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1HXCOMM QMP dispatch table and documentation
2HXCOMM Text between SQMP and EQMP is copied to the QMP documention file and
3HXCOMM does not show up in the other formats.
4
5SQMP
6 QMP Supported Commands
7 ----------------------
8
9This document describes all commands currently supported by QMP.
10
11Most of the time their usage is exactly the same as in the user Monitor, this
12means that any other document which also describe commands (the manpage,
13QEMU's manual, etc) can and should be consulted.
14
15QMP has two types of commands: regular and query commands. Regular commands
16usually change the Virtual Machine's state someway, while query commands just
17return information. The sections below are divided accordingly.
18
19It's important to observe that all communication examples are formatted in
20a reader-friendly way, so that they're easier to understand. However, in real
21protocol usage, they're emitted as a single line.
22
23Also, the following notation is used to denote data flow:
24
25-> data issued by the Client
26<- Server data response
27
28Please, refer to the QMP specification (QMP/qmp-spec.txt) for detailed
29information on the Server command and response formats.
30
31NOTE: This document is temporary and will be replaced soon.
32
331. Stability Considerations
34===========================
35
36The current QMP command set (described in this file) may be useful for a
37number of use cases, however it's limited and several commands have bad
38defined semantics, specially with regard to command completion.
39
40These problems are going to be solved incrementally in the next QEMU releases
41and we're going to establish a deprecation policy for badly defined commands.
42
43If you're planning to adopt QMP, please observe the following:
44
c20cdf8b 45 1. The deprecation policy will take effect and be documented soon, please
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46 check the documentation of each used command as soon as a new release of
47 QEMU is available
48
49 2. DO NOT rely on anything which is not explicit documented
50
51 3. Errors, in special, are not documented. Applications should NOT check
52 for specific errors classes or data (it's strongly recommended to only
53 check for the "error" key)
54
552. Regular Commands
56===================
57
58Server's responses in the examples below are always a success response, please
59refer to the QMP specification for more details on error responses.
60
61EQMP
62
63 {
64 .name = "quit",
65 .args_type = "",
7a7f325e 66 .mhandler.cmd_new = qmp_marshal_input_quit,
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67 },
68
69SQMP
70quit
71----
72
73Quit the emulator.
74
75Arguments: None.
76
77Example:
78
79-> { "execute": "quit" }
80<- { "return": {} }
81
82EQMP
83
84 {
85 .name = "eject",
86 .args_type = "force:-f,device:B",
c245b6a3 87 .mhandler.cmd_new = qmp_marshal_input_eject,
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88 },
89
90SQMP
91eject
92-----
93
94Eject a removable medium.
95
96Arguments:
97
98- force: force ejection (json-bool, optional)
99- device: device name (json-string)
100
101Example:
102
103-> { "execute": "eject", "arguments": { "device": "ide1-cd0" } }
104<- { "return": {} }
105
106Note: The "force" argument defaults to false.
107
108EQMP
109
110 {
111 .name = "change",
112 .args_type = "device:B,target:F,arg:s?",
333a96ec 113 .mhandler.cmd_new = qmp_marshal_input_change,
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114 },
115
116SQMP
117change
118------
119
120Change a removable medium or VNC configuration.
121
122Arguments:
123
124- "device": device name (json-string)
125- "target": filename or item (json-string)
126- "arg": additional argument (json-string, optional)
127
128Examples:
129
1301. Change a removable medium
131
132-> { "execute": "change",
133 "arguments": { "device": "ide1-cd0",
134 "target": "/srv/images/Fedora-12-x86_64-DVD.iso" } }
135<- { "return": {} }
136
1372. Change VNC password
138
139-> { "execute": "change",
140 "arguments": { "device": "vnc", "target": "password",
141 "arg": "foobar1" } }
142<- { "return": {} }
143
144EQMP
145
146 {
147 .name = "screendump",
148 .args_type = "filename:F",
ad39cf6d 149 .mhandler.cmd_new = qmp_marshal_input_screendump,
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150 },
151
152SQMP
153screendump
154----------
155
156Save screen into PPM image.
157
158Arguments:
159
160- "filename": file path (json-string)
161
162Example:
163
164-> { "execute": "screendump", "arguments": { "filename": "/tmp/image" } }
165<- { "return": {} }
166
167EQMP
168
169 {
170 .name = "stop",
171 .args_type = "",
5f158f21 172 .mhandler.cmd_new = qmp_marshal_input_stop,
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173 },
174
175SQMP
176stop
177----
178
179Stop the emulator.
180
181Arguments: None.
182
183Example:
184
185-> { "execute": "stop" }
186<- { "return": {} }
187
188EQMP
189
190 {
191 .name = "cont",
192 .args_type = "",
e42e818b 193 .mhandler.cmd_new = qmp_marshal_input_cont,
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194 },
195
196SQMP
197cont
198----
199
200Resume emulation.
201
202Arguments: None.
203
204Example:
205
206-> { "execute": "cont" }
207<- { "return": {} }
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208
209EQMP
210
211 {
212 .name = "system_wakeup",
213 .args_type = "",
214 .mhandler.cmd_new = qmp_marshal_input_system_wakeup,
215 },
216
217SQMP
218system_wakeup
219-------------
220
221Wakeup guest from suspend.
222
223Arguments: None.
224
225Example:
226
227-> { "execute": "system_wakeup" }
228<- { "return": {} }
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229
230EQMP
231
232 {
233 .name = "system_reset",
234 .args_type = "",
38d22653 235 .mhandler.cmd_new = qmp_marshal_input_system_reset,
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236 },
237
238SQMP
239system_reset
240------------
241
242Reset the system.
243
244Arguments: None.
245
246Example:
247
248-> { "execute": "system_reset" }
249<- { "return": {} }
250
251EQMP
252
253 {
254 .name = "system_powerdown",
255 .args_type = "",
22e1bb9c 256 .mhandler.cmd_new = qmp_marshal_input_system_powerdown,
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257 },
258
259SQMP
260system_powerdown
261----------------
262
263Send system power down event.
264
265Arguments: None.
266
267Example:
268
269-> { "execute": "system_powerdown" }
270<- { "return": {} }
271
272EQMP
273
274 {
275 .name = "device_add",
276 .args_type = "device:O",
277 .params = "driver[,prop=value][,...]",
278 .help = "add device, like -device on the command line",
279 .user_print = monitor_user_noop,
280 .mhandler.cmd_new = do_device_add,
281 },
282
283SQMP
284device_add
285----------
286
287Add a device.
288
289Arguments:
290
291- "driver": the name of the new device's driver (json-string)
292- "bus": the device's parent bus (device tree path, json-string, optional)
293- "id": the device's ID, must be unique (json-string)
294- device properties
295
296Example:
297
298-> { "execute": "device_add", "arguments": { "driver": "e1000", "id": "net1" } }
299<- { "return": {} }
300
301Notes:
302
303(1) For detailed information about this command, please refer to the
304 'docs/qdev-device-use.txt' file.
305
306(2) It's possible to list device properties by running QEMU with the
307 "-device DEVICE,\?" command-line argument, where DEVICE is the device's name
308
309EQMP
310
311 {
312 .name = "device_del",
313 .args_type = "id:s",
a15fef21 314 .mhandler.cmd_new = qmp_marshal_input_device_del,
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315 },
316
317SQMP
318device_del
319----------
320
321Remove a device.
322
323Arguments:
324
325- "id": the device's ID (json-string)
326
327Example:
328
329-> { "execute": "device_del", "arguments": { "id": "net1" } }
330<- { "return": {} }
331
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332EQMP
333
334 {
335 .name = "send-key",
336 .args_type = "keys:O,hold-time:i?",
337 .mhandler.cmd_new = qmp_marshal_input_send_key,
338 },
339
340SQMP
341send-key
342----------
343
344Send keys to VM.
345
346Arguments:
347
348keys array:
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349 - "key": key sequence (a json-array of key union values,
350 union can be number or qcode enum)
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351
352- hold-time: time to delay key up events, milliseconds. Defaults to 100
353 (json-int, optional)
354
355Example:
356
357-> { "execute": "send-key",
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358 "arguments": { "keys": [ { "type": "qcode", "data": "ctrl" },
359 { "type": "qcode", "data": "alt" },
360 { "type": "qcode", "data": "delete" } ] } }
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361<- { "return": {} }
362
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363EQMP
364
365 {
366 .name = "cpu",
367 .args_type = "index:i",
755f1968 368 .mhandler.cmd_new = qmp_marshal_input_cpu,
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369 },
370
371SQMP
372cpu
373---
374
375Set the default CPU.
376
377Arguments:
378
379- "index": the CPU's index (json-int)
380
381Example:
382
383-> { "execute": "cpu", "arguments": { "index": 0 } }
384<- { "return": {} }
385
386Note: CPUs' indexes are obtained with the 'query-cpus' command.
387
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388EQMP
389
390 {
391 .name = "cpu-add",
392 .args_type = "id:i",
393 .mhandler.cmd_new = qmp_marshal_input_cpu_add,
394 },
395
396SQMP
397cpu-add
398-------
399
400Adds virtual cpu
401
402Arguments:
403
404- "id": cpu id (json-int)
405
406Example:
407
408-> { "execute": "cpu-add", "arguments": { "id": 2 } }
409<- { "return": {} }
410
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411EQMP
412
413 {
414 .name = "memsave",
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415 .args_type = "val:l,size:i,filename:s,cpu:i?",
416 .mhandler.cmd_new = qmp_marshal_input_memsave,
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417 },
418
419SQMP
420memsave
421-------
422
423Save to disk virtual memory dump starting at 'val' of size 'size'.
424
425Arguments:
426
427- "val": the starting address (json-int)
428- "size": the memory size, in bytes (json-int)
429- "filename": file path (json-string)
0cfd6a9a 430- "cpu": virtual CPU index (json-int, optional)
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431
432Example:
433
434-> { "execute": "memsave",
435 "arguments": { "val": 10,
436 "size": 100,
437 "filename": "/tmp/virtual-mem-dump" } }
438<- { "return": {} }
439
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440EQMP
441
442 {
443 .name = "pmemsave",
444 .args_type = "val:l,size:i,filename:s",
6d3962bf 445 .mhandler.cmd_new = qmp_marshal_input_pmemsave,
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446 },
447
448SQMP
449pmemsave
450--------
451
452Save to disk physical memory dump starting at 'val' of size 'size'.
453
454Arguments:
455
456- "val": the starting address (json-int)
457- "size": the memory size, in bytes (json-int)
458- "filename": file path (json-string)
459
460Example:
461
462-> { "execute": "pmemsave",
463 "arguments": { "val": 10,
464 "size": 100,
465 "filename": "/tmp/physical-mem-dump" } }
466<- { "return": {} }
467
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468EQMP
469
470 {
471 .name = "inject-nmi",
472 .args_type = "",
ab49ab5c 473 .mhandler.cmd_new = qmp_marshal_input_inject_nmi,
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474 },
475
476SQMP
477inject-nmi
478----------
479
480Inject an NMI on guest's CPUs.
481
482Arguments: None.
483
484Example:
485
486-> { "execute": "inject-nmi" }
487<- { "return": {} }
488
de253f14 489Note: inject-nmi fails when the guest doesn't support injecting.
7f7f9752 490 Currently, only x86 (NMI) and s390x (RESTART) guests do.
a4046664 491
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492EQMP
493
494 {
3949e594 495 .name = "ringbuf-write",
82e59a67 496 .args_type = "device:s,data:s,format:s?",
3949e594 497 .mhandler.cmd_new = qmp_marshal_input_ringbuf_write,
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498 },
499
500SQMP
3949e594 501ringbuf-write
1f590cf9
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502-------------
503
3949e594 504Write to a ring buffer character device.
