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 * Copyright (c) 2008, 2010, Oracle and/or its affiliates. All rights reserved. 23 * Copyright (c) 2012 by Delphix. All rights reserved. 24 */ 25 26 #include <sys/dsl_scan.h> 27 #include <sys/dsl_pool.h> 28 #include <sys/dsl_dataset.h> 29 #include <sys/dsl_prop.h> 30 #include <sys/dsl_dir.h> 31 #include <sys/dsl_synctask.h> 32 #include <sys/dnode.h> 33 #include <sys/dmu_tx.h> 34 #include <sys/dmu_objset.h> 35 #include <sys/arc.h> 36 #include <sys/zap.h> 37 #include <sys/zio.h> 38 #include <sys/zfs_context.h> 39 #include <sys/fs/zfs.h> 40 #include <sys/zfs_znode.h> 41 #include <sys/spa_impl.h> 42 #include <sys/vdev_impl.h> 43 #include <sys/zil_impl.h> 44 #include <sys/zio_checksum.h> 45 #include <sys/ddt.h> 46 #include <sys/sa.h> 47 #include <sys/sa_impl.h> 48 #include <sys/zfeature.h> 49 #ifdef _KERNEL 50 #include <sys/zfs_vfsops.h> 51 #endif 52 53 typedef int (scan_cb_t)(dsl_pool_t *, const blkptr_t *, const zbookmark_t *); 54 55 static scan_cb_t dsl_scan_defrag_cb; 56 static scan_cb_t dsl_scan_scrub_cb; 57 static scan_cb_t dsl_scan_remove_cb; 58 static dsl_syncfunc_t dsl_scan_cancel_sync; 59 static void dsl_scan_sync_state(dsl_scan_t *, dmu_tx_t *tx); 60 61 int zfs_top_maxinflight = 32; /* maximum I/Os per top-level */ 62 int zfs_resilver_delay = 2; /* number of ticks to delay resilver */ 63 int zfs_scrub_delay = 4; /* number of ticks to delay scrub */ 64 int zfs_scan_idle = 50; /* idle window in clock ticks */ 65 66 int zfs_scan_min_time_ms = 1000; /* min millisecs to scrub per txg */ 67 int zfs_free_min_time_ms = 1000; /* min millisecs to free per txg */ 68 int zfs_resilver_min_time_ms = 3000; /* min millisecs to resilver per txg */ 69 boolean_t zfs_no_scrub_io = B_FALSE; /* set to disable scrub i/o */ 70 boolean_t zfs_no_scrub_prefetch = B_FALSE; /* set to disable srub prefetching */ 71 enum ddt_class zfs_scrub_ddt_class_max = DDT_CLASS_DUPLICATE; 72 int dsl_scan_delay_completion = B_FALSE; /* set to delay scan completion */ 73 74 #define DSL_SCAN_IS_SCRUB_RESILVER(scn) \ 75 ((scn)->scn_phys.scn_func == POOL_SCAN_SCRUB || \ 76 (scn)->scn_phys.scn_func == POOL_SCAN_RESILVER) 77 78 extern int zfs_txg_timeout; 79 80 /* the order has to match pool_scan_type */ 81 static scan_cb_t *scan_funcs[POOL_SCAN_FUNCS] = { 82 NULL, 83 dsl_scan_scrub_cb, /* POOL_SCAN_SCRUB */ 84 dsl_scan_scrub_cb, /* POOL_SCAN_RESILVER */ 85 }; 86 87 int 88 dsl_scan_init(dsl_pool_t *dp, uint64_t txg) 89 { 90 int err; 91 dsl_scan_t *scn; 92 spa_t *spa = dp->dp_spa; 93 uint64_t f; 94 95 scn = dp->dp_scan = kmem_zalloc(sizeof (dsl_scan_t), KM_SLEEP); 96 scn->scn_dp = dp; 97 98 err = zap_lookup(dp->dp_meta_objset, DMU_POOL_DIRECTORY_OBJECT, 99 "scrub_func", sizeof (uint64_t), 1, &f); 100 if (err == 0) { 101 /* 102 * There was an old-style scrub in progress. Restart a 103 * new-style scrub from the beginning. 104 */ 105 scn->scn_restart_txg = txg; 106 zfs_dbgmsg("old-style scrub was in progress; " 107 "restarting new-style scrub in txg %llu", 108 scn->scn_restart_txg); 109 110 /* 111 * Load the queue obj from the old location so that it 112 * can be freed by dsl_scan_done(). 113 */ 114 (void) zap_lookup(dp->dp_meta_objset, DMU_POOL_DIRECTORY_OBJECT, 115 "scrub_queue", sizeof (uint64_t), 1, 116 &scn->scn_phys.scn_queue_obj); 117 } else { 118 err = zap_lookup(dp->dp_meta_objset, DMU_POOL_DIRECTORY_OBJECT, 119 DMU_POOL_SCAN, sizeof (uint64_t), SCAN_PHYS_NUMINTS, 120 &scn->scn_phys); 121 if (err == ENOENT) 122 return (0); 123 else if (err) 124 return (err); 125 126 if (scn->scn_phys.scn_state == DSS_SCANNING && 127 spa_prev_software_version(dp->dp_spa) < SPA_VERSION_SCAN) { 128 /* 129 * A new-type scrub was in progress on an old 130 * pool, and the pool was accessed by old 131 * software. Restart from the beginning, since 132 * the old software may have changed the pool in 133 * the meantime. 134 */ 135 scn->scn_restart_txg = txg; 136 zfs_dbgmsg("new-style scrub was modified " 137 "by old software; restarting in txg %llu", 138 scn->scn_restart_txg); 139 } 140 } 141 142 spa_scan_stat_init(spa); 143 return (0); 144 } 145 146 void 147 dsl_scan_fini(dsl_pool_t *dp) 148 { 149 if (dp->dp_scan) { 150 kmem_free(dp->dp_scan, sizeof (dsl_scan_t)); 151 dp->dp_scan = NULL; 152 } 153 } 154 155 /* ARGSUSED */ 156 static int 157 dsl_scan_setup_check(void *arg1, void *arg2, dmu_tx_t *tx) 158 { 159 dsl_scan_t *scn = arg1; 160 161 if (scn->scn_phys.scn_state == DSS_SCANNING) 162 return (EBUSY); 163 164 return (0); 165 } 166 167 /* ARGSUSED */ 168 static void 169 dsl_scan_setup_sync(void *arg1, void *arg2, dmu_tx_t *tx) 170 { 171 dsl_scan_t *scn = arg1; 172 pool_scan_func_t *funcp = arg2; 173 dmu_object_type_t ot = 0; 174 dsl_pool_t *dp = scn->scn_dp; 175 spa_t *spa = dp->dp_spa; 176 177 ASSERT(scn->scn_phys.scn_state != DSS_SCANNING); 178 ASSERT(*funcp > POOL_SCAN_NONE && *funcp < POOL_SCAN_FUNCS); 179 bzero(&scn->scn_phys, sizeof (scn->scn_phys)); 180 scn->scn_phys.scn_func = *funcp; 181 scn->scn_phys.scn_state = DSS_SCANNING; 182 scn->scn_phys.scn_min_txg = 0; 183 scn->scn_phys.scn_max_txg = tx->tx_txg; 184 scn->scn_phys.scn_ddt_class_max = DDT_CLASSES - 1; /* the entire DDT */ 185 scn->scn_phys.scn_start_time = gethrestime_sec(); 186 scn->scn_phys.scn_errors = 0; 187 scn->scn_phys.scn_to_examine = spa->spa_root_vdev->vdev_stat.vs_alloc; 188 scn->scn_restart_txg = 0; 189 spa_scan_stat_init(spa); 190 191 if (DSL_SCAN_IS_SCRUB_RESILVER(scn)) { 192 scn->scn_phys.scn_ddt_class_max = zfs_scrub_ddt_class_max; 193 194 /* rewrite all disk labels */ 195 vdev_config_dirty(spa->spa_root_vdev); 196 197 if (vdev_resilver_needed(spa->spa_root_vdev, 198 &scn->scn_phys.scn_min_txg, &scn->scn_phys.scn_max_txg)) { 199 spa_event_notify(spa, NULL, ESC_ZFS_RESILVER_START); 200 } else { 201 spa_event_notify(spa, NULL, ESC_ZFS_SCRUB_START); 202 } 203 204 spa->spa_scrub_started = B_TRUE; 205 /* 206 * If this is an incremental scrub, limit the DDT scrub phase 207 * to just the auto-ditto class (for correctness); the rest 208 * of the scrub should go faster using top-down pruning. 