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 * Copyright 2011 Nexenta Systems, Inc. All rights reserved. 24 * Copyright (c) 2013 by Delphix. All rights reserved. 25 * Copyright (c) 2012, Joyent, Inc. All rights reserved. 26 */ 27 28 #include <sys/dmu.h> 29 #include <sys/dmu_impl.h> 30 #include <sys/dmu_tx.h> 31 #include <sys/dbuf.h> 32 #include <sys/dnode.h> 33 #include <sys/zfs_context.h> 34 #include <sys/dmu_objset.h> 35 #include <sys/dmu_traverse.h> 36 #include <sys/dsl_dataset.h> 37 #include <sys/dsl_dir.h> 38 #include <sys/dsl_prop.h> 39 #include <sys/dsl_pool.h> 40 #include <sys/dsl_synctask.h> 41 #include <sys/zfs_ioctl.h> 42 #include <sys/zap.h> 43 #include <sys/zio_checksum.h> 44 #include <sys/zfs_znode.h> 45 #include <zfs_fletcher.h> 46 #include <sys/avl.h> 47 #include <sys/ddt.h> 48 #include <sys/zfs_onexit.h> 49 #include <sys/dmu_send.h> 50 #include <sys/dsl_destroy.h> 51 52 /* Set this tunable to TRUE to replace corrupt data with 0x2f5baddb10c */ 53 int zfs_send_corrupt_data = B_FALSE; 54 55 static char *dmu_recv_tag = "dmu_recv_tag"; 56 static const char *recv_clone_name = "%recv"; 57 58 static int 59 dump_bytes(dmu_sendarg_t *dsp, void *buf, int len) 60 { 61 dsl_dataset_t *ds = dsp->dsa_os->os_dsl_dataset; 62 ssize_t resid; /* have to get resid to get detailed errno */ 63 ASSERT0(len % 8); 64 65 fletcher_4_incremental_native(buf, len, &dsp->dsa_zc); 66 dsp->dsa_err = vn_rdwr(UIO_WRITE, dsp->dsa_vp, 67 (caddr_t)buf, len, 68 0, UIO_SYSSPACE, FAPPEND, RLIM64_INFINITY, CRED(), &resid); 69 70 mutex_enter(&ds->ds_sendstream_lock); 71 *dsp->dsa_off += len; 72 mutex_exit(&ds->ds_sendstream_lock); 73 74 return (dsp->dsa_err); 75 } 76 77 static int 78 dump_free(dmu_sendarg_t *dsp, uint64_t object, uint64_t offset, 79 uint64_t length) 80 { 81 struct drr_free *drrf = &(dsp->dsa_drr->drr_u.drr_free); 82 83 /* 84 * When we receive a free record, dbuf_free_range() assumes 85 * that the receiving system doesn't have any dbufs in the range 86 * being freed. This is always true because there is a one-record 87 * constraint: we only send one WRITE record for any given 88 * object+offset. We know that the one-record constraint is 89 * true because we always send data in increasing order by 90 * object,offset. 91 * 92 * If the increasing-order constraint ever changes, we should find 93 * another way to assert that the one-record constraint is still 94 * satisfied. 95 */ 96 ASSERT(object > dsp->dsa_last_data_object || 97 (object == dsp->dsa_last_data_object && 98 offset > dsp->dsa_last_data_offset)); 99 100 /* 101 * If we are doing a non-incremental send, then there can't 102 * be any data in the dataset we're receiving into. Therefore 103 * a free record would simply be a no-op. Save space by not 104 * sending it to begin with. 105 */ 106 if (!dsp->dsa_incremental) 107 return (0); 108 109 if (length != -1ULL && offset + length < offset) 110 length = -1ULL; 111 112 /* 113 * If there is a pending op, but it's not PENDING_FREE, push it out, 114 * since free block aggregation can only be done for blocks of the 115 * same type (i.e., DRR_FREE records can only be aggregated with 116 * other DRR_FREE records. DRR_FREEOBJECTS records can only be 117 * aggregated with other DRR_FREEOBJECTS records. 118 */ 119 if (dsp->dsa_pending_op != PENDING_NONE && 120 dsp->dsa_pending_op != PENDING_FREE) { 121 if (dump_bytes(dsp, dsp->dsa_drr, 122 sizeof (dmu_replay_record_t)) != 0) 123 return (SET_ERROR(EINTR)); 124 dsp->dsa_pending_op = PENDING_NONE; 125 } 126 127 if (dsp->dsa_pending_op == PENDING_FREE) { 128 /* 129 * There should never be a PENDING_FREE if length is -1 130 * (because dump_dnode is the only place where this 131 * function is called with a -1, and only after flushing 132 * any pending record). 133 */ 134 ASSERT(length != -1ULL); 135 /* 136 * Check to see whether this free block can be aggregated 137 * with pending one. 138 */ 139 if (drrf->drr_object == object && drrf->drr_offset + 140 drrf->drr_length == offset) { 141 drrf->drr_length += length; 142 return (0); 143 } else { 144 /* not a continuation. Push out pending record */ 145 if (dump_bytes(dsp, dsp->dsa_drr, 146 sizeof (dmu_replay_record_t)) != 0) 147 return (SET_ERROR(EINTR)); 148 dsp->dsa_pending_op = PENDING_NONE; 149 } 150 } 151 /* create a FREE record and make it pending */ 152 bzero(dsp->dsa_drr, sizeof (dmu_replay_record_t)); 153 dsp->dsa_drr->drr_type = DRR_FREE; 154 drrf->drr_object = object; 155 drrf->drr_offset = offset; 156 drrf->drr_length = length; 157 drrf->drr_toguid = dsp->dsa_toguid; 158 if (length == -1ULL) { 159 if (dump_bytes(dsp, dsp->dsa_drr, 160 sizeof (dmu_replay_record_t)) != 0) 161 return (SET_ERROR(EINTR)); 162 } else { 163 dsp->dsa_pending_op = PENDING_FREE; 164 } 165 166 return (0); 167 } 168 169 static int 170 dump_data(dmu_sendarg_t *dsp, dmu_object_type_t type, 171 uint64_t object, uint64_t offset, int blksz, const blkptr_t *bp, void *data) 172 { 173 struct drr_write *drrw = &(dsp->dsa_drr->drr_u.drr_write); 174 175 /* 176 * We send data in increasing object, offset order. 177 * See comment in dump_free() for details. 178 */ 179 ASSERT(object > dsp->dsa_last_data_object || 180 (object == dsp->dsa_last_data_object && 181 offset > dsp->dsa_last_data_offset)); 182 dsp->dsa_last_data_object = object; 183 dsp->dsa_last_data_offset = offset + blksz - 1; 184 185 /* 186 * If there is any kind of pending aggregation (currently either 187 * a grouping of free objects or free blocks), push it out to 188 * the stream, since aggregation can't be done across operations 189 * of different types. 190 */ 191 if (dsp->dsa_pending_op != PENDING_NONE) { 192 if (dump_bytes(dsp, dsp->dsa_drr, 193 sizeof (dmu_replay_record_t)) != 0) 194 return (SET_ERROR(EINTR)); 195 dsp->dsa_pending_op = PENDING_NONE; 196 } 197 /* write a DATA record */ 198 bzero(dsp->dsa_drr, sizeof (dmu_replay_record_t)); 199 dsp->dsa_drr->drr_type = DRR_WRITE; 200 drrw->drr_object = object; 201 drrw->drr_type = type; 202 drrw->drr_offset = offset; 203 drrw->drr_length = blksz; 204 drrw->drr_toguid = dsp->dsa_toguid; 205 drrw->drr_checksumtype = BP_GET_CHECKSUM(bp); 206 if (zio_checksum_table[drrw->drr_checksumtype].ci_dedup) 207 drrw->drr_checksumflags |= DRR_CHECKSUM_DEDUP; 208 DDK_SET_LSIZE(&drrw->drr_key, BP_GET_LSIZE(bp)); 209 DDK_SET_PSIZE(&drrw->drr_key, BP_GET_PSIZE(bp)); 210 DDK_SET_COMPRESS(&drrw->drr_key, BP_GET_COMPRESS(bp)); 211 drrw->drr_key.ddk_cksum = bp->blk_cksum; 212 213 if (dump_bytes(dsp, dsp->dsa_drr, sizeof (dmu_replay_record_t)) != 0) 214 return (SET_ERROR(EINTR)); 215 if (dump_bytes(dsp, data, blksz) != 0) 216 return (SET_ERROR(EINTR)); 