# Since: 1.2.0
2430##
2431{ 'type': 'AddfdInfo', 'data': {'fdset-id': 'int', 'fd': 'int'} }
2432
2433##
2434# @add-fd:
2435#
2436# Add a file descriptor, that was passed via SCM rights, to an fd set.
2437#
2438# @fdset-id: #optional The ID of the fd set to add the file descriptor to.
2439#
2440# @opaque: #optional A free-form string that can be used to describe the fd.
2441#
2442# Returns: @AddfdInfo on success
2443# If file descriptor was not received, FdNotSupplied
9ac54af0 2444# If @fdset-id is a negative value, InvalidParameterValue
ba1c048a
CB
2445#
2446# Notes: The list of fd sets is shared by all monitor connections.
2447#
2448# If @fdset-id is not specified, a new fd set will be created.
2449#
2450# Since: 1.2.0
2451##
2452{ 'command': 'add-fd', 'data': {'*fdset-id': 'int', '*opaque': 'str'},
2453 'returns': 'AddfdInfo' }
2454
2455##
2456# @remove-fd:
2457#
2458# Remove a file descriptor from an fd set.
2459#
2460# @fdset-id: The ID of the fd set that the file descriptor belongs to.
2461#
2462# @fd: #optional The file descriptor that is to be removed.
2463#
2464# Returns: Nothing on success
2465# If @fdset-id or @fd is not found, FdNotFound
2466#
2467# Since: 1.2.0
2468#
2469# Notes: The list of fd sets is shared by all monitor connections.
2470#
2471# If @fd is not specified, all file descriptors in @fdset-id
2472# will be removed.
2473##
2474{ 'command': 'remove-fd', 'data': {'fdset-id': 'int', '*fd': 'int'} }
2475
2476##
2477# @FdsetFdInfo:
2478#
2479# Information about a file descriptor that belongs to an fd set.
2480#
2481# @fd: The file descriptor value.
2482#
2483# @opaque: #optional A free-form string that can be used to describe the fd.
2484#
2485# Since: 1.2.0
2486##
2487{ 'type': 'FdsetFdInfo',
2488 'data': {'fd': 'int', '*opaque': 'str'} }
2489
2490##
2491# @FdsetInfo:
2492#
2493# Information about an fd set.
2494#
2495# @fdset-id: The ID of the fd set.
2496#
2497# @fds: A list of file descriptors that belong to this fd set.
2498#
2499# Since: 1.2.0
2500##
2501{ 'type': 'FdsetInfo',
2502 'data': {'fdset-id': 'int', 'fds': ['FdsetFdInfo']} }
2503
2504##
2505# @query-fdsets:
2506#
2507# Return information describing all fd sets.
2508#
2509# Returns: A list of @FdsetInfo
2510#
2511# Since: 1.2.0
2512#
2513# Note: The list of fd sets is shared by all monitor connections.
2514#
2515##
2516{ 'command': 'query-fdsets', 'returns': ['FdsetInfo'] }
99afc91d 2517
99afc91d
DB
2518##
2519# @TargetInfo:
2520#
2521# Information describing the QEMU target.
2522#
2523# @arch: the target architecture (eg "x86_64", "i386", etc)
2524#
2525# Since: 1.2.0
2526##
2527{ 'type': 'TargetInfo',
c02a9552 2528 'data': { 'arch': 'str' } }
99afc91d
DB
2529
2530##
2531# @query-target:
2532#
2533# Return information about the target for this QEMU
2534#
2535# Returns: TargetInfo
2536#
2537# Since: 1.2.0
2538##
2539{ 'command': 'query-target', 'returns': 'TargetInfo' }
411656f4
AK
2540
2541##
2542# @QKeyCode:
2543#
2544# An enumeration of key name.
2545#
2546# This is used by the send-key command.
