xref: /freebsd/sys/contrib/openzfs/module/zfs/zil.c (revision 53b70c86d93c1e4d3c76f1282e94154e88780d7e)
1eda14cbcSMatt Macy /*
2eda14cbcSMatt Macy  * CDDL HEADER START
3eda14cbcSMatt Macy  *
4eda14cbcSMatt Macy  * The contents of this file are subject to the terms of the
5eda14cbcSMatt Macy  * Common Development and Distribution License (the "License").
6eda14cbcSMatt Macy  * You may not use this file except in compliance with the License.
7eda14cbcSMatt Macy  *
8eda14cbcSMatt Macy  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9eda14cbcSMatt Macy  * or http://www.opensolaris.org/os/licensing.
10eda14cbcSMatt Macy  * See the License for the specific language governing permissions
11eda14cbcSMatt Macy  * and limitations under the License.
12eda14cbcSMatt Macy  *
13eda14cbcSMatt Macy  * When distributing Covered Code, include this CDDL HEADER in each
14eda14cbcSMatt Macy  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15eda14cbcSMatt Macy  * If applicable, add the following below this CDDL HEADER, with the
16eda14cbcSMatt Macy  * fields enclosed by brackets "[]" replaced with your own identifying
17eda14cbcSMatt Macy  * information: Portions Copyright [yyyy] [name of copyright owner]
18eda14cbcSMatt Macy  *
19eda14cbcSMatt Macy  * CDDL HEADER END
20eda14cbcSMatt Macy  */
21eda14cbcSMatt Macy /*
22eda14cbcSMatt Macy  * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
23eda14cbcSMatt Macy  * Copyright (c) 2011, 2018 by Delphix. All rights reserved.
24eda14cbcSMatt Macy  * Copyright (c) 2014 Integros [integros.com]
25eda14cbcSMatt Macy  * Copyright (c) 2018 Datto Inc.
26eda14cbcSMatt Macy  */
27eda14cbcSMatt Macy 
28eda14cbcSMatt Macy /* Portions Copyright 2010 Robert Milkowski */
29eda14cbcSMatt Macy 
30eda14cbcSMatt Macy #include <sys/zfs_context.h>
31eda14cbcSMatt Macy #include <sys/spa.h>
32eda14cbcSMatt Macy #include <sys/spa_impl.h>
33eda14cbcSMatt Macy #include <sys/dmu.h>
34eda14cbcSMatt Macy #include <sys/zap.h>
35eda14cbcSMatt Macy #include <sys/arc.h>
36eda14cbcSMatt Macy #include <sys/stat.h>
37eda14cbcSMatt Macy #include <sys/zil.h>
38eda14cbcSMatt Macy #include <sys/zil_impl.h>
39eda14cbcSMatt Macy #include <sys/dsl_dataset.h>
40eda14cbcSMatt Macy #include <sys/vdev_impl.h>
41eda14cbcSMatt Macy #include <sys/dmu_tx.h>
42eda14cbcSMatt Macy #include <sys/dsl_pool.h>
43eda14cbcSMatt Macy #include <sys/metaslab.h>
44eda14cbcSMatt Macy #include <sys/trace_zfs.h>
45eda14cbcSMatt Macy #include <sys/abd.h>
46eda14cbcSMatt Macy 
47eda14cbcSMatt Macy /*
48eda14cbcSMatt Macy  * The ZFS Intent Log (ZIL) saves "transaction records" (itxs) of system
49eda14cbcSMatt Macy  * calls that change the file system. Each itx has enough information to
50eda14cbcSMatt Macy  * be able to replay them after a system crash, power loss, or
51eda14cbcSMatt Macy  * equivalent failure mode. These are stored in memory until either:
52eda14cbcSMatt Macy  *
53eda14cbcSMatt Macy  *   1. they are committed to the pool by the DMU transaction group
54eda14cbcSMatt Macy  *      (txg), at which point they can be discarded; or
55eda14cbcSMatt Macy  *   2. they are committed to the on-disk ZIL for the dataset being
56eda14cbcSMatt Macy  *      modified (e.g. due to an fsync, O_DSYNC, or other synchronous
57eda14cbcSMatt Macy  *      requirement).
58eda14cbcSMatt Macy  *
59eda14cbcSMatt Macy  * In the event of a crash or power loss, the itxs contained by each
60eda14cbcSMatt Macy  * dataset's on-disk ZIL will be replayed when that dataset is first
61eda14cbcSMatt Macy  * instantiated (e.g. if the dataset is a normal filesystem, when it is
62eda14cbcSMatt Macy  * first mounted).
63eda14cbcSMatt Macy  *
64eda14cbcSMatt Macy  * As hinted at above, there is one ZIL per dataset (both the in-memory
65eda14cbcSMatt Macy  * representation, and the on-disk representation). The on-disk format
66eda14cbcSMatt Macy  * consists of 3 parts:
67eda14cbcSMatt Macy  *
68eda14cbcSMatt Macy  * 	- a single, per-dataset, ZIL header; which points to a chain of
69eda14cbcSMatt Macy  * 	- zero or more ZIL blocks; each of which contains
70eda14cbcSMatt Macy  * 	- zero or more ZIL records
71eda14cbcSMatt Macy  *
72eda14cbcSMatt Macy  * A ZIL record holds the information necessary to replay a single
73eda14cbcSMatt Macy  * system call transaction. A ZIL block can hold many ZIL records, and
74eda14cbcSMatt Macy  * the blocks are chained together, similarly to a singly linked list.
75eda14cbcSMatt Macy  *
76eda14cbcSMatt Macy  * Each ZIL block contains a block pointer (blkptr_t) to the next ZIL
77eda14cbcSMatt Macy  * block in the chain, and the ZIL header points to the first block in
78eda14cbcSMatt Macy  * the chain.
79eda14cbcSMatt Macy  *
80eda14cbcSMatt Macy  * Note, there is not a fixed place in the pool to hold these ZIL
81eda14cbcSMatt Macy  * blocks; they are dynamically allocated and freed as needed from the
82eda14cbcSMatt Macy  * blocks available on the pool, though they can be preferentially
83eda14cbcSMatt Macy  * allocated from a dedicated "log" vdev.
84eda14cbcSMatt Macy  */
85eda14cbcSMatt Macy 
86eda14cbcSMatt Macy /*
87eda14cbcSMatt Macy  * This controls the amount of time that a ZIL block (lwb) will remain
88eda14cbcSMatt Macy  * "open" when it isn't "full", and it has a thread waiting for it to be
89eda14cbcSMatt Macy  * committed to stable storage. Please refer to the zil_commit_waiter()
90eda14cbcSMatt Macy  * function (and the comments within it) for more details.
91eda14cbcSMatt Macy  */
92eda14cbcSMatt Macy int zfs_commit_timeout_pct = 5;
93eda14cbcSMatt Macy 
94eda14cbcSMatt Macy /*
95eda14cbcSMatt Macy  * See zil.h for more information about these fields.
96eda14cbcSMatt Macy  */
97eda14cbcSMatt Macy zil_stats_t zil_stats = {
98eda14cbcSMatt Macy 	{ "zil_commit_count",			KSTAT_DATA_UINT64 },
99eda14cbcSMatt Macy 	{ "zil_commit_writer_count",		KSTAT_DATA_UINT64 },
100eda14cbcSMatt Macy 	{ "zil_itx_count",			KSTAT_DATA_UINT64 },
101eda14cbcSMatt Macy 	{ "zil_itx_indirect_count",		KSTAT_DATA_UINT64 },
102eda14cbcSMatt Macy 	{ "zil_itx_indirect_bytes",		KSTAT_DATA_UINT64 },
103eda14cbcSMatt Macy 	{ "zil_itx_copied_count",		KSTAT_DATA_UINT64 },
104eda14cbcSMatt Macy 	{ "zil_itx_copied_bytes",		KSTAT_DATA_UINT64 },
105eda14cbcSMatt Macy 	{ "zil_itx_needcopy_count",		KSTAT_DATA_UINT64 },
106eda14cbcSMatt Macy 	{ "zil_itx_needcopy_bytes",		KSTAT_DATA_UINT64 },
107eda14cbcSMatt Macy 	{ "zil_itx_metaslab_normal_count",	KSTAT_DATA_UINT64 },
108eda14cbcSMatt Macy 	{ "zil_itx_metaslab_normal_bytes",	KSTAT_DATA_UINT64 },
109eda14cbcSMatt Macy 	{ "zil_itx_metaslab_slog_count",	KSTAT_DATA_UINT64 },
110eda14cbcSMatt Macy 	{ "zil_itx_metaslab_slog_bytes",	KSTAT_DATA_UINT64 },
111eda14cbcSMatt Macy };
112eda14cbcSMatt Macy 
113eda14cbcSMatt Macy static kstat_t *zil_ksp;
114eda14cbcSMatt Macy 
115eda14cbcSMatt Macy /*
116eda14cbcSMatt Macy  * Disable intent logging replay.  This global ZIL switch affects all pools.
117eda14cbcSMatt Macy  */
118eda14cbcSMatt Macy int zil_replay_disable = 0;
119eda14cbcSMatt Macy 
120eda14cbcSMatt Macy /*
121eda14cbcSMatt Macy  * Disable the DKIOCFLUSHWRITECACHE commands that are normally sent to
122eda14cbcSMatt Macy  * the disk(s) by the ZIL after an LWB write has completed. Setting this
123eda14cbcSMatt Macy  * will cause ZIL corruption on power loss if a volatile out-of-order
124eda14cbcSMatt Macy  * write cache is enabled.
125eda14cbcSMatt Macy  */
126eda14cbcSMatt Macy int zil_nocacheflush = 0;
127eda14cbcSMatt Macy 
128eda14cbcSMatt Macy /*
129eda14cbcSMatt Macy  * Limit SLOG write size per commit executed with synchronous priority.
130eda14cbcSMatt Macy  * Any writes above that will be executed with lower (asynchronous) priority
131eda14cbcSMatt Macy  * to limit potential SLOG device abuse by single active ZIL writer.
132eda14cbcSMatt Macy  */
133eda14cbcSMatt Macy unsigned long zil_slog_bulk = 768 * 1024;
134eda14cbcSMatt Macy 
135eda14cbcSMatt Macy static kmem_cache_t *zil_lwb_cache;
136eda14cbcSMatt Macy static kmem_cache_t *zil_zcw_cache;
137eda14cbcSMatt Macy 
138eda14cbcSMatt Macy #define	LWB_EMPTY(lwb) ((BP_GET_LSIZE(&lwb->lwb_blk) - \
139eda14cbcSMatt Macy     sizeof (zil_chain_t)) == (lwb->lwb_sz - lwb->lwb_nused))
140eda14cbcSMatt Macy 
141eda14cbcSMatt Macy static int
142eda14cbcSMatt Macy zil_bp_compare(const void *x1, const void *x2)
143eda14cbcSMatt Macy {
144eda14cbcSMatt Macy 	const dva_t *dva1 = &((zil_bp_node_t *)x1)->zn_dva;
145eda14cbcSMatt Macy 	const dva_t *dva2 = &((zil_bp_node_t *)x2)->zn_dva;
146eda14cbcSMatt Macy 
147eda14cbcSMatt Macy 	int cmp = TREE_CMP(DVA_GET_VDEV(dva1), DVA_GET_VDEV(dva2));
148eda14cbcSMatt Macy 	if (likely(cmp))
149eda14cbcSMatt Macy 		return (cmp);
150eda14cbcSMatt Macy 
151eda14cbcSMatt Macy 	return (TREE_CMP(DVA_GET_OFFSET(dva1), DVA_GET_OFFSET(dva2)));
152eda14cbcSMatt Macy }
153eda14cbcSMatt Macy 
154eda14cbcSMatt Macy static void
155eda14cbcSMatt Macy zil_bp_tree_init(zilog_t *zilog)
156eda14cbcSMatt Macy {
157eda14cbcSMatt Macy 	avl_create(&zilog->zl_bp_tree, zil_bp_compare,
158eda14cbcSMatt Macy 	    sizeof (zil_bp_node_t), offsetof(zil_bp_node_t, zn_node));
159eda14cbcSMatt Macy }
160eda14cbcSMatt Macy 
161eda14cbcSMatt Macy static void
162eda14cbcSMatt Macy zil_bp_tree_fini(zilog_t *zilog)
163eda14cbcSMatt Macy {
164eda14cbcSMatt Macy 	avl_tree_t *t = &zilog->zl_bp_tree;
165eda14cbcSMatt Macy 	zil_bp_node_t *zn;
166eda14cbcSMatt Macy 	void *cookie = NULL;
167eda14cbcSMatt Macy 
168eda14cbcSMatt Macy 	while ((zn = avl_destroy_nodes(t, &cookie)) != NULL)
169eda14cbcSMatt Macy 		kmem_free(zn, sizeof (zil_bp_node_t));
170eda14cbcSMatt Macy 
171eda14cbcSMatt Macy 	avl_destroy(t);
172eda14cbcSMatt Macy }
173eda14cbcSMatt Macy 
174eda14cbcSMatt Macy int
175eda14cbcSMatt Macy zil_bp_tree_add(zilog_t *zilog, const blkptr_t *bp)
176eda14cbcSMatt Macy {
177eda14cbcSMatt Macy 	avl_tree_t *t = &zilog->zl_bp_tree;
178eda14cbcSMatt Macy 	const dva_t *dva;
179eda14cbcSMatt Macy 	zil_bp_node_t *zn;
180eda14cbcSMatt Macy 	avl_index_t where;
181eda14cbcSMatt Macy 
182eda14cbcSMatt Macy 	if (BP_IS_EMBEDDED(bp))
183eda14cbcSMatt Macy 		return (0);
184eda14cbcSMatt Macy 
185eda14cbcSMatt Macy 	dva = BP_IDENTITY(bp);
186eda14cbcSMatt Macy 
187eda14cbcSMatt Macy 	if (avl_find(t, dva, &where) != NULL)
188eda14cbcSMatt Macy 		return (SET_ERROR(EEXIST));
189eda14cbcSMatt Macy 
190eda14cbcSMatt Macy 	zn = kmem_alloc(sizeof (zil_bp_node_t), KM_SLEEP);
191eda14cbcSMatt Macy 	zn->zn_dva = *dva;
192eda14cbcSMatt Macy 	avl_insert(t, zn, where);
193eda14cbcSMatt Macy 
194eda14cbcSMatt Macy 	return (0);
195eda14cbcSMatt Macy }
196eda14cbcSMatt Macy 
197eda14cbcSMatt Macy static zil_header_t *
198eda14cbcSMatt Macy zil_header_in_syncing_context(zilog_t *zilog)
199eda14cbcSMatt Macy {
200eda14cbcSMatt Macy 	return ((zil_header_t *)zilog->zl_header);
201eda14cbcSMatt Macy }
202eda14cbcSMatt Macy 
203eda14cbcSMatt Macy static void
204eda14cbcSMatt Macy zil_init_log_chain(zilog_t *zilog, blkptr_t *bp)
205eda14cbcSMatt Macy {
206eda14cbcSMatt Macy 	zio_cksum_t *zc = &bp->blk_cksum;
207eda14cbcSMatt Macy 
20833b8c039SMartin Matuska 	(void) random_get_pseudo_bytes((void *)&zc->zc_word[ZIL_ZC_GUID_0],
20933b8c039SMartin Matuska 	    sizeof (zc->zc_word[ZIL_ZC_GUID_0]));
21033b8c039SMartin Matuska 	(void) random_get_pseudo_bytes((void *)&zc->zc_word[ZIL_ZC_GUID_1],
21133b8c039SMartin Matuska 	    sizeof (zc->zc_word[ZIL_ZC_GUID_1]));
212eda14cbcSMatt Macy 	zc->zc_word[ZIL_ZC_OBJSET] = dmu_objset_id(zilog->zl_os);
213eda14cbcSMatt Macy 	zc->zc_word[ZIL_ZC_SEQ] = 1ULL;
214eda14cbcSMatt Macy }
215eda14cbcSMatt Macy 
216eda14cbcSMatt Macy /*
217eda14cbcSMatt Macy  * Read a log block and make sure it's valid.
218eda14cbcSMatt Macy  */
219eda14cbcSMatt Macy static int
220eda14cbcSMatt Macy zil_read_log_block(zilog_t *zilog, boolean_t decrypt, const blkptr_t *bp,
221eda14cbcSMatt Macy     blkptr_t *nbp, void *dst, char **end)
222eda14cbcSMatt Macy {
223eda14cbcSMatt Macy 	enum zio_flag zio_flags = ZIO_FLAG_CANFAIL;
224eda14cbcSMatt Macy 	arc_flags_t aflags = ARC_FLAG_WAIT;
225eda14cbcSMatt Macy 	arc_buf_t *abuf = NULL;
226eda14cbcSMatt Macy 	zbookmark_phys_t zb;
227eda14cbcSMatt Macy 	int error;
228eda14cbcSMatt Macy 
229eda14cbcSMatt Macy 	if (zilog->zl_header->zh_claim_txg == 0)
230eda14cbcSMatt Macy 		zio_flags |= ZIO_FLAG_SPECULATIVE | ZIO_FLAG_SCRUB;
231eda14cbcSMatt Macy 
232eda14cbcSMatt Macy 	if (!(zilog->zl_header->zh_flags & ZIL_CLAIM_LR_SEQ_VALID))
233eda14cbcSMatt Macy 		zio_flags |= ZIO_FLAG_SPECULATIVE;
234eda14cbcSMatt Macy 
235eda14cbcSMatt Macy 	if (!decrypt)
236eda14cbcSMatt Macy 		zio_flags |= ZIO_FLAG_RAW;
237eda14cbcSMatt Macy 
238eda14cbcSMatt Macy 	SET_BOOKMARK(&zb, bp->blk_cksum.zc_word[ZIL_ZC_OBJSET],
239eda14cbcSMatt Macy 	    ZB_ZIL_OBJECT, ZB_ZIL_LEVEL, bp->blk_cksum.zc_word[ZIL_ZC_SEQ]);
240eda14cbcSMatt Macy 
241eda14cbcSMatt Macy 	error = arc_read(NULL, zilog->zl_spa, bp, arc_getbuf_func,
242eda14cbcSMatt Macy 	    &abuf, ZIO_PRIORITY_SYNC_READ, zio_flags, &aflags, &zb);
243eda14cbcSMatt Macy 
244eda14cbcSMatt Macy 	if (error == 0) {
245eda14cbcSMatt Macy 		zio_cksum_t cksum = bp->blk_cksum;
246eda14cbcSMatt Macy 
247eda14cbcSMatt Macy 		/*
248eda14cbcSMatt Macy 		 * Validate the checksummed log block.
249eda14cbcSMatt Macy 		 *
250eda14cbcSMatt Macy 		 * Sequence numbers should be... sequential.  The checksum
251eda14cbcSMatt Macy 		 * verifier for the next block should be bp's checksum plus 1.
252eda14cbcSMatt Macy 		 *
253eda14cbcSMatt Macy 		 * Also check the log chain linkage and size used.
254eda14cbcSMatt Macy 		 */
255eda14cbcSMatt Macy 		cksum.zc_word[ZIL_ZC_SEQ]++;
256eda14cbcSMatt Macy 
257eda14cbcSMatt Macy 		if (BP_GET_CHECKSUM(bp) == ZIO_CHECKSUM_ZILOG2) {
258eda14cbcSMatt Macy 			zil_chain_t *zilc = abuf->b_data;
259eda14cbcSMatt Macy 			char *lr = (char *)(zilc + 1);
260eda14cbcSMatt Macy 			uint64_t len = zilc->zc_nused - sizeof (zil_chain_t);
261eda14cbcSMatt Macy 
262eda14cbcSMatt Macy 			if (bcmp(&cksum, &zilc->zc_next_blk.blk_cksum,
263eda14cbcSMatt Macy 			    sizeof (cksum)) || BP_IS_HOLE(&zilc->zc_next_blk)) {
264eda14cbcSMatt Macy 				error = SET_ERROR(ECKSUM);
265eda14cbcSMatt Macy 			} else {
266eda14cbcSMatt Macy 				ASSERT3U(len, <=, SPA_OLD_MAXBLOCKSIZE);
267eda14cbcSMatt Macy 				bcopy(lr, dst, len);
268eda14cbcSMatt Macy 				*end = (char *)dst + len;
269eda14cbcSMatt Macy 				*nbp = zilc->zc_next_blk;
270eda14cbcSMatt Macy 			}
271eda14cbcSMatt Macy 		} else {
272eda14cbcSMatt Macy 			char *lr = abuf->b_data;
273eda14cbcSMatt Macy 			uint64_t size = BP_GET_LSIZE(bp);
274eda14cbcSMatt Macy 			zil_chain_t *zilc = (zil_chain_t *)(lr + size) - 1;
275eda14cbcSMatt Macy 
276eda14cbcSMatt Macy 			if (bcmp(&cksum, &zilc->zc_next_blk.blk_cksum,
277eda14cbcSMatt Macy 			    sizeof (cksum)) || BP_IS_HOLE(&zilc->zc_next_blk) ||
278eda14cbcSMatt Macy 			    (zilc->zc_nused > (size - sizeof (*zilc)))) {
279eda14cbcSMatt Macy 				error = SET_ERROR(ECKSUM);
280eda14cbcSMatt Macy 			} else {
281eda14cbcSMatt Macy 				ASSERT3U(zilc->zc_nused, <=,
282eda14cbcSMatt Macy 				    SPA_OLD_MAXBLOCKSIZE);
283eda14cbcSMatt Macy 				bcopy(lr, dst, zilc->zc_nused);
284eda14cbcSMatt Macy 				*end = (char *)dst + zilc->zc_nused;
285eda14cbcSMatt Macy 				*nbp = zilc->zc_next_blk;
286eda14cbcSMatt Macy 			}
287eda14cbcSMatt Macy 		}
288eda14cbcSMatt Macy 
289eda14cbcSMatt Macy 		arc_buf_destroy(abuf, &abuf);
290eda14cbcSMatt Macy 	}
291eda14cbcSMatt Macy 
292eda14cbcSMatt Macy 	return (error);
293eda14cbcSMatt Macy }
294eda14cbcSMatt Macy 
295eda14cbcSMatt Macy /*
296eda14cbcSMatt Macy  * Read a TX_WRITE log data block.
297eda14cbcSMatt Macy  */
298eda14cbcSMatt Macy static int
299eda14cbcSMatt Macy zil_read_log_data(zilog_t *zilog, const lr_write_t *lr, void *wbuf)
300eda14cbcSMatt Macy {
301eda14cbcSMatt Macy 	enum zio_flag zio_flags = ZIO_FLAG_CANFAIL;
302eda14cbcSMatt Macy 	const blkptr_t *bp = &lr->lr_blkptr;
303eda14cbcSMatt Macy 	arc_flags_t aflags = ARC_FLAG_WAIT;
304eda14cbcSMatt Macy 	arc_buf_t *abuf = NULL;
305eda14cbcSMatt Macy 	zbookmark_phys_t zb;
306eda14cbcSMatt Macy 	int error;
307eda14cbcSMatt Macy 
308eda14cbcSMatt Macy 	if (BP_IS_HOLE(bp)) {
309eda14cbcSMatt Macy 		if (wbuf != NULL)
310eda14cbcSMatt Macy 			bzero(wbuf, MAX(BP_GET_LSIZE(bp), lr->lr_length));
311eda14cbcSMatt Macy 		return (0);
312eda14cbcSMatt Macy 	}
313eda14cbcSMatt Macy 
314eda14cbcSMatt Macy 	if (zilog->zl_header->zh_claim_txg == 0)
315eda14cbcSMatt Macy 		zio_flags |= ZIO_FLAG_SPECULATIVE | ZIO_FLAG_SCRUB;
316eda14cbcSMatt Macy 
317eda14cbcSMatt Macy 	/*
318eda14cbcSMatt Macy 	 * If we are not using the resulting data, we are just checking that
319eda14cbcSMatt Macy 	 * it hasn't been corrupted so we don't need to waste CPU time
320eda14cbcSMatt Macy 	 * decompressing and decrypting it.
321eda14cbcSMatt Macy 	 */
322eda14cbcSMatt Macy 	if (wbuf == NULL)
323eda14cbcSMatt Macy 		zio_flags |= ZIO_FLAG_RAW;
324eda14cbcSMatt Macy 
325eda14cbcSMatt Macy 	SET_BOOKMARK(&zb, dmu_objset_id(zilog->zl_os), lr->lr_foid,
326eda14cbcSMatt Macy 	    ZB_ZIL_LEVEL, lr->lr_offset / BP_GET_LSIZE(bp));
327eda14cbcSMatt Macy 
328eda14cbcSMatt Macy 	error = arc_read(NULL, zilog->zl_spa, bp, arc_getbuf_func, &abuf,
329eda14cbcSMatt Macy 	    ZIO_PRIORITY_SYNC_READ, zio_flags, &aflags, &zb);
330eda14cbcSMatt Macy 
331eda14cbcSMatt Macy 	if (error == 0) {
332eda14cbcSMatt Macy 		if (wbuf != NULL)
333eda14cbcSMatt Macy 			bcopy(abuf->b_data, wbuf, arc_buf_size(abuf));
334eda14cbcSMatt Macy 		arc_buf_destroy(abuf, &abuf);
335eda14cbcSMatt Macy 	}
336eda14cbcSMatt Macy 
337eda14cbcSMatt Macy 	return (error);
338eda14cbcSMatt Macy }
339eda14cbcSMatt Macy 
340eda14cbcSMatt Macy /*
341eda14cbcSMatt Macy  * Parse the intent log, and call parse_func for each valid record within.
342eda14cbcSMatt Macy  */
343eda14cbcSMatt Macy int
344eda14cbcSMatt Macy zil_parse(zilog_t *zilog, zil_parse_blk_func_t *parse_blk_func,
345eda14cbcSMatt Macy     zil_parse_lr_func_t *parse_lr_func, void *arg, uint64_t txg,
346eda14cbcSMatt Macy     boolean_t decrypt)
347eda14cbcSMatt Macy {
348eda14cbcSMatt Macy 	const zil_header_t *zh = zilog->zl_header;
349eda14cbcSMatt Macy 	boolean_t claimed = !!zh->zh_claim_txg;
350eda14cbcSMatt Macy 	uint64_t claim_blk_seq = claimed ? zh->zh_claim_blk_seq : UINT64_MAX;
351eda14cbcSMatt Macy 	uint64_t claim_lr_seq = claimed ? zh->zh_claim_lr_seq : UINT64_MAX;
352eda14cbcSMatt Macy 	uint64_t max_blk_seq = 0;
353eda14cbcSMatt Macy 	uint64_t max_lr_seq = 0;
354eda14cbcSMatt Macy 	uint64_t blk_count = 0;
355eda14cbcSMatt Macy 	uint64_t lr_count = 0;
356eda14cbcSMatt Macy 	blkptr_t blk, next_blk;
357eda14cbcSMatt Macy 	char *lrbuf, *lrp;
358eda14cbcSMatt Macy 	int error = 0;
359eda14cbcSMatt Macy 
360eda14cbcSMatt Macy 	bzero(&next_blk, sizeof (blkptr_t));
361eda14cbcSMatt Macy 
362eda14cbcSMatt Macy 	/*
363eda14cbcSMatt Macy 	 * Old logs didn't record the maximum zh_claim_lr_seq.
364eda14cbcSMatt Macy 	 */
365eda14cbcSMatt Macy 	if (!(zh->zh_flags & ZIL_CLAIM_LR_SEQ_VALID))
366eda14cbcSMatt Macy 		claim_lr_seq = UINT64_MAX;
367eda14cbcSMatt Macy 
368eda14cbcSMatt Macy 	/*
369eda14cbcSMatt Macy 	 * Starting at the block pointed to by zh_log we read the log chain.
370eda14cbcSMatt Macy 	 * For each block in the chain we strongly check that block to
371eda14cbcSMatt Macy 	 * ensure its validity.  We stop when an invalid block is found.
372eda14cbcSMatt Macy 	 * For each block pointer in the chain we call parse_blk_func().
373eda14cbcSMatt Macy 	 * For each record in each valid block we call parse_lr_func().
374eda14cbcSMatt Macy 	 * If the log has been claimed, stop if we encounter a sequence
375eda14cbcSMatt Macy 	 * number greater than the highest claimed sequence number.
376eda14cbcSMatt Macy 	 */
377eda14cbcSMatt Macy 	lrbuf = zio_buf_alloc(SPA_OLD_MAXBLOCKSIZE);
378eda14cbcSMatt Macy 	zil_bp_tree_init(zilog);
379eda14cbcSMatt Macy 
380eda14cbcSMatt Macy 	for (blk = zh->zh_log; !BP_IS_HOLE(&blk); blk = next_blk) {
381eda14cbcSMatt Macy 		uint64_t blk_seq = blk.blk_cksum.zc_word[ZIL_ZC_SEQ];
382eda14cbcSMatt Macy 		int reclen;
383eda14cbcSMatt Macy 		char *end = NULL;
384eda14cbcSMatt Macy 
385eda14cbcSMatt Macy 		if (blk_seq > claim_blk_seq)
386eda14cbcSMatt Macy 			break;
387eda14cbcSMatt Macy 
388eda14cbcSMatt Macy 		error = parse_blk_func(zilog, &blk, arg, txg);
389eda14cbcSMatt Macy 		if (error != 0)
390eda14cbcSMatt Macy 			break;
391eda14cbcSMatt Macy 		ASSERT3U(max_blk_seq, <, blk_seq);
392eda14cbcSMatt Macy 		max_blk_seq = blk_seq;
393eda14cbcSMatt Macy 		blk_count++;
394eda14cbcSMatt Macy 
395eda14cbcSMatt Macy 		if (max_lr_seq == claim_lr_seq && max_blk_seq == claim_blk_seq)
396eda14cbcSMatt Macy 			break;
397eda14cbcSMatt Macy 
398eda14cbcSMatt Macy 		error = zil_read_log_block(zilog, decrypt, &blk, &next_blk,
399eda14cbcSMatt Macy 		    lrbuf, &end);
400eda14cbcSMatt Macy 		if (error != 0)
401eda14cbcSMatt Macy 			break;
402eda14cbcSMatt Macy 
403eda14cbcSMatt Macy 		for (lrp = lrbuf; lrp < end; lrp += reclen) {
404eda14cbcSMatt Macy 			lr_t *lr = (lr_t *)lrp;
405eda14cbcSMatt Macy 			reclen = lr->lrc_reclen;
406eda14cbcSMatt Macy 			ASSERT3U(reclen, >=, sizeof (lr_t));
407eda14cbcSMatt Macy 			if (lr->lrc_seq > claim_lr_seq)
408eda14cbcSMatt Macy 				goto done;
409eda14cbcSMatt Macy 
410eda14cbcSMatt Macy 			error = parse_lr_func(zilog, lr, arg, txg);
411eda14cbcSMatt Macy 			if (error != 0)
412eda14cbcSMatt Macy 				goto done;
413eda14cbcSMatt Macy 			ASSERT3U(max_lr_seq, <, lr->lrc_seq);
414eda14cbcSMatt Macy 			max_lr_seq = lr->lrc_seq;
415eda14cbcSMatt Macy 			lr_count++;
416eda14cbcSMatt Macy 		}
417eda14cbcSMatt Macy 	}
418eda14cbcSMatt Macy done:
419eda14cbcSMatt Macy 	zilog->zl_parse_error = error;
420eda14cbcSMatt Macy 	zilog->zl_parse_blk_seq = max_blk_seq;
421eda14cbcSMatt Macy 	zilog->zl_parse_lr_seq = max_lr_seq;
422eda14cbcSMatt Macy 	zilog->zl_parse_blk_count = blk_count;
423eda14cbcSMatt Macy 	zilog->zl_parse_lr_count = lr_count;
424eda14cbcSMatt Macy 
425eda14cbcSMatt Macy 	ASSERT(!claimed || !(zh->zh_flags & ZIL_CLAIM_LR_SEQ_VALID) ||
426eda14cbcSMatt Macy 	    (max_blk_seq == claim_blk_seq && max_lr_seq == claim_lr_seq) ||
427eda14cbcSMatt Macy 	    (decrypt && error == EIO));
428eda14cbcSMatt Macy 
429eda14cbcSMatt Macy 	zil_bp_tree_fini(zilog);
430eda14cbcSMatt Macy 	zio_buf_free(lrbuf, SPA_OLD_MAXBLOCKSIZE);
431eda14cbcSMatt Macy 
432eda14cbcSMatt Macy 	return (error);
433eda14cbcSMatt Macy }
434eda14cbcSMatt Macy 
435eda14cbcSMatt Macy /* ARGSUSED */
436eda14cbcSMatt Macy static int
437180f8225SMatt Macy zil_clear_log_block(zilog_t *zilog, const blkptr_t *bp, void *tx,
438180f8225SMatt Macy     uint64_t first_txg)
439eda14cbcSMatt Macy {
440eda14cbcSMatt Macy 	ASSERT(!BP_IS_HOLE(bp));
441eda14cbcSMatt Macy 
442eda14cbcSMatt Macy 	/*
443eda14cbcSMatt Macy 	 * As we call this function from the context of a rewind to a
444eda14cbcSMatt Macy 	 * checkpoint, each ZIL block whose txg is later than the txg
445eda14cbcSMatt Macy 	 * that we rewind to is invalid. Thus, we return -1 so
446eda14cbcSMatt Macy 	 * zil_parse() doesn't attempt to read it.
447eda14cbcSMatt Macy 	 */
448eda14cbcSMatt Macy 	if (bp->blk_birth >= first_txg)
449eda14cbcSMatt Macy 		return (-1);
450eda14cbcSMatt Macy 
451eda14cbcSMatt Macy 	if (zil_bp_tree_add(zilog, bp) != 0)
452eda14cbcSMatt Macy 		return (0);
453eda14cbcSMatt Macy 
454eda14cbcSMatt Macy 	zio_free(zilog->zl_spa, first_txg, bp);
455eda14cbcSMatt Macy 	return (0);
456eda14cbcSMatt Macy }
457eda14cbcSMatt Macy 
458eda14cbcSMatt Macy /* ARGSUSED */
459eda14cbcSMatt Macy static int
460180f8225SMatt Macy zil_noop_log_record(zilog_t *zilog, const lr_t *lrc, void *tx,
461180f8225SMatt Macy     uint64_t first_txg)
462eda14cbcSMatt Macy {
463eda14cbcSMatt Macy 	return (0);
464eda14cbcSMatt Macy }
465eda14cbcSMatt Macy 
466eda14cbcSMatt Macy static int
467180f8225SMatt Macy zil_claim_log_block(zilog_t *zilog, const blkptr_t *bp, void *tx,
468180f8225SMatt Macy     uint64_t first_txg)
469eda14cbcSMatt Macy {
470eda14cbcSMatt Macy 	/*
471eda14cbcSMatt Macy 	 * Claim log block if not already committed and not already claimed.
472eda14cbcSMatt Macy 	 * If tx == NULL, just verify that the block is claimable.
