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 /* 221362Sperrin * Copyright 2006 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> 39789Sahrens 40789Sahrens /* 41789Sahrens * The zfs intent log (ZIL) saves transaction records of system calls 42789Sahrens * that change the file system in memory with enough information 43789Sahrens * to be able to replay them. These are stored in memory until 44789Sahrens * either the DMU transaction group (txg) commits them to the stable pool 45789Sahrens * and they can be discarded, or they are flushed to the stable log 46789Sahrens * (also in the pool) due to a fsync, O_DSYNC or other synchronous 47789Sahrens * requirement. In the event of a panic or power fail then those log 48789Sahrens * records (transactions) are replayed. 49789Sahrens * 50789Sahrens * There is one ZIL per file system. Its on-disk (pool) format consists 51789Sahrens * of 3 parts: 52789Sahrens * 53789Sahrens * - ZIL header 54789Sahrens * - ZIL blocks 55789Sahrens * - ZIL records 56789Sahrens * 57789Sahrens * A log record holds a system call transaction. Log blocks can 58789Sahrens * hold many log records and the blocks are chained together. 59789Sahrens * Each ZIL block contains a block pointer (blkptr_t) to the next 60789Sahrens * ZIL block in the chain. The ZIL header points to the first 61789Sahrens * block in the chain. Note there is not a fixed place in the pool 62789Sahrens * to hold blocks. They are dynamically allocated and freed as 63789Sahrens * needed from the blocks available. Figure X shows the ZIL structure: 64789Sahrens */ 65789Sahrens 66789Sahrens /* 67789Sahrens * These global ZIL switches affect all pools 68789Sahrens */ 69789Sahrens int zil_disable = 0; /* disable intent logging */ 70789Sahrens int zil_always = 0; /* make every transaction synchronous */ 71789Sahrens int zil_purge = 0; /* at pool open, just throw everything away */ 72789Sahrens int zil_noflush = 0; /* don't flush write cache buffers on disks */ 73789Sahrens 74789Sahrens static kmem_cache_t *zil_lwb_cache; 75789Sahrens 76789Sahrens static int 77789Sahrens zil_dva_compare(const void *x1, const void *x2) 78789Sahrens { 79789Sahrens const dva_t *dva1 = x1; 80789Sahrens const dva_t *dva2 = x2; 81789Sahrens 82789Sahrens if (DVA_GET_VDEV(dva1) < DVA_GET_VDEV(dva2)) 83789Sahrens return (-1); 84789Sahrens if (DVA_GET_VDEV(dva1) > DVA_GET_VDEV(dva2)) 85789Sahrens return (1); 86789Sahrens 87789Sahrens if (DVA_GET_OFFSET(dva1) < DVA_GET_OFFSET(dva2)) 88789Sahrens return (-1); 89789Sahrens if (DVA_GET_OFFSET(dva1) > DVA_GET_OFFSET(dva2)) 90789Sahrens return (1); 91789Sahrens 92789Sahrens return (0); 93789Sahrens } 94789Sahrens 95789Sahrens static void 96789Sahrens zil_dva_tree_init(avl_tree_t *t) 97789Sahrens { 98789Sahrens avl_create(t, zil_dva_compare, sizeof (zil_dva_node_t), 99789Sahrens offsetof(zil_dva_node_t, zn_node)); 100789Sahrens } 101789Sahrens 102789Sahrens static void 103789Sahrens zil_dva_tree_fini(avl_tree_t *t) 104789Sahrens { 105789Sahrens zil_dva_node_t *zn; 106789Sahrens void *cookie = NULL; 107789Sahrens 108789Sahrens while ((zn = avl_destroy_nodes(t, &cookie)) != NULL) 109789Sahrens kmem_free(zn, sizeof (zil_dva_node_t)); 110789Sahrens 111789Sahrens avl_destroy(t); 112789Sahrens } 113789Sahrens 114789Sahrens static int 115789Sahrens zil_dva_tree_add(avl_tree_t *t, dva_t *dva) 116789Sahrens { 117789Sahrens zil_dva_node_t *zn; 118789Sahrens avl_index_t where; 119789Sahrens 120789Sahrens if (avl_find(t, dva, &where) != NULL) 121789Sahrens return (EEXIST); 122789Sahrens 123789Sahrens zn = kmem_alloc(sizeof (zil_dva_node_t), KM_SLEEP); 124789Sahrens zn->zn_dva = *dva; 125789Sahrens avl_insert(t, zn, where); 126789Sahrens 127789Sahrens return (0); 128789Sahrens } 129789Sahrens 130789Sahrens /* 131789Sahrens * Read a log block, make sure it's valid, and byteswap it if necessary. 132789Sahrens */ 133789Sahrens static int 134789Sahrens zil_read_log_block(zilog_t *zilog, blkptr_t *bp, char *buf) 135789Sahrens { 136789Sahrens uint64_t blksz = BP_GET_LSIZE(bp); 137789Sahrens zil_trailer_t *ztp = (zil_trailer_t *)(buf + blksz) - 1; 138789Sahrens zio_cksum_t cksum; 1391544Seschrock zbookmark_t zb; 140789Sahrens int error; 141789Sahrens 1421544Seschrock zb.zb_objset = bp->blk_cksum.zc_word[2]; 1431544Seschrock zb.zb_object = 0; 1441544Seschrock zb.zb_level = -1; 1451544Seschrock zb.zb_blkid = bp->blk_cksum.zc_word[3]; 1461544Seschrock 147789Sahrens error = zio_wait(zio_read(NULL, zilog->zl_spa, bp, buf, blksz, 148789Sahrens NULL, NULL, ZIO_PRIORITY_SYNC_READ, 1491544Seschrock ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE, &zb)); 150789Sahrens if (error) { 151789Sahrens dprintf_bp(bp, "zilog %p bp %p read failed, error %d: ", 152789Sahrens zilog, bp, error); 153789Sahrens return (error); 154789Sahrens } 155789Sahrens 156789Sahrens if (BP_SHOULD_BYTESWAP(bp)) 157789Sahrens byteswap_uint64_array(buf, blksz); 158789Sahrens 159789Sahrens /* 160789Sahrens * Sequence numbers should be... sequential. The checksum verifier for 161789Sahrens * the next block should be: <logid[0], logid[1], objset id, seq + 1>. 162789Sahrens */ 163789Sahrens cksum = bp->blk_cksum; 164789Sahrens cksum.zc_word[3]++; 165789Sahrens if (bcmp(&cksum, &ztp->zit_next_blk.blk_cksum, sizeof (cksum)) != 0) { 166789Sahrens dprintf_bp(bp, "zilog %p bp %p stale pointer: ", zilog, bp); 167789Sahrens return (ESTALE); 168789Sahrens } 169789Sahrens 170789Sahrens if (BP_IS_HOLE(&ztp->zit_next_blk)) { 171789Sahrens dprintf_bp(bp, "zilog %p bp %p hole: ", zilog, bp); 172789Sahrens return (ENOENT); 173789Sahrens } 174789Sahrens 175789Sahrens if (ztp->zit_nused > (blksz - sizeof (zil_trailer_t))) { 176789Sahrens dprintf("zilog %p bp %p nused exceeds blksz\n", zilog, bp); 177789Sahrens return (EOVERFLOW); 178789Sahrens } 179789Sahrens 180789Sahrens dprintf_bp(bp, "zilog %p bp %p good block: ", zilog, bp); 181789Sahrens 182789Sahrens return (0); 183789Sahrens } 184789Sahrens 185789Sahrens /* 186789Sahrens * Parse the intent log, and call parse_func for each valid record within. 187789Sahrens */ 188789Sahrens void 189789Sahrens zil_parse(zilog_t *zilog, zil_parse_blk_func_t *parse_blk_func, 190789Sahrens zil_parse_lr_func_t *parse_lr_func, void *arg, uint64_t txg) 191789Sahrens { 192789Sahrens blkptr_t blk; 193789Sahrens char *lrbuf, *lrp; 194789Sahrens zil_trailer_t *ztp; 195789Sahrens int reclen, error; 196789Sahrens 197789Sahrens blk = zilog->zl_header->zh_log; 198789Sahrens if (BP_IS_HOLE(&blk)) 199789Sahrens return; 200789Sahrens 201789Sahrens /* 202789Sahrens * Starting at the block pointed to by zh_log we read the log chain. 