]> git.proxmox.com Git - qemu.git/blob - block/vdi.c
hw/i386/Makefile.obj: use $(PYTHON) to run .py scripts consistently
[qemu.git] / block / vdi.c
1 /*
2 * Block driver for the Virtual Disk Image (VDI) format
3 *
4 * Copyright (c) 2009, 2012 Stefan Weil
5 *
6 * This program is free software: you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation, either version 2 of the License, or
9 * (at your option) version 3 or any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 *
19 * Reference:
20 * http://forums.virtualbox.org/viewtopic.php?t=8046
21 *
22 * This driver supports create / read / write operations on VDI images.
23 *
24 * Todo (see also TODO in code):
25 *
26 * Some features like snapshots are still missing.
27 *
28 * Deallocation of zero-filled blocks and shrinking images are missing, too
29 * (might be added to common block layer).
30 *
31 * Allocation of blocks could be optimized (less writes to block map and
32 * header).
33 *
34 * Read and write of adjacents blocks could be done in one operation
35 * (current code uses one operation per block (1 MiB).
36 *
37 * The code is not thread safe (missing locks for changes in header and
38 * block table, no problem with current QEMU).
39 *
40 * Hints:
41 *
42 * Blocks (VDI documentation) correspond to clusters (QEMU).
43 * QEMU's backing files could be implemented using VDI snapshot files (TODO).
44 * VDI snapshot files may also contain the complete machine state.
45 * Maybe this machine state can be converted to QEMU PC machine snapshot data.
46 *
47 * The driver keeps a block cache (little endian entries) in memory.
48 * For the standard block size (1 MiB), a 1 TiB disk will use 4 MiB RAM,
49 * so this seems to be reasonable.
50 */
51
52 #include "qemu-common.h"
53 #include "block/block_int.h"
54 #include "qemu/module.h"
55 #include "migration/migration.h"
56
57 #if defined(CONFIG_UUID)
58 #include <uuid/uuid.h>
59 #else
60 /* TODO: move uuid emulation to some central place in QEMU. */
61 #include "sysemu/sysemu.h" /* UUID_FMT */
62 typedef unsigned char uuid_t[16];
63 #endif
64
65 /* Code configuration options. */
66
67 /* Enable debug messages. */
68 //~ #define CONFIG_VDI_DEBUG
69
70 /* Support write operations on VDI images. */
71 #define CONFIG_VDI_WRITE
72
73 /* Support non-standard block (cluster) size. This is untested.
74 * Maybe it will be needed for very large images.
75 */
76 //~ #define CONFIG_VDI_BLOCK_SIZE
77
78 /* Support static (fixed, pre-allocated) images. */
79 #define CONFIG_VDI_STATIC_IMAGE
80
81 /* Command line option for static images. */
82 #define BLOCK_OPT_STATIC "static"
83
84 #define KiB 1024
85 #define MiB (KiB * KiB)
86
87 #define SECTOR_SIZE 512
88 #define DEFAULT_CLUSTER_SIZE (1 * MiB)
89
90 #if defined(CONFIG_VDI_DEBUG)
91 #define logout(fmt, ...) \
92 fprintf(stderr, "vdi\t%-24s" fmt, __func__, ##__VA_ARGS__)
93 #else
94 #define logout(fmt, ...) ((void)0)
95 #endif
96
97 /* Image signature. */
98 #define VDI_SIGNATURE 0xbeda107f
99
100 /* Image version. */
101 #define VDI_VERSION_1_1 0x00010001
102
103 /* Image type. */
104 #define VDI_TYPE_DYNAMIC 1
105 #define VDI_TYPE_STATIC 2
106
107 /* Innotek / SUN images use these strings in header.text:
108 * "<<< innotek VirtualBox Disk Image >>>\n"
109 * "<<< Sun xVM VirtualBox Disk Image >>>\n"
110 * "<<< Sun VirtualBox Disk Image >>>\n"
111 * The value does not matter, so QEMU created images use a different text.
