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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
22 /*
23 * Copyright (c) 2009, 2010, Oracle and/or its affiliates. All rights reserved.
24 * Copyright (c) 2012, 2016 by Delphix. All rights reserved.
25 */
26
27 #include <sys/zfs_context.h>
28 #include <sys/spa.h>
29 #include <sys/spa_impl.h>
30 #include <sys/zio.h>
31 #include <sys/ddt.h>
32 #include <sys/zap.h>
33 #include <sys/dmu_tx.h>
34 #include <sys/arc.h>
35 #include <sys/dsl_pool.h>
36 #include <sys/zio_checksum.h>
37 #include <sys/zio_compress.h>
38 #include <sys/dsl_scan.h>
39 #include <sys/abd.h>
40
41 static kmem_cache_t *ddt_cache;
42 static kmem_cache_t *ddt_entry_cache;
43
44 /*
45 * Enable/disable prefetching of dedup-ed blocks which are going to be freed.
46 */
47 int zfs_dedup_prefetch = 0;
48
49 static const ddt_ops_t *ddt_ops[DDT_TYPES] = {
50 &ddt_zap_ops,
51 };
52
53 static const char *ddt_class_name[DDT_CLASSES] = {
54 "ditto",
55 "duplicate",
56 "unique",
57 };
58
59 static void
60 ddt_object_create(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
61 dmu_tx_t *tx)
62 {
63 spa_t *spa = ddt->ddt_spa;
64 objset_t *os = ddt->ddt_os;
65 uint64_t *objectp = &ddt->ddt_object[type][class];
66 boolean_t prehash = zio_checksum_table[ddt->ddt_checksum].ci_flags &
67 ZCHECKSUM_FLAG_DEDUP;
68 char name[DDT_NAMELEN];
69
70 ddt_object_name(ddt, type, class, name);
71
72 ASSERT(*objectp == 0);
73 VERIFY(ddt_ops[type]->ddt_op_create(os, objectp, tx, prehash) == 0);
74 ASSERT(*objectp != 0);
75
76 VERIFY(zap_add(os, DMU_POOL_DIRECTORY_OBJECT, name,
77 sizeof (uint64_t), 1, objectp, tx) == 0);
78
79 VERIFY(zap_add(os, spa->spa_ddt_stat_object, name,
80 sizeof (uint64_t), sizeof (ddt_histogram_t) / sizeof (uint64_t),
81 &ddt->ddt_histogram[type][class], tx) == 0);
82 }
83
84 static void
85 ddt_object_destroy(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
86 dmu_tx_t *tx)
87 {
88 spa_t *spa = ddt->ddt_spa;
89 objset_t *os = ddt->ddt_os;
90 uint64_t *objectp = &ddt->ddt_object[type][class];
91 uint64_t count;
92 char name[DDT_NAMELEN];
93
94 ddt_object_name(ddt, type, class, name);
95
96 ASSERT(*objectp != 0);
97 ASSERT(ddt_histogram_empty(&ddt->ddt_histogram[type][class]));
98 VERIFY(ddt_object_count(ddt, type, class, &count) == 0 && count == 0);
99 VERIFY(zap_remove(os, DMU_POOL_DIRECTORY_OBJECT, name, tx) == 0);
100 VERIFY(zap_remove(os, spa->spa_ddt_stat_object, name, tx) == 0);
101 VERIFY(ddt_ops[type]->ddt_op_destroy(os, *objectp, tx) == 0);
102 bzero(&ddt->ddt_object_stats[type][class], sizeof (ddt_object_t));
103
104 *objectp = 0;
105 }
106
107 static int
108 ddt_object_load(ddt_t *ddt, enum ddt_type type, enum ddt_class class)
109 {
110 ddt_object_t *ddo = &ddt->ddt_object_stats[type][class];
111 dmu_object_info_t doi;
112 uint64_t count;
113 char name[DDT_NAMELEN];
114 int error;
115
116 ddt_object_name(ddt, type, class, name);
117
118 error = zap_lookup(ddt->ddt_os, DMU_POOL_DIRECTORY_OBJECT, name,
119 sizeof (uint64_t), 1, &ddt->ddt_object[type][class]);
120 if (error != 0)
121 return (error);
122
123 error = zap_lookup(ddt->ddt_os, ddt->ddt_spa->spa_ddt_stat_object, name,
124 sizeof (uint64_t), sizeof (ddt_histogram_t) / sizeof (uint64_t),
125 &ddt->ddt_histogram[type][class]);
126 if (error != 0)
127 return (error);
128
129 /*
130 * Seed the cached statistics.
131 */
132 error = ddt_object_info(ddt, type, class, &doi);
133 if (error)
134 return (error);
135
136 error = ddt_object_count(ddt, type, class, &count);
137 if (error)
138 return (error);
139
140 ddo->ddo_count = count;
141 ddo->ddo_dspace = doi.doi_physical_blocks_512 << 9;
142 ddo->ddo_mspace = doi.doi_fill_count * doi.doi_data_block_size;
143
144 return (0);
145 }
146
147 static void
148 ddt_object_sync(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
149 dmu_tx_t *tx)
150 {
151 ddt_object_t *ddo = &ddt->ddt_object_stats[type][class];
152 dmu_object_info_t doi;
153 uint64_t count;
154 char name[DDT_NAMELEN];
155
156 ddt_object_name(ddt, type, class, name);
157
158 VERIFY(zap_update(ddt->ddt_os, ddt->ddt_spa->spa_ddt_stat_object, name,
159 sizeof (uint64_t), sizeof (ddt_histogram_t) / sizeof (uint64_t),
160 &ddt->ddt_histogram[type][class], tx) == 0);
161
162 /*
163 * Cache DDT statistics; this is the only time they'll change.
