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 */ 24 25 #include <sys/cred.h> 26 #include <sys/zfs_context.h> 27 #include <sys/dmu_objset.h> 28 #include <sys/dsl_dir.h> 29 #include <sys/dsl_dataset.h> 30 #include <sys/dsl_prop.h> 31 #include <sys/dsl_pool.h> 32 #include <sys/dsl_synctask.h> 33 #include <sys/dsl_deleg.h> 34 #include <sys/dnode.h> 35 #include <sys/dbuf.h> 36 #include <sys/zvol.h> 37 #include <sys/dmu_tx.h> 38 #include <sys/zap.h> 39 #include <sys/zil.h> 40 #include <sys/dmu_impl.h> 41 #include <sys/zfs_ioctl.h> 42 #include <sys/sunddi.h> 43 #include <sys/sa.h> 44 45 spa_t * 46 dmu_objset_spa(objset_t *os) 47 { 48 return (os->os_spa); 49 } 50 51 zilog_t * 52 dmu_objset_zil(objset_t *os) 53 { 54 return (os->os_zil); 55 } 56 57 dsl_pool_t * 58 dmu_objset_pool(objset_t *os) 59 { 60 dsl_dataset_t *ds; 61 62 if ((ds = os->os_dsl_dataset) != NULL && ds->ds_dir) 63 return (ds->ds_dir->dd_pool); 64 else 65 return (spa_get_dsl(os->os_spa)); 66 } 67 68 dsl_dataset_t * 69 dmu_objset_ds(objset_t *os) 70 { 71 return (os->os_dsl_dataset); 72 } 73 74 dmu_objset_type_t 75 dmu_objset_type(objset_t *os) 76 { 77 return (os->os_phys->os_type); 78 } 79 80 void 81 dmu_objset_name(objset_t *os, char *buf) 82 { 83 dsl_dataset_name(os->os_dsl_dataset, buf); 84 } 85 86 uint64_t 87 dmu_objset_id(objset_t *os) 88 { 89 dsl_dataset_t *ds = os->os_dsl_dataset; 90 91 return (ds ? ds->ds_object : 0); 92 } 93 94 uint64_t 95 dmu_objset_logbias(objset_t *os) 96 { 97 return (os->os_logbias); 98 } 99 100 static void 101 checksum_changed_cb(void *arg, uint64_t newval) 102 { 103 objset_t *os = arg; 104 105 /* 106 * Inheritance should have been done by now. 107 */ 108 ASSERT(newval != ZIO_CHECKSUM_INHERIT); 109 110 os->os_checksum = zio_checksum_select(newval, ZIO_CHECKSUM_ON_VALUE); 111 } 112 113 static void 114 compression_changed_cb(void *arg, uint64_t newval) 115 { 116 objset_t *os = arg; 117 118 /* 119 * Inheritance and range checking should have been done by now. 120 */ 121 ASSERT(newval != ZIO_COMPRESS_INHERIT); 122 123 os->os_compress = zio_compress_select(newval, ZIO_COMPRESS_ON_VALUE); 124 } 125 126 static void 127 copies_changed_cb(void *arg, uint64_t newval) 128 { 129 objset_t *os = arg; 130 131 /* 132 * Inheritance and range checking should have been done by now. 133 */ 134 ASSERT(newval > 0); 135 ASSERT(newval <= spa_max_replication(os->os_spa)); 136 137 os->os_copies = newval; 138 } 139 140 static void 141 dedup_changed_cb(void *arg, uint64_t newval) 142 { 143 objset_t *os = arg; 144 spa_t *spa = os->os_spa; 145 enum zio_checksum checksum; 146 147 /* 148 * Inheritance should have been done by now. 149 */ 150 ASSERT(newval != ZIO_CHECKSUM_INHERIT); 151 152 checksum = zio_checksum_dedup_select(spa, newval, ZIO_CHECKSUM_OFF); 153 154 os->os_dedup_checksum = checksum & ZIO_CHECKSUM_MASK; 155 os->os_dedup_verify = !!(checksum & ZIO_CHECKSUM_VERIFY); 156 } 157 158 static void 159 primary_cache_changed_cb(void *arg, uint64_t newval) 160 { 161 objset_t *os = arg; 162 163 /* 164 * Inheritance and range checking should have been done by now. 165 */ 166 ASSERT(newval == ZFS_CACHE_ALL || newval == ZFS_CACHE_NONE || 167 newval == ZFS_CACHE_METADATA); 168 169 os->os_primary_cache = newval; 170 } 171 172 static void 173 secondary_cache_changed_cb(void *arg, uint64_t newval) 174 { 175 objset_t *os = arg; 176 177 /* 178 * Inheritance and range checking should have been done by now. 179 */ 180 ASSERT(newval == ZFS_CACHE_ALL || newval == ZFS_CACHE_NONE || 181 newval == ZFS_CACHE_METADATA); 182 183 os->os_secondary_cache = newval; 184 } 185 186 static void 187 logbias_changed_cb(void *arg, uint64_t newval) 188 { 189 objset_t *os = arg; 190 191 ASSERT(newval == ZFS_LOGBIAS_LATENCY || 192 newval == ZFS_LOGBIAS_THROUGHPUT); 193 os->os_logbias = newval; 194 if (os->os_zil) 195 zil_set_logbias(os->os_zil, newval); 196 } 197 198 void 199 dmu_objset_byteswap(void *buf, size_t size) 200 { 201 objset_phys_t *osp = buf; 202 203 ASSERT(size == OBJSET_OLD_PHYS_SIZE || size == sizeof (objset_phys_t)); 204 dnode_byteswap(&osp->os_meta_dnode); 205 byteswap_uint64_array(&osp->os_zil_header, sizeof (zil_header_t)); 206 osp->os_type = BSWAP_64(osp->os_type); 207 osp->os_flags = BSWAP_64(osp->os_flags); 208 if (size == sizeof (objset_phys_t)) { 209 dnode_byteswap(&osp->os_userused_dnode); 210 dnode_byteswap(&osp->os_groupused_dnode); 211 } 212 } 213 214 int 215 dmu_objset_open_impl(spa_t *spa, dsl_dataset_t *ds, blkptr_t *bp, 216 objset_t **osp) 217 { 218 objset_t *os; 219 int i, err; 220 221 ASSERT(ds == NULL || MUTEX_HELD(&ds->ds_opening_lock)); 222 223 os = kmem_zalloc(sizeof (objset_t), KM_SLEEP); 224 os->os_dsl_dataset = ds; 225 os->os_spa = spa; 226 os->os_rootbp = bp; 227 if (!BP_IS_HOLE(os->os_rootbp)) { 228 uint32_t aflags = ARC_WAIT; 229 zbookmark_t zb; 230 SET_BOOKMARK(&zb, ds ? ds->ds_object : DMU_META_OBJSET, 231 ZB_ROOT_OBJECT, ZB_ROOT_LEVEL, ZB_ROOT_BLKID); 232 233 if (DMU_OS_IS_L2CACHEABLE(os)) 234 aflags |= ARC_L2CACHE; 235 236 dprintf_bp(os->os_rootbp, "reading %s", ""); 237 /* 238 * NB: when bprewrite scrub can change the bp, 239 * and this is called from dmu_objset_open_ds_os, the bp 240 * could change, and we'll need a lock. 241 */ 242 err = arc_read_nolock(NULL, spa, os->os_rootbp, 243 arc_getbuf_func, &os->os_phys_buf, 244 ZIO_PRIORITY_SYNC_READ, ZIO_FLAG_CANFAIL, &aflags, &zb); 245 if (err) { 246 kmem_free(os, sizeof (objset_t)); 247 /* convert checksum errors into IO errors */ 248 if (err == ECKSUM) 249 err = EIO; 250 return (err); 251 } 252 253 /* Increase the blocksize if we are permitted. */ 254 if (spa_version(spa) >= SPA_VERSION_USERSPACE && 255 arc_buf_size(os->os_phys_buf) < sizeof (objset_phys_t)) { 256 arc_buf_t *buf = arc_buf_alloc(spa, 257 sizeof (objset_phys_t), &os->os_phys_buf, 258 ARC_BUFC_METADATA); 259 bzero(buf->b_data, sizeof (objset_phys_t)); 260 bcopy(os->os_phys_buf->b_data, buf->b_data, 261 arc_buf_size(os->os_phys_buf)); 262 (void) arc_buf_remove_ref(os->os_phys_buf, 263 &os->os_phys_buf); 264 os->os_phys_buf = buf; 265 } 266 267 os->os_phys = os->os_phys_buf->b_data; 268 os->os_flags = os->os_phys->os_flags; 269 } else { 270 int size = spa_version(spa) >= SPA_VERSION_USERSPACE ? 