2 * Block driver for the QCOW version 2 format
4 * Copyright (c) 2004-2006 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
25 #include "qemu/osdep.h"
27 #include "block/qdict.h"
28 #include "sysemu/block-backend.h"
29 #include "qemu/main-loop.h"
30 #include "qemu/module.h"
32 #include "qemu/error-report.h"
33 #include "qapi/error.h"
34 #include "qapi/qapi-events-block-core.h"
35 #include "qapi/qmp/qdict.h"
36 #include "qapi/qmp/qstring.h"
38 #include "qemu/option_int.h"
39 #include "qemu/cutils.h"
40 #include "qemu/bswap.h"
41 #include "qapi/qobject-input-visitor.h"
42 #include "qapi/qapi-visit-block-core.h"
44 #include "block/aio_task.h"
47 Differences with QCOW:
49 - Support for multiple incremental snapshots.
50 - Memory management by reference counts.
51 - Clusters which have a reference count of one have the bit
52 QCOW_OFLAG_COPIED to optimize write performance.
53 - Size of compressed clusters is stored in sectors to reduce bit usage
54 in the cluster offsets.
55 - Support for storing additional data (such as the VM state) in the
57 - If a backing store is used, the cluster size is not constrained
58 (could be backported to QCOW).
59 - L2 tables have always a size of one cluster.
66 } QEMU_PACKED QCowExtension
;
68 #define QCOW2_EXT_MAGIC_END 0
69 #define QCOW2_EXT_MAGIC_BACKING_FORMAT 0xe2792aca
70 #define QCOW2_EXT_MAGIC_FEATURE_TABLE 0x6803f857
71 #define QCOW2_EXT_MAGIC_CRYPTO_HEADER 0x0537be77
72 #define QCOW2_EXT_MAGIC_BITMAPS 0x23852875
73 #define QCOW2_EXT_MAGIC_DATA_FILE 0x44415441
75 static int coroutine_fn
76 qcow2_co_preadv_compressed(BlockDriverState
*bs
,
77 uint64_t cluster_descriptor
,
83 static int qcow2_probe(const uint8_t *buf
, int buf_size
, const char *filename
)
85 const QCowHeader
*cow_header
= (const void *)buf
;
87 if (buf_size
>= sizeof(QCowHeader
) &&
88 be32_to_cpu(cow_header
->magic
) == QCOW_MAGIC
&&
89 be32_to_cpu(cow_header
->version
) >= 2)
96 static ssize_t
qcow2_crypto_hdr_read_func(QCryptoBlock
*block
, size_t offset
,
97 uint8_t *buf
, size_t buflen
,
98 void *opaque
, Error
**errp
)
100 BlockDriverState
*bs
= opaque
;
101 BDRVQcow2State
*s
= bs
->opaque
;
104 if ((offset
+ buflen
) > s
->crypto_header
.length
) {
105 error_setg(errp
, "Request for data outside of extension header");
109 ret
= bdrv_pread(bs
->file
,
110 s
->crypto_header
.offset
+ offset
, buf
, buflen
);
112 error_setg_errno(errp
, -ret
, "Could not read encryption header");
119 static ssize_t
qcow2_crypto_hdr_init_func(QCryptoBlock
*block
, size_t headerlen
,
120 void *opaque
, Error
**errp
)
122 BlockDriverState
*bs
= opaque
;
123 BDRVQcow2State
*s
= bs
->opaque
;
127 ret
= qcow2_alloc_clusters(bs
, headerlen
);
129 error_setg_errno(errp
, -ret
,
130 "Cannot allocate cluster for LUKS header size %zu",
135 s
->crypto_header
.length
= headerlen
;
136 s
->crypto_header
.offset
= ret
;
139 * Zero fill all space in cluster so it has predictable
140 * content, as we may not initialize some regions of the
141 * header (eg only 1 out of 8 key slots will be initialized)
143 clusterlen
= size_to_clusters(s
, headerlen
) * s
->cluster_size
;
144 assert(qcow2_pre_write_overlap_check(bs
, 0, ret
, clusterlen
, false) == 0);
145 ret
= bdrv_pwrite_zeroes(bs
->file
,
149 error_setg_errno(errp
, -ret
, "Could not zero fill encryption header");
157 static ssize_t
qcow2_crypto_hdr_write_func(QCryptoBlock
*block
, size_t offset
,
158 const uint8_t *buf
, size_t buflen
,
159 void *opaque
, Error
**errp
)
161 BlockDriverState
*bs
= opaque
;
162 BDRVQcow2State
*s
= bs
->opaque
;
165 if ((offset
+ buflen
) > s
->crypto_header
.length
) {
166 error_setg(errp
, "Request for data outside of extension header");
170 ret
= bdrv_pwrite(bs
->file
,
171 s
->crypto_header
.offset
+ offset
, buf
, buflen
);
173 error_setg_errno(errp
, -ret
, "Could not read encryption header");
180 qcow2_extract_crypto_opts(QemuOpts
*opts
, const char *fmt
, Error
**errp
)
182 QDict
*cryptoopts_qdict
;
185 /* Extract "encrypt." options into a qdict */
186 opts_qdict
= qemu_opts_to_qdict(opts
, NULL
);
187 qdict_extract_subqdict(opts_qdict
, &cryptoopts_qdict
, "encrypt.");
188 qobject_unref(opts_qdict
);
189 qdict_put_str(cryptoopts_qdict
, "format", fmt
);
190 return cryptoopts_qdict
;
194 * read qcow2 extension and fill bs
195 * start reading from start_offset
196 * finish reading upon magic of value 0 or when end_offset reached
197 * unknown magic is skipped (future extension this version knows nothing about)
198 * return 0 upon success, non-0 otherwise
200 static int qcow2_read_extensions(BlockDriverState
*bs
, uint64_t start_offset
,
201 uint64_t end_offset
, void **p_feature_table
,
202 int flags
, bool *need_update_header
,
205 BDRVQcow2State
*s
= bs
->opaque
;
209 Qcow2BitmapHeaderExt bitmaps_ext
;
211 if (need_update_header
!= NULL
) {
212 *need_update_header
= false;
216 printf("qcow2_read_extensions: start=%ld end=%ld\n", start_offset
, end_offset
);
218 offset
= start_offset
;
219 while (offset
< end_offset
) {
223 if (offset
> s
->cluster_size
)
224 printf("qcow2_read_extension: suspicious offset %lu\n", offset
);
226 printf("attempting to read extended header in offset %lu\n", offset
);
229 ret
= bdrv_pread(bs
->file
, offset
, &ext
, sizeof(ext
));
231 error_setg_errno(errp
, -ret
, "qcow2_read_extension: ERROR: "
232 "pread fail from offset %" PRIu64
, offset
);
235 ext
.magic
= be32_to_cpu(ext
.magic
);
236 ext
.len
= be32_to_cpu(ext
.len
);
237 offset
+= sizeof(ext
);
239 printf("ext.magic = 0x%x\n", ext
.magic
);
241 if (offset
> end_offset
|| ext
.len
> end_offset
- offset
) {
242 error_setg(errp
, "Header extension too large");
247 case QCOW2_EXT_MAGIC_END
:
250 case QCOW2_EXT_MAGIC_BACKING_FORMAT
:
251 if (ext
.len
>= sizeof(bs
->backing_format
)) {
252 error_setg(errp
, "ERROR: ext_backing_format: len=%" PRIu32
253 " too large (>=%zu)", ext
.len
,
254 sizeof(bs
->backing_format
));
257 ret
= bdrv_pread(bs
->file
, offset
, bs
->backing_format
, ext
.len
);
259 error_setg_errno(errp
, -ret
, "ERROR: ext_backing_format: "
260 "Could not read format name");
263 bs
->backing_format
[ext
.len
] = '\0';
264 s
->image_backing_format
= g_strdup(bs
->backing_format
);
266 printf("Qcow2: Got format extension %s\n", bs
->backing_format
);
270 case QCOW2_EXT_MAGIC_FEATURE_TABLE
:
271 if (p_feature_table
!= NULL
) {
272 void* feature_table
= g_malloc0(ext
.len
+ 2 * sizeof(Qcow2Feature
));
273 ret
= bdrv_pread(bs
->file
, offset
, feature_table
, ext
.len
);
275 error_setg_errno(errp
, -ret
, "ERROR: ext_feature_table: "
276 "Could not read table");
280 *p_feature_table
= feature_table
;
284 case QCOW2_EXT_MAGIC_CRYPTO_HEADER
: {
285 unsigned int cflags
= 0;
286 if (s
->crypt_method_header
!= QCOW_CRYPT_LUKS
) {
287 error_setg(errp
, "CRYPTO header extension only "
288 "expected with LUKS encryption method");
291 if (ext
.len
!= sizeof(Qcow2CryptoHeaderExtension
)) {
292 error_setg(errp
, "CRYPTO header extension size %u, "
293 "but expected size %zu", ext
.len
,
294 sizeof(Qcow2CryptoHeaderExtension
));
298 ret
= bdrv_pread(bs
->file
, offset
, &s
->crypto_header
, ext
.len
);
300 error_setg_errno(errp
, -ret
,
301 "Unable to read CRYPTO header extension");
304 s
->crypto_header
.offset
= be64_to_cpu(s
->crypto_header
.offset
);
305 s
->crypto_header
.length
= be64_to_cpu(s
->crypto_header
.length
);
307 if ((s
->crypto_header
.offset
% s
->cluster_size
) != 0) {
308 error_setg(errp
, "Encryption header offset '%" PRIu64
"' is "
309 "not a multiple of cluster size '%u'",
310 s
->crypto_header
.offset
, s
->cluster_size
);
314 if (flags
& BDRV_O_NO_IO
) {
315 cflags
|= QCRYPTO_BLOCK_OPEN_NO_IO
;
317 s
->crypto
= qcrypto_block_open(s
->crypto_opts
, "encrypt.",
318 qcow2_crypto_hdr_read_func
,
319 bs
, cflags
, QCOW2_MAX_THREADS
, errp
);
325 case QCOW2_EXT_MAGIC_BITMAPS
:
326 if (ext
.len
!= sizeof(bitmaps_ext
)) {
327 error_setg_errno(errp
, -ret
, "bitmaps_ext: "
328 "Invalid extension length");
332 if (!(s
->autoclear_features
& QCOW2_AUTOCLEAR_BITMAPS
)) {
333 if (s
->qcow_version
< 3) {
334 /* Let's be a bit more specific */
335 warn_report("This qcow2 v2 image contains bitmaps, but "
336 "they may have been modified by a program "
337 "without persistent bitmap support; so now "
338 "they must all be considered inconsistent");
340 warn_report("a program lacking bitmap support "
341 "modified this file, so all bitmaps are now "
342 "considered inconsistent");
344 error_printf("Some clusters may be leaked, "
345 "run 'qemu-img check -r' on the image "
347 if (need_update_header
!= NULL
) {
348 /* Updating is needed to drop invalid bitmap extension. */
349 *need_update_header
= true;
354 ret
= bdrv_pread(bs
->file
, offset
, &bitmaps_ext
, ext
.len
);
356 error_setg_errno(errp
, -ret
, "bitmaps_ext: "
357 "Could not read ext header");
361 if (bitmaps_ext
.reserved32
!= 0) {
362 error_setg_errno(errp
, -ret
, "bitmaps_ext: "
363 "Reserved field is not zero");
367 bitmaps_ext
.nb_bitmaps
= be32_to_cpu(bitmaps_ext
.nb_bitmaps
);
368 bitmaps_ext
.bitmap_directory_size
=
369 be64_to_cpu(bitmaps_ext
.bitmap_directory_size
);
370 bitmaps_ext
.bitmap_directory_offset
=
371 be64_to_cpu(bitmaps_ext
.bitmap_directory_offset
);
373 if (bitmaps_ext
.nb_bitmaps
> QCOW2_MAX_BITMAPS
) {
375 "bitmaps_ext: Image has %" PRIu32
" bitmaps, "
376 "exceeding the QEMU supported maximum of %d",
377 bitmaps_ext
.nb_bitmaps
, QCOW2_MAX_BITMAPS
);
381 if (bitmaps_ext
.nb_bitmaps
== 0) {
382 error_setg(errp
, "found bitmaps extension with zero bitmaps");
386 if (offset_into_cluster(s
, bitmaps_ext
.bitmap_directory_offset
)) {
387 error_setg(errp
, "bitmaps_ext: "
388 "invalid bitmap directory offset");
392 if (bitmaps_ext
.bitmap_directory_size
>
393 QCOW2_MAX_BITMAP_DIRECTORY_SIZE
) {
394 error_setg(errp
, "bitmaps_ext: "
395 "bitmap directory size (%" PRIu64
") exceeds "
396 "the maximum supported size (%d)",
397 bitmaps_ext
.bitmap_directory_size
,
398 QCOW2_MAX_BITMAP_DIRECTORY_SIZE
);
402 s
->nb_bitmaps
= bitmaps_ext
.nb_bitmaps
;
403 s
->bitmap_directory_offset
=
404 bitmaps_ext
.bitmap_directory_offset
;
405 s
->bitmap_directory_size
=
406 bitmaps_ext
.bitmap_directory_size
;
409 printf("Qcow2: Got bitmaps extension: "
410 "offset=%" PRIu64
" nb_bitmaps=%" PRIu32
"\n",
411 s
->bitmap_directory_offset
, s
->nb_bitmaps
);
415 case QCOW2_EXT_MAGIC_DATA_FILE
:
417 s
->image_data_file
= g_malloc0(ext
.len
+ 1);
418 ret
= bdrv_pread(bs
->file
, offset
, s
->image_data_file
, ext
.len
);
420 error_setg_errno(errp
, -ret
,
421 "ERROR: Could not read data file name");
425 printf("Qcow2: Got external data file %s\n", s
->image_data_file
);
431 /* unknown magic - save it in case we need to rewrite the header */
432 /* If you add a new feature, make sure to also update the fast
433 * path of qcow2_make_empty() to deal with it. */
435 Qcow2UnknownHeaderExtension
*uext
;
437 uext
= g_malloc0(sizeof(*uext
) + ext
.len
);
438 uext
->magic
= ext
.magic
;
440 QLIST_INSERT_HEAD(&s
->unknown_header_ext
, uext
, next
);
442 ret
= bdrv_pread(bs
->file
, offset
, uext
->data
, uext
->len
);
444 error_setg_errno(errp
, -ret
, "ERROR: unknown extension: "
445 "Could not read data");
452 offset
+= ((ext
.len
+ 7) & ~7);
458 static void cleanup_unknown_header_ext(BlockDriverState
*bs
)
460 BDRVQcow2State
*s
= bs
->opaque
;
461 Qcow2UnknownHeaderExtension
*uext
, *next
;
463 QLIST_FOREACH_SAFE(uext
, &s
->unknown_header_ext
, next
, next
) {
464 QLIST_REMOVE(uext
, next
);
469 static void report_unsupported_feature(Error
**errp
, Qcow2Feature
*table
,
472 g_autoptr(GString
) features
= g_string_sized_new(60);
474 while (table
&& table
->name
[0] != '\0') {
475 if (table
->type
== QCOW2_FEAT_TYPE_INCOMPATIBLE
) {
476 if (mask
& (1ULL << table
->bit
)) {
477 if (features
->len
> 0) {
478 g_string_append(features
, ", ");
480 g_string_append_printf(features
, "%.46s", table
->name
);
481 mask
&= ~(1ULL << table
->bit
);
488 if (features
->len
> 0) {
489 g_string_append(features
, ", ");
491 g_string_append_printf(features
,
492 "Unknown incompatible feature: %" PRIx64
, mask
);
495 error_setg(errp
, "Unsupported qcow2 feature(s): %s", features
->str
);
499 * Sets the dirty bit and flushes afterwards if necessary.
501 * The incompatible_features bit is only set if the image file header was
502 * updated successfully. Therefore it is not required to check the return
503 * value of this function.
505 int qcow2_mark_dirty(BlockDriverState
*bs
)
507 BDRVQcow2State
*s
= bs
->opaque
;
511 assert(s
->qcow_version
>= 3);
513 if (s
->incompatible_features
& QCOW2_INCOMPAT_DIRTY
) {
514 return 0; /* already dirty */
517 val
= cpu_to_be64(s
->incompatible_features
| QCOW2_INCOMPAT_DIRTY
);
518 ret
= bdrv_pwrite(bs
->file
, offsetof(QCowHeader
, incompatible_features
),
523 ret
= bdrv_flush(bs
->file
->bs
);
528 /* Only treat image as dirty if the header was updated successfully */
529 s
->incompatible_features
|= QCOW2_INCOMPAT_DIRTY
;
534 * Clears the dirty bit and flushes before if necessary. Only call this
535 * function when there are no pending requests, it does not guard against
536 * concurrent requests dirtying the image.
538 static int qcow2_mark_clean(BlockDriverState
*bs
)
540 BDRVQcow2State
*s
= bs
->opaque
;
542 if (s
->incompatible_features
& QCOW2_INCOMPAT_DIRTY
) {
545 s
->incompatible_features
&= ~QCOW2_INCOMPAT_DIRTY
;
547 ret
= qcow2_flush_caches(bs
);
552 return qcow2_update_header(bs
);
558 * Marks the image as corrupt.
560 int qcow2_mark_corrupt(BlockDriverState
*bs
)
562 BDRVQcow2State
*s
= bs
->opaque
;
564 s
->incompatible_features
|= QCOW2_INCOMPAT_CORRUPT
;
565 return qcow2_update_header(bs
);
569 * Marks the image as consistent, i.e., unsets the corrupt bit, and flushes
570 * before if necessary.
572 int qcow2_mark_consistent(BlockDriverState
*bs
)
574 BDRVQcow2State
*s
= bs
->opaque
;
576 if (s
->incompatible_features
& QCOW2_INCOMPAT_CORRUPT
) {
577 int ret
= qcow2_flush_caches(bs
);
582 s
->incompatible_features
&= ~QCOW2_INCOMPAT_CORRUPT
;
583 return qcow2_update_header(bs
);
588 static void qcow2_add_check_result(BdrvCheckResult
*out
,
589 const BdrvCheckResult
*src
,
590 bool set_allocation_info
)
592 out
->corruptions
+= src
->corruptions
;
593 out
->leaks
+= src
->leaks
;
594 out
->check_errors
+= src
->check_errors
;
595 out
->corruptions_fixed
+= src
->corruptions_fixed
;
596 out
->leaks_fixed
+= src
->leaks_fixed
;
598 if (set_allocation_info
) {
599 out
->image_end_offset
= src
->image_end_offset
;
604 static int coroutine_fn
qcow2_co_check_locked(BlockDriverState
*bs
,
605 BdrvCheckResult
*result
,
608 BdrvCheckResult snapshot_res
= {};
609 BdrvCheckResult refcount_res
= {};
612 memset(result
, 0, sizeof(*result
));
614 ret
= qcow2_check_read_snapshot_table(bs
, &snapshot_res
, fix
);
616 qcow2_add_check_result(result
, &snapshot_res
, false);
620 ret
= qcow2_check_refcounts(bs
, &refcount_res
, fix
);
621 qcow2_add_check_result(result
, &refcount_res
, true);
623 qcow2_add_check_result(result
, &snapshot_res
, false);
627 ret
= qcow2_check_fix_snapshot_table(bs
, &snapshot_res
, fix
);
628 qcow2_add_check_result(result
, &snapshot_res
, false);
633 if (fix
&& result
->check_errors
== 0 && result
->corruptions
== 0) {
634 ret
= qcow2_mark_clean(bs
);
638 return qcow2_mark_consistent(bs
);
643 static int coroutine_fn
qcow2_co_check(BlockDriverState
*bs
,
644 BdrvCheckResult
*result
,
647 BDRVQcow2State
*s
= bs
->opaque
;
650 qemu_co_mutex_lock(&s
->lock
);
651 ret
= qcow2_co_check_locked(bs
, result
, fix
);
652 qemu_co_mutex_unlock(&s
->lock
);
656 int qcow2_validate_table(BlockDriverState
*bs
, uint64_t offset
,
657 uint64_t entries
, size_t entry_len
,
658 int64_t max_size_bytes
, const char *table_name
,
661 BDRVQcow2State
*s
= bs
->opaque
;
663 if (entries
> max_size_bytes
/ entry_len
) {
664 error_setg(errp
, "%s too large", table_name
);
668 /* Use signed INT64_MAX as the maximum even for uint64_t header fields,
669 * because values will be passed to qemu functions taking int64_t. */
670 if ((INT64_MAX
- entries
* entry_len
< offset
) ||
671 (offset_into_cluster(s
, offset
) != 0)) {
672 error_setg(errp
, "%s offset invalid", table_name
);
679 static const char *const mutable_opts
[] = {
680 QCOW2_OPT_LAZY_REFCOUNTS
,
681 QCOW2_OPT_DISCARD_REQUEST
,
682 QCOW2_OPT_DISCARD_SNAPSHOT
,
683 QCOW2_OPT_DISCARD_OTHER
,
685 QCOW2_OPT_OVERLAP_TEMPLATE
,
686 QCOW2_OPT_OVERLAP_MAIN_HEADER
,
687 QCOW2_OPT_OVERLAP_ACTIVE_L1
,
688 QCOW2_OPT_OVERLAP_ACTIVE_L2
,
689 QCOW2_OPT_OVERLAP_REFCOUNT_TABLE
,
690 QCOW2_OPT_OVERLAP_REFCOUNT_BLOCK
,
691 QCOW2_OPT_OVERLAP_SNAPSHOT_TABLE
,
692 QCOW2_OPT_OVERLAP_INACTIVE_L1
,
693 QCOW2_OPT_OVERLAP_INACTIVE_L2
,
694 QCOW2_OPT_OVERLAP_BITMAP_DIRECTORY
,
695 QCOW2_OPT_CACHE_SIZE
,
696 QCOW2_OPT_L2_CACHE_SIZE
,
697 QCOW2_OPT_L2_CACHE_ENTRY_SIZE
,
698 QCOW2_OPT_REFCOUNT_CACHE_SIZE
,
699 QCOW2_OPT_CACHE_CLEAN_INTERVAL
,
703 static QemuOptsList qcow2_runtime_opts
= {
705 .head
= QTAILQ_HEAD_INITIALIZER(qcow2_runtime_opts
.head
),
708 .name
= QCOW2_OPT_LAZY_REFCOUNTS
,
709 .type
= QEMU_OPT_BOOL
,
710 .help
= "Postpone refcount updates",
713 .name
= QCOW2_OPT_DISCARD_REQUEST
,
714 .type
= QEMU_OPT_BOOL
,
715 .help
= "Pass guest discard requests to the layer below",
718 .name
= QCOW2_OPT_DISCARD_SNAPSHOT
,
719 .type
= QEMU_OPT_BOOL
,
720 .help
= "Generate discard requests when snapshot related space "
724 .name
= QCOW2_OPT_DISCARD_OTHER
,
725 .type
= QEMU_OPT_BOOL
,
726 .help
= "Generate discard requests when other clusters are freed",
729 .name
= QCOW2_OPT_OVERLAP
,
730 .type
= QEMU_OPT_STRING
,
731 .help
= "Selects which overlap checks to perform from a range of "
732 "templates (none, constant, cached, all)",
735 .name
= QCOW2_OPT_OVERLAP_TEMPLATE
,
736 .type
= QEMU_OPT_STRING
,
737 .help
= "Selects which overlap checks to perform from a range of "
738 "templates (none, constant, cached, all)",
741 .name
= QCOW2_OPT_OVERLAP_MAIN_HEADER
,
742 .type
= QEMU_OPT_BOOL
,
743 .help
= "Check for unintended writes into the main qcow2 header",
746 .name
= QCOW2_OPT_OVERLAP_ACTIVE_L1
,
747 .type
= QEMU_OPT_BOOL
,
748 .help
= "Check for unintended writes into the active L1 table",
751 .name
= QCOW2_OPT_OVERLAP_ACTIVE_L2
,
752 .type
= QEMU_OPT_BOOL
,
753 .help
= "Check for unintended writes into an active L2 table",
756 .name
= QCOW2_OPT_OVERLAP_REFCOUNT_TABLE
,
757 .type
= QEMU_OPT_BOOL
,
758 .help
= "Check for unintended writes into the refcount table",
761 .name
= QCOW2_OPT_OVERLAP_REFCOUNT_BLOCK
,
762 .type
= QEMU_OPT_BOOL
,
763 .help
= "Check for unintended writes into a refcount block",
766 .name
= QCOW2_OPT_OVERLAP_SNAPSHOT_TABLE
,
767 .type
= QEMU_OPT_BOOL
,
768 .help
= "Check for unintended writes into the snapshot table",
771 .name
= QCOW2_OPT_OVERLAP_INACTIVE_L1
,
772 .type
= QEMU_OPT_BOOL
,
773 .help
= "Check for unintended writes into an inactive L1 table",
776 .name
= QCOW2_OPT_OVERLAP_INACTIVE_L2
,
777 .type
= QEMU_OPT_BOOL
,
778 .help
= "Check for unintended writes into an inactive L2 table",
781 .name
= QCOW2_OPT_OVERLAP_BITMAP_DIRECTORY
,
782 .type
= QEMU_OPT_BOOL
,
783 .help