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505
506Arguments:
507
3949e594
MA
508- "device": ring buffer character device name (json-string)
509- "data": data to write (json-string)
510- "format": data format (json-string, optional)
511 - Possible values: "utf8" (default), "base64"
512 Bug: invalid base64 is currently not rejected.
513 Whitespace *is* invalid.
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514
515Example:
516
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517-> { "execute": "ringbuf-write",
518 "arguments": { "device": "foo",
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519 "data": "abcdefgh",
520 "format": "utf8" } }
521<- { "return": {} }
522
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523EQMP
524
525 {
3949e594 526 .name = "ringbuf-read",
49b6d722 527 .args_type = "device:s,size:i,format:s?",
3949e594 528 .mhandler.cmd_new = qmp_marshal_input_ringbuf_read,
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529 },
530
531SQMP
3949e594 532ringbuf-read
49b6d722
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533-------------
534
3949e594 535Read from a ring buffer character device.
49b6d722
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536
537Arguments:
538
3949e594
MA
539- "device": ring buffer character device name (json-string)
540- "size": how many bytes to read at most (json-int)
541 - Number of data bytes, not number of characters in encoded data
542- "format": data format (json-string, optional)
543 - Possible values: "utf8" (default), "base64"
544 - Naturally, format "utf8" works only when the ring buffer
545 contains valid UTF-8 text. Invalid UTF-8 sequences get
546 replaced. Bug: replacement doesn't work. Bug: can screw
547 up on encountering NUL characters, after the ring buffer
548 lost data, and when reading stops because the size limit
549 is reached.
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550
551Example:
552
3949e594
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553-> { "execute": "ringbuf-read",
554 "arguments": { "device": "foo",
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555 "size": 1000,
556 "format": "utf8" } }
3ab651fc 557<- {"return": "abcdefgh"}
49b6d722 558
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559EQMP
560
561 {
562 .name = "xen-save-devices-state",
563 .args_type = "filename:F",
564 .mhandler.cmd_new = qmp_marshal_input_xen_save_devices_state,
565 },
566
567SQMP
568xen-save-devices-state
569-------
570
571Save the state of all devices to file. The RAM and the block devices
572of the VM are not saved by this command.
573
574Arguments:
575
576- "filename": the file to save the state of the devices to as binary
577data. See xen-save-devices-state.txt for a description of the binary
578format.
579
580Example:
581
582-> { "execute": "xen-save-devices-state",
583 "arguments": { "filename": "/tmp/save" } }
584<- { "return": {} }
585
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586EQMP
587
588 {
589 .name = "xen-set-global-dirty-log",
590 .args_type = "enable:b",
591 .mhandler.cmd_new = qmp_marshal_input_xen_set_global_dirty_log,
592 },
593
594SQMP
595xen-set-global-dirty-log
596-------
597
598Enable or disable the global dirty log mode.
599
600Arguments:
601
602- "enable": Enable it or disable it.
603
604Example:
605
606-> { "execute": "xen-set-global-dirty-log",
607 "arguments": { "enable": true } }
608<- { "return": {} }
609
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610EQMP
611
612 {
613 .name = "migrate",
614 .args_type = "detach:-d,blk:-b,inc:-i,uri:s",
e1c37d0e 615 .mhandler.cmd_new = qmp_marshal_input_migrate,
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616 },
617
618SQMP
619migrate
620-------
621
622Migrate to URI.
623
624Arguments:
625
626- "blk": block migration, full disk copy (json-bool, optional)
627- "inc": incremental disk copy (json-bool, optional)
628- "uri": Destination URI (json-string)
629
630Example:
631
632-> { "execute": "migrate", "arguments": { "uri": "tcp:0:4446" } }
633<- { "return": {} }
634
635Notes:
636
637(1) The 'query-migrate' command should be used to check migration's progress
638 and final result (this information is provided by the 'status' member)
639(2) All boolean arguments default to false
640(3) The user Monitor's "detach" argument is invalid in QMP and should not
641 be used
642
643EQMP
644
645 {
646 .name = "migrate_cancel",
647 .args_type = "",
6cdedb07 648 .mhandler.cmd_new = qmp_marshal_input_migrate_cancel,
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649 },
650
651SQMP
652migrate_cancel
653--------------
654
655Cancel the current migration.
656
657Arguments: None.
658
659Example:
660
661-> { "execute": "migrate_cancel" }
662<- { "return": {} }
663
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664EQMP
665{
666 .name = "migrate-set-cache-size",
667 .args_type = "value:o",
668 .mhandler.cmd_new = qmp_marshal_input_migrate_set_cache_size,
669 },
670
671SQMP
672migrate-set-cache-size
817c6045 673----------------------
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674
675Set cache size to be used by XBZRLE migration, the cache size will be rounded
676down to the nearest power of 2
677
678Arguments:
679
680- "value": cache size in bytes (json-int)
681
682Example:
683
684-> { "execute": "migrate-set-cache-size", "arguments": { "value": 536870912 } }
685<- { "return": {} }
686
687EQMP
688 {
689 .name = "query-migrate-cache-size",
690 .args_type = "",
691 .mhandler.cmd_new = qmp_marshal_input_query_migrate_cache_size,
692 },
693
694SQMP
695query-migrate-cache-size
817c6045 696------------------------
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697
698Show cache size to be used by XBZRLE migration
699
700returns a json-object with the following information:
701- "size" : json-int
702
703Example:
704
705-> { "execute": "query-migrate-cache-size" }
706<- { "return": 67108864 }
707
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708EQMP
709
710 {
711 .name = "migrate_set_speed",
3a019b6e 712 .args_type = "value:o",
3dc85383 713 .mhandler.cmd_new = qmp_marshal_input_migrate_set_speed,
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714 },
715
e866e239 716SQMP
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717migrate_set_speed
718-----------------
e866e239 719
ff73edf5 720Set maximum speed for migrations.
e866e239
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721
722Arguments:
723
ff73edf5 724- "value": maximum speed, in bytes per second (json-int)
e866e239
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725
726Example:
727
ff73edf5 728-> { "execute": "migrate_set_speed", "arguments": { "value": 1024 } }
e866e239
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729<- { "return": {} }
730
731EQMP
732
733 {
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734 .name = "migrate_set_downtime",
735 .args_type = "value:T",
4f0a993b 736 .mhandler.cmd_new = qmp_marshal_input_migrate_set_downtime,
e866e239
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737 },
738
82a56f0d 739SQMP
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740migrate_set_downtime
741--------------------
82a56f0d 742
ff73edf5 743Set maximum tolerated downtime (in seconds) for migrations.
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744
745Arguments:
746
ff73edf5 747- "value": maximum downtime (json-number)
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748
749Example:
750
ff73edf5 751-> { "execute": "migrate_set_downtime", "arguments": { "value": 0.1 } }
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752<- { "return": {} }
753
754EQMP
755
756 {
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757 .name = "client_migrate_info",
758 .args_type = "protocol:s,hostname:s,port:i?,tls-port:i?,cert-subject:s?",
759 .params = "protocol hostname port tls-port cert-subject",
760 .help = "send migration info to spice/vnc client",
82a56f0d 761 .user_print = monitor_user_noop,
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762 .mhandler.cmd_async = client_migrate_info,
763 .flags = MONITOR_CMD_ASYNC,
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764 },
765
766SQMP
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767client_migrate_info
768------------------
82a56f0d 769
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770Set the spice/vnc connection info for the migration target. The spice/vnc
771server will ask the spice/vnc client to automatically reconnect using the
772new parameters (if specified) once the vm migration finished successfully.
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773
774Arguments:
775
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776- "protocol": protocol: "spice" or "vnc" (json-string)
777- "hostname": migration target hostname (json-string)
778- "port": spice/vnc tcp port for plaintext channels (json-int, optional)
779- "tls-port": spice tcp port for tls-secured channels (json-int, optional)
780- "cert-subject": server certificate subject (json-string, optional)
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781
782Example:
783
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784-> { "execute": "client_migrate_info",
785 "arguments": { "protocol": "spice",
786 "hostname": "virt42.lab.kraxel.org",
787 "port": 1234 } }
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788<- { "return": {} }
789
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790EQMP
791
792 {
793 .name = "dump-guest-memory",
794 .args_type = "paging:b,protocol:s,begin:i?,end:i?",
795 .params = "-p protocol [begin] [length]",
796 .help = "dump guest memory to file",
797 .user_print = monitor_user_noop,
798 .mhandler.cmd_new = qmp_marshal_input_dump_guest_memory,
799 },
800
801SQMP
802dump
803
804
805Dump guest memory to file. The file can be processed with crash or gdb.
806
807Arguments:
808
809- "paging": do paging to get guest's memory mapping (json-bool)
810- "protocol": destination file(started with "file:") or destination file
811 descriptor (started with "fd:") (json-string)
812- "begin": the starting physical address. It's optional, and should be specified
813 with length together (json-int)
814- "length": the memory size, in bytes. It's optional, and should be specified
815 with begin together (json-int)
816
817Example:
818
819-> { "execute": "dump-guest-memory", "arguments": { "protocol": "fd:dump" } }
820<- { "return": {} }
821
822Notes:
823
824(1) All boolean arguments default to false
825
82a56f0d
LC
826EQMP
827
828 {
829 .name = "netdev_add",
830 .args_type = "netdev:O",
928059a3 831 .mhandler.cmd_new = qmp_netdev_add,
82a56f0d
LC
832 },
833
834SQMP
835netdev_add
836----------
837
838Add host network device.
839
840Arguments:
841
842- "type": the device type, "tap", "user", ... (json-string)
843- "id": the device's ID, must be unique (json-string)
844- device options
845
846Example:
847
848-> { "execute": "netdev_add", "arguments": { "type": "user", "id": "netdev1" } }
849<- { "return": {} }
850
af347aa5 851Note: The supported device options are the same ones supported by the '-netdev'
82a56f0d
LC
852 command-line argument, which are listed in the '-help' output or QEMU's
853 manual
854
855EQMP
856
857 {
858 .name = "netdev_del",
859 .args_type = "id:s",
5f964155 860 .mhandler.cmd_new = qmp_marshal_input_netdev_del,
82a56f0d
LC
861 },
862
863SQMP
864netdev_del
865----------
866
867Remove host network device.
868
869Arguments:
870
871- "id": the device's ID, must be unique (json-string)
872
873Example:
874
875-> { "execute": "netdev_del", "arguments": { "id": "netdev1" } }
876<- { "return": {} }
877
6d4a2b3a
CH
878
879EQMP
880
881 {
882 .name = "block_resize",
883 .args_type = "device:B,size:o",
5e7caacb 884 .mhandler.cmd_new = qmp_marshal_input_block_resize,
6d4a2b3a
CH
885 },
886
887SQMP
888block_resize
889------------
890
891Resize a block image while a guest is running.
892
893Arguments:
894
895- "device": the device's ID, must be unique (json-string)
896- "size": new size
897
898Example:
899
900-> { "execute": "block_resize", "arguments": { "device": "scratch", "size": 1073741824 } }
901<- { "return": {} }
902
d967b2f1
JS
903EQMP
904
12bd451f 905 {
db58f9c0 906 .name = "block-stream",
1d809098 907 .args_type = "device:B,base:s?,speed:o?,on-error:s?",
12bd451f
SH
908 .mhandler.cmd_new = qmp_marshal_input_block_stream,
909 },
910
ed61fc10
JC
911 {
912 .name = "block-commit",
913 .args_type = "device:B,base:s?,top:s,speed:o?",
914 .mhandler.cmd_new = qmp_marshal_input_block_commit,
915 },
916
99a9addf
SH
917 {
918 .name = "drive-backup",
b53169ea 919 .args_type = "sync:s,device:B,target:s,speed:i?,mode:s?,format:s?,"
99a9addf
SH
920 "on-source-error:s?,on-target-error:s?",
921 .mhandler.cmd_new = qmp_marshal_input_drive_backup,
922 },
923
924SQMP
925drive-backup
926------------
927
928Start a point-in-time copy of a block device to a new destination. The
929status of ongoing drive-backup operations can be checked with
930query-block-jobs where the BlockJobInfo.type field has the value 'backup'.