112 */
113 #define VDI_TEXT "<<< QEMU VM Virtual Disk Image >>>\n"
114
115 /* A never-allocated block; semantically arbitrary content. */
116 #define VDI_UNALLOCATED 0xffffffffU
117
118 /* A discarded (no longer allocated) block; semantically zero-filled. */
119 #define VDI_DISCARDED 0xfffffffeU
120
121 #define VDI_IS_ALLOCATED(X) ((X) < VDI_DISCARDED)
122
123 #if !defined(CONFIG_UUID)
124 static inline void uuid_generate(uuid_t out)
125 {
126 memset(out, 0, sizeof(uuid_t));
127 }
128
129 static inline int uuid_is_null(const uuid_t uu)
130 {
131 uuid_t null_uuid = { 0 };
132 return memcmp(uu, null_uuid, sizeof(uuid_t)) == 0;
133 }
134
135 static inline void uuid_unparse(const uuid_t uu, char *out)
136 {
137 snprintf(out, 37, UUID_FMT,
138 uu[0], uu[1], uu[2], uu[3], uu[4], uu[5], uu[6], uu[7],
139 uu[8], uu[9], uu[10], uu[11], uu[12], uu[13], uu[14], uu[15]);
140 }
141 #endif
142
143 typedef struct {
144 char text[0x40];
145 uint32_t signature;
146 uint32_t version;
147 uint32_t header_size;
148 uint32_t image_type;
149 uint32_t image_flags;
150 char description[256];
151 uint32_t offset_bmap;
152 uint32_t offset_data;
153 uint32_t cylinders; /* disk geometry, unused here */
154 uint32_t heads; /* disk geometry, unused here */
155 uint32_t sectors; /* disk geometry, unused here */
156 uint32_t sector_size;
157 uint32_t unused1;
158 uint64_t disk_size;
159 uint32_t block_size;
160 uint32_t block_extra; /* unused here */
161 uint32_t blocks_in_image;
162 uint32_t blocks_allocated;
163 uuid_t uuid_image;
164 uuid_t uuid_last_snap;
165 uuid_t uuid_link;
166 uuid_t uuid_parent;
167 uint64_t unused2[7];
168 } QEMU_PACKED VdiHeader;
169
170 typedef struct {
171 /* The block map entries are little endian (even in memory). */
172 uint32_t *bmap;
173 /* Size of block (bytes). */
174 uint32_t block_size;
175 /* Size of block (sectors). */
176 uint32_t block_sectors;
177 /* First sector of block map. */
178 uint32_t bmap_sector;
179 /* VDI header (converted to host endianness). */
180 VdiHeader header;
181
182 Error *migration_blocker;
183 } BDRVVdiState;
184
185 /* Change UUID from little endian (IPRT = VirtualBox format) to big endian
186 * format (network byte order, standard, see RFC 4122) and vice versa.
