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 /* 225809Sperrin * Copyright 2008 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 170*7046Sahrens /* 171*7046Sahrens * We shouldn't be doing any scrubbing while we're doing log 172*7046Sahrens * replay, it's OK to not lock. 173*7046Sahrens */ 174*7046Sahrens error = arc_read_nolock(NULL, zilog->zl_spa, &blk, 1751807Sbonwick arc_getbuf_func, abufpp, ZIO_PRIORITY_SYNC_READ, ZIO_FLAG_CANFAIL | 1762391Smaybee ZIO_FLAG_SPECULATIVE | ZIO_FLAG_SCRUB, &aflags, &zb); 1771807Sbonwick 1781807Sbonwick if (error == 0) { 1791807Sbonwick char *data = (*abufpp)->b_data; 1801807Sbonwick uint64_t blksz = BP_GET_LSIZE(bp); 1811807Sbonwick zil_trailer_t *ztp = (zil_trailer_t *)(data + blksz) - 1; 1821807Sbonwick zio_cksum_t cksum = bp->blk_cksum; 1831544Seschrock 1841807Sbonwick /* 1851807Sbonwick * Sequence numbers should be... sequential. The checksum 1861807Sbonwick * verifier for the next block should be bp's checksum plus 1. 1871807Sbonwick */ 1881807Sbonwick cksum.zc_word[ZIL_ZC_SEQ]++; 1891807Sbonwick 1901807Sbonwick if (bcmp(&cksum, &ztp->zit_next_blk.blk_cksum, sizeof (cksum))) 1911807Sbonwick error = ESTALE; 1921807Sbonwick else if (BP_IS_HOLE(&ztp->zit_next_blk)) 1931807Sbonwick error = ENOENT; 1941807Sbonwick else if (ztp->zit_nused > (blksz - sizeof (zil_trailer_t))) 1951807Sbonwick error = EOVERFLOW; 1961807Sbonwick 1971807Sbonwick if (error) { 1981807Sbonwick VERIFY(arc_buf_remove_ref(*abufpp, abufpp) == 1); 1991807Sbonwick *abufpp = NULL; 2001807Sbonwick } 201789Sahrens } 202789Sahrens 2031807Sbonwick dprintf("error %d on %llu:%llu\n", error, zb.zb_objset, zb.zb_blkid); 204789Sahrens 2051807Sbonwick return (error); 206789Sahrens } 207789Sahrens 208789Sahrens /* 209789Sahrens * Parse the intent log, and call parse_func for each valid record within. 2101807Sbonwick * Return the highest sequence number. 211789Sahrens */ 2121807Sbonwick uint64_t 213789Sahrens zil_parse(zilog_t *zilog, zil_parse_blk_func_t *parse_blk_func, 214789Sahrens zil_parse_lr_func_t *parse_lr_func, void *arg, uint64_t txg) 215789Sahrens { 2161807Sbonwick const zil_header_t *zh = zilog->zl_header; 2171807Sbonwick uint64_t claim_seq = zh->zh_claim_seq; 2181807Sbonwick uint64_t seq = 0; 2191807Sbonwick uint64_t max_seq = 0; 2201807Sbonwick blkptr_t blk = zh->zh_log; 2211807Sbonwick arc_buf_t *abuf; 222789Sahrens char *lrbuf, *lrp; 223789Sahrens zil_trailer_t *ztp; 224789Sahrens int reclen, error; 225789Sahrens 226789Sahrens if (BP_IS_HOLE(&blk)) 2271807Sbonwick return (max_seq); 228789Sahrens 229789Sahrens /* 230789Sahrens * Starting at the block pointed to by zh_log we read the log chain. 231789Sahrens * For each block in the chain we strongly check that block to 232789Sahrens * ensure its validity. We stop when an invalid block is found. 233789Sahrens * For each block pointer in the chain we call parse_blk_func(). 234789Sahrens * For each record in each valid block we call parse_lr_func(). 2351807Sbonwick * If the log has been claimed, stop if we encounter a sequence 2361807Sbonwick * number greater than the highest claimed sequence number. 237789Sahrens */ 238789Sahrens zil_dva_tree_init(&zilog->zl_dva_tree); 239789Sahrens for (;;) { 2401807Sbonwick seq = blk.blk_cksum.zc_word[ZIL_ZC_SEQ]; 2411807Sbonwick 2421807Sbonwick if (claim_seq != 0 && seq > claim_seq) 2431807Sbonwick break; 2441807Sbonwick 2451807Sbonwick ASSERT(max_seq < seq); 2461807Sbonwick max_seq = seq; 2471807Sbonwick 2481807Sbonwick error = zil_read_log_block(zilog, &blk, &abuf); 249789Sahrens 250789Sahrens if (parse_blk_func != NULL) 251789Sahrens parse_blk_func(zilog, &blk, arg, txg); 252789Sahrens 253789Sahrens if (error) 254789Sahrens break; 255789Sahrens 2561807Sbonwick lrbuf = abuf->b_data; 257789Sahrens ztp = (zil_trailer_t *)(lrbuf + BP_GET_LSIZE(&blk)) - 1; 258789Sahrens blk = ztp->zit_next_blk; 259789Sahrens 2601807Sbonwick if (parse_lr_func == NULL) { 2611807Sbonwick VERIFY(arc_buf_remove_ref(abuf, &abuf) == 1); 262789Sahrens continue; 2631807Sbonwick } 264789Sahrens 265789Sahrens for (lrp = lrbuf; lrp < lrbuf + ztp->zit_nused; lrp += reclen) { 266789Sahrens lr_t *lr = (lr_t *)lrp; 267789Sahrens reclen = lr->lrc_reclen; 268789Sahrens ASSERT3U(reclen, >=, sizeof (lr_t)); 269789Sahrens parse_lr_func(zilog, lr, arg, txg); 270789Sahrens } 2711807Sbonwick VERIFY(arc_buf_remove_ref(abuf, &abuf) == 1); 272789Sahrens } 273789Sahrens zil_dva_tree_fini(&zilog->zl_dva_tree); 2741807Sbonwick 2751807Sbonwick return (max_seq); 276789Sahrens } 277789Sahrens 278789Sahrens /* ARGSUSED */ 279789Sahrens static void 280789Sahrens zil_claim_log_block(zilog_t *zilog, blkptr_t *bp, void *tx, uint64_t first_txg) 281789Sahrens { 282789Sahrens spa_t *spa = zilog->zl_spa; 283789Sahrens int err; 284789Sahrens 285789Sahrens /* 286789Sahrens * Claim log block if not already committed and not already claimed. 287789Sahrens */ 288789Sahrens if (bp->blk_birth >= first_txg && 289789Sahrens zil_dva_tree_add(&zilog->zl_dva_tree, BP_IDENTITY(bp)) == 0) { 290789Sahrens err = zio_wait(zio_claim(NULL, spa, first_txg, bp, NULL, NULL)); 291789Sahrens ASSERT(err == 0); 292789Sahrens } 293789Sahrens } 294789Sahrens 295789Sahrens static void 296789Sahrens zil_claim_log_record(zilog_t *zilog, lr_t *lrc, void *tx, uint64_t first_txg) 297789Sahrens { 298789Sahrens if (lrc->lrc_txtype == TX_WRITE) { 299789Sahrens lr_write_t *lr = (lr_write_t *)lrc; 300789Sahrens zil_claim_log_block(zilog, &lr->lr_blkptr, tx, first_txg); 301789Sahrens } 302789Sahrens } 303789Sahrens 304789Sahrens /* ARGSUSED */ 305789Sahrens static void 306789Sahrens zil_free_log_block(zilog_t *zilog, blkptr_t *bp, void *tx, uint64_t claim_txg) 307789Sahrens { 308789Sahrens zio_free_blk(zilog->zl_spa, bp, dmu_tx_get_txg(tx)); 309789Sahrens } 310789Sahrens 311789Sahrens static void 312789Sahrens zil_free_log_record(zilog_t *zilog, lr_t *lrc, void *tx, uint64_t claim_txg) 313789Sahrens { 314789Sahrens /* 315789Sahrens * If we previously claimed it, we need to free it. 316789Sahrens */ 317789Sahrens if (claim_txg != 0 && lrc->lrc_txtype == TX_WRITE) { 318789Sahrens lr_write_t *lr = (lr_write_t *)lrc; 319789Sahrens blkptr_t *bp = &lr->lr_blkptr; 320789Sahrens if (bp->blk_birth >= claim_txg && 321789Sahrens !zil_dva_tree_add(&zilog->zl_dva_tree, BP_IDENTITY(bp))) { 322789Sahrens (void) arc_free(NULL, zilog->zl_spa, 323789Sahrens dmu_tx_get_txg(tx), bp, NULL, NULL, ARC_WAIT); 324789Sahrens } 325789Sahrens } 326789Sahrens } 327789Sahrens 328789Sahrens /* 329789Sahrens * Create an on-disk intent log. 330789Sahrens */ 331789Sahrens static void 332789Sahrens zil_create(zilog_t *zilog) 333789Sahrens { 3341807Sbonwick const zil_header_t *zh = zilog->zl_header; 335789Sahrens lwb_t *lwb; 3361807Sbonwick uint64_t txg = 0; 3371807Sbonwick dmu_tx_t *tx = NULL; 338789Sahrens blkptr_t blk; 3391807Sbonwick int error = 0; 340789Sahrens 341789Sahrens /* 3421807Sbonwick * Wait for any previous destroy to complete. 