2 * QEMU System Emulator block driver
4 * Copyright (c) 2003 Fabrice Bellard
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
24 #include "config-host.h"
25 #include "qemu-common.h"
27 #include "monitor/monitor.h"
28 #include "block/block_int.h"
29 #include "block/blockjob.h"
30 #include "qemu/module.h"
31 #include "qapi/qmp/qjson.h"
32 #include "sysemu/sysemu.h"
33 #include "qemu/notify.h"
34 #include "block/coroutine.h"
35 #include "block/qapi.h"
36 #include "qmp-commands.h"
37 #include "qemu/timer.h"
40 #include <sys/types.h>
42 #include <sys/ioctl.h>
43 #include <sys/queue.h>
53 struct BdrvDirtyBitmap
{
55 QLIST_ENTRY(BdrvDirtyBitmap
) list
;
58 #define NOT_DONE 0x7fffffff /* used while emulated sync operation in progress */
60 static void bdrv_dev_change_media_cb(BlockDriverState
*bs
, bool load
);
61 static BlockDriverAIOCB
*bdrv_aio_readv_em(BlockDriverState
*bs
,
62 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
63 BlockDriverCompletionFunc
*cb
, void *opaque
);
64 static BlockDriverAIOCB
*bdrv_aio_writev_em(BlockDriverState
*bs
,
65 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
66 BlockDriverCompletionFunc
*cb
, void *opaque
);
67 static int coroutine_fn
bdrv_co_readv_em(BlockDriverState
*bs
,
68 int64_t sector_num
, int nb_sectors
,
70 static int coroutine_fn
bdrv_co_writev_em(BlockDriverState
*bs
,
71 int64_t sector_num
, int nb_sectors
,
73 static int coroutine_fn
bdrv_co_do_preadv(BlockDriverState
*bs
,
74 int64_t offset
, unsigned int bytes
, QEMUIOVector
*qiov
,
75 BdrvRequestFlags flags
);
76 static int coroutine_fn
bdrv_co_do_pwritev(BlockDriverState
*bs
,
77 int64_t offset
, unsigned int bytes
, QEMUIOVector
*qiov
,
78 BdrvRequestFlags flags
);
79 static BlockDriverAIOCB
*bdrv_co_aio_rw_vector(BlockDriverState
*bs
,
83 BdrvRequestFlags flags
,
84 BlockDriverCompletionFunc
*cb
,
87 static void coroutine_fn
bdrv_co_do_rw(void *opaque
);
88 static int coroutine_fn
bdrv_co_do_write_zeroes(BlockDriverState
*bs
,
89 int64_t sector_num
, int nb_sectors
, BdrvRequestFlags flags
);
91 static QTAILQ_HEAD(, BlockDriverState
) bdrv_states
=
92 QTAILQ_HEAD_INITIALIZER(bdrv_states
);
94 static QTAILQ_HEAD(, BlockDriverState
) graph_bdrv_states
=
95 QTAILQ_HEAD_INITIALIZER(graph_bdrv_states
);
97 static QLIST_HEAD(, BlockDriver
) bdrv_drivers
=
98 QLIST_HEAD_INITIALIZER(bdrv_drivers
);
100 /* If non-zero, use only whitelisted block drivers */
101 static int use_bdrv_whitelist
;
104 static int is_windows_drive_prefix(const char *filename
)
106 return (((filename
[0] >= 'a' && filename
[0] <= 'z') ||
107 (filename
[0] >= 'A' && filename
[0] <= 'Z')) &&
111 int is_windows_drive(const char *filename
)
113 if (is_windows_drive_prefix(filename
) &&
116 if (strstart(filename
, "\\\\.\\", NULL
) ||
117 strstart(filename
, "//./", NULL
))
123 /* throttling disk I/O limits */
124 void bdrv_set_io_limits(BlockDriverState
*bs
,
129 throttle_config(&bs
->throttle_state
, cfg
);
131 for (i
= 0; i
< 2; i
++) {
132 qemu_co_enter_next(&bs
->throttled_reqs
[i
]);
136 /* this function drain all the throttled IOs */
137 static bool bdrv_start_throttled_reqs(BlockDriverState
*bs
)
139 bool drained
= false;
140 bool enabled
= bs
->io_limits_enabled
;
143 bs
->io_limits_enabled
= false;
145 for (i
= 0; i
< 2; i
++) {
146 while (qemu_co_enter_next(&bs
->throttled_reqs
[i
])) {
151 bs
->io_limits_enabled
= enabled
;
156 void bdrv_io_limits_disable(BlockDriverState
*bs
)
158 bs
->io_limits_enabled
= false;
160 bdrv_start_throttled_reqs(bs
);
162 throttle_destroy(&bs
->throttle_state
);
165 static void bdrv_throttle_read_timer_cb(void *opaque
)
167 BlockDriverState
*bs
= opaque
;
168 qemu_co_enter_next(&bs
->throttled_reqs
[0]);
171 static void bdrv_throttle_write_timer_cb(void *opaque
)
173 BlockDriverState
*bs
= opaque
;
174 qemu_co_enter_next(&bs
->throttled_reqs
[1]);
177 /* should be called before bdrv_set_io_limits if a limit is set */
178 void bdrv_io_limits_enable(BlockDriverState
*bs
)
180 assert(!bs
->io_limits_enabled
);
181 throttle_init(&bs
->throttle_state
,
183 bdrv_throttle_read_timer_cb
,
184 bdrv_throttle_write_timer_cb
,
186 bs
->io_limits_enabled
= true;
189 /* This function makes an IO wait if needed
191 * @nb_sectors: the number of sectors of the IO
192 * @is_write: is the IO a write
194 static void bdrv_io_limits_intercept(BlockDriverState
*bs
,
198 /* does this io must wait */
199 bool must_wait
= throttle_schedule_timer(&bs
->throttle_state
, is_write
);
201 /* if must wait or any request of this type throttled queue the IO */
203 !qemu_co_queue_empty(&bs
->throttled_reqs
[is_write
])) {
204 qemu_co_queue_wait(&bs
->throttled_reqs
[is_write
]);
207 /* the IO will be executed, do the accounting */
208 throttle_account(&bs
->throttle_state
, is_write
, bytes
);
211 /* if the next request must wait -> do nothing */
212 if (throttle_schedule_timer(&bs
->throttle_state
, is_write
)) {
216 /* else queue next request for execution */
217 qemu_co_queue_next(&bs
->throttled_reqs
[is_write
]);
220 size_t bdrv_opt_mem_align(BlockDriverState
*bs
)
222 if (!bs
|| !bs
->drv
) {
223 /* 4k should be on the safe side */
227 return bs
->bl
.opt_mem_alignment
;
230 /* check if the path starts with "<protocol>:" */
231 static int path_has_protocol(const char *path
)
236 if (is_windows_drive(path
) ||
237 is_windows_drive_prefix(path
)) {
240 p
= path
+ strcspn(path
, ":/\\");
242 p
= path
+ strcspn(path
, ":/");
248 int path_is_absolute(const char *path
)
251 /* specific case for names like: "\\.\d:" */
252 if (is_windows_drive(path
) || is_windows_drive_prefix(path
)) {
255 return (*path
== '/' || *path
== '\\');
257 return (*path
== '/');
261 /* if filename is absolute, just copy it to dest. Otherwise, build a
262 path to it by considering it is relative to base_path. URL are
264 void path_combine(char *dest
, int dest_size
,
265 const char *base_path
,
266 const char *filename
)
273 if (path_is_absolute(filename
)) {
274 pstrcpy(dest
, dest_size
, filename
);
276 p
= strchr(base_path
, ':');
281 p1
= strrchr(base_path
, '/');
285 p2
= strrchr(base_path
, '\\');
297 if (len
> dest_size
- 1)
299 memcpy(dest
, base_path
, len
);
301 pstrcat(dest
, dest_size
, filename
);
305 void bdrv_get_full_backing_filename(BlockDriverState
*bs
, char *dest
, size_t sz
)
307 if (bs
->backing_file
[0] == '\0' || path_has_protocol(bs
->backing_file
)) {
308 pstrcpy(dest
, sz
, bs
->backing_file
);
310 path_combine(dest
, sz
, bs
->filename
, bs
->backing_file
);
314 void bdrv_register(BlockDriver
*bdrv
)
316 /* Block drivers without coroutine functions need emulation */
317 if (!bdrv
->bdrv_co_readv
) {
318 bdrv
->bdrv_co_readv
= bdrv_co_readv_em
;
319 bdrv
->bdrv_co_writev
= bdrv_co_writev_em
;
321 /* bdrv_co_readv_em()/brdv_co_writev_em() work in terms of aio, so if
322 * the block driver lacks aio we need to emulate that too.
324 if (!bdrv
->bdrv_aio_readv
) {
325 /* add AIO emulation layer */
326 bdrv
->bdrv_aio_readv
= bdrv_aio_readv_em
;
327 bdrv
->bdrv_aio_writev
= bdrv_aio_writev_em
;
331 QLIST_INSERT_HEAD(&bdrv_drivers
, bdrv
, list
);
334 /* create a new block device (by default it is empty) */
335 BlockDriverState
*bdrv_new(const char *device_name
, Error
**errp
)
337 BlockDriverState
*bs
;
339 if (bdrv_find(device_name
)) {
340 error_setg(errp
, "Device with id '%s' already exists",
344 if (bdrv_find_node(device_name
)) {
345 error_setg(errp
, "Device with node-name '%s' already exists",
350 bs
= g_malloc0(sizeof(BlockDriverState
));
351 QLIST_INIT(&bs
->dirty_bitmaps
);
352 pstrcpy(bs
->device_name
, sizeof(bs
->device_name
), device_name
);
353 if (device_name
[0] != '\0') {
354 QTAILQ_INSERT_TAIL(&bdrv_states
, bs
, device_list
);
356 bdrv_iostatus_disable(bs
);
357 notifier_list_init(&bs
->close_notifiers
);
358 notifier_with_return_list_init(&bs
->before_write_notifiers
);
359 qemu_co_queue_init(&bs
->throttled_reqs
[0]);
360 qemu_co_queue_init(&bs
->throttled_reqs
[1]);
366 void bdrv_add_close_notifier(BlockDriverState
*bs
, Notifier
*notify
)
368 notifier_list_add(&bs
->close_notifiers
, notify
);
371 BlockDriver
*bdrv_find_format(const char *format_name
)
374 QLIST_FOREACH(drv1
, &bdrv_drivers
, list
) {
375 if (!strcmp(drv1
->format_name
, format_name
)) {
382 static int bdrv_is_whitelisted(BlockDriver
*drv
, bool read_only
)
384 static const char *whitelist_rw
[] = {
385 CONFIG_BDRV_RW_WHITELIST
387 static const char *whitelist_ro
[] = {
388 CONFIG_BDRV_RO_WHITELIST
392 if (!whitelist_rw
[0] && !whitelist_ro
[0]) {
393 return 1; /* no whitelist, anything goes */
396 for (p
= whitelist_rw
; *p
; p
++) {
397 if (!strcmp(drv
->format_name
, *p
)) {
402 for (p
= whitelist_ro
; *p
; p
++) {
403 if (!strcmp(drv
->format_name
, *p
)) {
411 BlockDriver
*bdrv_find_whitelisted_format(const char *format_name
,
414 BlockDriver
*drv
= bdrv_find_format(format_name
);
415 return drv
&& bdrv_is_whitelisted(drv
, read_only
) ? drv
: NULL
;
418 typedef struct CreateCo
{
421 QEMUOptionParameter
*options
;
426 static void coroutine_fn
bdrv_create_co_entry(void *opaque
)
428 Error
*local_err
= NULL
;
431 CreateCo
*cco
= opaque
;
434 ret
= cco
->drv
->bdrv_create(cco
->filename
, cco
->options
, &local_err
);
436 error_propagate(&cco
->err
, local_err
);
441 int bdrv_create(BlockDriver
*drv
, const char* filename
,
442 QEMUOptionParameter
*options
, Error
**errp
)
449 .filename
= g_strdup(filename
),
455 if (!drv
->bdrv_create
) {
456 error_setg(errp
, "Driver '%s' does not support image creation", drv
->format_name
);
461 if (qemu_in_coroutine()) {
462 /* Fast-path if already in coroutine context */
463 bdrv_create_co_entry(&cco
);
465 co
= qemu_coroutine_create(bdrv_create_co_entry
);
466 qemu_coroutine_enter(co
, &cco
);
467 while (cco
.ret
== NOT_DONE
) {
475 error_propagate(errp
, cco
.err
);
477 error_setg_errno(errp
, -ret
, "Could not create image");
482 g_free(cco
.filename
);
486 int bdrv_create_file(const char* filename
, QEMUOptionParameter
*options
,
490 Error
*local_err
= NULL
;
493 drv
= bdrv_find_protocol(filename
, true);
495 error_setg(errp
, "Could not find protocol for file '%s'", filename
);
499 ret
= bdrv_create(drv
, filename
, options
, &local_err
);
501 error_propagate(errp
, local_err
);
506 int bdrv_refresh_limits(BlockDriverState
*bs
)
508 BlockDriver
*drv
= bs
->drv
;
510 memset(&bs
->bl
, 0, sizeof(bs
->bl
));
516 /* Take some limits from the children as a default */
518 bdrv_refresh_limits(bs
->file
);
519 bs
->bl
.opt_transfer_length
= bs
->file
->bl
.opt_transfer_length
;
520 bs
->bl
.opt_mem_alignment
= bs
->file
->bl
.opt_mem_alignment
;
522 bs
->bl
.opt_mem_alignment
= 512;
525 if (bs
->backing_hd
) {
526 bdrv_refresh_limits(bs
->backing_hd
);
527 bs
->bl
.opt_transfer_length
=
528 MAX(bs
->bl
.opt_transfer_length
,
529 bs
->backing_hd
->bl
.opt_transfer_length
);
530 bs
->bl
.opt_mem_alignment
=
531 MAX(bs
->bl
.opt_mem_alignment
,
532 bs
->backing_hd
->bl
.opt_mem_alignment
);
535 /* Then let the driver override it */
536 if (drv
->bdrv_refresh_limits
) {
537 return drv
->bdrv_refresh_limits(bs
);
544 * Create a uniquely-named empty temporary file.
545 * Return 0 upon success, otherwise a negative errno value.
547 int get_tmp_filename(char *filename
, int size
)
550 char temp_dir
[MAX_PATH
];
551 /* GetTempFileName requires that its output buffer (4th param)
552 have length MAX_PATH or greater. */
553 assert(size
>= MAX_PATH
);
554 return (GetTempPath(MAX_PATH
, temp_dir
)
555 && GetTempFileName(temp_dir
, "qem", 0, filename
)
556 ? 0 : -GetLastError());
560 tmpdir
= getenv("TMPDIR");
564 if (snprintf(filename
, size
, "%s/vl.XXXXXX", tmpdir
) >= size
) {
567 fd
= mkstemp(filename
);
571 if (close(fd
) != 0) {
580 * Detect host devices. By convention, /dev/cdrom[N] is always
581 * recognized as a host CDROM.
583 static BlockDriver
*find_hdev_driver(const char *filename
)
585 int score_max
= 0, score
;
586 BlockDriver
*drv
= NULL
, *d
;
588 QLIST_FOREACH(d
, &bdrv_drivers
, list
) {
589 if (d
->bdrv_probe_device
) {
590 score
= d
->bdrv_probe_device(filename
);
591 if (score
> score_max
) {
601 BlockDriver
*bdrv_find_protocol(const char *filename
,
602 bool allow_protocol_prefix
)
609 /* TODO Drivers without bdrv_file_open must be specified explicitly */
612 * XXX(hch): we really should not let host device detection
613 * override an explicit protocol specification, but moving this
614 * later breaks access to device names with colons in them.
615 * Thanks to the brain-dead persistent naming schemes on udev-
616 * based Linux systems those actually are quite common.
618 drv1
= find_hdev_driver(filename
);
623 if (!path_has_protocol(filename
) || !allow_protocol_prefix
) {
624 return bdrv_find_format("file");
627 p
= strchr(filename
, ':');
630 if (len
> sizeof(protocol
) - 1)
631 len
= sizeof(protocol
) - 1;
632 memcpy(protocol
, filename
, len
);
633 protocol
[len
] = '\0';
634 QLIST_FOREACH(drv1
, &bdrv_drivers
, list
) {
635 if (drv1
->protocol_name
&&
636 !strcmp(drv1
->protocol_name
, protocol
)) {
643 static int find_image_format(BlockDriverState
*bs
, const char *filename
,
644 BlockDriver
**pdrv
, Error
**errp
)
646 int score
, score_max
;
647 BlockDriver
*drv1
, *drv
;
651 /* Return the raw BlockDriver * to scsi-generic devices or empty drives */
652 if (bs
->sg
|| !bdrv_is_inserted(bs
) || bdrv_getlength(bs
) == 0) {
653 drv
= bdrv_find_format("raw");
655 error_setg(errp
, "Could not find raw image format");
662 ret
= bdrv_pread(bs
, 0, buf
, sizeof(buf
));
664 error_setg_errno(errp
, -ret
, "Could not read image for determining its "
672 QLIST_FOREACH(drv1
, &bdrv_drivers
, list
) {
673 if (drv1
->bdrv_probe
) {
674 score
= drv1
->bdrv_probe(buf
, ret
, filename
);
675 if (score
> score_max
) {
682 error_setg(errp
, "Could not determine image format: No compatible "
691 * Set the current 'total_sectors' value
693 static int refresh_total_sectors(BlockDriverState
*bs
, int64_t hint
)
695 BlockDriver
*drv
= bs
->drv
;
697 /* Do not attempt drv->bdrv_getlength() on scsi-generic devices */
701 /* query actual device if possible, otherwise just trust the hint */
702 if (drv
->bdrv_getlength
) {
703 int64_t length
= drv
->bdrv_getlength(bs
);
707 hint
= DIV_ROUND_UP(length
, BDRV_SECTOR_SIZE
);
710 bs
->total_sectors
= hint
;
715 * Set open flags for a given discard mode
717 * Return 0 on success, -1 if the discard mode was invalid.
719 int bdrv_parse_discard_flags(const char *mode
, int *flags
)
721 *flags
&= ~BDRV_O_UNMAP
;
723 if (!strcmp(mode
, "off") || !strcmp(mode
, "ignore")) {
725 } else if (!strcmp(mode
, "on") || !strcmp(mode
, "unmap")) {
726 *flags
|= BDRV_O_UNMAP
;
735 * Set open flags for a given cache mode
737 * Return 0 on success, -1 if the cache mode was invalid.
739 int bdrv_parse_cache_flags(const char *mode
, int *flags
)
741 *flags
&= ~BDRV_O_CACHE_MASK
;
743 if (!strcmp(mode
, "off") || !strcmp(mode
, "none")) {
744 *flags
|= BDRV_O_NOCACHE
| BDRV_O_CACHE_WB
;
745 } else if (!strcmp(mode
, "directsync")) {
746 *flags
|= BDRV_O_NOCACHE
;
747 } else if (!strcmp(mode
, "writeback")) {
748 *flags
|= BDRV_O_CACHE_WB
;
749 } else if (!strcmp(mode
, "unsafe")) {
750 *flags
|= BDRV_O_CACHE_WB
;
751 *flags
|= BDRV_O_NO_FLUSH
;
752 } else if (!strcmp(mode
, "writethrough")) {
753 /* this is the default */
762 * The copy-on-read flag is actually a reference count so multiple users may
763 * use the feature without worrying about clobbering its previous state.
764 * Copy-on-read stays enabled until all users have called to disable it.
766 void bdrv_enable_copy_on_read(BlockDriverState
*bs
)
771 void bdrv_disable_copy_on_read(BlockDriverState
*bs
)
773 assert(bs
->copy_on_read
> 0);
777 static int bdrv_open_flags(BlockDriverState
*bs
, int flags
)
779 int open_flags
= flags
| BDRV_O_CACHE_WB
;
781 /* The backing file of a temporary snapshot is read-only */
782 if (flags
& BDRV_O_SNAPSHOT
) {
783 open_flags
&= ~BDRV_O_RDWR
;
787 * Clear flags that are internal to the block layer before opening the
790 open_flags
&= ~(BDRV_O_SNAPSHOT
| BDRV_O_NO_BACKING
);
793 * Snapshots should be writable.