187 */
188 static void uuid_convert(uuid_t uuid)
189 {
190 bswap32s((uint32_t *)&uuid[0]);
191 bswap16s((uint16_t *)&uuid[4]);
192 bswap16s((uint16_t *)&uuid[6]);
193 }
194
195 static void vdi_header_to_cpu(VdiHeader *header)
196 {
197 le32_to_cpus(&header->signature);
198 le32_to_cpus(&header->version);
199 le32_to_cpus(&header->header_size);
200 le32_to_cpus(&header->image_type);
201 le32_to_cpus(&header->image_flags);
202 le32_to_cpus(&header->offset_bmap);
203 le32_to_cpus(&header->offset_data);
204 le32_to_cpus(&header->cylinders);
205 le32_to_cpus(&header->heads);
206 le32_to_cpus(&header->sectors);
207 le32_to_cpus(&header->sector_size);
208 le64_to_cpus(&header->disk_size);
209 le32_to_cpus(&header->block_size);
210 le32_to_cpus(&header->block_extra);
211 le32_to_cpus(&header->blocks_in_image);
212 le32_to_cpus(&header->blocks_allocated);
213 uuid_convert(header->uuid_image);
214 uuid_convert(header->uuid_last_snap);
215 uuid_convert(header->uuid_link);
216 uuid_convert(header->uuid_parent);
217 }
218
219 static void vdi_header_to_le(VdiHeader *header)
220 {
221 cpu_to_le32s(&header->signature);
222 cpu_to_le32s(&header->version);
223 cpu_to_le32s(&header->header_size);
224 cpu_to_le32s(&header->image_type);
225 cpu_to_le32s(&header->image_flags);
226 cpu_to_le32s(&header->offset_bmap);
227 cpu_to_le32s(&header->offset_data);
228 cpu_to_le32s(&header->cylinders);
229 cpu_to_le32s(&header->heads);
230 cpu_to_le32s(&header->sectors);
231 cpu_to_le32s(&header->sector_size);
232 cpu_to_le64s(&header->disk_size);
233 cpu_to_le32s(&header->block_size);
234 cpu_to_le32s(&header->block_extra);
235 cpu_to_le32s(&header->blocks_in_image);
236 cpu_to_le32s(&header->blocks_allocated);
237 cpu_to_le32s(&header->blocks_allocated);
238 uuid_convert(header->uuid_image);
239 uuid_convert(header->uuid_last_snap);
240 uuid_convert(header->uuid_link);
241 uuid_convert(header->uuid_parent);
242 }
243
244 #if defined(CONFIG_VDI_DEBUG)
245 static void vdi_header_print(VdiHeader *header)
246 {
247 char uuid[37];
248 logout("text %s", header->text);
249 logout("signature 0x%08x\n", header->signature);
250 logout("header size 0x%04x\n", header->header_size);
251 logout("image type 0x%04x\n", header->image_type);
252 logout("image flags 0x%04x\n", header->image_flags);
253 logout("description %s\n", header->description);
254 logout("offset bmap 0x%04x\n", header->offset_bmap);
255 logout("offset data 0x%04x\n", header->offset_data);
256 logout("cylinders 0x%04x\n", header->cylinders);
257 logout("heads 0x%04x\n", header->heads);
258 logout("sectors 0x%04x\n", header->sectors);
259 logout("sector size 0x%04x\n", header->sector_size);
260 logout("image size 0x%" PRIx64 " B (%" PRIu64 " MiB)\n",
261 header->disk_size, header->disk_size / MiB);
262 logout("block size 0x%04x\n", header->block_size);
263 logout("block extra 0x%04x\n", header->block_extra);
264 logout("blocks tot. 0x%04x\n", header->blocks_in_image);
265 logout("blocks all. 0x%04x\n", header->blocks_allocated);
266 uuid_unparse(header->uuid_image, uuid);
267 logout("uuid image %s\n", uuid);
268 uuid_unparse(header->uuid_last_snap, uuid);
269 logout("uuid snap %s\n", uuid);
270 uuid_unparse(header->uuid_link, uuid);
