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"
15 #include "qemu/cutils.h"
16 #include "qemu/coroutine.h"
17 #include "qemu/range.h"
19 #include "block/blockjob_int.h"
20 #include "block/block_int.h"
21 #include "sysemu/block-backend.h"
22 #include "qapi/error.h"
23 #include "qapi/qmp/qerror.h"
24 #include "qemu/ratelimit.h"
25 #include "qemu/bitmap.h"
27 #define MAX_IN_FLIGHT 16
28 #define MAX_IO_BYTES (1 << 20) /* 1 Mb */
29 #define DEFAULT_MIRROR_BUF_SIZE (MAX_IN_FLIGHT * MAX_IO_BYTES)
31 /* The mirroring buffer is a list of granularity-sized chunks.
32 * Free chunks are organized in a list.
34 typedef struct MirrorBuffer
{
35 QSIMPLEQ_ENTRY(MirrorBuffer
) next
;
38 typedef struct MirrorOp MirrorOp
;
40 typedef struct MirrorBlockJob
{
43 BlockDriverState
*mirror_top_bs
;
44 BlockDriverState
*base
;
45 BlockDriverState
*base_overlay
;
47 /* The name of the graph node to replace */
49 /* The BDS to replace */
50 BlockDriverState
*to_replace
;
51 /* Used to block operations on the drive-mirror-replace target */
52 Error
*replace_blocker
;
54 BlockMirrorBackingMode backing_mode
;
55 /* Whether the target image requires explicit zero-initialization */
57 MirrorCopyMode copy_mode
;
58 BlockdevOnError on_source_error
, on_target_error
;
60 /* Set when the target is synced (dirty bitmap is clean, nothing
61 * in flight) and the job is running in active mode */
67 unsigned long *cow_bitmap
;
68 BdrvDirtyBitmap
*dirty_bitmap
;
69 BdrvDirtyBitmapIter
*dbi
;
71 QSIMPLEQ_HEAD(, MirrorBuffer
) buf_free
;
74 uint64_t last_pause_ns
;
75 unsigned long *in_flight_bitmap
;
77 int64_t bytes_in_flight
;
78 QTAILQ_HEAD(, MirrorOp
) ops_in_flight
;
81 int target_cluster_size
;
83 bool initial_zeroing_ongoing
;
84 int in_active_write_counter
;
89 typedef struct MirrorBDSOpaque
{
101 /* The pointee is set by mirror_co_read(), mirror_co_zero(), and
102 * mirror_co_discard() before yielding for the first time */
103 int64_t *bytes_handled
;
106 bool is_active_write
;
108 CoQueue waiting_requests
;
110 MirrorOp
*waiting_for_op
;
112 QTAILQ_ENTRY(MirrorOp
) next
;
115 typedef enum MirrorMethod
{
118 MIRROR_METHOD_DISCARD
,
121 static BlockErrorAction
mirror_error_action(MirrorBlockJob
*s
, bool read
,
125 s
->actively_synced
= false;
127 return block_job_error_action(&s
->common
, s
->on_source_error
,
130 return block_job_error_action(&s
->common
, s
->on_target_error
,
135 static void coroutine_fn
mirror_wait_on_conflicts(MirrorOp
*self
,
140 uint64_t self_start_chunk
= offset
/ s
->granularity
;
141 uint64_t self_end_chunk
= DIV_ROUND_UP(offset
+ bytes
, s
->granularity
);
142 uint64_t self_nb_chunks
= self_end_chunk
- self_start_chunk
;
144 while (find_next_bit(s
->in_flight_bitmap
, self_end_chunk
,
145 self_start_chunk
) < self_end_chunk
&&
150 QTAILQ_FOREACH(op
, &s
->ops_in_flight
, next
) {
151 uint64_t op_start_chunk
= op
->offset
/ s
->granularity
;
152 uint64_t op_nb_chunks
= DIV_ROUND_UP(op
->offset
+ op
->bytes
,
160 if (ranges_overlap(self_start_chunk
, self_nb_chunks
,
161 op_start_chunk
, op_nb_chunks
))
164 * If the operation is already (indirectly) waiting for us, or
165 * will wait for us as soon as it wakes up, then just go on
166 * (instead of producing a deadlock in the former case).
168 if (op
->waiting_for_op
) {
172 self
->waiting_for_op
= op
;
173 qemu_co_queue_wait(&op
->waiting_requests
, NULL
);
174 self
->waiting_for_op
= NULL
;
181 static void coroutine_fn
mirror_iteration_done(MirrorOp
*op
, int ret
)
183 MirrorBlockJob
*s
= op
->s
;
188 trace_mirror_iteration_done(s
, op
->offset
, op
->bytes
, ret
);
191 s
->bytes_in_flight
-= op
->bytes
;
193 for (i
= 0; i
< op
->qiov
.niov
; i
++) {
194 MirrorBuffer
*buf
= (MirrorBuffer
*) iov
[i
].iov_base
;
195 QSIMPLEQ_INSERT_TAIL(&s
->buf_free
, buf
, next
);
199 chunk_num
= op
->offset
/ s
->granularity
;
200 nb_chunks
= DIV_ROUND_UP(op
->bytes
, s
->granularity
);
202 bitmap_clear(s
->in_flight_bitmap
, chunk_num
, nb_chunks
);
203 QTAILQ_REMOVE(&s
->ops_in_flight
, op
, next
);
206 bitmap_set(s
->cow_bitmap
, chunk_num
, nb_chunks
);
208 if (!s
->initial_zeroing_ongoing
) {
209 job_progress_update(&s
->common
.job
, op
->bytes
);
212 qemu_iovec_destroy(&op
->qiov
);
214 qemu_co_queue_restart_all(&op
->waiting_requests
);
218 static void coroutine_fn
mirror_write_complete(MirrorOp
*op
, int ret
)
220 MirrorBlockJob
*s
= op
->s
;
223 BlockErrorAction action
;
225 bdrv_set_dirty_bitmap(s
->dirty_bitmap
, op
->offset
, op
->bytes
);
226 action
= mirror_error_action(s
, false, -ret
);
227 if (action
== BLOCK_ERROR_ACTION_REPORT
&& s
->ret
>= 0) {
232 mirror_iteration_done(op
, ret
);
235 static void coroutine_fn
mirror_read_complete(MirrorOp
*op
, int ret
)
237 MirrorBlockJob
*s
= op
->s
;
240 BlockErrorAction action
;
242 bdrv_set_dirty_bitmap(s
->dirty_bitmap
, op
->offset
, op
->bytes
);
243 action
= mirror_error_action(s
, true, -ret
);
244 if (action
== BLOCK_ERROR_ACTION_REPORT
&& s
->ret
>= 0) {
248 mirror_iteration_done(op
, ret
);
252 ret
= blk_co_pwritev(s
->target
, op
->offset
, op
->qiov
.size
, &op
->qiov
, 0);
253 mirror_write_complete(op
, ret
);
256 /* Clip bytes relative to offset to not exceed end-of-file */
257 static inline int64_t mirror_clip_bytes(MirrorBlockJob
*s
,
261 return MIN(bytes
, s
->bdev_length
- offset
);
264 /* Round offset and/or bytes to target cluster if COW is needed, and
265 * return the offset of the adjusted tail against original. */
266 static int mirror_cow_align(MirrorBlockJob
*s
, int64_t *offset
,
271 int64_t align_offset
= *offset
;
272 int64_t align_bytes
= *bytes
;
273 int max_bytes
= s
->granularity
* s
->max_iov
;
275 need_cow
= !test_bit(*offset
/ s
->granularity
, s
->cow_bitmap
);
276 need_cow
|= !test_bit((*offset
+ *bytes
- 1) / s
->granularity
,
279 bdrv_round_to_clusters(blk_bs(s
->target
), *offset
, *bytes
,
280 &align_offset
, &align_bytes
);
283 if (align_bytes
> max_bytes
) {
284 align_bytes
= max_bytes
;
286 align_bytes
= QEMU_ALIGN_DOWN(align_bytes
, s
->target_cluster_size
);
289 /* Clipping may result in align_bytes unaligned to chunk boundary, but
290 * that doesn't matter because it's already the end of source image. */
291 align_bytes
= mirror_clip_bytes(s
, align_offset
, align_bytes
);
293 ret
= align_offset
+ align_bytes
- (*offset
+ *bytes
);
294 *offset
= align_offset
;
295 *bytes
= align_bytes
;
300 static inline void coroutine_fn
301 mirror_wait_for_any_operation(MirrorBlockJob
*s
, bool active
)
305 QTAILQ_FOREACH(op
, &s
->ops_in_flight
, next
) {
306 /* Do not wait on pseudo ops, because it may in turn wait on
307 * some other operation to start, which may in fact be the
308 * caller of this function. Since there is only one pseudo op
309 * at any given time, we will always find some real operation
311 if (!op
->is_pseudo_op
&& op
->is_in_flight
&&
312 op
->is_active_write
== active
)
314 qemu_co_queue_wait(&op
->waiting_requests
, NULL
);
321 static inline void coroutine_fn
322 mirror_wait_for_free_in_flight_slot(MirrorBlockJob
*s
)
324 /* Only non-active operations use up in-flight slots */
325 mirror_wait_for_any_operation(s
, false);
328 /* Perform a mirror copy operation.
