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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

    
31
/*
32
  Differences with QCOW:
33

34
  - Support for multiple incremental snapshots.
35
  - Memory management by reference counts.
36
  - Clusters which have a reference count of one have the bit
37
    QCOW_OFLAG_COPIED to optimize write performance.
38
  - Size of compressed clusters is stored in sectors to reduce bit usage
39
    in the cluster offsets.
40
  - Support for storing additional data (such as the VM state) in the
41
    snapshots.
42
  - If a backing store is used, the cluster size is not constrained
43
    (could be backported to QCOW).
44
  - L2 tables have always a size of one cluster.
45
*/
46

    
47

    
48
typedef struct {
49
    uint32_t magic;
50
    uint32_t len;
51
} QCowExtension;
52
#define  QCOW_EXT_MAGIC_END 0
53
#define  QCOW_EXT_MAGIC_BACKING_FORMAT 0xE2792ACA
54

    
55
static int qcow_probe(const uint8_t *buf, int buf_size, const char *filename)
56
{
57
    const QCowHeader *cow_header = (const void *)buf;
58

    
59
    if (buf_size >= sizeof(QCowHeader) &&
60
        be32_to_cpu(cow_header->magic) == QCOW_MAGIC &&
61
        be32_to_cpu(cow_header->version) == QCOW_VERSION)
62
        return 100;
63
    else
64
        return 0;
65
}
66

    
67

    
68
/* 
69
 * read qcow2 extension and fill bs
70
 * start reading from start_offset
71
 * finish reading upon magic of value 0 or when end_offset reached
72
 * unknown magic is skipped (future extension this version knows nothing about)
73
 * return 0 upon success, non-0 otherwise
74
 */
75
static int qcow_read_extensions(BlockDriverState *bs, uint64_t start_offset,
76
                                uint64_t end_offset)
77
{
78
    QCowExtension ext;
79
    uint64_t offset;
80

    
81
#ifdef DEBUG_EXT
82
    printf("qcow_read_extensions: start=%ld end=%ld\n", start_offset, end_offset);
83
#endif
84
    offset = start_offset;
85
    while (offset < end_offset) {
86

    
87
#ifdef DEBUG_EXT
88
        /* Sanity check */
89
        if (offset > s->cluster_size)
90
            printf("qcow_handle_extension: suspicious offset %lu\n", offset);
91

    
92
        printf("attemting to read extended header in offset %lu\n", offset);
93
#endif
94

    
95
        if (bdrv_pread(bs->file, offset, &ext, sizeof(ext)) != sizeof(ext)) {
96
            fprintf(stderr, "qcow_handle_extension: ERROR: pread fail from offset %llu\n",
97
                    (unsigned long long)offset);
98
            return 1;
99
        }
100
        be32_to_cpus(&ext.magic);
101
        be32_to_cpus(&ext.len);
102
        offset += sizeof(ext);
103
#ifdef DEBUG_EXT
104
        printf("ext.magic = 0x%x\n", ext.magic);
105
#endif
106
        switch (ext.magic) {
107
        case QCOW_EXT_MAGIC_END:
108
            return 0;
109

    
110
        case QCOW_EXT_MAGIC_BACKING_FORMAT:
111
            if (ext.len >= sizeof(bs->backing_format)) {
112
                fprintf(stderr, "ERROR: ext_backing_format: len=%u too large"
113
                        " (>=%zu)\n",
114
                        ext.len, sizeof(bs->backing_format));
115
                return 2;
116
            }
117
            if (bdrv_pread(bs->file, offset , bs->backing_format,
118
                           ext.len) != ext.len)
119
                return 3;
120
            bs->backing_format[ext.len] = '\0';
121
#ifdef DEBUG_EXT
122
            printf("Qcow2: Got format extension %s\n", bs->backing_format);
123
#endif
124
            offset = ((offset + ext.len + 7) & ~7);
125
            break;
126

    
127
        default:
128
            /* unknown magic -- just skip it */
129
            offset = ((offset + ext.len + 7) & ~7);
130
            break;
131
        }
132
    }
133

    
134
    return 0;
135
}
136

    
137

    
138
static int qcow_open(BlockDriverState *bs, int flags)
139
{
140
    BDRVQcowState *s = bs->opaque;
141
    int len, i;
142
    QCowHeader header;
143
    uint64_t ext_end;
144

    
145
    if (bdrv_pread(bs->file, 0, &header, sizeof(header)) != sizeof(header))
146
        goto fail;
147
    be32_to_cpus(&header.magic);
148
    be32_to_cpus(&header.version);
149
    be64_to_cpus(&header.backing_file_offset);
150
    be32_to_cpus(&header.backing_file_size);
151
    be64_to_cpus(&header.size);
152
    be32_to_cpus(&header.cluster_bits);
153
    be32_to_cpus(&header.crypt_method);
154
    be64_to_cpus(&header.l1_table_offset);
155
    be32_to_cpus(&header.l1_size);
156
    be64_to_cpus(&header.refcount_table_offset);
157
    be32_to_cpus(&header.refcount_table_clusters);
158
    be64_to_cpus(&header.snapshots_offset);
159
    be32_to_cpus(&header.nb_snapshots);
160

    
161
    if (header.magic != QCOW_MAGIC || header.version != QCOW_VERSION)
162
        goto fail;
163
    if (header.cluster_bits < MIN_CLUSTER_BITS ||
164
        header.cluster_bits > MAX_CLUSTER_BITS)
165
        goto fail;
166
    if (header.crypt_method > QCOW_CRYPT_AES)
167
        goto fail;
168
    s->crypt_method_header = header.crypt_method;
169
    if (s->crypt_method_header)
170
        bs->encrypted = 1;
171
    s->cluster_bits = header.cluster_bits;
172
    s->cluster_size = 1 << s->cluster_bits;
173
    s->cluster_sectors = 1 << (s->cluster_bits - 9);
174
    s->l2_bits = s->cluster_bits - 3; /* L2 is always one cluster */
175
    s->l2_size = 1 << s->l2_bits;
176
    bs->total_sectors = header.size / 512;
177
    s->csize_shift = (62 - (s->cluster_bits - 8));
178
    s->csize_mask = (1 << (s->cluster_bits - 8)) - 1;
179
    s->cluster_offset_mask = (1LL << s->csize_shift) - 1;
180
    s->refcount_table_offset = header.refcount_table_offset;
181
    s->refcount_table_size =
182
        header.refcount_table_clusters << (s->cluster_bits - 3);
183

    
184
    s->snapshots_offset = header.snapshots_offset;
185
    s->nb_snapshots = header.nb_snapshots;
186

