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) 2005, 2010, Oracle and/or its affiliates. All rights reserved. 23 * Portions Copyright (c) 2011 Martin Matuska <mm (at) FreeBSD.org> 24 * Copyright (c) 2011, 2016 by Delphix. All rights reserved. 25 * Copyright (c) 2014, Joyent, Inc. All rights reserved. 26 * Copyright (c) 2014 RackTop Systems. 27 * Copyright (c) 2014 Spectra Logic Corporation, All rights reserved. 28 * Copyright (c) 2014 Integros [integros.com] 29 * Copyright 2016, OmniTI Computer Consulting, Inc. All rights reserved. 30 */ 31 32 #include <sys/dmu_objset.h> 33 #include <sys/dsl_dataset.h> 34 #include <sys/dsl_dir.h> 35 #include <sys/dsl_prop.h> 36 #include <sys/dsl_synctask.h> 37 #include <sys/dmu_traverse.h> 38 #include <sys/dmu_impl.h> 39 #include <sys/dmu_send.h> 40 #include <sys/dmu_tx.h> 41 #include <sys/arc.h> 42 #include <sys/zio.h> 43 #include <sys/zap.h> 44 #include <sys/zfeature.h> 45 #include <sys/unique.h> 46 #include <sys/zfs_context.h> 47 #include <sys/zfs_ioctl.h> 48 #include <sys/spa.h> 49 #include <sys/zfs_znode.h> 50 #include <sys/zfs_onexit.h> 51 #include <sys/zvol.h> 52 #include <sys/dsl_scan.h> 53 #include <sys/dsl_deadlist.h> 54 #include <sys/dsl_destroy.h> 55 #include <sys/dsl_userhold.h> 56 #include <sys/dsl_bookmark.h> 57 #include <sys/dmu_send.h> 58 #include <sys/zio_checksum.h> 59 #include <sys/zio_compress.h> 60 #include <zfs_fletcher.h> 61 62 SYSCTL_DECL(_vfs_zfs); 63 64 /* 65 * The SPA supports block sizes up to 16MB. However, very large blocks 66 * can have an impact on i/o latency (e.g. tying up a spinning disk for 67 * ~300ms), and also potentially on the memory allocator. Therefore, 68 * we do not allow the recordsize to be set larger than zfs_max_recordsize 69 * (default 1MB). Larger blocks can be created by changing this tunable, 70 * and pools with larger blocks can always be imported and used, regardless 71 * of this setting. 72 */ 73 int zfs_max_recordsize = 1 * 1024 * 1024; 74 SYSCTL_INT(_vfs_zfs, OID_AUTO, max_recordsize, CTLFLAG_RWTUN, 75 &zfs_max_recordsize, 0, 76 "Maximum block size. Expect dragons when tuning this."); 77 78 #define SWITCH64(x, y) \ 79 { \ 80 uint64_t __tmp = (x); \ 81 (x) = (y); \ 82 (y) = __tmp; \ 83 } 84 85 #define DS_REF_MAX (1ULL << 62) 86 87 extern inline dsl_dataset_phys_t *dsl_dataset_phys(dsl_dataset_t *ds); 88 89 extern int spa_asize_inflation; 90 91 static zil_header_t zero_zil; 92 93 /* 94 * Figure out how much of this delta should be propogated to the dsl_dir 95 * layer. If there's a refreservation, that space has already been 96 * partially accounted for in our ancestors. 97 */ 98 static int64_t 99 parent_delta(dsl_dataset_t *ds, int64_t delta) 100 { 101 dsl_dataset_phys_t *ds_phys; 102 uint64_t old_bytes, new_bytes; 103 104 if (ds->ds_reserved == 0) 105 return (delta); 106 107 ds_phys = dsl_dataset_phys(ds); 108 old_bytes = MAX(ds_phys->ds_unique_bytes, ds->ds_reserved); 109 new_bytes = MAX(ds_phys->ds_unique_bytes + delta, ds->ds_reserved); 110 111 ASSERT3U(ABS((int64_t)(new_bytes - old_bytes)), <=, ABS(delta)); 112 return (new_bytes - old_bytes); 113 } 114 115 void 116 dsl_dataset_block_born(dsl_dataset_t *ds, const blkptr_t *bp, dmu_tx_t *tx) 117 { 118 int used = bp_get_dsize_sync(tx->tx_pool->dp_spa, bp); 119 int compressed = BP_GET_PSIZE(bp); 120 int uncompressed = BP_GET_UCSIZE(bp); 121 int64_t delta; 122 123 dprintf_bp(bp, "ds=%p", ds); 124 125 ASSERT(dmu_tx_is_syncing(tx)); 126 /* It could have been compressed away to nothing */ 127 if (BP_IS_HOLE(bp)) 128 return; 129 ASSERT(BP_GET_TYPE(bp) != DMU_OT_NONE); 130 ASSERT(DMU_OT_IS_VALID(BP_GET_TYPE(bp))); 131 if (ds == NULL) { 132 dsl_pool_mos_diduse_space(tx->tx_pool, 133 used, compressed, uncompressed); 134 return; 135 } 136 137 ASSERT3U(bp->blk_birth, >, dsl_dataset_phys(ds)->ds_prev_snap_txg); 138 dmu_buf_will_dirty(ds->ds_dbuf, tx); 139 mutex_enter(&ds->ds_lock); 140 delta = parent_delta(ds, used); 141 dsl_dataset_phys(ds)->ds_referenced_bytes += used; 142 dsl_dataset_phys(ds)->ds_compressed_bytes += compressed; 143 dsl_dataset_phys(ds)->ds_uncompressed_bytes += uncompressed; 144 dsl_dataset_phys(ds)->ds_unique_bytes += used; 145 146 if (BP_GET_LSIZE(bp) > SPA_OLD_MAXBLOCKSIZE) { 147 ds->ds_feature_activation_needed[SPA_FEATURE_LARGE_BLOCKS] = 148 B_TRUE; 149 } 150 151 spa_feature_t f = zio_checksum_to_feature(BP_GET_CHECKSUM(bp)); 152 if (f != SPA_FEATURE_NONE) 153 ds->ds_feature_activation_needed[f] = B_TRUE; 154 155 mutex_exit(&ds->ds_lock); 156 dsl_dir_diduse_space(ds->ds_dir, DD_USED_HEAD, delta, 157 compressed, uncompressed, tx); 158 dsl_dir_transfer_space(ds->ds_dir, used - delta, 159 DD_USED_REFRSRV, DD_USED_HEAD, NULL); 160 } 161 162 int 163 dsl_dataset_block_kill(dsl_dataset_t *ds, const blkptr_t *bp, dmu_tx_t *tx, 164 boolean_t async) 165 { 166 int used = bp_get_dsize_sync(tx->tx_pool->dp_spa, bp); 167 int compressed = BP_GET_PSIZE(bp); 168 int uncompressed = BP_GET_UCSIZE(bp); 169 170 if (BP_IS_HOLE(bp)) 171 return (0); 172 173 ASSERT(dmu_tx_is_syncing(tx)); 174 ASSERT(bp->blk_birth <= tx->tx_txg); 175 176 if (ds == NULL) { 177 dsl_free(tx->tx_pool, tx->tx_txg, bp); 178 dsl_pool_mos_diduse_space(tx->tx_pool, 179 -used, -compressed, -uncompressed); 180 return (used); 181 } 182 ASSERT3P(tx->tx_pool, ==, ds->ds_dir->dd_pool); 183 184 ASSERT(!ds->ds_is_snapshot); 185 dmu_buf_will_dirty(ds->ds_dbuf, tx); 186 187 if (bp->blk_birth > dsl_dataset_phys(ds)->ds_prev_snap_txg) { 188 int64_t delta; 189 190 dprintf_bp(bp, "freeing ds=%llu", ds->ds_object); 191 dsl_free(tx->tx_pool, tx->tx_txg, bp); 192 193 mutex_enter(&ds->ds_lock); 194 ASSERT(dsl_dataset_phys(ds)->ds_unique_bytes >= used || 195 !DS_UNIQUE_IS_ACCURATE(ds)); 196 delta = parent_delta(ds, -used); 197 dsl_dataset_phys(ds)->ds_unique_bytes -= used; 198 mutex_exit(&ds->ds_lock); 199 dsl_dir_diduse_space(ds->ds_dir, DD_USED_HEAD, 200 delta, -compressed, -uncompressed, tx); 201 dsl_dir_transfer_space(ds->ds_dir, -used - delta, 202 DD_USED_REFRSRV, DD_USED_HEAD, NULL); 203 } else { 204 dprintf_bp(bp, "putting on dead list: %s", ""); 205 if (async) { 206 /* 207 * We are here as part of zio's write done callback, 208 * which means we're a zio interrupt thread. We can't 209 * call dsl_deadlist_insert() now because it may block 210 * waiting for I/O. Instead, put bp on the deferred 211 * queue and let dsl_pool_sync() finish the job. 212 */ 213 bplist_append(&ds->ds_pending_deadlist, bp); 214 } else { 215 dsl_deadlist_insert(&ds->ds_deadlist, bp, tx); 216 } 217 ASSERT3U(ds->ds_prev->ds_object, ==, 218 dsl_dataset_phys(ds)->ds_prev_snap_obj); 219 ASSERT(dsl_dataset_phys(ds->ds_prev)->ds_num_children > 0); 220 /* if (bp->blk_birth > prev prev snap txg) prev unique += bs */ 221 if (dsl_dataset_phys(ds->ds_prev)->ds_next_snap_obj == 222 ds->ds_object && bp->blk_birth > 223 dsl_dataset_phys(ds->ds_prev)->ds_prev_snap_txg) { 224 dmu_buf_will_dirty(ds->ds_prev->ds_dbuf, tx); 225 mutex_enter(&ds->ds_prev->ds_lock); 226 dsl_dataset_phys(ds->ds_prev)->ds_unique_bytes += used; 227 mutex_exit(&ds->ds_prev->ds_lock); 228 } 229 if (bp->blk_birth > ds->ds_dir->dd_origin_txg) { 230 dsl_dir_transfer_space(ds->ds_dir, used, 231 DD_USED_HEAD, DD_USED_SNAP, tx); 232 } 233 } 234 mutex_enter(&ds->ds_lock); 235 ASSERT3U(dsl_dataset_phys(ds)->ds_referenced_bytes, >=, used); 236 dsl_dataset_phys(ds)->ds_referenced_bytes -= used; 237 ASSERT3U(dsl_dataset_phys(ds)->ds_compressed_bytes, >=, compressed); 238 dsl_dataset_phys(ds)->ds_compressed_bytes -= compressed; 239 ASSERT3U(dsl_dataset_phys(ds)->ds_uncompressed_bytes, >=, uncompressed); 240 dsl_dataset_phys(ds)->ds_uncompressed_bytes -= uncompressed; 241 mutex_exit(&ds->ds_lock); 242 243 return (used); 244 } 245 246 uint64_t 247 dsl_dataset_prev_snap_txg(dsl_dataset_t *ds) 248 { 249 uint64_t trysnap = 0; 250 251 if (ds == NULL) 252 return (0); 253 /* 254 * The snapshot creation could fail, but that would cause an 255 * incorrect FALSE return, which would only result in an 256 * overestimation of the amount of space that an operation would 257 * consume, which is OK. 258 * 259 * There's also a small window where we could miss a pending 260 * snapshot, because we could set the sync task in the quiescing 261 * phase. So this should only be used as a guess. 262 */ 263 if (ds->ds_trysnap_txg > 264 spa_last_synced_txg(ds->ds_dir->dd_pool->dp_spa)) 265 trysnap = ds->ds_trysnap_txg; 266 return (MAX(dsl_dataset_phys(ds)->ds_prev_snap_txg, trysnap)); 267 } 268 269 boolean_t 270 dsl_dataset_block_freeable(dsl_dataset_t *ds, const blkptr_t *bp, 271 uint64_t blk_birth) 272 { 273 if (blk_birth <= dsl_dataset_prev_snap_txg(ds) || 274 (bp != NULL && BP_IS_HOLE(bp))) 275 return (B_FALSE); 276 277 ddt_prefetch(dsl_dataset_get_spa(ds), bp); 278 279 return (B_TRUE); 280 } 281 282 /* 283 * We have to release the fsid syncronously or we risk that a subsequent 284 * mount of the same dataset will fail to unique_insert the fsid. This 285 * failure would manifest itself as the fsid of this dataset changing 286 * between mounts which makes NFS clients quite unhappy. 287 */ 288 static void 289 dsl_dataset_evict_sync(void *dbu) 290 { 291 dsl_dataset_t *ds = dbu; 292 293 ASSERT(ds->ds_owner == NULL); 294 295 unique_remove(ds->ds_fsid_guid); 296 } 297 298 static void 299 dsl_dataset_evict_async(void *dbu) 300 { 301 dsl_dataset_t *ds = dbu; 302 303 ASSERT(ds->ds_owner == NULL); 304 305 ds->ds_dbuf = NULL; 306 307 if (ds->ds_objset != NULL) 308 dmu_objset_evict(ds->ds_objset); 309 310 if (ds->ds_prev) { 311 dsl_dataset_rele(ds->ds_prev, ds); 312 ds->ds_prev = NULL; 313 } 314 315 bplist_destroy(&ds->ds_pending_deadlist); 316 if (ds->ds_deadlist.dl_os != NULL) 317 dsl_deadlist_close(&ds->ds_deadlist); 318 if (ds->ds_dir) 319 dsl_dir_async_rele(ds->ds_dir, ds); 320 321 ASSERT(!list_link_active(&ds->ds_synced_link)); 322 323 list_destroy(&ds->ds_prop_cbs); 324 if (mutex_owned(&ds->ds_lock)) 325 mutex_exit(&ds->ds_lock); 326 mutex_destroy(&ds->ds_lock); 327 if (mutex_owned(&ds->ds_opening_lock)) 328 mutex_exit(&ds->ds_opening_lock); 329 mutex_destroy(&ds->ds_opening_lock); 330 mutex_destroy(&ds->ds_sendstream_lock); 331 refcount_destroy(&ds->ds_longholds); 332 rrw_destroy(&ds->ds_bp_rwlock); 333 334 kmem_free(ds, sizeof (dsl_dataset_t)); 335 } 336 337 int 338 dsl_dataset_get_snapname(dsl_dataset_t *ds) 339 { 340 dsl_dataset_phys_t *headphys; 341 int err; 342 dmu_buf_t *headdbuf; 343 dsl_pool_t *dp = ds->ds_dir->dd_pool; 344 objset_t *mos = dp->dp_meta_objset; 345 346 if (ds->ds_snapname[0]) 347 return (0); 348 if (dsl_dataset_phys(ds)->ds_next_snap_obj == 0) 349 return (0); 350 351 err = dmu_bonus_hold(mos, dsl_dir_phys(ds->ds_dir)->dd_head_dataset_obj, 352 FTAG, &headdbuf); 353 if (err != 0) 354 return (err); 355 headphys = headdbuf->db_data; 356 err = zap_value_search(dp->dp_meta_objset, 357 headphys->ds_snapnames_zapobj, ds->ds_object, 0, ds->ds_snapname); 358 dmu_buf_rele(headdbuf, FTAG); 359 return (err); 360 } 361 362 int 363 dsl_dataset_snap_lookup(dsl_dataset_t *ds, const char *name, uint64_t *value) 364 { 365 objset_t *mos = ds->ds_dir->dd_pool->dp_meta_objset; 366 uint64_t snapobj = dsl_dataset_phys(ds)->ds_snapnames_zapobj; 367 matchtype_t mt; 368 int err; 369 370 if (dsl_dataset_phys(ds)->ds_flags & DS_FLAG_CI_DATASET) 371 mt = MT_FIRST; 372 else 373 mt = MT_EXACT; 374 375 err = zap_lookup_norm(mos, snapobj, name, 8, 1, 376 value, mt, NULL, 0, NULL); 377 if (err == ENOTSUP && mt == MT_FIRST) 378 err = zap_lookup(mos, snapobj, name, 8, 1, value); 379 return (err); 380 } 381 382 int 383 dsl_dataset_snap_remove(dsl_dataset_t *ds, const char *name, dmu_tx_t *tx, 384 boolean_t adj_cnt) 385 { 386 objset_t *mos = ds->ds_dir->dd_pool->dp_meta_objset; 387 uint64_t snapobj = dsl_dataset_phys(ds)->ds_snapnames_zapobj; 388 matchtype_t mt; 389 int err; 390 391 dsl_dir_snap_cmtime_update(ds->ds_dir); 392 393 if (dsl_dataset_phys(ds)->ds_flags & DS_FLAG_CI_DATASET) 394 mt = MT_FIRST; 395 else 396 mt = MT_EXACT; 397 398 err = zap_remove_norm(mos, snapobj, name, mt, tx); 399 if (err == ENOTSUP && mt == MT_FIRST) 400 err = zap_remove(mos, snapobj, name, tx); 401 402 if (err == 0 && adj_cnt) 403 dsl_fs_ss_count_adjust(ds->ds_dir, -1, 404 DD_FIELD_SNAPSHOT_COUNT, tx); 405 406 return (err); 407 } 408 409 boolean_t 410 dsl_dataset_try_add_ref(dsl_pool_t *dp, dsl_dataset_t *ds, void *tag) 411 { 412 dmu_buf_t *dbuf = ds->ds_dbuf; 413 boolean_t result = B_FALSE; 414 415 if (dbuf != NULL && dmu_buf_try_add_ref(dbuf, dp->dp_meta_objset, 416 ds->ds_object, DMU_BONUS_BLKID, tag)) { 417 418 if (ds == dmu_buf_get_user(dbuf)) 419 result = B_TRUE; 420 else 421 dmu_buf_rele(dbuf, tag); 422 } 423 424 return (result); 425 } 426 427 int 428 dsl_dataset_hold_obj(dsl_pool_t *dp, uint64_t dsobj, void *tag, 429 dsl_dataset_t **dsp) 430 { 431 objset_t *mos = dp->dp_meta_objset; 432 dmu_buf_t *dbuf; 433 dsl_dataset_t *ds; 434 int err; 435 dmu_object_info_t doi; 436 437 ASSERT(dsl_pool_config_held(dp)); 438 439 err = dmu_bonus_hold(mos, dsobj, tag, &dbuf); 440 if (err != 0) 441 return (err); 442 443 /* Make sure dsobj has the correct object type. */ 444 dmu_object_info_from_db(dbuf, &doi); 445 if (doi.doi_bonus_type != DMU_OT_DSL_DATASET) { 446 dmu_buf_rele(dbuf, tag); 447 return (SET_ERROR(EINVAL)); 448 } 449 450 ds = dmu_buf_get_user(dbuf); 451 if (ds == NULL) { 452 dsl_dataset_t *winner = NULL; 453 454 ds = kmem_zalloc(sizeof (dsl_dataset_t), KM_SLEEP); 455 ds->ds_dbuf = dbuf; 456 ds->ds_object = dsobj; 457 ds->ds_is_snapshot = dsl_dataset_phys(ds)->ds_num_children != 0; 458 459 mutex_init(&ds->ds_lock, NULL, MUTEX_DEFAULT, NULL); 460 mutex_init(&ds->ds_opening_lock, NULL, MUTEX_DEFAULT, NULL); 461 mutex_init(&ds->ds_sendstream_lock, NULL, MUTEX_DEFAULT, NULL); 462 rrw_init(&ds->ds_bp_rwlock, B_FALSE); 463 refcount_create(&ds->ds_longholds); 464 465 bplist_create(&ds->ds_pending_deadlist); 466 dsl_deadlist_open(&ds->ds_deadlist, 467 mos, dsl_dataset_phys(ds)->ds_deadlist_obj); 468 469 list_create(&ds->ds_sendstreams, sizeof (dmu_sendarg_t), 470 offsetof(dmu_sendarg_t, dsa_link)); 471 472 list_create(&ds->ds_prop_cbs, sizeof (dsl_prop_cb_record_t), 473 offsetof(dsl_prop_cb_record_t, cbr_ds_node)); 474 475 if (doi.doi_type == DMU_OTN_ZAP_METADATA) { 476 for (spa_feature_t f = 0; f < SPA_FEATURES; f++) { 477 if (!