4 * Copyright (c) 2003-2008 Fabrice Bellard
5 * Copyright (c) 2009-2015 Red Hat Inc
8 * Juan Quintela <quintela@redhat.com>
10 * Permission is hereby granted, free of charge, to any person obtaining a copy
11 * of this software and associated documentation files (the "Software"), to deal
12 * in the Software without restriction, including without limitation the rights
13 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
14 * copies of the Software, and to permit persons to whom the Software is
15 * furnished to do so, subject to the following conditions:
17 * The above copyright notice and this permission notice shall be included in
18 * all copies or substantial portions of the Software.
20 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
21 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
23 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
24 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
25 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
29 #include "qemu/osdep.h"
30 #include "hw/boards.h"
33 #include "hw/xen/xen.h"
35 #include "sysemu/sysemu.h"
36 #include "qemu/timer.h"
37 #include "migration.h"
38 #include "migration/snapshot.h"
39 #include "migration/misc.h"
40 #include "migration/register.h"
41 #include "migration/global_state.h"
43 #include "qemu-file-channel.h"
44 #include "qemu-file.h"
46 #include "postcopy-ram.h"
47 #include "qapi/qmp/qerror.h"
48 #include "qemu/error-report.h"
49 #include "qemu/queue.h"
50 #include "sysemu/cpus.h"
51 #include "exec/memory.h"
52 #include "exec/target_page.h"
53 #include "qmp-commands.h"
55 #include "qemu/bitops.h"
57 #include "block/snapshot.h"
58 #include "qemu/cutils.h"
59 #include "io/channel-buffer.h"
60 #include "io/channel-file.h"
63 #define ETH_P_RARP 0x8035
65 #define ARP_HTYPE_ETH 0x0001
66 #define ARP_PTYPE_IP 0x0800
67 #define ARP_OP_REQUEST_REV 0x3
69 const unsigned int postcopy_ram_discard_version
= 0;
71 static bool skip_section_footers
;
73 /* Subcommands for QEMU_VM_COMMAND */
75 MIG_CMD_INVALID
= 0, /* Must be 0 */
76 MIG_CMD_OPEN_RETURN_PATH
, /* Tell the dest to open the Return path */
77 MIG_CMD_PING
, /* Request a PONG on the RP */
79 MIG_CMD_POSTCOPY_ADVISE
, /* Prior to any page transfers, just
80 warn we might want to do PC */
81 MIG_CMD_POSTCOPY_LISTEN
, /* Start listening for incoming
82 pages as it's running. */
83 MIG_CMD_POSTCOPY_RUN
, /* Start execution */
85 MIG_CMD_POSTCOPY_RAM_DISCARD
, /* A list of pages to discard that
86 were previously sent during
87 precopy but are dirty. */
88 MIG_CMD_PACKAGED
, /* Send a wrapped stream within this stream */
92 #define MAX_VM_CMD_PACKAGED_SIZE (1ul << 24)
93 static struct mig_cmd_args
{
94 ssize_t len
; /* -1 = variable */
97 [MIG_CMD_INVALID
] = { .len
= -1, .name
= "INVALID" },
98 [MIG_CMD_OPEN_RETURN_PATH
] = { .len
= 0, .name
= "OPEN_RETURN_PATH" },
99 [MIG_CMD_PING
] = { .len
= sizeof(uint32_t), .name
= "PING" },
100 [MIG_CMD_POSTCOPY_ADVISE
] = { .len
= 16, .name
= "POSTCOPY_ADVISE" },
101 [MIG_CMD_POSTCOPY_LISTEN
] = { .len
= 0, .name
= "POSTCOPY_LISTEN" },
102 [MIG_CMD_POSTCOPY_RUN
] = { .len
= 0, .name
= "POSTCOPY_RUN" },
103 [MIG_CMD_POSTCOPY_RAM_DISCARD
] = {
104 .len
= -1, .name
= "POSTCOPY_RAM_DISCARD" },
105 [MIG_CMD_PACKAGED
] = { .len
= 4, .name
= "PACKAGED" },
106 [MIG_CMD_MAX
] = { .len
= -1, .name
= "MAX" },
109 static int announce_self_create(uint8_t *buf
,
112 /* Ethernet header. */
113 memset(buf
, 0xff, 6); /* destination MAC addr */
114 memcpy(buf
+ 6, mac_addr
, 6); /* source MAC addr */
115 *(uint16_t *)(buf
+ 12) = htons(ETH_P_RARP
); /* ethertype */
118 *(uint16_t *)(buf
+ 14) = htons(ARP_HTYPE_ETH
); /* hardware addr space */
119 *(uint16_t *)(buf
+ 16) = htons(ARP_PTYPE_IP
); /* protocol addr space */
120 *(buf
+ 18) = 6; /* hardware addr length (ethernet) */
121 *(buf
+ 19) = 4; /* protocol addr length (IPv4) */
122 *(uint16_t *)(buf
+ 20) = htons(ARP_OP_REQUEST_REV
); /* opcode */
123 memcpy(buf
+ 22, mac_addr
, 6); /* source hw addr */
124 memset(buf
+ 28, 0x00, 4); /* source protocol addr */
125 memcpy(buf
+ 32, mac_addr
, 6); /* target hw addr */
126 memset(buf
+ 38, 0x00, 4); /* target protocol addr */
128 /* Padding to get up to 60 bytes (ethernet min packet size, minus FCS). */
129 memset(buf
+ 42, 0x00, 18);
131 return 60; /* len (FCS will be added by hardware) */
134 static void qemu_announce_self_iter(NICState
*nic
, void *opaque
)
139 trace_qemu_announce_self_iter(qemu_ether_ntoa(&nic
->conf
->macaddr
));
140 len
= announce_self_create(buf
, nic
->conf
->macaddr
.a
);
142 qemu_send_packet_raw(qemu_get_queue(nic
), buf
, len
);
146 static void qemu_announce_self_once(void *opaque
)
148 static int count
= SELF_ANNOUNCE_ROUNDS
;
149 QEMUTimer
*timer
= *(QEMUTimer
**)opaque
;
151 qemu_foreach_nic(qemu_announce_self_iter
, NULL
);
154 /* delay 50ms, 150ms, 250ms, ... */
155 timer_mod(timer
, qemu_clock_get_ms(QEMU_CLOCK_REALTIME
) +
156 self_announce_delay(count
));
163 void qemu_announce_self(void)
165 static QEMUTimer
*timer
;
166 timer
= timer_new_ms(QEMU_CLOCK_REALTIME
, qemu_announce_self_once
, &timer
);
167 qemu_announce_self_once(&timer
);
170 /***********************************************************/
171 /* savevm/loadvm support */
173 static ssize_t
block_writev_buffer(void *opaque
, struct iovec
*iov
, int iovcnt
,
179 qemu_iovec_init_external(&qiov
, iov
, iovcnt
);
180 ret
= bdrv_writev_vmstate(opaque
, &qiov
, pos
);
188 static ssize_t
block_get_buffer(void *opaque
, uint8_t *buf
, int64_t pos
,
191 return bdrv_load_vmstate(opaque
, buf
, pos
, size
);
194 static int bdrv_fclose(void *opaque
)
196 return bdrv_flush(opaque
);
199 static const QEMUFileOps bdrv_read_ops
= {
200 .get_buffer
= block_get_buffer
,
204 static const QEMUFileOps bdrv_write_ops
= {
205 .writev_buffer
= block_writev_buffer
,
209 static QEMUFile
*qemu_fopen_bdrv(BlockDriverState
*bs
, int is_writable
)
212 return qemu_fopen_ops(bs
, &bdrv_write_ops
);
214 return qemu_fopen_ops(bs
, &bdrv_read_ops
);
218 /* QEMUFile timer support.
219 * Not in qemu-file.c to not add qemu-timer.c as dependency to qemu-file.c
222 void timer_put(QEMUFile
*f
, QEMUTimer
*ts
)
224 uint64_t expire_time
;
226 expire_time
= timer_expire_time_ns(ts
);
227 qemu_put_be64(f
, expire_time
);
230 void timer_get(QEMUFile
*f
, QEMUTimer
*ts
)
232 uint64_t expire_time
;
234 expire_time
= qemu_get_be64(f
);
235 if (expire_time
!= -1) {
236 timer_mod_ns(ts
, expire_time
);
243 /* VMState timer support.