795 if (bs
->is_temporary
) {
796 open_flags
|= BDRV_O_RDWR
;
802 static void bdrv_assign_node_name(BlockDriverState
*bs
,
803 const char *node_name
,
810 /* empty string node name is invalid */
811 if (node_name
[0] == '\0') {
812 error_setg(errp
, "Empty node name");
816 /* takes care of avoiding namespaces collisions */
817 if (bdrv_find(node_name
)) {
818 error_setg(errp
, "node-name=%s is conflicting with a device id",
823 /* takes care of avoiding duplicates node names */
824 if (bdrv_find_node(node_name
)) {
825 error_setg(errp
, "Duplicate node name");
829 /* copy node name into the bs and insert it into the graph list */
830 pstrcpy(bs
->node_name
, sizeof(bs
->node_name
), node_name
);
831 QTAILQ_INSERT_TAIL(&graph_bdrv_states
, bs
, node_list
);
835 * Common part for opening disk images and files
837 * Removes all processed options from *options.
839 static int bdrv_open_common(BlockDriverState
*bs
, BlockDriverState
*file
,
840 QDict
*options
, int flags
, BlockDriver
*drv
, Error
**errp
)
843 const char *filename
;
844 const char *node_name
= NULL
;
845 Error
*local_err
= NULL
;
848 assert(bs
->file
== NULL
);
849 assert(options
!= NULL
&& bs
->options
!= options
);
852 filename
= file
->filename
;
854 filename
= qdict_get_try_str(options
, "filename");
857 if (drv
->bdrv_needs_filename
&& !filename
) {
858 error_setg(errp
, "The '%s' block driver requires a file name",
863 trace_bdrv_open_common(bs
, filename
?: "", flags
, drv
->format_name
);
865 node_name
= qdict_get_try_str(options
, "node-name");
866 bdrv_assign_node_name(bs
, node_name
, &local_err
);
867 if (error_is_set(&local_err
)) {
868 error_propagate(errp
, local_err
);
871 qdict_del(options
, "node-name");
873 /* bdrv_open() with directly using a protocol as drv. This layer is already
874 * opened, so assign it to bs (while file becomes a closed BlockDriverState)
875 * and return immediately. */
876 if (file
!= NULL
&& drv
->bdrv_file_open
) {
881 bs
->open_flags
= flags
;
882 bs
->guest_block_size
= 512;
883 bs
->request_alignment
= 512;
884 bs
->zero_beyond_eof
= true;
885 open_flags
= bdrv_open_flags(bs
, flags
);
886 bs
->read_only
= !(open_flags
& BDRV_O_RDWR
);
888 if (use_bdrv_whitelist
&& !bdrv_is_whitelisted(drv
, bs
->read_only
)) {
890 !bs
->read_only
&& bdrv_is_whitelisted(drv
, true)
891 ? "Driver '%s' can only be used for read-only devices"
892 : "Driver '%s' is not whitelisted",
897 assert(bs
->copy_on_read
== 0); /* bdrv_new() and bdrv_close() make it so */
898 if (flags
& BDRV_O_COPY_ON_READ
) {
899 if (!bs
->read_only
) {
900 bdrv_enable_copy_on_read(bs
);
902 error_setg(errp
, "Can't use copy-on-read on read-only device");
907 if (filename
!= NULL
) {
908 pstrcpy(bs
->filename
, sizeof(bs
->filename
), filename
);
910 bs
->filename
[0] = '\0';
914 bs
->opaque
= g_malloc0(drv
->instance_size
);
916 bs
->enable_write_cache
= !!(flags
& BDRV_O_CACHE_WB
);
918 /* Open the image, either directly or using a protocol */
919 if (drv
->bdrv_file_open
) {
920 assert(file
== NULL
);
921 assert(!drv
->bdrv_needs_filename
|| filename
!= NULL
);
922 ret
= drv
->bdrv_file_open(bs
, options
, open_flags
, &local_err
);
925 error_setg(errp
, "Can't use '%s' as a block driver for the "
926 "protocol level", drv
->format_name
);
931 ret
= drv
->bdrv_open(bs
, options
, open_flags
, &local_err
);
936 error_propagate(errp
, local_err
);
937 } else if (bs
->filename
[0]) {
938 error_setg_errno(errp
, -ret
, "Could not open '%s'", bs
->filename
);
940 error_setg_errno(errp
, -ret
, "Could not open image");
945 ret
= refresh_total_sectors(bs
, bs
->total_sectors
);
947 error_setg_errno(errp
, -ret
, "Could not refresh total sector count");
951 bdrv_refresh_limits(bs
);
952 assert(bdrv_opt_mem_align(bs
) != 0);
953 assert((bs
->request_alignment
!= 0) || bs
->sg
);
956 if (bs
->is_temporary
) {
957 assert(bs
->filename
[0] != '\0');
958 unlink(bs
->filename
);
972 * Opens a file using a protocol (file, host_device, nbd, ...)
974 * options is an indirect pointer to a QDict of options to pass to the block
975 * drivers, or pointer to NULL for an empty set of options. If this function
976 * takes ownership of the QDict reference, it will set *options to NULL;
977 * otherwise, it will contain unused/unrecognized options after this function
978 * returns. Then, the caller is responsible for freeing it. If it intends to
979 * reuse the QDict, QINCREF() should be called beforehand.
981 static int bdrv_file_open(BlockDriverState
*bs
, const char *filename
,
982 QDict
**options
, int flags
, Error
**errp
)
986 bool parse_filename
= false;
987 Error
*local_err
= NULL
;
990 /* Fetch the file name from the options QDict if necessary */
992 filename
= qdict_get_try_str(*options
, "filename");
993 } else if (filename
&& !qdict_haskey(*options
, "filename")) {
994 qdict_put(*options
, "filename", qstring_from_str(filename
));
995 parse_filename
= true;
997 error_setg(errp
, "Can't specify 'file' and 'filename' options at the "
1003 /* Find the right block driver */
1004 drvname
= qdict_get_try_str(*options
, "driver");
1006 drv
= bdrv_find_format(drvname
);
1008 error_setg(errp
, "Unknown driver '%s'", drvname
);
1010 qdict_del(*options
, "driver");
1011 } else if (filename
) {
1012 drv
= bdrv_find_protocol(filename
, parse_filename
);
1014 error_setg(errp
, "Unknown protocol");
1017 error_setg(errp
, "Must specify either driver or file");
1022 /* errp has been set already */
1027 /* Parse the filename and open it */
1028 if (drv
->bdrv_parse_filename
&& parse_filename
) {
1029 drv
->bdrv_parse_filename(filename
, *options
, &local_err
);
1031 error_propagate(errp
, local_err
);
1036 if (!drv
->bdrv_needs_filename
) {
1037 qdict_del(*options
, "filename");
1039 filename
= qdict_get_str(*options
, "filename");
1043 if (!drv
->bdrv_file_open
) {
1044 ret
= bdrv_open(&bs
, filename
, NULL
, *options
, flags
, drv
, &local_err
);
1047 ret
= bdrv_open_common(bs
, NULL
, *options
, flags
, drv
, &local_err
);
1050 error_propagate(errp
, local_err
);
1062 * Opens the backing file for a BlockDriverState if not yet open
1064 * options is a QDict of options to pass to the block drivers, or NULL for an
1065 * empty set of options. The reference to the QDict is transferred to this
1066 * function (even on failure), so if the caller intends to reuse the dictionary,
1067 * it needs to use QINCREF() before calling bdrv_file_open.
1069 int bdrv_open_backing_file(BlockDriverState
*bs
, QDict
*options
, Error
**errp
)
1071 char backing_filename
[PATH_MAX
];
1072 int back_flags
, ret
;
1073 BlockDriver
*back_drv
= NULL
;
1074 Error
*local_err
= NULL
;
1076 if (bs
->backing_hd
!= NULL
) {
1081 /* NULL means an empty set of options */
1082 if (options
== NULL
) {
1083 options
= qdict_new();
1086 bs
->open_flags
&= ~BDRV_O_NO_BACKING
;
1087 if (qdict_haskey(options
, "file.filename")) {
1088 backing_filename
[0] = '\0';
1089 } else if (bs
->backing_file
[0] == '\0' && qdict_size(options
) == 0) {
1093 bdrv_get_full_backing_filename(bs
, backing_filename
,
1094 sizeof(backing_filename
));
1097 if (bs
->backing_format
[0] != '\0') {
1098 back_drv
= bdrv_find_format(bs
->backing_format
);
1101 /* backing files always opened read-only */
1102 back_flags
= bs
->open_flags
& ~(BDRV_O_RDWR
| BDRV_O_SNAPSHOT
|
1103 BDRV_O_COPY_ON_READ
);
1105 assert(bs
->backing_hd
== NULL
);
1106 ret
= bdrv_open(&bs
->backing_hd
,
1107 *backing_filename
? backing_filename
: NULL
, NULL
, options
,
1108 back_flags
, back_drv
, &local_err
);
1110 bs
->backing_hd
= NULL
;
1111 bs
->open_flags
|= BDRV_O_NO_BACKING
;
1112 error_setg(errp
, "Could not open backing file: %s",
1113 error_get_pretty(local_err
));
1114 error_free(local_err
);
1118 if (bs
->backing_hd
->file
) {
1119 pstrcpy(bs
->backing_file
, sizeof(bs
->backing_file
),
1120 bs
->backing_hd
->file
->filename
);
1123 /* Recalculate the BlockLimits with the backing file */
1124 bdrv_refresh_limits(bs
);
1130 * Opens a disk image whose options are given as BlockdevRef in another block
1133 * If allow_none is true, no image will be opened if filename is false and no
1134 * BlockdevRef is given. *pbs will remain unchanged and 0 will be returned.
1136 * bdrev_key specifies the key for the image's BlockdevRef in the options QDict.
1137 * That QDict has to be flattened; therefore, if the BlockdevRef is a QDict
1138 * itself, all options starting with "${bdref_key}." are considered part of the
1141 * The BlockdevRef will be removed from the options QDict.
1143 * To conform with the behavior of bdrv_open(), *pbs has to be NULL.
1145 int bdrv_open_image(BlockDriverState
**pbs
, const char *filename
,
1146 QDict
*options
, const char *bdref_key
, int flags
,
1147 bool allow_none
, Error
**errp
)
1149 QDict
*image_options
;
1151 char *bdref_key_dot
;
1152 const char *reference
;
1155 assert(*pbs
== NULL
);
1157 bdref_key_dot
= g_strdup_printf("%s.", bdref_key
);
1158 qdict_extract_subqdict(options
, &image_options
, bdref_key_dot
);
1159 g_free(bdref_key_dot
);
1161 reference
= qdict_get_try_str(options
, bdref_key
);
1162 if (!filename
&& !reference
&& !qdict_size(image_options
)) {
1166 error_setg(errp
, "A block device must be specified for \"%s\"",
1173 ret
= bdrv_open(pbs
, filename
, reference
, image_options
, flags
, NULL
, errp
);
1176 qdict_del(options
, bdref_key
);
1180 void bdrv_append_temp_snapshot(BlockDriverState
*bs
, Error
**errp
)
1182 /* TODO: extra byte is a hack to ensure MAX_PATH space on Windows. */
1183 char tmp_filename
[PATH_MAX
+ 1];
1186 BlockDriver
*bdrv_qcow2
;
1187 QEMUOptionParameter
*create_options
;
1188 QDict
*snapshot_options
;
1189 BlockDriverState
*bs_snapshot
;
1193 /* if snapshot, we create a temporary backing file and open it
1194 instead of opening 'filename' directly */
1196 /* Get the required size from the image */
1197 total_size
= bdrv_getlength(bs
);
1198 if (total_size
< 0) {
1199 error_setg_errno(errp
, -total_size
, "Could not get image size");
1202 total_size
&= BDRV_SECTOR_MASK
;
1204 /* Create the temporary image */
1205 ret
= get_tmp_filename(tmp_filename
, sizeof(tmp_filename
));
1207 error_setg_errno(errp
, -ret
, "Could not get temporary filename");
1211 bdrv_qcow2
= bdrv_find_format("qcow2");
1212 create_options
= parse_option_parameters("", bdrv_qcow2
->create_options
,
1215 set_option_parameter_int(create_options
, BLOCK_OPT_SIZE
, total_size
);
1217 ret
= bdrv_create(bdrv_qcow2
, tmp_filename
, create_options
, &local_err
);
1218 free_option_parameters(create_options
);
1220 error_setg_errno(errp
, -ret
, "Could not create temporary overlay "
1221 "'%s': %s", tmp_filename
,
1222 error_get_pretty(local_err
));
1223 error_free(local_err
);
1227 /* Prepare a new options QDict for the temporary file */
1228 snapshot_options
= qdict_new();
1229 qdict_put(snapshot_options
, "file.driver",
1230 qstring_from_str("file"));
1231 qdict_put(snapshot_options
, "file.filename",
1232 qstring_from_str(tmp_filename
));
1234 bs_snapshot
= bdrv_new("", &error_abort
);
1235 bs_snapshot
->is_temporary
= 1;
1237 ret
= bdrv_open(&bs_snapshot
, NULL
, NULL
, snapshot_options
,
1238 bs
->open_flags
& ~BDRV_O_SNAPSHOT
, bdrv_qcow2
, &local_err
);
1240 error_propagate(errp
, local_err
);
1244 bdrv_append(bs_snapshot
, bs
);
1248 * Opens a disk image (raw, qcow2, vmdk, ...)
1250 * options is a QDict of options to pass to the block drivers, or NULL for an
1251 * empty set of options. The reference to the QDict belongs to the block layer
1252 * after the call (even on failure), so if the caller intends to reuse the
1253 * dictionary, it needs to use QINCREF() before calling bdrv_open.
1255 * If *pbs is NULL, a new BDS will be created with a pointer to it stored there.
1256 * If it is not NULL, the referenced BDS will be reused.
1258 * The reference parameter may be used to specify an existing block device which
1259 * should be opened. If specified, neither options nor a filename may be given,
1260 * nor can an existing BDS be reused (that is, *pbs has to be NULL).
1262 int bdrv_open(BlockDriverState
**pbs
, const char *filename
,
1263 const char *reference
, QDict
*options
, int flags
,
1264 BlockDriver
*drv
, Error
**errp
)
1267 BlockDriverState
*file
= NULL
, *bs
;
1268 const char *drvname
;
1269 Error
*local_err
= NULL
;
1274 bool options_non_empty
= options
? qdict_size(options
) : false;
1278 error_setg(errp
, "Cannot reuse an existing BDS when referencing "
1279 "another block device");
1283 if (filename
|| options_non_empty
) {
1284 error_setg(errp
, "Cannot reference an existing block device with "
1285 "additional options or a new filename");
1289 bs
= bdrv_lookup_bs(reference
, reference
, errp
);
1301 bs
= bdrv_new("", &error_abort
);
1304 /* NULL means an empty set of options */
1305 if (options
== NULL
) {
1306 options
= qdict_new();
1309 bs
->options
= options
;
1310 options
= qdict_clone_shallow(options
);
1312 if (flags
& BDRV_O_PROTOCOL
) {
1314 ret
= bdrv_file_open(bs
, filename
, &options
, flags
& ~BDRV_O_PROTOCOL
,
1319 } else if (bs
->drv
) {
1320 goto close_and_fail
;
1326 /* Open image file without format layer */
1327 if (flags
& BDRV_O_RDWR
) {
1328 flags
|= BDRV_O_ALLOW_RDWR
;
1331 assert(file
== NULL
);
1332 ret
= bdrv_open_image(&file
, filename
, options
, "file",
1333 bdrv_open_flags(bs
, flags
| BDRV_O_UNMAP
) |
1334 BDRV_O_PROTOCOL
, true, &local_err
);
1336 goto unlink_and_fail
;
1339 /* Find the right image format driver */
1340 drvname
= qdict_get_try_str(options
, "driver");
1342 drv
= bdrv_find_format(drvname
);
1343 qdict_del(options
, "driver");
1345 error_setg(errp
, "Invalid driver: '%s'", drvname
);
1347 goto unlink_and_fail
;
1353 ret
= find_image_format(file
, filename
, &drv
, &local_err
);
1355 error_setg(errp
, "Must specify either driver or file");
1357 goto unlink_and_fail
;
1362 goto unlink_and_fail
;
1365 /* Open the image */
1366 ret
= bdrv_open_common(bs
, file
, options
, flags
, drv
, &local_err
);
1368 goto unlink_and_fail
;
1371 if (file
&& (bs
->file
!= file
)) {
1376 /* If there is a backing file, use it */
1377 if ((flags
& BDRV_O_NO_BACKING
) == 0) {
1378 QDict
*backing_options
;
1380 qdict_extract_subqdict(options
, &backing_options
, "backing.");
1381 ret
= bdrv_open_backing_file(bs
, backing_options
, &local_err
);
1383 goto close_and_fail
;
1387 /* For snapshot=on, create a temporary qcow2 overlay. bs points to the
1388 * temporary snapshot afterwards. */
1389 if (flags
& BDRV_O_SNAPSHOT
) {
1390 bdrv_append_temp_snapshot(bs
, &local_err
);
1392 error_propagate(errp
, local_err
);
1393 goto close_and_fail
;
1399 /* Check if any unknown options were used */
1400 if (options
&& (qdict_size(options
) != 0)) {
1401 const QDictEntry
*entry
= qdict_first(options
);
1402 if (flags
& BDRV_O_PROTOCOL
) {
1403 error_setg(errp
, "Block protocol '%s' doesn't support the option "
1404 "'%s'", drv
->format_name
, entry
->key
);
1406 error_setg(errp
, "Block format '%s' used by device '%s' doesn't "
1407 "support the option '%s'", drv
->format_name
,
1408 bs
->device_name
, entry
->key
);
1412 goto close_and_fail
;
1415 if (!bdrv_key_required(bs
)) {
1416 bdrv_dev_change_media_cb(bs
, true);
1417 } else if (!runstate_check(RUN_STATE_PRELAUNCH
)
1418 && !runstate_check(RUN_STATE_INMIGRATE
)
1419 && !runstate_check(RUN_STATE_PAUSED
)) { /* HACK */
1421 "Guest must be stopped for opening of encrypted image");
1423 goto close_and_fail
;
1434 if (bs
->is_temporary
) {
1438 QDECREF(bs
->options
);
1442 /* If *pbs is NULL, a new BDS has been created in this function and
1443 needs to be freed now. Otherwise, it does not need to be closed,
1444 since it has not really been opened yet. */
1448 error_propagate(errp
, local_err
);
1453 /* See fail path, but now the BDS has to be always closed */
1461 error_propagate(errp
, local_err
);
1466 typedef struct BlockReopenQueueEntry
{
1468 BDRVReopenState state
;
1469 QSIMPLEQ_ENTRY(BlockReopenQueueEntry
) entry
;
1470 } BlockReopenQueueEntry
;
1473 * Adds a BlockDriverState to a simple queue for an atomic, transactional
1474 * reopen of multiple devices.
1476 * bs_queue can either be an existing BlockReopenQueue that has had QSIMPLE_INIT
1477 * already performed, or alternatively may be NULL a new BlockReopenQueue will
1478 * be created and initialized. This newly created BlockReopenQueue should be
1479 * passed back in for subsequent calls that are intended to be of the same
1482 * bs is the BlockDriverState to add to the reopen queue.
1484 * flags contains the open flags for the associated bs
1486 * returns a pointer to bs_queue, which is either the newly allocated
1487 * bs_queue, or the existing bs_queue being used.
1490 BlockReopenQueue
*bdrv_reopen_queue(BlockReopenQueue
*bs_queue
,
1491 BlockDriverState
*bs
, int flags
)
1495 BlockReopenQueueEntry
*bs_entry
;
1496 if (bs_queue
== NULL
) {
1497 bs_queue
= g_new0(BlockReopenQueue
, 1);
1498 QSIMPLEQ_INIT(bs_queue
);
1502 bdrv_reopen_queue(bs_queue
, bs
->file
, flags
);
1505 bs_entry
= g_new0(BlockReopenQueueEntry
, 1);
1506 QSIMPLEQ_INSERT_TAIL(bs_queue
, bs_entry
, entry
);
1508 bs_entry
->state
.bs
= bs
;
1509 bs_entry
->state
.flags
= flags
;
1515 * Reopen multiple BlockDriverStates atomically & transactionally.
1517 * The queue passed in (bs_queue) must have been built up previous
1518 * via bdrv_reopen_queue().
