xref: /onnv-gate/usr/src/uts/common/fs/zfs/zil.c (revision 5688:c0b02c8fd2c0)
1789Sahrens /*
2789Sahrens  * CDDL HEADER START
3789Sahrens  *
4789Sahrens  * The contents of this file are subject to the terms of the
51472Sperrin  * Common Development and Distribution License (the "License").
61472Sperrin  * You may not use this file except in compliance with the License.
7789Sahrens  *
8789Sahrens  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9789Sahrens  * or http://www.opensolaris.org/os/licensing.
10789Sahrens  * See the License for the specific language governing permissions
11789Sahrens  * and limitations under the License.
12789Sahrens  *
13789Sahrens  * When distributing Covered Code, include this CDDL HEADER in each
14789Sahrens  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15789Sahrens  * If applicable, add the following below this CDDL HEADER, with the
16789Sahrens  * fields enclosed by brackets "[]" replaced with your own identifying
17789Sahrens  * information: Portions Copyright [yyyy] [name of copyright owner]
18789Sahrens  *
19789Sahrens  * CDDL HEADER END
20789Sahrens  */
21789Sahrens /*
223461Sahrens  * Copyright 2007 Sun Microsystems, Inc.  All rights reserved.
23789Sahrens  * Use is subject to license terms.
24789Sahrens  */
25789Sahrens 
26789Sahrens #pragma ident	"%Z%%M%	%I%	%E% SMI"
27789Sahrens 
28789Sahrens #include <sys/zfs_context.h>
29789Sahrens #include <sys/spa.h>
30789Sahrens #include <sys/dmu.h>
31789Sahrens #include <sys/zap.h>
32789Sahrens #include <sys/arc.h>
33789Sahrens #include <sys/stat.h>
34789Sahrens #include <sys/resource.h>
35789Sahrens #include <sys/zil.h>
36789Sahrens #include <sys/zil_impl.h>
37789Sahrens #include <sys/dsl_dataset.h>
38789Sahrens #include <sys/vdev.h>
393668Sgw25295 #include <sys/dmu_tx.h>
40789Sahrens 
41789Sahrens /*
42789Sahrens  * The zfs intent log (ZIL) saves transaction records of system calls
43789Sahrens  * that change the file system in memory with enough information
44789Sahrens  * to be able to replay them. These are stored in memory until
45789Sahrens  * either the DMU transaction group (txg) commits them to the stable pool
46789Sahrens  * and they can be discarded, or they are flushed to the stable log
47789Sahrens  * (also in the pool) due to a fsync, O_DSYNC or other synchronous
48789Sahrens  * requirement. In the event of a panic or power fail then those log
49789Sahrens  * records (transactions) are replayed.
50789Sahrens  *
51789Sahrens  * There is one ZIL per file system. Its on-disk (pool) format consists
52789Sahrens  * of 3 parts:
53789Sahrens  *
54789Sahrens  * 	- ZIL header
55789Sahrens  * 	- ZIL blocks
56789Sahrens  * 	- ZIL records
57789Sahrens  *
58789Sahrens  * A log record holds a system call transaction. Log blocks can
59789Sahrens  * hold many log records and the blocks are chained together.
60789Sahrens  * Each ZIL block contains a block pointer (blkptr_t) to the next
61789Sahrens  * ZIL block in the chain. The ZIL header points to the first
62789Sahrens  * block in the chain. Note there is not a fixed place in the pool
63789Sahrens  * to hold blocks. They are dynamically allocated and freed as
64789Sahrens  * needed from the blocks available. Figure X shows the ZIL structure:
65789Sahrens  */
66789Sahrens 
67789Sahrens /*
682986Sek110237  * This global ZIL switch affects all pools
69789Sahrens  */
70789Sahrens int zil_disable = 0;	/* disable intent logging */
712986Sek110237 
722986Sek110237 /*
732986Sek110237  * Tunable parameter for debugging or performance analysis.  Setting
742986Sek110237  * zfs_nocacheflush will cause corruption on power loss if a volatile
752986Sek110237  * out-of-order write cache is enabled.
762986Sek110237  */
772986Sek110237 boolean_t zfs_nocacheflush = B_FALSE;
78789Sahrens 
79789Sahrens static kmem_cache_t *zil_lwb_cache;
80789Sahrens 
81789Sahrens static int
82789Sahrens zil_dva_compare(const void *x1, const void *x2)
83789Sahrens {
84789Sahrens 	const dva_t *dva1 = x1;
85789Sahrens 	const dva_t *dva2 = x2;
86789Sahrens 
87789Sahrens 	if (DVA_GET_VDEV(dva1) < DVA_GET_VDEV(dva2))
88789Sahrens 		return (-1);
89789Sahrens 	if (DVA_GET_VDEV(dva1) > DVA_GET_VDEV(dva2))
90789Sahrens 		return (1);
91789Sahrens 
92789Sahrens 	if (DVA_GET_OFFSET(dva1) < DVA_GET_OFFSET(dva2))
93789Sahrens 		return (-1);
94789Sahrens 	if (DVA_GET_OFFSET(dva1) > DVA_GET_OFFSET(dva2))
95789Sahrens 		return (1);
96789Sahrens 
97789Sahrens 	return (0);
98789Sahrens }
99789Sahrens 
100789Sahrens static void
101789Sahrens zil_dva_tree_init(avl_tree_t *t)
102789Sahrens {
103789Sahrens 	avl_create(t, zil_dva_compare, sizeof (zil_dva_node_t),
104789Sahrens 	    offsetof(zil_dva_node_t, zn_node));
105789Sahrens }
106789Sahrens 
107789Sahrens static void
108789Sahrens zil_dva_tree_fini(avl_tree_t *t)
109789Sahrens {
110789Sahrens 	zil_dva_node_t *zn;
111789Sahrens 	void *cookie = NULL;
112789Sahrens 
113789Sahrens 	while ((zn = avl_destroy_nodes(t, &cookie)) != NULL)
114789Sahrens 		kmem_free(zn, sizeof (zil_dva_node_t));
115789Sahrens 
116789Sahrens 	avl_destroy(t);
117789Sahrens }
118789Sahrens 
119789Sahrens static int
120789Sahrens zil_dva_tree_add(avl_tree_t *t, dva_t *dva)
121789Sahrens {
122789Sahrens 	zil_dva_node_t *zn;
123789Sahrens 	avl_index_t where;
124789Sahrens 
125789Sahrens 	if (avl_find(t, dva, &where) != NULL)
126789Sahrens 		return (EEXIST);
127789Sahrens 
128789Sahrens 	zn = kmem_alloc(sizeof (zil_dva_node_t), KM_SLEEP);
129789Sahrens 	zn->zn_dva = *dva;
130789Sahrens 	avl_insert(t, zn, where);
131789Sahrens 
132789Sahrens 	return (0);
133789Sahrens }
134789Sahrens 
1351807Sbonwick static zil_header_t *
1361807Sbonwick zil_header_in_syncing_context(zilog_t *zilog)
1371807Sbonwick {
1381807Sbonwick 	return ((zil_header_t *)zilog->zl_header);
1391807Sbonwick }
1401807Sbonwick 
1411807Sbonwick static void
1421807Sbonwick zil_init_log_chain(zilog_t *zilog, blkptr_t *bp)
1431807Sbonwick {
1441807Sbonwick 	zio_cksum_t *zc = &bp->blk_cksum;
1451807Sbonwick 
1461807Sbonwick 	zc->zc_word[ZIL_ZC_GUID_0] = spa_get_random(-1ULL);
1471807Sbonwick 	zc->zc_word[ZIL_ZC_GUID_1] = spa_get_random(-1ULL);
1481807Sbonwick 	zc->zc_word[ZIL_ZC_OBJSET] = dmu_objset_id(zilog->zl_os);
1491807Sbonwick 	zc->zc_word[ZIL_ZC_SEQ] = 1ULL;
1501807Sbonwick }
1511807Sbonwick 
152789Sahrens /*
153789Sahrens  * Read a log block, make sure it's valid, and byteswap it if necessary.
154789Sahrens  */
155789Sahrens static int
1561807Sbonwick zil_read_log_block(zilog_t *zilog, const blkptr_t *bp, arc_buf_t **abufpp)
157789Sahrens {
1581807Sbonwick 	blkptr_t blk = *bp;
1591544Seschrock 	zbookmark_t zb;
1602391Smaybee 	uint32_t aflags = ARC_WAIT;
161789Sahrens 	int error;
162789Sahrens 
1631807Sbonwick 	zb.zb_objset = bp->blk_cksum.zc_word[ZIL_ZC_OBJSET];
1641544Seschrock 	zb.zb_object = 0;
1651544Seschrock 	zb.zb_level = -1;
1661807Sbonwick 	zb.zb_blkid = bp->blk_cksum.zc_word[ZIL_ZC_SEQ];
1671807Sbonwick 
1681807Sbonwick 	*abufpp = NULL;
1691807Sbonwick 
1701807Sbonwick 	error = arc_read(NULL, zilog->zl_spa, &blk, byteswap_uint64_array,
1711807Sbonwick 	    arc_getbuf_func, abufpp, ZIO_PRIORITY_SYNC_READ, ZIO_FLAG_CANFAIL |
1722391Smaybee 	    ZIO_FLAG_SPECULATIVE | ZIO_FLAG_SCRUB, &aflags, &zb);
1731807Sbonwick 
1741807Sbonwick 	if (error == 0) {
1751807Sbonwick 		char *data = (*abufpp)->b_data;
1761807Sbonwick 		uint64_t blksz = BP_GET_LSIZE(bp);
1771807Sbonwick 		zil_trailer_t *ztp = (zil_trailer_t *)(data + blksz) - 1;
1781807Sbonwick 		zio_cksum_t cksum = bp->blk_cksum;
1791544Seschrock 
1801807Sbonwick 		/*
1811807Sbonwick 		 * Sequence numbers should be... sequential.  The checksum
1821807Sbonwick 		 * verifier for the next block should be bp's checksum plus 1.
1831807Sbonwick 		 */
1841807Sbonwick 		cksum.zc_word[ZIL_ZC_SEQ]++;
1851807Sbonwick 
1861807Sbonwick 		if (bcmp(&cksum, &ztp->zit_next_blk.blk_cksum, sizeof (cksum)))
1871807Sbonwick 			error = ESTALE;
1881807Sbonwick 		else if (BP_IS_HOLE(&ztp->zit_next_blk))
1891807Sbonwick 			error = ENOENT;
1901807Sbonwick 		else if (ztp->zit_nused > (blksz - sizeof (zil_trailer_t)))
1911807Sbonwick 			error = EOVERFLOW;
1921807Sbonwick 
1931807Sbonwick 		if (error) {
1941807Sbonwick 			VERIFY(arc_buf_remove_ref(*abufpp, abufpp) == 1);
1951807Sbonwick 			*abufpp = NULL;
1961807Sbonwick 		}
197789Sahrens 	}
198789Sahrens 
1991807Sbonwick 	dprintf("error %d on %llu:%llu\n", error, zb.zb_objset, zb.zb_blkid);
200789Sahrens 
2011807Sbonwick 	return (error);
202789Sahrens }
203789Sahrens 
204789Sahrens /*
205789Sahrens  * Parse the intent log, and call parse_func for each valid record within.
2061807Sbonwick  * Return the highest sequence number.