164 */
165 VERIFY(ddt_object_info(ddt, type, class, &doi) == 0);
166 VERIFY(ddt_object_count(ddt, type, class, &count) == 0);
167
168 ddo->ddo_count = count;
169 ddo->ddo_dspace = doi.doi_physical_blocks_512 << 9;
170 ddo->ddo_mspace = doi.doi_fill_count * doi.doi_data_block_size;
171 }
172
173 static int
174 ddt_object_lookup(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
175 ddt_entry_t *dde)
176 {
177 if (!ddt_object_exists(ddt, type, class))
178 return (SET_ERROR(ENOENT));
179
180 return (ddt_ops[type]->ddt_op_lookup(ddt->ddt_os,
181 ddt->ddt_object[type][class], dde));
182 }
183
184 static void
185 ddt_object_prefetch(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
186 ddt_entry_t *dde)
187 {
188 if (!ddt_object_exists(ddt, type, class))
189 return;
190
191 ddt_ops[type]->ddt_op_prefetch(ddt->ddt_os,
192 ddt->ddt_object[type][class], dde);
193 }
194
195 int
196 ddt_object_update(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
197 ddt_entry_t *dde, dmu_tx_t *tx)
198 {
199 ASSERT(ddt_object_exists(ddt, type, class));
200
201 return (ddt_ops[type]->ddt_op_update(ddt->ddt_os,
202 ddt->ddt_object[type][class], dde, tx));
203 }
204
205 static int
206 ddt_object_remove(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
207 ddt_entry_t *dde, dmu_tx_t *tx)
208 {
209 ASSERT(ddt_object_exists(ddt, type, class));
210
211 return (ddt_ops[type]->ddt_op_remove(ddt->ddt_os,
212 ddt->ddt_object[type][class], dde, tx));
213 }
214
215 int
216 ddt_object_walk(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
217 uint64_t *walk, ddt_entry_t *dde)
218 {
219 ASSERT(ddt_object_exists(ddt, type, class));
220
221 return (ddt_ops[type]->ddt_op_walk(ddt->ddt_os,
222 ddt->ddt_object[type][class], dde, walk));
223 }
224
225 int
226 ddt_object_count(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
227 uint64_t *count)
228 {
229 ASSERT(ddt_object_exists(ddt, type, class));
230
231 return (ddt_ops[type]->ddt_op_count(ddt->ddt_os,
232 ddt->ddt_object[type][class], count));
233 }
234
235 int
236 ddt_object_info(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
237 dmu_object_info_t *doi)
238 {
239 if (!ddt_object_exists(ddt, type, class))
240 return (SET_ERROR(ENOENT));
241
242 return (dmu_object_info(ddt->ddt_os, ddt->ddt_object[type][class],
243 doi));
244 }
245
246 boolean_t
247 ddt_object_exists(ddt_t *ddt, enum ddt_type type, enum ddt_class class)
248 {
249 return (!!ddt->ddt_object[type][class]);
250 }
251
252 void
253 ddt_object_name(ddt_t *ddt, enum ddt_type type, enum ddt_class class,
254 char *name)
255 {
256 (void) sprintf(name, DMU_POOL_DDT,
257 zio_checksum_table[ddt->ddt_checksum].ci_name,
258 ddt_ops[type]->ddt_op_name, ddt_class_name[class]);
259 }
260
261 void
262 ddt_bp_fill(const ddt_phys_t *ddp, blkptr_t *bp, uint64_t txg)
263 {
264 int d;
265 ASSERT(txg != 0);
266
267 for (d = 0; d < SPA_DVAS_PER_BP; d++)
268 bp->blk_dva[d] = ddp->ddp_dva[d];
269 BP_SET_BIRTH(bp, txg, ddp->ddp_phys_birth);
270 }
271
272 /*
273 * The bp created via this function may be used for repairs and scrub, but it
274 * will be missing the salt / IV required to do a full decrypting read.
275 */
276 void
277 ddt_bp_create(enum zio_checksum checksum,
278 const ddt_key_t *ddk, const ddt_phys_t *ddp, blkptr_t *bp)
279 {
280 BP_ZERO(bp);
281
282 if (ddp != NULL)
283 ddt_bp_fill(ddp, bp, ddp->ddp_phys_birth);
284
285 bp->blk_cksum = ddk->ddk_cksum;
286
287 BP_SET_LSIZE(bp, DDK_GET_LSIZE(ddk));
288 BP_SET_PSIZE(bp, DDK_GET_PSIZE(ddk));
289 BP_SET_COMPRESS(bp, DDK_GET_COMPRESS(ddk));
290 BP_SET_CRYPT(bp, DDK_GET_CRYPT(ddk));
291 BP_SET_FILL(bp, 1);
292 BP_SET_CHECKSUM(bp, checksum);
293 BP_SET_TYPE(bp, DMU_OT_DEDUP);
294 BP_SET_LEVEL(bp, 0);
295 BP_SET_DEDUP(bp, 0);
296 BP_SET_BYTEORDER(bp, ZFS_HOST_BYTEORDER);
297 }
298
299 void
300 ddt_key_fill(ddt_key_t *ddk, const blkptr_t *bp)
301 {
302 ddk->ddk_cksum = bp->blk_cksum;
303 ddk->ddk_prop = 0;
304
305 ASSERT(BP_IS_ENCRYPTED(bp) || !BP_USES_CRYPT(bp));
306
307 DDK_SET_LSIZE(ddk, BP_GET_LSIZE(bp));
308 DDK_SET_PSIZE(ddk, BP_GET_PSIZE(bp));
309 DDK_SET_COMPRESS(ddk, BP_GET_COMPRESS(bp));