473eda14cbcSMatt Macy 	 */
474eda14cbcSMatt Macy 	if (BP_IS_HOLE(bp) || bp->blk_birth < first_txg ||
475eda14cbcSMatt Macy 	    zil_bp_tree_add(zilog, bp) != 0)
476eda14cbcSMatt Macy 		return (0);
477eda14cbcSMatt Macy 
478eda14cbcSMatt Macy 	return (zio_wait(zio_claim(NULL, zilog->zl_spa,
479eda14cbcSMatt Macy 	    tx == NULL ? 0 : first_txg, bp, spa_claim_notify, NULL,
480eda14cbcSMatt Macy 	    ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE | ZIO_FLAG_SCRUB)));
481eda14cbcSMatt Macy }
482eda14cbcSMatt Macy 
483eda14cbcSMatt Macy static int
484180f8225SMatt Macy zil_claim_log_record(zilog_t *zilog, const lr_t *lrc, void *tx,
485180f8225SMatt Macy     uint64_t first_txg)
486eda14cbcSMatt Macy {
487eda14cbcSMatt Macy 	lr_write_t *lr = (lr_write_t *)lrc;
488eda14cbcSMatt Macy 	int error;
489eda14cbcSMatt Macy 
490eda14cbcSMatt Macy 	if (lrc->lrc_txtype != TX_WRITE)
491eda14cbcSMatt Macy 		return (0);
492eda14cbcSMatt Macy 
493eda14cbcSMatt Macy 	/*
494eda14cbcSMatt Macy 	 * If the block is not readable, don't claim it.  This can happen
495eda14cbcSMatt Macy 	 * in normal operation when a log block is written to disk before
496eda14cbcSMatt Macy 	 * some of the dmu_sync() blocks it points to.  In this case, the
497eda14cbcSMatt Macy 	 * transaction cannot have been committed to anyone (we would have
498eda14cbcSMatt Macy 	 * waited for all writes to be stable first), so it is semantically
499eda14cbcSMatt Macy 	 * correct to declare this the end of the log.
500eda14cbcSMatt Macy 	 */
501eda14cbcSMatt Macy 	if (lr->lr_blkptr.blk_birth >= first_txg) {
502eda14cbcSMatt Macy 		error = zil_read_log_data(zilog, lr, NULL);
503eda14cbcSMatt Macy 		if (error != 0)
504eda14cbcSMatt Macy 			return (error);
505eda14cbcSMatt Macy 	}
506eda14cbcSMatt Macy 
507eda14cbcSMatt Macy 	return (zil_claim_log_block(zilog, &lr->lr_blkptr, tx, first_txg));
508eda14cbcSMatt Macy }
509eda14cbcSMatt Macy 
510eda14cbcSMatt Macy /* ARGSUSED */
511eda14cbcSMatt Macy static int
512180f8225SMatt Macy zil_free_log_block(zilog_t *zilog, const blkptr_t *bp, void *tx,
513180f8225SMatt Macy     uint64_t claim_txg)
514eda14cbcSMatt Macy {
515eda14cbcSMatt Macy 	zio_free(zilog->zl_spa, dmu_tx_get_txg(tx), bp);
516eda14cbcSMatt Macy 
517eda14cbcSMatt Macy 	return (0);
518eda14cbcSMatt Macy }
519eda14cbcSMatt Macy 
520eda14cbcSMatt Macy static int
521180f8225SMatt Macy zil_free_log_record(zilog_t *zilog, const lr_t *lrc, void *tx,
522180f8225SMatt Macy     uint64_t claim_txg)
523eda14cbcSMatt Macy {
524eda14cbcSMatt Macy 	lr_write_t *lr = (lr_write_t *)lrc;
525eda14cbcSMatt Macy 	blkptr_t *bp = &lr->lr_blkptr;
526eda14cbcSMatt Macy 
527eda14cbcSMatt Macy 	/*
528eda14cbcSMatt Macy 	 * If we previously claimed it, we need to free it.
529eda14cbcSMatt Macy 	 */
530eda14cbcSMatt Macy 	if (claim_txg != 0 && lrc->lrc_txtype == TX_WRITE &&
531eda14cbcSMatt Macy 	    bp->blk_birth >= claim_txg && zil_bp_tree_add(zilog, bp) == 0 &&
532eda14cbcSMatt Macy 	    !BP_IS_HOLE(bp))
533eda14cbcSMatt Macy 		zio_free(zilog->zl_spa, dmu_tx_get_txg(tx), bp);
534eda14cbcSMatt Macy 
535eda14cbcSMatt Macy 	return (0);
536eda14cbcSMatt Macy }
537eda14cbcSMatt Macy 
538eda14cbcSMatt Macy static int
539eda14cbcSMatt Macy zil_lwb_vdev_compare(const void *x1, const void *x2)
540eda14cbcSMatt Macy {
541eda14cbcSMatt Macy 	const uint64_t v1 = ((zil_vdev_node_t *)x1)->zv_vdev;
542eda14cbcSMatt Macy 	const uint64_t v2 = ((zil_vdev_node_t *)x2)->zv_vdev;
543eda14cbcSMatt Macy 
544eda14cbcSMatt Macy 	return (TREE_CMP(v1, v2));
545eda14cbcSMatt Macy }
546eda14cbcSMatt Macy 
547eda14cbcSMatt Macy static lwb_t *
548eda14cbcSMatt Macy zil_alloc_lwb(zilog_t *zilog, blkptr_t *bp, boolean_t slog, uint64_t txg,
549eda14cbcSMatt Macy     boolean_t fastwrite)
550eda14cbcSMatt Macy {
551eda14cbcSMatt Macy 	lwb_t *lwb;
552eda14cbcSMatt Macy 
553eda14cbcSMatt Macy 	lwb = kmem_cache_alloc(zil_lwb_cache, KM_SLEEP);
554eda14cbcSMatt Macy 	lwb->lwb_zilog = zilog;
555eda14cbcSMatt Macy 	lwb->lwb_blk = *bp;
556eda14cbcSMatt Macy 	lwb->lwb_fastwrite = fastwrite;
557eda14cbcSMatt Macy 	lwb->lwb_slog = slog;
558eda14cbcSMatt Macy 	lwb->lwb_state = LWB_STATE_CLOSED;
559eda14cbcSMatt Macy 	lwb->lwb_buf = zio_buf_alloc(BP_GET_LSIZE(bp));
560eda14cbcSMatt Macy 	lwb->lwb_max_txg = txg;
561eda14cbcSMatt Macy 	lwb->lwb_write_zio = NULL;
562eda14cbcSMatt Macy 	lwb->lwb_root_zio = NULL;
563eda14cbcSMatt Macy 	lwb->lwb_tx = NULL;
564eda14cbcSMatt Macy 	lwb->lwb_issued_timestamp = 0;
565eda14cbcSMatt Macy 	if (BP_GET_CHECKSUM(bp) == ZIO_CHECKSUM_ZILOG2) {
566eda14cbcSMatt Macy 		lwb->lwb_nused = sizeof (zil_chain_t);
567eda14cbcSMatt Macy 		lwb->lwb_sz = BP_GET_LSIZE(bp);
568eda14cbcSMatt Macy 	} else {
569eda14cbcSMatt Macy 		lwb->lwb_nused = 0;
570eda14cbcSMatt Macy 		lwb->lwb_sz = BP_GET_LSIZE(bp) - sizeof (zil_chain_t);
571eda14cbcSMatt Macy 	}
572eda14cbcSMatt Macy 
573eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
574eda14cbcSMatt Macy 	list_insert_tail(&zilog->zl_lwb_list, lwb);
575eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
576eda14cbcSMatt Macy 
577eda14cbcSMatt Macy 	ASSERT(!MUTEX_HELD(&lwb->lwb_vdev_lock));
578eda14cbcSMatt Macy 	ASSERT(avl_is_empty(&lwb->lwb_vdev_tree));
579eda14cbcSMatt Macy 	VERIFY(list_is_empty(&lwb->lwb_waiters));
580eda14cbcSMatt Macy 	VERIFY(list_is_empty(&lwb->lwb_itxs));
581eda14cbcSMatt Macy 
582eda14cbcSMatt Macy 	return (lwb);
583eda14cbcSMatt Macy }
584eda14cbcSMatt Macy 
585eda14cbcSMatt Macy static void
586eda14cbcSMatt Macy zil_free_lwb(zilog_t *zilog, lwb_t *lwb)
587eda14cbcSMatt Macy {
588eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_lock));
589eda14cbcSMatt Macy 	ASSERT(!MUTEX_HELD(&lwb->lwb_vdev_lock));
590eda14cbcSMatt Macy 	VERIFY(list_is_empty(&lwb->lwb_waiters));
591eda14cbcSMatt Macy 	VERIFY(list_is_empty(&lwb->lwb_itxs));
592eda14cbcSMatt Macy 	ASSERT(avl_is_empty(&lwb->lwb_vdev_tree));
593eda14cbcSMatt Macy 	ASSERT3P(lwb->lwb_write_zio, ==, NULL);
594eda14cbcSMatt Macy 	ASSERT3P(lwb->lwb_root_zio, ==, NULL);
595eda14cbcSMatt Macy 	ASSERT3U(lwb->lwb_max_txg, <=, spa_syncing_txg(zilog->zl_spa));
596eda14cbcSMatt Macy 	ASSERT(lwb->lwb_state == LWB_STATE_CLOSED ||
597eda14cbcSMatt Macy 	    lwb->lwb_state == LWB_STATE_FLUSH_DONE);
598eda14cbcSMatt Macy 
599eda14cbcSMatt Macy 	/*
600eda14cbcSMatt Macy 	 * Clear the zilog's field to indicate this lwb is no longer
601eda14cbcSMatt Macy 	 * valid, and prevent use-after-free errors.
602eda14cbcSMatt Macy 	 */
603eda14cbcSMatt Macy 	if (zilog->zl_last_lwb_opened == lwb)
604eda14cbcSMatt Macy 		zilog->zl_last_lwb_opened = NULL;
605eda14cbcSMatt Macy 
606eda14cbcSMatt Macy 	kmem_cache_free(zil_lwb_cache, lwb);
607eda14cbcSMatt Macy }
608eda14cbcSMatt Macy 
609eda14cbcSMatt Macy /*
610eda14cbcSMatt Macy  * Called when we create in-memory log transactions so that we know
611eda14cbcSMatt Macy  * to cleanup the itxs at the end of spa_sync().
612eda14cbcSMatt Macy  */
613eda14cbcSMatt Macy static void
614eda14cbcSMatt Macy zilog_dirty(zilog_t *zilog, uint64_t txg)
615eda14cbcSMatt Macy {
616eda14cbcSMatt Macy 	dsl_pool_t *dp = zilog->zl_dmu_pool;
617eda14cbcSMatt Macy 	dsl_dataset_t *ds = dmu_objset_ds(zilog->zl_os);
618eda14cbcSMatt Macy 
619eda14cbcSMatt Macy 	ASSERT(spa_writeable(zilog->zl_spa));
620eda14cbcSMatt Macy 
621eda14cbcSMatt Macy 	if (ds->ds_is_snapshot)
622eda14cbcSMatt Macy 		panic("dirtying snapshot!");
623eda14cbcSMatt Macy 
624eda14cbcSMatt Macy 	if (txg_list_add(&dp->dp_dirty_zilogs, zilog, txg)) {
625eda14cbcSMatt Macy 		/* up the hold count until we can be written out */
626eda14cbcSMatt Macy 		dmu_buf_add_ref(ds->ds_dbuf, zilog);
627eda14cbcSMatt Macy 
628eda14cbcSMatt Macy 		zilog->zl_dirty_max_txg = MAX(txg, zilog->zl_dirty_max_txg);
629eda14cbcSMatt Macy 	}
630eda14cbcSMatt Macy }
631eda14cbcSMatt Macy 
632eda14cbcSMatt Macy /*
633eda14cbcSMatt Macy  * Determine if the zil is dirty in the specified txg. Callers wanting to
634eda14cbcSMatt Macy  * ensure that the dirty state does not change must hold the itxg_lock for
635eda14cbcSMatt Macy  * the specified txg. Holding the lock will ensure that the zil cannot be
636eda14cbcSMatt Macy  * dirtied (zil_itx_assign) or cleaned (zil_clean) while we check its current
637eda14cbcSMatt Macy  * state.
638eda14cbcSMatt Macy  */
639eda14cbcSMatt Macy static boolean_t __maybe_unused
640eda14cbcSMatt Macy zilog_is_dirty_in_txg(zilog_t *zilog, uint64_t txg)
641eda14cbcSMatt Macy {
642eda14cbcSMatt Macy 	dsl_pool_t *dp = zilog->zl_dmu_pool;
643eda14cbcSMatt Macy 
644eda14cbcSMatt Macy 	if (txg_list_member(&dp->dp_dirty_zilogs, zilog, txg & TXG_MASK))
645eda14cbcSMatt Macy 		return (B_TRUE);
646eda14cbcSMatt Macy 	return (B_FALSE);
647eda14cbcSMatt Macy }
648eda14cbcSMatt Macy 
649eda14cbcSMatt Macy /*
650eda14cbcSMatt Macy  * Determine if the zil is dirty. The zil is considered dirty if it has
651eda14cbcSMatt Macy  * any pending itx records that have not been cleaned by zil_clean().
652eda14cbcSMatt Macy  */
653eda14cbcSMatt Macy static boolean_t
654eda14cbcSMatt Macy zilog_is_dirty(zilog_t *zilog)
655eda14cbcSMatt Macy {
656eda14cbcSMatt Macy 	dsl_pool_t *dp = zilog->zl_dmu_pool;
657eda14cbcSMatt Macy 
658eda14cbcSMatt Macy 	for (int t = 0; t < TXG_SIZE; t++) {
659eda14cbcSMatt Macy 		if (txg_list_member(&dp->dp_dirty_zilogs, zilog, t))
660eda14cbcSMatt Macy 			return (B_TRUE);
661eda14cbcSMatt Macy 	}
662eda14cbcSMatt Macy 	return (B_FALSE);
663eda14cbcSMatt Macy }
664eda14cbcSMatt Macy 
665eda14cbcSMatt Macy /*
666eda14cbcSMatt Macy  * Create an on-disk intent log.
667eda14cbcSMatt Macy  */
668eda14cbcSMatt Macy static lwb_t *
669eda14cbcSMatt Macy zil_create(zilog_t *zilog)
670eda14cbcSMatt Macy {
671eda14cbcSMatt Macy 	const zil_header_t *zh = zilog->zl_header;
672eda14cbcSMatt Macy 	lwb_t *lwb = NULL;
673eda14cbcSMatt Macy 	uint64_t txg = 0;
674eda14cbcSMatt Macy 	dmu_tx_t *tx = NULL;
675eda14cbcSMatt Macy 	blkptr_t blk;
676eda14cbcSMatt Macy 	int error = 0;
677eda14cbcSMatt Macy 	boolean_t fastwrite = FALSE;
678eda14cbcSMatt Macy 	boolean_t slog = FALSE;
679eda14cbcSMatt Macy 
680eda14cbcSMatt Macy 	/*
681eda14cbcSMatt Macy 	 * Wait for any previous destroy to complete.
682eda14cbcSMatt Macy 	 */
683eda14cbcSMatt Macy 	txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg);
684eda14cbcSMatt Macy 
685eda14cbcSMatt Macy 	ASSERT(zh->zh_claim_txg == 0);
686eda14cbcSMatt Macy 	ASSERT(zh->zh_replay_seq == 0);
687eda14cbcSMatt Macy 
688eda14cbcSMatt Macy 	blk = zh->zh_log;
689eda14cbcSMatt Macy 
690eda14cbcSMatt Macy 	/*
691eda14cbcSMatt Macy 	 * Allocate an initial log block if:
692eda14cbcSMatt Macy 	 *    - there isn't one already
693eda14cbcSMatt Macy 	 *    - the existing block is the wrong endianness
694eda14cbcSMatt Macy 	 */
695eda14cbcSMatt Macy 	if (BP_IS_HOLE(&blk) || BP_SHOULD_BYTESWAP(&blk)) {
696eda14cbcSMatt Macy 		tx = dmu_tx_create(zilog->zl_os);
697eda14cbcSMatt Macy 		VERIFY0(dmu_tx_assign(tx, TXG_WAIT));
698eda14cbcSMatt Macy 		dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx);
699eda14cbcSMatt Macy 		txg = dmu_tx_get_txg(tx);
700eda14cbcSMatt Macy 
701eda14cbcSMatt Macy 		if (!BP_IS_HOLE(&blk)) {
702eda14cbcSMatt Macy 			zio_free(zilog->zl_spa, txg, &blk);
703eda14cbcSMatt Macy 			BP_ZERO(&blk);
704eda14cbcSMatt Macy 		}
705eda14cbcSMatt Macy 
706eda14cbcSMatt Macy 		error = zio_alloc_zil(zilog->zl_spa, zilog->zl_os, txg, &blk,
707eda14cbcSMatt Macy 		    ZIL_MIN_BLKSZ, &slog);
708eda14cbcSMatt Macy 		fastwrite = TRUE;
709eda14cbcSMatt Macy 
710eda14cbcSMatt Macy 		if (error == 0)
711eda14cbcSMatt Macy 			zil_init_log_chain(zilog, &blk);
712eda14cbcSMatt Macy 	}
713eda14cbcSMatt Macy 
714eda14cbcSMatt Macy 	/*
715eda14cbcSMatt Macy 	 * Allocate a log write block (lwb) for the first log block.
716eda14cbcSMatt Macy 	 */
717eda14cbcSMatt Macy 	if (error == 0)
718eda14cbcSMatt Macy 		lwb = zil_alloc_lwb(zilog, &blk, slog, txg, fastwrite);
719eda14cbcSMatt Macy 
720eda14cbcSMatt Macy 	/*
721eda14cbcSMatt Macy 	 * If we just allocated the first log block, commit our transaction
722eda14cbcSMatt Macy 	 * and wait for zil_sync() to stuff the block pointer into zh_log.
723eda14cbcSMatt Macy 	 * (zh is part of the MOS, so we cannot modify it in open context.)
724eda14cbcSMatt Macy 	 */
725eda14cbcSMatt Macy 	if (tx != NULL) {
726eda14cbcSMatt Macy 		dmu_tx_commit(tx);
727eda14cbcSMatt Macy 		txg_wait_synced(zilog->zl_dmu_pool, txg);
728eda14cbcSMatt Macy 	}
729eda14cbcSMatt Macy 
730eda14cbcSMatt Macy 	ASSERT(error != 0 || bcmp(&blk, &zh->zh_log, sizeof (blk)) == 0);
731eda14cbcSMatt Macy 	IMPLY(error == 0, lwb != NULL);
732eda14cbcSMatt Macy 
733eda14cbcSMatt Macy 	return (lwb);
734eda14cbcSMatt Macy }
735eda14cbcSMatt Macy 
736eda14cbcSMatt Macy /*
737eda14cbcSMatt Macy  * In one tx, free all log blocks and clear the log header. If keep_first
738eda14cbcSMatt Macy  * is set, then we're replaying a log with no content. We want to keep the
739eda14cbcSMatt Macy  * first block, however, so that the first synchronous transaction doesn't
740eda14cbcSMatt Macy  * require a txg_wait_synced() in zil_create(). We don't need to
741eda14cbcSMatt Macy  * txg_wait_synced() here either when keep_first is set, because both
742eda14cbcSMatt Macy  * zil_create() and zil_destroy() will wait for any in-progress destroys
743eda14cbcSMatt Macy  * to complete.
744eda14cbcSMatt Macy  */
745eda14cbcSMatt Macy void
746eda14cbcSMatt Macy zil_destroy(zilog_t *zilog, boolean_t keep_first)
747eda14cbcSMatt Macy {
748eda14cbcSMatt Macy 	const zil_header_t *zh = zilog->zl_header;
749eda14cbcSMatt Macy 	lwb_t *lwb;
750eda14cbcSMatt Macy 	dmu_tx_t *tx;
751eda14cbcSMatt Macy 	uint64_t txg;
752eda14cbcSMatt Macy 
753eda14cbcSMatt Macy 	/*
754eda14cbcSMatt Macy 	 * Wait for any previous destroy to complete.
755eda14cbcSMatt Macy 	 */
756eda14cbcSMatt Macy 	txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg);
757eda14cbcSMatt Macy 
758eda14cbcSMatt Macy 	zilog->zl_old_header = *zh;		/* debugging aid */
759eda14cbcSMatt Macy 
760eda14cbcSMatt Macy 	if (BP_IS_HOLE(&zh->zh_log))
761eda14cbcSMatt Macy 		return;
762eda14cbcSMatt Macy 
763eda14cbcSMatt Macy 	tx = dmu_tx_create(zilog->zl_os);
764eda14cbcSMatt Macy 	VERIFY0(dmu_tx_assign(tx, TXG_WAIT));
765eda14cbcSMatt Macy 	dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx);
766eda14cbcSMatt Macy 	txg = dmu_tx_get_txg(tx);
767eda14cbcSMatt Macy 
768eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
769eda14cbcSMatt Macy 
770eda14cbcSMatt Macy 	ASSERT3U(zilog->zl_destroy_txg, <, txg);
771eda14cbcSMatt Macy 	zilog->zl_destroy_txg = txg;
772eda14cbcSMatt Macy 	zilog->zl_keep_first = keep_first;
773eda14cbcSMatt Macy 
774eda14cbcSMatt Macy 	if (!list_is_empty(&zilog->zl_lwb_list)) {
775eda14cbcSMatt Macy 		ASSERT(zh->zh_claim_txg == 0);
776eda14cbcSMatt Macy 		VERIFY(!keep_first);
777eda14cbcSMatt Macy 		while ((lwb = list_head(&zilog->zl_lwb_list)) != NULL) {
778eda14cbcSMatt Macy 			if (lwb->lwb_fastwrite)
779eda14cbcSMatt Macy 				metaslab_fastwrite_unmark(zilog->zl_spa,
780eda14cbcSMatt Macy 				    &lwb->lwb_blk);
781eda14cbcSMatt Macy 
782eda14cbcSMatt Macy 			list_remove(&zilog->zl_lwb_list, lwb);
783eda14cbcSMatt Macy 			if (lwb->lwb_buf != NULL)
784eda14cbcSMatt Macy 				zio_buf_free(lwb->lwb_buf, lwb->lwb_sz);
785eda14cbcSMatt Macy 			zio_free(zilog->zl_spa, txg, &lwb->lwb_blk);
786eda14cbcSMatt Macy 			zil_free_lwb(zilog, lwb);
787eda14cbcSMatt Macy 		}
788eda14cbcSMatt Macy 	} else if (!keep_first) {
789eda14cbcSMatt Macy 		zil_destroy_sync(zilog, tx);
790eda14cbcSMatt Macy 	}
791eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
792eda14cbcSMatt Macy 
793eda14cbcSMatt Macy 	dmu_tx_commit(tx);
794eda14cbcSMatt Macy }
795eda14cbcSMatt Macy 
796eda14cbcSMatt Macy void
797eda14cbcSMatt Macy zil_destroy_sync(zilog_t *zilog, dmu_tx_t *tx)
798eda14cbcSMatt Macy {
799eda14cbcSMatt Macy 	ASSERT(list_is_empty(&zilog->zl_lwb_list));
800eda14cbcSMatt Macy 	(void) zil_parse(zilog, zil_free_log_block,
801eda14cbcSMatt Macy 	    zil_free_log_record, tx, zilog->zl_header->zh_claim_txg, B_FALSE);
802eda14cbcSMatt Macy }
803eda14cbcSMatt Macy 
804eda14cbcSMatt Macy int
805eda14cbcSMatt Macy zil_claim(dsl_pool_t *dp, dsl_dataset_t *ds, void *txarg)
806eda14cbcSMatt Macy {
807eda14cbcSMatt Macy 	dmu_tx_t *tx = txarg;
808eda14cbcSMatt Macy 	zilog_t *zilog;
809eda14cbcSMatt Macy 	uint64_t first_txg;
810eda14cbcSMatt Macy 	zil_header_t *zh;
811eda14cbcSMatt Macy 	objset_t *os;
812eda14cbcSMatt Macy 	int error;
813eda14cbcSMatt Macy 
814eda14cbcSMatt Macy 	error = dmu_objset_own_obj(dp, ds->ds_object,
815eda14cbcSMatt Macy 	    DMU_OST_ANY, B_FALSE, B_FALSE, FTAG, &os);
816eda14cbcSMatt Macy 	if (error != 0) {
817eda14cbcSMatt Macy 		/*
818eda14cbcSMatt Macy 		 * EBUSY indicates that the objset is inconsistent, in which
819eda14cbcSMatt Macy 		 * case it can not have a ZIL.
820eda14cbcSMatt Macy 		 */
821eda14cbcSMatt Macy 		if (error != EBUSY) {
822eda14cbcSMatt Macy 			cmn_err(CE_WARN, "can't open objset for %llu, error %u",
823eda14cbcSMatt Macy 			    (unsigned long long)ds->ds_object, error);
824eda14cbcSMatt Macy 		}
825eda14cbcSMatt Macy 
826eda14cbcSMatt Macy 		return (0);
827eda14cbcSMatt Macy 	}
828eda14cbcSMatt Macy 
829eda14cbcSMatt Macy 	zilog = dmu_objset_zil(os);
830eda14cbcSMatt Macy 	zh = zil_header_in_syncing_context(zilog);
831eda14cbcSMatt Macy 	ASSERT3U(tx->tx_txg, ==, spa_first_txg(zilog->zl_spa));
832eda14cbcSMatt Macy 	first_txg = spa_min_claim_txg(zilog->zl_spa);
833eda14cbcSMatt Macy 
834eda14cbcSMatt Macy 	/*
835eda14cbcSMatt Macy 	 * If the spa_log_state is not set to be cleared, check whether
836eda14cbcSMatt Macy 	 * the current uberblock is a checkpoint one and if the current
837eda14cbcSMatt Macy 	 * header has been claimed before moving on.
838eda14cbcSMatt Macy 	 *
839eda14cbcSMatt Macy 	 * If the current uberblock is a checkpointed uberblock then
840eda14cbcSMatt Macy 	 * one of the following scenarios took place:
841eda14cbcSMatt Macy 	 *
842eda14cbcSMatt Macy 	 * 1] We are currently rewinding to the checkpoint of the pool.
843eda14cbcSMatt Macy 	 * 2] We crashed in the middle of a checkpoint rewind but we
844eda14cbcSMatt Macy 	 *    did manage to write the checkpointed uberblock to the
845eda14cbcSMatt Macy 	 *    vdev labels, so when we tried to import the pool again
846eda14cbcSMatt Macy 	 *    the checkpointed uberblock was selected from the import
847eda14cbcSMatt Macy 	 *    procedure.
848eda14cbcSMatt Macy 	 *
849eda14cbcSMatt Macy 	 * In both cases we want to zero out all the ZIL blocks, except
850eda14cbcSMatt Macy 	 * the ones that have been claimed at the time of the checkpoint
851eda14cbcSMatt Macy 	 * (their zh_claim_txg != 0). The reason is that these blocks
852eda14cbcSMatt Macy 	 * may be corrupted since we may have reused their locations on
853eda14cbcSMatt Macy 	 * disk after we took the checkpoint.
854eda14cbcSMatt Macy 	 *
855eda14cbcSMatt Macy 	 * We could try to set spa_log_state to SPA_LOG_CLEAR earlier
856eda14cbcSMatt Macy 	 * when we first figure out whether the current uberblock is
857eda14cbcSMatt Macy 	 * checkpointed or not. Unfortunately, that would discard all
858eda14cbcSMatt Macy 	 * the logs, including the ones that are claimed, and we would
859eda14cbcSMatt Macy 	 * leak space.
860eda14cbcSMatt Macy 	 */
861eda14cbcSMatt Macy 	if (spa_get_log_state(zilog->zl_spa) == SPA_LOG_CLEAR ||
862eda14cbcSMatt Macy 	    (zilog->zl_spa->spa_uberblock.ub_checkpoint_txg != 0 &&
863eda14cbcSMatt Macy 	    zh->zh_claim_txg == 0)) {
864eda14cbcSMatt Macy 		if (!BP_IS_HOLE(&zh->zh_log)) {
865eda14cbcSMatt Macy 			(void) zil_parse(zilog, zil_clear_log_block,
866eda14cbcSMatt Macy 			    zil_noop_log_record, tx, first_txg, B_FALSE);
867eda14cbcSMatt Macy 		}
868eda14cbcSMatt Macy 		BP_ZERO(&zh->zh_log);
869eda14cbcSMatt Macy 		if (os->os_encrypted)
870eda14cbcSMatt Macy 			os->os_next_write_raw[tx->tx_txg & TXG_MASK] = B_TRUE;
871eda14cbcSMatt Macy 		dsl_dataset_dirty(dmu_objset_ds(os), tx);
872eda14cbcSMatt Macy 		dmu_objset_disown(os, B_FALSE, FTAG);
873eda14cbcSMatt Macy 		return (0);
874eda14cbcSMatt Macy 	}
875eda14cbcSMatt Macy 
876eda14cbcSMatt Macy 	/*
877eda14cbcSMatt Macy 	 * If we are not rewinding and opening the pool normally, then
878eda14cbcSMatt Macy 	 * the min_claim_txg should be equal to the first txg of the pool.
879eda14cbcSMatt Macy 	 */
880eda14cbcSMatt Macy 	ASSERT3U(first_txg, ==, spa_first_txg(zilog->zl_spa));
881eda14cbcSMatt Macy 
882eda14cbcSMatt Macy 	/*
883eda14cbcSMatt Macy 	 * Claim all log blocks if we haven't already done so, and remember
884eda14cbcSMatt Macy 	 * the highest claimed sequence number.  This ensures that if we can
885eda14cbcSMatt Macy 	 * read only part of the log now (e.g. due to a missing device),
886eda14cbcSMatt Macy 	 * but we can read the entire log later, we will not try to replay
887eda14cbcSMatt Macy 	 * or destroy beyond the last block we successfully claimed.
888eda14cbcSMatt Macy 	 */
889eda14cbcSMatt Macy 	ASSERT3U(zh->zh_claim_txg, <=, first_txg);
890eda14cbcSMatt Macy 	if (zh->zh_claim_txg == 0 && !BP_IS_HOLE(&zh->zh_log)) {
891eda14cbcSMatt Macy 		(void) zil_parse(zilog, zil_claim_log_block,
892eda14cbcSMatt Macy 		    zil_claim_log_record, tx, first_txg, B_FALSE);
893eda14cbcSMatt Macy 		zh->zh_claim_txg = first_txg;
894eda14cbcSMatt Macy 		zh->zh_claim_blk_seq = zilog->zl_parse_blk_seq;
895eda14cbcSMatt Macy 		zh->zh_claim_lr_seq = zilog->zl_parse_lr_seq;
896eda14cbcSMatt Macy 		if (zilog->zl_parse_lr_count || zilog->zl_parse_blk_count > 1)
897eda14cbcSMatt Macy 			zh->zh_flags |= ZIL_REPLAY_NEEDED;
898eda14cbcSMatt Macy 		zh->zh_flags |= ZIL_CLAIM_LR_SEQ_VALID;
899eda14cbcSMatt Macy 		if (os->os_encrypted)
900eda14cbcSMatt Macy 			os->os_next_write_raw[tx->tx_txg & TXG_MASK] = B_TRUE;
901eda14cbcSMatt Macy 		dsl_dataset_dirty(dmu_objset_ds(os), tx);
902eda14cbcSMatt Macy 	}
903eda14cbcSMatt Macy 
904eda14cbcSMatt Macy 	ASSERT3U(first_txg, ==, (spa_last_synced_txg(zilog->zl_spa) + 1));
905eda14cbcSMatt Macy 	dmu_objset_disown(os, B_FALSE, FTAG);
906eda14cbcSMatt Macy 	return (0);
907eda14cbcSMatt Macy }
908eda14cbcSMatt Macy 
909eda14cbcSMatt Macy /*
910eda14cbcSMatt Macy  * Check the log by walking the log chain.
911eda14cbcSMatt Macy  * Checksum errors are ok as they indicate the end of the chain.
912eda14cbcSMatt Macy  * Any other error (no device or read failure) returns an error.
913eda14cbcSMatt Macy  */
914eda14cbcSMatt Macy /* ARGSUSED */
915eda14cbcSMatt Macy int
916eda14cbcSMatt Macy zil_check_log_chain(dsl_pool_t *dp, dsl_dataset_t *ds, void *tx)
917eda14cbcSMatt Macy {
918eda14cbcSMatt Macy 	zilog_t *zilog;
919eda14cbcSMatt Macy 	objset_t *os;
920eda14cbcSMatt Macy 	blkptr_t *bp;
921eda14cbcSMatt Macy 	int error;
922eda14cbcSMatt Macy 
923eda14cbcSMatt Macy 	ASSERT(tx == NULL);
924eda14cbcSMatt Macy 
925eda14cbcSMatt Macy 	error = dmu_objset_from_ds(ds, &os);
926eda14cbcSMatt Macy 	if (error != 0) {
927eda14cbcSMatt Macy 		cmn_err(CE_WARN, "can't open objset %llu, error %d",
928eda14cbcSMatt Macy 		    (unsigned long long)ds->ds_object, error);
929eda14cbcSMatt Macy 		return (0);
930eda14cbcSMatt Macy 	}
931eda14cbcSMatt Macy 
932eda14cbcSMatt Macy 	zilog = dmu_objset_zil(os);
933eda14cbcSMatt Macy 	bp = (blkptr_t *)&zilog->zl_header->zh_log;
934eda14cbcSMatt Macy 
935eda14cbcSMatt Macy 	if (!BP_IS_HOLE(bp)) {
936eda14cbcSMatt Macy 		vdev_t *vd;
937eda14cbcSMatt Macy 		boolean_t valid = B_TRUE;
938eda14cbcSMatt Macy 
939eda14cbcSMatt Macy 		/*
940eda14cbcSMatt Macy 		 * Check the first block and determine if it's on a log device
941eda14cbcSMatt Macy 		 * which may have been removed or faulted prior to loading this
942eda14cbcSMatt Macy 		 * pool.  If so, there's no point in checking the rest of the
943eda14cbcSMatt Macy 		 * log as its content should have already been synced to the
944eda14cbcSMatt Macy 		 * pool.
945eda14cbcSMatt Macy 		 */
946eda14cbcSMatt Macy 		spa_config_enter(os->os_spa, SCL_STATE, FTAG, RW_READER);
947eda14cbcSMatt Macy 		vd = vdev_lookup_top(os->os_spa, DVA_GET_VDEV(&bp->blk_dva[0]));
948eda14cbcSMatt Macy 		if (vd->vdev_islog && vdev_is_dead(vd))
949eda14cbcSMatt Macy 			valid = vdev_log_state_valid(vd);
950eda14cbcSMatt Macy 		spa_config_exit(os->os_spa, SCL_STATE, FTAG);
951eda14cbcSMatt Macy 
952eda14cbcSMatt Macy 		if (!valid)
953eda14cbcSMatt Macy 			return (0);
954eda14cbcSMatt Macy 
955eda14cbcSMatt Macy 		/*
956eda14cbcSMatt Macy 		 * Check whether the current uberblock is checkpointed (e.g.
957eda14cbcSMatt Macy 		 * we are rewinding) and whether the current header has been
958eda14cbcSMatt Macy 		 * claimed or not. If it hasn't then skip verifying it. We
959eda14cbcSMatt Macy 		 * do this because its ZIL blocks may be part of the pool's
960eda14cbcSMatt Macy 		 * state before the rewind, which is no longer valid.
961eda14cbcSMatt Macy 		 */
962eda14cbcSMatt Macy 		zil_header_t *zh = zil_header_in_syncing_context(zilog);
963eda14cbcSMatt Macy 		if (zilog->zl_spa->spa_uberblock.ub_checkpoint_txg != 0 &&
964eda14cbcSMatt Macy 		    zh->zh_claim_txg == 0)
965eda14cbcSMatt Macy 			return (0);
966eda14cbcSMatt Macy 	}
967eda14cbcSMatt Macy 
968eda14cbcSMatt Macy 	/*
969eda14cbcSMatt Macy 	 * Because tx == NULL, zil_claim_log_block() will not actually claim
970eda14cbcSMatt Macy 	 * any blocks, but just determine whether it is possible to do so.