931The operation can be stopped before it has completed using the
932block-job-cancel command.
933
934Arguments:
935
936- "device": the name of the device which should be copied.
937 (json-string)
938- "target": the target of the new image. If the file exists, or if it is a
939 device, the existing file/device will be used as the new
940 destination. If it does not exist, a new file will be created.
941 (json-string)
942- "format": the format of the new destination, default is to probe if 'mode' is
943 'existing', else the format of the source
944 (json-string, optional)
b53169ea
SH
945- "sync": what parts of the disk image should be copied to the destination;
946 possibilities include "full" for all the disk, "top" for only the sectors
947 allocated in the topmost image, or "none" to only replicate new I/O
948 (MirrorSyncMode).
99a9addf
SH
949- "mode": whether and how QEMU should create a new image
950 (NewImageMode, optional, default 'absolute-paths')
951- "speed": the maximum speed, in bytes per second (json-int, optional)
952- "on-source-error": the action to take on an error on the source, default
953 'report'. 'stop' and 'enospc' can only be used
954 if the block device supports io-status.
955 (BlockdevOnError, optional)
956- "on-target-error": the action to take on an error on the target, default
957 'report' (no limitations, since this applies to
958 a different block device than device).
959 (BlockdevOnError, optional)
960
961Example:
962-> { "execute": "drive-backup", "arguments": { "device": "drive0",
fc5d3f84 963 "sync": "full",
99a9addf
SH
964 "target": "backup.img" } }
965<- { "return": {} }
966EQMP
967
2d47c6e9 968 {
db58f9c0 969 .name = "block-job-set-speed",
882ec7ce 970 .args_type = "device:B,speed:o",
2d47c6e9
SH
971 .mhandler.cmd_new = qmp_marshal_input_block_job_set_speed,
972 },
973
370521a1 974 {
db58f9c0 975 .name = "block-job-cancel",
6e37fb81 976 .args_type = "device:B,force:b?",
370521a1
SH
977 .mhandler.cmd_new = qmp_marshal_input_block_job_cancel,
978 },
6e37fb81
PB
979 {
980 .name = "block-job-pause",
981 .args_type = "device:B",
982 .mhandler.cmd_new = qmp_marshal_input_block_job_pause,
983 },
984 {
985 .name = "block-job-resume",
986 .args_type = "device:B",
987 .mhandler.cmd_new = qmp_marshal_input_block_job_resume,
988 },
aeae883b
PB
989 {
990 .name = "block-job-complete",
991 .args_type = "device:B",
992 .mhandler.cmd_new = qmp_marshal_input_block_job_complete,
993 },
c186402c 994 {
52e7c241 995 .name = "transaction",
b9f8978c 996 .args_type = "actions:q",
52e7c241 997 .mhandler.cmd_new = qmp_marshal_input_transaction,
c186402c
JC
998 },
999
1000SQMP
52e7c241
PB
1001transaction
1002-----------
c186402c 1003
52e7c241
PB
1004Atomically operate on one or more block devices. The only supported
1005operation for now is snapshotting. If there is any failure performing
1006any of the operations, all snapshots for the group are abandoned, and
1007the original disks pre-snapshot attempt are used.
c186402c 1008
52e7c241
PB
1009A list of dictionaries is accepted, that contains the actions to be performed.
1010For snapshots this is the device, the file to use for the new snapshot,
1011and the format. The default format, if not specified, is qcow2.
c186402c 1012
bc8b094f
PB
1013Each new snapshot defaults to being created by QEMU (wiping any
1014contents if the file already exists), but it is also possible to reuse
1015an externally-created file. In the latter case, you should ensure that
1016the new image file has the same contents as the current one; QEMU cannot
1017perform any meaningful check. Typically this is achieved by using the
1018current image file as the backing file for the new image.
1019
c186402c
JC
1020Arguments:
1021
52e7c241
PB
1022actions array:
1023 - "type": the operation to perform. The only supported
1024 value is "blockdev-snapshot-sync". (json-string)
1025 - "data": a dictionary. The contents depend on the value
1026 of "type". When "type" is "blockdev-snapshot-sync":
1027 - "device": device name to snapshot (json-string)
1028 - "snapshot-file": name of new image file (json-string)
1029 - "format": format of new image (json-string, optional)
bc8b094f
PB
1030 - "mode": whether and how QEMU should create the snapshot file
1031 (NewImageMode, optional, default "absolute-paths")
c186402c
JC
1032
1033Example:
1034
52e7c241
PB
1035-> { "execute": "transaction",
1036 "arguments": { "actions": [
1037 { 'type': 'blockdev-snapshot-sync', 'data' : { "device": "ide-hd0",
1038 "snapshot-file": "/some/place/my-image",
1039 "format": "qcow2" } },
1040 { 'type': 'blockdev-snapshot-sync', 'data' : { "device": "ide-hd1",
1041 "snapshot-file": "/some/place/my-image2",
bc8b094f 1042 "mode": "existing",
52e7c241 1043 "format": "qcow2" } } ] } }
c186402c
JC
1044<- { "return": {} }
1045
1046EQMP
370521a1 1047
d967b2f1
JS
1048 {
1049 .name = "blockdev-snapshot-sync",
31155b9b 1050 .args_type = "device:B,snapshot-file:s,format:s?,mode:s?",
6106e249 1051 .mhandler.cmd_new = qmp_marshal_input_blockdev_snapshot_sync,
d967b2f1
JS
1052 },
1053
1054SQMP
1055blockdev-snapshot-sync
1056----------------------
1057
1058Synchronous snapshot of a block device. snapshot-file specifies the
1059target of the new image. If the file exists, or if it is a device, the
1060snapshot will be created in the existing file/device. If does not
1061exist, a new file will be created. format specifies the format of the
1062snapshot image, default is qcow2.
1063
1064Arguments:
1065
1066- "device": device name to snapshot (json-string)
1067- "snapshot-file": name of new image file (json-string)
6cc2a415
PB
1068- "mode": whether and how QEMU should create the snapshot file
1069 (NewImageMode, optional, default "absolute-paths")
d967b2f1
JS
1070- "format": format of new image (json-string, optional)
1071
1072Example:
1073
7f3850c2
LC
1074-> { "execute": "blockdev-snapshot-sync", "arguments": { "device": "ide-hd0",
1075 "snapshot-file":
1076 "/some/place/my-image",
1077 "format": "qcow2" } }
d967b2f1
JS
1078<- { "return": {} }
1079
d9b902db
PB
1080EQMP
1081
1082 {
1083 .name = "drive-mirror",
b952b558 1084 .args_type = "sync:s,device:B,target:s,speed:i?,mode:s?,format:s?,"
eee13dfe 1085 "on-source-error:s?,on-target-error:s?,"
08e4ed6c 1086 "granularity:i?,buf-size:i?",
d9b902db
PB
1087 .mhandler.cmd_new = qmp_marshal_input_drive_mirror,
1088 },
1089
1090SQMP
1091drive-mirror
1092------------
1093
1094Start mirroring a block device's writes to a new destination. target
1095specifies the target of the new image. If the file exists, or if it is
1096a device, it will be used as the new destination for writes. If it does not
1097exist, a new file will be created. format specifies the format of the
1098mirror image, default is to probe if mode='existing', else the format
1099of the source.
1100
1101Arguments:
1102
1103- "device": device name to operate on (json-string)
1104- "target": name of new image file (json-string)
1105- "format": format of new image (json-string, optional)
1106- "mode": how an image file should be created into the target
1107 file/device (NewImageMode, optional, default 'absolute-paths')
1108- "speed": maximum speed of the streaming job, in bytes per second
1109 (json-int)
eee13dfe 1110- "granularity": granularity of the dirty bitmap, in bytes (json-int, optional)
08e4ed6c
PB
1111- "buf_size": maximum amount of data in flight from source to target, in bytes
1112 (json-int, default 10M)
d9b902db
PB
1113- "sync": what parts of the disk image should be copied to the destination;
1114 possibilities include "full" for all the disk, "top" for only the sectors
1115 allocated in the topmost image, or "none" to only replicate new I/O
1116 (MirrorSyncMode).
b952b558
PB
1117- "on-source-error": the action to take on an error on the source
1118 (BlockdevOnError, default 'report')
1119- "on-target-error": the action to take on an error on the target
1120 (BlockdevOnError, default 'report')
1121
eee13dfe
PB
1122The default value of the granularity is the image cluster size clamped
1123between 4096 and 65536, if the image format defines one. If the format
1124does not define a cluster size, the default value of the granularity
1125is 65536.
d9b902db
PB
1126
1127
1128Example:
1129
1130-> { "execute": "drive-mirror", "arguments": { "device": "ide-hd0",
1131 "target": "/some/place/my-image",
1132 "sync": "full",
1133 "format": "qcow2" } }
1134<- { "return": {} }
1135
82a56f0d
LC
1136EQMP
1137
1138 {
1139 .name = "balloon",
1140 .args_type = "value:M",
d72f3264 1141 .mhandler.cmd_new = qmp_marshal_input_balloon,
82a56f0d
LC
1142 },
1143
1144SQMP
1145balloon
1146-------
1147
1148Request VM to change its memory allocation (in bytes).
1149
1150Arguments:
1151
1152- "value": New memory allocation (json-int)
1153
1154Example:
1155
1156-> { "execute": "balloon", "arguments": { "value": 536870912 } }
1157<- { "return": {} }
1158
1159EQMP
1160
1161 {
1162 .name = "set_link",
1163 .args_type = "name:s,up:b",
4b37156c 1164 .mhandler.cmd_new = qmp_marshal_input_set_link,
82a56f0d
LC
1165 },
1166
1167SQMP
1168set_link
1169--------
1170
1171Change the link status of a network adapter.
1172
1173Arguments:
1174
1175- "name": network device name (json-string)
1176- "up": status is up (json-bool)
1177
1178Example:
1179
1180-> { "execute": "set_link", "arguments": { "name": "e1000.0", "up": false } }
1181<- { "return": {} }
1182
1183EQMP
1184
1185 {
1186 .name = "getfd",
1187 .args_type = "fdname:s",
1188 .params = "getfd name",
1189 .help = "receive a file descriptor via SCM rights and assign it a name",
208c9d1b 1190 .mhandler.cmd_new = qmp_marshal_input_getfd,
82a56f0d
LC
1191 },
1192
1193SQMP
1194getfd
1195-----
1196
1197Receive a file descriptor via SCM rights and assign it a name.
1198
1199Arguments:
1200
1201- "fdname": file descriptor name (json-string)
1202
1203Example:
1204
1205-> { "execute": "getfd", "arguments": { "fdname": "fd1" } }
1206<- { "return": {} }
1207
208c9d1b
CB
1208Notes:
1209
1210(1) If the name specified by the "fdname" argument already exists,
1211 the file descriptor assigned to it will be closed and replaced
1212 by the received file descriptor.
1213(2) The 'closefd' command can be used to explicitly close the file
1214 descriptor when it is no longer needed.
1215
82a56f0d
LC
1216EQMP
1217
1218 {
1219 .name = "closefd",
1220 .args_type = "fdname:s",
1221 .params = "closefd name",
1222 .help = "close a file descriptor previously passed via SCM rights",
208c9d1b 1223 .mhandler.cmd_new = qmp_marshal_input_closefd,
82a56f0d
LC
1224 },
1225
1226SQMP
1227closefd
1228-------
1229
1230Close a file descriptor previously passed via SCM rights.
1231
1232Arguments:
1233
1234- "fdname": file descriptor name (json-string)
1235
1236Example:
1237
1238-> { "execute": "closefd", "arguments": { "fdname": "fd1" } }
1239<- { "return": {} }
1240
ba1c048a
CB
1241EQMP
1242
1243 {
1244 .name = "add-fd",
1245 .args_type = "fdset-id:i?,opaque:s?",
1246 .params = "add-fd fdset-id opaque",
1247 .help = "Add a file descriptor, that was passed via SCM rights, to an fd set",
1248 .mhandler.cmd_new = qmp_marshal_input_add_fd,
1249 },
1250
1251SQMP
1252add-fd
1253-------
1254
1255Add a file descriptor, that was passed via SCM rights, to an fd set.