203789Sahrens * For each block in the chain we strongly check that block to 204789Sahrens * ensure its validity. We stop when an invalid block is found. 205789Sahrens * For each block pointer in the chain we call parse_blk_func(). 206789Sahrens * For each record in each valid block we call parse_lr_func(). 207789Sahrens */ 208789Sahrens zil_dva_tree_init(&zilog->zl_dva_tree); 209789Sahrens lrbuf = zio_buf_alloc(SPA_MAXBLOCKSIZE); 210789Sahrens for (;;) { 211789Sahrens error = zil_read_log_block(zilog, &blk, lrbuf); 212789Sahrens 213789Sahrens if (parse_blk_func != NULL) 214789Sahrens parse_blk_func(zilog, &blk, arg, txg); 215789Sahrens 216789Sahrens if (error) 217789Sahrens break; 218789Sahrens 219789Sahrens ztp = (zil_trailer_t *)(lrbuf + BP_GET_LSIZE(&blk)) - 1; 220789Sahrens blk = ztp->zit_next_blk; 221789Sahrens 222789Sahrens if (parse_lr_func == NULL) 223789Sahrens continue; 224789Sahrens 225789Sahrens for (lrp = lrbuf; lrp < lrbuf + ztp->zit_nused; lrp += reclen) { 226789Sahrens lr_t *lr = (lr_t *)lrp; 227789Sahrens reclen = lr->lrc_reclen; 228789Sahrens ASSERT3U(reclen, >=, sizeof (lr_t)); 229789Sahrens parse_lr_func(zilog, lr, arg, txg); 230789Sahrens } 231789Sahrens } 232789Sahrens zio_buf_free(lrbuf, SPA_MAXBLOCKSIZE); 233789Sahrens zil_dva_tree_fini(&zilog->zl_dva_tree); 234789Sahrens } 235789Sahrens 236789Sahrens /* ARGSUSED */ 237789Sahrens static void 238789Sahrens zil_claim_log_block(zilog_t *zilog, blkptr_t *bp, void *tx, uint64_t first_txg) 239789Sahrens { 240789Sahrens spa_t *spa = zilog->zl_spa; 241789Sahrens int err; 242789Sahrens 243789Sahrens dprintf_bp(bp, "first_txg %llu: ", first_txg); 244789Sahrens 245789Sahrens /* 246789Sahrens * Claim log block if not already committed and not already claimed. 247789Sahrens */ 248789Sahrens if (bp->blk_birth >= first_txg && 249789Sahrens zil_dva_tree_add(&zilog->zl_dva_tree, BP_IDENTITY(bp)) == 0) { 250789Sahrens err = zio_wait(zio_claim(NULL, spa, first_txg, bp, NULL, NULL)); 251789Sahrens ASSERT(err == 0); 252789Sahrens } 253789Sahrens } 254789Sahrens 255789Sahrens static void 256789Sahrens zil_claim_log_record(zilog_t *zilog, lr_t *lrc, void *tx, uint64_t first_txg) 257789Sahrens { 258789Sahrens if (lrc->lrc_txtype == TX_WRITE) { 259789Sahrens lr_write_t *lr = (lr_write_t *)lrc; 260789Sahrens zil_claim_log_block(zilog, &lr->lr_blkptr, tx, first_txg); 261789Sahrens } 262789Sahrens } 263789Sahrens 264789Sahrens /* ARGSUSED */ 265789Sahrens static void 266789Sahrens zil_free_log_block(zilog_t *zilog, blkptr_t *bp, void *tx, uint64_t claim_txg) 267789Sahrens { 268789Sahrens zio_free_blk(zilog->zl_spa, bp, dmu_tx_get_txg(tx)); 269789Sahrens } 270789Sahrens 271789Sahrens static void 272789Sahrens zil_free_log_record(zilog_t *zilog, lr_t *lrc, void *tx, uint64_t claim_txg) 273789Sahrens { 274789Sahrens /* 275789Sahrens * If we previously claimed it, we need to free it. 276789Sahrens */ 277789Sahrens if (claim_txg != 0 && lrc->lrc_txtype == TX_WRITE) { 278789Sahrens lr_write_t *lr = (lr_write_t *)lrc; 279789Sahrens blkptr_t *bp = &lr->lr_blkptr; 280789Sahrens if (bp->blk_birth >= claim_txg && 281789Sahrens !zil_dva_tree_add(&zilog->zl_dva_tree, BP_IDENTITY(bp))) { 282789Sahrens (void) arc_free(NULL, zilog->zl_spa, 283789Sahrens dmu_tx_get_txg(tx), bp, NULL, NULL, ARC_WAIT); 284789Sahrens } 285789Sahrens } 286789Sahrens } 287789Sahrens 288789Sahrens /* 289789Sahrens * Create an on-disk intent log. 290789Sahrens */ 291789Sahrens static void 292789Sahrens zil_create(zilog_t *zilog) 293789Sahrens { 294789Sahrens lwb_t *lwb; 295789Sahrens uint64_t txg; 296789Sahrens dmu_tx_t *tx; 297789Sahrens blkptr_t blk; 298789Sahrens int error; 2991362Sperrin int no_blk; 300789Sahrens 301789Sahrens ASSERT(zilog->zl_header->zh_claim_txg == 0); 302789Sahrens ASSERT(zilog->zl_header->zh_replay_seq == 0); 303789Sahrens 304789Sahrens /* 305789Sahrens * Initialize the log header block. 306789Sahrens */ 307789Sahrens tx = dmu_tx_create(zilog->zl_os); 308789Sahrens (void) dmu_tx_assign(tx, TXG_WAIT); 309789Sahrens dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 310789Sahrens txg = dmu_tx_get_txg(tx); 311789Sahrens 312789Sahrens /* 3131362Sperrin * If we don't have a log block already then 3141362Sperrin * allocate the first log block and assign its checksum verifier. 315789Sahrens */ 3161362Sperrin no_blk = BP_IS_HOLE(&zilog->zl_header->zh_log); 3171362Sperrin if (no_blk) { 3181362Sperrin error = zio_alloc_blk(zilog->zl_spa, ZIO_CHECKSUM_ZILOG, 3191362Sperrin ZIL_MIN_BLKSZ, &blk, txg); 3201362Sperrin } else { 3211362Sperrin blk = zilog->zl_header->zh_log; 3221362Sperrin error = 0; 3231362Sperrin } 324789Sahrens if (error == 0) { 325789Sahrens ZIO_SET_CHECKSUM(&blk.blk_cksum, 326789Sahrens spa_get_random(-1ULL), spa_get_random(-1ULL), 327789Sahrens dmu_objset_id(zilog->zl_os), 1ULL); 328789Sahrens 329789Sahrens /* 330789Sahrens * Allocate a log write buffer (lwb) for the first log block. 331789Sahrens */ 332789Sahrens lwb = kmem_cache_alloc(zil_lwb_cache, KM_SLEEP); 333789Sahrens lwb->lwb_zilog = zilog; 334789Sahrens lwb->lwb_blk = blk; 335789Sahrens lwb->lwb_nused = 0; 336789Sahrens lwb->lwb_sz = BP_GET_LSIZE(&lwb->lwb_blk); 337789Sahrens lwb->lwb_buf = zio_buf_alloc(lwb->lwb_sz); 338789Sahrens lwb->lwb_max_txg = txg; 339789Sahrens lwb->lwb_seq = 0; 340789Sahrens lwb->lwb_state = UNWRITTEN; 341789Sahrens mutex_enter(&zilog->zl_lock); 342789Sahrens list_insert_tail(&zilog->zl_lwb_list, lwb); 343789Sahrens mutex_exit(&zilog->zl_lock); 344789Sahrens } 345789Sahrens 346789Sahrens dmu_tx_commit(tx); 3471362Sperrin if (no_blk) 3481362Sperrin txg_wait_synced(zilog->zl_dmu_pool, txg); 349789Sahrens } 350789Sahrens 351789Sahrens /* 352789Sahrens * In one tx, free all log blocks and clear the log header. 