244 * Not in vmstate.c to not add qemu-timer.c as dependency to vmstate.c
247 static int get_timer(QEMUFile
*f
, void *pv
, size_t size
, VMStateField
*field
)
254 static int put_timer(QEMUFile
*f
, void *pv
, size_t size
, VMStateField
*field
,
263 const VMStateInfo vmstate_info_timer
= {
270 typedef struct CompatEntry
{
275 typedef struct SaveStateEntry
{
276 QTAILQ_ENTRY(SaveStateEntry
) entry
;
281 /* version id read from the stream */
284 /* section id read from the stream */
287 const VMStateDescription
*vmsd
;
293 typedef struct SaveState
{
294 QTAILQ_HEAD(, SaveStateEntry
) handlers
;
295 int global_section_id
;
296 bool skip_configuration
;
299 uint32_t target_page_bits
;
302 static SaveState savevm_state
= {
303 .handlers
= QTAILQ_HEAD_INITIALIZER(savevm_state
.handlers
),
304 .global_section_id
= 0,
305 .skip_configuration
= false,
308 void savevm_skip_configuration(void)
310 savevm_state
.skip_configuration
= true;
314 static void configuration_pre_save(void *opaque
)
316 SaveState
*state
= opaque
;
317 const char *current_name
= MACHINE_GET_CLASS(current_machine
)->name
;
319 state
->len
= strlen(current_name
);
320 state
->name
= current_name
;
321 state
->target_page_bits
= qemu_target_page_bits();
324 static int configuration_pre_load(void *opaque
)
326 SaveState
*state
= opaque
;
328 /* If there is no target-page-bits subsection it means the source
329 * predates the variable-target-page-bits support and is using the
330 * minimum possible value for this CPU.
332 state
->target_page_bits
= qemu_target_page_bits_min();
336 static int configuration_post_load(void *opaque
, int version_id
)
338 SaveState
*state
= opaque
;
339 const char *current_name
= MACHINE_GET_CLASS(current_machine
)->name
;
341 if (strncmp(state
->name
, current_name
, state
->len
) != 0) {
342 error_report("Machine type received is '%.*s' and local is '%s'",
343 (int) state
->len
, state
->name
, current_name
);
347 if (state
->target_page_bits
!= qemu_target_page_bits()) {
348 error_report("Received TARGET_PAGE_BITS is %d but local is %d",
349 state
->target_page_bits
, qemu_target_page_bits());
356 /* The target-page-bits subsection is present only if the
357 * target page size is not the same as the default (ie the
358 * minimum page size for a variable-page-size guest CPU).
359 * If it is present then it contains the actual target page
360 * bits for the machine, and migration will fail if the
361 * two ends don't agree about it.
363 static bool vmstate_target_page_bits_needed(void *opaque
)
365 return qemu_target_page_bits()
366 > qemu_target_page_bits_min();
369 static const VMStateDescription vmstate_target_page_bits
= {
370 .name
= "configuration/target-page-bits",
372 .minimum_version_id
= 1,
373 .needed
= vmstate_target_page_bits_needed
,
374 .fields
= (VMStateField
[]) {
375 VMSTATE_UINT32(target_page_bits
, SaveState
),
376 VMSTATE_END_OF_LIST()
380 static const VMStateDescription vmstate_configuration
= {
381 .name
= "configuration",
383 .pre_load
= configuration_pre_load
,
384 .post_load
= configuration_post_load
,
385 .pre_save
= configuration_pre_save
,
386 .fields
= (VMStateField
[]) {
387 VMSTATE_UINT32(len
, SaveState
),
388 VMSTATE_VBUFFER_ALLOC_UINT32(name
, SaveState
, 0, NULL
, len
),
389 VMSTATE_END_OF_LIST()
391 .subsections
= (const VMStateDescription
*[]) {
392 &vmstate_target_page_bits
,
397 static void dump_vmstate_vmsd(FILE *out_file
,
398 const VMStateDescription
*vmsd
, int indent
,
401 static void dump_vmstate_vmsf(FILE *out_file
, const VMStateField
*field
,
404 fprintf(out_file
, "%*s{\n", indent
, "");
406 fprintf(out_file
, "%*s\"field\": \"%s\",\n", indent
, "", field
->name
);
407 fprintf(out_file
, "%*s\"version_id\": %d,\n", indent
, "",
409 fprintf(out_file
, "%*s\"field_exists\": %s,\n", indent
, "",
410 field
->field_exists
? "true" : "false");
411 fprintf(out_file
, "%*s\"size\": %zu", indent
, "", field
->size
);
412 if (field
->vmsd
!= NULL
) {
413 fprintf(out_file
, ",\n");
414 dump_vmstate_vmsd(out_file
, field
->vmsd
, indent
, false);
416 fprintf(out_file
, "\n%*s}", indent
- 2, "");
419 static void dump_vmstate_vmss(FILE *out_file
,
420 const VMStateDescription
**subsection
,
423 if (*subsection
!= NULL
) {
424 dump_vmstate_vmsd(out_file
, *subsection
, indent
, true);
428 static void dump_vmstate_vmsd(FILE *out_file
,
429 const VMStateDescription
*vmsd
, int indent
,
433 fprintf(out_file
, "%*s{\n", indent
, "");
435 fprintf(out_file
, "%*s\"%s\": {\n", indent
, "", "Description");
438 fprintf(out_file
, "%*s\"name\": \"%s\",\n", indent
, "", vmsd
->name
);
439 fprintf(out_file
, "%*s\"version_id\": %d,\n", indent
, "",
441 fprintf(out_file
, "%*s\"minimum_version_id\": %d", indent
, "",
442 vmsd
->minimum_version_id
);
443 if (vmsd
->fields
!= NULL
) {
444 const VMStateField
*field
= vmsd
->fields
;
447 fprintf(out_file
, ",\n%*s\"Fields\": [\n", indent
, "");
449 while (field
->name
!= NULL
) {
450 if (field
->flags
& VMS_MUST_EXIST
) {
451 /* Ignore VMSTATE_VALIDATE bits; these don't get migrated */
456 fprintf(out_file
, ",\n");
458 dump_vmstate_vmsf(out_file
, field
, indent
+ 2);
462 fprintf(out_file
, "\n%*s]", indent
, "");
464 if (vmsd
->subsections
!= NULL
) {
465 const VMStateDescription
**subsection
= vmsd
->subsections
;
468 fprintf(out_file
, ",\n%*s\"Subsections\": [\n", indent
, "");
470 while (*subsection
!= NULL
) {
472 fprintf(out_file
, ",\n");
474 dump_vmstate_vmss(out_file
, subsection
, indent
+ 2);
478 fprintf(out_file
, "\n%*s]", indent
, "");
480 fprintf(out_file
, "\n%*s}", indent
- 2, "");
483 static void dump_machine_type(FILE *out_file
)
487 mc
= MACHINE_GET_CLASS(current_machine
);
489 fprintf(out_file
, " \"vmschkmachine\": {\n");
490 fprintf(out_file
, " \"Name\": \"%s\"\n", mc
->name
);
491 fprintf(out_file
, " },\n");
494 void dump_vmstate_json_to_file(FILE *out_file
)
499 fprintf(out_file
, "{\n");
500 dump_machine_type(out_file
);
503 list
= object_class_get_list(TYPE_DEVICE
, true);
504 for (elt
= list
; elt
; elt
= elt
->next
) {
505 DeviceClass
*dc
= OBJECT_CLASS_CHECK(DeviceClass
, elt
->data
,
515 fprintf(out_file
, ",\n");
517 name
= object_class_get_name(OBJECT_CLASS(dc
));
518 fprintf(out_file
, "%*s\"%s\": {\n", indent
, "", name
);
520 fprintf(out_file
, "%*s\"Name\": \"%s\",\n", indent
, "", name
);
521 fprintf(out_file
, "%*s\"version_id\": %d,\n", indent
, "",
522 dc
->vmsd
->version_id
);
523 fprintf(out_file
, "%*s\"minimum_version_id\": %d,\n", indent
, "",
524 dc
->vmsd
->minimum_version_id
);
526 dump_vmstate_vmsd(out_file
, dc
->vmsd
, indent
, false);
528 fprintf(out_file
, "\n%*s}", indent
- 2, "");
531 fprintf(out_file
, "\n}\n");
535 static int calculate_new_instance_id(const char *idstr
)
540 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
541 if (strcmp(idstr
, se
->idstr
) == 0
542 && instance_id
<= se
->instance_id
) {
543 instance_id
= se
->instance_id
+ 1;
549 static int calculate_compat_instance_id(const char *idstr
)
554 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
559 if (strcmp(idstr
, se
->compat
->idstr
) == 0
560 && instance_id
<= se
->compat
->instance_id
) {
561 instance_id
= se
->compat
->instance_id
+ 1;
567 static inline MigrationPriority
save_state_priority(SaveStateEntry
*se
)
570 return se
->vmsd
->priority
;
572 return MIG_PRI_DEFAULT
;
575 static void savevm_state_handler_insert(SaveStateEntry
*nse
)
577 MigrationPriority priority
= save_state_priority(nse
);
580 assert(priority
<= MIG_PRI_MAX
);
582 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
583 if (save_state_priority(se
) < priority
) {
589 QTAILQ_INSERT_BEFORE(se
, nse
, entry
);
591 QTAILQ_INSERT_TAIL(&savevm_state
.handlers
, nse
, entry
);
595 /* TODO: Individual devices generally have very little idea about the rest
596 of the system, so instance_id should be removed/replaced.
