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ea2384d3
FB
1/*
2 * Block driver for the VMDK format
5fafdf24 3 *
ea2384d3 4 * Copyright (c) 2004 Fabrice Bellard
ff1afc72 5 * Copyright (c) 2005 Filip Navara
5fafdf24 6 *
ea2384d3
FB
7 * Permission is hereby granted, free of charge, to any person obtaining a copy
8 * of this software and associated documentation files (the "Software"), to deal
9 * in the Software without restriction, including without limitation the rights
10 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
11 * copies of the Software, and to permit persons to whom the Software is
12 * furnished to do so, subject to the following conditions:
13 *
14 * The above copyright notice and this permission notice shall be included in
15 * all copies or substantial portions of the Software.
16 *
17 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
18 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
21 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
22 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
23 * THE SOFTWARE.
24 */
5f4da8c0 25
faf07963 26#include "qemu-common.h"
737e150e 27#include "block/block_int.h"
1de7afc9 28#include "qemu/module.h"
caf71f86 29#include "migration/migration.h"
2923d34f 30#include <zlib.h>
ea2384d3 31
ea2384d3
FB
32#define VMDK3_MAGIC (('C' << 24) | ('O' << 16) | ('W' << 8) | 'D')
33#define VMDK4_MAGIC (('K' << 24) | ('D' << 16) | ('M' << 8) | 'V')
432bb170 34#define VMDK4_COMPRESSION_DEFLATE 1
95b0aa42 35#define VMDK4_FLAG_NL_DETECT (1 << 0)
bb45ded9 36#define VMDK4_FLAG_RGD (1 << 1)
14ead646
FZ
37/* Zeroed-grain enable bit */
38#define VMDK4_FLAG_ZERO_GRAIN (1 << 2)
432bb170
FZ
39#define VMDK4_FLAG_COMPRESS (1 << 16)
40#define VMDK4_FLAG_MARKER (1 << 17)
65bd155c 41#define VMDK4_GD_AT_END 0xffffffffffffffffULL
ea2384d3 42
14ead646 43#define VMDK_GTE_ZEROED 0x1
65f74725
FZ
44
45/* VMDK internal error codes */
46#define VMDK_OK 0
47#define VMDK_ERROR (-1)
48/* Cluster not allocated */
49#define VMDK_UNALLOC (-2)
50#define VMDK_ZEROED (-3)
51
69e0b6df
FZ
52#define BLOCK_OPT_ZEROED_GRAIN "zeroed_grain"
53
ea2384d3
FB
54typedef struct {
55 uint32_t version;
56 uint32_t flags;
57 uint32_t disk_sectors;
58 uint32_t granularity;
59 uint32_t l1dir_offset;
60 uint32_t l1dir_size;
61 uint32_t file_sectors;
62 uint32_t cylinders;
63 uint32_t heads;
64 uint32_t sectors_per_track;
5d8caa54 65} QEMU_PACKED VMDK3Header;
ea2384d3
FB
66
67typedef struct {
68 uint32_t version;
69 uint32_t flags;
e98768d4
FZ
70 uint64_t capacity;
71 uint64_t granularity;
72 uint64_t desc_offset;
73 uint64_t desc_size;
ca8804ce
FZ
74 /* Number of GrainTableEntries per GrainTable */
75 uint32_t num_gtes_per_gt;
e98768d4
FZ
76 uint64_t rgd_offset;
77 uint64_t gd_offset;
78 uint64_t grain_offset;
ea2384d3
FB
79 char filler[1];
80 char check_bytes[4];
432bb170 81 uint16_t compressAlgorithm;
541dc0d4 82} QEMU_PACKED VMDK4Header;
ea2384d3
FB
83
84#define L2_CACHE_SIZE 16
85
b3976d3c
FZ
86typedef struct VmdkExtent {
87 BlockDriverState *file;
88 bool flat;
432bb170
FZ
89 bool compressed;
90 bool has_marker;
14ead646
FZ
91 bool has_zero_grain;
92 int version;
b3976d3c
FZ
93 int64_t sectors;
94 int64_t end_sector;
7fa60fa3 95 int64_t flat_start_offset;
ea2384d3 96 int64_t l1_table_offset;
ff1afc72 97 int64_t l1_backup_table_offset;
ea2384d3 98 uint32_t *l1_table;
ff1afc72 99 uint32_t *l1_backup_table;
ea2384d3
FB
100 unsigned int l1_size;
101 uint32_t l1_entry_sectors;
102
103 unsigned int l2_size;
104 uint32_t *l2_cache;
105 uint32_t l2_cache_offsets[L2_CACHE_SIZE];
106 uint32_t l2_cache_counts[L2_CACHE_SIZE];
107
301c7d38 108 int64_t cluster_sectors;
b3976d3c
FZ
109} VmdkExtent;
110
111typedef struct BDRVVmdkState {
848c66e8 112 CoMutex lock;
e98768d4 113 uint64_t desc_offset;
69b4d86d 114 bool cid_updated;
c338b6ad 115 bool cid_checked;
5f4da8c0 116 uint32_t parent_cid;
b3976d3c
FZ
117 int num_extents;
118 /* Extent array with num_extents entries, ascend ordered by address */
119 VmdkExtent *extents;
2bc3166c 120 Error *migration_blocker;
ea2384d3
FB
121} BDRVVmdkState;
122
630530a6
TS
123typedef struct VmdkMetaData {
124 uint32_t offset;
125 unsigned int l1_index;
126 unsigned int l2_index;
127 unsigned int l2_offset;
128 int valid;
cdeaf1f1 129 uint32_t *l2_cache_entry;
630530a6
TS
130} VmdkMetaData;
131
432bb170
FZ
132typedef struct VmdkGrainMarker {
133 uint64_t lba;
134 uint32_t size;
135 uint8_t data[0];
5d8caa54 136} QEMU_PACKED VmdkGrainMarker;
432bb170 137
65bd155c
KW
138enum {
139 MARKER_END_OF_STREAM = 0,
140 MARKER_GRAIN_TABLE = 1,
141 MARKER_GRAIN_DIRECTORY = 2,
142 MARKER_FOOTER = 3,
143};
144
ea2384d3
FB
145static int vmdk_probe(const uint8_t *buf, int buf_size, const char *filename)
146{
147 uint32_t magic;
148
ae261c86 149 if (buf_size < 4) {
ea2384d3 150 return 0;
ae261c86 151 }
ea2384d3
FB
152 magic = be32_to_cpu(*(uint32_t *)buf);
153 if (magic == VMDK3_MAGIC ||
01fc99d6 154 magic == VMDK4_MAGIC) {
ea2384d3 155 return 100;
01fc99d6
FZ
156 } else {
157 const char *p = (const char *)buf;
158 const char *end = p + buf_size;
159 while (p < end) {
160 if (*p == '#') {
161 /* skip comment line */
162 while (p < end && *p != '\n') {
163 p++;
164 }
165 p++;
166 continue;
167 }
168 if (*p == ' ') {
169 while (p < end && *p == ' ') {
170 p++;
171 }
172 /* skip '\r' if windows line endings used. */
173 if (p < end && *p == '\r') {
174 p++;
175 }
176 /* only accept blank lines before 'version=' line */
177 if (p == end || *p != '\n') {
178 return 0;
179 }
180 p++;
181 continue;
182 }
183 if (end - p >= strlen("version=X\n")) {
184 if (strncmp("version=1\n", p, strlen("version=1\n")) == 0 ||
185 strncmp("version=2\n", p, strlen("version=2\n")) == 0) {
186 return 100;
187 }
188 }
189 if (end - p >= strlen("version=X\r\n")) {
190 if (strncmp("version=1\r\n", p, strlen("version=1\r\n")) == 0 ||
191 strncmp("version=2\r\n", p, strlen("version=2\r\n")) == 0) {
192 return 100;
193 }
194 }
195 return 0;
196 }
ea2384d3 197 return 0;
01fc99d6 198 }
ea2384d3
FB
199}
200
3b46e624 201#define SECTOR_SIZE 512
f66fd6c3
FZ
202#define DESC_SIZE (20 * SECTOR_SIZE) /* 20 sectors of 512 bytes each */
203#define BUF_SIZE 4096
204#define HEADER_SIZE 512 /* first sector of 512 bytes */
5f4da8c0 205
b3976d3c
FZ
206static void vmdk_free_extents(BlockDriverState *bs)
207{
208 int i;
209 BDRVVmdkState *s = bs->opaque;
b3c0bfb6 210 VmdkExtent *e;
b3976d3c
FZ
211
212 for (i = 0; i < s->num_extents; i++) {
b3c0bfb6
FZ
213 e = &s->extents[i];
214 g_free(e->l1_table);
215 g_free(e->l2_cache);
216 g_free(e->l1_backup_table);
217 if (e->file != bs->file) {
4f6fd349 218 bdrv_unref(e->file);
b3c0bfb6 219 }
b3976d3c 220 }
7267c094 221 g_free(s->extents);
b3976d3c
FZ
222}
223
86c6b429
FZ
224static void vmdk_free_last_extent(BlockDriverState *bs)
225{
226 BDRVVmdkState *s = bs->opaque;
227
228 if (s->num_extents == 0) {
229 return;
230 }
231 s->num_extents--;
232 s->extents = g_realloc(s->extents, s->num_extents * sizeof(VmdkExtent));
233}
234
5f4da8c0 235static uint32_t vmdk_read_cid(BlockDriverState *bs, int parent)
ea2384d3 236{
5f4da8c0 237 char desc[DESC_SIZE];
8379e46d 238 uint32_t cid = 0xffffffff;
7ccfb2eb 239 const char *p_name, *cid_str;
5f4da8c0 240 size_t cid_str_size;
e1da9b24 241 BDRVVmdkState *s = bs->opaque;
99f1835d 242 int ret;
5f4da8c0 243
99f1835d
KW
244 ret = bdrv_pread(bs->file, s->desc_offset, desc, DESC_SIZE);
245 if (ret < 0) {
5f4da8c0 246 return 0;
e1da9b24 247 }
5f4da8c0
TS
248
249 if (parent) {
250 cid_str = "parentCID";
251 cid_str_size = sizeof("parentCID");
252 } else {
253 cid_str = "CID";
254 cid_str_size = sizeof("CID");
255 }
256
93897b9f 257 desc[DESC_SIZE - 1] = '\0';
ae261c86
FZ
258 p_name = strstr(desc, cid_str);
259 if (p_name != NULL) {
5f4da8c0 260 p_name += cid_str_size;
ae261c86 261 sscanf(p_name, "%x", &cid);
5f4da8c0
TS
262 }
263
264 return cid;
265}
266
267static int vmdk_write_cid(BlockDriverState *bs, uint32_t cid)
268{
5f4da8c0
TS
269 char desc[DESC_SIZE], tmp_desc[DESC_SIZE];
270 char *p_name, *tmp_str;
e1da9b24 271 BDRVVmdkState *s = bs->opaque;
99f1835d 272 int ret;
5f4da8c0 273
99f1835d
KW
274 ret = bdrv_pread(bs->file, s->desc_offset, desc, DESC_SIZE);
275 if (ret < 0) {
276 return ret;
e1da9b24 277 }
5f4da8c0 278
93897b9f 279 desc[DESC_SIZE - 1] = '\0';
ae261c86 280 tmp_str = strstr(desc, "parentCID");
93897b9f
KW
281 if (tmp_str == NULL) {
282 return -EINVAL;
283 }
284
363a37d5 285 pstrcpy(tmp_desc, sizeof(tmp_desc), tmp_str);
ae261c86
FZ
286 p_name = strstr(desc, "CID");
