]> git.proxmox.com Git - mirror_qemu.git/blob - migration/migration.c
Merge remote-tracking branch 'remotes/rth-gitlab/tags/pull-tcg-20210317' into staging
[mirror_qemu.git] / migration / migration.c
1 /*
2 * QEMU live migration
3 *
4 * Copyright IBM, Corp. 2008
5 *
6 * Authors:
7 * Anthony Liguori <aliguori@us.ibm.com>
8 *
9 * This work is licensed under the terms of the GNU GPL, version 2. See
10 * the COPYING file in the top-level directory.
11 *
12 * Contributions after 2012-01-13 are licensed under the terms of the
13 * GNU GPL, version 2 or (at your option) any later version.
14 */
15
16 #include "qemu/osdep.h"
17 #include "qemu/cutils.h"
18 #include "qemu/error-report.h"
19 #include "qemu/main-loop.h"
20 #include "migration/blocker.h"
21 #include "exec.h"
22 #include "fd.h"
23 #include "socket.h"
24 #include "sysemu/runstate.h"
25 #include "sysemu/sysemu.h"
26 #include "sysemu/cpu-throttle.h"
27 #include "rdma.h"
28 #include "ram.h"
29 #include "migration/global_state.h"
30 #include "migration/misc.h"
31 #include "migration.h"
32 #include "savevm.h"
33 #include "qemu-file-channel.h"
34 #include "qemu-file.h"
35 #include "migration/vmstate.h"
36 #include "block/block.h"
37 #include "qapi/error.h"
38 #include "qapi/clone-visitor.h"
39 #include "qapi/qapi-visit-migration.h"
40 #include "qapi/qapi-visit-sockets.h"
41 #include "qapi/qapi-commands-migration.h"
42 #include "qapi/qapi-events-migration.h"
43 #include "qapi/qmp/qerror.h"
44 #include "qapi/qmp/qnull.h"
45 #include "qemu/rcu.h"
46 #include "block.h"
47 #include "postcopy-ram.h"
48 #include "qemu/thread.h"
49 #include "trace.h"
50 #include "exec/target_page.h"
51 #include "io/channel-buffer.h"
52 #include "migration/colo.h"
53 #include "hw/boards.h"
54 #include "hw/qdev-properties.h"
55 #include "hw/qdev-properties-system.h"
56 #include "monitor/monitor.h"
57 #include "net/announce.h"
58 #include "qemu/queue.h"
59 #include "multifd.h"
60 #include "qemu/yank.h"
61 #include "sysemu/cpus.h"
62
63 #ifdef CONFIG_VFIO
64 #include "hw/vfio/vfio-common.h"
65 #endif
66
67 #define MAX_THROTTLE (128 << 20) /* Migration transfer speed throttling */
68
69 /* Amount of time to allocate to each "chunk" of bandwidth-throttled
70 * data. */
71 #define BUFFER_DELAY 100
72 #define XFER_LIMIT_RATIO (1000 / BUFFER_DELAY)
73
74 /* Time in milliseconds we are allowed to stop the source,
75 * for sending the last part */
76 #define DEFAULT_MIGRATE_SET_DOWNTIME 300
77
78 /* Maximum migrate downtime set to 2000 seconds */
79 #define MAX_MIGRATE_DOWNTIME_SECONDS 2000
80 #define MAX_MIGRATE_DOWNTIME (MAX_MIGRATE_DOWNTIME_SECONDS * 1000)
81
82 /* Default compression thread count */
83 #define DEFAULT_MIGRATE_COMPRESS_THREAD_COUNT 8
84 /* Default decompression thread count, usually decompression is at
85 * least 4 times as fast as compression.*/
86 #define DEFAULT_MIGRATE_DECOMPRESS_THREAD_COUNT 2
87 /*0: means nocompress, 1: best speed, ... 9: best compress ratio */
88 #define DEFAULT_MIGRATE_COMPRESS_LEVEL 1
89 /* Define default autoconverge cpu throttle migration parameters */
90 #define DEFAULT_MIGRATE_THROTTLE_TRIGGER_THRESHOLD 50
91 #define DEFAULT_MIGRATE_CPU_THROTTLE_INITIAL 20
92 #define DEFAULT_MIGRATE_CPU_THROTTLE_INCREMENT 10
93 #define DEFAULT_MIGRATE_MAX_CPU_THROTTLE 99
94
95 /* Migration XBZRLE default cache size */
96 #define DEFAULT_MIGRATE_XBZRLE_CACHE_SIZE (64 * 1024 * 1024)
97
98 /* The delay time (in ms) between two COLO checkpoints */
99 #define DEFAULT_MIGRATE_X_CHECKPOINT_DELAY (200 * 100)
100 #define DEFAULT_MIGRATE_MULTIFD_CHANNELS 2
101 #define DEFAULT_MIGRATE_MULTIFD_COMPRESSION MULTIFD_COMPRESSION_NONE
102 /* 0: means nocompress, 1: best speed, ... 9: best compress ratio */
103 #define DEFAULT_MIGRATE_MULTIFD_ZLIB_LEVEL 1
104 /* 0: means nocompress, 1: best speed, ... 20: best compress ratio */
105 #define DEFAULT_MIGRATE_MULTIFD_ZSTD_LEVEL 1
106
107 /* Background transfer rate for postcopy, 0 means unlimited, note
108 * that page requests can still exceed this limit.
109 */
110 #define DEFAULT_MIGRATE_MAX_POSTCOPY_BANDWIDTH 0
111
112 /*
113 * Parameters for self_announce_delay giving a stream of RARP/ARP
114 * packets after migration.
115 */
116 #define DEFAULT_MIGRATE_ANNOUNCE_INITIAL 50
117 #define DEFAULT_MIGRATE_ANNOUNCE_MAX 550
118 #define DEFAULT_MIGRATE_ANNOUNCE_ROUNDS 5
119 #define DEFAULT_MIGRATE_ANNOUNCE_STEP 100
120
121 static NotifierList migration_state_notifiers =
122 NOTIFIER_LIST_INITIALIZER(migration_state_notifiers);
123
124 /* Messages sent on the return path from destination to source */
125 enum mig_rp_message_type {
126 MIG_RP_MSG_INVALID = 0, /* Must be 0 */
127 MIG_RP_MSG_SHUT, /* sibling will not send any more RP messages */
128 MIG_RP_MSG_PONG, /* Response to a PING; data (seq: be32 ) */
129
130 MIG_RP_MSG_REQ_PAGES_ID, /* data (start: be64, len: be32, id: string) */
131 MIG_RP_MSG_REQ_PAGES, /* data (start: be64, len: be32) */
132 MIG_RP_MSG_RECV_BITMAP, /* send recved_bitmap back to source */
133 MIG_RP_MSG_RESUME_ACK, /* tell source that we are ready to resume */
134
135 MIG_RP_MSG_MAX
136 };
137
138 /* Migration capabilities set */
139 struct MigrateCapsSet {
140 int size; /* Capability set size */
141 MigrationCapability caps[]; /* Variadic array of capabilities */
142 };
143 typedef struct MigrateCapsSet MigrateCapsSet;
144
145 /* Define and initialize MigrateCapsSet */
146 #define INITIALIZE_MIGRATE_CAPS_SET(_name, ...) \
147 MigrateCapsSet _name = { \
148 .size = sizeof((int []) { __VA_ARGS__ }) / sizeof(int), \
149 .caps = { __VA_ARGS__ } \
150 }
151
152 /* Background-snapshot compatibility check list */
153 static const
154 INITIALIZE_MIGRATE_CAPS_SET(check_caps_background_snapshot,
155 MIGRATION_CAPABILITY_POSTCOPY_RAM,
156 MIGRATION_CAPABILITY_DIRTY_BITMAPS,
157 MIGRATION_CAPABILITY_POSTCOPY_BLOCKTIME,
158 MIGRATION_CAPABILITY_LATE_BLOCK_ACTIVATE,
159 MIGRATION_CAPABILITY_RETURN_PATH,
160 MIGRATION_CAPABILITY_MULTIFD,
161 MIGRATION_CAPABILITY_PAUSE_BEFORE_SWITCHOVER,
162 MIGRATION_CAPABILITY_AUTO_CONVERGE,
163 MIGRATION_CAPABILITY_RELEASE_RAM,
164 MIGRATION_CAPABILITY_RDMA_PIN_ALL,
165 MIGRATION_CAPABILITY_COMPRESS,
166 MIGRATION_CAPABILITY_XBZRLE,
167 MIGRATION_CAPABILITY_X_COLO,
168 MIGRATION_CAPABILITY_VALIDATE_UUID);
169
170 /* When we add fault tolerance, we could have several
171 migrations at once. For now we don't need to add
172 dynamic creation of migration */
173
174 static MigrationState *current_migration;
175 static MigrationIncomingState *current_incoming;
176
177 static GSList *migration_blockers;
178
179 static bool migration_object_check(MigrationState *ms, Error **errp);
180 static int migration_maybe_pause(MigrationState *s,
181 int *current_active_state,
182 int new_state);
183 static void migrate_fd_cancel(MigrationState *s);
184
185 static gint page_request_addr_cmp(gconstpointer ap, gconstpointer bp)
186 {
187 uintptr_t a = (uintptr_t) ap, b = (uintptr_t) bp;
188
189 return (a > b) - (a < b);
190 }
191
192 void migration_object_init(void)
193 {
194 Error *err = NULL;
195
196 /* This can only be called once. */
197 assert(!current_migration);
198 current_migration = MIGRATION_OBJ(object_new(TYPE_MIGRATION));
199
200 /*
201 * Init the migrate incoming object as well no matter whether
202 * we'll use it or not.
203 */
204 assert(!current_incoming);
205 current_incoming = g_new0(MigrationIncomingState, 1);
206 current_incoming->state = MIGRATION_STATUS_NONE;
207 current_incoming->postcopy_remote_fds =
208 g_array_new(FALSE, TRUE, sizeof(struct PostCopyFD));
209 qemu_mutex_init(&current_incoming->rp_mutex);
210 qemu_event_init(&current_incoming->main_thread_load_event, false);
211 qemu_sem_init(&current_incoming->postcopy_pause_sem_dst, 0);
212 qemu_sem_init(&current_incoming->postcopy_pause_sem_fault, 0);
213 qemu_mutex_init(&current_incoming->page_request_mutex);
214 current_incoming->page_requested = g_tree_new(page_request_addr_cmp);
215
216 if (!migration_object_check(current_migration, &err)) {
217 error_report_err(err);
218 exit(1);
219 }
220
221 blk_mig_init();
222 ram_mig_init();
223 dirty_bitmap_mig_init();
224 }
225
226 void migration_shutdown(void)
227 {
228 /*
229 * Cancel the current migration - that will (eventually)
230 * stop the migration using this structure
231 */
232 migrate_fd_cancel(current_migration);
233 object_unref(OBJECT(current_migration));
234
235 /*
236 * Cancel outgoing migration of dirty bitmaps. It should
237 * at least unref used block nodes.
238 */
239 dirty_bitmap_mig_cancel_outgoing();
240
241 /*
242 * Cancel incoming migration of dirty bitmaps. Dirty bitmaps
243 * are non-critical data, and their loss never considered as
244 * something serious.
245 */
246 dirty_bitmap_mig_cancel_incoming();
247 }
248
249 /* For outgoing */
250 MigrationState *migrate_get_current(void)
251 {
252 /* This can only be called after the object created. */
253 assert(current_migration);
254 return current_migration;
255 }
256
257 MigrationIncomingState *migration_incoming_get_current(void)
258 {
259 assert(current_incoming);
260 return current_incoming;
261 }
262
263 void migration_incoming_state_destroy(void)
264 {
265 struct MigrationIncomingState *mis = migration_incoming_get_current();
266
267 if (mis->to_src_file) {
268 /* Tell source that we are done */
269 migrate_send_rp_shut(mis, qemu_file_get_error(mis->from_src_file) != 0);
270 qemu_fclose(mis->to_src_file);
271 mis->to_src_file = NULL;
272 }
273
274 if (mis->from_src_file) {
275 qemu_fclose(mis->from_src_file);
276 mis->from_src_file = NULL;
277 }
278 if (mis->postcopy_remote_fds) {
279 g_array_free(mis->postcopy_remote_fds, TRUE);
280 mis->postcopy_remote_fds = NULL;
281 }
282
283 qemu_event_reset(&mis->main_thread_load_event);
284
285 if (mis->page_requested) {
286 g_tree_destroy(mis->page_requested);
287 mis->page_requested = NULL;
288 }
289
290 if (mis->socket_address_list) {
291 qapi_free_SocketAddressList(mis->socket_address_list);
292 mis->socket_address_list = NULL;
293 }
294
295 yank_unregister_instance(MIGRATION_YANK_INSTANCE);
296 }
297
298 static void migrate_generate_event(int new_state)
299 {
300 if (migrate_use_events()) {
301 qapi_event_send_migration(new_state);
302 }
303 }
304
305 static bool migrate_late_block_activate(void)
306 {
307 MigrationState *s;
308
309 s = migrate_get_current();
310
311 return s->enabled_capabilities[
312 MIGRATION_CAPABILITY_LATE_BLOCK_ACTIVATE];
313 }
314
315 /*
316 * Send a message on the return channel back to the source
317 * of the migration.
318 */
319 static int migrate_send_rp_message(MigrationIncomingState *mis,
320 enum mig_rp_message_type message_type,
321 uint16_t len, void *data)
322 {
323 int ret = 0;
324
325 trace_migrate_send_rp_message((int)message_type, len);
326 QEMU_LOCK_GUARD(&mis->rp_mutex);
327
328 /*
329 * It's possible that the file handle got lost due to network
330 * failures.
331 */
332 if (!mis->to_src_file) {
333 ret = -EIO;
334 return ret;
335 }
336
337 qemu_put_be16(mis->to_src_file, (unsigned int)message_type);
338 qemu_put_be16(mis->to_src_file, len);
339 qemu_put_buffer(mis->to_src_file, data, len);
340 qemu_fflush(mis->to_src_file);
341
342 /* It's possible that qemu file got error during sending */
343 ret = qemu_file_get_error(mis->to_src_file);
344
345 return ret;
346 }
347
348 /* Request one page from the source VM at the given start address.
349 * rb: the RAMBlock to request the page in
350 * Start: Address offset within the RB
351 * Len: Length in bytes required - must be a multiple of pagesize
352 */
353 int migrate_send_rp_message_req_pages(MigrationIncomingState *mis,
354 RAMBlock *rb, ram_addr_t start)
355 {
356 uint8_t bufc[12 + 1 + 255]; /* start (8), len (4), rbname up to 256 */
357 size_t msglen = 12; /* start + len */
358 size_t len = qemu_ram_pagesize(rb);
359 enum mig_rp_message_type msg_type;
360 const char *rbname;
361 int rbname_len;
362
363 *(uint64_t *)bufc = cpu_to_be64((uint64_t)start);
364 *(uint32_t *)(bufc + 8) = cpu_to_be32((uint32_t)len);
365
366 /*
367 * We maintain the last ramblock that we requested for page. Note that we
368 * don't need locking because this function will only be called within the
369 * postcopy ram fault thread.
370 */
371 if (rb != mis->last_rb) {
372 mis->last_rb = rb;
373
374 rbname = qemu_ram_get_idstr(rb);
375 rbname_len = strlen(rbname);
376
377 assert(rbname_len < 256);
378
379 bufc[msglen++] = rbname_len;
380 memcpy(bufc + msglen, rbname, rbname_len);
381 msglen += rbname_len;
382 msg_type = MIG_RP_MSG_REQ_PAGES_ID;
383 } else {
384 msg_type = MIG_RP_MSG_REQ_PAGES;
385 }
386
387 return migrate_send_rp_message(mis, msg_type, msglen, bufc);
388 }
389
390 int migrate_send_rp_req_pages(MigrationIncomingState *mis,
391 RAMBlock *rb, ram_addr_t start, uint64_t haddr)
392 {
393 void *aligned = (void *)(uintptr_t)(haddr & (-qemu_ram_pagesize(rb)));
394 bool received = false;
395
396 WITH_QEMU_LOCK_GUARD(&mis->page_request_mutex) {
397 received = ramblock_recv_bitmap_test_byte_offset(rb, start);
398 if (!received && !g_tree_lookup(mis->page_requested, aligned)) {
399 /*
400 * The page has not been received, and it's not yet in the page
401 * request list. Queue it. Set the value of element to 1, so that
402 * things like g_tree_lookup() will return TRUE (1) when found.
403 */
404 g_tree_insert(mis->page_requested, aligned, (gpointer)1);
405 mis->page_requested_count++;
406 trace_postcopy_page_req_add(aligned, mis->page_requested_count);
407 }
408 }
409
410 /*
411 * If the page is there, skip sending the message. We don't even need the
412 * lock because as long as the page arrived, it'll be there forever.
413 */
414 if (received) {
415 return 0;
416 }
417
418 return migrate_send_rp_message_req_pages(mis, rb, start);
419 }
420
421 static bool migration_colo_enabled;
422 bool migration_incoming_colo_enabled(void)
423 {
424 return migration_colo_enabled;
425 }
426
427 void migration_incoming_disable_colo(void)
428 {
429 ram_block_discard_disable(false);
430 migration_colo_enabled = false;
431 }
432
433 int migration_incoming_enable_colo(void)
434 {
435 if (ram_block_discard_disable(true)) {
436 error_report("COLO: cannot disable RAM discard");
437 return -EBUSY;
438 }
439 migration_colo_enabled = true;
440 return 0;
441 }
442
443 void migrate_add_address(SocketAddress *address)
444 {
445 MigrationIncomingState *mis = migration_incoming_get_current();
446
447 QAPI_LIST_PREPEND(mis->socket_address_list,
448 QAPI_CLONE(SocketAddress, address));
449 }
450
451 static void qemu_start_incoming_migration(const char *uri, Error **errp)
452 {
453 const char *p = NULL;
454
455 if (!yank_register_instance(MIGRATION_YANK_INSTANCE, errp)) {
456 return;
457 }
458
459 qapi_event_send_migration(MIGRATION_STATUS_SETUP);
460 if (strstart(uri, "tcp:", &p) ||
461 strstart(uri, "unix:", NULL) ||
462 strstart(uri, "vsock:", NULL)) {
463 socket_start_incoming_migration(p ? p : uri, errp);
464 #ifdef CONFIG_RDMA
465 } else if (strstart(uri, "rdma:", &p)) {
466 rdma_start_incoming_migration(p, errp);
467 #endif
468 } else if (strstart(uri, "exec:", &p)) {
469 exec_start_incoming_migration(p, errp);
470 } else if (strstart(uri, "fd:", &p)) {
471 fd_start_incoming_migration(p, errp);
472 } else {
473 yank_unregister_instance(MIGRATION_YANK_INSTANCE);
474 error_setg(errp, "unknown migration protocol: %s", uri);
475 }
476 }
477
478 static void process_incoming_migration_bh(void *opaque)
479 {
480 Error *local_err = NULL;
481 MigrationIncomingState *mis = opaque;
482
483 /* If capability late_block_activate is set:
484 * Only fire up the block code now if we're going to restart the
485 * VM, else 'cont' will do it.
486 * This causes file locking to happen; so we don't want it to happen
487 * unless we really are starting the VM.
488 */
489 if (!migrate_late_block_activate() ||
490 (autostart && (!global_state_received() ||
491 global_state_get_runstate() == RUN_STATE_RUNNING))) {
492 /* Make sure all file formats flush their mutable metadata.
493 * If we get an error here, just don't restart the VM yet. */
494 bdrv_invalidate_cache_all(&local_err);
495 if (local_err) {
496 error_report_err(local_err);
497 local_err = NULL;
498 autostart = false;
499 }
500 }
501
502 /*
503 * This must happen after all error conditions are dealt with and
504 * we're sure the VM is going to be running on this host.