1256
1257Arguments:
1258
1259- "fdset-id": The ID of the fd set to add the file descriptor to.
1260 (json-int, optional)
1261- "opaque": A free-form string that can be used to describe the fd.
1262 (json-string, optional)
1263
1264Return a json-object with the following information:
1265
1266- "fdset-id": The ID of the fd set that the fd was added to. (json-int)
1267- "fd": The file descriptor that was received via SCM rights and added to the
1268 fd set. (json-int)
1269
1270Example:
1271
1272-> { "execute": "add-fd", "arguments": { "fdset-id": 1 } }
1273<- { "return": { "fdset-id": 1, "fd": 3 } }
1274
1275Notes:
1276
1277(1) The list of fd sets is shared by all monitor connections.
1278(2) If "fdset-id" is not specified, a new fd set will be created.
1279
1280EQMP
1281
1282 {
1283 .name = "remove-fd",
1284 .args_type = "fdset-id:i,fd:i?",
1285 .params = "remove-fd fdset-id fd",
1286 .help = "Remove a file descriptor from an fd set",
1287 .mhandler.cmd_new = qmp_marshal_input_remove_fd,
1288 },
1289
1290SQMP
1291remove-fd
1292---------
1293
1294Remove a file descriptor from an fd set.
1295
1296Arguments:
1297
1298- "fdset-id": The ID of the fd set that the file descriptor belongs to.
1299 (json-int)
1300- "fd": The file descriptor that is to be removed. (json-int, optional)
1301
1302Example:
1303
1304-> { "execute": "remove-fd", "arguments": { "fdset-id": 1, "fd": 3 } }
1305<- { "return": {} }
1306
1307Notes:
1308
1309(1) The list of fd sets is shared by all monitor connections.
1310(2) If "fd" is not specified, all file descriptors in "fdset-id" will be
1311 removed.
1312
1313EQMP
1314
1315 {
1316 .name = "query-fdsets",
1317 .args_type = "",
1318 .help = "Return information describing all fd sets",
1319 .mhandler.cmd_new = qmp_marshal_input_query_fdsets,
1320 },
1321
1322SQMP
1323query-fdsets
1324-------------
1325
1326Return information describing all fd sets.
1327
1328Arguments: None
1329
1330Example:
1331
1332-> { "execute": "query-fdsets" }
1333<- { "return": [
1334 {
1335 "fds": [
1336 {
1337 "fd": 30,
1338 "opaque": "rdonly:/path/to/file"
1339 },
1340 {
1341 "fd": 24,
1342 "opaque": "rdwr:/path/to/file"
1343 }
1344 ],
1345 "fdset-id": 1
1346 },
1347 {
1348 "fds": [
1349 {
1350 "fd": 28
1351 },
1352 {
1353 "fd": 29
1354 }
1355 ],
1356 "fdset-id": 0
1357 }
1358 ]
1359 }
1360
1361Note: The list of fd sets is shared by all monitor connections.
1362
82a56f0d
LC
1363EQMP
1364
1365 {
1366 .name = "block_passwd",
1367 .args_type = "device:B,password:s",
a4dea8a9 1368 .mhandler.cmd_new = qmp_marshal_input_block_passwd,
82a56f0d
LC
1369 },
1370
1371SQMP
1372block_passwd
1373------------
1374
1375Set the password of encrypted block devices.
1376
1377Arguments:
1378
1379- "device": device name (json-string)
1380- "password": password (json-string)
1381
1382Example:
1383
1384-> { "execute": "block_passwd", "arguments": { "device": "ide0-hd0",
1385 "password": "12345" } }
1386<- { "return": {} }
1387
727f005e
ZYW
1388EQMP
1389
1390 {
1391 .name = "block_set_io_throttle",
3e9fab69 1392 .args_type = "device:B,bps:l,bps_rd:l,bps_wr:l,iops:l,iops_rd:l,iops_wr:l,bps_max:l?,bps_rd_max:l?,bps_wr_max:l?,iops_max:l?,iops_rd_max:l?,iops_wr_max:l?",
80047da5 1393 .mhandler.cmd_new = qmp_marshal_input_block_set_io_throttle,
727f005e
ZYW
1394 },
1395
1396SQMP
1397block_set_io_throttle
1398------------
1399
1400Change I/O throttle limits for a block drive.
1401
1402Arguments:
1403
1404- "device": device name (json-string)
586b5466
EB
1405- "bps": total throughput limit in bytes per second (json-int)
1406- "bps_rd": read throughput limit in bytes per second (json-int)
1407- "bps_wr": write throughput limit in bytes per second (json-int)
1408- "iops": total I/O operations per second (json-int)
1409- "iops_rd": read I/O operations per second (json-int)
1410- "iops_wr": write I/O operations per second (json-int)
3e9fab69
BC
1411- "bps_max": total max in bytes (json-int)
1412- "bps_rd_max": read max in bytes (json-int)
1413- "bps_wr_max": write max in bytes (json-int)
1414- "iops_max": total I/O operations max (json-int)
1415- "iops_rd_max": read I/O operations max (json-int)
1416- "iops_wr_max": write I/O operations max (json-int)
727f005e
ZYW
1417
1418Example:
1419
1420-> { "execute": "block_set_io_throttle", "arguments": { "device": "virtio0",
586b5466
EB
1421 "bps": 1000000,
1422 "bps_rd": 0,
1423 "bps_wr": 0,
1424 "iops": 0,
1425 "iops_rd": 0,
3e9fab69
BC
1426 "iops_wr": 0,
1427 "bps_max": 8000000,
1428 "bps_rd_max": 0,
1429 "bps_wr_max": 0,
1430 "iops_max": 0,
1431 "iops_rd_max": 0,
1432 "iops_wr_max": 0 } }
727f005e
ZYW
1433<- { "return": {} }
1434
7572150c
GH
1435EQMP
1436
1437 {
1438 .name = "set_password",
1439 .args_type = "protocol:s,password:s,connected:s?",
fbf796fd 1440 .mhandler.cmd_new = qmp_marshal_input_set_password,
7572150c
GH
1441 },
1442
1443SQMP
1444set_password
1445------------
1446
1447Set the password for vnc/spice protocols.
1448
1449Arguments:
1450
1451- "protocol": protocol name (json-string)
1452- "password": password (json-string)
1453- "connected": [ keep | disconnect | fail ] (josn-string, optional)
1454
1455Example:
1456
1457-> { "execute": "set_password", "arguments": { "protocol": "vnc",
1458 "password": "secret" } }
1459<- { "return": {} }
1460
1461EQMP
1462
1463 {
1464 .name = "expire_password",
1465 .args_type = "protocol:s,time:s",
9ad5372d 1466 .mhandler.cmd_new = qmp_marshal_input_expire_password,
7572150c
GH
1467 },
1468
1469SQMP
1470expire_password
1471---------------
1472
1473Set the password expire time for vnc/spice protocols.
1474
1475Arguments:
1476
1477- "protocol": protocol name (json-string)
1478- "time": [ now | never | +secs | secs ] (json-string)
1479
1480Example:
1481
1482-> { "execute": "expire_password", "arguments": { "protocol": "vnc",
1483 "time": "+60" } }
1484<- { "return": {} }
1485
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1486EQMP
1487
13661089
DB
1488 {
1489 .name = "add_client",
f1f5f407 1490 .args_type = "protocol:s,fdname:s,skipauth:b?,tls:b?",
b224e5e2 1491 .mhandler.cmd_new = qmp_marshal_input_add_client,
13661089
DB
1492 },
1493
1494SQMP
1495add_client
1496----------
1497
1498Add a graphics client
1499
1500Arguments:
1501
1502- "protocol": protocol name (json-string)
1503- "fdname": file descriptor name (json-string)
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1504- "skipauth": whether to skip authentication (json-bool, optional)
1505- "tls": whether to perform TLS (json-bool, optional)
13661089
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1506
1507Example:
1508
1509-> { "execute": "add_client", "arguments": { "protocol": "vnc",
1510 "fdname": "myclient" } }
1511<- { "return": {} }
1512
1513EQMP
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1514 {
1515 .name = "qmp_capabilities",
1516 .args_type = "",
1517 .params = "",
1518 .help = "enable QMP capabilities",
1519 .user_print = monitor_user_noop,
1520 .mhandler.cmd_new = do_qmp_capabilities,
1521 },
1522
1523SQMP
1524qmp_capabilities
1525----------------
1526
1527Enable QMP capabilities.
1528
1529Arguments: None.
1530
1531Example:
1532
1533-> { "execute": "qmp_capabilities" }
1534<- { "return": {} }
1535
1536Note: This command must be issued before issuing any other command.
1537
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1538EQMP
1539
1540 {
1541 .name = "human-monitor-command",
1542 .args_type = "command-line:s,cpu-index:i?",
d51a67b4 1543 .mhandler.cmd_new = qmp_marshal_input_human_monitor_command,
0268d97c
LC
1544 },
1545
1546SQMP
1547human-monitor-command
1548---------------------
1549
1550Execute a Human Monitor command.
1551
1552Arguments:
1553
1554- command-line: the command name and its arguments, just like the
1555 Human Monitor's shell (json-string)
1556- cpu-index: select the CPU number to be used by commands which access CPU
1557 data, like 'info registers'. The Monitor selects CPU 0 if this
1558 argument is not provided (json-int, optional)
1559
1560Example:
1561
1562-> { "execute": "human-monitor-command", "arguments": { "command-line": "info kvm" } }
1563<- { "return": "kvm support: enabled\r\n" }
1564
1565Notes:
1566
1567(1) The Human Monitor is NOT an stable interface, this means that command
1568 names, arguments and responses can change or be removed at ANY time.
1569 Applications that rely on long term stability guarantees should NOT
1570 use this command
1571
1572(2) Limitations:
1573
1574 o This command is stateless, this means that commands that depend
1575 on state information (such as getfd) might not work
1576
1577 o Commands that prompt the user for data (eg. 'cont' when the block
1578 device is encrypted) don't currently work
1579
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15803. Query Commands
1581=================
1582
1583HXCOMM Each query command below is inside a SQMP/EQMP section, do NOT change
1584HXCOMM this! We will possibly move query commands definitions inside those
1585HXCOMM sections, just like regular commands.
1586
1587EQMP
1588
1589SQMP
1590query-version
1591-------------
1592
1593Show QEMU version.
1594
1595Return a json-object with the following information:
1596
1597- "qemu": A json-object containing three integer values:
1598 - "major": QEMU's major version (json-int)
1599 - "minor": QEMU's minor version (json-int)
1600 - "micro": QEMU's micro version (json-int)
1601- "package": package's version (json-string)
1602
1603Example:
1604
1605-> { "execute": "query-version" }
1606<- {
1607 "return":{
1608 "qemu":{
1609 "major":0,
1610 "minor":11,
1611 "micro":5
1612 },
1613 "package":""
1614 }
1615 }
1616
1617EQMP
1618
b9c15f16
LC
1619 {
1620 .name = "query-version",
1621 .args_type = "",
1622 .mhandler.cmd_new = qmp_marshal_input_query_version,
1623 },
1624
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1625SQMP
1626query-commands
1627--------------
1628
1629List QMP available commands.
1630
1631Each command is represented by a json-object, the returned value is a json-array
1632of all commands.
1633
1634Each json-object contain:
1635
1636- "name": command's name (json-string)
1637
1638Example:
1639
1640-> { "execute": "query-commands" }
1641<- {
1642 "return":[
1643 {
1644 "name":"query-balloon"
1645 },
1646 {
1647 "name":"system_powerdown"
1648 }
1649 ]
1650 }
1651
1652Note: This example has been shortened as the real response is too long.