(spa_feature_table[f].fi_flags & 478 ZFEATURE_FLAG_PER_DATASET)) 479 continue; 480 err = zap_contains(mos, dsobj, 481 spa_feature_table[f].fi_guid); 482 if (err == 0) { 483 ds->ds_feature_inuse[f] = B_TRUE; 484 } else { 485 ASSERT3U(err, ==, ENOENT); 486 err = 0; 487 } 488 } 489 } 490 491 err = dsl_dir_hold_obj(dp, 492 dsl_dataset_phys(ds)->ds_dir_obj, NULL, ds, &ds->ds_dir); 493 if (err != 0) { 494 mutex_destroy(&ds->ds_lock); 495 mutex_destroy(&ds->ds_opening_lock); 496 mutex_destroy(&ds->ds_sendstream_lock); 497 refcount_destroy(&ds->ds_longholds); 498 rrw_destroy(&ds->ds_bp_rwlock); 499 bplist_destroy(&ds->ds_pending_deadlist); 500 dsl_deadlist_close(&ds->ds_deadlist); 501 kmem_free(ds, sizeof (dsl_dataset_t)); 502 dmu_buf_rele(dbuf, tag); 503 return (err); 504 } 505 506 if (!ds->ds_is_snapshot) { 507 ds->ds_snapname[0] = '\0'; 508 if (dsl_dataset_phys(ds)->ds_prev_snap_obj != 0) { 509 err = dsl_dataset_hold_obj(dp, 510 dsl_dataset_phys(ds)->ds_prev_snap_obj, 511 ds, &ds->ds_prev); 512 } 513 if (doi.doi_type == DMU_OTN_ZAP_METADATA) { 514 int zaperr = zap_lookup(mos, ds->ds_object, 515 DS_FIELD_BOOKMARK_NAMES, 516 sizeof (ds->ds_bookmarks), 1, 517 &ds->ds_bookmarks); 518 if (zaperr != ENOENT) 519 VERIFY0(zaperr); 520 } 521 } else { 522 if (zfs_flags & ZFS_DEBUG_SNAPNAMES) 523 err = dsl_dataset_get_snapname(ds); 524 if (err == 0 && 525 dsl_dataset_phys(ds)->ds_userrefs_obj != 0) { 526 err = zap_count( 527 ds->ds_dir->dd_pool->dp_meta_objset, 528 dsl_dataset_phys(ds)->ds_userrefs_obj, 529 &ds->ds_userrefs); 530 } 531 } 532 533 if (err == 0 && !ds->ds_is_snapshot) { 534 err = dsl_prop_get_int_ds(ds, 535 zfs_prop_to_name(ZFS_PROP_REFRESERVATION), 536 &ds->ds_reserved); 537 if (err == 0) { 538 err = dsl_prop_get_int_ds(ds, 539 zfs_prop_to_name(ZFS_PROP_REFQUOTA), 540 &ds->ds_quota); 541 } 542 } else { 543 ds->ds_reserved = ds->ds_quota = 0; 544 } 545 546 dmu_buf_init_user(&ds->ds_dbu, dsl_dataset_evict_sync, 547 dsl_dataset_evict_async, &ds->ds_dbuf); 548 if (err == 0) 549 winner = dmu_buf_set_user_ie(dbuf, &ds->ds_dbu); 550 551 if (err != 0 || winner != NULL) { 552 bplist_destroy(&ds->ds_pending_deadlist); 553 dsl_deadlist_close(&ds->ds_deadlist); 554 if (ds->ds_prev) 555 dsl_dataset_rele(ds->ds_prev, ds); 556 dsl_dir_rele(ds->ds_dir, ds); 557 mutex_destroy(&ds->ds_lock); 558 mutex_destroy(&ds->ds_opening_lock); 559 mutex_destroy(&ds->ds_sendstream_lock); 560 refcount_destroy(&ds->ds_longholds); 561 rrw_destroy(&ds->ds_bp_rwlock); 562 kmem_free(ds, sizeof (dsl_dataset_t)); 563 if (err != 0) { 564 dmu_buf_rele(dbuf, tag); 565 return (err); 566 } 567 ds = winner; 568 } else { 569 ds->ds_fsid_guid = 570 unique_insert(dsl_dataset_phys(ds)->ds_fsid_guid); 571 if (ds->ds_fsid_guid != 572 dsl_dataset_phys(ds)->ds_fsid_guid) { 573 zfs_dbgmsg("ds_fsid_guid changed from " 574 "%llx to %llx for pool %s dataset id %llu", 575 (long long) 576 dsl_dataset_phys(ds)->ds_fsid_guid, 577 (long long)ds->ds_fsid_guid, 578 spa_name(dp->dp_spa), 579 dsobj); 580 } 581 } 582 } 583 ASSERT3P(ds->ds_dbuf, ==, dbuf); 584 ASSERT3P(dsl_dataset_phys(ds), ==, dbuf->db_data); 585 ASSERT(dsl_dataset_phys(ds)->ds_prev_snap_obj != 0 || 586 spa_version(dp->dp_spa) < SPA_VERSION_ORIGIN || 587 dp->dp_origin_snap == NULL || ds == dp->dp_origin_snap); 588 *dsp = ds; 589 return (0); 590 } 591 592 int 593 dsl_dataset_hold(dsl_pool_t *dp, const char *name, 594 void *tag, dsl_dataset_t **dsp) 595 { 596 dsl_dir_t *dd; 597 const char *snapname; 598 uint64_t obj; 599 int err = 0; 600 dsl_dataset_t *ds; 601 602 err = dsl_dir_hold(dp, name, FTAG, &dd, &snapname); 603 if (err != 0) 604 return (err); 605 606 ASSERT(dsl_pool_config_held(dp)); 607 obj = dsl_dir_phys(dd)->dd_head_dataset_obj; 608 if (obj != 0) 609 err = dsl_dataset_hold_obj(dp, obj, tag, &ds); 610 else 611 err = SET_ERROR(ENOENT); 612 613 /* we may be looking for a snapshot */ 614 if (err == 0 && snapname != NULL) { 615 dsl_dataset_t *snap_ds; 616 617 if (*snapname++ != '@') { 618 dsl_dataset_rele(ds, tag); 619 dsl_dir_rele(dd, FTAG); 620 return (SET_ERROR(ENOENT)); 621 } 622 623 dprintf("looking for snapshot '%s'\n", snapname); 624 err = dsl_dataset_snap_lookup(ds, snapname, &obj); 625 if (err == 0) 626 err = dsl_dataset_hold_obj(dp, obj, tag, &snap_ds); 627 dsl_dataset_rele(ds, tag); 628 629 if (err == 0) { 630 mutex_enter(&snap_ds->ds_lock); 631 if (snap_ds->ds_snapname[0] == 0) 632 (void) strlcpy(snap_ds->ds_snapname, snapname, 633 sizeof (snap_ds->ds_snapname)); 634 mutex_exit(&snap_ds->ds_lock); 635 ds = snap_ds; 636 } 637 } 638 if (err == 0) 639 *dsp = ds; 640 dsl_dir_rele(dd, FTAG); 641 return (err); 642 } 643 644 int 645 dsl_dataset_own_obj(dsl_pool_t *dp, uint64_t dsobj, 646 void *tag, dsl_dataset_t **dsp) 647 { 648 int err = dsl_dataset_hold_obj(dp, dsobj, tag, dsp); 649 if (err != 0) 650 return (err); 651 if (!dsl_dataset_tryown(*dsp, tag)) { 652 dsl_dataset_rele(*dsp, tag); 653 *dsp = NULL; 654 return (SET_ERROR(EBUSY)); 655 } 656 return (0); 657 } 658 659 int 660 dsl_dataset_own(dsl_pool_t *dp, const char *name, 661 void *tag, dsl_dataset_t **dsp) 662 { 663 int err = dsl_dataset_hold(dp, name, tag, dsp); 664 if (err != 0) 665 return (err); 666 if (!dsl_dataset_tryown(*dsp, tag)) { 667 dsl_dataset_rele(*dsp, tag); 668 return (SET_ERROR(EBUSY)); 669 } 670 return (0); 671 } 672 673 /* 674 * See the comment above dsl_pool_hold() for details. In summary, a long 675 * hold is used to prevent destruction of a dataset while the pool hold 676 * is dropped, allowing other concurrent operations (e.g. spa_sync()). 677 * 678 * The dataset and pool must be held when this function is called. After it 679 * is called, the pool hold may be released while the dataset is still held 680 * and accessed. 681 */ 682 void 683 dsl_dataset_long_hold(dsl_dataset_t *ds, void *tag) 684 { 685 ASSERT(dsl_pool_config_held(ds->ds_dir->dd_pool)); 686 (void) refcount_add(&ds->ds_longholds, tag); 687 } 688 689 void 690 dsl_dataset_long_rele(dsl_dataset_t *ds, void *tag) 691 { 692 (void) refcount_remove(&ds->ds_longholds, tag); 693 } 694 695 /* Return B_TRUE if there are any long holds on this dataset. */ 696 boolean_t 697 dsl_dataset_long_held(dsl_dataset_t *ds) 698 { 699 return (!refcount_is_zero(&ds->ds_longholds)); 700 } 701 702 void 703 dsl_dataset_name(dsl_dataset_t *ds, char *name) 704 { 705 if (ds == NULL) { 706 (void) strcpy(name, "mos"); 707 } else { 708 dsl_dir_name(ds->ds_dir, name); 709 VERIFY0(dsl_dataset_get_snapname(ds)); 710 if (ds->ds_snapname[0]) { 711 VERIFY3U(strlcat(name, "@", ZFS_MAX_DATASET_NAME_LEN), 712 <, ZFS_MAX_DATASET_NAME_LEN); 713 /* 714 * We use a "recursive" mutex so that we 715 * can call dprintf_ds() with ds_lock held. 716 */ 717 if (!MUTEX_HELD(&ds->ds_lock)) { 718 mutex_enter(&ds->ds_lock); 719 VERIFY3U(strlcat(name, ds->ds_snapname, 720 ZFS_MAX_DATASET_NAME_LEN), <, 721 ZFS_MAX_DATASET_NAME_LEN); 722 mutex_exit(&ds->ds_lock); 723 } else { 724 VERIFY3U(strlcat(name, ds->ds_snapname, 725 ZFS_MAX_DATASET_NAME_LEN), <, 726 ZFS_MAX_DATASET_NAME_LEN); 727 } 728 } 729 } 730 } 731 732 int 733 dsl_dataset_namelen(dsl_dataset_t *ds) 734 { 735 VERIFY0(dsl_dataset_get_snapname(ds)); 736 mutex_enter(&ds->ds_lock); 737 int len = dsl_dir_namelen(ds->ds_dir) + 1 + strlen(ds->ds_snapname); 738 mutex_exit(&ds->ds_lock); 739 return (len); 740 } 741 742 void 743 dsl_dataset_rele(dsl_dataset_t *ds, void *tag) 744 { 745 dmu_buf_rele(ds->ds_dbuf, tag); 746 } 747 748 void 749 dsl_dataset_disown(dsl_dataset_t *ds, void *tag) 750 { 751 ASSERT3P(ds->ds_owner, ==, tag); 752 ASSERT(ds->ds_dbuf != NULL); 753 754 mutex_enter(&ds->ds_lock); 755 ds->ds_owner = NULL; 756 mutex_exit(&ds->ds_lock); 757 dsl_dataset_long_rele(ds, tag); 758 dsl_dataset_rele(ds, tag); 759 } 760 761 boolean_t 762 dsl_dataset_tryown(dsl_dataset_t *ds, void *tag) 763 { 764 boolean_t gotit = FALSE; 765 766 ASSERT(dsl_pool_config_held(ds->ds_dir->dd_pool)); 767 mutex_enter(&ds->ds_lock); 768 if (ds->ds_owner == NULL && !DS_IS_INCONSISTENT(ds)) { 769 ds->ds_owner = tag; 770 dsl_dataset_long_hold(ds, tag); 771 gotit = TRUE; 772 } 773 mutex_exit(&ds->ds_lock); 774 return (gotit); 775 } 776 777 boolean_t 778 dsl_dataset_has_owner(dsl_dataset_t *ds) 779 { 780 boolean_t rv; 781 mutex_enter(&ds->ds_lock); 782 rv = (ds->ds_owner != NULL); 783 mutex_exit(&ds->ds_lock); 784 return (rv); 785 } 786 787 static void 788 dsl_dataset_activate_feature(uint64_t dsobj, spa_feature_t f, dmu_tx_t *tx) 789 { 790 spa_t *spa = dmu_tx_pool(tx)->dp_spa; 791 objset_t *mos = dmu_tx_pool(tx)->dp_meta_objset; 792 uint64_t zero = 0; 793 794 VERIFY(spa_feature_table[f].fi_flags & ZFEATURE_FLAG_PER_DATASET); 795 796 spa_feature_incr(spa, f, tx); 797 dmu_object_zapify(mos, dsobj, DMU_OT_DSL_DATASET, tx); 798 799 VERIFY0(zap_add(mos, dsobj, spa_feature_table[f].fi_guid, 800 sizeof (zero), 1, &zero, tx)); 801 } 802 803 void 804 dsl_dataset_deactivate_feature(uint64_t dsobj, spa_feature_t f, dmu_tx_t *tx) 805 { 806 spa_t *spa = dmu_tx_pool(tx)->dp_spa; 807 objset_t *mos = dmu_tx_pool(tx)->dp_meta_objset; 808 809 VERIFY(spa_feature_table[f].fi_flags & ZFEATURE_FLAG_PER_DATASET); 810 811 VERIFY0(zap_remove(mos, dsobj, spa_feature_table[f].fi_guid, tx)); 812 spa_feature_decr(spa, f, tx); 813 } 814 815 uint64_t 816 dsl_dataset_create_sync_dd(dsl_dir_t *dd, dsl_dataset_t *origin, 817 uint64_t flags, dmu_tx_t *tx) 818 { 819 dsl_pool_t *dp = dd->dd_pool; 820 dmu_buf_t *dbuf; 821 dsl_dataset_phys_t *dsphys; 822 uint64_t dsobj; 823 objset_t *mos = dp->dp_meta_objset; 824 825 if (origin == NULL) 826 origin = dp->dp_origin_snap; 827 828 ASSERT(origin == NULL || origin->ds_dir->dd_pool == dp); 829 ASSERT(origin == NULL || dsl_dataset_phys(origin)->ds_num_children > 0); 830 ASSERT(dmu_tx_is_syncing(tx)); 831 ASSERT(dsl_dir_phys(dd)->dd_head_dataset_obj == 0); 832 833 dsobj = dmu_object_alloc(mos, DMU_OT_DSL_DATASET, 0, 834 DMU_OT_DSL_DATASET, sizeof (dsl_dataset_phys_t), tx); 835 VERIFY0(dmu_bonus_hold(mos, dsobj, FTAG, &dbuf)); 836 dmu_buf_will_dirty(dbuf, tx); 837 dsphys = dbuf->db_data; 838 bzero(dsphys, sizeof (dsl_dataset_phys_t)); 839 dsphys->ds_dir_obj = dd->dd_object; 840 dsphys->ds_flags = flags; 841 dsphys->ds_fsid_guid = unique_create(); 842 do { 843 (void) random_get_pseudo_bytes((void*)&dsphys->ds_guid, 844 sizeof (dsphys->ds_guid)); 845 } while (dsphys->ds_guid == 0); 846 dsphys->ds_snapnames_zapobj = 847 zap_create_norm(mos, U8_TEXTPREP_TOUPPER, DMU_OT_DSL_DS_SNAP_MAP, 848 DMU_OT_NONE, 0, tx); 849 dsphys->ds_creation_time = gethrestime_sec(); 850 dsphys->ds_creation_txg = tx->tx_txg == TXG_INITIAL ? 1 : tx->tx_txg; 851 852 if (origin == NULL) { 853 dsphys->ds_deadlist_obj = dsl_deadlist_alloc(mos, tx); 854 } else { 855 dsl_dataset_t *ohds; /* head of the origin snapshot */ 856 857 dsphys->ds_prev_snap_obj = origin->ds_object; 858 dsphys->ds_prev_snap_txg = 859 dsl_dataset_phys(origin)->ds_creation_txg; 860 dsphys->ds_referenced_bytes = 861 dsl_dataset_phys(origin)->ds_referenced_bytes; 862 dsphys->ds_compressed_bytes = 863 dsl_dataset_phys(origin)->ds_compressed_bytes; 864 dsphys->ds_uncompressed_bytes = 865 dsl_dataset_phys(origin)->ds_uncompressed_bytes; 866 rrw_enter(&origin->ds_bp_rwlock, RW_READER, FTAG); 867 dsphys->ds_bp = dsl_dataset_phys(origin)->ds_bp; 868 rrw_exit(&origin->ds_bp_rwlock, FTAG); 869 870 /* 871 * Inherit flags that describe the dataset's contents 872 * (INCONSISTENT) or properties (Case Insensitive). 873 */ 874 dsphys->ds_flags |= dsl_dataset_phys(origin)->ds_flags & 875 (DS_FLAG_INCONSISTENT | DS_FLAG_CI_DATASET); 876 877 for (spa_feature_t f = 0; f < SPA_FEATURES; f++) { 878 if (origin->ds_feature_inuse[f]) 879 dsl_dataset_activate_feature(dsobj, f, tx); 880 } 881 882 dmu_buf_will_dirty(origin->ds_dbuf, tx); 883 dsl_dataset_phys(origin)->ds_num_children++; 884 885 VERIFY0(dsl_dataset_hold_obj(dp, 886 dsl_dir_phys(origin->ds_dir)->dd_head_dataset_obj, 887 FTAG, &ohds)); 888 dsphys->ds_deadlist_obj = dsl_deadlist_clone(&ohds->ds_deadlist, 889 dsphys->ds_prev_snap_txg, dsphys->ds_prev_snap_obj, tx); 890 dsl_dataset_rele(ohds, FTAG); 891 892 if (spa_version(dp->dp_spa) >= SPA_VERSION_NEXT_CLONES) { 893 if (dsl_dataset_phys(origin)->ds_next_clones_obj == 0) { 894 dsl_dataset_phys(origin)->ds_next_clones_obj = 895 zap_create(mos, 896 DMU_OT_NEXT_CLONES, DMU_OT_NONE, 0, tx); 897 } 898 VERIFY0(zap_add_int(mos, 899 dsl_dataset_phys(origin)->ds_next_clones_obj, 900 dsobj, tx)); 901 } 902 903 dmu_buf_will_dirty(dd->dd_dbuf, tx); 904 dsl_dir_phys(dd)->dd_origin_obj = origin->ds_object; 905 if (spa_version(dp->dp_spa) >= SPA_VERSION_DIR_CLONES) { 906 if (dsl_dir_phys(origin->ds_dir)->dd_clones == 0) { 907 dmu_buf_will_dirty(origin->ds_dir->dd_dbuf, tx); 908 dsl_dir_phys(origin->ds_dir)->dd_clones = 909 zap_create(mos, 910 DMU_OT_DSL_CLONES, DMU_OT_NONE, 0, tx); 911 } 912 VERIFY0(zap_add_int(mos, 913 dsl_dir_phys(origin->ds_dir)->dd_clones, 914 dsobj, tx)); 915 } 916 } 917 918 if (spa_version(dp->dp_spa) >= SPA_VERSION_UNIQUE_ACCURATE) 919 dsphys->ds_flags |= DS_FLAG_UNIQUE_ACCURATE; 920 921 dmu_buf_rele(dbuf, FTAG); 922 923 dmu_buf_will_dirty(dd->dd_dbuf, tx); 924 dsl_dir_phys(dd)->dd_head_dataset_obj = dsobj; 925 926 return (dsobj); 927 } 928 929 static void 930 dsl_dataset_zero_zil(dsl_dataset_t *ds, dmu_tx_t *tx) 931 { 932 objset_t *os; 933 934 VERIFY0(dmu_objset_from_ds(ds, &os)); 935 if (bcmp(&os->os_zil_header, &zero_zil, sizeof (zero_zil)) != 0) { 936 dsl_pool_t *dp = ds->ds_dir->dd_pool; 937 zio_t *zio; 938 939 bzero(&os->os_zil_header, sizeof (os->os_zil_header)); 940 941 zio = zio_root(dp->dp_spa, NULL, NULL, ZIO_FLAG_MUSTSUCCEED); 942 dsl_dataset_sync(ds, zio, tx); 943 VERIFY0(zio_wait(zio)); 944 945 /* dsl_dataset_sync_done will drop this reference. */ 946 dmu_buf_add_ref(ds->ds_dbuf, ds); 947 dsl_dataset_sync_done(ds, tx); 948 } 949 } 950 951 uint64_t 952 dsl_dataset_create_sync(dsl_dir_t *pdd, const char *lastname, 953 dsl_dataset_t *origin, uint64_t flags, cred_t *cr, dmu_tx_t *tx) 954 { 955 dsl_pool_t *dp = pdd->dd_pool; 956 uint64_t dsobj, ddobj; 957 dsl_dir_t *dd; 958 959 ASSERT(dmu_tx_is_syncing(tx)); 960 ASSERT(lastname[0] != '@'); 961 962 ddobj = dsl_dir_create_sync(dp, pdd, lastname, tx); 963 VERIFY0(dsl_dir_hold_obj(dp, ddobj, lastname, FTAG, &dd)); 964 965 dsobj = dsl_dataset_create_sync_dd(dd, origin, 966 flags & ~DS_CREATE_FLAG_NODIRTY, tx); 967 968 dsl_deleg_set_create_perms(dd, tx, cr); 969 970 /* 971 * Since we're creating a new node we know it's a leaf, so we can 972 * initialize the counts if the limit feature is active. 973 */ 974 if (spa_feature_is_active(dp->dp_spa, SPA_FEATURE_FS_SS_LIMIT)) { 975 uint64_t cnt = 0; 976 objset_t *os = dd->dd_pool->dp_meta_objset; 977 978 dsl_dir_zapify(dd, tx); 979 VERIFY0(zap_add(os, dd->dd_object, DD_FIELD_FILESYSTEM_COUNT, 980 sizeof (cnt), 1, &cnt, tx)); 981 VERIFY0(zap_add(os, dd->dd_object, DD_FIELD_SNAPSHOT_COUNT, 982 sizeof (cnt), 1, &cnt, tx)); 983 } 984 985 dsl_dir_rele(dd, FTAG); 986 987 /* 988 * If we are creating a clone, make sure we zero out any stale 989 * data from the origin snapshots zil header. 990 */ 991 if (origin != NULL && !