1520 * Reopens all BDS specified in the queue, with the appropriate
1521 * flags. All devices are prepared for reopen, and failure of any
1522 * device will cause all device changes to be abandonded, and intermediate
1525 * If all devices prepare successfully, then the changes are committed
1529 int bdrv_reopen_multiple(BlockReopenQueue
*bs_queue
, Error
**errp
)
1532 BlockReopenQueueEntry
*bs_entry
, *next
;
1533 Error
*local_err
= NULL
;
1535 assert(bs_queue
!= NULL
);
1539 QSIMPLEQ_FOREACH(bs_entry
, bs_queue
, entry
) {
1540 if (bdrv_reopen_prepare(&bs_entry
->state
, bs_queue
, &local_err
)) {
1541 error_propagate(errp
, local_err
);
1544 bs_entry
->prepared
= true;
1547 /* If we reach this point, we have success and just need to apply the
1550 QSIMPLEQ_FOREACH(bs_entry
, bs_queue
, entry
) {
1551 bdrv_reopen_commit(&bs_entry
->state
);
1557 QSIMPLEQ_FOREACH_SAFE(bs_entry
, bs_queue
, entry
, next
) {
1558 if (ret
&& bs_entry
->prepared
) {
1559 bdrv_reopen_abort(&bs_entry
->state
);
1568 /* Reopen a single BlockDriverState with the specified flags. */
1569 int bdrv_reopen(BlockDriverState
*bs
, int bdrv_flags
, Error
**errp
)
1572 Error
*local_err
= NULL
;
1573 BlockReopenQueue
*queue
= bdrv_reopen_queue(NULL
, bs
, bdrv_flags
);
1575 ret
= bdrv_reopen_multiple(queue
, &local_err
);
1576 if (local_err
!= NULL
) {
1577 error_propagate(errp
, local_err
);
1584 * Prepares a BlockDriverState for reopen. All changes are staged in the
1585 * 'opaque' field of the BDRVReopenState, which is used and allocated by
1586 * the block driver layer .bdrv_reopen_prepare()
1588 * bs is the BlockDriverState to reopen
1589 * flags are the new open flags
1590 * queue is the reopen queue
1592 * Returns 0 on success, non-zero on error. On error errp will be set
1595 * On failure, bdrv_reopen_abort() will be called to clean up any data.
1596 * It is the responsibility of the caller to then call the abort() or
1597 * commit() for any other BDS that have been left in a prepare() state
1600 int bdrv_reopen_prepare(BDRVReopenState
*reopen_state
, BlockReopenQueue
*queue
,
1604 Error
*local_err
= NULL
;
1607 assert(reopen_state
!= NULL
);
1608 assert(reopen_state
->bs
->drv
!= NULL
);
1609 drv
= reopen_state
->bs
->drv
;
1611 /* if we are to stay read-only, do not allow permission change
1613 if (!(reopen_state
->bs
->open_flags
& BDRV_O_ALLOW_RDWR
) &&
1614 reopen_state
->flags
& BDRV_O_RDWR
) {
1615 error_set(errp
, QERR_DEVICE_IS_READ_ONLY
,
1616 reopen_state
->bs
->device_name
);
1621 ret
= bdrv_flush(reopen_state
->bs
);
1623 error_set(errp
, ERROR_CLASS_GENERIC_ERROR
, "Error (%s) flushing drive",
1628 if (drv
->bdrv_reopen_prepare
) {
1629 ret
= drv
->bdrv_reopen_prepare(reopen_state
, queue
, &local_err
);
1631 if (local_err
!= NULL
) {
1632 error_propagate(errp
, local_err
);
1634 error_setg(errp
, "failed while preparing to reopen image '%s'",
1635 reopen_state
->bs
->filename
);
1640 /* It is currently mandatory to have a bdrv_reopen_prepare()
1641 * handler for each supported drv. */
1642 error_set(errp
, QERR_BLOCK_FORMAT_FEATURE_NOT_SUPPORTED
,
1643 drv
->format_name
, reopen_state
->bs
->device_name
,
1644 "reopening of file");
1656 * Takes the staged changes for the reopen from bdrv_reopen_prepare(), and
1657 * makes them final by swapping the staging BlockDriverState contents into
1658 * the active BlockDriverState contents.
1660 void bdrv_reopen_commit(BDRVReopenState
*reopen_state
)
1664 assert(reopen_state
!= NULL
);
1665 drv
= reopen_state
->bs
->drv
;
1666 assert(drv
!= NULL
);
1668 /* If there are any driver level actions to take */
1669 if (drv
->bdrv_reopen_commit
) {
1670 drv
->bdrv_reopen_commit(reopen_state
);
1673 /* set BDS specific flags now */
1674 reopen_state
->bs
->open_flags
= reopen_state
->flags
;
1675 reopen_state
->bs
->enable_write_cache
= !!(reopen_state
->flags
&
1677 reopen_state
->bs
->read_only
= !(reopen_state
->flags
& BDRV_O_RDWR
);
1679 bdrv_refresh_limits(reopen_state
->bs
);
1683 * Abort the reopen, and delete and free the staged changes in
1686 void bdrv_reopen_abort(BDRVReopenState
*reopen_state
)
1690 assert(reopen_state
!= NULL
);
1691 drv
= reopen_state
->bs
->drv
;
1692 assert(drv
!= NULL
);
1694 if (drv
->bdrv_reopen_abort
) {
1695 drv
->bdrv_reopen_abort(reopen_state
);
1700 void bdrv_close(BlockDriverState
*bs
)
1703 block_job_cancel_sync(bs
->job
);
1705 bdrv_drain_all(); /* complete I/O */
1707 bdrv_drain_all(); /* in case flush left pending I/O */
1708 notifier_list_notify(&bs
->close_notifiers
, bs
);
1711 if (bs
->backing_hd
) {
1712 bdrv_unref(bs
->backing_hd
);
1713 bs
->backing_hd
= NULL
;
1715 bs
->drv
->bdrv_close(bs
);
1718 if (bs
->is_temporary
) {
1719 unlink(bs
->filename
);
1724 bs
->copy_on_read
= 0;
1725 bs
->backing_file
[0] = '\0';
1726 bs
->backing_format
[0] = '\0';
1727 bs
->total_sectors
= 0;
1732 bs
->zero_beyond_eof
= false;
1733 QDECREF(bs
->options
);
1736 if (bs
->file
!= NULL
) {
1737 bdrv_unref(bs
->file
);
1742 bdrv_dev_change_media_cb(bs
, false);
1744 /*throttling disk I/O limits*/
1745 if (bs
->io_limits_enabled
) {
1746 bdrv_io_limits_disable(bs
);
1750 void bdrv_close_all(void)
1752 BlockDriverState
*bs
;
1754 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
1759 /* Check if any requests are in-flight (including throttled requests) */
1760 static bool bdrv_requests_pending(BlockDriverState
*bs
)
1762 if (!QLIST_EMPTY(&bs
->tracked_requests
)) {
1765 if (!qemu_co_queue_empty(&bs
->throttled_reqs
[0])) {
1768 if (!qemu_co_queue_empty(&bs
->throttled_reqs
[1])) {
1771 if (bs
->file
&& bdrv_requests_pending(bs
->file
)) {
1774 if (bs
->backing_hd
&& bdrv_requests_pending(bs
->backing_hd
)) {
1780 static bool bdrv_requests_pending_all(void)
1782 BlockDriverState
*bs
;
1783 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
1784 if (bdrv_requests_pending(bs
)) {
1792 * Wait for pending requests to complete across all BlockDriverStates
1794 * This function does not flush data to disk, use bdrv_flush_all() for that
1795 * after calling this function.
1797 * Note that completion of an asynchronous I/O operation can trigger any
1798 * number of other I/O operations on other devices---for example a coroutine
1799 * can be arbitrarily complex and a constant flow of I/O can come until the
1800 * coroutine is complete. Because of this, it is not possible to have a
1801 * function to drain a single device's I/O queue.
1803 void bdrv_drain_all(void)
1805 /* Always run first iteration so any pending completion BHs run */
1807 BlockDriverState
*bs
;
1810 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
1811 bdrv_start_throttled_reqs(bs
);
1814 busy
= bdrv_requests_pending_all();
1815 busy
|= aio_poll(qemu_get_aio_context(), busy
);
1819 /* make a BlockDriverState anonymous by removing from bdrv_state and
1820 * graph_bdrv_state list.
1821 Also, NULL terminate the device_name to prevent double remove */
1822 void bdrv_make_anon(BlockDriverState
*bs
)
1824 if (bs
->device_name
[0] != '\0') {
1825 QTAILQ_REMOVE(&bdrv_states
, bs
, device_list
);
1827 bs
->device_name
[0] = '\0';
1828 if (bs
->node_name
[0] != '\0') {
1829 QTAILQ_REMOVE(&graph_bdrv_states
, bs
, node_list
);
1831 bs
->node_name
[0] = '\0';
1834 static void bdrv_rebind(BlockDriverState
*bs
)
1836 if (bs
->drv
&& bs
->drv
->bdrv_rebind
) {
1837 bs
->drv
->bdrv_rebind(bs
);
1841 static void bdrv_move_feature_fields(BlockDriverState
*bs_dest
,
1842 BlockDriverState
*bs_src
)
1844 /* move some fields that need to stay attached to the device */
1845 bs_dest
->open_flags
= bs_src
->open_flags
;
1848 bs_dest
->dev_ops
= bs_src
->dev_ops
;
1849 bs_dest
->dev_opaque
= bs_src
->dev_opaque
;
1850 bs_dest
->dev
= bs_src
->dev
;
1851 bs_dest
->guest_block_size
= bs_src
->guest_block_size
;
1852 bs_dest
->copy_on_read
= bs_src
->copy_on_read
;
1854 bs_dest
->enable_write_cache
= bs_src
->enable_write_cache
;
1856 /* i/o throttled req */
1857 memcpy(&bs_dest
->throttle_state
,
1858 &bs_src
->throttle_state
,
1859 sizeof(ThrottleState
));
1860 bs_dest
->throttled_reqs
[0] = bs_src
->throttled_reqs
[0];
1861 bs_dest
->throttled_reqs
[1] = bs_src
->throttled_reqs
[1];
1862 bs_dest
->io_limits_enabled
= bs_src
->io_limits_enabled
;
1865 bs_dest
->on_read_error
= bs_src
->on_read_error
;
1866 bs_dest
->on_write_error
= bs_src
->on_write_error
;
1869 bs_dest
->iostatus_enabled
= bs_src
->iostatus_enabled
;
1870 bs_dest
->iostatus
= bs_src
->iostatus
;
1873 bs_dest
->dirty_bitmaps
= bs_src
->dirty_bitmaps
;
1875 /* reference count */
1876 bs_dest
->refcnt
= bs_src
->refcnt
;
1879 bs_dest
->in_use
= bs_src
->in_use
;
1880 bs_dest
->job
= bs_src
->job
;
1882 /* keep the same entry in bdrv_states */
1883 pstrcpy(bs_dest
->device_name
, sizeof(bs_dest
->device_name
),
1884 bs_src
->device_name
);
1885 bs_dest
->device_list
= bs_src
->device_list
;
1889 * Swap bs contents for two image chains while they are live,
1890 * while keeping required fields on the BlockDriverState that is
1891 * actually attached to a device.
1893 * This will modify the BlockDriverState fields, and swap contents
1894 * between bs_new and bs_old. Both bs_new and bs_old are modified.
1896 * bs_new is required to be anonymous.
1898 * This function does not create any image files.
1900 void bdrv_swap(BlockDriverState
*bs_new
, BlockDriverState
*bs_old
)
1902 BlockDriverState tmp
;
1904 /* The code needs to swap the node_name but simply swapping node_list won't
1905 * work so first remove the nodes from the graph list, do the swap then
1906 * insert them back if needed.
1908 if (bs_new
->node_name
[0] != '\0') {
1909 QTAILQ_REMOVE(&graph_bdrv_states
, bs_new
, node_list
);
1911 if (bs_old
->node_name
[0] != '\0') {
1912 QTAILQ_REMOVE(&graph_bdrv_states
, bs_old
, node_list
);
1915 /* bs_new must be anonymous and shouldn't have anything fancy enabled */
1916 assert(bs_new
->device_name
[0] == '\0');
1917 assert(QLIST_EMPTY(&bs_new
->dirty_bitmaps
));
1918 assert(bs_new
->job
== NULL
);
1919 assert(bs_new
->dev
== NULL
);
1920 assert(bs_new
->in_use
== 0);
1921 assert(bs_new
->io_limits_enabled
== false);
1922 assert(!throttle_have_timer(&bs_new
->throttle_state
));
1928 /* there are some fields that should not be swapped, move them back */
1929 bdrv_move_feature_fields(&tmp
, bs_old
);
1930 bdrv_move_feature_fields(bs_old
, bs_new
);
1931 bdrv_move_feature_fields(bs_new
, &tmp
);
1933 /* bs_new shouldn't be in bdrv_states even after the swap! */
1934 assert(bs_new
->device_name
[0] == '\0');
1936 /* Check a few fields that should remain attached to the device */
1937 assert(bs_new
->dev
== NULL
);
1938 assert(bs_new
->job
== NULL
);
1939 assert(bs_new
->in_use
== 0);
1940 assert(bs_new
->io_limits_enabled
== false);
1941 assert(!throttle_have_timer(&bs_new
->throttle_state
));
1943 /* insert the nodes back into the graph node list if needed */
1944 if (bs_new
->node_name
[0] != '\0') {
1945 QTAILQ_INSERT_TAIL(&graph_bdrv_states
, bs_new
, node_list
);
1947 if (bs_old
->node_name
[0] != '\0') {
1948 QTAILQ_INSERT_TAIL(&graph_bdrv_states
, bs_old
, node_list
);
1951 bdrv_rebind(bs_new
);
1952 bdrv_rebind(bs_old
);
1956 * Add new bs contents at the top of an image chain while the chain is
1957 * live, while keeping required fields on the top layer.
1959 * This will modify the BlockDriverState fields, and swap contents
1960 * between bs_new and bs_top. Both bs_new and bs_top are modified.
1962 * bs_new is required to be anonymous.
1964 * This function does not create any image files.
1966 void bdrv_append(BlockDriverState
*bs_new
, BlockDriverState
*bs_top
)
1968 bdrv_swap(bs_new
, bs_top
);
1970 /* The contents of 'tmp' will become bs_top, as we are
1971 * swapping bs_new and bs_top contents. */
1972 bs_top
->backing_hd
= bs_new
;
1973 bs_top
->open_flags
&= ~BDRV_O_NO_BACKING
;
1974 pstrcpy(bs_top
->backing_file
, sizeof(bs_top
->backing_file
),
1976 pstrcpy(bs_top
->backing_format
, sizeof(bs_top
->backing_format
),
1977 bs_new
->drv
? bs_new
->drv
->format_name
: "");
1980 static void bdrv_delete(BlockDriverState
*bs
)
1984 assert(!bs
->in_use
);
1985 assert(!bs
->refcnt
);
1986 assert(QLIST_EMPTY(&bs
->dirty_bitmaps
));
1990 /* remove from list, if necessary */
1996 int bdrv_attach_dev(BlockDriverState
*bs
, void *dev
)
1997 /* TODO change to DeviceState *dev when all users are qdevified */
2003 bdrv_iostatus_reset(bs
);
2007 /* TODO qdevified devices don't use this, remove when devices are qdevified */
2008 void bdrv_attach_dev_nofail(BlockDriverState
*bs
, void *dev
)
2010 if (bdrv_attach_dev(bs
, dev
) < 0) {
2015 void bdrv_detach_dev(BlockDriverState
*bs
, void *dev
)
2016 /* TODO change to DeviceState *dev when all users are qdevified */
2018 assert(bs
->dev
== dev
);
2021 bs
->dev_opaque
= NULL
;
2022 bs
->guest_block_size
= 512;
2025 /* TODO change to return DeviceState * when all users are qdevified */
2026 void *bdrv_get_attached_dev(BlockDriverState
*bs
)
2031 void bdrv_set_dev_ops(BlockDriverState
*bs
, const BlockDevOps
*ops
,
2035 bs
->dev_opaque
= opaque
;
2038 void bdrv_emit_qmp_error_event(const BlockDriverState
*bdrv
,
2039 enum MonitorEvent ev
,
2040 BlockErrorAction action
, bool is_read
)
2043 const char *action_str
;
2046 case BDRV_ACTION_REPORT
:
2047 action_str
= "report";
2049 case BDRV_ACTION_IGNORE
:
2050 action_str
= "ignore";
2052 case BDRV_ACTION_STOP
:
2053 action_str
= "stop";
2059 data
= qobject_from_jsonf("{ 'device': %s, 'action': %s, 'operation': %s }",
2062 is_read
? "read" : "write");
2063 monitor_protocol_event(ev
, data
);
2065 qobject_decref(data
);
2068 static void bdrv_emit_qmp_eject_event(BlockDriverState
*bs
, bool ejected
)
2072 data
= qobject_from_jsonf("{ 'device': %s, 'tray-open': %i }",
2073 bdrv_get_device_name(bs
), ejected
);
2074 monitor_protocol_event(QEVENT_DEVICE_TRAY_MOVED
, data
);
2076 qobject_decref(data
);
2079 static void bdrv_dev_change_media_cb(BlockDriverState
*bs
, bool load
)
2081 if (bs
->dev_ops
&& bs
->dev_ops
->change_media_cb
) {
2082 bool tray_was_closed
= !bdrv_dev_is_tray_open(bs
);
2083 bs
->dev_ops
->change_media_cb(bs
->dev_opaque
, load
);
2084 if (tray_was_closed
) {
2086 bdrv_emit_qmp_eject_event(bs
, true);
2090 bdrv_emit_qmp_eject_event(bs
, false);
2095 bool bdrv_dev_has_removable_media(BlockDriverState
*bs
)
2097 return !bs
->dev
|| (bs
->dev_ops
&& bs
->dev_ops
->change_media_cb
);
2100 void bdrv_dev_eject_request(BlockDriverState
*bs
, bool force
)
2102 if (bs
->dev_ops
&& bs
->dev_ops
->eject_request_cb
) {
2103 bs
->dev_ops
->eject_request_cb(bs
->dev_opaque
, force
);
2107 bool bdrv_dev_is_tray_open(BlockDriverState
*bs
)
2109 if (bs
->dev_ops
&& bs
->dev_ops
->is_tray_open
) {
2110 return bs
->dev_ops
->is_tray_open(bs
->dev_opaque
);
2115 static void bdrv_dev_resize_cb(BlockDriverState
*bs
)
2117 if (bs
->dev_ops
&& bs
->dev_ops
->resize_cb
) {
2118 bs
->dev_ops
->resize_cb(bs
->dev_opaque
);
2122 bool bdrv_dev_is_medium_locked(BlockDriverState
*bs
)
2124 if (bs
->dev_ops
&& bs
->dev_ops
->is_medium_locked
) {
2125 return bs
->dev_ops
->is_medium_locked(bs
->dev_opaque
);
2131 * Run consistency checks on an image
2133 * Returns 0 if the check could be completed (it doesn't mean that the image is
2134 * free of errors) or -errno when an internal error occurred. The results of the
2135 * check are stored in res.
2137 int bdrv_check(BlockDriverState
*bs
, BdrvCheckResult
*res
, BdrvCheckMode fix
)
2139 if (bs
->drv
->bdrv_check
== NULL
) {
2143 memset(res
, 0, sizeof(*res
));
2144 return bs
->drv
->bdrv_check(bs
, res
, fix
);
2147 #define COMMIT_BUF_SECTORS 2048
2149 /* commit COW file into the raw image */
2150 int bdrv_commit(BlockDriverState
*bs
)
2152 BlockDriver
*drv
= bs
->drv
;
2153 int64_t sector
, total_sectors
, length
, backing_length
;
2154 int n
, ro
, open_flags
;
2156 uint8_t *buf
= NULL
;
2157 char filename
[PATH_MAX
];
2162 if (!bs
->backing_hd
) {
2166 if (bdrv_in_use(bs
) || bdrv_in_use(bs
->backing_hd
)) {
2170 ro
= bs
->backing_hd
->read_only
;
2171 /* Use pstrcpy (not strncpy): filename must be NUL-terminated. */
2172 pstrcpy(filename
, sizeof(filename
), bs
->backing_hd
->filename
);
2173 open_flags
= bs
->backing_hd
->open_flags
;
2176 if (bdrv_reopen(bs
->backing_hd
, open_flags
| BDRV_O_RDWR
, NULL
)) {
2181 length
= bdrv_getlength(bs
);
2187 backing_length
= bdrv_getlength(bs
->backing_hd
);
2188 if (backing_length
< 0) {
2189 ret
= backing_length
;
2193 /* If our top snapshot is larger than the backing file image,
2194 * grow the backing file image if possible. If not possible,
2195 * we must return an error */
2196 if (length
> backing_length
) {
2197 ret
= bdrv_truncate(bs
->backing_hd
, length
);
2203 total_sectors
= length
>> BDRV_SECTOR_BITS
;
2204 buf
= g_malloc(COMMIT_BUF_SECTORS
* BDRV_SECTOR_SIZE
);
2206 for (sector
= 0; sector
< total_sectors
; sector
+= n
) {
2207 ret
= bdrv_is_allocated(bs
, sector
, COMMIT_BUF_SECTORS
, &n
);
2212 ret
= bdrv_read(bs
, sector
, buf
, n
);
2217 ret
= bdrv_write(bs
->backing_hd
, sector
, buf
, n
);
2224 if (drv
->bdrv_make_empty
) {
2225 ret
= drv
->bdrv_make_empty(bs
);
2233 * Make sure all data we wrote to the backing device is actually
2236 if (bs
->backing_hd
) {
2237 bdrv_flush(bs
->backing_hd
);
2245 /* ignoring error return here */
2246 bdrv_reopen(bs
->backing_hd
, open_flags
& ~BDRV_O_RDWR
, NULL
);
2252 int bdrv_commit_all(void)
2254 BlockDriverState
*bs
;
2256 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
2257 if (bs
->drv
&& bs
->backing_hd
) {
2258 int ret
= bdrv_commit(bs
);
2268 * Remove an active request from the tracked requests list
2270 * This function should be called when a tracked request is completing.