207789Sahrens  */
2081807Sbonwick uint64_t
209789Sahrens zil_parse(zilog_t *zilog, zil_parse_blk_func_t *parse_blk_func,
210789Sahrens     zil_parse_lr_func_t *parse_lr_func, void *arg, uint64_t txg)
211789Sahrens {
2121807Sbonwick 	const zil_header_t *zh = zilog->zl_header;
2131807Sbonwick 	uint64_t claim_seq = zh->zh_claim_seq;
2141807Sbonwick 	uint64_t seq = 0;
2151807Sbonwick 	uint64_t max_seq = 0;
2161807Sbonwick 	blkptr_t blk = zh->zh_log;
2171807Sbonwick 	arc_buf_t *abuf;
218789Sahrens 	char *lrbuf, *lrp;
219789Sahrens 	zil_trailer_t *ztp;
220789Sahrens 	int reclen, error;
221789Sahrens 
222789Sahrens 	if (BP_IS_HOLE(&blk))
2231807Sbonwick 		return (max_seq);
224789Sahrens 
225789Sahrens 	/*
226789Sahrens 	 * Starting at the block pointed to by zh_log we read the log chain.
227789Sahrens 	 * For each block in the chain we strongly check that block to
228789Sahrens 	 * ensure its validity.  We stop when an invalid block is found.
229789Sahrens 	 * For each block pointer in the chain we call parse_blk_func().
230789Sahrens 	 * For each record in each valid block we call parse_lr_func().
2311807Sbonwick 	 * If the log has been claimed, stop if we encounter a sequence
2321807Sbonwick 	 * number greater than the highest claimed sequence number.
233789Sahrens 	 */
234789Sahrens 	zil_dva_tree_init(&zilog->zl_dva_tree);
235789Sahrens 	for (;;) {
2361807Sbonwick 		seq = blk.blk_cksum.zc_word[ZIL_ZC_SEQ];
2371807Sbonwick 
2381807Sbonwick 		if (claim_seq != 0 && seq > claim_seq)
2391807Sbonwick 			break;
2401807Sbonwick 
2411807Sbonwick 		ASSERT(max_seq < seq);
2421807Sbonwick 		max_seq = seq;
2431807Sbonwick 
2441807Sbonwick 		error = zil_read_log_block(zilog, &blk, &abuf);
245789Sahrens 
246789Sahrens 		if (parse_blk_func != NULL)
247789Sahrens 			parse_blk_func(zilog, &blk, arg, txg);
248789Sahrens 
249789Sahrens 		if (error)
250789Sahrens 			break;
251789Sahrens 
2521807Sbonwick 		lrbuf = abuf->b_data;
253789Sahrens 		ztp = (zil_trailer_t *)(lrbuf + BP_GET_LSIZE(&blk)) - 1;
254789Sahrens 		blk = ztp->zit_next_blk;
255789Sahrens 
2561807Sbonwick 		if (parse_lr_func == NULL) {
2571807Sbonwick 			VERIFY(arc_buf_remove_ref(abuf, &abuf) == 1);
258789Sahrens 			continue;
2591807Sbonwick 		}
260789Sahrens 
261789Sahrens 		for (lrp = lrbuf; lrp < lrbuf + ztp->zit_nused; lrp += reclen) {
262789Sahrens 			lr_t *lr = (lr_t *)lrp;
263789Sahrens 			reclen = lr->lrc_reclen;
264789Sahrens 			ASSERT3U(reclen, >=, sizeof (lr_t));
265789Sahrens 			parse_lr_func(zilog, lr, arg, txg);
266789Sahrens 		}
2671807Sbonwick 		VERIFY(arc_buf_remove_ref(abuf, &abuf) == 1);
268789Sahrens 	}
269789Sahrens 	zil_dva_tree_fini(&zilog->zl_dva_tree);
2701807Sbonwick 
2711807Sbonwick 	return (max_seq);
272789Sahrens }
273789Sahrens 
274789Sahrens /* ARGSUSED */
275789Sahrens static void
276789Sahrens zil_claim_log_block(zilog_t *zilog, blkptr_t *bp, void *tx, uint64_t first_txg)
277789Sahrens {
278789Sahrens 	spa_t *spa = zilog->zl_spa;
279789Sahrens 	int err;
280789Sahrens 
281789Sahrens 	/*
282789Sahrens 	 * Claim log block if not already committed and not already claimed.
283789Sahrens 	 */
284789Sahrens 	if (bp->blk_birth >= first_txg &&
285789Sahrens 	    zil_dva_tree_add(&zilog->zl_dva_tree, BP_IDENTITY(bp)) == 0) {
286789Sahrens 		err = zio_wait(zio_claim(NULL, spa, first_txg, bp, NULL, NULL));
287789Sahrens 		ASSERT(err == 0);
288789Sahrens 	}
289789Sahrens }
290789Sahrens 
291789Sahrens static void
292789Sahrens zil_claim_log_record(zilog_t *zilog, lr_t *lrc, void *tx, uint64_t first_txg)
293789Sahrens {
294789Sahrens 	if (lrc->lrc_txtype == TX_WRITE) {
295789Sahrens 		lr_write_t *lr = (lr_write_t *)lrc;
296789Sahrens 		zil_claim_log_block(zilog, &lr->lr_blkptr, tx, first_txg);
297789Sahrens 	}
298789Sahrens }
299789Sahrens 
300789Sahrens /* ARGSUSED */
301789Sahrens static void
302789Sahrens zil_free_log_block(zilog_t *zilog, blkptr_t *bp, void *tx, uint64_t claim_txg)
303789Sahrens {
304789Sahrens 	zio_free_blk(zilog->zl_spa, bp, dmu_tx_get_txg(tx));
305789Sahrens }
306789Sahrens 
307789Sahrens static void
308789Sahrens zil_free_log_record(zilog_t *zilog, lr_t *lrc, void *tx, uint64_t claim_txg)
309789Sahrens {
310789Sahrens 	/*
311789Sahrens 	 * If we previously claimed it, we need to free it.
312789Sahrens 	 */
313789Sahrens 	if (claim_txg != 0 && lrc->lrc_txtype == TX_WRITE) {
314789Sahrens 		lr_write_t *lr = (lr_write_t *)lrc;
315789Sahrens 		blkptr_t *bp = &lr->lr_blkptr;
316789Sahrens 		if (bp->blk_birth >= claim_txg &&
317789Sahrens 		    !zil_dva_tree_add(&zilog->zl_dva_tree, BP_IDENTITY(bp))) {
318789Sahrens 			(void) arc_free(NULL, zilog->zl_spa,
319789Sahrens 			    dmu_tx_get_txg(tx), bp, NULL, NULL, ARC_WAIT);
320789Sahrens 		}
321789Sahrens 	}
322789Sahrens }
323789Sahrens 
324789Sahrens /*
325789Sahrens  * Create an on-disk intent log.
326789Sahrens  */
327789Sahrens static void
328789Sahrens zil_create(zilog_t *zilog)
329789Sahrens {
3301807Sbonwick 	const zil_header_t *zh = zilog->zl_header;
331789Sahrens 	lwb_t *lwb;
3321807Sbonwick 	uint64_t txg = 0;
3331807Sbonwick 	dmu_tx_t *tx = NULL;
334789Sahrens 	blkptr_t blk;
3351807Sbonwick 	int error = 0;
336789Sahrens 
337789Sahrens 	/*
3381807Sbonwick 	 * Wait for any previous destroy to complete.
339789Sahrens 	 */
3401807Sbonwick 	txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg);
3411807Sbonwick 
3421807Sbonwick 	ASSERT(zh->zh_claim_txg == 0);
3431807Sbonwick 	ASSERT(zh->zh_replay_seq == 0);
3441807Sbonwick 
3451807Sbonwick 	blk = zh->zh_log;
346789Sahrens 
347789Sahrens 	/*
3481807Sbonwick 	 * If we don't already have an initial log block, allocate one now.
349789Sahrens 	 */
3501807Sbonwick 	if (BP_IS_HOLE(&blk)) {
3511807Sbonwick 		tx = dmu_tx_create(zilog->zl_os);
3521807Sbonwick 		(void) dmu_tx_assign(tx, TXG_WAIT);
3531807Sbonwick 		dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx);
3541807Sbonwick 		txg = dmu_tx_get_txg(tx);
3551807Sbonwick 
3563063Sperrin 		error = zio_alloc_blk(zilog->zl_spa, ZIL_MIN_BLKSZ, &blk,
3573063Sperrin 		    NULL, txg);
3581807Sbonwick 
3591807Sbonwick 		if (error == 0)
3601807Sbonwick 			zil_init_log_chain(zilog, &blk);
3611362Sperrin 	}
3621807Sbonwick 
3631807Sbonwick 	/*
3641807Sbonwick 	 * Allocate a log write buffer (lwb) for the first log block.
3651807Sbonwick 	 */
366789Sahrens 	if (error == 0) {
367789Sahrens 		lwb = kmem_cache_alloc(zil_lwb_cache, KM_SLEEP);
368789Sahrens 		lwb->lwb_zilog = zilog;
369789Sahrens 		lwb->lwb_blk = blk;
370789Sahrens 		lwb->lwb_nused = 0;
371789Sahrens 		lwb->lwb_sz = BP_GET_LSIZE(&lwb->lwb_blk);
372789Sahrens 		lwb->lwb_buf = zio_buf_alloc(lwb->lwb_sz);
373789Sahrens 		lwb->lwb_max_txg = txg;
3742237Smaybee 		lwb->lwb_zio = NULL;
3752237Smaybee 
376789Sahrens 		mutex_enter(&zilog->zl_lock);
377789Sahrens 		list_insert_tail(&zilog->zl_lwb_list, lwb);
378789Sahrens 		mutex_exit(&zilog->zl_lock);
379789Sahrens 	}
380789Sahrens 
3811807Sbonwick 	/*
3821807Sbonwick 	 * If we just allocated the first log block, commit our transaction
3831807Sbonwick 	 * and wait for zil_sync() to stuff the block poiner into zh_log.
3841807Sbonwick 	 * (zh is part of the MOS, so we cannot modify it in open context.)
3851807Sbonwick 	 */
3861807Sbonwick 	if (tx != NULL) {
3871807Sbonwick 		dmu_tx_commit(tx);
3881362Sperrin 		txg_wait_synced(zilog->zl_dmu_pool, txg);
3891807Sbonwick 	}
3901807Sbonwick 
3911807Sbonwick 	ASSERT(bcmp(&blk, &zh->zh_log, sizeof (blk)) == 0);
392789Sahrens }
393789Sahrens 
394789Sahrens /*
395789Sahrens  * In one tx, free all log blocks and clear the log header.
3961807Sbonwick  * If keep_first is set, then we're replaying a log with no content.
3971807Sbonwick  * We want to keep the first block, however, so that the first
3981807Sbonwick  * synchronous transaction doesn't require a txg_wait_synced()
3991807Sbonwick  * in zil_create().  We don't need to txg_wait_synced() here either
4001807Sbonwick  * when keep_first is set, because both zil_create() and zil_destroy()
4011807Sbonwick  * will wait for any in-progress destroys to complete.
402789Sahrens  */
403789Sahrens void
4041807Sbonwick zil_destroy(zilog_t *zilog, boolean_t keep_first)
405789Sahrens {
4061807Sbonwick 	const zil_header_t *zh = zilog->zl_header;
4071807Sbonwick 	lwb_t *lwb;
408789Sahrens 	dmu_tx_t *tx;
409789Sahrens 	uint64_t txg;
410789Sahrens 
4111807Sbonwick 	/*
4121807Sbonwick 	 * Wait for any previous destroy to complete.