287 if (p_name != NULL) {
5f4da8c0 288 p_name += sizeof("CID");
363a37d5
BS
289 snprintf(p_name, sizeof(desc) - (p_name - desc), "%x\n", cid);
290 pstrcat(desc, sizeof(desc), tmp_desc);
5f4da8c0
TS
291 }
292
99f1835d
KW
293 ret = bdrv_pwrite_sync(bs->file, s->desc_offset, desc, DESC_SIZE);
294 if (ret < 0) {
295 return ret;
e1da9b24 296 }
99f1835d 297
5f4da8c0
TS
298 return 0;
299}
300
301static int vmdk_is_cid_valid(BlockDriverState *bs)
302{
5f4da8c0 303 BDRVVmdkState *s = bs->opaque;
b171271a 304 BlockDriverState *p_bs = bs->backing_hd;
5f4da8c0
TS
305 uint32_t cur_pcid;
306
c338b6ad 307 if (!s->cid_checked && p_bs) {
ae261c86
FZ
308 cur_pcid = vmdk_read_cid(p_bs, 0);
309 if (s->parent_cid != cur_pcid) {
310 /* CID not valid */
5f4da8c0 311 return 0;
ae261c86 312 }
5f4da8c0 313 }
c338b6ad 314 s->cid_checked = true;
ae261c86 315 /* CID valid */
5f4da8c0
TS
316 return 1;
317}
318
3897575f
JC
319/* Queue extents, if any, for reopen() */
320static int vmdk_reopen_prepare(BDRVReopenState *state,
321 BlockReopenQueue *queue, Error **errp)
322{
323 BDRVVmdkState *s;
324 int ret = -1;
325 int i;
326 VmdkExtent *e;
327
328 assert(state != NULL);
329 assert(state->bs != NULL);
330
331 if (queue == NULL) {
4823970b 332 error_setg(errp, "No reopen queue for VMDK extents");
3897575f
JC
333 goto exit;
334 }
335
336 s = state->bs->opaque;
337
338 assert(s != NULL);
339
340 for (i = 0; i < s->num_extents; i++) {
341 e = &s->extents[i];
342 if (e->file != state->bs->file) {
343 bdrv_reopen_queue(queue, e->file, state->flags);
344 }
345 }
346 ret = 0;
347
348exit:
349 return ret;
350}
351
9949f97e 352static int vmdk_parent_open(BlockDriverState *bs)
5f4da8c0 353{
5fafdf24 354 char *p_name;
7fa60fa3 355 char desc[DESC_SIZE + 1];
e1da9b24 356 BDRVVmdkState *s = bs->opaque;
588b65a3 357 int ret;
5f4da8c0 358
7fa60fa3 359 desc[DESC_SIZE] = '\0';
588b65a3
PB
360 ret = bdrv_pread(bs->file, s->desc_offset, desc, DESC_SIZE);
361 if (ret < 0) {
362 return ret;
e1da9b24 363 }
5f4da8c0 364
ae261c86
FZ
365 p_name = strstr(desc, "parentFileNameHint");
366 if (p_name != NULL) {
5f4da8c0 367 char *end_name;
5f4da8c0
TS
368
369 p_name += sizeof("parentFileNameHint") + 1;
ae261c86
FZ
370 end_name = strchr(p_name, '\"');
371 if (end_name == NULL) {
588b65a3 372 return -EINVAL;
ae261c86
FZ
373 }
374 if ((end_name - p_name) > sizeof(bs->backing_file) - 1) {
588b65a3 375 return -EINVAL;
ae261c86 376 }
3b46e624 377
b171271a 378 pstrcpy(bs->backing_file, end_name - p_name + 1, p_name);
ff1afc72 379 }
5f4da8c0
TS
380
381 return 0;
382}
383
b3976d3c
FZ
384/* Create and append extent to the extent array. Return the added VmdkExtent
385 * address. return NULL if allocation failed. */
8aa1331c 386static int vmdk_add_extent(BlockDriverState *bs,
b3976d3c
FZ
387 BlockDriverState *file, bool flat, int64_t sectors,
388 int64_t l1_offset, int64_t l1_backup_offset,
389 uint32_t l1_size,
8aa1331c 390 int l2_size, uint64_t cluster_sectors,
4823970b
FZ
391 VmdkExtent **new_extent,
392 Error **errp)
b3976d3c
FZ
393{
394 VmdkExtent *extent;
395 BDRVVmdkState *s = bs->opaque;
396
8aa1331c
FZ
397 if (cluster_sectors > 0x200000) {
398 /* 0x200000 * 512Bytes = 1GB for one cluster is unrealistic */
4823970b
FZ
399 error_setg(errp, "Invalid granularity, image may be corrupt");
400 return -EFBIG;
8aa1331c 401 }
b0651b8c
FZ
402 if (l1_size > 512 * 1024 * 1024) {
403 /* Although with big capacity and small l1_entry_sectors, we can get a
404 * big l1_size, we don't want unbounded value to allocate the table.
405 * Limit it to 512M, which is 16PB for default cluster and L2 table
406 * size */
4823970b 407 error_setg(errp, "L1 size too big");
b0651b8c
FZ
408 return -EFBIG;
409 }
8aa1331c 410
7267c094 411 s->extents = g_realloc(s->extents,
b3976d3c
FZ
412 (s->num_extents + 1) * sizeof(VmdkExtent));
413 extent = &s->extents[s->num_extents];
414 s->num_extents++;
415
416 memset(extent, 0, sizeof(VmdkExtent));
417 extent->file = file;
418 extent->flat = flat;
419 extent->sectors = sectors;
420 extent->l1_table_offset = l1_offset;
421 extent->l1_backup_table_offset = l1_backup_offset;
422 extent->l1_size = l1_size;
423 extent->l1_entry_sectors = l2_size * cluster_sectors;
424 extent->l2_size = l2_size;
301c7d38 425 extent->cluster_sectors = flat ? sectors : cluster_sectors;
b3976d3c
FZ
426
427 if (s->num_extents > 1) {
428 extent->end_sector = (*(extent - 1)).end_sector + extent->sectors;
429 } else {
430 extent->end_sector = extent->sectors;
431 }
432 bs->total_sectors = extent->end_sector;
8aa1331c
FZ
433 if (new_extent) {
434 *new_extent = extent;
435 }
436 return 0;
b3976d3c
FZ
437}
438
4823970b
FZ
439static int vmdk_init_tables(BlockDriverState *bs, VmdkExtent *extent,
440 Error **errp)
5f4da8c0 441{
b4b3ab14
FZ
442 int ret;
443 int l1_size, i;
5f4da8c0 444
ea2384d3 445 /* read the L1 table */
b3976d3c 446 l1_size = extent->l1_size * sizeof(uint32_t);
7267c094 447 extent->l1_table = g_malloc(l1_size);
b4b3ab14 448 ret = bdrv_pread(extent->file,
4823970b
FZ
449 extent->l1_table_offset,
450 extent->l1_table,
451 l1_size);
b4b3ab14 452 if (ret < 0) {
4823970b
FZ
453 error_setg_errno(errp, -ret,
454 "Could not read l1 table from extent '%s'",
455 extent->file->filename);
b4b3ab14 456 goto fail_l1;
b3976d3c
FZ
457 }
458 for (i = 0; i < extent->l1_size; i++) {
459 le32_to_cpus(&extent->l1_table[i]);
ea2384d3
FB
460 }
461
b3976d3c 462 if (extent->l1_backup_table_offset) {
7267c094 463 extent->l1_backup_table = g_malloc(l1_size);
b4b3ab14 464 ret = bdrv_pread(extent->file,
4823970b
FZ
465 extent->l1_backup_table_offset,
466 extent->l1_backup_table,
467 l1_size);
b4b3ab14 468 if (ret < 0) {
4823970b
FZ
469 error_setg_errno(errp, -ret,
470 "Could not read l1 backup table from extent '%s'",
471 extent->file->filename);
b4b3ab14 472 goto fail_l1b;
b3976d3c
FZ
473 }
474 for (i = 0; i < extent->l1_size; i++) {
475 le32_to_cpus(&extent->l1_backup_table[i]);
ff1afc72
FB
476 }
477 }
478
b3976d3c 479 extent->l2_cache =
7267c094 480 g_malloc(extent->l2_size * L2_CACHE_SIZE * sizeof(uint32_t));
ea2384d3 481 return 0;
b4b3ab14 482 fail_l1b:
7267c094 483 g_free(extent->l1_backup_table);
b4b3ab14 484 fail_l1:
7267c094 485 g_free(extent->l1_table);
b4b3ab14
FZ
486 return ret;
487}
488
daac8fdc
FZ
489static int vmdk_open_vmfs_sparse(BlockDriverState *bs,
490 BlockDriverState *file,
4823970b 491 int flags, Error **errp)
b4b3ab14
FZ
492{
493 int ret;
494 uint32_t magic;
495 VMDK3Header header;
496 VmdkExtent *extent;
497
86c6b429 498 ret = bdrv_pread(file, sizeof(magic), &header, sizeof(header));
b4b3ab14 499 if (ret < 0) {
4823970b
FZ
500 error_setg_errno(errp, -ret,
501 "Could not read header from file '%s'",
502 file->filename);
86c6b429 503 return ret;
b4b3ab14 504 }
f6b61e54
FZ
505 ret = vmdk_add_extent(bs, file, false,
506 le32_to_cpu(header.disk_sectors),
507 le32_to_cpu(header.l1dir_offset) << 9,
508 0,
509 le32_to_cpu(header.l1dir_size),
510 4096,
511 le32_to_cpu(header.granularity),
4823970b
FZ
512 &extent,
513 errp);
8aa1331c
FZ
514 if (ret < 0) {
515 return ret;
516 }
4823970b 517 ret = vmdk_init_tables(bs, extent, errp);
b4b3ab14 518 if (ret) {
86c6b429
FZ
519 /* free extent allocated by vmdk_add_extent */
520 vmdk_free_last_extent(bs);
b4b3ab14 521 }
b4b3ab14
FZ
522 return ret;
523}
524
f16f509d 525static int vmdk_open_desc_file(BlockDriverState *bs, int flags,
4823970b 526 uint64_t desc_offset, Error **errp);
f16f509d 527
86c6b429
FZ
528static int vmdk_open_vmdk4(BlockDriverState *bs,
529 BlockDriverState *file,
4823970b 530 int flags, Error **errp)
b4b3ab14
FZ
531{
532 int ret;
533 uint32_t magic;
534 uint32_t l1_size, l1_entry_sectors;
535 VMDK4Header header;
b4b3ab14 536 VmdkExtent *extent;
bb45ded9 537 int64_t l1_backup_offset = 0;
b4b3ab14 538
86c6b429 539 ret = bdrv_pread(file, sizeof(magic), &header, sizeof(header));
b4b3ab14 540 if (ret < 0) {
4823970b
FZ
541 error_setg_errno(errp, -ret,
542 "Could not read header from file '%s'",
543 file->filename);
b4b3ab14 544 }
5a394b9e 545 if (header.capacity == 0) {
e98768d4 546 uint64_t desc_offset = le64_to_cpu(header.desc_offset);
5a394b9e 547 if (desc_offset) {
4823970b 548 return vmdk_open_desc_file(bs, flags, desc_offset << 9, errp);
5a394b9e 549 }
f16f509d 550 }
65bd155c
KW
551
552 if (le64_to_cpu(header.gd_offset) == VMDK4_GD_AT_END) {
553 /*
554 * The footer takes precedence over the header, so read it in. The
555 * footer starts at offset -1024 from the end: One sector for the
556 * footer, and another one for the end-of-stream marker.
