1eda14cbcSMatt Macy /* 2eda14cbcSMatt Macy * CDDL HEADER START 3eda14cbcSMatt Macy * 4eda14cbcSMatt Macy * The contents of this file are subject to the terms of the 5eda14cbcSMatt Macy * Common Development and Distribution License (the "License"). 6eda14cbcSMatt Macy * You may not use this file except in compliance with the License. 7eda14cbcSMatt Macy * 8eda14cbcSMatt Macy * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9271171e0SMartin Matuska * or https://opensource.org/licenses/CDDL-1.0. 10eda14cbcSMatt Macy * See the License for the specific language governing permissions 11eda14cbcSMatt Macy * and limitations under the License. 12eda14cbcSMatt Macy * 13eda14cbcSMatt Macy * When distributing Covered Code, include this CDDL HEADER in each 14eda14cbcSMatt Macy * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15eda14cbcSMatt Macy * If applicable, add the following below this CDDL HEADER, with the 16eda14cbcSMatt Macy * fields enclosed by brackets "[]" replaced with your own identifying 17eda14cbcSMatt Macy * information: Portions Copyright [yyyy] [name of copyright owner] 18eda14cbcSMatt Macy * 19eda14cbcSMatt Macy * CDDL HEADER END 20eda14cbcSMatt Macy */ 21eda14cbcSMatt Macy /* 22eda14cbcSMatt Macy * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved. 23eda14cbcSMatt Macy * Copyright (c) 2011, 2018 by Delphix. All rights reserved. 24eda14cbcSMatt Macy * Copyright (c) 2014 Integros [integros.com] 25eda14cbcSMatt Macy * Copyright (c) 2018 Datto Inc. 26eda14cbcSMatt Macy */ 27eda14cbcSMatt Macy 28eda14cbcSMatt Macy /* Portions Copyright 2010 Robert Milkowski */ 29eda14cbcSMatt Macy 30eda14cbcSMatt Macy #include <sys/zfs_context.h> 31eda14cbcSMatt Macy #include <sys/spa.h> 32eda14cbcSMatt Macy #include <sys/spa_impl.h> 33eda14cbcSMatt Macy #include <sys/dmu.h> 34eda14cbcSMatt Macy #include <sys/zap.h> 35eda14cbcSMatt Macy #include <sys/arc.h> 36eda14cbcSMatt Macy #include <sys/stat.h> 37eda14cbcSMatt Macy #include <sys/zil.h> 38eda14cbcSMatt Macy #include <sys/zil_impl.h> 39eda14cbcSMatt Macy #include <sys/dsl_dataset.h> 40eda14cbcSMatt Macy #include <sys/vdev_impl.h> 41eda14cbcSMatt Macy #include <sys/dmu_tx.h> 42eda14cbcSMatt Macy #include <sys/dsl_pool.h> 43eda14cbcSMatt Macy #include <sys/metaslab.h> 44eda14cbcSMatt Macy #include <sys/trace_zfs.h> 45eda14cbcSMatt Macy #include <sys/abd.h> 462a58b312SMartin Matuska #include <sys/brt.h> 47271171e0SMartin Matuska #include <sys/wmsum.h> 48eda14cbcSMatt Macy 49eda14cbcSMatt Macy /* 50eda14cbcSMatt Macy * The ZFS Intent Log (ZIL) saves "transaction records" (itxs) of system 51eda14cbcSMatt Macy * calls that change the file system. Each itx has enough information to 52eda14cbcSMatt Macy * be able to replay them after a system crash, power loss, or 53eda14cbcSMatt Macy * equivalent failure mode. These are stored in memory until either: 54eda14cbcSMatt Macy * 55eda14cbcSMatt Macy * 1. they are committed to the pool by the DMU transaction group 56eda14cbcSMatt Macy * (txg), at which point they can be discarded; or 57eda14cbcSMatt Macy * 2. they are committed to the on-disk ZIL for the dataset being 58eda14cbcSMatt Macy * modified (e.g. due to an fsync, O_DSYNC, or other synchronous 59eda14cbcSMatt Macy * requirement). 60eda14cbcSMatt Macy * 61eda14cbcSMatt Macy * In the event of a crash or power loss, the itxs contained by each 62eda14cbcSMatt Macy * dataset's on-disk ZIL will be replayed when that dataset is first 63eda14cbcSMatt Macy * instantiated (e.g. if the dataset is a normal filesystem, when it is 64eda14cbcSMatt Macy * first mounted). 65eda14cbcSMatt Macy * 66eda14cbcSMatt Macy * As hinted at above, there is one ZIL per dataset (both the in-memory 67eda14cbcSMatt Macy * representation, and the on-disk representation). The on-disk format 68eda14cbcSMatt Macy * consists of 3 parts: 69eda14cbcSMatt Macy * 70eda14cbcSMatt Macy * - a single, per-dataset, ZIL header; which points to a chain of 71eda14cbcSMatt Macy * - zero or more ZIL blocks; each of which contains 72eda14cbcSMatt Macy * - zero or more ZIL records 73eda14cbcSMatt Macy * 74eda14cbcSMatt Macy * A ZIL record holds the information necessary to replay a single 75eda14cbcSMatt Macy * system call transaction. A ZIL block can hold many ZIL records, and 76eda14cbcSMatt Macy * the blocks are chained together, similarly to a singly linked list. 77eda14cbcSMatt Macy * 78eda14cbcSMatt Macy * Each ZIL block contains a block pointer (blkptr_t) to the next ZIL 79eda14cbcSMatt Macy * block in the chain, and the ZIL header points to the first block in 80eda14cbcSMatt Macy * the chain. 81eda14cbcSMatt Macy * 82eda14cbcSMatt Macy * Note, there is not a fixed place in the pool to hold these ZIL 83eda14cbcSMatt Macy * blocks; they are dynamically allocated and freed as needed from the 84eda14cbcSMatt Macy * blocks available on the pool, though they can be preferentially 85eda14cbcSMatt Macy * allocated from a dedicated "log" vdev. 86eda14cbcSMatt Macy */ 87eda14cbcSMatt Macy 88eda14cbcSMatt Macy /* 89eda14cbcSMatt Macy * This controls the amount of time that a ZIL block (lwb) will remain 90eda14cbcSMatt Macy * "open" when it isn't "full", and it has a thread waiting for it to be 91eda14cbcSMatt Macy * committed to stable storage. Please refer to the zil_commit_waiter() 92eda14cbcSMatt Macy * function (and the comments within it) for more details. 93eda14cbcSMatt Macy */ 94be181ee2SMartin Matuska static uint_t zfs_commit_timeout_pct = 5; 95eda14cbcSMatt Macy 96eda14cbcSMatt Macy /* 9715f0b8c3SMartin Matuska * Minimal time we care to delay commit waiting for more ZIL records. 9815f0b8c3SMartin Matuska * At least FreeBSD kernel can't sleep for less than 2us at its best. 9915f0b8c3SMartin Matuska * So requests to sleep for less then 5us is a waste of CPU time with 10015f0b8c3SMartin Matuska * a risk of significant log latency increase due to oversleep. 10115f0b8c3SMartin Matuska */ 10215f0b8c3SMartin Matuska static uint64_t zil_min_commit_timeout = 5000; 10315f0b8c3SMartin Matuska 10415f0b8c3SMartin Matuska /* 105eda14cbcSMatt Macy * See zil.h for more information about these fields. 106eda14cbcSMatt Macy */ 107271171e0SMartin Matuska static zil_kstat_values_t zil_stats = { 108eda14cbcSMatt Macy { "zil_commit_count", KSTAT_DATA_UINT64 }, 109eda14cbcSMatt Macy { "zil_commit_writer_count", KSTAT_DATA_UINT64 }, 110eda14cbcSMatt Macy { "zil_itx_count", KSTAT_DATA_UINT64 }, 111eda14cbcSMatt Macy { "zil_itx_indirect_count", KSTAT_DATA_UINT64 }, 112eda14cbcSMatt Macy { "zil_itx_indirect_bytes", KSTAT_DATA_UINT64 }, 113eda14cbcSMatt Macy { "zil_itx_copied_count", KSTAT_DATA_UINT64 }, 114eda14cbcSMatt Macy { "zil_itx_copied_bytes", KSTAT_DATA_UINT64 }, 115eda14cbcSMatt Macy { "zil_itx_needcopy_count", KSTAT_DATA_UINT64 }, 116eda14cbcSMatt Macy { "zil_itx_needcopy_bytes", KSTAT_DATA_UINT64 }, 117eda14cbcSMatt Macy { "zil_itx_metaslab_normal_count", KSTAT_DATA_UINT64 }, 118eda14cbcSMatt Macy { "zil_itx_metaslab_normal_bytes", KSTAT_DATA_UINT64 }, 1194e8d558cSMartin Matuska { "zil_itx_metaslab_normal_write", KSTAT_DATA_UINT64 }, 1204e8d558cSMartin Matuska { "zil_itx_metaslab_normal_alloc", KSTAT_DATA_UINT64 }, 121eda14cbcSMatt Macy { "zil_itx_metaslab_slog_count", KSTAT_DATA_UINT64 }, 122eda14cbcSMatt Macy { "zil_itx_metaslab_slog_bytes", KSTAT_DATA_UINT64 }, 1234e8d558cSMartin Matuska { "zil_itx_metaslab_slog_write", KSTAT_DATA_UINT64 }, 1244e8d558cSMartin Matuska { "zil_itx_metaslab_slog_alloc", KSTAT_DATA_UINT64 }, 125eda14cbcSMatt Macy }; 126eda14cbcSMatt Macy 127271171e0SMartin Matuska static zil_sums_t zil_sums_global; 128271171e0SMartin Matuska static kstat_t *zil_kstats_global; 129eda14cbcSMatt Macy 130eda14cbcSMatt Macy /* 131eda14cbcSMatt Macy * Disable intent logging replay. This global ZIL switch affects all pools. 132eda14cbcSMatt Macy */ 133eda14cbcSMatt Macy int zil_replay_disable = 0; 134eda14cbcSMatt Macy 135eda14cbcSMatt Macy /* 136eda14cbcSMatt Macy * Disable the DKIOCFLUSHWRITECACHE commands that are normally sent to 137eda14cbcSMatt Macy * the disk(s) by the ZIL after an LWB write has completed. Setting this 138eda14cbcSMatt Macy * will cause ZIL corruption on power loss if a volatile out-of-order 139eda14cbcSMatt Macy * write cache is enabled. 140eda14cbcSMatt Macy */ 141e92ffd9bSMartin Matuska static int zil_nocacheflush = 0; 142eda14cbcSMatt Macy 143eda14cbcSMatt Macy /* 144eda14cbcSMatt Macy * Limit SLOG write size per commit executed with synchronous priority. 145eda14cbcSMatt Macy * Any writes above that will be executed with lower (asynchronous) priority 146eda14cbcSMatt Macy * to limit potential SLOG device abuse by single active ZIL writer. 147eda14cbcSMatt Macy */ 148dbd5678dSMartin Matuska static uint64_t zil_slog_bulk = 768 * 1024; 149eda14cbcSMatt Macy 150eda14cbcSMatt Macy static kmem_cache_t *zil_lwb_cache; 151eda14cbcSMatt Macy static kmem_cache_t *zil_zcw_cache; 152eda14cbcSMatt Macy 1534e8d558cSMartin Matuska static void zil_lwb_commit(zilog_t *zilog, lwb_t *lwb, itx_t *itx); 1544e8d558cSMartin Matuska static itx_t *zil_itx_clone(itx_t *oitx); 1554e8d558cSMartin Matuska 156eda14cbcSMatt Macy static int 157eda14cbcSMatt Macy zil_bp_compare(const void *x1, const void *x2) 158eda14cbcSMatt Macy { 159eda14cbcSMatt Macy const dva_t *dva1 = &((zil_bp_node_t *)x1)->zn_dva; 160eda14cbcSMatt Macy const dva_t *dva2 = &((zil_bp_node_t *)x2)->zn_dva; 161eda14cbcSMatt Macy 162eda14cbcSMatt Macy int cmp = TREE_CMP(DVA_GET_VDEV(dva1), DVA_GET_VDEV(dva2)); 163eda14cbcSMatt Macy if (likely(cmp)) 164eda14cbcSMatt Macy return (cmp); 165eda14cbcSMatt Macy 166eda14cbcSMatt Macy return (TREE_CMP(DVA_GET_OFFSET(dva1), DVA_GET_OFFSET(dva2))); 167eda14cbcSMatt Macy } 168eda14cbcSMatt Macy 169eda14cbcSMatt Macy static void 170eda14cbcSMatt Macy zil_bp_tree_init(zilog_t *zilog) 171eda14cbcSMatt Macy { 172eda14cbcSMatt Macy avl_create(&zilog->zl_bp_tree, zil_bp_compare, 173eda14cbcSMatt Macy sizeof (zil_bp_node_t), offsetof(zil_bp_node_t, zn_node)); 174eda14cbcSMatt Macy } 175eda14cbcSMatt Macy 176eda14cbcSMatt Macy static void 177eda14cbcSMatt Macy zil_bp_tree_fini(zilog_t *zilog) 178eda14cbcSMatt Macy { 179eda14cbcSMatt Macy avl_tree_t *t = &zilog->zl_bp_tree; 180eda14cbcSMatt Macy zil_bp_node_t *zn; 181eda14cbcSMatt Macy void *cookie = NULL; 182eda14cbcSMatt Macy 183eda14cbcSMatt Macy while ((zn = avl_destroy_nodes(t, &cookie)) != NULL) 184eda14cbcSMatt Macy kmem_free(zn, sizeof (zil_bp_node_t)); 185eda14cbcSMatt Macy 186eda14cbcSMatt Macy avl_destroy(t); 187eda14cbcSMatt Macy } 188eda14cbcSMatt Macy 189eda14cbcSMatt Macy int 190eda14cbcSMatt Macy zil_bp_tree_add(zilog_t *zilog, const blkptr_t *bp) 191eda14cbcSMatt Macy { 192eda14cbcSMatt Macy avl_tree_t *t = &zilog->zl_bp_tree; 193eda14cbcSMatt Macy const dva_t *dva; 194eda14cbcSMatt Macy zil_bp_node_t *zn; 195eda14cbcSMatt Macy avl_index_t where; 196eda14cbcSMatt Macy 197eda14cbcSMatt Macy if (BP_IS_EMBEDDED(bp)) 198eda14cbcSMatt Macy return (0); 199eda14cbcSMatt Macy 200eda14cbcSMatt Macy dva = BP_IDENTITY(bp); 201eda14cbcSMatt Macy 202eda14cbcSMatt Macy if (avl_find(t, dva, &where) != NULL) 203eda14cbcSMatt Macy return (SET_ERROR(EEXIST)); 204eda14cbcSMatt Macy 205eda14cbcSMatt Macy zn = kmem_alloc(sizeof (zil_bp_node_t), KM_SLEEP); 206eda14cbcSMatt Macy zn->zn_dva = *dva; 207eda14cbcSMatt Macy avl_insert(t, zn, where); 208eda14cbcSMatt Macy 209eda14cbcSMatt Macy return (0); 210eda14cbcSMatt Macy } 211eda14cbcSMatt Macy 212eda14cbcSMatt Macy static zil_header_t * 213eda14cbcSMatt Macy zil_header_in_syncing_context(zilog_t *zilog) 214eda14cbcSMatt Macy { 215eda14cbcSMatt Macy return ((zil_header_t *)zilog->zl_header); 216eda14cbcSMatt Macy } 217eda14cbcSMatt Macy 218eda14cbcSMatt Macy static void 219eda14cbcSMatt Macy zil_init_log_chain(zilog_t *zilog, blkptr_t *bp) 220eda14cbcSMatt Macy { 221eda14cbcSMatt Macy zio_cksum_t *zc = &bp->blk_cksum; 222eda14cbcSMatt Macy 22333b8c039SMartin Matuska (void) random_get_pseudo_bytes((void *)&zc->zc_word[ZIL_ZC_GUID_0], 22433b8c039SMartin Matuska sizeof (zc->zc_word[ZIL_ZC_GUID_0])); 22533b8c039SMartin Matuska (void) random_get_pseudo_bytes((void *)&zc->zc_word[ZIL_ZC_GUID_1], 22633b8c039SMartin Matuska sizeof (zc->zc_word[ZIL_ZC_GUID_1])); 227eda14cbcSMatt Macy zc->zc_word[ZIL_ZC_OBJSET] = dmu_objset_id(zilog->zl_os); 228eda14cbcSMatt Macy zc->zc_word[ZIL_ZC_SEQ] = 1ULL; 229eda14cbcSMatt Macy } 230eda14cbcSMatt Macy 231271171e0SMartin Matuska static int 232271171e0SMartin Matuska zil_kstats_global_update(kstat_t *ksp, int rw) 233271171e0SMartin Matuska { 234271171e0SMartin Matuska zil_kstat_values_t *zs = ksp->ks_data; 235271171e0SMartin Matuska ASSERT3P(&zil_stats, ==, zs); 236271171e0SMartin Matuska 237271171e0SMartin Matuska if (rw == KSTAT_WRITE) { 238271171e0SMartin Matuska return (SET_ERROR(EACCES)); 239271171e0SMartin Matuska } 240271171e0SMartin Matuska 241271171e0SMartin Matuska zil_kstat_values_update(zs, &zil_sums_global); 242271171e0SMartin Matuska 243271171e0SMartin Matuska return (0); 244271171e0SMartin Matuska } 245271171e0SMartin Matuska 246eda14cbcSMatt Macy /* 247eda14cbcSMatt Macy * Read a log block and make sure it's valid. 248eda14cbcSMatt Macy */ 249eda14cbcSMatt Macy static int 250eda14cbcSMatt Macy zil_read_log_block(zilog_t *zilog, boolean_t decrypt, const blkptr_t *bp, 2514e8d558cSMartin Matuska blkptr_t *nbp, char **begin, char **end, arc_buf_t **abuf) 252eda14cbcSMatt Macy { 253dbd5678dSMartin Matuska zio_flag_t zio_flags = ZIO_FLAG_CANFAIL; 254eda14cbcSMatt Macy arc_flags_t aflags = ARC_FLAG_WAIT; 255eda14cbcSMatt Macy zbookmark_phys_t zb; 256eda14cbcSMatt Macy int error; 257eda14cbcSMatt Macy 258eda14cbcSMatt Macy if (zilog->zl_header->zh_claim_txg == 0) 259eda14cbcSMatt Macy zio_flags |= ZIO_FLAG_SPECULATIVE | ZIO_FLAG_SCRUB; 260eda14cbcSMatt Macy 261eda14cbcSMatt Macy if (!