xref: /openbmc/qemu/block/qcow2.c (revision 63186e56)
1 /*
2  * Block driver for the QCOW version 2 format
3  *
4  * Copyright (c) 2004-2006 Fabrice Bellard
5  *
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:
12  *
13  * The above copyright notice and this permission notice shall be included in
14  * all copies or substantial portions of the Software.
15  *
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
22  * THE SOFTWARE.
23  */
24 #include "qemu-common.h"
25 #include "block_int.h"
26 #include "module.h"
27 #include <zlib.h>
28 #include "aes.h"
29 #include "block/qcow2.h"
30 #include "qemu-error.h"
31 #include "qerror.h"
32 #include "trace.h"
33 
34 /*
35   Differences with QCOW:
36 
37   - Support for multiple incremental snapshots.
38   - Memory management by reference counts.
39   - Clusters which have a reference count of one have the bit
40     QCOW_OFLAG_COPIED to optimize write performance.
41   - Size of compressed clusters is stored in sectors to reduce bit usage
42     in the cluster offsets.
43   - Support for storing additional data (such as the VM state) in the
44     snapshots.
45   - If a backing store is used, the cluster size is not constrained
46     (could be backported to QCOW).
47   - L2 tables have always a size of one cluster.
48 */
49 
50 
51 typedef struct {
52     uint32_t magic;
53     uint32_t len;
54 } QCowExtension;
55 
56 #define  QCOW2_EXT_MAGIC_END 0
57 #define  QCOW2_EXT_MAGIC_BACKING_FORMAT 0xE2792ACA
58 #define  QCOW2_EXT_MAGIC_FEATURE_TABLE 0x6803f857
59 
60 static int qcow2_probe(const uint8_t *buf, int buf_size, const char *filename)
61 {
62     const QCowHeader *cow_header = (const void *)buf;
63 
64     if (buf_size >= sizeof(QCowHeader) &&
65         be32_to_cpu(cow_header->magic) == QCOW_MAGIC &&
66         be32_to_cpu(cow_header->version) >= 2)
67         return 100;
68     else
69         return 0;
70 }
71 
72 
73 /*
74  * read qcow2 extension and fill bs
75  * start reading from start_offset
76  * finish reading upon magic of value 0 or when end_offset reached
77  * unknown magic is skipped (future extension this version knows nothing about)
78  * return 0 upon success, non-0 otherwise
79  */
80 static int qcow2_read_extensions(BlockDriverState *bs, uint64_t start_offset,
81                                  uint64_t end_offset, void **p_feature_table)
82 {
83     BDRVQcowState *s = bs->opaque;
84     QCowExtension ext;
85     uint64_t offset;
86     int ret;
87 
88 #ifdef DEBUG_EXT
89     printf("qcow2_read_extensions: start=%ld end=%ld\n", start_offset, end_offset);
90 #endif
91     offset = start_offset;
92     while (offset < end_offset) {
93 
94 #ifdef DEBUG_EXT
95         /* Sanity check */
96         if (offset > s->cluster_size)
97             printf("qcow2_read_extension: suspicious offset %lu\n", offset);
98 
99         printf("attempting to read extended header in offset %lu\n", offset);
100 #endif
101 
102         if (bdrv_pread(bs->file, offset, &ext, sizeof(ext)) != sizeof(ext)) {
103             fprintf(stderr, "qcow2_read_extension: ERROR: "
104                     "pread fail from offset %" PRIu64 "\n",
105                     offset);
106             return 1;
107         }
108         be32_to_cpus(&ext.magic);
109         be32_to_cpus(&ext.len);
110         offset += sizeof(ext);
111 #ifdef DEBUG_EXT
112         printf("ext.magic = 0x%x\n", ext.magic);
113 #endif
114         if (ext.len > end_offset - offset) {
115             error_report("Header extension too large");
116             return -EINVAL;
117         }
118 
119         switch (ext.magic) {
120         case QCOW2_EXT_MAGIC_END:
121             return 0;
122 
123         case QCOW2_EXT_MAGIC_BACKING_FORMAT:
124             if (ext.len >= sizeof(bs->backing_format)) {
125                 fprintf(stderr, "ERROR: ext_backing_format: len=%u too large"
126                         " (>=%zu)\n",
127                         ext.len, sizeof(bs->backing_format));
128                 return 2;
129             }
130             if (bdrv_pread(bs->file, offset , bs->backing_format,
131                            ext.len) != ext.len)
132                 return 3;
133             bs->backing_format[ext.len] = '\0';
134 #ifdef DEBUG_EXT
135             printf("Qcow2: Got format extension %s\n", bs->backing_format);
136 #endif
137             break;
138 
139         case QCOW2_EXT_MAGIC_FEATURE_TABLE:
140             if (p_feature_table != NULL) {
141                 void* feature_table = g_malloc0(ext.len + 2 * sizeof(Qcow2Feature));
142                 ret = bdrv_pread(bs->file, offset , feature_table, ext.len);
143                 if (ret < 0) {
144                     return ret;
145                 }
146 
147                 *p_feature_table = feature_table;
148             }
149             break;
150 
151         default:
152             /* unknown magic - save it in case we need to rewrite the header */
153             {
154                 Qcow2UnknownHeaderExtension *uext;
155 
156                 uext = g_malloc0(sizeof(*uext)  + ext.len);
157                 uext->magic = ext.magic;
158                 uext->len = ext.len;
159                 QLIST_INSERT_HEAD(&s->unknown_header_ext, uext, next);
160 
161                 ret = bdrv_pread(bs->file, offset , uext->data, uext->len);
162                 if (ret < 0) {
163                     return ret;
164                 }
165             }
166             break;
167         }
168 
169         offset += ((ext.len + 7) & ~7);
170     }
171 
172     return 0;
173 }
174 
175 static void cleanup_unknown_header_ext(BlockDriverState *bs)
176 {
177     BDRVQcowState *s = bs->opaque;
178     Qcow2UnknownHeaderExtension *uext, *next;
179 
180     QLIST_FOREACH_SAFE(uext, &s->unknown_header_ext, next, next) {
181         QLIST_REMOVE(uext, next);
182         g_free(uext);
183     }
184 }
185 
186 static void GCC_FMT_ATTR(2, 3) report_unsupported(BlockDriverState *bs,
187     const char *fmt, ...)
188 {
189     char msg[64];
190     va_list ap;
191 
192     va_start(ap, fmt);
193     vsnprintf(msg, sizeof(msg), fmt, ap);
194     va_end(ap);
195 
196     qerror_report(QERR_UNKNOWN_BLOCK_FORMAT_FEATURE,
197         bs->device_name, "qcow2", msg);
198 }
199 
200 static void report_unsupported_feature(BlockDriverState *bs,
201     Qcow2Feature *table, uint64_t mask)
202 {
203     while (table && table->name[0] != '\0') {
204         if (table->type == QCOW2_FEAT_TYPE_INCOMPATIBLE) {
205             if (mask & (1 << table->bit)) {
206                 report_unsupported(bs, "%.46s",table->name);
207                 mask &= ~(1 << table->bit);
208             }
209         }
210         table++;
211     }
212 
213     if (mask) {
214         report_unsupported(bs, "Unknown incompatible feature: %" PRIx64, mask);
215     }
216 }
217 
218 /*
219  * Sets the dirty bit and flushes afterwards if necessary.
220  *
221  * The incompatible_features bit is only set if the image file header was
222  * updated successfully.  Therefore it is not required to check the return
223  * value of this function.
224  */
225 static int qcow2_mark_dirty(BlockDriverState *bs)
226 {
227     BDRVQcowState *s = bs->opaque;
228     uint64_t val;
229     int ret;
230 
231     assert(s->qcow_version >= 3);
232 
233     if (s->incompatible_features & QCOW2_INCOMPAT_DIRTY) {
234         return 0; /* already dirty */
235     }
236 
237     val = cpu_to_be64(s->incompatible_features | QCOW2_INCOMPAT_DIRTY);
238     ret = bdrv_pwrite(bs->file, offsetof(QCowHeader, incompatible_features),
239                       &val, sizeof(val));
240     if (ret < 0) {
241         return ret;
242     }
243     ret = bdrv_flush(bs->file);
244     if (ret < 0) {
245         return ret;
246     }
247 
248     /* Only treat image as dirty if the header was updated successfully */
249     s->incompatible_features |= QCOW2_INCOMPAT_DIRTY;
250     return 0;
251 }
252 
253 /*
254  * Clears the dirty bit and flushes before if necessary.  Only call this
255  * function when there are no pending requests, it does not guard against
256  * concurrent requests dirtying the image.
