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block: Add synchronous wrapper for bdrv_co_is_allocated_above
[thirdparty/qemu.git] / block.c
CommitLineData
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"
6d519a5f 26#include "trace.h"
83c9089e 27#include "monitor/monitor.h"
737e150e
PB
28#include "block/block_int.h"
29#include "block/blockjob.h"
1de7afc9 30#include "qemu/module.h"
7b1b5d19 31#include "qapi/qmp/qjson.h"
9c17d615 32#include "sysemu/sysemu.h"
1de7afc9 33#include "qemu/notify.h"
737e150e 34#include "block/coroutine.h"
b2023818 35#include "qmp-commands.h"
1de7afc9 36#include "qemu/timer.h"
fc01f7e7 37
71e72a19 38#ifdef CONFIG_BSD
7674e7bf
FB
39#include <sys/types.h>
40#include <sys/stat.h>
41#include <sys/ioctl.h>
72cf2d4f 42#include <sys/queue.h>
c5e97233 43#ifndef __DragonFly__
7674e7bf
FB
44#include <sys/disk.h>
45#endif
c5e97233 46#endif
7674e7bf 47
49dc768d
AL
48#ifdef _WIN32
49#include <windows.h>
50#endif
51
1c9805a3
SH
52#define NOT_DONE 0x7fffffff /* used while emulated sync operation in progress */
53
470c0504
SH
54typedef enum {
55 BDRV_REQ_COPY_ON_READ = 0x1,
f08f2dda 56 BDRV_REQ_ZERO_WRITE = 0x2,
470c0504
SH
57} BdrvRequestFlags;
58
7d4b4ba5 59static void bdrv_dev_change_media_cb(BlockDriverState *bs, bool load);
f141eafe
AL
60static BlockDriverAIOCB *bdrv_aio_readv_em(BlockDriverState *bs,
61 int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
c87c0672 62 BlockDriverCompletionFunc *cb, void *opaque);
f141eafe
AL
63static BlockDriverAIOCB *bdrv_aio_writev_em(BlockDriverState *bs,
64 int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
ce1a14dc 65 BlockDriverCompletionFunc *cb, void *opaque);
f9f05dc5
KW
66static int coroutine_fn bdrv_co_readv_em(BlockDriverState *bs,
67 int64_t sector_num, int nb_sectors,
68 QEMUIOVector *iov);
69static int coroutine_fn bdrv_co_writev_em(BlockDriverState *bs,
70 int64_t sector_num, int nb_sectors,
71 QEMUIOVector *iov);
c5fbe571 72static int coroutine_fn bdrv_co_do_readv(BlockDriverState *bs,
470c0504
SH
73 int64_t sector_num, int nb_sectors, QEMUIOVector *qiov,
74 BdrvRequestFlags flags);
1c9805a3 75static int coroutine_fn bdrv_co_do_writev(BlockDriverState *bs,
f08f2dda
SH
76 int64_t sector_num, int nb_sectors, QEMUIOVector *qiov,
77 BdrvRequestFlags flags);
b2a61371
SH
78static BlockDriverAIOCB *bdrv_co_aio_rw_vector(BlockDriverState *bs,
79 int64_t sector_num,
80 QEMUIOVector *qiov,
81 int nb_sectors,
82 BlockDriverCompletionFunc *cb,
83 void *opaque,
8c5873d6 84 bool is_write);
b2a61371 85static void coroutine_fn bdrv_co_do_rw(void *opaque);
621f0589
KW
86static int coroutine_fn bdrv_co_do_write_zeroes(BlockDriverState *bs,
87 int64_t sector_num, int nb_sectors);
ec530c81 88
98f90dba
ZYW
89static bool bdrv_exceed_bps_limits(BlockDriverState *bs, int nb_sectors,
90 bool is_write, double elapsed_time, uint64_t *wait);
91static bool bdrv_exceed_iops_limits(BlockDriverState *bs, bool is_write,
92 double elapsed_time, uint64_t *wait);
93static bool bdrv_exceed_io_limits(BlockDriverState *bs, int nb_sectors,
94 bool is_write, int64_t *wait);
95
1b7bdbc1
SH
96static QTAILQ_HEAD(, BlockDriverState) bdrv_states =
97 QTAILQ_HEAD_INITIALIZER(bdrv_states);
7ee930d0 98
8a22f02a
SH
99static QLIST_HEAD(, BlockDriver) bdrv_drivers =
100 QLIST_HEAD_INITIALIZER(bdrv_drivers);
ea2384d3 101
f9092b10
MA
102/* The device to use for VM snapshots */
103static BlockDriverState *bs_snapshots;
104
eb852011
MA
105/* If non-zero, use only whitelisted block drivers */
106static int use_bdrv_whitelist;
107
9e0b22f4
SH
108#ifdef _WIN32
109static int is_windows_drive_prefix(const char *filename)
110{
111 return (((filename[0] >= 'a' && filename[0] <= 'z') ||
112 (filename[0] >= 'A' && filename[0] <= 'Z')) &&
113 filename[1] == ':');
114}
115
116int is_windows_drive(const char *filename)
117{
118 if (is_windows_drive_prefix(filename) &&
119 filename[2] == '\0')
120 return 1;
121 if (strstart(filename, "\\\\.\\", NULL) ||
122 strstart(filename, "//./", NULL))
123 return 1;
124 return 0;
125}
126#endif
127
0563e191 128/* throttling disk I/O limits */
98f90dba
ZYW
129void bdrv_io_limits_disable(BlockDriverState *bs)
130{
131 bs->io_limits_enabled = false;
132
133 while (qemu_co_queue_next(&bs->throttled_reqs));
134
135 if (bs->block_timer) {
136 qemu_del_timer(bs->block_timer);
137 qemu_free_timer(bs->block_timer);
138 bs->block_timer = NULL;
139 }
140
141 bs->slice_start = 0;
142 bs->slice_end = 0;
143 bs->slice_time = 0;
144 memset(&bs->io_base, 0, sizeof(bs->io_base));
145}
146
0563e191
ZYW
147static void bdrv_block_timer(void *opaque)
148{
149 BlockDriverState *bs = opaque;
150
151 qemu_co_queue_next(&bs->throttled_reqs);
152}
153
154void bdrv_io_limits_enable(BlockDriverState *bs)
155{
156 qemu_co_queue_init(&bs->throttled_reqs);
157 bs->block_timer = qemu_new_timer_ns(vm_clock, bdrv_block_timer, bs);
0563e191
ZYW
158 bs->io_limits_enabled = true;
159}
160
161bool bdrv_io_limits_enabled(BlockDriverState *bs)
162{
163 BlockIOLimit *io_limits = &bs->io_limits;
164 return io_limits->bps[BLOCK_IO_LIMIT_READ]
165 || io_limits->bps[BLOCK_IO_LIMIT_WRITE]
166 || io_limits->bps[BLOCK_IO_LIMIT_TOTAL]
167 || io_limits->iops[BLOCK_IO_LIMIT_READ]
168 || io_limits->iops[BLOCK_IO_LIMIT_WRITE]
169 || io_limits->iops[BLOCK_IO_LIMIT_TOTAL];
170}
171
98f90dba
ZYW
172static void bdrv_io_limits_intercept(BlockDriverState *bs,
173 bool is_write, int nb_sectors)
174{
175 int64_t wait_time = -1;
176
177 if (!qemu_co_queue_empty(&bs->throttled_reqs)) {
178 qemu_co_queue_wait(&bs->throttled_reqs);
179 }
180
181 /* In fact, we hope to keep each request's timing, in FIFO mode. The next
182 * throttled requests will not be dequeued until the current request is
183 * allowed to be serviced. So if the current request still exceeds the
184 * limits, it will be inserted to the head. All requests followed it will
185 * be still in throttled_reqs queue.
186 */
187
188 while (bdrv_exceed_io_limits(bs, nb_sectors, is_write, &wait_time)) {
189 qemu_mod_timer(bs->block_timer,
190 wait_time + qemu_get_clock_ns(vm_clock));
191 qemu_co_queue_wait_insert_head(&bs->throttled_reqs);
192 }
193
194 qemu_co_queue_next(&bs->throttled_reqs);
195}
196
9e0b22f4
SH
197/* check if the path starts with "<protocol>:" */
198static int path_has_protocol(const char *path)
199{
947995c0
PB
200 const char *p;
201
9e0b22f4
SH
202#ifdef _WIN32
203 if (is_windows_drive(path) ||
204 is_windows_drive_prefix(path)) {
205 return 0;
206 }
947995c0
PB
207 p = path + strcspn(path, ":/\\");
208#else
209 p = path + strcspn(path, ":/");
9e0b22f4
SH
210#endif
211
947995c0 212 return *p == ':';
9e0b22f4
SH
213}
214
83f64091 215int path_is_absolute(const char *path)
3b0d4f61 216{
21664424
FB
217#ifdef _WIN32
218 /* specific case for names like: "\\.\d:" */
f53f4da9 219 if (is_windows_drive(path) || is_windows_drive_prefix(path)) {
21664424 220 return 1;
f53f4da9
PB
221 }
222 return (*path == '/' || *path == '\\');
3b9f94e1 223#else
f53f4da9 224 return (*path == '/');
3b9f94e1 225#endif
3b0d4f61
FB
226}
227
83f64091
FB
228/* if filename is absolute, just copy it to dest. Otherwise, build a
229 path to it by considering it is relative to base_path. URL are
230 supported. */
231void path_combine(char *dest, int dest_size,
232 const char *base_path,
233 const char *filename)
3b0d4f61 234{
83f64091
FB
235 const char *p, *p1;
236 int len;
237
238 if (dest_size <= 0)
239 return;
240 if (path_is_absolute(filename)) {
241 pstrcpy(dest, dest_size, filename);
242 } else {
243 p = strchr(base_path, ':');
244 if (p)
245 p++;
246 else
247 p = base_path;
3b9f94e1
FB
248 p1 = strrchr(base_path, '/');
249#ifdef _WIN32
250 {
251 const char *p2;
252 p2 = strrchr(base_path, '\\');
253 if (!p1 || p2 > p1)
254 p1 = p2;
255 }
256#endif
83f64091
FB
257 if (p1)
258 p1++;
259 else
260 p1 = base_path;
261 if (p1 > p)
262 p = p1;
263 len = p - base_path;
264 if (len > dest_size - 1)
265 len = dest_size - 1;
266 memcpy(dest, base_path, len);
267 dest[len] = '\0';
268 pstrcat(dest, dest_size, filename);
3b0d4f61 269 }
3b0d4f61
FB
270}
271
dc5a1371
PB
272void bdrv_get_full_backing_filename(BlockDriverState *bs, char *dest, size_t sz)
273{
274 if (bs->backing_file[0] == '\0' || path_has_protocol(bs->backing_file)) {
275 pstrcpy(dest, sz, bs->backing_file);
276 } else {
277 path_combine(dest, sz, bs->filename, bs->backing_file);
278 }
279}
280
5efa9d5a 281void bdrv_register(BlockDriver *bdrv)
ea2384d3 282{
8c5873d6
SH
283 /* Block drivers without coroutine functions need emulation */
284 if (!bdrv->bdrv_co_readv) {
f9f05dc5
KW
285 bdrv->bdrv_co_readv = bdrv_co_readv_em;
286 bdrv->bdrv_co_writev = bdrv_co_writev_em;
287
f8c35c1d
SH
288 /* bdrv_co_readv_em()/brdv_co_writev_em() work in terms of aio, so if
289 * the block driver lacks aio we need to emulate that too.
290 */
f9f05dc5
KW
291 if (!bdrv->bdrv_aio_readv) {
292 /* add AIO emulation layer */
293 bdrv->bdrv_aio_readv = bdrv_aio_readv_em;
294 bdrv->bdrv_aio_writev = bdrv_aio_writev_em;
f9f05dc5 295 }
83f64091 296 }
b2e12bc6 297
8a22f02a 298 QLIST_INSERT_HEAD(&bdrv_drivers, bdrv, list);
ea2384d3 299}
b338082b
FB
300
301/* create a new block device (by default it is empty) */
302BlockDriverState *bdrv_new(const char *device_name)
303{
1b7bdbc1 304 BlockDriverState *bs;
b338082b 305
7267c094 306 bs = g_malloc0(sizeof(BlockDriverState));
b338082b 307 pstrcpy(bs->device_name, sizeof(bs->device_name), device_name);
ea2384d3 308 if (device_name[0] != '\0') {
1b7bdbc1 309 QTAILQ_INSERT_TAIL(&bdrv_states, bs, list);
ea2384d3 310 }
28a7282a 311 bdrv_iostatus_disable(bs);
d7d512f6
PB
312 notifier_list_init(&bs->close_notifiers);
313
b338082b
FB
314 return bs;
315}
316
d7d512f6
PB
317void bdrv_add_close_notifier(BlockDriverState *bs, Notifier *notify)
318{
319 notifier_list_add(&bs->close_notifiers, notify);
320}
321
ea2384d3
FB
322BlockDriver *bdrv_find_format(const char *format_name)
323{
324 BlockDriver *drv1;
8a22f02a
SH
325 QLIST_FOREACH(drv1, &bdrv_drivers, list) {
326 if (!strcmp(drv1->format_name, format_name)) {
ea2384d3 327 return drv1;
8a22f02a 328 }
ea2384d3
FB
329 }
330 return NULL;
331}
332
eb852011
MA
333static int bdrv_is_whitelisted(BlockDriver *drv)
334{
335 static const char *whitelist[] = {
336 CONFIG_BDRV_WHITELIST
337 };
338 const char **p;
339
340 if (!whitelist[0])
341 return 1; /* no whitelist, anything goes */
342
343 for (p = whitelist; *p; p++) {
344 if (!strcmp(drv->format_name, *p)) {
345 return 1;
346 }
347 }
348 return 0;
349}
350
351BlockDriver *bdrv_find_whitelisted_format(const char *format_name)
352{
353 BlockDriver *drv = bdrv_find_format(format_name);
354 return drv && bdrv_is_whitelisted(drv) ? drv : NULL;
355}
356
5b7e1542
ZYW
357typedef struct CreateCo {
358 BlockDriver *drv;
359 char *filename;
360 QEMUOptionParameter *options;
361 int ret;
362} CreateCo;
363
364static void coroutine_fn bdrv_create_co_entry(void *opaque)
365{
366 CreateCo *cco = opaque;
367 assert(cco->drv);
368
369 cco->ret = cco->drv->bdrv_create(cco->filename, cco->options);
370}
371
0e7e1989
KW
372int bdrv_create(BlockDriver *drv, const char* filename,
373 QEMUOptionParameter *options)
ea2384d3 374{
5b7e1542
ZYW
375 int ret;
376
377 Coroutine *co;
378 CreateCo cco = {
379 .drv = drv,
380 .filename = g_strdup(filename),
381 .options = options,
382 .ret = NOT_DONE,
383 };
384
385 if (!drv->bdrv_create) {
80168bff
LC
386 ret = -ENOTSUP;
387 goto out;
5b7e1542
ZYW
388 }
389
390 if (qemu_in_coroutine()) {
391 /* Fast-path if already in coroutine context */
392 bdrv_create_co_entry(&cco);
393 } else {
394 co = qemu_coroutine_create(bdrv_create_co_entry);
395 qemu_coroutine_enter(co, &cco);
396 while (cco.ret == NOT_DONE) {
397 qemu_aio_wait();
398 }
399 }
400
401 ret = cco.ret;
0e7e1989 402
80168bff
LC
403out:
404 g_free(cco.filename);
5b7e1542 405 return ret;
ea2384d3
FB
406}
407
84a12e66
CH
408int bdrv_create_file(const char* filename, QEMUOptionParameter *options)
409{
410 BlockDriver *drv;
411
b50cbabc 412 drv = bdrv_find_protocol(filename);
84a12e66 413 if (drv == NULL) {
16905d71 414 return -ENOENT;
84a12e66
CH
415 }
416
417 return bdrv_create(drv, filename, options);
418}
419
eba25057
JM
420/*
421 * Create a uniquely-named empty temporary file.
422 * Return 0 upon success, otherwise a negative errno value.
423 */
424int get_tmp_filename(char *filename, int size)
d5249393 425{
eba25057 426#ifdef _WIN32
3b9f94e1 427 char temp_dir[MAX_PATH];
eba25057
JM
428 /* GetTempFileName requires that its output buffer (4th param)
429 have length MAX_PATH or greater. */
430 assert(size >= MAX_PATH);
431 return (GetTempPath(MAX_PATH, temp_dir)
432 && GetTempFileName(temp_dir, "qem", 0, filename)
433 ? 0 : -GetLastError());
d5249393 434#else
67b915a5 435 int fd;
7ccfb2eb 436 const char *tmpdir;
0badc1ee
AJ
437 tmpdir = getenv("TMPDIR");
438 if (!tmpdir)
439 tmpdir = "/tmp";
eba25057
JM
440 if (snprintf(filename, size, "%s/vl.XXXXXX", tmpdir) >= size) {
441 return -EOVERFLOW;
442 }
ea2384d3 443 fd = mkstemp(filename);
fe235a06
DH
444 if (fd < 0) {
445 return -errno;
446 }
447 if (close(fd) != 0) {
448 unlink(filename);
eba25057
JM
449 return -errno;
450 }
451 return 0;
d5249393 452#endif
eba25057 453}
fc01f7e7 454
84a12e66
CH
455/*
456 * Detect host devices. By convention, /dev/cdrom[N] is always
457 * recognized as a host CDROM.
458 */
459static BlockDriver *find_hdev_driver(const char *filename)
460{
461 int score_max = 0, score;
462 BlockDriver *drv = NULL, *d;
463
464 QLIST_FOREACH(d, &bdrv_drivers, list) {
465 if (d->bdrv_probe_device) {
466 score = d->bdrv_probe_device(filename);
467 if (score > score_max) {
468 score_max = score;
469 drv = d;
470 }
471 }
472 }
473
474 return drv;
475}
476
b50cbabc 477BlockDriver *bdrv_find_protocol(const char *filename)
83f64091
FB
478{
479 BlockDriver *drv1;
480 char protocol[128];
1cec71e3 481 int len;
83f64091 482 const char *p;
19cb3738 483
66f82cee
KW
484 /* TODO Drivers without bdrv_file_open must be specified explicitly */
485
39508e7a
CH
486 /*
487 * XXX(hch): we really should not let host device detection
488 * override an explicit protocol specification, but moving this
489 * later breaks access to device names with colons in them.
490 * Thanks to the brain-dead persistent naming schemes on udev-
491 * based Linux systems those actually are quite common.
492 */
493 drv1 = find_hdev_driver(filename);
494 if (drv1) {
495 return drv1;
496 }
497
9e0b22f4 498 if (!path_has_protocol(filename)) {
39508e7a 499 return bdrv_find_format("file");
84a12e66 500 }
9e0b22f4
SH
501 p = strchr(filename, ':');
502 assert(p != NULL);
1cec71e3
AL
503 len = p - filename;
504 if (len > sizeof(protocol) - 1)
505 len = sizeof(protocol) - 1;
506 memcpy(protocol, filename, len);
507 protocol[len] = '\0';
8a22f02a 508 QLIST_FOREACH(drv1, &bdrv_drivers, list) {
5fafdf24 509 if (drv1->protocol_name &&
8a22f02a 510 !strcmp(drv1->protocol_name, protocol)) {
83f64091 511 return drv1;
8a22f02a 512 }
83f64091
FB
513 }
514 return NULL;
515}
516
f500a6d3
KW
517static int find_image_format(BlockDriverState *bs, const char *filename,
518 BlockDriver **pdrv)
f3a5d3f8 519{
f500a6d3 520 int score, score_max;
f3a5d3f8
CH
521 BlockDriver *drv1, *drv;
522 uint8_t buf[2048];
f500a6d3 523 int ret = 0;
f8ea0b00 524
08a00559 525 /* Return the raw BlockDriver * to scsi-generic devices or empty drives */
8e895599 526 if (bs->sg || !bdrv_is_inserted(bs) || bdrv_getlength(bs) == 0) {
c98ac35d
SW
527 drv = bdrv_find_format("raw");
528 if (!drv) {
529 ret = -ENOENT;
530 }
531 *pdrv = drv;
532 return ret;
1a396859 533 }
f8ea0b00 534
83f64091 535 ret = bdrv_pread(bs, 0, buf, sizeof(buf));
83f64091 536 if (ret < 0) {
c98ac35d
SW
537 *pdrv = NULL;
538 return ret;
83f64091
FB
539 }
540
ea2384d3 541 score_max = 0;
84a12e66 542 drv = NULL;
8a22f02a 543 QLIST_FOREACH(drv1, &bdrv_drivers, list) {
83f64091
FB
544 if (drv1->bdrv_probe) {
545 score = drv1->bdrv_probe(buf, ret, filename);
546 if (score > score_max) {
547 score_max = score;
548 drv = drv1;
549 }
0849bf08 550 }
fc01f7e7 551 }
c98ac35d
SW
552 if (!drv) {
553 ret = -ENOENT;
554 }
555 *pdrv = drv;
556 return ret;
ea2384d3
FB
557}
558
51762288
SH
559/**
560 * Set the current 'total_sectors' value
561 */
562static int refresh_total_sectors(BlockDriverState *bs, int64_t hint)
563{
564 BlockDriver *drv = bs->drv;
565
396759ad
NB
566 /* Do not attempt drv->bdrv_getlength() on scsi-generic devices */
567 if (bs->sg)
568 return 0;
569
51762288
SH
570 /* query actual device if possible, otherwise just trust the hint */
571 if (drv->bdrv_getlength) {
572 int64_t length = drv->bdrv_getlength(bs);
573 if (length < 0) {
574 return length;
575 }
576 hint = length >> BDRV_SECTOR_BITS;
577 }
578
579 bs->total_sectors = hint;
580 return 0;
581}
582
c3993cdc
SH
583/**
584 * Set open flags for a given cache mode
585 *
586 * Return 0 on success, -1 if the cache mode was invalid.
587 */
588int bdrv_parse_cache_flags(const char *mode, int *flags)
589{
590 *flags &= ~BDRV_O_CACHE_MASK;
591
592 if (!strcmp(mode, "off") || !strcmp(mode, "none")) {
593 *flags |= BDRV_O_NOCACHE | BDRV_O_CACHE_WB;
92196b2f
SH
594 } else if (!strcmp(mode, "directsync")) {
595 *flags |= BDRV_O_NOCACHE;
c3993cdc
SH
596 } else if (!strcmp(mode, "writeback")) {
597 *flags |= BDRV_O_CACHE_WB;
598 } else if (!strcmp(mode, "unsafe")) {
599 *flags |= BDRV_O_CACHE_WB;
600 *flags |= BDRV_O_NO_FLUSH;
601 } else if (!strcmp(mode, "writethrough")) {
602 /* this is the default */
603 } else {
604 return -1;
605 }
606
607 return 0;
608}
609
53fec9d3
SH
610/**
611 * The copy-on-read flag is actually a reference count so multiple users may
612 * use the feature without worrying about clobbering its previous state.
613 * Copy-on-read stays enabled until all users have called to disable it.
614 */
615void bdrv_enable_copy_on_read(BlockDriverState *bs)
616{
617 bs->copy_on_read++;
618}
619
620void bdrv_disable_copy_on_read(BlockDriverState *bs)
621{
622 assert(bs->copy_on_read > 0);
623 bs->copy_on_read--;
624}
625
7b272452
KW
626static int bdrv_open_flags(BlockDriverState *bs, int flags)
627{
628 int open_flags = flags | BDRV_O_CACHE_WB;
629
630 /*
631 * Clear flags that are internal to the block layer before opening the
632 * image.