271 sizeof (objset_phys_t) : OBJSET_OLD_PHYS_SIZE; 272 os->os_phys_buf = arc_buf_alloc(spa, size, 273 &os->os_phys_buf, ARC_BUFC_METADATA); 274 os->os_phys = os->os_phys_buf->b_data; 275 bzero(os->os_phys, size); 276 } 277 278 /* 279 * Note: the changed_cb will be called once before the register 280 * func returns, thus changing the checksum/compression from the 281 * default (fletcher2/off). Snapshots don't need to know about 282 * checksum/compression/copies. 283 */ 284 if (ds) { 285 err = dsl_prop_register(ds, "primarycache", 286 primary_cache_changed_cb, os); 287 if (err == 0) 288 err = dsl_prop_register(ds, "secondarycache", 289 secondary_cache_changed_cb, os); 290 if (!dsl_dataset_is_snapshot(ds)) { 291 if (err == 0) 292 err = dsl_prop_register(ds, "checksum", 293 checksum_changed_cb, os); 294 if (err == 0) 295 err = dsl_prop_register(ds, "compression", 296 compression_changed_cb, os); 297 if (err == 0) 298 err = dsl_prop_register(ds, "copies", 299 copies_changed_cb, os); 300 if (err == 0) 301 err = dsl_prop_register(ds, "dedup", 302 dedup_changed_cb, os); 303 if (err == 0) 304 err = dsl_prop_register(ds, "logbias", 305 logbias_changed_cb, os); 306 } 307 if (err) { 308 VERIFY(arc_buf_remove_ref(os->os_phys_buf, 309 &os->os_phys_buf) == 1); 310 kmem_free(os, sizeof (objset_t)); 311 return (err); 312 } 313 } else if (ds == NULL) { 314 /* It's the meta-objset. */ 315 os->os_checksum = ZIO_CHECKSUM_FLETCHER_4; 316 os->os_compress = ZIO_COMPRESS_LZJB; 317 os->os_copies = spa_max_replication(spa); 318 os->os_dedup_checksum = ZIO_CHECKSUM_OFF; 319 os->os_dedup_verify = 0; 320 os->os_logbias = 0; 321 os->os_primary_cache = ZFS_CACHE_ALL; 322 os->os_secondary_cache = ZFS_CACHE_ALL; 323 } 324 325 os->os_zil_header = os->os_phys->os_zil_header; 326 os->os_zil = zil_alloc(os, &os->os_zil_header); 327 328 for (i = 0; i < TXG_SIZE; i++) { 329 list_create(&os->os_dirty_dnodes[i], sizeof (dnode_t), 330 offsetof(dnode_t, dn_dirty_link[i])); 331 list_create(&os->os_free_dnodes[i], sizeof (dnode_t), 332 offsetof(dnode_t, dn_dirty_link[i])); 333 } 334 list_create(&os->os_dnodes, sizeof (dnode_t), 335 offsetof(dnode_t, dn_link)); 336 list_create(&os->os_downgraded_dbufs, sizeof (dmu_buf_impl_t), 337 offsetof(dmu_buf_impl_t, db_link)); 338 339 mutex_init(&os->os_lock, NULL, MUTEX_DEFAULT, NULL); 340 mutex_init(&os->os_obj_lock, NULL, MUTEX_DEFAULT, NULL); 341 mutex_init(&os->os_user_ptr_lock, NULL, MUTEX_DEFAULT, NULL); 342 343 os->os_meta_dnode = dnode_special_open(os, 344 &os->os_phys->os_meta_dnode, DMU_META_DNODE_OBJECT); 345 if (arc_buf_size(os->os_phys_buf) >= sizeof (objset_phys_t)) { 346 os->os_userused_dnode = dnode_special_open(os, 347 &os->os_phys->os_userused_dnode, DMU_USERUSED_OBJECT); 348 os->os_groupused_dnode = dnode_special_open(os, 349 &os->os_phys->os_groupused_dnode, DMU_GROUPUSED_OBJECT); 350 } 351 352 /* 353 * We should be the only thread trying to do this because we 354 * have ds_opening_lock 355 */ 356 if (ds) { 357 mutex_enter(&ds->ds_lock); 358 ASSERT(ds->ds_objset == NULL); 359 ds->ds_objset = os; 360 mutex_exit(&ds->ds_lock); 361 } 362 363 *osp = os; 364 return (0); 365 } 366 367 int 368 dmu_objset_from_ds(dsl_dataset_t *ds, objset_t **osp) 369 { 370 int err = 0; 371 372 mutex_enter(&ds->ds_opening_lock); 373 *osp = ds->ds_objset; 374 if (*osp == NULL) { 375 err = dmu_objset_open_impl(dsl_dataset_get_spa(ds), 376 ds, &ds->ds_phys->ds_bp, osp); 377 } 378 mutex_exit(&ds->ds_opening_lock); 379 return (err); 380 } 381 382 /* called from zpl */ 383 int 384 dmu_objset_hold(const char *name, void *tag, objset_t **osp) 385 { 386 dsl_dataset_t *ds; 387 int err; 388 389 err = dsl_dataset_hold(name, tag, &ds); 390 if (err) 391 return (err); 392 393 err = dmu_objset_from_ds(ds, osp); 394 if (err) 395 dsl_dataset_rele(ds, tag); 396 397 return (err); 398 } 399 400 /* called from zpl */ 401 int 402 dmu_objset_own(const char *name, dmu_objset_type_t type, 403 boolean_t readonly, void *tag, objset_t **osp) 404 { 405 dsl_dataset_t *ds; 406 int err; 407 408 err = dsl_dataset_own(name, B_FALSE, tag, &ds); 409 if (err) 410 return (err); 411 412 err = dmu_objset_from_ds(ds, osp); 413 if (err) { 414 dsl_dataset_disown(ds, tag); 415 } else if (type != DMU_OST_ANY && type != (*osp)->os_phys->os_type) { 416 dmu_objset_disown(*osp, tag); 417 return (EINVAL); 418 } else if (!readonly && dsl_dataset_is_snapshot(ds)) { 419 dmu_objset_disown(*osp, tag); 420 return (EROFS); 421 } 422 return (err); 423 } 424 425 void 426 dmu_objset_rele(objset_t *os, void *tag) 427 { 428 dsl_dataset_rele(os->os_dsl_dataset, tag); 429 } 430 431 void 432 dmu_objset_disown(objset_t *os, void *tag) 433 { 434 dsl_dataset_disown(os->os_dsl_dataset, tag); 435 } 436 437 int 438 dmu_objset_evict_dbufs(objset_t *os) 439 { 440 dnode_t *dn; 441 442 mutex_enter(&os->os_lock); 443 444 /* process the mdn last, since the other dnodes have