(zilog->zl_header->zh_flags & ZIL_CLAIM_LR_SEQ_VALID)) 262eda14cbcSMatt Macy zio_flags |= ZIO_FLAG_SPECULATIVE; 263eda14cbcSMatt Macy 264eda14cbcSMatt Macy if (!decrypt) 265eda14cbcSMatt Macy zio_flags |= ZIO_FLAG_RAW; 266eda14cbcSMatt Macy 267eda14cbcSMatt Macy SET_BOOKMARK(&zb, bp->blk_cksum.zc_word[ZIL_ZC_OBJSET], 268eda14cbcSMatt Macy ZB_ZIL_OBJECT, ZB_ZIL_LEVEL, bp->blk_cksum.zc_word[ZIL_ZC_SEQ]); 269eda14cbcSMatt Macy 270eda14cbcSMatt Macy error = arc_read(NULL, zilog->zl_spa, bp, arc_getbuf_func, 2714e8d558cSMartin Matuska abuf, ZIO_PRIORITY_SYNC_READ, zio_flags, &aflags, &zb); 272eda14cbcSMatt Macy 273eda14cbcSMatt Macy if (error == 0) { 274eda14cbcSMatt Macy zio_cksum_t cksum = bp->blk_cksum; 275eda14cbcSMatt Macy 276eda14cbcSMatt Macy /* 277eda14cbcSMatt Macy * Validate the checksummed log block. 278eda14cbcSMatt Macy * 279eda14cbcSMatt Macy * Sequence numbers should be... sequential. The checksum 280eda14cbcSMatt Macy * verifier for the next block should be bp's checksum plus 1. 281eda14cbcSMatt Macy * 282eda14cbcSMatt Macy * Also check the log chain linkage and size used. 283eda14cbcSMatt Macy */ 284eda14cbcSMatt Macy cksum.zc_word[ZIL_ZC_SEQ]++; 285eda14cbcSMatt Macy 2864e8d558cSMartin Matuska uint64_t size = BP_GET_LSIZE(bp); 287eda14cbcSMatt Macy if (BP_GET_CHECKSUM(bp) == ZIO_CHECKSUM_ZILOG2) { 2884e8d558cSMartin Matuska zil_chain_t *zilc = (*abuf)->b_data; 289eda14cbcSMatt Macy char *lr = (char *)(zilc + 1); 290eda14cbcSMatt Macy 291da5137abSMartin Matuska if (memcmp(&cksum, &zilc->zc_next_blk.blk_cksum, 292*315ee00fSMartin Matuska sizeof (cksum)) || 2934e8d558cSMartin Matuska zilc->zc_nused < sizeof (*zilc) || 2944e8d558cSMartin Matuska zilc->zc_nused > size) { 295eda14cbcSMatt Macy error = SET_ERROR(ECKSUM); 296eda14cbcSMatt Macy } else { 2974e8d558cSMartin Matuska *begin = lr; 2984e8d558cSMartin Matuska *end = lr + zilc->zc_nused - sizeof (*zilc); 299eda14cbcSMatt Macy *nbp = zilc->zc_next_blk; 300eda14cbcSMatt Macy } 301eda14cbcSMatt Macy } else { 3024e8d558cSMartin Matuska char *lr = (*abuf)->b_data; 303eda14cbcSMatt Macy zil_chain_t *zilc = (zil_chain_t *)(lr + size) - 1; 304eda14cbcSMatt Macy 305da5137abSMartin Matuska if (memcmp(&cksum, &zilc->zc_next_blk.blk_cksum, 306*315ee00fSMartin Matuska sizeof (cksum)) || 307eda14cbcSMatt Macy (zilc->zc_nused > (size - sizeof (*zilc)))) { 308eda14cbcSMatt Macy error = SET_ERROR(ECKSUM); 309eda14cbcSMatt Macy } else { 3104e8d558cSMartin Matuska *begin = lr; 3114e8d558cSMartin Matuska *end = lr + zilc->zc_nused; 312eda14cbcSMatt Macy *nbp = zilc->zc_next_blk; 313eda14cbcSMatt Macy } 314eda14cbcSMatt Macy } 315eda14cbcSMatt Macy } 316eda14cbcSMatt Macy 317eda14cbcSMatt Macy return (error); 318eda14cbcSMatt Macy } 319eda14cbcSMatt Macy 320eda14cbcSMatt Macy /* 321eda14cbcSMatt Macy * Read a TX_WRITE log data block. 322eda14cbcSMatt Macy */ 323eda14cbcSMatt Macy static int 324eda14cbcSMatt Macy zil_read_log_data(zilog_t *zilog, const lr_write_t *lr, void *wbuf) 325eda14cbcSMatt Macy { 326dbd5678dSMartin Matuska zio_flag_t zio_flags = ZIO_FLAG_CANFAIL; 327eda14cbcSMatt Macy const blkptr_t *bp = &lr->lr_blkptr; 328eda14cbcSMatt Macy arc_flags_t aflags = ARC_FLAG_WAIT; 329eda14cbcSMatt Macy arc_buf_t *abuf = NULL; 330eda14cbcSMatt Macy zbookmark_phys_t zb; 331eda14cbcSMatt Macy int error; 332eda14cbcSMatt Macy 333eda14cbcSMatt Macy if (BP_IS_HOLE(bp)) { 334eda14cbcSMatt Macy if (wbuf != NULL) 335da5137abSMartin Matuska memset(wbuf, 0, MAX(BP_GET_LSIZE(bp), lr->lr_length)); 336eda14cbcSMatt Macy return (0); 337eda14cbcSMatt Macy } 338eda14cbcSMatt Macy 339eda14cbcSMatt Macy if (zilog->zl_header->zh_claim_txg == 0) 340eda14cbcSMatt Macy zio_flags |= ZIO_FLAG_SPECULATIVE | ZIO_FLAG_SCRUB; 341eda14cbcSMatt Macy 342eda14cbcSMatt Macy /* 343eda14cbcSMatt Macy * If we are not using the resulting data, we are just checking that 344eda14cbcSMatt Macy * it hasn't been corrupted so we don't need to waste CPU time 345eda14cbcSMatt Macy * decompressing and decrypting it. 346eda14cbcSMatt Macy */ 347eda14cbcSMatt Macy if (wbuf == NULL) 348eda14cbcSMatt Macy zio_flags |= ZIO_FLAG_RAW; 349eda14cbcSMatt Macy 350dbd5678dSMartin Matuska ASSERT3U(BP_GET_LSIZE(bp), !=, 0); 351eda14cbcSMatt Macy SET_BOOKMARK(&zb, dmu_objset_id(zilog->zl_os), lr->lr_foid, 352eda14cbcSMatt Macy ZB_ZIL_LEVEL, lr->lr_offset / BP_GET_LSIZE(bp)); 353eda14cbcSMatt Macy 354eda14cbcSMatt Macy error = arc_read(NULL, zilog->zl_spa, bp, arc_getbuf_func, &abuf, 355eda14cbcSMatt Macy ZIO_PRIORITY_SYNC_READ, zio_flags, &aflags, &zb); 356eda14cbcSMatt Macy 357eda14cbcSMatt Macy if (error == 0) { 358eda14cbcSMatt Macy if (wbuf != NULL) 359da5137abSMartin Matuska memcpy(wbuf, abuf->b_data, arc_buf_size(abuf)); 360eda14cbcSMatt Macy arc_buf_destroy(abuf, &abuf); 361eda14cbcSMatt Macy } 362eda14cbcSMatt Macy 363eda14cbcSMatt Macy return (error); 364eda14cbcSMatt Macy } 365eda14cbcSMatt Macy 366271171e0SMartin Matuska void 367271171e0SMartin Matuska zil_sums_init(zil_sums_t *zs) 368271171e0SMartin Matuska { 369271171e0SMartin Matuska wmsum_init(&zs->zil_commit_count, 0); 370271171e0SMartin Matuska wmsum_init(&zs->zil_commit_writer_count, 0); 371271171e0SMartin Matuska wmsum_init(&zs->zil_itx_count, 0); 372271171e0SMartin Matuska wmsum_init(&zs->zil_itx_indirect_count, 0); 373271171e0SMartin Matuska wmsum_init(&zs->zil_itx_indirect_bytes, 0); 374271171e0SMartin Matuska wmsum_init(&zs->zil_itx_copied_count, 0); 375271171e0SMartin Matuska wmsum_init(&zs->zil_itx_copied_bytes, 0); 376271171e0SMartin Matuska wmsum_init(&zs->zil_itx_needcopy_count, 0); 377271171e0SMartin Matuska wmsum_init(&zs->zil_itx_needcopy_bytes, 0); 378271171e0SMartin Matuska wmsum_init(&zs->zil_itx_metaslab_normal_count, 0); 379271171e0SMartin Matuska wmsum_init(&zs->zil_itx_metaslab_normal_bytes, 0); 3804e8d558cSMartin Matuska wmsum_init(&zs->zil_itx_metaslab_normal_write, 0); 3814e8d558cSMartin Matuska wmsum_init(&zs->zil_itx_metaslab_normal_alloc, 0); 382271171e0SMartin Matuska wmsum_init(&zs->zil_itx_metaslab_slog_count, 0); 383271171e0SMartin Matuska wmsum_init(&zs->zil_itx_metaslab_slog_bytes, 0); 3844e8d558cSMartin Matuska wmsum_init(&zs->zil_itx_metaslab_slog_write, 0); 3854e8d558cSMartin Matuska wmsum_init(&zs->zil_itx_metaslab_slog_alloc, 0); 386271171e0SMartin Matuska } 387271171e0SMartin Matuska 388271171e0SMartin Matuska void 389271171e0SMartin Matuska zil_sums_fini(zil_sums_t *zs) 390271171e0SMartin Matuska { 391271171e0SMartin Matuska wmsum_fini(&zs->zil_commit_count); 392271171e0SMartin Matuska wmsum_fini(&zs->zil_commit_writer_count); 393271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_count); 394271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_indirect_count); 395271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_indirect_bytes); 396271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_copied_count); 397271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_copied_bytes); 398271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_needcopy_count); 399271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_needcopy_bytes); 400271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_metaslab_normal_count); 401271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_metaslab_normal_bytes); 4024e8d558cSMartin Matuska wmsum_fini(&zs->zil_itx_metaslab_normal_write); 4034e8d558cSMartin Matuska wmsum_fini(&zs->zil_itx_metaslab_normal_alloc); 404271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_metaslab_slog_count); 405271171e0SMartin Matuska wmsum_fini(&zs->zil_itx_metaslab_slog_bytes); 4064e8d558cSMartin Matuska wmsum_fini(&zs->zil_itx_metaslab_slog_write); 4074e8d558cSMartin Matuska wmsum_fini(&zs->zil_itx_metaslab_slog_alloc); 408271171e0SMartin Matuska } 409271171e0SMartin Matuska 410271171e0SMartin Matuska void 411271171e0SMartin Matuska zil_kstat_values_update(zil_kstat_values_t *zs, zil_sums_t *zil_sums) 412271171e0SMartin Matuska { 413271171e0SMartin Matuska zs->zil_commit_count.value.ui64 = 414271171e0SMartin Matuska wmsum_value(&zil_sums->zil_commit_count); 415271171e0SMartin Matuska zs->zil_commit_writer_count.value.ui64 = 416271171e0SMartin Matuska wmsum_value(&zil_sums->zil_commit_writer_count); 417271171e0SMartin Matuska zs->zil_itx_count.value.ui64 = 418271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_count); 419271171e0SMartin Matuska zs->zil_itx_indirect_count.value.ui64 = 420271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_indirect_count); 421271171e0SMartin Matuska zs->zil_itx_indirect_bytes.value.ui64 = 422271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_indirect_bytes); 423271171e0SMartin Matuska zs->zil_itx_copied_count.value.ui64 = 424271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_copied_count); 425271171e0SMartin Matuska zs->zil_itx_copied_bytes.value.ui64 = 426271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_copied_bytes); 427271171e0SMartin Matuska zs->zil_itx_needcopy_count.value.ui64 = 428271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_needcopy_count); 429271171e0SMartin Matuska zs->zil_itx_needcopy_bytes.value.ui64 = 430271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_needcopy_bytes); 431271171e0SMartin Matuska zs->zil_itx_metaslab_normal_count.value.ui64 = 432271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_metaslab_normal_count); 433271171e0SMartin Matuska zs->zil_itx_metaslab_normal_bytes.value.ui64 = 434271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_metaslab_normal_bytes); 4354e8d558cSMartin Matuska zs->zil_itx_metaslab_normal_write.value.ui64 = 4364e8d558cSMartin Matuska wmsum_value(&zil_sums->zil_itx_metaslab_normal_write); 4374e8d558cSMartin Matuska zs->zil_itx_metaslab_normal_alloc.value.ui64 = 4384e8d558cSMartin Matuska wmsum_value(&zil_sums->zil_itx_metaslab_normal_alloc); 439271171e0SMartin Matuska zs->zil_itx_metaslab_slog_count.value.ui64 = 440271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_metaslab_slog_count); 441271171e0SMartin Matuska zs->zil_itx_metaslab_slog_bytes.value.ui64 = 442271171e0SMartin Matuska wmsum_value(&zil_sums->zil_itx_metaslab_slog_bytes); 4434e8d558cSMartin Matuska zs->zil_itx_metaslab_slog_write.value.ui64 = 4444e8d558cSMartin Matuska wmsum_value(&zil_sums->zil_itx_metaslab_slog_write); 4454e8d558cSMartin Matuska zs->zil_itx_metaslab_slog_alloc.value.ui64 = 4464e8d558cSMartin Matuska wmsum_value(&zil_sums->zil_itx_metaslab_slog_alloc); 447271171e0SMartin Matuska } 448271171e0SMartin Matuska 449eda14cbcSMatt Macy /* 450eda14cbcSMatt Macy * Parse the intent log, and call parse_func for each valid record within. 451eda14cbcSMatt Macy */ 452eda14cbcSMatt Macy int 453eda14cbcSMatt Macy zil_parse(zilog_t *zilog, zil_parse_blk_func_t *parse_blk_func, 454eda14cbcSMatt Macy zil_parse_lr_func_t *parse_lr_func, void *arg, uint64_t txg, 455eda14cbcSMatt Macy boolean_t decrypt) 456eda14cbcSMatt Macy { 457eda14cbcSMatt Macy const zil_header_t *zh = zilog->zl_header; 458eda14cbcSMatt Macy boolean_t claimed = !!zh->zh_claim_txg; 459eda14cbcSMatt Macy uint64_t claim_blk_seq = claimed ? zh->zh_claim_blk_seq : UINT64_MAX; 460eda14cbcSMatt Macy uint64_t claim_lr_seq = claimed ? zh->zh_claim_lr_seq : UINT64_MAX; 461eda14cbcSMatt Macy uint64_t max_blk_seq = 0; 462eda14cbcSMatt Macy uint64_t max_lr_seq = 0; 463eda14cbcSMatt Macy uint64_t blk_count = 0; 464eda14cbcSMatt Macy uint64_t lr_count = 0; 465da5137abSMartin Matuska blkptr_t blk, next_blk = {{{{0}}}}; 466eda14cbcSMatt Macy int error = 0; 467eda14cbcSMatt Macy 468eda14cbcSMatt Macy /* 469eda14cbcSMatt Macy * Old logs didn't record the maximum zh_claim_lr_seq. 470eda14cbcSMatt Macy */ 471eda14cbcSMatt Macy if (!(zh->zh_flags & ZIL_CLAIM_LR_SEQ_VALID)) 472eda14cbcSMatt Macy claim_lr_seq = UINT64_MAX; 473eda14cbcSMatt Macy 474eda14cbcSMatt Macy /* 475eda14cbcSMatt Macy * Starting at the block pointed to by zh_log we read the log chain. 476eda14cbcSMatt Macy * For each block in the chain we strongly check that block to 477eda14cbcSMatt Macy * ensure its validity. We stop when an invalid block is found. 478eda14cbcSMatt Macy * For each block pointer in the chain we call parse_blk_func(). 479eda14cbcSMatt Macy * For each record in each valid block we call parse_lr_func(). 480eda14cbcSMatt Macy * If the log has been claimed, stop if we encounter a sequence 481eda14cbcSMatt Macy * number greater than the highest claimed sequence number. 