330 * *op->bytes_handled is set to the number of bytes copied after and
331 * including offset, excluding any bytes copied prior to offset due
332 * to alignment. This will be op->bytes if no alignment is necessary,
333 * or (new_end - op->offset) if the tail is rounded up or down due to
334 * alignment or buffer limit.
336 static void coroutine_fn
mirror_co_read(void *opaque
)
338 MirrorOp
*op
= opaque
;
339 MirrorBlockJob
*s
= op
->s
;
344 max_bytes
= s
->granularity
* s
->max_iov
;
346 /* We can only handle as much as buf_size at a time. */
347 op
->bytes
= MIN(s
->buf_size
, MIN(max_bytes
, op
->bytes
));
349 assert(op
->bytes
< BDRV_REQUEST_MAX_BYTES
);
350 *op
->bytes_handled
= op
->bytes
;
353 *op
->bytes_handled
+= mirror_cow_align(s
, &op
->offset
, &op
->bytes
);
355 /* Cannot exceed BDRV_REQUEST_MAX_BYTES + INT_MAX */
356 assert(*op
->bytes_handled
<= UINT_MAX
);
357 assert(op
->bytes
<= s
->buf_size
);
358 /* The offset is granularity-aligned because:
359 * 1) Caller passes in aligned values;
360 * 2) mirror_cow_align is used only when target cluster is larger. */
361 assert(QEMU_IS_ALIGNED(op
->offset
, s
->granularity
));
362 /* The range is sector-aligned, since bdrv_getlength() rounds up. */
363 assert(QEMU_IS_ALIGNED(op
->bytes
, BDRV_SECTOR_SIZE
));
364 nb_chunks
= DIV_ROUND_UP(op
->bytes
, s
->granularity
);
366 while (s
->buf_free_count
< nb_chunks
) {
367 trace_mirror_yield_in_flight(s
, op
->offset
, s
->in_flight
);
368 mirror_wait_for_free_in_flight_slot(s
);
371 /* Now make a QEMUIOVector taking enough granularity-sized chunks
374 qemu_iovec_init(&op
->qiov
, nb_chunks
);
375 while (nb_chunks
-- > 0) {
376 MirrorBuffer
*buf
= QSIMPLEQ_FIRST(&s
->buf_free
);
377 size_t remaining
= op
->bytes
- op
->qiov
.size
;
379 QSIMPLEQ_REMOVE_HEAD(&s
->buf_free
, next
);
381 qemu_iovec_add(&op
->qiov
, buf
, MIN(s
->granularity
, remaining
));
384 /* Copy the dirty cluster. */
386 s
->bytes_in_flight
+= op
->bytes
;
387 op
->is_in_flight
= true;
388 trace_mirror_one_iteration(s
, op
->offset
, op
->bytes
);
390 ret
= bdrv_co_preadv(s
->mirror_top_bs
->backing
, op
->offset
, op
->bytes
,
392 mirror_read_complete(op
, ret
);
395 static void coroutine_fn
mirror_co_zero(void *opaque
)
397 MirrorOp
*op
= opaque
;
401 op
->s
->bytes_in_flight
+= op
->bytes
;
402 *op
->bytes_handled
= op
->bytes
;
403 op
->is_in_flight
= true;
405 ret
= blk_co_pwrite_zeroes(op
->s
->target
, op
->offset
, op
->bytes
,
406 op
->s
->unmap
? BDRV_REQ_MAY_UNMAP
: 0);
407 mirror_write_complete(op
, ret
);
410 static void coroutine_fn
mirror_co_discard(void *opaque
)
412 MirrorOp
*op
= opaque
;
416 op
->s
->bytes_in_flight
+= op
->bytes
;
417 *op
->bytes_handled
= op
->bytes
;
418 op
->is_in_flight
= true;
420 ret
= blk_co_pdiscard(op
->s
->target
, op
->offset
, op
->bytes
);
421 mirror_write_complete(op
, ret
);
424 static unsigned mirror_perform(MirrorBlockJob
*s
, int64_t offset
,
425 unsigned bytes
, MirrorMethod mirror_method
)
429 int64_t bytes_handled
= -1;
431 op
= g_new(MirrorOp
, 1);
436 .bytes_handled
= &bytes_handled
,
438 qemu_co_queue_init(&op
->waiting_requests
);
440 switch (mirror_method
) {
441 case MIRROR_METHOD_COPY
:
442 co
= qemu_coroutine_create(mirror_co_read
, op
);
444 case MIRROR_METHOD_ZERO
:
445 co
= qemu_coroutine_create(mirror_co_zero
, op
);
447 case MIRROR_METHOD_DISCARD
:
448 co
= qemu_coroutine_create(mirror_co_discard
, op
);
455 QTAILQ_INSERT_TAIL(&s
->ops_in_flight
, op
, next
);
456 qemu_coroutine_enter(co
);
457 /* At this point, ownership of op has been moved to the coroutine
458 * and the object may already be freed */
460 /* Assert that this value has been set */
461 assert(bytes_handled
>= 0);
463 /* Same assertion as in mirror_co_read() (and for mirror_co_read()
464 * and mirror_co_discard(), bytes_handled == op->bytes, which
465 * is the @bytes parameter given to this function) */
466 assert(bytes_handled
<= UINT_MAX
);
467 return bytes_handled
;
470 static uint64_t coroutine_fn
mirror_iteration(MirrorBlockJob
*s
)
472 BlockDriverState
*source
= s
->mirror_top_bs
->backing
->bs
;
475 uint64_t delay_ns
= 0, ret
= 0;
476 /* At least the first dirty chunk is mirrored in one iteration. */
478 bool write_zeroes_ok
= bdrv_can_write_zeroes_with_unmap(blk_bs(s
->target
));
479 int max_io_bytes
= MAX(s
->buf_size
/ MAX_IN_FLIGHT
, MAX_IO_BYTES
);
481 bdrv_dirty_bitmap_lock(s
->dirty_bitmap
);
482 offset
= bdrv_dirty_iter_next(s
->dbi
);
484 bdrv_set_dirty_iter(s
->dbi
, 0);
485 offset
= bdrv_dirty_iter_next(s
->dbi
);
486 trace_mirror_restart_iter(s
, bdrv_get_dirty_count(s
->dirty_bitmap
));
489 bdrv_dirty_bitmap_unlock(s
->dirty_bitmap
);
491 mirror_wait_on_conflicts(NULL
, s
, offset
, 1);
493 job_pause_point(&s
->common
.job
);
495 /* Find the number of consective dirty chunks following the first dirty
496 * one, and wait for in flight requests in them. */
497 bdrv_dirty_bitmap_lock(s
->dirty_bitmap
);
498 while (nb_chunks
* s
->granularity
< s
->buf_size
) {
500 int64_t next_offset
= offset
+ nb_chunks
* s
->granularity
;
501 int64_t next_chunk
= next_offset
/ s
->granularity
;
502 if (next_offset
>= s
->bdev_length
||
503 !bdrv_dirty_bitmap_get_locked(s
->dirty_bitmap
, next_offset
)) {
506 if (test_bit(next_chunk
, s
->in_flight_bitmap
)) {
510 next_dirty
= bdrv_dirty_iter_next(s
->dbi
);
511 if (next_dirty
> next_offset
|| next_dirty
< 0) {
512 /* The bitmap iterator's cache is stale, refresh it */
513 bdrv_set_dirty_iter(s
->dbi
, next_offset
);
514 next_dirty
= bdrv_dirty_iter_next(s
->dbi
);
516 assert(next_dirty
== next_offset
);
520 /* Clear dirty bits before querying the block status, because
521 * calling bdrv_block_status_above could yield - if some blocks are
522 * marked dirty in this window, we need to know.