(flags & DS_CREATE_FLAG_NODIRTY)) { 992 dsl_dataset_t *ds; 993 994 VERIFY0(dsl_dataset_hold_obj(dp, dsobj, FTAG, &ds)); 995 dsl_dataset_zero_zil(ds, tx); 996 dsl_dataset_rele(ds, FTAG); 997 } 998 999 return (dsobj); 1000 } 1001 1002 #if defined(__FreeBSD__) || defined(__NetBSD__) 1003 /* FreeBSD ioctl compat begin */ 1004 struct destroyarg { 1005 nvlist_t *nvl; 1006 const char *snapname; 1007 }; 1008 1009 static int 1010 dsl_check_snap_cb(const char *name, void *arg) 1011 { 1012 struct destroyarg *da = arg; 1013 dsl_dataset_t *ds; 1014 char *dsname; 1015 1016 dsname = kmem_asprintf("%s@%s", name, da->snapname); 1017 fnvlist_add_boolean(da->nvl, dsname); 1018 kmem_free(dsname, strlen(dsname) + 1); 1019 1020 return (0); 1021 } 1022 1023 int 1024 dmu_get_recursive_snaps_nvl(char *fsname, const char *snapname, 1025 nvlist_t *snaps) 1026 { 1027 struct destroyarg *da; 1028 int err; 1029 1030 da = kmem_zalloc(sizeof (struct destroyarg), KM_SLEEP); 1031 da->nvl = snaps; 1032 da->snapname = snapname; 1033 err = dmu_objset_find(fsname, dsl_check_snap_cb, da, 1034 DS_FIND_CHILDREN); 1035 kmem_free(da, sizeof (struct destroyarg)); 1036 1037 return (err); 1038 } 1039 /* FreeBSD ioctl compat end */ 1040 #endif /* defined(__FreeBSD__) || defined(__NetBSD__) */ 1041 1042 /* 1043 * The unique space in the head dataset can be calculated by subtracting 1044 * the space used in the most recent snapshot, that is still being used 1045 * in this file system, from the space currently in use. To figure out 1046 * the space in the most recent snapshot still in use, we need to take 1047 * the total space used in the snapshot and subtract out the space that 1048 * has been freed up since the snapshot was taken. 1049 */ 1050 void 1051 dsl_dataset_recalc_head_uniq(dsl_dataset_t *ds) 1052 { 1053 uint64_t mrs_used; 1054 uint64_t dlused, dlcomp, dluncomp; 1055 1056 ASSERT(!ds->ds_is_snapshot); 1057 1058 if (dsl_dataset_phys(ds)->ds_prev_snap_obj != 0) 1059 mrs_used = dsl_dataset_phys(ds->ds_prev)->ds_referenced_bytes; 1060 else 1061 mrs_used = 0; 1062 1063 dsl_deadlist_space(&ds->ds_deadlist, &dlused, &dlcomp, &dluncomp); 1064 1065 ASSERT3U(dlused, <=, mrs_used); 1066 dsl_dataset_phys(ds)->ds_unique_bytes = 1067 dsl_dataset_phys(ds)->ds_referenced_bytes - (mrs_used - dlused); 1068 1069 if (spa_version(ds->ds_dir->dd_pool->dp_spa) >= 1070 SPA_VERSION_UNIQUE_ACCURATE) 1071 dsl_dataset_phys(ds)->ds_flags |= DS_FLAG_UNIQUE_ACCURATE; 1072 } 1073 1074 void 1075 dsl_dataset_remove_from_next_clones(dsl_dataset_t *ds, uint64_t obj, 1076 dmu_tx_t *tx) 1077 { 1078 objset_t *mos = ds->ds_dir->dd_pool->dp_meta_objset; 1079 uint64_t count; 1080 int err; 1081 1082 ASSERT(dsl_dataset_phys(ds)->ds_num_children >= 2); 1083 err = zap_remove_int(mos, dsl_dataset_phys(ds)->ds_next_clones_obj, 1084 obj, tx); 1085 /* 1086 * The err should not be ENOENT, but a bug in a previous version 1087 * of the code could cause upgrade_clones_cb() to not set 1088 * ds_next_snap_obj when it should, leading to a missing entry. 1089 * If we knew that the pool was created after 1090 * SPA_VERSION_NEXT_CLONES, we could assert that it isn't 1091 * ENOENT. However, at least we can check that we don't have 1092 * too many entries in the next_clones_obj even after failing to 1093 * remove this one. 1094 */ 1095 if (err != ENOENT) 1096 VERIFY0(err); 1097 ASSERT0(zap_count(mos, dsl_dataset_phys(ds)->ds_next_clones_obj, 1098 &count)); 1099 ASSERT3U(count, <=, dsl_dataset_phys(ds)->ds_num_children - 2); 1100 } 1101 1102 1103 blkptr_t * 1104 dsl_dataset_get_blkptr(dsl_dataset_t *ds) 1105 { 1106 return (&dsl_dataset_phys(ds)->ds_bp); 1107 } 1108 1109 spa_t * 1110 dsl_dataset_get_spa(dsl_dataset_t *ds) 1111 { 1112 return (ds->ds_dir->dd_pool->dp_spa); 1113 } 1114 1115 void 1116 dsl_dataset_dirty(dsl_dataset_t *ds, dmu_tx_t *tx) 1117 { 1118 dsl_pool_t *dp; 1119 1120 if (ds == NULL) /* this is the meta-objset */ 1121 return; 1122 1123 ASSERT(ds->ds_objset != NULL); 1124 1125 if (dsl_dataset_phys(ds)->ds_next_snap_obj != 0) 1126 panic("dirtying snapshot!"); 1127 1128 /* Must not dirty a dataset in the same txg where it got snapshotted. */ 1129 ASSERT3U(tx->tx_txg, >, dsl_dataset_phys(ds)->ds_prev_snap_txg); 1130 1131 dp = ds->ds_dir->dd_pool; 1132 if (txg_list_add(&dp->dp_dirty_datasets, ds, tx->tx_txg)) { 1133 /* up the hold count until we can be written out */ 1134 dmu_buf_add_ref(ds->ds_dbuf, ds); 1135 } 1136 } 1137 1138 boolean_t 1139 dsl_dataset_is_dirty(dsl_dataset_t *ds) 1140 { 1141 for (int t = 0; t < TXG_SIZE; t++) { 1142 if (txg_list_member(&ds->ds_dir->dd_pool->dp_dirty_datasets, 1143 ds, t)) 1144 return (B_TRUE); 1145 } 1146 return (B_FALSE); 1147 } 1148 1149 static int 1150 dsl_dataset_snapshot_reserve_space(dsl_dataset_t *ds, dmu_tx_t *tx) 1151 { 1152 uint64_t asize; 1153 1154 if (!dmu_tx_is_syncing(tx)) 1155 return (0); 1156 1157 /* 1158 * If there's an fs-only reservation, any blocks that might become 1159 * owned by the snapshot dataset must be accommodated by space 1160 * outside of the reservation. 1161 */ 1162 ASSERT(ds->ds_reserved == 0 || DS_UNIQUE_IS_ACCURATE(ds)); 1163 asize = MIN(dsl_dataset_phys(ds)->ds_unique_bytes, ds->ds_reserved); 1164 if (asize > dsl_dir_space_available(ds->ds_dir, NULL, 0, TRUE)) 1165 return (SET_ERROR(ENOSPC)); 1166 1167 /* 1168 * Propagate any reserved space for this snapshot to other 1169 * snapshot checks in this sync group. 1170 */ 1171 if (asize > 0) 1172 dsl_dir_willuse_space(ds->ds_dir, asize, tx); 1173 1174 return (0); 1175 } 1176 1177 typedef struct dsl_dataset_snapshot_arg { 1178 nvlist_t *ddsa_snaps; 1179 nvlist_t *ddsa_props; 1180 nvlist_t *ddsa_errors; 1181 cred_t *ddsa_cr; 1182 } dsl_dataset_snapshot_arg_t; 1183 1184 int 1185 dsl_dataset_snapshot_check_impl(dsl_dataset_t *ds, const char *snapname, 1186 dmu_tx_t *tx, boolean_t recv, uint64_t cnt, cred_t *cr) 1187 { 1188 int error; 1189 uint64_t value; 1190 1191 ds->ds_trysnap_txg = tx->tx_txg; 1192 1193 if (!dmu_tx_is_syncing(tx)) 1194 return (0); 1195 1196 /* 1197 * We don't allow multiple snapshots of the same txg. If there 1198 * is already one, try again. 1199 */ 1200 if (dsl_dataset_phys(ds)->ds_prev_snap_txg >= tx->tx_txg) 1201 return (SET_ERROR(EAGAIN)); 1202 1203 /* 1204 * Check for conflicting snapshot name. 1205 */ 1206 error = dsl_dataset_snap_lookup(ds, snapname, &value); 1207 if (error == 0) 1208 return (SET_ERROR(EEXIST)); 1209 if (error != ENOENT) 1210 return (error); 1211 1212 /* 1213 * We don't allow taking snapshots of inconsistent datasets, such as 1214 * those into which we are currently receiving. However, if we are 1215 * creating this snapshot as part of a receive, this check will be 1216 * executed atomically with respect to the completion of the receive 1217 * itself but prior to the clearing of DS_FLAG_INCONSISTENT; in this 1218 * case we ignore this, knowing it will be fixed up for us shortly in 1219 * dmu_recv_end_sync(). 1220 */ 1221 if (!recv && DS_IS_INCONSISTENT(ds)) 1222 return (SET_ERROR(EBUSY)); 1223 1224 /* 1225 * Skip the check for temporary snapshots or if we have already checked 1226 * the counts in dsl_dataset_snapshot_check. This means we really only 1227 * check the count here when we're receiving a stream. 1228 */ 1229 if (cnt != 0 && cr != NULL) { 1230 error = dsl_fs_ss_limit_check(ds->ds_dir, cnt, 1231 ZFS_PROP_SNAPSHOT_LIMIT, NULL, cr); 1232 if (error != 0) 1233 return (error); 1234 } 1235 1236 error = dsl_dataset_snapshot_reserve_space(ds, tx); 1237 if (error != 0) 1238 return (error); 1239 1240 return (0); 1241 } 1242 1243 static int 1244 dsl_dataset_snapshot_check(void *arg, dmu_tx_t *tx) 1245 { 1246 dsl_dataset_snapshot_arg_t *ddsa = arg; 1247 dsl_pool_t *dp = dmu_tx_pool(tx); 1248 nvpair_t *pair; 1249 int rv = 0; 1250 1251 /* 1252 * Pre-compute how many total new snapshots will be created for each 1253 * level in the tree and below. This is needed for validating the 1254 * snapshot limit when either taking a recursive snapshot or when 1255 * taking multiple snapshots. 1256 * 1257 * The problem is that the counts are not actually adjusted when 1258 * we are checking, only when we finally sync. For a single snapshot, 1259 * this is easy, the count will increase by 1 at each node up the tree, 1260 * but its more complicated for the recursive/multiple snapshot case. 1261 * 1262 * The dsl_fs_ss_limit_check function does recursively check the count 1263 * at each level up the tree but since it is validating each snapshot 1264 * independently we need to be sure that we are validating the complete 1265 * count for the entire set of snapshots. We do this by rolling up the 1266 * counts for each component of the name into an nvlist and then 1267 * checking each of those cases with the aggregated count. 1268 * 1269 * This approach properly handles not only the recursive snapshot 1270 * case (where we get all of those on the ddsa_snaps list) but also 1271 * the sibling case (e.g. snapshot a/b and a/c so that we will also 1272 * validate the limit on 'a' using a count of 2). 1273 * 1274 * We validate the snapshot names in the third loop and only report 1275 * name errors once. 1276 */ 1277 if (dmu_tx_is_syncing(tx)) { 1278 nvlist_t *cnt_track = NULL; 1279 cnt_track = fnvlist_alloc(); 1280 1281 /* Rollup aggregated counts into the cnt_track list */ 1282 for (pair = nvlist_next_nvpair(ddsa->ddsa_snaps, NULL); 1283 pair != NULL; 1284 pair = nvlist_next_nvpair(ddsa->ddsa_snaps, pair)) { 1285 char *pdelim; 1286 uint64_t val; 1287 char nm[MAXPATHLEN]; 1288 1289 (void) strlcpy(nm, nvpair_name(pair), sizeof (nm)); 1290 pdelim = strchr(nm, '@'); 1291 if (pdelim == NULL) 1292 continue; 1293 *pdelim = '\0'; 1294 1295 do { 1296 if (nvlist_lookup_uint64(cnt_track, nm, 1297 &val) == 0) { 1298 /* update existing entry */ 1299 fnvlist_add_uint64(cnt_track, nm, 1300 val + 1); 1301 } else { 1302 /* add to list */ 1303 fnvlist_add_uint64(cnt_track, nm, 1); 1304 } 1305 1306 pdelim = strrchr(nm, '/'); 1307 if (pdelim != NULL) 1308 *pdelim = '\0'; 1309 } while (pdelim != NULL); 1310 } 1311 1312 /* Check aggregated counts at each level */ 1313 for (pair = nvlist_next_nvpair(cnt_track, NULL); 1314 pair != NULL; pair = nvlist_next_nvpair(cnt_track, pair)) { 1315 int error = 0; 1316 char *name; 1317 uint64_t cnt = 0; 1318 dsl_dataset_t *ds; 1319 1320 name = nvpair_name(pair); 1321 cnt = fnvpair_value_uint64(pair); 1322 ASSERT(cnt > 0); 1323 1324 error = dsl_dataset_hold(dp, name, FTAG, &ds); 1325 if (error == 0) { 1326 error = dsl_fs_ss_limit_check(ds->ds_dir, cnt, 1327 ZFS_PROP_SNAPSHOT_LIMIT, NULL, 1328 ddsa->ddsa_cr); 1329 dsl_dataset_rele(ds, FTAG); 1330 } 1331 1332 if (error != 0) { 1333 if (ddsa->ddsa_errors != NULL) 1334 fnvlist_add_int32(ddsa->ddsa_errors, 1335 name, error); 1336 rv = error; 1337 /* only report one error for this check */ 1338 break; 1339 } 1340 } 1341 nvlist_free(cnt_track); 1342 } 1343 1344 for (pair = nvlist_next_nvpair(ddsa->ddsa_snaps, NULL); 1345 pair != NULL; pair = nvlist_next_nvpair(ddsa->ddsa_snaps, pair)) { 1346 int error = 0; 1347 dsl_dataset_t *ds; 1348 char *name, *atp; 1349 char dsname[ZFS_MAX_DATASET_NAME_LEN]; 1350 1351 name = nvpair_name(pair); 1352 if (strlen(name) >= ZFS_MAX_DATASET_NAME_LEN) 1353 error = SET_ERROR(ENAMETOOLONG); 1354 if (error == 0) { 1355 atp = strchr(name, '@'); 1356 if (atp == NULL) 1357 error = SET_ERROR(EINVAL); 1358 if (error == 0) 1359 (void) strlcpy(dsname, name, atp - name + 1); 1360 } 1361 if (error == 0) 1362 error = dsl_dataset_hold(dp, dsname, FTAG, &ds); 1363 if (error == 0) { 1364 /* passing 0/NULL skips dsl_fs_ss_limit_check */ 1365 error = dsl_dataset_snapshot_check_impl(ds, 1366 atp + 1, tx, B_FALSE, 0, NULL); 1367 dsl_dataset_rele(ds, FTAG); 1368 } 1369 1370 if (error != 0) { 1371 if (ddsa->ddsa_errors != NULL) { 1372 fnvlist_add_int32(ddsa->ddsa_errors, 1373 name, error); 1374 } 1375 rv = error; 1376 } 1377 } 1378 1379 return (rv); 1380 } 1381 1382 void 1383 dsl_dataset_snapshot_sync_impl(dsl_dataset_t *ds, const char *snapname, 1384 dmu_tx_t *tx) 1385 { 1386 dsl_pool_t *dp = ds->ds_dir->dd_pool; 1387 dmu_buf_t *dbuf; 1388 dsl_dataset_phys_t *dsphys; 1389 uint64_t dsobj, crtxg; 1390 objset_t *mos = dp->dp_meta_objset; 1391 objset_t *os; 1392 1393 ASSERT(RRW_WRITE_HELD(&dp->dp_config_rwlock)); 1394 1395 /* 1396 * If we are on an old pool, the zil must not be active, in which 1397 * case it will be zeroed. Usually zil_suspend() accomplishes this. 1398 */ 1399 ASSERT(spa_version(dmu_tx_pool(tx)->dp_spa) >= SPA_VERSION_FAST_SNAP || 1400 dmu_objset_from_ds(ds, &os) != 0 || 1401 bcmp(&os->os_phys->os_zil_header, &zero_zil, 1402 sizeof (zero_zil)) == 0); 1403 1404 /* Should not snapshot a dirty dataset. */ 1405 ASSERT(!txg_list_member(&ds->ds_dir->dd_pool->dp_dirty_datasets, 1406 ds, tx->tx_txg)); 1407 1408 dsl_fs_ss_count_adjust(ds->ds_dir, 1, DD_FIELD_SNAPSHOT_COUNT, tx); 1409 1410 /* 1411 * The origin's ds_creation_txg has to be < TXG_INITIAL 1412 */ 1413 if (strcmp(snapname, ORIGIN_DIR_NAME) == 0) 1414 crtxg = 1; 1415 else 1416 crtxg = tx->tx_txg; 1417 1418 dsobj = dmu_object_alloc(mos, DMU_OT_DSL_DATASET, 0, 1419 DMU_OT_DSL_DATASET, sizeof (dsl_dataset_phys_t), tx); 1420 VERIFY0(dmu_bonus_hold(mos, dsobj, FTAG, &dbuf)); 1421 dmu_buf_will_dirty(dbuf, tx); 1422 dsphys = dbuf->db_data; 1423 bzero(dsphys, sizeof (dsl_dataset_phys_t)); 1424 dsphys->ds_dir_obj = ds->ds_dir->dd_object; 1425 dsphys->ds_fsid_guid = unique_create(); 1426 do { 1427 (void) random_get_pseudo_bytes((void*)&dsphys->ds_guid, 1428 sizeof (dsphys->ds_guid)); 1429 } while (dsphys->ds_guid == 0); 1430 dsphys->ds_prev_snap_obj = dsl_dataset_phys(ds)->ds_prev_snap_obj; 1431 dsphys->ds_prev_snap_txg = dsl_dataset_phys(ds)->ds_prev_snap_txg; 1432 dsphys->ds_next_snap_obj = ds->ds_object; 1433 dsphys->ds_num_children = 1; 1434 dsphys->ds_creation_time = gethrestime_sec(); 1435 dsphys->ds_creation_txg = crtxg; 1436 dsphys->ds_deadlist_obj = dsl_dataset_phys(ds)->ds_deadlist_obj; 1437 dsphys->ds_referenced_bytes = dsl_dataset_phys(ds)->ds_referenced_bytes; 1438 dsphys->ds_compressed_bytes = dsl_dataset_phys(ds)->ds_compressed_bytes; 1439 dsphys->ds_uncompressed_bytes = 1440 dsl_dataset_phys(ds)->ds_uncompressed_bytes; 1441 dsphys->ds_flags = dsl_dataset_phys(ds)->ds_flags; 1442 rrw_enter(&ds->ds_bp_rwlock, RW_READER, FTAG); 1443 dsphys->ds_bp = dsl_dataset_phys(ds)->ds_bp; 1444 rrw_exit(&ds->ds_bp_rwlock, FTAG); 1445 dmu_buf_rele(dbuf, FTAG); 1446 1447 for (spa_feature_t f = 0; f < SPA_FEATURES; f++) { 1448 if (ds->ds_feature_inuse[f]) 1449 dsl_dataset_activate_feature(dsobj, f, tx); 1450 } 1451 1452 ASSERT3U(ds->ds_prev != 0, ==, 1453 dsl_dataset_phys(ds)->ds_prev_snap_obj != 0); 1454 if (ds->ds_prev) { 1455 uint64_t next_clones_obj = 1456 dsl_dataset_phys(ds->ds_prev)->ds_next_clones_obj; 1457 ASSERT(dsl_dataset_phys(ds->ds_prev)->ds_next_snap_obj == 1458 ds->ds_object || 1459 dsl_dataset_phys(ds->ds_prev)->ds_num_children > 1); 1460 if (dsl_dataset_phys(ds->ds_prev)->ds_next_snap_obj == 1461 ds->ds_object) { 1462 