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1 /*
2 * QEMU Block backends
3 *
4 * Copyright (C) 2014-2016 Red Hat, Inc.
5 *
6 * Authors:
7 * Markus Armbruster <armbru@redhat.com>,
8 *
9 * This work is licensed under the terms of the GNU LGPL, version 2.1
10 * or later. See the COPYING.LIB file in the top-level directory.
11 */
12
13 #include "qemu/osdep.h"
14 #include "sysemu/block-backend.h"
15 #include "block/block_int.h"
16 #include "block/blockjob.h"
17 #include "block/coroutines.h"
18 #include "block/throttle-groups.h"
19 #include "hw/qdev-core.h"
20 #include "sysemu/blockdev.h"
21 #include "sysemu/runstate.h"
22 #include "sysemu/replay.h"
23 #include "qapi/error.h"
24 #include "qapi/qapi-events-block.h"
25 #include "qemu/id.h"
26 #include "qemu/main-loop.h"
27 #include "qemu/option.h"
28 #include "trace.h"
29 #include "migration/misc.h"
30
31 /* Number of coroutines to reserve per attached device model */
32 #define COROUTINE_POOL_RESERVATION 64
33
34 #define NOT_DONE 0x7fffffff /* used while emulated sync operation in progress */
35
36 typedef struct BlockBackendAioNotifier {
37 void (*attached_aio_context)(AioContext *new_context, void *opaque);
38 void (*detach_aio_context)(void *opaque);
39 void *opaque;
40 QLIST_ENTRY(BlockBackendAioNotifier) list;
41 } BlockBackendAioNotifier;
42
43 struct BlockBackend {
44 char *name;
45 int refcnt;
46 BdrvChild *root;
47 AioContext *ctx;
48 DriveInfo *legacy_dinfo; /* null unless created by drive_new() */
49 QTAILQ_ENTRY(BlockBackend) link; /* for block_backends */
50 QTAILQ_ENTRY(BlockBackend) monitor_link; /* for monitor_block_backends */
51 BlockBackendPublic public;
52
53 DeviceState *dev; /* attached device model, if any */
54 const BlockDevOps *dev_ops;
55 void *dev_opaque;
56
57 /* If the BDS tree is removed, some of its options are stored here (which
58 * can be used to restore those options in the new BDS on insert) */
59 BlockBackendRootState root_state;
60
61 bool enable_write_cache;
62
63 /* I/O stats (display with "info blockstats"). */
64 BlockAcctStats stats;
65
66 BlockdevOnError on_read_error, on_write_error;
67 bool iostatus_enabled;
68 BlockDeviceIoStatus iostatus;
69
70 uint64_t perm;
71 uint64_t shared_perm;
72 bool disable_perm;
73
74 bool allow_aio_context_change;
75 bool allow_write_beyond_eof;
76
77 /* Protected by BQL */
78 NotifierList remove_bs_notifiers, insert_bs_notifiers;
79 QLIST_HEAD(, BlockBackendAioNotifier) aio_notifiers;
80
81 int quiesce_counter; /* atomic: written under BQL, read by other threads */
82 QemuMutex queued_requests_lock; /* protects queued_requests */
83 CoQueue queued_requests;
84 bool disable_request_queuing; /* atomic */
85
86 VMChangeStateEntry *vmsh;
87 bool force_allow_inactivate;
88
89 /* Number of in-flight aio requests. BlockDriverState also counts
90 * in-flight requests but aio requests can exist even when blk->root is
91 * NULL, so we cannot rely on its counter for that case.
92 * Accessed with atomic ops.
93 */
94 unsigned int in_flight;
95 };
96
97 typedef struct BlockBackendAIOCB {
98 BlockAIOCB common;
99 BlockBackend *blk;
100 int ret;
101 } BlockBackendAIOCB;
102
103 static const AIOCBInfo block_backend_aiocb_info = {
104 .aiocb_size = sizeof(BlockBackendAIOCB),
105 };
106
107 static void drive_info_del(DriveInfo *dinfo);
108 static BlockBackend *bdrv_first_blk(BlockDriverState *bs);
109
110 /* All BlockBackends. Protected by BQL. */
111 static QTAILQ_HEAD(, BlockBackend) block_backends =
112 QTAILQ_HEAD_INITIALIZER(block_backends);
113
114 /*
115 * All BlockBackends referenced by the monitor and which are iterated through by
116 * blk_next(). Protected by BQL.
117 */
118 static QTAILQ_HEAD(, BlockBackend) monitor_block_backends =
119 QTAILQ_HEAD_INITIALIZER(monitor_block_backends);
120
121 static int coroutine_mixed_fn GRAPH_RDLOCK
122 blk_set_perm_locked(BlockBackend *blk, uint64_t perm, uint64_t shared_perm,
123 Error **errp);
124
125 static void blk_root_inherit_options(BdrvChildRole role, bool parent_is_format,
126 int *child_flags, QDict *child_options,
127 int parent_flags, QDict *parent_options)
128 {
129 /* We're not supposed to call this function for root nodes */
130 abort();
131 }
132 static void blk_root_drained_begin(BdrvChild *child);
133 static bool blk_root_drained_poll(BdrvChild *child);
134 static void blk_root_drained_end(BdrvChild *child);
135
136 static void blk_root_change_media(BdrvChild *child, bool load);
137 static void blk_root_resize(BdrvChild *child);
138
139 static bool blk_root_change_aio_ctx(BdrvChild *child, AioContext *ctx,
140 GHashTable *visited, Transaction *tran,
141 Error **errp);
142
143 static char *blk_root_get_parent_desc(BdrvChild *child)
144 {
145 BlockBackend *blk = child->opaque;
146 g_autofree char *dev_id = NULL;
147
148 if (blk->name) {
149 return g_strdup_printf("block device '%s'", blk->name);
150 }
151
152 dev_id = blk_get_attached_dev_id(blk);
153 if (*dev_id) {
154 return g_strdup_printf("block device '%s'", dev_id);
155 } else {
156 /* TODO Callback into the BB owner for something more detailed */
157 return g_strdup("an unnamed block device");
158 }
159 }
160
161 static const char *blk_root_get_name(BdrvChild *child)
162 {
163 return blk_name(child->opaque);
164 }
165
166 static void blk_vm_state_changed(void *opaque, bool running, RunState state)
167 {
168 Error *local_err = NULL;
169 BlockBackend *blk = opaque;
170
171 if (state == RUN_STATE_INMIGRATE) {
172 return;
173 }
174
175 qemu_del_vm_change_state_handler(blk->vmsh);
176 blk->vmsh = NULL;
177 blk_set_perm(blk, blk->perm, blk->shared_perm, &local_err);
178 if (local_err) {
179 error_report_err(local_err);
180 }
181 }
182
183 /*
184 * Notifies the user of the BlockBackend that migration has completed. qdev
185 * devices can tighten their permissions in response (specifically revoke
186 * shared write permissions that we needed for storage migration).
187 *
188 * If an error is returned, the VM cannot be allowed to be resumed.
189 */
190 static void GRAPH_RDLOCK blk_root_activate(BdrvChild *child, Error **errp)
191 {
192 BlockBackend *blk = child->opaque;
193 Error *local_err = NULL;
194 uint64_t saved_shared_perm;
195
196 if (!blk->disable_perm) {
197 return;
198 }
199
200 blk->disable_perm = false;
201
202 /*
203 * blk->shared_perm contains the permissions we want to share once
204 * migration is really completely done. For now, we need to share
205 * all; but we also need to retain blk->shared_perm, which is
206 * overwritten by a successful blk_set_perm() call. Save it and
207 * restore it below.
208 */
209 saved_shared_perm = blk->shared_perm;
210
211 blk_set_perm_locked(blk, blk->perm, BLK_PERM_ALL, &local_err);
212 if (local_err) {
213 error_propagate(errp, local_err);
214 blk->disable_perm = true;
215 return;
216 }
217 blk->shared_perm = saved_shared_perm;
218
219 if (runstate_check(RUN_STATE_INMIGRATE)) {
220 /* Activation can happen when migration process is still active, for
221 * example when nbd_server_add is called during non-shared storage
222 * migration. Defer the shared_perm update to migration completion. */
223 if (!blk->vmsh) {
224 blk->vmsh = qemu_add_vm_change_state_handler(blk_vm_state_changed,
225 blk);
226 }
227 return;
228 }
229
230 blk_set_perm_locked(blk, blk->perm, blk->shared_perm, &local_err);
231 if (local_err) {
232 error_propagate(errp, local_err);
233 blk->disable_perm = true;
234 return;
235 }
236 }
237
238 void blk_set_force_allow_inactivate(BlockBackend *blk)
239 {
240 GLOBAL_STATE_CODE();
241 blk->force_allow_inactivate = true;
242 }
243
244 static bool blk_can_inactivate(BlockBackend *blk)
245 {
246 /* If it is a guest device, inactivate is ok. */
247 if (blk->dev || blk_name(blk)[0]) {
248 return true;
249 }
250
251 /* Inactivating means no more writes to the image can be done,
252 * even if those writes would be changes invisible to the
253 * guest. For block job BBs that satisfy this, we can just allow
254 * it. This is the case for mirror job source, which is required
255 * by libvirt non-shared block migration. */
256 if (!(blk->perm & (BLK_PERM_WRITE | BLK_PERM_WRITE_UNCHANGED))) {
257 return true;
258 }
259
260 return blk->force_allow_inactivate;
261 }
262
263 static int GRAPH_RDLOCK blk_root_inactivate(BdrvChild *child)
264 {
265 BlockBackend *blk = child->opaque;
266
267 if (blk->disable_perm) {
268 return 0;
269 }
270
271 if (!blk_can_inactivate(blk)) {
272 return -EPERM;
273 }
274
275 blk->disable_perm = true;
276 if (blk->root) {
277 bdrv_child_try_set_perm(blk->root, 0, BLK_PERM_ALL, &error_abort);
278 }
279
280 return 0;
281 }
282
283 static void blk_root_attach(BdrvChild *child)
284 {
285 BlockBackend *blk = child->opaque;
286 BlockBackendAioNotifier *notifier;
287
288 trace_blk_root_attach(child, blk, child->bs);
289
290 QLIST_FOREACH(notifier, &blk->aio_notifiers, list) {
291 bdrv_add_aio_context_notifier(child->bs,
292 notifier->attached_aio_context,
293 notifier->detach_aio_context,
294 notifier->opaque);
295 }
296 }
297
298 static void blk_root_detach(BdrvChild *child)
299 {
300 BlockBackend *blk = child->opaque;
301 BlockBackendAioNotifier *notifier;
302
303 trace_blk_root_detach(child, blk, child->bs);
304
305 QLIST_FOREACH(notifier, &blk->aio_notifiers, list) {
306 bdrv_remove_aio_context_notifier(child->bs,
307 notifier->attached_aio_context,
308 notifier->detach_aio_context,
309 notifier->opaque);
310 }
311 }
312
313 static AioContext *blk_root_get_parent_aio_context(BdrvChild *c)
314 {
315 BlockBackend *blk = c->opaque;
316 IO_CODE();
317
318 return blk_get_aio_context(blk);
319 }
320
321 static const BdrvChildClass child_root = {
322 .inherit_options = blk_root_inherit_options,
323
324 .change_media = blk_root_change_media,
325 .resize = blk_root_resize,
326 .get_name = blk_root_get_name,
327 .get_parent_desc = blk_root_get_parent_desc,
328
329 .drained_begin = blk_root_drained_begin,
330 .drained_poll = blk_root_drained_poll,
331 .drained_end = blk_root_drained_end,
332
333 .activate = blk_root_activate,
334 .inactivate = blk_root_inactivate,
335
336 .attach = blk_root_attach,
337 .detach = blk_root_detach,
338
339 .change_aio_ctx = blk_root_change_aio_ctx,
340
341 .get_parent_aio_context = blk_root_get_parent_aio_context,
342 };
343
344 /*
345 * Create a new BlockBackend with a reference count of one.
346 *
347 * @perm is a bitmasks of BLK_PERM_* constants which describes the permissions
348 * to request for a block driver node that is attached to this BlockBackend.
349 * @shared_perm is a bitmask which describes which permissions may be granted
350 * to other users of the attached node.
351 * Both sets of permissions can be changed later using blk_set_perm().
352 *
353 * Return the new BlockBackend on success, null on failure.
354 */
355 BlockBackend *blk_new(AioContext *ctx, uint64_t perm, uint64_t shared_perm)
356 {
357 BlockBackend *blk;
358
359 GLOBAL_STATE_CODE();
360
361 blk = g_new0(BlockBackend, 1);
362 blk->refcnt = 1;
363 blk->ctx = ctx;
364 blk->perm = perm;
365 blk->shared_perm = shared_perm;
366 blk_set_enable_write_cache(blk, true);
367
368 blk->on_read_error = BLOCKDEV_ON_ERROR_REPORT;
369 blk->on_write_error = BLOCKDEV_ON_ERROR_ENOSPC;
370
371 block_acct_init(&blk->stats);
372
373 qemu_mutex_init(&blk->queued_requests_lock);
374 qemu_co_queue_init(&blk->queued_requests);
375 notifier_list_init(&blk->remove_bs_notifiers);
376 notifier_list_init(&blk->insert_bs_notifiers);
377 QLIST_INIT(&blk->aio_notifiers);
378
379 QTAILQ_INSERT_TAIL(&block_backends, blk, link);
380 return blk;
381 }
382
383 /*
384 * Create a new BlockBackend connected to an existing BlockDriverState.