524 bdrv_reset_dirty_bitmap_locked(s
->dirty_bitmap
, offset
,
525 nb_chunks
* s
->granularity
);
526 bdrv_dirty_bitmap_unlock(s
->dirty_bitmap
);
528 /* Before claiming an area in the in-flight bitmap, we have to
529 * create a MirrorOp for it so that conflicting requests can wait
530 * for it. mirror_perform() will create the real MirrorOps later,
531 * for now we just create a pseudo operation that will wake up all
532 * conflicting requests once all real operations have been
534 pseudo_op
= g_new(MirrorOp
, 1);
535 *pseudo_op
= (MirrorOp
){
537 .bytes
= nb_chunks
* s
->granularity
,
538 .is_pseudo_op
= true,
540 qemu_co_queue_init(&pseudo_op
->waiting_requests
);
541 QTAILQ_INSERT_TAIL(&s
->ops_in_flight
, pseudo_op
, next
);
543 bitmap_set(s
->in_flight_bitmap
, offset
/ s
->granularity
, nb_chunks
);
544 while (nb_chunks
> 0 && offset
< s
->bdev_length
) {
547 int64_t io_bytes_acct
;
548 MirrorMethod mirror_method
= MIRROR_METHOD_COPY
;
550 assert(!(offset
% s
->granularity
));
551 ret
= bdrv_block_status_above(source
, NULL
, offset
,
552 nb_chunks
* s
->granularity
,
553 &io_bytes
, NULL
, NULL
);
555 io_bytes
= MIN(nb_chunks
* s
->granularity
, max_io_bytes
);
556 } else if (ret
& BDRV_BLOCK_DATA
) {
557 io_bytes
= MIN(io_bytes
, max_io_bytes
);
560 io_bytes
-= io_bytes
% s
->granularity
;
561 if (io_bytes
< s
->granularity
) {
562 io_bytes
= s
->granularity
;
563 } else if (ret
>= 0 && !(ret
& BDRV_BLOCK_DATA
)) {
564 int64_t target_offset
;
565 int64_t target_bytes
;
566 bdrv_round_to_clusters(blk_bs(s
->target
), offset
, io_bytes
,
567 &target_offset
, &target_bytes
);
568 if (target_offset
== offset
&&
569 target_bytes
== io_bytes
) {
570 mirror_method
= ret
& BDRV_BLOCK_ZERO
?
572 MIRROR_METHOD_DISCARD
;
576 while (s
->in_flight
>= MAX_IN_FLIGHT
) {
577 trace_mirror_yield_in_flight(s
, offset
, s
->in_flight
);
578 mirror_wait_for_free_in_flight_slot(s
);
586 io_bytes
= mirror_clip_bytes(s
, offset
, io_bytes
);
587 io_bytes
= mirror_perform(s
, offset
, io_bytes
, mirror_method
);
588 if (mirror_method
!= MIRROR_METHOD_COPY
&& write_zeroes_ok
) {
591 io_bytes_acct
= io_bytes
;
595 nb_chunks
-= DIV_ROUND_UP(io_bytes
, s
->granularity
);
596 delay_ns
= block_job_ratelimit_get_delay(&s
->common
, io_bytes_acct
);
601 QTAILQ_REMOVE(&s
->ops_in_flight
, pseudo_op
, next
);
602 qemu_co_queue_restart_all(&pseudo_op
->waiting_requests
);
608 static void mirror_free_init(MirrorBlockJob
*s
)
610 int granularity
= s
->granularity
;
611 size_t buf_size
= s
->buf_size
;
612 uint8_t *buf
= s
->buf
;
614 assert(s
->buf_free_count
== 0);
615 QSIMPLEQ_INIT(&s
->buf_free
);
616 while (buf_size
!= 0) {
617 MirrorBuffer
*cur
= (MirrorBuffer
*)buf
;
618 QSIMPLEQ_INSERT_TAIL(&s
->buf_free
, cur
, next
);
620 buf_size
-= granularity
;
625 /* This is also used for the .pause callback. There is no matching
626 * mirror_resume() because mirror_run() will begin iterating again
627 * when the job is resumed.
629 static void coroutine_fn
mirror_wait_for_all_io(MirrorBlockJob
*s
)
631 while (s
->in_flight
> 0) {
632 mirror_wait_for_free_in_flight_slot(s
);
637 * mirror_exit_common: handle both abort() and prepare() cases.
638 * for .prepare, returns 0 on success and -errno on failure.
639 * for .abort cases, denoted by abort = true, MUST return 0.
641 static int mirror_exit_common(Job
*job
)
643 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
.job
);
644 BlockJob
*bjob
= &s
->common
;
645 MirrorBDSOpaque
*bs_opaque
;
646 AioContext
*replace_aio_context
= NULL
;
647 BlockDriverState
*src
;
648 BlockDriverState
*target_bs
;
649 BlockDriverState
*mirror_top_bs
;
650 Error
*local_err
= NULL
;
651 bool abort
= job
->ret
< 0;
659 mirror_top_bs
= s
->mirror_top_bs
;
660 bs_opaque
= mirror_top_bs
->opaque
;
661 src
= mirror_top_bs
->backing
->bs
;
662 target_bs
= blk_bs(s
->target
);
664 if (bdrv_chain_contains(src
, target_bs
)) {
665 bdrv_unfreeze_backing_chain(mirror_top_bs
, target_bs
);
668 bdrv_release_dirty_bitmap(s
->dirty_bitmap
);
670 /* Make sure that the source BDS doesn't go away during bdrv_replace_node,
671 * before we can call bdrv_drained_end */
673 bdrv_ref(mirror_top_bs
);
677 * Remove target parent that still uses BLK_PERM_WRITE/RESIZE before
678 * inserting target_bs at s->to_replace, where we might not be able to get
681 blk_unref(s
->target
);
684 /* We don't access the source any more. Dropping any WRITE/RESIZE is
685 * required before it could become a backing file of target_bs. Not having
686 * these permissions any more means that we can't allow any new requests on
687 * mirror_top_bs from now on, so keep it drained. */
688 bdrv_drained_begin(mirror_top_bs
);
689 bs_opaque
->stop
= true;
690 bdrv_child_refresh_perms(mirror_top_bs
, mirror_top_bs
->backing
,
692 if (!abort
&& s
->backing_mode
== MIRROR_SOURCE_BACKING_CHAIN
) {
693 BlockDriverState
*backing
= s
->is_none_mode
? src
: s
->base
;
694 BlockDriverState
*unfiltered_target
= bdrv_skip_filters(target_bs
);
696 if (bdrv_cow_bs(unfiltered_target
) != backing
) {
697 bdrv_set_backing_hd(unfiltered_target
, backing
, &local_err
);
699 error_report_err(local_err
);
704 } else if (!abort
&& s
->backing_mode
== MIRROR_OPEN_BACKING_CHAIN
) {
705 assert(!bdrv_backing_chain_next(target_bs
));
706 ret
= bdrv_open_backing_file(bdrv_skip_filters(target_bs
), NULL
,
707 "backing", &local_err
);
709 error_report_err(local_err
);
715 replace_aio_context
= bdrv_get_aio_context(s
->to_replace
);
716 aio_context_acquire(replace_aio_context
);
719 if (s
->should_complete
&& !abort
) {
720 BlockDriverState
*to_replace
= s
->to_replace
?: src
;
721 bool ro
= bdrv_is_read_only(to_replace
);
723 if (ro
!= bdrv_is_read_only(target_bs
)) {
724 bdrv_reopen_set_read_only(target_bs
, ro
, NULL
);
727 /* The mirror job has no requests in flight any more, but we need to
728 * drain potential other users of the BDS before changing the graph. */
730 bdrv_drained_begin(target_bs
);
732 * Cannot use check_to_replace_node() here, because that would
733 * check for an op blocker on @to_replace, and we have our own
736 if (bdrv_recurse_can_replace(src
, to_replace
)) {
737 bdrv_replace_node(to_replace
, target_bs
, &local_err
);
739 error_setg(&local_err
, "Can no longer replace '%s' by '%s', "
740 "because it can no longer be guaranteed that doing so "
741 "would not lead to an abrupt change of visible data",
742 to_replace
->node_name
, target_bs
->node_name
);
744 bdrv_drained_end(target_bs
);
746 error_report_err(local_err