209 */ 210 if (scn->scn_phys.scn_min_txg > TXG_INITIAL) 211 scn->scn_phys.scn_ddt_class_max = DDT_CLASS_DITTO; 212 213 } 214 215 /* back to the generic stuff */ 216 217 if (dp->dp_blkstats == NULL) { 218 dp->dp_blkstats = 219 kmem_alloc(sizeof (zfs_all_blkstats_t), KM_SLEEP); 220 } 221 bzero(dp->dp_blkstats, sizeof (zfs_all_blkstats_t)); 222 223 if (spa_version(spa) < SPA_VERSION_DSL_SCRUB) 224 ot = DMU_OT_ZAP_OTHER; 225 226 scn->scn_phys.scn_queue_obj = zap_create(dp->dp_meta_objset, 227 ot ? ot : DMU_OT_SCAN_QUEUE, DMU_OT_NONE, 0, tx); 228 229 dsl_scan_sync_state(scn, tx); 230 231 spa_history_log_internal(spa, "scan setup", tx, 232 "func=%u mintxg=%llu maxtxg=%llu", 233 *funcp, scn->scn_phys.scn_min_txg, scn->scn_phys.scn_max_txg); 234 } 235 236 /* ARGSUSED */ 237 static void 238 dsl_scan_done(dsl_scan_t *scn, boolean_t complete, dmu_tx_t *tx) 239 { 240 static const char *old_names[] = { 241 "scrub_bookmark", 242 "scrub_ddt_bookmark", 243 "scrub_ddt_class_max", 244 "scrub_queue", 245 "scrub_min_txg", 246 "scrub_max_txg", 247 "scrub_func", 248 "scrub_errors", 249 NULL 250 }; 251 252 dsl_pool_t *dp = scn->scn_dp; 253 spa_t *spa = dp->dp_spa; 254 int i; 255 256 /* Remove any remnants of an old-style scrub. */ 257 for (i = 0; old_names[i]; i++) { 258 (void) zap_remove(dp->dp_meta_objset, 259 DMU_POOL_DIRECTORY_OBJECT, old_names[i], tx); 260 } 261 262 if (scn->scn_phys.scn_queue_obj != 0) { 263 VERIFY(0 == dmu_object_free(dp->dp_meta_objset, 264 scn->scn_phys.scn_queue_obj, tx)); 265 scn->scn_phys.scn_queue_obj = 0; 266 } 267 268 /* 269 * If we were "restarted" from a stopped state, don't bother 270 * with anything else. 271 */ 272 if (scn->scn_phys.scn_state != DSS_SCANNING) 273 return; 274 275 if (complete) 276 scn->scn_phys.scn_state = DSS_FINISHED; 277 else 278 scn->scn_phys.scn_state = DSS_CANCELED; 279 280 spa_history_log_internal(spa, "scan done", tx, 281 "complete=%u", complete); 282 283 if (DSL_SCAN_IS_SCRUB_RESILVER(scn)) { 284 mutex_enter(&spa->spa_scrub_lock); 285 while (spa->spa_scrub_inflight > 0) { 286 cv_wait(&spa->spa_scrub_io_cv, 287 &spa->spa_scrub_lock); 288 } 289 mutex_exit(&spa->spa_scrub_lock); 290 spa->spa_scrub_started = B_FALSE; 291 spa->spa_scrub_active = B_FALSE; 292 293 /* 294 * If the scrub/resilver completed, update all DTLs to 295 * reflect this. Whether it succeeded or not, vacate 296 * all temporary scrub DTLs. 297 */ 298 vdev_dtl_reassess(spa->spa_root_vdev, tx->tx_txg, 299 complete ? scn->scn_phys.scn_max_txg : 0, B_TRUE); 300 if (complete) { 301 spa_event_notify(spa, NULL, scn->scn_phys.scn_min_txg ? 302 ESC_ZFS_RESILVER_FINISH : ESC_ZFS_SCRUB_FINISH); 303 } 304 spa_errlog_rotate(spa); 305 306 /* 307 * We may have finished replacing a device. 308 * Let the async thread assess this and handle the detach. 309 */ 310 spa_async_request(spa, SPA_ASYNC_RESILVER_DONE); 311 } 312 313 scn->scn_phys.scn_end_time = gethrestime_sec(); 314 } 315 316 /* ARGSUSED */ 317 static int 318 dsl_scan_cancel_check(void *arg1, void *arg2, dmu_tx_t *tx) 319 { 320 dsl_scan_t *scn = arg1; 321 322 if (scn->scn_phys.scn_state != DSS_SCANNING) 323 return (ENOENT); 324 return (0); 325 } 326 327 /* ARGSUSED */ 328 static void 329 dsl_scan_cancel_sync(void *arg1, void *arg2, dmu_tx_t *tx) 330 { 331 dsl_scan_t *scn = arg1; 332 333 dsl_scan_done(scn, B_FALSE, tx); 334 dsl_scan_sync_state(scn, tx); 335 } 336 337 int 338 dsl_scan_cancel(dsl_pool_t *dp) 339 { 340 boolean_t complete = B_FALSE; 341 int err; 342 343 err = dsl_sync_task_do(dp, dsl_scan_cancel_check, 344 dsl_scan_cancel_sync, dp->dp_scan, &complete, 3); 345 return (err); 346 } 347 348 static void dsl_scan_visitbp(blkptr_t *bp, 349 const zbookmark_t *zb, dnode_phys_t *dnp, arc_buf_t *pbuf, 350 dsl_dataset_t *ds, dsl_scan_t *scn, dmu_objset_type_t ostype, 351 dmu_tx_t *tx); 352 static void dsl_scan_visitdnode(dsl_scan_t *, dsl_dataset_t *ds, 353 dmu_objset_type_t ostype, 354 dnode_phys_t *dnp, arc_buf_t *buf, uint64_t object, dmu_tx_t *tx); 355 356 void 357 dsl_free(dsl_pool_t *dp, uint64_t txg, const blkptr_t *bp) 358 { 359 zio_free(dp->dp_spa, txg, bp); 360 } 361 362 void 363 dsl_free_sync(zio_t *pio, dsl_pool_t *dp, uint64_t txg, const blkptr_t *bpp) 364 { 365 ASSERT(dsl_pool_sync_context(dp)); 366 zio_nowait(zio_free_sync(pio, dp->dp_spa, txg, bpp, pio->io_flags)); 367 } 368 369 static uint64_t 370 dsl_scan_ds_maxtxg(dsl_dataset_t *ds) 371 { 372 uint64_t smt = ds->ds_dir->dd_pool->dp_scan->scn_phys.scn_max_txg; 373 if (dsl_dataset_is_snapshot(ds)) 374 return (MIN(smt, ds->ds_phys->ds_creation_txg)); 375 return (smt); 376 } 377 378 static void 379 dsl_scan_sync_state(dsl_scan_t *scn, dmu_tx_t *tx) 380 { 381 VERIFY(0 == zap_update(scn->scn_dp->dp_meta_objset, 382 DMU_POOL_DIRECTORY_OBJECT, 383 DMU_POOL_SCAN, sizeof (uint64_t), SCAN_PHYS_NUMINTS, 384 &scn->scn_phys, tx)); 385 } 386 387 static boolean_t 388 dsl_scan_check_pause(dsl_scan_t *scn, const zbookmark_t *zb) 389 { 390 uint64_t elapsed_nanosecs; 391 int mintime; 392 393 /* we never skip user/group accounting objects */ 394 if (zb && (int64_t)zb->zb_object < 0) 395 return (B_FALSE); 396 397 if (scn->scn_pausing) 398 return (B_TRUE); /* we're already pausing */ 399 400 if (!ZB_IS_ZERO(&scn->scn_phys.scn_bookmark)) 401 return (B_FALSE); /* we're resuming */ 402 403 /* We only know how to resume from level-0 blocks. */ 404 if (zb && zb->zb_level != 0) 405 return (B_FALSE); 406 407 mintime = (scn->scn_phys.scn_func == POOL_SCAN_RESILVER) ? 408 zfs_resilver_min_time_ms : zfs_scan_min_time_ms; 409 elapsed_nanosecs = gethrtime() - scn->scn_sync_start_time; 410 if (elapsed_nanosecs / NANOSEC > zfs_txg_timeout || 411 (elapsed_nanosecs / MICROSEC > mintime && 412 txg_sync_waiting(scn->scn_dp)) || 413 spa_shutting_down(scn->scn_dp->dp_spa)) { 414 if (zb) { 415 dprintf("pausing at bookmark %llx/%llx/%llx/%llx\n", 416 (longlong_t)zb->zb_objset, 417 (longlong_t)zb->zb_object, 418 (longlong_t)zb->zb_level, 419 (longlong_t)zb->zb_blkid); 420 scn->scn_phys.scn_bookmark = *zb; 421 } 422 dprintf("pausing at DDT bookmark %llx/%llx/%llx/%llx\n", 423 (longlong_t)scn->scn_phys.scn_ddt_bookmark.ddb_class, 424 (longlong_t)scn->scn_phys.scn_ddt_bookmark.ddb_type, 425 (longlong_t)scn->scn_phys.scn_ddt_bookmark.ddb_checksum, 426 (longlong_t)scn->scn_phys.scn_ddt_bookmark.ddb_cursor); 427 scn->scn_pausing = B_TRUE; 428 return (B_TRUE); 429 } 430 return (B_FALSE); 431 } 432 433 typedef struct zil_scan_arg { 434 dsl_pool_t *zsa_dp; 435 zil_header_t *zsa_zh; 436 } zil_scan_arg_t; 437 438 /* ARGSUSED */ 439 static int 440 dsl_scan_zil_block(zilog_t *zilog, blkptr_t *bp, void *arg, uint64_t claim_txg) 441 { 442 zil_scan_arg_t *zsa = arg; 443 dsl_pool_t *dp = zsa->zsa_dp; 444 dsl_scan_t *scn = dp->dp_scan; 445 zil_header_t *zh = zsa->zsa_zh; 446 zbookmark_t zb; 447 448 if (bp->blk_birth <= scn->scn_phys.scn_cur_min_txg) 449 return (0); 450 451 /* 452 * One block ("stubby") can be allocated a long time ago; we 453 * want to visit that one because it has been allocated 454 * (on-disk) even if it hasn't been claimed (even though for 455 * scrub there's nothing to do to it). 