xref: /illumos-gate/usr/src/uts/common/fs/zfs/dsl_destroy.c (revision 5f82aa32fbc5dc2c59bca6ff315f44a4c4c9ea86)
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 (c) 2012, 2016 by Delphix. All rights reserved.
24  * Copyright (c) 2013 Steven Hartland. All rights reserved.
25  * Copyright (c) 2013 by Joyent, Inc. All rights reserved.
26  * Copyright (c) 2014 Integros [integros.com]
27  */
28 
29 #include <sys/zfs_context.h>
30 #include <sys/dsl_userhold.h>
31 #include <sys/dsl_dataset.h>
32 #include <sys/dsl_synctask.h>
33 #include <sys/dsl_destroy.h>
34 #include <sys/dmu_tx.h>
35 #include <sys/dsl_pool.h>
36 #include <sys/dsl_dir.h>
37 #include <sys/dmu_traverse.h>
38 #include <sys/dsl_scan.h>
39 #include <sys/dmu_objset.h>
40 #include <sys/zap.h>
41 #include <sys/zfeature.h>
42 #include <sys/zfs_ioctl.h>
43 #include <sys/dsl_deleg.h>
44 #include <sys/dmu_impl.h>
45 #include <sys/zcp.h>
46 
47 int
48 dsl_destroy_snapshot_check_impl(dsl_dataset_t *ds, boolean_t defer)
49 {
50 	if (!ds->ds_is_snapshot)
51 		return (SET_ERROR(EINVAL));
52 
53 	if (dsl_dataset_long_held(ds))
54 		return (SET_ERROR(EBUSY));
55 
56 	/*
57 	 * Only allow deferred destroy on pools that support it.
58 	 * NOTE: deferred destroy is only supported on snapshots.
59 	 */
60 	if (defer) {
61 		if (spa_version(ds->ds_dir->dd_pool->dp_spa) <
62 		    SPA_VERSION_USERREFS)
63 			return (SET_ERROR(ENOTSUP));
64 		return (0);
65 	}
66 
67 	/*
68 	 * If this snapshot has an elevated user reference count,
69 	 * we can't destroy it yet.
70 	 */
71 	if (ds->ds_userrefs > 0)
72 		return (SET_ERROR(EBUSY));
73 
74 	/*
75 	 * Can't delete a branch point.
76 	 */
77 	if (dsl_dataset_phys(ds)->ds_num_children > 1)
78 		return (SET_ERROR(EEXIST));
79 
80 	return (0);
81 }
82 
83 int
84 dsl_destroy_snapshot_check(void *arg, dmu_tx_t *tx)
85 {
86 	dsl_destroy_snapshot_arg_t *ddsa = arg;
87 	const char *dsname = ddsa->ddsa_name;
88 	boolean_t defer = ddsa->ddsa_defer;
89 
90 	dsl_pool_t *dp = dmu_tx_pool(tx);
91 	int error = 0;
92 	dsl_dataset_t *ds;
93 
94 	error = dsl_dataset_hold(dp, dsname, FTAG, &ds);
95 
96 	/*
97 	 * If the snapshot does not exist, silently ignore it, and
98 	 * dsl_destroy_snapshot_sync() will be a no-op
99 	 * (it's "already destroyed").
100 	 */
101 	if (error == ENOENT)
102 		return (0);
103 
104 	if (error == 0) {
105 		error = dsl_destroy_snapshot_check_impl(ds, defer);
106 		dsl_dataset_rele(ds, FTAG);
107 	}
108 
109 	return (error);
110 }
111 
112 struct process_old_arg {
113 	dsl_dataset_t *ds;
114 	dsl_dataset_t *ds_prev;
115 	boolean_t after_branch_point;
116 	zio_t *pio;
117 	uint64_t used, comp, uncomp;
118 };
119 
120 static int
121 process_old_cb(void *arg, const blkptr_t *bp, dmu_tx_t *tx)
122 {
123 	struct process_old_arg *poa = arg;
124 	dsl_pool_t *dp = poa->ds->ds_dir->dd_pool;
125 
126 	ASSERT(!BP_IS_HOLE(bp));
127 
128 	if (bp->blk_birth <= dsl_dataset_phys(poa->ds)->ds_prev_snap_txg) {
129 		dsl_deadlist_insert(&poa->ds->ds_deadlist, bp, tx);
130 		if (poa->ds_prev && !poa->after_branch_point &&
131 		    bp->blk_birth >
132 		    dsl_dataset_phys(poa->ds_prev)->ds_prev_snap_txg) {
133 			dsl_dataset_phys(poa->ds_prev)->ds_unique_bytes +=
134 			    bp_get_dsize_sync(dp->dp_spa, bp);
135 		}
136 	} else {
137 		poa->used += bp_get_dsize_sync(dp->dp_spa, bp);
138 		poa->comp += BP_GET_PSIZE(bp);
139 		poa->uncomp += BP_GET_UCSIZE(bp);
140 		dsl_free_sync(poa->pio, dp, tx->tx_txg, bp);
141 	}
142 	return (0);
143 }
144 
145 static void
146 process_old_deadlist(dsl_dataset_t *ds, dsl_dataset_t *ds_prev,
147     dsl_dataset_t *ds_next, boolean_t after_branch_point, dmu_tx_t *tx)
148 {
149 	struct process_old_arg poa = { 0 };
150 	dsl_pool_t *dp = ds->ds_dir->dd_pool;
151 	objset_t *mos = dp->dp_meta_objset;
152 	uint64_t deadlist_obj;
153 
154 	ASSERT(ds->ds_deadlist.dl_oldfmt);
155 	ASSERT(ds_next->ds_deadlist.dl_oldfmt);
156 
157 	poa.ds = ds;
158 	poa.ds_prev = ds_prev;
159 	poa.after_branch_point = after_branch_point;
160 	poa.pio = zio_root(dp->dp_spa, NULL, NULL, ZIO_FLAG_MUSTSUCCEED);
161 	VERIFY0(bpobj_iterate(&ds_next->ds_deadlist.dl_bpobj,