);
751 bdrv_op_unblock_all(s
->to_replace
, s
->replace_blocker
);
752 error_free(s
->replace_blocker
);
753 bdrv_unref(s
->to_replace
);
755 if (replace_aio_context
) {
756 aio_context_release(replace_aio_context
);
759 bdrv_unref(target_bs
);
762 * Remove the mirror filter driver from the graph. Before this, get rid of
763 * the blockers on the intermediate nodes so that the resulting state is
766 block_job_remove_all_bdrv(bjob
);
767 bdrv_replace_node(mirror_top_bs
, mirror_top_bs
->backing
->bs
, &error_abort
);
769 /* We just changed the BDS the job BB refers to (with either or both of the
770 * bdrv_replace_node() calls), so switch the BB back so the cleanup does
771 * the right thing. We don't need any permissions any more now. */
772 blk_remove_bs(bjob
->blk
);
773 blk_set_perm(bjob
->blk
, 0, BLK_PERM_ALL
, &error_abort
);
774 blk_insert_bs(bjob
->blk
, mirror_top_bs
, &error_abort
);
776 bs_opaque
->job
= NULL
;
778 bdrv_drained_end(src
);
779 bdrv_drained_end(mirror_top_bs
);
781 bdrv_unref(mirror_top_bs
);
787 static int mirror_prepare(Job
*job
)
789 return mirror_exit_common(job
);
792 static void mirror_abort(Job
*job
)
794 int ret
= mirror_exit_common(job
);
798 static void coroutine_fn
mirror_throttle(MirrorBlockJob
*s
)
800 int64_t now
= qemu_clock_get_ns(QEMU_CLOCK_REALTIME
);
802 if (now
- s
->last_pause_ns
> BLOCK_JOB_SLICE_TIME
) {
803 s
->last_pause_ns
= now
;
804 job_sleep_ns(&s
->common
.job
, 0);
806 job_pause_point(&s
->common
.job
);
810 static int coroutine_fn
mirror_dirty_init(MirrorBlockJob
*s
)
813 BlockDriverState
*bs
= s
->mirror_top_bs
->backing
->bs
;
814 BlockDriverState
*target_bs
= blk_bs(s
->target
);
818 if (s
->zero_target
) {
819 if (!bdrv_can_write_zeroes_with_unmap(target_bs
)) {
820 bdrv_set_dirty_bitmap(s
->dirty_bitmap
, 0, s
->bdev_length
);
824 s
->initial_zeroing_ongoing
= true;
825 for (offset
= 0; offset
< s
->bdev_length
; ) {
826 int bytes
= MIN(s
->bdev_length
- offset
,
827 QEMU_ALIGN_DOWN(INT_MAX
, s
->granularity
));
831 if (job_is_cancelled(&s
->common
.job
)) {
832 s
->initial_zeroing_ongoing
= false;
836 if (s
->in_flight
>= MAX_IN_FLIGHT
) {
837 trace_mirror_yield(s
, UINT64_MAX
, s
->buf_free_count
,
839 mirror_wait_for_free_in_flight_slot(s
);
843 mirror_perform(s
, offset
, bytes
, MIRROR_METHOD_ZERO
);
847 mirror_wait_for_all_io(s
);
848 s
->initial_zeroing_ongoing
= false;
851 /* First part, loop on the sectors and initialize the dirty bitmap. */
852 for (offset
= 0; offset
< s
->bdev_length
; ) {
853 /* Just to make sure we are not exceeding int limit. */
854 int bytes
= MIN(s
->bdev_length
- offset
,
855 QEMU_ALIGN_DOWN(INT_MAX
, s
->granularity
));
859 if (job_is_cancelled(&s
->common
.job
)) {
863 ret
= bdrv_is_allocated_above(bs
, s
->base_overlay
, true, offset
, bytes
,
871 bdrv_set_dirty_bitmap(s
->dirty_bitmap
, offset
, count
);
878 /* Called when going out of the streaming phase to flush the bulk of the
879 * data to the medium, or just before completing.
881 static int mirror_flush(MirrorBlockJob
*s
)
883 int ret
= blk_flush(s
->target
);
885 if (mirror_error_action(s
, false, -ret
) == BLOCK_ERROR_ACTION_REPORT
) {
892 static int coroutine_fn
mirror_run(Job
*job
, Error
**errp
)
894 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
.job
);
895 BlockDriverState
*bs
= s
->mirror_top_bs
->backing
->bs
;
896 BlockDriverState
*target_bs
= blk_bs(s
->target
);
897 bool need_drain
= true;
899 int64_t target_length
;
901 char backing_filename
[2]; /* we only need 2 characters because we are only
902 checking for a NULL string */
905 if (job_is_cancelled(&s
->common
.job
)) {
909 s
->bdev_length
= bdrv_getlength(bs
);
910 if (s
->bdev_length
< 0) {
911 ret
= s
->bdev_length
;
915 target_length
= blk_getlength(s
->target
);
916 if (target_length
< 0) {
921 /* Active commit must resize the base image if its size differs from the
923 if (s
->base
== blk_bs(s
->target
)) {
924 if (s
->bdev_length
> target_length
) {
925 ret
= blk_truncate(s
->target
, s
->bdev_length
, false,
926 PREALLOC_MODE_OFF
, 0, NULL
);
931 } else if (s
->bdev_length
!= target_length
) {
932 error_setg(errp
, "Source and target image have different sizes");
937 if (s
->bdev_length
== 0) {
938 /* Transition to the READY state and wait for complete. */
939 job_transition_to_ready(&s
->common
.job
);
941 s
->actively_synced
= true;
942 while (!job_is_cancelled(&s
->common
.job
) && !s
->should_complete
) {
943 job_yield(&s
->common
.job
);
945 s
->common
.job
.cancelled
= false;
949 length
= DIV_ROUND_UP(s
->bdev_length
, s
->granularity
);
950 s
->in_flight_bitmap
= bitmap_new(length
);
952 /* If we have no backing file yet in the destination, we cannot let
953 * the destination do COW. Instead, we copy sectors around the
954 * dirty data if needed. We need a bitmap to do that.
956 bdrv_get_backing_filename(target_bs
, backing_filename
,
957 sizeof(backing_filename
));
958 if (!bdrv_get_info(target_bs
, &bdi
) && bdi
.cluster_size
) {
959 s
->target_cluster_size
= bdi
.cluster_size
;
961 s
->target_cluster_size
= BDRV_SECTOR_SIZE
;
963 if (backing_filename
[0] && !bdrv_backing_chain_next(target_bs
) &&
964 s
->granularity
< s
->target_cluster_size
) {
965 s
->buf_size
= MAX(s
->buf_size
, s
->target_cluster_size
);
966 s
->cow_bitmap
= bitmap_new(length
);
968 s
->max_iov
= MIN(bs
->bl
.max_iov
, target_bs
->bl
.max_iov
);
970 s
->buf
= qemu_try_blockalign(bs
, s
->buf_size
);
971 if (s
->buf
== NULL
) {
978 s
->last_pause_ns
= qemu_clock_get_ns(QEMU_CLOCK_REALTIME
);
979 if (!s
->is_none_mode
) {
980 ret
= mirror_dirty_init(s
);
981 if (ret
< 0 || job_is_cancelled(&s
->common
.job
)) {
987 s
->dbi
= bdrv_dirty_iter_new(s
->dirty_bitmap
);
989 uint64_t delay_ns
= 0;
991 bool should_complete
;
993 /* Do not start passive operations while there are active
994 * writes in progress */
995 while (s
->in_active_write_counter
) {
996 mirror_wait_for_any_operation(s
, true);
1001 goto immediate_exit
;
1004 job_pause_point(&s
->common
.job
);
1006 cnt
= bdrv_get_dirty_count(s
->dirty_bitmap
);
1007 /* cnt is the number of dirty bytes remaining and s->bytes_in_flight is
1008 * the number of bytes currently being processed; together those are
1009 * the current remaining operation length */
1010 job_progress_set_remaining(&s
->common
.job
, s
->bytes_in_flight
+ cnt
);
1012 /* Note that even when no rate limit is applied we need to yield
1013 * periodically with no pending I/O so that bdrv_drain_all() returns.