385 *
386 * @perm is a bitmasks of BLK_PERM_* constants which describes the
387 * permissions to request for @bs that is attached to this
388 * BlockBackend. @shared_perm is a bitmask which describes which
389 * permissions may be granted to other users of the attached node.
390 * Both sets of permissions can be changed later using blk_set_perm().
391 *
392 * Return the new BlockBackend on success, null on failure.
393 *
394 * Callers must hold the AioContext lock of @bs.
395 */
396 BlockBackend *blk_new_with_bs(BlockDriverState *bs, uint64_t perm,
397 uint64_t shared_perm, Error **errp)
398 {
399 BlockBackend *blk = blk_new(bdrv_get_aio_context(bs), perm, shared_perm);
400
401 GLOBAL_STATE_CODE();
402
403 if (blk_insert_bs(blk, bs, errp) < 0) {
404 blk_unref(blk);
405 return NULL;
406 }
407 return blk;
408 }
409
410 /*
411 * Creates a new BlockBackend, opens a new BlockDriverState, and connects both.
412 * By default, the new BlockBackend is in the main AioContext, but if the
413 * parameters connect it with any existing node in a different AioContext, it
414 * may end up there instead.
415 *
416 * Just as with bdrv_open(), after having called this function the reference to
417 * @options belongs to the block layer (even on failure).
418 *
419 * Called without holding an AioContext lock.
420 *
421 * TODO: Remove @filename and @flags; it should be possible to specify a whole
422 * BDS tree just by specifying the @options QDict (or @reference,
423 * alternatively). At the time of adding this function, this is not possible,
424 * though, so callers of this function have to be able to specify @filename and
425 * @flags.
426 */
427 BlockBackend *blk_new_open(const char *filename, const char *reference,
428 QDict *options, int flags, Error **errp)
429 {
430 BlockBackend *blk;
431 BlockDriverState *bs;
432 AioContext *ctx;
433 uint64_t perm = 0;
434 uint64_t shared = BLK_PERM_ALL;
435
436 GLOBAL_STATE_CODE();
437
438 /*
439 * blk_new_open() is mainly used in .bdrv_create implementations and the
440 * tools where sharing isn't a major concern because the BDS stays private
441 * and the file is generally not supposed to be used by a second process,
442 * so we just request permission according to the flags.
443 *
444 * The exceptions are xen_disk and blockdev_init(); in these cases, the
445 * caller of blk_new_open() doesn't make use of the permissions, but they
446 * shouldn't hurt either. We can still share everything here because the
447 * guest devices will add their own blockers if they can't share.
448 */
449 if ((flags & BDRV_O_NO_IO) == 0) {
450 perm |= BLK_PERM_CONSISTENT_READ;
451 if (flags & BDRV_O_RDWR) {
452 perm |= BLK_PERM_WRITE;
453 }
454 }
455 if (flags & BDRV_O_RESIZE) {
456 perm |= BLK_PERM_RESIZE;
457 }
458 if (flags & BDRV_O_NO_SHARE) {
459 shared = BLK_PERM_CONSISTENT_READ | BLK_PERM_WRITE_UNCHANGED;
460 }
461
462 aio_context_acquire(qemu_get_aio_context());
463 bs = bdrv_open(filename, reference, options, flags, errp);
464 aio_context_release(qemu_get_aio_context());
465 if (!bs) {
466 return NULL;
467 }
468
469 /* bdrv_open() could have moved bs to a different AioContext */
470 ctx = bdrv_get_aio_context(bs);
471 blk = blk_new(bdrv_get_aio_context(bs), perm, shared);
472 blk->perm = perm;
473 blk->shared_perm = shared;
474
475 aio_context_acquire(ctx);
476 blk_insert_bs(blk, bs, errp);
477 bdrv_unref(bs);
478 aio_context_release(ctx);
479
480 if (!blk->root) {
481 blk_unref(blk);
482 return NULL;
483 }
484
485 return blk;
486 }
487
488 static void blk_delete(BlockBackend *blk)
489 {
490 assert(!blk->refcnt);
491 assert(!blk->name);
492 assert(!blk->dev);
493 if (blk->public.throttle_group_member.throttle_state) {
494 blk_io_limits_disable(blk);
495 }
496 if (blk->root) {
497 blk_remove_bs(blk);
498 }
499 if (blk->vmsh) {
500 qemu_del_vm_change_state_handler(blk->vmsh);
501 blk->vmsh = NULL;
502 }
503 assert(QLIST_EMPTY(&blk->remove_bs_notifiers.notifiers));
504 assert(QLIST_EMPTY(&blk->insert_bs_notifiers.notifiers));
505 assert(QLIST_EMPTY(&blk->aio_notifiers));
506 assert(qemu_co_queue_empty(&blk->queued_requests));
507 qemu_mutex_destroy(&blk->queued_requests_lock);
508 QTAILQ_REMOVE(&block_backends, blk, link);
509 drive_info_del(blk->legacy_dinfo);
510 block_acct_cleanup(&blk->stats);
511 g_free(blk);
512 }
513
514 static void drive_info_del(DriveInfo *dinfo)
515 {
516 if (!dinfo) {
517 return;
518 }
519 qemu_opts_del(dinfo->opts);
520 g_free(dinfo);
521 }
522
523 int blk_get_refcnt(BlockBackend *blk)
524 {
525 GLOBAL_STATE_CODE();
526 return blk ? blk->refcnt : 0;
527 }
528
529 /*
530 * Increment @blk's reference count.
531 * @blk must not be null.
532 */
533 void blk_ref(BlockBackend *blk)
534 {
535 assert(blk->refcnt > 0);
536 GLOBAL_STATE_CODE();
537 blk->refcnt++;
538 }
539
540 /*
541 * Decrement @blk's reference count.
542 * If this drops it to zero, destroy @blk.
543 * For convenience, do nothing if @blk is null.
544 */
545 void blk_unref(BlockBackend *blk)
546 {
547 GLOBAL_STATE_CODE();
548 if (blk) {
549 assert(blk->refcnt > 0);
550 if (blk->refcnt > 1) {
551 blk->refcnt--;
552 } else {
553 blk_drain(blk);
554 /* blk_drain() cannot resurrect blk, nobody held a reference */
555 assert(blk->refcnt == 1);
556 blk->refcnt = 0;
557 blk_delete(blk);
558 }
559 }
560 }
561
562 /*
563 * Behaves similarly to blk_next() but iterates over all BlockBackends, even the
564 * ones which are hidden (i.e. are not referenced by the monitor).
565 */
566 BlockBackend *blk_all_next(BlockBackend *blk)
567 {
568 GLOBAL_STATE_CODE();
569 return blk ? QTAILQ_NEXT(blk, link)
570 : QTAILQ_FIRST(&block_backends);
571 }
572
573 void blk_remove_all_bs(void)
574 {
575 BlockBackend *blk = NULL;
576
577 GLOBAL_STATE_CODE();
578
579 while ((blk = blk_all_next(blk)) != NULL) {
580 AioContext *ctx = blk_get_aio_context(blk);
581
582 aio_context_acquire(ctx);
583 if (blk->root) {
584 blk_remove_bs(blk);
585 }
586 aio_context_release(ctx);
587 }
588 }
589
590 /*
591 * Return the monitor-owned BlockBackend after @blk.
592 * If @blk is null, return the first one.
593 * Else, return @blk's next sibling, which may be null.
594 *
595 * To iterate over all BlockBackends, do
596 * for (blk = blk_next(NULL); blk; blk = blk_next(blk)) {
597 * ...
598 * }
599 */
600 BlockBackend *blk_next(BlockBackend *blk)
601 {
602 GLOBAL_STATE_CODE();
603 return blk ? QTAILQ_NEXT(blk, monitor_link)
604 : QTAILQ_FIRST(&monitor_block_backends);
605 }
606
607 /* Iterates over all top-level BlockDriverStates, i.e. BDSs that are owned by
608 * the monitor or attached to a BlockBackend */
609 BlockDriverState *bdrv_next(BdrvNextIterator *it)
610 {
611 BlockDriverState *bs, *old_bs;
612
613 /* Must be called from the main loop */
614 assert(qemu_get_current_aio_context() == qemu_get_aio_context());
615
616 /* First, return all root nodes of BlockBackends. In order to avoid
617 * returning a BDS twice when multiple BBs refer to it, we only return it
618 * if the BB is the first one in the parent list of the BDS. */
619 if (it->phase == BDRV_NEXT_BACKEND_ROOTS) {
620 BlockBackend *old_blk = it->blk;
621
622 old_bs = old_blk ? blk_bs(old_blk) : NULL;
623
624 do {
625 it->blk = blk_all_next(it->blk);
626 bs = it->blk ? blk_bs(it->blk) : NULL;
627 } while (it->blk && (bs == NULL || bdrv_first_blk(bs) != it->blk));
628
629 if (it->blk) {
630 blk_ref(it->blk);
631 }
632 blk_unref(old_blk);
633
634 if (bs) {
635 bdrv_ref(bs);
636 bdrv_unref(old_bs);
637 return bs;
638 }
639 it->phase = BDRV_NEXT_MONITOR_OWNED;
640 } else {
641 old_bs = it->bs;
642 }
643
644 /* Then return the monitor-owned BDSes without a BB attached. Ignore all
645 * BDSes that are attached to a BlockBackend here; they have been handled
646 * by the above block already */
647 do {
648 it->bs = bdrv_next_monitor_owned(it->bs);
649 bs = it->bs;
650 } while (bs && bdrv_has_blk(bs));
651
652 if (bs) {
653 bdrv_ref(bs);
654 }
655 bdrv_unref(old_bs);
656
657 return bs;
658 }
659
660 static void bdrv_next_reset(BdrvNextIterator *it)
661 {
662 *it = (BdrvNextIterator) {
663 .phase = BDRV_NEXT_BACKEND_ROOTS,
664 };
665 }
666
667 BlockDriverState *bdrv_first(BdrvNextIterator *it)
668 {
669 GLOBAL_STATE_CODE();
670 bdrv_next_reset(it);
671 return bdrv_next(it);
672 }
673
674 /* Must be called when aborting a bdrv_next() iteration before
675 * bdrv_next() returns NULL */
676 void bdrv_next_cleanup(BdrvNextIterator *it)
677 {
678 /* Must be called from the main loop */
679 assert(qemu_get_current_aio_context() == qemu_get_aio_context());
680
681 if (it->phase == BDRV_NEXT_BACKEND_ROOTS) {
682 if (it->blk) {
683 bdrv_unref(blk_bs(it->blk));
684 blk_unref(it->blk);
685 }
686 } else {
687 bdrv_unref(it->bs);
688 }
689
690 bdrv_next_reset(it);
691 }
692
693 /*
694 * Add a BlockBackend into the list of backends referenced by the monitor, with
695 * the given @name acting as the handle for the monitor.
696 * Strictly for use by blockdev.c.
697 *
698 * @name must not be null or empty.
699 *
700 * Returns true on success and false on failure. In the latter case, an Error
701 * object is returned through @errp.
702 */
703 bool monitor_add_blk(BlockBackend *blk, const char *name, Error **errp)
704 {
705 assert(!blk->name);
706 assert(name && name[0]);
707 GLOBAL_STATE_CODE();
708
709 if (!id_wellformed(name)) {
710 error_setg(errp, "Invalid device name");
711 return false;
712 }
713 if (blk_by_name(name)) {
714 error_setg(errp, "Device with id '%s' already exists", name);
715 return false;
716 }
717 if (bdrv_find_node(name)) {
718 error_setg(errp,
719 "Device name '%s' conflicts with an existing node name",
720 name);
721 return false;
722 }
723
724 blk->name = g_strdup(name);
725 QTAILQ_INSERT_TAIL(&monitor_block_backends, blk, monitor_link);
726 return true;
727 }
728
729 /*
730 * Remove a BlockBackend from the list of backends referenced by the monitor.
731 * Strictly for use by blockdev.c.
732 */
733 void monitor_remove_blk(BlockBackend *blk)
734 {
735 GLOBAL_STATE_CODE();
736
737 if (!blk->name) {
738 return;
739 }
740
741 QTAILQ_REMOVE(&monitor_block_backends, blk, monitor_link);
742 g_free(blk->name);
743 blk->name = NULL;
744 }
745
746 /*
747 * Return @blk's name, a non-null string.
748 * Returns an empty string iff @blk is not referenced by the monitor.
749 */
750 const char *blk_name(const BlockBackend *blk)
751 {
752 IO_CODE();
753 return blk->name ?: "";
754 }
755
756 /*
757 * Return the BlockBackend with name @name if it exists, else null.
758 * @name must not be null.