162 	    process_old_cb, &poa, tx));
163 	VERIFY0(zio_wait(poa.pio));
164 	ASSERT3U(poa.used, ==, dsl_dataset_phys(ds)->ds_unique_bytes);
165 
166 	/* change snapused */
167 	dsl_dir_diduse_space(ds->ds_dir, DD_USED_SNAP,
168 	    -poa.used, -poa.comp, -poa.uncomp, tx);
169 
170 	/* swap next's deadlist to our deadlist */
171 	dsl_deadlist_close(&ds->ds_deadlist);
172 	dsl_deadlist_close(&ds_next->ds_deadlist);
173 	deadlist_obj = dsl_dataset_phys(ds)->ds_deadlist_obj;
174 	dsl_dataset_phys(ds)->ds_deadlist_obj =
175 	    dsl_dataset_phys(ds_next)->ds_deadlist_obj;
176 	dsl_dataset_phys(ds_next)->ds_deadlist_obj = deadlist_obj;
177 	dsl_deadlist_open(&ds->ds_deadlist, mos,
178 	    dsl_dataset_phys(ds)->ds_deadlist_obj);
179 	dsl_deadlist_open(&ds_next->ds_deadlist, mos,
180 	    dsl_dataset_phys(ds_next)->ds_deadlist_obj);
181 }
182 
183 static void
184 dsl_dataset_remove_clones_key(dsl_dataset_t *ds, uint64_t mintxg, dmu_tx_t *tx)
185 {
186 	objset_t *mos = ds->ds_dir->dd_pool->dp_meta_objset;
187 	zap_cursor_t zc;
188 	zap_attribute_t za;
189 
190 	/*
191 	 * If it is the old version, dd_clones doesn't exist so we can't
192 	 * find the clones, but dsl_deadlist_remove_key() is a no-op so it
193 	 * doesn't matter.
194 	 */
195 	if (dsl_dir_phys(ds->ds_dir)->dd_clones == 0)
196 		return;
197 
198 	for (zap_cursor_init(&zc, mos, dsl_dir_phys(ds->ds_dir)->dd_clones);
199 	    zap_cursor_retrieve(&zc, &za) == 0;
200 	    zap_cursor_advance(&zc)) {
201 		dsl_dataset_t *clone;
202 
203 		VERIFY0(dsl_dataset_hold_obj(ds->ds_dir->dd_pool,
204 		    za.za_first_integer, FTAG, &clone));
205 		if (clone->ds_dir->dd_origin_txg > mintxg) {
206 			dsl_deadlist_remove_key(&clone->ds_deadlist,
207 			    mintxg, tx);
208 			dsl_dataset_remove_clones_key(clone, mintxg, tx);
209 		}
210 		dsl_dataset_rele(clone, FTAG);
211 	}
212 	zap_cursor_fini(&zc);
213 }
214 
215 void
216 dsl_destroy_snapshot_sync_impl(dsl_dataset_t *ds, boolean_t defer, dmu_tx_t *tx)
217 {
218 	int err;
219 	int after_branch_point = FALSE;
220 	dsl_pool_t *dp = ds->ds_dir->dd_pool;
221 	objset_t *mos = dp->dp_meta_objset;
222 	dsl_dataset_t *ds_prev = NULL;
223 	uint64_t obj;
224 
225 	ASSERT(RRW_WRITE_HELD(&dp->dp_config_rwlock));
226 	rrw_enter(&ds->ds_bp_rwlock, RW_READER, FTAG);
227 	ASSERT3U(dsl_dataset_phys(ds)->ds_bp.blk_birth, <=, tx->tx_txg);
228 	rrw_exit(&ds->ds_bp_rwlock, FTAG);
229 	ASSERT(refcount_is_zero(&ds->ds_longholds));
230 
231 	if (defer &&
232 	    (ds->ds_userrefs > 0 ||
233 	    dsl_dataset_phys(ds)->ds_num_children > 1)) {
234 		ASSERT(spa_version(dp->dp_spa) >= SPA_VERSION_USERREFS);
235 		dmu_buf_will_dirty(ds->ds_dbuf, tx);
236 		dsl_dataset_phys(ds)->ds_flags |= DS_FLAG_DEFER_DESTROY;
237 		spa_history_log_internal_ds(ds, "defer_destroy", tx, "");
238 		return;
239 	}
240 
241 	ASSERT3U(dsl_dataset_phys(ds)->ds_num_children, <=, 1);
242 
243 	/* We need to log before removing it from the namespace. */
244 	spa_history_log_internal_ds(ds, "destroy", tx, "");
245 
246 	dsl_scan_ds_destroyed(ds, tx);
247 
248 	obj = ds->ds_object;
249 
250 	for (spa_feature_t f = 0; f < SPA_FEATURES; f++) {
251 		if (ds->ds_feature_inuse[f]) {
252 			dsl_dataset_deactivate_feature(obj, f, tx);
253 			ds->ds_feature_inuse[f] = B_FALSE;
254 		}
255 	}
256 	if (dsl_dataset_phys(ds)->ds_prev_snap_obj != 0) {
257 		ASSERT3P(ds->ds_prev, ==, NULL);
258 		VERIFY0(dsl_dataset_hold_obj(dp,
259 		    dsl_dataset_phys(ds)->ds_prev_snap_obj, FTAG, &ds_prev));
260 		after_branch_point =
261 		    (dsl_dataset_phys(ds_prev)->ds_next_snap_obj != obj);
262 
263 		dmu_buf_will_dirty(ds_prev->ds_dbuf, tx);
264 		if (after_branch_point &&
265 		    dsl_dataset_phys(ds_prev)->ds_next_clones_obj != 0) {
266 			dsl_dataset_remove_from_next_clones(ds_prev, obj, tx);
267 			if (dsl_dataset_phys(ds)->ds_next_snap_obj != 0) {
268 				VERIFY0(zap_add_int(mos,
269 				    dsl_dataset_phys(ds_prev)->
270 				    ds_next_clones_obj,
271 				    dsl_dataset_phys(ds)->ds_next_snap_obj,
272 				    tx));
273 			}
274 		}
275 		if (!after_branch_point) {
276 			dsl_dataset_phys(ds_prev)->ds_next_snap_obj =