971eda14cbcSMatt Macy 	 * In addition to checking the log chain, zil_claim_log_block()
972eda14cbcSMatt Macy 	 * will invoke zio_claim() with a done func of spa_claim_notify(),
973eda14cbcSMatt Macy 	 * which will update spa_max_claim_txg.  See spa_load() for details.
974eda14cbcSMatt Macy 	 */
975eda14cbcSMatt Macy 	error = zil_parse(zilog, zil_claim_log_block, zil_claim_log_record, tx,
976eda14cbcSMatt Macy 	    zilog->zl_header->zh_claim_txg ? -1ULL :
977eda14cbcSMatt Macy 	    spa_min_claim_txg(os->os_spa), B_FALSE);
978eda14cbcSMatt Macy 
979eda14cbcSMatt Macy 	return ((error == ECKSUM || error == ENOENT) ? 0 : error);
980eda14cbcSMatt Macy }
981eda14cbcSMatt Macy 
982eda14cbcSMatt Macy /*
983eda14cbcSMatt Macy  * When an itx is "skipped", this function is used to properly mark the
984eda14cbcSMatt Macy  * waiter as "done, and signal any thread(s) waiting on it. An itx can
985eda14cbcSMatt Macy  * be skipped (and not committed to an lwb) for a variety of reasons,
986eda14cbcSMatt Macy  * one of them being that the itx was committed via spa_sync(), prior to
987eda14cbcSMatt Macy  * it being committed to an lwb; this can happen if a thread calling
988eda14cbcSMatt Macy  * zil_commit() is racing with spa_sync().
989eda14cbcSMatt Macy  */
990eda14cbcSMatt Macy static void
991eda14cbcSMatt Macy zil_commit_waiter_skip(zil_commit_waiter_t *zcw)
992eda14cbcSMatt Macy {
993eda14cbcSMatt Macy 	mutex_enter(&zcw->zcw_lock);
994eda14cbcSMatt Macy 	ASSERT3B(zcw->zcw_done, ==, B_FALSE);
995eda14cbcSMatt Macy 	zcw->zcw_done = B_TRUE;
996eda14cbcSMatt Macy 	cv_broadcast(&zcw->zcw_cv);
997eda14cbcSMatt Macy 	mutex_exit(&zcw->zcw_lock);
998eda14cbcSMatt Macy }
999eda14cbcSMatt Macy 
1000eda14cbcSMatt Macy /*
1001eda14cbcSMatt Macy  * This function is used when the given waiter is to be linked into an
1002eda14cbcSMatt Macy  * lwb's "lwb_waiter" list; i.e. when the itx is committed to the lwb.
1003eda14cbcSMatt Macy  * At this point, the waiter will no longer be referenced by the itx,
1004eda14cbcSMatt Macy  * and instead, will be referenced by the lwb.
1005eda14cbcSMatt Macy  */
1006eda14cbcSMatt Macy static void
1007eda14cbcSMatt Macy zil_commit_waiter_link_lwb(zil_commit_waiter_t *zcw, lwb_t *lwb)
1008eda14cbcSMatt Macy {
1009eda14cbcSMatt Macy 	/*
1010eda14cbcSMatt Macy 	 * The lwb_waiters field of the lwb is protected by the zilog's
1011eda14cbcSMatt Macy 	 * zl_lock, thus it must be held when calling this function.
1012eda14cbcSMatt Macy 	 */
1013eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&lwb->lwb_zilog->zl_lock));
1014eda14cbcSMatt Macy 
1015eda14cbcSMatt Macy 	mutex_enter(&zcw->zcw_lock);
1016eda14cbcSMatt Macy 	ASSERT(!list_link_active(&zcw->zcw_node));
1017eda14cbcSMatt Macy 	ASSERT3P(zcw->zcw_lwb, ==, NULL);
1018eda14cbcSMatt Macy 	ASSERT3P(lwb, !=, NULL);
1019eda14cbcSMatt Macy 	ASSERT(lwb->lwb_state == LWB_STATE_OPENED ||
1020eda14cbcSMatt Macy 	    lwb->lwb_state == LWB_STATE_ISSUED ||
1021eda14cbcSMatt Macy 	    lwb->lwb_state == LWB_STATE_WRITE_DONE);
1022eda14cbcSMatt Macy 
1023eda14cbcSMatt Macy 	list_insert_tail(&lwb->lwb_waiters, zcw);
1024eda14cbcSMatt Macy 	zcw->zcw_lwb = lwb;
1025eda14cbcSMatt Macy 	mutex_exit(&zcw->zcw_lock);
1026eda14cbcSMatt Macy }
1027eda14cbcSMatt Macy 
1028eda14cbcSMatt Macy /*
1029eda14cbcSMatt Macy  * This function is used when zio_alloc_zil() fails to allocate a ZIL
1030eda14cbcSMatt Macy  * block, and the given waiter must be linked to the "nolwb waiters"
1031eda14cbcSMatt Macy  * list inside of zil_process_commit_list().
1032eda14cbcSMatt Macy  */
1033eda14cbcSMatt Macy static void
1034eda14cbcSMatt Macy zil_commit_waiter_link_nolwb(zil_commit_waiter_t *zcw, list_t *nolwb)
1035eda14cbcSMatt Macy {
1036eda14cbcSMatt Macy 	mutex_enter(&zcw->zcw_lock);
1037eda14cbcSMatt Macy 	ASSERT(!list_link_active(&zcw->zcw_node));
1038eda14cbcSMatt Macy 	ASSERT3P(zcw->zcw_lwb, ==, NULL);
1039eda14cbcSMatt Macy 	list_insert_tail(nolwb, zcw);
1040eda14cbcSMatt Macy 	mutex_exit(&zcw->zcw_lock);
1041eda14cbcSMatt Macy }
1042eda14cbcSMatt Macy 
1043eda14cbcSMatt Macy void
1044eda14cbcSMatt Macy zil_lwb_add_block(lwb_t *lwb, const blkptr_t *bp)
1045eda14cbcSMatt Macy {
1046eda14cbcSMatt Macy 	avl_tree_t *t = &lwb->lwb_vdev_tree;
1047eda14cbcSMatt Macy 	avl_index_t where;
1048eda14cbcSMatt Macy 	zil_vdev_node_t *zv, zvsearch;
1049eda14cbcSMatt Macy 	int ndvas = BP_GET_NDVAS(bp);
1050eda14cbcSMatt Macy 	int i;
1051eda14cbcSMatt Macy 
1052eda14cbcSMatt Macy 	if (zil_nocacheflush)
1053eda14cbcSMatt Macy 		return;
1054eda14cbcSMatt Macy 
1055eda14cbcSMatt Macy 	mutex_enter(&lwb->lwb_vdev_lock);
1056eda14cbcSMatt Macy 	for (i = 0; i < ndvas; i++) {
1057eda14cbcSMatt Macy 		zvsearch.zv_vdev = DVA_GET_VDEV(&bp->blk_dva[i]);
1058eda14cbcSMatt Macy 		if (avl_find(t, &zvsearch, &where) == NULL) {
1059eda14cbcSMatt Macy 			zv = kmem_alloc(sizeof (*zv), KM_SLEEP);
1060eda14cbcSMatt Macy 			zv->zv_vdev = zvsearch.zv_vdev;
1061eda14cbcSMatt Macy 			avl_insert(t, zv, where);
1062eda14cbcSMatt Macy 		}
1063eda14cbcSMatt Macy 	}
1064eda14cbcSMatt Macy 	mutex_exit(&lwb->lwb_vdev_lock);
1065eda14cbcSMatt Macy }
1066eda14cbcSMatt Macy 
1067eda14cbcSMatt Macy static void
1068eda14cbcSMatt Macy zil_lwb_flush_defer(lwb_t *lwb, lwb_t *nlwb)
1069eda14cbcSMatt Macy {
1070eda14cbcSMatt Macy 	avl_tree_t *src = &lwb->lwb_vdev_tree;
1071eda14cbcSMatt Macy 	avl_tree_t *dst = &nlwb->lwb_vdev_tree;
1072eda14cbcSMatt Macy 	void *cookie = NULL;
1073eda14cbcSMatt Macy 	zil_vdev_node_t *zv;
1074eda14cbcSMatt Macy 
1075eda14cbcSMatt Macy 	ASSERT3S(lwb->lwb_state, ==, LWB_STATE_WRITE_DONE);
1076eda14cbcSMatt Macy 	ASSERT3S(nlwb->lwb_state, !=, LWB_STATE_WRITE_DONE);
1077eda14cbcSMatt Macy 	ASSERT3S(nlwb->lwb_state, !=, LWB_STATE_FLUSH_DONE);
1078eda14cbcSMatt Macy 
1079eda14cbcSMatt Macy 	/*
1080eda14cbcSMatt Macy 	 * While 'lwb' is at a point in its lifetime where lwb_vdev_tree does
1081eda14cbcSMatt Macy 	 * not need the protection of lwb_vdev_lock (it will only be modified
1082eda14cbcSMatt Macy 	 * while holding zilog->zl_lock) as its writes and those of its
1083eda14cbcSMatt Macy 	 * children have all completed.  The younger 'nlwb' may be waiting on
1084eda14cbcSMatt Macy 	 * future writes to additional vdevs.
1085eda14cbcSMatt Macy 	 */
1086eda14cbcSMatt Macy 	mutex_enter(&nlwb->lwb_vdev_lock);
1087eda14cbcSMatt Macy 	/*
1088eda14cbcSMatt Macy 	 * Tear down the 'lwb' vdev tree, ensuring that entries which do not
1089eda14cbcSMatt Macy 	 * exist in 'nlwb' are moved to it, freeing any would-be duplicates.
1090eda14cbcSMatt Macy 	 */
1091eda14cbcSMatt Macy 	while ((zv = avl_destroy_nodes(src, &cookie)) != NULL) {
1092eda14cbcSMatt Macy 		avl_index_t where;
1093eda14cbcSMatt Macy 
1094eda14cbcSMatt Macy 		if (avl_find(dst, zv, &where) == NULL) {
1095eda14cbcSMatt Macy 			avl_insert(dst, zv, where);
1096eda14cbcSMatt Macy 		} else {
1097eda14cbcSMatt Macy 			kmem_free(zv, sizeof (*zv));
1098eda14cbcSMatt Macy 		}
1099eda14cbcSMatt Macy 	}
1100eda14cbcSMatt Macy 	mutex_exit(&nlwb->lwb_vdev_lock);
1101eda14cbcSMatt Macy }
1102eda14cbcSMatt Macy 
1103eda14cbcSMatt Macy void
1104eda14cbcSMatt Macy zil_lwb_add_txg(lwb_t *lwb, uint64_t txg)
1105eda14cbcSMatt Macy {
1106eda14cbcSMatt Macy 	lwb->lwb_max_txg = MAX(lwb->lwb_max_txg, txg);
1107eda14cbcSMatt Macy }
1108eda14cbcSMatt Macy 
1109eda14cbcSMatt Macy /*
1110eda14cbcSMatt Macy  * This function is a called after all vdevs associated with a given lwb
1111eda14cbcSMatt Macy  * write have completed their DKIOCFLUSHWRITECACHE command; or as soon
1112eda14cbcSMatt Macy  * as the lwb write completes, if "zil_nocacheflush" is set. Further,
1113eda14cbcSMatt Macy  * all "previous" lwb's will have completed before this function is
1114eda14cbcSMatt Macy  * called; i.e. this function is called for all previous lwbs before
1115eda14cbcSMatt Macy  * it's called for "this" lwb (enforced via zio the dependencies
1116eda14cbcSMatt Macy  * configured in zil_lwb_set_zio_dependency()).
1117eda14cbcSMatt Macy  *
1118eda14cbcSMatt Macy  * The intention is for this function to be called as soon as the
1119eda14cbcSMatt Macy  * contents of an lwb are considered "stable" on disk, and will survive
1120eda14cbcSMatt Macy  * any sudden loss of power. At this point, any threads waiting for the
1121eda14cbcSMatt Macy  * lwb to reach this state are signalled, and the "waiter" structures
1122eda14cbcSMatt Macy  * are marked "done".
1123eda14cbcSMatt Macy  */
1124eda14cbcSMatt Macy static void
1125eda14cbcSMatt Macy zil_lwb_flush_vdevs_done(zio_t *zio)
1126eda14cbcSMatt Macy {
1127eda14cbcSMatt Macy 	lwb_t *lwb = zio->io_private;
1128eda14cbcSMatt Macy 	zilog_t *zilog = lwb->lwb_zilog;
1129eda14cbcSMatt Macy 	dmu_tx_t *tx = lwb->lwb_tx;
1130eda14cbcSMatt Macy 	zil_commit_waiter_t *zcw;
1131eda14cbcSMatt Macy 	itx_t *itx;
1132eda14cbcSMatt Macy 
1133eda14cbcSMatt Macy 	spa_config_exit(zilog->zl_spa, SCL_STATE, lwb);
1134eda14cbcSMatt Macy 
1135eda14cbcSMatt Macy 	zio_buf_free(lwb->lwb_buf, lwb->lwb_sz);
1136eda14cbcSMatt Macy 
1137eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
1138eda14cbcSMatt Macy 
1139eda14cbcSMatt Macy 	/*
1140eda14cbcSMatt Macy 	 * Ensure the lwb buffer pointer is cleared before releasing the
1141eda14cbcSMatt Macy 	 * txg. If we have had an allocation failure and the txg is
1142eda14cbcSMatt Macy 	 * waiting to sync then we want zil_sync() to remove the lwb so
1143eda14cbcSMatt Macy 	 * that it's not picked up as the next new one in
1144eda14cbcSMatt Macy 	 * zil_process_commit_list(). zil_sync() will only remove the
1145eda14cbcSMatt Macy 	 * lwb if lwb_buf is null.
1146eda14cbcSMatt Macy 	 */
1147eda14cbcSMatt Macy 	lwb->lwb_buf = NULL;
1148eda14cbcSMatt Macy 	lwb->lwb_tx = NULL;
1149eda14cbcSMatt Macy 
1150eda14cbcSMatt Macy 	ASSERT3U(lwb->lwb_issued_timestamp, >, 0);
1151eda14cbcSMatt Macy 	zilog->zl_last_lwb_latency = gethrtime() - lwb->lwb_issued_timestamp;
1152eda14cbcSMatt Macy 
1153eda14cbcSMatt Macy 	lwb->lwb_root_zio = NULL;
1154eda14cbcSMatt Macy 
1155eda14cbcSMatt Macy 	ASSERT3S(lwb->lwb_state, ==, LWB_STATE_WRITE_DONE);
1156eda14cbcSMatt Macy 	lwb->lwb_state = LWB_STATE_FLUSH_DONE;
1157eda14cbcSMatt Macy 
1158eda14cbcSMatt Macy 	if (zilog->zl_last_lwb_opened == lwb) {
1159eda14cbcSMatt Macy 		/*
1160eda14cbcSMatt Macy 		 * Remember the highest committed log sequence number
1161eda14cbcSMatt Macy 		 * for ztest. We only update this value when all the log
1162eda14cbcSMatt Macy 		 * writes succeeded, because ztest wants to ASSERT that
1163eda14cbcSMatt Macy 		 * it got the whole log chain.
1164eda14cbcSMatt Macy 		 */
1165eda14cbcSMatt Macy 		zilog->zl_commit_lr_seq = zilog->zl_lr_seq;
1166eda14cbcSMatt Macy 	}
1167eda14cbcSMatt Macy 
1168eda14cbcSMatt Macy 	while ((itx = list_head(&lwb->lwb_itxs)) != NULL) {
1169eda14cbcSMatt Macy 		list_remove(&lwb->lwb_itxs, itx);
1170eda14cbcSMatt Macy 		zil_itx_destroy(itx);
1171eda14cbcSMatt Macy 	}
1172eda14cbcSMatt Macy 
1173eda14cbcSMatt Macy 	while ((zcw = list_head(&lwb->lwb_waiters)) != NULL) {
1174eda14cbcSMatt Macy 		mutex_enter(&zcw->zcw_lock);
1175eda14cbcSMatt Macy 
1176eda14cbcSMatt Macy 		ASSERT(list_link_active(&zcw->zcw_node));
1177eda14cbcSMatt Macy 		list_remove(&lwb->lwb_waiters, zcw);
1178eda14cbcSMatt Macy 
1179eda14cbcSMatt Macy 		ASSERT3P(zcw->zcw_lwb, ==, lwb);
1180eda14cbcSMatt Macy 		zcw->zcw_lwb = NULL;
1181*53b70c86SMartin Matuska 		/*
1182*53b70c86SMartin Matuska 		 * We expect any ZIO errors from child ZIOs to have been
1183*53b70c86SMartin Matuska 		 * propagated "up" to this specific LWB's root ZIO, in
1184*53b70c86SMartin Matuska 		 * order for this error handling to work correctly. This
1185*53b70c86SMartin Matuska 		 * includes ZIO errors from either this LWB's write or
1186*53b70c86SMartin Matuska 		 * flush, as well as any errors from other dependent LWBs
1187*53b70c86SMartin Matuska 		 * (e.g. a root LWB ZIO that might be a child of this LWB).
1188*53b70c86SMartin Matuska 		 *
1189*53b70c86SMartin Matuska 		 * With that said, it's important to note that LWB flush
1190*53b70c86SMartin Matuska 		 * errors are not propagated up to the LWB root ZIO.
1191*53b70c86SMartin Matuska 		 * This is incorrect behavior, and results in VDEV flush
1192*53b70c86SMartin Matuska 		 * errors not being handled correctly here. See the
1193*53b70c86SMartin Matuska 		 * comment above the call to "zio_flush" for details.
1194*53b70c86SMartin Matuska 		 */
1195eda14cbcSMatt Macy 
1196eda14cbcSMatt Macy 		zcw->zcw_zio_error = zio->io_error;
1197eda14cbcSMatt Macy 
1198eda14cbcSMatt Macy 		ASSERT3B(zcw->zcw_done, ==, B_FALSE);
1199eda14cbcSMatt Macy 		zcw->zcw_done = B_TRUE;
1200eda14cbcSMatt Macy 		cv_broadcast(&zcw->zcw_cv);
1201eda14cbcSMatt Macy 
1202eda14cbcSMatt Macy 		mutex_exit(&zcw->zcw_lock);
1203eda14cbcSMatt Macy 	}
1204eda14cbcSMatt Macy 
1205eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
1206eda14cbcSMatt Macy 
1207eda14cbcSMatt Macy 	/*
1208eda14cbcSMatt Macy 	 * Now that we've written this log block, we have a stable pointer
1209eda14cbcSMatt Macy 	 * to the next block in the chain, so it's OK to let the txg in
1210eda14cbcSMatt Macy 	 * which we allocated the next block sync.
1211eda14cbcSMatt Macy 	 */
1212eda14cbcSMatt Macy 	dmu_tx_commit(tx);
1213eda14cbcSMatt Macy }
1214eda14cbcSMatt Macy 
1215eda14cbcSMatt Macy /*
1216eda14cbcSMatt Macy  * This is called when an lwb's write zio completes. The callback's
1217eda14cbcSMatt Macy  * purpose is to issue the DKIOCFLUSHWRITECACHE commands for the vdevs
1218eda14cbcSMatt Macy  * in the lwb's lwb_vdev_tree. The tree will contain the vdevs involved
1219eda14cbcSMatt Macy  * in writing out this specific lwb's data, and in the case that cache
1220eda14cbcSMatt Macy  * flushes have been deferred, vdevs involved in writing the data for
1221eda14cbcSMatt Macy  * previous lwbs. The writes corresponding to all the vdevs in the
1222eda14cbcSMatt Macy  * lwb_vdev_tree will have completed by the time this is called, due to
1223eda14cbcSMatt Macy  * the zio dependencies configured in zil_lwb_set_zio_dependency(),
1224eda14cbcSMatt Macy  * which takes deferred flushes into account. The lwb will be "done"
1225eda14cbcSMatt Macy  * once zil_lwb_flush_vdevs_done() is called, which occurs in the zio
1226eda14cbcSMatt Macy  * completion callback for the lwb's root zio.
1227eda14cbcSMatt Macy  */
1228eda14cbcSMatt Macy static void
1229eda14cbcSMatt Macy zil_lwb_write_done(zio_t *zio)
1230eda14cbcSMatt Macy {
1231eda14cbcSMatt Macy 	lwb_t *lwb = zio->io_private;
1232eda14cbcSMatt Macy 	spa_t *spa = zio->io_spa;
1233eda14cbcSMatt Macy 	zilog_t *zilog = lwb->lwb_zilog;
1234eda14cbcSMatt Macy 	avl_tree_t *t = &lwb->lwb_vdev_tree;
1235eda14cbcSMatt Macy 	void *cookie = NULL;
1236eda14cbcSMatt Macy 	zil_vdev_node_t *zv;
1237eda14cbcSMatt Macy 	lwb_t *nlwb;
1238eda14cbcSMatt Macy 
1239eda14cbcSMatt Macy 	ASSERT3S(spa_config_held(spa, SCL_STATE, RW_READER), !=, 0);
1240eda14cbcSMatt Macy 
1241eda14cbcSMatt Macy 	ASSERT(BP_GET_COMPRESS(zio->io_bp) == ZIO_COMPRESS_OFF);
1242eda14cbcSMatt Macy 	ASSERT(BP_GET_TYPE(zio->io_bp) == DMU_OT_INTENT_LOG);
1243eda14cbcSMatt Macy 	ASSERT(BP_GET_LEVEL(zio->io_bp) == 0);
1244eda14cbcSMatt Macy 	ASSERT(BP_GET_BYTEORDER(zio->io_bp) == ZFS_HOST_BYTEORDER);
1245eda14cbcSMatt Macy 	ASSERT(!BP_IS_GANG(zio->io_bp));
1246eda14cbcSMatt Macy 	ASSERT(!BP_IS_HOLE(zio->io_bp));
1247eda14cbcSMatt Macy 	ASSERT(BP_GET_FILL(zio->io_bp) == 0);
1248eda14cbcSMatt Macy 
1249184c1b94SMartin Matuska 	abd_free(zio->io_abd);
1250eda14cbcSMatt Macy 
1251eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
1252eda14cbcSMatt Macy 	ASSERT3S(lwb->lwb_state, ==, LWB_STATE_ISSUED);
1253eda14cbcSMatt Macy 	lwb->lwb_state = LWB_STATE_WRITE_DONE;
1254eda14cbcSMatt Macy 	lwb->lwb_write_zio = NULL;
1255eda14cbcSMatt Macy 	lwb->lwb_fastwrite = FALSE;
1256eda14cbcSMatt Macy 	nlwb = list_next(&zilog->zl_lwb_list, lwb);
1257eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
1258eda14cbcSMatt Macy 
1259eda14cbcSMatt Macy 	if (avl_numnodes(t) == 0)
1260eda14cbcSMatt Macy 		return;
1261eda14cbcSMatt Macy 
1262eda14cbcSMatt Macy 	/*
1263eda14cbcSMatt Macy 	 * If there was an IO error, we're not going to call zio_flush()
1264eda14cbcSMatt Macy 	 * on these vdevs, so we simply empty the tree and free the
1265eda14cbcSMatt Macy 	 * nodes. We avoid calling zio_flush() since there isn't any
1266eda14cbcSMatt Macy 	 * good reason for doing so, after the lwb block failed to be
1267eda14cbcSMatt Macy 	 * written out.
1268*53b70c86SMartin Matuska 	 *
1269*53b70c86SMartin Matuska 	 * Additionally, we don't perform any further error handling at
1270*53b70c86SMartin Matuska 	 * this point (e.g. setting "zcw_zio_error" appropriately), as
1271*53b70c86SMartin Matuska 	 * we expect that to occur in "zil_lwb_flush_vdevs_done" (thus,
1272*53b70c86SMartin Matuska 	 * we expect any error seen here, to have been propagated to
1273*53b70c86SMartin Matuska 	 * that function).
1274eda14cbcSMatt Macy 	 */
1275eda14cbcSMatt Macy 	if (zio->io_error != 0) {
1276eda14cbcSMatt Macy 		while ((zv = avl_destroy_nodes(t, &cookie)) != NULL)
1277eda14cbcSMatt Macy 			kmem_free(zv, sizeof (*zv));
1278eda14cbcSMatt Macy 		return;
1279eda14cbcSMatt Macy 	}
1280eda14cbcSMatt Macy 
1281eda14cbcSMatt Macy 	/*
1282eda14cbcSMatt Macy 	 * If this lwb does not have any threads waiting for it to
1283eda14cbcSMatt Macy 	 * complete, we want to defer issuing the DKIOCFLUSHWRITECACHE
1284eda14cbcSMatt Macy 	 * command to the vdevs written to by "this" lwb, and instead
1285eda14cbcSMatt Macy 	 * rely on the "next" lwb to handle the DKIOCFLUSHWRITECACHE
1286eda14cbcSMatt Macy 	 * command for those vdevs. Thus, we merge the vdev tree of
1287eda14cbcSMatt Macy 	 * "this" lwb with the vdev tree of the "next" lwb in the list,
1288eda14cbcSMatt Macy 	 * and assume the "next" lwb will handle flushing the vdevs (or
1289eda14cbcSMatt Macy 	 * deferring the flush(s) again).
1290eda14cbcSMatt Macy 	 *
1291eda14cbcSMatt Macy 	 * This is a useful performance optimization, especially for
1292eda14cbcSMatt Macy 	 * workloads with lots of async write activity and few sync
1293eda14cbcSMatt Macy 	 * write and/or fsync activity, as it has the potential to
1294eda14cbcSMatt Macy 	 * coalesce multiple flush commands to a vdev into one.
1295eda14cbcSMatt Macy 	 */
1296eda14cbcSMatt Macy 	if (list_head(&lwb->lwb_waiters) == NULL && nlwb != NULL) {
1297eda14cbcSMatt Macy 		zil_lwb_flush_defer(lwb, nlwb);
1298eda14cbcSMatt Macy 		ASSERT(avl_is_empty(&lwb->lwb_vdev_tree));
1299eda14cbcSMatt Macy 		return;
1300eda14cbcSMatt Macy 	}
1301eda14cbcSMatt Macy 
1302eda14cbcSMatt Macy 	while ((zv = avl_destroy_nodes(t, &cookie)) != NULL) {
1303eda14cbcSMatt Macy 		vdev_t *vd = vdev_lookup_top(spa, zv->zv_vdev);
1304*53b70c86SMartin Matuska 		if (vd != NULL) {
1305*53b70c86SMartin Matuska 			/*
1306*53b70c86SMartin Matuska 			 * The "ZIO_FLAG_DONT_PROPAGATE" is currently
1307*53b70c86SMartin Matuska 			 * always used within "zio_flush". This means,
1308*53b70c86SMartin Matuska 			 * any errors when flushing the vdev(s), will
1309*53b70c86SMartin Matuska 			 * (unfortunately) not be handled correctly,
1310*53b70c86SMartin Matuska 			 * since these "zio_flush" errors will not be
1311*53b70c86SMartin Matuska 			 * propagated up to "zil_lwb_flush_vdevs_done".
1312*53b70c86SMartin Matuska 			 */
1313eda14cbcSMatt Macy 			zio_flush(lwb->lwb_root_zio, vd);
1314*53b70c86SMartin Matuska 		}
1315eda14cbcSMatt Macy 		kmem_free(zv, sizeof (*zv));
1316eda14cbcSMatt Macy 	}
1317eda14cbcSMatt Macy }
1318eda14cbcSMatt Macy 
1319eda14cbcSMatt Macy static void
1320eda14cbcSMatt Macy zil_lwb_set_zio_dependency(zilog_t *zilog, lwb_t *lwb)
1321eda14cbcSMatt Macy {
1322eda14cbcSMatt Macy 	lwb_t *last_lwb_opened = zilog->zl_last_lwb_opened;
1323eda14cbcSMatt Macy 
1324eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock));
1325eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_lock));
1326eda14cbcSMatt Macy 
1327eda14cbcSMatt Macy 	/*
1328eda14cbcSMatt Macy 	 * The zilog's "zl_last_lwb_opened" field is used to build the
1329eda14cbcSMatt Macy 	 * lwb/zio dependency chain, which is used to preserve the
1330eda14cbcSMatt Macy 	 * ordering of lwb completions that is required by the semantics
1331eda14cbcSMatt Macy 	 * of the ZIL. Each new lwb zio becomes a parent of the
1332eda14cbcSMatt Macy 	 * "previous" lwb zio, such that the new lwb's zio cannot
1333eda14cbcSMatt Macy 	 * complete until the "previous" lwb's zio completes.
1334eda14cbcSMatt Macy 	 *
1335eda14cbcSMatt Macy 	 * This is required by the semantics of zil_commit(); the commit
1336eda14cbcSMatt Macy 	 * waiters attached to the lwbs will be woken in the lwb zio's
1337eda14cbcSMatt Macy 	 * completion callback, so this zio dependency graph ensures the
1338eda14cbcSMatt Macy 	 * waiters are woken in the correct order (the same order the
1339eda14cbcSMatt Macy 	 * lwbs were created).
1340eda14cbcSMatt Macy 	 */
1341eda14cbcSMatt Macy 	if (last_lwb_opened != NULL &&
1342eda14cbcSMatt Macy 	    last_lwb_opened->lwb_state != LWB_STATE_FLUSH_DONE) {
1343eda14cbcSMatt Macy 		ASSERT(last_lwb_opened->lwb_state == LWB_STATE_OPENED ||
1344eda14cbcSMatt Macy 		    last_lwb_opened->lwb_state == LWB_STATE_ISSUED ||
1345eda14cbcSMatt Macy 		    last_lwb_opened->lwb_state == LWB_STATE_WRITE_DONE);
1346eda14cbcSMatt Macy 
1347eda14cbcSMatt Macy 		ASSERT3P(last_lwb_opened->lwb_root_zio, !=, NULL);
1348eda14cbcSMatt Macy 		zio_add_child(lwb->lwb_root_zio,
1349eda14cbcSMatt Macy 		    last_lwb_opened->lwb_root_zio);
1350eda14cbcSMatt Macy 
1351eda14cbcSMatt Macy 		/*
1352eda14cbcSMatt Macy 		 * If the previous lwb's write hasn't already completed,
1353eda14cbcSMatt Macy 		 * we also want to order the completion of the lwb write
1354eda14cbcSMatt Macy 		 * zios (above, we only order the completion of the lwb
1355eda14cbcSMatt Macy 		 * root zios). This is required because of how we can
1356eda14cbcSMatt Macy 		 * defer the DKIOCFLUSHWRITECACHE commands for each lwb.
1357eda14cbcSMatt Macy 		 *
1358eda14cbcSMatt Macy 		 * When the DKIOCFLUSHWRITECACHE commands are deferred,
1359eda14cbcSMatt Macy 		 * the previous lwb will rely on this lwb to flush the
1360eda14cbcSMatt Macy 		 * vdevs written to by that previous lwb. Thus, we need
1361eda14cbcSMatt Macy 		 * to ensure this lwb doesn't issue the flush until
1362eda14cbcSMatt Macy 		 * after the previous lwb's write completes. We ensure
1363eda14cbcSMatt Macy 		 * this ordering by setting the zio parent/child
1364eda14cbcSMatt Macy 		 * relationship here.
1365eda14cbcSMatt Macy 		 *
1366eda14cbcSMatt Macy 		 * Without this relationship on the lwb's write zio,
1367eda14cbcSMatt Macy 		 * it's possible for this lwb's write to complete prior
1368eda14cbcSMatt Macy 		 * to the previous lwb's write completing; and thus, the
1369eda14cbcSMatt Macy 		 * vdevs for the previous lwb would be flushed prior to
1370eda14cbcSMatt Macy 		 * that lwb's data being written to those vdevs (the
1371eda14cbcSMatt Macy 		 * vdevs are flushed in the lwb write zio's completion
1372eda14cbcSMatt Macy 		 * handler, zil_lwb_write_done()).
1373eda14cbcSMatt Macy 		 */
1374eda14cbcSMatt Macy 		if (last_lwb_opened->lwb_state != LWB_STATE_WRITE_DONE) {
1375eda14cbcSMatt Macy 			ASSERT(last_lwb_opened->lwb_state == LWB_STATE_OPENED ||
1376eda14cbcSMatt Macy 			    last_lwb_opened->lwb_state == LWB_STATE_ISSUED);
1377eda14cbcSMatt Macy 
1378eda14cbcSMatt Macy 			ASSERT3P(last_lwb_opened->lwb_write_zio, !=, NULL);
1379eda14cbcSMatt Macy 			zio_add_child(lwb->lwb_write_zio,
1380eda14cbcSMatt Macy 			    last_lwb_opened->lwb_write_zio);
1381eda14cbcSMatt Macy 		}
1382eda14cbcSMatt Macy 	}
1383eda14cbcSMatt Macy }
1384eda14cbcSMatt Macy 
1385eda14cbcSMatt Macy 
1386eda14cbcSMatt Macy /*
1387eda14cbcSMatt Macy  * This function's purpose is to "open" an lwb such that it is ready to
1388eda14cbcSMatt Macy  * accept new itxs being committed to it. To do this, the lwb's zio
1389eda14cbcSMatt Macy  * structures are created, and linked to the lwb. This function is
1390eda14cbcSMatt Macy  * idempotent; if the passed in lwb has already been opened, this
1391eda14cbcSMatt Macy  * function is essentially a no-op.
