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Fix txg_quiesce thread deadlock
[mirror_zfs.git] / module / zfs / zio.c
CommitLineData
34dc7c2f
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1/*
2 * CDDL HEADER START
3 *
4 * The contents of this file are subject to the terms of the
5 * Common Development and Distribution License (the "License").
6 * You may not use this file except in compliance with the License.
7 *
8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9 * or http://www.opensolaris.org/os/licensing.
10 * See the License for the specific language governing permissions
11 * and limitations under the License.
12 *
13 * When distributing Covered Code, include this CDDL HEADER in each
14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15 * If applicable, add the following below this CDDL HEADER, with the
16 * fields enclosed by brackets "[]" replaced with your own identifying
17 * information: Portions Copyright [yyyy] [name of copyright owner]
18 *
19 * CDDL HEADER END
20 */
21/*
428870ff 22 * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
ebf8e3a2 23 * Copyright (c) 2012 by Delphix. All rights reserved.
a38718a6 24 * Copyright (c) 2011 Nexenta Systems, Inc. All rights reserved.
34dc7c2f
BB
25 */
26
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27#include <sys/zfs_context.h>
28#include <sys/fm/fs/zfs.h>
29#include <sys/spa.h>
30#include <sys/txg.h>
31#include <sys/spa_impl.h>
32#include <sys/vdev_impl.h>
33#include <sys/zio_impl.h>
34#include <sys/zio_compress.h>
35#include <sys/zio_checksum.h>
428870ff
BB
36#include <sys/dmu_objset.h>
37#include <sys/arc.h>
38#include <sys/ddt.h>
34dc7c2f
BB
39
40/*
41 * ==========================================================================
42 * I/O priority table
43 * ==========================================================================
44 */
45uint8_t zio_priority_table[ZIO_PRIORITY_TABLE_SIZE] = {
46 0, /* ZIO_PRIORITY_NOW */
47 0, /* ZIO_PRIORITY_SYNC_READ */
48 0, /* ZIO_PRIORITY_SYNC_WRITE */
34dc7c2f 49 0, /* ZIO_PRIORITY_LOG_WRITE */
428870ff
BB
50 1, /* ZIO_PRIORITY_CACHE_FILL */
51 1, /* ZIO_PRIORITY_AGG */
52 4, /* ZIO_PRIORITY_FREE */
53 4, /* ZIO_PRIORITY_ASYNC_WRITE */
54 6, /* ZIO_PRIORITY_ASYNC_READ */
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BB
55 10, /* ZIO_PRIORITY_RESILVER */
56 20, /* ZIO_PRIORITY_SCRUB */
428870ff 57 2, /* ZIO_PRIORITY_DDT_PREFETCH */
34dc7c2f
BB
58};
59
60/*
61 * ==========================================================================
62 * I/O type descriptions
63 * ==========================================================================
64 */
65char *zio_type_name[ZIO_TYPES] = {
451041db 66 "z_null", "z_rd", "z_wr", "z_fr", "z_cl", "z_ioctl"
428870ff 67};
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68
69/*
70 * ==========================================================================
71 * I/O kmem caches
72 * ==========================================================================
73 */
74kmem_cache_t *zio_cache;
d164b209 75kmem_cache_t *zio_link_cache;
86dd0fd9 76kmem_cache_t *zio_vdev_cache;
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BB
77kmem_cache_t *zio_buf_cache[SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT];
78kmem_cache_t *zio_data_buf_cache[SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT];
c28b2279 79int zio_bulk_flags = 0;
a69052be 80int zio_delay_max = ZIO_DELAY_MAX;
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81
82#ifdef _KERNEL
83extern vmem_t *zio_alloc_arena;
84#endif
6d974228 85extern int zfs_mg_alloc_failures;
34dc7c2f
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86
87/*
b128c09f
BB
88 * An allocating zio is one that either currently has the DVA allocate
89 * stage set or will have it later in its lifetime.
34dc7c2f 90 */
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91#define IO_IS_ALLOCATING(zio) ((zio)->io_orig_pipeline & ZIO_STAGE_DVA_ALLOCATE)
92
c409e464 93int zio_requeue_io_start_cut_in_line = 1;
428870ff
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94
95#ifdef ZFS_DEBUG
96int zio_buf_debug_limit = 16384;
97#else
98int zio_buf_debug_limit = 0;
99#endif
34dc7c2f 100
da6b4005
NB
101static inline void __zio_execute(zio_t *zio);
102
49be0ccf
BB
103static int
104zio_cons(void *arg, void *unused, int kmflag)
105{
106 zio_t *zio = arg;
107
108 bzero(zio, sizeof (zio_t));
109
110 mutex_init(&zio->io_lock, NULL, MUTEX_DEFAULT, NULL);
111 cv_init(&zio->io_cv, NULL, CV_DEFAULT, NULL);
112
113 list_create(&zio->io_parent_list, sizeof (zio_link_t),
114 offsetof(zio_link_t, zl_parent_node));
115 list_create(&zio->io_child_list, sizeof (zio_link_t),
116 offsetof(zio_link_t, zl_child_node));
117
118 return (0);
119}
120
121static void
122zio_dest(void *arg, void *unused)
123{
124 zio_t *zio = arg;
125
126 mutex_destroy(&zio->io_lock);
127 cv_destroy(&zio->io_cv);
128 list_destroy(&zio->io_parent_list);
129 list_destroy(&zio->io_child_list);
130}
131
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132void
133zio_init(void)
134{
135 size_t c;
136 vmem_t *data_alloc_arena = NULL;
137
138#ifdef _KERNEL
139 data_alloc_arena = zio_alloc_arena;
140#endif
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141 zio_cache = kmem_cache_create("zio_cache", sizeof (zio_t), 0,
142 zio_cons, zio_dest, NULL, NULL, NULL, KMC_KMEM);
d164b209 143 zio_link_cache = kmem_cache_create("zio_link_cache",
ae6ba3db 144 sizeof (zio_link_t), 0, NULL, NULL, NULL, NULL, NULL, KMC_KMEM);
86dd0fd9
BB
145 zio_vdev_cache = kmem_cache_create("zio_vdev_cache", sizeof(vdev_io_t),
146 PAGESIZE, NULL, NULL, NULL, NULL, NULL, KMC_VMEM);
34dc7c2f
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147
148 /*
149 * For small buffers, we want a cache for each multiple of
150 * SPA_MINBLOCKSIZE. For medium-size buffers, we want a cache
151 * for each quarter-power of 2. For large buffers, we want
152 * a cache for each multiple of PAGESIZE.
153 */
154 for (c = 0; c < SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT; c++) {
155 size_t size = (c + 1) << SPA_MINBLOCKSHIFT;
156 size_t p2 = size;
157 size_t align = 0;
158
159 while (p2 & (p2 - 1))
160 p2 &= p2 - 1;
161
162 if (size <= 4 * SPA_MINBLOCKSIZE) {
163 align = SPA_MINBLOCKSIZE;
164 } else if (P2PHASE(size, PAGESIZE) == 0) {
165 align = PAGESIZE;
166 } else if (P2PHASE(size, p2 >> 2) == 0) {
167 align = p2 >> 2;
168 }
169
170 if (align != 0) {
171 char name[36];
ae6ba3db
BB
172 int flags = zio_bulk_flags;
173
174 /*
175 * The smallest buffers (512b) are heavily used and
176 * experience a lot of churn. The slabs allocated
177 * for them are also relatively small (32K). Thus
178 * in over to avoid expensive calls to vmalloc() we
179 * make an exception to the usual slab allocation
180 * policy and force these buffers to be kmem backed.
181 */
182 if (size == (1 << SPA_MINBLOCKSHIFT))
183 flags |= KMC_KMEM;
184
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BB
185 (void) sprintf(name, "zio_buf_%lu", (ulong_t)size);
186 zio_buf_cache[c] = kmem_cache_create(name, size,
ae6ba3db 187 align, NULL, NULL, NULL, NULL, NULL, flags);
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BB
188
189 (void) sprintf(name, "zio_data_buf_%lu", (ulong_t)size);
190 zio_data_buf_cache[c] = kmem_cache_create(name, size,
ae6ba3db
BB
191 align, NULL, NULL, NULL, NULL,
192 data_alloc_arena, flags);
34dc7c2f
BB
193 }
194 }
195
196 while (--c != 0) {
197 ASSERT(zio_buf_cache[c] != NULL);
198 if (zio_buf_cache[c - 1] == NULL)
199 zio_buf_cache[c - 1] = zio_buf_cache[c];
200
201 ASSERT(zio_data_buf_cache[c] != NULL);
202 if (zio_data_buf_cache[c - 1] == NULL)
203 zio_data_buf_cache[c - 1] = zio_data_buf_cache[c];
204 }
205
6d974228
GW
206 /*
207 * The zio write taskqs have 1 thread per cpu, allow 1/2 of the taskqs
208 * to fail 3 times per txg or 8 failures, whichever is greater.
209 */
210 zfs_mg_alloc_failures = MAX((3 * max_ncpus / 2), 8);
211
34dc7c2f 212 zio_inject_init();
9759c60f
ED
213
214 lz4_init();
34dc7c2f
BB
215}
216
217void
218zio_fini(void)
219{
220 size_t c;
221 kmem_cache_t *last_cache = NULL;
222 kmem_cache_t *last_data_cache = NULL;
223
224 for (c = 0; c < SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT; c++) {
225 if (zio_buf_cache[c] != last_cache) {
226 last_cache = zio_buf_cache[c];
227 kmem_cache_destroy(zio_buf_cache[c]);
228 }
229 zio_buf_cache[c] = NULL;
230
231 if (zio_data_buf_cache[c] != last_data_cache) {
232 last_data_cache = zio_data_buf_cache[c];
233 kmem_cache_destroy(zio_data_buf_cache[c]);
234 }
235 zio_data_buf_cache[c] = NULL;
236 }
237
86dd0fd9 238 kmem_cache_destroy(zio_vdev_cache);
d164b209 239 kmem_cache_destroy(zio_link_cache);
34dc7c2f
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240 kmem_cache_destroy(zio_cache);
241
242 zio_inject_fini();
9759c60f
ED
243
244 lz4_fini();
34dc7c2f
BB
245}
246
247/*
248 * ==========================================================================
249 * Allocate and free I/O buffers
250 * ==========================================================================
251 */
252
253/*
254 * Use zio_buf_alloc to allocate ZFS metadata. This data will appear in a
255 * crashdump if the kernel panics, so use it judiciously. Obviously, it's
256 * useful to inspect ZFS metadata, but if possible, we should avoid keeping
257 * excess / transient data in-core during a crashdump.
258 */
259void *
260zio_buf_alloc(size_t size)
261{
262 size_t c = (size - 1) >> SPA_MINBLOCKSHIFT;
263
264 ASSERT(c < SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT);
265
ebcfc8a5 266 return (kmem_cache_alloc(zio_buf_cache[c], KM_PUSHPAGE | KM_NODEBUG));
34dc7c2f
BB
267}
268
269/*
270 * Use zio_data_buf_alloc to allocate data. The data will not appear in a
271 * crashdump if the kernel panics. This exists so that we will limit the amount
272 * of ZFS data that shows up in a kernel crashdump. (Thus reducing the amount
273 * of kernel heap dumped to disk when the kernel panics)
274 */
275void *
276zio_data_buf_alloc(size_t size)
277{
278 size_t c = (size - 1) >> SPA_MINBLOCKSHIFT;
279
280 ASSERT(c < SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT);
281
ebcfc8a5
BB
282 return (kmem_cache_alloc(zio_data_buf_cache[c],
283 KM_PUSHPAGE | KM_NODEBUG));
34dc7c2f
BB
284}
285
286void
287zio_buf_free(void *buf, size_t size)
288{
289 size_t c = (size - 1) >> SPA_MINBLOCKSHIFT;
290
291 ASSERT(c < SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT);
292
293 kmem_cache_free(zio_buf_cache[c], buf);
294}
295
296void
297zio_data_buf_free(void *buf, size_t size)
298{
299 size_t c = (size - 1) >> SPA_MINBLOCKSHIFT;
300
301 ASSERT(c < SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT);
302
303 kmem_cache_free(zio_data_buf_cache[c], buf);
304}
305
86dd0fd9
BB
306/*
307 * Dedicated I/O buffers to ensure that memory fragmentation never prevents
308 * or significantly delays the issuing of a zio. These buffers are used
309 * to aggregate I/O and could be used for raidz stripes.
310 */
311void *
312zio_vdev_alloc(void)
313{
314 return (kmem_cache_alloc(zio_vdev_cache, KM_PUSHPAGE));
315}
316
317void
318zio_vdev_free(void *buf)
319{
320 kmem_cache_free(zio_vdev_cache, buf);
321
322}
323
34dc7c2f
BB
324/*
325 * ==========================================================================
326 * Push and pop I/O transform buffers
327 * ==========================================================================
328 */
329static void
b128c09f
BB
330zio_push_transform(zio_t *zio, void *data, uint64_t size, uint64_t bufsize,
331 zio_transform_func_t *transform)
34dc7c2f 332{
691f6ac4 333 zio_transform_t *zt = kmem_alloc(sizeof (zio_transform_t), KM_PUSHPAGE);
34dc7c2f 334
b128c09f
BB
335 zt->zt_orig_data = zio->io_data;
336 zt->zt_orig_size = zio->io_size;
34dc7c2f 337 zt->zt_bufsize = bufsize;
b128c09f 338 zt->zt_transform = transform;
34dc7c2f
BB
339
340 zt->zt_next = zio->io_transform_stack;
341 zio->io_transform_stack = zt;
342
343 zio->io_data = data;
344 zio->io_size = size;
345}
346
347static void
b128c09f 348zio_pop_transforms(zio_t *zio)
34dc7c2f 349{
b128c09f
BB
350 zio_transform_t *zt;
351
352 while ((zt = zio->io_transform_stack) != NULL) {
353 if (zt->zt_transform != NULL)
354 zt->zt_transform(zio,
355 zt->zt_orig_data, zt->zt_orig_size);
34dc7c2f 356
428870ff
BB
357 if (zt->zt_bufsize != 0)
358 zio_buf_free(zio->io_data, zt->zt_bufsize);
34dc7c2f 359
b128c09f
BB
360 zio->io_data = zt->zt_orig_data;
361 zio->io_size = zt->zt_orig_size;
362 zio->io_transform_stack = zt->zt_next;
34dc7c2f 363
b128c09f 364 kmem_free(zt, sizeof (zio_transform_t));
34dc7c2f
BB
365 }
366}
367
b128c09f
BB
368/*
369 * ==========================================================================
370 * I/O transform callbacks for subblocks and decompression
371 * ==========================================================================
372 */
373static void
374zio_subblock(zio_t *zio, void *data, uint64_t size)
375{
376 ASSERT(zio->io_size > size);
377
378 if (zio->io_type == ZIO_TYPE_READ)
379 bcopy(zio->io_data, data, size);
380}
381
382static void
383zio_decompress(zio_t *zio, void *data, uint64_t size)
384{
385 if (zio->io_error == 0 &&
386 zio_decompress_data(BP_GET_COMPRESS(zio->io_bp),
428870ff 387 zio->io_data, data, zio->io_size, size) != 0)
b128c09f
BB
388 zio->io_error = EIO;
389}
390
391/*
392 * ==========================================================================
393 * I/O parent/child relationships and pipeline interlocks
394 * ==========================================================================
395 */
d164b209
BB
396/*
397 * NOTE - Callers to zio_walk_parents() and zio_walk_children must
398 * continue calling these functions until they return NULL.
399 * Otherwise, the next caller will pick up the list walk in
400 * some indeterminate state. (Otherwise every caller would
401 * have to pass in a cookie to keep the state represented by
402 * io_walk_link, which gets annoying.)
403 */
404zio_t *
405zio_walk_parents(zio_t *cio)
406{
407 zio_link_t *zl = cio->io_walk_link;
408 list_t *pl = &cio->io_parent_list;
b128c09f 409
d164b209
BB
410 zl = (zl == NULL) ? list_head(pl) : list_next(pl, zl);
411 cio->io_walk_link = zl;
412
413 if (zl == NULL)
414 return (NULL);
415
416 ASSERT(zl->zl_child == cio);
417 return (zl->zl_parent);
418}
419
420zio_t *
421zio_walk_children(zio_t *pio)
422{
423 zio_link_t *zl = pio->io_walk_link;
424 list_t *cl = &pio->io_child_list;
425
426 zl = (zl == NULL) ? list_head(cl) : list_next(cl, zl);
427 pio->io_walk_link = zl;
428
429 if (zl == NULL)
430 return (NULL);
431
432 ASSERT(zl->zl_parent == pio);
433 return (zl->zl_child);
434}
435
436zio_t *
437zio_unique_parent(zio_t *cio)
438{
439 zio_t *pio = zio_walk_parents(cio);
440
441 VERIFY(zio_walk_parents(cio) == NULL);
442 return (pio);
443}
444
445void
446zio_add_child(zio_t *pio, zio_t *cio)
b128c09f 447{
691f6ac4 448 zio_link_t *zl = kmem_cache_alloc(zio_link_cache, KM_PUSHPAGE);
d6320ddb 449 int w;
d164b209
BB
450
451 /*
452 * Logical I/Os can have logical, gang, or vdev children.
453 * Gang I/Os can have gang or vdev children.
454 * Vdev I/Os can only have vdev children.
455 * The following ASSERT captures all of these constraints.