dmu_buf_will_dirty(ds->ds_prev->ds_dbuf, tx); 1463 ASSERT3U(dsl_dataset_phys(ds)->ds_prev_snap_txg, ==, 1464 dsl_dataset_phys(ds->ds_prev)->ds_creation_txg); 1465 dsl_dataset_phys(ds->ds_prev)->ds_next_snap_obj = dsobj; 1466 } else if (next_clones_obj != 0) { 1467 dsl_dataset_remove_from_next_clones(ds->ds_prev, 1468 dsphys->ds_next_snap_obj, tx); 1469 VERIFY0(zap_add_int(mos, 1470 next_clones_obj, dsobj, tx)); 1471 } 1472 } 1473 1474 /* 1475 * If we have a reference-reservation on this dataset, we will 1476 * need to increase the amount of refreservation being charged 1477 * since our unique space is going to zero. 1478 */ 1479 if (ds->ds_reserved) { 1480 int64_t delta; 1481 ASSERT(DS_UNIQUE_IS_ACCURATE(ds)); 1482 delta = MIN(dsl_dataset_phys(ds)->ds_unique_bytes, 1483 ds->ds_reserved); 1484 dsl_dir_diduse_space(ds->ds_dir, DD_USED_REFRSRV, 1485 delta, 0, 0, tx); 1486 } 1487 1488 dmu_buf_will_dirty(ds->ds_dbuf, tx); 1489 dsl_dataset_phys(ds)->ds_deadlist_obj = 1490 dsl_deadlist_clone(&ds->ds_deadlist, UINT64_MAX, 1491 dsl_dataset_phys(ds)->ds_prev_snap_obj, tx); 1492 dsl_deadlist_close(&ds->ds_deadlist); 1493 dsl_deadlist_open(&ds->ds_deadlist, mos, 1494 dsl_dataset_phys(ds)->ds_deadlist_obj); 1495 dsl_deadlist_add_key(&ds->ds_deadlist, 1496 dsl_dataset_phys(ds)->ds_prev_snap_txg, tx); 1497 1498 ASSERT3U(dsl_dataset_phys(ds)->ds_prev_snap_txg, <, tx->tx_txg); 1499 dsl_dataset_phys(ds)->ds_prev_snap_obj = dsobj; 1500 dsl_dataset_phys(ds)->ds_prev_snap_txg = crtxg; 1501 dsl_dataset_phys(ds)->ds_unique_bytes = 0; 1502 if (spa_version(dp->dp_spa) >= SPA_VERSION_UNIQUE_ACCURATE) 1503 dsl_dataset_phys(ds)->ds_flags |= DS_FLAG_UNIQUE_ACCURATE; 1504 1505 VERIFY0(zap_add(mos, dsl_dataset_phys(ds)->ds_snapnames_zapobj, 1506 snapname, 8, 1, &dsobj, tx)); 1507 1508 if (ds->ds_prev) 1509 dsl_dataset_rele(ds->ds_prev, ds); 1510 VERIFY0(dsl_dataset_hold_obj(dp, 1511 dsl_dataset_phys(ds)->ds_prev_snap_obj, ds, &ds->ds_prev)); 1512 1513 dsl_scan_ds_snapshotted(ds, tx); 1514 1515 dsl_dir_snap_cmtime_update(ds->ds_dir); 1516 1517 spa_history_log_internal_ds(ds->ds_prev, "snapshot", tx, ""); 1518 } 1519 1520 static void 1521 dsl_dataset_snapshot_sync(void *arg, dmu_tx_t *tx) 1522 { 1523 dsl_dataset_snapshot_arg_t *ddsa = arg; 1524 dsl_pool_t *dp = dmu_tx_pool(tx); 1525 nvpair_t *pair; 1526 1527 for (pair = nvlist_next_nvpair(ddsa->ddsa_snaps, NULL); 1528 pair != NULL; pair = nvlist_next_nvpair(ddsa->ddsa_snaps, pair)) { 1529 dsl_dataset_t *ds; 1530 char *name, *atp; 1531 char dsname[ZFS_MAX_DATASET_NAME_LEN]; 1532 1533 name = nvpair_name(pair); 1534 atp = strchr(name, '@'); 1535 (void) strlcpy(dsname, name, atp - name + 1); 1536 VERIFY0(dsl_dataset_hold(dp, dsname, FTAG, &ds)); 1537 1538 dsl_dataset_snapshot_sync_impl(ds, atp + 1, tx); 1539 if (ddsa->ddsa_props != NULL) { 1540 dsl_props_set_sync_impl(ds->ds_prev, 1541 ZPROP_SRC_LOCAL, ddsa->ddsa_props, tx); 1542 } 1543 dsl_dataset_rele(ds, FTAG); 1544 } 1545 } 1546 1547 /* 1548 * The snapshots must all be in the same pool. 1549 * All-or-nothing: if there are any failures, nothing will be modified. 1550 */ 1551 int 1552 dsl_dataset_snapshot(nvlist_t *snaps, nvlist_t *props, nvlist_t *errors) 1553 { 1554 dsl_dataset_snapshot_arg_t ddsa; 1555 nvpair_t *pair; 1556 boolean_t needsuspend; 1557 int error; 1558 spa_t *spa; 1559 char *firstname; 1560 nvlist_t *suspended = NULL; 1561 1562 pair = nvlist_next_nvpair(snaps, NULL); 1563 if (pair == NULL) 1564 return (0); 1565 firstname = nvpair_name(pair); 1566 1567 error = spa_open(firstname, &spa, FTAG); 1568 if (error != 0) 1569 return (error); 1570 needsuspend = (spa_version(spa) < SPA_VERSION_FAST_SNAP); 1571 spa_close(spa, FTAG); 1572 1573 if (needsuspend) { 1574 suspended = fnvlist_alloc(); 1575 for (pair = nvlist_next_nvpair(snaps, NULL); pair != NULL; 1576 pair = nvlist_next_nvpair(snaps, pair)) { 1577 char fsname[ZFS_MAX_DATASET_NAME_LEN]; 1578 char *snapname = nvpair_name(pair); 1579 char *atp; 1580 void *cookie; 1581 1582 atp = strchr(snapname, '@'); 1583 if (atp == NULL) { 1584 error = SET_ERROR(EINVAL); 1585 break; 1586 } 1587 (void) strlcpy(fsname, snapname, atp - snapname + 1); 1588 1589 error = zil_suspend(fsname, &cookie); 1590 if (error != 0) 1591 break; 1592 fnvlist_add_uint64(suspended, fsname, 1593 (uintptr_t)cookie); 1594 } 1595 } 1596 1597 ddsa.ddsa_snaps = snaps; 1598 ddsa.ddsa_props = props; 1599 ddsa.ddsa_errors = errors; 1600 ddsa.ddsa_cr = CRED(); 1601 1602 if (error == 0) { 1603 error = dsl_sync_task(firstname, dsl_dataset_snapshot_check, 1604 dsl_dataset_snapshot_sync, &ddsa, 1605 fnvlist_num_pairs(snaps) * 3, ZFS_SPACE_CHECK_NORMAL); 1606 } 1607 1608 if (suspended != NULL) { 1609 for (pair = nvlist_next_nvpair(suspended, NULL); pair != NULL; 1610 pair = nvlist_next_nvpair(suspended, pair)) { 1611 zil_resume((void *)(uintptr_t) 1612 fnvpair_value_uint64(pair)); 1613 } 1614 fnvlist_free(suspended); 1615 } 1616 1617 #if defined(__FreeBSD__) || defined(__NetBSD__) 1618 #ifdef _KERNEL 1619 if (error == 0) { 1620 for (pair = nvlist_next_nvpair(snaps, NULL); pair != NULL; 1621 pair = nvlist_next_nvpair(snaps, pair)) { 1622 char *snapname = nvpair_name(pair); 1623 zvol_create_minors(snapname); 1624 } 1625 } 1626 #endif 1627 #endif 1628 return (error); 1629 } 1630 1631 typedef struct dsl_dataset_snapshot_tmp_arg { 1632 const char *ddsta_fsname; 1633 const char *ddsta_snapname; 1634 minor_t ddsta_cleanup_minor; 1635 const char *ddsta_htag; 1636 } dsl_dataset_snapshot_tmp_arg_t; 1637 1638 static int 1639 dsl_dataset_snapshot_tmp_check(void *arg, dmu_tx_t *tx) 1640 { 1641 dsl_dataset_snapshot_tmp_arg_t *ddsta = arg; 1642 dsl_pool_t *dp = dmu_tx_pool(tx); 1643 dsl_dataset_t *ds; 1644 int error; 1645 1646 error = dsl_dataset_hold(dp, ddsta->ddsta_fsname, FTAG, &ds); 1647 if (error != 0) 1648 return (error); 1649 1650 /* NULL cred means no limit check for tmp snapshot */ 1651 error = dsl_dataset_snapshot_check_impl(ds, ddsta->ddsta_snapname, 1652 tx, B_FALSE, 0, NULL); 1653 if (error != 0) { 1654 dsl_dataset_rele(ds, FTAG); 1655 return (error); 1656 } 1657 1658 if (spa_version(dp->dp_spa) < SPA_VERSION_USERREFS) { 1659 dsl_dataset_rele(ds, FTAG); 1660 return (SET_ERROR(ENOTSUP)); 1661 } 1662 error = dsl_dataset_user_hold_check_one(NULL, ddsta->ddsta_htag, 1663 B_TRUE, tx); 1664 if (error != 0) { 1665 dsl_dataset_rele(ds, FTAG); 1666 return (error); 1667 } 1668 1669 dsl_dataset_rele(ds, FTAG); 1670 return (0); 1671 } 1672 1673 static void 1674 dsl_dataset_snapshot_tmp_sync(void *arg, dmu_tx_t *tx) 1675 { 1676 dsl_dataset_snapshot_tmp_arg_t *ddsta = arg; 1677 dsl_pool_t *dp = dmu_tx_pool(tx); 1678 dsl_dataset_t *ds; 1679 1680 VERIFY0(dsl_dataset_hold(dp, ddsta->ddsta_fsname, FTAG, &ds)); 1681 1682 dsl_dataset_snapshot_sync_impl(ds, ddsta->ddsta_snapname, tx); 1683 dsl_dataset_user_hold_sync_one(ds->ds_prev, ddsta->ddsta_htag, 1684 ddsta->ddsta_cleanup_minor, gethrestime_sec(), tx); 1685 dsl_destroy_snapshot_sync_impl(ds->ds_prev, B_TRUE, tx); 1686 1687 dsl_dataset_rele(ds, FTAG); 1688 } 1689 1690 int 1691 dsl_dataset_snapshot_tmp(const char *fsname, const char *snapname, 1692 minor_t cleanup_minor, const char *htag) 1693 { 1694 dsl_dataset_snapshot_tmp_arg_t ddsta; 1695 int error; 1696 spa_t *spa; 1697 boolean_t needsuspend; 1698 void *cookie; 1699 1700 ddsta.ddsta_fsname = fsname; 1701 ddsta.ddsta_snapname = snapname; 1702 ddsta.ddsta_cleanup_minor = cleanup_minor; 1703 ddsta.ddsta_htag = htag; 1704 1705 error = spa_open(fsname, &spa, FTAG); 1706 if (error != 0) 1707 return (error); 1708 needsuspend = (spa_version(spa) < SPA_VERSION_FAST_SNAP); 1709 spa_close(spa, FTAG); 1710 1711 if (needsuspend) { 1712 error = zil_suspend(fsname, &cookie); 1713 if (error != 0) 1714 return (error); 1715 } 1716 1717 error = dsl_sync_task(fsname, dsl_dataset_snapshot_tmp_check, 1718 dsl_dataset_snapshot_tmp_sync, &ddsta, 3, ZFS_SPACE_CHECK_RESERVED); 1719 1720 if (needsuspend) 1721 zil_resume(cookie); 1722 return (error); 1723 } 1724 1725 1726 void 1727 dsl_dataset_sync(dsl_dataset_t *ds, zio_t *zio, dmu_tx_t *tx) 1728 { 1729 ASSERT(dmu_tx_is_syncing(tx)); 1730 ASSERT(ds->ds_objset != NULL); 1731 ASSERT(dsl_dataset_phys(ds)->ds_next_snap_obj == 0); 1732 1733 /* 1734 * in case we had to change ds_fsid_guid when we opened it, 1735 * sync it out now. 1736 */ 1737 dmu_buf_will_dirty(ds->ds_dbuf, tx); 1738 dsl_dataset_phys(ds)->ds_fsid_guid = ds->ds_fsid_guid; 1739 1740 if (ds->ds_resume_bytes[tx->tx_txg & TXG_MASK] != 0) { 1741 VERIFY0(zap_update(tx->tx_pool->dp_meta_objset, 1742 ds->ds_object, DS_FIELD_RESUME_OBJECT, 8, 1, 1743 &ds->ds_resume_object[tx->tx_txg & TXG_MASK], tx)); 1744 VERIFY0(zap_update(tx->tx_pool->dp_meta_objset, 1745 ds->ds_object, DS_FIELD_RESUME_OFFSET, 8, 1, 1746 &ds->ds_resume_offset[tx->tx_txg & TXG_MASK], tx)); 1747 VERIFY0(zap_update(tx->tx_pool->dp_meta_objset, 1748 ds->ds_object, DS_FIELD_RESUME_BYTES, 8, 1, 1749 &ds->ds_resume_bytes[tx->tx_txg & TXG_MASK], tx)); 1750 ds->ds_resume_object[tx->tx_txg & TXG_MASK] = 0; 1751 ds->ds_resume_offset[tx->tx_txg & TXG_MASK] = 0; 1752 ds->ds_resume_bytes[tx->tx_txg & TXG_MASK] = 0; 1753 } 1754 1755 dmu_objset_sync(ds->ds_objset, zio, tx); 1756 1757 for (spa_feature_t f = 0; f < SPA_FEATURES; f++) { 1758 if (ds->ds_feature_activation_needed[f]) { 1759 if (ds->ds_feature_inuse[f]) 1760 continue; 1761 dsl_dataset_activate_feature(ds->ds_object, f, tx); 1762 ds->ds_feature_inuse[f] = B_TRUE; 1763 } 1764 } 1765 } 1766 1767 static int 1768 deadlist_enqueue_cb(void *arg, const blkptr_t *bp, dmu_tx_t *tx) 1769 { 1770 dsl_deadlist_t *dl = arg; 1771 dsl_deadlist_insert(dl, bp, tx); 1772 return (0); 1773 } 1774 1775 void 1776 dsl_dataset_sync_done(dsl_dataset_t *ds, dmu_tx_t *tx) 1777 { 1778 objset_t *os = ds->ds_objset; 1779 1780 bplist_iterate(&ds->ds_pending_deadlist, 1781 deadlist_enqueue_cb, &ds->ds_deadlist, tx); 1782 1783 ASSERT(!dmu_objset_is_dirty(os, dmu_tx_get_txg(tx))); 1784 1785 dmu_buf_rele(ds->ds_dbuf, ds); 1786 } 1787 1788 static void 1789 get_clones_stat(dsl_dataset_t *ds, nvlist_t *nv) 1790 { 1791 uint64_t count = 0; 1792 objset_t *mos = ds->ds_dir->dd_pool->dp_meta_objset; 1793 zap_cursor_t zc; 1794 zap_attribute_t za; 1795 nvlist_t *propval = fnvlist_alloc(); 1796 nvlist_t *val; 1797 1798 ASSERT(dsl_pool_config_held(ds->ds_dir->dd_pool)); 1799 1800 /* 1801 * We use nvlist_alloc() instead of fnvlist_alloc() because the 1802 * latter would allocate the list with NV_UNIQUE_NAME flag. 1803 * As a result, every time a clone name is appended to the list 1804 * it would be (linearly) searched for for a duplicate name. 1805 * We already know that all clone names must be unique and we 1806 * want avoid the quadratic complexity of double-checking that 1807 * because we can have a large number of clones. 1808 */ 1809 VERIFY0(nvlist_alloc(&val, 0, KM_SLEEP)); 1810 1811 /* 1812 * There may be missing entries in ds_next_clones_obj 1813 * due to a bug in a previous version of the code. 1814 * Only trust it if it has the right number of entries. 1815 */ 1816 if (dsl_dataset_phys(ds)->ds_next_clones_obj != 0) { 1817 VERIFY0(zap_count(mos, dsl_dataset_phys(ds)->ds_next_clones_obj, 1818 &count)); 1819 } 1820 if (count != dsl_dataset_phys(ds)->ds_num_children - 1) 1821 goto fail; 1822 for (zap_cursor_init(&zc, mos, 1823 dsl_dataset_phys(ds)->ds_next_clones_obj); 1824 zap_cursor_retrieve(&zc, &za) == 0; 1825 zap_cursor_advance(&zc)) { 1826 dsl_dataset_t *clone; 1827 char buf[ZFS_MAX_DATASET_NAME_LEN]; 1828 VERIFY0(dsl_dataset_hold_obj(ds->ds_dir->dd_pool, 1829 za.za_first_integer, FTAG, &clone)); 1830 dsl_dir_name(clone->ds_dir, buf); 1831 fnvlist_add_boolean(val, buf); 1832 dsl_dataset_rele(clone, FTAG); 1833 } 1834 zap_cursor_fini(&zc); 1835 fnvlist_add_nvlist(propval, ZPROP_VALUE, val); 1836 fnvlist_add_nvlist(nv, zfs_prop_to_name(ZFS_PROP_CLONES), propval); 1837 fail: 1838 nvlist_free(val); 1839 nvlist_free(propval); 1840 } 1841 1842 static void 1843 get_receive_resume_stats(dsl_dataset_t *ds, nvlist_t *nv) 1844 { 1845 dsl_pool_t *dp = ds->ds_dir->dd_pool; 1846 1847 if (dsl_dataset_has_resume_receive_state(ds)) { 1848 char *str; 1849 void *packed; 1850 uint8_t *compressed; 1851 uint64_t val; 1852 nvlist_t *token_nv = fnvlist_alloc(); 1853 size_t packed_size, compressed_size; 1854 1855 if (zap_lookup(dp->dp_meta_objset, ds->ds_object, 1856 DS_FIELD_RESUME_FROMGUID, sizeof (val), 1, &val) == 0) { 1857 fnvlist_add_uint64(token_nv, "fromguid", val); 1858 } 1859 if (zap_lookup(dp->dp_meta_objset, ds->ds_object, 1860 DS_FIELD_RESUME_OBJECT, sizeof (val), 1, &val) == 0) { 1861 fnvlist_add_uint64(token_nv, "object", val); 1862 } 1863 if (zap_lookup(dp->dp_meta_objset, ds->ds_object, 1864 DS_FIELD_RESUME_OFFSET, sizeof (val), 1, &val) == 0) { 1865 fnvlist_add_uint64(token_nv, "offset", val); 1866 } 1867 if (zap_lookup(dp->dp_meta_objset, ds->ds_object, 1868 DS_FIELD_RESUME_BYTES, sizeof (val), 1, &val) == 0) { 1869 fnvlist_add_uint64(token_nv, "bytes", val); 1870 } 1871 if (zap_lookup(dp->dp_meta_objset, ds->ds_object, 1872 DS_FIELD_RESUME_TOGUID, sizeof (val), 1, &val) == 0) { 1873 fnvlist_add_uint64(token_nv, "toguid", val); 1874 } 1875 char buf[256]; 1876 if (zap_lookup(dp->dp_meta_objset, ds->ds_object, 1877 DS_FIELD_RESUME_TONAME, 1, sizeof (buf), buf) == 0) { 1878 fnvlist_add_string(token_nv, "toname", buf); 1879 } 1880 if (zap_contains(dp->dp_meta_objset, ds->ds_object, 1881 DS_FIELD_RESUME_EMBEDOK) == 0) { 1882 fnvlist_add_boolean(token_nv, "embedok"); 1883 } 1884 packed = fnvlist_pack(token_nv, &packed_size); 1885 fnvlist_free(token_nv); 1886 compressed = kmem_alloc(packed_size, KM_SLEEP); 1887 1888 compressed_size = gzip_compress(packed, compressed, 1889 packed_size, packed_size, 6); 1890 1891 zio_cksum_t cksum; 1892 fletcher_4_native(compressed, compressed_size, NULL, &cksum); 1893 1894 str = kmem_alloc(compressed_size * 2 + 1, KM_SLEEP); 1895 for (int i = 0; i < compressed_size; i++) { 1896 (void) sprintf(str + i * 2, "%02x", compressed[i]); 1897 } 1898 str[compressed_size * 2] = '\0'; 1899 char *propval = kmem_asprintf("%u-%llx-%llx-%s", 1900 ZFS_SEND_RESUME_TOKEN_VERSION, 1901 (longlong_t)cksum.zc_word[0], 1902 (longlong_t)packed_size, str); 1903 dsl_prop_nvlist_add_string(nv, 1904 ZFS_PROP_RECEIVE_RESUME_TOKEN, propval); 1905 kmem_free(packed, packed_size); 1906 kmem_free(str, compressed_size * 2 + 1); 1907 kmem_free(compressed, packed_size); 1908 strfree(propval); 1909 } 1910 } 1911 1912 void 1913 dsl_dataset_stats(dsl_dataset_t *ds, nvlist_t *nv) 1914 { 1915 dsl_pool_t *dp = ds->ds_dir->dd_pool; 1916 uint64_t refd, avail, uobjs, aobjs, ratio; 1917 1918 ASSERT(dsl_pool_config_held(dp)); 1919 1920 ratio = dsl_dataset_phys(ds)->ds_compressed_bytes == 0 ? 