1392eda14cbcSMatt Macy  */
1393eda14cbcSMatt Macy static void
1394eda14cbcSMatt Macy zil_lwb_write_open(zilog_t *zilog, lwb_t *lwb)
1395eda14cbcSMatt Macy {
1396eda14cbcSMatt Macy 	zbookmark_phys_t zb;
1397eda14cbcSMatt Macy 	zio_priority_t prio;
1398eda14cbcSMatt Macy 
1399eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock));
1400eda14cbcSMatt Macy 	ASSERT3P(lwb, !=, NULL);
1401eda14cbcSMatt Macy 	EQUIV(lwb->lwb_root_zio == NULL, lwb->lwb_state == LWB_STATE_CLOSED);
1402eda14cbcSMatt Macy 	EQUIV(lwb->lwb_root_zio != NULL, lwb->lwb_state == LWB_STATE_OPENED);
1403eda14cbcSMatt Macy 
1404eda14cbcSMatt Macy 	SET_BOOKMARK(&zb, lwb->lwb_blk.blk_cksum.zc_word[ZIL_ZC_OBJSET],
1405eda14cbcSMatt Macy 	    ZB_ZIL_OBJECT, ZB_ZIL_LEVEL,
1406eda14cbcSMatt Macy 	    lwb->lwb_blk.blk_cksum.zc_word[ZIL_ZC_SEQ]);
1407eda14cbcSMatt Macy 
1408eda14cbcSMatt Macy 	/* Lock so zil_sync() doesn't fastwrite_unmark after zio is created */
1409eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
1410eda14cbcSMatt Macy 	if (lwb->lwb_root_zio == NULL) {
1411eda14cbcSMatt Macy 		abd_t *lwb_abd = abd_get_from_buf(lwb->lwb_buf,
1412eda14cbcSMatt Macy 		    BP_GET_LSIZE(&lwb->lwb_blk));
1413eda14cbcSMatt Macy 
1414eda14cbcSMatt Macy 		if (!lwb->lwb_fastwrite) {
1415eda14cbcSMatt Macy 			metaslab_fastwrite_mark(zilog->zl_spa, &lwb->lwb_blk);
1416eda14cbcSMatt Macy 			lwb->lwb_fastwrite = 1;
1417eda14cbcSMatt Macy 		}
1418eda14cbcSMatt Macy 
1419eda14cbcSMatt Macy 		if (!lwb->lwb_slog || zilog->zl_cur_used <= zil_slog_bulk)
1420eda14cbcSMatt Macy 			prio = ZIO_PRIORITY_SYNC_WRITE;
1421eda14cbcSMatt Macy 		else
1422eda14cbcSMatt Macy 			prio = ZIO_PRIORITY_ASYNC_WRITE;
1423eda14cbcSMatt Macy 
1424eda14cbcSMatt Macy 		lwb->lwb_root_zio = zio_root(zilog->zl_spa,
1425eda14cbcSMatt Macy 		    zil_lwb_flush_vdevs_done, lwb, ZIO_FLAG_CANFAIL);
1426eda14cbcSMatt Macy 		ASSERT3P(lwb->lwb_root_zio, !=, NULL);
1427eda14cbcSMatt Macy 
1428eda14cbcSMatt Macy 		lwb->lwb_write_zio = zio_rewrite(lwb->lwb_root_zio,
1429eda14cbcSMatt Macy 		    zilog->zl_spa, 0, &lwb->lwb_blk, lwb_abd,
1430eda14cbcSMatt Macy 		    BP_GET_LSIZE(&lwb->lwb_blk), zil_lwb_write_done, lwb,
1431*53b70c86SMartin Matuska 		    prio, ZIO_FLAG_CANFAIL | ZIO_FLAG_FASTWRITE, &zb);
1432eda14cbcSMatt Macy 		ASSERT3P(lwb->lwb_write_zio, !=, NULL);
1433eda14cbcSMatt Macy 
1434eda14cbcSMatt Macy 		lwb->lwb_state = LWB_STATE_OPENED;
1435eda14cbcSMatt Macy 
1436eda14cbcSMatt Macy 		zil_lwb_set_zio_dependency(zilog, lwb);
1437eda14cbcSMatt Macy 		zilog->zl_last_lwb_opened = lwb;
1438eda14cbcSMatt Macy 	}
1439eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
1440eda14cbcSMatt Macy 
1441eda14cbcSMatt Macy 	ASSERT3P(lwb->lwb_root_zio, !=, NULL);
1442eda14cbcSMatt Macy 	ASSERT3P(lwb->lwb_write_zio, !=, NULL);
1443eda14cbcSMatt Macy 	ASSERT3S(lwb->lwb_state, ==, LWB_STATE_OPENED);
1444eda14cbcSMatt Macy }
1445eda14cbcSMatt Macy 
1446eda14cbcSMatt Macy /*
1447eda14cbcSMatt Macy  * Define a limited set of intent log block sizes.
1448eda14cbcSMatt Macy  *
1449eda14cbcSMatt Macy  * These must be a multiple of 4KB. Note only the amount used (again
1450eda14cbcSMatt Macy  * aligned to 4KB) actually gets written. However, we can't always just
1451eda14cbcSMatt Macy  * allocate SPA_OLD_MAXBLOCKSIZE as the slog space could be exhausted.
1452eda14cbcSMatt Macy  */
1453eda14cbcSMatt Macy struct {
1454eda14cbcSMatt Macy 	uint64_t	limit;
1455eda14cbcSMatt Macy 	uint64_t	blksz;
1456eda14cbcSMatt Macy } zil_block_buckets[] = {
1457eda14cbcSMatt Macy 	{ 4096,		4096 },			/* non TX_WRITE */
1458eda14cbcSMatt Macy 	{ 8192 + 4096,	8192 + 4096 },		/* database */
1459eda14cbcSMatt Macy 	{ 32768 + 4096,	32768 + 4096 },		/* NFS writes */
1460eda14cbcSMatt Macy 	{ 65536 + 4096,	65536 + 4096 },		/* 64KB writes */
1461eda14cbcSMatt Macy 	{ 131072,	131072 },		/* < 128KB writes */
1462eda14cbcSMatt Macy 	{ 131072 +4096,	65536 + 4096 },		/* 128KB writes */
1463eda14cbcSMatt Macy 	{ UINT64_MAX,	SPA_OLD_MAXBLOCKSIZE},	/* > 128KB writes */
1464eda14cbcSMatt Macy };
1465eda14cbcSMatt Macy 
1466eda14cbcSMatt Macy /*
1467eda14cbcSMatt Macy  * Maximum block size used by the ZIL.  This is picked up when the ZIL is
1468eda14cbcSMatt Macy  * initialized.  Otherwise this should not be used directly; see
1469eda14cbcSMatt Macy  * zl_max_block_size instead.
1470eda14cbcSMatt Macy  */
1471eda14cbcSMatt Macy int zil_maxblocksize = SPA_OLD_MAXBLOCKSIZE;
1472eda14cbcSMatt Macy 
1473eda14cbcSMatt Macy /*
1474eda14cbcSMatt Macy  * Start a log block write and advance to the next log block.
1475eda14cbcSMatt Macy  * Calls are serialized.
1476eda14cbcSMatt Macy  */
1477eda14cbcSMatt Macy static lwb_t *
1478eda14cbcSMatt Macy zil_lwb_write_issue(zilog_t *zilog, lwb_t *lwb)
1479eda14cbcSMatt Macy {
1480eda14cbcSMatt Macy 	lwb_t *nlwb = NULL;
1481eda14cbcSMatt Macy 	zil_chain_t *zilc;
1482eda14cbcSMatt Macy 	spa_t *spa = zilog->zl_spa;
1483eda14cbcSMatt Macy 	blkptr_t *bp;
1484eda14cbcSMatt Macy 	dmu_tx_t *tx;
1485eda14cbcSMatt Macy 	uint64_t txg;
1486eda14cbcSMatt Macy 	uint64_t zil_blksz, wsz;
1487eda14cbcSMatt Macy 	int i, error;
1488eda14cbcSMatt Macy 	boolean_t slog;
1489eda14cbcSMatt Macy 
1490eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock));
1491eda14cbcSMatt Macy 	ASSERT3P(lwb->lwb_root_zio, !=, NULL);
1492eda14cbcSMatt Macy 	ASSERT3P(lwb->lwb_write_zio, !=, NULL);
1493eda14cbcSMatt Macy 	ASSERT3S(lwb->lwb_state, ==, LWB_STATE_OPENED);
1494eda14cbcSMatt Macy 
1495eda14cbcSMatt Macy 	if (BP_GET_CHECKSUM(&lwb->lwb_blk) == ZIO_CHECKSUM_ZILOG2) {
1496eda14cbcSMatt Macy 		zilc = (zil_chain_t *)lwb->lwb_buf;
1497eda14cbcSMatt Macy 		bp = &zilc->zc_next_blk;
1498eda14cbcSMatt Macy 	} else {
1499eda14cbcSMatt Macy 		zilc = (zil_chain_t *)(lwb->lwb_buf + lwb->lwb_sz);
1500eda14cbcSMatt Macy 		bp = &zilc->zc_next_blk;
1501eda14cbcSMatt Macy 	}
1502eda14cbcSMatt Macy 
1503eda14cbcSMatt Macy 	ASSERT(lwb->lwb_nused <= lwb->lwb_sz);
1504eda14cbcSMatt Macy 
1505eda14cbcSMatt Macy 	/*
1506eda14cbcSMatt Macy 	 * Allocate the next block and save its address in this block
1507eda14cbcSMatt Macy 	 * before writing it in order to establish the log chain.
1508eda14cbcSMatt Macy 	 * Note that if the allocation of nlwb synced before we wrote
1509eda14cbcSMatt Macy 	 * the block that points at it (lwb), we'd leak it if we crashed.
1510eda14cbcSMatt Macy 	 * Therefore, we don't do dmu_tx_commit() until zil_lwb_write_done().
1511eda14cbcSMatt Macy 	 * We dirty the dataset to ensure that zil_sync() will be called
1512eda14cbcSMatt Macy 	 * to clean up in the event of allocation failure or I/O failure.
1513eda14cbcSMatt Macy 	 */
1514eda14cbcSMatt Macy 
1515eda14cbcSMatt Macy 	tx = dmu_tx_create(zilog->zl_os);
1516eda14cbcSMatt Macy 
1517eda14cbcSMatt Macy 	/*
1518eda14cbcSMatt Macy 	 * Since we are not going to create any new dirty data, and we
1519eda14cbcSMatt Macy 	 * can even help with clearing the existing dirty data, we
1520eda14cbcSMatt Macy 	 * should not be subject to the dirty data based delays. We
1521eda14cbcSMatt Macy 	 * use TXG_NOTHROTTLE to bypass the delay mechanism.
1522eda14cbcSMatt Macy 	 */
1523eda14cbcSMatt Macy 	VERIFY0(dmu_tx_assign(tx, TXG_WAIT | TXG_NOTHROTTLE));
1524eda14cbcSMatt Macy 
1525eda14cbcSMatt Macy 	dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx);
1526eda14cbcSMatt Macy 	txg = dmu_tx_get_txg(tx);
1527eda14cbcSMatt Macy 
1528eda14cbcSMatt Macy 	lwb->lwb_tx = tx;
1529eda14cbcSMatt Macy 
1530eda14cbcSMatt Macy 	/*
1531eda14cbcSMatt Macy 	 * Log blocks are pre-allocated. Here we select the size of the next
1532eda14cbcSMatt Macy 	 * block, based on size used in the last block.
1533eda14cbcSMatt Macy 	 * - first find the smallest bucket that will fit the block from a
1534eda14cbcSMatt Macy 	 *   limited set of block sizes. This is because it's faster to write
1535eda14cbcSMatt Macy 	 *   blocks allocated from the same metaslab as they are adjacent or
1536eda14cbcSMatt Macy 	 *   close.
1537eda14cbcSMatt Macy 	 * - next find the maximum from the new suggested size and an array of
1538eda14cbcSMatt Macy 	 *   previous sizes. This lessens a picket fence effect of wrongly
1539eda14cbcSMatt Macy 	 *   guessing the size if we have a stream of say 2k, 64k, 2k, 64k
1540eda14cbcSMatt Macy 	 *   requests.
1541eda14cbcSMatt Macy 	 *
1542eda14cbcSMatt Macy 	 * Note we only write what is used, but we can't just allocate
1543eda14cbcSMatt Macy 	 * the maximum block size because we can exhaust the available
1544eda14cbcSMatt Macy 	 * pool log space.
1545eda14cbcSMatt Macy 	 */
1546eda14cbcSMatt Macy 	zil_blksz = zilog->zl_cur_used + sizeof (zil_chain_t);
1547eda14cbcSMatt Macy 	for (i = 0; zil_blksz > zil_block_buckets[i].limit; i++)
1548eda14cbcSMatt Macy 		continue;
1549eda14cbcSMatt Macy 	zil_blksz = MIN(zil_block_buckets[i].blksz, zilog->zl_max_block_size);
1550eda14cbcSMatt Macy 	zilog->zl_prev_blks[zilog->zl_prev_rotor] = zil_blksz;
1551eda14cbcSMatt Macy 	for (i = 0; i < ZIL_PREV_BLKS; i++)
1552eda14cbcSMatt Macy 		zil_blksz = MAX(zil_blksz, zilog->zl_prev_blks[i]);
1553eda14cbcSMatt Macy 	zilog->zl_prev_rotor = (zilog->zl_prev_rotor + 1) & (ZIL_PREV_BLKS - 1);
1554eda14cbcSMatt Macy 
1555eda14cbcSMatt Macy 	BP_ZERO(bp);
1556eda14cbcSMatt Macy 	error = zio_alloc_zil(spa, zilog->zl_os, txg, bp, zil_blksz, &slog);
1557eda14cbcSMatt Macy 	if (slog) {
1558eda14cbcSMatt Macy 		ZIL_STAT_BUMP(zil_itx_metaslab_slog_count);
1559eda14cbcSMatt Macy 		ZIL_STAT_INCR(zil_itx_metaslab_slog_bytes, lwb->lwb_nused);
1560eda14cbcSMatt Macy 	} else {
1561eda14cbcSMatt Macy 		ZIL_STAT_BUMP(zil_itx_metaslab_normal_count);
1562eda14cbcSMatt Macy 		ZIL_STAT_INCR(zil_itx_metaslab_normal_bytes, lwb->lwb_nused);
1563eda14cbcSMatt Macy 	}
1564eda14cbcSMatt Macy 	if (error == 0) {
1565eda14cbcSMatt Macy 		ASSERT3U(bp->blk_birth, ==, txg);
1566eda14cbcSMatt Macy 		bp->blk_cksum = lwb->lwb_blk.blk_cksum;
1567eda14cbcSMatt Macy 		bp->blk_cksum.zc_word[ZIL_ZC_SEQ]++;
1568eda14cbcSMatt Macy 
1569eda14cbcSMatt Macy 		/*
1570eda14cbcSMatt Macy 		 * Allocate a new log write block (lwb).
1571eda14cbcSMatt Macy 		 */
1572eda14cbcSMatt Macy 		nlwb = zil_alloc_lwb(zilog, bp, slog, txg, TRUE);
1573eda14cbcSMatt Macy 	}
1574eda14cbcSMatt Macy 
1575eda14cbcSMatt Macy 	if (BP_GET_CHECKSUM(&lwb->lwb_blk) == ZIO_CHECKSUM_ZILOG2) {
1576eda14cbcSMatt Macy 		/* For Slim ZIL only write what is used. */
1577eda14cbcSMatt Macy 		wsz = P2ROUNDUP_TYPED(lwb->lwb_nused, ZIL_MIN_BLKSZ, uint64_t);
1578eda14cbcSMatt Macy 		ASSERT3U(wsz, <=, lwb->lwb_sz);
1579eda14cbcSMatt Macy 		zio_shrink(lwb->lwb_write_zio, wsz);
1580eda14cbcSMatt Macy 
1581eda14cbcSMatt Macy 	} else {
1582eda14cbcSMatt Macy 		wsz = lwb->lwb_sz;
1583eda14cbcSMatt Macy 	}
1584eda14cbcSMatt Macy 
1585eda14cbcSMatt Macy 	zilc->zc_pad = 0;
1586eda14cbcSMatt Macy 	zilc->zc_nused = lwb->lwb_nused;
1587eda14cbcSMatt Macy 	zilc->zc_eck.zec_cksum = lwb->lwb_blk.blk_cksum;
1588eda14cbcSMatt Macy 
1589eda14cbcSMatt Macy 	/*
1590eda14cbcSMatt Macy 	 * clear unused data for security
1591eda14cbcSMatt Macy 	 */
1592eda14cbcSMatt Macy 	bzero(lwb->lwb_buf + lwb->lwb_nused, wsz - lwb->lwb_nused);
1593eda14cbcSMatt Macy 
1594eda14cbcSMatt Macy 	spa_config_enter(zilog->zl_spa, SCL_STATE, lwb, RW_READER);
1595eda14cbcSMatt Macy 
1596eda14cbcSMatt Macy 	zil_lwb_add_block(lwb, &lwb->lwb_blk);
1597eda14cbcSMatt Macy 	lwb->lwb_issued_timestamp = gethrtime();
1598eda14cbcSMatt Macy 	lwb->lwb_state = LWB_STATE_ISSUED;
1599eda14cbcSMatt Macy 
1600eda14cbcSMatt Macy 	zio_nowait(lwb->lwb_root_zio);
1601eda14cbcSMatt Macy 	zio_nowait(lwb->lwb_write_zio);
1602eda14cbcSMatt Macy 
1603eda14cbcSMatt Macy 	/*
1604eda14cbcSMatt Macy 	 * If there was an allocation failure then nlwb will be null which
1605eda14cbcSMatt Macy 	 * forces a txg_wait_synced().
1606eda14cbcSMatt Macy 	 */
1607eda14cbcSMatt Macy 	return (nlwb);
1608eda14cbcSMatt Macy }
1609eda14cbcSMatt Macy 
1610eda14cbcSMatt Macy /*
1611eda14cbcSMatt Macy  * Maximum amount of write data that can be put into single log block.
1612eda14cbcSMatt Macy  */
1613eda14cbcSMatt Macy uint64_t
1614eda14cbcSMatt Macy zil_max_log_data(zilog_t *zilog)
1615eda14cbcSMatt Macy {
1616eda14cbcSMatt Macy 	return (zilog->zl_max_block_size -
1617eda14cbcSMatt Macy 	    sizeof (zil_chain_t) - sizeof (lr_write_t));
1618eda14cbcSMatt Macy }
1619eda14cbcSMatt Macy 
1620eda14cbcSMatt Macy /*
1621eda14cbcSMatt Macy  * Maximum amount of log space we agree to waste to reduce number of
1622eda14cbcSMatt Macy  * WR_NEED_COPY chunks to reduce zl_get_data() overhead (~12%).
1623eda14cbcSMatt Macy  */
1624eda14cbcSMatt Macy static inline uint64_t
1625eda14cbcSMatt Macy zil_max_waste_space(zilog_t *zilog)
1626eda14cbcSMatt Macy {
1627eda14cbcSMatt Macy 	return (zil_max_log_data(zilog) / 8);
1628eda14cbcSMatt Macy }
1629eda14cbcSMatt Macy 
1630eda14cbcSMatt Macy /*
1631eda14cbcSMatt Macy  * Maximum amount of write data for WR_COPIED.  For correctness, consumers
1632eda14cbcSMatt Macy  * must fall back to WR_NEED_COPY if we can't fit the entire record into one
1633eda14cbcSMatt Macy  * maximum sized log block, because each WR_COPIED record must fit in a
1634eda14cbcSMatt Macy  * single log block.  For space efficiency, we want to fit two records into a
1635eda14cbcSMatt Macy  * max-sized log block.
1636eda14cbcSMatt Macy  */
1637eda14cbcSMatt Macy uint64_t
1638eda14cbcSMatt Macy zil_max_copied_data(zilog_t *zilog)
1639eda14cbcSMatt Macy {
1640eda14cbcSMatt Macy 	return ((zilog->zl_max_block_size - sizeof (zil_chain_t)) / 2 -
1641eda14cbcSMatt Macy 	    sizeof (lr_write_t));
1642eda14cbcSMatt Macy }
1643eda14cbcSMatt Macy 
1644eda14cbcSMatt Macy static lwb_t *
1645eda14cbcSMatt Macy zil_lwb_commit(zilog_t *zilog, itx_t *itx, lwb_t *lwb)
1646eda14cbcSMatt Macy {
1647eda14cbcSMatt Macy 	lr_t *lrcb, *lrc;
1648eda14cbcSMatt Macy 	lr_write_t *lrwb, *lrw;
1649eda14cbcSMatt Macy 	char *lr_buf;
16501f88aa09SMartin Matuska 	uint64_t dlen, dnow, dpad, lwb_sp, reclen, txg, max_log_data;
1651eda14cbcSMatt Macy 
1652eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock));
1653eda14cbcSMatt Macy 	ASSERT3P(lwb, !=, NULL);
1654eda14cbcSMatt Macy 	ASSERT3P(lwb->lwb_buf, !=, NULL);
1655eda14cbcSMatt Macy 
1656eda14cbcSMatt Macy 	zil_lwb_write_open(zilog, lwb);
1657eda14cbcSMatt Macy 
1658eda14cbcSMatt Macy 	lrc = &itx->itx_lr;
1659eda14cbcSMatt Macy 	lrw = (lr_write_t *)lrc;
1660eda14cbcSMatt Macy 
1661eda14cbcSMatt Macy 	/*
1662eda14cbcSMatt Macy 	 * A commit itx doesn't represent any on-disk state; instead
1663eda14cbcSMatt Macy 	 * it's simply used as a place holder on the commit list, and
1664eda14cbcSMatt Macy 	 * provides a mechanism for attaching a "commit waiter" onto the
1665eda14cbcSMatt Macy 	 * correct lwb (such that the waiter can be signalled upon
1666eda14cbcSMatt Macy 	 * completion of that lwb). Thus, we don't process this itx's
1667eda14cbcSMatt Macy 	 * log record if it's a commit itx (these itx's don't have log
1668eda14cbcSMatt Macy 	 * records), and instead link the itx's waiter onto the lwb's
1669eda14cbcSMatt Macy 	 * list of waiters.
1670eda14cbcSMatt Macy 	 *
1671eda14cbcSMatt Macy 	 * For more details, see the comment above zil_commit().
1672eda14cbcSMatt Macy 	 */
1673eda14cbcSMatt Macy 	if (lrc->lrc_txtype == TX_COMMIT) {
1674eda14cbcSMatt Macy 		mutex_enter(&zilog->zl_lock);
1675eda14cbcSMatt Macy 		zil_commit_waiter_link_lwb(itx->itx_private, lwb);
1676eda14cbcSMatt Macy 		itx->itx_private = NULL;
1677eda14cbcSMatt Macy 		mutex_exit(&zilog->zl_lock);
1678eda14cbcSMatt Macy 		return (lwb);
1679eda14cbcSMatt Macy 	}
1680eda14cbcSMatt Macy 
1681eda14cbcSMatt Macy 	if (lrc->lrc_txtype == TX_WRITE && itx->itx_wr_state == WR_NEED_COPY) {
1682eda14cbcSMatt Macy 		dlen = P2ROUNDUP_TYPED(
1683eda14cbcSMatt Macy 		    lrw->lr_length, sizeof (uint64_t), uint64_t);
16841f88aa09SMartin Matuska 		dpad = dlen - lrw->lr_length;
1685eda14cbcSMatt Macy 	} else {
16861f88aa09SMartin Matuska 		dlen = dpad = 0;
1687eda14cbcSMatt Macy 	}
1688eda14cbcSMatt Macy 	reclen = lrc->lrc_reclen;
1689eda14cbcSMatt Macy 	zilog->zl_cur_used += (reclen + dlen);
1690eda14cbcSMatt Macy 	txg = lrc->lrc_txg;
1691eda14cbcSMatt Macy 
1692eda14cbcSMatt Macy 	ASSERT3U(zilog->zl_cur_used, <, UINT64_MAX - (reclen + dlen));
1693eda14cbcSMatt Macy 
1694eda14cbcSMatt Macy cont:
1695eda14cbcSMatt Macy 	/*
1696eda14cbcSMatt Macy 	 * If this record won't fit in the current log block, start a new one.
1697eda14cbcSMatt Macy 	 * For WR_NEED_COPY optimize layout for minimal number of chunks.
1698eda14cbcSMatt Macy 	 */
1699eda14cbcSMatt Macy 	lwb_sp = lwb->lwb_sz - lwb->lwb_nused;
1700eda14cbcSMatt Macy 	max_log_data = zil_max_log_data(zilog);
1701eda14cbcSMatt Macy 	if (reclen > lwb_sp || (reclen + dlen > lwb_sp &&
1702eda14cbcSMatt Macy 	    lwb_sp < zil_max_waste_space(zilog) &&
1703eda14cbcSMatt Macy 	    (dlen % max_log_data == 0 ||
1704eda14cbcSMatt Macy 	    lwb_sp < reclen + dlen % max_log_data))) {
1705eda14cbcSMatt Macy 		lwb = zil_lwb_write_issue(zilog, lwb);
1706eda14cbcSMatt Macy 		if (lwb == NULL)
1707eda14cbcSMatt Macy 			return (NULL);
1708eda14cbcSMatt Macy 		zil_lwb_write_open(zilog, lwb);
1709eda14cbcSMatt Macy 		ASSERT(LWB_EMPTY(lwb));
1710eda14cbcSMatt Macy 		lwb_sp = lwb->lwb_sz - lwb->lwb_nused;
1711eda14cbcSMatt Macy 
1712eda14cbcSMatt Macy 		/*
1713eda14cbcSMatt Macy 		 * There must be enough space in the new, empty log block to
1714eda14cbcSMatt Macy 		 * hold reclen.  For WR_COPIED, we need to fit the whole
1715eda14cbcSMatt Macy 		 * record in one block, and reclen is the header size + the
1716eda14cbcSMatt Macy 		 * data size. For WR_NEED_COPY, we can create multiple
1717eda14cbcSMatt Macy 		 * records, splitting the data into multiple blocks, so we
1718eda14cbcSMatt Macy 		 * only need to fit one word of data per block; in this case
1719eda14cbcSMatt Macy 		 * reclen is just the header size (no data).
1720eda14cbcSMatt Macy 		 */
1721eda14cbcSMatt Macy 		ASSERT3U(reclen + MIN(dlen, sizeof (uint64_t)), <=, lwb_sp);
1722eda14cbcSMatt Macy 	}
1723eda14cbcSMatt Macy 
1724eda14cbcSMatt Macy 	dnow = MIN(dlen, lwb_sp - reclen);
1725eda14cbcSMatt Macy 	lr_buf = lwb->lwb_buf + lwb->lwb_nused;
1726eda14cbcSMatt Macy 	bcopy(lrc, lr_buf, reclen);
1727eda14cbcSMatt Macy 	lrcb = (lr_t *)lr_buf;		/* Like lrc, but inside lwb. */
1728eda14cbcSMatt Macy 	lrwb = (lr_write_t *)lrcb;	/* Like lrw, but inside lwb. */
1729eda14cbcSMatt Macy 
1730eda14cbcSMatt Macy 	ZIL_STAT_BUMP(zil_itx_count);
1731eda14cbcSMatt Macy 
1732eda14cbcSMatt Macy 	/*
1733eda14cbcSMatt Macy 	 * If it's a write, fetch the data or get its blkptr as appropriate.
1734eda14cbcSMatt Macy 	 */
1735eda14cbcSMatt Macy 	if (lrc->lrc_txtype == TX_WRITE) {
1736eda14cbcSMatt Macy 		if (txg > spa_freeze_txg(zilog->zl_spa))
1737eda14cbcSMatt Macy 			txg_wait_synced(zilog->zl_dmu_pool, txg);
1738eda14cbcSMatt Macy 		if (itx->itx_wr_state == WR_COPIED) {
1739eda14cbcSMatt Macy 			ZIL_STAT_BUMP(zil_itx_copied_count);
1740eda14cbcSMatt Macy 			ZIL_STAT_INCR(zil_itx_copied_bytes, lrw->lr_length);
1741eda14cbcSMatt Macy 		} else {
1742eda14cbcSMatt Macy 			char *dbuf;
1743eda14cbcSMatt Macy 			int error;
1744eda14cbcSMatt Macy 
1745eda14cbcSMatt Macy 			if (itx->itx_wr_state == WR_NEED_COPY) {
1746eda14cbcSMatt Macy 				dbuf = lr_buf + reclen;
1747eda14cbcSMatt Macy 				lrcb->lrc_reclen += dnow;
1748eda14cbcSMatt Macy 				if (lrwb->lr_length > dnow)
1749eda14cbcSMatt Macy 					lrwb->lr_length = dnow;
1750eda14cbcSMatt Macy 				lrw->lr_offset += dnow;
1751eda14cbcSMatt Macy 				lrw->lr_length -= dnow;
1752eda14cbcSMatt Macy 				ZIL_STAT_BUMP(zil_itx_needcopy_count);
1753eda14cbcSMatt Macy 				ZIL_STAT_INCR(zil_itx_needcopy_bytes, dnow);
1754eda14cbcSMatt Macy 			} else {
1755eda14cbcSMatt Macy 				ASSERT3S(itx->itx_wr_state, ==, WR_INDIRECT);
1756eda14cbcSMatt Macy 				dbuf = NULL;
1757eda14cbcSMatt Macy 				ZIL_STAT_BUMP(zil_itx_indirect_count);
1758eda14cbcSMatt Macy 				ZIL_STAT_INCR(zil_itx_indirect_bytes,
1759eda14cbcSMatt Macy 				    lrw->lr_length);
1760eda14cbcSMatt Macy 			}
1761eda14cbcSMatt Macy 
1762eda14cbcSMatt Macy 			/*
1763eda14cbcSMatt Macy 			 * We pass in the "lwb_write_zio" rather than
1764eda14cbcSMatt Macy 			 * "lwb_root_zio" so that the "lwb_write_zio"
1765eda14cbcSMatt Macy 			 * becomes the parent of any zio's created by
1766eda14cbcSMatt Macy 			 * the "zl_get_data" callback. The vdevs are
1767eda14cbcSMatt Macy 			 * flushed after the "lwb_write_zio" completes,
1768eda14cbcSMatt Macy 			 * so we want to make sure that completion
1769eda14cbcSMatt Macy 			 * callback waits for these additional zio's,
1770eda14cbcSMatt Macy 			 * such that the vdevs used by those zio's will
1771eda14cbcSMatt Macy 			 * be included in the lwb's vdev tree, and those
1772eda14cbcSMatt Macy 			 * vdevs will be properly flushed. If we passed
1773eda14cbcSMatt Macy 			 * in "lwb_root_zio" here, then these additional
1774eda14cbcSMatt Macy 			 * vdevs may not be flushed; e.g. if these zio's
1775eda14cbcSMatt Macy 			 * completed after "lwb_write_zio" completed.
1776eda14cbcSMatt Macy 			 */
1777eda14cbcSMatt Macy 			error = zilog->zl_get_data(itx->itx_private,
1778f9693befSMartin Matuska 			    itx->itx_gen, lrwb, dbuf, lwb,
1779f9693befSMartin Matuska 			    lwb->lwb_write_zio);
17801f88aa09SMartin Matuska 			if (dbuf != NULL && error == 0 && dnow == dlen)
17811f88aa09SMartin Matuska 				/* Zero any padding bytes in the last block. */
17821f88aa09SMartin Matuska 				bzero((char *)dbuf + lrwb->lr_length, dpad);
1783eda14cbcSMatt Macy 
1784eda14cbcSMatt Macy 			if (error == EIO) {
1785eda14cbcSMatt Macy 				txg_wait_synced(zilog->zl_dmu_pool, txg);
1786eda14cbcSMatt Macy 				return (lwb);
1787eda14cbcSMatt Macy 			}
1788eda14cbcSMatt Macy 			if (error != 0) {
1789eda14cbcSMatt Macy 				ASSERT(error == ENOENT || error == EEXIST ||
1790eda14cbcSMatt Macy 				    error == EALREADY);
1791eda14cbcSMatt Macy 				return (lwb);
1792eda14cbcSMatt Macy 			}
1793eda14cbcSMatt Macy 		}
1794eda14cbcSMatt Macy 	}
1795eda14cbcSMatt Macy 
1796eda14cbcSMatt Macy 	/*
1797eda14cbcSMatt Macy 	 * We're actually making an entry, so update lrc_seq to be the
1798eda14cbcSMatt Macy 	 * log record sequence number.  Note that this is generally not
1799eda14cbcSMatt Macy 	 * equal to the itx sequence number because not all transactions
1800eda14cbcSMatt Macy 	 * are synchronous, and sometimes spa_sync() gets there first.
1801eda14cbcSMatt Macy 	 */
1802eda14cbcSMatt Macy 	lrcb->lrc_seq = ++zilog->zl_lr_seq;
1803eda14cbcSMatt Macy 	lwb->lwb_nused += reclen + dnow;
1804eda14cbcSMatt Macy 
1805eda14cbcSMatt Macy 	zil_lwb_add_txg(lwb, txg);
1806eda14cbcSMatt Macy 
1807eda14cbcSMatt Macy 	ASSERT3U(lwb->lwb_nused, <=, lwb->lwb_sz);
1808eda14cbcSMatt Macy 	ASSERT0(P2PHASE(lwb->lwb_nused, sizeof (uint64_t)));
1809eda14cbcSMatt Macy 
1810eda14cbcSMatt Macy 	dlen -= dnow;
1811eda14cbcSMatt Macy 	if (dlen > 0) {
1812eda14cbcSMatt Macy 		zilog->zl_cur_used += reclen;
1813eda14cbcSMatt Macy 		goto cont;
1814eda14cbcSMatt Macy 	}
1815eda14cbcSMatt Macy 
1816eda14cbcSMatt Macy 	return (lwb);
1817eda14cbcSMatt Macy }
1818eda14cbcSMatt Macy 
1819eda14cbcSMatt Macy itx_t *
18201f88aa09SMartin Matuska zil_itx_create(uint64_t txtype, size_t olrsize)
1821eda14cbcSMatt Macy {
18221f88aa09SMartin Matuska 	size_t itxsize, lrsize;
1823eda14cbcSMatt Macy 	itx_t *itx;
1824eda14cbcSMatt Macy 
18251f88aa09SMartin Matuska 	lrsize = P2ROUNDUP_TYPED(olrsize, sizeof (uint64_t), size_t);
1826eda14cbcSMatt Macy 	itxsize = offsetof(itx_t, itx_lr) + lrsize;
1827eda14cbcSMatt Macy 
1828eda14cbcSMatt Macy 	itx = zio_data_buf_alloc(itxsize);
1829eda14cbcSMatt Macy 	itx->itx_lr.lrc_txtype = txtype;
1830eda14cbcSMatt Macy 	itx->itx_lr.lrc_reclen = lrsize;
1831eda14cbcSMatt Macy 	itx->itx_lr.lrc_seq = 0;	/* defensive */
18321f88aa09SMartin Matuska 	bzero((char *)&itx->itx_lr + olrsize, lrsize - olrsize);
1833eda14cbcSMatt Macy 	itx->itx_sync = B_TRUE;		/* default is synchronous */
1834eda14cbcSMatt Macy 	itx->itx_callback = NULL;
1835eda14cbcSMatt Macy 	itx->itx_callback_data = NULL;
1836eda14cbcSMatt Macy 	itx->itx_size = itxsize;
1837eda14cbcSMatt Macy 
1838eda14cbcSMatt Macy 	return (itx);
1839eda14cbcSMatt Macy }
1840eda14cbcSMatt Macy 
1841eda14cbcSMatt Macy void
1842eda14cbcSMatt Macy zil_itx_destroy(itx_t *itx)
1843eda14cbcSMatt Macy {
1844eda14cbcSMatt Macy 	IMPLY(itx->itx_lr.lrc_txtype == TX_COMMIT, itx->itx_callback == NULL);
1845eda14cbcSMatt Macy 	IMPLY(itx->itx_callback != NULL, itx->itx_lr.lrc_txtype != TX_COMMIT);
1846eda14cbcSMatt Macy 
1847eda14cbcSMatt Macy 	if (itx->itx_callback != NULL)
1848eda14cbcSMatt Macy 		itx->itx_callback(itx->itx_callback_data);
1849eda14cbcSMatt Macy 
1850eda14cbcSMatt Macy 	zio_data_buf_free(itx, itx->itx_size);
1851eda14cbcSMatt Macy }
1852eda14cbcSMatt Macy 
1853eda14cbcSMatt Macy /*
1854eda14cbcSMatt Macy  * Free up the sync and async itxs. The itxs_t has already been detached
1855eda14cbcSMatt Macy  * so no locks are needed.