633 */
634 open_flags &= ~(BDRV_O_SNAPSHOT | BDRV_O_NO_BACKING);
635
636 /*
637 * Snapshots should be writable.
638 */
639 if (bs->is_temporary) {
640 open_flags |= BDRV_O_RDWR;
641 }
642
643 return open_flags;
644}
645
57915332
KW
646/*
647 * Common part for opening disk images and files
648 */
f500a6d3
KW
649static int bdrv_open_common(BlockDriverState *bs, BlockDriverState *file,
650 const char *filename,
57915332
KW
651 int flags, BlockDriver *drv)
652{
653 int ret, open_flags;
654
655 assert(drv != NULL);
6405875c 656 assert(bs->file == NULL);
57915332 657
28dcee10
SH
658 trace_bdrv_open_common(bs, filename, flags, drv->format_name);
659
57915332 660 bs->open_flags = flags;
57915332
KW
661 bs->buffer_alignment = 512;
662
53fec9d3
SH
663 assert(bs->copy_on_read == 0); /* bdrv_new() and bdrv_close() make it so */
664 if ((flags & BDRV_O_RDWR) && (flags & BDRV_O_COPY_ON_READ)) {
665 bdrv_enable_copy_on_read(bs);
666 }
667
57915332
KW
668 pstrcpy(bs->filename, sizeof(bs->filename), filename);
669
670 if (use_bdrv_whitelist && !bdrv_is_whitelisted(drv)) {
671 return -ENOTSUP;
672 }
673
674 bs->drv = drv;
7267c094 675 bs->opaque = g_malloc0(drv->instance_size);
57915332 676
03f541bd 677 bs->enable_write_cache = !!(flags & BDRV_O_CACHE_WB);
7b272452 678 open_flags = bdrv_open_flags(bs, flags);
57915332 679
be028adc 680 bs->read_only = !(open_flags & BDRV_O_RDWR);
e7c63796 681
66f82cee
KW
682 /* Open the image, either directly or using a protocol */
683 if (drv->bdrv_file_open) {
f500a6d3
KW
684 if (file != NULL) {
685 bdrv_swap(file, bs);
686 ret = 0;
687 } else {
688 ret = drv->bdrv_file_open(bs, filename, open_flags);
66f82cee 689 }
f500a6d3
KW
690 } else {
691 assert(file != NULL);
692 bs->file = file;
693 ret = drv->bdrv_open(bs, open_flags);
66f82cee
KW
694 }
695
57915332
KW
696 if (ret < 0) {
697 goto free_and_fail;
698 }
699
51762288
SH
700 ret = refresh_total_sectors(bs, bs->total_sectors);
701 if (ret < 0) {
702 goto free_and_fail;
57915332 703 }
51762288 704
57915332
KW
705#ifndef _WIN32
706 if (bs->is_temporary) {
707 unlink(filename);
708 }
709#endif
710 return 0;
711
712free_and_fail:
f500a6d3 713 bs->file = NULL;
7267c094 714 g_free(bs->opaque);
57915332
KW
715 bs->opaque = NULL;
716 bs->drv = NULL;
717 return ret;
718}
719
b6ce07aa
KW
720/*
721 * Opens a file using a protocol (file, host_device, nbd, ...)
722 */
83f64091 723int bdrv_file_open(BlockDriverState **pbs, const char *filename, int flags)
ea2384d3 724{
83f64091 725 BlockDriverState *bs;
6db95603 726 BlockDriver *drv;
83f64091
FB
727 int ret;
728
b50cbabc 729 drv = bdrv_find_protocol(filename);
6db95603
CH
730 if (!drv) {
731 return -ENOENT;
732 }
733
83f64091 734 bs = bdrv_new("");
f500a6d3 735 ret = bdrv_open_common(bs, NULL, filename, flags, drv);
83f64091
FB
736 if (ret < 0) {
737 bdrv_delete(bs);
738 return ret;
3b0d4f61 739 }
71d0770c 740 bs->growable = 1;
83f64091
FB
741 *pbs = bs;
742 return 0;
743}
744
9156df12
PB
745int bdrv_open_backing_file(BlockDriverState *bs)
746{
747 char backing_filename[PATH_MAX];
748 int back_flags, ret;
749 BlockDriver *back_drv = NULL;
750
751 if (bs->backing_hd != NULL) {
752 return 0;
753 }
754
755 bs->open_flags &= ~BDRV_O_NO_BACKING;
756 if (bs->backing_file[0] == '\0') {
757 return 0;
758 }
759
760 bs->backing_hd = bdrv_new("");
761 bdrv_get_full_backing_filename(bs, backing_filename,
762 sizeof(backing_filename));
763
764 if (bs->backing_format[0] != '\0') {
765 back_drv = bdrv_find_format(bs->backing_format);
766 }
767
768 /* backing files always opened read-only */
769 back_flags = bs->open_flags & ~(BDRV_O_RDWR | BDRV_O_SNAPSHOT);
770
771 ret = bdrv_open(bs->backing_hd, backing_filename, back_flags, back_drv);
772 if (ret < 0) {
773 bdrv_delete(bs->backing_hd);
774 bs->backing_hd = NULL;
775 bs->open_flags |= BDRV_O_NO_BACKING;
776 return ret;
777 }
778 return 0;
779}
780
b6ce07aa
KW
781/*
782 * Opens a disk image (raw, qcow2, vmdk, ...)
783 */
d6e9098e
KW
784int bdrv_open(BlockDriverState *bs, const char *filename, int flags,
785 BlockDriver *drv)
ea2384d3 786{
b6ce07aa 787 int ret;
89c9bc3d
SW
788 /* TODO: extra byte is a hack to ensure MAX_PATH space on Windows. */
789 char tmp_filename[PATH_MAX + 1];
f500a6d3 790 BlockDriverState *file = NULL;
712e7874 791
83f64091 792 if (flags & BDRV_O_SNAPSHOT) {
ea2384d3
FB
793 BlockDriverState *bs1;
794 int64_t total_size;
7c96d46e 795 int is_protocol = 0;
91a073a9
KW
796 BlockDriver *bdrv_qcow2;
797 QEMUOptionParameter *options;
b6ce07aa 798 char backing_filename[PATH_MAX];
3b46e624 799
ea2384d3
FB
800 /* if snapshot, we create a temporary backing file and open it
801 instead of opening 'filename' directly */
33e3963e 802
ea2384d3
FB
803 /* if there is a backing file, use it */
804 bs1 = bdrv_new("");
d6e9098e 805 ret = bdrv_open(bs1, filename, 0, drv);
51d7c00c 806 if (ret < 0) {
ea2384d3 807 bdrv_delete(bs1);
51d7c00c 808 return ret;
ea2384d3 809 }
3e82990b 810 total_size = bdrv_getlength(bs1) & BDRV_SECTOR_MASK;
7c96d46e
AL
811
812 if (bs1->drv && bs1->drv->protocol_name)
813 is_protocol = 1;
814
ea2384d3 815 bdrv_delete(bs1);
3b46e624 816
eba25057
JM
817 ret = get_tmp_filename(tmp_filename, sizeof(tmp_filename));
818 if (ret < 0) {
819 return ret;
820 }
7c96d46e
AL
821
822 /* Real path is meaningless for protocols */
823 if (is_protocol)
824 snprintf(backing_filename, sizeof(backing_filename),
825 "%s", filename);
114cdfa9
KS
826 else if (!realpath(filename, backing_filename))
827 return -errno;
7c96d46e 828
91a073a9
KW
829 bdrv_qcow2 = bdrv_find_format("qcow2");
830 options = parse_option_parameters("", bdrv_qcow2->create_options, NULL);
831
3e82990b 832 set_option_parameter_int(options, BLOCK_OPT_SIZE, total_size);
91a073a9
KW
833 set_option_parameter(options, BLOCK_OPT_BACKING_FILE, backing_filename);
834 if (drv) {
835 set_option_parameter(options, BLOCK_OPT_BACKING_FMT,
836 drv->format_name);
837 }
838
839 ret = bdrv_create(bdrv_qcow2, tmp_filename, options);
d748768c 840 free_option_parameters(options);
51d7c00c
AL
841 if (ret < 0) {
842 return ret;
ea2384d3 843 }
91a073a9 844
ea2384d3 845 filename = tmp_filename;
91a073a9 846 drv = bdrv_qcow2;
ea2384d3
FB
847 bs->is_temporary = 1;
848 }
712e7874 849
f500a6d3
KW
850 /* Open image file without format layer */
851 if (flags & BDRV_O_RDWR) {
852 flags |= BDRV_O_ALLOW_RDWR;
853 }
854
855 ret = bdrv_file_open(&file, filename, bdrv_open_flags(bs, flags));
856 if (ret < 0) {
857 return ret;
858 }
859
b6ce07aa 860 /* Find the right image format driver */
6db95603 861 if (!drv) {
f500a6d3 862 ret = find_image_format(file, filename, &drv);
51d7c00c 863 }
6987307c 864
51d7c00c 865 if (!drv) {
51d7c00c 866 goto unlink_and_fail;
ea2384d3 867 }
b6ce07aa
KW
868
869 /* Open the image */
f500a6d3 870 ret = bdrv_open_common(bs, file, filename, flags, drv);
b6ce07aa 871 if (ret < 0) {
6987307c
CH
872 goto unlink_and_fail;
873 }
874
f500a6d3
KW
875 if (bs->file != file) {
876 bdrv_delete(file);
877 file = NULL;
878 }
879
b6ce07aa 880 /* If there is a backing file, use it */
9156df12
PB
881 if ((flags & BDRV_O_NO_BACKING) == 0) {
882 ret = bdrv_open_backing_file(bs);
b6ce07aa
KW
883 if (ret < 0) {
884 bdrv_close(bs);
885 return ret;
886 }
b6ce07aa
KW
887 }
888
889 if (!bdrv_key_required(bs)) {
7d4b4ba5 890 bdrv_dev_change_media_cb(bs, true);
b6ce07aa
KW
891 }
892
98f90dba
ZYW
893 /* throttling disk I/O limits */
894 if (bs->io_limits_enabled) {
895 bdrv_io_limits_enable(bs);
896 }
897
b6ce07aa
KW
898 return 0;
899
900unlink_and_fail:
f500a6d3
KW
901 if (file != NULL) {
902 bdrv_delete(file);
903 }
b6ce07aa
KW
904 if (bs->is_temporary) {
905 unlink(filename);
906 }
907 return ret;
908}
909
e971aa12
JC
910typedef struct BlockReopenQueueEntry {
911 bool prepared;
912 BDRVReopenState state;
913 QSIMPLEQ_ENTRY(BlockReopenQueueEntry) entry;
914} BlockReopenQueueEntry;
915
916/*
917 * Adds a BlockDriverState to a simple queue for an atomic, transactional
918 * reopen of multiple devices.
919 *
920 * bs_queue can either be an existing BlockReopenQueue that has had QSIMPLE_INIT
921 * already performed, or alternatively may be NULL a new BlockReopenQueue will
922 * be created and initialized. This newly created BlockReopenQueue should be
923 * passed back in for subsequent calls that are intended to be of the same
924 * atomic 'set'.
925 *
926 * bs is the BlockDriverState to add to the reopen queue.
927 *
928 * flags contains the open flags for the associated bs
929 *
930 * returns a pointer to bs_queue, which is either the newly allocated
931 * bs_queue, or the existing bs_queue being used.
932 *
933 */
934BlockReopenQueue *bdrv_reopen_queue(BlockReopenQueue *bs_queue,
935 BlockDriverState *bs, int flags)
936{
937 assert(bs != NULL);
938
939 BlockReopenQueueEntry *bs_entry;
940 if (bs_queue == NULL) {
941 bs_queue = g_new0(BlockReopenQueue, 1);
942 QSIMPLEQ_INIT(bs_queue);
943 }
944
945 if (bs->file) {
946 bdrv_reopen_queue(bs_queue, bs->file, flags);
947 }
948
949 bs_entry = g_new0(BlockReopenQueueEntry, 1);
950 QSIMPLEQ_INSERT_TAIL(bs_queue, bs_entry, entry);
951
952 bs_entry->state.bs = bs;
953 bs_entry->state.flags = flags;
954
955 return bs_queue;
956}
957
958/*
959 * Reopen multiple BlockDriverStates atomically & transactionally.
960 *
961 * The queue passed in (bs_queue) must have been built up previous
962 * via bdrv_reopen_queue().
963 *
964 * Reopens all BDS specified in the queue, with the appropriate
965 * flags. All devices are prepared for reopen, and failure of any
966 * device will cause all device changes to be abandonded, and intermediate
967 * data cleaned up.
968 *
969 * If all devices prepare successfully, then the changes are committed
970 * to all devices.
971 *
972 */
973int bdrv_reopen_multiple(BlockReopenQueue *bs_queue, Error **errp)
974{
975 int ret = -1;
976 BlockReopenQueueEntry *bs_entry, *next;
977 Error *local_err = NULL;
978
979 assert(bs_queue != NULL);
980
981 bdrv_drain_all();
982
983 QSIMPLEQ_FOREACH(bs_entry, bs_queue, entry) {
984 if (bdrv_reopen_prepare(&bs_entry->state, bs_queue, &local_err)) {
985 error_propagate(errp, local_err);
986 goto cleanup;
987 }
988 bs_entry->prepared = true;
989 }
990
991 /* If we reach this point, we have success and just need to apply the
992 * changes
993 */
994 QSIMPLEQ_FOREACH(bs_entry, bs_queue, entry) {
995 bdrv_reopen_commit(&bs_entry->state);
996 }
997
998 ret = 0;
999
1000cleanup:
1001 QSIMPLEQ_FOREACH_SAFE(bs_entry, bs_queue, entry, next) {
1002 if (ret && bs_entry->prepared) {
1003 bdrv_reopen_abort(&bs_entry->state);
1004 }
1005 g_free(bs_entry);
1006 }
1007 g_free(bs_queue);
1008 return ret;
1009}
1010
1011
1012/* Reopen a single BlockDriverState with the specified flags. */
1013int bdrv_reopen(BlockDriverState *bs, int bdrv_flags, Error **errp)
1014{
1015 int ret = -1;
1016 Error *local_err = NULL;
1017 BlockReopenQueue *queue = bdrv_reopen_queue(NULL, bs, bdrv_flags);
1018
1019 ret = bdrv_reopen_multiple(queue, &local_err);
1020 if (local_err != NULL) {
1021 error_propagate(errp, local_err);
1022 }
1023 return ret;
1024}
1025
1026
1027/*
1028 * Prepares a BlockDriverState for reopen. All changes are staged in the
1029 * 'opaque' field of the BDRVReopenState, which is used and allocated by
1030 * the block driver layer .bdrv_reopen_prepare()
1031 *
1032 * bs is the BlockDriverState to reopen
1033 * flags are the new open flags
1034 * queue is the reopen queue
1035 *
1036 * Returns 0 on success, non-zero on error. On error errp will be set
1037 * as well.
1038 *
1039 * On failure, bdrv_reopen_abort() will be called to clean up any data.
1040 * It is the responsibility of the caller to then call the abort() or
1041 * commit() for any other BDS that have been left in a prepare() state
1042 *
1043 */
1044int bdrv_reopen_prepare(BDRVReopenState *reopen_state, BlockReopenQueue *queue,
1045 Error **errp)
1046{
1047 int ret = -1;
1048 Error *local_err = NULL;
1049 BlockDriver *drv;
1050
1051 assert(reopen_state != NULL);
1052 assert(reopen_state->bs->drv != NULL);
1053 drv = reopen_state->bs->drv;
1054
1055 /* if we are to stay read-only, do not allow permission change
1056 * to r/w */
1057 if (!(reopen_state->bs->open_flags & BDRV_O_ALLOW_RDWR) &&
1058 reopen_state->flags & BDRV_O_RDWR) {
1059 error_set(errp, QERR_DEVICE_IS_READ_ONLY,
1060 reopen_state->bs->device_name);
1061 goto error;
1062 }
1063
1064
1065 ret = bdrv_flush(reopen_state->bs);
1066 if (ret) {
1067 error_set(errp, ERROR_CLASS_GENERIC_ERROR, "Error (%s) flushing drive",
1068 strerror(-ret));
1069 goto error;
1070 }
1071
1072 if (drv->bdrv_reopen_prepare) {
1073 ret = drv->bdrv_reopen_prepare(reopen_state, queue, &local_err);
1074 if (ret) {
1075 if (local_err != NULL) {
1076 error_propagate(errp, local_err);
1077 } else {
1078 error_set(errp, QERR_OPEN_FILE_FAILED,
1079 reopen_state->bs->filename);
1080 }
1081 goto error;
1082 }
1083 } else {
1084 /* It is currently mandatory to have a bdrv_reopen_prepare()
1085 * handler for each supported drv. */
1086 error_set(errp, QERR_BLOCK_FORMAT_FEATURE_NOT_SUPPORTED,
1087 drv->format_name, reopen_state->bs->device_name,
1088 "reopening of file");
1089 ret = -1;
1090 goto error;
1091 }
1092
1093 ret = 0;
1094
1095error:
1096 return ret;
1097}
1098
1099/*
1100 * Takes the staged changes for the reopen from bdrv_reopen_prepare(), and
1101 * makes them final by swapping the staging BlockDriverState contents into
1102 * the active BlockDriverState contents.
1103 */
1104void bdrv_reopen_commit(BDRVReopenState *reopen_state)
1105{
1106 BlockDriver *drv;
1107
1108 assert(reopen_state != NULL);
1109 drv = reopen_state->bs->drv;
1110 assert(drv != NULL);
1111
1112 /* If there are any driver level actions to take */
1113 if (drv->bdrv_reopen_commit) {
1114 drv->bdrv_reopen_commit(reopen_state);
1115 }
1116
1117 /* set BDS specific flags now */
1118 reopen_state->bs->open_flags = reopen_state->flags;
1119 reopen_state->bs->enable_write_cache = !!(reopen_state->flags &
1120 BDRV_O_CACHE_WB);
1121 reopen_state->bs->read_only = !(reopen_state->flags & BDRV_O_RDWR);
1122}
1123
1124/*
1125 * Abort the reopen, and delete and free the staged changes in
1126 * reopen_state
1127 */
1128void bdrv_reopen_abort(BDRVReopenState *reopen_state)
1129{
1130 BlockDriver *drv;
1131
1132 assert(reopen_state != NULL);
1133 drv = reopen_state->bs->drv;
1134 assert(drv != NULL);
1135
1136 if (drv->bdrv_reopen_abort) {
1137 drv->bdrv_reopen_abort(reopen_state);
1138 }
1139}
1140
1141
fc01f7e7
FB
1142void bdrv_close(BlockDriverState *bs)
1143{
80ccf93b 1144 bdrv_flush(bs);
3cbc002c
PB
1145 if (bs->job) {
1146 block_job_cancel_sync(bs->job);
1147 }
1148 bdrv_drain_all();
d7d512f6 1149 notifier_list_notify(&bs->close_notifiers, bs);
7094f12f 1150
3cbc002c 1151 if (bs->drv) {
f9092b10
MA
1152 if (bs == bs_snapshots) {
1153 bs_snapshots = NULL;
1154 }
557df6ac 1155 if (bs->backing_hd) {
ea2384d3 1156 bdrv_delete(bs->backing_hd);
557df6ac
SH
1157 bs->backing_hd = NULL;
1158 }
ea2384d3 1159 bs->drv->bdrv_close(bs);
7267c094 1160 g_free(bs->opaque);
ea2384d3
FB
1161#ifdef _WIN32
1162 if (bs->is_temporary) {
1163 unlink(bs->filename);
1164 }
67b915a5 1165#endif
ea2384d3
FB
1166 bs->opaque = NULL;
1167 bs->drv = NULL;
53fec9d3 1168 bs->copy_on_read = 0;
a275fa42
PB
1169 bs->backing_file[0] = '\0';
1170 bs->backing_format[0] = '\0';
6405875c
PB
1171 bs->total_sectors = 0;
1172 bs->encrypted = 0;
1173 bs->valid_key = 0;
1174 bs->sg = 0;
1175 bs->growable = 0;
b338082b 1176
66f82cee 1177 if (bs->file != NULL) {
0ac9377d
PB
1178 bdrv_delete(bs->file);
1179 bs->file = NULL;
66f82cee 1180 }
b338082b 1181 }
98f90dba 1182
9ca11154
PH
1183 bdrv_dev_change_media_cb(bs, false);
1184
98f90dba
ZYW
1185 /*throttling disk I/O limits*/
1186 if (bs->io_limits_enabled) {
1187 bdrv_io_limits_disable(bs);
1188 }
b338082b
FB
1189}
1190
2bc93fed
MK
1191void bdrv_close_all(void)
1192{
1193 BlockDriverState *bs;
1194
1195 QTAILQ_FOREACH(bs, &bdrv_states, list) {
1196 bdrv_close(bs);
1197 }
1198}
1199
922453bc
SH
1200/*
1201 * Wait for pending requests to complete across all BlockDriverStates
1202 *
1203 * This function does not flush data to disk, use bdrv_flush_all() for that
1204 * after calling this function.
4c355d53
ZYW
1205 *
1206 * Note that completion of an asynchronous I/O operation can trigger any
1207 * number of other I/O operations on other devices---for example a coroutine
1208 * can be arbitrarily complex and a constant flow of I/O can come until the
1209 * coroutine is complete. Because of this, it is not possible to have a
1210 * function to drain a single device's I/O queue.
922453bc
SH
1211 */
1212void bdrv_drain_all(void)
1213{
1214 BlockDriverState *bs;
4c355d53
ZYW
1215 bool busy;
1216
1217 do {
1218 busy = qemu_aio_wait();
922453bc 1219
4c355d53
ZYW
1220 /* FIXME: We do not have timer support here, so this is effectively
1221 * a busy wait.
1222 */
1223 QTAILQ_FOREACH(bs, &bdrv_states, list) {
1224 if (!qemu_co_queue_empty(&bs->throttled_reqs)) {
1225 qemu_co_queue_restart_all(&bs->throttled_reqs);
1226 busy = true;
1227 }
1228 }
1229 } while (busy);
922453bc
SH
1230
1231 /* If requests are still pending there is a bug somewhere */
1232 QTAILQ_FOREACH(bs, &bdrv_states, list) {
1233 assert(QLIST_EMPTY(&bs->tracked_requests));
1234 assert(qemu_co_queue_empty(&bs->throttled_reqs));
1235 }
1236}
1237
d22b2f41
RH
1238/* make a BlockDriverState anonymous by removing from bdrv_state list.