100 : 1921 (dsl_dataset_phys(ds)->ds_uncompressed_bytes * 100 / 1922 dsl_dataset_phys(ds)->ds_compressed_bytes); 1923 1924 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_REFRATIO, ratio); 1925 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_LOGICALREFERENCED, 1926 dsl_dataset_phys(ds)->ds_uncompressed_bytes); 1927 1928 if (ds->ds_is_snapshot) { 1929 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_COMPRESSRATIO, ratio); 1930 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_USED, 1931 dsl_dataset_phys(ds)->ds_unique_bytes); 1932 get_clones_stat(ds, nv); 1933 } else { 1934 if (ds->ds_prev != NULL && ds->ds_prev != dp->dp_origin_snap) { 1935 char buf[ZFS_MAX_DATASET_NAME_LEN]; 1936 dsl_dataset_name(ds->ds_prev, buf); 1937 dsl_prop_nvlist_add_string(nv, ZFS_PROP_PREV_SNAP, buf); 1938 } 1939 1940 dsl_dir_stats(ds->ds_dir, nv); 1941 } 1942 1943 dsl_dataset_space(ds, &refd, &avail, &uobjs, &aobjs); 1944 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_AVAILABLE, avail); 1945 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_REFERENCED, refd); 1946 1947 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_CREATION, 1948 dsl_dataset_phys(ds)->ds_creation_time); 1949 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_CREATETXG, 1950 dsl_dataset_phys(ds)->ds_creation_txg); 1951 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_REFQUOTA, 1952 ds->ds_quota); 1953 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_REFRESERVATION, 1954 ds->ds_reserved); 1955 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_GUID, 1956 dsl_dataset_phys(ds)->ds_guid); 1957 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_UNIQUE, 1958 dsl_dataset_phys(ds)->ds_unique_bytes); 1959 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_OBJSETID, 1960 ds->ds_object); 1961 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_USERREFS, 1962 ds->ds_userrefs); 1963 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_DEFER_DESTROY, 1964 DS_IS_DEFER_DESTROY(ds) ? 1 : 0); 1965 1966 if (dsl_dataset_phys(ds)->ds_prev_snap_obj != 0) { 1967 uint64_t written, comp, uncomp; 1968 dsl_pool_t *dp = ds->ds_dir->dd_pool; 1969 dsl_dataset_t *prev; 1970 1971 int err = dsl_dataset_hold_obj(dp, 1972 dsl_dataset_phys(ds)->ds_prev_snap_obj, FTAG, &prev); 1973 if (err == 0) { 1974 err = dsl_dataset_space_written(prev, ds, &written, 1975 &comp, &uncomp); 1976 dsl_dataset_rele(prev, FTAG); 1977 if (err == 0) { 1978 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_WRITTEN, 1979 written); 1980 } 1981 } 1982 } 1983 1984 if (!dsl_dataset_is_snapshot(ds)) { 1985 /* 1986 * A failed "newfs" (e.g. full) resumable receive leaves 1987 * the stats set on this dataset. Check here for the prop. 1988 */ 1989 get_receive_resume_stats(ds, nv); 1990 1991 /* 1992 * A failed incremental resumable receive leaves the 1993 * stats set on our child named "%recv". Check the child 1994 * for the prop. 1995 */ 1996 /* 6 extra bytes for /%recv */ 1997 char recvname[ZFS_MAX_DATASET_NAME_LEN + 6]; 1998 dsl_dataset_t *recv_ds; 1999 dsl_dataset_name(ds, recvname); 2000 if (strlcat(recvname, "/", sizeof (recvname)) < 2001 sizeof (recvname) && 2002 strlcat(recvname, recv_clone_name, sizeof (recvname)) < 2003 sizeof (recvname) && 2004 dsl_dataset_hold(dp, recvname, FTAG, &recv_ds) == 0) { 2005 get_receive_resume_stats(recv_ds, nv); 2006 dsl_dataset_rele(recv_ds, FTAG); 2007 } 2008 } 2009 } 2010 2011 void 2012 dsl_dataset_fast_stat(dsl_dataset_t *ds, dmu_objset_stats_t *stat) 2013 { 2014 dsl_pool_t *dp = ds->ds_dir->dd_pool; 2015 ASSERT(dsl_pool_config_held(dp)); 2016 2017 stat->dds_creation_txg = dsl_dataset_phys(ds)->ds_creation_txg; 2018 stat->dds_inconsistent = 2019 dsl_dataset_phys(ds)->ds_flags & DS_FLAG_INCONSISTENT; 2020 stat->dds_guid = dsl_dataset_phys(ds)->ds_guid; 2021 stat->dds_origin[0] = '\0'; 2022 if (ds->ds_is_snapshot) { 2023 stat->dds_is_snapshot = B_TRUE; 2024 stat->dds_num_clones = 2025 dsl_dataset_phys(ds)->ds_num_children - 1; 2026 } else { 2027 stat->dds_is_snapshot = B_FALSE; 2028 stat->dds_num_clones = 0; 2029 2030 if (dsl_dir_is_clone(ds->ds_dir)) { 2031 dsl_dataset_t *ods; 2032 2033 VERIFY0(dsl_dataset_hold_obj(dp, 2034 dsl_dir_phys(ds->ds_dir)->dd_origin_obj, 2035 FTAG, &ods)); 2036 dsl_dataset_name(ods, stat->dds_origin); 2037 dsl_dataset_rele(ods, FTAG); 2038 } 2039 } 2040 } 2041 2042 uint64_t 2043 dsl_dataset_fsid_guid(dsl_dataset_t *ds) 2044 { 2045 return (ds->ds_fsid_guid); 2046 } 2047 2048 void 2049 dsl_dataset_space(dsl_dataset_t *ds, 2050 uint64_t *refdbytesp, uint64_t *availbytesp, 2051 uint64_t *usedobjsp, uint64_t *availobjsp) 2052 { 2053 *refdbytesp = dsl_dataset_phys(ds)->ds_referenced_bytes; 2054 *availbytesp = dsl_dir_space_available(ds->ds_dir, NULL, 0, TRUE); 2055 if (ds->ds_reserved > dsl_dataset_phys(ds)->ds_unique_bytes) 2056 *availbytesp += 2057 ds->ds_reserved - dsl_dataset_phys(ds)->ds_unique_bytes; 2058 if (ds->ds_quota != 0) { 2059 /* 2060 * Adjust available bytes according to refquota 2061 */ 2062 if (*refdbytesp < ds->ds_quota) 2063 *availbytesp = MIN(*availbytesp, 2064 ds->ds_quota - *refdbytesp); 2065 else 2066 *availbytesp = 0; 2067 } 2068 rrw_enter(&ds->ds_bp_rwlock, RW_READER, FTAG); 2069 *usedobjsp = BP_GET_FILL(&dsl_dataset_phys(ds)->ds_bp); 2070 rrw_exit(&ds->ds_bp_rwlock, FTAG); 2071 *availobjsp = DN_MAX_OBJECT - *usedobjsp; 2072 } 2073 2074 boolean_t 2075 dsl_dataset_modified_since_snap(dsl_dataset_t *ds, dsl_dataset_t *snap) 2076 { 2077 dsl_pool_t *dp = ds->ds_dir->dd_pool; 2078 uint64_t birth; 2079 2080 ASSERT(dsl_pool_config_held(dp)); 2081 if (snap == NULL) 2082 return (B_FALSE); 2083 rrw_enter(&ds->ds_bp_rwlock, RW_READER, FTAG); 2084 birth = dsl_dataset_get_blkptr(ds)->blk_birth; 2085 rrw_exit(&ds->ds_bp_rwlock, FTAG); 2086 if (birth > dsl_dataset_phys(snap)->ds_creation_txg) { 2087 objset_t *os, *os_snap; 2088 /* 2089 * It may be that only the ZIL differs, because it was 2090 * reset in the head. Don't count that as being 2091 * modified. 2092 */ 2093 if (dmu_objset_from_ds(ds, &os) != 0) 2094 return (B_TRUE); 2095 if (dmu_objset_from_ds(snap, &os_snap) != 0) 2096 return (B_TRUE); 2097 return (bcmp(&os->os_phys->os_meta_dnode, 2098 &os_snap->os_phys->os_meta_dnode, 2099 sizeof (os->os_phys->os_meta_dnode)) != 0); 2100 } 2101 return (B_FALSE); 2102 } 2103 2104 typedef struct dsl_dataset_rename_snapshot_arg { 2105 const char *ddrsa_fsname; 2106 const char *ddrsa_oldsnapname; 2107 const char *ddrsa_newsnapname; 2108 boolean_t ddrsa_recursive; 2109 dmu_tx_t *ddrsa_tx; 2110 } dsl_dataset_rename_snapshot_arg_t; 2111 2112 /* ARGSUSED */ 2113 static int 2114 dsl_dataset_rename_snapshot_check_impl(dsl_pool_t *dp, 2115 dsl_dataset_t *hds, void *arg) 2116 { 2117 dsl_dataset_rename_snapshot_arg_t *ddrsa = arg; 2118 int error; 2119 uint64_t val; 2120 2121 error = dsl_dataset_snap_lookup(hds, ddrsa->ddrsa_oldsnapname, &val); 2122 if (error != 0) { 2123 /* ignore nonexistent snapshots */ 2124 return (error == ENOENT ? 0 : error); 2125 } 2126 2127 /* new name should not exist */ 2128 error = dsl_dataset_snap_lookup(hds, ddrsa->ddrsa_newsnapname, &val); 2129 if (error == 0) 2130 error = SET_ERROR(EEXIST); 2131 else if (error == ENOENT) 2132 error = 0; 2133 2134 /* dataset name + 1 for the "@" + the new snapshot name must fit */ 2135 if (dsl_dir_namelen(hds->ds_dir) + 1 + 2136 strlen(ddrsa->ddrsa_newsnapname) >= ZFS_MAX_DATASET_NAME_LEN) 2137 error = SET_ERROR(ENAMETOOLONG); 2138 2139 return (error); 2140 } 2141 2142 static int 2143 dsl_dataset_rename_snapshot_check(void *arg, dmu_tx_t *tx) 2144 { 2145 dsl_dataset_rename_snapshot_arg_t *ddrsa = arg; 2146 dsl_pool_t *dp = dmu_tx_pool(tx); 2147 dsl_dataset_t *hds; 2148 int error; 2149 2150 error = dsl_dataset_hold(dp, ddrsa->ddrsa_fsname, FTAG, &hds); 2151 if (error != 0) 2152 return (error); 2153 2154 if (ddrsa->ddrsa_recursive) { 2155 error = dmu_objset_find_dp(dp, hds->ds_dir->dd_object, 2156 dsl_dataset_rename_snapshot_check_impl, ddrsa, 2157 DS_FIND_CHILDREN); 2158 } else { 2159 error = dsl_dataset_rename_snapshot_check_impl(dp, hds, ddrsa); 2160 } 2161 dsl_dataset_rele(hds, FTAG); 2162 return (error); 2163 } 2164 2165 static int 2166 dsl_dataset_rename_snapshot_sync_impl(dsl_pool_t *dp, 2167 dsl_dataset_t *hds, void *arg) 2168 { 2169 #if defined(__FreeBSD__) || defined(__NetBSD__) 2170 #ifdef _KERNEL 2171 char *oldname, *newname; 2172 #endif 2173 #endif 2174 dsl_dataset_rename_snapshot_arg_t *ddrsa = arg; 2175 dsl_dataset_t *ds; 2176 uint64_t val; 2177 dmu_tx_t *tx = ddrsa->ddrsa_tx; 2178 int error; 2179 2180 error = dsl_dataset_snap_lookup(hds, ddrsa->ddrsa_oldsnapname, &val); 2181 ASSERT(error == 0 || error == ENOENT); 2182 if (error == ENOENT) { 2183 /* ignore nonexistent snapshots */ 2184 return (0); 2185 } 2186 2187 VERIFY0(dsl_dataset_hold_obj(dp, val, FTAG, &ds)); 2188 2189 /* log before we change the name */ 2190 spa_history_log_internal_ds(ds, "rename", tx, 2191 "-> @%s", ddrsa->ddrsa_newsnapname); 2192 2193 VERIFY0(dsl_dataset_snap_remove(hds, ddrsa->ddrsa_oldsnapname, tx, 2194 B_FALSE)); 2195 mutex_enter(&ds->ds_lock); 2196 (void) strcpy(ds->ds_snapname, ddrsa->ddrsa_newsnapname); 2197 mutex_exit(&ds->ds_lock); 2198 VERIFY0(zap_add(dp->dp_meta_objset, 2199 dsl_dataset_phys(hds)->ds_snapnames_zapobj, 2200 ds->ds_snapname, 8, 1, &ds->ds_object, tx)); 2201 2202 #if defined(__FreeBSD__) || defined(__NetBSD__) 2203 #ifdef _KERNEL 2204 oldname = kmem_alloc(MAXPATHLEN, KM_SLEEP); 2205 newname = kmem_alloc(MAXPATHLEN, KM_SLEEP); 2206 snprintf(oldname, MAXPATHLEN, "%s@%s", ddrsa->ddrsa_fsname, 2207 ddrsa->ddrsa_oldsnapname); 2208 snprintf(newname, MAXPATHLEN, "%s@%s", ddrsa->ddrsa_fsname, 2209 ddrsa->ddrsa_newsnapname); 2210 zfsvfs_update_fromname(oldname, newname); 2211 zvol_rename_minors(oldname, newname); 2212 kmem_free(newname, MAXPATHLEN); 2213 kmem_free(oldname, MAXPATHLEN); 2214 #endif 2215 #endif 2216 dsl_dataset_rele(ds, FTAG); 2217 2218 return (0); 2219 } 2220 2221 static void 2222 dsl_dataset_rename_snapshot_sync(void *arg, dmu_tx_t *tx) 2223 { 2224 dsl_dataset_rename_snapshot_arg_t *ddrsa = arg; 2225 dsl_pool_t *dp = dmu_tx_pool(tx); 2226 dsl_dataset_t *hds; 2227 2228 VERIFY0(dsl_dataset_hold(dp, ddrsa->ddrsa_fsname, FTAG, &hds)); 2229 ddrsa->ddrsa_tx = tx; 2230 if (ddrsa->ddrsa_recursive) { 2231 VERIFY0(dmu_objset_find_dp(dp, hds->ds_dir->dd_object, 2232 dsl_dataset_rename_snapshot_sync_impl, ddrsa, 2233 DS_FIND_CHILDREN)); 2234 } else { 2235 VERIFY0(dsl_dataset_rename_snapshot_sync_impl(dp, hds, ddrsa)); 2236 } 2237 dsl_dataset_rele(hds, FTAG); 2238 } 2239 2240 int 2241 dsl_dataset_rename_snapshot(const char *fsname, 2242 const char *oldsnapname, const char *newsnapname, boolean_t recursive) 2243 { 2244 dsl_dataset_rename_snapshot_arg_t ddrsa; 2245 2246 ddrsa.ddrsa_fsname = fsname; 2247 ddrsa.ddrsa_oldsnapname = oldsnapname; 2248 ddrsa.ddrsa_newsnapname = newsnapname; 2249 ddrsa.ddrsa_recursive = recursive; 2250 2251 return (dsl_sync_task(fsname, dsl_dataset_rename_snapshot_check, 2252 dsl_dataset_rename_snapshot_sync, &ddrsa, 2253 1, ZFS_SPACE_CHECK_RESERVED)); 2254 } 2255 2256 /* 2257 * If we're doing an ownership handoff, we need to make sure that there is 2258 * only one long hold on the dataset. We're not allowed to change anything here 2259 * so we don't permanently release the long hold or regular hold here. We want 2260 * to do this only when syncing to avoid the dataset unexpectedly going away 2261 * when we release the long hold. 2262 */ 2263 static int 2264 dsl_dataset_handoff_check(dsl_dataset_t *ds, void *owner, dmu_tx_t *tx) 2265 { 2266 boolean_t held; 2267 2268 if (!dmu_tx_is_syncing(tx)) 2269 return (0); 2270 2271 if (owner != NULL) { 2272 VERIFY3P(ds->ds_owner, ==, owner); 2273 dsl_dataset_long_rele(ds, owner); 2274 } 2275 2276 held = dsl_dataset_long_held(ds); 2277 2278 if (owner != NULL) 2279 dsl_dataset_long_hold(ds, owner); 2280 2281 if (held) 2282 return (SET_ERROR(EBUSY)); 2283 2284 return (0); 2285 } 2286 2287 typedef struct dsl_dataset_rollback_arg { 2288 const char *ddra_fsname; 2289 void *ddra_owner; 2290 nvlist_t *ddra_result; 2291 } dsl_dataset_rollback_arg_t; 2292 2293 static int 2294 dsl_dataset_rollback_check(void *arg, dmu_tx_t *tx) 2295 { 2296 dsl_dataset_rollback_arg_t *ddra = arg; 2297 dsl_pool_t *dp = dmu_tx_pool(tx); 2298 dsl_dataset_t *ds; 2299 int64_t unused_refres_delta; 2300 int error; 2301 2302 error = dsl_dataset_hold(dp, ddra->ddra_fsname, FTAG, &ds); 2303 if (error != 0) 2304 return (error); 2305 2306 /* must not be a snapshot */ 2307 if (ds->ds_is_snapshot) { 2308 dsl_dataset_rele(ds, FTAG); 2309 return (SET_ERROR(EINVAL)); 2310 } 2311 2312 /* must have a most recent snapshot */ 2313 if (dsl_dataset_phys(ds)->ds_prev_snap_txg < TXG_INITIAL) { 2314 dsl_dataset_rele(ds, FTAG); 2315 return (SET_ERROR(EINVAL)); 2316 } 2317 2318 /* 2319 * No rollback to a snapshot created in the current txg, because 2320 * the rollback may dirty the dataset and create blocks that are 2321 * not reachable from the rootbp while having a birth txg that 2322 * falls into the snapshot's range. 2323 */ 2324 if (dmu_tx_is_syncing(tx) && 2325 dsl_dataset_phys(ds)->ds_prev_snap_txg >= tx->tx_txg) { 2326 dsl_dataset_rele(ds, FTAG); 2327 return (SET_ERROR(EAGAIN)); 2328 } 2329 2330 /* must not have any bookmarks after the most recent snapshot */ 2331 nvlist_t *proprequest = fnvlist_alloc(); 2332 fnvlist_add_boolean(proprequest, zfs_prop_to_name(ZFS_PROP_CREATETXG)); 2333 nvlist_t *bookmarks = fnvlist_alloc(); 2334 error = dsl_get_bookmarks_impl(ds, proprequest, bookmarks); 2335 fnvlist_free(proprequest); 2336 if (error != 0) 2337 return (error); 2338 for (nvpair_t *pair = nvlist_next_nvpair(bookmarks, NULL); 2339 pair != NULL; pair = nvlist_next_nvpair(bookmarks, pair)) { 2340 nvlist_t *valuenv = 2341 fnvlist_lookup_nvlist(fnvpair_value_nvlist(pair), 2342 zfs_prop_to_name(ZFS_PROP_CREATETXG)); 2343 uint64_t createtxg = fnvlist_lookup_uint64(valuenv, "value"); 2344 if (createtxg > dsl_dataset_phys(ds)->ds_prev_snap_txg) { 2345 fnvlist_free(bookmarks); 2346 dsl_dataset_rele(ds, FTAG); 2347 return (SET_ERROR(EEXIST)); 2348 } 2349 } 2350 fnvlist_free(bookmarks); 2351 2352 error = dsl_dataset_handoff_check(ds, ddra->ddra_owner, tx); 2353 if (error != 0) { 2354 dsl_dataset_rele(ds, FTAG); 2355 return (error); 2356 } 2357 2358 /* 2359 * Check if the snap we are rolling back to uses more than 2360 * the refquota. 