759 */
760 BlockBackend *blk_by_name(const char *name)
761 {
762 BlockBackend *blk = NULL;
763
764 GLOBAL_STATE_CODE();
765 assert(name);
766 while ((blk = blk_next(blk)) != NULL) {
767 if (!strcmp(name, blk->name)) {
768 return blk;
769 }
770 }
771 return NULL;
772 }
773
774 /*
775 * Return the BlockDriverState attached to @blk if any, else null.
776 */
777 BlockDriverState *blk_bs(BlockBackend *blk)
778 {
779 IO_CODE();
780 return blk->root ? blk->root->bs : NULL;
781 }
782
783 static BlockBackend * GRAPH_RDLOCK bdrv_first_blk(BlockDriverState *bs)
784 {
785 BdrvChild *child;
786
787 GLOBAL_STATE_CODE();
788 assert_bdrv_graph_readable();
789
790 QLIST_FOREACH(child, &bs->parents, next_parent) {
791 if (child->klass == &child_root) {
792 return child->opaque;
793 }
794 }
795
796 return NULL;
797 }
798
799 /*
800 * Returns true if @bs has an associated BlockBackend.
801 */
802 bool bdrv_has_blk(BlockDriverState *bs)
803 {
804 GLOBAL_STATE_CODE();
805 return bdrv_first_blk(bs) != NULL;
806 }
807
808 /*
809 * Returns true if @bs has only BlockBackends as parents.
810 */
811 bool bdrv_is_root_node(BlockDriverState *bs)
812 {
813 BdrvChild *c;
814
815 GLOBAL_STATE_CODE();
816 assert_bdrv_graph_readable();
817
818 QLIST_FOREACH(c, &bs->parents, next_parent) {
819 if (c->klass != &child_root) {
820 return false;
821 }
822 }
823
824 return true;
825 }
826
827 /*
828 * Return @blk's DriveInfo if any, else null.
829 */
830 DriveInfo *blk_legacy_dinfo(BlockBackend *blk)
831 {
832 GLOBAL_STATE_CODE();
833 return blk->legacy_dinfo;
834 }
835
836 /*
837 * Set @blk's DriveInfo to @dinfo, and return it.
838 * @blk must not have a DriveInfo set already.
839 * No other BlockBackend may have the same DriveInfo set.
840 */
841 DriveInfo *blk_set_legacy_dinfo(BlockBackend *blk, DriveInfo *dinfo)
842 {
843 assert(!blk->legacy_dinfo);
844 GLOBAL_STATE_CODE();
845 return blk->legacy_dinfo = dinfo;
846 }
847
848 /*
849 * Return the BlockBackend with DriveInfo @dinfo.
850 * It must exist.
851 */
852 BlockBackend *blk_by_legacy_dinfo(DriveInfo *dinfo)
853 {
854 BlockBackend *blk = NULL;
855 GLOBAL_STATE_CODE();
856
857 while ((blk = blk_next(blk)) != NULL) {
858 if (blk->legacy_dinfo == dinfo) {
859 return blk;
860 }
861 }
862 abort();
863 }
864
865 /*
866 * Returns a pointer to the publicly accessible fields of @blk.
867 */
868 BlockBackendPublic *blk_get_public(BlockBackend *blk)
869 {
870 GLOBAL_STATE_CODE();
871 return &blk->public;
872 }
873
874 /*
875 * Returns a BlockBackend given the associated @public fields.
876 */
877 BlockBackend *blk_by_public(BlockBackendPublic *public)
878 {
879 GLOBAL_STATE_CODE();
880 return container_of(public, BlockBackend, public);
881 }
882
883 /*
884 * Disassociates the currently associated BlockDriverState from @blk.
885 *
886 * The caller must hold the AioContext lock for the BlockBackend.
887 */
888 void blk_remove_bs(BlockBackend *blk)
889 {
890 ThrottleGroupMember *tgm = &blk->public.throttle_group_member;
891 BdrvChild *root;
892
893 GLOBAL_STATE_CODE();
894
895 notifier_list_notify(&blk->remove_bs_notifiers, blk);
896 if (tgm->throttle_state) {
897 BlockDriverState *bs = blk_bs(blk);
898
899 /*
900 * Take a ref in case blk_bs() changes across bdrv_drained_begin(), for
901 * example, if a temporary filter node is removed by a blockjob.
902 */
903 bdrv_ref(bs);
904 bdrv_drained_begin(bs);
905 throttle_group_detach_aio_context(tgm);
906 throttle_group_attach_aio_context(tgm, qemu_get_aio_context());
907 bdrv_drained_end(bs);
908 bdrv_unref(bs);
909 }
910
911 blk_update_root_state(blk);
912
913 /* bdrv_root_unref_child() will cause blk->root to become stale and may
914 * switch to a completion coroutine later on. Let's drain all I/O here
915 * to avoid that and a potential QEMU crash.
916 */
917 blk_drain(blk);
918 root = blk->root;
919 blk->root = NULL;
920
921 bdrv_graph_wrlock();
922 bdrv_root_unref_child(root);
923 bdrv_graph_wrunlock();
924 }
925
926 /*
927 * Associates a new BlockDriverState with @blk.
928 *
929 * Callers must hold the AioContext lock of @bs.
930 */
931 int blk_insert_bs(BlockBackend *blk, BlockDriverState *bs, Error **errp)
932 {
933 ThrottleGroupMember *tgm = &blk->public.throttle_group_member;
934
935 GLOBAL_STATE_CODE();
936 bdrv_ref(bs);
937 bdrv_graph_wrlock();
938 blk->root = bdrv_root_attach_child(bs, "root", &child_root,
939 BDRV_CHILD_FILTERED | BDRV_CHILD_PRIMARY,
940 blk->perm, blk->shared_perm,
941 blk, errp);
942 bdrv_graph_wrunlock();
943 if (blk->root == NULL) {
944 return -EPERM;
945 }
946
947 notifier_list_notify(&blk->insert_bs_notifiers, blk);
948 if (tgm->throttle_state) {
949 throttle_group_detach_aio_context(tgm);
950 throttle_group_attach_aio_context(tgm, bdrv_get_aio_context(bs));
951 }
952
953 return 0;
954 }
955
956 /*
957 * Change BlockDriverState associated with @blk.
958 */
959 int blk_replace_bs(BlockBackend *blk, BlockDriverState *new_bs, Error **errp)
960 {
961 GLOBAL_STATE_CODE();
962 return bdrv_replace_child_bs(blk->root, new_bs, errp);
963 }
964
965 /*
966 * Sets the permission bitmasks that the user of the BlockBackend needs.
967 */
968 static int coroutine_mixed_fn GRAPH_RDLOCK
969 blk_set_perm_locked(BlockBackend *blk, uint64_t perm, uint64_t shared_perm,
970 Error **errp)
971 {
972 int ret;
973 GLOBAL_STATE_CODE();
974
975 if (blk->root && !blk->disable_perm) {
976 ret = bdrv_child_try_set_perm(blk->root, perm, shared_perm, errp);
977 if (ret < 0) {
978 return ret;
979 }
980 }
981
982 blk->perm = perm;
983 blk->shared_perm = shared_perm;
984
985 return 0;
986 }
987
988 int blk_set_perm(BlockBackend *blk, uint64_t perm, uint64_t shared_perm,
989 Error **errp)
990 {
991 GLOBAL_STATE_CODE();
992 GRAPH_RDLOCK_GUARD_MAINLOOP();
993
994 return blk_set_perm_locked(blk, perm, shared_perm, errp);
995 }
996
997 void blk_get_perm(BlockBackend *blk, uint64_t *perm, uint64_t *shared_perm)
998 {
999 GLOBAL_STATE_CODE();
1000 *perm = blk->perm;
1001 *shared_perm = blk->shared_perm;
1002 }
1003
1004 /*
1005 * Attach device model @dev to @blk.
1006 * Return 0 on success, -EBUSY when a device model is attached already.
1007 */
1008 int blk_attach_dev(BlockBackend *blk, DeviceState *dev)
1009 {
1010 GLOBAL_STATE_CODE();
1011 if (blk->dev) {
1012 return -EBUSY;
1013 }
1014
1015 /* While migration is still incoming, we don't need to apply the
1016 * permissions of guest device BlockBackends. We might still have a block
1017 * job or NBD server writing to the image for storage migration. */
1018 if (runstate_check(RUN_STATE_INMIGRATE)) {
1019 blk->disable_perm = true;
1020 }
1021
1022 blk_ref(blk);
1023 blk->dev = dev;
1024 blk_iostatus_reset(blk);
1025
1026 return 0;
1027 }
1028
1029 /*
1030 * Detach device model @dev from @blk.
1031 * @dev must be currently attached to @blk.
1032 */
1033 void blk_detach_dev(BlockBackend *blk, DeviceState *dev)
1034 {
1035 assert(blk->dev == dev);
1036 GLOBAL_STATE_CODE();
1037 blk->dev = NULL;
1038 blk->dev_ops = NULL;
1039 blk->dev_opaque = NULL;
1040 blk_set_perm(blk, 0, BLK_PERM_ALL, &error_abort);
1041 blk_unref(blk);
1042 }
1043
1044 /*
1045 * Return the device model attached to @blk if any, else null.
1046 */
1047 DeviceState *blk_get_attached_dev(BlockBackend *blk)
1048 {
1049 GLOBAL_STATE_CODE();
1050 return blk->dev;
1051 }
1052
1053 /* Return the qdev ID, or if no ID is assigned the QOM path, of the block
1054 * device attached to the BlockBackend. */
1055 char *blk_get_attached_dev_id(BlockBackend *blk)
1056 {
1057 DeviceState *dev = blk->dev;
1058 IO_CODE();
1059
1060 if (!dev) {
1061 return g_strdup("");
1062 } else if (dev->id) {
1063 return g_strdup(dev->id);
1064 }
1065
1066 return object_get_canonical_path(OBJECT(dev)) ?: g_strdup("");
1067 }
1068
1069 /*
1070 * Return the BlockBackend which has the device model @dev attached if it
1071 * exists, else null.
1072 *
1073 * @dev must not be null.
1074 */
1075 BlockBackend *blk_by_dev(void *dev)
1076 {
1077 BlockBackend *blk = NULL;
1078
1079 GLOBAL_STATE_CODE();
1080
1081 assert(dev != NULL);
1082 while ((blk = blk_all_next(blk)) != NULL) {
1083 if (blk->dev == dev) {
1084 return blk;
1085 }
1086 }
1087 return NULL;
1088 }
1089
1090 /*
1091 * Set @blk's device model callbacks to @ops.
1092 * @opaque is the opaque argument to pass to the callbacks.
1093 * This is for use by device models.
1094 */
1095 void blk_set_dev_ops(BlockBackend *blk, const BlockDevOps *ops,
1096 void *opaque)
1097 {
1098 GLOBAL_STATE_CODE();
1099 blk->dev_ops = ops;
1100 blk->dev_opaque = opaque;
1101
1102 /* Are we currently quiesced? Should we enforce this right now? */
1103 if (qatomic_read(&blk->quiesce_counter) && ops && ops->drained_begin) {
1104 ops->drained_begin(opaque);
1105 }
1106 }
1107
1108 /*
1109 * Notify @blk's attached device model of media change.
1110 *
1111 * If @load is true, notify of media load. This action can fail, meaning that
1112 * the medium cannot be loaded. @errp is set then.
1113 *
1114 * If @load is false, notify of media eject. This can never fail.
1115 *
1116 * Also send DEVICE_TRAY_MOVED events as appropriate.
1117 */
1118 void blk_dev_change_media_cb(BlockBackend *blk, bool load, Error **errp)
1119 {
1120 GLOBAL_STATE_CODE();
1121 if (blk->dev_ops && blk->dev_ops->change_media_cb) {
1122 bool tray_was_open, tray_is_open;
1123 Error *local_err = NULL;
1124
1125 tray_was_open = blk_dev_is_tray_open(blk);
1126 blk->dev_ops->change_media_cb(blk->dev_opaque, load, &local_err);
1127 if (local_err) {
1128 assert(load == true);
1129 error_propagate(errp, local_err);
1130 return;
1131 }
1132 tray_is_open = blk_dev_is_tray_open(blk);
1133
1134 if (tray_was_open != tray_is_open) {
1135 char *id = blk_get_attached_dev_id(blk);
1136 qapi_event_send_device_tray_moved(blk_name(blk), id, tray_is_open);
1137 g_free(id);
1138 }
1139 }
1140 }
1141
1142 static void blk_root_change_media(BdrvChild *child, bool load)
1143 {
1144 blk_dev_change_media_cb(child->opaque, load, NULL);
1145 }
1146
1147 /*
1148 * Does @blk's attached device model have removable media?
1149 * %true if no device model is attached.
1150 */
1151 bool blk_dev_has_removable_media(BlockBackend *blk)
1152 {
1153 GLOBAL_STATE_CODE();
1154 return !blk->dev || (blk->dev_ops && blk->dev_ops->change_media_cb);
1155 }
1156
1157 /*
1158 * Does @blk's attached device model have a tray?