557 */
558 struct {
559 struct {
560 uint64_t val;
561 uint32_t size;
562 uint32_t type;
563 uint8_t pad[512 - 16];
564 } QEMU_PACKED footer_marker;
565
566 uint32_t magic;
567 VMDK4Header header;
568 uint8_t pad[512 - 4 - sizeof(VMDK4Header)];
569
570 struct {
571 uint64_t val;
572 uint32_t size;
573 uint32_t type;
574 uint8_t pad[512 - 16];
575 } QEMU_PACKED eos_marker;
576 } QEMU_PACKED footer;
577
578 ret = bdrv_pread(file,
579 bs->file->total_sectors * 512 - 1536,
580 &footer, sizeof(footer));
581 if (ret < 0) {
582 return ret;
583 }
584
585 /* Some sanity checks for the footer */
586 if (be32_to_cpu(footer.magic) != VMDK4_MAGIC ||
587 le32_to_cpu(footer.footer_marker.size) != 0 ||
588 le32_to_cpu(footer.footer_marker.type) != MARKER_FOOTER ||
589 le64_to_cpu(footer.eos_marker.val) != 0 ||
590 le32_to_cpu(footer.eos_marker.size) != 0 ||
591 le32_to_cpu(footer.eos_marker.type) != MARKER_END_OF_STREAM)
592 {
593 return -EINVAL;
594 }
595
596 header = footer.header;
597 }
598
96c51eb5
FZ
599 if (le32_to_cpu(header.version) >= 3) {
600 char buf[64];
601 snprintf(buf, sizeof(buf), "VMDK version %d",
602 le32_to_cpu(header.version));
603 qerror_report(QERR_UNKNOWN_BLOCK_FORMAT_FEATURE,
604 bs->device_name, "vmdk", buf);
605 return -ENOTSUP;
606 }
607
ca8804ce 608 if (le32_to_cpu(header.num_gtes_per_gt) > 512) {
f8ce0403
FZ
609 error_report("L2 table size too big");
610 return -EINVAL;
611 }
612
ca8804ce 613 l1_entry_sectors = le32_to_cpu(header.num_gtes_per_gt)
b4b3ab14 614 * le64_to_cpu(header.granularity);
75d12341 615 if (l1_entry_sectors == 0) {
86c6b429
FZ
616 return -EINVAL;
617 }
b4b3ab14
FZ
618 l1_size = (le64_to_cpu(header.capacity) + l1_entry_sectors - 1)
619 / l1_entry_sectors;
bb45ded9
FZ
620 if (le32_to_cpu(header.flags) & VMDK4_FLAG_RGD) {
621 l1_backup_offset = le64_to_cpu(header.rgd_offset) << 9;
622 }
8aa1331c 623 ret = vmdk_add_extent(bs, file, false,
b4b3ab14
FZ
624 le64_to_cpu(header.capacity),
625 le64_to_cpu(header.gd_offset) << 9,
bb45ded9 626 l1_backup_offset,
b4b3ab14 627 l1_size,
ca8804ce 628 le32_to_cpu(header.num_gtes_per_gt),
8aa1331c 629 le64_to_cpu(header.granularity),
4823970b
FZ
630 &extent,
631 errp);
8aa1331c
FZ
632 if (ret < 0) {
633 return ret;
634 }
432bb170
FZ
635 extent->compressed =
636 le16_to_cpu(header.compressAlgorithm) == VMDK4_COMPRESSION_DEFLATE;
637 extent->has_marker = le32_to_cpu(header.flags) & VMDK4_FLAG_MARKER;
14ead646
FZ
638 extent->version = le32_to_cpu(header.version);
639 extent->has_zero_grain = le32_to_cpu(header.flags) & VMDK4_FLAG_ZERO_GRAIN;
4823970b 640 ret = vmdk_init_tables(bs, extent, errp);
b4b3ab14 641 if (ret) {
86c6b429
FZ
642 /* free extent allocated by vmdk_add_extent */
643 vmdk_free_last_extent(bs);
b4b3ab14 644 }
b4b3ab14
FZ
645 return ret;
646}
647
7fa60fa3
FZ
648/* find an option value out of descriptor file */
649static int vmdk_parse_description(const char *desc, const char *opt_name,
650 char *buf, int buf_size)
651{
652 char *opt_pos, *opt_end;
653 const char *end = desc + strlen(desc);
654
655 opt_pos = strstr(desc, opt_name);
656 if (!opt_pos) {
65f74725 657 return VMDK_ERROR;
7fa60fa3
FZ
658 }
659 /* Skip "=\"" following opt_name */
660 opt_pos += strlen(opt_name) + 2;
661 if (opt_pos >= end) {
65f74725 662 return VMDK_ERROR;
7fa60fa3
FZ
663 }
664 opt_end = opt_pos;
665 while (opt_end < end && *opt_end != '"') {
666 opt_end++;
667 }
668 if (opt_end == end || buf_size < opt_end - opt_pos + 1) {
65f74725 669 return VMDK_ERROR;
7fa60fa3
FZ
670 }
671 pstrcpy(buf, opt_end - opt_pos + 1, opt_pos);
65f74725 672 return VMDK_OK;
7fa60fa3
FZ
673}
674
86c6b429
FZ
675/* Open an extent file and append to bs array */
676static int vmdk_open_sparse(BlockDriverState *bs,
677 BlockDriverState *file,
4823970b 678 int flags, Error **errp)
86c6b429
FZ
679{
680 uint32_t magic;
681
682 if (bdrv_pread(file, 0, &magic, sizeof(magic)) != sizeof(magic)) {
683 return -EIO;
684 }
685
686 magic = be32_to_cpu(magic);
687 switch (magic) {
688 case VMDK3_MAGIC:
4823970b 689 return vmdk_open_vmfs_sparse(bs, file, flags, errp);
86c6b429
FZ
690 break;
691 case VMDK4_MAGIC:
4823970b 692 return vmdk_open_vmdk4(bs, file, flags, errp);
86c6b429
FZ
693 break;
694 default:
15bac0d5 695 return -EMEDIUMTYPE;
86c6b429
FZ
696 break;
697 }
698}
699
7fa60fa3 700static int vmdk_parse_extents(const char *desc, BlockDriverState *bs,
4823970b 701 const char *desc_file_path, Error **errp)
7fa60fa3
FZ
702{
703 int ret;
704 char access[11];
705 char type[11];
706 char fname[512];
707 const char *p = desc;
708 int64_t sectors = 0;
709 int64_t flat_offset;
86c6b429
FZ
710 char extent_path[PATH_MAX];
711 BlockDriverState *extent_file;
7fa60fa3
FZ
712
713 while (*p) {
714 /* parse extent line:
715 * RW [size in sectors] FLAT "file-name.vmdk" OFFSET
716 * or
717 * RW [size in sectors] SPARSE "file-name.vmdk"
718 */
719 flat_offset = -1;
cd923475 720 ret = sscanf(p, "%10s %" SCNd64 " %10s \"%511[^\n\r\"]\" %" SCNd64,
7fa60fa3
FZ
721 access, &sectors, type, fname, &flat_offset);
722 if (ret < 4 || strcmp(access, "RW")) {
723 goto next_line;
724 } else if (!strcmp(type, "FLAT")) {
725 if (ret != 5 || flat_offset < 0) {
4823970b 726 error_setg(errp, "Invalid extent lines: \n%s", p);
7fa60fa3
FZ
727 return -EINVAL;
728 }
dbbcaa8d
FZ
729 } else if (!strcmp(type, "VMFS")) {
730 flat_offset = 0;
7fa60fa3 731 } else if (ret != 4) {
4823970b 732 error_setg(errp, "Invalid extent lines: \n%s", p);
7fa60fa3
FZ
733 return -EINVAL;
734 }
735
7fa60fa3 736 if (sectors <= 0 ||
daac8fdc 737 (strcmp(type, "FLAT") && strcmp(type, "SPARSE") &&
04d542c8 738 strcmp(type, "VMFS") && strcmp(type, "VMFSSPARSE")) ||
7fa60fa3
FZ
739 (strcmp(access, "RW"))) {
740 goto next_line;
741 }
742
86c6b429
FZ
743 path_combine(extent_path, sizeof(extent_path),
744 desc_file_path, fname);
34b5d2c6 745 ret = bdrv_file_open(&extent_file, extent_path, NULL, bs->open_flags,
4823970b 746 errp);
86c6b429
FZ
747 if (ret) {
748 return ret;
749 }
750
7fa60fa3 751 /* save to extents array */
04d542c8 752 if (!strcmp(type, "FLAT") || !strcmp(type, "VMFS")) {
7fa60fa3 753 /* FLAT extent */
7fa60fa3
FZ
754 VmdkExtent *extent;
755
8aa1331c 756 ret = vmdk_add_extent(bs, extent_file, true, sectors,
4823970b 757 0, 0, 0, 0, 0, &extent, errp);
8aa1331c
FZ
758 if (ret < 0) {
759 return ret;
760 }
f16f509d 761 extent->flat_start_offset = flat_offset << 9;
daac8fdc
FZ
762 } else if (!strcmp(type, "SPARSE") || !strcmp(type, "VMFSSPARSE")) {
763 /* SPARSE extent and VMFSSPARSE extent are both "COWD" sparse file*/
4823970b 764 ret = vmdk_open_sparse(bs, extent_file, bs->open_flags, errp);
86c6b429 765 if (ret) {
4f6fd349 766 bdrv_unref(extent_file);
86c6b429
FZ
767 return ret;
768 }
7fa60fa3 769 } else {
4823970b 770 error_setg(errp, "Unsupported extent type '%s'", type);
7fa60fa3
FZ
771 return -ENOTSUP;
772 }
773next_line:
774 /* move to next line */
899f1ae2
FZ
775 while (*p) {
776 if (*p == '\n') {
777 p++;
778 break;
779 }
7fa60fa3
FZ
780 p++;
781 }
7fa60fa3
FZ
782 }
783 return 0;
784}
785
f16f509d 786static int vmdk_open_desc_file(BlockDriverState *bs, int flags,
4823970b 787 uint64_t desc_offset, Error **errp)
7fa60fa3
FZ
788{
789 int ret;
0bed087d 790 char *buf = NULL;
7fa60fa3
FZ
791 char ct[128];
792 BDRVVmdkState *s = bs->opaque;
0bed087d 793 int64_t size;
7fa60fa3 794
0bed087d
EB
795 size = bdrv_getlength(bs->file);
796 if (size < 0) {
797 return -EINVAL;
798 }
799
800 size = MIN(size, 1 << 20); /* avoid unbounded allocation */
801 buf = g_malloc0(size + 1);
802
803 ret = bdrv_pread(bs->file, desc_offset, buf, size);