1856eda14cbcSMatt Macy  */
1857eda14cbcSMatt Macy static void
18583f9d360cSMartin Matuska zil_itxg_clean(void *arg)
1859eda14cbcSMatt Macy {
1860eda14cbcSMatt Macy 	itx_t *itx;
1861eda14cbcSMatt Macy 	list_t *list;
1862eda14cbcSMatt Macy 	avl_tree_t *t;
1863eda14cbcSMatt Macy 	void *cookie;
18643f9d360cSMartin Matuska 	itxs_t *itxs = arg;
1865eda14cbcSMatt Macy 	itx_async_node_t *ian;
1866eda14cbcSMatt Macy 
1867eda14cbcSMatt Macy 	list = &itxs->i_sync_list;
1868eda14cbcSMatt Macy 	while ((itx = list_head(list)) != NULL) {
1869eda14cbcSMatt Macy 		/*
1870eda14cbcSMatt Macy 		 * In the general case, commit itxs will not be found
1871eda14cbcSMatt Macy 		 * here, as they'll be committed to an lwb via
1872eda14cbcSMatt Macy 		 * zil_lwb_commit(), and free'd in that function. Having
1873eda14cbcSMatt Macy 		 * said that, it is still possible for commit itxs to be
1874eda14cbcSMatt Macy 		 * found here, due to the following race:
1875eda14cbcSMatt Macy 		 *
1876eda14cbcSMatt Macy 		 *	- a thread calls zil_commit() which assigns the
1877eda14cbcSMatt Macy 		 *	  commit itx to a per-txg i_sync_list
1878eda14cbcSMatt Macy 		 *	- zil_itxg_clean() is called (e.g. via spa_sync())
1879eda14cbcSMatt Macy 		 *	  while the waiter is still on the i_sync_list
1880eda14cbcSMatt Macy 		 *
1881eda14cbcSMatt Macy 		 * There's nothing to prevent syncing the txg while the
1882eda14cbcSMatt Macy 		 * waiter is on the i_sync_list. This normally doesn't
1883eda14cbcSMatt Macy 		 * happen because spa_sync() is slower than zil_commit(),
1884eda14cbcSMatt Macy 		 * but if zil_commit() calls txg_wait_synced() (e.g.
1885eda14cbcSMatt Macy 		 * because zil_create() or zil_commit_writer_stall() is
1886eda14cbcSMatt Macy 		 * called) we will hit this case.
1887eda14cbcSMatt Macy 		 */
1888eda14cbcSMatt Macy 		if (itx->itx_lr.lrc_txtype == TX_COMMIT)
1889eda14cbcSMatt Macy 			zil_commit_waiter_skip(itx->itx_private);
1890eda14cbcSMatt Macy 
1891eda14cbcSMatt Macy 		list_remove(list, itx);
1892eda14cbcSMatt Macy 		zil_itx_destroy(itx);
1893eda14cbcSMatt Macy 	}
1894eda14cbcSMatt Macy 
1895eda14cbcSMatt Macy 	cookie = NULL;
1896eda14cbcSMatt Macy 	t = &itxs->i_async_tree;
1897eda14cbcSMatt Macy 	while ((ian = avl_destroy_nodes(t, &cookie)) != NULL) {
1898eda14cbcSMatt Macy 		list = &ian->ia_list;
1899eda14cbcSMatt Macy 		while ((itx = list_head(list)) != NULL) {
1900eda14cbcSMatt Macy 			list_remove(list, itx);
1901eda14cbcSMatt Macy 			/* commit itxs should never be on the async lists. */
1902eda14cbcSMatt Macy 			ASSERT3U(itx->itx_lr.lrc_txtype, !=, TX_COMMIT);
1903eda14cbcSMatt Macy 			zil_itx_destroy(itx);
1904eda14cbcSMatt Macy 		}
1905eda14cbcSMatt Macy 		list_destroy(list);
1906eda14cbcSMatt Macy 		kmem_free(ian, sizeof (itx_async_node_t));
1907eda14cbcSMatt Macy 	}
1908eda14cbcSMatt Macy 	avl_destroy(t);
1909eda14cbcSMatt Macy 
1910eda14cbcSMatt Macy 	kmem_free(itxs, sizeof (itxs_t));
1911eda14cbcSMatt Macy }
1912eda14cbcSMatt Macy 
1913eda14cbcSMatt Macy static int
1914eda14cbcSMatt Macy zil_aitx_compare(const void *x1, const void *x2)
1915eda14cbcSMatt Macy {
1916eda14cbcSMatt Macy 	const uint64_t o1 = ((itx_async_node_t *)x1)->ia_foid;
1917eda14cbcSMatt Macy 	const uint64_t o2 = ((itx_async_node_t *)x2)->ia_foid;
1918eda14cbcSMatt Macy 
1919eda14cbcSMatt Macy 	return (TREE_CMP(o1, o2));
1920eda14cbcSMatt Macy }
1921eda14cbcSMatt Macy 
1922eda14cbcSMatt Macy /*
1923eda14cbcSMatt Macy  * Remove all async itx with the given oid.
1924eda14cbcSMatt Macy  */
1925eda14cbcSMatt Macy void
1926eda14cbcSMatt Macy zil_remove_async(zilog_t *zilog, uint64_t oid)
1927eda14cbcSMatt Macy {
1928eda14cbcSMatt Macy 	uint64_t otxg, txg;
1929eda14cbcSMatt Macy 	itx_async_node_t *ian;
1930eda14cbcSMatt Macy 	avl_tree_t *t;
1931eda14cbcSMatt Macy 	avl_index_t where;
1932eda14cbcSMatt Macy 	list_t clean_list;
1933eda14cbcSMatt Macy 	itx_t *itx;
1934eda14cbcSMatt Macy 
1935eda14cbcSMatt Macy 	ASSERT(oid != 0);
1936eda14cbcSMatt Macy 	list_create(&clean_list, sizeof (itx_t), offsetof(itx_t, itx_node));
1937eda14cbcSMatt Macy 
1938eda14cbcSMatt Macy 	if (spa_freeze_txg(zilog->zl_spa) != UINT64_MAX) /* ziltest support */
1939eda14cbcSMatt Macy 		otxg = ZILTEST_TXG;
1940eda14cbcSMatt Macy 	else
1941eda14cbcSMatt Macy 		otxg = spa_last_synced_txg(zilog->zl_spa) + 1;
1942eda14cbcSMatt Macy 
1943eda14cbcSMatt Macy 	for (txg = otxg; txg < (otxg + TXG_CONCURRENT_STATES); txg++) {
1944eda14cbcSMatt Macy 		itxg_t *itxg = &zilog->zl_itxg[txg & TXG_MASK];
1945eda14cbcSMatt Macy 
1946eda14cbcSMatt Macy 		mutex_enter(&itxg->itxg_lock);
1947eda14cbcSMatt Macy 		if (itxg->itxg_txg != txg) {
1948eda14cbcSMatt Macy 			mutex_exit(&itxg->itxg_lock);
1949eda14cbcSMatt Macy 			continue;
1950eda14cbcSMatt Macy 		}
1951eda14cbcSMatt Macy 
1952eda14cbcSMatt Macy 		/*
1953eda14cbcSMatt Macy 		 * Locate the object node and append its list.
1954eda14cbcSMatt Macy 		 */
1955eda14cbcSMatt Macy 		t = &itxg->itxg_itxs->i_async_tree;
1956eda14cbcSMatt Macy 		ian = avl_find(t, &oid, &where);
1957eda14cbcSMatt Macy 		if (ian != NULL)
1958eda14cbcSMatt Macy 			list_move_tail(&clean_list, &ian->ia_list);
1959eda14cbcSMatt Macy 		mutex_exit(&itxg->itxg_lock);
1960eda14cbcSMatt Macy 	}
1961eda14cbcSMatt Macy 	while ((itx = list_head(&clean_list)) != NULL) {
1962eda14cbcSMatt Macy 		list_remove(&clean_list, itx);
1963eda14cbcSMatt Macy 		/* commit itxs should never be on the async lists. */
1964eda14cbcSMatt Macy 		ASSERT3U(itx->itx_lr.lrc_txtype, !=, TX_COMMIT);
1965eda14cbcSMatt Macy 		zil_itx_destroy(itx);
1966eda14cbcSMatt Macy 	}
1967eda14cbcSMatt Macy 	list_destroy(&clean_list);
1968eda14cbcSMatt Macy }
1969eda14cbcSMatt Macy 
1970eda14cbcSMatt Macy void
1971eda14cbcSMatt Macy zil_itx_assign(zilog_t *zilog, itx_t *itx, dmu_tx_t *tx)
1972eda14cbcSMatt Macy {
1973eda14cbcSMatt Macy 	uint64_t txg;
1974eda14cbcSMatt Macy 	itxg_t *itxg;
1975eda14cbcSMatt Macy 	itxs_t *itxs, *clean = NULL;
1976eda14cbcSMatt Macy 
1977eda14cbcSMatt Macy 	/*
1978eda14cbcSMatt Macy 	 * Ensure the data of a renamed file is committed before the rename.
1979eda14cbcSMatt Macy 	 */
1980eda14cbcSMatt Macy 	if ((itx->itx_lr.lrc_txtype & ~TX_CI) == TX_RENAME)
1981eda14cbcSMatt Macy 		zil_async_to_sync(zilog, itx->itx_oid);
1982eda14cbcSMatt Macy 
1983eda14cbcSMatt Macy 	if (spa_freeze_txg(zilog->zl_spa) != UINT64_MAX)
1984eda14cbcSMatt Macy 		txg = ZILTEST_TXG;
1985eda14cbcSMatt Macy 	else
1986eda14cbcSMatt Macy 		txg = dmu_tx_get_txg(tx);
1987eda14cbcSMatt Macy 
1988eda14cbcSMatt Macy 	itxg = &zilog->zl_itxg[txg & TXG_MASK];
1989eda14cbcSMatt Macy 	mutex_enter(&itxg->itxg_lock);
1990eda14cbcSMatt Macy 	itxs = itxg->itxg_itxs;
1991eda14cbcSMatt Macy 	if (itxg->itxg_txg != txg) {
1992eda14cbcSMatt Macy 		if (itxs != NULL) {
1993eda14cbcSMatt Macy 			/*
1994eda14cbcSMatt Macy 			 * The zil_clean callback hasn't got around to cleaning
1995eda14cbcSMatt Macy 			 * this itxg. Save the itxs for release below.
1996eda14cbcSMatt Macy 			 * This should be rare.
1997eda14cbcSMatt Macy 			 */
1998eda14cbcSMatt Macy 			zfs_dbgmsg("zil_itx_assign: missed itx cleanup for "
199933b8c039SMartin Matuska 			    "txg %llu", (u_longlong_t)itxg->itxg_txg);
2000eda14cbcSMatt Macy 			clean = itxg->itxg_itxs;
2001eda14cbcSMatt Macy 		}
2002eda14cbcSMatt Macy 		itxg->itxg_txg = txg;
2003eda14cbcSMatt Macy 		itxs = itxg->itxg_itxs = kmem_zalloc(sizeof (itxs_t),
2004eda14cbcSMatt Macy 		    KM_SLEEP);
2005eda14cbcSMatt Macy 
2006eda14cbcSMatt Macy 		list_create(&itxs->i_sync_list, sizeof (itx_t),
2007eda14cbcSMatt Macy 		    offsetof(itx_t, itx_node));
2008eda14cbcSMatt Macy 		avl_create(&itxs->i_async_tree, zil_aitx_compare,
2009eda14cbcSMatt Macy 		    sizeof (itx_async_node_t),
2010eda14cbcSMatt Macy 		    offsetof(itx_async_node_t, ia_node));
2011eda14cbcSMatt Macy 	}
2012eda14cbcSMatt Macy 	if (itx->itx_sync) {
2013eda14cbcSMatt Macy 		list_insert_tail(&itxs->i_sync_list, itx);
2014eda14cbcSMatt Macy 	} else {
2015eda14cbcSMatt Macy 		avl_tree_t *t = &itxs->i_async_tree;
2016eda14cbcSMatt Macy 		uint64_t foid =
2017eda14cbcSMatt Macy 		    LR_FOID_GET_OBJ(((lr_ooo_t *)&itx->itx_lr)->lr_foid);
2018eda14cbcSMatt Macy 		itx_async_node_t *ian;
2019eda14cbcSMatt Macy 		avl_index_t where;
2020eda14cbcSMatt Macy 
2021eda14cbcSMatt Macy 		ian = avl_find(t, &foid, &where);
2022eda14cbcSMatt Macy 		if (ian == NULL) {
2023eda14cbcSMatt Macy 			ian = kmem_alloc(sizeof (itx_async_node_t),
2024eda14cbcSMatt Macy 			    KM_SLEEP);
2025eda14cbcSMatt Macy 			list_create(&ian->ia_list, sizeof (itx_t),
2026eda14cbcSMatt Macy 			    offsetof(itx_t, itx_node));
2027eda14cbcSMatt Macy 			ian->ia_foid = foid;
2028eda14cbcSMatt Macy 			avl_insert(t, ian, where);
2029eda14cbcSMatt Macy 		}
2030eda14cbcSMatt Macy 		list_insert_tail(&ian->ia_list, itx);
2031eda14cbcSMatt Macy 	}
2032eda14cbcSMatt Macy 
2033eda14cbcSMatt Macy 	itx->itx_lr.lrc_txg = dmu_tx_get_txg(tx);
2034eda14cbcSMatt Macy 
2035eda14cbcSMatt Macy 	/*
2036eda14cbcSMatt Macy 	 * We don't want to dirty the ZIL using ZILTEST_TXG, because
2037eda14cbcSMatt Macy 	 * zil_clean() will never be called using ZILTEST_TXG. Thus, we
2038eda14cbcSMatt Macy 	 * need to be careful to always dirty the ZIL using the "real"
2039eda14cbcSMatt Macy 	 * TXG (not itxg_txg) even when the SPA is frozen.
2040eda14cbcSMatt Macy 	 */
2041eda14cbcSMatt Macy 	zilog_dirty(zilog, dmu_tx_get_txg(tx));
2042eda14cbcSMatt Macy 	mutex_exit(&itxg->itxg_lock);
2043eda14cbcSMatt Macy 
2044eda14cbcSMatt Macy 	/* Release the old itxs now we've dropped the lock */
2045eda14cbcSMatt Macy 	if (clean != NULL)
2046eda14cbcSMatt Macy 		zil_itxg_clean(clean);
2047eda14cbcSMatt Macy }
2048eda14cbcSMatt Macy 
2049eda14cbcSMatt Macy /*
2050eda14cbcSMatt Macy  * If there are any in-memory intent log transactions which have now been
2051eda14cbcSMatt Macy  * synced then start up a taskq to free them. We should only do this after we
2052eda14cbcSMatt Macy  * have written out the uberblocks (i.e. txg has been committed) so that
2053eda14cbcSMatt Macy  * don't inadvertently clean out in-memory log records that would be required
2054eda14cbcSMatt Macy  * by zil_commit().
2055eda14cbcSMatt Macy  */
2056eda14cbcSMatt Macy void
2057eda14cbcSMatt Macy zil_clean(zilog_t *zilog, uint64_t synced_txg)
2058eda14cbcSMatt Macy {
2059eda14cbcSMatt Macy 	itxg_t *itxg = &zilog->zl_itxg[synced_txg & TXG_MASK];
2060eda14cbcSMatt Macy 	itxs_t *clean_me;
2061eda14cbcSMatt Macy 
2062eda14cbcSMatt Macy 	ASSERT3U(synced_txg, <, ZILTEST_TXG);
2063eda14cbcSMatt Macy 
2064eda14cbcSMatt Macy 	mutex_enter(&itxg->itxg_lock);
2065eda14cbcSMatt Macy 	if (itxg->itxg_itxs == NULL || itxg->itxg_txg == ZILTEST_TXG) {
2066eda14cbcSMatt Macy 		mutex_exit(&itxg->itxg_lock);
2067eda14cbcSMatt Macy 		return;
2068eda14cbcSMatt Macy 	}
2069eda14cbcSMatt Macy 	ASSERT3U(itxg->itxg_txg, <=, synced_txg);
2070eda14cbcSMatt Macy 	ASSERT3U(itxg->itxg_txg, !=, 0);
2071eda14cbcSMatt Macy 	clean_me = itxg->itxg_itxs;
2072eda14cbcSMatt Macy 	itxg->itxg_itxs = NULL;
2073eda14cbcSMatt Macy 	itxg->itxg_txg = 0;
2074eda14cbcSMatt Macy 	mutex_exit(&itxg->itxg_lock);
2075eda14cbcSMatt Macy 	/*
2076eda14cbcSMatt Macy 	 * Preferably start a task queue to free up the old itxs but
2077eda14cbcSMatt Macy 	 * if taskq_dispatch can't allocate resources to do that then
2078eda14cbcSMatt Macy 	 * free it in-line. This should be rare. Note, using TQ_SLEEP
2079eda14cbcSMatt Macy 	 * created a bad performance problem.
2080eda14cbcSMatt Macy 	 */
2081eda14cbcSMatt Macy 	ASSERT3P(zilog->zl_dmu_pool, !=, NULL);
2082eda14cbcSMatt Macy 	ASSERT3P(zilog->zl_dmu_pool->dp_zil_clean_taskq, !=, NULL);
2083eda14cbcSMatt Macy 	taskqid_t id = taskq_dispatch(zilog->zl_dmu_pool->dp_zil_clean_taskq,
20843f9d360cSMartin Matuska 	    zil_itxg_clean, clean_me, TQ_NOSLEEP);
2085eda14cbcSMatt Macy 	if (id == TASKQID_INVALID)
2086eda14cbcSMatt Macy 		zil_itxg_clean(clean_me);
2087eda14cbcSMatt Macy }
2088eda14cbcSMatt Macy 
2089eda14cbcSMatt Macy /*
2090eda14cbcSMatt Macy  * This function will traverse the queue of itxs that need to be
2091eda14cbcSMatt Macy  * committed, and move them onto the ZIL's zl_itx_commit_list.
2092eda14cbcSMatt Macy  */
2093eda14cbcSMatt Macy static void
2094eda14cbcSMatt Macy zil_get_commit_list(zilog_t *zilog)
2095eda14cbcSMatt Macy {
2096eda14cbcSMatt Macy 	uint64_t otxg, txg;
2097eda14cbcSMatt Macy 	list_t *commit_list = &zilog->zl_itx_commit_list;
2098eda14cbcSMatt Macy 
2099eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock));
2100eda14cbcSMatt Macy 
2101eda14cbcSMatt Macy 	if (spa_freeze_txg(zilog->zl_spa) != UINT64_MAX) /* ziltest support */
2102eda14cbcSMatt Macy 		otxg = ZILTEST_TXG;
2103eda14cbcSMatt Macy 	else
2104eda14cbcSMatt Macy 		otxg = spa_last_synced_txg(zilog->zl_spa) + 1;
2105eda14cbcSMatt Macy 
2106eda14cbcSMatt Macy 	/*
2107eda14cbcSMatt Macy 	 * This is inherently racy, since there is nothing to prevent
2108eda14cbcSMatt Macy 	 * the last synced txg from changing. That's okay since we'll
2109eda14cbcSMatt Macy 	 * only commit things in the future.
2110eda14cbcSMatt Macy 	 */
2111eda14cbcSMatt Macy 	for (txg = otxg; txg < (otxg + TXG_CONCURRENT_STATES); txg++) {
2112eda14cbcSMatt Macy 		itxg_t *itxg = &zilog->zl_itxg[txg & TXG_MASK];
2113eda14cbcSMatt Macy 
2114eda14cbcSMatt Macy 		mutex_enter(&itxg->itxg_lock);
2115eda14cbcSMatt Macy 		if (itxg->itxg_txg != txg) {
2116eda14cbcSMatt Macy 			mutex_exit(&itxg->itxg_lock);
2117eda14cbcSMatt Macy 			continue;
2118eda14cbcSMatt Macy 		}
2119eda14cbcSMatt Macy 
2120eda14cbcSMatt Macy 		/*
2121eda14cbcSMatt Macy 		 * If we're adding itx records to the zl_itx_commit_list,
2122eda14cbcSMatt Macy 		 * then the zil better be dirty in this "txg". We can assert
2123eda14cbcSMatt Macy 		 * that here since we're holding the itxg_lock which will
2124eda14cbcSMatt Macy 		 * prevent spa_sync from cleaning it. Once we add the itxs
2125eda14cbcSMatt Macy 		 * to the zl_itx_commit_list we must commit it to disk even
2126eda14cbcSMatt Macy 		 * if it's unnecessary (i.e. the txg was synced).
2127eda14cbcSMatt Macy 		 */
2128eda14cbcSMatt Macy 		ASSERT(zilog_is_dirty_in_txg(zilog, txg) ||
2129eda14cbcSMatt Macy 		    spa_freeze_txg(zilog->zl_spa) != UINT64_MAX);
2130eda14cbcSMatt Macy 		list_move_tail(commit_list, &itxg->itxg_itxs->i_sync_list);
2131eda14cbcSMatt Macy 
2132eda14cbcSMatt Macy 		mutex_exit(&itxg->itxg_lock);
2133eda14cbcSMatt Macy 	}
2134eda14cbcSMatt Macy }
2135eda14cbcSMatt Macy 
2136eda14cbcSMatt Macy /*
2137eda14cbcSMatt Macy  * Move the async itxs for a specified object to commit into sync lists.
2138eda14cbcSMatt Macy  */
2139eda14cbcSMatt Macy void
2140eda14cbcSMatt Macy zil_async_to_sync(zilog_t *zilog, uint64_t foid)
2141eda14cbcSMatt Macy {
2142eda14cbcSMatt Macy 	uint64_t otxg, txg;
2143eda14cbcSMatt Macy 	itx_async_node_t *ian;
2144eda14cbcSMatt Macy 	avl_tree_t *t;
2145eda14cbcSMatt Macy 	avl_index_t where;
2146eda14cbcSMatt Macy 
2147eda14cbcSMatt Macy 	if (spa_freeze_txg(zilog->zl_spa) != UINT64_MAX) /* ziltest support */
2148eda14cbcSMatt Macy 		otxg = ZILTEST_TXG;
2149eda14cbcSMatt Macy 	else
2150eda14cbcSMatt Macy 		otxg = spa_last_synced_txg(zilog->zl_spa) + 1;
2151eda14cbcSMatt Macy 
2152eda14cbcSMatt Macy 	/*
2153eda14cbcSMatt Macy 	 * This is inherently racy, since there is nothing to prevent
2154eda14cbcSMatt Macy 	 * the last synced txg from changing.
2155eda14cbcSMatt Macy 	 */
2156eda14cbcSMatt Macy 	for (txg = otxg; txg < (otxg + TXG_CONCURRENT_STATES); txg++) {
2157eda14cbcSMatt Macy 		itxg_t *itxg = &zilog->zl_itxg[txg & TXG_MASK];
2158eda14cbcSMatt Macy 
2159eda14cbcSMatt Macy 		mutex_enter(&itxg->itxg_lock);
2160eda14cbcSMatt Macy 		if (itxg->itxg_txg != txg) {
2161eda14cbcSMatt Macy 			mutex_exit(&itxg->itxg_lock);
2162eda14cbcSMatt Macy 			continue;
2163eda14cbcSMatt Macy 		}
2164eda14cbcSMatt Macy 
2165eda14cbcSMatt Macy 		/*
2166eda14cbcSMatt Macy 		 * If a foid is specified then find that node and append its
2167eda14cbcSMatt Macy 		 * list. Otherwise walk the tree appending all the lists
2168eda14cbcSMatt Macy 		 * to the sync list. We add to the end rather than the
2169eda14cbcSMatt Macy 		 * beginning to ensure the create has happened.
2170eda14cbcSMatt Macy 		 */
2171eda14cbcSMatt Macy 		t = &itxg->itxg_itxs->i_async_tree;
2172eda14cbcSMatt Macy 		if (foid != 0) {
2173eda14cbcSMatt Macy 			ian = avl_find(t, &foid, &where);
2174eda14cbcSMatt Macy 			if (ian != NULL) {
2175eda14cbcSMatt Macy 				list_move_tail(&itxg->itxg_itxs->i_sync_list,
2176eda14cbcSMatt Macy 				    &ian->ia_list);
2177eda14cbcSMatt Macy 			}
2178eda14cbcSMatt Macy 		} else {
2179eda14cbcSMatt Macy 			void *cookie = NULL;
2180eda14cbcSMatt Macy 
2181eda14cbcSMatt Macy 			while ((ian = avl_destroy_nodes(t, &cookie)) != NULL) {
2182eda14cbcSMatt Macy 				list_move_tail(&itxg->itxg_itxs->i_sync_list,
2183eda14cbcSMatt Macy 				    &ian->ia_list);
2184eda14cbcSMatt Macy 				list_destroy(&ian->ia_list);
2185eda14cbcSMatt Macy 				kmem_free(ian, sizeof (itx_async_node_t));
2186eda14cbcSMatt Macy 			}
2187eda14cbcSMatt Macy 		}
2188eda14cbcSMatt Macy 		mutex_exit(&itxg->itxg_lock);
2189eda14cbcSMatt Macy 	}
2190eda14cbcSMatt Macy }
2191eda14cbcSMatt Macy 
2192eda14cbcSMatt Macy /*
2193eda14cbcSMatt Macy  * This function will prune commit itxs that are at the head of the
2194eda14cbcSMatt Macy  * commit list (it won't prune past the first non-commit itx), and
2195eda14cbcSMatt Macy  * either: a) attach them to the last lwb that's still pending
2196eda14cbcSMatt Macy  * completion, or b) skip them altogether.
2197eda14cbcSMatt Macy  *
2198eda14cbcSMatt Macy  * This is used as a performance optimization to prevent commit itxs
2199eda14cbcSMatt Macy  * from generating new lwbs when it's unnecessary to do so.
2200eda14cbcSMatt Macy  */
2201eda14cbcSMatt Macy static void
2202eda14cbcSMatt Macy zil_prune_commit_list(zilog_t *zilog)
2203eda14cbcSMatt Macy {
2204eda14cbcSMatt Macy 	itx_t *itx;
2205eda14cbcSMatt Macy 
2206eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock));
2207eda14cbcSMatt Macy 
2208eda14cbcSMatt Macy 	while ((itx = list_head(&zilog->zl_itx_commit_list)) != NULL) {
2209eda14cbcSMatt Macy 		lr_t *lrc = &itx->itx_lr;
2210eda14cbcSMatt Macy 		if (lrc->lrc_txtype != TX_COMMIT)
2211eda14cbcSMatt Macy 			break;
2212eda14cbcSMatt Macy 
2213eda14cbcSMatt Macy 		mutex_enter(&zilog->zl_lock);
2214eda14cbcSMatt Macy 
2215eda14cbcSMatt Macy 		lwb_t *last_lwb = zilog->zl_last_lwb_opened;
2216eda14cbcSMatt Macy 		if (last_lwb == NULL ||
2217eda14cbcSMatt Macy 		    last_lwb->lwb_state == LWB_STATE_FLUSH_DONE) {
2218eda14cbcSMatt Macy 			/*
2219eda14cbcSMatt Macy 			 * All of the itxs this waiter was waiting on
2220eda14cbcSMatt Macy 			 * must have already completed (or there were
2221eda14cbcSMatt Macy 			 * never any itx's for it to wait on), so it's
2222eda14cbcSMatt Macy 			 * safe to skip this waiter and mark it done.
2223eda14cbcSMatt Macy 			 */
2224eda14cbcSMatt Macy 			zil_commit_waiter_skip(itx->itx_private);
2225eda14cbcSMatt Macy 		} else {
2226eda14cbcSMatt Macy 			zil_commit_waiter_link_lwb(itx->itx_private, last_lwb);
2227eda14cbcSMatt Macy 			itx->itx_private = NULL;
2228eda14cbcSMatt Macy 		}
2229eda14cbcSMatt Macy 
2230eda14cbcSMatt Macy 		mutex_exit(&zilog->zl_lock);
2231eda14cbcSMatt Macy 
2232eda14cbcSMatt Macy 		list_remove(&zilog->zl_itx_commit_list, itx);
2233eda14cbcSMatt Macy 		zil_itx_destroy(itx);
2234eda14cbcSMatt Macy 	}
2235eda14cbcSMatt Macy 
2236eda14cbcSMatt Macy 	IMPLY(itx != NULL, itx->itx_lr.lrc_txtype != TX_COMMIT);
2237eda14cbcSMatt Macy }
2238eda14cbcSMatt Macy 
2239eda14cbcSMatt Macy static void
2240eda14cbcSMatt Macy zil_commit_writer_stall(zilog_t *zilog)
2241eda14cbcSMatt Macy {
2242eda14cbcSMatt Macy 	/*
2243eda14cbcSMatt Macy 	 * When zio_alloc_zil() fails to allocate the next lwb block on
2244eda14cbcSMatt Macy 	 * disk, we must call txg_wait_synced() to ensure all of the
2245eda14cbcSMatt Macy 	 * lwbs in the zilog's zl_lwb_list are synced and then freed (in
2246eda14cbcSMatt Macy 	 * zil_sync()), such that any subsequent ZIL writer (i.e. a call
2247eda14cbcSMatt Macy 	 * to zil_process_commit_list()) will have to call zil_create(),
2248eda14cbcSMatt Macy 	 * and start a new ZIL chain.
2249eda14cbcSMatt Macy 	 *
2250eda14cbcSMatt Macy 	 * Since zil_alloc_zil() failed, the lwb that was previously
2251eda14cbcSMatt Macy 	 * issued does not have a pointer to the "next" lwb on disk.
2252eda14cbcSMatt Macy 	 * Thus, if another ZIL writer thread was to allocate the "next"
2253eda14cbcSMatt Macy 	 * on-disk lwb, that block could be leaked in the event of a
2254eda14cbcSMatt Macy 	 * crash (because the previous lwb on-disk would not point to
2255eda14cbcSMatt Macy 	 * it).
2256eda14cbcSMatt Macy 	 *
2257eda14cbcSMatt Macy 	 * We must hold the zilog's zl_issuer_lock while we do this, to
2258eda14cbcSMatt Macy 	 * ensure no new threads enter zil_process_commit_list() until
2259eda14cbcSMatt Macy 	 * all lwb's in the zl_lwb_list have been synced and freed
2260eda14cbcSMatt Macy 	 * (which is achieved via the txg_wait_synced() call).
2261eda14cbcSMatt Macy 	 */
2262eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock));
2263eda14cbcSMatt Macy 	txg_wait_synced(zilog->zl_dmu_pool, 0);
2264eda14cbcSMatt Macy 	ASSERT3P(list_tail(&zilog->zl_lwb_list), ==, NULL);
2265eda14cbcSMatt Macy }
2266eda14cbcSMatt Macy 
2267eda14cbcSMatt Macy /*
2268eda14cbcSMatt Macy  * This function will traverse the commit list, creating new lwbs as
2269eda14cbcSMatt Macy  * needed, and committing the itxs from the commit list to these newly
2270eda14cbcSMatt Macy  * created lwbs. Additionally, as a new lwb is created, the previous
2271eda14cbcSMatt Macy  * lwb will be issued to the zio layer to be written to disk.
2272eda14cbcSMatt Macy  */
2273eda14cbcSMatt Macy static void
2274eda14cbcSMatt Macy zil_process_commit_list(zilog_t *zilog)
2275eda14cbcSMatt Macy {
2276eda14cbcSMatt Macy 	spa_t *spa = zilog->zl_spa;
2277eda14cbcSMatt Macy 	list_t nolwb_itxs;
2278eda14cbcSMatt Macy 	list_t nolwb_waiters;
2279eda14cbcSMatt Macy 	lwb_t *lwb;
2280eda14cbcSMatt Macy 	itx_t *itx;
2281eda14cbcSMatt Macy 
2282eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock));
2283eda14cbcSMatt Macy 
2284eda14cbcSMatt Macy 	/*
2285eda14cbcSMatt Macy 	 * Return if there's nothing to commit before we dirty the fs by
2286eda14cbcSMatt Macy 	 * calling zil_create().
2287eda14cbcSMatt Macy 	 */
2288eda14cbcSMatt Macy 	if (list_head(&zilog->zl_itx_commit_list) == NULL)
2289eda14cbcSMatt Macy 		return;
2290eda14cbcSMatt Macy 
2291eda14cbcSMatt Macy 	list_create(&nolwb_itxs, sizeof (itx_t), offsetof(itx_t, itx_node));
2292eda14cbcSMatt Macy 	list_create(&nolwb_waiters, sizeof (zil_commit_waiter_t),
2293eda14cbcSMatt Macy 	    offsetof(zil_commit_waiter_t, zcw_node));
2294eda14cbcSMatt Macy 
2295eda14cbcSMatt Macy 	lwb = list_tail(&zilog->zl_lwb_list);
2296eda14cbcSMatt Macy 	if (lwb == NULL) {
2297eda14cbcSMatt Macy 		lwb = zil_create(zilog);
2298eda14cbcSMatt Macy 	} else {
2299eda14cbcSMatt Macy 		ASSERT3S(lwb->lwb_state, !=, LWB_STATE_ISSUED);
2300eda14cbcSMatt Macy 		ASSERT3S(lwb->lwb_state, !=, LWB_STATE_WRITE_DONE);
2301eda14cbcSMatt Macy 		ASSERT3S(lwb->lwb_state, !=, LWB_STATE_FLUSH_DONE);
2302eda14cbcSMatt Macy 	}
2303eda14cbcSMatt Macy 
2304eda14cbcSMatt Macy 	while ((itx = list_head(&zilog->zl_itx_commit_list)) != NULL) {
2305eda14cbcSMatt Macy 		lr_t *lrc = &itx->itx_lr;
2306eda14cbcSMatt Macy 		uint64_t txg = lrc->lrc_txg;
2307eda14cbcSMatt Macy 
2308eda14cbcSMatt Macy 		ASSERT3U(txg, !=, 0);
2309eda14cbcSMatt Macy 
2310eda14cbcSMatt Macy 		if (lrc->lrc_txtype == TX_COMMIT) {
2311eda14cbcSMatt Macy 			DTRACE_PROBE2(zil__process__commit__itx,
2312eda14cbcSMatt Macy 			    zilog_t *, zilog, itx_t *, itx);
2313eda14cbcSMatt Macy 		} else {
2314eda14cbcSMatt Macy 			DTRACE_PROBE2(zil__process__normal__itx,
2315eda14cbcSMatt Macy 			    zilog_t *, zilog, itx_t *, itx);
2316eda14cbcSMatt Macy 		}
2317eda14cbcSMatt Macy 
2318eda14cbcSMatt Macy 		list_remove(&zilog->zl_itx_commit_list, itx);
2319eda14cbcSMatt Macy 
2320eda14cbcSMatt Macy 		boolean_t synced = txg <= spa_last_synced_txg(spa);
2321eda14cbcSMatt Macy 		boolean_t frozen = txg > spa_freeze_txg(spa);
2322eda14cbcSMatt Macy 
2323eda14cbcSMatt Macy 		/*
2324eda14cbcSMatt Macy 		 * If the txg of this itx has already been synced out, then
2325eda14cbcSMatt Macy 		 * we don't need to commit this itx to an lwb. This is
2326eda14cbcSMatt Macy 		 * because the data of this itx will have already been
2327eda14cbcSMatt Macy 		 * written to the main pool. This is inherently racy, and
2328eda14cbcSMatt Macy 		 * it's still ok to commit an itx whose txg has already
2329eda14cbcSMatt Macy 		 * been synced; this will result in a write that's
2330eda14cbcSMatt Macy 		 * unnecessary, but will do no harm.
2331eda14cbcSMatt Macy 		 *
2332eda14cbcSMatt Macy 		 * With that said, we always want to commit TX_COMMIT itxs
2333eda14cbcSMatt Macy 		 * to an lwb, regardless of whether or not that itx's txg
2334eda14cbcSMatt Macy 		 * has been synced out. We do this to ensure any OPENED lwb
2335eda14cbcSMatt Macy 		 * will always have at least one zil_commit_waiter_t linked
2336eda14cbcSMatt Macy 		 * to the lwb.