505 */
506 qemu_announce_self(&mis->announce_timer, migrate_announce_params());
507
508 if (multifd_load_cleanup(&local_err) != 0) {
509 error_report_err(local_err);
510 autostart = false;
511 }
512 /* If global state section was not received or we are in running
513 state, we need to obey autostart. Any other state is set with
514 runstate_set. */
515
516 dirty_bitmap_mig_before_vm_start();
517
518 if (!global_state_received() ||
519 global_state_get_runstate() == RUN_STATE_RUNNING) {
520 if (autostart) {
521 vm_start();
522 } else {
523 runstate_set(RUN_STATE_PAUSED);
524 }
525 } else if (migration_incoming_colo_enabled()) {
526 migration_incoming_disable_colo();
527 vm_start();
528 } else {
529 runstate_set(global_state_get_runstate());
530 }
531 /*
532 * This must happen after any state changes since as soon as an external
533 * observer sees this event they might start to prod at the VM assuming
534 * it's ready to use.
535 */
536 migrate_set_state(&mis->state, MIGRATION_STATUS_ACTIVE,
537 MIGRATION_STATUS_COMPLETED);
538 qemu_bh_delete(mis->bh);
539 migration_incoming_state_destroy();
540 }
541
542 static void process_incoming_migration_co(void *opaque)
543 {
544 MigrationIncomingState *mis = migration_incoming_get_current();
545 PostcopyState ps;
546 int ret;
547 Error *local_err = NULL;
548
549 assert(mis->from_src_file);
550 mis->migration_incoming_co = qemu_coroutine_self();
551 mis->largest_page_size = qemu_ram_pagesize_largest();
552 postcopy_state_set(POSTCOPY_INCOMING_NONE);
553 migrate_set_state(&mis->state, MIGRATION_STATUS_NONE,
554 MIGRATION_STATUS_ACTIVE);
555 ret = qemu_loadvm_state(mis->from_src_file);
556
557 ps = postcopy_state_get();
558 trace_process_incoming_migration_co_end(ret, ps);
559 if (ps != POSTCOPY_INCOMING_NONE) {
560 if (ps == POSTCOPY_INCOMING_ADVISE) {
561 /*
562 * Where a migration had postcopy enabled (and thus went to advise)
563 * but managed to complete within the precopy period, we can use
564 * the normal exit.
565 */
566 postcopy_ram_incoming_cleanup(mis);
567 } else if (ret >= 0) {
568 /*
569 * Postcopy was started, cleanup should happen at the end of the
570 * postcopy thread.
571 */
572 trace_process_incoming_migration_co_postcopy_end_main();
573 return;
574 }
575 /* Else if something went wrong then just fall out of the normal exit */
576 }
577
578 /* we get COLO info, and know if we are in COLO mode */
579 if (!ret && migration_incoming_colo_enabled()) {
580 /* Make sure all file formats flush their mutable metadata */
581 bdrv_invalidate_cache_all(&local_err);
582 if (local_err) {
583 error_report_err(local_err);
584 goto fail;
585 }
586
587 qemu_thread_create(&mis->colo_incoming_thread, "COLO incoming",
588 colo_process_incoming_thread, mis, QEMU_THREAD_JOINABLE);
589 mis->have_colo_incoming_thread = true;
590 qemu_coroutine_yield();
591
592 /* Wait checkpoint incoming thread exit before free resource */
593 qemu_thread_join(&mis->colo_incoming_thread);
594 /* We hold the global iothread lock, so it is safe here */
595 colo_release_ram_cache();
596 }
597
598 if (ret < 0) {
599 error_report("load of migration failed: %s", strerror(-ret));
600 goto fail;
601 }
602 mis->bh = qemu_bh_new(process_incoming_migration_bh, mis);
603 qemu_bh_schedule(mis->bh);
604 mis->migration_incoming_co = NULL;
605 return;
606 fail:
607 local_err = NULL;
608 migrate_set_state(&mis->state, MIGRATION_STATUS_ACTIVE,
609 MIGRATION_STATUS_FAILED);
610 qemu_fclose(mis->from_src_file);
611 if (multifd_load_cleanup(&local_err) != 0) {
612 error_report_err(local_err);
613 }
614 exit(EXIT_FAILURE);
615 }
616
617 /**
618 * @migration_incoming_setup: Setup incoming migration
619 *
620 * Returns 0 for no error or 1 for error
621 *
622 * @f: file for main migration channel
623 * @errp: where to put errors
624 */
625 static int migration_incoming_setup(QEMUFile *f, Error **errp)
626 {
627 MigrationIncomingState *mis = migration_incoming_get_current();
628 Error *local_err = NULL;
629
630 if (multifd_load_setup(&local_err) != 0) {
631 /* We haven't been able to create multifd threads
632 nothing better to do */
633 error_report_err(local_err);
634 exit(EXIT_FAILURE);
635 }
636
637 if (!mis->from_src_file) {
638 mis->from_src_file = f;
639 }
640 qemu_file_set_blocking(f, false);
641 return 0;
642 }
643
644 void migration_incoming_process(void)
645 {
646 Coroutine *co = qemu_coroutine_create(process_incoming_migration_co, NULL);
647 qemu_coroutine_enter(co);
648 }
649
650 /* Returns true if recovered from a paused migration, otherwise false */
651 static bool postcopy_try_recover(QEMUFile *f)
652 {
653 MigrationIncomingState *mis = migration_incoming_get_current();
654
655 if (mis->state == MIGRATION_STATUS_POSTCOPY_PAUSED) {
656 /* Resumed from a paused postcopy migration */
657
658 mis->from_src_file = f;
659 /* Postcopy has standalone thread to do vm load */
660 qemu_file_set_blocking(f, true);
661
662 /* Re-configure the return path */
663 mis->to_src_file = qemu_file_get_return_path(f);
664
665 migrate_set_state(&mis->state, MIGRATION_STATUS_POSTCOPY_PAUSED,
666 MIGRATION_STATUS_POSTCOPY_RECOVER);
667
668 /*
669 * Here, we only wake up the main loading thread (while the
670 * fault thread will still be waiting), so that we can receive
671 * commands from source now, and answer it if needed. The
672 * fault thread will be woken up afterwards until we are sure
673 * that source is ready to reply to page requests.
674 */
675 qemu_sem_post(&mis->postcopy_pause_sem_dst);
676 return true;
677 }
678
679 return false;
680 }
681
682 void migration_fd_process_incoming(QEMUFile *f, Error **errp)
683 {
684 Error *local_err = NULL;
685
686 if (postcopy_try_recover(f)) {
687 return;
688 }
689
690 if (migration_incoming_setup(f, &local_err)) {
691 error_propagate(errp, local_err);
692 return;
693 }
694 migration_incoming_process();
695 }
696
697 void migration_ioc_process_incoming(QIOChannel *ioc, Error **errp)
698 {
699 MigrationIncomingState *mis = migration_incoming_get_current();
700 Error *local_err = NULL;
701 bool start_migration;
702
703 if (!mis->from_src_file) {
704 /* The first connection (multifd may have multiple) */
705 QEMUFile *f = qemu_fopen_channel_input(ioc);
706
707 /* If it's a recovery, we're done */
708 if (postcopy_try_recover(f)) {
709 return;
710 }
711
712 if (migration_incoming_setup(f, &local_err)) {
713 error_propagate(errp, local_err);
714 return;
715 }
716
717 /*
718 * Common migration only needs one channel, so we can start
719 * right now. Multifd needs more than one channel, we wait.
720 */
721 start_migration = !migrate_use_multifd();
722 } else {
723 /* Multiple connections */
724 assert(migrate_use_multifd());
725 start_migration = multifd_recv_new_channel(ioc, &local_err);
726 if (local_err) {
727 error_propagate(errp, local_err);
728 return;
729 }
730 }
731
732 if (start_migration) {
733 migration_incoming_process();
734 }
735 }
736
737 /**
738 * @migration_has_all_channels: We have received all channels that we need
739 *
740 * Returns true when we have got connections to all the channels that
741 * we need for migration.
742 */
743 bool migration_has_all_channels(void)
744 {
745 MigrationIncomingState *mis = migration_incoming_get_current();
746 bool all_channels;
747
748 all_channels = multifd_recv_all_channels_created();
749
750 return all_channels && mis->from_src_file != NULL;
751 }
752
753 /*
754 * Send a 'SHUT' message on the return channel with the given value
755 * to indicate that we've finished with the RP. Non-0 value indicates
756 * error.
757 */
758 void migrate_send_rp_shut(MigrationIncomingState *mis,
759 uint32_t value)
760 {
761 uint32_t buf;
762
763 buf = cpu_to_be32(value);
764 migrate_send_rp_message(mis, MIG_RP_MSG_SHUT, sizeof(buf), &buf);
765 }
766
767 /*
768 * Send a 'PONG' message on the return channel with the given value
769 * (normally in response to a 'PING')
770 */
771 void migrate_send_rp_pong(MigrationIncomingState *mis,
772 uint32_t value)
773 {
774 uint32_t buf;
775
776 buf = cpu_to_be32(value);
777 migrate_send_rp_message(mis, MIG_RP_MSG_PONG, sizeof(buf), &buf);
778 }
779
780 void migrate_send_rp_recv_bitmap(MigrationIncomingState *mis,
781 char *block_name)
782 {
783 char buf[512];
784 int len;
785 int64_t res;
786
787 /*
788 * First, we send the header part. It contains only the len of
789 * idstr, and the idstr itself.
790 */
791 len = strlen(block_name);
792 buf[0] = len;
793 memcpy(buf + 1, block_name, len);
794
795 if (mis->state != MIGRATION_STATUS_POSTCOPY_RECOVER) {
796 error_report("%s: MSG_RP_RECV_BITMAP only used for recovery",
797 __func__);
798 return;
799 }
800
801 migrate_send_rp_message(mis, MIG_RP_MSG_RECV_BITMAP, len + 1, buf);
802
803 /*
804 * Next, we dump the received bitmap to the stream.
805 *
806 * TODO: currently we are safe since we are the only one that is
807 * using the to_src_file handle (fault thread is still paused),
808 * and it's ok even not taking the mutex. However the best way is
809 * to take the lock before sending the message header, and release
810 * the lock after sending the bitmap.
811 */
812 qemu_mutex_lock(&mis->rp_mutex);
813 res = ramblock_recv_bitmap_send(mis->to_src_file, block_name);
814 qemu_mutex_unlock(&mis->rp_mutex);
815
816 trace_migrate_send_rp_recv_bitmap(block_name, res);
817 }
818
819 void migrate_send_rp_resume_ack(MigrationIncomingState *mis, uint32_t value)
820 {
821 uint32_t buf;
822
823 buf = cpu_to_be32(value);
824 migrate_send_rp_message(mis, MIG_RP_MSG_RESUME_ACK, sizeof(buf), &buf);
825 }
826
827 MigrationCapabilityStatusList *qmp_query_migrate_capabilities(Error **errp)
828 {
829 MigrationCapabilityStatusList *head = NULL, **tail = &head;
830 MigrationCapabilityStatus *caps;
831 MigrationState *s = migrate_get_current();
832 int i;
833
834 for (i = 0; i < MIGRATION_CAPABILITY__MAX; i++) {
835 #ifndef CONFIG_LIVE_BLOCK_MIGRATION
836 if (i == MIGRATION_CAPABILITY_BLOCK) {
837 continue;
838 }
839 #endif
840 caps = g_malloc0(sizeof(*caps));
841 caps->capability = i;
842 caps->state = s->enabled_capabilities[i];
843 QAPI_LIST_APPEND(tail, caps);
844 }
845
846 return head;
847 }
848
849 MigrationParameters *qmp_query_migrate_parameters(Error **errp)
850 {
851 MigrationParameters *params;
852 MigrationState *s = migrate_get_current();
853
854 /* TODO use QAPI_CLONE() instead of duplicating it inline */
855 params = g_malloc0(sizeof(*params));
856 params->has_compress_level = true;
857 params->compress_level = s->parameters.compress_level;
858 params->has_compress_threads = true;
859 params->compress_threads = s->parameters.compress_threads;
860 params->has_compress_wait_thread = true;
861 params->compress_wait_thread = s->parameters.compress_wait_thread;
862 params->has_decompress_threads = true;
863 params->decompress_threads = s->parameters.decompress_threads;
864 params->has_throttle_trigger_threshold = true;
865 params->throttle_trigger_threshold = s->parameters.throttle_trigger_threshold;
866 params->has_cpu_throttle_initial = true;
867 params->cpu_throttle_initial = s->parameters.cpu_throttle_initial;
868 params->has_cpu_throttle_increment = true;
869 params->cpu_throttle_increment = s->parameters.cpu_throttle_increment;
870 params->has_cpu_throttle_tailslow = true;
871 params->cpu_throttle_tailslow = s->parameters.cpu_throttle_tailslow;
872 params->has_tls_creds = true;
873 params->tls_creds = g_strdup(s->parameters.tls_creds);
874 params->has_tls_hostname = true;
875 params->tls_hostname = g_strdup(s->parameters.tls_hostname);
876 params->has_tls_authz = true;
877 params->tls_authz = g_strdup(s->parameters.tls_authz ?
878 s->parameters.tls_authz : "");
879 params->has_max_bandwidth = true;
880 params->max_bandwidth = s->parameters.max_bandwidth;
881 params->has_downtime_limit = true;
882 params->downtime_limit = s->parameters.downtime_limit;
883 params->has_x_checkpoint_delay = true;
884 params->x_checkpoint_delay = s->parameters.x_checkpoint_delay;
885 params->has_block_incremental = true;
886 params->block_incremental = s->parameters.block_incremental;
887 params->has_multifd_channels = true;
888 params->multifd_channels = s->parameters.multifd_channels;
889 params->has_multifd_compression = true;
890 params->multifd_compression = s->parameters.multifd_compression;
891 params->has_multifd_zlib_level = true;
892 params->multifd_zlib_level = s->parameters.multifd_zlib_level;
893 params->has_multifd_zstd_level = true;
894 params->multifd_zstd_level = s->parameters.multifd_zstd_level;
895 params->has_xbzrle_cache_size = true;
896 params->xbzrle_cache_size = s->parameters.xbzrle_cache_size;
897 params->has_max_postcopy_bandwidth = true;
898 params->max_postcopy_bandwidth = s->parameters.max_postcopy_bandwidth;
899 params->has_max_cpu_throttle = true;
900 params->max_cpu_throttle = s->parameters.max_cpu_throttle;
901 params->has_announce_initial = true;
902 params->announce_initial = s->parameters.announce_initial;
903 params->has_announce_max = true;
904 params->announce_max = s->parameters.announce_max;
905 params->has_announce_rounds = true;
906 params->announce_rounds = s->parameters.announce_rounds;
907 params->has_announce_step = true;
908 params->announce_step = s->parameters.announce_step;
909
910 if (s->parameters.has_block_bitmap_mapping) {
911 params->has_block_bitmap_mapping = true;
912 params->block_bitmap_mapping =
913 QAPI_CLONE(BitmapMigrationNodeAliasList,
914 s->parameters.block_bitmap_mapping);
915 }
916
917 return params;
918 }
919
920 AnnounceParameters *migrate_announce_params(void)
921 {
922 static AnnounceParameters ap;
923
924 MigrationState *s = migrate_get_current();
925
926 ap.initial = s->parameters.announce_initial;
927 ap.max = s->parameters.announce_max;
928 ap.rounds = s->parameters.announce_rounds;
929 ap.step = s->parameters.announce_step;
930
931 return &ap;
932 }
933
934 /*
935 * Return true if we're already in the middle of a migration
936 * (i.e. any of the active or setup states)
937 */
938 bool migration_is_setup_or_active(int state)
939 {
940 switch (state) {
941 case MIGRATION_STATUS_ACTIVE:
942 case MIGRATION_STATUS_POSTCOPY_ACTIVE:
943 case MIGRATION_STATUS_POSTCOPY_PAUSED:
944 case MIGRATION_STATUS_POSTCOPY_RECOVER:
945 case MIGRATION_STATUS_SETUP:
946 case MIGRATION_STATUS_PRE_SWITCHOVER:
947 case MIGRATION_STATUS_DEVICE:
948 case MIGRATION_STATUS_WAIT_UNPLUG:
949 case MIGRATION_STATUS_COLO:
950 return true;
951
952 default:
953 return false;
954
955 }
956 }
957
958 bool migration_is_running(int state)
959 {
960 switch (state) {
961 case MIGRATION_STATUS_ACTIVE:
962 case MIGRATION_STATUS_POSTCOPY_ACTIVE:
963 case MIGRATION_STATUS_POSTCOPY_PAUSED:
964 case MIGRATION_STATUS_POSTCOPY_RECOVER:
965 case MIGRATION_STATUS_SETUP:
966 case MIGRATION_STATUS_PRE_SWITCHOVER:
967 case MIGRATION_STATUS_DEVICE:
968 case MIGRATION_STATUS_WAIT_UNPLUG:
969 case MIGRATION_STATUS_CANCELLING:
970 return true;
971
972 default:
973 return false;
974
975 }
976 }
977
978 static void populate_time_info(MigrationInfo *info, MigrationState *s)
979 {
980 info->has_status = true;
981 info->has_setup_time = true;
982 info->setup_time = s->setup_time;
983 if (s->state == MIGRATION_STATUS_COMPLETED) {
984 info->has_total_time = true;
985 info->total_time = s->total_time;
986 info->has_downtime = true;
987 info->downtime = s->downtime;
988 } else {
989 info->has_total_time = true;
990 info->total_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME) -
991 s->start_time;
992 info->has_expected_downtime = true;
993 info->expected_downtime = s->expected_downtime;
994 }
995 }
996
997 static void populate_ram_info(MigrationInfo *info, MigrationState *s)
998 {
999 info->has_ram = true;
1000 info->ram = g_malloc0(sizeof(*info->ram));
1001 info->ram->transferred = ram_counters.transferred;
1002 info->ram->total = ram_bytes_total();
1003 info->ram->duplicate = ram_counters.duplicate;
1004 /* legacy value. It is not used anymore */
1005 info->ram->skipped = 0;
1006 info->ram->normal = ram_counters.normal;
1007 info->ram->normal_bytes = ram_counters.normal *
1008 qemu_target_page_size();
1009 info->ram->mbps = s->mbps;
1010 info->ram->dirty_sync_count = ram_counters.dirty_sync_count;
1011 info->ram->postcopy_requests = ram_counters.postcopy_requests;
1012 info->ram->page_size = qemu_target_page_size();
1013 info->ram->multifd_bytes = ram_counters.multifd_bytes;
1014 info->ram->pages_per_second = s->pages_per_second;
1015
1016 if (migrate_use_xbzrle()) {
1017 info->has_xbzrle_cache = true;
1018 info->xbzrle_cache = g_malloc0(sizeof(*info->xbzrle_cache));
1019 info->xbzrle_cache->cache_size = migrate_xbzrle_cache_size();
1020 info->xbzrle_cache->bytes = xbzrle_counters.bytes;
1021 info->xbzrle_cache->pages = xbzrle_counters.pages;
1022 info->xbzrle_cache->cache_miss = xbzrle_counters.cache_miss;
1023 info->xbzrle_cache->cache_miss_rate = xbzrle_counters.cache_miss_rate;
1024 info->xbzrle_cache->encoding_rate = xbzrle_counters.encoding_rate;
1025 info->xbzrle_cache->overflow = xbzrle_counters.overflow;
1026 }
1027
1028 if (migrate_use_compression()) {
1029 info->has_compression = true;
1030 info->compression = g_malloc0(sizeof(*info->compression));
1031 info->compression->pages = compression_counters.pages;
1032 info->compression->busy = compression_counters.busy;
1033 info->compression->busy_rate = compression_counters.busy_rate;
1034 info->compression->compressed_size =
1035 compression_counters.compressed_size;
1036 info->compression->compression_rate =
1037 compression_counters.compression_rate;
1038 }
1039
1040 if (cpu_throttle_active()) {
1041 info->has_cpu_throttle_percentage = true;
1042 info->cpu_throttle_percentage = cpu_throttle_get_percentage();
1043 }
1044
1045 if (s->state != MIGRATION_STATUS_COMPLETED) {
1046 info->ram->remaining = ram_bytes_remaining();
1047 info->ram->dirty_pages_rate = ram_counters.dirty_pages_rate;
1048 }
1049 }
1050
1051 static void populate_disk_info(MigrationInfo *info)
1052 {
1053 if (blk_mig_active()) {
1054 info->has_disk = true;
1055 info->disk = g_malloc0(sizeof(*info->disk));
1056 info->disk->transferred = blk_mig_bytes_transferred();
1057 info->disk->remaining = blk_mig_bytes_remaining();
1058 info->disk->total = blk_mig_bytes_total();
1059 }
1060 }
1061
1062 static void populate_vfio_info(MigrationInfo *info)
1063 {
1064 #ifdef CONFIG_VFIO
1065 if (vfio_mig_active()) {
1066 info->has_vfio = true;
1067 info->vfio = g_malloc0(sizeof(*info->vfio));
1068 info->vfio->transferred = vfio_mig_bytes_transferred();
1069 }
1070 #endif
1071 }
1072
1073 static void fill_source_migration_info(MigrationInfo *info)
1074 {
1075 MigrationState *s = migrate_get_current();
1076
1077 info->blocked = migration_is_blocked(NULL);
1078 info->has_blocked_reasons = info->blocked;
1079 info->blocked_reasons = NULL;
1080 if (info->blocked) {
1081 GSList *cur_blocker = migration_blockers;
1082
1083 /*
1084 * There are two types of reasons a migration might be blocked;
1085 * a) devices marked in VMState as non-migratable, and
1086 * b) Explicit migration blockers
1087 * We need to add both of them here.
