]> git.proxmox.com Git - qemu.git/blame - qmp-commands.hx
qapi: convert netdev_del
[qemu.git] / qmp-commands.hx
CommitLineData
82a56f0d
LC
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
82a56f0d
LC
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,
82a56f0d
LC
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,
82a56f0d
LC
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,
82a56f0d
LC
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",
149 .params = "filename",
150 .help = "save screen into PPM image 'filename'",
151 .user_print = monitor_user_noop,
152 .mhandler.cmd_new = do_screen_dump,
153 },
154
155SQMP
156screendump
157----------
158
159Save screen into PPM image.
160
161Arguments:
162
163- "filename": file path (json-string)
164
165Example:
166
167-> { "execute": "screendump", "arguments": { "filename": "/tmp/image" } }
168<- { "return": {} }
169
170EQMP
171
172 {
173 .name = "stop",
174 .args_type = "",
5f158f21 175 .mhandler.cmd_new = qmp_marshal_input_stop,
82a56f0d
LC
176 },
177
178SQMP
179stop
180----
181
182Stop the emulator.
183
184Arguments: None.
185
186Example:
187
188-> { "execute": "stop" }
189<- { "return": {} }
190
191EQMP
192
193 {
194 .name = "cont",
195 .args_type = "",
e42e818b 196 .mhandler.cmd_new = qmp_marshal_input_cont,
82a56f0d
LC
197 },
198
199SQMP
200cont
201----
202
203Resume emulation.
204
205Arguments: None.
206
207Example:
208
209-> { "execute": "cont" }
210<- { "return": {} }
9b9df25a
GH
211
212EQMP
213
214 {
215 .name = "system_wakeup",
216 .args_type = "",
217 .mhandler.cmd_new = qmp_marshal_input_system_wakeup,
218 },
219
220SQMP
221system_wakeup
222-------------
223
224Wakeup guest from suspend.
225
226Arguments: None.
227
228Example:
229
230-> { "execute": "system_wakeup" }
231<- { "return": {} }
82a56f0d
LC
232
233EQMP
234
235 {
236 .name = "system_reset",
237 .args_type = "",
38d22653 238 .mhandler.cmd_new = qmp_marshal_input_system_reset,
82a56f0d
LC
239 },
240
241SQMP
242system_reset
243------------
244
245Reset the system.
246
247Arguments: None.
248
249Example:
250
251-> { "execute": "system_reset" }
252<- { "return": {} }
253
254EQMP
255
256 {
257 .name = "system_powerdown",
258 .args_type = "",
22e1bb9c 259 .mhandler.cmd_new = qmp_marshal_input_system_powerdown,
82a56f0d
LC
260 },
261
262SQMP
263system_powerdown
264----------------
265
266Send system power down event.
267
268Arguments: None.
269
270Example:
271
272-> { "execute": "system_powerdown" }
273<- { "return": {} }
274
275EQMP
276
277 {
278 .name = "device_add",
279 .args_type = "device:O",
280 .params = "driver[,prop=value][,...]",
281 .help = "add device, like -device on the command line",
282 .user_print = monitor_user_noop,
283 .mhandler.cmd_new = do_device_add,
284 },
285
286SQMP
287device_add
288----------
289
290Add a device.
291
292Arguments:
293
294- "driver": the name of the new device's driver (json-string)
295- "bus": the device's parent bus (device tree path, json-string, optional)
296- "id": the device's ID, must be unique (json-string)
297- device properties
298
299Example:
300
301-> { "execute": "device_add", "arguments": { "driver": "e1000", "id": "net1" } }
302<- { "return": {} }
303
304Notes:
305
306(1) For detailed information about this command, please refer to the
307 'docs/qdev-device-use.txt' file.
308
309(2) It's possible to list device properties by running QEMU with the
310 "-device DEVICE,\?" command-line argument, where DEVICE is the device's name
311
312EQMP
313
314 {
315 .name = "device_del",
316 .args_type = "id:s",
a15fef21 317 .mhandler.cmd_new = qmp_marshal_input_device_del,
82a56f0d
LC
318 },
319
320SQMP
321device_del
322----------
323
324Remove a device.
325
326Arguments:
327
328- "id": the device's ID (json-string)
329
330Example:
331
332-> { "execute": "device_del", "arguments": { "id": "net1" } }
333<- { "return": {} }
334
335EQMP
336
337 {
338 .name = "cpu",
339 .args_type = "index:i",
755f1968 340 .mhandler.cmd_new = qmp_marshal_input_cpu,
82a56f0d
LC
341 },
342
343SQMP
344cpu
345---
346
347Set the default CPU.
348
349Arguments:
350
351- "index": the CPU's index (json-int)
352
353Example:
354
355-> { "execute": "cpu", "arguments": { "index": 0 } }
356<- { "return": {} }
357
358Note: CPUs' indexes are obtained with the 'query-cpus' command.
359
360EQMP
361
362 {
363 .name = "memsave",
0cfd6a9a
LC
364 .args_type = "val:l,size:i,filename:s,cpu:i?",
365 .mhandler.cmd_new = qmp_marshal_input_memsave,
82a56f0d
LC
366 },
367
368SQMP
369memsave
370-------
371
372Save to disk virtual memory dump starting at 'val' of size 'size'.
373
374Arguments:
375
376- "val": the starting address (json-int)
377- "size": the memory size, in bytes (json-int)
378- "filename": file path (json-string)
0cfd6a9a 379- "cpu": virtual CPU index (json-int, optional)
82a56f0d
LC
380
381Example:
382
383-> { "execute": "memsave",
384 "arguments": { "val": 10,
385 "size": 100,
386 "filename": "/tmp/virtual-mem-dump" } }
387<- { "return": {} }
388
82a56f0d
LC
389EQMP
390
391 {
392 .name = "pmemsave",
393 .args_type = "val:l,size:i,filename:s",
6d3962bf 394 .mhandler.cmd_new = qmp_marshal_input_pmemsave,
82a56f0d
LC
395 },
396
397SQMP
398pmemsave
399--------
400
401Save to disk physical memory dump starting at 'val' of size 'size'.
402
403Arguments:
404
405- "val": the starting address (json-int)
406- "size": the memory size, in bytes (json-int)
407- "filename": file path (json-string)
408
409Example:
410
411-> { "execute": "pmemsave",
412 "arguments": { "val": 10,
413 "size": 100,
414 "filename": "/tmp/physical-mem-dump" } }
415<- { "return": {} }
416
a4046664
LJ
417EQMP
418
419 {
420 .name = "inject-nmi",
421 .args_type = "",
ab49ab5c 422 .mhandler.cmd_new = qmp_marshal_input_inject_nmi,
a4046664
LJ
423 },
424
425SQMP
426inject-nmi
427----------
428
429Inject an NMI on guest's CPUs.
430
431Arguments: None.
432
433Example:
434
435-> { "execute": "inject-nmi" }
436<- { "return": {} }
437
438Note: inject-nmi is only supported for x86 guest currently, it will
439 returns "Unsupported" error for non-x86 guest.
440
a7ae8355
SS
441EQMP
442
443 {
444 .name = "xen-save-devices-state",
445 .args_type = "filename:F",
446 .mhandler.cmd_new = qmp_marshal_input_xen_save_devices_state,
447 },
448
449SQMP
450xen-save-devices-state
451-------
452
453Save the state of all devices to file. The RAM and the block devices
454of the VM are not saved by this command.
455
456Arguments:
457
458- "filename": the file to save the state of the devices to as binary
459data. See xen-save-devices-state.txt for a description of the binary
460format.