217 return (0); 218 } 219 220 static int 221 dump_spill(dmu_sendarg_t *dsp, uint64_t object, int blksz, void *data) 222 { 223 struct drr_spill *drrs = &(dsp->dsa_drr->drr_u.drr_spill); 224 225 if (dsp->dsa_pending_op != PENDING_NONE) { 226 if (dump_bytes(dsp, dsp->dsa_drr, 227 sizeof (dmu_replay_record_t)) != 0) 228 return (SET_ERROR(EINTR)); 229 dsp->dsa_pending_op = PENDING_NONE; 230 } 231 232 /* write a SPILL record */ 233 bzero(dsp->dsa_drr, sizeof (dmu_replay_record_t)); 234 dsp->dsa_drr->drr_type = DRR_SPILL; 235 drrs->drr_object = object; 236 drrs->drr_length = blksz; 237 drrs->drr_toguid = dsp->dsa_toguid; 238 239 if (dump_bytes(dsp, dsp->dsa_drr, sizeof (dmu_replay_record_t))) 240 return (SET_ERROR(EINTR)); 241 if (dump_bytes(dsp, data, blksz)) 242 return (SET_ERROR(EINTR)); 243 return (0); 244 } 245 246 static int 247 dump_freeobjects(dmu_sendarg_t *dsp, uint64_t firstobj, uint64_t numobjs) 248 { 249 struct drr_freeobjects *drrfo = &(dsp->dsa_drr->drr_u.drr_freeobjects); 250 251 /* See comment in dump_free(). */ 252 if (!dsp->dsa_incremental) 253 return (0); 254 255 /* 256 * If there is a pending op, but it's not PENDING_FREEOBJECTS, 257 * push it out, since free block aggregation can only be done for 258 * blocks of the same type (i.e., DRR_FREE records can only be 259 * aggregated with other DRR_FREE records. DRR_FREEOBJECTS records 260 * can only be aggregated with other DRR_FREEOBJECTS records. 261 */ 262 if (dsp->dsa_pending_op != PENDING_NONE && 263 dsp->dsa_pending_op != PENDING_FREEOBJECTS) { 264 if (dump_bytes(dsp, dsp->dsa_drr, 265 sizeof (dmu_replay_record_t)) != 0) 266 return (SET_ERROR(EINTR)); 267 dsp->dsa_pending_op = PENDING_NONE; 268 } 269 if (dsp->dsa_pending_op == PENDING_FREEOBJECTS) { 270 /* 271 * See whether this free object array can be aggregated 272 * with pending one 273 */ 274 if (drrfo->drr_firstobj + drrfo->drr_numobjs == firstobj) { 275 drrfo->drr_numobjs += numobjs; 276 return (0); 277 } else { 278 /* can't be aggregated. Push out pending record */ 279 if (dump_bytes(dsp, dsp->dsa_drr, 280 sizeof (dmu_replay_record_t)) != 0) 281 return (SET_ERROR(EINTR)); 282 dsp->dsa_pending_op = PENDING_NONE; 283 } 284 } 285 286 /* write a FREEOBJECTS record */ 287 bzero(dsp->dsa_drr, sizeof (dmu_replay_record_t)); 288 dsp->dsa_drr->drr_type = DRR_FREEOBJECTS; 289 drrfo->drr_firstobj = firstobj; 290 drrfo->drr_numobjs = numobjs; 291 drrfo->drr_toguid = dsp->dsa_toguid; 292 293 dsp->dsa_pending_op = PENDING_FREEOBJECTS; 294 295 return (0); 296 } 297 298 static int 299 dump_dnode(dmu_sendarg_t *dsp, uint64_t object, dnode_phys_t *dnp) 300 { 301 struct drr_object *drro = &(dsp->dsa_drr->drr_u.drr_object); 302 303 if (dnp == NULL || dnp->dn_type == DMU_OT_NONE) 304 return (dump_freeobjects(dsp, object, 1)); 305 306 if (dsp->dsa_pending_op != PENDING_NONE) { 307 if (dump_bytes(dsp, dsp->dsa_drr, 308 sizeof (dmu_replay_record_t)) != 0) 309 return (SET_ERROR(EINTR)); 310 dsp->dsa_pending_op = PENDING_NONE; 311 } 312 313 /* write an OBJECT record */ 314 bzero(dsp->dsa_drr, sizeof (dmu_replay_record_t)); 315 dsp->dsa_drr->drr_type = DRR_OBJECT; 316 drro->drr_object = object; 317 drro->drr_type = dnp->dn_type; 318 drro->drr_bonustype = dnp->dn_bonustype; 319 drro->drr_blksz = dnp->dn_datablkszsec << SPA_MINBLOCKSHIFT; 320 drro->drr_bonuslen = dnp->dn_bonuslen; 321 drro->drr_checksumtype = dnp->dn_checksum; 322 drro->drr_compress = dnp->dn_compress; 323 drro->drr_toguid = dsp->dsa_toguid; 324 325 if (dump_bytes(dsp, dsp->dsa_drr, sizeof (dmu_replay_record_t)) != 0) 326 return (SET_ERROR(EINTR)); 327 328 if (dump_bytes(dsp, DN_BONUS(dnp), P2ROUNDUP(dnp->dn_bonuslen, 8)) != 0) 329 return (SET_ERROR(EINTR)); 330 331 /* Free anything past the end of the file. */ 332 if (dump_free(dsp, object, (dnp->dn_maxblkid + 1) * 333 (dnp->dn_datablkszsec << SPA_MINBLOCKSHIFT), -1ULL) != 0) 334 return (SET_ERROR(EINTR)); 335 if (dsp->dsa_err != 0) 336 return (SET_ERROR(EINTR)); 337 return (0); 338 } 339 340 #define BP_SPAN(dnp, level) \ 341 (((uint64_t)dnp->dn_datablkszsec) << (SPA_MINBLOCKSHIFT + \ 342 (level) * (dnp->dn_indblkshift - SPA_BLKPTRSHIFT))) 343 344 /* ARGSUSED */ 345 static int 346 backup_cb(spa_t *spa, zilog_t *zilog, const blkptr_t *bp, 347 const zbookmark_t *zb, const dnode_phys_t *dnp, void *arg) 348 { 349 dmu_sendarg_t *dsp = arg; 350 dmu_object_type_t type = bp ? BP_GET_TYPE(bp) : DMU_OT_NONE; 351 int err = 0; 352 353 if (issig(JUSTLOOKING) && issig(FORREAL)) 354 return (SET_ERROR(EINTR)); 355 356 if (zb->zb_object != DMU_META_DNODE_OBJECT && 357 DMU_OBJECT_IS_SPECIAL(zb->zb_object)) { 358 return (0); 359 } else if (BP_IS_HOLE(bp) && 360 zb->zb_object == DMU_META_DNODE_OBJECT) { 361 uint64_t span = BP_SPAN(dnp, zb->zb_level); 362 uint64_t dnobj = (zb->zb_blkid * span) >> DNODE_SHIFT; 363 err = dump_freeobjects(dsp, dnobj, span >> DNODE_SHIFT); 364 } else if (BP_IS_HOLE(bp)) { 365 uint64_t span = BP_SPAN(dnp, zb->zb_level); 366 err = dump_free(dsp, zb->zb_object, zb->zb_blkid * span, span); 367 } else if (zb->zb_level > 0 || type == DMU_OT_OBJSET) { 368 return (0); 369 } else if (type == DMU_OT_DNODE) { 370 dnode_phys_t *blk; 371 int i; 372 int blksz = BP_GET_LSIZE(bp); 373 uint32_t aflags = ARC_WAIT; 374 arc_buf_t *abuf; 375 376 if (arc_read(NULL, spa, bp, arc_getbuf_func, &abuf, 377 ZIO_PRIORITY_ASYNC_READ, ZIO_FLAG_CANFAIL, 378 &aflags, zb) != 0) 379 return (SET_ERROR(EIO)); 380 381 blk = abuf->b_data; 382 for (i = 0; i < blksz >> DNODE_SHIFT; i++) { 383 uint64_t dnobj = (zb->zb_blkid << 384 (DNODE_BLOCK_SHIFT - DNODE_SHIFT)) + i; 385 err = dump_dnode(dsp, dnobj, blk+i); 386 if (err != 0) 387 break; 388 } 389 (void) arc_buf_remove_ref(abuf, &abuf); 390 } else if (type == DMU_OT_SA) { 391 uint32_t aflags = ARC_WAIT; 392 arc_buf_t *abuf; 393 int blksz = BP_GET_LSIZE(bp); 394 395 if (arc_read(NULL, spa, bp, arc_getbuf_func, &abuf, 396 ZIO_PRIORITY_ASYNC_READ, ZIO_FLAG_CANFAIL, 397 &aflags, zb) != 0) 398 return (SET_ERROR(EIO)); 399 400 err = dump_spill(dsp, zb->zb_object, blksz, abuf->b_data); 401 (void) arc_buf_remove_ref(abuf, &abuf); 402 } else { /* it's a level-0 block of a regular object */ 403 uint32_t aflags = ARC_WAIT; 404 arc_buf_t *abuf; 405 int blksz = BP_GET_LSIZE(bp); 406 407 if (arc_read(NULL, spa, bp, arc_getbuf_func, &abuf, 408 ZIO_PRIORITY_ASYNC_READ, ZIO_FLAG_CANFAIL, 409 &aflags, zb) != 0) { 410 if (zfs_send_corrupt_data) { 411 /* Send a block filled with 0x"zfs badd bloc" */ 412 abuf = arc_buf_alloc(spa, blksz, &abuf, 413 ARC_BUFC_DATA); 414 uint64_t *ptr; 415 for (ptr = abuf->b_data; 416 (char *)ptr < (char *)abuf->b_data + blksz; 417 ptr++) 418 *ptr = 