1159 */
1160 bool blk_dev_has_tray(BlockBackend *blk)
1161 {
1162 IO_CODE();
1163 return blk->dev_ops && blk->dev_ops->is_tray_open;
1164 }
1165
1166 /*
1167 * Notify @blk's attached device model of a media eject request.
1168 * If @force is true, the medium is about to be yanked out forcefully.
1169 */
1170 void blk_dev_eject_request(BlockBackend *blk, bool force)
1171 {
1172 GLOBAL_STATE_CODE();
1173 if (blk->dev_ops && blk->dev_ops->eject_request_cb) {
1174 blk->dev_ops->eject_request_cb(blk->dev_opaque, force);
1175 }
1176 }
1177
1178 /*
1179 * Does @blk's attached device model have a tray, and is it open?
1180 */
1181 bool blk_dev_is_tray_open(BlockBackend *blk)
1182 {
1183 IO_CODE();
1184 if (blk_dev_has_tray(blk)) {
1185 return blk->dev_ops->is_tray_open(blk->dev_opaque);
1186 }
1187 return false;
1188 }
1189
1190 /*
1191 * Does @blk's attached device model have the medium locked?
1192 * %false if the device model has no such lock.
1193 */
1194 bool blk_dev_is_medium_locked(BlockBackend *blk)
1195 {
1196 GLOBAL_STATE_CODE();
1197 if (blk->dev_ops && blk->dev_ops->is_medium_locked) {
1198 return blk->dev_ops->is_medium_locked(blk->dev_opaque);
1199 }
1200 return false;
1201 }
1202
1203 /*
1204 * Notify @blk's attached device model of a backend size change.
1205 */
1206 static void blk_root_resize(BdrvChild *child)
1207 {
1208 BlockBackend *blk = child->opaque;
1209
1210 if (blk->dev_ops && blk->dev_ops->resize_cb) {
1211 blk->dev_ops->resize_cb(blk->dev_opaque);
1212 }
1213 }
1214
1215 void blk_iostatus_enable(BlockBackend *blk)
1216 {
1217 GLOBAL_STATE_CODE();
1218 blk->iostatus_enabled = true;
1219 blk->iostatus = BLOCK_DEVICE_IO_STATUS_OK;
1220 }
1221
1222 /* The I/O status is only enabled if the drive explicitly
1223 * enables it _and_ the VM is configured to stop on errors */
1224 bool blk_iostatus_is_enabled(const BlockBackend *blk)
1225 {
1226 IO_CODE();
1227 return (blk->iostatus_enabled &&
1228 (blk->on_write_error == BLOCKDEV_ON_ERROR_ENOSPC ||
1229 blk->on_write_error == BLOCKDEV_ON_ERROR_STOP ||
1230 blk->on_read_error == BLOCKDEV_ON_ERROR_STOP));
1231 }
1232
1233 BlockDeviceIoStatus blk_iostatus(const BlockBackend *blk)
1234 {
1235 GLOBAL_STATE_CODE();
1236 return blk->iostatus;
1237 }
1238
1239 void blk_iostatus_disable(BlockBackend *blk)
1240 {
1241 GLOBAL_STATE_CODE();
1242 blk->iostatus_enabled = false;
1243 }
1244
1245 void blk_iostatus_reset(BlockBackend *blk)
1246 {
1247 GLOBAL_STATE_CODE();
1248 if (blk_iostatus_is_enabled(blk)) {
1249 blk->iostatus = BLOCK_DEVICE_IO_STATUS_OK;
1250 }
1251 }
1252
1253 void blk_iostatus_set_err(BlockBackend *blk, int error)
1254 {
1255 IO_CODE();
1256 assert(blk_iostatus_is_enabled(blk));
1257 if (blk->iostatus == BLOCK_DEVICE_IO_STATUS_OK) {
1258 blk->iostatus = error == ENOSPC ? BLOCK_DEVICE_IO_STATUS_NOSPACE :
1259 BLOCK_DEVICE_IO_STATUS_FAILED;
1260 }
1261 }
1262
1263 void blk_set_allow_write_beyond_eof(BlockBackend *blk, bool allow)
1264 {
1265 IO_CODE();
1266 blk->allow_write_beyond_eof = allow;
1267 }
1268
1269 void blk_set_allow_aio_context_change(BlockBackend *blk, bool allow)
1270 {
1271 IO_CODE();
1272 blk->allow_aio_context_change = allow;
1273 }
1274
1275 void blk_set_disable_request_queuing(BlockBackend *blk, bool disable)
1276 {
1277 IO_CODE();
1278 qatomic_set(&blk->disable_request_queuing, disable);
1279 }
1280
1281 static int coroutine_fn GRAPH_RDLOCK
1282 blk_check_byte_request(BlockBackend *blk, int64_t offset, int64_t bytes)
1283 {
1284 int64_t len;
1285
1286 if (bytes < 0) {
1287 return -EIO;
1288 }
1289
1290 if (!blk_co_is_available(blk)) {
1291 return -ENOMEDIUM;
1292 }
1293
1294 if (offset < 0) {
1295 return -EIO;
1296 }
1297
1298 if (!blk->allow_write_beyond_eof) {
1299 len = bdrv_co_getlength(blk_bs(blk));
1300 if (len < 0) {
1301 return len;
1302 }
1303
1304 if (offset > len || len - offset < bytes) {
1305 return -EIO;
1306 }
1307 }
1308
1309 return 0;
1310 }
1311
1312 /* Are we currently in a drained section? */
1313 bool blk_in_drain(BlockBackend *blk)
1314 {
1315 GLOBAL_STATE_CODE(); /* change to IO_OR_GS_CODE(), if necessary */
1316 return qatomic_read(&blk->quiesce_counter);
1317 }
1318
1319 /* To be called between exactly one pair of blk_inc/dec_in_flight() */
1320 static void coroutine_fn blk_wait_while_drained(BlockBackend *blk)
1321 {
1322 assert(blk->in_flight > 0);
1323
1324 if (qatomic_read(&blk->quiesce_counter) &&
1325 !qatomic_read(&blk->disable_request_queuing)) {
1326 /*
1327 * Take lock before decrementing in flight counter so main loop thread
1328 * waits for us to enqueue ourselves before it can leave the drained
1329 * section.
1330 */
1331 qemu_mutex_lock(&blk->queued_requests_lock);
1332 blk_dec_in_flight(blk);
1333 qemu_co_queue_wait(&blk->queued_requests, &blk->queued_requests_lock);
1334 blk_inc_in_flight(blk);
1335 qemu_mutex_unlock(&blk->queued_requests_lock);
1336 }
1337 }
1338
1339 /* To be called between exactly one pair of blk_inc/dec_in_flight() */
1340 static int coroutine_fn
1341 blk_co_do_preadv_part(BlockBackend *blk, int64_t offset, int64_t bytes,
1342 QEMUIOVector *qiov, size_t qiov_offset,
1343 BdrvRequestFlags flags)
1344 {
1345 int ret;
1346 BlockDriverState *bs;
1347 IO_CODE();
1348
1349 blk_wait_while_drained(blk);
1350 GRAPH_RDLOCK_GUARD();
1351
1352 /* Call blk_bs() only after waiting, the graph may have changed */
1353 bs = blk_bs(blk);
1354 trace_blk_co_preadv(blk, bs, offset, bytes, flags);
1355
1356 ret = blk_check_byte_request(blk, offset, bytes);
1357 if (ret < 0) {
1358 return ret;
1359 }
1360
1361 bdrv_inc_in_flight(bs);
1362
1363 /* throttling disk I/O */
1364 if (blk->public.throttle_group_member.throttle_state) {
1365 throttle_group_co_io_limits_intercept(&blk->public.throttle_group_member,
1366 bytes, THROTTLE_READ);
1367 }
1368
1369 ret = bdrv_co_preadv_part(blk->root, offset, bytes, qiov, qiov_offset,
1370 flags);
1371 bdrv_dec_in_flight(bs);
1372 return ret;
1373 }
1374
1375 int coroutine_fn blk_co_pread(BlockBackend *blk, int64_t offset, int64_t bytes,
1376 void *buf, BdrvRequestFlags flags)
1377 {
1378 QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, buf, bytes);
1379 IO_OR_GS_CODE();
1380
1381 assert(bytes <= SIZE_MAX);
1382
1383 return blk_co_preadv(blk, offset, bytes, &qiov, flags);
1384 }
1385
1386 int coroutine_fn blk_co_preadv(BlockBackend *blk, int64_t offset,
1387 int64_t bytes, QEMUIOVector *qiov,
1388 BdrvRequestFlags flags)
1389 {
1390 int ret;
1391 IO_OR_GS_CODE();
1392
1393 blk_inc_in_flight(blk);
1394 ret = blk_co_do_preadv_part(blk, offset, bytes, qiov, 0, flags);
1395 blk_dec_in_flight(blk);
1396
1397 return ret;
1398 }
1399
1400 int coroutine_fn blk_co_preadv_part(BlockBackend *blk, int64_t offset,
1401 int64_t bytes, QEMUIOVector *qiov,
1402 size_t qiov_offset, BdrvRequestFlags flags)
1403 {
1404 int ret;
1405 IO_OR_GS_CODE();
1406
1407 blk_inc_in_flight(blk);
1408 ret = blk_co_do_preadv_part(blk, offset, bytes, qiov, qiov_offset, flags);
1409 blk_dec_in_flight(blk);
1410
1411 return ret;
1412 }
1413
1414 /* To be called between exactly one pair of blk_inc/dec_in_flight() */
1415 static int coroutine_fn
1416 blk_co_do_pwritev_part(BlockBackend *blk, int64_t offset, int64_t bytes,
1417 QEMUIOVector *qiov, size_t qiov_offset,
1418 BdrvRequestFlags flags)
1419 {
1420 int ret;
1421 BlockDriverState *bs;
1422 IO_CODE();
1423
1424 blk_wait_while_drained(blk);
1425 GRAPH_RDLOCK_GUARD();
1426
1427 /* Call blk_bs() only after waiting, the graph may have changed */
1428 bs = blk_bs(blk);
1429 trace_blk_co_pwritev(blk, bs, offset, bytes, flags);
1430
1431 ret = blk_check_byte_request(blk, offset, bytes);
1432 if (ret < 0) {
1433 return ret;
1434 }
1435
1436 bdrv_inc_in_flight(bs);
1437 /* throttling disk I/O */
1438 if (blk->public.throttle_group_member.throttle_state) {
1439 throttle_group_co_io_limits_intercept(&blk->public.throttle_group_member,
1440 bytes, THROTTLE_WRITE);
1441 }
1442
1443 if (!blk->enable_write_cache) {
1444 flags |= BDRV_REQ_FUA;
1445 }
1446
1447 ret = bdrv_co_pwritev_part(blk->root, offset, bytes, qiov, qiov_offset,
1448 flags);
1449 bdrv_dec_in_flight(bs);
1450 return ret;
1451 }
1452
1453 int coroutine_fn blk_co_pwritev_part(BlockBackend *blk, int64_t offset,
1454 int64_t bytes,
1455 QEMUIOVector *qiov, size_t qiov_offset,
1456 BdrvRequestFlags flags)
1457 {
1458 int ret;
1459 IO_OR_GS_CODE();
1460
1461 blk_inc_in_flight(blk);
1462 ret = blk_co_do_pwritev_part(blk, offset, bytes, qiov, qiov_offset, flags);
1463 blk_dec_in_flight(blk);
1464
1465 return ret;
1466 }
1467
1468 int coroutine_fn blk_co_pwrite(BlockBackend *blk, int64_t offset, int64_t bytes,
1469 const void *buf, BdrvRequestFlags flags)
1470 {
1471 QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, buf, bytes);
1472 IO_OR_GS_CODE();
1473
1474 assert(bytes <= SIZE_MAX);
1475
1476 return blk_co_pwritev(blk, offset, bytes, &qiov, flags);
1477 }
1478
1479 int coroutine_fn blk_co_pwritev(BlockBackend *blk, int64_t offset,
1480 int64_t bytes, QEMUIOVector *qiov,
1481 BdrvRequestFlags flags)
1482 {
1483 IO_OR_GS_CODE();
1484 return blk_co_pwritev_part(blk, offset, bytes, qiov, 0, flags);
1485 }
1486
1487 int coroutine_fn blk_co_block_status_above(BlockBackend *blk,
1488 BlockDriverState *base,
1489 int64_t offset, int64_t bytes,
1490 int64_t *pnum, int64_t *map,
1491 BlockDriverState **file)
1492 {
1493 IO_CODE();
1494 GRAPH_RDLOCK_GUARD();
1495 return bdrv_co_block_status_above(blk_bs(blk), base, offset, bytes, pnum,
1496 map, file);
1497 }
1498
1499 int coroutine_fn blk_co_is_allocated_above(BlockBackend *blk,