1088 */
1089 qemu_savevm_non_migratable_list(&info->blocked_reasons);
1090
1091 while (cur_blocker) {
1092 QAPI_LIST_PREPEND(info->blocked_reasons,
1093 g_strdup(error_get_pretty(cur_blocker->data)));
1094 cur_blocker = g_slist_next(cur_blocker);
1095 }
1096 }
1097
1098 switch (s->state) {
1099 case MIGRATION_STATUS_NONE:
1100 /* no migration has happened ever */
1101 /* do not overwrite destination migration status */
1102 return;
1103 case MIGRATION_STATUS_SETUP:
1104 info->has_status = true;
1105 info->has_total_time = false;
1106 break;
1107 case MIGRATION_STATUS_ACTIVE:
1108 case MIGRATION_STATUS_CANCELLING:
1109 case MIGRATION_STATUS_POSTCOPY_ACTIVE:
1110 case MIGRATION_STATUS_PRE_SWITCHOVER:
1111 case MIGRATION_STATUS_DEVICE:
1112 case MIGRATION_STATUS_POSTCOPY_PAUSED:
1113 case MIGRATION_STATUS_POSTCOPY_RECOVER:
1114 /* TODO add some postcopy stats */
1115 populate_time_info(info, s);
1116 populate_ram_info(info, s);
1117 populate_disk_info(info);
1118 populate_vfio_info(info);
1119 break;
1120 case MIGRATION_STATUS_COLO:
1121 info->has_status = true;
1122 /* TODO: display COLO specific information (checkpoint info etc.) */
1123 break;
1124 case MIGRATION_STATUS_COMPLETED:
1125 populate_time_info(info, s);
1126 populate_ram_info(info, s);
1127 populate_vfio_info(info);
1128 break;
1129 case MIGRATION_STATUS_FAILED:
1130 info->has_status = true;
1131 if (s->error) {
1132 info->has_error_desc = true;
1133 info->error_desc = g_strdup(error_get_pretty(s->error));
1134 }
1135 break;
1136 case MIGRATION_STATUS_CANCELLED:
1137 info->has_status = true;
1138 break;
1139 case MIGRATION_STATUS_WAIT_UNPLUG:
1140 info->has_status = true;
1141 break;
1142 }
1143 info->status = s->state;
1144 }
1145
1146 typedef enum WriteTrackingSupport {
1147 WT_SUPPORT_UNKNOWN = 0,
1148 WT_SUPPORT_ABSENT,
1149 WT_SUPPORT_AVAILABLE,
1150 WT_SUPPORT_COMPATIBLE
1151 } WriteTrackingSupport;
1152
1153 static
1154 WriteTrackingSupport migrate_query_write_tracking(void)
1155 {
1156 /* Check if kernel supports required UFFD features */
1157 if (!ram_write_tracking_available()) {
1158 return WT_SUPPORT_ABSENT;
1159 }
1160 /*
1161 * Check if current memory configuration is
1162 * compatible with required UFFD features.
1163 */
1164 if (!ram_write_tracking_compatible()) {
1165 return WT_SUPPORT_AVAILABLE;
1166 }
1167
1168 return WT_SUPPORT_COMPATIBLE;
1169 }
1170
1171 /**
1172 * @migration_caps_check - check capability validity
1173 *
1174 * @cap_list: old capability list, array of bool
1175 * @params: new capabilities to be applied soon
1176 * @errp: set *errp if the check failed, with reason
1177 *
1178 * Returns true if check passed, otherwise false.
1179 */
1180 static bool migrate_caps_check(bool *cap_list,
1181 MigrationCapabilityStatusList *params,
1182 Error **errp)
1183 {
1184 MigrationCapabilityStatusList *cap;
1185 bool old_postcopy_cap;
1186 MigrationIncomingState *mis = migration_incoming_get_current();
1187
1188 old_postcopy_cap = cap_list[MIGRATION_CAPABILITY_POSTCOPY_RAM];
1189
1190 for (cap = params; cap; cap = cap->next) {
1191 cap_list[cap->value->capability] = cap->value->state;
1192 }
1193
1194 #ifndef CONFIG_LIVE_BLOCK_MIGRATION
1195 if (cap_list[MIGRATION_CAPABILITY_BLOCK]) {
1196 error_setg(errp, "QEMU compiled without old-style (blk/-b, inc/-i) "
1197 "block migration");
1198 error_append_hint(errp, "Use drive_mirror+NBD instead.\n");
1199 return false;
1200 }
1201 #endif
1202
1203 #ifndef CONFIG_REPLICATION
1204 if (cap_list[MIGRATION_CAPABILITY_X_COLO]) {
1205 error_setg(errp, "QEMU compiled without replication module"
1206 " can't enable COLO");
1207 error_append_hint(errp, "Please enable replication before COLO.\n");
1208 return false;
1209 }
1210 #endif
1211
1212 if (cap_list[MIGRATION_CAPABILITY_POSTCOPY_RAM]) {
1213 /* This check is reasonably expensive, so only when it's being
1214 * set the first time, also it's only the destination that needs
1215 * special support.
1216 */
1217 if (!old_postcopy_cap && runstate_check(RUN_STATE_INMIGRATE) &&
1218 !postcopy_ram_supported_by_host(mis)) {
1219 /* postcopy_ram_supported_by_host will have emitted a more
1220 * detailed message
1221 */
1222 error_setg(errp, "Postcopy is not supported");
1223 return false;
1224 }
1225
1226 if (cap_list[MIGRATION_CAPABILITY_X_IGNORE_SHARED]) {
1227 error_setg(errp, "Postcopy is not compatible with ignore-shared");
1228 return false;
1229 }
1230 }
1231
1232 if (cap_list[MIGRATION_CAPABILITY_BACKGROUND_SNAPSHOT]) {
1233 WriteTrackingSupport wt_support;
1234 int idx;
1235 /*
1236 * Check if 'background-snapshot' capability is supported by
1237 * host kernel and compatible with guest memory configuration.
1238 */
1239 wt_support = migrate_query_write_tracking();
1240 if (wt_support < WT_SUPPORT_AVAILABLE) {
1241 error_setg(errp, "Background-snapshot is not supported by host kernel");
1242 return false;
1243 }
1244 if (wt_support < WT_SUPPORT_COMPATIBLE) {
1245 error_setg(errp, "Background-snapshot is not compatible "
1246 "with guest memory configuration");
1247 return false;
1248 }
1249
1250 /*
1251 * Check if there are any migration capabilities
1252 * incompatible with 'background-snapshot'.
1253 */
1254 for (idx = 0; idx < check_caps_background_snapshot.size; idx++) {
1255 int incomp_cap = check_caps_background_snapshot.caps[idx];
1256 if (cap_list[incomp_cap]) {
1257 error_setg(errp,
1258 "Background-snapshot is not compatible with %s",
1259 MigrationCapability_str(incomp_cap));
1260 return false;
1261 }
1262 }
1263 }
1264
1265 return true;
1266 }
1267
1268 static void fill_destination_migration_info(MigrationInfo *info)
1269 {
1270 MigrationIncomingState *mis = migration_incoming_get_current();
1271
1272 if (mis->socket_address_list) {
1273 info->has_socket_address = true;
1274 info->socket_address =
1275 QAPI_CLONE(SocketAddressList, mis->socket_address_list);
1276 }
1277
1278 switch (mis->state) {
1279 case MIGRATION_STATUS_NONE:
1280 return;
1281 case MIGRATION_STATUS_SETUP:
1282 case MIGRATION_STATUS_CANCELLING:
1283 case MIGRATION_STATUS_CANCELLED:
1284 case MIGRATION_STATUS_ACTIVE:
1285 case MIGRATION_STATUS_POSTCOPY_ACTIVE:
1286 case MIGRATION_STATUS_POSTCOPY_PAUSED:
1287 case MIGRATION_STATUS_POSTCOPY_RECOVER:
1288 case MIGRATION_STATUS_FAILED:
1289 case MIGRATION_STATUS_COLO:
1290 info->has_status = true;
1291 break;
1292 case MIGRATION_STATUS_COMPLETED:
1293 info->has_status = true;
1294 fill_destination_postcopy_migration_info(info);
1295 break;
1296 }
1297 info->status = mis->state;
1298 }
1299
1300 MigrationInfo *qmp_query_migrate(Error **errp)
1301 {
1302 MigrationInfo *info = g_malloc0(sizeof(*info));
1303
1304 fill_destination_migration_info(info);
1305 fill_source_migration_info(info);
1306
1307 return info;
1308 }
1309
1310 void qmp_migrate_set_capabilities(MigrationCapabilityStatusList *params,
1311 Error **errp)
1312 {
1313 MigrationState *s = migrate_get_current();
1314 MigrationCapabilityStatusList *cap;
1315 bool cap_list[MIGRATION_CAPABILITY__MAX];
1316
1317 if (migration_is_running(s->state)) {
1318 error_setg(errp, QERR_MIGRATION_ACTIVE);
1319 return;
1320 }
1321
1322 memcpy(cap_list, s->enabled_capabilities, sizeof(cap_list));
1323 if (!migrate_caps_check(cap_list, params, errp)) {
1324 return;
1325 }
1326
1327 for (cap = params; cap; cap = cap->next) {
1328 s->enabled_capabilities[cap->value->capability] = cap->value->state;
1329 }
1330 }
1331
1332 /*
1333 * Check whether the parameters are valid. Error will be put into errp
1334 * (if provided). Return true if valid, otherwise false.
1335 */
1336 static bool migrate_params_check(MigrationParameters *params, Error **errp)
1337 {
1338 if (params->has_compress_level &&
1339 (params->compress_level > 9)) {
1340 error_setg(errp, QERR_INVALID_PARAMETER_VALUE, "compress_level",
1341 "a value between 0 and 9");
1342 return false;
1343 }
1344
1345 if (params->has_compress_threads && (params->compress_threads < 1)) {
1346 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1347 "compress_threads",
1348 "a value between 1 and 255");
1349 return false;
1350 }
1351
1352 if (params->has_decompress_threads && (params->decompress_threads < 1)) {
1353 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1354 "decompress_threads",
1355 "a value between 1 and 255");
1356 return false;
1357 }
1358
1359 if (params->has_throttle_trigger_threshold &&
1360 (params->throttle_trigger_threshold < 1 ||
1361 params->throttle_trigger_threshold > 100)) {
1362 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1363 "throttle_trigger_threshold",
1364 "an integer in the range of 1 to 100");
1365 return false;
1366 }
1367
1368 if (params->has_cpu_throttle_initial &&
1369 (params->cpu_throttle_initial < 1 ||
1370 params->cpu_throttle_initial > 99)) {
1371 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1372 "cpu_throttle_initial",
1373 "an integer in the range of 1 to 99");
1374 return false;
1375 }
1376
1377 if (params->has_cpu_throttle_increment &&
1378 (params->cpu_throttle_increment < 1 ||
1379 params->cpu_throttle_increment > 99)) {
1380 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1381 "cpu_throttle_increment",
1382 "an integer in the range of 1 to 99");
1383 return false;
1384 }
1385
1386 if (params->has_max_bandwidth && (params->max_bandwidth > SIZE_MAX)) {
1387 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1388 "max_bandwidth",
1389 "an integer in the range of 0 to "stringify(SIZE_MAX)
1390 " bytes/second");
1391 return false;
1392 }
1393
1394 if (params->has_downtime_limit &&
1395 (params->downtime_limit > MAX_MIGRATE_DOWNTIME)) {
1396 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1397 "downtime_limit",
1398 "an integer in the range of 0 to "
1399 stringify(MAX_MIGRATE_DOWNTIME)" ms");
1400 return false;
1401 }
1402
1403 /* x_checkpoint_delay is now always positive */
1404
1405 if (params->has_multifd_channels && (params->multifd_channels < 1)) {
1406 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1407 "multifd_channels",
1408 "a value between 1 and 255");
1409 return false;
1410 }
1411
1412 if (params->has_multifd_zlib_level &&
1413 (params->multifd_zlib_level > 9)) {
1414 error_setg(errp, QERR_INVALID_PARAMETER_VALUE, "multifd_zlib_level",
1415 "a value between 0 and 9");
1416 return false;
1417 }
1418
1419 if (params->has_multifd_zstd_level &&
1420 (params->multifd_zstd_level > 20)) {
1421 error_setg(errp, QERR_INVALID_PARAMETER_VALUE, "multifd_zstd_level",
1422 "a value between 0 and 20");
1423 return false;
1424 }
1425
1426 if (params->has_xbzrle_cache_size &&
1427 (params->xbzrle_cache_size < qemu_target_page_size() ||
1428 !is_power_of_2(params->xbzrle_cache_size))) {
1429 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1430 "xbzrle_cache_size",
1431 "a power of two no less than the target page size");
1432 return false;
1433 }
1434
1435 if (params->has_max_cpu_throttle &&
1436 (params->max_cpu_throttle < params->cpu_throttle_initial ||
1437 params->max_cpu_throttle > 99)) {
1438 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1439 "max_cpu_throttle",
1440 "an integer in the range of cpu_throttle_initial to 99");
1441 return false;
1442 }
1443
1444 if (params->has_announce_initial &&
1445 params->announce_initial > 100000) {
1446 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1447 "announce_initial",
1448 "a value between 0 and 100000");
1449 return false;
1450 }
1451 if (params->has_announce_max &&
1452 params->announce_max > 100000) {
1453 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1454 "announce_max",
1455 "a value between 0 and 100000");
1456 return false;
1457 }
1458 if (params->has_announce_rounds &&
1459 params->announce_rounds > 1000) {
1460 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1461 "announce_rounds",
1462 "a value between 0 and 1000");
1463 return false;
1464 }
1465 if (params->has_announce_step &&
1466 (params->announce_step < 1 ||
1467 params->announce_step > 10000)) {
1468 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
1469 "announce_step",
1470 "a value between 0 and 10000");
1471 return false;
1472 }
1473
1474 if (params->has_block_bitmap_mapping &&
1475 !check_dirty_bitmap_mig_alias_map(params->block_bitmap_mapping, errp)) {
1476 error_prepend(errp, "Invalid mapping given for block-bitmap-mapping: ");
1477 return false;
1478 }
1479
1480 return true;
1481 }
1482
1483 static void migrate_params_test_apply(MigrateSetParameters *params,
1484 MigrationParameters *dest)
1485 {
1486 *dest = migrate_get_current()->parameters;
1487
1488 /* TODO use QAPI_CLONE() instead of duplicating it inline */
1489
1490 if (params->has_compress_level) {
1491 dest->compress_level = params->compress_level;
1492 }
1493
1494 if (params->has_compress_threads) {
1495 dest->compress_threads = params->compress_threads;
1496 }
1497
1498 if (params->has_compress_wait_thread) {
1499 dest->compress_wait_thread = params->compress_wait_thread;
1500 }
1501
1502 if (params->has_decompress_threads) {
1503 dest->decompress_threads = params->decompress_threads;
1504 }
1505
1506 if (params->has_throttle_trigger_threshold) {
1507 dest->throttle_trigger_threshold = params->throttle_trigger_threshold;
1508 }
1509
1510 if (params->has_cpu_throttle_initial) {
1511 dest->cpu_throttle_initial = params->cpu_throttle_initial;
1512 }
1513
1514 if (params->has_cpu_throttle_increment) {
1515 dest->cpu_throttle_increment = params->cpu_throttle_increment;
1516 }
1517
1518 if (params->has_cpu_throttle_tailslow) {
1519 dest->cpu_throttle_tailslow = params->cpu_throttle_tailslow;
1520 }
1521
1522 if (params->has_tls_creds) {
1523 assert(params->tls_creds->type == QTYPE_QSTRING);
1524 dest->tls_creds = params->tls_creds->u.s;
1525 }
1526
1527 if (params->has_tls_hostname) {
1528 assert(params->tls_hostname->type == QTYPE_QSTRING);
1529 dest->tls_hostname = params->tls_hostname->u.s;
1530 }
1531
1532 if (params->has_max_bandwidth) {
1533 dest->max_bandwidth = params->max_bandwidth;
1534 }
1535
1536 if (params->has_downtime_limit) {
1537 dest->downtime_limit = params->downtime_limit;
1538 }
1539
1540 if (params->has_x_checkpoint_delay) {
1541 dest->x_checkpoint_delay = params->x_checkpoint_delay;
1542 }
1543
1544 if (params->has_block_incremental) {
1545 dest->block_incremental = params->block_incremental;
1546 }
1547 if (params->has_multifd_channels) {
1548 dest->multifd_channels = params->multifd_channels;
1549 }
1550 if (params->has_multifd_compression) {
1551 dest->multifd_compression = params->multifd_compression;
1552 }
1553 if (params->has_xbzrle_cache_size) {
1554 dest->xbzrle_cache_size = params->xbzrle_cache_size;
1555 }
1556 if (params->has_max_postcopy_bandwidth) {
1557 dest->max_postcopy_bandwidth = params->max_postcopy_bandwidth;
1558 }
1559 if (params->has_max_cpu_throttle) {
1560 dest->max_cpu_throttle = params->max_cpu_throttle;
1561 }
1562 if (params->has_announce_initial) {
1563 dest->announce_initial = params->announce_initial;
1564 }
1565 if (params->has_announce_max) {
1566 dest->announce_max = params->announce_max;
1567 }
1568 if (params->has_announce_rounds) {
1569 dest->announce_rounds = params->announce_rounds;
1570 }
1571 if (params->has_announce_step) {
1572 dest->announce_step = params->announce_step;
1573 }
1574
1575 if (params->has_block_bitmap_mapping) {
1576 dest->has_block_bitmap_mapping = true;
1577 dest->block_bitmap_mapping = params->block_bitmap_mapping;
1578 }
1579 }
1580
1581 static void migrate_params_apply(MigrateSetParameters *params, Error **errp)
1582 {
1583 MigrationState *s = migrate_get_current();
1584
1585 /* TODO use QAPI_CLONE() instead of duplicating it inline */
1586
1587 if (params->has_compress_level) {
1588 s->parameters.compress_level = params->compress_level;
1589 }
1590
1591 if (params->has_compress_threads) {
1592 s->parameters.compress_threads = params->compress_threads;
1593 }
1594
1595 if (params->has_compress_wait_thread) {
1596 s->parameters.compress_wait_thread = params->compress_wait_thread;
1597 }
1598
1599 if (params->has_decompress_threads) {
1600 s->parameters.decompress_threads = params->decompress_threads;
1601 }
1602
1603 if (params->has_throttle_trigger_threshold) {
1604 s->parameters.throttle_trigger_threshold = params->throttle_trigger_threshold;
1605 }
1606
1607 if (params->has_cpu_throttle_initial) {
1608 s->parameters.cpu_throttle_initial = params->cpu_throttle_initial;
1609 }
1610
1611 if (params->has_cpu_throttle_increment) {
1612 s->parameters.cpu_throttle_increment = params->cpu_throttle_increment;
1613 }
1614
1615 if (params->has_cpu_throttle_tailslow) {
1616 s->parameters.cpu_throttle_tailslow = params->cpu_throttle_tailslow;
1617 }
1618
1619 if (params->has_tls_creds) {
1620 g_free(s->parameters.tls_creds);
1621 assert(params->tls_creds->type == QTYPE_QSTRING);
1622 s->parameters.tls_creds = g_strdup(params->tls_creds->u.s);
1623 }
1624
1625 if (params->has_tls_hostname) {
1626 g_free(s->parameters.tls_hostname);
1627 assert(params->tls_hostname->type == QTYPE_QSTRING);
1628 s->parameters.tls_hostname = g_strdup(params->tls_hostname->u.s);
1629 }
1630
1631 if (params->has_tls_authz) {
1632 g_free(s->parameters.tls_authz);
1633 assert(params->tls_authz->type == QTYPE_QSTRING);
1634 s->parameters.tls_authz = g_strdup(params->tls_authz->u.s);
1635 }
1636
1637 if (params->has_max_bandwidth) {
1638 s->parameters.max_bandwidth = params->max_bandwidth;
1639 if (s->to_dst_file && !migration_in_postcopy()) {
1640 qemu_file_set_rate_limit(s->to_dst_file,
1641 s->parameters.max_bandwidth / XFER_LIMIT_RATIO);
1642 }
1643 }
1644
1645 if (params->has_downtime_limit) {
1646 s->parameters.downtime_limit = params->downtime_limit;
1647 }
1648
1649 if (params->has_x_checkpoint_delay) {
1650 s->parameters.x_checkpoint_delay = params->x_checkpoint_delay;
1651 if (migration_in_colo_state()) {
1652 colo_checkpoint_notify(s);
1653 }
1654 }
1655
1656 if (params->has_block_incremental) {
1657 s->parameters.block_incremental = params->block_incremental;
1658 }
1659 if (params->has_multifd_channels) {
1660 s->parameters.multifd_channels = params->multifd_channels;
1661 }
1662 if (params->has_multifd_compression) {
1663 s->parameters.multifd_compression = params->multifd_compression;
1664 }
1665 if (params->has_xbzrle_cache_size) {
1666 s->parameters.xbzrle_cache_size = params->xbzrle_cache_size;
1667 xbzrle_cache_resize(params->xbzrle_cache_size, errp);
1668 }
1669 if (params->has_max_postcopy_bandwidth) {
1670 s->parameters.max_postcopy_bandwidth = params->max_postcopy_bandwidth;
1671 if (s->to_dst_file && migration_in_postcopy()) {
1672 qemu_file_set_rate_limit(s->to_dst_file,
1673 s->parameters.max_postcopy_bandwidth / XFER_LIMIT_RATIO);
1674 }
1675 }
1676 if (params->has_max_cpu_throttle) {
1677 s->parameters.max_cpu_throttle = params->max_cpu_throttle;
1678 }
1679 if (params->has_announce_initial) {
1680 s->parameters.announce_initial = params->announce_initial;
1681 }
1682 if (params->has_announce_max) {
1683 s->parameters.announce_max = params->announce_max;
1684 }
1685 if (params->has_announce_rounds) {
1686 s->parameters.announce_rounds = params->announce_rounds;
1687 }
1688 if (params->has_announce_step) {
1689 s->parameters.announce_step = params->announce_step;
1690 }
1691
1692 if (params->has_block_bitmap_mapping) {
1693 qapi_free_BitmapMigrationNodeAliasList(
1694 s->parameters.block_bitmap_mapping);
1695
1696 s->parameters.has_block_bitmap_mapping = true;
1697 s->parameters.block_bitmap_mapping =
1698 QAPI_CLONE(BitmapMigrationNodeAliasList,
1699 params->block_bitmap_mapping);
1700 }
1701 }
1702
1703 void qmp_migrate_set_parameters(MigrateSetParameters *params, Error **errp)
1704 {
1705 MigrationParameters tmp;
1706
1707 /* TODO Rewrite "" to null instead */
1708 if (params->has_tls_creds
1709 && params->tls_creds->type == QTYPE_QNULL) {
1710 qobject_unref(params->tls_creds->u.n);
1711 params->tls_creds->type = QTYPE_QSTRING;
1712 params->tls_creds->u.s = strdup("");
1713 }
1714 /* TODO Rewrite "" to null instead */
1715 if (params->has_tls_hostname
1716 && params->tls_hostname->type == QTYPE_QNULL) {
1717 qobject_unref(params->tls_hostname->u.n);
1718 params->tls_hostname->type = QTYPE_QSTRING;
1719 params->tls_hostname->u.s = strdup("");
1720 }
1721
1722 migrate_params_test_apply(params, &tmp);
1723
1724 if (!migrate_params_check(&tmp, errp)) {
1725 /* Invalid parameter */
1726 return;
1727 }
1728
1729 migrate_params_apply(params, errp);
1730 }
1731
1732
1733 void qmp_migrate_start_postcopy(Error **errp)
1734 {
1735 MigrationState *s = migrate_get_current();
1736
1737 if (!migrate_postcopy()) {
1738 error_setg(errp, "Enable postcopy with migrate_set_capability before"
1739 " the start of migration");
1740 return;
1741 }
1742
1743 if (s->state == MIGRATION_STATUS_NONE) {
1744 error_setg(errp, "Postcopy must be started after migration has been"
1745 " started");
1746 return;
1747 }
1748 /*
1749 * we don't error if migration has finished since that would be racy
1750 * with issuing this command.