0x2f5baddb10c; 419 } else { 420 return (SET_ERROR(EIO)); 421 } 422 } 423 424 err = dump_data(dsp, type, zb->zb_object, zb->zb_blkid * blksz, 425 blksz, bp, abuf->b_data); 426 (void) arc_buf_remove_ref(abuf, &abuf); 427 } 428 429 ASSERT(err == 0 || err == EINTR); 430 return (err); 431 } 432 433 /* 434 * Releases dp, ds, and fromds, using the specified tag. 435 */ 436 static int 437 dmu_send_impl(void *tag, dsl_pool_t *dp, dsl_dataset_t *ds, 438 dsl_dataset_t *fromds, int outfd, vnode_t *vp, offset_t *off) 439 { 440 objset_t *os; 441 dmu_replay_record_t *drr; 442 dmu_sendarg_t *dsp; 443 int err; 444 uint64_t fromtxg = 0; 445 446 if (fromds != NULL && !dsl_dataset_is_before(ds, fromds)) { 447 dsl_dataset_rele(fromds, tag); 448 dsl_dataset_rele(ds, tag); 449 dsl_pool_rele(dp, tag); 450 return (SET_ERROR(EXDEV)); 451 } 452 453 err = dmu_objset_from_ds(ds, &os); 454 if (err != 0) { 455 if (fromds != NULL) 456 dsl_dataset_rele(fromds, tag); 457 dsl_dataset_rele(ds, tag); 458 dsl_pool_rele(dp, tag); 459 return (err); 460 } 461 462 drr = kmem_zalloc(sizeof (dmu_replay_record_t), KM_SLEEP); 463 drr->drr_type = DRR_BEGIN; 464 drr->drr_u.drr_begin.drr_magic = DMU_BACKUP_MAGIC; 465 DMU_SET_STREAM_HDRTYPE(drr->drr_u.drr_begin.drr_versioninfo, 466 DMU_SUBSTREAM); 467 468 #ifdef _KERNEL 469 if (dmu_objset_type(os) == DMU_OST_ZFS) { 470 uint64_t version; 471 if (zfs_get_zplprop(os, ZFS_PROP_VERSION, &version) != 0) { 472 kmem_free(drr, sizeof (dmu_replay_record_t)); 473 if (fromds != NULL) 474 dsl_dataset_rele(fromds, tag); 475 dsl_dataset_rele(ds, tag); 476 dsl_pool_rele(dp, tag); 477 return (SET_ERROR(EINVAL)); 478 } 479 if (version >= ZPL_VERSION_SA) { 480 DMU_SET_FEATUREFLAGS( 481 drr->drr_u.drr_begin.drr_versioninfo, 482 DMU_BACKUP_FEATURE_SA_SPILL); 483 } 484 } 485 #endif 486 487 drr->drr_u.drr_begin.drr_creation_time = 488 ds->ds_phys->ds_creation_time; 489 drr->drr_u.drr_begin.drr_type = dmu_objset_type(os); 490 if (fromds != NULL && ds->ds_dir != fromds->ds_dir) 491 drr->drr_u.drr_begin.drr_flags |= DRR_FLAG_CLONE; 492 drr->drr_u.drr_begin.drr_toguid = ds->ds_phys->ds_guid; 493 if (ds->ds_phys->ds_flags & DS_FLAG_CI_DATASET) 494 drr->drr_u.drr_begin.drr_flags |= DRR_FLAG_CI_DATA; 495 496 if (fromds != NULL) 497 drr->drr_u.drr_begin.drr_fromguid = fromds->ds_phys->ds_guid; 498 dsl_dataset_name(ds, drr->drr_u.drr_begin.drr_toname); 499 500 if (fromds != NULL) { 501 fromtxg = fromds->ds_phys->ds_creation_txg; 502 dsl_dataset_rele(fromds, tag); 503 fromds = NULL; 504 } 505 506 dsp = kmem_zalloc(sizeof (dmu_sendarg_t), KM_SLEEP); 507 508 dsp->dsa_drr = drr; 509 dsp->dsa_vp = vp; 510 dsp->dsa_outfd = outfd; 511 dsp->dsa_proc = curproc; 512 dsp->dsa_os = os; 513 dsp->dsa_off = off; 514 dsp->dsa_toguid = ds->ds_phys->ds_guid; 515 ZIO_SET_CHECKSUM(&dsp->dsa_zc, 0, 0, 0, 0); 516 dsp->dsa_pending_op = PENDING_NONE; 517 dsp->dsa_incremental = (fromtxg != 0); 518 519 mutex_enter(&ds->ds_sendstream_lock); 520 list_insert_head(&ds->ds_sendstreams, dsp); 521 mutex_exit(&ds->ds_sendstream_lock); 522 523 dsl_dataset_long_hold(ds, FTAG); 524 dsl_pool_rele(dp, tag); 525 526 if (dump_bytes(dsp, drr, sizeof (dmu_replay_record_t)) != 0) { 527 err = dsp->dsa_err; 528 goto out; 529 } 530 531 err = traverse_dataset(ds, fromtxg, TRAVERSE_PRE | TRAVERSE_PREFETCH, 532 backup_cb, dsp); 533 534 if (dsp->dsa_pending_op != PENDING_NONE) 535 if (dump_bytes(dsp, drr, sizeof (dmu_replay_record_t)) != 0) 536 err = SET_ERROR(EINTR); 537 538 if (err != 0) { 539 if (err == EINTR && dsp->dsa_err != 0) 540 err = dsp->dsa_err; 541 goto out; 542 } 543 544 bzero(drr, sizeof (dmu_replay_record_t)); 545 drr->drr_type = DRR_END; 546 drr->drr_u.drr_end.drr_checksum = dsp->dsa_zc; 547 drr->drr_u.drr_end.drr_toguid = dsp->dsa_toguid; 548 549 if (dump_bytes(dsp, drr, sizeof (dmu_replay_record_t)) != 0) { 550 err = dsp->dsa_err; 551 goto out; 552 } 553 554 out: 555 mutex_enter(&ds->ds_sendstream_lock); 556 list_remove(&ds->ds_sendstreams, dsp); 557 mutex_exit(&ds->ds_sendstream_lock); 558 559 kmem_free(drr, sizeof (dmu_replay_record_t)); 560 kmem_free(dsp, sizeof (dmu_sendarg_t)); 561 562 dsl_dataset_long_rele(ds, FTAG); 563 dsl_dataset_rele(ds, tag); 564 565 return (err); 566 } 567 568 int 569 dmu_send_obj(const char *pool, uint64_t tosnap, uint64_t fromsnap, 570 int outfd, vnode_t *vp, offset_t *off) 571 { 572 dsl_pool_t *dp; 573 dsl_dataset_t *ds; 574 dsl_dataset_t *fromds = NULL; 575 int err; 576 577 err = dsl_pool_hold(pool, FTAG, &dp); 578 if (err != 0) 579 return (err); 580 581 err = dsl_dataset_hold_obj(dp, tosnap, FTAG, &ds); 582 if (err != 0) { 583 dsl_pool_rele(dp, FTAG); 584 return (err); 585 } 586 587 if (fromsnap != 0) { 588 err = dsl_dataset_hold_obj(dp, fromsnap, FTAG, &fromds); 589 if (err != 0) { 590 dsl_dataset_rele(ds, FTAG); 591 dsl_pool_rele(dp, FTAG); 592 return (err); 593 } 594 } 595 596 return (dmu_send_impl(FTAG, dp, ds, fromds, outfd, vp, off)); 597 } 598 599 int 600 dmu_send(const char *tosnap, const char *fromsnap, 601 int outfd, vnode_t *vp, offset_t *off) 602 { 603 dsl_pool_t *dp; 604 dsl_dataset_t *ds; 605 dsl_dataset_t *fromds = NULL; 606 int err; 607 608 if (strchr(tosnap, '@') == NULL) 609 return (SET_ERROR(EINVAL)); 610 if (fromsnap != NULL && strchr(fromsnap, '@') == NULL) 611 return (SET_ERROR(EINVAL)); 612 613 err = dsl_pool_hold(tosnap, FTAG, &dp); 614 if (err != 0) 615 return (err); 616 617 err = dsl_dataset_hold(dp, tosnap, FTAG, &ds); 618 if (err != 0) { 619 dsl_pool_rele(dp, FTAG); 620 return (err); 621 } 622 623 if (fromsnap != NULL) { 624 err = dsl_dataset_hold(dp, fromsnap, FTAG, &fromds); 625 if (err != 0) { 626 dsl_dataset_rele(ds, FTAG); 627 dsl_pool_rele(dp, FTAG); 628 return (err); 629 } 630 } 631 return (dmu_send_impl(FTAG, dp, ds, fromds, outfd, vp, off)); 632 } 633 634 int 635 dmu_send_estimate(dsl_dataset_t *ds, dsl_dataset_t *fromds, uint64_t *sizep) 636 { 637 dsl_pool_t *dp = ds->ds_dir->dd_pool; 638 int err; 639 uint64_t size; 640 641 ASSERT(dsl_pool_config_held(dp)); 642 643 /* tosnap must be a snapshot */ 644 if (!dsl_dataset_is_snapshot(ds)) 645 return (SET_ERROR(EINVAL)); 646 647 /* 648 * fromsnap must be an earlier snapshot from the same fs as tosnap, 649 * or the origin's fs. 650 */ 651 if (fromds != NULL && !dsl_dataset_is_before(ds, fromds)) 652 return (SET_ERROR(EXDEV)); 653 654 /* Get uncompressed size estimate of changed data. */ 655 if (fromds == NULL) { 656 size = ds->ds_phys->ds_uncompressed_bytes; 657 } else { 658 uint64_t used, comp; 659 err = dsl_dataset_space_written(fromds, ds, 660 &used, &comp, &size); 661 if (err != 0) 662 return (err); 663 } 664 665 /* 666 * Assume that space (both on-disk and in-stream) is dominated by 667 * data. We will adjust for indirect blocks and the copies property, 668 * but ignore per-object space used (eg, dnodes and DRR_OBJECT records). 