= "Check for unintended writes into the bitmap directory",
786 .name
= QCOW2_OPT_CACHE_SIZE
,
787 .type
= QEMU_OPT_SIZE
,
788 .help
= "Maximum combined metadata (L2 tables and refcount blocks) "
792 .name
= QCOW2_OPT_L2_CACHE_SIZE
,
793 .type
= QEMU_OPT_SIZE
,
794 .help
= "Maximum L2 table cache size",
797 .name
= QCOW2_OPT_L2_CACHE_ENTRY_SIZE
,
798 .type
= QEMU_OPT_SIZE
,
799 .help
= "Size of each entry in the L2 cache",
802 .name
= QCOW2_OPT_REFCOUNT_CACHE_SIZE
,
803 .type
= QEMU_OPT_SIZE
,
804 .help
= "Maximum refcount block cache size",
807 .name
= QCOW2_OPT_CACHE_CLEAN_INTERVAL
,
808 .type
= QEMU_OPT_NUMBER
,
809 .help
= "Clean unused cache entries after this time (in seconds)",
811 BLOCK_CRYPTO_OPT_DEF_KEY_SECRET("encrypt.",
812 "ID of secret providing qcow2 AES key or LUKS passphrase"),
813 { /* end of list */ }
817 static const char *overlap_bool_option_names
[QCOW2_OL_MAX_BITNR
] = {
818 [QCOW2_OL_MAIN_HEADER_BITNR
] = QCOW2_OPT_OVERLAP_MAIN_HEADER
,
819 [QCOW2_OL_ACTIVE_L1_BITNR
] = QCOW2_OPT_OVERLAP_ACTIVE_L1
,
820 [QCOW2_OL_ACTIVE_L2_BITNR
] = QCOW2_OPT_OVERLAP_ACTIVE_L2
,
821 [QCOW2_OL_REFCOUNT_TABLE_BITNR
] = QCOW2_OPT_OVERLAP_REFCOUNT_TABLE
,
822 [QCOW2_OL_REFCOUNT_BLOCK_BITNR
] = QCOW2_OPT_OVERLAP_REFCOUNT_BLOCK
,
823 [QCOW2_OL_SNAPSHOT_TABLE_BITNR
] = QCOW2_OPT_OVERLAP_SNAPSHOT_TABLE
,
824 [QCOW2_OL_INACTIVE_L1_BITNR
] = QCOW2_OPT_OVERLAP_INACTIVE_L1
,
825 [QCOW2_OL_INACTIVE_L2_BITNR
] = QCOW2_OPT_OVERLAP_INACTIVE_L2
,
826 [QCOW2_OL_BITMAP_DIRECTORY_BITNR
] = QCOW2_OPT_OVERLAP_BITMAP_DIRECTORY
,
829 static void cache_clean_timer_cb(void *opaque
)
831 BlockDriverState
*bs
= opaque
;
832 BDRVQcow2State
*s
= bs
->opaque
;
833 qcow2_cache_clean_unused(s
->l2_table_cache
);
834 qcow2_cache_clean_unused(s
->refcount_block_cache
);
835 timer_mod(s
->cache_clean_timer
, qemu_clock_get_ms(QEMU_CLOCK_VIRTUAL
) +
836 (int64_t) s
->cache_clean_interval
* 1000);
839 static void cache_clean_timer_init(BlockDriverState
*bs
, AioContext
*context
)
841 BDRVQcow2State
*s
= bs
->opaque
;
842 if (s
->cache_clean_interval
> 0) {
843 s
->cache_clean_timer
= aio_timer_new(context
, QEMU_CLOCK_VIRTUAL
,
844 SCALE_MS
, cache_clean_timer_cb
,
846 timer_mod(s
->cache_clean_timer
, qemu_clock_get_ms(QEMU_CLOCK_VIRTUAL
) +
847 (int64_t) s
->cache_clean_interval
* 1000);
851 static void cache_clean_timer_del(BlockDriverState
*bs
)
853 BDRVQcow2State
*s
= bs
->opaque
;
854 if (s
->cache_clean_timer
) {
855 timer_del(s
->cache_clean_timer
);
856 timer_free(s
->cache_clean_timer
);
857 s
->cache_clean_timer
= NULL
;
861 static void qcow2_detach_aio_context(BlockDriverState
*bs
)
863 cache_clean_timer_del(bs
);
866 static void qcow2_attach_aio_context(BlockDriverState
*bs
,
867 AioContext
*new_context
)
869 cache_clean_timer_init(bs
, new_context
);
872 static void read_cache_sizes(BlockDriverState
*bs
, QemuOpts
*opts
,
873 uint64_t *l2_cache_size
,
874 uint64_t *l2_cache_entry_size
,
875 uint64_t *refcount_cache_size
, Error
**errp
)
877 BDRVQcow2State
*s
= bs
->opaque
;
878 uint64_t combined_cache_size
, l2_cache_max_setting
;
879 bool l2_cache_size_set
, refcount_cache_size_set
, combined_cache_size_set
;
880 bool l2_cache_entry_size_set
;
881 int min_refcount_cache
= MIN_REFCOUNT_CACHE_SIZE
* s
->cluster_size
;
882 uint64_t virtual_disk_size
= bs
->total_sectors
* BDRV_SECTOR_SIZE
;
883 uint64_t max_l2_entries
= DIV_ROUND_UP(virtual_disk_size
, s
->cluster_size
);
884 /* An L2 table is always one cluster in size so the max cache size
885 * should be a multiple of the cluster size. */
886 uint64_t max_l2_cache
= ROUND_UP(max_l2_entries
* l2_entry_size(s
),
889 combined_cache_size_set
= qemu_opt_get(opts
, QCOW2_OPT_CACHE_SIZE
);
890 l2_cache_size_set
= qemu_opt_get(opts
, QCOW2_OPT_L2_CACHE_SIZE
);
891 refcount_cache_size_set
= qemu_opt_get(opts
, QCOW2_OPT_REFCOUNT_CACHE_SIZE
);
892 l2_cache_entry_size_set
= qemu_opt_get(opts
, QCOW2_OPT_L2_CACHE_ENTRY_SIZE
);
894 combined_cache_size
= qemu_opt_get_size(opts
, QCOW2_OPT_CACHE_SIZE
, 0);
895 l2_cache_max_setting
= qemu_opt_get_size(opts
, QCOW2_OPT_L2_CACHE_SIZE
,
896 DEFAULT_L2_CACHE_MAX_SIZE
);
897 *refcount_cache_size
= qemu_opt_get_size(opts
,
898 QCOW2_OPT_REFCOUNT_CACHE_SIZE
, 0);
900 *l2_cache_entry_size
= qemu_opt_get_size(
901 opts
, QCOW2_OPT_L2_CACHE_ENTRY_SIZE
, s
->cluster_size
);
903 *l2_cache_size
= MIN(max_l2_cache
, l2_cache_max_setting
);
905 if (combined_cache_size_set
) {
906 if (l2_cache_size_set
&& refcount_cache_size_set
) {
907 error_setg(errp
, QCOW2_OPT_CACHE_SIZE
", " QCOW2_OPT_L2_CACHE_SIZE
908 " and " QCOW2_OPT_REFCOUNT_CACHE_SIZE
" may not be set "
911 } else if (l2_cache_size_set
&&
912 (l2_cache_max_setting
> combined_cache_size
)) {
913 error_setg(errp
, QCOW2_OPT_L2_CACHE_SIZE
" may not exceed "
914 QCOW2_OPT_CACHE_SIZE
);
916 } else if (*refcount_cache_size
> combined_cache_size
) {
917 error_setg(errp
, QCOW2_OPT_REFCOUNT_CACHE_SIZE
" may not exceed "
918 QCOW2_OPT_CACHE_SIZE
);
922 if (l2_cache_size_set
) {
923 *refcount_cache_size
= combined_cache_size
- *l2_cache_size
;
924 } else if (refcount_cache_size_set
) {
925 *l2_cache_size
= combined_cache_size
- *refcount_cache_size
;
927 /* Assign as much memory as possible to the L2 cache, and
928 * use the remainder for the refcount cache */
929 if (combined_cache_size
>= max_l2_cache
+ min_refcount_cache
) {
930 *l2_cache_size
= max_l2_cache
;
931 *refcount_cache_size
= combined_cache_size
- *l2_cache_size
;
933 *refcount_cache_size
=
934 MIN(combined_cache_size
, min_refcount_cache
);
935 *l2_cache_size
= combined_cache_size
- *refcount_cache_size
;
941 * If the L2 cache is not enough to cover the whole disk then
942 * default to 4KB entries. Smaller entries reduce the cost of
943 * loads and evictions and increase I/O performance.
945 if (*l2_cache_size
< max_l2_cache
&& !l2_cache_entry_size_set
) {
946 *l2_cache_entry_size
= MIN(s
->cluster_size
, 4096);
949 /* l2_cache_size and refcount_cache_size are ensured to have at least
950 * their minimum values in qcow2_update_options_prepare() */
952 if (*l2_cache_entry_size
< (1 << MIN_CLUSTER_BITS
) ||
953 *l2_cache_entry_size
> s
->cluster_size
||
954 !is_power_of_2(*l2_cache_entry_size
)) {
955 error_setg(errp
, "L2 cache entry size must be a power of two "
956 "between %d and the cluster size (%d)",
957 1 << MIN_CLUSTER_BITS
, s
->cluster_size
);
962 typedef struct Qcow2ReopenState
{
963 Qcow2Cache
*l2_table_cache
;
964 Qcow2Cache
*refcount_block_cache
;
965 int l2_slice_size
; /* Number of entries in a slice of the L2 table */
966 bool use_lazy_refcounts
;
968 bool discard_passthrough
[QCOW2_DISCARD_MAX
];
969 uint64_t cache_clean_interval
;
970 QCryptoBlockOpenOptions
*crypto_opts
; /* Disk encryption runtime options */
973 static int qcow2_update_options_prepare(BlockDriverState
*bs
,
975 QDict
*options
, int flags
,
978 BDRVQcow2State
*s
= bs
->opaque
;
979 QemuOpts
*opts
= NULL
;
980 const char *opt_overlap_check
, *opt_overlap_check_template
;
981 int overlap_check_template
= 0;
982 uint64_t l2_cache_size
, l2_cache_entry_size
, refcount_cache_size
;
984 const char *encryptfmt
;
985 QDict
*encryptopts
= NULL
;
986 Error
*local_err
= NULL
;
989 qdict_extract_subqdict(options
, &encryptopts
, "encrypt.");
990 encryptfmt
= qdict_get_try_str(encryptopts
, "format");
992 opts
= qemu_opts_create(&qcow2_runtime_opts
, NULL
, 0, &error_abort
);
993 if (!qemu_opts_absorb_qdict(opts
, options
, errp
)) {
998 /* get L2 table/refcount block cache size from command line options */
999 read_cache_sizes(bs
, opts
, &l2_cache_size
, &l2_cache_entry_size
,
1000 &refcount_cache_size
, &local_err
);
1002 error_propagate(errp
, local_err
);
1007 l2_cache_size
/= l2_cache_entry_size
;
1008 if (l2_cache_size
< MIN_L2_CACHE_SIZE
) {
1009 l2_cache_size
= MIN_L2_CACHE_SIZE
;
1011 if (l2_cache_size
> INT_MAX
) {
1012 error_setg(errp
, "L2 cache size too big");
1017 refcount_cache_size
/= s
->cluster_size
;
1018 if (refcount_cache_size
< MIN_REFCOUNT_CACHE_SIZE
) {
1019 refcount_cache_size
= MIN_REFCOUNT_CACHE_SIZE
;
1021 if (refcount_cache_size
> INT_MAX
) {
1022 error_setg(errp
, "Refcount cache size too big");
1027 /* alloc new L2 table/refcount block cache, flush old one */
1028 if (s
->l2_table_cache
) {
1029 ret
= qcow2_cache_flush(bs
, s
->l2_table_cache
);
1031 error_setg_errno(errp
, -ret
, "Failed to flush the L2 table cache");
1036 if (s
->refcount_block_cache
) {
1037 ret
= qcow2_cache_flush(bs
, s
->refcount_block_cache
);
1039 error_setg_errno(errp
, -ret
,
1040 "Failed to flush the refcount block cache");
1045 r
->l2_slice_size
= l2_cache_entry_size
/ l2_entry_size(s
);
1046 r
->l2_table_cache
= qcow2_cache_create(bs
, l2_cache_size
,
1047 l2_cache_entry_size
);
1048 r
->refcount_block_cache
= qcow2_cache_create(bs
, refcount_cache_size
,
1050 if (r
->l2_table_cache
== NULL
|| r
->refcount_block_cache
== NULL
) {
1051 error_setg(errp
, "Could not allocate metadata caches");
1056 /* New interval for cache cleanup timer */
1057 r
->cache_clean_interval
=
1058 qemu_opt_get_number(opts
, QCOW2_OPT_CACHE_CLEAN_INTERVAL
,
1059 DEFAULT_CACHE_CLEAN_INTERVAL
);
1060 #ifndef CONFIG_LINUX
1061 if (r
->cache_clean_interval
!= 0) {
1062 error_setg(errp
, QCOW2_OPT_CACHE_CLEAN_INTERVAL
1063 " not supported on this host");
1068 if (r
->cache_clean_interval
> UINT_MAX
) {
1069 error_setg(errp
, "Cache clean interval too big");
1074 /* lazy-refcounts; flush if going from enabled to disabled */
1075 r
->use_lazy_refcounts
= qemu_opt_get_bool(opts
, QCOW2_OPT_LAZY_REFCOUNTS
,
1076 (s
->compatible_features
& QCOW2_COMPAT_LAZY_REFCOUNTS
));
1077 if (r
->use_lazy_refcounts
&& s
->qcow_version
< 3) {
1078 error_setg(errp
, "Lazy refcounts require a qcow2 image with at least "
1079 "qemu 1.1 compatibility level");
1084 if (s
->use_lazy_refcounts
&& !r
->use_lazy_refcounts
) {
1085 ret
= qcow2_mark_clean(bs
);
1087 error_setg_errno(errp
, -ret
, "Failed to disable lazy refcounts");
1092 /* Overlap check options */
1093 opt_overlap_check
= qemu_opt_get(opts
, QCOW2_OPT_OVERLAP
);
1094 opt_overlap_check_template
= qemu_opt_get(opts
, QCOW2_OPT_OVERLAP_TEMPLATE
);
1095 if (opt_overlap_check_template
&& opt_overlap_check
&&
1096 strcmp(opt_overlap_check_template
, opt_overlap_check
))
1098 error_setg(errp
, "Conflicting values for qcow2 options '"
1099 QCOW2_OPT_OVERLAP
"' ('%s') and '" QCOW2_OPT_OVERLAP_TEMPLATE
1100 "' ('%s')", opt_overlap_check
, opt_overlap_check_template
);
1104 if (!opt_overlap_check
) {
1105 opt_overlap_check
= opt_overlap_check_template
?: "cached";
1108 if (!strcmp(opt_overlap_check
, "none")) {
1109 overlap_check_template
= 0;
1110 } else if (!strcmp(opt_overlap_check
, "constant")) {
1111 overlap_check_template
= QCOW2_OL_CONSTANT
;
1112 } else if (!strcmp(opt_overlap_check
, "cached")) {
1113 overlap_check_template
= QCOW2_OL_CACHED
;
1114 } else if (!strcmp(opt_overlap_check
, "all")) {
1115 overlap_check_template
= QCOW2_OL_ALL
;
1117 error_setg(errp
, "Unsupported value '%s' for qcow2 option "
1118 "'overlap-check'. Allowed are any of the following: "
1119 "none, constant, cached, all", opt_overlap_check
);
1124 r
->overlap_check
= 0;
1125 for (i
= 0; i
< QCOW2_OL_MAX_BITNR
; i
++) {
1126 /* overlap-check defines a template bitmask, but every flag may be
1127 * overwritten through the associated boolean option */
1129 qemu_opt_get_bool(opts
, overlap_bool_option_names
[i
],
1130 overlap_check_template
& (1 << i
)) << i
;
1133 r
->discard_passthrough
[QCOW2_DISCARD_NEVER
] = false;
1134 r
->discard_passthrough
[QCOW2_DISCARD_ALWAYS
] = true;
1135 r
->discard_passthrough
[QCOW2_DISCARD_REQUEST
] =
1136 qemu_opt_get_bool(opts
, QCOW2_OPT_DISCARD_REQUEST
,
1137 flags
& BDRV_O_UNMAP
);
1138 r
->discard_passthrough
[QCOW2_DISCARD_SNAPSHOT
] =
1139 qemu_opt_get_bool(opts
, QCOW2_OPT_DISCARD_SNAPSHOT
, true);
1140 r
->discard_passthrough
[QCOW2_DISCARD_OTHER
] =
1141 qemu_opt_get_bool(opts
, QCOW2_OPT_DISCARD_OTHER
, false);
1143 switch (s
->crypt_method_header
) {
1144 case QCOW_CRYPT_NONE
:
1146 error_setg(errp
, "No encryption in image header, but options "
1147 "specified format '%s'", encryptfmt
);
1153 case QCOW_CRYPT_AES
:
1154 if (encryptfmt
&& !g_str_equal(encryptfmt
, "aes")) {
1156 "Header reported 'aes' encryption format but "
1157 "options specify '%s'", encryptfmt
);
1161 qdict_put_str(encryptopts
, "format", "qcow");
1162 r
->crypto_opts
= block_crypto_open_opts_init(encryptopts
, errp
);
1165 case QCOW_CRYPT_LUKS
:
1166 if (encryptfmt
&& !g_str_equal(encryptfmt
, "luks")) {
1168 "Header reported 'luks' encryption format but "
1169 "options specify '%s'", encryptfmt
);
1173 qdict_put_str(encryptopts
, "format", "luks");
1174 r
->crypto_opts
= block_crypto_open_opts_init(encryptopts
, errp
);
1178 error_setg(errp
, "Unsupported encryption method %d",
1179 s
->crypt_method_header
);
1182 if (s
->crypt_method_header
!= QCOW_CRYPT_NONE
&& !r
->crypto_opts
) {
1189 qobject_unref(encryptopts
);
1190 qemu_opts_del(opts
);
1195 static void qcow2_update_options_commit(BlockDriverState
*bs
,
1196 Qcow2ReopenState
*r
)
1198 BDRVQcow2State
*s
= bs
->opaque
;
1201 if (s
->l2_table_cache
) {
1202 qcow2_cache_destroy(s
->l2_table_cache
);
1204 if (s
->refcount_block_cache
) {
1205 qcow2_cache_destroy(s
->refcount_block_cache
);
1207 s
->l2_table_cache
= r
->l2_table_cache
;
1208 s
->refcount_block_cache
= r
->refcount_block_cache
;
1209 s
->l2_slice_size
= r
->l2_slice_size
;
1211 s
->overlap_check
= r
->overlap_check
;
1212 s
->use_lazy_refcounts
= r
->use_lazy_refcounts
;
1214 for (i
= 0; i
< QCOW2_DISCARD_MAX
; i
++) {
1215 s
->discard_passthrough
[i
] = r
->discard_passthrough
[i
];
1218 if (s
->cache_clean_interval
!= r
->cache_clean_interval
) {
1219 cache_clean_timer_del(bs
);
1220 s
->cache_clean_interval
= r
->cache_clean_interval
;
1221 cache_clean_timer_init(bs
, bdrv_get_aio_context(bs
));
1224 qapi_free_QCryptoBlockOpenOptions(s
->crypto_opts
);
1225 s
->crypto_opts
= r
->crypto_opts
;
1228 static void qcow2_update_options_abort(BlockDriverState
*bs
,
1229 Qcow2ReopenState
*r
)
1231 if (r
->l2_table_cache
) {
1232 qcow2_cache_destroy(r
->l2_table_cache
);
1234 if (r
->refcount_block_cache
) {
1235 qcow2_cache_destroy(r
->refcount_block_cache
);
1237 qapi_free_QCryptoBlockOpenOptions(r
->crypto_opts
);
1240 static int qcow2_update_options(BlockDriverState
*bs
, QDict
*options
,
1241 int flags
, Error
**errp
)
1243 Qcow2ReopenState r
= {};
1246 ret
= qcow2_update_options_prepare(bs
, &r
, options
, flags
, errp
);
1248 qcow2_update_options_commit(bs
, &r
);
1250 qcow2_update_options_abort(bs
, &r
);
1256 static int validate_compression_type(BDRVQcow2State
*s
, Error
**errp
)
1258 switch (s
->compression_type
) {
1259 case QCOW2_COMPRESSION_TYPE_ZLIB
:
1261 case QCOW2_COMPRESSION_TYPE_ZSTD
:
1266 error_setg(errp
, "qcow2: unknown compression type: %u",
1267 s
->compression_type
);
1272 * if the compression type differs from QCOW2_COMPRESSION_TYPE_ZLIB
1273 * the incompatible feature flag must be set
1275 if (s
->compression_type
== QCOW2_COMPRESSION_TYPE_ZLIB
) {
1276 if (s
->incompatible_features
& QCOW2_INCOMPAT_COMPRESSION
) {
1277 error_setg(errp
, "qcow2: Compression type incompatible feature "
1278 "bit must not be set");
1282 if (!(s
->incompatible_features
& QCOW2_INCOMPAT_COMPRESSION
)) {
1283 error_setg(errp
, "qcow2: Compression type incompatible feature "
1292 /* Called with s->lock held. */
1293 static int coroutine_fn
qcow2_do_open(BlockDriverState
*bs
, QDict
*options
,
1294 int flags
, Error
**errp
)
1296 BDRVQcow2State
*s
= bs
->opaque
;
1297 unsigned int len
, i
;
1300 Error
*local_err
= NULL
;
1302 uint64_t l1_vm_state_index
;
1303 bool update_header
= false;
1305 ret
= bdrv_pread(bs
->file
, 0, &header
, sizeof(header
));
1307 error_setg_errno(errp
, -ret
, "Could not read qcow2 header");
1310 header
.magic
= be32_to_cpu(header
.magic
);
1311 header
.version
= be32_to_cpu(header
.version
);
1312 header
.backing_file_offset
= be64_to_cpu(header
.backing_file_offset
);
1313 header
.backing_file_size
= be32_to_cpu(header
.backing_file_size
);
1314 header
.size
= be64_to_cpu(header
.size
);
1315 header
.cluster_bits
= be32_to_cpu(header
.cluster_bits
);
1316 header
.crypt_method
= be32_to_cpu(header
.crypt_method
);
1317 header
.l1_table_offset
= be64_to_cpu(header
.l1_table_offset
);
1318 header
.l1_size
= be32_to_cpu(header
.l1_size
);
1319 header
.refcount_table_offset
= be64_to_cpu(header
.refcount_table_offset
);
1320 header
.refcount_table_clusters
=
1321 be32_to_cpu(header
.refcount_table_clusters
);
1322 header
.snapshots_offset
= be64_to_cpu(header
.snapshots_offset
);
1323 header
.nb_snapshots
= be32_to_cpu(header
.nb_snapshots
);
1325 if (header
.magic
!= QCOW_MAGIC
) {
1326 error_setg(errp
, "Image is not in qcow2 format");
1330 if (header
.version
< 2 || header
.version
> 3) {
1331 error_setg(errp
, "Unsupported qcow2 version %" PRIu32
, header
.version
);
1336 s
->qcow_version
= header
.version
;
1338 /* Initialise cluster size */
1339 if (header
.cluster_bits
< MIN_CLUSTER_BITS
||
1340 header
.cluster_bits
> MAX_CLUSTER_BITS
) {
1341 error_setg(errp
, "Unsupported cluster size: 2^%" PRIu32
,
1342 header
.cluster_bits
);
1347 s
->cluster_bits
= header
.cluster_bits
;
1348 s
->cluster_size
= 1 << s
->cluster_bits
;
1350 /* Initialise version 3 header fields */
1351 if (header
.version
== 2) {
1352 header
.incompatible_features
= 0;
1353 header
.compatible_features
= 0;
1354 header
.autoclear_features
= 0;
1355 header
.refcount_order
= 4;
1356 header
.header_length
= 72;
1358 header
.incompatible_features
=
1359 be64_to_cpu(header
.incompatible_features
);
1360 header
.compatible_features
= be64_to_cpu(header
.compatible_features
);
1361 header
.autoclear_features
= be64_to_cpu(header
.autoclear_features
);
1362 header
.refcount_order
= be32_to_cpu(header
.refcount_order
);
1363 header
.header_length
= be32_to_cpu(header
.header_length
);
1365 if (header
.header_length
< 104) {
1366 error_setg(errp
, "qcow2 header too short");
1372 if (header
.header_length
> s
->cluster_size
) {
1373 error_setg(errp
, "qcow2 header exceeds cluster size");
1378 if (header
.header_length
> sizeof(header
)) {
1379 s
->unknown_header_fields_size
= header
.header_length
- sizeof(header
);
1380 s
->unknown_header_fields
= g_malloc(s
->unknown_header_fields_size
);
1381 ret
= bdrv_pread(bs
->file
, sizeof(header
), s
->unknown_header_fields
,
1382 s
->unknown_header_fields_size
);
1384 error_setg_errno(errp
, -ret
, "Could not read unknown qcow2 header "
1390 if (header
.backing_file_offset
> s
->cluster_size
) {
1391 error_setg(errp
, "Invalid backing file offset");
1396 if (header
.backing_file_offset
) {
1397 ext_end
= header
.backing_file_offset
;
1399 ext_end
= 1 << header
.cluster_bits
;
1402 /* Handle feature bits */
1403 s
->incompatible_features
= header
.incompatible_features
;
1404 s
->compatible_features
= header
.compatible_features
;
1405 s
->autoclear_features
= header
.autoclear_features
;
1408 * Handle compression type
1409 * Older qcow2 images don't contain the compression type header.