1751 */
1752 qatomic_set(&s->start_postcopy, true);
1753 }
1754
1755 /* shared migration helpers */
1756
1757 void migrate_set_state(int *state, int old_state, int new_state)
1758 {
1759 assert(new_state < MIGRATION_STATUS__MAX);
1760 if (qatomic_cmpxchg(state, old_state, new_state) == old_state) {
1761 trace_migrate_set_state(MigrationStatus_str(new_state));
1762 migrate_generate_event(new_state);
1763 }
1764 }
1765
1766 static MigrationCapabilityStatus *migrate_cap_add(MigrationCapability index,
1767 bool state)
1768 {
1769 MigrationCapabilityStatus *cap;
1770
1771 cap = g_new0(MigrationCapabilityStatus, 1);
1772 cap->capability = index;
1773 cap->state = state;
1774
1775 return cap;
1776 }
1777
1778 void migrate_set_block_enabled(bool value, Error **errp)
1779 {
1780 MigrationCapabilityStatusList *cap = NULL;
1781
1782 QAPI_LIST_PREPEND(cap, migrate_cap_add(MIGRATION_CAPABILITY_BLOCK, value));
1783 qmp_migrate_set_capabilities(cap, errp);
1784 qapi_free_MigrationCapabilityStatusList(cap);
1785 }
1786
1787 static void migrate_set_block_incremental(MigrationState *s, bool value)
1788 {
1789 s->parameters.block_incremental = value;
1790 }
1791
1792 static void block_cleanup_parameters(MigrationState *s)
1793 {
1794 if (s->must_remove_block_options) {
1795 /* setting to false can never fail */
1796 migrate_set_block_enabled(false, &error_abort);
1797 migrate_set_block_incremental(s, false);
1798 s->must_remove_block_options = false;
1799 }
1800 }
1801
1802 static void migrate_fd_cleanup(MigrationState *s)
1803 {
1804 qemu_bh_delete(s->cleanup_bh);
1805 s->cleanup_bh = NULL;
1806
1807 qemu_savevm_state_cleanup();
1808
1809 if (s->to_dst_file) {
1810 QEMUFile *tmp;
1811
1812 trace_migrate_fd_cleanup();
1813 qemu_mutex_unlock_iothread();
1814 if (s->migration_thread_running) {
1815 qemu_thread_join(&s->thread);
1816 s->migration_thread_running = false;
1817 }
1818 qemu_mutex_lock_iothread();
1819
1820 multifd_save_cleanup();
1821 qemu_mutex_lock(&s->qemu_file_lock);
1822 tmp = s->to_dst_file;
1823 s->to_dst_file = NULL;
1824 qemu_mutex_unlock(&s->qemu_file_lock);
1825 /*
1826 * Close the file handle without the lock to make sure the
1827 * critical section won't block for long.
1828 */
1829 qemu_fclose(tmp);
1830 }
1831
1832 assert(!migration_is_active(s));
1833
1834 if (s->state == MIGRATION_STATUS_CANCELLING) {
1835 migrate_set_state(&s->state, MIGRATION_STATUS_CANCELLING,
1836 MIGRATION_STATUS_CANCELLED);
1837 }
1838
1839 if (s->error) {
1840 /* It is used on info migrate. We can't free it */
1841 error_report_err(error_copy(s->error));
1842 }
1843 notifier_list_notify(&migration_state_notifiers, s);
1844 block_cleanup_parameters(s);
1845 yank_unregister_instance(MIGRATION_YANK_INSTANCE);
1846 }
1847
1848 static void migrate_fd_cleanup_schedule(MigrationState *s)
1849 {
1850 /*
1851 * Ref the state for bh, because it may be called when
1852 * there're already no other refs
1853 */
1854 object_ref(OBJECT(s));
1855 qemu_bh_schedule(s->cleanup_bh);
1856 }
1857
1858 static void migrate_fd_cleanup_bh(void *opaque)
1859 {
1860 MigrationState *s = opaque;
1861 migrate_fd_cleanup(s);
1862 object_unref(OBJECT(s));
1863 }
1864
1865 void migrate_set_error(MigrationState *s, const Error *error)
1866 {
1867 QEMU_LOCK_GUARD(&s->error_mutex);
1868 if (!s->error) {
1869 s->error = error_copy(error);
1870 }
1871 }
1872
1873 void migrate_fd_error(MigrationState *s, const Error *error)
1874 {
1875 trace_migrate_fd_error(error_get_pretty(error));
1876 assert(s->to_dst_file == NULL);
1877 migrate_set_state(&s->state, MIGRATION_STATUS_SETUP,
1878 MIGRATION_STATUS_FAILED);
1879 migrate_set_error(s, error);
1880 }
1881
1882 static void migrate_fd_cancel(MigrationState *s)
1883 {
1884 int old_state ;
1885 QEMUFile *f = migrate_get_current()->to_dst_file;
1886 trace_migrate_fd_cancel();
1887
1888 if (s->rp_state.from_dst_file) {
1889 /* shutdown the rp socket, so causing the rp thread to shutdown */
1890 qemu_file_shutdown(s->rp_state.from_dst_file);
1891 }
1892
1893 do {
1894 old_state = s->state;
1895 if (!migration_is_running(old_state)) {
1896 break;
1897 }
1898 /* If the migration is paused, kick it out of the pause */
1899 if (old_state == MIGRATION_STATUS_PRE_SWITCHOVER) {
1900 qemu_sem_post(&s->pause_sem);
1901 }
1902 migrate_set_state(&s->state, old_state, MIGRATION_STATUS_CANCELLING);
1903 } while (s->state != MIGRATION_STATUS_CANCELLING);
1904
1905 /*
1906 * If we're unlucky the migration code might be stuck somewhere in a
1907 * send/write while the network has failed and is waiting to timeout;
1908 * if we've got shutdown(2) available then we can force it to quit.
1909 * The outgoing qemu file gets closed in migrate_fd_cleanup that is
1910 * called in a bh, so there is no race against this cancel.
1911 */
1912 if (s->state == MIGRATION_STATUS_CANCELLING && f) {
1913 qemu_file_shutdown(f);
1914 }
1915 if (s->state == MIGRATION_STATUS_CANCELLING && s->block_inactive) {
1916 Error *local_err = NULL;
1917
1918 bdrv_invalidate_cache_all(&local_err);
1919 if (local_err) {
1920 error_report_err(local_err);
1921 } else {
1922 s->block_inactive = false;
1923 }
1924 }
1925 }
1926
1927 void add_migration_state_change_notifier(Notifier *notify)
1928 {
1929 notifier_list_add(&migration_state_notifiers, notify);
1930 }
1931
1932 void remove_migration_state_change_notifier(Notifier *notify)
1933 {
1934 notifier_remove(notify);
1935 }
1936
1937 bool migration_in_setup(MigrationState *s)
1938 {
1939 return s->state == MIGRATION_STATUS_SETUP;
1940 }
1941
1942 bool migration_has_finished(MigrationState *s)
1943 {
1944 return s->state == MIGRATION_STATUS_COMPLETED;
1945 }
1946
1947 bool migration_has_failed(MigrationState *s)
1948 {
1949 return (s->state == MIGRATION_STATUS_CANCELLED ||
1950 s->state == MIGRATION_STATUS_FAILED);
1951 }
1952
1953 bool migration_in_postcopy(void)
1954 {
1955 MigrationState *s = migrate_get_current();
1956
1957 switch (s->state) {
1958 case MIGRATION_STATUS_POSTCOPY_ACTIVE:
1959 case MIGRATION_STATUS_POSTCOPY_PAUSED:
1960 case MIGRATION_STATUS_POSTCOPY_RECOVER:
1961 return true;
1962 default:
1963 return false;
1964 }
1965 }
1966
1967 bool migration_in_postcopy_after_devices(MigrationState *s)
1968 {
1969 return migration_in_postcopy() && s->postcopy_after_devices;
1970 }
1971
1972 bool migration_in_incoming_postcopy(void)
1973 {
1974 PostcopyState ps = postcopy_state_get();
1975
1976 return ps >= POSTCOPY_INCOMING_DISCARD && ps < POSTCOPY_INCOMING_END;
1977 }
1978
1979 bool migration_is_idle(void)
1980 {
1981 MigrationState *s = current_migration;
1982
1983 if (!s) {
1984 return true;
1985 }
1986
1987 switch (s->state) {
1988 case MIGRATION_STATUS_NONE:
1989 case MIGRATION_STATUS_CANCELLED:
1990 case MIGRATION_STATUS_COMPLETED:
1991 case MIGRATION_STATUS_FAILED:
1992 return true;
1993 case MIGRATION_STATUS_SETUP:
1994 case MIGRATION_STATUS_CANCELLING:
1995 case MIGRATION_STATUS_ACTIVE:
1996 case MIGRATION_STATUS_POSTCOPY_ACTIVE:
1997 case MIGRATION_STATUS_COLO:
1998 case MIGRATION_STATUS_PRE_SWITCHOVER:
1999 case MIGRATION_STATUS_DEVICE:
2000 case MIGRATION_STATUS_WAIT_UNPLUG:
2001 return false;
2002 case MIGRATION_STATUS__MAX:
2003 g_assert_not_reached();
2004 }
2005
2006 return false;
2007 }
2008
2009 bool migration_is_active(MigrationState *s)
2010 {
2011 return (s->state == MIGRATION_STATUS_ACTIVE ||
2012 s->state == MIGRATION_STATUS_POSTCOPY_ACTIVE);
2013 }
2014
2015 void migrate_init(MigrationState *s)
2016 {
2017 /*
2018 * Reinitialise all migration state, except
2019 * parameters/capabilities that the user set, and
2020 * locks.
2021 */
2022 s->cleanup_bh = 0;
2023 s->vm_start_bh = 0;
2024 s->to_dst_file = NULL;
2025 s->state = MIGRATION_STATUS_NONE;
2026 s->rp_state.from_dst_file = NULL;
2027 s->rp_state.error = false;
2028 s->mbps = 0.0;
2029 s->pages_per_second = 0.0;
2030 s->downtime = 0;
2031 s->expected_downtime = 0;
2032 s->setup_time = 0;
2033 s->start_postcopy = false;
2034 s->postcopy_after_devices = false;
2035 s->migration_thread_running = false;
2036 error_free(s->error);
2037 s->error = NULL;
2038 s->hostname = NULL;
2039
2040 migrate_set_state(&s->state, MIGRATION_STATUS_NONE, MIGRATION_STATUS_SETUP);
2041
2042 s->start_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
2043 s->total_time = 0;
2044 s->vm_was_running = false;
2045 s->iteration_initial_bytes = 0;
2046 s->threshold_size = 0;
2047 }
2048
2049 int migrate_add_blocker(Error *reason, Error **errp)
2050 {
2051 if (only_migratable) {
2052 error_propagate_prepend(errp, error_copy(reason),
2053 "disallowing migration blocker "
2054 "(--only-migratable) for: ");
2055 return -EACCES;
2056 }
2057
2058 if (migration_is_idle()) {
2059 migration_blockers = g_slist_prepend(migration_blockers, reason);
2060 return 0;
2061 }
2062
2063 error_propagate_prepend(errp, error_copy(reason),
2064 "disallowing migration blocker "
2065 "(migration in progress) for: ");
2066 return -EBUSY;
2067 }
2068
2069 void migrate_del_blocker(Error *reason)
2070 {
2071 migration_blockers = g_slist_remove(migration_blockers, reason);
2072 }
2073
2074 void qmp_migrate_incoming(const char *uri, Error **errp)
2075 {
2076 Error *local_err = NULL;
2077 static bool once = true;
2078
2079 if (!once) {
2080 error_setg(errp, "The incoming migration has already been started");
2081 return;
2082 }
2083 if (!runstate_check(RUN_STATE_INMIGRATE)) {
2084 error_setg(errp, "'-incoming' was not specified on the command line");
2085 return;
2086 }
2087
2088 qemu_start_incoming_migration(uri, &local_err);
2089
2090 if (local_err) {
2091 error_propagate(errp, local_err);
2092 return;
2093 }
2094
2095 once = false;
2096 }
2097
2098 void qmp_migrate_recover(const char *uri, Error **errp)
2099 {
2100 MigrationIncomingState *mis = migration_incoming_get_current();
2101
2102 if (mis->state != MIGRATION_STATUS_POSTCOPY_PAUSED) {
2103 error_setg(errp, "Migrate recover can only be run "
2104 "when postcopy is paused.");
2105 return;
2106 }
2107
2108 if (qatomic_cmpxchg(&mis->postcopy_recover_triggered,
2109 false, true) == true) {
2110 error_setg(errp, "Migrate recovery is triggered already");
2111 return;
2112 }
2113
2114 /*
2115 * Note that this call will never start a real migration; it will
2116 * only re-setup the migration stream and poke existing migration
2117 * to continue using that newly established channel.
2118 */
2119 yank_unregister_instance(MIGRATION_YANK_INSTANCE);
2120 qemu_start_incoming_migration(uri, errp);
2121 }
2122
2123 void qmp_migrate_pause(Error **errp)
2124 {
2125 MigrationState *ms = migrate_get_current();
2126 MigrationIncomingState *mis = migration_incoming_get_current();
2127 int ret;
2128
2129 if (ms->state == MIGRATION_STATUS_POSTCOPY_ACTIVE) {
2130 /* Source side, during postcopy */
2131 qemu_mutex_lock(&ms->qemu_file_lock);
2132 ret = qemu_file_shutdown(ms->to_dst_file);
2133 qemu_mutex_unlock(&ms->qemu_file_lock);
2134 if (ret) {
2135 error_setg(errp, "Failed to pause source migration");
2136 }
2137 return;
2138 }
2139
2140 if (mis->state == MIGRATION_STATUS_POSTCOPY_ACTIVE) {
2141 ret = qemu_file_shutdown(mis->from_src_file);
2142 if (ret) {
2143 error_setg(errp, "Failed to pause destination migration");
2144 }
2145 return;
2146 }
2147
2148 error_setg(errp, "migrate-pause is currently only supported "
2149 "during postcopy-active state");
2150 }
2151
2152 bool migration_is_blocked(Error **errp)
2153 {
2154 if (qemu_savevm_state_blocked(errp)) {
2155 return true;
2156 }
2157
2158 if (migration_blockers) {
2159 error_propagate(errp, error_copy(migration_blockers->data));
2160 return true;
2161 }
2162
2163 return false;
2164 }
2165
2166 /* Returns true if continue to migrate, or false if error detected */
2167 static bool migrate_prepare(MigrationState *s, bool blk, bool blk_inc,
2168 bool resume, Error **errp)
2169 {
2170 Error *local_err = NULL;
2171
2172 if (resume) {
2173 if (s->state != MIGRATION_STATUS_POSTCOPY_PAUSED) {
2174 error_setg(errp, "Cannot resume if there is no "
2175 "paused migration");
2176 return false;
2177 }
2178
2179 /*
2180 * Postcopy recovery won't work well with release-ram
2181 * capability since release-ram will drop the page buffer as
2182 * long as the page is put into the send buffer. So if there
2183 * is a network failure happened, any page buffers that have
2184 * not yet reached the destination VM but have already been
2185 * sent from the source VM will be lost forever. Let's refuse
2186 * the client from resuming such a postcopy migration.