257  */
258 static int qcow2_mark_clean(BlockDriverState *bs)
259 {
260     BDRVQcowState *s = bs->opaque;
261 
262     if (s->incompatible_features & QCOW2_INCOMPAT_DIRTY) {
263         int ret = bdrv_flush(bs);
264         if (ret < 0) {
265             return ret;
266         }
267 
268         s->incompatible_features &= ~QCOW2_INCOMPAT_DIRTY;
269         return qcow2_update_header(bs);
270     }
271     return 0;
272 }
273 
274 static int qcow2_check(BlockDriverState *bs, BdrvCheckResult *result,
275                        BdrvCheckMode fix)
276 {
277     int ret = qcow2_check_refcounts(bs, result, fix);
278     if (ret < 0) {
279         return ret;
280     }
281 
282     if (fix && result->check_errors == 0 && result->corruptions == 0) {
283         return qcow2_mark_clean(bs);
284     }
285     return ret;
286 }
287 
288 static int qcow2_open(BlockDriverState *bs, int flags)
289 {
290     BDRVQcowState *s = bs->opaque;
291     int len, i, ret = 0;
292     QCowHeader header;
293     uint64_t ext_end;
294 
295     ret = bdrv_pread(bs->file, 0, &header, sizeof(header));
296     if (ret < 0) {
297         goto fail;
298     }
299     be32_to_cpus(&header.magic);
300     be32_to_cpus(&header.version);
301     be64_to_cpus(&header.backing_file_offset);
302     be32_to_cpus(&header.backing_file_size);
303     be64_to_cpus(&header.size);
304     be32_to_cpus(&header.cluster_bits);
305     be32_to_cpus(&header.crypt_method);
306     be64_to_cpus(&header.l1_table_offset);
307     be32_to_cpus(&header.l1_size);
308     be64_to_cpus(&header.refcount_table_offset);
309     be32_to_cpus(&header.refcount_table_clusters);
310     be64_to_cpus(&header.snapshots_offset);
311     be32_to_cpus(&header.nb_snapshots);
312 
313     if (header.magic != QCOW_MAGIC) {
314         ret = -EINVAL;
315         goto fail;
316     }
317     if (header.version < 2 || header.version > 3) {
318         report_unsupported(bs, "QCOW version %d", header.version);
319         ret = -ENOTSUP;
320         goto fail;
321     }
322 
323     s->qcow_version = header.version;
324 
325     /* Initialise version 3 header fields */
326     if (header.version == 2) {
327         header.incompatible_features    = 0;
328         header.compatible_features      = 0;
329         header.autoclear_features       = 0;
330         header.refcount_order           = 4;
331         header.header_length            = 72;
332     } else {
333         be64_to_cpus(&header.incompatible_features);
334         be64_to_cpus(&header.compatible_features);
335         be64_to_cpus(&header.autoclear_features);
336         be32_to_cpus(&header.refcount_order);
337         be32_to_cpus(&header.header_length);
338     }
339 
340     if (header.header_length > sizeof(header)) {
341         s->unknown_header_fields_size = header.header_length - sizeof(header);
342         s->unknown_header_fields = g_malloc(s->unknown_header_fields_size);
343         ret = bdrv_pread(bs->file, sizeof(header), s->unknown_header_fields,
344                          s->unknown_header_fields_size);
345         if (ret < 0) {
346             goto fail;
347         }
348     }
349 
350     if (header.backing_file_offset) {
351         ext_end = header.backing_file_offset;
352     } else {
353         ext_end = 1 << header.cluster_bits;
354     }
355 
356     /* Handle feature bits */
357     s->incompatible_features    = header.incompatible_features;
358     s->compatible_features      = header.compatible_features;
359     s->autoclear_features       = header.autoclear_features;
360 
361     if (s->incompatible_features & ~QCOW2_INCOMPAT_MASK) {
362         void *feature_table = NULL;
363         qcow2_read_extensions(bs, header.header_length, ext_end,
364                               &feature_table);
365         report_unsupported_feature(bs, feature_table,
366                                    s->incompatible_features &
367                                    ~QCOW2_INCOMPAT_MASK);
368         ret = -ENOTSUP;
369         goto fail;
370     }
371 
372     /* Check support for various header values */
373     if (header.refcount_order != 4) {
374         report_unsupported(bs, "%d bit reference counts",
375                            1 << header.refcount_order);
376         ret = -ENOTSUP;
377         goto fail;
378     }
379 
380     if (header.cluster_bits < MIN_CLUSTER_BITS ||
381         header.cluster_bits > MAX_CLUSTER_BITS) {
382         ret = -EINVAL;
383         goto fail;
384     }
385     if (header.crypt_method > QCOW_CRYPT_AES) {
386         ret = -EINVAL;
387         goto fail;
388     }
389     s->crypt_method_header = header.crypt_method;
390     if (s->crypt_method_header) {
391         bs->encrypted = 1;
392     }
393     s->cluster_bits = header.cluster_bits;
394     s->cluster_size = 1 << s->cluster_bits;
395     s->cluster_sectors = 1 << (s->cluster_bits - 9);
396     s->l2_bits = s->cluster_bits - 3; /* L2 is always one cluster */
397     s->l2_size = 1 << s->l2_bits;
398     bs->total_sectors = header.size / 512;
399     s->csize_shift = (62 - (s->cluster_bits - 8));
400     s->csize_mask = (1 << (s->cluster_bits - 8)) - 1;
401     s->cluster_offset_mask = (1LL << s->csize_shift) - 1;
402     s->refcount_table_offset = header.refcount_table_offset;
403     s->refcount_table_size =
404         header.refcount_table_clusters << (s->cluster_bits - 3);
405 
406     s->snapshots_offset = header.snapshots_offset;
407     s->nb_snapshots = header.nb_snapshots;
408 
409     /* read the level 1 table */
410     s->l1_size = header.l1_size;
411     s->l1_vm_state_index = size_to_l1(s, header.size);
412     /* the L1 table must contain at least enough entries to put
413        header.size bytes */
414     if (s->l1_size < s->l1_vm_state_index) {
415         ret = -EINVAL;
416         goto fail;
417     }
418     s->l1_table_offset = header.l1_table_offset;
419     if (s->l1_size > 0) {
420         s->l1_table = g_malloc0(
421             align_offset(s->l1_size * sizeof(uint64_t), 512));
422         ret = bdrv_pread(bs->file, s->l1_table_offset, s->l1_table,
423                          s->l1_size * sizeof(uint64_t));
424         if (ret < 0) {
425             goto fail;
426         }
427         for(i = 0;i < s->l1_size; i++) {
428             be64_to_cpus(&s->l1_table[i]);
429         }
430     }
431 
432     /* alloc L2 table/refcount block cache */
433     s->l2_table_cache = qcow2_cache_create(bs, L2_CACHE_SIZE);
434     s->refcount_block_cache = qcow2_cache_create(bs, REFCOUNT_CACHE_SIZE);
435 
436     s->cluster_cache = g_malloc(s->cluster_size);
437     /* one more sector for decompressed data alignment */
438     s->cluster_data = qemu_blockalign(bs, QCOW_MAX_CRYPT_CLUSTERS * s->cluster_size
439                                   + 512);
440     s->cluster_cache_offset = -1;
441     s->flags = flags;
442 
443     ret = qcow2_refcount_init(bs);
444     if (ret != 0) {
445         goto fail;
446     }
447 
448     QLIST_INIT(&s->cluster_allocs);
449 
450     /* read qcow2 extensions */
451     if (qcow2_read_extensions(bs, header.header_length, ext_end, NULL)) {
452         ret = -EINVAL;
453         goto fail;
454     }
455 
456     /* read the backing file name */
457     if (header.backing_file_offset != 0) {
458         len = header.backing_file_size;
459         if (len > 1023) {
460             len = 1023;
461         }
462         ret = bdrv_pread(bs->file, header.backing_file_offset,
463                          bs->backing_file, len);