2547#
2548# Since: 1.3.0
bbd1b1cc 2549#
8b6b0c59 2550# 'unmapped' and 'pause' since 2.0
411656f4
AK
2551##
2552{ 'enum': 'QKeyCode',
bbd1b1cc
GH
2553 'data': [ 'unmapped',
2554 'shift', 'shift_r', 'alt', 'alt_r', 'altgr', 'altgr_r', 'ctrl',
411656f4
AK
2555 'ctrl_r', 'menu', 'esc', '1', '2', '3', '4', '5', '6', '7', '8',
2556 '9', '0', 'minus', 'equal', 'backspace', 'tab', 'q', 'w', 'e',
2557 'r', 't', 'y', 'u', 'i', 'o', 'p', 'bracket_left', 'bracket_right',
2558 'ret', 'a', 's', 'd', 'f', 'g', 'h', 'j', 'k', 'l', 'semicolon',
2559 'apostrophe', 'grave_accent', 'backslash', 'z', 'x', 'c', 'v', 'b',
2560 'n', 'm', 'comma', 'dot', 'slash', 'asterisk', 'spc', 'caps_lock',
2561 'f1', 'f2', 'f3', 'f4', 'f5', 'f6', 'f7', 'f8', 'f9', 'f10',
2562 'num_lock', 'scroll_lock', 'kp_divide', 'kp_multiply',
2563 'kp_subtract', 'kp_add', 'kp_enter', 'kp_decimal', 'sysrq', 'kp_0',
2564 'kp_1', 'kp_2', 'kp_3', 'kp_4', 'kp_5', 'kp_6', 'kp_7', 'kp_8',
2565 'kp_9', 'less', 'f11', 'f12', 'print', 'home', 'pgup', 'pgdn', 'end',
2566 'left', 'up', 'down', 'right', 'insert', 'delete', 'stop', 'again',
2567 'props', 'undo', 'front', 'copy', 'open', 'paste', 'find', 'cut',
8b6b0c59 2568 'lf', 'help', 'meta_l', 'meta_r', 'compose', 'pause' ] }
e4c8f004 2569
9f328977
LC
2570##
2571# @KeyValue
2572#
2573# Represents a keyboard key.
2574#
2575# Since: 1.3.0
2576##
2577{ 'union': 'KeyValue',
2578 'data': {
2579 'number': 'int',
2580 'qcode': 'QKeyCode' } }
2581
e4c8f004
AK
2582##
2583# @send-key:
2584#
2585# Send keys to guest.
2586#
9f328977
LC
2587# @keys: An array of @KeyValue elements. All @KeyValues in this array are
2588# simultaneously sent to the guest. A @KeyValue.number value is sent
2589# directly to the guest, while @KeyValue.qcode must be a valid
2590# @QKeyCode value
e4c8f004
AK
2591#
2592# @hold-time: #optional time to delay key up events, milliseconds. Defaults
2593# to 100
2594#
2595# Returns: Nothing on success
2596# If key is unknown or redundant, InvalidParameter
2597#
2598# Since: 1.3.0
2599#
2600##
2601{ 'command': 'send-key',
9f328977 2602 'data': { 'keys': ['KeyValue'], '*hold-time': 'int' } }
ad39cf6d
LC
2603
2604##
2605# @screendump:
2606#
2607# Write a PPM of the VGA screen to a file.
2608#
2609# @filename: the path of a new PPM file to store the image
2610#
2611# Returns: Nothing on success
2612#
2613# Since: 0.14.0
2614##
2615{ 'command': 'screendump', 'data': {'filename': 'str'} }
6dd844db 2616
ffbdbe59
GH
2617##
2618# @ChardevFile:
2619#
2620# Configuration info for file chardevs.
2621#
2622# @in: #optional The name of the input file
2623# @out: The name of the output file
2624#
2625# Since: 1.4
2626##
2627{ 'type': 'ChardevFile', 'data': { '*in' : 'str',
2628 'out' : 'str' } }
2629
d59044ef 2630##
d36b2b90 2631# @ChardevHostdev:
d59044ef 2632#
548cbb36 2633# Configuration info for device and pipe chardevs.
d59044ef
GH
2634#
2635# @device: The name of the special file for the device,
2636# i.e. /dev/ttyS0 on Unix or COM1: on Windows
2637# @type: What kind of device this is.
2638#
2639# Since: 1.4
2640##
d36b2b90 2641{ 'type': 'ChardevHostdev', 'data': { 'device' : 'str' } }
d59044ef 2642
f6bd5d6e
GH
2643##
2644# @ChardevSocket:
2645#
3ecc059d 2646# Configuration info for (stream) socket chardevs.
f6bd5d6e
GH
2647#
2648# @addr: socket address to listen on (server=true)
2649# or connect to (server=false)
2650# @server: #optional create server socket (default: true)
ef993ba7
GH
2651# @wait: #optional wait for incoming connection on server
2652# sockets (default: false).
f6bd5d6e 2653# @nodelay: #optional set TCP_NODELAY socket option (default: false)
ef993ba7
GH
2654# @telnet: #optional enable telnet protocol on server
2655# sockets (default: false)
5dd1f02b
CM
2656# @reconnect: #optional For a client socket, if a socket is disconnected,
2657# then attempt a reconnect after the given number of seconds.
2658# Setting this to zero disables this function. (default: 0)
2659# (Since: 2.2)
f6bd5d6e
GH
2660#
2661# Since: 1.4
2662##
5dd1f02b
CM
2663{ 'type': 'ChardevSocket', 'data': { 'addr' : 'SocketAddress',
2664 '*server' : 'bool',
2665 '*wait' : 'bool',
2666 '*nodelay' : 'bool',
2667 '*telnet' : 'bool',
2668 '*reconnect' : 'int' } }
f6bd5d6e 2669
3ecc059d 2670##
08d0ab3f 2671# @ChardevUdp:
3ecc059d
GH
2672#
2673# Configuration info for datagram socket chardevs.