7fa60fa3 804 if (ret < 0) {
0bed087d 805 goto exit;
7fa60fa3 806 }
7fa60fa3 807 if (vmdk_parse_description(buf, "createType", ct, sizeof(ct))) {
0bed087d
EB
808 ret = -EMEDIUMTYPE;
809 goto exit;
7fa60fa3 810 }
6398de51 811 if (strcmp(ct, "monolithicFlat") &&
04d542c8 812 strcmp(ct, "vmfs") &&
daac8fdc 813 strcmp(ct, "vmfsSparse") &&
86c6b429 814 strcmp(ct, "twoGbMaxExtentSparse") &&
6398de51 815 strcmp(ct, "twoGbMaxExtentFlat")) {
4823970b 816 error_setg(errp, "Unsupported image type '%s'", ct);
0bed087d
EB
817 ret = -ENOTSUP;
818 goto exit;
7fa60fa3
FZ
819 }
820 s->desc_offset = 0;
4823970b 821 ret = vmdk_parse_extents(buf, bs, bs->file->filename, errp);
0bed087d
EB
822exit:
823 g_free(buf);
824 return ret;
7fa60fa3
FZ
825}
826
015a1036
MR
827static int vmdk_open(BlockDriverState *bs, QDict *options, int flags,
828 Error **errp)
b4b3ab14 829{
86c6b429
FZ
830 int ret;
831 BDRVVmdkState *s = bs->opaque;
b4b3ab14 832
4823970b 833 if (vmdk_open_sparse(bs, bs->file, flags, errp) == 0) {
86c6b429 834 s->desc_offset = 0x200;
bae0a0cc 835 } else {
4823970b 836 ret = vmdk_open_desc_file(bs, flags, 0, errp);
86c6b429 837 if (ret) {
bae0a0cc 838 goto fail;
86c6b429 839 }
b4b3ab14 840 }
bae0a0cc
PB
841 /* try to open parent images, if exist */
842 ret = vmdk_parent_open(bs);
843 if (ret) {
844 goto fail;
845 }
846 s->parent_cid = vmdk_read_cid(bs, 1);
848c66e8 847 qemu_co_mutex_init(&s->lock);
2bc3166c
KW
848
849 /* Disable migration when VMDK images are used */
850 error_set(&s->migration_blocker,
851 QERR_BLOCK_FORMAT_FEATURE_NOT_SUPPORTED,
852 "vmdk", bs->device_name, "live migration");
853 migrate_add_blocker(s->migration_blocker);
854
855 return 0;
bae0a0cc
PB
856
857fail:
858 vmdk_free_extents(bs);
859 return ret;
ea2384d3
FB
860}
861
b3976d3c
FZ
862static int get_whole_cluster(BlockDriverState *bs,
863 VmdkExtent *extent,
864 uint64_t cluster_offset,
865 uint64_t offset,
866 bool allocate)
5f4da8c0 867{
bf81507d
FZ
868 int ret = VMDK_OK;
869 uint8_t *whole_grain = NULL;
5f4da8c0 870
0e69c543
FZ
871 /* we will be here if it's first write on non-exist grain(cluster).
872 * try to read from parent image, if exist */
b171271a 873 if (bs->backing_hd) {
bf81507d
FZ
874 whole_grain =
875 qemu_blockalign(bs, extent->cluster_sectors << BDRV_SECTOR_BITS);
ae261c86 876 if (!vmdk_is_cid_valid(bs)) {
bf81507d
FZ
877 ret = VMDK_ERROR;
878 goto exit;
ae261c86 879 }
5f4da8c0 880
0e69c543
FZ
881 /* floor offset to cluster */
882 offset -= offset % (extent->cluster_sectors * 512);
c336500d 883 ret = bdrv_read(bs->backing_hd, offset >> 9, whole_grain,
b3976d3c 884 extent->cluster_sectors);
c336500d 885 if (ret < 0) {
bf81507d
FZ
886 ret = VMDK_ERROR;
887 goto exit;
c336500d 888 }
630530a6 889
0e69c543 890 /* Write grain only into the active image */
b3976d3c
FZ
891 ret = bdrv_write(extent->file, cluster_offset, whole_grain,
892 extent->cluster_sectors);
c336500d 893 if (ret < 0) {
bf81507d
FZ
894 ret = VMDK_ERROR;
895 goto exit;
630530a6
TS
896 }
897 }
bf81507d
FZ
898exit:
899 qemu_vfree(whole_grain);
900 return ret;
630530a6
TS
901}
902
b3976d3c 903static int vmdk_L2update(VmdkExtent *extent, VmdkMetaData *m_data)
630530a6 904{
e304e8e5
FZ
905 uint32_t offset;
906 QEMU_BUILD_BUG_ON(sizeof(offset) != sizeof(m_data->offset));
907 offset = cpu_to_le32(m_data->offset);
630530a6 908 /* update L2 table */
b3976d3c
FZ
909 if (bdrv_pwrite_sync(
910 extent->file,
911 ((int64_t)m_data->l2_offset * 512)
912 + (m_data->l2_index * sizeof(m_data->offset)),
e304e8e5 913 &offset, sizeof(offset)) < 0) {
65f74725 914 return VMDK_ERROR;
b3976d3c 915 }
630530a6 916 /* update backup L2 table */
b3976d3c
FZ
917 if (extent->l1_backup_table_offset != 0) {
918 m_data->l2_offset = extent->l1_backup_table[m_data->l1_index];
919 if (bdrv_pwrite_sync(
920 extent->file,
921 ((int64_t)m_data->l2_offset * 512)
922 + (m_data->l2_index * sizeof(m_data->offset)),
e304e8e5 923 &offset, sizeof(offset)) < 0) {
65f74725 924 return VMDK_ERROR;
b3976d3c 925 }
5f4da8c0 926 }
cdeaf1f1
FZ
927 if (m_data->l2_cache_entry) {
928 *m_data->l2_cache_entry = offset;
929 }
630530a6 930
65f74725 931 return VMDK_OK;
5f4da8c0
TS
932}
933
91b85bd3 934static int get_cluster_offset(BlockDriverState *bs,
b3976d3c
FZ
935 VmdkExtent *extent,
936 VmdkMetaData *m_data,
91b85bd3
FZ
937 uint64_t offset,
938 int allocate,
939 uint64_t *cluster_offset)
ea2384d3 940{
ea2384d3
FB
941 unsigned int l1_index, l2_offset, l2_index;
942 int min_index, i, j;
e304e8e5 943 uint32_t min_count, *l2_table;
14ead646 944 bool zeroed = false;
630530a6 945
ae261c86 946 if (m_data) {
630530a6 947 m_data->valid = 0;
ae261c86 948 }
91b85bd3 949 if (extent->flat) {
7fa60fa3 950 *cluster_offset = extent->flat_start_offset;
65f74725 951 return VMDK_OK;
91b85bd3 952 }
630530a6 953
6398de51 954 offset -= (extent->end_sector - extent->sectors) * SECTOR_SIZE;
b3976d3c
FZ
955 l1_index = (offset >> 9) / extent->l1_entry_sectors;
956 if (l1_index >= extent->l1_size) {
65f74725 957 return VMDK_ERROR;
b3976d3c
FZ
958 }
959 l2_offset = extent->l1_table[l1_index];
960 if (!l2_offset) {
65f74725 961 return VMDK_UNALLOC;
b3976d3c 962 }
b4b3ab14 963 for (i = 0; i < L2_CACHE_SIZE; i++) {
b3976d3c 964 if (l2_offset == extent->l2_cache_offsets[i]) {
ea2384d3 965 /* increment the hit count */
b3976d3c 966 if (++extent->l2_cache_counts[i] == 0xffffffff) {
b4b3ab14 967 for (j = 0; j < L2_CACHE_SIZE; j++) {
b3976d3c 968 extent->l2_cache_counts[j] >>= 1;
ea2384d3
FB
969 }
970 }
b3976d3c 971 l2_table = extent->l2_cache + (i * extent->l2_size);
ea2384d3
FB
972 goto found;
973 }
974 }
975 /* not found: load a new entry in the least used one */
976 min_index = 0;
977 min_count = 0xffffffff;
b4b3ab14 978 for (i = 0; i < L2_CACHE_SIZE; i++) {
b3976d3c
FZ
979 if (extent->l2_cache_counts[i] < min_count) {
980 min_count = extent->l2_cache_counts[i];
ea2384d3
FB
981 min_index = i;
982 }
983 }
b3976d3c
FZ
984 l2_table = extent->l2_cache + (min_index * extent->l2_size);
985 if (bdrv_pread(
986 extent->file,
987 (int64_t)l2_offset * 512,
988 l2_table,
989 extent->l2_size * sizeof(uint32_t)
990 ) != extent->l2_size * sizeof(uint32_t)) {
65f74725 991 return VMDK_ERROR;
b3976d3c 992 }
5f4da8c0 993
b3976d3c
FZ
994 extent->l2_cache_offsets[min_index] = l2_offset;
995 extent->l2_cache_counts[min_index] = 1;
ea2384d3 996 found:
b3976d3c 997 l2_index = ((offset >> 9) / extent->cluster_sectors) % extent->l2_size;
91b85bd3 998 *cluster_offset = le32_to_cpu(l2_table[l2_index]);
630530a6 999
cdeaf1f1
FZ
1000 if (m_data) {
1001 m_data->valid = 1;
1002 m_data->l1_index = l1_index;
1003 m_data->l2_index = l2_index;
1004 m_data->offset = *cluster_offset;
1005 m_data->l2_offset = l2_offset;
1006 m_data->l2_cache_entry = &l2_table[l2_index];
1007 }
14ead646
FZ
1008 if (extent->has_zero_grain && *cluster_offset == VMDK_GTE_ZEROED) {
1009 zeroed = true;
1010 }
1011
1012 if (!*cluster_offset || zeroed) {
91b85bd3 1013 if (!allocate) {
14ead646 1014 return zeroed ? VMDK_ZEROED : VMDK_UNALLOC;
91b85bd3 1015 }
9949f97e 1016
ae261c86 1017 /* Avoid the L2 tables update for the images that have snapshots. */
91b85bd3 1018 *cluster_offset = bdrv_getlength(extent->file);
2b2c8c5d
FZ
1019 if (!extent->compressed) {
1020 bdrv_truncate(
1021 extent->file,
1022 *cluster_offset + (extent->cluster_sectors << 9)
1023 );
1024 }
9949f97e 1025
91b85bd3 1026 *cluster_offset >>= 9;
e304e8e5 1027 l2_table[l2_index] = cpu_to_le32(*cluster_offset);
630530a6 1028
630530a6
TS
1029 /* First of all we write grain itself, to avoid race condition
1030 * that may to corrupt the image.