holds on it */ 445 list_remove(&os->os_dnodes, os->os_meta_dnode); 446 list_insert_tail(&os->os_dnodes, os->os_meta_dnode); 447 448 /* 449 * Find the first dnode with holds. We have to do this dance 450 * because dnode_add_ref() only works if you already have a 451 * hold. If there are no holds then it has no dbufs so OK to 452 * skip. 453 */ 454 for (dn = list_head(&os->os_dnodes); 455 dn && !dnode_add_ref(dn, FTAG); 456 dn = list_next(&os->os_dnodes, dn)) 457 continue; 458 459 while (dn) { 460 dnode_t *next_dn = dn; 461 462 do { 463 next_dn = list_next(&os->os_dnodes, next_dn); 464 } while (next_dn && !dnode_add_ref(next_dn, FTAG)); 465 466 mutex_exit(&os->os_lock); 467 dnode_evict_dbufs(dn); 468 dnode_rele(dn, FTAG); 469 mutex_enter(&os->os_lock); 470 dn = next_dn; 471 } 472 mutex_exit(&os->os_lock); 473 return (list_head(&os->os_dnodes) != os->os_meta_dnode); 474 } 475 476 void 477 dmu_objset_evict(objset_t *os) 478 { 479 dsl_dataset_t *ds = os->os_dsl_dataset; 480 481 for (int t = 0; t < TXG_SIZE; t++) 482 ASSERT(!dmu_objset_is_dirty(os, t)); 483 484 if (ds) { 485 if (!dsl_dataset_is_snapshot(ds)) { 486 VERIFY(0 == dsl_prop_unregister(ds, "checksum", 487 checksum_changed_cb, os)); 488 VERIFY(0 == dsl_prop_unregister(ds, "compression", 489 compression_changed_cb, os)); 490 VERIFY(0 == dsl_prop_unregister(ds, "copies", 491 copies_changed_cb, os)); 492 VERIFY(0 == dsl_prop_unregister(ds, "dedup", 493 dedup_changed_cb, os)); 494 VERIFY(0 == dsl_prop_unregister(ds, "logbias", 495 logbias_changed_cb, os)); 496 } 497 VERIFY(0 == dsl_prop_unregister(ds, "primarycache", 498 primary_cache_changed_cb, os)); 499 VERIFY(0 == dsl_prop_unregister(ds, "secondarycache", 500 secondary_cache_changed_cb, os)); 501 } 502 503 if (os->os_sa) 504 sa_tear_down(os); 505 506 /* 507 * We should need only a single pass over the dnode list, since 508 * nothing can be added to the list at this point. 509 */ 510 (void) dmu_objset_evict_dbufs(os); 511 512 dnode_special_close(os->os_meta_dnode); 513 if (os->os_userused_dnode) { 514 dnode_special_close(os->os_userused_dnode); 515 dnode_special_close(os->os_groupused_dnode); 516 } 517 zil_free(os->os_zil); 518 519 ASSERT3P(list_head(&os->os_dnodes), ==, NULL); 520 521 VERIFY(arc_buf_remove_ref(os->os_phys_buf, &os->os_phys_buf) == 1); 522 mutex_destroy(&os->os_lock); 523 mutex_destroy(&os->os_obj_lock); 524 mutex_destroy(&os->os_user_ptr_lock); 525 kmem_free(os, sizeof (objset_t)); 526 } 527 528 timestruc_t 529 dmu_objset_snap_cmtime(objset_t *os) 530 { 531 return (dsl_dir_snap_cmtime(os->os_dsl_dataset->ds_dir)); 532 } 533 534 /* called from dsl for meta-objset */ 535 objset_t * 536 dmu_objset_create_impl(spa_t *spa, dsl_dataset_t *ds, blkptr_t *bp, 537 dmu_objset_type_t type, dmu_tx_t *tx) 538 { 539 objset_t *os; 540 dnode_t *mdn; 541 542 ASSERT(dmu_tx_is_syncing(tx)); 543 if (ds) 544 mutex_enter(&ds->ds_opening_lock); 545 VERIFY(0 == dmu_objset_open_impl(spa, ds, bp, &os)); 546 if (ds) 547 mutex_exit(&ds->ds_opening_lock); 548 mdn = os->os_meta_dnode; 549 550 dnode_allocate(mdn, DMU_OT_DNODE, 1 << DNODE_BLOCK_SHIFT, 551 DN_MAX_INDBLKSHIFT, DMU_OT_NONE, 0, tx); 552 553 /* 554 * We don't want to have to increase the meta-dnode's nlevels 555 * later, because then we could do it in quescing context while 556 * we are also accessing it in open context. 557 * 558 * This precaution is not necessary for the MOS (ds == NULL), 559 * because the MOS is only updated in syncing context. 560 * This is most fortunate: the MOS is the only objset that 561 * needs to be synced multiple times as spa_sync() iterates 562 * to convergence, so minimizing its dn_nlevels matters. 563 */ 564 if (ds != NULL) { 565 int levels = 1; 566 567 /* 568 * Determine the number of levels necessary for the meta-dnode 569 * to contain DN_MAX_OBJECT dnodes. 570 */ 571 while ((uint64_t)mdn->dn_nblkptr << (mdn->dn_datablkshift + 572 (levels - 1) * (mdn->dn_indblkshift - SPA_BLKPTRSHIFT)) < 573 DN_MAX_OBJECT * sizeof (dnode_phys_t)) 574 levels++; 575 576 mdn->dn_next_nlevels[tx->tx_txg & TXG_MASK] = 577 mdn->dn_nlevels = levels; 578 } 579 580 ASSERT(type != DMU_OST_NONE); 581 ASSERT(type != DMU_OST_ANY); 582 ASSERT(type < DMU_OST_NUMTYPES); 583 os->os_phys->os_type = type; 584 if (dmu_objset_userused_enabled(os)) { 585 os->os_phys->os_flags |= OBJSET_FLAG_USERACCOUNTING_COMPLETE; 586 os->os_flags = os->os_phys->os_flags; 587 } 588 589 dsl_dataset_dirty(ds, tx); 590 591 return (os); 592 } 593 594 struct oscarg { 595 void (*userfunc)(objset_t *os, void *arg, cred_t *cr, dmu_tx_t *tx); 596 void *userarg; 597 dsl_dataset_t *clone_origin; 598 const char *lastname; 599 dmu_objset_type_t type; 600 uint64_t flags; 601 }; 602 603 /*ARGSUSED*/ 604 static int 605 dmu_objset_create_check(void *arg1, void *arg2, dmu_tx_t *tx) 606 { 607 dsl_dir_t *dd = arg1; 608 struct oscarg *oa = arg2; 609 objset_t *mos = dd->dd_pool->dp_meta_objset; 610 int err; 611 uint64_t ddobj; 612 613 err = zap_lookup(mos, dd->dd_phys->dd_child_dir_zapobj, 614 oa->lastname, sizeof (uint64_t), 1, &ddobj); 615 if (err != ENOENT) 616 return (err ? err : EEXIST); 617 618 if (oa->clone_origin != NULL) { 619 /* You can't clone across pools. */ 620 if (oa->clone_origin->ds_dir->dd_pool != dd->dd_pool) 621 return (EXDEV); 622 623 /* You can only clone snapshots, not the head datasets. */ 624 if (!dsl_dataset_is_snapshot(oa->clone_origin)) 625 return (EINVAL); 626 } 627 628 return (0); 629 } 630 631 static void 632 dmu_objset_create_sync(void *arg1, void *arg2, cred_t *cr, dmu_tx_t *tx) 633 { 634 dsl_dir_t *dd = arg1; 635 struct oscarg *oa = arg2; 636 uint64_t dsobj; 637 638 ASSERT(dmu_tx_is_syncing(tx)); 639 640 dsobj = dsl_dataset_create_sync(dd, oa->lastname, 641 oa->clone_origin, oa->flags, cr, tx); 642 643 if (oa->clone_origin == NULL) { 644 dsl_dataset_t *ds; 645 blkptr_t *bp; 646 objset_t *os; 647 648 VERIFY(0 == dsl_dataset_hold_obj(dd->dd_pool, dsobj, 649 FTAG, &ds)); 650 bp = dsl_dataset_get_blkptr(ds); 651 ASSERT(BP_IS_HOLE(bp)); 652 653 os = dmu_objset_create_impl(dsl_dataset_get_spa(ds), 654 ds, bp, oa->type, tx); 655 656 if (oa->userfunc) 657 oa->userfunc(os, oa->userarg, cr, tx); 658 dsl_dataset_rele(ds, FTAG); 659 } 660 661 spa_history_internal_log(LOG_DS_CREATE, dd->dd_pool->dp_spa, 662 tx, cr, "dataset = %llu", dsobj); 663 } 664 665 int 666 dmu_objset_create(const char *name, dmu_objset_type_t type, uint64_t flags, 667 void (*func)(objset_t *os, void *arg, cred_t *cr, dmu_tx_t *tx), void *arg) 668 { 669 dsl_dir_t *pdd; 670 const char *tail; 671 int err = 0; 672 struct oscarg oa = { 0 }; 673 674 ASSERT(strchr(name, '@') == NULL); 675 err = dsl_dir_open(name, FTAG, &pdd, &tail); 676 if (err) 677 return (err); 678 if (tail == NULL) { 679 dsl_dir_close(pdd, FTAG); 680 return (EEXIST); 681 } 682 683 oa.userfunc = func; 684 oa.userarg = arg; 685 oa.lastname = tail; 686 oa.type = type; 687 oa.flags = flags; 688 689 err = dsl_sync_task_do(pdd->dd_pool, dmu_objset_create_check, 690 dmu_objset_create_sync, pdd, &oa, 5); 691 dsl_dir_close(pdd, FTAG); 692 return (err); 693 } 694 695 int 696 dmu_objset_clone(const char *name, dsl_dataset_t *clone_origin, uint64_t flags) 697 { 698 dsl_dir_t *pdd; 699 const char *tail; 700 int err = 0; 701 struct oscarg oa = { 0 }; 702 703 ASSERT(strchr(name, '@') == NULL); 704 err = dsl_dir_open(name, FTAG, &pdd, &tail); 705 if (err) 706 return (err); 707 if (tail == NULL) { 708 dsl_dir_close(pdd, FTAG); 709 return (EEXIST); 710 } 711 712 oa.lastname = tail; 713 oa.clone_origin = clone_origin; 714 oa.flags = flags; 715 716 err = dsl_sync_task_do(pdd->dd_pool, dmu_objset_create_check, 717 dmu_objset_create_sync, pdd, &oa, 5); 718 dsl_dir_close(pdd, FTAG); 719 return (err); 720 } 721 722 int 723 dmu_objset_destroy(const char *name, boolean_t defer) 724 { 725 dsl_dataset_t *ds; 726 int error; 727 728 /* 729 * dsl_dataset_destroy() can free any claimed-but-unplayed 730 * intent log, but if there is an active log, it has blocks that 731 * are allocated, but may not yet be reflected in the on-disk 732 * structure. Only the ZIL knows how to free them, so we have 733 * to call into it here. 734 */ 735 error = dsl_dataset_own(name, B_TRUE, FTAG, &ds); 736 if (error == 0) { 737 objset_t *os; 738 if (dmu_objset_from_ds(ds, &os) == 0) 739 zil_destroy(dmu_objset_zil(os), B_FALSE); 740 error = dsl_dataset_destroy(ds, FTAG, defer); 741 /* dsl_dataset_destroy() closes the ds. */ 742 } 743 744 return (error); 745 } 746 747 struct snaparg { 748 dsl_sync_task_group_t *dstg; 749 char *snapname; 750 char failed[MAXPATHLEN]; 751 boolean_t recursive; 752 nvlist_t *props; 753 }; 754 755 static int 756 snapshot_check(void *arg1, void *arg2, dmu_tx_t *tx) 757 { 758 objset_t *os = arg1; 759 struct snaparg *sn = arg2; 760 761 /* The props have already been checked by zfs_check_userprops(). */ 762 763 return (dsl_dataset_snapshot_check(os->os_dsl_dataset, 764 sn->snapname, tx)); 765 } 766 767 static void 768 snapshot_sync(void *arg1, void *arg2, cred_t *cr, dmu_tx_t *tx) 769 { 770 objset_t *os = arg1; 771 dsl_dataset_t *ds = os->os_dsl_dataset; 772 struct snaparg *sn = arg2; 773 774 dsl_dataset_snapshot_sync(ds, sn->snapname, cr, tx); 775 776 if (sn->props) { 777 dsl_props_arg_t pa; 778 pa.pa_props = sn->props; 779 pa.pa_source = ZPROP_SRC_LOCAL; 780 dsl_props_set_sync(ds->ds_prev, &pa, cr, tx); 781 } 782 } 783 784 static int 785 dmu_objset_snapshot_one(const char *name, void *arg) 786 { 787 struct snaparg *sn = arg; 788 objset_t *os; 789 int err; 790 char *cp; 791 792 /* 793 * If the objset starts with a '%', then ignore it unless it was 794 * explicitly named (ie, not recursive). These hidden datasets 795 * are always inconsistent, and by not opening them here, we can 796 * avoid a race with dsl_dir_destroy_check(). 797 */ 798 cp = strrchr(name, '/'); 799 if (cp && cp[1] == '%' && sn->recursive) 800 return (0); 801 802 (void) strcpy(sn->failed, name); 803 804 /* 805 * Check permissions if we are doing a recursive snapshot. The 806 * permission checks for the starting dataset have already been 807 * performed in zfs_secpolicy_snapshot() 808 */ 809 if (sn->recursive && (err = zfs_secpolicy_snapshot_perms(name, CRED()))) 810 return (err); 811 812 err = dmu_objset_hold(name, sn, &os); 813 if (err != 0) 814 return (err); 815 816 /* 817 * If the objset is in an inconsistent state (eg, in the process 818 * of being destroyed), don't snapshot it. As with %hidden 819 * datasets, we return EBUSY if this name was explicitly 820 * requested (ie, not recursive), and otherwise ignore it. 821 */ 822 if (os->os_dsl_dataset->ds_phys->ds_flags & DS_FLAG_INCONSISTENT) { 823 dmu_objset_rele(os, sn); 824 return (sn->recursive ? 0 : EBUSY); 825 } 826 827 /* 828 * NB: we need to wait for all in-flight changes to get to disk, 829 * so that we snapshot those changes. zil_suspend does this as 830 * a side effect. 