2337eda14cbcSMatt Macy 		 *
2338eda14cbcSMatt Macy 		 * As a counter-example, if we skipped TX_COMMIT itx's
2339eda14cbcSMatt Macy 		 * whose txg had already been synced, the following
2340eda14cbcSMatt Macy 		 * situation could occur if we happened to be racing with
2341eda14cbcSMatt Macy 		 * spa_sync:
2342eda14cbcSMatt Macy 		 *
2343eda14cbcSMatt Macy 		 * 1. We commit a non-TX_COMMIT itx to an lwb, where the
2344eda14cbcSMatt Macy 		 *    itx's txg is 10 and the last synced txg is 9.
2345eda14cbcSMatt Macy 		 * 2. spa_sync finishes syncing out txg 10.
2346eda14cbcSMatt Macy 		 * 3. We move to the next itx in the list, it's a TX_COMMIT
2347eda14cbcSMatt Macy 		 *    whose txg is 10, so we skip it rather than committing
2348eda14cbcSMatt Macy 		 *    it to the lwb used in (1).
2349eda14cbcSMatt Macy 		 *
2350eda14cbcSMatt Macy 		 * If the itx that is skipped in (3) is the last TX_COMMIT
2351eda14cbcSMatt Macy 		 * itx in the commit list, than it's possible for the lwb
2352eda14cbcSMatt Macy 		 * used in (1) to remain in the OPENED state indefinitely.
2353eda14cbcSMatt Macy 		 *
2354eda14cbcSMatt Macy 		 * To prevent the above scenario from occurring, ensuring
2355eda14cbcSMatt Macy 		 * that once an lwb is OPENED it will transition to ISSUED
2356eda14cbcSMatt Macy 		 * and eventually DONE, we always commit TX_COMMIT itx's to
2357eda14cbcSMatt Macy 		 * an lwb here, even if that itx's txg has already been
2358eda14cbcSMatt Macy 		 * synced.
2359eda14cbcSMatt Macy 		 *
2360eda14cbcSMatt Macy 		 * Finally, if the pool is frozen, we _always_ commit the
2361eda14cbcSMatt Macy 		 * itx.  The point of freezing the pool is to prevent data
2362eda14cbcSMatt Macy 		 * from being written to the main pool via spa_sync, and
2363eda14cbcSMatt Macy 		 * instead rely solely on the ZIL to persistently store the
2364eda14cbcSMatt Macy 		 * data; i.e.  when the pool is frozen, the last synced txg
2365eda14cbcSMatt Macy 		 * value can't be trusted.
2366eda14cbcSMatt Macy 		 */
2367eda14cbcSMatt Macy 		if (frozen || !synced || lrc->lrc_txtype == TX_COMMIT) {
2368eda14cbcSMatt Macy 			if (lwb != NULL) {
2369eda14cbcSMatt Macy 				lwb = zil_lwb_commit(zilog, itx, lwb);
2370eda14cbcSMatt Macy 
2371eda14cbcSMatt Macy 				if (lwb == NULL)
2372eda14cbcSMatt Macy 					list_insert_tail(&nolwb_itxs, itx);
2373eda14cbcSMatt Macy 				else
2374eda14cbcSMatt Macy 					list_insert_tail(&lwb->lwb_itxs, itx);
2375eda14cbcSMatt Macy 			} else {
2376eda14cbcSMatt Macy 				if (lrc->lrc_txtype == TX_COMMIT) {
2377eda14cbcSMatt Macy 					zil_commit_waiter_link_nolwb(
2378eda14cbcSMatt Macy 					    itx->itx_private, &nolwb_waiters);
2379eda14cbcSMatt Macy 				}
2380eda14cbcSMatt Macy 
2381eda14cbcSMatt Macy 				list_insert_tail(&nolwb_itxs, itx);
2382eda14cbcSMatt Macy 			}
2383eda14cbcSMatt Macy 		} else {
2384eda14cbcSMatt Macy 			ASSERT3S(lrc->lrc_txtype, !=, TX_COMMIT);
2385eda14cbcSMatt Macy 			zil_itx_destroy(itx);
2386eda14cbcSMatt Macy 		}
2387eda14cbcSMatt Macy 	}
2388eda14cbcSMatt Macy 
2389eda14cbcSMatt Macy 	if (lwb == NULL) {
2390eda14cbcSMatt Macy 		/*
2391eda14cbcSMatt Macy 		 * This indicates zio_alloc_zil() failed to allocate the
2392eda14cbcSMatt Macy 		 * "next" lwb on-disk. When this happens, we must stall
2393eda14cbcSMatt Macy 		 * the ZIL write pipeline; see the comment within
2394eda14cbcSMatt Macy 		 * zil_commit_writer_stall() for more details.
2395eda14cbcSMatt Macy 		 */
2396eda14cbcSMatt Macy 		zil_commit_writer_stall(zilog);
2397eda14cbcSMatt Macy 
2398eda14cbcSMatt Macy 		/*
2399eda14cbcSMatt Macy 		 * Additionally, we have to signal and mark the "nolwb"
2400eda14cbcSMatt Macy 		 * waiters as "done" here, since without an lwb, we
2401eda14cbcSMatt Macy 		 * can't do this via zil_lwb_flush_vdevs_done() like
2402eda14cbcSMatt Macy 		 * normal.
2403eda14cbcSMatt Macy 		 */
2404eda14cbcSMatt Macy 		zil_commit_waiter_t *zcw;
2405eda14cbcSMatt Macy 		while ((zcw = list_head(&nolwb_waiters)) != NULL) {
2406eda14cbcSMatt Macy 			zil_commit_waiter_skip(zcw);
2407eda14cbcSMatt Macy 			list_remove(&nolwb_waiters, zcw);
2408eda14cbcSMatt Macy 		}
2409eda14cbcSMatt Macy 
2410eda14cbcSMatt Macy 		/*
2411eda14cbcSMatt Macy 		 * And finally, we have to destroy the itx's that
2412eda14cbcSMatt Macy 		 * couldn't be committed to an lwb; this will also call
2413eda14cbcSMatt Macy 		 * the itx's callback if one exists for the itx.
2414eda14cbcSMatt Macy 		 */
2415eda14cbcSMatt Macy 		while ((itx = list_head(&nolwb_itxs)) != NULL) {
2416eda14cbcSMatt Macy 			list_remove(&nolwb_itxs, itx);
2417eda14cbcSMatt Macy 			zil_itx_destroy(itx);
2418eda14cbcSMatt Macy 		}
2419eda14cbcSMatt Macy 	} else {
2420eda14cbcSMatt Macy 		ASSERT(list_is_empty(&nolwb_waiters));
2421eda14cbcSMatt Macy 		ASSERT3P(lwb, !=, NULL);
2422eda14cbcSMatt Macy 		ASSERT3S(lwb->lwb_state, !=, LWB_STATE_ISSUED);
2423eda14cbcSMatt Macy 		ASSERT3S(lwb->lwb_state, !=, LWB_STATE_WRITE_DONE);
2424eda14cbcSMatt Macy 		ASSERT3S(lwb->lwb_state, !=, LWB_STATE_FLUSH_DONE);
2425eda14cbcSMatt Macy 
2426eda14cbcSMatt Macy 		/*
2427eda14cbcSMatt Macy 		 * At this point, the ZIL block pointed at by the "lwb"
2428eda14cbcSMatt Macy 		 * variable is in one of the following states: "closed"
2429eda14cbcSMatt Macy 		 * or "open".
2430eda14cbcSMatt Macy 		 *
2431eda14cbcSMatt Macy 		 * If it's "closed", then no itxs have been committed to
2432eda14cbcSMatt Macy 		 * it, so there's no point in issuing its zio (i.e. it's
2433eda14cbcSMatt Macy 		 * "empty").
2434eda14cbcSMatt Macy 		 *
2435eda14cbcSMatt Macy 		 * If it's "open", then it contains one or more itxs that
2436eda14cbcSMatt Macy 		 * eventually need to be committed to stable storage. In
2437eda14cbcSMatt Macy 		 * this case we intentionally do not issue the lwb's zio
2438eda14cbcSMatt Macy 		 * to disk yet, and instead rely on one of the following
2439eda14cbcSMatt Macy 		 * two mechanisms for issuing the zio:
2440eda14cbcSMatt Macy 		 *
2441eda14cbcSMatt Macy 		 * 1. Ideally, there will be more ZIL activity occurring
2442eda14cbcSMatt Macy 		 * on the system, such that this function will be
2443eda14cbcSMatt Macy 		 * immediately called again (not necessarily by the same
2444eda14cbcSMatt Macy 		 * thread) and this lwb's zio will be issued via
2445eda14cbcSMatt Macy 		 * zil_lwb_commit(). This way, the lwb is guaranteed to
2446eda14cbcSMatt Macy 		 * be "full" when it is issued to disk, and we'll make
2447eda14cbcSMatt Macy 		 * use of the lwb's size the best we can.
2448eda14cbcSMatt Macy 		 *
2449eda14cbcSMatt Macy 		 * 2. If there isn't sufficient ZIL activity occurring on
2450eda14cbcSMatt Macy 		 * the system, such that this lwb's zio isn't issued via
2451eda14cbcSMatt Macy 		 * zil_lwb_commit(), zil_commit_waiter() will issue the
2452eda14cbcSMatt Macy 		 * lwb's zio. If this occurs, the lwb is not guaranteed
2453eda14cbcSMatt Macy 		 * to be "full" by the time its zio is issued, and means
2454eda14cbcSMatt Macy 		 * the size of the lwb was "too large" given the amount
2455eda14cbcSMatt Macy 		 * of ZIL activity occurring on the system at that time.
2456eda14cbcSMatt Macy 		 *
2457eda14cbcSMatt Macy 		 * We do this for a couple of reasons:
2458eda14cbcSMatt Macy 		 *
2459eda14cbcSMatt Macy 		 * 1. To try and reduce the number of IOPs needed to
2460eda14cbcSMatt Macy 		 * write the same number of itxs. If an lwb has space
2461eda14cbcSMatt Macy 		 * available in its buffer for more itxs, and more itxs
2462eda14cbcSMatt Macy 		 * will be committed relatively soon (relative to the
2463eda14cbcSMatt Macy 		 * latency of performing a write), then it's beneficial
2464eda14cbcSMatt Macy 		 * to wait for these "next" itxs. This way, more itxs
2465eda14cbcSMatt Macy 		 * can be committed to stable storage with fewer writes.
2466eda14cbcSMatt Macy 		 *
2467eda14cbcSMatt Macy 		 * 2. To try and use the largest lwb block size that the
2468eda14cbcSMatt Macy 		 * incoming rate of itxs can support. Again, this is to
2469eda14cbcSMatt Macy 		 * try and pack as many itxs into as few lwbs as
2470eda14cbcSMatt Macy 		 * possible, without significantly impacting the latency
2471eda14cbcSMatt Macy 		 * of each individual itx.
2472eda14cbcSMatt Macy 		 */
2473eda14cbcSMatt Macy 	}
2474eda14cbcSMatt Macy }
2475eda14cbcSMatt Macy 
2476eda14cbcSMatt Macy /*
2477eda14cbcSMatt Macy  * This function is responsible for ensuring the passed in commit waiter
2478eda14cbcSMatt Macy  * (and associated commit itx) is committed to an lwb. If the waiter is
2479eda14cbcSMatt Macy  * not already committed to an lwb, all itxs in the zilog's queue of
2480eda14cbcSMatt Macy  * itxs will be processed. The assumption is the passed in waiter's
2481eda14cbcSMatt Macy  * commit itx will found in the queue just like the other non-commit
2482eda14cbcSMatt Macy  * itxs, such that when the entire queue is processed, the waiter will
2483eda14cbcSMatt Macy  * have been committed to an lwb.
2484eda14cbcSMatt Macy  *
2485eda14cbcSMatt Macy  * The lwb associated with the passed in waiter is not guaranteed to
2486eda14cbcSMatt Macy  * have been issued by the time this function completes. If the lwb is
2487eda14cbcSMatt Macy  * not issued, we rely on future calls to zil_commit_writer() to issue
2488eda14cbcSMatt Macy  * the lwb, or the timeout mechanism found in zil_commit_waiter().
2489eda14cbcSMatt Macy  */
2490eda14cbcSMatt Macy static void
2491eda14cbcSMatt Macy zil_commit_writer(zilog_t *zilog, zil_commit_waiter_t *zcw)
2492eda14cbcSMatt Macy {
2493eda14cbcSMatt Macy 	ASSERT(!MUTEX_HELD(&zilog->zl_lock));
2494eda14cbcSMatt Macy 	ASSERT(spa_writeable(zilog->zl_spa));
2495eda14cbcSMatt Macy 
2496eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_issuer_lock);
2497eda14cbcSMatt Macy 
2498eda14cbcSMatt Macy 	if (zcw->zcw_lwb != NULL || zcw->zcw_done) {
2499eda14cbcSMatt Macy 		/*
2500eda14cbcSMatt Macy 		 * It's possible that, while we were waiting to acquire
2501eda14cbcSMatt Macy 		 * the "zl_issuer_lock", another thread committed this
2502eda14cbcSMatt Macy 		 * waiter to an lwb. If that occurs, we bail out early,
2503eda14cbcSMatt Macy 		 * without processing any of the zilog's queue of itxs.
2504eda14cbcSMatt Macy 		 *
2505eda14cbcSMatt Macy 		 * On certain workloads and system configurations, the
2506eda14cbcSMatt Macy 		 * "zl_issuer_lock" can become highly contended. In an
2507eda14cbcSMatt Macy 		 * attempt to reduce this contention, we immediately drop
2508eda14cbcSMatt Macy 		 * the lock if the waiter has already been processed.
2509eda14cbcSMatt Macy 		 *
2510eda14cbcSMatt Macy 		 * We've measured this optimization to reduce CPU spent
2511eda14cbcSMatt Macy 		 * contending on this lock by up to 5%, using a system
2512eda14cbcSMatt Macy 		 * with 32 CPUs, low latency storage (~50 usec writes),
2513eda14cbcSMatt Macy 		 * and 1024 threads performing sync writes.
2514eda14cbcSMatt Macy 		 */
2515eda14cbcSMatt Macy 		goto out;
2516eda14cbcSMatt Macy 	}
2517eda14cbcSMatt Macy 
2518eda14cbcSMatt Macy 	ZIL_STAT_BUMP(zil_commit_writer_count);
2519eda14cbcSMatt Macy 
2520eda14cbcSMatt Macy 	zil_get_commit_list(zilog);
2521eda14cbcSMatt Macy 	zil_prune_commit_list(zilog);
2522eda14cbcSMatt Macy 	zil_process_commit_list(zilog);
2523eda14cbcSMatt Macy 
2524eda14cbcSMatt Macy out:
2525eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_issuer_lock);
2526eda14cbcSMatt Macy }
2527eda14cbcSMatt Macy 
2528eda14cbcSMatt Macy static void
2529eda14cbcSMatt Macy zil_commit_waiter_timeout(zilog_t *zilog, zil_commit_waiter_t *zcw)
2530eda14cbcSMatt Macy {
2531eda14cbcSMatt Macy 	ASSERT(!MUTEX_HELD(&zilog->zl_issuer_lock));
2532eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zcw->zcw_lock));
2533eda14cbcSMatt Macy 	ASSERT3B(zcw->zcw_done, ==, B_FALSE);
2534eda14cbcSMatt Macy 
2535eda14cbcSMatt Macy 	lwb_t *lwb = zcw->zcw_lwb;
2536eda14cbcSMatt Macy 	ASSERT3P(lwb, !=, NULL);
2537eda14cbcSMatt Macy 	ASSERT3S(lwb->lwb_state, !=, LWB_STATE_CLOSED);
2538eda14cbcSMatt Macy 
2539eda14cbcSMatt Macy 	/*
2540eda14cbcSMatt Macy 	 * If the lwb has already been issued by another thread, we can
2541eda14cbcSMatt Macy 	 * immediately return since there's no work to be done (the
2542eda14cbcSMatt Macy 	 * point of this function is to issue the lwb). Additionally, we
2543eda14cbcSMatt Macy 	 * do this prior to acquiring the zl_issuer_lock, to avoid
2544eda14cbcSMatt Macy 	 * acquiring it when it's not necessary to do so.
2545eda14cbcSMatt Macy 	 */
2546eda14cbcSMatt Macy 	if (lwb->lwb_state == LWB_STATE_ISSUED ||
2547eda14cbcSMatt Macy 	    lwb->lwb_state == LWB_STATE_WRITE_DONE ||
2548eda14cbcSMatt Macy 	    lwb->lwb_state == LWB_STATE_FLUSH_DONE)
2549eda14cbcSMatt Macy 		return;
2550eda14cbcSMatt Macy 
2551eda14cbcSMatt Macy 	/*
2552eda14cbcSMatt Macy 	 * In order to call zil_lwb_write_issue() we must hold the
2553eda14cbcSMatt Macy 	 * zilog's "zl_issuer_lock". We can't simply acquire that lock,
2554eda14cbcSMatt Macy 	 * since we're already holding the commit waiter's "zcw_lock",
2555eda14cbcSMatt Macy 	 * and those two locks are acquired in the opposite order
2556eda14cbcSMatt Macy 	 * elsewhere.
2557eda14cbcSMatt Macy 	 */
2558eda14cbcSMatt Macy 	mutex_exit(&zcw->zcw_lock);
2559eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_issuer_lock);
2560eda14cbcSMatt Macy 	mutex_enter(&zcw->zcw_lock);
2561eda14cbcSMatt Macy 
2562eda14cbcSMatt Macy 	/*
2563eda14cbcSMatt Macy 	 * Since we just dropped and re-acquired the commit waiter's
2564eda14cbcSMatt Macy 	 * lock, we have to re-check to see if the waiter was marked
2565eda14cbcSMatt Macy 	 * "done" during that process. If the waiter was marked "done",
2566eda14cbcSMatt Macy 	 * the "lwb" pointer is no longer valid (it can be free'd after
2567eda14cbcSMatt Macy 	 * the waiter is marked "done"), so without this check we could
2568eda14cbcSMatt Macy 	 * wind up with a use-after-free error below.
2569eda14cbcSMatt Macy 	 */
2570eda14cbcSMatt Macy 	if (zcw->zcw_done)
2571eda14cbcSMatt Macy 		goto out;
2572eda14cbcSMatt Macy 
2573eda14cbcSMatt Macy 	ASSERT3P(lwb, ==, zcw->zcw_lwb);
2574eda14cbcSMatt Macy 
2575eda14cbcSMatt Macy 	/*
2576eda14cbcSMatt Macy 	 * We've already checked this above, but since we hadn't acquired
2577eda14cbcSMatt Macy 	 * the zilog's zl_issuer_lock, we have to perform this check a
2578eda14cbcSMatt Macy 	 * second time while holding the lock.
2579eda14cbcSMatt Macy 	 *
2580eda14cbcSMatt Macy 	 * We don't need to hold the zl_lock since the lwb cannot transition
2581eda14cbcSMatt Macy 	 * from OPENED to ISSUED while we hold the zl_issuer_lock. The lwb
2582eda14cbcSMatt Macy 	 * _can_ transition from ISSUED to DONE, but it's OK to race with
2583eda14cbcSMatt Macy 	 * that transition since we treat the lwb the same, whether it's in
2584eda14cbcSMatt Macy 	 * the ISSUED or DONE states.
2585eda14cbcSMatt Macy 	 *
2586eda14cbcSMatt Macy 	 * The important thing, is we treat the lwb differently depending on
2587eda14cbcSMatt Macy 	 * if it's ISSUED or OPENED, and block any other threads that might
2588eda14cbcSMatt Macy 	 * attempt to issue this lwb. For that reason we hold the
2589eda14cbcSMatt Macy 	 * zl_issuer_lock when checking the lwb_state; we must not call
2590eda14cbcSMatt Macy 	 * zil_lwb_write_issue() if the lwb had already been issued.
2591eda14cbcSMatt Macy 	 *
2592eda14cbcSMatt Macy 	 * See the comment above the lwb_state_t structure definition for
2593eda14cbcSMatt Macy 	 * more details on the lwb states, and locking requirements.
2594eda14cbcSMatt Macy 	 */
2595eda14cbcSMatt Macy 	if (lwb->lwb_state == LWB_STATE_ISSUED ||
2596eda14cbcSMatt Macy 	    lwb->lwb_state == LWB_STATE_WRITE_DONE ||
2597eda14cbcSMatt Macy 	    lwb->lwb_state == LWB_STATE_FLUSH_DONE)
2598eda14cbcSMatt Macy 		goto out;
2599eda14cbcSMatt Macy 
2600eda14cbcSMatt Macy 	ASSERT3S(lwb->lwb_state, ==, LWB_STATE_OPENED);
2601eda14cbcSMatt Macy 
2602eda14cbcSMatt Macy 	/*
2603eda14cbcSMatt Macy 	 * As described in the comments above zil_commit_waiter() and
2604eda14cbcSMatt Macy 	 * zil_process_commit_list(), we need to issue this lwb's zio
2605eda14cbcSMatt Macy 	 * since we've reached the commit waiter's timeout and it still
2606eda14cbcSMatt Macy 	 * hasn't been issued.
2607eda14cbcSMatt Macy 	 */
2608eda14cbcSMatt Macy 	lwb_t *nlwb = zil_lwb_write_issue(zilog, lwb);
2609eda14cbcSMatt Macy 
2610eda14cbcSMatt Macy 	IMPLY(nlwb != NULL, lwb->lwb_state != LWB_STATE_OPENED);
2611eda14cbcSMatt Macy 
2612eda14cbcSMatt Macy 	/*
2613eda14cbcSMatt Macy 	 * Since the lwb's zio hadn't been issued by the time this thread
2614eda14cbcSMatt Macy 	 * reached its timeout, we reset the zilog's "zl_cur_used" field
2615eda14cbcSMatt Macy 	 * to influence the zil block size selection algorithm.
2616eda14cbcSMatt Macy 	 *
2617eda14cbcSMatt Macy 	 * By having to issue the lwb's zio here, it means the size of the
2618eda14cbcSMatt Macy 	 * lwb was too large, given the incoming throughput of itxs.  By
2619eda14cbcSMatt Macy 	 * setting "zl_cur_used" to zero, we communicate this fact to the
2620eda14cbcSMatt Macy 	 * block size selection algorithm, so it can take this information
2621eda14cbcSMatt Macy 	 * into account, and potentially select a smaller size for the
2622eda14cbcSMatt Macy 	 * next lwb block that is allocated.
2623eda14cbcSMatt Macy 	 */
2624eda14cbcSMatt Macy 	zilog->zl_cur_used = 0;
2625eda14cbcSMatt Macy 
2626eda14cbcSMatt Macy 	if (nlwb == NULL) {
2627eda14cbcSMatt Macy 		/*
2628eda14cbcSMatt Macy 		 * When zil_lwb_write_issue() returns NULL, this
2629eda14cbcSMatt Macy 		 * indicates zio_alloc_zil() failed to allocate the
2630eda14cbcSMatt Macy 		 * "next" lwb on-disk. When this occurs, the ZIL write
2631eda14cbcSMatt Macy 		 * pipeline must be stalled; see the comment within the
2632eda14cbcSMatt Macy 		 * zil_commit_writer_stall() function for more details.
2633eda14cbcSMatt Macy 		 *
2634eda14cbcSMatt Macy 		 * We must drop the commit waiter's lock prior to
2635eda14cbcSMatt Macy 		 * calling zil_commit_writer_stall() or else we can wind
2636eda14cbcSMatt Macy 		 * up with the following deadlock:
2637eda14cbcSMatt Macy 		 *
2638eda14cbcSMatt Macy 		 * - This thread is waiting for the txg to sync while
2639eda14cbcSMatt Macy 		 *   holding the waiter's lock; txg_wait_synced() is
2640eda14cbcSMatt Macy 		 *   used within txg_commit_writer_stall().
2641eda14cbcSMatt Macy 		 *
2642eda14cbcSMatt Macy 		 * - The txg can't sync because it is waiting for this
2643eda14cbcSMatt Macy 		 *   lwb's zio callback to call dmu_tx_commit().
2644eda14cbcSMatt Macy 		 *
2645eda14cbcSMatt Macy 		 * - The lwb's zio callback can't call dmu_tx_commit()
2646eda14cbcSMatt Macy 		 *   because it's blocked trying to acquire the waiter's
2647eda14cbcSMatt Macy 		 *   lock, which occurs prior to calling dmu_tx_commit()
2648eda14cbcSMatt Macy 		 */
2649eda14cbcSMatt Macy 		mutex_exit(&zcw->zcw_lock);
2650eda14cbcSMatt Macy 		zil_commit_writer_stall(zilog);
2651eda14cbcSMatt Macy 		mutex_enter(&zcw->zcw_lock);
2652eda14cbcSMatt Macy 	}
2653eda14cbcSMatt Macy 
2654eda14cbcSMatt Macy out:
2655eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_issuer_lock);
2656eda14cbcSMatt Macy 	ASSERT(MUTEX_HELD(&zcw->zcw_lock));
2657eda14cbcSMatt Macy }
2658eda14cbcSMatt Macy 
2659eda14cbcSMatt Macy /*
2660eda14cbcSMatt Macy  * This function is responsible for performing the following two tasks:
2661eda14cbcSMatt Macy  *
2662eda14cbcSMatt Macy  * 1. its primary responsibility is to block until the given "commit
2663eda14cbcSMatt Macy  *    waiter" is considered "done".
2664eda14cbcSMatt Macy  *
2665eda14cbcSMatt Macy  * 2. its secondary responsibility is to issue the zio for the lwb that
2666eda14cbcSMatt Macy  *    the given "commit waiter" is waiting on, if this function has
2667eda14cbcSMatt Macy  *    waited "long enough" and the lwb is still in the "open" state.
2668eda14cbcSMatt Macy  *
2669eda14cbcSMatt Macy  * Given a sufficient amount of itxs being generated and written using
2670eda14cbcSMatt Macy  * the ZIL, the lwb's zio will be issued via the zil_lwb_commit()
2671eda14cbcSMatt Macy  * function. If this does not occur, this secondary responsibility will
2672eda14cbcSMatt Macy  * ensure the lwb is issued even if there is not other synchronous
2673eda14cbcSMatt Macy  * activity on the system.
2674eda14cbcSMatt Macy  *
2675eda14cbcSMatt Macy  * For more details, see zil_process_commit_list(); more specifically,
2676eda14cbcSMatt Macy  * the comment at the bottom of that function.
2677eda14cbcSMatt Macy  */
2678eda14cbcSMatt Macy static void
2679eda14cbcSMatt Macy zil_commit_waiter(zilog_t *zilog, zil_commit_waiter_t *zcw)
2680eda14cbcSMatt Macy {
2681eda14cbcSMatt Macy 	ASSERT(!MUTEX_HELD(&zilog->zl_lock));
2682eda14cbcSMatt Macy 	ASSERT(!MUTEX_HELD(&zilog->zl_issuer_lock));
2683eda14cbcSMatt Macy 	ASSERT(spa_writeable(zilog->zl_spa));
2684eda14cbcSMatt Macy 
2685eda14cbcSMatt Macy 	mutex_enter(&zcw->zcw_lock);
2686eda14cbcSMatt Macy 
2687eda14cbcSMatt Macy 	/*
2688eda14cbcSMatt Macy 	 * The timeout is scaled based on the lwb latency to avoid
2689eda14cbcSMatt Macy 	 * significantly impacting the latency of each individual itx.
2690eda14cbcSMatt Macy 	 * For more details, see the comment at the bottom of the
2691eda14cbcSMatt Macy 	 * zil_process_commit_list() function.
2692eda14cbcSMatt Macy 	 */
2693eda14cbcSMatt Macy 	int pct = MAX(zfs_commit_timeout_pct, 1);
2694eda14cbcSMatt Macy 	hrtime_t sleep = (zilog->zl_last_lwb_latency * pct) / 100;
2695eda14cbcSMatt Macy 	hrtime_t wakeup = gethrtime() + sleep;
2696eda14cbcSMatt Macy 	boolean_t timedout = B_FALSE;
2697eda14cbcSMatt Macy 
2698eda14cbcSMatt Macy 	while (!zcw->zcw_done) {
2699eda14cbcSMatt Macy 		ASSERT(MUTEX_HELD(&zcw->zcw_lock));
2700eda14cbcSMatt Macy 
2701eda14cbcSMatt Macy 		lwb_t *lwb = zcw->zcw_lwb;
2702eda14cbcSMatt Macy 
2703eda14cbcSMatt Macy 		/*
2704eda14cbcSMatt Macy 		 * Usually, the waiter will have a non-NULL lwb field here,
2705eda14cbcSMatt Macy 		 * but it's possible for it to be NULL as a result of
2706eda14cbcSMatt Macy 		 * zil_commit() racing with spa_sync().
2707eda14cbcSMatt Macy 		 *
2708eda14cbcSMatt Macy 		 * When zil_clean() is called, it's possible for the itxg
2709eda14cbcSMatt Macy 		 * list (which may be cleaned via a taskq) to contain
2710eda14cbcSMatt Macy 		 * commit itxs. When this occurs, the commit waiters linked
2711eda14cbcSMatt Macy 		 * off of these commit itxs will not be committed to an
2712eda14cbcSMatt Macy 		 * lwb.  Additionally, these commit waiters will not be
2713eda14cbcSMatt Macy 		 * marked done until zil_commit_waiter_skip() is called via
2714eda14cbcSMatt Macy 		 * zil_itxg_clean().
2715eda14cbcSMatt Macy 		 *
2716eda14cbcSMatt Macy 		 * Thus, it's possible for this commit waiter (i.e. the
2717eda14cbcSMatt Macy 		 * "zcw" variable) to be found in this "in between" state;
2718eda14cbcSMatt Macy 		 * where it's "zcw_lwb" field is NULL, and it hasn't yet
2719eda14cbcSMatt Macy 		 * been skipped, so it's "zcw_done" field is still B_FALSE.
2720eda14cbcSMatt Macy 		 */
2721eda14cbcSMatt Macy 		IMPLY(lwb != NULL, lwb->lwb_state != LWB_STATE_CLOSED);
2722eda14cbcSMatt Macy 
2723eda14cbcSMatt Macy 		if (lwb != NULL && lwb->lwb_state == LWB_STATE_OPENED) {
2724eda14cbcSMatt Macy 			ASSERT3B(timedout, ==, B_FALSE);
2725eda14cbcSMatt Macy 
2726eda14cbcSMatt Macy 			/*
2727eda14cbcSMatt Macy 			 * If the lwb hasn't been issued yet, then we
2728eda14cbcSMatt Macy 			 * need to wait with a timeout, in case this
2729eda14cbcSMatt Macy 			 * function needs to issue the lwb after the
2730eda14cbcSMatt Macy 			 * timeout is reached; responsibility (2) from
2731eda14cbcSMatt Macy 			 * the comment above this function.
2732eda14cbcSMatt Macy 			 */
2733eda14cbcSMatt Macy 			int rc = cv_timedwait_hires(&zcw->zcw_cv,
2734eda14cbcSMatt Macy 			    &zcw->zcw_lock, wakeup, USEC2NSEC(1),
2735eda14cbcSMatt Macy 			    CALLOUT_FLAG_ABSOLUTE);
2736eda14cbcSMatt Macy 
2737eda14cbcSMatt Macy 			if (rc != -1 || zcw->zcw_done)
2738eda14cbcSMatt Macy 				continue;
2739eda14cbcSMatt Macy 
2740eda14cbcSMatt Macy 			timedout = B_TRUE;
2741eda14cbcSMatt Macy 			zil_commit_waiter_timeout(zilog, zcw);
2742eda14cbcSMatt Macy 
2743eda14cbcSMatt Macy 			if (!zcw->zcw_done) {
2744eda14cbcSMatt Macy 				/*
2745eda14cbcSMatt Macy 				 * If the commit waiter has already been
2746eda14cbcSMatt Macy 				 * marked "done", it's possible for the
2747eda14cbcSMatt Macy 				 * waiter's lwb structure to have already
2748eda14cbcSMatt Macy 				 * been freed.  Thus, we can only reliably
2749eda14cbcSMatt Macy 				 * make these assertions if the waiter
2750eda14cbcSMatt Macy 				 * isn't done.
2751eda14cbcSMatt Macy 				 */
2752eda14cbcSMatt Macy 				ASSERT3P(lwb, ==, zcw->zcw_lwb);
2753eda14cbcSMatt Macy 				ASSERT3S(lwb->lwb_state, !=, LWB_STATE_OPENED);
2754eda14cbcSMatt Macy 			}
2755eda14cbcSMatt Macy 		} else {
2756eda14cbcSMatt Macy 			/*
2757eda14cbcSMatt Macy 			 * If the lwb isn't open, then it must have already
2758eda14cbcSMatt Macy 			 * been issued. In that case, there's no need to
2759eda14cbcSMatt Macy 			 * use a timeout when waiting for the lwb to
2760eda14cbcSMatt Macy 			 * complete.
2761eda14cbcSMatt Macy 			 *
2762eda14cbcSMatt Macy 			 * Additionally, if the lwb is NULL, the waiter
2763eda14cbcSMatt Macy 			 * will soon be signaled and marked done via
2764eda14cbcSMatt Macy 			 * zil_clean() and zil_itxg_clean(), so no timeout
2765eda14cbcSMatt Macy 			 * is required.
2766eda14cbcSMatt Macy 			 */
2767eda14cbcSMatt Macy 
2768eda14cbcSMatt Macy 			IMPLY(lwb != NULL,
2769eda14cbcSMatt Macy 			    lwb->lwb_state == LWB_STATE_ISSUED ||
2770eda14cbcSMatt Macy 			    lwb->lwb_state == LWB_STATE_WRITE_DONE ||
2771eda14cbcSMatt Macy 			    lwb->lwb_state == LWB_STATE_FLUSH_DONE);
2772eda14cbcSMatt Macy 			cv_wait(&zcw->zcw_cv, &zcw->zcw_lock);
2773eda14cbcSMatt Macy 		}
2774eda14cbcSMatt Macy 	}
2775eda14cbcSMatt Macy 
2776eda14cbcSMatt Macy 	mutex_exit(&zcw->zcw_lock);
2777eda14cbcSMatt Macy }
2778eda14cbcSMatt Macy 
2779eda14cbcSMatt Macy static zil_commit_waiter_t *
2780eda14cbcSMatt Macy zil_alloc_commit_waiter(void)
2781eda14cbcSMatt Macy {
2782eda14cbcSMatt Macy 	zil_commit_waiter_t *zcw = kmem_cache_alloc(zil_zcw_cache, KM_SLEEP);
2783eda14cbcSMatt Macy 
2784eda14cbcSMatt Macy 	cv_init(&zcw->zcw_cv, NULL, CV_DEFAULT, NULL);
2785eda14cbcSMatt Macy 	mutex_init(&zcw->zcw_lock, NULL, MUTEX_DEFAULT, NULL);
2786eda14cbcSMatt Macy 	list_link_init(&zcw->zcw_node);
2787eda14cbcSMatt Macy 	zcw->zcw_lwb = NULL;
2788eda14cbcSMatt Macy 	zcw->zcw_done = B_FALSE;
2789eda14cbcSMatt Macy 	zcw->zcw_zio_error = 0;
2790eda14cbcSMatt Macy 
2791eda14cbcSMatt Macy 	return (zcw);
2792eda14cbcSMatt Macy }
2793eda14cbcSMatt Macy 
2794eda14cbcSMatt Macy static void
2795eda14cbcSMatt Macy zil_free_commit_waiter(zil_commit_waiter_t *zcw)
2796eda14cbcSMatt Macy {
2797eda14cbcSMatt Macy 	ASSERT(!list_link_active(&zcw->zcw_node));
2798eda14cbcSMatt Macy 	ASSERT3P(zcw->zcw_lwb, ==, NULL);
2799eda14cbcSMatt Macy 	ASSERT3B(zcw->zcw_done, ==, B_TRUE);
2800eda14cbcSMatt Macy 	mutex_destroy(&zcw->zcw_lock);
2801eda14cbcSMatt Macy 	cv_destroy(&zcw->zcw_cv);
2802eda14cbcSMatt Macy 	kmem_cache_free(zil_zcw_cache, zcw);
2803eda14cbcSMatt Macy }
2804eda14cbcSMatt Macy 
2805eda14cbcSMatt Macy /*
2806eda14cbcSMatt Macy  * This function is used to create a TX_COMMIT itx and assign it. This
2807eda14cbcSMatt Macy  * way, it will be linked into the ZIL's list of synchronous itxs, and
2808eda14cbcSMatt Macy  * then later committed to an lwb (or skipped) when
2809eda14cbcSMatt Macy  * zil_process_commit_list() is called.