482eda14cbcSMatt Macy */ 483eda14cbcSMatt Macy zil_bp_tree_init(zilog); 484eda14cbcSMatt Macy 485eda14cbcSMatt Macy for (blk = zh->zh_log; !BP_IS_HOLE(&blk); blk = next_blk) { 486eda14cbcSMatt Macy uint64_t blk_seq = blk.blk_cksum.zc_word[ZIL_ZC_SEQ]; 487eda14cbcSMatt Macy int reclen; 4884e8d558cSMartin Matuska char *lrp, *end; 4894e8d558cSMartin Matuska arc_buf_t *abuf = NULL; 490eda14cbcSMatt Macy 491eda14cbcSMatt Macy if (blk_seq > claim_blk_seq) 492eda14cbcSMatt Macy break; 493eda14cbcSMatt Macy 494eda14cbcSMatt Macy error = parse_blk_func(zilog, &blk, arg, txg); 495eda14cbcSMatt Macy if (error != 0) 496eda14cbcSMatt Macy break; 497eda14cbcSMatt Macy ASSERT3U(max_blk_seq, <, blk_seq); 498eda14cbcSMatt Macy max_blk_seq = blk_seq; 499eda14cbcSMatt Macy blk_count++; 500eda14cbcSMatt Macy 501eda14cbcSMatt Macy if (max_lr_seq == claim_lr_seq && max_blk_seq == claim_blk_seq) 502eda14cbcSMatt Macy break; 503eda14cbcSMatt Macy 504eda14cbcSMatt Macy error = zil_read_log_block(zilog, decrypt, &blk, &next_blk, 5054e8d558cSMartin Matuska &lrp, &end, &abuf); 506dbd5678dSMartin Matuska if (error != 0) { 5074e8d558cSMartin Matuska if (abuf) 5084e8d558cSMartin Matuska arc_buf_destroy(abuf, &abuf); 509dbd5678dSMartin Matuska if (claimed) { 510dbd5678dSMartin Matuska char name[ZFS_MAX_DATASET_NAME_LEN]; 511dbd5678dSMartin Matuska 512dbd5678dSMartin Matuska dmu_objset_name(zilog->zl_os, name); 513dbd5678dSMartin Matuska 514dbd5678dSMartin Matuska cmn_err(CE_WARN, "ZFS read log block error %d, " 515dbd5678dSMartin Matuska "dataset %s, seq 0x%llx\n", error, name, 516dbd5678dSMartin Matuska (u_longlong_t)blk_seq); 517dbd5678dSMartin Matuska } 518eda14cbcSMatt Macy break; 519dbd5678dSMartin Matuska } 520eda14cbcSMatt Macy 5214e8d558cSMartin Matuska for (; lrp < end; lrp += reclen) { 522eda14cbcSMatt Macy lr_t *lr = (lr_t *)lrp; 523eda14cbcSMatt Macy reclen = lr->lrc_reclen; 524eda14cbcSMatt Macy ASSERT3U(reclen, >=, sizeof (lr_t)); 525f190c36bSMartin Matuska if (lr->lrc_seq > claim_lr_seq) { 526f190c36bSMartin Matuska arc_buf_destroy(abuf, &abuf); 527eda14cbcSMatt Macy goto done; 528f190c36bSMartin Matuska } 529eda14cbcSMatt Macy 530eda14cbcSMatt Macy error = parse_lr_func(zilog, lr, arg, txg); 531f190c36bSMartin Matuska if (error != 0) { 532f190c36bSMartin Matuska arc_buf_destroy(abuf, &abuf); 533eda14cbcSMatt Macy goto done; 534f190c36bSMartin Matuska } 535eda14cbcSMatt Macy ASSERT3U(max_lr_seq, <, lr->lrc_seq); 536eda14cbcSMatt Macy max_lr_seq = lr->lrc_seq; 537eda14cbcSMatt Macy lr_count++; 538eda14cbcSMatt Macy } 5394e8d558cSMartin Matuska arc_buf_destroy(abuf, &abuf); 540eda14cbcSMatt Macy } 541eda14cbcSMatt Macy done: 542eda14cbcSMatt Macy zilog->zl_parse_error = error; 543eda14cbcSMatt Macy zilog->zl_parse_blk_seq = max_blk_seq; 544eda14cbcSMatt Macy zilog->zl_parse_lr_seq = max_lr_seq; 545eda14cbcSMatt Macy zilog->zl_parse_blk_count = blk_count; 546eda14cbcSMatt Macy zilog->zl_parse_lr_count = lr_count; 547eda14cbcSMatt Macy 548eda14cbcSMatt Macy zil_bp_tree_fini(zilog); 549eda14cbcSMatt Macy 550eda14cbcSMatt Macy return (error); 551eda14cbcSMatt Macy } 552eda14cbcSMatt Macy 553eda14cbcSMatt Macy static int 554180f8225SMatt Macy zil_clear_log_block(zilog_t *zilog, const blkptr_t *bp, void *tx, 555180f8225SMatt Macy uint64_t first_txg) 556eda14cbcSMatt Macy { 557e92ffd9bSMartin Matuska (void) tx; 558eda14cbcSMatt Macy ASSERT(!BP_IS_HOLE(bp)); 559eda14cbcSMatt Macy 560eda14cbcSMatt Macy /* 561eda14cbcSMatt Macy * As we call this function from the context of a rewind to a 562eda14cbcSMatt Macy * checkpoint, each ZIL block whose txg is later than the txg 563eda14cbcSMatt Macy * that we rewind to is invalid. Thus, we return -1 so 564eda14cbcSMatt Macy * zil_parse() doesn't attempt to read it. 565eda14cbcSMatt Macy */ 566eda14cbcSMatt Macy if (bp->blk_birth >= first_txg) 567eda14cbcSMatt Macy return (-1); 568eda14cbcSMatt Macy 569eda14cbcSMatt Macy if (zil_bp_tree_add(zilog, bp) != 0) 570eda14cbcSMatt Macy return (0); 571eda14cbcSMatt Macy 572eda14cbcSMatt Macy zio_free(zilog->zl_spa, first_txg, bp); 573eda14cbcSMatt Macy return (0); 574eda14cbcSMatt Macy } 575eda14cbcSMatt Macy 576eda14cbcSMatt Macy static int 577180f8225SMatt Macy zil_noop_log_record(zilog_t *zilog, const lr_t *lrc, void *tx, 578180f8225SMatt Macy uint64_t first_txg) 579eda14cbcSMatt Macy { 580e92ffd9bSMartin Matuska (void) zilog, (void) lrc, (void) tx, (void) first_txg; 581eda14cbcSMatt Macy return (0); 582eda14cbcSMatt Macy } 583eda14cbcSMatt Macy 584eda14cbcSMatt Macy static int 585180f8225SMatt Macy zil_claim_log_block(zilog_t *zilog, const blkptr_t *bp, void *tx, 586180f8225SMatt Macy uint64_t first_txg) 587eda14cbcSMatt Macy { 588eda14cbcSMatt Macy /* 589eda14cbcSMatt Macy * Claim log block if not already committed and not already claimed. 590eda14cbcSMatt Macy * If tx == NULL, just verify that the block is claimable. 591eda14cbcSMatt Macy */ 592eda14cbcSMatt Macy if (BP_IS_HOLE(bp) || bp->blk_birth < first_txg || 593eda14cbcSMatt Macy zil_bp_tree_add(zilog, bp) != 0) 594eda14cbcSMatt Macy return (0); 595eda14cbcSMatt Macy 596eda14cbcSMatt Macy return (zio_wait(zio_claim(NULL, zilog->zl_spa, 597eda14cbcSMatt Macy tx == NULL ? 0 : first_txg, bp, spa_claim_notify, NULL, 598eda14cbcSMatt Macy ZIO_FLAG_CANFAIL | ZIO_FLAG_SPECULATIVE | ZIO_FLAG_SCRUB))); 599eda14cbcSMatt Macy } 600eda14cbcSMatt Macy 601eda14cbcSMatt Macy static int 6022a58b312SMartin Matuska zil_claim_write(zilog_t *zilog, const lr_t *lrc, void *tx, uint64_t first_txg) 603eda14cbcSMatt Macy { 604eda14cbcSMatt Macy lr_write_t *lr = (lr_write_t *)lrc; 605eda14cbcSMatt Macy int error; 606eda14cbcSMatt Macy 6072a58b312SMartin Matuska ASSERT(lrc->lrc_txtype == TX_WRITE); 608eda14cbcSMatt Macy 609eda14cbcSMatt Macy /* 610eda14cbcSMatt Macy * If the block is not readable, don't claim it. This can happen 611eda14cbcSMatt Macy * in normal operation when a log block is written to disk before 612eda14cbcSMatt Macy * some of the dmu_sync() blocks it points to. In this case, the 613eda14cbcSMatt Macy * transaction cannot have been committed to anyone (we would have 614eda14cbcSMatt Macy * waited for all writes to be stable first), so it is semantically 615eda14cbcSMatt Macy * correct to declare this the end of the log. 616eda14cbcSMatt Macy */ 617eda14cbcSMatt Macy if (lr->lr_blkptr.blk_birth >= first_txg) { 618eda14cbcSMatt Macy error = zil_read_log_data(zilog, lr, NULL); 619eda14cbcSMatt Macy if (error != 0) 620eda14cbcSMatt Macy return (error); 621eda14cbcSMatt Macy } 622eda14cbcSMatt Macy 623eda14cbcSMatt Macy return (zil_claim_log_block(zilog, &lr->lr_blkptr, tx, first_txg)); 624eda14cbcSMatt Macy } 625eda14cbcSMatt Macy 626eda14cbcSMatt Macy static int 6272a58b312SMartin Matuska zil_claim_clone_range(zilog_t *zilog, const lr_t *lrc, void *tx) 6282a58b312SMartin Matuska { 6292a58b312SMartin Matuska const lr_clone_range_t *lr = (const lr_clone_range_t *)lrc; 6302a58b312SMartin Matuska const blkptr_t *bp; 6312a58b312SMartin Matuska spa_t *spa; 6322a58b312SMartin Matuska uint_t ii; 6332a58b312SMartin Matuska 6342a58b312SMartin Matuska ASSERT(lrc->lrc_txtype == TX_CLONE_RANGE); 6352a58b312SMartin Matuska 6362a58b312SMartin Matuska if (tx == NULL) { 6372a58b312SMartin Matuska return (0); 6382a58b312SMartin Matuska } 6392a58b312SMartin Matuska 6402a58b312SMartin Matuska /* 6412a58b312SMartin Matuska * XXX: Do we need to byteswap lr? 6422a58b312SMartin Matuska */ 6432a58b312SMartin Matuska 6442a58b312SMartin Matuska spa = zilog->zl_spa; 6452a58b312SMartin Matuska 6462a58b312SMartin Matuska for (ii = 0; ii < lr->lr_nbps; ii++) { 6472a58b312SMartin Matuska bp = &lr->lr_bps[ii]; 6482a58b312SMartin Matuska 6492a58b312SMartin Matuska /* 6502a58b312SMartin Matuska * When data in embedded into BP there is no need to create 6512a58b312SMartin Matuska * BRT entry as there is no data block. Just copy the BP as 6522a58b312SMartin Matuska * it contains the data. 6532a58b312SMartin Matuska */ 6542a58b312SMartin Matuska if (!BP_IS_HOLE(bp) && !BP_IS_EMBEDDED(bp)) { 6552a58b312SMartin Matuska brt_pending_add(spa, bp, tx); 6562a58b312SMartin Matuska } 6572a58b312SMartin Matuska } 6582a58b312SMartin Matuska 6592a58b312SMartin Matuska return (0); 6602a58b312SMartin Matuska } 6612a58b312SMartin Matuska 6622a58b312SMartin Matuska static int 6632a58b312SMartin Matuska zil_claim_log_record(zilog_t *zilog, const lr_t *lrc, void *tx, 6642a58b312SMartin Matuska uint64_t first_txg) 6652a58b312SMartin Matuska { 6662a58b312SMartin Matuska 6672a58b312SMartin Matuska switch (lrc->lrc_txtype) { 6682a58b312SMartin Matuska case TX_WRITE: 6692a58b312SMartin Matuska return (zil_claim_write(zilog, lrc, tx, first_txg)); 6702a58b312SMartin Matuska case TX_CLONE_RANGE: 6712a58b312SMartin Matuska return (zil_claim_clone_range(zilog, lrc, tx)); 6722a58b312SMartin Matuska default: 6732a58b312SMartin Matuska return (0); 6742a58b312SMartin Matuska } 6752a58b312SMartin Matuska } 6762a58b312SMartin Matuska 6772a58b312SMartin Matuska static int 678180f8225SMatt Macy zil_free_log_block(zilog_t *zilog, const blkptr_t *bp, void *tx, 679180f8225SMatt Macy uint64_t claim_txg) 680eda14cbcSMatt Macy { 681e92ffd9bSMartin Matuska (void) claim_txg; 682e92ffd9bSMartin Matuska 683eda14cbcSMatt Macy zio_free(zilog->zl_spa, dmu_tx_get_txg(tx), bp); 684eda14cbcSMatt Macy 685eda14cbcSMatt Macy return (0); 686eda14cbcSMatt Macy } 687eda14cbcSMatt Macy 688eda14cbcSMatt Macy static int 6892a58b312SMartin Matuska zil_free_write(zilog_t *zilog, const lr_t *lrc, void *tx, uint64_t claim_txg) 690eda14cbcSMatt Macy { 691eda14cbcSMatt Macy lr_write_t *lr = (lr_write_t *)lrc; 692eda14cbcSMatt Macy blkptr_t *bp = &lr->lr_blkptr; 693eda14cbcSMatt Macy 6942a58b312SMartin Matuska ASSERT(lrc->lrc_txtype == TX_WRITE); 6952a58b312SMartin Matuska 696eda14cbcSMatt Macy /* 697eda14cbcSMatt Macy * If we previously claimed it, we need to free it. 698eda14cbcSMatt Macy */ 6992a58b312SMartin Matuska if (bp->blk_birth >= claim_txg && zil_bp_tree_add(zilog, bp) == 0 && 7002a58b312SMartin Matuska !BP_IS_HOLE(bp)) { 701eda14cbcSMatt Macy zio_free(zilog->zl_spa, dmu_tx_get_txg(tx), bp); 7022a58b312SMartin Matuska } 703eda14cbcSMatt Macy 704eda14cbcSMatt Macy return (0); 705eda14cbcSMatt Macy } 706eda14cbcSMatt Macy 707eda14cbcSMatt Macy static int 7082a58b312SMartin Matuska zil_free_clone_range(zilog_t *zilog, const lr_t *lrc, void *tx) 7092a58b312SMartin Matuska { 7102a58b312SMartin Matuska const lr_clone_range_t *lr = (const lr_clone_range_t *)lrc; 7112a58b312SMartin Matuska const blkptr_t *bp; 7122a58b312SMartin Matuska spa_t *spa; 7132a58b312SMartin Matuska uint_t ii; 7142a58b312SMartin Matuska 7152a58b312SMartin Matuska ASSERT(lrc->lrc_txtype == TX_CLONE_RANGE); 7162a58b312SMartin Matuska 7172a58b312SMartin Matuska if (tx == NULL) { 7182a58b312SMartin Matuska return (0); 7192a58b312SMartin Matuska } 7202a58b312SMartin Matuska 7212a58b312SMartin Matuska spa = zilog->zl_spa; 7222a58b312SMartin Matuska 7232a58b312SMartin Matuska for (ii = 0; ii < lr->lr_nbps; ii++) { 7242a58b312SMartin Matuska bp = &lr->lr_bps[ii]; 7252a58b312SMartin Matuska 7262a58b312SMartin Matuska if (!BP_IS_HOLE(bp)) { 7272a58b312SMartin Matuska zio_free(spa, dmu_tx_get_txg(tx), bp); 7282a58b312SMartin Matuska } 7292a58b312SMartin Matuska } 7302a58b312SMartin Matuska 7312a58b312SMartin Matuska return (0); 7322a58b312SMartin Matuska } 7332a58b312SMartin Matuska 7342a58b312SMartin Matuska static int 7352a58b312SMartin Matuska zil_free_log_record(zilog_t *zilog, const lr_t *lrc, void *tx, 7362a58b312SMartin Matuska uint64_t claim_txg) 7372a58b312SMartin Matuska { 7382a58b312SMartin Matuska 7392a58b312SMartin Matuska if (claim_txg == 0) { 7402a58b312SMartin Matuska return (0); 7412a58b312SMartin Matuska } 7422a58b312SMartin Matuska 7432a58b312SMartin Matuska switch (lrc->lrc_txtype) { 7442a58b312SMartin Matuska case TX_WRITE: 7452a58b312SMartin Matuska return (zil_free_write(zilog, lrc, tx, claim_txg)); 7462a58b312SMartin Matuska case TX_CLONE_RANGE: 7472a58b312SMartin Matuska return (zil_free_clone_range(zilog, lrc, tx)); 7482a58b312SMartin Matuska default: 7492a58b312SMartin Matuska return (0); 7502a58b312SMartin Matuska } 7512a58b312SMartin Matuska } 7522a58b312SMartin Matuska 7532a58b312SMartin Matuska static int 754eda14cbcSMatt Macy zil_lwb_vdev_compare(const void *x1, const void *x2) 755eda14cbcSMatt Macy { 756eda14cbcSMatt Macy const uint64_t v1 = ((zil_vdev_node_t *)x1)->zv_vdev; 757eda14cbcSMatt Macy const uint64_t v2 = ((zil_vdev_node_t *)x2)->zv_vdev; 758eda14cbcSMatt Macy 759eda14cbcSMatt Macy return (TREE_CMP(v1, v2)); 760eda14cbcSMatt Macy } 761eda14cbcSMatt Macy 762*315ee00fSMartin Matuska /* 763*315ee00fSMartin Matuska * Allocate a new lwb. We may already have a block pointer for it, in which 764*315ee00fSMartin Matuska * case we get size and version from there. Or we may not yet, in which case 765*315ee00fSMartin Matuska * we choose them here and later make the block allocation match. 766*315ee00fSMartin Matuska */ 767eda14cbcSMatt Macy static lwb_t * 768*315ee00fSMartin Matuska zil_alloc_lwb(zilog_t *zilog, int sz, blkptr_t *bp, boolean_t slog, 769*315ee00fSMartin Matuska uint64_t txg, lwb_state_t state) 770eda14cbcSMatt Macy { 771eda14cbcSMatt Macy lwb_t *lwb; 772eda14cbcSMatt Macy 773eda14cbcSMatt Macy lwb = kmem_cache_alloc(zil_lwb_cache, KM_SLEEP); 774eda14cbcSMatt Macy lwb->lwb_zilog = zilog; 775*315ee00fSMartin Matuska if (bp) { 776eda14cbcSMatt Macy lwb->lwb_blk = *bp; 777*315ee00fSMartin Matuska lwb->lwb_slim = (BP_GET_CHECKSUM(bp) == ZIO_CHECKSUM_ZILOG2); 778*315ee00fSMartin Matuska sz = BP_GET_LSIZE(bp); 7794e8d558cSMartin Matuska } else { 780*315ee00fSMartin Matuska BP_ZERO(&lwb->lwb_blk); 781*315ee00fSMartin Matuska lwb->lwb_slim = (spa_version(zilog->zl_spa) >= 782*315ee00fSMartin Matuska SPA_VERSION_SLIM_ZIL); 7834e8d558cSMartin Matuska } 784*315ee00fSMartin Matuska lwb->lwb_slog = slog; 785*315ee00fSMartin Matuska lwb->lwb_error = 0; 786*315ee00fSMartin Matuska if (lwb->lwb_slim) { 787*315ee00fSMartin Matuska lwb->lwb_nmax = sz; 788*315ee00fSMartin Matuska lwb->lwb_nused = lwb->lwb_nfilled = sizeof (zil_chain_t); 789*315ee00fSMartin Matuska } else { 790*315ee00fSMartin Matuska lwb->lwb_nmax = sz - sizeof (zil_chain_t); 791*315ee00fSMartin Matuska lwb->lwb_nused = lwb->lwb_nfilled = 0; 792*315ee00fSMartin Matuska } 793*315ee00fSMartin Matuska lwb->lwb_sz = sz; 794*315ee00fSMartin Matuska lwb->lwb_state = state; 795*315ee00fSMartin Matuska lwb->lwb_buf = zio_buf_alloc(sz); 796*315ee00fSMartin Matuska lwb->lwb_child_zio = NULL; 797eda14cbcSMatt Macy lwb->lwb_write_zio = NULL; 798eda14cbcSMatt Macy lwb->lwb_root_zio = NULL; 799eda14cbcSMatt Macy lwb->lwb_issued_timestamp = 0; 800e3aa18adSMartin Matuska lwb->lwb_issued_txg = 0; 801*315ee00fSMartin Matuska lwb->lwb_alloc_txg = txg; 802*315ee00fSMartin Matuska lwb->lwb_max_txg = 0; 803eda14cbcSMatt Macy 804eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 805eda14cbcSMatt Macy list_insert_tail(&zilog->zl_lwb_list, lwb); 806*315ee00fSMartin Matuska if (state != LWB_STATE_NEW) 807*315ee00fSMartin Matuska zilog->zl_last_lwb_opened = lwb; 808eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 809eda14cbcSMatt Macy 810eda14cbcSMatt Macy return (lwb); 811eda14cbcSMatt Macy } 812eda14cbcSMatt Macy 813eda14cbcSMatt Macy static void 814eda14cbcSMatt Macy zil_free_lwb(zilog_t *zilog, lwb_t *lwb) 815eda14cbcSMatt Macy { 816eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zilog->zl_lock)); 817eda14cbcSMatt Macy ASSERT(!MUTEX_HELD(&lwb->lwb_vdev_lock)); 8180a97523dSMartin Matuska VERIFY(list_is_empty(&lwb->lwb_waiters)); 8190a97523dSMartin Matuska VERIFY(list_is_empty(&lwb->lwb_itxs)); 820eda14cbcSMatt Macy ASSERT(avl_is_empty(&lwb->lwb_vdev_tree)); 821*315ee00fSMartin Matuska ASSERT3P(lwb->lwb_child_zio, ==, NULL); 822eda14cbcSMatt Macy ASSERT3P(lwb->lwb_write_zio, ==, NULL); 823eda14cbcSMatt Macy ASSERT3P(lwb->lwb_root_zio, ==, NULL); 824*315ee00fSMartin Matuska ASSERT3U(lwb->lwb_alloc_txg, <=, spa_syncing_txg(zilog->zl_spa)); 825eda14cbcSMatt Macy ASSERT3U(lwb->lwb_max_txg, <=, spa_syncing_txg(zilog->zl_spa)); 826*315ee00fSMartin Matuska ASSERT(lwb->lwb_state == LWB_STATE_NEW || 827eda14cbcSMatt Macy lwb->lwb_state == LWB_STATE_FLUSH_DONE); 828eda14cbcSMatt Macy 829eda14cbcSMatt Macy /* 830eda14cbcSMatt Macy * Clear the zilog's field to indicate this lwb is no longer 831eda14cbcSMatt Macy * valid, and prevent use-after-free errors. 