2187 * Luckily release-ram was designed to only be used when src
2188 * and destination VMs are on the same host, so it should be
2189 * fine.
2190 */
2191 if (migrate_release_ram()) {
2192 error_setg(errp, "Postcopy recovery cannot work "
2193 "when release-ram capability is set");
2194 return false;
2195 }
2196
2197 /* This is a resume, skip init status */
2198 return true;
2199 }
2200
2201 if (migration_is_running(s->state)) {
2202 error_setg(errp, QERR_MIGRATION_ACTIVE);
2203 return false;
2204 }
2205
2206 if (runstate_check(RUN_STATE_INMIGRATE)) {
2207 error_setg(errp, "Guest is waiting for an incoming migration");
2208 return false;
2209 }
2210
2211 if (runstate_check(RUN_STATE_POSTMIGRATE)) {
2212 error_setg(errp, "Can't migrate the vm that was paused due to "
2213 "previous migration");
2214 return false;
2215 }
2216
2217 if (migration_is_blocked(errp)) {
2218 return false;
2219 }
2220
2221 if (blk || blk_inc) {
2222 if (migrate_use_block() || migrate_use_block_incremental()) {
2223 error_setg(errp, "Command options are incompatible with "
2224 "current migration capabilities");
2225 return false;
2226 }
2227 migrate_set_block_enabled(true, &local_err);
2228 if (local_err) {
2229 error_propagate(errp, local_err);
2230 return false;
2231 }
2232 s->must_remove_block_options = true;
2233 }
2234
2235 if (blk_inc) {
2236 migrate_set_block_incremental(s, true);
2237 }
2238
2239 migrate_init(s);
2240 /*
2241 * set ram_counters memory to zero for a
2242 * new migration
2243 */
2244 memset(&ram_counters, 0, sizeof(ram_counters));
2245
2246 return true;
2247 }
2248
2249 void qmp_migrate(const char *uri, bool has_blk, bool blk,
2250 bool has_inc, bool inc, bool has_detach, bool detach,
2251 bool has_resume, bool resume, Error **errp)
2252 {
2253 Error *local_err = NULL;
2254 MigrationState *s = migrate_get_current();
2255 const char *p = NULL;
2256
2257 if (!migrate_prepare(s, has_blk && blk, has_inc && inc,
2258 has_resume && resume, errp)) {
2259 /* Error detected, put into errp */
2260 return;
2261 }
2262
2263 if (!(has_resume && resume)) {
2264 if (!yank_register_instance(MIGRATION_YANK_INSTANCE, errp)) {
2265 return;
2266 }
2267 }
2268
2269 if (strstart(uri, "tcp:", &p) ||
2270 strstart(uri, "unix:", NULL) ||
2271 strstart(uri, "vsock:", NULL)) {
2272 socket_start_outgoing_migration(s, p ? p : uri, &local_err);
2273 #ifdef CONFIG_RDMA
2274 } else if (strstart(uri, "rdma:", &p)) {
2275 rdma_start_outgoing_migration(s, p, &local_err);
2276 #endif
2277 } else if (strstart(uri, "exec:", &p)) {
2278 exec_start_outgoing_migration(s, p, &local_err);
2279 } else if (strstart(uri, "fd:", &p)) {
2280 fd_start_outgoing_migration(s, p, &local_err);
2281 } else {
2282 if (!(has_resume && resume)) {
2283 yank_unregister_instance(MIGRATION_YANK_INSTANCE);
2284 }
2285 error_setg(errp, QERR_INVALID_PARAMETER_VALUE, "uri",
2286 "a valid migration protocol");
2287 migrate_set_state(&s->state, MIGRATION_STATUS_SETUP,
2288 MIGRATION_STATUS_FAILED);
2289 block_cleanup_parameters(s);
2290 return;
2291 }
2292
2293 if (local_err) {
2294 if (!(has_resume && resume)) {
2295 yank_unregister_instance(MIGRATION_YANK_INSTANCE);
2296 }
2297 migrate_fd_error(s, local_err);
2298 error_propagate(errp, local_err);
2299 return;
2300 }
2301 }
2302
2303 void qmp_migrate_cancel(Error **errp)
2304 {
2305 migrate_fd_cancel(migrate_get_current());
2306 }
2307
2308 void qmp_migrate_continue(MigrationStatus state, Error **errp)
2309 {
2310 MigrationState *s = migrate_get_current();
2311 if (s->state != state) {
2312 error_setg(errp, "Migration not in expected state: %s",
2313 MigrationStatus_str(s->state));
2314 return;
2315 }
2316 qemu_sem_post(&s->pause_sem);
2317 }
2318
2319 void qmp_migrate_set_cache_size(int64_t value, Error **errp)
2320 {
2321 MigrateSetParameters p = {
2322 .has_xbzrle_cache_size = true,
2323 .xbzrle_cache_size = value,
2324 };
2325
2326 qmp_migrate_set_parameters(&p, errp);
2327 }
2328
2329 uint64_t qmp_query_migrate_cache_size(Error **errp)
2330 {
2331 return migrate_xbzrle_cache_size();
2332 }
2333
2334 void qmp_migrate_set_speed(int64_t value, Error **errp)
2335 {
2336 MigrateSetParameters p = {
2337 .has_max_bandwidth = true,
2338 .max_bandwidth = value,
2339 };
2340
2341 qmp_migrate_set_parameters(&p, errp);
2342 }
2343
2344 void qmp_migrate_set_downtime(double value, Error **errp)
2345 {
2346 if (value < 0 || value > MAX_MIGRATE_DOWNTIME_SECONDS) {
2347 error_setg(errp, QERR_INVALID_PARAMETER_VALUE,
2348 "downtime_limit",
2349 "an integer in the range of 0 to "
2350 stringify(MAX_MIGRATE_DOWNTIME_SECONDS)" seconds");
2351 return;
2352 }
2353
2354 value *= 1000; /* Convert to milliseconds */
2355
2356 MigrateSetParameters p = {
2357 .has_downtime_limit = true,
2358 .downtime_limit = (int64_t)value,
2359 };
2360
2361 qmp_migrate_set_parameters(&p, errp);
2362 }
2363
2364 bool migrate_release_ram(void)
2365 {
2366 MigrationState *s;
2367
2368 s = migrate_get_current();
2369
2370 return s->enabled_capabilities[MIGRATION_CAPABILITY_RELEASE_RAM];
2371 }
2372
2373 bool migrate_postcopy_ram(void)
2374 {
2375 MigrationState *s;
2376
2377 s = migrate_get_current();
2378
2379 return s->enabled_capabilities[MIGRATION_CAPABILITY_POSTCOPY_RAM];
2380 }
2381
2382 bool migrate_postcopy(void)
2383 {
2384 return migrate_postcopy_ram() || migrate_dirty_bitmaps();
2385 }
2386
2387 bool migrate_auto_converge(void)
2388 {
2389 MigrationState *s;
2390
2391 s = migrate_get_current();
2392
2393 return s->enabled_capabilities[MIGRATION_CAPABILITY_AUTO_CONVERGE];
2394 }
2395
2396 bool migrate_zero_blocks(void)
2397 {
2398 MigrationState *s;
2399
2400 s = migrate_get_current();
2401
2402 return s->enabled_capabilities[MIGRATION_CAPABILITY_ZERO_BLOCKS];
2403 }
2404
2405 bool migrate_postcopy_blocktime(void)
2406 {
2407 MigrationState *s;
2408
2409 s = migrate_get_current();
2410
2411 return s->enabled_capabilities[MIGRATION_CAPABILITY_POSTCOPY_BLOCKTIME];
2412 }
2413
2414 bool migrate_use_compression(void)
2415 {
2416 MigrationState *s;
2417
2418 s = migrate_get_current();
2419
2420 return s->enabled_capabilities[MIGRATION_CAPABILITY_COMPRESS];
2421 }
2422
2423 int migrate_compress_level(void)
2424 {
2425 MigrationState *s;
2426
2427 s = migrate_get_current();
2428
2429 return s->parameters.compress_level;
2430 }
2431
2432 int migrate_compress_threads(void)
2433 {
2434 MigrationState *s;
2435
2436 s = migrate_get_current();
2437
2438 return s->parameters.compress_threads;
2439 }
2440
2441 int migrate_compress_wait_thread(void)
2442 {
2443 MigrationState *s;
2444
2445 s = migrate_get_current();
2446
2447 return s->parameters.compress_wait_thread;
2448 }
2449
2450 int migrate_decompress_threads(void)
2451 {
2452 MigrationState *s;
2453
2454 s = migrate_get_current();
2455
2456 return s->parameters.decompress_threads;
2457 }
2458
2459 bool migrate_dirty_bitmaps(void)
2460 {
2461 MigrationState *s;
2462
2463 s = migrate_get_current();
2464
2465 return s->enabled_capabilities[MIGRATION_CAPABILITY_DIRTY_BITMAPS];
2466 }
2467
2468 bool migrate_ignore_shared(void)
2469 {
2470 MigrationState *s;
2471
2472 s = migrate_get_current();
2473
2474 return s->enabled_capabilities[MIGRATION_CAPABILITY_X_IGNORE_SHARED];
2475 }
2476
2477 bool migrate_validate_uuid(void)
2478 {
2479 MigrationState *s;
2480
2481 s = migrate_get_current();
2482
2483 return s->enabled_capabilities[MIGRATION_CAPABILITY_VALIDATE_UUID];
2484 }
2485
2486 bool migrate_use_events(void)
2487 {
2488 MigrationState *s;
2489
2490 s = migrate_get_current();
2491
2492 return s->enabled_capabilities[MIGRATION_CAPABILITY_EVENTS];
2493 }
2494
2495 bool migrate_use_multifd(void)
2496 {
2497 MigrationState *s;
2498
2499 s = migrate_get_current();
2500
2501 return s->enabled_capabilities[MIGRATION_CAPABILITY_MULTIFD];
2502 }
2503
2504 bool migrate_pause_before_switchover(void)
2505 {
2506 MigrationState *s;
2507
2508 s = migrate_get_current();
2509
2510 return s->enabled_capabilities[
2511 MIGRATION_CAPABILITY_PAUSE_BEFORE_SWITCHOVER];
2512 }
2513
2514 int migrate_multifd_channels(void)
2515 {
2516 MigrationState *s;
2517
2518 s = migrate_get_current();
2519
2520 return s->parameters.multifd_channels;
2521 }
2522
2523 MultiFDCompression migrate_multifd_compression(void)
2524 {
2525 MigrationState *s;
2526
2527 s = migrate_get_current();
2528
2529 return s->parameters.multifd_compression;
2530 }
2531
2532 int migrate_multifd_zlib_level(void)
2533 {
2534 MigrationState *s;
2535
2536 s = migrate_get_current();
2537
2538 return s->parameters.multifd_zlib_level;
2539 }
2540
2541 int migrate_multifd_zstd_level(void)
2542 {
2543 MigrationState *s;
2544
2545 s = migrate_get_current();
2546
2547 return s->parameters.multifd_zstd_level;
2548 }
2549
2550 int migrate_use_xbzrle(void)
2551 {
2552 MigrationState *s;
2553
2554 s = migrate_get_current();
2555
2556 return s->enabled_capabilities[MIGRATION_CAPABILITY_XBZRLE];
2557 }
2558
2559 uint64_t migrate_xbzrle_cache_size(void)
2560 {
2561 MigrationState *s;
2562
2563 s = migrate_get_current();
2564
2565 return s->parameters.xbzrle_cache_size;
2566 }
2567
2568 static int64_t migrate_max_postcopy_bandwidth(void)
2569 {
2570 MigrationState *s;
2571
2572 s = migrate_get_current();
2573
2574 return s->parameters.max_postcopy_bandwidth;
2575 }
2576
2577 bool migrate_use_block(void)
2578 {
2579 MigrationState *s;
2580
2581 s = migrate_get_current();
2582
2583 return s->enabled_capabilities[MIGRATION_CAPABILITY_BLOCK];
2584 }
2585
2586 bool migrate_use_return_path(void)
2587 {
2588 MigrationState *s;
2589
2590 s = migrate_get_current();
2591
2592 return s->enabled_capabilities[MIGRATION_CAPABILITY_RETURN_PATH];
2593 }
2594
2595 bool migrate_use_block_incremental(void)
2596 {
2597 MigrationState *s;
2598
2599 s = migrate_get_current();
2600
2601 return s->parameters.block_incremental;
2602 }
2603
2604 bool migrate_background_snapshot(void)
2605 {
2606 MigrationState *s;
2607
2608 s = migrate_get_current();
2609
2610 return s->enabled_capabilities[MIGRATION_CAPABILITY_BACKGROUND_SNAPSHOT];
2611 }
2612
2613 /* migration thread support */
2614 /*
2615 * Something bad happened to the RP stream, mark an error
2616 * The caller shall print or trace something to indicate why
2617 */
2618 static void mark_source_rp_bad(MigrationState *s)
2619 {
2620 s->rp_state.error = true;
2621 }
2622
2623 static struct rp_cmd_args {
2624 ssize_t len; /* -1 = variable */
2625 const char *name;
2626 } rp_cmd_args[] = {
2627 [MIG_RP_MSG_INVALID] = { .len = -1, .name = "INVALID" },
2628 [MIG_RP_MSG_SHUT] = { .len = 4, .name = "SHUT" },
2629 [MIG_RP_MSG_PONG] = { .len = 4, .name = "PONG" },
2630 [MIG_RP_MSG_REQ_PAGES] = { .len = 12, .name = "REQ_PAGES" },
2631 [MIG_RP_MSG_REQ_PAGES_ID] = { .len = -1, .name = "REQ_PAGES_ID" },
2632 [MIG_RP_MSG_RECV_BITMAP] = { .len = -1, .name = "RECV_BITMAP" },
2633 [MIG_RP_MSG_RESUME_ACK] = { .len = 4, .name = "RESUME_ACK" },
2634 [MIG_RP_MSG_MAX] = { .len = -1, .name = "MAX" },
2635 };
2636
2637 /*
2638 * Process a request for pages received on the return path,
2639 * We're allowed to send more than requested (e.g. to round to our page size)
2640 * and we don't need to send pages that have already been sent.
2641 */
2642 static void migrate_handle_rp_req_pages(MigrationState *ms, const char* rbname,
2643 ram_addr_t start, size_t len)
2644 {
2645 long our_host_ps = qemu_real_host_page_size;
2646
2647 trace_migrate_handle_rp_req_pages(rbname, start, len);
2648
2649 /*
2650 * Since we currently insist on matching page sizes, just sanity check
2651 * we're being asked for whole host pages.
2652 */
2653 if (start & (our_host_ps - 1) ||
2654 (len & (our_host_ps - 1))) {
2655 error_report("%s: Misaligned page request, start: " RAM_ADDR_FMT
2656 " len: %zd", __func__, start, len);
2657 mark_source_rp_bad(ms);
2658 return;
2659 }
2660
2661 if (ram_save_queue_pages(rbname, start, len)) {
2662 mark_source_rp_bad(ms);
2663 }
2664 }
2665
2666 /* Return true to retry, false to quit */
2667 static bool postcopy_pause_return_path_thread(MigrationState *s)
2668 {
2669 trace_postcopy_pause_return_path();
2670
2671 qemu_sem_wait(&s->postcopy_pause_rp_sem);
2672
2673 trace_postcopy_pause_return_path_continued();
2674
2675 return true;
2676 }
2677
2678 static int migrate_handle_rp_recv_bitmap(MigrationState *s, char *block_name)
2679 {
2680 RAMBlock *block = qemu_ram_block_by_name(block_name);
2681
2682 if (!block) {
2683 error_report("%s: invalid block name '%s'", __func__, block_name);
2684 return -EINVAL;
2685 }
2686
2687 /* Fetch the received bitmap and refresh the dirty bitmap */
2688 return ram_dirty_bitmap_reload(s, block);
2689 }
2690
2691 static int migrate_handle_rp_resume_ack(MigrationState *s, uint32_t value)
2692 {
2693 trace_source_return_path_thread_resume_ack(value);
2694
2695 if (value != MIGRATION_RESUME_ACK_VALUE) {
2696 error_report("%s: illegal resume_ack value %"PRIu32,
2697 __func__, value);
2698 return -1;
2699 }
2700
2701 /* Now both sides are active. */
2702 migrate_set_state(&s->state, MIGRATION_STATUS_POSTCOPY_RECOVER,
2703 MIGRATION_STATUS_POSTCOPY_ACTIVE);
2704
2705 /* Notify send thread that time to continue send pages */
2706 qemu_sem_post(&s->rp_state.rp_sem);
2707
2708 return 0;
2709 }
2710
2711 /*
2712 * Handles messages sent on the return path towards the source VM
2713 *
2714 */
2715 static void *source_return_path_thread(void *opaque)
2716 {
2717 MigrationState *ms = opaque;
2718 QEMUFile *rp = ms->rp_state.from_dst_file;
2719 uint16_t header_len, header_type;
2720 uint8_t buf[512];
2721 uint32_t tmp32, sibling_error;
2722 ram_addr_t start = 0; /* =0 to silence warning */
2723 size_t len = 0, expected_len;
2724 int res;
2725
2726 trace_source_return_path_thread_entry();
2727 rcu_register_thread();
2728
2729 retry:
2730 while (!ms->rp_state.error && !qemu_file_get_error(rp) &&
2731 migration_is_setup_or_active(ms->state)) {
2732 trace_source_return_path_thread_loop_top();
2733 header_type = qemu_get_be16(rp);
2734 header_len = qemu_get_be16(rp);
2735
2736 if (qemu_file_get_error(rp)) {
2737 mark_source_rp_bad(ms);
2738 goto out;
2739 }
2740
2741 if (header_type >= MIG_RP_MSG_MAX ||
2742 header_type == MIG_RP_MSG_INVALID) {
2743 error_report("RP: Received invalid message 0x%04x length 0x%04x",
2744 header_type, header_len);
2745 mark_source_rp_bad(ms);
2746 goto out;
2747 }
2748
2749 if ((rp_cmd_args[header_type].len != -1 &&
2750 header_len != rp_cmd_args[header_type].len) ||
2751 header_len > sizeof(buf)) {
2752 error_report("RP: Received '%s' message (0x%04x) with"
2753 "incorrect length %d expecting %zu",
2754 rp_cmd_args[header_type].name, header_type, header_len,
2755 (size_t)rp_cmd_args[header_type].len);
2756 mark_source_rp_bad(ms);
2757 goto out;
2758 }
2759
2760 /* We know we've got a valid header by this point */
2761 res = qemu_get_buffer(rp, buf, header_len);
2762 if (res != header_len) {
2763 error_report("RP: Failed reading data for message 0x%04x"
2764 " read %d expected %d",
2765 header_type, res, header_len);
2766 mark_source_rp_bad(ms);
2767 goto out;
2768 }
2769
2770 /* OK, we have the message and the data */
2771 switch (header_type) {
2772 case MIG_RP_MSG_SHUT:
2773 sibling_error = ldl_be_p(buf);
2774 trace_source_return_path_thread_shut(sibling_error);
2775 if (sibling_error) {
2776 error_report("RP: Sibling indicated error %d", sibling_error);
2777 mark_source_rp_bad(ms);
2778 }
2779 /*
2780 * We'll let the main thread deal with closing the RP
2781 * we could do a shutdown(2) on it, but we're the only user
2782 * anyway, so there's nothing gained.