1500 BlockDriverState *base,
1501 bool include_base, int64_t offset,
1502 int64_t bytes, int64_t *pnum)
1503 {
1504 IO_CODE();
1505 GRAPH_RDLOCK_GUARD();
1506 return bdrv_co_is_allocated_above(blk_bs(blk), base, include_base, offset,
1507 bytes, pnum);
1508 }
1509
1510 typedef struct BlkRwCo {
1511 BlockBackend *blk;
1512 int64_t offset;
1513 void *iobuf;
1514 int ret;
1515 BdrvRequestFlags flags;
1516 } BlkRwCo;
1517
1518 int blk_make_zero(BlockBackend *blk, BdrvRequestFlags flags)
1519 {
1520 GLOBAL_STATE_CODE();
1521 return bdrv_make_zero(blk->root, flags);
1522 }
1523
1524 void blk_inc_in_flight(BlockBackend *blk)
1525 {
1526 IO_CODE();
1527 qatomic_inc(&blk->in_flight);
1528 }
1529
1530 void blk_dec_in_flight(BlockBackend *blk)
1531 {
1532 IO_CODE();
1533 qatomic_dec(&blk->in_flight);
1534 aio_wait_kick();
1535 }
1536
1537 static void error_callback_bh(void *opaque)
1538 {
1539 struct BlockBackendAIOCB *acb = opaque;
1540
1541 blk_dec_in_flight(acb->blk);
1542 acb->common.cb(acb->common.opaque, acb->ret);
1543 qemu_aio_unref(acb);
1544 }
1545
1546 BlockAIOCB *blk_abort_aio_request(BlockBackend *blk,
1547 BlockCompletionFunc *cb,
1548 void *opaque, int ret)
1549 {
1550 struct BlockBackendAIOCB *acb;
1551 IO_CODE();
1552
1553 blk_inc_in_flight(blk);
1554 acb = blk_aio_get(&block_backend_aiocb_info, blk, cb, opaque);
1555 acb->blk = blk;
1556 acb->ret = ret;
1557
1558 replay_bh_schedule_oneshot_event(qemu_get_current_aio_context(),
1559 error_callback_bh, acb);
1560 return &acb->common;
1561 }
1562
1563 typedef struct BlkAioEmAIOCB {
1564 BlockAIOCB common;
1565 BlkRwCo rwco;
1566 int64_t bytes;
1567 bool has_returned;
1568 } BlkAioEmAIOCB;
1569
1570 static const AIOCBInfo blk_aio_em_aiocb_info = {
1571 .aiocb_size = sizeof(BlkAioEmAIOCB),
1572 };
1573
1574 static void blk_aio_complete(BlkAioEmAIOCB *acb)
1575 {
1576 if (acb->has_returned) {
1577 acb->common.cb(acb->common.opaque, acb->rwco.ret);
1578 blk_dec_in_flight(acb->rwco.blk);
1579 qemu_aio_unref(acb);
1580 }
1581 }
1582
1583 static void blk_aio_complete_bh(void *opaque)
1584 {
1585 BlkAioEmAIOCB *acb = opaque;
1586 assert(acb->has_returned);
1587 blk_aio_complete(acb);
1588 }
1589
1590 static BlockAIOCB *blk_aio_prwv(BlockBackend *blk, int64_t offset,
1591 int64_t bytes,
1592 void *iobuf, CoroutineEntry co_entry,
1593 BdrvRequestFlags flags,
1594 BlockCompletionFunc *cb, void *opaque)
1595 {
1596 BlkAioEmAIOCB *acb;
1597 Coroutine *co;
1598
1599 blk_inc_in_flight(blk);
1600 acb = blk_aio_get(&blk_aio_em_aiocb_info, blk, cb, opaque);
1601 acb->rwco = (BlkRwCo) {
1602 .blk = blk,
1603 .offset = offset,
1604 .iobuf = iobuf,
1605 .flags = flags,
1606 .ret = NOT_DONE,
1607 };
1608 acb->bytes = bytes;
1609 acb->has_returned = false;
1610
1611 co = qemu_coroutine_create(co_entry, acb);
1612 aio_co_enter(qemu_get_current_aio_context(), co);
1613
1614 acb->has_returned = true;
1615 if (acb->rwco.ret != NOT_DONE) {
1616 replay_bh_schedule_oneshot_event(qemu_get_current_aio_context(),
1617 blk_aio_complete_bh, acb);
1618 }
1619
1620 return &acb->common;
1621 }
1622
1623 static void coroutine_fn blk_aio_read_entry(void *opaque)
1624 {
1625 BlkAioEmAIOCB *acb = opaque;
1626 BlkRwCo *rwco = &acb->rwco;
1627 QEMUIOVector *qiov = rwco->iobuf;
1628
1629 assert(qiov->size == acb->bytes);
1630 rwco->ret = blk_co_do_preadv_part(rwco->blk, rwco->offset, acb->bytes, qiov,
1631 0, rwco->flags);
1632 blk_aio_complete(acb);
1633 }
1634
1635 static void coroutine_fn blk_aio_write_entry(void *opaque)
1636 {
1637 BlkAioEmAIOCB *acb = opaque;
1638 BlkRwCo *rwco = &acb->rwco;
1639 QEMUIOVector *qiov = rwco->iobuf;
1640
1641 assert(!qiov || qiov->size == acb->bytes);
1642 rwco->ret = blk_co_do_pwritev_part(rwco->blk, rwco->offset, acb->bytes,
1643 qiov, 0, rwco->flags);
1644 blk_aio_complete(acb);
1645 }
1646
1647 BlockAIOCB *blk_aio_pwrite_zeroes(BlockBackend *blk, int64_t offset,
1648 int64_t bytes, BdrvRequestFlags flags,
1649 BlockCompletionFunc *cb, void *opaque)
1650 {
1651 IO_CODE();
1652 return blk_aio_prwv(blk, offset, bytes, NULL, blk_aio_write_entry,
1653 flags | BDRV_REQ_ZERO_WRITE, cb, opaque);
1654 }
1655
1656 int64_t coroutine_fn blk_co_getlength(BlockBackend *blk)
1657 {
1658 IO_CODE();
1659 GRAPH_RDLOCK_GUARD();
1660
1661 if (!blk_co_is_available(blk)) {
1662 return -ENOMEDIUM;
1663 }
1664
1665 return bdrv_co_getlength(blk_bs(blk));
1666 }
1667
1668 int64_t coroutine_fn blk_co_nb_sectors(BlockBackend *blk)
1669 {
1670 BlockDriverState *bs = blk_bs(blk);
1671
1672 IO_CODE();
1673 GRAPH_RDLOCK_GUARD();
1674
1675 if (!bs) {
1676 return -ENOMEDIUM;
1677 } else {
1678 return bdrv_co_nb_sectors(bs);
1679 }
1680 }
1681
1682 /*
1683 * This wrapper is written by hand because this function is in the hot I/O path,
1684 * via blk_get_geometry.
1685 */
1686 int64_t coroutine_mixed_fn blk_nb_sectors(BlockBackend *blk)
1687 {
1688 BlockDriverState *bs = blk_bs(blk);
1689
1690 IO_CODE();
1691
1692 if (!bs) {
1693 return -ENOMEDIUM;
1694 } else {
1695 return bdrv_nb_sectors(bs);
1696 }
1697 }
1698
1699 /* return 0 as number of sectors if no device present or error */
1700 void coroutine_fn blk_co_get_geometry(BlockBackend *blk,
1701 uint64_t *nb_sectors_ptr)
1702 {
1703 int64_t ret = blk_co_nb_sectors(blk);
1704 *nb_sectors_ptr = ret < 0 ? 0 : ret;
1705 }
1706
1707 /*
1708 * This wrapper is written by hand because this function is in the hot I/O path.
1709 */
1710 void coroutine_mixed_fn blk_get_geometry(BlockBackend *blk,
1711 uint64_t *nb_sectors_ptr)
1712 {
1713 int64_t ret = blk_nb_sectors(blk);
1714 *nb_sectors_ptr = ret < 0 ? 0 : ret;
1715 }
1716
1717 BlockAIOCB *blk_aio_preadv(BlockBackend *blk, int64_t offset,
1718 QEMUIOVector *qiov, BdrvRequestFlags flags,
1719 BlockCompletionFunc *cb, void *opaque)
1720 {
1721 IO_CODE();
1722 assert((uint64_t)qiov->size <= INT64_MAX);
1723 return blk_aio_prwv(blk, offset, qiov->size, qiov,
1724 blk_aio_read_entry, flags, cb, opaque);
1725 }
1726
1727 BlockAIOCB *blk_aio_pwritev(BlockBackend *blk, int64_t offset,
1728 QEMUIOVector *qiov, BdrvRequestFlags flags,
1729 BlockCompletionFunc *cb, void *opaque)
1730 {
1731 IO_CODE();
1732 assert((uint64_t)qiov->size <= INT64_MAX);
1733 return blk_aio_prwv(blk, offset, qiov->size, qiov,
1734 blk_aio_write_entry, flags, cb, opaque);
1735 }
1736
1737 void blk_aio_cancel(BlockAIOCB *acb)
1738 {
1739 GLOBAL_STATE_CODE();
1740 bdrv_aio_cancel(acb);
1741 }
1742
1743 void blk_aio_cancel_async(BlockAIOCB *acb)
1744 {
1745 IO_CODE();
1746 bdrv_aio_cancel_async(acb);
1747 }
1748
1749 /* To be called between exactly one pair of blk_inc/dec_in_flight() */
1750 static int coroutine_fn
1751 blk_co_do_ioctl(BlockBackend *blk, unsigned long int req, void *buf)
1752 {
1753 IO_CODE();
1754
1755 blk_wait_while_drained(blk);
1756 GRAPH_RDLOCK_GUARD();
1757
1758 if (!blk_co_is_available(blk)) {
1759 return -ENOMEDIUM;
1760 }
1761
1762 return bdrv_co_ioctl(blk_bs(blk), req, buf);
1763 }
1764
1765 int coroutine_fn blk_co_ioctl(BlockBackend *blk, unsigned long int req,
1766 void *buf)
1767 {
1768 int ret;
1769 IO_OR_GS_CODE();
1770
1771 blk_inc_in_flight(blk);
1772 ret = blk_co_do_ioctl(blk, req, buf);
1773 blk_dec_in_flight(blk);
1774
1775 return ret;
1776 }
1777
1778 static void coroutine_fn blk_aio_ioctl_entry(void *opaque)
1779 {
1780 BlkAioEmAIOCB *acb = opaque;
1781 BlkRwCo *rwco = &acb->rwco;
1782
1783 rwco->ret = blk_co_do_ioctl(rwco->blk, rwco->offset, rwco->iobuf);
1784
1785 blk_aio_complete(acb);
1786 }
1787
1788 BlockAIOCB *blk_aio_ioctl(BlockBackend *blk, unsigned long int req, void *buf,
1789 BlockCompletionFunc *cb, void *opaque)
1790 {
1791 IO_CODE();
1792 return blk_aio_prwv(blk, req, 0, buf, blk_aio_ioctl_entry, 0, cb, opaque);
1793 }
1794
1795 /* To be called between exactly one pair of blk_inc/dec_in_flight() */
1796 static int coroutine_fn
1797 blk_co_do_pdiscard(BlockBackend *blk, int64_t offset, int64_t bytes)
1798 {
1799 int ret;
1800 IO_CODE();
1801
1802 blk_wait_while_drained(blk);
1803 GRAPH_RDLOCK_GUARD();
1804
1805 ret = blk_check_byte_request(blk, offset, bytes);
1806 if (ret < 0) {
1807 return ret;
1808 }
1809
1810 return bdrv_co_pdiscard(blk->root, offset, bytes);
1811 }
1812
1813 static void coroutine_fn blk_aio_pdiscard_entry(void *opaque)
1814 {
1815 BlkAioEmAIOCB *acb = opaque;
1816 BlkRwCo *rwco = &acb->rwco;
1817
1818 rwco->ret = blk_co_do_pdiscard(rwco->blk, rwco->offset, acb->bytes);
1819 blk_aio_complete(acb);
1820 }
1821
1822 BlockAIOCB *blk_aio_pdiscard(BlockBackend *blk,
1823 int64_t offset, int64_t bytes,
1824 BlockCompletionFunc *cb, void *opaque)
1825 {
1826 IO_CODE();
1827 return blk_aio_prwv(blk, offset, bytes, NULL, blk_aio_pdiscard_entry, 0,
1828 cb, opaque);
1829 }
1830
1831 int coroutine_fn blk_co_pdiscard(BlockBackend *blk, int64_t offset,
1832 int64_t bytes)
1833 {
1834 int ret;
1835 IO_OR_GS_CODE();
1836
1837 blk_inc_in_flight(blk);
1838 ret = blk_co_do_pdiscard(blk, offset, bytes);
1839 blk_dec_in_flight(blk);
1840
1841 return ret;
1842 }
1843
1844 /* To be called between exactly one pair of blk_inc/dec_in_flight() */
1845 static int coroutine_fn blk_co_do_flush(BlockBackend *blk)
1846 {
1847 IO_CODE();
1848 blk_wait_while_drained(blk);
1849 GRAPH_RDLOCK_GUARD();
1850
1851 if (!blk_co_is_available(blk)) {
1852 return -ENOMEDIUM;
1853 }
1854
1855 return bdrv_co_flush(blk_bs(blk));
1856 }
1857
1858 static void coroutine_fn blk_aio_flush_entry(void *opaque)
1859 {
1860 BlkAioEmAIOCB *acb = opaque;
1861 BlkRwCo *rwco = &acb->rwco;
1862