2674#
2675# @remote: remote address
2676# @local: #optional local address
2677#
2678# Since: 1.5
2679##
08d0ab3f
LL
2680{ 'type': 'ChardevUdp', 'data': { 'remote' : 'SocketAddress',
2681 '*local' : 'SocketAddress' } }
3ecc059d 2682
edb2fb3c
GH
2683##
2684# @ChardevMux:
2685#
2686# Configuration info for mux chardevs.
2687#
2688# @chardev: name of the base chardev.
2689#
2690# Since: 1.5
2691##
2692{ 'type': 'ChardevMux', 'data': { 'chardev' : 'str' } }
2693
7c358031
GH
2694##
2695# @ChardevStdio:
2696#
2697# Configuration info for stdio chardevs.
2698#
2699# @signal: #optional Allow signals (such as SIGINT triggered by ^C)
2700# be delivered to qemu. Default: true in -nographic mode,
2701# false otherwise.
2702#
2703# Since: 1.5
2704##
2705{ 'type': 'ChardevStdio', 'data': { '*signal' : 'bool' } }
2706
cd153e2a
GH
2707##
2708# @ChardevSpiceChannel:
2709#
2710# Configuration info for spice vm channel chardevs.
2711#
2712# @type: kind of channel (for example vdagent).
2713#
2714# Since: 1.5
2715##
2716{ 'type': 'ChardevSpiceChannel', 'data': { 'type' : 'str' } }
2717
2718##
2719# @ChardevSpicePort:
2720#
2721# Configuration info for spice port chardevs.
2722#
2723# @fqdn: name of the channel (see docs/spice-port-fqdn.txt)
2724#
2725# Since: 1.5
2726##
2727{ 'type': 'ChardevSpicePort', 'data': { 'fqdn' : 'str' } }
2728
702ec69c
GH
2729##
2730# @ChardevVC:
2731#
2732# Configuration info for virtual console chardevs.
2733#
2734# @width: console width, in pixels
2735# @height: console height, in pixels
2736# @cols: console width, in chars
2737# @rows: console height, in chars
2738#
2739# Since: 1.5
2740##
2741{ 'type': 'ChardevVC', 'data': { '*width' : 'int',
2742 '*height' : 'int',
2743 '*cols' : 'int',
2744 '*rows' : 'int' } }
2745
1da48c65 2746##
4f57378f 2747# @ChardevRingbuf:
1da48c65 2748#
3a1da42e 2749# Configuration info for ring buffer chardevs.
1da48c65 2750#
3a1da42e 2751# @size: #optional ring buffer size, must be power of two, default is 65536
1da48c65
GH
2752#
2753# Since: 1.5
2754##
4f57378f 2755{ 'type': 'ChardevRingbuf', 'data': { '*size' : 'int' } }
1da48c65 2756
f1a1a356
GH
2757##
2758# @ChardevBackend:
2759#
2760# Configuration info for the new chardev backend.
2761#
5692399f 2762# Since: 1.4 (testdev since 2.2)
f1a1a356
GH
2763##
2764{ 'type': 'ChardevDummy', 'data': { } }
2765
f6bd5d6e 2766{ 'union': 'ChardevBackend', 'data': { 'file' : 'ChardevFile',
d36b2b90
MA
2767 'serial' : 'ChardevHostdev',
2768 'parallel': 'ChardevHostdev',
548cbb36 2769 'pipe' : 'ChardevHostdev',
f6bd5d6e 2770 'socket' : 'ChardevSocket',
08d0ab3f 2771 'udp' : 'ChardevUdp',
0a1a7fab 2772 'pty' : 'ChardevDummy',
edb2fb3c 2773 'null' : 'ChardevDummy',
f5a51cab 2774 'mux' : 'ChardevMux',
2d57286d 2775 'msmouse': 'ChardevDummy',
7c358031 2776 'braille': 'ChardevDummy',
5692399f 2777 'testdev': 'ChardevDummy',
d9ac374f 2778 'stdio' : 'ChardevStdio',
cd153e2a
GH
2779 'console': 'ChardevDummy',
2780 'spicevmc' : 'ChardevSpiceChannel',
702ec69c 2781 'spiceport' : 'ChardevSpicePort',
1da48c65 2782 'vc' : 'ChardevVC',
3a1da42e
MA
2783 'ringbuf': 'ChardevRingbuf',
2784 # next one is just for compatibility
4f57378f 2785 'memory' : 'ChardevRingbuf' } }
f1a1a356
GH
2786
2787##
2788# @ChardevReturn:
2789#
2790# Return info about the chardev backend just created.