1031 * This problem may occur because of insufficient space on host disk
1032 * or inappropriate VM shutdown.
1033 */
b3976d3c 1034 if (get_whole_cluster(
ae261c86 1035 bs, extent, *cluster_offset, offset, allocate) == -1) {
65f74725 1036 return VMDK_ERROR;
ae261c86 1037 }
630530a6
TS
1038
1039 if (m_data) {
e304e8e5 1040 m_data->offset = *cluster_offset;
630530a6 1041 }
ff1afc72 1042 }
91b85bd3 1043 *cluster_offset <<= 9;
65f74725 1044 return VMDK_OK;
ea2384d3
FB
1045}
1046
b3976d3c
FZ
1047static VmdkExtent *find_extent(BDRVVmdkState *s,
1048 int64_t sector_num, VmdkExtent *start_hint)
1049{
1050 VmdkExtent *extent = start_hint;
1051
1052 if (!extent) {
1053 extent = &s->extents[0];
1054 }
1055 while (extent < &s->extents[s->num_extents]) {
1056 if (sector_num < extent->end_sector) {
1057 return extent;
1058 }
1059 extent++;
1060 }
1061 return NULL;
1062}
1063
b6b8a333 1064static int64_t coroutine_fn vmdk_co_get_block_status(BlockDriverState *bs,
f8a2e5e3 1065 int64_t sector_num, int nb_sectors, int *pnum)
ea2384d3
FB
1066{
1067 BDRVVmdkState *s = bs->opaque;
b3976d3c
FZ
1068 int64_t index_in_cluster, n, ret;
1069 uint64_t offset;
1070 VmdkExtent *extent;
1071
1072 extent = find_extent(s, sector_num, NULL);
1073 if (!extent) {
1074 return 0;
1075 }
f8a2e5e3 1076 qemu_co_mutex_lock(&s->lock);
91b85bd3
FZ
1077 ret = get_cluster_offset(bs, extent, NULL,
1078 sector_num * 512, 0, &offset);
f8a2e5e3 1079 qemu_co_mutex_unlock(&s->lock);
14ead646 1080
4bc74be9
PB
1081 switch (ret) {
1082 case VMDK_ERROR:
1083 ret = -EIO;
1084 break;
1085 case VMDK_UNALLOC:
1086 ret = 0;
1087 break;
1088 case VMDK_ZEROED:
1089 ret = BDRV_BLOCK_ZERO;
1090 break;
1091 case VMDK_OK:
1092 ret = BDRV_BLOCK_DATA;
1093 if (extent->file == bs->file) {
1094 ret |= BDRV_BLOCK_OFFSET_VALID | offset;
1095 }
1096
1097 break;
1098 }
91b85bd3
FZ
1099
1100 index_in_cluster = sector_num % extent->cluster_sectors;
1101 n = extent->cluster_sectors - index_in_cluster;
ae261c86 1102 if (n > nb_sectors) {
ea2384d3 1103 n = nb_sectors;
ae261c86 1104 }
ea2384d3 1105 *pnum = n;
b3976d3c 1106 return ret;
ea2384d3
FB
1107}
1108
dd3f6ee2
FZ
1109static int vmdk_write_extent(VmdkExtent *extent, int64_t cluster_offset,
1110 int64_t offset_in_cluster, const uint8_t *buf,
1111 int nb_sectors, int64_t sector_num)
1112{
1113 int ret;
2b2c8c5d
FZ
1114 VmdkGrainMarker *data = NULL;
1115 uLongf buf_len;
dd3f6ee2
FZ
1116 const uint8_t *write_buf = buf;
1117 int write_len = nb_sectors * 512;
1118
2b2c8c5d
FZ
1119 if (extent->compressed) {
1120 if (!extent->has_marker) {
1121 ret = -EINVAL;
1122 goto out;
1123 }
1124 buf_len = (extent->cluster_sectors << 9) * 2;
1125 data = g_malloc(buf_len + sizeof(VmdkGrainMarker));
1126 if (compress(data->data, &buf_len, buf, nb_sectors << 9) != Z_OK ||
1127 buf_len == 0) {
1128 ret = -EINVAL;
1129 goto out;
1130 }
1131 data->lba = sector_num;
1132 data->size = buf_len;
1133 write_buf = (uint8_t *)data;
1134 write_len = buf_len + sizeof(VmdkGrainMarker);
1135 }
dd3f6ee2
FZ
1136 ret = bdrv_pwrite(extent->file,
1137 cluster_offset + offset_in_cluster,
1138 write_buf,
1139 write_len);
1140 if (ret != write_len) {
1141 ret = ret < 0 ? ret : -EIO;
1142 goto out;
1143 }
1144 ret = 0;
1145 out:
2b2c8c5d 1146 g_free(data);
dd3f6ee2
FZ
1147 return ret;
1148}
1149
1150static int vmdk_read_extent(VmdkExtent *extent, int64_t cluster_offset,
1151 int64_t offset_in_cluster, uint8_t *buf,
1152 int nb_sectors)
1153{
1154 int ret;
2b2c8c5d
FZ
1155 int cluster_bytes, buf_bytes;
1156 uint8_t *cluster_buf, *compressed_data;
1157 uint8_t *uncomp_buf;
1158 uint32_t data_len;
1159 VmdkGrainMarker *marker;
1160 uLongf buf_len;
1161
dd3f6ee2 1162
2b2c8c5d
FZ
1163 if (!extent->compressed) {
1164 ret = bdrv_pread(extent->file,
1165 cluster_offset + offset_in_cluster,
1166 buf, nb_sectors * 512);
1167 if (ret == nb_sectors * 512) {
1168 return 0;
1169 } else {
1170 return -EIO;
1171 }
1172 }
1173 cluster_bytes = extent->cluster_sectors * 512;
1174 /* Read two clusters in case GrainMarker + compressed data > one cluster */
1175 buf_bytes = cluster_bytes * 2;
1176 cluster_buf = g_malloc(buf_bytes);
1177 uncomp_buf = g_malloc(cluster_bytes);
dd3f6ee2 1178 ret = bdrv_pread(extent->file,
2b2c8c5d
FZ
1179 cluster_offset,
1180 cluster_buf, buf_bytes);
1181 if (ret < 0) {
1182 goto out;
1183 }
1184 compressed_data = cluster_buf;
1185 buf_len = cluster_bytes;
1186 data_len = cluster_bytes;
1187 if (extent->has_marker) {
1188 marker = (VmdkGrainMarker *)cluster_buf;
1189 compressed_data = marker->data;
1190 data_len = le32_to_cpu(marker->size);
1191 }
1192 if (!data_len || data_len > buf_bytes) {
1193 ret = -EINVAL;
1194 goto out;
1195 }
1196 ret = uncompress(uncomp_buf, &buf_len, compressed_data, data_len);
1197 if (ret != Z_OK) {
1198 ret = -EINVAL;
1199 goto out;
1200
1201 }
1202 if (offset_in_cluster < 0 ||
1203 offset_in_cluster + nb_sectors * 512 > buf_len) {
1204 ret = -EINVAL;
1205 goto out;
dd3f6ee2 1206 }
2b2c8c5d
FZ
1207 memcpy(buf, uncomp_buf + offset_in_cluster, nb_sectors * 512);
1208 ret = 0;
1209
1210 out:
1211 g_free(uncomp_buf);
1212 g_free(cluster_buf);
1213 return ret;
dd3f6ee2
FZ
1214}
1215
5fafdf24 1216static int vmdk_read(BlockDriverState *bs, int64_t sector_num,
ea2384d3
FB
1217 uint8_t *buf, int nb_sectors)
1218{
1219 BDRVVmdkState *s = bs->opaque;
b3976d3c
FZ
1220 int ret;
1221 uint64_t n, index_in_cluster;
b1649fae 1222 uint64_t extent_begin_sector, extent_relative_sector_num;
b3976d3c 1223 VmdkExtent *extent = NULL;
ea2384d3 1224 uint64_t cluster_offset;
5f4da8c0 1225
ea2384d3 1226 while (nb_sectors > 0) {
b3976d3c
FZ
1227 extent = find_extent(s, sector_num, extent);
1228 if (!extent) {
1229 return -EIO;
1230 }
91b85bd3
FZ
1231 ret = get_cluster_offset(
1232 bs, extent, NULL,
1233 sector_num << 9, 0, &cluster_offset);
b1649fae
GW
1234 extent_begin_sector = extent->end_sector - extent->sectors;
1235 extent_relative_sector_num = sector_num - extent_begin_sector;
1236 index_in_cluster = extent_relative_sector_num % extent->cluster_sectors;
b3976d3c 1237 n = extent->cluster_sectors - index_in_cluster;
ae261c86 1238 if (n > nb_sectors) {
ea2384d3 1239 n = nb_sectors;
ae261c86 1240 }
14ead646 1241 if (ret != VMDK_OK) {
91b85bd3 1242 /* if not allocated, try to read from parent image, if exist */
14ead646 1243 if (bs->backing_hd && ret != VMDK_ZEROED) {
ae261c86 1244 if (!vmdk_is_cid_valid(bs)) {
7fa60fa3 1245 return -EINVAL;
ae261c86 1246 }
b171271a 1247 ret = bdrv_read(bs->backing_hd, sector_num, buf, n);
ae261c86 1248 if (ret < 0) {
7fa60fa3 1249 return ret;
ae261c86 1250 }
5f4da8c0
TS
1251 } else {
1252 memset(buf, 0, 512 * n);
1253 }
ea2384d3 1254 } else {
dd3f6ee2
FZ
1255 ret = vmdk_read_extent(extent,
1256 cluster_offset, index_in_cluster * 512,
1257 buf, n);
1258 if (ret) {
7fa60fa3
FZ
1259 return ret;
1260 }
ea2384d3
FB
1261 }
1262 nb_sectors -= n;
1263 sector_num += n;
1264 buf += n * 512;
1265 }
1266 return 0;
1267}
1268
2914caa0
PB
1269static coroutine_fn int vmdk_co_read(BlockDriverState *bs, int64_t sector_num,
1270 uint8_t *buf, int nb_sectors)
1271{
1272 int ret;
1273 BDRVVmdkState *s = bs->opaque;
1274 qemu_co_mutex_lock(&s->lock);
1275 ret = vmdk_read(bs, sector_num, buf, nb_sectors);
1276 qemu_co_mutex_unlock(&s->lock);
1277 return ret;
1278}
1279
cdeaf1f1
FZ
1280/**
1281 * vmdk_write:
1282 * @zeroed: buf is ignored (data is zero), use zeroed_grain GTE feature
8e507243
FZ
1283 * if possible, otherwise return -ENOTSUP.