461
462Example:
463
464-> { "execute": "xen-save-devices-state",
465 "arguments": { "filename": "/tmp/save" } }
466<- { "return": {} }
467
82a56f0d
LC
468EQMP
469
470 {
471 .name = "migrate",
472 .args_type = "detach:-d,blk:-b,inc:-i,uri:s",
e1c37d0e 473 .mhandler.cmd_new = qmp_marshal_input_migrate,
82a56f0d
LC
474 },
475
476SQMP
477migrate
478-------
479
480Migrate to URI.
481
482Arguments:
483
484- "blk": block migration, full disk copy (json-bool, optional)
485- "inc": incremental disk copy (json-bool, optional)
486- "uri": Destination URI (json-string)
487
488Example:
489
490-> { "execute": "migrate", "arguments": { "uri": "tcp:0:4446" } }
491<- { "return": {} }
492
493Notes:
494
495(1) The 'query-migrate' command should be used to check migration's progress
496 and final result (this information is provided by the 'status' member)
497(2) All boolean arguments default to false
498(3) The user Monitor's "detach" argument is invalid in QMP and should not
499 be used
500
501EQMP
502
503 {
504 .name = "migrate_cancel",
505 .args_type = "",
6cdedb07 506 .mhandler.cmd_new = qmp_marshal_input_migrate_cancel,
82a56f0d
LC
507 },
508
509SQMP
510migrate_cancel
511--------------
512
513Cancel the current migration.
514
515Arguments: None.
516
517Example:
518
519-> { "execute": "migrate_cancel" }
520<- { "return": {} }
521
522EQMP
523
524 {
525 .name = "migrate_set_speed",
3a019b6e 526 .args_type = "value:o",
3dc85383 527 .mhandler.cmd_new = qmp_marshal_input_migrate_set_speed,
82a56f0d
LC
528 },
529
e866e239 530SQMP
ff73edf5
JS
531migrate_set_speed
532-----------------
e866e239 533
ff73edf5 534Set maximum speed for migrations.
e866e239
GH
535
536Arguments:
537
ff73edf5 538- "value": maximum speed, in bytes per second (json-int)
e866e239
GH
539
540Example:
541
ff73edf5 542-> { "execute": "migrate_set_speed", "arguments": { "value": 1024 } }
e866e239
GH
543<- { "return": {} }
544
545EQMP
546
547 {
ff73edf5
JS
548 .name = "migrate_set_downtime",
549 .args_type = "value:T",
4f0a993b 550 .mhandler.cmd_new = qmp_marshal_input_migrate_set_downtime,
e866e239
GH
551 },
552
82a56f0d 553SQMP
ff73edf5
JS
554migrate_set_downtime
555--------------------
82a56f0d 556
ff73edf5 557Set maximum tolerated downtime (in seconds) for migrations.
82a56f0d
LC
558
559Arguments:
560
ff73edf5 561- "value": maximum downtime (json-number)
82a56f0d
LC
562
563Example:
564
ff73edf5 565-> { "execute": "migrate_set_downtime", "arguments": { "value": 0.1 } }
82a56f0d
LC
566<- { "return": {} }
567
568EQMP
569
570 {
ff73edf5
JS
571 .name = "client_migrate_info",
572 .args_type = "protocol:s,hostname:s,port:i?,tls-port:i?,cert-subject:s?",
573 .params = "protocol hostname port tls-port cert-subject",
574 .help = "send migration info to spice/vnc client",
82a56f0d 575 .user_print = monitor_user_noop,
edc5cb1a
YH
576 .mhandler.cmd_async = client_migrate_info,
577 .flags = MONITOR_CMD_ASYNC,
82a56f0d
LC
578 },
579
580SQMP
ff73edf5
JS
581client_migrate_info
582------------------
82a56f0d 583
ff73edf5
JS
584Set the spice/vnc connection info for the migration target. The spice/vnc
585server will ask the spice/vnc client to automatically reconnect using the
586new parameters (if specified) once the vm migration finished successfully.
82a56f0d
LC
587
588Arguments:
589
ff73edf5
JS
590- "protocol": protocol: "spice" or "vnc" (json-string)
591- "hostname": migration target hostname (json-string)
592- "port": spice/vnc tcp port for plaintext channels (json-int, optional)
593- "tls-port": spice tcp port for tls-secured channels (json-int, optional)
594- "cert-subject": server certificate subject (json-string, optional)
82a56f0d
LC
595
596Example:
597
ff73edf5
JS
598-> { "execute": "client_migrate_info",
599 "arguments": { "protocol": "spice",
600 "hostname": "virt42.lab.kraxel.org",
601 "port": 1234 } }
82a56f0d
LC
602<- { "return": {} }
603
783e9b48
WC
604EQMP
605
606 {
607 .name = "dump-guest-memory",
608 .args_type = "paging:b,protocol:s,begin:i?,end:i?",
609 .params = "-p protocol [begin] [length]",
610 .help = "dump guest memory to file",
611 .user_print = monitor_user_noop,
612 .mhandler.cmd_new = qmp_marshal_input_dump_guest_memory,
613 },
614
615SQMP
616dump
617
618
619Dump guest memory to file. The file can be processed with crash or gdb.
620
621Arguments:
622
623- "paging": do paging to get guest's memory mapping (json-bool)
624- "protocol": destination file(started with "file:") or destination file
625 descriptor (started with "fd:") (json-string)
626- "begin": the starting physical address. It's optional, and should be specified
627 with length together (json-int)
628- "length": the memory size, in bytes. It's optional, and should be specified
629 with begin together (json-int)
630
631Example:
632
633-> { "execute": "dump-guest-memory", "arguments": { "protocol": "fd:dump" } }
634<- { "return": {} }
635
636Notes:
637
638(1) All boolean arguments default to false
639
82a56f0d
LC
640EQMP
641
642 {
643 .name = "netdev_add",
644 .args_type = "netdev:O",
928059a3 645 .mhandler.cmd_new = qmp_netdev_add,
82a56f0d
LC
646 },
647
648SQMP
649netdev_add
650----------
651
652Add host network device.
653
654Arguments:
655
656- "type": the device type, "tap", "user", ... (json-string)
657- "id": the device's ID, must be unique (json-string)
658- device options
659
660Example:
661
662-> { "execute": "netdev_add", "arguments": { "type": "user", "id": "netdev1" } }
663<- { "return": {} }
664
665Note: The supported device options are the same ones supported by the '-net'
666 command-line argument, which are listed in the '-help' output or QEMU's
667 manual
668
669EQMP
670
671 {
672 .name = "netdev_del",
673 .args_type = "id:s",
5f964155 674 .mhandler.cmd_new = qmp_marshal_input_netdev_del,
82a56f0d
LC
675 },
676
677SQMP
678netdev_del
679----------
680
681Remove host network device.
682
683Arguments:
684
685- "id": the device's ID, must be unique (json-string)
686
687Example:
688
689-> { "execute": "netdev_del", "arguments": { "id": "netdev1" } }
690<- { "return": {} }
691
6d4a2b3a
CH
692
693EQMP
694
695 {
696 .name = "block_resize",
697 .args_type = "device:B,size:o",
5e7caacb 698 .mhandler.cmd_new = qmp_marshal_input_block_resize,
6d4a2b3a
CH
699 },
700
701SQMP
702block_resize
703------------
704
705Resize a block image while a guest is running.