456 */ 457 if (claim_txg == 0 && bp->blk_birth >= spa_first_txg(dp->dp_spa)) 458 return (0); 459 460 SET_BOOKMARK(&zb, zh->zh_log.blk_cksum.zc_word[ZIL_ZC_OBJSET], 461 ZB_ZIL_OBJECT, ZB_ZIL_LEVEL, bp->blk_cksum.zc_word[ZIL_ZC_SEQ]); 462 463 VERIFY(0 == scan_funcs[scn->scn_phys.scn_func](dp, bp, &zb)); 464 return (0); 465 } 466 467 /* ARGSUSED */ 468 static int 469 dsl_scan_zil_record(zilog_t *zilog, lr_t *lrc, void *arg, uint64_t claim_txg) 470 { 471 if (lrc->lrc_txtype == TX_WRITE) { 472 zil_scan_arg_t *zsa = arg; 473 dsl_pool_t *dp = zsa->zsa_dp; 474 dsl_scan_t *scn = dp->dp_scan; 475 zil_header_t *zh = zsa->zsa_zh; 476 lr_write_t *lr = (lr_write_t *)lrc; 477 blkptr_t *bp = &lr->lr_blkptr; 478 zbookmark_t zb; 479 480 if (bp->blk_birth <= scn->scn_phys.scn_cur_min_txg) 481 return (0); 482 483 /* 484 * birth can be < claim_txg if this record's txg is 485 * already txg sync'ed (but this log block contains 486 * other records that are not synced) 487 */ 488 if (claim_txg == 0 || bp->blk_birth < claim_txg) 489 return (0); 490 491 SET_BOOKMARK(&zb, zh->zh_log.blk_cksum.zc_word[ZIL_ZC_OBJSET], 492 lr->lr_foid, ZB_ZIL_LEVEL, 493 lr->lr_offset / BP_GET_LSIZE(bp)); 494 495 VERIFY(0 == scan_funcs[scn->scn_phys.scn_func](dp, bp, &zb)); 496 } 497 return (0); 498 } 499 500 static void 501 dsl_scan_zil(dsl_pool_t *dp, zil_header_t *zh) 502 { 503 uint64_t claim_txg = zh->zh_claim_txg; 504 zil_scan_arg_t zsa = { dp, zh }; 505 zilog_t *zilog; 506 507 /* 508 * We only want to visit blocks that have been claimed but not yet 509 * replayed (or, in read-only mode, blocks that *would* be claimed). 510 */ 511 if (claim_txg == 0 && spa_writeable(dp->dp_spa)) 512 return; 513 514 zilog = zil_alloc(dp->dp_meta_objset, zh); 515 516 (void) zil_parse(zilog, dsl_scan_zil_block, dsl_scan_zil_record, &zsa, 517 claim_txg); 518 519 zil_free(zilog); 520 } 521 522 /* ARGSUSED */ 523 static void 524 dsl_scan_prefetch(dsl_scan_t *scn, arc_buf_t *buf, blkptr_t *bp, 525 uint64_t objset, uint64_t object, uint64_t blkid) 526 { 527 zbookmark_t czb; 528 uint32_t flags = ARC_NOWAIT | ARC_PREFETCH; 529 530 if (zfs_no_scrub_prefetch) 531 return; 532 533 if (BP_IS_HOLE(bp) || bp->blk_birth <= scn->scn_phys.scn_min_txg || 534 (BP_GET_LEVEL(bp) == 0 && BP_GET_TYPE(bp) != DMU_OT_DNODE)) 535 return; 536 537 SET_BOOKMARK(&czb, objset, object, BP_GET_LEVEL(bp), blkid); 538 539 (void) arc_read(scn->scn_zio_root, scn->scn_dp->dp_spa, bp, 540 NULL, NULL, ZIO_PRIORITY_ASYNC_READ, 541 ZIO_FLAG_CANFAIL | ZIO_FLAG_SCAN_THREAD, &flags, &czb); 542 } 543 544 static boolean_t 545 dsl_scan_check_resume(dsl_scan_t *scn, const dnode_phys_t *dnp, 546 const zbookmark_t *zb) 547 { 548 /* 549 * We never skip over user/group accounting objects (obj<0) 550 */ 551 if (!ZB_IS_ZERO(&scn->scn_phys.scn_bookmark) && 552 (int64_t)zb->zb_object >= 0) { 553 /* 554 * If we already visited this bp & everything below (in 555 * a prior txg sync), don't bother doing it again. 556 */ 557 if (zbookmark_is_before(dnp, zb, &scn->scn_phys.scn_bookmark)) 558 return (B_TRUE); 559 560 /* 561 * If we found the block we're trying to resume from, or 562 * we went past it to a different object, zero it out to 563 * indicate that it's OK to start checking for pausing 564 * again. 565 */ 566 if (bcmp(zb, &scn->scn_phys.scn_bookmark, sizeof (*zb)) == 0 || 567 zb->zb_object > scn->scn_phys.scn_bookmark.zb_object) { 568 dprintf("resuming at %llx/%llx/%llx/%llx\n", 569 (longlong_t)zb->zb_objset, 570 (longlong_t)zb->zb_object, 571 (longlong_t)zb->zb_level, 572 (longlong_t)zb->zb_blkid); 573 bzero(&scn->scn_phys.scn_bookmark, sizeof (*zb)); 574 } 575 } 576 return (B_FALSE); 577 } 578 579 /* 580 * Return nonzero on i/o error. 581 * Return new buf to write out in *bufp. 582 */ 583 static int 584 dsl_scan_recurse(dsl_scan_t *scn, dsl_dataset_t *ds, dmu_objset_type_t ostype, 585 dnode_phys_t *dnp, const blkptr_t *bp, 586 const zbookmark_t *zb, dmu_tx_t *tx, arc_buf_t **bufp) 587 { 588 dsl_pool_t *dp = scn->scn_dp; 589 int zio_flags = ZIO_FLAG_CANFAIL | ZIO_FLAG_SCAN_THREAD; 590 int err; 591 592 if (BP_GET_LEVEL(bp) > 0) { 593 uint32_t flags = ARC_WAIT; 594 int i; 595 blkptr_t *cbp; 596 int epb = BP_GET_LSIZE(bp) >> SPA_BLKPTRSHIFT; 597 598 err = arc_read(NULL, dp->dp_spa, bp, arc_getbuf_func, bufp, 599 ZIO_PRIORITY_ASYNC_READ, zio_flags, &flags, zb); 600 if (err) { 601 scn->scn_phys.scn_errors++; 602 return (err); 603 } 604 for (i = 0, cbp = (*bufp)->b_data; i < epb; i++, cbp++) { 605 dsl_scan_prefetch(scn, *bufp, cbp, zb->zb_objset, 606 zb->zb_object, zb->zb_blkid * epb + i); 607 } 608 for (i = 0, cbp = (*bufp)->b_data; i < epb; i++, cbp++) { 609 zbookmark_t czb; 610 611 SET_BOOKMARK(&czb, zb->zb_objset, zb->zb_object, 612 zb->zb_level - 1, 613 zb->zb_blkid * epb + i); 614 dsl_scan_visitbp(cbp, &czb, dnp, 615 *bufp, ds, scn, ostype, tx); 616 } 617 } else if (BP_GET_TYPE(bp) == DMU_OT_USERGROUP_USED) { 618 uint32_t flags = ARC_WAIT; 619 620 err = arc_read(NULL, dp->dp_spa, bp, arc_getbuf_func, bufp, 621 ZIO_PRIORITY_ASYNC_READ, zio_flags, &flags, zb); 622 if (err) { 623 scn->scn_phys.scn_errors++; 624 return (err); 625 } 626 } else if (BP_GET_TYPE(bp) == DMU_OT_DNODE) { 627 uint32_t flags = ARC_WAIT; 628 dnode_phys_t *cdnp; 629 int i, j; 630 int epb = BP_GET_LSIZE(bp) >> DNODE_SHIFT; 631 632 err = arc_read(NULL, dp->dp_spa, bp, arc_getbuf_func, bufp, 633 ZIO_PRIORITY_ASYNC_READ, zio_flags, &flags, zb); 634 if (err) { 635 scn->scn_phys.scn_errors++; 636 return (err); 637 } 638 for (i = 0, cdnp = (*bufp)->b_data; i < epb; i++, cdnp++) { 639 for (j = 0; j < cdnp->dn_nblkptr; j++) { 640 blkptr_t *cbp = &cdnp->dn_blkptr[j]; 641 dsl_scan_prefetch(scn, *bufp, cbp, 642 zb->zb_objset, zb->zb_blkid * epb + i, j); 643 } 644 } 645 for (i = 0, cdnp = (*bufp)->b_data; i < epb; i++, cdnp++) { 646 dsl_scan_visitdnode(scn, ds, ostype, 647 cdnp, *bufp, zb->zb_blkid * epb + i, tx); 648 } 649 650 } else if (BP_GET_TYPE(bp) == DMU_OT_OBJSET) { 651 uint32_t flags = ARC_WAIT; 652 objset_phys_t *osp; 653 654 err = arc_read(NULL, dp->dp_spa, bp, arc_getbuf_func, bufp, 655 ZIO_PRIORITY_ASYNC_READ, zio_flags, &flags, zb); 656 if (err) { 657 scn->scn_phys.scn_errors++; 658 return (err); 659 } 660 661 osp = (*bufp)->b_data; 662 663 dsl_scan_visitdnode(scn, ds, osp->os_type, 664 &osp->os_meta_dnode, *bufp, DMU_META_DNODE_OBJECT, tx); 665 666 if (OBJSET_BUF_HAS_USERUSED(*bufp)) { 667 /* 668 * We also always visit user/group accounting 669 * objects, and never skip them, even if we are 670 * pausing. This is necessary so that the space 671 * deltas from this txg get integrated. 