277 			    dsl_dataset_phys(ds)->ds_next_snap_obj;
278 		}
279 	}
280 
281 	dsl_dataset_t *ds_next;
282 	uint64_t old_unique;
283 	uint64_t used = 0, comp = 0, uncomp = 0;
284 
285 	VERIFY0(dsl_dataset_hold_obj(dp,
286 	    dsl_dataset_phys(ds)->ds_next_snap_obj, FTAG, &ds_next));
287 	ASSERT3U(dsl_dataset_phys(ds_next)->ds_prev_snap_obj, ==, obj);
288 
289 	old_unique = dsl_dataset_phys(ds_next)->ds_unique_bytes;
290 
291 	dmu_buf_will_dirty(ds_next->ds_dbuf, tx);
292 	dsl_dataset_phys(ds_next)->ds_prev_snap_obj =
293 	    dsl_dataset_phys(ds)->ds_prev_snap_obj;
294 	dsl_dataset_phys(ds_next)->ds_prev_snap_txg =
295 	    dsl_dataset_phys(ds)->ds_prev_snap_txg;
296 	ASSERT3U(dsl_dataset_phys(ds)->ds_prev_snap_txg, ==,
297 	    ds_prev ? dsl_dataset_phys(ds_prev)->ds_creation_txg : 0);
298 
299 	if (ds_next->ds_deadlist.dl_oldfmt) {
300 		process_old_deadlist(ds, ds_prev, ds_next,
301 		    after_branch_point, tx);
302 	} else {
303 		/* Adjust prev's unique space. */
304 		if (ds_prev && !after_branch_point) {
305 			dsl_deadlist_space_range(&ds_next->ds_deadlist,
306 			    dsl_dataset_phys(ds_prev)->ds_prev_snap_txg,
307 			    dsl_dataset_phys(ds)->ds_prev_snap_txg,
308 			    &used, &comp, &uncomp);
309 			dsl_dataset_phys(ds_prev)->ds_unique_bytes += used;
310 		}
311 
312 		/* Adjust snapused. */
313 		dsl_deadlist_space_range(&ds_next->ds_deadlist,
314 		    dsl_dataset_phys(ds)->ds_prev_snap_txg, UINT64_MAX,
315 		    &used, &comp, &uncomp);
316 		dsl_dir_diduse_space(ds->ds_dir, DD_USED_SNAP,
317 		    -used, -comp, -uncomp, tx);
318 
319 		/* Move blocks to be freed to pool's free list. */
320 		dsl_deadlist_move_bpobj(&ds_next->ds_deadlist,
321 		    &dp->dp_free_bpobj, dsl_dataset_phys(ds)->ds_prev_snap_txg,
322 		    tx);
323 		dsl_dir_diduse_space(tx->tx_pool->dp_free_dir,
324 		    DD_USED_HEAD, used, comp, uncomp, tx);
325 
326 		/* Merge our deadlist into next's and free it. */
327 		dsl_deadlist_merge(&ds_next->ds_deadlist,
328 		    dsl_dataset_phys(ds)->ds_deadlist_obj, tx);
329 	}
330 	dsl_deadlist_close(&ds->ds_deadlist);
331 	dsl_deadlist_free(mos, dsl_dataset_phys(ds)->ds_deadlist_obj, tx);
332 	dmu_buf_will_dirty(ds->ds_dbuf, tx);
333 	dsl_dataset_phys(ds)->ds_deadlist_obj = 0;
334 
335 	/* Collapse range in clone heads */
336 	dsl_dataset_remove_clones_key(ds,
337 	    dsl_dataset_phys(ds)->ds_creation_txg, tx);
338 
339 	if (ds_next->ds_is_snapshot) {
340 		dsl_dataset_t *ds_nextnext;
341 
342 		/*
343 		 * Update next's unique to include blocks which
344 		 * were previously shared by only this snapshot
345 		 * and it.  Those blocks will be born after the
346 		 * prev snap and before this snap, and will have
347 		 * died after the next snap and before the one
348 		 * after that (ie. be on the snap after next's
349 		 * deadlist).
350 		 */
351 		VERIFY0(dsl_dataset_hold_obj(dp,
352 		    dsl_dataset_phys(ds_next)->ds_next_snap_obj,
353 		    FTAG, &ds_nextnext));
354 		dsl_deadlist_space_range(&ds_nextnext->ds_deadlist,
355 		    dsl_dataset_phys(ds)->ds_prev_snap_txg,
356 		    dsl_dataset_phys(ds)->ds_creation_txg,
357 		    &used, &comp, &uncomp);
358 		dsl_dataset_phys(ds_next)->ds_unique_bytes += used;
359 		dsl_dataset_rele(ds_nextnext, FTAG);
360 		ASSERT3P(ds_next->ds_prev, ==, NULL);
361 
362 		/* Collapse range in this head. */
363 		dsl_dataset_t *hds;
364 		VERIFY0(dsl_dataset_hold_obj(dp,
365 		    dsl_dir_phys(ds->ds_dir)->dd_head_dataset_obj, FTAG, &hds));
366 		dsl_deadlist_remove_key(&hds->ds_deadlist,
367 		    dsl_dataset_phys(ds)->ds_creation_txg, tx);
368 		dsl_dataset_rele(hds, FTAG);
369 
370 	} else {
371 		ASSERT3P(ds_next->ds_prev, ==, ds);
372 		dsl_dataset_rele(ds_next->ds_prev, ds_next);
373 		ds_next->ds_prev = NULL;
374 		if (ds_prev) {
375 			VERIFY0(dsl_dataset_hold_obj(dp,
376 			    dsl_dataset_phys(ds)->ds_prev_snap_obj,
377 			    ds_next, &ds_next->ds_prev));
378 		}
379 
380 		dsl_dataset_recalc_head_uniq(ds_next);
381 
382 		/*
383 		 * Reduce the amount of our unconsumed refreservation
384 		 * being charged to our parent by the amount of
385 		 * new unique data we have gained.