456 */
457 ASSERT(cio->io_child_type <= pio->io_child_type);
458
459 zl->zl_parent = pio;
460 zl->zl_child = cio;
461
462 mutex_enter(&cio->io_lock);
b128c09f 463 mutex_enter(&pio->io_lock);
d164b209
BB
464
465 ASSERT(pio->io_state[ZIO_WAIT_DONE] == 0);
466
d6320ddb 467 for (w = 0; w < ZIO_WAIT_TYPES; w++)
d164b209
BB
468 pio->io_children[cio->io_child_type][w] += !cio->io_state[w];
469
470 list_insert_head(&pio->io_child_list, zl);
471 list_insert_head(&cio->io_parent_list, zl);
472
428870ff
BB
473 pio->io_child_count++;
474 cio->io_parent_count++;
475
b128c09f 476 mutex_exit(&pio->io_lock);
d164b209 477 mutex_exit(&cio->io_lock);
b128c09f
BB
478}
479
34dc7c2f 480static void
d164b209 481zio_remove_child(zio_t *pio, zio_t *cio, zio_link_t *zl)
b128c09f 482{
d164b209
BB
483 ASSERT(zl->zl_parent == pio);
484 ASSERT(zl->zl_child == cio);
b128c09f 485
d164b209 486 mutex_enter(&cio->io_lock);
b128c09f 487 mutex_enter(&pio->io_lock);
d164b209
BB
488
489 list_remove(&pio->io_child_list, zl);
490 list_remove(&cio->io_parent_list, zl);
491
428870ff
BB
492 pio->io_child_count--;
493 cio->io_parent_count--;
494
b128c09f 495 mutex_exit(&pio->io_lock);
d164b209
BB
496 mutex_exit(&cio->io_lock);
497
498 kmem_cache_free(zio_link_cache, zl);
b128c09f
BB
499}
500
501static boolean_t
502zio_wait_for_children(zio_t *zio, enum zio_child child, enum zio_wait_type wait)
34dc7c2f 503{
b128c09f
BB
504 uint64_t *countp = &zio->io_children[child][wait];
505 boolean_t waiting = B_FALSE;
506
507 mutex_enter(&zio->io_lock);
508 ASSERT(zio->io_stall == NULL);
509 if (*countp != 0) {
428870ff 510 zio->io_stage >>= 1;
b128c09f
BB
511 zio->io_stall = countp;
512 waiting = B_TRUE;
513 }
514 mutex_exit(&zio->io_lock);
515
516 return (waiting);
517}
34dc7c2f 518
bf701a83
BB
519__attribute__((always_inline))
520static inline void
b128c09f
BB
521zio_notify_parent(zio_t *pio, zio_t *zio, enum zio_wait_type wait)
522{
523 uint64_t *countp = &pio->io_children[zio->io_child_type][wait];
524 int *errorp = &pio->io_child_error[zio->io_child_type];
34dc7c2f 525
b128c09f
BB
526 mutex_enter(&pio->io_lock);
527 if (zio->io_error && !(zio->io_flags & ZIO_FLAG_DONT_PROPAGATE))
528 *errorp = zio_worst_error(*errorp, zio->io_error);
529 pio->io_reexecute |= zio->io_reexecute;
530 ASSERT3U(*countp, >, 0);
531 if (--*countp == 0 && pio->io_stall == countp) {
532 pio->io_stall = NULL;
533 mutex_exit(&pio->io_lock);
da6b4005 534 __zio_execute(pio);
b128c09f
BB
535 } else {
536 mutex_exit(&pio->io_lock);
34dc7c2f
BB
537 }
538}
539
b128c09f
BB
540static void
541zio_inherit_child_errors(zio_t *zio, enum zio_child c)
542{
543 if (zio->io_child_error[c] != 0 && zio->io_error == 0)
544 zio->io_error = zio->io_child_error[c];
545}
546
34dc7c2f
BB
547/*
548 * ==========================================================================
b128c09f 549 * Create the various types of I/O (read, write, free, etc)
34dc7c2f
BB
550 * ==========================================================================
551 */
552static zio_t *
428870ff 553zio_create(zio_t *pio, spa_t *spa, uint64_t txg, const blkptr_t *bp,
34dc7c2f 554 void *data, uint64_t size, zio_done_func_t *done, void *private,
428870ff
BB
555 zio_type_t type, int priority, enum zio_flag flags,
556 vdev_t *vd, uint64_t offset, const zbookmark_t *zb,
557 enum zio_stage stage, enum zio_stage pipeline)
34dc7c2f
BB
558{
559 zio_t *zio;
560
561 ASSERT3U(size, <=, SPA_MAXBLOCKSIZE);
562 ASSERT(P2PHASE(size, SPA_MINBLOCKSIZE) == 0);
b128c09f
BB
563 ASSERT(P2PHASE(offset, SPA_MINBLOCKSIZE) == 0);
564
565 ASSERT(!vd || spa_config_held(spa, SCL_STATE_ALL, RW_READER));
566 ASSERT(!bp || !(flags & ZIO_FLAG_CONFIG_WRITER));
567 ASSERT(vd || stage == ZIO_STAGE_OPEN);
34dc7c2f 568
691f6ac4 569 zio = kmem_cache_alloc(zio_cache, KM_PUSHPAGE);
d164b209 570
b128c09f
BB
571 if (vd != NULL)
572 zio->io_child_type = ZIO_CHILD_VDEV;
573 else if (flags & ZIO_FLAG_GANG_CHILD)
574 zio->io_child_type = ZIO_CHILD_GANG;
428870ff
BB
575 else if (flags & ZIO_FLAG_DDT_CHILD)
576 zio->io_child_type = ZIO_CHILD_DDT;
b128c09f
BB
577 else
578 zio->io_child_type = ZIO_CHILD_LOGICAL;
579
34dc7c2f 580 if (bp != NULL) {
49be0ccf 581 zio->io_logical = NULL;
428870ff 582 zio->io_bp = (blkptr_t *)bp;
34dc7c2f
BB
583 zio->io_bp_copy = *bp;
584 zio->io_bp_orig = *bp;
428870ff
BB
585 if (type != ZIO_TYPE_WRITE ||
586 zio->io_child_type == ZIO_CHILD_DDT)
b128c09f 587 zio->io_bp = &zio->io_bp_copy; /* so caller can free */
9babb374 588 if (zio->io_child_type == ZIO_CHILD_LOGICAL)
b128c09f 589 zio->io_logical = zio;
9babb374
BB
590 if (zio->io_child_type > ZIO_CHILD_GANG && BP_IS_GANG(bp))
591 pipeline |= ZIO_GANG_STAGES;
49be0ccf
BB
592 } else {
593 zio->io_logical = NULL;
594 zio->io_bp = NULL;
595 bzero(&zio->io_bp_copy, sizeof (blkptr_t));
596 bzero(&zio->io_bp_orig, sizeof (blkptr_t));
34dc7c2f 597 }
b128c09f
BB
598
599 zio->io_spa = spa;
600 zio->io_txg = txg;
49be0ccf 601 zio->io_ready = NULL;
34dc7c2f
BB
602 zio->io_done = done;
603 zio->io_private = private;
49be0ccf 604 zio->io_prev_space_delta = 0;
34dc7c2f
BB
605 zio->io_type = type;
606 zio->io_priority = priority;
b128c09f 607 zio->io_vd = vd;
49be0ccf
BB
608 zio->io_vsd = NULL;
609 zio->io_vsd_ops = NULL;
b128c09f 610 zio->io_offset = offset;
49be0ccf 611 zio->io_deadline = 0;
428870ff
BB
612 zio->io_orig_data = zio->io_data = data;
613 zio->io_orig_size = zio->io_size = size;
b128c09f
BB
614 zio->io_orig_flags = zio->io_flags = flags;
615 zio->io_orig_stage = zio->io_stage = stage;
616 zio->io_orig_pipeline = zio->io_pipeline = pipeline;
49be0ccf
BB
617 bzero(&zio->io_prop, sizeof (zio_prop_t));
618 zio->io_cmd = 0;
619 zio->io_reexecute = 0;
620 zio->io_bp_override = NULL;
621 zio->io_walk_link = NULL;
622 zio->io_transform_stack = NULL;
623 zio->io_delay = 0;
624 zio->io_error = 0;
625 zio->io_child_count = 0;
626 zio->io_parent_count = 0;
627 zio->io_stall = NULL;
628 zio->io_gang_leader = NULL;
629 zio->io_gang_tree = NULL;
630 zio->io_executor = NULL;
631 zio->io_waiter = NULL;
632 zio->io_cksum_report = NULL;
633 zio->io_ena = 0;
634 bzero(zio->io_child_error, sizeof (int) * ZIO_CHILD_TYPES);
635 bzero(zio->io_children,
636 sizeof (uint64_t) * ZIO_CHILD_TYPES * ZIO_WAIT_TYPES);
637 bzero(&zio->io_bookmark, sizeof (zbookmark_t));
34dc7c2f 638
d164b209
BB
639 zio->io_state[ZIO_WAIT_READY] = (stage >= ZIO_STAGE_READY);
640 zio->io_state[ZIO_WAIT_DONE] = (stage >= ZIO_STAGE_DONE);
641
b128c09f
BB
642 if (zb != NULL)
643 zio->io_bookmark = *zb;
644
645 if (pio != NULL) {
b128c09f 646 if (zio->io_logical == NULL)
34dc7c2f 647 zio->io_logical = pio->io_logical;
9babb374
BB
648 if (zio->io_child_type == ZIO_CHILD_GANG)
649 zio->io_gang_leader = pio->io_gang_leader;
b128c09f 650 zio_add_child(pio, zio);
34dc7c2f
BB
651 }
652
a38718a6
GA
653 taskq_init_ent(&zio->io_tqent);
654
34dc7c2f
BB
655 return (zio);
656}
657
658static void
b128c09f 659zio_destroy(zio_t *zio)
34dc7c2f 660{
b128c09f 661 kmem_cache_free(zio_cache, zio);
34dc7c2f
BB
662}
663
664zio_t *
d164b209 665zio_null(zio_t *pio, spa_t *spa, vdev_t *vd, zio_done_func_t *done,
428870ff 666 void *private, enum zio_flag flags)
34dc7c2f
BB
667{
668 zio_t *zio;
669
670 zio = zio_create(pio, spa, 0, NULL, NULL, 0, done, private,
d164b209 671 ZIO_TYPE_NULL, ZIO_PRIORITY_NOW, flags, vd, 0, NULL,
b128c09f 672 ZIO_STAGE_OPEN, ZIO_INTERLOCK_PIPELINE);
34dc7c2f
BB
673
674 return (zio);
675}
676
677zio_t *
428870ff 678zio_root(spa_t *spa, zio_done_func_t *done, void *private, enum zio_flag flags)
34dc7c2f 679{
d164b209 680 return (zio_null(NULL, spa, NULL, done, private, flags));
34dc7c2f
BB
681}
682
683zio_t *
b128c09f
BB
684zio_read(zio_t *pio, spa_t *spa, const blkptr_t *bp,
685 void *data, uint64_t size, zio_done_func_t *done, void *private,
428870ff 686 int priority, enum zio_flag flags, const zbookmark_t *zb)
34dc7c2f
BB
687{
688 zio_t *zio;
689
428870ff 690 zio = zio_create(pio, spa, BP_PHYSICAL_BIRTH(bp), bp,
b128c09f
BB
691 data, size, done, private,
692 ZIO_TYPE_READ, priority, flags, NULL, 0, zb,
428870ff
BB
693 ZIO_STAGE_OPEN, (flags & ZIO_FLAG_DDT_CHILD) ?
694 ZIO_DDT_CHILD_READ_PIPELINE : ZIO_READ_PIPELINE);
34dc7c2f 695
b128c09f
BB
696 return (zio);
697}
34dc7c2f 698
34dc7c2f 699zio_t *
b128c09f 700zio_write(zio_t *pio, spa_t *spa, uint64_t txg, blkptr_t *bp,
428870ff 701 void *data, uint64_t size, const zio_prop_t *zp,
b128c09f 702 zio_done_func_t *ready, zio_done_func_t *done, void *private,
428870ff 703 int priority, enum zio_flag flags, const zbookmark_t *zb)
34dc7c2f
BB
704{
705 zio_t *zio;
706
b128c09f
BB
707 ASSERT(zp->zp_checksum >= ZIO_CHECKSUM_OFF &&
708 zp->zp_checksum < ZIO_CHECKSUM_FUNCTIONS &&
709 zp->zp_compress >= ZIO_COMPRESS_OFF &&
710 zp->zp_compress < ZIO_COMPRESS_FUNCTIONS &&
9ae529ec 711 DMU_OT_IS_VALID(zp->zp_type) &&
b128c09f 712 zp->zp_level < 32 &&
428870ff
BB
713 zp->zp_copies > 0 &&
714 zp->zp_copies <= spa_max_replication(spa) &&
715 zp->zp_dedup <= 1 &&
716 zp->zp_dedup_verify <= 1);
34dc7c2f
BB
717
718 zio = zio_create(pio, spa, txg, bp, data, size, done, private,
b128c09f 719 ZIO_TYPE_WRITE, priority, flags, NULL, 0, zb,
428870ff
BB
720 ZIO_STAGE_OPEN, (flags & ZIO_FLAG_DDT_CHILD) ?
721 ZIO_DDT_CHILD_WRITE_PIPELINE : ZIO_WRITE_PIPELINE);
34dc7c2f
BB
722
723 zio->io_ready = ready;
b128c09f 724 zio->io_prop = *zp;
34dc7c2f
BB
725
726 return (zio);
727}
728
729zio_t *
b128c09f
BB
730zio_rewrite(zio_t *pio, spa_t *spa, uint64_t txg, blkptr_t *bp, void *data,
731 uint64_t size, zio_done_func_t *done, void *private, int priority,
428870ff 732 enum zio_flag flags, zbookmark_t *zb)
34dc7c2f
BB
733{
734 zio_t *zio;
735
34dc7c2f 736 zio = zio_create(pio, spa, txg, bp, data, size, done, private,
b128c09f
BB
737 ZIO_TYPE_WRITE, priority, flags, NULL, 0, zb,
738 ZIO_STAGE_OPEN, ZIO_REWRITE_PIPELINE);
34dc7c2f
BB
739
740 return (zio);
741}
742
428870ff
BB
743void
744zio_write_override(zio_t *zio, blkptr_t *bp, int copies)
745{
746 ASSERT(zio->io_type == ZIO_TYPE_WRITE);
747 ASSERT(zio->io_child_type == ZIO_CHILD_LOGICAL);
748 ASSERT(zio->io_stage == ZIO_STAGE_OPEN);
749 ASSERT(zio->io_txg == spa_syncing_txg(zio->io_spa));
750
751 zio->io_prop.zp_copies = copies;
752 zio->io_bp_override = bp;
753}
754
755void
756zio_free(spa_t *spa, uint64_t txg, const blkptr_t *bp)
757{
758 bplist_append(&spa->spa_free_bplist[txg & TXG_MASK], bp);
759}
760
34dc7c2f 761zio_t *
428870ff
BB
762zio_free_sync(zio_t *pio, spa_t *spa, uint64_t txg, const blkptr_t *bp,
763 enum zio_flag flags)
34dc7c2f
BB
764{
765 zio_t *zio;
766
428870ff
BB
767 dprintf_bp(bp, "freeing in txg %llu, pass %u",
768 (longlong_t)txg, spa->spa_sync_pass);
34dc7c2f 769
428870ff
BB
770 ASSERT(!BP_IS_HOLE(bp));
771 ASSERT(spa_syncing_txg(spa) == txg);
772 ASSERT(spa_sync_pass(spa) <= SYNC_PASS_DEFERRED_FREE);
34dc7c2f 773
b128c09f 774 zio = zio_create(pio, spa, txg, bp, NULL, BP_GET_PSIZE(bp),
428870ff 775 NULL, NULL, ZIO_TYPE_FREE, ZIO_PRIORITY_FREE, flags,
b128c09f 776 NULL, 0, NULL, ZIO_STAGE_OPEN, ZIO_FREE_PIPELINE);
34dc7c2f
BB
777
778 return (zio);
779}
780
781zio_t *
428870ff
BB
782zio_claim(zio_t *pio, spa_t *spa, uint64_t txg, const blkptr_t *bp,
783 zio_done_func_t *done, void *private, enum zio_flag flags)
34dc7c2f
BB
784{
785 zio_t *zio;
786
787 /*
788 * A claim is an allocation of a specific block. Claims are needed
789 * to support immediate writes in the intent log. The issue is that
790 * immediate writes contain committed data, but in a txg that was
791 * *not* committed. Upon opening the pool after an unclean shutdown,
792 * the intent log claims all blocks that contain immediate write data
793 * so that the SPA knows they're in use.
794 *
795 * All claims *must* be resolved in the first txg -- before the SPA
796 * starts allocating blocks -- so that nothing is allocated twice.
428870ff 797 * If txg == 0 we just verify that the block is claimable.
34dc7c2f
BB
798 */
799 ASSERT3U(spa->spa_uberblock.ub_rootbp.blk_birth, <, spa_first_txg(spa));
428870ff
BB
800 ASSERT(txg == spa_first_txg(spa) || txg == 0);
801 ASSERT(!BP_GET_DEDUP(bp) || !spa_writeable(spa)); /* zdb(1M) */
34dc7c2f 802
b128c09f
BB
803 zio = zio_create(pio, spa, txg, bp, NULL, BP_GET_PSIZE(bp),
804 done, private, ZIO_TYPE_CLAIM, ZIO_PRIORITY_NOW, flags,
805 NULL, 0, NULL, ZIO_STAGE_OPEN, ZIO_CLAIM_PIPELINE);
34dc7c2f
BB
806
807 return (zio);
808}
809
810zio_t *
811zio_ioctl(zio_t *pio, spa_t *spa, vdev_t *vd, int cmd,
428870ff 812 zio_done_func_t *done, void *private, int priority, enum zio_flag flags)
34dc7c2f
BB
813{
814 zio_t *zio;
815 int c;
816
817 if (vd->vdev_children == 0) {
818 zio = zio_create(pio, spa, 0, NULL, NULL, 0, done, private,
b128c09f 819 ZIO_TYPE_IOCTL, priority, flags, vd, 0, NULL,
34dc7c2f
BB
820 ZIO_STAGE_OPEN, ZIO_IOCTL_PIPELINE);
821
34dc7c2f
BB
822 zio->io_cmd = cmd;
823 } else {
d164b209 824 zio = zio_null(pio, spa, NULL, NULL, NULL, flags);
34dc7c2f
BB
825
826 for (c = 0; c < vd->vdev_children; c++)
827 zio_nowait(zio_ioctl(zio, spa, vd->vdev_child[c], cmd,
828 done, private, priority, flags));
829 }
830
831 return (zio);
832}
833
34dc7c2f
BB
834zio_t *
835zio_read_phys(zio_t *pio, vdev_t *vd, uint64_t offset, uint64_t size,
836 void *data, int checksum, zio_done_func_t *done, void *private,
428870ff 837 int priority, enum zio_flag flags, boolean_t labels)
34dc7c2f
BB
838{
839 zio_t *zio;
34dc7c2f 840
b128c09f
BB
841 ASSERT(vd->vdev_children == 0);
842 ASSERT(!labels || offset + size <= VDEV_LABEL_START_SIZE ||
843 offset >= vd->vdev_psize - VDEV_LABEL_END_SIZE);
844 ASSERT3U(offset + size, <=, vd->vdev_psize);
34dc7c2f 845
b128c09f
BB
846 zio = zio_create(pio, vd->vdev_spa, 0, NULL, data, size, done, private,
847 ZIO_TYPE_READ, priority, flags, vd, offset, NULL,
34dc7c2f
BB
848 ZIO_STAGE_OPEN, ZIO_READ_PHYS_PIPELINE);
849
b128c09f 850 zio->io_prop.zp_checksum = checksum;
34dc7c2f
BB
851
852 return (zio);
853}
854
855zio_t *
856zio_write_phys(zio_t *pio, vdev_t *vd, uint64_t offset, uint64_t size,
857 void *data, int checksum, zio_done_func_t *done, void *private,
428870ff 858 int priority, enum zio_flag flags, boolean_t labels)
34dc7c2f 859{
34dc7c2f 860 zio_t *zio;
34dc7c2f 861
b128c09f
BB
862 ASSERT(vd->vdev_children == 0);
863 ASSERT(!labels || offset + size <= VDEV_LABEL_START_SIZE ||
864 offset >= vd->vdev_psize - VDEV_LABEL_END_SIZE);
865 ASSERT3U(offset + size, <=, vd->vdev_psize);
34dc7c2f 866
b128c09f
BB
867 zio = zio_create(pio, vd->vdev_spa, 0, NULL, data, size, done, private,
868 ZIO_TYPE_WRITE, priority, flags, vd, offset, NULL,
34dc7c2f
BB
869 ZIO_STAGE_OPEN, ZIO_WRITE_PHYS_PIPELINE);
870
b128c09f 871 zio->io_prop.zp_checksum = checksum;
34dc7c2f 872
428870ff 873 if (zio_checksum_table[checksum].ci_eck) {
34dc7c2f 874 /*
428870ff 875 * zec checksums are necessarily destructive -- they modify
b128c09f 876 * the end of the write buffer to hold the verifier/checksum.