    
187
    /* read the level 1 table */
188
    s->l1_size = header.l1_size;
189
    s->l1_vm_state_index = size_to_l1(s, header.size);
190
    /* the L1 table must contain at least enough entries to put
191
       header.size bytes */
192
    if (s->l1_size < s->l1_vm_state_index)
193
        goto fail;
194
    s->l1_table_offset = header.l1_table_offset;
195
    if (s->l1_size > 0) {
196
        s->l1_table = qemu_mallocz(
197
            align_offset(s->l1_size * sizeof(uint64_t), 512));
198
        if (bdrv_pread(bs->file, s->l1_table_offset, s->l1_table, s->l1_size * sizeof(uint64_t)) !=
199
            s->l1_size * sizeof(uint64_t))
200
            goto fail;
201
        for(i = 0;i < s->l1_size; i++) {
202
            be64_to_cpus(&s->l1_table[i]);
203
        }
204
    }
205
    /* alloc L2 cache */
206
    s->l2_cache = qemu_malloc(s->l2_size * L2_CACHE_SIZE * sizeof(uint64_t));
207
    s->cluster_cache = qemu_malloc(s->cluster_size);
208
    /* one more sector for decompressed data alignment */
209
    s->cluster_data = qemu_malloc(QCOW_MAX_CRYPT_CLUSTERS * s->cluster_size
210
                                  + 512);
211
    s->cluster_cache_offset = -1;
212

    
213
    if (qcow2_refcount_init(bs) < 0)
214
        goto fail;
215

    
216
    QLIST_INIT(&s->cluster_allocs);
217

    
218
    /* read qcow2 extensions */
219
    if (header.backing_file_offset)
220
        ext_end = header.backing_file_offset;
221
    else
222
        ext_end = s->cluster_size;
223
    if (qcow_read_extensions(bs, sizeof(header), ext_end))
224
        goto fail;
225

    
226
    /* read the backing file name */
227
    if (header.backing_file_offset != 0) {
228
        len = header.backing_file_size;
229
        if (len > 1023)
230
            len = 1023;
231
        if (bdrv_pread(bs->file, header.backing_file_offset, bs->backing_file, len) != len)
232
            goto fail;
233
        bs->backing_file[len] = '\0';
234
    }
235
    if (qcow2_read_snapshots(bs) < 0)
236
        goto fail;
237

    
238
#ifdef DEBUG_ALLOC
239
    qcow2_check_refcounts(bs);
240
#endif
241
    return 0;
242

    
243
 fail:
244
    qcow2_free_snapshots(bs);
245
    qcow2_refcount_close(bs);
246
    qemu_free(s->l1_table);
247
    qemu_free(s->l2_cache);
248
    qemu_free(s->cluster_cache);
249
    qemu_free(s->cluster_data);
250
    return -1;
251
}
252

    
253
static int qcow_set_key(BlockDriverState *bs, const char *key)
254
{
255
    BDRVQcowState *s = bs->opaque;
256
    uint8_t keybuf[16];
257
    int len, i;
258

    
259
    memset(keybuf, 0, 16);
260
    len = strlen(key);
261
    if (len > 16)
262
        len = 16;
263
    /* XXX: we could compress the chars to 7 bits to increase
264
       entropy */
265
    for(i = 0;i < len;i++) {
266
        keybuf[i] = key[i];
267
    }
268
    s->crypt_method = s->crypt_method_header;
269

    
270
    if (AES_set_encrypt_key(keybuf, 128, &s->aes_encrypt_key) != 0)
271
        return -1;
272
    if (AES_set_decrypt_key(keybuf, 128, &s->aes_decrypt_key) != 0)
273
        return -1;
274
#if 0
275
    /* test */
276
    {
277
        uint8_t in[16];
278
        uint8_t out[16];
279
        uint8_t tmp[16];
280
        for(i=0;i<16;i++)
281
            in[i] = i;
282
        AES_encrypt(in, tmp, &s->aes_encrypt_key);
283
        AES_decrypt(tmp, out, &s->aes_decrypt_key);
284
        for(i = 0; i < 16; i++)
285
            printf(" %02x", tmp[i]);
286
        printf("\n");
287
        for(i = 0; i < 16; i++)
288
            printf(" %02x", out[i]);
289
        printf("\n");
290
    }
291
#endif
292
    return 0;
293
}
294

    
295
static int qcow_is_allocated(BlockDriverState *bs, int64_t sector_num,
296
                             int nb_sectors, int *pnum)
297
{
298
    uint64_t cluster_offset;
299

    
300
    *pnum = nb_sectors;
301
    cluster_offset = qcow2_get_cluster_offset(bs, sector_num << 9, pnum);
302

    
303
    return (cluster_offset != 0);
304
}
305

    
306
/* handle reading after the end of the backing file */
307
int qcow2_backing_read1(BlockDriverState *bs,
308
                  int64_t sector_num, uint8_t *buf, int nb_sectors)
309
{
310
    int n1;
311
    if ((sector_num + nb_sectors) <= bs->total_sectors)
312
        return nb_sectors;
313
    if (sector_num >= bs->total_sectors)
314
        n1 = 0;
315
    else
316
        n1 = bs->total_sectors - sector_num;
317
    memset(buf + n1 * 512, 0, 512 * (nb_sectors - n1));
318
    return n1;
319
}
320

    
321
typedef struct QCowAIOCB {
322
    BlockDriverAIOCB common;
323
    int64_t sector_num;
324
    QEMUIOVector *qiov;
325
    uint8_t *buf;
326
    void *orig_buf;
327
    int remaining_sectors;
328
    int cur_nr_sectors;        /* number of sectors in current iteration */
329
    uint64_t cluster_offset;
330
    uint8_t *cluster_data;
331
    BlockDriverAIOCB *hd_aiocb;
332
    struct iovec hd_iov;
333
    QEMUIOVector hd_qiov;
334
    QEMUBH *bh;
335
    QCowL2Meta l2meta;
336
    QLIST_ENTRY(QCowAIOCB) next_depend;
337
} QCowAIOCB;
338

    
339
static void qcow_aio_cancel(BlockDriverAIOCB *blockacb)
340
{
341
    QCowAIOCB *acb = (QCowAIOCB *)blockacb;
342
    if (acb->hd_aiocb)
343
        bdrv_aio_cancel(acb->hd_aiocb);
344
    qemu_aio_release(acb);
345
}
346

    
347
static AIOPool qcow_aio_pool = {
348
    .aiocb_size         = sizeof(QCowAIOCB),
349
    .cancel             = qcow_aio_cancel,
350
};
351

    
352
static void qcow_aio_read_cb(void *opaque, int ret);
353
static void qcow_aio_read_bh(void *opaque)
354
{
355
    QCowAIOCB *acb = opaque;
356
    qemu_bh_delete(acb->bh);
357
    acb->bh = NULL;
358
    qcow_aio_read_cb(opaque, 0);
359
}
360