386 		 */
387 		if (old_unique < ds_next->ds_reserved) {
388 			int64_t mrsdelta;
389 			uint64_t new_unique =
390 			    dsl_dataset_phys(ds_next)->ds_unique_bytes;
391 
392 			ASSERT(old_unique <= new_unique);
393 			mrsdelta = MIN(new_unique - old_unique,
394 			    ds_next->ds_reserved - old_unique);
395 			dsl_dir_diduse_space(ds->ds_dir,
396 			    DD_USED_REFRSRV, -mrsdelta, 0, 0, tx);
397 		}
398 	}
399 	dsl_dataset_rele(ds_next, FTAG);
400 
401 	/*
402 	 * This must be done after the dsl_traverse(), because it will
403 	 * re-open the objset.
404 	 */
405 	if (ds->ds_objset) {
406 		dmu_objset_evict(ds->ds_objset);
407 		ds->ds_objset = NULL;
408 	}
409 
410 	/* remove from snapshot namespace */
411 	dsl_dataset_t *ds_head;
412 	ASSERT(dsl_dataset_phys(ds)->ds_snapnames_zapobj == 0);
413 	VERIFY0(dsl_dataset_hold_obj(dp,
414 	    dsl_dir_phys(ds->ds_dir)->dd_head_dataset_obj, FTAG, &ds_head));
415 	VERIFY0(dsl_dataset_get_snapname(ds));
416 #ifdef ZFS_DEBUG
417 	{
418 		uint64_t val;
419 
420 		err = dsl_dataset_snap_lookup(ds_head,
421 		    ds->ds_snapname, &val);
422 		ASSERT0(err);
423 		ASSERT3U(val, ==, obj);
424 	}
425 #endif
426 	VERIFY0(dsl_dataset_snap_remove(ds_head, ds->ds_snapname, tx, B_TRUE));
427 	dsl_dataset_rele(ds_head, FTAG);
428 
429 	if (ds_prev != NULL)
430 		dsl_dataset_rele(ds_prev, FTAG);
431 
432 	spa_prop_clear_bootfs(dp->dp_spa, ds->ds_object, tx);
433 
434 	if (dsl_dataset_phys(ds)->ds_next_clones_obj != 0) {
435 		uint64_t count;
436 		ASSERT0(zap_count(mos,
437 		    dsl_dataset_phys(ds)->ds_next_clones_obj, &count) &&
438 		    count == 0);
439 		VERIFY0(dmu_object_free(mos,
440 		    dsl_dataset_phys(ds)->ds_next_clones_obj, tx));
441 	}
442 	if (dsl_dataset_phys(ds)->ds_props_obj != 0)
443 		VERIFY0(zap_destroy(mos, dsl_dataset_phys(ds)->ds_props_obj,
444 		    tx));
445 	if (dsl_dataset_phys(ds)->ds_userrefs_obj != 0)
446 		VERIFY0(zap_destroy(mos, dsl_dataset_phys(ds)->ds_userrefs_obj,
447 		    tx));
448 	dsl_dir_rele(ds->ds_dir, ds);
449 	ds->ds_dir = NULL;
450 	dmu_object_free_zapified(mos, obj, tx);
451 }
452 
453 void
454 dsl_destroy_snapshot_sync(void *arg, dmu_tx_t *tx)
455 {
456 	dsl_destroy_snapshot_arg_t *ddsa = arg;
457 	const char *dsname = ddsa->ddsa_name;
458 	boolean_t defer = ddsa->ddsa_defer;
459 
460 	dsl_pool_t *dp = dmu_tx_pool(tx);
461 	dsl_dataset_t *ds;
462 
463 	int error = dsl_dataset_hold(dp, dsname, FTAG, &ds);
464 	if (error == ENOENT)
465 		return;
466 	ASSERT0(error);
467 	dsl_destroy_snapshot_sync_impl(ds, defer, tx);
468 	dsl_dataset_rele(ds, FTAG);
469 }
470 
471 /*
472  * The semantics of this function are described in the comment above
473  * lzc_destroy_snaps().  To summarize:
474  *
475  * The snapshots must all be in the same pool.
476  *
477  * Snapshots that don't exist will be silently ignored (considered to be
478  * "already deleted").
479  *
480  * On success, all snaps will be destroyed and this will return 0.
481  * On failure, no snaps will be destroyed, the errlist will be filled in,
482  * and this will return an errno.
483  */
484 int
485 dsl_destroy_snapshots_nvl(nvlist_t *snaps, boolean_t defer,
486     nvlist_t *errlist)
487 {
488 	if (nvlist_next_nvpair(snaps, NULL) == NULL)
489 		return (0);
490 
491 	/*
492 	 * lzc_destroy_snaps() is documented to take an nvlist whose
493 	 * values "don't matter".  We need to convert that nvlist to
494 	 * one that we know can be converted to LUA. We also don't
495 	 * care about any duplicate entries because the nvlist will
496 	 * be converted to a LUA table which should take care of this.