310 DDK_SET_CRYPT(ddk, BP_USES_CRYPT(bp));
311 }
312
313 void
314 ddt_phys_fill(ddt_phys_t *ddp, const blkptr_t *bp)
315 {
316 int d;
317 ASSERT(ddp->ddp_phys_birth == 0);
318
319 for (d = 0; d < SPA_DVAS_PER_BP; d++)
320 ddp->ddp_dva[d] = bp->blk_dva[d];
321 ddp->ddp_phys_birth = BP_PHYSICAL_BIRTH(bp);
322 }
323
324 void
325 ddt_phys_clear(ddt_phys_t *ddp)
326 {
327 bzero(ddp, sizeof (*ddp));
328 }
329
330 void
331 ddt_phys_addref(ddt_phys_t *ddp)
332 {
333 ddp->ddp_refcnt++;
334 }
335
336 void
337 ddt_phys_decref(ddt_phys_t *ddp)
338 {
339 if (ddp) {
340 ASSERT(ddp->ddp_refcnt > 0);
341 ddp->ddp_refcnt--;
342 }
343 }
344
345 void
346 ddt_phys_free(ddt_t *ddt, ddt_key_t *ddk, ddt_phys_t *ddp, uint64_t txg)
347 {
348 blkptr_t blk;
349
350 ddt_bp_create(ddt->ddt_checksum, ddk, ddp, &blk);
351 ddt_phys_clear(ddp);
352 zio_free(ddt->ddt_spa, txg, &blk);
353 }
354
355 ddt_phys_t *
356 ddt_phys_select(const ddt_entry_t *dde, const blkptr_t *bp)
357 {
358 ddt_phys_t *ddp = (ddt_phys_t *)dde->dde_phys;
359 int p;
360
361 for (p = 0; p < DDT_PHYS_TYPES; p++, ddp++) {
362 if (DVA_EQUAL(BP_IDENTITY(bp), &ddp->ddp_dva[0]) &&
363 BP_PHYSICAL_BIRTH(bp) == ddp->ddp_phys_birth)
364 return (ddp);
365 }
366 return (NULL);
367 }
368
369 uint64_t
370 ddt_phys_total_refcnt(const ddt_entry_t *dde)
371 {
372 uint64_t refcnt = 0;
373 int p;
374
375 for (p = DDT_PHYS_SINGLE; p <= DDT_PHYS_TRIPLE; p++)
376 refcnt += dde->dde_phys[p].ddp_refcnt;
377
378 return (refcnt);
379 }
380
381 static void
382 ddt_stat_generate(ddt_t *ddt, ddt_entry_t *dde, ddt_stat_t *dds)
383 {
384 spa_t *spa = ddt->ddt_spa;
385 ddt_phys_t *ddp = dde->dde_phys;
386 ddt_key_t *ddk = &dde->dde_key;
387 uint64_t lsize = DDK_GET_LSIZE(ddk);
388 uint64_t psize = DDK_GET_PSIZE(ddk);
389 int p, d;
390
391 bzero(dds, sizeof (*dds));
392
393 for (p = 0; p < DDT_PHYS_TYPES; p++, ddp++) {
394 uint64_t dsize = 0;
395 uint64_t refcnt = ddp->ddp_refcnt;
396
397 if (ddp->ddp_phys_birth == 0)
398 continue;
399
400 for (d = 0; d < DDE_GET_NDVAS(dde); d++)
401 dsize += dva_get_dsize_sync(spa, &ddp->ddp_dva[d]);
402
403 dds->dds_blocks += 1;
404 dds->dds_lsize += lsize;
405 dds->dds_psize += psize;
406 dds->dds_dsize += dsize;
407
408 dds->dds_ref_blocks += refcnt;
409 dds->dds_ref_lsize += lsize * refcnt;
410 dds->dds_ref_psize += psize * refcnt;
411 dds->dds_ref_dsize += dsize * refcnt;
412 }
413 }
414
415 void
416 ddt_stat_add(ddt_stat_t *dst, const ddt_stat_t *src, uint64_t neg)
417 {
418 const uint64_t *s = (const uint64_t *)src;
419 uint64_t *d = (uint64_t *)dst;
420 uint64_t *d_end = (uint64_t *)(dst + 1);
421
422 ASSERT(neg == 0 || neg == -1ULL); /* add or subtract */
423
424 while (d < d_end)
425 *d++ += (*s++ ^ neg) - neg;
426 }
427
428 static void
429 ddt_stat_update(ddt_t *ddt, ddt_entry_t *dde, uint64_t neg)
430 {
431 ddt_stat_t dds;
432 ddt_histogram_t *ddh;
433 int bucket;
434
435 ddt_stat_generate(ddt, dde, &dds);
436
437 bucket = highbit64(dds.dds_ref_blocks) - 1;
438 ASSERT(bucket >= 0);
439
440 ddh = &ddt->ddt_histogram[dde->dde_type][dde->dde_class];
441
442 ddt_stat_add(&ddh->ddh_stat[bucket], &dds, neg);
443 }
444
445 void
446 ddt_histogram_add(ddt_histogram_t *dst, const ddt_histogram_t *src)
447 {
448 int h;
449
450 for (h = 0; h < 64; h++)
451 ddt_stat_add(&dst->ddh_stat[h], &src->ddh_stat[h], 0);
452 }
453
454 void
455 ddt_histogram_stat(ddt_stat_t *dds, const ddt_histogram_t *ddh)
456 {
457 int h;
458
459 bzero(dds, sizeof (*dds));
460
461 for (h = 0; h < 64; h++)
462 ddt_stat_add(dds, &ddh->ddh_stat[h], 0);
463 }
464
465 boolean_t
466 ddt_histogram_empty(const ddt_histogram_t *ddh)
467 {
468 const uint64_t *s = (const uint64_t *)ddh;
469 const uint64_t *s_end = (const uint64_t *)(ddh + 1);
470
471 while (s < s_end)
472 if (*s++ != 0)
473 return (B_FALSE);
474
475 return (B_TRUE);
476 }
477
478 void
479 ddt_get_dedup_object_stats(spa_t *spa, ddt_object_t *ddo_total)
480 {
481 enum zio_checksum c;
482 enum ddt_type type;
483 enum ddt_class class;
484
485 /* Sum the statistics we cached in ddt_object_sync(). */
486 for (c = 0; c < ZIO_CHECKSUM_FUNCTIONS; c++) {
487 ddt_t *ddt = spa->spa_ddt[c];
