4 * Copyright Red Hat, Inc. 2012
7 * Paolo Bonzini <pbonzini@redhat.com>
9 * This work is licensed under the terms of the GNU LGPL, version 2 or later.
10 * See the COPYING.LIB file in the top-level directory.
14 #include "qemu/osdep.h"
16 #include "block/blockjob.h"
17 #include "block/block_int.h"
18 #include "sysemu/block-backend.h"
19 #include "qapi/qmp/qerror.h"
20 #include "qemu/ratelimit.h"
21 #include "qemu/bitmap.h"
22 #include "qemu/error-report.h"
24 #define SLICE_TIME 100000000ULL /* ns */
25 #define MAX_IN_FLIGHT 16
26 #define DEFAULT_MIRROR_BUF_SIZE (10 << 20)
28 /* The mirroring buffer is a list of granularity-sized chunks.
29 * Free chunks are organized in a list.
31 typedef struct MirrorBuffer
{
32 QSIMPLEQ_ENTRY(MirrorBuffer
) next
;
35 typedef struct MirrorBlockJob
{
38 BlockDriverState
*target
;
39 BlockDriverState
*base
;
40 /* The name of the graph node to replace */
42 /* The BDS to replace */
43 BlockDriverState
*to_replace
;
44 /* Used to block operations on the drive-mirror-replace target */
45 Error
*replace_blocker
;
47 BlockdevOnError on_source_error
, on_target_error
;
53 unsigned long *cow_bitmap
;
54 BdrvDirtyBitmap
*dirty_bitmap
;
57 QSIMPLEQ_HEAD(, MirrorBuffer
) buf_free
;
60 unsigned long *in_flight_bitmap
;
62 int sectors_in_flight
;
66 int target_cluster_sectors
;
70 typedef struct MirrorOp
{
77 static BlockErrorAction
mirror_error_action(MirrorBlockJob
*s
, bool read
,
82 return block_job_error_action(&s
->common
, s
->common
.bs
,
83 s
->on_source_error
, true, error
);
85 return block_job_error_action(&s
->common
, s
->target
,
86 s
->on_target_error
, false, error
);
90 static void mirror_iteration_done(MirrorOp
*op
, int ret
)
92 MirrorBlockJob
*s
= op
->s
;
95 int i
, nb_chunks
, sectors_per_chunk
;
97 trace_mirror_iteration_done(s
, op
->sector_num
, op
->nb_sectors
, ret
);
100 s
->sectors_in_flight
-= op
->nb_sectors
;
102 for (i
= 0; i
< op
->qiov
.niov
; i
++) {
103 MirrorBuffer
*buf
= (MirrorBuffer
*) iov
[i
].iov_base
;
104 QSIMPLEQ_INSERT_TAIL(&s
->buf_free
, buf
, next
);
108 sectors_per_chunk
= s
->granularity
>> BDRV_SECTOR_BITS
;
109 chunk_num
= op
->sector_num
/ sectors_per_chunk
;
110 nb_chunks
= op
->nb_sectors
/ sectors_per_chunk
;
111 bitmap_clear(s
->in_flight_bitmap
, chunk_num
, nb_chunks
);
114 bitmap_set(s
->cow_bitmap
, chunk_num
, nb_chunks
);
116 s
->common
.offset
+= (uint64_t)op
->nb_sectors
* BDRV_SECTOR_SIZE
;
119 qemu_iovec_destroy(&op
->qiov
);
122 if (s
->waiting_for_io
) {
123 qemu_coroutine_enter(s
->common
.co
, NULL
);
127 static void mirror_write_complete(void *opaque
, int ret
)
129 MirrorOp
*op
= opaque
;
130 MirrorBlockJob
*s
= op
->s
;
132 BlockErrorAction action
;
134 bdrv_set_dirty_bitmap(s
->dirty_bitmap
, op
->sector_num
, op
->nb_sectors
);
135 action
= mirror_error_action(s
, false, -ret
);
136 if (action
== BLOCK_ERROR_ACTION_REPORT
&& s
->ret
>= 0) {