497 	 */
498 	nvlist_t *snaps_normalized;
499 	VERIFY0(nvlist_alloc(&snaps_normalized, 0, KM_SLEEP));
500 	for (nvpair_t *pair = nvlist_next_nvpair(snaps, NULL);
501 	    pair != NULL; pair = nvlist_next_nvpair(snaps, pair)) {
502 		fnvlist_add_boolean_value(snaps_normalized,
503 		    nvpair_name(pair), B_TRUE);
504 	}
505 
506 	nvlist_t *arg;
507 	VERIFY0(nvlist_alloc(&arg, 0, KM_SLEEP));
508 	fnvlist_add_nvlist(arg, "snaps", snaps_normalized);
509 	fnvlist_free(snaps_normalized);
510 	fnvlist_add_boolean_value(arg, "defer", defer);
511 
512 	nvlist_t *wrapper;
513 	VERIFY0(nvlist_alloc(&wrapper, 0, KM_SLEEP));
514 	fnvlist_add_nvlist(wrapper, ZCP_ARG_ARGLIST, arg);
515 	fnvlist_free(arg);
516 
517 	const char *program =
518 	    "arg = ...\n"
519 	    "snaps = arg['snaps']\n"
520 	    "defer = arg['defer']\n"
521 	    "errors = { }\n"
522 	    "has_errors = false\n"
523 	    "for snap, v in pairs(snaps) do\n"
524 	    "    errno = zfs.check.destroy{snap, defer=defer}\n"
525 	    "    zfs.debug('snap: ' .. snap .. ' errno: ' .. errno)\n"
526 	    "    if errno == ENOENT then\n"
527 	    "        snaps[snap] = nil\n"
528 	    "    elseif errno ~= 0 then\n"
529 	    "        errors[snap] = errno\n"
530 	    "        has_errors = true\n"
531 	    "    end\n"
532 	    "end\n"
533 	    "if has_errors then\n"
534 	    "    return errors\n"
535 	    "end\n"
536 	    "for snap, v in pairs(snaps) do\n"
537 	    "    errno = zfs.sync.destroy{snap, defer=defer}\n"
538 	    "    assert(errno == 0)\n"
539 	    "end\n"
540 	    "return { }\n";
541 
542 	nvlist_t *result = fnvlist_alloc();
543 	int error = zcp_eval(nvpair_name(nvlist_next_nvpair(snaps, NULL)),
544 	    program,
545 	    0,
546 	    zfs_lua_max_memlimit,
547 	    nvlist_next_nvpair(wrapper, NULL), result);
548 	if (error != 0) {
549 		char *errorstr = NULL;
550 		(void) nvlist_lookup_string(result, ZCP_RET_ERROR, &errorstr);
551 		if (errorstr != NULL) {
552 			zfs_dbgmsg(errorstr);
553 		}
554 		return (error);
555 	}
556 	fnvlist_free(wrapper);
557 
558 	/*
559 	 * lzc_destroy_snaps() is documented to fill the errlist with
560 	 * int32 values, so we need to covert the int64 values that are
561 	 * returned from LUA.
562 	 */
563 	int rv = 0;
564 	nvlist_t *errlist_raw = fnvlist_lookup_nvlist(result, ZCP_RET_RETURN);
565 	for (nvpair_t *pair = nvlist_next_nvpair(errlist_raw, NULL);
566 	    pair != NULL; pair = nvlist_next_nvpair(errlist_raw, pair)) {
567 		int32_t val = (int32_t)fnvpair_value_int64(pair);
568 		if (rv == 0)
569 			rv = val;
570 		fnvlist_add_int32(errlist, nvpair_name(pair), val);
571 	}
572 	fnvlist_free(result);
573 	return (rv);
574 }
575 
576 int
577 dsl_destroy_snapshot(const char *name, boolean_t defer)
578 {
579 	int error;
580 	nvlist_t *nvl = fnvlist_alloc();
581 	nvlist_t *errlist = fnvlist_alloc();
582 
583 	fnvlist_add_boolean(nvl, name);
584 	error = dsl_destroy_snapshots_nvl(nvl, defer, errlist);
585 	fnvlist_free(errlist);
586 	fnvlist_free(nvl);
587 	return (error);
588 }
589 
590 struct killarg {
591 	dsl_dataset_t *ds;
592 	dmu_tx_t *tx;
593 };
594 
595 /* ARGSUSED */
596 static int
597 kill_blkptr(spa_t *spa, zilog_t *zilog, const blkptr_t *bp,
598     const zbookmark_phys_t *zb, const dnode_phys_t *dnp, void *arg)
599 {
600 	struct killarg *ka = arg;
601 	dmu_tx_t *tx = ka->tx;
602 
603 	if (bp == NULL || BP_IS_HOLE(bp) || BP_IS_EMBEDDED(bp))
604 		return (0);
605 
606 	if (zb->zb_level == ZB_ZIL_LEVEL) {
607 		ASSERT(zilog != NULL);
608 		/*
609 		 * It's a block in the intent log.  It has no
610 		 * accounting, so just free it.
611 		 */
612 		dsl_free(ka->tx->tx_pool, ka->tx->tx_txg, bp);
613 	} else {
614 		ASSERT(zilog == NULL);
615 		ASSERT3U(bp->blk_birth, >,
616 		    dsl_dataset_phys(ka->ds)->ds_prev_snap_txg);
617 		(void) dsl_dataset_block_kill(ka->ds, bp, tx, B_FALSE);
618 	}
619 
620 	return (0);
621 }
622 
623 static void
624 old_synchronous_dataset_destroy(dsl_dataset_t *ds, dmu_tx_t *tx)
625 {
626 	struct killarg ka;
627 
628 	/*
629 	 * Free everything that we point to (that's born after
630 	 * the previous snapshot, if we are a clone)
631 	 *
632 	 * NB: this should be very quick, because we already
633 	 * freed all the objects in open context.
634 	 */
635 	ka.ds = ds;
636 	ka.tx = tx;
637 	VERIFY0(traverse_dataset(ds,
638 	    dsl_dataset_phys(ds)->ds_prev_snap_txg, TRAVERSE_POST,
639 	    kill_blkptr, &ka));
640 	ASSERT(!DS_UNIQUE_IS_ACCURATE(ds) ||
641 	    dsl_dataset_phys(ds)->ds_unique_bytes == 0);
642 }
643 
644 int
645 dsl_destroy_head_check_impl(dsl_dataset_t *ds, int expected_holds)
646 {
647 	int error;
648 	uint64_t count;
649 	objset_t *mos;
650 
651 	ASSERT(!ds->ds_is_snapshot);
652 	if (ds->ds_is_snapshot)
653 		return (SET_ERROR(EINVAL));
654 
655 	if (refcount_count(&ds->ds_longholds) != expected_holds)
656 		return (SET_ERROR(EBUSY));
657 
658 	mos = ds->ds_dir->dd_pool->dp_meta_objset;
659 
660 	/*
661 	 * Can't delete a head dataset if there are snapshots of it.