2361 */ 2362 if (ds->ds_quota != 0 && 2363 dsl_dataset_phys(ds->ds_prev)->ds_referenced_bytes > ds->ds_quota) { 2364 dsl_dataset_rele(ds, FTAG); 2365 return (SET_ERROR(EDQUOT)); 2366 } 2367 2368 /* 2369 * When we do the clone swap, we will temporarily use more space 2370 * due to the refreservation (the head will no longer have any 2371 * unique space, so the entire amount of the refreservation will need 2372 * to be free). We will immediately destroy the clone, freeing 2373 * this space, but the freeing happens over many txg's. 2374 */ 2375 unused_refres_delta = (int64_t)MIN(ds->ds_reserved, 2376 dsl_dataset_phys(ds)->ds_unique_bytes); 2377 2378 if (unused_refres_delta > 0 && 2379 unused_refres_delta > 2380 dsl_dir_space_available(ds->ds_dir, NULL, 0, TRUE)) { 2381 dsl_dataset_rele(ds, FTAG); 2382 return (SET_ERROR(ENOSPC)); 2383 } 2384 2385 dsl_dataset_rele(ds, FTAG); 2386 return (0); 2387 } 2388 2389 static void 2390 dsl_dataset_rollback_sync(void *arg, dmu_tx_t *tx) 2391 { 2392 dsl_dataset_rollback_arg_t *ddra = arg; 2393 dsl_pool_t *dp = dmu_tx_pool(tx); 2394 dsl_dataset_t *ds, *clone; 2395 uint64_t cloneobj; 2396 char namebuf[ZFS_MAX_DATASET_NAME_LEN]; 2397 2398 VERIFY0(dsl_dataset_hold(dp, ddra->ddra_fsname, FTAG, &ds)); 2399 2400 dsl_dataset_name(ds->ds_prev, namebuf); 2401 fnvlist_add_string(ddra->ddra_result, "target", namebuf); 2402 2403 cloneobj = dsl_dataset_create_sync(ds->ds_dir, "%rollback", 2404 ds->ds_prev, DS_CREATE_FLAG_NODIRTY, kcred, tx); 2405 2406 VERIFY0(dsl_dataset_hold_obj(dp, cloneobj, FTAG, &clone)); 2407 2408 dsl_dataset_clone_swap_sync_impl(clone, ds, tx); 2409 dsl_dataset_zero_zil(ds, tx); 2410 2411 dsl_destroy_head_sync_impl(clone, tx); 2412 2413 dsl_dataset_rele(clone, FTAG); 2414 dsl_dataset_rele(ds, FTAG); 2415 } 2416 2417 /* 2418 * Rolls back the given filesystem or volume to the most recent snapshot. 2419 * The name of the most recent snapshot will be returned under key "target" 2420 * in the result nvlist. 2421 * 2422 * If owner != NULL: 2423 * - The existing dataset MUST be owned by the specified owner at entry 2424 * - Upon return, dataset will still be held by the same owner, whether we 2425 * succeed or not. 2426 * 2427 * This mode is required any time the existing filesystem is mounted. See 2428 * notes above zfs_suspend_fs() for further details. 2429 */ 2430 int 2431 dsl_dataset_rollback(const char *fsname, void *owner, nvlist_t *result) 2432 { 2433 dsl_dataset_rollback_arg_t ddra; 2434 2435 ddra.ddra_fsname = fsname; 2436 ddra.ddra_owner = owner; 2437 ddra.ddra_result = result; 2438 2439 return (dsl_sync_task(fsname, dsl_dataset_rollback_check, 2440 dsl_dataset_rollback_sync, &ddra, 2441 1, ZFS_SPACE_CHECK_RESERVED)); 2442 } 2443 2444 struct promotenode { 2445 list_node_t link; 2446 dsl_dataset_t *ds; 2447 }; 2448 2449 typedef struct dsl_dataset_promote_arg { 2450 const char *ddpa_clonename; 2451 dsl_dataset_t *ddpa_clone; 2452 list_t shared_snaps, origin_snaps, clone_snaps; 2453 dsl_dataset_t *origin_origin; /* origin of the origin */ 2454 uint64_t used, comp, uncomp, unique, cloneusedsnap, originusedsnap; 2455 char *err_ds; 2456 cred_t *cr; 2457 } dsl_dataset_promote_arg_t; 2458 2459 static int snaplist_space(list_t *l, uint64_t mintxg, uint64_t *spacep); 2460 static int promote_hold(dsl_dataset_promote_arg_t *ddpa, dsl_pool_t *dp, 2461 void *tag); 2462 static void promote_rele(dsl_dataset_promote_arg_t *ddpa, void *tag); 2463 2464 static int 2465 dsl_dataset_promote_check(void *arg, dmu_tx_t *tx) 2466 { 2467 dsl_dataset_promote_arg_t *ddpa = arg; 2468 dsl_pool_t *dp = dmu_tx_pool(tx); 2469 dsl_dataset_t *hds; 2470 struct promotenode *snap; 2471 dsl_dataset_t *origin_ds; 2472 int err; 2473 uint64_t unused; 2474 uint64_t ss_mv_cnt; 2475 size_t max_snap_len; 2476 2477 err = promote_hold(ddpa, dp, FTAG); 2478 if (err != 0) 2479 return (err); 2480 2481 hds = ddpa->ddpa_clone; 2482 max_snap_len = MAXNAMELEN - strlen(ddpa->ddpa_clonename) - 1; 2483 2484 if (dsl_dataset_phys(hds)->ds_flags & DS_FLAG_NOPROMOTE) { 2485 promote_rele(ddpa, FTAG); 2486 return (SET_ERROR(EXDEV)); 2487 } 2488 2489 /* 2490 * Compute and check the amount of space to transfer. Since this is 2491 * so expensive, don't do the preliminary check. 2492 */ 2493 if (!dmu_tx_is_syncing(tx)) { 2494 promote_rele(ddpa, FTAG); 2495 return (0); 2496 } 2497 2498 snap = list_head(&ddpa->shared_snaps); 2499 origin_ds = snap->ds; 2500 2501 /* compute origin's new unique space */ 2502 snap = list_tail(&ddpa->clone_snaps); 2503 ASSERT3U(dsl_dataset_phys(snap->ds)->ds_prev_snap_obj, ==, 2504 origin_ds->ds_object); 2505 dsl_deadlist_space_range(&snap->ds->ds_deadlist, 2506 dsl_dataset_phys(origin_ds)->ds_prev_snap_txg, UINT64_MAX, 2507 &ddpa->unique, &unused, &unused); 2508 2509 /* 2510 * Walk the snapshots that we are moving 2511 * 2512 * Compute space to transfer. Consider the incremental changes 2513 * to used by each snapshot: 2514 * (my used) = (prev's used) + (blocks born) - (blocks killed) 2515 * So each snapshot gave birth to: 2516 * (blocks born) = (my used) - (prev's used) + (blocks killed) 2517 * So a sequence would look like: 2518 * (uN - u(N-1) + kN) + ... + (u1 - u0 + k1) + (u0 - 0 + k0) 2519 * Which simplifies to: 2520 * uN + kN + kN-1 + ... + k1 + k0 2521 * Note however, if we stop before we reach the ORIGIN we get: 2522 * uN + kN + kN-1 + ... + kM - uM-1 2523 */ 2524 ss_mv_cnt = 0; 2525 ddpa->used = dsl_dataset_phys(origin_ds)->ds_referenced_bytes; 2526 ddpa->comp = dsl_dataset_phys(origin_ds)->ds_compressed_bytes; 2527 ddpa->uncomp = dsl_dataset_phys(origin_ds)->ds_uncompressed_bytes; 2528 for (snap = list_head(&ddpa->shared_snaps); snap; 2529 snap = list_next(&ddpa->shared_snaps, snap)) { 2530 uint64_t val, dlused, dlcomp, dluncomp; 2531 dsl_dataset_t *ds = snap->ds; 2532 2533 ss_mv_cnt++; 2534 2535 /* 2536 * If there are long holds, we won't be able to evict 2537 * the objset. 2538 */ 2539 if (dsl_dataset_long_held(ds)) { 2540 err = SET_ERROR(EBUSY); 2541 goto out; 2542 } 2543 2544 /* Check that the snapshot name does not conflict */ 2545 VERIFY0(dsl_dataset_get_snapname(ds)); 2546 if (strlen(ds->ds_snapname) >= max_snap_len) { 2547 err = SET_ERROR(ENAMETOOLONG); 2548 goto out; 2549 } 2550 err = dsl_dataset_snap_lookup(hds, ds->ds_snapname, &val); 2551 if (err == 0) { 2552 (void) strcpy(ddpa->err_ds, snap->ds->ds_snapname); 2553 err = SET_ERROR(EEXIST); 2554 goto out; 2555 } 2556 if (err != ENOENT) 2557 goto out; 2558 2559 /* The very first snapshot does not have a deadlist */ 2560 if (dsl_dataset_phys(ds)->ds_prev_snap_obj == 0) 2561 continue; 2562 2563 dsl_deadlist_space(&ds->ds_deadlist, 2564 &dlused, &dlcomp, &dluncomp); 2565 ddpa->used += dlused; 2566 ddpa->comp += dlcomp; 2567 ddpa->uncomp += dluncomp; 2568 } 2569 2570 /* 2571 * If we are a clone of a clone then we never reached ORIGIN, 2572 * so we need to subtract out the clone origin's used space. 2573 */ 2574 if (ddpa->origin_origin) { 2575 ddpa->used -= 2576 dsl_dataset_phys(ddpa->origin_origin)->ds_referenced_bytes; 2577 ddpa->comp -= 2578 dsl_dataset_phys(ddpa->origin_origin)->ds_compressed_bytes; 2579 ddpa->uncomp -= 2580 dsl_dataset_phys(ddpa->origin_origin)-> 2581 ds_uncompressed_bytes; 2582 } 2583 2584 /* Check that there is enough space and limit headroom here */ 2585 err = dsl_dir_transfer_possible(origin_ds->ds_dir, hds->ds_dir, 2586 0, ss_mv_cnt, ddpa->used, ddpa->cr); 2587 if (err != 0) 2588 goto out; 2589 2590 /* 2591 * Compute the amounts of space that will be used by snapshots 2592 * after the promotion (for both origin and clone). For each, 2593 * it is the amount of space that will be on all of their 2594 * deadlists (that was not born before their new origin). 2595 */ 2596 if (dsl_dir_phys(hds->ds_dir)->dd_flags & DD_FLAG_USED_BREAKDOWN) { 2597 uint64_t space; 2598 2599 /* 2600 * Note, typically this will not be a clone of a clone, 2601 * so dd_origin_txg will be < TXG_INITIAL, so 2602 * these snaplist_space() -> dsl_deadlist_space_range() 2603 * calls will be fast because they do not have to 2604 * iterate over all bps. 2605 */ 2606 snap = list_head(&ddpa->origin_snaps); 2607 err = snaplist_space(&ddpa->shared_snaps, 2608 snap->ds->ds_dir->dd_origin_txg, &ddpa->cloneusedsnap); 2609 if (err != 0) 2610 goto out; 2611 2612 err = snaplist_space(&ddpa->clone_snaps, 2613 snap->ds->ds_dir->dd_origin_txg, &space); 2614 if (err != 0) 2615 goto out; 2616 ddpa->cloneusedsnap += space; 2617 } 2618 if (dsl_dir_phys(origin_ds->ds_dir)->dd_flags & 2619 DD_FLAG_USED_BREAKDOWN) { 2620 err = snaplist_space(&ddpa->origin_snaps, 2621 dsl_dataset_phys(origin_ds)->ds_creation_txg, 2622 &ddpa->originusedsnap); 2623 if (err != 0) 2624 goto out; 2625 } 2626 2627 out: 2628 promote_rele(ddpa, FTAG); 2629 return (err); 2630 } 2631 2632 static void 2633 dsl_dataset_promote_sync(void *arg, dmu_tx_t *tx) 2634 { 2635 dsl_dataset_promote_arg_t *ddpa = arg; 2636 dsl_pool_t *dp = dmu_tx_pool(tx); 2637 dsl_dataset_t *hds; 2638 struct promotenode *snap; 2639 dsl_dataset_t *origin_ds; 2640 dsl_dataset_t *origin_head; 2641 dsl_dir_t *dd; 2642 dsl_dir_t *odd = NULL; 2643 uint64_t oldnext_obj; 2644 int64_t delta; 2645 #if (defined(__FreeBSD__) || defined(__NetBSD__)) && defined(_KERNEL) 2646 char *oldname, *newname; 2647 #endif 2648 2649 VERIFY0(promote_hold(ddpa, dp, FTAG)); 2650 hds = ddpa->ddpa_clone; 2651 2652 ASSERT0(dsl_dataset_phys(hds)->ds_flags & DS_FLAG_NOPROMOTE); 2653 2654 snap = list_head(&ddpa->shared_snaps); 2655 origin_ds = snap->ds; 2656 dd = hds->ds_dir; 2657 2658 snap = list_head(&ddpa->origin_snaps); 2659 origin_head = snap->ds; 2660 2661 /* 2662 * We need to explicitly open odd, since origin_ds's dd will be 2663 * changing. 2664 */ 2665 VERIFY0(dsl_dir_hold_obj(dp, origin_ds->ds_dir->dd_object, 2666 NULL, FTAG, &odd)); 2667 2668 /* change origin's next snap */ 2669 dmu_buf_will_dirty(origin_ds->ds_dbuf, tx); 2670 oldnext_obj = dsl_dataset_phys(origin_ds)->ds_next_snap_obj; 2671 snap = list_tail(&ddpa->clone_snaps); 2672 ASSERT3U(dsl_dataset_phys(snap->ds)->ds_prev_snap_obj, ==, 2673 origin_ds->ds_object); 2674 dsl_dataset_phys(origin_ds)->ds_next_snap_obj = snap->ds->ds_object; 2675 2676 /* change the origin's next clone */ 2677 if (dsl_dataset_phys(origin_ds)->ds_next_clones_obj) { 2678 dsl_dataset_remove_from_next_clones(origin_ds, 2679 snap->ds->ds_object, tx); 2680 VERIFY0(zap_add_int(dp->dp_meta_objset, 2681 dsl_dataset_phys(origin_ds)->ds_next_clones_obj, 2682 oldnext_obj, tx)); 2683 } 2684 2685 /* change origin */ 2686 dmu_buf_will_dirty(dd->dd_dbuf, tx); 2687 ASSERT3U(dsl_dir_phys(dd)->dd_origin_obj, ==, origin_ds->ds_object); 2688 dsl_dir_phys(dd)->dd_origin_obj = dsl_dir_phys(odd)->dd_origin_obj; 2689 dd->dd_origin_txg = origin_head->ds_dir->dd_origin_txg; 2690 dmu_buf_will_dirty(odd->dd_dbuf, tx); 2691 dsl_dir_phys(odd)->dd_origin_obj = origin_ds->ds_object; 2692 origin_head->ds_dir->dd_origin_txg = 2693 dsl_dataset_phys(origin_ds)->ds_creation_txg; 2694 2695 /* change dd_clone entries */ 2696 if (spa_version(dp->dp_spa) >= SPA_VERSION_DIR_CLONES) { 2697 VERIFY0(zap_remove_int(dp->dp_meta_objset, 2698 dsl_dir_phys(odd)->dd_clones, hds->ds_object, tx)); 2699 VERIFY0(zap_add_int(dp->dp_meta_objset, 2700 dsl_dir_phys(ddpa->origin_origin->ds_dir)->dd_clones, 2701 hds->ds_object, tx)); 2702 2703 VERIFY0(zap_remove_int(dp->dp_meta_objset, 2704 dsl_dir_phys(ddpa->origin_origin->ds_dir)->dd_clones, 2705 origin_head->ds_object, tx)); 2706 if (dsl_dir_phys(dd)->dd_clones == 0) { 2707 dsl_dir_phys(dd)->dd_clones = 2708 zap_create(dp->dp_meta_objset, DMU_OT_DSL_CLONES, 2709 DMU_OT_NONE, 0, tx); 2710 } 2711 VERIFY0(zap_add_int(dp->dp_meta_objset, 2712 dsl_dir_phys(dd)->dd_clones, origin_head->ds_object, tx)); 2713 } 2714 2715 #if (defined(__FreeBSD__) || defined(__NetBSD__)) && defined(_KERNEL) 2716 /* Take the spa_namespace_lock early so zvol renames don't deadlock. */ 2717 mutex_enter(&spa_namespace_lock); 2718 2719 oldname = kmem_alloc(MAXPATHLEN, KM_SLEEP); 2720 newname = kmem_alloc(MAXPATHLEN, KM_SLEEP); 2721 #endif 2722 2723 /* move snapshots to this dir */ 2724 for (snap = list_head(&ddpa->shared_snaps); snap; 2725 snap = list_next(&ddpa->shared_snaps, snap)) { 2726 dsl_dataset_t *ds = snap->ds; 2727 2728 /* 2729 * Property callbacks are registered to a particular 2730 * dsl_dir. Since ours is changing, evict the objset 2731 * so that they will be unregistered from the old dsl_dir. 2732 */ 2733 if (ds->ds_objset) { 2734 dmu_objset_evict(ds->ds_objset); 2735 ds->ds_objset = NULL; 2736 } 2737 2738 /* move snap name entry */ 2739 VERIFY0(dsl_dataset_get_snapname(ds)); 2740 VERIFY0(dsl_dataset_snap_remove(origin_head, 2741 ds->ds_snapname, tx, B_TRUE)); 2742 VERIFY0(zap_add(dp->dp_meta_objset, 2743 dsl_dataset_phys(hds)->ds_snapnames_zapobj, ds->ds_snapname, 2744 8, 1, &ds->ds_object, tx)); 2745 dsl_fs_ss_count_adjust(hds->ds_dir, 1, 2746 DD_FIELD_SNAPSHOT_COUNT, tx); 2747 2748 /* change containing dsl_dir */ 2749 dmu_buf_will_dirty(ds->ds_dbuf, tx); 2750 ASSERT3U(dsl_dataset_phys(ds)->ds_dir_obj, ==, odd->dd_object); 2751 dsl_dataset_phys(ds)->ds_dir_obj = dd->dd_object; 2752 ASSERT3P(ds->ds_dir, ==, odd); 2753 dsl_dir_rele(ds->ds_dir, ds); 2754 VERIFY0(dsl_dir_hold_obj(dp, dd->dd_object, 2755 NULL, ds, &ds->ds_dir)); 2756 2757 #if (defined(__FreeBSD__) || defined(__NetBSD__)) && defined(_KERNEL) 2758 dsl_dataset_name(ds, newname); 2759 zfsvfs_update_fromname(oldname, newname); 2760 zvol_rename_minors(oldname, newname); 2761 #endif 2762 2763 /* move any clone references */ 2764 if (dsl_dataset_phys(ds)->ds_next_clones_obj && 2765 spa_version(dp->dp_spa) >= SPA_VERSION_DIR_CLONES) { 2766 zap_cursor_t zc; 2767 zap_attribute_t za; 2768 2769 for (zap_cursor_init(&zc, dp->dp_meta_objset, 2770 dsl_dataset_phys(ds)->ds_next_clones_obj); 2771 zap_cursor_retrieve(&zc, &za) == 0; 2772 zap_cursor_advance(&zc)) { 2773 dsl_dataset_t *cnds; 2774 uint64_t o; 2775 2776 if (za.za_first_integer == oldnext_obj) { 2777 /* 2778 * We've already moved the 2779 * origin's reference. 2780 */ 2781 continue; 2782 } 2783 2784 VERIFY0(dsl_dataset_hold_obj(dp, 2785 za.za_first_integer, FTAG, &cnds)); 2786 o = dsl_dir_phys(cnds->ds_dir)-> 2787 dd_head_dataset_obj; 2788 2789 VERIFY0(zap_remove_int(dp->dp_meta_objset, 2790 dsl_dir_phys(odd)->dd_clones, o, tx)); 2791 VERIFY0(zap_add_int(dp->dp_meta_objset, 2792 dsl_dir_phys(dd)->dd_clones, o, tx)); 2793 dsl_dataset_rele(cnds, FTAG); 2794 } 2795 zap_cursor_fini(&zc); 2796 } 2797 2798 ASSERT(!dsl_prop_hascb(ds)); 2799 } 2800 2801 #if (defined(__FreeBSD__) || defined(__NetBSD__)) && defined(_KERNEL) 2802 mutex_exit(&spa_namespace_lock); 2803 2804 kmem_free(newname, MAXPATHLEN); 2805 kmem_free(oldname, MAXPATHLEN); 2806 #endif 2807 /* 2808 * Change space accounting. 2809 * Note, pa->*usedsnap and dd_used_breakdown[SNAP] will either 2810 * both be valid, or both be 0 (resulting in delta == 0). This 2811 * is true for each of {clone,origin} independently. 