140 mirror_iteration_done(op
, ret
);
143 static void mirror_read_complete(void *opaque
, int ret
)
145 MirrorOp
*op
= opaque
;
146 MirrorBlockJob
*s
= op
->s
;
148 BlockErrorAction action
;
150 bdrv_set_dirty_bitmap(s
->dirty_bitmap
, op
->sector_num
, op
->nb_sectors
);
151 action
= mirror_error_action(s
, true, -ret
);
152 if (action
== BLOCK_ERROR_ACTION_REPORT
&& s
->ret
>= 0) {
156 mirror_iteration_done(op
, ret
);
159 bdrv_aio_writev(s
->target
, op
->sector_num
, &op
->qiov
, op
->nb_sectors
,
160 mirror_write_complete
, op
);
163 /* Round sector_num and/or nb_sectors to target cluster if COW is needed, and
164 * return the offset of the adjusted tail sector against original. */
165 static int mirror_cow_align(MirrorBlockJob
*s
,
171 int chunk_sectors
= s
->granularity
>> BDRV_SECTOR_BITS
;
172 int64_t align_sector_num
= *sector_num
;
173 int align_nb_sectors
= *nb_sectors
;
174 int max_sectors
= chunk_sectors
* s
->max_iov
;
176 need_cow
= !test_bit(*sector_num
/ chunk_sectors
, s
->cow_bitmap
);
177 need_cow
|= !test_bit((*sector_num
+ *nb_sectors
- 1) / chunk_sectors
,
180 bdrv_round_to_clusters(s
->target
, *sector_num
, *nb_sectors
,
181 &align_sector_num
, &align_nb_sectors
);
184 if (align_nb_sectors
> max_sectors
) {
185 align_nb_sectors
= max_sectors
;
187 align_nb_sectors
= QEMU_ALIGN_DOWN(align_nb_sectors
,
188 s
->target_cluster_sectors
);
192 ret
= align_sector_num
+ align_nb_sectors
- (*sector_num
+ *nb_sectors
);
193 *sector_num
= align_sector_num
;
194 *nb_sectors
= align_nb_sectors
;
199 static inline void mirror_wait_for_io(MirrorBlockJob
*s
)
201 assert(!s
->waiting_for_io
);
202 s
->waiting_for_io
= true;
203 qemu_coroutine_yield();
204 s
->waiting_for_io
= false;
207 /* Submit async read while handling COW.
208 * Returns: nb_sectors if no alignment is necessary, or
209 * (new_end - sector_num) if tail is rounded up or down due to
210 * alignment or buffer limit.
212 static int mirror_do_read(MirrorBlockJob
*s
, int64_t sector_num
,
215 BlockDriverState
*source
= s
->common
.bs
;
216 int sectors_per_chunk
, nb_chunks
;
217 int ret
= nb_sectors
;
220 sectors_per_chunk
= s
->granularity
>> BDRV_SECTOR_BITS
;
222 /* We can only handle as much as buf_size at a time. */
223 nb_sectors
= MIN(s
->buf_size
>> BDRV_SECTOR_BITS
, nb_sectors
);
227 ret
+= mirror_cow_align(s
, §or_num
, &nb_sectors
);
229 assert(nb_sectors
<< BDRV_SECTOR_BITS
<= s
->buf_size
);
230 /* The sector range must meet granularity because:
231 * 1) Caller passes in aligned values;
232 * 2) mirror_cow_align is used only when target cluster is larger. */
233 assert(!(nb_sectors
% sectors_per_chunk
));
234 assert(!(sector_num
% sectors_per_chunk
));
235 nb_chunks
= nb_sectors
/ sectors_per_chunk
;
237 while (s
->buf_free_count
< nb_chunks
) {
238 trace_mirror_yield_in_flight(s
, sector_num
, s
->in_flight
);
239 mirror_wait_for_io(s
);