706
707Arguments:
708
709- "device": the device's ID, must be unique (json-string)
710- "size": new size
711
712Example:
713
714-> { "execute": "block_resize", "arguments": { "device": "scratch", "size": 1073741824 } }
715<- { "return": {} }
716
d967b2f1
JS
717EQMP
718
12bd451f 719 {
db58f9c0 720 .name = "block-stream",
c83c66c3 721 .args_type = "device:B,base:s?,speed:o?",
12bd451f
SH
722 .mhandler.cmd_new = qmp_marshal_input_block_stream,
723 },
724
2d47c6e9 725 {
db58f9c0 726 .name = "block-job-set-speed",
882ec7ce 727 .args_type = "device:B,speed:o",
2d47c6e9
SH
728 .mhandler.cmd_new = qmp_marshal_input_block_job_set_speed,
729 },
730
370521a1 731 {
db58f9c0 732 .name = "block-job-cancel",
370521a1
SH
733 .args_type = "device:B",
734 .mhandler.cmd_new = qmp_marshal_input_block_job_cancel,
735 },
c186402c 736 {
52e7c241 737 .name = "transaction",
b9f8978c 738 .args_type = "actions:q",
52e7c241 739 .mhandler.cmd_new = qmp_marshal_input_transaction,
c186402c
JC
740 },
741
742SQMP
52e7c241
PB
743transaction
744-----------
c186402c 745
52e7c241
PB
746Atomically operate on one or more block devices. The only supported
747operation for now is snapshotting. If there is any failure performing
748any of the operations, all snapshots for the group are abandoned, and
749the original disks pre-snapshot attempt are used.
c186402c 750
52e7c241
PB
751A list of dictionaries is accepted, that contains the actions to be performed.
752For snapshots this is the device, the file to use for the new snapshot,
753and the format. The default format, if not specified, is qcow2.
c186402c 754
bc8b094f
PB
755Each new snapshot defaults to being created by QEMU (wiping any
756contents if the file already exists), but it is also possible to reuse
757an externally-created file. In the latter case, you should ensure that
758the new image file has the same contents as the current one; QEMU cannot
759perform any meaningful check. Typically this is achieved by using the
760current image file as the backing file for the new image.
761
c186402c
JC
762Arguments:
763
52e7c241
PB
764actions array:
765 - "type": the operation to perform. The only supported
766 value is "blockdev-snapshot-sync". (json-string)
767 - "data": a dictionary. The contents depend on the value
768 of "type". When "type" is "blockdev-snapshot-sync":
769 - "device": device name to snapshot (json-string)
770 - "snapshot-file": name of new image file (json-string)
771 - "format": format of new image (json-string, optional)
bc8b094f
PB
772 - "mode": whether and how QEMU should create the snapshot file
773 (NewImageMode, optional, default "absolute-paths")
c186402c
JC
774
775Example:
776
52e7c241
PB
777-> { "execute": "transaction",
778 "arguments": { "actions": [
779 { 'type': 'blockdev-snapshot-sync', 'data' : { "device": "ide-hd0",
780 "snapshot-file": "/some/place/my-image",
781 "format": "qcow2" } },
782 { 'type': 'blockdev-snapshot-sync', 'data' : { "device": "ide-hd1",
783 "snapshot-file": "/some/place/my-image2",
bc8b094f 784 "mode": "existing",
52e7c241 785 "format": "qcow2" } } ] } }
c186402c
JC
786<- { "return": {} }
787
788EQMP
370521a1 789
d967b2f1
JS
790 {
791 .name = "blockdev-snapshot-sync",
31155b9b 792 .args_type = "device:B,snapshot-file:s,format:s?,mode:s?",
6106e249 793 .mhandler.cmd_new = qmp_marshal_input_blockdev_snapshot_sync,
d967b2f1
JS
794 },
795
796SQMP
797blockdev-snapshot-sync
798----------------------
799
800Synchronous snapshot of a block device. snapshot-file specifies the
801target of the new image. If the file exists, or if it is a device, the
802snapshot will be created in the existing file/device. If does not
803exist, a new file will be created. format specifies the format of the
804snapshot image, default is qcow2.
805
806Arguments:
807
808- "device": device name to snapshot (json-string)
809- "snapshot-file": name of new image file (json-string)
6cc2a415
PB
810- "mode": whether and how QEMU should create the snapshot file
811 (NewImageMode, optional, default "absolute-paths")
d967b2f1
JS
812- "format": format of new image (json-string, optional)
813
814Example:
815
7f3850c2
LC
816-> { "execute": "blockdev-snapshot-sync", "arguments": { "device": "ide-hd0",
817 "snapshot-file":
818 "/some/place/my-image",
819 "format": "qcow2" } }
d967b2f1
JS
820<- { "return": {} }
821
82a56f0d
LC
822EQMP
823
824 {
825 .name = "balloon",
826 .args_type = "value:M",
d72f3264 827 .mhandler.cmd_new = qmp_marshal_input_balloon,
82a56f0d
LC
828 },
829
830SQMP
831balloon
832-------
833
834Request VM to change its memory allocation (in bytes).
835
836Arguments:
837
838- "value": New memory allocation (json-int)
839
840Example:
841
842-> { "execute": "balloon", "arguments": { "value": 536870912 } }
843<- { "return": {} }
844
845EQMP
846
847 {
848 .name = "set_link",
849 .args_type = "name:s,up:b",
4b37156c 850 .mhandler.cmd_new = qmp_marshal_input_set_link,
82a56f0d
LC
851 },
852
853SQMP
854set_link
855--------
856
857Change the link status of a network adapter.
858
859Arguments:
860
861- "name": network device name (json-string)
862- "up": status is up (json-bool)
863
864Example:
865
866-> { "execute": "set_link", "arguments": { "name": "e1000.0", "up": false } }
867<- { "return": {} }
868
869EQMP
870
871 {
872 .name = "getfd",
873 .args_type = "fdname:s",
874 .params = "getfd name",
875 .help = "receive a file descriptor via SCM rights and assign it a name",
876 .user_print = monitor_user_noop,
877 .mhandler.cmd_new = do_getfd,
878 },
879
880SQMP
881getfd
882-----
883
884Receive a file descriptor via SCM rights and assign it a name.
885
886Arguments:
887
888- "fdname": file descriptor name (json-string)
889
890Example:
891
892-> { "execute": "getfd", "arguments": { "fdname": "fd1" } }
893<- { "return": {} }
894
895EQMP
896
897 {
898 .name = "closefd",
899 .args_type = "fdname:s",
900 .params = "closefd name",
901 .help = "close a file descriptor previously passed via SCM rights",
902 .user_print = monitor_user_noop,
903 .mhandler.cmd_new = do_closefd,
904 },
905
906SQMP
907closefd
908-------
909
910Close a file descriptor previously passed via SCM rights.
911
912Arguments:
913
914- "fdname": file descriptor name (json-string)
915
916Example:
917
918-> { "execute": "closefd", "arguments": { "fdname": "fd1" } }
919<- { "return": {} }
920
921EQMP
922
923 {
924 .name = "block_passwd",
925 .args_type = "device:B,password:s",
a4dea8a9 926 .mhandler.cmd_new = qmp_marshal_input_block_passwd,
82a56f0d
LC
927 },
928
929SQMP
930block_passwd
931------------
932
933Set the password of encrypted block devices.
934
935Arguments:
936
937- "device": device name (json-string)
938- "password": password (json-string)
939
940Example:
941
942-> { "execute": "block_passwd", "arguments": { "device": "ide0-hd0",
943 "password": "12345" } }
944<- { "return": {} }
945
727f005e
ZYW
946EQMP
947
948 {
949 .name = "block_set_io_throttle",
950 .args_type = "device:B,bps:l,bps_rd:l,bps_wr:l,iops:l,iops_rd:l,iops_wr:l",
80047da5 951 .mhandler.cmd_new = qmp_marshal_input_block_set_io_throttle,
727f005e
ZYW
952 },
953
954SQMP
955block_set_io_throttle
956------------
957
958Change I/O throttle limits for a block drive.