2791#
58fa4325
MA
2792# @pty: #optional name of the slave pseudoterminal device, present if
2793# and only if a chardev of type 'pty' was created
2794#
f1a1a356
GH
2795# Since: 1.4
2796##
0a1a7fab 2797{ 'type' : 'ChardevReturn', 'data': { '*pty' : 'str' } }
f1a1a356
GH
2798
2799##
2800# @chardev-add:
2801#
58fa4325 2802# Add a character device backend
f1a1a356
GH
2803#
2804# @id: the chardev's ID, must be unique
2805# @backend: backend type and parameters
2806#
58fa4325 2807# Returns: ChardevReturn.
f1a1a356
GH
2808#
2809# Since: 1.4
2810##
2811{ 'command': 'chardev-add', 'data': {'id' : 'str',
2812 'backend' : 'ChardevBackend' },
2813 'returns': 'ChardevReturn' }
2814
2815##
2816# @chardev-remove:
2817#
58fa4325 2818# Remove a character device backend
f1a1a356
GH
2819#
2820# @id: the chardev's ID, must exist and not be in use
2821#
2822# Returns: Nothing on success
2823#
2824# Since: 1.4
2825##
2826{ 'command': 'chardev-remove', 'data': {'id': 'str'} }
d1a0cf73
SB
2827
2828##
2829# @TpmModel:
2830#
2831# An enumeration of TPM models
2832#
2833# @tpm-tis: TPM TIS model
2834#
2835# Since: 1.5
2836##
2837{ 'enum': 'TpmModel', 'data': [ 'tpm-tis' ] }
2838
2839##
2840# @query-tpm-models:
2841#
2842# Return a list of supported TPM models
2843#
2844# Returns: a list of TpmModel
2845#
2846# Since: 1.5
2847##
2848{ 'command': 'query-tpm-models', 'returns': ['TpmModel'] }
2849
2850##
2851# @TpmType:
2852#
2853# An enumeration of TPM types
2854#
2855# @passthrough: TPM passthrough type
2856#
2857# Since: 1.5
2858##
2859{ 'enum': 'TpmType', 'data': [ 'passthrough' ] }
2860
2861##
2862# @query-tpm-types:
2863#
2864# Return a list of supported TPM types
2865#
2866# Returns: a list of TpmType
2867#
2868# Since: 1.5
2869##
2870{ 'command': 'query-tpm-types', 'returns': ['TpmType'] }
2871
2872##
2873# @TPMPassthroughOptions:
2874#
2875# Information about the TPM passthrough type
2876#
2877# @path: #optional string describing the path used for accessing the TPM device
2878#
2879# @cancel-path: #optional string showing the TPM's sysfs cancel file
2880# for cancellation of TPM commands while they are executing
2881#
2882# Since: 1.5
2883##
2884{ 'type': 'TPMPassthroughOptions', 'data': { '*path' : 'str',
2885 '*cancel-path' : 'str'} }
2886
2887##
2888# @TpmTypeOptions:
2889#
2890# A union referencing different TPM backend types' configuration options
2891#
88ca7bcf 2892# @passthrough: The configuration options for the TPM passthrough type
d1a0cf73
SB
2893#
2894# Since: 1.5
2895##
2896{ 'union': 'TpmTypeOptions',
88ca7bcf 2897 'data': { 'passthrough' : 'TPMPassthroughOptions' } }
d1a0cf73
SB
2898
2899##
2900# @TpmInfo:
2901#
2902# Information about the TPM
2903#
2904# @id: The Id of the TPM
2905#
2906# @model: The TPM frontend model
2907#
88ca7bcf 2908# @options: The TPM (backend) type configuration options
d1a0cf73
SB
2909#
2910# Since: 1.5
2911##
2912{ 'type': 'TPMInfo',
2913 'data': {'id': 'str',
2914 'model': 'TpmModel',
88ca7bcf 2915 'options': 'TpmTypeOptions' } }
d1a0cf73
SB
2916
2917##
2918# @query-tpm:
2919#
2920# Return information about the TPM device
2921#
2922# Returns: @TPMInfo on success
2923#
2924# Since: 1.5
2925##
2926{ 'command': 'query-tpm', 'returns': ['TPMInfo'] }
8ccbad5c
LE
2927
2928##
2929# @AcpiTableOptions
2930#
2931# Specify an ACPI table on the command line to load.
2932#
2933# At most one of @file and @data can be specified. The list of files specified
2934# by any one of them is loaded and concatenated in order. If both are omitted,
2935# @data is implied.