2272 static void tracked_request_end(BdrvTrackedRequest
*req
)
2274 if (req
->serialising
) {
2275 req
->bs
->serialising_in_flight
--;
2278 QLIST_REMOVE(req
, list
);
2279 qemu_co_queue_restart_all(&req
->wait_queue
);
2283 * Add an active request to the tracked requests list
2285 static void tracked_request_begin(BdrvTrackedRequest
*req
,
2286 BlockDriverState
*bs
,
2288 unsigned int bytes
, bool is_write
)
2290 *req
= (BdrvTrackedRequest
){
2294 .is_write
= is_write
,
2295 .co
= qemu_coroutine_self(),
2296 .serialising
= false,
2297 .overlap_offset
= offset
,
2298 .overlap_bytes
= bytes
,
2301 qemu_co_queue_init(&req
->wait_queue
);
2303 QLIST_INSERT_HEAD(&bs
->tracked_requests
, req
, list
);
2306 static void mark_request_serialising(BdrvTrackedRequest
*req
, uint64_t align
)
2308 int64_t overlap_offset
= req
->offset
& ~(align
- 1);
2309 unsigned int overlap_bytes
= ROUND_UP(req
->offset
+ req
->bytes
, align
)
2312 if (!req
->serialising
) {
2313 req
->bs
->serialising_in_flight
++;
2314 req
->serialising
= true;
2317 req
->overlap_offset
= MIN(req
->overlap_offset
, overlap_offset
);
2318 req
->overlap_bytes
= MAX(req
->overlap_bytes
, overlap_bytes
);
2322 * Round a region to cluster boundaries
2324 void bdrv_round_to_clusters(BlockDriverState
*bs
,
2325 int64_t sector_num
, int nb_sectors
,
2326 int64_t *cluster_sector_num
,
2327 int *cluster_nb_sectors
)
2329 BlockDriverInfo bdi
;
2331 if (bdrv_get_info(bs
, &bdi
) < 0 || bdi
.cluster_size
== 0) {
2332 *cluster_sector_num
= sector_num
;
2333 *cluster_nb_sectors
= nb_sectors
;
2335 int64_t c
= bdi
.cluster_size
/ BDRV_SECTOR_SIZE
;
2336 *cluster_sector_num
= QEMU_ALIGN_DOWN(sector_num
, c
);
2337 *cluster_nb_sectors
= QEMU_ALIGN_UP(sector_num
- *cluster_sector_num
+
2342 static int bdrv_get_cluster_size(BlockDriverState
*bs
)
2344 BlockDriverInfo bdi
;
2347 ret
= bdrv_get_info(bs
, &bdi
);
2348 if (ret
< 0 || bdi
.cluster_size
== 0) {
2349 return bs
->request_alignment
;
2351 return bdi
.cluster_size
;
2355 static bool tracked_request_overlaps(BdrvTrackedRequest
*req
,
2356 int64_t offset
, unsigned int bytes
)
2359 if (offset
>= req
->overlap_offset
+ req
->overlap_bytes
) {
2363 if (req
->overlap_offset
>= offset
+ bytes
) {
2369 static bool coroutine_fn
wait_serialising_requests(BdrvTrackedRequest
*self
)
2371 BlockDriverState
*bs
= self
->bs
;
2372 BdrvTrackedRequest
*req
;
2374 bool waited
= false;
2376 if (!bs
->serialising_in_flight
) {
2382 QLIST_FOREACH(req
, &bs
->tracked_requests
, list
) {
2383 if (req
== self
|| (!req
->serialising
&& !self
->serialising
)) {
2386 if (tracked_request_overlaps(req
, self
->overlap_offset
,
2387 self
->overlap_bytes
))
2389 /* Hitting this means there was a reentrant request, for
2390 * example, a block driver issuing nested requests. This must
2391 * never happen since it means deadlock.
2393 assert(qemu_coroutine_self() != req
->co
);
2395 /* If the request is already (indirectly) waiting for us, or
2396 * will wait for us as soon as it wakes up, then just go on
2397 * (instead of producing a deadlock in the former case). */
2398 if (!req
->waiting_for
) {
2399 self
->waiting_for
= req
;
2400 qemu_co_queue_wait(&req
->wait_queue
);
2401 self
->waiting_for
= NULL
;
2416 * -EINVAL - backing format specified, but no file
2417 * -ENOSPC - can't update the backing file because no space is left in the
2419 * -ENOTSUP - format driver doesn't support changing the backing file
2421 int bdrv_change_backing_file(BlockDriverState
*bs
,
2422 const char *backing_file
, const char *backing_fmt
)
2424 BlockDriver
*drv
= bs
->drv
;
2427 /* Backing file format doesn't make sense without a backing file */
2428 if (backing_fmt
&& !backing_file
) {
2432 if (drv
->bdrv_change_backing_file
!= NULL
) {
2433 ret
= drv
->bdrv_change_backing_file(bs
, backing_file
, backing_fmt
);
2439 pstrcpy(bs
->backing_file
, sizeof(bs
->backing_file
), backing_file
?: "");
2440 pstrcpy(bs
->backing_format
, sizeof(bs
->backing_format
), backing_fmt
?: "");
2446 * Finds the image layer in the chain that has 'bs' as its backing file.
2448 * active is the current topmost image.
2450 * Returns NULL if bs is not found in active's image chain,
2451 * or if active == bs.
2453 BlockDriverState
*bdrv_find_overlay(BlockDriverState
*active
,
2454 BlockDriverState
*bs
)
2456 BlockDriverState
*overlay
= NULL
;
2457 BlockDriverState
*intermediate
;
2459 assert(active
!= NULL
);
2462 /* if bs is the same as active, then by definition it has no overlay
2468 intermediate
= active
;
2469 while (intermediate
->backing_hd
) {
2470 if (intermediate
->backing_hd
== bs
) {
2471 overlay
= intermediate
;
2474 intermediate
= intermediate
->backing_hd
;
2480 typedef struct BlkIntermediateStates
{
2481 BlockDriverState
*bs
;
2482 QSIMPLEQ_ENTRY(BlkIntermediateStates
) entry
;
2483 } BlkIntermediateStates
;
2487 * Drops images above 'base' up to and including 'top', and sets the image
2488 * above 'top' to have base as its backing file.
2490 * Requires that the overlay to 'top' is opened r/w, so that the backing file
2491 * information in 'bs' can be properly updated.
2493 * E.g., this will convert the following chain:
2494 * bottom <- base <- intermediate <- top <- active
2498 * bottom <- base <- active
2500 * It is allowed for bottom==base, in which case it converts:
2502 * base <- intermediate <- top <- active
2509 * if active == top, that is considered an error
2512 int bdrv_drop_intermediate(BlockDriverState
*active
, BlockDriverState
*top
,
2513 BlockDriverState
*base
)
2515 BlockDriverState
*intermediate
;
2516 BlockDriverState
*base_bs
= NULL
;
2517 BlockDriverState
*new_top_bs
= NULL
;
2518 BlkIntermediateStates
*intermediate_state
, *next
;
2521 QSIMPLEQ_HEAD(states_to_delete
, BlkIntermediateStates
) states_to_delete
;
2522 QSIMPLEQ_INIT(&states_to_delete
);
2524 if (!top
->drv
|| !base
->drv
) {
2528 new_top_bs
= bdrv_find_overlay(active
, top
);
2530 if (new_top_bs
== NULL
) {
2531 /* we could not find the image above 'top', this is an error */
2535 /* special case of new_top_bs->backing_hd already pointing to base - nothing
2536 * to do, no intermediate images */
2537 if (new_top_bs
->backing_hd
== base
) {
2544 /* now we will go down through the list, and add each BDS we find
2545 * into our deletion queue, until we hit the 'base'
2547 while (intermediate
) {
2548 intermediate_state
= g_malloc0(sizeof(BlkIntermediateStates
));
2549 intermediate_state
->bs
= intermediate
;
2550 QSIMPLEQ_INSERT_TAIL(&states_to_delete
, intermediate_state
, entry
);
2552 if (intermediate
->backing_hd
== base
) {
2553 base_bs
= intermediate
->backing_hd
;
2556 intermediate
= intermediate
->backing_hd
;
2558 if (base_bs
== NULL
) {
2559 /* something went wrong, we did not end at the base. safely
2560 * unravel everything, and exit with error */
2564 /* success - we can delete the intermediate states, and link top->base */
2565 ret
= bdrv_change_backing_file(new_top_bs
, base_bs
->filename
,
2566 base_bs
->drv
? base_bs
->drv
->format_name
: "");
2570 new_top_bs
->backing_hd
= base_bs
;
2572 bdrv_refresh_limits(new_top_bs
);
2574 QSIMPLEQ_FOREACH_SAFE(intermediate_state
, &states_to_delete
, entry
, next
) {
2575 /* so that bdrv_close() does not recursively close the chain */
2576 intermediate_state
->bs
->backing_hd
= NULL
;
2577 bdrv_unref(intermediate_state
->bs
);
2582 QSIMPLEQ_FOREACH_SAFE(intermediate_state
, &states_to_delete
, entry
, next
) {
2583 g_free(intermediate_state
);
2589 static int bdrv_check_byte_request(BlockDriverState
*bs
, int64_t offset
,
2594 if (size
> INT_MAX
) {
2598 if (!bdrv_is_inserted(bs
))
2604 len
= bdrv_getlength(bs
);
2609 if ((offset
> len
) || (len
- offset
< size
))
2615 static int bdrv_check_request(BlockDriverState
*bs
, int64_t sector_num
,
2618 if (nb_sectors
< 0 || nb_sectors
> INT_MAX
/ BDRV_SECTOR_SIZE
) {
2622 return bdrv_check_byte_request(bs
, sector_num
* BDRV_SECTOR_SIZE
,
2623 nb_sectors
* BDRV_SECTOR_SIZE
);
2626 typedef struct RwCo
{
2627 BlockDriverState
*bs
;
2632 BdrvRequestFlags flags
;
2635 static void coroutine_fn
bdrv_rw_co_entry(void *opaque
)
2637 RwCo
*rwco
= opaque
;
2639 if (!rwco
->is_write
) {
2640 rwco
->ret
= bdrv_co_do_preadv(rwco
->bs
, rwco
->offset
,
2641 rwco
->qiov
->size
, rwco
->qiov
,
2644 rwco
->ret
= bdrv_co_do_pwritev(rwco
->bs
, rwco
->offset
,
2645 rwco
->qiov
->size
, rwco
->qiov
,
2651 * Process a vectored synchronous request using coroutines
2653 static int bdrv_prwv_co(BlockDriverState
*bs
, int64_t offset
,
2654 QEMUIOVector
*qiov
, bool is_write
,
2655 BdrvRequestFlags flags
)
2662 .is_write
= is_write
,
2668 * In sync call context, when the vcpu is blocked, this throttling timer
2669 * will not fire; so the I/O throttling function has to be disabled here
2670 * if it has been enabled.
2672 if (bs
->io_limits_enabled
) {
2673 fprintf(stderr
, "Disabling I/O throttling on '%s' due "
2674 "to synchronous I/O.\n", bdrv_get_device_name(bs
));
2675 bdrv_io_limits_disable(bs
);
2678 if (qemu_in_coroutine()) {
2679 /* Fast-path if already in coroutine context */
2680 bdrv_rw_co_entry(&rwco
);
2682 co
= qemu_coroutine_create(bdrv_rw_co_entry
);
2683 qemu_coroutine_enter(co
, &rwco
);
2684 while (rwco
.ret
== NOT_DONE
) {
2692 * Process a synchronous request using coroutines
2694 static int bdrv_rw_co(BlockDriverState
*bs
, int64_t sector_num
, uint8_t *buf
,
2695 int nb_sectors
, bool is_write
, BdrvRequestFlags flags
)
2698 struct iovec iov
= {
2699 .iov_base
= (void *)buf
,
2700 .iov_len
= nb_sectors
* BDRV_SECTOR_SIZE
,
2703 if (nb_sectors
< 0 || nb_sectors
> INT_MAX
/ BDRV_SECTOR_SIZE
) {
2707 qemu_iovec_init_external(&qiov
, &iov
, 1);
2708 return bdrv_prwv_co(bs
, sector_num
<< BDRV_SECTOR_BITS
,
2709 &qiov
, is_write
, flags
);
2712 /* return < 0 if error. See bdrv_write() for the return codes */
2713 int bdrv_read(BlockDriverState
*bs
, int64_t sector_num
,
2714 uint8_t *buf
, int nb_sectors
)
2716 return bdrv_rw_co(bs
, sector_num
, buf
, nb_sectors
, false, 0);
2719 /* Just like bdrv_read(), but with I/O throttling temporarily disabled */
2720 int bdrv_read_unthrottled(BlockDriverState
*bs
, int64_t sector_num
,
2721 uint8_t *buf
, int nb_sectors
)
2726 enabled
= bs
->io_limits_enabled
;
2727 bs
->io_limits_enabled
= false;
2728 ret
= bdrv_read(bs
, sector_num
, buf
, nb_sectors
);
2729 bs
->io_limits_enabled
= enabled
;
2733 /* Return < 0 if error. Important errors are:
2734 -EIO generic I/O error (may happen for all errors)
2735 -ENOMEDIUM No media inserted.
2736 -EINVAL Invalid sector number or nb_sectors
2737 -EACCES Trying to write a read-only device
2739 int bdrv_write(BlockDriverState
*bs
, int64_t sector_num
,
2740 const uint8_t *buf
, int nb_sectors
)
2742 return bdrv_rw_co(bs
, sector_num
, (uint8_t *)buf
, nb_sectors
, true, 0);
2745 int bdrv_write_zeroes(BlockDriverState
*bs
, int64_t sector_num
,
2746 int nb_sectors
, BdrvRequestFlags flags
)
2748 return bdrv_rw_co(bs
, sector_num
, NULL
, nb_sectors
, true,
2749 BDRV_REQ_ZERO_WRITE
| flags
);
2753 * Completely zero out a block device with the help of bdrv_write_zeroes.
2754 * The operation is sped up by checking the block status and only writing
2755 * zeroes to the device if they currently do not return zeroes. Optional
2756 * flags are passed through to bdrv_write_zeroes (e.g. BDRV_REQ_MAY_UNMAP).
2758 * Returns < 0 on error, 0 on success. For error codes see bdrv_write().
2760 int bdrv_make_zero(BlockDriverState
*bs
, BdrvRequestFlags flags
)
2762 int64_t target_size
;
2763 int64_t ret
, nb_sectors
, sector_num
= 0;
2766 target_size
= bdrv_getlength(bs
);
2767 if (target_size
< 0) {
2770 target_size
/= BDRV_SECTOR_SIZE
;
2773 nb_sectors
= target_size
- sector_num
;
2774 if (nb_sectors
<= 0) {
2777 if (nb_sectors
> INT_MAX
) {
2778 nb_sectors
= INT_MAX
;
2780 ret
= bdrv_get_block_status(bs
, sector_num
, nb_sectors
, &n
);
2782 error_report("error getting block status at sector %" PRId64
": %s",
2783 sector_num
, strerror(-ret
));
2786 if (ret
& BDRV_BLOCK_ZERO
) {
2790 ret
= bdrv_write_zeroes(bs
, sector_num
, n
, flags
);
2792 error_report("error writing zeroes at sector %" PRId64
": %s",
2793 sector_num
, strerror(-ret
));
2800 int bdrv_pread(BlockDriverState
*bs
, int64_t offset
, void *buf
, int bytes
)
2803 struct iovec iov
= {
2804 .iov_base
= (void *)buf
,
2813 qemu_iovec_init_external(&qiov
, &iov
, 1);
2814 ret
= bdrv_prwv_co(bs
, offset
, &qiov
, false, 0);
2822 int bdrv_pwritev(BlockDriverState
*bs
, int64_t offset
, QEMUIOVector
*qiov
)
2826 ret
= bdrv_prwv_co(bs
, offset
, qiov
, true, 0);
2834 int bdrv_pwrite(BlockDriverState
*bs
, int64_t offset
,
2835 const void *buf
, int bytes
)
2838 struct iovec iov
= {
2839 .iov_base
= (void *) buf
,
2847 qemu_iovec_init_external(&qiov
, &iov
, 1);
2848 return bdrv_pwritev(bs
, offset
, &qiov
);
2852 * Writes to the file and ensures that no writes are reordered across this
2853 * request (acts as a barrier)
2855 * Returns 0 on success, -errno in error cases.
2857 int bdrv_pwrite_sync(BlockDriverState
*bs
, int64_t offset
,
2858 const void *buf
, int count
)
2862 ret
= bdrv_pwrite(bs
, offset
, buf
, count
);
2867 /* No flush needed for cache modes that already do it */
2868 if (bs
->enable_write_cache
) {
2875 static int coroutine_fn
bdrv_co_do_copy_on_readv(BlockDriverState
*bs
,
2876 int64_t sector_num
, int nb_sectors
, QEMUIOVector
*qiov
)
2878 /* Perform I/O through a temporary buffer so that users who scribble over
2879 * their read buffer while the operation is in progress do not end up
2880 * modifying the image file. This is critical for zero-copy guest I/O
2881 * where anything might happen inside guest memory.
2883 void *bounce_buffer
;
2885 BlockDriver
*drv
= bs
->drv
;
2887 QEMUIOVector bounce_qiov
;
2888 int64_t cluster_sector_num
;
2889 int cluster_nb_sectors
;
2893 /* Cover entire cluster so no additional backing file I/O is required when
2894 * allocating cluster in the image file.
2896 bdrv_round_to_clusters(bs
, sector_num
, nb_sectors
,
2897 &cluster_sector_num
, &cluster_nb_sectors
);
2899 trace_bdrv_co_do_copy_on_readv(bs
, sector_num
, nb_sectors
,
2900 cluster_sector_num
, cluster_nb_sectors
);
2902 iov
.iov_len
= cluster_nb_sectors
* BDRV_SECTOR_SIZE
;
2903 iov
.iov_base
= bounce_buffer
= qemu_blockalign(bs
, iov
.iov_len
);
2904 qemu_iovec_init_external(&bounce_qiov
, &iov
, 1);
2906 ret
= drv
->bdrv_co_readv(bs
, cluster_sector_num
, cluster_nb_sectors
,
2912 if (drv
->bdrv_co_write_zeroes
&&
2913 buffer_is_zero(bounce_buffer
, iov
.iov_len
)) {
2914 ret
= bdrv_co_do_write_zeroes(bs
, cluster_sector_num
,
2915 cluster_nb_sectors
, 0);
2917 /* This does not change the data on the disk, it is not necessary
2918 * to flush even in cache=writethrough mode.
2920 ret
= drv
->bdrv_co_writev(bs
, cluster_sector_num
, cluster_nb_sectors
,
2925 /* It might be okay to ignore write errors for guest requests. If this
2926 * is a deliberate copy-on-read then we don't want to ignore the error.
2927 * Simply report it in all cases.
2932 skip_bytes
= (sector_num
- cluster_sector_num
) * BDRV_SECTOR_SIZE
;
2933 qemu_iovec_from_buf(qiov
, 0, bounce_buffer
+ skip_bytes
,
2934 nb_sectors
* BDRV_SECTOR_SIZE
);
2937 qemu_vfree(bounce_buffer
);
2942 * Forwards an already correctly aligned request to the BlockDriver. This
2943 * handles copy on read and zeroing after EOF; any other features must be
2944 * implemented by the caller.