    
361
static int qcow_schedule_bh(QEMUBHFunc *cb, QCowAIOCB *acb)
362
{
363
    if (acb->bh)
364
        return -EIO;
365

    
366
    acb->bh = qemu_bh_new(cb, acb);
367
    if (!acb->bh)
368
        return -EIO;
369

    
370
    qemu_bh_schedule(acb->bh);
371

    
372
    return 0;
373
}
374

    
375
static void qcow_aio_read_cb(void *opaque, int ret)
376
{
377
    QCowAIOCB *acb = opaque;
378
    BlockDriverState *bs = acb->common.bs;
379
    BDRVQcowState *s = bs->opaque;
380
    int index_in_cluster, n1;
381

    
382
    acb->hd_aiocb = NULL;
383
    if (ret < 0)
384
        goto done;
385

    
386
    /* post process the read buffer */
387
    if (!acb->cluster_offset) {
388
        /* nothing to do */
389
    } else if (acb->cluster_offset & QCOW_OFLAG_COMPRESSED) {
390
        /* nothing to do */
391
    } else {
392
        if (s->crypt_method) {
393
            qcow2_encrypt_sectors(s, acb->sector_num, acb->buf, acb->buf,
394
                            acb->cur_nr_sectors, 0,
395
                            &s->aes_decrypt_key);
396
        }
397
    }
398

    
399
    acb->remaining_sectors -= acb->cur_nr_sectors;
400
    acb->sector_num += acb->cur_nr_sectors;
401
    acb->buf += acb->cur_nr_sectors * 512;
402

    
403
    if (acb->remaining_sectors == 0) {
404
        /* request completed */
405
        ret = 0;
406
        goto done;
407
    }
408

    
409
    /* prepare next AIO request */
410
    acb->cur_nr_sectors = acb->remaining_sectors;
411
    acb->cluster_offset = qcow2_get_cluster_offset(bs, acb->sector_num << 9,
412
                                                   &acb->cur_nr_sectors);
413
    index_in_cluster = acb->sector_num & (s->cluster_sectors - 1);
414

    
415
    if (!acb->cluster_offset) {
416
        if (bs->backing_hd) {
417
            /* read from the base image */
418
            n1 = qcow2_backing_read1(bs->backing_hd, acb->sector_num,
419
                               acb->buf, acb->cur_nr_sectors);
420
            if (n1 > 0) {
421
                acb->hd_iov.iov_base = (void *)acb->buf;
422
                acb->hd_iov.iov_len = acb->cur_nr_sectors * 512;
423
                qemu_iovec_init_external(&acb->hd_qiov, &acb->hd_iov, 1);
424
                BLKDBG_EVENT(bs->file, BLKDBG_READ_BACKING_AIO);
425
                acb->hd_aiocb = bdrv_aio_readv(bs->backing_hd, acb->sector_num,
426
                                    &acb->hd_qiov, acb->cur_nr_sectors,
427
                                    qcow_aio_read_cb, acb);
428
                if (acb->hd_aiocb == NULL)
429
                    goto done;
430
            } else {
431
                ret = qcow_schedule_bh(qcow_aio_read_bh, acb);
432
                if (ret < 0)
433
                    goto done;
434
            }
435
        } else {
436
            /* Note: in this case, no need to wait */
437
            memset(acb->buf, 0, 512 * acb->cur_nr_sectors);
438
            ret = qcow_schedule_bh(qcow_aio_read_bh, acb);
439
            if (ret < 0)
440
                goto done;
441
        }
442
    } else if (acb->cluster_offset & QCOW_OFLAG_COMPRESSED) {
443
        /* add AIO support for compressed blocks ? */
444
        if (qcow2_decompress_cluster(bs, acb->cluster_offset) < 0)
445
            goto done;
446
        memcpy(acb->buf, s->cluster_cache + index_in_cluster * 512,
447
               512 * acb->cur_nr_sectors);
448
        ret = qcow_schedule_bh(qcow_aio_read_bh, acb);
449
        if (ret < 0)
450
            goto done;
451
    } else {
452
        if ((acb->cluster_offset & 511) != 0) {
453
            ret = -EIO;
454
            goto done;
455
        }
456

    
457
        acb->hd_iov.iov_base = (void *)acb->buf;
458
        acb->hd_iov.iov_len = acb->cur_nr_sectors * 512;
459
        qemu_iovec_init_external(&acb->hd_qiov, &acb->hd_iov, 1);
460
        BLKDBG_EVENT(bs->file, BLKDBG_READ_AIO);
461
        acb->hd_aiocb = bdrv_aio_readv(bs->file,
462
                            (acb->cluster_offset >> 9) + index_in_cluster,
463
                            &acb->hd_qiov, acb->cur_nr_sectors,
464
                            qcow_aio_read_cb, acb);
465
        if (acb->hd_aiocb == NULL) {
466
            ret = -EIO;
467
            goto done;
468
        }
469
    }
470

    
471
    return;
472
done:
473
    if (acb->qiov->niov > 1) {
474
        qemu_iovec_from_buffer(acb->qiov, acb->orig_buf, acb->qiov->size);
475
        qemu_vfree(acb->orig_buf);
476
    }
477
    acb->common.cb(acb->common.opaque, ret);
478
    qemu_aio_release(acb);
479
}
480

    
481
static QCowAIOCB *qcow_aio_setup(BlockDriverState *bs,
482
        int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
483
        BlockDriverCompletionFunc *cb, void *opaque, int is_write)
484
{
485
    QCowAIOCB *acb;
486

    
487
    acb = qemu_aio_get(&qcow_aio_pool, bs, cb, opaque);
488
    if (!acb)
489
        return NULL;
490
    acb->hd_aiocb = NULL;
491
    acb->sector_num = sector_num;
492
    acb->qiov = qiov;
493
    if (qiov->niov > 1) {
494
        acb->buf = acb->orig_buf = qemu_blockalign(bs, qiov->size);
495
        if (is_write)
496
            qemu_iovec_to_buffer(qiov, acb->buf);
497
    } else {
498
        acb->buf = (uint8_t *)qiov->iov->iov_base;
499
    }
500
    acb->remaining_sectors = nb_sectors;
501
    acb->cur_nr_sectors = 0;
502
    acb->cluster_offset = 0;
503
    acb->l2meta.nb_clusters = 0;
504
    QLIST_INIT(&acb->l2meta.dependent_requests);
505
    return acb;
506
}
507

    
508
static BlockDriverAIOCB *qcow_aio_readv(BlockDriverState *bs,
509
        int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
510
        BlockDriverCompletionFunc *cb, void *opaque)
511
{
512
    QCowAIOCB *acb;
513

    
514
    acb = qcow_aio_setup(bs, sector_num, qiov, nb_sectors, cb, opaque, 0);
515
    if (!acb)
516
        return NULL;
517