2936#
2937# Other fields / optargs can be used to override fields of the generic ACPI
2938# table header; refer to the ACPI specification 5.0, section 5.2.6 System
2939# Description Table Header. If a header field is not overridden, then the
2940# corresponding value from the concatenated blob is used (in case of @file), or
2941# it is filled in with a hard-coded value (in case of @data).
2942#
2943# String fields are copied into the matching ACPI member from lowest address
2944# upwards, and silently truncated / NUL-padded to length.
2945#
2946# @sig: #optional table signature / identifier (4 bytes)
2947#
2948# @rev: #optional table revision number (dependent on signature, 1 byte)
2949#
2950# @oem_id: #optional OEM identifier (6 bytes)
2951#
2952# @oem_table_id: #optional OEM table identifier (8 bytes)
2953#
2954# @oem_rev: #optional OEM-supplied revision number (4 bytes)
2955#
2956# @asl_compiler_id: #optional identifier of the utility that created the table
2957# (4 bytes)
2958#
2959# @asl_compiler_rev: #optional revision number of the utility that created the
2960# table (4 bytes)
2961#
2962# @file: #optional colon (:) separated list of pathnames to load and
2963# concatenate as table data. The resultant binary blob is expected to
2964# have an ACPI table header. At least one file is required. This field
2965# excludes @data.
2966#
2967# @data: #optional colon (:) separated list of pathnames to load and
2968# concatenate as table data. The resultant binary blob must not have an
2969# ACPI table header. At least one file is required. This field excludes
2970# @file.
2971#
2972# Since 1.5
2973##
2974{ 'type': 'AcpiTableOptions',
2975 'data': {
2976 '*sig': 'str',
2977 '*rev': 'uint8',
2978 '*oem_id': 'str',
2979 '*oem_table_id': 'str',
2980 '*oem_rev': 'uint32',
2981 '*asl_compiler_id': 'str',
2982 '*asl_compiler_rev': 'uint32',
2983 '*file': 'str',
2984 '*data': 'str' }}
1f8f987d
AK
2985
2986##
2987# @CommandLineParameterType:
2988#
2989# Possible types for an option parameter.
2990#
2991# @string: accepts a character string
2992#
2993# @boolean: accepts "on" or "off"
2994#
2995# @number: accepts a number
2996#
2997# @size: accepts a number followed by an optional suffix (K)ilo,
2998# (M)ega, (G)iga, (T)era
2999#
3000# Since 1.5
3001##
3002{ 'enum': 'CommandLineParameterType',
3003 'data': ['string', 'boolean', 'number', 'size'] }
3004
3005##
3006# @CommandLineParameterInfo:
3007#
3008# Details about a single parameter of a command line option.
3009#
3010# @name: parameter name
3011#
3012# @type: parameter @CommandLineParameterType
3013#
3014# @help: #optional human readable text string, not suitable for parsing.
3015#
e36af94f
CL
3016# @default: #optional default value string (since 2.1)
3017#
1f8f987d
AK
3018# Since 1.5
3019##
3020{ 'type': 'CommandLineParameterInfo',
3021 'data': { 'name': 'str',
3022 'type': 'CommandLineParameterType',
e36af94f
CL
3023 '*help': 'str',
3024 '*default': 'str' } }
1f8f987d
AK
3025
3026##
3027# @CommandLineOptionInfo:
3028#
3029# Details about a command line option, including its list of parameter details
3030#
3031# @option: option name
3032#
3033# @parameters: an array of @CommandLineParameterInfo
3034#
3035# Since 1.5
3036##
3037{ 'type': 'CommandLineOptionInfo',
3038 'data': { 'option': 'str', 'parameters': ['CommandLineParameterInfo'] } }
3039
3040##
3041# @query-command-line-options:
3042#
3043# Query command line option schema.
3044#
3045# @option: #optional option name
3046#
3047# Returns: list of @CommandLineOptionInfo for all options (or for the given
3048# @option). Returns an error if the given @option doesn't exist.