1863 rwco->ret = blk_co_do_flush(rwco->blk);
1864 blk_aio_complete(acb);
1865 }
1866
1867 BlockAIOCB *blk_aio_flush(BlockBackend *blk,
1868 BlockCompletionFunc *cb, void *opaque)
1869 {
1870 IO_CODE();
1871 return blk_aio_prwv(blk, 0, 0, NULL, blk_aio_flush_entry, 0, cb, opaque);
1872 }
1873
1874 int coroutine_fn blk_co_flush(BlockBackend *blk)
1875 {
1876 int ret;
1877 IO_OR_GS_CODE();
1878
1879 blk_inc_in_flight(blk);
1880 ret = blk_co_do_flush(blk);
1881 blk_dec_in_flight(blk);
1882
1883 return ret;
1884 }
1885
1886 static void coroutine_fn blk_aio_zone_report_entry(void *opaque)
1887 {
1888 BlkAioEmAIOCB *acb = opaque;
1889 BlkRwCo *rwco = &acb->rwco;
1890
1891 rwco->ret = blk_co_zone_report(rwco->blk, rwco->offset,
1892 (unsigned int*)(uintptr_t)acb->bytes,
1893 rwco->iobuf);
1894 blk_aio_complete(acb);
1895 }
1896
1897 BlockAIOCB *blk_aio_zone_report(BlockBackend *blk, int64_t offset,
1898 unsigned int *nr_zones,
1899 BlockZoneDescriptor *zones,
1900 BlockCompletionFunc *cb, void *opaque)
1901 {
1902 BlkAioEmAIOCB *acb;
1903 Coroutine *co;
1904 IO_CODE();
1905
1906 blk_inc_in_flight(blk);
1907 acb = blk_aio_get(&blk_aio_em_aiocb_info, blk, cb, opaque);
1908 acb->rwco = (BlkRwCo) {
1909 .blk = blk,
1910 .offset = offset,
1911 .iobuf = zones,
1912 .ret = NOT_DONE,
1913 };
1914 acb->bytes = (int64_t)(uintptr_t)nr_zones,
1915 acb->has_returned = false;
1916
1917 co = qemu_coroutine_create(blk_aio_zone_report_entry, acb);
1918 aio_co_enter(qemu_get_current_aio_context(), co);
1919
1920 acb->has_returned = true;
1921 if (acb->rwco.ret != NOT_DONE) {
1922 replay_bh_schedule_oneshot_event(qemu_get_current_aio_context(),
1923 blk_aio_complete_bh, acb);
1924 }
1925
1926 return &acb->common;
1927 }
1928
1929 static void coroutine_fn blk_aio_zone_mgmt_entry(void *opaque)
1930 {
1931 BlkAioEmAIOCB *acb = opaque;
1932 BlkRwCo *rwco = &acb->rwco;
1933
1934 rwco->ret = blk_co_zone_mgmt(rwco->blk,
1935 (BlockZoneOp)(uintptr_t)rwco->iobuf,
1936 rwco->offset, acb->bytes);
1937 blk_aio_complete(acb);
1938 }
1939
1940 BlockAIOCB *blk_aio_zone_mgmt(BlockBackend *blk, BlockZoneOp op,
1941 int64_t offset, int64_t len,
1942 BlockCompletionFunc *cb, void *opaque) {
1943 BlkAioEmAIOCB *acb;
1944 Coroutine *co;
1945 IO_CODE();
1946
1947 blk_inc_in_flight(blk);
1948 acb = blk_aio_get(&blk_aio_em_aiocb_info, blk, cb, opaque);
1949 acb->rwco = (BlkRwCo) {
1950 .blk = blk,
1951 .offset = offset,
1952 .iobuf = (void *)(uintptr_t)op,
1953 .ret = NOT_DONE,
1954 };
1955 acb->bytes = len;
1956 acb->has_returned = false;
1957
1958 co = qemu_coroutine_create(blk_aio_zone_mgmt_entry, acb);
1959 aio_co_enter(qemu_get_current_aio_context(), co);
1960
1961 acb->has_returned = true;
1962 if (acb->rwco.ret != NOT_DONE) {
1963 replay_bh_schedule_oneshot_event(qemu_get_current_aio_context(),
1964 blk_aio_complete_bh, acb);
1965 }
1966
1967 return &acb->common;
1968 }
1969
1970 static void coroutine_fn blk_aio_zone_append_entry(void *opaque)
1971 {
1972 BlkAioEmAIOCB *acb = opaque;
1973 BlkRwCo *rwco = &acb->rwco;
1974
1975 rwco->ret = blk_co_zone_append(rwco->blk, (int64_t *)(uintptr_t)acb->bytes,
1976 rwco->iobuf, rwco->flags);
1977 blk_aio_complete(acb);
1978 }
1979
1980 BlockAIOCB *blk_aio_zone_append(BlockBackend *blk, int64_t *offset,
1981 QEMUIOVector *qiov, BdrvRequestFlags flags,
1982 BlockCompletionFunc *cb, void *opaque) {
1983 BlkAioEmAIOCB *acb;
1984 Coroutine *co;
1985 IO_CODE();
1986
1987 blk_inc_in_flight(blk);
1988 acb = blk_aio_get(&blk_aio_em_aiocb_info, blk, cb, opaque);
1989 acb->rwco = (BlkRwCo) {
1990 .blk = blk,
1991 .ret = NOT_DONE,
1992 .flags = flags,
1993 .iobuf = qiov,
1994 };
1995 acb->bytes = (int64_t)(uintptr_t)offset;
1996 acb->has_returned = false;
1997
1998 co = qemu_coroutine_create(blk_aio_zone_append_entry, acb);
1999 aio_co_enter(qemu_get_current_aio_context(), co);
2000 acb->has_returned = true;
2001 if (acb->rwco.ret != NOT_DONE) {
2002 replay_bh_schedule_oneshot_event(qemu_get_current_aio_context(),
2003 blk_aio_complete_bh, acb);
2004 }
2005
2006 return &acb->common;
2007 }
2008
2009 /*
2010 * Send a zone_report command.
2011 * offset is a byte offset from the start of the device. No alignment
2012 * required for offset.
2013 * nr_zones represents IN maximum and OUT actual.
2014 */
2015 int coroutine_fn blk_co_zone_report(BlockBackend *blk, int64_t offset,
2016 unsigned int *nr_zones,
2017 BlockZoneDescriptor *zones)
2018 {
2019 int ret;
2020 IO_CODE();
2021
2022 blk_inc_in_flight(blk); /* increase before waiting */
2023 blk_wait_while_drained(blk);
2024 GRAPH_RDLOCK_GUARD();
2025 if (!blk_is_available(blk)) {
2026 blk_dec_in_flight(blk);
2027 return -ENOMEDIUM;
2028 }
2029 ret = bdrv_co_zone_report(blk_bs(blk), offset, nr_zones, zones);
2030 blk_dec_in_flight(blk);
2031 return ret;
2032 }
2033
2034 /*
2035 * Send a zone_management command.
2036 * op is the zone operation;
2037 * offset is the byte offset from the start of the zoned device;
2038 * len is the maximum number of bytes the command should operate on. It
2039 * should be aligned with the device zone size.
2040 */
2041 int coroutine_fn blk_co_zone_mgmt(BlockBackend *blk, BlockZoneOp op,
2042 int64_t offset, int64_t len)
2043 {
2044 int ret;
2045 IO_CODE();
2046
2047 blk_inc_in_flight(blk);
2048 blk_wait_while_drained(blk);
2049 GRAPH_RDLOCK_GUARD();
2050
2051 ret = blk_check_byte_request(blk, offset, len);
2052 if (ret < 0) {
2053 blk_dec_in_flight(blk);
2054 return ret;
2055 }
2056
2057 ret = bdrv_co_zone_mgmt(blk_bs(blk), op, offset, len);
2058 blk_dec_in_flight(blk);
2059 return ret;
2060 }
2061
2062 /*
2063 * Send a zone_append command.
2064 */
2065 int coroutine_fn blk_co_zone_append(BlockBackend *blk, int64_t *offset,
2066 QEMUIOVector *qiov, BdrvRequestFlags flags)
2067 {
2068 int ret;
2069 IO_CODE();
2070
2071 blk_inc_in_flight(blk);
2072 blk_wait_while_drained(blk);
2073 GRAPH_RDLOCK_GUARD();
2074 if (!blk_is_available(blk)) {
2075 blk_dec_in_flight(blk);
2076 return -ENOMEDIUM;
2077 }
2078
2079 ret = bdrv_co_zone_append(blk_bs(blk), offset, qiov, flags);
2080 blk_dec_in_flight(blk);
2081 return ret;
2082 }
2083
2084 void blk_drain(BlockBackend *blk)
2085 {
2086 BlockDriverState *bs = blk_bs(blk);
2087 GLOBAL_STATE_CODE();
2088
2089 if (bs) {
2090 bdrv_ref(bs);
2091 bdrv_drained_begin(bs);
2092 }
2093
2094 /* We may have -ENOMEDIUM completions in flight */
2095 AIO_WAIT_WHILE(blk_get_aio_context(blk),
2096 qatomic_read(&blk->in_flight) > 0);
2097
2098 if (bs) {
2099 bdrv_drained_end(bs);
2100 bdrv_unref(bs);
2101 }
2102 }
2103
2104 void blk_drain_all(void)
2105 {
2106 BlockBackend *blk = NULL;
2107
2108 GLOBAL_STATE_CODE();
2109
2110 bdrv_drain_all_begin();
2111
2112 while ((blk = blk_all_next(blk)) != NULL) {
2113 /* We may have -ENOMEDIUM completions in flight */
2114 AIO_WAIT_WHILE_UNLOCKED(NULL, qatomic_read(&blk->in_flight) > 0);
2115 }
2116
2117 bdrv_drain_all_end();
2118 }
2119
2120 void blk_set_on_error(BlockBackend *blk, BlockdevOnError on_read_error,
2121 BlockdevOnError on_write_error)
2122 {
2123 GLOBAL_STATE_CODE();
2124 blk->on_read_error = on_read_error;
2125 blk->on_write_error = on_write_error;
2126 }
2127
2128 BlockdevOnError blk_get_on_error(BlockBackend *blk, bool is_read)
2129 {
2130 IO_CODE();
2131 return is_read ? blk->on_read_error : blk->on_write_error;
2132 }
2133
2134 BlockErrorAction blk_get_error_action(BlockBackend *blk, bool is_read,
2135 int error)
2136 {
2137 BlockdevOnError on_err = blk_get_on_error(blk, is_read);
2138 IO_CODE();
2139
2140 switch (on_err) {
2141 case BLOCKDEV_ON_ERROR_ENOSPC:
2142 return (error == ENOSPC) ?
2143 BLOCK_ERROR_ACTION_STOP : BLOCK_ERROR_ACTION_REPORT;
2144 case BLOCKDEV_ON_ERROR_STOP:
2145 return BLOCK_ERROR_ACTION_STOP;
2146 case BLOCKDEV_ON_ERROR_REPORT:
2147 return BLOCK_ERROR_ACTION_REPORT;
2148 case BLOCKDEV_ON_ERROR_IGNORE:
2149 return BLOCK_ERROR_ACTION_IGNORE;
2150 case BLOCKDEV_ON_ERROR_AUTO:
2151 default:
2152 abort();
2153 }
2154 }
2155
2156 static void send_qmp_error_event(BlockBackend *blk,
2157 BlockErrorAction action,
2158 bool is_read, int error)
2159 {
2160 IoOperationType optype;
2161 BlockDriverState *bs = blk_bs(blk);
2162
2163 optype = is_read ? IO_OPERATION_TYPE_READ : IO_OPERATION_TYPE_WRITE;
2164 qapi_event_send_block_io_error(blk_name(blk),
2165 bs ? bdrv_get_node_name(bs) : NULL, optype,
2166 action, blk_iostatus_is_enabled(blk),
2167 error == ENOSPC, strerror(error));
2168 }
2169
2170 /* This is done by device models because, while the block layer knows
2171 * about the error, it does not know whether an operation comes from
2172 * the device or the block layer (from a job, for example).
2173 */
2174 void blk_error_action(BlockBackend *blk, BlockErrorAction action,
2175 bool is_read, int error)
2176 {
2177 assert(error >= 0);
2178 IO_CODE();
2179
2180 if (action == BLOCK_ERROR_ACTION_STOP) {
2181 /* First set the iostatus, so that "info block" returns an iostatus
2182 * that matches the events raised so far (an additional error iostatus
2183 * is fine, but not a lost one).
2184 */
2185 blk_iostatus_set_err(blk, error);
2186
2187 /* Then raise the request to stop the VM and the event.
2188 * qemu_system_vmstop_request_prepare has two effects. First,
2189 * it ensures that the STOP event always comes after the
2190 * BLOCK_IO_ERROR event. Second, it ensures that even if management
2191 * can observe the STOP event and do a "cont" before the STOP
2192 * event is issued, the VM will not stop. In this case, vm_start()
2193 * also ensures that the STOP/RESUME pair of events is emitted.