    
518
    qcow_aio_read_cb(acb, 0);
519
    return &acb->common;
520
}
521

    
522
static void qcow_aio_write_cb(void *opaque, int ret);
523

    
524
static void run_dependent_requests(QCowL2Meta *m)
525
{
526
    QCowAIOCB *req;
527
    QCowAIOCB *next;
528

    
529
    /* Take the request off the list of running requests */
530
    if (m->nb_clusters != 0) {
531
        QLIST_REMOVE(m, next_in_flight);
532
    }
533

    
534
    /* Restart all dependent requests */
535
    QLIST_FOREACH_SAFE(req, &m->dependent_requests, next_depend, next) {
536
        qcow_aio_write_cb(req, 0);
537
    }
538

    
539
    /* Empty the list for the next part of the request */
540
    QLIST_INIT(&m->dependent_requests);
541
}
542

    
543
static void qcow_aio_write_cb(void *opaque, int ret)
544
{
545
    QCowAIOCB *acb = opaque;
546
    BlockDriverState *bs = acb->common.bs;
547
    BDRVQcowState *s = bs->opaque;
548
    int index_in_cluster;
549
    const uint8_t *src_buf;
550
    int n_end;
551

    
552
    acb->hd_aiocb = NULL;
553

    
554
    if (ret >= 0) {
555
        ret = qcow2_alloc_cluster_link_l2(bs, &acb->l2meta);
556
    }
557

    
558
    run_dependent_requests(&acb->l2meta);
559

    
560
    if (ret < 0)
561
        goto done;
562

    
563
    acb->remaining_sectors -= acb->cur_nr_sectors;
564
    acb->sector_num += acb->cur_nr_sectors;
565
    acb->buf += acb->cur_nr_sectors * 512;
566

    
567
    if (acb->remaining_sectors == 0) {
568
        /* request completed */
569
        ret = 0;
570
        goto done;
571
    }
572

    
573
    index_in_cluster = acb->sector_num & (s->cluster_sectors - 1);
574
    n_end = index_in_cluster + acb->remaining_sectors;
575
    if (s->crypt_method &&
576
        n_end > QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors)
577
        n_end = QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors;
578

    
579
    ret = qcow2_alloc_cluster_offset(bs, acb->sector_num << 9,
580
        index_in_cluster, n_end, &acb->cur_nr_sectors, &acb->l2meta);
581
    if (ret < 0) {
582
        goto done;
583
    }
584

    
585
    acb->cluster_offset = acb->l2meta.cluster_offset;
586

    
587
    /* Need to wait for another request? If so, we are done for now. */
588
    if (acb->l2meta.nb_clusters == 0 && acb->l2meta.depends_on != NULL) {
589
        QLIST_INSERT_HEAD(&acb->l2meta.depends_on->dependent_requests,
590
            acb, next_depend);
591
        return;
592
    }
593

    
594
    assert((acb->cluster_offset & 511) == 0);
595

    
596
    if (s->crypt_method) {
597
        if (!acb->cluster_data) {
598
            acb->cluster_data = qemu_mallocz(QCOW_MAX_CRYPT_CLUSTERS *
599
                                             s->cluster_size);
600
        }
601
        qcow2_encrypt_sectors(s, acb->sector_num, acb->cluster_data, acb->buf,
602
                        acb->cur_nr_sectors, 1, &s->aes_encrypt_key);
603
        src_buf = acb->cluster_data;
604
    } else {
605
        src_buf = acb->buf;
606
    }
607
    acb->hd_iov.iov_base = (void *)src_buf;
608
    acb->hd_iov.iov_len = acb->cur_nr_sectors * 512;
609
    qemu_iovec_init_external(&acb->hd_qiov, &acb->hd_iov, 1);
610
    BLKDBG_EVENT(bs->file, BLKDBG_WRITE_AIO);
611
    acb->hd_aiocb = bdrv_aio_writev(bs->file,
612
                                    (acb->cluster_offset >> 9) + index_in_cluster,
613
                                    &acb->hd_qiov, acb->cur_nr_sectors,
614
                                    qcow_aio_write_cb, acb);
615
    if (acb->hd_aiocb == NULL) {
616
        ret = -EIO;
617
        goto fail;
618
    }
619

    
620
    return;
621

    
622
fail:
623
    if (acb->l2meta.nb_clusters != 0) {
624
        QLIST_REMOVE(&acb->l2meta, next_in_flight);
625
    }
626
done:
627
    if (acb->qiov->niov > 1)
628
        qemu_vfree(acb->orig_buf);
629
    acb->common.cb(acb->common.opaque, ret);
630
    qemu_aio_release(acb);
631
}
632

    
633
static BlockDriverAIOCB *qcow_aio_writev(BlockDriverState *bs,
634
        int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
635
        BlockDriverCompletionFunc *cb, void *opaque)
636
{
637
    BDRVQcowState *s = bs->opaque;
638
    QCowAIOCB *acb;
639

    
640
    s->cluster_cache_offset = -1; /* disable compressed cache */
641

    
642
    acb = qcow_aio_setup(bs, sector_num, qiov, nb_sectors, cb, opaque, 1);
643
    if (!acb)
644
        return NULL;
645

    
646
    qcow_aio_write_cb(acb, 0);
647
    return &acb->common;
648
}
649

    
650
static void qcow_close(BlockDriverState *bs)
651
{
652
    BDRVQcowState *s = bs->opaque;
653
    qemu_free(s->l1_table);
654
    qemu_free(s->l2_cache);
655
    qemu_free(s->cluster_cache);
656
    qemu_free(s->cluster_data);
657
    qcow2_refcount_close(bs);
658
}
659

    
660
/*
661
 * Updates the variable length parts of the qcow2 header, i.e. the backing file
662
 * name and all extensions. qcow2 was not designed to allow such changes, so if
663
 * we run out of space (we can only use the first cluster) this function may
664
 * fail.
665
 *
666
 * Returns 0 on success, -errno in error cases.
667
 */
668
static int qcow2_update_ext_header(BlockDriverState *bs,
669
    const char *backing_file, const char *backing_fmt)
670
{
671
    size_t backing_file_len = 0;
672
    size_t backing_fmt_len = 0;
673
    BDRVQcowState *s = bs->opaque;
674
    QCowExtension ext_backing_fmt = {0, 0};
675
    int ret;
676

    
677
    /* Backing file format doesn't make sense without a backing file */
678
    if (backing_fmt && !backing_file) {
679
        return -EINVAL;
680
    }
681

    
682
    /* Prepare the backing file format extension if needed */
683
    if (backing_fmt) {
684
        ext_backing_fmt.len = cpu_to_be32(strlen(backing_fmt));
685
        ext_backing_fmt.magic = cpu_to_be32(QCOW_EXT_MAGIC_BACKING_FORMAT);
686
        backing_fmt_len = ((sizeof(ext_backing_fmt)
687
            + strlen(backing_fmt) + 7) & ~7);
688
    }
689