672 */ 673 dsl_scan_visitdnode(scn, ds, osp->os_type, 674 &osp->os_groupused_dnode, *bufp, 675 DMU_GROUPUSED_OBJECT, tx); 676 dsl_scan_visitdnode(scn, ds, osp->os_type, 677 &osp->os_userused_dnode, *bufp, 678 DMU_USERUSED_OBJECT, tx); 679 } 680 } 681 682 return (0); 683 } 684 685 static void 686 dsl_scan_visitdnode(dsl_scan_t *scn, dsl_dataset_t *ds, 687 dmu_objset_type_t ostype, dnode_phys_t *dnp, arc_buf_t *buf, 688 uint64_t object, dmu_tx_t *tx) 689 { 690 int j; 691 692 for (j = 0; j < dnp->dn_nblkptr; j++) { 693 zbookmark_t czb; 694 695 SET_BOOKMARK(&czb, ds ? ds->ds_object : 0, object, 696 dnp->dn_nlevels - 1, j); 697 dsl_scan_visitbp(&dnp->dn_blkptr[j], 698 &czb, dnp, buf, ds, scn, ostype, tx); 699 } 700 701 if (dnp->dn_flags & DNODE_FLAG_SPILL_BLKPTR) { 702 zbookmark_t czb; 703 SET_BOOKMARK(&czb, ds ? ds->ds_object : 0, object, 704 0, DMU_SPILL_BLKID); 705 dsl_scan_visitbp(&dnp->dn_spill, 706 &czb, dnp, buf, ds, scn, ostype, tx); 707 } 708 } 709 710 /* 711 * The arguments are in this order because mdb can only print the 712 * first 5; we want them to be useful. 713 */ 714 static void 715 dsl_scan_visitbp(blkptr_t *bp, const zbookmark_t *zb, 716 dnode_phys_t *dnp, arc_buf_t *pbuf, 717 dsl_dataset_t *ds, dsl_scan_t *scn, dmu_objset_type_t ostype, 718 dmu_tx_t *tx) 719 { 720 dsl_pool_t *dp = scn->scn_dp; 721 arc_buf_t *buf = NULL; 722 blkptr_t bp_toread = *bp; 723 724 /* ASSERT(pbuf == NULL || arc_released(pbuf)); */ 725 726 if (dsl_scan_check_pause(scn, zb)) 727 return; 728 729 if (dsl_scan_check_resume(scn, dnp, zb)) 730 return; 731 732 if (bp->blk_birth == 0) 733 return; 734 735 scn->scn_visited_this_txg++; 736 737 dprintf_bp(bp, 738 "visiting ds=%p/%llu zb=%llx/%llx/%llx/%llx buf=%p bp=%p", 739 ds, ds ? ds->ds_object : 0, 740 zb->zb_objset, zb->zb_object, zb->zb_level, zb->zb_blkid, 741 pbuf, bp); 742 743 if (bp->blk_birth <= scn->scn_phys.scn_cur_min_txg) 744 return; 745 746 if (dsl_scan_recurse(scn, ds, ostype, dnp, &bp_toread, zb, tx, 747 &buf) != 0) 748 return; 749 750 /* 751 * If dsl_scan_ddt() has aready visited this block, it will have 752 * already done any translations or scrubbing, so don't call the 753 * callback again. 754 */ 755 if (ddt_class_contains(dp->dp_spa, 756 scn->scn_phys.scn_ddt_class_max, bp)) { 757 ASSERT(buf == NULL); 758 return; 759 } 760 761 /* 762 * If this block is from the future (after cur_max_txg), then we 763 * are doing this on behalf of a deleted snapshot, and we will 764 * revisit the future block on the next pass of this dataset. 765 * Don't scan it now unless we need to because something 766 * under it was modified. 767 */ 768 if (bp->blk_birth <= scn->scn_phys.scn_cur_max_txg) { 769 scan_funcs[scn->scn_phys.scn_func](dp, bp, zb); 770 } 771 if (buf) 772 (void) arc_buf_remove_ref(buf, &buf); 773 } 774 775 static void 776 dsl_scan_visit_rootbp(dsl_scan_t *scn, dsl_dataset_t *ds, blkptr_t *bp, 777 dmu_tx_t *tx) 778 { 779 zbookmark_t zb; 780 781 SET_BOOKMARK(&zb, ds ? ds->ds_object : DMU_META_OBJSET, 782 ZB_ROOT_OBJECT, ZB_ROOT_LEVEL, ZB_ROOT_BLKID); 783 dsl_scan_visitbp(bp, &zb, NULL, NULL, 784 ds, scn, DMU_OST_NONE, tx); 785 786 dprintf_ds(ds, "finished scan%s", ""); 787 } 788 789 void 790 dsl_scan_ds_destroyed(dsl_dataset_t *ds, dmu_tx_t *tx) 791 { 792 dsl_pool_t *dp = ds->ds_dir->dd_pool; 793 dsl_scan_t *scn = dp->dp_scan; 794 uint64_t mintxg; 795 796 if (scn->scn_phys.scn_state != DSS_SCANNING) 797 return; 798 799 if (scn->scn_phys.scn_bookmark.zb_objset == ds->ds_object) { 800 if (dsl_dataset_is_snapshot(ds)) { 801 /* Note, scn_cur_{min,max}_txg stays the same. */ 802 scn->scn_phys.scn_bookmark.zb_objset = 803 ds->ds_phys->ds_next_snap_obj; 804 zfs_dbgmsg("destroying ds %llu; currently traversing; " 805 "reset zb_objset to %llu", 806 (u_longlong_t)ds->ds_object, 807 (u_longlong_t)ds->ds_phys->ds_next_snap_obj); 808 scn->scn_phys.scn_flags |= DSF_VISIT_DS_AGAIN; 809 } else { 810 SET_BOOKMARK(&scn->scn_phys.scn_bookmark, 811 ZB_DESTROYED_OBJSET, 0, 0, 0); 812 zfs_dbgmsg("destroying ds %llu; currently traversing; " 813 "reset bookmark to -1,0,0,0", 814 (u_longlong_t)ds->ds_object); 815 } 816 } else if (zap_lookup_int_key(dp->dp_meta_objset, 817 scn->scn_phys.scn_queue_obj, ds->ds_object, &mintxg) == 0) { 818 ASSERT3U(ds->ds_phys->ds_num_children, <=, 1); 819 VERIFY3U(0, ==, zap_remove_int(dp->dp_meta_objset, 820 scn->scn_phys.scn_queue_obj, ds->ds_object, tx)); 821 if (dsl_dataset_is_snapshot(ds)) { 822 /* 823 * We keep the same mintxg; it could be > 824 * ds_creation_txg if the previous snapshot was 825 * deleted too. 826 */ 827 VERIFY(zap_add_int_key(dp->dp_meta_objset, 828 scn->scn_phys.scn_queue_obj, 829 ds->ds_phys->ds_next_snap_obj, mintxg, tx) == 0); 830 zfs_dbgmsg("destroying ds %llu; in queue; " 831 "replacing with %llu", 832 (u_longlong_t)ds->ds_object, 833 (u_longlong_t)ds->ds_phys->ds_next_snap_obj); 834 } else { 835 zfs_dbgmsg("destroying ds %llu; in queue; removing", 836 (u_longlong_t)ds->ds_object); 837 } 838 } else { 839 zfs_dbgmsg("destroying ds %llu; ignoring", 840 (u_longlong_t)ds->ds_object); 841 } 842 843 /* 844 * dsl_scan_sync() should be called after this, and should sync 845 * out our changed state, but just to be safe, do it here. 846 */ 847 dsl_scan_sync_state(scn, tx); 848 } 849 850 void 851 dsl_scan_ds_snapshotted(dsl_dataset_t *ds, dmu_tx_t *tx) 852 { 853 dsl_pool_t *dp = ds->ds_dir->dd_pool; 854 dsl_scan_t *scn = dp->dp_scan; 855 uint64_t mintxg; 856 857 if (scn->scn_phys.scn_state != DSS_SCANNING) 858 return; 859 860 ASSERT(ds->ds_phys->ds_prev_snap_obj != 0); 861 862 if (scn->scn_phys.scn_bookmark.zb_objset == ds->ds_object) { 863 scn->scn_phys.scn_bookmark.zb_objset = 864 ds->ds_phys->ds_prev_snap_obj; 865 zfs_dbgmsg("snapshotting ds %llu; currently traversing; " 866 "reset zb_objset to %llu", 867 (u_longlong_t)ds->ds_object, 868 (u_longlong_t)ds->ds_phys->ds_prev_snap_obj); 869 } else if (zap_lookup_int_key(dp->dp_meta_objset, 870 scn->scn_phys.scn_queue_obj, ds->ds_object, &mintxg) == 0) { 871 VERIFY3U(0, ==, zap_remove_int(dp->dp_meta_objset, 872 scn->scn_phys.scn_queue_obj, ds->ds_object, tx)); 873 VERIFY(zap_add_int_key(dp->dp_meta_objset, 874 scn->scn_phys.scn_queue_obj, 875 ds->ds_phys->ds_prev_snap_obj, mintxg, tx) == 0); 876 zfs_dbgmsg("snapshotting ds %llu; in queue; " 877 "replacing with %llu", 878 (u_longlong_t)ds->ds_object, 879 (u_longlong_t)ds->ds_phys->ds_prev_snap_obj); 880 } 881 dsl_scan_sync_state(scn, tx); 882 } 883 884 void 885 dsl_scan_ds_clone_swapped(dsl_dataset_t *ds1, dsl_dataset_t *ds2, dmu_tx_t *tx) 886 { 887 dsl_pool_t *dp = ds1->ds_dir->dd_pool; 888 dsl_scan_t *scn = dp->dp_scan; 889 uint64_t mintxg; 890 891 if (scn->scn_phys.scn_state != DSS_SCANNING) 892 return; 893 894 if (scn->scn_phys.scn_bookmark.zb_objset == ds1->ds_object) { 895 scn->scn_phys.scn_bookmark.zb_objset = ds2->ds_object; 896 zfs_dbgmsg("clone_swap ds %llu; currently traversing; " 897 "reset zb_objset to %llu", 898 (u_longlong_t)ds1->ds_object, 899 (u_longlong_t)ds2->ds_object); 900 } else if (scn->scn_phys.scn_bookmark.zb_objset == ds2->ds_object) { 901 scn->scn_phys.scn_bookmark.zb_objset = ds1->ds_object; 902 zfs_dbgmsg("clone_swap ds %llu; currently traversing; " 903 "reset zb_objset to %llu", 904 (u_longlong_t)ds2->ds_object, 905 (u_longlong_t)ds1->ds_object); 906 } 907 908 if (zap_lookup_int_key(dp->dp_meta_objset, scn->scn_phys.scn_queue_obj, 909 ds1->ds_object, &mintxg) == 0) { 910 int err; 911 912 ASSERT3U(mintxg, ==, ds1->ds_phys->ds_prev_snap_txg); 913 ASSERT3U(mintxg, ==, ds2->ds_phys->ds_prev_snap_txg); 914 VERIFY3U(0, ==, zap_remove_int(dp->dp_meta_objset, 915 scn->scn_phys.scn_queue_obj, ds1->ds_object, tx)); 916 err = zap_add_int_key(dp->dp_meta_objset, 917 scn->scn_phys.scn_queue_obj, ds2->ds_object, mintxg, tx); 918 VERIFY(err == 0 || err == EEXIST); 919 if (err == EEXIST) { 920 /* Both were there to begin with */ 921 VERIFY(0 == zap_add_int_key(dp->dp_meta_objset, 922 scn->scn_phys.scn_queue_obj, 923 ds1->ds_object, mintxg, tx)); 924 } 925 zfs_dbgmsg("clone_swap ds %llu; in queue; " 926 "replacing with %llu", 927 (u_longlong_t)ds1->ds_object, 928 (u_longlong_t)ds2->ds_object); 929 } else if (zap_lookup_int_key(dp->dp_meta_objset, 930 scn->scn_phys.scn_queue_obj, ds2->ds_object, &mintxg) == 0) { 931 ASSERT3U(mintxg, ==, ds1->ds_phys->ds_prev_snap_txg); 932 ASSERT3U(mintxg, ==, ds2->ds_phys->ds_prev_snap_txg); 933 VERIFY3U(0, ==, zap_remove_int(dp->dp_meta_objset, 934 scn->scn_phys.scn_queue_obj, ds2->ds_object, tx)); 935 VERIFY(0 == zap_add_int_key(dp->dp_meta_objset, 936 scn->scn_phys.scn_queue_obj, ds1->ds_object, mintxg, tx)); 937 zfs_dbgmsg("clone_swap ds %llu; in queue; " 938 "replacing with %llu", 939 (u_longlong_t)ds2->ds_object, 940 (u_longlong_t)ds1->ds_object); 941 } 942 943 dsl_scan_sync_state(scn, tx); 944 } 945 946 struct enqueue_clones_arg { 947 dmu_tx_t *tx; 948 uint64_t originobj; 949 }; 950 951 /* ARGSUSED */ 952 static int 953 enqueue_clones_cb(spa_t *spa, uint64_t dsobj, const char *dsname, void *arg) 954 { 955 struct enqueue_clones_arg *eca = arg; 956 dsl_dataset_t *ds; 957 int err; 958 dsl_pool_t *dp = spa->spa_dsl_pool; 959 dsl_scan_t *scn = dp->dp_scan; 960 961 err = dsl_dataset_hold_obj(dp, dsobj, FTAG, &ds); 962 if (err) 963 return (err); 964 965 if (ds->ds_dir->dd_phys->dd_origin_obj == eca->originobj) { 966 while (ds->ds_phys->ds_prev_snap_obj != eca->originobj) { 967 dsl_dataset_t *prev; 968 err = dsl_dataset_hold_obj(dp, 969 ds->ds_phys->ds_prev_snap_obj, FTAG, &prev); 970 971 dsl_dataset_rele(ds, FTAG); 972 if (err) 973 return (err); 974 ds = prev; 975 } 976 VERIFY(zap_add_int_key(dp->dp_meta_objset, 977 scn->scn_phys.scn_queue_obj, ds->ds_object, 978 ds->ds_phys->ds_prev_snap_txg, eca->tx) == 0); 979 } 980 dsl_dataset_rele(ds, FTAG); 981 return (0); 982 } 983 984 static void 985 dsl_scan_visitds(dsl_scan_t *scn, uint64_t dsobj, dmu_tx_t *tx) 986 { 987 dsl_pool_t *dp = scn->scn_dp; 988 dsl_dataset_t *ds; 989 objset_t *os; 990 991 VERIFY3U(0, ==, dsl_dataset_hold_obj(dp, dsobj, FTAG, &ds)); 992 993 if (dmu_objset_from_ds(ds, &os)) 994 goto out; 995 996 /* 997 * Only the ZIL in the head (non-snapshot) is valid. Even though 998 * snapshots can have ZIL block pointers (which may be the same 999 * BP as in the head), they must be ignored. So we traverse the 1000 * ZIL here, rather than in scan_recurse(), because the regular 1001 * snapshot block-sharing rules don't apply to it. 1002 */ 1003 if (DSL_SCAN_IS_SCRUB_RESILVER(scn) && !dsl_dataset_is_snapshot(ds)) 1004 dsl_scan_zil(dp, &os->os_zil_header); 1005 1006 /* 1007 * Iterate over the bps in this ds. 1008 */ 1009 dmu_buf_will_dirty(ds->ds_dbuf, tx); 1010 dsl_scan_visit_rootbp(scn, ds, &ds->ds_phys->ds_bp, tx); 1011 1012 char *dsname = kmem_alloc(ZFS_MAXNAMELEN, KM_SLEEP); 1013 dsl_dataset_name(ds, dsname); 1014 zfs_dbgmsg("scanned dataset %llu (%s) with min=%llu max=%llu; " 1015 "pausing=%u", 1016 (longlong_t)dsobj, dsname, 1017 (longlong_t)scn->scn_phys.scn_cur_min_txg, 1018 (longlong_t)scn->scn_phys.scn_cur_max_txg, 1019 (int)scn->scn_pausing); 1020 kmem_free(dsname, ZFS_MAXNAMELEN); 1021 1022 if (scn->scn_pausing) 1023 goto out; 1024 1025 /* 1026 * We've finished this pass over this dataset. 1027 */ 1028 1029 /* 1030 * If we did not completely visit this dataset, do another pass. 1031 */ 1032 if (scn->scn_phys.scn_flags & DSF_VISIT_DS_AGAIN) { 1033 zfs_dbgmsg("incomplete pass; visiting again"); 1034 scn->scn_phys.scn_flags &= ~DSF_VISIT_DS_AGAIN; 1035 VERIFY(zap_add_int_key(dp->dp_meta_objset, 1036 scn->scn_phys.scn_queue_obj, ds->ds_object, 1037 scn->scn_phys.scn_cur_max_txg, tx) == 0); 1038 goto out; 1039 } 1040 1041 /* 1042 * Add descendent datasets to work queue. 1043 */ 1044 if (ds->ds_phys->ds_next_snap_obj != 0) { 1045 VERIFY(zap_add_int_key(dp->dp_meta_objset, 1046 scn->scn_phys.scn_queue_obj, ds->ds_phys->ds_next_snap_obj, 1047 ds->ds_phys->ds_creation_txg, tx) == 0); 1048 } 1049 if (ds->ds_phys->ds_num_children > 1) { 1050 boolean_t usenext = B_FALSE; 1051 if (ds->ds_phys->ds_next_clones_obj != 0) { 1052 uint64_t count; 1053 /* 1054 * A bug in a previous version of the code could 1055 * cause upgrade_clones_cb() to not set 1056 * ds_next_snap_obj when it should, leading to a 1057 * missing entry. Therefore we can only use the 1058 * next_clones_obj when its count is correct. 1059 */ 1060 int err = zap_count(dp->dp_meta_objset, 1061 ds->ds_phys->ds_next_clones_obj, &count); 1062 if (err == 0 && 1063 count == ds->ds_phys->ds_num_children - 1) 1064 usenext = B_TRUE; 1065 } 1066 1067 if (usenext) { 1068 VERIFY(zap_join_key(dp->dp_meta_objset, 1069 ds->ds_phys->ds_next_clones_obj, 1070 scn->scn_phys.scn_queue_obj, 1071 ds->ds_phys->ds_creation_txg, tx) == 0); 1072 } else { 1073 struct enqueue_clones_arg eca; 1074 eca.tx = tx; 1075 eca.originobj = ds->ds_object; 1076 1077 (void) dmu_objset_find_spa(ds->ds_dir->dd_pool->dp_spa, 1078 NULL, enqueue_clones_cb, &eca, DS_FIND_CHILDREN); 1079 } 1080 } 1081 1082 out: 1083 dsl_dataset_rele(ds, FTAG); 1084 } 1085 1086 /* ARGSUSED */ 1087 static int 1088 enqueue_cb(spa_t *spa, uint64_t dsobj, const char *dsname, void *arg) 1089 { 1090 dmu_tx_t *tx = arg; 1091 dsl_dataset_t *ds; 1092 int err; 1093 dsl_pool_t *dp = spa->spa_dsl_pool; 1094 dsl_scan_t *scn = dp->dp_scan; 1095 1096 err = dsl_dataset_hold_obj(dp, dsobj, FTAG, &ds); 1097 if (err) 1098 return (err); 1099 1100 while (ds->ds_phys->ds_prev_snap_obj != 0) { 1101 dsl_dataset_t *prev; 1102 err = dsl_dataset_hold_obj(dp, ds->ds_phys->ds_prev_snap_obj, 1103 FTAG, &prev); 1104 if (err) { 1105 dsl_dataset_rele(ds, FTAG); 1106 return (err); 1107 } 1108 1109 /* 1110 * If this is a clone, we don't need to worry about it for now. 1111 */ 1112 if (prev->ds_phys->ds_next_snap_obj != ds->ds_object) { 1113 dsl_dataset_rele(ds, FTAG); 1114 dsl_dataset_rele(prev, FTAG); 1115 return (0); 1116 } 1117 dsl_dataset_rele(ds, FTAG); 1118 ds = prev; 1119 } 1120 1121 VERIFY(zap_add_int_key(dp->dp_meta_objset, scn->scn_phys.scn_queue_obj, 1122 ds->ds_object, ds->ds_phys->ds_prev_snap_txg, tx) == 0); 1123 dsl_dataset_rele(ds, FTAG); 1124 return (0); 1125 } 1126 1127 /* 1128 * Scrub/dedup interaction. 