488 for (type = 0; type < DDT_TYPES; type++) {
489 for (class = 0; class < DDT_CLASSES;
490 class++) {
491 ddt_object_t *ddo =
492 &ddt->ddt_object_stats[type][class];
493 ddo_total->ddo_count += ddo->ddo_count;
494 ddo_total->ddo_dspace += ddo->ddo_dspace;
495 ddo_total->ddo_mspace += ddo->ddo_mspace;
496 }
497 }
498 }
499
500 /* ... and compute the averages. */
501 if (ddo_total->ddo_count != 0) {
502 ddo_total->ddo_dspace /= ddo_total->ddo_count;
503 ddo_total->ddo_mspace /= ddo_total->ddo_count;
504 }
505 }
506
507 void
508 ddt_get_dedup_histogram(spa_t *spa, ddt_histogram_t *ddh)
509 {
510 enum zio_checksum c;
511 enum ddt_type type;
512 enum ddt_class class;
513
514 for (c = 0; c < ZIO_CHECKSUM_FUNCTIONS; c++) {
515 ddt_t *ddt = spa->spa_ddt[c];
516 for (type = 0; type < DDT_TYPES; type++) {
517 for (class = 0; class < DDT_CLASSES;
518 class++) {
519 ddt_histogram_add(ddh,
520 &ddt->ddt_histogram_cache[type][class]);
521 }
522 }
523 }
524 }
525
526 void
527 ddt_get_dedup_stats(spa_t *spa, ddt_stat_t *dds_total)
528 {
529 ddt_histogram_t *ddh_total;
530
531 ddh_total = kmem_zalloc(sizeof (ddt_histogram_t), KM_SLEEP);
532 ddt_get_dedup_histogram(spa, ddh_total);
533 ddt_histogram_stat(dds_total, ddh_total);
534 kmem_free(ddh_total, sizeof (ddt_histogram_t));
535 }
536
537 uint64_t
538 ddt_get_dedup_dspace(spa_t *spa)
539 {
540 ddt_stat_t dds_total;
541
542 if (spa->spa_dedup_dspace != ~0ULL)
543 return (spa->spa_dedup_dspace);
544
545 bzero(&dds_total, sizeof (ddt_stat_t));
546
547 /* Calculate and cache the stats */
548 ddt_get_dedup_stats(spa, &dds_total);
549 spa->spa_dedup_dspace = dds_total.dds_ref_dsize - dds_total.dds_dsize;
550 return (spa->spa_dedup_dspace);
551 }
552
553 uint64_t
554 ddt_get_pool_dedup_ratio(spa_t *spa)
555 {
556 ddt_stat_t dds_total = { 0 };
557
558 ddt_get_dedup_stats(spa, &dds_total);
559 if (dds_total.dds_dsize == 0)
560 return (100);
561
562 return (dds_total.dds_ref_dsize * 100 / dds_total.dds_dsize);
563 }
564
565 int
566 ddt_ditto_copies_needed(ddt_t *ddt, ddt_entry_t *dde, ddt_phys_t *ddp_willref)
567 {
568 spa_t *spa = ddt->ddt_spa;
569 uint64_t total_refcnt = 0;
570 uint64_t ditto = spa->spa_dedup_ditto;
571 int total_copies = 0;
572 int desired_copies = 0;
573 int copies_needed = 0;
574 int p;
575
576 for (p = DDT_PHYS_SINGLE; p <= DDT_PHYS_TRIPLE; p++) {
577 ddt_phys_t *ddp = &dde->dde_phys[p];
578 zio_t *zio = dde->dde_lead_zio[p];
579 uint64_t refcnt = ddp->ddp_refcnt; /* committed refs */
580 if (zio != NULL)
581 refcnt += zio->io_parent_count; /* pending refs */
582 if (ddp == ddp_willref)
583 refcnt++; /* caller's ref */
584 if (refcnt != 0) {
585 total_refcnt += refcnt;
586 total_copies += p;
587 }
588 }
589
590 if (ditto == 0 || ditto > UINT32_MAX)
591 ditto = UINT32_MAX;
592
593 if (total_refcnt >= 1)
594 desired_copies++;
595 if (total_refcnt >= ditto)
596 desired_copies++;
597 if (total_refcnt >= ditto * ditto)
598 desired_copies++;
599
600 copies_needed = MAX(desired_copies, total_copies) - total_copies;
601
602 /* encrypted blocks store their IV in DVA[2] */
603 if (DDK_GET_CRYPT(&dde->dde_key))
604 copies_needed = MIN(copies_needed, SPA_DVAS_PER_BP - 1);
605
606 return (copies_needed);
607 }
608
609 int
610 ddt_ditto_copies_present(ddt_entry_t *dde)
611 {
612 ddt_phys_t *ddp = &dde->dde_phys[DDT_PHYS_DITTO];
613 dva_t *dva = ddp->ddp_dva;
614 int copies = 0 - DVA_GET_GANG(dva);
615 int d;
616
617 for (d = 0; d < DDE_GET_NDVAS(dde); d++, dva++)
618 if (DVA_IS_VALID(dva))
619 copies++;
620
621 ASSERT(copies >= 0 && copies < SPA_DVAS_PER_BP);
622
623 return (copies);
624 }
625
626 size_t
627 ddt_compress(void *src, uchar_t *dst, size_t s_len, size_t d_len)
628 {
629 uchar_t *version = dst++;
630 int cpfunc = ZIO_COMPRESS_ZLE;
631 zio_compress_info_t *ci = &zio_compress_table[cpfunc];
632 size_t c_len;
633
634 ASSERT(d_len >= s_len + 1); /* no compression plus version byte */
635
636 c_len = ci->ci_compress(src, dst, s_len, d_len - 1, ci->ci_level);
637
638 if (c_len == s_len) {
639 cpfunc = ZIO_COMPRESS_OFF;
640 bcopy(src, dst, s_len);
641 }
642
643 *version = cpfunc;
644 /* CONSTCOND */