464         if (ret < 0) {
465             goto fail;
466         }
467         bs->backing_file[len] = '\0';
468     }
469 
470     ret = qcow2_read_snapshots(bs);
471     if (ret < 0) {
472         goto fail;
473     }
474 
475     /* Clear unknown autoclear feature bits */
476     if (!bs->read_only && s->autoclear_features != 0) {
477         s->autoclear_features = 0;
478         ret = qcow2_update_header(bs);
479         if (ret < 0) {
480             goto fail;
481         }
482     }
483 
484     /* Initialise locks */
485     qemu_co_mutex_init(&s->lock);
486 
487     /* Repair image if dirty */
488     if (!(flags & BDRV_O_CHECK) && !bs->read_only &&
489         (s->incompatible_features & QCOW2_INCOMPAT_DIRTY)) {
490         BdrvCheckResult result = {0};
491 
492         ret = qcow2_check(bs, &result, BDRV_FIX_ERRORS);
493         if (ret < 0) {
494             goto fail;
495         }
496     }
497 
498 #ifdef DEBUG_ALLOC
499     {
500         BdrvCheckResult result = {0};
501         qcow2_check_refcounts(bs, &result, 0);
502     }
503 #endif
504     return ret;
505 
506  fail:
507     g_free(s->unknown_header_fields);
508     cleanup_unknown_header_ext(bs);
509     qcow2_free_snapshots(bs);
510     qcow2_refcount_close(bs);
511     g_free(s->l1_table);
512     if (s->l2_table_cache) {
513         qcow2_cache_destroy(bs, s->l2_table_cache);
514     }
515     g_free(s->cluster_cache);
516     qemu_vfree(s->cluster_data);
517     return ret;
518 }
519 
520 static int qcow2_set_key(BlockDriverState *bs, const char *key)
521 {
522     BDRVQcowState *s = bs->opaque;
523     uint8_t keybuf[16];
524     int len, i;
525 
526     memset(keybuf, 0, 16);
527     len = strlen(key);
528     if (len > 16)
529         len = 16;
530     /* XXX: we could compress the chars to 7 bits to increase
531        entropy */
532     for(i = 0;i < len;i++) {
533         keybuf[i] = key[i];
534     }
535     s->crypt_method = s->crypt_method_header;
536 
537     if (AES_set_encrypt_key(keybuf, 128, &s->aes_encrypt_key) != 0)
538         return -1;
539     if (AES_set_decrypt_key(keybuf, 128, &s->aes_decrypt_key) != 0)
540         return -1;
541 #if 0
542     /* test */
543     {
544         uint8_t in[16];
545         uint8_t out[16];
546         uint8_t tmp[16];
547         for(i=0;i<16;i++)
548             in[i] = i;
549         AES_encrypt(in, tmp, &s->aes_encrypt_key);
550         AES_decrypt(tmp, out, &s->aes_decrypt_key);
551         for(i = 0; i < 16; i++)
552             printf(" %02x", tmp[i]);
553         printf("\n");
554         for(i = 0; i < 16; i++)
555             printf(" %02x", out[i]);
556         printf("\n");
557     }
558 #endif
559     return 0;
560 }
561 
562 /* We have nothing to do for QCOW2 reopen, stubs just return
563  * success */
564 static int qcow2_reopen_prepare(BDRVReopenState *state,
565                                 BlockReopenQueue *queue, Error **errp)
566 {
567     return 0;
568 }
569 
570 static int coroutine_fn qcow2_co_is_allocated(BlockDriverState *bs,
571         int64_t sector_num, int nb_sectors, int *pnum)
572 {
573     BDRVQcowState *s = bs->opaque;
574     uint64_t cluster_offset;
575     int ret;
576 
577     *pnum = nb_sectors;
578     /* FIXME We can get errors here, but the bdrv_co_is_allocated interface
579      * can't pass them on today */
580     qemu_co_mutex_lock(&s->lock);
581     ret = qcow2_get_cluster_offset(bs, sector_num << 9, pnum, &cluster_offset);
582     qemu_co_mutex_unlock(&s->lock);
583     if (ret < 0) {
584         *pnum = 0;
585     }
586 
587     return (cluster_offset != 0);
588 }
589 
590 /* handle reading after the end of the backing file */
591 int qcow2_backing_read1(BlockDriverState *bs, QEMUIOVector *qiov,
592                   int64_t sector_num, int nb_sectors)
593 {
594     int n1;
595     if ((sector_num + nb_sectors) <= bs->total_sectors)
596         return nb_sectors;
597     if (sector_num >= bs->total_sectors)
598         n1 = 0;
599     else
600         n1 = bs->total_sectors - sector_num;
601 
602     qemu_iovec_memset(qiov, 512 * n1, 0, 512 * (nb_sectors - n1));
603 
604     return n1;
605 }
606 
607 static coroutine_fn int qcow2_co_readv(BlockDriverState *bs, int64_t sector_num,
608                           int remaining_sectors, QEMUIOVector *qiov)
609 {
610     BDRVQcowState *s = bs->opaque;
611     int index_in_cluster, n1;
612     int ret;
613     int cur_nr_sectors; /* number of sectors in current iteration */
614     uint64_t cluster_offset = 0;
615     uint64_t bytes_done = 0;
616     QEMUIOVector hd_qiov;
617     uint8_t *cluster_data = NULL;
618 
619     qemu_iovec_init(&hd_qiov, qiov->niov);
620 
621     qemu_co_mutex_lock(&s->lock);
622 
623     while (remaining_sectors != 0) {
624 
625         /* prepare next request */
626         cur_nr_sectors = remaining_sectors;
627         if (s->crypt_method) {
628             cur_nr_sectors = MIN(cur_nr_sectors,
629                 QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors);
630         }
631 
632         ret = qcow2_get_cluster_offset(bs, sector_num << 9,
633             &cur_nr_sectors, &cluster_offset);
634         if (ret < 0) {
635             goto fail;
636         }
637 
638         index_in_cluster = sector_num & (s->cluster_sectors - 1);
639 
640         qemu_iovec_reset(&hd_qiov);
641         qemu_iovec_concat(&hd_qiov, qiov, bytes_done,
642             cur_nr_sectors * 512);
643 
644         switch (ret) {
645         case QCOW2_CLUSTER_UNALLOCATED:
646 
647             if (bs->backing_hd) {
648                 /* read from the base image */
649                 n1 = qcow2_backing_read1(bs->backing_hd, &hd_qiov,
650                     sector_num, cur_nr_sectors);
651                 if (n1 > 0) {
652                     BLKDBG_EVENT(bs->file, BLKDBG_READ_BACKING_AIO);
653                     qemu_co_mutex_unlock(&s->lock);
654                     ret = bdrv_co_readv(bs->backing_hd, sector_num,
655                                         n1, &hd_qiov);
656                     qemu_co_mutex_lock(&s->lock);
657                     if (ret < 0) {
658                         goto fail;
659                     }
660                 }
661             } else {
662                 /* Note: in this case, no need to wait */
663                 qemu_iovec_memset(&hd_qiov, 0, 0, 512 * cur_nr_sectors);
664             }
665             break;
666 
667         case QCOW2_CLUSTER_ZERO:
668             if (s->qcow_version < 3) {
669                 ret = -EIO;
670                 goto fail;
671             }
672             qemu_iovec_memset(&hd_qiov, 0, 0, 512 * cur_nr_sectors);
673             break;
674 
675         case QCOW2_CLUSTER_COMPRESSED:
676             /* add AIO support for compressed blocks ? */
677             ret = qcow2_decompress_cluster(bs, cluster_offset);
678             if (ret < 0) {
679                 goto fail;
680             }
681 
682             qemu_iovec_from_buf(&hd_qiov, 0,
683                 s->cluster_cache + index_in_cluster * 512,
684                 512 * cur_nr_sectors);
685             break;
686 
687         case QCOW2_CLUSTER_NORMAL:
688             if ((cluster_offset & 511) != 0) {
689                 ret = -EIO;
690                 goto fail;
691             }
692 
693             if (s->crypt_method) {
694                 /*
695                  * For encrypted images, read everything into a temporary
696                  * contiguous buffer on which the AES functions can work.