669 */ 670 671 /* 672 * Subtract out approximate space used by indirect blocks. 673 * Assume most space is used by data blocks (non-indirect, non-dnode). 674 * Assume all blocks are recordsize. Assume ditto blocks and 675 * internal fragmentation counter out compression. 676 * 677 * Therefore, space used by indirect blocks is sizeof(blkptr_t) per 678 * block, which we observe in practice. 679 */ 680 uint64_t recordsize; 681 err = dsl_prop_get_int_ds(ds, "recordsize", &recordsize); 682 if (err != 0) 683 return (err); 684 size -= size / recordsize * sizeof (blkptr_t); 685 686 /* Add in the space for the record associated with each block. */ 687 size += size / recordsize * sizeof (dmu_replay_record_t); 688 689 *sizep = size; 690 691 return (0); 692 } 693 694 typedef struct dmu_recv_begin_arg { 695 const char *drba_origin; 696 dmu_recv_cookie_t *drba_cookie; 697 cred_t *drba_cred; 698 uint64_t drba_snapobj; 699 } dmu_recv_begin_arg_t; 700 701 static int 702 recv_begin_check_existing_impl(dmu_recv_begin_arg_t *drba, dsl_dataset_t *ds, 703 uint64_t fromguid) 704 { 705 uint64_t val; 706 int error; 707 dsl_pool_t *dp = ds->ds_dir->dd_pool; 708 709 /* temporary clone name must not exist */ 710 error = zap_lookup(dp->dp_meta_objset, 711 ds->ds_dir->dd_phys->dd_child_dir_zapobj, recv_clone_name, 712 8, 1, &val); 713 if (error != ENOENT) 714 return (error == 0 ? EBUSY : error); 715 716 /* new snapshot name must not exist */ 717 error = zap_lookup(dp->dp_meta_objset, 718 ds->ds_phys->ds_snapnames_zapobj, drba->drba_cookie->drc_tosnap, 719 8, 1, &val); 720 if (error != ENOENT) 721 return (error == 0 ? EEXIST : error); 722 723 if (fromguid != 0) { 724 dsl_dataset_t *snap; 725 uint64_t obj = ds->ds_phys->ds_prev_snap_obj; 726 727 /* Find snapshot in this dir that matches fromguid. */ 728 while (obj != 0) { 729 error = dsl_dataset_hold_obj(dp, obj, FTAG, 730 &snap); 731 if (error != 0) 732 return (SET_ERROR(ENODEV)); 733 if (snap->ds_dir != ds->ds_dir) { 734 dsl_dataset_rele(snap, FTAG); 735 return (SET_ERROR(ENODEV)); 736 } 737 if (snap->ds_phys->ds_guid == fromguid) 738 break; 739 obj = snap->ds_phys->ds_prev_snap_obj; 740 dsl_dataset_rele(snap, FTAG); 741 } 742 if (obj == 0) 743 return (SET_ERROR(ENODEV)); 744 745 if (drba->drba_cookie->drc_force) { 746 drba->drba_snapobj = obj; 747 } else { 748 /* 749 * If we are not forcing, there must be no 750 * changes since fromsnap. 751 */ 752 if (dsl_dataset_modified_since_snap(ds, snap)) { 753 dsl_dataset_rele(snap, FTAG); 754 return (SET_ERROR(ETXTBSY)); 755 } 756 drba->drba_snapobj = ds->ds_prev->ds_object; 757 } 758 759 dsl_dataset_rele(snap, FTAG); 760 } else { 761 /* if full, most recent snapshot must be $ORIGIN */ 762 if (ds->ds_phys->ds_prev_snap_txg >= TXG_INITIAL) 763 return (SET_ERROR(ENODEV)); 764 drba->drba_snapobj = ds->ds_phys->ds_prev_snap_obj; 765 } 766 767 return (0); 768 769 } 770 771 static int 772 dmu_recv_begin_check(void *arg, dmu_tx_t *tx) 773 { 774 dmu_recv_begin_arg_t *drba = arg; 775 dsl_pool_t *dp = dmu_tx_pool(tx); 776 struct drr_begin *drrb = drba->drba_cookie->drc_drrb; 777 uint64_t fromguid = drrb->drr_fromguid; 778 int flags = drrb->drr_flags; 779 int error; 780 dsl_dataset_t *ds; 781 const char *tofs = drba->drba_cookie->drc_tofs; 782 783 /* already checked */ 784 ASSERT3U(drrb->drr_magic, ==, DMU_BACKUP_MAGIC); 785 786 if (DMU_GET_STREAM_HDRTYPE(drrb->drr_versioninfo) == 787 DMU_COMPOUNDSTREAM || 788 drrb->drr_type >= DMU_OST_NUMTYPES || 789 ((flags & DRR_FLAG_CLONE) && drba->drba_origin == NULL)) 790 return (SET_ERROR(EINVAL)); 791 792 /* Verify pool version supports SA if SA_SPILL feature set */ 793 if ((DMU_GET_FEATUREFLAGS(drrb->drr_versioninfo) & 794 DMU_BACKUP_FEATURE_SA_SPILL) && 795 spa_version(dp->dp_spa) < SPA_VERSION_SA) { 796 return (SET_ERROR(ENOTSUP)); 797 } 798 799 error = dsl_dataset_hold(dp, tofs, FTAG, &ds); 800 if (error == 0) { 801 /* target fs already exists; recv into temp clone */ 802 803 /* Can't recv a clone into an existing fs */ 804 if (flags & DRR_FLAG_CLONE) { 805 dsl_dataset_rele(ds, FTAG); 806 return (SET_ERROR(EINVAL)); 807 } 808 809 error = recv_begin_check_existing_impl(drba, ds, fromguid); 810 dsl_dataset_rele(ds, FTAG); 811 } else if (error == ENOENT) { 812 /* target fs does not exist; must be a full backup or clone */ 813 char buf[MAXNAMELEN]; 814 815 /* 816 * If it's a non-clone incremental, we are missing the 817 * target fs, so fail the recv. 818 */ 819 if (fromguid != 0 && !(flags & DRR_FLAG_CLONE)) 820 return (SET_ERROR(ENOENT)); 821 822 /* Open the parent of tofs */ 823 ASSERT3U(strlen(tofs), <, MAXNAMELEN); 824 (void) strlcpy(buf, tofs, strrchr(tofs, '/') - tofs + 1); 825 error = dsl_dataset_hold(dp, buf, FTAG, &ds); 826 if (error != 0) 827 return (error); 828 829 if (drba->drba_origin != NULL) { 830 dsl_dataset_t *origin; 831 error = dsl_dataset_hold(dp, drba->drba_origin, 832 FTAG, &origin); 833 if (error != 0) { 834 dsl_dataset_rele(ds, FTAG); 835 return (error); 836 } 837 if (!dsl_dataset_is_snapshot(origin)) { 838 dsl_dataset_rele(origin, FTAG); 839 dsl_dataset_rele(ds, FTAG); 840 return (SET_ERROR(EINVAL)); 841 } 842 if (origin->ds_phys->ds_guid != fromguid) { 843 dsl_dataset_rele(origin, FTAG); 844 dsl_dataset_rele(ds, FTAG); 845 return (SET_ERROR(ENODEV)); 846 } 847 dsl_dataset_rele(origin, FTAG); 848 } 849 dsl_dataset_rele(ds, FTAG); 850 error = 0; 851 } 852 return (error); 853 } 854 855 static void 856 dmu_recv_begin_sync(void *arg, dmu_tx_t *tx) 857 { 858 dmu_recv_begin_arg_t *drba = arg; 859 dsl_pool_t *dp = dmu_tx_pool(tx); 860 struct drr_begin *drrb = drba->drba_cookie->drc_drrb; 861 const char *tofs = drba->drba_cookie->drc_tofs; 862 dsl_dataset_t *ds, *newds; 863 uint64_t dsobj; 864 int error; 865 uint64_t crflags; 866 867 crflags = (drrb->drr_flags & DRR_FLAG_CI_DATA) ? 