34dc7c2f 877 * Therefore, we must make a local copy in case the data is
b128c09f 878 * being written to multiple places in parallel.
34dc7c2f 879 */
b128c09f 880 void *wbuf = zio_buf_alloc(size);
34dc7c2f 881 bcopy(data, wbuf, size);
b128c09f 882 zio_push_transform(zio, wbuf, size, size, NULL);
34dc7c2f
BB
883 }
884
885 return (zio);
886}
887
888/*
b128c09f 889 * Create a child I/O to do some work for us.
34dc7c2f
BB
890 */
891zio_t *
b128c09f 892zio_vdev_child_io(zio_t *pio, blkptr_t *bp, vdev_t *vd, uint64_t offset,
428870ff 893 void *data, uint64_t size, int type, int priority, enum zio_flag flags,
34dc7c2f
BB
894 zio_done_func_t *done, void *private)
895{
428870ff 896 enum zio_stage pipeline = ZIO_VDEV_CHILD_PIPELINE;
b128c09f
BB
897 zio_t *zio;
898
899 ASSERT(vd->vdev_parent ==
900 (pio->io_vd ? pio->io_vd : pio->io_spa->spa_root_vdev));
34dc7c2f
BB
901
902 if (type == ZIO_TYPE_READ && bp != NULL) {
903 /*
904 * If we have the bp, then the child should perform the
905 * checksum and the parent need not. This pushes error
906 * detection as close to the leaves as possible and
907 * eliminates redundant checksums in the interior nodes.
908 */
428870ff
BB
909 pipeline |= ZIO_STAGE_CHECKSUM_VERIFY;
910 pio->io_pipeline &= ~ZIO_STAGE_CHECKSUM_VERIFY;
34dc7c2f
BB
911 }
912
b128c09f
BB
913 if (vd->vdev_children == 0)
914 offset += VDEV_LABEL_START_SIZE;
915
428870ff
BB
916 flags |= ZIO_VDEV_CHILD_FLAGS(pio) | ZIO_FLAG_DONT_PROPAGATE;
917
918 /*
919 * If we've decided to do a repair, the write is not speculative --
920 * even if the original read was.
921 */
922 if (flags & ZIO_FLAG_IO_REPAIR)
923 flags &= ~ZIO_FLAG_SPECULATIVE;
924
b128c09f 925 zio = zio_create(pio, pio->io_spa, pio->io_txg, bp, data, size,
428870ff
BB
926 done, private, type, priority, flags, vd, offset, &pio->io_bookmark,
927 ZIO_STAGE_VDEV_IO_START >> 1, pipeline);
34dc7c2f 928
b128c09f 929 return (zio);
34dc7c2f
BB
930}
931
b128c09f
BB
932zio_t *
933zio_vdev_delegated_io(vdev_t *vd, uint64_t offset, void *data, uint64_t size,
428870ff
BB
934 int type, int priority, enum zio_flag flags,
935 zio_done_func_t *done, void *private)
34dc7c2f 936{
b128c09f 937 zio_t *zio;
34dc7c2f 938
b128c09f 939 ASSERT(vd->vdev_ops->vdev_op_leaf);
34dc7c2f 940
b128c09f
BB
941 zio = zio_create(NULL, vd->vdev_spa, 0, NULL,
942 data, size, done, private, type, priority,
943 flags | ZIO_FLAG_CANFAIL | ZIO_FLAG_DONT_RETRY,
944 vd, offset, NULL,
428870ff 945 ZIO_STAGE_VDEV_IO_START >> 1, ZIO_VDEV_CHILD_PIPELINE);
34dc7c2f 946
b128c09f 947 return (zio);
34dc7c2f
BB
948}
949
950void
b128c09f 951zio_flush(zio_t *zio, vdev_t *vd)
34dc7c2f 952{
b128c09f
BB
953 zio_nowait(zio_ioctl(zio, zio->io_spa, vd, DKIOCFLUSHWRITECACHE,
954 NULL, NULL, ZIO_PRIORITY_NOW,
955 ZIO_FLAG_CANFAIL | ZIO_FLAG_DONT_PROPAGATE | ZIO_FLAG_DONT_RETRY));
34dc7c2f
BB
956}
957
428870ff
BB
958void
959zio_shrink(zio_t *zio, uint64_t size)
960{
961 ASSERT(zio->io_executor == NULL);
962 ASSERT(zio->io_orig_size == zio->io_size);
963 ASSERT(size <= zio->io_size);
964
965 /*
966 * We don't shrink for raidz because of problems with the
967 * reconstruction when reading back less than the block size.
968 * Note, BP_IS_RAIDZ() assumes no compression.
969 */
970 ASSERT(BP_GET_COMPRESS(zio->io_bp) == ZIO_COMPRESS_OFF);
971 if (!BP_IS_RAIDZ(zio->io_bp))
972 zio->io_orig_size = zio->io_size = size;
973}
974
34dc7c2f
BB
975/*
976 * ==========================================================================
b128c09f 977 * Prepare to read and write logical blocks
34dc7c2f
BB
978 * ==========================================================================
979 */
b128c09f 980
34dc7c2f 981static int
b128c09f 982zio_read_bp_init(zio_t *zio)
34dc7c2f 983{
b128c09f 984 blkptr_t *bp = zio->io_bp;
34dc7c2f 985
fb5f0bc8 986 if (BP_GET_COMPRESS(bp) != ZIO_COMPRESS_OFF &&
9babb374
BB
987 zio->io_child_type == ZIO_CHILD_LOGICAL &&
988 !(zio->io_flags & ZIO_FLAG_RAW)) {
428870ff
BB
989 uint64_t psize = BP_GET_PSIZE(bp);
990 void *cbuf = zio_buf_alloc(psize);
b128c09f 991
428870ff 992 zio_push_transform(zio, cbuf, psize, psize, zio_decompress);
34dc7c2f 993 }
34dc7c2f 994
9ae529ec 995 if (!DMU_OT_IS_METADATA(BP_GET_TYPE(bp)) && BP_GET_LEVEL(bp) == 0)
b128c09f
BB
996 zio->io_flags |= ZIO_FLAG_DONT_CACHE;
997
428870ff
BB
998 if (BP_GET_TYPE(bp) == DMU_OT_DDT_ZAP)
999 zio->io_flags |= ZIO_FLAG_DONT_CACHE;
1000
1001 if (BP_GET_DEDUP(bp) && zio->io_child_type == ZIO_CHILD_LOGICAL)
1002 zio->io_pipeline = ZIO_DDT_READ_PIPELINE;
1003
b128c09f 1004 return (ZIO_PIPELINE_CONTINUE);
34dc7c2f
BB
1005}
1006
b128c09f
BB
1007static int
1008zio_write_bp_init(zio_t *zio)
34dc7c2f 1009{
428870ff 1010 spa_t *spa = zio->io_spa;
b128c09f 1011 zio_prop_t *zp = &zio->io_prop;
428870ff 1012 enum zio_compress compress = zp->zp_compress;
34dc7c2f 1013 blkptr_t *bp = zio->io_bp;
b128c09f 1014 uint64_t lsize = zio->io_size;
428870ff 1015 uint64_t psize = lsize;
b128c09f 1016 int pass = 1;
34dc7c2f 1017
b128c09f
BB
1018 /*
1019 * If our children haven't all reached the ready stage,
1020 * wait for them and then repeat this pipeline stage.
1021 */
1022 if (zio_wait_for_children(zio, ZIO_CHILD_GANG, ZIO_WAIT_READY) ||
1023 zio_wait_for_children(zio, ZIO_CHILD_LOGICAL, ZIO_WAIT_READY))
1024 return (ZIO_PIPELINE_STOP);
34dc7c2f 1025
b128c09f
BB
1026 if (!IO_IS_ALLOCATING(zio))
1027 return (ZIO_PIPELINE_CONTINUE);
34dc7c2f 1028
428870ff
BB
1029 ASSERT(zio->io_child_type != ZIO_CHILD_DDT);
1030
1031 if (zio->io_bp_override) {
1032 ASSERT(bp->blk_birth != zio->io_txg);
1033 ASSERT(BP_GET_DEDUP(zio->io_bp_override) == 0);
1034
1035 *bp = *zio->io_bp_override;
1036 zio->io_pipeline = ZIO_INTERLOCK_PIPELINE;
1037
1038 if (BP_IS_HOLE(bp) || !zp->zp_dedup)
1039 return (ZIO_PIPELINE_CONTINUE);
1040
1041 ASSERT(zio_checksum_table[zp->zp_checksum].ci_dedup ||
1042 zp->zp_dedup_verify);
1043
1044 if (BP_GET_CHECKSUM(bp) == zp->zp_checksum) {
1045 BP_SET_DEDUP(bp, 1);
1046 zio->io_pipeline |= ZIO_STAGE_DDT_WRITE;
1047 return (ZIO_PIPELINE_CONTINUE);
1048 }
1049 zio->io_bp_override = NULL;
1050 BP_ZERO(bp);
1051 }
34dc7c2f 1052
b128c09f
BB
1053 if (bp->blk_birth == zio->io_txg) {
1054 /*
1055 * We're rewriting an existing block, which means we're
1056 * working on behalf of spa_sync(). For spa_sync() to
1057 * converge, it must eventually be the case that we don't
1058 * have to allocate new blocks. But compression changes
1059 * the blocksize, which forces a reallocate, and makes
1060 * convergence take longer. Therefore, after the first
1061 * few passes, stop compressing to ensure convergence.
1062 */
428870ff
BB
1063 pass = spa_sync_pass(spa);
1064
1065 ASSERT(zio->io_txg == spa_syncing_txg(spa));
1066 ASSERT(zio->io_child_type == ZIO_CHILD_LOGICAL);
1067 ASSERT(!BP_GET_DEDUP(bp));
34dc7c2f 1068
b128c09f
BB
1069 if (pass > SYNC_PASS_DONT_COMPRESS)
1070 compress = ZIO_COMPRESS_OFF;
34dc7c2f 1071
b128c09f 1072 /* Make sure someone doesn't change their mind on overwrites */
428870ff
BB
1073 ASSERT(MIN(zp->zp_copies + BP_IS_GANG(bp),
1074 spa_max_replication(spa)) == BP_GET_NDVAS(bp));
b128c09f 1075 }
34dc7c2f 1076
b128c09f 1077 if (compress != ZIO_COMPRESS_OFF) {
428870ff
BB
1078 void *cbuf = zio_buf_alloc(lsize);
1079 psize = zio_compress_data(compress, zio->io_data, cbuf, lsize);
1080 if (psize == 0 || psize == lsize) {
b128c09f 1081 compress = ZIO_COMPRESS_OFF;
428870ff
BB
1082 zio_buf_free(cbuf, lsize);
1083 } else {
1084 ASSERT(psize < lsize);
1085 zio_push_transform(zio, cbuf, psize, lsize, NULL);
b128c09f
BB
1086 }
1087 }
34dc7c2f 1088
b128c09f
BB
1089 /*
1090 * The final pass of spa_sync() must be all rewrites, but the first
1091 * few passes offer a trade-off: allocating blocks defers convergence,
1092 * but newly allocated blocks are sequential, so they can be written
1093 * to disk faster. Therefore, we allow the first few passes of
1094 * spa_sync() to allocate new blocks, but force rewrites after that.
1095 * There should only be a handful of blocks after pass 1 in any case.
1096 */
428870ff 1097 if (bp->blk_birth == zio->io_txg && BP_GET_PSIZE(bp) == psize &&
b128c09f 1098 pass > SYNC_PASS_REWRITE) {
428870ff 1099 enum zio_stage gang_stages = zio->io_pipeline & ZIO_GANG_STAGES;
d6320ddb 1100 ASSERT(psize != 0);
b128c09f
BB
1101 zio->io_pipeline = ZIO_REWRITE_PIPELINE | gang_stages;
1102 zio->io_flags |= ZIO_FLAG_IO_REWRITE;
1103 } else {
1104 BP_ZERO(bp);
1105 zio->io_pipeline = ZIO_WRITE_PIPELINE;
1106 }
34dc7c2f 1107
428870ff 1108 if (psize == 0) {
b128c09f
BB
1109 zio->io_pipeline = ZIO_INTERLOCK_PIPELINE;
1110 } else {
1111 ASSERT(zp->zp_checksum != ZIO_CHECKSUM_GANG_HEADER);
1112 BP_SET_LSIZE(bp, lsize);
428870ff 1113 BP_SET_PSIZE(bp, psize);
b128c09f
BB
1114 BP_SET_COMPRESS(bp, compress);
1115 BP_SET_CHECKSUM(bp, zp->zp_checksum);
1116 BP_SET_TYPE(bp, zp->zp_type);
1117 BP_SET_LEVEL(bp, zp->zp_level);
428870ff 1118 BP_SET_DEDUP(bp, zp->zp_dedup);
b128c09f 1119 BP_SET_BYTEORDER(bp, ZFS_HOST_BYTEORDER);
428870ff
BB
1120 if (zp->zp_dedup) {
1121 ASSERT(zio->io_child_type == ZIO_CHILD_LOGICAL);
1122 ASSERT(!(zio->io_flags & ZIO_FLAG_IO_REWRITE));
1123 zio->io_pipeline = ZIO_DDT_WRITE_PIPELINE;
1124 }
1125 }
1126
1127 return (ZIO_PIPELINE_CONTINUE);
1128}
1129
1130static int
1131zio_free_bp_init(zio_t *zio)
1132{
1133 blkptr_t *bp = zio->io_bp;
1134
1135 if (zio->io_child_type == ZIO_CHILD_LOGICAL) {
1136 if (BP_GET_DEDUP(bp))
1137 zio->io_pipeline = ZIO_DDT_FREE_PIPELINE;
b128c09f 1138 }
34dc7c2f
BB
1139
1140 return (ZIO_PIPELINE_CONTINUE);
1141}
1142
b128c09f
BB
1143/*
1144 * ==========================================================================
1145 * Execute the I/O pipeline
1146 * ==========================================================================
1147 */
1148
1149static void
428870ff 1150zio_taskq_dispatch(zio_t *zio, enum zio_taskq_type q, boolean_t cutinline)
34dc7c2f 1151{
428870ff 1152 spa_t *spa = zio->io_spa;
b128c09f 1153 zio_type_t t = zio->io_type;
a38718a6 1154 int flags = (cutinline ? TQ_FRONT : 0);
34dc7c2f
BB
1155
1156 /*
9babb374
BB
1157 * If we're a config writer or a probe, the normal issue and
1158 * interrupt threads may all be blocked waiting for the config lock.
1159 * In this case, select the otherwise-unused taskq for ZIO_TYPE_NULL.
34dc7c2f 1160 */
9babb374 1161 if (zio->io_flags & (ZIO_FLAG_CONFIG_WRITER | ZIO_FLAG_PROBE))
b128c09f 1162 t = ZIO_TYPE_NULL;
34dc7c2f
BB
1163
1164 /*
b128c09f 1165 * A similar issue exists for the L2ARC write thread until L2ARC 2.0.
34dc7c2f 1166 */
b128c09f
BB
1167 if (t == ZIO_TYPE_WRITE && zio->io_vd && zio->io_vd->vdev_aux)
1168 t = ZIO_TYPE_NULL;
34dc7c2f 1169
428870ff
BB
1170 /*
1171 * If this is a high priority I/O, then use the high priority taskq.
1172 */
1173 if (zio->io_priority == ZIO_PRIORITY_NOW &&
1174 spa->spa_zio_taskq[t][q + 1] != NULL)
1175 q++;
1176
1177 ASSERT3U(q, <, ZIO_TASKQ_TYPES);
5cc556b4 1178
a38718a6
GA
1179 /*
1180 * NB: We are assuming that the zio can only be dispatched
1181 * to a single taskq at a time. It would be a grievous error
1182 * to dispatch the zio to another taskq at the same time.
1183 */
1184 ASSERT(taskq_empty_ent(&zio->io_tqent));
1185 taskq_dispatch_ent(spa->spa_zio_taskq[t][q],
1186 (task_func_t *)zio_execute, zio, flags, &zio->io_tqent);
b128c09f 1187}
34dc7c2f 1188
b128c09f
BB
1189static boolean_t
1190zio_taskq_member(zio_t *zio, enum zio_taskq_type q)
1191{
1192 kthread_t *executor = zio->io_executor;
1193 spa_t *spa = zio->io_spa;
d6320ddb 1194 zio_type_t t;
34dc7c2f 1195
d6320ddb 1196 for (t = 0; t < ZIO_TYPES; t++)
b128c09f
BB
1197 if (taskq_member(spa->spa_zio_taskq[t][q], executor))
1198 return (B_TRUE);
34dc7c2f 1199
b128c09f
BB
1200 return (B_FALSE);
1201}
34dc7c2f 1202
b128c09f
BB
1203static int
1204zio_issue_async(zio_t *zio)
1205{
428870ff 1206 zio_taskq_dispatch(zio, ZIO_TASKQ_ISSUE, B_FALSE);
b128c09f
BB
1207
1208 return (ZIO_PIPELINE_STOP);
34dc7c2f
BB
1209}
1210
b128c09f
BB
1211void
1212zio_interrupt(zio_t *zio)
34dc7c2f 1213{
428870ff 1214 zio_taskq_dispatch(zio, ZIO_TASKQ_INTERRUPT, B_FALSE);
b128c09f 1215}
34dc7c2f 1216
b128c09f
BB
1217/*
1218 * Execute the I/O pipeline until one of the following occurs:
1219 * (1) the I/O completes; (2) the pipeline stalls waiting for
1220 * dependent child I/Os; (3) the I/O issues, so we're waiting
1221 * for an I/O completion interrupt; (4) the I/O is delegated by
1222 * vdev-level caching or aggregation; (5) the I/O is deferred
1223 * due to vdev-level queueing; (6) the I/O is handed off to
1224 * another thread. In all cases, the pipeline stops whenever
1225 * there's no CPU work; it never burns a thread in cv_wait().
1226 *
1227 * There's no locking on io_stage because there's no legitimate way
1228 * for multiple threads to be attempting to process the same I/O.
1229 */
428870ff 1230static zio_pipe_stage_t *zio_pipeline[];
34dc7c2f 1231
da6b4005
NB
1232/*
1233 * zio_execute() is a wrapper around the static function
1234 * __zio_execute() so that we can force __zio_execute() to be
1235 * inlined. This reduces stack overhead which is important
1236 * because __zio_execute() is called recursively in several zio
1237 * code paths. zio_execute() itself cannot be inlined because
1238 * it is externally visible.