645 if (ZFS_HOST_BYTEORDER)
646 *version |= DDT_COMPRESS_BYTEORDER_MASK;
647
648 return (c_len + 1);
649 }
650
651 void
652 ddt_decompress(uchar_t *src, void *dst, size_t s_len, size_t d_len)
653 {
654 uchar_t version = *src++;
655 int cpfunc = version & DDT_COMPRESS_FUNCTION_MASK;
656 zio_compress_info_t *ci = &zio_compress_table[cpfunc];
657
658 if (ci->ci_decompress != NULL)
659 (void) ci->ci_decompress(src, dst, s_len, d_len, ci->ci_level);
660 else
661 bcopy(src, dst, d_len);
662
663 if (((version & DDT_COMPRESS_BYTEORDER_MASK) != 0) !=
664 (ZFS_HOST_BYTEORDER != 0))
665 byteswap_uint64_array(dst, d_len);
666 }
667
668 ddt_t *
669 ddt_select_by_checksum(spa_t *spa, enum zio_checksum c)
670 {
671 return (spa->spa_ddt[c]);
672 }
673
674 ddt_t *
675 ddt_select(spa_t *spa, const blkptr_t *bp)
676 {
677 return (spa->spa_ddt[BP_GET_CHECKSUM(bp)]);
678 }
679
680 void
681 ddt_enter(ddt_t *ddt)
682 {
683 mutex_enter(&ddt->ddt_lock);
684 }
685
686 void
687 ddt_exit(ddt_t *ddt)
688 {
689 mutex_exit(&ddt->ddt_lock);
690 }
691
692 void
693 ddt_init(void)
694 {
695 ddt_cache = kmem_cache_create("ddt_cache",
696 sizeof (ddt_t), 0, NULL, NULL, NULL, NULL, NULL, 0);
697 ddt_entry_cache = kmem_cache_create("ddt_entry_cache",
698 sizeof (ddt_entry_t), 0, NULL, NULL, NULL, NULL, NULL, 0);
699 }
700
701 void
702 ddt_fini(void)
703 {
704 kmem_cache_destroy(ddt_entry_cache);
705 kmem_cache_destroy(ddt_cache);
706 }
707
708 static ddt_entry_t *
709 ddt_alloc(const ddt_key_t *ddk)
710 {
711 ddt_entry_t *dde;
712
713 dde = kmem_cache_alloc(ddt_entry_cache, KM_SLEEP);
714 bzero(dde, sizeof (ddt_entry_t));
715 cv_init(&dde->dde_cv, NULL, CV_DEFAULT, NULL);
716
717 dde->dde_key = *ddk;
718
719 return (dde);
720 }
721
722 static void
723 ddt_free(ddt_entry_t *dde)
724 {
725 int p;
726
727 ASSERT(!dde->dde_loading);
728
729 for (p = 0; p < DDT_PHYS_TYPES; p++)
730 ASSERT(dde->dde_lead_zio[p] == NULL);
731
732 if (dde->dde_repair_abd != NULL)
733 abd_free(dde->dde_repair_abd);
734
735 cv_destroy(&dde->dde_cv);
736 kmem_cache_free(ddt_entry_cache, dde);
737 }
738
739 void
740 ddt_remove(ddt_t *ddt, ddt_entry_t *dde)
741 {
742 ASSERT(MUTEX_HELD(&ddt->ddt_lock));
743
744 avl_remove(&ddt->ddt_tree, dde);
745 ddt_free(dde);
746 }
747
748 ddt_entry_t *
749 ddt_lookup(ddt_t *ddt, const blkptr_t *bp, boolean_t add)
750 {
751 ddt_entry_t *dde, dde_search;
752 enum ddt_type type;
753 enum ddt_class class;
754 avl_index_t where;
755 int error;
756
757 ASSERT(MUTEX_HELD(&ddt->ddt_lock));
758
759 ddt_key_fill(&dde_search.dde_key, bp);
760
761 dde = avl_find(&ddt->ddt_tree, &dde_search, &where);
762 if (dde == NULL) {
763 if (!add)
764 return (NULL);
765 dde = ddt_alloc(&dde_search.dde_key);
766 avl_insert(&ddt->ddt_tree, dde, where);
767 }
768
769 while (dde->dde_loading)
770 cv_wait(&dde->dde_cv, &ddt->ddt_lock);
771
772 if (dde->dde_loaded)
773 return (dde);
774
775 dde->dde_loading = B_TRUE;
776
777 ddt_exit(ddt);
778
779 error = ENOENT;
780
781 for (type = 0; type < DDT_TYPES; type++) {
782 for (class = 0; class < DDT_CLASSES; class++) {
783 error = ddt_object_lookup(ddt, type, class, dde);
784 if (error != ENOENT)
785 break;
786 }
787 if (error != ENOENT)
788 break;
789 }
790
791 ASSERT(error == 0 || error == ENOENT);
792
793 ddt_enter(ddt);
794
795 ASSERT(dde->dde_loaded == B_FALSE);
796 ASSERT(dde->dde_loading == B_TRUE);
797
798 dde->dde_type = type; /* will be DDT_TYPES if no entry found */
799 dde->dde_class = class; /* will be DDT_CLASSES if no entry found */
800 dde->dde_loaded = B_TRUE;
801 dde->dde_loading = B_FALSE;
802
803 if (error == 0)
804 ddt_stat_update(ddt, dde, -1ULL);
805
806 cv_broadcast(&dde->dde_cv);
807
808 return (dde);
809 }
810
811 void
812 ddt_prefetch(spa_t *spa, const blkptr_t *bp)
813 {
814 ddt_t *ddt;
815 ddt_entry_t dde;
816 enum ddt_type type;
817 enum ddt_class class;
818
819 if (!zfs_dedup_prefetch || bp == NULL || !BP_GET_DEDUP(bp))
820 return;
821
822 /*
823 * We only remove the DDT once all tables are empty and only
824 * prefetch dedup blocks when there are entries in the DDT.
825 * Thus no locking is required as the DDT can't disappear on us.