1014 * We do so every BLKOCK_JOB_SLICE_TIME nanoseconds, or when there is
1015 * an error, or when the source is clean, whichever comes first. */
1016 delta
= qemu_clock_get_ns(QEMU_CLOCK_REALTIME
) - s
->last_pause_ns
;
1017 if (delta
< BLOCK_JOB_SLICE_TIME
&&
1018 s
->common
.iostatus
== BLOCK_DEVICE_IO_STATUS_OK
) {
1019 if (s
->in_flight
>= MAX_IN_FLIGHT
|| s
->buf_free_count
== 0 ||
1020 (cnt
== 0 && s
->in_flight
> 0)) {
1021 trace_mirror_yield(s
, cnt
, s
->buf_free_count
, s
->in_flight
);
1022 mirror_wait_for_free_in_flight_slot(s
);
1024 } else if (cnt
!= 0) {
1025 delay_ns
= mirror_iteration(s
);
1029 should_complete
= false;
1030 if (s
->in_flight
== 0 && cnt
== 0) {
1031 trace_mirror_before_flush(s
);
1033 if (mirror_flush(s
) < 0) {
1034 /* Go check s->ret. */
1037 /* We're out of the streaming phase. From now on, if the job
1038 * is cancelled we will actually complete all pending I/O and
1039 * report completion. This way, block-job-cancel will leave
1040 * the target in a consistent state.
1042 job_transition_to_ready(&s
->common
.job
);
1044 if (s
->copy_mode
!= MIRROR_COPY_MODE_BACKGROUND
) {
1045 s
->actively_synced
= true;
1049 should_complete
= s
->should_complete
||
1050 job_is_cancelled(&s
->common
.job
);
1051 cnt
= bdrv_get_dirty_count(s
->dirty_bitmap
);
1054 if (cnt
== 0 && should_complete
) {
1055 /* The dirty bitmap is not updated while operations are pending.
1056 * If we're about to exit, wait for pending operations before
1057 * calling bdrv_get_dirty_count(bs), or we may exit while the
1058 * source has dirty data to copy!
1060 * Note that I/O can be submitted by the guest while
1061 * mirror_populate runs, so pause it now. Before deciding
1062 * whether to switch to target check one last time if I/O has
1063 * come in the meanwhile, and if not flush the data to disk.
1065 trace_mirror_before_drain(s
, cnt
);
1068 bdrv_drained_begin(bs
);
1069 cnt
= bdrv_get_dirty_count(s
->dirty_bitmap
);
1070 if (cnt
> 0 || mirror_flush(s
) < 0) {
1071 bdrv_drained_end(bs
);
1072 s
->in_drain
= false;
1076 /* The two disks are in sync. Exit and report successful
1079 assert(QLIST_EMPTY(&bs
->tracked_requests
));
1080 s
->common
.job
.cancelled
= false;
1087 if (s
->synced
&& !should_complete
) {
1088 delay_ns
= (s
->in_flight
== 0 &&
1089 cnt
== 0 ? BLOCK_JOB_SLICE_TIME
: 0);
1091 trace_mirror_before_sleep(s
, cnt
, s
->synced
, delay_ns
);
1092 job_sleep_ns(&s
->common
.job
, delay_ns
);
1093 if (job_is_cancelled(&s
->common
.job
) &&
1094 (!s
->synced
|| s
->common
.job
.force_cancel
))
1098 s
->last_pause_ns
= qemu_clock_get_ns(QEMU_CLOCK_REALTIME
);
1102 if (s
->in_flight
> 0) {
1103 /* We get here only if something went wrong. Either the job failed,
1104 * or it was cancelled prematurely so that we do not guarantee that
1105 * the target is a copy of the source.
1107 assert(ret
< 0 || ((s
->common
.job
.force_cancel
|| !s
->synced
) &&
1108 job_is_cancelled(&s
->common
.job
)));
1110 mirror_wait_for_all_io(s
);
1113 assert(s
->in_flight
== 0);
1115 g_free(s
->cow_bitmap
);
1116 g_free(s
->in_flight_bitmap
);
1117 bdrv_dirty_iter_free(s
->dbi
);
1121 bdrv_drained_begin(bs
);
1127 static void mirror_complete(Job
*job
, Error
**errp
)
1129 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
.job
);
1132 error_setg(errp
, "The active block job '%s' cannot be completed",
1137 /* block all operations on to_replace bs */
1139 AioContext
*replace_aio_context
;
1141 s
->to_replace
= bdrv_find_node(s
->replaces
);
1142 if (!s
->to_replace
) {
1143 error_setg(errp
, "Node name '%s' not found", s
->replaces
);
1147 replace_aio_context
= bdrv_get_aio_context(s
->to_replace
);
1148 aio_context_acquire(replace_aio_context
);
1150 /* TODO Translate this into permission system. Current definition of
1151 * GRAPH_MOD would require to request it for the parents; they might
1152 * not even be BlockDriverStates, however, so a BdrvChild can't address
1153 * them. May need redefinition of GRAPH_MOD. */
1154 error_setg(&s
->replace_blocker
,
1155 "block device is in use by block-job-complete");
1156 bdrv_op_block_all(s
->to_replace
, s
->replace_blocker
);
1157 bdrv_ref(s
->to_replace
);
1159 aio_context_release(replace_aio_context
);
1162 s
->should_complete
= true;
1164 /* If the job is paused, it will be re-entered when it is resumed */
1170 static void coroutine_fn
mirror_pause(Job
*job
)
1172 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
.job
);
1174 mirror_wait_for_all_io(s
);
1177 static bool mirror_drained_poll(BlockJob
*job
)
1179 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
);
1181 /* If the job isn't paused nor cancelled, we can't be sure that it won't
1182 * issue more requests. We make an exception if we've reached this point
1183 * from one of our own drain sections, to avoid a deadlock waiting for
1186 if (!s
->common
.job
.paused
&& !s
->common
.job
.cancelled
&& !s
->in_drain
) {
1190 return !!s
->in_flight
;
1193 static void mirror_cancel(Job
*job
, bool force
)
1195 MirrorBlockJob
*s
= container_of(job
, MirrorBlockJob
, common
.job
);
1196 BlockDriverState
*target
= blk_bs(s
->target
);
1198 if (force
|| !job_is_ready(job
)) {
1199 bdrv_cancel_in_flight(target
);
1203 static const BlockJobDriver mirror_job_driver
= {
1205 .instance_size
= sizeof(MirrorBlockJob
),
1206 .job_type
= JOB_TYPE_MIRROR
,
1207 .free
= block_job_free
,
1208 .user_resume
= block_job_user_resume
,
1210 .prepare
= mirror_prepare
,
1211 .abort
= mirror_abort
,
1212 .pause
= mirror_pause
,
1213 .complete
= mirror_complete
,
1214 .cancel
= mirror_cancel
,
1216 .drained_poll
= mirror_drained_poll
,
1219 static const BlockJobDriver commit_active_job_driver
= {
1221 .instance_size
= sizeof(MirrorBlockJob
),
1222 .job_type
= JOB_TYPE_COMMIT
,
1223 .free
= block_job_free
,
1224 .user_resume
= block_job_user_resume
,
1226 .prepare
= mirror_prepare
,
1227 .abort
= mirror_abort
,
1228 .pause
= mirror_pause
,
1229 .complete
= mirror_complete
,
1231 .drained_poll
= mirror_drained_poll
,
1234 static void coroutine_fn
1235 do_sync_target_write(MirrorBlockJob
*job
, MirrorMethod method
,
1236 uint64_t offset
, uint64_t bytes
,
1237 QEMUIOVector
*qiov
, int flags
)
1240 size_t qiov_offset
= 0;
1241 int64_t bitmap_offset
, bitmap_end
;
1243 if (!QEMU_IS_ALIGNED(offset
, job
->granularity
) &&
1244 bdrv_dirty_bitmap_get(job
->dirty_bitmap
, offset
))
1247 * Dirty unaligned padding: ignore it.
