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fc01f7e7
FB
1/*
2 * QEMU System Emulator block driver
5fafdf24 3 *
fc01f7e7 4 * Copyright (c) 2003 Fabrice Bellard
5fafdf24 5 *
fc01f7e7
FB
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 */
3990d09a 24#include "config-host.h"
faf07963 25#include "qemu-common.h"
376253ec 26#include "monitor.h"
ea2384d3 27#include "block_int.h"
5efa9d5a 28#include "module.h"
4305793b 29#include "qemu-objects.h"
fc01f7e7 30
71e72a19 31#ifdef CONFIG_BSD
7674e7bf
FB
32#include <sys/types.h>
33#include <sys/stat.h>
34#include <sys/ioctl.h>
72cf2d4f 35#include <sys/queue.h>
c5e97233 36#ifndef __DragonFly__
7674e7bf
FB
37#include <sys/disk.h>
38#endif
c5e97233 39#endif
7674e7bf 40
49dc768d
AL
41#ifdef _WIN32
42#include <windows.h>
43#endif
44
f141eafe
AL
45static BlockDriverAIOCB *bdrv_aio_readv_em(BlockDriverState *bs,
46 int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
c87c0672 47 BlockDriverCompletionFunc *cb, void *opaque);
f141eafe
AL
48static BlockDriverAIOCB *bdrv_aio_writev_em(BlockDriverState *bs,
49 int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
ce1a14dc 50 BlockDriverCompletionFunc *cb, void *opaque);
b2e12bc6
CH
51static BlockDriverAIOCB *bdrv_aio_flush_em(BlockDriverState *bs,
52 BlockDriverCompletionFunc *cb, void *opaque);
5fafdf24 53static int bdrv_read_em(BlockDriverState *bs, int64_t sector_num,
83f64091
FB
54 uint8_t *buf, int nb_sectors);
55static int bdrv_write_em(BlockDriverState *bs, int64_t sector_num,
56 const uint8_t *buf, int nb_sectors);
ec530c81 57
7ee930d0
BS
58BlockDriverState *bdrv_first;
59
ea2384d3
FB
60static BlockDriver *first_drv;
61
eb852011
MA
62/* If non-zero, use only whitelisted block drivers */
63static int use_bdrv_whitelist;
64
83f64091 65int path_is_absolute(const char *path)
3b0d4f61 66{
83f64091 67 const char *p;
21664424
FB
68#ifdef _WIN32
69 /* specific case for names like: "\\.\d:" */
70 if (*path == '/' || *path == '\\')
71 return 1;
72#endif
83f64091
FB
73 p = strchr(path, ':');
74 if (p)
75 p++;
76 else
77 p = path;
3b9f94e1
FB
78#ifdef _WIN32
79 return (*p == '/' || *p == '\\');
80#else
81 return (*p == '/');
82#endif
3b0d4f61
FB
83}
84
83f64091
FB
85/* if filename is absolute, just copy it to dest. Otherwise, build a
86 path to it by considering it is relative to base_path. URL are
87 supported. */
88void path_combine(char *dest, int dest_size,
89 const char *base_path,
90 const char *filename)
3b0d4f61 91{
83f64091
FB
92 const char *p, *p1;
93 int len;
94
95 if (dest_size <= 0)
96 return;
97 if (path_is_absolute(filename)) {
98 pstrcpy(dest, dest_size, filename);
99 } else {
100 p = strchr(base_path, ':');
101 if (p)
102 p++;
103 else
104 p = base_path;
3b9f94e1
FB
105 p1 = strrchr(base_path, '/');
106#ifdef _WIN32
107 {
108 const char *p2;
109 p2 = strrchr(base_path, '\\');
110 if (!p1 || p2 > p1)
111 p1 = p2;
112 }
113#endif
83f64091
FB
114 if (p1)
115 p1++;
116 else
117 p1 = base_path;
118 if (p1 > p)
119 p = p1;
120 len = p - base_path;
121 if (len > dest_size - 1)
122 len = dest_size - 1;
123 memcpy(dest, base_path, len);
124 dest[len] = '\0';
125 pstrcat(dest, dest_size, filename);
3b0d4f61 126 }
3b0d4f61
FB
127}
128
5efa9d5a 129void bdrv_register(BlockDriver *bdrv)
ea2384d3 130{
f141eafe 131 if (!bdrv->bdrv_aio_readv) {
83f64091 132 /* add AIO emulation layer */
f141eafe
AL
133 bdrv->bdrv_aio_readv = bdrv_aio_readv_em;
134 bdrv->bdrv_aio_writev = bdrv_aio_writev_em;
eda578e5 135 } else if (!bdrv->bdrv_read) {
83f64091
FB
136 /* add synchronous IO emulation layer */
137 bdrv->bdrv_read = bdrv_read_em;
138 bdrv->bdrv_write = bdrv_write_em;
139 }
b2e12bc6
CH
140
141 if (!bdrv->bdrv_aio_flush)
142 bdrv->bdrv_aio_flush = bdrv_aio_flush_em;
143
ea2384d3
FB
144 bdrv->next = first_drv;
145 first_drv = bdrv;
146}
b338082b
FB
147
148/* create a new block device (by default it is empty) */
149BlockDriverState *bdrv_new(const char *device_name)
150{
151 BlockDriverState **pbs, *bs;
152
153 bs = qemu_mallocz(sizeof(BlockDriverState));
b338082b 154 pstrcpy(bs->device_name, sizeof(bs->device_name), device_name);
ea2384d3
FB
155 if (device_name[0] != '\0') {
156 /* insert at the end */
157 pbs = &bdrv_first;
158 while (*pbs != NULL)
159 pbs = &(*pbs)->next;
160 *pbs = bs;
161 }
b338082b
FB
162 return bs;
163}
164
ea2384d3
FB
165BlockDriver *bdrv_find_format(const char *format_name)
166{
167 BlockDriver *drv1;
168 for(drv1 = first_drv; drv1 != NULL; drv1 = drv1->next) {
169 if (!strcmp(drv1->format_name, format_name))
170 return drv1;
171 }
172 return NULL;
173}
174
eb852011
MA
175static int bdrv_is_whitelisted(BlockDriver *drv)
176{
177 static const char *whitelist[] = {
178 CONFIG_BDRV_WHITELIST
179 };
180 const char **p;
181
182 if (!whitelist[0])
183 return 1; /* no whitelist, anything goes */
184
185 for (p = whitelist; *p; p++) {
186 if (!strcmp(drv->format_name, *p)) {
187 return 1;
188 }
189 }
190 return 0;
191}
192
193BlockDriver *bdrv_find_whitelisted_format(const char *format_name)
194{
195 BlockDriver *drv = bdrv_find_format(format_name);
196 return drv && bdrv_is_whitelisted(drv) ? drv : NULL;
197}
198
0e7e1989
KW
199int bdrv_create(BlockDriver *drv, const char* filename,
200 QEMUOptionParameter *options)
ea2384d3
FB
201{
202 if (!drv->bdrv_create)
203 return -ENOTSUP;
0e7e1989
KW
204
205 return drv->bdrv_create(filename, options);
ea2384d3
FB
206}
207
d5249393 208#ifdef _WIN32
95389c86 209void get_tmp_filename(char *filename, int size)
d5249393 210{
3b9f94e1 211 char temp_dir[MAX_PATH];
3b46e624 212
3b9f94e1
FB
213 GetTempPath(MAX_PATH, temp_dir);
214 GetTempFileName(temp_dir, "qem", 0, filename);
d5249393
FB
215}
216#else
95389c86 217void get_tmp_filename(char *filename, int size)
fc01f7e7 218{
67b915a5 219 int fd;
7ccfb2eb 220 const char *tmpdir;
d5249393 221 /* XXX: race condition possible */
0badc1ee
AJ
222 tmpdir = getenv("TMPDIR");
223 if (!tmpdir)
224 tmpdir = "/tmp";
225 snprintf(filename, size, "%s/vl.XXXXXX", tmpdir);
ea2384d3
FB
226 fd = mkstemp(filename);
227 close(fd);
228}
d5249393 229#endif
fc01f7e7 230
19cb3738 231#ifdef _WIN32
f45512fe
FB
232static int is_windows_drive_prefix(const char *filename)
233{
234 return (((filename[0] >= 'a' && filename[0] <= 'z') ||
235 (filename[0] >= 'A' && filename[0] <= 'Z')) &&
236 filename[1] == ':');
237}
3b46e624 238
508c7cb3 239int is_windows_drive(const char *filename)
19cb3738 240{
5fafdf24 241 if (is_windows_drive_prefix(filename) &&
f45512fe 242 filename[2] == '\0')
19cb3738
FB
243 return 1;
244 if (strstart(filename, "\\\\.\\", NULL) ||
245 strstart(filename, "//./", NULL))
246 return 1;
247 return 0;
248}
249#endif
250
83f64091
FB
251static BlockDriver *find_protocol(const char *filename)
252{
253 BlockDriver *drv1;
254 char protocol[128];
1cec71e3 255 int len;
83f64091 256 const char *p;
19cb3738
FB
257
258#ifdef _WIN32
f45512fe
FB
259 if (is_windows_drive(filename) ||
260 is_windows_drive_prefix(filename))
5efa9d5a 261 return bdrv_find_format("raw");
19cb3738 262#endif
1cec71e3
AL
263 p = strchr(filename, ':');
264 if (!p)
5efa9d5a 265 return bdrv_find_format("raw");
1cec71e3
AL
266 len = p - filename;
267 if (len > sizeof(protocol) - 1)
268 len = sizeof(protocol) - 1;
269 memcpy(protocol, filename, len);
270 protocol[len] = '\0';
83f64091 271 for(drv1 = first_drv; drv1 != NULL; drv1 = drv1->next) {
5fafdf24 272 if (drv1->protocol_name &&
83f64091
FB
273 !strcmp(drv1->protocol_name, protocol))
274 return drv1;
275 }
276 return NULL;
277}
278
f3a5d3f8
CH
279/*
280 * Detect host devices. By convention, /dev/cdrom[N] is always
281 * recognized as a host CDROM.