242 /* Allocate a MirrorOp that is used as an AIO callback. */
243 op
= g_new(MirrorOp
, 1);
245 op
->sector_num
= sector_num
;
246 op
->nb_sectors
= nb_sectors
;
248 /* Now make a QEMUIOVector taking enough granularity-sized chunks
251 qemu_iovec_init(&op
->qiov
, nb_chunks
);
252 while (nb_chunks
-- > 0) {
253 MirrorBuffer
*buf
= QSIMPLEQ_FIRST(&s
->buf_free
);
254 size_t remaining
= nb_sectors
* BDRV_SECTOR_SIZE
- op
->qiov
.size
;
256 QSIMPLEQ_REMOVE_HEAD(&s
->buf_free
, next
);
258 qemu_iovec_add(&op
->qiov
, buf
, MIN(s
->granularity
, remaining
));
261 /* Copy the dirty cluster. */
263 s
->sectors_in_flight
+= nb_sectors
;
264 trace_mirror_one_iteration(s
, sector_num
, nb_sectors
);
266 bdrv_aio_readv(source
, sector_num
, &op
->qiov
, nb_sectors
,
267 mirror_read_complete
, op
);
271 static void mirror_do_zero_or_discard(MirrorBlockJob
*s
,
278 /* Allocate a MirrorOp that is used as an AIO callback. The qiov is zeroed
279 * so the freeing in mirror_iteration_done is nop. */
280 op
= g_new0(MirrorOp
, 1);
282 op
->sector_num
= sector_num
;
283 op
->nb_sectors
= nb_sectors
;
286 s
->sectors_in_flight
+= nb_sectors
;
288 bdrv_aio_discard(s
->target
, sector_num
, op
->nb_sectors
,
289 mirror_write_complete
, op
);
291 bdrv_aio_write_zeroes(s
->target
, sector_num
, op
->nb_sectors
,
292 s
->unmap
? BDRV_REQ_MAY_UNMAP
: 0,
293 mirror_write_complete
, op
);
297 static uint64_t coroutine_fn
mirror_iteration(MirrorBlockJob
*s
)
299 BlockDriverState
*source
= s
->common
.bs
;
301 uint64_t delay_ns
= 0;
302 /* At least the first dirty chunk is mirrored in one iteration. */
304 int64_t end
= s
->bdev_length
/ BDRV_SECTOR_SIZE
;
305 int sectors_per_chunk
= s
->granularity
>> BDRV_SECTOR_BITS
;
307 sector_num
= hbitmap_iter_next(&s
->hbi
);
308 if (sector_num
< 0) {
309 bdrv_dirty_iter_init(s
->dirty_bitmap
, &s
->hbi
);
310 sector_num
= hbitmap_iter_next(&s
->hbi
);
311 trace_mirror_restart_iter(s
, bdrv_get_dirty_count(s
->dirty_bitmap
));
312 assert(sector_num
>= 0);
315 /* Find the number of consective dirty chunks following the first dirty
316 * one, and wait for in flight requests in them. */
317 while (nb_chunks
* sectors_per_chunk
< (s
->buf_size
>> BDRV_SECTOR_BITS
)) {
318 int64_t hbitmap_next
;
319 int64_t next_sector
= sector_num
+ nb_chunks
* sectors_per_chunk
;
320 int64_t next_chunk
= next_sector
/ sectors_per_chunk
;
321 if (next_sector
>= end
||
322 !bdrv_get_dirty(source
, s
->dirty_bitmap
, next_sector
)) {
325 if (test_bit(next_chunk
, s
->in_flight_bitmap
)) {
329 trace_mirror_yield_in_flight(s
, next_sector
, s
->in_flight
);
330 mirror_wait_for_io(s
);
333 hbitmap_next
= hbitmap_iter_next(&s
->hbi
);
334 assert(hbitmap_next
== next_sector
);
339 /* Clear dirty bits before querying the block status, because
340 * calling bdrv_get_block_status_above could yield - if some blocks are
341 * marked dirty in this window, we need to know.