1239 Also, NULL terminate the device_name to prevent double remove */
1240void bdrv_make_anon(BlockDriverState *bs)
1241{
1242 if (bs->device_name[0] != '\0') {
1243 QTAILQ_REMOVE(&bdrv_states, bs, list);
1244 }
1245 bs->device_name[0] = '\0';
1246}
1247
e023b2e2
PB
1248static void bdrv_rebind(BlockDriverState *bs)
1249{
1250 if (bs->drv && bs->drv->bdrv_rebind) {
1251 bs->drv->bdrv_rebind(bs);
1252 }
1253}
1254
4ddc07ca
PB
1255static void bdrv_move_feature_fields(BlockDriverState *bs_dest,
1256 BlockDriverState *bs_src)
8802d1fd 1257{
4ddc07ca
PB
1258 /* move some fields that need to stay attached to the device */
1259 bs_dest->open_flags = bs_src->open_flags;
8802d1fd
JC
1260
1261 /* dev info */
4ddc07ca
PB
1262 bs_dest->dev_ops = bs_src->dev_ops;
1263 bs_dest->dev_opaque = bs_src->dev_opaque;
1264 bs_dest->dev = bs_src->dev;
1265 bs_dest->buffer_alignment = bs_src->buffer_alignment;
1266 bs_dest->copy_on_read = bs_src->copy_on_read;
8802d1fd 1267
4ddc07ca 1268 bs_dest->enable_write_cache = bs_src->enable_write_cache;
c4a248a1 1269
8802d1fd 1270 /* i/o timing parameters */
4ddc07ca
PB
1271 bs_dest->slice_time = bs_src->slice_time;
1272 bs_dest->slice_start = bs_src->slice_start;
1273 bs_dest->slice_end = bs_src->slice_end;
1274 bs_dest->io_limits = bs_src->io_limits;
1275 bs_dest->io_base = bs_src->io_base;
1276 bs_dest->throttled_reqs = bs_src->throttled_reqs;
1277 bs_dest->block_timer = bs_src->block_timer;
1278 bs_dest->io_limits_enabled = bs_src->io_limits_enabled;
8802d1fd 1279
8802d1fd 1280 /* r/w error */
4ddc07ca
PB
1281 bs_dest->on_read_error = bs_src->on_read_error;
1282 bs_dest->on_write_error = bs_src->on_write_error;
8802d1fd
JC
1283
1284 /* i/o status */
4ddc07ca
PB
1285 bs_dest->iostatus_enabled = bs_src->iostatus_enabled;
1286 bs_dest->iostatus = bs_src->iostatus;
8802d1fd 1287
a9fc4408 1288 /* dirty bitmap */
4ddc07ca 1289 bs_dest->dirty_bitmap = bs_src->dirty_bitmap;
a9fc4408
PB
1290
1291 /* job */
4ddc07ca
PB
1292 bs_dest->in_use = bs_src->in_use;
1293 bs_dest->job = bs_src->job;
a9fc4408 1294
8802d1fd 1295 /* keep the same entry in bdrv_states */
4ddc07ca
PB
1296 pstrcpy(bs_dest->device_name, sizeof(bs_dest->device_name),
1297 bs_src->device_name);
1298 bs_dest->list = bs_src->list;
1299}
8802d1fd 1300
4ddc07ca
PB
1301/*
1302 * Swap bs contents for two image chains while they are live,
1303 * while keeping required fields on the BlockDriverState that is
1304 * actually attached to a device.
1305 *
1306 * This will modify the BlockDriverState fields, and swap contents
1307 * between bs_new and bs_old. Both bs_new and bs_old are modified.
1308 *
1309 * bs_new is required to be anonymous.
1310 *
1311 * This function does not create any image files.
1312 */
1313void bdrv_swap(BlockDriverState *bs_new, BlockDriverState *bs_old)
1314{
1315 BlockDriverState tmp;
f6801b83 1316
4ddc07ca
PB
1317 /* bs_new must be anonymous and shouldn't have anything fancy enabled */
1318 assert(bs_new->device_name[0] == '\0');
1319 assert(bs_new->dirty_bitmap == NULL);
1320 assert(bs_new->job == NULL);
1321 assert(bs_new->dev == NULL);
1322 assert(bs_new->in_use == 0);
1323 assert(bs_new->io_limits_enabled == false);
1324 assert(bs_new->block_timer == NULL);
8802d1fd 1325
4ddc07ca
PB
1326 tmp = *bs_new;
1327 *bs_new = *bs_old;
1328 *bs_old = tmp;
a9fc4408 1329
4ddc07ca
PB
1330 /* there are some fields that should not be swapped, move them back */
1331 bdrv_move_feature_fields(&tmp, bs_old);
1332 bdrv_move_feature_fields(bs_old, bs_new);
1333 bdrv_move_feature_fields(bs_new, &tmp);
8802d1fd 1334
4ddc07ca
PB
1335 /* bs_new shouldn't be in bdrv_states even after the swap! */
1336 assert(bs_new->device_name[0] == '\0');
1337
1338 /* Check a few fields that should remain attached to the device */
1339 assert(bs_new->dev == NULL);
1340 assert(bs_new->job == NULL);
1341 assert(bs_new->in_use == 0);
1342 assert(bs_new->io_limits_enabled == false);
1343 assert(bs_new->block_timer == NULL);
e023b2e2
PB
1344
1345 bdrv_rebind(bs_new);
4ddc07ca
PB
1346 bdrv_rebind(bs_old);
1347}
1348
1349/*
1350 * Add new bs contents at the top of an image chain while the chain is
1351 * live, while keeping required fields on the top layer.
1352 *
1353 * This will modify the BlockDriverState fields, and swap contents
1354 * between bs_new and bs_top. Both bs_new and bs_top are modified.
1355 *
1356 * bs_new is required to be anonymous.
1357 *
1358 * This function does not create any image files.
1359 */
1360void bdrv_append(BlockDriverState *bs_new, BlockDriverState *bs_top)
1361{
1362 bdrv_swap(bs_new, bs_top);
1363
1364 /* The contents of 'tmp' will become bs_top, as we are
1365 * swapping bs_new and bs_top contents. */
1366 bs_top->backing_hd = bs_new;
1367 bs_top->open_flags &= ~BDRV_O_NO_BACKING;
1368 pstrcpy(bs_top->backing_file, sizeof(bs_top->backing_file),
1369 bs_new->filename);
1370 pstrcpy(bs_top->backing_format, sizeof(bs_top->backing_format),
1371 bs_new->drv ? bs_new->drv->format_name : "");
8802d1fd
JC
1372}
1373
b338082b
FB
1374void bdrv_delete(BlockDriverState *bs)
1375{
fa879d62 1376 assert(!bs->dev);
3e914655
PB
1377 assert(!bs->job);
1378 assert(!bs->in_use);
18846dee 1379
1b7bdbc1 1380 /* remove from list, if necessary */
d22b2f41 1381 bdrv_make_anon(bs);
34c6f050 1382
b338082b 1383 bdrv_close(bs);
66f82cee 1384
f9092b10 1385 assert(bs != bs_snapshots);
7267c094 1386 g_free(bs);
fc01f7e7
FB
1387}
1388
fa879d62
MA
1389int bdrv_attach_dev(BlockDriverState *bs, void *dev)
1390/* TODO change to DeviceState *dev when all users are qdevified */
18846dee 1391{
fa879d62 1392 if (bs->dev) {
18846dee
MA
1393 return -EBUSY;
1394 }
fa879d62 1395 bs->dev = dev;
28a7282a 1396 bdrv_iostatus_reset(bs);
18846dee
MA
1397 return 0;
1398}
1399
fa879d62
MA
1400/* TODO qdevified devices don't use this, remove when devices are qdevified */
1401void bdrv_attach_dev_nofail(BlockDriverState *bs, void *dev)
18846dee 1402{
fa879d62
MA
1403 if (bdrv_attach_dev(bs, dev) < 0) {
1404 abort();
1405 }
1406}
1407
1408void bdrv_detach_dev(BlockDriverState *bs, void *dev)
1409/* TODO change to DeviceState *dev when all users are qdevified */
1410{
1411 assert(bs->dev == dev);
1412 bs->dev = NULL;
0e49de52
MA
1413 bs->dev_ops = NULL;
1414 bs->dev_opaque = NULL;
29e05f20 1415 bs->buffer_alignment = 512;
18846dee
MA
1416}
1417
fa879d62
MA
1418/* TODO change to return DeviceState * when all users are qdevified */
1419void *bdrv_get_attached_dev(BlockDriverState *bs)
18846dee 1420{
fa879d62 1421 return bs->dev;
18846dee
MA
1422}
1423
0e49de52
MA
1424void bdrv_set_dev_ops(BlockDriverState *bs, const BlockDevOps *ops,
1425 void *opaque)
1426{
1427 bs->dev_ops = ops;
1428 bs->dev_opaque = opaque;
2c6942fa
MA
1429 if (bdrv_dev_has_removable_media(bs) && bs == bs_snapshots) {
1430 bs_snapshots = NULL;
1431 }
0e49de52
MA
1432}
1433
32c81a4a
PB
1434void bdrv_emit_qmp_error_event(const BlockDriverState *bdrv,
1435 enum MonitorEvent ev,
1436 BlockErrorAction action, bool is_read)
329c0a48
LC
1437{
1438 QObject *data;
1439 const char *action_str;
1440
1441 switch (action) {
1442 case BDRV_ACTION_REPORT:
1443 action_str = "report";
1444 break;
1445 case BDRV_ACTION_IGNORE:
1446 action_str = "ignore";
1447 break;
1448 case BDRV_ACTION_STOP:
1449 action_str = "stop";
1450 break;
1451 default:
1452 abort();
1453 }
1454
1455 data = qobject_from_jsonf("{ 'device': %s, 'action': %s, 'operation': %s }",
1456 bdrv->device_name,
1457 action_str,
1458 is_read ? "read" : "write");
32c81a4a 1459 monitor_protocol_event(ev, data);
329c0a48
LC
1460
1461 qobject_decref(data);
1462}
1463
6f382ed2
LC
1464static void bdrv_emit_qmp_eject_event(BlockDriverState *bs, bool ejected)
1465{
1466 QObject *data;
1467
1468 data = qobject_from_jsonf("{ 'device': %s, 'tray-open': %i }",
1469 bdrv_get_device_name(bs), ejected);
1470 monitor_protocol_event(QEVENT_DEVICE_TRAY_MOVED, data);
1471
1472 qobject_decref(data);
1473}
1474
7d4b4ba5 1475static void bdrv_dev_change_media_cb(BlockDriverState *bs, bool load)
0e49de52 1476{
145feb17 1477 if (bs->dev_ops && bs->dev_ops->change_media_cb) {
6f382ed2 1478 bool tray_was_closed = !bdrv_dev_is_tray_open(bs);
7d4b4ba5 1479 bs->dev_ops->change_media_cb(bs->dev_opaque, load);
6f382ed2
LC
1480 if (tray_was_closed) {
1481 /* tray open */
1482 bdrv_emit_qmp_eject_event(bs, true);
1483 }
1484 if (load) {
1485 /* tray close */
1486 bdrv_emit_qmp_eject_event(bs, false);
1487 }
145feb17
MA
1488 }
1489}
1490
2c6942fa
MA
1491bool bdrv_dev_has_removable_media(BlockDriverState *bs)
1492{
1493 return !bs->dev || (bs->dev_ops && bs->dev_ops->change_media_cb);
1494}
1495
025ccaa7
PB
1496void bdrv_dev_eject_request(BlockDriverState *bs, bool force)
1497{
1498 if (bs->dev_ops && bs->dev_ops->eject_request_cb) {
1499 bs->dev_ops->eject_request_cb(bs->dev_opaque, force);
1500 }
1501}
1502
e4def80b
MA
1503bool bdrv_dev_is_tray_open(BlockDriverState *bs)
1504{
1505 if (bs->dev_ops && bs->dev_ops->is_tray_open) {
1506 return bs->dev_ops->is_tray_open(bs->dev_opaque);
1507 }
1508 return false;
1509}
1510
145feb17
MA
1511static void bdrv_dev_resize_cb(BlockDriverState *bs)
1512{
1513 if (bs->dev_ops && bs->dev_ops->resize_cb) {
1514 bs->dev_ops->resize_cb(bs->dev_opaque);
0e49de52
MA
1515 }
1516}
1517
f107639a
MA
1518bool bdrv_dev_is_medium_locked(BlockDriverState *bs)
1519{
1520 if (bs->dev_ops && bs->dev_ops->is_medium_locked) {
1521 return bs->dev_ops->is_medium_locked(bs->dev_opaque);
1522 }
1523 return false;
1524}
1525
e97fc193
AL
1526/*
1527 * Run consistency checks on an image
1528 *
e076f338 1529 * Returns 0 if the check could be completed (it doesn't mean that the image is
a1c7273b 1530 * free of errors) or -errno when an internal error occurred. The results of the
e076f338 1531 * check are stored in res.
e97fc193 1532 */
4534ff54 1533int bdrv_check(BlockDriverState *bs, BdrvCheckResult *res, BdrvCheckMode fix)
e97fc193
AL
1534{
1535 if (bs->drv->bdrv_check == NULL) {
1536 return -ENOTSUP;
1537 }
1538
e076f338 1539 memset(res, 0, sizeof(*res));
4534ff54 1540 return bs->drv->bdrv_check(bs, res, fix);
e97fc193
AL
1541}
1542
8a426614
KW
1543#define COMMIT_BUF_SECTORS 2048
1544
33e3963e
FB
1545/* commit COW file into the raw image */
1546int bdrv_commit(BlockDriverState *bs)
1547{
19cb3738 1548 BlockDriver *drv = bs->drv;
8a426614
KW
1549 int64_t sector, total_sectors;
1550 int n, ro, open_flags;
0bce597d 1551 int ret = 0;
8a426614 1552 uint8_t *buf;
c2cba3d9 1553 char filename[PATH_MAX];
33e3963e 1554
19cb3738
FB
1555 if (!drv)
1556 return -ENOMEDIUM;
4dca4b63
NS
1557
1558 if (!bs->backing_hd) {
1559 return -ENOTSUP;
33e3963e
FB
1560 }
1561
2d3735d3
SH
1562 if (bdrv_in_use(bs) || bdrv_in_use(bs->backing_hd)) {
1563 return -EBUSY;
1564 }
1565
4dca4b63 1566 ro = bs->backing_hd->read_only;
c2cba3d9
JM
1567 /* Use pstrcpy (not strncpy): filename must be NUL-terminated. */
1568 pstrcpy(filename, sizeof(filename), bs->backing_hd->filename);
4dca4b63
NS
1569 open_flags = bs->backing_hd->open_flags;
1570
1571 if (ro) {
0bce597d
JC
1572 if (bdrv_reopen(bs->backing_hd, open_flags | BDRV_O_RDWR, NULL)) {
1573 return -EACCES;
4dca4b63 1574 }
ea2384d3 1575 }
33e3963e 1576
6ea44308 1577 total_sectors = bdrv_getlength(bs) >> BDRV_SECTOR_BITS;
7267c094 1578 buf = g_malloc(COMMIT_BUF_SECTORS * BDRV_SECTOR_SIZE);
8a426614
KW
1579
1580 for (sector = 0; sector < total_sectors; sector += n) {
05c4af54 1581 if (bdrv_is_allocated(bs, sector, COMMIT_BUF_SECTORS, &n)) {
8a426614
KW
1582
1583 if (bdrv_read(bs, sector, buf, n) != 0) {
1584 ret = -EIO;
1585 goto ro_cleanup;
1586 }
1587
1588 if (bdrv_write(bs->backing_hd, sector, buf, n) != 0) {
1589 ret = -EIO;
1590 goto ro_cleanup;
1591 }
ea2384d3 1592 }
33e3963e 1593 }
95389c86 1594
1d44952f
CH
1595 if (drv->bdrv_make_empty) {
1596 ret = drv->bdrv_make_empty(bs);
1597 bdrv_flush(bs);
1598 }
95389c86 1599
3f5075ae
CH
1600 /*
1601 * Make sure all data we wrote to the backing device is actually
1602 * stable on disk.
1603 */
1604 if (bs->backing_hd)
1605 bdrv_flush(bs->backing_hd);
4dca4b63
NS
1606
1607ro_cleanup:
7267c094 1608 g_free(buf);
4dca4b63
NS
1609
1610 if (ro) {
0bce597d
JC
1611 /* ignoring error return here */
1612 bdrv_reopen(bs->backing_hd, open_flags & ~BDRV_O_RDWR, NULL);
4dca4b63
NS
1613 }
1614
1d44952f 1615 return ret;
33e3963e
FB
1616}
1617
e8877497 1618int bdrv_commit_all(void)
6ab4b5ab
MA
1619{
1620 BlockDriverState *bs;
1621
1622 QTAILQ_FOREACH(bs, &bdrv_states, list) {
e8877497
SH
1623 int ret = bdrv_commit(bs);
1624 if (ret < 0) {
1625 return ret;
1626 }
6ab4b5ab 1627 }
e8877497 1628 return 0;
6ab4b5ab
MA
1629}
1630
dbffbdcf
SH
1631struct BdrvTrackedRequest {
1632 BlockDriverState *bs;
1633 int64_t sector_num;
1634 int nb_sectors;
1635 bool is_write;
1636 QLIST_ENTRY(BdrvTrackedRequest) list;
5f8b6491 1637 Coroutine *co; /* owner, used for deadlock detection */
f4658285 1638 CoQueue wait_queue; /* coroutines blocked on this request */
dbffbdcf
SH
1639};
1640
1641/**
1642 * Remove an active request from the tracked requests list
1643 *
1644 * This function should be called when a tracked request is completing.
1645 */
1646static void tracked_request_end(BdrvTrackedRequest *req)
1647{
1648 QLIST_REMOVE(req, list);
f4658285 1649 qemu_co_queue_restart_all(&req->wait_queue);
dbffbdcf
SH
1650}
1651
1652/**
1653 * Add an active request to the tracked requests list
1654 */
1655static void tracked_request_begin(BdrvTrackedRequest *req,
1656 BlockDriverState *bs,
1657 int64_t sector_num,
1658 int nb_sectors, bool is_write)
1659{
1660 *req = (BdrvTrackedRequest){
1661 .bs = bs,
1662 .sector_num = sector_num,
1663 .nb_sectors = nb_sectors,
1664 .is_write = is_write,
5f8b6491 1665 .co = qemu_coroutine_self(),
dbffbdcf
SH
1666 };
1667
f4658285
SH
1668 qemu_co_queue_init(&req->wait_queue);
1669
dbffbdcf
SH
1670 QLIST_INSERT_HEAD(&bs->tracked_requests, req, list);
1671}
1672
d83947ac
SH
1673/**
1674 * Round a region to cluster boundaries
1675 */
343bded4
PB
1676void bdrv_round_to_clusters(BlockDriverState *bs,
1677 int64_t sector_num, int nb_sectors,
1678 int64_t *cluster_sector_num,
1679 int *cluster_nb_sectors)
d83947ac
SH
1680{
1681 BlockDriverInfo bdi;
1682
1683 if (bdrv_get_info(bs, &bdi) < 0 || bdi.cluster_size == 0) {
1684 *cluster_sector_num = sector_num;
1685 *cluster_nb_sectors = nb_sectors;
1686 } else {
1687 int64_t c = bdi.cluster_size / BDRV_SECTOR_SIZE;
1688 *cluster_sector_num = QEMU_ALIGN_DOWN(sector_num, c);
1689 *cluster_nb_sectors = QEMU_ALIGN_UP(sector_num - *cluster_sector_num +
1690 nb_sectors, c);
1691 }
1692}
1693
f4658285
SH
1694static bool tracked_request_overlaps(BdrvTrackedRequest *req,
1695 int64_t sector_num, int nb_sectors) {
d83947ac
SH
1696 /* aaaa bbbb */
1697 if (sector_num >= req->sector_num + req->nb_sectors) {
1698 return false;
1699 }
1700 /* bbbb aaaa */
1701 if (req->sector_num >= sector_num + nb_sectors) {
1702 return false;
1703 }
1704 return true;
f4658285
SH
1705}
1706
1707static void coroutine_fn wait_for_overlapping_requests(BlockDriverState *bs,
1708 int64_t sector_num, int nb_sectors)
1709{
1710 BdrvTrackedRequest *req;
d83947ac
SH
1711 int64_t cluster_sector_num;
1712 int cluster_nb_sectors;
f4658285
SH
1713 bool retry;
1714
d83947ac
SH
1715 /* If we touch the same cluster it counts as an overlap. This guarantees
1716 * that allocating writes will be serialized and not race with each other
1717 * for the same cluster. For example, in copy-on-read it ensures that the
1718 * CoR read and write operations are atomic and guest writes cannot
1719 * interleave between them.
1720 */
343bded4
PB
1721 bdrv_round_to_clusters(bs, sector_num, nb_sectors,
1722 &cluster_sector_num, &cluster_nb_sectors);
d83947ac 1723
f4658285
SH
1724 do {
1725 retry = false;
1726 QLIST_FOREACH(req, &bs->tracked_requests, list) {
d83947ac
SH
1727 if (tracked_request_overlaps(req, cluster_sector_num,
1728 cluster_nb_sectors)) {
5f8b6491
SH
1729 /* Hitting this means there was a reentrant request, for
1730 * example, a block driver issuing nested requests. This must
1731 * never happen since it means deadlock.
1732 */
1733 assert(qemu_coroutine_self() != req->co);
1734
f4658285
SH
1735 qemu_co_queue_wait(&req->wait_queue);
1736 retry = true;
1737 break;
1738 }
1739 }
1740 } while (retry);
1741}
1742
756e6736
KW
1743/*
1744 * Return values:
1745 * 0 - success
1746 * -EINVAL - backing format specified, but no file
1747 * -ENOSPC - can't update the backing file because no space is left in the
1748 * image file header
1749 * -ENOTSUP - format driver doesn't support changing the backing file
1750 */
1751int bdrv_change_backing_file(BlockDriverState *bs,
1752 const char *backing_file, const char *backing_fmt)
1753{
1754 BlockDriver *drv = bs->drv;
469ef350 1755 int ret;
756e6736 1756
5f377794
PB
1757 /* Backing file format doesn't make sense without a backing file */
1758 if (backing_fmt && !backing_file) {
1759 return -EINVAL;
1760 }
1761
756e6736 1762 if (drv->bdrv_change_backing_file != NULL) {
469ef350 1763 ret = drv->bdrv_change_backing_file(bs, backing_file, backing_fmt);
756e6736 1764 } else {
469ef350 1765 ret = -ENOTSUP;
756e6736 1766 }
469ef350
PB
1767
1768 if (ret == 0) {
1769 pstrcpy(bs->backing_file, sizeof(bs->backing_file), backing_file ?: "");
1770 pstrcpy(bs->backing_format, sizeof(bs->backing_format), backing_fmt ?: "");
1771 }
1772 return ret;
756e6736
KW
1773}
1774
6ebdcee2
JC
1775/*
1776 * Finds the image layer in the chain that has 'bs' as its backing file.
1777 *
1778 * active is the current topmost image.
1779 *
1780 * Returns NULL if bs is not found in active's image chain,
1781 * or if active == bs.
1782 */
1783BlockDriverState *bdrv_find_overlay(BlockDriverState *active,
1784 BlockDriverState *bs)
1785{
1786 BlockDriverState *overlay = NULL;
1787 BlockDriverState *intermediate;
1788
1789 assert(active != NULL);
1790 assert(bs != NULL);
1791
1792 /* if bs is the same as active, then by definition it has no overlay
1793 */
1794 if (active == bs) {
1795 return NULL;
1796 }
1797
1798 intermediate = active;
1799 while (intermediate->backing_hd) {
1800 if (intermediate->backing_hd == bs) {
1801 overlay = intermediate;
1802 break;
1803 }
1804 intermediate = intermediate->backing_hd;
1805 }
1806
1807 return overlay;
1808}
1809
1810typedef struct BlkIntermediateStates {
1811 BlockDriverState *bs;
1812 QSIMPLEQ_ENTRY(BlkIntermediateStates) entry;
1813} BlkIntermediateStates;
1814
1815
1816/*
1817 * Drops images above 'base' up to and including 'top', and sets the image
1818 * above 'top' to have base as its backing file.