343789Sahrens */ 3441807Sbonwick txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg); 3451807Sbonwick 3461807Sbonwick ASSERT(zh->zh_claim_txg == 0); 3471807Sbonwick ASSERT(zh->zh_replay_seq == 0); 3481807Sbonwick 3491807Sbonwick blk = zh->zh_log; 350789Sahrens 351789Sahrens /* 3521807Sbonwick * If we don't already have an initial log block, allocate one now. 353789Sahrens */ 3541807Sbonwick if (BP_IS_HOLE(&blk)) { 3551807Sbonwick tx = dmu_tx_create(zilog->zl_os); 3561807Sbonwick (void) dmu_tx_assign(tx, TXG_WAIT); 3571807Sbonwick dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 3581807Sbonwick txg = dmu_tx_get_txg(tx); 3591807Sbonwick 3603063Sperrin error = zio_alloc_blk(zilog->zl_spa, ZIL_MIN_BLKSZ, &blk, 3613063Sperrin NULL, txg); 3621807Sbonwick 3631807Sbonwick if (error == 0) 3641807Sbonwick zil_init_log_chain(zilog, &blk); 3651362Sperrin } 3661807Sbonwick 3671807Sbonwick /* 3681807Sbonwick * Allocate a log write buffer (lwb) for the first log block. 3691807Sbonwick */ 370789Sahrens if (error == 0) { 371789Sahrens lwb = kmem_cache_alloc(zil_lwb_cache, KM_SLEEP); 372789Sahrens lwb->lwb_zilog = zilog; 373789Sahrens lwb->lwb_blk = blk; 374789Sahrens lwb->lwb_nused = 0; 375789Sahrens lwb->lwb_sz = BP_GET_LSIZE(&lwb->lwb_blk); 376789Sahrens lwb->lwb_buf = zio_buf_alloc(lwb->lwb_sz); 377789Sahrens lwb->lwb_max_txg = txg; 3782237Smaybee lwb->lwb_zio = NULL; 3792237Smaybee 380789Sahrens mutex_enter(&zilog->zl_lock); 381789Sahrens list_insert_tail(&zilog->zl_lwb_list, lwb); 382789Sahrens mutex_exit(&zilog->zl_lock); 383789Sahrens } 384789Sahrens 3851807Sbonwick /* 3861807Sbonwick * If we just allocated the first log block, commit our transaction 3871807Sbonwick * and wait for zil_sync() to stuff the block poiner into zh_log. 3881807Sbonwick * (zh is part of the MOS, so we cannot modify it in open context.) 3891807Sbonwick */ 3901807Sbonwick if (tx != NULL) { 3911807Sbonwick dmu_tx_commit(tx); 3921362Sperrin txg_wait_synced(zilog->zl_dmu_pool, txg); 3931807Sbonwick } 3941807Sbonwick 3951807Sbonwick ASSERT(bcmp(&blk, &zh->zh_log, sizeof (blk)) == 0); 396789Sahrens } 397789Sahrens 398789Sahrens /* 399789Sahrens * In one tx, free all log blocks and clear the log header. 4001807Sbonwick * If keep_first is set, then we're replaying a log with no content. 4011807Sbonwick * We want to keep the first block, however, so that the first 4021807Sbonwick * synchronous transaction doesn't require a txg_wait_synced() 4031807Sbonwick * in zil_create(). We don't need to txg_wait_synced() here either 4041807Sbonwick * when keep_first is set, because both zil_create() and zil_destroy() 4051807Sbonwick * will wait for any in-progress destroys to complete. 406789Sahrens */ 407789Sahrens void 4081807Sbonwick zil_destroy(zilog_t *zilog, boolean_t keep_first) 409789Sahrens { 4101807Sbonwick const zil_header_t *zh = zilog->zl_header; 4111807Sbonwick lwb_t *lwb; 412789Sahrens dmu_tx_t *tx; 413789Sahrens uint64_t txg; 414789Sahrens 4151807Sbonwick /* 4161807Sbonwick * Wait for any previous destroy to complete. 4171807Sbonwick */ 4181807Sbonwick txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg); 419789Sahrens 4201807Sbonwick if (BP_IS_HOLE(&zh->zh_log)) 421789Sahrens return; 422789Sahrens 423789Sahrens tx = dmu_tx_create(zilog->zl_os); 424789Sahrens (void) dmu_tx_assign(tx, TXG_WAIT); 425789Sahrens dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 426789Sahrens txg = dmu_tx_get_txg(tx); 427789Sahrens 4281807Sbonwick mutex_enter(&zilog->zl_lock); 4291807Sbonwick 4305223Sperrin /* 4315223Sperrin * It is possible for the ZIL to get the previously mounted zilog 4325223Sperrin * structure of the same dataset if quickly remounted and the dbuf 4335223Sperrin * eviction has not completed. In this case we can see a non 4345223Sperrin * empty lwb list and keep_first will be set. We fix this by 4355223Sperrin * clearing the keep_first. This will be slower but it's very rare. 4365223Sperrin */ 4375223Sperrin if (!list_is_empty(&zilog->zl_lwb_list) && keep_first) 4385223Sperrin keep_first = B_FALSE; 4395223Sperrin 4401807Sbonwick ASSERT3U(zilog->zl_destroy_txg, <, txg); 441789Sahrens zilog->zl_destroy_txg = txg; 4421807Sbonwick zilog->zl_keep_first = keep_first; 4431807Sbonwick 4441807Sbonwick if (!list_is_empty(&zilog->zl_lwb_list)) { 4451807Sbonwick ASSERT(zh->zh_claim_txg == 0); 4461807Sbonwick ASSERT(!keep_first); 4471807Sbonwick while ((lwb = list_head(&zilog->zl_lwb_list)) != NULL) { 4481807Sbonwick list_remove(&zilog->zl_lwb_list, lwb); 4491807Sbonwick if (lwb->lwb_buf != NULL) 4501807Sbonwick zio_buf_free(lwb->lwb_buf, lwb->lwb_sz); 4511807Sbonwick zio_free_blk(zilog->zl_spa, &lwb->lwb_blk, txg); 4521807Sbonwick kmem_cache_free(zil_lwb_cache, lwb); 4531807Sbonwick } 4541807Sbonwick } else { 4551807Sbonwick if (!keep_first) { 4561807Sbonwick (void) zil_parse(zilog, zil_free_log_block, 4571807Sbonwick zil_free_log_record, tx, zh->zh_claim_txg); 4581807Sbonwick } 4591807Sbonwick } 4602638Sperrin mutex_exit(&zilog->zl_lock); 461789Sahrens 462789Sahrens dmu_tx_commit(tx); 463789Sahrens } 464789Sahrens 4654935Sperrin /* 4664935Sperrin * zil_rollback_destroy() is only called by the rollback code. 4674935Sperrin * We already have a syncing tx. Rollback has exclusive access to the 4684935Sperrin * dataset, so we don't have to worry about concurrent zil access. 4694935Sperrin * The actual freeing of any log blocks occurs in zil_sync() later in 4704935Sperrin * this txg syncing phase. 4714935Sperrin */ 4724935Sperrin void 4734935Sperrin zil_rollback_destroy(zilog_t *zilog, dmu_tx_t *tx) 4744935Sperrin { 4754935Sperrin const zil_header_t *zh = zilog->zl_header; 4764935Sperrin uint64_t txg; 4774935Sperrin 4784935Sperrin if (BP_IS_HOLE(&zh->zh_log)) 4794935Sperrin return; 4804935Sperrin 4814935Sperrin txg = dmu_tx_get_txg(tx); 4824935Sperrin ASSERT3U(zilog->zl_destroy_txg, <, txg); 4834935Sperrin zilog->zl_destroy_txg = txg; 4844935Sperrin zilog->zl_keep_first = B_FALSE; 4854935Sperrin 4865809Sperrin /* 4875809Sperrin * Ensure there's no outstanding ZIL IO. No lwbs or just the 4885809Sperrin * unused one that allocated in advance is ok. 4895809Sperrin */ 4905809Sperrin ASSERT(zilog->zl_lwb_list.list_head.list_next == 4915809Sperrin zilog->zl_lwb_list.list_head.list_prev); 4924935Sperrin (void) zil_parse(zilog, zil_free_log_block, zil_free_log_record, 4934935Sperrin tx, zh->zh_claim_txg); 4944935Sperrin } 4954935Sperrin 4962199Sahrens int 497789Sahrens zil_claim(char *osname, void *txarg) 498789Sahrens { 499789Sahrens dmu_tx_t *tx = txarg; 500789Sahrens uint64_t first_txg = dmu_tx_get_txg(tx); 501789Sahrens zilog_t *zilog; 502789Sahrens zil_header_t *zh; 503789Sahrens objset_t *os; 504789Sahrens int error; 505789Sahrens 5066689Smaybee error = dmu_objset_open(osname, DMU_OST_ANY, DS_MODE_USER, &os); 507789Sahrens if (error) { 508789Sahrens cmn_err(CE_WARN, "can't process intent log for %s", osname); 5092199Sahrens return (0); 510789Sahrens } 511789Sahrens 512789Sahrens zilog = dmu_objset_zil(os); 5131807Sbonwick zh = zil_header_in_syncing_context(zilog); 514789Sahrens 515789Sahrens /* 5161807Sbonwick * Claim all log blocks if we haven't already done so, and remember 5171807Sbonwick * the highest claimed sequence number. This ensures that if we can 5181807Sbonwick * read only part of the log now (e.g. due to a missing device), 5191807Sbonwick * but we can read the entire log later, we will not try to replay 5201807Sbonwick * or destroy beyond the last block we successfully claimed. 