    
690
    /* Check if we can fit the new header into the first cluster */
691
    if (backing_file) {
692
        backing_file_len = strlen(backing_file);
693
    }
694

    
695
    size_t header_size = sizeof(QCowHeader) + backing_file_len
696
        + backing_fmt_len;
697

    
698
    if (header_size > s->cluster_size) {
699
        return -ENOSPC;
700
    }
701

    
702
    /* Rewrite backing file name and qcow2 extensions */
703
    size_t ext_size = header_size - sizeof(QCowHeader);
704
    uint8_t buf[ext_size];
705
    size_t offset = 0;
706
    size_t backing_file_offset = 0;
707

    
708
    if (backing_file) {
709
        if (backing_fmt) {
710
            int padding = backing_fmt_len -
711
                (sizeof(ext_backing_fmt) + strlen(backing_fmt));
712

    
713
            memcpy(buf + offset, &ext_backing_fmt, sizeof(ext_backing_fmt));
714
            offset += sizeof(ext_backing_fmt);
715

    
716
            memcpy(buf + offset, backing_fmt, strlen(backing_fmt));
717
            offset += strlen(backing_fmt);
718

    
719
            memset(buf + offset, 0, padding);
720
            offset += padding;
721
        }
722

    
723
        memcpy(buf + offset, backing_file, backing_file_len);
724
        backing_file_offset = sizeof(QCowHeader) + offset;
725
    }
726

    
727
    ret = bdrv_pwrite(bs->file, sizeof(QCowHeader), buf, ext_size);
728
    if (ret < 0) {
729
        goto fail;
730
    }
731

    
732
    /* Update header fields */
733
    uint64_t be_backing_file_offset = cpu_to_be64(backing_file_offset);
734
    uint32_t be_backing_file_size = cpu_to_be32(backing_file_len);
735

    
736
    ret = bdrv_pwrite(bs->file, offsetof(QCowHeader, backing_file_offset),
737
        &be_backing_file_offset, sizeof(uint64_t));
738
    if (ret < 0) {
739
        goto fail;
740
    }
741

    
742
    ret = bdrv_pwrite(bs->file, offsetof(QCowHeader, backing_file_size),
743
        &be_backing_file_size, sizeof(uint32_t));
744
    if (ret < 0) {
745
        goto fail;
746
    }
747

    
748
    ret = 0;
749
fail:
750
    return ret;
751
}
752

    
753
static int qcow2_change_backing_file(BlockDriverState *bs,
754
    const char *backing_file, const char *backing_fmt)
755
{
756
    return qcow2_update_ext_header(bs, backing_file, backing_fmt);
757
}
758

    
759
static int get_bits_from_size(size_t size)
760
{
761
    int res = 0;
762

    
763
    if (size == 0) {
764
        return -1;
765
    }
766

    
767
    while (size != 1) {
768
        /* Not a power of two */
769
        if (size & 1) {
770
            return -1;
771
        }
772

    
773
        size >>= 1;
774
        res++;
775
    }
776

    
777
    return res;
778
}
779

    
780

    
781
static int preallocate(BlockDriverState *bs)
782
{
783
    uint64_t nb_sectors;
784
    uint64_t offset;
785
    int num;
786
    int ret;
787
    QCowL2Meta meta;
788

    
789
    nb_sectors = bdrv_getlength(bs) >> 9;
790
    offset = 0;
791
    QLIST_INIT(&meta.dependent_requests);
792
    meta.cluster_offset = 0;
793

    
794
    while (nb_sectors) {
795
        num = MIN(nb_sectors, INT_MAX >> 9);
796
        ret = qcow2_alloc_cluster_offset(bs, offset, 0, num, &num, &meta);
797

    
798
        if (ret < 0) {
799
            return -1;
800
        }
801

    
802
        if (qcow2_alloc_cluster_link_l2(bs, &meta) < 0) {
803
            qcow2_free_any_clusters(bs, meta.cluster_offset, meta.nb_clusters);
804
            return -1;
805
        }
806

    
807
        /* There are no dependent requests, but we need to remove our request
808
         * from the list of in-flight requests */
809
        run_dependent_requests(&meta);
810

    
811
        /* TODO Preallocate data if requested */
812

    
813
        nb_sectors -= num;
814
        offset += num << 9;
815
    }
816

    
817
    /*
818
     * It is expected that the image file is large enough to actually contain
819
     * all of the allocated clusters (otherwise we get failing reads after
820
     * EOF). Extend the image to the last allocated sector.
821
     */
822
    if (meta.cluster_offset != 0) {
823
        uint8_t buf[512];
824
        memset(buf, 0, 512);
825
        bdrv_write(bs->file, (meta.cluster_offset >> 9) + num - 1, buf, 1);
826
    }
827

    
828
    return 0;
829
}
830

    
831
static int qcow_create2(const char *filename, int64_t total_size,
832
                        const char *backing_file, const char *backing_format,
833
                        int flags, size_t cluster_size, int prealloc)
834
{
835

    
836
    int fd, header_size, backing_filename_len, l1_size, i, shift, l2_bits;
837
    int ref_clusters, reftable_clusters, backing_format_len = 0;
838
    int rounded_ext_bf_len = 0;
839
    QCowHeader header;
840
    uint64_t tmp, offset;
841
    uint64_t old_ref_clusters;
842
    QCowCreateState s1, *s = &s1;
843
    QCowExtension ext_bf = {0, 0};
844
    int ret;
845

    
846
    memset(s, 0, sizeof(*s));
847

    
848
    fd = open(filename, O_WRONLY | O_CREAT | O_TRUNC | O_BINARY, 0644);
849
    if (fd < 0)
850
        return -errno;
851
    memset(&header, 0, sizeof(header));
852
    header.magic = cpu_to_be32(QCOW_MAGIC);
853
    header.version = cpu_to_be32(QCOW_VERSION);
854
    header.size = cpu_to_be64(total_size * 512);
855
    header_size = sizeof(header);
856
    backing_filename_len = 0;
857
    if (backing_file) {
858
        if (backing_format) {
859
            ext_bf.magic = QCOW_EXT_MAGIC_BACKING_FORMAT;
860
            backing_format_len = strlen(backing_format);
861
            ext_bf.len = backing_format_len;
862
            rounded_ext_bf_len = (sizeof(ext_bf) + ext_bf.len + 7) & ~7;
863
            header_size += rounded_ext_bf_len;
864
        }
865
        header.backing_file_offset = cpu_to_be64(header_size);
866
        backing_filename_len = strlen(backing_file);
867
        header.backing_file_size = cpu_to_be32(backing_filename_len);
868
        header_size += backing_filename_len;
869
    }
870