597 Meanwhile pass -1 as instance_id if you do not already have a clearly
598 distinguishing id for all instances of your device class. */
599 int register_savevm_live(DeviceState
*dev
,
608 se
= g_new0(SaveStateEntry
, 1);
609 se
->version_id
= version_id
;
610 se
->section_id
= savevm_state
.global_section_id
++;
614 /* if this is a live_savem then set is_ram */
615 if (ops
->save_live_setup
!= NULL
) {
620 char *id
= qdev_get_dev_path(dev
);
622 if (snprintf(se
->idstr
, sizeof(se
->idstr
), "%s/", id
) >=
624 error_report("Path too long for VMState (%s)", id
);
632 se
->compat
= g_new0(CompatEntry
, 1);
633 pstrcpy(se
->compat
->idstr
, sizeof(se
->compat
->idstr
), idstr
);
634 se
->compat
->instance_id
= instance_id
== -1 ?
635 calculate_compat_instance_id(idstr
) : instance_id
;
639 pstrcat(se
->idstr
, sizeof(se
->idstr
), idstr
);
641 if (instance_id
== -1) {
642 se
->instance_id
= calculate_new_instance_id(se
->idstr
);
644 se
->instance_id
= instance_id
;
646 assert(!se
->compat
|| se
->instance_id
== 0);
647 savevm_state_handler_insert(se
);
651 void unregister_savevm(DeviceState
*dev
, const char *idstr
, void *opaque
)
653 SaveStateEntry
*se
, *new_se
;
657 char *path
= qdev_get_dev_path(dev
);
659 pstrcpy(id
, sizeof(id
), path
);
660 pstrcat(id
, sizeof(id
), "/");
664 pstrcat(id
, sizeof(id
), idstr
);
666 QTAILQ_FOREACH_SAFE(se
, &savevm_state
.handlers
, entry
, new_se
) {
667 if (strcmp(se
->idstr
, id
) == 0 && se
->opaque
== opaque
) {
668 QTAILQ_REMOVE(&savevm_state
.handlers
, se
, entry
);
675 int vmstate_register_with_alias_id(DeviceState
*dev
, int instance_id
,
676 const VMStateDescription
*vmsd
,
677 void *opaque
, int alias_id
,
678 int required_for_version
,
683 /* If this triggers, alias support can be dropped for the vmsd. */
684 assert(alias_id
== -1 || required_for_version
>= vmsd
->minimum_version_id
);
686 se
= g_new0(SaveStateEntry
, 1);
687 se
->version_id
= vmsd
->version_id
;
688 se
->section_id
= savevm_state
.global_section_id
++;
691 se
->alias_id
= alias_id
;
694 char *id
= qdev_get_dev_path(dev
);
696 if (snprintf(se
->idstr
, sizeof(se
->idstr
), "%s/", id
) >=
698 error_setg(errp
, "Path too long for VMState (%s)", id
);
706 se
->compat
= g_new0(CompatEntry
, 1);
707 pstrcpy(se
->compat
->idstr
, sizeof(se
->compat
->idstr
), vmsd
->name
);
708 se
->compat
->instance_id
= instance_id
== -1 ?
709 calculate_compat_instance_id(vmsd
->name
) : instance_id
;
713 pstrcat(se
->idstr
, sizeof(se
->idstr
), vmsd
->name
);
715 if (instance_id
== -1) {
716 se
->instance_id
= calculate_new_instance_id(se
->idstr
);
718 se
->instance_id
= instance_id
;
720 assert(!se
->compat
|| se
->instance_id
== 0);
721 savevm_state_handler_insert(se
);
725 void vmstate_unregister(DeviceState
*dev
, const VMStateDescription
*vmsd
,
728 SaveStateEntry
*se
, *new_se
;
730 QTAILQ_FOREACH_SAFE(se
, &savevm_state
.handlers
, entry
, new_se
) {
731 if (se
->vmsd
== vmsd
&& se
->opaque
== opaque
) {
732 QTAILQ_REMOVE(&savevm_state
.handlers
, se
, entry
);
739 static int vmstate_load(QEMUFile
*f
, SaveStateEntry
*se
)
741 trace_vmstate_load(se
->idstr
, se
->vmsd
? se
->vmsd
->name
: "(old)");
742 if (!se
->vmsd
) { /* Old style */
743 return se
->ops
->load_state(f
, se
->opaque
, se
->load_version_id
);
745 return vmstate_load_state(f
, se
->vmsd
, se
->opaque
, se
->load_version_id
);
748 static void vmstate_save_old_style(QEMUFile
*f
, SaveStateEntry
*se
, QJSON
*vmdesc
)
750 int64_t old_offset
, size
;
752 old_offset
= qemu_ftell_fast(f
);
753 se
->ops
->save_state(f
, se
->opaque
);
754 size
= qemu_ftell_fast(f
) - old_offset
;
757 json_prop_int(vmdesc
, "size", size
);
758 json_start_array(vmdesc
, "fields");
759 json_start_object(vmdesc
, NULL
);
760 json_prop_str(vmdesc
, "name", "data");
761 json_prop_int(vmdesc
, "size", size
);
762 json_prop_str(vmdesc
, "type", "buffer");
763 json_end_object(vmdesc
);
764 json_end_array(vmdesc
);
768 static void vmstate_save(QEMUFile
*f
, SaveStateEntry
*se
, QJSON
*vmdesc
)
770 trace_vmstate_save(se
->idstr
, se
->vmsd
? se
->vmsd
->name
: "(old)");
772 vmstate_save_old_style(f
, se
, vmdesc
);
775 vmstate_save_state(f
, se
->vmsd
, se
->opaque
, vmdesc
);
778 void savevm_skip_section_footers(void)
780 skip_section_footers
= true;
784 * Write the header for device section (QEMU_VM_SECTION START/END/PART/FULL)
786 static void save_section_header(QEMUFile
*f
, SaveStateEntry
*se
,
787 uint8_t section_type
)
789 qemu_put_byte(f
, section_type
);
790 qemu_put_be32(f
, se
->section_id
);
792 if (section_type
== QEMU_VM_SECTION_FULL
||
793 section_type
== QEMU_VM_SECTION_START
) {
795 size_t len
= strlen(se
->idstr
);
796 qemu_put_byte(f
, len
);
797 qemu_put_buffer(f
, (uint8_t *)se
->idstr
, len
);
799 qemu_put_be32(f
, se
->instance_id
);
800 qemu_put_be32(f
, se
->version_id
);
805 * Write a footer onto device sections that catches cases misformatted device
808 static void save_section_footer(QEMUFile
*f
, SaveStateEntry
*se
)
810 if (!skip_section_footers
) {
811 qemu_put_byte(f
, QEMU_VM_SECTION_FOOTER
);
812 qemu_put_be32(f
, se
->section_id
);
817 * qemu_savevm_command_send: Send a 'QEMU_VM_COMMAND' type element with the
818 * command and associated data.
820 * @f: File to send command on
821 * @command: Command type to send
822 * @len: Length of associated data
823 * @data: Data associated with command.
825 static void qemu_savevm_command_send(QEMUFile
*f
,
826 enum qemu_vm_cmd command
,
830 trace_savevm_command_send(command
, len
);
831 qemu_put_byte(f
, QEMU_VM_COMMAND
);
832 qemu_put_be16(f
, (uint16_t)command
);
833 qemu_put_be16(f
, len
);
834 qemu_put_buffer(f
, data
, len
);
838 void qemu_savevm_send_ping(QEMUFile
*f
, uint32_t value
)
842 trace_savevm_send_ping(value
);
843 buf
= cpu_to_be32(value
);
844 qemu_savevm_command_send(f
, MIG_CMD_PING
, sizeof(value
), (uint8_t *)&buf
);
847 void qemu_savevm_send_open_return_path(QEMUFile
*f
)
849 trace_savevm_send_open_return_path();
850 qemu_savevm_command_send(f
, MIG_CMD_OPEN_RETURN_PATH
, 0, NULL
);
853 /* We have a buffer of data to send; we don't want that all to be loaded
854 * by the command itself, so the command contains just the length of the
855 * extra buffer that we then send straight after it.