282 */
f3a5d3f8
CH
283static BlockDriver *find_hdev_driver(const char *filename)
284{
508c7cb3
CH
285 int score_max = 0, score;
286 BlockDriver *drv = NULL, *d;
f3a5d3f8 287
508c7cb3
CH
288 for (d = first_drv; d; d = d->next) {
289 if (d->bdrv_probe_device) {
290 score = d->bdrv_probe_device(filename);
291 if (score > score_max) {
292 score_max = score;
293 drv = d;
294 }
295 }
19cb3738 296 }
f3a5d3f8 297
508c7cb3 298 return drv;
f3a5d3f8 299}
3b46e624 300
f3a5d3f8
CH
301static BlockDriver *find_image_format(const char *filename)
302{
303 int ret, score, score_max;
304 BlockDriver *drv1, *drv;
305 uint8_t buf[2048];
306 BlockDriverState *bs;
307
83f64091 308 drv = find_protocol(filename);
19cb3738 309 /* no need to test disk image formats for vvfat */
c833ab73 310 if (drv && strcmp(drv->format_name, "vvfat") == 0)
83f64091 311 return drv;
19cb3738 312
83f64091
FB
313 ret = bdrv_file_open(&bs, filename, BDRV_O_RDONLY);
314 if (ret < 0)
315 return NULL;
316 ret = bdrv_pread(bs, 0, buf, sizeof(buf));
317 bdrv_delete(bs);
318 if (ret < 0) {
319 return NULL;
320 }
321
ea2384d3
FB
322 score_max = 0;
323 for(drv1 = first_drv; drv1 != NULL; drv1 = drv1->next) {
83f64091
FB
324 if (drv1->bdrv_probe) {
325 score = drv1->bdrv_probe(buf, ret, filename);
326 if (score > score_max) {
327 score_max = score;
328 drv = drv1;
329 }
0849bf08 330 }
fc01f7e7 331 }
ea2384d3
FB
332 return drv;
333}
334
83f64091 335int bdrv_file_open(BlockDriverState **pbs, const char *filename, int flags)
ea2384d3 336{
83f64091
FB
337 BlockDriverState *bs;
338 int ret;
339
340 bs = bdrv_new("");
83f64091
FB
341 ret = bdrv_open2(bs, filename, flags | BDRV_O_FILE, NULL);
342 if (ret < 0) {
343 bdrv_delete(bs);
344 return ret;
3b0d4f61 345 }
71d0770c 346 bs->growable = 1;
83f64091
FB
347 *pbs = bs;
348 return 0;
349}
350
351int bdrv_open(BlockDriverState *bs, const char *filename, int flags)
352{
353 return bdrv_open2(bs, filename, flags, NULL);
ea2384d3
FB
354}
355
83f64091 356int bdrv_open2(BlockDriverState *bs, const char *filename, int flags,
ea2384d3
FB
357 BlockDriver *drv)
358{
59f2689d 359 int ret, open_flags, try_rw;
eb5c851f
TS
360 char tmp_filename[PATH_MAX];
361 char backing_filename[PATH_MAX];
3b46e624 362
ea2384d3
FB
363 bs->is_temporary = 0;
364 bs->encrypted = 0;
c0f4ce77 365 bs->valid_key = 0;
e268ca52
AL
366 /* buffer_alignment defaulted to 512, drivers can change this value */
367 bs->buffer_alignment = 512;
712e7874 368
83f64091 369 if (flags & BDRV_O_SNAPSHOT) {
ea2384d3
FB
370 BlockDriverState *bs1;
371 int64_t total_size;
7c96d46e 372 int is_protocol = 0;
91a073a9
KW
373 BlockDriver *bdrv_qcow2;
374 QEMUOptionParameter *options;
3b46e624 375
ea2384d3
FB
376 /* if snapshot, we create a temporary backing file and open it
377 instead of opening 'filename' directly */
33e3963e 378
ea2384d3
FB
379 /* if there is a backing file, use it */
380 bs1 = bdrv_new("");
5eb45639 381 ret = bdrv_open2(bs1, filename, 0, drv);
51d7c00c 382 if (ret < 0) {
ea2384d3 383 bdrv_delete(bs1);
51d7c00c 384 return ret;
ea2384d3 385 }
6ea44308 386 total_size = bdrv_getlength(bs1) >> BDRV_SECTOR_BITS;
7c96d46e
AL
387
388 if (bs1->drv && bs1->drv->protocol_name)
389 is_protocol = 1;
390
ea2384d3 391 bdrv_delete(bs1);
3b46e624 392
ea2384d3 393 get_tmp_filename(tmp_filename, sizeof(tmp_filename));
7c96d46e
AL
394
395 /* Real path is meaningless for protocols */
396 if (is_protocol)
397 snprintf(backing_filename, sizeof(backing_filename),
398 "%s", filename);
399 else
400 realpath(filename, backing_filename);
401
91a073a9
KW
402 bdrv_qcow2 = bdrv_find_format("qcow2");
403 options = parse_option_parameters("", bdrv_qcow2->create_options, NULL);
404
405 set_option_parameter_int(options, BLOCK_OPT_SIZE, total_size * 512);
406 set_option_parameter(options, BLOCK_OPT_BACKING_FILE, backing_filename);
407 if (drv) {
408 set_option_parameter(options, BLOCK_OPT_BACKING_FMT,
409 drv->format_name);
410 }
411
412 ret = bdrv_create(bdrv_qcow2, tmp_filename, options);
51d7c00c
AL
413 if (ret < 0) {
414 return ret;
ea2384d3 415 }
91a073a9 416
ea2384d3 417 filename = tmp_filename;
91a073a9 418 drv = bdrv_qcow2;
ea2384d3
FB
419 bs->is_temporary = 1;
420 }
712e7874 421
ea2384d3 422 pstrcpy(bs->filename, sizeof(bs->filename), filename);
83f64091
FB
423 if (flags & BDRV_O_FILE) {
424 drv = find_protocol(filename);
51d7c00c 425 } else if (!drv) {
f3a5d3f8
CH
426 drv = find_hdev_driver(filename);
427 if (!drv) {
428 drv = find_image_format(filename);
429 }
51d7c00c
AL
430 }
431 if (!drv) {
432 ret = -ENOENT;
433 goto unlink_and_fail;
ea2384d3
FB
434 }
435 bs->drv = drv;
436 bs->opaque = qemu_mallocz(drv->instance_size);
e900a7b7
CH
437
438 /*
439 * Yes, BDRV_O_NOCACHE aka O_DIRECT means we have to present a
440 * write cache to the guest. We do need the fdatasync to flush
441 * out transactions for block allocations, and we maybe have a
442 * volatile write cache in our backing device to deal with.
443 */
444 if (flags & (BDRV_O_CACHE_WB|BDRV_O_NOCACHE))
445 bs->enable_write_cache = 1;
446
83f64091
FB
447 /* Note: for compatibility, we open disk image files as RDWR, and
448 RDONLY as fallback */
59f2689d 449 try_rw = !bs->read_only || bs->is_temporary;
83f64091 450 if (!(flags & BDRV_O_FILE))
59f2689d
NS
451 open_flags = (try_rw ? BDRV_O_RDWR : 0) |
452 (flags & (BDRV_O_CACHE_MASK|BDRV_O_NATIVE_AIO));
83f64091
FB
453 else
454 open_flags = flags & ~(BDRV_O_FILE | BDRV_O_SNAPSHOT);
ceef722d
KW
455
456 bs->open_flags = open_flags;
eb852011
MA
457 if (use_bdrv_whitelist && !bdrv_is_whitelisted(drv))
458 ret = -ENOTSUP;
459 else
460 ret = drv->bdrv_open(bs, filename, open_flags);
a0a83536 461 if ((ret == -EACCES || ret == -EPERM) && !(flags & BDRV_O_FILE)) {
1cec71e3 462 ret = drv->bdrv_open(bs, filename, open_flags & ~BDRV_O_RDWR);
83f64091
FB
463 bs->read_only = 1;
464 }
ea2384d3
FB
465 if (ret < 0) {
466 qemu_free(bs->opaque);
6b21b973
FB
467 bs->opaque = NULL;
468 bs->drv = NULL;
51d7c00c
AL
469 unlink_and_fail:
470 if (bs->is_temporary)
471 unlink(filename);
83f64091 472 return ret;
33e3963e 473 }
d15a771d 474 if (drv->bdrv_getlength) {
6ea44308 475 bs->total_sectors = bdrv_getlength(bs) >> BDRV_SECTOR_BITS;
d15a771d 476 }
67b915a5 477#ifndef _WIN32
ea2384d3
FB
478 if (bs->is_temporary) {
479 unlink(filename);
480 }
481#endif
83f64091 482 if (bs->backing_file[0] != '\0') {
ea2384d3 483 /* if there is a backing file, use it */
5eb45639 484 BlockDriver *back_drv = NULL;
ea2384d3 485 bs->backing_hd = bdrv_new("");
59f2689d
NS
486 /* pass on read_only property to the backing_hd */
487 bs->backing_hd->read_only = bs->read_only;
83f64091
FB
488 path_combine(backing_filename, sizeof(backing_filename),
489 filename, bs->backing_file);
5eb45639
AL
490 if (bs->backing_format[0] != '\0')
491 back_drv = bdrv_find_format(bs->backing_format);
492 ret = bdrv_open2(bs->backing_hd, backing_filename, open_flags,
493 back_drv);
51d7c00c
AL
494 if (ret < 0) {
495 bdrv_close(bs);
496 return ret;
497 }
33e3963e
FB
498 }
499
bb5fc20f
AL
500 if (!bdrv_key_required(bs)) {
501 /* call the change callback */
502 bs->media_changed = 1;
503 if (bs->change_cb)
504 bs->change_cb(bs->change_opaque);
505 }
b338082b 506 return 0;
fc01f7e7
FB
507}
508
509void bdrv_close(BlockDriverState *bs)
510{
19cb3738 511 if (bs->drv) {
ea2384d3
FB
512 if (bs->backing_hd)
513 bdrv_delete(bs->backing_hd);
514 bs->drv->bdrv_close(bs);
515 qemu_free(bs->opaque);
516#ifdef _WIN32
517 if (bs->is_temporary) {
518 unlink(bs->filename);
519 }
67b915a5 520#endif
ea2384d3
FB
521 bs->opaque = NULL;
522 bs->drv = NULL;
b338082b
FB
523
524 /* call the change callback */
19cb3738 525 bs->media_changed = 1;
b338082b
FB
526 if (bs->change_cb)
527 bs->change_cb(bs->change_opaque);
528 }
529}
530
531void bdrv_delete(BlockDriverState *bs)
532{
34c6f050
AJ
533 BlockDriverState **pbs;
534
535 pbs = &bdrv_first;
536 while (*pbs != bs && *pbs != NULL)
537 pbs = &(*pbs)->next;
538 if (*pbs == bs)
539 *pbs = bs->next;
540
b338082b
FB
541 bdrv_close(bs);
542 qemu_free(bs);
fc01f7e7
FB
543}
544
e97fc193
AL
545/*
546 * Run consistency checks on an image
547 *
548 * Returns the number of errors or -errno when an internal error occurs
549 */
550int bdrv_check(BlockDriverState *bs)
551{
552 if (bs->drv->bdrv_check == NULL) {
553 return -ENOTSUP;
554 }
555
556 return bs->drv->bdrv_check(bs);
557}
558
33e3963e
FB
559/* commit COW file into the raw image */
560int bdrv_commit(BlockDriverState *bs)
561{
19cb3738 562 BlockDriver *drv = bs->drv;
83f64091 563 int64_t i, total_sectors;
ea2384d3
FB
564 int n, j;
565 unsigned char sector[512];
33e3963e 566
19cb3738
FB
567 if (!drv)
568 return -ENOMEDIUM;
33e3963e
FB
569
570 if (bs->read_only) {
ea2384d3 571 return -EACCES;
33e3963e
FB
572 }
573
ea2384d3
FB
574 if (!bs->backing_hd) {
575 return -ENOTSUP;
576 }
33e3963e 577
6ea44308 578 total_sectors = bdrv_getlength(bs) >> BDRV_SECTOR_BITS;
83f64091 579 for (i = 0; i < total_sectors;) {
19cb3738 580 if (drv->bdrv_is_allocated(bs, i, 65536, &n)) {
ea2384d3
FB
581 for(j = 0; j < n; j++) {
582 if (bdrv_read(bs, i, sector, 1) != 0) {
583 return -EIO;
584 }
585
586 if (bdrv_write(bs->backing_hd, i, sector, 1) != 0) {
587 return -EIO;
588 }
589 i++;
33e3963e 590 }
ea2384d3
FB
591 } else {
592 i += n;
593 }
33e3963e 594 }
95389c86 595
19cb3738
FB
596 if (drv->bdrv_make_empty)
597 return drv->bdrv_make_empty(bs);
95389c86 598
33e3963e
FB
599 return 0;
600}
601
71d0770c
AL
602static int bdrv_check_byte_request(BlockDriverState *bs, int64_t offset,
603 size_t size)
604{
605 int64_t len;
606
607 if (!bdrv_is_inserted(bs))
608 return -ENOMEDIUM;
609
610 if (bs->growable)
611 return 0;
612
613 len = bdrv_getlength(bs);
614
fbb7b4e0
KW
615 if (offset < 0)
616 return -EIO;
617
618 if ((offset > len) || (len - offset < size))
71d0770c
AL
619 return -EIO;
620
621 return 0;
622}
623
624static int bdrv_check_request(BlockDriverState *bs, int64_t sector_num,
625 int nb_sectors)
626{
999dec57 627 return bdrv_check_byte_request(bs, sector_num * 512, nb_sectors * 512);
71d0770c
AL
628}
629
19cb3738 630/* return < 0 if error. See bdrv_write() for the return codes */
5fafdf24 631int bdrv_read(BlockDriverState *bs, int64_t sector_num,
fc01f7e7
FB
632 uint8_t *buf, int nb_sectors)
633{
ea2384d3
FB
634 BlockDriver *drv = bs->drv;
635
19cb3738
FB
636 if (!drv)
637 return -ENOMEDIUM;
71d0770c
AL
638 if (bdrv_check_request(bs, sector_num, nb_sectors))
639 return -EIO;
b338082b 640
eda578e5 641 return drv->bdrv_read(bs, sector_num, buf, nb_sectors);
fc01f7e7
FB
642}
643
7cd1e32a 644static void set_dirty_bitmap(BlockDriverState *bs, int64_t sector_num,
a55eb92c 645 int nb_sectors, int dirty)
7cd1e32a 646{
647 int64_t start, end;
c6d22830 648 unsigned long val, idx, bit;
a55eb92c 649
6ea44308 650 start = sector_num / BDRV_SECTORS_PER_DIRTY_CHUNK;
c6d22830 651 end = (sector_num + nb_sectors - 1) / BDRV_SECTORS_PER_DIRTY_CHUNK;
a55eb92c
JK
652
653 for (; start <= end; start++) {
c6d22830
JK
654 idx = start / (sizeof(unsigned long) * 8);
655 bit = start % (sizeof(unsigned long) * 8);
656 val = bs->dirty_bitmap[idx];
657 if (dirty) {
658 val |= 1 << bit;
659 } else {
660 val &= ~(1 << bit);
661 }
662 bs->dirty_bitmap[idx] = val;
7cd1e32a 663 }
664}
665
5fafdf24 666/* Return < 0 if error. Important errors are:
19cb3738
FB
667 -EIO generic I/O error (may happen for all errors)
668 -ENOMEDIUM No media inserted.