4131807Sbonwick 	 */
4141807Sbonwick 	txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg);
415789Sahrens 
4161807Sbonwick 	if (BP_IS_HOLE(&zh->zh_log))
417789Sahrens 		return;
418789Sahrens 
419789Sahrens 	tx = dmu_tx_create(zilog->zl_os);
420789Sahrens 	(void) dmu_tx_assign(tx, TXG_WAIT);
421789Sahrens 	dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx);
422789Sahrens 	txg = dmu_tx_get_txg(tx);
423789Sahrens 
4241807Sbonwick 	mutex_enter(&zilog->zl_lock);
4251807Sbonwick 
4265223Sperrin 	/*
4275223Sperrin 	 * It is possible for the ZIL to get the previously mounted zilog
4285223Sperrin 	 * structure of the same dataset if quickly remounted and the dbuf
4295223Sperrin 	 * eviction has not completed. In this case we can see a non
4305223Sperrin 	 * empty lwb list and keep_first will be set. We fix this by
4315223Sperrin 	 * clearing the keep_first. This will be slower but it's very rare.
4325223Sperrin 	 */
4335223Sperrin 	if (!list_is_empty(&zilog->zl_lwb_list) && keep_first)
4345223Sperrin 		keep_first = B_FALSE;
4355223Sperrin 
4361807Sbonwick 	ASSERT3U(zilog->zl_destroy_txg, <, txg);
437789Sahrens 	zilog->zl_destroy_txg = txg;
4381807Sbonwick 	zilog->zl_keep_first = keep_first;
4391807Sbonwick 
4401807Sbonwick 	if (!list_is_empty(&zilog->zl_lwb_list)) {
4411807Sbonwick 		ASSERT(zh->zh_claim_txg == 0);
4421807Sbonwick 		ASSERT(!keep_first);
4431807Sbonwick 		while ((lwb = list_head(&zilog->zl_lwb_list)) != NULL) {
4441807Sbonwick 			list_remove(&zilog->zl_lwb_list, lwb);
4451807Sbonwick 			if (lwb->lwb_buf != NULL)
4461807Sbonwick 				zio_buf_free(lwb->lwb_buf, lwb->lwb_sz);
4471807Sbonwick 			zio_free_blk(zilog->zl_spa, &lwb->lwb_blk, txg);
4481807Sbonwick 			kmem_cache_free(zil_lwb_cache, lwb);
4491807Sbonwick 		}
4501807Sbonwick 	} else {
4511807Sbonwick 		if (!keep_first) {
4521807Sbonwick 			(void) zil_parse(zilog, zil_free_log_block,
4531807Sbonwick 			    zil_free_log_record, tx, zh->zh_claim_txg);
4541807Sbonwick 		}
4551807Sbonwick 	}
4562638Sperrin 	mutex_exit(&zilog->zl_lock);
457789Sahrens 
458789Sahrens 	dmu_tx_commit(tx);
459789Sahrens 
4601807Sbonwick 	if (keep_first)			/* no need to wait in this case */
4611807Sbonwick 		return;
4621807Sbonwick 
4631807Sbonwick 	txg_wait_synced(zilog->zl_dmu_pool, txg);
4641807Sbonwick 	ASSERT(BP_IS_HOLE(&zh->zh_log));
465789Sahrens }
466789Sahrens 
4674935Sperrin /*
4684935Sperrin  * zil_rollback_destroy() is only called by the rollback code.
4694935Sperrin  * We already have a syncing tx. Rollback has exclusive access to the
4704935Sperrin  * dataset, so we don't have to worry about concurrent zil access.
4714935Sperrin  * The actual freeing of any log blocks occurs in zil_sync() later in
4724935Sperrin  * this txg syncing phase.
4734935Sperrin  */
4744935Sperrin void
4754935Sperrin zil_rollback_destroy(zilog_t *zilog, dmu_tx_t *tx)
4764935Sperrin {
4774935Sperrin 	const zil_header_t *zh = zilog->zl_header;
4784935Sperrin 	uint64_t txg;
4794935Sperrin 
4804935Sperrin 	if (BP_IS_HOLE(&zh->zh_log))
4814935Sperrin 		return;
4824935Sperrin 
4834935Sperrin 	txg = dmu_tx_get_txg(tx);
4844935Sperrin 	ASSERT3U(zilog->zl_destroy_txg, <, txg);
4854935Sperrin 	zilog->zl_destroy_txg = txg;
4864935Sperrin 	zilog->zl_keep_first = B_FALSE;
4874935Sperrin 
4884935Sperrin 	ASSERT(list_is_empty(&zilog->zl_lwb_list));
4894935Sperrin 	(void) zil_parse(zilog, zil_free_log_block, zil_free_log_record,
4904935Sperrin 	    tx, zh->zh_claim_txg);
4914935Sperrin }
4924935Sperrin 
4932199Sahrens int
494789Sahrens zil_claim(char *osname, void *txarg)
495789Sahrens {
496789Sahrens 	dmu_tx_t *tx = txarg;
497789Sahrens 	uint64_t first_txg = dmu_tx_get_txg(tx);
498789Sahrens 	zilog_t *zilog;
499789Sahrens 	zil_header_t *zh;
500789Sahrens 	objset_t *os;
501789Sahrens 	int error;
502789Sahrens 
503789Sahrens 	error = dmu_objset_open(osname, DMU_OST_ANY, DS_MODE_STANDARD, &os);
504789Sahrens 	if (error) {
505789Sahrens 		cmn_err(CE_WARN, "can't process intent log for %s", osname);
5062199Sahrens 		return (0);
507789Sahrens 	}
508789Sahrens 
509789Sahrens 	zilog = dmu_objset_zil(os);
5101807Sbonwick 	zh = zil_header_in_syncing_context(zilog);
511789Sahrens 
512789Sahrens 	/*
5131807Sbonwick 	 * Claim all log blocks if we haven't already done so, and remember
5141807Sbonwick 	 * the highest claimed sequence number.  This ensures that if we can
5151807Sbonwick 	 * read only part of the log now (e.g. due to a missing device),
5161807Sbonwick 	 * but we can read the entire log later, we will not try to replay
5171807Sbonwick 	 * or destroy beyond the last block we successfully claimed.
518789Sahrens 	 */
519789Sahrens 	ASSERT3U(zh->zh_claim_txg, <=, first_txg);
520789Sahrens 	if (zh->zh_claim_txg == 0 && !BP_IS_HOLE(&zh->zh_log)) {
521789Sahrens 		zh->zh_claim_txg = first_txg;
5221807Sbonwick 		zh->zh_claim_seq = zil_parse(zilog, zil_claim_log_block,
5231807Sbonwick 		    zil_claim_log_record, tx, first_txg);
524789Sahrens 		dsl_dataset_dirty(dmu_objset_ds(os), tx);
525789Sahrens 	}
5261807Sbonwick 
527789Sahrens 	ASSERT3U(first_txg, ==, (spa_last_synced_txg(zilog->zl_spa) + 1));
528789Sahrens 	dmu_objset_close(os);
5292199Sahrens 	return (0);
530789Sahrens }
531789Sahrens 
532*5688Sbonwick static int
533*5688Sbonwick zil_vdev_compare(const void *x1, const void *x2)
534789Sahrens {
535*5688Sbonwick 	const uint64_t *v1 = x1;
536*5688Sbonwick 	const uint64_t *v2 = x2;
537*5688Sbonwick 
538*5688Sbonwick 	if (v1 < v2)
539*5688Sbonwick 		return (-1);
540*5688Sbonwick 	if (v1 > v2)
541*5688Sbonwick 		return (1);
542*5688Sbonwick 
543*5688Sbonwick 	return (0);
544*5688Sbonwick }
545*5688Sbonwick 
546*5688Sbonwick void
547*5688Sbonwick zil_add_block(zilog_t *zilog, blkptr_t *bp)
548*5688Sbonwick {
549*5688Sbonwick 	avl_tree_t *t = &zilog->zl_vdev_tree;
550*5688Sbonwick 	avl_index_t where;
551*5688Sbonwick 	zil_vdev_node_t *zv, zvsearch;
552*5688Sbonwick 	int ndvas = BP_GET_NDVAS(bp);
553*5688Sbonwick 	int i;
554789Sahrens 
5552986Sek110237 	if (zfs_nocacheflush)
556789Sahrens 		return;
557789Sahrens 
558*5688Sbonwick 	ASSERT(zilog->zl_writer);
559*5688Sbonwick 
560*5688Sbonwick 	/*
561*5688Sbonwick 	 * Even though we're zl_writer, we still need a lock because the
562*5688Sbonwick 	 * zl_get_data() callbacks may have dmu_sync() done callbacks
563*5688Sbonwick 	 * that will run concurrently.
564*5688Sbonwick 	 */
565*5688Sbonwick 	mutex_enter(&zilog->zl_vdev_lock);
566*5688Sbonwick 	for (i = 0; i < ndvas; i++) {
567*5688Sbonwick 		zvsearch.zv_vdev = DVA_GET_VDEV(&bp->blk_dva[i]);
568*5688Sbonwick 		if (avl_find(t, &zvsearch, &where) == NULL) {
569*5688Sbonwick 			zv = kmem_alloc(sizeof (*zv), KM_SLEEP);
570*5688Sbonwick 			zv->zv_vdev = zvsearch.zv_vdev;
571*5688Sbonwick 			avl_insert(t, zv, where);
5723063Sperrin 		}
5733063Sperrin 	}
574*5688Sbonwick 	mutex_exit(&zilog->zl_vdev_lock);
5753063Sperrin }
5763063Sperrin 
577789Sahrens void
5782638Sperrin zil_flush_vdevs(zilog_t *zilog)
579789Sahrens {
5803063Sperrin 	spa_t *spa = zilog->zl_spa;
581*5688Sbonwick 	avl_tree_t *t = &zilog->zl_vdev_tree;
582*5688Sbonwick 	void *cookie = NULL;
583*5688Sbonwick 	zil_vdev_node_t *zv;
584*5688Sbonwick 	zio_t *zio;
5853063Sperrin 
5863063Sperrin 	ASSERT(zilog->zl_writer);
587789Sahrens 
588*5688Sbonwick 	/*
589*5688Sbonwick 	 * We don't need zl_vdev_lock here because we're the zl_writer,
590*5688Sbonwick 	 * and all zl_get_data() callbacks are done.
591*5688Sbonwick 	 */
592*5688Sbonwick 	if (avl_numnodes(t) == 0)
593*5688Sbonwick 		return;
594*5688Sbonwick 
595*5688Sbonwick 	spa_config_enter(spa, RW_READER, FTAG);
596*5688Sbonwick 
597*5688Sbonwick 	zio = zio_root(spa, NULL, NULL,
598*5688Sbonwick 	    ZIO_FLAG_CONFIG_HELD | ZIO_FLAG_CANFAIL);
599*5688Sbonwick 
600*5688Sbonwick 	while ((zv = avl_destroy_nodes(t, &cookie)) != NULL) {
601*5688Sbonwick 		vdev_t *vd = vdev_lookup_top(spa, zv->zv_vdev);
602*5688Sbonwick 		if (vd != NULL)
603*5688Sbonwick 			zio_flush(zio, vd);
604*5688Sbonwick 		kmem_free(zv, sizeof (*zv));
6053063Sperrin 	}
606789Sahrens 
607789Sahrens 	/*
608789Sahrens 	 * Wait for all the flushes to complete.  Not all devices actually
609789Sahrens 	 * support the DKIOCFLUSHWRITECACHE ioctl, so it's OK if it fails.