826 */
827 ddt = ddt_select(spa, bp);
828 ddt_key_fill(&dde.dde_key, bp);
829
830 for (type = 0; type < DDT_TYPES; type++) {
831 for (class = 0; class < DDT_CLASSES; class++) {
832 ddt_object_prefetch(ddt, type, class, &dde);
833 }
834 }
835 }
836
837 /*
838 * Opaque struct used for ddt_key comparison
839 */
840 #define DDT_KEY_CMP_LEN (sizeof (ddt_key_t) / sizeof (uint16_t))
841
842 typedef struct ddt_key_cmp {
843 uint16_t u16[DDT_KEY_CMP_LEN];
844 } ddt_key_cmp_t;
845
846 int
847 ddt_entry_compare(const void *x1, const void *x2)
848 {
849 const ddt_entry_t *dde1 = x1;
850 const ddt_entry_t *dde2 = x2;
851 const ddt_key_cmp_t *k1 = (const ddt_key_cmp_t *)&dde1->dde_key;
852 const ddt_key_cmp_t *k2 = (const ddt_key_cmp_t *)&dde2->dde_key;
853 int32_t cmp = 0;
854 int i;
855
856 for (i = 0; i < DDT_KEY_CMP_LEN; i++) {
857 cmp = (int32_t)k1->u16[i] - (int32_t)k2->u16[i];
858 if (likely(cmp))
859 break;
860 }
861
862 return (AVL_ISIGN(cmp));
863 }
864
865 static ddt_t *
866 ddt_table_alloc(spa_t *spa, enum zio_checksum c)
867 {
868 ddt_t *ddt;
869
870 ddt = kmem_cache_alloc(ddt_cache, KM_SLEEP);
871 bzero(ddt, sizeof (ddt_t));
872
873 mutex_init(&ddt->ddt_lock, NULL, MUTEX_DEFAULT, NULL);
874 avl_create(&ddt->ddt_tree, ddt_entry_compare,
875 sizeof (ddt_entry_t), offsetof(ddt_entry_t, dde_node));
876 avl_create(&ddt->ddt_repair_tree, ddt_entry_compare,
877 sizeof (ddt_entry_t), offsetof(ddt_entry_t, dde_node));
878 ddt->ddt_checksum = c;
879 ddt->ddt_spa = spa;
880 ddt->ddt_os = spa->spa_meta_objset;
881
882 return (ddt);
883 }
884
885 static void
886 ddt_table_free(ddt_t *ddt)
887 {
888 ASSERT(avl_numnodes(&ddt->ddt_tree) == 0);
889 ASSERT(avl_numnodes(&ddt->ddt_repair_tree) == 0);
890 avl_destroy(&ddt->ddt_tree);
891 avl_destroy(&ddt->ddt_repair_tree);
892 mutex_destroy(&ddt->ddt_lock);
893 kmem_cache_free(ddt_cache, ddt);
894 }
895
896 void
897 ddt_create(spa_t *spa)
898 {
899 enum zio_checksum c;
900
901 spa->spa_dedup_checksum = ZIO_DEDUPCHECKSUM;
902
903 for (c = 0; c < ZIO_CHECKSUM_FUNCTIONS; c++)
904 spa->spa_ddt[c] = ddt_table_alloc(spa, c);
905 }
906
907 int
908 ddt_load(spa_t *spa)
909 {
910 enum zio_checksum c;
911 enum ddt_type type;
912 enum ddt_class class;
913 int error;
914
915 ddt_create(spa);
916
917 error = zap_lookup(spa->spa_meta_objset, DMU_POOL_DIRECTORY_OBJECT,
918 DMU_POOL_DDT_STATS, sizeof (uint64_t), 1,
919 &spa->spa_ddt_stat_object);
920
921 if (error)
922 return (error == ENOENT ? 0 : error);
923
924 for (c = 0; c < ZIO_CHECKSUM_FUNCTIONS; c++) {
925 ddt_t *ddt = spa->spa_ddt[c];
926 for (type = 0; type < DDT_TYPES; type++) {
927 for (class = 0; class < DDT_CLASSES;
928 class++) {
929 error = ddt_object_load(ddt, type, class);
930 if (error != 0 && error != ENOENT)
931 return (error);
932 }
933 }
934
935 /*
936 * Seed the cached histograms.
937 */
938 bcopy(ddt->ddt_histogram, &ddt->ddt_histogram_cache,
939 sizeof (ddt->ddt_histogram));
940 spa->spa_dedup_dspace = ~0ULL;
941 }
942
943 return (0);
944 }
945
946 void
947 ddt_unload(spa_t *spa)
948 {
949 enum zio_checksum c;
950
951 for (c = 0; c < ZIO_CHECKSUM_FUNCTIONS; c++) {
952 if (spa->spa_ddt[c]) {
953 ddt_table_free(spa->spa_ddt[c]);
954 spa->spa_ddt[c] = NULL;
955 }
956 }
957 }
958
959 boolean_t
960 ddt_class_contains(spa_t *spa, enum ddt_class max_class, const blkptr_t *bp)
961 {
962 ddt_t *ddt;
963 ddt_entry_t *dde;
964 enum ddt_type type;
965 enum ddt_class class;
966
967 if (!BP_GET_DEDUP(bp))
968 return (B_FALSE);
969
970 if (max_class == DDT_CLASS_UNIQUE)
971 return (B_TRUE);
972
973 ddt = spa->spa_ddt[BP_GET_CHECKSUM(bp)];
974 dde = kmem_cache_alloc(ddt_entry_cache, KM_SLEEP);
975
976 ddt_key_fill(&(dde->dde_key), bp);
977
978 for (type = 0; type < DDT_TYPES; type++) {
979 for (class = 0; class <= max_class; class++) {
980 if (ddt_object_lookup(ddt, type, class, dde) == 0) {
981 kmem_cache_free(ddt_entry_cache, dde);
982 return (B_TRUE);
983 }
984 }
985 }
986
987 kmem_cache_free(ddt_entry_cache, dde);
988 return (B_FALSE);
989 }
990
991 ddt_entry_t *
992 ddt_repair_start(ddt_t *ddt, const blkptr_t *bp)
993 {
994 ddt_key_t ddk;
995 ddt_entry_t *dde;
996 enum ddt_type type;
997 enum ddt_class class;
998
999 ddt_key_fill(&ddk, bp);
1000
1001 dde = ddt_alloc(&ddk);
1002
1003 for (type = 0; type < DDT_TYPES; type++) {
1004 for (class = 0; class < DDT_CLASSES; class++) {
1005 /*
1006 * We can only do repair if there are multiple copies
1007 * of the block. For anything in the UNIQUE class,
1008 * there's definitely only one copy, so don't even try.