1284 * @zero_dry_run: used for zeroed == true only, don't update L2 table, just try
1285 * with each cluster. By dry run we can find if the zero write
1286 * is possible without modifying image data.
cdeaf1f1
FZ
1287 *
1288 * Returns: error code with 0 for success.
1289 */
5fafdf24 1290static int vmdk_write(BlockDriverState *bs, int64_t sector_num,
cdeaf1f1
FZ
1291 const uint8_t *buf, int nb_sectors,
1292 bool zeroed, bool zero_dry_run)
ea2384d3 1293{
ff1afc72 1294 BDRVVmdkState *s = bs->opaque;
b3976d3c 1295 VmdkExtent *extent = NULL;
91b85bd3 1296 int n, ret;
b3976d3c 1297 int64_t index_in_cluster;
b1649fae 1298 uint64_t extent_begin_sector, extent_relative_sector_num;
ff1afc72 1299 uint64_t cluster_offset;
b3976d3c 1300 VmdkMetaData m_data;
ff1afc72 1301
630530a6 1302 if (sector_num > bs->total_sectors) {
4823970b 1303 error_report("Wrong offset: sector_num=0x%" PRIx64
92868412 1304 " total_sectors=0x%" PRIx64 "\n",
630530a6 1305 sector_num, bs->total_sectors);
7fa60fa3 1306 return -EIO;
630530a6
TS
1307 }
1308
ff1afc72 1309 while (nb_sectors > 0) {
b3976d3c
FZ
1310 extent = find_extent(s, sector_num, extent);
1311 if (!extent) {
1312 return -EIO;
1313 }
91b85bd3 1314 ret = get_cluster_offset(
b3976d3c
FZ
1315 bs,
1316 extent,
1317 &m_data,
2b2c8c5d 1318 sector_num << 9, !extent->compressed,
91b85bd3 1319 &cluster_offset);
2b2c8c5d 1320 if (extent->compressed) {
65f74725 1321 if (ret == VMDK_OK) {
2b2c8c5d 1322 /* Refuse write to allocated cluster for streamOptimized */
4823970b
FZ
1323 error_report("Could not write to allocated cluster"
1324 " for streamOptimized");
2b2c8c5d
FZ
1325 return -EIO;
1326 } else {
1327 /* allocate */
1328 ret = get_cluster_offset(
1329 bs,
1330 extent,
1331 &m_data,
1332 sector_num << 9, 1,
1333 &cluster_offset);
1334 }
1335 }
cdeaf1f1 1336 if (ret == VMDK_ERROR) {
91b85bd3 1337 return -EINVAL;
b3976d3c 1338 }
b1649fae
GW
1339 extent_begin_sector = extent->end_sector - extent->sectors;
1340 extent_relative_sector_num = sector_num - extent_begin_sector;
1341 index_in_cluster = extent_relative_sector_num % extent->cluster_sectors;
b3976d3c
FZ
1342 n = extent->cluster_sectors - index_in_cluster;
1343 if (n > nb_sectors) {
1344 n = nb_sectors;
1345 }
cdeaf1f1
FZ
1346 if (zeroed) {
1347 /* Do zeroed write, buf is ignored */
1348 if (extent->has_zero_grain &&
1349 index_in_cluster == 0 &&
1350 n >= extent->cluster_sectors) {
1351 n = extent->cluster_sectors;
1352 if (!zero_dry_run) {
1353 m_data.offset = VMDK_GTE_ZEROED;
1354 /* update L2 tables */
1355 if (vmdk_L2update(extent, &m_data) != VMDK_OK) {
1356 return -EIO;
1357 }
1358 }
1359 } else {
1360 return -ENOTSUP;
1361 }
1362 } else {
1363 ret = vmdk_write_extent(extent,
1364 cluster_offset, index_in_cluster * 512,
1365 buf, n, sector_num);
1366 if (ret) {
1367 return ret;
1368 }
1369 if (m_data.valid) {
1370 /* update L2 tables */
1371 if (vmdk_L2update(extent, &m_data) != VMDK_OK) {
1372 return -EIO;
1373 }
b3976d3c 1374 }
630530a6 1375 }
ff1afc72
FB
1376 nb_sectors -= n;
1377 sector_num += n;
1378 buf += n * 512;
5f4da8c0 1379
ae261c86
FZ
1380 /* update CID on the first write every time the virtual disk is
1381 * opened */
69b4d86d 1382 if (!s->cid_updated) {
99f1835d
KW
1383 ret = vmdk_write_cid(bs, time(NULL));
1384 if (ret < 0) {
1385 return ret;
1386 }
69b4d86d 1387 s->cid_updated = true;
5f4da8c0 1388 }
ff1afc72
FB
1389 }
1390 return 0;
ea2384d3
FB
1391}
1392
e183ef75
PB
1393static coroutine_fn int vmdk_co_write(BlockDriverState *bs, int64_t sector_num,
1394 const uint8_t *buf, int nb_sectors)
1395{
1396 int ret;
1397 BDRVVmdkState *s = bs->opaque;
1398 qemu_co_mutex_lock(&s->lock);
cdeaf1f1
FZ
1399 ret = vmdk_write(bs, sector_num, buf, nb_sectors, false, false);
1400 qemu_co_mutex_unlock(&s->lock);
1401 return ret;
1402}
1403
1404static int coroutine_fn vmdk_co_write_zeroes(BlockDriverState *bs,
1405 int64_t sector_num,
1406 int nb_sectors)
1407{
1408 int ret;
1409 BDRVVmdkState *s = bs->opaque;
1410 qemu_co_mutex_lock(&s->lock);
8e507243
FZ
1411 /* write zeroes could fail if sectors not aligned to cluster, test it with
1412 * dry_run == true before really updating image */
cdeaf1f1
FZ
1413 ret = vmdk_write(bs, sector_num, NULL, nb_sectors, true, true);
1414 if (!ret) {
1415 ret = vmdk_write(bs, sector_num, NULL, nb_sectors, true, false);
1416 }
e183ef75
PB
1417 qemu_co_mutex_unlock(&s->lock);
1418 return ret;
1419}
1420
6c031aac 1421static int vmdk_create_extent(const char *filename, int64_t filesize,
69e0b6df 1422 bool flat, bool compress, bool zeroed_grain)
8979b227 1423{
f66fd6c3
FZ
1424 int ret, i;
1425 int fd = 0;
8979b227
FB
1426 VMDK4Header header;
1427 uint32_t tmp, magic, grains, gd_size, gt_size, gt_count;
0e7e1989 1428
6165f4d8
CB
1429 fd = qemu_open(filename,
1430 O_WRONLY | O_CREAT | O_TRUNC | O_BINARY | O_LARGEFILE,
1431 0644);
f66fd6c3
FZ
1432 if (fd < 0) {
1433 return -errno;
0e7e1989 1434 }
f66fd6c3
FZ
1435 if (flat) {
1436 ret = ftruncate(fd, filesize);
1437 if (ret < 0) {
1438 ret = -errno;
1439 }
1440 goto exit;
5f4da8c0 1441 }
8979b227
FB
1442 magic = cpu_to_be32(VMDK4_MAGIC);
1443 memset(&header, 0, sizeof(header));
69e0b6df 1444 header.version = zeroed_grain ? 2 : 1;
95b0aa42 1445 header.flags = VMDK4_FLAG_RGD | VMDK4_FLAG_NL_DETECT
69e0b6df
FZ
1446 | (compress ? VMDK4_FLAG_COMPRESS | VMDK4_FLAG_MARKER : 0)
1447 | (zeroed_grain ? VMDK4_FLAG_ZERO_GRAIN : 0);
6c031aac 1448 header.compressAlgorithm = compress ? VMDK4_COMPRESSION_DEFLATE : 0;
f66fd6c3 1449 header.capacity = filesize / 512;
16372ff0 1450 header.granularity = 128;
ca8804ce 1451 header.num_gtes_per_gt = 512;
8979b227 1452
f66fd6c3 1453 grains = (filesize / 512 + header.granularity - 1) / header.granularity;
ca8804ce 1454 gt_size = ((header.num_gtes_per_gt * sizeof(uint32_t)) + 511) >> 9;
f66fd6c3 1455 gt_count =
ca8804ce 1456 (grains + header.num_gtes_per_gt - 1) / header.num_gtes_per_gt;
8979b227
FB
1457 gd_size = (gt_count * sizeof(uint32_t) + 511) >> 9;
1458
1459 header.desc_offset = 1;
1460 header.desc_size = 20;
1461 header.rgd_offset = header.desc_offset + header.desc_size;
1462 header.gd_offset = header.rgd_offset + gd_size + (gt_size * gt_count);
1463 header.grain_offset =
1464 ((header.gd_offset + gd_size + (gt_size * gt_count) +
1465 header.granularity - 1) / header.granularity) *
1466 header.granularity;
16372ff0
AG
1467 /* swap endianness for all header fields */
1468 header.version = cpu_to_le32(header.version);
1469 header.flags = cpu_to_le32(header.flags);
1470 header.capacity = cpu_to_le64(header.capacity);
1471 header.granularity = cpu_to_le64(header.granularity);
ca8804ce 1472 header.num_gtes_per_gt = cpu_to_le32(header.num_gtes_per_gt);
8979b227
FB