1239 */
b128c09f
BB
1240void
1241zio_execute(zio_t *zio)
da6b4005
NB
1242{
1243 __zio_execute(zio);
1244}
1245
1246__attribute__((always_inline))
1247static inline void
1248__zio_execute(zio_t *zio)
b128c09f
BB
1249{
1250 zio->io_executor = curthread;
34dc7c2f 1251
b128c09f 1252 while (zio->io_stage < ZIO_STAGE_DONE) {
428870ff
BB
1253 enum zio_stage pipeline = zio->io_pipeline;
1254 enum zio_stage stage = zio->io_stage;
91579709 1255 dsl_pool_t *dp;
2fac4c2a 1256 boolean_t cut;
b128c09f 1257 int rv;
34dc7c2f 1258
b128c09f 1259 ASSERT(!MUTEX_HELD(&zio->io_lock));
428870ff
BB
1260 ASSERT(ISP2(stage));
1261 ASSERT(zio->io_stall == NULL);
34dc7c2f 1262
428870ff
BB
1263 do {
1264 stage <<= 1;
1265 } while ((stage & pipeline) == 0);
b128c09f
BB
1266
1267 ASSERT(stage <= ZIO_STAGE_DONE);
34dc7c2f 1268
91579709 1269 dp = spa_get_dsl(zio->io_spa);
2fac4c2a
BB
1270 cut = (stage == ZIO_STAGE_VDEV_IO_START) ?
1271 zio_requeue_io_start_cut_in_line : B_FALSE;
1272
34dc7c2f 1273 /*
b128c09f
BB
1274 * If we are in interrupt context and this pipeline stage
1275 * will grab a config lock that is held across I/O,
428870ff
BB
1276 * or may wait for an I/O that needs an interrupt thread
1277 * to complete, issue async to avoid deadlock.
1278 *
1279 * For VDEV_IO_START, we cut in line so that the io will
1280 * be sent to disk promptly.
34dc7c2f 1281 */
91579709
BB
1282 if ((stage & ZIO_BLOCKING_STAGES) && zio->io_vd == NULL &&
1283 zio_taskq_member(zio, ZIO_TASKQ_INTERRUPT)) {
1284 zio_taskq_dispatch(zio, ZIO_TASKQ_ISSUE, cut);
1285 return;
1286 }
1287
4cec9b2d 1288#ifdef _KERNEL
91579709
BB
1289 /*
1290 * If we executing in the context of the tx_sync_thread,
1291 * or we are performing pool initialization outside of a
1292 * zio_taskq[ZIO_TASKQ_ISSUE] context. Then issue the zio
1293 * async to minimize stack usage for these deep call paths.
1294 */
1295 if ((dp && curthread == dp->dp_tx.tx_sync_thread) ||
1296 (dp && spa_is_initializing(dp->dp_spa) &&
1297 !zio_taskq_member(zio, ZIO_TASKQ_ISSUE))) {
428870ff 1298 zio_taskq_dispatch(zio, ZIO_TASKQ_ISSUE, cut);
b128c09f 1299 return;
34dc7c2f 1300 }
4cec9b2d 1301#endif
34dc7c2f 1302
b128c09f 1303 zio->io_stage = stage;
428870ff 1304 rv = zio_pipeline[highbit(stage) - 1](zio);
34dc7c2f 1305
b128c09f
BB
1306 if (rv == ZIO_PIPELINE_STOP)
1307 return;
34dc7c2f 1308
b128c09f
BB
1309 ASSERT(rv == ZIO_PIPELINE_CONTINUE);
1310 }
34dc7c2f
BB
1311}
1312
da6b4005 1313
b128c09f
BB
1314/*
1315 * ==========================================================================
1316 * Initiate I/O, either sync or async
1317 * ==========================================================================
1318 */
1319int
1320zio_wait(zio_t *zio)
34dc7c2f 1321{
b128c09f 1322 int error;
34dc7c2f 1323
b128c09f
BB
1324 ASSERT(zio->io_stage == ZIO_STAGE_OPEN);
1325 ASSERT(zio->io_executor == NULL);
34dc7c2f 1326
b128c09f 1327 zio->io_waiter = curthread;
34dc7c2f 1328
da6b4005 1329 __zio_execute(zio);
34dc7c2f 1330
b128c09f 1331 mutex_enter(&zio->io_lock);
72f53c56 1332 while (zio->io_executor != NULL)
72938d69 1333 cv_wait_io(&zio->io_cv, &zio->io_lock);
b128c09f 1334 mutex_exit(&zio->io_lock);
34dc7c2f 1335
b128c09f
BB
1336 error = zio->io_error;
1337 zio_destroy(zio);
34dc7c2f 1338
b128c09f
BB
1339 return (error);
1340}
34dc7c2f 1341
b128c09f
BB
1342void
1343zio_nowait(zio_t *zio)
1344{
1345 ASSERT(zio->io_executor == NULL);
34dc7c2f 1346
d164b209
BB
1347 if (zio->io_child_type == ZIO_CHILD_LOGICAL &&
1348 zio_unique_parent(zio) == NULL) {
34dc7c2f 1349 /*
b128c09f 1350 * This is a logical async I/O with no parent to wait for it.
9babb374
BB
1351 * We add it to the spa_async_root_zio "Godfather" I/O which
1352 * will ensure they complete prior to unloading the pool.
34dc7c2f 1353 */
b128c09f 1354 spa_t *spa = zio->io_spa;
9babb374
BB
1355
1356 zio_add_child(spa->spa_async_zio_root, zio);
b128c09f 1357 }
34dc7c2f 1358
da6b4005 1359 __zio_execute(zio);
b128c09f 1360}
34dc7c2f 1361
b128c09f
BB
1362/*
1363 * ==========================================================================
1364 * Reexecute or suspend/resume failed I/O
1365 * ==========================================================================
1366 */
34dc7c2f 1367
b128c09f
BB
1368static void
1369zio_reexecute(zio_t *pio)
1370{
d164b209 1371 zio_t *cio, *cio_next;
d6320ddb 1372 int c, w;
d164b209
BB
1373
1374 ASSERT(pio->io_child_type == ZIO_CHILD_LOGICAL);
1375 ASSERT(pio->io_orig_stage == ZIO_STAGE_OPEN);
9babb374
BB
1376 ASSERT(pio->io_gang_leader == NULL);
1377 ASSERT(pio->io_gang_tree == NULL);
34dc7c2f 1378
b128c09f
BB
1379 pio->io_flags = pio->io_orig_flags;
1380 pio->io_stage = pio->io_orig_stage;
1381 pio->io_pipeline = pio->io_orig_pipeline;
1382 pio->io_reexecute = 0;
1383 pio->io_error = 0;
d6320ddb 1384 for (w = 0; w < ZIO_WAIT_TYPES; w++)
d164b209 1385 pio->io_state[w] = 0;
d6320ddb 1386 for (c = 0; c < ZIO_CHILD_TYPES; c++)
b128c09f 1387 pio->io_child_error[c] = 0;
34dc7c2f 1388
428870ff
BB
1389 if (IO_IS_ALLOCATING(pio))
1390 BP_ZERO(pio->io_bp);
34dc7c2f 1391
b128c09f
BB
1392 /*
1393 * As we reexecute pio's children, new children could be created.
d164b209 1394 * New children go to the head of pio's io_child_list, however,
b128c09f 1395 * so we will (correctly) not reexecute them. The key is that
d164b209
BB
1396 * the remainder of pio's io_child_list, from 'cio_next' onward,
1397 * cannot be affected by any side effects of reexecuting 'cio'.
b128c09f 1398 */
d164b209
BB
1399 for (cio = zio_walk_children(pio); cio != NULL; cio = cio_next) {
1400 cio_next = zio_walk_children(pio);
b128c09f 1401 mutex_enter(&pio->io_lock);
d6320ddb 1402 for (w = 0; w < ZIO_WAIT_TYPES; w++)
d164b209 1403 pio->io_children[cio->io_child_type][w]++;
b128c09f 1404 mutex_exit(&pio->io_lock);
d164b209 1405 zio_reexecute(cio);
34dc7c2f 1406 }
34dc7c2f 1407
b128c09f
BB
1408 /*
1409 * Now that all children have been reexecuted, execute the parent.
9babb374
BB
1410 * We don't reexecute "The Godfather" I/O here as it's the
1411 * responsibility of the caller to wait on him.
b128c09f 1412 */
9babb374 1413 if (!(pio->io_flags & ZIO_FLAG_GODFATHER))
da6b4005 1414 __zio_execute(pio);
34dc7c2f
BB
1415}
1416
b128c09f
BB
1417void
1418zio_suspend(spa_t *spa, zio_t *zio)
34dc7c2f 1419{
b128c09f
BB
1420 if (spa_get_failmode(spa) == ZIO_FAILURE_MODE_PANIC)
1421 fm_panic("Pool '%s' has encountered an uncorrectable I/O "
1422 "failure and the failure mode property for this pool "
1423 "is set to panic.", spa_name(spa));
34dc7c2f 1424
b128c09f 1425 zfs_ereport_post(FM_EREPORT_ZFS_IO_FAILURE, spa, NULL, NULL, 0, 0);
34dc7c2f 1426
b128c09f 1427 mutex_enter(&spa->spa_suspend_lock);
34dc7c2f 1428
b128c09f 1429 if (spa->spa_suspend_zio_root == NULL)
9babb374
BB
1430 spa->spa_suspend_zio_root = zio_root(spa, NULL, NULL,
1431 ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE |
1432 ZIO_FLAG_GODFATHER);
34dc7c2f 1433
b128c09f 1434 spa->spa_suspended = B_TRUE;
34dc7c2f 1435
b128c09f 1436 if (zio != NULL) {
9babb374 1437 ASSERT(!(zio->io_flags & ZIO_FLAG_GODFATHER));
b128c09f
BB
1438 ASSERT(zio != spa->spa_suspend_zio_root);
1439 ASSERT(zio->io_child_type == ZIO_CHILD_LOGICAL);
d164b209 1440 ASSERT(zio_unique_parent(zio) == NULL);
b128c09f
BB
1441 ASSERT(zio->io_stage == ZIO_STAGE_DONE);
1442 zio_add_child(spa->spa_suspend_zio_root, zio);
1443 }
34dc7c2f 1444
b128c09f
BB
1445 mutex_exit(&spa->spa_suspend_lock);
1446}
34dc7c2f 1447
9babb374 1448int
b128c09f
BB
1449zio_resume(spa_t *spa)
1450{
9babb374 1451 zio_t *pio;
34dc7c2f
BB
1452
1453 /*
b128c09f 1454 * Reexecute all previously suspended i/o.
34dc7c2f 1455 */
b128c09f
BB
1456 mutex_enter(&spa->spa_suspend_lock);
1457 spa->spa_suspended = B_FALSE;
1458 cv_broadcast(&spa->spa_suspend_cv);
1459 pio = spa->spa_suspend_zio_root;
1460 spa->spa_suspend_zio_root = NULL;
1461 mutex_exit(&spa->spa_suspend_lock);
1462
1463 if (pio == NULL)
9babb374 1464 return (0);
34dc7c2f 1465
9babb374
BB
1466 zio_reexecute(pio);
1467 return (zio_wait(pio));
b128c09f
BB
1468}
1469
1470void
1471zio_resume_wait(spa_t *spa)
1472{
1473 mutex_enter(&spa->spa_suspend_lock);
1474 while (spa_suspended(spa))
1475 cv_wait(&spa->spa_suspend_cv, &spa->spa_suspend_lock);
1476 mutex_exit(&spa->spa_suspend_lock);
34dc7c2f
BB
1477}
1478
1479/*
1480 * ==========================================================================
b128c09f
BB
1481 * Gang blocks.
1482 *
1483 * A gang block is a collection of small blocks that looks to the DMU
1484 * like one large block. When zio_dva_allocate() cannot find a block
1485 * of the requested size, due to either severe fragmentation or the pool
1486 * being nearly full, it calls zio_write_gang_block() to construct the
1487 * block from smaller fragments.
1488 *
1489 * A gang block consists of a gang header (zio_gbh_phys_t) and up to
1490 * three (SPA_GBH_NBLKPTRS) gang members. The gang header is just like
1491 * an indirect block: it's an array of block pointers. It consumes
1492 * only one sector and hence is allocatable regardless of fragmentation.
1493 * The gang header's bps point to its gang members, which hold the data.
1494 *
1495 * Gang blocks are self-checksumming, using the bp's <vdev, offset, txg>
1496 * as the verifier to ensure uniqueness of the SHA256 checksum.
1497 * Critically, the gang block bp's blk_cksum is the checksum of the data,
1498 * not the gang header. This ensures that data block signatures (needed for
1499 * deduplication) are independent of how the block is physically stored.
1500 *
1501 * Gang blocks can be nested: a gang member may itself be a gang block.
1502 * Thus every gang block is a tree in which root and all interior nodes are
1503 * gang headers, and the leaves are normal blocks that contain user data.
1504 * The root of the gang tree is called the gang leader.
1505 *
1506 * To perform any operation (read, rewrite, free, claim) on a gang block,
1507 * zio_gang_assemble() first assembles the gang tree (minus data leaves)
1508 * in the io_gang_tree field of the original logical i/o by recursively
1509 * reading the gang leader and all gang headers below it. This yields
1510 * an in-core tree containing the contents of every gang header and the
1511 * bps for every constituent of the gang block.
1512 *
1513 * With the gang tree now assembled, zio_gang_issue() just walks the gang tree
1514 * and invokes a callback on each bp. To free a gang block, zio_gang_issue()
1515 * calls zio_free_gang() -- a trivial wrapper around zio_free() -- for each bp.
1516 * zio_claim_gang() provides a similarly trivial wrapper for zio_claim().
1517 * zio_read_gang() is a wrapper around zio_read() that omits reading gang
1518 * headers, since we already have those in io_gang_tree. zio_rewrite_gang()
1519 * performs a zio_rewrite() of the data or, for gang headers, a zio_rewrite()
1520 * of the gang header plus zio_checksum_compute() of the data to update the
1521 * gang header's blk_cksum as described above.
1522 *
1523 * The two-phase assemble/issue model solves the problem of partial failure --
1524 * what if you'd freed part of a gang block but then couldn't read the
1525 * gang header for another part? Assembling the entire gang tree first
1526 * ensures that all the necessary gang header I/O has succeeded before
1527 * starting the actual work of free, claim, or write. Once the gang tree
1528 * is assembled, free and claim are in-memory operations that cannot fail.
1529 *
1530 * In the event that a gang write fails, zio_dva_unallocate() walks the
1531 * gang tree to immediately free (i.e. insert back into the space map)
1532 * everything we've allocated. This ensures that we don't get ENOSPC
1533 * errors during repeated suspend/resume cycles due to a flaky device.
1534 *
1535 * Gang rewrites only happen during sync-to-convergence. If we can't assemble
1536 * the gang tree, we won't modify the block, so we can safely defer the free
1537 * (knowing that the block is still intact). If we *can* assemble the gang
1538 * tree, then even if some of the rewrites fail, zio_dva_unallocate() will free
1539 * each constituent bp and we can allocate a new block on the next sync pass.
1540 *
1541 * In all cases, the gang tree allows complete recovery from partial failure.
34dc7c2f
BB
1542 * ==========================================================================
1543 */
b128c09f
BB
1544
1545static zio_t *
1546zio_read_gang(zio_t *pio, blkptr_t *bp, zio_gang_node_t *gn, void *data)
34dc7c2f 1547{
b128c09f
BB
1548 if (gn != NULL)
1549 return (pio);
34dc7c2f 1550
b128c09f
BB
1551 return (zio_read(pio, pio->io_spa, bp, data, BP_GET_PSIZE(bp),
1552 NULL, NULL, pio->io_priority, ZIO_GANG_CHILD_FLAGS(pio),
1553 &pio->io_bookmark));
1554}
1555
1556zio_t *
1557zio_rewrite_gang(zio_t *pio, blkptr_t *bp, zio_gang_node_t *gn, void *data)
1558{
1559 zio_t *zio;
1560
1561 if (gn != NULL) {
1562 zio = zio_rewrite(pio, pio->io_spa, pio->io_txg, bp,
1563 gn->gn_gbh, SPA_GANGBLOCKSIZE, NULL, NULL, pio->io_priority,
1564 ZIO_GANG_CHILD_FLAGS(pio), &pio->io_bookmark);
34dc7c2f 1565 /*
b128c09f
BB
1566 * As we rewrite each gang header, the pipeline will compute
1567 * a new gang block header checksum for it; but no one will
1568 * compute a new data checksum, so we do that here. The one
1569 * exception is the gang leader: the pipeline already computed
1570 * its data checksum because that stage precedes gang assembly.
1571 * (Presently, nothing actually uses interior data checksums;
1572 * this is just good hygiene.)
34dc7c2f 1573 */
9babb374 1574 if (gn != pio->io_gang_leader->io_gang_tree) {
b128c09f
BB
1575 zio_checksum_compute(zio, BP_GET_CHECKSUM(bp),
1576 data, BP_GET_PSIZE(bp));
1577 }
428870ff
BB
1578 /*
1579 * If we are here to damage data for testing purposes,
1580 * leave the GBH alone so that we can detect the damage.