343 bdrv_reset_dirty_bitmap(s
->dirty_bitmap
, sector_num
,
344 nb_chunks
* sectors_per_chunk
);
345 bitmap_set(s
->in_flight_bitmap
, sector_num
/ sectors_per_chunk
, nb_chunks
);
346 while (nb_chunks
> 0 && sector_num
< end
) {
349 BlockDriverState
*file
;
353 MIRROR_METHOD_DISCARD
354 } mirror_method
= MIRROR_METHOD_COPY
;
356 assert(!(sector_num
% sectors_per_chunk
));
357 ret
= bdrv_get_block_status_above(source
, NULL
, sector_num
,
358 nb_chunks
* sectors_per_chunk
,
361 io_sectors
= nb_chunks
* sectors_per_chunk
;
364 io_sectors
-= io_sectors
% sectors_per_chunk
;
365 if (io_sectors
< sectors_per_chunk
) {
366 io_sectors
= sectors_per_chunk
;
367 } else if (ret
>= 0 && !(ret
& BDRV_BLOCK_DATA
)) {
368 int64_t target_sector_num
;
369 int target_nb_sectors
;
370 bdrv_round_to_clusters(s
->target
, sector_num
, io_sectors
,
371 &target_sector_num
, &target_nb_sectors
);
372 if (target_sector_num
== sector_num
&&
373 target_nb_sectors
== io_sectors
) {
374 mirror_method
= ret
& BDRV_BLOCK_ZERO
?
376 MIRROR_METHOD_DISCARD
;
380 switch (mirror_method
) {
381 case MIRROR_METHOD_COPY
:
382 io_sectors
= mirror_do_read(s
, sector_num
, io_sectors
);
384 case MIRROR_METHOD_ZERO
:
385 mirror_do_zero_or_discard(s
, sector_num
, io_sectors
, false);
387 case MIRROR_METHOD_DISCARD
:
388 mirror_do_zero_or_discard(s
, sector_num
, io_sectors
, true);
394 sector_num
+= io_sectors
;
395 nb_chunks
-= io_sectors
/ sectors_per_chunk
;
396 delay_ns
+= ratelimit_calculate_delay(&s
->limit
, io_sectors
);
401 static void mirror_free_init(MirrorBlockJob
*s
)
403 int granularity
= s
->granularity
;
404 size_t buf_size
= s
->buf_size
;
405 uint8_t *buf
= s
->buf
;
407 assert(s
->buf_free_count
== 0);
408 QSIMPLEQ_INIT(&s
->buf_free
);
409 while (buf_size
!= 0) {
410 MirrorBuffer
*cur
= (MirrorBuffer
*)buf
;
411 QSIMPLEQ_INSERT_TAIL(&s
->buf_free
, cur
, next
);
413 buf_size
-= granularity
;
418 static void mirror_drain(MirrorBlockJob
*s
)
420 while (s
->in_flight
> 0) {
421 mirror_wait_for_io(s
);
429 static void mirror_exit(BlockJob
*job
, void *opaque
)
431 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
);
432 MirrorExitData
*data
= opaque
;
433 AioContext
*replace_aio_context
= NULL
;
434 BlockDriverState
*src
= s
->common
.bs
;
436 /* Make sure that the source BDS doesn't go away before we called
437 * block_job_completed(). */
441 replace_aio_context
= bdrv_get_aio_context(s
->to_replace
);
442 aio_context_acquire(replace_aio_context
);
445 if (s
->should_complete
&& data
->ret
== 0) {
446 BlockDriverState
*to_replace
= s
->common
.bs
;
448 to_replace
= s
->to_replace
;
451 /* This was checked in mirror_start_job(), but meanwhile one of the
452 * nodes could have been newly attached to a BlockBackend. */
453 if (to_replace
->blk
&& s
->target
->blk
) {
454 error_report("block job: Can't create node with two BlockBackends");
459 if (bdrv_get_flags(s
->target
) != bdrv_get_flags(to_replace
)) {
460 bdrv_reopen(s
->target
, bdrv_get_flags(to_replace
), NULL
);
462 bdrv_replace_in_backing_chain(to_replace
, s
->target
);
467 bdrv_op_unblock_all(s
->to_replace
, s
->replace_blocker
);
468 error_free(s
->replace_blocker
);
469 bdrv_unref(s
->to_replace
);
471 if (replace_aio_context
) {
472 aio_context_release(replace_aio_context
);
475 bdrv_op_unblock_all(s
->target
, s
->common
.blocker
);
476 bdrv_unref(s
->target
);
477 block_job_completed(&s
->common