2194 */
2195 qemu_system_vmstop_request_prepare();
2196 send_qmp_error_event(blk, action, is_read, error);
2197 qemu_system_vmstop_request(RUN_STATE_IO_ERROR);
2198 } else {
2199 send_qmp_error_event(blk, action, is_read, error);
2200 }
2201 }
2202
2203 /*
2204 * Returns true if the BlockBackend can support taking write permissions
2205 * (because its root node is not read-only).
2206 */
2207 bool blk_supports_write_perm(BlockBackend *blk)
2208 {
2209 BlockDriverState *bs = blk_bs(blk);
2210 GLOBAL_STATE_CODE();
2211
2212 if (bs) {
2213 return !bdrv_is_read_only(bs);
2214 } else {
2215 return blk->root_state.open_flags & BDRV_O_RDWR;
2216 }
2217 }
2218
2219 /*
2220 * Returns true if the BlockBackend can be written to in its current
2221 * configuration (i.e. if write permission have been requested)
2222 */
2223 bool blk_is_writable(BlockBackend *blk)
2224 {
2225 IO_CODE();
2226 return blk->perm & BLK_PERM_WRITE;
2227 }
2228
2229 bool blk_is_sg(BlockBackend *blk)
2230 {
2231 BlockDriverState *bs = blk_bs(blk);
2232 GLOBAL_STATE_CODE();
2233
2234 if (!bs) {
2235 return false;
2236 }
2237
2238 return bdrv_is_sg(bs);
2239 }
2240
2241 bool blk_enable_write_cache(BlockBackend *blk)
2242 {
2243 IO_CODE();
2244 return blk->enable_write_cache;
2245 }
2246
2247 void blk_set_enable_write_cache(BlockBackend *blk, bool wce)
2248 {
2249 IO_CODE();
2250 blk->enable_write_cache = wce;
2251 }
2252
2253 void blk_activate(BlockBackend *blk, Error **errp)
2254 {
2255 BlockDriverState *bs = blk_bs(blk);
2256 GLOBAL_STATE_CODE();
2257
2258 if (!bs) {
2259 error_setg(errp, "Device '%s' has no medium", blk->name);
2260 return;
2261 }
2262
2263 /*
2264 * Migration code can call this function in coroutine context, so leave
2265 * coroutine context if necessary.
2266 */
2267 if (qemu_in_coroutine()) {
2268 bdrv_co_activate(bs, errp);
2269 } else {
2270 GRAPH_RDLOCK_GUARD_MAINLOOP();
2271 bdrv_activate(bs, errp);
2272 }
2273 }
2274
2275 bool coroutine_fn blk_co_is_inserted(BlockBackend *blk)
2276 {
2277 BlockDriverState *bs = blk_bs(blk);
2278 IO_CODE();
2279 assert_bdrv_graph_readable();
2280
2281 return bs && bdrv_co_is_inserted(bs);
2282 }
2283
2284 bool coroutine_fn blk_co_is_available(BlockBackend *blk)
2285 {
2286 IO_CODE();
2287 return blk_co_is_inserted(blk) && !blk_dev_is_tray_open(blk);
2288 }
2289
2290 void coroutine_fn blk_co_lock_medium(BlockBackend *blk, bool locked)
2291 {
2292 BlockDriverState *bs = blk_bs(blk);
2293 IO_CODE();
2294 GRAPH_RDLOCK_GUARD();
2295
2296 if (bs) {
2297 bdrv_co_lock_medium(bs, locked);
2298 }
2299 }
2300
2301 void coroutine_fn blk_co_eject(BlockBackend *blk, bool eject_flag)
2302 {
2303 BlockDriverState *bs = blk_bs(blk);
2304 char *id;
2305 IO_CODE();
2306 GRAPH_RDLOCK_GUARD();
2307
2308 if (bs) {
2309 bdrv_co_eject(bs, eject_flag);
2310 }
2311
2312 /* Whether or not we ejected on the backend,
2313 * the frontend experienced a tray event. */
2314 id = blk_get_attached_dev_id(blk);
2315 qapi_event_send_device_tray_moved(blk_name(blk), id,
2316 eject_flag);
2317 g_free(id);
2318 }
2319
2320 int blk_get_flags(BlockBackend *blk)
2321 {
2322 BlockDriverState *bs = blk_bs(blk);
2323 GLOBAL_STATE_CODE();
2324
2325 if (bs) {
2326 return bdrv_get_flags(bs);
2327 } else {
2328 return blk->root_state.open_flags;
2329 }
2330 }
2331
2332 /* Returns the minimum request alignment, in bytes; guaranteed nonzero */
2333 uint32_t blk_get_request_alignment(BlockBackend *blk)
2334 {
2335 BlockDriverState *bs = blk_bs(blk);
2336 IO_CODE();
2337 return bs ? bs->bl.request_alignment : BDRV_SECTOR_SIZE;
2338 }
2339
2340 /* Returns the maximum hardware transfer length, in bytes; guaranteed nonzero */
2341 uint64_t blk_get_max_hw_transfer(BlockBackend *blk)
2342 {
2343 BlockDriverState *bs = blk_bs(blk);
2344 uint64_t max = INT_MAX;
2345 IO_CODE();
2346
2347 if (bs) {
2348 max = MIN_NON_ZERO(max, bs->bl.max_hw_transfer);
2349 max = MIN_NON_ZERO(max, bs->bl.max_transfer);
2350 }
2351 return ROUND_DOWN(max, blk_get_request_alignment(blk));
2352 }
2353
2354 /* Returns the maximum transfer length, in bytes; guaranteed nonzero */
2355 uint32_t blk_get_max_transfer(BlockBackend *blk)
2356 {
2357 BlockDriverState *bs = blk_bs(blk);
2358 uint32_t max = INT_MAX;
2359 IO_CODE();
2360
2361 if (bs) {
2362 max = MIN_NON_ZERO(max, bs->bl.max_transfer);
2363 }
2364 return ROUND_DOWN(max, blk_get_request_alignment(blk));
2365 }
2366
2367 int blk_get_max_hw_iov(BlockBackend *blk)
2368 {
2369 IO_CODE();
2370 return MIN_NON_ZERO(blk->root->bs->bl.max_hw_iov,
2371 blk->root->bs->bl.max_iov);
2372 }
2373
2374 int blk_get_max_iov(BlockBackend *blk)
2375 {
2376 IO_CODE();
2377 return blk->root->bs->bl.max_iov;
2378 }
2379
2380 void *blk_try_blockalign(BlockBackend *blk, size_t size)
2381 {
2382 IO_CODE();
2383 return qemu_try_blockalign(blk ? blk_bs(blk) : NULL, size);
2384 }
2385
2386 void *blk_blockalign(BlockBackend *blk, size_t size)
2387 {
2388 IO_CODE();
2389 return qemu_blockalign(blk ? blk_bs(blk) : NULL, size);
2390 }
2391
2392 bool blk_op_is_blocked(BlockBackend *blk, BlockOpType op, Error **errp)
2393 {
2394 BlockDriverState *bs = blk_bs(blk);
2395 GLOBAL_STATE_CODE();
2396 GRAPH_RDLOCK_GUARD_MAINLOOP();
2397
2398 if (!bs) {
2399 return false;
2400 }
2401
2402 return bdrv_op_is_blocked(bs, op, errp);
2403 }
2404
2405 void blk_op_unblock(BlockBackend *blk, BlockOpType op, Error *reason)
2406 {
2407 BlockDriverState *bs = blk_bs(blk);
2408 GLOBAL_STATE_CODE();
2409
2410 if (bs) {
2411 bdrv_op_unblock(bs, op, reason);
2412 }
2413 }
2414
2415 void blk_op_block_all(BlockBackend *blk, Error *reason)
2416 {
2417 BlockDriverState *bs = blk_bs(blk);
2418 GLOBAL_STATE_CODE();
2419
2420 if (bs) {
2421 bdrv_op_block_all(bs, reason);
2422 }
2423 }
2424
2425 void blk_op_unblock_all(BlockBackend *blk, Error *reason)
2426 {
2427 BlockDriverState *bs = blk_bs(blk);
2428 GLOBAL_STATE_CODE();
2429
2430 if (bs) {
2431 bdrv_op_unblock_all(bs, reason);
2432 }
2433 }
2434
2435 AioContext *blk_get_aio_context(BlockBackend *blk)
2436 {
2437 BlockDriverState *bs;
2438 IO_CODE();
2439
2440 if (!blk) {
2441 return qemu_get_aio_context();
2442 }
2443
2444 bs = blk_bs(blk);
2445 if (bs) {
2446 AioContext *ctx = bdrv_get_aio_context(blk_bs(blk));
2447 assert(ctx == blk->ctx);
2448 }
2449
2450 return blk->ctx;
2451 }
2452
2453 int blk_set_aio_context(BlockBackend *blk, AioContext *new_context,
2454 Error **errp)
2455 {
2456 bool old_allow_change;
2457 BlockDriverState *bs = blk_bs(blk);
2458 int ret;
2459
2460 GLOBAL_STATE_CODE();
2461
2462 if (!bs) {
2463 blk->ctx = new_context;
2464 return 0;
2465 }
2466
2467 bdrv_ref(bs);
2468
2469 old_allow_change = blk->allow_aio_context_change;
2470 blk->allow_aio_context_change = true;
2471
2472 ret = bdrv_try_change_aio_context(bs, new_context, NULL, errp);
2473
2474 blk->allow_aio_context_change = old_allow_change;
2475
2476 bdrv_unref(bs);
2477 return ret;
2478 }
2479
2480 typedef struct BdrvStateBlkRootContext {
2481 AioContext *new_ctx;
2482 BlockBackend *blk;
2483 } BdrvStateBlkRootContext;
2484
2485 static void blk_root_set_aio_ctx_commit(void *opaque)
2486 {
2487 BdrvStateBlkRootContext *s = opaque;
2488 BlockBackend *blk = s->blk;
2489 AioContext *new_context = s->new_ctx;
2490 ThrottleGroupMember *tgm = &blk->public.throttle_group_member;
2491
2492 blk->ctx = new_context;
2493 if (tgm->throttle_state) {
2494 throttle_group_detach_aio_context(tgm);
2495 throttle_group_attach_aio_context(tgm, new_context);
2496 }
2497 }
2498
2499 static TransactionActionDrv set_blk_root_context = {
2500 .commit = blk_root_set_aio_ctx_commit,
2501 .clean = g_free,
2502 };
2503
2504 static bool blk_root_change_aio_ctx(BdrvChild *child, AioContext *ctx,
2505 GHashTable *visited, Transaction *tran,
2506 Error **errp)
2507 {
2508 BlockBackend *blk = child->opaque;
2509 BdrvStateBlkRootContext *s;
2510
2511 if (!blk->allow_aio_context_change) {
2512 /*
2513 * Manually created BlockBackends (those with a name) that are not
2514 * attached to anything can change their AioContext without updating
2515 * their user; return an error for others.