832eda14cbcSMatt Macy */ 833eda14cbcSMatt Macy if (zilog->zl_last_lwb_opened == lwb) 834eda14cbcSMatt Macy zilog->zl_last_lwb_opened = NULL; 835eda14cbcSMatt Macy 836eda14cbcSMatt Macy kmem_cache_free(zil_lwb_cache, lwb); 837eda14cbcSMatt Macy } 838eda14cbcSMatt Macy 839eda14cbcSMatt Macy /* 840eda14cbcSMatt Macy * Called when we create in-memory log transactions so that we know 841eda14cbcSMatt Macy * to cleanup the itxs at the end of spa_sync(). 842eda14cbcSMatt Macy */ 843eda14cbcSMatt Macy static void 844eda14cbcSMatt Macy zilog_dirty(zilog_t *zilog, uint64_t txg) 845eda14cbcSMatt Macy { 846eda14cbcSMatt Macy dsl_pool_t *dp = zilog->zl_dmu_pool; 847eda14cbcSMatt Macy dsl_dataset_t *ds = dmu_objset_ds(zilog->zl_os); 848eda14cbcSMatt Macy 849eda14cbcSMatt Macy ASSERT(spa_writeable(zilog->zl_spa)); 850eda14cbcSMatt Macy 851eda14cbcSMatt Macy if (ds->ds_is_snapshot) 852eda14cbcSMatt Macy panic("dirtying snapshot!"); 853eda14cbcSMatt Macy 854eda14cbcSMatt Macy if (txg_list_add(&dp->dp_dirty_zilogs, zilog, txg)) { 855eda14cbcSMatt Macy /* up the hold count until we can be written out */ 856eda14cbcSMatt Macy dmu_buf_add_ref(ds->ds_dbuf, zilog); 857eda14cbcSMatt Macy 858eda14cbcSMatt Macy zilog->zl_dirty_max_txg = MAX(txg, zilog->zl_dirty_max_txg); 859eda14cbcSMatt Macy } 860eda14cbcSMatt Macy } 861eda14cbcSMatt Macy 862eda14cbcSMatt Macy /* 863eda14cbcSMatt Macy * Determine if the zil is dirty in the specified txg. Callers wanting to 864eda14cbcSMatt Macy * ensure that the dirty state does not change must hold the itxg_lock for 865eda14cbcSMatt Macy * the specified txg. Holding the lock will ensure that the zil cannot be 866eda14cbcSMatt Macy * dirtied (zil_itx_assign) or cleaned (zil_clean) while we check its current 867eda14cbcSMatt Macy * state. 868eda14cbcSMatt Macy */ 869eda14cbcSMatt Macy static boolean_t __maybe_unused 870eda14cbcSMatt Macy zilog_is_dirty_in_txg(zilog_t *zilog, uint64_t txg) 871eda14cbcSMatt Macy { 872eda14cbcSMatt Macy dsl_pool_t *dp = zilog->zl_dmu_pool; 873eda14cbcSMatt Macy 874eda14cbcSMatt Macy if (txg_list_member(&dp->dp_dirty_zilogs, zilog, txg & TXG_MASK)) 875eda14cbcSMatt Macy return (B_TRUE); 876eda14cbcSMatt Macy return (B_FALSE); 877eda14cbcSMatt Macy } 878eda14cbcSMatt Macy 879eda14cbcSMatt Macy /* 880eda14cbcSMatt Macy * Determine if the zil is dirty. The zil is considered dirty if it has 881eda14cbcSMatt Macy * any pending itx records that have not been cleaned by zil_clean(). 882eda14cbcSMatt Macy */ 883eda14cbcSMatt Macy static boolean_t 884eda14cbcSMatt Macy zilog_is_dirty(zilog_t *zilog) 885eda14cbcSMatt Macy { 886eda14cbcSMatt Macy dsl_pool_t *dp = zilog->zl_dmu_pool; 887eda14cbcSMatt Macy 888eda14cbcSMatt Macy for (int t = 0; t < TXG_SIZE; t++) { 889eda14cbcSMatt Macy if (txg_list_member(&dp->dp_dirty_zilogs, zilog, t)) 890eda14cbcSMatt Macy return (B_TRUE); 891eda14cbcSMatt Macy } 892eda14cbcSMatt Macy return (B_FALSE); 893eda14cbcSMatt Macy } 894eda14cbcSMatt Macy 895eda14cbcSMatt Macy /* 896c03c5b1cSMartin Matuska * Its called in zil_commit context (zil_process_commit_list()/zil_create()). 897c03c5b1cSMartin Matuska * It activates SPA_FEATURE_ZILSAXATTR feature, if its enabled. 898c03c5b1cSMartin Matuska * Check dsl_dataset_feature_is_active to avoid txg_wait_synced() on every 899c03c5b1cSMartin Matuska * zil_commit. 900c03c5b1cSMartin Matuska */ 901c03c5b1cSMartin Matuska static void 902c03c5b1cSMartin Matuska zil_commit_activate_saxattr_feature(zilog_t *zilog) 903c03c5b1cSMartin Matuska { 904c03c5b1cSMartin Matuska dsl_dataset_t *ds = dmu_objset_ds(zilog->zl_os); 905c03c5b1cSMartin Matuska uint64_t txg = 0; 906c03c5b1cSMartin Matuska dmu_tx_t *tx = NULL; 907c03c5b1cSMartin Matuska 908dbd5678dSMartin Matuska if (spa_feature_is_enabled(zilog->zl_spa, SPA_FEATURE_ZILSAXATTR) && 909c03c5b1cSMartin Matuska dmu_objset_type(zilog->zl_os) != DMU_OST_ZVOL && 910dbd5678dSMartin Matuska !dsl_dataset_feature_is_active(ds, SPA_FEATURE_ZILSAXATTR)) { 911c03c5b1cSMartin Matuska tx = dmu_tx_create(zilog->zl_os); 912c03c5b1cSMartin Matuska VERIFY0(dmu_tx_assign(tx, TXG_WAIT)); 913c03c5b1cSMartin Matuska dsl_dataset_dirty(ds, tx); 914c03c5b1cSMartin Matuska txg = dmu_tx_get_txg(tx); 915c03c5b1cSMartin Matuska 916c03c5b1cSMartin Matuska mutex_enter(&ds->ds_lock); 917c03c5b1cSMartin Matuska ds->ds_feature_activation[SPA_FEATURE_ZILSAXATTR] = 918c03c5b1cSMartin Matuska (void *)B_TRUE; 919c03c5b1cSMartin Matuska mutex_exit(&ds->ds_lock); 920c03c5b1cSMartin Matuska dmu_tx_commit(tx); 921c03c5b1cSMartin Matuska txg_wait_synced(zilog->zl_dmu_pool, txg); 922c03c5b1cSMartin Matuska } 923c03c5b1cSMartin Matuska } 924c03c5b1cSMartin Matuska 925c03c5b1cSMartin Matuska /* 926eda14cbcSMatt Macy * Create an on-disk intent log. 927eda14cbcSMatt Macy */ 928eda14cbcSMatt Macy static lwb_t * 929eda14cbcSMatt Macy zil_create(zilog_t *zilog) 930eda14cbcSMatt Macy { 931eda14cbcSMatt Macy const zil_header_t *zh = zilog->zl_header; 932eda14cbcSMatt Macy lwb_t *lwb = NULL; 933eda14cbcSMatt Macy uint64_t txg = 0; 934eda14cbcSMatt Macy dmu_tx_t *tx = NULL; 935eda14cbcSMatt Macy blkptr_t blk; 936eda14cbcSMatt Macy int error = 0; 937eda14cbcSMatt Macy boolean_t slog = FALSE; 938c03c5b1cSMartin Matuska dsl_dataset_t *ds = dmu_objset_ds(zilog->zl_os); 939c03c5b1cSMartin Matuska 940eda14cbcSMatt Macy 941eda14cbcSMatt Macy /* 942eda14cbcSMatt Macy * Wait for any previous destroy to complete. 943eda14cbcSMatt Macy */ 944eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg); 945eda14cbcSMatt Macy 946eda14cbcSMatt Macy ASSERT(zh->zh_claim_txg == 0); 947eda14cbcSMatt Macy ASSERT(zh->zh_replay_seq == 0); 948eda14cbcSMatt Macy 949eda14cbcSMatt Macy blk = zh->zh_log; 950eda14cbcSMatt Macy 951eda14cbcSMatt Macy /* 952eda14cbcSMatt Macy * Allocate an initial log block if: 953eda14cbcSMatt Macy * - there isn't one already 954eda14cbcSMatt Macy * - the existing block is the wrong endianness 955eda14cbcSMatt Macy */ 956eda14cbcSMatt Macy if (BP_IS_HOLE(&blk) || BP_SHOULD_BYTESWAP(&blk)) { 957eda14cbcSMatt Macy tx = dmu_tx_create(zilog->zl_os); 958eda14cbcSMatt Macy VERIFY0(dmu_tx_assign(tx, TXG_WAIT)); 959eda14cbcSMatt Macy dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 960eda14cbcSMatt Macy txg = dmu_tx_get_txg(tx); 961eda14cbcSMatt Macy 962eda14cbcSMatt Macy if (!BP_IS_HOLE(&blk)) { 963eda14cbcSMatt Macy zio_free(zilog->zl_spa, txg, &blk); 964eda14cbcSMatt Macy BP_ZERO(&blk); 965eda14cbcSMatt Macy } 966eda14cbcSMatt Macy 967eda14cbcSMatt Macy error = zio_alloc_zil(zilog->zl_spa, zilog->zl_os, txg, &blk, 968eda14cbcSMatt Macy ZIL_MIN_BLKSZ, &slog); 969eda14cbcSMatt Macy if (error == 0) 970eda14cbcSMatt Macy zil_init_log_chain(zilog, &blk); 971eda14cbcSMatt Macy } 972eda14cbcSMatt Macy 973eda14cbcSMatt Macy /* 974eda14cbcSMatt Macy * Allocate a log write block (lwb) for the first log block. 975eda14cbcSMatt Macy */ 976eda14cbcSMatt Macy if (error == 0) 977*315ee00fSMartin Matuska lwb = zil_alloc_lwb(zilog, 0, &blk, slog, txg, LWB_STATE_NEW); 978eda14cbcSMatt Macy 979eda14cbcSMatt Macy /* 980eda14cbcSMatt Macy * If we just allocated the first log block, commit our transaction 981eda14cbcSMatt Macy * and wait for zil_sync() to stuff the block pointer into zh_log. 982eda14cbcSMatt Macy * (zh is part of the MOS, so we cannot modify it in open context.) 983eda14cbcSMatt Macy */ 984eda14cbcSMatt Macy if (tx != NULL) { 985c03c5b1cSMartin Matuska /* 986c03c5b1cSMartin Matuska * If "zilsaxattr" feature is enabled on zpool, then activate 987c03c5b1cSMartin Matuska * it now when we're creating the ZIL chain. We can't wait with 988c03c5b1cSMartin Matuska * this until we write the first xattr log record because we 989c03c5b1cSMartin Matuska * need to wait for the feature activation to sync out. 990c03c5b1cSMartin Matuska */ 991c03c5b1cSMartin Matuska if (spa_feature_is_enabled(zilog->zl_spa, 992c03c5b1cSMartin Matuska SPA_FEATURE_ZILSAXATTR) && dmu_objset_type(zilog->zl_os) != 993c03c5b1cSMartin Matuska DMU_OST_ZVOL) { 994c03c5b1cSMartin Matuska mutex_enter(&ds->ds_lock); 995c03c5b1cSMartin Matuska ds->ds_feature_activation[SPA_FEATURE_ZILSAXATTR] = 996c03c5b1cSMartin Matuska (void *)B_TRUE; 997c03c5b1cSMartin Matuska mutex_exit(&ds->ds_lock); 998c03c5b1cSMartin Matuska } 999c03c5b1cSMartin Matuska 1000eda14cbcSMatt Macy dmu_tx_commit(tx); 1001eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, txg); 1002c03c5b1cSMartin Matuska } else { 1003c03c5b1cSMartin Matuska /* 1004c03c5b1cSMartin Matuska * This branch covers the case where we enable the feature on a 1005c03c5b1cSMartin Matuska * zpool that has existing ZIL headers. 1006c03c5b1cSMartin Matuska */ 1007c03c5b1cSMartin Matuska zil_commit_activate_saxattr_feature(zilog); 1008eda14cbcSMatt Macy } 1009c03c5b1cSMartin Matuska IMPLY(spa_feature_is_enabled(zilog->zl_spa, SPA_FEATURE_ZILSAXATTR) && 1010c03c5b1cSMartin Matuska dmu_objset_type(zilog->zl_os) != DMU_OST_ZVOL, 1011c03c5b1cSMartin Matuska dsl_dataset_feature_is_active(ds, SPA_FEATURE_ZILSAXATTR)); 1012eda14cbcSMatt Macy 1013da5137abSMartin Matuska ASSERT(error != 0 || memcmp(&blk, &zh->zh_log, sizeof (blk)) == 0); 1014eda14cbcSMatt Macy IMPLY(error == 0, lwb != NULL); 1015eda14cbcSMatt Macy 1016eda14cbcSMatt Macy return (lwb); 1017eda14cbcSMatt Macy } 1018eda14cbcSMatt Macy 1019eda14cbcSMatt Macy /* 1020eda14cbcSMatt Macy * In one tx, free all log blocks and clear the log header. If keep_first 1021eda14cbcSMatt Macy * is set, then we're replaying a log with no content. We want to keep the 1022eda14cbcSMatt Macy * first block, however, so that the first synchronous transaction doesn't 1023eda14cbcSMatt Macy * require a txg_wait_synced() in zil_create(). We don't need to 1024eda14cbcSMatt Macy * txg_wait_synced() here either when keep_first is set, because both 1025eda14cbcSMatt Macy * zil_create() and zil_destroy() will wait for any in-progress destroys 1026eda14cbcSMatt Macy * to complete. 1027dbd5678dSMartin Matuska * Return B_TRUE if there were any entries to replay. 1028eda14cbcSMatt Macy */ 1029dbd5678dSMartin Matuska boolean_t 1030eda14cbcSMatt Macy zil_destroy(zilog_t *zilog, boolean_t keep_first) 1031eda14cbcSMatt Macy { 1032eda14cbcSMatt Macy const zil_header_t *zh = zilog->zl_header; 1033eda14cbcSMatt Macy lwb_t *lwb; 1034eda14cbcSMatt Macy dmu_tx_t *tx; 1035eda14cbcSMatt Macy uint64_t txg; 1036eda14cbcSMatt Macy 1037eda14cbcSMatt Macy /* 1038eda14cbcSMatt Macy * Wait for any previous destroy to complete. 1039eda14cbcSMatt Macy */ 1040eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg); 1041eda14cbcSMatt Macy 1042eda14cbcSMatt Macy zilog->zl_old_header = *zh; /* debugging aid */ 1043eda14cbcSMatt Macy 1044eda14cbcSMatt Macy if (BP_IS_HOLE(&zh->zh_log)) 1045dbd5678dSMartin Matuska return (B_FALSE); 1046eda14cbcSMatt Macy 1047eda14cbcSMatt Macy tx = dmu_tx_create(zilog->zl_os); 1048eda14cbcSMatt Macy VERIFY0(dmu_tx_assign(tx, TXG_WAIT)); 1049eda14cbcSMatt Macy dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 1050eda14cbcSMatt Macy txg = dmu_tx_get_txg(tx); 1051eda14cbcSMatt Macy 1052eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 1053eda14cbcSMatt Macy 1054eda14cbcSMatt Macy ASSERT3U(zilog->zl_destroy_txg, <, txg); 1055eda14cbcSMatt Macy zilog->zl_destroy_txg = txg; 1056eda14cbcSMatt Macy zilog->zl_keep_first = keep_first; 1057eda14cbcSMatt Macy 1058eda14cbcSMatt Macy if (!list_is_empty(&zilog->zl_lwb_list)) { 1059eda14cbcSMatt Macy ASSERT(zh->zh_claim_txg == 0); 1060eda14cbcSMatt Macy VERIFY(!keep_first); 1061c0a83fe0SMartin Matuska while ((lwb = list_remove_head(&zilog->zl_lwb_list)) != NULL) { 1062eda14cbcSMatt Macy if (lwb->lwb_buf != NULL) 1063eda14cbcSMatt Macy zio_buf_free(lwb->lwb_buf, lwb->lwb_sz); 1064*315ee00fSMartin Matuska if (!BP_IS_HOLE(&lwb->lwb_blk)) 1065eda14cbcSMatt Macy zio_free(zilog->zl_spa, txg, &lwb->lwb_blk); 1066eda14cbcSMatt Macy zil_free_lwb(zilog, lwb); 1067eda14cbcSMatt Macy } 1068eda14cbcSMatt Macy } else if (!keep_first) { 1069eda14cbcSMatt Macy zil_destroy_sync(zilog, tx); 1070eda14cbcSMatt Macy } 1071eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 1072eda14cbcSMatt Macy 1073eda14cbcSMatt Macy dmu_tx_commit(tx); 1074dbd5678dSMartin Matuska 1075dbd5678dSMartin Matuska return (B_TRUE); 1076eda14cbcSMatt Macy } 1077eda14cbcSMatt Macy 1078eda14cbcSMatt Macy void 1079eda14cbcSMatt Macy zil_destroy_sync(zilog_t *zilog, dmu_tx_t *tx) 1080eda14cbcSMatt Macy { 1081eda14cbcSMatt Macy ASSERT(list_is_empty(&zilog->zl_lwb_list)); 1082eda14cbcSMatt Macy (void) zil_parse(zilog, zil_free_log_block, 1083eda14cbcSMatt Macy zil_free_log_record, tx, zilog->zl_header->zh_claim_txg, B_FALSE); 1084eda14cbcSMatt Macy } 1085eda14cbcSMatt Macy 1086eda14cbcSMatt Macy int 1087eda14cbcSMatt Macy zil_claim(dsl_pool_t *dp, dsl_dataset_t *ds, void *txarg) 1088eda14cbcSMatt Macy { 1089eda14cbcSMatt Macy dmu_tx_t *tx = txarg; 1090eda14cbcSMatt Macy zilog_t *zilog; 1091eda14cbcSMatt Macy uint64_t first_txg; 1092eda14cbcSMatt Macy zil_header_t *zh; 1093eda14cbcSMatt Macy objset_t *os; 1094eda14cbcSMatt Macy int error; 1095eda14cbcSMatt Macy 1096eda14cbcSMatt Macy error = dmu_objset_own_obj(dp, ds->ds_object, 1097eda14cbcSMatt Macy DMU_OST_ANY, B_FALSE, B_FALSE, FTAG, &os); 1098eda14cbcSMatt Macy if (error != 0) { 1099eda14cbcSMatt Macy /* 1100eda14cbcSMatt Macy * EBUSY indicates that the objset is inconsistent, in which 1101eda14cbcSMatt Macy * case it can not have a ZIL. 1102eda14cbcSMatt Macy */ 1103eda14cbcSMatt Macy if (error != EBUSY) { 1104eda14cbcSMatt Macy cmn_err(CE_WARN, "can't open objset for %llu, error %u", 1105eda14cbcSMatt Macy (unsigned long long)ds->ds_object, error); 1106eda14cbcSMatt Macy } 1107eda14cbcSMatt Macy 1108eda14cbcSMatt Macy return (0); 1109eda14cbcSMatt Macy } 1110eda14cbcSMatt Macy 1111eda14cbcSMatt Macy zilog = dmu_objset_zil(os); 1112eda14cbcSMatt Macy zh = zil_header_in_syncing_context(zilog); 1113eda14cbcSMatt Macy ASSERT3U(tx->tx_txg, ==, spa_first_txg(zilog->zl_spa)); 1114eda14cbcSMatt Macy first_txg = spa_min_claim_txg(zilog->zl_spa); 1115eda14cbcSMatt Macy 1116eda14cbcSMatt Macy /* 1117eda14cbcSMatt Macy * If the spa_log_state is not set to be cleared, check whether 1118eda14cbcSMatt Macy * the current uberblock is a checkpoint one and if the current 1119eda14cbcSMatt Macy * header has been claimed before moving on. 1120eda14cbcSMatt Macy * 1121eda14cbcSMatt Macy * If the current uberblock is a checkpointed uberblock then 1122eda14cbcSMatt Macy * one of the following scenarios took place: 1123eda14cbcSMatt Macy * 1124eda14cbcSMatt Macy * 1] We are currently rewinding to the checkpoint of the pool. 1125eda14cbcSMatt Macy * 2] We crashed in the middle of a checkpoint rewind but we 1126eda14cbcSMatt Macy * did manage to write the checkpointed uberblock to the 1127eda14cbcSMatt Macy * vdev labels, so when we tried to import the pool again 1128eda14cbcSMatt Macy * the checkpointed uberblock was selected from the import 1129eda14cbcSMatt Macy * procedure. 