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Commit | Line | Data |
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75411d23 SH |
1 | /* |
2 | * QEMU Enhanced Disk Format | |
3 | * | |
4 | * Copyright IBM, Corp. 2010 | |
5 | * | |
6 | * Authors: | |
7 | * Stefan Hajnoczi <[email protected]> | |
8 | * Anthony Liguori <[email protected]> | |
9 | * | |
10 | * This work is licensed under the terms of the GNU LGPL, version 2 or later. | |
11 | * See the COPYING.LIB file in the top-level directory. | |
12 | * | |
13 | */ | |
14 | ||
80c71a24 | 15 | #include "qemu/osdep.h" |
da34e65c | 16 | #include "qapi/error.h" |
1de7afc9 | 17 | #include "qemu/timer.h" |
58369e22 | 18 | #include "qemu/bswap.h" |
eabba580 | 19 | #include "trace.h" |
75411d23 | 20 | #include "qed.h" |
7b1b5d19 | 21 | #include "qapi/qmp/qerror.h" |
caf71f86 | 22 | #include "migration/migration.h" |
8a56fdad | 23 | #include "sysemu/block-backend.h" |
75411d23 | 24 | |
d7331bed | 25 | static const AIOCBInfo qed_aiocb_info = { |
eabba580 | 26 | .aiocb_size = sizeof(QEDAIOCB), |
eabba580 SH |
27 | }; |
28 | ||
75411d23 SH |
29 | static int bdrv_qed_probe(const uint8_t *buf, int buf_size, |
30 | const char *filename) | |
31 | { | |
32 | const QEDHeader *header = (const QEDHeader *)buf; | |
33 | ||
34 | if (buf_size < sizeof(*header)) { | |
35 | return 0; | |
36 | } | |
37 | if (le32_to_cpu(header->magic) != QED_MAGIC) { | |
38 | return 0; | |
39 | } | |
40 | return 100; | |
41 | } | |
42 | ||
43 | /** | |
44 | * Check whether an image format is raw | |
45 | * | |
46 | * @fmt: Backing file format, may be NULL | |
47 | */ | |
48 | static bool qed_fmt_is_raw(const char *fmt) | |
49 | { | |
50 | return fmt && strcmp(fmt, "raw") == 0; | |
51 | } | |
52 | ||
53 | static void qed_header_le_to_cpu(const QEDHeader *le, QEDHeader *cpu) | |
54 | { | |
55 | cpu->magic = le32_to_cpu(le->magic); | |
56 | cpu->cluster_size = le32_to_cpu(le->cluster_size); | |
57 | cpu->table_size = le32_to_cpu(le->table_size); | |
58 | cpu->header_size = le32_to_cpu(le->header_size); | |
59 | cpu->features = le64_to_cpu(le->features); | |
60 | cpu->compat_features = le64_to_cpu(le->compat_features); | |
61 | cpu->autoclear_features = le64_to_cpu(le->autoclear_features); | |
62 | cpu->l1_table_offset = le64_to_cpu(le->l1_table_offset); | |
63 | cpu->image_size = le64_to_cpu(le->image_size); | |
64 | cpu->backing_filename_offset = le32_to_cpu(le->backing_filename_offset); | |
65 | cpu->backing_filename_size = le32_to_cpu(le->backing_filename_size); | |
66 | } | |
67 | ||
68 | static void qed_header_cpu_to_le(const QEDHeader *cpu, QEDHeader *le) | |
69 | { | |
70 | le->magic = cpu_to_le32(cpu->magic); | |
71 | le->cluster_size = cpu_to_le32(cpu->cluster_size); | |
72 | le->table_size = cpu_to_le32(cpu->table_size); | |
73 | le->header_size = cpu_to_le32(cpu->header_size); | |
74 | le->features = cpu_to_le64(cpu->features); | |
75 | le->compat_features = cpu_to_le64(cpu->compat_features); | |
76 | le->autoclear_features = cpu_to_le64(cpu->autoclear_features); | |
77 | le->l1_table_offset = cpu_to_le64(cpu->l1_table_offset); | |
78 | le->image_size = cpu_to_le64(cpu->image_size); | |
79 | le->backing_filename_offset = cpu_to_le32(cpu->backing_filename_offset); | |
80 | le->backing_filename_size = cpu_to_le32(cpu->backing_filename_size); | |
81 | } | |
82 | ||
b10170ac | 83 | int qed_write_header_sync(BDRVQEDState *s) |
75411d23 SH |
84 | { |
85 | QEDHeader le; | |
86 | int ret; | |
87 | ||
88 | qed_header_cpu_to_le(&s->header, &le); | |
9a4f4c31 | 89 | ret = bdrv_pwrite(s->bs->file->bs, 0, &le, sizeof(le)); |
75411d23 SH |
90 | if (ret != sizeof(le)) { |
91 | return ret; | |
92 | } | |
93 | return 0; | |
94 | } | |
95 | ||
01979a98 SH |
96 | typedef struct { |
97 | GenericCB gencb; | |
98 | BDRVQEDState *s; | |
99 | struct iovec iov; | |
100 | QEMUIOVector qiov; | |
101 | int nsectors; | |
102 | uint8_t *buf; | |
103 | } QEDWriteHeaderCB; | |
104 | ||
105 | static void qed_write_header_cb(void *opaque, int ret) | |
106 | { | |
107 | QEDWriteHeaderCB *write_header_cb = opaque; | |
108 | ||
109 | qemu_vfree(write_header_cb->buf); | |
110 | gencb_complete(write_header_cb, ret); | |
111 | } | |
112 | ||
113 | static void qed_write_header_read_cb(void *opaque, int ret) | |
114 | { | |
115 | QEDWriteHeaderCB *write_header_cb = opaque; | |
116 | BDRVQEDState *s = write_header_cb->s; | |
01979a98 SH |
117 | |
118 | if (ret) { | |
119 | qed_write_header_cb(write_header_cb, ret); | |
120 | return; | |
121 | } | |
122 | ||
123 | /* Update header */ | |
124 | qed_header_cpu_to_le(&s->header, (QEDHeader *)write_header_cb->buf); | |
125 | ||
0d1049c7 | 126 | bdrv_aio_writev(s->bs->file, 0, &write_header_cb->qiov, |
ad54ae80 PB |
127 | write_header_cb->nsectors, qed_write_header_cb, |
128 | write_header_cb); | |
01979a98 SH |
129 | } |
130 | ||
131 | /** | |
132 | * Update header in-place (does not rewrite backing filename or other strings) | |
133 | * | |
134 | * This function only updates known header fields in-place and does not affect | |
135 | * extra data after the QED header. | |
136 | */ | |
097310b5 | 137 | static void qed_write_header(BDRVQEDState *s, BlockCompletionFunc cb, |
01979a98 SH |
138 | void *opaque) |
139 | { | |
140 | /* We must write full sectors for O_DIRECT but cannot necessarily generate | |
141 | * the data following the header if an unrecognized compat feature is | |
142 | * active. Therefore, first read the sectors containing the header, update | |
143 | * them, and write back. | |
144 | */ | |
145 | ||
c41a73ff | 146 | int nsectors = DIV_ROUND_UP(sizeof(QEDHeader), BDRV_SECTOR_SIZE); |
01979a98 SH |
147 | size_t len = nsectors * BDRV_SECTOR_SIZE; |
148 | QEDWriteHeaderCB *write_header_cb = gencb_alloc(sizeof(*write_header_cb), | |
149 | cb, opaque); | |
150 | ||
151 | write_header_cb->s = s; | |
152 | write_header_cb->nsectors = nsectors; | |
153 | write_header_cb->buf = qemu_blockalign(s->bs, len); | |
154 | write_header_cb->iov.iov_base = write_header_cb->buf; | |
155 | write_header_cb->iov.iov_len = len; | |
156 | qemu_iovec_init_external(&write_header_cb->qiov, &write_header_cb->iov, 1); | |
157 | ||
ebb7af21 | 158 | bdrv_aio_readv(s->bs->file, 0, &write_header_cb->qiov, nsectors, |
ad54ae80 | 159 | qed_write_header_read_cb, write_header_cb); |
01979a98 SH |
160 | } |
161 | ||
75411d23 SH |
162 | static uint64_t qed_max_image_size(uint32_t cluster_size, uint32_t table_size) |
163 | { | |
164 | uint64_t table_entries; | |
165 | uint64_t l2_size; | |
166 | ||
167 | table_entries = (table_size * cluster_size) / sizeof(uint64_t); | |
168 | l2_size = table_entries * cluster_size; | |
169 | ||
170 | return l2_size * table_entries; | |
171 | } | |
172 | ||
173 | static bool qed_is_cluster_size_valid(uint32_t cluster_size) | |
174 | { | |
175 | if (cluster_size < QED_MIN_CLUSTER_SIZE || | |
176 | cluster_size > QED_MAX_CLUSTER_SIZE) { | |
177 | return false; | |
178 | } | |
179 | if (cluster_size & (cluster_size - 1)) { | |
180 | return false; /* not power of 2 */ | |
181 | } | |
182 | return true; | |
183 | } | |
184 | ||
185 | static bool qed_is_table_size_valid(uint32_t table_size) | |
186 | { | |
187 | if (table_size < QED_MIN_TABLE_SIZE || | |
188 | table_size > QED_MAX_TABLE_SIZE) { | |
189 | return false; | |
190 | } | |
191 | if (table_size & (table_size - 1)) { | |
192 | return false; /* not power of 2 */ | |
193 | } | |
194 | return true; | |
195 | } | |
196 | ||
197 | static bool qed_is_image_size_valid(uint64_t image_size, uint32_t cluster_size, | |
198 | uint32_t table_size) | |
199 | { | |
200 | if (image_size % BDRV_SECTOR_SIZE != 0) { | |
201 | return false; /* not multiple of sector size */ | |
202 | } | |
203 | if (image_size > qed_max_image_size(cluster_size, table_size)) { | |