610789Sahrens 	 */
611*5688Sbonwick 	(void) zio_wait(zio);
612*5688Sbonwick 
613*5688Sbonwick 	spa_config_exit(spa, FTAG);
614789Sahrens }
615789Sahrens 
616789Sahrens /*
617789Sahrens  * Function called when a log block write completes
618789Sahrens  */
619789Sahrens static void
620789Sahrens zil_lwb_write_done(zio_t *zio)
621789Sahrens {
622789Sahrens 	lwb_t *lwb = zio->io_private;
623789Sahrens 	zilog_t *zilog = lwb->lwb_zilog;
624789Sahrens 
625789Sahrens 	/*
626789Sahrens 	 * Now that we've written this log block, we have a stable pointer
627789Sahrens 	 * to the next block in the chain, so it's OK to let the txg in
628789Sahrens 	 * which we allocated the next block sync.
629789Sahrens 	 */
630789Sahrens 	txg_rele_to_sync(&lwb->lwb_txgh);
631789Sahrens 
632789Sahrens 	zio_buf_free(lwb->lwb_buf, lwb->lwb_sz);
633789Sahrens 	mutex_enter(&zilog->zl_lock);
634789Sahrens 	lwb->lwb_buf = NULL;
6354527Sperrin 	if (zio->io_error)
636789Sahrens 		zilog->zl_log_error = B_TRUE;
637789Sahrens 	mutex_exit(&zilog->zl_lock);
638789Sahrens }
639789Sahrens 
640789Sahrens /*
6412237Smaybee  * Initialize the io for a log block.
6422237Smaybee  *
6432237Smaybee  * Note, we should not initialize the IO until we are about
6442237Smaybee  * to use it, since zio_rewrite() does a spa_config_enter().
6452237Smaybee  */
6462237Smaybee static void
6472237Smaybee zil_lwb_write_init(zilog_t *zilog, lwb_t *lwb)
6482237Smaybee {
6492237Smaybee 	zbookmark_t zb;
6502237Smaybee 
6512237Smaybee 	zb.zb_objset = lwb->lwb_blk.blk_cksum.zc_word[ZIL_ZC_OBJSET];
6522237Smaybee 	zb.zb_object = 0;
6532237Smaybee 	zb.zb_level = -1;
6542237Smaybee 	zb.zb_blkid = lwb->lwb_blk.blk_cksum.zc_word[ZIL_ZC_SEQ];
6552237Smaybee 
6562638Sperrin 	if (zilog->zl_root_zio == NULL) {
6572638Sperrin 		zilog->zl_root_zio = zio_root(zilog->zl_spa, NULL, NULL,
6582638Sperrin 		    ZIO_FLAG_CANFAIL);
6592638Sperrin 	}
6603063Sperrin 	if (lwb->lwb_zio == NULL) {
6613063Sperrin 		lwb->lwb_zio = zio_rewrite(zilog->zl_root_zio, zilog->zl_spa,
6623063Sperrin 		    ZIO_CHECKSUM_ZILOG, 0, &lwb->lwb_blk, lwb->lwb_buf,
6633063Sperrin 		    lwb->lwb_sz, zil_lwb_write_done, lwb,
6644527Sperrin 		    ZIO_PRIORITY_LOG_WRITE, ZIO_FLAG_CANFAIL, &zb);
6653063Sperrin 	}
6662237Smaybee }
6672237Smaybee 
6682237Smaybee /*
669789Sahrens  * Start a log block write and advance to the next log block.
670789Sahrens  * Calls are serialized.
671789Sahrens  */
672789Sahrens static lwb_t *
673789Sahrens zil_lwb_write_start(zilog_t *zilog, lwb_t *lwb)
674789Sahrens {
675789Sahrens 	lwb_t *nlwb;
676789Sahrens 	zil_trailer_t *ztp = (zil_trailer_t *)(lwb->lwb_buf + lwb->lwb_sz) - 1;
6771807Sbonwick 	spa_t *spa = zilog->zl_spa;
6781807Sbonwick 	blkptr_t *bp = &ztp->zit_next_blk;
679789Sahrens 	uint64_t txg;
680789Sahrens 	uint64_t zil_blksz;
681789Sahrens 	int error;
682789Sahrens 
683789Sahrens 	ASSERT(lwb->lwb_nused <= ZIL_BLK_DATA_SZ(lwb));
684789Sahrens 
685789Sahrens 	/*
686789Sahrens 	 * Allocate the next block and save its address in this block
687789Sahrens 	 * before writing it in order to establish the log chain.
688789Sahrens 	 * Note that if the allocation of nlwb synced before we wrote
689789Sahrens 	 * the block that points at it (lwb), we'd leak it if we crashed.
690789Sahrens 	 * Therefore, we don't do txg_rele_to_sync() until zil_lwb_write_done().
691789Sahrens 	 */
692789Sahrens 	txg = txg_hold_open(zilog->zl_dmu_pool, &lwb->lwb_txgh);
693789Sahrens 	txg_rele_to_quiesce(&lwb->lwb_txgh);
694789Sahrens 
695789Sahrens 	/*
6961141Sperrin 	 * Pick a ZIL blocksize. We request a size that is the
6971141Sperrin 	 * maximum of the previous used size, the current used size and
6981141Sperrin 	 * the amount waiting in the queue.
699789Sahrens 	 */
7002237Smaybee 	zil_blksz = MAX(zilog->zl_prev_used,
7012237Smaybee 	    zilog->zl_cur_used + sizeof (*ztp));
7021141Sperrin 	zil_blksz = MAX(zil_blksz, zilog->zl_itx_list_sz + sizeof (*ztp));
7031842Sperrin 	zil_blksz = P2ROUNDUP_TYPED(zil_blksz, ZIL_MIN_BLKSZ, uint64_t);
7041141Sperrin 	if (zil_blksz > ZIL_MAX_BLKSZ)
7051141Sperrin 		zil_blksz = ZIL_MAX_BLKSZ;
706789Sahrens 
7073063Sperrin 	BP_ZERO(bp);
7083063Sperrin 	/* pass the old blkptr in order to spread log blocks across devs */
7093063Sperrin 	error = zio_alloc_blk(spa, zil_blksz, bp, &lwb->lwb_blk, txg);
710789Sahrens 	if (error) {
7113668Sgw25295 		dmu_tx_t *tx = dmu_tx_create_assigned(zilog->zl_dmu_pool, txg);
7123668Sgw25295 
7131544Seschrock 		/*
7143668Sgw25295 		 * We dirty the dataset to ensure that zil_sync() will
7153668Sgw25295 		 * be called to remove this lwb from our zl_lwb_list.
7163668Sgw25295 		 * Failing to do so, may leave an lwb with a NULL lwb_buf
7173668Sgw25295 		 * hanging around on the zl_lwb_list.
7183668Sgw25295 		 */
7193668Sgw25295 		dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx);
7203848Sgw25295 		dmu_tx_commit(tx);
7213668Sgw25295 
7223668Sgw25295 		/*
7233668Sgw25295 		 * Since we've just experienced an allocation failure so we
7243668Sgw25295 		 * terminate the current lwb and send it on its way.
7253668Sgw25295 		 */
7263668Sgw25295 		ztp->zit_pad = 0;
7273668Sgw25295 		ztp->zit_nused = lwb->lwb_nused;
7283668Sgw25295 		ztp->zit_bt.zbt_cksum = lwb->lwb_blk.blk_cksum;
7293668Sgw25295 		zio_nowait(lwb->lwb_zio);
7303668Sgw25295 
7313668Sgw25295 		/*
7321544Seschrock 		 * By returning NULL the caller will call tx_wait_synced()
7331544Seschrock 		 */
734789Sahrens 		return (NULL);
735789Sahrens 	}
736789Sahrens 
7371807Sbonwick 	ASSERT3U(bp->blk_birth, ==, txg);
7381544Seschrock 	ztp->zit_pad = 0;
739789Sahrens 	ztp->zit_nused = lwb->lwb_nused;
740789Sahrens 	ztp->zit_bt.zbt_cksum = lwb->lwb_blk.blk_cksum;
7411807Sbonwick 	bp->blk_cksum = lwb->lwb_blk.blk_cksum;
7421807Sbonwick 	bp->blk_cksum.zc_word[ZIL_ZC_SEQ]++;
743789Sahrens 
744789Sahrens 	/*
745789Sahrens 	 * Allocate a new log write buffer (lwb).
746789Sahrens 	 */
747789Sahrens 	nlwb = kmem_cache_alloc(zil_lwb_cache, KM_SLEEP);
748789Sahrens 
749789Sahrens 	nlwb->lwb_zilog = zilog;
7501807Sbonwick 	nlwb->lwb_blk = *bp;
751789Sahrens 	nlwb->lwb_nused = 0;
752789Sahrens 	nlwb->lwb_sz = BP_GET_LSIZE(&nlwb->lwb_blk);
753789Sahrens 	nlwb->lwb_buf = zio_buf_alloc(nlwb->lwb_sz);
754789Sahrens 	nlwb->lwb_max_txg = txg;
7552237Smaybee 	nlwb->lwb_zio = NULL;
756789Sahrens 
757789Sahrens 	/*
7583063Sperrin 	 * Put new lwb at the end of the log chain
759789Sahrens 	 */
760789Sahrens 	mutex_enter(&zilog->zl_lock);
761789Sahrens 	list_insert_tail(&zilog->zl_lwb_list, nlwb);
7623063Sperrin 	mutex_exit(&zilog->zl_lock);
7633063Sperrin 
764*5688Sbonwick 	/* Record the block for later vdev flushing */
765*5688Sbonwick 	zil_add_block(zilog, &lwb->lwb_blk);
766789Sahrens 
767789Sahrens 	/*
7682237Smaybee 	 * kick off the write for the old log block
769789Sahrens 	 */
7702237Smaybee 	dprintf_bp(&lwb->lwb_blk, "lwb %p txg %llu: ", lwb, txg);
7713063Sperrin 	ASSERT(lwb->lwb_zio);
7722237Smaybee 	zio_nowait(lwb->lwb_zio);
773789Sahrens 
774789Sahrens 	return (nlwb);
775789Sahrens }
776789Sahrens 
777789Sahrens static lwb_t *
778789Sahrens zil_lwb_commit(zilog_t *zilog, itx_t *itx, lwb_t *lwb)
779789Sahrens {
780789Sahrens 	lr_t *lrc = &itx->itx_lr; /* common log record */
7812237Smaybee 	lr_write_t *lr = (lr_write_t *)lrc;
782789Sahrens 	uint64_t txg = lrc->lrc_txg;
783789Sahrens 	uint64_t reclen = lrc->lrc_reclen;
7842237Smaybee 	uint64_t dlen;
785789Sahrens 
786789Sahrens 	if (lwb == NULL)
787789Sahrens 		return (NULL);
788789Sahrens 	ASSERT(lwb->lwb_buf != NULL);
789789Sahrens 
7902237Smaybee 	if (lrc->lrc_txtype == TX_WRITE && itx->itx_wr_state == WR_NEED_COPY)
7912237Smaybee 		dlen = P2ROUNDUP_TYPED(
7922237Smaybee 		    lr->lr_length, sizeof (uint64_t), uint64_t);
7932237Smaybee 	else
7942237Smaybee 		dlen = 0;
7951669Sperrin 
7961669Sperrin 	zilog->zl_cur_used += (reclen + dlen);
7971669Sperrin 
7983063Sperrin 	zil_lwb_write_init(zilog, lwb);
7993063Sperrin 
8001669Sperrin 	/*
8011669Sperrin 	 * If this record won't fit in the current log block, start a new one.