2516 */
2517 if (!blk->name || blk->dev) {
2518 /* TODO Add BB name/QOM path */
2519 error_setg(errp, "Cannot change iothread of active block backend");
2520 return false;
2521 }
2522 }
2523
2524 s = g_new(BdrvStateBlkRootContext, 1);
2525 *s = (BdrvStateBlkRootContext) {
2526 .new_ctx = ctx,
2527 .blk = blk,
2528 };
2529
2530 tran_add(tran, &set_blk_root_context, s);
2531 return true;
2532 }
2533
2534 void blk_add_aio_context_notifier(BlockBackend *blk,
2535 void (*attached_aio_context)(AioContext *new_context, void *opaque),
2536 void (*detach_aio_context)(void *opaque), void *opaque)
2537 {
2538 BlockBackendAioNotifier *notifier;
2539 BlockDriverState *bs = blk_bs(blk);
2540 GLOBAL_STATE_CODE();
2541
2542 notifier = g_new(BlockBackendAioNotifier, 1);
2543 notifier->attached_aio_context = attached_aio_context;
2544 notifier->detach_aio_context = detach_aio_context;
2545 notifier->opaque = opaque;
2546 QLIST_INSERT_HEAD(&blk->aio_notifiers, notifier, list);
2547
2548 if (bs) {
2549 bdrv_add_aio_context_notifier(bs, attached_aio_context,
2550 detach_aio_context, opaque);
2551 }
2552 }
2553
2554 void blk_remove_aio_context_notifier(BlockBackend *blk,
2555 void (*attached_aio_context)(AioContext *,
2556 void *),
2557 void (*detach_aio_context)(void *),
2558 void *opaque)
2559 {
2560 BlockBackendAioNotifier *notifier;
2561 BlockDriverState *bs = blk_bs(blk);
2562
2563 GLOBAL_STATE_CODE();
2564
2565 if (bs) {
2566 bdrv_remove_aio_context_notifier(bs, attached_aio_context,
2567 detach_aio_context, opaque);
2568 }
2569
2570 QLIST_FOREACH(notifier, &blk->aio_notifiers, list) {
2571 if (notifier->attached_aio_context == attached_aio_context &&
2572 notifier->detach_aio_context == detach_aio_context &&
2573 notifier->opaque == opaque) {
2574 QLIST_REMOVE(notifier, list);
2575 g_free(notifier);
2576 return;
2577 }
2578 }
2579
2580 abort();
2581 }
2582
2583 void blk_add_remove_bs_notifier(BlockBackend *blk, Notifier *notify)
2584 {
2585 GLOBAL_STATE_CODE();
2586 notifier_list_add(&blk->remove_bs_notifiers, notify);
2587 }
2588
2589 void blk_add_insert_bs_notifier(BlockBackend *blk, Notifier *notify)
2590 {
2591 GLOBAL_STATE_CODE();
2592 notifier_list_add(&blk->insert_bs_notifiers, notify);
2593 }
2594
2595 BlockAcctStats *blk_get_stats(BlockBackend *blk)
2596 {
2597 IO_CODE();
2598 return &blk->stats;
2599 }
2600
2601 void *blk_aio_get(const AIOCBInfo *aiocb_info, BlockBackend *blk,
2602 BlockCompletionFunc *cb, void *opaque)
2603 {
2604 IO_CODE();
2605 return qemu_aio_get(aiocb_info, blk_bs(blk), cb, opaque);
2606 }
2607
2608 int coroutine_fn blk_co_pwrite_zeroes(BlockBackend *blk, int64_t offset,
2609 int64_t bytes, BdrvRequestFlags flags)
2610 {
2611 IO_OR_GS_CODE();
2612 return blk_co_pwritev(blk, offset, bytes, NULL,
2613 flags | BDRV_REQ_ZERO_WRITE);
2614 }
2615
2616 int coroutine_fn blk_co_pwrite_compressed(BlockBackend *blk, int64_t offset,
2617 int64_t bytes, const void *buf)
2618 {
2619 QEMUIOVector qiov = QEMU_IOVEC_INIT_BUF(qiov, buf, bytes);
2620 IO_OR_GS_CODE();
2621 return blk_co_pwritev_part(blk, offset, bytes, &qiov, 0,
2622 BDRV_REQ_WRITE_COMPRESSED);
2623 }
2624
2625 int coroutine_fn blk_co_truncate(BlockBackend *blk, int64_t offset, bool exact,
2626 PreallocMode prealloc, BdrvRequestFlags flags,
2627 Error **errp)
2628 {
2629 IO_OR_GS_CODE();
2630 GRAPH_RDLOCK_GUARD();
2631 if (!blk_co_is_available(blk)) {
2632 error_setg(errp, "No medium inserted");
2633 return -ENOMEDIUM;
2634 }
2635
2636 return bdrv_co_truncate(blk->root, offset, exact, prealloc, flags, errp);
2637 }
2638
2639 int blk_save_vmstate(BlockBackend *blk, const uint8_t *buf,
2640 int64_t pos, int size)
2641 {
2642 int ret;
2643 GLOBAL_STATE_CODE();
2644
2645 if (!blk_is_available(blk)) {
2646 return -ENOMEDIUM;
2647 }
2648
2649 ret = bdrv_save_vmstate(blk_bs(blk), buf, pos, size);
2650 if (ret < 0) {
2651 return ret;
2652 }
2653
2654 if (ret == size && !blk->enable_write_cache) {
2655 ret = bdrv_flush(blk_bs(blk));
2656 }
2657
2658 return ret < 0 ? ret : size;
2659 }
2660
2661 int blk_load_vmstate(BlockBackend *blk, uint8_t *buf, int64_t pos, int size)
2662 {
2663 GLOBAL_STATE_CODE();
2664 if (!blk_is_available(blk)) {
2665 return -ENOMEDIUM;
2666 }
2667
2668 return bdrv_load_vmstate(blk_bs(blk), buf, pos, size);
2669 }
2670
2671 int blk_probe_blocksizes(BlockBackend *blk, BlockSizes *bsz)
2672 {
2673 GLOBAL_STATE_CODE();
2674 GRAPH_RDLOCK_GUARD_MAINLOOP();
2675
2676 if (!blk_is_available(blk)) {
2677 return -ENOMEDIUM;
2678 }
2679
2680 return bdrv_probe_blocksizes(blk_bs(blk), bsz);
2681 }
2682
2683 int blk_probe_geometry(BlockBackend *blk, HDGeometry *geo)
2684 {
2685 GLOBAL_STATE_CODE();
2686 if (!blk_is_available(blk)) {
2687 return -ENOMEDIUM;
2688 }
2689
2690 return bdrv_probe_geometry(blk_bs(blk), geo);
2691 }
2692
2693 /*
2694 * Updates the BlockBackendRootState object with data from the currently
2695 * attached BlockDriverState.
2696 */
2697 void blk_update_root_state(BlockBackend *blk)
2698 {
2699 GLOBAL_STATE_CODE();
2700 assert(blk->root);
2701
2702 blk->root_state.open_flags = blk->root->bs->open_flags;
2703 blk->root_state.detect_zeroes = blk->root->bs->detect_zeroes;
2704 }
2705
2706 /*
2707 * Returns the detect-zeroes setting to be used for bdrv_open() of a
2708 * BlockDriverState which is supposed to inherit the root state.
2709 */
2710 bool blk_get_detect_zeroes_from_root_state(BlockBackend *blk)
2711 {
2712 GLOBAL_STATE_CODE();
2713 return blk->root_state.detect_zeroes;
2714 }
2715
2716 /*
2717 * Returns the flags to be used for bdrv_open() of a BlockDriverState which is
2718 * supposed to inherit the root state.
2719 */
2720 int blk_get_open_flags_from_root_state(BlockBackend *blk)
2721 {
2722 GLOBAL_STATE_CODE();
2723 return blk->root_state.open_flags;
2724 }
2725
2726 BlockBackendRootState *blk_get_root_state(BlockBackend *blk)
2727 {
2728 GLOBAL_STATE_CODE();
2729 return &blk->root_state;
2730 }
2731
2732 int blk_commit_all(void)
2733 {
2734 BlockBackend *blk = NULL;
2735 GLOBAL_STATE_CODE();
2736 GRAPH_RDLOCK_GUARD_MAINLOOP();
2737
2738 while ((blk = blk_all_next(blk)) != NULL) {
2739 AioContext *aio_context = blk_get_aio_context(blk);
2740 BlockDriverState *unfiltered_bs = bdrv_skip_filters(blk_bs(blk));
2741
2742 aio_context_acquire(aio_context);
2743 if (blk_is_inserted(blk) && bdrv_cow_child(unfiltered_bs)) {
2744 int ret;
2745
2746 ret = bdrv_commit(unfiltered_bs);
2747 if (ret < 0) {
2748 aio_context_release(aio_context);
2749 return ret;
2750 }
2751 }
2752 aio_context_release(aio_context);
2753 }
2754 return 0;
2755 }
2756
2757
2758 /* throttling disk I/O limits */
2759 void blk_set_io_limits(BlockBackend *blk, ThrottleConfig *cfg)
2760 {
2761 GLOBAL_STATE_CODE();
2762 throttle_group_config(&blk->public.throttle_group_member, cfg);
2763 }
2764
2765 void blk_io_limits_disable(BlockBackend *blk)
2766 {
2767 BlockDriverState *bs = blk_bs(blk);
2768 ThrottleGroupMember *tgm = &blk->public.throttle_group_member;
2769 assert(tgm->throttle_state);
2770 GLOBAL_STATE_CODE();
2771 if (bs) {
2772 bdrv_ref(bs);
2773 bdrv_drained_begin(bs);
2774 }
2775 throttle_group_unregister_tgm(tgm);
2776 if (bs) {
2777 bdrv_drained_end(bs);
2778 bdrv_unref(bs);
2779 }
2780 }
2781
2782 /* should be called before blk_set_io_limits if a limit is set */
2783 void blk_io_limits_enable(BlockBackend *blk, const char *group)
2784 {
2785 assert(!blk->public.throttle_group_member.throttle_state);
2786 GLOBAL_STATE_CODE();
2787 throttle_group_register_tgm(&blk->public.throttle_group_member,
2788 group, blk_get_aio_context(blk));
2789 }
2790
2791 void blk_io_limits_update_group(BlockBackend *blk, const char *group)
2792 {
2793 GLOBAL_STATE_CODE();
2794 /* this BB is not part of any group */
2795 if (!blk->public.throttle_group_member.throttle_state) {
2796 return;
2797 }
2798
2799 /* this BB is a part of the same group than the one we want */
2800 if (!g_strcmp0(throttle_group_get_name(&blk->public.throttle_group_member),
2801 group)) {
2802 return;
2803 }
2804
2805 /* need to change the group this bs belong to */
2806 blk_io_limits_disable(blk);
2807 blk_io_limits_enable(blk, group);
2808 }
2809
2810 static void blk_root_drained_begin(BdrvChild *child)
2811 {
2812 BlockBackend *blk = child->opaque;
2813 ThrottleGroupMember *tgm = &blk->public.throttle_group_member;
2814
2815 if (qatomic_fetch_inc(&blk->quiesce_counter) == 0) {
2816 if (blk->dev_ops && blk->dev_ops->drained_begin) {
2817 blk->dev_ops->drained_begin(blk->dev_opaque);
2818 }
2819 }
2820
2821 /* Note that blk->root may not be accessible here yet if we are just
2822 * attaching to a BlockDriverState that is drained. Use child instead. */
2823
2824 if (qatomic_fetch_inc(&tgm->io_limits_disabled) == 0) {
2825 throttle_group_restart_tgm(tgm);
2826 }
2827 }
2828
2829 static bool blk_root_drained_poll(BdrvChild *child)
2830 {
2831 BlockBackend *blk = child->opaque;
2832 bool busy = false;
2833 assert(qatomic_read(&blk->quiesce_counter));
2834
2835 if (blk->dev_ops && blk->dev_ops->drained_poll) {
2836 busy = blk->dev_ops->drained_poll(blk->dev_opaque);
2837 }
2838 return busy || !!blk->in_flight;
2839 }
2840
2841 static void blk_root_drained_end(BdrvChild *child)
2842 {
2843 BlockBackend *blk = child->opaque;
2844 assert(qatomic_read(&blk->quiesce_counter));
2845
2846 assert(blk->public.throttle_group_member.io_limits_disabled);
2847 qatomic_dec(&blk->public.throttle_group_member.io_limits_disabled);
2848
2849 if (qatomic_fetch_dec(&blk->quiesce_counter) == 1) {
2850 if (blk->dev_ops && blk->dev_ops->drained_end) {
2851 blk->dev_ops->drained_end(blk->dev_opaque);
2852 }
2853 qemu_mutex_lock(&blk->queued_requests_lock);
2854 while (qemu_co_enter_next(&blk->queued_requests,
2855 &blk->queued_requests_lock)) {
2856 /* Resume all queued requests */
2857 }
2858 qemu_mutex_unlock(&blk->queued_requests_lock);
2859 }
2860 }
2861
2862 bool blk_register_buf(BlockBackend *blk, void *host, size_t size, Error **errp)
2863 {
2864 BlockDriverState *bs = blk_bs(blk);
2865
2866 GLOBAL_STATE_CODE();
2867
2868 if (bs) {
2869 return bdrv_register_buf(bs, host, size, errp);
2870 }
2871 return true;
2872 }
2873
2874 void blk_unregister_buf(BlockBackend *blk, void *host, size_t size)
2875 {
2876 BlockDriverState *bs = blk_bs(blk);
2877
2878 GLOBAL_STATE_CODE();
2879
2880 if (bs) {
2881 bdrv_unregister_buf(bs, host, size);
2882 }
2883 }
2884
2885 int coroutine_fn blk_co_copy_range(BlockBackend *blk_in, int64_t off_in,
2886 BlockBackend *blk_out, int64_t off_out,
2887 int64_t bytes, BdrvRequestFlags read_flags,
2888 BdrvRequestFlags write_flags)
2889 {
2890 int r;
2891 IO_CODE();
2892 GRAPH_RDLOCK_GUARD();
2893
2894 r = blk_check_byte_request(blk_in, off_in, bytes);
2895 if (r) {
2896 return r;
2897 }
2898 r = blk_check_byte_request(blk_out, off_out, bytes);
2899 if (r) {
2900 return r;
2901 }
2902
2903 return bdrv_co_copy_range(blk_in->root, off_in,
2904 blk_out->root, off_out,
2905 bytes, read_flags, write_flags);
2906 }
2907
2908 const BdrvChild *blk_root(BlockBackend *blk)
2909 {
2910 GLOBAL_STATE_CODE();
2911 return blk->root;
2912 }
2913
2914 int blk_make_empty(BlockBackend *blk, Error **errp)
2915 {
2916 GLOBAL_STATE_CODE();
2917 GRAPH_RDLOCK_GUARD_MAINLOOP();
2918
2919 if (!blk_is_available(blk)) {
2920 error_setg(errp, "No medium inserted");
2921 return -ENOMEDIUM;
2922 }
2923
2924 return bdrv_make_empty(blk->root, errp);
2925 }