1410 * Distinguish them by the header length and use
1411 * the only valid (default) compression type in that case
1413 if (header
.header_length
> offsetof(QCowHeader
, compression_type
)) {
1414 s
->compression_type
= header
.compression_type
;
1416 s
->compression_type
= QCOW2_COMPRESSION_TYPE_ZLIB
;
1419 ret
= validate_compression_type(s
, errp
);
1424 if (s
->incompatible_features
& ~QCOW2_INCOMPAT_MASK
) {
1425 void *feature_table
= NULL
;
1426 qcow2_read_extensions(bs
, header
.header_length
, ext_end
,
1427 &feature_table
, flags
, NULL
, NULL
);
1428 report_unsupported_feature(errp
, feature_table
,
1429 s
->incompatible_features
&
1430 ~QCOW2_INCOMPAT_MASK
);
1432 g_free(feature_table
);
1436 if (s
->incompatible_features
& QCOW2_INCOMPAT_CORRUPT
) {
1437 /* Corrupt images may not be written to unless they are being repaired
1439 if ((flags
& BDRV_O_RDWR
) && !(flags
& BDRV_O_CHECK
)) {
1440 error_setg(errp
, "qcow2: Image is corrupt; cannot be opened "
1447 s
->subclusters_per_cluster
=
1448 has_subclusters(s
) ? QCOW_EXTL2_SUBCLUSTERS_PER_CLUSTER
: 1;
1449 s
->subcluster_size
= s
->cluster_size
/ s
->subclusters_per_cluster
;
1450 s
->subcluster_bits
= ctz32(s
->subcluster_size
);
1452 if (s
->subcluster_size
< (1 << MIN_CLUSTER_BITS
)) {
1453 error_setg(errp
, "Unsupported subcluster size: %d", s
->subcluster_size
);
1458 /* Check support for various header values */
1459 if (header
.refcount_order
> 6) {
1460 error_setg(errp
, "Reference count entry width too large; may not "
1465 s
->refcount_order
= header
.refcount_order
;
1466 s
->refcount_bits
= 1 << s
->refcount_order
;
1467 s
->refcount_max
= UINT64_C(1) << (s
->refcount_bits
- 1);
1468 s
->refcount_max
+= s
->refcount_max
- 1;
1470 s
->crypt_method_header
= header
.crypt_method
;
1471 if (s
->crypt_method_header
) {
1472 if (bdrv_uses_whitelist() &&
1473 s
->crypt_method_header
== QCOW_CRYPT_AES
) {
1475 "Use of AES-CBC encrypted qcow2 images is no longer "
1476 "supported in system emulators");
1477 error_append_hint(errp
,
1478 "You can use 'qemu-img convert' to convert your "
1479 "image to an alternative supported format, such "
1480 "as unencrypted qcow2, or raw with the LUKS "
1481 "format instead.\n");
1486 if (s
->crypt_method_header
== QCOW_CRYPT_AES
) {
1487 s
->crypt_physical_offset
= false;
1489 /* Assuming LUKS and any future crypt methods we
1490 * add will all use physical offsets, due to the
1491 * fact that the alternative is insecure... */
1492 s
->crypt_physical_offset
= true;
1495 bs
->encrypted
= true;
1498 s
->l2_bits
= s
->cluster_bits
- ctz32(l2_entry_size(s
));
1499 s
->l2_size
= 1 << s
->l2_bits
;
1500 /* 2^(s->refcount_order - 3) is the refcount width in bytes */
1501 s
->refcount_block_bits
= s
->cluster_bits
- (s
->refcount_order
- 3);
1502 s
->refcount_block_size
= 1 << s
->refcount_block_bits
;
1503 bs
->total_sectors
= header
.size
/ BDRV_SECTOR_SIZE
;
1504 s
->csize_shift
= (62 - (s
->cluster_bits
- 8));
1505 s
->csize_mask
= (1 << (s
->cluster_bits
- 8)) - 1;
1506 s
->cluster_offset_mask
= (1LL << s
->csize_shift
) - 1;
1508 s
->refcount_table_offset
= header
.refcount_table_offset
;
1509 s
->refcount_table_size
=
1510 header
.refcount_table_clusters
<< (s
->cluster_bits
- 3);
1512 if (header
.refcount_table_clusters
== 0 && !(flags
& BDRV_O_CHECK
)) {
1513 error_setg(errp
, "Image does not contain a reference count table");
1518 ret
= qcow2_validate_table(bs
, s
->refcount_table_offset
,
1519 header
.refcount_table_clusters
,
1520 s
->cluster_size
, QCOW_MAX_REFTABLE_SIZE
,
1521 "Reference count table", errp
);
1526 if (!(flags
& BDRV_O_CHECK
)) {
1528 * The total size in bytes of the snapshot table is checked in
1529 * qcow2_read_snapshots() because the size of each snapshot is
1530 * variable and we don't know it yet.
1531 * Here we only check the offset and number of snapshots.
1533 ret
= qcow2_validate_table(bs
, header
.snapshots_offset
,
1534 header
.nb_snapshots
,
1535 sizeof(QCowSnapshotHeader
),
1536 sizeof(QCowSnapshotHeader
) *
1538 "Snapshot table", errp
);
1544 /* read the level 1 table */
1545 ret
= qcow2_validate_table(bs
, header
.l1_table_offset
,
1546 header
.l1_size
, sizeof(uint64_t),
1547 QCOW_MAX_L1_SIZE
, "Active L1 table", errp
);
1551 s
->l1_size
= header
.l1_size
;
1552 s
->l1_table_offset
= header
.l1_table_offset
;
1554 l1_vm_state_index
= size_to_l1(s
, header
.size
);
1555 if (l1_vm_state_index
> INT_MAX
) {
1556 error_setg(errp
, "Image is too big");
1560 s
->l1_vm_state_index
= l1_vm_state_index
;
1562 /* the L1 table must contain at least enough entries to put
1563 header.size bytes */
1564 if (s
->l1_size
< s
->l1_vm_state_index
) {
1565 error_setg(errp
, "L1 table is too small");
1570 if (s
->l1_size
> 0) {
1571 s
->l1_table
= qemu_try_blockalign(bs
->file
->bs
,
1572 s
->l1_size
* sizeof(uint64_t));
1573 if (s
->l1_table
== NULL
) {
1574 error_setg(errp
, "Could not allocate L1 table");
1578 ret
= bdrv_pread(bs
->file
, s
->l1_table_offset
, s
->l1_table
,
1579 s
->l1_size
* sizeof(uint64_t));
1581 error_setg_errno(errp
, -ret
, "Could not read L1 table");
1584 for(i
= 0;i
< s
->l1_size
; i
++) {
1585 s
->l1_table
[i
] = be64_to_cpu(s
->l1_table
[i
]);
1589 /* Parse driver-specific options */
1590 ret
= qcow2_update_options(bs
, options
, flags
, errp
);
1597 ret
= qcow2_refcount_init(bs
);
1599 error_setg_errno(errp
, -ret
, "Could not initialize refcount handling");
1603 QLIST_INIT(&s
->cluster_allocs
);
1604 QTAILQ_INIT(&s
->discards
);
1606 /* read qcow2 extensions */
1607 if (qcow2_read_extensions(bs
, header
.header_length
, ext_end
, NULL
,
1608 flags
, &update_header
, errp
)) {
1613 /* Open external data file */
1614 s
->data_file
= bdrv_open_child(NULL
, options
, "data-file", bs
,
1615 &child_of_bds
, BDRV_CHILD_DATA
,
1618 error_propagate(errp
, local_err
);
1623 if (s
->incompatible_features
& QCOW2_INCOMPAT_DATA_FILE
) {
1624 if (!s
->data_file
&& s
->image_data_file
) {
1625 s
->data_file
= bdrv_open_child(s
->image_data_file
, options
,
1626 "data-file", bs
, &child_of_bds
,
1627 BDRV_CHILD_DATA
, false, errp
);
1628 if (!s
->data_file
) {
1633 if (!s
->data_file
) {
1634 error_setg(errp
, "'data-file' is required for this image");
1640 bs
->file
->role
&= ~BDRV_CHILD_DATA
;
1642 /* Must succeed because we have given up permissions if anything */
1643 bdrv_child_refresh_perms(bs
, bs
->file
, &error_abort
);
1646 error_setg(errp
, "'data-file' can only be set for images with an "
1647 "external data file");
1652 s
->data_file
= bs
->file
;
1654 if (data_file_is_raw(bs
)) {
1655 error_setg(errp
, "data-file-raw requires a data file");
1661 /* qcow2_read_extension may have set up the crypto context
1662 * if the crypt method needs a header region, some methods
1663 * don't need header extensions, so must check here
1665 if (s
->crypt_method_header
&& !s
->crypto
) {
1666 if (s
->crypt_method_header
== QCOW_CRYPT_AES
) {
1667 unsigned int cflags
= 0;
1668 if (flags
& BDRV_O_NO_IO
) {
1669 cflags
|= QCRYPTO_BLOCK_OPEN_NO_IO
;
1671 s
->crypto
= qcrypto_block_open(s
->crypto_opts
, "encrypt.",
1673 QCOW2_MAX_THREADS
, errp
);
1678 } else if (!(flags
& BDRV_O_NO_IO
)) {
1679 error_setg(errp
, "Missing CRYPTO header for crypt method %d",
1680 s
->crypt_method_header
);
1686 /* read the backing file name */
1687 if (header
.backing_file_offset
!= 0) {
1688 len
= header
.backing_file_size
;
1689 if (len
> MIN(1023, s
->cluster_size
- header
.backing_file_offset
) ||
1690 len
>= sizeof(bs
->backing_file
)) {
1691 error_setg(errp
, "Backing file name too long");
1695 ret
= bdrv_pread(bs
->file
, header
.backing_file_offset
,
1696 bs
->auto_backing_file
, len
);
1698 error_setg_errno(errp
, -ret
, "Could not read backing file name");
1701 bs
->auto_backing_file
[len
] = '\0';
1702 pstrcpy(bs
->backing_file
, sizeof(bs
->backing_file
),
1703 bs
->auto_backing_file
);
1704 s
->image_backing_file
= g_strdup(bs
->auto_backing_file
);
1708 * Internal snapshots; skip reading them in check mode, because
1709 * we do not need them then, and we do not want to abort because
1710 * of a broken table.
1712 if (!(flags
& BDRV_O_CHECK
)) {
1713 s
->snapshots_offset
= header
.snapshots_offset
;
1714 s
->nb_snapshots
= header
.nb_snapshots
;
1716 ret
= qcow2_read_snapshots(bs
, errp
);
1722 /* Clear unknown autoclear feature bits */
1723 update_header
|= s
->autoclear_features
& ~QCOW2_AUTOCLEAR_MASK
;
1725 update_header
&& !bs
->read_only
&& !(flags
& BDRV_O_INACTIVE
);
1726 if (update_header
) {
1727 s
->autoclear_features
&= QCOW2_AUTOCLEAR_MASK
;
1730 /* == Handle persistent dirty bitmaps ==
1732 * We want load dirty bitmaps in three cases:
1734 * 1. Normal open of the disk in active mode, not related to invalidation
1737 * 2. Invalidation of the target vm after pre-copy phase of migration, if
1738 * bitmaps are _not_ migrating through migration channel, i.e.
1739 * 'dirty-bitmaps' capability is disabled.
1741 * 3. Invalidation of source vm after failed or canceled migration.
1742 * This is a very interesting case. There are two possible types of
1745 * A. Stored on inactivation and removed. They should be loaded from the
1748 * B. Not stored: not-persistent bitmaps and bitmaps, migrated through
1749 * the migration channel (with dirty-bitmaps capability).
1751 * On the other hand, there are two possible sub-cases:
1753 * 3.1 disk was changed by somebody else while were inactive. In this
1754 * case all in-RAM dirty bitmaps (both persistent and not) are
1755 * definitely invalid. And we don't have any method to determine
1758 * Simple and safe thing is to just drop all the bitmaps of type B on
1759 * inactivation. But in this case we lose bitmaps in valid 4.2 case.
1761 * On the other hand, resuming source vm, if disk was already changed
1762 * is a bad thing anyway: not only bitmaps, the whole vm state is
1763 * out of sync with disk.
1765 * This means, that user or management tool, who for some reason
1766 * decided to resume source vm, after disk was already changed by
1767 * target vm, should at least drop all dirty bitmaps by hand.
1769 * So, we can ignore this case for now, but TODO: "generation"
1770 * extension for qcow2, to determine, that image was changed after
1771 * last inactivation. And if it is changed, we will drop (or at least
1772 * mark as 'invalid' all the bitmaps of type B, both persistent
1775 * 3.2 disk was _not_ changed while were inactive. Bitmaps may be saved
1776 * to disk ('dirty-bitmaps' capability disabled), or not saved
1777 * ('dirty-bitmaps' capability enabled), but we don't need to care
1778 * of: let's load bitmaps as always: stored bitmaps will be loaded,
1779 * and not stored has flag IN_USE=1 in the image and will be skipped
1782 * One remaining possible case when we don't want load bitmaps:
1784 * 4. Open disk in inactive mode in target vm (bitmaps are migrating or
1785 * will be loaded on invalidation, no needs try loading them before)
1788 if (!(bdrv_get_flags(bs
) & BDRV_O_INACTIVE
)) {
1789 /* It's case 1, 2 or 3.2. Or 3.1 which is BUG in management layer. */
1790 bool header_updated
= qcow2_load_dirty_bitmaps(bs
, &local_err
);
1791 if (local_err
!= NULL
) {
1792 error_propagate(errp
, local_err
);
1797 update_header
= update_header
&& !header_updated
;
1800 if (update_header
) {
1801 ret
= qcow2_update_header(bs
);
1803 error_setg_errno(errp
, -ret
, "Could not update qcow2 header");
1808 bs
->supported_zero_flags
= header
.version
>= 3 ?
1809 BDRV_REQ_MAY_UNMAP
| BDRV_REQ_NO_FALLBACK
: 0;
1810 bs
->supported_truncate_flags
= BDRV_REQ_ZERO_WRITE
;
1812 /* Repair image if dirty */
1813 if (!(flags
& (BDRV_O_CHECK
| BDRV_O_INACTIVE
)) && !bs
->read_only
&&
1814 (s
->incompatible_features
& QCOW2_INCOMPAT_DIRTY
)) {
1815 BdrvCheckResult result
= {0};
1817 ret
= qcow2_co_check_locked(bs
, &result
,
1818 BDRV_FIX_ERRORS
| BDRV_FIX_LEAKS
);
1819 if (ret
< 0 || result
.check_errors
) {
1823 error_setg_errno(errp
, -ret
, "Could not repair dirty image");
1830 BdrvCheckResult result
= {0};
1831 qcow2_check_refcounts(bs
, &result
, 0);
1835 qemu_co_queue_init(&s
->thread_task_queue
);
1840 g_free(s
->image_data_file
);
1841 if (has_data_file(bs
)) {
1842 bdrv_unref_child(bs
, s
->data_file
);
1843 s
->data_file
= NULL
;
1845 g_free(s
->unknown_header_fields
);
1846 cleanup_unknown_header_ext(bs
);
1847 qcow2_free_snapshots(bs
);
1848 qcow2_refcount_close(bs
);
1849 qemu_vfree(s
->l1_table
);
1850 /* else pre-write overlap checks in cache_destroy may crash */
1852 cache_clean_timer_del(bs
);
1853 if (s
->l2_table_cache
) {
1854 qcow2_cache_destroy(s
->l2_table_cache
);
1856 if (s
->refcount_block_cache
) {
1857 qcow2_cache_destroy(s
->refcount_block_cache
);
1859 qcrypto_block_free(s
->crypto
);
1860 qapi_free_QCryptoBlockOpenOptions(s
->crypto_opts
);
1864 typedef struct QCow2OpenCo
{
1865 BlockDriverState
*bs
;
1872 static void coroutine_fn
qcow2_open_entry(void *opaque
)
1874 QCow2OpenCo
*qoc
= opaque
;
1875 BDRVQcow2State
*s
= qoc
->bs
->opaque
;
1877 qemu_co_mutex_lock(&s
->lock
);
1878 qoc
->ret
= qcow2_do_open(qoc
->bs
, qoc
->options
, qoc
->flags
, qoc
->errp
);
1879 qemu_co_mutex_unlock(&s
->lock
);
1882 static int qcow2_open(BlockDriverState
*bs
, QDict
*options
, int flags
,
1885 BDRVQcow2State
*s
= bs
->opaque
;
1894 bs
->file
= bdrv_open_child(NULL
, options
, "file", bs
, &child_of_bds
,
1895 BDRV_CHILD_IMAGE
, false, errp
);
1900 /* Initialise locks */
1901 qemu_co_mutex_init(&s
->lock
);
1903 if (qemu_in_coroutine()) {
1904 /* From bdrv_co_create. */
1905 qcow2_open_entry(&qoc
);
1907 assert(qemu_get_current_aio_context() == qemu_get_aio_context());
1908 qemu_coroutine_enter(qemu_coroutine_create(qcow2_open_entry
, &qoc
));
1909 BDRV_POLL_WHILE(bs
, qoc
.ret
== -EINPROGRESS
);
1914 static void qcow2_refresh_limits(BlockDriverState
*bs
, Error
**errp
)
1916 BDRVQcow2State
*s
= bs
->opaque
;
1918 if (bs
->encrypted
) {
1919 /* Encryption works on a sector granularity */
1920 bs
->bl
.request_alignment
= qcrypto_block_get_sector_size(s
->crypto
);
1922 bs
->bl
.pwrite_zeroes_alignment
= s
->subcluster_size
;
1923 bs
->bl
.pdiscard_alignment
= s
->cluster_size
;
1926 static int qcow2_reopen_prepare(BDRVReopenState
*state
,
1927 BlockReopenQueue
*queue
, Error
**errp
)
1929 Qcow2ReopenState
*r
;
1932 r
= g_new0(Qcow2ReopenState
, 1);
1935 ret
= qcow2_update_options_prepare(state
->bs
, r
, state
->options
,
1936 state
->flags
, errp
);
1941 /* We need to write out any unwritten data if we reopen read-only. */
1942 if ((state
->flags
& BDRV_O_RDWR
) == 0) {
1943 ret
= qcow2_reopen_bitmaps_ro(state
->bs
, errp
);
1948 ret
= bdrv_flush(state
->bs
);
1953 ret
= qcow2_mark_clean(state
->bs
);
1962 qcow2_update_options_abort(state
->bs
, r
);
1967 static void qcow2_reopen_commit(BDRVReopenState
*state
)
1969 qcow2_update_options_commit(state
->bs
, state
->opaque
);
1970 g_free(state
->opaque
);
1973 static void qcow2_reopen_commit_post(BDRVReopenState
*state
)
1975 if (state
->flags
& BDRV_O_RDWR
) {
1976 Error
*local_err
= NULL
;
1978 if (qcow2_reopen_bitmaps_rw(state
->bs
, &local_err
) < 0) {
1980 * This is not fatal, bitmaps just left read-only, so all following
1981 * writes will fail. User can remove read-only bitmaps to unblock
1982 * writes or retry reopen.
1984 error_reportf_err(local_err
,
1985 "%s: Failed to make dirty bitmaps writable: ",
1986 bdrv_get_node_name(state
->bs
));
1991 static void qcow2_reopen_abort(BDRVReopenState
*state
)
1993 qcow2_update_options_abort(state
->bs
, state
->opaque
);
1994 g_free(state
->opaque
);
1997 static void qcow2_join_options(QDict
*options
, QDict
*old_options
)
1999 bool has_new_overlap_template
=
2000 qdict_haskey(options
, QCOW2_OPT_OVERLAP
) ||
2001 qdict_haskey(options
, QCOW2_OPT_OVERLAP_TEMPLATE
);
2002 bool has_new_total_cache_size
=
2003 qdict_haskey(options
, QCOW2_OPT_CACHE_SIZE
);
2004 bool has_all_cache_options
;
2006 /* New overlap template overrides all old overlap options */
2007 if (has_new_overlap_template
) {
2008 qdict_del(old_options
, QCOW2_OPT_OVERLAP
);
2009 qdict_del(old_options
, QCOW2_OPT_OVERLAP_TEMPLATE
);
2010 qdict_del(old_options
, QCOW2_OPT_OVERLAP_MAIN_HEADER
);
2011 qdict_del(old_options
, QCOW2_OPT_OVERLAP_ACTIVE_L1
);
2012 qdict_del(old_options
, QCOW2_OPT_OVERLAP_ACTIVE_L2
);
2013 qdict_del(old_options
, QCOW2_OPT_OVERLAP_REFCOUNT_TABLE
);
2014 qdict_del(old_options
, QCOW2_OPT_OVERLAP_REFCOUNT_BLOCK
);
2015 qdict_del(old_options
, QCOW2_OPT_OVERLAP_SNAPSHOT_TABLE
);
2016 qdict_del(old_options
, QCOW2_OPT_OVERLAP_INACTIVE_L1
);
2017 qdict_del(old_options
, QCOW2_OPT_OVERLAP_INACTIVE_L2
);
2020 /* New total cache size overrides all old options */
2021 if (qdict_haskey(options
, QCOW2_OPT_CACHE_SIZE
)) {
2022 qdict_del(old_options
, QCOW2_OPT_L2_CACHE_SIZE
);
2023 qdict_del(old_options
, QCOW2_OPT_REFCOUNT_CACHE_SIZE
);
2026 qdict_join(options
, old_options
, false);
2029 * If after merging all cache size options are set, an old total size is
2030 * overwritten. Do keep all options, however, if all three are new. The
2031 * resulting error message is what we want to happen.
2033 has_all_cache_options
=
2034 qdict_haskey(options
, QCOW2_OPT_CACHE_SIZE
) ||
2035 qdict_haskey(options
, QCOW2_OPT_L2_CACHE_SIZE
) ||
2036 qdict_haskey(options
, QCOW2_OPT_REFCOUNT_CACHE_SIZE
);
2038 if (has_all_cache_options
&& !has_new_total_cache_size
) {
2039 qdict_del(options
, QCOW2_OPT_CACHE_SIZE
);
2043 static int coroutine_fn
qcow2_co_block_status(BlockDriverState
*bs
,
2045 int64_t offset
, int64_t count
,
2046 int64_t *pnum
, int64_t *map
,
2047 BlockDriverState
**file
)
2049 BDRVQcow2State
*s
= bs
->opaque
;
2050 uint64_t host_offset
;
2052 QCow2SubclusterType type
;
2053 int ret
, status
= 0;
2055 qemu_co_mutex_lock(&s
->lock
);
2057 if (!s
->metadata_preallocation_checked
) {
2058 ret
= qcow2_detect_metadata_preallocation(bs
);
2059 s
->metadata_preallocation
= (ret
== 1);
2060 s
->metadata_preallocation_checked
= true;
2063 bytes
= MIN(INT_MAX
, count
);
2064 ret
= qcow2_get_host_offset(bs
, offset
, &bytes
, &host_offset
, &type
);
2065 qemu_co_mutex_unlock(&s
->lock
);
2072 if ((type
== QCOW2_SUBCLUSTER_NORMAL
||
2073 type
== QCOW2_SUBCLUSTER_ZERO_ALLOC
||
2074 type
== QCOW2_SUBCLUSTER_UNALLOCATED_ALLOC
) && !s
->crypto
) {
2076 *file
= s
->data_file
->bs
;
2077 status
|= BDRV_BLOCK_OFFSET_VALID
;
2079 if (type
== QCOW2_SUBCLUSTER_ZERO_PLAIN
||
2080 type
== QCOW2_SUBCLUSTER_ZERO_ALLOC
) {
2081 status
|= BDRV_BLOCK_ZERO
;
2082 } else if (type
!= QCOW2_SUBCLUSTER_UNALLOCATED_PLAIN
&&
2083 type
!= QCOW2_SUBCLUSTER_UNALLOCATED_ALLOC
) {
2084 status
|= BDRV_BLOCK_DATA
;
2086 if (s
->metadata_preallocation
&& (status
& BDRV_BLOCK_DATA
) &&
2087 (status
& BDRV_BLOCK_OFFSET_VALID
))
2089 status
|= BDRV_BLOCK_RECURSE
;
2094 static coroutine_fn
int qcow2_handle_l2meta(BlockDriverState
*bs
,
2095 QCowL2Meta
**pl2meta
,
2099 QCowL2Meta
*l2meta
= *pl2meta
;
2101 while (l2meta
!= NULL
) {
2105 assert(!l2meta
->prealloc
);
2106 ret
= qcow2_alloc_cluster_link_l2(bs
, l2meta
);
2111 qcow2_alloc_cluster_abort(bs
, l2meta
);
2114 /* Take the request off the list of running requests */
2115 if (l2meta
->nb_clusters
!= 0) {
2116 QLIST_REMOVE(l2meta
, next_in_flight
);
2119 qemu_co_queue_restart_all(&l2meta
->dependent_requests
);
2121 next
= l2meta
->next
;
2130 static coroutine_fn
int
2131 qcow2_co_preadv_encrypted(BlockDriverState
*bs
,
2132 uint64_t host_offset
,
2136 uint64_t qiov_offset
)
2139 BDRVQcow2State
*s
= bs
->opaque
;
2142 assert(bs
->encrypted
&& s
->crypto
);
2143 assert(bytes
<= QCOW_MAX_CRYPT_CLUSTERS
* s
->cluster_size
);
2146 * For encrypted images, read everything into a temporary
2147 * contiguous buffer on which the AES functions can work.
2148 * Also, decryption in a separate buffer is better as it
2149 * prevents the guest from learning information about the
2150 * encrypted nature of the virtual disk.