1473 header.desc_offset = cpu_to_le64(header.desc_offset);
1474 header.desc_size = cpu_to_le64(header.desc_size);
1475 header.rgd_offset = cpu_to_le64(header.rgd_offset);
1476 header.gd_offset = cpu_to_le64(header.gd_offset);
1477 header.grain_offset = cpu_to_le64(header.grain_offset);
6c031aac 1478 header.compressAlgorithm = cpu_to_le16(header.compressAlgorithm);
8979b227
FB
1479
1480 header.check_bytes[0] = 0xa;
1481 header.check_bytes[1] = 0x20;
1482 header.check_bytes[2] = 0xd;
1483 header.check_bytes[3] = 0xa;
3b46e624
TS
1484
1485 /* write all the data */
1640366c
KS
1486 ret = qemu_write_full(fd, &magic, sizeof(magic));
1487 if (ret != sizeof(magic)) {
b781cce5 1488 ret = -errno;
1640366c
KS
1489 goto exit;
1490 }
1491 ret = qemu_write_full(fd, &header, sizeof(header));
1492 if (ret != sizeof(header)) {
b781cce5 1493 ret = -errno;
1640366c
KS
1494 goto exit;
1495 }
8979b227 1496
16372ff0 1497 ret = ftruncate(fd, le64_to_cpu(header.grain_offset) << 9);
1640366c 1498 if (ret < 0) {
b781cce5 1499 ret = -errno;
1640366c
KS
1500 goto exit;
1501 }
8979b227
FB
1502
1503 /* write grain directory */
1504 lseek(fd, le64_to_cpu(header.rgd_offset) << 9, SEEK_SET);
16372ff0 1505 for (i = 0, tmp = le64_to_cpu(header.rgd_offset) + gd_size;
1640366c
KS
1506 i < gt_count; i++, tmp += gt_size) {
1507 ret = qemu_write_full(fd, &tmp, sizeof(tmp));
1508 if (ret != sizeof(tmp)) {
b781cce5 1509 ret = -errno;
1640366c
KS
1510 goto exit;
1511 }
1512 }
3b46e624 1513
8979b227
FB
1514 /* write backup grain directory */
1515 lseek(fd, le64_to_cpu(header.gd_offset) << 9, SEEK_SET);
16372ff0 1516 for (i = 0, tmp = le64_to_cpu(header.gd_offset) + gd_size;
1640366c
KS
1517 i < gt_count; i++, tmp += gt_size) {
1518 ret = qemu_write_full(fd, &tmp, sizeof(tmp));
1519 if (ret != sizeof(tmp)) {
b781cce5 1520 ret = -errno;
1640366c
KS
1521 goto exit;
1522 }
1523 }
8979b227 1524
f66fd6c3
FZ
1525 ret = 0;
1526 exit:
2e1e79da 1527 qemu_close(fd);
f66fd6c3
FZ
1528 return ret;
1529}
1530
1531static int filename_decompose(const char *filename, char *path, char *prefix,
4823970b 1532 char *postfix, size_t buf_len, Error **errp)
f66fd6c3
FZ
1533{
1534 const char *p, *q;
1535
1536 if (filename == NULL || !strlen(filename)) {
4823970b 1537 error_setg(errp, "No filename provided");
65f74725 1538 return VMDK_ERROR;
f66fd6c3
FZ
1539 }
1540 p = strrchr(filename, '/');
1541 if (p == NULL) {
1542 p = strrchr(filename, '\\');
1543 }
1544 if (p == NULL) {
1545 p = strrchr(filename, ':');
1546 }
1547 if (p != NULL) {
1548 p++;
1549 if (p - filename >= buf_len) {
65f74725 1550 return VMDK_ERROR;
f66fd6c3
FZ
1551 }
1552 pstrcpy(path, p - filename + 1, filename);
1553 } else {
1554 p = filename;
1555 path[0] = '\0';
1556 }
1557 q = strrchr(p, '.');
1558 if (q == NULL) {
1559 pstrcpy(prefix, buf_len, p);
1560 postfix[0] = '\0';
1561 } else {
1562 if (q - p >= buf_len) {
65f74725 1563 return VMDK_ERROR;
f66fd6c3
FZ
1564 }
1565 pstrcpy(prefix, q - p + 1, p);
1566 pstrcpy(postfix, buf_len, q);
1567 }
65f74725 1568 return VMDK_OK;
f66fd6c3
FZ
1569}
1570
d5124c00
MR
1571static int vmdk_create(const char *filename, QEMUOptionParameter *options,
1572 Error **errp)
f66fd6c3
FZ
1573{
1574 int fd, idx = 0;
1575 char desc[BUF_SIZE];
1576 int64_t total_size = 0, filesize;
7f2039f6 1577 const char *adapter_type = NULL;
f66fd6c3
FZ
1578 const char *backing_file = NULL;
1579 const char *fmt = NULL;
1580 int flags = 0;
1581 int ret = 0;
6c031aac 1582 bool flat, split, compress;
f66fd6c3
FZ
1583 char ext_desc_lines[BUF_SIZE] = "";
1584 char path[PATH_MAX], prefix[PATH_MAX], postfix[PATH_MAX];
1585 const int64_t split_size = 0x80000000; /* VMDK has constant split size */
1586 const char *desc_extent_line;
1587 char parent_desc_line[BUF_SIZE] = "";
1588 uint32_t parent_cid = 0xffffffff;
7f2039f6 1589 uint32_t number_heads = 16;
69e0b6df 1590 bool zeroed_grain = false;
f66fd6c3
FZ
1591 const char desc_template[] =
1592 "# Disk DescriptorFile\n"
1593 "version=1\n"
1594 "CID=%x\n"
1595 "parentCID=%x\n"
1596 "createType=\"%s\"\n"
1597 "%s"
1598 "\n"
1599 "# Extent description\n"
1600 "%s"
1601 "\n"
1602 "# The Disk Data Base\n"
1603 "#DDB\n"
1604 "\n"
1605 "ddb.virtualHWVersion = \"%d\"\n"
1606 "ddb.geometry.cylinders = \"%" PRId64 "\"\n"
7f2039f6 1607 "ddb.geometry.heads = \"%d\"\n"
f66fd6c3 1608 "ddb.geometry.sectors = \"63\"\n"
7f2039f6 1609 "ddb.adapterType = \"%s\"\n";
f66fd6c3 1610
4823970b 1611 if (filename_decompose(filename, path, prefix, postfix, PATH_MAX, errp)) {
f66fd6c3
FZ
1612 return -EINVAL;
1613 }
1614 /* Read out options */
1615 while (options && options->name) {
1616 if (!strcmp(options->name, BLOCK_OPT_SIZE)) {
1617 total_size = options->value.n;
7f2039f6
OP
1618 } else if (!strcmp(options->name, BLOCK_OPT_ADAPTER_TYPE)) {
1619 adapter_type = options->value.s;
f66fd6c3
FZ
1620 } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FILE)) {
1621 backing_file = options->value.s;
1622 } else if (!strcmp(options->name, BLOCK_OPT_COMPAT6)) {
1623 flags |= options->value.n ? BLOCK_FLAG_COMPAT6 : 0;
1624 } else if (!strcmp(options->name, BLOCK_OPT_SUBFMT)) {
1625 fmt = options->value.s;
69e0b6df
FZ
1626 } else if (!strcmp(options->name, BLOCK_OPT_ZEROED_GRAIN)) {
1627 zeroed_grain |= options->value.n;
f66fd6c3
FZ
1628 }
1629 options++;
1630 }
7f2039f6
OP
1631 if (!adapter_type) {
1632 adapter_type = "ide";
1633 } else if (strcmp(adapter_type, "ide") &&
1634 strcmp(adapter_type, "buslogic") &&
1635 strcmp(adapter_type, "lsilogic") &&
1636 strcmp(adapter_type, "legacyESX")) {
4823970b 1637 error_setg(errp, "Unknown adapter type: '%s'", adapter_type);
7f2039f6
OP
1638 return -EINVAL;
1639 }
1640 if (strcmp(adapter_type, "ide") != 0) {
1641 /* that's the number of heads with which vmware operates when
1642 creating, exporting, etc. vmdk files with a non-ide adapter type */
1643 number_heads = 255;
1644 }
f66fd6c3
FZ
1645 if (!fmt) {
1646 /* Default format to monolithicSparse */
1647 fmt = "monolithicSparse";
1648 } else if (strcmp(fmt, "monolithicFlat") &&
1649 strcmp(fmt, "monolithicSparse") &&
1650 strcmp(fmt, "twoGbMaxExtentSparse") &&
6c031aac
FZ
1651 strcmp(fmt, "twoGbMaxExtentFlat") &&
1652 strcmp(fmt, "streamOptimized")) {
4823970b 1653 error_setg(errp, "Unknown subformat: '%s'", fmt);
f66fd6c3
FZ
1654 return -EINVAL;
1655 }
1656 split = !(strcmp(fmt, "twoGbMaxExtentFlat") &&
1657 strcmp(fmt, "twoGbMaxExtentSparse"));
1658 flat = !(strcmp(fmt, "monolithicFlat") &&
1659 strcmp(fmt, "twoGbMaxExtentFlat"));
6c031aac 1660 compress = !strcmp(fmt, "streamOptimized");
f66fd6c3
FZ
1661 if (flat) {
1662 desc_extent_line = "RW %lld FLAT \"%s\" 0\n";
1663 } else {
1664 desc_extent_line = "RW %lld SPARSE \"%s\"\n";