2783 */
2784 goto out;
2785
2786 case MIG_RP_MSG_PONG:
2787 tmp32 = ldl_be_p(buf);
2788 trace_source_return_path_thread_pong(tmp32);
2789 break;
2790
2791 case MIG_RP_MSG_REQ_PAGES:
2792 start = ldq_be_p(buf);
2793 len = ldl_be_p(buf + 8);
2794 migrate_handle_rp_req_pages(ms, NULL, start, len);
2795 break;
2796
2797 case MIG_RP_MSG_REQ_PAGES_ID:
2798 expected_len = 12 + 1; /* header + termination */
2799
2800 if (header_len >= expected_len) {
2801 start = ldq_be_p(buf);
2802 len = ldl_be_p(buf + 8);
2803 /* Now we expect an idstr */
2804 tmp32 = buf[12]; /* Length of the following idstr */
2805 buf[13 + tmp32] = '\0';
2806 expected_len += tmp32;
2807 }
2808 if (header_len != expected_len) {
2809 error_report("RP: Req_Page_id with length %d expecting %zd",
2810 header_len, expected_len);
2811 mark_source_rp_bad(ms);
2812 goto out;
2813 }
2814 migrate_handle_rp_req_pages(ms, (char *)&buf[13], start, len);
2815 break;
2816
2817 case MIG_RP_MSG_RECV_BITMAP:
2818 if (header_len < 1) {
2819 error_report("%s: missing block name", __func__);
2820 mark_source_rp_bad(ms);
2821 goto out;
2822 }
2823 /* Format: len (1B) + idstr (<255B). This ends the idstr. */
2824 buf[buf[0] + 1] = '\0';
2825 if (migrate_handle_rp_recv_bitmap(ms, (char *)(buf + 1))) {
2826 mark_source_rp_bad(ms);
2827 goto out;
2828 }
2829 break;
2830
2831 case MIG_RP_MSG_RESUME_ACK:
2832 tmp32 = ldl_be_p(buf);
2833 if (migrate_handle_rp_resume_ack(ms, tmp32)) {
2834 mark_source_rp_bad(ms);
2835 goto out;
2836 }
2837 break;
2838
2839 default:
2840 break;
2841 }
2842 }
2843
2844 out:
2845 res = qemu_file_get_error(rp);
2846 if (res) {
2847 if (res == -EIO && migration_in_postcopy()) {
2848 /*
2849 * Maybe there is something we can do: it looks like a
2850 * network down issue, and we pause for a recovery.
2851 */
2852 if (postcopy_pause_return_path_thread(ms)) {
2853 /* Reload rp, reset the rest */
2854 if (rp != ms->rp_state.from_dst_file) {
2855 qemu_fclose(rp);
2856 rp = ms->rp_state.from_dst_file;
2857 }
2858 ms->rp_state.error = false;
2859 goto retry;
2860 }
2861 }
2862
2863 trace_source_return_path_thread_bad_end();
2864 mark_source_rp_bad(ms);
2865 }
2866
2867 trace_source_return_path_thread_end();
2868 ms->rp_state.from_dst_file = NULL;
2869 qemu_fclose(rp);
2870 rcu_unregister_thread();
2871 return NULL;
2872 }
2873
2874 static int open_return_path_on_source(MigrationState *ms,
2875 bool create_thread)
2876 {
2877
2878 ms->rp_state.from_dst_file = qemu_file_get_return_path(ms->to_dst_file);
2879 if (!ms->rp_state.from_dst_file) {
2880 return -1;
2881 }
2882
2883 trace_open_return_path_on_source();
2884
2885 if (!create_thread) {
2886 /* We're done */
2887 return 0;
2888 }
2889
2890 qemu_thread_create(&ms->rp_state.rp_thread, "return path",
2891 source_return_path_thread, ms, QEMU_THREAD_JOINABLE);
2892
2893 trace_open_return_path_on_source_continue();
2894
2895 return 0;
2896 }
2897
2898 /* Returns 0 if the RP was ok, otherwise there was an error on the RP */
2899 static int await_return_path_close_on_source(MigrationState *ms)
2900 {
2901 /*
2902 * If this is a normal exit then the destination will send a SHUT and the
2903 * rp_thread will exit, however if there's an error we need to cause
2904 * it to exit.
2905 */
2906 if (qemu_file_get_error(ms->to_dst_file) && ms->rp_state.from_dst_file) {
2907 /*
2908 * shutdown(2), if we have it, will cause it to unblock if it's stuck
2909 * waiting for the destination.
2910 */
2911 qemu_file_shutdown(ms->rp_state.from_dst_file);
2912 mark_source_rp_bad(ms);
2913 }
2914 trace_await_return_path_close_on_source_joining();
2915 qemu_thread_join(&ms->rp_state.rp_thread);
2916 trace_await_return_path_close_on_source_close();
2917 return ms->rp_state.error;
2918 }
2919
2920 /*
2921 * Switch from normal iteration to postcopy
2922 * Returns non-0 on error
2923 */
2924 static int postcopy_start(MigrationState *ms)
2925 {
2926 int ret;
2927 QIOChannelBuffer *bioc;
2928 QEMUFile *fb;
2929 int64_t time_at_stop = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
2930 int64_t bandwidth = migrate_max_postcopy_bandwidth();
2931 bool restart_block = false;
2932 int cur_state = MIGRATION_STATUS_ACTIVE;
2933 if (!migrate_pause_before_switchover()) {
2934 migrate_set_state(&ms->state, MIGRATION_STATUS_ACTIVE,
2935 MIGRATION_STATUS_POSTCOPY_ACTIVE);
2936 }
2937
2938 trace_postcopy_start();
2939 qemu_mutex_lock_iothread();
2940 trace_postcopy_start_set_run();
2941
2942 qemu_system_wakeup_request(QEMU_WAKEUP_REASON_OTHER, NULL);
2943 global_state_store();
2944 ret = vm_stop_force_state(RUN_STATE_FINISH_MIGRATE);
2945 if (ret < 0) {
2946 goto fail;
2947 }
2948
2949 ret = migration_maybe_pause(ms, &cur_state,
2950 MIGRATION_STATUS_POSTCOPY_ACTIVE);
2951 if (ret < 0) {
2952 goto fail;
2953 }
2954
2955 ret = bdrv_inactivate_all();
2956 if (ret < 0) {
2957 goto fail;
2958 }
2959 restart_block = true;
2960
2961 /*
2962 * Cause any non-postcopiable, but iterative devices to
2963 * send out their final data.
2964 */
2965 qemu_savevm_state_complete_precopy(ms->to_dst_file, true, false);
2966
2967 /*
2968 * in Finish migrate and with the io-lock held everything should
2969 * be quiet, but we've potentially still got dirty pages and we
2970 * need to tell the destination to throw any pages it's already received
2971 * that are dirty
2972 */
2973 if (migrate_postcopy_ram()) {
2974 if (ram_postcopy_send_discard_bitmap(ms)) {
2975 error_report("postcopy send discard bitmap failed");
2976 goto fail;
2977 }
2978 }
2979
2980 /*
2981 * send rest of state - note things that are doing postcopy
2982 * will notice we're in POSTCOPY_ACTIVE and not actually
2983 * wrap their state up here
2984 */
2985 /* 0 max-postcopy-bandwidth means unlimited */
2986 if (!bandwidth) {
2987 qemu_file_set_rate_limit(ms->to_dst_file, INT64_MAX);
2988 } else {
2989 qemu_file_set_rate_limit(ms->to_dst_file, bandwidth / XFER_LIMIT_RATIO);
2990 }
2991 if (migrate_postcopy_ram()) {
2992 /* Ping just for debugging, helps line traces up */
2993 qemu_savevm_send_ping(ms->to_dst_file, 2);
2994 }
2995
2996 /*
2997 * While loading the device state we may trigger page transfer
2998 * requests and the fd must be free to process those, and thus
2999 * the destination must read the whole device state off the fd before
3000 * it starts processing it. Unfortunately the ad-hoc migration format
3001 * doesn't allow the destination to know the size to read without fully
3002 * parsing it through each devices load-state code (especially the open
3003 * coded devices that use get/put).
3004 * So we wrap the device state up in a package with a length at the start;
3005 * to do this we use a qemu_buf to hold the whole of the device state.
3006 */
3007 bioc = qio_channel_buffer_new(4096);
3008 qio_channel_set_name(QIO_CHANNEL(bioc), "migration-postcopy-buffer");
3009 fb = qemu_fopen_channel_output(QIO_CHANNEL(bioc));
3010 object_unref(OBJECT(bioc));
3011
3012 /*
3013 * Make sure the receiver can get incoming pages before we send the rest
3014 * of the state
3015 */
3016 qemu_savevm_send_postcopy_listen(fb);
3017
3018 qemu_savevm_state_complete_precopy(fb, false, false);
3019 if (migrate_postcopy_ram()) {
3020 qemu_savevm_send_ping(fb, 3);
3021 }
3022
3023 qemu_savevm_send_postcopy_run(fb);
3024
3025 /* <><> end of stuff going into the package */
3026
3027 /* Last point of recovery; as soon as we send the package the destination
3028 * can open devices and potentially start running.
3029 * Lets just check again we've not got any errors.
3030 */
3031 ret = qemu_file_get_error(ms->to_dst_file);
3032 if (ret) {
3033 error_report("postcopy_start: Migration stream errored (pre package)");
3034 goto fail_closefb;
3035 }
3036
3037 restart_block = false;
3038
3039 /* Now send that blob */
3040 if (qemu_savevm_send_packaged(ms->to_dst_file, bioc->data, bioc->usage)) {
3041 goto fail_closefb;
3042 }
3043 qemu_fclose(fb);
3044
3045 /* Send a notify to give a chance for anything that needs to happen
3046 * at the transition to postcopy and after the device state; in particular
3047 * spice needs to trigger a transition now
3048 */
3049 ms->postcopy_after_devices = true;
3050 notifier_list_notify(&migration_state_notifiers, ms);
3051
3052 ms->downtime = qemu_clock_get_ms(QEMU_CLOCK_REALTIME) - time_at_stop;
3053
3054 qemu_mutex_unlock_iothread();
3055
3056 if (migrate_postcopy_ram()) {
3057 /*
3058 * Although this ping is just for debug, it could potentially be
3059 * used for getting a better measurement of downtime at the source.
3060 */
3061 qemu_savevm_send_ping(ms->to_dst_file, 4);
3062 }
3063
3064 if (migrate_release_ram()) {
3065 ram_postcopy_migrated_memory_release(ms);
3066 }
3067
3068 ret = qemu_file_get_error(ms->to_dst_file);
3069 if (ret) {
3070 error_report("postcopy_start: Migration stream errored");
3071 migrate_set_state(&ms->state, MIGRATION_STATUS_POSTCOPY_ACTIVE,
3072 MIGRATION_STATUS_FAILED);
3073 }
3074
3075 return ret;
3076
3077 fail_closefb:
3078 qemu_fclose(fb);
3079 fail:
3080 migrate_set_state(&ms->state, MIGRATION_STATUS_POSTCOPY_ACTIVE,
3081 MIGRATION_STATUS_FAILED);
3082 if (restart_block) {
3083 /* A failure happened early enough that we know the destination hasn't
3084 * accessed block devices, so we're safe to recover.
3085 */
3086 Error *local_err = NULL;
3087
3088 bdrv_invalidate_cache_all(&local_err);
3089 if (local_err) {
3090 error_report_err(local_err);
3091 }
3092 }
3093 qemu_mutex_unlock_iothread();
3094 return -1;
3095 }
3096
3097 /**
3098 * migration_maybe_pause: Pause if required to by
3099 * migrate_pause_before_switchover called with the iothread locked
3100 * Returns: 0 on success
3101 */
3102 static int migration_maybe_pause(MigrationState *s,
3103 int *current_active_state,
3104 int new_state)
3105 {
3106 if (!migrate_pause_before_switchover()) {
3107 return 0;
3108 }
3109
3110 /* Since leaving this state is not atomic with posting the semaphore
3111 * it's possible that someone could have issued multiple migrate_continue
3112 * and the semaphore is incorrectly positive at this point;
3113 * the docs say it's undefined to reinit a semaphore that's already
3114 * init'd, so use timedwait to eat up any existing posts.
3115 */
3116 while (qemu_sem_timedwait(&s->pause_sem, 1) == 0) {
3117 /* This block intentionally left blank */
3118 }
3119
3120 /*
3121 * If the migration is cancelled when it is in the completion phase,
3122 * the migration state is set to MIGRATION_STATUS_CANCELLING.
3123 * So we don't need to wait a semaphore, otherwise we would always
3124 * wait for the 'pause_sem' semaphore.
3125 */
3126 if (s->state != MIGRATION_STATUS_CANCELLING) {
3127 qemu_mutex_unlock_iothread();
3128 migrate_set_state(&s->state, *current_active_state,
3129 MIGRATION_STATUS_PRE_SWITCHOVER);
3130 qemu_sem_wait(&s->pause_sem);
3131 migrate_set_state(&s->state, MIGRATION_STATUS_PRE_SWITCHOVER,
3132 new_state);
3133 *current_active_state = new_state;
3134 qemu_mutex_lock_iothread();
3135 }
3136
3137 return s->state == new_state ? 0 : -EINVAL;
3138 }
3139
3140 /**
3141 * migration_completion: Used by migration_thread when there's not much left.
3142 * The caller 'breaks' the loop when this returns.
3143 *
3144 * @s: Current migration state
3145 */
3146 static void migration_completion(MigrationState *s)
3147 {
3148 int ret;
3149 int current_active_state = s->state;
3150
3151 if (s->state == MIGRATION_STATUS_ACTIVE) {
3152 qemu_mutex_lock_iothread();
3153 s->downtime_start = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
3154 qemu_system_wakeup_request(QEMU_WAKEUP_REASON_OTHER, NULL);
3155 s->vm_was_running = runstate_is_running();
3156 ret = global_state_store();
3157
3158 if (!ret) {
3159 bool inactivate = !migrate_colo_enabled();
3160 ret = vm_stop_force_state(RUN_STATE_FINISH_MIGRATE);
3161 if (ret >= 0) {
3162 ret = migration_maybe_pause(s, &current_active_state,
3163 MIGRATION_STATUS_DEVICE);
3164 }
3165 if (ret >= 0) {
3166 qemu_file_set_rate_limit(s->to_dst_file, INT64_MAX);
3167 ret = qemu_savevm_state_complete_precopy(s->to_dst_file, false,
3168 inactivate);
3169 }
3170 if (inactivate && ret >= 0) {
3171 s->block_inactive = true;
3172 }
3173 }
3174 qemu_mutex_unlock_iothread();
3175
3176 if (ret < 0) {
3177 goto fail;
3178 }
3179 } else if (s->state == MIGRATION_STATUS_POSTCOPY_ACTIVE) {
3180 trace_migration_completion_postcopy_end();
3181
3182 qemu_savevm_state_complete_postcopy(s->to_dst_file);
3183 trace_migration_completion_postcopy_end_after_complete();
3184 } else if (s->state == MIGRATION_STATUS_CANCELLING) {
3185 goto fail;
3186 }
3187
3188 /*
3189 * If rp was opened we must clean up the thread before
3190 * cleaning everything else up (since if there are no failures
3191 * it will wait for the destination to send it's status in
3192 * a SHUT command).
3193 */
3194 if (s->rp_state.from_dst_file) {
3195 int rp_error;
3196 trace_migration_return_path_end_before();
3197 rp_error = await_return_path_close_on_source(s);
3198 trace_migration_return_path_end_after(rp_error);
3199 if (rp_error) {
3200 goto fail_invalidate;
3201 }
3202 }
3203
3204 if (qemu_file_get_error(s->to_dst_file)) {
3205 trace_migration_completion_file_err();
3206 goto fail_invalidate;
3207 }
3208
3209 if (!migrate_colo_enabled()) {
3210 migrate_set_state(&s->state, current_active_state,
3211 MIGRATION_STATUS_COMPLETED);
3212 }
3213
3214 return;
3215
3216 fail_invalidate:
3217 /* If not doing postcopy, vm_start() will be called: let's regain
3218 * control on images.
3219 */
3220 if (s->state == MIGRATION_STATUS_ACTIVE ||
3221 s->state == MIGRATION_STATUS_DEVICE) {
3222 Error *local_err = NULL;
3223
3224 qemu_mutex_lock_iothread();
3225 bdrv_invalidate_cache_all(&local_err);
3226 if (local_err) {
3227 error_report_err(local_err);
3228 } else {
3229 s->block_inactive = false;
3230 }
3231 qemu_mutex_unlock_iothread();
3232 }
3233
3234 fail:
3235 migrate_set_state(&s->state, current_active_state,
3236 MIGRATION_STATUS_FAILED);
3237 }
3238
3239 /**
3240 * bg_migration_completion: Used by bg_migration_thread when after all the
3241 * RAM has been saved. The caller 'breaks' the loop when this returns.
3242 *
3243 * @s: Current migration state
3244 */
3245 static void bg_migration_completion(MigrationState *s)
3246 {
3247 int current_active_state = s->state;
3248
3249 /*
3250 * Stop tracking RAM writes - un-protect memory, un-register UFFD
3251 * memory ranges, flush kernel wait queues and wake up threads
3252 * waiting for write fault to be resolved.
3253 */
3254 ram_write_tracking_stop();
3255
3256 if (s->state == MIGRATION_STATUS_ACTIVE) {
3257 /*
3258 * By this moment we have RAM content saved into the migration stream.
3259 * The next step is to flush the non-RAM content (device state)
3260 * right after the ram content. The device state has been stored into
3261 * the temporary buffer before RAM saving started.
3262 */
3263 qemu_put_buffer(s->to_dst_file, s->bioc->data, s->bioc->usage);
3264 qemu_fflush(s->to_dst_file);
3265 } else if (s->state == MIGRATION_STATUS_CANCELLING) {
3266 goto fail;
3267 }
3268
3269 if (qemu_file_get_error(s->to_dst_file)) {
3270 trace_migration_completion_file_err();
3271 goto fail;
3272 }
3273
3274 migrate_set_state(&s->state, current_active_state,
3275 MIGRATION_STATUS_COMPLETED);
3276 return;
3277
3278 fail:
3279 migrate_set_state(&s->state, current_active_state,
3280 MIGRATION_STATUS_FAILED);
3281 }
3282
3283 bool migrate_colo_enabled(void)
3284 {
3285 MigrationState *s = migrate_get_current();
3286 return s->enabled_capabilities[MIGRATION_CAPABILITY_X_COLO];
3287 }
3288
3289 typedef enum MigThrError {
3290 /* No error detected */
3291 MIG_THR_ERR_NONE = 0,
3292 /* Detected error, but resumed successfully */
3293 MIG_THR_ERR_RECOVERED = 1,
3294 /* Detected fatal error, need to exit */
3295 MIG_THR_ERR_FATAL = 2,
3296 } MigThrError;
3297
3298 static int postcopy_resume_handshake(MigrationState *s)
3299 {
3300 qemu_savevm_send_postcopy_resume(s->to_dst_file);
3301
3302 while (s->state == MIGRATION_STATUS_POSTCOPY_RECOVER) {
3303 qemu_sem_wait(&s->rp_state.rp_sem);
3304 }
3305
3306 if (s->state == MIGRATION_STATUS_POSTCOPY_ACTIVE) {
3307 return 0;
3308 }
3309
3310 return -1;
3311 }
3312
3313 /* Return zero if success, or <0 for error */
3314 static int postcopy_do_resume(MigrationState *s)
3315 {
3316 int ret;
3317
3318 /*
3319 * Call all the resume_prepare() hooks, so that modules can be
3320 * ready for the migration resume.