2153 buf
= qemu_try_blockalign(s
->data_file
->bs
, bytes
);
2158 BLKDBG_EVENT(bs
->file
, BLKDBG_READ_AIO
);
2159 ret
= bdrv_co_pread(s
->data_file
, host_offset
, bytes
, buf
, 0);
2164 if (qcow2_co_decrypt(bs
, host_offset
, offset
, buf
, bytes
) < 0)
2169 qemu_iovec_from_buf(qiov
, qiov_offset
, buf
, bytes
);
2177 typedef struct Qcow2AioTask
{
2180 BlockDriverState
*bs
;
2181 QCow2SubclusterType subcluster_type
; /* only for read */
2182 uint64_t host_offset
; /* or full descriptor in compressed clusters */
2186 uint64_t qiov_offset
;
2187 QCowL2Meta
*l2meta
; /* only for write */
2190 static coroutine_fn
int qcow2_co_preadv_task_entry(AioTask
*task
);
2191 static coroutine_fn
int qcow2_add_task(BlockDriverState
*bs
,
2194 QCow2SubclusterType subcluster_type
,
2195 uint64_t host_offset
,
2202 Qcow2AioTask local_task
;
2203 Qcow2AioTask
*task
= pool
? g_new(Qcow2AioTask
, 1) : &local_task
;
2205 *task
= (Qcow2AioTask
) {
2208 .subcluster_type
= subcluster_type
,
2210 .host_offset
= host_offset
,
2213 .qiov_offset
= qiov_offset
,
2217 trace_qcow2_add_task(qemu_coroutine_self(), bs
, pool
,
2218 func
== qcow2_co_preadv_task_entry
? "read" : "write",
2219 subcluster_type
, host_offset
, offset
, bytes
,
2223 return func(&task
->task
);
2226 aio_task_pool_start_task(pool
, &task
->task
);
2231 static coroutine_fn
int qcow2_co_preadv_task(BlockDriverState
*bs
,
2232 QCow2SubclusterType subc_type
,
2233 uint64_t host_offset
,
2234 uint64_t offset
, uint64_t bytes
,
2238 BDRVQcow2State
*s
= bs
->opaque
;
2240 switch (subc_type
) {
2241 case QCOW2_SUBCLUSTER_ZERO_PLAIN
:
2242 case QCOW2_SUBCLUSTER_ZERO_ALLOC
:
2243 /* Both zero types are handled in qcow2_co_preadv_part */
2244 g_assert_not_reached();
2246 case QCOW2_SUBCLUSTER_UNALLOCATED_PLAIN
:
2247 case QCOW2_SUBCLUSTER_UNALLOCATED_ALLOC
:
2248 assert(bs
->backing
); /* otherwise handled in qcow2_co_preadv_part */
2250 BLKDBG_EVENT(bs
->file
, BLKDBG_READ_BACKING_AIO
);
2251 return bdrv_co_preadv_part(bs
->backing
, offset
, bytes
,
2252 qiov
, qiov_offset
, 0);
2254 case QCOW2_SUBCLUSTER_COMPRESSED
:
2255 return qcow2_co_preadv_compressed(bs
, host_offset
,
2256 offset
, bytes
, qiov
, qiov_offset
);
2258 case QCOW2_SUBCLUSTER_NORMAL
:
2259 if (bs
->encrypted
) {
2260 return qcow2_co_preadv_encrypted(bs
, host_offset
,
2261 offset
, bytes
, qiov
, qiov_offset
);
2264 BLKDBG_EVENT(bs
->file
, BLKDBG_READ_AIO
);
2265 return bdrv_co_preadv_part(s
->data_file
, host_offset
,
2266 bytes
, qiov
, qiov_offset
, 0);
2269 g_assert_not_reached();
2272 g_assert_not_reached();
2275 static coroutine_fn
int qcow2_co_preadv_task_entry(AioTask
*task
)
2277 Qcow2AioTask
*t
= container_of(task
, Qcow2AioTask
, task
);
2281 return qcow2_co_preadv_task(t
->bs
, t
->subcluster_type
,
2282 t
->host_offset
, t
->offset
, t
->bytes
,
2283 t
->qiov
, t
->qiov_offset
);
2286 static coroutine_fn
int qcow2_co_preadv_part(BlockDriverState
*bs
,
2287 uint64_t offset
, uint64_t bytes
,
2289 size_t qiov_offset
, int flags
)
2291 BDRVQcow2State
*s
= bs
->opaque
;
2293 unsigned int cur_bytes
; /* number of bytes in current iteration */
2294 uint64_t host_offset
= 0;
2295 QCow2SubclusterType type
;
2296 AioTaskPool
*aio
= NULL
;
2298 while (bytes
!= 0 && aio_task_pool_status(aio
) == 0) {
2299 /* prepare next request */
2300 cur_bytes
= MIN(bytes
, INT_MAX
);
2302 cur_bytes
= MIN(cur_bytes
,
2303 QCOW_MAX_CRYPT_CLUSTERS
* s
->cluster_size
);
2306 qemu_co_mutex_lock(&s
->lock
);
2307 ret
= qcow2_get_host_offset(bs
, offset
, &cur_bytes
,
2308 &host_offset
, &type
);
2309 qemu_co_mutex_unlock(&s
->lock
);
2314 if (type
== QCOW2_SUBCLUSTER_ZERO_PLAIN
||
2315 type
== QCOW2_SUBCLUSTER_ZERO_ALLOC
||
2316 (type
== QCOW2_SUBCLUSTER_UNALLOCATED_PLAIN
&& !bs
->backing
) ||
2317 (type
== QCOW2_SUBCLUSTER_UNALLOCATED_ALLOC
&& !bs
->backing
))
2319 qemu_iovec_memset(qiov
, qiov_offset
, 0, cur_bytes
);
2321 if (!aio
&& cur_bytes
!= bytes
) {
2322 aio
= aio_task_pool_new(QCOW2_MAX_WORKERS
);
2324 ret
= qcow2_add_task(bs
, aio
, qcow2_co_preadv_task_entry
, type
,
2325 host_offset
, offset
, cur_bytes
,
2326 qiov
, qiov_offset
, NULL
);
2333 offset
+= cur_bytes
;
2334 qiov_offset
+= cur_bytes
;
2339 aio_task_pool_wait_all(aio
);
2341 ret
= aio_task_pool_status(aio
);
2349 /* Check if it's possible to merge a write request with the writing of
2350 * the data from the COW regions */
2351 static bool merge_cow(uint64_t offset
, unsigned bytes
,
2352 QEMUIOVector
*qiov
, size_t qiov_offset
,
2357 for (m
= l2meta
; m
!= NULL
; m
= m
->next
) {
2358 /* If both COW regions are empty then there's nothing to merge */
2359 if (m
->cow_start
.nb_bytes
== 0 && m
->cow_end
.nb_bytes
== 0) {
2363 /* If COW regions are handled already, skip this too */
2368 /* The data (middle) region must be immediately after the
2370 if (l2meta_cow_start(m
) + m
->cow_start
.nb_bytes
!= offset
) {
2374 /* The end region must be immediately after the data (middle)
2376 if (m
->offset
+ m
->cow_end
.offset
!= offset
+ bytes
) {
2380 /* Make sure that adding both COW regions to the QEMUIOVector
2381 * does not exceed IOV_MAX */
2382 if (qemu_iovec_subvec_niov(qiov
, qiov_offset
, bytes
) > IOV_MAX
- 2) {
2386 m
->data_qiov
= qiov
;
2387 m
->data_qiov_offset
= qiov_offset
;
2394 static bool is_unallocated(BlockDriverState
*bs
, int64_t offset
, int64_t bytes
)
2398 (!bdrv_is_allocated_above(bs
, NULL
, false, offset
, bytes
, &nr
) &&
2402 static bool is_zero_cow(BlockDriverState
*bs
, QCowL2Meta
*m
)
2405 * This check is designed for optimization shortcut so it must be
2407 * Instead of is_zero(), use is_unallocated() as it is faster (but not
2408 * as accurate and can result in false negatives).
2410 return is_unallocated(bs
, m
->offset
+ m
->cow_start
.offset
,
2411 m
->cow_start
.nb_bytes
) &&
2412 is_unallocated(bs
, m
->offset
+ m
->cow_end
.offset
,
2413 m
->cow_end
.nb_bytes
);
2416 static int handle_alloc_space(BlockDriverState
*bs
, QCowL2Meta
*l2meta
)
2418 BDRVQcow2State
*s
= bs
->opaque
;
2421 if (!(s
->data_file
->bs
->supported_zero_flags
& BDRV_REQ_NO_FALLBACK
)) {
2425 if (bs
->encrypted
) {
2429 for (m
= l2meta
; m
!= NULL
; m
= m
->next
) {
2431 uint64_t start_offset
= m
->alloc_offset
+ m
->cow_start
.offset
;
2432 unsigned nb_bytes
= m
->cow_end
.offset
+ m
->cow_end
.nb_bytes
-
2433 m
->cow_start
.offset
;
2435 if (!m
->cow_start
.nb_bytes
&& !m
->cow_end
.nb_bytes
) {
2439 if (!is_zero_cow(bs
, m
)) {
2444 * instead of writing zero COW buffers,
2445 * efficiently zero out the whole clusters
2448 ret
= qcow2_pre_write_overlap_check(bs
, 0, start_offset
, nb_bytes
,
2454 BLKDBG_EVENT(bs
->file
, BLKDBG_CLUSTER_ALLOC_SPACE
);
2455 ret
= bdrv_co_pwrite_zeroes(s
->data_file
, start_offset
, nb_bytes
,
2456 BDRV_REQ_NO_FALLBACK
);
2458 if (ret
!= -ENOTSUP
&& ret
!= -EAGAIN
) {
2464 trace_qcow2_skip_cow(qemu_coroutine_self(), m
->offset
, m
->nb_clusters
);
2471 * qcow2_co_pwritev_task
2472 * Called with s->lock unlocked
2473 * l2meta - if not NULL, qcow2_co_pwritev_task() will consume it. Caller must
2474 * not use it somehow after qcow2_co_pwritev_task() call
2476 static coroutine_fn
int qcow2_co_pwritev_task(BlockDriverState
*bs
,
2477 uint64_t host_offset
,
2478 uint64_t offset
, uint64_t bytes
,
2480 uint64_t qiov_offset
,
2484 BDRVQcow2State
*s
= bs
->opaque
;
2485 void *crypt_buf
= NULL
;
2486 QEMUIOVector encrypted_qiov
;
2488 if (bs
->encrypted
) {
2490 assert(bytes
<= QCOW_MAX_CRYPT_CLUSTERS
* s
->cluster_size
);
2491 crypt_buf
= qemu_try_blockalign(bs
->file
->bs
, bytes
);
2492 if (crypt_buf
== NULL
) {
2496 qemu_iovec_to_buf(qiov
, qiov_offset
, crypt_buf
, bytes
);
2498 if (qcow2_co_encrypt(bs
, host_offset
, offset
, crypt_buf
, bytes
) < 0) {
2503 qemu_iovec_init_buf(&encrypted_qiov
, crypt_buf
, bytes
);
2504 qiov
= &encrypted_qiov
;
2508 /* Try to efficiently initialize the physical space with zeroes */
2509 ret
= handle_alloc_space(bs
, l2meta
);
2515 * If we need to do COW, check if it's possible to merge the
2516 * writing of the guest data together with that of the COW regions.
2517 * If it's not possible (or not necessary) then write the
2520 if (!merge_cow(offset
, bytes
, qiov
, qiov_offset
, l2meta
)) {
2521 BLKDBG_EVENT(bs
->file
, BLKDBG_WRITE_AIO
);
2522 trace_qcow2_writev_data(qemu_coroutine_self(), host_offset
);
2523 ret
= bdrv_co_pwritev_part(s
->data_file
, host_offset
,
2524 bytes
, qiov
, qiov_offset
, 0);
2530 qemu_co_mutex_lock(&s
->lock
);
2532 ret
= qcow2_handle_l2meta(bs
, &l2meta
, true);
2536 qemu_co_mutex_lock(&s
->lock
);
2539 qcow2_handle_l2meta(bs
, &l2meta
, false);
2540 qemu_co_mutex_unlock(&s
->lock
);
2542 qemu_vfree(crypt_buf
);
2547 static coroutine_fn
int qcow2_co_pwritev_task_entry(AioTask
*task
)
2549 Qcow2AioTask
*t
= container_of(task
, Qcow2AioTask
, task
);
2551 assert(!t
->subcluster_type
);
2553 return qcow2_co_pwritev_task(t
->bs
, t
->host_offset
,
2554 t
->offset
, t
->bytes
, t
->qiov
, t
->qiov_offset
,
2558 static coroutine_fn
int qcow2_co_pwritev_part(
2559 BlockDriverState
*bs
, uint64_t offset
, uint64_t bytes
,
2560 QEMUIOVector
*qiov
, size_t qiov_offset
, int flags
)
2562 BDRVQcow2State
*s
= bs
->opaque
;
2563 int offset_in_cluster
;
2565 unsigned int cur_bytes
; /* number of sectors in current iteration */
2566 uint64_t cluster_offset
;
2567 QCowL2Meta
*l2meta
= NULL
;
2568 AioTaskPool
*aio
= NULL
;
2570 trace_qcow2_writev_start_req(qemu_coroutine_self(), offset
, bytes
);
2572 while (bytes
!= 0 && aio_task_pool_status(aio
) == 0) {
2576 trace_qcow2_writev_start_part(qemu_coroutine_self());
2577 offset_in_cluster
= offset_into_cluster(s
, offset
);
2578 cur_bytes
= MIN(bytes
, INT_MAX
);
2579 if (bs
->encrypted
) {
2580 cur_bytes
= MIN(cur_bytes
,
2581 QCOW_MAX_CRYPT_CLUSTERS
* s
->cluster_size
2582 - offset_in_cluster
);
2585 qemu_co_mutex_lock(&s
->lock
);
2587 ret
= qcow2_alloc_cluster_offset(bs
, offset
, &cur_bytes
,
2588 &cluster_offset
, &l2meta
);
2593 assert(offset_into_cluster(s
, cluster_offset
) == 0);
2595 ret
= qcow2_pre_write_overlap_check(bs
, 0,
2596 cluster_offset
+ offset_in_cluster
,
2602 qemu_co_mutex_unlock(&s
->lock
);
2604 if (!aio
&& cur_bytes
!= bytes
) {
2605 aio
= aio_task_pool_new(QCOW2_MAX_WORKERS
);
2607 ret
= qcow2_add_task(bs
, aio
, qcow2_co_pwritev_task_entry
, 0,
2608 cluster_offset
+ offset_in_cluster
, offset
,
2609 cur_bytes
, qiov
, qiov_offset
, l2meta
);
2610 l2meta
= NULL
; /* l2meta is consumed by qcow2_co_pwritev_task() */
2616 offset
+= cur_bytes
;
2617 qiov_offset
+= cur_bytes
;
2618 trace_qcow2_writev_done_part(qemu_coroutine_self(), cur_bytes
);
2622 qemu_co_mutex_lock(&s
->lock
);
2625 qcow2_handle_l2meta(bs
, &l2meta
, false);
2627 qemu_co_mutex_unlock(&s
->lock
);
2631 aio_task_pool_wait_all(aio
);
2633 ret
= aio_task_pool_status(aio
);
2638 trace_qcow2_writev_done_req(qemu_coroutine_self(), ret
);
2643 static int qcow2_inactivate(BlockDriverState
*bs
)
2645 BDRVQcow2State
*s
= bs
->opaque
;
2646 int ret
, result
= 0;
2647 Error
*local_err
= NULL
;
2649 qcow2_store_persistent_dirty_bitmaps(bs
, true, &local_err
);
2650 if (local_err
!= NULL
) {
2652 error_reportf_err(local_err
, "Lost persistent bitmaps during "
2653 "inactivation of node '%s': ",
2654 bdrv_get_device_or_node_name(bs
));
2657 ret
= qcow2_cache_flush(bs
, s
->l2_table_cache
);
2660 error_report("Failed to flush the L2 table cache: %s",
2664 ret
= qcow2_cache_flush(bs
, s
->refcount_block_cache
);
2667 error_report("Failed to flush the refcount block cache: %s",
2672 qcow2_mark_clean(bs
);
2678 static void qcow2_close(BlockDriverState
*bs
)
2680 BDRVQcow2State
*s
= bs
->opaque
;
2681 qemu_vfree(s
->l1_table
);
2682 /* else pre-write overlap checks in cache_destroy may crash */
2685 if (!(s
->flags
& BDRV_O_INACTIVE
)) {
2686 qcow2_inactivate(bs
);
2689 cache_clean_timer_del(bs
);
2690 qcow2_cache_destroy(s
->l2_table_cache
);
2691 qcow2_cache_destroy(s
->refcount_block_cache
);
2693 qcrypto_block_free(s
->crypto
);
2695 qapi_free_QCryptoBlockOpenOptions(s
->crypto_opts
);
2697 g_free(s
->unknown_header_fields
);
2698 cleanup_unknown_header_ext(bs
);
2700 g_free(s
->image_data_file
);
2701 g_free(s
->image_backing_file
);
2702 g_free(s
->image_backing_format
);
2704 if (has_data_file(bs
)) {
2705 bdrv_unref_child(bs
, s
->data_file
);
2706 s
->data_file
= NULL
;
2709 qcow2_refcount_close(bs
);
2710 qcow2_free_snapshots(bs
);
2713 static void coroutine_fn
qcow2_co_invalidate_cache(BlockDriverState
*bs
,
2716 BDRVQcow2State
*s
= bs
->opaque
;
2717 int flags
= s
->flags
;
2718 QCryptoBlock
*crypto
= NULL
;
2720 Error
*local_err
= NULL
;
2724 * Backing files are read-only which makes all of their metadata immutable,
2725 * that means we don't have to worry about reopening them here.
2733 memset(s
, 0, sizeof(BDRVQcow2State
));
2734 options
= qdict_clone_shallow(bs
->options
);
2736 flags
&= ~BDRV_O_INACTIVE
;
2737 qemu_co_mutex_lock(&s
->lock
);
2738 ret
= qcow2_do_open(bs
, options
, flags
, &local_err
);
2739 qemu_co_mutex_unlock(&s
->lock
);
2740 qobject_unref(options
);
2742 error_propagate_prepend(errp
, local_err
,
2743 "Could not reopen qcow2 layer: ");
2746 } else if (ret
< 0) {
2747 error_setg_errno(errp
, -ret
, "Could not reopen qcow2 layer");
2755 static size_t header_ext_add(char *buf
, uint32_t magic
, const void *s
,
2756 size_t len
, size_t buflen
)
2758 QCowExtension
*ext_backing_fmt
= (QCowExtension
*) buf
;
2759 size_t ext_len
= sizeof(QCowExtension
) + ((len
+ 7) & ~7);
2761 if (buflen
< ext_len
) {
2765 *ext_backing_fmt
= (QCowExtension
) {
2766 .magic
= cpu_to_be32(magic
),
2767 .len
= cpu_to_be32(len
),
2771 memcpy(buf
+ sizeof(QCowExtension
), s
, len
);
2778 * Updates the qcow2 header, including the variable length parts of it, i.e.
2779 * the backing file name and all extensions. qcow2 was not designed to allow
2780 * such changes, so if we run out of space (we can only use the first cluster)
2781 * this function may fail.
2783 * Returns 0 on success, -errno in error cases.
2785 int qcow2_update_header(BlockDriverState
*bs
)
2787 BDRVQcow2State
*s
= bs
->opaque
;
2790 size_t buflen
= s
->cluster_size
;
2792 uint64_t total_size
;
2793 uint32_t refcount_table_clusters
;
2794 size_t header_length
;
2795 Qcow2UnknownHeaderExtension
*uext
;
2797 buf
= qemu_blockalign(bs
, buflen
);
2799 /* Header structure */
2800 header
= (QCowHeader
*) buf
;
2802 if (buflen
< sizeof(*header
)) {
2807 header_length
= sizeof(*header
) + s
->unknown_header_fields_size
;
2808 total_size
= bs
->total_sectors
* BDRV_SECTOR_SIZE
;
2809 refcount_table_clusters
= s
->refcount_table_size
>> (s
->cluster_bits
- 3);
2811 ret
= validate_compression_type(s
, NULL
);
2816 *header
= (QCowHeader
) {
2817 /* Version 2 fields */
2818 .magic
= cpu_to_be32(QCOW_MAGIC
),
2819 .version
= cpu_to_be32(s
->qcow_version
),
2820 .backing_file_offset
= 0,
2821 .backing_file_size
= 0,
2822 .cluster_bits
= cpu_to_be32(s
->cluster_bits
),
2823 .size
= cpu_to_be64(total_size
),
2824 .crypt_method
= cpu_to_be32(s
->crypt_method_header
),
2825 .l1_size
= cpu_to_be32(s
->l1_size
),
2826 .l1_table_offset
= cpu_to_be64(s
->l1_table_offset
),
2827 .refcount_table_offset
= cpu_to_be64(s
->refcount_table_offset
),
2828 .refcount_table_clusters
= cpu_to_be32(refcount_table_clusters
),
2829 .nb_snapshots
= cpu_to_be32(s
->nb_snapshots
),
2830 .snapshots_offset
= cpu_to_be64(s
->snapshots_offset
),
2832 /* Version 3 fields */
2833 .incompatible_features
= cpu_to_be64(s
->incompatible_features
),
2834 .compatible_features
= cpu_to_be64(s
->compatible_features
),
2835 .autoclear_features
= cpu_to_be64(s
->autoclear_features
),
2836 .refcount_order
= cpu_to_be32(s
->refcount_order
),
2837 .header_length
= cpu_to_be32(header_length
),
2838 .compression_type
= s
->compression_type
,
2841 /* For older versions, write a shorter header */
2842 switch (s
->qcow_version
) {
2844 ret
= offsetof(QCowHeader
, incompatible_features
);
2847 ret
= sizeof(*header
);
2856 memset(buf
, 0, buflen
);
2858 /* Preserve any unknown field in the header */
2859 if (s
->unknown_header_fields_size
) {
2860 if (buflen
< s
->unknown_header_fields_size
) {
2865 memcpy(buf
, s
->unknown_header_fields
, s
->unknown_header_fields_size
);
2866 buf
+= s
->unknown_header_fields_size
;
2867 buflen
-= s
->unknown_header_fields_size
;
2870 /* Backing file format header extension */
2871 if (s
->image_backing_format
) {
2872 ret
= header_ext_add(buf
, QCOW2_EXT_MAGIC_BACKING_FORMAT
,
2873 s
->image_backing_format
,
2874 strlen(s
->image_backing_format
),
2884 /* External data file header extension */
2885 if (has_data_file(bs
) && s
->image_data_file
) {
2886 ret
= header_ext_add(buf
, QCOW2_EXT_MAGIC_DATA_FILE
,
2887 s
->image_data_file
, strlen(s
->image_data_file
),
2897 /* Full disk encryption header pointer extension */
2898 if (s
->crypto_header
.offset
!= 0) {
2899 s
->crypto_header
.offset
= cpu_to_be64(s
->crypto_header
.offset
);
2900 s
->crypto_header
.length
= cpu_to_be64(s
->crypto_header
.length
);
2901 ret
= header_ext_add(buf
, QCOW2_EXT_MAGIC_CRYPTO_HEADER
,
2902 &s
->crypto_header
, sizeof(s
->crypto_header
),
2904 s
->crypto_header
.offset
= be64_to_cpu(s
->crypto_header
.offset
);
2905 s
->crypto_header
.length
= be64_to_cpu(s
->crypto_header
.length
);
2914 * Feature table. A mere 8 feature names occupies 392 bytes, and
2915 * when coupled with the v3 minimum header of 104 bytes plus the
2916 * 8-byte end-of-extension marker, that would leave only 8 bytes
2917 * for a backing file name in an image with 512-byte clusters.