669 -EINVAL Invalid sector number or nb_sectors
670 -EACCES Trying to write a read-only device
671*/
5fafdf24 672int bdrv_write(BlockDriverState *bs, int64_t sector_num,
fc01f7e7
FB
673 const uint8_t *buf, int nb_sectors)
674{
83f64091 675 BlockDriver *drv = bs->drv;
19cb3738
FB
676 if (!bs->drv)
677 return -ENOMEDIUM;
0849bf08 678 if (bs->read_only)
19cb3738 679 return -EACCES;
71d0770c
AL
680 if (bdrv_check_request(bs, sector_num, nb_sectors))
681 return -EIO;
a55eb92c 682
c6d22830 683 if (bs->dirty_bitmap) {
7cd1e32a 684 set_dirty_bitmap(bs, sector_num, nb_sectors, 1);
685 }
a55eb92c 686
42fb2807 687 return drv->bdrv_write(bs, sector_num, buf, nb_sectors);
83f64091
FB
688}
689
eda578e5
AL
690int bdrv_pread(BlockDriverState *bs, int64_t offset,
691 void *buf, int count1)
83f64091 692{
6ea44308 693 uint8_t tmp_buf[BDRV_SECTOR_SIZE];
83f64091
FB
694 int len, nb_sectors, count;
695 int64_t sector_num;
dbf45b44 696 int ret;
83f64091
FB
697
698 count = count1;
699 /* first read to align to sector start */
6ea44308 700 len = (BDRV_SECTOR_SIZE - offset) & (BDRV_SECTOR_SIZE - 1);
83f64091
FB
701 if (len > count)
702 len = count;
6ea44308 703 sector_num = offset >> BDRV_SECTOR_BITS;
83f64091 704 if (len > 0) {
dbf45b44
KW
705 if ((ret = bdrv_read(bs, sector_num, tmp_buf, 1)) < 0)
706 return ret;
6ea44308 707 memcpy(buf, tmp_buf + (offset & (BDRV_SECTOR_SIZE - 1)), len);
83f64091
FB
708 count -= len;
709 if (count == 0)
710 return count1;
711 sector_num++;
712 buf += len;
713 }
714
715 /* read the sectors "in place" */
6ea44308 716 nb_sectors = count >> BDRV_SECTOR_BITS;
83f64091 717 if (nb_sectors > 0) {
dbf45b44
KW
718 if ((ret = bdrv_read(bs, sector_num, buf, nb_sectors)) < 0)
719 return ret;
83f64091 720 sector_num += nb_sectors;
6ea44308 721 len = nb_sectors << BDRV_SECTOR_BITS;
83f64091
FB
722 buf += len;
723 count -= len;
724 }
725
726 /* add data from the last sector */
727 if (count > 0) {
dbf45b44
KW
728 if ((ret = bdrv_read(bs, sector_num, tmp_buf, 1)) < 0)
729 return ret;
83f64091
FB
730 memcpy(buf, tmp_buf, count);
731 }
732 return count1;
733}
734
eda578e5
AL
735int bdrv_pwrite(BlockDriverState *bs, int64_t offset,
736 const void *buf, int count1)
83f64091 737{
6ea44308 738 uint8_t tmp_buf[BDRV_SECTOR_SIZE];
83f64091
FB
739 int len, nb_sectors, count;
740 int64_t sector_num;
dbf45b44 741 int ret;
83f64091
FB
742
743 count = count1;
744 /* first write to align to sector start */
6ea44308 745 len = (BDRV_SECTOR_SIZE - offset) & (BDRV_SECTOR_SIZE - 1);
83f64091
FB
746 if (len > count)
747 len = count;
6ea44308 748 sector_num = offset >> BDRV_SECTOR_BITS;
83f64091 749 if (len > 0) {
dbf45b44
KW
750 if ((ret = bdrv_read(bs, sector_num, tmp_buf, 1)) < 0)
751 return ret;
6ea44308 752 memcpy(tmp_buf + (offset & (BDRV_SECTOR_SIZE - 1)), buf, len);
dbf45b44
KW
753 if ((ret = bdrv_write(bs, sector_num, tmp_buf, 1)) < 0)
754 return ret;
83f64091
FB
755 count -= len;
756 if (count == 0)
757 return count1;
758 sector_num++;
759 buf += len;
760 }
761
762 /* write the sectors "in place" */
6ea44308 763 nb_sectors = count >> BDRV_SECTOR_BITS;
83f64091 764 if (nb_sectors > 0) {
dbf45b44
KW
765 if ((ret = bdrv_write(bs, sector_num, buf, nb_sectors)) < 0)
766 return ret;
83f64091 767 sector_num += nb_sectors;
6ea44308 768 len = nb_sectors << BDRV_SECTOR_BITS;
83f64091
FB
769 buf += len;
770 count -= len;
771 }
772
773 /* add data from the last sector */
774 if (count > 0) {
dbf45b44
KW
775 if ((ret = bdrv_read(bs, sector_num, tmp_buf, 1)) < 0)
776 return ret;
83f64091 777 memcpy(tmp_buf, buf, count);
dbf45b44
KW
778 if ((ret = bdrv_write(bs, sector_num, tmp_buf, 1)) < 0)
779 return ret;
83f64091
FB
780 }
781 return count1;
782}
83f64091 783
ceef722d
KW
784/*
785 * Writes to the file and ensures that no writes are reordered across this
786 * request (acts as a barrier)
787 *
788 * Returns 0 on success, -errno in error cases.
789 */
790int bdrv_pwrite_sync(BlockDriverState *bs, int64_t offset,
791 const void *buf, int count)
792{
793 int ret;
794
795 ret = bdrv_pwrite(bs, offset, buf, count);
796 if (ret < 0) {
797 return ret;
798 }
799
800 /* No flush needed for cache=writethrough, it uses O_DSYNC */
801 if ((bs->open_flags & BDRV_O_CACHE_MASK) != 0) {
802 bdrv_flush(bs);
803 }
804
805 return 0;
806}
807
808/*
809 * Writes to the file and ensures that no writes are reordered across this
810 * request (acts as a barrier)
811 *
812 * Returns 0 on success, -errno in error cases.
813 */
814int bdrv_write_sync(BlockDriverState *bs, int64_t sector_num,
815 const uint8_t *buf, int nb_sectors)
816{
817 return bdrv_pwrite_sync(bs, BDRV_SECTOR_SIZE * sector_num,
818 buf, BDRV_SECTOR_SIZE * nb_sectors);
819}
820
83f64091
FB
821/**
822 * Truncate file to 'offset' bytes (needed only for file protocols)
823 */
824int bdrv_truncate(BlockDriverState *bs, int64_t offset)
825{
826 BlockDriver *drv = bs->drv;
827 if (!drv)
19cb3738 828 return -ENOMEDIUM;
83f64091
FB
829 if (!drv->bdrv_truncate)
830 return -ENOTSUP;
59f2689d
NS
831 if (bs->read_only)
832 return -EACCES;
83f64091
FB
833 return drv->bdrv_truncate(bs, offset);
834}
835
836/**
837 * Length of a file in bytes. Return < 0 if error or unknown.