1130eda14cbcSMatt Macy * 1131eda14cbcSMatt Macy * In both cases we want to zero out all the ZIL blocks, except 1132eda14cbcSMatt Macy * the ones that have been claimed at the time of the checkpoint 1133eda14cbcSMatt Macy * (their zh_claim_txg != 0). The reason is that these blocks 1134eda14cbcSMatt Macy * may be corrupted since we may have reused their locations on 1135eda14cbcSMatt Macy * disk after we took the checkpoint. 1136eda14cbcSMatt Macy * 1137eda14cbcSMatt Macy * We could try to set spa_log_state to SPA_LOG_CLEAR earlier 1138eda14cbcSMatt Macy * when we first figure out whether the current uberblock is 1139eda14cbcSMatt Macy * checkpointed or not. Unfortunately, that would discard all 1140eda14cbcSMatt Macy * the logs, including the ones that are claimed, and we would 1141eda14cbcSMatt Macy * leak space. 1142eda14cbcSMatt Macy */ 1143eda14cbcSMatt Macy if (spa_get_log_state(zilog->zl_spa) == SPA_LOG_CLEAR || 1144eda14cbcSMatt Macy (zilog->zl_spa->spa_uberblock.ub_checkpoint_txg != 0 && 1145eda14cbcSMatt Macy zh->zh_claim_txg == 0)) { 1146eda14cbcSMatt Macy if (!BP_IS_HOLE(&zh->zh_log)) { 1147eda14cbcSMatt Macy (void) zil_parse(zilog, zil_clear_log_block, 1148eda14cbcSMatt Macy zil_noop_log_record, tx, first_txg, B_FALSE); 1149eda14cbcSMatt Macy } 1150eda14cbcSMatt Macy BP_ZERO(&zh->zh_log); 1151eda14cbcSMatt Macy if (os->os_encrypted) 1152eda14cbcSMatt Macy os->os_next_write_raw[tx->tx_txg & TXG_MASK] = B_TRUE; 1153eda14cbcSMatt Macy dsl_dataset_dirty(dmu_objset_ds(os), tx); 1154eda14cbcSMatt Macy dmu_objset_disown(os, B_FALSE, FTAG); 1155eda14cbcSMatt Macy return (0); 1156eda14cbcSMatt Macy } 1157eda14cbcSMatt Macy 1158eda14cbcSMatt Macy /* 1159eda14cbcSMatt Macy * If we are not rewinding and opening the pool normally, then 1160eda14cbcSMatt Macy * the min_claim_txg should be equal to the first txg of the pool. 1161eda14cbcSMatt Macy */ 1162eda14cbcSMatt Macy ASSERT3U(first_txg, ==, spa_first_txg(zilog->zl_spa)); 1163eda14cbcSMatt Macy 1164eda14cbcSMatt Macy /* 1165eda14cbcSMatt Macy * Claim all log blocks if we haven't already done so, and remember 1166eda14cbcSMatt Macy * the highest claimed sequence number. This ensures that if we can 1167eda14cbcSMatt Macy * read only part of the log now (e.g. due to a missing device), 1168eda14cbcSMatt Macy * but we can read the entire log later, we will not try to replay 1169eda14cbcSMatt Macy * or destroy beyond the last block we successfully claimed. 1170eda14cbcSMatt Macy */ 1171eda14cbcSMatt Macy ASSERT3U(zh->zh_claim_txg, <=, first_txg); 1172eda14cbcSMatt Macy if (zh->zh_claim_txg == 0 && !BP_IS_HOLE(&zh->zh_log)) { 1173eda14cbcSMatt Macy (void) zil_parse(zilog, zil_claim_log_block, 1174eda14cbcSMatt Macy zil_claim_log_record, tx, first_txg, B_FALSE); 1175eda14cbcSMatt Macy zh->zh_claim_txg = first_txg; 1176eda14cbcSMatt Macy zh->zh_claim_blk_seq = zilog->zl_parse_blk_seq; 1177eda14cbcSMatt Macy zh->zh_claim_lr_seq = zilog->zl_parse_lr_seq; 1178eda14cbcSMatt Macy if (zilog->zl_parse_lr_count || zilog->zl_parse_blk_count > 1) 1179eda14cbcSMatt Macy zh->zh_flags |= ZIL_REPLAY_NEEDED; 1180eda14cbcSMatt Macy zh->zh_flags |= ZIL_CLAIM_LR_SEQ_VALID; 1181eda14cbcSMatt Macy if (os->os_encrypted) 1182eda14cbcSMatt Macy os->os_next_write_raw[tx->tx_txg & TXG_MASK] = B_TRUE; 1183eda14cbcSMatt Macy dsl_dataset_dirty(dmu_objset_ds(os), tx); 1184eda14cbcSMatt Macy } 1185eda14cbcSMatt Macy 1186eda14cbcSMatt Macy ASSERT3U(first_txg, ==, (spa_last_synced_txg(zilog->zl_spa) + 1)); 1187eda14cbcSMatt Macy dmu_objset_disown(os, B_FALSE, FTAG); 1188eda14cbcSMatt Macy return (0); 1189eda14cbcSMatt Macy } 1190eda14cbcSMatt Macy 1191eda14cbcSMatt Macy /* 1192eda14cbcSMatt Macy * Check the log by walking the log chain. 1193eda14cbcSMatt Macy * Checksum errors are ok as they indicate the end of the chain. 1194eda14cbcSMatt Macy * Any other error (no device or read failure) returns an error. 1195eda14cbcSMatt Macy */ 1196eda14cbcSMatt Macy int 1197eda14cbcSMatt Macy zil_check_log_chain(dsl_pool_t *dp, dsl_dataset_t *ds, void *tx) 1198eda14cbcSMatt Macy { 1199e92ffd9bSMartin Matuska (void) dp; 1200eda14cbcSMatt Macy zilog_t *zilog; 1201eda14cbcSMatt Macy objset_t *os; 1202eda14cbcSMatt Macy blkptr_t *bp; 1203eda14cbcSMatt Macy int error; 1204eda14cbcSMatt Macy 1205eda14cbcSMatt Macy ASSERT(tx == NULL); 1206eda14cbcSMatt Macy 1207eda14cbcSMatt Macy error = dmu_objset_from_ds(ds, &os); 1208eda14cbcSMatt Macy if (error != 0) { 1209eda14cbcSMatt Macy cmn_err(CE_WARN, "can't open objset %llu, error %d", 1210eda14cbcSMatt Macy (unsigned long long)ds->ds_object, error); 1211eda14cbcSMatt Macy return (0); 1212eda14cbcSMatt Macy } 1213eda14cbcSMatt Macy 1214eda14cbcSMatt Macy zilog = dmu_objset_zil(os); 1215eda14cbcSMatt Macy bp = (blkptr_t *)&zilog->zl_header->zh_log; 1216eda14cbcSMatt Macy 1217eda14cbcSMatt Macy if (!BP_IS_HOLE(bp)) { 1218eda14cbcSMatt Macy vdev_t *vd; 1219eda14cbcSMatt Macy boolean_t valid = B_TRUE; 1220eda14cbcSMatt Macy 1221eda14cbcSMatt Macy /* 1222eda14cbcSMatt Macy * Check the first block and determine if it's on a log device 1223eda14cbcSMatt Macy * which may have been removed or faulted prior to loading this 1224eda14cbcSMatt Macy * pool. If so, there's no point in checking the rest of the 1225eda14cbcSMatt Macy * log as its content should have already been synced to the 1226eda14cbcSMatt Macy * pool. 1227eda14cbcSMatt Macy */ 1228eda14cbcSMatt Macy spa_config_enter(os->os_spa, SCL_STATE, FTAG, RW_READER); 1229eda14cbcSMatt Macy vd = vdev_lookup_top(os->os_spa, DVA_GET_VDEV(&bp->blk_dva[0])); 1230eda14cbcSMatt Macy if (vd->vdev_islog && vdev_is_dead(vd)) 1231eda14cbcSMatt Macy valid = vdev_log_state_valid(vd); 1232eda14cbcSMatt Macy spa_config_exit(os->os_spa, SCL_STATE, FTAG); 1233eda14cbcSMatt Macy 1234eda14cbcSMatt Macy if (!valid) 1235eda14cbcSMatt Macy return (0); 1236eda14cbcSMatt Macy 1237eda14cbcSMatt Macy /* 1238eda14cbcSMatt Macy * Check whether the current uberblock is checkpointed (e.g. 1239eda14cbcSMatt Macy * we are rewinding) and whether the current header has been 1240eda14cbcSMatt Macy * claimed or not. If it hasn't then skip verifying it. We 1241eda14cbcSMatt Macy * do this because its ZIL blocks may be part of the pool's 1242eda14cbcSMatt Macy * state before the rewind, which is no longer valid. 1243eda14cbcSMatt Macy */ 1244eda14cbcSMatt Macy zil_header_t *zh = zil_header_in_syncing_context(zilog); 1245eda14cbcSMatt Macy if (zilog->zl_spa->spa_uberblock.ub_checkpoint_txg != 0 && 1246eda14cbcSMatt Macy zh->zh_claim_txg == 0) 1247eda14cbcSMatt Macy return (0); 1248eda14cbcSMatt Macy } 1249eda14cbcSMatt Macy 1250eda14cbcSMatt Macy /* 1251eda14cbcSMatt Macy * Because tx == NULL, zil_claim_log_block() will not actually claim 1252eda14cbcSMatt Macy * any blocks, but just determine whether it is possible to do so. 1253eda14cbcSMatt Macy * In addition to checking the log chain, zil_claim_log_block() 1254eda14cbcSMatt Macy * will invoke zio_claim() with a done func of spa_claim_notify(), 1255eda14cbcSMatt Macy * which will update spa_max_claim_txg. See spa_load() for details. 1256eda14cbcSMatt Macy */ 1257eda14cbcSMatt Macy error = zil_parse(zilog, zil_claim_log_block, zil_claim_log_record, tx, 1258eda14cbcSMatt Macy zilog->zl_header->zh_claim_txg ? -1ULL : 1259eda14cbcSMatt Macy spa_min_claim_txg(os->os_spa), B_FALSE); 1260eda14cbcSMatt Macy 1261eda14cbcSMatt Macy return ((error == ECKSUM || error == ENOENT) ? 0 : error); 1262eda14cbcSMatt Macy } 1263eda14cbcSMatt Macy 1264eda14cbcSMatt Macy /* 1265eda14cbcSMatt Macy * When an itx is "skipped", this function is used to properly mark the 1266eda14cbcSMatt Macy * waiter as "done, and signal any thread(s) waiting on it. An itx can 1267eda14cbcSMatt Macy * be skipped (and not committed to an lwb) for a variety of reasons, 1268eda14cbcSMatt Macy * one of them being that the itx was committed via spa_sync(), prior to 1269eda14cbcSMatt Macy * it being committed to an lwb; this can happen if a thread calling 1270eda14cbcSMatt Macy * zil_commit() is racing with spa_sync(). 1271eda14cbcSMatt Macy */ 1272eda14cbcSMatt Macy static void 1273eda14cbcSMatt Macy zil_commit_waiter_skip(zil_commit_waiter_t *zcw) 1274eda14cbcSMatt Macy { 1275eda14cbcSMatt Macy mutex_enter(&zcw->zcw_lock); 1276eda14cbcSMatt Macy ASSERT3B(zcw->zcw_done, ==, B_FALSE); 1277eda14cbcSMatt Macy zcw->zcw_done = B_TRUE; 1278eda14cbcSMatt Macy cv_broadcast(&zcw->zcw_cv); 1279eda14cbcSMatt Macy mutex_exit(&zcw->zcw_lock); 1280eda14cbcSMatt Macy } 1281eda14cbcSMatt Macy 1282eda14cbcSMatt Macy /* 1283eda14cbcSMatt Macy * This function is used when the given waiter is to be linked into an 1284eda14cbcSMatt Macy * lwb's "lwb_waiter" list; i.e. when the itx is committed to the lwb. 1285eda14cbcSMatt Macy * At this point, the waiter will no longer be referenced by the itx, 1286eda14cbcSMatt Macy * and instead, will be referenced by the lwb. 1287eda14cbcSMatt Macy */ 1288eda14cbcSMatt Macy static void 1289eda14cbcSMatt Macy zil_commit_waiter_link_lwb(zil_commit_waiter_t *zcw, lwb_t *lwb) 1290eda14cbcSMatt Macy { 1291eda14cbcSMatt Macy /* 1292eda14cbcSMatt Macy * The lwb_waiters field of the lwb is protected by the zilog's 1293*315ee00fSMartin Matuska * zl_issuer_lock while the lwb is open and zl_lock otherwise. 1294*315ee00fSMartin Matuska * zl_issuer_lock also protects leaving the open state. 1295*315ee00fSMartin Matuska * zcw_lwb setting is protected by zl_issuer_lock and state != 1296*315ee00fSMartin Matuska * flush_done, which transition is protected by zl_lock. 1297eda14cbcSMatt Macy */ 1298*315ee00fSMartin Matuska ASSERT(MUTEX_HELD(&lwb->lwb_zilog->zl_issuer_lock)); 1299*315ee00fSMartin Matuska IMPLY(lwb->lwb_state != LWB_STATE_OPENED, 1300*315ee00fSMartin Matuska MUTEX_HELD(&lwb->lwb_zilog->zl_lock)); 1301*315ee00fSMartin Matuska ASSERT3S(lwb->lwb_state, !=, LWB_STATE_NEW); 1302*315ee00fSMartin Matuska ASSERT3S(lwb->lwb_state, !=, LWB_STATE_FLUSH_DONE); 1303eda14cbcSMatt Macy 1304eda14cbcSMatt Macy ASSERT(!list_link_active(&zcw->zcw_node)); 1305eda14cbcSMatt Macy list_insert_tail(&lwb->lwb_waiters, zcw); 1306*315ee00fSMartin Matuska ASSERT3P(zcw->zcw_lwb, ==, NULL); 1307eda14cbcSMatt Macy zcw->zcw_lwb = lwb; 1308eda14cbcSMatt Macy } 1309eda14cbcSMatt Macy 1310eda14cbcSMatt Macy /* 1311eda14cbcSMatt Macy * This function is used when zio_alloc_zil() fails to allocate a ZIL 1312eda14cbcSMatt Macy * block, and the given waiter must be linked to the "nolwb waiters" 1313eda14cbcSMatt Macy * list inside of zil_process_commit_list(). 1314eda14cbcSMatt Macy */ 1315eda14cbcSMatt Macy static void 1316eda14cbcSMatt Macy zil_commit_waiter_link_nolwb(zil_commit_waiter_t *zcw, list_t *nolwb) 1317eda14cbcSMatt Macy { 1318eda14cbcSMatt Macy ASSERT(!list_link_active(&zcw->zcw_node)); 1319eda14cbcSMatt Macy list_insert_tail(nolwb, zcw); 1320*315ee00fSMartin Matuska ASSERT3P(zcw->zcw_lwb, ==, NULL); 1321eda14cbcSMatt Macy } 1322eda14cbcSMatt Macy 1323eda14cbcSMatt Macy void 1324eda14cbcSMatt Macy zil_lwb_add_block(lwb_t *lwb, const blkptr_t *bp) 1325eda14cbcSMatt Macy { 1326eda14cbcSMatt Macy avl_tree_t *t = &lwb->lwb_vdev_tree; 1327eda14cbcSMatt Macy avl_index_t where; 1328eda14cbcSMatt Macy zil_vdev_node_t *zv, zvsearch; 1329eda14cbcSMatt Macy int ndvas = BP_GET_NDVAS(bp); 1330eda14cbcSMatt Macy int i; 1331eda14cbcSMatt Macy 1332eda14cbcSMatt Macy if (zil_nocacheflush) 1333eda14cbcSMatt Macy return; 1334eda14cbcSMatt Macy 1335eda14cbcSMatt Macy mutex_enter(&lwb->lwb_vdev_lock); 1336eda14cbcSMatt Macy for (i = 0; i < ndvas; i++) { 1337eda14cbcSMatt Macy zvsearch.zv_vdev = DVA_GET_VDEV(&bp->blk_dva[i]); 1338eda14cbcSMatt Macy if (avl_find(t, &zvsearch, &where) == NULL) { 1339eda14cbcSMatt Macy zv = kmem_alloc(sizeof (*zv), KM_SLEEP); 1340eda14cbcSMatt Macy zv->zv_vdev = zvsearch.zv_vdev; 1341eda14cbcSMatt Macy avl_insert(t, zv, where); 1342eda14cbcSMatt Macy } 1343eda14cbcSMatt Macy } 1344eda14cbcSMatt Macy mutex_exit(&lwb->lwb_vdev_lock); 1345eda14cbcSMatt Macy } 1346eda14cbcSMatt Macy 1347eda14cbcSMatt Macy static void 1348eda14cbcSMatt Macy zil_lwb_flush_defer(lwb_t *lwb, lwb_t *nlwb) 1349eda14cbcSMatt Macy { 1350eda14cbcSMatt Macy avl_tree_t *src = &lwb->lwb_vdev_tree; 1351eda14cbcSMatt Macy avl_tree_t *dst = &nlwb->lwb_vdev_tree; 1352eda14cbcSMatt Macy void *cookie = NULL; 1353eda14cbcSMatt Macy zil_vdev_node_t *zv; 1354eda14cbcSMatt Macy 1355eda14cbcSMatt Macy ASSERT3S(lwb->lwb_state, ==, LWB_STATE_WRITE_DONE); 1356eda14cbcSMatt Macy ASSERT3S(nlwb->lwb_state, !