831 */ 832 err = zil_suspend(dmu_objset_zil(os)); 833 if (err == 0) { 834 dsl_sync_task_create(sn->dstg, snapshot_check, 835 snapshot_sync, os, sn, 3); 836 } else { 837 dmu_objset_rele(os, sn); 838 } 839 840 return (err); 841 } 842 843 int 844 dmu_objset_snapshot(char *fsname, char *snapname, 845 nvlist_t *props, boolean_t recursive) 846 { 847 dsl_sync_task_t *dst; 848 struct snaparg sn; 849 spa_t *spa; 850 int err; 851 852 (void) strcpy(sn.failed, fsname); 853 854 err = spa_open(fsname, &spa, FTAG); 855 if (err) 856 return (err); 857 858 sn.dstg = dsl_sync_task_group_create(spa_get_dsl(spa)); 859 sn.snapname = snapname; 860 sn.props = props; 861 sn.recursive = recursive; 862 863 if (recursive) { 864 err = dmu_objset_find(fsname, 865 dmu_objset_snapshot_one, &sn, DS_FIND_CHILDREN); 866 } else { 867 err = dmu_objset_snapshot_one(fsname, &sn); 868 } 869 870 if (err == 0) 871 err = dsl_sync_task_group_wait(sn.dstg); 872 873 for (dst = list_head(&sn.dstg->dstg_tasks); dst; 874 dst = list_next(&sn.dstg->dstg_tasks, dst)) { 875 objset_t *os = dst->dst_arg1; 876 dsl_dataset_t *ds = os->os_dsl_dataset; 877 if (dst->dst_err) 878 dsl_dataset_name(ds, sn.failed); 879 zil_resume(dmu_objset_zil(os)); 880 dmu_objset_rele(os, &sn); 881 } 882 883 if (err) 884 (void) strcpy(fsname, sn.failed); 885 dsl_sync_task_group_destroy(sn.dstg); 886 spa_close(spa, FTAG); 887 return (err); 888 } 889 890 static void 891 dmu_objset_sync_dnodes(list_t *list, list_t *newlist, dmu_tx_t *tx) 892 { 893 dnode_t *dn; 894 895 while (dn = list_head(list)) { 896 ASSERT(dn->dn_object != DMU_META_DNODE_OBJECT); 897 ASSERT(dn->dn_dbuf->db_data_pending); 898 /* 899 * Initialize dn_zio outside dnode_sync() because the 900 * meta-dnode needs to set it ouside dnode_sync(). 901 */ 902 dn->dn_zio = dn->dn_dbuf->db_data_pending->dr_zio; 903 ASSERT(dn->dn_zio); 904 905 ASSERT3U(dn->dn_nlevels, <=, DN_MAX_LEVELS); 906 list_remove(list, dn); 907 908 if (newlist) { 909 (void) dnode_add_ref(dn, newlist); 910 list_insert_tail(newlist, dn); 911 } 912 913 dnode_sync(dn, tx); 914 } 915 } 916 917 /* ARGSUSED */ 918 static void 919 dmu_objset_write_ready(zio_t *zio, arc_buf_t *abuf, void *arg) 920 { 921 blkptr_t *bp = zio->io_bp; 922 objset_t *os = arg; 923 dnode_phys_t *dnp = &os->os_phys->os_meta_dnode; 924 925 ASSERT(bp == os->os_rootbp); 926 ASSERT(BP_GET_TYPE(bp) == DMU_OT_OBJSET); 927 ASSERT(BP_GET_LEVEL(bp) == 0); 928 929 /* 930 * Update rootbp fill count: it should be the number of objects 931 * allocated in the object set (not counting the "special" 932 * objects that are stored in the objset_phys_t -- the meta 933 * dnode and user/group accounting objects). 934 */ 935 bp->blk_fill = 0; 936 for (int i = 0; i < dnp->dn_nblkptr; i++) 937 bp->blk_fill += dnp->dn_blkptr[i].blk_fill; 938 } 939 940 /* ARGSUSED */ 941 static void 942 dmu_objset_write_done(zio_t *zio, arc_buf_t *abuf, void *arg) 943 { 944 blkptr_t *bp = zio->io_bp; 945 blkptr_t *bp_orig = &zio->io_bp_orig; 946 objset_t *os = arg; 947 948 if (zio->io_flags & ZIO_FLAG_IO_REWRITE) { 949 ASSERT(BP_EQUAL(bp, bp_orig)); 950 } else { 951 dsl_dataset_t *ds = os->os_dsl_dataset; 952 dmu_tx_t *tx = os->os_synctx; 953 954 (void) dsl_dataset_block_kill(ds, bp_orig, tx, B_TRUE); 955 dsl_dataset_block_born(ds, bp, tx); 956 } 957 } 958 959 /* called from dsl */ 960 void 961 dmu_objset_sync(objset_t *os, zio_t *pio, dmu_tx_t *tx) 962 { 963 int txgoff; 964 zbookmark_t zb; 965 zio_prop_t zp; 966 zio_t *zio; 967 list_t *list; 968 list_t *newlist = NULL; 969 dbuf_dirty_record_t *dr; 970 971 dprintf_ds(os->os_dsl_dataset, "txg=%llu\n", tx->tx_txg); 972 973 ASSERT(dmu_tx_is_syncing(tx)); 974 /* XXX the write_done callback should really give us the tx... */ 975 os->os_synctx = tx; 976 977 if (os->os_dsl_dataset == NULL) { 978 /* 979 * This is the MOS. If we have upgraded, 980 * spa_max_replication() could change, so reset 981 * os_copies here. 982 */ 983 os->os_copies = spa_max_replication(os->os_spa); 984 } 985 986 /* 987 * Create the root block IO 988 */ 989 arc_release(os->os_phys_buf, &os->os_phys_buf); 990 991 SET_BOOKMARK(&zb, os->os_dsl_dataset ? 992 os->os_dsl_dataset->ds_object : DMU_META_OBJSET, 993 ZB_ROOT_OBJECT, ZB_ROOT_LEVEL, ZB_ROOT_BLKID); 994 995 dmu_write_policy(os, NULL, 0, 0, &zp); 996 997 zio = arc_write(pio, os->os_spa, tx->tx_txg, 998 os->os_rootbp, os->os_phys_buf, DMU_OS_IS_L2CACHEABLE(os), &zp, 999 dmu_objset_write_ready, dmu_objset_write_done, os, 1000 ZIO_PRIORITY_ASYNC_WRITE, ZIO_FLAG_MUSTSUCCEED, &zb); 1001 1002 /* 1003 * Sync special dnodes - the parent IO for the sync is the root block 1004 */ 1005 os->os_meta_dnode->dn_zio = zio; 1006 dnode_sync(os->os_meta_dnode, tx); 1007 1008 os->os_phys->os_flags = os->os_flags; 1009 1010 if (os->os_userused_dnode && 1011 os->os_userused_dnode->dn_type != DMU_OT_NONE) { 1012 os->os_userused_dnode->dn_zio = zio; 1013 dnode_sync(os->os_userused_dnode, tx); 1014 os->os_groupused_dnode->dn_zio = zio; 1015 dnode_sync(os->os_groupused_dnode, tx); 1016 } 1017 1018 txgoff = tx->tx_txg & TXG_MASK; 1019 1020 if (dmu_objset_userused_enabled(os)) { 1021 newlist = &os->os_synced_dnodes; 1022 /* 1023 * We must create the list here because it uses the 1024 * dn_dirty_link[] of this txg. 1025 */ 1026 list_create(newlist, sizeof (dnode_t), 1027 offsetof(dnode_t, dn_dirty_link[txgoff])); 1028 } 1029 1030 dmu_objset_sync_dnodes(&os->os_free_dnodes[txgoff], newlist, tx); 1031 dmu_objset_sync_dnodes(&os->os_dirty_dnodes[txgoff], newlist, tx); 1032 1033 list = &os->os_meta_dnode->dn_dirty_records[txgoff]; 1034 while (dr = list_head(list)) { 1035 ASSERT(dr->dr_dbuf->db_level == 0); 1036 list_remove(list, dr); 1037 if (dr->dr_zio) 1038 zio_nowait(dr->dr_zio); 1039 } 1040 /* 1041 * Free intent log blocks up to this tx. 1042 */ 1043 