1653
1654EQMP
1655
aa9b79bc
LC
1656 {
1657 .name = "query-commands",
1658 .args_type = "",
1659 .mhandler.cmd_new = qmp_marshal_input_query_commands,
1660 },
1661
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1662SQMP
1663query-events
1664--------------
1665
1666List QMP available events.
1667
1668Each event is represented by a json-object, the returned value is a json-array
1669of all events.
1670
1671Each json-object contains:
1672
1673- "name": event's name (json-string)
1674
1675Example:
1676
1677-> { "execute": "query-events" }
1678<- {
1679 "return":[
1680 {
1681 "name":"SHUTDOWN"
1682 },
1683 {
1684 "name":"RESET"
1685 }
1686 ]
1687 }
1688
1689Note: This example has been shortened as the real response is too long.
1690
1691EQMP
1692
1693 {
1694 .name = "query-events",
1695 .args_type = "",
1696 .mhandler.cmd_new = qmp_marshal_input_query_events,
1697 },
1698
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1699SQMP
1700query-chardev
1701-------------
1702
1703Each device is represented by a json-object. The returned value is a json-array
1704of all devices.
1705
1706Each json-object contain the following:
1707
1708- "label": device's label (json-string)
1709- "filename": device's file (json-string)
1710
1711Example:
1712
1713-> { "execute": "query-chardev" }
1714<- {
1715 "return":[
1716 {
1717 "label":"monitor",
1718 "filename":"stdio"
1719 },
1720 {
1721 "label":"serial0",
1722 "filename":"vc"
1723 }
1724 ]
1725 }
1726
1727EQMP
1728
c5a415a0
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1729 {
1730 .name = "query-chardev",
1731 .args_type = "",
1732 .mhandler.cmd_new = qmp_marshal_input_query_chardev,
1733 },
1734
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1735SQMP
1736query-block
1737-----------
1738
1739Show the block devices.
1740
1741Each block device information is stored in a json-object and the returned value
1742is a json-array of all devices.
1743
1744Each json-object contain the following:
1745
1746- "device": device name (json-string)
1747- "type": device type (json-string)
d8aeeb31
MA
1748 - deprecated, retained for backward compatibility
1749 - Possible values: "unknown"
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1750- "removable": true if the device is removable, false otherwise (json-bool)
1751- "locked": true if the device is locked, false otherwise (json-bool)
99f42808 1752- "tray_open": only present if removable, true if the device has a tray,
e4def80b 1753 and it is open (json-bool)
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1754- "inserted": only present if the device is inserted, it is a json-object
1755 containing the following:
1756 - "file": device file name (json-string)
1757 - "ro": true if read-only, false otherwise (json-bool)
1758 - "drv": driver format name (json-string)
1759 - Possible values: "blkdebug", "bochs", "cloop", "cow", "dmg",
1760 "file", "file", "ftp", "ftps", "host_cdrom",
1761 "host_device", "host_floppy", "http", "https",
1762 "nbd", "parallels", "qcow", "qcow2", "raw",
1763 "tftp", "vdi", "vmdk", "vpc", "vvfat"
1764 - "backing_file": backing file name (json-string, optional)
2e3e3317 1765 - "backing_file_depth": number of files in the backing file chain (json-int)
82a56f0d 1766 - "encrypted": true if encrypted, false otherwise (json-bool)
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ZYW
1767 - "bps": limit total bytes per second (json-int)
1768 - "bps_rd": limit read bytes per second (json-int)
1769 - "bps_wr": limit write bytes per second (json-int)
1770 - "iops": limit total I/O operations per second (json-int)
1771 - "iops_rd": limit read operations per second (json-int)
1772 - "iops_wr": limit write operations per second (json-int)
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BC
1773 - "bps_max": total max in bytes (json-int)
1774 - "bps_rd_max": read max in bytes (json-int)
1775 - "bps_wr_max": write max in bytes (json-int)
1776 - "iops_max": total I/O operations max (json-int)
1777 - "iops_rd_max": read I/O operations max (json-int)
1778 - "iops_wr_max": write I/O operations max (json-int)
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WX
1779 - "image": the detail of the image, it is a json-object containing
1780 the following:
1781 - "filename": image file name (json-string)
1782 - "format": image format (json-string)
1783 - "virtual-size": image capacity in bytes (json-int)
1784 - "dirty-flag": true if image is not cleanly closed, not present
1785 means clean (json-bool, optional)
1786 - "actual-size": actual size on disk in bytes of the image, not
1787 present when image does not support thin
1788 provision (json-int, optional)
1789 - "cluster-size": size of a cluster in bytes, not present if image
1790 format does not support it (json-int, optional)
1791 - "encrypted": true if the image is encrypted, not present means
1792 false or the image format does not support
1793 encryption (json-bool, optional)
1794 - "backing_file": backing file name, not present means no backing
1795 file is used or the image format does not
1796 support backing file chain
1797 (json-string, optional)
1798 - "full-backing-filename": full path of the backing file, not
1799 present if it equals backing_file or no
1800 backing file is used
1801 (json-string, optional)
1802 - "backing-filename-format": the format of the backing file, not
1803 present means unknown or no backing
1804 file (json-string, optional)
1805 - "snapshots": the internal snapshot info, it is an optional list
1806 of json-object containing the following:
1807 - "id": unique snapshot id (json-string)
1808 - "name": snapshot name (json-string)
1809 - "vm-state-size": size of the VM state in bytes (json-int)
1810 - "date-sec": UTC date of the snapshot in seconds (json-int)
1811 - "date-nsec": fractional part in nanoseconds to be used with
586b5466 1812 date-sec (json-int)
553a7e87
WX
1813 - "vm-clock-sec": VM clock relative to boot in seconds
1814 (json-int)
1815 - "vm-clock-nsec": fractional part in nanoseconds to be used
1816 with vm-clock-sec (json-int)
1817 - "backing-image": the detail of the backing image, it is an
1818 optional json-object only present when a
1819 backing image present for this image
727f005e 1820
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LC
1821- "io-status": I/O operation status, only present if the device supports it
1822 and the VM is configured to stop on errors. It's always reset
1823 to "ok" when the "cont" command is issued (json_string, optional)
1824 - Possible values: "ok", "failed", "nospace"
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LC
1825
1826Example:
1827
1828-> { "execute": "query-block" }
1829<- {
1830 "return":[
1831 {
f04ef601 1832 "io-status": "ok",
82a56f0d
LC
1833 "device":"ide0-hd0",
1834 "locked":false,
1835 "removable":false,
1836 "inserted":{
1837 "ro":false,
1838 "drv":"qcow2",
1839 "encrypted":false,
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WX
1840 "file":"disks/test.qcow2",
1841 "backing_file_depth":1,
727f005e
ZYW
1842 "bps":1000000,
1843 "bps_rd":0,
1844 "bps_wr":0,
1845 "iops":1000000,
1846 "iops_rd":0,
1847 "iops_wr":0,
3e9fab69
BC
1848 "bps_max": 8000000,
1849 "bps_rd_max": 0,
1850 "bps_wr_max": 0,
1851 "iops_max": 0,
1852 "iops_rd_max": 0,
1853 "iops_wr_max": 0,
553a7e87
WX
1854 "image":{
1855 "filename":"disks/test.qcow2",
1856 "format":"qcow2",
1857 "virtual-size":2048000,
1858 "backing_file":"base.qcow2",
1859 "full-backing-filename":"disks/base.qcow2",
1860 "backing-filename-format:"qcow2",
1861 "snapshots":[
1862 {
1863 "id": "1",
1864 "name": "snapshot1",
1865 "vm-state-size": 0,
1866 "date-sec": 10000200,
1867 "date-nsec": 12,
1868 "vm-clock-sec": 206,
1869 "vm-clock-nsec": 30
1870 }
1871 ],
1872 "backing-image":{
1873 "filename":"disks/base.qcow2",
1874 "format":"qcow2",
1875 "virtual-size":2048000
1876 }
1877 }
82a56f0d 1878 },
d8aeeb31 1879 "type":"unknown"
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LC
1880 },
1881 {
f04ef601 1882 "io-status": "ok",
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LC
1883 "device":"ide1-cd0",
1884 "locked":false,
1885 "removable":true,
d8aeeb31 1886 "type":"unknown"
82a56f0d
LC
1887 },
1888 {
1889 "device":"floppy0",
1890 "locked":false,
1891 "removable":true,
d8aeeb31 1892 "type":"unknown"
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LC
1893 },
1894 {
1895 "device":"sd0",
1896 "locked":false,
1897 "removable":true,
d8aeeb31 1898 "type":"unknown"
82a56f0d
LC
1899 }
1900 ]
1901 }
1902
1903EQMP
1904
b2023818
LC
1905 {
1906 .name = "query-block",
1907 .args_type = "",
1908 .mhandler.cmd_new = qmp_marshal_input_query_block,
1909 },
1910
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LC
1911SQMP
1912query-blockstats
1913----------------
1914
1915Show block device statistics.
1916
1917Each device statistic information is stored in a json-object and the returned
1918value is a json-array of all devices.
1919
1920Each json-object contain the following:
1921
1922- "device": device name (json-string)
1923- "stats": A json-object with the statistics information, it contains:
1924 - "rd_bytes": bytes read (json-int)
1925 - "wr_bytes": bytes written (json-int)
1926 - "rd_operations": read operations (json-int)
1927 - "wr_operations": write operations (json-int)
e8045d67 1928 - "flush_operations": cache flush operations (json-int)
c488c7f6
CH
1929 - "wr_total_time_ns": total time spend on writes in nano-seconds (json-int)
1930 - "rd_total_time_ns": total time spend on reads in nano-seconds (json-int)
1931 - "flush_total_time_ns": total time spend on cache flushes in nano-seconds (json-int)
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LC
1932 - "wr_highest_offset": Highest offset of a sector written since the
1933 BlockDriverState has been opened (json-int)
1934- "parent": Contains recursively the statistics of the underlying
1935 protocol (e.g. the host file for a qcow2 image). If there is
1936 no underlying protocol, this field is omitted
1937 (json-object, optional)
1938
1939Example:
1940
1941-> { "execute": "query-blockstats" }
1942<- {
1943 "return":[
1944 {
1945 "device":"ide0-hd0",
1946 "parent":{
1947 "stats":{
1948 "wr_highest_offset":3686448128,
1949 "wr_bytes":9786368,
1950 "wr_operations":751,
1951 "rd_bytes":122567168,
1952 "rd_operations":36772
c488c7f6
CH
1953 "wr_total_times_ns":313253456
1954 "rd_total_times_ns":3465673657
1955 "flush_total_times_ns":49653
e8045d67 1956 "flush_operations":61,
82a56f0d
LC
1957 }
1958 },
1959 "stats":{
1960 "wr_highest_offset":2821110784,
1961 "wr_bytes":9786368,
1962 "wr_operations":692,
1963 "rd_bytes":122739200,
1964 "rd_operations":36604
e8045d67 1965 "flush_operations":51,
c488c7f6
CH
1966 "wr_total_times_ns":313253456
1967 "rd_total_times_ns":3465673657
1968 "flush_total_times_ns":49653
82a56f0d
LC
1969 }
1970 },
1971 {
1972 "device":"ide1-cd0",
1973 "stats":{
1974 "wr_highest_offset":0,
1975 "wr_bytes":0,
1976 "wr_operations":0,
1977 "rd_bytes":0,
1978 "rd_operations":0
e8045d67 1979 "flush_operations":0,
c488c7f6
CH
1980 "wr_total_times_ns":0
1981 "rd_total_times_ns":0
1982 "flush_total_times_ns":0
82a56f0d
LC
1983 }
1984 },
1985 {
1986 "device":"floppy0",
1987 "stats":{
1988 "wr_highest_offset":0,
1989 "wr_bytes":0,
1990 "wr_operations":0,
1991 "rd_bytes":0,
1992 "rd_operations":0
e8045d67 1993 "flush_operations":0,
c488c7f6
CH
1994 "wr_total_times_ns":0
1995 "rd_total_times_ns":0
1996 "flush_total_times_ns":0
82a56f0d
LC
1997 }
1998 },
1999 {
2000 "device":"sd0",
2001 "stats":{
2002 "wr_highest_offset":0,
2003 "wr_bytes":0,
2004 "wr_operations":0,
2005 "rd_bytes":0,
2006 "rd_operations":0
e8045d67 2007 "flush_operations":0,
c488c7f6
CH
2008 "wr_total_times_ns":0
2009 "rd_total_times_ns":0
2010 "flush_total_times_ns":0
82a56f0d
LC
2011 }
2012 }
2013 ]
2014 }
2015
2016EQMP
2017
f11f57e4
LC
2018 {
2019 .name = "query-blockstats",
2020 .args_type = "",
2021 .mhandler.cmd_new = qmp_marshal_input_query_blockstats,
2022 },
2023
82a56f0d
LC
2024SQMP
2025query-cpus
2026----------
2027
2028Show CPU information.