8021669Sperrin 	 */
8031669Sperrin 	if (lwb->lwb_nused + reclen + dlen > ZIL_BLK_DATA_SZ(lwb)) {
8041669Sperrin 		lwb = zil_lwb_write_start(zilog, lwb);
8052237Smaybee 		if (lwb == NULL)
8061669Sperrin 			return (NULL);
8073063Sperrin 		zil_lwb_write_init(zilog, lwb);
8081669Sperrin 		ASSERT(lwb->lwb_nused == 0);
8091669Sperrin 		if (reclen + dlen > ZIL_BLK_DATA_SZ(lwb)) {
8101669Sperrin 			txg_wait_synced(zilog->zl_dmu_pool, txg);
811789Sahrens 			return (lwb);
812789Sahrens 		}
813789Sahrens 	}
814789Sahrens 
8152638Sperrin 	/*
8162638Sperrin 	 * Update the lrc_seq, to be log record sequence number. See zil.h
8172638Sperrin 	 * Then copy the record to the log buffer.
8182638Sperrin 	 */
8192638Sperrin 	lrc->lrc_seq = ++zilog->zl_lr_seq; /* we are single threaded */
820789Sahrens 	bcopy(lrc, lwb->lwb_buf + lwb->lwb_nused, reclen);
8212237Smaybee 
8222237Smaybee 	/*
8232237Smaybee 	 * If it's a write, fetch the data or get its blkptr as appropriate.
8242237Smaybee 	 */
8252237Smaybee 	if (lrc->lrc_txtype == TX_WRITE) {
8262237Smaybee 		if (txg > spa_freeze_txg(zilog->zl_spa))
8272237Smaybee 			txg_wait_synced(zilog->zl_dmu_pool, txg);
8282237Smaybee 		if (itx->itx_wr_state != WR_COPIED) {
8292237Smaybee 			char *dbuf;
8302237Smaybee 			int error;
8312237Smaybee 
8322237Smaybee 			/* alignment is guaranteed */
8332237Smaybee 			lr = (lr_write_t *)(lwb->lwb_buf + lwb->lwb_nused);
8342237Smaybee 			if (dlen) {
8352237Smaybee 				ASSERT(itx->itx_wr_state == WR_NEED_COPY);
8362237Smaybee 				dbuf = lwb->lwb_buf + lwb->lwb_nused + reclen;
8372237Smaybee 				lr->lr_common.lrc_reclen += dlen;
8382237Smaybee 			} else {
8392237Smaybee 				ASSERT(itx->itx_wr_state == WR_INDIRECT);
8402237Smaybee 				dbuf = NULL;
8412237Smaybee 			}
8422237Smaybee 			error = zilog->zl_get_data(
8432237Smaybee 			    itx->itx_private, lr, dbuf, lwb->lwb_zio);
8442237Smaybee 			if (error) {
8452237Smaybee 				ASSERT(error == ENOENT || error == EEXIST ||
8462237Smaybee 				    error == EALREADY);
8472237Smaybee 				return (lwb);
8482237Smaybee 			}
8492237Smaybee 		}
8501669Sperrin 	}
8512237Smaybee 
8522237Smaybee 	lwb->lwb_nused += reclen + dlen;
853789Sahrens 	lwb->lwb_max_txg = MAX(lwb->lwb_max_txg, txg);
854789Sahrens 	ASSERT3U(lwb->lwb_nused, <=, ZIL_BLK_DATA_SZ(lwb));
855789Sahrens 	ASSERT3U(P2PHASE(lwb->lwb_nused, sizeof (uint64_t)), ==, 0);
856789Sahrens 
857789Sahrens 	return (lwb);
858789Sahrens }
859789Sahrens 
860789Sahrens itx_t *
8615331Samw zil_itx_create(uint64_t txtype, size_t lrsize)
862789Sahrens {
863789Sahrens 	itx_t *itx;
864789Sahrens 
8651842Sperrin 	lrsize = P2ROUNDUP_TYPED(lrsize, sizeof (uint64_t), size_t);
866789Sahrens 
867789Sahrens 	itx = kmem_alloc(offsetof(itx_t, itx_lr) + lrsize, KM_SLEEP);
868789Sahrens 	itx->itx_lr.lrc_txtype = txtype;
869789Sahrens 	itx->itx_lr.lrc_reclen = lrsize;
870789Sahrens 	itx->itx_lr.lrc_seq = 0;	/* defensive */
871789Sahrens 
872789Sahrens 	return (itx);
873789Sahrens }
874789Sahrens 
875789Sahrens uint64_t
876789Sahrens zil_itx_assign(zilog_t *zilog, itx_t *itx, dmu_tx_t *tx)
877789Sahrens {
878789Sahrens 	uint64_t seq;
879789Sahrens 
880789Sahrens 	ASSERT(itx->itx_lr.lrc_seq == 0);
881789Sahrens 
882789Sahrens 	mutex_enter(&zilog->zl_lock);
883789Sahrens 	list_insert_tail(&zilog->zl_itx_list, itx);
884789Sahrens 	zilog->zl_itx_list_sz += itx->itx_lr.lrc_reclen;
885789Sahrens 	itx->itx_lr.lrc_txg = dmu_tx_get_txg(tx);
886789Sahrens 	itx->itx_lr.lrc_seq = seq = ++zilog->zl_itx_seq;
887789Sahrens 	mutex_exit(&zilog->zl_lock);
888789Sahrens 
889789Sahrens 	return (seq);
890789Sahrens }
891789Sahrens 
892789Sahrens /*
893789Sahrens  * Free up all in-memory intent log transactions that have now been synced.
894789Sahrens  */
895789Sahrens static void
896789Sahrens zil_itx_clean(zilog_t *zilog)
897789Sahrens {
898789Sahrens 	uint64_t synced_txg = spa_last_synced_txg(zilog->zl_spa);
899789Sahrens 	uint64_t freeze_txg = spa_freeze_txg(zilog->zl_spa);
9003778Sjohansen 	list_t clean_list;
901789Sahrens 	itx_t *itx;
902789Sahrens 
9033778Sjohansen 	list_create(&clean_list, sizeof (itx_t), offsetof(itx_t, itx_node));
9043778Sjohansen 
905789Sahrens 	mutex_enter(&zilog->zl_lock);
9062638Sperrin 	/* wait for a log writer to finish walking list */
9072638Sperrin 	while (zilog->zl_writer) {
9082638Sperrin 		cv_wait(&zilog->zl_cv_writer, &zilog->zl_lock);
9092638Sperrin 	}
9103778Sjohansen 
9113778Sjohansen 	/*
9123778Sjohansen 	 * Move the sync'd log transactions to a separate list so we can call
9133778Sjohansen 	 * kmem_free without holding the zl_lock.
9143778Sjohansen 	 *
9153778Sjohansen 	 * There is no need to set zl_writer as we don't drop zl_lock here
9163778Sjohansen 	 */
917789Sahrens 	while ((itx = list_head(&zilog->zl_itx_list)) != NULL &&
918789Sahrens 	    itx->itx_lr.lrc_txg <= MIN(synced_txg, freeze_txg)) {
919789Sahrens 		list_remove(&zilog->zl_itx_list, itx);
920789Sahrens 		zilog->zl_itx_list_sz -= itx->itx_lr.lrc_reclen;
9213778Sjohansen 		list_insert_tail(&clean_list, itx);
9223778Sjohansen 	}
9233778Sjohansen 	cv_broadcast(&zilog->zl_cv_writer);
9243778Sjohansen 	mutex_exit(&zilog->zl_lock);
9253778Sjohansen 
9263778Sjohansen 	/* destroy sync'd log transactions */
9273778Sjohansen 	while ((itx = list_head(&clean_list)) != NULL) {
9283778Sjohansen 		list_remove(&clean_list, itx);
929789Sahrens 		kmem_free(itx, offsetof(itx_t, itx_lr)
930789Sahrens 		    + itx->itx_lr.lrc_reclen);
931789Sahrens 	}
9323778Sjohansen 	list_destroy(&clean_list);
933789Sahrens }
934789Sahrens 
9352638Sperrin /*
9363063Sperrin  * If there are any in-memory intent log transactions which have now been
9373063Sperrin  * synced then start up a taskq to free them.
9382638Sperrin  */
939789Sahrens void
940789Sahrens zil_clean(zilog_t *zilog)
941789Sahrens {
9423063Sperrin 	itx_t *itx;
9433063Sperrin 
944789Sahrens 	mutex_enter(&zilog->zl_lock);
9453063Sperrin 	itx = list_head(&zilog->zl_itx_list);
9463063Sperrin 	if ((itx != NULL) &&
9473063Sperrin 	    (itx->itx_lr.lrc_txg <= spa_last_synced_txg(zilog->zl_spa))) {
948789Sahrens 		(void) taskq_dispatch(zilog->zl_clean_taskq,
949789Sahrens 		    (void (*)(void *))zil_itx_clean, zilog, TQ_NOSLEEP);
9503063Sperrin 	}
951789Sahrens 	mutex_exit(&zilog->zl_lock);
952789Sahrens }
953789Sahrens 
954789Sahrens void
9552638Sperrin zil_commit_writer(zilog_t *zilog, uint64_t seq, uint64_t foid)
956789Sahrens {
957789Sahrens 	uint64_t txg;
958789Sahrens 	uint64_t reclen;
9593063Sperrin 	uint64_t commit_seq = 0;
9602638Sperrin 	itx_t *itx, *itx_next = (itx_t *)-1;
961789Sahrens 	lwb_t *lwb;
962789Sahrens 	spa_t *spa;
963789Sahrens 
9642638Sperrin 	zilog->zl_writer = B_TRUE;
9652638Sperrin 	zilog->zl_root_zio = NULL;
966789Sahrens 	spa = zilog->zl_spa;
967789Sahrens 
968789Sahrens 	if (zilog->zl_suspend) {
969789Sahrens 		lwb = NULL;
970789Sahrens 	} else {
971789Sahrens 		lwb = list_tail(&zilog->zl_lwb_list);
972789Sahrens 		if (lwb == NULL) {
9732638Sperrin 			/*
9742638Sperrin 			 * Return if there's nothing to flush before we
9752638Sperrin 			 * dirty the fs by calling zil_create()
9762638Sperrin 			 */
9772638Sperrin 			if (list_is_empty(&zilog->zl_itx_list)) {
9782638Sperrin 				zilog->zl_writer = B_FALSE;
9792638Sperrin 				return;
9802638Sperrin 			}
981789Sahrens 			mutex_exit(&zilog->zl_lock);
982789Sahrens 			zil_create(zilog);
983789Sahrens 			mutex_enter(&zilog->zl_lock);
984789Sahrens 			lwb = list_tail(&zilog->zl_lwb_list);
985789Sahrens 		}
986789Sahrens 	}
987789Sahrens 
9883063Sperrin 	/* Loop through in-memory log transactions filling log blocks. */
9892638Sperrin 	DTRACE_PROBE1(zil__cw1, zilog_t *, zilog);
990789Sahrens 	for (;;) {
9912638Sperrin 		/*
9922638Sperrin 		 * Find the next itx to push:
9932638Sperrin 		 * Push all transactions related to specified foid and all
9942638Sperrin 		 * other transactions except TX_WRITE, TX_TRUNCATE,
9952638Sperrin 		 * TX_SETATTR and TX_ACL for all other files.