697                  */
698                 if (!cluster_data) {
699                     cluster_data =
700                         qemu_blockalign(bs, QCOW_MAX_CRYPT_CLUSTERS * s->cluster_size);
701                 }
702 
703                 assert(cur_nr_sectors <=
704                     QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors);
705                 qemu_iovec_reset(&hd_qiov);
706                 qemu_iovec_add(&hd_qiov, cluster_data,
707                     512 * cur_nr_sectors);
708             }
709 
710             BLKDBG_EVENT(bs->file, BLKDBG_READ_AIO);
711             qemu_co_mutex_unlock(&s->lock);
712             ret = bdrv_co_readv(bs->file,
713                                 (cluster_offset >> 9) + index_in_cluster,
714                                 cur_nr_sectors, &hd_qiov);
715             qemu_co_mutex_lock(&s->lock);
716             if (ret < 0) {
717                 goto fail;
718             }
719             if (s->crypt_method) {
720                 qcow2_encrypt_sectors(s, sector_num,  cluster_data,
721                     cluster_data, cur_nr_sectors, 0, &s->aes_decrypt_key);
722                 qemu_iovec_from_buf(qiov, bytes_done,
723                     cluster_data, 512 * cur_nr_sectors);
724             }
725             break;
726 
727         default:
728             g_assert_not_reached();
729             ret = -EIO;
730             goto fail;
731         }
732 
733         remaining_sectors -= cur_nr_sectors;
734         sector_num += cur_nr_sectors;
735         bytes_done += cur_nr_sectors * 512;
736     }
737     ret = 0;
738 
739 fail:
740     qemu_co_mutex_unlock(&s->lock);
741 
742     qemu_iovec_destroy(&hd_qiov);
743     qemu_vfree(cluster_data);
744 
745     return ret;
746 }
747 
748 static void run_dependent_requests(BDRVQcowState *s, QCowL2Meta *m)
749 {
750     /* Take the request off the list of running requests */
751     if (m->nb_clusters != 0) {
752         QLIST_REMOVE(m, next_in_flight);
753     }
754 
755     /* Restart all dependent requests */
756     if (!qemu_co_queue_empty(&m->dependent_requests)) {
757         qemu_co_mutex_unlock(&s->lock);
758         qemu_co_queue_restart_all(&m->dependent_requests);
759         qemu_co_mutex_lock(&s->lock);
760     }
761 }
762 
763 static coroutine_fn int qcow2_co_writev(BlockDriverState *bs,
764                            int64_t sector_num,
765                            int remaining_sectors,
766                            QEMUIOVector *qiov)
767 {
768     BDRVQcowState *s = bs->opaque;
769     int index_in_cluster;
770     int n_end;
771     int ret;
772     int cur_nr_sectors; /* number of sectors in current iteration */
773     uint64_t cluster_offset;
774     QEMUIOVector hd_qiov;
775     uint64_t bytes_done = 0;
776     uint8_t *cluster_data = NULL;
777     QCowL2Meta l2meta = {
778         .nb_clusters = 0,
779     };
780 
781     trace_qcow2_writev_start_req(qemu_coroutine_self(), sector_num,
782                                  remaining_sectors);
783 
784     qemu_co_queue_init(&l2meta.dependent_requests);
785 
786     qemu_iovec_init(&hd_qiov, qiov->niov);
787 
788     s->cluster_cache_offset = -1; /* disable compressed cache */
789 
790     qemu_co_mutex_lock(&s->lock);
791 
792     while (remaining_sectors != 0) {
793 
794         trace_qcow2_writev_start_part(qemu_coroutine_self());
795         index_in_cluster = sector_num & (s->cluster_sectors - 1);
796         n_end = index_in_cluster + remaining_sectors;
797         if (s->crypt_method &&
798             n_end > QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors) {
799             n_end = QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors;
800         }
801 
802         ret = qcow2_alloc_cluster_offset(bs, sector_num << 9,
803             index_in_cluster, n_end, &cur_nr_sectors, &l2meta);
804         if (ret < 0) {
805             goto fail;
806         }
807 
808         if (l2meta.nb_clusters > 0 &&
809             (s->compatible_features & QCOW2_COMPAT_LAZY_REFCOUNTS)) {
810             qcow2_mark_dirty(bs);
811         }
812 
813         cluster_offset = l2meta.cluster_offset;
814         assert((cluster_offset & 511) == 0);
815 
816         qemu_iovec_reset(&hd_qiov);
817         qemu_iovec_concat(&hd_qiov, qiov, bytes_done,
818             cur_nr_sectors * 512);
819 
820         if (s->crypt_method) {
821             if (!cluster_data) {
822                 cluster_data = qemu_blockalign(bs, QCOW_MAX_CRYPT_CLUSTERS *
823                                                  s->cluster_size);
824             }
825 
826             assert(hd_qiov.size <=
827                    QCOW_MAX_CRYPT_CLUSTERS * s->cluster_size);
828             qemu_iovec_to_buf(&hd_qiov, 0, cluster_data, hd_qiov.size);
829 
830             qcow2_encrypt_sectors(s, sector_num, cluster_data,
831                 cluster_data, cur_nr_sectors, 1, &s->aes_encrypt_key);
832 
833             qemu_iovec_reset(&hd_qiov);
834             qemu_iovec_add(&hd_qiov, cluster_data,
835                 cur_nr_sectors * 512);
836         }
837 
838         BLKDBG_EVENT(bs->file, BLKDBG_WRITE_AIO);
839         qemu_co_mutex_unlock(&s->lock);
840         trace_qcow2_writev_data(qemu_coroutine_self(),
841                                 (cluster_offset >> 9) + index_in_cluster);
842         ret = bdrv_co_writev(bs->file,
843                              (cluster_offset >> 9) + index_in_cluster,
844                              cur_nr_sectors, &hd_qiov);
845         qemu_co_mutex_lock(&s->lock);
846         if (ret < 0) {
847             goto fail;
848         }
849 
850         ret = qcow2_alloc_cluster_link_l2(bs, &l2meta);
851         if (ret < 0) {
852             goto fail;
853         }
854 
855         run_dependent_requests(s, &l2meta);
856 
857         remaining_sectors -= cur_nr_sectors;
858         sector_num += cur_nr_sectors;
859         bytes_done += cur_nr_sectors * 512;
860         trace_qcow2_writev_done_part(qemu_coroutine_self(), cur_nr_sectors);
861     }
862     ret = 0;
863 
864 fail:
865     run_dependent_requests(s, &l2meta);
866 
867     qemu_co_mutex_unlock(&s->lock);
868 
869     qemu_iovec_destroy(&hd_qiov);
870     qemu_vfree(cluster_data);
871     trace_qcow2_writev_done_req(qemu_coroutine_self(), ret);
872 
873     return ret;
874 }
875 
876 static void qcow2_close(BlockDriverState *bs)
877 {
878     BDRVQcowState *s = bs->opaque;
879     g_free(s->l1_table);
880 
881     qcow2_cache_flush(bs, s->l2_table_cache);
882     qcow2_cache_flush(bs, s->refcount_block_cache);
883 
884     qcow2_mark_clean(bs);
885 
886     qcow2_cache_destroy(bs, s->l2_table_cache);
887     qcow2_cache_destroy(bs, s->refcount_block_cache);
888 
889     g_free(s->unknown_header_fields);
890     cleanup_unknown_header_ext(bs);
891 
892     g_free(s->cluster_cache);
893     qemu_vfree(s->cluster_data);
894     qcow2_refcount_close(bs);
895     qcow2_free_snapshots(bs);
896 }
897 
898 static void qcow2_invalidate_cache(BlockDriverState *bs)
899 {
900     BDRVQcowState *s = bs->opaque;
901     int flags = s->flags;
902     AES_KEY aes_encrypt_key;
903     AES_KEY aes_decrypt_key;
904     uint32_t crypt_method = 0;
905 
906     /*
907      * Backing files are read-only which makes all of their metadata immutable,
908      * that means we don't have to worry about reopening them here.