2946 static int coroutine_fn
bdrv_aligned_preadv(BlockDriverState
*bs
,
2947 BdrvTrackedRequest
*req
, int64_t offset
, unsigned int bytes
,
2948 int64_t align
, QEMUIOVector
*qiov
, int flags
)
2950 BlockDriver
*drv
= bs
->drv
;
2953 int64_t sector_num
= offset
>> BDRV_SECTOR_BITS
;
2954 unsigned int nb_sectors
= bytes
>> BDRV_SECTOR_BITS
;
2956 assert((offset
& (BDRV_SECTOR_SIZE
- 1)) == 0);
2957 assert((bytes
& (BDRV_SECTOR_SIZE
- 1)) == 0);
2959 /* Handle Copy on Read and associated serialisation */
2960 if (flags
& BDRV_REQ_COPY_ON_READ
) {
2961 /* If we touch the same cluster it counts as an overlap. This
2962 * guarantees that allocating writes will be serialized and not race
2963 * with each other for the same cluster. For example, in copy-on-read
2964 * it ensures that the CoR read and write operations are atomic and
2965 * guest writes cannot interleave between them. */
2966 mark_request_serialising(req
, bdrv_get_cluster_size(bs
));
2969 wait_serialising_requests(req
);
2971 if (flags
& BDRV_REQ_COPY_ON_READ
) {
2974 ret
= bdrv_is_allocated(bs
, sector_num
, nb_sectors
, &pnum
);
2979 if (!ret
|| pnum
!= nb_sectors
) {
2980 ret
= bdrv_co_do_copy_on_readv(bs
, sector_num
, nb_sectors
, qiov
);
2985 /* Forward the request to the BlockDriver */
2986 if (!(bs
->zero_beyond_eof
&& bs
->growable
)) {
2987 ret
= drv
->bdrv_co_readv(bs
, sector_num
, nb_sectors
, qiov
);
2989 /* Read zeros after EOF of growable BDSes */
2990 int64_t len
, total_sectors
, max_nb_sectors
;
2992 len
= bdrv_getlength(bs
);
2998 total_sectors
= DIV_ROUND_UP(len
, BDRV_SECTOR_SIZE
);
2999 max_nb_sectors
= ROUND_UP(MAX(0, total_sectors
- sector_num
),
3000 align
>> BDRV_SECTOR_BITS
);
3001 if (max_nb_sectors
> 0) {
3002 ret
= drv
->bdrv_co_readv(bs
, sector_num
,
3003 MIN(nb_sectors
, max_nb_sectors
), qiov
);
3008 /* Reading beyond end of file is supposed to produce zeroes */
3009 if (ret
== 0 && total_sectors
< sector_num
+ nb_sectors
) {
3010 uint64_t offset
= MAX(0, total_sectors
- sector_num
);
3011 uint64_t bytes
= (sector_num
+ nb_sectors
- offset
) *
3013 qemu_iovec_memset(qiov
, offset
* BDRV_SECTOR_SIZE
, 0, bytes
);
3022 * Handle a read request in coroutine context
3024 static int coroutine_fn
bdrv_co_do_preadv(BlockDriverState
*bs
,
3025 int64_t offset
, unsigned int bytes
, QEMUIOVector
*qiov
,
3026 BdrvRequestFlags flags
)
3028 BlockDriver
*drv
= bs
->drv
;
3029 BdrvTrackedRequest req
;
3031 /* TODO Lift BDRV_SECTOR_SIZE restriction in BlockDriver interface */
3032 uint64_t align
= MAX(BDRV_SECTOR_SIZE
, bs
->request_alignment
);
3033 uint8_t *head_buf
= NULL
;
3034 uint8_t *tail_buf
= NULL
;
3035 QEMUIOVector local_qiov
;
3036 bool use_local_qiov
= false;
3042 if (bdrv_check_byte_request(bs
, offset
, bytes
)) {
3046 if (bs
->copy_on_read
) {
3047 flags
|= BDRV_REQ_COPY_ON_READ
;
3050 /* throttling disk I/O */
3051 if (bs
->io_limits_enabled
) {
3052 bdrv_io_limits_intercept(bs
, bytes
, false);
3055 /* Align read if necessary by padding qiov */
3056 if (offset
& (align
- 1)) {
3057 head_buf
= qemu_blockalign(bs
, align
);
3058 qemu_iovec_init(&local_qiov
, qiov
->niov
+ 2);
3059 qemu_iovec_add(&local_qiov
, head_buf
, offset
& (align
- 1));
3060 qemu_iovec_concat(&local_qiov
, qiov
, 0, qiov
->size
);
3061 use_local_qiov
= true;
3063 bytes
+= offset
& (align
- 1);
3064 offset
= offset
& ~(align
- 1);
3067 if ((offset
+ bytes
) & (align
- 1)) {
3068 if (!use_local_qiov
) {
3069 qemu_iovec_init(&local_qiov
, qiov
->niov
+ 1);
3070 qemu_iovec_concat(&local_qiov
, qiov
, 0, qiov
->size
);
3071 use_local_qiov
= true;
3073 tail_buf
= qemu_blockalign(bs
, align
);
3074 qemu_iovec_add(&local_qiov
, tail_buf
,
3075 align
- ((offset
+ bytes
) & (align
- 1)));
3077 bytes
= ROUND_UP(bytes
, align
);
3080 tracked_request_begin(&req
, bs
, offset
, bytes
, false);
3081 ret
= bdrv_aligned_preadv(bs
, &req
, offset
, bytes
, align
,
3082 use_local_qiov
? &local_qiov
: qiov
,
3084 tracked_request_end(&req
);
3086 if (use_local_qiov
) {
3087 qemu_iovec_destroy(&local_qiov
);
3088 qemu_vfree(head_buf
);
3089 qemu_vfree(tail_buf
);
3095 static int coroutine_fn
bdrv_co_do_readv(BlockDriverState
*bs
,
3096 int64_t sector_num
, int nb_sectors
, QEMUIOVector
*qiov
,
3097 BdrvRequestFlags flags
)
3099 if (nb_sectors
< 0 || nb_sectors
> (UINT_MAX
>> BDRV_SECTOR_BITS
)) {
3103 return bdrv_co_do_preadv(bs
, sector_num
<< BDRV_SECTOR_BITS
,
3104 nb_sectors
<< BDRV_SECTOR_BITS
, qiov
, flags
);
3107 int coroutine_fn
bdrv_co_readv(BlockDriverState
*bs
, int64_t sector_num
,
3108 int nb_sectors
, QEMUIOVector
*qiov
)
3110 trace_bdrv_co_readv(bs
, sector_num
, nb_sectors
);
3112 return bdrv_co_do_readv(bs
, sector_num
, nb_sectors
, qiov
, 0);
3115 int coroutine_fn
bdrv_co_copy_on_readv(BlockDriverState
*bs
,
3116 int64_t sector_num
, int nb_sectors
, QEMUIOVector
*qiov
)
3118 trace_bdrv_co_copy_on_readv(bs
, sector_num
, nb_sectors
);
3120 return bdrv_co_do_readv(bs
, sector_num
, nb_sectors
, qiov
,
3121 BDRV_REQ_COPY_ON_READ
);
3124 /* if no limit is specified in the BlockLimits use a default
3125 * of 32768 512-byte sectors (16 MiB) per request.
3127 #define MAX_WRITE_ZEROES_DEFAULT 32768
3129 static int coroutine_fn
bdrv_co_do_write_zeroes(BlockDriverState
*bs
,
3130 int64_t sector_num
, int nb_sectors
, BdrvRequestFlags flags
)
3132 BlockDriver
*drv
= bs
->drv
;
3134 struct iovec iov
= {0};
3137 int max_write_zeroes
= bs
->bl
.max_write_zeroes
?
3138 bs
->bl
.max_write_zeroes
: MAX_WRITE_ZEROES_DEFAULT
;
3140 while (nb_sectors
> 0 && !ret
) {
3141 int num
= nb_sectors
;
3143 /* Align request. Block drivers can expect the "bulk" of the request
3146 if (bs
->bl
.write_zeroes_alignment
3147 && num
> bs
->bl
.write_zeroes_alignment
) {
3148 if (sector_num
% bs
->bl
.write_zeroes_alignment
!= 0) {
3149 /* Make a small request up to the first aligned sector. */
3150 num
= bs
->bl
.write_zeroes_alignment
;
3151 num
-= sector_num
% bs
->bl
.write_zeroes_alignment
;
3152 } else if ((sector_num
+ num
) % bs
->bl
.write_zeroes_alignment
!= 0) {
3153 /* Shorten the request to the last aligned sector. num cannot
3154 * underflow because num > bs->bl.write_zeroes_alignment.
3156 num
-= (sector_num
+ num
) % bs
->bl
.write_zeroes_alignment
;
3160 /* limit request size */
3161 if (num
> max_write_zeroes
) {
3162 num
= max_write_zeroes
;
3166 /* First try the efficient write zeroes operation */
3167 if (drv
->bdrv_co_write_zeroes
) {
3168 ret
= drv
->bdrv_co_write_zeroes(bs
, sector_num
, num
, flags
);
3171 if (ret
== -ENOTSUP
) {
3172 /* Fall back to bounce buffer if write zeroes is unsupported */
3173 iov
.iov_len
= num
* BDRV_SECTOR_SIZE
;
3174 if (iov
.iov_base
== NULL
) {
3175 iov
.iov_base
= qemu_blockalign(bs
, num
* BDRV_SECTOR_SIZE
);
3176 memset(iov
.iov_base
, 0, num
* BDRV_SECTOR_SIZE
);
3178 qemu_iovec_init_external(&qiov
, &iov
, 1);
3180 ret
= drv
->bdrv_co_writev(bs
, sector_num
, num
, &qiov
);
3182 /* Keep bounce buffer around if it is big enough for all
3183 * all future requests.
3185 if (num
< max_write_zeroes
) {
3186 qemu_vfree(iov
.iov_base
);
3187 iov
.iov_base
= NULL
;
3195 qemu_vfree(iov
.iov_base
);
3200 * Forwards an already correctly aligned write request to the BlockDriver.
3202 static int coroutine_fn
bdrv_aligned_pwritev(BlockDriverState
*bs
,
3203 BdrvTrackedRequest
*req
, int64_t offset
, unsigned int bytes
,
3204 QEMUIOVector
*qiov
, int flags
)
3206 BlockDriver
*drv
= bs
->drv
;
3210 int64_t sector_num
= offset
>> BDRV_SECTOR_BITS
;
3211 unsigned int nb_sectors
= bytes
>> BDRV_SECTOR_BITS
;
3213 assert((offset
& (BDRV_SECTOR_SIZE
- 1)) == 0);
3214 assert((bytes
& (BDRV_SECTOR_SIZE
- 1)) == 0);
3216 waited
= wait_serialising_requests(req
);
3217 assert(!waited
|| !req
->serialising
);
3218 assert(req
->overlap_offset
<= offset
);
3219 assert(offset
+ bytes
<= req
->overlap_offset
+ req
->overlap_bytes
);
3221 ret
= notifier_with_return_list_notify(&bs
->before_write_notifiers
, req
);
3224 /* Do nothing, write notifier decided to fail this request */
3225 } else if (flags
& BDRV_REQ_ZERO_WRITE
) {
3226 BLKDBG_EVENT(bs
, BLKDBG_PWRITEV_ZERO
);
3227 ret
= bdrv_co_do_write_zeroes(bs
, sector_num
, nb_sectors
, flags
);
3229 BLKDBG_EVENT(bs
, BLKDBG_PWRITEV
);
3230 ret
= drv
->bdrv_co_writev(bs
, sector_num
, nb_sectors
, qiov
);
3232 BLKDBG_EVENT(bs
, BLKDBG_PWRITEV_DONE
);
3234 if (ret
== 0 && !bs
->enable_write_cache
) {
3235 ret
= bdrv_co_flush(bs
);
3238 bdrv_set_dirty(bs
, sector_num
, nb_sectors
);
3240 if (bs
->wr_highest_sector
< sector_num
+ nb_sectors
- 1) {
3241 bs
->wr_highest_sector
= sector_num
+ nb_sectors
- 1;
3243 if (bs
->growable
&& ret
>= 0) {
3244 bs
->total_sectors
= MAX(bs
->total_sectors
, sector_num
+ nb_sectors
);
3251 * Handle a write request in coroutine context
3253 static int coroutine_fn
bdrv_co_do_pwritev(BlockDriverState
*bs
,
3254 int64_t offset
, unsigned int bytes
, QEMUIOVector
*qiov
,
3255 BdrvRequestFlags flags
)
3257 BdrvTrackedRequest req
;
3258 /* TODO Lift BDRV_SECTOR_SIZE restriction in BlockDriver interface */
3259 uint64_t align
= MAX(BDRV_SECTOR_SIZE
, bs
->request_alignment
);
3260 uint8_t *head_buf
= NULL
;
3261 uint8_t *tail_buf
= NULL
;
3262 QEMUIOVector local_qiov
;
3263 bool use_local_qiov
= false;
3269 if (bs
->read_only
) {
3272 if (bdrv_check_byte_request(bs
, offset
, bytes
)) {
3276 /* throttling disk I/O */
3277 if (bs
->io_limits_enabled
) {
3278 bdrv_io_limits_intercept(bs
, bytes
, true);
3282 * Align write if necessary by performing a read-modify-write cycle.
3283 * Pad qiov with the read parts and be sure to have a tracked request not
3284 * only for bdrv_aligned_pwritev, but also for the reads of the RMW cycle.
3286 tracked_request_begin(&req
, bs
, offset
, bytes
, true);
3288 if (offset
& (align
- 1)) {
3289 QEMUIOVector head_qiov
;
3290 struct iovec head_iov
;
3292 mark_request_serialising(&req
, align
);
3293 wait_serialising_requests(&req
);
3295 head_buf
= qemu_blockalign(bs
, align
);
3296 head_iov
= (struct iovec
) {
3297 .iov_base
= head_buf
,
3300 qemu_iovec_init_external(&head_qiov
, &head_iov
, 1);
3302 BLKDBG_EVENT(bs
, BLKDBG_PWRITEV_RMW_HEAD
);
3303 ret
= bdrv_aligned_preadv(bs
, &req
, offset
& ~(align
- 1), align
,
3304 align
, &head_qiov
, 0);
3308 BLKDBG_EVENT(bs
, BLKDBG_PWRITEV_RMW_AFTER_HEAD
);
3310 qemu_iovec_init(&local_qiov
, qiov
->niov
+ 2);
3311 qemu_iovec_add(&local_qiov
, head_buf
, offset
& (align
- 1));
3312 qemu_iovec_concat(&local_qiov
, qiov
, 0, qiov
->size
);
3313 use_local_qiov
= true;
3315 bytes
+= offset
& (align
- 1);
3316 offset
= offset
& ~(align
- 1);
3319 if ((offset
+ bytes
) & (align
- 1)) {
3320 QEMUIOVector tail_qiov
;
3321 struct iovec tail_iov
;
3325 mark_request_serialising(&req
, align
);
3326 waited
= wait_serialising_requests(&req
);
3327 assert(!waited
|| !use_local_qiov
);
3329 tail_buf
= qemu_blockalign(bs
, align
);
3330 tail_iov
= (struct iovec
) {
3331 .iov_base
= tail_buf
,
3334 qemu_iovec_init_external(&tail_qiov
, &tail_iov
, 1);
3336 BLKDBG_EVENT(bs
, BLKDBG_PWRITEV_RMW_TAIL
);
3337 ret
= bdrv_aligned_preadv(bs
, &req
, (offset
+ bytes
) & ~(align
- 1), align
,
3338 align
, &tail_qiov
, 0);
3342 BLKDBG_EVENT(bs
, BLKDBG_PWRITEV_RMW_AFTER_TAIL
);
3344 if (!use_local_qiov
) {
3345 qemu_iovec_init(&local_qiov
, qiov
->niov
+ 1);
3346 qemu_iovec_concat(&local_qiov
, qiov
, 0, qiov
->size
);
3347 use_local_qiov
= true;
3350 tail_bytes
= (offset
+ bytes
) & (align
- 1);
3351 qemu_iovec_add(&local_qiov
, tail_buf
+ tail_bytes
, align
- tail_bytes
);
3353 bytes
= ROUND_UP(bytes
, align
);
3356 ret
= bdrv_aligned_pwritev(bs
, &req
, offset
, bytes
,
3357 use_local_qiov
? &local_qiov
: qiov
,
3361 tracked_request_end(&req
);
3363 if (use_local_qiov
) {
3364 qemu_iovec_destroy(&local_qiov
);
3366 qemu_vfree(head_buf
);
3367 qemu_vfree(tail_buf
);
3372 static int coroutine_fn
bdrv_co_do_writev(BlockDriverState
*bs
,
3373 int64_t sector_num
, int nb_sectors
, QEMUIOVector
*qiov
,
3374 BdrvRequestFlags flags
)
3376 if (nb_sectors
< 0 || nb_sectors
> (INT_MAX
>> BDRV_SECTOR_BITS
)) {
3380 return bdrv_co_do_pwritev(bs
, sector_num
<< BDRV_SECTOR_BITS
,
3381 nb_sectors
<< BDRV_SECTOR_BITS
, qiov
, flags
);
3384 int coroutine_fn
bdrv_co_writev(BlockDriverState
*bs
, int64_t sector_num
,
3385 int nb_sectors
, QEMUIOVector
*qiov
)
3387 trace_bdrv_co_writev(bs
, sector_num
, nb_sectors
);
3389 return bdrv_co_do_writev(bs
, sector_num
, nb_sectors
, qiov
, 0);
3392 int coroutine_fn
bdrv_co_write_zeroes(BlockDriverState
*bs
,
3393 int64_t sector_num
, int nb_sectors
,
3394 BdrvRequestFlags flags
)
3396 trace_bdrv_co_write_zeroes(bs
, sector_num
, nb_sectors
, flags
);
3398 if (!(bs
->open_flags
& BDRV_O_UNMAP
)) {
3399 flags
&= ~BDRV_REQ_MAY_UNMAP
;
3402 return bdrv_co_do_writev(bs
, sector_num
, nb_sectors
, NULL
,
3403 BDRV_REQ_ZERO_WRITE
| flags
);
3407 * Truncate file to 'offset' bytes (needed only for file protocols)
3409 int bdrv_truncate(BlockDriverState
*bs
, int64_t offset
)
3411 BlockDriver
*drv
= bs
->drv
;
3415 if (!drv
->bdrv_truncate
)
3419 if (bdrv_in_use(bs
))
3421 ret
= drv
->bdrv_truncate(bs
, offset
);
3423 ret
= refresh_total_sectors(bs
, offset
>> BDRV_SECTOR_BITS
);
3424 bdrv_dev_resize_cb(bs
);
3430 * Length of a allocated file in bytes. Sparse files are counted by actual
3431 * allocated space. Return < 0 if error or unknown.
3433 int64_t bdrv_get_allocated_file_size(BlockDriverState
*bs
)
3435 BlockDriver
*drv
= bs
->drv
;
3439 if (drv
->bdrv_get_allocated_file_size
) {
3440 return drv
->bdrv_get_allocated_file_size(bs
);
3443 return bdrv_get_allocated_file_size(bs
->file
);
3449 * Length of a file in bytes. Return < 0 if error or unknown.
3451 int64_t bdrv_getlength(BlockDriverState
*bs
)
3453 BlockDriver
*drv
= bs
->drv
;
3457 if (drv
->has_variable_length
) {
3458 int ret
= refresh_total_sectors(bs
, bs
->total_sectors
);
3463 return bs
->total_sectors
* BDRV_SECTOR_SIZE
;
3466 /* return 0 as number of sectors if no device present or error */
3467 void bdrv_get_geometry(BlockDriverState
*bs
, uint64_t *nb_sectors_ptr
)
3470 length
= bdrv_getlength(bs
);
3474 length
= length
>> BDRV_SECTOR_BITS
;
3475 *nb_sectors_ptr
= length
;
3478 void bdrv_set_on_error(BlockDriverState
*bs
, BlockdevOnError on_read_error
,
3479 BlockdevOnError on_write_error
)
3481 bs
->on_read_error
= on_read_error
;
3482 bs
->on_write_error
= on_write_error
;
3485 BlockdevOnError
bdrv_get_on_error(BlockDriverState
*bs
, bool is_read
)
3487 return is_read
? bs
->on_read_error
: bs
->on_write_error
;
3490 BlockErrorAction
bdrv_get_error_action(BlockDriverState
*bs
, bool is_read
, int error
)
3492 BlockdevOnError on_err
= is_read
? bs
->on_read_error
: bs
->on_write_error
;
3495 case BLOCKDEV_ON_ERROR_ENOSPC
:
3496 return (error
== ENOSPC
) ? BDRV_ACTION_STOP
: BDRV_ACTION_REPORT
;
3497 case BLOCKDEV_ON_ERROR_STOP
:
3498 return BDRV_ACTION_STOP
;
3499 case BLOCKDEV_ON_ERROR_REPORT
:
3500 return BDRV_ACTION_REPORT
;
3501 case BLOCKDEV_ON_ERROR_IGNORE
:
3502 return BDRV_ACTION_IGNORE
;
3508 /* This is done by device models because, while the block layer knows
3509 * about the error, it does not know whether an operation comes from
3510 * the device or the block layer (from a job, for example).