271 logout("uuid link %s\n", uuid);
272 uuid_unparse(header->uuid_parent, uuid);
273 logout("uuid parent %s\n", uuid);
274 }
275 #endif
276
277 static int vdi_check(BlockDriverState *bs, BdrvCheckResult *res,
278 BdrvCheckMode fix)
279 {
280 /* TODO: additional checks possible. */
281 BDRVVdiState *s = (BDRVVdiState *)bs->opaque;
282 uint32_t blocks_allocated = 0;
283 uint32_t block;
284 uint32_t *bmap;
285 logout("\n");
286
287 if (fix) {
288 return -ENOTSUP;
289 }
290
291 bmap = g_malloc(s->header.blocks_in_image * sizeof(uint32_t));
292 memset(bmap, 0xff, s->header.blocks_in_image * sizeof(uint32_t));
293
294 /* Check block map and value of blocks_allocated. */
295 for (block = 0; block < s->header.blocks_in_image; block++) {
296 uint32_t bmap_entry = le32_to_cpu(s->bmap[block]);
297 if (VDI_IS_ALLOCATED(bmap_entry)) {
298 if (bmap_entry < s->header.blocks_in_image) {
299 blocks_allocated++;
300 if (!VDI_IS_ALLOCATED(bmap[bmap_entry])) {
301 bmap[bmap_entry] = bmap_entry;
302 } else {
303 fprintf(stderr, "ERROR: block index %" PRIu32
304 " also used by %" PRIu32 "\n", bmap[bmap_entry], bmap_entry);
305 res->corruptions++;
306 }
307 } else {
308 fprintf(stderr, "ERROR: block index %" PRIu32
309 " too large, is %" PRIu32 "\n", block, bmap_entry);
310 res->corruptions++;
311 }
312 }
313 }
314 if (blocks_allocated != s->header.blocks_allocated) {
315 fprintf(stderr, "ERROR: allocated blocks mismatch, is %" PRIu32
316 ", should be %" PRIu32 "\n",
317 blocks_allocated, s->header.blocks_allocated);
318 res->corruptions++;
319 }
320
321 g_free(bmap);
322
323 return 0;
324 }
325
326 static int vdi_get_info(BlockDriverState *bs, BlockDriverInfo *bdi)
327 {
328 /* TODO: vdi_get_info would be needed for machine snapshots.
329 vm_state_offset is still missing. */
330 BDRVVdiState *s = (BDRVVdiState *)bs->opaque;
331 logout("\n");
332 bdi->cluster_size = s->block_size;
333 bdi->vm_state_offset = 0;
334 return 0;
335 }
336
337 static int vdi_make_empty(BlockDriverState *bs)
338 {
339 /* TODO: missing code. */
340 logout("\n");
341 /* The return value for missing code must be 0, see block.c. */
342 return 0;
343 }
344
345 static int vdi_probe(const uint8_t *buf, int buf_size, const char *filename)
346 {
347 const VdiHeader *header = (const VdiHeader *)buf;
348 int result = 0;
349
350 logout("\n");
351
352 if (buf_size < sizeof(*header)) {
353 /* Header too small, no VDI. */
354 } else if (le32_to_cpu(header->signature) == VDI_SIGNATURE) {
355 result = 100;
356 }
357
358 if (result == 0) {
359 logout("no vdi image\n");
360 } else {
361 logout("%s", header->text);
362 }
363
364 return result;
365 }
366
367 static int vdi_open(BlockDriverState *bs, QDict *options, int flags,
368 Error **errp)
369 {
370 BDRVVdiState *s = bs->opaque;
371 VdiHeader header;
372 size_t bmap_size;
373 int ret;
374
375 logout("\n");
376
377 ret = bdrv_read(bs->file, 0, (uint8_t *)&header, 1);
378 if (ret < 0) {
379 goto fail;
380 }
381
382 vdi_header_to_cpu(&header);
383 #if defined(CONFIG_VDI_DEBUG)
384 vdi_header_print(&header);
385 #endif
386
387 if (header.disk_size % SECTOR_SIZE != 0) {
388 /* 'VBoxManage convertfromraw' can create images with odd disk sizes.