1250 * 1. If we copy it, we can't reset corresponding bit in
1251 * dirty_bitmap as there may be some "dirty" bytes still not
1253 * 2. It's already dirty, so skipping it we don't diverge mirror
1256 * Note, that because of this, guest write may have no contribution
1257 * into mirror converge, but that's not bad, as we have background
1258 * process of mirroring. If under some bad circumstances (high guest
1259 * IO load) background process starve, we will not converge anyway,
1260 * even if each write will contribute, as guest is not guaranteed to
1261 * rewrite the whole disk.
1263 qiov_offset
= QEMU_ALIGN_UP(offset
, job
->granularity
) - offset
;
1264 if (bytes
<= qiov_offset
) {
1265 /* nothing to do after shrink */
1268 offset
+= qiov_offset
;
1269 bytes
-= qiov_offset
;
1272 if (!QEMU_IS_ALIGNED(offset
+ bytes
, job
->granularity
) &&
1273 bdrv_dirty_bitmap_get(job
->dirty_bitmap
, offset
+ bytes
- 1))
1275 uint64_t tail
= (offset
+ bytes
) % job
->granularity
;
1277 if (bytes
<= tail
) {
1278 /* nothing to do after shrink */
1285 * Tails are either clean or shrunk, so for bitmap resetting
1286 * we safely align the range down.
1288 bitmap_offset
= QEMU_ALIGN_UP(offset
, job
->granularity
);
1289 bitmap_end
= QEMU_ALIGN_DOWN(offset
+ bytes
, job
->granularity
);
1290 if (bitmap_offset
< bitmap_end
) {
1291 bdrv_reset_dirty_bitmap(job
->dirty_bitmap
, bitmap_offset
,
1292 bitmap_end
- bitmap_offset
);
1295 job_progress_increase_remaining(&job
->common
.job
, bytes
);
1298 case MIRROR_METHOD_COPY
:
1299 ret
= blk_co_pwritev_part(job
->target
, offset
, bytes
,
1300 qiov
, qiov_offset
, flags
);
1303 case MIRROR_METHOD_ZERO
:
1305 ret
= blk_co_pwrite_zeroes(job
->target
, offset
, bytes
, flags
);
1308 case MIRROR_METHOD_DISCARD
:
1310 ret
= blk_co_pdiscard(job
->target
, offset
, bytes
);
1318 job_progress_update(&job
->common
.job
, bytes
);
1320 BlockErrorAction action
;
1323 * We failed, so we should mark dirty the whole area, aligned up.
1324 * Note that we don't care about shrunk tails if any: they were dirty
1325 * at function start, and they must be still dirty, as we've locked
1326 * the region for in-flight op.
1328 bitmap_offset
= QEMU_ALIGN_DOWN(offset
, job
->granularity
);
1329 bitmap_end
= QEMU_ALIGN_UP(offset
+ bytes
, job
->granularity
);
1330 bdrv_set_dirty_bitmap(job
->dirty_bitmap
, bitmap_offset
,
1331 bitmap_end
- bitmap_offset
);
1332 job
->actively_synced
= false;
1334 action
= mirror_error_action(job
, false, -ret
);
1335 if (action
== BLOCK_ERROR_ACTION_REPORT
) {
1343 static MirrorOp
*coroutine_fn
active_write_prepare(MirrorBlockJob
*s
,
1348 uint64_t start_chunk
= offset
/ s
->granularity
;
1349 uint64_t end_chunk
= DIV_ROUND_UP(offset
+ bytes
, s
->granularity
);
1351 op
= g_new(MirrorOp
, 1);
1356 .is_active_write
= true,
1357 .is_in_flight
= true,
1358 .co
= qemu_coroutine_self(),
1360 qemu_co_queue_init(&op
->waiting_requests
);
1361 QTAILQ_INSERT_TAIL(&s
->ops_in_flight
, op
, next
);
1363 s
->in_active_write_counter
++;
1365 mirror_wait_on_conflicts(op
, s
, offset
, bytes
);
1367 bitmap_set(s
->in_flight_bitmap
, start_chunk
, end_chunk
- start_chunk
);
1372 static void coroutine_fn
active_write_settle(MirrorOp
*op
)
1374 uint64_t start_chunk
= op
->offset
/ op
->s
->granularity
;
1375 uint64_t end_chunk
= DIV_ROUND_UP(op
->offset
+ op
->bytes
,
1376 op
->s
->granularity
);
1378 if (!--op
->s
->in_active_write_counter
&& op
->s
->actively_synced
) {
1379 BdrvChild
*source
= op
->s
->mirror_top_bs
->backing
;
1381 if (QLIST_FIRST(&source
->bs
->parents
) == source
&&
1382 QLIST_NEXT(source
, next_parent
) == NULL
)
1384 /* Assert that we are back in sync once all active write
1385 * operations are settled.
1386 * Note that we can only assert this if the mirror node
1387 * is the source node's only parent. */
1388 assert(!bdrv_get_dirty_count(op
->s
->dirty_bitmap
));
1391 bitmap_clear(op
->s
->in_flight_bitmap
, start_chunk
, end_chunk
- start_chunk
);
1392 QTAILQ_REMOVE(&op
->s
->ops_in_flight
, op
, next
);
1393 qemu_co_queue_restart_all(&op
->waiting_requests
);
1397 static int coroutine_fn
bdrv_mirror_top_preadv(BlockDriverState
*bs
,
1398 uint64_t offset
, uint64_t bytes
, QEMUIOVector
*qiov
, int flags
)
1400 return bdrv_co_preadv(bs
->backing
, offset
, bytes
, qiov
, flags
);
1403 static int coroutine_fn
bdrv_mirror_top_do_write(BlockDriverState
*bs
,
1404 MirrorMethod method
, uint64_t offset
, uint64_t bytes
, QEMUIOVector
*qiov
,
1407 MirrorOp
*op
= NULL
;
1408 MirrorBDSOpaque
*s
= bs
->opaque
;
1410 bool copy_to_target
;
1412 copy_to_target
= s
->job
->ret
>= 0 &&
1413 s
->job
->copy_mode
== MIRROR_COPY_MODE_WRITE_BLOCKING
;
1415 if (copy_to_target
) {
1416 op
= active_write_prepare(s
->job
, offset
, bytes
);
1420 case MIRROR_METHOD_COPY
:
1421 ret
= bdrv_co_pwritev(bs
->backing
, offset
, bytes
, qiov
, flags
);
1424 case MIRROR_METHOD_ZERO
:
1425 ret
= bdrv_co_pwrite_zeroes(bs
->backing
, offset
, bytes
, flags
);
1428 case MIRROR_METHOD_DISCARD
:
1429 ret
= bdrv_co_pdiscard(bs
->backing
, offset
, bytes
);
1440 if (copy_to_target
) {
1441 do_sync_target_write(s
->job
, method
, offset
, bytes
, qiov
, flags
);
1445 if (copy_to_target
) {
1446 active_write_settle(op
);
1451 static int coroutine_fn
bdrv_mirror_top_pwritev(BlockDriverState
*bs
,
1452 uint64_t offset
, uint64_t bytes
, QEMUIOVector
*qiov
, int flags
)
1454 MirrorBDSOpaque
*s
= bs
->opaque
;
1455 QEMUIOVector bounce_qiov
;
1458 bool copy_to_target
;
1460 copy_to_target
= s
->job
->ret
>= 0 &&
1461 s
->job
->copy_mode
== MIRROR_COPY_MODE_WRITE_BLOCKING
;
1463 if (copy_to_target
) {
1464 /* The guest might concurrently modify the data to write; but
1465 * the data on source and destination must match, so we have
1466 * to use a bounce buffer if we are going to write to the
1468 bounce_buf
= qemu_blockalign(bs
, bytes
);
1469 iov_to_buf_full(qiov
->iov
, qiov
->niov
, 0, bounce_buf
, bytes
);
1471 qemu_iovec_init(&bounce_qiov
, 1);
1472 qemu_iovec_add(&bounce_qiov
, bounce_buf
, bytes
);
1473 qiov
= &bounce_qiov
;
1476 ret
= bdrv_mirror_top_do_write(bs
, MIRROR_METHOD_COPY
, offset
, bytes
, qiov
,
1479 if (copy_to_target
) {
1480 qemu_iovec_destroy(&bounce_qiov
);
1481 qemu_vfree(bounce_buf
);
1487 static int coroutine_fn
bdrv_mirror_top_flush(BlockDriverState
*bs
)
1489 if (bs
->backing
== NULL
) {
1490 /* we can be here after failed bdrv_append in mirror_start_job */
1493 return bdrv_co_flush(bs
->backing
->bs
);
1496 static int coroutine_fn
bdrv_mirror_top_pwrite_zeroes(BlockDriverState
*bs
,
1497 int64_t offset
, int bytes
, BdrvRequestFlags flags
)
1499 return bdrv_mirror_top_do_write(bs
, MIRROR_METHOD_ZERO
, offset
, bytes
, NULL
,
1503 static int coroutine_fn
bdrv_mirror_top_pdiscard(BlockDriverState
*bs
,
1504 int64_t offset
, int bytes
)
1506 return bdrv_mirror_top_do_write(bs
, MIRROR_METHOD_DISCARD
, offset
, bytes
,
1510 static void bdrv_mirror_top_refresh_filename(BlockDriverState
*bs
)
1512 if (bs
->backing
== NULL
) {
1513 /* we can be here after failed bdrv_attach_child in
1514 * bdrv_set_backing_hd */
1517 pstrcpy(bs
->exact_filename
, sizeof(bs
->exact_filename
),
1518 bs
->backing
->bs
->filename
);
1521 static void bdrv_mirror_top_child_perm(BlockDriverState
*bs
, BdrvChild
*c
,
1523 BlockReopenQueue
*reopen_queue
,
1524 uint64_t perm
, uint64_t shared
,
1525 uint64_t *nperm
, uint64_t *nshared
)
1527 MirrorBDSOpaque
*s
= bs
->opaque
;
1531 * If the job is to be stopped, we do not need to forward
1532 * anything to the real image.