1819 *
1820 * Requires that the overlay to 'top' is opened r/w, so that the backing file
1821 * information in 'bs' can be properly updated.
1822 *
1823 * E.g., this will convert the following chain:
1824 * bottom <- base <- intermediate <- top <- active
1825 *
1826 * to
1827 *
1828 * bottom <- base <- active
1829 *
1830 * It is allowed for bottom==base, in which case it converts:
1831 *
1832 * base <- intermediate <- top <- active
1833 *
1834 * to
1835 *
1836 * base <- active
1837 *
1838 * Error conditions:
1839 * if active == top, that is considered an error
1840 *
1841 */
1842int bdrv_drop_intermediate(BlockDriverState *active, BlockDriverState *top,
1843 BlockDriverState *base)
1844{
1845 BlockDriverState *intermediate;
1846 BlockDriverState *base_bs = NULL;
1847 BlockDriverState *new_top_bs = NULL;
1848 BlkIntermediateStates *intermediate_state, *next;
1849 int ret = -EIO;
1850
1851 QSIMPLEQ_HEAD(states_to_delete, BlkIntermediateStates) states_to_delete;
1852 QSIMPLEQ_INIT(&states_to_delete);
1853
1854 if (!top->drv || !base->drv) {
1855 goto exit;
1856 }
1857
1858 new_top_bs = bdrv_find_overlay(active, top);
1859
1860 if (new_top_bs == NULL) {
1861 /* we could not find the image above 'top', this is an error */
1862 goto exit;
1863 }
1864
1865 /* special case of new_top_bs->backing_hd already pointing to base - nothing
1866 * to do, no intermediate images */
1867 if (new_top_bs->backing_hd == base) {
1868 ret = 0;
1869 goto exit;
1870 }
1871
1872 intermediate = top;
1873
1874 /* now we will go down through the list, and add each BDS we find
1875 * into our deletion queue, until we hit the 'base'
1876 */
1877 while (intermediate) {
1878 intermediate_state = g_malloc0(sizeof(BlkIntermediateStates));
1879 intermediate_state->bs = intermediate;
1880 QSIMPLEQ_INSERT_TAIL(&states_to_delete, intermediate_state, entry);
1881
1882 if (intermediate->backing_hd == base) {
1883 base_bs = intermediate->backing_hd;
1884 break;
1885 }
1886 intermediate = intermediate->backing_hd;
1887 }
1888 if (base_bs == NULL) {
1889 /* something went wrong, we did not end at the base. safely
1890 * unravel everything, and exit with error */
1891 goto exit;
1892 }
1893
1894 /* success - we can delete the intermediate states, and link top->base */
1895 ret = bdrv_change_backing_file(new_top_bs, base_bs->filename,
1896 base_bs->drv ? base_bs->drv->format_name : "");
1897 if (ret) {
1898 goto exit;
1899 }
1900 new_top_bs->backing_hd = base_bs;
1901
1902
1903 QSIMPLEQ_FOREACH_SAFE(intermediate_state, &states_to_delete, entry, next) {
1904 /* so that bdrv_close() does not recursively close the chain */
1905 intermediate_state->bs->backing_hd = NULL;
1906 bdrv_delete(intermediate_state->bs);
1907 }
1908 ret = 0;
1909
1910exit:
1911 QSIMPLEQ_FOREACH_SAFE(intermediate_state, &states_to_delete, entry, next) {
1912 g_free(intermediate_state);
1913 }
1914 return ret;
1915}
1916
1917
71d0770c
AL
1918static int bdrv_check_byte_request(BlockDriverState *bs, int64_t offset,
1919 size_t size)
1920{
1921 int64_t len;
1922
1923 if (!bdrv_is_inserted(bs))
1924 return -ENOMEDIUM;
1925
1926 if (bs->growable)
1927 return 0;
1928
1929 len = bdrv_getlength(bs);
1930
fbb7b4e0
KW
1931 if (offset < 0)
1932 return -EIO;
1933
1934 if ((offset > len) || (len - offset < size))
71d0770c
AL
1935 return -EIO;
1936
1937 return 0;
1938}
1939
1940static int bdrv_check_request(BlockDriverState *bs, int64_t sector_num,
1941 int nb_sectors)
1942{
eb5a3165
JS
1943 return bdrv_check_byte_request(bs, sector_num * BDRV_SECTOR_SIZE,
1944 nb_sectors * BDRV_SECTOR_SIZE);
71d0770c
AL
1945}
1946
1c9805a3
SH
1947typedef struct RwCo {
1948 BlockDriverState *bs;
1949 int64_t sector_num;
1950 int nb_sectors;
1951 QEMUIOVector *qiov;
1952 bool is_write;
1953 int ret;
1954} RwCo;
1955
1956static void coroutine_fn bdrv_rw_co_entry(void *opaque)
fc01f7e7 1957{
1c9805a3 1958 RwCo *rwco = opaque;
ea2384d3 1959
1c9805a3
SH
1960 if (!rwco->is_write) {
1961 rwco->ret = bdrv_co_do_readv(rwco->bs, rwco->sector_num,
470c0504 1962 rwco->nb_sectors, rwco->qiov, 0);
1c9805a3
SH
1963 } else {
1964 rwco->ret = bdrv_co_do_writev(rwco->bs, rwco->sector_num,
f08f2dda 1965 rwco->nb_sectors, rwco->qiov, 0);
1c9805a3
SH
1966 }
1967}
e7a8a783 1968
1c9805a3
SH
1969/*
1970 * Process a synchronous request using coroutines
1971 */
1972static int bdrv_rw_co(BlockDriverState *bs, int64_t sector_num, uint8_t *buf,
1973 int nb_sectors, bool is_write)
1974{
1975 QEMUIOVector qiov;
1976 struct iovec iov = {
1977 .iov_base = (void *)buf,
1978 .iov_len = nb_sectors * BDRV_SECTOR_SIZE,
1979 };
1980 Coroutine *co;
1981 RwCo rwco = {
1982 .bs = bs,
1983 .sector_num = sector_num,
1984 .nb_sectors = nb_sectors,
1985 .qiov = &qiov,
1986 .is_write = is_write,
1987 .ret = NOT_DONE,
1988 };
e7a8a783 1989
1c9805a3 1990 qemu_iovec_init_external(&qiov, &iov, 1);
e7a8a783 1991
498e386c
ZYW
1992 /**
1993 * In sync call context, when the vcpu is blocked, this throttling timer
1994 * will not fire; so the I/O throttling function has to be disabled here
1995 * if it has been enabled.
1996 */
1997 if (bs->io_limits_enabled) {
1998 fprintf(stderr, "Disabling I/O throttling on '%s' due "
1999 "to synchronous I/O.\n", bdrv_get_device_name(bs));
2000 bdrv_io_limits_disable(bs);
2001 }
2002
1c9805a3
SH
2003 if (qemu_in_coroutine()) {
2004 /* Fast-path if already in coroutine context */
2005 bdrv_rw_co_entry(&rwco);
2006 } else {
2007 co = qemu_coroutine_create(bdrv_rw_co_entry);
2008 qemu_coroutine_enter(co, &rwco);
2009 while (rwco.ret == NOT_DONE) {
2010 qemu_aio_wait();
2011 }
2012 }
2013 return rwco.ret;
2014}
b338082b 2015
1c9805a3
SH
2016/* return < 0 if error. See bdrv_write() for the return codes */
2017int bdrv_read(BlockDriverState *bs, int64_t sector_num,
2018 uint8_t *buf, int nb_sectors)
2019{
2020 return bdrv_rw_co(bs, sector_num, buf, nb_sectors, false);
fc01f7e7
FB
2021}
2022
07d27a44
MA
2023/* Just like bdrv_read(), but with I/O throttling temporarily disabled */
2024int bdrv_read_unthrottled(BlockDriverState *bs, int64_t sector_num,
2025 uint8_t *buf, int nb_sectors)
2026{
2027 bool enabled;
2028 int ret;
2029
2030 enabled = bs->io_limits_enabled;
2031 bs->io_limits_enabled = false;
2032 ret = bdrv_read(bs, 0, buf, 1);
2033 bs->io_limits_enabled = enabled;
2034 return ret;
2035}
2036
5fafdf24 2037/* Return < 0 if error. Important errors are:
19cb3738
FB
2038 -EIO generic I/O error (may happen for all errors)
2039 -ENOMEDIUM No media inserted.
2040 -EINVAL Invalid sector number or nb_sectors
2041 -EACCES Trying to write a read-only device
2042*/
5fafdf24 2043int bdrv_write(BlockDriverState *bs, int64_t sector_num,
fc01f7e7
FB
2044 const uint8_t *buf, int nb_sectors)
2045{
1c9805a3 2046 return bdrv_rw_co(bs, sector_num, (uint8_t *)buf, nb_sectors, true);
83f64091
FB
2047}
2048
eda578e5
AL
2049int bdrv_pread(BlockDriverState *bs, int64_t offset,
2050 void *buf, int count1)
83f64091 2051{
6ea44308 2052 uint8_t tmp_buf[BDRV_SECTOR_SIZE];
83f64091
FB
2053 int len, nb_sectors, count;
2054 int64_t sector_num;
9a8c4cce 2055 int ret;
83f64091
FB
2056
2057 count = count1;
2058 /* first read to align to sector start */
6ea44308 2059 len = (BDRV_SECTOR_SIZE - offset) & (BDRV_SECTOR_SIZE - 1);
83f64091
FB
2060 if (len > count)
2061 len = count;
6ea44308 2062 sector_num = offset >> BDRV_SECTOR_BITS;
83f64091 2063 if (len > 0) {
9a8c4cce
KW
2064 if ((ret = bdrv_read(bs, sector_num, tmp_buf, 1)) < 0)
2065 return ret;
6ea44308 2066 memcpy(buf, tmp_buf + (offset & (BDRV_SECTOR_SIZE - 1)), len);
83f64091
FB
2067 count -= len;
2068 if (count == 0)
2069 return count1;
2070 sector_num++;
2071 buf += len;
2072 }
2073
2074 /* read the sectors "in place" */
6ea44308 2075 nb_sectors = count >> BDRV_SECTOR_BITS;
83f64091 2076 if (nb_sectors > 0) {
9a8c4cce
KW
2077 if ((ret = bdrv_read(bs, sector_num, buf, nb_sectors)) < 0)
2078 return ret;
83f64091 2079 sector_num += nb_sectors;
6ea44308 2080 len = nb_sectors << BDRV_SECTOR_BITS;
83f64091
FB
2081 buf += len;
2082 count -= len;
2083 }
2084
2085 /* add data from the last sector */
2086 if (count > 0) {
9a8c4cce
KW
2087 if ((ret = bdrv_read(bs, sector_num, tmp_buf, 1)) < 0)
2088 return ret;
83f64091
FB
2089 memcpy(buf, tmp_buf, count);
2090 }
2091 return count1;
2092}
2093
eda578e5
AL
2094int bdrv_pwrite(BlockDriverState *bs, int64_t offset,
2095 const void *buf, int count1)
83f64091 2096{
6ea44308 2097 uint8_t tmp_buf[BDRV_SECTOR_SIZE];
83f64091
FB
2098 int len, nb_sectors, count;
2099 int64_t sector_num;
9a8c4cce 2100 int ret;
83f64091
FB
2101
2102 count = count1;
2103 /* first write to align to sector start */
6ea44308 2104 len = (BDRV_SECTOR_SIZE - offset) & (BDRV_SECTOR_SIZE - 1);
83f64091
FB
2105 if (len > count)
2106 len = count;
6ea44308 2107 sector_num = offset >> BDRV_SECTOR_BITS;
83f64091 2108 if (len > 0) {
9a8c4cce
KW
2109 if ((ret = bdrv_read(bs, sector_num, tmp_buf, 1)) < 0)
2110 return ret;
6ea44308 2111 memcpy(tmp_buf + (offset & (BDRV_SECTOR_SIZE - 1)), buf, len);
9a8c4cce
KW
2112 if ((ret = bdrv_write(bs, sector_num, tmp_buf, 1)) < 0)
2113 return ret;
83f64091
FB
2114 count -= len;
2115 if (count == 0)
2116 return count1;
2117 sector_num++;
2118 buf += len;
2119 }
2120
2121 /* write the sectors "in place" */
6ea44308 2122 nb_sectors = count >> BDRV_SECTOR_BITS;
83f64091 2123 if (nb_sectors > 0) {
9a8c4cce
KW
2124 if ((ret = bdrv_write(bs, sector_num, buf, nb_sectors)) < 0)
2125 return ret;
83f64091 2126 sector_num += nb_sectors;
6ea44308 2127 len = nb_sectors << BDRV_SECTOR_BITS;
83f64091
FB
2128 buf += len;
2129 count -= len;
2130 }
2131
2132 /* add data from the last sector */
2133 if (count > 0) {
9a8c4cce
KW
2134 if ((ret = bdrv_read(bs, sector_num, tmp_buf, 1)) < 0)
2135 return ret;
83f64091 2136 memcpy(tmp_buf, buf, count);
9a8c4cce
KW
2137 if ((ret = bdrv_write(bs, sector_num, tmp_buf, 1)) < 0)
2138 return ret;
83f64091
FB
2139 }
2140 return count1;
2141}
83f64091 2142
f08145fe
KW
2143/*
2144 * Writes to the file and ensures that no writes are reordered across this
2145 * request (acts as a barrier)
2146 *
2147 * Returns 0 on success, -errno in error cases.
2148 */
2149int bdrv_pwrite_sync(BlockDriverState *bs, int64_t offset,
2150 const void *buf, int count)
2151{
2152 int ret;
2153
2154 ret = bdrv_pwrite(bs, offset, buf, count);
2155 if (ret < 0) {
2156 return ret;
2157 }
2158
f05fa4ad
PB
2159 /* No flush needed for cache modes that already do it */
2160 if (bs->enable_write_cache) {
f08145fe
KW
2161 bdrv_flush(bs);
2162 }
2163
2164 return 0;
2165}
2166
470c0504 2167static int coroutine_fn bdrv_co_do_copy_on_readv(BlockDriverState *bs,
ab185921
SH
2168 int64_t sector_num, int nb_sectors, QEMUIOVector *qiov)
2169{
2170 /* Perform I/O through a temporary buffer so that users who scribble over
2171 * their read buffer while the operation is in progress do not end up
2172 * modifying the image file. This is critical for zero-copy guest I/O
2173 * where anything might happen inside guest memory.
2174 */
2175 void *bounce_buffer;
2176
79c053bd 2177 BlockDriver *drv = bs->drv;
ab185921
SH
2178 struct iovec iov;
2179 QEMUIOVector bounce_qiov;
2180 int64_t cluster_sector_num;
2181 int cluster_nb_sectors;
2182 size_t skip_bytes;
2183 int ret;
2184
2185 /* Cover entire cluster so no additional backing file I/O is required when
2186 * allocating cluster in the image file.
2187 */
343bded4
PB
2188 bdrv_round_to_clusters(bs, sector_num, nb_sectors,
2189 &cluster_sector_num, &cluster_nb_sectors);
ab185921 2190
470c0504
SH
2191 trace_bdrv_co_do_copy_on_readv(bs, sector_num, nb_sectors,
2192 cluster_sector_num, cluster_nb_sectors);
ab185921
SH
2193
2194 iov.iov_len = cluster_nb_sectors * BDRV_SECTOR_SIZE;
2195 iov.iov_base = bounce_buffer = qemu_blockalign(bs, iov.iov_len);
2196 qemu_iovec_init_external(&bounce_qiov, &iov, 1);
2197
79c053bd
SH
2198 ret = drv->bdrv_co_readv(bs, cluster_sector_num, cluster_nb_sectors,
2199 &bounce_qiov);
ab185921
SH
2200 if (ret < 0) {
2201 goto err;
2202 }
2203
79c053bd
SH
2204 if (drv->bdrv_co_write_zeroes &&
2205 buffer_is_zero(bounce_buffer, iov.iov_len)) {
621f0589
KW
2206 ret = bdrv_co_do_write_zeroes(bs, cluster_sector_num,
2207 cluster_nb_sectors);
79c053bd 2208 } else {
f05fa4ad
PB
2209 /* This does not change the data on the disk, it is not necessary
2210 * to flush even in cache=writethrough mode.
2211 */
79c053bd 2212 ret = drv->bdrv_co_writev(bs, cluster_sector_num, cluster_nb_sectors,
ab185921 2213 &bounce_qiov);
79c053bd
SH
2214 }
2215
ab185921
SH
2216 if (ret < 0) {
2217 /* It might be okay to ignore write errors for guest requests. If this
2218 * is a deliberate copy-on-read then we don't want to ignore the error.
2219 * Simply report it in all cases.
2220 */
2221 goto err;
2222 }
2223
2224 skip_bytes = (sector_num - cluster_sector_num) * BDRV_SECTOR_SIZE;
03396148
MT
2225 qemu_iovec_from_buf(qiov, 0, bounce_buffer + skip_bytes,
2226 nb_sectors * BDRV_SECTOR_SIZE);
ab185921
SH
2227
2228err:
2229 qemu_vfree(bounce_buffer);
2230 return ret;
2231}
2232
c5fbe571
SH
2233/*
2234 * Handle a read request in coroutine context
2235 */
2236static int coroutine_fn bdrv_co_do_readv(BlockDriverState *bs,
470c0504
SH
2237 int64_t sector_num, int nb_sectors, QEMUIOVector *qiov,
2238 BdrvRequestFlags flags)
da1fa91d
KW
2239{
2240 BlockDriver *drv = bs->drv;
dbffbdcf
SH
2241 BdrvTrackedRequest req;
2242 int ret;
da1fa91d 2243
da1fa91d
KW
2244 if (!drv) {
2245 return -ENOMEDIUM;
2246 }
2247 if (bdrv_check_request(bs, sector_num, nb_sectors)) {
2248 return -EIO;
2249 }
2250
98f90dba
ZYW
2251 /* throttling disk read I/O */
2252 if (bs->io_limits_enabled) {
2253 bdrv_io_limits_intercept(bs, false, nb_sectors);
2254 }
2255
f4658285 2256 if (bs->copy_on_read) {
470c0504
SH
2257 flags |= BDRV_REQ_COPY_ON_READ;
2258 }
2259 if (flags & BDRV_REQ_COPY_ON_READ) {
2260 bs->copy_on_read_in_flight++;
2261 }
2262
2263 if (bs->copy_on_read_in_flight) {
f4658285
SH
2264 wait_for_overlapping_requests(bs, sector_num, nb_sectors);
2265 }
2266
dbffbdcf 2267 tracked_request_begin(&req, bs, sector_num, nb_sectors, false);
ab185921 2268
470c0504 2269 if (flags & BDRV_REQ_COPY_ON_READ) {
ab185921
SH
2270 int pnum;
2271
2272 ret = bdrv_co_is_allocated(bs, sector_num, nb_sectors, &pnum);
2273 if (ret < 0) {
2274 goto out;
2275 }
2276
2277 if (!ret || pnum != nb_sectors) {
470c0504 2278 ret = bdrv_co_do_copy_on_readv(bs, sector_num, nb_sectors, qiov);
ab185921
SH
2279 goto out;
2280 }
2281 }
2282
dbffbdcf 2283 ret = drv->bdrv_co_readv(bs, sector_num, nb_sectors, qiov);
ab185921
SH
2284
2285out:
dbffbdcf 2286 tracked_request_end(&req);
470c0504
SH
2287
2288 if (flags & BDRV_REQ_COPY_ON_READ) {
2289 bs->copy_on_read_in_flight--;
2290 }
2291
dbffbdcf 2292 return ret;
da1fa91d
KW
2293}
2294
c5fbe571 2295int coroutine_fn bdrv_co_readv(BlockDriverState *bs, int64_t sector_num,
da1fa91d
KW
2296 int nb_sectors, QEMUIOVector *qiov)
2297{
c5fbe571 2298 trace_bdrv_co_readv(bs, sector_num, nb_sectors);
da1fa91d 2299
470c0504
SH
2300 return bdrv_co_do_readv(bs, sector_num, nb_sectors, qiov, 0);
2301}
2302
2303int coroutine_fn bdrv_co_copy_on_readv(BlockDriverState *bs,
2304 int64_t sector_num, int nb_sectors, QEMUIOVector *qiov)
2305{
2306 trace_bdrv_co_copy_on_readv(bs, sector_num, nb_sectors);
2307
2308 return bdrv_co_do_readv(bs, sector_num, nb_sectors, qiov,
2309 BDRV_REQ_COPY_ON_READ);
c5fbe571
SH
2310}
2311
f08f2dda
SH
2312static int coroutine_fn bdrv_co_do_write_zeroes(BlockDriverState *bs,
2313 int64_t sector_num, int nb_sectors)
2314{
2315 BlockDriver *drv = bs->drv;
2316 QEMUIOVector qiov;
2317 struct iovec iov;
2318 int ret;
2319
621f0589
KW
2320 /* TODO Emulate only part of misaligned requests instead of letting block
2321 * drivers return -ENOTSUP and emulate everything */
2322
f08f2dda
SH
2323 /* First try the efficient write zeroes operation */
2324 if (drv->bdrv_co_write_zeroes) {
621f0589
KW
2325 ret = drv->bdrv_co_write_zeroes(bs, sector_num, nb_sectors);
2326 if (ret != -ENOTSUP) {
2327 return ret;
2328 }
f08f2dda
SH
2329 }
2330
2331 /* Fall back to bounce buffer if write zeroes is unsupported */
2332 iov.iov_len = nb_sectors * BDRV_SECTOR_SIZE;
2333 iov.iov_base = qemu_blockalign(bs, iov.iov_len);
2334 memset(iov.iov_base, 0, iov.iov_len);
2335 qemu_iovec_init_external(&qiov, &iov, 1);
2336
2337 ret = drv->bdrv_co_writev(bs, sector_num, nb_sectors, &qiov);
2338
2339 qemu_vfree(iov.iov_base);
2340 return ret;
2341}
2342
c5fbe571
SH
2343/*
2344 * Handle a write request in coroutine context
2345 */
2346static int coroutine_fn bdrv_co_do_writev(BlockDriverState *bs,
f08f2dda
SH
2347 int64_t sector_num, int nb_sectors, QEMUIOVector *qiov,
2348 BdrvRequestFlags flags)
c5fbe571
SH
2349{
2350 BlockDriver *drv = bs->drv;
dbffbdcf 2351 BdrvTrackedRequest req;
6b7cb247 2352 int ret;
da1fa91d
KW
2353
2354 if (!bs->drv) {
2355 return -ENOMEDIUM;
2356 }
2357 if (bs->read_only) {
2358 return -EACCES;
2359 }
2360 if (bdrv_check_request(bs, sector_num, nb_sectors)) {
2361 return -EIO;
2362 }
2363
98f90dba
ZYW
2364 /* throttling disk write I/O */
2365 if (bs->io_limits_enabled) {
2366 bdrv_io_limits_intercept(bs, true, nb_sectors);
2367 }
2368
470c0504 2369 if (bs->copy_on_read_in_flight) {
f4658285
SH
2370 wait_for_overlapping_requests(bs, sector_num, nb_sectors);
2371 }
2372
dbffbdcf
SH
2373 tracked_request_begin(&req, bs, sector_num, nb_sectors, true);
2374
f08f2dda
SH
2375 if (flags & BDRV_REQ_ZERO_WRITE) {
2376 ret = bdrv_co_do_write_zeroes(bs, sector_num, nb_sectors);
2377 } else {
2378 ret = drv->bdrv_co_writev(bs, sector_num, nb_sectors, qiov);
2379 }
6b7cb247 2380
f05fa4ad
PB
2381 if (ret == 0 && !bs->enable_write_cache) {
2382 ret = bdrv_co_flush(bs);
2383 }
2384
da1fa91d 2385 if (bs->dirty_bitmap) {
1755da16 2386 bdrv_set_dirty(bs, sector_num, nb_sectors);
da1fa91d
KW
2387 }
2388
2389 if (bs->wr_highest_sector < sector_num + nb_sectors - 1) {
2390 bs->wr_highest_sector = sector_num + nb_sectors - 1;
2391 }
2392
dbffbdcf
SH
2393 tracked_request_end(&req);
2394
6b7cb247 2395 return ret;
da1fa91d
KW
2396}
2397
c5fbe571
SH
2398int coroutine_fn bdrv_co_writev(BlockDriverState *bs, int64_t sector_num,
2399 int nb_sectors, QEMUIOVector *qiov)
2400{
2401 trace_bdrv_co_writev(bs, sector_num, nb_sectors);
2402
f08f2dda
SH
2403 return bdrv_co_do_writev(bs, sector_num, nb_sectors, qiov, 0);
2404}
2405
2406int coroutine_fn bdrv_co_write_zeroes(BlockDriverState *bs,
2407 int64_t sector_num, int nb_sectors)
2408{
2409 trace_bdrv_co_write_zeroes(bs, sector_num, nb_sectors);
2410
2411 return bdrv_co_do_writev(bs, sector_num, nb_sectors, NULL,
2412 BDRV_REQ_ZERO_WRITE);
c5fbe571
SH
2413}
2414
83f64091
FB
2415/**
2416 * Truncate file to 'offset' bytes (needed only for file protocols)
2417 */
2418int bdrv_truncate(BlockDriverState *bs, int64_t offset)
2419{
2420 BlockDriver *drv = bs->drv;
51762288 2421 int ret;
83f64091 2422 if (!drv)
19cb3738 2423 return -ENOMEDIUM;
83f64091
FB
2424 if (!drv->bdrv_truncate)
2425 return -ENOTSUP;
59f2689d
NS
2426 if (bs->read_only)
2427 return -EACCES;
8591675f
MT
2428 if (bdrv_in_use(bs))
2429 return -EBUSY;
51762288
SH
2430 ret = drv->bdrv_truncate(bs, offset);
2431 if (ret == 0) {
2432 ret = refresh_total_sectors(bs, offset >> BDRV_SECTOR_BITS);
145feb17 2433 bdrv_dev_resize_cb(bs);
51762288
SH
2434 }
2435 return ret;
83f64091
FB
2436}
2437
4a1d5e1f
FZ
2438/**
2439 * Length of a allocated file in bytes. Sparse files are counted by actual
2440 * allocated space. Return < 0 if error or unknown.