3321 */
3322 ret = qemu_savevm_state_resume_prepare(s);
3323 if (ret) {
3324 error_report("%s: resume_prepare() failure detected: %d",
3325 __func__, ret);
3326 return ret;
3327 }
3328
3329 /*
3330 * Last handshake with destination on the resume (destination will
3331 * switch to postcopy-active afterwards)
3332 */
3333 ret = postcopy_resume_handshake(s);
3334 if (ret) {
3335 error_report("%s: handshake failed: %d", __func__, ret);
3336 return ret;
3337 }
3338
3339 return 0;
3340 }
3341
3342 /*
3343 * We don't return until we are in a safe state to continue current
3344 * postcopy migration. Returns MIG_THR_ERR_RECOVERED if recovered, or
3345 * MIG_THR_ERR_FATAL if unrecovery failure happened.
3346 */
3347 static MigThrError postcopy_pause(MigrationState *s)
3348 {
3349 assert(s->state == MIGRATION_STATUS_POSTCOPY_ACTIVE);
3350
3351 while (true) {
3352 QEMUFile *file;
3353
3354 /* Current channel is possibly broken. Release it. */
3355 assert(s->to_dst_file);
3356 qemu_mutex_lock(&s->qemu_file_lock);
3357 file = s->to_dst_file;
3358 s->to_dst_file = NULL;
3359 qemu_mutex_unlock(&s->qemu_file_lock);
3360
3361 qemu_file_shutdown(file);
3362 qemu_fclose(file);
3363
3364 migrate_set_state(&s->state, s->state,
3365 MIGRATION_STATUS_POSTCOPY_PAUSED);
3366
3367 error_report("Detected IO failure for postcopy. "
3368 "Migration paused.");
3369
3370 /*
3371 * We wait until things fixed up. Then someone will setup the
3372 * status back for us.
3373 */
3374 while (s->state == MIGRATION_STATUS_POSTCOPY_PAUSED) {
3375 qemu_sem_wait(&s->postcopy_pause_sem);
3376 }
3377
3378 if (s->state == MIGRATION_STATUS_POSTCOPY_RECOVER) {
3379 /* Woken up by a recover procedure. Give it a shot */
3380
3381 /*
3382 * Firstly, let's wake up the return path now, with a new
3383 * return path channel.
3384 */
3385 qemu_sem_post(&s->postcopy_pause_rp_sem);
3386
3387 /* Do the resume logic */
3388 if (postcopy_do_resume(s) == 0) {
3389 /* Let's continue! */
3390 trace_postcopy_pause_continued();
3391 return MIG_THR_ERR_RECOVERED;
3392 } else {
3393 /*
3394 * Something wrong happened during the recovery, let's
3395 * pause again. Pause is always better than throwing
3396 * data away.
3397 */
3398 continue;
3399 }
3400 } else {
3401 /* This is not right... Time to quit. */
3402 return MIG_THR_ERR_FATAL;
3403 }
3404 }
3405 }
3406
3407 static MigThrError migration_detect_error(MigrationState *s)
3408 {
3409 int ret;
3410 int state = s->state;
3411 Error *local_error = NULL;
3412
3413 if (state == MIGRATION_STATUS_CANCELLING ||
3414 state == MIGRATION_STATUS_CANCELLED) {
3415 /* End the migration, but don't set the state to failed */
3416 return MIG_THR_ERR_FATAL;
3417 }
3418
3419 /* Try to detect any file errors */
3420 ret = qemu_file_get_error_obj(s->to_dst_file, &local_error);
3421 if (!ret) {
3422 /* Everything is fine */
3423 assert(!local_error);
3424 return MIG_THR_ERR_NONE;
3425 }
3426
3427 if (local_error) {
3428 migrate_set_error(s, local_error);
3429 error_free(local_error);
3430 }
3431
3432 if (state == MIGRATION_STATUS_POSTCOPY_ACTIVE && ret == -EIO) {
3433 /*
3434 * For postcopy, we allow the network to be down for a
3435 * while. After that, it can be continued by a
3436 * recovery phase.
3437 */
3438 return postcopy_pause(s);
3439 } else {
3440 /*
3441 * For precopy (or postcopy with error outside IO), we fail
3442 * with no time.
3443 */
3444 migrate_set_state(&s->state, state, MIGRATION_STATUS_FAILED);
3445 trace_migration_thread_file_err();
3446
3447 /* Time to stop the migration, now. */
3448 return MIG_THR_ERR_FATAL;
3449 }
3450 }
3451
3452 /* How many bytes have we transferred since the beginning of the migration */
3453 static uint64_t migration_total_bytes(MigrationState *s)
3454 {
3455 return qemu_ftell(s->to_dst_file) + ram_counters.multifd_bytes;
3456 }
3457
3458 static void migration_calculate_complete(MigrationState *s)
3459 {
3460 uint64_t bytes = migration_total_bytes(s);
3461 int64_t end_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
3462 int64_t transfer_time;
3463
3464 s->total_time = end_time - s->start_time;
3465 if (!s->downtime) {
3466 /*
3467 * It's still not set, so we are precopy migration. For
3468 * postcopy, downtime is calculated during postcopy_start().
3469 */
3470 s->downtime = end_time - s->downtime_start;
3471 }
3472
3473 transfer_time = s->total_time - s->setup_time;
3474 if (transfer_time) {
3475 s->mbps = ((double) bytes * 8.0) / transfer_time / 1000;
3476 }
3477 }
3478
3479 static void update_iteration_initial_status(MigrationState *s)
3480 {
3481 /*
3482 * Update these three fields at the same time to avoid mismatch info lead
3483 * wrong speed calculation.
3484 */
3485 s->iteration_start_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
3486 s->iteration_initial_bytes = migration_total_bytes(s);
3487 s->iteration_initial_pages = ram_get_total_transferred_pages();
3488 }
3489
3490 static void migration_update_counters(MigrationState *s,
3491 int64_t current_time)
3492 {
3493 uint64_t transferred, transferred_pages, time_spent;
3494 uint64_t current_bytes; /* bytes transferred since the beginning */
3495 double bandwidth;
3496
3497 if (current_time < s->iteration_start_time + BUFFER_DELAY) {
3498 return;
3499 }
3500
3501 current_bytes = migration_total_bytes(s);
3502 transferred = current_bytes - s->iteration_initial_bytes;
3503 time_spent = current_time - s->iteration_start_time;
3504 bandwidth = (double)transferred / time_spent;
3505 s->threshold_size = bandwidth * s->parameters.downtime_limit;
3506
3507 s->mbps = (((double) transferred * 8.0) /
3508 ((double) time_spent / 1000.0)) / 1000.0 / 1000.0;
3509
3510 transferred_pages = ram_get_total_transferred_pages() -
3511 s->iteration_initial_pages;
3512 s->pages_per_second = (double) transferred_pages /
3513 (((double) time_spent / 1000.0));
3514
3515 /*
3516 * if we haven't sent anything, we don't want to
3517 * recalculate. 10000 is a small enough number for our purposes
3518 */
3519 if (ram_counters.dirty_pages_rate && transferred > 10000) {
3520 s->expected_downtime = ram_counters.remaining / bandwidth;
3521 }
3522
3523 qemu_file_reset_rate_limit(s->to_dst_file);
3524
3525 update_iteration_initial_status(s);
3526
3527 trace_migrate_transferred(transferred, time_spent,
3528 bandwidth, s->threshold_size);
3529 }
3530
3531 /* Migration thread iteration status */
3532 typedef enum {
3533 MIG_ITERATE_RESUME, /* Resume current iteration */
3534 MIG_ITERATE_SKIP, /* Skip current iteration */
3535 MIG_ITERATE_BREAK, /* Break the loop */
3536 } MigIterateState;
3537
3538 /*
3539 * Return true if continue to the next iteration directly, false
3540 * otherwise.
3541 */
3542 static MigIterateState migration_iteration_run(MigrationState *s)
3543 {
3544 uint64_t pending_size, pend_pre, pend_compat, pend_post;
3545 bool in_postcopy = s->state == MIGRATION_STATUS_POSTCOPY_ACTIVE;
3546
3547 qemu_savevm_state_pending(s->to_dst_file, s->threshold_size, &pend_pre,
3548 &pend_compat, &pend_post);
3549 pending_size = pend_pre + pend_compat + pend_post;
3550
3551 trace_migrate_pending(pending_size, s->threshold_size,
3552 pend_pre, pend_compat, pend_post);
3553
3554 if (pending_size && pending_size >= s->threshold_size) {
3555 /* Still a significant amount to transfer */
3556 if (!in_postcopy && pend_pre <= s->threshold_size &&
3557 qatomic_read(&s->start_postcopy)) {
3558 if (postcopy_start(s)) {
3559 error_report("%s: postcopy failed to start", __func__);
3560 }
3561 return MIG_ITERATE_SKIP;
3562 }
3563 /* Just another iteration step */
3564 qemu_savevm_state_iterate(s->to_dst_file, in_postcopy);
3565 } else {
3566 trace_migration_thread_low_pending(pending_size);
3567 migration_completion(s);
3568 return MIG_ITERATE_BREAK;
3569 }
3570
3571 return MIG_ITERATE_RESUME;
3572 }
3573
3574 static void migration_iteration_finish(MigrationState *s)
3575 {
3576 /* If we enabled cpu throttling for auto-converge, turn it off. */
3577 cpu_throttle_stop();
3578
3579 qemu_mutex_lock_iothread();
3580 switch (s->state) {
3581 case MIGRATION_STATUS_COMPLETED:
3582 migration_calculate_complete(s);
3583 runstate_set(RUN_STATE_POSTMIGRATE);
3584 break;
3585
3586 case MIGRATION_STATUS_ACTIVE:
3587 /*
3588 * We should really assert here, but since it's during
3589 * migration, let's try to reduce the usage of assertions.
3590 */
3591 if (!migrate_colo_enabled()) {
3592 error_report("%s: critical error: calling COLO code without "
3593 "COLO enabled", __func__);
3594 }
3595 migrate_start_colo_process(s);
3596 /*
3597 * Fixme: we will run VM in COLO no matter its old running state.
3598 * After exited COLO, we will keep running.
3599 */
3600 s->vm_was_running = true;
3601 /* Fallthrough */
3602 case MIGRATION_STATUS_FAILED:
3603 case MIGRATION_STATUS_CANCELLED:
3604 case MIGRATION_STATUS_CANCELLING:
3605 if (s->vm_was_running) {
3606 vm_start();
3607 } else {
3608 if (runstate_check(RUN_STATE_FINISH_MIGRATE)) {
3609 runstate_set(RUN_STATE_POSTMIGRATE);
3610 }
3611 }
3612 break;
3613
3614 default:
3615 /* Should not reach here, but if so, forgive the VM. */
3616 error_report("%s: Unknown ending state %d", __func__, s->state);
3617 break;
3618 }
3619 migrate_fd_cleanup_schedule(s);
3620 qemu_mutex_unlock_iothread();
3621 }
3622
3623 static void bg_migration_iteration_finish(MigrationState *s)
3624 {
3625 qemu_mutex_lock_iothread();
3626 switch (s->state) {
3627 case MIGRATION_STATUS_COMPLETED:
3628 migration_calculate_complete(s);
3629 break;
3630
3631 case MIGRATION_STATUS_ACTIVE:
3632 case MIGRATION_STATUS_FAILED:
3633 case MIGRATION_STATUS_CANCELLED:
3634 case MIGRATION_STATUS_CANCELLING:
3635 break;
3636
3637 default:
3638 /* Should not reach here, but if so, forgive the VM. */
3639 error_report("%s: Unknown ending state %d", __func__, s->state);
3640 break;
3641 }
3642
3643 migrate_fd_cleanup_schedule(s);
3644 qemu_mutex_unlock_iothread();
3645 }
3646
3647 /*
3648 * Return true if continue to the next iteration directly, false
3649 * otherwise.
3650 */
3651 static MigIterateState bg_migration_iteration_run(MigrationState *s)
3652 {
3653 int res;
3654
3655 res = qemu_savevm_state_iterate(s->to_dst_file, false);
3656 if (res > 0) {
3657 bg_migration_completion(s);
3658 return MIG_ITERATE_BREAK;
3659 }
3660
3661 return MIG_ITERATE_RESUME;
3662 }
3663
3664 void migration_make_urgent_request(void)
3665 {
3666 qemu_sem_post(&migrate_get_current()->rate_limit_sem);
3667 }
3668
3669 void migration_consume_urgent_request(void)
3670 {
3671 qemu_sem_wait(&migrate_get_current()->rate_limit_sem);
3672 }
3673
3674 /* Returns true if the rate limiting was broken by an urgent request */
3675 bool migration_rate_limit(void)
3676 {
3677 int64_t now = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
3678 MigrationState *s = migrate_get_current();
3679
3680 bool urgent = false;
3681 migration_update_counters(s, now);
3682 if (qemu_file_rate_limit(s->to_dst_file)) {
3683
3684 if (qemu_file_get_error(s->to_dst_file)) {
3685 return false;
3686 }
3687 /*
3688 * Wait for a delay to do rate limiting OR
3689 * something urgent to post the semaphore.
3690 */
3691 int ms = s->iteration_start_time + BUFFER_DELAY - now;
3692 trace_migration_rate_limit_pre(ms);
3693 if (qemu_sem_timedwait(&s->rate_limit_sem, ms) == 0) {
3694 /*
3695 * We were woken by one or more urgent things but
3696 * the timedwait will have consumed one of them.
3697 * The service routine for the urgent wake will dec
3698 * the semaphore itself for each item it consumes,
3699 * so add this one we just eat back.
3700 */
3701 qemu_sem_post(&s->rate_limit_sem);
3702 urgent = true;
3703 }
3704 trace_migration_rate_limit_post(urgent);
3705 }
3706 return urgent;
3707 }
3708
3709 /*
3710 * Master migration thread on the source VM.
3711 * It drives the migration and pumps the data down the outgoing channel.
3712 */
3713 static void *migration_thread(void *opaque)
3714 {
3715 MigrationState *s = opaque;
3716 int64_t setup_start = qemu_clock_get_ms(QEMU_CLOCK_HOST);
3717 MigThrError thr_error;
3718 bool urgent = false;
3719
3720 rcu_register_thread();
3721
3722 object_ref(OBJECT(s));
3723 update_iteration_initial_status(s);
3724
3725 qemu_savevm_state_header(s->to_dst_file);
3726
3727 /*
3728 * If we opened the return path, we need to make sure dst has it
3729 * opened as well.
3730 */
3731 if (s->rp_state.from_dst_file) {
3732 /* Now tell the dest that it should open its end so it can reply */
3733 qemu_savevm_send_open_return_path(s->to_dst_file);
3734
3735 /* And do a ping that will make stuff easier to debug */
3736 qemu_savevm_send_ping(s->to_dst_file, 1);
3737 }
3738
3739 if (migrate_postcopy()) {
3740 /*
3741 * Tell the destination that we *might* want to do postcopy later;
3742 * if the other end can't do postcopy it should fail now, nice and
3743 * early.
3744 */
3745 qemu_savevm_send_postcopy_advise(s->to_dst_file);
3746 }
3747
3748 if (migrate_colo_enabled()) {
3749 /* Notify migration destination that we enable COLO */
3750 qemu_savevm_send_colo_enable(s->to_dst_file);
3751 }
3752
3753 qemu_savevm_state_setup(s->to_dst_file);
3754
3755 if (qemu_savevm_state_guest_unplug_pending()) {
3756 migrate_set_state(&s->state, MIGRATION_STATUS_SETUP,
3757 MIGRATION_STATUS_WAIT_UNPLUG);
3758
3759 while (s->state == MIGRATION_STATUS_WAIT_UNPLUG &&
3760 qemu_savevm_state_guest_unplug_pending()) {
3761 qemu_sem_timedwait(&s->wait_unplug_sem, 250);
3762 }
3763
3764 migrate_set_state(&s->state, MIGRATION_STATUS_WAIT_UNPLUG,
3765 MIGRATION_STATUS_ACTIVE);
3766 }
3767
3768 s->setup_time = qemu_clock_get_ms(QEMU_CLOCK_HOST) - setup_start;
3769 migrate_set_state(&s->state, MIGRATION_STATUS_SETUP,
3770 MIGRATION_STATUS_ACTIVE);
3771
3772 trace_migration_thread_setup_complete();
3773
3774 while (migration_is_active(s)) {
3775 if (urgent || !qemu_file_rate_limit(s->to_dst_file)) {
3776 MigIterateState iter_state = migration_iteration_run(s);
3777 if (iter_state == MIG_ITERATE_SKIP) {
3778 continue;
3779 } else if (iter_state == MIG_ITERATE_BREAK) {
3780 break;
3781 }
3782 }
3783
3784 /*
3785 * Try to detect any kind of failures, and see whether we
3786 * should stop the migration now.
3787 */
3788 thr_error = migration_detect_error(s);
3789 if (thr_error == MIG_THR_ERR_FATAL) {
3790 /* Stop migration */
3791 break;
3792 } else if (thr_error == MIG_THR_ERR_RECOVERED) {
3793 /*
3794 * Just recovered from a e.g. network failure, reset all
3795 * the local variables. This is important to avoid
3796 * breaking transferred_bytes and bandwidth calculation
3797 */
3798 update_iteration_initial_status(s);
3799 }
3800
3801 urgent = migration_rate_limit();
3802 }
3803
3804 trace_migration_thread_after_loop();
3805 migration_iteration_finish(s);
3806 object_unref(OBJECT(s));
3807 rcu_unregister_thread();
3808 return NULL;
3809 }
3810
3811 static void bg_migration_vm_start_bh(void *opaque)
3812 {
3813 MigrationState *s = opaque;
3814
3815 qemu_bh_delete(s->vm_start_bh);
3816 s->vm_start_bh = NULL;
3817
3818 vm_start();
3819 s->downtime = qemu_clock_get_ms(QEMU_CLOCK_REALTIME) - s->downtime_start;
3820 }
3821
3822 /**
3823 * Background snapshot thread, based on live migration code.
3824 * This is an alternative implementation of live migration mechanism
3825 * introduced specifically to support background snapshots.
3826 *
3827 * It takes advantage of userfault_fd write protection mechanism introduced
3828 * in v5.7 kernel. Compared to existing dirty page logging migration much
3829 * lesser stream traffic is produced resulting in smaller snapshot images,
3830 * simply cause of no page duplicates can get into the stream.
3831 *
3832 * Another key point is that generated vmstate stream reflects machine state
3833 * 'frozen' at the beginning of snapshot creation compared to dirty page logging
3834 * mechanism, which effectively results in that saved snapshot is the state of VM
3835 * at the end of the process.
3836 */
3837 static void *bg_migration_thread(void *opaque)
3838 {
3839 MigrationState *s = opaque;
3840 int64_t setup_start;
3841 MigThrError thr_error;
3842 QEMUFile *fb;
3843 bool early_fail = true;
3844
3845 rcu_register_thread();
3846 object_ref(OBJECT(s));
3847
3848 qemu_file_set_rate_limit(s->to_dst_file, INT64_MAX);
3849
3850 setup_start = qemu_clock_get_ms(QEMU_CLOCK_HOST);
3851 /*
3852 * We want to save vmstate for the moment when migration has been
3853 * initiated but also we want to save RAM content while VM is running.
3854 * The RAM content should appear first in the vmstate. So, we first
3855 * stash the non-RAM part of the vmstate to the temporary buffer,
3856 * then write RAM part of the vmstate to the migration stream
3857 * with vCPUs running and, finally, write stashed non-RAM part of
3858 * the vmstate from the buffer to the migration stream.