2918 * Thus, we choose to omit this header for cluster sizes 4k and
2921 if (s
->qcow_version
>= 3 && s
->cluster_size
> 4096) {
2922 static const Qcow2Feature features
[] = {
2924 .type
= QCOW2_FEAT_TYPE_INCOMPATIBLE
,
2925 .bit
= QCOW2_INCOMPAT_DIRTY_BITNR
,
2926 .name
= "dirty bit",
2929 .type
= QCOW2_FEAT_TYPE_INCOMPATIBLE
,
2930 .bit
= QCOW2_INCOMPAT_CORRUPT_BITNR
,
2931 .name
= "corrupt bit",
2934 .type
= QCOW2_FEAT_TYPE_INCOMPATIBLE
,
2935 .bit
= QCOW2_INCOMPAT_DATA_FILE_BITNR
,
2936 .name
= "external data file",
2939 .type
= QCOW2_FEAT_TYPE_INCOMPATIBLE
,
2940 .bit
= QCOW2_INCOMPAT_COMPRESSION_BITNR
,
2941 .name
= "compression type",
2944 .type
= QCOW2_FEAT_TYPE_INCOMPATIBLE
,
2945 .bit
= QCOW2_INCOMPAT_EXTL2_BITNR
,
2946 .name
= "extended L2 entries",
2949 .type
= QCOW2_FEAT_TYPE_COMPATIBLE
,
2950 .bit
= QCOW2_COMPAT_LAZY_REFCOUNTS_BITNR
,
2951 .name
= "lazy refcounts",
2954 .type
= QCOW2_FEAT_TYPE_AUTOCLEAR
,
2955 .bit
= QCOW2_AUTOCLEAR_BITMAPS_BITNR
,
2959 .type
= QCOW2_FEAT_TYPE_AUTOCLEAR
,
2960 .bit
= QCOW2_AUTOCLEAR_DATA_FILE_RAW_BITNR
,
2961 .name
= "raw external data",
2965 ret
= header_ext_add(buf
, QCOW2_EXT_MAGIC_FEATURE_TABLE
,
2966 features
, sizeof(features
), buflen
);
2974 /* Bitmap extension */
2975 if (s
->nb_bitmaps
> 0) {
2976 Qcow2BitmapHeaderExt bitmaps_header
= {
2977 .nb_bitmaps
= cpu_to_be32(s
->nb_bitmaps
),
2978 .bitmap_directory_size
=
2979 cpu_to_be64(s
->bitmap_directory_size
),
2980 .bitmap_directory_offset
=
2981 cpu_to_be64(s
->bitmap_directory_offset
)
2983 ret
= header_ext_add(buf
, QCOW2_EXT_MAGIC_BITMAPS
,
2984 &bitmaps_header
, sizeof(bitmaps_header
),
2993 /* Keep unknown header extensions */
2994 QLIST_FOREACH(uext
, &s
->unknown_header_ext
, next
) {
2995 ret
= header_ext_add(buf
, uext
->magic
, uext
->data
, uext
->len
, buflen
);
3004 /* End of header extensions */
3005 ret
= header_ext_add(buf
, QCOW2_EXT_MAGIC_END
, NULL
, 0, buflen
);
3013 /* Backing file name */
3014 if (s
->image_backing_file
) {
3015 size_t backing_file_len
= strlen(s
->image_backing_file
);
3017 if (buflen
< backing_file_len
) {
3022 /* Using strncpy is ok here, since buf is not NUL-terminated. */
3023 strncpy(buf
, s
->image_backing_file
, buflen
);
3025 header
->backing_file_offset
= cpu_to_be64(buf
- ((char*) header
));
3026 header
->backing_file_size
= cpu_to_be32(backing_file_len
);
3029 /* Write the new header */
3030 ret
= bdrv_pwrite(bs
->file
, 0, header
, s
->cluster_size
);
3041 static int qcow2_change_backing_file(BlockDriverState
*bs
,
3042 const char *backing_file
, const char *backing_fmt
)
3044 BDRVQcow2State
*s
= bs
->opaque
;
3046 /* Adding a backing file means that the external data file alone won't be
3047 * enough to make sense of the content */
3048 if (backing_file
&& data_file_is_raw(bs
)) {
3052 if (backing_file
&& strlen(backing_file
) > 1023) {
3056 pstrcpy(bs
->auto_backing_file
, sizeof(bs
->auto_backing_file
),
3057 backing_file
?: "");
3058 pstrcpy(bs
->backing_file
, sizeof(bs
->backing_file
), backing_file
?: "");
3059 pstrcpy(bs
->backing_format
, sizeof(bs
->backing_format
), backing_fmt
?: "");
3061 g_free(s
->image_backing_file
);
3062 g_free(s
->image_backing_format
);
3064 s
->image_backing_file
= backing_file
? g_strdup(bs
->backing_file
) : NULL
;
3065 s
->image_backing_format
= backing_fmt
? g_strdup(bs
->backing_format
) : NULL
;
3067 return qcow2_update_header(bs
);
3070 static int qcow2_set_up_encryption(BlockDriverState
*bs
,
3071 QCryptoBlockCreateOptions
*cryptoopts
,
3074 BDRVQcow2State
*s
= bs
->opaque
;
3075 QCryptoBlock
*crypto
= NULL
;
3078 switch (cryptoopts
->format
) {
3079 case Q_CRYPTO_BLOCK_FORMAT_LUKS
:
3080 fmt
= QCOW_CRYPT_LUKS
;
3082 case Q_CRYPTO_BLOCK_FORMAT_QCOW
:
3083 fmt
= QCOW_CRYPT_AES
;
3086 error_setg(errp
, "Crypto format not supported in qcow2");
3090 s
->crypt_method_header
= fmt
;
3092 crypto
= qcrypto_block_create(cryptoopts
, "encrypt.",
3093 qcow2_crypto_hdr_init_func
,
3094 qcow2_crypto_hdr_write_func
,
3100 ret
= qcow2_update_header(bs
);
3102 error_setg_errno(errp
, -ret
, "Could not write encryption header");
3108 qcrypto_block_free(crypto
);
3113 * Preallocates metadata structures for data clusters between @offset (in the
3114 * guest disk) and @new_length (which is thus generally the new guest disk
3117 * Returns: 0 on success, -errno on failure.
3119 static int coroutine_fn
preallocate_co(BlockDriverState
*bs
, uint64_t offset
,
3120 uint64_t new_length
, PreallocMode mode
,
3123 BDRVQcow2State
*s
= bs
->opaque
;
3125 uint64_t host_offset
= 0;
3126 int64_t file_length
;
3127 unsigned int cur_bytes
;
3131 assert(offset
<= new_length
);
3132 bytes
= new_length
- offset
;
3135 cur_bytes
= MIN(bytes
, QEMU_ALIGN_DOWN(INT_MAX
, s
->cluster_size
));
3136 ret
= qcow2_alloc_cluster_offset(bs
, offset
, &cur_bytes
,
3137 &host_offset
, &meta
);
3139 error_setg_errno(errp
, -ret
, "Allocating clusters failed");
3144 QCowL2Meta
*next
= meta
->next
;
3145 meta
->prealloc
= true;
3147 ret
= qcow2_alloc_cluster_link_l2(bs
, meta
);
3149 error_setg_errno(errp
, -ret
, "Mapping clusters failed");
3150 qcow2_free_any_clusters(bs
, meta
->alloc_offset
,
3151 meta
->nb_clusters
, QCOW2_DISCARD_NEVER
);
3155 /* There are no dependent requests, but we need to remove our
3156 * request from the list of in-flight requests */
3157 QLIST_REMOVE(meta
, next_in_flight
);
3163 /* TODO Preallocate data if requested */
3166 offset
+= cur_bytes
;
3170 * It is expected that the image file is large enough to actually contain
3171 * all of the allocated clusters (otherwise we get failing reads after
3172 * EOF). Extend the image to the last allocated sector.
3174 file_length
= bdrv_getlength(s
->data_file
->bs
);
3175 if (file_length
< 0) {
3176 error_setg_errno(errp
, -file_length
, "Could not get file size");
3180 if (host_offset
+ cur_bytes
> file_length
) {
3181 if (mode
== PREALLOC_MODE_METADATA
) {
3182 mode
= PREALLOC_MODE_OFF
;
3184 ret
= bdrv_co_truncate(s
->data_file
, host_offset
+ cur_bytes
, false,
3194 /* qcow2_refcount_metadata_size:
3195 * @clusters: number of clusters to refcount (including data and L1/L2 tables)
3196 * @cluster_size: size of a cluster, in bytes
3197 * @refcount_order: refcount bits power-of-2 exponent
3198 * @generous_increase: allow for the refcount table to be 1.5x as large as it
3201 * Returns: Number of bytes required for refcount blocks and table metadata.
3203 int64_t qcow2_refcount_metadata_size(int64_t clusters
, size_t cluster_size
,
3204 int refcount_order
, bool generous_increase
,
3205 uint64_t *refblock_count
)
3208 * Every host cluster is reference-counted, including metadata (even
3209 * refcount metadata is recursively included).
3211 * An accurate formula for the size of refcount metadata size is difficult
3212 * to derive. An easier method of calculation is finding the fixed point
3213 * where no further refcount blocks or table clusters are required to
3214 * reference count every cluster.
3216 int64_t blocks_per_table_cluster
= cluster_size
/ sizeof(uint64_t);
3217 int64_t refcounts_per_block
= cluster_size
* 8 / (1 << refcount_order
);
3218 int64_t table
= 0; /* number of refcount table clusters */
3219 int64_t blocks
= 0; /* number of refcount block clusters */
3225 blocks
= DIV_ROUND_UP(clusters
+ table
+ blocks
, refcounts_per_block
);
3226 table
= DIV_ROUND_UP(blocks
, blocks_per_table_cluster
);
3227 n
= clusters
+ blocks
+ table
;
3229 if (n
== last
&& generous_increase
) {
3230 clusters
+= DIV_ROUND_UP(table
, 2);
3231 n
= 0; /* force another loop */
3232 generous_increase
= false;
3234 } while (n
!= last
);
3236 if (refblock_count
) {
3237 *refblock_count
= blocks
;
3240 return (blocks
+ table
) * cluster_size
;
3244 * qcow2_calc_prealloc_size:
3245 * @total_size: virtual disk size in bytes
3246 * @cluster_size: cluster size in bytes
3247 * @refcount_order: refcount bits power-of-2 exponent
3248 * @extended_l2: true if the image has extended L2 entries
3250 * Returns: Total number of bytes required for the fully allocated image
3251 * (including metadata).
3253 static int64_t qcow2_calc_prealloc_size(int64_t total_size
,
3254 size_t cluster_size
,
3258 int64_t meta_size
= 0;
3259 uint64_t nl1e
, nl2e
;
3260 int64_t aligned_total_size
= ROUND_UP(total_size
, cluster_size
);
3261 size_t l2e_size
= extended_l2
? L2E_SIZE_EXTENDED
: L2E_SIZE_NORMAL
;
3263 /* header: 1 cluster */
3264 meta_size
+= cluster_size
;
3266 /* total size of L2 tables */
3267 nl2e
= aligned_total_size
/ cluster_size
;
3268 nl2e
= ROUND_UP(nl2e
, cluster_size
/ l2e_size
);
3269 meta_size
+= nl2e
* l2e_size
;
3271 /* total size of L1 tables */
3272 nl1e
= nl2e
* l2e_size
/ cluster_size
;
3273 nl1e
= ROUND_UP(nl1e
, cluster_size
/ sizeof(uint64_t));
3274 meta_size
+= nl1e
* sizeof(uint64_t);
3276 /* total size of refcount table and blocks */
3277 meta_size
+= qcow2_refcount_metadata_size(
3278 (meta_size
+ aligned_total_size
) / cluster_size
,
3279 cluster_size
, refcount_order
, false, NULL
);
3281 return meta_size
+ aligned_total_size
;
3284 static bool validate_cluster_size(size_t cluster_size
, bool extended_l2
,
3287 int cluster_bits
= ctz32(cluster_size
);
3288 if (cluster_bits
< MIN_CLUSTER_BITS
|| cluster_bits
> MAX_CLUSTER_BITS
||
3289 (1 << cluster_bits
) != cluster_size
)
3291 error_setg(errp
, "Cluster size must be a power of two between %d and "
3292 "%dk", 1 << MIN_CLUSTER_BITS
, 1 << (MAX_CLUSTER_BITS
- 10));
3297 unsigned min_cluster_size
=
3298 (1 << MIN_CLUSTER_BITS
) * QCOW_EXTL2_SUBCLUSTERS_PER_CLUSTER
;
3299 if (cluster_size
< min_cluster_size
) {
3300 error_setg(errp
, "Extended L2 entries are only supported with "
3301 "cluster sizes of at least %u bytes", min_cluster_size
);
3309 static size_t qcow2_opt_get_cluster_size_del(QemuOpts
*opts
, bool extended_l2
,
3312 size_t cluster_size
;
3314 cluster_size
= qemu_opt_get_size_del(opts
, BLOCK_OPT_CLUSTER_SIZE
,
3315 DEFAULT_CLUSTER_SIZE
);
3316 if (!validate_cluster_size(cluster_size
, extended_l2
, errp
)) {
3319 return cluster_size
;
3322 static int qcow2_opt_get_version_del(QemuOpts
*opts
, Error
**errp
)
3327 buf
= qemu_opt_get_del(opts
, BLOCK_OPT_COMPAT_LEVEL
);
3329 ret
= 3; /* default */
3330 } else if (!strcmp(buf
, "0.10")) {
3332 } else if (!strcmp(buf
, "1.1")) {
3335 error_setg(errp
, "Invalid compatibility level: '%s'", buf
);
3342 static uint64_t qcow2_opt_get_refcount_bits_del(QemuOpts
*opts
, int version
,
3345 uint64_t refcount_bits
;
3347 refcount_bits
= qemu_opt_get_number_del(opts
, BLOCK_OPT_REFCOUNT_BITS
, 16);
3348 if (refcount_bits
> 64 || !is_power_of_2(refcount_bits
)) {
3349 error_setg(errp
, "Refcount width must be a power of two and may not "
3354 if (version
< 3 && refcount_bits
!= 16) {
3355 error_setg(errp
, "Different refcount widths than 16 bits require "
3356 "compatibility level 1.1 or above (use compat=1.1 or "
3361 return refcount_bits
;
3364 static int coroutine_fn
3365 qcow2_co_create(BlockdevCreateOptions
*create_options
, Error
**errp
)
3367 BlockdevCreateOptionsQcow2
*qcow2_opts
;
3371 * Open the image file and write a minimal qcow2 header.
3373 * We keep things simple and start with a zero-sized image. We also
3374 * do without refcount blocks or a L1 table for now. We'll fix the
3375 * inconsistency later.
3377 * We do need a refcount table because growing the refcount table means
3378 * allocating two new refcount blocks - the second of which would be at
3379 * 2 GB for 64k clusters, and we don't want to have a 2 GB initial file
3380 * size for any qcow2 image.
3382 BlockBackend
*blk
= NULL
;
3383 BlockDriverState
*bs
= NULL
;
3384 BlockDriverState
*data_bs
= NULL
;
3386 size_t cluster_size
;
3389 uint64_t* refcount_table
;
3391 uint8_t compression_type
= QCOW2_COMPRESSION_TYPE_ZLIB
;
3393 assert(create_options
->driver
== BLOCKDEV_DRIVER_QCOW2
);
3394 qcow2_opts
= &create_options
->u
.qcow2
;
3396 bs
= bdrv_open_blockdev_ref(qcow2_opts
->file
, errp
);
3401 /* Validate options and set default values */
3402 if (!QEMU_IS_ALIGNED(qcow2_opts
->size
, BDRV_SECTOR_SIZE
)) {
3403 error_setg(errp
, "Image size must be a multiple of %u bytes",
3404 (unsigned) BDRV_SECTOR_SIZE
);
3409 if (qcow2_opts
->has_version
) {
3410 switch (qcow2_opts
->version
) {
3411 case BLOCKDEV_QCOW2_VERSION_V2
:
3414 case BLOCKDEV_QCOW2_VERSION_V3
:
3418 g_assert_not_reached();
3424 if (qcow2_opts
->has_cluster_size
) {
3425 cluster_size
= qcow2_opts
->cluster_size
;
3427 cluster_size
= DEFAULT_CLUSTER_SIZE
;
3430 if (!qcow2_opts
->has_extended_l2
) {
3431 qcow2_opts
->extended_l2
= false;
3433 if (qcow2_opts
->extended_l2
) {
3435 error_setg(errp
, "Extended L2 entries are only supported with "
3436 "compatibility level 1.1 and above (use version=v3 or "
3443 if (!validate_cluster_size(cluster_size
, qcow2_opts
->extended_l2
, errp
)) {
3448 if (!qcow2_opts
->has_preallocation
) {
3449 qcow2_opts
->preallocation
= PREALLOC_MODE_OFF
;
3451 if (qcow2_opts
->has_backing_file
&&
3452 qcow2_opts
->preallocation
!= PREALLOC_MODE_OFF
&&
3453 !qcow2_opts
->extended_l2
)
3455 error_setg(errp
, "Backing file and preallocation can only be used at "
3456 "the same time if extended_l2 is on");
3460 if (qcow2_opts
->has_backing_fmt
&& !qcow2_opts
->has_backing_file
) {
3461 error_setg(errp
, "Backing format cannot be used without backing file");
3466 if (!qcow2_opts
->has_lazy_refcounts
) {
3467 qcow2_opts
->lazy_refcounts
= false;
3469 if (version
< 3 && qcow2_opts
->lazy_refcounts
) {
3470 error_setg(errp
, "Lazy refcounts only supported with compatibility "
3471 "level 1.1 and above (use version=v3 or greater)");
3476 if (!qcow2_opts
->has_refcount_bits
) {
3477 qcow2_opts
->refcount_bits
= 16;
3479 if (qcow2_opts
->refcount_bits
> 64 ||
3480 !is_power_of_2(qcow2_opts
->refcount_bits
))
3482 error_setg(errp
, "Refcount width must be a power of two and may not "
3487 if (version
< 3 && qcow2_opts
->refcount_bits
!= 16) {
3488 error_setg(errp
, "Different refcount widths than 16 bits require "
3489 "compatibility level 1.1 or above (use version=v3 or "
3494 refcount_order
= ctz32(qcow2_opts
->refcount_bits
);
3496 if (qcow2_opts
->data_file_raw
&& !qcow2_opts
->data_file
) {
3497 error_setg(errp
, "data-file-raw requires data-file");
3501 if (qcow2_opts
->data_file_raw
&& qcow2_opts
->has_backing_file
) {
3502 error_setg(errp
, "Backing file and data-file-raw cannot be used at "
3508 if (qcow2_opts
->data_file
) {
3510 error_setg(errp
, "External data files are only supported with "
3511 "compatibility level 1.1 and above (use version=v3 or "
3516 data_bs
= bdrv_open_blockdev_ref(qcow2_opts
->data_file
, errp
);
3517 if (data_bs
== NULL
) {
3523 if (qcow2_opts
->has_compression_type
&&
3524 qcow2_opts
->compression_type
!= QCOW2_COMPRESSION_TYPE_ZLIB
) {
3529 error_setg(errp
, "Non-zlib compression type is only supported with "
3530 "compatibility level 1.1 and above (use version=v3 or "
3535 switch (qcow2_opts
->compression_type
) {
3537 case QCOW2_COMPRESSION_TYPE_ZSTD
:
3541 error_setg(errp
, "Unknown compression type");
3545 compression_type
= qcow2_opts
->compression_type
;
3548 /* Create BlockBackend to write to the image */
3549 blk
= blk_new_with_bs(bs
, BLK_PERM_WRITE
| BLK_PERM_RESIZE
, BLK_PERM_ALL
,
3555 blk_set_allow_write_beyond_eof(blk
, true);
3557 /* Write the header */
3558 QEMU_BUILD_BUG_ON((1 << MIN_CLUSTER_BITS
) < sizeof(*header
));
3559 header
= g_malloc0(cluster_size
);
3560 *header
= (QCowHeader
) {
3561 .magic
= cpu_to_be32(QCOW_MAGIC
),
3562 .version
= cpu_to_be32(version
),
3563 .cluster_bits
= cpu_to_be32(ctz32(cluster_size
)),
3564 .size
= cpu_to_be64(0),
3565 .l1_table_offset
= cpu_to_be64(0),
3566 .l1_size
= cpu_to_be32(0),
3567 .refcount_table_offset
= cpu_to_be64(cluster_size
),
3568 .refcount_table_clusters
= cpu_to_be32(1),
3569 .refcount_order
= cpu_to_be32(refcount_order
),
3570 /* don't deal with endianness since compression_type is 1 byte long */
3571 .compression_type
= compression_type
,
3572 .header_length
= cpu_to_be32(sizeof(*header
)),
3575 /* We'll update this to correct value later */
3576 header
->crypt_method
= cpu_to_be32(QCOW_CRYPT_NONE
);
3578 if (qcow2_opts
->lazy_refcounts
) {
3579 header
->compatible_features
|=
3580 cpu_to_be64(QCOW2_COMPAT_LAZY_REFCOUNTS
);
3583 header
->incompatible_features
|=
3584 cpu_to_be64(QCOW2_INCOMPAT_DATA_FILE
);
3586 if (qcow2_opts
->data_file_raw
) {
3587 header
->autoclear_features
|=
3588 cpu_to_be64(QCOW2_AUTOCLEAR_DATA_FILE_RAW
);
3590 if (compression_type
!= QCOW2_COMPRESSION_TYPE_ZLIB
) {
3591 header
->incompatible_features
|=
3592 cpu_to_be64(QCOW2_INCOMPAT_COMPRESSION
);
3595 if (qcow2_opts
->extended_l2
) {
3596 header
->incompatible_features
|=
3597 cpu_to_be64(QCOW2_INCOMPAT_EXTL2
);
3600 ret
= blk_pwrite(blk
, 0, header
, cluster_size
, 0);
3603 error_setg_errno(errp
, -ret
, "Could not write qcow2 header");
3607 /* Write a refcount table with one refcount block */
3608 refcount_table
= g_malloc0(2 * cluster_size
);
3609 refcount_table
[0] = cpu_to_be64(2 * cluster_size
);
3610 ret
= blk_pwrite(blk
, cluster_size
, refcount_table
, 2 * cluster_size
, 0);
3611 g_free(refcount_table
);
3614 error_setg_errno(errp
, -ret
, "Could not write refcount table");
3622 * And now open the image and make it consistent first (i.e. increase the
3623 * refcount of the cluster that is occupied by the header and the refcount
3626 options
= qdict_new();
3627 qdict_put_str(options
, "driver", "qcow2");
3628 qdict_put_str(options
, "file", bs
->node_name
);
3630 qdict_put_str(options
, "data-file", data_bs
->node_name
);
3632 blk
= blk_new_open(NULL
, NULL
, options
,
3633 BDRV_O_RDWR
| BDRV_O_RESIZE
| BDRV_O_NO_FLUSH
,
3640 ret
= qcow2_alloc_clusters(blk_bs(blk
), 3 * cluster_size
);
3642 error_setg_errno(errp
, -ret
, "Could not allocate clusters for qcow2 "
3643 "header and refcount table");
3646 } else if (ret
!= 0) {
3647 error_report("Huh, first cluster in empty image is already in use?");
3651 /* Set the external data file if necessary */
3653 BDRVQcow2State
*s
= blk_bs(blk
)->opaque
;
3654 s
->image_data_file
= g_strdup(data_bs
->filename
);
3657 /* Create a full header (including things like feature table) */
3658 ret
= qcow2_update_header(blk_bs(blk
));
3660 error_setg_errno(errp
, -ret
, "Could not update qcow2 header");
3664 /* Okay, now that we have a valid image, let's give it the right size */
3665 ret
= blk_truncate(blk
, qcow2_opts
->size
, false, qcow2_opts
->preallocation
,
3668 error_prepend(errp
, "Could not resize image: ");
3672 /* Want a backing file? There you go. */
3673 if (qcow2_opts
->has_backing_file
) {
3674 const char *backing_format
= NULL
;
3676 if (qcow2_opts
->has_backing_fmt
) {
3677 backing_format
= BlockdevDriver_str(qcow2_opts
->backing_fmt
);
3680 ret
= bdrv_change_backing_file(blk_bs(blk
), qcow2_opts
->backing_file
,
3681 backing_format
, false);
3683 error_setg_errno(errp
, -ret
, "Could not assign backing file '%s' "
3684 "with format '%s'", qcow2_opts
->backing_file
,
3690 /* Want encryption? There you go. */
3691 if (qcow2_opts
->has_encrypt
) {
3692 ret
= qcow2_set_up_encryption(blk_bs(blk
), qcow2_opts
->encrypt
, errp
);
3701 /* Reopen the image without BDRV_O_NO_FLUSH to flush it before returning.