3512 void bdrv_error_action(BlockDriverState
*bs
, BlockErrorAction action
,
3513 bool is_read
, int error
)
3516 bdrv_emit_qmp_error_event(bs
, QEVENT_BLOCK_IO_ERROR
, action
, is_read
);
3517 if (action
== BDRV_ACTION_STOP
) {
3518 vm_stop(RUN_STATE_IO_ERROR
);
3519 bdrv_iostatus_set_err(bs
, error
);
3523 int bdrv_is_read_only(BlockDriverState
*bs
)
3525 return bs
->read_only
;
3528 int bdrv_is_sg(BlockDriverState
*bs
)
3533 int bdrv_enable_write_cache(BlockDriverState
*bs
)
3535 return bs
->enable_write_cache
;
3538 void bdrv_set_enable_write_cache(BlockDriverState
*bs
, bool wce
)
3540 bs
->enable_write_cache
= wce
;
3542 /* so a reopen() will preserve wce */
3544 bs
->open_flags
|= BDRV_O_CACHE_WB
;
3546 bs
->open_flags
&= ~BDRV_O_CACHE_WB
;
3550 int bdrv_is_encrypted(BlockDriverState
*bs
)
3552 if (bs
->backing_hd
&& bs
->backing_hd
->encrypted
)
3554 return bs
->encrypted
;
3557 int bdrv_key_required(BlockDriverState
*bs
)
3559 BlockDriverState
*backing_hd
= bs
->backing_hd
;
3561 if (backing_hd
&& backing_hd
->encrypted
&& !backing_hd
->valid_key
)
3563 return (bs
->encrypted
&& !bs
->valid_key
);
3566 int bdrv_set_key(BlockDriverState
*bs
, const char *key
)
3569 if (bs
->backing_hd
&& bs
->backing_hd
->encrypted
) {
3570 ret
= bdrv_set_key(bs
->backing_hd
, key
);
3576 if (!bs
->encrypted
) {
3578 } else if (!bs
->drv
|| !bs
->drv
->bdrv_set_key
) {
3581 ret
= bs
->drv
->bdrv_set_key(bs
, key
);
3584 } else if (!bs
->valid_key
) {
3586 /* call the change callback now, we skipped it on open */
3587 bdrv_dev_change_media_cb(bs
, true);
3592 const char *bdrv_get_format_name(BlockDriverState
*bs
)
3594 return bs
->drv
? bs
->drv
->format_name
: NULL
;
3597 void bdrv_iterate_format(void (*it
)(void *opaque
, const char *name
),
3602 QLIST_FOREACH(drv
, &bdrv_drivers
, list
) {
3603 it(opaque
, drv
->format_name
);
3607 /* This function is to find block backend bs */
3608 BlockDriverState
*bdrv_find(const char *name
)
3610 BlockDriverState
*bs
;
3612 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
3613 if (!strcmp(name
, bs
->device_name
)) {
3620 /* This function is to find a node in the bs graph */
3621 BlockDriverState
*bdrv_find_node(const char *node_name
)
3623 BlockDriverState
*bs
;
3627 QTAILQ_FOREACH(bs
, &graph_bdrv_states
, node_list
) {
3628 if (!strcmp(node_name
, bs
->node_name
)) {
3635 /* Put this QMP function here so it can access the static graph_bdrv_states. */
3636 BlockDeviceInfoList
*bdrv_named_nodes_list(void)
3638 BlockDeviceInfoList
*list
, *entry
;
3639 BlockDriverState
*bs
;
3642 QTAILQ_FOREACH(bs
, &graph_bdrv_states
, node_list
) {
3643 entry
= g_malloc0(sizeof(*entry
));
3644 entry
->value
= bdrv_block_device_info(bs
);
3652 BlockDriverState
*bdrv_lookup_bs(const char *device
,
3653 const char *node_name
,
3656 BlockDriverState
*bs
= NULL
;
3659 bs
= bdrv_find(device
);
3667 bs
= bdrv_find_node(node_name
);
3674 error_setg(errp
, "Cannot find device=%s nor node_name=%s",
3675 device
? device
: "",
3676 node_name
? node_name
: "");
3680 BlockDriverState
*bdrv_next(BlockDriverState
*bs
)
3683 return QTAILQ_FIRST(&bdrv_states
);
3685 return QTAILQ_NEXT(bs
, device_list
);
3688 void bdrv_iterate(void (*it
)(void *opaque
, BlockDriverState
*bs
), void *opaque
)
3690 BlockDriverState
*bs
;
3692 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
3697 const char *bdrv_get_device_name(BlockDriverState
*bs
)
3699 return bs
->device_name
;
3702 int bdrv_get_flags(BlockDriverState
*bs
)
3704 return bs
->open_flags
;
3707 int bdrv_flush_all(void)
3709 BlockDriverState
*bs
;
3712 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
3713 int ret
= bdrv_flush(bs
);
3714 if (ret
< 0 && !result
) {
3722 int bdrv_has_zero_init_1(BlockDriverState
*bs
)
3727 int bdrv_has_zero_init(BlockDriverState
*bs
)
3731 /* If BS is a copy on write image, it is initialized to
3732 the contents of the base image, which may not be zeroes. */
3733 if (bs
->backing_hd
) {
3736 if (bs
->drv
->bdrv_has_zero_init
) {
3737 return bs
->drv
->bdrv_has_zero_init(bs
);
3744 bool bdrv_unallocated_blocks_are_zero(BlockDriverState
*bs
)
3746 BlockDriverInfo bdi
;
3748 if (bs
->backing_hd
) {
3752 if (bdrv_get_info(bs
, &bdi
) == 0) {
3753 return bdi
.unallocated_blocks_are_zero
;
3759 bool bdrv_can_write_zeroes_with_unmap(BlockDriverState
*bs
)
3761 BlockDriverInfo bdi
;
3763 if (bs
->backing_hd
|| !(bs
->open_flags
& BDRV_O_UNMAP
)) {
3767 if (bdrv_get_info(bs
, &bdi
) == 0) {
3768 return bdi
.can_write_zeroes_with_unmap
;
3774 typedef struct BdrvCoGetBlockStatusData
{
3775 BlockDriverState
*bs
;
3776 BlockDriverState
*base
;
3782 } BdrvCoGetBlockStatusData
;
3785 * Returns true iff the specified sector is present in the disk image. Drivers
3786 * not implementing the functionality are assumed to not support backing files,
3787 * hence all their sectors are reported as allocated.
3789 * If 'sector_num' is beyond the end of the disk image the return value is 0
3790 * and 'pnum' is set to 0.
3792 * 'pnum' is set to the number of sectors (including and immediately following
3793 * the specified sector) that are known to be in the same
3794 * allocated/unallocated state.
3796 * 'nb_sectors' is the max value 'pnum' should be set to. If nb_sectors goes
3797 * beyond the end of the disk image it will be clamped.
3799 static int64_t coroutine_fn
bdrv_co_get_block_status(BlockDriverState
*bs
,
3801 int nb_sectors
, int *pnum
)
3807 length
= bdrv_getlength(bs
);
3812 if (sector_num
>= (length
>> BDRV_SECTOR_BITS
)) {
3817 n
= bs
->total_sectors
- sector_num
;
3818 if (n
< nb_sectors
) {
3822 if (!bs
->drv
->bdrv_co_get_block_status
) {
3824 ret
= BDRV_BLOCK_DATA
;
3825 if (bs
->drv
->protocol_name
) {
3826 ret
|= BDRV_BLOCK_OFFSET_VALID
| (sector_num
* BDRV_SECTOR_SIZE
);
3831 ret
= bs
->drv
->bdrv_co_get_block_status(bs
, sector_num
, nb_sectors
, pnum
);
3837 if (ret
& BDRV_BLOCK_RAW
) {
3838 assert(ret
& BDRV_BLOCK_OFFSET_VALID
);
3839 return bdrv_get_block_status(bs
->file
, ret
>> BDRV_SECTOR_BITS
,
3843 if (!(ret
& BDRV_BLOCK_DATA
) && !(ret
& BDRV_BLOCK_ZERO
)) {
3844 if (bdrv_unallocated_blocks_are_zero(bs
)) {
3845 ret
|= BDRV_BLOCK_ZERO
;
3846 } else if (bs
->backing_hd
) {
3847 BlockDriverState
*bs2
= bs
->backing_hd
;
3848 int64_t length2
= bdrv_getlength(bs2
);
3849 if (length2
>= 0 && sector_num
>= (length2
>> BDRV_SECTOR_BITS
)) {
3850 ret
|= BDRV_BLOCK_ZERO
;
3856 (ret
& BDRV_BLOCK_DATA
) && !(ret
& BDRV_BLOCK_ZERO
) &&
3857 (ret
& BDRV_BLOCK_OFFSET_VALID
)) {
3858 ret2
= bdrv_co_get_block_status(bs
->file
, ret
>> BDRV_SECTOR_BITS
,
3861 /* Ignore errors. This is just providing extra information, it
3862 * is useful but not necessary.
3864 ret
|= (ret2
& BDRV_BLOCK_ZERO
);
3871 /* Coroutine wrapper for bdrv_get_block_status() */
3872 static void coroutine_fn
bdrv_get_block_status_co_entry(void *opaque
)
3874 BdrvCoGetBlockStatusData
*data
= opaque
;
3875 BlockDriverState
*bs
= data
->bs
;
3877 data
->ret
= bdrv_co_get_block_status(bs
, data
->sector_num
, data
->nb_sectors
,
3883 * Synchronous wrapper around bdrv_co_get_block_status().
3885 * See bdrv_co_get_block_status() for details.
3887 int64_t bdrv_get_block_status(BlockDriverState
*bs
, int64_t sector_num
,
3888 int nb_sectors
, int *pnum
)
3891 BdrvCoGetBlockStatusData data
= {
3893 .sector_num
= sector_num
,
3894 .nb_sectors
= nb_sectors
,
3899 if (qemu_in_coroutine()) {
3900 /* Fast-path if already in coroutine context */
3901 bdrv_get_block_status_co_entry(&data
);
3903 co
= qemu_coroutine_create(bdrv_get_block_status_co_entry
);
3904 qemu_coroutine_enter(co
, &data
);
3905 while (!data
.done
) {
3912 int coroutine_fn
bdrv_is_allocated(BlockDriverState
*bs
, int64_t sector_num
,
3913 int nb_sectors
, int *pnum
)
3915 int64_t ret
= bdrv_get_block_status(bs
, sector_num
, nb_sectors
, pnum
);
3920 (ret
& BDRV_BLOCK_DATA
) ||
3921 ((ret
& BDRV_BLOCK_ZERO
) && !bdrv_has_zero_init(bs
));
3925 * Given an image chain: ... -> [BASE] -> [INTER1] -> [INTER2] -> [TOP]
3927 * Return true if the given sector is allocated in any image between
3928 * BASE and TOP (inclusive). BASE can be NULL to check if the given
3929 * sector is allocated in any image of the chain. Return false otherwise.
3931 * 'pnum' is set to the number of sectors (including and immediately following
3932 * the specified sector) that are known to be in the same
3933 * allocated/unallocated state.
3936 int bdrv_is_allocated_above(BlockDriverState
*top
,
3937 BlockDriverState
*base
,
3939 int nb_sectors
, int *pnum
)
3941 BlockDriverState
*intermediate
;
3942 int ret
, n
= nb_sectors
;
3945 while (intermediate
&& intermediate
!= base
) {
3947 ret
= bdrv_is_allocated(intermediate
, sector_num
, nb_sectors
,
3957 * [sector_num, nb_sectors] is unallocated on top but intermediate
3960 * [sector_num+x, nr_sectors] allocated.
3962 if (n
> pnum_inter
&&
3963 (intermediate
== top
||
3964 sector_num
+ pnum_inter
< intermediate
->total_sectors
)) {
3968 intermediate
= intermediate
->backing_hd
;
3975 const char *bdrv_get_encrypted_filename(BlockDriverState
*bs
)
3977 if (bs
->backing_hd
&& bs
->backing_hd
->encrypted
)
3978 return bs
->backing_file
;
3979 else if (bs
->encrypted
)
3980 return bs
->filename
;
3985 void bdrv_get_backing_filename(BlockDriverState
*bs
,
3986 char *filename
, int filename_size
)
3988 pstrcpy(filename
, filename_size
, bs
->backing_file
);
3991 int bdrv_write_compressed(BlockDriverState
*bs
, int64_t sector_num
,
3992 const uint8_t *buf
, int nb_sectors
)
3994 BlockDriver
*drv
= bs
->drv
;
3997 if (!drv
->bdrv_write_compressed
)
3999 if (bdrv_check_request(bs
, sector_num
, nb_sectors
))
4002 assert(QLIST_EMPTY(&bs
->dirty_bitmaps
));
4004 return drv
->bdrv_write_compressed(bs
, sector_num
, buf
, nb_sectors
);
4007 int bdrv_get_info(BlockDriverState
*bs
, BlockDriverInfo
*bdi
)
4009 BlockDriver
*drv
= bs
->drv
;
4012 if (!drv
->bdrv_get_info
)
4014 memset(bdi
, 0, sizeof(*bdi
));
4015 return drv
->bdrv_get_info(bs
, bdi
);
4018 ImageInfoSpecific
*bdrv_get_specific_info(BlockDriverState
*bs
)
4020 BlockDriver
*drv
= bs
->drv
;
4021 if (drv
&& drv
->bdrv_get_specific_info
) {
4022 return drv
->bdrv_get_specific_info(bs
);
4027 int bdrv_save_vmstate(BlockDriverState
*bs
, const uint8_t *buf
,
4028 int64_t pos
, int size
)
4031 struct iovec iov
= {
4032 .iov_base
= (void *) buf
,
4036 qemu_iovec_init_external(&qiov
, &iov
, 1);
4037 return bdrv_writev_vmstate(bs
, &qiov
, pos
);
4040 int bdrv_writev_vmstate(BlockDriverState
*bs
, QEMUIOVector
*qiov
, int64_t pos
)
4042 BlockDriver
*drv
= bs
->drv
;
4046 } else if (drv
->bdrv_save_vmstate
) {
4047 return drv
->bdrv_save_vmstate(bs
, qiov
, pos
);
4048 } else if (bs
->file
) {
4049 return bdrv_writev_vmstate(bs
->file
, qiov
, pos
);
4055 int bdrv_load_vmstate(BlockDriverState
*bs
, uint8_t *buf
,
4056 int64_t pos
, int size
)
4058 BlockDriver
*drv
= bs
->drv
;
4061 if (drv
->bdrv_load_vmstate
)
4062 return drv
->bdrv_load_vmstate(bs
, buf
, pos
, size
);
4064 return bdrv_load_vmstate(bs
->file
, buf
, pos
, size
);
4068 void bdrv_debug_event(BlockDriverState
*bs
, BlkDebugEvent event
)
4070 if (!bs
|| !bs
->drv
|| !bs
->drv
->bdrv_debug_event
) {
4074 bs
->drv
->bdrv_debug_event(bs
, event
);
4077 int bdrv_debug_breakpoint(BlockDriverState
*bs
, const char *event
,
4080 while (bs
&& bs
->drv
&& !bs
->drv
->bdrv_debug_breakpoint
) {
4084 if (bs
&& bs
->drv
&& bs
->drv
->bdrv_debug_breakpoint
) {
4085 return bs
->drv
->bdrv_debug_breakpoint(bs
, event
, tag
);
4091 int bdrv_debug_remove_breakpoint(BlockDriverState
*bs
, const char *tag
)
4093 while (bs
&& bs
->drv
&& !bs
->drv
->bdrv_debug_remove_breakpoint
) {
4097 if (bs
&& bs
->drv
&& bs
->drv
->bdrv_debug_remove_breakpoint
) {
4098 return bs
->drv
->bdrv_debug_remove_breakpoint(bs
, tag
);
4104 int bdrv_debug_resume(BlockDriverState
*bs
, const char *tag
)
4106 while (bs
&& (!bs
->drv
|| !bs
->drv
->bdrv_debug_resume
)) {
4110 if (bs
&& bs
->drv
&& bs
->drv
->bdrv_debug_resume
) {
4111 return bs
->drv
->bdrv_debug_resume(bs
, tag
);
4117 bool bdrv_debug_is_suspended(BlockDriverState
*bs
, const char *tag
)
4119 while (bs
&& bs
->drv
&& !bs
->drv
->bdrv_debug_is_suspended
) {
4123 if (bs
&& bs
->drv
&& bs
->drv
->bdrv_debug_is_suspended
) {
4124 return bs
->drv
->bdrv_debug_is_suspended(bs
, tag
);
4130 int bdrv_is_snapshot(BlockDriverState
*bs
)
4132 return !!(bs
->open_flags
& BDRV_O_SNAPSHOT
);
4135 /* backing_file can either be relative, or absolute, or a protocol. If it is
4136 * relative, it must be relative to the chain. So, passing in bs->filename
4137 * from a BDS as backing_file should not be done, as that may be relative to
4138 * the CWD rather than the chain. */
4139 BlockDriverState
*bdrv_find_backing_image(BlockDriverState
*bs
,
4140 const char *backing_file
)
4142 char *filename_full
= NULL
;
4143 char *backing_file_full
= NULL
;
4144 char *filename_tmp
= NULL
;
4145 int is_protocol
= 0;
4146 BlockDriverState
*curr_bs
= NULL
;
4147 BlockDriverState
*retval
= NULL
;
4149 if (!bs
|| !bs
->drv
|| !backing_file
) {
4153 filename_full
= g_malloc(PATH_MAX
);
4154 backing_file_full
= g_malloc(PATH_MAX
);
4155 filename_tmp
= g_malloc(PATH_MAX
);
4157 is_protocol
= path_has_protocol(backing_file
);
4159 for (curr_bs
= bs
; curr_bs
->backing_hd
; curr_bs
= curr_bs
->backing_hd
) {
4161 /* If either of the filename paths is actually a protocol, then
4162 * compare unmodified paths; otherwise make paths relative */
4163 if (is_protocol
|| path_has_protocol(curr_bs
->backing_file
)) {
4164 if (strcmp(backing_file
, curr_bs
->backing_file
) == 0) {
4165 retval
= curr_bs
->backing_hd
;
4169 /* If not an absolute filename path, make it relative to the current
4170 * image's filename path */
4171 path_combine(filename_tmp
, PATH_MAX
, curr_bs
->filename
,
4174 /* We are going to compare absolute pathnames */
4175 if (!realpath(filename_tmp
, filename_full
)) {
4179 /* We need to make sure the backing filename we are comparing against
4180 * is relative to the current image filename (or absolute) */
4181 path_combine(filename_tmp
, PATH_MAX
, curr_bs
->filename
,
4182 curr_bs
->backing_file
);
4184 if (!realpath(filename_tmp
, backing_file_full
)) {
4188 if (strcmp(backing_file_full
, filename_full
) == 0) {
4189 retval
= curr_bs
->backing_hd
;
4195 g_free(filename_full
);
4196 g_free(backing_file_full
);
4197 g_free(filename_tmp
);
4201 int bdrv_get_backing_file_depth(BlockDriverState
*bs
)
4207 if (!bs
->backing_hd
) {
4211 return 1 + bdrv_get_backing_file_depth(bs
->backing_hd
);
4214 BlockDriverState
*bdrv_find_base(BlockDriverState
*bs
)
4216 BlockDriverState
*curr_bs
= NULL
;
4224 while (curr_bs
->backing_hd
) {
4225 curr_bs
= curr_bs
->backing_hd
;
4230 /**************************************************************/
4233 BlockDriverAIOCB
*bdrv_aio_readv(BlockDriverState
*bs
, int64_t sector_num
,
4234 QEMUIOVector
*qiov
, int nb_sectors
,
4235 BlockDriverCompletionFunc
*cb
, void *opaque
)
4237 trace_bdrv_aio_readv(bs
, sector_num
, nb_sectors
, opaque
);
4239 return bdrv_co_aio_rw_vector(bs
, sector_num
, qiov
, nb_sectors
, 0,
4243 BlockDriverAIOCB
*bdrv_aio_writev(BlockDriverState
*bs
, int64_t sector_num
,
4244 QEMUIOVector
*qiov
, int nb_sectors
,
4245 BlockDriverCompletionFunc
*cb
, void *opaque
)
4247 trace_bdrv_aio_writev(bs
, sector_num
, nb_sectors
, opaque
);
4249 return bdrv_co_aio_rw_vector(bs
, sector_num
, qiov
, nb_sectors
, 0,
4253 BlockDriverAIOCB
*bdrv_aio_write_zeroes(BlockDriverState
*bs
,
4254 int64_t sector_num
, int nb_sectors
, BdrvRequestFlags flags
,
4255 BlockDriverCompletionFunc
*cb
, void *opaque
)
4257 trace_bdrv_aio_write_zeroes(bs
, sector_num
, nb_sectors
, flags
, opaque
);
4259 return bdrv_co_aio_rw_vector(bs
, sector_num
, NULL
, nb_sectors
,
4260 BDRV_REQ_ZERO_WRITE
| flags
,
4265 typedef struct MultiwriteCB
{
4270 BlockDriverCompletionFunc
*cb
;
4272 QEMUIOVector
*free_qiov
;
4276 static void multiwrite_user_cb(MultiwriteCB
*mcb
)
4280 for (i
= 0; i
< mcb
->num_callbacks
; i
++) {
4281 mcb
->callbacks
[i
].cb(mcb
->callbacks
[i
].opaque
, mcb
->error
);
4282 if (mcb
->callbacks
[i
].free_qiov
) {
4283 qemu_iovec_destroy(mcb
->callbacks
[i
].free_qiov
);
4285 g_free(mcb
->callbacks
[i
].free_qiov
);
4289 static void multiwrite_cb(void *opaque
, int ret
)
4291 MultiwriteCB
*mcb
= opaque
;
4293 trace_multiwrite_cb(mcb
, ret
);
4295 if (ret
< 0 && !mcb
->error
) {
4299 mcb
->num_requests
--;
4300 if (mcb
->num_requests
== 0) {
4301 multiwrite_user_cb(mcb
);
4306 static int multiwrite_req_compare(const void *a
, const void *b
)
4308 const BlockRequest
*req1
= a
, *req2
= b
;
4311 * Note that we can't simply subtract req2->sector from req1->sector
4312 * here as that could overflow the return value.