2441 */
2442int64_t bdrv_get_allocated_file_size(BlockDriverState *bs)
2443{
2444 BlockDriver *drv = bs->drv;
2445 if (!drv) {
2446 return -ENOMEDIUM;
2447 }
2448 if (drv->bdrv_get_allocated_file_size) {
2449 return drv->bdrv_get_allocated_file_size(bs);
2450 }
2451 if (bs->file) {
2452 return bdrv_get_allocated_file_size(bs->file);
2453 }
2454 return -ENOTSUP;
2455}
2456
83f64091
FB
2457/**
2458 * Length of a file in bytes. Return < 0 if error or unknown.
2459 */
2460int64_t bdrv_getlength(BlockDriverState *bs)
2461{
2462 BlockDriver *drv = bs->drv;
2463 if (!drv)
19cb3738 2464 return -ENOMEDIUM;
51762288 2465
2c6942fa 2466 if (bs->growable || bdrv_dev_has_removable_media(bs)) {
46a4e4e6
SH
2467 if (drv->bdrv_getlength) {
2468 return drv->bdrv_getlength(bs);
2469 }
83f64091 2470 }
46a4e4e6 2471 return bs->total_sectors * BDRV_SECTOR_SIZE;
fc01f7e7
FB
2472}
2473
19cb3738 2474/* return 0 as number of sectors if no device present or error */
96b8f136 2475void bdrv_get_geometry(BlockDriverState *bs, uint64_t *nb_sectors_ptr)
fc01f7e7 2476{
19cb3738
FB
2477 int64_t length;
2478 length = bdrv_getlength(bs);
2479 if (length < 0)
2480 length = 0;
2481 else
6ea44308 2482 length = length >> BDRV_SECTOR_BITS;
19cb3738 2483 *nb_sectors_ptr = length;
fc01f7e7 2484}
cf98951b 2485
0563e191
ZYW
2486/* throttling disk io limits */
2487void bdrv_set_io_limits(BlockDriverState *bs,
2488 BlockIOLimit *io_limits)
2489{
2490 bs->io_limits = *io_limits;
2491 bs->io_limits_enabled = bdrv_io_limits_enabled(bs);
2492}
2493
ff06f5f3
PB
2494void bdrv_set_on_error(BlockDriverState *bs, BlockdevOnError on_read_error,
2495 BlockdevOnError on_write_error)
abd7f68d
MA
2496{
2497 bs->on_read_error = on_read_error;
2498 bs->on_write_error = on_write_error;
2499}
2500
1ceee0d5 2501BlockdevOnError bdrv_get_on_error(BlockDriverState *bs, bool is_read)
abd7f68d
MA
2502{
2503 return is_read ? bs->on_read_error : bs->on_write_error;
2504}
2505
3e1caa5f
PB
2506BlockErrorAction bdrv_get_error_action(BlockDriverState *bs, bool is_read, int error)
2507{
2508 BlockdevOnError on_err = is_read ? bs->on_read_error : bs->on_write_error;
2509
2510 switch (on_err) {
2511 case BLOCKDEV_ON_ERROR_ENOSPC:
2512 return (error == ENOSPC) ? BDRV_ACTION_STOP : BDRV_ACTION_REPORT;
2513 case BLOCKDEV_ON_ERROR_STOP:
2514 return BDRV_ACTION_STOP;
2515 case BLOCKDEV_ON_ERROR_REPORT:
2516 return BDRV_ACTION_REPORT;
2517 case BLOCKDEV_ON_ERROR_IGNORE:
2518 return BDRV_ACTION_IGNORE;
2519 default:
2520 abort();
2521 }
2522}
2523
2524/* This is done by device models because, while the block layer knows
2525 * about the error, it does not know whether an operation comes from
2526 * the device or the block layer (from a job, for example).
2527 */
2528void bdrv_error_action(BlockDriverState *bs, BlockErrorAction action,
2529 bool is_read, int error)
2530{
2531 assert(error >= 0);
32c81a4a 2532 bdrv_emit_qmp_error_event(bs, QEVENT_BLOCK_IO_ERROR, action, is_read);
3e1caa5f
PB
2533 if (action == BDRV_ACTION_STOP) {
2534 vm_stop(RUN_STATE_IO_ERROR);
2535 bdrv_iostatus_set_err(bs, error);
2536 }
2537}
2538
b338082b
FB
2539int bdrv_is_read_only(BlockDriverState *bs)
2540{
2541 return bs->read_only;
2542}
2543
985a03b0
TS
2544int bdrv_is_sg(BlockDriverState *bs)
2545{
2546 return bs->sg;
2547}
2548
e900a7b7
CH
2549int bdrv_enable_write_cache(BlockDriverState *bs)
2550{
2551 return bs->enable_write_cache;
2552}
2553
425b0148
PB
2554void bdrv_set_enable_write_cache(BlockDriverState *bs, bool wce)
2555{
2556 bs->enable_write_cache = wce;
55b110f2
JC
2557
2558 /* so a reopen() will preserve wce */
2559 if (wce) {
2560 bs->open_flags |= BDRV_O_CACHE_WB;
2561 } else {
2562 bs->open_flags &= ~BDRV_O_CACHE_WB;
2563 }
425b0148
PB
2564}
2565
ea2384d3
FB
2566int bdrv_is_encrypted(BlockDriverState *bs)
2567{
2568 if (bs->backing_hd && bs->backing_hd->encrypted)
2569 return 1;
2570 return bs->encrypted;
2571}
2572
c0f4ce77
AL
2573int bdrv_key_required(BlockDriverState *bs)
2574{
2575 BlockDriverState *backing_hd = bs->backing_hd;
2576
2577 if (backing_hd && backing_hd->encrypted && !backing_hd->valid_key)
2578 return 1;
2579 return (bs->encrypted && !bs->valid_key);
2580}
2581
ea2384d3
FB
2582int bdrv_set_key(BlockDriverState *bs, const char *key)
2583{
2584 int ret;
2585 if (bs->backing_hd && bs->backing_hd->encrypted) {
2586 ret = bdrv_set_key(bs->backing_hd, key);
2587 if (ret < 0)
2588 return ret;
2589 if (!bs->encrypted)
2590 return 0;
2591 }
fd04a2ae
SH
2592 if (!bs->encrypted) {
2593 return -EINVAL;
2594 } else if (!bs->drv || !bs->drv->bdrv_set_key) {
2595 return -ENOMEDIUM;
2596 }
c0f4ce77 2597 ret = bs->drv->bdrv_set_key(bs, key);
bb5fc20f
AL
2598 if (ret < 0) {
2599 bs->valid_key = 0;
2600 } else if (!bs->valid_key) {
2601 bs->valid_key = 1;
2602 /* call the change callback now, we skipped it on open */
7d4b4ba5 2603 bdrv_dev_change_media_cb(bs, true);
bb5fc20f 2604 }
c0f4ce77 2605 return ret;
ea2384d3
FB
2606}
2607
f8d6bba1 2608const char *bdrv_get_format_name(BlockDriverState *bs)
ea2384d3 2609{
f8d6bba1 2610 return bs->drv ? bs->drv->format_name : NULL;
ea2384d3
FB
2611}
2612
5fafdf24 2613void bdrv_iterate_format(void (*it)(void *opaque, const char *name),
ea2384d3
FB
2614 void *opaque)
2615{
2616 BlockDriver *drv;
2617
8a22f02a 2618 QLIST_FOREACH(drv, &bdrv_drivers, list) {
ea2384d3
FB
2619 it(opaque, drv->format_name);
2620 }
2621}
2622
b338082b
FB
2623BlockDriverState *bdrv_find(const char *name)
2624{
2625 BlockDriverState *bs;
2626
1b7bdbc1
SH
2627 QTAILQ_FOREACH(bs, &bdrv_states, list) {
2628 if (!strcmp(name, bs->device_name)) {
b338082b 2629 return bs;
1b7bdbc1 2630 }
b338082b
FB
2631 }
2632 return NULL;
2633}
2634
2f399b0a
MA
2635BlockDriverState *bdrv_next(BlockDriverState *bs)
2636{
2637 if (!bs) {
2638 return QTAILQ_FIRST(&bdrv_states);
2639 }
2640 return QTAILQ_NEXT(bs, list);
2641}
2642
51de9760 2643void bdrv_iterate(void (*it)(void *opaque, BlockDriverState *bs), void *opaque)
81d0912d
FB
2644{
2645 BlockDriverState *bs;
2646
1b7bdbc1 2647 QTAILQ_FOREACH(bs, &bdrv_states, list) {
51de9760 2648 it(opaque, bs);
81d0912d
FB
2649 }
2650}
2651
ea2384d3
FB
2652const char *bdrv_get_device_name(BlockDriverState *bs)
2653{
2654 return bs->device_name;
2655}
2656
c8433287
MA
2657int bdrv_get_flags(BlockDriverState *bs)
2658{
2659 return bs->open_flags;
2660}
2661
c6ca28d6
AL
2662void bdrv_flush_all(void)
2663{
2664 BlockDriverState *bs;
2665
1b7bdbc1 2666 QTAILQ_FOREACH(bs, &bdrv_states, list) {
29cdb251 2667 bdrv_flush(bs);
1b7bdbc1 2668 }
c6ca28d6
AL
2669}
2670
f2feebbd
KW
2671int bdrv_has_zero_init(BlockDriverState *bs)
2672{
2673 assert(bs->drv);
2674
336c1c12
KW
2675 if (bs->drv->bdrv_has_zero_init) {
2676 return bs->drv->bdrv_has_zero_init(bs);
f2feebbd
KW
2677 }
2678
2679 return 1;
2680}
2681
376ae3f1
SH
2682typedef struct BdrvCoIsAllocatedData {
2683 BlockDriverState *bs;
b35b2bba 2684 BlockDriverState *base;
376ae3f1
SH
2685 int64_t sector_num;
2686 int nb_sectors;
2687 int *pnum;
2688 int ret;
2689 bool done;
2690} BdrvCoIsAllocatedData;
2691
f58c7b35
TS
2692/*
2693 * Returns true iff the specified sector is present in the disk image. Drivers
2694 * not implementing the functionality are assumed to not support backing files,
2695 * hence all their sectors are reported as allocated.
2696 *
bd9533e3
SH
2697 * If 'sector_num' is beyond the end of the disk image the return value is 0
2698 * and 'pnum' is set to 0.
2699 *
f58c7b35
TS
2700 * 'pnum' is set to the number of sectors (including and immediately following
2701 * the specified sector) that are known to be in the same
2702 * allocated/unallocated state.
2703 *
bd9533e3
SH
2704 * 'nb_sectors' is the max value 'pnum' should be set to. If nb_sectors goes
2705 * beyond the end of the disk image it will be clamped.
f58c7b35 2706 */
060f51c9
SH
2707int coroutine_fn bdrv_co_is_allocated(BlockDriverState *bs, int64_t sector_num,
2708 int nb_sectors, int *pnum)
f58c7b35 2709{
bd9533e3
SH
2710 int64_t n;
2711
2712 if (sector_num >= bs->total_sectors) {
2713 *pnum = 0;
2714 return 0;
2715 }
2716
2717 n = bs->total_sectors - sector_num;
2718 if (n < nb_sectors) {
2719 nb_sectors = n;
2720 }
2721
6aebab14 2722 if (!bs->drv->bdrv_co_is_allocated) {
bd9533e3 2723 *pnum = nb_sectors;
f58c7b35
TS
2724 return 1;
2725 }
6aebab14 2726
060f51c9
SH
2727 return bs->drv->bdrv_co_is_allocated(bs, sector_num, nb_sectors, pnum);
2728}
2729
2730/* Coroutine wrapper for bdrv_is_allocated() */
2731static void coroutine_fn bdrv_is_allocated_co_entry(void *opaque)
2732{
2733 BdrvCoIsAllocatedData *data = opaque;
2734 BlockDriverState *bs = data->bs;
2735
2736 data->ret = bdrv_co_is_allocated(bs, data->sector_num, data->nb_sectors,
2737 data->pnum);
2738 data->done = true;
2739}
2740
2741/*
2742 * Synchronous wrapper around bdrv_co_is_allocated().
2743 *
2744 * See bdrv_co_is_allocated() for details.
2745 */
2746int bdrv_is_allocated(BlockDriverState *bs, int64_t sector_num, int nb_sectors,
2747 int *pnum)
2748{
6aebab14
SH
2749 Coroutine *co;
2750 BdrvCoIsAllocatedData data = {
2751 .bs = bs,
2752 .sector_num = sector_num,
2753 .nb_sectors = nb_sectors,
2754 .pnum = pnum,
2755 .done = false,
2756 };
2757
2758 co = qemu_coroutine_create(bdrv_is_allocated_co_entry);
2759 qemu_coroutine_enter(co, &data);
2760 while (!data.done) {
2761 qemu_aio_wait();
2762 }
2763 return data.ret;
f58c7b35
TS
2764}
2765
188a7bbf
PB
2766/*
2767 * Given an image chain: ... -> [BASE] -> [INTER1] -> [INTER2] -> [TOP]
2768 *
2769 * Return true if the given sector is allocated in any image between
2770 * BASE and TOP (inclusive). BASE can be NULL to check if the given
2771 * sector is allocated in any image of the chain. Return false otherwise.
2772 *
2773 * 'pnum' is set to the number of sectors (including and immediately following
2774 * the specified sector) that are known to be in the same
2775 * allocated/unallocated state.
2776 *
2777 */
2778int coroutine_fn bdrv_co_is_allocated_above(BlockDriverState *top,
2779 BlockDriverState *base,
2780 int64_t sector_num,
2781 int nb_sectors, int *pnum)
2782{
2783 BlockDriverState *intermediate;
2784 int ret, n = nb_sectors;
2785
2786 intermediate = top;
2787 while (intermediate && intermediate != base) {
2788 int pnum_inter;
2789 ret = bdrv_co_is_allocated(intermediate, sector_num, nb_sectors,
2790 &pnum_inter);
2791 if (ret < 0) {
2792 return ret;
2793 } else if (ret) {
2794 *pnum = pnum_inter;
2795 return 1;
2796 }
2797
2798 /*
2799 * [sector_num, nb_sectors] is unallocated on top but intermediate
2800 * might have
2801 *
2802 * [sector_num+x, nr_sectors] allocated.
2803 */
63ba17d3
VI
2804 if (n > pnum_inter &&
2805 (intermediate == top ||
2806 sector_num + pnum_inter < intermediate->total_sectors)) {
188a7bbf
PB
2807 n = pnum_inter;
2808 }
2809
2810 intermediate = intermediate->backing_hd;
2811 }
2812
2813 *pnum = n;
2814 return 0;
2815}
2816
b35b2bba
MR
2817/* Coroutine wrapper for bdrv_is_allocated_above() */
2818static void coroutine_fn bdrv_is_allocated_above_co_entry(void *opaque)
2819{
2820 BdrvCoIsAllocatedData *data = opaque;
2821 BlockDriverState *top = data->bs;
2822 BlockDriverState *base = data->base;
2823
2824 data->ret = bdrv_co_is_allocated_above(top, base, data->sector_num,
2825 data->nb_sectors, data->pnum);
2826 data->done = true;
2827}
2828
2829/*
2830 * Synchronous wrapper around bdrv_co_is_allocated_above().
2831 *
2832 * See bdrv_co_is_allocated_above() for details.