2029
2030Return a json-array. Each CPU is represented by a json-object, which contains:
2031
2032- "CPU": CPU index (json-int)
2033- "current": true if this is the current CPU, false otherwise (json-bool)
2034- "halted": true if the cpu is halted, false otherwise (json-bool)
2035- Current program counter. The key's name depends on the architecture:
2036 "pc": i386/x86_64 (json-int)
2037 "nip": PPC (json-int)
2038 "pc" and "npc": sparc (json-int)
2039 "PC": mips (json-int)
dc7a09cf 2040- "thread_id": ID of the underlying host thread (json-int)
82a56f0d
LC
2041
2042Example:
2043
2044-> { "execute": "query-cpus" }
2045<- {
2046 "return":[
2047 {
2048 "CPU":0,
2049 "current":true,
2050 "halted":false,
2051 "pc":3227107138
dc7a09cf 2052 "thread_id":3134
82a56f0d
LC
2053 },
2054 {
2055 "CPU":1,
2056 "current":false,
2057 "halted":true,
2058 "pc":7108165
dc7a09cf 2059 "thread_id":3135
82a56f0d
LC
2060 }
2061 ]
2062 }
2063
2064EQMP
2065
de0b36b6
LC
2066 {
2067 .name = "query-cpus",
2068 .args_type = "",
2069 .mhandler.cmd_new = qmp_marshal_input_query_cpus,
2070 },
2071
82a56f0d
LC
2072SQMP
2073query-pci
2074---------
2075
2076PCI buses and devices information.
2077
2078The returned value is a json-array of all buses. Each bus is represented by
2079a json-object, which has a key with a json-array of all PCI devices attached
2080to it. Each device is represented by a json-object.
2081
2082The bus json-object contains the following:
2083
2084- "bus": bus number (json-int)
2085- "devices": a json-array of json-objects, each json-object represents a
2086 PCI device
2087
2088The PCI device json-object contains the following:
2089
2090- "bus": identical to the parent's bus number (json-int)
2091- "slot": slot number (json-int)
2092- "function": function number (json-int)
2093- "class_info": a json-object containing:
2094 - "desc": device class description (json-string, optional)
2095 - "class": device class number (json-int)
2096- "id": a json-object containing:
2097 - "device": device ID (json-int)
2098 - "vendor": vendor ID (json-int)
2099- "irq": device's IRQ if assigned (json-int, optional)
2100- "qdev_id": qdev id string (json-string)
2101- "pci_bridge": It's a json-object, only present if this device is a
2102 PCI bridge, contains:
2103 - "bus": bus number (json-int)
2104 - "secondary": secondary bus number (json-int)
2105 - "subordinate": subordinate bus number (json-int)
2106 - "io_range": I/O memory range information, a json-object with the
2107 following members:
2108 - "base": base address, in bytes (json-int)
2109 - "limit": limit address, in bytes (json-int)
2110 - "memory_range": memory range information, a json-object with the
2111 following members:
2112 - "base": base address, in bytes (json-int)
2113 - "limit": limit address, in bytes (json-int)
2114 - "prefetchable_range": Prefetchable memory range information, a
2115 json-object with the following members:
2116 - "base": base address, in bytes (json-int)
2117 - "limit": limit address, in bytes (json-int)
2118 - "devices": a json-array of PCI devices if there's any attached, each
2119 each element is represented by a json-object, which contains
2120 the same members of the 'PCI device json-object' described
2121 above (optional)
2122- "regions": a json-array of json-objects, each json-object represents a
2123 memory region of this device
2124
2125The memory range json-object contains the following:
2126
2127- "base": base memory address (json-int)
2128- "limit": limit value (json-int)
2129
2130The region json-object can be an I/O region or a memory region, an I/O region
2131json-object contains the following:
2132
2133- "type": "io" (json-string, fixed)
2134- "bar": BAR number (json-int)
2135- "address": memory address (json-int)
2136- "size": memory size (json-int)
2137
2138A memory region json-object contains the following:
2139
2140- "type": "memory" (json-string, fixed)
2141- "bar": BAR number (json-int)
2142- "address": memory address (json-int)
2143- "size": memory size (json-int)
2144- "mem_type_64": true or false (json-bool)
2145- "prefetch": true or false (json-bool)
2146
2147Example:
2148
2149-> { "execute": "query-pci" }
2150<- {
2151 "return":[
2152 {
2153 "bus":0,
2154 "devices":[
2155 {
2156 "bus":0,
2157 "qdev_id":"",
2158 "slot":0,
2159 "class_info":{
2160 "class":1536,
2161 "desc":"Host bridge"
2162 },
2163 "id":{
2164 "device":32902,
2165 "vendor":4663
2166 },
2167 "function":0,
2168 "regions":[
2169
2170 ]
2171 },
2172 {
2173 "bus":0,
2174 "qdev_id":"",
2175 "slot":1,
2176 "class_info":{
2177 "class":1537,
2178 "desc":"ISA bridge"
2179 },
2180 "id":{
2181 "device":32902,
2182 "vendor":28672
2183 },
2184 "function":0,
2185 "regions":[
2186
2187 ]
2188 },
2189 {
2190 "bus":0,
2191 "qdev_id":"",
2192 "slot":1,
2193 "class_info":{
2194 "class":257,
2195 "desc":"IDE controller"
2196 },
2197 "id":{
2198 "device":32902,
2199 "vendor":28688
2200 },
2201 "function":1,
2202 "regions":[
2203 {
2204 "bar":4,
2205 "size":16,
2206 "address":49152,
2207 "type":"io"
2208 }
2209 ]
2210 },
2211 {
2212 "bus":0,
2213 "qdev_id":"",
2214 "slot":2,
2215 "class_info":{
2216 "class":768,
2217 "desc":"VGA controller"
2218 },
2219 "id":{
2220 "device":4115,
2221 "vendor":184
2222 },
2223 "function":0,
2224 "regions":[
2225 {
2226 "prefetch":true,
2227 "mem_type_64":false,
2228 "bar":0,
2229 "size":33554432,
2230 "address":4026531840,
2231 "type":"memory"
2232 },
2233 {
2234 "prefetch":false,
2235 "mem_type_64":false,
2236 "bar":1,
2237 "size":4096,
2238 "address":4060086272,
2239 "type":"memory"
2240 },
2241 {
2242 "prefetch":false,
2243 "mem_type_64":false,
2244 "bar":6,
2245 "size":65536,
2246 "address":-1,
2247 "type":"memory"
2248 }
2249 ]
2250 },
2251 {
2252 "bus":0,
2253 "qdev_id":"",
2254 "irq":11,
2255 "slot":4,
2256 "class_info":{
2257 "class":1280,
2258 "desc":"RAM controller"
2259 },
2260 "id":{
2261 "device":6900,
2262 "vendor":4098
2263 },
2264 "function":0,
2265 "regions":[
2266 {
2267 "bar":0,
2268 "size":32,
2269 "address":49280,
2270 "type":"io"
2271 }
2272 ]
2273 }
2274 ]
2275 }
2276 ]
2277 }
2278
2279Note: This example has been shortened as the real response is too long.
2280
2281EQMP
2282
79627472
LC
2283 {
2284 .name = "query-pci",
2285 .args_type = "",
2286 .mhandler.cmd_new = qmp_marshal_input_query_pci,
2287 },
2288
82a56f0d
LC
2289SQMP
2290query-kvm
2291---------
2292
2293Show KVM information.
2294
2295Return a json-object with the following information:
2296
2297- "enabled": true if KVM support is enabled, false otherwise (json-bool)
2298- "present": true if QEMU has KVM support, false otherwise (json-bool)
2299
2300Example:
2301
2302-> { "execute": "query-kvm" }
2303<- { "return": { "enabled": true, "present": true } }
2304
2305EQMP
2306
292a2602
LC
2307 {
2308 .name = "query-kvm",
2309 .args_type = "",
2310 .mhandler.cmd_new = qmp_marshal_input_query_kvm,
2311 },
2312
82a56f0d
LC
2313SQMP
2314query-status
2315------------
2316
2317Return a json-object with the following information:
2318
2319- "running": true if the VM is running, or false if it is paused (json-bool)
2320- "singlestep": true if the VM is in single step mode,
2321 false otherwise (json-bool)
9e37b9dc
LC
2322- "status": one of the following values (json-string)
2323 "debug" - QEMU is running on a debugger
2324 "inmigrate" - guest is paused waiting for an incoming migration
2325 "internal-error" - An internal error that prevents further guest
2326 execution has occurred
2327 "io-error" - the last IOP has failed and the device is configured
2328 to pause on I/O errors
2329 "paused" - guest has been paused via the 'stop' command
2330 "postmigrate" - guest is paused following a successful 'migrate'
2331 "prelaunch" - QEMU was started with -S and guest has not started
2332 "finish-migrate" - guest is paused to finish the migration process
2333 "restore-vm" - guest is paused to restore VM state
2334 "running" - guest is actively running
2335 "save-vm" - guest is paused to save the VM state
2336 "shutdown" - guest is shut down (and -no-shutdown is in use)
2337 "watchdog" - the watchdog action is configured to pause and
2338 has been triggered
82a56f0d
LC
2339
2340Example:
2341
2342-> { "execute": "query-status" }
9e37b9dc 2343<- { "return": { "running": true, "singlestep": false, "status": "running" } }
82a56f0d
LC
2344
2345EQMP
1fa9a5e4
LC
2346
2347 {
2348 .name = "query-status",
2349 .args_type = "",
2350 .mhandler.cmd_new = qmp_marshal_input_query_status,
2351 },
82a56f0d
LC
2352
2353SQMP
2354query-mice
2355----------
2356
2357Show VM mice information.
2358
2359Each mouse is represented by a json-object, the returned value is a json-array
2360of all mice.
2361
2362The mouse json-object contains the following:
2363
2364- "name": mouse's name (json-string)
2365- "index": mouse's index (json-int)
2366- "current": true if this mouse is receiving events, false otherwise (json-bool)
2367- "absolute": true if the mouse generates absolute input events (json-bool)
2368
2369Example:
2370
2371-> { "execute": "query-mice" }
2372<- {
2373 "return":[
2374 {
2375 "name":"QEMU Microsoft Mouse",
2376 "index":0,
2377 "current":false,
2378 "absolute":false
2379 },
2380 {
2381 "name":"QEMU PS/2 Mouse",
2382 "index":1,
2383 "current":true,
2384 "absolute":true
2385 }
2386 ]
2387 }
2388
2389EQMP
2390
e235cec3
LC
2391 {
2392 .name = "query-mice",
2393 .args_type = "",
2394 .mhandler.cmd_new = qmp_marshal_input_query_mice,
2395 },
2396
82a56f0d
LC
2397SQMP
2398query-vnc
2399---------
2400
2401Show VNC server information.
2402
2403Return a json-object with server information. Connected clients are returned
2404as a json-array of json-objects.