9962638Sperrin 		 */
9972638Sperrin 		if (itx_next != (itx_t *)-1)
9982638Sperrin 			itx = itx_next;
9992638Sperrin 		else
10002638Sperrin 			itx = list_head(&zilog->zl_itx_list);
10012638Sperrin 		for (; itx != NULL; itx = list_next(&zilog->zl_itx_list, itx)) {
10022638Sperrin 			if (foid == 0) /* push all foids? */
10032638Sperrin 				break;
10043063Sperrin 			if (itx->itx_sync) /* push all O_[D]SYNC */
10053063Sperrin 				break;
10062638Sperrin 			switch (itx->itx_lr.lrc_txtype) {
10072638Sperrin 			case TX_SETATTR:
10082638Sperrin 			case TX_WRITE:
10092638Sperrin 			case TX_TRUNCATE:
10102638Sperrin 			case TX_ACL:
10112638Sperrin 				/* lr_foid is same offset for these records */
10122638Sperrin 				if (((lr_write_t *)&itx->itx_lr)->lr_foid
10132638Sperrin 				    != foid) {
10142638Sperrin 					continue; /* skip this record */
10152638Sperrin 				}
10162638Sperrin 			}
10172638Sperrin 			break;
10182638Sperrin 		}
1019789Sahrens 		if (itx == NULL)
1020789Sahrens 			break;
1021789Sahrens 
1022789Sahrens 		reclen = itx->itx_lr.lrc_reclen;
1023789Sahrens 		if ((itx->itx_lr.lrc_seq > seq) &&
10242638Sperrin 		    ((lwb == NULL) || (lwb->lwb_nused == 0) ||
10253063Sperrin 		    (lwb->lwb_nused + reclen > ZIL_BLK_DATA_SZ(lwb)))) {
1026789Sahrens 			break;
10273063Sperrin 		}
1028789Sahrens 
10292638Sperrin 		/*
10302638Sperrin 		 * Save the next pointer.  Even though we soon drop
10312638Sperrin 		 * zl_lock all threads that may change the list
10322638Sperrin 		 * (another writer or zil_itx_clean) can't do so until
10332638Sperrin 		 * they have zl_writer.
10342638Sperrin 		 */
10352638Sperrin 		itx_next = list_next(&zilog->zl_itx_list, itx);
1036789Sahrens 		list_remove(&zilog->zl_itx_list, itx);
10373063Sperrin 		mutex_exit(&zilog->zl_lock);
1038789Sahrens 		txg = itx->itx_lr.lrc_txg;
1039789Sahrens 		ASSERT(txg);
1040789Sahrens 
1041789Sahrens 		if (txg > spa_last_synced_txg(spa) ||
1042789Sahrens 		    txg > spa_freeze_txg(spa))
1043789Sahrens 			lwb = zil_lwb_commit(zilog, itx, lwb);
1044789Sahrens 		kmem_free(itx, offsetof(itx_t, itx_lr)
1045789Sahrens 		    + itx->itx_lr.lrc_reclen);
1046789Sahrens 		mutex_enter(&zilog->zl_lock);
1047789Sahrens 		zilog->zl_itx_list_sz -= reclen;
1048789Sahrens 	}
10492638Sperrin 	DTRACE_PROBE1(zil__cw2, zilog_t *, zilog);
10503063Sperrin 	/* determine commit sequence number */
10513063Sperrin 	itx = list_head(&zilog->zl_itx_list);
10523063Sperrin 	if (itx)
10533063Sperrin 		commit_seq = itx->itx_lr.lrc_seq;
10543063Sperrin 	else
10553063Sperrin 		commit_seq = zilog->zl_itx_seq;
1056789Sahrens 	mutex_exit(&zilog->zl_lock);
1057789Sahrens 
1058789Sahrens 	/* write the last block out */
10593063Sperrin 	if (lwb != NULL && lwb->lwb_zio != NULL)
1060789Sahrens 		lwb = zil_lwb_write_start(zilog, lwb);
1061789Sahrens 
10621141Sperrin 	zilog->zl_prev_used = zilog->zl_cur_used;
10631141Sperrin 	zilog->zl_cur_used = 0;
10641141Sperrin 
10652638Sperrin 	/*
10662638Sperrin 	 * Wait if necessary for the log blocks to be on stable storage.
10672638Sperrin 	 */
10682638Sperrin 	if (zilog->zl_root_zio) {
10692638Sperrin 		DTRACE_PROBE1(zil__cw3, zilog_t *, zilog);
10702638Sperrin 		(void) zio_wait(zilog->zl_root_zio);
10712638Sperrin 		DTRACE_PROBE1(zil__cw4, zilog_t *, zilog);
1072*5688Sbonwick 		zil_flush_vdevs(zilog);
1073789Sahrens 	}
10741141Sperrin 
1075789Sahrens 	if (zilog->zl_log_error || lwb == NULL) {
1076789Sahrens 		zilog->zl_log_error = 0;
1077789Sahrens 		txg_wait_synced(zilog->zl_dmu_pool, 0);
1078789Sahrens 	}
10793063Sperrin 
10803063Sperrin 	mutex_enter(&zilog->zl_lock);
10811141Sperrin 	zilog->zl_writer = B_FALSE;
10823063Sperrin 
10833063Sperrin 	ASSERT3U(commit_seq, >=, zilog->zl_commit_seq);
10843063Sperrin 	zilog->zl_commit_seq = commit_seq;
10852638Sperrin }
10862638Sperrin 
10872638Sperrin /*
10882638Sperrin  * Push zfs transactions to stable storage up to the supplied sequence number.
10892638Sperrin  * If foid is 0 push out all transactions, otherwise push only those
10902638Sperrin  * for that file or might have been used to create that file.
10912638Sperrin  */
10922638Sperrin void
10932638Sperrin zil_commit(zilog_t *zilog, uint64_t seq, uint64_t foid)
10942638Sperrin {
10952638Sperrin 	if (zilog == NULL || seq == 0)
10962638Sperrin 		return;
10972638Sperrin 
10982638Sperrin 	mutex_enter(&zilog->zl_lock);
10992638Sperrin 
11002638Sperrin 	seq = MIN(seq, zilog->zl_itx_seq);	/* cap seq at largest itx seq */
11012638Sperrin 
11023063Sperrin 	while (zilog->zl_writer) {
11032638Sperrin 		cv_wait(&zilog->zl_cv_writer, &zilog->zl_lock);
11043063Sperrin 		if (seq < zilog->zl_commit_seq) {
11053063Sperrin 			mutex_exit(&zilog->zl_lock);
11063063Sperrin 			return;
11073063Sperrin 		}
11083063Sperrin 	}
11092638Sperrin 	zil_commit_writer(zilog, seq, foid); /* drops zl_lock */
11103063Sperrin 	/* wake up others waiting on the commit */
11113063Sperrin 	cv_broadcast(&zilog->zl_cv_writer);
11123063Sperrin 	mutex_exit(&zilog->zl_lock);
1113789Sahrens }
1114789Sahrens 
1115789Sahrens /*
1116789Sahrens  * Called in syncing context to free committed log blocks and update log header.
1117789Sahrens  */
1118789Sahrens void
1119789Sahrens zil_sync(zilog_t *zilog, dmu_tx_t *tx)
1120789Sahrens {
11211807Sbonwick 	zil_header_t *zh = zil_header_in_syncing_context(zilog);
1122789Sahrens 	uint64_t txg = dmu_tx_get_txg(tx);
1123789Sahrens 	spa_t *spa = zilog->zl_spa;
1124789Sahrens 	lwb_t *lwb;
1125789Sahrens 
11261807Sbonwick 	mutex_enter(&zilog->zl_lock);
11271807Sbonwick 
1128789Sahrens 	ASSERT(zilog->zl_stop_sync == 0);
1129789Sahrens 
11301807Sbonwick 	zh->zh_replay_seq = zilog->zl_replay_seq[txg & TXG_MASK];
1131789Sahrens 
1132789Sahrens 	if (zilog->zl_destroy_txg == txg) {
11331807Sbonwick 		blkptr_t blk = zh->zh_log;
11341807Sbonwick 
11351807Sbonwick 		ASSERT(list_head(&zilog->zl_lwb_list) == NULL);
11361807Sbonwick 		ASSERT(spa_sync_pass(spa) == 1);
11371807Sbonwick 
11381807Sbonwick 		bzero(zh, sizeof (zil_header_t));
1139789Sahrens 		bzero(zilog->zl_replay_seq, sizeof (zilog->zl_replay_seq));
11401807Sbonwick 
11411807Sbonwick 		if (zilog->zl_keep_first) {
11421807Sbonwick 			/*
11431807Sbonwick 			 * If this block was part of log chain that couldn't
11441807Sbonwick 			 * be claimed because a device was missing during
11451807Sbonwick 			 * zil_claim(), but that device later returns,
11461807Sbonwick 			 * then this block could erroneously appear valid.
11471807Sbonwick 			 * To guard against this, assign a new GUID to the new
11481807Sbonwick 			 * log chain so it doesn't matter what blk points to.
11491807Sbonwick 			 */
11501807Sbonwick 			zil_init_log_chain(zilog, &blk);
11511807Sbonwick 			zh->zh_log = blk;
11521807Sbonwick 		}
1153789Sahrens 	}
1154789Sahrens 
1155789Sahrens 	for (;;) {
1156789Sahrens 		lwb = list_head(&zilog->zl_lwb_list);
1157789Sahrens 		if (lwb == NULL) {
1158789Sahrens 			mutex_exit(&zilog->zl_lock);
1159789Sahrens 			return;
1160789Sahrens 		}
11612638Sperrin 		zh->zh_log = lwb->lwb_blk;
1162789Sahrens 		if (lwb->lwb_buf != NULL || lwb->lwb_max_txg > txg)
1163789Sahrens 			break;
1164789Sahrens 		list_remove(&zilog->zl_lwb_list, lwb);
1165789Sahrens 		zio_free_blk(spa, &lwb->lwb_blk, txg);
1166789Sahrens 		kmem_cache_free(zil_lwb_cache, lwb);
11673668Sgw25295 
11683668Sgw25295 		/*
11693668Sgw25295 		 * If we don't have anything left in the lwb list then
11703668Sgw25295 		 * we've had an allocation failure and we need to zero
11713668Sgw25295 		 * out the zil_header blkptr so that we don't end
11723668Sgw25295 		 * up freeing the same block twice.