, data
->ret
);
479 bdrv_drained_end(src
);
483 static void coroutine_fn
mirror_run(void *opaque
)
485 MirrorBlockJob
*s
= opaque
;
486 MirrorExitData
*data
;
487 BlockDriverState
*bs
= s
->common
.bs
;
488 int64_t sector_num
, end
, length
;
489 uint64_t last_pause_ns
;
491 char backing_filename
[2]; /* we only need 2 characters because we are only
492 checking for a NULL string */
495 int target_cluster_size
= BDRV_SECTOR_SIZE
;
497 if (block_job_is_cancelled(&s
->common
)) {
501 s
->bdev_length
= bdrv_getlength(bs
);
502 if (s
->bdev_length
< 0) {
503 ret
= s
->bdev_length
;
505 } else if (s
->bdev_length
== 0) {
506 /* Report BLOCK_JOB_READY and wait for complete. */
507 block_job_event_ready(&s
->common
);
509 while (!block_job_is_cancelled(&s
->common
) && !s
->should_complete
) {
510 block_job_yield(&s
->common
);
512 s
->common
.cancelled
= false;
516 length
= DIV_ROUND_UP(s
->bdev_length
, s
->granularity
);
517 s
->in_flight_bitmap
= bitmap_new(length
);
519 /* If we have no backing file yet in the destination, we cannot let
520 * the destination do COW. Instead, we copy sectors around the
521 * dirty data if needed. We need a bitmap to do that.
523 bdrv_get_backing_filename(s
->target
, backing_filename
,
524 sizeof(backing_filename
));
525 if (!bdrv_get_info(s
->target
, &bdi
) && bdi
.cluster_size
) {
526 target_cluster_size
= bdi
.cluster_size
;
528 if (backing_filename
[0] && !s
->target
->backing
529 && s
->granularity
< target_cluster_size
) {
530 s
->buf_size
= MAX(s
->buf_size
, target_cluster_size
);
531 s
->cow_bitmap
= bitmap_new(length
);
533 s
->target_cluster_sectors
= target_cluster_size
>> BDRV_SECTOR_BITS
;
534 s
->max_iov
= MIN(s
->common
.bs
->bl
.max_iov
, s
->target
->bl
.max_iov
);
536 end
= s
->bdev_length
/ BDRV_SECTOR_SIZE
;
537 s
->buf
= qemu_try_blockalign(bs
, s
->buf_size
);
538 if (s
->buf
== NULL
) {
545 last_pause_ns
= qemu_clock_get_ns(QEMU_CLOCK_REALTIME
);
546 if (!s
->is_none_mode
) {
547 /* First part, loop on the sectors and initialize the dirty bitmap. */
548 BlockDriverState
*base
= s
->base
;
549 bool mark_all_dirty
= s
->base
== NULL
&& !bdrv_has_zero_init(s
->target
);
551 for (sector_num
= 0; sector_num
< end
; ) {
552 /* Just to make sure we are not exceeding int limit. */
553 int nb_sectors
= MIN(INT_MAX
>> BDRV_SECTOR_BITS
,
555 int64_t now
= qemu_clock_get_ns(QEMU_CLOCK_REALTIME
);
557 if (now
- last_pause_ns
> SLICE_TIME
) {
559 block_job_sleep_ns(&s
->common
, QEMU_CLOCK_REALTIME
, 0);
562 if (block_job_is_cancelled(&s
->common
)) {
566 ret
= bdrv_is_allocated_above(bs
, base
, sector_num
, nb_sectors
, &n
);
573 if (ret
== 1 || mark_all_dirty
) {
574 bdrv_set_dirty_bitmap(s
->dirty_bitmap
, sector_num
, n
);
580 bdrv_dirty_iter_init(s
->dirty_bitmap
, &s
->hbi
);
582 uint64_t delay_ns
= 0;
584 bool should_complete
;
591 cnt
= bdrv_get_dirty_count(s
->dirty_bitmap
);
592 /* s->common.offset contains the number of bytes already processed so
593 * far, cnt is the number of dirty sectors remaining and
594 * s->sectors_in_flight is the number of sectors currently being
595 * processed; together those are the current total operation length */
596 s
->common
.len
= s
->common
.offset
+
597 (cnt
+ s
->sectors_in_flight
) * BDRV_SECTOR_SIZE
;
599 /* Note that even when no rate limit is applied we need to yield
600 * periodically with no pending I/O so that bdrv_drain_all() returns.