204 | return false; /* image is too large */ | |
205 | } | |
206 | return true; | |
207 | } | |
208 | ||
209 | /** | |
210 | * Read a string of known length from the image file | |
211 | * | |
212 | * @file: Image file | |
213 | * @offset: File offset to start of string, in bytes | |
214 | * @n: String length in bytes | |
215 | * @buf: Destination buffer | |
216 | * @buflen: Destination buffer length in bytes | |
217 | * @ret: 0 on success, -errno on failure | |
218 | * | |
219 | * The string is NUL-terminated. | |
220 | */ | |
cf2ab8fc | 221 | static int qed_read_string(BdrvChild *file, uint64_t offset, size_t n, |
75411d23 SH |
222 | char *buf, size_t buflen) |
223 | { | |
224 | int ret; | |
225 | if (n >= buflen) { | |
226 | return -EINVAL; | |
227 | } | |
228 | ret = bdrv_pread(file, offset, buf, n); | |
229 | if (ret < 0) { | |
230 | return ret; | |
231 | } | |
232 | buf[n] = '\0'; | |
233 | return 0; | |
234 | } | |
235 | ||
eabba580 SH |
236 | /** |
237 | * Allocate new clusters | |
238 | * | |
239 | * @s: QED state | |
240 | * @n: Number of contiguous clusters to allocate | |
241 | * @ret: Offset of first allocated cluster | |
242 | * | |
243 | * This function only produces the offset where the new clusters should be | |
244 | * written. It updates BDRVQEDState but does not make any changes to the image | |
245 | * file. | |
246 | */ | |
247 | static uint64_t qed_alloc_clusters(BDRVQEDState *s, unsigned int n) | |
248 | { | |
249 | uint64_t offset = s->file_size; | |
250 | s->file_size += n * s->header.cluster_size; | |
251 | return offset; | |
252 | } | |
253 | ||
298800ca SH |
254 | QEDTable *qed_alloc_table(BDRVQEDState *s) |
255 | { | |
256 | /* Honor O_DIRECT memory alignment requirements */ | |
257 | return qemu_blockalign(s->bs, | |
258 | s->header.cluster_size * s->header.table_size); | |
259 | } | |
260 | ||
eabba580 SH |
261 | /** |
262 | * Allocate a new zeroed L2 table | |
263 | */ | |
264 | static CachedL2Table *qed_new_l2_table(BDRVQEDState *s) | |
265 | { | |
266 | CachedL2Table *l2_table = qed_alloc_l2_cache_entry(&s->l2_cache); | |
267 | ||
268 | l2_table->table = qed_alloc_table(s); | |
269 | l2_table->offset = qed_alloc_clusters(s, s->header.table_size); | |
270 | ||
271 | memset(l2_table->table->offsets, 0, | |
272 | s->header.cluster_size * s->header.table_size); | |
273 | return l2_table; | |
274 | } | |
275 | ||
276 | static void qed_aio_next_io(void *opaque, int ret); | |
277 | ||
6f321e93 SH |
278 | static void qed_plug_allocating_write_reqs(BDRVQEDState *s) |
279 | { | |
280 | assert(!s->allocating_write_reqs_plugged); | |
281 | ||
282 | s->allocating_write_reqs_plugged = true; | |
283 | } | |
284 | ||
285 | static void qed_unplug_allocating_write_reqs(BDRVQEDState *s) | |
286 | { | |
287 | QEDAIOCB *acb; | |
288 | ||
289 | assert(s->allocating_write_reqs_plugged); | |
290 | ||
291 | s->allocating_write_reqs_plugged = false; | |
292 | ||
293 | acb = QSIMPLEQ_FIRST(&s->allocating_write_reqs); | |
294 | if (acb) { | |
295 | qed_aio_next_io(acb, 0); | |
296 | } | |
297 | } | |
298 | ||
299 | static void qed_finish_clear_need_check(void *opaque, int ret) | |
300 | { | |
301 | /* Do nothing */ | |
302 | } | |
303 | ||
304 | static void qed_flush_after_clear_need_check(void *opaque, int ret) | |
305 | { | |
306 | BDRVQEDState *s = opaque; | |
307 | ||
308 | bdrv_aio_flush(s->bs, qed_finish_clear_need_check, s); | |
309 | ||
310 | /* No need to wait until flush completes */ | |
311 | qed_unplug_allocating_write_reqs(s); | |
312 | } | |
313 | ||
314 | static void qed_clear_need_check(void *opaque, int ret) | |
315 | { | |
316 | BDRVQEDState *s = opaque; | |
317 | ||
318 | if (ret) { | |
319 | qed_unplug_allocating_write_reqs(s); | |
320 | return; | |
321 | } | |
322 | ||
323 | s->header.features &= ~QED_F_NEED_CHECK; | |
324 | qed_write_header(s, qed_flush_after_clear_need_check, s); | |
325 | } | |
326 | ||
327 | static void qed_need_check_timer_cb(void *opaque) | |
328 | { | |
329 | BDRVQEDState *s = opaque; | |
330 | ||
331 | /* The timer should only fire when allocating writes have drained */ | |
332 | assert(!QSIMPLEQ_FIRST(&s->allocating_write_reqs)); | |
333 | ||
334 | trace_qed_need_check_timer_cb(s); | |
335 | ||
336 | qed_plug_allocating_write_reqs(s); | |
337 | ||
338 | /* Ensure writes are on disk before clearing flag */ | |
339 | bdrv_aio_flush(s->bs, qed_clear_need_check, s); | |
340 | } | |
341 | ||
342 | static void qed_start_need_check_timer(BDRVQEDState *s) | |
343 | { | |
344 | trace_qed_start_need_check_timer(s); | |
345 | ||
bc72ad67 | 346 | /* Use QEMU_CLOCK_VIRTUAL so we don't alter the image file while suspended for |
6f321e93 SH |
347 | * migration. |
348 | */ | |
bc72ad67 | 349 | timer_mod(s->need_check_timer, qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + |
73bcb24d | 350 | NANOSECONDS_PER_SECOND * QED_NEED_CHECK_TIMEOUT); |
6f321e93 SH |
351 | } |
352 | ||
353 | /* It's okay to call this multiple times or when no timer is started */ | |
354 | static void qed_cancel_need_check_timer(BDRVQEDState *s) | |
355 | { | |
356 | trace_qed_cancel_need_check_timer(s); | |
bc72ad67 | 357 | timer_del(s->need_check_timer); |
6f321e93 SH |
358 | } |
359 | ||
a8c868c3 SH |
360 | static void bdrv_qed_detach_aio_context(BlockDriverState *bs) |
361 | { | |
362 | BDRVQEDState *s = bs->opaque; | |
363 | ||
364 | qed_cancel_need_check_timer(s); | |
365 | timer_free(s->need_check_timer); | |
366 | } | |
367 | ||
368 | static void bdrv_qed_attach_aio_context(BlockDriverState *bs, | |
369 | AioContext *new_context) | |
370 | { | |
371 | BDRVQEDState *s = bs->opaque; | |
372 | ||
373 | s->need_check_timer = aio_timer_new(new_context, | |
374 | QEMU_CLOCK_VIRTUAL, SCALE_NS, | |
375 | qed_need_check_timer_cb, s); | |
376 | if (s->header.features & QED_F_NEED_CHECK) { | |
377 | qed_start_need_check_timer(s); | |
378 | } | |
379 | } | |
380 | ||
015a1036 HR |
381 | static int bdrv_qed_open(BlockDriverState *bs, QDict *options, int flags, |
382 | Error **errp) | |
75411d23 SH |
383 | { |
384 | BDRVQEDState *s = bs->opaque; | |
385 | QEDHeader le_header; | |
386 | int64_t file_size; | |
387 | int ret; | |
388 | ||
389 | s->bs = bs; | |
eabba580 | 390 | QSIMPLEQ_INIT(&s->allocating_write_reqs); |
75411d23 | 391 | |
cf2ab8fc | 392 | ret = bdrv_pread(bs->file, 0, &le_header, sizeof(le_header)); |
75411d23 SH |
393 | if (ret < 0) { |
394 | return ret; | |
395 | } | |
75411d23 SH |
396 | qed_header_le_to_cpu(&le_header, &s->header); |
397 | ||
398 | if (s->header.magic != QED_MAGIC) { | |
76abe407 PB |
399 | error_setg(errp, "Image not in QED format"); |
400 | return -EINVAL; | |
75411d23 SH |
401 | } |
402 | if (s->header.features & ~QED_FEATURE_MASK) { | |
10b758e8 | 403 | /* image uses unsupported feature bits */ |
a55448b3 HR |
404 | error_setg(errp, "Unsupported QED features: %" PRIx64, |
405 | s->header.features & ~QED_FEATURE_MASK); | |
10b758e8 | 406 | return -ENOTSUP; |
75411d23 SH |
407 | } |
408 | if (!qed_is_cluster_size_valid(s->header.cluster_size)) { | |
409 | return -EINVAL; | |
410 | } | |
411 | ||
412 | /* Round down file size to the last cluster */ | |
9a4f4c31 | 413 | file_size = bdrv_getlength(bs->file->bs); |
75411d23 SH |
414 | if (file_size < 0) { |
415 | return file_size; | |
416 | } | |
417 | s->file_size = qed_start_of_cluster(s, file_size); | |
418 | ||
419 | if (!qed_is_table_size_valid(s->header.table_size)) { | |
420 | return -EINVAL; | |
421 | } | |
422 | if (!qed_is_image_size_valid(s->header.image_size, | |
423 | s->header.cluster_size, | |
424 | s->header.table_size)) { | |
425 | return -EINVAL; | |
426 | } | |
427 | if (!qed_check_table_offset(s, s->header.l1_table_offset)) { | |
428 | return -EINVAL; | |
429 | } | |
430 | ||
431 | s->table_nelems = (s->header.cluster_size * s->header.table_size) / | |