2812 */ 2813 2814 delta = ddpa->cloneusedsnap - 2815 dsl_dir_phys(dd)->dd_used_breakdown[DD_USED_SNAP]; 2816 ASSERT3S(delta, >=, 0); 2817 ASSERT3U(ddpa->used, >=, delta); 2818 dsl_dir_diduse_space(dd, DD_USED_SNAP, delta, 0, 0, tx); 2819 dsl_dir_diduse_space(dd, DD_USED_HEAD, 2820 ddpa->used - delta, ddpa->comp, ddpa->uncomp, tx); 2821 2822 delta = ddpa->originusedsnap - 2823 dsl_dir_phys(odd)->dd_used_breakdown[DD_USED_SNAP]; 2824 ASSERT3S(delta, <=, 0); 2825 ASSERT3U(ddpa->used, >=, -delta); 2826 dsl_dir_diduse_space(odd, DD_USED_SNAP, delta, 0, 0, tx); 2827 dsl_dir_diduse_space(odd, DD_USED_HEAD, 2828 -ddpa->used - delta, -ddpa->comp, -ddpa->uncomp, tx); 2829 2830 dsl_dataset_phys(origin_ds)->ds_unique_bytes = ddpa->unique; 2831 2832 /* log history record */ 2833 spa_history_log_internal_ds(hds, "promote", tx, ""); 2834 2835 dsl_dir_rele(odd, FTAG); 2836 promote_rele(ddpa, FTAG); 2837 } 2838 2839 /* 2840 * Make a list of dsl_dataset_t's for the snapshots between first_obj 2841 * (exclusive) and last_obj (inclusive). The list will be in reverse 2842 * order (last_obj will be the list_head()). If first_obj == 0, do all 2843 * snapshots back to this dataset's origin. 2844 */ 2845 static int 2846 snaplist_make(dsl_pool_t *dp, 2847 uint64_t first_obj, uint64_t last_obj, list_t *l, void *tag) 2848 { 2849 uint64_t obj = last_obj; 2850 2851 list_create(l, sizeof (struct promotenode), 2852 offsetof(struct promotenode, link)); 2853 2854 while (obj != first_obj) { 2855 dsl_dataset_t *ds; 2856 struct promotenode *snap; 2857 int err; 2858 2859 err = dsl_dataset_hold_obj(dp, obj, tag, &ds); 2860 ASSERT(err != ENOENT); 2861 if (err != 0) 2862 return (err); 2863 2864 if (first_obj == 0) 2865 first_obj = dsl_dir_phys(ds->ds_dir)->dd_origin_obj; 2866 2867 snap = kmem_alloc(sizeof (*snap), KM_SLEEP); 2868 snap->ds = ds; 2869 list_insert_tail(l, snap); 2870 obj = dsl_dataset_phys(ds)->ds_prev_snap_obj; 2871 } 2872 2873 return (0); 2874 } 2875 2876 static int 2877 snaplist_space(list_t *l, uint64_t mintxg, uint64_t *spacep) 2878 { 2879 struct promotenode *snap; 2880 2881 *spacep = 0; 2882 for (snap = list_head(l); snap; snap = list_next(l, snap)) { 2883 uint64_t used, comp, uncomp; 2884 dsl_deadlist_space_range(&snap->ds->ds_deadlist, 2885 mintxg, UINT64_MAX, &used, &comp, &uncomp); 2886 *spacep += used; 2887 } 2888 return (0); 2889 } 2890 2891 static void 2892 snaplist_destroy(list_t *l, void *tag) 2893 { 2894 struct promotenode *snap; 2895 2896 if (l == NULL || !list_link_active(&l->list_head)) 2897 return; 2898 2899 while ((snap = list_tail(l)) != NULL) { 2900 list_remove(l, snap); 2901 dsl_dataset_rele(snap->ds, tag); 2902 kmem_free(snap, sizeof (*snap)); 2903 } 2904 list_destroy(l); 2905 } 2906 2907 static int 2908 promote_hold(dsl_dataset_promote_arg_t *ddpa, dsl_pool_t *dp, void *tag) 2909 { 2910 int error; 2911 dsl_dir_t *dd; 2912 struct promotenode *snap; 2913 2914 error = dsl_dataset_hold(dp, ddpa->ddpa_clonename, tag, 2915 &ddpa->ddpa_clone); 2916 if (error != 0) 2917 return (error); 2918 dd = ddpa->ddpa_clone->ds_dir; 2919 2920 if (ddpa->ddpa_clone->ds_is_snapshot || 2921 !dsl_dir_is_clone(dd)) { 2922 dsl_dataset_rele(ddpa->ddpa_clone, tag); 2923 return (SET_ERROR(EINVAL)); 2924 } 2925 2926 error = snaplist_make(dp, 0, dsl_dir_phys(dd)->dd_origin_obj, 2927 &ddpa->shared_snaps, tag); 2928 if (error != 0) 2929 goto out; 2930 2931 error = snaplist_make(dp, 0, ddpa->ddpa_clone->ds_object, 2932 &ddpa->clone_snaps, tag); 2933 if (error != 0) 2934 goto out; 2935 2936 snap = list_head(&ddpa->shared_snaps); 2937 ASSERT3U(snap->ds->ds_object, ==, dsl_dir_phys(dd)->dd_origin_obj); 2938 error = snaplist_make(dp, dsl_dir_phys(dd)->dd_origin_obj, 2939 dsl_dir_phys(snap->ds->ds_dir)->dd_head_dataset_obj, 2940 &ddpa->origin_snaps, tag); 2941 if (error != 0) 2942 goto out; 2943 2944 if (dsl_dir_phys(snap->ds->ds_dir)->dd_origin_obj != 0) { 2945 error = dsl_dataset_hold_obj(dp, 2946 dsl_dir_phys(snap->ds->ds_dir)->dd_origin_obj, 2947 tag, &ddpa->origin_origin); 2948 if (error != 0) 2949 goto out; 2950 } 2951 out: 2952 if (error != 0) 2953 promote_rele(ddpa, tag); 2954 return (error); 2955 } 2956 2957 static void 2958 promote_rele(dsl_dataset_promote_arg_t *ddpa, void *tag) 2959 { 2960 snaplist_destroy(&ddpa->shared_snaps, tag); 2961 snaplist_destroy(&ddpa->clone_snaps, tag); 2962 snaplist_destroy(&ddpa->origin_snaps, tag); 2963 if (ddpa->origin_origin != NULL) 2964 dsl_dataset_rele(ddpa->origin_origin, tag); 2965 dsl_dataset_rele(ddpa->ddpa_clone, tag); 2966 } 2967 2968 /* 2969 * Promote a clone. 2970 * 2971 * If it fails due to a conflicting snapshot name, "conflsnap" will be filled 2972 * in with the name. (It must be at least ZFS_MAX_DATASET_NAME_LEN bytes long.) 2973 */ 2974 int 2975 dsl_dataset_promote(const char *name, char *conflsnap) 2976 { 2977 dsl_dataset_promote_arg_t ddpa = { 0 }; 2978 uint64_t numsnaps; 2979 int error; 2980 objset_t *os; 2981 2982 /* 2983 * We will modify space proportional to the number of 2984 * snapshots. Compute numsnaps. 2985 */ 2986 error = dmu_objset_hold(name, FTAG, &os); 2987 if (error != 0) 2988 return (error); 2989 error = zap_count(dmu_objset_pool(os)->dp_meta_objset, 2990 dsl_dataset_phys(dmu_objset_ds(os))->ds_snapnames_zapobj, 2991 &numsnaps); 2992 dmu_objset_rele(os, FTAG); 2993 if (error != 0) 2994 return (error); 2995 2996 ddpa.ddpa_clonename = name; 2997 ddpa.err_ds = conflsnap; 2998 ddpa.cr = CRED(); 2999 3000 return (dsl_sync_task(name, dsl_dataset_promote_check, 3001 dsl_dataset_promote_sync, &ddpa, 3002 2 + numsnaps, ZFS_SPACE_CHECK_RESERVED)); 3003 } 3004 3005 int 3006 dsl_dataset_clone_swap_check_impl(dsl_dataset_t *clone, 3007 dsl_dataset_t *origin_head, boolean_t force, void *owner, dmu_tx_t *tx) 3008 { 3009 /* 3010 * "slack" factor for received datasets with refquota set on them. 3011 * See the bottom of this function for details on its use. 3012 */ 3013 uint64_t refquota_slack = DMU_MAX_ACCESS * spa_asize_inflation; 3014 int64_t unused_refres_delta; 3015 3016 /* they should both be heads */ 3017 if (clone->ds_is_snapshot || 3018 origin_head->ds_is_snapshot) 3019 return (SET_ERROR(EINVAL)); 3020 3021 /* if we are not forcing, the branch point should be just before them */ 3022 if (!force && clone->ds_prev != origin_head->ds_prev) 3023 return (SET_ERROR(EINVAL)); 3024 3025 /* clone should be the clone (unless they are unrelated) */ 3026 if (clone->ds_prev != NULL && 3027 clone->ds_prev != clone->ds_dir->dd_pool->dp_origin_snap && 3028 origin_head->ds_dir != clone->ds_prev->ds_dir) 3029 return (SET_ERROR(EINVAL)); 3030 3031 /* the clone should be a child of the origin */ 3032 if (clone->ds_dir->dd_parent != origin_head->ds_dir) 3033 return (SET_ERROR(EINVAL)); 3034 3035 /* origin_head shouldn't be modified unless 'force' */ 3036 if (!force && 3037 dsl_dataset_modified_since_snap(origin_head, origin_head->ds_prev)) 3038 return (SET_ERROR(ETXTBSY)); 3039 3040 /* origin_head should have no long holds (e.g. is not mounted) */ 3041 if (dsl_dataset_handoff_check(origin_head, owner, tx)) 3042 return (SET_ERROR(EBUSY)); 3043 3044 /* check amount of any unconsumed refreservation */ 3045 unused_refres_delta = 3046 (int64_t)MIN(origin_head->ds_reserved, 3047 dsl_dataset_phys(origin_head)->ds_unique_bytes) - 3048 (int64_t)MIN(origin_head->ds_reserved, 3049 dsl_dataset_phys(clone)->ds_unique_bytes); 3050 3051 if (unused_refres_delta > 0 && 3052 unused_refres_delta > 3053 dsl_dir_space_available(origin_head->ds_dir, NULL, 0, TRUE)) 3054 return (SET_ERROR(ENOSPC)); 3055 3056 /* 3057 * The clone can't be too much over the head's refquota. 3058 * 3059 * To ensure that the entire refquota can be used, we allow one 3060 * transaction to exceed the the refquota. Therefore, this check 3061 * needs to also allow for the space referenced to be more than the 3062 * refquota. The maximum amount of space that one transaction can use 3063 * on disk is DMU_MAX_ACCESS * spa_asize_inflation. Allowing this 3064 * overage ensures that we are able to receive a filesystem that 3065 * exceeds the refquota on the source system. 3066 * 3067 * So that overage is the refquota_slack we use below. 3068 */ 3069 if (origin_head->ds_quota != 0 && 3070 dsl_dataset_phys(clone)->ds_referenced_bytes > 3071 origin_head->ds_quota + refquota_slack) 3072 return (SET_ERROR(EDQUOT)); 3073 3074 return (0); 3075 } 3076 3077 void 3078 dsl_dataset_clone_swap_sync_impl(dsl_dataset_t *clone, 3079 dsl_dataset_t *origin_head, dmu_tx_t *tx) 3080 { 3081 dsl_pool_t *dp = dmu_tx_pool(tx); 3082 int64_t unused_refres_delta; 3083 3084 ASSERT(clone->ds_reserved == 0); 3085 /* 3086 * NOTE: On DEBUG kernels there could be a race between this and 3087 * the check function if spa_asize_inflation is adjusted... 3088 */ 3089 ASSERT(origin_head->ds_quota == 0 || 3090 dsl_dataset_phys(clone)->ds_unique_bytes <= origin_head->ds_quota + 3091 DMU_MAX_ACCESS * spa_asize_inflation); 3092 ASSERT3P(clone->ds_prev, ==, origin_head->ds_prev); 3093 3094 /* 3095 * Swap per-dataset feature flags. 3096 */ 3097 for (spa_feature_t f = 0; f < SPA_FEATURES; f++) { 3098 if (!(spa_feature_table[f].fi_flags & 3099 ZFEATURE_FLAG_PER_DATASET)) { 3100 ASSERT(!clone->ds_feature_inuse[f]); 3101 ASSERT(!origin_head->ds_feature_inuse[f]); 3102 continue; 3103 } 3104 3105 boolean_t clone_inuse = clone->ds_feature_inuse[f]; 3106 boolean_t origin_head_inuse = origin_head->ds_feature_inuse[f]; 3107 3108 if (clone_inuse) { 3109 dsl_dataset_deactivate_feature(clone->ds_object, f, tx); 3110 clone->ds_feature_inuse[f] = B_FALSE; 3111 } 3112 if (origin_head_inuse) { 3113 dsl_dataset_deactivate_feature(origin_head->ds_object, 3114 f, tx); 3115 origin_head->ds_feature_inuse[f] = B_FALSE; 3116 } 3117 if (clone_inuse) { 3118 dsl_dataset_activate_feature(origin_head->ds_object, 3119 f, tx); 3120 origin_head->ds_feature_inuse[f] = B_TRUE; 3121 } 3122 if (origin_head_inuse) { 3123 dsl_dataset_activate_feature(clone->ds_object, f, tx); 3124 clone->ds_feature_inuse[f] = B_TRUE; 3125 } 3126 } 3127 3128 dmu_buf_will_dirty(clone->ds_dbuf, tx); 3129 dmu_buf_will_dirty(origin_head->ds_dbuf, tx); 3130 3131 if (clone->ds_objset != NULL) { 3132 dmu_objset_evict(clone->ds_objset); 3133 clone->ds_objset = NULL; 3134 } 3135 3136 if (origin_head->ds_objset != NULL) { 3137 dmu_objset_evict(origin_head->ds_objset); 3138 origin_head->ds_objset = NULL; 3139 } 3140 3141 unused_refres_delta = 3142 (int64_t)MIN(origin_head->ds_reserved, 3143 dsl_dataset_phys(origin_head)->ds_unique_bytes) - 3144 (int64_t)MIN(origin_head->ds_reserved, 3145 dsl_dataset_phys(clone)->ds_unique_bytes); 3146 3147 /* 3148 * Reset origin's unique bytes, if it exists. 3149 */ 3150 if (clone->ds_prev) { 3151 dsl_dataset_t *origin = clone->ds_prev; 3152 uint64_t comp, uncomp; 3153 3154 dmu_buf_will_dirty(origin->ds_dbuf, tx); 3155 dsl_deadlist_space_range(&clone->ds_deadlist, 3156 dsl_dataset_phys(origin)->ds_prev_snap_txg, UINT64_MAX, 3157 &dsl_dataset_phys(origin)->ds_unique_bytes, &comp, &uncomp); 3158 } 3159 3160 /* swap blkptrs */ 3161 { 3162 rrw_enter(&clone->ds_bp_rwlock, RW_WRITER, FTAG); 3163 rrw_enter(&origin_head->ds_bp_rwlock, RW_WRITER, FTAG); 3164 blkptr_t tmp; 3165 tmp = dsl_dataset_phys(origin_head)->ds_bp; 3166 dsl_dataset_phys(origin_head)->ds_bp = 3167 dsl_dataset_phys(clone)->ds_bp; 3168 dsl_dataset_phys(clone)->ds_bp = tmp; 3169 rrw_exit(&origin_head->ds_bp_rwlock, FTAG); 3170 rrw_exit(&clone->ds_bp_rwlock, FTAG); 3171 } 3172 3173 /* set dd_*_bytes */ 3174 { 3175 int64_t dused, dcomp, duncomp; 3176 uint64_t cdl_used, cdl_comp, cdl_uncomp; 3177 uint64_t odl_used, odl_comp, odl_uncomp; 3178 3179 ASSERT3U(dsl_dir_phys(clone->ds_dir)-> 3180 dd_used_breakdown[DD_USED_SNAP], ==, 0); 3181 3182 dsl_deadlist_space(&clone->ds_deadlist, 3183 &cdl_used, &cdl_comp, &cdl_uncomp); 3184 dsl_deadlist_space(&origin_head->ds_deadlist, 3185 &odl_used, &odl_comp, &odl_uncomp); 3186 3187 dused = dsl_dataset_phys(clone)->ds_referenced_bytes + 3188 cdl_used - 3189 (dsl_dataset_phys(origin_head)->ds_referenced_bytes + 3190 odl_used); 3191 dcomp = dsl_dataset_phys(clone)->ds_compressed_bytes + 3192 cdl_comp - 3193 (dsl_dataset_phys(origin_head)->ds_compressed_bytes + 3194 odl_comp); 3195 duncomp = dsl_dataset_phys(clone)->ds_uncompressed_bytes + 3196 cdl_uncomp - 3197 (dsl_dataset_phys(origin_head)->ds_uncompressed_bytes + 3198 odl_uncomp); 3199 3200 dsl_dir_diduse_space(origin_head->ds_dir, DD_USED_HEAD, 3201 dused, dcomp, duncomp, tx); 3202 dsl_dir_diduse_space(clone->ds_dir, DD_USED_HEAD, 3203 -dused, -dcomp, -duncomp, tx); 3204 3205 /* 3206 * The difference in the space used by snapshots is the 3207 * difference in snapshot space due to the head's 3208 * deadlist (since that's the only thing that's 3209 * changing that affects the snapused). 3210 */ 3211 dsl_deadlist_space_range(&clone->ds_deadlist, 3212 origin_head->ds_dir->dd_origin_txg, UINT64_MAX, 3213 &cdl_used, &cdl_comp, &cdl_uncomp); 3214 dsl_deadlist_space_range(&origin_head->ds_deadlist, 3215 origin_head->ds_dir->dd_origin_txg, UINT64_MAX, 3216 &odl_used, &odl_comp, &odl_uncomp); 3217 dsl_dir_transfer_space(origin_head->ds_dir, cdl_used - odl_used, 3218 DD_USED_HEAD, DD_USED_SNAP, NULL); 3219 } 3220 3221 /* swap ds_*_bytes */ 3222 SWITCH64(dsl_dataset_phys(origin_head)->ds_referenced_bytes, 3223 dsl_dataset_phys(clone)->ds_referenced_bytes); 3224 SWITCH64(dsl_dataset_phys(origin_head)->ds_compressed_bytes, 3225 dsl_dataset_phys(clone)->ds_compressed_bytes); 3226 SWITCH64(dsl_dataset_phys(origin_head)->ds_uncompressed_bytes, 3227 dsl_dataset_phys(clone)->ds_uncompressed_bytes); 3228 SWITCH64(dsl_dataset_phys(origin_head)->ds_unique_bytes, 3229 dsl_dataset_phys(clone)->ds_unique_bytes); 3230 3231 /* apply any parent delta for change in unconsumed refreservation */ 3232 dsl_dir_diduse_space(origin_head->ds_dir, DD_USED_REFRSRV, 3233 unused_refres_delta, 0, 0, tx); 3234 3235 /* 3236 * Swap deadlists. 3237 */ 3238 dsl_deadlist_close(&clone->ds_deadlist); 3239 dsl_deadlist_close(&origin_head->ds_deadlist); 3240 SWITCH64(dsl_dataset_phys(origin_head)->ds_deadlist_obj, 3241 dsl_dataset_phys(clone)->ds_deadlist_obj); 3242 dsl_deadlist_open(&clone->ds_deadlist, dp->dp_meta_objset, 3243 dsl_dataset_phys(clone)->ds_deadlist_obj); 3244 dsl_deadlist_open(&origin_head->ds_deadlist, dp->dp_meta_objset, 3245 dsl_dataset_phys(origin_head)->ds_deadlist_obj); 3246 3247 dsl_scan_ds_clone_swapped(origin_head, clone, tx); 3248 3249 spa_history_log_internal_ds(clone, "clone swap", tx, 3250 "parent=%s", origin_head->ds_dir->dd_myname); 3251 } 3252 3253 /* 3254 * Given a pool name and a dataset object number in that pool, 3255 * return the name of that dataset. 3256 */ 3257 int 3258 dsl_dsobj_to_dsname(char *pname, uint64_t obj, char *buf) 3259 { 3260 dsl_pool_t *dp; 3261 dsl_dataset_t *ds; 3262 int error; 3263 3264 error = dsl_pool_hold(pname, FTAG, &dp); 3265 if (error != 0) 3266 return (error); 3267 3268 error = dsl_dataset_hold_obj(dp, obj, FTAG, &ds); 3269 if (error == 0) { 3270 dsl_dataset_name(ds, buf); 3271 dsl_dataset_rele(ds, FTAG); 3272 } 3273 dsl_pool_rele(dp, FTAG); 3274 3275 return (error); 3276 } 3277 3278 int 3279 dsl_dataset_check_quota(dsl_dataset_t *ds, boolean_t check_quota, 3280 uint64_t asize, uint64_t inflight, uint64_t *used, uint64_t *ref_rsrv) 3281 { 3282 int error = 0; 3283 3284 ASSERT3S(asize, >, 0); 3285 3286 /* 3287 * *ref_rsrv is the portion of asize that will come from any 3288 * unconsumed refreservation space. 