909      */
910 
911     if (s->crypt_method) {
912         crypt_method = s->crypt_method;
913         memcpy(&aes_encrypt_key, &s->aes_encrypt_key, sizeof(aes_encrypt_key));
914         memcpy(&aes_decrypt_key, &s->aes_decrypt_key, sizeof(aes_decrypt_key));
915     }
916 
917     qcow2_close(bs);
918 
919     memset(s, 0, sizeof(BDRVQcowState));
920     qcow2_open(bs, flags);
921 
922     if (crypt_method) {
923         s->crypt_method = crypt_method;
924         memcpy(&s->aes_encrypt_key, &aes_encrypt_key, sizeof(aes_encrypt_key));
925         memcpy(&s->aes_decrypt_key, &aes_decrypt_key, sizeof(aes_decrypt_key));
926     }
927 }
928 
929 static size_t header_ext_add(char *buf, uint32_t magic, const void *s,
930     size_t len, size_t buflen)
931 {
932     QCowExtension *ext_backing_fmt = (QCowExtension*) buf;
933     size_t ext_len = sizeof(QCowExtension) + ((len + 7) & ~7);
934 
935     if (buflen < ext_len) {
936         return -ENOSPC;
937     }
938 
939     *ext_backing_fmt = (QCowExtension) {
940         .magic  = cpu_to_be32(magic),
941         .len    = cpu_to_be32(len),
942     };
943     memcpy(buf + sizeof(QCowExtension), s, len);
944 
945     return ext_len;
946 }
947 
948 /*
949  * Updates the qcow2 header, including the variable length parts of it, i.e.
950  * the backing file name and all extensions. qcow2 was not designed to allow
951  * such changes, so if we run out of space (we can only use the first cluster)
952  * this function may fail.
953  *
954  * Returns 0 on success, -errno in error cases.
955  */
956 int qcow2_update_header(BlockDriverState *bs)
957 {
958     BDRVQcowState *s = bs->opaque;
959     QCowHeader *header;
960     char *buf;
961     size_t buflen = s->cluster_size;
962     int ret;
963     uint64_t total_size;
964     uint32_t refcount_table_clusters;
965     size_t header_length;
966     Qcow2UnknownHeaderExtension *uext;
967 
968     buf = qemu_blockalign(bs, buflen);
969 
970     /* Header structure */
971     header = (QCowHeader*) buf;
972 
973     if (buflen < sizeof(*header)) {
974         ret = -ENOSPC;
975         goto fail;
976     }
977 
978     header_length = sizeof(*header) + s->unknown_header_fields_size;
979     total_size = bs->total_sectors * BDRV_SECTOR_SIZE;
980     refcount_table_clusters = s->refcount_table_size >> (s->cluster_bits - 3);
981 
982     *header = (QCowHeader) {
983         /* Version 2 fields */
984         .magic                  = cpu_to_be32(QCOW_MAGIC),
985         .version                = cpu_to_be32(s->qcow_version),
986         .backing_file_offset    = 0,
987         .backing_file_size      = 0,
988         .cluster_bits           = cpu_to_be32(s->cluster_bits),
989         .size                   = cpu_to_be64(total_size),
990         .crypt_method           = cpu_to_be32(s->crypt_method_header),
991         .l1_size                = cpu_to_be32(s->l1_size),
992         .l1_table_offset        = cpu_to_be64(s->l1_table_offset),
993         .refcount_table_offset  = cpu_to_be64(s->refcount_table_offset),
994         .refcount_table_clusters = cpu_to_be32(refcount_table_clusters),
995         .nb_snapshots           = cpu_to_be32(s->nb_snapshots),
996         .snapshots_offset       = cpu_to_be64(s->snapshots_offset),
997 
998         /* Version 3 fields */
999         .incompatible_features  = cpu_to_be64(s->incompatible_features),
1000         .compatible_features    = cpu_to_be64(s->compatible_features),
1001         .autoclear_features     = cpu_to_be64(s->autoclear_features),
1002         .refcount_order         = cpu_to_be32(3 + REFCOUNT_SHIFT),
1003         .header_length          = cpu_to_be32(header_length),
1004     };
1005 
1006     /* For older versions, write a shorter header */
1007     switch (s->qcow_version) {
1008     case 2:
1009         ret = offsetof(QCowHeader, incompatible_features);
1010         break;
1011     case 3:
1012         ret = sizeof(*header);
1013         break;
1014     default:
1015         ret = -EINVAL;
1016         goto fail;
1017     }
1018 
1019     buf += ret;
1020     buflen -= ret;
1021     memset(buf, 0, buflen);
1022 
1023     /* Preserve any unknown field in the header */
1024     if (s->unknown_header_fields_size) {
1025         if (buflen < s->unknown_header_fields_size) {
1026             ret = -ENOSPC;
1027             goto fail;
1028         }
1029 
1030         memcpy(buf, s->unknown_header_fields, s->unknown_header_fields_size);
1031         buf += s->unknown_header_fields_size;
1032         buflen -= s->unknown_header_fields_size;
1033     }
1034 
1035     /* Backing file format header extension */
1036     if (*bs->backing_format) {
1037         ret = header_ext_add(buf, QCOW2_EXT_MAGIC_BACKING_FORMAT,
1038                              bs->backing_format, strlen(bs->backing_format),
1039                              buflen);
1040         if (ret < 0) {
1041             goto fail;
1042         }
1043 
1044         buf += ret;
1045         buflen -= ret;
1046     }
1047 
1048     /* Feature table */
1049     Qcow2Feature features[] = {
1050         {
1051             .type = QCOW2_FEAT_TYPE_INCOMPATIBLE,
1052             .bit  = QCOW2_INCOMPAT_DIRTY_BITNR,
1053             .name = "dirty bit",
1054         },
1055         {
1056             .type = QCOW2_FEAT_TYPE_COMPATIBLE,
1057             .bit  = QCOW2_COMPAT_LAZY_REFCOUNTS_BITNR,
1058             .name = "lazy refcounts",
1059         },
1060     };
1061 
1062     ret = header_ext_add(buf, QCOW2_EXT_MAGIC_FEATURE_TABLE,
1063                          features, sizeof(features), buflen);
1064     if (ret < 0) {
1065         goto fail;
1066     }
1067     buf += ret;
1068     buflen -= ret;
1069 
1070     /* Keep unknown header extensions */
1071     QLIST_FOREACH(uext, &s->unknown_header_ext, next) {
1072         ret = header_ext_add(buf, uext->magic, uext->data, uext->len, buflen);
1073         if (ret < 0) {
1074             goto fail;
1075         }
1076 
1077         buf += ret;
1078         buflen -= ret;
1079     }
1080 
1081     /* End of header extensions */
1082     ret = header_ext_add(buf, QCOW2_EXT_MAGIC_END, NULL, 0, buflen);
1083     if (ret < 0) {
1084         goto fail;
1085     }
1086 
1087     buf += ret;
1088     buflen -= ret;
1089 
1090     /* Backing file name */
1091     if (*bs->backing_file) {
1092         size_t backing_file_len = strlen(bs->backing_file);
1093 
1094         if (buflen < backing_file_len) {
1095             ret = -ENOSPC;
1096             goto fail;
1097         }
1098 
1099         /* Using strncpy is ok here, since buf is not NUL-terminated. */
1100         strncpy(buf, bs->backing_file, buflen);
1101 
1102         header->backing_file_offset = cpu_to_be64(buf - ((char*) header));
1103         header->backing_file_size   = cpu_to_be32(backing_file_len);
1104     }
1105 
1106     /* Write the new header */
1107     ret = bdrv_pwrite(bs->file, 0, header, s->cluster_size);
1108     if (ret < 0) {
1109         goto fail;
1110     }
1111 
1112     ret = 0;
1113 fail:
1114     qemu_vfree(header);
1115     return ret;
1116 }
1117 
1118 static int qcow2_change_backing_file(BlockDriverState *bs,
1119     const char *backing_file, const char *backing_fmt)
1120 {
1121     pstrcpy(bs->backing_file, sizeof(bs->backing_file), backing_file ?: "");
1122     pstrcpy(bs->backing_format, sizeof(bs->backing_format), backing_fmt ?: "");
1123 
1124     return qcow2_update_header(bs);
1125 }
1126 
1127 static int preallocate(BlockDriverState *bs)
1128 {
1129     uint64_t nb_sectors;
1130     uint64_t offset;
1131     int num;
1132     int ret;
1133     QCowL2Meta meta;
1134 
1135     nb_sectors = bdrv_getlength(bs) >> 9;
1136     offset = 0;
1137     qemu_co_queue_init(&meta.dependent_requests);
1138     meta.cluster_offset = 0;
1139 
1140     while (nb_sectors) {
1141         num = MIN(nb_sectors, INT_MAX >> 9);
1142         ret = qcow2_alloc_cluster_offset(bs, offset, 0, num, &num, &meta);
1143         if (ret < 0) {
1144             return ret;
1145         }
1146 
1147         ret = qcow2_alloc_cluster_link_l2(bs, &meta);
1148         if (ret < 0) {
1149             qcow2_free_any_clusters(bs, meta.cluster_offset, meta.nb_clusters);
1150             return ret;
1151         }
1152 
1153         /* There are no dependent requests, but we need to remove our request
1154          * from the list of in-flight requests */
1155         run_dependent_requests(bs->opaque, &meta);
1156 
1157         /* TODO Preallocate data if requested */
1158 
1159         nb_sectors -= num;
1160         offset += num << 9;
1161     }
1162 
1163     /*
1164      * It is expected that the image file is large enough to actually contain
1165      * all of the allocated clusters (otherwise we get failing reads after
1166      * EOF). Extend the image to the last allocated sector.