4314 if (req1
->sector
> req2
->sector
) {
4316 } else if (req1
->sector
< req2
->sector
) {
4324 * Takes a bunch of requests and tries to merge them. Returns the number of
4325 * requests that remain after merging.
4327 static int multiwrite_merge(BlockDriverState
*bs
, BlockRequest
*reqs
,
4328 int num_reqs
, MultiwriteCB
*mcb
)
4332 // Sort requests by start sector
4333 qsort(reqs
, num_reqs
, sizeof(*reqs
), &multiwrite_req_compare
);
4335 // Check if adjacent requests touch the same clusters. If so, combine them,
4336 // filling up gaps with zero sectors.
4338 for (i
= 1; i
< num_reqs
; i
++) {
4340 int64_t oldreq_last
= reqs
[outidx
].sector
+ reqs
[outidx
].nb_sectors
;
4342 // Handle exactly sequential writes and overlapping writes.
4343 if (reqs
[i
].sector
<= oldreq_last
) {
4347 if (reqs
[outidx
].qiov
->niov
+ reqs
[i
].qiov
->niov
+ 1 > IOV_MAX
) {
4353 QEMUIOVector
*qiov
= g_malloc0(sizeof(*qiov
));
4354 qemu_iovec_init(qiov
,
4355 reqs
[outidx
].qiov
->niov
+ reqs
[i
].qiov
->niov
+ 1);
4357 // Add the first request to the merged one. If the requests are
4358 // overlapping, drop the last sectors of the first request.
4359 size
= (reqs
[i
].sector
- reqs
[outidx
].sector
) << 9;
4360 qemu_iovec_concat(qiov
, reqs
[outidx
].qiov
, 0, size
);
4362 // We should need to add any zeros between the two requests
4363 assert (reqs
[i
].sector
<= oldreq_last
);
4365 // Add the second request
4366 qemu_iovec_concat(qiov
, reqs
[i
].qiov
, 0, reqs
[i
].qiov
->size
);
4368 reqs
[outidx
].nb_sectors
= qiov
->size
>> 9;
4369 reqs
[outidx
].qiov
= qiov
;
4371 mcb
->callbacks
[i
].free_qiov
= reqs
[outidx
].qiov
;
4374 reqs
[outidx
].sector
= reqs
[i
].sector
;
4375 reqs
[outidx
].nb_sectors
= reqs
[i
].nb_sectors
;
4376 reqs
[outidx
].qiov
= reqs
[i
].qiov
;
4384 * Submit multiple AIO write requests at once.
4386 * On success, the function returns 0 and all requests in the reqs array have
4387 * been submitted. In error case this function returns -1, and any of the
4388 * requests may or may not be submitted yet. In particular, this means that the
4389 * callback will be called for some of the requests, for others it won't. The
4390 * caller must check the error field of the BlockRequest to wait for the right
4391 * callbacks (if error != 0, no callback will be called).
4393 * The implementation may modify the contents of the reqs array, e.g. to merge
4394 * requests. However, the fields opaque and error are left unmodified as they
4395 * are used to signal failure for a single request to the caller.
4397 int bdrv_aio_multiwrite(BlockDriverState
*bs
, BlockRequest
*reqs
, int num_reqs
)
4402 /* don't submit writes if we don't have a medium */
4403 if (bs
->drv
== NULL
) {
4404 for (i
= 0; i
< num_reqs
; i
++) {
4405 reqs
[i
].error
= -ENOMEDIUM
;
4410 if (num_reqs
== 0) {
4414 // Create MultiwriteCB structure
4415 mcb
= g_malloc0(sizeof(*mcb
) + num_reqs
* sizeof(*mcb
->callbacks
));
4416 mcb
->num_requests
= 0;
4417 mcb
->num_callbacks
= num_reqs
;
4419 for (i
= 0; i
< num_reqs
; i
++) {
4420 mcb
->callbacks
[i
].cb
= reqs
[i
].cb
;
4421 mcb
->callbacks
[i
].opaque
= reqs
[i
].opaque
;
4424 // Check for mergable requests
4425 num_reqs
= multiwrite_merge(bs
, reqs
, num_reqs
, mcb
);
4427 trace_bdrv_aio_multiwrite(mcb
, mcb
->num_callbacks
, num_reqs
);
4429 /* Run the aio requests. */
4430 mcb
->num_requests
= num_reqs
;
4431 for (i
= 0; i
< num_reqs
; i
++) {
4432 bdrv_co_aio_rw_vector(bs
, reqs
[i
].sector
, reqs
[i
].qiov
,
4433 reqs
[i
].nb_sectors
, reqs
[i
].flags
,
4441 void bdrv_aio_cancel(BlockDriverAIOCB
*acb
)
4443 acb
->aiocb_info
->cancel(acb
);
4446 /**************************************************************/
4447 /* async block device emulation */
4449 typedef struct BlockDriverAIOCBSync
{
4450 BlockDriverAIOCB common
;
4453 /* vector translation state */
4457 } BlockDriverAIOCBSync
;
4459 static void bdrv_aio_cancel_em(BlockDriverAIOCB
*blockacb
)
4461 BlockDriverAIOCBSync
*acb
=
4462 container_of(blockacb
, BlockDriverAIOCBSync
, common
);
4463 qemu_bh_delete(acb
->bh
);
4465 qemu_aio_release(acb
);
4468 static const AIOCBInfo bdrv_em_aiocb_info
= {
4469 .aiocb_size
= sizeof(BlockDriverAIOCBSync
),
4470 .cancel
= bdrv_aio_cancel_em
,
4473 static void bdrv_aio_bh_cb(void *opaque
)
4475 BlockDriverAIOCBSync
*acb
= opaque
;
4478 qemu_iovec_from_buf(acb
->qiov
, 0, acb
->bounce
, acb
->qiov
->size
);
4479 qemu_vfree(acb
->bounce
);
4480 acb
->common
.cb(acb
->common
.opaque
, acb
->ret
);
4481 qemu_bh_delete(acb
->bh
);
4483 qemu_aio_release(acb
);
4486 static BlockDriverAIOCB
*bdrv_aio_rw_vector(BlockDriverState
*bs
,
4490 BlockDriverCompletionFunc
*cb
,
4495 BlockDriverAIOCBSync
*acb
;
4497 acb
= qemu_aio_get(&bdrv_em_aiocb_info
, bs
, cb
, opaque
);
4498 acb
->is_write
= is_write
;
4500 acb
->bounce
= qemu_blockalign(bs
, qiov
->size
);
4501 acb
->bh
= qemu_bh_new(bdrv_aio_bh_cb
, acb
);
4504 qemu_iovec_to_buf(acb
->qiov
, 0, acb
->bounce
, qiov
->size
);
4505 acb
->ret
= bs
->drv
->bdrv_write(bs
, sector_num
, acb
->bounce
, nb_sectors
);
4507 acb
->ret
= bs
->drv
->bdrv_read(bs
, sector_num
, acb
->bounce
, nb_sectors
);
4510 qemu_bh_schedule(acb
->bh
);
4512 return &acb
->common
;
4515 static BlockDriverAIOCB
*bdrv_aio_readv_em(BlockDriverState
*bs
,
4516 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
4517 BlockDriverCompletionFunc
*cb
, void *opaque
)
4519 return bdrv_aio_rw_vector(bs
, sector_num
, qiov
, nb_sectors
, cb
, opaque
, 0);
4522 static BlockDriverAIOCB
*bdrv_aio_writev_em(BlockDriverState
*bs
,
4523 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
4524 BlockDriverCompletionFunc
*cb
, void *opaque
)
4526 return bdrv_aio_rw_vector(bs
, sector_num
, qiov
, nb_sectors
, cb
, opaque
, 1);
4530 typedef struct BlockDriverAIOCBCoroutine
{
4531 BlockDriverAIOCB common
;
4536 } BlockDriverAIOCBCoroutine
;
4538 static void bdrv_aio_co_cancel_em(BlockDriverAIOCB
*blockacb
)
4540 BlockDriverAIOCBCoroutine
*acb
=
4541 container_of(blockacb
, BlockDriverAIOCBCoroutine
, common
);
4550 static const AIOCBInfo bdrv_em_co_aiocb_info
= {
4551 .aiocb_size
= sizeof(BlockDriverAIOCBCoroutine
),
4552 .cancel
= bdrv_aio_co_cancel_em
,
4555 static void bdrv_co_em_bh(void *opaque
)
4557 BlockDriverAIOCBCoroutine
*acb
= opaque
;
4559 acb
->common
.cb(acb
->common
.opaque
, acb
->req
.error
);
4565 qemu_bh_delete(acb
->bh
);
4566 qemu_aio_release(acb
);
4569 /* Invoke bdrv_co_do_readv/bdrv_co_do_writev */
4570 static void coroutine_fn
bdrv_co_do_rw(void *opaque
)
4572 BlockDriverAIOCBCoroutine
*acb
= opaque
;
4573 BlockDriverState
*bs
= acb
->common
.bs
;
4575 if (!acb
->is_write
) {
4576 acb
->req
.error
= bdrv_co_do_readv(bs
, acb
->req
.sector
,
4577 acb
->req
.nb_sectors
, acb
->req
.qiov
, acb
->req
.flags
);
4579 acb
->req
.error
= bdrv_co_do_writev(bs
, acb
->req
.sector
,
4580 acb
->req
.nb_sectors
, acb
->req
.qiov
, acb
->req
.flags
);
4583 acb
->bh
= qemu_bh_new(bdrv_co_em_bh
, acb
);
4584 qemu_bh_schedule(acb
->bh
);
4587 static BlockDriverAIOCB
*bdrv_co_aio_rw_vector(BlockDriverState
*bs
,
4591 BdrvRequestFlags flags
,
4592 BlockDriverCompletionFunc
*cb
,
4597 BlockDriverAIOCBCoroutine
*acb
;
4599 acb
= qemu_aio_get(&bdrv_em_co_aiocb_info
, bs
, cb
, opaque
);
4600 acb
->req
.sector
= sector_num
;
4601 acb
->req
.nb_sectors
= nb_sectors
;
4602 acb
->req
.qiov
= qiov
;
4603 acb
->req
.flags
= flags
;
4604 acb
->is_write
= is_write
;
4607 co
= qemu_coroutine_create(bdrv_co_do_rw
);
4608 qemu_coroutine_enter(co
, acb
);
4610 return &acb
->common
;
4613 static void coroutine_fn
bdrv_aio_flush_co_entry(void *opaque
)
4615 BlockDriverAIOCBCoroutine
*acb
= opaque
;
4616 BlockDriverState
*bs
= acb
->common
.bs
;
4618 acb
->req
.error
= bdrv_co_flush(bs
);
4619 acb
->bh
= qemu_bh_new(bdrv_co_em_bh
, acb
);
4620 qemu_bh_schedule(acb
->bh
);
4623 BlockDriverAIOCB
*bdrv_aio_flush(BlockDriverState
*bs
,
4624 BlockDriverCompletionFunc
*cb
, void *opaque
)
4626 trace_bdrv_aio_flush(bs
, opaque
);
4629 BlockDriverAIOCBCoroutine
*acb
;
4631 acb
= qemu_aio_get(&bdrv_em_co_aiocb_info
, bs
, cb
, opaque
);
4634 co
= qemu_coroutine_create(bdrv_aio_flush_co_entry
);
4635 qemu_coroutine_enter(co
, acb
);
4637 return &acb
->common
;
4640 static void coroutine_fn
bdrv_aio_discard_co_entry(void *opaque
)
4642 BlockDriverAIOCBCoroutine
*acb
= opaque
;
4643 BlockDriverState
*bs
= acb
->common
.bs
;
4645 acb
->req
.error
= bdrv_co_discard(bs
, acb
->req
.sector
, acb
->req
.nb_sectors
);
4646 acb
->bh
= qemu_bh_new(bdrv_co_em_bh
, acb
);
4647 qemu_bh_schedule(acb
->bh
);
4650 BlockDriverAIOCB
*bdrv_aio_discard(BlockDriverState
*bs
,
4651 int64_t sector_num
, int nb_sectors
,
4652 BlockDriverCompletionFunc
*cb
, void *opaque
)
4655 BlockDriverAIOCBCoroutine
*acb
;
4657 trace_bdrv_aio_discard(bs
, sector_num
, nb_sectors
, opaque
);
4659 acb
= qemu_aio_get(&bdrv_em_co_aiocb_info
, bs
, cb
, opaque
);
4660 acb
->req
.sector
= sector_num
;
4661 acb
->req
.nb_sectors
= nb_sectors
;
4663 co
= qemu_coroutine_create(bdrv_aio_discard_co_entry
);
4664 qemu_coroutine_enter(co
, acb
);
4666 return &acb
->common
;
4669 void bdrv_init(void)
4671 module_call_init(MODULE_INIT_BLOCK
);
4674 void bdrv_init_with_whitelist(void)
4676 use_bdrv_whitelist
= 1;
4680 void *qemu_aio_get(const AIOCBInfo
*aiocb_info
, BlockDriverState
*bs
,
4681 BlockDriverCompletionFunc
*cb
, void *opaque
)
4683 BlockDriverAIOCB
*acb
;
4685 acb
= g_slice_alloc(aiocb_info
->aiocb_size
);
4686 acb
->aiocb_info
= aiocb_info
;
4689 acb
->opaque
= opaque
;
4693 void qemu_aio_release(void *p
)
4695 BlockDriverAIOCB
*acb
= p
;
4696 g_slice_free1(acb
->aiocb_info
->aiocb_size
, acb
);
4699 /**************************************************************/
4700 /* Coroutine block device emulation */
4702 typedef struct CoroutineIOCompletion
{
4703 Coroutine
*coroutine
;
4705 } CoroutineIOCompletion
;
4707 static void bdrv_co_io_em_complete(void *opaque
, int ret
)
4709 CoroutineIOCompletion
*co
= opaque
;
4712 qemu_coroutine_enter(co
->coroutine
, NULL
);
4715 static int coroutine_fn
bdrv_co_io_em(BlockDriverState
*bs
, int64_t sector_num
,
4716 int nb_sectors
, QEMUIOVector
*iov
,
4719 CoroutineIOCompletion co
= {
4720 .coroutine
= qemu_coroutine_self(),
4722 BlockDriverAIOCB
*acb
;
4725 acb
= bs
->drv
->bdrv_aio_writev(bs
, sector_num
, iov
, nb_sectors
,
4726 bdrv_co_io_em_complete
, &co
);
4728 acb
= bs
->drv
->bdrv_aio_readv(bs
, sector_num
, iov
, nb_sectors
,
4729 bdrv_co_io_em_complete
, &co
);
4732 trace_bdrv_co_io_em(bs
, sector_num
, nb_sectors
, is_write
, acb
);
4736 qemu_coroutine_yield();
4741 static int coroutine_fn
bdrv_co_readv_em(BlockDriverState
*bs
,
4742 int64_t sector_num
, int nb_sectors
,
4745 return bdrv_co_io_em(bs
, sector_num
, nb_sectors
, iov
, false);
4748 static int coroutine_fn
bdrv_co_writev_em(BlockDriverState
*bs
,
4749 int64_t sector_num
, int nb_sectors
,
4752 return bdrv_co_io_em(bs
, sector_num
, nb_sectors
, iov
, true);
4755 static void coroutine_fn
bdrv_flush_co_entry(void *opaque
)
4757 RwCo
*rwco
= opaque
;
4759 rwco
->ret
= bdrv_co_flush(rwco
->bs
);
4762 int coroutine_fn
bdrv_co_flush(BlockDriverState
*bs
)
4766 if (!bs
|| !bdrv_is_inserted(bs
) || bdrv_is_read_only(bs
)) {
4770 /* Write back cached data to the OS even with cache=unsafe */
4771 BLKDBG_EVENT(bs
->file
, BLKDBG_FLUSH_TO_OS
);
4772 if (bs
->drv
->bdrv_co_flush_to_os
) {
4773 ret
= bs
->drv
->bdrv_co_flush_to_os(bs
);
4779 /* But don't actually force it to the disk with cache=unsafe */
4780 if (bs
->open_flags
& BDRV_O_NO_FLUSH
) {
4784 BLKDBG_EVENT(bs
->file
, BLKDBG_FLUSH_TO_DISK
);
4785 if (bs
->drv
->bdrv_co_flush_to_disk
) {
4786 ret
= bs
->drv
->bdrv_co_flush_to_disk(bs
);
4787 } else if (bs
->drv
->bdrv_aio_flush
) {
4788 BlockDriverAIOCB
*acb
;
4789 CoroutineIOCompletion co
= {
4790 .coroutine
= qemu_coroutine_self(),
4793 acb
= bs
->drv
->bdrv_aio_flush(bs
, bdrv_co_io_em_complete
, &co
);
4797 qemu_coroutine_yield();
4802 * Some block drivers always operate in either writethrough or unsafe
4803 * mode and don't support bdrv_flush therefore. Usually qemu doesn't
4804 * know how the server works (because the behaviour is hardcoded or
4805 * depends on server-side configuration), so we can't ensure that
4806 * everything is safe on disk. Returning an error doesn't work because
4807 * that would break guests even if the server operates in writethrough
4810 * Let's hope the user knows what he's doing.
4818 /* Now flush the underlying protocol. It will also have BDRV_O_NO_FLUSH
4819 * in the case of cache=unsafe, so there are no useless flushes.