389 We accept them but round the disk size to the next multiple of
390 SECTOR_SIZE. */
391 logout("odd disk size %" PRIu64 " B, round up\n", header.disk_size);
392 header.disk_size += SECTOR_SIZE - 1;
393 header.disk_size &= ~(SECTOR_SIZE - 1);
394 }
395
396 if (header.signature != VDI_SIGNATURE) {
397 logout("bad vdi signature %08x\n", header.signature);
398 ret = -EMEDIUMTYPE;
399 goto fail;
400 } else if (header.version != VDI_VERSION_1_1) {
401 logout("unsupported version %u.%u\n",
402 header.version >> 16, header.version & 0xffff);
403 ret = -ENOTSUP;
404 goto fail;
405 } else if (header.offset_bmap % SECTOR_SIZE != 0) {
406 /* We only support block maps which start on a sector boundary. */
407 logout("unsupported block map offset 0x%x B\n", header.offset_bmap);
408 ret = -ENOTSUP;
409 goto fail;
410 } else if (header.offset_data % SECTOR_SIZE != 0) {
411 /* We only support data blocks which start on a sector boundary. */
412 logout("unsupported data offset 0x%x B\n", header.offset_data);
413 ret = -ENOTSUP;
414 goto fail;
415 } else if (header.sector_size != SECTOR_SIZE) {
416 logout("unsupported sector size %u B\n", header.sector_size);
417 ret = -ENOTSUP;
418 goto fail;
419 } else if (header.block_size != 1 * MiB) {
420 logout("unsupported block size %u B\n", header.block_size);
421 ret = -ENOTSUP;
422 goto fail;
423 } else if (header.disk_size >
424 (uint64_t)header.blocks_in_image * header.block_size) {
425 logout("unsupported disk size %" PRIu64 " B\n", header.disk_size);
426 ret = -ENOTSUP;
427 goto fail;
428 } else if (!uuid_is_null(header.uuid_link)) {
429 logout("link uuid != 0, unsupported\n");
430 ret = -ENOTSUP;
431 goto fail;
432 } else if (!uuid_is_null(header.uuid_parent)) {
433 logout("parent uuid != 0, unsupported\n");
434 ret = -ENOTSUP;
435 goto fail;
436 }
437
438 bs->total_sectors = header.disk_size / SECTOR_SIZE;
439
440 s->block_size = header.block_size;
441 s->block_sectors = header.block_size / SECTOR_SIZE;
442 s->bmap_sector = header.offset_bmap / SECTOR_SIZE;
443 s->header = header;
444
445 bmap_size = header.blocks_in_image * sizeof(uint32_t);
446 bmap_size = (bmap_size + SECTOR_SIZE - 1) / SECTOR_SIZE;
447 s->bmap = g_malloc(bmap_size * SECTOR_SIZE);
448 ret = bdrv_read(bs->file, s->bmap_sector, (uint8_t *)s->bmap, bmap_size);
449 if (ret < 0) {
450 goto fail_free_bmap;
451 }
452
453 /* Disable migration when vdi images are used */
454 error_set(&s->migration_blocker,
455 QERR_BLOCK_FORMAT_FEATURE_NOT_SUPPORTED,
456 "vdi", bs->device_name, "live migration");
457 migrate_add_blocker(s->migration_blocker);
458
459 return 0;
460
461 fail_free_bmap:
462 g_free(s->bmap);
463
464 fail:
465 return ret;
466 }
467
468 static int vdi_reopen_prepare(BDRVReopenState *state,
469 BlockReopenQueue *queue, Error **errp)
470 {
471 return 0;
472 }
473
474 static int64_t coroutine_fn vdi_co_get_block_status(BlockDriverState *bs,
475 int64_t sector_num, int nb_sectors, int *pnum)
476 {
477 /* TODO: Check for too large sector_num (in bdrv_is_allocated or here). */
478 BDRVVdiState *s = (BDRVVdiState *)bs->opaque;
479 size_t bmap_index = sector_num / s->block_sectors;
480 size_t sector_in_block = sector_num % s->block_sectors;