353789Sahrens */ 354789Sahrens void 355789Sahrens zil_destroy(zilog_t *zilog) 356789Sahrens { 357789Sahrens dmu_tx_t *tx; 358789Sahrens uint64_t txg; 359789Sahrens 360789Sahrens mutex_enter(&zilog->zl_destroy_lock); 361789Sahrens 362789Sahrens if (BP_IS_HOLE(&zilog->zl_header->zh_log)) { 363789Sahrens mutex_exit(&zilog->zl_destroy_lock); 364789Sahrens return; 365789Sahrens } 366789Sahrens 367789Sahrens tx = dmu_tx_create(zilog->zl_os); 368789Sahrens (void) dmu_tx_assign(tx, TXG_WAIT); 369789Sahrens dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 370789Sahrens txg = dmu_tx_get_txg(tx); 371789Sahrens 372789Sahrens zil_parse(zilog, zil_free_log_block, zil_free_log_record, tx, 373789Sahrens zilog->zl_header->zh_claim_txg); 3741362Sperrin /* 3751362Sperrin * zil_sync clears the zil header as soon as the zl_destroy_txg commits 3761362Sperrin */ 377789Sahrens zilog->zl_destroy_txg = txg; 378789Sahrens 379789Sahrens dmu_tx_commit(tx); 380789Sahrens txg_wait_synced(zilog->zl_dmu_pool, txg); 381789Sahrens 382789Sahrens mutex_exit(&zilog->zl_destroy_lock); 383789Sahrens } 384789Sahrens 385789Sahrens void 386789Sahrens zil_claim(char *osname, void *txarg) 387789Sahrens { 388789Sahrens dmu_tx_t *tx = txarg; 389789Sahrens uint64_t first_txg = dmu_tx_get_txg(tx); 390789Sahrens zilog_t *zilog; 391789Sahrens zil_header_t *zh; 392789Sahrens objset_t *os; 393789Sahrens int error; 394789Sahrens 395789Sahrens error = dmu_objset_open(osname, DMU_OST_ANY, DS_MODE_STANDARD, &os); 396789Sahrens if (error) { 397789Sahrens cmn_err(CE_WARN, "can't process intent log for %s", osname); 398789Sahrens return; 399789Sahrens } 400789Sahrens 401789Sahrens zilog = dmu_objset_zil(os); 402789Sahrens zh = zilog->zl_header; 403789Sahrens 404789Sahrens /* 405789Sahrens * Claim all log blocks if we haven't already done so. 406789Sahrens */ 407789Sahrens ASSERT3U(zh->zh_claim_txg, <=, first_txg); 408789Sahrens if (zh->zh_claim_txg == 0 && !BP_IS_HOLE(&zh->zh_log)) { 409789Sahrens zh->zh_claim_txg = first_txg; 410789Sahrens zil_parse(zilog, zil_claim_log_block, zil_claim_log_record, 411789Sahrens tx, first_txg); 412789Sahrens dsl_dataset_dirty(dmu_objset_ds(os), tx); 413789Sahrens } 414789Sahrens ASSERT3U(first_txg, ==, (spa_last_synced_txg(zilog->zl_spa) + 1)); 415789Sahrens dmu_objset_close(os); 416789Sahrens } 417789Sahrens 418789Sahrens void 419789Sahrens zil_add_vdev(zilog_t *zilog, uint64_t vdev, uint64_t seq) 420789Sahrens { 421789Sahrens zil_vdev_t *zv; 422789Sahrens 423789Sahrens if (zil_noflush) 424789Sahrens return; 425789Sahrens 426789Sahrens ASSERT(MUTEX_HELD(&zilog->zl_lock)); 427789Sahrens zv = kmem_alloc(sizeof (zil_vdev_t), KM_SLEEP); 428789Sahrens zv->vdev = vdev; 429789Sahrens zv->seq = seq; 430789Sahrens list_insert_tail(&zilog->zl_vdev_list, zv); 431789Sahrens } 432789Sahrens 433789Sahrens void 434789Sahrens zil_flush_vdevs(zilog_t *zilog, uint64_t seq) 435789Sahrens { 436789Sahrens vdev_t *vd; 437789Sahrens zil_vdev_t *zv, *zv2; 438789Sahrens zio_t *zio; 439789Sahrens spa_t *spa; 440789Sahrens uint64_t vdev; 441789Sahrens 442789Sahrens if (zil_noflush) 443789Sahrens return; 444789Sahrens 445789Sahrens ASSERT(MUTEX_HELD(&zilog->zl_lock)); 446789Sahrens 447789Sahrens spa = zilog->zl_spa; 448789Sahrens zio = NULL; 449789Sahrens 450789Sahrens while ((zv = list_head(&zilog->zl_vdev_list)) != NULL && 451789Sahrens zv->seq <= seq) { 452789Sahrens vdev = zv->vdev; 453789Sahrens list_remove(&zilog->zl_vdev_list, zv); 454789Sahrens kmem_free(zv, sizeof (zil_vdev_t)); 455789Sahrens 456789Sahrens /* 457789Sahrens * remove all chained entries <= seq with same vdev 458789Sahrens */ 459789Sahrens zv = list_head(&zilog->zl_vdev_list); 460789Sahrens while (zv && zv->seq <= seq) { 461789Sahrens zv2 = list_next(&zilog->zl_vdev_list, zv); 462789Sahrens if (zv->vdev == vdev) { 463789Sahrens list_remove(&zilog->zl_vdev_list, zv); 464789Sahrens kmem_free(zv, sizeof (zil_vdev_t)); 465789Sahrens } 466789Sahrens zv = zv2; 467789Sahrens } 468789Sahrens 469789Sahrens /* flush the write cache for this vdev */ 470789Sahrens mutex_exit(&zilog->zl_lock); 471789Sahrens if (zio == NULL) 472789Sahrens zio = zio_root(spa, NULL, NULL, ZIO_FLAG_CANFAIL); 473789Sahrens vd = vdev_lookup_top(spa, vdev); 474789Sahrens ASSERT(vd); 475789Sahrens (void) zio_nowait(zio_ioctl(zio, spa, vd, DKIOCFLUSHWRITECACHE, 476789Sahrens NULL, NULL, ZIO_PRIORITY_NOW, 477789Sahrens ZIO_FLAG_CANFAIL | ZIO_FLAG_DONT_RETRY)); 478789Sahrens mutex_enter(&zilog->zl_lock); 479789Sahrens } 480789Sahrens 481789Sahrens /* 482789Sahrens * Wait for all the flushes to complete. Not all devices actually 483789Sahrens * support the DKIOCFLUSHWRITECACHE ioctl, so it's OK if it fails. 484789Sahrens */ 4851141Sperrin if (zio != NULL) { 4861141Sperrin mutex_exit(&zilog->zl_lock); 487789Sahrens (void) zio_wait(zio); 4881141Sperrin mutex_enter(&zilog->zl_lock); 4891141Sperrin } 490789Sahrens } 491789Sahrens 492789Sahrens /* 493789Sahrens * Function called when a log block write completes 494789Sahrens */ 495789Sahrens static void 496789Sahrens zil_lwb_write_done(zio_t *zio) 497789Sahrens { 498789Sahrens lwb_t *prev; 499789Sahrens lwb_t *lwb = zio->io_private; 500789Sahrens zilog_t *zilog = lwb->lwb_zilog; 501789Sahrens uint64_t max_seq; 502789Sahrens 503789Sahrens /* 504789Sahrens * Now that we've written this log block, we have a stable pointer 505789Sahrens * to the next block in the chain, so it's OK to let the txg in 506789Sahrens * which we allocated the next block sync. 507789Sahrens */ 508789Sahrens txg_rele_to_sync(&lwb->lwb_txgh); 509789Sahrens 510789Sahrens zio_buf_free(lwb->lwb_buf, lwb->lwb_sz); 511789Sahrens mutex_enter(&zilog->zl_lock); 512789Sahrens lwb->lwb_buf = NULL; 513789Sahrens if (zio->io_error) { 514789Sahrens zilog->zl_log_error = B_TRUE; 515789Sahrens mutex_exit(&zilog->zl_lock); 516789Sahrens cv_broadcast(&zilog->zl_cv_seq); 517789Sahrens return; 518789Sahrens } 519789Sahrens 520789Sahrens prev = list_prev(&zilog->zl_lwb_list, lwb); 521789Sahrens if (prev && prev->lwb_state != SEQ_COMPLETE) { 522789Sahrens /* There's an unwritten buffer in the chain before this one */ 523789Sahrens lwb->lwb_state = SEQ_INCOMPLETE; 524789Sahrens mutex_exit(&zilog->zl_lock); 525789Sahrens return; 526789Sahrens } 527789Sahrens 528789Sahrens max_seq = lwb->lwb_seq; 529789Sahrens lwb->lwb_state = SEQ_COMPLETE; 530789Sahrens /* 531789Sahrens * We must also follow up the chain for already written buffers 532789Sahrens * to see if we can set zl_ss_seq even higher. 