868 DS_FLAG_CI_DATASET : 0; 869 870 error = dsl_dataset_hold(dp, tofs, FTAG, &ds); 871 if (error == 0) { 872 /* create temporary clone */ 873 dsl_dataset_t *snap = NULL; 874 if (drba->drba_snapobj != 0) { 875 VERIFY0(dsl_dataset_hold_obj(dp, 876 drba->drba_snapobj, FTAG, &snap)); 877 } 878 dsobj = dsl_dataset_create_sync(ds->ds_dir, recv_clone_name, 879 snap, crflags, drba->drba_cred, tx); 880 dsl_dataset_rele(snap, FTAG); 881 dsl_dataset_rele(ds, FTAG); 882 } else { 883 dsl_dir_t *dd; 884 const char *tail; 885 dsl_dataset_t *origin = NULL; 886 887 VERIFY0(dsl_dir_hold(dp, tofs, FTAG, &dd, &tail)); 888 889 if (drba->drba_origin != NULL) { 890 VERIFY0(dsl_dataset_hold(dp, drba->drba_origin, 891 FTAG, &origin)); 892 } 893 894 /* Create new dataset. */ 895 dsobj = dsl_dataset_create_sync(dd, 896 strrchr(tofs, '/') + 1, 897 origin, crflags, drba->drba_cred, tx); 898 if (origin != NULL) 899 dsl_dataset_rele(origin, FTAG); 900 dsl_dir_rele(dd, FTAG); 901 drba->drba_cookie->drc_newfs = B_TRUE; 902 } 903 VERIFY0(dsl_dataset_own_obj(dp, dsobj, dmu_recv_tag, &newds)); 904 905 dmu_buf_will_dirty(newds->ds_dbuf, tx); 906 newds->ds_phys->ds_flags |= DS_FLAG_INCONSISTENT; 907 908 /* 909 * If we actually created a non-clone, we need to create the 910 * objset in our new dataset. 911 */ 912 if (BP_IS_HOLE(dsl_dataset_get_blkptr(newds))) { 913 (void) dmu_objset_create_impl(dp->dp_spa, 914 newds, dsl_dataset_get_blkptr(newds), drrb->drr_type, tx); 915 } 916 917 drba->drba_cookie->drc_ds = newds; 918 919 spa_history_log_internal_ds(newds, "receive", tx, ""); 920 } 921 922 /* 923 * NB: callers *MUST* call dmu_recv_stream() if dmu_recv_begin() 924 * succeeds; otherwise we will leak the holds on the datasets. 925 */ 926 int 927 dmu_recv_begin(char *tofs, char *tosnap, struct drr_begin *drrb, 928 boolean_t force, char *origin, dmu_recv_cookie_t *drc) 929 { 930 dmu_recv_begin_arg_t drba = { 0 }; 931 dmu_replay_record_t *drr; 932 933 bzero(drc, sizeof (dmu_recv_cookie_t)); 934 drc->drc_drrb = drrb; 935 drc->drc_tosnap = tosnap; 936 drc->drc_tofs = tofs; 937 drc->drc_force = force; 938 939 if (drrb->drr_magic == BSWAP_64(DMU_BACKUP_MAGIC)) 940 drc->drc_byteswap = B_TRUE; 941 else if (drrb->drr_magic != DMU_BACKUP_MAGIC) 942 return (SET_ERROR(EINVAL)); 943 944 drr = kmem_zalloc(sizeof (dmu_replay_record_t), KM_SLEEP); 945 drr->drr_type = DRR_BEGIN; 946 drr->drr_u.drr_begin = *drc->drc_drrb; 947 if (drc->drc_byteswap) { 948 fletcher_4_incremental_byteswap(drr, 949 sizeof (dmu_replay_record_t), &drc->drc_cksum); 950 } else { 951 fletcher_4_incremental_native(drr, 952 sizeof (dmu_replay_record_t), &drc->drc_cksum); 953 } 954 kmem_free(drr, sizeof (dmu_replay_record_t)); 955 956 if (drc->drc_byteswap) { 957 drrb->drr_magic = BSWAP_64(drrb->drr_magic); 958 drrb->drr_versioninfo = BSWAP_64(drrb->drr_versioninfo); 959 drrb->drr_creation_time = BSWAP_64(drrb->drr_creation_time); 960 drrb->drr_type = BSWAP_32(drrb->drr_type); 961 drrb->drr_toguid = BSWAP_64(drrb->drr_toguid); 962 drrb->drr_fromguid = BSWAP_64(drrb->drr_fromguid); 963 } 964 965 drba.drba_origin = origin; 966 drba.drba_cookie = drc; 967 drba.drba_cred = CRED(); 968 969 return (dsl_sync_task(tofs, dmu_recv_begin_check, dmu_recv_begin_sync, 970 &drba, 5)); 971 } 972 973 struct restorearg { 974 int err; 975 boolean_t byteswap; 976 vnode_t *vp; 977 char *buf; 978 uint64_t voff; 979 int bufsize; /* amount of memory allocated for buf */ 980 zio_cksum_t cksum; 981 avl_tree_t *guid_to_ds_map; 982 }; 983 984 typedef struct guid_map_entry { 985 uint64_t guid; 986 dsl_dataset_t *gme_ds; 987 avl_node_t avlnode; 988 } guid_map_entry_t; 989 990 static int 991 guid_compare(const void *arg1, const void *arg2) 992 { 993 const guid_map_entry_t *gmep1 = arg1; 994 const guid_map_entry_t *gmep2 = arg2; 995 996 if (gmep1->guid < gmep2->guid) 997 return (-1); 998 else if (gmep1->guid > gmep2->guid) 999 return (1); 1000 return (0); 1001 } 1002 1003 static void 1004 free_guid_map_onexit(void *arg) 1005 { 1006 avl_tree_t *ca = arg; 1007 void *cookie = NULL; 1008 guid_map_entry_t *gmep; 1009 1010 while ((gmep = avl_destroy_nodes(ca, &cookie)) != NULL) { 1011 dsl_dataset_long_rele(gmep->gme_ds, gmep); 1012 dsl_dataset_rele(gmep->gme_ds, gmep); 1013 kmem_free(gmep, sizeof (guid_map_entry_t)); 1014 } 1015 avl_destroy(ca); 1016 kmem_free(ca, sizeof (avl_tree_t)); 1017 } 1018 1019 static void * 1020 restore_read(struct restorearg *ra, int len) 1021 { 1022 void *rv; 1023 int done = 0; 1024 1025 /* some things will require 8-byte alignment, so everything must */ 1026 ASSERT0(len % 8); 1027 1028 while (done < len) { 1029 ssize_t resid; 1030 1031 ra->err = vn_rdwr(UIO_READ, ra->vp, 1032 (caddr_t)ra->buf + done, len - done, 1033 ra->voff, UIO_SYSSPACE, FAPPEND, 1034 RLIM64_INFINITY, CRED(), &resid); 1035 1036 if (resid == len - done) 1037 ra->err = SET_ERROR(EINVAL); 1038 ra->voff += len - done - resid; 1039 done = len - resid; 1040 if (ra->err != 0) 1041 return (NULL); 1042 } 1043 1044 ASSERT3U(done, ==, len); 1045 rv = ra->buf; 1046 if (ra->byteswap) 1047 fletcher_4_incremental_byteswap(rv, len, &ra->cksum); 1048 else 1049 fletcher_4_incremental_native(rv, len, &ra->cksum); 1050 return (rv); 1051 } 1052 1053 static void 1054 backup_byteswap(dmu_replay_record_t *drr) 1055 { 1056 #define DO64(X) (drr->drr_u.X = BSWAP_64(drr->drr_u.X)) 1057 #define DO32(X) (drr->drr_u.X = BSWAP_32(drr->drr_u.X)) 1058 drr->drr_type = BSWAP_32(drr->drr_type); 1059 drr->drr_payloadlen = BSWAP_32(drr->drr_payloadlen); 1060 switch (drr->drr_type) { 1061 case DRR_BEGIN: 1062 DO64(drr_begin.drr_magic); 1063 DO64(drr_begin.drr_versioninfo); 1064 DO64(drr_begin.drr_creation_time); 1065 DO32(drr_begin.drr_type); 1066 DO32(drr_begin.drr_flags); 1067 DO64(drr_begin.drr_toguid); 1068 DO64(drr_begin.drr_fromguid); 1069 break; 1070 case DRR_OBJECT: 1071 DO64(drr_object.drr_object); 1072 /* DO64(drr_object.drr_allocation_txg); */ 1073 DO32(drr_object.drr_type); 1074 DO32(drr_object.drr_bonustype); 1075 DO32(drr_object.drr_blksz); 1076 DO32(drr_object.drr_bonuslen); 1077 DO64(drr_object.drr_toguid); 1078 break; 1079 case DRR_FREEOBJECTS: 1080 DO64(drr_freeobjects.drr_firstobj); 1081 DO64(drr_freeobjects.drr_numobjs); 1082 DO64(drr_freeobjects.drr_toguid); 1083 break; 1084 case DRR_WRITE: 1085 DO64(drr_write.drr_object); 1086 DO32(drr_write.drr_type); 1087 DO64(drr_write.drr_offset); 1088 DO64(drr_write.drr_length); 1089 DO64(drr_write.drr_toguid); 1090 DO64(drr_write.drr_key.ddk_cksum.zc_word[0]); 1091 DO64(drr_write.drr_key.ddk_cksum.zc_word[1]); 1092 DO64(drr_write.drr_key.ddk_cksum.zc_word[2]); 1093 DO64(drr_write.drr_key.ddk_cksum.zc_word[3]); 1094 DO64(drr_write.drr_key.ddk_prop); 1095 break; 1096 case DRR_WRITE_BYREF: 1097 DO64(drr_write_byref.drr_object); 1098 DO64(drr_write_byref.drr_offset); 1099 DO64(drr_write_byref.drr_length); 1100 DO64(drr_write_byref.drr_toguid); 1101 DO64(drr_write_byref.drr_refguid); 1102 DO64(drr_write_byref.drr_refobject); 1103 DO64(drr_write_byref.drr_refoffset); 1104 DO64(drr_write_byref.drr_key.ddk_cksum.zc_word[0]); 1105 DO64(drr_write_byref.drr_key.ddk_cksum.zc_word[1]); 1106 DO64(drr_write_byref.drr_key.ddk_cksum.zc_word[2]); 1107 DO64(drr_write_byref.drr_key.ddk_cksum.zc_word[3]); 1108 DO64(drr_write_byref.drr_key.ddk_prop); 