521789Sahrens */ 522789Sahrens ASSERT3U(zh->zh_claim_txg, <=, first_txg); 523789Sahrens if (zh->zh_claim_txg == 0 && !BP_IS_HOLE(&zh->zh_log)) { 524789Sahrens zh->zh_claim_txg = first_txg; 5251807Sbonwick zh->zh_claim_seq = zil_parse(zilog, zil_claim_log_block, 5261807Sbonwick zil_claim_log_record, tx, first_txg); 527789Sahrens dsl_dataset_dirty(dmu_objset_ds(os), tx); 528789Sahrens } 5291807Sbonwick 530789Sahrens ASSERT3U(first_txg, ==, (spa_last_synced_txg(zilog->zl_spa) + 1)); 531789Sahrens dmu_objset_close(os); 5322199Sahrens return (0); 533789Sahrens } 534789Sahrens 5355688Sbonwick static int 5365688Sbonwick zil_vdev_compare(const void *x1, const void *x2) 537789Sahrens { 5385875Sperrin uint64_t v1 = ((zil_vdev_node_t *)x1)->zv_vdev; 5395875Sperrin uint64_t v2 = ((zil_vdev_node_t *)x2)->zv_vdev; 5405688Sbonwick 5415688Sbonwick if (v1 < v2) 5425688Sbonwick return (-1); 5435688Sbonwick if (v1 > v2) 5445688Sbonwick return (1); 5455688Sbonwick 5465688Sbonwick return (0); 5475688Sbonwick } 5485688Sbonwick 5495688Sbonwick void 5505688Sbonwick zil_add_block(zilog_t *zilog, blkptr_t *bp) 5515688Sbonwick { 5525688Sbonwick avl_tree_t *t = &zilog->zl_vdev_tree; 5535688Sbonwick avl_index_t where; 5545688Sbonwick zil_vdev_node_t *zv, zvsearch; 5555688Sbonwick int ndvas = BP_GET_NDVAS(bp); 5565688Sbonwick int i; 557789Sahrens 5582986Sek110237 if (zfs_nocacheflush) 559789Sahrens return; 560789Sahrens 5615688Sbonwick ASSERT(zilog->zl_writer); 5625688Sbonwick 5635688Sbonwick /* 5645688Sbonwick * Even though we're zl_writer, we still need a lock because the 5655688Sbonwick * zl_get_data() callbacks may have dmu_sync() done callbacks 5665688Sbonwick * that will run concurrently. 5675688Sbonwick */ 5685688Sbonwick mutex_enter(&zilog->zl_vdev_lock); 5695688Sbonwick for (i = 0; i < ndvas; i++) { 5705688Sbonwick zvsearch.zv_vdev = DVA_GET_VDEV(&bp->blk_dva[i]); 5715688Sbonwick if (avl_find(t, &zvsearch, &where) == NULL) { 5725688Sbonwick zv = kmem_alloc(sizeof (*zv), KM_SLEEP); 5735688Sbonwick zv->zv_vdev = zvsearch.zv_vdev; 5745688Sbonwick avl_insert(t, zv, where); 5753063Sperrin } 5763063Sperrin } 5775688Sbonwick mutex_exit(&zilog->zl_vdev_lock); 5783063Sperrin } 5793063Sperrin 580789Sahrens void 5812638Sperrin zil_flush_vdevs(zilog_t *zilog) 582789Sahrens { 5833063Sperrin spa_t *spa = zilog->zl_spa; 5845688Sbonwick avl_tree_t *t = &zilog->zl_vdev_tree; 5855688Sbonwick void *cookie = NULL; 5865688Sbonwick zil_vdev_node_t *zv; 5875688Sbonwick zio_t *zio; 5883063Sperrin 5893063Sperrin ASSERT(zilog->zl_writer); 590789Sahrens 5915688Sbonwick /* 5925688Sbonwick * We don't need zl_vdev_lock here because we're the zl_writer, 5935688Sbonwick * and all zl_get_data() callbacks are done. 5945688Sbonwick */ 5955688Sbonwick if (avl_numnodes(t) == 0) 5965688Sbonwick return; 5975688Sbonwick 5985688Sbonwick spa_config_enter(spa, RW_READER, FTAG); 5995688Sbonwick 6005688Sbonwick zio = zio_root(spa, NULL, NULL, 6015688Sbonwick ZIO_FLAG_CONFIG_HELD | ZIO_FLAG_CANFAIL); 6025688Sbonwick 6035688Sbonwick while ((zv = avl_destroy_nodes(t, &cookie)) != NULL) { 6045688Sbonwick vdev_t *vd = vdev_lookup_top(spa, zv->zv_vdev); 6055688Sbonwick if (vd != NULL) 6065688Sbonwick zio_flush(zio, vd); 6075688Sbonwick kmem_free(zv, sizeof (*zv)); 6083063Sperrin } 609789Sahrens 610789Sahrens /* 611789Sahrens * Wait for all the flushes to complete. Not all devices actually 612789Sahrens * support the DKIOCFLUSHWRITECACHE ioctl, so it's OK if it fails. 613789Sahrens */ 6145688Sbonwick (void) zio_wait(zio); 6155688Sbonwick 6165688Sbonwick spa_config_exit(spa, FTAG); 617789Sahrens } 618789Sahrens 619789Sahrens /* 620789Sahrens * Function called when a log block write completes 621789Sahrens */ 622789Sahrens static void 623789Sahrens zil_lwb_write_done(zio_t *zio) 624789Sahrens { 625789Sahrens lwb_t *lwb = zio->io_private; 626789Sahrens zilog_t *zilog = lwb->lwb_zilog; 627789Sahrens 628789Sahrens /* 629789Sahrens * Now that we've written this log block, we have a stable pointer 630789Sahrens * to the next block in the chain, so it's OK to let the txg in 631789Sahrens * which we allocated the next block sync. 632789Sahrens */ 633789Sahrens txg_rele_to_sync(&lwb->lwb_txgh); 634789Sahrens 635789Sahrens zio_buf_free(lwb->lwb_buf, lwb->lwb_sz); 636789Sahrens mutex_enter(&zilog->zl_lock); 637789Sahrens lwb->lwb_buf = NULL; 6384527Sperrin if (zio->io_error) 639789Sahrens zilog->zl_log_error = B_TRUE; 640789Sahrens mutex_exit(&zilog->zl_lock); 641789Sahrens } 642789Sahrens 643789Sahrens /* 6442237Smaybee * Initialize the io for a log block. 6452237Smaybee * 6462237Smaybee * Note, we should not initialize the IO until we are about 6472237Smaybee * to use it, since zio_rewrite() does a spa_config_enter(). 6482237Smaybee */ 6492237Smaybee static void 6502237Smaybee zil_lwb_write_init(zilog_t *zilog, lwb_t *lwb) 6512237Smaybee { 6522237Smaybee zbookmark_t zb; 6532237Smaybee 6542237Smaybee zb.zb_objset = lwb->lwb_blk.blk_cksum.zc_word[ZIL_ZC_OBJSET]; 6552237Smaybee zb.zb_object = 0; 6562237Smaybee zb.zb_level = -1; 6572237Smaybee zb.zb_blkid = lwb->lwb_blk.blk_cksum.zc_word[ZIL_ZC_SEQ]; 6582237Smaybee 6592638Sperrin if (zilog->zl_root_zio == NULL) { 6602638Sperrin zilog->zl_root_zio = zio_root(zilog->zl_spa, NULL, NULL, 6612638Sperrin ZIO_FLAG_CANFAIL); 6622638Sperrin } 6633063Sperrin if (lwb->lwb_zio == NULL) { 6643063Sperrin lwb->lwb_zio = zio_rewrite(zilog->zl_root_zio, zilog->zl_spa, 6657030Sperrin ZIO_CHECKSUM_ZILOG, &lwb->lwb_blk, lwb->lwb_buf, 6663063Sperrin lwb->lwb_sz, zil_lwb_write_done, lwb, 6674527Sperrin ZIO_PRIORITY_LOG_WRITE, ZIO_FLAG_CANFAIL, &zb); 6683063Sperrin } 6692237Smaybee } 6702237Smaybee 6712237Smaybee /* 672789Sahrens * Start a log block write and advance to the next log block. 673789Sahrens * Calls are serialized. 674789Sahrens */ 675789Sahrens static lwb_t * 676789Sahrens zil_lwb_write_start(zilog_t *zilog, lwb_t *lwb) 677789Sahrens { 678789Sahrens lwb_t *nlwb; 679789Sahrens zil_trailer_t *ztp = (zil_trailer_t *)(lwb->lwb_buf + lwb->lwb_sz) - 1; 6801807Sbonwick spa_t *spa = zilog->zl_spa; 6811807Sbonwick blkptr_t *bp = &ztp->zit_next_blk; 682789Sahrens uint64_t txg; 683789Sahrens uint64_t zil_blksz; 684789Sahrens int error; 685789Sahrens 686789Sahrens ASSERT(lwb->lwb_nused <= ZIL_BLK_DATA_SZ(lwb)); 687789Sahrens 688789Sahrens /* 689789Sahrens * Allocate the next block and save its address in this block 690789Sahrens * before writing it in order to establish the log chain. 691789Sahrens * Note that if the allocation of nlwb synced before we wrote 692789Sahrens * the block that points at it (lwb), we'd leak it if we crashed. 693789Sahrens * Therefore, we don't do txg_rele_to_sync() until zil_lwb_write_done(). 694789Sahrens */ 695789Sahrens txg = txg_hold_open(zilog->zl_dmu_pool, &lwb->lwb_txgh); 696789Sahrens txg_rele_to_quiesce(&lwb->lwb_txgh); 697789Sahrens 698789Sahrens /* 6991141Sperrin * Pick a ZIL blocksize. We request a size that is the 7001141Sperrin * maximum of the previous used size, the current used size and 7011141Sperrin * the amount waiting in the queue. 