856 * TODO: Must be a better way to organise that
862 int qemu_savevm_send_packaged(QEMUFile
*f
, const uint8_t *buf
, size_t len
)
866 if (len
> MAX_VM_CMD_PACKAGED_SIZE
) {
867 error_report("%s: Unreasonably large packaged state: %zu",
872 tmp
= cpu_to_be32(len
);
874 trace_qemu_savevm_send_packaged();
875 qemu_savevm_command_send(f
, MIG_CMD_PACKAGED
, 4, (uint8_t *)&tmp
);
877 qemu_put_buffer(f
, buf
, len
);
882 /* Send prior to any postcopy transfer */
883 void qemu_savevm_send_postcopy_advise(QEMUFile
*f
)
886 tmp
[0] = cpu_to_be64(ram_pagesize_summary());
887 tmp
[1] = cpu_to_be64(qemu_target_page_size());
889 trace_qemu_savevm_send_postcopy_advise();
890 qemu_savevm_command_send(f
, MIG_CMD_POSTCOPY_ADVISE
, 16, (uint8_t *)tmp
);
893 /* Sent prior to starting the destination running in postcopy, discard pages
894 * that have already been sent but redirtied on the source.
895 * CMD_POSTCOPY_RAM_DISCARD consist of:
897 * byte Length of name field (not including 0)
898 * n x byte RAM block name
899 * byte 0 terminator (just for safety)
900 * n x Byte ranges within the named RAMBlock
901 * be64 Start of the range
904 * name: RAMBlock name that these entries are part of
905 * len: Number of page entries
906 * start_list: 'len' addresses
907 * length_list: 'len' addresses
910 void qemu_savevm_send_postcopy_ram_discard(QEMUFile
*f
, const char *name
,
912 uint64_t *start_list
,
913 uint64_t *length_list
)
918 size_t name_len
= strlen(name
);
920 trace_qemu_savevm_send_postcopy_ram_discard(name
, len
);
921 assert(name_len
< 256);
922 buf
= g_malloc0(1 + 1 + name_len
+ 1 + (8 + 8) * len
);
923 buf
[0] = postcopy_ram_discard_version
;
925 memcpy(buf
+ 2, name
, name_len
);
926 tmplen
= 2 + name_len
;
927 buf
[tmplen
++] = '\0';
929 for (t
= 0; t
< len
; t
++) {
930 stq_be_p(buf
+ tmplen
, start_list
[t
]);
932 stq_be_p(buf
+ tmplen
, length_list
[t
]);
935 qemu_savevm_command_send(f
, MIG_CMD_POSTCOPY_RAM_DISCARD
, tmplen
, buf
);
939 /* Get the destination into a state where it can receive postcopy data. */
940 void qemu_savevm_send_postcopy_listen(QEMUFile
*f
)
942 trace_savevm_send_postcopy_listen();
943 qemu_savevm_command_send(f
, MIG_CMD_POSTCOPY_LISTEN
, 0, NULL
);
946 /* Kick the destination into running */
947 void qemu_savevm_send_postcopy_run(QEMUFile
*f
)
949 trace_savevm_send_postcopy_run();
950 qemu_savevm_command_send(f
, MIG_CMD_POSTCOPY_RUN
, 0, NULL
);
953 bool qemu_savevm_state_blocked(Error
**errp
)
957 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
958 if (se
->vmsd
&& se
->vmsd
->unmigratable
) {
959 error_setg(errp
, "State blocked by non-migratable device '%s'",
967 static bool enforce_config_section(void)
969 MachineState
*machine
= MACHINE(qdev_get_machine());
970 return machine
->enforce_config_section
;
973 void qemu_savevm_state_header(QEMUFile
*f
)
975 trace_savevm_state_header();
976 qemu_put_be32(f
, QEMU_VM_FILE_MAGIC
);
977 qemu_put_be32(f
, QEMU_VM_FILE_VERSION
);
979 if (!savevm_state
.skip_configuration
|| enforce_config_section()) {
980 qemu_put_byte(f
, QEMU_VM_CONFIGURATION
);
981 vmstate_save_state(f
, &vmstate_configuration
, &savevm_state
, 0);
986 void qemu_savevm_state_begin(QEMUFile
*f
)
991 trace_savevm_state_begin();
992 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
993 if (!se
->ops
|| !se
->ops
->save_live_setup
) {
996 if (se
->ops
&& se
->ops
->is_active
) {
997 if (!se
->ops
->is_active(se
->opaque
)) {
1001 save_section_header(f
, se
, QEMU_VM_SECTION_START
);
1003 ret
= se
->ops
->save_live_setup(f
, se
->opaque
);
1004 save_section_footer(f
, se
);
1006 qemu_file_set_error(f
, ret
);
1013 * this function has three return values:
1014 * negative: there was one error, and we have -errno.
1015 * 0 : We haven't finished, caller have to go again
1016 * 1 : We have finished, we can go to complete phase
1018 int qemu_savevm_state_iterate(QEMUFile
*f
, bool postcopy
)
1023 trace_savevm_state_iterate();
1024 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
1025 if (!se
->ops
|| !se
->ops
->save_live_iterate
) {
1028 if (se
->ops
&& se
->ops
->is_active
) {
1029 if (!se
->ops
->is_active(se
->opaque
)) {
1034 * In the postcopy phase, any device that doesn't know how to
1035 * do postcopy should have saved it's state in the _complete
1036 * call that's already run, it might get confused if we call
1037 * iterate afterwards.
1039 if (postcopy
&& !se
->ops
->save_live_complete_postcopy
) {
1042 if (qemu_file_rate_limit(f
)) {
1045 trace_savevm_section_start(se
->idstr
, se
->section_id
);
1047 save_section_header(f
, se
, QEMU_VM_SECTION_PART
);
1049 ret
= se
->ops
->save_live_iterate(f
, se
->opaque
);
1050 trace_savevm_section_end(se
->idstr
, se
->section_id
, ret
);
1051 save_section_footer(f
, se
);
1054 qemu_file_set_error(f
, ret
);
1057 /* Do not proceed to the next vmstate before this one reported
1058 completion of the current stage. This serializes the migration
1059 and reduces the probability that a faster changing state is
1060 synchronized over and over again. */
1067 static bool should_send_vmdesc(void)
1069 MachineState
*machine
= MACHINE(qdev_get_machine());
1070 bool in_postcopy
= migration_in_postcopy();
1071 return !machine
->suppress_vmdesc
&& !in_postcopy
;
1075 * Calls the save_live_complete_postcopy methods
1076 * causing the last few pages to be sent immediately and doing any associated
1078 * Note postcopy also calls qemu_savevm_state_complete_precopy to complete
1079 * all the other devices, but that happens at the point we switch to postcopy.