    
871
    /* Cluster size */
872
    s->cluster_bits = get_bits_from_size(cluster_size);
873
    if (s->cluster_bits < MIN_CLUSTER_BITS ||
874
        s->cluster_bits > MAX_CLUSTER_BITS)
875
    {
876
        fprintf(stderr, "Cluster size must be a power of two between "
877
            "%d and %dk\n",
878
            1 << MIN_CLUSTER_BITS,
879
            1 << (MAX_CLUSTER_BITS - 10));
880
        return -EINVAL;
881
    }
882
    s->cluster_size = 1 << s->cluster_bits;
883

    
884
    header.cluster_bits = cpu_to_be32(s->cluster_bits);
885
    header_size = (header_size + 7) & ~7;
886
    if (flags & BLOCK_FLAG_ENCRYPT) {
887
        header.crypt_method = cpu_to_be32(QCOW_CRYPT_AES);
888
    } else {
889
        header.crypt_method = cpu_to_be32(QCOW_CRYPT_NONE);
890
    }
891
    l2_bits = s->cluster_bits - 3;
892
    shift = s->cluster_bits + l2_bits;
893
    l1_size = (((total_size * 512) + (1LL << shift) - 1) >> shift);
894
    offset = align_offset(header_size, s->cluster_size);
895
    s->l1_table_offset = offset;
896
    header.l1_table_offset = cpu_to_be64(s->l1_table_offset);
897
    header.l1_size = cpu_to_be32(l1_size);
898
    offset += align_offset(l1_size * sizeof(uint64_t), s->cluster_size);
899

    
900
    /* count how many refcount blocks needed */
901

    
902
#define NUM_CLUSTERS(bytes) \
903
    (((bytes) + (s->cluster_size) - 1) / (s->cluster_size))
904

    
905
    ref_clusters = NUM_CLUSTERS(NUM_CLUSTERS(offset) * sizeof(uint16_t));
906

    
907
    do {
908
        uint64_t image_clusters;
909
        old_ref_clusters = ref_clusters;
910

    
911
        /* Number of clusters used for the refcount table */
912
        reftable_clusters = NUM_CLUSTERS(ref_clusters * sizeof(uint64_t));
913

    
914
        /* Number of clusters that the whole image will have */
915
        image_clusters = NUM_CLUSTERS(offset) + ref_clusters
916
            + reftable_clusters;
917

    
918
        /* Number of refcount blocks needed for the image */
919
        ref_clusters = NUM_CLUSTERS(image_clusters * sizeof(uint16_t));
920

    
921
    } while (ref_clusters != old_ref_clusters);
922

    
923
    s->refcount_table = qemu_mallocz(reftable_clusters * s->cluster_size);
924

    
925
    s->refcount_table_offset = offset;
926
    header.refcount_table_offset = cpu_to_be64(offset);
927
    header.refcount_table_clusters = cpu_to_be32(reftable_clusters);
928
    offset += (reftable_clusters * s->cluster_size);
929
    s->refcount_block_offset = offset;
930

    
931
    for (i=0; i < ref_clusters; i++) {
932
        s->refcount_table[i] = cpu_to_be64(offset);
933
        offset += s->cluster_size;
934
    }
935

    
936
    s->refcount_block = qemu_mallocz(ref_clusters * s->cluster_size);
937

    
938
    /* update refcounts */
939
    qcow2_create_refcount_update(s, 0, header_size);
940
    qcow2_create_refcount_update(s, s->l1_table_offset,
941
        l1_size * sizeof(uint64_t));
942
    qcow2_create_refcount_update(s, s->refcount_table_offset,
943
        reftable_clusters * s->cluster_size);
944
    qcow2_create_refcount_update(s, s->refcount_block_offset,
945
        ref_clusters * s->cluster_size);
946

    
947
    /* write all the data */
948
    ret = qemu_write_full(fd, &header, sizeof(header));
949
    if (ret != sizeof(header)) {
950
        ret = -errno;
951
        goto exit;
952
    }
953
    if (backing_file) {
954
        if (backing_format_len) {
955
            char zero[16];
956
            int padding = rounded_ext_bf_len - (ext_bf.len + sizeof(ext_bf));
957

    
958
            memset(zero, 0, sizeof(zero));
959
            cpu_to_be32s(&ext_bf.magic);
960
            cpu_to_be32s(&ext_bf.len);
961
            ret = qemu_write_full(fd, &ext_bf, sizeof(ext_bf));
962
            if (ret != sizeof(ext_bf)) {
963
                ret = -errno;
964
                goto exit;
965
            }
966
            ret = qemu_write_full(fd, backing_format, backing_format_len);
967
            if (ret != backing_format_len) {
968
                ret = -errno;
969
                goto exit;
970
            }
971
            if (padding > 0) {
972
                ret = qemu_write_full(fd, zero, padding);
973
                if (ret != padding) {
974
                    ret = -errno;
975
                    goto exit;
976
                }
977
            }
978
        }
979
        ret = qemu_write_full(fd, backing_file, backing_filename_len);
980
        if (ret != backing_filename_len) {
981
            ret = -errno;
982
            goto exit;
983
        }
984
    }
985
    lseek(fd, s->l1_table_offset, SEEK_SET);
986
    tmp = 0;
987
    for(i = 0;i < l1_size; i++) {
988
        ret = qemu_write_full(fd, &tmp, sizeof(tmp));
989
        if (ret != sizeof(tmp)) {
990
            ret = -errno;
991
            goto exit;
992
        }
993
    }
994
    lseek(fd, s->refcount_table_offset, SEEK_SET);
995
    ret = qemu_write_full(fd, s->refcount_table,
996
        reftable_clusters * s->cluster_size);
997
    if (ret != reftable_clusters * s->cluster_size) {
998
        ret = -errno;
999
        goto exit;
1000
    }
1001

    
1002
    lseek(fd, s->refcount_block_offset, SEEK_SET);
1003
    ret = qemu_write_full(fd, s->refcount_block,
1004
                    ref_clusters * s->cluster_size);
1005
    if (ret != ref_clusters * s->cluster_size) {
1006
        ret = -errno;
1007
        goto exit;
1008
    }
1009

    
1010
    ret = 0;
1011
exit:
1012
    qemu_free(s->refcount_table);
1013
    qemu_free(s->refcount_block);
1014
    close(fd);
1015

    
1016
    /* Preallocate metadata */
1017
    if (ret == 0 && prealloc) {
1018
        BlockDriverState *bs;
1019
        BlockDriver *drv = bdrv_find_format("qcow2");
1020
        bs = bdrv_new("");
1021
        bdrv_open(bs, filename, BDRV_O_CACHE_WB | BDRV_O_RDWR, drv);
1022
        preallocate(bs);
1023
        bdrv_close(bs);
1024
    }
1025