959
960Arguments:
961
962- "device": device name (json-string)
963- "bps": total throughput limit in bytes per second(json-int)
964- "bps_rd": read throughput limit in bytes per second(json-int)
965- "bps_wr": read throughput limit in bytes per second(json-int)
966- "iops": total I/O operations per second(json-int)
967- "iops_rd": read I/O operations per second(json-int)
968- "iops_wr": write I/O operations per second(json-int)
969
970Example:
971
972-> { "execute": "block_set_io_throttle", "arguments": { "device": "virtio0",
973 "bps": "1000000",
974 "bps_rd": "0",
975 "bps_wr": "0",
976 "iops": "0",
977 "iops_rd": "0",
978 "iops_wr": "0" } }
979<- { "return": {} }
980
7572150c
GH
981EQMP
982
983 {
984 .name = "set_password",
985 .args_type = "protocol:s,password:s,connected:s?",
fbf796fd 986 .mhandler.cmd_new = qmp_marshal_input_set_password,
7572150c
GH
987 },
988
989SQMP
990set_password
991------------
992
993Set the password for vnc/spice protocols.
994
995Arguments:
996
997- "protocol": protocol name (json-string)
998- "password": password (json-string)
999- "connected": [ keep | disconnect | fail ] (josn-string, optional)
1000
1001Example:
1002
1003-> { "execute": "set_password", "arguments": { "protocol": "vnc",
1004 "password": "secret" } }
1005<- { "return": {} }
1006
1007EQMP
1008
1009 {
1010 .name = "expire_password",
1011 .args_type = "protocol:s,time:s",
9ad5372d 1012 .mhandler.cmd_new = qmp_marshal_input_expire_password,
7572150c
GH
1013 },
1014
1015SQMP
1016expire_password
1017---------------
1018
1019Set the password expire time for vnc/spice protocols.
1020
1021Arguments:
1022
1023- "protocol": protocol name (json-string)
1024- "time": [ now | never | +secs | secs ] (json-string)
1025
1026Example:
1027
1028-> { "execute": "expire_password", "arguments": { "protocol": "vnc",
1029 "time": "+60" } }
1030<- { "return": {} }
1031
82a56f0d
LC
1032EQMP
1033
13661089
DB
1034 {
1035 .name = "add_client",
f1f5f407
DB
1036 .args_type = "protocol:s,fdname:s,skipauth:b?,tls:b?",
1037 .params = "protocol fdname skipauth tls",
13661089
DB
1038 .help = "add a graphics client",
1039 .user_print = monitor_user_noop,
1040 .mhandler.cmd_new = add_graphics_client,
1041 },
1042
1043SQMP
1044add_client
1045----------
1046
1047Add a graphics client
1048
1049Arguments:
1050
1051- "protocol": protocol name (json-string)
1052- "fdname": file descriptor name (json-string)
f1f5f407
DB
1053- "skipauth": whether to skip authentication (json-bool, optional)
1054- "tls": whether to perform TLS (json-bool, optional)
13661089
DB
1055
1056Example:
1057
1058-> { "execute": "add_client", "arguments": { "protocol": "vnc",
1059 "fdname": "myclient" } }
1060<- { "return": {} }
1061
1062EQMP
82a56f0d
LC
1063 {
1064 .name = "qmp_capabilities",
1065 .args_type = "",
1066 .params = "",
1067 .help = "enable QMP capabilities",
1068 .user_print = monitor_user_noop,
1069 .mhandler.cmd_new = do_qmp_capabilities,
1070 },
1071
1072SQMP
1073qmp_capabilities
1074----------------
1075
1076Enable QMP capabilities.
1077
1078Arguments: None.
1079
1080Example:
1081
1082-> { "execute": "qmp_capabilities" }
1083<- { "return": {} }
1084
1085Note: This command must be issued before issuing any other command.
1086
0268d97c
LC
1087EQMP
1088
1089 {
1090 .name = "human-monitor-command",
1091 .args_type = "command-line:s,cpu-index:i?",
d51a67b4 1092 .mhandler.cmd_new = qmp_marshal_input_human_monitor_command,
0268d97c
LC
1093 },
1094
1095SQMP
1096human-monitor-command
1097---------------------
1098
1099Execute a Human Monitor command.
1100
1101Arguments:
1102
1103- command-line: the command name and its arguments, just like the
1104 Human Monitor's shell (json-string)
1105- cpu-index: select the CPU number to be used by commands which access CPU
1106 data, like 'info registers'. The Monitor selects CPU 0 if this
1107 argument is not provided (json-int, optional)
1108
1109Example:
1110
1111-> { "execute": "human-monitor-command", "arguments": { "command-line": "info kvm" } }
1112<- { "return": "kvm support: enabled\r\n" }
1113
1114Notes:
1115
1116(1) The Human Monitor is NOT an stable interface, this means that command
1117 names, arguments and responses can change or be removed at ANY time.
1118 Applications that rely on long term stability guarantees should NOT
1119 use this command
1120
1121(2) Limitations:
1122
1123 o This command is stateless, this means that commands that depend
1124 on state information (such as getfd) might not work
1125
1126 o Commands that prompt the user for data (eg. 'cont' when the block
1127 device is encrypted) don't currently work
1128
82a56f0d
LC
11293. Query Commands
1130=================
1131
1132HXCOMM Each query command below is inside a SQMP/EQMP section, do NOT change
1133HXCOMM this! We will possibly move query commands definitions inside those
1134HXCOMM sections, just like regular commands.
1135
1136EQMP
1137
1138SQMP
1139query-version
1140-------------
1141
1142Show QEMU version.
1143
1144Return a json-object with the following information:
1145
1146- "qemu": A json-object containing three integer values:
1147 - "major": QEMU's major version (json-int)
1148 - "minor": QEMU's minor version (json-int)
1149 - "micro": QEMU's micro version (json-int)
1150- "package": package's version (json-string)
1151
1152Example:
1153
1154-> { "execute": "query-version" }
1155<- {
1156 "return":{
1157 "qemu":{
1158 "major":0,
1159 "minor":11,
1160 "micro":5
1161 },
1162 "package":""
1163 }
1164 }
1165
1166EQMP
1167
b9c15f16
LC
1168 {
1169 .name = "query-version",
1170 .args_type = "",
1171 .mhandler.cmd_new = qmp_marshal_input_query_version,
1172 },
1173
82a56f0d
LC
1174SQMP
1175query-commands
1176--------------
1177
1178List QMP available commands.
1179
1180Each command is represented by a json-object, the returned value is a json-array
1181of all commands.
1182
1183Each json-object contain:
1184
1185- "name": command's name (json-string)
1186
1187Example:
1188
1189-> { "execute": "query-commands" }
1190<- {
1191 "return":[
1192 {
1193 "name":"query-balloon"
1194 },
1195 {
1196 "name":"system_powerdown"
1197 }
1198 ]
1199 }
1200
1201Note: This example has been shortened as the real response is too long.
1202
1203EQMP
1204
aa9b79bc
LC
1205 {
1206 .name = "query-commands",
1207 .args_type = "",
1208 .mhandler.cmd_new = qmp_marshal_input_query_commands,
1209 },
1210
82a56f0d
LC
1211SQMP
1212query-chardev
1213-------------
1214
1215Each device is represented by a json-object. The returned value is a json-array
1216of all devices.