662 	 * (Except if the only snapshots are from the branch we cloned
663 	 * from.)
664 	 */
665 	if (ds->ds_prev != NULL &&
666 	    dsl_dataset_phys(ds->ds_prev)->ds_next_snap_obj == ds->ds_object)
667 		return (SET_ERROR(EBUSY));
668 
669 	/*
670 	 * Can't delete if there are children of this fs.
671 	 */
672 	error = zap_count(mos,
673 	    dsl_dir_phys(ds->ds_dir)->dd_child_dir_zapobj, &count);
674 	if (error != 0)
675 		return (error);
676 	if (count != 0)
677 		return (SET_ERROR(EEXIST));
678 
679 	if (dsl_dir_is_clone(ds->ds_dir) && DS_IS_DEFER_DESTROY(ds->ds_prev) &&
680 	    dsl_dataset_phys(ds->ds_prev)->ds_num_children == 2 &&
681 	    ds->ds_prev->ds_userrefs == 0) {
682 		/* We need to remove the origin snapshot as well. */
683 		if (!refcount_is_zero(&ds->ds_prev->ds_longholds))
684 			return (SET_ERROR(EBUSY));
685 	}
686 	return (0);
687 }
688 
689 int
690 dsl_destroy_head_check(void *arg, dmu_tx_t *tx)
691 {
692 	dsl_destroy_head_arg_t *ddha = arg;
693 	dsl_pool_t *dp = dmu_tx_pool(tx);
694 	dsl_dataset_t *ds;
695 	int error;
696 
697 	error = dsl_dataset_hold(dp, ddha->ddha_name, FTAG, &ds);
698 	if (error != 0)
699 		return (error);
700 
701 	error = dsl_destroy_head_check_impl(ds, 0);
702 	dsl_dataset_rele(ds, FTAG);
703 	return (error);
704 }
705 
706 static void
707 dsl_dir_destroy_sync(uint64_t ddobj, dmu_tx_t *tx)
708 {
709 	dsl_dir_t *dd;
710 	dsl_pool_t *dp = dmu_tx_pool(tx);
711 	objset_t *mos = dp->dp_meta_objset;
712 	dd_used_t t;
713 
714 	ASSERT(RRW_WRITE_HELD(&dmu_tx_pool(tx)->dp_config_rwlock));
715 
716 	VERIFY0(dsl_dir_hold_obj(dp, ddobj, NULL, FTAG, &dd));
717 
718 	ASSERT0(dsl_dir_phys(dd)->dd_head_dataset_obj);
719 
720 	/*
721 	 * Decrement the filesystem count for all parent filesystems.
722 	 *
723 	 * When we receive an incremental stream into a filesystem that already
724 	 * exists, a temporary clone is created.  We never count this temporary
725 	 * clone, whose name begins with a '%'.
726 	 */
727 	if (dd->dd_myname[0] != '%' && dd->dd_parent != NULL)
728 		dsl_fs_ss_count_adjust(dd->dd_parent, -1,
729 		    DD_FIELD_FILESYSTEM_COUNT, tx);
730 
731 	/*
732 	 * Remove our reservation. The impl() routine avoids setting the
733 	 * actual property, which would require the (already destroyed) ds.
734 	 */
735 	dsl_dir_set_reservation_sync_impl(dd, 0, tx);
736 
737 	ASSERT0(dsl_dir_phys(dd)->dd_used_bytes);
738 	ASSERT0(dsl_dir_phys(dd)->dd_reserved);
739 	for (t = 0; t < DD_USED_NUM; t++)
740 		ASSERT0(dsl_dir_phys(dd)->dd_used_breakdown[t]);
741 
742 	VERIFY0(zap_destroy(mos, dsl_dir_phys(dd)->dd_child_dir_zapobj, tx));
743 	VERIFY0(zap_destroy(mos, dsl_dir_phys(dd)->dd_props_zapobj, tx));
744 	VERIFY0(dsl_deleg_destroy(mos, dsl_dir_phys(dd)->dd_deleg_zapobj, tx));
745 	VERIFY0(zap_remove(mos,
746 	    dsl_dir_phys(dd->dd_parent)->dd_child_dir_zapobj,
747 	    dd->dd_myname, tx));
748 
749 	dsl_dir_rele(dd, FTAG);
750 	dmu_object_free_zapified(mos, ddobj, tx);
751 }
752 
753 void
754 dsl_destroy_head_sync_impl(dsl_dataset_t *ds, dmu_tx_t *tx)
755 {
756 	dsl_pool_t *dp = dmu_tx_pool(tx);
757 	objset_t *mos = dp->dp_meta_objset;
758 	uint64_t obj, ddobj, prevobj = 0;
759 	boolean_t rmorigin;
760 
761 	ASSERT3U(dsl_dataset_phys(ds)->ds_num_children, <=, 1);
762 	ASSERT(ds->ds_prev == NULL ||
763 	    dsl_dataset_phys(ds->ds_prev)->ds_next_snap_obj != ds->ds_object);
764 	rrw_enter(&ds->ds_bp_rwlock, RW_READER, FTAG);
765 	ASSERT3U(dsl_dataset_phys(ds)->ds_bp.blk_birth, <=, tx->tx_txg);
766 	rrw_exit(&ds->ds_bp_rwlock, FTAG);
767 	ASSERT(RRW_WRITE_HELD(&dp->dp_config_rwlock));
768 
769 	/* We need to log before removing it from the namespace. */
770 	spa_history_log_internal_ds(ds, "destroy", tx, "");
771 
772 	rmorigin = (dsl_dir_is_clone(ds->ds_dir) &&
773 	    DS_IS_DEFER_DESTROY(ds->ds_prev) &&