1129 * 1130 * If there are N references to a deduped block, we don't want to scrub it 1131 * N times -- ideally, we should scrub it exactly once. 1132 * 1133 * We leverage the fact that the dde's replication class (enum ddt_class) 1134 * is ordered from highest replication class (DDT_CLASS_DITTO) to lowest 1135 * (DDT_CLASS_UNIQUE) so that we may walk the DDT in that order. 1136 * 1137 * To prevent excess scrubbing, the scrub begins by walking the DDT 1138 * to find all blocks with refcnt > 1, and scrubs each of these once. 1139 * Since there are two replication classes which contain blocks with 1140 * refcnt > 1, we scrub the highest replication class (DDT_CLASS_DITTO) first. 1141 * Finally the top-down scrub begins, only visiting blocks with refcnt == 1. 1142 * 1143 * There would be nothing more to say if a block's refcnt couldn't change 1144 * during a scrub, but of course it can so we must account for changes 1145 * in a block's replication class. 1146 * 1147 * Here's an example of what can occur: 1148 * 1149 * If a block has refcnt > 1 during the DDT scrub phase, but has refcnt == 1 1150 * when visited during the top-down scrub phase, it will be scrubbed twice. 1151 * This negates our scrub optimization, but is otherwise harmless. 1152 * 1153 * If a block has refcnt == 1 during the DDT scrub phase, but has refcnt > 1 1154 * on each visit during the top-down scrub phase, it will never be scrubbed. 1155 * To catch this, ddt_sync_entry() notifies the scrub code whenever a block's 1156 * reference class transitions to a higher level (i.e DDT_CLASS_UNIQUE to 1157 * DDT_CLASS_DUPLICATE); if it transitions from refcnt == 1 to refcnt > 1 1158 * while a scrub is in progress, it scrubs the block right then. 1159 */ 1160 static void 1161 dsl_scan_ddt(dsl_scan_t *scn, dmu_tx_t *tx) 1162 { 1163 ddt_bookmark_t *ddb = &scn->scn_phys.scn_ddt_bookmark; 1164 ddt_entry_t dde = { 0 }; 1165 int error; 1166 uint64_t n = 0; 1167 1168 while ((error = ddt_walk(scn->scn_dp->dp_spa, ddb, &dde)) == 0) { 1169 ddt_t *ddt; 1170 1171 if (ddb->ddb_class > scn->scn_phys.scn_ddt_class_max) 1172 break; 1173 dprintf("visiting ddb=%llu/%llu/%llu/%llx\n", 1174 (longlong_t)ddb->ddb_class, 1175 (longlong_t)ddb->ddb_type, 1176 (longlong_t)ddb->ddb_checksum, 1177 (longlong_t)ddb->ddb_cursor); 1178 1179 /* There should be no pending changes to the dedup table */ 1180 ddt = scn->scn_dp->dp_spa->spa_ddt[ddb->ddb_checksum]; 1181 ASSERT(avl_first(&ddt->ddt_tree) == NULL); 1182 1183 dsl_scan_ddt_entry(scn, ddb->ddb_checksum, &dde, tx); 1184 n++; 1185 1186 if (dsl_scan_check_pause(scn, NULL)) 1187 break; 1188 } 1189 1190 zfs_dbgmsg("scanned %llu ddt entries with class_max = %u; pausing=%u", 1191 (longlong_t)n, (int)scn->scn_phys.scn_ddt_class_max, 1192 (int)scn->scn_pausing); 1193 1194 ASSERT(error == 0 || error == ENOENT); 1195 ASSERT(error != ENOENT || 1196 ddb->ddb_class > scn->scn_phys.scn_ddt_class_max); 1197 } 1198 1199 /* ARGSUSED */ 1200 void 1201 dsl_scan_ddt_entry(dsl_scan_t *scn, enum zio_checksum checksum, 1202 ddt_entry_t *dde, dmu_tx_t *tx) 1203 { 1204 const ddt_key_t *ddk = &dde->dde_key; 1205 ddt_phys_t *ddp = dde->dde_phys; 1206 blkptr_t bp; 1207 zbookmark_t zb = { 0 }; 1208 1209 if (scn->scn_phys.scn_state != DSS_SCANNING) 1210 return; 1211 1212 for (int p = 0; p < DDT_PHYS_TYPES; p++, ddp++) { 1213 if (ddp->ddp_phys_birth == 0 || 1214 ddp->ddp_phys_birth > scn->scn_phys.scn_cur_max_txg) 1215 continue; 1216 ddt_bp_create(checksum, ddk, ddp, &bp); 1217 1218 scn->scn_visited_this_txg++; 1219 scan_funcs[scn->scn_phys.scn_func](scn->scn_dp, &bp, &zb); 1220 } 1221 } 1222 1223 static void 1224 dsl_scan_visit(dsl_scan_t *scn, dmu_tx_t *tx) 1225 { 1226 dsl_pool_t *dp = scn->scn_dp; 1227 zap_cursor_t zc; 1228 zap_attribute_t za; 1229 1230 if (scn->scn_phys.scn_ddt_bookmark.ddb_class <= 1231 scn->scn_phys.scn_ddt_class_max) { 1232 scn->scn_phys.scn_cur_min_txg = scn->scn_phys.scn_min_txg; 1233 scn->scn_phys.scn_cur_max_txg = scn->scn_phys.scn_max_txg; 1234 dsl_scan_ddt(scn, tx); 1235 if (scn->scn_pausing) 1236 return; 1237 } 1238 1239 if (scn->scn_phys.scn_bookmark.zb_objset == DMU_META_OBJSET) { 1240 /* First do the MOS & ORIGIN */ 1241 1242 scn->scn_phys.scn_cur_min_txg = scn->scn_phys.scn_min_txg; 1243 scn->scn_phys.scn_cur_max_txg = scn->scn_phys.scn_max_txg; 1244 dsl_scan_visit_rootbp(scn, NULL, 1245 &dp->dp_meta_rootbp, tx); 1246 spa_set_rootblkptr(dp->dp_spa, &dp->dp_meta_rootbp); 1247 if (scn->scn_pausing) 1248 return; 1249 1250 if (spa_version(dp->dp_spa) < SPA_VERSION_DSL_SCRUB) { 1251 VERIFY(0 == dmu_objset_find_spa(dp->dp_spa, 1252 NULL, enqueue_cb, tx, DS_FIND_CHILDREN)); 1253 } else { 1254 dsl_scan_visitds(scn, 1255 dp->dp_origin_snap->ds_object, tx); 1256 } 1257 ASSERT(!scn->scn_pausing); 1258 } else if (scn->scn_phys.scn_bookmark.zb_objset != 1259 ZB_DESTROYED_OBJSET) { 1260 /* 1261 * If we were paused, continue from here. Note if the 1262 * ds we were paused on was deleted, the zb_objset may 1263 * be -1, so we will skip this and find a new objset 1264 * below. 1265 */ 1266 dsl_scan_visitds(scn, scn->scn_phys.scn_bookmark.zb_objset, tx); 1267 if (scn->scn_pausing) 1268 return; 1269 } 1270 1271 /* 1272 * In case we were paused right at the end of the ds, zero the 1273 * bookmark so we don't think that we're still trying to resume. 