1009 */
1010 if (class != DDT_CLASS_UNIQUE &&
1011 ddt_object_lookup(ddt, type, class, dde) == 0)
1012 return (dde);
1013 }
1014 }
1015
1016 bzero(dde->dde_phys, sizeof (dde->dde_phys));
1017
1018 return (dde);
1019 }
1020
1021 void
1022 ddt_repair_done(ddt_t *ddt, ddt_entry_t *dde)
1023 {
1024 avl_index_t where;
1025
1026 ddt_enter(ddt);
1027
1028 if (dde->dde_repair_abd != NULL && spa_writeable(ddt->ddt_spa) &&
1029 avl_find(&ddt->ddt_repair_tree, dde, &where) == NULL)
1030 avl_insert(&ddt->ddt_repair_tree, dde, where);
1031 else
1032 ddt_free(dde);
1033
1034 ddt_exit(ddt);
1035 }
1036
1037 static void
1038 ddt_repair_entry_done(zio_t *zio)
1039 {
1040 ddt_entry_t *rdde = zio->io_private;
1041
1042 ddt_free(rdde);
1043 }
1044
1045 static void
1046 ddt_repair_entry(ddt_t *ddt, ddt_entry_t *dde, ddt_entry_t *rdde, zio_t *rio)
1047 {
1048 ddt_phys_t *ddp = dde->dde_phys;
1049 ddt_phys_t *rddp = rdde->dde_phys;
1050 ddt_key_t *ddk = &dde->dde_key;
1051 ddt_key_t *rddk = &rdde->dde_key;
1052 zio_t *zio;
1053 blkptr_t blk;
1054 int p;
1055
1056 zio = zio_null(rio, rio->io_spa, NULL,
1057 ddt_repair_entry_done, rdde, rio->io_flags);
1058
1059 for (p = 0; p < DDT_PHYS_TYPES; p++, ddp++, rddp++) {
1060 if (ddp->ddp_phys_birth == 0 ||
1061 ddp->ddp_phys_birth != rddp->ddp_phys_birth ||
1062 bcmp(ddp->ddp_dva, rddp->ddp_dva, sizeof (ddp->ddp_dva)))
1063 continue;
1064 ddt_bp_create(ddt->ddt_checksum, ddk, ddp, &blk);
1065 zio_nowait(zio_rewrite(zio, zio->io_spa, 0, &blk,
1066 rdde->dde_repair_abd, DDK_GET_PSIZE(rddk), NULL, NULL,
1067 ZIO_PRIORITY_SYNC_WRITE, ZIO_DDT_CHILD_FLAGS(zio), NULL));
1068 }
1069
1070 zio_nowait(zio);
1071 }
1072
1073 static void
1074 ddt_repair_table(ddt_t *ddt, zio_t *rio)
1075 {
1076 spa_t *spa = ddt->ddt_spa;
1077 ddt_entry_t *dde, *rdde_next, *rdde;
1078 avl_tree_t *t = &ddt->ddt_repair_tree;
1079 blkptr_t blk;
1080
1081 if (spa_sync_pass(spa) > 1)
1082 return;
1083
1084 ddt_enter(ddt);
1085 for (rdde = avl_first(t); rdde != NULL; rdde = rdde_next) {
1086 rdde_next = AVL_NEXT(t, rdde);
1087 avl_remove(&ddt->ddt_repair_tree, rdde);
1088 ddt_exit(ddt);
1089 ddt_bp_create(ddt->ddt_checksum, &rdde->dde_key, NULL, &blk);
1090 dde = ddt_repair_start(ddt, &blk);
1091 ddt_repair_entry(ddt, dde, rdde, rio);
1092 ddt_repair_done(ddt, dde);
1093 ddt_enter(ddt);
1094 }
1095 ddt_exit(ddt);
1096 }
1097
1098 static void
1099 ddt_sync_entry(ddt_t *ddt, ddt_entry_t *dde, dmu_tx_t *tx, uint64_t txg)
1100 {
1101 dsl_pool_t *dp = ddt->ddt_spa->spa_dsl_pool;
1102 ddt_phys_t *ddp = dde->dde_phys;
1103 ddt_key_t *ddk = &dde->dde_key;
1104 enum ddt_type otype = dde->dde_type;
1105 enum ddt_type ntype = DDT_TYPE_CURRENT;
1106 enum ddt_class oclass = dde->dde_class;
1107 enum ddt_class nclass;
1108 uint64_t total_refcnt = 0;
1109 int p;
1110
1111 ASSERT(dde->dde_loaded);
1112 ASSERT(!dde->dde_loading);
1113
1114 for (p = 0; p < DDT_PHYS_TYPES; p++, ddp++) {
1115 ASSERT(dde->dde_lead_zio[p] == NULL);
1116 if (ddp->ddp_phys_birth == 0) {
1117 ASSERT(ddp->ddp_refcnt == 0);
1118 continue;
1119 }
1120 if (p == DDT_PHYS_DITTO) {
1121 if (ddt_ditto_copies_needed(ddt, dde, NULL) == 0)
1122 ddt_phys_free(ddt, ddk, ddp, txg);
1123 continue;
1124 }
1125 if (ddp->ddp_refcnt == 0)
1126 ddt_phys_free(ddt, ddk, ddp, txg);
1127 total_refcnt += ddp->ddp_refcnt;
1128 }
1129
1130 if (dde->dde_phys[DDT_PHYS_DITTO].ddp_phys_birth != 0)
1131 nclass = DDT_CLASS_DITTO;
1132 else if (total_refcnt > 1)
1133 nclass = DDT_CLASS_DUPLICATE;
1134 else
1135 nclass = DDT_CLASS_UNIQUE;
1136
1137 if (otype != DDT_TYPES &&
1138 (otype != ntype || oclass != nclass || total_refcnt == 0)) {
1139 VERIFY(ddt_object_remove(ddt, otype, oclass, dde, tx) == 0);
1140 ASSERT(ddt_object_lookup(ddt, otype, oclass, dde) == ENOENT);
1141 }
1142
1143 if (total_refcnt != 0) {
1144 dde->dde_type = ntype;
1145 dde->dde_class = nclass;
1146 ddt_stat_update(ddt, dde, 0);
1147 if (!ddt_object_exists(ddt, ntype, nclass))
1148 ddt_object_create(ddt, ntype, nclass, tx);
1149 VERIFY(ddt_object_update(ddt, ntype, nclass, dde, tx) == 0);
1150
1151 /*
1152 * If the class changes, the order that we scan this bp
1153 * changes. If it decreases, we could miss it, so
1154 * scan it right now. (This covers both class changing
1155 * while we are doing ddt_walk(), and when we are
1156 * traversing.)