601 * We do so every SLICE_TIME nanoseconds, or when there is an error,
602 * or when the source is clean, whichever comes first.
604 if (qemu_clock_get_ns(QEMU_CLOCK_REALTIME
) - last_pause_ns
< SLICE_TIME
&&
605 s
->common
.iostatus
== BLOCK_DEVICE_IO_STATUS_OK
) {
606 if (s
->in_flight
== MAX_IN_FLIGHT
|| s
->buf_free_count
== 0 ||
607 (cnt
== 0 && s
->in_flight
> 0)) {
608 trace_mirror_yield(s
, s
->in_flight
, s
->buf_free_count
, cnt
);
609 mirror_wait_for_io(s
);
611 } else if (cnt
!= 0) {
612 delay_ns
= mirror_iteration(s
);
616 should_complete
= false;
617 if (s
->in_flight
== 0 && cnt
== 0) {
618 trace_mirror_before_flush(s
);
619 ret
= bdrv_flush(s
->target
);
621 if (mirror_error_action(s
, false, -ret
) ==
622 BLOCK_ERROR_ACTION_REPORT
) {
626 /* We're out of the streaming phase. From now on, if the job
627 * is cancelled we will actually complete all pending I/O and
628 * report completion. This way, block-job-cancel will leave
629 * the target in a consistent state.
632 block_job_event_ready(&s
->common
);
636 should_complete
= s
->should_complete
||
637 block_job_is_cancelled(&s
->common
);
638 cnt
= bdrv_get_dirty_count(s
->dirty_bitmap
);
642 if (cnt
== 0 && should_complete
) {
643 /* The dirty bitmap is not updated while operations are pending.
644 * If we're about to exit, wait for pending operations before
645 * calling bdrv_get_dirty_count(bs), or we may exit while the
646 * source has dirty data to copy!
648 * Note that I/O can be submitted by the guest while
649 * mirror_populate runs.
651 trace_mirror_before_drain(s
, cnt
);
653 cnt
= bdrv_get_dirty_count(s
->dirty_bitmap
);
657 trace_mirror_before_sleep(s
, cnt
, s
->synced
, delay_ns
);
659 block_job_sleep_ns(&s
->common
, QEMU_CLOCK_REALTIME
, delay_ns
);
660 if (block_job_is_cancelled(&s
->common
)) {
663 } else if (!should_complete
) {
664 delay_ns
= (s
->in_flight
== 0 && cnt
== 0 ? SLICE_TIME
: 0);
665 block_job_sleep_ns(&s
->common
, QEMU_CLOCK_REALTIME
, delay_ns
);
666 } else if (cnt
== 0) {
667 /* The two disks are in sync. Exit and report successful
670 assert(QLIST_EMPTY(&bs
->tracked_requests
));
671 s
->common
.cancelled
= false;
674 last_pause_ns
= qemu_clock_get_ns(QEMU_CLOCK_REALTIME
);
678 if (s
->in_flight
> 0) {
679 /* We get here only if something went wrong. Either the job failed,
680 * or it was cancelled prematurely so that we do not guarantee that
681 * the target is a copy of the source.