1665 }
1666 if (flat && backing_file) {
4823970b 1667 error_setg(errp, "Flat image can't have backing file");
f66fd6c3
FZ
1668 return -ENOTSUP;
1669 }
52c8d629
FZ
1670 if (flat && zeroed_grain) {
1671 error_setg(errp, "Flat image can't enable zeroed grain");
1672 return -ENOTSUP;
1673 }
f66fd6c3 1674 if (backing_file) {
f66fd6c3 1675 BlockDriverState *bs = bdrv_new("");
4823970b 1676 ret = bdrv_open(bs, backing_file, NULL, 0, NULL, errp);
f66fd6c3 1677 if (ret != 0) {
4f6fd349 1678 bdrv_unref(bs);
f66fd6c3
FZ
1679 return ret;
1680 }
1681 if (strcmp(bs->drv->format_name, "vmdk")) {
4f6fd349 1682 bdrv_unref(bs);
f66fd6c3
FZ
1683 return -EINVAL;
1684 }
f66fd6c3 1685 parent_cid = vmdk_read_cid(bs, 0);
4f6fd349 1686 bdrv_unref(bs);
f66fd6c3 1687 snprintf(parent_desc_line, sizeof(parent_desc_line),
8ed610a1 1688 "parentFileNameHint=\"%s\"", backing_file);
f66fd6c3
FZ
1689 }
1690
1691 /* Create extents */
1692 filesize = total_size;
1693 while (filesize > 0) {
1694 char desc_line[BUF_SIZE];
1695 char ext_filename[PATH_MAX];
1696 char desc_filename[PATH_MAX];
1697 int64_t size = filesize;
1698
1699 if (split && size > split_size) {
1700 size = split_size;
1701 }
1702 if (split) {
1703 snprintf(desc_filename, sizeof(desc_filename), "%s-%c%03d%s",
1704 prefix, flat ? 'f' : 's', ++idx, postfix);
1705 } else if (flat) {
1706 snprintf(desc_filename, sizeof(desc_filename), "%s-flat%s",
1707 prefix, postfix);
1708 } else {
1709 snprintf(desc_filename, sizeof(desc_filename), "%s%s",
1710 prefix, postfix);
1711 }
1712 snprintf(ext_filename, sizeof(ext_filename), "%s%s",
1713 path, desc_filename);
1714
69e0b6df
FZ
1715 if (vmdk_create_extent(ext_filename, size,
1716 flat, compress, zeroed_grain)) {
f66fd6c3
FZ
1717 return -EINVAL;
1718 }
1719 filesize -= size;
1720
1721 /* Format description line */
1722 snprintf(desc_line, sizeof(desc_line),
1723 desc_extent_line, size / 512, desc_filename);
1724 pstrcat(ext_desc_lines, sizeof(ext_desc_lines), desc_line);
1725 }
1726 /* generate descriptor file */
1727 snprintf(desc, sizeof(desc), desc_template,
1728 (unsigned int)time(NULL),
1729 parent_cid,
1730 fmt,
1731 parent_desc_line,
1732 ext_desc_lines,
1733 (flags & BLOCK_FLAG_COMPAT6 ? 6 : 4),
7f2039f6
OP
1734 total_size / (int64_t)(63 * number_heads * 512), number_heads,
1735 adapter_type);
f66fd6c3 1736 if (split || flat) {
6165f4d8
CB
1737 fd = qemu_open(filename,
1738 O_WRONLY | O_CREAT | O_TRUNC | O_BINARY | O_LARGEFILE,
1739 0644);
f66fd6c3 1740 } else {
6165f4d8
CB
1741 fd = qemu_open(filename,
1742 O_WRONLY | O_BINARY | O_LARGEFILE,
1743 0644);
f66fd6c3
FZ
1744 }
1745 if (fd < 0) {
1746 return -errno;
1747 }
1748 /* the descriptor offset = 0x200 */
1749 if (!split && !flat && 0x200 != lseek(fd, 0x200, SEEK_SET)) {
1750 ret = -errno;
1751 goto exit;
1752 }
1640366c
KS
1753 ret = qemu_write_full(fd, desc, strlen(desc));
1754 if (ret != strlen(desc)) {
b781cce5 1755 ret = -errno;
1640366c
KS
1756 goto exit;
1757 }
1640366c
KS
1758 ret = 0;
1759exit:
2e1e79da 1760 qemu_close(fd);
1640366c 1761 return ret;
8979b227
FB
1762}
1763
e2731add 1764static void vmdk_close(BlockDriverState *bs)
ea2384d3 1765{
2bc3166c
KW
1766 BDRVVmdkState *s = bs->opaque;
1767
b3976d3c 1768 vmdk_free_extents(bs);
2bc3166c
KW
1769
1770 migrate_del_blocker(s->migration_blocker);
1771 error_free(s->migration_blocker);
ea2384d3
FB
1772}
1773
8b94ff85 1774static coroutine_fn int vmdk_co_flush(BlockDriverState *bs)
7a6cba61 1775{
333c574d 1776 BDRVVmdkState *s = bs->opaque;
29cdb251
PB
1777 int i, err;
1778 int ret = 0;
333c574d 1779
333c574d 1780 for (i = 0; i < s->num_extents; i++) {
8b94ff85 1781 err = bdrv_co_flush(s->extents[i].file);
333c574d
FZ
1782 if (err < 0) {
1783 ret = err;
1784 }
1785 }
1786 return ret;
7a6cba61
PB
1787}
1788
4a1d5e1f
FZ
1789static int64_t vmdk_get_allocated_file_size(BlockDriverState *bs)
1790{
1791 int i;
1792 int64_t ret = 0;
1793 int64_t r;
1794 BDRVVmdkState *s = bs->opaque;
1795
1796 ret = bdrv_get_allocated_file_size(bs->file);
1797 if (ret < 0) {
1798 return ret;
1799 }
1800 for (i = 0; i < s->num_extents; i++) {
1801 if (s->extents[i].file == bs->file) {
1802 continue;
1803 }
1804 r = bdrv_get_allocated_file_size(s->extents[i].file);
1805 if (r < 0) {
1806 return r;
1807 }
1808 ret += r;
1809 }
1810 return ret;
1811}
0e7e1989 1812
da7a50f9
FZ
1813static int vmdk_has_zero_init(BlockDriverState *bs)
1814{
1815 int i;
1816 BDRVVmdkState *s = bs->opaque;
1817
1818 /* If has a flat extent and its underlying storage doesn't have zero init,
1819 * return 0. */
1820 for (i = 0; i < s->num_extents; i++) {
1821 if (s->extents[i].flat) {
1822 if (!bdrv_has_zero_init(s->extents[i].file)) {
1823 return 0;
1824 }
1825 }
1826 }
1827 return 1;
1828}
1829
0e7e1989 1830static QEMUOptionParameter vmdk_create_options[] = {
db08adf5
KW
1831 {
1832 .name = BLOCK_OPT_SIZE,
1833 .type = OPT_SIZE,
1834 .help = "Virtual disk size"
1835 },
7f2039f6
OP
1836 {
1837 .name = BLOCK_OPT_ADAPTER_TYPE,
1838 .type = OPT_STRING,
1839 .help = "Virtual adapter type, can be one of "
1840 "ide (default), lsilogic, buslogic or legacyESX"
1841 },
db08adf5
KW
1842 {
1843 .name = BLOCK_OPT_BACKING_FILE,
1844 .type = OPT_STRING,
1845 .help = "File name of a base image"
1846 },
1847 {
1848 .name = BLOCK_OPT_COMPAT6,
1849 .type = OPT_FLAG,
1850 .help = "VMDK version 6 image"
1851 },
f66fd6c3
FZ
1852 {
1853 .name = BLOCK_OPT_SUBFMT,
1854 .type = OPT_STRING,
1855 .help =
1856 "VMDK flat extent format, can be one of "
6c031aac 1857 "{monolithicSparse (default) | monolithicFlat | twoGbMaxExtentSparse | twoGbMaxExtentFlat | streamOptimized} "
f66fd6c3 1858 },
69e0b6df
FZ
1859 {
1860 .name = BLOCK_OPT_ZEROED_GRAIN,
1861 .type = OPT_FLAG,
1862 .help = "Enable efficient zero writes using the zeroed-grain GTE feature"
1863 },
0e7e1989
KW
1864 { NULL }
1865};
1866
5efa9d5a 1867static BlockDriver bdrv_vmdk = {
da7a50f9
FZ
1868 .format_name = "vmdk",
1869 .instance_size = sizeof(BDRVVmdkState),
1870 .bdrv_probe = vmdk_probe,
1871 .bdrv_open = vmdk_open,
1872 .bdrv_reopen_prepare = vmdk_reopen_prepare,
1873 .bdrv_read = vmdk_co_read,
1874 .bdrv_write = vmdk_co_write,
1875 .bdrv_co_write_zeroes = vmdk_co_write_zeroes,
1876 .bdrv_close = vmdk_close,
1877 .bdrv_create = vmdk_create,
1878 .bdrv_co_flush_to_disk = vmdk_co_flush,
b6b8a333 1879 .bdrv_co_get_block_status = vmdk_co_get_block_status,
da7a50f9
FZ
1880 .bdrv_get_allocated_file_size = vmdk_get_allocated_file_size,
1881 .bdrv_has_zero_init = vmdk_has_zero_init,
1882
1883 .create_options = vmdk_create_options,
ea2384d3 1884};
5efa9d5a
AL
1885
1886static void bdrv_vmdk_init(void)
1887{
1888 bdrv_register(&bdrv_vmdk);
1889}
1890
1891block_init(bdrv_vmdk_init);