3702 * Using BDRV_O_NO_IO, since encryption is now setup we don't want to
3703 * have to setup decryption context. We're not doing any I/O on the top
3704 * level BlockDriverState, only lower layers, where BDRV_O_NO_IO does
3707 options
= qdict_new();
3708 qdict_put_str(options
, "driver", "qcow2");
3709 qdict_put_str(options
, "file", bs
->node_name
);
3711 qdict_put_str(options
, "data-file", data_bs
->node_name
);
3713 blk
= blk_new_open(NULL
, NULL
, options
,
3714 BDRV_O_RDWR
| BDRV_O_NO_BACKING
| BDRV_O_NO_IO
,
3725 bdrv_unref(data_bs
);
3729 static int coroutine_fn
qcow2_co_create_opts(BlockDriver
*drv
,
3730 const char *filename
,
3734 BlockdevCreateOptions
*create_options
= NULL
;
3737 BlockDriverState
*bs
= NULL
;
3738 BlockDriverState
*data_bs
= NULL
;
3742 /* Only the keyval visitor supports the dotted syntax needed for
3743 * encryption, so go through a QDict before getting a QAPI type. Ignore
3744 * options meant for the protocol layer so that the visitor doesn't
3746 qdict
= qemu_opts_to_qdict_filtered(opts
, NULL
, bdrv_qcow2
.create_opts
,
3749 /* Handle encryption options */
3750 val
= qdict_get_try_str(qdict
, BLOCK_OPT_ENCRYPT
);
3751 if (val
&& !strcmp(val
, "on")) {
3752 qdict_put_str(qdict
, BLOCK_OPT_ENCRYPT
, "qcow");
3753 } else if (val
&& !strcmp(val
, "off")) {
3754 qdict_del(qdict
, BLOCK_OPT_ENCRYPT
);
3757 val
= qdict_get_try_str(qdict
, BLOCK_OPT_ENCRYPT_FORMAT
);
3758 if (val
&& !strcmp(val
, "aes")) {
3759 qdict_put_str(qdict
, BLOCK_OPT_ENCRYPT_FORMAT
, "qcow");
3762 /* Convert compat=0.10/1.1 into compat=v2/v3, to be renamed into
3763 * version=v2/v3 below. */
3764 val
= qdict_get_try_str(qdict
, BLOCK_OPT_COMPAT_LEVEL
);
3765 if (val
&& !strcmp(val
, "0.10")) {
3766 qdict_put_str(qdict
, BLOCK_OPT_COMPAT_LEVEL
, "v2");
3767 } else if (val
&& !strcmp(val
, "1.1")) {
3768 qdict_put_str(qdict
, BLOCK_OPT_COMPAT_LEVEL
, "v3");
3771 /* Change legacy command line options into QMP ones */
3772 static const QDictRenames opt_renames
[] = {
3773 { BLOCK_OPT_BACKING_FILE
, "backing-file" },
3774 { BLOCK_OPT_BACKING_FMT
, "backing-fmt" },
3775 { BLOCK_OPT_CLUSTER_SIZE
, "cluster-size" },
3776 { BLOCK_OPT_LAZY_REFCOUNTS
, "lazy-refcounts" },
3777 { BLOCK_OPT_EXTL2
, "extended-l2" },
3778 { BLOCK_OPT_REFCOUNT_BITS
, "refcount-bits" },
3779 { BLOCK_OPT_ENCRYPT
, BLOCK_OPT_ENCRYPT_FORMAT
},
3780 { BLOCK_OPT_COMPAT_LEVEL
, "version" },
3781 { BLOCK_OPT_DATA_FILE_RAW
, "data-file-raw" },
3782 { BLOCK_OPT_COMPRESSION_TYPE
, "compression-type" },
3786 if (!qdict_rename_keys(qdict
, opt_renames
, errp
)) {
3791 /* Create and open the file (protocol layer) */
3792 ret
= bdrv_create_file(filename
, opts
, errp
);
3797 bs
= bdrv_open(filename
, NULL
, NULL
,
3798 BDRV_O_RDWR
| BDRV_O_RESIZE
| BDRV_O_PROTOCOL
, errp
);
3804 /* Create and open an external data file (protocol layer) */
3805 val
= qdict_get_try_str(qdict
, BLOCK_OPT_DATA_FILE
);
3807 ret
= bdrv_create_file(val
, opts
, errp
);
3812 data_bs
= bdrv_open(val
, NULL
, NULL
,
3813 BDRV_O_RDWR
| BDRV_O_RESIZE
| BDRV_O_PROTOCOL
,
3815 if (data_bs
== NULL
) {
3820 qdict_del(qdict
, BLOCK_OPT_DATA_FILE
);
3821 qdict_put_str(qdict
, "data-file", data_bs
->node_name
);
3824 /* Set 'driver' and 'node' options */
3825 qdict_put_str(qdict
, "driver", "qcow2");
3826 qdict_put_str(qdict
, "file", bs
->node_name
);
3828 /* Now get the QAPI type BlockdevCreateOptions */
3829 v
= qobject_input_visitor_new_flat_confused(qdict
, errp
);
3835 visit_type_BlockdevCreateOptions(v
, NULL
, &create_options
, errp
);
3837 if (!create_options
) {
3842 /* Silently round up size */
3843 create_options
->u
.qcow2
.size
= ROUND_UP(create_options
->u
.qcow2
.size
,
3846 /* Create the qcow2 image (format layer) */
3847 ret
= qcow2_co_create(create_options
, errp
);
3854 qobject_unref(qdict
);
3856 bdrv_unref(data_bs
);
3857 qapi_free_BlockdevCreateOptions(create_options
);
3862 static bool is_zero(BlockDriverState
*bs
, int64_t offset
, int64_t bytes
)
3867 /* Clamp to image length, before checking status of underlying sectors */
3868 if (offset
+ bytes
> bs
->total_sectors
* BDRV_SECTOR_SIZE
) {
3869 bytes
= bs
->total_sectors
* BDRV_SECTOR_SIZE
- offset
;
3875 res
= bdrv_block_status_above(bs
, NULL
, offset
, bytes
, &nr
, NULL
, NULL
);
3876 return res
>= 0 && (res
& BDRV_BLOCK_ZERO
) && nr
== bytes
;
3879 static coroutine_fn
int qcow2_co_pwrite_zeroes(BlockDriverState
*bs
,
3880 int64_t offset
, int bytes
, BdrvRequestFlags flags
)
3883 BDRVQcow2State
*s
= bs
->opaque
;
3885 uint32_t head
= offset_into_subcluster(s
, offset
);
3886 uint32_t tail
= ROUND_UP(offset
+ bytes
, s
->subcluster_size
) -
3889 trace_qcow2_pwrite_zeroes_start_req(qemu_coroutine_self(), offset
, bytes
);
3890 if (offset
+ bytes
== bs
->total_sectors
* BDRV_SECTOR_SIZE
) {
3897 QCow2SubclusterType type
;
3899 assert(head
+ bytes
+ tail
<= s
->subcluster_size
);
3901 /* check whether remainder of cluster already reads as zero */
3902 if (!(is_zero(bs
, offset
- head
, head
) &&
3903 is_zero(bs
, offset
+ bytes
, tail
))) {
3907 qemu_co_mutex_lock(&s
->lock
);
3908 /* We can have new write after previous check */
3910 bytes
= s
->subcluster_size
;
3911 nr
= s
->subcluster_size
;
3912 ret
= qcow2_get_host_offset(bs
, offset
, &nr
, &off
, &type
);
3914 (type
!= QCOW2_SUBCLUSTER_UNALLOCATED_PLAIN
&&
3915 type
!= QCOW2_SUBCLUSTER_UNALLOCATED_ALLOC
&&
3916 type
!= QCOW2_SUBCLUSTER_ZERO_PLAIN
&&
3917 type
!= QCOW2_SUBCLUSTER_ZERO_ALLOC
)) {
3918 qemu_co_mutex_unlock(&s
->lock
);
3922 qemu_co_mutex_lock(&s
->lock
);
3925 trace_qcow2_pwrite_zeroes(qemu_coroutine_self(), offset
, bytes
);
3927 /* Whatever is left can use real zero subclusters */
3928 ret
= qcow2_subcluster_zeroize(bs
, offset
, bytes
, flags
);
3929 qemu_co_mutex_unlock(&s
->lock
);
3934 static coroutine_fn
int qcow2_co_pdiscard(BlockDriverState
*bs
,
3935 int64_t offset
, int bytes
)
3938 BDRVQcow2State
*s
= bs
->opaque
;
3940 /* If the image does not support QCOW_OFLAG_ZERO then discarding
3941 * clusters could expose stale data from the backing file. */
3942 if (s
->qcow_version
< 3 && bs
->backing
) {
3946 if (!QEMU_IS_ALIGNED(offset
| bytes
, s
->cluster_size
)) {
3947 assert(bytes
< s
->cluster_size
);
3948 /* Ignore partial clusters, except for the special case of the
3949 * complete partial cluster at the end of an unaligned file */
3950 if (!QEMU_IS_ALIGNED(offset
, s
->cluster_size
) ||
3951 offset
+ bytes
!= bs
->total_sectors
* BDRV_SECTOR_SIZE
) {
3956 qemu_co_mutex_lock(&s
->lock
);
3957 ret
= qcow2_cluster_discard(bs
, offset
, bytes
, QCOW2_DISCARD_REQUEST
,
3959 qemu_co_mutex_unlock(&s
->lock
);
3963 static int coroutine_fn
3964 qcow2_co_copy_range_from(BlockDriverState
*bs
,
3965 BdrvChild
*src
, uint64_t src_offset
,
3966 BdrvChild
*dst
, uint64_t dst_offset
,
3967 uint64_t bytes
, BdrvRequestFlags read_flags
,
3968 BdrvRequestFlags write_flags
)
3970 BDRVQcow2State
*s
= bs
->opaque
;
3972 unsigned int cur_bytes
; /* number of bytes in current iteration */
3973 BdrvChild
*child
= NULL
;
3974 BdrvRequestFlags cur_write_flags
;
3976 assert(!bs
->encrypted
);
3977 qemu_co_mutex_lock(&s
->lock
);
3979 while (bytes
!= 0) {
3980 uint64_t copy_offset
= 0;
3981 QCow2SubclusterType type
;
3982 /* prepare next request */
3983 cur_bytes
= MIN(bytes
, INT_MAX
);
3984 cur_write_flags
= write_flags
;
3986 ret
= qcow2_get_host_offset(bs
, src_offset
, &cur_bytes
,
3987 ©_offset
, &type
);
3993 case QCOW2_SUBCLUSTER_UNALLOCATED_PLAIN
:
3994 case QCOW2_SUBCLUSTER_UNALLOCATED_ALLOC
:
3995 if (bs
->backing
&& bs
->backing
->bs
) {
3996 int64_t backing_length
= bdrv_getlength(bs
->backing
->bs
);
3997 if (src_offset
>= backing_length
) {
3998 cur_write_flags
|= BDRV_REQ_ZERO_WRITE
;
4000 child
= bs
->backing
;
4001 cur_bytes
= MIN(cur_bytes
, backing_length
- src_offset
);
4002 copy_offset
= src_offset
;
4005 cur_write_flags
|= BDRV_REQ_ZERO_WRITE
;
4009 case QCOW2_SUBCLUSTER_ZERO_PLAIN
:
4010 case QCOW2_SUBCLUSTER_ZERO_ALLOC
:
4011 cur_write_flags
|= BDRV_REQ_ZERO_WRITE
;
4014 case QCOW2_SUBCLUSTER_COMPRESSED
:
4018 case QCOW2_SUBCLUSTER_NORMAL
:
4019 child
= s
->data_file
;
4025 qemu_co_mutex_unlock(&s
->lock
);
4026 ret
= bdrv_co_copy_range_from(child
,
4029 cur_bytes
, read_flags
, cur_write_flags
);
4030 qemu_co_mutex_lock(&s
->lock
);
4036 src_offset
+= cur_bytes
;
4037 dst_offset
+= cur_bytes
;
4042 qemu_co_mutex_unlock(&s
->lock
);
4046 static int coroutine_fn
4047 qcow2_co_copy_range_to(BlockDriverState
*bs
,
4048 BdrvChild
*src
, uint64_t src_offset
,
4049 BdrvChild
*dst
, uint64_t dst_offset
,
4050 uint64_t bytes
, BdrvRequestFlags read_flags
,
4051 BdrvRequestFlags write_flags
)
4053 BDRVQcow2State
*s
= bs
->opaque
;
4054 int offset_in_cluster
;
4056 unsigned int cur_bytes
; /* number of sectors in current iteration */
4057 uint64_t cluster_offset
;
4058 QCowL2Meta
*l2meta
= NULL
;
4060 assert(!bs
->encrypted
);
4062 qemu_co_mutex_lock(&s
->lock
);
4064 while (bytes
!= 0) {
4068 offset_in_cluster
= offset_into_cluster(s
, dst_offset
);
4069 cur_bytes
= MIN(bytes
, INT_MAX
);
4072 * If src->bs == dst->bs, we could simply copy by incrementing
4073 * the refcnt, without copying user data.
4074 * Or if src->bs == dst->bs->backing->bs, we could copy by discarding. */
4075 ret
= qcow2_alloc_cluster_offset(bs
, dst_offset
, &cur_bytes
,
4076 &cluster_offset
, &l2meta
);
4081 assert(offset_into_cluster(s
, cluster_offset
) == 0);
4083 ret
= qcow2_pre_write_overlap_check(bs
, 0,
4084 cluster_offset
+ offset_in_cluster
, cur_bytes
, true);
4089 qemu_co_mutex_unlock(&s
->lock
);
4090 ret
= bdrv_co_copy_range_to(src
, src_offset
,
4092 cluster_offset
+ offset_in_cluster
,
4093 cur_bytes
, read_flags
, write_flags
);
4094 qemu_co_mutex_lock(&s
->lock
);
4099 ret
= qcow2_handle_l2meta(bs
, &l2meta
, true);
4105 src_offset
+= cur_bytes
;
4106 dst_offset
+= cur_bytes
;
4111 qcow2_handle_l2meta(bs
, &l2meta
, false);
4113 qemu_co_mutex_unlock(&s
->lock
);
4115 trace_qcow2_writev_done_req(qemu_coroutine_self(), ret
);
4120 static int coroutine_fn
qcow2_co_truncate(BlockDriverState
*bs
, int64_t offset
,
4121 bool exact
, PreallocMode prealloc
,
4122 BdrvRequestFlags flags
, Error
**errp
)
4124 BDRVQcow2State
*s
= bs
->opaque
;
4125 uint64_t old_length
;
4126 int64_t new_l1_size
;
4130 if (prealloc
!= PREALLOC_MODE_OFF
&& prealloc
!= PREALLOC_MODE_METADATA
&&
4131 prealloc
!= PREALLOC_MODE_FALLOC
&& prealloc
!= PREALLOC_MODE_FULL
)
4133 error_setg(errp
, "Unsupported preallocation mode '%s'",
4134 PreallocMode_str(prealloc
));
4138 if (!QEMU_IS_ALIGNED(offset
, BDRV_SECTOR_SIZE
)) {
4139 error_setg(errp
, "The new size must be a multiple of %u",
4140 (unsigned) BDRV_SECTOR_SIZE
);
4144 qemu_co_mutex_lock(&s
->lock
);
4147 * Even though we store snapshot size for all images, it was not
4148 * required until v3, so it is not safe to proceed for v2.
4150 if (s
->nb_snapshots
&& s
->qcow_version
< 3) {
4151 error_setg(errp
, "Can't resize a v2 image which has snapshots");
4156 /* See qcow2-bitmap.c for which bitmap scenarios prevent a resize. */
4157 if (qcow2_truncate_bitmaps_check(bs
, errp
)) {
4162 old_length
= bs
->total_sectors
* BDRV_SECTOR_SIZE
;
4163 new_l1_size
= size_to_l1(s
, offset
);
4165 if (offset
< old_length
) {
4166 int64_t last_cluster
, old_file_size
;
4167 if (prealloc
!= PREALLOC_MODE_OFF
) {
4169 "Preallocation can't be used for shrinking an image");
4174 ret
= qcow2_cluster_discard(bs
, ROUND_UP(offset
, s
->cluster_size
),
4175 old_length
- ROUND_UP(offset
,
4177 QCOW2_DISCARD_ALWAYS
, true);
4179 error_setg_errno(errp
, -ret
, "Failed to discard cropped clusters");
4183 ret
= qcow2_shrink_l1_table(bs
, new_l1_size
);
4185 error_setg_errno(errp
, -ret
,
4186 "Failed to reduce the number of L2 tables");
4190 ret
= qcow2_shrink_reftable(bs
);
4192 error_setg_errno(errp
, -ret
,
4193 "Failed to discard unused refblocks");
4197 old_file_size
= bdrv_getlength(bs
->file
->bs
);
4198 if (old_file_size
< 0) {
4199 error_setg_errno(errp
, -old_file_size
,
4200 "Failed to inquire current file length");
4201 ret
= old_file_size
;
4204 last_cluster
= qcow2_get_last_cluster(bs
, old_file_size
);
4205 if (last_cluster
< 0) {
4206 error_setg_errno(errp
, -last_cluster
,
4207 "Failed to find the last cluster");
4211 if ((last_cluster
+ 1) * s
->cluster_size
< old_file_size
) {
4212 Error
*local_err
= NULL
;
4215 * Do not pass @exact here: It will not help the user if
4216 * we get an error here just because they wanted to shrink
4217 * their qcow2 image (on a block device) with qemu-img.
4218 * (And on the qcow2 layer, the @exact requirement is
4219 * always fulfilled, so there is no need to pass it on.)
4221 bdrv_co_truncate(bs
->file
, (last_cluster
+ 1) * s
->cluster_size
,
4222 false, PREALLOC_MODE_OFF
, 0, &local_err
);
4224 warn_reportf_err(local_err
,
4225 "Failed to truncate the tail of the image: ");
4229 ret
= qcow2_grow_l1_table(bs
, new_l1_size
, true);
4231 error_setg_errno(errp
, -ret
, "Failed to grow the L1 table");
4237 case PREALLOC_MODE_OFF
:
4238 if (has_data_file(bs
)) {
4240 * If the caller wants an exact resize, the external data
4241 * file should be resized to the exact target size, too,
4242 * so we pass @exact here.
4244 ret
= bdrv_co_truncate(s
->data_file
, offset
, exact
, prealloc
, 0,
4252 case PREALLOC_MODE_METADATA
:
4253 ret
= preallocate_co(bs
, old_length
, offset
, prealloc
, errp
);
4259 case PREALLOC_MODE_FALLOC
:
4260 case PREALLOC_MODE_FULL
:
4262 int64_t allocation_start
, host_offset
, guest_offset
;
4263 int64_t clusters_allocated
;
4264 int64_t old_file_size
, last_cluster
, new_file_size
;
4265 uint64_t nb_new_data_clusters
, nb_new_l2_tables
;
4266 bool subclusters_need_allocation
= false;
4268 /* With a data file, preallocation means just allocating the metadata
4269 * and forwarding the truncate request to the data file */
4270 if (has_data_file(bs
)) {
4271 ret
= preallocate_co(bs
, old_length
, offset
, prealloc
, errp
);
4278 old_file_size
= bdrv_getlength(bs
->file
->bs
);
4279 if (old_file_size
< 0) {
4280 error_setg_errno(errp
, -old_file_size
,
4281 "Failed to inquire current file length");
4282 ret
= old_file_size
;
4286 last_cluster
= qcow2_get_last_cluster(bs
, old_file_size
);
4287 if (last_cluster
>= 0) {
4288 old_file_size
= (last_cluster
+ 1) * s
->cluster_size
;
4290 old_file_size
= ROUND_UP(old_file_size
, s
->cluster_size
);
4293 nb_new_data_clusters
= (ROUND_UP(offset
, s
->cluster_size
) -
4294 start_of_cluster(s
, old_length
)) >> s
->cluster_bits
;
4296 /* This is an overestimation; we will not actually allocate space for
4297 * these in the file but just make sure the new refcount structures are
4298 * able to cover them so we will not have to allocate new refblocks
4299 * while entering the data blocks in the potentially new L2 tables.
4300 * (We do not actually care where the L2 tables are placed. Maybe they
4301 * are already allocated or they can be placed somewhere before
4302 * @old_file_size. It does not matter because they will be fully
4303 * allocated automatically, so they do not need to be covered by the
4304 * preallocation. All that matters is that we will not have to allocate
4305 * new refcount structures for them.) */
4306 nb_new_l2_tables
= DIV_ROUND_UP(nb_new_data_clusters
,
4307 s
->cluster_size
/ l2_entry_size(s
));
4308 /* The cluster range may not be aligned to L2 boundaries, so add one L2
4309 * table for a potential head/tail */
4312 allocation_start
= qcow2_refcount_area(bs
, old_file_size
,
4313 nb_new_data_clusters
+
4316 if (allocation_start
< 0) {
4317 error_setg_errno(errp
, -allocation_start
,
4318 "Failed to resize refcount structures");
4319 ret
= allocation_start
;
4323 clusters_allocated
= qcow2_alloc_clusters_at(bs
, allocation_start
,
4324 nb_new_data_clusters
);
4325 if (clusters_allocated
< 0) {
4326 error_setg_errno(errp
, -clusters_allocated
,
4327 "Failed to allocate data clusters");
4328 ret
= clusters_allocated
;
4332 assert(clusters_allocated
== nb_new_data_clusters
);
4334 /* Allocate the data area */
4335 new_file_size
= allocation_start
+
4336 nb_new_data_clusters
* s
->cluster_size
;
4338 * Image file grows, so @exact does not matter.
4340 * If we need to zero out the new area, try first whether the protocol
4341 * driver can already take care of this.
4343 if (flags
& BDRV_REQ_ZERO_WRITE
) {
4344 ret
= bdrv_co_truncate(bs
->file
, new_file_size
, false, prealloc
,
4345 BDRV_REQ_ZERO_WRITE
, NULL
);
4347 flags
&= ~BDRV_REQ_ZERO_WRITE
;
4348 /* Ensure that we read zeroes and not backing file data */
4349 subclusters_need_allocation
= true;
4355 ret
= bdrv_co_truncate(bs
->file
, new_file_size
, false, prealloc
, 0,
4359 error_prepend(errp
, "Failed to resize underlying file: ");
4360 qcow2_free_clusters(bs
, allocation_start
,
4361 nb_new_data_clusters
* s
->cluster_size
,
4362 QCOW2_DISCARD_OTHER
);
4366 /* Create the necessary L2 entries */
4367 host_offset
= allocation_start
;
4368 guest_offset
= old_length
;
4369 while (nb_new_data_clusters
) {
4370 int64_t nb_clusters
= MIN(
4371 nb_new_data_clusters
,
4372 s
->l2_slice_size
- offset_to_l2_slice_index(s
, guest_offset
));
4373 unsigned cow_start_length
= offset_into_cluster(s
, guest_offset
);
4374 QCowL2Meta allocation
;
4375 guest_offset
= start_of_cluster(s
, guest_offset
);
4376 allocation
= (QCowL2Meta
) {
4377 .offset
= guest_offset
,
4378 .alloc_offset
= host_offset
,
4379 .nb_clusters
= nb_clusters
,
4382 .nb_bytes
= cow_start_length
,
4385 .offset
= nb_clusters
<< s
->cluster_bits
,
4388 .prealloc
= !subclusters_need_allocation
,
4390 qemu_co_queue_init(&allocation
.dependent_requests
);
4392 ret
= qcow2_alloc_cluster_link_l2(bs
, &allocation
);
4394 error_setg_errno(errp
, -ret
, "Failed to update L2 tables");
4395 qcow2_free_clusters(bs
, host_offset
,
4396 nb_new_data_clusters
* s
->cluster_size
,
4397 QCOW2_DISCARD_OTHER
);
4401 guest_offset
+= nb_clusters
* s
->cluster_size
;
4402 host_offset
+= nb_clusters
* s
->cluster_size
;
4403 nb_new_data_clusters
-= nb_clusters
;
4409 g_assert_not_reached();
4412 if ((flags
& BDRV_REQ_ZERO_WRITE
) && offset
> old_length
) {
4413 uint64_t zero_start
= QEMU_ALIGN_UP(old_length
, s
->subcluster_size
);
4416 * Use zero clusters as much as we can. qcow2_subcluster_zeroize()
4417 * requires a subcluster-aligned start. The end may be unaligned if
4418 * it is at the end of the image (which it is here).