3049#
3050# Since 1.5
3051##
3052{'command': 'query-command-line-options', 'data': { '*option': 'str' },
3053 'returns': ['CommandLineOptionInfo'] }
8e8aba50
EH
3054
3055##
3056# @X86CPURegister32
3057#
3058# A X86 32-bit register
3059#
3060# Since: 1.5
3061##
3062{ 'enum': 'X86CPURegister32',
3063 'data': [ 'EAX', 'EBX', 'ECX', 'EDX', 'ESP', 'EBP', 'ESI', 'EDI' ] }
3064
3065##
3066# @X86CPUFeatureWordInfo
3067#
3068# Information about a X86 CPU feature word
3069#
3070# @cpuid-input-eax: Input EAX value for CPUID instruction for that feature word
3071#
3072# @cpuid-input-ecx: #optional Input ECX value for CPUID instruction for that
3073# feature word
3074#
3075# @cpuid-register: Output register containing the feature bits
3076#
3077# @features: value of output register, containing the feature bits
3078#
3079# Since: 1.5
3080##
3081{ 'type': 'X86CPUFeatureWordInfo',
3082 'data': { 'cpuid-input-eax': 'int',
3083 '*cpuid-input-ecx': 'int',
3084 'cpuid-register': 'X86CPURegister32',
3085 'features': 'int' } }
b1be4280
AK
3086
3087##
3088# @RxState:
3089#
3090# Packets receiving state
3091#
3092# @normal: filter assigned packets according to the mac-table
3093#
3094# @none: don't receive any assigned packet
3095#
3096# @all: receive all assigned packets
3097#
3098# Since: 1.6
3099##
3100{ 'enum': 'RxState', 'data': [ 'normal', 'none', 'all' ] }
3101
3102##
3103# @RxFilterInfo:
3104#
3105# Rx-filter information for a NIC.
3106#
3107# @name: net client name
3108#
3109# @promiscuous: whether promiscuous mode is enabled
3110#
3111# @multicast: multicast receive state
3112#
3113# @unicast: unicast receive state
3114#
f7bc8ef8
AK
3115# @vlan: vlan receive state (Since 2.0)
3116#
b1be4280
AK
3117# @broadcast-allowed: whether to receive broadcast
3118#
3119# @multicast-overflow: multicast table is overflowed or not
3120#
3121# @unicast-overflow: unicast table is overflowed or not
3122#
3123# @main-mac: the main macaddr string
3124#
3125# @vlan-table: a list of active vlan id
3126#
3127# @unicast-table: a list of unicast macaddr string
3128#
3129# @multicast-table: a list of multicast macaddr string
3130#
3131# Since 1.6
3132##
3133
3134{ 'type': 'RxFilterInfo',
3135 'data': {
3136 'name': 'str',
3137 'promiscuous': 'bool',
3138 'multicast': 'RxState',
3139 'unicast': 'RxState',
f7bc8ef8 3140 'vlan': 'RxState',
b1be4280
AK
3141 'broadcast-allowed': 'bool',
3142 'multicast-overflow': 'bool',
3143 'unicast-overflow': 'bool',
3144 'main-mac': 'str',
3145 'vlan-table': ['int'],
3146 'unicast-table': ['str'],
3147 'multicast-table': ['str'] }}
3148
3149##
3150# @query-rx-filter:
3151#
3152# Return rx-filter information for all NICs (or for the given NIC).
3153#
3154# @name: #optional net client name
3155#
3156# Returns: list of @RxFilterInfo for all NICs (or for the given NIC).
3157# Returns an error if the given @name doesn't exist, or given
3158# NIC doesn't support rx-filter querying, or given net client
3159# isn't a NIC.
3160#
3161# Since: 1.6
3162##
3163{ 'command': 'query-rx-filter', 'data': { '*name': 'str' },
3164 'returns': ['RxFilterInfo'] }
d26c9a15 3165
031fa964
GH
3166##
3167# @InputButton
3168#
3169# Button of a pointer input device (mouse, tablet).
3170#
3171# Since: 2.0
3172##
3173{ 'enum' : 'InputButton',
3174 'data' : [ 'Left', 'Middle', 'Right', 'WheelUp', 'WheelDown' ] }
3175
3176##
3177# @InputButton
3178#
3179# Position axis of a pointer input device (mouse, tablet).
3180#
3181# Since: 2.0
3182##
3183{ 'enum' : 'InputAxis',
3184 'data' : [ 'X', 'Y' ] }
3185
3186##
3187# @InputKeyEvent
3188#
3189# Keyboard input event.
3190#
3191# @key: Which key this event is for.
3192# @down: True for key-down and false for key-up events.
3193#
3194# Since: 2.0
3195##
3196{ 'type' : 'InputKeyEvent',
3197 'data' : { 'key' : 'KeyValue',
3198 'down' : 'bool' } }
3199
3200##
3201# @InputBtnEvent
3202#
3203# Pointer button input event.
3204#
3205# @button: Which button this event is for.
3206# @down: True for key-down and false for key-up events.
3207#
3208# Since: 2.0
3209##
3210{ 'type' : 'InputBtnEvent',
3211 'data' : { 'button' : 'InputButton',
3212 'down' : 'bool' } }
3213
3214##
3215# @InputMoveEvent
3216#
3217# Pointer motion input event.
3218#
3219# @axis: Which axis is referenced by @value.