2405
2406The main json-object contains the following:
2407
2408- "enabled": true or false (json-bool)
2409- "host": server's IP address (json-string)
2410- "family": address family (json-string)
2411 - Possible values: "ipv4", "ipv6", "unix", "unknown"
2412- "service": server's port number (json-string)
2413- "auth": authentication method (json-string)
2414 - Possible values: "invalid", "none", "ra2", "ra2ne", "sasl", "tight",
2415 "tls", "ultra", "unknown", "vencrypt", "vencrypt",
2416 "vencrypt+plain", "vencrypt+tls+none",
2417 "vencrypt+tls+plain", "vencrypt+tls+sasl",
2418 "vencrypt+tls+vnc", "vencrypt+x509+none",
2419 "vencrypt+x509+plain", "vencrypt+x509+sasl",
2420 "vencrypt+x509+vnc", "vnc"
2421- "clients": a json-array of all connected clients
2422
2423Clients are described by a json-object, each one contain the following:
2424
2425- "host": client's IP address (json-string)
2426- "family": address family (json-string)
2427 - Possible values: "ipv4", "ipv6", "unix", "unknown"
2428- "service": client's port number (json-string)
2429- "x509_dname": TLS dname (json-string, optional)
2430- "sasl_username": SASL username (json-string, optional)
2431
2432Example:
2433
2434-> { "execute": "query-vnc" }
2435<- {
2436 "return":{
2437 "enabled":true,
2438 "host":"0.0.0.0",
2439 "service":"50402",
2440 "auth":"vnc",
2441 "family":"ipv4",
2442 "clients":[
2443 {
2444 "host":"127.0.0.1",
2445 "service":"50401",
2446 "family":"ipv4"
2447 }
2448 ]
2449 }
2450 }
2451
2452EQMP
2453
2b54aa87
LC
2454 {
2455 .name = "query-vnc",
2456 .args_type = "",
2457 .mhandler.cmd_new = qmp_marshal_input_query_vnc,
2458 },
2459
cb42a870
GH
2460SQMP
2461query-spice
2462-----------
2463
2464Show SPICE server information.
2465
2466Return a json-object with server information. Connected clients are returned
2467as a json-array of json-objects.
2468
2469The main json-object contains the following:
2470
2471- "enabled": true or false (json-bool)
2472- "host": server's IP address (json-string)
2473- "port": server's port number (json-int, optional)
2474- "tls-port": server's port number (json-int, optional)
2475- "auth": authentication method (json-string)
2476 - Possible values: "none", "spice"
2477- "channels": a json-array of all active channels clients
2478
2479Channels are described by a json-object, each one contain the following:
2480
2481- "host": client's IP address (json-string)
2482- "family": address family (json-string)
2483 - Possible values: "ipv4", "ipv6", "unix", "unknown"
2484- "port": client's port number (json-string)
2485- "connection-id": spice connection id. All channels with the same id
2486 belong to the same spice session (json-int)
2487- "channel-type": channel type. "1" is the main control channel, filter for
2488 this one if you want track spice sessions only (json-int)
2489- "channel-id": channel id. Usually "0", might be different needed when
2490 multiple channels of the same type exist, such as multiple
2491 display channels in a multihead setup (json-int)
2492- "tls": whevener the channel is encrypted (json-bool)
2493
2494Example:
2495
2496-> { "execute": "query-spice" }
2497<- {
2498 "return": {
2499 "enabled": true,
2500 "auth": "spice",
2501 "port": 5920,
2502 "tls-port": 5921,
2503 "host": "0.0.0.0",
2504 "channels": [
2505 {
2506 "port": "54924",
2507 "family": "ipv4",
2508 "channel-type": 1,
2509 "connection-id": 1804289383,
2510 "host": "127.0.0.1",
2511 "channel-id": 0,
2512 "tls": true
2513 },
2514 {
2515 "port": "36710",
2516 "family": "ipv4",
2517 "channel-type": 4,
2518 "connection-id": 1804289383,
2519 "host": "127.0.0.1",
2520 "channel-id": 0,
2521 "tls": false
2522 },
2523 [ ... more channels follow ... ]
2524 ]
2525 }
2526 }
2527
2528EQMP
2529
d1f29646
LC
2530#if defined(CONFIG_SPICE)
2531 {
2532 .name = "query-spice",
2533 .args_type = "",
2534 .mhandler.cmd_new = qmp_marshal_input_query_spice,
2535 },
2536#endif
2537
82a56f0d
LC
2538SQMP
2539query-name
2540----------
2541
2542Show VM name.
2543
2544Return a json-object with the following information:
2545
2546- "name": VM's name (json-string, optional)
2547
2548Example:
2549
2550-> { "execute": "query-name" }
2551<- { "return": { "name": "qemu-name" } }
2552
2553EQMP
2554
48a32bed
AL
2555 {
2556 .name = "query-name",
2557 .args_type = "",
2558 .mhandler.cmd_new = qmp_marshal_input_query_name,
2559 },
2560
82a56f0d
LC
2561SQMP
2562query-uuid
2563----------
2564
2565Show VM UUID.
2566
2567Return a json-object with the following information:
2568
2569- "UUID": Universally Unique Identifier (json-string)
2570
2571Example:
2572
2573-> { "execute": "query-uuid" }
2574<- { "return": { "UUID": "550e8400-e29b-41d4-a716-446655440000" } }
2575
2576EQMP
2577
efab767e
LC
2578 {
2579 .name = "query-uuid",
2580 .args_type = "",
2581 .mhandler.cmd_new = qmp_marshal_input_query_uuid,
2582 },
2583
1f8f987d
AK
2584SQMP
2585query-command-line-options
2586--------------------------
2587
2588Show command line option schema.
2589
2590Return a json-array of command line option schema for all options (or for
2591the given option), returning an error if the given option doesn't exist.
2592
2593Each array entry contains the following:
2594
2595- "option": option name (json-string)
2596- "parameters": a json-array describes all parameters of the option:
2597 - "name": parameter name (json-string)
2598 - "type": parameter type (one of 'string', 'boolean', 'number',
2599 or 'size')
2600 - "help": human readable description of the parameter
2601 (json-string, optional)
2602
2603Example:
2604
2605-> { "execute": "query-command-line-options", "arguments": { "option": "option-rom" } }
2606<- { "return": [
2607 {
2608 "parameters": [
2609 {
2610 "name": "romfile",
2611 "type": "string"
2612 },
2613 {
2614 "name": "bootindex",
2615 "type": "number"
2616 }
2617 ],
2618 "option": "option-rom"
2619 }
2620 ]
2621 }
2622
2623EQMP
2624
2625 {
2626 .name = "query-command-line-options",
2627 .args_type = "option:s?",
2628 .mhandler.cmd_new = qmp_marshal_input_query_command_line_options,
2629 },
2630
82a56f0d
LC
2631SQMP
2632query-migrate
2633-------------
2634
2635Migration status.
2636
2637Return a json-object. If migration is active there will be another json-object
2638with RAM migration status and if block migration is active another one with
2639block migration status.
2640
2641The main json-object contains the following:
2642
2643- "status": migration status (json-string)
2644 - Possible values: "active", "completed", "failed", "cancelled"
7aa939af
JQ
2645- "total-time": total amount of ms since migration started. If
2646 migration has ended, it returns the total migration
817c6045 2647 time (json-int)
8f3067bd
MH
2648- "setup-time" amount of setup time in milliseconds _before_ the
2649 iterations begin but _after_ the QMP command is issued.
2650 This is designed to provide an accounting of any activities
2651 (such as RDMA pinning) which may be expensive, but do not
2652 actually occur during the iterative migration rounds
2653 themselves. (json-int)
9c5a9fcf
JQ
2654- "downtime": only present when migration has finished correctly
2655 total amount in ms for downtime that happened (json-int)
2c52ddf1
JQ
2656- "expected-downtime": only present while migration is active
2657 total amount in ms for downtime that was calculated on
817c6045 2658 the last bitmap round (json-int)
82a56f0d 2659- "ram": only present if "status" is "active", it is a json-object with the
817c6045
JQ
2660 following RAM information:
2661 - "transferred": amount transferred in bytes (json-int)
2662 - "remaining": amount remaining to transfer in bytes (json-int)
2663 - "total": total amount of memory in bytes (json-int)
2664 - "duplicate": number of pages filled entirely with the same
2665 byte (json-int)
2666 These are sent over the wire much more efficiently.
f1c72795 2667 - "skipped": number of skipped zero pages (json-int)
805a2505 2668 - "normal" : number of whole pages transferred. I.e. they
817c6045
JQ
2669 were not sent as duplicate or xbzrle pages (json-int)
2670 - "normal-bytes" : number of bytes transferred in whole
2671 pages. This is just normal pages times size of one page,
2672 but this way upper levels don't need to care about page
2673 size (json-int)
82a56f0d 2674- "disk": only present if "status" is "active" and it is a block migration,
817c6045
JQ
2675 it is a json-object with the following disk information:
2676 - "transferred": amount transferred in bytes (json-int)
2677 - "remaining": amount remaining to transfer in bytes json-int)
2678 - "total": total disk size in bytes (json-int)
f36d55af
OW
2679- "xbzrle-cache": only present if XBZRLE is active.
2680 It is a json-object with the following XBZRLE information:
817c6045
JQ
2681 - "cache-size": XBZRLE cache size in bytes
2682 - "bytes": number of bytes transferred for XBZRLE compressed pages
f36d55af 2683 - "pages": number of XBZRLE compressed pages
817c6045
JQ
2684 - "cache-miss": number of XBRZRLE page cache misses
2685 - "overflow": number of times XBZRLE overflows. This means
2686 that the XBZRLE encoding was bigger than just sent the
2687 whole page, and then we sent the whole page instead (as as
2688 normal page).