2833 */
2834int bdrv_is_allocated_above(BlockDriverState *top, BlockDriverState *base,
2835 int64_t sector_num, int nb_sectors, int *pnum)
2836{
2837 Coroutine *co;
2838 BdrvCoIsAllocatedData data = {
2839 .bs = top,
2840 .base = base,
2841 .sector_num = sector_num,
2842 .nb_sectors = nb_sectors,
2843 .pnum = pnum,
2844 .done = false,
2845 };
2846
2847 co = qemu_coroutine_create(bdrv_is_allocated_above_co_entry);
2848 qemu_coroutine_enter(co, &data);
2849 while (!data.done) {
2850 qemu_aio_wait();
2851 }
2852 return data.ret;
2853}
2854
ac84adac 2855BlockInfo *bdrv_query_info(BlockDriverState *bs)
b338082b 2856{
ac84adac
PB
2857 BlockInfo *info = g_malloc0(sizeof(*info));
2858 info->device = g_strdup(bs->device_name);
2859 info->type = g_strdup("unknown");
2860 info->locked = bdrv_dev_is_medium_locked(bs);
2861 info->removable = bdrv_dev_has_removable_media(bs);
b338082b 2862
ac84adac
PB
2863 if (bdrv_dev_has_removable_media(bs)) {
2864 info->has_tray_open = true;
2865 info->tray_open = bdrv_dev_is_tray_open(bs);
2866 }
d15e5465 2867
ac84adac
PB
2868 if (bdrv_iostatus_is_enabled(bs)) {
2869 info->has_io_status = true;
2870 info->io_status = bs->iostatus;
2871 }
d15e5465 2872
b9a9b3a4
PB
2873 if (bs->dirty_bitmap) {
2874 info->has_dirty = true;
2875 info->dirty = g_malloc0(sizeof(*info->dirty));
acc906c6 2876 info->dirty->count = bdrv_get_dirty_count(bs) * BDRV_SECTOR_SIZE;
50717e94
PB
2877 info->dirty->granularity =
2878 ((int64_t) BDRV_SECTOR_SIZE << hbitmap_granularity(bs->dirty_bitmap));
b9a9b3a4 2879 }
d15e5465 2880
ac84adac
PB
2881 if (bs->drv) {
2882 info->has_inserted = true;
2883 info->inserted = g_malloc0(sizeof(*info->inserted));
2884 info->inserted->file = g_strdup(bs->filename);
2885 info->inserted->ro = bs->read_only;
2886 info->inserted->drv = g_strdup(bs->drv->format_name);
2887 info->inserted->encrypted = bs->encrypted;
2888 info->inserted->encryption_key_missing = bdrv_key_required(bs);
2889
2890 if (bs->backing_file[0]) {
2891 info->inserted->has_backing_file = true;
2892 info->inserted->backing_file = g_strdup(bs->backing_file);
e4def80b 2893 }
f04ef601 2894
ac84adac
PB
2895 info->inserted->backing_file_depth = bdrv_get_backing_file_depth(bs);
2896
2897 if (bs->io_limits_enabled) {
2898 info->inserted->bps =
2899 bs->io_limits.bps[BLOCK_IO_LIMIT_TOTAL];
2900 info->inserted->bps_rd =
2901 bs->io_limits.bps[BLOCK_IO_LIMIT_READ];
2902 info->inserted->bps_wr =
2903 bs->io_limits.bps[BLOCK_IO_LIMIT_WRITE];
2904 info->inserted->iops =
2905 bs->io_limits.iops[BLOCK_IO_LIMIT_TOTAL];
2906 info->inserted->iops_rd =
2907 bs->io_limits.iops[BLOCK_IO_LIMIT_READ];
2908 info->inserted->iops_wr =
2909 bs->io_limits.iops[BLOCK_IO_LIMIT_WRITE];
f04ef601 2910 }
ac84adac
PB
2911 }
2912 return info;
2913}
f04ef601 2914
ac84adac
PB
2915BlockInfoList *qmp_query_block(Error **errp)
2916{
2917 BlockInfoList *head = NULL, **p_next = &head;
2918 BlockDriverState *bs;
727f005e 2919
ac84adac
PB
2920 QTAILQ_FOREACH(bs, &bdrv_states, list) {
2921 BlockInfoList *info = g_malloc0(sizeof(*info));
2922 info->value = bdrv_query_info(bs);
d15e5465 2923
ac84adac
PB
2924 *p_next = info;
2925 p_next = &info->next;
b338082b 2926 }
d15e5465 2927
b2023818 2928 return head;
b338082b 2929}
a36e69dd 2930
9887b616 2931BlockStats *bdrv_query_stats(const BlockDriverState *bs)
f11f57e4
LC
2932{
2933 BlockStats *s;
2934
2935 s = g_malloc0(sizeof(*s));
2936
2937 if (bs->device_name[0]) {
2938 s->has_device = true;
2939 s->device = g_strdup(bs->device_name);
294cc35f
KW
2940 }
2941
f11f57e4
LC
2942 s->stats = g_malloc0(sizeof(*s->stats));
2943 s->stats->rd_bytes = bs->nr_bytes[BDRV_ACCT_READ];
2944 s->stats->wr_bytes = bs->nr_bytes[BDRV_ACCT_WRITE];
2945 s->stats->rd_operations = bs->nr_ops[BDRV_ACCT_READ];
2946 s->stats->wr_operations = bs->nr_ops[BDRV_ACCT_WRITE];
2947 s->stats->wr_highest_offset = bs->wr_highest_sector * BDRV_SECTOR_SIZE;
2948 s->stats->flush_operations = bs->nr_ops[BDRV_ACCT_FLUSH];
2949 s->stats->wr_total_time_ns = bs->total_time_ns[BDRV_ACCT_WRITE];
2950 s->stats->rd_total_time_ns = bs->total_time_ns[BDRV_ACCT_READ];
2951 s->stats->flush_total_time_ns = bs->total_time_ns[BDRV_ACCT_FLUSH];
2952
294cc35f 2953 if (bs->file) {
f11f57e4 2954 s->has_parent = true;
9887b616 2955 s->parent = bdrv_query_stats(bs->file);
294cc35f
KW
2956 }
2957
f11f57e4 2958 return s;
294cc35f
KW
2959}
2960
f11f57e4 2961BlockStatsList *qmp_query_blockstats(Error **errp)
218a536a 2962{
9887b616 2963 BlockStatsList *head = NULL, **p_next = &head;
a36e69dd
TS
2964 BlockDriverState *bs;
2965
1b7bdbc1 2966 QTAILQ_FOREACH(bs, &bdrv_states, list) {
f11f57e4 2967 BlockStatsList *info = g_malloc0(sizeof(*info));
9887b616 2968 info->value = bdrv_query_stats(bs);
f11f57e4 2969
9887b616
PB
2970 *p_next = info;
2971 p_next = &info->next;
a36e69dd 2972 }
218a536a 2973
f11f57e4 2974 return head;
a36e69dd 2975}
ea2384d3 2976
045df330
AL
2977const char *bdrv_get_encrypted_filename(BlockDriverState *bs)
2978{
2979 if (bs->backing_hd && bs->backing_hd->encrypted)
2980 return bs->backing_file;
2981 else if (bs->encrypted)
2982 return bs->filename;
2983 else
2984 return NULL;
2985}
2986
5fafdf24 2987void bdrv_get_backing_filename(BlockDriverState *bs,
83f64091
FB
2988 char *filename, int filename_size)
2989{
3574c608 2990 pstrcpy(filename, filename_size, bs->backing_file);
83f64091
FB
2991}
2992
5fafdf24 2993int bdrv_write_compressed(BlockDriverState *bs, int64_t sector_num,
faea38e7
FB
2994 const uint8_t *buf, int nb_sectors)
2995{
2996 BlockDriver *drv = bs->drv;
2997 if (!drv)
19cb3738 2998 return -ENOMEDIUM;
faea38e7
FB
2999 if (!drv->bdrv_write_compressed)
3000 return -ENOTSUP;
fbb7b4e0
KW
3001 if (bdrv_check_request(bs, sector_num, nb_sectors))
3002 return -EIO;
a55eb92c 3003
1755da16 3004 assert(!bs->dirty_bitmap);
a55eb92c 3005
faea38e7
FB
3006 return drv->bdrv_write_compressed(bs, sector_num, buf, nb_sectors);
3007}
3b46e624 3008
faea38e7
FB
3009int bdrv_get_info(BlockDriverState *bs, BlockDriverInfo *bdi)
3010{
3011 BlockDriver *drv = bs->drv;
3012 if (!drv)
19cb3738 3013 return -ENOMEDIUM;
faea38e7
FB
3014 if (!drv->bdrv_get_info)
3015 return -ENOTSUP;
3016 memset(bdi, 0, sizeof(*bdi));
3017 return drv->bdrv_get_info(bs, bdi);
3018}
3019
45566e9c
CH
3020int bdrv_save_vmstate(BlockDriverState *bs, const uint8_t *buf,
3021 int64_t pos, int size)
178e08a5
AL
3022{
3023 BlockDriver *drv = bs->drv;
3024 if (!drv)
3025 return -ENOMEDIUM;
7cdb1f6d
MK
3026 if (drv->bdrv_save_vmstate)
3027 return drv->bdrv_save_vmstate(bs, buf, pos, size);
3028 if (bs->file)
3029 return bdrv_save_vmstate(bs->file, buf, pos, size);
3030 return -ENOTSUP;
178e08a5
AL
3031}
3032
45566e9c
CH
3033int bdrv_load_vmstate(BlockDriverState *bs, uint8_t *buf,
3034 int64_t pos, int size)
178e08a5
AL
3035{
3036 BlockDriver *drv = bs->drv;
3037 if (!drv)
3038 return -ENOMEDIUM;
7cdb1f6d
MK
3039 if (drv->bdrv_load_vmstate)
3040 return drv->bdrv_load_vmstate(bs, buf, pos, size);
3041 if (bs->file)
3042 return bdrv_load_vmstate(bs->file, buf, pos, size);
3043 return -ENOTSUP;
178e08a5
AL
3044}
3045
8b9b0cc2
KW
3046void bdrv_debug_event(BlockDriverState *bs, BlkDebugEvent event)
3047{
3048 BlockDriver *drv = bs->drv;
3049
3050 if (!drv || !drv->bdrv_debug_event) {
3051 return;
3052 }
3053
0ed8b6f6 3054 drv->bdrv_debug_event(bs, event);
41c695c7
KW
3055}
3056
3057int bdrv_debug_breakpoint(BlockDriverState *bs, const char *event,
3058 const char *tag)
3059{
3060 while (bs && bs->drv && !bs->drv->bdrv_debug_breakpoint) {
3061 bs = bs->file;
3062 }
3063
3064 if (bs && bs->drv && bs->drv->bdrv_debug_breakpoint) {
3065 return bs->drv->bdrv_debug_breakpoint(bs, event, tag);
3066 }
3067
3068 return -ENOTSUP;
3069}
3070
3071int bdrv_debug_resume(BlockDriverState *bs, const char *tag)
3072{
3073 while (bs && bs->drv && !bs->drv->bdrv_debug_resume) {
3074 bs = bs->file;
3075 }
8b9b0cc2 3076
41c695c7
KW
3077 if (bs && bs->drv && bs->drv->bdrv_debug_resume) {
3078 return bs->drv->bdrv_debug_resume(bs, tag);
3079 }
3080
3081 return -ENOTSUP;
3082}
3083
3084bool bdrv_debug_is_suspended(BlockDriverState *bs, const char *tag)
3085{
3086 while (bs && bs->drv && !bs->drv->bdrv_debug_is_suspended) {
3087 bs = bs->file;
3088 }
3089
3090 if (bs && bs->drv && bs->drv->bdrv_debug_is_suspended) {
3091 return bs->drv->bdrv_debug_is_suspended(bs, tag);
3092 }
3093
3094 return false;
8b9b0cc2
KW
3095}
3096
faea38e7
FB
3097/**************************************************************/
3098/* handling of snapshots */
3099
feeee5ac
MDCF
3100int bdrv_can_snapshot(BlockDriverState *bs)
3101{
3102 BlockDriver *drv = bs->drv;
07b70bfb 3103 if (!drv || !bdrv_is_inserted(bs) || bdrv_is_read_only(bs)) {
feeee5ac
MDCF
3104 return 0;
3105 }
3106
3107 if (!drv->bdrv_snapshot_create) {
3108 if (bs->file != NULL) {
3109 return bdrv_can_snapshot(bs->file);
3110 }
3111 return 0;
3112 }
3113
3114 return 1;
3115}
3116
199630b6
BS
3117int bdrv_is_snapshot(BlockDriverState *bs)
3118{
3119 return !!(bs->open_flags & BDRV_O_SNAPSHOT);
3120}
3121
f9092b10
MA
3122BlockDriverState *bdrv_snapshots(void)
3123{
3124 BlockDriverState *bs;
3125
3ac906f7 3126 if (bs_snapshots) {
f9092b10 3127 return bs_snapshots;
3ac906f7 3128 }
f9092b10
MA
3129
3130 bs = NULL;
3131 while ((bs = bdrv_next(bs))) {
3132 if (bdrv_can_snapshot(bs)) {
3ac906f7
MA
3133 bs_snapshots = bs;
3134 return bs;
f9092b10
MA
3135 }
3136 }
3137 return NULL;
f9092b10
MA
3138}
3139
5fafdf24 3140int bdrv_snapshot_create(BlockDriverState *bs,
faea38e7
FB
3141 QEMUSnapshotInfo *sn_info)
3142{
3143 BlockDriver *drv = bs->drv;
3144 if (!drv)
19cb3738 3145 return -ENOMEDIUM;
7cdb1f6d
MK
3146 if (drv->bdrv_snapshot_create)
3147 return drv->bdrv_snapshot_create(bs, sn_info);
3148 if (bs->file)
3149 return bdrv_snapshot_create(bs->file, sn_info);
3150 return -ENOTSUP;
faea38e7
FB
3151}
3152
5fafdf24 3153int bdrv_snapshot_goto(BlockDriverState *bs,
faea38e7
FB
3154 const char *snapshot_id)
3155{
3156 BlockDriver *drv = bs->drv;
7cdb1f6d
MK
3157 int ret, open_ret;
3158
faea38e7 3159 if (!drv)
19cb3738 3160 return -ENOMEDIUM;
7cdb1f6d
MK
3161 if (drv->bdrv_snapshot_goto)
3162 return drv->bdrv_snapshot_goto(bs, snapshot_id);
3163
3164 if (bs->file) {
3165 drv->bdrv_close(bs);
3166 ret = bdrv_snapshot_goto(bs->file, snapshot_id);
3167 open_ret = drv->bdrv_open(bs, bs->open_flags);
3168 if (open_ret < 0) {
3169 bdrv_delete(bs->file);
3170 bs->drv = NULL;
3171 return open_ret;
3172 }
3173 return ret;
3174 }
3175
3176 return -ENOTSUP;
faea38e7
FB
3177}
3178
3179int bdrv_snapshot_delete(BlockDriverState *bs, const char *snapshot_id)
3180{
3181 BlockDriver *drv = bs->drv;
3182 if (!drv)
19cb3738 3183 return -ENOMEDIUM;
7cdb1f6d
MK
3184 if (drv->bdrv_snapshot_delete)
3185 return drv->bdrv_snapshot_delete(bs, snapshot_id);
3186 if (bs->file)
3187 return bdrv_snapshot_delete(bs->file, snapshot_id);
3188 return -ENOTSUP;
faea38e7
FB
3189}
3190
5fafdf24 3191int bdrv_snapshot_list(BlockDriverState *bs,
faea38e7
FB
3192 QEMUSnapshotInfo **psn_info)
3193{
3194 BlockDriver *drv = bs->drv;
3195 if (!drv)
19cb3738 3196 return -ENOMEDIUM;
7cdb1f6d
MK
3197 if (drv->bdrv_snapshot_list)
3198 return drv->bdrv_snapshot_list(bs, psn_info);
3199 if (bs->file)
3200 return bdrv_snapshot_list(bs->file, psn_info);
3201 return -ENOTSUP;
faea38e7
FB
3202}
3203
51ef6727 3204int bdrv_snapshot_load_tmp(BlockDriverState *bs,
3205 const char *snapshot_name)
3206{
3207 BlockDriver *drv = bs->drv;
3208 if (!drv) {
3209 return -ENOMEDIUM;
3210 }
3211 if (!bs->read_only) {
3212 return -EINVAL;
3213 }
3214 if (drv->bdrv_snapshot_load_tmp) {
3215 return drv->bdrv_snapshot_load_tmp(bs, snapshot_name);
3216 }
3217 return -ENOTSUP;
3218}
3219
b1b1d783
JC
3220/* backing_file can either be relative, or absolute, or a protocol. If it is
3221 * relative, it must be relative to the chain. So, passing in bs->filename
3222 * from a BDS as backing_file should not be done, as that may be relative to
3223 * the CWD rather than the chain. */
e8a6bb9c
MT
3224BlockDriverState *bdrv_find_backing_image(BlockDriverState *bs,
3225 const char *backing_file)
3226{
b1b1d783
JC
3227 char *filename_full = NULL;
3228 char *backing_file_full = NULL;
3229 char *filename_tmp = NULL;
3230 int is_protocol = 0;
3231 BlockDriverState *curr_bs = NULL;
3232 BlockDriverState *retval = NULL;
3233
3234 if (!bs || !bs->drv || !backing_file) {
e8a6bb9c
MT
3235 return NULL;
3236 }
3237
b1b1d783
JC
3238 filename_full = g_malloc(PATH_MAX);
3239 backing_file_full = g_malloc(PATH_MAX);
3240 filename_tmp = g_malloc(PATH_MAX);
3241
3242 is_protocol = path_has_protocol(backing_file);
3243
3244 for (curr_bs = bs; curr_bs->backing_hd; curr_bs = curr_bs->backing_hd) {
3245
3246 /* If either of the filename paths is actually a protocol, then
3247 * compare unmodified paths; otherwise make paths relative */
3248 if (is_protocol || path_has_protocol(curr_bs->backing_file)) {
3249 if (strcmp(backing_file, curr_bs->backing_file) == 0) {
3250 retval = curr_bs->backing_hd;
3251 break;
3252 }
e8a6bb9c 3253 } else {
b1b1d783
JC
3254 /* If not an absolute filename path, make it relative to the current
3255 * image's filename path */
3256 path_combine(filename_tmp, PATH_MAX, curr_bs->filename,
3257 backing_file);
3258
3259 /* We are going to compare absolute pathnames */
3260 if (!realpath(filename_tmp, filename_full)) {
3261 continue;
3262 }
3263
3264 /* We need to make sure the backing filename we are comparing against
3265 * is relative to the current image filename (or absolute) */
3266 path_combine(filename_tmp, PATH_MAX, curr_bs->filename,
3267 curr_bs->backing_file);
3268
3269 if (!realpath(filename_tmp, backing_file_full)) {
3270 continue;
3271 }
3272
3273 if (strcmp(backing_file_full, filename_full) == 0) {
3274 retval = curr_bs->backing_hd;
3275 break;
3276 }
e8a6bb9c
MT
3277 }
3278 }
3279
b1b1d783
JC
3280 g_free(filename_full);
3281 g_free(backing_file_full);
3282 g_free(filename_tmp);
3283 return retval;
e8a6bb9c
MT
3284}
3285
f198fd1c
BC
3286int bdrv_get_backing_file_depth(BlockDriverState *bs)
3287{
3288 if (!bs->drv) {
3289 return 0;
3290 }
3291
3292 if (!bs->backing_hd) {
3293 return 0;
3294 }
3295
3296 return 1 + bdrv_get_backing_file_depth(bs->backing_hd);
3297}
3298
79fac568
JC
3299BlockDriverState *bdrv_find_base(BlockDriverState *bs)
3300{
3301 BlockDriverState *curr_bs = NULL;
3302
3303 if (!bs) {
3304 return NULL;
3305 }
3306
3307 curr_bs = bs;
3308
3309 while (curr_bs->backing_hd) {
3310 curr_bs = curr_bs->backing_hd;
3311 }
3312 return curr_bs;
3313}
3314
faea38e7
FB
3315#define NB_SUFFIXES 4
3316
3317char *get_human_readable_size(char *buf, int buf_size, int64_t size)
3318{
3319 static const char suffixes[NB_SUFFIXES] = "KMGT";
3320 int64_t base;
3321 int i;
3322
3323 if (size <= 999) {
3324 snprintf(buf, buf_size, "%" PRId64, size);
3325 } else {
3326 base = 1024;
3327 for(i = 0; i < NB_SUFFIXES; i++) {
3328 if (size < (10 * base)) {
5fafdf24 3329 snprintf(buf, buf_size, "%0.1f%c",
faea38e7
FB
3330 (double)size / base,
3331 suffixes[i]);
3332 break;
3333 } else if (size < (1000 * base) || i == (NB_SUFFIXES - 1)) {
5fafdf24 3334 snprintf(buf, buf_size, "%" PRId64 "%c",
faea38e7
FB
3335 ((size + (base >> 1)) / base),
3336 suffixes[i]);
3337 break;
3338 }
3339 base = base * 1024;
3340 }
3341 }
3342 return buf;
3343}
3344
3345char *bdrv_snapshot_dump(char *buf, int buf_size, QEMUSnapshotInfo *sn)
3346{
3347 char buf1[128], date_buf[128], clock_buf[128];
3348 struct tm tm;
3349 time_t ti;
3350 int64_t secs;
3351
3352 if (!sn) {
5fafdf24
TS
3353 snprintf(buf, buf_size,
3354 "%-10s%-20s%7s%20s%15s",
faea38e7
FB
3355 "ID", "TAG", "VM SIZE", "DATE", "VM CLOCK");
3356 } else {
3357 ti = sn->date_sec;
3358 localtime_r(&ti, &tm);
3359 strftime(date_buf, sizeof(date_buf),
3360 "%Y-%m-%d %H:%M:%S", &tm);
3361 secs = sn->vm_clock_nsec / 1000000000;
3362 snprintf(clock_buf, sizeof(clock_buf),
3363 "%02d:%02d:%02d.%03d",
3364 (int)(secs / 3600),
3365 (int)((secs / 60) % 60),
5fafdf24 3366 (int)(secs % 60),
faea38e7
FB
3367 (int)((sn->vm_clock_nsec / 1000000) % 1000));
3368 snprintf(buf, buf_size,
5fafdf24 3369 "%-10s%-20s%7s%20s%15s",
faea38e7
FB
3370 sn->id_str, sn->name,
3371 get_human_readable_size(buf1, sizeof(buf1), sn->vm_state_size),
3372 date_buf,
3373 clock_buf);
3374 }
3375 return buf;
3376}
3377
ea2384d3 3378/**************************************************************/
83f64091 3379/* async I/Os */
ea2384d3 3380
3b69e4b9 3381BlockDriverAIOCB *bdrv_aio_readv(BlockDriverState *bs, int64_t sector_num,
f141eafe 3382 QEMUIOVector *qiov, int nb_sectors,
3b69e4b9 3383 BlockDriverCompletionFunc *cb, void *opaque)
83f64091 3384{
bbf0a440
SH
3385 trace_bdrv_aio_readv(bs, sector_num, nb_sectors, opaque);
3386
b2a61371 3387 return bdrv_co_aio_rw_vector(bs, sector_num, qiov, nb_sectors,
8c5873d6 3388 cb, opaque, false);
ea2384d3
FB
3389}
3390
f141eafe
AL
3391BlockDriverAIOCB *bdrv_aio_writev(BlockDriverState *bs, int64_t sector_num,
3392 QEMUIOVector *qiov, int nb_sectors,
3393 BlockDriverCompletionFunc *cb, void *opaque)
ea2384d3 3394{
bbf0a440
SH
3395 trace_bdrv_aio_writev(bs, sector_num, nb_sectors, opaque);
3396
1a6e115b 3397 return bdrv_co_aio_rw_vector(bs, sector_num, qiov, nb_sectors,
8c5873d6 3398 cb, opaque, true);
83f64091
FB
3399}
3400
40b4f539
KW
3401
3402typedef struct MultiwriteCB {
3403 int error;
3404 int num_requests;
3405 int num_callbacks;
3406 struct {
3407 BlockDriverCompletionFunc *cb;
3408 void *opaque;
3409 QEMUIOVector *free_qiov;
40b4f539
KW
3410 } callbacks[];
3411} MultiwriteCB;
3412
3413static void multiwrite_user_cb(MultiwriteCB *mcb)
3414{
3415 int i;
3416
3417 for (i = 0; i < mcb->num_callbacks; i++) {
3418 mcb->callbacks[i].cb(mcb->callbacks[i].opaque, mcb->error);
1e1ea48d
SH
3419 if (mcb->callbacks[i].free_qiov) {
3420 qemu_iovec_destroy(mcb->callbacks[i].free_qiov);
3421 }
7267c094 3422 g_free(mcb->callbacks[i].free_qiov);
40b4f539
KW
3423 }
3424}
3425
3426static void multiwrite_cb(void *opaque, int ret)
3427{
3428 MultiwriteCB *mcb = opaque;
3429
6d519a5f
SH
3430 trace_multiwrite_cb(mcb, ret);
3431
cb6d3ca0 3432 if (ret < 0 && !mcb->error) {
40b4f539 3433 mcb->error = ret;
40b4f539
KW
3434 }
3435
3436 mcb->num_requests--;
3437 if (mcb->num_requests == 0) {
de189a1b 3438 multiwrite_user_cb(mcb);
7267c094 3439 g_free(mcb);
40b4f539
KW
3440 }
3441}
3442
3443static int multiwrite_req_compare(const void *a, const void *b)
3444{
77be4366
CH
3445 const BlockRequest *req1 = a, *req2 = b;
3446
3447 /*
3448 * Note that we can't simply subtract req2->sector from req1->sector
3449 * here as that could overflow the return value.
3450 */
3451 if (req1->sector > req2->sector) {
3452 return 1;
3453 } else if (req1->sector < req2->sector) {
3454 return -1;
3455 } else {
3456 return 0;
3457 }
40b4f539
KW
3458}
3459
3460/*
3461 * Takes a bunch of requests and tries to merge them. Returns the number of
3462 * requests that remain after merging.
3463 */
3464static int multiwrite_merge(BlockDriverState *bs, BlockRequest *reqs,
3465 int num_reqs, MultiwriteCB *mcb)
3466{
3467 int i, outidx;
3468
3469 // Sort requests by start sector
3470 qsort(reqs, num_reqs, sizeof(*reqs), &multiwrite_req_compare);
3471
3472 // Check if adjacent requests touch the same clusters. If so, combine them,
3473 // filling up gaps with zero sectors.
3474 outidx = 0;
3475 for (i = 1; i < num_reqs; i++) {
3476 int merge = 0;
3477 int64_t oldreq_last = reqs[outidx].sector + reqs[outidx].nb_sectors;
3478
b6a127a1 3479 // Handle exactly sequential writes and overlapping writes.
40b4f539
KW
3480 if (reqs[i].sector <= oldreq_last) {
3481 merge = 1;
3482 }
3483
e2a305fb
CH
3484 if (reqs[outidx].qiov->niov + reqs[i].qiov->niov + 1 > IOV_MAX) {
3485 merge = 0;
3486 }
3487
40b4f539
KW
3488 if (merge) {
3489 size_t size;
7267c094 3490 QEMUIOVector *qiov = g_malloc0(sizeof(*qiov));
40b4f539
KW
3491 qemu_iovec_init(qiov,
3492 reqs[outidx].qiov->niov + reqs[i].qiov->niov + 1);
3493
3494 // Add the first request to the merged one. If the requests are
3495 // overlapping, drop the last sectors of the first request.