4822 return bdrv_co_flush(bs
->file
);
4825 void bdrv_invalidate_cache(BlockDriverState
*bs
, Error
**errp
)
4827 Error
*local_err
= NULL
;
4834 if (bs
->drv
->bdrv_invalidate_cache
) {
4835 bs
->drv
->bdrv_invalidate_cache(bs
, &local_err
);
4836 } else if (bs
->file
) {
4837 bdrv_invalidate_cache(bs
->file
, &local_err
);
4840 error_propagate(errp
, local_err
);
4844 ret
= refresh_total_sectors(bs
, bs
->total_sectors
);
4846 error_setg_errno(errp
, -ret
, "Could not refresh total sector count");
4851 void bdrv_invalidate_cache_all(Error
**errp
)
4853 BlockDriverState
*bs
;
4854 Error
*local_err
= NULL
;
4856 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
4857 bdrv_invalidate_cache(bs
, &local_err
);
4859 error_propagate(errp
, local_err
);
4865 void bdrv_clear_incoming_migration_all(void)
4867 BlockDriverState
*bs
;
4869 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
4870 bs
->open_flags
= bs
->open_flags
& ~(BDRV_O_INCOMING
);
4874 int bdrv_flush(BlockDriverState
*bs
)
4882 if (qemu_in_coroutine()) {
4883 /* Fast-path if already in coroutine context */
4884 bdrv_flush_co_entry(&rwco
);
4886 co
= qemu_coroutine_create(bdrv_flush_co_entry
);
4887 qemu_coroutine_enter(co
, &rwco
);
4888 while (rwco
.ret
== NOT_DONE
) {
4896 typedef struct DiscardCo
{
4897 BlockDriverState
*bs
;
4902 static void coroutine_fn
bdrv_discard_co_entry(void *opaque
)
4904 DiscardCo
*rwco
= opaque
;
4906 rwco
->ret
= bdrv_co_discard(rwco
->bs
, rwco
->sector_num
, rwco
->nb_sectors
);
4909 /* if no limit is specified in the BlockLimits use a default
4910 * of 32768 512-byte sectors (16 MiB) per request.
4912 #define MAX_DISCARD_DEFAULT 32768
4914 int coroutine_fn
bdrv_co_discard(BlockDriverState
*bs
, int64_t sector_num
,
4921 } else if (bdrv_check_request(bs
, sector_num
, nb_sectors
)) {
4923 } else if (bs
->read_only
) {
4927 bdrv_reset_dirty(bs
, sector_num
, nb_sectors
);
4929 /* Do nothing if disabled. */
4930 if (!(bs
->open_flags
& BDRV_O_UNMAP
)) {
4934 if (!bs
->drv
->bdrv_co_discard
&& !bs
->drv
->bdrv_aio_discard
) {
4938 max_discard
= bs
->bl
.max_discard
? bs
->bl
.max_discard
: MAX_DISCARD_DEFAULT
;
4939 while (nb_sectors
> 0) {
4941 int num
= nb_sectors
;
4944 if (bs
->bl
.discard_alignment
&&
4945 num
>= bs
->bl
.discard_alignment
&&
4946 sector_num
% bs
->bl
.discard_alignment
) {
4947 if (num
> bs
->bl
.discard_alignment
) {
4948 num
= bs
->bl
.discard_alignment
;
4950 num
-= sector_num
% bs
->bl
.discard_alignment
;
4953 /* limit request size */
4954 if (num
> max_discard
) {
4958 if (bs
->drv
->bdrv_co_discard
) {
4959 ret
= bs
->drv
->bdrv_co_discard(bs
, sector_num
, num
);
4961 BlockDriverAIOCB
*acb
;
4962 CoroutineIOCompletion co
= {
4963 .coroutine
= qemu_coroutine_self(),
4966 acb
= bs
->drv
->bdrv_aio_discard(bs
, sector_num
, nb_sectors
,
4967 bdrv_co_io_em_complete
, &co
);
4971 qemu_coroutine_yield();
4975 if (ret
&& ret
!= -ENOTSUP
) {
4985 int bdrv_discard(BlockDriverState
*bs
, int64_t sector_num
, int nb_sectors
)
4990 .sector_num
= sector_num
,
4991 .nb_sectors
= nb_sectors
,
4995 if (qemu_in_coroutine()) {
4996 /* Fast-path if already in coroutine context */
4997 bdrv_discard_co_entry(&rwco
);
4999 co
= qemu_coroutine_create(bdrv_discard_co_entry
);
5000 qemu_coroutine_enter(co
, &rwco
);
5001 while (rwco
.ret
== NOT_DONE
) {
5009 /**************************************************************/
5010 /* removable device support */
5013 * Return TRUE if the media is present
5015 int bdrv_is_inserted(BlockDriverState
*bs
)
5017 BlockDriver
*drv
= bs
->drv
;
5021 if (!drv
->bdrv_is_inserted
)
5023 return drv
->bdrv_is_inserted(bs
);
5027 * Return whether the media changed since the last call to this
5028 * function, or -ENOTSUP if we don't know. Most drivers don't know.
5030 int bdrv_media_changed(BlockDriverState
*bs
)
5032 BlockDriver
*drv
= bs
->drv
;
5034 if (drv
&& drv
->bdrv_media_changed
) {
5035 return drv
->bdrv_media_changed(bs
);
5041 * If eject_flag is TRUE, eject the media. Otherwise, close the tray
5043 void bdrv_eject(BlockDriverState
*bs
, bool eject_flag
)
5045 BlockDriver
*drv
= bs
->drv
;
5047 if (drv
&& drv
->bdrv_eject
) {
5048 drv
->bdrv_eject(bs
, eject_flag
);
5051 if (bs
->device_name
[0] != '\0') {
5052 bdrv_emit_qmp_eject_event(bs
, eject_flag
);
5057 * Lock or unlock the media (if it is locked, the user won't be able
5058 * to eject it manually).
5060 void bdrv_lock_medium(BlockDriverState
*bs
, bool locked
)
5062 BlockDriver
*drv
= bs
->drv
;
5064 trace_bdrv_lock_medium(bs
, locked
);
5066 if (drv
&& drv
->bdrv_lock_medium
) {
5067 drv
->bdrv_lock_medium(bs
, locked
);
5071 /* needed for generic scsi interface */
5073 int bdrv_ioctl(BlockDriverState
*bs
, unsigned long int req
, void *buf
)
5075 BlockDriver
*drv
= bs
->drv
;
5077 if (drv
&& drv
->bdrv_ioctl
)
5078 return drv
->bdrv_ioctl(bs
, req
, buf
);
5082 BlockDriverAIOCB
*bdrv_aio_ioctl(BlockDriverState
*bs
,
5083 unsigned long int req
, void *buf
,
5084 BlockDriverCompletionFunc
*cb
, void *opaque
)
5086 BlockDriver
*drv
= bs
->drv
;
5088 if (drv
&& drv
->bdrv_aio_ioctl
)
5089 return drv
->bdrv_aio_ioctl(bs
, req
, buf
, cb
, opaque
);
5093 void bdrv_set_guest_block_size(BlockDriverState
*bs
, int align
)
5095 bs
->guest_block_size
= align
;
5098 void *qemu_blockalign(BlockDriverState
*bs
, size_t size
)
5100 return qemu_memalign(bdrv_opt_mem_align(bs
), size
);
5104 * Check if all memory in this vector is sector aligned.
5106 bool bdrv_qiov_is_aligned(BlockDriverState
*bs
, QEMUIOVector
*qiov
)
5109 size_t alignment
= bdrv_opt_mem_align(bs
);
5111 for (i
= 0; i
< qiov
->niov
; i
++) {
5112 if ((uintptr_t) qiov
->iov
[i
].iov_base
% alignment
) {
5115 if (qiov
->iov
[i
].iov_len
% alignment
) {
5123 BdrvDirtyBitmap
*bdrv_create_dirty_bitmap(BlockDriverState
*bs
, int granularity
,
5126 int64_t bitmap_size
;
5127 BdrvDirtyBitmap
*bitmap
;
5129 assert((granularity
& (granularity
- 1)) == 0);
5131 granularity
>>= BDRV_SECTOR_BITS
;
5132 assert(granularity
);
5133 bitmap_size
= bdrv_getlength(bs
);
5134 if (bitmap_size
< 0) {
5135 error_setg_errno(errp
, -bitmap_size
, "could not get length of device");
5136 errno
= -bitmap_size
;
5139 bitmap_size
>>= BDRV_SECTOR_BITS
;
5140 bitmap
= g_malloc0(sizeof(BdrvDirtyBitmap
));
5141 bitmap
->bitmap
= hbitmap_alloc(bitmap_size
, ffs(granularity
) - 1);
5142 QLIST_INSERT_HEAD(&bs
->dirty_bitmaps
, bitmap
, list
);
5146 void bdrv_release_dirty_bitmap(BlockDriverState
*bs
, BdrvDirtyBitmap
*bitmap
)
5148 BdrvDirtyBitmap
*bm
, *next
;
5149 QLIST_FOREACH_SAFE(bm
, &bs
->dirty_bitmaps
, list
, next
) {
5151 QLIST_REMOVE(bitmap
, list
);
5152 hbitmap_free(bitmap
->bitmap
);
5159 BlockDirtyInfoList
*bdrv_query_dirty_bitmaps(BlockDriverState
*bs
)
5161 BdrvDirtyBitmap
*bm
;
5162 BlockDirtyInfoList
*list
= NULL
;
5163 BlockDirtyInfoList
**plist
= &list
;
5165 QLIST_FOREACH(bm
, &bs
->dirty_bitmaps
, list
) {
5166 BlockDirtyInfo
*info
= g_malloc0(sizeof(BlockDirtyInfo
));
5167 BlockDirtyInfoList
*entry
= g_malloc0(sizeof(BlockDirtyInfoList
));
5168 info
->count
= bdrv_get_dirty_count(bs
, bm
);
5170 ((int64_t) BDRV_SECTOR_SIZE
<< hbitmap_granularity(bm
->bitmap
));
5171 entry
->value
= info
;
5173 plist
= &entry
->next
;
5179 int bdrv_get_dirty(BlockDriverState
*bs
, BdrvDirtyBitmap
*bitmap
, int64_t sector
)
5182 return hbitmap_get(bitmap
->bitmap
, sector
);
5188 void bdrv_dirty_iter_init(BlockDriverState
*bs
,
5189 BdrvDirtyBitmap
*bitmap
, HBitmapIter
*hbi
)
5191 hbitmap_iter_init(hbi
, bitmap
->bitmap
, 0);
5194 void bdrv_set_dirty(BlockDriverState
*bs
, int64_t cur_sector
,
5197 BdrvDirtyBitmap
*bitmap
;
5198 QLIST_FOREACH(bitmap
, &bs
->dirty_bitmaps
, list
) {
5199 hbitmap_set(bitmap
->bitmap
, cur_sector
, nr_sectors
);
5203 void bdrv_reset_dirty(BlockDriverState
*bs
, int64_t cur_sector
, int nr_sectors
)
5205 BdrvDirtyBitmap
*bitmap
;
5206 QLIST_FOREACH(bitmap
, &bs
->dirty_bitmaps
, list
) {
5207 hbitmap_reset(bitmap
->bitmap
, cur_sector
, nr_sectors
);
5211 int64_t bdrv_get_dirty_count(BlockDriverState
*bs
, BdrvDirtyBitmap
*bitmap
)
5213 return hbitmap_count(bitmap
->bitmap
);
5216 /* Get a reference to bs */
5217 void bdrv_ref(BlockDriverState
*bs
)
5222 /* Release a previously grabbed reference to bs.
5223 * If after releasing, reference count is zero, the BlockDriverState is
5225 void bdrv_unref(BlockDriverState
*bs
)
5227 assert(bs
->refcnt
> 0);
5228 if (--bs
->refcnt
== 0) {
5233 void bdrv_set_in_use(BlockDriverState
*bs
, int in_use
)
5235 assert(bs
->in_use
!= in_use
);
5236 bs
->in_use
= in_use
;
5239 int bdrv_in_use(BlockDriverState
*bs
)
5244 void bdrv_iostatus_enable(BlockDriverState
*bs
)
5246 bs
->iostatus_enabled
= true;
5247 bs
->iostatus
= BLOCK_DEVICE_IO_STATUS_OK
;
5250 /* The I/O status is only enabled if the drive explicitly
5251 * enables it _and_ the VM is configured to stop on errors */
5252 bool bdrv_iostatus_is_enabled(const BlockDriverState
*bs
)
5254 return (bs
->iostatus_enabled
&&
5255 (bs
->on_write_error
== BLOCKDEV_ON_ERROR_ENOSPC
||
5256 bs
->on_write_error
== BLOCKDEV_ON_ERROR_STOP
||
5257 bs
->on_read_error
== BLOCKDEV_ON_ERROR_STOP
));
5260 void bdrv_iostatus_disable(BlockDriverState
*bs
)
5262 bs
->iostatus_enabled
= false;
5265 void bdrv_iostatus_reset(BlockDriverState
*bs
)
5267 if (bdrv_iostatus_is_enabled(bs
)) {
5268 bs
->iostatus
= BLOCK_DEVICE_IO_STATUS_OK
;
5270 block_job_iostatus_reset(bs
->job
);
5275 void bdrv_iostatus_set_err(BlockDriverState
*bs
, int error
)
5277 assert(bdrv_iostatus_is_enabled(bs
));
5278 if (bs
->iostatus
== BLOCK_DEVICE_IO_STATUS_OK
) {
5279 bs
->iostatus
= error
== ENOSPC
? BLOCK_DEVICE_IO_STATUS_NOSPACE
:
5280 BLOCK_DEVICE_IO_STATUS_FAILED
;
5285 bdrv_acct_start(BlockDriverState
*bs
, BlockAcctCookie
*cookie
, int64_t bytes
,
5286 enum BlockAcctType type
)
5288 assert(type
< BDRV_MAX_IOTYPE
);
5290 cookie
->bytes
= bytes
;
5291 cookie
->start_time_ns
= get_clock();
5292 cookie
->type
= type
;
5296 bdrv_acct_done(BlockDriverState
*bs
, BlockAcctCookie
*cookie
)
5298 assert(cookie
->type
< BDRV_MAX_IOTYPE
);
5300 bs
->nr_bytes
[cookie
->type
] += cookie
->bytes
;
5301 bs
->nr_ops
[cookie
->type
]++;
5302 bs
->total_time_ns
[cookie
->type
] += get_clock() - cookie
->start_time_ns
;
5305 void bdrv_img_create(const char *filename
, const char *fmt
,
5306 const char *base_filename
, const char *base_fmt
,
5307 char *options
, uint64_t img_size
, int flags
,
5308 Error
**errp
, bool quiet
)
5310 QEMUOptionParameter
*param
= NULL
, *create_options
= NULL
;
5311 QEMUOptionParameter
*backing_fmt
, *backing_file
, *size
;
5312 BlockDriver
*drv
, *proto_drv
;
5313 BlockDriver
*backing_drv
= NULL
;
5314 Error
*local_err
= NULL
;
5317 /* Find driver and parse its options */
5318 drv
= bdrv_find_format(fmt
);
5320 error_setg(errp
, "Unknown file format '%s'", fmt
);
5324 proto_drv
= bdrv_find_protocol(filename
, true);
5326 error_setg(errp
, "Unknown protocol '%s'", filename
);
5330 create_options
= append_option_parameters(create_options
,
5331 drv
->create_options
);
5332 create_options
= append_option_parameters(create_options
,
5333 proto_drv
->create_options
);
5335 /* Create parameter list with default values */
5336 param
= parse_option_parameters("", create_options
, param
);
5338 set_option_parameter_int(param
, BLOCK_OPT_SIZE
, img_size
);
5340 /* Parse -o options */
5342 param
= parse_option_parameters(options
, create_options
, param
);
5343 if (param
== NULL
) {
5344 error_setg(errp
, "Invalid options for file format '%s'.", fmt
);
5349 if (base_filename
) {
5350 if (set_option_parameter(param
, BLOCK_OPT_BACKING_FILE
,
5352 error_setg(errp
, "Backing file not supported for file format '%s'",
5359 if (set_option_parameter(param
, BLOCK_OPT_BACKING_FMT
, base_fmt
)) {
5360 error_setg(errp
, "Backing file format not supported for file "
5361 "format '%s'", fmt
);
5366 backing_file
= get_option_parameter(param
, BLOCK_OPT_BACKING_FILE
);
5367 if (backing_file
&& backing_file
->value
.s
) {
5368 if (!strcmp(filename
, backing_file
->value
.s
)) {
5369 error_setg(errp
, "Error: Trying to create an image with the "
5370 "same filename as the backing file");
5375 backing_fmt
= get_option_parameter(param
, BLOCK_OPT_BACKING_FMT
);
5376 if (backing_fmt
&& backing_fmt
->value
.s
) {
5377 backing_drv
= bdrv_find_format(backing_fmt
->value
.s
);
5379 error_setg(errp
, "Unknown backing file format '%s'",
5380 backing_fmt
->value
.s
);
5385 // The size for the image must always be specified, with one exception:
5386 // If we are using a backing file, we can obtain the size from there
5387 size
= get_option_parameter(param
, BLOCK_OPT_SIZE
);
5388 if (size
&& size
->value
.n
== -1) {
5389 if (backing_file
&& backing_file
->value
.s
) {
5390 BlockDriverState
*bs
;
5395 /* backing files always opened read-only */
5397 flags
& ~(BDRV_O_RDWR
| BDRV_O_SNAPSHOT
| BDRV_O_NO_BACKING
);
5400 ret
= bdrv_open(&bs
, backing_file
->value
.s
, NULL
, NULL
, back_flags
,
5401 backing_drv
, &local_err
);
5403 error_setg_errno(errp
, -ret
, "Could not open '%s': %s",
5404 backing_file
->value
.s
,
5405 error_get_pretty(local_err
));
5406 error_free(local_err
);
5410 bdrv_get_geometry(bs
, &size
);
5413 snprintf(buf
, sizeof(buf
), "%" PRId64
, size
);
5414 set_option_parameter(param
, BLOCK_OPT_SIZE
, buf
);
5418 error_setg(errp
, "Image creation needs a size parameter");
5424 printf("Formatting '%s', fmt=%s ", filename
, fmt
);
5425 print_option_parameters(param
);
5428 ret
= bdrv_create(drv
, filename
, param
, &local_err
);
5429 if (ret
== -EFBIG
) {
5430 /* This is generally a better message than whatever the driver would
5431 * deliver (especially because of the cluster_size_hint), since that
5432 * is most probably not much different from "image too large". */
5433 const char *cluster_size_hint
= "";
5434 if (get_option_parameter(create_options
, BLOCK_OPT_CLUSTER_SIZE
)) {
5435 cluster_size_hint
= " (try using a larger cluster size)";
5437 error_setg(errp
, "The image size is too large for file format '%s'"
5438 "%s", fmt
, cluster_size_hint
);
5439 error_free(local_err
);
5444 free_option_parameters(create_options
);
5445 free_option_parameters(param
);
5448 error_propagate(errp
, local_err
);
5452 AioContext
*bdrv_get_aio_context(BlockDriverState
*bs
)
5454 /* Currently BlockDriverState always uses the main loop AioContext */
5455 return qemu_get_aio_context();
5458 void bdrv_add_before_write_notifier(BlockDriverState
*bs
,
5459 NotifierWithReturn
*notifier
)
5461 notifier_with_return_list_add(&bs
->before_write_notifiers
, notifier
);
5464 int bdrv_amend_options(BlockDriverState
*bs
, QEMUOptionParameter
*options
)
5466 if (bs
->drv
->bdrv_amend_options
== NULL
) {
5469 return bs
->drv
->bdrv_amend_options(bs
, options
);
5472 /* This function will be called by the bdrv_recurse_is_first_non_filter method
5473 * of block filter and by bdrv_is_first_non_filter.
5474 * It is used to test if the given bs is the candidate or recurse more in the
5477 bool bdrv_recurse_is_first_non_filter(BlockDriverState
*bs
,
5478 BlockDriverState
*candidate
)
5480 /* return false if basic checks fails */
5481 if (!bs
|| !bs
->drv
) {
5485 /* the code reached a non block filter driver -> check if the bs is
5486 * the same as the candidate. It's the recursion termination condition.
5488 if (!bs
->drv
->is_filter
) {
5489 return bs
== candidate
;
5491 /* Down this path the driver is a block filter driver */
5493 /* If the block filter recursion method is defined use it to recurse down
5496 if (bs
->drv
->bdrv_recurse_is_first_non_filter
) {
5497 return bs
->drv
->bdrv_recurse_is_first_non_filter(bs
, candidate
);
5500 /* the driver is a block filter but don't allow to recurse -> return false
5505 /* This function checks if the candidate is the first non filter bs down it's
5506 * bs chain. Since we don't have pointers to parents it explore all bs chains
5507 * from the top. Some filters can choose not to pass down the recursion.
5509 bool bdrv_is_first_non_filter(BlockDriverState
*candidate
)
5511 BlockDriverState
*bs
;
5513 /* walk down the bs forest recursively */
5514 QTAILQ_FOREACH(bs
, &bdrv_states
, device_list
) {
5517 /* try to recurse in this top level bs */
5518 perm
= bdrv_recurse_is_first_non_filter(bs
, candidate
);
5520 /* candidate is the first non filter */