1581 */
1582 if (pio->io_gang_leader->io_flags & ZIO_FLAG_INDUCE_DAMAGE)
1583 zio->io_pipeline &= ~ZIO_VDEV_IO_STAGES;
34dc7c2f 1584 } else {
b128c09f
BB
1585 zio = zio_rewrite(pio, pio->io_spa, pio->io_txg, bp,
1586 data, BP_GET_PSIZE(bp), NULL, NULL, pio->io_priority,
1587 ZIO_GANG_CHILD_FLAGS(pio), &pio->io_bookmark);
34dc7c2f
BB
1588 }
1589
b128c09f
BB
1590 return (zio);
1591}
34dc7c2f 1592
b128c09f
BB
1593/* ARGSUSED */
1594zio_t *
1595zio_free_gang(zio_t *pio, blkptr_t *bp, zio_gang_node_t *gn, void *data)
1596{
428870ff
BB
1597 return (zio_free_sync(pio, pio->io_spa, pio->io_txg, bp,
1598 ZIO_GANG_CHILD_FLAGS(pio)));
34dc7c2f
BB
1599}
1600
b128c09f
BB
1601/* ARGSUSED */
1602zio_t *
1603zio_claim_gang(zio_t *pio, blkptr_t *bp, zio_gang_node_t *gn, void *data)
34dc7c2f 1604{
b128c09f
BB
1605 return (zio_claim(pio, pio->io_spa, pio->io_txg, bp,
1606 NULL, NULL, ZIO_GANG_CHILD_FLAGS(pio)));
1607}
1608
1609static zio_gang_issue_func_t *zio_gang_issue_func[ZIO_TYPES] = {
1610 NULL,
1611 zio_read_gang,
1612 zio_rewrite_gang,
1613 zio_free_gang,
1614 zio_claim_gang,
1615 NULL
1616};
34dc7c2f 1617
b128c09f 1618static void zio_gang_tree_assemble_done(zio_t *zio);
34dc7c2f 1619
b128c09f
BB
1620static zio_gang_node_t *
1621zio_gang_node_alloc(zio_gang_node_t **gnpp)
1622{
1623 zio_gang_node_t *gn;
34dc7c2f 1624
b128c09f 1625 ASSERT(*gnpp == NULL);
34dc7c2f 1626
691f6ac4 1627 gn = kmem_zalloc(sizeof (*gn), KM_PUSHPAGE);
b128c09f
BB
1628 gn->gn_gbh = zio_buf_alloc(SPA_GANGBLOCKSIZE);
1629 *gnpp = gn;
34dc7c2f 1630
b128c09f 1631 return (gn);
34dc7c2f
BB
1632}
1633
34dc7c2f 1634static void
b128c09f 1635zio_gang_node_free(zio_gang_node_t **gnpp)
34dc7c2f 1636{
b128c09f 1637 zio_gang_node_t *gn = *gnpp;
d6320ddb 1638 int g;
34dc7c2f 1639
d6320ddb 1640 for (g = 0; g < SPA_GBH_NBLKPTRS; g++)
b128c09f
BB
1641 ASSERT(gn->gn_child[g] == NULL);
1642
1643 zio_buf_free(gn->gn_gbh, SPA_GANGBLOCKSIZE);
1644 kmem_free(gn, sizeof (*gn));
1645 *gnpp = NULL;
34dc7c2f
BB
1646}
1647
b128c09f
BB
1648static void
1649zio_gang_tree_free(zio_gang_node_t **gnpp)
34dc7c2f 1650{
b128c09f 1651 zio_gang_node_t *gn = *gnpp;
d6320ddb 1652 int g;
34dc7c2f 1653
b128c09f
BB
1654 if (gn == NULL)
1655 return;
34dc7c2f 1656
d6320ddb 1657 for (g = 0; g < SPA_GBH_NBLKPTRS; g++)
b128c09f 1658 zio_gang_tree_free(&gn->gn_child[g]);
34dc7c2f 1659
b128c09f 1660 zio_gang_node_free(gnpp);
34dc7c2f
BB
1661}
1662
b128c09f 1663static void
9babb374 1664zio_gang_tree_assemble(zio_t *gio, blkptr_t *bp, zio_gang_node_t **gnpp)
34dc7c2f 1665{
b128c09f
BB
1666 zio_gang_node_t *gn = zio_gang_node_alloc(gnpp);
1667
9babb374 1668 ASSERT(gio->io_gang_leader == gio);
b128c09f 1669 ASSERT(BP_IS_GANG(bp));
34dc7c2f 1670
9babb374 1671 zio_nowait(zio_read(gio, gio->io_spa, bp, gn->gn_gbh,
b128c09f 1672 SPA_GANGBLOCKSIZE, zio_gang_tree_assemble_done, gn,
9babb374 1673 gio->io_priority, ZIO_GANG_CHILD_FLAGS(gio), &gio->io_bookmark));
b128c09f 1674}
34dc7c2f 1675
b128c09f
BB
1676static void
1677zio_gang_tree_assemble_done(zio_t *zio)
1678{
9babb374 1679 zio_t *gio = zio->io_gang_leader;
b128c09f
BB
1680 zio_gang_node_t *gn = zio->io_private;
1681 blkptr_t *bp = zio->io_bp;
d6320ddb 1682 int g;
34dc7c2f 1683
9babb374 1684 ASSERT(gio == zio_unique_parent(zio));
428870ff 1685 ASSERT(zio->io_child_count == 0);
34dc7c2f 1686
b128c09f
BB
1687 if (zio->io_error)
1688 return;
34dc7c2f 1689
b128c09f
BB
1690 if (BP_SHOULD_BYTESWAP(bp))
1691 byteswap_uint64_array(zio->io_data, zio->io_size);
34dc7c2f 1692
b128c09f
BB
1693 ASSERT(zio->io_data == gn->gn_gbh);
1694 ASSERT(zio->io_size == SPA_GANGBLOCKSIZE);
428870ff 1695 ASSERT(gn->gn_gbh->zg_tail.zec_magic == ZEC_MAGIC);
34dc7c2f 1696
d6320ddb 1697 for (g = 0; g < SPA_GBH_NBLKPTRS; g++) {
b128c09f
BB
1698 blkptr_t *gbp = &gn->gn_gbh->zg_blkptr[g];
1699 if (!BP_IS_GANG(gbp))
1700 continue;
9babb374 1701 zio_gang_tree_assemble(gio, gbp, &gn->gn_child[g]);
b128c09f 1702 }
34dc7c2f
BB
1703}
1704
b128c09f
BB
1705static void
1706zio_gang_tree_issue(zio_t *pio, zio_gang_node_t *gn, blkptr_t *bp, void *data)
34dc7c2f 1707{
9babb374 1708 zio_t *gio = pio->io_gang_leader;
b128c09f 1709 zio_t *zio;
d6320ddb 1710 int g;
34dc7c2f 1711
b128c09f 1712 ASSERT(BP_IS_GANG(bp) == !!gn);
9babb374
BB
1713 ASSERT(BP_GET_CHECKSUM(bp) == BP_GET_CHECKSUM(gio->io_bp));
1714 ASSERT(BP_GET_LSIZE(bp) == BP_GET_PSIZE(bp) || gn == gio->io_gang_tree);
34dc7c2f 1715
b128c09f
BB
1716 /*
1717 * If you're a gang header, your data is in gn->gn_gbh.
1718 * If you're a gang member, your data is in 'data' and gn == NULL.
1719 */
9babb374 1720 zio = zio_gang_issue_func[gio->io_type](pio, bp, gn, data);
34dc7c2f 1721
b128c09f 1722 if (gn != NULL) {
428870ff 1723 ASSERT(gn->gn_gbh->zg_tail.zec_magic == ZEC_MAGIC);
34dc7c2f 1724
d6320ddb 1725 for (g = 0; g < SPA_GBH_NBLKPTRS; g++) {
b128c09f
BB
1726 blkptr_t *gbp = &gn->gn_gbh->zg_blkptr[g];
1727 if (BP_IS_HOLE(gbp))
1728 continue;
1729 zio_gang_tree_issue(zio, gn->gn_child[g], gbp, data);
1730 data = (char *)data + BP_GET_PSIZE(gbp);
1731 }
34dc7c2f
BB
1732 }
1733
9babb374
BB
1734 if (gn == gio->io_gang_tree)
1735 ASSERT3P((char *)gio->io_data + gio->io_size, ==, data);
34dc7c2f 1736
b128c09f
BB
1737 if (zio != pio)
1738 zio_nowait(zio);
34dc7c2f
BB
1739}
1740
1741static int
b128c09f 1742zio_gang_assemble(zio_t *zio)
34dc7c2f 1743{
b128c09f 1744 blkptr_t *bp = zio->io_bp;
34dc7c2f 1745
9babb374
BB
1746 ASSERT(BP_IS_GANG(bp) && zio->io_gang_leader == NULL);
1747 ASSERT(zio->io_child_type > ZIO_CHILD_GANG);
1748
1749 zio->io_gang_leader = zio;
34dc7c2f 1750
b128c09f 1751 zio_gang_tree_assemble(zio, bp, &zio->io_gang_tree);
34dc7c2f
BB
1752
1753 return (ZIO_PIPELINE_CONTINUE);
1754}
1755
1756static int
b128c09f 1757zio_gang_issue(zio_t *zio)
34dc7c2f 1758{
b128c09f 1759 blkptr_t *bp = zio->io_bp;
34dc7c2f 1760
b128c09f
BB
1761 if (zio_wait_for_children(zio, ZIO_CHILD_GANG, ZIO_WAIT_DONE))
1762 return (ZIO_PIPELINE_STOP);
34dc7c2f 1763
9babb374
BB
1764 ASSERT(BP_IS_GANG(bp) && zio->io_gang_leader == zio);
1765 ASSERT(zio->io_child_type > ZIO_CHILD_GANG);
34dc7c2f 1766
b128c09f 1767 if (zio->io_child_error[ZIO_CHILD_GANG] == 0)
9babb374 1768 zio_gang_tree_issue(zio, zio->io_gang_tree, bp, zio->io_data);
b128c09f 1769 else
9babb374 1770 zio_gang_tree_free(&zio->io_gang_tree);
34dc7c2f 1771
b128c09f 1772 zio->io_pipeline = ZIO_INTERLOCK_PIPELINE;
34dc7c2f
BB
1773
1774 return (ZIO_PIPELINE_CONTINUE);
1775}
1776
1777static void
b128c09f 1778zio_write_gang_member_ready(zio_t *zio)
34dc7c2f 1779{
d164b209 1780 zio_t *pio = zio_unique_parent(zio);
1fde1e37 1781 ASSERTV(zio_t *gio = zio->io_gang_leader;)
34dc7c2f
BB
1782 dva_t *cdva = zio->io_bp->blk_dva;
1783 dva_t *pdva = pio->io_bp->blk_dva;
1784 uint64_t asize;
d6320ddb 1785 int d;
34dc7c2f 1786
b128c09f
BB
1787 if (BP_IS_HOLE(zio->io_bp))
1788 return;
1789
1790 ASSERT(BP_IS_HOLE(&zio->io_bp_orig));
1791
1792 ASSERT(zio->io_child_type == ZIO_CHILD_GANG);
428870ff
BB
1793 ASSERT3U(zio->io_prop.zp_copies, ==, gio->io_prop.zp_copies);
1794 ASSERT3U(zio->io_prop.zp_copies, <=, BP_GET_NDVAS(zio->io_bp));
1795 ASSERT3U(pio->io_prop.zp_copies, <=, BP_GET_NDVAS(pio->io_bp));
34dc7c2f 1796 ASSERT3U(BP_GET_NDVAS(zio->io_bp), <=, BP_GET_NDVAS(pio->io_bp));
34dc7c2f
BB
1797
1798 mutex_enter(&pio->io_lock);
d6320ddb 1799 for (d = 0; d < BP_GET_NDVAS(zio->io_bp); d++) {
34dc7c2f
BB
1800 ASSERT(DVA_GET_GANG(&pdva[d]));
1801 asize = DVA_GET_ASIZE(&pdva[d]);
1802 asize += DVA_GET_ASIZE(&cdva[d]);
1803 DVA_SET_ASIZE(&pdva[d], asize);
1804 }
1805 mutex_exit(&pio->io_lock);
1806}
1807
1808static int
b128c09f 1809zio_write_gang_block(zio_t *pio)
34dc7c2f 1810{
b128c09f
BB
1811 spa_t *spa = pio->io_spa;
1812 blkptr_t *bp = pio->io_bp;
9babb374 1813 zio_t *gio = pio->io_gang_leader;
b128c09f
BB
1814 zio_t *zio;
1815 zio_gang_node_t *gn, **gnpp;
34dc7c2f 1816 zio_gbh_phys_t *gbh;
b128c09f
BB
1817 uint64_t txg = pio->io_txg;
1818 uint64_t resid = pio->io_size;
1819 uint64_t lsize;
428870ff
BB
1820 int copies = gio->io_prop.zp_copies;
1821 int gbh_copies = MIN(copies + 1, spa_max_replication(spa));
b128c09f 1822 zio_prop_t zp;
d6320ddb 1823 int g, error;
34dc7c2f 1824
428870ff
BB
1825 error = metaslab_alloc(spa, spa_normal_class(spa), SPA_GANGBLOCKSIZE,
1826 bp, gbh_copies, txg, pio == gio ? NULL : gio->io_bp,
b128c09f 1827 METASLAB_HINTBP_FAVOR | METASLAB_GANG_HEADER);
34dc7c2f 1828 if (error) {
b128c09f 1829 pio->io_error = error;
34dc7c2f
BB
1830 return (ZIO_PIPELINE_CONTINUE);
1831 }
1832
9babb374
BB
1833 if (pio == gio) {
1834 gnpp = &gio->io_gang_tree;
b128c09f
BB
1835 } else {
1836 gnpp = pio->io_private;
1837 ASSERT(pio->io_ready == zio_write_gang_member_ready);
34dc7c2f
BB
1838 }
1839
b128c09f
BB
1840 gn = zio_gang_node_alloc(gnpp);
1841 gbh = gn->gn_gbh;
1842 bzero(gbh, SPA_GANGBLOCKSIZE);
34dc7c2f 1843
b128c09f
BB
1844 /*
1845 * Create the gang header.
1846 */
1847 zio = zio_rewrite(pio, spa, txg, bp, gbh, SPA_GANGBLOCKSIZE, NULL, NULL,
1848 pio->io_priority, ZIO_GANG_CHILD_FLAGS(pio), &pio->io_bookmark);
34dc7c2f 1849
b128c09f
BB
1850 /*
1851 * Create and nowait the gang children.
1852 */
d6320ddb 1853 for (g = 0; resid != 0; resid -= lsize, g++) {
b128c09f
BB
1854 lsize = P2ROUNDUP(resid / (SPA_GBH_NBLKPTRS - g),
1855 SPA_MINBLOCKSIZE);
1856 ASSERT(lsize >= SPA_MINBLOCKSIZE && lsize <= resid);
1857
9babb374 1858 zp.zp_checksum = gio->io_prop.zp_checksum;
b128c09f
BB
1859 zp.zp_compress = ZIO_COMPRESS_OFF;
1860 zp.zp_type = DMU_OT_NONE;
1861 zp.zp_level = 0;
428870ff
BB
1862 zp.zp_copies = gio->io_prop.zp_copies;
1863 zp.zp_dedup = 0;
1864 zp.zp_dedup_verify = 0;
b128c09f
BB
1865
1866 zio_nowait(zio_write(zio, spa, txg, &gbh->zg_blkptr[g],
1867 (char *)pio->io_data + (pio->io_size - resid), lsize, &zp,
1868 zio_write_gang_member_ready, NULL, &gn->gn_child[g],
1869 pio->io_priority, ZIO_GANG_CHILD_FLAGS(pio),
1870 &pio->io_bookmark));
1871 }
34dc7c2f
BB
1872
1873 /*
b128c09f 1874 * Set pio's pipeline to just wait for zio to finish.
34dc7c2f 1875 */
b128c09f
BB
1876 pio->io_pipeline = ZIO_INTERLOCK_PIPELINE;
1877
920dd524
ED
1878 /*
1879 * We didn't allocate this bp, so make sure it doesn't get unmarked.
1880 */
1881 pio->io_flags &= ~ZIO_FLAG_FASTWRITE;
1882
b128c09f
BB
1883 zio_nowait(zio);
1884
1885 return (ZIO_PIPELINE_CONTINUE);
34dc7c2f
BB
1886}
1887
1888/*
1889 * ==========================================================================
428870ff 1890 * Dedup
34dc7c2f
BB
1891 * ==========================================================================
1892 */
428870ff
BB
1893static void
1894zio_ddt_child_read_done(zio_t *zio)
1895{
1896 blkptr_t *bp = zio->io_bp;
1897 ddt_entry_t *dde = zio->io_private;
1898 ddt_phys_t *ddp;
1899 zio_t *pio = zio_unique_parent(zio);
1900
1901 mutex_enter(&pio->io_lock);
1902 ddp = ddt_phys_select(dde, bp);
1903 if (zio->io_error == 0)
1904 ddt_phys_clear(ddp); /* this ddp doesn't need repair */
1905 if (zio->io_error == 0 && dde->dde_repair_data == NULL)
1906 dde->dde_repair_data = zio->io_data;
1907 else
1908 zio_buf_free(zio->io_data, zio->io_size);
1909 mutex_exit(&pio->io_lock);
1910}
1911
1912static int
1913zio_ddt_read_start(zio_t *zio)
1914{
1915 blkptr_t *bp = zio->io_bp;
d6320ddb 1916 int p;
428870ff
BB
1917
1918 ASSERT(BP_GET_DEDUP(bp));
1919 ASSERT(BP_GET_PSIZE(bp) == zio->io_size);
1920 ASSERT(zio->io_child_type == ZIO_CHILD_LOGICAL);
1921
1922 if (zio->io_child_error[ZIO_CHILD_DDT]) {
1923 ddt_t *ddt = ddt_select(zio->io_spa, bp);
1924 ddt_entry_t *dde = ddt_repair_start(ddt, bp);
1925 ddt_phys_t *ddp = dde->dde_phys;
1926 ddt_phys_t *ddp_self = ddt_phys_select(dde, bp);
1927 blkptr_t blk;
1928
1929 ASSERT(zio->io_vsd == NULL);
1930 zio->io_vsd = dde;
1931
1932 if (ddp_self == NULL)
1933 return (ZIO_PIPELINE_CONTINUE);
1934
d6320ddb 1935 for (p = 0; p < DDT_PHYS_TYPES; p++, ddp++) {
428870ff
BB
1936 if (ddp->ddp_phys_birth == 0 || ddp == ddp_self)
1937 continue;
1938 ddt_bp_create(ddt->ddt_checksum, &dde->dde_key, ddp,
1939 &blk);
1940 zio_nowait(zio_read(zio, zio->io_spa, &blk,
1941 zio_buf_alloc(zio->io_size), zio->io_size,
1942 zio_ddt_child_read_done, dde, zio->io_priority,
1943 ZIO_DDT_CHILD_FLAGS(zio) | ZIO_FLAG_DONT_PROPAGATE,
1944 &zio->io_bookmark));
1945 }
1946 return (ZIO_PIPELINE_CONTINUE);
1947 }
1948
1949 zio_nowait(zio_read(zio, zio->io_spa, bp,
1950 zio->io_data, zio->io_size, NULL, NULL, zio->io_priority,
1951 ZIO_DDT_CHILD_FLAGS(zio), &zio->io_bookmark));
1952
1953 return (ZIO_PIPELINE_CONTINUE);
1954}
1955
1956static int
1957zio_ddt_read_done(zio_t *zio)
1958{
1959 blkptr_t *bp = zio->io_bp;
1960
1961 if (zio_wait_for_children(zio, ZIO_CHILD_DDT, ZIO_WAIT_DONE))
1962 return (ZIO_PIPELINE_STOP);
1963
1964 ASSERT(BP_GET_DEDUP(bp));
1965 ASSERT(BP_GET_PSIZE(bp) == zio->io_size);
1966 ASSERT(zio->io_child_type == ZIO_CHILD_LOGICAL);
1967
1968 if (zio->io_child_error[ZIO_CHILD_DDT]) {
1969 ddt_t *ddt = ddt_select(zio->io_spa, bp);
1970 ddt_entry_t *dde = zio->io_vsd;
1971 if (ddt == NULL) {
1972 ASSERT(spa_load_state(zio->io_spa) != SPA_LOAD_NONE);
1973 return (ZIO_PIPELINE_CONTINUE);
1974 }
1975 if (dde == NULL) {
1976 zio->io_stage = ZIO_STAGE_DDT_READ_START >> 1;
1977 zio_taskq_dispatch(zio, ZIO_TASKQ_ISSUE, B_FALSE);
1978 return (ZIO_PIPELINE_STOP);
1979 }
1980 if (dde->dde_repair_data != NULL) {
1981 bcopy(dde->dde_repair_data, zio->io_data, zio->io_size);
1982 zio->io_child_error[ZIO_CHILD_DDT] = 0;
1983 }
1984 ddt_repair_done(ddt, dde);
1985 zio->io_vsd = NULL;
1986 }
1987
1988 ASSERT(zio->io_vsd == NULL);
1989
1990 return (ZIO_PIPELINE_CONTINUE);
1991}
1992
1993static boolean_t
1994zio_ddt_collision(zio_t *zio, ddt_t *ddt, ddt_entry_t *dde)
1995{
1996 spa_t *spa = zio->io_spa;
d6320ddb 1997 int p;
428870ff
BB
1998
1999 /*
2000 * Note: we compare the original data, not the transformed data,
2001 * because when zio->io_bp is an override bp, we will not have
2002 * pushed the I/O transforms. That's an important optimization
2003 * because otherwise we'd compress/encrypt all dmu_sync() data twice.