838 */
839int64_t bdrv_getlength(BlockDriverState *bs)
840{
841 BlockDriver *drv = bs->drv;
842 if (!drv)
19cb3738 843 return -ENOMEDIUM;
83f64091
FB
844 if (!drv->bdrv_getlength) {
845 /* legacy mode */
6ea44308 846 return bs->total_sectors * BDRV_SECTOR_SIZE;
83f64091
FB
847 }
848 return drv->bdrv_getlength(bs);
fc01f7e7
FB
849}
850
19cb3738 851/* return 0 as number of sectors if no device present or error */
96b8f136 852void bdrv_get_geometry(BlockDriverState *bs, uint64_t *nb_sectors_ptr)
fc01f7e7 853{
19cb3738
FB
854 int64_t length;
855 length = bdrv_getlength(bs);
856 if (length < 0)
857 length = 0;
858 else
6ea44308 859 length = length >> BDRV_SECTOR_BITS;
19cb3738 860 *nb_sectors_ptr = length;
fc01f7e7 861}
cf98951b 862
f3d54fc4
AL
863struct partition {
864 uint8_t boot_ind; /* 0x80 - active */
865 uint8_t head; /* starting head */
866 uint8_t sector; /* starting sector */
867 uint8_t cyl; /* starting cylinder */
868 uint8_t sys_ind; /* What partition type */
869 uint8_t end_head; /* end head */
870 uint8_t end_sector; /* end sector */
871 uint8_t end_cyl; /* end cylinder */
872 uint32_t start_sect; /* starting sector counting from 0 */
873 uint32_t nr_sects; /* nr of sectors in partition */
874} __attribute__((packed));
875
876/* try to guess the disk logical geometry from the MSDOS partition table. Return 0 if OK, -1 if could not guess */
877static int guess_disk_lchs(BlockDriverState *bs,
878 int *pcylinders, int *pheads, int *psectors)
879{
880 uint8_t buf[512];
881 int ret, i, heads, sectors, cylinders;
882 struct partition *p;
883 uint32_t nr_sects;
a38131b6 884 uint64_t nb_sectors;
f3d54fc4
AL
885
886 bdrv_get_geometry(bs, &nb_sectors);
887
888 ret = bdrv_read(bs, 0, buf, 1);
889 if (ret < 0)
890 return -1;
891 /* test msdos magic */
892 if (buf[510] != 0x55 || buf[511] != 0xaa)
893 return -1;
894 for(i = 0; i < 4; i++) {
895 p = ((struct partition *)(buf + 0x1be)) + i;
896 nr_sects = le32_to_cpu(p->nr_sects);
897 if (nr_sects && p->end_head) {
898 /* We make the assumption that the partition terminates on
899 a cylinder boundary */
900 heads = p->end_head + 1;
901 sectors = p->end_sector & 63;
902 if (sectors == 0)
903 continue;
904 cylinders = nb_sectors / (heads * sectors);
905 if (cylinders < 1 || cylinders > 16383)
906 continue;
907 *pheads = heads;
908 *psectors = sectors;
909 *pcylinders = cylinders;
910#if 0
911 printf("guessed geometry: LCHS=%d %d %d\n",
912 cylinders, heads, sectors);
913#endif
914 return 0;
915 }
916 }
917 return -1;
918}
919
920void bdrv_guess_geometry(BlockDriverState *bs, int *pcyls, int *pheads, int *psecs)
921{
922 int translation, lba_detected = 0;
923 int cylinders, heads, secs;
a38131b6 924 uint64_t nb_sectors;
f3d54fc4
AL
925
926 /* if a geometry hint is available, use it */
927 bdrv_get_geometry(bs, &nb_sectors);
928 bdrv_get_geometry_hint(bs, &cylinders, &heads, &secs);
929 translation = bdrv_get_translation_hint(bs);
930 if (cylinders != 0) {
931 *pcyls = cylinders;
932 *pheads = heads;
933 *psecs = secs;
934 } else {
935 if (guess_disk_lchs(bs, &cylinders, &heads, &secs) == 0) {
936 if (heads > 16) {
937 /* if heads > 16, it means that a BIOS LBA
938 translation was active, so the default
939 hardware geometry is OK */
940 lba_detected = 1;
941 goto default_geometry;
942 } else {
943 *pcyls = cylinders;
944 *pheads = heads;
945 *psecs = secs;
946 /* disable any translation to be in sync with
947 the logical geometry */
948 if (translation == BIOS_ATA_TRANSLATION_AUTO) {
949 bdrv_set_translation_hint(bs,
950 BIOS_ATA_TRANSLATION_NONE);
951 }
952 }
953 } else {
954 default_geometry:
955 /* if no geometry, use a standard physical disk geometry */
956 cylinders = nb_sectors / (16 * 63);
957
958 if (cylinders > 16383)
959 cylinders = 16383;
960 else if (cylinders < 2)
961 cylinders = 2;
962 *pcyls = cylinders;
963 *pheads = 16;
964 *psecs = 63;
965 if ((lba_detected == 1) && (translation == BIOS_ATA_TRANSLATION_AUTO)) {
966 if ((*pcyls * *pheads) <= 131072) {
967 bdrv_set_translation_hint(bs,
968 BIOS_ATA_TRANSLATION_LARGE);
969 } else {
970 bdrv_set_translation_hint(bs,
971 BIOS_ATA_TRANSLATION_LBA);
972 }
973 }
974 }
975 bdrv_set_geometry_hint(bs, *pcyls, *pheads, *psecs);
976 }
977}
978
5fafdf24 979void bdrv_set_geometry_hint(BlockDriverState *bs,
b338082b
FB
980 int cyls, int heads, int secs)
981{
982 bs->cyls = cyls;
983 bs->heads = heads;
984 bs->secs = secs;
985}
986
987void bdrv_set_type_hint(BlockDriverState *bs, int type)
988{
989 bs->type = type;
990 bs->removable = ((type == BDRV_TYPE_CDROM ||
991 type == BDRV_TYPE_FLOPPY));
992}
993
46d4767d
FB
994void bdrv_set_translation_hint(BlockDriverState *bs, int translation)
995{
996 bs->translation = translation;
997}
998
5fafdf24 999void bdrv_get_geometry_hint(BlockDriverState *bs,
b338082b
FB
1000 int *pcyls, int *pheads, int *psecs)
1001{
1002 *pcyls = bs->cyls;
1003 *pheads = bs->heads;
1004 *psecs = bs->secs;
1005}
1006
1007int bdrv_get_type_hint(BlockDriverState *bs)
1008{
1009 return bs->type;
1010}
1011
46d4767d
FB
1012int bdrv_get_translation_hint(BlockDriverState *bs)
1013{
1014 return bs->translation;
1015}
1016
b338082b
FB
1017int bdrv_is_removable(BlockDriverState *bs)
1018{
1019 return bs->removable;
1020}
1021
1022int bdrv_is_read_only(BlockDriverState *bs)
1023{
1024 return bs->read_only;
1025}
1026
59f2689d
NS
1027int bdrv_set_read_only(BlockDriverState *bs, int read_only)
1028{
1029 int ret = bs->read_only;
1030 bs->read_only = read_only;
1031 return ret;
1032}
1033
985a03b0
TS
1034int bdrv_is_sg(BlockDriverState *bs)
1035{
1036 return bs->sg;
1037}
1038
e900a7b7
CH
1039int bdrv_enable_write_cache(BlockDriverState *bs)
1040{
1041 return bs->enable_write_cache;
1042}
1043
19cb3738 1044/* XXX: no longer used */
5fafdf24 1045void bdrv_set_change_cb(BlockDriverState *bs,
b338082b
FB
1046 void (*change_cb)(void *opaque), void *opaque)
1047{
1048 bs->change_cb = change_cb;
1049 bs->change_opaque = opaque;
1050}
1051
ea2384d3
FB
1052int bdrv_is_encrypted(BlockDriverState *bs)
1053{
1054 if (bs->backing_hd && bs->backing_hd->encrypted)
1055 return 1;
1056 return bs->encrypted;
1057}
1058
c0f4ce77
AL
1059int bdrv_key_required(BlockDriverState *bs)
1060{
1061 BlockDriverState *backing_hd = bs->backing_hd;
1062
1063 if (backing_hd && backing_hd->encrypted && !backing_hd->valid_key)
1064 return 1;
1065 return (bs->encrypted && !bs->valid_key);
1066}
1067
ea2384d3
FB
1068int bdrv_set_key(BlockDriverState *bs, const char *key)
1069{
1070 int ret;
1071 if (bs->backing_hd && bs->backing_hd->encrypted) {
1072 ret = bdrv_set_key(bs->backing_hd, key);
1073 if (ret < 0)
1074 return ret;
1075 if (!bs->encrypted)
1076 return 0;
1077 }
1078 if (!bs->encrypted || !bs->drv || !bs->drv->bdrv_set_key)
1079 return -1;
c0f4ce77 1080 ret = bs->drv->bdrv_set_key(bs, key);
bb5fc20f
AL
1081 if (ret < 0) {
1082 bs->valid_key = 0;
1083 } else if (!bs->valid_key) {
1084 bs->valid_key = 1;
1085 /* call the change callback now, we skipped it on open */
1086 bs->media_changed = 1;
1087 if (bs->change_cb)
1088 bs->change_cb(bs->change_opaque);
1089 }
c0f4ce77 1090 return ret;
ea2384d3
FB
1091}
1092
1093void bdrv_get_format(BlockDriverState *bs, char *buf, int buf_size)
1094{
19cb3738 1095 if (!bs->drv) {
ea2384d3
FB
1096 buf[0] = '\0';
1097 } else {
1098 pstrcpy(buf, buf_size, bs->drv->format_name);
1099 }
1100}
1101
5fafdf24 1102void bdrv_iterate_format(void (*it)(void *opaque, const char *name),
ea2384d3
FB
1103 void *opaque)
1104{
1105 BlockDriver *drv;
1106
1107 for (drv = first_drv; drv != NULL; drv = drv->next) {
1108 it(opaque, drv->format_name);
1109 }
1110}
1111
b338082b
FB
1112BlockDriverState *bdrv_find(const char *name)
1113{
1114 BlockDriverState *bs;
1115
1116 for (bs = bdrv_first; bs != NULL; bs = bs->next) {
1117 if (!strcmp(name, bs->device_name))
1118 return bs;
1119 }
1120 return NULL;
1121}
1122
51de9760 1123void bdrv_iterate(void (*it)(void *opaque, BlockDriverState *bs), void *opaque)
81d0912d
FB
1124{
1125 BlockDriverState *bs;
1126
1127 for (bs = bdrv_first; bs != NULL; bs = bs->next) {
51de9760 1128 it(opaque, bs);
81d0912d
FB
1129 }
1130}
1131
ea2384d3
FB
1132const char *bdrv_get_device_name(BlockDriverState *bs)
1133{
1134 return bs->device_name;
1135}
1136
7a6cba61
PB
1137void bdrv_flush(BlockDriverState *bs)
1138{
081501da
AL
1139 if (!bs->drv)
1140 return;
7a6cba61
PB
1141 if (bs->drv->bdrv_flush)
1142 bs->drv->bdrv_flush(bs);
1143 if (bs->backing_hd)
1144 bdrv_flush(bs->backing_hd);
1145}
1146
c6ca28d6
AL
1147void bdrv_flush_all(void)
1148{
1149 BlockDriverState *bs;
1150
1151 for (bs = bdrv_first; bs != NULL; bs = bs->next)
1152 if (bs->drv && !bdrv_is_read_only(bs) &&
1153 (!bdrv_is_removable(bs) || bdrv_is_inserted(bs)))
1154 bdrv_flush(bs);
1155}
1156
f58c7b35
TS
1157/*
1158 * Returns true iff the specified sector is present in the disk image. Drivers
1159 * not implementing the functionality are assumed to not support backing files,
1160 * hence all their sectors are reported as allocated.
1161 *
1162 * 'pnum' is set to the number of sectors (including and immediately following
1163 * the specified sector) that are known to be in the same
1164 * allocated/unallocated state.
1165 *
1166 * 'nb_sectors' is the max value 'pnum' should be set to.