1081 void qemu_savevm_state_complete_postcopy(QEMUFile
*f
)
1086 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
1087 if (!se
->ops
|| !se
->ops
->save_live_complete_postcopy
) {
1090 if (se
->ops
&& se
->ops
->is_active
) {
1091 if (!se
->ops
->is_active(se
->opaque
)) {
1095 trace_savevm_section_start(se
->idstr
, se
->section_id
);
1097 qemu_put_byte(f
, QEMU_VM_SECTION_END
);
1098 qemu_put_be32(f
, se
->section_id
);
1100 ret
= se
->ops
->save_live_complete_postcopy(f
, se
->opaque
);
1101 trace_savevm_section_end(se
->idstr
, se
->section_id
, ret
);
1102 save_section_footer(f
, se
);
1104 qemu_file_set_error(f
, ret
);
1109 qemu_put_byte(f
, QEMU_VM_EOF
);
1113 void qemu_savevm_state_complete_precopy(QEMUFile
*f
, bool iterable_only
)
1119 bool in_postcopy
= migration_in_postcopy();
1121 trace_savevm_state_complete_precopy();
1123 cpu_synchronize_all_states();
1125 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
1127 (in_postcopy
&& se
->ops
->save_live_complete_postcopy
) ||
1128 (in_postcopy
&& !iterable_only
) ||
1129 !se
->ops
->save_live_complete_precopy
) {
1133 if (se
->ops
&& se
->ops
->is_active
) {
1134 if (!se
->ops
->is_active(se
->opaque
)) {
1138 trace_savevm_section_start(se
->idstr
, se
->section_id
);
1140 save_section_header(f
, se
, QEMU_VM_SECTION_END
);
1142 ret
= se
->ops
->save_live_complete_precopy(f
, se
->opaque
);
1143 trace_savevm_section_end(se
->idstr
, se
->section_id
, ret
);
1144 save_section_footer(f
, se
);
1146 qemu_file_set_error(f
, ret
);
1151 if (iterable_only
) {
1155 vmdesc
= qjson_new();
1156 json_prop_int(vmdesc
, "page_size", qemu_target_page_size());
1157 json_start_array(vmdesc
, "devices");
1158 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
1160 if ((!se
->ops
|| !se
->ops
->save_state
) && !se
->vmsd
) {
1163 if (se
->vmsd
&& !vmstate_save_needed(se
->vmsd
, se
->opaque
)) {
1164 trace_savevm_section_skip(se
->idstr
, se
->section_id
);
1168 trace_savevm_section_start(se
->idstr
, se
->section_id
);
1170 json_start_object(vmdesc
, NULL
);
1171 json_prop_str(vmdesc
, "name", se
->idstr
);
1172 json_prop_int(vmdesc
, "instance_id", se
->instance_id
);
1174 save_section_header(f
, se
, QEMU_VM_SECTION_FULL
);
1175 vmstate_save(f
, se
, vmdesc
);
1176 trace_savevm_section_end(se
->idstr
, se
->section_id
, 0);
1177 save_section_footer(f
, se
);
1179 json_end_object(vmdesc
);
1183 /* Postcopy stream will still be going */
1184 qemu_put_byte(f
, QEMU_VM_EOF
);
1187 json_end_array(vmdesc
);
1188 qjson_finish(vmdesc
);
1189 vmdesc_len
= strlen(qjson_get_str(vmdesc
));
1191 if (should_send_vmdesc()) {
1192 qemu_put_byte(f
, QEMU_VM_VMDESCRIPTION
);
1193 qemu_put_be32(f
, vmdesc_len
);
1194 qemu_put_buffer(f
, (uint8_t *)qjson_get_str(vmdesc
), vmdesc_len
);
1196 qjson_destroy(vmdesc
);
1201 /* Give an estimate of the amount left to be transferred,
1202 * the result is split into the amount for units that can and
1203 * for units that can't do postcopy.
1205 void qemu_savevm_state_pending(QEMUFile
*f
, uint64_t threshold_size
,
1206 uint64_t *res_non_postcopiable
,
1207 uint64_t *res_postcopiable
)
1211 *res_non_postcopiable
= 0;
1212 *res_postcopiable
= 0;
1215 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
1216 if (!se
->ops
|| !se
->ops
->save_live_pending
) {
1219 if (se
->ops
&& se
->ops
->is_active
) {
1220 if (!se
->ops
->is_active(se
->opaque
)) {
1224 se
->ops
->save_live_pending(f
, se
->opaque
, threshold_size
,
1225 res_non_postcopiable
, res_postcopiable
);
1229 void qemu_savevm_state_cleanup(void)
1233 trace_savevm_state_cleanup();
1234 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
1235 if (se
->ops
&& se
->ops
->cleanup
) {
1236 se
->ops
->cleanup(se
->opaque
);
1241 static int qemu_savevm_state(QEMUFile
*f
, Error
**errp
)
1244 MigrationState
*ms
= migrate_init();
1245 MigrationStatus status
;
1246 ms
->to_dst_file
= f
;
1248 if (migration_is_blocked(errp
)) {
1253 if (migrate_use_block()) {
1254 error_setg(errp
, "Block migration and snapshots are incompatible");
1259 qemu_mutex_unlock_iothread();
1260 qemu_savevm_state_header(f
);
1261 qemu_savevm_state_begin(f
);
1262 qemu_mutex_lock_iothread();
1264 while (qemu_file_get_error(f
) == 0) {
1265 if (qemu_savevm_state_iterate(f
, false) > 0) {
1270 ret
= qemu_file_get_error(f
);
1272 qemu_savevm_state_complete_precopy(f
, false);
1273 ret
= qemu_file_get_error(f
);
1275 qemu_savevm_state_cleanup();
1277 error_setg_errno(errp
, -ret
, "Error while writing VM state");
1282 status
= MIGRATION_STATUS_FAILED
;
1284 status
= MIGRATION_STATUS_COMPLETED
;
1286 migrate_set_state(&ms
->state
, MIGRATION_STATUS_SETUP
, status
);
1288 /* f is outer parameter, it should not stay in global migration state after
1289 * this function finished */
1290 ms
->to_dst_file
= NULL
;
1295 static int qemu_save_device_state(QEMUFile
*f
)
1299 qemu_put_be32(f
, QEMU_VM_FILE_MAGIC
);
1300 qemu_put_be32(f
, QEMU_VM_FILE_VERSION
);
1302 cpu_synchronize_all_states();
1304 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
1308 if ((!se
->ops
|| !se
->ops
->save_state
) && !se
->vmsd
) {
1311 if (se
->vmsd
&& !vmstate_save_needed(se
->vmsd
, se
->opaque
)) {
1315 save_section_header(f
, se
, QEMU_VM_SECTION_FULL
);
1317 vmstate_save(f
, se
, NULL
);
1319 save_section_footer(f
, se
);
1322 qemu_put_byte(f
, QEMU_VM_EOF
);
1324 return qemu_file_get_error(f
);
1327 static SaveStateEntry
*find_se(const char *idstr
, int instance_id
)
1331 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
1332 if (!strcmp(se
->idstr
, idstr
) &&
1333 (instance_id
== se
->instance_id
||
1334 instance_id
== se
->alias_id
))
1336 /* Migrating from an older version? */
1337 if (strstr(se
->idstr
, idstr
) && se
->compat
) {
1338 if (!strcmp(se
->compat
->idstr
, idstr
) &&
1339 (instance_id
== se
->compat
->instance_id
||
1340 instance_id
== se
->alias_id
))
1347 enum LoadVMExitCodes
{
1348 /* Allow a command to quit all layers of nested loadvm loops */
1352 static int qemu_loadvm_state_main(QEMUFile
*f
, MigrationIncomingState
*mis
);
1354 /* ------ incoming postcopy messages ------ */
1355 /* 'advise' arrives before any transfers just to tell us that a postcopy
1356 * *might* happen - it might be skipped if precopy transferred everything
1359 static int loadvm_postcopy_handle_advise(MigrationIncomingState
*mis
)
1361 PostcopyState ps
= postcopy_state_set(POSTCOPY_INCOMING_ADVISE
);
1362 uint64_t remote_pagesize_summary
, local_pagesize_summary
, remote_tps
;
1364 trace_loadvm_postcopy_handle_advise();
1365 if (ps
!= POSTCOPY_INCOMING_NONE
) {
1366 error_report("CMD_POSTCOPY_ADVISE in wrong postcopy state (%d)", ps
);
1370 if (!postcopy_ram_supported_by_host()) {
1371 postcopy_state_set(POSTCOPY_INCOMING_NONE
);
1375 remote_pagesize_summary
= qemu_get_be64(mis
->from_src_file
);
1376 local_pagesize_summary
= ram_pagesize_summary();
1378 if (remote_pagesize_summary
!= local_pagesize_summary
) {
1380 * This detects two potential causes of mismatch:
1381 * a) A mismatch in host page sizes
1382 * Some combinations of mismatch are probably possible but it gets
1383 * a bit more complicated. In particular we need to place whole
1384 * host pages on the dest at once, and we need to ensure that we
1385 * handle dirtying to make sure we never end up sending part of
1386 * a hostpage on it's own.
1387 * b) The use of different huge page sizes on source/destination
1388 * a more fine grain test is performed during RAM block migration
1389 * but this test here causes a nice early clear failure, and
1390 * also fails when passed to an older qemu that doesn't
1393 error_report("Postcopy needs matching RAM page sizes (s=%" PRIx64
1395 remote_pagesize_summary
, local_pagesize_summary
);
1399 remote_tps
= qemu_get_be64(mis
->from_src_file
);
1400 if (remote_tps
!= qemu_target_page_size()) {
1402 * Again, some differences could be dealt with, but for now keep it
1405 error_report("Postcopy needs matching target page sizes (s=%d d=%zd)",
1406 (int)remote_tps
, qemu_target_page_size());
1410 if (ram_postcopy_incoming_init(mis
)) {
1414 postcopy_state_set(POSTCOPY_INCOMING_ADVISE
);
1419 /* After postcopy we will be told to throw some pages away since they're
1420 * dirty and will have to be demand fetched. Must happen before CPU is
1422 * There can be 0..many of these messages, each encoding multiple pages.