683 assert(ret
< 0 || (!s
->synced
&& block_job_is_cancelled(&s
->common
)));
687 assert(s
->in_flight
== 0);
689 g_free(s
->cow_bitmap
);
690 g_free(s
->in_flight_bitmap
);
691 bdrv_release_dirty_bitmap(bs
, s
->dirty_bitmap
);
692 if (s
->target
->blk
) {
693 blk_iostatus_disable(s
->target
->blk
);
696 data
= g_malloc(sizeof(*data
));
698 /* Before we switch to target in mirror_exit, make sure data doesn't
700 bdrv_drained_begin(s
->common
.bs
);
701 block_job_defer_to_main_loop(&s
->common
, mirror_exit
, data
);
704 static void mirror_set_speed(BlockJob
*job
, int64_t speed
, Error
**errp
)
706 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
);
709 error_setg(errp
, QERR_INVALID_PARAMETER
, "speed");
712 ratelimit_set_speed(&s
->limit
, speed
/ BDRV_SECTOR_SIZE
, SLICE_TIME
);
715 static void mirror_iostatus_reset(BlockJob
*job
)
717 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
);
719 if (s
->target
->blk
) {
720 blk_iostatus_reset(s
->target
->blk
);
724 static void mirror_complete(BlockJob
*job
, Error
**errp
)
726 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
);
727 Error
*local_err
= NULL
;
730 ret
= bdrv_open_backing_file(s
->target
, NULL
, "backing", &local_err
);
732 error_propagate(errp
, local_err
);
736 error_setg(errp
, QERR_BLOCK_JOB_NOT_READY
, job
->id
);
740 /* check the target bs is not blocked and block all operations on it */
742 AioContext
*replace_aio_context
;
744 s
->to_replace
= bdrv_find_node(s
->replaces
);
745 if (!s
->to_replace
) {
746 error_setg(errp
, "Node name '%s' not found", s
->replaces
);
750 replace_aio_context
= bdrv_get_aio_context(s
->to_replace
);
751 aio_context_acquire(replace_aio_context
);
753 error_setg(&s
->replace_blocker
,
754 "block device is in use by block-job-complete");
755 bdrv_op_block_all(s
->to_replace
, s
->replace_blocker
);
756 bdrv_ref(s
->to_replace
);
758 aio_context_release(replace_aio_context
);
761 s
->should_complete
= true;
762 block_job_enter(&s
->common
);
765 static const BlockJobDriver mirror_job_driver
= {
766 .instance_size
= sizeof(MirrorBlockJob
),
767 .job_type
= BLOCK_JOB_TYPE_MIRROR
,
768 .set_speed
= mirror_set_speed
,
769 .iostatus_reset
= mirror_iostatus_reset
,
770 .complete
= mirror_complete
,
773 static const BlockJobDriver commit_active_job_driver
= {
774 .instance_size
= sizeof(MirrorBlockJob
),
775 .job_type
= BLOCK_JOB_TYPE_COMMIT
,
776 .set_speed
= mirror_set_speed
,
778 = mirror_iostatus_reset
,
779 .complete
= mirror_complete
,
782 static void mirror_start_job(BlockDriverState
*bs
, BlockDriverState
*target
,
783 const char *replaces
,
784 int64_t speed
, uint32_t granularity
,
786 BlockdevOnError on_source_error
,
787 BlockdevOnError on_target_error
,
789 BlockCompletionFunc
*cb
,
790 void *opaque
, Error
**errp
,
791 const BlockJobDriver
*driver
,
792 bool is_none_mode
, BlockDriverState
*base
)
795 BlockDriverState
*replaced_bs
;
797 if (granularity
== 0) {
798 granularity
= bdrv_get_default_bitmap_granularity(target
);
801 assert ((granularity
& (granularity
- 1)) == 0);
803 if ((on_source_error
== BLOCKDEV_ON_ERROR_STOP
||
804 on_source_error
== BLOCKDEV_ON_ERROR_ENOSPC
) &&
805 (!bs
->blk
|| !blk_iostatus_is_enabled(bs
->blk
))) {
806 error_setg(errp
, QERR_INVALID_PARAMETER
, "on-source-error");
811 error_setg(errp
, "Invalid parameter 'buf-size'");
816 buf_size
= DEFAULT_MIRROR_BUF_SIZE