1167 */
1168int bdrv_is_allocated(BlockDriverState *bs, int64_t sector_num, int nb_sectors,
1169 int *pnum)
1170{
1171 int64_t n;
1172 if (!bs->drv->bdrv_is_allocated) {
1173 if (sector_num >= bs->total_sectors) {
1174 *pnum = 0;
1175 return 0;
1176 }
1177 n = bs->total_sectors - sector_num;
1178 *pnum = (n < nb_sectors) ? (n) : (nb_sectors);
1179 return 1;
1180 }
1181 return bs->drv->bdrv_is_allocated(bs, sector_num, nb_sectors, pnum);
1182}
1183
4305793b 1184static void bdrv_print_dict(QObject *obj, void *opaque)
b338082b 1185{
4305793b
LC
1186 QDict *bs_dict;
1187 Monitor *mon = opaque;
1188
1189 bs_dict = qobject_to_qdict(obj);
1190
1191 monitor_printf(mon, "%s: type=%s removable=%d",
1192 qdict_get_str(bs_dict, "device"),
1193 qdict_get_str(bs_dict, "type"),
1194 qdict_get_bool(bs_dict, "removable"));
1195
1196 if (qdict_get_bool(bs_dict, "removable")) {
1197 monitor_printf(mon, " locked=%d", qdict_get_bool(bs_dict, "locked"));
1198 }
1199
1200 if (qdict_haskey(bs_dict, "inserted")) {
1201 QDict *qdict = qobject_to_qdict(qdict_get(bs_dict, "inserted"));
1202
1203 monitor_printf(mon, " file=");
1204 monitor_print_filename(mon, qdict_get_str(qdict, "file"));
1205 if (qdict_haskey(qdict, "backing_file")) {
1206 monitor_printf(mon, " backing_file=");
1207 monitor_print_filename(mon, qdict_get_str(qdict, "backing_file"));
1208 }
1209 monitor_printf(mon, " ro=%d drv=%s encrypted=%d",
1210 qdict_get_bool(qdict, "ro"),
1211 qdict_get_str(qdict, "drv"),
1212 qdict_get_bool(qdict, "encrypted"));
1213 } else {
1214 monitor_printf(mon, " [not inserted]");
1215 }
1216
1217 monitor_printf(mon, "\n");
1218}
1219
1220void bdrv_info_print(Monitor *mon, const QObject *data)
1221{
1222 qlist_iter(qobject_to_qlist(data), bdrv_print_dict, mon);
1223}
1224
1225/**
1226 * bdrv_info(): Block devices information
1227 *
1228 * Each block device information is stored in a QDict and the
1229 * returned QObject is a QList of all devices.
1230 *
1231 * The QDict contains the following:
1232 *
1233 * - "device": device name
1234 * - "type": device type
1235 * - "removable": true if the device is removable, false otherwise
1236 * - "locked": true if the device is locked, false otherwise
1237 * - "inserted": only present if the device is inserted, it is a QDict
1238 * containing the following:
1239 * - "file": device file name
1240 * - "ro": true if read-only, false otherwise
1241 * - "drv": driver format name
1242 * - "backing_file": backing file name if one is used
1243 * - "encrypted": true if encrypted, false otherwise
1244 *
1245 * Example:
1246 *
1247 * [ { "device": "ide0-hd0", "type": "hd", "removable": false, "locked": false,
1248 * "inserted": { "file": "/tmp/foobar", "ro": false, "drv": "qcow2" } },
1249 * { "device": "floppy0", "type": "floppy", "removable": true,
1250 * "locked": false } ]
1251 */
1252void bdrv_info(Monitor *mon, QObject **ret_data)
1253{
1254 QList *bs_list;
b338082b
FB
1255 BlockDriverState *bs;
1256
4305793b
LC
1257 bs_list = qlist_new();
1258
b338082b 1259 for (bs = bdrv_first; bs != NULL; bs = bs->next) {
4305793b
LC
1260 QObject *bs_obj;
1261 const char *type = "unknown";
1262
b338082b
FB
1263 switch(bs->type) {
1264 case BDRV_TYPE_HD:
4305793b 1265 type = "hd";
b338082b
FB
1266 break;
1267 case BDRV_TYPE_CDROM:
4305793b 1268 type = "cdrom";
b338082b
FB
1269 break;
1270 case BDRV_TYPE_FLOPPY:
4305793b 1271 type = "floppy";
b338082b
FB
1272 break;
1273 }
4305793b
LC
1274
1275 bs_obj = qobject_from_jsonf("{ 'device': %s, 'type': %s, "
1276 "'removable': %i, 'locked': %i }",
1277 bs->device_name, type, bs->removable,
1278 bs->locked);
1279 assert(bs_obj != NULL);
1280
19cb3738 1281 if (bs->drv) {
4305793b
LC
1282 QObject *obj;
1283 QDict *bs_dict = qobject_to_qdict(bs_obj);
1284
1285 obj = qobject_from_jsonf("{ 'file': %s, 'ro': %i, 'drv': %s, "
1286 "'encrypted': %i }",
1287 bs->filename, bs->read_only,
1288 bs->drv->format_name,
1289 bdrv_is_encrypted(bs));
1290 assert(obj != NULL);
fef30743 1291 if (bs->backing_file[0] != '\0') {
4305793b
LC
1292 QDict *qdict = qobject_to_qdict(obj);
1293 qdict_put(qdict, "backing_file",
1294 qstring_from_str(bs->backing_file));
376253ec 1295 }
4305793b
LC
1296
1297 qdict_put_obj(bs_dict, "inserted", obj);
b338082b 1298 }
4305793b 1299 qlist_append_obj(bs_list, bs_obj);
b338082b 1300 }
4305793b
LC
1301
1302 *ret_data = QOBJECT(bs_list);
b338082b 1303}
a36e69dd 1304
0108d4e3 1305static void bdrv_stats_iter(QObject *data, void *opaque)
a36e69dd 1306{
0108d4e3
LC
1307 QDict *qdict;
1308 Monitor *mon = opaque;
1309
1310 qdict = qobject_to_qdict(data);
1311 monitor_printf(mon, "%s:", qdict_get_str(qdict, "device"));
1312
1313 qdict = qobject_to_qdict(qdict_get(qdict, "stats"));
1314 monitor_printf(mon, " rd_bytes=%" PRId64
1315 " wr_bytes=%" PRId64
1316 " rd_operations=%" PRId64
1317 " wr_operations=%" PRId64
1318 "\n",
1319 qdict_get_int(qdict, "rd_bytes"),
1320 qdict_get_int(qdict, "wr_bytes"),
1321 qdict_get_int(qdict, "rd_operations"),
1322 qdict_get_int(qdict, "wr_operations"));
1323}
1324
1325void bdrv_stats_print(Monitor *mon, const QObject *data)
1326{
1327 qlist_iter(qobject_to_qlist(data), bdrv_stats_iter, mon);
1328}
1329
1330/**
1331 * bdrv_info_stats(): show block device statistics
1332 *
1333 * Each device statistic information is stored in a QDict and
1334 * the returned QObject is a QList of all devices.
1335 *
1336 * The QDict contains the following:
1337 *
1338 * - "device": device name
1339 * - "stats": A QDict with the statistics information, it contains:
1340 * - "rd_bytes": bytes read
1341 * - "wr_bytes": bytes written
1342 * - "rd_operations": read operations
1343 * - "wr_operations": write operations
1344 *
1345 * Example:
1346 *
1347 * [ { "device": "ide0-hd0",
1348 * "stats": { "rd_bytes": 512,
1349 * "wr_bytes": 0,
1350 * "rd_operations": 1,
1351 * "wr_operations": 0 } },
1352 * { "device": "ide1-cd0",
1353 * "stats": { "rd_bytes": 0,
1354 * "wr_bytes": 0,
1355 * "rd_operations": 0,
1356 * "wr_operations": 0 } } ]
1357 */
1358void bdrv_info_stats(Monitor *mon, QObject **ret_data)
1359{
1360 QObject *obj;
1361 QList *devices;
a36e69dd
TS
1362 BlockDriverState *bs;
1363
0108d4e3
LC
1364 devices = qlist_new();
1365
a36e69dd 1366 for (bs = bdrv_first; bs != NULL; bs = bs->next) {
0108d4e3
LC
1367 obj = qobject_from_jsonf("{ 'device': %s, 'stats': {"
1368 "'rd_bytes': %" PRId64 ","
1369 "'wr_bytes': %" PRId64 ","
1370 "'rd_operations': %" PRId64 ","
1371 "'wr_operations': %" PRId64
1372 "} }",
1373 bs->device_name,
1374 bs->rd_bytes, bs->wr_bytes,
1375 bs->rd_ops, bs->wr_ops);
1376 assert(obj != NULL);
1377 qlist_append_obj(devices, obj);
a36e69dd 1378 }
0108d4e3
LC
1379
1380 *ret_data = QOBJECT(devices);
a36e69dd 1381}
ea2384d3 1382
045df330
AL
1383const char *bdrv_get_encrypted_filename(BlockDriverState *bs)
1384{
1385 if (bs->backing_hd && bs->backing_hd->encrypted)
1386 return bs->backing_file;
1387 else if (bs->encrypted)
1388 return bs->filename;
1389 else
1390 return NULL;
1391}
1392
5fafdf24 1393void bdrv_get_backing_filename(BlockDriverState *bs,
83f64091
FB
1394 char *filename, int filename_size)
1395{
1396 if (!bs->backing_hd) {
1397 pstrcpy(filename, filename_size, "");
1398 } else {
1399 pstrcpy(filename, filename_size, bs->backing_file);
1400 }
1401}
1402
5fafdf24 1403int bdrv_write_compressed(BlockDriverState *bs, int64_t sector_num,
faea38e7
FB
1404 const uint8_t *buf, int nb_sectors)
1405{
1406 BlockDriver *drv = bs->drv;
1407 if (!drv)
19cb3738 1408 return -ENOMEDIUM;
faea38e7
FB
1409 if (!drv->bdrv_write_compressed)
1410 return -ENOTSUP;
fbb7b4e0
KW
1411 if (bdrv_check_request(bs, sector_num, nb_sectors))
1412 return -EIO;
a55eb92c 1413
c6d22830 1414 if (bs->dirty_bitmap) {
7cd1e32a 1415 set_dirty_bitmap(bs, sector_num, nb_sectors, 1);
1416 }
a55eb92c 1417
faea38e7
FB
1418 return drv->bdrv_write_compressed(bs, sector_num, buf, nb_sectors);
1419}
3b46e624 1420
faea38e7
FB
1421int bdrv_get_info(BlockDriverState *bs, BlockDriverInfo *bdi)
1422{
1423 BlockDriver *drv = bs->drv;
1424 if (!drv)
19cb3738 1425 return -ENOMEDIUM;
faea38e7
FB
1426 if (!drv->bdrv_get_info)
1427 return -ENOTSUP;
1428 memset(bdi, 0, sizeof(*bdi));