1424 static int loadvm_postcopy_ram_handle_discard(MigrationIncomingState
*mis
,
1429 PostcopyState ps
= postcopy_state_get();
1431 trace_loadvm_postcopy_ram_handle_discard();
1434 case POSTCOPY_INCOMING_ADVISE
:
1436 tmp
= postcopy_ram_prepare_discard(mis
);
1442 case POSTCOPY_INCOMING_DISCARD
:
1443 /* Expected state */
1447 error_report("CMD_POSTCOPY_RAM_DISCARD in wrong postcopy state (%d)",
1451 /* We're expecting a
1453 * a RAM ID string (length byte, name, 0 term)
1454 * then at least 1 16 byte chunk
1456 if (len
< (1 + 1 + 1 + 1 + 2 * 8)) {
1457 error_report("CMD_POSTCOPY_RAM_DISCARD invalid length (%d)", len
);
1461 tmp
= qemu_get_byte(mis
->from_src_file
);
1462 if (tmp
!= postcopy_ram_discard_version
) {
1463 error_report("CMD_POSTCOPY_RAM_DISCARD invalid version (%d)", tmp
);
1467 if (!qemu_get_counted_string(mis
->from_src_file
, ramid
)) {
1468 error_report("CMD_POSTCOPY_RAM_DISCARD Failed to read RAMBlock ID");
1471 tmp
= qemu_get_byte(mis
->from_src_file
);
1473 error_report("CMD_POSTCOPY_RAM_DISCARD missing nil (%d)", tmp
);
1477 len
-= 3 + strlen(ramid
);
1479 error_report("CMD_POSTCOPY_RAM_DISCARD invalid length (%d)", len
);
1482 trace_loadvm_postcopy_ram_handle_discard_header(ramid
, len
);
1484 uint64_t start_addr
, block_length
;
1485 start_addr
= qemu_get_be64(mis
->from_src_file
);
1486 block_length
= qemu_get_be64(mis
->from_src_file
);
1489 int ret
= ram_discard_range(ramid
, start_addr
, block_length
);
1494 trace_loadvm_postcopy_ram_handle_discard_end();
1500 * Triggered by a postcopy_listen command; this thread takes over reading
1501 * the input stream, leaving the main thread free to carry on loading the rest
1502 * of the device state (from RAM).
1503 * (TODO:This could do with being in a postcopy file - but there again it's
1504 * just another input loop, not that postcopy specific)
1506 static void *postcopy_ram_listen_thread(void *opaque
)
1508 QEMUFile
*f
= opaque
;
1509 MigrationIncomingState
*mis
= migration_incoming_get_current();
1512 migrate_set_state(&mis
->state
, MIGRATION_STATUS_ACTIVE
,
1513 MIGRATION_STATUS_POSTCOPY_ACTIVE
);
1514 qemu_sem_post(&mis
->listen_thread_sem
);
1515 trace_postcopy_ram_listen_thread_start();
1518 * Because we're a thread and not a coroutine we can't yield
1519 * in qemu_file, and thus we must be blocking now.
1521 qemu_file_set_blocking(f
, true);
1522 load_res
= qemu_loadvm_state_main(f
, mis
);
1523 /* And non-blocking again so we don't block in any cleanup */
1524 qemu_file_set_blocking(f
, false);
1526 trace_postcopy_ram_listen_thread_exit();
1528 error_report("%s: loadvm failed: %d", __func__
, load_res
);
1529 qemu_file_set_error(f
, load_res
);
1530 migrate_set_state(&mis
->state
, MIGRATION_STATUS_POSTCOPY_ACTIVE
,
1531 MIGRATION_STATUS_FAILED
);
1534 * This looks good, but it's possible that the device loading in the
1535 * main thread hasn't finished yet, and so we might not be in 'RUN'
1536 * state yet; wait for the end of the main thread.
1538 qemu_event_wait(&mis
->main_thread_load_event
);
1540 postcopy_ram_incoming_cleanup(mis
);
1544 * If something went wrong then we have a bad state so exit;
1545 * depending how far we got it might be possible at this point
1546 * to leave the guest running and fire MCEs for pages that never
1547 * arrived as a desperate recovery step.
1552 migrate_set_state(&mis
->state
, MIGRATION_STATUS_POSTCOPY_ACTIVE
,
1553 MIGRATION_STATUS_COMPLETED
);
1555 * If everything has worked fine, then the main thread has waited
1556 * for us to start, and we're the last use of the mis.
1557 * (If something broke then qemu will have to exit anyway since it's
1558 * got a bad migration state).
1560 migration_incoming_state_destroy();
1566 /* After this message we must be able to immediately receive postcopy data */
1567 static int loadvm_postcopy_handle_listen(MigrationIncomingState
*mis
)
1569 PostcopyState ps
= postcopy_state_set(POSTCOPY_INCOMING_LISTENING
);
1570 trace_loadvm_postcopy_handle_listen();
1571 if (ps
!= POSTCOPY_INCOMING_ADVISE
&& ps
!= POSTCOPY_INCOMING_DISCARD
) {
1572 error_report("CMD_POSTCOPY_LISTEN in wrong postcopy state (%d)", ps
);
1575 if (ps
== POSTCOPY_INCOMING_ADVISE
) {
1577 * A rare case, we entered listen without having to do any discards,
1578 * so do the setup that's normally done at the time of the 1st discard.
1580 postcopy_ram_prepare_discard(mis
);
1584 * Sensitise RAM - can now generate requests for blocks that don't exist
1585 * However, at this point the CPU shouldn't be running, and the IO
1586 * shouldn't be doing anything yet so don't actually expect requests
1588 if (postcopy_ram_enable_notify(mis
)) {
1592 if (mis
->have_listen_thread
) {
1593 error_report("CMD_POSTCOPY_RAM_LISTEN already has a listen thread");
1597 mis
->have_listen_thread
= true;
1598 /* Start up the listening thread and wait for it to signal ready */
1599 qemu_sem_init(&mis
->listen_thread_sem
, 0);
1600 qemu_thread_create(&mis
->listen_thread
, "postcopy/listen",
1601 postcopy_ram_listen_thread
, mis
->from_src_file
,
1602 QEMU_THREAD_DETACHED
);
1603 qemu_sem_wait(&mis
->listen_thread_sem
);
1604 qemu_sem_destroy(&mis
->listen_thread_sem
);
1614 static void loadvm_postcopy_handle_run_bh(void *opaque
)
1616 Error
*local_err
= NULL
;
1617 HandleRunBhData
*data
= opaque
;
1619 /* TODO we should move all of this lot into postcopy_ram.c or a shared code
1622 cpu_synchronize_all_post_init();
1624 qemu_announce_self();
1626 /* Make sure all file formats flush their mutable metadata.
1627 * If we get an error here, just don't restart the VM yet. */
1628 bdrv_invalidate_cache_all(&local_err
);
1630 error_report_err(local_err
);
1635 trace_loadvm_postcopy_handle_run_cpu_sync();
1636 cpu_synchronize_all_post_init();
1638 trace_loadvm_postcopy_handle_run_vmstart();
1641 /* Hold onto your hats, starting the CPU */
1644 /* leave it paused and let management decide when to start the CPU */
1645 runstate_set(RUN_STATE_PAUSED
);
1648 qemu_bh_delete(data
->bh
);
1652 /* After all discards we can start running and asking for pages */
1653 static int loadvm_postcopy_handle_run(MigrationIncomingState
*mis
)
1655 PostcopyState ps
= postcopy_state_set(POSTCOPY_INCOMING_RUNNING
);
1656 HandleRunBhData
*data
;
1658 trace_loadvm_postcopy_handle_run();
1659 if (ps
!= POSTCOPY_INCOMING_LISTENING
) {
1660 error_report("CMD_POSTCOPY_RUN in wrong postcopy state (%d)", ps
);
1664 data
= g_new(HandleRunBhData
, 1);
1665 data
->bh
= qemu_bh_new(loadvm_postcopy_handle_run_bh
, data
);
1666 qemu_bh_schedule(data
->bh
);
1668 /* We need to finish reading the stream from the package
1669 * and also stop reading anything more from the stream that loaded the
1670 * package (since it's now being read by the listener thread).
1671 * LOADVM_QUIT will quit all the layers of nested loadvm loops.
1677 * Immediately following this command is a blob of data containing an embedded
1678 * chunk of migration stream; read it and load it.