702789Sahrens */ 7032237Smaybee zil_blksz = MAX(zilog->zl_prev_used, 7042237Smaybee zilog->zl_cur_used + sizeof (*ztp)); 7051141Sperrin zil_blksz = MAX(zil_blksz, zilog->zl_itx_list_sz + sizeof (*ztp)); 7061842Sperrin zil_blksz = P2ROUNDUP_TYPED(zil_blksz, ZIL_MIN_BLKSZ, uint64_t); 7071141Sperrin if (zil_blksz > ZIL_MAX_BLKSZ) 7081141Sperrin zil_blksz = ZIL_MAX_BLKSZ; 709789Sahrens 7103063Sperrin BP_ZERO(bp); 7113063Sperrin /* pass the old blkptr in order to spread log blocks across devs */ 7123063Sperrin error = zio_alloc_blk(spa, zil_blksz, bp, &lwb->lwb_blk, txg); 713789Sahrens if (error) { 7143668Sgw25295 dmu_tx_t *tx = dmu_tx_create_assigned(zilog->zl_dmu_pool, txg); 7153668Sgw25295 7161544Seschrock /* 7173668Sgw25295 * We dirty the dataset to ensure that zil_sync() will 7183668Sgw25295 * be called to remove this lwb from our zl_lwb_list. 7193668Sgw25295 * Failing to do so, may leave an lwb with a NULL lwb_buf 7203668Sgw25295 * hanging around on the zl_lwb_list. 7213668Sgw25295 */ 7223668Sgw25295 dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 7233848Sgw25295 dmu_tx_commit(tx); 7243668Sgw25295 7253668Sgw25295 /* 7263668Sgw25295 * Since we've just experienced an allocation failure so we 7273668Sgw25295 * terminate the current lwb and send it on its way. 7283668Sgw25295 */ 7293668Sgw25295 ztp->zit_pad = 0; 7303668Sgw25295 ztp->zit_nused = lwb->lwb_nused; 7313668Sgw25295 ztp->zit_bt.zbt_cksum = lwb->lwb_blk.blk_cksum; 7323668Sgw25295 zio_nowait(lwb->lwb_zio); 7333668Sgw25295 7343668Sgw25295 /* 7351544Seschrock * By returning NULL the caller will call tx_wait_synced() 7361544Seschrock */ 737789Sahrens return (NULL); 738789Sahrens } 739789Sahrens 7401807Sbonwick ASSERT3U(bp->blk_birth, ==, txg); 7411544Seschrock ztp->zit_pad = 0; 742789Sahrens ztp->zit_nused = lwb->lwb_nused; 743789Sahrens ztp->zit_bt.zbt_cksum = lwb->lwb_blk.blk_cksum; 7441807Sbonwick bp->blk_cksum = lwb->lwb_blk.blk_cksum; 7451807Sbonwick bp->blk_cksum.zc_word[ZIL_ZC_SEQ]++; 746789Sahrens 747789Sahrens /* 748789Sahrens * Allocate a new log write buffer (lwb). 749789Sahrens */ 750789Sahrens nlwb = kmem_cache_alloc(zil_lwb_cache, KM_SLEEP); 751789Sahrens 752789Sahrens nlwb->lwb_zilog = zilog; 7531807Sbonwick nlwb->lwb_blk = *bp; 754789Sahrens nlwb->lwb_nused = 0; 755789Sahrens nlwb->lwb_sz = BP_GET_LSIZE(&nlwb->lwb_blk); 756789Sahrens nlwb->lwb_buf = zio_buf_alloc(nlwb->lwb_sz); 757789Sahrens nlwb->lwb_max_txg = txg; 7582237Smaybee nlwb->lwb_zio = NULL; 759789Sahrens 760789Sahrens /* 7613063Sperrin * Put new lwb at the end of the log chain 762789Sahrens */ 763789Sahrens mutex_enter(&zilog->zl_lock); 764789Sahrens list_insert_tail(&zilog->zl_lwb_list, nlwb); 7653063Sperrin mutex_exit(&zilog->zl_lock); 7663063Sperrin 7675688Sbonwick /* Record the block for later vdev flushing */ 7685688Sbonwick zil_add_block(zilog, &lwb->lwb_blk); 769789Sahrens 770789Sahrens /* 7712237Smaybee * kick off the write for the old log block 772789Sahrens */ 7732237Smaybee dprintf_bp(&lwb->lwb_blk, "lwb %p txg %llu: ", lwb, txg); 7743063Sperrin ASSERT(lwb->lwb_zio); 7752237Smaybee zio_nowait(lwb->lwb_zio); 776789Sahrens 777789Sahrens return (nlwb); 778789Sahrens } 779789Sahrens 780789Sahrens static lwb_t * 781789Sahrens zil_lwb_commit(zilog_t *zilog, itx_t *itx, lwb_t *lwb) 782789Sahrens { 783789Sahrens lr_t *lrc = &itx->itx_lr; /* common log record */ 7842237Smaybee lr_write_t *lr = (lr_write_t *)lrc; 785789Sahrens uint64_t txg = lrc->lrc_txg; 786789Sahrens uint64_t reclen = lrc->lrc_reclen; 7872237Smaybee uint64_t dlen; 788789Sahrens 789789Sahrens if (lwb == NULL) 790789Sahrens return (NULL); 791789Sahrens ASSERT(lwb->lwb_buf != NULL); 792789Sahrens 7932237Smaybee if (lrc->lrc_txtype == TX_WRITE && itx->itx_wr_state == WR_NEED_COPY) 7942237Smaybee dlen = P2ROUNDUP_TYPED( 7952237Smaybee lr->lr_length, sizeof (uint64_t), uint64_t); 7962237Smaybee else 7972237Smaybee dlen = 0; 7981669Sperrin 7991669Sperrin zilog->zl_cur_used += (reclen + dlen); 8001669Sperrin 8013063Sperrin zil_lwb_write_init(zilog, lwb); 8023063Sperrin 8031669Sperrin /* 8041669Sperrin * If this record won't fit in the current log block, start a new one. 8051669Sperrin */ 8061669Sperrin if (lwb->lwb_nused + reclen + dlen > ZIL_BLK_DATA_SZ(lwb)) { 8071669Sperrin lwb = zil_lwb_write_start(zilog, lwb); 8082237Smaybee if (lwb == NULL) 8091669Sperrin return (NULL); 8103063Sperrin zil_lwb_write_init(zilog, lwb); 8111669Sperrin ASSERT(lwb->lwb_nused == 0); 8121669Sperrin if (reclen + dlen > ZIL_BLK_DATA_SZ(lwb)) { 8131669Sperrin txg_wait_synced(zilog->zl_dmu_pool, txg); 814789Sahrens return (lwb); 815789Sahrens } 816789Sahrens } 817789Sahrens 8182638Sperrin /* 8192638Sperrin * Update the lrc_seq, to be log record sequence number. See zil.h 8202638Sperrin * Then copy the record to the log buffer. 8212638Sperrin */ 8222638Sperrin lrc->lrc_seq = ++zilog->zl_lr_seq; /* we are single threaded */ 823789Sahrens bcopy(lrc, lwb->lwb_buf + lwb->lwb_nused, reclen); 8242237Smaybee 8252237Smaybee /* 8262237Smaybee * If it's a write, fetch the data or get its blkptr as appropriate. 8272237Smaybee */ 8282237Smaybee if (lrc->lrc_txtype == TX_WRITE) { 8292237Smaybee if (txg > spa_freeze_txg(zilog->zl_spa)) 8302237Smaybee txg_wait_synced(zilog->zl_dmu_pool, txg); 8312237Smaybee if (itx->itx_wr_state != WR_COPIED) { 8322237Smaybee char *dbuf; 8332237Smaybee int error; 8342237Smaybee 8352237Smaybee /* alignment is guaranteed */ 8362237Smaybee lr = (lr_write_t *)(lwb->lwb_buf + lwb->lwb_nused); 8372237Smaybee if (dlen) { 8382237Smaybee ASSERT(itx->itx_wr_state == WR_NEED_COPY); 8392237Smaybee dbuf = lwb->lwb_buf + lwb->lwb_nused + reclen; 8402237Smaybee lr->lr_common.lrc_reclen += dlen; 8412237Smaybee } else { 8422237Smaybee ASSERT(itx->itx_wr_state == WR_INDIRECT); 8432237Smaybee dbuf = NULL; 8442237Smaybee } 8452237Smaybee error = zilog->zl_get_data( 8462237Smaybee itx->itx_private, lr, dbuf, lwb->lwb_zio); 8472237Smaybee if (error) { 8482237Smaybee ASSERT(error == ENOENT || error == EEXIST || 8492237Smaybee error == EALREADY); 8502237Smaybee return (lwb); 8512237Smaybee } 8522237Smaybee } 8531669Sperrin } 8542237Smaybee 8552237Smaybee lwb->lwb_nused += reclen + dlen; 856789Sahrens lwb->lwb_max_txg = MAX(lwb->lwb_max_txg, txg); 857789Sahrens ASSERT3U(lwb->lwb_nused, <=, ZIL_BLK_DATA_SZ(lwb)); 858789Sahrens ASSERT3U(P2PHASE(lwb->lwb_nused, sizeof (uint64_t)), ==, 0); 859789Sahrens 860789Sahrens return (lwb); 861789Sahrens } 862789Sahrens 863789Sahrens itx_t * 8645331Samw zil_itx_create(uint64_t txtype, size_t lrsize) 865789Sahrens { 866789Sahrens itx_t *itx; 867789Sahrens 8681842Sperrin lrsize = P2ROUNDUP_TYPED(lrsize, sizeof (uint64_t), size_t); 869789Sahrens 870789Sahrens itx = kmem_alloc(offsetof(itx_t, itx_lr) + lrsize, KM_SLEEP); 871789Sahrens itx->itx_lr.lrc_txtype = txtype; 872789Sahrens itx->itx_lr.lrc_reclen = lrsize; 8736101Sperrin itx->itx_sod = lrsize; /* if write & WR_NEED_COPY will be increased */ 874789Sahrens itx->itx_lr.lrc_seq = 0; /* defensive */ 875789Sahrens 876789Sahrens return (itx); 877789Sahrens } 878789Sahrens 879789Sahrens uint64_t 880789Sahrens zil_itx_assign(zilog_t *zilog, itx_t *itx, dmu_tx_t *tx) 881789Sahrens { 882789Sahrens uint64_t seq; 883789Sahrens 884789Sahrens ASSERT(itx->itx_lr.lrc_seq == 0); 885789Sahrens 886789Sahrens mutex_enter(&zilog->zl_lock); 887789Sahrens list_insert_tail(&zilog->zl_itx_list, itx); 8886101Sperrin zilog->zl_itx_list_sz += itx->itx_sod; 889789Sahrens itx->itx_lr.lrc_txg = dmu_tx_get_txg(tx); 890789Sahrens itx->itx_lr.lrc_seq = seq = ++zilog->zl_itx_seq; 891789Sahrens mutex_exit(&zilog->zl_lock); 892789Sahrens 893789Sahrens return (seq); 894789Sahrens } 895789Sahrens 896789Sahrens /* 897789Sahrens * Free up all in-memory intent log transactions that have now been synced. 