1217
1218Each json-object contain the following:
1219
1220- "label": device's label (json-string)
1221- "filename": device's file (json-string)
1222
1223Example:
1224
1225-> { "execute": "query-chardev" }
1226<- {
1227 "return":[
1228 {
1229 "label":"monitor",
1230 "filename":"stdio"
1231 },
1232 {
1233 "label":"serial0",
1234 "filename":"vc"
1235 }
1236 ]
1237 }
1238
1239EQMP
1240
c5a415a0
LC
1241 {
1242 .name = "query-chardev",
1243 .args_type = "",
1244 .mhandler.cmd_new = qmp_marshal_input_query_chardev,
1245 },
1246
82a56f0d
LC
1247SQMP
1248query-block
1249-----------
1250
1251Show the block devices.
1252
1253Each block device information is stored in a json-object and the returned value
1254is a json-array of all devices.
1255
1256Each json-object contain the following:
1257
1258- "device": device name (json-string)
1259- "type": device type (json-string)
d8aeeb31
MA
1260 - deprecated, retained for backward compatibility
1261 - Possible values: "unknown"
82a56f0d
LC
1262- "removable": true if the device is removable, false otherwise (json-bool)
1263- "locked": true if the device is locked, false otherwise (json-bool)
e4def80b
MA
1264- "tray-open": only present if removable, true if the device has a tray,
1265 and it is open (json-bool)
82a56f0d
LC
1266- "inserted": only present if the device is inserted, it is a json-object
1267 containing the following:
1268 - "file": device file name (json-string)
1269 - "ro": true if read-only, false otherwise (json-bool)
1270 - "drv": driver format name (json-string)
1271 - Possible values: "blkdebug", "bochs", "cloop", "cow", "dmg",
1272 "file", "file", "ftp", "ftps", "host_cdrom",
1273 "host_device", "host_floppy", "http", "https",
1274 "nbd", "parallels", "qcow", "qcow2", "raw",
1275 "tftp", "vdi", "vmdk", "vpc", "vvfat"
1276 - "backing_file": backing file name (json-string, optional)
1277 - "encrypted": true if encrypted, false otherwise (json-bool)
727f005e
ZYW
1278 - "bps": limit total bytes per second (json-int)
1279 - "bps_rd": limit read bytes per second (json-int)
1280 - "bps_wr": limit write bytes per second (json-int)
1281 - "iops": limit total I/O operations per second (json-int)
1282 - "iops_rd": limit read operations per second (json-int)
1283 - "iops_wr": limit write operations per second (json-int)
1284
f04ef601
LC
1285- "io-status": I/O operation status, only present if the device supports it
1286 and the VM is configured to stop on errors. It's always reset
1287 to "ok" when the "cont" command is issued (json_string, optional)
1288 - Possible values: "ok", "failed", "nospace"
82a56f0d
LC
1289
1290Example:
1291
1292-> { "execute": "query-block" }
1293<- {
1294 "return":[
1295 {
f04ef601 1296 "io-status": "ok",
82a56f0d
LC
1297 "device":"ide0-hd0",
1298 "locked":false,
1299 "removable":false,
1300 "inserted":{
1301 "ro":false,
1302 "drv":"qcow2",
1303 "encrypted":false,
727f005e
ZYW
1304 "file":"disks/test.img",
1305 "bps":1000000,
1306 "bps_rd":0,
1307 "bps_wr":0,
1308 "iops":1000000,
1309 "iops_rd":0,
1310 "iops_wr":0,
82a56f0d 1311 },
d8aeeb31 1312 "type":"unknown"
82a56f0d
LC
1313 },
1314 {
f04ef601 1315 "io-status": "ok",
82a56f0d
LC
1316 "device":"ide1-cd0",
1317 "locked":false,
1318 "removable":true,
d8aeeb31 1319 "type":"unknown"
82a56f0d
LC
1320 },
1321 {
1322 "device":"floppy0",
1323 "locked":false,
1324 "removable":true,
d8aeeb31 1325 "type":"unknown"
82a56f0d
LC
1326 },
1327 {
1328 "device":"sd0",
1329 "locked":false,
1330 "removable":true,
d8aeeb31 1331 "type":"unknown"
82a56f0d
LC
1332 }
1333 ]
1334 }
1335
1336EQMP
1337
b2023818
LC
1338 {
1339 .name = "query-block",
1340 .args_type = "",
1341 .mhandler.cmd_new = qmp_marshal_input_query_block,
1342 },
1343
82a56f0d
LC
1344SQMP
1345query-blockstats
1346----------------
1347
1348Show block device statistics.
1349
1350Each device statistic information is stored in a json-object and the returned
1351value is a json-array of all devices.
1352
1353Each json-object contain the following:
1354
1355- "device": device name (json-string)
1356- "stats": A json-object with the statistics information, it contains:
1357 - "rd_bytes": bytes read (json-int)
1358 - "wr_bytes": bytes written (json-int)
1359 - "rd_operations": read operations (json-int)
1360 - "wr_operations": write operations (json-int)
e8045d67 1361 - "flush_operations": cache flush operations (json-int)
c488c7f6
CH
1362 - "wr_total_time_ns": total time spend on writes in nano-seconds (json-int)
1363 - "rd_total_time_ns": total time spend on reads in nano-seconds (json-int)
1364 - "flush_total_time_ns": total time spend on cache flushes in nano-seconds (json-int)
82a56f0d
LC
1365 - "wr_highest_offset": Highest offset of a sector written since the
1366 BlockDriverState has been opened (json-int)
1367- "parent": Contains recursively the statistics of the underlying
1368 protocol (e.g. the host file for a qcow2 image). If there is
1369 no underlying protocol, this field is omitted
1370 (json-object, optional)
1371
1372Example:
1373
1374-> { "execute": "query-blockstats" }
1375<- {
1376 "return":[
1377 {
1378 "device":"ide0-hd0",
1379 "parent":{
1380 "stats":{
1381 "wr_highest_offset":3686448128,
1382 "wr_bytes":9786368,
1383 "wr_operations":751,
1384 "rd_bytes":122567168,
1385 "rd_operations":36772
c488c7f6
CH
1386 "wr_total_times_ns":313253456
1387 "rd_total_times_ns":3465673657
1388 "flush_total_times_ns":49653
e8045d67 1389 "flush_operations":61,
82a56f0d
LC
1390 }
1391 },
1392 "stats":{
1393 "wr_highest_offset":2821110784,
1394 "wr_bytes":9786368,
1395 "wr_operations":692,
1396 "rd_bytes":122739200,
1397 "rd_operations":36604
e8045d67 1398 "flush_operations":51,
c488c7f6
CH
1399 "wr_total_times_ns":313253456
1400 "rd_total_times_ns":3465673657
1401 "flush_total_times_ns":49653
82a56f0d
LC
1402 }
1403 },
1404 {
1405 "device":"ide1-cd0",
1406 "stats":{
1407 "wr_highest_offset":0,
1408 "wr_bytes":0,
1409 "wr_operations":0,
1410 "rd_bytes":0,
1411 "rd_operations":0
e8045d67 1412 "flush_operations":0,
c488c7f6
CH
1413 "wr_total_times_ns":0
1414 "rd_total_times_ns":0
1415 "flush_total_times_ns":0
82a56f0d
LC
1416 }
1417 },
1418 {
1419 "device":"floppy0",
1420 "stats":{
1421 "wr_highest_offset":0,
1422 "wr_bytes":0,
1423 "wr_operations":0,
1424 "rd_bytes":0,
1425 "rd_operations":0
e8045d67 1426 "flush_operations":0,
c488c7f6
CH
1427 "wr_total_times_ns":0
1428 "rd_total_times_ns":0
1429 "flush_total_times_ns":0
82a56f0d
LC
1430 }
1431 },
1432 {
1433 "device":"sd0",
1434 "stats":{
1435 "wr_highest_offset":0,
1436 "wr_bytes":0,
1437 "wr_operations":0,
1438 "rd_bytes":0,
1439 "rd_operations":0
e8045d67 1440 "flush_operations":0,
c488c7f6
CH
1441 "wr_total_times_ns":0
1442 "rd_total_times_ns":0
1443 "flush_total_times_ns":0
82a56f0d
LC
1444 }
1445 }
1446 ]
1447 }
1448
1449EQMP
1450
f11f57e4
LC
1451 {
1452 .name = "query-blockstats",
1453 .args_type = "",
1454 .mhandler.cmd_new = qmp_marshal_input_query_blockstats,
1455 },
1456
82a56f0d
LC
1457SQMP
1458query-cpus
1459----------
1460
1461Show CPU information.