=, LWB_STATE_WRITE_DONE); 1357eda14cbcSMatt Macy ASSERT3S(nlwb->lwb_state, !=, LWB_STATE_FLUSH_DONE); 1358eda14cbcSMatt Macy 1359eda14cbcSMatt Macy /* 1360eda14cbcSMatt Macy * While 'lwb' is at a point in its lifetime where lwb_vdev_tree does 1361eda14cbcSMatt Macy * not need the protection of lwb_vdev_lock (it will only be modified 1362eda14cbcSMatt Macy * while holding zilog->zl_lock) as its writes and those of its 1363eda14cbcSMatt Macy * children have all completed. The younger 'nlwb' may be waiting on 1364eda14cbcSMatt Macy * future writes to additional vdevs. 1365eda14cbcSMatt Macy */ 1366eda14cbcSMatt Macy mutex_enter(&nlwb->lwb_vdev_lock); 1367eda14cbcSMatt Macy /* 1368eda14cbcSMatt Macy * Tear down the 'lwb' vdev tree, ensuring that entries which do not 1369eda14cbcSMatt Macy * exist in 'nlwb' are moved to it, freeing any would-be duplicates. 1370eda14cbcSMatt Macy */ 1371eda14cbcSMatt Macy while ((zv = avl_destroy_nodes(src, &cookie)) != NULL) { 1372eda14cbcSMatt Macy avl_index_t where; 1373eda14cbcSMatt Macy 1374eda14cbcSMatt Macy if (avl_find(dst, zv, &where) == NULL) { 1375eda14cbcSMatt Macy avl_insert(dst, zv, where); 1376eda14cbcSMatt Macy } else { 1377eda14cbcSMatt Macy kmem_free(zv, sizeof (*zv)); 1378eda14cbcSMatt Macy } 1379eda14cbcSMatt Macy } 1380eda14cbcSMatt Macy mutex_exit(&nlwb->lwb_vdev_lock); 1381eda14cbcSMatt Macy } 1382eda14cbcSMatt Macy 1383eda14cbcSMatt Macy void 1384eda14cbcSMatt Macy zil_lwb_add_txg(lwb_t *lwb, uint64_t txg) 1385eda14cbcSMatt Macy { 1386eda14cbcSMatt Macy lwb->lwb_max_txg = MAX(lwb->lwb_max_txg, txg); 1387eda14cbcSMatt Macy } 1388eda14cbcSMatt Macy 1389eda14cbcSMatt Macy /* 1390eda14cbcSMatt Macy * This function is a called after all vdevs associated with a given lwb 1391eda14cbcSMatt Macy * write have completed their DKIOCFLUSHWRITECACHE command; or as soon 1392eda14cbcSMatt Macy * as the lwb write completes, if "zil_nocacheflush" is set. Further, 1393eda14cbcSMatt Macy * all "previous" lwb's will have completed before this function is 1394eda14cbcSMatt Macy * called; i.e. this function is called for all previous lwbs before 1395eda14cbcSMatt Macy * it's called for "this" lwb (enforced via zio the dependencies 1396eda14cbcSMatt Macy * configured in zil_lwb_set_zio_dependency()). 1397eda14cbcSMatt Macy * 1398eda14cbcSMatt Macy * The intention is for this function to be called as soon as the 1399eda14cbcSMatt Macy * contents of an lwb are considered "stable" on disk, and will survive 1400eda14cbcSMatt Macy * any sudden loss of power. At this point, any threads waiting for the 1401eda14cbcSMatt Macy * lwb to reach this state are signalled, and the "waiter" structures 1402eda14cbcSMatt Macy * are marked "done". 1403eda14cbcSMatt Macy */ 1404eda14cbcSMatt Macy static void 1405eda14cbcSMatt Macy zil_lwb_flush_vdevs_done(zio_t *zio) 1406eda14cbcSMatt Macy { 1407eda14cbcSMatt Macy lwb_t *lwb = zio->io_private; 1408eda14cbcSMatt Macy zilog_t *zilog = lwb->lwb_zilog; 1409eda14cbcSMatt Macy zil_commit_waiter_t *zcw; 1410eda14cbcSMatt Macy itx_t *itx; 1411e3aa18adSMartin Matuska uint64_t txg; 14124e8d558cSMartin Matuska list_t itxs, waiters; 1413eda14cbcSMatt Macy 1414eda14cbcSMatt Macy spa_config_exit(zilog->zl_spa, SCL_STATE, lwb); 1415eda14cbcSMatt Macy 14164e8d558cSMartin Matuska list_create(&itxs, sizeof (itx_t), offsetof(itx_t, itx_node)); 14174e8d558cSMartin Matuska list_create(&waiters, sizeof (zil_commit_waiter_t), 14184e8d558cSMartin Matuska offsetof(zil_commit_waiter_t, zcw_node)); 14194e8d558cSMartin Matuska 1420c0a83fe0SMartin Matuska hrtime_t t = gethrtime() - lwb->lwb_issued_timestamp; 1421eda14cbcSMatt Macy 1422eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 1423eda14cbcSMatt Macy 1424c0a83fe0SMartin Matuska zilog->zl_last_lwb_latency = (zilog->zl_last_lwb_latency * 7 + t) / 8; 1425eda14cbcSMatt Macy 1426eda14cbcSMatt Macy lwb->lwb_root_zio = NULL; 1427eda14cbcSMatt Macy 1428eda14cbcSMatt Macy if (zilog->zl_last_lwb_opened == lwb) { 1429eda14cbcSMatt Macy /* 1430eda14cbcSMatt Macy * Remember the highest committed log sequence number 1431eda14cbcSMatt Macy * for ztest. We only update this value when all the log 1432eda14cbcSMatt Macy * writes succeeded, because ztest wants to ASSERT that 1433eda14cbcSMatt Macy * it got the whole log chain. 1434eda14cbcSMatt Macy */ 1435eda14cbcSMatt Macy zilog->zl_commit_lr_seq = zilog->zl_lr_seq; 1436eda14cbcSMatt Macy } 1437eda14cbcSMatt Macy 14384e8d558cSMartin Matuska list_move_tail(&itxs, &lwb->lwb_itxs); 14394e8d558cSMartin Matuska list_move_tail(&waiters, &lwb->lwb_waiters); 14407b5e6873SMartin Matuska txg = lwb->lwb_issued_txg; 1441eda14cbcSMatt Macy 14424e8d558cSMartin Matuska ASSERT3S(lwb->lwb_state, ==, LWB_STATE_WRITE_DONE); 14434e8d558cSMartin Matuska lwb->lwb_state = LWB_STATE_FLUSH_DONE; 14444e8d558cSMartin Matuska 14454e8d558cSMartin Matuska mutex_exit(&zilog->zl_lock); 14464e8d558cSMartin Matuska 14474e8d558cSMartin Matuska while ((itx = list_remove_head(&itxs)) != NULL) 14484e8d558cSMartin Matuska zil_itx_destroy(itx); 14494e8d558cSMartin Matuska list_destroy(&itxs); 14504e8d558cSMartin Matuska 14514e8d558cSMartin Matuska while ((zcw = list_remove_head(&waiters)) != NULL) { 1452eda14cbcSMatt Macy mutex_enter(&zcw->zcw_lock); 1453eda14cbcSMatt Macy 1454eda14cbcSMatt Macy zcw->zcw_lwb = NULL; 145553b70c86SMartin Matuska /* 145653b70c86SMartin Matuska * We expect any ZIO errors from child ZIOs to have been 145753b70c86SMartin Matuska * propagated "up" to this specific LWB's root ZIO, in 145853b70c86SMartin Matuska * order for this error handling to work correctly. This 145953b70c86SMartin Matuska * includes ZIO errors from either this LWB's write or 146053b70c86SMartin Matuska * flush, as well as any errors from other dependent LWBs 146153b70c86SMartin Matuska * (e.g. a root LWB ZIO that might be a child of this LWB). 146253b70c86SMartin Matuska * 146353b70c86SMartin Matuska * With that said, it's important to note that LWB flush 146453b70c86SMartin Matuska * errors are not propagated up to the LWB root ZIO. 146553b70c86SMartin Matuska * This is incorrect behavior, and results in VDEV flush 146653b70c86SMartin Matuska * errors not being handled correctly here. See the 146753b70c86SMartin Matuska * comment above the call to "zio_flush" for details. 146853b70c86SMartin Matuska */ 1469eda14cbcSMatt Macy 1470eda14cbcSMatt Macy zcw->zcw_zio_error = zio->io_error; 1471eda14cbcSMatt Macy 1472eda14cbcSMatt Macy ASSERT3B(zcw->zcw_done, ==, B_FALSE); 1473eda14cbcSMatt Macy zcw->zcw_done = B_TRUE; 1474eda14cbcSMatt Macy cv_broadcast(&zcw->zcw_cv); 1475eda14cbcSMatt Macy 1476eda14cbcSMatt Macy mutex_exit(&zcw->zcw_lock); 1477eda14cbcSMatt Macy } 14784e8d558cSMartin Matuska list_destroy(&waiters); 1479eda14cbcSMatt Macy 1480e3aa18adSMartin Matuska mutex_enter(&zilog->zl_lwb_io_lock); 1481e3aa18adSMartin Matuska ASSERT3U(zilog->zl_lwb_inflight[txg & TXG_MASK], >, 0); 1482e3aa18adSMartin Matuska zilog->zl_lwb_inflight[txg & TXG_MASK]--; 1483e3aa18adSMartin Matuska if (zilog->zl_lwb_inflight[txg & TXG_MASK] == 0) 1484e3aa18adSMartin Matuska cv_broadcast(&zilog->zl_lwb_io_cv); 1485e3aa18adSMartin Matuska mutex_exit(&zilog->zl_lwb_io_lock); 1486e3aa18adSMartin Matuska } 1487e3aa18adSMartin Matuska 1488eda14cbcSMatt Macy /* 1489e3aa18adSMartin Matuska * Wait for the completion of all issued write/flush of that txg provided. 1490e3aa18adSMartin Matuska * It guarantees zil_lwb_flush_vdevs_done() is called and returned. 1491eda14cbcSMatt Macy */ 1492e3aa18adSMartin Matuska static void 1493e3aa18adSMartin Matuska zil_lwb_flush_wait_all(zilog_t *zilog, uint64_t txg) 1494e3aa18adSMartin Matuska { 1495e3aa18adSMartin Matuska ASSERT3U(txg, ==, spa_syncing_txg(zilog->zl_spa)); 1496e3aa18adSMartin Matuska 1497e3aa18adSMartin Matuska mutex_enter(&zilog->zl_lwb_io_lock); 1498e3aa18adSMartin Matuska while (zilog->zl_lwb_inflight[txg & TXG_MASK] > 0) 1499e3aa18adSMartin Matuska cv_wait(&zilog->zl_lwb_io_cv, &zilog->zl_lwb_io_lock); 1500e3aa18adSMartin Matuska mutex_exit(&zilog->zl_lwb_io_lock); 1501e3aa18adSMartin Matuska 1502e3aa18adSMartin Matuska #ifdef ZFS_DEBUG 1503e3aa18adSMartin Matuska mutex_enter(&zilog->zl_lock); 1504e3aa18adSMartin Matuska mutex_enter(&zilog->zl_lwb_io_lock); 1505e3aa18adSMartin Matuska lwb_t *lwb = list_head(&zilog->zl_lwb_list); 1506*315ee00fSMartin Matuska while (lwb != NULL) { 1507e3aa18adSMartin Matuska if (lwb->lwb_issued_txg <= txg) { 1508e3aa18adSMartin Matuska ASSERT(lwb->lwb_state != LWB_STATE_ISSUED); 1509e3aa18adSMartin Matuska ASSERT(lwb->lwb_state != LWB_STATE_WRITE_DONE); 1510e3aa18adSMartin Matuska IMPLY(lwb->lwb_issued_txg > 0, 1511e3aa18adSMartin Matuska lwb->lwb_state == LWB_STATE_FLUSH_DONE); 1512e3aa18adSMartin Matuska } 1513c0a83fe0SMartin Matuska IMPLY(lwb->lwb_state == LWB_STATE_WRITE_DONE || 1514c0a83fe0SMartin Matuska lwb->lwb_state == LWB_STATE_FLUSH_DONE, 1515e3aa18adSMartin Matuska lwb->lwb_buf == NULL); 1516e3aa18adSMartin Matuska lwb = list_next(&zilog->zl_lwb_list, lwb); 1517e3aa18adSMartin Matuska } 1518e3aa18adSMartin Matuska mutex_exit(&zilog->zl_lwb_io_lock); 1519e3aa18adSMartin Matuska mutex_exit(&zilog->zl_lock); 1520e3aa18adSMartin Matuska #endif 1521eda14cbcSMatt Macy } 1522eda14cbcSMatt Macy 1523eda14cbcSMatt Macy /* 1524eda14cbcSMatt Macy * This is called when an lwb's write zio completes. The callback's 1525eda14cbcSMatt Macy * purpose is to issue the DKIOCFLUSHWRITECACHE commands for the vdevs 1526eda14cbcSMatt Macy * in the lwb's lwb_vdev_tree. The tree will contain the vdevs involved 1527eda14cbcSMatt Macy * in writing out this specific lwb's data, and in the case that cache 1528eda14cbcSMatt Macy * flushes have been deferred, vdevs involved in writing the data for 1529eda14cbcSMatt Macy * previous lwbs. The writes corresponding to all the vdevs in the 1530eda14cbcSMatt Macy * lwb_vdev_tree will have completed by the time this is called, due to 1531eda14cbcSMatt Macy * the zio dependencies configured in zil_lwb_set_zio_dependency(), 1532eda14cbcSMatt Macy * which takes deferred flushes into account. The lwb will be "done" 1533eda14cbcSMatt Macy * once zil_lwb_flush_vdevs_done() is called, which occurs in the zio 1534eda14cbcSMatt Macy * completion callback for the lwb's root zio. 1535eda14cbcSMatt Macy */ 1536eda14cbcSMatt Macy static void 1537eda14cbcSMatt Macy zil_lwb_write_done(zio_t *zio) 1538eda14cbcSMatt Macy { 1539eda14cbcSMatt Macy lwb_t *lwb = zio->io_private; 1540eda14cbcSMatt Macy spa_t *spa = zio->io_spa; 1541eda14cbcSMatt Macy zilog_t *zilog = lwb->lwb_zilog; 1542eda14cbcSMatt Macy avl_tree_t *t = &lwb->lwb_vdev_tree; 1543eda14cbcSMatt Macy void *cookie = NULL; 1544eda14cbcSMatt Macy zil_vdev_node_t *zv; 1545eda14cbcSMatt Macy lwb_t *nlwb; 1546eda14cbcSMatt Macy 1547eda14cbcSMatt Macy ASSERT3S(spa_config_held(spa, SCL_STATE, RW_READER), !=, 0); 1548eda14cbcSMatt Macy 1549184c1b94SMartin Matuska abd_free(zio->io_abd); 1550c0a83fe0SMartin Matuska zio_buf_free(lwb->lwb_buf, lwb->lwb_sz); 1551c0a83fe0SMartin Matuska lwb->lwb_buf = NULL; 1552eda14cbcSMatt Macy 1553eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 1554eda14cbcSMatt Macy ASSERT3S(lwb->lwb_state, ==, LWB_STATE_ISSUED); 1555eda14cbcSMatt Macy lwb->lwb_state = LWB_STATE_WRITE_DONE; 1556*315ee00fSMartin Matuska lwb->lwb_child_zio = NULL; 1557eda14cbcSMatt Macy lwb->lwb_write_zio = NULL; 1558eda14cbcSMatt Macy nlwb = list_next(&zilog->zl_lwb_list, lwb); 1559eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 1560eda14cbcSMatt Macy 1561eda14cbcSMatt Macy if (avl_numnodes(t) == 0) 1562eda14cbcSMatt Macy return; 1563eda14cbcSMatt Macy 1564eda14cbcSMatt Macy /* 1565eda14cbcSMatt Macy * If there was an IO error, we're not going to call zio_flush() 1566eda14cbcSMatt Macy * on these vdevs, so we simply empty the tree and free the 1567eda14cbcSMatt Macy * nodes. We avoid calling zio_flush() since there isn't any 1568eda14cbcSMatt Macy * good reason for doing so, after the lwb block failed to be 1569eda14cbcSMatt Macy * written out. 157053b70c86SMartin Matuska * 157153b70c86SMartin Matuska * Additionally, we don't perform any further error handling at 157253b70c86SMartin Matuska * this point (e.g. setting "zcw_zio_error" appropriately), as 157353b70c86SMartin Matuska * we expect that to occur in "zil_lwb_flush_vdevs_done" (thus, 157453b70c86SMartin Matuska * we expect any error seen here, to have been propagated to 157553b70c86SMartin Matuska * that function). 1576eda14cbcSMatt Macy */ 1577eda14cbcSMatt Macy if (zio->io_error != 0) { 1578eda14cbcSMatt Macy while ((zv = avl_destroy_nodes(t, &cookie)) != NULL) 1579eda14cbcSMatt Macy kmem_free(zv, sizeof (*zv)); 1580eda14cbcSMatt Macy return; 1581eda14cbcSMatt Macy } 1582eda14cbcSMatt Macy 1583eda14cbcSMatt Macy /* 1584eda14cbcSMatt Macy * If this lwb does not have any threads waiting for it to 1585eda14cbcSMatt Macy * complete, we want to defer issuing the DKIOCFLUSHWRITECACHE 1586eda14cbcSMatt Macy * command to the vdevs written to by "this" lwb, and instead 1587eda14cbcSMatt Macy * rely on the "next" lwb to handle the DKIOCFLUSHWRITECACHE 1588eda14cbcSMatt Macy * command for those vdevs. Thus, we merge the vdev tree of 1589eda14cbcSMatt Macy * "this" lwb with the vdev tree of the "next" lwb in the list, 1590eda14cbcSMatt Macy * and assume the "next" lwb will handle flushing the vdevs (or 1591eda14cbcSMatt Macy * deferring the flush(s) again). 