1429 return drv->bdrv_get_info(bs, bdi);
1430}
1431
45566e9c
CH
1432int bdrv_save_vmstate(BlockDriverState *bs, const uint8_t *buf,
1433 int64_t pos, int size)
178e08a5
AL
1434{
1435 BlockDriver *drv = bs->drv;
1436 if (!drv)
1437 return -ENOMEDIUM;
45566e9c 1438 if (!drv->bdrv_save_vmstate)
178e08a5 1439 return -ENOTSUP;
45566e9c 1440 return drv->bdrv_save_vmstate(bs, buf, pos, size);
178e08a5
AL
1441}
1442
45566e9c
CH
1443int bdrv_load_vmstate(BlockDriverState *bs, uint8_t *buf,
1444 int64_t pos, int size)
178e08a5
AL
1445{
1446 BlockDriver *drv = bs->drv;
1447 if (!drv)
1448 return -ENOMEDIUM;
45566e9c 1449 if (!drv->bdrv_load_vmstate)
178e08a5 1450 return -ENOTSUP;
45566e9c 1451 return drv->bdrv_load_vmstate(bs, buf, pos, size);
178e08a5
AL
1452}
1453
faea38e7
FB
1454/**************************************************************/
1455/* handling of snapshots */
1456
5fafdf24 1457int bdrv_snapshot_create(BlockDriverState *bs,
faea38e7
FB
1458 QEMUSnapshotInfo *sn_info)
1459{
1460 BlockDriver *drv = bs->drv;
1461 if (!drv)
19cb3738 1462 return -ENOMEDIUM;
faea38e7
FB
1463 if (!drv->bdrv_snapshot_create)
1464 return -ENOTSUP;
1465 return drv->bdrv_snapshot_create(bs, sn_info);
1466}
1467
5fafdf24 1468int bdrv_snapshot_goto(BlockDriverState *bs,
faea38e7
FB
1469 const char *snapshot_id)
1470{
1471 BlockDriver *drv = bs->drv;
1472 if (!drv)
19cb3738 1473 return -ENOMEDIUM;
faea38e7
FB
1474 if (!drv->bdrv_snapshot_goto)
1475 return -ENOTSUP;
1476 return drv->bdrv_snapshot_goto(bs, snapshot_id);
1477}
1478
1479int bdrv_snapshot_delete(BlockDriverState *bs, const char *snapshot_id)
1480{
1481 BlockDriver *drv = bs->drv;
1482 if (!drv)
19cb3738 1483 return -ENOMEDIUM;
faea38e7
FB
1484 if (!drv->bdrv_snapshot_delete)
1485 return -ENOTSUP;
1486 return drv->bdrv_snapshot_delete(bs, snapshot_id);
1487}
1488
5fafdf24 1489int bdrv_snapshot_list(BlockDriverState *bs,
faea38e7
FB
1490 QEMUSnapshotInfo **psn_info)
1491{
1492 BlockDriver *drv = bs->drv;
1493 if (!drv)
19cb3738 1494 return -ENOMEDIUM;
faea38e7
FB
1495 if (!drv->bdrv_snapshot_list)
1496 return -ENOTSUP;
1497 return drv->bdrv_snapshot_list(bs, psn_info);
1498}
1499
1500#define NB_SUFFIXES 4
1501
1502char *get_human_readable_size(char *buf, int buf_size, int64_t size)
1503{
1504 static const char suffixes[NB_SUFFIXES] = "KMGT";
1505 int64_t base;
1506 int i;
1507
1508 if (size <= 999) {
1509 snprintf(buf, buf_size, "%" PRId64, size);
1510 } else {
1511 base = 1024;
1512 for(i = 0; i < NB_SUFFIXES; i++) {
1513 if (size < (10 * base)) {
5fafdf24 1514 snprintf(buf, buf_size, "%0.1f%c",
faea38e7
FB
1515 (double)size / base,
1516 suffixes[i]);
1517 break;
1518 } else if (size < (1000 * base) || i == (NB_SUFFIXES - 1)) {
5fafdf24 1519 snprintf(buf, buf_size, "%" PRId64 "%c",
faea38e7
FB
1520 ((size + (base >> 1)) / base),
1521 suffixes[i]);
1522 break;
1523 }
1524 base = base * 1024;
1525 }
1526 }
1527 return buf;
1528}
1529
1530char *bdrv_snapshot_dump(char *buf, int buf_size, QEMUSnapshotInfo *sn)
1531{
1532 char buf1[128], date_buf[128], clock_buf[128];
3b9f94e1
FB
1533#ifdef _WIN32
1534 struct tm *ptm;
1535#else
faea38e7 1536 struct tm tm;
3b9f94e1 1537#endif
faea38e7
FB
1538 time_t ti;
1539 int64_t secs;
1540
1541 if (!sn) {
5fafdf24
TS
1542 snprintf(buf, buf_size,
1543 "%-10s%-20s%7s%20s%15s",
faea38e7
FB
1544 "ID", "TAG", "VM SIZE", "DATE", "VM CLOCK");
1545 } else {
1546 ti = sn->date_sec;
3b9f94e1
FB
1547#ifdef _WIN32
1548 ptm = localtime(&ti);
1549 strftime(date_buf, sizeof(date_buf),
1550 "%Y-%m-%d %H:%M:%S", ptm);
1551#else
faea38e7
FB
1552 localtime_r(&ti, &tm);
1553 strftime(date_buf, sizeof(date_buf),
1554 "%Y-%m-%d %H:%M:%S", &tm);
3b9f94e1 1555#endif
faea38e7
FB
1556 secs = sn->vm_clock_nsec / 1000000000;
1557 snprintf(clock_buf, sizeof(clock_buf),
1558 "%02d:%02d:%02d.%03d",
1559 (int)(secs / 3600),
1560 (int)((secs / 60) % 60),
5fafdf24 1561 (int)(secs % 60),
faea38e7
FB
1562 (int)((sn->vm_clock_nsec / 1000000) % 1000));
1563 snprintf(buf, buf_size,
5fafdf24 1564 "%-10s%-20s%7s%20s%15s",
faea38e7
FB
1565 sn->id_str, sn->name,
1566 get_human_readable_size(buf1, sizeof(buf1), sn->vm_state_size),
1567 date_buf,
1568 clock_buf);
1569 }
1570 return buf;
1571}
1572
83f64091 1573
ea2384d3 1574/**************************************************************/
83f64091 1575/* async I/Os */
ea2384d3 1576
3b69e4b9 1577BlockDriverAIOCB *bdrv_aio_readv(BlockDriverState *bs, int64_t sector_num,
f141eafe 1578 QEMUIOVector *qiov, int nb_sectors,
3b69e4b9 1579 BlockDriverCompletionFunc *cb, void *opaque)
83f64091
FB
1580{
1581 BlockDriver *drv = bs->drv;
a36e69dd 1582 BlockDriverAIOCB *ret;
83f64091 1583
19cb3738 1584 if (!drv)
ce1a14dc 1585 return NULL;
71d0770c
AL
1586 if (bdrv_check_request(bs, sector_num, nb_sectors))
1587 return NULL;
3b46e624 1588
f141eafe
AL
1589 ret = drv->bdrv_aio_readv(bs, sector_num, qiov, nb_sectors,
1590 cb, opaque);
a36e69dd
TS
1591
1592 if (ret) {
1593 /* Update stats even though technically transfer has not happened. */
6ea44308 1594 bs->rd_bytes += (unsigned) nb_sectors * BDRV_SECTOR_SIZE;
a36e69dd
TS
1595 bs->rd_ops ++;
1596 }
1597
1598 return ret;
ea2384d3
FB
1599}
1600
f141eafe
AL
1601BlockDriverAIOCB *bdrv_aio_writev(BlockDriverState *bs, int64_t sector_num,
1602 QEMUIOVector *qiov, int nb_sectors,
1603 BlockDriverCompletionFunc *cb, void *opaque)
ea2384d3 1604{
83f64091 1605 BlockDriver *drv = bs->drv;
a36e69dd 1606 BlockDriverAIOCB *ret;
ea2384d3 1607
19cb3738 1608 if (!drv)
ce1a14dc 1609 return NULL;
83f64091 1610 if (bs->read_only)
ce1a14dc 1611 return NULL;
71d0770c
AL
1612 if (bdrv_check_request(bs, sector_num, nb_sectors))
1613 return NULL;
83f64091 1614
c6d22830 1615 if (bs->dirty_bitmap) {
7cd1e32a 1616 set_dirty_bitmap(bs, sector_num, nb_sectors, 1);
1617 }
a55eb92c 1618
f141eafe
AL
1619 ret = drv->bdrv_aio_writev(bs, sector_num, qiov, nb_sectors,
1620 cb, opaque);
a36e69dd
TS
1621
1622 if (ret) {
1623 /* Update stats even though technically transfer has not happened. */
6ea44308 1624 bs->wr_bytes += (unsigned) nb_sectors * BDRV_SECTOR_SIZE;
a36e69dd
TS
1625 bs->wr_ops ++;
1626 }
1627
1628 return ret;
83f64091
FB
1629}
1630
40b4f539
KW
1631
1632typedef struct MultiwriteCB {
1633 int error;
1634 int num_requests;
1635 int num_callbacks;
1636 struct {
1637 BlockDriverCompletionFunc *cb;
1638 void *opaque;
1639 QEMUIOVector *free_qiov;
1640 void *free_buf;
1641 } callbacks[];
1642} MultiwriteCB;
1643
1644static void multiwrite_user_cb(MultiwriteCB *mcb)
1645{
1646 int i;
1647
1648 for (i = 0; i < mcb->num_callbacks; i++) {
1649 mcb->callbacks[i].cb(mcb->callbacks[i].opaque, mcb->error);
012d4869
SH
1650 if (mcb->callbacks[i].free_qiov) {
1651 qemu_iovec_destroy(mcb->callbacks[i].free_qiov);
1652 }
40b4f539 1653 qemu_free(mcb->callbacks[i].free_qiov);
a1a86bf9 1654 qemu_vfree(mcb->callbacks[i].free_buf);
40b4f539
KW
1655 }
1656}
1657
1658static void multiwrite_cb(void *opaque, int ret)
1659{
1660 MultiwriteCB *mcb = opaque;
1661
aba52882 1662 if (ret < 0 && !mcb->error) {
40b4f539 1663 mcb->error = ret;
40b4f539
KW
1664 }
1665
1666 mcb->num_requests--;
1667 if (mcb->num_requests == 0) {
bb44e0bb 1668 multiwrite_user_cb(mcb);
40b4f539
KW
1669 qemu_free(mcb);
1670 }
1671}
1672
1673static int multiwrite_req_compare(const void *a, const void *b)
1674{
1fb9798b
CH
1675 const BlockRequest *req1 = a, *req2 = b;
1676
1677 /*
1678 * Note that we can't simply subtract req2->sector from req1->sector
1679 * here as that could overflow the return value.
1680 */
1681 if (req1->sector > req2->sector) {
1682 return 1;
1683 } else if (req1->sector < req2->sector) {
1684 return -1;
1685 } else {
1686 return 0;
1687 }
40b4f539
KW
1688}
1689
1690/*
1691 * Takes a bunch of requests and tries to merge them. Returns the number of
1692 * requests that remain after merging.
1693 */
1694static int multiwrite_merge(BlockDriverState *bs, BlockRequest *reqs,
1695 int num_reqs, MultiwriteCB *mcb)
1696{
1697 int i, outidx;
1698
1699 // Sort requests by start sector
1700 qsort(reqs, num_reqs, sizeof(*reqs), &multiwrite_req_compare);
1701
1702 // Check if adjacent requests touch the same clusters. If so, combine them,
1703 // filling up gaps with zero sectors.