2004 */
d6320ddb 2005 for (p = DDT_PHYS_SINGLE; p <= DDT_PHYS_TRIPLE; p++) {
428870ff
BB
2006 zio_t *lio = dde->dde_lead_zio[p];
2007
2008 if (lio != NULL) {
2009 return (lio->io_orig_size != zio->io_orig_size ||
2010 bcmp(zio->io_orig_data, lio->io_orig_data,
2011 zio->io_orig_size) != 0);
2012 }
2013 }
2014
d6320ddb 2015 for (p = DDT_PHYS_SINGLE; p <= DDT_PHYS_TRIPLE; p++) {
428870ff
BB
2016 ddt_phys_t *ddp = &dde->dde_phys[p];
2017
2018 if (ddp->ddp_phys_birth != 0) {
2019 arc_buf_t *abuf = NULL;
2020 uint32_t aflags = ARC_WAIT;
2021 blkptr_t blk = *zio->io_bp;
2022 int error;
2023
2024 ddt_bp_fill(ddp, &blk, ddp->ddp_phys_birth);
2025
2026 ddt_exit(ddt);
2027
2028 error = arc_read_nolock(NULL, spa, &blk,
2029 arc_getbuf_func, &abuf, ZIO_PRIORITY_SYNC_READ,
2030 ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE,
2031 &aflags, &zio->io_bookmark);
2032
2033 if (error == 0) {
2034 if (arc_buf_size(abuf) != zio->io_orig_size ||
2035 bcmp(abuf->b_data, zio->io_orig_data,
2036 zio->io_orig_size) != 0)
2037 error = EEXIST;
2038 VERIFY(arc_buf_remove_ref(abuf, &abuf) == 1);
2039 }
2040
2041 ddt_enter(ddt);
2042 return (error != 0);
2043 }
2044 }
2045
2046 return (B_FALSE);
2047}
2048
2049static void
2050zio_ddt_child_write_ready(zio_t *zio)
2051{
2052 int p = zio->io_prop.zp_copies;
2053 ddt_t *ddt = ddt_select(zio->io_spa, zio->io_bp);
2054 ddt_entry_t *dde = zio->io_private;
2055 ddt_phys_t *ddp = &dde->dde_phys[p];
2056 zio_t *pio;
2057
2058 if (zio->io_error)
2059 return;
2060
2061 ddt_enter(ddt);
2062
2063 ASSERT(dde->dde_lead_zio[p] == zio);
2064
2065 ddt_phys_fill(ddp, zio->io_bp);
2066
2067 while ((pio = zio_walk_parents(zio)) != NULL)
2068 ddt_bp_fill(ddp, pio->io_bp, zio->io_txg);
2069
2070 ddt_exit(ddt);
2071}
2072
2073static void
2074zio_ddt_child_write_done(zio_t *zio)
2075{
2076 int p = zio->io_prop.zp_copies;
2077 ddt_t *ddt = ddt_select(zio->io_spa, zio->io_bp);
2078 ddt_entry_t *dde = zio->io_private;
2079 ddt_phys_t *ddp = &dde->dde_phys[p];
2080
2081 ddt_enter(ddt);
2082
2083 ASSERT(ddp->ddp_refcnt == 0);
2084 ASSERT(dde->dde_lead_zio[p] == zio);
2085 dde->dde_lead_zio[p] = NULL;
2086
2087 if (zio->io_error == 0) {
2088 while (zio_walk_parents(zio) != NULL)
2089 ddt_phys_addref(ddp);
2090 } else {
2091 ddt_phys_clear(ddp);
2092 }
2093
2094 ddt_exit(ddt);
2095}
2096
2097static void
2098zio_ddt_ditto_write_done(zio_t *zio)
2099{
2100 int p = DDT_PHYS_DITTO;
428870ff
BB
2101 blkptr_t *bp = zio->io_bp;
2102 ddt_t *ddt = ddt_select(zio->io_spa, bp);
2103 ddt_entry_t *dde = zio->io_private;
2104 ddt_phys_t *ddp = &dde->dde_phys[p];
2105 ddt_key_t *ddk = &dde->dde_key;
1fde1e37 2106 ASSERTV(zio_prop_t *zp = &zio->io_prop);
428870ff
BB
2107
2108 ddt_enter(ddt);
2109
2110 ASSERT(ddp->ddp_refcnt == 0);
2111 ASSERT(dde->dde_lead_zio[p] == zio);
2112 dde->dde_lead_zio[p] = NULL;
2113
2114 if (zio->io_error == 0) {
2115 ASSERT(ZIO_CHECKSUM_EQUAL(bp->blk_cksum, ddk->ddk_cksum));
2116 ASSERT(zp->zp_copies < SPA_DVAS_PER_BP);
2117 ASSERT(zp->zp_copies == BP_GET_NDVAS(bp) - BP_IS_GANG(bp));
2118 if (ddp->ddp_phys_birth != 0)
2119 ddt_phys_free(ddt, ddk, ddp, zio->io_txg);
2120 ddt_phys_fill(ddp, bp);
2121 }
2122
2123 ddt_exit(ddt);
2124}
2125
2126static int
2127zio_ddt_write(zio_t *zio)
2128{
2129 spa_t *spa = zio->io_spa;
2130 blkptr_t *bp = zio->io_bp;
2131 uint64_t txg = zio->io_txg;
2132 zio_prop_t *zp = &zio->io_prop;
2133 int p = zp->zp_copies;
2134 int ditto_copies;
2135 zio_t *cio = NULL;
2136 zio_t *dio = NULL;
2137 ddt_t *ddt = ddt_select(spa, bp);
2138 ddt_entry_t *dde;
2139 ddt_phys_t *ddp;
2140
2141 ASSERT(BP_GET_DEDUP(bp));
2142 ASSERT(BP_GET_CHECKSUM(bp) == zp->zp_checksum);
2143 ASSERT(BP_IS_HOLE(bp) || zio->io_bp_override);
2144
2145 ddt_enter(ddt);
2146 dde = ddt_lookup(ddt, bp, B_TRUE);
2147 ddp = &dde->dde_phys[p];
2148
2149 if (zp->zp_dedup_verify && zio_ddt_collision(zio, ddt, dde)) {
2150 /*
2151 * If we're using a weak checksum, upgrade to a strong checksum
2152 * and try again. If we're already using a strong checksum,
2153 * we can't resolve it, so just convert to an ordinary write.
2154 * (And automatically e-mail a paper to Nature?)
2155 */
2156 if (!zio_checksum_table[zp->zp_checksum].ci_dedup) {
2157 zp->zp_checksum = spa_dedup_checksum(spa);
2158 zio_pop_transforms(zio);
2159 zio->io_stage = ZIO_STAGE_OPEN;
2160 BP_ZERO(bp);
2161 } else {
2162 zp->zp_dedup = 0;
2163 }
2164 zio->io_pipeline = ZIO_WRITE_PIPELINE;
2165 ddt_exit(ddt);
2166 return (ZIO_PIPELINE_CONTINUE);
2167 }
2168
2169 ditto_copies = ddt_ditto_copies_needed(ddt, dde, ddp);
2170 ASSERT(ditto_copies < SPA_DVAS_PER_BP);
2171
2172 if (ditto_copies > ddt_ditto_copies_present(dde) &&
2173 dde->dde_lead_zio[DDT_PHYS_DITTO] == NULL) {
2174 zio_prop_t czp = *zp;
2175
2176 czp.zp_copies = ditto_copies;
2177
2178 /*
2179 * If we arrived here with an override bp, we won't have run
2180 * the transform stack, so we won't have the data we need to
2181 * generate a child i/o. So, toss the override bp and restart.
2182 * This is safe, because using the override bp is just an
2183 * optimization; and it's rare, so the cost doesn't matter.
2184 */
2185 if (zio->io_bp_override) {
2186 zio_pop_transforms(zio);
2187 zio->io_stage = ZIO_STAGE_OPEN;
2188 zio->io_pipeline = ZIO_WRITE_PIPELINE;
2189 zio->io_bp_override = NULL;
2190 BP_ZERO(bp);
2191 ddt_exit(ddt);
2192 return (ZIO_PIPELINE_CONTINUE);
2193 }
2194
2195 dio = zio_write(zio, spa, txg, bp, zio->io_orig_data,
2196 zio->io_orig_size, &czp, NULL,
2197 zio_ddt_ditto_write_done, dde, zio->io_priority,
2198 ZIO_DDT_CHILD_FLAGS(zio), &zio->io_bookmark);
2199
2200 zio_push_transform(dio, zio->io_data, zio->io_size, 0, NULL);
2201 dde->dde_lead_zio[DDT_PHYS_DITTO] = dio;
2202 }
2203
2204 if (ddp->ddp_phys_birth != 0 || dde->dde_lead_zio[p] != NULL) {
2205 if (ddp->ddp_phys_birth != 0)
2206 ddt_bp_fill(ddp, bp, txg);
2207 if (dde->dde_lead_zio[p] != NULL)
2208 zio_add_child(zio, dde->dde_lead_zio[p]);
2209 else
2210 ddt_phys_addref(ddp);
2211 } else if (zio->io_bp_override) {
2212 ASSERT(bp->blk_birth == txg);
2213 ASSERT(BP_EQUAL(bp, zio->io_bp_override));
2214 ddt_phys_fill(ddp, bp);
2215 ddt_phys_addref(ddp);
2216 } else {
2217 cio = zio_write(zio, spa, txg, bp, zio->io_orig_data,
2218 zio->io_orig_size, zp, zio_ddt_child_write_ready,
2219 zio_ddt_child_write_done, dde, zio->io_priority,
2220 ZIO_DDT_CHILD_FLAGS(zio), &zio->io_bookmark);
2221
2222 zio_push_transform(cio, zio->io_data, zio->io_size, 0, NULL);
2223 dde->dde_lead_zio[p] = cio;
2224 }
2225
2226 ddt_exit(ddt);
2227
2228 if (cio)
2229 zio_nowait(cio);
2230 if (dio)
2231 zio_nowait(dio);
2232
2233 return (ZIO_PIPELINE_CONTINUE);
2234}
2235
2236ddt_entry_t *freedde; /* for debugging */
b128c09f 2237
428870ff
BB
2238static int
2239zio_ddt_free(zio_t *zio)
2240{
2241 spa_t *spa = zio->io_spa;
2242 blkptr_t *bp = zio->io_bp;
2243 ddt_t *ddt = ddt_select(spa, bp);
2244 ddt_entry_t *dde;
2245 ddt_phys_t *ddp;
2246
2247 ASSERT(BP_GET_DEDUP(bp));
2248 ASSERT(zio->io_child_type == ZIO_CHILD_LOGICAL);
2249
2250 ddt_enter(ddt);
2251 freedde = dde = ddt_lookup(ddt, bp, B_TRUE);
5dc6af0e
BB
2252 if (dde) {
2253 ddp = ddt_phys_select(dde, bp);
2254 if (ddp)
2255 ddt_phys_decref(ddp);
2256 }
428870ff
BB
2257 ddt_exit(ddt);
2258
2259 return (ZIO_PIPELINE_CONTINUE);
2260}
2261
2262/*
2263 * ==========================================================================
2264 * Allocate and free blocks
2265 * ==========================================================================
2266 */
34dc7c2f
BB
2267static int
2268zio_dva_allocate(zio_t *zio)
2269{
2270 spa_t *spa = zio->io_spa;
428870ff 2271 metaslab_class_t *mc = spa_normal_class(spa);
34dc7c2f
BB
2272 blkptr_t *bp = zio->io_bp;
2273 int error;
6d974228 2274 int flags = 0;
34dc7c2f 2275
9babb374
BB
2276 if (zio->io_gang_leader == NULL) {
2277 ASSERT(zio->io_child_type > ZIO_CHILD_GANG);
2278 zio->io_gang_leader = zio;
2279 }
2280
34dc7c2f
BB
2281 ASSERT(BP_IS_HOLE(bp));
2282 ASSERT3U(BP_GET_NDVAS(bp), ==, 0);
428870ff
BB
2283 ASSERT3U(zio->io_prop.zp_copies, >, 0);
2284 ASSERT3U(zio->io_prop.zp_copies, <=, spa_max_replication(spa));
34dc7c2f
BB
2285 ASSERT3U(zio->io_size, ==, BP_GET_PSIZE(bp));
2286
6d974228
GW
2287 /*
2288 * The dump device does not support gang blocks so allocation on
2289 * behalf of the dump device (i.e. ZIO_FLAG_NODATA) must avoid
2290 * the "fast" gang feature.
2291 */
2292 flags |= (zio->io_flags & ZIO_FLAG_NODATA) ? METASLAB_GANG_AVOID : 0;
2293 flags |= (zio->io_flags & ZIO_FLAG_GANG_CHILD) ?
2294 METASLAB_GANG_CHILD : 0;
920dd524 2295 flags |= (zio->io_flags & ZIO_FLAG_FASTWRITE) ? METASLAB_FASTWRITE : 0;
b128c09f 2296 error = metaslab_alloc(spa, mc, zio->io_size, bp,
6d974228 2297 zio->io_prop.zp_copies, zio->io_txg, NULL, flags);
34dc7c2f 2298
b128c09f 2299 if (error) {
6d974228
GW
2300 spa_dbgmsg(spa, "%s: metaslab allocation failure: zio %p, "
2301 "size %llu, error %d", spa_name(spa), zio, zio->io_size,
2302 error);
b128c09f
BB
2303 if (error == ENOSPC && zio->io_size > SPA_MINBLOCKSIZE)
2304 return (zio_write_gang_block(zio));
34dc7c2f
BB
2305 zio->io_error = error;
2306 }
2307
2308 return (ZIO_PIPELINE_CONTINUE);
2309}
2310
2311static int
2312zio_dva_free(zio_t *zio)
2313{
b128c09f 2314 metaslab_free(zio->io_spa, zio->io_bp, zio->io_txg, B_FALSE);
34dc7c2f
BB
2315
2316 return (ZIO_PIPELINE_CONTINUE);
2317}
2318
2319static int
2320zio_dva_claim(zio_t *zio)
2321{
b128c09f
BB
2322 int error;
2323
2324 error = metaslab_claim(zio->io_spa, zio->io_bp, zio->io_txg);
2325 if (error)
2326 zio->io_error = error;
34dc7c2f
BB
2327
2328 return (ZIO_PIPELINE_CONTINUE);
2329}
2330
b128c09f
BB
2331/*
2332 * Undo an allocation. This is used by zio_done() when an I/O fails
2333 * and we want to give back the block we just allocated.
2334 * This handles both normal blocks and gang blocks.
2335 */
2336static void
2337zio_dva_unallocate(zio_t *zio, zio_gang_node_t *gn, blkptr_t *bp)
2338{
d6320ddb
BB
2339 int g;
2340
b128c09f 2341 ASSERT(bp->blk_birth == zio->io_txg || BP_IS_HOLE(bp));
428870ff 2342 ASSERT(zio->io_bp_override == NULL);
b128c09f
BB
2343
2344 if (!BP_IS_HOLE(bp))
428870ff 2345 metaslab_free(zio->io_spa, bp, bp->blk_birth, B_TRUE);
b128c09f
BB
2346
2347 if (gn != NULL) {
d6320ddb 2348 for (g = 0; g < SPA_GBH_NBLKPTRS; g++) {
b128c09f
BB
2349 zio_dva_unallocate(zio, gn->gn_child[g],
2350 &gn->gn_gbh->zg_blkptr[g]);
2351 }
2352 }
2353}
2354
2355/*
2356 * Try to allocate an intent log block. Return 0 on success, errno on failure.
2357 */
2358int
920dd524
ED
2359zio_alloc_zil(spa_t *spa, uint64_t txg, blkptr_t *new_bp, uint64_t size,
2360 boolean_t use_slog)
b128c09f 2361{
428870ff 2362 int error = 1;
b128c09f 2363
428870ff
BB
2364 ASSERT(txg > spa_syncing_txg(spa));
2365
ebf8e3a2
BB
2366 /*
2367 * ZIL blocks are always contiguous (i.e. not gang blocks) so we
2368 * set the METASLAB_GANG_AVOID flag so that they don't "fast gang"
2369 * when allocating them.
2370 */
2371 if (use_slog) {
428870ff 2372 error = metaslab_alloc(spa, spa_log_class(spa), size,
920dd524
ED
2373 new_bp, 1, txg, NULL,
2374 METASLAB_FASTWRITE | METASLAB_GANG_AVOID);
ebf8e3a2 2375 }
b128c09f 2376
ebf8e3a2 2377 if (error) {
428870ff 2378 error = metaslab_alloc(spa, spa_normal_class(spa), size,
920dd524
ED
2379 new_bp, 1, txg, NULL,
2380 METASLAB_FASTWRITE | METASLAB_GANG_AVOID);
ebf8e3a2 2381 }
b128c09f
BB
2382
2383 if (error == 0) {
2384 BP_SET_LSIZE(new_bp, size);
2385 BP_SET_PSIZE(new_bp, size);
2386 BP_SET_COMPRESS(new_bp, ZIO_COMPRESS_OFF);
428870ff
BB
2387 BP_SET_CHECKSUM(new_bp,
2388 spa_version(spa) >= SPA_VERSION_SLIM_ZIL
2389 ? ZIO_CHECKSUM_ZILOG2 : ZIO_CHECKSUM_ZILOG);
b128c09f
BB
2390 BP_SET_TYPE(new_bp, DMU_OT_INTENT_LOG);
2391 BP_SET_LEVEL(new_bp, 0);
428870ff 2392 BP_SET_DEDUP(new_bp, 0);
b128c09f
BB
2393 BP_SET_BYTEORDER(new_bp, ZFS_HOST_BYTEORDER);
2394 }
2395
2396 return (error);
2397}
2398
2399/*
428870ff 2400 * Free an intent log block.
b128c09f
BB
2401 */
2402void
428870ff 2403zio_free_zil(spa_t *spa, uint64_t txg, blkptr_t *bp)
b128c09f 2404{
428870ff 2405 ASSERT(BP_GET_TYPE(bp) == DMU_OT_INTENT_LOG);
b128c09f
BB
2406 ASSERT(!BP_IS_GANG(bp));
2407
428870ff 2408 zio_free(spa, txg, bp);
b128c09f
BB
2409}
2410
34dc7c2f
BB
2411/*
2412 * ==========================================================================
2413 * Read and write to physical devices
2414 * ==========================================================================
2415 */
34dc7c2f
BB
2416static int
2417zio_vdev_io_start(zio_t *zio)
2418{
2419 vdev_t *vd = zio->io_vd;
34dc7c2f
BB
2420 uint64_t align;
2421 spa_t *spa = zio->io_spa;
2422
b128c09f
BB
2423 ASSERT(zio->io_error == 0);
2424 ASSERT(zio->io_child_error[ZIO_CHILD_VDEV] == 0);
34dc7c2f 2425
b128c09f
BB
2426 if (vd == NULL) {
2427 if (!(zio->io_flags & ZIO_FLAG_CONFIG_WRITER))
2428 spa_config_enter(spa, SCL_ZIO, zio, RW_READER);
34dc7c2f 2429
b128c09f
BB
2430 /*
2431 * The mirror_ops handle multiple DVAs in a single BP.