533789Sahrens */ 534789Sahrens while (lwb = list_next(&zilog->zl_lwb_list, lwb)) { 535789Sahrens if (lwb->lwb_state != SEQ_INCOMPLETE) 536789Sahrens break; 537789Sahrens lwb->lwb_state = SEQ_COMPLETE; 538789Sahrens /* lwb_seq will be zero if we've written an empty buffer */ 539789Sahrens if (lwb->lwb_seq) { 540789Sahrens ASSERT3U(max_seq, <, lwb->lwb_seq); 541789Sahrens max_seq = lwb->lwb_seq; 542789Sahrens } 543789Sahrens } 544789Sahrens zilog->zl_ss_seq = MAX(max_seq, zilog->zl_ss_seq); 545789Sahrens mutex_exit(&zilog->zl_lock); 546789Sahrens cv_broadcast(&zilog->zl_cv_seq); 547789Sahrens } 548789Sahrens 549789Sahrens /* 550789Sahrens * Start a log block write and advance to the next log block. 551789Sahrens * Calls are serialized. 552789Sahrens */ 553789Sahrens static lwb_t * 554789Sahrens zil_lwb_write_start(zilog_t *zilog, lwb_t *lwb) 555789Sahrens { 556789Sahrens lwb_t *nlwb; 557789Sahrens zil_trailer_t *ztp = (zil_trailer_t *)(lwb->lwb_buf + lwb->lwb_sz) - 1; 558789Sahrens uint64_t txg; 559789Sahrens uint64_t zil_blksz; 5601544Seschrock zbookmark_t zb; 561789Sahrens int error; 562789Sahrens 563789Sahrens ASSERT(lwb->lwb_nused <= ZIL_BLK_DATA_SZ(lwb)); 564789Sahrens 565789Sahrens /* 566789Sahrens * Allocate the next block and save its address in this block 567789Sahrens * before writing it in order to establish the log chain. 568789Sahrens * Note that if the allocation of nlwb synced before we wrote 569789Sahrens * the block that points at it (lwb), we'd leak it if we crashed. 570789Sahrens * Therefore, we don't do txg_rele_to_sync() until zil_lwb_write_done(). 571789Sahrens */ 572789Sahrens txg = txg_hold_open(zilog->zl_dmu_pool, &lwb->lwb_txgh); 573789Sahrens txg_rele_to_quiesce(&lwb->lwb_txgh); 574789Sahrens 575789Sahrens /* 5761141Sperrin * Pick a ZIL blocksize. We request a size that is the 5771141Sperrin * maximum of the previous used size, the current used size and 5781141Sperrin * the amount waiting in the queue. 579789Sahrens */ 5801141Sperrin zil_blksz = MAX(zilog->zl_cur_used, zilog->zl_prev_used); 5811141Sperrin zil_blksz = MAX(zil_blksz, zilog->zl_itx_list_sz + sizeof (*ztp)); 5821141Sperrin zil_blksz = P2ROUNDUP(zil_blksz, ZIL_MIN_BLKSZ); 5831141Sperrin if (zil_blksz > ZIL_MAX_BLKSZ) 5841141Sperrin zil_blksz = ZIL_MAX_BLKSZ; 585789Sahrens 586789Sahrens error = zio_alloc_blk(zilog->zl_spa, ZIO_CHECKSUM_ZILOG, 587789Sahrens zil_blksz, &ztp->zit_next_blk, txg); 588789Sahrens if (error) { 5891544Seschrock /* 5901544Seschrock * Reinitialise the lwb. 5911544Seschrock * By returning NULL the caller will call tx_wait_synced() 5921544Seschrock */ 5931544Seschrock mutex_enter(&zilog->zl_lock); 5941544Seschrock ASSERT(lwb->lwb_state == UNWRITTEN); 5951544Seschrock lwb->lwb_nused = 0; 5961544Seschrock lwb->lwb_seq = 0; 5971544Seschrock mutex_exit(&zilog->zl_lock); 598789Sahrens txg_rele_to_sync(&lwb->lwb_txgh); 599789Sahrens return (NULL); 600789Sahrens } 601789Sahrens 602789Sahrens ASSERT3U(ztp->zit_next_blk.blk_birth, ==, txg); 6031544Seschrock ztp->zit_pad = 0; 604789Sahrens ztp->zit_nused = lwb->lwb_nused; 605789Sahrens ztp->zit_bt.zbt_cksum = lwb->lwb_blk.blk_cksum; 606789Sahrens ztp->zit_next_blk.blk_cksum = lwb->lwb_blk.blk_cksum; 607789Sahrens ztp->zit_next_blk.blk_cksum.zc_word[3]++; 608789Sahrens 609789Sahrens /* 610789Sahrens * Allocate a new log write buffer (lwb). 611789Sahrens */ 612789Sahrens nlwb = kmem_cache_alloc(zil_lwb_cache, KM_SLEEP); 613789Sahrens 614789Sahrens nlwb->lwb_zilog = zilog; 615789Sahrens nlwb->lwb_blk = ztp->zit_next_blk; 616789Sahrens nlwb->lwb_nused = 0; 617789Sahrens nlwb->lwb_sz = BP_GET_LSIZE(&nlwb->lwb_blk); 618789Sahrens nlwb->lwb_buf = zio_buf_alloc(nlwb->lwb_sz); 619789Sahrens nlwb->lwb_max_txg = txg; 620789Sahrens nlwb->lwb_seq = 0; 621789Sahrens nlwb->lwb_state = UNWRITTEN; 622789Sahrens 623789Sahrens /* 624789Sahrens * Put new lwb at the end of the log chain, 625789Sahrens * and record the vdev for later flushing 626789Sahrens */ 627789Sahrens mutex_enter(&zilog->zl_lock); 628789Sahrens list_insert_tail(&zilog->zl_lwb_list, nlwb); 629789Sahrens zil_add_vdev(zilog, DVA_GET_VDEV(BP_IDENTITY(&(lwb->lwb_blk))), 630789Sahrens lwb->lwb_seq); 631789Sahrens mutex_exit(&zilog->zl_lock); 632789Sahrens 633789Sahrens /* 634789Sahrens * write the old log block 635789Sahrens */ 636789Sahrens dprintf_bp(&lwb->lwb_blk, "lwb %p txg %llu: ", lwb, txg); 6371544Seschrock 6381544Seschrock zb.zb_objset = lwb->lwb_blk.blk_cksum.zc_word[2]; 6391544Seschrock zb.zb_object = 0; 6401544Seschrock zb.zb_level = -1; 6411544Seschrock zb.zb_blkid = lwb->lwb_blk.blk_cksum.zc_word[3]; 6421544Seschrock 643789Sahrens zio_nowait(zio_rewrite(NULL, zilog->zl_spa, ZIO_CHECKSUM_ZILOG, 0, 644789Sahrens &lwb->lwb_blk, lwb->lwb_buf, lwb->lwb_sz, zil_lwb_write_done, lwb, 6451544Seschrock ZIO_PRIORITY_LOG_WRITE, ZIO_FLAG_MUSTSUCCEED, &zb)); 646789Sahrens 647789Sahrens return (nlwb); 648789Sahrens } 649789Sahrens 650789Sahrens static lwb_t * 651789Sahrens zil_lwb_commit(zilog_t *zilog, itx_t *itx, lwb_t *lwb) 652789Sahrens { 653789Sahrens lr_t *lrc = &itx->itx_lr; /* common log record */ 654*1669Sperrin lr_write_t *lr; 655*1669Sperrin char *dbuf; 656789Sahrens uint64_t seq = lrc->lrc_seq; 657789Sahrens uint64_t txg = lrc->lrc_txg; 658789Sahrens uint64_t reclen = lrc->lrc_reclen; 659*1669Sperrin uint64_t dlen = 0; 660789Sahrens int error; 661789Sahrens 662789Sahrens if (lwb == NULL) 663789Sahrens return (NULL); 664789Sahrens ASSERT(lwb->lwb_buf != NULL); 665789Sahrens 666789Sahrens /* 667789Sahrens * If it's a write, fetch the data or get its blkptr as appropriate. 668789Sahrens */ 669789Sahrens if (lrc->lrc_txtype == TX_WRITE) { 670*1669Sperrin lr = (lr_write_t *)lrc; 671789Sahrens if (txg > spa_freeze_txg(zilog->zl_spa)) 672789Sahrens txg_wait_synced(zilog->zl_dmu_pool, txg); 673*1669Sperrin if (itx->itx_wr_state != WR_COPIED) { 674*1669Sperrin if (itx->itx_wr_state == WR_NEED_COPY) { 675*1669Sperrin dlen = P2ROUNDUP(lr->lr_length, 676*1669Sperrin sizeof (uint64_t)); 677*1669Sperrin ASSERT(dlen); 678*1669Sperrin dbuf = kmem_alloc(dlen, KM_NOSLEEP); 679*1669Sperrin /* on memory shortage use dmu_sync */ 680*1669Sperrin if (dbuf == NULL) { 681*1669Sperrin itx->itx_wr_state = WR_INDIRECT; 682*1669Sperrin dlen = 0; 683*1669Sperrin } 684*1669Sperrin } else { 685*1669Sperrin ASSERT(itx->itx_wr_state == WR_INDIRECT); 686*1669Sperrin dbuf = NULL; 687*1669Sperrin } 688*1669Sperrin error = zilog->zl_get_data(itx->itx_private, lr, dbuf); 689*1669Sperrin if (error) { 690*1669Sperrin if (dlen) 691*1669Sperrin kmem_free(dbuf, dlen); 692*1669Sperrin if (error != ENOENT && error != EALREADY) { 693*1669Sperrin txg_wait_synced(zilog->zl_dmu_pool, 694*1669Sperrin txg); 695*1669Sperrin