    
1026
    return ret;
1027
}
1028

    
1029
static int qcow_create(const char *filename, QEMUOptionParameter *options)
1030
{
1031
    const char *backing_file = NULL;
1032
    const char *backing_fmt = NULL;
1033
    uint64_t sectors = 0;
1034
    int flags = 0;
1035
    size_t cluster_size = 65536;
1036
    int prealloc = 0;
1037

    
1038
    /* Read out options */
1039
    while (options && options->name) {
1040
        if (!strcmp(options->name, BLOCK_OPT_SIZE)) {
1041
            sectors = options->value.n / 512;
1042
        } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FILE)) {
1043
            backing_file = options->value.s;
1044
        } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FMT)) {
1045
            backing_fmt = options->value.s;
1046
        } else if (!strcmp(options->name, BLOCK_OPT_ENCRYPT)) {
1047
            flags |= options->value.n ? BLOCK_FLAG_ENCRYPT : 0;
1048
        } else if (!strcmp(options->name, BLOCK_OPT_CLUSTER_SIZE)) {
1049
            if (options->value.n) {
1050
                cluster_size = options->value.n;
1051
            }
1052
        } else if (!strcmp(options->name, BLOCK_OPT_PREALLOC)) {
1053
            if (!options->value.s || !strcmp(options->value.s, "off")) {
1054
                prealloc = 0;
1055
            } else if (!strcmp(options->value.s, "metadata")) {
1056
                prealloc = 1;
1057
            } else {
1058
                fprintf(stderr, "Invalid preallocation mode: '%s'\n",
1059
                    options->value.s);
1060
                return -EINVAL;
1061
            }
1062
        }
1063
        options++;
1064
    }
1065

    
1066
    if (backing_file && prealloc) {
1067
        fprintf(stderr, "Backing file and preallocation cannot be used at "
1068
            "the same time\n");
1069
        return -EINVAL;
1070
    }
1071

    
1072
    return qcow_create2(filename, sectors, backing_file, backing_fmt, flags,
1073
        cluster_size, prealloc);
1074
}
1075

    
1076
static int qcow_make_empty(BlockDriverState *bs)
1077
{
1078
#if 0
1079
    /* XXX: not correct */
1080
    BDRVQcowState *s = bs->opaque;
1081
    uint32_t l1_length = s->l1_size * sizeof(uint64_t);
1082
    int ret;
1083

1084
    memset(s->l1_table, 0, l1_length);
1085
    if (bdrv_pwrite(bs->file, s->l1_table_offset, s->l1_table, l1_length) < 0)
1086
        return -1;
1087
    ret = bdrv_truncate(bs->file, s->l1_table_offset + l1_length);
1088
    if (ret < 0)
1089
        return ret;
1090

1091
    l2_cache_reset(bs);
1092
#endif
1093
    return 0;
1094
}
1095

    
1096
static int qcow2_truncate(BlockDriverState *bs, int64_t offset)
1097
{
1098
    BDRVQcowState *s = bs->opaque;
1099
    int ret, new_l1_size;
1100

    
1101
    if (offset & 511) {
1102
        return -EINVAL;
1103
    }
1104

    
1105
    /* cannot proceed if image has snapshots */
1106
    if (s->nb_snapshots) {
1107
        return -ENOTSUP;
1108
    }
1109

    
1110
    /* shrinking is currently not supported */
1111
    if (offset < bs->total_sectors * 512) {
1112
        return -ENOTSUP;
1113
    }
1114

    
1115
    new_l1_size = size_to_l1(s, offset);
1116
    ret = qcow2_grow_l1_table(bs, new_l1_size);
1117
    if (ret < 0) {
1118
        return ret;
1119
    }
1120

    
1121
    /* write updated header.size */
1122
    offset = cpu_to_be64(offset);
1123
    ret = bdrv_pwrite(bs->file, offsetof(QCowHeader, size),
1124
                      &offset, sizeof(uint64_t));
1125
    if (ret < 0) {
1126
        return ret;
1127
    }
1128

    
1129
    s->l1_vm_state_index = new_l1_size;
1130
    return 0;
1131
}
1132

    
1133
/* XXX: put compressed sectors first, then all the cluster aligned
1134
   tables to avoid losing bytes in alignment */
1135
static int qcow_write_compressed(BlockDriverState *bs, int64_t sector_num,
1136
                                 const uint8_t *buf, int nb_sectors)
1137
{
1138
    BDRVQcowState *s = bs->opaque;
1139
    z_stream strm;
1140
    int ret, out_len;
1141
    uint8_t *out_buf;
1142
    uint64_t cluster_offset;
1143

    
1144
    if (nb_sectors == 0) {
1145
        /* align end of file to a sector boundary to ease reading with
1146
           sector based I/Os */
1147
        cluster_offset = bdrv_getlength(bs->file);
1148
        cluster_offset = (cluster_offset + 511) & ~511;
1149
        bdrv_truncate(bs->file, cluster_offset);
1150
        return 0;
1151
    }
1152

    
1153
    if (nb_sectors != s->cluster_sectors)
1154
        return -EINVAL;
1155

    
1156
    out_buf = qemu_malloc(s->cluster_size + (s->cluster_size / 1000) + 128);
1157

    
1158
    /* best compression, small window, no zlib header */
1159
    memset(&strm, 0, sizeof(strm));
1160
    ret = deflateInit2(&strm, Z_DEFAULT_COMPRESSION,
1161
                       Z_DEFLATED, -12,
1162
                       9, Z_DEFAULT_STRATEGY);
1163
    if (ret != 0) {
1164
        qemu_free(out_buf);
1165
        return -1;
1166
    }
1167

    
1168
    strm.avail_in = s->cluster_size;
1169
    strm.next_in = (uint8_t *)buf;
1170
    strm.avail_out = s->cluster_size;
1171
    strm.next_out = out_buf;
1172

    
1173
    ret = deflate(&strm, Z_FINISH);
1174
    if (ret != Z_STREAM_END && ret != Z_OK) {
1175
        qemu_free(out_buf);
1176
        deflateEnd(&strm);
1177
        return -1;
1178
    }
1179
    out_len = strm.next_out - out_buf;
1180

    
1181
    deflateEnd(&strm);
1182

    
1183
    if (ret != Z_STREAM_END || out_len >= s->cluster_size) {
1184
        /* could not compress: write normal cluster */
1185
        bdrv_write(bs, sector_num, buf, s->cluster_sectors);
1186
    } else {
1187
        cluster_offset = qcow2_alloc_compressed_cluster_offset(bs,
1188
            sector_num << 9, out_len);
1189
        if (!cluster_offset)
1190
            return -1;
1191
        cluster_offset &= s->cluster_offset_mask;
1192
        BLKDBG_EVENT(bs->file, BLKDBG_WRITE_COMPRESSED);
1193
        if (bdrv_pwrite(bs->file, cluster_offset, out_buf, out_len) != out_len) {
1194
            qemu_free(out_buf);
1195
            return -1;
1196
        }
1197
    }
1198