1680 * @mis: Incoming state
1681 * @length: Length of packaged data to read
1683 * Returns: Negative values on error
1686 static int loadvm_handle_cmd_packaged(MigrationIncomingState
*mis
)
1690 QIOChannelBuffer
*bioc
;
1692 length
= qemu_get_be32(mis
->from_src_file
);
1693 trace_loadvm_handle_cmd_packaged(length
);
1695 if (length
> MAX_VM_CMD_PACKAGED_SIZE
) {
1696 error_report("Unreasonably large packaged state: %zu", length
);
1700 bioc
= qio_channel_buffer_new(length
);
1701 qio_channel_set_name(QIO_CHANNEL(bioc
), "migration-loadvm-buffer");
1702 ret
= qemu_get_buffer(mis
->from_src_file
,
1705 if (ret
!= length
) {
1706 object_unref(OBJECT(bioc
));
1707 error_report("CMD_PACKAGED: Buffer receive fail ret=%d length=%zu",
1709 return (ret
< 0) ? ret
: -EAGAIN
;
1711 bioc
->usage
+= length
;
1712 trace_loadvm_handle_cmd_packaged_received(ret
);
1714 QEMUFile
*packf
= qemu_fopen_channel_input(QIO_CHANNEL(bioc
));
1716 ret
= qemu_loadvm_state_main(packf
, mis
);
1717 trace_loadvm_handle_cmd_packaged_main(ret
);
1719 object_unref(OBJECT(bioc
));
1725 * Process an incoming 'QEMU_VM_COMMAND'
1726 * 0 just a normal return
1727 * LOADVM_QUIT All good, but exit the loop
1730 static int loadvm_process_command(QEMUFile
*f
)
1732 MigrationIncomingState
*mis
= migration_incoming_get_current();
1737 cmd
= qemu_get_be16(f
);
1738 len
= qemu_get_be16(f
);
1740 trace_loadvm_process_command(cmd
, len
);
1741 if (cmd
>= MIG_CMD_MAX
|| cmd
== MIG_CMD_INVALID
) {
1742 error_report("MIG_CMD 0x%x unknown (len 0x%x)", cmd
, len
);
1746 if (mig_cmd_args
[cmd
].len
!= -1 && mig_cmd_args
[cmd
].len
!= len
) {
1747 error_report("%s received with bad length - expecting %zu, got %d",
1748 mig_cmd_args
[cmd
].name
,
1749 (size_t)mig_cmd_args
[cmd
].len
, len
);
1754 case MIG_CMD_OPEN_RETURN_PATH
:
1755 if (mis
->to_src_file
) {
1756 error_report("CMD_OPEN_RETURN_PATH called when RP already open");
1757 /* Not really a problem, so don't give up */
1760 mis
->to_src_file
= qemu_file_get_return_path(f
);
1761 if (!mis
->to_src_file
) {
1762 error_report("CMD_OPEN_RETURN_PATH failed");
1768 tmp32
= qemu_get_be32(f
);
1769 trace_loadvm_process_command_ping(tmp32
);
1770 if (!mis
->to_src_file
) {
1771 error_report("CMD_PING (0x%x) received with no return path",
1775 migrate_send_rp_pong(mis
, tmp32
);
1778 case MIG_CMD_PACKAGED
:
1779 return loadvm_handle_cmd_packaged(mis
);
1781 case MIG_CMD_POSTCOPY_ADVISE
:
1782 return loadvm_postcopy_handle_advise(mis
);
1784 case MIG_CMD_POSTCOPY_LISTEN
:
1785 return loadvm_postcopy_handle_listen(mis
);
1787 case MIG_CMD_POSTCOPY_RUN
:
1788 return loadvm_postcopy_handle_run(mis
);
1790 case MIG_CMD_POSTCOPY_RAM_DISCARD
:
1791 return loadvm_postcopy_ram_handle_discard(mis
, len
);
1798 * Read a footer off the wire and check that it matches the expected section
1800 * Returns: true if the footer was good
1801 * false if there is a problem (and calls error_report to say why)
1803 static bool check_section_footer(QEMUFile
*f
, SaveStateEntry
*se
)
1806 uint32_t read_section_id
;
1808 if (skip_section_footers
) {
1809 /* No footer to check */
1813 read_mark
= qemu_get_byte(f
);
1815 if (read_mark
!= QEMU_VM_SECTION_FOOTER
) {
1816 error_report("Missing section footer for %s", se
->idstr
);
1820 read_section_id
= qemu_get_be32(f
);
1821 if (read_section_id
!= se
->load_section_id
) {
1822 error_report("Mismatched section id in footer for %s -"
1823 " read 0x%x expected 0x%x",
1824 se
->idstr
, read_section_id
, se
->load_section_id
);
1833 qemu_loadvm_section_start_full(QEMUFile
*f
, MigrationIncomingState
*mis
)
1835 uint32_t instance_id
, version_id
, section_id
;
1840 /* Read section start */
1841 section_id
= qemu_get_be32(f
);
1842 if (!qemu_get_counted_string(f
, idstr
)) {
1843 error_report("Unable to read ID string for section %u",
1847 instance_id
= qemu_get_be32(f
);
1848 version_id
= qemu_get_be32(f
);
1850 trace_qemu_loadvm_state_section_startfull(section_id
, idstr
,
1851 instance_id
, version_id
);
1852 /* Find savevm section */
1853 se
= find_se(idstr
, instance_id
);
1855 error_report("Unknown savevm section or instance '%s' %d",
1856 idstr
, instance_id
);
1860 /* Validate version */
1861 if (version_id
> se
->version_id
) {
1862 error_report("savevm: unsupported version %d for '%s' v%d",
1863 version_id
, idstr
, se
->version_id
);
1866 se
->load_version_id
= version_id
;
1867 se
->load_section_id
= section_id
;
1869 /* Validate if it is a device's state */
1870 if (xen_enabled() && se
->is_ram
) {
1871 error_report("loadvm: %s RAM loading not allowed on Xen", idstr
);
1875 ret
= vmstate_load(f
, se
);
1877 error_report("error while loading state for instance 0x%x of"
1878 " device '%s'", instance_id
, idstr
);
1881 if (!check_section_footer(f
, se
)) {
1889 qemu_loadvm_section_part_end(QEMUFile
*f
, MigrationIncomingState
*mis
)
1891 uint32_t section_id
;
1895 section_id
= qemu_get_be32(f
);
1897 trace_qemu_loadvm_state_section_partend(section_id
);
1898 QTAILQ_FOREACH(se
, &savevm_state
.handlers
, entry
) {
1899 if (se
->load_section_id
== section_id
) {
1904 error_report("Unknown savevm section %d", section_id
);
1908 ret
= vmstate_load(f
, se
);
1910 error_report("error while loading state section id %d(%s)",
1911 section_id
, se
->idstr
);
1914 if (!check_section_footer(f
, se
)) {
1921 static int qemu_loadvm_state_main(QEMUFile
*f
, MigrationIncomingState
*mis
)
1923 uint8_t section_type
;
1926 while ((section_type
= qemu_get_byte(f
)) != QEMU_VM_EOF
) {
1928 trace_qemu_loadvm_state_section(section_type
);
1929 switch (section_type
) {
1930 case QEMU_VM_SECTION_START
:
1931 case QEMU_VM_SECTION_FULL
:
1932 ret
= qemu_loadvm_section_start_full(f
, mis
);
1937 case QEMU_VM_SECTION_PART
:
1938 case QEMU_VM_SECTION_END
:
1939 ret
= qemu_loadvm_section_part_end(f
, mis
);
1944 case QEMU_VM_COMMAND
:
1945 ret
= loadvm_process_command(f
);
1946 trace_qemu_loadvm_state_section_command(ret
);
1947 if ((ret
< 0) || (ret
& LOADVM_QUIT
)) {
1952 error_report("Unknown savevm section type %d", section_type
);
1960 qemu_file_set_error(f
, ret
);
1965 int qemu_loadvm_state(QEMUFile
*f
)
1967 MigrationIncomingState
*mis
= migration_incoming_get_current();
1968 Error
*local_err
= NULL
;
1972 if (qemu_savevm_state_blocked(&local_err
)) {
1973 error_report_err(local_err
);
1977 v
= qemu_get_be32(f
);
1978 if (v
!= QEMU_VM_FILE_MAGIC
) {
1979 error_report("Not a migration stream");
1983 v
= qemu_get_be32(f
);
1984 if (v
== QEMU_VM_FILE_VERSION_COMPAT
) {
1985 error_report("SaveVM v2 format is obsolete and don't work anymore");
1988 if (v
!= QEMU_VM_FILE_VERSION
) {
1989 error_report("Unsupported migration stream version");
1993 if (!savevm_state
.skip_configuration
|| enforce_config_section()) {
1994 if (qemu_get_byte(f
) != QEMU_VM_CONFIGURATION
) {
1995 error_report("Configuration section missing");
1998 ret
= vmstate_load_state(f
, &vmstate_configuration
, &savevm_state
, 0);
2005 cpu_synchronize_all_pre_loadvm();
2007 ret
= qemu_loadvm_state_main(f
, mis
);
2008 qemu_event_set(&mis
->main_thread_load_event
);
2010 trace_qemu_loadvm_state_post_main(ret
);
2012 if (mis
->have_listen_thread
) {
2013 /* Listen thread still going, can't clean up yet */
2018 ret
= qemu_file_get_error(f
);
2022 * Try to read in the VMDESC section as well, so that dumping tools that
2023 * intercept our migration stream have the chance to see it.