11733668Sgw25295 		 */
11743668Sgw25295 		if (list_head(&zilog->zl_lwb_list) == NULL)
11753668Sgw25295 			BP_ZERO(&zh->zh_log);
1176789Sahrens 	}
1177789Sahrens 	mutex_exit(&zilog->zl_lock);
1178789Sahrens }
1179789Sahrens 
1180789Sahrens void
1181789Sahrens zil_init(void)
1182789Sahrens {
1183789Sahrens 	zil_lwb_cache = kmem_cache_create("zil_lwb_cache",
11842856Snd150628 	    sizeof (struct lwb), 0, NULL, NULL, NULL, NULL, NULL, 0);
1185789Sahrens }
1186789Sahrens 
1187789Sahrens void
1188789Sahrens zil_fini(void)
1189789Sahrens {
1190789Sahrens 	kmem_cache_destroy(zil_lwb_cache);
1191789Sahrens }
1192789Sahrens 
1193789Sahrens zilog_t *
1194789Sahrens zil_alloc(objset_t *os, zil_header_t *zh_phys)
1195789Sahrens {
1196789Sahrens 	zilog_t *zilog;
1197789Sahrens 
1198789Sahrens 	zilog = kmem_zalloc(sizeof (zilog_t), KM_SLEEP);
1199789Sahrens 
1200789Sahrens 	zilog->zl_header = zh_phys;
1201789Sahrens 	zilog->zl_os = os;
1202789Sahrens 	zilog->zl_spa = dmu_objset_spa(os);
1203789Sahrens 	zilog->zl_dmu_pool = dmu_objset_pool(os);
12041807Sbonwick 	zilog->zl_destroy_txg = TXG_INITIAL - 1;
1205789Sahrens 
12062856Snd150628 	mutex_init(&zilog->zl_lock, NULL, MUTEX_DEFAULT, NULL);
12072856Snd150628 
1208789Sahrens 	list_create(&zilog->zl_itx_list, sizeof (itx_t),
1209789Sahrens 	    offsetof(itx_t, itx_node));
1210789Sahrens 
1211789Sahrens 	list_create(&zilog->zl_lwb_list, sizeof (lwb_t),
1212789Sahrens 	    offsetof(lwb_t, lwb_node));
1213789Sahrens 
1214*5688Sbonwick 	mutex_init(&zilog->zl_vdev_lock, NULL, MUTEX_DEFAULT, NULL);
1215*5688Sbonwick 
1216*5688Sbonwick 	avl_create(&zilog->zl_vdev_tree, zil_vdev_compare,
1217*5688Sbonwick 	    sizeof (zil_vdev_node_t), offsetof(zil_vdev_node_t, zv_node));
1218789Sahrens 
1219789Sahrens 	return (zilog);
1220789Sahrens }
1221789Sahrens 
1222789Sahrens void
1223789Sahrens zil_free(zilog_t *zilog)
1224789Sahrens {
1225789Sahrens 	lwb_t *lwb;
1226789Sahrens 
1227789Sahrens 	zilog->zl_stop_sync = 1;
1228789Sahrens 
1229789Sahrens 	while ((lwb = list_head(&zilog->zl_lwb_list)) != NULL) {
1230789Sahrens 		list_remove(&zilog->zl_lwb_list, lwb);
1231789Sahrens 		if (lwb->lwb_buf != NULL)
1232789Sahrens 			zio_buf_free(lwb->lwb_buf, lwb->lwb_sz);
1233789Sahrens 		kmem_cache_free(zil_lwb_cache, lwb);
1234789Sahrens 	}
1235789Sahrens 	list_destroy(&zilog->zl_lwb_list);
1236789Sahrens 
1237*5688Sbonwick 	avl_destroy(&zilog->zl_vdev_tree);
1238*5688Sbonwick 	mutex_destroy(&zilog->zl_vdev_lock);
1239789Sahrens 
1240789Sahrens 	ASSERT(list_head(&zilog->zl_itx_list) == NULL);
1241789Sahrens 	list_destroy(&zilog->zl_itx_list);
12422856Snd150628 	mutex_destroy(&zilog->zl_lock);
1243789Sahrens 
1244789Sahrens 	kmem_free(zilog, sizeof (zilog_t));
1245789Sahrens }
1246789Sahrens 
1247789Sahrens /*
12481646Sperrin  * return true if the initial log block is not valid
12491362Sperrin  */
12501362Sperrin static int
12511362Sperrin zil_empty(zilog_t *zilog)
12521362Sperrin {
12531807Sbonwick 	const zil_header_t *zh = zilog->zl_header;
12541807Sbonwick 	arc_buf_t *abuf = NULL;
12551362Sperrin 
12561807Sbonwick 	if (BP_IS_HOLE(&zh->zh_log))
12571362Sperrin 		return (1);
12581362Sperrin 
12591807Sbonwick 	if (zil_read_log_block(zilog, &zh->zh_log, &abuf) != 0)
12601807Sbonwick 		return (1);
12611807Sbonwick 
12621807Sbonwick 	VERIFY(arc_buf_remove_ref(abuf, &abuf) == 1);
12631807Sbonwick 	return (0);
12641362Sperrin }
12651362Sperrin 
12661362Sperrin /*
1267789Sahrens  * Open an intent log.
1268789Sahrens  */
1269789Sahrens zilog_t *
1270789Sahrens zil_open(objset_t *os, zil_get_data_t *get_data)
1271789Sahrens {
1272789Sahrens 	zilog_t *zilog = dmu_objset_zil(os);
1273789Sahrens 
1274789Sahrens 	zilog->zl_get_data = get_data;
1275789Sahrens 	zilog->zl_clean_taskq = taskq_create("zil_clean", 1, minclsyspri,
1276789Sahrens 	    2, 2, TASKQ_PREPOPULATE);
1277789Sahrens 
1278789Sahrens 	return (zilog);
1279789Sahrens }
1280789Sahrens 
1281789Sahrens /*
1282789Sahrens  * Close an intent log.
1283789Sahrens  */
1284789Sahrens void
1285789Sahrens zil_close(zilog_t *zilog)
1286789Sahrens {
12871807Sbonwick 	/*
12881807Sbonwick 	 * If the log isn't already committed, mark the objset dirty
12891807Sbonwick 	 * (so zil_sync() will be called) and wait for that txg to sync.
12901807Sbonwick 	 */
12911807Sbonwick 	if (!zil_is_committed(zilog)) {
12921807Sbonwick 		uint64_t txg;
12931807Sbonwick 		dmu_tx_t *tx = dmu_tx_create(zilog->zl_os);
12941807Sbonwick 		(void) dmu_tx_assign(tx, TXG_WAIT);
12951807Sbonwick 		dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx);
12961807Sbonwick 		txg = dmu_tx_get_txg(tx);
12971807Sbonwick 		dmu_tx_commit(tx);
12981807Sbonwick 		txg_wait_synced(zilog->zl_dmu_pool, txg);
12991807Sbonwick 	}
13001807Sbonwick 
1301789Sahrens 	taskq_destroy(zilog->zl_clean_taskq);
1302789Sahrens 	zilog->zl_clean_taskq = NULL;
1303789Sahrens 	zilog->zl_get_data = NULL;
1304789Sahrens 
1305789Sahrens 	zil_itx_clean(zilog);
1306789Sahrens 	ASSERT(list_head(&zilog->zl_itx_list) == NULL);
1307789Sahrens }
1308789Sahrens 
1309789Sahrens /*
1310789Sahrens  * Suspend an intent log.  While in suspended mode, we still honor
1311789Sahrens  * synchronous semantics, but we rely on txg_wait_synced() to do it.
1312789Sahrens  * We suspend the log briefly when taking a snapshot so that the snapshot
1313789Sahrens  * contains all the data it's supposed to, and has an empty intent log.
1314789Sahrens  */
1315789Sahrens int
1316789Sahrens zil_suspend(zilog_t *zilog)
1317789Sahrens {
13181807Sbonwick 	const zil_header_t *zh = zilog->zl_header;
1319789Sahrens 
1320789Sahrens 	mutex_enter(&zilog->zl_lock);
13211807Sbonwick 	if (zh->zh_claim_txg != 0) {		/* unplayed log */
1322789Sahrens 		mutex_exit(&zilog->zl_lock);
1323789Sahrens 		return (EBUSY);
1324789Sahrens 	}
13251807Sbonwick 	if (zilog->zl_suspend++ != 0) {
13261807Sbonwick 		/*
13271807Sbonwick 		 * Someone else already began a suspend.
13281807Sbonwick 		 * Just wait for them to finish.
13291807Sbonwick 		 */
13301807Sbonwick 		while (zilog->zl_suspending)
13311807Sbonwick 			cv_wait(&zilog->zl_cv_suspend, &zilog->zl_lock);
13321807Sbonwick 		ASSERT(BP_IS_HOLE(&zh->zh_log));
13331807Sbonwick 		mutex_exit(&zilog->zl_lock);
13341807Sbonwick 		return (0);
13351807Sbonwick 	}
13361807Sbonwick 	zilog->zl_suspending = B_TRUE;
1337789Sahrens 	mutex_exit(&zilog->zl_lock);
1338789Sahrens 
13392638Sperrin 	zil_commit(zilog, UINT64_MAX, 0);
1340789Sahrens 
13412638Sperrin 	/*
13422638Sperrin 	 * Wait for any in-flight log writes to complete.
13432638Sperrin 	 */
1344789Sahrens 	mutex_enter(&zilog->zl_lock);
13452638Sperrin 	while (zilog->zl_writer)
13462638Sperrin 		cv_wait(&zilog->zl_cv_writer, &zilog->zl_lock);
1347789Sahrens 	mutex_exit(&zilog->zl_lock);
1348789Sahrens 
13491807Sbonwick 	zil_destroy(zilog, B_FALSE);
13501807Sbonwick 
13511807Sbonwick 	mutex_enter(&zilog->zl_lock);
13521807Sbonwick 	ASSERT(BP_IS_HOLE(&zh->zh_log));
13531807Sbonwick 	zilog->zl_suspending = B_FALSE;
13541807Sbonwick 	cv_broadcast(&zilog->zl_cv_suspend);
13551807Sbonwick 	mutex_exit(&zilog->zl_lock);
1356789Sahrens 
1357789Sahrens 	return (0);
1358789Sahrens }
1359789Sahrens 
1360789Sahrens void
1361789Sahrens zil_resume(zilog_t *zilog)
1362789Sahrens {
1363789Sahrens 	mutex_enter(&zilog->zl_lock);
1364789Sahrens 	ASSERT(zilog->zl_suspend != 0);
1365789Sahrens 	zilog->zl_suspend--;
1366789Sahrens 	mutex_exit(&zilog->zl_lock);
1367789Sahrens }
1368789Sahrens 
1369789Sahrens typedef struct zil_replay_arg {
1370789Sahrens 	objset_t	*zr_os;
1371789Sahrens 	zil_replay_func_t **zr_replay;
1372789Sahrens 	void		*zr_arg;
1373789Sahrens 	uint64_t	*zr_txgp;
1374789Sahrens 	boolean_t	zr_byteswap;
1375789Sahrens 	char		*zr_lrbuf;
1376789Sahrens } zil_replay_arg_t;
1377789Sahrens 
1378789Sahrens static void
1379789Sahrens zil_replay_log_record(zilog_t *zilog, lr_t *lr, void *zra, uint64_t claim_txg)
1380789Sahrens {
1381789Sahrens 	zil_replay_arg_t *zr = zra;
13821807Sbonwick 	const zil_header_t *zh = zilog->zl_header;
1383789Sahrens 	uint64_t reclen = lr->lrc_reclen;
1384789Sahrens 	uint64_t txtype = lr->lrc_txtype;
13853063Sperrin 	char *name;
13863063Sperrin 	int pass, error, sunk;
1387789Sahrens 
1388789Sahrens 	if (zilog->zl_stop_replay)
1389789Sahrens 		return;
1390789Sahrens 
1391789Sahrens 	if (lr->lrc_txg < claim_txg)		/* already committed */
1392789Sahrens 		return;
1393789Sahrens 
1394789Sahrens 	if (lr->lrc_seq <= zh->zh_replay_seq)	/* already replayed */
1395789Sahrens 		return;
1396789Sahrens 
13975331Samw 	/* Strip case-insensitive bit, still present in log record */
13985331Samw 	txtype &= ~TX_CI;
13995331Samw 
1400789Sahrens 	/*
1401789Sahrens 	 * Make a copy of the data so we can revise and extend it.
1402789Sahrens 	 */
1403789Sahrens 	bcopy(lr, zr->zr_lrbuf, reclen);
1404789Sahrens 
1405789Sahrens 	/*
1406789Sahrens 	 * The log block containing this lr may have been byteswapped
1407789Sahrens 	 * so that we can easily examine common fields like lrc_txtype.
1408789Sahrens 	 * However, the log is a mix of different data types, and only the
1409789Sahrens 	 * replay vectors know how to byteswap their records.  Therefore, if
1410789Sahrens 	 * the lr was byteswapped, undo it before invoking the replay vector.