432 | sizeof(uint64_t); | |
786a4ea8 | 433 | s->l2_shift = ctz32(s->header.cluster_size); |
75411d23 | 434 | s->l2_mask = s->table_nelems - 1; |
786a4ea8 | 435 | s->l1_shift = s->l2_shift + ctz32(s->table_nelems); |
75411d23 | 436 | |
0adfa1ed SH |
437 | /* Header size calculation must not overflow uint32_t */ |
438 | if (s->header.header_size > UINT32_MAX / s->header.cluster_size) { | |
439 | return -EINVAL; | |
440 | } | |
441 | ||
75411d23 SH |
442 | if ((s->header.features & QED_F_BACKING_FILE)) { |
443 | if ((uint64_t)s->header.backing_filename_offset + | |
444 | s->header.backing_filename_size > | |
445 | s->header.cluster_size * s->header.header_size) { | |
446 | return -EINVAL; | |
447 | } | |
448 | ||
cf2ab8fc | 449 | ret = qed_read_string(bs->file, s->header.backing_filename_offset, |
75411d23 SH |
450 | s->header.backing_filename_size, bs->backing_file, |
451 | sizeof(bs->backing_file)); | |
452 | if (ret < 0) { | |
453 | return ret; | |
454 | } | |
455 | ||
456 | if (s->header.features & QED_F_BACKING_FORMAT_NO_PROBE) { | |
457 | pstrcpy(bs->backing_format, sizeof(bs->backing_format), "raw"); | |
458 | } | |
459 | } | |
460 | ||
461 | /* Reset unknown autoclear feature bits. This is a backwards | |
462 | * compatibility mechanism that allows images to be opened by older | |
463 | * programs, which "knock out" unknown feature bits. When an image is | |
464 | * opened by a newer program again it can detect that the autoclear | |
465 | * feature is no longer valid. | |
466 | */ | |
467 | if ((s->header.autoclear_features & ~QED_AUTOCLEAR_FEATURE_MASK) != 0 && | |
04c01a5c | 468 | !bdrv_is_read_only(bs->file->bs) && !(flags & BDRV_O_INACTIVE)) { |
75411d23 SH |
469 | s->header.autoclear_features &= QED_AUTOCLEAR_FEATURE_MASK; |
470 | ||
471 | ret = qed_write_header_sync(s); | |
472 | if (ret) { | |
473 | return ret; | |
474 | } | |
475 | ||
476 | /* From here on only known autoclear feature bits are valid */ | |
9a4f4c31 | 477 | bdrv_flush(bs->file->bs); |
75411d23 SH |
478 | } |
479 | ||
298800ca SH |
480 | s->l1_table = qed_alloc_table(s); |
481 | qed_init_l2_cache(&s->l2_cache); | |
482 | ||
483 | ret = qed_read_l1_table_sync(s); | |
01979a98 SH |
484 | if (ret) { |
485 | goto out; | |
486 | } | |
487 | ||
488 | /* If image was not closed cleanly, check consistency */ | |
058f8f16 | 489 | if (!(flags & BDRV_O_CHECK) && (s->header.features & QED_F_NEED_CHECK)) { |
01979a98 SH |
490 | /* Read-only images cannot be fixed. There is no risk of corruption |
491 | * since write operations are not possible. Therefore, allow | |
492 | * potentially inconsistent images to be opened read-only. This can | |
493 | * aid data recovery from an otherwise inconsistent image. | |
494 | */ | |
9a4f4c31 | 495 | if (!bdrv_is_read_only(bs->file->bs) && |
04c01a5c | 496 | !(flags & BDRV_O_INACTIVE)) { |
01979a98 SH |
497 | BdrvCheckResult result = {0}; |
498 | ||
499 | ret = qed_check(s, &result, true); | |
6f321e93 SH |
500 | if (ret) { |
501 | goto out; | |
502 | } | |
01979a98 SH |
503 | } |
504 | } | |
505 | ||
a8c868c3 | 506 | bdrv_qed_attach_aio_context(bs, bdrv_get_aio_context(bs)); |
6f321e93 | 507 | |
01979a98 | 508 | out: |
298800ca SH |
509 | if (ret) { |
510 | qed_free_l2_cache(&s->l2_cache); | |
511 | qemu_vfree(s->l1_table); | |
512 | } | |
75411d23 SH |
513 | return ret; |
514 | } | |
515 | ||
3baca891 | 516 | static void bdrv_qed_refresh_limits(BlockDriverState *bs, Error **errp) |
d34682cd KW |
517 | { |
518 | BDRVQEDState *s = bs->opaque; | |
519 | ||
cf081fca | 520 | bs->bl.pwrite_zeroes_alignment = s->header.cluster_size; |
d34682cd KW |
521 | } |
522 | ||
f9cb20f1 JC |
523 | /* We have nothing to do for QED reopen, stubs just return |
524 | * success */ | |
525 | static int bdrv_qed_reopen_prepare(BDRVReopenState *state, | |
526 | BlockReopenQueue *queue, Error **errp) | |
527 | { | |
528 | return 0; | |
529 | } | |
530 | ||
75411d23 SH |
531 | static void bdrv_qed_close(BlockDriverState *bs) |
532 | { | |
298800ca SH |
533 | BDRVQEDState *s = bs->opaque; |
534 | ||
a8c868c3 | 535 | bdrv_qed_detach_aio_context(bs); |
6f321e93 | 536 | |
01979a98 | 537 | /* Ensure writes reach stable storage */ |
9a4f4c31 | 538 | bdrv_flush(bs->file->bs); |
01979a98 SH |
539 | |
540 | /* Clean shutdown, no check required on next open */ | |
541 | if (s->header.features & QED_F_NEED_CHECK) { | |
542 | s->header.features &= ~QED_F_NEED_CHECK; | |
543 | qed_write_header_sync(s); | |
544 | } | |
545 | ||
298800ca SH |
546 | qed_free_l2_cache(&s->l2_cache); |
547 | qemu_vfree(s->l1_table); | |
75411d23 SH |
548 | } |
549 | ||
75411d23 SH |
550 | static int qed_create(const char *filename, uint32_t cluster_size, |
551 | uint64_t image_size, uint32_t table_size, | |
0fea6b79 | 552 | const char *backing_file, const char *backing_fmt, |
4ab15590 | 553 | QemuOpts *opts, Error **errp) |
75411d23 SH |
554 | { |
555 | QEDHeader header = { | |
556 | .magic = QED_MAGIC, | |
557 | .cluster_size = cluster_size, | |
558 | .table_size = table_size, | |
559 | .header_size = 1, | |
560 | .features = 0, | |
561 | .compat_features = 0, | |
562 | .l1_table_offset = cluster_size, | |
563 | .image_size = image_size, | |
564 | }; | |
565 | QEDHeader le_header; | |
566 | uint8_t *l1_table = NULL; | |
567 | size_t l1_size = header.cluster_size * header.table_size; | |
34b5d2c6 | 568 | Error *local_err = NULL; |
75411d23 | 569 | int ret = 0; |
8a56fdad | 570 | BlockBackend *blk; |
75411d23 | 571 | |
4ab15590 | 572 | ret = bdrv_create_file(filename, opts, &local_err); |
75411d23 | 573 | if (ret < 0) { |
0fea6b79 | 574 | error_propagate(errp, local_err); |
75411d23 SH |
575 | return ret; |
576 | } | |
577 | ||
efaa7c4e | 578 | blk = blk_new_open(filename, NULL, NULL, |
72e775c7 | 579 | BDRV_O_RDWR | BDRV_O_PROTOCOL, &local_err); |
8a56fdad | 580 | if (blk == NULL) { |
0fea6b79 | 581 | error_propagate(errp, local_err); |
8a56fdad | 582 | return -EIO; |
75411d23 SH |
583 | } |
584 | ||
8a56fdad KW |
585 | blk_set_allow_write_beyond_eof(blk, true); |
586 | ||
c743849b | 587 | /* File must start empty and grow, check truncate is supported */ |
8a56fdad | 588 | ret = blk_truncate(blk, 0); |
c743849b SH |
589 | if (ret < 0) { |
590 | goto out; | |
591 | } | |
592 | ||
75411d23 SH |
593 | if (backing_file) { |
594 | header.features |= QED_F_BACKING_FILE; | |
595 | header.backing_filename_offset = sizeof(le_header); | |
596 | header.backing_filename_size = strlen(backing_file); | |
597 | ||
598 | if (qed_fmt_is_raw(backing_fmt)) { | |
599 | header.features |= QED_F_BACKING_FORMAT_NO_PROBE; | |
600 | } | |
601 | } | |
602 | ||
603 | qed_header_cpu_to_le(&header, &le_header); | |
8341f00d | 604 | ret = blk_pwrite(blk, 0, &le_header, sizeof(le_header), 0); |
75411d23 SH |
605 | if (ret < 0) { |
606 | goto out; | |
607 | } | |
8a56fdad | 608 | ret = blk_pwrite(blk, sizeof(le_header), backing_file, |
8341f00d | 609 | header.backing_filename_size, 0); |
75411d23 SH |
610 | if (ret < 0) { |
611 | goto out; | |
612 | } | |
613 | ||
7267c094 | 614 | l1_table = g_malloc0(l1_size); |
8341f00d | 615 | ret = blk_pwrite(blk, header.l1_table_offset, l1_table, l1_size, 0); |
75411d23 SH |
616 | if (ret < 0) { |
617 | goto out; | |
618 | } | |
619 | ||
620 | ret = 0; /* success */ | |
621 | out: | |
7267c094 | 622 | g_free(l1_table); |
8a56fdad | 623 | blk_unref(blk); |
75411d23 SH |
624 | return ret; |
625 | } | |
626 | ||
7ab74849 | 627 | static int bdrv_qed_create(const char *filename, QemuOpts *opts, Error **errp) |
75411d23 SH |
628 | { |
629 | uint64_t image_size = 0; | |
630 | uint32_t cluster_size = QED_DEFAULT_CLUSTER_SIZE; | |
631 | uint32_t table_size = QED_DEFAULT_TABLE_SIZE; | |
7ab74849 CL |
632 | char *backing_file = NULL; |
633 | char *backing_fmt = NULL; | |
634 | int ret; | |
635 | ||
c2eb918e HT |