1109 break; 1110 case DRR_FREE: 1111 DO64(drr_free.drr_object); 1112 DO64(drr_free.drr_offset); 1113 DO64(drr_free.drr_length); 1114 DO64(drr_free.drr_toguid); 1115 break; 1116 case DRR_SPILL: 1117 DO64(drr_spill.drr_object); 1118 DO64(drr_spill.drr_length); 1119 DO64(drr_spill.drr_toguid); 1120 break; 1121 case DRR_END: 1122 DO64(drr_end.drr_checksum.zc_word[0]); 1123 DO64(drr_end.drr_checksum.zc_word[1]); 1124 DO64(drr_end.drr_checksum.zc_word[2]); 1125 DO64(drr_end.drr_checksum.zc_word[3]); 1126 DO64(drr_end.drr_toguid); 1127 break; 1128 } 1129 #undef DO64 1130 #undef DO32 1131 } 1132 1133 static int 1134 restore_object(struct restorearg *ra, objset_t *os, struct drr_object *drro) 1135 { 1136 int err; 1137 dmu_tx_t *tx; 1138 void *data = NULL; 1139 1140 if (drro->drr_type == DMU_OT_NONE || 1141 !DMU_OT_IS_VALID(drro->drr_type) || 1142 !DMU_OT_IS_VALID(drro->drr_bonustype) || 1143 drro->drr_checksumtype >= ZIO_CHECKSUM_FUNCTIONS || 1144 drro->drr_compress >= ZIO_COMPRESS_FUNCTIONS || 1145 P2PHASE(drro->drr_blksz, SPA_MINBLOCKSIZE) || 1146 drro->drr_blksz < SPA_MINBLOCKSIZE || 1147 drro->drr_blksz > SPA_MAXBLOCKSIZE || 1148 drro->drr_bonuslen > DN_MAX_BONUSLEN) { 1149 return (SET_ERROR(EINVAL)); 1150 } 1151 1152 err = dmu_object_info(os, drro->drr_object, NULL); 1153 1154 if (err != 0 && err != ENOENT) 1155 return (SET_ERROR(EINVAL)); 1156 1157 if (drro->drr_bonuslen) { 1158 data = restore_read(ra, P2ROUNDUP(drro->drr_bonuslen, 8)); 1159 if (ra->err != 0) 1160 return (ra->err); 1161 } 1162 1163 if (err == ENOENT) { 1164 /* currently free, want to be allocated */ 1165 tx = dmu_tx_create(os); 1166 dmu_tx_hold_bonus(tx, DMU_NEW_OBJECT); 1167 err = dmu_tx_assign(tx, TXG_WAIT); 1168 if (err != 0) { 1169 dmu_tx_abort(tx); 1170 return (err); 1171 } 1172 err = dmu_object_claim(os, drro->drr_object, 1173 drro->drr_type, drro->drr_blksz, 1174 drro->drr_bonustype, drro->drr_bonuslen, tx); 1175 dmu_tx_commit(tx); 1176 } else { 1177 /* currently allocated, want to be allocated */ 1178 err = dmu_object_reclaim(os, drro->drr_object, 1179 drro->drr_type, drro->drr_blksz, 1180 drro->drr_bonustype, drro->drr_bonuslen); 1181 } 1182 if (err != 0) { 1183 return (SET_ERROR(EINVAL)); 1184 } 1185 1186 tx = dmu_tx_create(os); 1187 dmu_tx_hold_bonus(tx, drro->drr_object); 1188 err = dmu_tx_assign(tx, TXG_WAIT); 1189 if (err != 0) { 1190 dmu_tx_abort(tx); 1191 return (err); 1192 } 1193 1194 dmu_object_set_checksum(os, drro->drr_object, drro->drr_checksumtype, 1195 tx); 1196 dmu_object_set_compress(os, drro->drr_object, drro->drr_compress, tx); 1197 1198 if (data != NULL) { 1199 dmu_buf_t *db; 1200 1201 VERIFY(0 == dmu_bonus_hold(os, drro->drr_object, FTAG, &db)); 1202 dmu_buf_will_dirty(db, tx); 1203 1204 ASSERT3U(db->db_size, >=, drro->drr_bonuslen); 1205 bcopy(data, db->db_data, drro->drr_bonuslen); 1206 if (ra->byteswap) { 1207 dmu_object_byteswap_t byteswap = 1208 DMU_OT_BYTESWAP(drro->drr_bonustype); 1209 dmu_ot_byteswap[byteswap].ob_func(db->db_data, 1210 drro->drr_bonuslen); 1211 } 1212 dmu_buf_rele(db, FTAG); 1213 } 1214 dmu_tx_commit(tx); 1215 return (0); 1216 } 1217 1218 /* ARGSUSED */ 1219 static int 1220 restore_freeobjects(struct restorearg *ra, objset_t *os, 1221 struct drr_freeobjects *drrfo) 1222 { 1223 uint64_t obj; 1224 1225 if (drrfo->drr_firstobj + drrfo->drr_numobjs < drrfo->drr_firstobj) 1226 return (SET_ERROR(EINVAL)); 1227 1228 for (obj = drrfo->drr_firstobj; 1229 obj < drrfo->drr_firstobj + drrfo->drr_numobjs; 1230 (void) dmu_object_next(os, &obj, FALSE, 0)) { 1231 int err; 1232 1233 if (dmu_object_info(os, obj, NULL) != 0) 1234 continue; 1235 1236 err = dmu_free_long_object(os, obj); 1237 if (err != 0) 1238 return (err); 1239 } 1240 return (0); 1241 } 1242 1243 static int 1244 restore_write(struct restorearg *ra, objset_t *os, 1245 struct drr_write *drrw) 1246 { 1247 dmu_tx_t *tx; 1248 void *data; 1249 int err; 1250 1251 if (drrw->drr_offset + drrw->drr_length < drrw->drr_offset || 1252 !DMU_OT_IS_VALID(drrw->drr_type)) 1253 return (SET_ERROR(EINVAL)); 1254 1255 data = restore_read(ra, drrw->drr_length); 1256 if (data == NULL) 1257 return (ra->err); 1258 1259 if (dmu_object_info(os, drrw->drr_object, NULL) != 0) 1260 return (SET_ERROR(EINVAL)); 1261 1262 tx = dmu_tx_create(os); 1263 1264 dmu_tx_hold_write(tx, drrw->drr_object, 1265 drrw->drr_offset, drrw->drr_length); 1266 err = dmu_tx_assign(tx, TXG_WAIT); 1267 if (err != 0) { 1268 dmu_tx_abort(tx); 1269 return (err); 1270 } 1271 if (ra->byteswap) { 1272 dmu_object_byteswap_t byteswap = 1273 DMU_OT_BYTESWAP(drrw->drr_type); 1274 dmu_ot_byteswap[byteswap].ob_func(data, drrw->drr_length); 1275 } 1276 dmu_write(os, drrw->drr_object, 1277 drrw->drr_offset, drrw->drr_length, data, tx); 1278 dmu_tx_commit(tx); 1279 return (0); 1280 } 1281 1282 /* 1283 * Handle a DRR_WRITE_BYREF record. This record is used in dedup'ed 1284 * streams to refer to a copy of the data that is already on the 1285 * system because it came in earlier in the stream. This function 1286 * finds the earlier copy of the data, and uses that copy instead of 1287 * data from the stream to fulfill this write. 1288 */ 1289 static int 1290 restore_write_byref(struct restorearg *ra, objset_t *os, 1291 struct drr_write_byref *drrwbr) 1292 { 1293 dmu_tx_t *tx; 1294 int err; 1295 guid_map_entry_t gmesrch; 1296 guid_map_entry_t *gmep; 1297 avl_index_t where; 1298 objset_t *ref_os = NULL; 1299 dmu_buf_t *dbp; 1300 1301 if (drrwbr->drr_offset + drrwbr->drr_length < drrwbr->drr_offset) 1302 return (SET_ERROR(EINVAL)); 1303 1304 /* 1305 * If the GUID of the referenced dataset is different from the 1306 * GUID of the target dataset, find the referenced dataset. 