3496 size = (reqs[i].sector - reqs[outidx].sector) << 9;
1b093c48 3497 qemu_iovec_concat(qiov, reqs[outidx].qiov, 0, size);
40b4f539 3498
b6a127a1
PB
3499 // We should need to add any zeros between the two requests
3500 assert (reqs[i].sector <= oldreq_last);
40b4f539
KW
3501
3502 // Add the second request
1b093c48 3503 qemu_iovec_concat(qiov, reqs[i].qiov, 0, reqs[i].qiov->size);
40b4f539 3504
cbf1dff2 3505 reqs[outidx].nb_sectors = qiov->size >> 9;
40b4f539
KW
3506 reqs[outidx].qiov = qiov;
3507
3508 mcb->callbacks[i].free_qiov = reqs[outidx].qiov;
3509 } else {
3510 outidx++;
3511 reqs[outidx].sector = reqs[i].sector;
3512 reqs[outidx].nb_sectors = reqs[i].nb_sectors;
3513 reqs[outidx].qiov = reqs[i].qiov;
3514 }
3515 }
3516
3517 return outidx + 1;
3518}
3519
3520/*
3521 * Submit multiple AIO write requests at once.
3522 *
3523 * On success, the function returns 0 and all requests in the reqs array have
3524 * been submitted. In error case this function returns -1, and any of the
3525 * requests may or may not be submitted yet. In particular, this means that the
3526 * callback will be called for some of the requests, for others it won't. The
3527 * caller must check the error field of the BlockRequest to wait for the right
3528 * callbacks (if error != 0, no callback will be called).
3529 *
3530 * The implementation may modify the contents of the reqs array, e.g. to merge
3531 * requests. However, the fields opaque and error are left unmodified as they
3532 * are used to signal failure for a single request to the caller.
3533 */
3534int bdrv_aio_multiwrite(BlockDriverState *bs, BlockRequest *reqs, int num_reqs)
3535{
40b4f539
KW
3536 MultiwriteCB *mcb;
3537 int i;
3538
301db7c2
RH
3539 /* don't submit writes if we don't have a medium */
3540 if (bs->drv == NULL) {
3541 for (i = 0; i < num_reqs; i++) {
3542 reqs[i].error = -ENOMEDIUM;
3543 }
3544 return -1;
3545 }
3546
40b4f539
KW
3547 if (num_reqs == 0) {
3548 return 0;
3549 }
3550
3551 // Create MultiwriteCB structure
7267c094 3552 mcb = g_malloc0(sizeof(*mcb) + num_reqs * sizeof(*mcb->callbacks));
40b4f539
KW
3553 mcb->num_requests = 0;
3554 mcb->num_callbacks = num_reqs;
3555
3556 for (i = 0; i < num_reqs; i++) {
3557 mcb->callbacks[i].cb = reqs[i].cb;
3558 mcb->callbacks[i].opaque = reqs[i].opaque;
3559 }
3560
3561 // Check for mergable requests
3562 num_reqs = multiwrite_merge(bs, reqs, num_reqs, mcb);
3563
6d519a5f
SH
3564 trace_bdrv_aio_multiwrite(mcb, mcb->num_callbacks, num_reqs);
3565
df9309fb
PB
3566 /* Run the aio requests. */
3567 mcb->num_requests = num_reqs;
40b4f539 3568 for (i = 0; i < num_reqs; i++) {
ad54ae80 3569 bdrv_aio_writev(bs, reqs[i].sector, reqs[i].qiov,
40b4f539 3570 reqs[i].nb_sectors, multiwrite_cb, mcb);
40b4f539
KW
3571 }
3572
3573 return 0;
40b4f539
KW
3574}
3575
83f64091 3576void bdrv_aio_cancel(BlockDriverAIOCB *acb)
83f64091 3577{
d7331bed 3578 acb->aiocb_info->cancel(acb);
83f64091
FB
3579}
3580
98f90dba
ZYW
3581/* block I/O throttling */
3582static bool bdrv_exceed_bps_limits(BlockDriverState *bs, int nb_sectors,
3583 bool is_write, double elapsed_time, uint64_t *wait)
3584{
3585 uint64_t bps_limit = 0;
3586 double bytes_limit, bytes_base, bytes_res;
3587 double slice_time, wait_time;
3588
3589 if (bs->io_limits.bps[BLOCK_IO_LIMIT_TOTAL]) {
3590 bps_limit = bs->io_limits.bps[BLOCK_IO_LIMIT_TOTAL];
3591 } else if (bs->io_limits.bps[is_write]) {
3592 bps_limit = bs->io_limits.bps[is_write];
3593 } else {
3594 if (wait) {
3595 *wait = 0;
3596 }
3597
3598 return false;
3599 }
3600
3601 slice_time = bs->slice_end - bs->slice_start;
3602 slice_time /= (NANOSECONDS_PER_SECOND);
3603 bytes_limit = bps_limit * slice_time;
3604 bytes_base = bs->nr_bytes[is_write] - bs->io_base.bytes[is_write];
3605 if (bs->io_limits.bps[BLOCK_IO_LIMIT_TOTAL]) {
3606 bytes_base += bs->nr_bytes[!is_write] - bs->io_base.bytes[!is_write];
3607 }
3608
3609 /* bytes_base: the bytes of data which have been read/written; and
3610 * it is obtained from the history statistic info.
3611 * bytes_res: the remaining bytes of data which need to be read/written.
3612 * (bytes_base + bytes_res) / bps_limit: used to calcuate
3613 * the total time for completing reading/writting all data.
3614 */
3615 bytes_res = (unsigned) nb_sectors * BDRV_SECTOR_SIZE;
3616
3617 if (bytes_base + bytes_res <= bytes_limit) {
3618 if (wait) {
3619 *wait = 0;
3620 }
3621
3622 return false;
3623 }
3624
3625 /* Calc approx time to dispatch */
3626 wait_time = (bytes_base + bytes_res) / bps_limit - elapsed_time;
3627
3628 /* When the I/O rate at runtime exceeds the limits,
3629 * bs->slice_end need to be extended in order that the current statistic
3630 * info can be kept until the timer fire, so it is increased and tuned
3631 * based on the result of experiment.
3632 */
3633 bs->slice_time = wait_time * BLOCK_IO_SLICE_TIME * 10;
3634 bs->slice_end += bs->slice_time - 3 * BLOCK_IO_SLICE_TIME;
3635 if (wait) {
3636 *wait = wait_time * BLOCK_IO_SLICE_TIME * 10;
3637 }
3638
3639 return true;
3640}
3641
3642static bool bdrv_exceed_iops_limits(BlockDriverState *bs, bool is_write,
3643 double elapsed_time, uint64_t *wait)
3644{
3645 uint64_t iops_limit = 0;
3646 double ios_limit, ios_base;
3647 double slice_time, wait_time;
3648
3649 if (bs->io_limits.iops[BLOCK_IO_LIMIT_TOTAL]) {
3650 iops_limit = bs->io_limits.iops[BLOCK_IO_LIMIT_TOTAL];
3651 } else if (bs->io_limits.iops[is_write]) {
3652 iops_limit = bs->io_limits.iops[is_write];
3653 } else {
3654 if (wait) {
3655 *wait = 0;
3656 }
3657
3658 return false;
3659 }
3660
3661 slice_time = bs->slice_end - bs->slice_start;
3662 slice_time /= (NANOSECONDS_PER_SECOND);
3663 ios_limit = iops_limit * slice_time;
3664 ios_base = bs->nr_ops[is_write] - bs->io_base.ios[is_write];
3665 if (bs->io_limits.iops[BLOCK_IO_LIMIT_TOTAL]) {
3666 ios_base += bs->nr_ops[!is_write] - bs->io_base.ios[!is_write];
3667 }
3668
3669 if (ios_base + 1 <= ios_limit) {
3670 if (wait) {
3671 *wait = 0;
3672 }
3673
3674 return false;
3675 }
3676
3677 /* Calc approx time to dispatch */
3678 wait_time = (ios_base + 1) / iops_limit;
3679 if (wait_time > elapsed_time) {
3680 wait_time = wait_time - elapsed_time;
3681 } else {
3682 wait_time = 0;
3683 }
3684
3685 bs->slice_time = wait_time * BLOCK_IO_SLICE_TIME * 10;
3686 bs->slice_end += bs->slice_time - 3 * BLOCK_IO_SLICE_TIME;
3687 if (wait) {
3688 *wait = wait_time * BLOCK_IO_SLICE_TIME * 10;
3689 }
3690
3691 return true;
3692}
3693
3694static bool bdrv_exceed_io_limits(BlockDriverState *bs, int nb_sectors,
3695 bool is_write, int64_t *wait)
3696{
3697 int64_t now, max_wait;
3698 uint64_t bps_wait = 0, iops_wait = 0;
3699 double elapsed_time;
3700 int bps_ret, iops_ret;
3701
3702 now = qemu_get_clock_ns(vm_clock);
3703 if ((bs->slice_start < now)
3704 && (bs->slice_end > now)) {
3705 bs->slice_end = now + bs->slice_time;
3706 } else {
3707 bs->slice_time = 5 * BLOCK_IO_SLICE_TIME;
3708 bs->slice_start = now;
3709 bs->slice_end = now + bs->slice_time;
3710
3711 bs->io_base.bytes[is_write] = bs->nr_bytes[is_write];
3712 bs->io_base.bytes[!is_write] = bs->nr_bytes[!is_write];
3713
3714 bs->io_base.ios[is_write] = bs->nr_ops[is_write];
3715 bs->io_base.ios[!is_write] = bs->nr_ops[!is_write];
3716 }
3717
3718 elapsed_time = now - bs->slice_start;
3719 elapsed_time /= (NANOSECONDS_PER_SECOND);
3720
3721 bps_ret = bdrv_exceed_bps_limits(bs, nb_sectors,
3722 is_write, elapsed_time, &bps_wait);
3723 iops_ret = bdrv_exceed_iops_limits(bs, is_write,
3724 elapsed_time, &iops_wait);
3725 if (bps_ret || iops_ret) {
3726 max_wait = bps_wait > iops_wait ? bps_wait : iops_wait;
3727 if (wait) {
3728 *wait = max_wait;
3729 }
3730
3731 now = qemu_get_clock_ns(vm_clock);
3732 if (bs->slice_end < now + max_wait) {
3733 bs->slice_end = now + max_wait;
3734 }
3735
3736 return true;
3737 }
3738
3739 if (wait) {
3740 *wait = 0;
3741 }
3742
3743 return false;
3744}
ce1a14dc 3745
83f64091
FB
3746/**************************************************************/
3747/* async block device emulation */
3748
c16b5a2c
CH
3749typedef struct BlockDriverAIOCBSync {
3750 BlockDriverAIOCB common;
3751 QEMUBH *bh;
3752 int ret;
3753 /* vector translation state */
3754 QEMUIOVector *qiov;
3755 uint8_t *bounce;
3756 int is_write;
3757} BlockDriverAIOCBSync;
3758
3759static void bdrv_aio_cancel_em(BlockDriverAIOCB *blockacb)
3760{
b666d239
KW
3761 BlockDriverAIOCBSync *acb =
3762 container_of(blockacb, BlockDriverAIOCBSync, common);
6a7ad299 3763 qemu_bh_delete(acb->bh);
36afc451 3764 acb->bh = NULL;
c16b5a2c
CH
3765 qemu_aio_release(acb);
3766}
3767
d7331bed 3768static const AIOCBInfo bdrv_em_aiocb_info = {
c16b5a2c
CH
3769 .aiocb_size = sizeof(BlockDriverAIOCBSync),
3770 .cancel = bdrv_aio_cancel_em,
3771};
3772
ce1a14dc 3773static void bdrv_aio_bh_cb(void *opaque)
83f64091 3774{
ce1a14dc 3775 BlockDriverAIOCBSync *acb = opaque;
f141eafe 3776
f141eafe 3777 if (!acb->is_write)
03396148 3778 qemu_iovec_from_buf(acb->qiov, 0, acb->bounce, acb->qiov->size);
ceb42de8 3779 qemu_vfree(acb->bounce);
ce1a14dc 3780 acb->common.cb(acb->common.opaque, acb->ret);
6a7ad299 3781 qemu_bh_delete(acb->bh);
36afc451 3782 acb->bh = NULL;
ce1a14dc 3783 qemu_aio_release(acb);
83f64091 3784}
beac80cd 3785
f141eafe
AL
3786static BlockDriverAIOCB *bdrv_aio_rw_vector(BlockDriverState *bs,
3787 int64_t sector_num,
3788 QEMUIOVector *qiov,
3789 int nb_sectors,
3790 BlockDriverCompletionFunc *cb,
3791 void *opaque,
3792 int is_write)
3793
83f64091 3794{
ce1a14dc 3795 BlockDriverAIOCBSync *acb;
ce1a14dc 3796
d7331bed 3797 acb = qemu_aio_get(&bdrv_em_aiocb_info, bs, cb, opaque);
f141eafe
AL
3798 acb->is_write = is_write;
3799 acb->qiov = qiov;
e268ca52 3800 acb->bounce = qemu_blockalign(bs, qiov->size);
3f3aace8 3801 acb->bh = qemu_bh_new(bdrv_aio_bh_cb, acb);
f141eafe
AL
3802
3803 if (is_write) {
d5e6b161 3804 qemu_iovec_to_buf(acb->qiov, 0, acb->bounce, qiov->size);
1ed20acf 3805 acb->ret = bs->drv->bdrv_write(bs, sector_num, acb->bounce, nb_sectors);
f141eafe 3806 } else {
1ed20acf 3807 acb->ret = bs->drv->bdrv_read(bs, sector_num, acb->bounce, nb_sectors);
f141eafe
AL
3808 }
3809
ce1a14dc 3810 qemu_bh_schedule(acb->bh);
f141eafe 3811
ce1a14dc 3812 return &acb->common;
beac80cd
FB
3813}
3814
f141eafe
AL
3815static BlockDriverAIOCB *bdrv_aio_readv_em(BlockDriverState *bs,
3816 int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
ce1a14dc 3817 BlockDriverCompletionFunc *cb, void *opaque)
beac80cd 3818{
f141eafe
AL
3819 return bdrv_aio_rw_vector(bs, sector_num, qiov, nb_sectors, cb, opaque, 0);
3820}
83f64091 3821
f141eafe
AL
3822static BlockDriverAIOCB *bdrv_aio_writev_em(BlockDriverState *bs,
3823 int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
3824 BlockDriverCompletionFunc *cb, void *opaque)
3825{
3826 return bdrv_aio_rw_vector(bs, sector_num, qiov, nb_sectors, cb, opaque, 1);
beac80cd 3827}
beac80cd 3828
68485420
KW
3829
3830typedef struct BlockDriverAIOCBCoroutine {
3831 BlockDriverAIOCB common;
3832 BlockRequest req;
3833 bool is_write;
d318aea9 3834 bool *done;
68485420
KW
3835 QEMUBH* bh;
3836} BlockDriverAIOCBCoroutine;
3837
3838static void bdrv_aio_co_cancel_em(BlockDriverAIOCB *blockacb)
3839{
d318aea9
KW
3840 BlockDriverAIOCBCoroutine *acb =
3841 container_of(blockacb, BlockDriverAIOCBCoroutine, common);
3842 bool done = false;
3843
3844 acb->done = &done;
3845 while (!done) {
3846 qemu_aio_wait();
3847 }
68485420
KW
3848}
3849
d7331bed 3850static const AIOCBInfo bdrv_em_co_aiocb_info = {
68485420
KW
3851 .aiocb_size = sizeof(BlockDriverAIOCBCoroutine),
3852 .cancel = bdrv_aio_co_cancel_em,
3853};
3854
35246a68 3855static void bdrv_co_em_bh(void *opaque)
68485420
KW
3856{
3857 BlockDriverAIOCBCoroutine *acb = opaque;
3858
3859 acb->common.cb(acb->common.opaque, acb->req.error);
d318aea9
KW
3860
3861 if (acb->done) {
3862 *acb->done = true;
3863 }
3864
68485420
KW
3865 qemu_bh_delete(acb->bh);
3866 qemu_aio_release(acb);
3867}
3868
b2a61371
SH
3869/* Invoke bdrv_co_do_readv/bdrv_co_do_writev */
3870static void coroutine_fn bdrv_co_do_rw(void *opaque)
3871{
3872 BlockDriverAIOCBCoroutine *acb = opaque;
3873 BlockDriverState *bs = acb->common.bs;
3874
3875 if (!acb->is_write) {
3876 acb->req.error = bdrv_co_do_readv(bs, acb->req.sector,
470c0504 3877 acb->req.nb_sectors, acb->req.qiov, 0);
b2a61371
SH
3878 } else {
3879 acb->req.error = bdrv_co_do_writev(bs, acb->req.sector,
f08f2dda 3880 acb->req.nb_sectors, acb->req.qiov, 0);
b2a61371
SH
3881 }
3882
35246a68 3883 acb->bh = qemu_bh_new(bdrv_co_em_bh, acb);
b2a61371
SH
3884 qemu_bh_schedule(acb->bh);
3885}
3886
68485420
KW
3887static BlockDriverAIOCB *bdrv_co_aio_rw_vector(BlockDriverState *bs,
3888 int64_t sector_num,
3889 QEMUIOVector *qiov,
3890 int nb_sectors,
3891 BlockDriverCompletionFunc *cb,
3892 void *opaque,
8c5873d6 3893 bool is_write)
68485420
KW
3894{
3895 Coroutine *co;
3896 BlockDriverAIOCBCoroutine *acb;
3897
d7331bed 3898 acb = qemu_aio_get(&bdrv_em_co_aiocb_info, bs, cb, opaque);
68485420
KW
3899 acb->req.sector = sector_num;
3900 acb->req.nb_sectors = nb_sectors;
3901 acb->req.qiov = qiov;
3902 acb->is_write = is_write;
d318aea9 3903 acb->done = NULL;
68485420 3904
8c5873d6 3905 co = qemu_coroutine_create(bdrv_co_do_rw);
68485420
KW
3906 qemu_coroutine_enter(co, acb);
3907
3908 return &acb->common;
3909}
3910
07f07615 3911static void coroutine_fn bdrv_aio_flush_co_entry(void *opaque)
b2e12bc6 3912{
07f07615
PB
3913 BlockDriverAIOCBCoroutine *acb = opaque;
3914 BlockDriverState *bs = acb->common.bs;
b2e12bc6 3915
07f07615
PB
3916 acb->req.error = bdrv_co_flush(bs);
3917 acb->bh = qemu_bh_new(bdrv_co_em_bh, acb);
b2e12bc6 3918 qemu_bh_schedule(acb->bh);
b2e12bc6
CH
3919}
3920
07f07615 3921BlockDriverAIOCB *bdrv_aio_flush(BlockDriverState *bs,
016f5cf6
AG
3922 BlockDriverCompletionFunc *cb, void *opaque)
3923{
07f07615 3924 trace_bdrv_aio_flush(bs, opaque);
016f5cf6 3925
07f07615
PB
3926 Coroutine *co;
3927 BlockDriverAIOCBCoroutine *acb;
016f5cf6 3928
d7331bed 3929 acb = qemu_aio_get(&bdrv_em_co_aiocb_info, bs, cb, opaque);
d318aea9
KW
3930 acb->done = NULL;
3931
07f07615
PB
3932 co = qemu_coroutine_create(bdrv_aio_flush_co_entry);
3933 qemu_coroutine_enter(co, acb);
016f5cf6 3934
016f5cf6
AG
3935 return &acb->common;
3936}
3937
4265d620
PB
3938static void coroutine_fn bdrv_aio_discard_co_entry(void *opaque)
3939{
3940 BlockDriverAIOCBCoroutine *acb = opaque;
3941 BlockDriverState *bs = acb->common.bs;
3942
3943 acb->req.error = bdrv_co_discard(bs, acb->req.sector, acb->req.nb_sectors);
3944 acb->bh = qemu_bh_new(bdrv_co_em_bh, acb);
3945 qemu_bh_schedule(acb->bh);
3946}
3947
3948BlockDriverAIOCB *bdrv_aio_discard(BlockDriverState *bs,
3949 int64_t sector_num, int nb_sectors,
3950 BlockDriverCompletionFunc *cb, void *opaque)
3951{
3952 Coroutine *co;
3953 BlockDriverAIOCBCoroutine *acb;
3954
3955 trace_bdrv_aio_discard(bs, sector_num, nb_sectors, opaque);
3956
d7331bed 3957 acb = qemu_aio_get(&bdrv_em_co_aiocb_info, bs, cb, opaque);
4265d620
PB
3958 acb->req.sector = sector_num;
3959 acb->req.nb_sectors = nb_sectors;
d318aea9 3960 acb->done = NULL;
4265d620
PB
3961 co = qemu_coroutine_create(bdrv_aio_discard_co_entry);
3962 qemu_coroutine_enter(co, acb);
3963
3964 return &acb->common;
3965}
3966
ea2384d3
FB
3967void bdrv_init(void)
3968{
5efa9d5a 3969 module_call_init(MODULE_INIT_BLOCK);
ea2384d3 3970}
ce1a14dc 3971
eb852011
MA
3972void bdrv_init_with_whitelist(void)
3973{
3974 use_bdrv_whitelist = 1;
3975 bdrv_init();
3976}
3977
d7331bed 3978void *qemu_aio_get(const AIOCBInfo *aiocb_info, BlockDriverState *bs,
c16b5a2c 3979 BlockDriverCompletionFunc *cb, void *opaque)
ce1a14dc 3980{
ce1a14dc
PB
3981 BlockDriverAIOCB *acb;
3982
d7331bed
SH
3983 acb = g_slice_alloc(aiocb_info->aiocb_size);
3984 acb->aiocb_info = aiocb_info;
ce1a14dc
PB
3985 acb->bs = bs;
3986 acb->cb = cb;
3987 acb->opaque = opaque;
3988 return acb;
3989}
3990
3991void qemu_aio_release(void *p)
3992{
d37c975f 3993 BlockDriverAIOCB *acb = p;
d7331bed 3994 g_slice_free1(acb->aiocb_info->aiocb_size, acb);
ce1a14dc 3995}
19cb3738 3996
f9f05dc5
KW
3997/**************************************************************/
3998/* Coroutine block device emulation */
3999
4000typedef struct CoroutineIOCompletion {
4001 Coroutine *coroutine;
4002 int ret;
4003} CoroutineIOCompletion;
4004
4005static void bdrv_co_io_em_complete(void *opaque, int ret)
4006{
4007 CoroutineIOCompletion *co = opaque;
4008
4009 co->ret = ret;
4010 qemu_coroutine_enter(co->coroutine, NULL);
4011}
4012
4013static int coroutine_fn bdrv_co_io_em(BlockDriverState *bs, int64_t sector_num,
4014 int nb_sectors, QEMUIOVector *iov,
4015 bool is_write)
4016{
4017 CoroutineIOCompletion co = {
4018 .coroutine = qemu_coroutine_self(),
4019 };
4020 BlockDriverAIOCB *acb;
4021
4022 if (is_write) {
a652d160
SH
4023 acb = bs->drv->bdrv_aio_writev(bs, sector_num, iov, nb_sectors,
4024 bdrv_co_io_em_complete, &co);
f9f05dc5 4025 } else {
a652d160
SH
4026 acb = bs->drv->bdrv_aio_readv(bs, sector_num, iov, nb_sectors,
4027 bdrv_co_io_em_complete, &co);
f9f05dc5
KW
4028 }
4029
59370aaa 4030 trace_bdrv_co_io_em(bs, sector_num, nb_sectors, is_write, acb);
f9f05dc5
KW
4031 if (!acb) {
4032 return -EIO;
4033 }
4034 qemu_coroutine_yield();
4035
4036 return co.ret;
4037}
4038
4039static int coroutine_fn bdrv_co_readv_em(BlockDriverState *bs,
4040 int64_t sector_num, int nb_sectors,
4041 QEMUIOVector *iov)
4042{
4043 return bdrv_co_io_em(bs, sector_num, nb_sectors, iov, false);
4044}
4045
4046static int coroutine_fn bdrv_co_writev_em(BlockDriverState *bs,
4047 int64_t sector_num, int nb_sectors,
4048 QEMUIOVector *iov)
4049{
4050 return bdrv_co_io_em(bs, sector_num, nb_sectors, iov, true);
4051}
4052
07f07615 4053static void coroutine_fn bdrv_flush_co_entry(void *opaque)
e7a8a783 4054{
07f07615
PB
4055 RwCo *rwco = opaque;
4056
4057 rwco->ret = bdrv_co_flush(rwco->bs);
4058}
4059
4060int coroutine_fn bdrv_co_flush(BlockDriverState *bs)
4061{
eb489bb1
KW
4062 int ret;
4063
29cdb251 4064 if (!bs || !bdrv_is_inserted(bs) || bdrv_is_read_only(bs)) {
07f07615 4065 return 0;
eb489bb1
KW
4066 }
4067
ca716364 4068 /* Write back cached data to the OS even with cache=unsafe */
eb489bb1
KW
4069 if (bs->drv->bdrv_co_flush_to_os) {
4070 ret = bs->drv->bdrv_co_flush_to_os(bs);
4071 if (ret < 0) {
4072 return ret;
4073 }
4074 }
4075
ca716364
KW
4076 /* But don't actually force it to the disk with cache=unsafe */
4077 if (bs->open_flags & BDRV_O_NO_FLUSH) {
d4c82329 4078 goto flush_parent;
ca716364
KW
4079 }
4080
eb489bb1 4081 if (bs->drv->bdrv_co_flush_to_disk) {
29cdb251 4082 ret = bs->drv->bdrv_co_flush_to_disk(bs);
07f07615
PB
4083 } else if (bs->drv->bdrv_aio_flush) {
4084 BlockDriverAIOCB *acb;
4085 CoroutineIOCompletion co = {
4086 .coroutine = qemu_coroutine_self(),
4087 };
4088
4089 acb = bs->drv->bdrv_aio_flush(bs, bdrv_co_io_em_complete, &co);
4090 if (acb == NULL) {
29cdb251 4091 ret = -EIO;
07f07615
PB
4092 } else {
4093 qemu_coroutine_yield();
29cdb251 4094 ret = co.ret;
07f07615 4095 }
07f07615
PB
4096 } else {
4097 /*
4098 * Some block drivers always operate in either writethrough or unsafe
4099 * mode and don't support bdrv_flush therefore. Usually qemu doesn't
4100 * know how the server works (because the behaviour is hardcoded or
4101 * depends on server-side configuration), so we can't ensure that
4102 * everything is safe on disk. Returning an error doesn't work because
4103 * that would break guests even if the server operates in writethrough
4104 * mode.