1167      */
1168     if (meta.cluster_offset != 0) {
1169         uint8_t buf[512];
1170         memset(buf, 0, 512);
1171         ret = bdrv_write(bs->file, (meta.cluster_offset >> 9) + num - 1, buf, 1);
1172         if (ret < 0) {
1173             return ret;
1174         }
1175     }
1176 
1177     return 0;
1178 }
1179 
1180 static int qcow2_create2(const char *filename, int64_t total_size,
1181                          const char *backing_file, const char *backing_format,
1182                          int flags, size_t cluster_size, int prealloc,
1183                          QEMUOptionParameter *options, int version)
1184 {
1185     /* Calculate cluster_bits */
1186     int cluster_bits;
1187     cluster_bits = ffs(cluster_size) - 1;
1188     if (cluster_bits < MIN_CLUSTER_BITS || cluster_bits > MAX_CLUSTER_BITS ||
1189         (1 << cluster_bits) != cluster_size)
1190     {
1191         error_report(
1192             "Cluster size must be a power of two between %d and %dk",
1193             1 << MIN_CLUSTER_BITS, 1 << (MAX_CLUSTER_BITS - 10));
1194         return -EINVAL;
1195     }
1196 
1197     /*
1198      * Open the image file and write a minimal qcow2 header.
1199      *
1200      * We keep things simple and start with a zero-sized image. We also
1201      * do without refcount blocks or a L1 table for now. We'll fix the
1202      * inconsistency later.
1203      *
1204      * We do need a refcount table because growing the refcount table means
1205      * allocating two new refcount blocks - the seconds of which would be at
1206      * 2 GB for 64k clusters, and we don't want to have a 2 GB initial file
1207      * size for any qcow2 image.
1208      */
1209     BlockDriverState* bs;
1210     QCowHeader header;
1211     uint8_t* refcount_table;
1212     int ret;
1213 
1214     ret = bdrv_create_file(filename, options);
1215     if (ret < 0) {
1216         return ret;
1217     }
1218 
1219     ret = bdrv_file_open(&bs, filename, BDRV_O_RDWR);
1220     if (ret < 0) {
1221         return ret;
1222     }
1223 
1224     /* Write the header */
1225     memset(&header, 0, sizeof(header));
1226     header.magic = cpu_to_be32(QCOW_MAGIC);
1227     header.version = cpu_to_be32(version);
1228     header.cluster_bits = cpu_to_be32(cluster_bits);
1229     header.size = cpu_to_be64(0);
1230     header.l1_table_offset = cpu_to_be64(0);
1231     header.l1_size = cpu_to_be32(0);
1232     header.refcount_table_offset = cpu_to_be64(cluster_size);
1233     header.refcount_table_clusters = cpu_to_be32(1);
1234     header.refcount_order = cpu_to_be32(3 + REFCOUNT_SHIFT);
1235     header.header_length = cpu_to_be32(sizeof(header));
1236 
1237     if (flags & BLOCK_FLAG_ENCRYPT) {
1238         header.crypt_method = cpu_to_be32(QCOW_CRYPT_AES);
1239     } else {
1240         header.crypt_method = cpu_to_be32(QCOW_CRYPT_NONE);
1241     }
1242 
1243     if (flags & BLOCK_FLAG_LAZY_REFCOUNTS) {
1244         header.compatible_features |=
1245             cpu_to_be64(QCOW2_COMPAT_LAZY_REFCOUNTS);
1246     }
1247 
1248     ret = bdrv_pwrite(bs, 0, &header, sizeof(header));
1249     if (ret < 0) {
1250         goto out;
1251     }
1252 
1253     /* Write an empty refcount table */
1254     refcount_table = g_malloc0(cluster_size);
1255     ret = bdrv_pwrite(bs, cluster_size, refcount_table, cluster_size);
1256     g_free(refcount_table);
1257 
1258     if (ret < 0) {
1259         goto out;
1260     }
1261 
1262     bdrv_close(bs);
1263 
1264     /*
1265      * And now open the image and make it consistent first (i.e. increase the
1266      * refcount of the cluster that is occupied by the header and the refcount
1267      * table)
1268      */
1269     BlockDriver* drv = bdrv_find_format("qcow2");
1270     assert(drv != NULL);
1271     ret = bdrv_open(bs, filename,
1272         BDRV_O_RDWR | BDRV_O_CACHE_WB | BDRV_O_NO_FLUSH, drv);
1273     if (ret < 0) {
1274         goto out;
1275     }
1276 
1277     ret = qcow2_alloc_clusters(bs, 2 * cluster_size);
1278     if (ret < 0) {
1279         goto out;
1280 
1281     } else if (ret != 0) {
1282         error_report("Huh, first cluster in empty image is already in use?");
1283         abort();
1284     }
1285 
1286     /* Okay, now that we have a valid image, let's give it the right size */
1287     ret = bdrv_truncate(bs, total_size * BDRV_SECTOR_SIZE);
1288     if (ret < 0) {
1289         goto out;
1290     }
1291 
1292     /* Want a backing file? There you go.*/
1293     if (backing_file) {
1294         ret = bdrv_change_backing_file(bs, backing_file, backing_format);
1295         if (ret < 0) {
1296             goto out;
1297         }
1298     }
1299 
1300     /* And if we're supposed to preallocate metadata, do that now */
1301     if (prealloc) {
1302         BDRVQcowState *s = bs->opaque;
1303         qemu_co_mutex_lock(&s->lock);
1304         ret = preallocate(bs);
1305         qemu_co_mutex_unlock(&s->lock);
1306         if (ret < 0) {
1307             goto out;
1308         }
1309     }
1310 
1311     ret = 0;
1312 out:
1313     bdrv_delete(bs);
1314     return ret;
1315 }
1316 
1317 static int qcow2_create(const char *filename, QEMUOptionParameter *options)
1318 {
1319     const char *backing_file = NULL;
1320     const char *backing_fmt = NULL;
1321     uint64_t sectors = 0;
1322     int flags = 0;
1323     size_t cluster_size = DEFAULT_CLUSTER_SIZE;
1324     int prealloc = 0;
1325     int version = 2;
1326 
1327     /* Read out options */
1328     while (options && options->name) {
1329         if (!strcmp(options->name, BLOCK_OPT_SIZE)) {
1330             sectors = options->value.n / 512;
1331         } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FILE)) {
1332             backing_file = options->value.s;
1333         } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FMT)) {
1334             backing_fmt = options->value.s;
1335         } else if (!strcmp(options->name, BLOCK_OPT_ENCRYPT)) {
1336             flags |= options->value.n ? BLOCK_FLAG_ENCRYPT : 0;
1337         } else if (!strcmp(options->name, BLOCK_OPT_CLUSTER_SIZE)) {
1338             if (options->value.n) {
1339                 cluster_size = options->value.n;
1340             }
1341         } else if (!strcmp(options->name, BLOCK_OPT_PREALLOC)) {
1342             if (!options->value.s || !strcmp(options->value.s, "off")) {
1343                 prealloc = 0;
1344             } else if (!strcmp(options->value.s, "metadata")) {