1462
1463Return a json-array. Each CPU is represented by a json-object, which contains:
1464
1465- "CPU": CPU index (json-int)
1466- "current": true if this is the current CPU, false otherwise (json-bool)
1467- "halted": true if the cpu is halted, false otherwise (json-bool)
1468- Current program counter. The key's name depends on the architecture:
1469 "pc": i386/x86_64 (json-int)
1470 "nip": PPC (json-int)
1471 "pc" and "npc": sparc (json-int)
1472 "PC": mips (json-int)
dc7a09cf 1473- "thread_id": ID of the underlying host thread (json-int)
82a56f0d
LC
1474
1475Example:
1476
1477-> { "execute": "query-cpus" }
1478<- {
1479 "return":[
1480 {
1481 "CPU":0,
1482 "current":true,
1483 "halted":false,
1484 "pc":3227107138
dc7a09cf 1485 "thread_id":3134
82a56f0d
LC
1486 },
1487 {
1488 "CPU":1,
1489 "current":false,
1490 "halted":true,
1491 "pc":7108165
dc7a09cf 1492 "thread_id":3135
82a56f0d
LC
1493 }
1494 ]
1495 }
1496
1497EQMP
1498
de0b36b6
LC
1499 {
1500 .name = "query-cpus",
1501 .args_type = "",
1502 .mhandler.cmd_new = qmp_marshal_input_query_cpus,
1503 },
1504
82a56f0d
LC
1505SQMP
1506query-pci
1507---------
1508
1509PCI buses and devices information.
1510
1511The returned value is a json-array of all buses. Each bus is represented by
1512a json-object, which has a key with a json-array of all PCI devices attached
1513to it. Each device is represented by a json-object.
1514
1515The bus json-object contains the following:
1516
1517- "bus": bus number (json-int)
1518- "devices": a json-array of json-objects, each json-object represents a
1519 PCI device
1520
1521The PCI device json-object contains the following:
1522
1523- "bus": identical to the parent's bus number (json-int)
1524- "slot": slot number (json-int)
1525- "function": function number (json-int)
1526- "class_info": a json-object containing:
1527 - "desc": device class description (json-string, optional)
1528 - "class": device class number (json-int)
1529- "id": a json-object containing:
1530 - "device": device ID (json-int)
1531 - "vendor": vendor ID (json-int)
1532- "irq": device's IRQ if assigned (json-int, optional)
1533- "qdev_id": qdev id string (json-string)
1534- "pci_bridge": It's a json-object, only present if this device is a
1535 PCI bridge, contains:
1536 - "bus": bus number (json-int)
1537 - "secondary": secondary bus number (json-int)
1538 - "subordinate": subordinate bus number (json-int)
1539 - "io_range": I/O memory range information, a json-object with the
1540 following members:
1541 - "base": base address, in bytes (json-int)
1542 - "limit": limit address, in bytes (json-int)
1543 - "memory_range": memory range information, a json-object with the
1544 following members:
1545 - "base": base address, in bytes (json-int)
1546 - "limit": limit address, in bytes (json-int)
1547 - "prefetchable_range": Prefetchable memory range information, a
1548 json-object with the following members:
1549 - "base": base address, in bytes (json-int)
1550 - "limit": limit address, in bytes (json-int)
1551 - "devices": a json-array of PCI devices if there's any attached, each
1552 each element is represented by a json-object, which contains
1553 the same members of the 'PCI device json-object' described
1554 above (optional)
1555- "regions": a json-array of json-objects, each json-object represents a
1556 memory region of this device
1557
1558The memory range json-object contains the following:
1559
1560- "base": base memory address (json-int)
1561- "limit": limit value (json-int)
1562
1563The region json-object can be an I/O region or a memory region, an I/O region
1564json-object contains the following:
1565
1566- "type": "io" (json-string, fixed)
1567- "bar": BAR number (json-int)
1568- "address": memory address (json-int)
1569- "size": memory size (json-int)
1570
1571A memory region json-object contains the following:
1572
1573- "type": "memory" (json-string, fixed)
1574- "bar": BAR number (json-int)
1575- "address": memory address (json-int)
1576- "size": memory size (json-int)
1577- "mem_type_64": true or false (json-bool)
1578- "prefetch": true or false (json-bool)
1579
1580Example:
1581
1582-> { "execute": "query-pci" }
1583<- {
1584 "return":[
1585 {
1586 "bus":0,
1587 "devices":[
1588 {
1589 "bus":0,
1590 "qdev_id":"",
1591 "slot":0,
1592 "class_info":{
1593 "class":1536,
1594 "desc":"Host bridge"
1595 },
1596 "id":{
1597 "device":32902,
1598 "vendor":4663
1599 },
1600 "function":0,
1601 "regions":[
1602
1603 ]
1604 },
1605 {
1606 "bus":0,
1607 "qdev_id":"",
1608 "slot":1,
1609 "class_info":{
1610 "class":1537,
1611 "desc":"ISA bridge"
1612 },
1613 "id":{
1614 "device":32902,
1615 "vendor":28672
1616 },
1617 "function":0,
1618 "regions":[
1619
1620 ]
1621 },
1622 {
1623 "bus":0,
1624 "qdev_id":"",
1625 "slot":1,
1626 "class_info":{
1627 "class":257,
1628 "desc":"IDE controller"
1629 },
1630 "id":{
1631 "device":32902,
1632 "vendor":28688
1633 },
1634 "function":1,
1635 "regions":[
1636 {
1637 "bar":4,
1638 "size":16,
1639 "address":49152,
1640 "type":"io"
1641 }
1642 ]
1643 },
1644 {
1645 "bus":0,
1646 "qdev_id":"",
1647 "slot":2,
1648 "class_info":{
1649 "class":768,
1650 "desc":"VGA controller"
1651 },
1652 "id":{
1653 "device":4115,
1654 "vendor":184
1655 },
1656 "function":0,
1657 "regions":[
1658 {
1659 "prefetch":true,
1660 "mem_type_64":false,
1661 "bar":0,
1662 "size":33554432,
1663 "address":4026531840,
1664 "type":"memory"
1665 },
1666 {
1667 "prefetch":false,
1668 "mem_type_64":false,
1669 "bar":1,
1670 "size":4096,
1671 "address":4060086272,
1672 "type":"memory"
1673 },
1674 {
1675 "prefetch":false,
1676 "mem_type_64":false,
1677 "bar":6,
1678 "size":65536,
1679 "address":-1,
1680 "type":"memory"
1681 }
1682 ]
1683 },
1684 {
1685 "bus":0,
1686 "qdev_id":"",
1687 "irq":11,
1688 "slot":4,
1689 "class_info":{
1690 "class":1280,
1691 "desc":"RAM controller"
1692 },
1693 "id":{
1694 "device":6900,
1695 "vendor":4098
1696 },
1697 "function":0,
1698 "regions":[
1699 {
1700 "bar":0,
1701 "size":32,
1702 "address":49280,
1703 "type":"io"
1704 }
1705 ]
1706 }
1707 ]
1708 }
1709 ]
1710 }
1711
1712Note: This example has been shortened as the real response is too long.