481 int n_sectors = s->block_sectors - sector_in_block;
482 uint32_t bmap_entry = le32_to_cpu(s->bmap[bmap_index]);
483 uint64_t offset;
484 int result;
485
486 logout("%p, %" PRId64 ", %d, %p\n", bs, sector_num, nb_sectors, pnum);
487 if (n_sectors > nb_sectors) {
488 n_sectors = nb_sectors;
489 }
490 *pnum = n_sectors;
491 result = VDI_IS_ALLOCATED(bmap_entry);
492 if (!result) {
493 return 0;
494 }
495
496 offset = s->header.offset_data +
497 (uint64_t)bmap_entry * s->block_size +
498 sector_in_block * SECTOR_SIZE;
499 return BDRV_BLOCK_DATA | BDRV_BLOCK_OFFSET_VALID | offset;
500 }
501
502 static int vdi_co_read(BlockDriverState *bs,
503 int64_t sector_num, uint8_t *buf, int nb_sectors)
504 {
505 BDRVVdiState *s = bs->opaque;
506 uint32_t bmap_entry;
507 uint32_t block_index;
508 uint32_t sector_in_block;
509 uint32_t n_sectors;
510 int ret = 0;
511
512 logout("\n");
513
514 while (ret >= 0 && nb_sectors > 0) {
515 block_index = sector_num / s->block_sectors;
516 sector_in_block = sector_num % s->block_sectors;
517 n_sectors = s->block_sectors - sector_in_block;
518 if (n_sectors > nb_sectors) {
519 n_sectors = nb_sectors;
520 }
521
522 logout("will read %u sectors starting at sector %" PRIu64 "\n",
523 n_sectors, sector_num);
524
525 /* prepare next AIO request */
526 bmap_entry = le32_to_cpu(s->bmap[block_index]);
527 if (!VDI_IS_ALLOCATED(bmap_entry)) {
528 /* Block not allocated, return zeros, no need to wait. */
529 memset(buf, 0, n_sectors * SECTOR_SIZE);
530 ret = 0;
531 } else {
532 uint64_t offset = s->header.offset_data / SECTOR_SIZE +
533 (uint64_t)bmap_entry * s->block_sectors +
534 sector_in_block;
535 ret = bdrv_read(bs->file, offset, buf, n_sectors);
536 }
537 logout("%u sectors read\n", n_sectors);
538
539 nb_sectors -= n_sectors;
540 sector_num += n_sectors;
541 buf += n_sectors * SECTOR_SIZE;
542 }
543
544 return ret;
545 }
546
547 static int vdi_co_write(BlockDriverState *bs,
548 int64_t sector_num, const uint8_t *buf, int nb_sectors)
549 {
550 BDRVVdiState *s = bs->opaque;
551 uint32_t bmap_entry;
552 uint32_t block_index;
553 uint32_t sector_in_block;
554 uint32_t n_sectors;
555 uint32_t bmap_first = VDI_UNALLOCATED;
556 uint32_t bmap_last = VDI_UNALLOCATED;
557 uint8_t *block = NULL;
558 int ret = 0;
559
560 logout("\n");
561
562 while (ret >= 0 && nb_sectors > 0) {
563 block_index = sector_num / s->block_sectors;
564 sector_in_block = sector_num % s->block_sectors;
565 n_sectors = s->block_sectors - sector_in_block;
566 if (n_sectors > nb_sectors) {
567 n_sectors = nb_sectors;
568 }
569
570 logout("will write %u sectors starting at sector %" PRIu64 "\n",
571 n_sectors, sector_num);
572
573 /* prepare next AIO request */
574 bmap_entry = le32_to_cpu(s->bmap[block_index]);
575 if (!VDI_IS_ALLOCATED(bmap_entry)) {
576 /* Allocate new block and write to it. */
577 uint64_t offset;
578 bmap_entry = s->header.blocks_allocated;
579 s->bmap[block_index] = cpu_to_le32(bmap_entry);
580 s->header.blocks_allocated++;
581 offset = s->header.offset_data / SECTOR_SIZE +
582 (uint64_t)bmap_entry * s->block_sectors;
583 if (block == NULL) {
584 block = g_malloc(s->block_size);