774 	    dsl_dataset_phys(ds->ds_prev)->ds_num_children == 2 &&
775 	    ds->ds_prev->ds_userrefs == 0);
776 
777 	/* Remove our reservation. */
778 	if (ds->ds_reserved != 0) {
779 		dsl_dataset_set_refreservation_sync_impl(ds,
780 		    (ZPROP_SRC_NONE | ZPROP_SRC_LOCAL | ZPROP_SRC_RECEIVED),
781 		    0, tx);
782 		ASSERT0(ds->ds_reserved);
783 	}
784 
785 	obj = ds->ds_object;
786 
787 	for (spa_feature_t f = 0; f < SPA_FEATURES; f++) {
788 		if (ds->ds_feature_inuse[f]) {
789 			dsl_dataset_deactivate_feature(obj, f, tx);
790 			ds->ds_feature_inuse[f] = B_FALSE;
791 		}
792 	}
793 
794 	dsl_scan_ds_destroyed(ds, tx);
795 
796 	if (dsl_dataset_phys(ds)->ds_prev_snap_obj != 0) {
797 		/* This is a clone */
798 		ASSERT(ds->ds_prev != NULL);
799 		ASSERT3U(dsl_dataset_phys(ds->ds_prev)->ds_next_snap_obj, !=,
800 		    obj);
801 		ASSERT0(dsl_dataset_phys(ds)->ds_next_snap_obj);
802 
803 		dmu_buf_will_dirty(ds->ds_prev->ds_dbuf, tx);
804 		if (dsl_dataset_phys(ds->ds_prev)->ds_next_clones_obj != 0) {
805 			dsl_dataset_remove_from_next_clones(ds->ds_prev,
806 			    obj, tx);
807 		}
808 
809 		ASSERT3U(dsl_dataset_phys(ds->ds_prev)->ds_num_children, >, 1);
810 		dsl_dataset_phys(ds->ds_prev)->ds_num_children--;
811 	}
812 
813 	/*
814 	 * Destroy the deadlist.  Unless it's a clone, the
815 	 * deadlist should be empty.  (If it's a clone, it's
816 	 * safe to ignore the deadlist contents.)
817 	 */
818 	dsl_deadlist_close(&ds->ds_deadlist);
819 	dsl_deadlist_free(mos, dsl_dataset_phys(ds)->ds_deadlist_obj, tx);
820 	dmu_buf_will_dirty(ds->ds_dbuf, tx);
821 	dsl_dataset_phys(ds)->ds_deadlist_obj = 0;
822 
823 	objset_t *os;
824 	VERIFY0(dmu_objset_from_ds(ds, &os));
825 
826 	if (!spa_feature_is_enabled(dp->dp_spa, SPA_FEATURE_ASYNC_DESTROY)) {
827 		old_synchronous_dataset_destroy(ds, tx);
828 	} else {
829 		/*
830 		 * Move the bptree into the pool's list of trees to
831 		 * clean up and update space accounting information.
832 		 */
833 		uint64_t used, comp, uncomp;
834 
835 		zil_destroy_sync(dmu_objset_zil(os), tx);
836 
837 		if (!spa_feature_is_active(dp->dp_spa,
838 		    SPA_FEATURE_ASYNC_DESTROY)) {
839 			dsl_scan_t *scn = dp->dp_scan;
840 			spa_feature_incr(dp->dp_spa, SPA_FEATURE_ASYNC_DESTROY,
841 			    tx);
842 			dp->dp_bptree_obj = bptree_alloc(mos, tx);
843 			VERIFY0(zap_add(mos,
844 			    DMU_POOL_DIRECTORY_OBJECT,
845 			    DMU_POOL_BPTREE_OBJ, sizeof (uint64_t), 1,
846 			    &dp->dp_bptree_obj, tx));
847 			ASSERT(!scn->scn_async_destroying);
848 			scn->scn_async_destroying = B_TRUE;
849 		}
850 
851 		used = dsl_dir_phys(ds->ds_dir)->dd_used_bytes;
852 		comp = dsl_dir_phys(ds->ds_dir)->dd_compressed_bytes;
853 		uncomp = dsl_dir_phys(ds->ds_dir)->dd_uncompressed_bytes;
854 
855 		ASSERT(!DS_UNIQUE_IS_ACCURATE(ds) ||
856 		    dsl_dataset_phys(ds)->ds_unique_bytes == used);
857 
858 		rrw_enter(&ds->ds_bp_rwlock, RW_READER, FTAG);
859 		bptree_add(mos, dp->dp_bptree_obj,
860 		    &dsl_dataset_phys(ds)->ds_bp,
861 		    dsl_dataset_phys(ds)->ds_prev_snap_txg,
862 		    used, comp, uncomp, tx);
863 		rrw_exit(&ds->ds_bp_rwlock, FTAG);
864 		dsl_dir_diduse_space(ds->ds_dir, DD_USED_HEAD,
865 		    -used, -comp, -uncomp, tx);
866 		dsl_dir_diduse_space(dp->dp_free_dir, DD_USED_HEAD,
867 		    used, comp, uncomp, tx);
868 	}
869 
870 	if (ds->ds_prev != NULL) {
871 		if (spa_version(dp->dp_spa) >= SPA_VERSION_DIR_CLONES) {
872 			VERIFY0(zap_remove_int(mos,
873 			    dsl_dir_phys(ds->ds_prev->ds_dir)->dd_clones,
874 			    ds->ds_object, tx));
875 		}
876 		prevobj = ds->ds_prev->ds_object;
877 		dsl_dataset_rele(ds->ds_prev, ds);
878 		ds->ds_prev = NULL;
879 	}
880 
881 	/*
882 	 * This must be done after the dsl_traverse(), because it will
883 	 * re-open the objset.