3220# @value: Pointer position. For absolute coordinates the
3221# valid range is 0 -> 0x7ffff
3222#
3223# Since: 2.0
3224##
3225{ 'type' : 'InputMoveEvent',
3226 'data' : { 'axis' : 'InputAxis',
3227 'value' : 'int' } }
3228
3229##
3230# @InputEvent
3231#
3232# Input event union.
3233#
935fb915
AK
3234# @key: Input event of Keyboard
3235# @btn: Input event of pointer buttons
3236# @rel: Input event of relative pointer motion
3237# @abs: Input event of absolute pointer motion
3238#
031fa964
GH
3239# Since: 2.0
3240##
3241{ 'union' : 'InputEvent',
3242 'data' : { 'key' : 'InputKeyEvent',
3243 'btn' : 'InputBtnEvent',
3244 'rel' : 'InputMoveEvent',
3245 'abs' : 'InputMoveEvent' } }
0042109a 3246
50c6617f 3247##
df5b2adb 3248# @x-input-send-event
50c6617f
MT
3249#
3250# Send input event(s) to guest.
3251#
51fc4476 3252# @console: #optional console to send event(s) to.
50c6617f
MT
3253#
3254# @events: List of InputEvent union.
3255#
3256# Returns: Nothing on success.
3257#
3258# Since: 2.2
3259#
df5b2adb
GH
3260# Note: this command is experimental, and not a stable API.
3261#
50c6617f 3262##
df5b2adb 3263{ 'command': 'x-input-send-event',
51fc4476 3264 'data': { '*console':'int', 'events': [ 'InputEvent' ] } }
50c6617f 3265
0042109a
WG
3266##
3267# @NumaOptions
3268#
3269# A discriminated record of NUMA options. (for OptsVisitor)
3270#
3271# Since 2.1
3272##
3273{ 'union': 'NumaOptions',
3274 'data': {
3275 'node': 'NumaNodeOptions' }}
3276
3277##
3278# @NumaNodeOptions
3279#
3280# Create a guest NUMA node. (for OptsVisitor)
3281#
3282# @nodeid: #optional NUMA node ID (increase by 1 from 0 if omitted)
3283#
3284# @cpus: #optional VCPUs belonging to this node (assign VCPUS round-robin
3285# if omitted)
3286#
7febe36f
PB
3287# @mem: #optional memory size of this node; mutually exclusive with @memdev.
3288# Equally divide total memory among nodes if both @mem and @memdev are
3289# omitted.
3290#
3291# @memdev: #optional memory backend object. If specified for one node,
3292# it must be specified for all nodes.
0042109a
WG
3293#
3294# Since: 2.1
3295##
3296{ 'type': 'NumaNodeOptions',
3297 'data': {
3298 '*nodeid': 'uint16',
3299 '*cpus': ['uint16'],
7febe36f
PB
3300 '*mem': 'size',
3301 '*memdev': 'str' }}
4cf1b76b
HT
3302
3303##
3304# @HostMemPolicy
3305#
3306# Host memory policy types
3307#
3308# @default: restore default policy, remove any nondefault policy
3309#
3310# @preferred: set the preferred host nodes for allocation
3311#
3312# @bind: a strict policy that restricts memory allocation to the
3313# host nodes specified
3314#
3315# @interleave: memory allocations are interleaved across the set
3316# of host nodes specified
3317#
3318# Since 2.1
3319##
3320{ 'enum': 'HostMemPolicy',
3321 'data': [ 'default', 'preferred', 'bind', 'interleave' ] }
76b5d850
HT
3322
3323##
3324# @Memdev:
3325#
8f4e5ac3 3326# Information about memory backend
76b5d850 3327#
8f4e5ac3 3328# @size: memory backend size
76b5d850
HT
3329#
3330# @merge: enables or disables memory merge support
3331#
8f4e5ac3 3332# @dump: includes memory backend's memory in a core dump or not
76b5d850
HT
3333#
3334# @prealloc: enables or disables memory preallocation
3335#
3336# @host-nodes: host nodes for its memory policy
3337#
8f4e5ac3 3338# @policy: memory policy of memory backend
76b5d850
HT
3339#
3340# Since: 2.1
3341##
3342
3343{ 'type': 'Memdev',
3344 'data': {
3345 'size': 'size',
3346 'merge': 'bool',
3347 'dump': 'bool',
3348 'prealloc': 'bool',
3349 'host-nodes': ['uint16'],
3350 'policy': 'HostMemPolicy' }}
3351
3352##
3353# @query-memdev:
3354#
8f4e5ac3 3355# Returns information for all memory backends.
76b5d850
HT
3356#
3357# Returns: a list of @Memdev.