585 bmap_first = block_index;
586 }
587 bmap_last = block_index;
588 /* Copy data to be written to new block and zero unused parts. */
589 memset(block, 0, sector_in_block * SECTOR_SIZE);
590 memcpy(block + sector_in_block * SECTOR_SIZE,
591 buf, n_sectors * SECTOR_SIZE);
592 memset(block + (sector_in_block + n_sectors) * SECTOR_SIZE, 0,
593 (s->block_sectors - n_sectors - sector_in_block) * SECTOR_SIZE);
594 ret = bdrv_write(bs->file, offset, block, s->block_sectors);
595 } else {
596 uint64_t offset = s->header.offset_data / SECTOR_SIZE +
597 (uint64_t)bmap_entry * s->block_sectors +
598 sector_in_block;
599 ret = bdrv_write(bs->file, offset, buf, n_sectors);
600 }
601
602 nb_sectors -= n_sectors;
603 sector_num += n_sectors;
604 buf += n_sectors * SECTOR_SIZE;
605
606 logout("%u sectors written\n", n_sectors);
607 }
608
609 logout("finished data write\n");
610 if (ret < 0) {
611 return ret;
612 }
613
614 if (block) {
615 /* One or more new blocks were allocated. */
616 VdiHeader *header = (VdiHeader *) block;
617 uint8_t *base;
618 uint64_t offset;
619
620 logout("now writing modified header\n");
621 assert(VDI_IS_ALLOCATED(bmap_first));
622 *header = s->header;
623 vdi_header_to_le(header);
624 ret = bdrv_write(bs->file, 0, block, 1);
625 g_free(block);
626 block = NULL;
627
628 if (ret < 0) {
629 return ret;
630 }
631
632 logout("now writing modified block map entry %u...%u\n",
633 bmap_first, bmap_last);
634 /* Write modified sectors from block map. */
635 bmap_first /= (SECTOR_SIZE / sizeof(uint32_t));
636 bmap_last /= (SECTOR_SIZE / sizeof(uint32_t));
637 n_sectors = bmap_last - bmap_first + 1;
638 offset = s->bmap_sector + bmap_first;
639 base = ((uint8_t *)&s->bmap[0]) + bmap_first * SECTOR_SIZE;
640 logout("will write %u block map sectors starting from entry %u\n",
641 n_sectors, bmap_first);
642 ret = bdrv_write(bs->file, offset, base, n_sectors);
643 }
644
645 return ret;
646 }
647
648 static int vdi_create(const char *filename, QEMUOptionParameter *options,
649 Error **errp)
650 {
651 int fd;
652 int result = 0;
653 uint64_t bytes = 0;
654 uint32_t blocks;
655 size_t block_size = DEFAULT_CLUSTER_SIZE;
656 uint32_t image_type = VDI_TYPE_DYNAMIC;
657 VdiHeader header;
658 size_t i;
659 size_t bmap_size;
660
661 logout("\n");
662
663 /* Read out options. */
664 while (options && options->name) {
665 if (!strcmp(options->name, BLOCK_OPT_SIZE)) {
666 bytes = options->value.n;
667 #if defined(CONFIG_VDI_BLOCK_SIZE)
668 } else if (!strcmp(options->name, BLOCK_OPT_CLUSTER_SIZE)) {
669 if (options->value.n) {
670 /* TODO: Additional checks (SECTOR_SIZE * 2^n, ...). */
671 block_size = options->value.n;
672 }
673 #endif
674 #if defined(CONFIG_VDI_STATIC_IMAGE)
675 } else if (!strcmp(options->name, BLOCK_OPT_STATIC)) {
676 if (options->value.n) {
677 image_type = VDI_TYPE_STATIC;
678 }
679 #endif
680 }
681 options++;
682 }
683
684 fd = qemu_open(filename,
685 O_WRONLY | O_CREAT | O_TRUNC | O_BINARY | O_LARGEFILE,
686 0644);
687 if (fd < 0) {
688 return -errno;
689 }
690
691 /* We need enough blocks to store the given disk size,
692 so always round up. */
693 blocks = (bytes + block_size - 1) / block_size;