636 | image_size = ROUND_UP(qemu_opt_get_size_del(opts, BLOCK_OPT_SIZE, 0), |
637 | BDRV_SECTOR_SIZE); | |
7ab74849 CL |
638 | backing_file = qemu_opt_get_del(opts, BLOCK_OPT_BACKING_FILE); |
639 | backing_fmt = qemu_opt_get_del(opts, BLOCK_OPT_BACKING_FMT); | |
640 | cluster_size = qemu_opt_get_size_del(opts, | |
641 | BLOCK_OPT_CLUSTER_SIZE, | |
642 | QED_DEFAULT_CLUSTER_SIZE); | |
643 | table_size = qemu_opt_get_size_del(opts, BLOCK_OPT_TABLE_SIZE, | |
644 | QED_DEFAULT_TABLE_SIZE); | |
75411d23 SH |
645 | |
646 | if (!qed_is_cluster_size_valid(cluster_size)) { | |
5ff679b4 AG |
647 | error_setg(errp, "QED cluster size must be within range [%u, %u] " |
648 | "and power of 2", | |
649 | QED_MIN_CLUSTER_SIZE, QED_MAX_CLUSTER_SIZE); | |
7ab74849 CL |
650 | ret = -EINVAL; |
651 | goto finish; | |
75411d23 SH |
652 | } |
653 | if (!qed_is_table_size_valid(table_size)) { | |
5ff679b4 AG |
654 | error_setg(errp, "QED table size must be within range [%u, %u] " |
655 | "and power of 2", | |
656 | QED_MIN_TABLE_SIZE, QED_MAX_TABLE_SIZE); | |
7ab74849 CL |
657 | ret = -EINVAL; |
658 | goto finish; | |
75411d23 SH |
659 | } |
660 | if (!qed_is_image_size_valid(image_size, cluster_size, table_size)) { | |
5ff679b4 AG |
661 | error_setg(errp, "QED image size must be a non-zero multiple of " |
662 | "cluster size and less than %" PRIu64 " bytes", | |
663 | qed_max_image_size(cluster_size, table_size)); | |
7ab74849 CL |
664 | ret = -EINVAL; |
665 | goto finish; | |
75411d23 SH |
666 | } |
667 | ||
7ab74849 | 668 | ret = qed_create(filename, cluster_size, image_size, table_size, |
4ab15590 | 669 | backing_file, backing_fmt, opts, errp); |
7ab74849 CL |
670 | |
671 | finish: | |
672 | g_free(backing_file); | |
673 | g_free(backing_fmt); | |
674 | return ret; | |
75411d23 SH |
675 | } |
676 | ||
298800ca | 677 | typedef struct { |
4bc74be9 | 678 | BlockDriverState *bs; |
b7d5a5b8 | 679 | Coroutine *co; |
4bc74be9 PB |
680 | uint64_t pos; |
681 | int64_t status; | |
298800ca | 682 | int *pnum; |
53f1dfd1 | 683 | BlockDriverState **file; |
298800ca SH |
684 | } QEDIsAllocatedCB; |
685 | ||
686 | static void qed_is_allocated_cb(void *opaque, int ret, uint64_t offset, size_t len) | |
687 | { | |
688 | QEDIsAllocatedCB *cb = opaque; | |
4bc74be9 | 689 | BDRVQEDState *s = cb->bs->opaque; |
298800ca | 690 | *cb->pnum = len / BDRV_SECTOR_SIZE; |
4bc74be9 PB |
691 | switch (ret) { |
692 | case QED_CLUSTER_FOUND: | |
693 | offset |= qed_offset_into_cluster(s, cb->pos); | |
694 | cb->status = BDRV_BLOCK_DATA | BDRV_BLOCK_OFFSET_VALID | offset; | |
53f1dfd1 | 695 | *cb->file = cb->bs->file->bs; |
4bc74be9 PB |
696 | break; |
697 | case QED_CLUSTER_ZERO: | |
698 | cb->status = BDRV_BLOCK_ZERO; | |
699 | break; | |
700 | case QED_CLUSTER_L2: | |
701 | case QED_CLUSTER_L1: | |
702 | cb->status = 0; | |
703 | break; | |
704 | default: | |
705 | assert(ret < 0); | |
706 | cb->status = ret; | |
707 | break; | |
708 | } | |
709 | ||
b7d5a5b8 SH |
710 | if (cb->co) { |
711 | qemu_coroutine_enter(cb->co, NULL); | |
712 | } | |
298800ca SH |
713 | } |
714 | ||
b6b8a333 | 715 | static int64_t coroutine_fn bdrv_qed_co_get_block_status(BlockDriverState *bs, |
b7d5a5b8 | 716 | int64_t sector_num, |
67a0fd2a FZ |
717 | int nb_sectors, int *pnum, |
718 | BlockDriverState **file) | |
75411d23 | 719 | { |
298800ca | 720 | BDRVQEDState *s = bs->opaque; |
298800ca SH |
721 | size_t len = (size_t)nb_sectors * BDRV_SECTOR_SIZE; |
722 | QEDIsAllocatedCB cb = { | |
4bc74be9 PB |
723 | .bs = bs, |
724 | .pos = (uint64_t)sector_num * BDRV_SECTOR_SIZE, | |
725 | .status = BDRV_BLOCK_OFFSET_MASK, | |
298800ca | 726 | .pnum = pnum, |
53f1dfd1 | 727 | .file = file, |
298800ca SH |
728 | }; |
729 | QEDRequest request = { .l2_table = NULL }; | |
730 | ||
4bc74be9 | 731 | qed_find_cluster(s, &request, cb.pos, len, qed_is_allocated_cb, &cb); |
298800ca | 732 | |
b7d5a5b8 | 733 | /* Now sleep if the callback wasn't invoked immediately */ |
4bc74be9 | 734 | while (cb.status == BDRV_BLOCK_OFFSET_MASK) { |
b7d5a5b8 SH |
735 | cb.co = qemu_coroutine_self(); |
736 | qemu_coroutine_yield(); | |
298800ca SH |
737 | } |
738 | ||
298800ca SH |
739 | qed_unref_l2_cache_entry(request.l2_table); |
740 | ||
4bc74be9 | 741 | return cb.status; |
75411d23 SH |
742 | } |
743 | ||
eabba580 SH |
744 | static BDRVQEDState *acb_to_s(QEDAIOCB *acb) |
745 | { | |
746 | return acb->common.bs->opaque; | |
747 | } | |
748 | ||
749 | /** | |
750 | * Read from the backing file or zero-fill if no backing file | |
751 | * | |
f06ee3d4 KW |
752 | * @s: QED state |
753 | * @pos: Byte position in device | |
754 | * @qiov: Destination I/O vector | |
755 | * @backing_qiov: Possibly shortened copy of qiov, to be allocated here | |
756 | * @cb: Completion function | |
757 | * @opaque: User data for completion function | |
eabba580 SH |
758 | * |
759 | * This function reads qiov->size bytes starting at pos from the backing file. | |
760 | * If there is no backing file then zeroes are read. | |
761 | */ | |
762 | static void qed_read_backing_file(BDRVQEDState *s, uint64_t pos, | |
763 | QEMUIOVector *qiov, | |
f06ee3d4 | 764 | QEMUIOVector **backing_qiov, |
097310b5 | 765 | BlockCompletionFunc *cb, void *opaque) |
eabba580 | 766 | { |
eabba580 SH |
767 | uint64_t backing_length = 0; |
768 | size_t size; | |
769 | ||
770 | /* If there is a backing file, get its length. Treat the absence of a | |
771 | * backing file like a zero length backing file. | |
772 | */ | |
760e0063 KW |
773 | if (s->bs->backing) { |
774 | int64_t l = bdrv_getlength(s->bs->backing->bs); | |
eabba580 SH |
775 | if (l < 0) { |
776 | cb(opaque, l); | |
777 | return; | |
778 | } | |
779 | backing_length = l; | |
780 | } | |
781 | ||
782 | /* Zero all sectors if reading beyond the end of the backing file */ | |
783 | if (pos >= backing_length || | |
784 | pos + qiov->size > backing_length) { | |
3d9b4925 | 785 | qemu_iovec_memset(qiov, 0, 0, qiov->size); |
eabba580 SH |
786 | } |
787 | ||
788 | /* Complete now if there are no backing file sectors to read */ | |
789 | if (pos >= backing_length) { | |
790 | cb(opaque, 0); | |
791 | return; | |
792 | } | |
793 | ||
794 | /* If the read straddles the end of the backing file, shorten it */ | |
795 | size = MIN((uint64_t)backing_length - pos, qiov->size); | |
796 | ||
f06ee3d4 KW |
797 | assert(*backing_qiov == NULL); |
798 | *backing_qiov = g_new(QEMUIOVector, 1); | |
799 | qemu_iovec_init(*backing_qiov, qiov->niov); | |
800 | qemu_iovec_concat(*backing_qiov, qiov, 0, size); | |
801 | ||
820100fd | 802 | BLKDBG_EVENT(s->bs->file, BLKDBG_READ_BACKING_AIO); |
ebb7af21 | 803 | bdrv_aio_readv(s->bs->backing, pos / BDRV_SECTOR_SIZE, |
f06ee3d4 | 804 | *backing_qiov, size / BDRV_SECTOR_SIZE, cb, opaque); |
eabba580 SH |
805 | } |
806 | ||
807 | typedef struct { | |
808 | GenericCB gencb; | |
809 | BDRVQEDState *s; | |
810 | QEMUIOVector qiov; | |
f06ee3d4 | 811 | QEMUIOVector *backing_qiov; |
eabba580 SH |
812 | struct iovec iov; |
813 | uint64_t offset; | |
814 | } CopyFromBackingFileCB; | |
815 | ||
816 | static void qed_copy_from_backing_file_cb(void *opaque, int ret) | |
817 | { | |
818 | CopyFromBackingFileCB *copy_cb = opaque; | |
819 | qemu_vfree(copy_cb->iov.iov_base); | |
820 | gencb_complete(©_cb->gencb, ret); | |
821 | } | |
822 | ||
823 | static void qed_copy_from_backing_file_write(void *opaque, int ret) | |
824 | { | |
825 | CopyFromBackingFileCB *copy_cb = opaque; | |
826 | BDRVQEDState *s = copy_cb->s; | |
eabba580 | 827 | |
f06ee3d4 KW |
828 | if (copy_cb->backing_qiov) { |
829 | qemu_iovec_destroy(copy_cb->backing_qiov); | |
830 | g_free(copy_cb->backing_qiov); | |
831 | copy_cb->backing_qiov = NULL; | |
832 | } | |
833 | ||
eabba580 SH |
834 | if (ret) { |
835 | qed_copy_from_backing_file_cb(copy_cb, ret); | |
836 | return; | |
837 | } | |