1704 outidx = 0;
1705 for (i = 1; i < num_reqs; i++) {
1706 int merge = 0;
1707 int64_t oldreq_last = reqs[outidx].sector + reqs[outidx].nb_sectors;
1708
1709 // This handles the cases that are valid for all block drivers, namely
1710 // exactly sequential writes and overlapping writes.
1711 if (reqs[i].sector <= oldreq_last) {
1712 merge = 1;
1713 }
1714
1715 // The block driver may decide that it makes sense to combine requests
1716 // even if there is a gap of some sectors between them. In this case,
1717 // the gap is filled with zeros (therefore only applicable for yet
1718 // unused space in format like qcow2).
1719 if (!merge && bs->drv->bdrv_merge_requests) {
1720 merge = bs->drv->bdrv_merge_requests(bs, &reqs[outidx], &reqs[i]);
1721 }
1722
de17c16e
CH
1723 if (reqs[outidx].qiov->niov + reqs[i].qiov->niov + 1 > IOV_MAX) {
1724 merge = 0;
1725 }
1726
40b4f539
KW
1727 if (merge) {
1728 size_t size;
1729 QEMUIOVector *qiov = qemu_mallocz(sizeof(*qiov));
1730 qemu_iovec_init(qiov,
1731 reqs[outidx].qiov->niov + reqs[i].qiov->niov + 1);
1732
1733 // Add the first request to the merged one. If the requests are
1734 // overlapping, drop the last sectors of the first request.
1735 size = (reqs[i].sector - reqs[outidx].sector) << 9;
1736 qemu_iovec_concat(qiov, reqs[outidx].qiov, size);
1737
1738 // We might need to add some zeros between the two requests
1739 if (reqs[i].sector > oldreq_last) {
1740 size_t zero_bytes = (reqs[i].sector - oldreq_last) << 9;
1741 uint8_t *buf = qemu_blockalign(bs, zero_bytes);
1742 memset(buf, 0, zero_bytes);
1743 qemu_iovec_add(qiov, buf, zero_bytes);
1744 mcb->callbacks[i].free_buf = buf;
1745 }
1746
1747 // Add the second request
1748 qemu_iovec_concat(qiov, reqs[i].qiov, reqs[i].qiov->size);
1749
db3519a9 1750 reqs[outidx].nb_sectors = qiov->size >> 9;
40b4f539
KW
1751 reqs[outidx].qiov = qiov;
1752
1753 mcb->callbacks[i].free_qiov = reqs[outidx].qiov;
1754 } else {
1755 outidx++;
1756 reqs[outidx].sector = reqs[i].sector;
1757 reqs[outidx].nb_sectors = reqs[i].nb_sectors;
1758 reqs[outidx].qiov = reqs[i].qiov;
1759 }
1760 }
1761
1762 return outidx + 1;
1763}
1764
1765/*
1766 * Submit multiple AIO write requests at once.
1767 *
1768 * On success, the function returns 0 and all requests in the reqs array have
1769 * been submitted. In error case this function returns -1, and any of the
1770 * requests may or may not be submitted yet. In particular, this means that the
1771 * callback will be called for some of the requests, for others it won't. The
1772 * caller must check the error field of the BlockRequest to wait for the right
1773 * callbacks (if error != 0, no callback will be called).
1774 *
1775 * The implementation may modify the contents of the reqs array, e.g. to merge
1776 * requests. However, the fields opaque and error are left unmodified as they
1777 * are used to signal failure for a single request to the caller.
1778 */
1779int bdrv_aio_multiwrite(BlockDriverState *bs, BlockRequest *reqs, int num_reqs)
1780{
1781 BlockDriverAIOCB *acb;
1782 MultiwriteCB *mcb;
1783 int i;
1784
1785 if (num_reqs == 0) {
1786 return 0;
1787 }
1788
1789 // Create MultiwriteCB structure
1790 mcb = qemu_mallocz(sizeof(*mcb) + num_reqs * sizeof(*mcb->callbacks));
1791 mcb->num_requests = 0;
1792 mcb->num_callbacks = num_reqs;
1793
1794 for (i = 0; i < num_reqs; i++) {
1795 mcb->callbacks[i].cb = reqs[i].cb;
1796 mcb->callbacks[i].opaque = reqs[i].opaque;
1797 }
1798
1799 // Check for mergable requests
1800 num_reqs = multiwrite_merge(bs, reqs, num_reqs, mcb);
1801
191d44fc
KW
1802 /*
1803 * Run the aio requests. As soon as one request can't be submitted
1804 * successfully, fail all requests that are not yet submitted (we must
1805 * return failure for all requests anyway)
1806 *
1807 * num_requests cannot be set to the right value immediately: If
1808 * bdrv_aio_writev fails for some request, num_requests would be too high
1809 * and therefore multiwrite_cb() would never recognize the multiwrite
1810 * request as completed. We also cannot use the loop variable i to set it
1811 * when the first request fails because the callback may already have been
1812 * called for previously submitted requests. Thus, num_requests must be
1813 * incremented for each request that is submitted.
1814 *
1815 * The problem that callbacks may be called early also means that we need
1816 * to take care that num_requests doesn't become 0 before all requests are
1817 * submitted - multiwrite_cb() would consider the multiwrite request
1818 * completed. A dummy request that is "completed" by a manual call to
1819 * multiwrite_cb() takes care of this.
1820 */
1821 mcb->num_requests = 1;
1822
40b4f539 1823 for (i = 0; i < num_reqs; i++) {
191d44fc 1824 mcb->num_requests++;
40b4f539
KW
1825 acb = bdrv_aio_writev(bs, reqs[i].sector, reqs[i].qiov,
1826 reqs[i].nb_sectors, multiwrite_cb, mcb);
1827
1828 if (acb == NULL) {
1829 // We can only fail the whole thing if no request has been
1830 // submitted yet. Otherwise we'll wait for the submitted AIOs to
1831 // complete and report the error in the callback.
191d44fc 1832 if (i == 0) {
40b4f539
KW
1833 goto fail;
1834 } else {
46223172 1835 multiwrite_cb(mcb, -EIO);
40b4f539
KW
1836 break;
1837 }
40b4f539
KW
1838 }
1839 }
1840
191d44fc
KW
1841 /* Complete the dummy request */
1842 multiwrite_cb(mcb, 0);
1843
40b4f539
KW
1844 return 0;
1845
1846fail:
191d44fc
KW
1847 for (i = 0; i < mcb->num_callbacks; i++) {
1848 reqs[i].error = -EIO;
1849 }
1850 qemu_free(mcb);
40b4f539
KW
1851 return -1;
1852}
1853
b2e12bc6
CH
1854BlockDriverAIOCB *bdrv_aio_flush(BlockDriverState *bs,
1855 BlockDriverCompletionFunc *cb, void *opaque)
1856{
1857 BlockDriver *drv = bs->drv;
1858
1859 if (!drv)
1860 return NULL;
1861
1862 /*
1863 * Note that unlike bdrv_flush the driver is reponsible for flushing a
1864 * backing image if it exists.
1865 */
1866 return drv->bdrv_aio_flush(bs, cb, opaque);
1867}
1868
83f64091 1869void bdrv_aio_cancel(BlockDriverAIOCB *acb)
83f64091 1870{
6bbff9a0 1871 acb->pool->cancel(acb);
83f64091
FB
1872}
1873
ce1a14dc 1874
83f64091
FB
1875/**************************************************************/
1876/* async block device emulation */
1877
c16b5a2c
CH
1878typedef struct BlockDriverAIOCBSync {
1879 BlockDriverAIOCB common;
1880 QEMUBH *bh;
1881 int ret;
1882 /* vector translation state */
1883 QEMUIOVector *qiov;
1884 uint8_t *bounce;
1885 int is_write;
1886} BlockDriverAIOCBSync;
1887
1888static void bdrv_aio_cancel_em(BlockDriverAIOCB *blockacb)
1889{
1890 BlockDriverAIOCBSync *acb = (BlockDriverAIOCBSync *)blockacb;
6a7ad299 1891 qemu_bh_delete(acb->bh);
36afc451 1892 acb->bh = NULL;
c16b5a2c
CH
1893 qemu_aio_release(acb);
1894}
1895
1896static AIOPool bdrv_em_aio_pool = {
1897 .aiocb_size = sizeof(BlockDriverAIOCBSync),
1898 .cancel = bdrv_aio_cancel_em,
1899};
1900
ce1a14dc 1901static void bdrv_aio_bh_cb(void *opaque)
83f64091 1902{
ce1a14dc 1903 BlockDriverAIOCBSync *acb = opaque;
f141eafe 1904
f141eafe
AL
1905 if (!acb->is_write)
1906 qemu_iovec_from_buffer(acb->qiov, acb->bounce, acb->qiov->size);
ceb42de8 1907 qemu_vfree(acb->bounce);
ce1a14dc 1908 acb->common.cb(acb->common.opaque, acb->ret);
6a7ad299 1909 qemu_bh_delete(acb->bh);
36afc451 1910 acb->bh = NULL;
ce1a14dc 1911 qemu_aio_release(acb);
83f64091 1912}
beac80cd 1913
f141eafe
AL
1914static BlockDriverAIOCB *bdrv_aio_rw_vector(BlockDriverState *bs,
1915 int64_t sector_num,
1916 QEMUIOVector *qiov,
1917 int nb_sectors,
1918 BlockDriverCompletionFunc *cb,
1919 void *opaque,
1920 int is_write)
1921
83f64091 1922{
ce1a14dc 1923 BlockDriverAIOCBSync *acb;
ce1a14dc 1924
c16b5a2c 1925 acb = qemu_aio_get(&bdrv_em_aio_pool, bs, cb, opaque);
f141eafe
AL
1926 acb->is_write = is_write;
1927 acb->qiov = qiov;
e268ca52 1928 acb->bounce = qemu_blockalign(bs, qiov->size);
f141eafe 1929
ce1a14dc
PB
1930 if (!acb->bh)
1931 acb->bh = qemu_bh_new(bdrv_aio_bh_cb, acb);
f141eafe
AL
1932
1933 if (is_write) {
1934 qemu_iovec_to_buffer(acb->qiov, acb->bounce);
1935 acb->ret = bdrv_write(bs, sector_num, acb->bounce, nb_sectors);
1936 } else {
1937 acb->ret = bdrv_read(bs, sector_num, acb->bounce, nb_sectors);
1938 }
1939
ce1a14dc 1940 qemu_bh_schedule(acb->bh);
f141eafe 1941