1157 */
1158 if (nclass < oclass) {
1159 dsl_scan_ddt_entry(dp->dp_scan,
1160 ddt->ddt_checksum, dde, tx);
1161 }
1162 }
1163 }
1164
1165 static void
1166 ddt_sync_table(ddt_t *ddt, dmu_tx_t *tx, uint64_t txg)
1167 {
1168 spa_t *spa = ddt->ddt_spa;
1169 ddt_entry_t *dde;
1170 void *cookie = NULL;
1171 enum ddt_type type;
1172 enum ddt_class class;
1173
1174 if (avl_numnodes(&ddt->ddt_tree) == 0)
1175 return;
1176
1177 ASSERT(spa->spa_uberblock.ub_version >= SPA_VERSION_DEDUP);
1178
1179 if (spa->spa_ddt_stat_object == 0) {
1180 spa->spa_ddt_stat_object = zap_create_link(ddt->ddt_os,
1181 DMU_OT_DDT_STATS, DMU_POOL_DIRECTORY_OBJECT,
1182 DMU_POOL_DDT_STATS, tx);
1183 }
1184
1185 while ((dde = avl_destroy_nodes(&ddt->ddt_tree, &cookie)) != NULL) {
1186 ddt_sync_entry(ddt, dde, tx, txg);
1187 ddt_free(dde);
1188 }
1189
1190 for (type = 0; type < DDT_TYPES; type++) {
1191 uint64_t add, count = 0;
1192 for (class = 0; class < DDT_CLASSES; class++) {
1193 if (ddt_object_exists(ddt, type, class)) {
1194 ddt_object_sync(ddt, type, class, tx);
1195 VERIFY(ddt_object_count(ddt, type, class,
1196 &add) == 0);
1197 count += add;
1198 }
1199 }
1200 for (class = 0; class < DDT_CLASSES; class++) {
1201 if (count == 0 && ddt_object_exists(ddt, type, class))
1202 ddt_object_destroy(ddt, type, class, tx);
1203 }
1204 }
1205
1206 bcopy(ddt->ddt_histogram, &ddt->ddt_histogram_cache,
1207 sizeof (ddt->ddt_histogram));
1208 spa->spa_dedup_dspace = ~0ULL;
1209 }
1210
1211 void
1212 ddt_sync(spa_t *spa, uint64_t txg)
1213 {
1214 dmu_tx_t *tx;
1215 zio_t *rio = zio_root(spa, NULL, NULL,
1216 ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE);
1217 enum zio_checksum c;
1218
1219 ASSERT(spa_syncing_txg(spa) == txg);
1220
1221 tx = dmu_tx_create_assigned(spa->spa_dsl_pool, txg);
1222
1223 for (c = 0; c < ZIO_CHECKSUM_FUNCTIONS; c++) {
1224 ddt_t *ddt = spa->spa_ddt[c];
1225 if (ddt == NULL)
1226 continue;
1227 ddt_sync_table(ddt, tx, txg);
1228 ddt_repair_table(ddt, rio);
1229 }
1230
1231 (void) zio_wait(rio);
1232
1233 dmu_tx_commit(tx);
1234 }
1235
1236 int
1237 ddt_walk(spa_t *spa, ddt_bookmark_t *ddb, ddt_entry_t *dde)
1238 {
1239 do {
1240 do {
1241 do {
1242 ddt_t *ddt = spa->spa_ddt[ddb->ddb_checksum];
1243 int error = ENOENT;
1244 if (ddt_object_exists(ddt, ddb->ddb_type,
1245 ddb->ddb_class)) {
1246 error = ddt_object_walk(ddt,
1247 ddb->ddb_type, ddb->ddb_class,
1248 &ddb->ddb_cursor, dde);
1249 }
1250 dde->dde_type = ddb->ddb_type;
1251 dde->dde_class = ddb->ddb_class;
1252 if (error == 0)
1253 return (0);
1254 if (error != ENOENT)
1255 return (error);
1256 ddb->ddb_cursor = 0;
1257 } while (++ddb->ddb_checksum < ZIO_CHECKSUM_FUNCTIONS);
1258 ddb->ddb_checksum = 0;
1259 } while (++ddb->ddb_type < DDT_TYPES);
1260 ddb->ddb_type = 0;
1261 } while (++ddb->ddb_class < DDT_CLASSES);
1262
1263 return (SET_ERROR(ENOENT));
1264 }
1265
1266 #if defined(_KERNEL) && defined(HAVE_SPL)
1267 module_param(zfs_dedup_prefetch, int, 0644);
1268 MODULE_PARM_DESC(zfs_dedup_prefetch, "Enable prefetching dedup-ed blks");
1269 #endif