1307 */ 1308 if (drrwbr->drr_toguid != drrwbr->drr_refguid) { 1309 gmesrch.guid = drrwbr->drr_refguid; 1310 if ((gmep = avl_find(ra->guid_to_ds_map, &gmesrch, 1311 &where)) == NULL) { 1312 return (SET_ERROR(EINVAL)); 1313 } 1314 if (dmu_objset_from_ds(gmep->gme_ds, &ref_os)) 1315 return (SET_ERROR(EINVAL)); 1316 } else { 1317 ref_os = os; 1318 } 1319 1320 if (err = dmu_buf_hold(ref_os, drrwbr->drr_refobject, 1321 drrwbr->drr_refoffset, FTAG, &dbp, DMU_READ_PREFETCH)) 1322 return (err); 1323 1324 tx = dmu_tx_create(os); 1325 1326 dmu_tx_hold_write(tx, drrwbr->drr_object, 1327 drrwbr->drr_offset, drrwbr->drr_length); 1328 err = dmu_tx_assign(tx, TXG_WAIT); 1329 if (err != 0) { 1330 dmu_tx_abort(tx); 1331 return (err); 1332 } 1333 dmu_write(os, drrwbr->drr_object, 1334 drrwbr->drr_offset, drrwbr->drr_length, dbp->db_data, tx); 1335 dmu_buf_rele(dbp, FTAG); 1336 dmu_tx_commit(tx); 1337 return (0); 1338 } 1339 1340 static int 1341 restore_spill(struct restorearg *ra, objset_t *os, struct drr_spill *drrs) 1342 { 1343 dmu_tx_t *tx; 1344 void *data; 1345 dmu_buf_t *db, *db_spill; 1346 int err; 1347 1348 if (drrs->drr_length < SPA_MINBLOCKSIZE || 1349 drrs->drr_length > SPA_MAXBLOCKSIZE) 1350 return (SET_ERROR(EINVAL)); 1351 1352 data = restore_read(ra, drrs->drr_length); 1353 if (data == NULL) 1354 return (ra->err); 1355 1356 if (dmu_object_info(os, drrs->drr_object, NULL) != 0) 1357 return (SET_ERROR(EINVAL)); 1358 1359 VERIFY(0 == dmu_bonus_hold(os, drrs->drr_object, FTAG, &db)); 1360 if ((err = dmu_spill_hold_by_bonus(db, FTAG, &db_spill)) != 0) { 1361 dmu_buf_rele(db, FTAG); 1362 return (err); 1363 } 1364 1365 tx = dmu_tx_create(os); 1366 1367 dmu_tx_hold_spill(tx, db->db_object); 1368 1369 err = dmu_tx_assign(tx, TXG_WAIT); 1370 if (err != 0) { 1371 dmu_buf_rele(db, FTAG); 1372 dmu_buf_rele(db_spill, FTAG); 1373 dmu_tx_abort(tx); 1374 return (err); 1375 } 1376 dmu_buf_will_dirty(db_spill, tx); 1377 1378 if (db_spill->db_size < drrs->drr_length) 1379 VERIFY(0 == dbuf_spill_set_blksz(db_spill, 1380 drrs->drr_length, tx)); 1381 bcopy(data, db_spill->db_data, drrs->drr_length); 1382 1383 dmu_buf_rele(db, FTAG); 1384 dmu_buf_rele(db_spill, FTAG); 1385 1386 dmu_tx_commit(tx); 1387 return (0); 1388 } 1389 1390 /* ARGSUSED */ 1391 static int 1392 restore_free(struct restorearg *ra, objset_t *os, 1393 struct drr_free *drrf) 1394 { 1395 int err; 1396 1397 if (drrf->drr_length != -1ULL && 1398 drrf->drr_offset + drrf->drr_length < drrf->drr_offset) 1399 return (SET_ERROR(EINVAL)); 1400 1401 if (dmu_object_info(os, drrf->drr_object, NULL) != 0) 1402 return (SET_ERROR(EINVAL)); 1403 1404 err = dmu_free_long_range(os, drrf->drr_object, 1405 drrf->drr_offset, drrf->drr_length); 1406 return (err); 1407 } 1408 1409 /* used to destroy the drc_ds on error */ 1410 static void 1411 dmu_recv_cleanup_ds(dmu_recv_cookie_t *drc) 1412 { 1413 char name[MAXNAMELEN]; 1414 dsl_dataset_name(drc->drc_ds, name); 1415 dsl_dataset_disown(drc->drc_ds, dmu_recv_tag); 1416 (void) dsl_destroy_head(name); 1417 } 1418 1419 /* 1420 * NB: callers *must* call dmu_recv_end() if this succeeds. 1421 */ 1422 int 1423 dmu_recv_stream(dmu_recv_cookie_t *drc, vnode_t *vp, offset_t *voffp, 1424 int cleanup_fd, uint64_t *action_handlep) 1425 { 1426 struct restorearg ra = { 0 }; 1427 dmu_replay_record_t *drr; 1428 objset_t *os; 1429 zio_cksum_t pcksum; 1430 int featureflags; 1431 1432 ra.byteswap = drc->drc_byteswap; 1433 ra.cksum = drc->drc_cksum; 1434 ra.vp = vp; 1435 ra.voff = *voffp; 1436 ra.bufsize = 1<<20; 1437 ra.buf = kmem_alloc(ra.bufsize, KM_SLEEP); 1438 1439 /* these were verified in dmu_recv_begin */ 1440 ASSERT3U(DMU_GET_STREAM_HDRTYPE(drc->drc_drrb->drr_versioninfo), ==, 1441 DMU_SUBSTREAM); 1442 ASSERT3U(drc->drc_drrb->drr_type, <, DMU_OST_NUMTYPES); 1443 1444 /* 1445 * Open the objset we are modifying. 1446 */ 1447 VERIFY0(dmu_objset_from_ds(drc->drc_ds, &os)); 1448 1449 ASSERT(drc->drc_ds->ds_phys->ds_flags & DS_FLAG_INCONSISTENT); 1450 1451 featureflags = DMU_GET_FEATUREFLAGS(drc->drc_drrb->drr_versioninfo); 1452 1453 /* if this stream is dedup'ed, set up the avl tree for guid mapping */ 1454 if (featureflags & DMU_BACKUP_FEATURE_DEDUP) { 1455 minor_t minor; 1456 1457 if (cleanup_fd == -1) { 1458 ra.err = SET_ERROR(EBADF); 1459 goto out; 1460 } 1461 ra.err = zfs_onexit_fd_hold(cleanup_fd, &minor); 1462 if (ra.err != 0) { 1463 cleanup_fd = -1; 1464 goto out; 1465 } 1466 1467 if (*action_handlep == 0) { 1468 ra.guid_to_ds_map = 1469 kmem_alloc(sizeof (avl_tree_t), KM_SLEEP); 1470 avl_create(ra.guid_to_ds_map, guid_compare, 1471 sizeof (guid_map_entry_t), 1472 offsetof(guid_map_entry_t, avlnode)); 1473 ra.err = zfs_onexit_add_cb(minor, 1474 free_guid_map_onexit, ra.guid_to_ds_map, 1475 action_handlep); 1476 if (ra.err != 0) 1477 goto out; 1478 } else { 1479 ra.err = zfs_onexit_cb_data(minor, *action_handlep, 1480 (void **)&ra.guid_to_ds_map); 1481 if (ra.err != 0) 1482 goto out; 1483 } 1484 1485 drc->drc_guid_to_ds_map = ra.guid_to_ds_map; 1486 } 1487 1488 /* 1489 * Read records and process them. 1490 */ 1491 pcksum = ra.cksum; 1492 while (ra.err == 0 && 1493 NULL != (drr = restore_read(&ra, sizeof (*drr)))) { 1494 if (issig(JUSTLOOKING) && issig(FORREAL)) { 1495 ra.err = SET_ERROR(EINTR); 1496 goto out; 1497 } 1498 1499 if (ra.byteswap) 1500 backup_byteswap(drr); 1501 1502 switch (drr->drr_type) { 1503 case DRR_OBJECT: 1504 { 1505 /* 1506 * We need to make a copy of the record header, 1507 * because restore_{object,write} may need to 1508 * restore_read(), which will invalidate drr. 1509 */ 1510 struct drr_object drro = drr->drr_u.drr_object; 1511 ra.err = restore_object(&ra, os, &drro); 1512 break; 1513 } 1514 case DRR_FREEOBJECTS: 1515 { 1516 struct drr_freeobjects drrfo = 1517 drr->drr_u.drr_freeobjects; 1518 ra.err = restore_freeobjects(&ra, os, &drrfo); 1519 break; 1520 } 1521 case DRR_WRITE: 1522 { 1523 struct drr_write drrw = drr->drr_u.drr_write; 1524 ra.err = restore_write(&ra, os, &drrw); 1525 break; 1526 } 1527 case DRR_WRITE_BYREF: 1528 { 1529 struct drr_write_byref drrwbr = 1530 drr->drr_u.drr_write_byref; 1531 ra.err = restore_write_byref(&ra, os, &drrwbr); 1532 break; 1533 } 1534 case DRR_FREE: 1535 { 1536 struct drr_free drrf = drr->drr_u.drr_free; 1537 ra.err = restore_free(&ra, os, &drrf); 1538 break; 1539 } 1540 case DRR_END: 1541 { 1542 struct drr_end drre = drr->drr_u.drr_end; 1543 /* 1544 * We compare against the *previous* checksum 1545 * value, because the stored checksum is of 1546 * everything before the DRR_END record. 1547 */ 1548 if (!ZIO_CHECKSUM_EQUAL(drre.drr_checksum, pcksum)) 1549 ra.err = SET_ERROR(ECKSUM); 1550 goto out; 1551 } 1552 case DRR_SPILL: 1553 { 1554 struct drr_spill drrs = drr->drr_u.drr_spill; 1555 ra.err = restore_spill(&ra, os, &drrs); 1556 break; 1557 } 1558 default: 1559 ra.err = SET_ERROR(EINVAL); 1560 goto out; 1561 } 1562 pcksum = ra.cksum; 1563 } 1564 ASSERT(ra.err != 0); 1565 1566 out: 1567 if ((featureflags & DMU_BACKUP_FEATURE_DEDUP) && (cleanup_fd != -1)) 1568 zfs_onexit_fd_rele(cleanup_fd); 1569 1570 if (ra.err != 0) { 1571 /* 1572 * destroy what we created, so we don't leave it in the 1573 * inconsistent restoring state. 