2689
82a56f0d
LC
2690Examples:
2691
26921. Before the first migration
2693
2694-> { "execute": "query-migrate" }
2695<- { "return": {} }
2696
26972. Migration is done and has succeeded
2698
2699-> { "execute": "query-migrate" }
004d4c10
OW
2700<- { "return": {
2701 "status": "completed",
2702 "ram":{
2703 "transferred":123,
2704 "remaining":123,
2705 "total":246,
2706 "total-time":12345,
8f3067bd 2707 "setup-time":12345,
9c5a9fcf 2708 "downtime":12345,
004d4c10
OW
2709 "duplicate":123,
2710 "normal":123,
2711 "normal-bytes":123456
2712 }
2713 }
2714 }
82a56f0d
LC
2715
27163. Migration is done and has failed
2717
2718-> { "execute": "query-migrate" }
2719<- { "return": { "status": "failed" } }
2720
27214. Migration is being performed and is not a block migration:
2722
2723-> { "execute": "query-migrate" }
2724<- {
2725 "return":{
2726 "status":"active",
2727 "ram":{
2728 "transferred":123,
2729 "remaining":123,
62d4e3fe 2730 "total":246,
004d4c10 2731 "total-time":12345,
8f3067bd 2732 "setup-time":12345,
2c52ddf1 2733 "expected-downtime":12345,
004d4c10
OW
2734 "duplicate":123,
2735 "normal":123,
2736 "normal-bytes":123456
82a56f0d
LC
2737 }
2738 }
2739 }
2740
27415. Migration is being performed and is a block migration:
2742
2743-> { "execute": "query-migrate" }
2744<- {
2745 "return":{
2746 "status":"active",
2747 "ram":{
2748 "total":1057024,
2749 "remaining":1053304,
62d4e3fe 2750 "transferred":3720,
004d4c10 2751 "total-time":12345,
8f3067bd 2752 "setup-time":12345,
2c52ddf1 2753 "expected-downtime":12345,
004d4c10
OW
2754 "duplicate":123,
2755 "normal":123,
2756 "normal-bytes":123456
82a56f0d
LC
2757 },
2758 "disk":{
2759 "total":20971520,
2760 "remaining":20880384,
2761 "transferred":91136
2762 }
2763 }
2764 }
2765
f36d55af
OW
27666. Migration is being performed and XBZRLE is active:
2767
2768-> { "execute": "query-migrate" }
2769<- {
2770 "return":{
2771 "status":"active",
2772 "capabilities" : [ { "capability": "xbzrle", "state" : true } ],
2773 "ram":{
2774 "total":1057024,
2775 "remaining":1053304,
2776 "transferred":3720,
2777 "total-time":12345,
8f3067bd 2778 "setup-time":12345,
2c52ddf1 2779 "expected-downtime":12345,
f36d55af
OW
2780 "duplicate":10,
2781 "normal":3333,
2782 "normal-bytes":3412992
2783 },
2784 "xbzrle-cache":{
2785 "cache-size":67108864,
2786 "bytes":20971520,
2787 "pages":2444343,
2788 "cache-miss":2244,
2789 "overflow":34434
2790 }
2791 }
2792 }
2793
82a56f0d
LC
2794EQMP
2795
791e7c82
LC
2796 {
2797 .name = "query-migrate",
2798 .args_type = "",
2799 .mhandler.cmd_new = qmp_marshal_input_query_migrate,
2800 },
2801
bbf6da32 2802SQMP
00458433 2803migrate-set-capabilities
817c6045 2804------------------------
00458433
OW
2805
2806Enable/Disable migration capabilities
2807
817c6045 2808- "xbzrle": XBZRLE support
00458433
OW
2809
2810Arguments:
2811
2812Example:
2813
2814-> { "execute": "migrate-set-capabilities" , "arguments":
2815 { "capabilities": [ { "capability": "xbzrle", "state": true } ] } }
2816
2817EQMP
2818
2819 {
2820 .name = "migrate-set-capabilities",
2821 .args_type = "capabilities:O",
2822 .params = "capability:s,state:b",
2823 .mhandler.cmd_new = qmp_marshal_input_migrate_set_capabilities,
2824 },
2825SQMP
bbf6da32 2826query-migrate-capabilities
817c6045 2827--------------------------
bbf6da32
OW
2828
2829Query current migration capabilities
2830
2831- "capabilities": migration capabilities state
2832 - "xbzrle" : XBZRLE state (json-bool)
2833
2834Arguments:
2835
2836Example:
2837
2838-> { "execute": "query-migrate-capabilities" }
dbca1b37
OW
2839<- { "return": [ { "state": false, "capability": "xbzrle" } ] }
2840
bbf6da32
OW
2841EQMP
2842
2843 {
2844 .name = "query-migrate-capabilities",
2845 .args_type = "",
2846 .mhandler.cmd_new = qmp_marshal_input_query_migrate_capabilities,
2847 },
2848
82a56f0d
LC
2849SQMP
2850query-balloon
2851-------------
2852
2853Show balloon information.
2854
2855Make an asynchronous request for balloon info. When the request completes a
2856json-object will be returned containing the following data:
2857
2858- "actual": current balloon value in bytes (json-int)
82a56f0d
LC
2859
2860Example:
2861
2862-> { "execute": "query-balloon" }
2863<- {
2864 "return":{
2865 "actual":1073741824,
82a56f0d
LC
2866 }
2867 }
2868
2869EQMP
2870
96637bcd
LC
2871 {
2872 .name = "query-balloon",
2873 .args_type = "",
2874 .mhandler.cmd_new = qmp_marshal_input_query_balloon,
2875 },
b4b12c62 2876
fb5458cd
SH
2877 {
2878 .name = "query-block-jobs",
2879 .args_type = "",
2880 .mhandler.cmd_new = qmp_marshal_input_query_block_jobs,
2881 },
2882
b4b12c62
AL
2883 {
2884 .name = "qom-list",
2885 .args_type = "path:s",
2886 .mhandler.cmd_new = qmp_marshal_input_qom_list,
2887 },
eb6e8ea5
AL
2888
2889 {
2890 .name = "qom-set",
b9f8978c 2891 .args_type = "path:s,property:s,value:q",
eb6e8ea5
AL
2892 .mhandler.cmd_new = qmp_qom_set,
2893 },
2894
2895 {
2896 .name = "qom-get",
2897 .args_type = "path:s,property:s",
2898 .mhandler.cmd_new = qmp_qom_get,
2899 },
270b243f 2900
6dd844db
PB
2901 {
2902 .name = "nbd-server-start",
2903 .args_type = "addr:q",
2904 .mhandler.cmd_new = qmp_marshal_input_nbd_server_start,
2905 },
2906 {
2907 .name = "nbd-server-add",
2908 .args_type = "device:B,writable:b?",
2909 .mhandler.cmd_new = qmp_marshal_input_nbd_server_add,
2910 },
2911 {
2912 .name = "nbd-server-stop",
2913 .args_type = "",
2914 .mhandler.cmd_new = qmp_marshal_input_nbd_server_stop,
2915 },
2916
270b243f
LC
2917 {
2918 .name = "change-vnc-password",
2919 .args_type = "password:s",
2920 .mhandler.cmd_new = qmp_marshal_input_change_vnc_password,
2921 },
5eeee3fa
AL
2922 {
2923 .name = "qom-list-types",
2924 .args_type = "implements:s?,abstract:b?",
2925 .mhandler.cmd_new = qmp_marshal_input_qom_list_types,
2926 },
1daa31b9
AL
2927
2928 {
2929 .name = "device-list-properties",
2930 .args_type = "typename:s",
2931 .mhandler.cmd_new = qmp_marshal_input_device_list_properties,
2932 },
2933
01d3c80d
AL
2934 {
2935 .name = "query-machines",
2936 .args_type = "",
2937 .mhandler.cmd_new = qmp_marshal_input_query_machines,
2938 },
2939
e4e31c63
AL
2940 {
2941 .name = "query-cpu-definitions",
2942 .args_type = "",
2943 .mhandler.cmd_new = qmp_marshal_input_query_cpu_definitions,
2944 },
2945
99afc91d
DB
2946 {
2947 .name = "query-target",
2948 .args_type = "",
2949 .mhandler.cmd_new = qmp_marshal_input_query_target,
2950 },
f1a1a356 2951
d1a0cf73
SB
2952 {
2953 .name = "query-tpm",
2954 .args_type = "",
2955 .mhandler.cmd_new = qmp_marshal_input_query_tpm,
2956 },
2957
28c4fa32
CB
2958SQMP
2959query-tpm
2960---------
2961
2962Return information about the TPM device.
2963
2964Arguments: None
2965
2966Example:
2967
2968-> { "execute": "query-tpm" }
2969<- { "return":
2970 [
2971 { "model": "tpm-tis",
2972 "options":
2973 { "type": "passthrough",
2974 "data":
2975 { "cancel-path": "/sys/class/misc/tpm0/device/cancel",
2976 "path": "/dev/tpm0"
2977 }
2978 },
2979 "id": "tpm0"
2980 }
2981 ]
2982 }
2983
2984EQMP
2985
d1a0cf73
SB
2986 {
2987 .name = "query-tpm-models",
2988 .args_type = "",
2989 .mhandler.cmd_new = qmp_marshal_input_query_tpm_models,
2990 },
2991
28c4fa32
CB
2992SQMP
2993query-tpm-models
2994----------------
2995
2996Return a list of supported TPM models.
2997
2998Arguments: None
2999
3000Example:
3001
3002-> { "execute": "query-tpm-models" }
3003<- { "return": [ "tpm-tis" ] }
3004
3005EQMP
3006
d1a0cf73
SB
3007 {
3008 .name = "query-tpm-types",
3009 .args_type = "",
3010 .mhandler.cmd_new = qmp_marshal_input_query_tpm_types,
3011 },
3012
28c4fa32
CB
3013SQMP
3014query-tpm-types
3015---------------
3016
3017Return a list of supported TPM types.
3018
3019Arguments: None
3020
3021Example:
3022
3023-> { "execute": "query-tpm-types" }
3024<- { "return": [ "passthrough" ] }
3025
3026EQMP
3027
f1a1a356
GH
3028 {
3029 .name = "chardev-add",
3030 .args_type = "id:s,backend:q",
3031 .mhandler.cmd_new = qmp_marshal_input_chardev_add,
3032 },
3033
3034SQMP
3035chardev-add
3036----------------
3037
3038Add a chardev.
3039
3040Arguments:
3041
3042- "id": the chardev's ID, must be unique (json-string)
3043- "backend": chardev backend type + parameters
3044
ffbdbe59 3045Examples:
f1a1a356
GH
3046
3047-> { "execute" : "chardev-add",
3048 "arguments" : { "id" : "foo",
3049 "backend" : { "type" : "null", "data" : {} } } }
3050<- { "return": {} }
3051
ffbdbe59
GH
3052-> { "execute" : "chardev-add",
3053 "arguments" : { "id" : "bar",
3054 "backend" : { "type" : "file",
3055 "data" : { "out" : "/tmp/bar.log" } } } }
3056<- { "return": {} }
3057
0a1a7fab
GH
3058-> { "execute" : "chardev-add",
3059 "arguments" : { "id" : "baz",
3060 "backend" : { "type" : "pty", "data" : {} } } }
3061<- { "return": { "pty" : "/dev/pty/42" } }
3062
f1a1a356
GH
3063EQMP
3064
3065 {
3066 .name = "chardev-remove",
3067 .args_type = "id:s",
3068 .mhandler.cmd_new = qmp_marshal_input_chardev_remove,
3069 },
3070
3071
3072SQMP
3073chardev-remove
3074--------------
3075
3076Remove a chardev.
3077
3078Arguments:
3079
3080- "id": the chardev's ID, must exist and not be in use (json-string)
3081
3082Example:
3083
3084-> { "execute": "chardev-remove", "arguments": { "id" : "foo" } }
3085<- { "return": {} }
3086
b1be4280
AK
3087EQMP
3088 {
3089 .name = "query-rx-filter",
3090 .args_type = "name:s?",
3091 .mhandler.cmd_new = qmp_marshal_input_query_rx_filter,
3092 },
3093
3094SQMP
3095query-rx-filter
3096---------------
3097
3098Show rx-filter information.
3099
3100Returns a json-array of rx-filter information for all NICs (or for the
3101given NIC), returning an error if the given NIC doesn't exist, or
3102given NIC doesn't support rx-filter querying, or given net client
3103isn't a NIC.
3104
3105The query will clear the event notification flag of each NIC, then qemu
3106will start to emit event to QMP monitor.
3107
3108Each array entry contains the following:
3109
3110- "name": net client name (json-string)
3111- "promiscuous": promiscuous mode is enabled (json-bool)
3112- "multicast": multicast receive state (one of 'normal', 'none', 'all')
3113- "unicast": unicast receive state (one of 'normal', 'none', 'all')
3114- "broadcast-allowed": allow to receive broadcast (json-bool)
3115- "multicast-overflow": multicast table is overflowed (json-bool)
3116- "unicast-overflow": unicast table is overflowed (json-bool)
3117- "main-mac": main macaddr string (json-string)
3118- "vlan-table": a json-array of active vlan id
3119- "unicast-table": a json-array of unicast macaddr string
3120- "multicast-table": a json-array of multicast macaddr string
3121
3122Example:
3123
3124-> { "execute": "query-rx-filter", "arguments": { "name": "vnet0" } }
3125<- { "return": [
3126 {
3127 "promiscuous": true,
3128 "name": "vnet0",
3129 "main-mac": "52:54:00:12:34:56",
3130 "unicast": "normal",
3131 "vlan-table": [
3132 4,
3133 0
3134 ],
3135 "unicast-table": [
3136 ],
3137 "multicast": "normal",
3138 "multicast-overflow": false,
3139 "unicast-overflow": false,
3140 "multicast-table": [
3141 "01:00:5e:00:00:01",
3142 "33:33:00:00:00:01",
3143 "33:33:ff:12:34:56"
3144 ],
3145 "broadcast-allowed": false
3146 }
3147 ]
3148 }
3149
f1a1a356 3150EQMP