4420 if (offset
> zero_start
) {
4421 ret
= qcow2_subcluster_zeroize(bs
, zero_start
, offset
- zero_start
,
4424 error_setg_errno(errp
, -ret
, "Failed to zero out new clusters");
4429 /* Write explicit zeros for the unaligned head */
4430 if (zero_start
> old_length
) {
4431 uint64_t len
= MIN(zero_start
, offset
) - old_length
;
4432 uint8_t *buf
= qemu_blockalign0(bs
, len
);
4434 qemu_iovec_init_buf(&qiov
, buf
, len
);
4436 qemu_co_mutex_unlock(&s
->lock
);
4437 ret
= qcow2_co_pwritev_part(bs
, old_length
, len
, &qiov
, 0, 0);
4438 qemu_co_mutex_lock(&s
->lock
);
4442 error_setg_errno(errp
, -ret
, "Failed to zero out the new area");
4448 if (prealloc
!= PREALLOC_MODE_OFF
) {
4449 /* Flush metadata before actually changing the image size */
4450 ret
= qcow2_write_caches(bs
);
4452 error_setg_errno(errp
, -ret
,
4453 "Failed to flush the preallocated area to disk");
4458 bs
->total_sectors
= offset
/ BDRV_SECTOR_SIZE
;
4460 /* write updated header.size */
4461 offset
= cpu_to_be64(offset
);
4462 ret
= bdrv_pwrite_sync(bs
->file
, offsetof(QCowHeader
, size
),
4463 &offset
, sizeof(uint64_t));
4465 error_setg_errno(errp
, -ret
, "Failed to update the image size");
4469 s
->l1_vm_state_index
= new_l1_size
;
4471 /* Update cache sizes */
4472 options
= qdict_clone_shallow(bs
->options
);
4473 ret
= qcow2_update_options(bs
, options
, s
->flags
, errp
);
4474 qobject_unref(options
);
4480 qemu_co_mutex_unlock(&s
->lock
);
4484 static coroutine_fn
int
4485 qcow2_co_pwritev_compressed_task(BlockDriverState
*bs
,
4486 uint64_t offset
, uint64_t bytes
,
4487 QEMUIOVector
*qiov
, size_t qiov_offset
)
4489 BDRVQcow2State
*s
= bs
->opaque
;
4492 uint8_t *buf
, *out_buf
;
4493 uint64_t cluster_offset
;
4495 assert(bytes
== s
->cluster_size
|| (bytes
< s
->cluster_size
&&
4496 (offset
+ bytes
== bs
->total_sectors
<< BDRV_SECTOR_BITS
)));
4498 buf
= qemu_blockalign(bs
, s
->cluster_size
);
4499 if (bytes
< s
->cluster_size
) {
4500 /* Zero-pad last write if image size is not cluster aligned */
4501 memset(buf
+ bytes
, 0, s
->cluster_size
- bytes
);
4503 qemu_iovec_to_buf(qiov
, qiov_offset
, buf
, bytes
);
4505 out_buf
= g_malloc(s
->cluster_size
);
4507 out_len
= qcow2_co_compress(bs
, out_buf
, s
->cluster_size
- 1,
4508 buf
, s
->cluster_size
);
4509 if (out_len
== -ENOMEM
) {
4510 /* could not compress: write normal cluster */
4511 ret
= qcow2_co_pwritev_part(bs
, offset
, bytes
, qiov
, qiov_offset
, 0);
4516 } else if (out_len
< 0) {
4521 qemu_co_mutex_lock(&s
->lock
);
4522 ret
= qcow2_alloc_compressed_cluster_offset(bs
, offset
, out_len
,
4525 qemu_co_mutex_unlock(&s
->lock
);
4529 ret
= qcow2_pre_write_overlap_check(bs
, 0, cluster_offset
, out_len
, true);
4530 qemu_co_mutex_unlock(&s
->lock
);
4535 BLKDBG_EVENT(s
->data_file
, BLKDBG_WRITE_COMPRESSED
);
4536 ret
= bdrv_co_pwrite(s
->data_file
, cluster_offset
, out_len
, out_buf
, 0);
4548 static coroutine_fn
int qcow2_co_pwritev_compressed_task_entry(AioTask
*task
)
4550 Qcow2AioTask
*t
= container_of(task
, Qcow2AioTask
, task
);
4552 assert(!t
->subcluster_type
&& !t
->l2meta
);
4554 return qcow2_co_pwritev_compressed_task(t
->bs
, t
->offset
, t
->bytes
, t
->qiov
,
4559 * XXX: put compressed sectors first, then all the cluster aligned
4560 * tables to avoid losing bytes in alignment
4562 static coroutine_fn
int
4563 qcow2_co_pwritev_compressed_part(BlockDriverState
*bs
,
4564 uint64_t offset
, uint64_t bytes
,
4565 QEMUIOVector
*qiov
, size_t qiov_offset
)
4567 BDRVQcow2State
*s
= bs
->opaque
;
4568 AioTaskPool
*aio
= NULL
;
4571 if (has_data_file(bs
)) {
4577 * align end of file to a sector boundary to ease reading with
4580 int64_t len
= bdrv_getlength(bs
->file
->bs
);
4584 return bdrv_co_truncate(bs
->file
, len
, false, PREALLOC_MODE_OFF
, 0,
4588 if (offset_into_cluster(s
, offset
)) {
4592 if (offset_into_cluster(s
, bytes
) &&
4593 (offset
+ bytes
) != (bs
->total_sectors
<< BDRV_SECTOR_BITS
)) {
4597 while (bytes
&& aio_task_pool_status(aio
) == 0) {
4598 uint64_t chunk_size
= MIN(bytes
, s
->cluster_size
);
4600 if (!aio
&& chunk_size
!= bytes
) {
4601 aio
= aio_task_pool_new(QCOW2_MAX_WORKERS
);
4604 ret
= qcow2_add_task(bs
, aio
, qcow2_co_pwritev_compressed_task_entry
,
4605 0, 0, offset
, chunk_size
, qiov
, qiov_offset
, NULL
);
4609 qiov_offset
+= chunk_size
;
4610 offset
+= chunk_size
;
4611 bytes
-= chunk_size
;
4615 aio_task_pool_wait_all(aio
);
4617 ret
= aio_task_pool_status(aio
);
4625 static int coroutine_fn
4626 qcow2_co_preadv_compressed(BlockDriverState
*bs
,
4627 uint64_t cluster_descriptor
,
4633 BDRVQcow2State
*s
= bs
->opaque
;
4634 int ret
= 0, csize
, nb_csectors
;
4636 uint8_t *buf
, *out_buf
;
4637 int offset_in_cluster
= offset_into_cluster(s
, offset
);
4639 coffset
= cluster_descriptor
& s
->cluster_offset_mask
;
4640 nb_csectors
= ((cluster_descriptor
>> s
->csize_shift
) & s
->csize_mask
) + 1;
4641 csize
= nb_csectors
* QCOW2_COMPRESSED_SECTOR_SIZE
-
4642 (coffset
& ~QCOW2_COMPRESSED_SECTOR_MASK
);
4644 buf
= g_try_malloc(csize
);
4649 out_buf
= qemu_blockalign(bs
, s
->cluster_size
);
4651 BLKDBG_EVENT(bs
->file
, BLKDBG_READ_COMPRESSED
);
4652 ret
= bdrv_co_pread(bs
->file
, coffset
, csize
, buf
, 0);
4657 if (qcow2_co_decompress(bs
, out_buf
, s
->cluster_size
, buf
, csize
) < 0) {
4662 qemu_iovec_from_buf(qiov
, qiov_offset
, out_buf
+ offset_in_cluster
, bytes
);
4665 qemu_vfree(out_buf
);
4671 static int make_completely_empty(BlockDriverState
*bs
)
4673 BDRVQcow2State
*s
= bs
->opaque
;
4674 Error
*local_err
= NULL
;
4675 int ret
, l1_clusters
;
4677 uint64_t *new_reftable
= NULL
;
4678 uint64_t rt_entry
, l1_size2
;
4681 uint64_t reftable_offset
;
4682 uint32_t reftable_clusters
;
4683 } QEMU_PACKED l1_ofs_rt_ofs_cls
;
4685 ret
= qcow2_cache_empty(bs
, s
->l2_table_cache
);
4690 ret
= qcow2_cache_empty(bs
, s
->refcount_block_cache
);
4695 /* Refcounts will be broken utterly */
4696 ret
= qcow2_mark_dirty(bs
);
4701 BLKDBG_EVENT(bs
->file
, BLKDBG_L1_UPDATE
);
4703 l1_clusters
= DIV_ROUND_UP(s
->l1_size
, s
->cluster_size
/ sizeof(uint64_t));
4704 l1_size2
= (uint64_t)s
->l1_size
* sizeof(uint64_t);
4706 /* After this call, neither the in-memory nor the on-disk refcount
4707 * information accurately describe the actual references */
4709 ret
= bdrv_pwrite_zeroes(bs
->file
, s
->l1_table_offset
,
4710 l1_clusters
* s
->cluster_size
, 0);
4712 goto fail_broken_refcounts
;
4714 memset(s
->l1_table
, 0, l1_size2
);
4716 BLKDBG_EVENT(bs
->file
, BLKDBG_EMPTY_IMAGE_PREPARE
);
4718 /* Overwrite enough clusters at the beginning of the sectors to place
4719 * the refcount table, a refcount block and the L1 table in; this may
4720 * overwrite parts of the existing refcount and L1 table, which is not
4721 * an issue because the dirty flag is set, complete data loss is in fact
4722 * desired and partial data loss is consequently fine as well */
4723 ret
= bdrv_pwrite_zeroes(bs
->file
, s
->cluster_size
,
4724 (2 + l1_clusters
) * s
->cluster_size
, 0);
4725 /* This call (even if it failed overall) may have overwritten on-disk
4726 * refcount structures; in that case, the in-memory refcount information
4727 * will probably differ from the on-disk information which makes the BDS
4730 goto fail_broken_refcounts
;
4733 BLKDBG_EVENT(bs
->file
, BLKDBG_L1_UPDATE
);
4734 BLKDBG_EVENT(bs
->file
, BLKDBG_REFTABLE_UPDATE
);
4736 /* "Create" an empty reftable (one cluster) directly after the image
4737 * header and an empty L1 table three clusters after the image header;
4738 * the cluster between those two will be used as the first refblock */
4739 l1_ofs_rt_ofs_cls
.l1_offset
= cpu_to_be64(3 * s
->cluster_size
);
4740 l1_ofs_rt_ofs_cls
.reftable_offset
= cpu_to_be64(s
->cluster_size
);
4741 l1_ofs_rt_ofs_cls
.reftable_clusters
= cpu_to_be32(1);
4742 ret
= bdrv_pwrite_sync(bs
->file
, offsetof(QCowHeader
, l1_table_offset
),
4743 &l1_ofs_rt_ofs_cls
, sizeof(l1_ofs_rt_ofs_cls
));
4745 goto fail_broken_refcounts
;
4748 s
->l1_table_offset
= 3 * s
->cluster_size
;
4750 new_reftable
= g_try_new0(uint64_t, s
->cluster_size
/ sizeof(uint64_t));
4751 if (!new_reftable
) {
4753 goto fail_broken_refcounts
;
4756 s
->refcount_table_offset
= s
->cluster_size
;
4757 s
->refcount_table_size
= s
->cluster_size
/ sizeof(uint64_t);
4758 s
->max_refcount_table_index
= 0;
4760 g_free(s
->refcount_table
);
4761 s
->refcount_table
= new_reftable
;
4762 new_reftable
= NULL
;
4764 /* Now the in-memory refcount information again corresponds to the on-disk
4765 * information (reftable is empty and no refblocks (the refblock cache is
4766 * empty)); however, this means some clusters (e.g. the image header) are
4767 * referenced, but not refcounted, but the normal qcow2 code assumes that
4768 * the in-memory information is always correct */
4770 BLKDBG_EVENT(bs
->file
, BLKDBG_REFBLOCK_ALLOC
);
4772 /* Enter the first refblock into the reftable */
4773 rt_entry
= cpu_to_be64(2 * s
->cluster_size
);
4774 ret
= bdrv_pwrite_sync(bs
->file
, s
->cluster_size
,
4775 &rt_entry
, sizeof(rt_entry
));
4777 goto fail_broken_refcounts
;
4779 s
->refcount_table
[0] = 2 * s
->cluster_size
;
4781 s
->free_cluster_index
= 0;
4782 assert(3 + l1_clusters
<= s
->refcount_block_size
);
4783 offset
= qcow2_alloc_clusters(bs
, 3 * s
->cluster_size
+ l1_size2
);
4786 goto fail_broken_refcounts
;
4787 } else if (offset
> 0) {
4788 error_report("First cluster in emptied image is in use");
4792 /* Now finally the in-memory information corresponds to the on-disk
4793 * structures and is correct */
4794 ret
= qcow2_mark_clean(bs
);
4799 ret
= bdrv_truncate(bs
->file
, (3 + l1_clusters
) * s
->cluster_size
, false,
4800 PREALLOC_MODE_OFF
, 0, &local_err
);
4802 error_report_err(local_err
);
4808 fail_broken_refcounts
:
4809 /* The BDS is unusable at this point. If we wanted to make it usable, we
4810 * would have to call qcow2_refcount_close(), qcow2_refcount_init(),
4811 * qcow2_check_refcounts(), qcow2_refcount_close() and qcow2_refcount_init()
4812 * again. However, because the functions which could have caused this error
4813 * path to be taken are used by those functions as well, it's very likely
4814 * that that sequence will fail as well. Therefore, just eject the BDS. */
4818 g_free(new_reftable
);
4822 static int qcow2_make_empty(BlockDriverState
*bs
)
4824 BDRVQcow2State
*s
= bs
->opaque
;
4825 uint64_t offset
, end_offset
;
4826 int step
= QEMU_ALIGN_DOWN(INT_MAX
, s
->cluster_size
);
4827 int l1_clusters
, ret
= 0;
4829 l1_clusters
= DIV_ROUND_UP(s
->l1_size
, s
->cluster_size
/ sizeof(uint64_t));
4831 if (s
->qcow_version
>= 3 && !s
->snapshots
&& !s
->nb_bitmaps
&&
4832 3 + l1_clusters
<= s
->refcount_block_size
&&
4833 s
->crypt_method_header
!= QCOW_CRYPT_LUKS
&&
4834 !has_data_file(bs
)) {
4835 /* The following function only works for qcow2 v3 images (it
4836 * requires the dirty flag) and only as long as there are no
4837 * features that reserve extra clusters (such as snapshots,
4838 * LUKS header, or persistent bitmaps), because it completely
4839 * empties the image. Furthermore, the L1 table and three
4840 * additional clusters (image header, refcount table, one
4841 * refcount block) have to fit inside one refcount block. It
4842 * only resets the image file, i.e. does not work with an
4843 * external data file. */
4844 return make_completely_empty(bs
);
4847 /* This fallback code simply discards every active cluster; this is slow,
4848 * but works in all cases */
4849 end_offset
= bs
->total_sectors
* BDRV_SECTOR_SIZE
;
4850 for (offset
= 0; offset
< end_offset
; offset
+= step
) {
4851 /* As this function is generally used after committing an external
4852 * snapshot, QCOW2_DISCARD_SNAPSHOT seems appropriate. Also, the
4853 * default action for this kind of discard is to pass the discard,
4854 * which will ideally result in an actually smaller image file, as
4855 * is probably desired. */
4856 ret
= qcow2_cluster_discard(bs
, offset
, MIN(step
, end_offset
- offset
),
4857 QCOW2_DISCARD_SNAPSHOT
, true);
4866 static coroutine_fn
int qcow2_co_flush_to_os(BlockDriverState
*bs
)
4868 BDRVQcow2State
*s
= bs
->opaque
;
4871 qemu_co_mutex_lock(&s
->lock
);
4872 ret
= qcow2_write_caches(bs
);
4873 qemu_co_mutex_unlock(&s
->lock
);
4878 static BlockMeasureInfo
*qcow2_measure(QemuOpts
*opts
, BlockDriverState
*in_bs
,
4881 Error
*local_err
= NULL
;
4882 BlockMeasureInfo
*info
;
4883 uint64_t required
= 0; /* bytes that contribute to required size */
4884 uint64_t virtual_size
; /* disk size as seen by guest */
4885 uint64_t refcount_bits
;
4887 uint64_t luks_payload_size
= 0;
4888 size_t cluster_size
;
4891 PreallocMode prealloc
;
4892 bool has_backing_file
;
4897 /* Parse image creation options */
4898 extended_l2
= qemu_opt_get_bool_del(opts
, BLOCK_OPT_EXTL2
, false);
4900 cluster_size
= qcow2_opt_get_cluster_size_del(opts
, extended_l2
,
4906 version
= qcow2_opt_get_version_del(opts
, &local_err
);
4911 refcount_bits
= qcow2_opt_get_refcount_bits_del(opts
, version
, &local_err
);
4916 optstr
= qemu_opt_get_del(opts
, BLOCK_OPT_PREALLOC
);
4917 prealloc
= qapi_enum_parse(&PreallocMode_lookup
, optstr
,
4918 PREALLOC_MODE_OFF
, &local_err
);
4924 optstr
= qemu_opt_get_del(opts
, BLOCK_OPT_BACKING_FILE
);
4925 has_backing_file
= !!optstr
;
4928 optstr
= qemu_opt_get_del(opts
, BLOCK_OPT_ENCRYPT_FORMAT
);
4929 has_luks
= optstr
&& strcmp(optstr
, "luks") == 0;
4933 g_autoptr(QCryptoBlockCreateOptions
) create_opts
= NULL
;
4934 QDict
*cryptoopts
= qcow2_extract_crypto_opts(opts
, "luks", errp
);
4937 create_opts
= block_crypto_create_opts_init(cryptoopts
, errp
);
4938 qobject_unref(cryptoopts
);
4943 if (!qcrypto_block_calculate_payload_offset(create_opts
,
4950 luks_payload_size
= ROUND_UP(headerlen
, cluster_size
);
4953 virtual_size
= qemu_opt_get_size_del(opts
, BLOCK_OPT_SIZE
, 0);
4954 virtual_size
= ROUND_UP(virtual_size
, cluster_size
);
4956 /* Check that virtual disk size is valid */
4957 l2e_size
= extended_l2
? L2E_SIZE_EXTENDED
: L2E_SIZE_NORMAL
;
4958 l2_tables
= DIV_ROUND_UP(virtual_size
/ cluster_size
,
4959 cluster_size
/ l2e_size
);
4960 if (l2_tables
* sizeof(uint64_t) > QCOW_MAX_L1_SIZE
) {
4961 error_setg(&local_err
, "The image size is too large "
4962 "(try using a larger cluster size)");
4966 /* Account for input image */
4968 int64_t ssize
= bdrv_getlength(in_bs
);
4970 error_setg_errno(&local_err
, -ssize
,
4971 "Unable to get image virtual_size");
4975 virtual_size
= ROUND_UP(ssize
, cluster_size
);
4977 if (has_backing_file
) {
4978 /* We don't how much of the backing chain is shared by the input
4979 * image and the new image file. In the worst case the new image's
4980 * backing file has nothing in common with the input image. Be
4981 * conservative and assume all clusters need to be written.
4983 required
= virtual_size
;
4988 for (offset
= 0; offset
< ssize
; offset
+= pnum
) {
4991 ret
= bdrv_block_status_above(in_bs
, NULL
, offset
,
4992 ssize
- offset
, &pnum
, NULL
,
4995 error_setg_errno(&local_err
, -ret
,
4996 "Unable to get block status");
5000 if (ret
& BDRV_BLOCK_ZERO
) {
5001 /* Skip zero regions (safe with no backing file) */
5002 } else if ((ret
& (BDRV_BLOCK_DATA
| BDRV_BLOCK_ALLOCATED
)) ==
5003 (BDRV_BLOCK_DATA
| BDRV_BLOCK_ALLOCATED
)) {
5004 /* Extend pnum to end of cluster for next iteration */
5005 pnum
= ROUND_UP(offset
+ pnum
, cluster_size
) - offset
;
5007 /* Count clusters we've seen */
5008 required
+= offset
% cluster_size
+ pnum
;
5014 /* Take into account preallocation. Nothing special is needed for
5015 * PREALLOC_MODE_METADATA since metadata is always counted.
5017 if (prealloc
== PREALLOC_MODE_FULL
|| prealloc
== PREALLOC_MODE_FALLOC
) {
5018 required
= virtual_size
;
5021 info
= g_new0(BlockMeasureInfo
, 1);
5022 info
->fully_allocated
= luks_payload_size
+
5023 qcow2_calc_prealloc_size(virtual_size
, cluster_size
,
5024 ctz32(refcount_bits
), extended_l2
);
5027 * Remove data clusters that are not required. This overestimates the
5028 * required size because metadata needed for the fully allocated file is
5029 * still counted. Show bitmaps only if both source and destination
5030 * would support them.
5032 info
->required
= info
->fully_allocated
- virtual_size
+ required
;
5033 info
->has_bitmaps
= version
>= 3 && in_bs
&&
5034 bdrv_supports_persistent_dirty_bitmap(in_bs
);
5035 if (info
->has_bitmaps
) {
5036 info
->bitmaps
= qcow2_get_persistent_dirty_bitmap_size(in_bs
,
5042 error_propagate(errp
, local_err
);
5046 static int qcow2_get_info(BlockDriverState
*bs
, BlockDriverInfo
*bdi
)
5048 BDRVQcow2State
*s
= bs
->opaque
;
5049 bdi
->cluster_size
= s
->cluster_size
;
5050 bdi
->vm_state_offset
= qcow2_vm_state_offset(s
);
5054 static ImageInfoSpecific
*qcow2_get_specific_info(BlockDriverState
*bs
,
5057 BDRVQcow2State
*s
= bs
->opaque
;
5058 ImageInfoSpecific
*spec_info
;
5059 QCryptoBlockInfo
*encrypt_info
= NULL
;
5060 Error
*local_err
= NULL
;
5062 if (s
->crypto
!= NULL
) {
5063 encrypt_info
= qcrypto_block_get_info(s
->crypto
, &local_err
);
5065 error_propagate(errp
, local_err
);
5070 spec_info
= g_new(ImageInfoSpecific
, 1);
5071 *spec_info
= (ImageInfoSpecific
){
5072 .type
= IMAGE_INFO_SPECIFIC_KIND_QCOW2
,
5073 .u
.qcow2
.data
= g_new0(ImageInfoSpecificQCow2
, 1),
5075 if (s
->qcow_version
== 2) {
5076 *spec_info
->u
.qcow2
.data
= (ImageInfoSpecificQCow2
){
5077 .compat
= g_strdup("0.10"),
5078 .refcount_bits
= s
->refcount_bits
,
5080 } else if (s
->qcow_version
== 3) {
5081 Qcow2BitmapInfoList
*bitmaps
;
5082 bitmaps
= qcow2_get_bitmap_info_list(bs
, &local_err
);
5084 error_propagate(errp
, local_err
);
5085 qapi_free_ImageInfoSpecific(spec_info
);
5086 qapi_free_QCryptoBlockInfo(encrypt_info
);
5089 *spec_info
->u
.qcow2
.data
= (ImageInfoSpecificQCow2
){
5090 .compat
= g_strdup("1.1"),
5091 .lazy_refcounts
= s
->compatible_features
&
5092 QCOW2_COMPAT_LAZY_REFCOUNTS
,
5093 .has_lazy_refcounts
= true,
5094 .corrupt
= s
->incompatible_features
&
5095 QCOW2_INCOMPAT_CORRUPT
,
5096 .has_corrupt
= true,
5097 .has_extended_l2
= true,
5098 .extended_l2
= has_subclusters(s
),
5099 .refcount_bits
= s
->refcount_bits
,
5100 .has_bitmaps
= !!bitmaps
,
5102 .has_data_file
= !!s
->image_data_file
,
5103 .data_file
= g_strdup(s
->image_data_file
),
5104 .has_data_file_raw
= has_data_file(bs
),
5105 .data_file_raw
= data_file_is_raw(bs
),
5106 .compression_type
= s
->compression_type
,
5109 /* if this assertion fails, this probably means a new version was
5110 * added without having it covered here */
5115 ImageInfoSpecificQCow2Encryption
*qencrypt
=
5116 g_new(ImageInfoSpecificQCow2Encryption
, 1);
5117 switch (encrypt_info
->format
) {
5118 case Q_CRYPTO_BLOCK_FORMAT_QCOW
:
5119 qencrypt
->format
= BLOCKDEV_QCOW2_ENCRYPTION_FORMAT_AES
;
5121 case Q_CRYPTO_BLOCK_FORMAT_LUKS
:
5122 qencrypt
->format
= BLOCKDEV_QCOW2_ENCRYPTION_FORMAT_LUKS
;
5123 qencrypt
->u
.luks
= encrypt_info
->u
.luks
;
5128 /* Since we did shallow copy above, erase any pointers
5129 * in the original info */
5130 memset(&encrypt_info
->u
, 0, sizeof(encrypt_info
->u
));
5131 qapi_free_QCryptoBlockInfo(encrypt_info
);
5133 spec_info
->u
.qcow2
.data
->has_encrypt
= true;
5134 spec_info
->u
.qcow2
.data
->encrypt
= qencrypt
;
5140 static int qcow2_has_zero_init(BlockDriverState
*bs
)
5142 BDRVQcow2State
*s
= bs
->opaque
;
5145 if (qemu_in_coroutine()) {
5146 qemu_co_mutex_lock(&s
->lock
);
5149 * Check preallocation status: Preallocated images have all L2
5150 * tables allocated, nonpreallocated images have none. It is
5151 * therefore enough to check the first one.
5153 preallocated
= s
->l1_size
> 0 && s
->l1_table
[0] != 0;
5154 if (qemu_in_coroutine()) {
5155 qemu_co_mutex_unlock(&s
->lock
);
5158 if (!preallocated
) {
5160 } else if (bs
->encrypted
) {
5163 return bdrv_has_zero_init(s
->data_file
->bs
);
5167 static int qcow2_save_vmstate(BlockDriverState
*bs
, QEMUIOVector
*qiov
,
5170 BDRVQcow2State
*s
= bs
->opaque
;
5172 BLKDBG_EVENT(bs
->file
, BLKDBG_VMSTATE_SAVE
);
5173 return bs
->drv
->bdrv_co_pwritev_part(bs
, qcow2_vm_state_offset(s
) + pos
,
5174 qiov
->size
, qiov
, 0, 0);
5177 static int qcow2_load_vmstate(BlockDriverState
*bs
, QEMUIOVector
*qiov
,
5180 BDRVQcow2State
*s
= bs
->opaque
;
5182 BLKDBG_EVENT(bs
->file
, BLKDBG_VMSTATE_LOAD
);
5183 return bs
->drv
->bdrv_co_preadv_part(bs
, qcow2_vm_state_offset(s
) + pos
,
5184 qiov
->size
, qiov
, 0, 0);
5188 * Downgrades an image's version. To achieve this, any incompatible features
5189 * have to be removed.
5191 static int qcow2_downgrade(BlockDriverState
*bs
, int target_version
,
5192 BlockDriverAmendStatusCB
*status_cb
, void *cb_opaque
,
5195 BDRVQcow2State
*s
= bs
->opaque
;
5196 int current_version
= s
->qcow_version
;
5200 /* This is qcow2_downgrade(), not qcow2_upgrade() */
5201 assert(target_version
< current_version
);
5203 /* There are no other versions (now) that you can downgrade to */
5204 assert(target_version
== 2);
5206 if (s
->refcount_order
!= 4) {
5207 error_setg(errp
, "compat=0.10 requires refcount_bits=16");
5211 if (has_data_file(bs
)) {
5212 error_setg(errp
, "Cannot downgrade an image with a data file");
5217 * If any internal snapshot has a different size than the current
5218 * image size, or VM state size that exceeds 32 bits, downgrading
5219 * is unsafe. Even though we would still use v3-compliant output
5220 * to preserve that data, other v2 programs might not realize
5221 * those optional fields are important.
5223 for (i
= 0; i
< s
->nb_snapshots
; i
++) {
5224 if (s
->snapshots
[i
].vm_state_size
> UINT32_MAX
||
5225 s
->snapshots
[i
].disk_size
!= bs
->total_sectors
* BDRV_SECTOR_SIZE
) {
5226 error_setg(errp
, "Internal snapshots prevent downgrade of image");
5231 /* clear incompatible features */
5232 if (s
->incompatible_features
& QCOW2_INCOMPAT_DIRTY
) {
5233 ret
= qcow2_mark_clean(bs
);
5235 error_setg_errno(errp
, -ret
, "Failed to make the image clean");
5240 /* with QCOW2_INCOMPAT_CORRUPT, it is pretty much impossible to get here in
5241 * the first place; if that happens nonetheless, returning -ENOTSUP is the
5242 * best thing to do anyway */
5244 if (s
->incompatible_features
) {
5245 error_setg(errp
, "Cannot downgrade an image with incompatible features "
5246 "%#" PRIx64
" set", s
->incompatible_features
);
5250 /* since we can ignore compatible features, we can set them to 0 as well */
5251 s
->compatible_features
= 0;
5252 /* if lazy refcounts have been used, they have already been fixed through
5253 * clearing the dirty flag */
5255 /* clearing autoclear features is trivial */
5256 s
->autoclear_features
= 0;
5258 ret
= qcow2_expand_zero_clusters(bs
, status_cb
, cb_opaque
);
5260 error_setg_errno(errp
, -ret
, "Failed to turn zero into data clusters");
5264 s
->qcow_version
= target_version
;
5265 ret
= qcow2_update_header(bs
);
5267 s
->qcow_version
= current_version
;
5268 error_setg_errno(errp
, -ret
, "Failed to update the image header");
5275 * Upgrades an image's version. While newer versions encompass all
5276 * features of older versions, some things may have to be presented
5279 static int qcow2_upgrade(BlockDriverState
*bs
, int target_version
,
5280 BlockDriverAmendStatusCB
*status_cb
, void *cb_opaque
,
5283 BDRVQcow2State
*s
= bs
->opaque
;
5284 bool need_snapshot_update
;
5285 int current_version
= s
->qcow_version
;
5289 /* This is qcow2_upgrade(), not qcow2_downgrade() */
5290 assert(target_version
> current_version
);
5292 /* There are no other versions (yet) that you can upgrade to */
5293 assert(target_version
== 3);
5295 status_cb(bs
, 0, 2, cb_opaque
);
5298 * In v2, snapshots do not need to have extra data. v3 requires
5299 * the 64-bit VM state size and the virtual disk size to be
5301 * qcow2_write_snapshots() will always write the list in the
5302 * v3-compliant format.