2810eda14cbcSMatt Macy  */
2811eda14cbcSMatt Macy static void
2812eda14cbcSMatt Macy zil_commit_itx_assign(zilog_t *zilog, zil_commit_waiter_t *zcw)
2813eda14cbcSMatt Macy {
2814eda14cbcSMatt Macy 	dmu_tx_t *tx = dmu_tx_create(zilog->zl_os);
2815eda14cbcSMatt Macy 	VERIFY0(dmu_tx_assign(tx, TXG_WAIT));
2816eda14cbcSMatt Macy 
2817eda14cbcSMatt Macy 	itx_t *itx = zil_itx_create(TX_COMMIT, sizeof (lr_t));
2818eda14cbcSMatt Macy 	itx->itx_sync = B_TRUE;
2819eda14cbcSMatt Macy 	itx->itx_private = zcw;
2820eda14cbcSMatt Macy 
2821eda14cbcSMatt Macy 	zil_itx_assign(zilog, itx, tx);
2822eda14cbcSMatt Macy 
2823eda14cbcSMatt Macy 	dmu_tx_commit(tx);
2824eda14cbcSMatt Macy }
2825eda14cbcSMatt Macy 
2826eda14cbcSMatt Macy /*
2827eda14cbcSMatt Macy  * Commit ZFS Intent Log transactions (itxs) to stable storage.
2828eda14cbcSMatt Macy  *
2829eda14cbcSMatt Macy  * When writing ZIL transactions to the on-disk representation of the
2830eda14cbcSMatt Macy  * ZIL, the itxs are committed to a Log Write Block (lwb). Multiple
2831eda14cbcSMatt Macy  * itxs can be committed to a single lwb. Once a lwb is written and
2832eda14cbcSMatt Macy  * committed to stable storage (i.e. the lwb is written, and vdevs have
2833eda14cbcSMatt Macy  * been flushed), each itx that was committed to that lwb is also
2834eda14cbcSMatt Macy  * considered to be committed to stable storage.
2835eda14cbcSMatt Macy  *
2836eda14cbcSMatt Macy  * When an itx is committed to an lwb, the log record (lr_t) contained
2837eda14cbcSMatt Macy  * by the itx is copied into the lwb's zio buffer, and once this buffer
2838eda14cbcSMatt Macy  * is written to disk, it becomes an on-disk ZIL block.
2839eda14cbcSMatt Macy  *
2840eda14cbcSMatt Macy  * As itxs are generated, they're inserted into the ZIL's queue of
2841eda14cbcSMatt Macy  * uncommitted itxs. The semantics of zil_commit() are such that it will
2842eda14cbcSMatt Macy  * block until all itxs that were in the queue when it was called, are
2843eda14cbcSMatt Macy  * committed to stable storage.
2844eda14cbcSMatt Macy  *
2845eda14cbcSMatt Macy  * If "foid" is zero, this means all "synchronous" and "asynchronous"
2846eda14cbcSMatt Macy  * itxs, for all objects in the dataset, will be committed to stable
2847eda14cbcSMatt Macy  * storage prior to zil_commit() returning. If "foid" is non-zero, all
2848eda14cbcSMatt Macy  * "synchronous" itxs for all objects, but only "asynchronous" itxs
2849eda14cbcSMatt Macy  * that correspond to the foid passed in, will be committed to stable
2850eda14cbcSMatt Macy  * storage prior to zil_commit() returning.
2851eda14cbcSMatt Macy  *
2852eda14cbcSMatt Macy  * Generally speaking, when zil_commit() is called, the consumer doesn't
2853eda14cbcSMatt Macy  * actually care about _all_ of the uncommitted itxs. Instead, they're
2854eda14cbcSMatt Macy  * simply trying to waiting for a specific itx to be committed to disk,
2855eda14cbcSMatt Macy  * but the interface(s) for interacting with the ZIL don't allow such
2856eda14cbcSMatt Macy  * fine-grained communication. A better interface would allow a consumer
2857eda14cbcSMatt Macy  * to create and assign an itx, and then pass a reference to this itx to
2858eda14cbcSMatt Macy  * zil_commit(); such that zil_commit() would return as soon as that
2859eda14cbcSMatt Macy  * specific itx was committed to disk (instead of waiting for _all_
2860eda14cbcSMatt Macy  * itxs to be committed).
2861eda14cbcSMatt Macy  *
2862eda14cbcSMatt Macy  * When a thread calls zil_commit() a special "commit itx" will be
2863eda14cbcSMatt Macy  * generated, along with a corresponding "waiter" for this commit itx.
2864eda14cbcSMatt Macy  * zil_commit() will wait on this waiter's CV, such that when the waiter
2865eda14cbcSMatt Macy  * is marked done, and signaled, zil_commit() will return.
2866eda14cbcSMatt Macy  *
2867eda14cbcSMatt Macy  * This commit itx is inserted into the queue of uncommitted itxs. This
2868eda14cbcSMatt Macy  * provides an easy mechanism for determining which itxs were in the
2869eda14cbcSMatt Macy  * queue prior to zil_commit() having been called, and which itxs were
2870eda14cbcSMatt Macy  * added after zil_commit() was called.
2871eda14cbcSMatt Macy  *
2872eda14cbcSMatt Macy  * The commit it is special; it doesn't have any on-disk representation.
2873eda14cbcSMatt Macy  * When a commit itx is "committed" to an lwb, the waiter associated
2874eda14cbcSMatt Macy  * with it is linked onto the lwb's list of waiters. Then, when that lwb
2875eda14cbcSMatt Macy  * completes, each waiter on the lwb's list is marked done and signaled
2876eda14cbcSMatt Macy  * -- allowing the thread waiting on the waiter to return from zil_commit().
2877eda14cbcSMatt Macy  *
2878eda14cbcSMatt Macy  * It's important to point out a few critical factors that allow us
2879eda14cbcSMatt Macy  * to make use of the commit itxs, commit waiters, per-lwb lists of
2880eda14cbcSMatt Macy  * commit waiters, and zio completion callbacks like we're doing:
2881eda14cbcSMatt Macy  *
2882eda14cbcSMatt Macy  *   1. The list of waiters for each lwb is traversed, and each commit
2883eda14cbcSMatt Macy  *      waiter is marked "done" and signaled, in the zio completion
2884eda14cbcSMatt Macy  *      callback of the lwb's zio[*].
2885eda14cbcSMatt Macy  *
2886eda14cbcSMatt Macy  *      * Actually, the waiters are signaled in the zio completion
2887eda14cbcSMatt Macy  *        callback of the root zio for the DKIOCFLUSHWRITECACHE commands
2888eda14cbcSMatt Macy  *        that are sent to the vdevs upon completion of the lwb zio.
2889eda14cbcSMatt Macy  *
2890eda14cbcSMatt Macy  *   2. When the itxs are inserted into the ZIL's queue of uncommitted
2891eda14cbcSMatt Macy  *      itxs, the order in which they are inserted is preserved[*]; as
2892eda14cbcSMatt Macy  *      itxs are added to the queue, they are added to the tail of
2893eda14cbcSMatt Macy  *      in-memory linked lists.
2894eda14cbcSMatt Macy  *
2895eda14cbcSMatt Macy  *      When committing the itxs to lwbs (to be written to disk), they
2896eda14cbcSMatt Macy  *      are committed in the same order in which the itxs were added to
2897eda14cbcSMatt Macy  *      the uncommitted queue's linked list(s); i.e. the linked list of
2898eda14cbcSMatt Macy  *      itxs to commit is traversed from head to tail, and each itx is
2899eda14cbcSMatt Macy  *      committed to an lwb in that order.
2900eda14cbcSMatt Macy  *
2901eda14cbcSMatt Macy  *      * To clarify:
2902eda14cbcSMatt Macy  *
2903eda14cbcSMatt Macy  *        - the order of "sync" itxs is preserved w.r.t. other
2904eda14cbcSMatt Macy  *          "sync" itxs, regardless of the corresponding objects.
2905eda14cbcSMatt Macy  *        - the order of "async" itxs is preserved w.r.t. other
2906eda14cbcSMatt Macy  *          "async" itxs corresponding to the same object.
2907eda14cbcSMatt Macy  *        - the order of "async" itxs is *not* preserved w.r.t. other
2908eda14cbcSMatt Macy  *          "async" itxs corresponding to different objects.
2909eda14cbcSMatt Macy  *        - the order of "sync" itxs w.r.t. "async" itxs (or vice
2910eda14cbcSMatt Macy  *          versa) is *not* preserved, even for itxs that correspond
2911eda14cbcSMatt Macy  *          to the same object.
2912eda14cbcSMatt Macy  *
2913eda14cbcSMatt Macy  *      For more details, see: zil_itx_assign(), zil_async_to_sync(),
2914eda14cbcSMatt Macy  *      zil_get_commit_list(), and zil_process_commit_list().
2915eda14cbcSMatt Macy  *
2916eda14cbcSMatt Macy  *   3. The lwbs represent a linked list of blocks on disk. Thus, any
2917eda14cbcSMatt Macy  *      lwb cannot be considered committed to stable storage, until its
2918eda14cbcSMatt Macy  *      "previous" lwb is also committed to stable storage. This fact,
2919eda14cbcSMatt Macy  *      coupled with the fact described above, means that itxs are
2920eda14cbcSMatt Macy  *      committed in (roughly) the order in which they were generated.
2921eda14cbcSMatt Macy  *      This is essential because itxs are dependent on prior itxs.
2922eda14cbcSMatt Macy  *      Thus, we *must not* deem an itx as being committed to stable
2923eda14cbcSMatt Macy  *      storage, until *all* prior itxs have also been committed to
2924eda14cbcSMatt Macy  *      stable storage.
2925eda14cbcSMatt Macy  *
2926eda14cbcSMatt Macy  *      To enforce this ordering of lwb zio's, while still leveraging as
2927eda14cbcSMatt Macy  *      much of the underlying storage performance as possible, we rely
2928eda14cbcSMatt Macy  *      on two fundamental concepts:
2929eda14cbcSMatt Macy  *
2930eda14cbcSMatt Macy  *          1. The creation and issuance of lwb zio's is protected by
2931eda14cbcSMatt Macy  *             the zilog's "zl_issuer_lock", which ensures only a single
2932eda14cbcSMatt Macy  *             thread is creating and/or issuing lwb's at a time
2933eda14cbcSMatt Macy  *          2. The "previous" lwb is a child of the "current" lwb
2934eda14cbcSMatt Macy  *             (leveraging the zio parent-child dependency graph)
2935eda14cbcSMatt Macy  *
2936eda14cbcSMatt Macy  *      By relying on this parent-child zio relationship, we can have
2937eda14cbcSMatt Macy  *      many lwb zio's concurrently issued to the underlying storage,
2938eda14cbcSMatt Macy  *      but the order in which they complete will be the same order in
2939eda14cbcSMatt Macy  *      which they were created.
2940eda14cbcSMatt Macy  */
2941eda14cbcSMatt Macy void
2942eda14cbcSMatt Macy zil_commit(zilog_t *zilog, uint64_t foid)
2943eda14cbcSMatt Macy {
2944eda14cbcSMatt Macy 	/*
2945eda14cbcSMatt Macy 	 * We should never attempt to call zil_commit on a snapshot for
2946eda14cbcSMatt Macy 	 * a couple of reasons:
2947eda14cbcSMatt Macy 	 *
2948eda14cbcSMatt Macy 	 * 1. A snapshot may never be modified, thus it cannot have any
2949eda14cbcSMatt Macy 	 *    in-flight itxs that would have modified the dataset.
2950eda14cbcSMatt Macy 	 *
2951eda14cbcSMatt Macy 	 * 2. By design, when zil_commit() is called, a commit itx will
2952eda14cbcSMatt Macy 	 *    be assigned to this zilog; as a result, the zilog will be
2953eda14cbcSMatt Macy 	 *    dirtied. We must not dirty the zilog of a snapshot; there's
2954eda14cbcSMatt Macy 	 *    checks in the code that enforce this invariant, and will
2955eda14cbcSMatt Macy 	 *    cause a panic if it's not upheld.
2956eda14cbcSMatt Macy 	 */
2957eda14cbcSMatt Macy 	ASSERT3B(dmu_objset_is_snapshot(zilog->zl_os), ==, B_FALSE);
2958eda14cbcSMatt Macy 
2959eda14cbcSMatt Macy 	if (zilog->zl_sync == ZFS_SYNC_DISABLED)
2960eda14cbcSMatt Macy 		return;
2961eda14cbcSMatt Macy 
2962eda14cbcSMatt Macy 	if (!spa_writeable(zilog->zl_spa)) {
2963eda14cbcSMatt Macy 		/*
2964eda14cbcSMatt Macy 		 * If the SPA is not writable, there should never be any
2965eda14cbcSMatt Macy 		 * pending itxs waiting to be committed to disk. If that
2966eda14cbcSMatt Macy 		 * weren't true, we'd skip writing those itxs out, and
2967eda14cbcSMatt Macy 		 * would break the semantics of zil_commit(); thus, we're
2968eda14cbcSMatt Macy 		 * verifying that truth before we return to the caller.
2969eda14cbcSMatt Macy 		 */
2970eda14cbcSMatt Macy 		ASSERT(list_is_empty(&zilog->zl_lwb_list));
2971eda14cbcSMatt Macy 		ASSERT3P(zilog->zl_last_lwb_opened, ==, NULL);
2972eda14cbcSMatt Macy 		for (int i = 0; i < TXG_SIZE; i++)
2973eda14cbcSMatt Macy 			ASSERT3P(zilog->zl_itxg[i].itxg_itxs, ==, NULL);
2974eda14cbcSMatt Macy 		return;
2975eda14cbcSMatt Macy 	}
2976eda14cbcSMatt Macy 
2977eda14cbcSMatt Macy 	/*
2978eda14cbcSMatt Macy 	 * If the ZIL is suspended, we don't want to dirty it by calling
2979eda14cbcSMatt Macy 	 * zil_commit_itx_assign() below, nor can we write out
2980eda14cbcSMatt Macy 	 * lwbs like would be done in zil_commit_write(). Thus, we
2981eda14cbcSMatt Macy 	 * simply rely on txg_wait_synced() to maintain the necessary
2982eda14cbcSMatt Macy 	 * semantics, and avoid calling those functions altogether.
2983eda14cbcSMatt Macy 	 */
2984eda14cbcSMatt Macy 	if (zilog->zl_suspend > 0) {
2985eda14cbcSMatt Macy 		txg_wait_synced(zilog->zl_dmu_pool, 0);
2986eda14cbcSMatt Macy 		return;
2987eda14cbcSMatt Macy 	}
2988eda14cbcSMatt Macy 
2989eda14cbcSMatt Macy 	zil_commit_impl(zilog, foid);
2990eda14cbcSMatt Macy }
2991eda14cbcSMatt Macy 
2992eda14cbcSMatt Macy void
2993eda14cbcSMatt Macy zil_commit_impl(zilog_t *zilog, uint64_t foid)
2994eda14cbcSMatt Macy {
2995eda14cbcSMatt Macy 	ZIL_STAT_BUMP(zil_commit_count);
2996eda14cbcSMatt Macy 
2997eda14cbcSMatt Macy 	/*
2998eda14cbcSMatt Macy 	 * Move the "async" itxs for the specified foid to the "sync"
2999eda14cbcSMatt Macy 	 * queues, such that they will be later committed (or skipped)
3000eda14cbcSMatt Macy 	 * to an lwb when zil_process_commit_list() is called.
3001eda14cbcSMatt Macy 	 *
3002eda14cbcSMatt Macy 	 * Since these "async" itxs must be committed prior to this
3003eda14cbcSMatt Macy 	 * call to zil_commit returning, we must perform this operation
3004eda14cbcSMatt Macy 	 * before we call zil_commit_itx_assign().
3005eda14cbcSMatt Macy 	 */
3006eda14cbcSMatt Macy 	zil_async_to_sync(zilog, foid);
3007eda14cbcSMatt Macy 
3008eda14cbcSMatt Macy 	/*
3009eda14cbcSMatt Macy 	 * We allocate a new "waiter" structure which will initially be
3010eda14cbcSMatt Macy 	 * linked to the commit itx using the itx's "itx_private" field.
3011eda14cbcSMatt Macy 	 * Since the commit itx doesn't represent any on-disk state,
3012eda14cbcSMatt Macy 	 * when it's committed to an lwb, rather than copying the its
3013eda14cbcSMatt Macy 	 * lr_t into the lwb's buffer, the commit itx's "waiter" will be
3014eda14cbcSMatt Macy 	 * added to the lwb's list of waiters. Then, when the lwb is
3015eda14cbcSMatt Macy 	 * committed to stable storage, each waiter in the lwb's list of
3016eda14cbcSMatt Macy 	 * waiters will be marked "done", and signalled.
3017eda14cbcSMatt Macy 	 *
3018eda14cbcSMatt Macy 	 * We must create the waiter and assign the commit itx prior to
3019eda14cbcSMatt Macy 	 * calling zil_commit_writer(), or else our specific commit itx
3020eda14cbcSMatt Macy 	 * is not guaranteed to be committed to an lwb prior to calling
3021eda14cbcSMatt Macy 	 * zil_commit_waiter().
3022eda14cbcSMatt Macy 	 */
3023eda14cbcSMatt Macy 	zil_commit_waiter_t *zcw = zil_alloc_commit_waiter();
3024eda14cbcSMatt Macy 	zil_commit_itx_assign(zilog, zcw);
3025eda14cbcSMatt Macy 
3026eda14cbcSMatt Macy 	zil_commit_writer(zilog, zcw);
3027eda14cbcSMatt Macy 	zil_commit_waiter(zilog, zcw);
3028eda14cbcSMatt Macy 
3029eda14cbcSMatt Macy 	if (zcw->zcw_zio_error != 0) {
3030eda14cbcSMatt Macy 		/*
3031eda14cbcSMatt Macy 		 * If there was an error writing out the ZIL blocks that
3032eda14cbcSMatt Macy 		 * this thread is waiting on, then we fallback to
3033eda14cbcSMatt Macy 		 * relying on spa_sync() to write out the data this
3034eda14cbcSMatt Macy 		 * thread is waiting on. Obviously this has performance
3035eda14cbcSMatt Macy 		 * implications, but the expectation is for this to be
3036eda14cbcSMatt Macy 		 * an exceptional case, and shouldn't occur often.
3037eda14cbcSMatt Macy 		 */
3038eda14cbcSMatt Macy 		DTRACE_PROBE2(zil__commit__io__error,
3039eda14cbcSMatt Macy 		    zilog_t *, zilog, zil_commit_waiter_t *, zcw);
3040eda14cbcSMatt Macy 		txg_wait_synced(zilog->zl_dmu_pool, 0);
3041eda14cbcSMatt Macy 	}
3042eda14cbcSMatt Macy 
3043eda14cbcSMatt Macy 	zil_free_commit_waiter(zcw);
3044eda14cbcSMatt Macy }
3045eda14cbcSMatt Macy 
3046eda14cbcSMatt Macy /*
3047eda14cbcSMatt Macy  * Called in syncing context to free committed log blocks and update log header.
3048eda14cbcSMatt Macy  */
3049eda14cbcSMatt Macy void
3050eda14cbcSMatt Macy zil_sync(zilog_t *zilog, dmu_tx_t *tx)
3051eda14cbcSMatt Macy {
3052eda14cbcSMatt Macy 	zil_header_t *zh = zil_header_in_syncing_context(zilog);
3053eda14cbcSMatt Macy 	uint64_t txg = dmu_tx_get_txg(tx);
3054eda14cbcSMatt Macy 	spa_t *spa = zilog->zl_spa;
3055eda14cbcSMatt Macy 	uint64_t *replayed_seq = &zilog->zl_replayed_seq[txg & TXG_MASK];
3056eda14cbcSMatt Macy 	lwb_t *lwb;
3057eda14cbcSMatt Macy 
3058eda14cbcSMatt Macy 	/*
3059eda14cbcSMatt Macy 	 * We don't zero out zl_destroy_txg, so make sure we don't try
3060eda14cbcSMatt Macy 	 * to destroy it twice.
3061eda14cbcSMatt Macy 	 */
3062eda14cbcSMatt Macy 	if (spa_sync_pass(spa) != 1)
3063eda14cbcSMatt Macy 		return;
3064eda14cbcSMatt Macy 
3065eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
3066eda14cbcSMatt Macy 
3067eda14cbcSMatt Macy 	ASSERT(zilog->zl_stop_sync == 0);
3068eda14cbcSMatt Macy 
3069eda14cbcSMatt Macy 	if (*replayed_seq != 0) {
3070eda14cbcSMatt Macy 		ASSERT(zh->zh_replay_seq < *replayed_seq);
3071eda14cbcSMatt Macy 		zh->zh_replay_seq = *replayed_seq;
3072eda14cbcSMatt Macy 		*replayed_seq = 0;
3073eda14cbcSMatt Macy 	}
3074eda14cbcSMatt Macy 
3075eda14cbcSMatt Macy 	if (zilog->zl_destroy_txg == txg) {
3076eda14cbcSMatt Macy 		blkptr_t blk = zh->zh_log;
3077eda14cbcSMatt Macy 
3078eda14cbcSMatt Macy 		ASSERT(list_head(&zilog->zl_lwb_list) == NULL);
3079eda14cbcSMatt Macy 
3080eda14cbcSMatt Macy 		bzero(zh, sizeof (zil_header_t));
3081eda14cbcSMatt Macy 		bzero(zilog->zl_replayed_seq, sizeof (zilog->zl_replayed_seq));
3082eda14cbcSMatt Macy 
3083eda14cbcSMatt Macy 		if (zilog->zl_keep_first) {
3084eda14cbcSMatt Macy 			/*
3085eda14cbcSMatt Macy 			 * If this block was part of log chain that couldn't
3086eda14cbcSMatt Macy 			 * be claimed because a device was missing during
3087eda14cbcSMatt Macy 			 * zil_claim(), but that device later returns,
3088eda14cbcSMatt Macy 			 * then this block could erroneously appear valid.
3089eda14cbcSMatt Macy 			 * To guard against this, assign a new GUID to the new
3090eda14cbcSMatt Macy 			 * log chain so it doesn't matter what blk points to.
3091eda14cbcSMatt Macy 			 */
3092eda14cbcSMatt Macy 			zil_init_log_chain(zilog, &blk);
3093eda14cbcSMatt Macy 			zh->zh_log = blk;
3094eda14cbcSMatt Macy 		}
3095eda14cbcSMatt Macy 	}
3096eda14cbcSMatt Macy 
3097eda14cbcSMatt Macy 	while ((lwb = list_head(&zilog->zl_lwb_list)) != NULL) {
3098eda14cbcSMatt Macy 		zh->zh_log = lwb->lwb_blk;
3099eda14cbcSMatt Macy 		if (lwb->lwb_buf != NULL || lwb->lwb_max_txg > txg)
3100eda14cbcSMatt Macy 			break;
3101eda14cbcSMatt Macy 		list_remove(&zilog->zl_lwb_list, lwb);
3102eda14cbcSMatt Macy 		zio_free(spa, txg, &lwb->lwb_blk);
3103eda14cbcSMatt Macy 		zil_free_lwb(zilog, lwb);
3104eda14cbcSMatt Macy 
3105eda14cbcSMatt Macy 		/*
3106eda14cbcSMatt Macy 		 * If we don't have anything left in the lwb list then
3107eda14cbcSMatt Macy 		 * we've had an allocation failure and we need to zero
3108eda14cbcSMatt Macy 		 * out the zil_header blkptr so that we don't end
3109eda14cbcSMatt Macy 		 * up freeing the same block twice.
3110eda14cbcSMatt Macy 		 */
3111eda14cbcSMatt Macy 		if (list_head(&zilog->zl_lwb_list) == NULL)
3112eda14cbcSMatt Macy 			BP_ZERO(&zh->zh_log);
3113eda14cbcSMatt Macy 	}
3114eda14cbcSMatt Macy 
3115eda14cbcSMatt Macy 	/*
3116eda14cbcSMatt Macy 	 * Remove fastwrite on any blocks that have been pre-allocated for
3117eda14cbcSMatt Macy 	 * the next commit. This prevents fastwrite counter pollution by
3118eda14cbcSMatt Macy 	 * unused, long-lived LWBs.
3119eda14cbcSMatt Macy 	 */
3120eda14cbcSMatt Macy 	for (; lwb != NULL; lwb = list_next(&zilog->zl_lwb_list, lwb)) {
3121eda14cbcSMatt Macy 		if (lwb->lwb_fastwrite && !lwb->lwb_write_zio) {
3122eda14cbcSMatt Macy 			metaslab_fastwrite_unmark(zilog->zl_spa, &lwb->lwb_blk);
3123eda14cbcSMatt Macy 			lwb->lwb_fastwrite = 0;
3124eda14cbcSMatt Macy 		}
3125eda14cbcSMatt Macy 	}
3126eda14cbcSMatt Macy 
3127eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
3128eda14cbcSMatt Macy }
3129eda14cbcSMatt Macy 
3130eda14cbcSMatt Macy /* ARGSUSED */
3131eda14cbcSMatt Macy static int
3132eda14cbcSMatt Macy zil_lwb_cons(void *vbuf, void *unused, int kmflag)
3133eda14cbcSMatt Macy {
3134eda14cbcSMatt Macy 	lwb_t *lwb = vbuf;
3135eda14cbcSMatt Macy 	list_create(&lwb->lwb_itxs, sizeof (itx_t), offsetof(itx_t, itx_node));
3136eda14cbcSMatt Macy 	list_create(&lwb->lwb_waiters, sizeof (zil_commit_waiter_t),
3137eda14cbcSMatt Macy 	    offsetof(zil_commit_waiter_t, zcw_node));
3138eda14cbcSMatt Macy 	avl_create(&lwb->lwb_vdev_tree, zil_lwb_vdev_compare,
3139eda14cbcSMatt Macy 	    sizeof (zil_vdev_node_t), offsetof(zil_vdev_node_t, zv_node));
3140eda14cbcSMatt Macy 	mutex_init(&lwb->lwb_vdev_lock, NULL, MUTEX_DEFAULT, NULL);
3141eda14cbcSMatt Macy 	return (0);
3142eda14cbcSMatt Macy }
3143eda14cbcSMatt Macy 
3144eda14cbcSMatt Macy /* ARGSUSED */
3145eda14cbcSMatt Macy static void
3146eda14cbcSMatt Macy zil_lwb_dest(void *vbuf, void *unused)
3147eda14cbcSMatt Macy {
3148eda14cbcSMatt Macy 	lwb_t *lwb = vbuf;
3149eda14cbcSMatt Macy 	mutex_destroy(&lwb->lwb_vdev_lock);
3150eda14cbcSMatt Macy 	avl_destroy(&lwb->lwb_vdev_tree);
3151eda14cbcSMatt Macy 	list_destroy(&lwb->lwb_waiters);
3152eda14cbcSMatt Macy 	list_destroy(&lwb->lwb_itxs);
3153eda14cbcSMatt Macy }
3154eda14cbcSMatt Macy 
3155eda14cbcSMatt Macy void
3156eda14cbcSMatt Macy zil_init(void)
3157eda14cbcSMatt Macy {
3158eda14cbcSMatt Macy 	zil_lwb_cache = kmem_cache_create("zil_lwb_cache",
3159eda14cbcSMatt Macy 	    sizeof (lwb_t), 0, zil_lwb_cons, zil_lwb_dest, NULL, NULL, NULL, 0);
3160eda14cbcSMatt Macy 
3161eda14cbcSMatt Macy 	zil_zcw_cache = kmem_cache_create("zil_zcw_cache",
3162eda14cbcSMatt Macy 	    sizeof (zil_commit_waiter_t), 0, NULL, NULL, NULL, NULL, NULL, 0);
3163eda14cbcSMatt Macy 
3164eda14cbcSMatt Macy 	zil_ksp = kstat_create("zfs", 0, "zil", "misc",
3165eda14cbcSMatt Macy 	    KSTAT_TYPE_NAMED, sizeof (zil_stats) / sizeof (kstat_named_t),
3166eda14cbcSMatt Macy 	    KSTAT_FLAG_VIRTUAL);
3167eda14cbcSMatt Macy 
3168eda14cbcSMatt Macy 	if (zil_ksp != NULL) {
3169eda14cbcSMatt Macy 		zil_ksp->ks_data = &zil_stats;
3170eda14cbcSMatt Macy 		kstat_install(zil_ksp);
3171eda14cbcSMatt Macy 	}
3172eda14cbcSMatt Macy }
3173eda14cbcSMatt Macy 
3174eda14cbcSMatt Macy void
3175eda14cbcSMatt Macy zil_fini(void)
3176eda14cbcSMatt Macy {
3177eda14cbcSMatt Macy 	kmem_cache_destroy(zil_zcw_cache);
3178eda14cbcSMatt Macy 	kmem_cache_destroy(zil_lwb_cache);
3179eda14cbcSMatt Macy 
3180eda14cbcSMatt Macy 	if (zil_ksp != NULL) {
3181eda14cbcSMatt Macy 		kstat_delete(zil_ksp);
3182eda14cbcSMatt Macy 		zil_ksp = NULL;
3183eda14cbcSMatt Macy 	}
3184eda14cbcSMatt Macy }
3185eda14cbcSMatt Macy 
3186eda14cbcSMatt Macy void
3187eda14cbcSMatt Macy zil_set_sync(zilog_t *zilog, uint64_t sync)
3188eda14cbcSMatt Macy {
3189eda14cbcSMatt Macy 	zilog->zl_sync = sync;
3190eda14cbcSMatt Macy }
3191eda14cbcSMatt Macy 
3192eda14cbcSMatt Macy void
3193eda14cbcSMatt Macy zil_set_logbias(zilog_t *zilog, uint64_t logbias)
3194eda14cbcSMatt Macy {
3195eda14cbcSMatt Macy 	zilog->zl_logbias = logbias;
3196eda14cbcSMatt Macy }
3197eda14cbcSMatt Macy 
3198eda14cbcSMatt Macy zilog_t *
3199eda14cbcSMatt Macy zil_alloc(objset_t *os, zil_header_t *zh_phys)
3200eda14cbcSMatt Macy {
3201eda14cbcSMatt Macy 	zilog_t *zilog;
3202eda14cbcSMatt Macy 
3203eda14cbcSMatt Macy 	zilog = kmem_zalloc(sizeof (zilog_t), KM_SLEEP);
3204eda14cbcSMatt Macy 
3205eda14cbcSMatt Macy 	zilog->zl_header = zh_phys;
3206eda14cbcSMatt Macy 	zilog->zl_os = os;
3207eda14cbcSMatt Macy 	zilog->zl_spa = dmu_objset_spa(os);
3208eda14cbcSMatt Macy 	zilog->zl_dmu_pool = dmu_objset_pool(os);
3209eda14cbcSMatt Macy 	zilog->zl_destroy_txg = TXG_INITIAL - 1;
3210eda14cbcSMatt Macy 	zilog->zl_logbias = dmu_objset_logbias(os);
3211eda14cbcSMatt Macy 	zilog->zl_sync = dmu_objset_syncprop(os);
3212eda14cbcSMatt Macy 	zilog->zl_dirty_max_txg = 0;
3213eda14cbcSMatt Macy 	zilog->zl_last_lwb_opened = NULL;
3214eda14cbcSMatt Macy 	zilog->zl_last_lwb_latency = 0;
3215eda14cbcSMatt Macy 	zilog->zl_max_block_size = zil_maxblocksize;
3216eda14cbcSMatt Macy 
3217eda14cbcSMatt Macy 	mutex_init(&zilog->zl_lock, NULL, MUTEX_DEFAULT, NULL);
3218eda14cbcSMatt Macy 	mutex_init(&zilog->zl_issuer_lock, NULL, MUTEX_DEFAULT, NULL);
3219eda14cbcSMatt Macy 
3220eda14cbcSMatt Macy 	for (int i = 0; i < TXG_SIZE; i++) {
3221eda14cbcSMatt Macy 		mutex_init(&zilog->zl_itxg[i].itxg_lock, NULL,
3222eda14cbcSMatt Macy 		    MUTEX_DEFAULT, NULL);
3223eda14cbcSMatt Macy 	}
3224eda14cbcSMatt Macy 
3225eda14cbcSMatt Macy 	list_create(&zilog->zl_lwb_list, sizeof (lwb_t),
3226eda14cbcSMatt Macy 	    offsetof(lwb_t, lwb_node));
3227eda14cbcSMatt Macy 
3228eda14cbcSMatt Macy 	list_create(&zilog->zl_itx_commit_list, sizeof (itx_t),
3229eda14cbcSMatt Macy 	    offsetof(itx_t, itx_node));
3230eda14cbcSMatt Macy 
3231eda14cbcSMatt Macy 	cv_init(&zilog->zl_cv_suspend, NULL, CV_DEFAULT, NULL);
3232eda14cbcSMatt Macy 
3233eda14cbcSMatt Macy 	return (zilog);
3234eda14cbcSMatt Macy }
3235eda14cbcSMatt Macy 
3236eda14cbcSMatt Macy void
3237eda14cbcSMatt Macy zil_free(zilog_t *zilog)
3238eda14cbcSMatt Macy {
3239eda14cbcSMatt Macy 	int i;
3240eda14cbcSMatt Macy 
3241eda14cbcSMatt Macy 	zilog->zl_stop_sync = 1;
3242eda14cbcSMatt Macy 
3243eda14cbcSMatt Macy 	ASSERT0(zilog->zl_suspend);
3244eda14cbcSMatt Macy 	ASSERT0(zilog->zl_suspending);
3245eda14cbcSMatt Macy 
3246eda14cbcSMatt Macy 	ASSERT(list_is_empty(&zilog->zl_lwb_list));
3247eda14cbcSMatt Macy 	list_destroy(&zilog->zl_lwb_list);
3248eda14cbcSMatt Macy 
3249eda14cbcSMatt Macy 	ASSERT(list_is_empty(&zilog->zl_itx_commit_list));
3250eda14cbcSMatt Macy 	list_destroy(&zilog->zl_itx_commit_list);
3251eda14cbcSMatt Macy 
3252eda14cbcSMatt Macy 	for (i = 0; i < TXG_SIZE; i++) {
3253eda14cbcSMatt Macy 		/*
3254eda14cbcSMatt Macy 		 * It's possible for an itx to be generated that doesn't dirty
3255eda14cbcSMatt Macy 		 * a txg (e.g. ztest TX_TRUNCATE). So there's no zil_clean()
3256eda14cbcSMatt Macy 		 * callback to remove the entry. We remove those here.