    
1199
    qemu_free(out_buf);
1200
    return 0;
1201
}
1202

    
1203
static void qcow_flush(BlockDriverState *bs)
1204
{
1205
    bdrv_flush(bs->file);
1206
}
1207

    
1208
static BlockDriverAIOCB *qcow_aio_flush(BlockDriverState *bs,
1209
         BlockDriverCompletionFunc *cb, void *opaque)
1210
{
1211
    return bdrv_aio_flush(bs->file, cb, opaque);
1212
}
1213

    
1214
static int64_t qcow_vm_state_offset(BDRVQcowState *s)
1215
{
1216
        return (int64_t)s->l1_vm_state_index << (s->cluster_bits + s->l2_bits);
1217
}
1218

    
1219
static int qcow_get_info(BlockDriverState *bs, BlockDriverInfo *bdi)
1220
{
1221
    BDRVQcowState *s = bs->opaque;
1222
    bdi->cluster_size = s->cluster_size;
1223
    bdi->vm_state_offset = qcow_vm_state_offset(s);
1224
    return 0;
1225
}
1226

    
1227

    
1228
static int qcow_check(BlockDriverState *bs)
1229
{
1230
    return qcow2_check_refcounts(bs);
1231
}
1232

    
1233
#if 0
1234
static void dump_refcounts(BlockDriverState *bs)
1235
{
1236
    BDRVQcowState *s = bs->opaque;
1237
    int64_t nb_clusters, k, k1, size;
1238
    int refcount;
1239

1240
    size = bdrv_getlength(bs->file);
1241
    nb_clusters = size_to_clusters(s, size);
1242
    for(k = 0; k < nb_clusters;) {
1243
        k1 = k;
1244
        refcount = get_refcount(bs, k);
1245
        k++;
1246
        while (k < nb_clusters && get_refcount(bs, k) == refcount)
1247
            k++;
1248
        printf("%lld: refcount=%d nb=%lld\n", k, refcount, k - k1);
1249
    }
1250
}
1251
#endif
1252

    
1253
static int qcow_save_vmstate(BlockDriverState *bs, const uint8_t *buf,
1254
                           int64_t pos, int size)
1255
{
1256
    BDRVQcowState *s = bs->opaque;
1257
    int growable = bs->growable;
1258
    int ret;
1259

    
1260
    BLKDBG_EVENT(bs->file, BLKDBG_VMSTATE_SAVE);
1261
    bs->growable = 1;
1262
    ret = bdrv_pwrite(bs, qcow_vm_state_offset(s) + pos, buf, size);
1263
    bs->growable = growable;
1264

    
1265
    return ret;
1266
}
1267

    
1268
static int qcow_load_vmstate(BlockDriverState *bs, uint8_t *buf,
1269
                           int64_t pos, int size)
1270
{
1271
    BDRVQcowState *s = bs->opaque;
1272
    int growable = bs->growable;
1273
    int ret;
1274

    
1275
    BLKDBG_EVENT(bs->file, BLKDBG_VMSTATE_LOAD);
1276
    bs->growable = 1;
1277
    ret = bdrv_pread(bs, qcow_vm_state_offset(s) + pos, buf, size);
1278
    bs->growable = growable;
1279

    
1280
    return ret;
1281
}
1282

    
1283
static QEMUOptionParameter qcow_create_options[] = {
1284
    {
1285
        .name = BLOCK_OPT_SIZE,
1286
        .type = OPT_SIZE,
1287
        .help = "Virtual disk size"
1288
    },
1289
    {
1290
        .name = BLOCK_OPT_BACKING_FILE,
1291
        .type = OPT_STRING,
1292
        .help = "File name of a base image"
1293
    },
1294
    {
1295
        .name = BLOCK_OPT_BACKING_FMT,
1296
        .type = OPT_STRING,
1297
        .help = "Image format of the base image"
1298
    },
1299
    {
1300
        .name = BLOCK_OPT_ENCRYPT,
1301
        .type = OPT_FLAG,
1302
        .help = "Encrypt the image"
1303
    },
1304
    {
1305
        .name = BLOCK_OPT_CLUSTER_SIZE,
1306
        .type = OPT_SIZE,
1307
        .help = "qcow2 cluster size"
1308
    },
1309
    {
1310
        .name = BLOCK_OPT_PREALLOC,
1311
        .type = OPT_STRING,
1312
        .help = "Preallocation mode (allowed values: off, metadata)"
1313
    },
1314
    { NULL }
1315
};
1316

    
1317
static BlockDriver bdrv_qcow2 = {
1318
    .format_name        = "qcow2",
1319
    .instance_size        = sizeof(BDRVQcowState),
1320
    .bdrv_probe                = qcow_probe,
1321
    .bdrv_open                = qcow_open,
1322
    .bdrv_close                = qcow_close,
1323
    .bdrv_create        = qcow_create,
1324
    .bdrv_flush                = qcow_flush,
1325
    .bdrv_is_allocated        = qcow_is_allocated,
1326
    .bdrv_set_key        = qcow_set_key,
1327
    .bdrv_make_empty        = qcow_make_empty,
1328

    
1329
    .bdrv_aio_readv        = qcow_aio_readv,
1330
    .bdrv_aio_writev        = qcow_aio_writev,
1331
    .bdrv_aio_flush        = qcow_aio_flush,
1332

    
1333
    .bdrv_truncate          = qcow2_truncate,
1334
    .bdrv_write_compressed  = qcow_write_compressed,
1335

    
1336
    .bdrv_snapshot_create   = qcow2_snapshot_create,
1337
    .bdrv_snapshot_goto     = qcow2_snapshot_goto,
1338
    .bdrv_snapshot_delete   = qcow2_snapshot_delete,
1339
    .bdrv_snapshot_list     = qcow2_snapshot_list,
1340
    .bdrv_get_info        = qcow_get_info,
1341

    
1342
    .bdrv_save_vmstate    = qcow_save_vmstate,
1343
    .bdrv_load_vmstate    = qcow_load_vmstate,
1344

    
1345
    .bdrv_change_backing_file   = qcow2_change_backing_file,
1346

    
1347
    .create_options = qcow_create_options,
1348
    .bdrv_check = qcow_check,
1349
};
1350

    
1351
static void bdrv_qcow2_init(void)
1352
{
1353
    bdrv_register(&bdrv_qcow2);
1354
}
1355

    
1356
block_init(bdrv_qcow2_init);