mutex_enter(&zilog->zl_lock); 696*1669Sperrin zilog->zl_ss_seq = 697*1669Sperrin MAX(seq, zilog->zl_ss_seq); 698*1669Sperrin mutex_exit(&zilog->zl_lock); 699*1669Sperrin return (lwb); 700*1669Sperrin } 701789Sahrens mutex_enter(&zilog->zl_lock); 702*1669Sperrin zil_add_vdev(zilog, DVA_GET_VDEV(BP_IDENTITY( 703*1669Sperrin &(lr->lr_blkptr))), seq); 704789Sahrens mutex_exit(&zilog->zl_lock); 705789Sahrens return (lwb); 706789Sahrens } 707*1669Sperrin } 708*1669Sperrin } 709*1669Sperrin 710*1669Sperrin zilog->zl_cur_used += (reclen + dlen); 711*1669Sperrin 712*1669Sperrin /* 713*1669Sperrin * If this record won't fit in the current log block, start a new one. 714*1669Sperrin */ 715*1669Sperrin if (lwb->lwb_nused + reclen + dlen > ZIL_BLK_DATA_SZ(lwb)) { 716*1669Sperrin lwb = zil_lwb_write_start(zilog, lwb); 717*1669Sperrin if (lwb == NULL) { 718*1669Sperrin if (dlen) 719*1669Sperrin kmem_free(dbuf, dlen); 720*1669Sperrin return (NULL); 721*1669Sperrin } 722*1669Sperrin ASSERT(lwb->lwb_nused == 0); 723*1669Sperrin if (reclen + dlen > ZIL_BLK_DATA_SZ(lwb)) { 724*1669Sperrin txg_wait_synced(zilog->zl_dmu_pool, txg); 725789Sahrens mutex_enter(&zilog->zl_lock); 726*1669Sperrin zilog->zl_ss_seq = MAX(seq, zilog->zl_ss_seq); 727789Sahrens mutex_exit(&zilog->zl_lock); 728*1669Sperrin if (dlen) 729*1669Sperrin kmem_free(dbuf, dlen); 730789Sahrens return (lwb); 731789Sahrens } 732789Sahrens } 733789Sahrens 734*1669Sperrin lrc->lrc_reclen += dlen; 735789Sahrens bcopy(lrc, lwb->lwb_buf + lwb->lwb_nused, reclen); 736789Sahrens lwb->lwb_nused += reclen; 737*1669Sperrin if (dlen) { 738*1669Sperrin bcopy(dbuf, lwb->lwb_buf + lwb->lwb_nused, dlen); 739*1669Sperrin lwb->lwb_nused += dlen; 740*1669Sperrin kmem_free(dbuf, dlen); 741*1669Sperrin lrc->lrc_reclen -= dlen; /* for kmem_free of itx */ 742*1669Sperrin } 743789Sahrens lwb->lwb_max_txg = MAX(lwb->lwb_max_txg, txg); 744789Sahrens ASSERT3U(lwb->lwb_seq, <, seq); 745789Sahrens lwb->lwb_seq = seq; 746789Sahrens ASSERT3U(lwb->lwb_nused, <=, ZIL_BLK_DATA_SZ(lwb)); 747789Sahrens ASSERT3U(P2PHASE(lwb->lwb_nused, sizeof (uint64_t)), ==, 0); 748789Sahrens 749789Sahrens return (lwb); 750789Sahrens } 751789Sahrens 752789Sahrens itx_t * 753789Sahrens zil_itx_create(int txtype, size_t lrsize) 754789Sahrens { 755789Sahrens itx_t *itx; 756789Sahrens 757789Sahrens lrsize = P2ROUNDUP(lrsize, sizeof (uint64_t)); 758789Sahrens 759789Sahrens itx = kmem_alloc(offsetof(itx_t, itx_lr) + lrsize, KM_SLEEP); 760789Sahrens itx->itx_lr.lrc_txtype = txtype; 761789Sahrens itx->itx_lr.lrc_reclen = lrsize; 762789Sahrens itx->itx_lr.lrc_seq = 0; /* defensive */ 763789Sahrens 764789Sahrens return (itx); 765789Sahrens } 766789Sahrens 767789Sahrens uint64_t 768789Sahrens zil_itx_assign(zilog_t *zilog, itx_t *itx, dmu_tx_t *tx) 769789Sahrens { 770789Sahrens uint64_t seq; 771789Sahrens 772789Sahrens ASSERT(itx->itx_lr.lrc_seq == 0); 773789Sahrens 774789Sahrens mutex_enter(&zilog->zl_lock); 775789Sahrens list_insert_tail(&zilog->zl_itx_list, itx); 776789Sahrens zilog->zl_itx_list_sz += itx->itx_lr.lrc_reclen; 777789Sahrens itx->itx_lr.lrc_txg = dmu_tx_get_txg(tx); 778789Sahrens itx->itx_lr.lrc_seq = seq = ++zilog->zl_itx_seq; 779789Sahrens mutex_exit(&zilog->zl_lock); 780789Sahrens 781789Sahrens return (seq); 782789Sahrens } 783789Sahrens 784789Sahrens /* 785789Sahrens * Free up all in-memory intent log transactions that have now been synced. 786789Sahrens */ 787789Sahrens static void 788789Sahrens zil_itx_clean(zilog_t *zilog) 789789Sahrens { 790789Sahrens uint64_t synced_txg = spa_last_synced_txg(zilog->zl_spa); 791789Sahrens uint64_t freeze_txg = spa_freeze_txg(zilog->zl_spa); 792789Sahrens uint64_t max_seq = 0; 793789Sahrens itx_t *itx; 794789Sahrens 795789Sahrens mutex_enter(&zilog->zl_lock); 796789Sahrens while ((itx = list_head(&zilog->zl_itx_list)) != NULL && 797789Sahrens itx->itx_lr.lrc_txg <= MIN(synced_txg, freeze_txg)) { 798789Sahrens list_remove(&zilog->zl_itx_list, itx); 799789Sahrens zilog->zl_itx_list_sz -= itx->itx_lr.lrc_reclen; 800789Sahrens ASSERT3U(max_seq, <, itx->itx_lr.lrc_seq); 801789Sahrens max_seq = itx->itx_lr.lrc_seq; 802789Sahrens kmem_free(itx, offsetof(itx_t, itx_lr) 803789Sahrens + itx->itx_lr.lrc_reclen); 804789Sahrens } 805789Sahrens if (max_seq > zilog->zl_ss_seq) { 806789Sahrens zilog->zl_ss_seq = max_seq; 807789Sahrens cv_broadcast(&zilog->zl_cv_seq); 808789Sahrens } 809789Sahrens mutex_exit(&zilog->zl_lock); 810789Sahrens } 811789Sahrens 812789Sahrens void 813789Sahrens zil_clean(zilog_t *zilog) 814789Sahrens { 815789Sahrens /* 816789Sahrens * Check for any log blocks that can be freed. 817789Sahrens * Log blocks are only freed when the log block allocation and 818789Sahrens * log records contained within are both known to be committed. 819789Sahrens */ 820789Sahrens mutex_enter(&zilog->zl_lock); 821789Sahrens if (list_head(&zilog->zl_itx_list) != NULL) 822789Sahrens (void) taskq_dispatch(zilog->zl_clean_taskq, 823789Sahrens (void (*)(void *))zil_itx_clean, zilog, TQ_NOSLEEP); 824789Sahrens mutex_exit(&zilog->zl_lock); 825789Sahrens } 826789Sahrens 827789Sahrens /* 828789Sahrens * Push zfs transactions to stable storage up to the supplied sequence number. 829789Sahrens */ 830789Sahrens void 831789Sahrens zil_commit(zilog_t *zilog, uint64_t seq, int ioflag) 832789Sahrens { 833789Sahrens uint64_t txg; 834789Sahrens uint64_t max_seq; 835789Sahrens uint64_t reclen; 836789Sahrens itx_t *itx; 837789Sahrens lwb_t *lwb; 838789Sahrens spa_t *spa; 839789Sahrens 840789Sahrens if (zilog == NULL || seq == 0 || 841789Sahrens ((ioflag & (FSYNC | FDSYNC | FRSYNC)) == 0 && !zil_always)) 842789Sahrens return; 843789Sahrens 844789Sahrens spa = zilog->zl_spa; 845789Sahrens mutex_enter(&zilog->zl_lock); 846789Sahrens 847789Sahrens seq = MIN(seq, zilog->zl_itx_seq); /* cap seq at largest itx seq */ 848789Sahrens 849789Sahrens for (;;) { 850789Sahrens if (zilog->zl_ss_seq >= seq) { /* already on stable storage */ 851789Sahrens mutex_exit(&zilog->zl_lock); 852789Sahrens return; 853789Sahrens } 854789Sahrens 855789Sahrens if (zilog->zl_writer == B_FALSE) /* no one writing, do it */ 856789Sahrens break; 857789Sahrens 858789Sahrens cv_wait(&zilog->zl_cv_write, &zilog->zl_lock); 859789Sahrens } 860789Sahrens 861789Sahrens zilog->zl_writer = B_TRUE; 862789Sahrens max_seq = 0; 863789Sahrens 864789Sahrens if (zilog->zl_suspend) { 865789Sahrens lwb = NULL; 866789Sahrens } else { 867789Sahrens lwb = list_tail(&zilog->zl_lwb_list); 868789Sahrens if (lwb == NULL) { 869789Sahrens mutex_exit(&zilog->zl_lock); 870789Sahrens zil_create(zilog); 871789Sahrens mutex_enter(&zilog->zl_lock); 872789Sahrens lwb = list_tail(&zilog->zl_lwb_list); 873789Sahrens } 874789Sahrens } 875789Sahrens 876789Sahrens /* 877789Sahrens * Loop through in-memory log transactions filling log blocks, 878789Sahrens * until we reach the given sequence number and there's no more 879789Sahrens * room in the write buffer. 