1535 *nshared
= BLK_PERM_ALL
;
1539 bdrv_default_perms(bs
, c
, role
, reopen_queue
,
1540 perm
, shared
, nperm
, nshared
);
1544 * For commit jobs, we cannot take CONSISTENT_READ, because
1545 * that permission is unshared for everything above the base
1546 * node (except for filters on the base node).
1547 * We also have to force-share the WRITE permission, or
1548 * otherwise we would block ourselves at the base node (if
1549 * writes are blocked for a node, they are also blocked for
1550 * its backing file).
1551 * (We could also share RESIZE, because it may be needed for
1552 * the target if its size is less than the top node's; but
1553 * bdrv_default_perms_for_cow() automatically shares RESIZE
1554 * for backing nodes if WRITE is shared, so there is no need
1557 *nperm
&= ~BLK_PERM_CONSISTENT_READ
;
1558 *nshared
|= BLK_PERM_WRITE
;
1562 /* Dummy node that provides consistent read to its users without requiring it
1563 * from its backing file and that allows writes on the backing file chain. */
1564 static BlockDriver bdrv_mirror_top
= {
1565 .format_name
= "mirror_top",
1566 .bdrv_co_preadv
= bdrv_mirror_top_preadv
,
1567 .bdrv_co_pwritev
= bdrv_mirror_top_pwritev
,
1568 .bdrv_co_pwrite_zeroes
= bdrv_mirror_top_pwrite_zeroes
,
1569 .bdrv_co_pdiscard
= bdrv_mirror_top_pdiscard
,
1570 .bdrv_co_flush
= bdrv_mirror_top_flush
,
1571 .bdrv_refresh_filename
= bdrv_mirror_top_refresh_filename
,
1572 .bdrv_child_perm
= bdrv_mirror_top_child_perm
,
1577 static BlockJob
*mirror_start_job(
1578 const char *job_id
, BlockDriverState
*bs
,
1579 int creation_flags
, BlockDriverState
*target
,
1580 const char *replaces
, int64_t speed
,
1581 uint32_t granularity
, int64_t buf_size
,
1582 BlockMirrorBackingMode backing_mode
,
1584 BlockdevOnError on_source_error
,
1585 BlockdevOnError on_target_error
,
1587 BlockCompletionFunc
*cb
,
1589 const BlockJobDriver
*driver
,
1590 bool is_none_mode
, BlockDriverState
*base
,
1591 bool auto_complete
, const char *filter_node_name
,
1592 bool is_mirror
, MirrorCopyMode copy_mode
,
1596 MirrorBDSOpaque
*bs_opaque
;
1597 BlockDriverState
*mirror_top_bs
;
1598 bool target_is_backing
;
1599 uint64_t target_perms
, target_shared_perms
;
1602 if (granularity
== 0) {
1603 granularity
= bdrv_get_default_bitmap_granularity(target
);
1606 assert(is_power_of_2(granularity
));
1609 error_setg(errp
, "Invalid parameter 'buf-size'");
1613 if (buf_size
== 0) {
1614 buf_size
= DEFAULT_MIRROR_BUF_SIZE
;
1617 if (bdrv_skip_filters(bs
) == bdrv_skip_filters(target
)) {
1618 error_setg(errp
, "Can't mirror node into itself");
1622 target_is_backing
= bdrv_chain_contains(bs
, target
);
1624 /* In the case of active commit, add dummy driver to provide consistent
1625 * reads on the top, while disabling it in the intermediate nodes, and make
1626 * the backing chain writable. */
1627 mirror_top_bs
= bdrv_new_open_driver(&bdrv_mirror_top
, filter_node_name
,
1629 if (mirror_top_bs
== NULL
) {
1632 if (!filter_node_name
) {
1633 mirror_top_bs
->implicit
= true;
1636 /* So that we can always drop this node */
1637 mirror_top_bs
->never_freeze
= true;
1639 mirror_top_bs
->total_sectors
= bs
->total_sectors
;
1640 mirror_top_bs
->supported_write_flags
= BDRV_REQ_WRITE_UNCHANGED
;
1641 mirror_top_bs
->supported_zero_flags
= BDRV_REQ_WRITE_UNCHANGED
|
1642 BDRV_REQ_NO_FALLBACK
;
1643 bs_opaque
= g_new0(MirrorBDSOpaque
, 1);
1644 mirror_top_bs
->opaque
= bs_opaque
;
1646 bs_opaque
->is_commit
= target_is_backing
;
1648 bdrv_drained_begin(bs
);
1649 ret
= bdrv_append(mirror_top_bs
, bs
, errp
);
1650 bdrv_drained_end(bs
);
1653 bdrv_unref(mirror_top_bs
);
1657 /* Make sure that the source is not resized while the job is running */
1658 s
= block_job_create(job_id
, driver
, NULL
, mirror_top_bs
,
1659 BLK_PERM_CONSISTENT_READ
,
1660 BLK_PERM_CONSISTENT_READ
| BLK_PERM_WRITE_UNCHANGED
|
1661 BLK_PERM_WRITE
| BLK_PERM_GRAPH_MOD
, speed
,
1662 creation_flags
, cb
, opaque
, errp
);
1668 /* The block job now has a reference to this node */
1669 bdrv_unref(mirror_top_bs
);
1671 s
->mirror_top_bs
= mirror_top_bs
;
1673 /* No resize for the target either; while the mirror is still running, a
1674 * consistent read isn't necessarily possible. We could possibly allow
1675 * writes and graph modifications, though it would likely defeat the
1676 * purpose of a mirror, so leave them blocked for now.
1678 * In the case of active commit, things look a bit different, though,
1679 * because the target is an already populated backing file in active use.
1680 * We can allow anything except resize there.*/
1682 target_perms
= BLK_PERM_WRITE
;
1683 target_shared_perms
= BLK_PERM_WRITE_UNCHANGED
;
1685 if (target_is_backing
) {
1686 int64_t bs_size
, target_size
;
1687 bs_size
= bdrv_getlength(bs
);
1689 error_setg_errno(errp
, -bs_size
,
1690 "Could not inquire top image size");
1694 target_size
= bdrv_getlength(target
);
1695 if (target_size
< 0) {
1696 error_setg_errno(errp
, -target_size
,
1697 "Could not inquire base image size");
1701 if (target_size
< bs_size
) {
1702 target_perms
|= BLK_PERM_RESIZE
;
1705 target_shared_perms
|= BLK_PERM_CONSISTENT_READ
1707 | BLK_PERM_GRAPH_MOD
;
1708 } else if (bdrv_chain_contains(bs
, bdrv_skip_filters(target
))) {
1710 * We may want to allow this in the future, but it would
1711 * require taking some extra care.