1713
1714EQMP
1715
79627472
LC
1716 {
1717 .name = "query-pci",
1718 .args_type = "",
1719 .mhandler.cmd_new = qmp_marshal_input_query_pci,
1720 },
1721
82a56f0d
LC
1722SQMP
1723query-kvm
1724---------
1725
1726Show KVM information.
1727
1728Return a json-object with the following information:
1729
1730- "enabled": true if KVM support is enabled, false otherwise (json-bool)
1731- "present": true if QEMU has KVM support, false otherwise (json-bool)
1732
1733Example:
1734
1735-> { "execute": "query-kvm" }
1736<- { "return": { "enabled": true, "present": true } }
1737
1738EQMP
1739
292a2602
LC
1740 {
1741 .name = "query-kvm",
1742 .args_type = "",
1743 .mhandler.cmd_new = qmp_marshal_input_query_kvm,
1744 },
1745
82a56f0d
LC
1746SQMP
1747query-status
1748------------
1749
1750Return a json-object with the following information:
1751
1752- "running": true if the VM is running, or false if it is paused (json-bool)
1753- "singlestep": true if the VM is in single step mode,
1754 false otherwise (json-bool)
9e37b9dc
LC
1755- "status": one of the following values (json-string)
1756 "debug" - QEMU is running on a debugger
1757 "inmigrate" - guest is paused waiting for an incoming migration
1758 "internal-error" - An internal error that prevents further guest
1759 execution has occurred
1760 "io-error" - the last IOP has failed and the device is configured
1761 to pause on I/O errors
1762 "paused" - guest has been paused via the 'stop' command
1763 "postmigrate" - guest is paused following a successful 'migrate'
1764 "prelaunch" - QEMU was started with -S and guest has not started
1765 "finish-migrate" - guest is paused to finish the migration process
1766 "restore-vm" - guest is paused to restore VM state
1767 "running" - guest is actively running
1768 "save-vm" - guest is paused to save the VM state
1769 "shutdown" - guest is shut down (and -no-shutdown is in use)
1770 "watchdog" - the watchdog action is configured to pause and
1771 has been triggered
82a56f0d
LC
1772
1773Example:
1774
1775-> { "execute": "query-status" }
9e37b9dc 1776<- { "return": { "running": true, "singlestep": false, "status": "running" } }
82a56f0d
LC
1777
1778EQMP
1fa9a5e4
LC
1779
1780 {
1781 .name = "query-status",
1782 .args_type = "",
1783 .mhandler.cmd_new = qmp_marshal_input_query_status,
1784 },
82a56f0d
LC
1785
1786SQMP
1787query-mice
1788----------
1789
1790Show VM mice information.
1791
1792Each mouse is represented by a json-object, the returned value is a json-array
1793of all mice.
1794
1795The mouse json-object contains the following:
1796
1797- "name": mouse's name (json-string)
1798- "index": mouse's index (json-int)
1799- "current": true if this mouse is receiving events, false otherwise (json-bool)
1800- "absolute": true if the mouse generates absolute input events (json-bool)
1801
1802Example:
1803
1804-> { "execute": "query-mice" }
1805<- {
1806 "return":[
1807 {
1808 "name":"QEMU Microsoft Mouse",
1809 "index":0,
1810 "current":false,
1811 "absolute":false
1812 },
1813 {
1814 "name":"QEMU PS/2 Mouse",
1815 "index":1,
1816 "current":true,
1817 "absolute":true
1818 }
1819 ]
1820 }
1821
1822EQMP
1823
e235cec3
LC
1824 {
1825 .name = "query-mice",
1826 .args_type = "",
1827 .mhandler.cmd_new = qmp_marshal_input_query_mice,
1828 },
1829
82a56f0d
LC
1830SQMP
1831query-vnc
1832---------
1833
1834Show VNC server information.
1835
1836Return a json-object with server information. Connected clients are returned
1837as a json-array of json-objects.
1838
1839The main json-object contains the following:
1840
1841- "enabled": true or false (json-bool)
1842- "host": server's IP address (json-string)
1843- "family": address family (json-string)
1844 - Possible values: "ipv4", "ipv6", "unix", "unknown"
1845- "service": server's port number (json-string)
1846- "auth": authentication method (json-string)
1847 - Possible values: "invalid", "none", "ra2", "ra2ne", "sasl", "tight",
1848 "tls", "ultra", "unknown", "vencrypt", "vencrypt",
1849 "vencrypt+plain", "vencrypt+tls+none",
1850 "vencrypt+tls+plain", "vencrypt+tls+sasl",
1851 "vencrypt+tls+vnc", "vencrypt+x509+none",
1852 "vencrypt+x509+plain", "vencrypt+x509+sasl",
1853 "vencrypt+x509+vnc", "vnc"
1854- "clients": a json-array of all connected clients
1855
1856Clients are described by a json-object, each one contain the following:
1857
1858- "host": client's IP address (json-string)
1859- "family": address family (json-string)
1860 - Possible values: "ipv4", "ipv6", "unix", "unknown"
1861- "service": client's port number (json-string)
1862- "x509_dname": TLS dname (json-string, optional)
1863- "sasl_username": SASL username (json-string, optional)
1864
1865Example:
1866
1867-> { "execute": "query-vnc" }
1868<- {
1869 "return":{
1870 "enabled":true,
1871 "host":"0.0.0.0",
1872 "service":"50402",
1873 "auth":"vnc",
1874 "family":"ipv4",
1875 "clients":[
1876 {
1877 "host":"127.0.0.1",
1878 "service":"50401",
1879 "family":"ipv4"
1880 }
1881 ]
1882 }
1883 }
1884
1885EQMP
1886
2b54aa87
LC
1887 {
1888 .name = "query-vnc",
1889 .args_type = "",
1890 .mhandler.cmd_new = qmp_marshal_input_query_vnc,
1891 },
1892
cb42a870
GH
1893SQMP
1894query-spice
1895-----------
1896
1897Show SPICE server information.
1898
1899Return a json-object with server information. Connected clients are returned
1900as a json-array of json-objects.