1274 */ 1275 bzero(&scn->scn_phys.scn_bookmark, sizeof (zbookmark_t)); 1276 1277 /* keep pulling things out of the zap-object-as-queue */ 1278 while (zap_cursor_init(&zc, dp->dp_meta_objset, 1279 scn->scn_phys.scn_queue_obj), 1280 zap_cursor_retrieve(&zc, &za) == 0) { 1281 dsl_dataset_t *ds; 1282 uint64_t dsobj; 1283 1284 dsobj = strtonum(za.za_name, NULL); 1285 VERIFY3U(0, ==, zap_remove_int(dp->dp_meta_objset, 1286 scn->scn_phys.scn_queue_obj, dsobj, tx)); 1287 1288 /* Set up min/max txg */ 1289 VERIFY3U(0, ==, dsl_dataset_hold_obj(dp, dsobj, FTAG, &ds)); 1290 if (za.za_first_integer != 0) { 1291 scn->scn_phys.scn_cur_min_txg = 1292 MAX(scn->scn_phys.scn_min_txg, 1293 za.za_first_integer); 1294 } else { 1295 scn->scn_phys.scn_cur_min_txg = 1296 MAX(scn->scn_phys.scn_min_txg, 1297 ds->ds_phys->ds_prev_snap_txg); 1298 } 1299 scn->scn_phys.scn_cur_max_txg = dsl_scan_ds_maxtxg(ds); 1300 dsl_dataset_rele(ds, FTAG); 1301 1302 dsl_scan_visitds(scn, dsobj, tx); 1303 zap_cursor_fini(&zc); 1304 if (scn->scn_pausing) 1305 return; 1306 } 1307 zap_cursor_fini(&zc); 1308 } 1309 1310 static boolean_t 1311 dsl_scan_free_should_pause(dsl_scan_t *scn) 1312 { 1313 uint64_t elapsed_nanosecs; 1314 1315 elapsed_nanosecs = gethrtime() - scn->scn_sync_start_time; 1316 return (elapsed_nanosecs / NANOSEC > zfs_txg_timeout || 1317 (elapsed_nanosecs / MICROSEC > zfs_free_min_time_ms && 1318 txg_sync_waiting(scn->scn_dp)) || 1319 spa_shutting_down(scn->scn_dp->dp_spa)); 1320 } 1321 1322 static int 1323 dsl_scan_free_block_cb(void *arg, const blkptr_t *bp, dmu_tx_t *tx) 1324 { 1325 dsl_scan_t *scn = arg; 1326 1327 if (!scn->scn_is_bptree || 1328 (BP_GET_LEVEL(bp) == 0 && BP_GET_TYPE(bp) != DMU_OT_OBJSET)) { 1329 if (dsl_scan_free_should_pause(scn)) 1330 return (ERESTART); 1331 } 1332 1333 zio_nowait(zio_free_sync(scn->scn_zio_root, scn->scn_dp->dp_spa, 1334 dmu_tx_get_txg(tx), bp, 0)); 1335 dsl_dir_diduse_space(tx->tx_pool->dp_free_dir, DD_USED_HEAD, 1336 -bp_get_dsize_sync(scn->scn_dp->dp_spa, bp), 1337 -BP_GET_PSIZE(bp), -BP_GET_UCSIZE(bp), tx); 1338 scn->scn_visited_this_txg++; 1339 return (0); 1340 } 1341 1342 boolean_t 1343 dsl_scan_active(dsl_scan_t *scn) 1344 { 1345 spa_t *spa = scn->scn_dp->dp_spa; 1346 uint64_t used = 0, comp, uncomp; 1347 1348 if (spa->spa_load_state != SPA_LOAD_NONE) 1349 return (B_FALSE); 1350 if (spa_shutting_down(spa)) 1351 return (B_FALSE); 1352 1353 if (scn->scn_phys.scn_state == DSS_SCANNING) 1354 return (B_TRUE); 1355 1356 if (spa_feature_is_active(spa, 1357 &spa_feature_table[SPA_FEATURE_ASYNC_DESTROY])) { 1358 return (B_TRUE); 1359 } 1360 if (spa_version(scn->scn_dp->dp_spa) >= SPA_VERSION_DEADLISTS) { 1361 (void) bpobj_space(&scn->scn_dp->dp_free_bpobj, 1362 &used, &comp, &uncomp); 1363 } 1364 return (used != 0); 1365 } 1366 1367 void 1368 dsl_scan_sync(dsl_pool_t *dp, dmu_tx_t *tx) 1369 { 1370 dsl_scan_t *scn = dp->dp_scan; 1371 spa_t *spa = dp->dp_spa; 1372 int err; 1373 1374 /* 1375 * Check for scn_restart_txg before checking spa_load_state, so 1376 * that we can restart an old-style scan while the pool is being 1377 * imported (see dsl_scan_init). 1378 */ 1379 if (scn->scn_restart_txg != 0 && 1380 scn->scn_restart_txg <= tx->tx_txg) { 1381 pool_scan_func_t func = POOL_SCAN_SCRUB; 1382 dsl_scan_done(scn, B_FALSE, tx); 1383 if (vdev_resilver_needed(spa->spa_root_vdev, NULL, NULL)) 1384 func = POOL_SCAN_RESILVER; 1385 zfs_dbgmsg("restarting scan func=%u txg=%llu", 1386 func, tx->tx_txg); 1387 dsl_scan_setup_sync(scn, &func, tx); 1388 } 1389 1390 if (!dsl_scan_active(scn) || 1391 spa_sync_pass(dp->dp_spa) > 1) 1392 return; 1393 1394 scn->scn_visited_this_txg = 0; 1395 scn->scn_pausing = B_FALSE; 1396 scn->scn_sync_start_time = gethrtime(); 1397 spa->spa_scrub_active = B_TRUE; 1398 1399 /* 1400 * First process the free list. If we pause the free, don't do 1401 * any scanning. This ensures that there is no free list when 1402 * we are scanning, so the scan code doesn't have to worry about 1403 * traversing it. 1404 */ 1405 if (spa_version(dp->dp_spa) >= SPA_VERSION_DEADLISTS) { 1406 scn->scn_is_bptree = B_FALSE; 1407 scn->scn_zio_root = zio_root(dp->dp_spa, NULL, 1408 NULL, ZIO_FLAG_MUSTSUCCEED); 1409 err = bpobj_iterate(&dp->dp_free_bpobj, 1410 dsl_scan_free_block_cb, scn, tx); 1411 VERIFY3U(0, ==, zio_wait(scn->scn_zio_root)); 1412 1413 if (err == 0 && spa_feature_is_active(spa, 1414 &spa_feature_table[SPA_FEATURE_ASYNC_DESTROY])) { 1415 scn->scn_is_bptree = B_TRUE; 1416 scn->scn_zio_root = zio_root(dp->dp_spa, NULL, 1417 NULL, ZIO_FLAG_MUSTSUCCEED); 1418 err = bptree_iterate(dp->dp_meta_objset, 1419 dp->dp_bptree_obj, B_TRUE, dsl_scan_free_block_cb, 1420 scn, tx); 1421 VERIFY3U(0, ==, zio_wait(scn->scn_zio_root)); 1422 if (err != 0) 1423 return; 1424 1425 /* disable async destroy feature */ 1426 spa_feature_decr(spa, 1427 &spa_feature_table[SPA_FEATURE_ASYNC_DESTROY], tx); 1428 ASSERT(!spa_feature_is_active(spa, 1429 &spa_feature_table[SPA_FEATURE_ASYNC_DESTROY])); 1430 VERIFY3U(0, ==, zap_remove(dp->dp_meta_objset, 1431 DMU_POOL_DIRECTORY_OBJECT, 1432 DMU_POOL_BPTREE_OBJ, tx)); 1433 VERIFY3U(0, ==, bptree_free(dp->dp_meta_objset, 1434 dp->dp_bptree_obj, tx)); 1435 dp->dp_bptree_obj = 0; 1436 } 1437 if (scn->scn_visited_this_txg) { 1438 zfs_dbgmsg("freed %llu blocks in %llums from " 1439 "free_bpobj/bptree txg %llu", 1440 (longlong_t)scn->scn_visited_this_txg, 1441 (longlong_t) 1442 (gethrtime() - scn->scn_sync_start_time) / MICROSEC, 1443 (longlong_t)tx->tx_txg); 1444 scn->scn_visited_this_txg = 0; 1445 /* 1446 * Re-sync the ddt so that we can further modify 1447 * it when doing bprewrite. 1448 */ 1449 ddt_sync(spa, tx->tx_txg); 1450 } 1451 if (err == ERESTART) 1452 return; 1453 } 1454 1455 if (scn->scn_phys.scn_state != DSS_SCANNING) 1456 return; 1457 1458 if (scn->scn_phys.scn_ddt_bookmark.ddb_class <= 1459 scn->scn_phys.scn_ddt_class_max) { 1460 zfs_dbgmsg("doing scan sync txg %llu; " 1461 "ddt bm=%llu/%llu/%llu/%llx", 1462 (longlong_t)tx->tx_txg, 1463 (longlong_t)scn->scn_phys.scn_ddt_bookmark.ddb_class, 1464 (longlong_t)scn->scn_phys.scn_ddt_bookmark.ddb_type, 1465 (longlong_t)scn->scn_phys.scn_ddt_bookmark.ddb_checksum, 1466 (longlong_t)scn->scn_phys.scn_ddt_bookmark.ddb_cursor); 1467 ASSERT(scn->scn_phys.scn_bookmark.zb_objset == 0); 1468 ASSERT(scn->scn_phys.scn_bookmark.zb_object == 0); 1469 ASSERT(scn->scn_phys.scn_bookmark.zb_level == 0); 1470 ASSERT(scn->scn_phys.scn_bookmark.zb_blkid == 0); 1471 } else { 1472 zfs_dbgmsg("doing scan sync txg %llu; bm=%llu/%llu/%llu/%llu", 1473 (longlong_t)tx->tx_txg, 1474 (longlong_t)scn->scn_phys.scn_bookmark.zb_objset, 1475 (longlong_t)scn->scn_phys.scn_bookmark.zb_object, 1476 (longlong_t)scn->scn_phys.scn_bookmark.zb_level, 1477 (longlong_t)scn->scn_phys.scn_bookmark.zb_blkid); 1478 } 1479 1480 scn->scn_zio_root = zio_root(dp->dp_spa, NULL, 1481 NULL, ZIO_FLAG_CANFAIL); 1482 dsl_scan_visit(scn, tx); 1483 (void) zio_wait(scn->scn_zio_root); 1484 scn->scn_zio_root = NULL; 1485 1486 zfs_dbgmsg("visited %llu blocks in %llums", 1487 (longlong_t)scn->scn_visited_this_txg, 1488 (longlong_t)(gethrtime() - scn->scn_sync_start_time) / MICROSEC); 1489 1490 if (!scn->scn_pausing) { 1491 /* finished with scan. */ 1492 zfs_dbgmsg("finished scan txg %llu", (longlong_t)tx->tx_txg); 1493 dsl_scan_done(scn, B_TRUE, tx); 