2432 */
2433 return (vdev_mirror_ops.vdev_op_io_start(zio));
34dc7c2f
BB
2434 }
2435
572e2857
BB
2436 /*
2437 * We keep track of time-sensitive I/Os so that the scan thread
2438 * can quickly react to certain workloads. In particular, we care
2439 * about non-scrubbing, top-level reads and writes with the following
2440 * characteristics:
2441 * - synchronous writes of user data to non-slog devices
2442 * - any reads of user data
2443 * When these conditions are met, adjust the timestamp of spa_last_io
2444 * which allows the scan thread to adjust its workload accordingly.
2445 */
2446 if (!(zio->io_flags & ZIO_FLAG_SCAN_THREAD) && zio->io_bp != NULL &&
2447 vd == vd->vdev_top && !vd->vdev_islog &&
2448 zio->io_bookmark.zb_objset != DMU_META_OBJSET &&
2449 zio->io_txg != spa_syncing_txg(spa)) {
2450 uint64_t old = spa->spa_last_io;
2451 uint64_t new = ddi_get_lbolt64();
2452 if (old != new)
2453 (void) atomic_cas_64(&spa->spa_last_io, old, new);
2454 }
2455
b128c09f
BB
2456 align = 1ULL << vd->vdev_top->vdev_ashift;
2457
178e73b3 2458 if (P2PHASE(zio->io_size, align) != 0) {
34dc7c2f
BB
2459 uint64_t asize = P2ROUNDUP(zio->io_size, align);
2460 char *abuf = zio_buf_alloc(asize);
178e73b3 2461 ASSERT(vd == vd->vdev_top);
34dc7c2f
BB
2462 if (zio->io_type == ZIO_TYPE_WRITE) {
2463 bcopy(zio->io_data, abuf, zio->io_size);
2464 bzero(abuf + zio->io_size, asize - zio->io_size);
2465 }
b128c09f 2466 zio_push_transform(zio, abuf, asize, asize, zio_subblock);
34dc7c2f
BB
2467 }
2468
2469 ASSERT(P2PHASE(zio->io_offset, align) == 0);
178e73b3 2470 ASSERT(P2PHASE(zio->io_size, align) == 0);
572e2857 2471 VERIFY(zio->io_type != ZIO_TYPE_WRITE || spa_writeable(spa));
fb5f0bc8
BB
2472
2473 /*
2474 * If this is a repair I/O, and there's no self-healing involved --
2475 * that is, we're just resilvering what we expect to resilver --
2476 * then don't do the I/O unless zio's txg is actually in vd's DTL.
2477 * This prevents spurious resilvering with nested replication.
2478 * For example, given a mirror of mirrors, (A+B)+(C+D), if only
2479 * A is out of date, we'll read from C+D, then use the data to
2480 * resilver A+B -- but we don't actually want to resilver B, just A.
2481 * The top-level mirror has no way to know this, so instead we just
2482 * discard unnecessary repairs as we work our way down the vdev tree.
2483 * The same logic applies to any form of nested replication:
2484 * ditto + mirror, RAID-Z + replacing, etc. This covers them all.
2485 */
2486 if ((zio->io_flags & ZIO_FLAG_IO_REPAIR) &&
2487 !(zio->io_flags & ZIO_FLAG_SELF_HEAL) &&
2488 zio->io_txg != 0 && /* not a delegated i/o */
2489 !vdev_dtl_contains(vd, DTL_PARTIAL, zio->io_txg, 1)) {
2490 ASSERT(zio->io_type == ZIO_TYPE_WRITE);
fb5f0bc8
BB
2491 zio_vdev_io_bypass(zio);
2492 return (ZIO_PIPELINE_CONTINUE);
2493 }
34dc7c2f 2494
b128c09f
BB
2495 if (vd->vdev_ops->vdev_op_leaf &&
2496 (zio->io_type == ZIO_TYPE_READ || zio->io_type == ZIO_TYPE_WRITE)) {
2497
2498 if (zio->io_type == ZIO_TYPE_READ && vdev_cache_read(zio) == 0)
d164b209 2499 return (ZIO_PIPELINE_CONTINUE);
b128c09f
BB
2500
2501 if ((zio = vdev_queue_io(zio)) == NULL)
2502 return (ZIO_PIPELINE_STOP);
2503
2504 if (!vdev_accessible(vd, zio)) {
2505 zio->io_error = ENXIO;
2506 zio_interrupt(zio);
2507 return (ZIO_PIPELINE_STOP);
2508 }
b128c09f
BB
2509 }
2510
34dc7c2f
BB
2511 return (vd->vdev_ops->vdev_op_io_start(zio));
2512}
2513
2514static int
2515zio_vdev_io_done(zio_t *zio)
2516{
b128c09f
BB
2517 vdev_t *vd = zio->io_vd;
2518 vdev_ops_t *ops = vd ? vd->vdev_ops : &vdev_mirror_ops;
2519 boolean_t unexpected_error = B_FALSE;
34dc7c2f 2520
b128c09f
BB
2521 if (zio_wait_for_children(zio, ZIO_CHILD_VDEV, ZIO_WAIT_DONE))
2522 return (ZIO_PIPELINE_STOP);
34dc7c2f 2523
b128c09f
BB
2524 ASSERT(zio->io_type == ZIO_TYPE_READ || zio->io_type == ZIO_TYPE_WRITE);
2525
2526 if (vd != NULL && vd->vdev_ops->vdev_op_leaf) {
2527
2528 vdev_queue_io_done(zio);
2529
2530 if (zio->io_type == ZIO_TYPE_WRITE)
2531 vdev_cache_write(zio);
2532
2533 if (zio_injection_enabled && zio->io_error == 0)
9babb374
BB
2534 zio->io_error = zio_handle_device_injection(vd,
2535 zio, EIO);
b128c09f
BB
2536
2537 if (zio_injection_enabled && zio->io_error == 0)
2538 zio->io_error = zio_handle_label_injection(zio, EIO);
2539
2540 if (zio->io_error) {
2541 if (!vdev_accessible(vd, zio)) {
2542 zio->io_error = ENXIO;
2543 } else {
2544 unexpected_error = B_TRUE;
2545 }
2546 }
2547 }
2548
2549 ops->vdev_op_io_done(zio);
34dc7c2f 2550
b128c09f 2551 if (unexpected_error)
d164b209 2552 VERIFY(vdev_probe(vd, zio) == NULL);
34dc7c2f 2553
b128c09f 2554 return (ZIO_PIPELINE_CONTINUE);
34dc7c2f
BB
2555}
2556
428870ff
BB
2557/*
2558 * For non-raidz ZIOs, we can just copy aside the bad data read from the
2559 * disk, and use that to finish the checksum ereport later.
2560 */
2561static void
2562zio_vsd_default_cksum_finish(zio_cksum_report_t *zcr,
2563 const void *good_buf)
2564{
2565 /* no processing needed */
2566 zfs_ereport_finish_checksum(zcr, good_buf, zcr->zcr_cbdata, B_FALSE);
2567}
2568
2569/*ARGSUSED*/
2570void
2571zio_vsd_default_cksum_report(zio_t *zio, zio_cksum_report_t *zcr, void *ignored)
2572{
2573 void *buf = zio_buf_alloc(zio->io_size);
2574
2575 bcopy(zio->io_data, buf, zio->io_size);
2576
2577 zcr->zcr_cbinfo = zio->io_size;
2578 zcr->zcr_cbdata = buf;
2579 zcr->zcr_finish = zio_vsd_default_cksum_finish;
2580 zcr->zcr_free = zio_buf_free;
2581}
2582
34dc7c2f
BB
2583static int
2584zio_vdev_io_assess(zio_t *zio)
2585{
2586 vdev_t *vd = zio->io_vd;
b128c09f
BB
2587
2588 if (zio_wait_for_children(zio, ZIO_CHILD_VDEV, ZIO_WAIT_DONE))
2589 return (ZIO_PIPELINE_STOP);
2590
2591 if (vd == NULL && !(zio->io_flags & ZIO_FLAG_CONFIG_WRITER))
2592 spa_config_exit(zio->io_spa, SCL_ZIO, zio);
2593
2594 if (zio->io_vsd != NULL) {
428870ff 2595 zio->io_vsd_ops->vsd_free(zio);
b128c09f 2596 zio->io_vsd = NULL;
34dc7c2f
BB
2597 }
2598
b128c09f 2599 if (zio_injection_enabled && zio->io_error == 0)
34dc7c2f
BB
2600 zio->io_error = zio_handle_fault_injection(zio, EIO);
2601
2602 /*
2603 * If the I/O failed, determine whether we should attempt to retry it.
428870ff
BB
2604 *
2605 * On retry, we cut in line in the issue queue, since we don't want
2606 * compression/checksumming/etc. work to prevent our (cheap) IO reissue.
34dc7c2f 2607 */
b128c09f
BB
2608 if (zio->io_error && vd == NULL &&
2609 !(zio->io_flags & (ZIO_FLAG_DONT_RETRY | ZIO_FLAG_IO_RETRY))) {
2610 ASSERT(!(zio->io_flags & ZIO_FLAG_DONT_QUEUE)); /* not a leaf */
2611 ASSERT(!(zio->io_flags & ZIO_FLAG_IO_BYPASS)); /* not a leaf */
34dc7c2f 2612 zio->io_error = 0;
b128c09f
BB
2613 zio->io_flags |= ZIO_FLAG_IO_RETRY |
2614 ZIO_FLAG_DONT_CACHE | ZIO_FLAG_DONT_AGGREGATE;
428870ff
BB
2615 zio->io_stage = ZIO_STAGE_VDEV_IO_START >> 1;
2616 zio_taskq_dispatch(zio, ZIO_TASKQ_ISSUE,
2617 zio_requeue_io_start_cut_in_line);
b128c09f 2618 return (ZIO_PIPELINE_STOP);
34dc7c2f
BB
2619 }
2620
b128c09f
BB
2621 /*
2622 * If we got an error on a leaf device, convert it to ENXIO
2623 * if the device is not accessible at all.
2624 */
2625 if (zio->io_error && vd != NULL && vd->vdev_ops->vdev_op_leaf &&
2626 !vdev_accessible(vd, zio))
2627 zio->io_error = ENXIO;
2628
2629 /*
2630 * If we can't write to an interior vdev (mirror or RAID-Z),
2631 * set vdev_cant_write so that we stop trying to allocate from it.
2632 */
2633 if (zio->io_error == ENXIO && zio->io_type == ZIO_TYPE_WRITE &&
2634 vd != NULL && !vd->vdev_ops->vdev_op_leaf)
2635 vd->vdev_cant_write = B_TRUE;
2636
2637 if (zio->io_error)
2638 zio->io_pipeline = ZIO_INTERLOCK_PIPELINE;
2639
34dc7c2f
BB
2640 return (ZIO_PIPELINE_CONTINUE);
2641}
2642
2643void
2644zio_vdev_io_reissue(zio_t *zio)
2645{
2646 ASSERT(zio->io_stage == ZIO_STAGE_VDEV_IO_START);
2647 ASSERT(zio->io_error == 0);
2648
428870ff 2649 zio->io_stage >>= 1;
34dc7c2f
BB
2650}
2651
2652void
2653zio_vdev_io_redone(zio_t *zio)
2654{
2655 ASSERT(zio->io_stage == ZIO_STAGE_VDEV_IO_DONE);
2656
428870ff 2657 zio->io_stage >>= 1;
34dc7c2f
BB
2658}
2659
2660void
2661zio_vdev_io_bypass(zio_t *zio)
2662{
2663 ASSERT(zio->io_stage == ZIO_STAGE_VDEV_IO_START);
2664 ASSERT(zio->io_error == 0);
2665
2666 zio->io_flags |= ZIO_FLAG_IO_BYPASS;
428870ff 2667 zio->io_stage = ZIO_STAGE_VDEV_IO_ASSESS >> 1;
34dc7c2f
BB
2668}
2669
2670/*
2671 * ==========================================================================
2672 * Generate and verify checksums
2673 * ==========================================================================
2674 */
2675static int
2676zio_checksum_generate(zio_t *zio)
2677{
34dc7c2f 2678 blkptr_t *bp = zio->io_bp;
b128c09f 2679 enum zio_checksum checksum;
34dc7c2f 2680
b128c09f
BB
2681 if (bp == NULL) {
2682 /*
2683 * This is zio_write_phys().
2684 * We're either generating a label checksum, or none at all.
2685 */
2686 checksum = zio->io_prop.zp_checksum;
34dc7c2f 2687
b128c09f
BB
2688 if (checksum == ZIO_CHECKSUM_OFF)
2689 return (ZIO_PIPELINE_CONTINUE);
2690
2691 ASSERT(checksum == ZIO_CHECKSUM_LABEL);
2692 } else {
2693 if (BP_IS_GANG(bp) && zio->io_child_type == ZIO_CHILD_GANG) {
2694 ASSERT(!IO_IS_ALLOCATING(zio));
2695 checksum = ZIO_CHECKSUM_GANG_HEADER;
2696 } else {
2697 checksum = BP_GET_CHECKSUM(bp);
2698 }
2699 }
34dc7c2f 2700
b128c09f 2701 zio_checksum_compute(zio, checksum, zio->io_data, zio->io_size);
34dc7c2f
BB
2702
2703 return (ZIO_PIPELINE_CONTINUE);
2704}
2705
2706static int
b128c09f 2707zio_checksum_verify(zio_t *zio)
34dc7c2f 2708{
428870ff 2709 zio_bad_cksum_t info;
b128c09f
BB
2710 blkptr_t *bp = zio->io_bp;
2711 int error;
34dc7c2f 2712
428870ff
BB
2713 ASSERT(zio->io_vd != NULL);
2714
b128c09f
BB
2715 if (bp == NULL) {
2716 /*
2717 * This is zio_read_phys().
2718 * We're either verifying a label checksum, or nothing at all.
2719 */
2720 if (zio->io_prop.zp_checksum == ZIO_CHECKSUM_OFF)
2721 return (ZIO_PIPELINE_CONTINUE);
34dc7c2f 2722
b128c09f
BB
2723 ASSERT(zio->io_prop.zp_checksum == ZIO_CHECKSUM_LABEL);
2724 }
34dc7c2f 2725
428870ff 2726 if ((error = zio_checksum_error(zio, &info)) != 0) {
b128c09f
BB
2727 zio->io_error = error;
2728 if (!(zio->io_flags & ZIO_FLAG_SPECULATIVE)) {
428870ff
BB
2729 zfs_ereport_start_checksum(zio->io_spa,
2730 zio->io_vd, zio, zio->io_offset,
2731 zio->io_size, NULL, &info);
b128c09f 2732 }
34dc7c2f
BB
2733 }
2734
2735 return (ZIO_PIPELINE_CONTINUE);
2736}
2737
2738/*
2739 * Called by RAID-Z to ensure we don't compute the checksum twice.
2740 */
2741void
2742zio_checksum_verified(zio_t *zio)
2743{
428870ff 2744 zio->io_pipeline &= ~ZIO_STAGE_CHECKSUM_VERIFY;
34dc7c2f
BB
2745}
2746
2747/*
b128c09f
BB
2748 * ==========================================================================
2749 * Error rank. Error are ranked in the order 0, ENXIO, ECKSUM, EIO, other.
2750 * An error of 0 indictes success. ENXIO indicates whole-device failure,
2751 * which may be transient (e.g. unplugged) or permament. ECKSUM and EIO
2752 * indicate errors that are specific to one I/O, and most likely permanent.
2753 * Any other error is presumed to be worse because we weren't expecting it.
2754 * ==========================================================================
34dc7c2f 2755 */
b128c09f
BB
2756int
2757zio_worst_error(int e1, int e2)
34dc7c2f 2758{
b128c09f
BB
2759 static int zio_error_rank[] = { 0, ENXIO, ECKSUM, EIO };
2760 int r1, r2;
2761
2762 for (r1 = 0; r1 < sizeof (zio_error_rank) / sizeof (int); r1++)
2763 if (e1 == zio_error_rank[r1])
2764 break;
34dc7c2f 2765
b128c09f
BB
2766 for (r2 = 0; r2 < sizeof (zio_error_rank) / sizeof (int); r2++)
2767 if (e2 == zio_error_rank[r2])
2768 break;
2769
2770 return (r1 > r2 ? e1 : e2);
34dc7c2f
BB
2771}
2772
2773/*
2774 * ==========================================================================
b128c09f 2775 * I/O completion
34dc7c2f
BB
2776 * ==========================================================================
2777 */
b128c09f
BB
2778static int
2779zio_ready(zio_t *zio)
34dc7c2f 2780{
b128c09f 2781 blkptr_t *bp = zio->io_bp;
d164b209 2782 zio_t *pio, *pio_next;
34dc7c2f 2783
428870ff
BB
2784 if (zio_wait_for_children(zio, ZIO_CHILD_GANG, ZIO_WAIT_READY) ||
2785 zio_wait_for_children(zio, ZIO_CHILD_DDT, ZIO_WAIT_READY))
9babb374 2786 return (ZIO_PIPELINE_STOP);
34dc7c2f 2787
9babb374 2788 if (zio->io_ready) {
b128c09f
BB
2789 ASSERT(IO_IS_ALLOCATING(zio));
2790 ASSERT(bp->blk_birth == zio->io_txg || BP_IS_HOLE(bp));
2791 ASSERT(zio->io_children[ZIO_CHILD_GANG][ZIO_WAIT_READY] == 0);
34dc7c2f 2792
b128c09f
BB
2793 zio->io_ready(zio);
2794 }
34dc7c2f 2795
b128c09f
BB
2796 if (bp != NULL && bp != &zio->io_bp_copy)
2797 zio->io_bp_copy = *bp;
34dc7c2f 2798
b128c09f
BB
2799 if (zio->io_error)
2800 zio->io_pipeline = ZIO_INTERLOCK_PIPELINE;
34dc7c2f 2801
d164b209
BB
2802 mutex_enter(&zio->io_lock);
2803 zio->io_state[ZIO_WAIT_READY] = 1;
2804 pio = zio_walk_parents(zio);
2805 mutex_exit(&zio->io_lock);
2806
2807 /*
2808 * As we notify zio's parents, new parents could be added.
2809 * New parents go to the head of zio's io_parent_list, however,
2810 * so we will (correctly) not notify them. The remainder of zio's
2811 * io_parent_list, from 'pio_next' onward, cannot change because
2812 * all parents must wait for us to be done before they can be done.
2813 */
2814 for (; pio != NULL; pio = pio_next) {
2815 pio_next = zio_walk_parents(zio);
b128c09f 2816 zio_notify_parent(pio, zio, ZIO_WAIT_READY);
d164b209 2817 }
34dc7c2f 2818
428870ff
BB
2819 if (zio->io_flags & ZIO_FLAG_NODATA) {
2820 if (BP_IS_GANG(bp)) {
2821 zio->io_flags &= ~ZIO_FLAG_NODATA;
2822 } else {
2823 ASSERT((uintptr_t)zio->io_data < SPA_MAXBLOCKSIZE);
2824 zio->io_pipeline &= ~ZIO_VDEV_IO_STAGES;
2825 }
2826 }
2827
2828 if (zio_injection_enabled &&
2829 zio->io_spa->spa_syncing_txg == zio->io_txg)
2830 zio_handle_ignored_writes(zio);
2831
b128c09f 2832 return (ZIO_PIPELINE_CONTINUE);
34dc7c2f
BB
2833}
2834
b128c09f
BB
2835static int
2836zio_done(zio_t *zio)
34dc7c2f 2837{
d164b209 2838 zio_t *pio, *pio_next;
d6320ddb 2839 int c, w;
34dc7c2f 2840
b128c09f 2841 /*
9babb374 2842 * If our children haven't all completed,
b128c09f
BB
2843 * wait for them and then repeat this pipeline stage.