694
695 bmap_size = blocks * sizeof(uint32_t);
696 bmap_size = ((bmap_size + SECTOR_SIZE - 1) & ~(SECTOR_SIZE -1));
697
698 memset(&header, 0, sizeof(header));
699 pstrcpy(header.text, sizeof(header.text), VDI_TEXT);
700 header.signature = VDI_SIGNATURE;
701 header.version = VDI_VERSION_1_1;
702 header.header_size = 0x180;
703 header.image_type = image_type;
704 header.offset_bmap = 0x200;
705 header.offset_data = 0x200 + bmap_size;
706 header.sector_size = SECTOR_SIZE;
707 header.disk_size = bytes;
708 header.block_size = block_size;
709 header.blocks_in_image = blocks;
710 if (image_type == VDI_TYPE_STATIC) {
711 header.blocks_allocated = blocks;
712 }
713 uuid_generate(header.uuid_image);
714 uuid_generate(header.uuid_last_snap);
715 /* There is no need to set header.uuid_link or header.uuid_parent here. */
716 #if defined(CONFIG_VDI_DEBUG)
717 vdi_header_print(&header);
718 #endif
719 vdi_header_to_le(&header);
720 if (write(fd, &header, sizeof(header)) < 0) {
721 result = -errno;
722 }
723
724 if (bmap_size > 0) {
725 uint32_t *bmap = g_malloc0(bmap_size);
726 for (i = 0; i < blocks; i++) {
727 if (image_type == VDI_TYPE_STATIC) {
728 bmap[i] = i;
729 } else {
730 bmap[i] = VDI_UNALLOCATED;
731 }
732 }
733 if (write(fd, bmap, bmap_size) < 0) {
734 result = -errno;
735 }
736 g_free(bmap);
737 }
738
739 if (image_type == VDI_TYPE_STATIC) {
740 if (ftruncate(fd, sizeof(header) + bmap_size + blocks * block_size)) {
741 result = -errno;
742 }
743 }
744
745 if (close(fd) < 0) {
746 result = -errno;
747 }
748
749 return result;
750 }
751
752 static void vdi_close(BlockDriverState *bs)
753 {
754 BDRVVdiState *s = bs->opaque;
755
756 g_free(s->bmap);
757
758 migrate_del_blocker(s->migration_blocker);
759 error_free(s->migration_blocker);
760 }
761
762 static QEMUOptionParameter vdi_create_options[] = {
763 {
764 .name = BLOCK_OPT_SIZE,
765 .type = OPT_SIZE,
766 .help = "Virtual disk size"
767 },
768 #if defined(CONFIG_VDI_BLOCK_SIZE)
769 {
770 .name = BLOCK_OPT_CLUSTER_SIZE,
771 .type = OPT_SIZE,
772 .help = "VDI cluster (block) size",
773 .value = { .n = DEFAULT_CLUSTER_SIZE },
774 },
775 #endif
776 #if defined(CONFIG_VDI_STATIC_IMAGE)
777 {
778 .name = BLOCK_OPT_STATIC,
779 .type = OPT_FLAG,
780 .help = "VDI static (pre-allocated) image"
781 },
782 #endif
783 /* TODO: An additional option to set UUID values might be useful. */
784 { NULL }
785 };
786
787 static BlockDriver bdrv_vdi = {
788 .format_name = "vdi",
789 .instance_size = sizeof(BDRVVdiState),
790 .bdrv_probe = vdi_probe,
791 .bdrv_open = vdi_open,
792 .bdrv_close = vdi_close,
793 .bdrv_reopen_prepare = vdi_reopen_prepare,
794 .bdrv_create = vdi_create,
795 .bdrv_has_zero_init = bdrv_has_zero_init_1,
796 .bdrv_co_get_block_status = vdi_co_get_block_status,
797 .bdrv_make_empty = vdi_make_empty,
798
799 .bdrv_read = vdi_co_read,
800 #if defined(CONFIG_VDI_WRITE)
801 .bdrv_write = vdi_co_write,
802 #endif
803
804 .bdrv_get_info = vdi_get_info,
805
806 .create_options = vdi_create_options,
807 .bdrv_check = vdi_check,
808 };
809
810 static void bdrv_vdi_init(void)
811 {
812 logout("\n");
813 bdrv_register(&bdrv_vdi);
814 }
815
816 block_init(bdrv_vdi_init);