880789Sahrens */ 881789Sahrens for (;;) { 882789Sahrens itx = list_head(&zilog->zl_itx_list); 883789Sahrens if (itx == NULL) 884789Sahrens break; 885789Sahrens 886789Sahrens reclen = itx->itx_lr.lrc_reclen; 887789Sahrens if ((itx->itx_lr.lrc_seq > seq) && 888789Sahrens ((lwb == NULL) || (lwb->lwb_nused + reclen > 889789Sahrens ZIL_BLK_DATA_SZ(lwb)))) 890789Sahrens break; 891789Sahrens 892789Sahrens list_remove(&zilog->zl_itx_list, itx); 893789Sahrens txg = itx->itx_lr.lrc_txg; 894789Sahrens ASSERT(txg); 895789Sahrens 896789Sahrens mutex_exit(&zilog->zl_lock); 897789Sahrens if (txg > spa_last_synced_txg(spa) || 898789Sahrens txg > spa_freeze_txg(spa)) 899789Sahrens lwb = zil_lwb_commit(zilog, itx, lwb); 900789Sahrens else 901789Sahrens max_seq = itx->itx_lr.lrc_seq; 902789Sahrens kmem_free(itx, offsetof(itx_t, itx_lr) 903789Sahrens + itx->itx_lr.lrc_reclen); 904789Sahrens mutex_enter(&zilog->zl_lock); 905789Sahrens zilog->zl_itx_list_sz -= reclen; 906789Sahrens } 907789Sahrens 908789Sahrens mutex_exit(&zilog->zl_lock); 909789Sahrens 910789Sahrens /* write the last block out */ 911789Sahrens if (lwb != NULL && lwb->lwb_nused != 0) 912789Sahrens lwb = zil_lwb_write_start(zilog, lwb); 913789Sahrens 9141141Sperrin zilog->zl_prev_used = zilog->zl_cur_used; 9151141Sperrin zilog->zl_cur_used = 0; 9161141Sperrin 917789Sahrens mutex_enter(&zilog->zl_lock); 918789Sahrens if (max_seq > zilog->zl_ss_seq) { 919789Sahrens zilog->zl_ss_seq = max_seq; 920789Sahrens cv_broadcast(&zilog->zl_cv_seq); 921789Sahrens } 922789Sahrens /* 923789Sahrens * Wait if necessary for our seq to be committed. 924789Sahrens */ 925789Sahrens if (lwb) { 926789Sahrens while (zilog->zl_ss_seq < seq && zilog->zl_log_error == 0) 927789Sahrens cv_wait(&zilog->zl_cv_seq, &zilog->zl_lock); 928789Sahrens zil_flush_vdevs(zilog, seq); 929789Sahrens } 9301141Sperrin 931789Sahrens if (zilog->zl_log_error || lwb == NULL) { 932789Sahrens zilog->zl_log_error = 0; 933789Sahrens max_seq = zilog->zl_itx_seq; 934789Sahrens mutex_exit(&zilog->zl_lock); 935789Sahrens txg_wait_synced(zilog->zl_dmu_pool, 0); 936789Sahrens mutex_enter(&zilog->zl_lock); 937789Sahrens zilog->zl_ss_seq = MAX(max_seq, zilog->zl_ss_seq); 938789Sahrens cv_broadcast(&zilog->zl_cv_seq); 939789Sahrens } 9401141Sperrin /* wake up others waiting to start a write */ 9411141Sperrin zilog->zl_writer = B_FALSE; 942789Sahrens mutex_exit(&zilog->zl_lock); 9431472Sperrin cv_broadcast(&zilog->zl_cv_write); 944789Sahrens } 945789Sahrens 946789Sahrens /* 947789Sahrens * Called in syncing context to free committed log blocks and update log header. 948789Sahrens */ 949789Sahrens void 950789Sahrens zil_sync(zilog_t *zilog, dmu_tx_t *tx) 951789Sahrens { 952789Sahrens uint64_t txg = dmu_tx_get_txg(tx); 953789Sahrens spa_t *spa = zilog->zl_spa; 954789Sahrens lwb_t *lwb; 955789Sahrens 956789Sahrens ASSERT(zilog->zl_stop_sync == 0); 957789Sahrens 958789Sahrens zilog->zl_header->zh_replay_seq = zilog->zl_replay_seq[txg & TXG_MASK]; 959789Sahrens 960789Sahrens if (zilog->zl_destroy_txg == txg) { 961789Sahrens bzero(zilog->zl_header, sizeof (zil_header_t)); 962789Sahrens bzero(zilog->zl_replay_seq, sizeof (zilog->zl_replay_seq)); 963789Sahrens zilog->zl_destroy_txg = 0; 964789Sahrens } 965789Sahrens 966789Sahrens mutex_enter(&zilog->zl_lock); 967789Sahrens for (;;) { 968789Sahrens lwb = list_head(&zilog->zl_lwb_list); 969789Sahrens if (lwb == NULL) { 970789Sahrens mutex_exit(&zilog->zl_lock); 971789Sahrens return; 972789Sahrens } 973789Sahrens if (lwb->lwb_buf != NULL || lwb->lwb_max_txg > txg) 974789Sahrens break; 975789Sahrens list_remove(&zilog->zl_lwb_list, lwb); 976789Sahrens zio_free_blk(spa, &lwb->lwb_blk, txg); 977789Sahrens kmem_cache_free(zil_lwb_cache, lwb); 978789Sahrens } 979789Sahrens zilog->zl_header->zh_log = lwb->lwb_blk; 980789Sahrens mutex_exit(&zilog->zl_lock); 981789Sahrens } 982789Sahrens 983789Sahrens void 984789Sahrens zil_init(void) 985789Sahrens { 986789Sahrens zil_lwb_cache = kmem_cache_create("zil_lwb_cache", 987789Sahrens sizeof (struct lwb), NULL, NULL, NULL, NULL, NULL, NULL, 0); 988789Sahrens } 989789Sahrens 990789Sahrens void 991789Sahrens zil_fini(void) 992789Sahrens { 993789Sahrens kmem_cache_destroy(zil_lwb_cache); 994789Sahrens } 995789Sahrens 996789Sahrens zilog_t * 997789Sahrens zil_alloc(objset_t *os, zil_header_t *zh_phys) 998789Sahrens { 999789Sahrens zilog_t *zilog; 1000789Sahrens 1001789Sahrens zilog = kmem_zalloc(sizeof (zilog_t), KM_SLEEP); 1002789Sahrens 1003789Sahrens zilog->zl_header = zh_phys; 1004789Sahrens zilog->zl_os = os; 1005789Sahrens zilog->zl_spa = dmu_objset_spa(os); 1006789Sahrens zilog->zl_dmu_pool = dmu_objset_pool(os); 1007789Sahrens 1008789Sahrens list_create(&zilog->zl_itx_list, sizeof (itx_t), 1009789Sahrens offsetof(itx_t, itx_node)); 1010789Sahrens 1011789Sahrens list_create(&zilog->zl_lwb_list, sizeof (lwb_t), 1012789Sahrens offsetof(lwb_t, lwb_node)); 1013789Sahrens 1014789Sahrens list_create(&zilog->zl_vdev_list, sizeof (zil_vdev_t), 1015789Sahrens offsetof(zil_vdev_t, vdev_seq_node)); 1016789Sahrens 1017789Sahrens return (zilog); 1018789Sahrens } 1019789Sahrens 1020789Sahrens void 1021789Sahrens zil_free(zilog_t *zilog) 1022789Sahrens { 1023789Sahrens lwb_t *lwb; 1024789Sahrens zil_vdev_t *zv; 1025789Sahrens 1026789Sahrens zilog->zl_stop_sync = 1; 1027789Sahrens 1028789Sahrens while ((lwb = list_head(&zilog->zl_lwb_list)) != NULL) { 1029789Sahrens list_remove(&zilog->zl_lwb_list, lwb); 1030789Sahrens if (lwb->lwb_buf != NULL) 1031789Sahrens zio_buf_free(lwb->lwb_buf, lwb->lwb_sz); 1032789Sahrens kmem_cache_free(zil_lwb_cache, lwb); 1033789Sahrens } 1034789Sahrens list_destroy(&zilog->zl_lwb_list); 1035789Sahrens 1036789Sahrens while ((zv = list_head(&zilog->zl_vdev_list)) != NULL) { 1037789Sahrens list_remove(&zilog->zl_vdev_list, zv); 1038789Sahrens kmem_free(zv, sizeof (zil_vdev_t)); 1039789Sahrens } 1040789Sahrens list_destroy(&zilog->zl_vdev_list); 1041789Sahrens 1042789Sahrens ASSERT(list_head(&zilog->zl_itx_list) == NULL); 1043789Sahrens list_destroy(&zilog->zl_itx_list); 1044789Sahrens 1045789Sahrens kmem_free(zilog, sizeof (zilog_t)); 1046789Sahrens } 1047789Sahrens 1048789Sahrens /* 10491646Sperrin * return true if the initial log block is not valid 10501362Sperrin */ 10511362Sperrin static int 10521362Sperrin zil_empty(zilog_t *zilog) 10531362Sperrin { 10541362Sperrin blkptr_t blk; 10551362Sperrin char *lrbuf; 10561362Sperrin int error; 10571362Sperrin 10581362Sperrin blk = zilog->zl_header->zh_log; 10591362Sperrin if (BP_IS_HOLE(&blk)) 10601362Sperrin return (1); 10611362Sperrin 10621362Sperrin lrbuf = zio_buf_alloc(SPA_MAXBLOCKSIZE); 10631362Sperrin error = zil_read_log_block(zilog, &blk, lrbuf); 10641362Sperrin zio_buf_free(lrbuf, SPA_MAXBLOCKSIZE); 10651362Sperrin return (error ? 