3257eda14cbcSMatt Macy 		 *
3258eda14cbcSMatt Macy 		 * Also free up the ziltest itxs.
3259eda14cbcSMatt Macy 		 */
3260eda14cbcSMatt Macy 		if (zilog->zl_itxg[i].itxg_itxs)
3261eda14cbcSMatt Macy 			zil_itxg_clean(zilog->zl_itxg[i].itxg_itxs);
3262eda14cbcSMatt Macy 		mutex_destroy(&zilog->zl_itxg[i].itxg_lock);
3263eda14cbcSMatt Macy 	}
3264eda14cbcSMatt Macy 
3265eda14cbcSMatt Macy 	mutex_destroy(&zilog->zl_issuer_lock);
3266eda14cbcSMatt Macy 	mutex_destroy(&zilog->zl_lock);
3267eda14cbcSMatt Macy 
3268eda14cbcSMatt Macy 	cv_destroy(&zilog->zl_cv_suspend);
3269eda14cbcSMatt Macy 
3270eda14cbcSMatt Macy 	kmem_free(zilog, sizeof (zilog_t));
3271eda14cbcSMatt Macy }
3272eda14cbcSMatt Macy 
3273eda14cbcSMatt Macy /*
3274eda14cbcSMatt Macy  * Open an intent log.
3275eda14cbcSMatt Macy  */
3276eda14cbcSMatt Macy zilog_t *
3277eda14cbcSMatt Macy zil_open(objset_t *os, zil_get_data_t *get_data)
3278eda14cbcSMatt Macy {
3279eda14cbcSMatt Macy 	zilog_t *zilog = dmu_objset_zil(os);
3280eda14cbcSMatt Macy 
3281eda14cbcSMatt Macy 	ASSERT3P(zilog->zl_get_data, ==, NULL);
3282eda14cbcSMatt Macy 	ASSERT3P(zilog->zl_last_lwb_opened, ==, NULL);
3283eda14cbcSMatt Macy 	ASSERT(list_is_empty(&zilog->zl_lwb_list));
3284eda14cbcSMatt Macy 
3285eda14cbcSMatt Macy 	zilog->zl_get_data = get_data;
3286eda14cbcSMatt Macy 
3287eda14cbcSMatt Macy 	return (zilog);
3288eda14cbcSMatt Macy }
3289eda14cbcSMatt Macy 
3290eda14cbcSMatt Macy /*
3291eda14cbcSMatt Macy  * Close an intent log.
3292eda14cbcSMatt Macy  */
3293eda14cbcSMatt Macy void
3294eda14cbcSMatt Macy zil_close(zilog_t *zilog)
3295eda14cbcSMatt Macy {
3296eda14cbcSMatt Macy 	lwb_t *lwb;
3297eda14cbcSMatt Macy 	uint64_t txg;
3298eda14cbcSMatt Macy 
3299eda14cbcSMatt Macy 	if (!dmu_objset_is_snapshot(zilog->zl_os)) {
3300eda14cbcSMatt Macy 		zil_commit(zilog, 0);
3301eda14cbcSMatt Macy 	} else {
3302eda14cbcSMatt Macy 		ASSERT3P(list_tail(&zilog->zl_lwb_list), ==, NULL);
3303eda14cbcSMatt Macy 		ASSERT0(zilog->zl_dirty_max_txg);
3304eda14cbcSMatt Macy 		ASSERT3B(zilog_is_dirty(zilog), ==, B_FALSE);
3305eda14cbcSMatt Macy 	}
3306eda14cbcSMatt Macy 
3307eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
3308eda14cbcSMatt Macy 	lwb = list_tail(&zilog->zl_lwb_list);
3309eda14cbcSMatt Macy 	if (lwb == NULL)
3310eda14cbcSMatt Macy 		txg = zilog->zl_dirty_max_txg;
3311eda14cbcSMatt Macy 	else
3312eda14cbcSMatt Macy 		txg = MAX(zilog->zl_dirty_max_txg, lwb->lwb_max_txg);
3313eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
3314eda14cbcSMatt Macy 
3315eda14cbcSMatt Macy 	/*
3316eda14cbcSMatt Macy 	 * We need to use txg_wait_synced() to wait long enough for the
3317eda14cbcSMatt Macy 	 * ZIL to be clean, and to wait for all pending lwbs to be
3318eda14cbcSMatt Macy 	 * written out.
3319eda14cbcSMatt Macy 	 */
3320eda14cbcSMatt Macy 	if (txg != 0)
3321eda14cbcSMatt Macy 		txg_wait_synced(zilog->zl_dmu_pool, txg);
3322eda14cbcSMatt Macy 
3323eda14cbcSMatt Macy 	if (zilog_is_dirty(zilog))
332433b8c039SMartin Matuska 		zfs_dbgmsg("zil (%px) is dirty, txg %llu", zilog,
332533b8c039SMartin Matuska 		    (u_longlong_t)txg);
3326eda14cbcSMatt Macy 	if (txg < spa_freeze_txg(zilog->zl_spa))
3327eda14cbcSMatt Macy 		VERIFY(!zilog_is_dirty(zilog));
3328eda14cbcSMatt Macy 
3329eda14cbcSMatt Macy 	zilog->zl_get_data = NULL;
3330eda14cbcSMatt Macy 
3331eda14cbcSMatt Macy 	/*
3332eda14cbcSMatt Macy 	 * We should have only one lwb left on the list; remove it now.
3333eda14cbcSMatt Macy 	 */
3334eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
3335eda14cbcSMatt Macy 	lwb = list_head(&zilog->zl_lwb_list);
3336eda14cbcSMatt Macy 	if (lwb != NULL) {
3337eda14cbcSMatt Macy 		ASSERT3P(lwb, ==, list_tail(&zilog->zl_lwb_list));
3338eda14cbcSMatt Macy 		ASSERT3S(lwb->lwb_state, !=, LWB_STATE_ISSUED);
3339eda14cbcSMatt Macy 
3340eda14cbcSMatt Macy 		if (lwb->lwb_fastwrite)
3341eda14cbcSMatt Macy 			metaslab_fastwrite_unmark(zilog->zl_spa, &lwb->lwb_blk);
3342eda14cbcSMatt Macy 
3343eda14cbcSMatt Macy 		list_remove(&zilog->zl_lwb_list, lwb);
3344eda14cbcSMatt Macy 		zio_buf_free(lwb->lwb_buf, lwb->lwb_sz);
3345eda14cbcSMatt Macy 		zil_free_lwb(zilog, lwb);
3346eda14cbcSMatt Macy 	}
3347eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
3348eda14cbcSMatt Macy }
3349eda14cbcSMatt Macy 
3350eda14cbcSMatt Macy static char *suspend_tag = "zil suspending";
3351eda14cbcSMatt Macy 
3352eda14cbcSMatt Macy /*
3353eda14cbcSMatt Macy  * Suspend an intent log.  While in suspended mode, we still honor
3354eda14cbcSMatt Macy  * synchronous semantics, but we rely on txg_wait_synced() to do it.
3355eda14cbcSMatt Macy  * On old version pools, we suspend the log briefly when taking a
3356eda14cbcSMatt Macy  * snapshot so that it will have an empty intent log.
3357eda14cbcSMatt Macy  *
3358eda14cbcSMatt Macy  * Long holds are not really intended to be used the way we do here --
3359eda14cbcSMatt Macy  * held for such a short time.  A concurrent caller of dsl_dataset_long_held()
3360eda14cbcSMatt Macy  * could fail.  Therefore we take pains to only put a long hold if it is
3361eda14cbcSMatt Macy  * actually necessary.  Fortunately, it will only be necessary if the
3362eda14cbcSMatt Macy  * objset is currently mounted (or the ZVOL equivalent).  In that case it
3363eda14cbcSMatt Macy  * will already have a long hold, so we are not really making things any worse.
3364eda14cbcSMatt Macy  *
3365eda14cbcSMatt Macy  * Ideally, we would locate the existing long-holder (i.e. the zfsvfs_t or
3366eda14cbcSMatt Macy  * zvol_state_t), and use their mechanism to prevent their hold from being
3367eda14cbcSMatt Macy  * dropped (e.g. VFS_HOLD()).  However, that would be even more pain for
3368eda14cbcSMatt Macy  * very little gain.
3369eda14cbcSMatt Macy  *
3370eda14cbcSMatt Macy  * if cookiep == NULL, this does both the suspend & resume.
3371eda14cbcSMatt Macy  * Otherwise, it returns with the dataset "long held", and the cookie
3372eda14cbcSMatt Macy  * should be passed into zil_resume().
3373eda14cbcSMatt Macy  */
3374eda14cbcSMatt Macy int
3375eda14cbcSMatt Macy zil_suspend(const char *osname, void **cookiep)
3376eda14cbcSMatt Macy {
3377eda14cbcSMatt Macy 	objset_t *os;
3378eda14cbcSMatt Macy 	zilog_t *zilog;
3379eda14cbcSMatt Macy 	const zil_header_t *zh;
3380eda14cbcSMatt Macy 	int error;
3381eda14cbcSMatt Macy 
3382eda14cbcSMatt Macy 	error = dmu_objset_hold(osname, suspend_tag, &os);
3383eda14cbcSMatt Macy 	if (error != 0)
3384eda14cbcSMatt Macy 		return (error);
3385eda14cbcSMatt Macy 	zilog = dmu_objset_zil(os);
3386eda14cbcSMatt Macy 
3387eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
3388eda14cbcSMatt Macy 	zh = zilog->zl_header;
3389eda14cbcSMatt Macy 
3390eda14cbcSMatt Macy 	if (zh->zh_flags & ZIL_REPLAY_NEEDED) {		/* unplayed log */
3391eda14cbcSMatt Macy 		mutex_exit(&zilog->zl_lock);
3392eda14cbcSMatt Macy 		dmu_objset_rele(os, suspend_tag);
3393eda14cbcSMatt Macy 		return (SET_ERROR(EBUSY));
3394eda14cbcSMatt Macy 	}
3395eda14cbcSMatt Macy 
3396eda14cbcSMatt Macy 	/*
3397eda14cbcSMatt Macy 	 * Don't put a long hold in the cases where we can avoid it.  This
3398eda14cbcSMatt Macy 	 * is when there is no cookie so we are doing a suspend & resume
3399eda14cbcSMatt Macy 	 * (i.e. called from zil_vdev_offline()), and there's nothing to do
3400eda14cbcSMatt Macy 	 * for the suspend because it's already suspended, or there's no ZIL.
3401eda14cbcSMatt Macy 	 */
3402eda14cbcSMatt Macy 	if (cookiep == NULL && !zilog->zl_suspending &&
3403eda14cbcSMatt Macy 	    (zilog->zl_suspend > 0 || BP_IS_HOLE(&zh->zh_log))) {
3404eda14cbcSMatt Macy 		mutex_exit(&zilog->zl_lock);
3405eda14cbcSMatt Macy 		dmu_objset_rele(os, suspend_tag);
3406eda14cbcSMatt Macy 		return (0);
3407eda14cbcSMatt Macy 	}
3408eda14cbcSMatt Macy 
3409eda14cbcSMatt Macy 	dsl_dataset_long_hold(dmu_objset_ds(os), suspend_tag);
3410eda14cbcSMatt Macy 	dsl_pool_rele(dmu_objset_pool(os), suspend_tag);
3411eda14cbcSMatt Macy 
3412eda14cbcSMatt Macy 	zilog->zl_suspend++;
3413eda14cbcSMatt Macy 
3414eda14cbcSMatt Macy 	if (zilog->zl_suspend > 1) {
3415eda14cbcSMatt Macy 		/*
3416eda14cbcSMatt Macy 		 * Someone else is already suspending it.
3417eda14cbcSMatt Macy 		 * Just wait for them to finish.
3418eda14cbcSMatt Macy 		 */
3419eda14cbcSMatt Macy 
3420eda14cbcSMatt Macy 		while (zilog->zl_suspending)
3421eda14cbcSMatt Macy 			cv_wait(&zilog->zl_cv_suspend, &zilog->zl_lock);
3422eda14cbcSMatt Macy 		mutex_exit(&zilog->zl_lock);
3423eda14cbcSMatt Macy 
3424eda14cbcSMatt Macy 		if (cookiep == NULL)
3425eda14cbcSMatt Macy 			zil_resume(os);
3426eda14cbcSMatt Macy 		else
3427eda14cbcSMatt Macy 			*cookiep = os;
3428eda14cbcSMatt Macy 		return (0);
3429eda14cbcSMatt Macy 	}
3430eda14cbcSMatt Macy 
3431eda14cbcSMatt Macy 	/*
3432eda14cbcSMatt Macy 	 * If there is no pointer to an on-disk block, this ZIL must not
3433eda14cbcSMatt Macy 	 * be active (e.g. filesystem not mounted), so there's nothing
3434eda14cbcSMatt Macy 	 * to clean up.
3435eda14cbcSMatt Macy 	 */
3436eda14cbcSMatt Macy 	if (BP_IS_HOLE(&zh->zh_log)) {
3437eda14cbcSMatt Macy 		ASSERT(cookiep != NULL); /* fast path already handled */
3438eda14cbcSMatt Macy 
3439eda14cbcSMatt Macy 		*cookiep = os;
3440eda14cbcSMatt Macy 		mutex_exit(&zilog->zl_lock);
3441eda14cbcSMatt Macy 		return (0);
3442eda14cbcSMatt Macy 	}
3443eda14cbcSMatt Macy 
3444eda14cbcSMatt Macy 	/*
3445eda14cbcSMatt Macy 	 * The ZIL has work to do. Ensure that the associated encryption
3446eda14cbcSMatt Macy 	 * key will remain mapped while we are committing the log by
3447eda14cbcSMatt Macy 	 * grabbing a reference to it. If the key isn't loaded we have no
3448eda14cbcSMatt Macy 	 * choice but to return an error until the wrapping key is loaded.
3449eda14cbcSMatt Macy 	 */
3450eda14cbcSMatt Macy 	if (os->os_encrypted &&
3451eda14cbcSMatt Macy 	    dsl_dataset_create_key_mapping(dmu_objset_ds(os)) != 0) {
3452eda14cbcSMatt Macy 		zilog->zl_suspend--;
3453eda14cbcSMatt Macy 		mutex_exit(&zilog->zl_lock);
3454eda14cbcSMatt Macy 		dsl_dataset_long_rele(dmu_objset_ds(os), suspend_tag);
3455eda14cbcSMatt Macy 		dsl_dataset_rele(dmu_objset_ds(os), suspend_tag);
3456eda14cbcSMatt Macy 		return (SET_ERROR(EACCES));
3457eda14cbcSMatt Macy 	}
3458eda14cbcSMatt Macy 
3459eda14cbcSMatt Macy 	zilog->zl_suspending = B_TRUE;
3460eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
3461eda14cbcSMatt Macy 
3462eda14cbcSMatt Macy 	/*
3463eda14cbcSMatt Macy 	 * We need to use zil_commit_impl to ensure we wait for all
3464eda14cbcSMatt Macy 	 * LWB_STATE_OPENED and LWB_STATE_ISSUED lwbs to be committed
3465eda14cbcSMatt Macy 	 * to disk before proceeding. If we used zil_commit instead, it
3466eda14cbcSMatt Macy 	 * would just call txg_wait_synced(), because zl_suspend is set.
3467eda14cbcSMatt Macy 	 * txg_wait_synced() doesn't wait for these lwb's to be
3468eda14cbcSMatt Macy 	 * LWB_STATE_FLUSH_DONE before returning.
3469eda14cbcSMatt Macy 	 */
3470eda14cbcSMatt Macy 	zil_commit_impl(zilog, 0);
3471eda14cbcSMatt Macy 
3472eda14cbcSMatt Macy 	/*
3473eda14cbcSMatt Macy 	 * Now that we've ensured all lwb's are LWB_STATE_FLUSH_DONE, we
3474eda14cbcSMatt Macy 	 * use txg_wait_synced() to ensure the data from the zilog has
3475eda14cbcSMatt Macy 	 * migrated to the main pool before calling zil_destroy().
3476eda14cbcSMatt Macy 	 */
3477eda14cbcSMatt Macy 	txg_wait_synced(zilog->zl_dmu_pool, 0);
3478eda14cbcSMatt Macy 
3479eda14cbcSMatt Macy 	zil_destroy(zilog, B_FALSE);
3480eda14cbcSMatt Macy 
3481eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
3482eda14cbcSMatt Macy 	zilog->zl_suspending = B_FALSE;
3483eda14cbcSMatt Macy 	cv_broadcast(&zilog->zl_cv_suspend);
3484eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
3485eda14cbcSMatt Macy 
3486eda14cbcSMatt Macy 	if (os->os_encrypted)
3487eda14cbcSMatt Macy 		dsl_dataset_remove_key_mapping(dmu_objset_ds(os));
3488eda14cbcSMatt Macy 
3489eda14cbcSMatt Macy 	if (cookiep == NULL)
3490eda14cbcSMatt Macy 		zil_resume(os);
3491eda14cbcSMatt Macy 	else
3492eda14cbcSMatt Macy 		*cookiep = os;
3493eda14cbcSMatt Macy 	return (0);
3494eda14cbcSMatt Macy }
3495eda14cbcSMatt Macy 
3496eda14cbcSMatt Macy void
3497eda14cbcSMatt Macy zil_resume(void *cookie)
3498eda14cbcSMatt Macy {
3499eda14cbcSMatt Macy 	objset_t *os = cookie;
3500eda14cbcSMatt Macy 	zilog_t *zilog = dmu_objset_zil(os);
3501eda14cbcSMatt Macy 
3502eda14cbcSMatt Macy 	mutex_enter(&zilog->zl_lock);
3503eda14cbcSMatt Macy 	ASSERT(zilog->zl_suspend != 0);
3504eda14cbcSMatt Macy 	zilog->zl_suspend--;
3505eda14cbcSMatt Macy 	mutex_exit(&zilog->zl_lock);
3506eda14cbcSMatt Macy 	dsl_dataset_long_rele(dmu_objset_ds(os), suspend_tag);
3507eda14cbcSMatt Macy 	dsl_dataset_rele(dmu_objset_ds(os), suspend_tag);
3508eda14cbcSMatt Macy }
3509eda14cbcSMatt Macy 
3510eda14cbcSMatt Macy typedef struct zil_replay_arg {
3511eda14cbcSMatt Macy 	zil_replay_func_t **zr_replay;
3512eda14cbcSMatt Macy 	void		*zr_arg;
3513eda14cbcSMatt Macy 	boolean_t	zr_byteswap;
3514eda14cbcSMatt Macy 	char		*zr_lr;
3515eda14cbcSMatt Macy } zil_replay_arg_t;
3516eda14cbcSMatt Macy 
3517eda14cbcSMatt Macy static int
3518180f8225SMatt Macy zil_replay_error(zilog_t *zilog, const lr_t *lr, int error)
3519eda14cbcSMatt Macy {
3520eda14cbcSMatt Macy 	char name[ZFS_MAX_DATASET_NAME_LEN];
3521eda14cbcSMatt Macy 
3522eda14cbcSMatt Macy 	zilog->zl_replaying_seq--;	/* didn't actually replay this one */
3523eda14cbcSMatt Macy 
3524eda14cbcSMatt Macy 	dmu_objset_name(zilog->zl_os, name);
3525eda14cbcSMatt Macy 
3526eda14cbcSMatt Macy 	cmn_err(CE_WARN, "ZFS replay transaction error %d, "
3527eda14cbcSMatt Macy 	    "dataset %s, seq 0x%llx, txtype %llu %s\n", error, name,
3528eda14cbcSMatt Macy 	    (u_longlong_t)lr->lrc_seq,
3529eda14cbcSMatt Macy 	    (u_longlong_t)(lr->lrc_txtype & ~TX_CI),
3530eda14cbcSMatt Macy 	    (lr->lrc_txtype & TX_CI) ? "CI" : "");
3531eda14cbcSMatt Macy 
3532eda14cbcSMatt Macy 	return (error);
3533eda14cbcSMatt Macy }
3534eda14cbcSMatt Macy 
3535eda14cbcSMatt Macy static int
3536180f8225SMatt Macy zil_replay_log_record(zilog_t *zilog, const lr_t *lr, void *zra,
3537180f8225SMatt Macy     uint64_t claim_txg)
3538eda14cbcSMatt Macy {
3539eda14cbcSMatt Macy 	zil_replay_arg_t *zr = zra;
3540eda14cbcSMatt Macy 	const zil_header_t *zh = zilog->zl_header;
3541eda14cbcSMatt Macy 	uint64_t reclen = lr->lrc_reclen;
3542eda14cbcSMatt Macy 	uint64_t txtype = lr->lrc_txtype;
3543eda14cbcSMatt Macy 	int error = 0;
3544eda14cbcSMatt Macy 
3545eda14cbcSMatt Macy 	zilog->zl_replaying_seq = lr->lrc_seq;
3546eda14cbcSMatt Macy 
3547eda14cbcSMatt Macy 	if (lr->lrc_seq <= zh->zh_replay_seq)	/* already replayed */
3548eda14cbcSMatt Macy 		return (0);
3549eda14cbcSMatt Macy 
3550eda14cbcSMatt Macy 	if (lr->lrc_txg < claim_txg)		/* already committed */
3551eda14cbcSMatt Macy 		return (0);
3552eda14cbcSMatt Macy 
3553eda14cbcSMatt Macy 	/* Strip case-insensitive bit, still present in log record */
3554eda14cbcSMatt Macy 	txtype &= ~TX_CI;
3555eda14cbcSMatt Macy 
3556eda14cbcSMatt Macy 	if (txtype == 0 || txtype >= TX_MAX_TYPE)
3557eda14cbcSMatt Macy 		return (zil_replay_error(zilog, lr, EINVAL));
3558eda14cbcSMatt Macy 
3559eda14cbcSMatt Macy 	/*
3560eda14cbcSMatt Macy 	 * If this record type can be logged out of order, the object
3561eda14cbcSMatt Macy 	 * (lr_foid) may no longer exist.  That's legitimate, not an error.
3562eda14cbcSMatt Macy 	 */
3563eda14cbcSMatt Macy 	if (TX_OOO(txtype)) {
3564eda14cbcSMatt Macy 		error = dmu_object_info(zilog->zl_os,
3565eda14cbcSMatt Macy 		    LR_FOID_GET_OBJ(((lr_ooo_t *)lr)->lr_foid), NULL);
3566eda14cbcSMatt Macy 		if (error == ENOENT || error == EEXIST)
3567eda14cbcSMatt Macy 			return (0);
3568eda14cbcSMatt Macy 	}
3569eda14cbcSMatt Macy 
3570eda14cbcSMatt Macy 	/*
3571eda14cbcSMatt Macy 	 * Make a copy of the data so we can revise and extend it.
3572eda14cbcSMatt Macy 	 */
3573eda14cbcSMatt Macy 	bcopy(lr, zr->zr_lr, reclen);
3574eda14cbcSMatt Macy 
3575eda14cbcSMatt Macy 	/*
3576eda14cbcSMatt Macy 	 * If this is a TX_WRITE with a blkptr, suck in the data.
3577eda14cbcSMatt Macy 	 */
3578eda14cbcSMatt Macy 	if (txtype == TX_WRITE && reclen == sizeof (lr_write_t)) {
3579eda14cbcSMatt Macy 		error = zil_read_log_data(zilog, (lr_write_t *)lr,
3580eda14cbcSMatt Macy 		    zr->zr_lr + reclen);
3581eda14cbcSMatt Macy 		if (error != 0)
3582eda14cbcSMatt Macy 			return (zil_replay_error(zilog, lr, error));
3583eda14cbcSMatt Macy 	}
3584eda14cbcSMatt Macy 
3585eda14cbcSMatt Macy 	/*
3586eda14cbcSMatt Macy 	 * The log block containing this lr may have been byteswapped
3587eda14cbcSMatt Macy 	 * so that we can easily examine common fields like lrc_txtype.
3588eda14cbcSMatt Macy 	 * However, the log is a mix of different record types, and only the
3589eda14cbcSMatt Macy 	 * replay vectors know how to byteswap their records.  Therefore, if
3590eda14cbcSMatt Macy 	 * the lr was byteswapped, undo it before invoking the replay vector.
3591eda14cbcSMatt Macy 	 */
3592eda14cbcSMatt Macy 	if (zr->zr_byteswap)
3593eda14cbcSMatt Macy 		byteswap_uint64_array(zr->zr_lr, reclen);
3594eda14cbcSMatt Macy 
3595eda14cbcSMatt Macy 	/*
3596eda14cbcSMatt Macy 	 * We must now do two things atomically: replay this log record,
3597eda14cbcSMatt Macy 	 * and update the log header sequence number to reflect the fact that
3598eda14cbcSMatt Macy 	 * we did so. At the end of each replay function the sequence number
3599eda14cbcSMatt Macy 	 * is updated if we are in replay mode.
3600eda14cbcSMatt Macy 	 */
3601eda14cbcSMatt Macy 	error = zr->zr_replay[txtype](zr->zr_arg, zr->zr_lr, zr->zr_byteswap);
3602eda14cbcSMatt Macy 	if (error != 0) {
3603eda14cbcSMatt Macy 		/*
3604eda14cbcSMatt Macy 		 * The DMU's dnode layer doesn't see removes until the txg
3605eda14cbcSMatt Macy 		 * commits, so a subsequent claim can spuriously fail with
3606eda14cbcSMatt Macy 		 * EEXIST. So if we receive any error we try syncing out
3607eda14cbcSMatt Macy 		 * any removes then retry the transaction.  Note that we
3608eda14cbcSMatt Macy 		 * specify B_FALSE for byteswap now, so we don't do it twice.
3609eda14cbcSMatt Macy 		 */
3610eda14cbcSMatt Macy 		txg_wait_synced(spa_get_dsl(zilog->zl_spa), 0);
3611eda14cbcSMatt Macy 		error = zr->zr_replay[txtype](zr->zr_arg, zr->zr_lr, B_FALSE);
3612eda14cbcSMatt Macy 		if (error != 0)
3613eda14cbcSMatt Macy 			return (zil_replay_error(zilog, lr, error));
3614eda14cbcSMatt Macy 	}
3615eda14cbcSMatt Macy 	return (0);
3616eda14cbcSMatt Macy }
3617eda14cbcSMatt Macy 
3618eda14cbcSMatt Macy /* ARGSUSED */
3619eda14cbcSMatt Macy static int
3620180f8225SMatt Macy zil_incr_blks(zilog_t *zilog, const blkptr_t *bp, void *arg, uint64_t claim_txg)
3621eda14cbcSMatt Macy {
3622eda14cbcSMatt Macy 	zilog->zl_replay_blks++;
3623eda14cbcSMatt Macy 
3624eda14cbcSMatt Macy 	return (0);
3625eda14cbcSMatt Macy }
3626eda14cbcSMatt Macy 
3627eda14cbcSMatt Macy /*
3628eda14cbcSMatt Macy  * If this dataset has a non-empty intent log, replay it and destroy it.
3629eda14cbcSMatt Macy  */
3630eda14cbcSMatt Macy void
3631eda14cbcSMatt Macy zil_replay(objset_t *os, void *arg, zil_replay_func_t *replay_func[TX_MAX_TYPE])
3632eda14cbcSMatt Macy {
3633eda14cbcSMatt Macy 	zilog_t *zilog = dmu_objset_zil(os);
3634eda14cbcSMatt Macy 	const zil_header_t *zh = zilog->zl_header;
3635eda14cbcSMatt Macy 	zil_replay_arg_t zr;
3636eda14cbcSMatt Macy 
3637eda14cbcSMatt Macy 	if ((zh->zh_flags & ZIL_REPLAY_NEEDED) == 0) {
3638eda14cbcSMatt Macy 		zil_destroy(zilog, B_TRUE);
3639eda14cbcSMatt Macy 		return;
3640eda14cbcSMatt Macy 	}
3641eda14cbcSMatt Macy 
3642eda14cbcSMatt Macy 	zr.zr_replay = replay_func;
3643eda14cbcSMatt Macy 	zr.zr_arg = arg;
3644eda14cbcSMatt Macy 	zr.zr_byteswap = BP_SHOULD_BYTESWAP(&zh->zh_log);
3645eda14cbcSMatt Macy 	zr.zr_lr = vmem_alloc(2 * SPA_MAXBLOCKSIZE, KM_SLEEP);
3646eda14cbcSMatt Macy 
3647eda14cbcSMatt Macy 	/*
3648eda14cbcSMatt Macy 	 * Wait for in-progress removes to sync before starting replay.
3649eda14cbcSMatt Macy 	 */
3650eda14cbcSMatt Macy 	txg_wait_synced(zilog->zl_dmu_pool, 0);
3651eda14cbcSMatt Macy 
3652eda14cbcSMatt Macy 	zilog->zl_replay = B_TRUE;
3653eda14cbcSMatt Macy 	zilog->zl_replay_time = ddi_get_lbolt();
3654eda14cbcSMatt Macy 	ASSERT(zilog->zl_replay_blks == 0);
3655eda14cbcSMatt Macy 	(void) zil_parse(zilog, zil_incr_blks, zil_replay_log_record, &zr,
3656eda14cbcSMatt Macy 	    zh->zh_claim_txg, B_TRUE);
3657eda14cbcSMatt Macy 	vmem_free(zr.zr_lr, 2 * SPA_MAXBLOCKSIZE);
3658eda14cbcSMatt Macy 
3659eda14cbcSMatt Macy 	zil_destroy(zilog, B_FALSE);
3660eda14cbcSMatt Macy 	txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg);
3661eda14cbcSMatt Macy 	zilog->zl_replay = B_FALSE;
3662eda14cbcSMatt Macy }
3663eda14cbcSMatt Macy 
3664eda14cbcSMatt Macy boolean_t
3665eda14cbcSMatt Macy zil_replaying(zilog_t *zilog, dmu_tx_t *tx)
3666eda14cbcSMatt Macy {
3667eda14cbcSMatt Macy 	if (zilog->zl_sync == ZFS_SYNC_DISABLED)
3668eda14cbcSMatt Macy 		return (B_TRUE);
3669eda14cbcSMatt Macy 
3670eda14cbcSMatt Macy 	if (zilog->zl_replay) {
3671eda14cbcSMatt Macy 		dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx);
3672eda14cbcSMatt Macy 		zilog->zl_replayed_seq[dmu_tx_get_txg(tx) & TXG_MASK] =
3673eda14cbcSMatt Macy 		    zilog->zl_replaying_seq;
3674eda14cbcSMatt Macy 		return (B_TRUE);
3675eda14cbcSMatt Macy 	}
3676eda14cbcSMatt Macy 
3677eda14cbcSMatt Macy 	return (B_FALSE);
3678eda14cbcSMatt Macy }
3679eda14cbcSMatt Macy 
3680eda14cbcSMatt Macy /* ARGSUSED */
3681eda14cbcSMatt Macy int
3682eda14cbcSMatt Macy zil_reset(const char *osname, void *arg)
3683eda14cbcSMatt Macy {
3684eda14cbcSMatt Macy 	int error;
3685eda14cbcSMatt Macy 
3686eda14cbcSMatt Macy 	error = zil_suspend(osname, NULL);
3687eda14cbcSMatt Macy 	/* EACCES means crypto key not loaded */
3688eda14cbcSMatt Macy 	if ((error == EACCES) || (error == EBUSY))
3689eda14cbcSMatt Macy 		return (SET_ERROR(error));
3690eda14cbcSMatt Macy 	if (error != 0)
3691eda14cbcSMatt Macy 		return (SET_ERROR(EEXIST));
3692eda14cbcSMatt Macy 	return (0);
3693eda14cbcSMatt Macy }
3694eda14cbcSMatt Macy 
3695eda14cbcSMatt Macy EXPORT_SYMBOL(zil_alloc);
3696eda14cbcSMatt Macy EXPORT_SYMBOL(zil_free);
3697eda14cbcSMatt Macy EXPORT_SYMBOL(zil_open);
3698eda14cbcSMatt Macy EXPORT_SYMBOL(zil_close);
3699eda14cbcSMatt Macy EXPORT_SYMBOL(zil_replay);
3700eda14cbcSMatt Macy EXPORT_SYMBOL(zil_replaying);
3701eda14cbcSMatt Macy EXPORT_SYMBOL(zil_destroy);
3702eda14cbcSMatt Macy EXPORT_SYMBOL(zil_destroy_sync);
3703eda14cbcSMatt Macy EXPORT_SYMBOL(zil_itx_create);
3704eda14cbcSMatt Macy EXPORT_SYMBOL(zil_itx_destroy);
3705eda14cbcSMatt Macy EXPORT_SYMBOL(zil_itx_assign);
3706eda14cbcSMatt Macy EXPORT_SYMBOL(zil_commit);
3707eda14cbcSMatt Macy EXPORT_SYMBOL(zil_claim);
3708eda14cbcSMatt Macy EXPORT_SYMBOL(zil_check_log_chain);
3709eda14cbcSMatt Macy EXPORT_SYMBOL(zil_sync);
3710eda14cbcSMatt Macy EXPORT_SYMBOL(zil_clean);
3711eda14cbcSMatt Macy EXPORT_SYMBOL(zil_suspend);
3712eda14cbcSMatt Macy EXPORT_SYMBOL(zil_resume);
3713eda14cbcSMatt Macy EXPORT_SYMBOL(zil_lwb_add_block);
3714eda14cbcSMatt Macy EXPORT_SYMBOL(zil_bp_tree_add);
3715eda14cbcSMatt Macy EXPORT_SYMBOL(zil_set_sync);
3716eda14cbcSMatt Macy EXPORT_SYMBOL(zil_set_logbias);
3717eda14cbcSMatt Macy 
3718eda14cbcSMatt Macy /* BEGIN CSTYLED */
3719eda14cbcSMatt Macy ZFS_MODULE_PARAM(zfs, zfs_, commit_timeout_pct, INT, ZMOD_RW,
3720eda14cbcSMatt Macy 	"ZIL block open timeout percentage");
3721eda14cbcSMatt Macy 
3722eda14cbcSMatt Macy ZFS_MODULE_PARAM(zfs_zil, zil_, replay_disable, INT, ZMOD_RW,
3723eda14cbcSMatt Macy 	"Disable intent logging replay");
3724eda14cbcSMatt Macy 
3725eda14cbcSMatt Macy ZFS_MODULE_PARAM(zfs_zil, zil_, nocacheflush, INT, ZMOD_RW,
3726eda14cbcSMatt Macy 	"Disable ZIL cache flushes");
3727eda14cbcSMatt Macy 
3728eda14cbcSMatt Macy ZFS_MODULE_PARAM(zfs_zil, zil_, slog_bulk, ULONG, ZMOD_RW,
3729eda14cbcSMatt Macy 	"Limit in bytes slog sync writes per commit");
3730eda14cbcSMatt Macy 
3731eda14cbcSMatt Macy ZFS_MODULE_PARAM(zfs_zil, zil_, maxblocksize, INT, ZMOD_RW,
3732eda14cbcSMatt Macy 	"Limit in bytes of ZIL log block size");
3733eda14cbcSMatt Macy /* END CSTYLED */
3734