3859 */
3860 s->bioc = qio_channel_buffer_new(128 * 1024);
3861 qio_channel_set_name(QIO_CHANNEL(s->bioc), "vmstate-buffer");
3862 fb = qemu_fopen_channel_output(QIO_CHANNEL(s->bioc));
3863 object_unref(OBJECT(s->bioc));
3864
3865 update_iteration_initial_status(s);
3866
3867 qemu_savevm_state_header(s->to_dst_file);
3868 qemu_savevm_state_setup(s->to_dst_file);
3869
3870 if (qemu_savevm_state_guest_unplug_pending()) {
3871 migrate_set_state(&s->state, MIGRATION_STATUS_SETUP,
3872 MIGRATION_STATUS_WAIT_UNPLUG);
3873
3874 while (s->state == MIGRATION_STATUS_WAIT_UNPLUG &&
3875 qemu_savevm_state_guest_unplug_pending()) {
3876 qemu_sem_timedwait(&s->wait_unplug_sem, 250);
3877 }
3878
3879 migrate_set_state(&s->state, MIGRATION_STATUS_WAIT_UNPLUG,
3880 MIGRATION_STATUS_ACTIVE);
3881 } else {
3882 migrate_set_state(&s->state, MIGRATION_STATUS_SETUP,
3883 MIGRATION_STATUS_ACTIVE);
3884 }
3885 s->setup_time = qemu_clock_get_ms(QEMU_CLOCK_HOST) - setup_start;
3886
3887 trace_migration_thread_setup_complete();
3888 s->downtime_start = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
3889
3890 qemu_mutex_lock_iothread();
3891
3892 /*
3893 * If VM is currently in suspended state, then, to make a valid runstate
3894 * transition in vm_stop_force_state() we need to wakeup it up.
3895 */
3896 qemu_system_wakeup_request(QEMU_WAKEUP_REASON_OTHER, NULL);
3897 s->vm_was_running = runstate_is_running();
3898
3899 if (global_state_store()) {
3900 goto fail;
3901 }
3902 /* Forcibly stop VM before saving state of vCPUs and devices */
3903 if (vm_stop_force_state(RUN_STATE_PAUSED)) {
3904 goto fail;
3905 }
3906 /*
3907 * Put vCPUs in sync with shadow context structures, then
3908 * save their state to channel-buffer along with devices.
3909 */
3910 cpu_synchronize_all_states();
3911 if (qemu_savevm_state_complete_precopy_non_iterable(fb, false, false)) {
3912 goto fail;
3913 }
3914 /* Now initialize UFFD context and start tracking RAM writes */
3915 if (ram_write_tracking_start()) {
3916 goto fail;
3917 }
3918 early_fail = false;
3919
3920 /*
3921 * Start VM from BH handler to avoid write-fault lock here.
3922 * UFFD-WP protection for the whole RAM is already enabled so
3923 * calling VM state change notifiers from vm_start() would initiate
3924 * writes to virtio VQs memory which is in write-protected region.
3925 */
3926 s->vm_start_bh = qemu_bh_new(bg_migration_vm_start_bh, s);
3927 qemu_bh_schedule(s->vm_start_bh);
3928
3929 qemu_mutex_unlock_iothread();
3930
3931 while (migration_is_active(s)) {
3932 MigIterateState iter_state = bg_migration_iteration_run(s);
3933 if (iter_state == MIG_ITERATE_SKIP) {
3934 continue;
3935 } else if (iter_state == MIG_ITERATE_BREAK) {
3936 break;
3937 }
3938
3939 /*
3940 * Try to detect any kind of failures, and see whether we
3941 * should stop the migration now.
3942 */
3943 thr_error = migration_detect_error(s);
3944 if (thr_error == MIG_THR_ERR_FATAL) {
3945 /* Stop migration */
3946 break;
3947 }
3948
3949 migration_update_counters(s, qemu_clock_get_ms(QEMU_CLOCK_REALTIME));
3950 }
3951
3952 trace_migration_thread_after_loop();
3953
3954 fail:
3955 if (early_fail) {
3956 migrate_set_state(&s->state, MIGRATION_STATUS_ACTIVE,
3957 MIGRATION_STATUS_FAILED);
3958 qemu_mutex_unlock_iothread();
3959 }
3960
3961 bg_migration_iteration_finish(s);
3962
3963 qemu_fclose(fb);
3964 object_unref(OBJECT(s));
3965 rcu_unregister_thread();
3966
3967 return NULL;
3968 }
3969
3970 void migrate_fd_connect(MigrationState *s, Error *error_in)
3971 {
3972 Error *local_err = NULL;
3973 int64_t rate_limit;
3974 bool resume = s->state == MIGRATION_STATUS_POSTCOPY_PAUSED;
3975
3976 s->expected_downtime = s->parameters.downtime_limit;
3977 if (resume) {
3978 assert(s->cleanup_bh);
3979 } else {
3980 assert(!s->cleanup_bh);
3981 s->cleanup_bh = qemu_bh_new(migrate_fd_cleanup_bh, s);
3982 }
3983 if (error_in) {
3984 migrate_fd_error(s, error_in);
3985 migrate_fd_cleanup(s);
3986 return;
3987 }
3988
3989 if (resume) {
3990 /* This is a resumed migration */
3991 rate_limit = s->parameters.max_postcopy_bandwidth /
3992 XFER_LIMIT_RATIO;
3993 } else {
3994 /* This is a fresh new migration */
3995 rate_limit = s->parameters.max_bandwidth / XFER_LIMIT_RATIO;
3996
3997 /* Notify before starting migration thread */
3998 notifier_list_notify(&migration_state_notifiers, s);
3999 }
4000
4001 qemu_file_set_rate_limit(s->to_dst_file, rate_limit);
4002 qemu_file_set_blocking(s->to_dst_file, true);
4003
4004 /*
4005 * Open the return path. For postcopy, it is used exclusively. For
4006 * precopy, only if user specified "return-path" capability would
4007 * QEMU uses the return path.
4008 */
4009 if (migrate_postcopy_ram() || migrate_use_return_path()) {
4010 if (open_return_path_on_source(s, !resume)) {
4011 error_report("Unable to open return-path for postcopy");
4012 migrate_set_state(&s->state, s->state, MIGRATION_STATUS_FAILED);
4013 migrate_fd_cleanup(s);
4014 return;
4015 }
4016 }
4017
4018 if (resume) {
4019 /* Wakeup the main migration thread to do the recovery */
4020 migrate_set_state(&s->state, MIGRATION_STATUS_POSTCOPY_PAUSED,
4021 MIGRATION_STATUS_POSTCOPY_RECOVER);
4022 qemu_sem_post(&s->postcopy_pause_sem);
4023 return;
4024 }
4025
4026 if (multifd_save_setup(&local_err) != 0) {
4027 error_report_err(local_err);
4028 migrate_set_state(&s->state, MIGRATION_STATUS_SETUP,
4029 MIGRATION_STATUS_FAILED);
4030 migrate_fd_cleanup(s);
4031 return;
4032 }
4033
4034 if (migrate_background_snapshot()) {
4035 qemu_thread_create(&s->thread, "bg_snapshot",
4036 bg_migration_thread, s, QEMU_THREAD_JOINABLE);
4037 } else {
4038 qemu_thread_create(&s->thread, "live_migration",
4039 migration_thread, s, QEMU_THREAD_JOINABLE);
4040 }
4041 s->migration_thread_running = true;
4042 }
4043
4044 void migration_global_dump(Monitor *mon)
4045 {
4046 MigrationState *ms = migrate_get_current();
4047
4048 monitor_printf(mon, "globals:\n");
4049 monitor_printf(mon, "store-global-state: %s\n",
4050 ms->store_global_state ? "on" : "off");
4051 monitor_printf(mon, "only-migratable: %s\n",
4052 only_migratable ? "on" : "off");
4053 monitor_printf(mon, "send-configuration: %s\n",
4054 ms->send_configuration ? "on" : "off");
4055 monitor_printf(mon, "send-section-footer: %s\n",
4056 ms->send_section_footer ? "on" : "off");
4057 monitor_printf(mon, "decompress-error-check: %s\n",
4058 ms->decompress_error_check ? "on" : "off");
4059 monitor_printf(mon, "clear-bitmap-shift: %u\n",
4060 ms->clear_bitmap_shift);
4061 }
4062
4063 #define DEFINE_PROP_MIG_CAP(name, x) \
4064 DEFINE_PROP_BOOL(name, MigrationState, enabled_capabilities[x], false)
4065
4066 static Property migration_properties[] = {
4067 DEFINE_PROP_BOOL("store-global-state", MigrationState,
4068 store_global_state, true),
4069 DEFINE_PROP_BOOL("send-configuration", MigrationState,
4070 send_configuration, true),
4071 DEFINE_PROP_BOOL("send-section-footer", MigrationState,
4072 send_section_footer, true),
4073 DEFINE_PROP_BOOL("decompress-error-check", MigrationState,
4074 decompress_error_check, true),
4075 DEFINE_PROP_UINT8("x-clear-bitmap-shift", MigrationState,
4076 clear_bitmap_shift, CLEAR_BITMAP_SHIFT_DEFAULT),
4077
4078 /* Migration parameters */
4079 DEFINE_PROP_UINT8("x-compress-level", MigrationState,
4080 parameters.compress_level,
4081 DEFAULT_MIGRATE_COMPRESS_LEVEL),
4082 DEFINE_PROP_UINT8("x-compress-threads", MigrationState,
4083 parameters.compress_threads,
4084 DEFAULT_MIGRATE_COMPRESS_THREAD_COUNT),
4085 DEFINE_PROP_BOOL("x-compress-wait-thread", MigrationState,
4086 parameters.compress_wait_thread, true),
4087 DEFINE_PROP_UINT8("x-decompress-threads", MigrationState,
4088 parameters.decompress_threads,
4089 DEFAULT_MIGRATE_DECOMPRESS_THREAD_COUNT),
4090 DEFINE_PROP_UINT8("x-throttle-trigger-threshold", MigrationState,
4091 parameters.throttle_trigger_threshold,
4092 DEFAULT_MIGRATE_THROTTLE_TRIGGER_THRESHOLD),
4093 DEFINE_PROP_UINT8("x-cpu-throttle-initial", MigrationState,
4094 parameters.cpu_throttle_initial,
4095 DEFAULT_MIGRATE_CPU_THROTTLE_INITIAL),
4096 DEFINE_PROP_UINT8("x-cpu-throttle-increment", MigrationState,
4097 parameters.cpu_throttle_increment,
4098 DEFAULT_MIGRATE_CPU_THROTTLE_INCREMENT),
4099 DEFINE_PROP_BOOL("x-cpu-throttle-tailslow", MigrationState,
4100 parameters.cpu_throttle_tailslow, false),
4101 DEFINE_PROP_SIZE("x-max-bandwidth", MigrationState,
4102 parameters.max_bandwidth, MAX_THROTTLE),
4103 DEFINE_PROP_UINT64("x-downtime-limit", MigrationState,
4104 parameters.downtime_limit,
4105 DEFAULT_MIGRATE_SET_DOWNTIME),
4106 DEFINE_PROP_UINT32("x-checkpoint-delay", MigrationState,
4107 parameters.x_checkpoint_delay,
4108 DEFAULT_MIGRATE_X_CHECKPOINT_DELAY),
4109 DEFINE_PROP_UINT8("multifd-channels", MigrationState,
4110 parameters.multifd_channels,
4111 DEFAULT_MIGRATE_MULTIFD_CHANNELS),
4112 DEFINE_PROP_MULTIFD_COMPRESSION("multifd-compression", MigrationState,
4113 parameters.multifd_compression,
4114 DEFAULT_MIGRATE_MULTIFD_COMPRESSION),
4115 DEFINE_PROP_UINT8("multifd-zlib-level", MigrationState,
4116 parameters.multifd_zlib_level,
4117 DEFAULT_MIGRATE_MULTIFD_ZLIB_LEVEL),
4118 DEFINE_PROP_UINT8("multifd-zstd-level", MigrationState,
4119 parameters.multifd_zstd_level,
4120 DEFAULT_MIGRATE_MULTIFD_ZSTD_LEVEL),
4121 DEFINE_PROP_SIZE("xbzrle-cache-size", MigrationState,
4122 parameters.xbzrle_cache_size,
4123 DEFAULT_MIGRATE_XBZRLE_CACHE_SIZE),
4124 DEFINE_PROP_SIZE("max-postcopy-bandwidth", MigrationState,
4125 parameters.max_postcopy_bandwidth,
4126 DEFAULT_MIGRATE_MAX_POSTCOPY_BANDWIDTH),
4127 DEFINE_PROP_UINT8("max-cpu-throttle", MigrationState,
4128 parameters.max_cpu_throttle,
4129 DEFAULT_MIGRATE_MAX_CPU_THROTTLE),
4130 DEFINE_PROP_SIZE("announce-initial", MigrationState,
4131 parameters.announce_initial,
4132 DEFAULT_MIGRATE_ANNOUNCE_INITIAL),
4133 DEFINE_PROP_SIZE("announce-max", MigrationState,
4134 parameters.announce_max,
4135 DEFAULT_MIGRATE_ANNOUNCE_MAX),
4136 DEFINE_PROP_SIZE("announce-rounds", MigrationState,
4137 parameters.announce_rounds,
4138 DEFAULT_MIGRATE_ANNOUNCE_ROUNDS),
4139 DEFINE_PROP_SIZE("announce-step", MigrationState,
4140 parameters.announce_step,
4141 DEFAULT_MIGRATE_ANNOUNCE_STEP),
4142
4143 /* Migration capabilities */
4144 DEFINE_PROP_MIG_CAP("x-xbzrle", MIGRATION_CAPABILITY_XBZRLE),
4145 DEFINE_PROP_MIG_CAP("x-rdma-pin-all", MIGRATION_CAPABILITY_RDMA_PIN_ALL),
4146 DEFINE_PROP_MIG_CAP("x-auto-converge", MIGRATION_CAPABILITY_AUTO_CONVERGE),
4147 DEFINE_PROP_MIG_CAP("x-zero-blocks", MIGRATION_CAPABILITY_ZERO_BLOCKS),
4148 DEFINE_PROP_MIG_CAP("x-compress", MIGRATION_CAPABILITY_COMPRESS),
4149 DEFINE_PROP_MIG_CAP("x-events", MIGRATION_CAPABILITY_EVENTS),
4150 DEFINE_PROP_MIG_CAP("x-postcopy-ram", MIGRATION_CAPABILITY_POSTCOPY_RAM),
4151 DEFINE_PROP_MIG_CAP("x-colo", MIGRATION_CAPABILITY_X_COLO),
4152 DEFINE_PROP_MIG_CAP("x-release-ram", MIGRATION_CAPABILITY_RELEASE_RAM),
4153 DEFINE_PROP_MIG_CAP("x-block", MIGRATION_CAPABILITY_BLOCK),
4154 DEFINE_PROP_MIG_CAP("x-return-path", MIGRATION_CAPABILITY_RETURN_PATH),
4155 DEFINE_PROP_MIG_CAP("x-multifd", MIGRATION_CAPABILITY_MULTIFD),
4156 DEFINE_PROP_MIG_CAP("x-background-snapshot",
4157 MIGRATION_CAPABILITY_BACKGROUND_SNAPSHOT),
4158
4159 DEFINE_PROP_END_OF_LIST(),
4160 };
4161
4162 static void migration_class_init(ObjectClass *klass, void *data)
4163 {
4164 DeviceClass *dc = DEVICE_CLASS(klass);
4165
4166 dc->user_creatable = false;
4167 device_class_set_props(dc, migration_properties);
4168 }
4169
4170 static void migration_instance_finalize(Object *obj)
4171 {
4172 MigrationState *ms = MIGRATION_OBJ(obj);
4173 MigrationParameters *params = &ms->parameters;
4174
4175 qemu_mutex_destroy(&ms->error_mutex);
4176 qemu_mutex_destroy(&ms->qemu_file_lock);
4177 g_free(params->tls_hostname);
4178 g_free(params->tls_creds);
4179 qemu_sem_destroy(&ms->wait_unplug_sem);
4180 qemu_sem_destroy(&ms->rate_limit_sem);
4181 qemu_sem_destroy(&ms->pause_sem);
4182 qemu_sem_destroy(&ms->postcopy_pause_sem);
4183 qemu_sem_destroy(&ms->postcopy_pause_rp_sem);
4184 qemu_sem_destroy(&ms->rp_state.rp_sem);
4185 error_free(ms->error);
4186 }
4187
4188 static void migration_instance_init(Object *obj)
4189 {
4190 MigrationState *ms = MIGRATION_OBJ(obj);
4191 MigrationParameters *params = &ms->parameters;
4192
4193 ms->state = MIGRATION_STATUS_NONE;
4194 ms->mbps = -1;
4195 ms->pages_per_second = -1;
4196 qemu_sem_init(&ms->pause_sem, 0);
4197 qemu_mutex_init(&ms->error_mutex);
4198
4199 params->tls_hostname = g_strdup("");
4200 params->tls_creds = g_strdup("");
4201
4202 /* Set has_* up only for parameter checks */
4203 params->has_compress_level = true;
4204 params->has_compress_threads = true;
4205 params->has_decompress_threads = true;
4206 params->has_throttle_trigger_threshold = true;
4207 params->has_cpu_throttle_initial = true;
4208 params->has_cpu_throttle_increment = true;
4209 params->has_cpu_throttle_tailslow = true;
4210 params->has_max_bandwidth = true;
4211 params->has_downtime_limit = true;
4212 params->has_x_checkpoint_delay = true;
4213 params->has_block_incremental = true;
4214 params->has_multifd_channels = true;
4215 params->has_multifd_compression = true;
4216 params->has_multifd_zlib_level = true;
4217 params->has_multifd_zstd_level = true;
4218 params->has_xbzrle_cache_size = true;
4219 params->has_max_postcopy_bandwidth = true;
4220 params->has_max_cpu_throttle = true;
4221 params->has_announce_initial = true;
4222 params->has_announce_max = true;
4223 params->has_announce_rounds = true;
4224 params->has_announce_step = true;
4225
4226 qemu_sem_init(&ms->postcopy_pause_sem, 0);
4227 qemu_sem_init(&ms->postcopy_pause_rp_sem, 0);
4228 qemu_sem_init(&ms->rp_state.rp_sem, 0);
4229 qemu_sem_init(&ms->rate_limit_sem, 0);
4230 qemu_sem_init(&ms->wait_unplug_sem, 0);
4231 qemu_mutex_init(&ms->qemu_file_lock);
4232 }
4233
4234 /*
4235 * Return true if check pass, false otherwise. Error will be put
4236 * inside errp if provided.
4237 */
4238 static bool migration_object_check(MigrationState *ms, Error **errp)
4239 {
4240 MigrationCapabilityStatusList *head = NULL;
4241 /* Assuming all off */
4242 bool cap_list[MIGRATION_CAPABILITY__MAX] = { 0 }, ret;
4243 int i;
4244
4245 if (!migrate_params_check(&ms->parameters, errp)) {
4246 return false;
4247 }
4248
4249 for (i = 0; i < MIGRATION_CAPABILITY__MAX; i++) {
4250 if (ms->enabled_capabilities[i]) {
4251 QAPI_LIST_PREPEND(head, migrate_cap_add(i, true));
4252 }
4253 }
4254
4255 ret = migrate_caps_check(cap_list, head, errp);
4256
4257 /* It works with head == NULL */
4258 qapi_free_MigrationCapabilityStatusList(head);
4259
4260 return ret;
4261 }
4262
4263 static const TypeInfo migration_type = {
4264 .name = TYPE_MIGRATION,
4265 /*
4266 * NOTE: TYPE_MIGRATION is not really a device, as the object is
4267 * not created using qdev_new(), it is not attached to the qdev
4268 * device tree, and it is never realized.
4269 *
4270 * TODO: Make this TYPE_OBJECT once QOM provides something like
4271 * TYPE_DEVICE's "-global" properties.
4272 */
4273 .parent = TYPE_DEVICE,
4274 .class_init = migration_class_init,
4275 .class_size = sizeof(MigrationClass),
4276 .instance_size = sizeof(MigrationState),
4277 .instance_init = migration_instance_init,
4278 .instance_finalize = migration_instance_finalize,
4279 };
4280
4281 static void register_migration_types(void)
4282 {
4283 type_register_static(&migration_type);
4284 }
4285
4286 type_init(register_migration_types);