1574 */ 1575 dmu_recv_cleanup_ds(drc); 1576 } 1577 1578 kmem_free(ra.buf, ra.bufsize); 1579 *voffp = ra.voff; 1580 return (ra.err); 1581 } 1582 1583 static int 1584 dmu_recv_end_check(void *arg, dmu_tx_t *tx) 1585 { 1586 dmu_recv_cookie_t *drc = arg; 1587 dsl_pool_t *dp = dmu_tx_pool(tx); 1588 int error; 1589 1590 ASSERT3P(drc->drc_ds->ds_owner, ==, dmu_recv_tag); 1591 1592 if (!drc->drc_newfs) { 1593 dsl_dataset_t *origin_head; 1594 1595 error = dsl_dataset_hold(dp, drc->drc_tofs, FTAG, &origin_head); 1596 if (error != 0) 1597 return (error); 1598 if (drc->drc_force) { 1599 /* 1600 * We will destroy any snapshots in tofs (i.e. before 1601 * origin_head) that are after the origin (which is 1602 * the snap before drc_ds, because drc_ds can not 1603 * have any snaps of its own). 1604 */ 1605 uint64_t obj = origin_head->ds_phys->ds_prev_snap_obj; 1606 while (obj != drc->drc_ds->ds_phys->ds_prev_snap_obj) { 1607 dsl_dataset_t *snap; 1608 error = dsl_dataset_hold_obj(dp, obj, FTAG, 1609 &snap); 1610 if (error != 0) 1611 return (error); 1612 if (snap->ds_dir != origin_head->ds_dir) 1613 error = SET_ERROR(EINVAL); 1614 if (error == 0) { 1615 error = dsl_destroy_snapshot_check_impl( 1616 snap, B_FALSE); 1617 } 1618 obj = snap->ds_phys->ds_prev_snap_obj; 1619 dsl_dataset_rele(snap, FTAG); 1620 if (error != 0) 1621 return (error); 1622 } 1623 } 1624 error = dsl_dataset_clone_swap_check_impl(drc->drc_ds, 1625 origin_head, drc->drc_force, drc->drc_owner, tx); 1626 if (error != 0) { 1627 dsl_dataset_rele(origin_head, FTAG); 1628 return (error); 1629 } 1630 error = dsl_dataset_snapshot_check_impl(origin_head, 1631 drc->drc_tosnap, tx, B_TRUE); 1632 dsl_dataset_rele(origin_head, FTAG); 1633 if (error != 0) 1634 return (error); 1635 1636 error = dsl_destroy_head_check_impl(drc->drc_ds, 1); 1637 } else { 1638 error = dsl_dataset_snapshot_check_impl(drc->drc_ds, 1639 drc->drc_tosnap, tx, B_TRUE); 1640 } 1641 return (error); 1642 } 1643 1644 static void 1645 dmu_recv_end_sync(void *arg, dmu_tx_t *tx) 1646 { 1647 dmu_recv_cookie_t *drc = arg; 1648 dsl_pool_t *dp = dmu_tx_pool(tx); 1649 1650 spa_history_log_internal_ds(drc->drc_ds, "finish receiving", 1651 tx, "snap=%s", drc->drc_tosnap); 1652 1653 if (!drc->drc_newfs) { 1654 dsl_dataset_t *origin_head; 1655 1656 VERIFY0(dsl_dataset_hold(dp, drc->drc_tofs, FTAG, 1657 &origin_head)); 1658 1659 if (drc->drc_force) { 1660 /* 1661 * Destroy any snapshots of drc_tofs (origin_head) 1662 * after the origin (the snap before drc_ds). 1663 */ 1664 uint64_t obj = origin_head->ds_phys->ds_prev_snap_obj; 1665 while (obj != drc->drc_ds->ds_phys->ds_prev_snap_obj) { 1666 dsl_dataset_t *snap; 1667 VERIFY0(dsl_dataset_hold_obj(dp, obj, FTAG, 1668 &snap)); 1669 ASSERT3P(snap->ds_dir, ==, origin_head->ds_dir); 1670 obj = snap->ds_phys->ds_prev_snap_obj; 1671 dsl_destroy_snapshot_sync_impl(snap, 1672 B_FALSE, tx); 1673 dsl_dataset_rele(snap, FTAG); 1674 } 1675 } 1676 VERIFY3P(drc->drc_ds->ds_prev, ==, 1677 origin_head->ds_prev); 1678 1679 dsl_dataset_clone_swap_sync_impl(drc->drc_ds, 1680 origin_head, tx); 1681 dsl_dataset_snapshot_sync_impl(origin_head, 1682 drc->drc_tosnap, tx); 1683 1684 /* set snapshot's creation time and guid */ 1685 dmu_buf_will_dirty(origin_head->ds_prev->ds_dbuf, tx); 1686 origin_head->ds_prev->ds_phys->ds_creation_time = 1687 drc->drc_drrb->drr_creation_time; 1688 origin_head->ds_prev->ds_phys->ds_guid = 1689 drc->drc_drrb->drr_toguid; 1690 origin_head->ds_prev->ds_phys->ds_flags &= 1691 ~DS_FLAG_INCONSISTENT; 1692 1693 dmu_buf_will_dirty(origin_head->ds_dbuf, tx); 1694 origin_head->ds_phys->ds_flags &= ~DS_FLAG_INCONSISTENT; 1695 1696 dsl_dataset_rele(origin_head, FTAG); 1697 dsl_destroy_head_sync_impl(drc->drc_ds, tx); 1698 1699 if (drc->drc_owner != NULL) 1700 VERIFY3P(origin_head->ds_owner, ==, drc->drc_owner); 1701 } else { 1702 dsl_dataset_t *ds = drc->drc_ds; 1703 1704 dsl_dataset_snapshot_sync_impl(ds, drc->drc_tosnap, tx); 1705 1706 /* set snapshot's creation time and guid */ 1707 dmu_buf_will_dirty(ds->ds_prev->ds_dbuf, tx); 1708 ds->ds_prev->ds_phys->ds_creation_time = 1709 drc->drc_drrb->drr_creation_time; 1710 ds->ds_prev->ds_phys->ds_guid = drc->drc_drrb->drr_toguid; 1711 ds->ds_prev->ds_phys->ds_flags &= ~DS_FLAG_INCONSISTENT; 1712 1713 dmu_buf_will_dirty(ds->ds_dbuf, tx); 1714 ds->ds_phys->ds_flags &= ~DS_FLAG_INCONSISTENT; 1715 } 1716 drc->drc_newsnapobj = drc->drc_ds->ds_phys->ds_prev_snap_obj; 1717 /* 1718 * Release the hold from dmu_recv_begin. This must be done before 1719 * we return to open context, so that when we free the dataset's dnode, 1720 * we can evict its bonus buffer. 1721 */ 1722 dsl_dataset_disown(drc->drc_ds, dmu_recv_tag); 1723 drc->drc_ds = NULL; 1724 } 1725 1726 static int 1727 add_ds_to_guidmap(const char *name, avl_tree_t *guid_map, uint64_t snapobj) 1728 { 1729 dsl_pool_t *dp; 1730 dsl_dataset_t *snapds; 1731 guid_map_entry_t *gmep; 1732 int err; 1733 1734 ASSERT(guid_map != NULL); 1735 1736 err = dsl_pool_hold(name, FTAG, &dp); 1737 if (err != 0) 1738 return (err); 1739 gmep = kmem_alloc(sizeof (*gmep), KM_SLEEP); 1740 err = dsl_dataset_hold_obj(dp, snapobj, gmep, &snapds); 1741 if (err == 0) { 1742 gmep->guid = snapds->ds_phys->ds_guid; 1743 gmep->gme_ds = snapds; 1744 avl_add(guid_map, gmep); 1745 dsl_dataset_long_hold(snapds, gmep); 1746 } else { 1747 kmem_free(gmep, sizeof (*gmep)); 1748 } 1749 1750 dsl_pool_rele(dp, FTAG); 1751 return (err); 1752 } 1753 1754 static int dmu_recv_end_modified_blocks = 3; 1755 1756 static int 1757 dmu_recv_existing_end(dmu_recv_cookie_t *drc) 1758 { 1759 int error; 1760 char name[MAXNAMELEN]; 1761 1762 #ifdef _KERNEL 1763 /* 1764 * We will be destroying the ds; make sure its origin is unmounted if 1765 * necessary. 1766 */ 1767 dsl_dataset_name(drc->drc_ds, name); 1768 zfs_destroy_unmount_origin(name); 1769 #endif 1770 1771 error = dsl_sync_task(drc->drc_tofs, 1772 dmu_recv_end_check, dmu_recv_end_sync, drc, 1773 dmu_recv_end_modified_blocks); 1774 1775 if (error != 0) 1776 dmu_recv_cleanup_ds(drc); 1777 return (error); 1778 } 1779 1780 static int 1781 dmu_recv_new_end(dmu_recv_cookie_t *drc) 1782 { 1783 int error; 1784 1785 error = dsl_sync_task(drc->drc_tofs, 1786 dmu_recv_end_check, dmu_recv_end_sync, drc, 1787 dmu_recv_end_modified_blocks); 1788 1789 if (error != 0) { 1790 dmu_recv_cleanup_ds(drc); 1791 } else if (drc->drc_guid_to_ds_map != NULL) { 1792 (void) add_ds_to_guidmap(drc->drc_tofs, 1793 drc->drc_guid_to_ds_map, 1794 drc->drc_newsnapobj); 1795 } 1796 return (error); 1797 } 1798 1799 int 1800 dmu_recv_end(dmu_recv_cookie_t *drc, void *owner) 1801 { 1802 drc->drc_owner = owner; 1803 1804 if (drc->drc_newfs) 1805 return (dmu_recv_new_end(drc)); 1806 else 1807 return (dmu_recv_existing_end(drc)); 1808 } 1809 1810 /* 1811 * Return TRUE if this objset is currently being received into. 1812 */ 1813 boolean_t 1814 dmu_objset_is_receiving(objset_t *os) 1815 { 1816 return (os->os_dsl_dataset != NULL && 1817 os->os_dsl_dataset->ds_owner == dmu_recv_tag); 1818 } 1819