1592eda14cbcSMatt Macy * 1593eda14cbcSMatt Macy * This is a useful performance optimization, especially for 1594eda14cbcSMatt Macy * workloads with lots of async write activity and few sync 1595eda14cbcSMatt Macy * write and/or fsync activity, as it has the potential to 1596eda14cbcSMatt Macy * coalesce multiple flush commands to a vdev into one. 1597eda14cbcSMatt Macy */ 1598c0a83fe0SMartin Matuska if (list_is_empty(&lwb->lwb_waiters) && nlwb != NULL) { 1599eda14cbcSMatt Macy zil_lwb_flush_defer(lwb, nlwb); 1600eda14cbcSMatt Macy ASSERT(avl_is_empty(&lwb->lwb_vdev_tree)); 1601eda14cbcSMatt Macy return; 1602eda14cbcSMatt Macy } 1603eda14cbcSMatt Macy 1604eda14cbcSMatt Macy while ((zv = avl_destroy_nodes(t, &cookie)) != NULL) { 1605eda14cbcSMatt Macy vdev_t *vd = vdev_lookup_top(spa, zv->zv_vdev); 1606c0a83fe0SMartin Matuska if (vd != NULL && !vd->vdev_nowritecache) { 160753b70c86SMartin Matuska /* 160853b70c86SMartin Matuska * The "ZIO_FLAG_DONT_PROPAGATE" is currently 160953b70c86SMartin Matuska * always used within "zio_flush". This means, 161053b70c86SMartin Matuska * any errors when flushing the vdev(s), will 161153b70c86SMartin Matuska * (unfortunately) not be handled correctly, 161253b70c86SMartin Matuska * since these "zio_flush" errors will not be 161353b70c86SMartin Matuska * propagated up to "zil_lwb_flush_vdevs_done". 161453b70c86SMartin Matuska */ 1615eda14cbcSMatt Macy zio_flush(lwb->lwb_root_zio, vd); 161653b70c86SMartin Matuska } 1617eda14cbcSMatt Macy kmem_free(zv, sizeof (*zv)); 1618eda14cbcSMatt Macy } 1619eda14cbcSMatt Macy } 1620eda14cbcSMatt Macy 1621*315ee00fSMartin Matuska /* 1622*315ee00fSMartin Matuska * Build the zio dependency chain, which is used to preserve the ordering of 1623*315ee00fSMartin Matuska * lwb completions that is required by the semantics of the ZIL. Each new lwb 1624*315ee00fSMartin Matuska * zio becomes a parent of the previous lwb zio, such that the new lwb's zio 1625*315ee00fSMartin Matuska * cannot complete until the previous lwb's zio completes. 1626*315ee00fSMartin Matuska * 1627*315ee00fSMartin Matuska * This is required by the semantics of zil_commit(): the commit waiters 1628*315ee00fSMartin Matuska * attached to the lwbs will be woken in the lwb zio's completion callback, 1629*315ee00fSMartin Matuska * so this zio dependency graph ensures the waiters are woken in the correct 1630*315ee00fSMartin Matuska * order (the same order the lwbs were created). 1631*315ee00fSMartin Matuska */ 1632eda14cbcSMatt Macy static void 1633eda14cbcSMatt Macy zil_lwb_set_zio_dependency(zilog_t *zilog, lwb_t *lwb) 1634eda14cbcSMatt Macy { 1635eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zilog->zl_lock)); 1636eda14cbcSMatt Macy 1637*315ee00fSMartin Matuska lwb_t *prev_lwb = list_prev(&zilog->zl_lwb_list, lwb); 1638*315ee00fSMartin Matuska if (prev_lwb == NULL || 1639*315ee00fSMartin Matuska prev_lwb->lwb_state == LWB_STATE_FLUSH_DONE) 1640*315ee00fSMartin Matuska return; 1641eda14cbcSMatt Macy 1642eda14cbcSMatt Macy /* 1643*315ee00fSMartin Matuska * If the previous lwb's write hasn't already completed, we also want 1644*315ee00fSMartin Matuska * to order the completion of the lwb write zios (above, we only order 1645*315ee00fSMartin Matuska * the completion of the lwb root zios). This is required because of 1646*315ee00fSMartin Matuska * how we can defer the DKIOCFLUSHWRITECACHE commands for each lwb. 1647eda14cbcSMatt Macy * 1648*315ee00fSMartin Matuska * When the DKIOCFLUSHWRITECACHE commands are deferred, the previous 1649*315ee00fSMartin Matuska * lwb will rely on this lwb to flush the vdevs written to by that 1650*315ee00fSMartin Matuska * previous lwb. Thus, we need to ensure this lwb doesn't issue the 1651*315ee00fSMartin Matuska * flush until after the previous lwb's write completes. We ensure 1652*315ee00fSMartin Matuska * this ordering by setting the zio parent/child relationship here. 1653eda14cbcSMatt Macy * 1654*315ee00fSMartin Matuska * Without this relationship on the lwb's write zio, it's possible 1655*315ee00fSMartin Matuska * for this lwb's write to complete prior to the previous lwb's write 1656*315ee00fSMartin Matuska * completing; and thus, the vdevs for the previous lwb would be 1657*315ee00fSMartin Matuska * flushed prior to that lwb's data being written to those vdevs (the 1658*315ee00fSMartin Matuska * vdevs are flushed in the lwb write zio's completion handler, 1659*315ee00fSMartin Matuska * zil_lwb_write_done()). 1660eda14cbcSMatt Macy */ 1661*315ee00fSMartin Matuska if (prev_lwb->lwb_state == LWB_STATE_ISSUED) { 1662*315ee00fSMartin Matuska ASSERT3P(prev_lwb->lwb_write_zio, !=, NULL); 1663*315ee00fSMartin Matuska zio_add_child(lwb->lwb_write_zio, prev_lwb->lwb_write_zio); 1664*315ee00fSMartin Matuska } else { 1665*315ee00fSMartin Matuska ASSERT3S(prev_lwb->lwb_state, ==, LWB_STATE_WRITE_DONE); 1666*315ee00fSMartin Matuska } 1667eda14cbcSMatt Macy 1668*315ee00fSMartin Matuska ASSERT3P(prev_lwb->lwb_root_zio, !=, NULL); 1669*315ee00fSMartin Matuska zio_add_child(lwb->lwb_root_zio, prev_lwb->lwb_root_zio); 1670eda14cbcSMatt Macy } 1671eda14cbcSMatt Macy 1672eda14cbcSMatt Macy 1673eda14cbcSMatt Macy /* 1674eda14cbcSMatt Macy * This function's purpose is to "open" an lwb such that it is ready to 1675*315ee00fSMartin Matuska * accept new itxs being committed to it. This function is idempotent; if 1676*315ee00fSMartin Matuska * the passed in lwb has already been opened, it is essentially a no-op. 1677eda14cbcSMatt Macy */ 1678eda14cbcSMatt Macy static void 1679eda14cbcSMatt Macy zil_lwb_write_open(zilog_t *zilog, lwb_t *lwb) 1680eda14cbcSMatt Macy { 1681eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock)); 1682eda14cbcSMatt Macy 1683*315ee00fSMartin Matuska if (lwb->lwb_state != LWB_STATE_NEW) { 1684*315ee00fSMartin Matuska ASSERT3S(lwb->lwb_state, ==, LWB_STATE_OPENED); 16854e8d558cSMartin Matuska return; 16864e8d558cSMartin Matuska } 16874e8d558cSMartin Matuska 1688*315ee00fSMartin Matuska mutex_enter(&zilog->zl_lock); 1689eda14cbcSMatt Macy lwb->lwb_state = LWB_STATE_OPENED; 1690eda14cbcSMatt Macy zilog->zl_last_lwb_opened = lwb; 1691eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 1692eda14cbcSMatt Macy } 1693eda14cbcSMatt Macy 1694eda14cbcSMatt Macy /* 1695eda14cbcSMatt Macy * Define a limited set of intent log block sizes. 1696eda14cbcSMatt Macy * 1697eda14cbcSMatt Macy * These must be a multiple of 4KB. Note only the amount used (again 1698eda14cbcSMatt Macy * aligned to 4KB) actually gets written. However, we can't always just 1699eda14cbcSMatt Macy * allocate SPA_OLD_MAXBLOCKSIZE as the slog space could be exhausted. 1700eda14cbcSMatt Macy */ 1701e92ffd9bSMartin Matuska static const struct { 1702eda14cbcSMatt Macy uint64_t limit; 1703eda14cbcSMatt Macy uint64_t blksz; 1704eda14cbcSMatt Macy } zil_block_buckets[] = { 1705eda14cbcSMatt Macy { 4096, 4096 }, /* non TX_WRITE */ 1706eda14cbcSMatt Macy { 8192 + 4096, 8192 + 4096 }, /* database */ 1707eda14cbcSMatt Macy { 32768 + 4096, 32768 + 4096 }, /* NFS writes */ 1708eda14cbcSMatt Macy { 65536 + 4096, 65536 + 4096 }, /* 64KB writes */ 1709eda14cbcSMatt Macy { 131072, 131072 }, /* < 128KB writes */ 1710eda14cbcSMatt Macy { 131072 +4096, 65536 + 4096 }, /* 128KB writes */ 1711eda14cbcSMatt Macy { UINT64_MAX, SPA_OLD_MAXBLOCKSIZE}, /* > 128KB writes */ 1712eda14cbcSMatt Macy }; 1713eda14cbcSMatt Macy 1714eda14cbcSMatt Macy /* 1715eda14cbcSMatt Macy * Maximum block size used by the ZIL. This is picked up when the ZIL is 1716eda14cbcSMatt Macy * initialized. Otherwise this should not be used directly; see 1717eda14cbcSMatt Macy * zl_max_block_size instead. 1718eda14cbcSMatt Macy */ 1719be181ee2SMartin Matuska static uint_t zil_maxblocksize = SPA_OLD_MAXBLOCKSIZE; 1720eda14cbcSMatt Macy 1721eda14cbcSMatt Macy /* 17224e8d558cSMartin Matuska * Close the log block for being issued and allocate the next one. 17234e8d558cSMartin Matuska * Has to be called under zl_issuer_lock to chain more lwbs. 1724eda14cbcSMatt Macy */ 1725eda14cbcSMatt Macy static lwb_t * 1726*315ee00fSMartin Matuska zil_lwb_write_close(zilog_t *zilog, lwb_t *lwb, lwb_state_t state) 1727eda14cbcSMatt Macy { 1728*315ee00fSMartin Matuska int i; 1729eda14cbcSMatt Macy 1730eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock)); 1731eda14cbcSMatt Macy ASSERT3S(lwb->lwb_state, ==, LWB_STATE_OPENED); 1732*315ee00fSMartin Matuska lwb->lwb_state = LWB_STATE_CLOSED; 1733eda14cbcSMatt Macy 17344e8d558cSMartin Matuska /* 1735*315ee00fSMartin Matuska * If there was an allocation failure then returned NULL will trigger 1736*315ee00fSMartin Matuska * zil_commit_writer_stall() at the caller. This is inherently racy, 1737*315ee00fSMartin Matuska * since allocation may not have happened yet. 17384e8d558cSMartin Matuska */ 1739*315ee00fSMartin Matuska if (lwb->lwb_error != 0) 1740*315ee00fSMartin Matuska return (NULL); 1741eda14cbcSMatt Macy 1742eda14cbcSMatt Macy /* 1743eda14cbcSMatt Macy * Log blocks are pre-allocated. Here we select the size of the next 1744eda14cbcSMatt Macy * block, based on size used in the last block. 1745eda14cbcSMatt Macy * - first find the smallest bucket that will fit the block from a 1746eda14cbcSMatt Macy * limited set of block sizes. This is because it's faster to write 1747eda14cbcSMatt Macy * blocks allocated from the same metaslab as they are adjacent or 1748eda14cbcSMatt Macy * close. 1749eda14cbcSMatt Macy * - next find the maximum from the new suggested size and an array of 1750eda14cbcSMatt Macy * previous sizes. This lessens a picket fence effect of wrongly 1751eda14cbcSMatt Macy * guessing the size if we have a stream of say 2k, 64k, 2k, 64k 1752eda14cbcSMatt Macy * requests. 1753eda14cbcSMatt Macy * 1754eda14cbcSMatt Macy * Note we only write what is used, but we can't just allocate 1755eda14cbcSMatt Macy * the maximum block size because we can exhaust the available 1756eda14cbcSMatt Macy * pool log space. 1757eda14cbcSMatt Macy */ 1758*315ee00fSMartin Matuska uint64_t zil_blksz = zilog->zl_cur_used + sizeof (zil_chain_t); 1759eda14cbcSMatt Macy for (i = 0; zil_blksz > zil_block_buckets[i].limit; i++) 1760eda14cbcSMatt Macy continue; 1761eda14cbcSMatt Macy zil_blksz = MIN(zil_block_buckets[i].blksz, zilog->zl_max_block_size); 1762eda14cbcSMatt Macy zilog->zl_prev_blks[zilog->zl_prev_rotor] = zil_blksz; 1763eda14cbcSMatt Macy for (i = 0; i < ZIL_PREV_BLKS; i++) 1764eda14cbcSMatt Macy zil_blksz = MAX(zil_blksz, zilog->zl_prev_blks[i]); 17654e8d558cSMartin Matuska DTRACE_PROBE3(zil__block__size, zilog_t *, zilog, 17664e8d558cSMartin Matuska uint64_t, zil_blksz, 17674e8d558cSMartin Matuska uint64_t, zilog->zl_prev_blks[zilog->zl_prev_rotor]); 1768eda14cbcSMatt Macy zilog->zl_prev_rotor = (zilog->zl_prev_rotor + 1) & (ZIL_PREV_BLKS - 1); 1769eda14cbcSMatt Macy 1770*315ee00fSMartin Matuska return (zil_alloc_lwb(zilog, zil_blksz, NULL, 0, 0, state)); 17714e8d558cSMartin Matuska } 17724e8d558cSMartin Matuska 17734e8d558cSMartin Matuska /* 17744e8d558cSMartin Matuska * Finalize previously closed block and issue the write zio. 17754e8d558cSMartin Matuska */ 17764e8d558cSMartin Matuska static void 17774e8d558cSMartin Matuska zil_lwb_write_issue(zilog_t *zilog, lwb_t *lwb) 17784e8d558cSMartin Matuska { 1779*315ee00fSMartin Matuska spa_t *spa = zilog->zl_spa; 17804e8d558cSMartin Matuska zil_chain_t *zilc; 1781*315ee00fSMartin Matuska boolean_t slog; 1782*315ee00fSMartin Matuska zbookmark_phys_t zb; 1783*315ee00fSMartin Matuska zio_priority_t prio; 1784*315ee00fSMartin Matuska int error; 17854e8d558cSMartin Matuska 1786*315ee00fSMartin Matuska ASSERT3S(lwb->lwb_state, ==, LWB_STATE_CLOSED); 1787*315ee00fSMartin Matuska 1788*315ee00fSMartin Matuska /* Actually fill the lwb with the data. */ 17894e8d558cSMartin Matuska for (itx_t *itx = list_head(&lwb->lwb_itxs); itx; 17904e8d558cSMartin Matuska itx = list_next(&lwb->lwb_itxs, itx)) 17914e8d558cSMartin Matuska zil_lwb_commit(zilog, lwb, itx); 17924e8d558cSMartin Matuska lwb->lwb_nused = lwb->lwb_nfilled; 17934e8d558cSMartin Matuska 1794*315ee00fSMartin Matuska lwb->lwb_root_zio = zio_root(spa, zil_lwb_flush_vdevs_done, lwb, 1795*315ee00fSMartin Matuska ZIO_FLAG_CANFAIL); 1796*315ee00fSMartin Matuska 1797*315ee00fSMartin Matuska /* 1798*315ee00fSMartin Matuska * The lwb is now ready to be issued, but it can be only if it already 1799*315ee00fSMartin Matuska * got its block pointer allocated or the allocation has failed. 1800*315ee00fSMartin Matuska * Otherwise leave it as-is, relying on some other thread to issue it 1801*315ee00fSMartin Matuska * after allocating its block pointer via calling zil_lwb_write_issue() 1802*315ee00fSMartin Matuska * for the previous lwb(s) in the chain. 1803*315ee00fSMartin Matuska */ 1804*315ee00fSMartin Matuska mutex_enter(&zilog->zl_lock); 1805*315ee00fSMartin Matuska lwb->lwb_state = LWB_STATE_READY; 1806*315ee00fSMartin Matuska if (BP_IS_HOLE(&lwb->lwb_blk) && lwb->lwb_error == 0) { 1807*315ee00fSMartin Matuska mutex_exit(&zilog->zl_lock); 1808*315ee00fSMartin Matuska return; 1809*315ee00fSMartin Matuska } 1810*315ee00fSMartin Matuska mutex_exit(&zilog->zl_lock); 1811*315ee00fSMartin Matuska 1812*315ee00fSMartin Matuska next_lwb: 1813*315ee00fSMartin Matuska if (lwb->lwb_slim) 1814*315ee00fSMartin Matuska zilc = (zil_chain_t *)lwb->lwb_buf; 1815*315ee00fSMartin Matuska else 1816*315ee00fSMartin Matuska zilc = (zil_chain_t *)(lwb->lwb_buf + lwb->lwb_nmax); 1817*315ee00fSMartin Matuska int wsz = lwb->lwb_sz; 1818*315ee00fSMartin Matuska if (lwb->lwb_error == 0) { 1819*315ee00fSMartin Matuska abd_t *lwb_abd = abd_get_from_buf(lwb->lwb_buf, lwb->lwb_sz); 1820*315ee00fSMartin Matuska if (!lwb->lwb_slog || zilog->zl_cur_used <= zil_slog_bulk) 1821*315ee00fSMartin Matuska prio = ZIO_PRIORITY_SYNC_WRITE; 1822*315ee00fSMartin Matuska else 1823*315ee00fSMartin Matuska prio = ZIO_PRIORITY_ASYNC_WRITE; 1824*315ee00fSMartin Matuska SET_BOOKMARK(&zb, lwb->lwb_blk.blk_cksum.zc_word[ZIL_ZC_OBJSET], 1825*315ee00fSMartin Matuska ZB_ZIL_OBJECT, ZB_ZIL_LEVEL, 1826*315ee00fSMartin Matuska lwb->lwb_blk.blk_cksum.zc_word[ZIL_ZC_SEQ]); 1827*315ee00fSMartin Matuska lwb->lwb_write_zio = zio_rewrite(lwb->lwb_root_zio, spa, 0, 1828*315ee00fSMartin Matuska &lwb->lwb_blk, lwb_abd, lwb->lwb_sz, zil_lwb_write_done, 1829*315ee00fSMartin Matuska lwb, prio, ZIO_FLAG_CANFAIL, &zb); 1830*315ee00fSMartin Matuska zil_lwb_add_block(lwb, &lwb->lwb_blk); 1831*315ee00fSMartin Matuska 1832*315ee00fSMartin Matuska if (lwb->lwb_slim) { 1833eda14cbcSMatt Macy /* For Slim ZIL only write what is used. */ 1834*315ee00fSMartin Matuska wsz = P2ROUNDUP_TYPED(lwb->lwb_nused, ZIL_MIN_BLKSZ, 1835*315ee00fSMartin Matuska int); 18364e8d558cSMartin Matuska ASSERT3S(wsz, <=, lwb->lwb_sz); 1837eda14cbcSMatt Macy zio_shrink(lwb->lwb_write_zio, wsz); 1838e639e0d2SMartin Matuska wsz = lwb->lwb_write_zio->io_size; 1839eda14cbcSMatt Macy } 1840*315ee00fSMartin Matuska memset(lwb->lwb_buf + lwb->lwb_nused, 0, wsz - lwb->lwb_nused); 1841eda14cbcSMatt Macy zilc->zc_pad = 0; 1842eda14cbcSMatt Macy zilc->zc_nused = lwb->lwb_nused; 1843eda14cbcSMatt Macy zilc->zc_eck.zec_cksum = lwb->lwb_blk.blk_cksum; 1844*315ee00fSMartin Matuska } else { 1845*315ee00fSMartin Matuska /* 1846*315ee00fSMartin Matuska * We can't write the lwb if there was an allocation failure, 1847*315ee00fSMartin Matuska * so create a null zio instead just to maintain dependencies. 