1 : 0); 10661362Sperrin } 10671362Sperrin 10681362Sperrin /* 1069789Sahrens * Open an intent log. 1070789Sahrens */ 1071789Sahrens zilog_t * 1072789Sahrens zil_open(objset_t *os, zil_get_data_t *get_data) 1073789Sahrens { 1074789Sahrens zilog_t *zilog = dmu_objset_zil(os); 1075789Sahrens 1076789Sahrens zilog->zl_get_data = get_data; 1077789Sahrens zilog->zl_clean_taskq = taskq_create("zil_clean", 1, minclsyspri, 1078789Sahrens 2, 2, TASKQ_PREPOPULATE); 1079789Sahrens 1080789Sahrens return (zilog); 1081789Sahrens } 1082789Sahrens 1083789Sahrens /* 1084789Sahrens * Close an intent log. 1085789Sahrens */ 1086789Sahrens void 1087789Sahrens zil_close(zilog_t *zilog) 1088789Sahrens { 10891646Sperrin if (!zil_is_committed(zilog)) 10901362Sperrin txg_wait_synced(zilog->zl_dmu_pool, 0); 1091789Sahrens taskq_destroy(zilog->zl_clean_taskq); 1092789Sahrens zilog->zl_clean_taskq = NULL; 1093789Sahrens zilog->zl_get_data = NULL; 1094789Sahrens 1095789Sahrens zil_itx_clean(zilog); 1096789Sahrens ASSERT(list_head(&zilog->zl_itx_list) == NULL); 1097789Sahrens } 1098789Sahrens 1099789Sahrens /* 1100789Sahrens * Suspend an intent log. While in suspended mode, we still honor 1101789Sahrens * synchronous semantics, but we rely on txg_wait_synced() to do it. 1102789Sahrens * We suspend the log briefly when taking a snapshot so that the snapshot 1103789Sahrens * contains all the data it's supposed to, and has an empty intent log. 1104789Sahrens */ 1105789Sahrens int 1106789Sahrens zil_suspend(zilog_t *zilog) 1107789Sahrens { 1108789Sahrens lwb_t *lwb; 1109789Sahrens 1110789Sahrens mutex_enter(&zilog->zl_lock); 1111789Sahrens if (zilog->zl_header->zh_claim_txg != 0) { /* unplayed log */ 1112789Sahrens mutex_exit(&zilog->zl_lock); 1113789Sahrens return (EBUSY); 1114789Sahrens } 1115789Sahrens zilog->zl_suspend++; 1116789Sahrens mutex_exit(&zilog->zl_lock); 1117789Sahrens 1118789Sahrens zil_commit(zilog, UINT64_MAX, FSYNC); 1119789Sahrens 1120789Sahrens mutex_enter(&zilog->zl_lock); 1121789Sahrens while ((lwb = list_head(&zilog->zl_lwb_list)) != NULL) { 1122789Sahrens if (lwb->lwb_buf != NULL) { 1123789Sahrens /* 1124789Sahrens * Wait for the buffer if it's in the process of 1125789Sahrens * being written. 1126789Sahrens */ 1127789Sahrens if ((lwb->lwb_seq != 0) && 1128789Sahrens (lwb->lwb_state != SEQ_COMPLETE)) { 1129789Sahrens cv_wait(&zilog->zl_cv_seq, &zilog->zl_lock); 1130789Sahrens continue; 1131789Sahrens } 1132789Sahrens zio_buf_free(lwb->lwb_buf, lwb->lwb_sz); 1133789Sahrens } 1134789Sahrens list_remove(&zilog->zl_lwb_list, lwb); 1135789Sahrens kmem_cache_free(zil_lwb_cache, lwb); 1136789Sahrens } 1137789Sahrens mutex_exit(&zilog->zl_lock); 1138789Sahrens 1139789Sahrens zil_destroy(zilog); 1140789Sahrens 1141789Sahrens return (0); 1142789Sahrens } 1143789Sahrens 1144789Sahrens void 1145789Sahrens zil_resume(zilog_t *zilog) 1146789Sahrens { 1147789Sahrens mutex_enter(&zilog->zl_lock); 1148789Sahrens ASSERT(zilog->zl_suspend != 0); 1149789Sahrens zilog->zl_suspend--; 1150789Sahrens mutex_exit(&zilog->zl_lock); 1151789Sahrens } 1152789Sahrens 1153789Sahrens typedef struct zil_replay_arg { 1154789Sahrens objset_t *zr_os; 1155789Sahrens zil_replay_func_t **zr_replay; 1156789Sahrens void *zr_arg; 1157789Sahrens void (*zr_rm_sync)(void *arg); 1158789Sahrens uint64_t *zr_txgp; 1159789Sahrens boolean_t zr_byteswap; 1160789Sahrens char *zr_lrbuf; 1161789Sahrens } zil_replay_arg_t; 1162789Sahrens 1163789Sahrens static void 1164789Sahrens zil_replay_log_record(zilog_t *zilog, lr_t *lr, void *zra, uint64_t claim_txg) 1165789Sahrens { 1166789Sahrens zil_replay_arg_t *zr = zra; 1167789Sahrens zil_header_t *zh = zilog->zl_header; 1168789Sahrens uint64_t reclen = lr->lrc_reclen; 1169789Sahrens uint64_t txtype = lr->lrc_txtype; 1170789Sahrens int pass, error; 1171789Sahrens 1172789Sahrens if (zilog->zl_stop_replay) 1173789Sahrens return; 1174789Sahrens 1175789Sahrens if (lr->lrc_txg < claim_txg) /* already committed */ 1176789Sahrens return; 1177789Sahrens 1178789Sahrens if (lr->lrc_seq <= zh->zh_replay_seq) /* already replayed */ 1179789Sahrens return; 1180789Sahrens 1181789Sahrens /* 1182789Sahrens * Make a copy of the data so we can revise and extend it. 1183789Sahrens */ 1184789Sahrens bcopy(lr, zr->zr_lrbuf, reclen); 1185789Sahrens 1186789Sahrens /* 1187789Sahrens * The log block containing this lr may have been byteswapped 1188789Sahrens * so that we can easily examine common fields like lrc_txtype. 1189789Sahrens * However, the log is a mix of different data types, and only the 1190789Sahrens * replay vectors know how to byteswap their records. Therefore, if 1191789Sahrens * the lr was byteswapped, undo it before invoking the replay vector. 