898789Sahrens */ 899789Sahrens static void 900789Sahrens zil_itx_clean(zilog_t *zilog) 901789Sahrens { 902789Sahrens uint64_t synced_txg = spa_last_synced_txg(zilog->zl_spa); 903789Sahrens uint64_t freeze_txg = spa_freeze_txg(zilog->zl_spa); 9043778Sjohansen list_t clean_list; 905789Sahrens itx_t *itx; 906789Sahrens 9073778Sjohansen list_create(&clean_list, sizeof (itx_t), offsetof(itx_t, itx_node)); 9083778Sjohansen 909789Sahrens mutex_enter(&zilog->zl_lock); 9102638Sperrin /* wait for a log writer to finish walking list */ 9112638Sperrin while (zilog->zl_writer) { 9122638Sperrin cv_wait(&zilog->zl_cv_writer, &zilog->zl_lock); 9132638Sperrin } 9143778Sjohansen 9153778Sjohansen /* 9163778Sjohansen * Move the sync'd log transactions to a separate list so we can call 9173778Sjohansen * kmem_free without holding the zl_lock. 9183778Sjohansen * 9193778Sjohansen * There is no need to set zl_writer as we don't drop zl_lock here 9203778Sjohansen */ 921789Sahrens while ((itx = list_head(&zilog->zl_itx_list)) != NULL && 922789Sahrens itx->itx_lr.lrc_txg <= MIN(synced_txg, freeze_txg)) { 923789Sahrens list_remove(&zilog->zl_itx_list, itx); 9246101Sperrin zilog->zl_itx_list_sz -= itx->itx_sod; 9253778Sjohansen list_insert_tail(&clean_list, itx); 9263778Sjohansen } 9273778Sjohansen cv_broadcast(&zilog->zl_cv_writer); 9283778Sjohansen mutex_exit(&zilog->zl_lock); 9293778Sjohansen 9303778Sjohansen /* destroy sync'd log transactions */ 9313778Sjohansen while ((itx = list_head(&clean_list)) != NULL) { 9323778Sjohansen list_remove(&clean_list, itx); 933789Sahrens kmem_free(itx, offsetof(itx_t, itx_lr) 934789Sahrens + itx->itx_lr.lrc_reclen); 935789Sahrens } 9363778Sjohansen list_destroy(&clean_list); 937789Sahrens } 938789Sahrens 9392638Sperrin /* 9403063Sperrin * If there are any in-memory intent log transactions which have now been 9413063Sperrin * synced then start up a taskq to free them. 9422638Sperrin */ 943789Sahrens void 944789Sahrens zil_clean(zilog_t *zilog) 945789Sahrens { 9463063Sperrin itx_t *itx; 9473063Sperrin 948789Sahrens mutex_enter(&zilog->zl_lock); 9493063Sperrin itx = list_head(&zilog->zl_itx_list); 9503063Sperrin if ((itx != NULL) && 9513063Sperrin (itx->itx_lr.lrc_txg <= spa_last_synced_txg(zilog->zl_spa))) { 952789Sahrens (void) taskq_dispatch(zilog->zl_clean_taskq, 953789Sahrens (void (*)(void *))zil_itx_clean, zilog, TQ_NOSLEEP); 9543063Sperrin } 955789Sahrens mutex_exit(&zilog->zl_lock); 956789Sahrens } 957789Sahrens 958789Sahrens void 9592638Sperrin zil_commit_writer(zilog_t *zilog, uint64_t seq, uint64_t foid) 960789Sahrens { 961789Sahrens uint64_t txg; 9623063Sperrin uint64_t commit_seq = 0; 9632638Sperrin itx_t *itx, *itx_next = (itx_t *)-1; 964789Sahrens lwb_t *lwb; 965789Sahrens spa_t *spa; 966789Sahrens 9672638Sperrin zilog->zl_writer = B_TRUE; 9682638Sperrin zilog->zl_root_zio = NULL; 969789Sahrens spa = zilog->zl_spa; 970789Sahrens 971789Sahrens if (zilog->zl_suspend) { 972789Sahrens lwb = NULL; 973789Sahrens } else { 974789Sahrens lwb = list_tail(&zilog->zl_lwb_list); 975789Sahrens if (lwb == NULL) { 9762638Sperrin /* 9772638Sperrin * Return if there's nothing to flush before we 9782638Sperrin * dirty the fs by calling zil_create() 9792638Sperrin */ 9802638Sperrin if (list_is_empty(&zilog->zl_itx_list)) { 9812638Sperrin zilog->zl_writer = B_FALSE; 9822638Sperrin return; 9832638Sperrin } 984789Sahrens mutex_exit(&zilog->zl_lock); 985789Sahrens zil_create(zilog); 986789Sahrens mutex_enter(&zilog->zl_lock); 987789Sahrens lwb = list_tail(&zilog->zl_lwb_list); 988789Sahrens } 989789Sahrens } 990789Sahrens 9913063Sperrin /* Loop through in-memory log transactions filling log blocks. */ 9922638Sperrin DTRACE_PROBE1(zil__cw1, zilog_t *, zilog); 993789Sahrens for (;;) { 9942638Sperrin /* 9952638Sperrin * Find the next itx to push: 9962638Sperrin * Push all transactions related to specified foid and all 9972638Sperrin * other transactions except TX_WRITE, TX_TRUNCATE, 9982638Sperrin * TX_SETATTR and TX_ACL for all other files. 9992638Sperrin */ 10002638Sperrin if (itx_next != (itx_t *)-1) 10012638Sperrin itx = itx_next; 10022638Sperrin else 10032638Sperrin itx = list_head(&zilog->zl_itx_list); 10042638Sperrin for (; itx != NULL; itx = list_next(&zilog->zl_itx_list, itx)) { 10052638Sperrin if (foid == 0) /* push all foids? */ 10062638Sperrin break; 10073063Sperrin if (itx->itx_sync) /* push all O_[D]SYNC */ 10083063Sperrin break; 10092638Sperrin switch (itx->itx_lr.lrc_txtype) { 10102638Sperrin case TX_SETATTR: 10112638Sperrin case TX_WRITE: 10122638Sperrin case TX_TRUNCATE: 10132638Sperrin case TX_ACL: 10142638Sperrin /* lr_foid is same offset for these records */ 10152638Sperrin if (((lr_write_t *)&itx->itx_lr)->lr_foid 10162638Sperrin != foid) { 10172638Sperrin continue; /* skip this record */ 10182638Sperrin } 10192638Sperrin } 10202638Sperrin break; 10212638Sperrin } 1022789Sahrens if (itx == NULL) 1023789Sahrens break; 1024789Sahrens 1025789Sahrens if ((itx->itx_lr.lrc_seq > seq) && 10262638Sperrin ((lwb == NULL) || (lwb->lwb_nused == 0) || 10276101Sperrin (lwb->lwb_nused + itx->itx_sod > ZIL_BLK_DATA_SZ(lwb)))) { 1028789Sahrens break; 10293063Sperrin } 1030789Sahrens 10312638Sperrin /* 10322638Sperrin * Save the next pointer. Even though we soon drop 10332638Sperrin * zl_lock all threads that may change the list 10342638Sperrin * (another writer or zil_itx_clean) can't do so until 10352638Sperrin * they have zl_writer. 10362638Sperrin */ 10372638Sperrin itx_next = list_next(&zilog->zl_itx_list, itx); 1038789Sahrens list_remove(&zilog->zl_itx_list, itx); 10396101Sperrin zilog->zl_itx_list_sz -= itx->itx_sod; 10403063Sperrin mutex_exit(&zilog->zl_lock); 1041789Sahrens txg = itx->itx_lr.lrc_txg; 1042789Sahrens ASSERT(txg); 1043789Sahrens 1044789Sahrens if (txg > spa_last_synced_txg(spa) || 1045789Sahrens txg > spa_freeze_txg(spa)) 1046789Sahrens lwb = zil_lwb_commit(zilog, itx, lwb); 1047789Sahrens kmem_free(itx, offsetof(itx_t, itx_lr) 1048789Sahrens + itx->itx_lr.lrc_reclen); 1049789Sahrens mutex_enter(&zilog->zl_lock); 1050789Sahrens } 10512638Sperrin DTRACE_PROBE1(zil__cw2, zilog_t *, zilog); 10523063Sperrin /* determine commit sequence number */ 10533063Sperrin itx = list_head(&zilog->zl_itx_list); 10543063Sperrin if (itx) 10553063Sperrin commit_seq = itx->itx_lr.lrc_seq; 10563063Sperrin else 10573063Sperrin commit_seq = zilog->zl_itx_seq; 1058789Sahrens mutex_exit(&zilog->zl_lock); 1059789Sahrens 1060789Sahrens /* write the last block out */ 10613063Sperrin if (lwb != NULL && lwb->lwb_zio != NULL) 1062789Sahrens lwb = zil_lwb_write_start(zilog, lwb); 1063789Sahrens 10641141Sperrin zilog->zl_prev_used = zilog->zl_cur_used; 10651141Sperrin zilog->zl_cur_used = 0; 10661141Sperrin 10672638Sperrin /* 10682638Sperrin * Wait if necessary for the log blocks to be on stable storage. 