1345                 prealloc = 1;
1346             } else {
1347                 fprintf(stderr, "Invalid preallocation mode: '%s'\n",
1348                     options->value.s);
1349                 return -EINVAL;
1350             }
1351         } else if (!strcmp(options->name, BLOCK_OPT_COMPAT_LEVEL)) {
1352             if (!options->value.s || !strcmp(options->value.s, "0.10")) {
1353                 version = 2;
1354             } else if (!strcmp(options->value.s, "1.1")) {
1355                 version = 3;
1356             } else {
1357                 fprintf(stderr, "Invalid compatibility level: '%s'\n",
1358                     options->value.s);
1359                 return -EINVAL;
1360             }
1361         } else if (!strcmp(options->name, BLOCK_OPT_LAZY_REFCOUNTS)) {
1362             flags |= options->value.n ? BLOCK_FLAG_LAZY_REFCOUNTS : 0;
1363         }
1364         options++;
1365     }
1366 
1367     if (backing_file && prealloc) {
1368         fprintf(stderr, "Backing file and preallocation cannot be used at "
1369             "the same time\n");
1370         return -EINVAL;
1371     }
1372 
1373     if (version < 3 && (flags & BLOCK_FLAG_LAZY_REFCOUNTS)) {
1374         fprintf(stderr, "Lazy refcounts only supported with compatibility "
1375                 "level 1.1 and above (use compat=1.1 or greater)\n");
1376         return -EINVAL;
1377     }
1378 
1379     return qcow2_create2(filename, sectors, backing_file, backing_fmt, flags,
1380                          cluster_size, prealloc, options, version);
1381 }
1382 
1383 static int qcow2_make_empty(BlockDriverState *bs)
1384 {
1385 #if 0
1386     /* XXX: not correct */
1387     BDRVQcowState *s = bs->opaque;
1388     uint32_t l1_length = s->l1_size * sizeof(uint64_t);
1389     int ret;
1390 
1391     memset(s->l1_table, 0, l1_length);
1392     if (bdrv_pwrite(bs->file, s->l1_table_offset, s->l1_table, l1_length) < 0)
1393         return -1;
1394     ret = bdrv_truncate(bs->file, s->l1_table_offset + l1_length);
1395     if (ret < 0)
1396         return ret;
1397 
1398     l2_cache_reset(bs);
1399 #endif
1400     return 0;
1401 }
1402 
1403 static coroutine_fn int qcow2_co_write_zeroes(BlockDriverState *bs,
1404     int64_t sector_num, int nb_sectors)
1405 {
1406     int ret;
1407     BDRVQcowState *s = bs->opaque;
1408 
1409     /* Emulate misaligned zero writes */
1410     if (sector_num % s->cluster_sectors || nb_sectors % s->cluster_sectors) {
1411         return -ENOTSUP;
1412     }
1413 
1414     /* Whatever is left can use real zero clusters */
1415     qemu_co_mutex_lock(&s->lock);
1416     ret = qcow2_zero_clusters(bs, sector_num << BDRV_SECTOR_BITS,
1417         nb_sectors);
1418     qemu_co_mutex_unlock(&s->lock);
1419 
1420     return ret;
1421 }
1422 
1423 static coroutine_fn int qcow2_co_discard(BlockDriverState *bs,
1424     int64_t sector_num, int nb_sectors)
1425 {
1426     int ret;
1427     BDRVQcowState *s = bs->opaque;
1428 
1429     qemu_co_mutex_lock(&s->lock);
1430     ret = qcow2_discard_clusters(bs, sector_num << BDRV_SECTOR_BITS,
1431         nb_sectors);
1432     qemu_co_mutex_unlock(&s->lock);
1433     return ret;
1434 }
1435 
1436 static int qcow2_truncate(BlockDriverState *bs, int64_t offset)
1437 {
1438     BDRVQcowState *s = bs->opaque;
1439     int ret, new_l1_size;
1440 
1441     if (offset & 511) {
1442         error_report("The new size must be a multiple of 512");
1443         return -EINVAL;
1444     }
1445 
1446     /* cannot proceed if image has snapshots */
1447     if (s->nb_snapshots) {
1448         error_report("Can't resize an image which has snapshots");
1449         return -ENOTSUP;
1450     }
1451 
1452     /* shrinking is currently not supported */
1453     if (offset < bs->total_sectors * 512) {
1454         error_report("qcow2 doesn't support shrinking images yet");
1455         return -ENOTSUP;
1456     }
1457 
1458     new_l1_size = size_to_l1(s, offset);
1459     ret = qcow2_grow_l1_table(bs, new_l1_size, true);
1460     if (ret < 0) {
1461         return ret;
1462     }
1463 
1464     /* write updated header.size */
1465     offset = cpu_to_be64(offset);
1466     ret = bdrv_pwrite_sync(bs->file, offsetof(QCowHeader, size),
1467                            &offset, sizeof(uint64_t));
1468     if (ret < 0) {
1469         return ret;
1470     }
1471 
1472     s->l1_vm_state_index = new_l1_size;
1473     return 0;
1474 }
1475 
1476 /* XXX: put compressed sectors first, then all the cluster aligned
1477    tables to avoid losing bytes in alignment */
1478 static int qcow2_write_compressed(BlockDriverState *bs, int64_t sector_num,
1479                                   const uint8_t *buf, int nb_sectors)
1480 {
1481     BDRVQcowState *s = bs->opaque;
1482     z_stream strm;
1483     int ret, out_len;
1484     uint8_t *out_buf;
1485     uint64_t cluster_offset;
1486 
1487     if (nb_sectors == 0) {
1488         /* align end of file to a sector boundary to ease reading with
1489            sector based I/Os */
1490         cluster_offset = bdrv_getlength(bs->file);
1491         cluster_offset = (cluster_offset + 511) & ~511;
1492         bdrv_truncate(bs->file, cluster_offset);
1493         return 0;
1494     }
1495 
1496     if (nb_sectors != s->cluster_sectors)
1497         return -EINVAL;
1498 
1499     out_buf = g_malloc(s->cluster_size + (s->cluster_size / 1000) + 128);
1500 
1501     /* best compression, small window, no zlib header */
1502     memset(&strm, 0, sizeof(strm));
1503     ret = deflateInit2(&strm, Z_DEFAULT_COMPRESSION,
1504                        Z_DEFLATED, -12,
1505                        9, Z_DEFAULT_STRATEGY);
1506     if (ret != 0) {
1507         ret = -EINVAL;
1508         goto fail;
1509     }
1510 
1511     strm.avail_in = s->cluster_size;
1512     strm.next_in = (uint8_t *)buf;
1513     strm.avail_out = s->cluster_size;
1514     strm.next_out = out_buf;
1515 
1516     ret = deflate(&strm, Z_FINISH);
1517     if (ret != Z_STREAM_END && ret != Z_OK) {
1518         deflateEnd(&strm);
1519         ret = -EINVAL;
1520         goto fail;
1521     }
1522     out_len = strm.next_out - out_buf;
1523 
1524     deflateEnd(&strm);
1525 
1526     if (ret != Z_STREAM_END || out_len >= s->cluster_size) {
1527         /* could not compress: write normal cluster */
1528         ret = bdrv_write(bs, sector_num, buf, s->cluster_sectors);