ce1a14dc 1942 return &acb->common;
beac80cd
FB
1943}
1944
f141eafe
AL
1945static BlockDriverAIOCB *bdrv_aio_readv_em(BlockDriverState *bs,
1946 int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
ce1a14dc 1947 BlockDriverCompletionFunc *cb, void *opaque)
beac80cd 1948{
f141eafe
AL
1949 return bdrv_aio_rw_vector(bs, sector_num, qiov, nb_sectors, cb, opaque, 0);
1950}
83f64091 1951
f141eafe
AL
1952static BlockDriverAIOCB *bdrv_aio_writev_em(BlockDriverState *bs,
1953 int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
1954 BlockDriverCompletionFunc *cb, void *opaque)
1955{
1956 return bdrv_aio_rw_vector(bs, sector_num, qiov, nb_sectors, cb, opaque, 1);
beac80cd 1957}
beac80cd 1958
b2e12bc6
CH
1959static BlockDriverAIOCB *bdrv_aio_flush_em(BlockDriverState *bs,
1960 BlockDriverCompletionFunc *cb, void *opaque)
1961{
1962 BlockDriverAIOCBSync *acb;
1963
1964 acb = qemu_aio_get(&bdrv_em_aio_pool, bs, cb, opaque);
1965 acb->is_write = 1; /* don't bounce in the completion hadler */
1966 acb->qiov = NULL;
1967 acb->bounce = NULL;
1968 acb->ret = 0;
1969
1970 if (!acb->bh)
1971 acb->bh = qemu_bh_new(bdrv_aio_bh_cb, acb);
1972
1973 bdrv_flush(bs);
1974 qemu_bh_schedule(acb->bh);
1975 return &acb->common;
1976}
1977
83f64091
FB
1978/**************************************************************/
1979/* sync block device emulation */
ea2384d3 1980
83f64091
FB
1981static void bdrv_rw_em_cb(void *opaque, int ret)
1982{
1983 *(int *)opaque = ret;
ea2384d3
FB
1984}
1985
83f64091
FB
1986#define NOT_DONE 0x7fffffff
1987
5fafdf24 1988static int bdrv_read_em(BlockDriverState *bs, int64_t sector_num,
83f64091 1989 uint8_t *buf, int nb_sectors)
7a6cba61 1990{
ce1a14dc
PB
1991 int async_ret;
1992 BlockDriverAIOCB *acb;
f141eafe
AL
1993 struct iovec iov;
1994 QEMUIOVector qiov;
83f64091 1995
65d6b3d8
KW
1996 async_context_push();
1997
83f64091 1998 async_ret = NOT_DONE;
3f4cb3d3 1999 iov.iov_base = (void *)buf;
f141eafe
AL
2000 iov.iov_len = nb_sectors * 512;
2001 qemu_iovec_init_external(&qiov, &iov, 1);
2002 acb = bdrv_aio_readv(bs, sector_num, &qiov, nb_sectors,
2003 bdrv_rw_em_cb, &async_ret);
65d6b3d8
KW
2004 if (acb == NULL) {
2005 async_ret = -1;
2006 goto fail;
2007 }
baf35cb9 2008
83f64091
FB
2009 while (async_ret == NOT_DONE) {
2010 qemu_aio_wait();
2011 }
baf35cb9 2012
65d6b3d8
KW
2013
2014fail:
2015 async_context_pop();
83f64091 2016 return async_ret;
7a6cba61
PB
2017}
2018
83f64091
FB
2019static int bdrv_write_em(BlockDriverState *bs, int64_t sector_num,
2020 const uint8_t *buf, int nb_sectors)
2021{
ce1a14dc
PB
2022 int async_ret;
2023 BlockDriverAIOCB *acb;
f141eafe
AL
2024 struct iovec iov;
2025 QEMUIOVector qiov;
83f64091 2026
65d6b3d8
KW
2027 async_context_push();
2028
83f64091 2029 async_ret = NOT_DONE;
f141eafe
AL
2030 iov.iov_base = (void *)buf;
2031 iov.iov_len = nb_sectors * 512;
2032 qemu_iovec_init_external(&qiov, &iov, 1);
2033 acb = bdrv_aio_writev(bs, sector_num, &qiov, nb_sectors,
2034 bdrv_rw_em_cb, &async_ret);
65d6b3d8
KW
2035 if (acb == NULL) {
2036 async_ret = -1;
2037 goto fail;
2038 }
83f64091
FB
2039 while (async_ret == NOT_DONE) {
2040 qemu_aio_wait();
2041 }
65d6b3d8
KW
2042
2043fail:
2044 async_context_pop();
83f64091
FB
2045 return async_ret;
2046}
ea2384d3
FB
2047
2048void bdrv_init(void)
2049{
5efa9d5a 2050 module_call_init(MODULE_INIT_BLOCK);
ea2384d3 2051}
ce1a14dc 2052
eb852011
MA
2053void bdrv_init_with_whitelist(void)
2054{
2055 use_bdrv_whitelist = 1;
2056 bdrv_init();
2057}
2058
c16b5a2c
CH
2059void *qemu_aio_get(AIOPool *pool, BlockDriverState *bs,
2060 BlockDriverCompletionFunc *cb, void *opaque)
ce1a14dc 2061{
ce1a14dc
PB
2062 BlockDriverAIOCB *acb;
2063
6bbff9a0
AL
2064 if (pool->free_aiocb) {
2065 acb = pool->free_aiocb;
2066 pool->free_aiocb = acb->next;
ce1a14dc 2067 } else {
6bbff9a0
AL
2068 acb = qemu_mallocz(pool->aiocb_size);
2069 acb->pool = pool;
ce1a14dc
PB
2070 }
2071 acb->bs = bs;
2072 acb->cb = cb;
2073 acb->opaque = opaque;
2074 return acb;
2075}
2076
2077void qemu_aio_release(void *p)
2078{
6bbff9a0
AL
2079 BlockDriverAIOCB *acb = (BlockDriverAIOCB *)p;
2080 AIOPool *pool = acb->pool;
2081 acb->next = pool->free_aiocb;
2082 pool->free_aiocb = acb;
ce1a14dc 2083}
19cb3738
FB
2084
2085/**************************************************************/
2086/* removable device support */
2087
2088/**
2089 * Return TRUE if the media is present
2090 */
2091int bdrv_is_inserted(BlockDriverState *bs)
2092{
2093 BlockDriver *drv = bs->drv;
2094 int ret;
2095 if (!drv)
2096 return 0;
2097 if (!drv->bdrv_is_inserted)
2098 return 1;
2099 ret = drv->bdrv_is_inserted(bs);
2100 return ret;
2101}
2102
2103/**
2104 * Return TRUE if the media changed since the last call to this
5fafdf24 2105 * function. It is currently only used for floppy disks
19cb3738
FB
2106 */
2107int bdrv_media_changed(BlockDriverState *bs)
2108{
2109 BlockDriver *drv = bs->drv;
2110 int ret;
2111
2112 if (!drv || !drv->bdrv_media_changed)
2113 ret = -ENOTSUP;
2114 else
2115 ret = drv->bdrv_media_changed(bs);
2116 if (ret == -ENOTSUP)
2117 ret = bs->media_changed;
2118 bs->media_changed = 0;
2119 return ret;
2120}
2121
2122/**
2123 * If eject_flag is TRUE, eject the media. Otherwise, close the tray
2124 */
aea2a33c 2125int bdrv_eject(BlockDriverState *bs, int eject_flag)
19cb3738
FB
2126{
2127 BlockDriver *drv = bs->drv;
2128 int ret;
2129
aea2a33c
MM
2130 if (bs->locked) {
2131 return -EBUSY;
2132 }
2133
19cb3738
FB
2134 if (!drv || !drv->bdrv_eject) {
2135 ret = -ENOTSUP;
2136 } else {
2137 ret = drv->bdrv_eject(bs, eject_flag);
2138 }
2139 if (ret == -ENOTSUP) {
2140 if (eject_flag)
2141 bdrv_close(bs);
aea2a33c 2142 ret = 0;
19cb3738 2143 }
aea2a33c
MM
2144
2145 return ret;
19cb3738
FB
2146}
2147
2148int bdrv_is_locked(BlockDriverState *bs)
2149{
2150 return bs->locked;
2151}
2152
2153/**
2154 * Lock or unlock the media (if it is locked, the user won't be able
2155 * to eject it manually).
2156 */
2157void bdrv_set_locked(BlockDriverState *bs, int locked)
2158{
2159 BlockDriver *drv = bs->drv;
2160
2161 bs->locked = locked;
2162 if (drv && drv->bdrv_set_locked) {
2163 drv->bdrv_set_locked(bs, locked);
2164 }
2165}
985a03b0
TS
2166
2167/* needed for generic scsi interface */
2168
2169int bdrv_ioctl(BlockDriverState *bs, unsigned long int req, void *buf)
2170{
2171 BlockDriver *drv = bs->drv;
2172
2173 if (drv && drv->bdrv_ioctl)
2174 return drv->bdrv_ioctl(bs, req, buf);
2175 return -ENOTSUP;
2176}
7d780669 2177
221f715d
AL
2178BlockDriverAIOCB *bdrv_aio_ioctl(BlockDriverState *bs,
2179 unsigned long int req, void *buf,
2180 BlockDriverCompletionFunc *cb, void *opaque)
7d780669 2181{
221f715d 2182 BlockDriver *drv = bs->drv;
7d780669 2183
221f715d
AL
2184 if (drv && drv->bdrv_aio_ioctl)
2185 return drv->bdrv_aio_ioctl(bs, req, buf, cb, opaque);
2186 return NULL;
7d780669 2187}
e268ca52 2188
7cd1e32a 2189
2190
e268ca52
AL
2191void *qemu_blockalign(BlockDriverState *bs, size_t size)
2192{
2193 return qemu_memalign((bs && bs->buffer_alignment) ? bs->buffer_alignment : 512, size);
2194}
7cd1e32a 2195
2196void bdrv_set_dirty_tracking(BlockDriverState *bs, int enable)
2197{
2198 int64_t bitmap_size;
a55eb92c
JK
2199
2200 if (enable) {
c6d22830
JK
2201 if (!bs->dirty_bitmap) {
2202 bitmap_size = (bdrv_getlength(bs) >> BDRV_SECTOR_BITS) +
2203 BDRV_SECTORS_PER_DIRTY_CHUNK * 8 - 1;
2204 bitmap_size /= BDRV_SECTORS_PER_DIRTY_CHUNK * 8;
a55eb92c 2205
7cd1e32a 2206 bs->dirty_bitmap = qemu_mallocz(bitmap_size);
a55eb92c 2207 }
7cd1e32a 2208 } else {
c6d22830 2209 if (bs->dirty_bitmap) {
7cd1e32a 2210 qemu_free(bs->dirty_bitmap);
c6d22830 2211 bs->dirty_bitmap = NULL;
a55eb92c 2212 }
7cd1e32a 2213 }
2214}
2215
2216int bdrv_get_dirty(BlockDriverState *bs, int64_t sector)
2217{
6ea44308 2218 int64_t chunk = sector / (int64_t)BDRV_SECTORS_PER_DIRTY_CHUNK;
a55eb92c 2219
c6d22830
JK
2220 if (bs->dirty_bitmap &&
2221 (sector << BDRV_SECTOR_BITS) < bdrv_getlength(bs)) {
2222 return bs->dirty_bitmap[chunk / (sizeof(unsigned long) * 8)] &
2223 (1 << (chunk % (sizeof(unsigned long) * 8)));
7cd1e32a 2224 } else {
2225 return 0;
2226 }
2227}
2228
a55eb92c
JK
2229void bdrv_reset_dirty(BlockDriverState *bs, int64_t cur_sector,
2230 int nr_sectors)
7cd1e32a 2231{
2232 set_dirty_bitmap(bs, cur_sector, nr_sectors, 0);
2233}