3358#
3359# Since: 2.1
3360##
3361{ 'command': 'query-memdev', 'returns': ['Memdev'] }
8f4e5ac3
IM
3362
3363##
6f2e2730
IM
3364# @PCDIMMDeviceInfo:
3365#
3366# PCDIMMDevice state information
3367#
3368# @id: #optional device's ID
3369#
3370# @addr: physical address, where device is mapped
3371#
3372# @size: size of memory that the device provides
3373#
3374# @slot: slot number at which device is plugged in
3375#
3376# @node: NUMA node number where device is plugged in
3377#
3378# @memdev: memory backend linked with device
3379#
3380# @hotplugged: true if device was hotplugged
3381#
3382# @hotpluggable: true if device if could be added/removed while machine is running
3383#
3384# Since: 2.1
3385##
3386{ 'type': 'PCDIMMDeviceInfo',
3387 'data': { '*id': 'str',
3388 'addr': 'int',
3389 'size': 'int',
3390 'slot': 'int',
3391 'node': 'int',
3392 'memdev': 'str',
3393 'hotplugged': 'bool',
3394 'hotpluggable': 'bool'
3395 }
3396}
3397
3398##
3399# @MemoryDeviceInfo:
3400#
3401# Union containing information about a memory device
3402#
3403# Since: 2.1
3404##
3405{ 'union': 'MemoryDeviceInfo', 'data': {'dimm': 'PCDIMMDeviceInfo'} }
3406
3407##
3408# @query-memory-devices
3409#
3410# Lists available memory devices and their state
3411#
3412# Since: 2.1
3413##
3414{ 'command': 'query-memory-devices', 'returns': ['MemoryDeviceInfo'] }
521b3673
IM
3415
3416## @ACPISlotType
3417#
3418# @DIMM: memory slot
3419#
3420{ 'enum': 'ACPISlotType', 'data': [ 'DIMM' ] }
3421
3422## @ACPIOSTInfo
3423#
3424# OSPM Status Indication for a device
3425# For description of possible values of @source and @status fields
3426# see "_OST (OSPM Status Indication)" chapter of ACPI5.0 spec.
3427#
3428# @device: #optional device ID associated with slot
3429#
3430# @slot: slot ID, unique per slot of a given @slot-type
3431#
3432# @slot-type: type of the slot
3433#
3434# @source: an integer containing the source event
3435#
3436# @status: an integer containing the status code
3437#
3438# Since: 2.1
3439##
3440{ 'type': 'ACPIOSTInfo',
3441 'data' : { '*device': 'str',
3442 'slot': 'str',
3443 'slot-type': 'ACPISlotType',
3444 'source': 'int',
3445 'status': 'int' } }
02419bcb
IM
3446
3447##
3448# @query-acpi-ospm-status
3449#
3450# Lists ACPI OSPM status of ACPI device objects,
3451# which might be reported via _OST method
3452#
3453# Since: 2.1
3454##
3455{ 'command': 'query-acpi-ospm-status', 'returns': ['ACPIOSTInfo'] }
f668470f 3456
99eaf09c
WX
3457##
3458# @WatchdogExpirationAction
3459#
3460# An enumeration of the actions taken when the watchdog device's timer is
3461# expired
3462#
3463# @reset: system resets
3464#
3465# @shutdown: system shutdown, note that it is similar to @powerdown, which
3466# tries to set to system status and notify guest
3467#
3468# @poweroff: system poweroff, the emulator program exits
3469#
3470# @pause: system pauses, similar to @stop
3471#
3472# @debug: system enters debug state
3473#
3474# @none: nothing is done
3475#
3476# Since: 2.1
3477##
3478{ 'enum': 'WatchdogExpirationAction',
3479 'data': [ 'reset', 'shutdown', 'poweroff', 'pause', 'debug', 'none' ] }
3480
5a2d2cbd
WX
3481##
3482# @IoOperationType
3483#
3484# An enumeration of the I/O operation types
3485#
3486# @read: read operation
3487#
3488# @write: write operation
3489#
3490# Since: 2.1
3491##
3492{ 'enum': 'IoOperationType',
3493 'data': [ 'read', 'write' ] }
3494
3a449690
WX
3495##
3496# @GuestPanicAction
3497#
3498# An enumeration of the actions taken when guest OS panic is detected
3499#
3500# @pause: system pauses
3501#
3502# Since: 2.1
3503##
3504{ 'enum': 'GuestPanicAction',
3505 'data': [ 'pause' ] }
f2ae8abf
MT
3506
3507##
3508# @rtc-reset-reinjection
3509#
3510# This command will reset the RTC interrupt reinjection backlog.
3511# Can be used if another mechanism to synchronize guest time
3512# is in effect, for example QEMU guest agent's guest-set-time
3513# command.
3514#
3515# Since: 2.1
3516##
3517{ 'command': 'rtc-reset-reinjection' }