5304 need_snapshot_update
= false;
5305 for (i
= 0; i
< s
->nb_snapshots
; i
++) {
5306 if (s
->snapshots
[i
].extra_data_size
<
5307 sizeof_field(QCowSnapshotExtraData
, vm_state_size_large
) +
5308 sizeof_field(QCowSnapshotExtraData
, disk_size
))
5310 need_snapshot_update
= true;
5314 if (need_snapshot_update
) {
5315 ret
= qcow2_write_snapshots(bs
);
5317 error_setg_errno(errp
, -ret
, "Failed to update the snapshot table");
5321 status_cb(bs
, 1, 2, cb_opaque
);
5323 s
->qcow_version
= target_version
;
5324 ret
= qcow2_update_header(bs
);
5326 s
->qcow_version
= current_version
;
5327 error_setg_errno(errp
, -ret
, "Failed to update the image header");
5330 status_cb(bs
, 2, 2, cb_opaque
);
5335 typedef enum Qcow2AmendOperation
{
5336 /* This is the value Qcow2AmendHelperCBInfo::last_operation will be
5337 * statically initialized to so that the helper CB can discern the first
5338 * invocation from an operation change */
5339 QCOW2_NO_OPERATION
= 0,
5342 QCOW2_UPDATING_ENCRYPTION
,
5343 QCOW2_CHANGING_REFCOUNT_ORDER
,
5345 } Qcow2AmendOperation
;
5347 typedef struct Qcow2AmendHelperCBInfo
{
5348 /* The code coordinating the amend operations should only modify
5349 * these four fields; the rest will be managed by the CB */
5350 BlockDriverAmendStatusCB
*original_status_cb
;
5351 void *original_cb_opaque
;
5353 Qcow2AmendOperation current_operation
;
5355 /* Total number of operations to perform (only set once) */
5356 int total_operations
;
5358 /* The following fields are managed by the CB */
5360 /* Number of operations completed */
5361 int operations_completed
;
5363 /* Cumulative offset of all completed operations */
5364 int64_t offset_completed
;
5366 Qcow2AmendOperation last_operation
;
5367 int64_t last_work_size
;
5368 } Qcow2AmendHelperCBInfo
;
5370 static void qcow2_amend_helper_cb(BlockDriverState
*bs
,
5371 int64_t operation_offset
,
5372 int64_t operation_work_size
, void *opaque
)
5374 Qcow2AmendHelperCBInfo
*info
= opaque
;
5375 int64_t current_work_size
;
5376 int64_t projected_work_size
;
5378 if (info
->current_operation
!= info
->last_operation
) {
5379 if (info
->last_operation
!= QCOW2_NO_OPERATION
) {
5380 info
->offset_completed
+= info
->last_work_size
;
5381 info
->operations_completed
++;
5384 info
->last_operation
= info
->current_operation
;
5387 assert(info
->total_operations
> 0);
5388 assert(info
->operations_completed
< info
->total_operations
);
5390 info
->last_work_size
= operation_work_size
;
5392 current_work_size
= info
->offset_completed
+ operation_work_size
;
5394 /* current_work_size is the total work size for (operations_completed + 1)
5395 * operations (which includes this one), so multiply it by the number of
5396 * operations not covered and divide it by the number of operations
5397 * covered to get a projection for the operations not covered */
5398 projected_work_size
= current_work_size
* (info
->total_operations
-
5399 info
->operations_completed
- 1)
5400 / (info
->operations_completed
+ 1);
5402 info
->original_status_cb(bs
, info
->offset_completed
+ operation_offset
,
5403 current_work_size
+ projected_work_size
,
5404 info
->original_cb_opaque
);
5407 static int qcow2_amend_options(BlockDriverState
*bs
, QemuOpts
*opts
,
5408 BlockDriverAmendStatusCB
*status_cb
,
5413 BDRVQcow2State
*s
= bs
->opaque
;
5414 int old_version
= s
->qcow_version
, new_version
= old_version
;
5415 uint64_t new_size
= 0;
5416 const char *backing_file
= NULL
, *backing_format
= NULL
, *data_file
= NULL
;
5417 bool lazy_refcounts
= s
->use_lazy_refcounts
;
5418 bool data_file_raw
= data_file_is_raw(bs
);
5419 const char *compat
= NULL
;
5420 int refcount_bits
= s
->refcount_bits
;
5422 QemuOptDesc
*desc
= opts
->list
->desc
;
5423 Qcow2AmendHelperCBInfo helper_cb_info
;
5424 bool encryption_update
= false;
5426 while (desc
&& desc
->name
) {
5427 if (!qemu_opt_find(opts
, desc
->name
)) {
5428 /* only change explicitly defined options */
5433 if (!strcmp(desc
->name
, BLOCK_OPT_COMPAT_LEVEL
)) {
5434 compat
= qemu_opt_get(opts
, BLOCK_OPT_COMPAT_LEVEL
);
5436 /* preserve default */
5437 } else if (!strcmp(compat
, "0.10") || !strcmp(compat
, "v2")) {
5439 } else if (!strcmp(compat
, "1.1") || !strcmp(compat
, "v3")) {
5442 error_setg(errp
, "Unknown compatibility level %s", compat
);
5445 } else if (!strcmp(desc
->name
, BLOCK_OPT_SIZE
)) {
5446 new_size
= qemu_opt_get_size(opts
, BLOCK_OPT_SIZE
, 0);
5447 } else if (!strcmp(desc
->name
, BLOCK_OPT_BACKING_FILE
)) {
5448 backing_file
= qemu_opt_get(opts
, BLOCK_OPT_BACKING_FILE
);
5449 } else if (!strcmp(desc
->name
, BLOCK_OPT_BACKING_FMT
)) {
5450 backing_format
= qemu_opt_get(opts
, BLOCK_OPT_BACKING_FMT
);
5451 } else if (g_str_has_prefix(desc
->name
, "encrypt.")) {
5454 "Can't amend encryption options - encryption not present");
5457 if (s
->crypt_method_header
!= QCOW_CRYPT_LUKS
) {
5459 "Only LUKS encryption options can be amended");
5462 encryption_update
= true;
5463 } else if (!strcmp(desc
->name
, BLOCK_OPT_LAZY_REFCOUNTS
)) {
5464 lazy_refcounts
= qemu_opt_get_bool(opts
, BLOCK_OPT_LAZY_REFCOUNTS
,
5466 } else if (!strcmp(desc
->name
, BLOCK_OPT_REFCOUNT_BITS
)) {
5467 refcount_bits
= qemu_opt_get_number(opts
, BLOCK_OPT_REFCOUNT_BITS
,
5470 if (refcount_bits
<= 0 || refcount_bits
> 64 ||
5471 !is_power_of_2(refcount_bits
))
5473 error_setg(errp
, "Refcount width must be a power of two and "
5474 "may not exceed 64 bits");
5477 } else if (!strcmp(desc
->name
, BLOCK_OPT_DATA_FILE
)) {
5478 data_file
= qemu_opt_get(opts
, BLOCK_OPT_DATA_FILE
);
5479 if (data_file
&& !has_data_file(bs
)) {
5480 error_setg(errp
, "data-file can only be set for images that "
5481 "use an external data file");
5484 } else if (!strcmp(desc
->name
, BLOCK_OPT_DATA_FILE_RAW
)) {
5485 data_file_raw
= qemu_opt_get_bool(opts
, BLOCK_OPT_DATA_FILE_RAW
,
5487 if (data_file_raw
&& !data_file_is_raw(bs
)) {
5488 error_setg(errp
, "data-file-raw cannot be set on existing "
5493 /* if this point is reached, this probably means a new option was
5494 * added without having it covered here */
5501 helper_cb_info
= (Qcow2AmendHelperCBInfo
){
5502 .original_status_cb
= status_cb
,
5503 .original_cb_opaque
= cb_opaque
,
5504 .total_operations
= (new_version
!= old_version
)
5505 + (s
->refcount_bits
!= refcount_bits
) +
5506 (encryption_update
== true)
5509 /* Upgrade first (some features may require compat=1.1) */
5510 if (new_version
> old_version
) {
5511 helper_cb_info
.current_operation
= QCOW2_UPGRADING
;
5512 ret
= qcow2_upgrade(bs
, new_version
, &qcow2_amend_helper_cb
,
5513 &helper_cb_info
, errp
);
5519 if (encryption_update
) {
5520 QDict
*amend_opts_dict
;
5521 QCryptoBlockAmendOptions
*amend_opts
;
5523 helper_cb_info
.current_operation
= QCOW2_UPDATING_ENCRYPTION
;
5524 amend_opts_dict
= qcow2_extract_crypto_opts(opts
, "luks", errp
);
5525 if (!amend_opts_dict
) {
5528 amend_opts
= block_crypto_amend_opts_init(amend_opts_dict
, errp
);
5529 qobject_unref(amend_opts_dict
);
5533 ret
= qcrypto_block_amend_options(s
->crypto
,
5534 qcow2_crypto_hdr_read_func
,
5535 qcow2_crypto_hdr_write_func
,
5540 qapi_free_QCryptoBlockAmendOptions(amend_opts
);
5546 if (s
->refcount_bits
!= refcount_bits
) {
5547 int refcount_order
= ctz32(refcount_bits
);
5549 if (new_version
< 3 && refcount_bits
!= 16) {
5550 error_setg(errp
, "Refcount widths other than 16 bits require "
5551 "compatibility level 1.1 or above (use compat=1.1 or "
5556 helper_cb_info
.current_operation
= QCOW2_CHANGING_REFCOUNT_ORDER
;
5557 ret
= qcow2_change_refcount_order(bs
, refcount_order
,
5558 &qcow2_amend_helper_cb
,
5559 &helper_cb_info
, errp
);
5565 /* data-file-raw blocks backing files, so clear it first if requested */
5566 if (data_file_raw
) {
5567 s
->autoclear_features
|= QCOW2_AUTOCLEAR_DATA_FILE_RAW
;
5569 s
->autoclear_features
&= ~QCOW2_AUTOCLEAR_DATA_FILE_RAW
;
5573 g_free(s
->image_data_file
);
5574 s
->image_data_file
= *data_file
? g_strdup(data_file
) : NULL
;
5577 ret
= qcow2_update_header(bs
);
5579 error_setg_errno(errp
, -ret
, "Failed to update the image header");
5583 if (backing_file
|| backing_format
) {
5584 if (g_strcmp0(backing_file
, s
->image_backing_file
) ||
5585 g_strcmp0(backing_format
, s
->image_backing_format
)) {
5586 warn_report("Deprecated use of amend to alter the backing file; "
5587 "use qemu-img rebase instead");
5589 ret
= qcow2_change_backing_file(bs
,
5590 backing_file
?: s
->image_backing_file
,
5591 backing_format
?: s
->image_backing_format
);
5593 error_setg_errno(errp
, -ret
, "Failed to change the backing file");
5598 if (s
->use_lazy_refcounts
!= lazy_refcounts
) {
5599 if (lazy_refcounts
) {
5600 if (new_version
< 3) {
5601 error_setg(errp
, "Lazy refcounts only supported with "
5602 "compatibility level 1.1 and above (use compat=1.1 "
5606 s
->compatible_features
|= QCOW2_COMPAT_LAZY_REFCOUNTS
;
5607 ret
= qcow2_update_header(bs
);
5609 s
->compatible_features
&= ~QCOW2_COMPAT_LAZY_REFCOUNTS
;
5610 error_setg_errno(errp
, -ret
, "Failed to update the image header");
5613 s
->use_lazy_refcounts
= true;
5615 /* make image clean first */
5616 ret
= qcow2_mark_clean(bs
);
5618 error_setg_errno(errp
, -ret
, "Failed to make the image clean");
5621 /* now disallow lazy refcounts */
5622 s
->compatible_features
&= ~QCOW2_COMPAT_LAZY_REFCOUNTS
;
5623 ret
= qcow2_update_header(bs
);
5625 s
->compatible_features
|= QCOW2_COMPAT_LAZY_REFCOUNTS
;
5626 error_setg_errno(errp
, -ret
, "Failed to update the image header");
5629 s
->use_lazy_refcounts
= false;
5634 BlockBackend
*blk
= blk_new_with_bs(bs
, BLK_PERM_RESIZE
, BLK_PERM_ALL
,
5641 * Amending image options should ensure that the image has
5642 * exactly the given new values, so pass exact=true here.
5644 ret
= blk_truncate(blk
, new_size
, true, PREALLOC_MODE_OFF
, 0, errp
);
5651 /* Downgrade last (so unsupported features can be removed before) */
5652 if (new_version
< old_version
) {
5653 helper_cb_info
.current_operation
= QCOW2_DOWNGRADING
;
5654 ret
= qcow2_downgrade(bs
, new_version
, &qcow2_amend_helper_cb
,
5655 &helper_cb_info
, errp
);
5664 static int coroutine_fn
qcow2_co_amend(BlockDriverState
*bs
,
5665 BlockdevAmendOptions
*opts
,
5669 BlockdevAmendOptionsQcow2
*qopts
= &opts
->u
.qcow2
;
5670 BDRVQcow2State
*s
= bs
->opaque
;
5673 if (qopts
->has_encrypt
) {
5675 error_setg(errp
, "image is not encrypted, can't amend");
5679 if (qopts
->encrypt
->format
!= Q_CRYPTO_BLOCK_FORMAT_LUKS
) {
5681 "Amend can't be used to change the qcow2 encryption format");
5685 if (s
->crypt_method_header
!= QCOW_CRYPT_LUKS
) {
5687 "Only LUKS encryption options can be amended for qcow2 with blockdev-amend");
5691 ret
= qcrypto_block_amend_options(s
->crypto
,
5692 qcow2_crypto_hdr_read_func
,
5693 qcow2_crypto_hdr_write_func
,
5703 * If offset or size are negative, respectively, they will not be included in
5704 * the BLOCK_IMAGE_CORRUPTED event emitted.
5705 * fatal will be ignored for read-only BDS; corruptions found there will always
5706 * be considered non-fatal.
5708 void qcow2_signal_corruption(BlockDriverState
*bs
, bool fatal
, int64_t offset
,
5709 int64_t size
, const char *message_format
, ...)
5711 BDRVQcow2State
*s
= bs
->opaque
;
5712 const char *node_name
;
5716 fatal
= fatal
&& bdrv_is_writable(bs
);
5718 if (s
->signaled_corruption
&&
5719 (!fatal
|| (s
->incompatible_features
& QCOW2_INCOMPAT_CORRUPT
)))
5724 va_start(ap
, message_format
);
5725 message
= g_strdup_vprintf(message_format
, ap
);
5729 fprintf(stderr
, "qcow2: Marking image as corrupt: %s; further "
5730 "corruption events will be suppressed\n", message
);
5732 fprintf(stderr
, "qcow2: Image is corrupt: %s; further non-fatal "
5733 "corruption events will be suppressed\n", message
);
5736 node_name
= bdrv_get_node_name(bs
);
5737 qapi_event_send_block_image_corrupted(bdrv_get_device_name(bs
),
5738 *node_name
!= '\0', node_name
,
5739 message
, offset
>= 0, offset
,
5745 qcow2_mark_corrupt(bs
);
5746 bs
->drv
= NULL
; /* make BDS unusable */
5749 s
->signaled_corruption
= true;
5752 #define QCOW_COMMON_OPTIONS \
5754 .name = BLOCK_OPT_SIZE, \
5755 .type = QEMU_OPT_SIZE, \
5756 .help = "Virtual disk size" \
5759 .name = BLOCK_OPT_COMPAT_LEVEL, \
5760 .type = QEMU_OPT_STRING, \
5761 .help = "Compatibility level (v2 [0.10] or v3 [1.1])" \
5764 .name = BLOCK_OPT_BACKING_FILE, \
5765 .type = QEMU_OPT_STRING, \
5766 .help = "File name of a base image" \
5769 .name = BLOCK_OPT_BACKING_FMT, \
5770 .type = QEMU_OPT_STRING, \
5771 .help = "Image format of the base image" \
5774 .name = BLOCK_OPT_DATA_FILE, \
5775 .type = QEMU_OPT_STRING, \
5776 .help = "File name of an external data file" \
5779 .name = BLOCK_OPT_DATA_FILE_RAW, \
5780 .type = QEMU_OPT_BOOL, \
5781 .help = "The external data file must stay valid " \
5785 .name = BLOCK_OPT_LAZY_REFCOUNTS, \
5786 .type = QEMU_OPT_BOOL, \
5787 .help = "Postpone refcount updates", \
5788 .def_value_str = "off" \
5791 .name = BLOCK_OPT_REFCOUNT_BITS, \
5792 .type = QEMU_OPT_NUMBER, \
5793 .help = "Width of a reference count entry in bits", \
5794 .def_value_str = "16" \
5797 static QemuOptsList qcow2_create_opts
= {
5798 .name
= "qcow2-create-opts",
5799 .head
= QTAILQ_HEAD_INITIALIZER(qcow2_create_opts
.head
),
5802 .name
= BLOCK_OPT_ENCRYPT
, \
5803 .type
= QEMU_OPT_BOOL
, \
5804 .help
= "Encrypt the image with format 'aes'. (Deprecated " \
5805 "in favor of " BLOCK_OPT_ENCRYPT_FORMAT
"=aes)", \
5808 .name
= BLOCK_OPT_ENCRYPT_FORMAT
, \
5809 .type
= QEMU_OPT_STRING
, \
5810 .help
= "Encrypt the image, format choices: 'aes', 'luks'", \
5812 BLOCK_CRYPTO_OPT_DEF_KEY_SECRET("encrypt.", \
5813 "ID of secret providing qcow AES key or LUKS passphrase"), \
5814 BLOCK_CRYPTO_OPT_DEF_LUKS_CIPHER_ALG("encrypt."), \
5815 BLOCK_CRYPTO_OPT_DEF_LUKS_CIPHER_MODE("encrypt."), \
5816 BLOCK_CRYPTO_OPT_DEF_LUKS_IVGEN_ALG("encrypt."), \
5817 BLOCK_CRYPTO_OPT_DEF_LUKS_IVGEN_HASH_ALG("encrypt."), \
5818 BLOCK_CRYPTO_OPT_DEF_LUKS_HASH_ALG("encrypt."), \
5819 BLOCK_CRYPTO_OPT_DEF_LUKS_ITER_TIME("encrypt."), \
5821 .name
= BLOCK_OPT_CLUSTER_SIZE
, \
5822 .type
= QEMU_OPT_SIZE
, \
5823 .help
= "qcow2 cluster size", \
5824 .def_value_str
= stringify(DEFAULT_CLUSTER_SIZE
) \
5827 .name
= BLOCK_OPT_EXTL2
, \
5828 .type
= QEMU_OPT_BOOL
, \
5829 .help
= "Extended L2 tables", \
5830 .def_value_str
= "off" \
5833 .name
= BLOCK_OPT_PREALLOC
, \
5834 .type
= QEMU_OPT_STRING
, \
5835 .help
= "Preallocation mode (allowed values: off, " \
5836 "metadata, falloc, full)" \
5839 .name
= BLOCK_OPT_COMPRESSION_TYPE
, \
5840 .type
= QEMU_OPT_STRING
, \
5841 .help
= "Compression method used for image cluster " \
5843 .def_value_str
= "zlib" \
5845 QCOW_COMMON_OPTIONS
,
5846 { /* end of list */ }
5850 static QemuOptsList qcow2_amend_opts
= {
5851 .name
= "qcow2-amend-opts",
5852 .head
= QTAILQ_HEAD_INITIALIZER(qcow2_amend_opts
.head
),
5854 BLOCK_CRYPTO_OPT_DEF_LUKS_STATE("encrypt."),
5855 BLOCK_CRYPTO_OPT_DEF_LUKS_KEYSLOT("encrypt."),
5856 BLOCK_CRYPTO_OPT_DEF_LUKS_OLD_SECRET("encrypt."),
5857 BLOCK_CRYPTO_OPT_DEF_LUKS_NEW_SECRET("encrypt."),
5858 BLOCK_CRYPTO_OPT_DEF_LUKS_ITER_TIME("encrypt."),
5859 QCOW_COMMON_OPTIONS
,
5860 { /* end of list */ }
5864 static const char *const qcow2_strong_runtime_opts
[] = {
5865 "encrypt." BLOCK_CRYPTO_OPT_QCOW_KEY_SECRET
,
5870 BlockDriver bdrv_qcow2
= {
5871 .format_name
= "qcow2",
5872 .instance_size
= sizeof(BDRVQcow2State
),
5873 .bdrv_probe
= qcow2_probe
,
5874 .bdrv_open
= qcow2_open
,
5875 .bdrv_close
= qcow2_close
,
5876 .bdrv_reopen_prepare
= qcow2_reopen_prepare
,
5877 .bdrv_reopen_commit
= qcow2_reopen_commit
,
5878 .bdrv_reopen_commit_post
= qcow2_reopen_commit_post
,
5879 .bdrv_reopen_abort
= qcow2_reopen_abort
,
5880 .bdrv_join_options
= qcow2_join_options
,
5881 .bdrv_child_perm
= bdrv_default_perms
,
5882 .bdrv_co_create_opts
= qcow2_co_create_opts
,
5883 .bdrv_co_create
= qcow2_co_create
,
5884 .bdrv_has_zero_init
= qcow2_has_zero_init
,
5885 .bdrv_co_block_status
= qcow2_co_block_status
,
5887 .bdrv_co_preadv_part
= qcow2_co_preadv_part
,
5888 .bdrv_co_pwritev_part
= qcow2_co_pwritev_part
,
5889 .bdrv_co_flush_to_os
= qcow2_co_flush_to_os
,
5891 .bdrv_co_pwrite_zeroes
= qcow2_co_pwrite_zeroes
,
5892 .bdrv_co_pdiscard
= qcow2_co_pdiscard
,
5893 .bdrv_co_copy_range_from
= qcow2_co_copy_range_from
,
5894 .bdrv_co_copy_range_to
= qcow2_co_copy_range_to
,
5895 .bdrv_co_truncate
= qcow2_co_truncate
,
5896 .bdrv_co_pwritev_compressed_part
= qcow2_co_pwritev_compressed_part
,
5897 .bdrv_make_empty
= qcow2_make_empty
,
5899 .bdrv_snapshot_create
= qcow2_snapshot_create
,
5900 .bdrv_snapshot_goto
= qcow2_snapshot_goto
,
5901 .bdrv_snapshot_delete
= qcow2_snapshot_delete
,
5902 .bdrv_snapshot_list
= qcow2_snapshot_list
,
5903 .bdrv_snapshot_load_tmp
= qcow2_snapshot_load_tmp
,
5904 .bdrv_measure
= qcow2_measure
,
5905 .bdrv_get_info
= qcow2_get_info
,
5906 .bdrv_get_specific_info
= qcow2_get_specific_info
,
5908 .bdrv_save_vmstate
= qcow2_save_vmstate
,
5909 .bdrv_load_vmstate
= qcow2_load_vmstate
,
5912 .supports_backing
= true,
5913 .bdrv_change_backing_file
= qcow2_change_backing_file
,
5915 .bdrv_refresh_limits
= qcow2_refresh_limits
,
5916 .bdrv_co_invalidate_cache
= qcow2_co_invalidate_cache
,
5917 .bdrv_inactivate
= qcow2_inactivate
,
5919 .create_opts
= &qcow2_create_opts
,
5920 .amend_opts
= &qcow2_amend_opts
,
5921 .strong_runtime_opts
= qcow2_strong_runtime_opts
,
5922 .mutable_opts
= mutable_opts
,
5923 .bdrv_co_check
= qcow2_co_check
,
5924 .bdrv_amend_options
= qcow2_amend_options
,
5925 .bdrv_co_amend
= qcow2_co_amend
,
5927 .bdrv_detach_aio_context
= qcow2_detach_aio_context
,
5928 .bdrv_attach_aio_context
= qcow2_attach_aio_context
,
5930 .bdrv_supports_persistent_dirty_bitmap
=
5931 qcow2_supports_persistent_dirty_bitmap
,
5932 .bdrv_co_can_store_new_dirty_bitmap
= qcow2_co_can_store_new_dirty_bitmap
,
5933 .bdrv_co_remove_persistent_dirty_bitmap
=
5934 qcow2_co_remove_persistent_dirty_bitmap
,
5937 static void bdrv_qcow2_init(void)
5939 bdrv_register(&bdrv_qcow2
);
5942 block_init(bdrv_qcow2_init
);