zil_sync(os->os_zil, tx); 1044 os->os_phys->os_zil_header = os->os_zil_header; 1045 zio_nowait(zio); 1046 } 1047 1048 boolean_t 1049 dmu_objset_is_dirty(objset_t *os, uint64_t txg) 1050 { 1051 return (!list_is_empty(&os->os_dirty_dnodes[txg & TXG_MASK]) || 1052 !list_is_empty(&os->os_free_dnodes[txg & TXG_MASK])); 1053 } 1054 1055 static objset_used_cb_t *used_cbs[DMU_OST_NUMTYPES]; 1056 1057 void 1058 dmu_objset_register_type(dmu_objset_type_t ost, objset_used_cb_t *cb) 1059 { 1060 used_cbs[ost] = cb; 1061 } 1062 1063 boolean_t 1064 dmu_objset_userused_enabled(objset_t *os) 1065 { 1066 return (spa_version(os->os_spa) >= SPA_VERSION_USERSPACE && 1067 used_cbs[os->os_phys->os_type] && 1068 os->os_userused_dnode); 1069 } 1070 1071 static void 1072 do_userquota_update(objset_t *os, uint64_t used, uint64_t flags, 1073 uint64_t user, uint64_t group, boolean_t subtract, dmu_tx_t *tx) 1074 { 1075 if ((flags & DNODE_FLAG_USERUSED_ACCOUNTED)) { 1076 int64_t delta = DNODE_SIZE + used; 1077 if (subtract) 1078 delta = -delta; 1079 VERIFY3U(0, ==, zap_increment_int(os, DMU_USERUSED_OBJECT, 1080 user, delta, tx)); 1081 VERIFY3U(0, ==, zap_increment_int(os, DMU_GROUPUSED_OBJECT, 1082 group, delta, tx)); 1083 } 1084 } 1085 1086 void 1087 dmu_objset_do_userquota_updates(objset_t *os, dmu_tx_t *tx) 1088 { 1089 dnode_t *dn; 1090 list_t *list = &os->os_synced_dnodes; 1091 1092 ASSERT(list_head(list) == NULL || dmu_objset_userused_enabled(os)); 1093 1094 while (dn = list_head(list)) { 1095 ASSERT(!DMU_OBJECT_IS_SPECIAL(dn->dn_object)); 1096 ASSERT(dn->dn_phys->dn_type == DMU_OT_NONE || 1097 dn->dn_phys->dn_flags & 1098 DNODE_FLAG_USERUSED_ACCOUNTED); 1099 1100 /* Allocate the user/groupused objects if necessary. */ 1101 if (os->os_userused_dnode->dn_type == DMU_OT_NONE) { 1102 VERIFY(0 == zap_create_claim(os, 1103 DMU_USERUSED_OBJECT, 1104 DMU_OT_USERGROUP_USED, DMU_OT_NONE, 0, tx)); 1105 VERIFY(0 == zap_create_claim(os, 1106 DMU_GROUPUSED_OBJECT, 1107 DMU_OT_USERGROUP_USED, DMU_OT_NONE, 0, tx)); 1108 } 1109 1110 /* 1111 * We intentionally modify the zap object even if the 1112 * net delta is zero. Otherwise 1113 * the block of the zap obj could be shared between 1114 * datasets but need to be different between them after 1115 * a bprewrite. 1116 */ 1117 1118 /* 1119 * The mutex is needed here for interlock with dnode_allocate. 1120 */ 1121 mutex_enter(&dn->dn_mtx); 1122 ASSERT(dn->dn_id_flags); 1123 if (dn->dn_id_flags & DN_ID_OLD_EXIST) { 1124 do_userquota_update(os, dn->dn_oldused, dn->dn_oldflags, 1125 dn->dn_olduid, dn->dn_oldgid, B_TRUE, tx); 1126 } 1127 if (dn->dn_id_flags & DN_ID_NEW_EXIST) { 1128 do_userquota_update(os, DN_USED_BYTES(dn->dn_phys), 1129 dn->dn_phys->dn_flags, dn->dn_newuid, 1130 dn->dn_newgid, B_FALSE, tx); 1131 } 1132 1133 dn->dn_oldused = 0; 1134 dn->dn_oldflags = 0; 1135 if (dn->dn_id_flags & DN_ID_NEW_EXIST) { 1136 dn->dn_olduid = dn->dn_newuid; 1137 dn->dn_oldgid = dn->dn_newgid; 1138 dn->dn_id_flags |= DN_ID_OLD_EXIST; 1139 if (dn->dn_bonuslen == 0) 1140 dn->dn_id_flags |= DN_ID_CHKED_SPILL; 1141 else 1142 dn->dn_id_flags |= DN_ID_CHKED_BONUS; 1143 } 1144 dn->dn_id_flags &= ~(DN_ID_NEW_EXIST|DN_ID_SYNC); 1145 mutex_exit(&dn->dn_mtx); 1146 1147 list_remove(list, dn); 1148 dnode_rele(dn, list); 1149 } 1150 } 1151 1152 /* 1153 * Returns a pointer to data to find uid/gid from 1154 * 1155 * If a dirty record for transaction group that is syncing can't 1156 * be found then NULL is returned. In the NULL case it is assumed 1157 * the uid/gid aren't changing. 1158 */ 1159 static void * 1160 dmu_objset_userquota_find_data(dmu_buf_impl_t *db, dmu_tx_t *tx) 1161 { 1162 dbuf_dirty_record_t *dr, **drp; 1163 void *data; 1164 1165 if (db->db_dirtycnt == 0) 1166 return (db->db.db_data); /* Nothing is changing */ 1167 1168 for (drp = &db->db_last_dirty; (dr = *drp) != NULL; drp = &dr->dr_next) 1169 if (dr->dr_txg == tx->tx_txg) 1170 break; 1171 1172 if (dr == NULL) 1173 data = NULL; 1174 else if (dr->dr_dbuf->db_dnode->dn_bonuslen == 0 && 1175 dr->dr_dbuf->db_blkid == DMU_SPILL_BLKID) 1176 data = dr->dt.dl.dr_data->b_data; 1177 else 1178 data = dr->dt.dl.dr_data; 1179 return (data); 1180 } 1181 1182 void 1183 dmu_objset_userquota_get_ids(dnode_t *dn, boolean_t before, dmu_tx_t *tx) 1184 { 1185 objset_t *os = dn->dn_objset; 1186 void *data = NULL; 1187 dmu_buf_impl_t *db = NULL; 1188 uint64_t *user, *group; 1189 int flags = dn->dn_id_flags; 1190 int error; 1191 boolean_t have_spill = B_FALSE; 1192 1193 if (!dmu_objset_userused_enabled(dn->dn_objset)) 1194 return; 1195 1196 if (before && (flags & (DN_ID_CHKED_BONUS|DN_ID_OLD_EXIST| 1197 DN_ID_CHKED_SPILL))) 1198 return; 1199 1200 if (before && dn->dn_bonuslen != 0) 1201 data = DN_BONUS(dn->dn_phys); 1202 else if (!before && dn->dn_bonuslen != 0) { 1203 if (dn->dn_bonus) { 1204 db = dn->dn_bonus; 1205 mutex_enter(&db->db_mtx); 1206 data = dmu_objset_userquota_find_data(db, tx); 1207 } else { 1208 data = DN_BONUS(dn->dn_phys); 1209 } 1210 } else if (dn->dn_bonuslen == 0 && dn->dn_bonustype == DMU_OT_SA) { 1211 int rf = 0; 1212 1213 if (RW_WRITE_HELD(&dn->dn_struct_rwlock)) 1214 rf |= DB_RF_HAVESTRUCT; 1215 error = dmu_spill_hold_by_dnode(dn, rf, 1216 FTAG, (dmu_buf_t **)&db); 1217 ASSERT(error == 0); 1218 mutex_enter(&db->db_mtx); 1219 data = (before) ? db->db.db_data : 1220 dmu_objset_userquota_find_data(db, tx); 1221 have_spill = B_TRUE; 1222 } else { 1223 mutex_enter(&dn->dn_mtx); 1224 dn->dn_id_flags |= DN_ID_CHKED_BONUS; 1225 mutex_exit(&dn->dn_mtx); 1226 return; 1227 } 1228 1229 if (before) { 1230 ASSERT(data); 1231 user = &dn->dn_olduid; 1232 group = &dn->dn_oldgid; 1233 } else if (data) { 1234 user = &dn->dn_newuid; 1235 group = &dn->dn_newgid; 1236 } 1237 1238 /* 1239 * Must always call the callback in case the object 1240 * type has changed and that type isn't an object type to track 1241 */ 1242 error = used_cbs[os->os_phys->os_type](dn->dn_bonustype, data, 1243 user, group); 1244 1245 /* 1246 * Preserve existing uid/gid when the callback can't determine 1247 * what the new uid/gid are and the callback returned EEXIST. 