3289 */ 3290 *ref_rsrv = 0; 3291 3292 mutex_enter(&ds->ds_lock); 3293 /* 3294 * Make a space adjustment for reserved bytes. 3295 */ 3296 if (ds->ds_reserved > dsl_dataset_phys(ds)->ds_unique_bytes) { 3297 ASSERT3U(*used, >=, 3298 ds->ds_reserved - dsl_dataset_phys(ds)->ds_unique_bytes); 3299 *used -= 3300 (ds->ds_reserved - dsl_dataset_phys(ds)->ds_unique_bytes); 3301 *ref_rsrv = 3302 asize - MIN(asize, parent_delta(ds, asize + inflight)); 3303 } 3304 3305 if (!check_quota || ds->ds_quota == 0) { 3306 mutex_exit(&ds->ds_lock); 3307 return (0); 3308 } 3309 /* 3310 * If they are requesting more space, and our current estimate 3311 * is over quota, they get to try again unless the actual 3312 * on-disk is over quota and there are no pending changes (which 3313 * may free up space for us). 3314 */ 3315 if (dsl_dataset_phys(ds)->ds_referenced_bytes + inflight >= 3316 ds->ds_quota) { 3317 if (inflight > 0 || 3318 dsl_dataset_phys(ds)->ds_referenced_bytes < ds->ds_quota) 3319 error = SET_ERROR(ERESTART); 3320 else 3321 error = SET_ERROR(EDQUOT); 3322 } 3323 mutex_exit(&ds->ds_lock); 3324 3325 return (error); 3326 } 3327 3328 typedef struct dsl_dataset_set_qr_arg { 3329 const char *ddsqra_name; 3330 zprop_source_t ddsqra_source; 3331 uint64_t ddsqra_value; 3332 } dsl_dataset_set_qr_arg_t; 3333 3334 3335 /* ARGSUSED */ 3336 static int 3337 dsl_dataset_set_refquota_check(void *arg, dmu_tx_t *tx) 3338 { 3339 dsl_dataset_set_qr_arg_t *ddsqra = arg; 3340 dsl_pool_t *dp = dmu_tx_pool(tx); 3341 dsl_dataset_t *ds; 3342 int error; 3343 uint64_t newval; 3344 3345 if (spa_version(dp->dp_spa) < SPA_VERSION_REFQUOTA) 3346 return (SET_ERROR(ENOTSUP)); 3347 3348 error = dsl_dataset_hold(dp, ddsqra->ddsqra_name, FTAG, &ds); 3349 if (error != 0) 3350 return (error); 3351 3352 if (ds->ds_is_snapshot) { 3353 dsl_dataset_rele(ds, FTAG); 3354 return (SET_ERROR(EINVAL)); 3355 } 3356 3357 error = dsl_prop_predict(ds->ds_dir, 3358 zfs_prop_to_name(ZFS_PROP_REFQUOTA), 3359 ddsqra->ddsqra_source, ddsqra->ddsqra_value, &newval); 3360 if (error != 0) { 3361 dsl_dataset_rele(ds, FTAG); 3362 return (error); 3363 } 3364 3365 if (newval == 0) { 3366 dsl_dataset_rele(ds, FTAG); 3367 return (0); 3368 } 3369 3370 if (newval < dsl_dataset_phys(ds)->ds_referenced_bytes || 3371 newval < ds->ds_reserved) { 3372 dsl_dataset_rele(ds, FTAG); 3373 return (SET_ERROR(ENOSPC)); 3374 } 3375 3376 dsl_dataset_rele(ds, FTAG); 3377 return (0); 3378 } 3379 3380 static void 3381 dsl_dataset_set_refquota_sync(void *arg, dmu_tx_t *tx) 3382 { 3383 dsl_dataset_set_qr_arg_t *ddsqra = arg; 3384 dsl_pool_t *dp = dmu_tx_pool(tx); 3385 dsl_dataset_t *ds; 3386 uint64_t newval; 3387 3388 VERIFY0(dsl_dataset_hold(dp, ddsqra->ddsqra_name, FTAG, &ds)); 3389 3390 dsl_prop_set_sync_impl(ds, 3391 zfs_prop_to_name(ZFS_PROP_REFQUOTA), 3392 ddsqra->ddsqra_source, sizeof (ddsqra->ddsqra_value), 1, 3393 &ddsqra->ddsqra_value, tx); 3394 3395 VERIFY0(dsl_prop_get_int_ds(ds, 3396 zfs_prop_to_name(ZFS_PROP_REFQUOTA), &newval)); 3397 3398 if (ds->ds_quota != newval) { 3399 dmu_buf_will_dirty(ds->ds_dbuf, tx); 3400 ds->ds_quota = newval; 3401 } 3402 dsl_dataset_rele(ds, FTAG); 3403 } 3404 3405 int 3406 dsl_dataset_set_refquota(const char *dsname, zprop_source_t source, 3407 uint64_t refquota) 3408 { 3409 dsl_dataset_set_qr_arg_t ddsqra; 3410 3411 ddsqra.ddsqra_name = dsname; 3412 ddsqra.ddsqra_source = source; 3413 ddsqra.ddsqra_value = refquota; 3414 3415 return (dsl_sync_task(dsname, dsl_dataset_set_refquota_check, 3416 dsl_dataset_set_refquota_sync, &ddsqra, 0, ZFS_SPACE_CHECK_NONE)); 3417 } 3418 3419 static int 3420 dsl_dataset_set_refreservation_check(void *arg, dmu_tx_t *tx) 3421 { 3422 dsl_dataset_set_qr_arg_t *ddsqra = arg; 3423 dsl_pool_t *dp = dmu_tx_pool(tx); 3424 dsl_dataset_t *ds; 3425 int error; 3426 uint64_t newval, unique; 3427 3428 if (spa_version(dp->dp_spa) < SPA_VERSION_REFRESERVATION) 3429 return (SET_ERROR(ENOTSUP)); 3430 3431 error = dsl_dataset_hold(dp, ddsqra->ddsqra_name, FTAG, &ds); 3432 if (error != 0) 3433 return (error); 3434 3435 if (ds->ds_is_snapshot) { 3436 dsl_dataset_rele(ds, FTAG); 3437 return (SET_ERROR(EINVAL)); 3438 } 3439 3440 error = dsl_prop_predict(ds->ds_dir, 3441 zfs_prop_to_name(ZFS_PROP_REFRESERVATION), 3442 ddsqra->ddsqra_source, ddsqra->ddsqra_value, &newval); 3443 if (error != 0) { 3444 dsl_dataset_rele(ds, FTAG); 3445 return (error); 3446 } 3447 3448 /* 3449 * If we are doing the preliminary check in open context, the 3450 * space estimates may be inaccurate. 3451 */ 3452 if (!dmu_tx_is_syncing(tx)) { 3453 dsl_dataset_rele(ds, FTAG); 3454 return (0); 3455 } 3456 3457 mutex_enter(&ds->ds_lock); 3458 if (!DS_UNIQUE_IS_ACCURATE(ds)) 3459 dsl_dataset_recalc_head_uniq(ds); 3460 unique = dsl_dataset_phys(ds)->ds_unique_bytes; 3461 mutex_exit(&ds->ds_lock); 3462 3463 if (MAX(unique, newval) > MAX(unique, ds->ds_reserved)) { 3464 uint64_t delta = MAX(unique, newval) - 3465 MAX(unique, ds->ds_reserved); 3466 3467 if (delta > 3468 dsl_dir_space_available(ds->ds_dir, NULL, 0, B_TRUE) || 3469 (ds->ds_quota > 0 && newval > ds->ds_quota)) { 3470 dsl_dataset_rele(ds, FTAG); 3471 return (SET_ERROR(ENOSPC)); 3472 } 3473 } 3474 3475 dsl_dataset_rele(ds, FTAG); 3476 return (0); 3477 } 3478 3479 void 3480 dsl_dataset_set_refreservation_sync_impl(dsl_dataset_t *ds, 3481 zprop_source_t source, uint64_t value, dmu_tx_t *tx) 3482 { 3483 uint64_t newval; 3484 uint64_t unique; 3485 int64_t delta; 3486 3487 dsl_prop_set_sync_impl(ds, zfs_prop_to_name(ZFS_PROP_REFRESERVATION), 3488 source, sizeof (value), 1, &value, tx); 3489 3490 VERIFY0(dsl_prop_get_int_ds(ds, 3491 zfs_prop_to_name(ZFS_PROP_REFRESERVATION), &newval)); 3492 3493 dmu_buf_will_dirty(ds->ds_dbuf, tx); 3494 mutex_enter(&ds->ds_dir->dd_lock); 3495 mutex_enter(&ds->ds_lock); 3496 ASSERT(DS_UNIQUE_IS_ACCURATE(ds)); 3497 unique = dsl_dataset_phys(ds)->ds_unique_bytes; 3498 delta = MAX(0, (int64_t)(newval - unique)) - 3499 MAX(0, (int64_t)(ds->ds_reserved - unique)); 3500 ds->ds_reserved = newval; 3501 mutex_exit(&ds->ds_lock); 3502 3503 dsl_dir_diduse_space(ds->ds_dir, DD_USED_REFRSRV, delta, 0, 0, tx); 3504 mutex_exit(&ds->ds_dir->dd_lock); 3505 } 3506 3507 static void 3508 dsl_dataset_set_refreservation_sync(void *arg, dmu_tx_t *tx) 3509 { 3510 dsl_dataset_set_qr_arg_t *ddsqra = arg; 3511 dsl_pool_t *dp = dmu_tx_pool(tx); 3512 dsl_dataset_t *ds; 3513 3514 VERIFY0(dsl_dataset_hold(dp, ddsqra->ddsqra_name, FTAG, &ds)); 3515 dsl_dataset_set_refreservation_sync_impl(ds, 3516 ddsqra->ddsqra_source, ddsqra->ddsqra_value, tx); 3517 dsl_dataset_rele(ds, FTAG); 3518 } 3519 3520 int 3521 dsl_dataset_set_refreservation(const char *dsname, zprop_source_t source, 3522 uint64_t refreservation) 3523 { 3524 dsl_dataset_set_qr_arg_t ddsqra; 3525 3526 ddsqra.ddsqra_name = dsname; 3527 ddsqra.ddsqra_source = source; 3528 ddsqra.ddsqra_value = refreservation; 3529 3530 return (dsl_sync_task(dsname, dsl_dataset_set_refreservation_check, 3531 dsl_dataset_set_refreservation_sync, &ddsqra, 3532 0, ZFS_SPACE_CHECK_NONE)); 3533 } 3534 3535 /* 3536 * Return (in *usedp) the amount of space written in new that is not 3537 * present in oldsnap. New may be a snapshot or the head. Old must be 3538 * a snapshot before new, in new's filesystem (or its origin). If not then 3539 * fail and return EINVAL. 3540 * 3541 * The written space is calculated by considering two components: First, we 3542 * ignore any freed space, and calculate the written as new's used space 3543 * minus old's used space. Next, we add in the amount of space that was freed 3544 * between the two snapshots, thus reducing new's used space relative to old's. 3545 * Specifically, this is the space that was born before old->ds_creation_txg, 3546 * and freed before new (ie. on new's deadlist or a previous deadlist). 3547 * 3548 * space freed [---------------------] 3549 * snapshots ---O-------O--------O-------O------ 3550 * oldsnap new 3551 */ 3552 int 3553 dsl_dataset_space_written(dsl_dataset_t *oldsnap, dsl_dataset_t *new, 3554 uint64_t *usedp, uint64_t *compp, uint64_t *uncompp) 3555 { 3556 int err = 0; 3557 uint64_t snapobj; 3558 dsl_pool_t *dp = new->ds_dir->dd_pool; 3559 3560 ASSERT(dsl_pool_config_held(dp)); 3561 3562 *usedp = 0; 3563 *usedp += dsl_dataset_phys(new)->ds_referenced_bytes; 3564 *usedp -= dsl_dataset_phys(oldsnap)->ds_referenced_bytes; 3565 3566 *compp = 0; 3567 *compp += dsl_dataset_phys(new)->ds_compressed_bytes; 3568 *compp -= dsl_dataset_phys(oldsnap)->ds_compressed_bytes; 3569 3570 *uncompp = 0; 3571 *uncompp += dsl_dataset_phys(new)->ds_uncompressed_bytes; 3572 *uncompp -= dsl_dataset_phys(oldsnap)->ds_uncompressed_bytes; 3573 3574 snapobj = new->ds_object; 3575 while (snapobj != oldsnap->ds_object) { 3576 dsl_dataset_t *snap; 3577 uint64_t used, comp, uncomp; 3578 3579 if (snapobj == new->ds_object) { 3580 snap = new; 3581 } else { 3582 err = dsl_dataset_hold_obj(dp, snapobj, FTAG, &snap); 3583 if (err != 0) 3584 break; 3585 } 3586 3587 if (dsl_dataset_phys(snap)->ds_prev_snap_txg == 3588 dsl_dataset_phys(oldsnap)->ds_creation_txg) { 3589 /* 3590 * The blocks in the deadlist can not be born after 3591 * ds_prev_snap_txg, so get the whole deadlist space, 3592 * which is more efficient (especially for old-format 3593 * deadlists). Unfortunately the deadlist code 3594 * doesn't have enough information to make this 3595 * optimization itself. 3596 */ 3597 dsl_deadlist_space(&snap->ds_deadlist, 3598 &used, &comp, &uncomp); 3599 } else { 3600 dsl_deadlist_space_range(&snap->ds_deadlist, 3601 0, dsl_dataset_phys(oldsnap)->ds_creation_txg, 3602 &used, &comp, &uncomp); 3603 } 3604 *usedp += used; 3605 *compp += comp; 3606 *uncompp += uncomp; 3607 3608 /* 3609 * If we get to the beginning of the chain of snapshots 3610 * (ds_prev_snap_obj == 0) before oldsnap, then oldsnap 3611 * was not a snapshot of/before new. 3612 */ 3613 snapobj = dsl_dataset_phys(snap)->ds_prev_snap_obj; 3614 if (snap != new) 3615 dsl_dataset_rele(snap, FTAG); 3616 if (snapobj == 0) { 3617 err = SET_ERROR(EINVAL); 3618 break; 3619 } 3620 3621 } 3622 return (err); 3623 } 3624 3625 /* 3626 * Return (in *usedp) the amount of space that will be reclaimed if firstsnap, 3627 * lastsnap, and all snapshots in between are deleted. 3628 * 3629 * blocks that would be freed [---------------------------] 3630 * snapshots ---O-------O--------O-------O--------O 3631 * firstsnap lastsnap 3632 * 3633 * This is the set of blocks that were born after the snap before firstsnap, 3634 * (birth > firstsnap->prev_snap_txg) and died before the snap after the 3635 * last snap (ie, is on lastsnap->ds_next->ds_deadlist or an earlier deadlist). 3636 * We calculate this by iterating over the relevant deadlists (from the snap 3637 * after lastsnap, backward to the snap after firstsnap), summing up the 3638 * space on the deadlist that was born after the snap before firstsnap. 3639 */ 3640 int 3641 dsl_dataset_space_wouldfree(dsl_dataset_t *firstsnap, 3642 dsl_dataset_t *lastsnap, 3643 uint64_t *usedp, uint64_t *compp, uint64_t *uncompp) 3644 { 3645 int err = 0; 3646 uint64_t snapobj; 3647 dsl_pool_t *dp = firstsnap->ds_dir->dd_pool; 3648 3649 ASSERT(firstsnap->ds_is_snapshot); 3650 ASSERT(lastsnap->ds_is_snapshot); 3651 3652 /* 3653 * Check that the snapshots are in the same dsl_dir, and firstsnap 3654 * is before lastsnap. 3655 */ 3656 if (firstsnap->ds_dir != lastsnap->ds_dir || 3657 dsl_dataset_phys(firstsnap)->ds_creation_txg > 3658 dsl_dataset_phys(lastsnap)->ds_creation_txg) 3659 return (SET_ERROR(EINVAL)); 3660 3661 *usedp = *compp = *uncompp = 0; 3662 3663 snapobj = dsl_dataset_phys(lastsnap)->ds_next_snap_obj; 3664 while (snapobj != firstsnap->ds_object) { 3665 dsl_dataset_t *ds; 3666 uint64_t used, comp, uncomp; 3667 3668 err = dsl_dataset_hold_obj(dp, snapobj, FTAG, &ds); 3669 if (err != 0) 3670 break; 3671 3672 dsl_deadlist_space_range(&ds->ds_deadlist, 3673 dsl_dataset_phys(firstsnap)->ds_prev_snap_txg, UINT64_MAX, 3674 &used, &comp, &uncomp); 3675 *usedp += used; 3676 *compp += comp; 3677 *uncompp += uncomp; 3678 3679 snapobj = dsl_dataset_phys(ds)->ds_prev_snap_obj; 3680 ASSERT3U(snapobj, !=, 0); 3681 dsl_dataset_rele(ds, FTAG); 3682 } 3683 return (err); 3684 } 3685 3686 /* 3687 * Return TRUE if 'earlier' is an earlier snapshot in 'later's timeline. 3688 * For example, they could both be snapshots of the same filesystem, and 3689 * 'earlier' is before 'later'. Or 'earlier' could be the origin of 3690 * 'later's filesystem. Or 'earlier' could be an older snapshot in the origin's 3691 * filesystem. Or 'earlier' could be the origin's origin. 3692 * 3693 * If non-zero, earlier_txg is used instead of earlier's ds_creation_txg. 3694 */ 3695 boolean_t 3696 dsl_dataset_is_before(dsl_dataset_t *later, dsl_dataset_t *earlier, 3697 uint64_t earlier_txg) 3698 { 3699 dsl_pool_t *dp = later->ds_dir->dd_pool; 3700 int error; 3701 boolean_t ret; 3702 3703 ASSERT(dsl_pool_config_held(dp)); 3704 ASSERT(earlier->ds_is_snapshot || earlier_txg != 0); 3705 3706 if (earlier_txg == 0) 3707 earlier_txg = dsl_dataset_phys(earlier)->ds_creation_txg; 3708 3709 if (later->ds_is_snapshot && 3710 earlier_txg >= dsl_dataset_phys(later)->ds_creation_txg) 3711 return (B_FALSE); 3712 3713 if (later->ds_dir == earlier->ds_dir) 3714 return (B_TRUE); 3715 if (!dsl_dir_is_clone(later->ds_dir)) 3716 return (B_FALSE); 3717 3718 if (dsl_dir_phys(later->ds_dir)->dd_origin_obj == earlier->ds_object) 3719 return (B_TRUE); 3720 dsl_dataset_t *origin; 3721 error = dsl_dataset_hold_obj(dp, 3722 dsl_dir_phys(later->ds_dir)->dd_origin_obj, FTAG, &origin); 3723 if (error != 0) 3724 return (B_FALSE); 3725 ret = dsl_dataset_is_before(origin, earlier, earlier_txg); 3726 dsl_dataset_rele(origin, FTAG); 3727 return (ret); 3728 } 3729 3730 void 3731 dsl_dataset_zapify(dsl_dataset_t *ds, dmu_tx_t *tx) 3732 { 3733 objset_t *mos = ds->ds_dir->dd_pool->dp_meta_objset; 3734 dmu_object_zapify(mos, ds->ds_object, DMU_OT_DSL_DATASET, tx); 3735 } 3736 3737 boolean_t 3738 dsl_dataset_is_zapified(dsl_dataset_t *ds) 3739 { 3740 dmu_object_info_t doi; 3741 3742 dmu_object_info_from_db(ds->ds_dbuf, &doi); 3743 return (doi.doi_type == DMU_OTN_ZAP_METADATA); 3744 } 3745 3746 boolean_t 3747 dsl_dataset_has_resume_receive_state(dsl_dataset_t *ds) 3748 { 3749 return (dsl_dataset_is_zapified(ds) && 3750 zap_contains(ds->ds_dir->dd_pool->dp_meta_objset, 3751 ds->ds_object, DS_FIELD_RESUME_TOGUID) == 0); 3752 } 3753