10692638Sperrin */ 10702638Sperrin if (zilog->zl_root_zio) { 10712638Sperrin DTRACE_PROBE1(zil__cw3, zilog_t *, zilog); 10722638Sperrin (void) zio_wait(zilog->zl_root_zio); 10732638Sperrin DTRACE_PROBE1(zil__cw4, zilog_t *, zilog); 10745688Sbonwick zil_flush_vdevs(zilog); 1075789Sahrens } 10761141Sperrin 1077789Sahrens if (zilog->zl_log_error || lwb == NULL) { 1078789Sahrens zilog->zl_log_error = 0; 1079789Sahrens txg_wait_synced(zilog->zl_dmu_pool, 0); 1080789Sahrens } 10813063Sperrin 10823063Sperrin mutex_enter(&zilog->zl_lock); 10831141Sperrin zilog->zl_writer = B_FALSE; 10843063Sperrin 10853063Sperrin ASSERT3U(commit_seq, >=, zilog->zl_commit_seq); 10863063Sperrin zilog->zl_commit_seq = commit_seq; 10872638Sperrin } 10882638Sperrin 10892638Sperrin /* 10902638Sperrin * Push zfs transactions to stable storage up to the supplied sequence number. 10912638Sperrin * If foid is 0 push out all transactions, otherwise push only those 10922638Sperrin * for that file or might have been used to create that file. 10932638Sperrin */ 10942638Sperrin void 10952638Sperrin zil_commit(zilog_t *zilog, uint64_t seq, uint64_t foid) 10962638Sperrin { 10972638Sperrin if (zilog == NULL || seq == 0) 10982638Sperrin return; 10992638Sperrin 11002638Sperrin mutex_enter(&zilog->zl_lock); 11012638Sperrin 11022638Sperrin seq = MIN(seq, zilog->zl_itx_seq); /* cap seq at largest itx seq */ 11032638Sperrin 11043063Sperrin while (zilog->zl_writer) { 11052638Sperrin cv_wait(&zilog->zl_cv_writer, &zilog->zl_lock); 11063063Sperrin if (seq < zilog->zl_commit_seq) { 11073063Sperrin mutex_exit(&zilog->zl_lock); 11083063Sperrin return; 11093063Sperrin } 11103063Sperrin } 11112638Sperrin zil_commit_writer(zilog, seq, foid); /* drops zl_lock */ 11123063Sperrin /* wake up others waiting on the commit */ 11133063Sperrin cv_broadcast(&zilog->zl_cv_writer); 11143063Sperrin mutex_exit(&zilog->zl_lock); 1115789Sahrens } 1116789Sahrens 1117789Sahrens /* 1118789Sahrens * Called in syncing context to free committed log blocks and update log header. 1119789Sahrens */ 1120789Sahrens void 1121789Sahrens zil_sync(zilog_t *zilog, dmu_tx_t *tx) 1122789Sahrens { 11231807Sbonwick zil_header_t *zh = zil_header_in_syncing_context(zilog); 1124789Sahrens uint64_t txg = dmu_tx_get_txg(tx); 1125789Sahrens spa_t *spa = zilog->zl_spa; 1126789Sahrens lwb_t *lwb; 1127789Sahrens 11281807Sbonwick mutex_enter(&zilog->zl_lock); 11291807Sbonwick 1130789Sahrens ASSERT(zilog->zl_stop_sync == 0); 1131789Sahrens 11321807Sbonwick zh->zh_replay_seq = zilog->zl_replay_seq[txg & TXG_MASK]; 1133789Sahrens 1134789Sahrens if (zilog->zl_destroy_txg == txg) { 11351807Sbonwick blkptr_t blk = zh->zh_log; 11361807Sbonwick 11371807Sbonwick ASSERT(list_head(&zilog->zl_lwb_list) == NULL); 11381807Sbonwick ASSERT(spa_sync_pass(spa) == 1); 11391807Sbonwick 11401807Sbonwick bzero(zh, sizeof (zil_header_t)); 1141789Sahrens bzero(zilog->zl_replay_seq, sizeof (zilog->zl_replay_seq)); 11421807Sbonwick 11431807Sbonwick if (zilog->zl_keep_first) { 11441807Sbonwick /* 11451807Sbonwick * If this block was part of log chain that couldn't 11461807Sbonwick * be claimed because a device was missing during 11471807Sbonwick * zil_claim(), but that device later returns, 11481807Sbonwick * then this block could erroneously appear valid. 11491807Sbonwick * To guard against this, assign a new GUID to the new 11501807Sbonwick * log chain so it doesn't matter what blk points to. 11511807Sbonwick */ 11521807Sbonwick zil_init_log_chain(zilog, &blk); 11531807Sbonwick zh->zh_log = blk; 11541807Sbonwick } 1155789Sahrens } 1156789Sahrens 1157789Sahrens for (;;) { 1158789Sahrens lwb = list_head(&zilog->zl_lwb_list); 1159789Sahrens if (lwb == NULL) { 1160789Sahrens mutex_exit(&zilog->zl_lock); 1161789Sahrens return; 1162789Sahrens } 11632638Sperrin zh->zh_log = lwb->lwb_blk; 1164789Sahrens if (lwb->lwb_buf != NULL || lwb->lwb_max_txg > txg) 1165789Sahrens break; 1166789Sahrens list_remove(&zilog->zl_lwb_list, lwb); 1167789Sahrens zio_free_blk(spa, &lwb->lwb_blk, txg); 1168789Sahrens kmem_cache_free(zil_lwb_cache, lwb); 11693668Sgw25295 11703668Sgw25295 /* 11713668Sgw25295 * If we don't have anything left in the lwb list then 11723668Sgw25295 * we've had an allocation failure and we need to zero 11733668Sgw25295 * out the zil_header blkptr so that we don't end 11743668Sgw25295 * up freeing the same block twice. 11753668Sgw25295 */ 11763668Sgw25295 if (list_head(&zilog->zl_lwb_list) == NULL) 11773668Sgw25295 BP_ZERO(&zh->zh_log); 1178789Sahrens } 1179789Sahrens mutex_exit(&zilog->zl_lock); 1180789Sahrens } 1181789Sahrens 1182789Sahrens void 1183789Sahrens zil_init(void) 1184789Sahrens { 1185789Sahrens zil_lwb_cache = kmem_cache_create("zil_lwb_cache", 11862856Snd150628 sizeof (struct lwb), 0, NULL, NULL, NULL, NULL, NULL, 0); 1187789Sahrens } 1188789Sahrens 1189789Sahrens void 1190789Sahrens zil_fini(void) 1191789Sahrens { 1192789Sahrens kmem_cache_destroy(zil_lwb_cache); 1193789Sahrens } 1194789Sahrens 1195789Sahrens zilog_t * 1196789Sahrens zil_alloc(objset_t *os, zil_header_t *zh_phys) 1197789Sahrens { 1198789Sahrens zilog_t *zilog; 1199789Sahrens 1200789Sahrens zilog = kmem_zalloc(sizeof (zilog_t), KM_SLEEP); 1201789Sahrens 1202789Sahrens zilog->zl_header = zh_phys; 1203789Sahrens zilog->zl_os = os; 1204789Sahrens zilog->zl_spa = dmu_objset_spa(os); 1205789Sahrens zilog->zl_dmu_pool = dmu_objset_pool(os); 12061807Sbonwick zilog->zl_destroy_txg = TXG_INITIAL - 1; 1207789Sahrens 12082856Snd150628 mutex_init(&zilog->zl_lock, NULL, MUTEX_DEFAULT, NULL); 12092856Snd150628 1210789Sahrens list_create(&zilog->zl_itx_list, sizeof (itx_t), 1211789Sahrens offsetof(itx_t, itx_node)); 1212789Sahrens 1213789Sahrens list_create(&zilog->zl_lwb_list, sizeof (lwb_t), 1214789Sahrens offsetof(lwb_t, lwb_node)); 1215789Sahrens 12165688Sbonwick mutex_init(&zilog->zl_vdev_lock, NULL, MUTEX_DEFAULT, NULL); 12175688Sbonwick 12185688Sbonwick avl_create(&zilog->zl_vdev_tree, zil_vdev_compare, 12195688Sbonwick sizeof (zil_vdev_node_t), offsetof(zil_vdev_node_t, zv_node)); 1220789Sahrens 12215913Sperrin cv_init(&zilog->zl_cv_writer, NULL, CV_DEFAULT, NULL); 12225913Sperrin cv_init(&zilog->zl_cv_suspend, NULL, CV_DEFAULT, NULL); 12235913Sperrin 1224789Sahrens return (zilog); 1225789Sahrens } 1226789Sahrens 1227789Sahrens void 1228789Sahrens zil_free(zilog_t *zilog) 1229789Sahrens { 1230789Sahrens lwb_t *lwb; 1231789Sahrens 1232789Sahrens zilog->zl_stop_sync = 1; 1233789Sahrens 1234789Sahrens while ((lwb = list_head(&zilog->zl_lwb_list)) != NULL) { 1235789Sahrens list_remove(&zilog->zl_lwb_list, lwb); 1236789Sahrens if (lwb->lwb_buf != NULL) 1237789Sahrens zio_buf_free(lwb->lwb_buf, lwb->lwb_sz); 1238789Sahrens kmem_cache_free(zil_lwb_cache, lwb); 1239789Sahrens } 1240789Sahrens list_destroy(&zilog->zl_lwb_list); 1241789Sahrens 12425688Sbonwick avl_destroy(&zilog->zl_vdev_tree); 12435688Sbonwick mutex_destroy(&zilog->zl_vdev_lock); 1244789Sahrens 1245789Sahrens ASSERT(list_head(&zilog->zl_itx_list) == NULL); 1246789Sahrens list_destroy(&zilog->zl_itx_list); 12472856Snd150628 mutex_destroy(&zilog->zl_lock); 1248789Sahrens 12495913Sperrin cv_destroy(&zilog->zl_cv_writer); 12505913Sperrin