838 | ||
839 | BLKDBG_EVENT(s->bs->file, BLKDBG_COW_WRITE); | |
0d1049c7 | 840 | bdrv_aio_writev(s->bs->file, copy_cb->offset / BDRV_SECTOR_SIZE, |
ad54ae80 PB |
841 | ©_cb->qiov, copy_cb->qiov.size / BDRV_SECTOR_SIZE, |
842 | qed_copy_from_backing_file_cb, copy_cb); | |
eabba580 SH |
843 | } |
844 | ||
845 | /** | |
846 | * Copy data from backing file into the image | |
847 | * | |
848 | * @s: QED state | |
849 | * @pos: Byte position in device | |
850 | * @len: Number of bytes | |
851 | * @offset: Byte offset in image file | |
852 | * @cb: Completion function | |
853 | * @opaque: User data for completion function | |
854 | */ | |
855 | static void qed_copy_from_backing_file(BDRVQEDState *s, uint64_t pos, | |
856 | uint64_t len, uint64_t offset, | |
097310b5 | 857 | BlockCompletionFunc *cb, |
eabba580 SH |
858 | void *opaque) |
859 | { | |
860 | CopyFromBackingFileCB *copy_cb; | |
861 | ||
862 | /* Skip copy entirely if there is no work to do */ | |
863 | if (len == 0) { | |
864 | cb(opaque, 0); | |
865 | return; | |
866 | } | |
867 | ||
868 | copy_cb = gencb_alloc(sizeof(*copy_cb), cb, opaque); | |
869 | copy_cb->s = s; | |
870 | copy_cb->offset = offset; | |
f06ee3d4 | 871 | copy_cb->backing_qiov = NULL; |
eabba580 SH |
872 | copy_cb->iov.iov_base = qemu_blockalign(s->bs, len); |
873 | copy_cb->iov.iov_len = len; | |
874 | qemu_iovec_init_external(©_cb->qiov, ©_cb->iov, 1); | |
875 | ||
f06ee3d4 | 876 | qed_read_backing_file(s, pos, ©_cb->qiov, ©_cb->backing_qiov, |
eabba580 SH |
877 | qed_copy_from_backing_file_write, copy_cb); |
878 | } | |
879 | ||
880 | /** | |
881 | * Link one or more contiguous clusters into a table | |
882 | * | |
883 | * @s: QED state | |
884 | * @table: L2 table | |
885 | * @index: First cluster index | |
886 | * @n: Number of contiguous clusters | |
21df65b6 AL |
887 | * @cluster: First cluster offset |
888 | * | |
889 | * The cluster offset may be an allocated byte offset in the image file, the | |
890 | * zero cluster marker, or the unallocated cluster marker. | |
eabba580 SH |
891 | */ |
892 | static void qed_update_l2_table(BDRVQEDState *s, QEDTable *table, int index, | |
893 | unsigned int n, uint64_t cluster) | |
894 | { | |
895 | int i; | |
896 | for (i = index; i < index + n; i++) { | |
897 | table->offsets[i] = cluster; | |
21df65b6 AL |
898 | if (!qed_offset_is_unalloc_cluster(cluster) && |
899 | !qed_offset_is_zero_cluster(cluster)) { | |
900 | cluster += s->header.cluster_size; | |
901 | } | |
eabba580 SH |
902 | } |
903 | } | |
904 | ||
905 | static void qed_aio_complete_bh(void *opaque) | |
906 | { | |
907 | QEDAIOCB *acb = opaque; | |
097310b5 | 908 | BlockCompletionFunc *cb = acb->common.cb; |
eabba580 SH |
909 | void *user_opaque = acb->common.opaque; |
910 | int ret = acb->bh_ret; | |
eabba580 SH |
911 | |
912 | qemu_bh_delete(acb->bh); | |
8007429a | 913 | qemu_aio_unref(acb); |
eabba580 SH |
914 | |
915 | /* Invoke callback */ | |
916 | cb(user_opaque, ret); | |
eabba580 SH |
917 | } |
918 | ||
919 | static void qed_aio_complete(QEDAIOCB *acb, int ret) | |
920 | { | |
921 | BDRVQEDState *s = acb_to_s(acb); | |
922 | ||
923 | trace_qed_aio_complete(s, acb, ret); | |
924 | ||
925 | /* Free resources */ | |
926 | qemu_iovec_destroy(&acb->cur_qiov); | |
927 | qed_unref_l2_cache_entry(acb->request.l2_table); | |
928 | ||
0e71be19 SH |
929 | /* Free the buffer we may have allocated for zero writes */ |
930 | if (acb->flags & QED_AIOCB_ZERO) { | |
931 | qemu_vfree(acb->qiov->iov[0].iov_base); | |
932 | acb->qiov->iov[0].iov_base = NULL; | |
933 | } | |
934 | ||
eabba580 SH |
935 | /* Arrange for a bh to invoke the completion function */ |
936 | acb->bh_ret = ret; | |
a8c868c3 SH |
937 | acb->bh = aio_bh_new(bdrv_get_aio_context(acb->common.bs), |
938 | qed_aio_complete_bh, acb); | |
eabba580 SH |
939 | qemu_bh_schedule(acb->bh); |
940 | ||
941 | /* Start next allocating write request waiting behind this one. Note that | |
942 | * requests enqueue themselves when they first hit an unallocated cluster | |
943 | * but they wait until the entire request is finished before waking up the | |
944 | * next request in the queue. This ensures that we don't cycle through | |
945 | * requests multiple times but rather finish one at a time completely. | |
946 | */ | |
947 | if (acb == QSIMPLEQ_FIRST(&s->allocating_write_reqs)) { | |
948 | QSIMPLEQ_REMOVE_HEAD(&s->allocating_write_reqs, next); | |
949 | acb = QSIMPLEQ_FIRST(&s->allocating_write_reqs); | |
950 | if (acb) { | |
951 | qed_aio_next_io(acb, 0); | |
6f321e93 SH |
952 | } else if (s->header.features & QED_F_NEED_CHECK) { |
953 | qed_start_need_check_timer(s); | |
eabba580 SH |
954 | } |
955 | } | |
956 | } | |
957 | ||
958 | /** | |
959 | * Commit the current L2 table to the cache | |
960 | */ | |
961 | static void qed_commit_l2_update(void *opaque, int ret) | |
962 | { | |
963 | QEDAIOCB *acb = opaque; | |
964 | BDRVQEDState *s = acb_to_s(acb); | |
965 | CachedL2Table *l2_table = acb->request.l2_table; | |
e4fc8781 | 966 | uint64_t l2_offset = l2_table->offset; |
eabba580 SH |
967 | |
968 | qed_commit_l2_cache_entry(&s->l2_cache, l2_table); | |
969 | ||
970 | /* This is guaranteed to succeed because we just committed the entry to the | |
971 | * cache. | |
972 | */ | |
e4fc8781 | 973 | acb->request.l2_table = qed_find_l2_cache_entry(&s->l2_cache, l2_offset); |
eabba580 SH |
974 | assert(acb->request.l2_table != NULL); |
975 | ||
976 | qed_aio_next_io(opaque, ret); | |
977 | } | |
978 | ||
979 | /** | |
980 | * Update L1 table with new L2 table offset and write it out | |
981 | */ | |
982 | static void qed_aio_write_l1_update(void *opaque, int ret) | |
983 | { | |
984 | QEDAIOCB *acb = opaque; | |
985 | BDRVQEDState *s = acb_to_s(acb); | |
986 | int index; | |
987 | ||
988 | if (ret) { | |
989 | qed_aio_complete(acb, ret); | |
990 | return; | |
991 | } | |
992 | ||
993 | index = qed_l1_index(s, acb->cur_pos); | |
994 | s->l1_table->offsets[index] = acb->request.l2_table->offset; | |
995 | ||
996 | qed_write_l1_table(s, index, 1, qed_commit_l2_update, acb); | |
997 | } | |
998 | ||
999 | /** | |
1000 | * Update L2 table with new cluster offsets and write them out | |
1001 | */ | |
0e71be19 | 1002 | static void qed_aio_write_l2_update(QEDAIOCB *acb, int ret, uint64_t offset) |
eabba580 | 1003 | { |
eabba580 SH |
1004 | BDRVQEDState *s = acb_to_s(acb); |
1005 | bool need_alloc = acb->find_cluster_ret == QED_CLUSTER_L1; | |
1006 | int index; | |
1007 | ||
1008 | if (ret) { | |
1009 | goto err; | |
1010 | } | |
1011 | ||
1012 | if (need_alloc) { | |
1013 | qed_unref_l2_cache_entry(acb->request.l2_table); | |
1014 | acb->request.l2_table = qed_new_l2_table(s); | |
1015 | } | |
1016 | ||
1017 | index = qed_l2_index(s, acb->cur_pos); | |
1018 | qed_update_l2_table(s, acb->request.l2_table->table, index, acb->cur_nclusters, | |
0e71be19 | 1019 | offset); |
eabba580 SH |
1020 | |
1021 | if (need_alloc) { | |
1022 | /* Write out the whole new L2 table */ | |
1023 | qed_write_l2_table(s, &acb->request, 0, s->table_nelems, true, | |
1024 | qed_aio_write_l1_update, acb); | |
1025 | } else { | |
1026 | /* Write out only the updated part of the L2 table */ | |
1027 | qed_write_l2_table(s, &acb->request, index, acb->cur_nclusters, false, | |
1028 | qed_aio_next_io, acb); | |
1029 | } | |
1030 | return; | |
1031 | ||
1032 | err: | |
1033 | qed_aio_complete(acb, ret); | |
1034 | } | |
1035 | ||
0e71be19 SH |
1036 | static void qed_aio_write_l2_update_cb(void *opaque, int ret) |
1037 | { | |
1038 | QEDAIOCB *acb = opaque; | |
1039 | qed_aio_write_l2_update(acb, ret, acb->cur_cluster); | |
1040 | } | |
1041 | ||
eabba580 SH |
1042 | /** |
1043 | * Flush new data clusters before updating the L2 table | |
1044 | * | |
1045 | * This flush is necessary when a backing file is in use. A crash during an | |