1192789Sahrens */ 1193789Sahrens if (zr->zr_byteswap) 1194789Sahrens byteswap_uint64_array(zr->zr_lrbuf, reclen); 1195789Sahrens 1196789Sahrens /* 1197789Sahrens * If this is a TX_WRITE with a blkptr, suck in the data. 1198789Sahrens */ 1199789Sahrens if (txtype == TX_WRITE && reclen == sizeof (lr_write_t)) { 1200789Sahrens lr_write_t *lrw = (lr_write_t *)lr; 1201789Sahrens blkptr_t *wbp = &lrw->lr_blkptr; 1202789Sahrens uint64_t wlen = lrw->lr_length; 1203789Sahrens char *wbuf = zr->zr_lrbuf + reclen; 1204789Sahrens 1205789Sahrens if (BP_IS_HOLE(wbp)) { /* compressed to a hole */ 1206789Sahrens bzero(wbuf, wlen); 1207789Sahrens } else { 1208789Sahrens /* 1209789Sahrens * A subsequent write may have overwritten this block, 1210789Sahrens * in which case wbp may have been been freed and 1211789Sahrens * reallocated, and our read of wbp may fail with a 1212789Sahrens * checksum error. We can safely ignore this because 1213789Sahrens * the later write will provide the correct data. 1214789Sahrens */ 12151544Seschrock zbookmark_t zb; 12161544Seschrock 12171544Seschrock zb.zb_objset = dmu_objset_id(zilog->zl_os); 12181544Seschrock zb.zb_object = lrw->lr_foid; 12191544Seschrock zb.zb_level = -1; 12201544Seschrock zb.zb_blkid = lrw->lr_offset / BP_GET_LSIZE(wbp); 12211544Seschrock 1222789Sahrens (void) zio_wait(zio_read(NULL, zilog->zl_spa, 1223789Sahrens wbp, wbuf, BP_GET_LSIZE(wbp), NULL, NULL, 1224789Sahrens ZIO_PRIORITY_SYNC_READ, 12251544Seschrock ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE, &zb)); 1226789Sahrens (void) memmove(wbuf, wbuf + lrw->lr_blkoff, wlen); 1227789Sahrens } 1228789Sahrens } 1229789Sahrens 1230789Sahrens /* 1231789Sahrens * We must now do two things atomically: replay this log record, 1232789Sahrens * and update the log header to reflect the fact that we did so. 1233789Sahrens * We use the DMU's ability to assign into a specific txg to do this. 1234789Sahrens */ 1235789Sahrens for (pass = 1; /* CONSTANTCONDITION */; pass++) { 1236789Sahrens uint64_t replay_txg; 1237789Sahrens dmu_tx_t *replay_tx; 1238789Sahrens 1239789Sahrens replay_tx = dmu_tx_create(zr->zr_os); 1240789Sahrens error = dmu_tx_assign(replay_tx, TXG_WAIT); 1241789Sahrens if (error) { 1242789Sahrens dmu_tx_abort(replay_tx); 1243789Sahrens break; 1244789Sahrens } 1245789Sahrens 1246789Sahrens replay_txg = dmu_tx_get_txg(replay_tx); 1247789Sahrens 1248789Sahrens if (txtype == 0 || txtype >= TX_MAX_TYPE) { 1249789Sahrens error = EINVAL; 1250789Sahrens } else { 1251789Sahrens /* 1252789Sahrens * On the first pass, arrange for the replay vector 1253789Sahrens * to fail its dmu_tx_assign(). That's the only way 1254789Sahrens * to ensure that those code paths remain well tested. 1255789Sahrens */ 1256789Sahrens *zr->zr_txgp = replay_txg - (pass == 1); 1257789Sahrens error = zr->zr_replay[txtype](zr->zr_arg, zr->zr_lrbuf, 1258789Sahrens zr->zr_byteswap); 1259789Sahrens *zr->zr_txgp = TXG_NOWAIT; 1260789Sahrens } 1261789Sahrens 1262789Sahrens if (error == 0) { 1263789Sahrens dsl_dataset_dirty(dmu_objset_ds(zr->zr_os), replay_tx); 1264789Sahrens zilog->zl_replay_seq[replay_txg & TXG_MASK] = 1265789Sahrens lr->lrc_seq; 1266789Sahrens } 1267789Sahrens 1268789Sahrens dmu_tx_commit(replay_tx); 1269789Sahrens 1270789Sahrens if (error != ERESTART) 1271789Sahrens break; 1272789Sahrens 1273789Sahrens if (pass != 1) 1274789Sahrens txg_wait_open(spa_get_dsl(zilog->zl_spa), 1275789Sahrens replay_txg + 1); 1276789Sahrens 1277789Sahrens dprintf("pass %d, retrying\n", pass); 1278789Sahrens } 1279789Sahrens 1280789Sahrens if (error) { 1281789Sahrens char *name = kmem_alloc(MAXNAMELEN, KM_SLEEP); 1282789Sahrens dmu_objset_name(zr->zr_os, name); 1283789Sahrens cmn_err(CE_WARN, "ZFS replay transaction error %d, " 1284789Sahrens "dataset %s, seq 0x%llx, txtype %llu\n", 1285789Sahrens error, name, 1286789Sahrens (u_longlong_t)lr->lrc_seq, (u_longlong_t)txtype); 1287789Sahrens zilog->zl_stop_replay = 1; 1288789Sahrens kmem_free(name, MAXNAMELEN); 1289789Sahrens } 1290789Sahrens 1291789Sahrens /* 1292789Sahrens * The DMU's dnode layer doesn't see removes until the txg commits, 1293789Sahrens * so a subsequent claim can spuriously fail with EEXIST. 1294789Sahrens * To prevent this, if we might have removed an object, 1295789Sahrens * wait for the delete thread to delete it, and then 1296789Sahrens * wait for the transaction group to sync. 1297789Sahrens */ 1298789Sahrens if (txtype == TX_REMOVE || txtype == TX_RMDIR || txtype == TX_RENAME) { 1299789Sahrens if (zr->zr_rm_sync != NULL) 1300789Sahrens zr->zr_rm_sync(zr->zr_arg); 1301789Sahrens txg_wait_synced(spa_get_dsl(zilog->zl_spa), 0); 1302789Sahrens } 1303789Sahrens } 1304789Sahrens 1305789Sahrens /* 13061362Sperrin * If this dataset has a non-empty intent log, replay it and destroy it. 1307789Sahrens */ 1308789Sahrens void 1309789Sahrens zil_replay(objset_t *os, void *arg, uint64_t *txgp, 1310789Sahrens zil_replay_func_t *replay_func[TX_MAX_TYPE], void (*rm_sync)(void *arg)) 1311789Sahrens { 1312789Sahrens zilog_t *zilog = dmu_objset_zil(os); 13131362Sperrin zil_replay_arg_t zr; 13141362Sperrin 13151362Sperrin if (zil_empty(zilog)) { 13161362Sperrin /* 13171362Sperrin * Initialise the log header but don't free the log block 13181362Sperrin * which will get reused. 13191362Sperrin */ 13201362Sperrin zilog->zl_header->zh_claim_txg = 0; 13211362Sperrin zilog->zl_header->zh_replay_seq = 0; 13221362Sperrin return; 13231362Sperrin } 1324789Sahrens 1325789Sahrens zr.zr_os = os; 1326789Sahrens zr.zr_replay = replay_func; 1327789Sahrens zr.zr_arg = arg; 1328789Sahrens zr.zr_rm_sync = rm_sync; 1329789Sahrens zr.zr_txgp = txgp; 1330789Sahrens zr.zr_byteswap = BP_SHOULD_BYTESWAP(&zilog->zl_header->zh_log); 1331789Sahrens zr.zr_lrbuf = kmem_alloc(2 * SPA_MAXBLOCKSIZE, KM_SLEEP); 1332789Sahrens 1333789Sahrens /* 1334789Sahrens * Wait for in-progress removes to sync before starting replay. 1335789Sahrens */ 1336789Sahrens if (rm_sync != NULL) 1337789Sahrens rm_sync(arg); 1338789Sahrens txg_wait_synced(zilog->zl_dmu_pool, 0); 1339789Sahrens 1340789Sahrens zilog->zl_stop_replay = 0; 1341789Sahrens zil_parse(zilog, NULL, zil_replay_log_record, &zr, 1342789Sahrens zilog->zl_header->zh_claim_txg); 1343789Sahrens kmem_free(zr.zr_lrbuf, 2 * SPA_MAXBLOCKSIZE); 1344789Sahrens 1345789Sahrens zil_destroy(zilog); 1346789Sahrens } 13471646Sperrin 13481646Sperrin /* 13491646Sperrin * Report whether all transactions are committed 13501646Sperrin */ 13511646Sperrin int 13521646Sperrin zil_is_committed(zilog_t *zilog) 13531646Sperrin { 13541646Sperrin lwb_t *lwb; 13551646Sperrin 13561646Sperrin if (zilog == NULL || list_head(&zilog->zl_itx_list)) 13571646Sperrin return (B_FALSE); 13581646Sperrin 13591646Sperrin /* 13601646Sperrin * A log write buffer at the head of the list that is not UNWRITTEN 13611646Sperrin * means there's a lwb yet to be freed after a txg commit 13621646Sperrin */ 13631646Sperrin lwb = list_head(&zilog->zl_lwb_list); 13641646Sperrin if (lwb && lwb->lwb_state != UNWRITTEN) 13651646Sperrin return (B_FALSE); 13661646Sperrin ASSERT(zil_empty(zilog)); 13671646Sperrin return (B_TRUE); 13681646Sperrin } 1369