2026 /* We've got to be careful; if we don't read the data and just shut the fd
2027 * then the sender can error if we close while it's still sending.
2028 * We also mustn't read data that isn't there; some transports (RDMA)
2029 * will stall waiting for that data when the source has already closed.
2031 if (ret
== 0 && should_send_vmdesc()) {
2034 uint8_t section_type
= qemu_get_byte(f
);
2036 if (section_type
!= QEMU_VM_VMDESCRIPTION
) {
2037 error_report("Expected vmdescription section, but got %d",
2040 * It doesn't seem worth failing at this point since
2041 * we apparently have an otherwise valid VM state
2044 buf
= g_malloc(0x1000);
2045 size
= qemu_get_be32(f
);
2048 uint32_t read_chunk
= MIN(size
, 0x1000);
2049 qemu_get_buffer(f
, buf
, read_chunk
);
2056 cpu_synchronize_all_post_init();
2061 int save_snapshot(const char *name
, Error
**errp
)
2063 BlockDriverState
*bs
, *bs1
;
2064 QEMUSnapshotInfo sn1
, *sn
= &sn1
, old_sn1
, *old_sn
= &old_sn1
;
2067 int saved_vm_running
;
2068 uint64_t vm_state_size
;
2071 AioContext
*aio_context
;
2073 if (!bdrv_all_can_snapshot(&bs
)) {
2074 error_setg(errp
, "Device '%s' is writable but does not support "
2075 "snapshots", bdrv_get_device_name(bs
));
2079 /* Delete old snapshots of the same name */
2081 ret
= bdrv_all_delete_snapshot(name
, &bs1
, errp
);
2083 error_prepend(errp
, "Error while deleting snapshot on device "
2084 "'%s': ", bdrv_get_device_name(bs1
));
2089 bs
= bdrv_all_find_vmstate_bs();
2091 error_setg(errp
, "No block device can accept snapshots");
2094 aio_context
= bdrv_get_aio_context(bs
);
2096 saved_vm_running
= runstate_is_running();
2098 ret
= global_state_store();
2100 error_setg(errp
, "Error saving global state");
2103 vm_stop(RUN_STATE_SAVE_VM
);
2105 aio_context_acquire(aio_context
);
2107 memset(sn
, 0, sizeof(*sn
));
2109 /* fill auxiliary fields */
2110 qemu_gettimeofday(&tv
);
2111 sn
->date_sec
= tv
.tv_sec
;
2112 sn
->date_nsec
= tv
.tv_usec
* 1000;
2113 sn
->vm_clock_nsec
= qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL
);
2116 ret
= bdrv_snapshot_find(bs
, old_sn
, name
);
2118 pstrcpy(sn
->name
, sizeof(sn
->name
), old_sn
->name
);
2119 pstrcpy(sn
->id_str
, sizeof(sn
->id_str
), old_sn
->id_str
);
2121 pstrcpy(sn
->name
, sizeof(sn
->name
), name
);
2124 /* cast below needed for OpenBSD where tv_sec is still 'long' */
2125 localtime_r((const time_t *)&tv
.tv_sec
, &tm
);
2126 strftime(sn
->name
, sizeof(sn
->name
), "vm-%Y%m%d%H%M%S", &tm
);
2129 /* save the VM state */
2130 f
= qemu_fopen_bdrv(bs
, 1);
2132 error_setg(errp
, "Could not open VM state file");
2135 ret
= qemu_savevm_state(f
, errp
);
2136 vm_state_size
= qemu_ftell(f
);
2142 ret
= bdrv_all_create_snapshot(sn
, bs
, vm_state_size
, &bs
);
2144 error_setg(errp
, "Error while creating snapshot on '%s'",
2145 bdrv_get_device_name(bs
));
2152 aio_context_release(aio_context
);
2153 if (saved_vm_running
) {
2159 void qmp_xen_save_devices_state(const char *filename
, Error
**errp
)
2162 QIOChannelFile
*ioc
;
2163 int saved_vm_running
;
2166 saved_vm_running
= runstate_is_running();
2167 vm_stop(RUN_STATE_SAVE_VM
);
2168 global_state_store_running();
2170 ioc
= qio_channel_file_new_path(filename
, O_WRONLY
| O_CREAT
, 0660, errp
);
2174 qio_channel_set_name(QIO_CHANNEL(ioc
), "migration-xen-save-state");
2175 f
= qemu_fopen_channel_output(QIO_CHANNEL(ioc
));
2176 ret
= qemu_save_device_state(f
);
2179 error_setg(errp
, QERR_IO_ERROR
);
2183 if (saved_vm_running
) {
2188 void qmp_xen_load_devices_state(const char *filename
, Error
**errp
)
2191 QIOChannelFile
*ioc
;
2194 /* Guest must be paused before loading the device state; the RAM state
2195 * will already have been loaded by xc
2197 if (runstate_is_running()) {
2198 error_setg(errp
, "Cannot update device state while vm is running");
2201 vm_stop(RUN_STATE_RESTORE_VM
);
2203 ioc
= qio_channel_file_new_path(filename
, O_RDONLY
| O_BINARY
, 0, errp
);
2207 qio_channel_set_name(QIO_CHANNEL(ioc
), "migration-xen-load-state");
2208 f
= qemu_fopen_channel_input(QIO_CHANNEL(ioc
));
2210 ret
= qemu_loadvm_state(f
);
2213 error_setg(errp
, QERR_IO_ERROR
);
2215 migration_incoming_state_destroy();
2218 int load_snapshot(const char *name
, Error
**errp
)
2220 BlockDriverState
*bs
, *bs_vm_state
;
2221 QEMUSnapshotInfo sn
;
2224 AioContext
*aio_context
;
2225 MigrationIncomingState
*mis
= migration_incoming_get_current();
2227 if (!bdrv_all_can_snapshot(&bs
)) {
2229 "Device '%s' is writable but does not support snapshots",
2230 bdrv_get_device_name(bs
));
2233 ret
= bdrv_all_find_snapshot(name
, &bs
);
2236 "Device '%s' does not have the requested snapshot '%s'",
2237 bdrv_get_device_name(bs
), name
);
2241 bs_vm_state
= bdrv_all_find_vmstate_bs();
2243 error_setg(errp
, "No block device supports snapshots");
2246 aio_context
= bdrv_get_aio_context(bs_vm_state
);
2248 /* Don't even try to load empty VM states */
2249 aio_context_acquire(aio_context
);
2250 ret
= bdrv_snapshot_find(bs_vm_state
, &sn
, name
);
2251 aio_context_release(aio_context
);
2254 } else if (sn
.vm_state_size
== 0) {
2255 error_setg(errp
, "This is a disk-only snapshot. Revert to it "
2256 " offline using qemu-img");
2260 /* Flush all IO requests so they don't interfere with the new state. */
2263 ret
= bdrv_all_goto_snapshot(name
, &bs
);
2265 error_setg(errp
, "Error %d while activating snapshot '%s' on '%s'",
2266 ret
, name
, bdrv_get_device_name(bs
));
2270 /* restore the VM state */
2271 f
= qemu_fopen_bdrv(bs_vm_state
, 0);
2273 error_setg(errp
, "Could not open VM state file");
2277 qemu_system_reset(SHUTDOWN_CAUSE_NONE
);
2278 mis
->from_src_file
= f
;
2280 aio_context_acquire(aio_context
);
2281 ret
= qemu_loadvm_state(f
);
2282 aio_context_release(aio_context
);
2284 migration_incoming_state_destroy();
2286 error_setg(errp
, "Error %d while loading VM state", ret
);
2293 void vmstate_register_ram(MemoryRegion
*mr
, DeviceState
*dev
)
2295 qemu_ram_set_idstr(mr
->ram_block
,
2296 memory_region_name(mr
), dev
);
2299 void vmstate_unregister_ram(MemoryRegion
*mr
, DeviceState
*dev
)
2301 qemu_ram_unset_idstr(mr
->ram_block
);
2304 void vmstate_register_ram_global(MemoryRegion
*mr
)
2306 vmstate_register_ram(mr
, NULL
);
2309 bool vmstate_check_only_migratable(const VMStateDescription
*vmsd
)
2311 /* check needed if --only-migratable is specified */
2312 if (!only_migratable
) {
2316 return !(vmsd
&& vmsd
->unmigratable
);