1046 | * allocating write could result in empty clusters in the image. If the write | |
1047 | * only touched a subregion of the cluster, then backing image sectors have | |
1048 | * been lost in the untouched region. The solution is to flush after writing a | |
1049 | * new data cluster and before updating the L2 table. | |
1050 | */ | |
1051 | static void qed_aio_write_flush_before_l2_update(void *opaque, int ret) | |
1052 | { | |
1053 | QEDAIOCB *acb = opaque; | |
1054 | BDRVQEDState *s = acb_to_s(acb); | |
1055 | ||
9a4f4c31 | 1056 | if (!bdrv_aio_flush(s->bs->file->bs, qed_aio_write_l2_update_cb, opaque)) { |
eabba580 SH |
1057 | qed_aio_complete(acb, -EIO); |
1058 | } | |
1059 | } | |
1060 | ||
1061 | /** | |
1062 | * Write data to the image file | |
1063 | */ | |
1064 | static void qed_aio_write_main(void *opaque, int ret) | |
1065 | { | |
1066 | QEDAIOCB *acb = opaque; | |
1067 | BDRVQEDState *s = acb_to_s(acb); | |
1068 | uint64_t offset = acb->cur_cluster + | |
1069 | qed_offset_into_cluster(s, acb->cur_pos); | |
097310b5 | 1070 | BlockCompletionFunc *next_fn; |
eabba580 SH |
1071 | |
1072 | trace_qed_aio_write_main(s, acb, ret, offset, acb->cur_qiov.size); | |
1073 | ||
1074 | if (ret) { | |
1075 | qed_aio_complete(acb, ret); | |
1076 | return; | |
1077 | } | |
1078 | ||
1079 | if (acb->find_cluster_ret == QED_CLUSTER_FOUND) { | |
1080 | next_fn = qed_aio_next_io; | |
1081 | } else { | |
760e0063 | 1082 | if (s->bs->backing) { |
eabba580 SH |
1083 | next_fn = qed_aio_write_flush_before_l2_update; |
1084 | } else { | |
0e71be19 | 1085 | next_fn = qed_aio_write_l2_update_cb; |
eabba580 SH |
1086 | } |
1087 | } | |
1088 | ||
1089 | BLKDBG_EVENT(s->bs->file, BLKDBG_WRITE_AIO); | |
0d1049c7 | 1090 | bdrv_aio_writev(s->bs->file, offset / BDRV_SECTOR_SIZE, |
ad54ae80 PB |
1091 | &acb->cur_qiov, acb->cur_qiov.size / BDRV_SECTOR_SIZE, |
1092 | next_fn, acb); | |
eabba580 SH |
1093 | } |
1094 | ||
1095 | /** | |
1096 | * Populate back untouched region of new data cluster | |
1097 | */ | |
1098 | static void qed_aio_write_postfill(void *opaque, int ret) | |
1099 | { | |
1100 | QEDAIOCB *acb = opaque; | |
1101 | BDRVQEDState *s = acb_to_s(acb); | |
1102 | uint64_t start = acb->cur_pos + acb->cur_qiov.size; | |
1103 | uint64_t len = | |
1104 | qed_start_of_cluster(s, start + s->header.cluster_size - 1) - start; | |
1105 | uint64_t offset = acb->cur_cluster + | |
1106 | qed_offset_into_cluster(s, acb->cur_pos) + | |
1107 | acb->cur_qiov.size; | |
1108 | ||
1109 | if (ret) { | |
1110 | qed_aio_complete(acb, ret); | |
1111 | return; | |
1112 | } | |
1113 | ||
1114 | trace_qed_aio_write_postfill(s, acb, start, len, offset); | |
1115 | qed_copy_from_backing_file(s, start, len, offset, | |
1116 | qed_aio_write_main, acb); | |
1117 | } | |
1118 | ||
1119 | /** | |
1120 | * Populate front untouched region of new data cluster | |
1121 | */ | |
1122 | static void qed_aio_write_prefill(void *opaque, int ret) | |
1123 | { | |
1124 | QEDAIOCB *acb = opaque; | |
1125 | BDRVQEDState *s = acb_to_s(acb); | |
1126 | uint64_t start = qed_start_of_cluster(s, acb->cur_pos); | |
1127 | uint64_t len = qed_offset_into_cluster(s, acb->cur_pos); | |
1128 | ||
1129 | trace_qed_aio_write_prefill(s, acb, start, len, acb->cur_cluster); | |
1130 | qed_copy_from_backing_file(s, start, len, acb->cur_cluster, | |
1131 | qed_aio_write_postfill, acb); | |
1132 | } | |
1133 | ||
0d09c797 SH |
1134 | /** |
1135 | * Check if the QED_F_NEED_CHECK bit should be set during allocating write | |
1136 | */ | |
1137 | static bool qed_should_set_need_check(BDRVQEDState *s) | |
1138 | { | |
1139 | /* The flush before L2 update path ensures consistency */ | |
760e0063 | 1140 | if (s->bs->backing) { |
0d09c797 SH |
1141 | return false; |
1142 | } | |
1143 | ||
1144 | return !(s->header.features & QED_F_NEED_CHECK); | |
1145 | } | |
1146 | ||
0e71be19 SH |
1147 | static void qed_aio_write_zero_cluster(void *opaque, int ret) |
1148 | { | |
1149 | QEDAIOCB *acb = opaque; | |
1150 | ||
1151 | if (ret) { | |
1152 | qed_aio_complete(acb, ret); | |
1153 | return; | |
1154 | } | |
1155 | ||
1156 | qed_aio_write_l2_update(acb, 0, 1); | |
1157 | } | |
1158 | ||
eabba580 SH |
1159 | /** |
1160 | * Write new data cluster | |
1161 | * | |
1162 | * @acb: Write request | |
1163 | * @len: Length in bytes | |
1164 | * | |
1165 | * This path is taken when writing to previously unallocated clusters. | |
1166 | */ | |
1167 | static void qed_aio_write_alloc(QEDAIOCB *acb, size_t len) | |
1168 | { | |
1169 | BDRVQEDState *s = acb_to_s(acb); | |
097310b5 | 1170 | BlockCompletionFunc *cb; |
eabba580 | 1171 | |
6f321e93 SH |
1172 | /* Cancel timer when the first allocating request comes in */ |
1173 | if (QSIMPLEQ_EMPTY(&s->allocating_write_reqs)) { | |
1174 | qed_cancel_need_check_timer(s); | |
1175 | } | |
1176 | ||
eabba580 SH |
1177 | /* Freeze this request if another allocating write is in progress */ |
1178 | if (acb != QSIMPLEQ_FIRST(&s->allocating_write_reqs)) { | |
1179 | QSIMPLEQ_INSERT_TAIL(&s->allocating_write_reqs, acb, next); | |
1180 | } | |
6f321e93 SH |
1181 | if (acb != QSIMPLEQ_FIRST(&s->allocating_write_reqs) || |
1182 | s->allocating_write_reqs_plugged) { | |
eabba580 SH |
1183 | return; /* wait for existing request to finish */ |
1184 | } | |
1185 | ||
1186 | acb->cur_nclusters = qed_bytes_to_clusters(s, | |
1187 | qed_offset_into_cluster(s, acb->cur_pos) + len); | |
1b093c48 | 1188 | qemu_iovec_concat(&acb->cur_qiov, acb->qiov, acb->qiov_offset, len); |
eabba580 | 1189 | |
0e71be19 SH |
1190 | if (acb->flags & QED_AIOCB_ZERO) { |
1191 | /* Skip ahead if the clusters are already zero */ | |
1192 | if (acb->find_cluster_ret == QED_CLUSTER_ZERO) { | |
1193 | qed_aio_next_io(acb, 0); | |
1194 | return; | |
1195 | } | |
1196 | ||
1197 | cb = qed_aio_write_zero_cluster; | |
1198 | } else { | |
1199 | cb = qed_aio_write_prefill; | |
1200 | acb->cur_cluster = qed_alloc_clusters(s, acb->cur_nclusters); | |
1201 | } | |
1202 | ||
0d09c797 SH |
1203 | if (qed_should_set_need_check(s)) { |
1204 | s->header.features |= QED_F_NEED_CHECK; | |
0e71be19 | 1205 | qed_write_header(s, cb, acb); |
0d09c797 | 1206 | } else { |
0e71be19 | 1207 | cb(acb, 0); |
01979a98 | 1208 | } |
eabba580 SH |
1209 | } |
1210 | ||
1211 | /** | |
1212 | * Write data cluster in place | |
1213 | * | |
1214 | * @acb: Write request | |
1215 | * @offset: Cluster offset in bytes | |
1216 | * @len: Length in bytes | |
1217 | * | |
1218 | * This path is taken when writing to already allocated clusters. | |
1219 | */ | |
1220 | static void qed_aio_write_inplace(QEDAIOCB *acb, uint64_t offset, size_t len) | |
1221 | { | |
0e71be19 SH |
1222 | /* Allocate buffer for zero writes */ |
1223 | if (acb->flags & QED_AIOCB_ZERO) { | |
1224 | struct iovec *iov = acb->qiov->iov; | |
1225 | ||
1226 | if (!iov->iov_base) { | |
4f4896db KW |
1227 | iov->iov_base = qemu_try_blockalign(acb->common.bs, iov->iov_len); |
1228 | if (iov->iov_base == NULL) { | |
1229 | qed_aio_complete(acb, -ENOMEM); | |
1230 | return; | |
1231 | } | |
0e71be19 SH |
1232 | memset(iov->iov_base, 0, iov->iov_len); |
1233 | } | |
1234 | } | |
1235 | ||
eabba580 SH |
1236 | /* Calculate the I/O vector */ |
1237 | acb->cur_cluster = offset; | |
1b093c48 | 1238 | qemu_iovec_concat(&acb->cur_qiov, acb->qiov, acb->qiov_offset, len); |
eabba580 SH |
1239 | |
1240 | /* Do the actual write */ | |
1241 | qed_aio_write_main(acb, 0); | |
1242 | } | |
1243 | ||
1244 | /** | |
1245 | * Write data cluster | |
1246 | * | |
1247 | * @opaque: Write request | |
1248 | * @ret: QED_CLUSTER_FOUND, QED_CLUSTER_L2, QED_CLUSTER_L1, | |
1249 | * or -errno | |
1250 | * @offset: Cluster offset in bytes | |
1251 | * @len: Length in bytes | |
1252 | * | |
1253 | * Callback from qed_find_cluster(). | |
1254 | */ | |