1248 * The EEXIST error tells us to just use the existing uid/gid. 1249 * If we don't know what the old values are then just assign 1250 * them to 0, since that is a new file being created. 1251 */ 1252 if (!before && data == NULL && error == EEXIST) { 1253 if (flags & DN_ID_OLD_EXIST) { 1254 dn->dn_newuid = dn->dn_olduid; 1255 dn->dn_newgid = dn->dn_oldgid; 1256 } else { 1257 dn->dn_newuid = 0; 1258 dn->dn_newgid = 0; 1259 } 1260 error = 0; 1261 } 1262 1263 if (db) 1264 mutex_exit(&db->db_mtx); 1265 1266 mutex_enter(&dn->dn_mtx); 1267 if (error == 0 && before) 1268 dn->dn_id_flags |= DN_ID_OLD_EXIST; 1269 if (error == 0 && !before) 1270 dn->dn_id_flags |= DN_ID_NEW_EXIST; 1271 1272 if (have_spill) { 1273 dn->dn_id_flags |= DN_ID_CHKED_SPILL; 1274 } else { 1275 dn->dn_id_flags |= DN_ID_CHKED_BONUS; 1276 } 1277 mutex_exit(&dn->dn_mtx); 1278 if (have_spill) 1279 dmu_buf_rele((dmu_buf_t *)db, FTAG); 1280 } 1281 1282 boolean_t 1283 dmu_objset_userspace_present(objset_t *os) 1284 { 1285 return (os->os_phys->os_flags & 1286 OBJSET_FLAG_USERACCOUNTING_COMPLETE); 1287 } 1288 1289 int 1290 dmu_objset_userspace_upgrade(objset_t *os) 1291 { 1292 uint64_t obj; 1293 int err = 0; 1294 1295 if (dmu_objset_userspace_present(os)) 1296 return (0); 1297 if (!dmu_objset_userused_enabled(os)) 1298 return (ENOTSUP); 1299 if (dmu_objset_is_snapshot(os)) 1300 return (EINVAL); 1301 1302 /* 1303 * We simply need to mark every object dirty, so that it will be 1304 * synced out and now accounted. If this is called 1305 * concurrently, or if we already did some work before crashing, 1306 * that's fine, since we track each object's accounted state 1307 * independently. 1308 */ 1309 1310 for (obj = 0; err == 0; err = dmu_object_next(os, &obj, FALSE, 0)) { 1311 dmu_tx_t *tx; 1312 dmu_buf_t *db; 1313 int objerr; 1314 1315 if (issig(JUSTLOOKING) && issig(FORREAL)) 1316 return (EINTR); 1317 1318 objerr = dmu_bonus_hold(os, obj, FTAG, &db); 1319 if (objerr) 1320 continue; 1321 tx = dmu_tx_create(os); 1322 dmu_tx_hold_bonus(tx, obj); 1323 objerr = dmu_tx_assign(tx, TXG_WAIT); 1324 if (objerr) { 1325 dmu_tx_abort(tx); 1326 continue; 1327 } 1328 dmu_buf_will_dirty(db, tx); 1329 dmu_buf_rele(db, FTAG); 1330 dmu_tx_commit(tx); 1331 } 1332 1333 os->os_flags |= OBJSET_FLAG_USERACCOUNTING_COMPLETE; 1334 txg_wait_synced(dmu_objset_pool(os), 0); 1335 return (0); 1336 } 1337 1338 void 1339 dmu_objset_space(objset_t *os, uint64_t *refdbytesp, uint64_t *availbytesp, 1340 uint64_t *usedobjsp, uint64_t *availobjsp) 1341 { 1342 dsl_dataset_space(os->os_dsl_dataset, refdbytesp, availbytesp, 1343 usedobjsp, availobjsp); 1344 } 1345 1346 uint64_t 1347 dmu_objset_fsid_guid(objset_t *os) 1348 { 1349 return (dsl_dataset_fsid_guid(os->os_dsl_dataset)); 1350 } 1351 1352 void 1353 dmu_objset_fast_stat(objset_t *os, dmu_objset_stats_t *stat) 1354 { 1355 stat->dds_type = os->os_phys->os_type; 1356 if (os->os_dsl_dataset) 1357 dsl_dataset_fast_stat(os->os_dsl_dataset, stat); 1358 } 1359 1360 void 1361 dmu_objset_stats(objset_t *os, nvlist_t *nv) 1362 { 1363 ASSERT(os->os_dsl_dataset || 1364 os->os_phys->os_type == DMU_OST_META); 1365 1366 if (os->os_dsl_dataset != NULL) 1367 dsl_dataset_stats(os->os_dsl_dataset, nv); 1368 1369 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_TYPE, 1370 os->os_phys->os_type); 1371 dsl_prop_nvlist_add_uint64(nv, ZFS_PROP_USERACCOUNTING, 1372 dmu_objset_userspace_present(os)); 1373 } 1374 1375 int 1376 dmu_objset_is_snapshot(objset_t *os) 1377 { 1378 if (os->os_dsl_dataset != NULL) 1379 return (dsl_dataset_is_snapshot(os->os_dsl_dataset)); 1380 else 1381 return (B_FALSE); 1382 } 1383 1384 int 1385 dmu_snapshot_realname(objset_t *os, char *name, char *real, int maxlen, 1386 boolean_t *conflict) 1387 { 1388 dsl_dataset_t *ds = os->os_dsl_dataset; 1389 uint64_t ignored; 1390 1391 if (ds->ds_phys->ds_snapnames_zapobj == 0) 1392 return (ENOENT); 1393 1394 return (zap_lookup_norm(ds->ds_dir->dd_pool->dp_meta_objset, 1395 ds->ds_phys->ds_snapnames_zapobj, name, 8, 1, &ignored, MT_FIRST, 1396 real, maxlen, conflict)); 1397 } 1398 1399 int 1400 dmu_snapshot_list_next(objset_t *os, int namelen, char *name, 1401 uint64_t *idp, uint64_t *offp, boolean_t *case_conflict) 1402 { 1403 dsl_dataset_t *ds = os->os_dsl_dataset; 1404 zap_cursor_t cursor; 1405 zap_attribute_t attr; 1406 1407 if (ds->ds_phys->ds_snapnames_zapobj == 0) 1408 return (ENOENT); 1409 1410 zap_cursor_init_serialized(&cursor, 1411 ds->ds_dir->dd_pool->dp_meta_objset, 1412 ds->ds_phys->ds_snapnames_zapobj, *offp); 1413 1414 if (zap_cursor_retrieve(&cursor, &attr) != 0) { 1415 zap_cursor_fini(&cursor); 1416 return (ENOENT); 1417 } 1418 1419 if (strlen(attr.za_name) + 1 > namelen) { 1420 zap_cursor_fini(&cursor); 1421 return (ENAMETOOLONG); 1422 } 1423 1424 (void) strcpy(name, attr.za_name); 1425 if (idp) 1426 *idp = attr.za_first_integer; 1427 if (case_conflict) 1428 *case_conflict = attr.za_normalization_conflict; 1429 zap_cursor_advance(&cursor); 1430 *offp = zap_cursor_serialize(&cursor); 