4105 *
4106 * Let's hope the user knows what he's doing.
4107 */
29cdb251 4108 ret = 0;
07f07615 4109 }
29cdb251
PB
4110 if (ret < 0) {
4111 return ret;
4112 }
4113
4114 /* Now flush the underlying protocol. It will also have BDRV_O_NO_FLUSH
4115 * in the case of cache=unsafe, so there are no useless flushes.
4116 */
d4c82329 4117flush_parent:
29cdb251 4118 return bdrv_co_flush(bs->file);
07f07615
PB
4119}
4120
0f15423c
AL
4121void bdrv_invalidate_cache(BlockDriverState *bs)
4122{
4123 if (bs->drv && bs->drv->bdrv_invalidate_cache) {
4124 bs->drv->bdrv_invalidate_cache(bs);
4125 }
4126}
4127
4128void bdrv_invalidate_cache_all(void)
4129{
4130 BlockDriverState *bs;
4131
4132 QTAILQ_FOREACH(bs, &bdrv_states, list) {
4133 bdrv_invalidate_cache(bs);
4134 }
4135}
4136
07789269
BC
4137void bdrv_clear_incoming_migration_all(void)
4138{
4139 BlockDriverState *bs;
4140
4141 QTAILQ_FOREACH(bs, &bdrv_states, list) {
4142 bs->open_flags = bs->open_flags & ~(BDRV_O_INCOMING);
4143 }
4144}
4145
07f07615
PB
4146int bdrv_flush(BlockDriverState *bs)
4147{
4148 Coroutine *co;
4149 RwCo rwco = {
4150 .bs = bs,
4151 .ret = NOT_DONE,
e7a8a783 4152 };
e7a8a783 4153
07f07615
PB
4154 if (qemu_in_coroutine()) {
4155 /* Fast-path if already in coroutine context */
4156 bdrv_flush_co_entry(&rwco);
4157 } else {
4158 co = qemu_coroutine_create(bdrv_flush_co_entry);
4159 qemu_coroutine_enter(co, &rwco);
4160 while (rwco.ret == NOT_DONE) {
4161 qemu_aio_wait();
4162 }
e7a8a783 4163 }
07f07615
PB
4164
4165 return rwco.ret;
e7a8a783
KW
4166}
4167
4265d620
PB
4168static void coroutine_fn bdrv_discard_co_entry(void *opaque)
4169{
4170 RwCo *rwco = opaque;
4171
4172 rwco->ret = bdrv_co_discard(rwco->bs, rwco->sector_num, rwco->nb_sectors);
4173}
4174
4175int coroutine_fn bdrv_co_discard(BlockDriverState *bs, int64_t sector_num,
4176 int nb_sectors)
4177{
4178 if (!bs->drv) {
4179 return -ENOMEDIUM;
4180 } else if (bdrv_check_request(bs, sector_num, nb_sectors)) {
4181 return -EIO;
4182 } else if (bs->read_only) {
4183 return -EROFS;
df702c9b
PB
4184 }
4185
4186 if (bs->dirty_bitmap) {
8f0720ec 4187 bdrv_reset_dirty(bs, sector_num, nb_sectors);
df702c9b
PB
4188 }
4189
4190 if (bs->drv->bdrv_co_discard) {
4265d620
PB
4191 return bs->drv->bdrv_co_discard(bs, sector_num, nb_sectors);
4192 } else if (bs->drv->bdrv_aio_discard) {
4193 BlockDriverAIOCB *acb;
4194 CoroutineIOCompletion co = {
4195 .coroutine = qemu_coroutine_self(),
4196 };
4197
4198 acb = bs->drv->bdrv_aio_discard(bs, sector_num, nb_sectors,
4199 bdrv_co_io_em_complete, &co);
4200 if (acb == NULL) {
4201 return -EIO;
4202 } else {
4203 qemu_coroutine_yield();
4204 return co.ret;
4205 }
4265d620
PB
4206 } else {
4207 return 0;
4208 }
4209}
4210
4211int bdrv_discard(BlockDriverState *bs, int64_t sector_num, int nb_sectors)
4212{
4213 Coroutine *co;
4214 RwCo rwco = {
4215 .bs = bs,
4216 .sector_num = sector_num,
4217 .nb_sectors = nb_sectors,
4218 .ret = NOT_DONE,
4219 };
4220
4221 if (qemu_in_coroutine()) {
4222 /* Fast-path if already in coroutine context */
4223 bdrv_discard_co_entry(&rwco);
4224 } else {
4225 co = qemu_coroutine_create(bdrv_discard_co_entry);
4226 qemu_coroutine_enter(co, &rwco);
4227 while (rwco.ret == NOT_DONE) {
4228 qemu_aio_wait();
4229 }
4230 }
4231
4232 return rwco.ret;
4233}
4234
19cb3738
FB
4235/**************************************************************/
4236/* removable device support */
4237
4238/**
4239 * Return TRUE if the media is present
4240 */
4241int bdrv_is_inserted(BlockDriverState *bs)
4242{
4243 BlockDriver *drv = bs->drv;
a1aff5bf 4244
19cb3738
FB
4245 if (!drv)
4246 return 0;
4247 if (!drv->bdrv_is_inserted)
a1aff5bf
MA
4248 return 1;
4249 return drv->bdrv_is_inserted(bs);
19cb3738
FB
4250}
4251
4252/**
8e49ca46
MA
4253 * Return whether the media changed since the last call to this
4254 * function, or -ENOTSUP if we don't know. Most drivers don't know.
19cb3738
FB
4255 */
4256int bdrv_media_changed(BlockDriverState *bs)
4257{
4258 BlockDriver *drv = bs->drv;
19cb3738 4259
8e49ca46
MA
4260 if (drv && drv->bdrv_media_changed) {
4261 return drv->bdrv_media_changed(bs);
4262 }
4263 return -ENOTSUP;
19cb3738
FB
4264}
4265
4266/**
4267 * If eject_flag is TRUE, eject the media. Otherwise, close the tray
4268 */
f36f3949 4269void bdrv_eject(BlockDriverState *bs, bool eject_flag)
19cb3738
FB
4270{
4271 BlockDriver *drv = bs->drv;
19cb3738 4272
822e1cd1
MA
4273 if (drv && drv->bdrv_eject) {
4274 drv->bdrv_eject(bs, eject_flag);
19cb3738 4275 }
6f382ed2
LC
4276
4277 if (bs->device_name[0] != '\0') {
4278 bdrv_emit_qmp_eject_event(bs, eject_flag);
4279 }
19cb3738
FB
4280}
4281
19cb3738
FB
4282/**
4283 * Lock or unlock the media (if it is locked, the user won't be able
4284 * to eject it manually).
4285 */
025e849a 4286void bdrv_lock_medium(BlockDriverState *bs, bool locked)
19cb3738
FB
4287{
4288 BlockDriver *drv = bs->drv;
4289
025e849a 4290 trace_bdrv_lock_medium(bs, locked);
b8c6d095 4291
025e849a
MA
4292 if (drv && drv->bdrv_lock_medium) {
4293 drv->bdrv_lock_medium(bs, locked);
19cb3738
FB
4294 }
4295}
985a03b0
TS
4296
4297/* needed for generic scsi interface */
4298
4299int bdrv_ioctl(BlockDriverState *bs, unsigned long int req, void *buf)
4300{
4301 BlockDriver *drv = bs->drv;
4302
4303 if (drv && drv->bdrv_ioctl)
4304 return drv->bdrv_ioctl(bs, req, buf);
4305 return -ENOTSUP;
4306}
7d780669 4307
221f715d
AL
4308BlockDriverAIOCB *bdrv_aio_ioctl(BlockDriverState *bs,
4309 unsigned long int req, void *buf,
4310 BlockDriverCompletionFunc *cb, void *opaque)
7d780669 4311{
221f715d 4312 BlockDriver *drv = bs->drv;
7d780669 4313
221f715d
AL
4314 if (drv && drv->bdrv_aio_ioctl)
4315 return drv->bdrv_aio_ioctl(bs, req, buf, cb, opaque);
4316 return NULL;
7d780669 4317}
e268ca52 4318
7b6f9300
MA
4319void bdrv_set_buffer_alignment(BlockDriverState *bs, int align)
4320{
4321 bs->buffer_alignment = align;
4322}
7cd1e32a 4323
e268ca52
AL
4324void *qemu_blockalign(BlockDriverState *bs, size_t size)
4325{
4326 return qemu_memalign((bs && bs->buffer_alignment) ? bs->buffer_alignment : 512, size);
4327}
7cd1e32a 4328
c53b1c51
SH
4329/*
4330 * Check if all memory in this vector is sector aligned.
4331 */
4332bool bdrv_qiov_is_aligned(BlockDriverState *bs, QEMUIOVector *qiov)
4333{
4334 int i;
4335
4336 for (i = 0; i < qiov->niov; i++) {
4337 if ((uintptr_t) qiov->iov[i].iov_base % bs->buffer_alignment) {
4338 return false;
4339 }
4340 }
4341
4342 return true;
4343}
4344
50717e94 4345void bdrv_set_dirty_tracking(BlockDriverState *bs, int granularity)
7cd1e32a
LS
4346{
4347 int64_t bitmap_size;
a55eb92c 4348
50717e94
PB
4349 assert((granularity & (granularity - 1)) == 0);
4350
4351 if (granularity) {
4352 granularity >>= BDRV_SECTOR_BITS;
4353 assert(!bs->dirty_bitmap);
4354 bitmap_size = (bdrv_getlength(bs) >> BDRV_SECTOR_BITS);
4355 bs->dirty_bitmap = hbitmap_alloc(bitmap_size, ffs(granularity) - 1);
7cd1e32a 4356 } else {
c6d22830 4357 if (bs->dirty_bitmap) {
8f0720ec 4358 hbitmap_free(bs->dirty_bitmap);
c6d22830 4359 bs->dirty_bitmap = NULL;
a55eb92c 4360 }
7cd1e32a
LS
4361 }
4362}
4363
4364int bdrv_get_dirty(BlockDriverState *bs, int64_t sector)
4365{
8f0720ec
PB
4366 if (bs->dirty_bitmap) {
4367 return hbitmap_get(bs->dirty_bitmap, sector);
7cd1e32a
LS
4368 } else {
4369 return 0;
4370 }
4371}
4372
8f0720ec 4373void bdrv_dirty_iter_init(BlockDriverState *bs, HBitmapIter *hbi)
1755da16 4374{
8f0720ec 4375 hbitmap_iter_init(hbi, bs->dirty_bitmap, 0);
1755da16
PB
4376}
4377
4378void bdrv_set_dirty(BlockDriverState *bs, int64_t cur_sector,
4379 int nr_sectors)
4380{
8f0720ec 4381 hbitmap_set(bs->dirty_bitmap, cur_sector, nr_sectors);
1755da16
PB
4382}
4383
a55eb92c
JK
4384void bdrv_reset_dirty(BlockDriverState *bs, int64_t cur_sector,
4385 int nr_sectors)
7cd1e32a 4386{
8f0720ec 4387 hbitmap_reset(bs->dirty_bitmap, cur_sector, nr_sectors);
7cd1e32a 4388}
aaa0eb75
LS
4389
4390int64_t bdrv_get_dirty_count(BlockDriverState *bs)
4391{
8f0720ec 4392 if (bs->dirty_bitmap) {
acc906c6 4393 return hbitmap_count(bs->dirty_bitmap);
8f0720ec
PB
4394 } else {
4395 return 0;
4396 }
aaa0eb75 4397}
f88e1a42 4398
db593f25
MT
4399void bdrv_set_in_use(BlockDriverState *bs, int in_use)
4400{
4401 assert(bs->in_use != in_use);
4402 bs->in_use = in_use;
4403}
4404
4405int bdrv_in_use(BlockDriverState *bs)
4406{
4407 return bs->in_use;
4408}
4409
28a7282a
LC
4410void bdrv_iostatus_enable(BlockDriverState *bs)
4411{
d6bf279e 4412 bs->iostatus_enabled = true;
58e21ef5 4413 bs->iostatus = BLOCK_DEVICE_IO_STATUS_OK;
28a7282a
LC
4414}
4415
4416/* The I/O status is only enabled if the drive explicitly
4417 * enables it _and_ the VM is configured to stop on errors */
4418bool bdrv_iostatus_is_enabled(const BlockDriverState *bs)
4419{
d6bf279e 4420 return (bs->iostatus_enabled &&
92aa5c6d
PB
4421 (bs->on_write_error == BLOCKDEV_ON_ERROR_ENOSPC ||
4422 bs->on_write_error == BLOCKDEV_ON_ERROR_STOP ||
4423 bs->on_read_error == BLOCKDEV_ON_ERROR_STOP));
28a7282a
LC
4424}
4425
4426void bdrv_iostatus_disable(BlockDriverState *bs)
4427{
d6bf279e 4428 bs->iostatus_enabled = false;
28a7282a
LC
4429}
4430
4431void bdrv_iostatus_reset(BlockDriverState *bs)
4432{
4433 if (bdrv_iostatus_is_enabled(bs)) {
58e21ef5 4434 bs->iostatus = BLOCK_DEVICE_IO_STATUS_OK;
3bd293c3
PB
4435 if (bs->job) {
4436 block_job_iostatus_reset(bs->job);
4437 }
28a7282a
LC
4438 }
4439}
4440
28a7282a
LC
4441void bdrv_iostatus_set_err(BlockDriverState *bs, int error)
4442{
3e1caa5f
PB
4443 assert(bdrv_iostatus_is_enabled(bs));
4444 if (bs->iostatus == BLOCK_DEVICE_IO_STATUS_OK) {
58e21ef5
LC
4445 bs->iostatus = error == ENOSPC ? BLOCK_DEVICE_IO_STATUS_NOSPACE :
4446 BLOCK_DEVICE_IO_STATUS_FAILED;
28a7282a
LC
4447 }
4448}
4449
a597e79c
CH
4450void
4451bdrv_acct_start(BlockDriverState *bs, BlockAcctCookie *cookie, int64_t bytes,
4452 enum BlockAcctType type)
4453{
4454 assert(type < BDRV_MAX_IOTYPE);
4455
4456 cookie->bytes = bytes;
c488c7f6 4457 cookie->start_time_ns = get_clock();
a597e79c
CH
4458 cookie->type = type;
4459}
4460
4461void
4462bdrv_acct_done(BlockDriverState *bs, BlockAcctCookie *cookie)
4463{
4464 assert(cookie->type < BDRV_MAX_IOTYPE);
4465
4466 bs->nr_bytes[cookie->type] += cookie->bytes;
4467 bs->nr_ops[cookie->type]++;
c488c7f6 4468 bs->total_time_ns[cookie->type] += get_clock() - cookie->start_time_ns;
a597e79c
CH
4469}
4470
d92ada22
LC
4471void bdrv_img_create(const char *filename, const char *fmt,
4472 const char *base_filename, const char *base_fmt,
4473 char *options, uint64_t img_size, int flags, Error **errp)
f88e1a42
JS
4474{
4475 QEMUOptionParameter *param = NULL, *create_options = NULL;
d220894e 4476 QEMUOptionParameter *backing_fmt, *backing_file, *size;
f88e1a42
JS
4477 BlockDriverState *bs = NULL;
4478 BlockDriver *drv, *proto_drv;
96df67d1 4479 BlockDriver *backing_drv = NULL;
f88e1a42
JS
4480 int ret = 0;
4481
4482 /* Find driver and parse its options */
4483 drv = bdrv_find_format(fmt);
4484 if (!drv) {
71c79813 4485 error_setg(errp, "Unknown file format '%s'", fmt);
d92ada22 4486 return;
f88e1a42
JS
4487 }
4488
4489 proto_drv = bdrv_find_protocol(filename);
4490 if (!proto_drv) {
71c79813 4491 error_setg(errp, "Unknown protocol '%s'", filename);
d92ada22 4492 return;
f88e1a42
JS
4493 }
4494
4495 create_options = append_option_parameters(create_options,
4496 drv->create_options);
4497 create_options = append_option_parameters(create_options,
4498 proto_drv->create_options);
4499
4500 /* Create parameter list with default values */
4501 param = parse_option_parameters("", create_options, param);
4502
4503 set_option_parameter_int(param, BLOCK_OPT_SIZE, img_size);
4504
4505 /* Parse -o options */
4506 if (options) {
4507 param = parse_option_parameters(options, create_options, param);
4508 if (param == NULL) {
71c79813 4509 error_setg(errp, "Invalid options for file format '%s'.", fmt);
f88e1a42
JS
4510 goto out;
4511 }
4512 }
4513
4514 if (base_filename) {
4515 if (set_option_parameter(param, BLOCK_OPT_BACKING_FILE,
4516 base_filename)) {
71c79813
LC
4517 error_setg(errp, "Backing file not supported for file format '%s'",
4518 fmt);
f88e1a42
JS
4519 goto out;
4520 }
4521 }
4522
4523 if (base_fmt) {
4524 if (set_option_parameter(param, BLOCK_OPT_BACKING_FMT, base_fmt)) {
71c79813
LC
4525 error_setg(errp, "Backing file format not supported for file "
4526 "format '%s'", fmt);
f88e1a42
JS
4527 goto out;
4528 }
4529 }
4530
792da93a
JS
4531 backing_file = get_option_parameter(param, BLOCK_OPT_BACKING_FILE);
4532 if (backing_file && backing_file->value.s) {
4533 if (!strcmp(filename, backing_file->value.s)) {
71c79813
LC
4534 error_setg(errp, "Error: Trying to create an image with the "
4535 "same filename as the backing file");
792da93a
JS
4536 goto out;
4537 }
4538 }
4539
f88e1a42
JS
4540 backing_fmt = get_option_parameter(param, BLOCK_OPT_BACKING_FMT);
4541 if (backing_fmt && backing_fmt->value.s) {
96df67d1
SH
4542 backing_drv = bdrv_find_format(backing_fmt->value.s);
4543 if (!backing_drv) {
71c79813
LC
4544 error_setg(errp, "Unknown backing file format '%s'",
4545 backing_fmt->value.s);
f88e1a42
JS
4546 goto out;
4547 }
4548 }
4549
4550 // The size for the image must always be specified, with one exception:
4551 // If we are using a backing file, we can obtain the size from there
d220894e
KW
4552 size = get_option_parameter(param, BLOCK_OPT_SIZE);
4553 if (size && size->value.n == -1) {
f88e1a42
JS
4554 if (backing_file && backing_file->value.s) {
4555 uint64_t size;
f88e1a42 4556 char buf[32];
63090dac
PB
4557 int back_flags;
4558
4559 /* backing files always opened read-only */
4560 back_flags =
4561 flags & ~(BDRV_O_RDWR | BDRV_O_SNAPSHOT | BDRV_O_NO_BACKING);
f88e1a42 4562
f88e1a42
JS
4563 bs = bdrv_new("");
4564
63090dac 4565 ret = bdrv_open(bs, backing_file->value.s, back_flags, backing_drv);
f88e1a42 4566 if (ret < 0) {
71c79813
LC
4567 error_setg_errno(errp, -ret, "Could not open '%s'",
4568 backing_file->value.s);
f88e1a42
JS
4569 goto out;
4570 }
4571 bdrv_get_geometry(bs, &size);
4572 size *= 512;
4573
4574 snprintf(buf, sizeof(buf), "%" PRId64, size);
4575 set_option_parameter(param, BLOCK_OPT_SIZE, buf);
4576 } else {
71c79813 4577 error_setg(errp, "Image creation needs a size parameter");
f88e1a42
JS
4578 goto out;
4579 }
4580 }
4581
4582 printf("Formatting '%s', fmt=%s ", filename, fmt);
4583 print_option_parameters(param);
4584 puts("");
4585
4586 ret = bdrv_create(drv, filename, param);
f88e1a42
JS
4587 if (ret < 0) {
4588 if (ret == -ENOTSUP) {
71c79813
LC
4589 error_setg(errp,"Formatting or formatting option not supported for "
4590 "file format '%s'", fmt);
f88e1a42 4591 } else if (ret == -EFBIG) {
71c79813
LC
4592 error_setg(errp, "The image size is too large for file format '%s'",
4593 fmt);
f88e1a42 4594 } else {
71c79813
LC
4595 error_setg(errp, "%s: error while creating %s: %s", filename, fmt,
4596 strerror(-ret));
f88e1a42
JS
4597 }
4598 }
4599
4600out:
4601 free_option_parameters(create_options);
4602 free_option_parameters(param);
4603
4604 if (bs) {
4605 bdrv_delete(bs);
4606 }
f88e1a42 4607}