1255 | static void qed_aio_write_data(void *opaque, int ret, | |
1256 | uint64_t offset, size_t len) | |
1257 | { | |
1258 | QEDAIOCB *acb = opaque; | |
1259 | ||
1260 | trace_qed_aio_write_data(acb_to_s(acb), acb, ret, offset, len); | |
1261 | ||
1262 | acb->find_cluster_ret = ret; | |
1263 | ||
1264 | switch (ret) { | |
1265 | case QED_CLUSTER_FOUND: | |
1266 | qed_aio_write_inplace(acb, offset, len); | |
1267 | break; | |
1268 | ||
1269 | case QED_CLUSTER_L2: | |
1270 | case QED_CLUSTER_L1: | |
21df65b6 | 1271 | case QED_CLUSTER_ZERO: |
eabba580 SH |
1272 | qed_aio_write_alloc(acb, len); |
1273 | break; | |
1274 | ||
1275 | default: | |
1276 | qed_aio_complete(acb, ret); | |
1277 | break; | |
1278 | } | |
1279 | } | |
1280 | ||
1281 | /** | |
1282 | * Read data cluster | |
1283 | * | |
1284 | * @opaque: Read request | |
1285 | * @ret: QED_CLUSTER_FOUND, QED_CLUSTER_L2, QED_CLUSTER_L1, | |
1286 | * or -errno | |
1287 | * @offset: Cluster offset in bytes | |
1288 | * @len: Length in bytes | |
1289 | * | |
1290 | * Callback from qed_find_cluster(). | |
1291 | */ | |
1292 | static void qed_aio_read_data(void *opaque, int ret, | |
1293 | uint64_t offset, size_t len) | |
1294 | { | |
1295 | QEDAIOCB *acb = opaque; | |
1296 | BDRVQEDState *s = acb_to_s(acb); | |
1297 | BlockDriverState *bs = acb->common.bs; | |
eabba580 SH |
1298 | |
1299 | /* Adjust offset into cluster */ | |
1300 | offset += qed_offset_into_cluster(s, acb->cur_pos); | |
1301 | ||
1302 | trace_qed_aio_read_data(s, acb, ret, offset, len); | |
1303 | ||
1304 | if (ret < 0) { | |
1305 | goto err; | |
1306 | } | |
1307 | ||
1b093c48 | 1308 | qemu_iovec_concat(&acb->cur_qiov, acb->qiov, acb->qiov_offset, len); |
eabba580 | 1309 | |
21df65b6 AL |
1310 | /* Handle zero cluster and backing file reads */ |
1311 | if (ret == QED_CLUSTER_ZERO) { | |
3d9b4925 | 1312 | qemu_iovec_memset(&acb->cur_qiov, 0, 0, acb->cur_qiov.size); |
21df65b6 AL |
1313 | qed_aio_next_io(acb, 0); |
1314 | return; | |
1315 | } else if (ret != QED_CLUSTER_FOUND) { | |
eabba580 | 1316 | qed_read_backing_file(s, acb->cur_pos, &acb->cur_qiov, |
f06ee3d4 | 1317 | &acb->backing_qiov, qed_aio_next_io, acb); |
eabba580 SH |
1318 | return; |
1319 | } | |
1320 | ||
1321 | BLKDBG_EVENT(bs->file, BLKDBG_READ_AIO); | |
ebb7af21 | 1322 | bdrv_aio_readv(bs->file, offset / BDRV_SECTOR_SIZE, |
ad54ae80 PB |
1323 | &acb->cur_qiov, acb->cur_qiov.size / BDRV_SECTOR_SIZE, |
1324 | qed_aio_next_io, acb); | |
eabba580 SH |
1325 | return; |
1326 | ||
1327 | err: | |
1328 | qed_aio_complete(acb, ret); | |
1329 | } | |
1330 | ||
1331 | /** | |
1332 | * Begin next I/O or complete the request | |
1333 | */ | |
1334 | static void qed_aio_next_io(void *opaque, int ret) | |
1335 | { | |
1336 | QEDAIOCB *acb = opaque; | |
1337 | BDRVQEDState *s = acb_to_s(acb); | |
6e4f59bd SH |
1338 | QEDFindClusterFunc *io_fn = (acb->flags & QED_AIOCB_WRITE) ? |
1339 | qed_aio_write_data : qed_aio_read_data; | |
eabba580 SH |
1340 | |
1341 | trace_qed_aio_next_io(s, acb, ret, acb->cur_pos + acb->cur_qiov.size); | |
1342 | ||
f06ee3d4 KW |
1343 | if (acb->backing_qiov) { |
1344 | qemu_iovec_destroy(acb->backing_qiov); | |
1345 | g_free(acb->backing_qiov); | |
1346 | acb->backing_qiov = NULL; | |
1347 | } | |
1348 | ||
eabba580 SH |
1349 | /* Handle I/O error */ |
1350 | if (ret) { | |
1351 | qed_aio_complete(acb, ret); | |
1352 | return; | |
1353 | } | |
1354 | ||
1355 | acb->qiov_offset += acb->cur_qiov.size; | |
1356 | acb->cur_pos += acb->cur_qiov.size; | |
1357 | qemu_iovec_reset(&acb->cur_qiov); | |
1358 | ||
1359 | /* Complete request */ | |
1360 | if (acb->cur_pos >= acb->end_pos) { | |
1361 | qed_aio_complete(acb, 0); | |
1362 | return; | |
1363 | } | |
1364 | ||
1365 | /* Find next cluster and start I/O */ | |
1366 | qed_find_cluster(s, &acb->request, | |
1367 | acb->cur_pos, acb->end_pos - acb->cur_pos, | |
1368 | io_fn, acb); | |
1369 | } | |
1370 | ||
7c84b1b8 MA |
1371 | static BlockAIOCB *qed_aio_setup(BlockDriverState *bs, |
1372 | int64_t sector_num, | |
1373 | QEMUIOVector *qiov, int nb_sectors, | |
097310b5 | 1374 | BlockCompletionFunc *cb, |
7c84b1b8 | 1375 | void *opaque, int flags) |
eabba580 | 1376 | { |
d7331bed | 1377 | QEDAIOCB *acb = qemu_aio_get(&qed_aiocb_info, bs, cb, opaque); |
eabba580 SH |
1378 | |
1379 | trace_qed_aio_setup(bs->opaque, acb, sector_num, nb_sectors, | |
6e4f59bd | 1380 | opaque, flags); |
eabba580 | 1381 | |
6e4f59bd | 1382 | acb->flags = flags; |
eabba580 SH |
1383 | acb->qiov = qiov; |
1384 | acb->qiov_offset = 0; | |
1385 | acb->cur_pos = (uint64_t)sector_num * BDRV_SECTOR_SIZE; | |
1386 | acb->end_pos = acb->cur_pos + nb_sectors * BDRV_SECTOR_SIZE; | |
f06ee3d4 | 1387 | acb->backing_qiov = NULL; |
eabba580 SH |
1388 | acb->request.l2_table = NULL; |
1389 | qemu_iovec_init(&acb->cur_qiov, qiov->niov); | |
1390 | ||
1391 | /* Start request */ | |
1392 | qed_aio_next_io(acb, 0); | |
1393 | return &acb->common; | |
1394 | } | |
1395 | ||
7c84b1b8 MA |
1396 | static BlockAIOCB *bdrv_qed_aio_readv(BlockDriverState *bs, |
1397 | int64_t sector_num, | |
1398 | QEMUIOVector *qiov, int nb_sectors, | |
097310b5 | 1399 | BlockCompletionFunc *cb, |
7c84b1b8 | 1400 | void *opaque) |
75411d23 | 1401 | { |
6e4f59bd | 1402 | return qed_aio_setup(bs, sector_num, qiov, nb_sectors, cb, opaque, 0); |
75411d23 SH |
1403 | } |
1404 | ||
7c84b1b8 MA |
1405 | static BlockAIOCB *bdrv_qed_aio_writev(BlockDriverState *bs, |
1406 | int64_t sector_num, | |
1407 | QEMUIOVector *qiov, int nb_sectors, | |
097310b5 | 1408 | BlockCompletionFunc *cb, |
7c84b1b8 | 1409 | void *opaque) |
75411d23 | 1410 | { |
6e4f59bd SH |
1411 | return qed_aio_setup(bs, sector_num, qiov, nb_sectors, cb, |
1412 | opaque, QED_AIOCB_WRITE); | |
75411d23 SH |
1413 | } |
1414 | ||
0e71be19 SH |
1415 | typedef struct { |
1416 | Coroutine *co; | |
1417 | int ret; | |
1418 | bool done; | |
1419 | } QEDWriteZeroesCB; | |
1420 | ||
49a2e483 | 1421 | static void coroutine_fn qed_co_pwrite_zeroes_cb(void *opaque, int ret) |
0e71be19 SH |
1422 | { |
1423 | QEDWriteZeroesCB *cb = opaque; | |
1424 | ||
1425 | cb->done = true; | |
1426 | cb->ret = ret; | |
1427 | if (cb->co) { | |
1428 | qemu_coroutine_enter(cb->co, NULL); | |
1429 | } | |
1430 | } | |
1431 | ||
49a2e483 EB |
1432 | static int coroutine_fn bdrv_qed_co_pwrite_zeroes(BlockDriverState *bs, |
1433 | int64_t offset, | |
1434 | int count, | |
1435 | BdrvRequestFlags flags) | |
0e71be19 | 1436 | { |
7c84b1b8 | 1437 | BlockAIOCB *blockacb; |
ef72f76e | 1438 | BDRVQEDState *s = bs->opaque; |
0e71be19 SH |
1439 | QEDWriteZeroesCB cb = { .done = false }; |
1440 | QEMUIOVector qiov; | |
1441 | struct iovec iov; | |
1442 | ||
49a2e483 EB |
1443 | /* Fall back if the request is not aligned */ |
1444 | if (qed_offset_into_cluster(s, offset) || | |
1445 | qed_offset_into_cluster(s, count)) { | |
1446 | return -ENOTSUP; | |
ef72f76e SH |
1447 | } |
1448 | ||
0e71be19 SH |
1449 | /* Zero writes start without an I/O buffer. If a buffer becomes necessary |
1450 | * then it will be allocated during request processing. | |
1451 | */ | |
49a2e483 EB |
1452 | iov.iov_base = NULL; |
1453 | iov.iov_len = count; | |
0e71be19 SH |
1454 | |
1455 | qemu_iovec_init_external(&qiov, &iov, 1); | |
49a2e483 EB |
1456 | blockacb = qed_aio_setup(bs, offset >> BDRV_SECTOR_BITS, &qiov, |
1457 | count >> BDRV_SECTOR_BITS, | |
1458 | qed_co_pwrite_zeroes_cb, &cb, | |
0e71be19 SH |
1459 | QED_AIOCB_WRITE | QED_AIOCB_ZERO); |
1460 | if (!blockacb) { | |
1461 | return -EIO; | |
1462 | } | |
1463 | if (!cb.done) { | |
1464 | cb.co = qemu_coroutine_self(); | |
1465 | qemu_coroutine_yield(); | |
1466 | } | |
1467 | assert(cb.done); | |
1468 | return cb.ret; | |
1469 | } | |
1470 | ||
75411d23 SH |
1471 | static int bdrv_qed_truncate(BlockDriverState *bs, int64_t offset) |