884 	 */
885 	if (ds->ds_objset) {
886 		dmu_objset_evict(ds->ds_objset);
887 		ds->ds_objset = NULL;
888 	}
889 
890 	/* Erase the link in the dir */
891 	dmu_buf_will_dirty(ds->ds_dir->dd_dbuf, tx);
892 	dsl_dir_phys(ds->ds_dir)->dd_head_dataset_obj = 0;
893 	ddobj = ds->ds_dir->dd_object;
894 	ASSERT(dsl_dataset_phys(ds)->ds_snapnames_zapobj != 0);
895 	VERIFY0(zap_destroy(mos,
896 	    dsl_dataset_phys(ds)->ds_snapnames_zapobj, tx));
897 
898 	if (ds->ds_bookmarks != 0) {
899 		VERIFY0(zap_destroy(mos, ds->ds_bookmarks, tx));
900 		spa_feature_decr(dp->dp_spa, SPA_FEATURE_BOOKMARKS, tx);
901 	}
902 
903 	spa_prop_clear_bootfs(dp->dp_spa, ds->ds_object, tx);
904 
905 	ASSERT0(dsl_dataset_phys(ds)->ds_next_clones_obj);
906 	ASSERT0(dsl_dataset_phys(ds)->ds_props_obj);
907 	ASSERT0(dsl_dataset_phys(ds)->ds_userrefs_obj);
908 	dsl_dir_rele(ds->ds_dir, ds);
909 	ds->ds_dir = NULL;
910 	dmu_object_free_zapified(mos, obj, tx);
911 
912 	dsl_dir_destroy_sync(ddobj, tx);
913 
914 	if (rmorigin) {
915 		dsl_dataset_t *prev;
916 		VERIFY0(dsl_dataset_hold_obj(dp, prevobj, FTAG, &prev));
917 		dsl_destroy_snapshot_sync_impl(prev, B_FALSE, tx);
918 		dsl_dataset_rele(prev, FTAG);
919 	}
920 }
921 
922 void
923 dsl_destroy_head_sync(void *arg, dmu_tx_t *tx)
924 {
925 	dsl_destroy_head_arg_t *ddha = arg;
926 	dsl_pool_t *dp = dmu_tx_pool(tx);
927 	dsl_dataset_t *ds;
928 
929 	VERIFY0(dsl_dataset_hold(dp, ddha->ddha_name, FTAG, &ds));
930 	dsl_destroy_head_sync_impl(ds, tx);
931 	dsl_dataset_rele(ds, FTAG);
932 }
933 
934 static void
935 dsl_destroy_head_begin_sync(void *arg, dmu_tx_t *tx)
936 {
937 	dsl_destroy_head_arg_t *ddha = arg;
938 	dsl_pool_t *dp = dmu_tx_pool(tx);
939 	dsl_dataset_t *ds;
940 
941 	VERIFY0(dsl_dataset_hold(dp, ddha->ddha_name, FTAG, &ds));
942 
943 	/* Mark it as inconsistent on-disk, in case we crash */
944 	dmu_buf_will_dirty(ds->ds_dbuf, tx);
945 	dsl_dataset_phys(ds)->ds_flags |= DS_FLAG_INCONSISTENT;
946 
947 	spa_history_log_internal_ds(ds, "destroy begin", tx, "");
948 	dsl_dataset_rele(ds, FTAG);
949 }
950 
951 int
952 dsl_destroy_head(const char *name)
953 {
954 	dsl_destroy_head_arg_t ddha;
955 	int error;
956 	spa_t *spa;
957 	boolean_t isenabled;
958 
959 #ifdef _KERNEL
960 	zfs_destroy_unmount_origin(name);
961 #endif
962 
963 	error = spa_open(name, &spa, FTAG);
964 	if (error != 0)
965 		return (error);
966 	isenabled = spa_feature_is_enabled(spa, SPA_FEATURE_ASYNC_DESTROY);
967 	spa_close(spa, FTAG);
968 
969 	ddha.ddha_name = name;
970 
971 	if (!isenabled) {
972 		objset_t *os;
973 
974 		error = dsl_sync_task(name, dsl_destroy_head_check,
975 		    dsl_destroy_head_begin_sync, &ddha,
976 		    0, ZFS_SPACE_CHECK_NONE);
977 		if (error != 0)
978 			return (error);
979 
980 		/*
981 		 * Head deletion is processed in one txg on old pools;
982 		 * remove the objects from open context so that the txg sync
983 		 * is not too long.
984 		 */
985 		error = dmu_objset_own(name, DMU_OST_ANY, B_FALSE, FTAG, &os);
986 		if (error == 0) {
987 			uint64_t prev_snap_txg =
988 			    dsl_dataset_phys(dmu_objset_ds(os))->
989 			    ds_prev_snap_txg;
990 			for (uint64_t obj = 0; error == 0;
991 			    error = dmu_object_next(os, &obj, FALSE,
992 			    prev_snap_txg))
993 				(void) dmu_free_long_object(os, obj);
994 			/* sync out all frees */
995 			txg_wait_synced(dmu_objset_pool(os), 0);
996 			dmu_objset_disown(os, FTAG);
997 		}
998 	}
999 
1000 	return (dsl_sync_task(name, dsl_destroy_head_check,
1001 	    dsl_destroy_head_sync, &ddha, 0, ZFS_SPACE_CHECK_NONE));
1002 }
1003 
1004 /*
1005  * Note, this function is used as the callback for dmu_objset_find().  We
1006  * always return 0 so that we will continue to find and process
1007  * inconsistent datasets, even if we encounter an error trying to
1008  * process one of them.
1009  */
1010 /* ARGSUSED */
1011 int
1012 dsl_destroy_inconsistent(const char *dsname, void *arg)
1013 {
1014 	objset_t *os;
1015 
1016 	if (dmu_objset_hold(dsname, FTAG, &os) == 0) {
1017 		boolean_t need_destroy = DS_IS_INCONSISTENT(dmu_objset_ds(os));
1018 
1019 		/*
1020 		 * If the dataset is inconsistent because a resumable receive
1021 		 * has failed, then do not destroy it.
1022 		 */
1023 		if (dsl_dataset_has_resume_receive_state(dmu_objset_ds(os)))
1024 			need_destroy = B_FALSE;
1025 
1026 		dmu_objset_rele(os, FTAG);
1027 		if (need_destroy)
1028 			(void) dsl_destroy_head(dsname);
1029 	}
1030 	return (0);
1031 }
1032