1901
1902The main json-object contains the following:
1903
1904- "enabled": true or false (json-bool)
1905- "host": server's IP address (json-string)
1906- "port": server's port number (json-int, optional)
1907- "tls-port": server's port number (json-int, optional)
1908- "auth": authentication method (json-string)
1909 - Possible values: "none", "spice"
1910- "channels": a json-array of all active channels clients
1911
1912Channels are described by a json-object, each one contain the following:
1913
1914- "host": client's IP address (json-string)
1915- "family": address family (json-string)
1916 - Possible values: "ipv4", "ipv6", "unix", "unknown"
1917- "port": client's port number (json-string)
1918- "connection-id": spice connection id. All channels with the same id
1919 belong to the same spice session (json-int)
1920- "channel-type": channel type. "1" is the main control channel, filter for
1921 this one if you want track spice sessions only (json-int)
1922- "channel-id": channel id. Usually "0", might be different needed when
1923 multiple channels of the same type exist, such as multiple
1924 display channels in a multihead setup (json-int)
1925- "tls": whevener the channel is encrypted (json-bool)
1926
1927Example:
1928
1929-> { "execute": "query-spice" }
1930<- {
1931 "return": {
1932 "enabled": true,
1933 "auth": "spice",
1934 "port": 5920,
1935 "tls-port": 5921,
1936 "host": "0.0.0.0",
1937 "channels": [
1938 {
1939 "port": "54924",
1940 "family": "ipv4",
1941 "channel-type": 1,
1942 "connection-id": 1804289383,
1943 "host": "127.0.0.1",
1944 "channel-id": 0,
1945 "tls": true
1946 },
1947 {
1948 "port": "36710",
1949 "family": "ipv4",
1950 "channel-type": 4,
1951 "connection-id": 1804289383,
1952 "host": "127.0.0.1",
1953 "channel-id": 0,
1954 "tls": false
1955 },
1956 [ ... more channels follow ... ]
1957 ]
1958 }
1959 }
1960
1961EQMP
1962
d1f29646
LC
1963#if defined(CONFIG_SPICE)
1964 {
1965 .name = "query-spice",
1966 .args_type = "",
1967 .mhandler.cmd_new = qmp_marshal_input_query_spice,
1968 },
1969#endif
1970
82a56f0d
LC
1971SQMP
1972query-name
1973----------
1974
1975Show VM name.
1976
1977Return a json-object with the following information:
1978
1979- "name": VM's name (json-string, optional)
1980
1981Example:
1982
1983-> { "execute": "query-name" }
1984<- { "return": { "name": "qemu-name" } }
1985
1986EQMP
1987
48a32bed
AL
1988 {
1989 .name = "query-name",
1990 .args_type = "",
1991 .mhandler.cmd_new = qmp_marshal_input_query_name,
1992 },
1993
82a56f0d
LC
1994SQMP
1995query-uuid
1996----------
1997
1998Show VM UUID.
1999
2000Return a json-object with the following information:
2001
2002- "UUID": Universally Unique Identifier (json-string)
2003
2004Example:
2005
2006-> { "execute": "query-uuid" }
2007<- { "return": { "UUID": "550e8400-e29b-41d4-a716-446655440000" } }
2008
2009EQMP
2010
efab767e
LC
2011 {
2012 .name = "query-uuid",
2013 .args_type = "",
2014 .mhandler.cmd_new = qmp_marshal_input_query_uuid,
2015 },
2016
82a56f0d
LC
2017SQMP
2018query-migrate
2019-------------
2020
2021Migration status.
2022
2023Return a json-object. If migration is active there will be another json-object
2024with RAM migration status and if block migration is active another one with
2025block migration status.
2026
2027The main json-object contains the following:
2028
2029- "status": migration status (json-string)
2030 - Possible values: "active", "completed", "failed", "cancelled"
2031- "ram": only present if "status" is "active", it is a json-object with the
2032 following RAM information (in bytes):
2033 - "transferred": amount transferred (json-int)
2034 - "remaining": amount remaining (json-int)
2035 - "total": total (json-int)
2036- "disk": only present if "status" is "active" and it is a block migration,
2037 it is a json-object with the following disk information (in bytes):
2038 - "transferred": amount transferred (json-int)
2039 - "remaining": amount remaining (json-int)
2040 - "total": total (json-int)
2041
2042Examples:
2043
20441. Before the first migration
2045
2046-> { "execute": "query-migrate" }
2047<- { "return": {} }
2048
20492. Migration is done and has succeeded
2050
2051-> { "execute": "query-migrate" }
2052<- { "return": { "status": "completed" } }
2053
20543. Migration is done and has failed
2055
2056-> { "execute": "query-migrate" }
2057<- { "return": { "status": "failed" } }
2058
20594. Migration is being performed and is not a block migration:
2060
2061-> { "execute": "query-migrate" }
2062<- {
2063 "return":{
2064 "status":"active",
2065 "ram":{
2066 "transferred":123,
2067 "remaining":123,
2068 "total":246
2069 }
2070 }
2071 }
2072
20735. Migration is being performed and is a block migration:
2074
2075-> { "execute": "query-migrate" }
2076<- {
2077 "return":{
2078 "status":"active",
2079 "ram":{
2080 "total":1057024,
2081 "remaining":1053304,
2082 "transferred":3720
2083 },
2084 "disk":{
2085 "total":20971520,
2086 "remaining":20880384,
2087 "transferred":91136
2088 }
2089 }
2090 }
2091
2092EQMP
2093
791e7c82
LC
2094 {
2095 .name = "query-migrate",
2096 .args_type = "",
2097 .mhandler.cmd_new = qmp_marshal_input_query_migrate,
2098 },
2099
82a56f0d
LC
2100SQMP
2101query-balloon
2102-------------
2103
2104Show balloon information.
2105
2106Make an asynchronous request for balloon info. When the request completes a
2107json-object will be returned containing the following data:
2108
2109- "actual": current balloon value in bytes (json-int)
2110- "mem_swapped_in": Amount of memory swapped in bytes (json-int, optional)
2111- "mem_swapped_out": Amount of memory swapped out in bytes (json-int, optional)
2112- "major_page_faults": Number of major faults (json-int, optional)
2113- "minor_page_faults": Number of minor faults (json-int, optional)
2114- "free_mem": Total amount of free and unused memory in
2115 bytes (json-int, optional)
2116- "total_mem": Total amount of available memory in bytes (json-int, optional)
2117
2118Example:
2119
2120-> { "execute": "query-balloon" }
2121<- {
2122 "return":{
2123 "actual":1073741824,
2124 "mem_swapped_in":0,
2125 "mem_swapped_out":0,
2126 "major_page_faults":142,
2127 "minor_page_faults":239245,
2128 "free_mem":1014185984,
2129 "total_mem":1044668416
2130 }
2131 }
2132
2133EQMP
2134
96637bcd
LC
2135 {
2136 .name = "query-balloon",
2137 .args_type = "",
2138 .mhandler.cmd_new = qmp_marshal_input_query_balloon,
2139 },
b4b12c62 2140
fb5458cd
SH
2141 {
2142 .name = "query-block-jobs",
2143 .args_type = "",
2144 .mhandler.cmd_new = qmp_marshal_input_query_block_jobs,
2145 },
2146
b4b12c62
AL
2147 {
2148 .name = "qom-list",
2149 .args_type = "path:s",
2150 .mhandler.cmd_new = qmp_marshal_input_qom_list,
2151 },
eb6e8ea5
AL
2152
2153 {
2154 .name = "qom-set",
b9f8978c 2155 .args_type = "path:s,property:s,value:q",
eb6e8ea5
AL
2156 .mhandler.cmd_new = qmp_qom_set,
2157 },
2158
2159 {
2160 .name = "qom-get",
2161 .args_type = "path:s,property:s",
2162 .mhandler.cmd_new = qmp_qom_get,
2163 },
270b243f
LC
2164
2165 {
2166 .name = "change-vnc-password",
2167 .args_type = "password:s",
2168 .mhandler.cmd_new = qmp_marshal_input_change_vnc_password,
2169 },
5eeee3fa
AL
2170 {
2171 .name = "qom-list-types",
2172 .args_type = "implements:s?,abstract:b?",
2173 .mhandler.cmd_new = qmp_marshal_input_qom_list_types,
2174 },