cv_destroy(&zilog->zl_cv_suspend); 12515913Sperrin 1252789Sahrens kmem_free(zilog, sizeof (zilog_t)); 1253789Sahrens } 1254789Sahrens 1255789Sahrens /* 12561646Sperrin * return true if the initial log block is not valid 12571362Sperrin */ 12581362Sperrin static int 12591362Sperrin zil_empty(zilog_t *zilog) 12601362Sperrin { 12611807Sbonwick const zil_header_t *zh = zilog->zl_header; 12621807Sbonwick arc_buf_t *abuf = NULL; 12631362Sperrin 12641807Sbonwick if (BP_IS_HOLE(&zh->zh_log)) 12651362Sperrin return (1); 12661362Sperrin 12671807Sbonwick if (zil_read_log_block(zilog, &zh->zh_log, &abuf) != 0) 12681807Sbonwick return (1); 12691807Sbonwick 12701807Sbonwick VERIFY(arc_buf_remove_ref(abuf, &abuf) == 1); 12711807Sbonwick return (0); 12721362Sperrin } 12731362Sperrin 12741362Sperrin /* 1275789Sahrens * Open an intent log. 1276789Sahrens */ 1277789Sahrens zilog_t * 1278789Sahrens zil_open(objset_t *os, zil_get_data_t *get_data) 1279789Sahrens { 1280789Sahrens zilog_t *zilog = dmu_objset_zil(os); 1281789Sahrens 1282789Sahrens zilog->zl_get_data = get_data; 1283789Sahrens zilog->zl_clean_taskq = taskq_create("zil_clean", 1, minclsyspri, 1284789Sahrens 2, 2, TASKQ_PREPOPULATE); 1285789Sahrens 1286789Sahrens return (zilog); 1287789Sahrens } 1288789Sahrens 1289789Sahrens /* 1290789Sahrens * Close an intent log. 1291789Sahrens */ 1292789Sahrens void 1293789Sahrens zil_close(zilog_t *zilog) 1294789Sahrens { 12951807Sbonwick /* 12961807Sbonwick * If the log isn't already committed, mark the objset dirty 12971807Sbonwick * (so zil_sync() will be called) and wait for that txg to sync. 12981807Sbonwick */ 12991807Sbonwick if (!zil_is_committed(zilog)) { 13001807Sbonwick uint64_t txg; 13011807Sbonwick dmu_tx_t *tx = dmu_tx_create(zilog->zl_os); 13021807Sbonwick (void) dmu_tx_assign(tx, TXG_WAIT); 13031807Sbonwick dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 13041807Sbonwick txg = dmu_tx_get_txg(tx); 13051807Sbonwick dmu_tx_commit(tx); 13061807Sbonwick txg_wait_synced(zilog->zl_dmu_pool, txg); 13071807Sbonwick } 13081807Sbonwick 1309789Sahrens taskq_destroy(zilog->zl_clean_taskq); 1310789Sahrens zilog->zl_clean_taskq = NULL; 1311789Sahrens zilog->zl_get_data = NULL; 1312789Sahrens 1313789Sahrens zil_itx_clean(zilog); 1314789Sahrens ASSERT(list_head(&zilog->zl_itx_list) == NULL); 1315789Sahrens } 1316789Sahrens 1317789Sahrens /* 1318789Sahrens * Suspend an intent log. While in suspended mode, we still honor 1319789Sahrens * synchronous semantics, but we rely on txg_wait_synced() to do it. 1320789Sahrens * We suspend the log briefly when taking a snapshot so that the snapshot 1321789Sahrens * contains all the data it's supposed to, and has an empty intent log. 1322789Sahrens */ 1323789Sahrens int 1324789Sahrens zil_suspend(zilog_t *zilog) 1325789Sahrens { 13261807Sbonwick const zil_header_t *zh = zilog->zl_header; 1327789Sahrens 1328789Sahrens mutex_enter(&zilog->zl_lock); 13291807Sbonwick if (zh->zh_claim_txg != 0) { /* unplayed log */ 1330789Sahrens mutex_exit(&zilog->zl_lock); 1331789Sahrens return (EBUSY); 1332789Sahrens } 13331807Sbonwick if (zilog->zl_suspend++ != 0) { 13341807Sbonwick /* 13351807Sbonwick * Someone else already began a suspend. 13361807Sbonwick * Just wait for them to finish. 13371807Sbonwick */ 13381807Sbonwick while (zilog->zl_suspending) 13391807Sbonwick cv_wait(&zilog->zl_cv_suspend, &zilog->zl_lock); 13401807Sbonwick ASSERT(BP_IS_HOLE(&zh->zh_log)); 13411807Sbonwick mutex_exit(&zilog->zl_lock); 13421807Sbonwick return (0); 13431807Sbonwick } 13441807Sbonwick zilog->zl_suspending = B_TRUE; 1345789Sahrens mutex_exit(&zilog->zl_lock); 1346789Sahrens 13472638Sperrin zil_commit(zilog, UINT64_MAX, 0); 1348789Sahrens 13492638Sperrin /* 13502638Sperrin * Wait for any in-flight log writes to complete. 13512638Sperrin */ 1352789Sahrens mutex_enter(&zilog->zl_lock); 13532638Sperrin while (zilog->zl_writer) 13542638Sperrin cv_wait(&zilog->zl_cv_writer, &zilog->zl_lock); 1355789Sahrens mutex_exit(&zilog->zl_lock); 1356789Sahrens 13571807Sbonwick zil_destroy(zilog, B_FALSE); 13581807Sbonwick 13591807Sbonwick mutex_enter(&zilog->zl_lock); 13601807Sbonwick zilog->zl_suspending = B_FALSE; 13611807Sbonwick cv_broadcast(&zilog->zl_cv_suspend); 13621807Sbonwick mutex_exit(&zilog->zl_lock); 1363789Sahrens 1364789Sahrens return (0); 1365789Sahrens } 1366789Sahrens 1367789Sahrens void 1368789Sahrens zil_resume(zilog_t *zilog) 1369789Sahrens { 1370789Sahrens mutex_enter(&zilog->zl_lock); 1371789Sahrens ASSERT(zilog->zl_suspend != 0); 1372789Sahrens zilog->zl_suspend--; 1373789Sahrens mutex_exit(&zilog->zl_lock); 1374789Sahrens } 1375789Sahrens 1376789Sahrens typedef struct zil_replay_arg { 1377789Sahrens objset_t *zr_os; 1378789Sahrens zil_replay_func_t **zr_replay; 1379789Sahrens void *zr_arg; 1380789Sahrens uint64_t *zr_txgp; 1381789Sahrens boolean_t zr_byteswap; 1382789Sahrens char *zr_lrbuf; 1383789Sahrens } zil_replay_arg_t; 1384789Sahrens 1385789Sahrens static void 1386789Sahrens zil_replay_log_record(zilog_t *zilog, lr_t *lr, void *zra, uint64_t claim_txg) 1387789Sahrens { 1388789Sahrens zil_replay_arg_t *zr = zra; 13891807Sbonwick const zil_header_t *zh = zilog->zl_header; 1390789Sahrens uint64_t reclen = lr->lrc_reclen; 1391789Sahrens uint64_t txtype = lr->lrc_txtype; 13923063Sperrin char *name; 13933063Sperrin int pass, error, sunk; 1394789Sahrens 1395789Sahrens if (zilog->zl_stop_replay) 1396789Sahrens return; 1397789Sahrens 1398789Sahrens if (lr->lrc_txg < claim_txg) /* already committed */ 1399789Sahrens return; 1400789Sahrens 1401789Sahrens if (lr->lrc_seq <= zh->zh_replay_seq) /* already replayed */ 1402789Sahrens return; 1403789Sahrens 14045331Samw /* Strip case-insensitive bit, still present in log record */ 14055331Samw txtype &= ~TX_CI; 14065331Samw 1407789Sahrens /* 1408789Sahrens * Make a copy of the data so we can revise and extend it. 1409789Sahrens */ 1410789Sahrens bcopy(lr, zr->zr_lrbuf, reclen); 1411789Sahrens 1412789Sahrens /* 1413789Sahrens * The log block containing this lr may have been byteswapped 1414789Sahrens * so that we can easily examine common fields like lrc_txtype. 1415789Sahrens * However, the log is a mix of different data types, and only the 1416789Sahrens * replay vectors know how to byteswap their records. Therefore, if 1417789Sahrens * the lr was byteswapped, undo it before invoking the replay vector. 