2844 */
2845 if (zio_wait_for_children(zio, ZIO_CHILD_VDEV, ZIO_WAIT_DONE) ||
2846 zio_wait_for_children(zio, ZIO_CHILD_GANG, ZIO_WAIT_DONE) ||
428870ff 2847 zio_wait_for_children(zio, ZIO_CHILD_DDT, ZIO_WAIT_DONE) ||
b128c09f
BB
2848 zio_wait_for_children(zio, ZIO_CHILD_LOGICAL, ZIO_WAIT_DONE))
2849 return (ZIO_PIPELINE_STOP);
34dc7c2f 2850
d6320ddb
BB
2851 for (c = 0; c < ZIO_CHILD_TYPES; c++)
2852 for (w = 0; w < ZIO_WAIT_TYPES; w++)
b128c09f
BB
2853 ASSERT(zio->io_children[c][w] == 0);
2854
c776b317
BB
2855 if (zio->io_bp != NULL) {
2856 ASSERT(zio->io_bp->blk_pad[0] == 0);
2857 ASSERT(zio->io_bp->blk_pad[1] == 0);
2858 ASSERT(bcmp(zio->io_bp, &zio->io_bp_copy, sizeof (blkptr_t)) == 0 ||
2859 (zio->io_bp == zio_unique_parent(zio)->io_bp));
2860 if (zio->io_type == ZIO_TYPE_WRITE && !BP_IS_HOLE(zio->io_bp) &&
428870ff 2861 zio->io_bp_override == NULL &&
b128c09f 2862 !(zio->io_flags & ZIO_FLAG_IO_REPAIR)) {
c776b317
BB
2863 ASSERT(!BP_SHOULD_BYTESWAP(zio->io_bp));
2864 ASSERT3U(zio->io_prop.zp_copies, <=, BP_GET_NDVAS(zio->io_bp));
2865 ASSERT(BP_COUNT_GANG(zio->io_bp) == 0 ||
2866 (BP_COUNT_GANG(zio->io_bp) == BP_GET_NDVAS(zio->io_bp)));
b128c09f
BB
2867 }
2868 }
2869
2870 /*
428870ff 2871 * If there were child vdev/gang/ddt errors, they apply to us now.
b128c09f
BB
2872 */
2873 zio_inherit_child_errors(zio, ZIO_CHILD_VDEV);
2874 zio_inherit_child_errors(zio, ZIO_CHILD_GANG);
428870ff
BB
2875 zio_inherit_child_errors(zio, ZIO_CHILD_DDT);
2876
2877 /*
2878 * If the I/O on the transformed data was successful, generate any
2879 * checksum reports now while we still have the transformed data.
2880 */
2881 if (zio->io_error == 0) {
2882 while (zio->io_cksum_report != NULL) {
2883 zio_cksum_report_t *zcr = zio->io_cksum_report;
2884 uint64_t align = zcr->zcr_align;
c776b317 2885 uint64_t asize = P2ROUNDUP(zio->io_size, align);
428870ff
BB
2886 char *abuf = zio->io_data;
2887
c776b317 2888 if (asize != zio->io_size) {
428870ff 2889 abuf = zio_buf_alloc(asize);
c776b317
BB
2890 bcopy(zio->io_data, abuf, zio->io_size);
2891 bzero(abuf + zio->io_size, asize - zio->io_size);
428870ff
BB
2892 }
2893
2894 zio->io_cksum_report = zcr->zcr_next;
2895 zcr->zcr_next = NULL;
2896 zcr->zcr_finish(zcr, abuf);
2897 zfs_ereport_free_checksum(zcr);
2898
c776b317 2899 if (asize != zio->io_size)
428870ff
BB
2900 zio_buf_free(abuf, asize);
2901 }
2902 }
b128c09f
BB
2903
2904 zio_pop_transforms(zio); /* note: may set zio->io_error */
2905
c776b317 2906 vdev_stat_update(zio, zio->io_size);
b128c09f 2907
a69052be 2908 /*
72f53c56
MJ
2909 * If this I/O is attached to a particular vdev is slow, exeeding
2910 * 30 seconds to complete, post an error described the I/O delay.
2911 * We ignore these errors if the device is currently unavailable.
a69052be 2912 */
72f53c56
MJ
2913 if (zio->io_delay >= zio_delay_max) {
2914 if (zio->io_vd != NULL && !vdev_is_dead(zio->io_vd))
2915 zfs_ereport_post(FM_EREPORT_ZFS_DELAY, zio->io_spa,
2916 zio->io_vd, zio, 0, 0);
2917 }
a69052be 2918
b128c09f
BB
2919 if (zio->io_error) {
2920 /*
2921 * If this I/O is attached to a particular vdev,
2922 * generate an error message describing the I/O failure
2923 * at the block level. We ignore these errors if the
2924 * device is currently unavailable.
2925 */
c776b317
BB
2926 if (zio->io_error != ECKSUM && zio->io_vd != NULL &&
2927 !vdev_is_dead(zio->io_vd))
2928 zfs_ereport_post(FM_EREPORT_ZFS_IO, zio->io_spa,
2929 zio->io_vd, zio, 0, 0);
34dc7c2f 2930
428870ff
BB
2931 if ((zio->io_error == EIO || !(zio->io_flags &
2932 (ZIO_FLAG_SPECULATIVE | ZIO_FLAG_DONT_PROPAGATE))) &&
c776b317 2933 zio == zio->io_logical) {
b128c09f
BB
2934 /*
2935 * For logical I/O requests, tell the SPA to log the
2936 * error and generate a logical data ereport.
2937 */
c776b317
BB
2938 spa_log_error(zio->io_spa, zio);
2939 zfs_ereport_post(FM_EREPORT_ZFS_DATA, zio->io_spa, NULL, zio,
b128c09f
BB
2940 0, 0);
2941 }
2942 }
34dc7c2f 2943
c776b317 2944 if (zio->io_error && zio == zio->io_logical) {
b128c09f
BB
2945 /*
2946 * Determine whether zio should be reexecuted. This will
2947 * propagate all the way to the root via zio_notify_parent().
2948 */
c776b317 2949 ASSERT(zio->io_vd == NULL && zio->io_bp != NULL);
428870ff 2950 ASSERT(zio->io_child_type == ZIO_CHILD_LOGICAL);
b128c09f 2951
428870ff
BB
2952 if (IO_IS_ALLOCATING(zio) &&
2953 !(zio->io_flags & ZIO_FLAG_CANFAIL)) {
b128c09f
BB
2954 if (zio->io_error != ENOSPC)
2955 zio->io_reexecute |= ZIO_REEXECUTE_NOW;
2956 else
2957 zio->io_reexecute |= ZIO_REEXECUTE_SUSPEND;
428870ff 2958 }
b128c09f
BB
2959
2960 if ((zio->io_type == ZIO_TYPE_READ ||
2961 zio->io_type == ZIO_TYPE_FREE) &&
572e2857 2962 !(zio->io_flags & ZIO_FLAG_SCAN_THREAD) &&
b128c09f 2963 zio->io_error == ENXIO &&
c776b317
BB
2964 spa_load_state(zio->io_spa) == SPA_LOAD_NONE &&
2965 spa_get_failmode(zio->io_spa) != ZIO_FAILURE_MODE_CONTINUE)
b128c09f
BB
2966 zio->io_reexecute |= ZIO_REEXECUTE_SUSPEND;
2967
2968 if (!(zio->io_flags & ZIO_FLAG_CANFAIL) && !zio->io_reexecute)
2969 zio->io_reexecute |= ZIO_REEXECUTE_SUSPEND;
428870ff
BB
2970
2971 /*
2972 * Here is a possibly good place to attempt to do
2973 * either combinatorial reconstruction or error correction
2974 * based on checksums. It also might be a good place
2975 * to send out preliminary ereports before we suspend
2976 * processing.
2977 */
34dc7c2f
BB
2978 }
2979
2980 /*
b128c09f
BB
2981 * If there were logical child errors, they apply to us now.
2982 * We defer this until now to avoid conflating logical child
2983 * errors with errors that happened to the zio itself when
2984 * updating vdev stats and reporting FMA events above.
34dc7c2f 2985 */
b128c09f 2986 zio_inherit_child_errors(zio, ZIO_CHILD_LOGICAL);
34dc7c2f 2987
428870ff
BB
2988 if ((zio->io_error || zio->io_reexecute) &&
2989 IO_IS_ALLOCATING(zio) && zio->io_gang_leader == zio &&
2990 !(zio->io_flags & ZIO_FLAG_IO_REWRITE))
c776b317 2991 zio_dva_unallocate(zio, zio->io_gang_tree, zio->io_bp);
9babb374
BB
2992
2993 zio_gang_tree_free(&zio->io_gang_tree);
2994
2995 /*
2996 * Godfather I/Os should never suspend.
2997 */
2998 if ((zio->io_flags & ZIO_FLAG_GODFATHER) &&
2999 (zio->io_reexecute & ZIO_REEXECUTE_SUSPEND))
3000 zio->io_reexecute = 0;
3001
b128c09f
BB
3002 if (zio->io_reexecute) {
3003 /*
3004 * This is a logical I/O that wants to reexecute.
3005 *
3006 * Reexecute is top-down. When an i/o fails, if it's not
3007 * the root, it simply notifies its parent and sticks around.
3008 * The parent, seeing that it still has children in zio_done(),
3009 * does the same. This percolates all the way up to the root.
3010 * The root i/o will reexecute or suspend the entire tree.
3011 *
3012 * This approach ensures that zio_reexecute() honors
3013 * all the original i/o dependency relationships, e.g.
3014 * parents not executing until children are ready.
3015 */
3016 ASSERT(zio->io_child_type == ZIO_CHILD_LOGICAL);
34dc7c2f 3017
9babb374 3018 zio->io_gang_leader = NULL;
b128c09f 3019
d164b209
BB
3020 mutex_enter(&zio->io_lock);
3021 zio->io_state[ZIO_WAIT_DONE] = 1;
3022 mutex_exit(&zio->io_lock);
3023
9babb374
BB
3024 /*
3025 * "The Godfather" I/O monitors its children but is
3026 * not a true parent to them. It will track them through
3027 * the pipeline but severs its ties whenever they get into
3028 * trouble (e.g. suspended). This allows "The Godfather"
3029 * I/O to return status without blocking.
3030 */
3031 for (pio = zio_walk_parents(zio); pio != NULL; pio = pio_next) {
3032 zio_link_t *zl = zio->io_walk_link;
3033 pio_next = zio_walk_parents(zio);
3034
3035 if ((pio->io_flags & ZIO_FLAG_GODFATHER) &&
3036 (zio->io_reexecute & ZIO_REEXECUTE_SUSPEND)) {
3037 zio_remove_child(pio, zio, zl);
3038 zio_notify_parent(pio, zio, ZIO_WAIT_DONE);
3039 }
3040 }
3041
d164b209 3042 if ((pio = zio_unique_parent(zio)) != NULL) {
b128c09f
BB
3043 /*
3044 * We're not a root i/o, so there's nothing to do
3045 * but notify our parent. Don't propagate errors
3046 * upward since we haven't permanently failed yet.
3047 */
9babb374 3048 ASSERT(!(zio->io_flags & ZIO_FLAG_GODFATHER));
b128c09f
BB
3049 zio->io_flags |= ZIO_FLAG_DONT_PROPAGATE;
3050 zio_notify_parent(pio, zio, ZIO_WAIT_DONE);
3051 } else if (zio->io_reexecute & ZIO_REEXECUTE_SUSPEND) {
3052 /*
3053 * We'd fail again if we reexecuted now, so suspend
3054 * until conditions improve (e.g. device comes online).
3055 */
c776b317 3056 zio_suspend(zio->io_spa, zio);
b128c09f
BB
3057 } else {
3058 /*
3059 * Reexecution is potentially a huge amount of work.
3060 * Hand it off to the otherwise-unused claim taskq.
3061 */
a38718a6
GA
3062 ASSERT(taskq_empty_ent(&zio->io_tqent));
3063 (void) taskq_dispatch_ent(
c776b317 3064 zio->io_spa->spa_zio_taskq[ZIO_TYPE_CLAIM][ZIO_TASKQ_ISSUE],
a38718a6
GA
3065 (task_func_t *)zio_reexecute, zio, 0,
3066 &zio->io_tqent);
b128c09f
BB
3067 }
3068 return (ZIO_PIPELINE_STOP);
34dc7c2f
BB
3069 }
3070
428870ff 3071 ASSERT(zio->io_child_count == 0);
b128c09f
BB
3072 ASSERT(zio->io_reexecute == 0);
3073 ASSERT(zio->io_error == 0 || (zio->io_flags & ZIO_FLAG_CANFAIL));
34dc7c2f 3074
428870ff
BB
3075 /*
3076 * Report any checksum errors, since the I/O is complete.
3077 */
3078 while (zio->io_cksum_report != NULL) {
3079 zio_cksum_report_t *zcr = zio->io_cksum_report;
3080 zio->io_cksum_report = zcr->zcr_next;
3081 zcr->zcr_next = NULL;
3082 zcr->zcr_finish(zcr, NULL);
3083 zfs_ereport_free_checksum(zcr);
3084 }
3085
920dd524
ED
3086 if (zio->io_flags & ZIO_FLAG_FASTWRITE && zio->io_bp &&
3087 !BP_IS_HOLE(zio->io_bp)) {
3088 metaslab_fastwrite_unmark(zio->io_spa, zio->io_bp);
3089 }
3090
d164b209
BB
3091 /*
3092 * It is the responsibility of the done callback to ensure that this
3093 * particular zio is no longer discoverable for adoption, and as
3094 * such, cannot acquire any new parents.
3095 */
b128c09f
BB
3096 if (zio->io_done)
3097 zio->io_done(zio);
34dc7c2f 3098
d164b209
BB
3099 mutex_enter(&zio->io_lock);
3100 zio->io_state[ZIO_WAIT_DONE] = 1;
3101 mutex_exit(&zio->io_lock);
34dc7c2f 3102
d164b209
BB
3103 for (pio = zio_walk_parents(zio); pio != NULL; pio = pio_next) {
3104 zio_link_t *zl = zio->io_walk_link;
3105 pio_next = zio_walk_parents(zio);
3106 zio_remove_child(pio, zio, zl);
b128c09f
BB
3107 zio_notify_parent(pio, zio, ZIO_WAIT_DONE);
3108 }
34dc7c2f 3109
b128c09f
BB
3110 if (zio->io_waiter != NULL) {
3111 mutex_enter(&zio->io_lock);
3112 zio->io_executor = NULL;
3113 cv_broadcast(&zio->io_cv);
3114 mutex_exit(&zio->io_lock);
3115 } else {
3116 zio_destroy(zio);
3117 }
34dc7c2f 3118
b128c09f 3119 return (ZIO_PIPELINE_STOP);
34dc7c2f
BB
3120}
3121
3122/*
b128c09f
BB
3123 * ==========================================================================
3124 * I/O pipeline definition
3125 * ==========================================================================
34dc7c2f 3126 */
428870ff 3127static zio_pipe_stage_t *zio_pipeline[] = {
b128c09f 3128 NULL,
b128c09f 3129 zio_read_bp_init,
428870ff
BB
3130 zio_free_bp_init,
3131 zio_issue_async,
b128c09f
BB
3132 zio_write_bp_init,
3133 zio_checksum_generate,
428870ff
BB
3134 zio_ddt_read_start,
3135 zio_ddt_read_done,
3136 zio_ddt_write,
3137 zio_ddt_free,
b128c09f
BB
3138 zio_gang_assemble,
3139 zio_gang_issue,
3140 zio_dva_allocate,
3141 zio_dva_free,
3142 zio_dva_claim,
3143 zio_ready,
3144 zio_vdev_io_start,
3145 zio_vdev_io_done,
3146 zio_vdev_io_assess,
3147 zio_checksum_verify,
3148 zio_done
3149};
c28b2279 3150
9ae529ec
CS
3151/* dnp is the dnode for zb1->zb_object */
3152boolean_t
3153zbookmark_is_before(const dnode_phys_t *dnp, const zbookmark_t *zb1,
3154 const zbookmark_t *zb2)
3155{
3156 uint64_t zb1nextL0, zb2thisobj;
3157
3158 ASSERT(zb1->zb_objset == zb2->zb_objset);
3159 ASSERT(zb2->zb_level == 0);
3160
3161 /*
3162 * A bookmark in the deadlist is considered to be after
3163 * everything else.
3164 */
3165 if (zb2->zb_object == DMU_DEADLIST_OBJECT)
3166 return (B_TRUE);
3167
3168 /* The objset_phys_t isn't before anything. */
3169 if (dnp == NULL)
3170 return (B_FALSE);
3171
3172 zb1nextL0 = (zb1->zb_blkid + 1) <<
3173 ((zb1->zb_level) * (dnp->dn_indblkshift - SPA_BLKPTRSHIFT));
3174
3175 zb2thisobj = zb2->zb_object ? zb2->zb_object :
3176 zb2->zb_blkid << (DNODE_BLOCK_SHIFT - DNODE_SHIFT);
3177
3178 if (zb1->zb_object == DMU_META_DNODE_OBJECT) {
3179 uint64_t nextobj = zb1nextL0 *
3180 (dnp->dn_datablkszsec << SPA_MINBLOCKSHIFT) >> DNODE_SHIFT;
3181 return (nextobj <= zb2thisobj);
3182 }
3183
3184 if (zb1->zb_object < zb2thisobj)
3185 return (B_TRUE);
3186 if (zb1->zb_object > zb2thisobj)
3187 return (B_FALSE);
3188 if (zb2->zb_object == DMU_META_DNODE_OBJECT)
3189 return (B_FALSE);
3190 return (zb1nextL0 <= zb2->zb_blkid);
3191}
3192
c28b2279
BB
3193#if defined(_KERNEL) && defined(HAVE_SPL)
3194/* Fault injection */
3195EXPORT_SYMBOL(zio_injection_enabled);
3196EXPORT_SYMBOL(zio_inject_fault);
3197EXPORT_SYMBOL(zio_inject_list_next);
3198EXPORT_SYMBOL(zio_clear_fault);
3199EXPORT_SYMBOL(zio_handle_fault_injection);
3200EXPORT_SYMBOL(zio_handle_device_injection);
3201EXPORT_SYMBOL(zio_handle_label_injection);
3202EXPORT_SYMBOL(zio_priority_table);
3203EXPORT_SYMBOL(zio_type_name);
3204
3205module_param(zio_bulk_flags, int, 0644);
3206MODULE_PARM_DESC(zio_bulk_flags, "Additional flags to pass to bulk buffers");
a69052be
BB
3207
3208module_param(zio_delay_max, int, 0644);
c409e464
BB
3209MODULE_PARM_DESC(zio_delay_max, "Max zio millisec delay before posting event");
3210
3211module_param(zio_requeue_io_start_cut_in_line, int, 0644);
3212MODULE_PARM_DESC(zio_requeue_io_start_cut_in_line, "Prioritize requeued I/O");
c28b2279 3213#endif