;
819 /* We can't support this case as long as the block layer can't handle
820 * multiple BlockBackends per BlockDriverState. */
822 replaced_bs
= bdrv_lookup_bs(replaces
, replaces
, errp
);
823 if (replaced_bs
== NULL
) {
829 if (replaced_bs
->blk
&& target
->blk
) {
830 error_setg(errp
, "Can't create node with two BlockBackends");
834 s
= block_job_create(driver
, bs
, speed
, cb
, opaque
, errp
);
839 s
->replaces
= g_strdup(replaces
);
840 s
->on_source_error
= on_source_error
;
841 s
->on_target_error
= on_target_error
;
843 s
->is_none_mode
= is_none_mode
;
845 s
->granularity
= granularity
;
846 s
->buf_size
= ROUND_UP(buf_size
, granularity
);
849 s
->dirty_bitmap
= bdrv_create_dirty_bitmap(bs
, granularity
, NULL
, errp
);
850 if (!s
->dirty_bitmap
) {
852 block_job_unref(&s
->common
);
856 bdrv_op_block_all(s
->target
, s
->common
.blocker
);
858 bdrv_set_enable_write_cache(s
->target
, true);
859 if (s
->target
->blk
) {
860 blk_set_on_error(s
->target
->blk
, on_target_error
, on_target_error
);
861 blk_iostatus_enable(s
->target
->blk
);
863 s
->common
.co
= qemu_coroutine_create(mirror_run
);
864 trace_mirror_start(bs
, s
, s
->common
.co
, opaque
);
865 qemu_coroutine_enter(s
->common
.co
, s
);
868 void mirror_start(BlockDriverState
*bs
, BlockDriverState
*target
,
869 const char *replaces
,
870 int64_t speed
, uint32_t granularity
, int64_t buf_size
,
871 MirrorSyncMode mode
, BlockdevOnError on_source_error
,
872 BlockdevOnError on_target_error
,
874 BlockCompletionFunc
*cb
,
875 void *opaque
, Error
**errp
)
878 BlockDriverState
*base
;
880 if (mode
== MIRROR_SYNC_MODE_INCREMENTAL
) {
881 error_setg(errp
, "Sync mode 'incremental' not supported");
884 is_none_mode
= mode
== MIRROR_SYNC_MODE_NONE
;
885 base
= mode
== MIRROR_SYNC_MODE_TOP
? backing_bs(bs
) : NULL
;
886 mirror_start_job(bs
, target
, replaces
,
887 speed
, granularity
, buf_size
,
888 on_source_error
, on_target_error
, unmap
, cb
, opaque
, errp
,
889 &mirror_job_driver
, is_none_mode
, base
);
892 void commit_active_start(BlockDriverState
*bs
, BlockDriverState
*base
,
894 BlockdevOnError on_error
,
895 BlockCompletionFunc
*cb
,
896 void *opaque
, Error
**errp
)
898 int64_t length
, base_length
;
901 Error
*local_err
= NULL
;
903 orig_base_flags
= bdrv_get_flags(base
);
905 if (bdrv_reopen(base
, bs
->open_flags
, errp
)) {
909 length
= bdrv_getlength(bs
);
911 error_setg_errno(errp
, -length
,
912 "Unable to determine length of %s", bs
->filename
);
913 goto error_restore_flags
;
916 base_length
= bdrv_getlength(base
);
917 if (base_length
< 0) {
918 error_setg_errno(errp
, -base_length
,
919 "Unable to determine length of %s", base
->filename
);
920 goto error_restore_flags
;
923 if (length
> base_length
) {
924 ret
= bdrv_truncate(base
, length
);
926 error_setg_errno(errp
, -ret
,
927 "Top image %s is larger than base image %s, and "
928 "resize of base image failed",
929 bs
->filename
, base
->filename
);
930 goto error_restore_flags
;
935 mirror_start_job(bs
, base
, NULL
, speed
, 0, 0,
936 on_error
, on_error
, false, cb
, opaque
, &local_err
,
937 &commit_active_job_driver
, false, base
);
939 error_propagate(errp
, local_err
);
940 goto error_restore_flags
;
946 /* ignore error and errp for bdrv_reopen, because we want to propagate
947 * the original error */
948 bdrv_reopen(base
, orig_base_flags
, NULL
);