1713 error_setg(errp
, "Cannot mirror to a filter on top of a node in the "
1714 "source's backing chain");
1718 if (backing_mode
!= MIRROR_LEAVE_BACKING_CHAIN
) {
1719 target_perms
|= BLK_PERM_GRAPH_MOD
;
1722 s
->target
= blk_new(s
->common
.job
.aio_context
,
1723 target_perms
, target_shared_perms
);
1724 ret
= blk_insert_bs(s
->target
, target
, errp
);
1729 /* XXX: Mirror target could be a NBD server of target QEMU in the case
1730 * of non-shared block migration. To allow migration completion, we
1731 * have to allow "inactivate" of the target BB. When that happens, we
1732 * know the job is drained, and the vcpus are stopped, so no write
1733 * operation will be performed. Block layer already has assertions to
1735 blk_set_force_allow_inactivate(s
->target
);
1737 blk_set_allow_aio_context_change(s
->target
, true);
1738 blk_set_disable_request_queuing(s
->target
, true);
1740 s
->replaces
= g_strdup(replaces
);
1741 s
->on_source_error
= on_source_error
;
1742 s
->on_target_error
= on_target_error
;
1743 s
->is_none_mode
= is_none_mode
;
1744 s
->backing_mode
= backing_mode
;
1745 s
->zero_target
= zero_target
;
1746 s
->copy_mode
= copy_mode
;
1748 s
->base_overlay
= bdrv_find_overlay(bs
, base
);
1749 s
->granularity
= granularity
;
1750 s
->buf_size
= ROUND_UP(buf_size
, granularity
);
1752 if (auto_complete
) {
1753 s
->should_complete
= true;
1756 s
->dirty_bitmap
= bdrv_create_dirty_bitmap(bs
, granularity
, NULL
, errp
);
1757 if (!s
->dirty_bitmap
) {
1760 if (s
->copy_mode
== MIRROR_COPY_MODE_WRITE_BLOCKING
) {
1761 bdrv_disable_dirty_bitmap(s
->dirty_bitmap
);
1764 ret
= block_job_add_bdrv(&s
->common
, "source", bs
, 0,
1765 BLK_PERM_WRITE_UNCHANGED
| BLK_PERM_WRITE
|
1766 BLK_PERM_CONSISTENT_READ
,
1772 /* Required permissions are already taken with blk_new() */
1773 block_job_add_bdrv(&s
->common
, "target", target
, 0, BLK_PERM_ALL
,
1776 /* In commit_active_start() all intermediate nodes disappear, so
1777 * any jobs in them must be blocked */
1778 if (target_is_backing
) {
1779 BlockDriverState
*iter
, *filtered_target
;
1780 uint64_t iter_shared_perms
;
1783 * The topmost node with
1784 * bdrv_skip_filters(filtered_target) == bdrv_skip_filters(target)
1786 filtered_target
= bdrv_cow_bs(bdrv_find_overlay(bs
, target
));
1788 assert(bdrv_skip_filters(filtered_target
) ==
1789 bdrv_skip_filters(target
));
1792 * XXX BLK_PERM_WRITE needs to be allowed so we don't block
1793 * ourselves at s->base (if writes are blocked for a node, they are
1794 * also blocked for its backing file). The other options would be a
1795 * second filter driver above s->base (== target).
1797 iter_shared_perms
= BLK_PERM_WRITE_UNCHANGED
| BLK_PERM_WRITE
;
1799 for (iter
= bdrv_filter_or_cow_bs(bs
); iter
!= target
;
1800 iter
= bdrv_filter_or_cow_bs(iter
))
1802 if (iter
== filtered_target
) {
1804 * From here on, all nodes are filters on the base.
1805 * This allows us to share BLK_PERM_CONSISTENT_READ.
1807 iter_shared_perms
|= BLK_PERM_CONSISTENT_READ
;
1810 ret
= block_job_add_bdrv(&s
->common
, "intermediate node", iter
, 0,
1811 iter_shared_perms
, errp
);
1817 if (bdrv_freeze_backing_chain(mirror_top_bs
, target
, errp
) < 0) {
1822 QTAILQ_INIT(&s
->ops_in_flight
);
1824 trace_mirror_start(bs
, s
, opaque
);
1825 job_start(&s
->common
.job
);
1831 /* Make sure this BDS does not go away until we have completed the graph
1833 bdrv_ref(mirror_top_bs
);
1835 g_free(s
->replaces
);
1836 blk_unref(s
->target
);
1837 bs_opaque
->job
= NULL
;
1838 if (s
->dirty_bitmap
) {
1839 bdrv_release_dirty_bitmap(s
->dirty_bitmap
);
1841 job_early_fail(&s
->common
.job
);
1844 bs_opaque
->stop
= true;
1845 bdrv_child_refresh_perms(mirror_top_bs
, mirror_top_bs
->backing
,
1847 bdrv_replace_node(mirror_top_bs
, mirror_top_bs
->backing
->bs
, &error_abort
);
1849 bdrv_unref(mirror_top_bs
);
1854 void mirror_start(const char *job_id
, BlockDriverState
*bs
,
1855 BlockDriverState
*target
, const char *replaces
,
1856 int creation_flags
, int64_t speed
,
1857 uint32_t granularity
, int64_t buf_size
,
1858 MirrorSyncMode mode
, BlockMirrorBackingMode backing_mode
,
1860 BlockdevOnError on_source_error
,
1861 BlockdevOnError on_target_error
,
1862 bool unmap
, const char *filter_node_name
,
1863 MirrorCopyMode copy_mode
, Error
**errp
)
1866 BlockDriverState
*base
;
1868 if ((mode
== MIRROR_SYNC_MODE_INCREMENTAL
) ||
1869 (mode
== MIRROR_SYNC_MODE_BITMAP
)) {
1870 error_setg(errp
, "Sync mode '%s' not supported",
1871 MirrorSyncMode_str(mode
));
1874 is_none_mode
= mode
== MIRROR_SYNC_MODE_NONE
;
1875 base
= mode
== MIRROR_SYNC_MODE_TOP
? bdrv_backing_chain_next(bs
) : NULL
;
1876 mirror_start_job(job_id
, bs
, creation_flags
, target
, replaces
,
1877 speed
, granularity
, buf_size
, backing_mode
, zero_target
,
1878 on_source_error
, on_target_error
, unmap
, NULL
, NULL
,
1879 &mirror_job_driver
, is_none_mode
, base
, false,
1880 filter_node_name
, true, copy_mode
, errp
);
1883 BlockJob
*commit_active_start(const char *job_id
, BlockDriverState
*bs
,
1884 BlockDriverState
*base
, int creation_flags
,
1885 int64_t speed
, BlockdevOnError on_error
,
1886 const char *filter_node_name
,
1887 BlockCompletionFunc
*cb
, void *opaque
,
1888 bool auto_complete
, Error
**errp
)
1890 bool base_read_only
;
1893 base_read_only
= bdrv_is_read_only(base
);
1895 if (base_read_only
) {
1896 if (bdrv_reopen_set_read_only(base
, false, errp
) < 0) {
1901 job
= mirror_start_job(
1902 job_id
, bs
, creation_flags
, base
, NULL
, speed
, 0, 0,
1903 MIRROR_LEAVE_BACKING_CHAIN
, false,
1904 on_error
, on_error
, true, cb
, opaque
,
1905 &commit_active_job_driver
, false, base
, auto_complete
,
1906 filter_node_name
, false, MIRROR_COPY_MODE_BACKGROUND
,
1909 goto error_restore_flags
;
1914 error_restore_flags
:
1915 /* ignore error and errp for bdrv_reopen, because we want to propagate
1916 * the original error */
1917 if (base_read_only
) {
1918 bdrv_reopen_set_read_only(base
, true, NULL
);