1472 | { | |
77a5a000 SH |
1473 | BDRVQEDState *s = bs->opaque; |
1474 | uint64_t old_image_size; | |
1475 | int ret; | |
1476 | ||
1477 | if (!qed_is_image_size_valid(offset, s->header.cluster_size, | |
1478 | s->header.table_size)) { | |
1479 | return -EINVAL; | |
1480 | } | |
1481 | ||
1482 | /* Shrinking is currently not supported */ | |
1483 | if ((uint64_t)offset < s->header.image_size) { | |
1484 | return -ENOTSUP; | |
1485 | } | |
1486 | ||
1487 | old_image_size = s->header.image_size; | |
1488 | s->header.image_size = offset; | |
1489 | ret = qed_write_header_sync(s); | |
1490 | if (ret < 0) { | |
1491 | s->header.image_size = old_image_size; | |
1492 | } | |
1493 | return ret; | |
75411d23 SH |
1494 | } |
1495 | ||
1496 | static int64_t bdrv_qed_getlength(BlockDriverState *bs) | |
1497 | { | |
1498 | BDRVQEDState *s = bs->opaque; | |
1499 | return s->header.image_size; | |
1500 | } | |
1501 | ||
1502 | static int bdrv_qed_get_info(BlockDriverState *bs, BlockDriverInfo *bdi) | |
1503 | { | |
1504 | BDRVQEDState *s = bs->opaque; | |
1505 | ||
1506 | memset(bdi, 0, sizeof(*bdi)); | |
1507 | bdi->cluster_size = s->header.cluster_size; | |
d68dbee8 | 1508 | bdi->is_dirty = s->header.features & QED_F_NEED_CHECK; |
95de6d70 PB |
1509 | bdi->unallocated_blocks_are_zero = true; |
1510 | bdi->can_write_zeroes_with_unmap = true; | |
75411d23 SH |
1511 | return 0; |
1512 | } | |
1513 | ||
1514 | static int bdrv_qed_change_backing_file(BlockDriverState *bs, | |
1515 | const char *backing_file, | |
1516 | const char *backing_fmt) | |
1517 | { | |
1518 | BDRVQEDState *s = bs->opaque; | |
1519 | QEDHeader new_header, le_header; | |
1520 | void *buffer; | |
1521 | size_t buffer_len, backing_file_len; | |
1522 | int ret; | |
1523 | ||
1524 | /* Refuse to set backing filename if unknown compat feature bits are | |
1525 | * active. If the image uses an unknown compat feature then we may not | |
1526 | * know the layout of data following the header structure and cannot safely | |
1527 | * add a new string. | |
1528 | */ | |
1529 | if (backing_file && (s->header.compat_features & | |
1530 | ~QED_COMPAT_FEATURE_MASK)) { | |
1531 | return -ENOTSUP; | |
1532 | } | |
1533 | ||
1534 | memcpy(&new_header, &s->header, sizeof(new_header)); | |
1535 | ||
1536 | new_header.features &= ~(QED_F_BACKING_FILE | | |
1537 | QED_F_BACKING_FORMAT_NO_PROBE); | |
1538 | ||
1539 | /* Adjust feature flags */ | |
1540 | if (backing_file) { | |
1541 | new_header.features |= QED_F_BACKING_FILE; | |
1542 | ||
1543 | if (qed_fmt_is_raw(backing_fmt)) { | |
1544 | new_header.features |= QED_F_BACKING_FORMAT_NO_PROBE; | |
1545 | } | |
1546 | } | |
1547 | ||
1548 | /* Calculate new header size */ | |
1549 | backing_file_len = 0; | |
1550 | ||
1551 | if (backing_file) { | |
1552 | backing_file_len = strlen(backing_file); | |
1553 | } | |
1554 | ||
1555 | buffer_len = sizeof(new_header); | |
1556 | new_header.backing_filename_offset = buffer_len; | |
1557 | new_header.backing_filename_size = backing_file_len; | |
1558 | buffer_len += backing_file_len; | |
1559 | ||
1560 | /* Make sure we can rewrite header without failing */ | |
1561 | if (buffer_len > new_header.header_size * new_header.cluster_size) { | |
1562 | return -ENOSPC; | |
1563 | } | |
1564 | ||
1565 | /* Prepare new header */ | |
7267c094 | 1566 | buffer = g_malloc(buffer_len); |
75411d23 SH |
1567 | |
1568 | qed_header_cpu_to_le(&new_header, &le_header); | |
1569 | memcpy(buffer, &le_header, sizeof(le_header)); | |
1570 | buffer_len = sizeof(le_header); | |
1571 | ||
feba23b1 PB |
1572 | if (backing_file) { |
1573 | memcpy(buffer + buffer_len, backing_file, backing_file_len); | |
1574 | buffer_len += backing_file_len; | |
1575 | } | |
75411d23 SH |
1576 | |
1577 | /* Write new header */ | |
9a4f4c31 | 1578 | ret = bdrv_pwrite_sync(bs->file->bs, 0, buffer, buffer_len); |
7267c094 | 1579 | g_free(buffer); |
75411d23 SH |
1580 | if (ret == 0) { |
1581 | memcpy(&s->header, &new_header, sizeof(new_header)); | |
1582 | } | |
1583 | return ret; | |
1584 | } | |
1585 | ||
5a8a30db | 1586 | static void bdrv_qed_invalidate_cache(BlockDriverState *bs, Error **errp) |
c82954e5 BC |
1587 | { |
1588 | BDRVQEDState *s = bs->opaque; | |
5a8a30db KW |
1589 | Error *local_err = NULL; |
1590 | int ret; | |
c82954e5 BC |
1591 | |
1592 | bdrv_qed_close(bs); | |
3456a8d1 | 1593 | |
c82954e5 | 1594 | memset(s, 0, sizeof(BDRVQEDState)); |
5a8a30db KW |
1595 | ret = bdrv_qed_open(bs, NULL, bs->open_flags, &local_err); |
1596 | if (local_err) { | |
e43bfd9c MA |
1597 | error_propagate(errp, local_err); |
1598 | error_prepend(errp, "Could not reopen qed layer: "); | |
5a8a30db KW |
1599 | return; |
1600 | } else if (ret < 0) { | |
1601 | error_setg_errno(errp, -ret, "Could not reopen qed layer"); | |
1602 | return; | |
1603 | } | |
c82954e5 BC |
1604 | } |
1605 | ||
4534ff54 KW |
1606 | static int bdrv_qed_check(BlockDriverState *bs, BdrvCheckResult *result, |
1607 | BdrvCheckMode fix) | |
75411d23 | 1608 | { |
01979a98 SH |
1609 | BDRVQEDState *s = bs->opaque; |
1610 | ||
4534ff54 | 1611 | return qed_check(s, result, !!fix); |
75411d23 SH |
1612 | } |
1613 | ||
7ab74849 CL |
1614 | static QemuOptsList qed_create_opts = { |
1615 | .name = "qed-create-opts", | |
1616 | .head = QTAILQ_HEAD_INITIALIZER(qed_create_opts.head), | |
1617 | .desc = { | |
1618 | { | |
1619 | .name = BLOCK_OPT_SIZE, | |
1620 | .type = QEMU_OPT_SIZE, | |
1621 | .help = "Virtual disk size" | |
1622 | }, | |
1623 | { | |
1624 | .name = BLOCK_OPT_BACKING_FILE, | |
1625 | .type = QEMU_OPT_STRING, | |
1626 | .help = "File name of a base image" | |
1627 | }, | |
1628 | { | |
1629 | .name = BLOCK_OPT_BACKING_FMT, | |
1630 | .type = QEMU_OPT_STRING, | |
1631 | .help = "Image format of the base image" | |
1632 | }, | |
1633 | { | |
1634 | .name = BLOCK_OPT_CLUSTER_SIZE, | |
1635 | .type = QEMU_OPT_SIZE, | |
1636 | .help = "Cluster size (in bytes)", | |
1637 | .def_value_str = stringify(QED_DEFAULT_CLUSTER_SIZE) | |
1638 | }, | |
1639 | { | |
1640 | .name = BLOCK_OPT_TABLE_SIZE, | |
1641 | .type = QEMU_OPT_SIZE, | |
1642 | .help = "L1/L2 table size (in clusters)" | |
1643 | }, | |
1644 | { /* end of list */ } | |
1645 | } | |
75411d23 SH |
1646 | }; |
1647 | ||
1648 | static BlockDriver bdrv_qed = { | |
1649 | .format_name = "qed", | |
1650 | .instance_size = sizeof(BDRVQEDState), | |
7ab74849 | 1651 | .create_opts = &qed_create_opts, |
8ee79e70 | 1652 | .supports_backing = true, |
75411d23 SH |
1653 | |
1654 | .bdrv_probe = bdrv_qed_probe, | |
1655 | .bdrv_open = bdrv_qed_open, | |
1656 | .bdrv_close = bdrv_qed_close, | |
f9cb20f1 | 1657 | .bdrv_reopen_prepare = bdrv_qed_reopen_prepare, |
c282e1fd | 1658 | .bdrv_create = bdrv_qed_create, |
3ac21627 | 1659 | .bdrv_has_zero_init = bdrv_has_zero_init_1, |
b6b8a333 | 1660 | .bdrv_co_get_block_status = bdrv_qed_co_get_block_status, |
75411d23 SH |
1661 | .bdrv_aio_readv = bdrv_qed_aio_readv, |
1662 | .bdrv_aio_writev = bdrv_qed_aio_writev, | |
49a2e483 | 1663 | .bdrv_co_pwrite_zeroes = bdrv_qed_co_pwrite_zeroes, |
75411d23 SH |
1664 | .bdrv_truncate = bdrv_qed_truncate, |
1665 | .bdrv_getlength = bdrv_qed_getlength, | |
1666 | .bdrv_get_info = bdrv_qed_get_info, | |
d34682cd | 1667 | .bdrv_refresh_limits = bdrv_qed_refresh_limits, |
75411d23 | 1668 | .bdrv_change_backing_file = bdrv_qed_change_backing_file, |
c82954e5 | 1669 | .bdrv_invalidate_cache = bdrv_qed_invalidate_cache, |
75411d23 | 1670 | .bdrv_check = bdrv_qed_check, |
a8c868c3 SH |
1671 | .bdrv_detach_aio_context = bdrv_qed_detach_aio_context, |
1672 | .bdrv_attach_aio_context = bdrv_qed_attach_aio_context, | |
75411d23 SH |
1673 | }; |
1674 | ||
1675 | static void bdrv_qed_init(void) | |
1676 | { | |
1677 | bdrv_register(&bdrv_qed); | |
1678 | } | |
1679 | ||
1680 | block_init(bdrv_qed_init); |