1431 zap_cursor_fini(&cursor); 1432 1433 return (0); 1434 } 1435 1436 int 1437 dmu_dir_list_next(objset_t *os, int namelen, char *name, 1438 uint64_t *idp, uint64_t *offp) 1439 { 1440 dsl_dir_t *dd = os->os_dsl_dataset->ds_dir; 1441 zap_cursor_t cursor; 1442 zap_attribute_t attr; 1443 1444 /* there is no next dir on a snapshot! */ 1445 if (os->os_dsl_dataset->ds_object != 1446 dd->dd_phys->dd_head_dataset_obj) 1447 return (ENOENT); 1448 1449 zap_cursor_init_serialized(&cursor, 1450 dd->dd_pool->dp_meta_objset, 1451 dd->dd_phys->dd_child_dir_zapobj, *offp); 1452 1453 if (zap_cursor_retrieve(&cursor, &attr) != 0) { 1454 zap_cursor_fini(&cursor); 1455 return (ENOENT); 1456 } 1457 1458 if (strlen(attr.za_name) + 1 > namelen) { 1459 zap_cursor_fini(&cursor); 1460 return (ENAMETOOLONG); 1461 } 1462 1463 (void) strcpy(name, attr.za_name); 1464 if (idp) 1465 *idp = attr.za_first_integer; 1466 zap_cursor_advance(&cursor); 1467 *offp = zap_cursor_serialize(&cursor); 1468 zap_cursor_fini(&cursor); 1469 1470 return (0); 1471 } 1472 1473 struct findarg { 1474 int (*func)(const char *, void *); 1475 void *arg; 1476 }; 1477 1478 /* ARGSUSED */ 1479 static int 1480 findfunc(spa_t *spa, uint64_t dsobj, const char *dsname, void *arg) 1481 { 1482 struct findarg *fa = arg; 1483 return (fa->func(dsname, fa->arg)); 1484 } 1485 1486 /* 1487 * Find all objsets under name, and for each, call 'func(child_name, arg)'. 1488 * Perhaps change all callers to use dmu_objset_find_spa()? 1489 */ 1490 int 1491 dmu_objset_find(char *name, int func(const char *, void *), void *arg, 1492 int flags) 1493 { 1494 struct findarg fa; 1495 fa.func = func; 1496 fa.arg = arg; 1497 return (dmu_objset_find_spa(NULL, name, findfunc, &fa, flags)); 1498 } 1499 1500 /* 1501 * Find all objsets under name, call func on each 1502 */ 1503 int 1504 dmu_objset_find_spa(spa_t *spa, const char *name, 1505 int func(spa_t *, uint64_t, const char *, void *), void *arg, int flags) 1506 { 1507 dsl_dir_t *dd; 1508 dsl_pool_t *dp; 1509 dsl_dataset_t *ds; 1510 zap_cursor_t zc; 1511 zap_attribute_t *attr; 1512 char *child; 1513 uint64_t thisobj; 1514 int err; 1515 1516 if (name == NULL) 1517 name = spa_name(spa); 1518 err = dsl_dir_open_spa(spa, name, FTAG, &dd, NULL); 1519 if (err) 1520 return (err); 1521 1522 /* Don't visit hidden ($MOS & $ORIGIN) objsets. */ 1523 if (dd->dd_myname[0] == '$') { 1524 dsl_dir_close(dd, FTAG); 1525 return (0); 1526 } 1527 1528 thisobj = dd->dd_phys->dd_head_dataset_obj; 1529 attr = kmem_alloc(sizeof (zap_attribute_t), KM_SLEEP); 1530 dp = dd->dd_pool; 1531 1532 /* 1533 * Iterate over all children. 1534 */ 1535 if (flags & DS_FIND_CHILDREN) { 1536 for (zap_cursor_init(&zc, dp->dp_meta_objset, 1537 dd->dd_phys->dd_child_dir_zapobj); 1538 zap_cursor_retrieve(&zc, attr) == 0; 1539 (void) zap_cursor_advance(&zc)) { 1540 ASSERT(attr->za_integer_length == sizeof (uint64_t)); 1541 ASSERT(attr->za_num_integers == 1); 1542 1543 child = kmem_asprintf("%s/%s", name, attr->za_name); 1544 err = dmu_objset_find_spa(spa, child, func, arg, flags); 1545 strfree(child); 1546 if (err) 1547 break; 1548 } 1549 zap_cursor_fini(&zc); 1550 1551 if (err) { 1552 dsl_dir_close(dd, FTAG); 1553 kmem_free(attr, sizeof (zap_attribute_t)); 1554 return (err); 1555 } 1556 } 1557 1558 /* 1559 * Iterate over all snapshots. 1560 */ 1561 if (flags & DS_FIND_SNAPSHOTS) { 1562 if (!dsl_pool_sync_context(dp)) 1563 rw_enter(&dp->dp_config_rwlock, RW_READER); 1564 err = dsl_dataset_hold_obj(dp, thisobj, FTAG, &ds); 1565 if (!dsl_pool_sync_context(dp)) 1566 rw_exit(&dp->dp_config_rwlock); 1567 1568 if (err == 0) { 1569 uint64_t snapobj = ds->ds_phys->ds_snapnames_zapobj; 1570 dsl_dataset_rele(ds, FTAG); 1571 1572 for (zap_cursor_init(&zc, dp->dp_meta_objset, snapobj); 1573 zap_cursor_retrieve(&zc, attr) == 0; 1574 (void) zap_cursor_advance(&zc)) { 1575 ASSERT(attr->za_integer_length == 1576 sizeof (uint64_t)); 1577 ASSERT(attr->za_num_integers == 1); 1578 1579 child = kmem_asprintf("%s@%s", 1580 name, attr->za_name); 1581 err = func(spa, attr->za_first_integer, 1582 child, arg); 1583 strfree(child); 1584 if (err) 1585 break; 1586 } 1587 zap_cursor_fini(&zc); 1588 } 1589 } 1590 1591 dsl_dir_close(dd, FTAG); 1592 kmem_free(attr, sizeof (zap_attribute_t)); 1593 1594 if (err) 1595 return (err); 1596 1597 /* 1598 * Apply to self if appropriate. 1599 */ 1600 err = func(spa, thisobj, name, arg); 1601 return (err); 1602 } 1603 1604 /* ARGSUSED */ 1605 int 1606 dmu_objset_prefetch(const char *name, void *arg) 1607 { 1608 dsl_dataset_t *ds; 1609 1610 if (dsl_dataset_hold(name, FTAG, &ds)) 1611 return (0); 1612 1613 if (!BP_IS_HOLE(&ds->ds_phys->ds_bp)) { 1614 mutex_enter(&ds->ds_opening_lock); 1615 if (ds->ds_objset == NULL) { 1616 uint32_t aflags = ARC_NOWAIT | ARC_PREFETCH; 1617 zbookmark_t zb; 1618 1619 SET_BOOKMARK(&zb, ds->ds_object, ZB_ROOT_OBJECT, 1620 ZB_ROOT_LEVEL, ZB_ROOT_BLKID); 1621 1622 (void) arc_read_nolock(NULL, dsl_dataset_get_spa(ds), 1623 &ds->ds_phys->ds_bp, NULL, NULL, 1624 ZIO_PRIORITY_ASYNC_READ, 1625 ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE, 1626 &aflags, &zb); 1627 } 1628 mutex_exit(&ds->ds_opening_lock); 1629 } 1630 1631 dsl_dataset_rele(ds, FTAG); 1632 return (0); 1633 } 1634 1635 void 1636 dmu_objset_set_user(objset_t *os, void *user_ptr) 1637 { 1638 ASSERT(MUTEX_HELD(&os->os_user_ptr_lock)); 1639 os->os_user_ptr = user_ptr; 1640 } 1641 1642 void * 1643 dmu_objset_get_user(objset_t *os) 1644 { 1645 ASSERT(MUTEX_HELD(&os->os_user_ptr_lock)); 1646 return (os->os_user_ptr); 1647 } 1648