1411789Sahrens 	 */
1412789Sahrens 	if (zr->zr_byteswap)
1413789Sahrens 		byteswap_uint64_array(zr->zr_lrbuf, reclen);
1414789Sahrens 
1415789Sahrens 	/*
1416789Sahrens 	 * If this is a TX_WRITE with a blkptr, suck in the data.
1417789Sahrens 	 */
1418789Sahrens 	if (txtype == TX_WRITE && reclen == sizeof (lr_write_t)) {
1419789Sahrens 		lr_write_t *lrw = (lr_write_t *)lr;
1420789Sahrens 		blkptr_t *wbp = &lrw->lr_blkptr;
1421789Sahrens 		uint64_t wlen = lrw->lr_length;
1422789Sahrens 		char *wbuf = zr->zr_lrbuf + reclen;
1423789Sahrens 
1424789Sahrens 		if (BP_IS_HOLE(wbp)) {	/* compressed to a hole */
1425789Sahrens 			bzero(wbuf, wlen);
1426789Sahrens 		} else {
1427789Sahrens 			/*
1428789Sahrens 			 * A subsequent write may have overwritten this block,
1429789Sahrens 			 * in which case wbp may have been been freed and
1430789Sahrens 			 * reallocated, and our read of wbp may fail with a
1431789Sahrens 			 * checksum error.  We can safely ignore this because
1432789Sahrens 			 * the later write will provide the correct data.
1433789Sahrens 			 */
14341544Seschrock 			zbookmark_t zb;
14351544Seschrock 
14361544Seschrock 			zb.zb_objset = dmu_objset_id(zilog->zl_os);
14371544Seschrock 			zb.zb_object = lrw->lr_foid;
14381544Seschrock 			zb.zb_level = -1;
14391544Seschrock 			zb.zb_blkid = lrw->lr_offset / BP_GET_LSIZE(wbp);
14401544Seschrock 
1441789Sahrens 			(void) zio_wait(zio_read(NULL, zilog->zl_spa,
1442789Sahrens 			    wbp, wbuf, BP_GET_LSIZE(wbp), NULL, NULL,
1443789Sahrens 			    ZIO_PRIORITY_SYNC_READ,
14441544Seschrock 			    ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE, &zb));
1445789Sahrens 			(void) memmove(wbuf, wbuf + lrw->lr_blkoff, wlen);
1446789Sahrens 		}
1447789Sahrens 	}
1448789Sahrens 
1449789Sahrens 	/*
1450789Sahrens 	 * We must now do two things atomically: replay this log record,
1451789Sahrens 	 * and update the log header to reflect the fact that we did so.
1452789Sahrens 	 * We use the DMU's ability to assign into a specific txg to do this.
1453789Sahrens 	 */
14543063Sperrin 	for (pass = 1, sunk = B_FALSE; /* CONSTANTCONDITION */; pass++) {
1455789Sahrens 		uint64_t replay_txg;
1456789Sahrens 		dmu_tx_t *replay_tx;
1457789Sahrens 
1458789Sahrens 		replay_tx = dmu_tx_create(zr->zr_os);
1459789Sahrens 		error = dmu_tx_assign(replay_tx, TXG_WAIT);
1460789Sahrens 		if (error) {
1461789Sahrens 			dmu_tx_abort(replay_tx);
1462789Sahrens 			break;
1463789Sahrens 		}
1464789Sahrens 
1465789Sahrens 		replay_txg = dmu_tx_get_txg(replay_tx);
1466789Sahrens 
1467789Sahrens 		if (txtype == 0 || txtype >= TX_MAX_TYPE) {
1468789Sahrens 			error = EINVAL;
1469789Sahrens 		} else {
1470789Sahrens 			/*
1471789Sahrens 			 * On the first pass, arrange for the replay vector
1472789Sahrens 			 * to fail its dmu_tx_assign().  That's the only way
1473789Sahrens 			 * to ensure that those code paths remain well tested.
14745676Sperrin 			 *
14755676Sperrin 			 * Only byteswap (if needed) on the 1st pass.
1476789Sahrens 			 */
1477789Sahrens 			*zr->zr_txgp = replay_txg - (pass == 1);
1478789Sahrens 			error = zr->zr_replay[txtype](zr->zr_arg, zr->zr_lrbuf,
14795676Sperrin 			    zr->zr_byteswap && pass == 1);
1480789Sahrens 			*zr->zr_txgp = TXG_NOWAIT;
1481789Sahrens 		}
1482789Sahrens 
1483789Sahrens 		if (error == 0) {
1484789Sahrens 			dsl_dataset_dirty(dmu_objset_ds(zr->zr_os), replay_tx);
1485789Sahrens 			zilog->zl_replay_seq[replay_txg & TXG_MASK] =
1486789Sahrens 			    lr->lrc_seq;
1487789Sahrens 		}
1488789Sahrens 
1489789Sahrens 		dmu_tx_commit(replay_tx);
1490789Sahrens 
14913063Sperrin 		if (!error)
14923063Sperrin 			return;
14933063Sperrin 
14943063Sperrin 		/*
14953063Sperrin 		 * The DMU's dnode layer doesn't see removes until the txg
14963063Sperrin 		 * commits, so a subsequent claim can spuriously fail with
14973063Sperrin 		 * EEXIST. So if we receive any error other than ERESTART
14983063Sperrin 		 * we try syncing out any removes then retrying the
14993063Sperrin 		 * transaction.
15003063Sperrin 		 */
15013063Sperrin 		if (error != ERESTART && !sunk) {
15023063Sperrin 			txg_wait_synced(spa_get_dsl(zilog->zl_spa), 0);
15033063Sperrin 			sunk = B_TRUE;
15043063Sperrin 			continue; /* retry */
15053063Sperrin 		}
15063063Sperrin 
1507789Sahrens 		if (error != ERESTART)
1508789Sahrens 			break;
1509789Sahrens 
1510789Sahrens 		if (pass != 1)
1511789Sahrens 			txg_wait_open(spa_get_dsl(zilog->zl_spa),
1512789Sahrens 			    replay_txg + 1);
1513789Sahrens 
1514789Sahrens 		dprintf("pass %d, retrying\n", pass);
1515789Sahrens 	}
1516789Sahrens 
15173063Sperrin 	ASSERT(error && error != ERESTART);
15183063Sperrin 	name = kmem_alloc(MAXNAMELEN, KM_SLEEP);
15193063Sperrin 	dmu_objset_name(zr->zr_os, name);
15203063Sperrin 	cmn_err(CE_WARN, "ZFS replay transaction error %d, "
15215331Samw 	    "dataset %s, seq 0x%llx, txtype %llu %s\n",
15225331Samw 	    error, name, (u_longlong_t)lr->lrc_seq, (u_longlong_t)txtype,
15235331Samw 	    (lr->lrc_txtype & TX_CI) ? "CI" : "");
15243063Sperrin 	zilog->zl_stop_replay = 1;
15253063Sperrin 	kmem_free(name, MAXNAMELEN);
15263063Sperrin }
1527789Sahrens 
15283063Sperrin /* ARGSUSED */
15293063Sperrin static void
15303063Sperrin zil_incr_blks(zilog_t *zilog, blkptr_t *bp, void *arg, uint64_t claim_txg)
15313063Sperrin {
15323063Sperrin 	zilog->zl_replay_blks++;
1533789Sahrens }
1534789Sahrens 
1535789Sahrens /*
15361362Sperrin  * If this dataset has a non-empty intent log, replay it and destroy it.
1537789Sahrens  */
1538789Sahrens void
1539789Sahrens zil_replay(objset_t *os, void *arg, uint64_t *txgp,
15403461Sahrens 	zil_replay_func_t *replay_func[TX_MAX_TYPE])
1541789Sahrens {
1542789Sahrens 	zilog_t *zilog = dmu_objset_zil(os);
15431807Sbonwick 	const zil_header_t *zh = zilog->zl_header;
15441807Sbonwick 	zil_replay_arg_t zr;
15451362Sperrin 
15461362Sperrin 	if (zil_empty(zilog)) {
15471807Sbonwick 		zil_destroy(zilog, B_TRUE);
15481362Sperrin 		return;
15491362Sperrin 	}
1550789Sahrens 
1551789Sahrens 	zr.zr_os = os;
1552789Sahrens 	zr.zr_replay = replay_func;
1553789Sahrens 	zr.zr_arg = arg;
1554789Sahrens 	zr.zr_txgp = txgp;
15551807Sbonwick 	zr.zr_byteswap = BP_SHOULD_BYTESWAP(&zh->zh_log);
1556789Sahrens 	zr.zr_lrbuf = kmem_alloc(2 * SPA_MAXBLOCKSIZE, KM_SLEEP);
1557789Sahrens 
1558789Sahrens 	/*
1559789Sahrens 	 * Wait for in-progress removes to sync before starting replay.
1560789Sahrens 	 */
1561789Sahrens 	txg_wait_synced(zilog->zl_dmu_pool, 0);
1562789Sahrens 
1563789Sahrens 	zilog->zl_stop_replay = 0;
15643063Sperrin 	zilog->zl_replay_time = lbolt;
15653063Sperrin 	ASSERT(zilog->zl_replay_blks == 0);
15663063Sperrin 	(void) zil_parse(zilog, zil_incr_blks, zil_replay_log_record, &zr,
15671807Sbonwick 	    zh->zh_claim_txg);
1568789Sahrens 	kmem_free(zr.zr_lrbuf, 2 * SPA_MAXBLOCKSIZE);
1569789Sahrens 
15701807Sbonwick 	zil_destroy(zilog, B_FALSE);
1571789Sahrens }
15721646Sperrin 
15731646Sperrin /*
15741646Sperrin  * Report whether all transactions are committed
15751646Sperrin  */
15761646Sperrin int
15771646Sperrin zil_is_committed(zilog_t *zilog)
15781646Sperrin {
15791646Sperrin 	lwb_t *lwb;
15802638Sperrin 	int ret;
15811646Sperrin 
15822638Sperrin 	mutex_enter(&zilog->zl_lock);
15832638Sperrin 	while (zilog->zl_writer)
15842638Sperrin 		cv_wait(&zilog->zl_cv_writer, &zilog->zl_lock);
15852638Sperrin 
15862638Sperrin 	/* recent unpushed intent log transactions? */
15872638Sperrin 	if (!list_is_empty(&zilog->zl_itx_list)) {
15882638Sperrin 		ret = B_FALSE;
15892638Sperrin 		goto out;
15902638Sperrin 	}
15912638Sperrin 
15922638Sperrin 	/* intent log never used? */
15932638Sperrin 	lwb = list_head(&zilog->zl_lwb_list);
15942638Sperrin 	if (lwb == NULL) {
15952638Sperrin 		ret = B_TRUE;
15962638Sperrin 		goto out;
15972638Sperrin 	}
15981646Sperrin 
15991646Sperrin 	/*
16002638Sperrin 	 * more than 1 log buffer means zil_sync() hasn't yet freed
16012638Sperrin 	 * entries after a txg has committed
16021646Sperrin 	 */
16032638Sperrin 	if (list_next(&zilog->zl_lwb_list, lwb)) {
16042638Sperrin 		ret = B_FALSE;
16052638Sperrin 		goto out;
16062638Sperrin 	}
16072638Sperrin 
16081646Sperrin 	ASSERT(zil_empty(zilog));
16092638Sperrin 	ret = B_TRUE;
16102638Sperrin out:
16112638Sperrin 	cv_broadcast(&zilog->zl_cv_writer);
16122638Sperrin 	mutex_exit(&zilog->zl_lock);
16132638Sperrin 	return (ret);
16141646Sperrin }
1615