1494 } 1495 1496 if (DSL_SCAN_IS_SCRUB_RESILVER(scn)) { 1497 mutex_enter(&spa->spa_scrub_lock); 1498 while (spa->spa_scrub_inflight > 0) { 1499 cv_wait(&spa->spa_scrub_io_cv, 1500 &spa->spa_scrub_lock); 1501 } 1502 mutex_exit(&spa->spa_scrub_lock); 1503 } 1504 1505 dsl_scan_sync_state(scn, tx); 1506 } 1507 1508 /* 1509 * This will start a new scan, or restart an existing one. 1510 */ 1511 void 1512 dsl_resilver_restart(dsl_pool_t *dp, uint64_t txg) 1513 { 1514 if (txg == 0) { 1515 dmu_tx_t *tx; 1516 tx = dmu_tx_create_dd(dp->dp_mos_dir); 1517 VERIFY(0 == dmu_tx_assign(tx, TXG_WAIT)); 1518 1519 txg = dmu_tx_get_txg(tx); 1520 dp->dp_scan->scn_restart_txg = txg; 1521 dmu_tx_commit(tx); 1522 } else { 1523 dp->dp_scan->scn_restart_txg = txg; 1524 } 1525 zfs_dbgmsg("restarting resilver txg=%llu", txg); 1526 } 1527 1528 boolean_t 1529 dsl_scan_resilvering(dsl_pool_t *dp) 1530 { 1531 return (dp->dp_scan->scn_phys.scn_state == DSS_SCANNING && 1532 dp->dp_scan->scn_phys.scn_func == POOL_SCAN_RESILVER); 1533 } 1534 1535 /* 1536 * scrub consumers 1537 */ 1538 1539 static void 1540 count_block(zfs_all_blkstats_t *zab, const blkptr_t *bp) 1541 { 1542 int i; 1543 1544 /* 1545 * If we resume after a reboot, zab will be NULL; don't record 1546 * incomplete stats in that case. 1547 */ 1548 if (zab == NULL) 1549 return; 1550 1551 for (i = 0; i < 4; i++) { 1552 int l = (i < 2) ? BP_GET_LEVEL(bp) : DN_MAX_LEVELS; 1553 int t = (i & 1) ? BP_GET_TYPE(bp) : DMU_OT_TOTAL; 1554 if (t & DMU_OT_NEWTYPE) 1555 t = DMU_OT_OTHER; 1556 zfs_blkstat_t *zb = &zab->zab_type[l][t]; 1557 int equal; 1558 1559 zb->zb_count++; 1560 zb->zb_asize += BP_GET_ASIZE(bp); 1561 zb->zb_lsize += BP_GET_LSIZE(bp); 1562 zb->zb_psize += BP_GET_PSIZE(bp); 1563 zb->zb_gangs += BP_COUNT_GANG(bp); 1564 1565 switch (BP_GET_NDVAS(bp)) { 1566 case 2: 1567 if (DVA_GET_VDEV(&bp->blk_dva[0]) == 1568 DVA_GET_VDEV(&bp->blk_dva[1])) 1569 zb->zb_ditto_2_of_2_samevdev++; 1570 break; 1571 case 3: 1572 equal = (DVA_GET_VDEV(&bp->blk_dva[0]) == 1573 DVA_GET_VDEV(&bp->blk_dva[1])) + 1574 (DVA_GET_VDEV(&bp->blk_dva[0]) == 1575 DVA_GET_VDEV(&bp->blk_dva[2])) + 1576 (DVA_GET_VDEV(&bp->blk_dva[1]) == 1577 DVA_GET_VDEV(&bp->blk_dva[2])); 1578 if (equal == 1) 1579 zb->zb_ditto_2_of_3_samevdev++; 1580 else if (equal == 3) 1581 zb->zb_ditto_3_of_3_samevdev++; 1582 break; 1583 } 1584 } 1585 } 1586 1587 static void 1588 dsl_scan_scrub_done(zio_t *zio) 1589 { 1590 spa_t *spa = zio->io_spa; 1591 1592 zio_data_buf_free(zio->io_data, zio->io_size); 1593 1594 mutex_enter(&spa->spa_scrub_lock); 1595 spa->spa_scrub_inflight--; 1596 cv_broadcast(&spa->spa_scrub_io_cv); 1597 1598 if (zio->io_error && (zio->io_error != ECKSUM || 1599 !(zio->io_flags & ZIO_FLAG_SPECULATIVE))) { 1600 spa->spa_dsl_pool->dp_scan->scn_phys.scn_errors++; 1601 } 1602 mutex_exit(&spa->spa_scrub_lock); 1603 } 1604 1605 static int 1606 dsl_scan_scrub_cb(dsl_pool_t *dp, 1607 const blkptr_t *bp, const zbookmark_t *zb) 1608 { 1609 dsl_scan_t *scn = dp->dp_scan; 1610 size_t size = BP_GET_PSIZE(bp); 1611 spa_t *spa = dp->dp_spa; 1612 uint64_t phys_birth = BP_PHYSICAL_BIRTH(bp); 1613 boolean_t needs_io; 1614 int zio_flags = ZIO_FLAG_SCAN_THREAD | ZIO_FLAG_RAW | ZIO_FLAG_CANFAIL; 1615 int zio_priority; 1616 int scan_delay = 0; 1617 1618 if (phys_birth <= scn->scn_phys.scn_min_txg || 1619 phys_birth >= scn->scn_phys.scn_max_txg) 1620 return (0); 1621 1622 count_block(dp->dp_blkstats, bp); 1623 1624 ASSERT(DSL_SCAN_IS_SCRUB_RESILVER(scn)); 1625 if (scn->scn_phys.scn_func == POOL_SCAN_SCRUB) { 1626 zio_flags |= ZIO_FLAG_SCRUB; 1627 zio_priority = ZIO_PRIORITY_SCRUB; 1628 needs_io = B_TRUE; 1629 scan_delay = zfs_scrub_delay; 1630 } else if (scn->scn_phys.scn_func == POOL_SCAN_RESILVER) { 1631 zio_flags |= ZIO_FLAG_RESILVER; 1632 zio_priority = ZIO_PRIORITY_RESILVER; 1633 needs_io = B_FALSE; 1634 scan_delay = zfs_resilver_delay; 1635 } 1636 1637 /* If it's an intent log block, failure is expected. */ 1638 if (zb->zb_level == ZB_ZIL_LEVEL) 1639 zio_flags |= ZIO_FLAG_SPECULATIVE; 1640 1641 for (int d = 0; d < BP_GET_NDVAS(bp); d++) { 1642 vdev_t *vd = vdev_lookup_top(spa, 1643 DVA_GET_VDEV(&bp->blk_dva[d])); 1644 1645 /* 1646 * Keep track of how much data we've examined so that 1647 * zpool(1M) status can make useful progress reports. 1648 */ 1649 scn->scn_phys.scn_examined += DVA_GET_ASIZE(&bp->blk_dva[d]); 1650 spa->spa_scan_pass_exam += DVA_GET_ASIZE(&bp->blk_dva[d]); 1651 1652 /* if it's a resilver, this may not be in the target range */ 1653 if (!needs_io) { 1654 if (DVA_GET_GANG(&bp->blk_dva[d])) { 1655 /* 1656 * Gang members may be spread across multiple 1657 * vdevs, so the best estimate we have is the 1658 * scrub range, which has already been checked. 1659 * XXX -- it would be better to change our 1660 * allocation policy to ensure that all 1661 * gang members reside on the same vdev. 1662 */ 1663 needs_io = B_TRUE; 1664 } else { 1665 needs_io = vdev_dtl_contains(vd, DTL_PARTIAL, 1666 phys_birth, 1); 1667 } 1668 } 1669 } 1670 1671 if (needs_io && !zfs_no_scrub_io) { 1672 vdev_t *rvd = spa->spa_root_vdev; 1673 uint64_t maxinflight = rvd->vdev_children * zfs_top_maxinflight; 1674 void *data = zio_data_buf_alloc(size); 1675 1676 mutex_enter(&spa->spa_scrub_lock); 1677 while (spa->spa_scrub_inflight >= maxinflight) 1678 cv_wait(&spa->spa_scrub_io_cv, &spa->spa_scrub_lock); 1679 spa->spa_scrub_inflight++; 1680 mutex_exit(&spa->spa_scrub_lock); 1681 1682 /* 1683 * If we're seeing recent (zfs_scan_idle) "important" I/Os 1684 * then throttle our workload to limit the impact of a scan. 1685 */ 1686 if (ddi_get_lbolt64() - spa->spa_last_io <= zfs_scan_idle) 1687 delay(scan_delay); 1688 1689 zio_nowait(zio_read(NULL, spa, bp, data, size, 1690 dsl_scan_scrub_done, NULL, zio_priority, 1691 zio_flags, zb)); 1692 } 1693 1694 /* do not relocate this block */ 1695 return (0); 1696 } 1697 1698 int 1699 dsl_scan(dsl_pool_t *dp, pool_scan_func_t func) 1700 { 1701 spa_t *spa = dp->dp_spa; 1702 1703 /* 1704 * Purge all vdev caches and probe all devices. We do this here 1705 * rather than in sync context because this requires a writer lock 1706 * on the spa_config lock, which we can't do from sync context. The 1707 * spa_scrub_reopen flag indicates that vdev_open() should not 1708 * attempt to start another scrub. 1709 */ 1710 spa_vdev_state_enter(spa, SCL_NONE); 1711 spa->spa_scrub_reopen = B_TRUE; 1712 vdev_reopen(spa->spa_root_vdev); 1713 spa->spa_scrub_reopen = B_FALSE; 1714 (void) spa_vdev_state_exit(spa, NULL, 0); 1715 1716 return (dsl_sync_task_do(dp, dsl_scan_setup_check, 1717 dsl_scan_setup_sync, dp->dp_scan, &func, 0)); 1718 } 1719