1418789Sahrens */ 1419789Sahrens if (zr->zr_byteswap) 1420789Sahrens byteswap_uint64_array(zr->zr_lrbuf, reclen); 1421789Sahrens 1422789Sahrens /* 1423789Sahrens * If this is a TX_WRITE with a blkptr, suck in the data. 1424789Sahrens */ 1425789Sahrens if (txtype == TX_WRITE && reclen == sizeof (lr_write_t)) { 1426789Sahrens lr_write_t *lrw = (lr_write_t *)lr; 1427789Sahrens blkptr_t *wbp = &lrw->lr_blkptr; 1428789Sahrens uint64_t wlen = lrw->lr_length; 1429789Sahrens char *wbuf = zr->zr_lrbuf + reclen; 1430789Sahrens 1431789Sahrens if (BP_IS_HOLE(wbp)) { /* compressed to a hole */ 1432789Sahrens bzero(wbuf, wlen); 1433789Sahrens } else { 1434789Sahrens /* 1435789Sahrens * A subsequent write may have overwritten this block, 1436789Sahrens * in which case wbp may have been been freed and 1437789Sahrens * reallocated, and our read of wbp may fail with a 1438789Sahrens * checksum error. We can safely ignore this because 1439789Sahrens * the later write will provide the correct data. 1440789Sahrens */ 14411544Seschrock zbookmark_t zb; 14421544Seschrock 14431544Seschrock zb.zb_objset = dmu_objset_id(zilog->zl_os); 14441544Seschrock zb.zb_object = lrw->lr_foid; 14451544Seschrock zb.zb_level = -1; 14461544Seschrock zb.zb_blkid = lrw->lr_offset / BP_GET_LSIZE(wbp); 14471544Seschrock 1448789Sahrens (void) zio_wait(zio_read(NULL, zilog->zl_spa, 1449789Sahrens wbp, wbuf, BP_GET_LSIZE(wbp), NULL, NULL, 1450789Sahrens ZIO_PRIORITY_SYNC_READ, 14511544Seschrock ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE, &zb)); 1452789Sahrens (void) memmove(wbuf, wbuf + lrw->lr_blkoff, wlen); 1453789Sahrens } 1454789Sahrens } 1455789Sahrens 1456789Sahrens /* 1457789Sahrens * We must now do two things atomically: replay this log record, 1458789Sahrens * and update the log header to reflect the fact that we did so. 1459789Sahrens * We use the DMU's ability to assign into a specific txg to do this. 1460789Sahrens */ 14613063Sperrin for (pass = 1, sunk = B_FALSE; /* CONSTANTCONDITION */; pass++) { 1462789Sahrens uint64_t replay_txg; 1463789Sahrens dmu_tx_t *replay_tx; 1464789Sahrens 1465789Sahrens replay_tx = dmu_tx_create(zr->zr_os); 1466789Sahrens error = dmu_tx_assign(replay_tx, TXG_WAIT); 1467789Sahrens if (error) { 1468789Sahrens dmu_tx_abort(replay_tx); 1469789Sahrens break; 1470789Sahrens } 1471789Sahrens 1472789Sahrens replay_txg = dmu_tx_get_txg(replay_tx); 1473789Sahrens 1474789Sahrens if (txtype == 0 || txtype >= TX_MAX_TYPE) { 1475789Sahrens error = EINVAL; 1476789Sahrens } else { 1477789Sahrens /* 1478789Sahrens * On the first pass, arrange for the replay vector 1479789Sahrens * to fail its dmu_tx_assign(). That's the only way 1480789Sahrens * to ensure that those code paths remain well tested. 14815676Sperrin * 14825676Sperrin * Only byteswap (if needed) on the 1st pass. 1483789Sahrens */ 1484789Sahrens *zr->zr_txgp = replay_txg - (pass == 1); 1485789Sahrens error = zr->zr_replay[txtype](zr->zr_arg, zr->zr_lrbuf, 14865676Sperrin zr->zr_byteswap && pass == 1); 1487789Sahrens *zr->zr_txgp = TXG_NOWAIT; 1488789Sahrens } 1489789Sahrens 1490789Sahrens if (error == 0) { 1491789Sahrens dsl_dataset_dirty(dmu_objset_ds(zr->zr_os), replay_tx); 1492789Sahrens zilog->zl_replay_seq[replay_txg & TXG_MASK] = 1493789Sahrens lr->lrc_seq; 1494789Sahrens } 1495789Sahrens 1496789Sahrens dmu_tx_commit(replay_tx); 1497789Sahrens 14983063Sperrin if (!error) 14993063Sperrin return; 15003063Sperrin 15013063Sperrin /* 15023063Sperrin * The DMU's dnode layer doesn't see removes until the txg 15033063Sperrin * commits, so a subsequent claim can spuriously fail with 15043063Sperrin * EEXIST. So if we receive any error other than ERESTART 15053063Sperrin * we try syncing out any removes then retrying the 15063063Sperrin * transaction. 15073063Sperrin */ 15083063Sperrin if (error != ERESTART && !sunk) { 15093063Sperrin txg_wait_synced(spa_get_dsl(zilog->zl_spa), 0); 15103063Sperrin sunk = B_TRUE; 15113063Sperrin continue; /* retry */ 15123063Sperrin } 15133063Sperrin 1514789Sahrens if (error != ERESTART) 1515789Sahrens break; 1516789Sahrens 1517789Sahrens if (pass != 1) 1518789Sahrens txg_wait_open(spa_get_dsl(zilog->zl_spa), 1519789Sahrens replay_txg + 1); 1520789Sahrens 1521789Sahrens dprintf("pass %d, retrying\n", pass); 1522789Sahrens } 1523789Sahrens 15243063Sperrin ASSERT(error && error != ERESTART); 15253063Sperrin name = kmem_alloc(MAXNAMELEN, KM_SLEEP); 15263063Sperrin dmu_objset_name(zr->zr_os, name); 15273063Sperrin cmn_err(CE_WARN, "ZFS replay transaction error %d, " 15285331Samw "dataset %s, seq 0x%llx, txtype %llu %s\n", 15295331Samw error, name, (u_longlong_t)lr->lrc_seq, (u_longlong_t)txtype, 15305331Samw (lr->lrc_txtype & TX_CI) ? "CI" : ""); 15313063Sperrin zilog->zl_stop_replay = 1; 15323063Sperrin kmem_free(name, MAXNAMELEN); 15333063Sperrin } 1534789Sahrens 15353063Sperrin /* ARGSUSED */ 15363063Sperrin static void 15373063Sperrin zil_incr_blks(zilog_t *zilog, blkptr_t *bp, void *arg, uint64_t claim_txg) 15383063Sperrin { 15393063Sperrin zilog->zl_replay_blks++; 1540789Sahrens } 1541789Sahrens 1542789Sahrens /* 15431362Sperrin * If this dataset has a non-empty intent log, replay it and destroy it. 1544789Sahrens */ 1545789Sahrens void 1546789Sahrens zil_replay(objset_t *os, void *arg, uint64_t *txgp, 15473461Sahrens zil_replay_func_t *replay_func[TX_MAX_TYPE]) 1548789Sahrens { 1549789Sahrens zilog_t *zilog = dmu_objset_zil(os); 15501807Sbonwick const zil_header_t *zh = zilog->zl_header; 15511807Sbonwick zil_replay_arg_t zr; 15521362Sperrin 15531362Sperrin if (zil_empty(zilog)) { 15541807Sbonwick zil_destroy(zilog, B_TRUE); 15551362Sperrin return; 15561362Sperrin } 1557789Sahrens 1558789Sahrens zr.zr_os = os; 1559789Sahrens zr.zr_replay = replay_func; 1560789Sahrens zr.zr_arg = arg; 1561789Sahrens zr.zr_txgp = txgp; 15621807Sbonwick zr.zr_byteswap = BP_SHOULD_BYTESWAP(&zh->zh_log); 1563789Sahrens zr.zr_lrbuf = kmem_alloc(2 * SPA_MAXBLOCKSIZE, KM_SLEEP); 1564789Sahrens 1565789Sahrens /* 1566789Sahrens * Wait for in-progress removes to sync before starting replay. 1567789Sahrens */ 1568789Sahrens txg_wait_synced(zilog->zl_dmu_pool, 0); 1569789Sahrens 1570789Sahrens zilog->zl_stop_replay = 0; 15713063Sperrin zilog->zl_replay_time = lbolt; 15723063Sperrin ASSERT(zilog->zl_replay_blks == 0); 15733063Sperrin (void) zil_parse(zilog, zil_incr_blks, zil_replay_log_record, &zr, 15741807Sbonwick zh->zh_claim_txg); 1575789Sahrens kmem_free(zr.zr_lrbuf, 2 * SPA_MAXBLOCKSIZE); 1576789Sahrens 15771807Sbonwick zil_destroy(zilog, B_FALSE); 15785712Sahrens txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg); 1579789Sahrens } 15801646Sperrin 15811646Sperrin /* 15821646Sperrin * Report whether all transactions are committed 15831646Sperrin */ 15841646Sperrin int 15851646Sperrin zil_is_committed(zilog_t *zilog) 15861646Sperrin { 15871646Sperrin lwb_t *lwb; 15882638Sperrin int ret; 15891646Sperrin 15902638Sperrin mutex_enter(&zilog->zl_lock); 15912638Sperrin while (zilog->zl_writer) 15922638Sperrin cv_wait(&zilog->zl_cv_writer, &zilog->zl_lock); 15932638Sperrin 15942638Sperrin /* recent unpushed intent log transactions? */ 15952638Sperrin if (!list_is_empty(&zilog->zl_itx_list)) { 15962638Sperrin ret = B_FALSE; 15972638Sperrin goto out; 15982638Sperrin } 15992638Sperrin 16002638Sperrin /* intent log never used? */ 16012638Sperrin lwb = list_head(&zilog->zl_lwb_list); 16022638Sperrin if (lwb == NULL) { 16032638Sperrin ret = B_TRUE; 16042638Sperrin goto out; 16052638Sperrin } 16061646Sperrin 16071646Sperrin /* 16082638Sperrin * more than 1 log buffer means zil_sync() hasn't yet freed 16092638Sperrin * entries after a txg has committed 16101646Sperrin */ 16112638Sperrin if (list_next(&zilog->zl_lwb_list, lwb)) { 16122638Sperrin ret = B_FALSE; 16132638Sperrin goto out; 16142638Sperrin } 16152638Sperrin 16161646Sperrin ASSERT(zil_empty(zilog)); 16172638Sperrin ret = B_TRUE; 16182638Sperrin out: 16192638Sperrin cv_broadcast(&zilog->zl_cv_writer); 16202638Sperrin mutex_exit(&zilog->zl_lock); 16212638Sperrin return (ret); 16221646Sperrin } 1623