1529         if (ret < 0) {
1530             goto fail;
1531         }
1532     } else {
1533         cluster_offset = qcow2_alloc_compressed_cluster_offset(bs,
1534             sector_num << 9, out_len);
1535         if (!cluster_offset) {
1536             ret = -EIO;
1537             goto fail;
1538         }
1539         cluster_offset &= s->cluster_offset_mask;
1540         BLKDBG_EVENT(bs->file, BLKDBG_WRITE_COMPRESSED);
1541         ret = bdrv_pwrite(bs->file, cluster_offset, out_buf, out_len);
1542         if (ret < 0) {
1543             goto fail;
1544         }
1545     }
1546 
1547     ret = 0;
1548 fail:
1549     g_free(out_buf);
1550     return ret;
1551 }
1552 
1553 static coroutine_fn int qcow2_co_flush_to_os(BlockDriverState *bs)
1554 {
1555     BDRVQcowState *s = bs->opaque;
1556     int ret;
1557 
1558     qemu_co_mutex_lock(&s->lock);
1559     ret = qcow2_cache_flush(bs, s->l2_table_cache);
1560     if (ret < 0) {
1561         qemu_co_mutex_unlock(&s->lock);
1562         return ret;
1563     }
1564 
1565     if (qcow2_need_accurate_refcounts(s)) {
1566         ret = qcow2_cache_flush(bs, s->refcount_block_cache);
1567         if (ret < 0) {
1568             qemu_co_mutex_unlock(&s->lock);
1569             return ret;
1570         }
1571     }
1572     qemu_co_mutex_unlock(&s->lock);
1573 
1574     return 0;
1575 }
1576 
1577 static int64_t qcow2_vm_state_offset(BDRVQcowState *s)
1578 {
1579 	return (int64_t)s->l1_vm_state_index << (s->cluster_bits + s->l2_bits);
1580 }
1581 
1582 static int qcow2_get_info(BlockDriverState *bs, BlockDriverInfo *bdi)
1583 {
1584     BDRVQcowState *s = bs->opaque;
1585     bdi->cluster_size = s->cluster_size;
1586     bdi->vm_state_offset = qcow2_vm_state_offset(s);
1587     return 0;
1588 }
1589 
1590 #if 0
1591 static void dump_refcounts(BlockDriverState *bs)
1592 {
1593     BDRVQcowState *s = bs->opaque;
1594     int64_t nb_clusters, k, k1, size;
1595     int refcount;
1596 
1597     size = bdrv_getlength(bs->file);
1598     nb_clusters = size_to_clusters(s, size);
1599     for(k = 0; k < nb_clusters;) {
1600         k1 = k;
1601         refcount = get_refcount(bs, k);
1602         k++;
1603         while (k < nb_clusters && get_refcount(bs, k) == refcount)
1604             k++;
1605         printf("%" PRId64 ": refcount=%d nb=%" PRId64 "\n", k, refcount,
1606                k - k1);
1607     }
1608 }
1609 #endif
1610 
1611 static int qcow2_save_vmstate(BlockDriverState *bs, const uint8_t *buf,
1612                               int64_t pos, int size)
1613 {
1614     BDRVQcowState *s = bs->opaque;
1615     int growable = bs->growable;
1616     int ret;
1617 
1618     BLKDBG_EVENT(bs->file, BLKDBG_VMSTATE_SAVE);
1619     bs->growable = 1;
1620     ret = bdrv_pwrite(bs, qcow2_vm_state_offset(s) + pos, buf, size);
1621     bs->growable = growable;
1622 
1623     return ret;
1624 }
1625 
1626 static int qcow2_load_vmstate(BlockDriverState *bs, uint8_t *buf,
1627                               int64_t pos, int size)
1628 {
1629     BDRVQcowState *s = bs->opaque;
1630     int growable = bs->growable;
1631     int ret;
1632 
1633     BLKDBG_EVENT(bs->file, BLKDBG_VMSTATE_LOAD);
1634     bs->growable = 1;
1635     ret = bdrv_pread(bs, qcow2_vm_state_offset(s) + pos, buf, size);
1636     bs->growable = growable;
1637 
1638     return ret;
1639 }
1640 
1641 static QEMUOptionParameter qcow2_create_options[] = {
1642     {
1643         .name = BLOCK_OPT_SIZE,
1644         .type = OPT_SIZE,
1645         .help = "Virtual disk size"
1646     },
1647     {
1648         .name = BLOCK_OPT_COMPAT_LEVEL,
1649         .type = OPT_STRING,
1650         .help = "Compatibility level (0.10 or 1.1)"
1651     },
1652     {
1653         .name = BLOCK_OPT_BACKING_FILE,
1654         .type = OPT_STRING,
1655         .help = "File name of a base image"
1656     },
1657     {
1658         .name = BLOCK_OPT_BACKING_FMT,
1659         .type = OPT_STRING,
1660         .help = "Image format of the base image"
1661     },
1662     {
1663         .name = BLOCK_OPT_ENCRYPT,
1664         .type = OPT_FLAG,
1665         .help = "Encrypt the image"
1666     },
1667     {
1668         .name = BLOCK_OPT_CLUSTER_SIZE,
1669         .type = OPT_SIZE,
1670         .help = "qcow2 cluster size",
1671         .value = { .n = DEFAULT_CLUSTER_SIZE },
1672     },
1673     {
1674         .name = BLOCK_OPT_PREALLOC,
1675         .type = OPT_STRING,
1676         .help = "Preallocation mode (allowed values: off, metadata)"
1677     },
1678     {
1679         .name = BLOCK_OPT_LAZY_REFCOUNTS,
1680         .type = OPT_FLAG,
1681         .help = "Postpone refcount updates",
1682     },
1683     { NULL }
1684 };
1685 
1686 static BlockDriver bdrv_qcow2 = {
1687     .format_name        = "qcow2",
1688     .instance_size      = sizeof(BDRVQcowState),
1689     .bdrv_probe         = qcow2_probe,
1690     .bdrv_open          = qcow2_open,
1691     .bdrv_close         = qcow2_close,
1692     .bdrv_reopen_prepare  = qcow2_reopen_prepare,
1693     .bdrv_create        = qcow2_create,
1694     .bdrv_co_is_allocated = qcow2_co_is_allocated,
1695     .bdrv_set_key       = qcow2_set_key,
1696     .bdrv_make_empty    = qcow2_make_empty,
1697 
1698     .bdrv_co_readv          = qcow2_co_readv,
1699     .bdrv_co_writev         = qcow2_co_writev,
1700     .bdrv_co_flush_to_os    = qcow2_co_flush_to_os,
1701 
1702     .bdrv_co_write_zeroes   = qcow2_co_write_zeroes,
1703     .bdrv_co_discard        = qcow2_co_discard,
1704     .bdrv_truncate          = qcow2_truncate,
1705     .bdrv_write_compressed  = qcow2_write_compressed,
1706 
1707     .bdrv_snapshot_create   = qcow2_snapshot_create,
1708     .bdrv_snapshot_goto     = qcow2_snapshot_goto,
1709     .bdrv_snapshot_delete   = qcow2_snapshot_delete,
1710     .bdrv_snapshot_list     = qcow2_snapshot_list,
1711     .bdrv_snapshot_load_tmp     = qcow2_snapshot_load_tmp,
1712     .bdrv_get_info      = qcow2_get_info,
1713 
1714     .bdrv_save_vmstate    = qcow2_save_vmstate,
1715     .bdrv_load_vmstate    = qcow2_load_vmstate,
1716 
1717     .bdrv_change_backing_file   = qcow2_change_backing_file,
1718 
1719     .bdrv_invalidate_cache      = qcow2_invalidate_cache,
1720 
1721     .create_options = qcow2_create_options,
1722     .bdrv_check = qcow2_check,
1723 };
1724 
1725 static void bdrv_qcow2_init(void)
1726 {
1727     bdrv_register(&bdrv_qcow2);
1728 }
1729 
1730 block_init(bdrv_qcow2_init);
1731