1848*315ee00fSMartin Matuska */ 1849*315ee00fSMartin Matuska lwb->lwb_write_zio = zio_null(lwb->lwb_root_zio, spa, NULL, 1850*315ee00fSMartin Matuska zil_lwb_write_done, lwb, ZIO_FLAG_CANFAIL); 1851*315ee00fSMartin Matuska lwb->lwb_write_zio->io_error = lwb->lwb_error; 1852*315ee00fSMartin Matuska } 1853*315ee00fSMartin Matuska if (lwb->lwb_child_zio) 1854*315ee00fSMartin Matuska zio_add_child(lwb->lwb_write_zio, lwb->lwb_child_zio); 1855eda14cbcSMatt Macy 1856eda14cbcSMatt Macy /* 1857*315ee00fSMartin Matuska * Open transaction to allocate the next block pointer. 1858eda14cbcSMatt Macy */ 1859*315ee00fSMartin Matuska dmu_tx_t *tx = dmu_tx_create(zilog->zl_os); 1860*315ee00fSMartin Matuska VERIFY0(dmu_tx_assign(tx, TXG_WAIT | TXG_NOTHROTTLE)); 1861*315ee00fSMartin Matuska dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 1862*315ee00fSMartin Matuska uint64_t txg = dmu_tx_get_txg(tx); 1863*315ee00fSMartin Matuska 1864*315ee00fSMartin Matuska /* 1865*315ee00fSMartin Matuska * Allocate next the block pointer unless we are already in error. 1866*315ee00fSMartin Matuska */ 1867*315ee00fSMartin Matuska lwb_t *nlwb = list_next(&zilog->zl_lwb_list, lwb); 1868*315ee00fSMartin Matuska blkptr_t *bp = &zilc->zc_next_blk; 1869*315ee00fSMartin Matuska BP_ZERO(bp); 1870*315ee00fSMartin Matuska error = lwb->lwb_error; 1871*315ee00fSMartin Matuska if (error == 0) { 1872*315ee00fSMartin Matuska error = zio_alloc_zil(spa, zilog->zl_os, txg, bp, nlwb->lwb_sz, 1873*315ee00fSMartin Matuska &slog); 1874*315ee00fSMartin Matuska } 1875*315ee00fSMartin Matuska if (error == 0) { 1876*315ee00fSMartin Matuska ASSERT3U(bp->blk_birth, ==, txg); 1877*315ee00fSMartin Matuska BP_SET_CHECKSUM(bp, nlwb->lwb_slim ? ZIO_CHECKSUM_ZILOG2 : 1878*315ee00fSMartin Matuska ZIO_CHECKSUM_ZILOG); 1879*315ee00fSMartin Matuska bp->blk_cksum = lwb->lwb_blk.blk_cksum; 1880*315ee00fSMartin Matuska bp->blk_cksum.zc_word[ZIL_ZC_SEQ]++; 1881*315ee00fSMartin Matuska } 1882*315ee00fSMartin Matuska 1883*315ee00fSMartin Matuska /* 1884*315ee00fSMartin Matuska * Reduce TXG open time by incrementing inflight counter and committing 1885*315ee00fSMartin Matuska * the transaciton. zil_sync() will wait for it to return to zero. 1886*315ee00fSMartin Matuska */ 1887*315ee00fSMartin Matuska mutex_enter(&zilog->zl_lwb_io_lock); 1888*315ee00fSMartin Matuska lwb->lwb_issued_txg = txg; 1889*315ee00fSMartin Matuska zilog->zl_lwb_inflight[txg & TXG_MASK]++; 1890*315ee00fSMartin Matuska zilog->zl_lwb_max_issued_txg = MAX(txg, zilog->zl_lwb_max_issued_txg); 1891*315ee00fSMartin Matuska mutex_exit(&zilog->zl_lwb_io_lock); 1892*315ee00fSMartin Matuska dmu_tx_commit(tx); 1893*315ee00fSMartin Matuska 1894*315ee00fSMartin Matuska spa_config_enter(spa, SCL_STATE, lwb, RW_READER); 1895*315ee00fSMartin Matuska 1896*315ee00fSMartin Matuska /* 1897*315ee00fSMartin Matuska * We've completed all potentially blocking operations. Update the 1898*315ee00fSMartin Matuska * nlwb and allow it proceed without possible lock order reversals. 1899*315ee00fSMartin Matuska */ 1900*315ee00fSMartin Matuska mutex_enter(&zilog->zl_lock); 1901*315ee00fSMartin Matuska zil_lwb_set_zio_dependency(zilog, lwb); 1902*315ee00fSMartin Matuska lwb->lwb_state = LWB_STATE_ISSUED; 1903*315ee00fSMartin Matuska 1904*315ee00fSMartin Matuska if (nlwb) { 1905*315ee00fSMartin Matuska nlwb->lwb_blk = *bp; 1906*315ee00fSMartin Matuska nlwb->lwb_error = error; 1907*315ee00fSMartin Matuska nlwb->lwb_slog = slog; 1908*315ee00fSMartin Matuska nlwb->lwb_alloc_txg = txg; 1909*315ee00fSMartin Matuska if (nlwb->lwb_state != LWB_STATE_READY) 1910*315ee00fSMartin Matuska nlwb = NULL; 1911*315ee00fSMartin Matuska } 1912*315ee00fSMartin Matuska mutex_exit(&zilog->zl_lock); 1913eda14cbcSMatt Macy 19144e8d558cSMartin Matuska if (lwb->lwb_slog) { 19154e8d558cSMartin Matuska ZIL_STAT_BUMP(zilog, zil_itx_metaslab_slog_count); 19164e8d558cSMartin Matuska ZIL_STAT_INCR(zilog, zil_itx_metaslab_slog_bytes, 19174e8d558cSMartin Matuska lwb->lwb_nused); 19184e8d558cSMartin Matuska ZIL_STAT_INCR(zilog, zil_itx_metaslab_slog_write, 19194e8d558cSMartin Matuska wsz); 19204e8d558cSMartin Matuska ZIL_STAT_INCR(zilog, zil_itx_metaslab_slog_alloc, 19214e8d558cSMartin Matuska BP_GET_LSIZE(&lwb->lwb_blk)); 19224e8d558cSMartin Matuska } else { 19234e8d558cSMartin Matuska ZIL_STAT_BUMP(zilog, zil_itx_metaslab_normal_count); 19244e8d558cSMartin Matuska ZIL_STAT_INCR(zilog, zil_itx_metaslab_normal_bytes, 19254e8d558cSMartin Matuska lwb->lwb_nused); 19264e8d558cSMartin Matuska ZIL_STAT_INCR(zilog, zil_itx_metaslab_normal_write, 19274e8d558cSMartin Matuska wsz); 19284e8d558cSMartin Matuska ZIL_STAT_INCR(zilog, zil_itx_metaslab_normal_alloc, 19294e8d558cSMartin Matuska BP_GET_LSIZE(&lwb->lwb_blk)); 19304e8d558cSMartin Matuska } 1931eda14cbcSMatt Macy lwb->lwb_issued_timestamp = gethrtime(); 1932eda14cbcSMatt Macy zio_nowait(lwb->lwb_root_zio); 1933eda14cbcSMatt Macy zio_nowait(lwb->lwb_write_zio); 1934*315ee00fSMartin Matuska if (lwb->lwb_child_zio) 1935*315ee00fSMartin Matuska zio_nowait(lwb->lwb_child_zio); 1936*315ee00fSMartin Matuska 1937*315ee00fSMartin Matuska /* 1938*315ee00fSMartin Matuska * If nlwb was ready when we gave it the block pointer, 1939*315ee00fSMartin Matuska * it is on us to issue it and possibly following ones. 1940*315ee00fSMartin Matuska */ 1941*315ee00fSMartin Matuska lwb = nlwb; 1942*315ee00fSMartin Matuska if (lwb) 1943*315ee00fSMartin Matuska goto next_lwb; 1944eda14cbcSMatt Macy } 1945eda14cbcSMatt Macy 1946eda14cbcSMatt Macy /* 19472a58b312SMartin Matuska * Maximum amount of data that can be put into single log block. 1948eda14cbcSMatt Macy */ 1949eda14cbcSMatt Macy uint64_t 19502a58b312SMartin Matuska zil_max_log_data(zilog_t *zilog, size_t hdrsize) 1951eda14cbcSMatt Macy { 19522a58b312SMartin Matuska return (zilog->zl_max_block_size - sizeof (zil_chain_t) - hdrsize); 1953eda14cbcSMatt Macy } 1954eda14cbcSMatt Macy 1955eda14cbcSMatt Macy /* 1956eda14cbcSMatt Macy * Maximum amount of log space we agree to waste to reduce number of 1957eda14cbcSMatt Macy * WR_NEED_COPY chunks to reduce zl_get_data() overhead (~12%). 1958eda14cbcSMatt Macy */ 1959eda14cbcSMatt Macy static inline uint64_t 1960eda14cbcSMatt Macy zil_max_waste_space(zilog_t *zilog) 1961eda14cbcSMatt Macy { 19622a58b312SMartin Matuska return (zil_max_log_data(zilog, sizeof (lr_write_t)) / 8); 1963eda14cbcSMatt Macy } 1964eda14cbcSMatt Macy 1965eda14cbcSMatt Macy /* 1966eda14cbcSMatt Macy * Maximum amount of write data for WR_COPIED. For correctness, consumers 1967eda14cbcSMatt Macy * must fall back to WR_NEED_COPY if we can't fit the entire record into one 1968eda14cbcSMatt Macy * maximum sized log block, because each WR_COPIED record must fit in a 1969eda14cbcSMatt Macy * single log block. For space efficiency, we want to fit two records into a 1970eda14cbcSMatt Macy * max-sized log block. 1971eda14cbcSMatt Macy */ 1972eda14cbcSMatt Macy uint64_t 1973eda14cbcSMatt Macy zil_max_copied_data(zilog_t *zilog) 1974eda14cbcSMatt Macy { 1975eda14cbcSMatt Macy return ((zilog->zl_max_block_size - sizeof (zil_chain_t)) / 2 - 1976eda14cbcSMatt Macy sizeof (lr_write_t)); 1977eda14cbcSMatt Macy } 1978eda14cbcSMatt Macy 19794e8d558cSMartin Matuska /* 19804e8d558cSMartin Matuska * Estimate space needed in the lwb for the itx. Allocate more lwbs or 19814e8d558cSMartin Matuska * split the itx as needed, but don't touch the actual transaction data. 19824e8d558cSMartin Matuska * Has to be called under zl_issuer_lock to call zil_lwb_write_close() 19834e8d558cSMartin Matuska * to chain more lwbs. 19844e8d558cSMartin Matuska */ 1985eda14cbcSMatt Macy static lwb_t * 19864e8d558cSMartin Matuska zil_lwb_assign(zilog_t *zilog, lwb_t *lwb, itx_t *itx, list_t *ilwbs) 1987eda14cbcSMatt Macy { 19884e8d558cSMartin Matuska itx_t *citx; 19894e8d558cSMartin Matuska lr_t *lr, *clr; 19904e8d558cSMartin Matuska lr_write_t *lrw; 19914e8d558cSMartin Matuska uint64_t dlen, dnow, lwb_sp, reclen, max_log_data; 1992eda14cbcSMatt Macy 1993eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock)); 1994eda14cbcSMatt Macy ASSERT3P(lwb, !=, NULL); 1995eda14cbcSMatt Macy ASSERT3P(lwb->lwb_buf, !=, NULL); 1996eda14cbcSMatt Macy 1997eda14cbcSMatt Macy zil_lwb_write_open(zilog, lwb); 1998eda14cbcSMatt Macy 19994e8d558cSMartin Matuska lr = &itx->itx_lr; 20004e8d558cSMartin Matuska lrw = (lr_write_t *)lr; 2001eda14cbcSMatt Macy 2002eda14cbcSMatt Macy /* 2003eda14cbcSMatt Macy * A commit itx doesn't represent any on-disk state; instead 2004eda14cbcSMatt Macy * it's simply used as a place holder on the commit list, and 2005eda14cbcSMatt Macy * provides a mechanism for attaching a "commit waiter" onto the 2006eda14cbcSMatt Macy * correct lwb (such that the waiter can be signalled upon 2007eda14cbcSMatt Macy * completion of that lwb). Thus, we don't process this itx's 2008eda14cbcSMatt Macy * log record if it's a commit itx (these itx's don't have log 2009eda14cbcSMatt Macy * records), and instead link the itx's waiter onto the lwb's 2010eda14cbcSMatt Macy * list of waiters. 2011eda14cbcSMatt Macy * 2012eda14cbcSMatt Macy * For more details, see the comment above zil_commit(). 2013eda14cbcSMatt Macy */ 20144e8d558cSMartin Matuska if (lr->lrc_txtype == TX_COMMIT) { 2015eda14cbcSMatt Macy zil_commit_waiter_link_lwb(itx->itx_private, lwb); 20164e8d558cSMartin Matuska list_insert_tail(&lwb->lwb_itxs, itx); 2017eda14cbcSMatt Macy return (lwb); 2018eda14cbcSMatt Macy } 2019eda14cbcSMatt Macy 20204e8d558cSMartin Matuska if (lr->lrc_txtype == TX_WRITE && itx->itx_wr_state == WR_NEED_COPY) { 2021eda14cbcSMatt Macy dlen = P2ROUNDUP_TYPED( 2022eda14cbcSMatt Macy lrw->lr_length, sizeof (uint64_t), uint64_t); 2023eda14cbcSMatt Macy } else { 20244e8d558cSMartin Matuska dlen = 0; 2025eda14cbcSMatt Macy } 20264e8d558cSMartin Matuska reclen = lr->lrc_reclen; 2027eda14cbcSMatt Macy zilog->zl_cur_used += (reclen + dlen); 2028eda14cbcSMatt Macy 2029eda14cbcSMatt Macy cont: 2030eda14cbcSMatt Macy /* 2031eda14cbcSMatt Macy * If this record won't fit in the current log block, start a new one. 2032eda14cbcSMatt Macy * For WR_NEED_COPY optimize layout for minimal number of chunks. 2033eda14cbcSMatt Macy */ 2034*315ee00fSMartin Matuska lwb_sp = lwb->lwb_nmax - lwb->lwb_nused; 20352a58b312SMartin Matuska max_log_data = zil_max_log_data(zilog, sizeof (lr_write_t)); 2036eda14cbcSMatt Macy if (reclen > lwb_sp || (reclen + dlen > lwb_sp && 2037eda14cbcSMatt Macy lwb_sp < zil_max_waste_space(zilog) && 2038eda14cbcSMatt Macy (dlen % max_log_data == 0 || 2039eda14cbcSMatt Macy lwb_sp < reclen + dlen % max_log_data))) { 2040*315ee00fSMartin Matuska list_insert_tail(ilwbs, lwb); 2041*315ee00fSMartin Matuska lwb = zil_lwb_write_close(zilog, lwb, LWB_STATE_OPENED); 2042eda14cbcSMatt Macy if (lwb == NULL) 2043eda14cbcSMatt Macy return (NULL); 2044*315ee00fSMartin Matuska lwb_sp = lwb->lwb_nmax - lwb->lwb_nused; 2045eda14cbcSMatt Macy 2046eda14cbcSMatt Macy /* 2047eda14cbcSMatt Macy * There must be enough space in the new, empty log block to 2048eda14cbcSMatt Macy * hold reclen. For WR_COPIED, we need to fit the whole 2049eda14cbcSMatt Macy * record in one block, and reclen is the header size + the 2050eda14cbcSMatt Macy * data size. For WR_NEED_COPY, we can create multiple 2051eda14cbcSMatt Macy * records, splitting the data into multiple blocks, so we 2052eda14cbcSMatt Macy * only need to fit one word of data per block; in this case 2053eda14cbcSMatt Macy * reclen is just the header size (no data). 2054eda14cbcSMatt Macy */ 2055eda14cbcSMatt Macy ASSERT3U(reclen + MIN(dlen, sizeof (uint64_t)), <=, lwb_sp); 2056eda14cbcSMatt Macy } 2057eda14cbcSMatt Macy 2058eda14cbcSMatt Macy dnow = MIN(dlen, lwb_sp - reclen); 20594e8d558cSMartin Matuska if (dlen > dnow) { 20604e8d558cSMartin Matuska ASSERT3U(lr->lrc_txtype, ==, TX_WRITE); 20614e8d558cSMartin Matuska ASSERT3U(itx->itx_wr_state, ==, WR_NEED_COPY); 20624e8d558cSMartin Matuska citx = zil_itx_clone(itx); 20634e8d558cSMartin Matuska clr = &citx->itx_lr; 20644e8d558cSMartin Matuska lr_write_t *clrw = (lr_write_t *)clr; 20654e8d558cSMartin Matuska clrw->lr_length = dnow; 20664e8d558cSMartin Matuska lrw->lr_offset += dnow; 20674e8d558cSMartin Matuska lrw->lr_length -= dnow; 20684e8d558cSMartin Matuska } else { 20694e8d558cSMartin Matuska citx = itx; 20704e8d558cSMartin Matuska clr = lr; 20714e8d558cSMartin Matuska } 20724e8d558cSMartin Matuska 20734e8d558cSMartin Matuska /* 20744e8d558cSMartin Matuska * We're actually making an entry, so update lrc_seq to be the 20754e8d558cSMartin Matuska * log record sequence number. Note that this is generally not 20764e8d558cSMartin Matuska * equal to the itx sequence number because not all transactions 20774e8d558cSMartin Matuska * are synchronous, and sometimes spa_sync() gets there first. 20784e8d558cSMartin Matuska */ 20794e8d558cSMartin Matuska clr->lrc_seq = ++zilog->zl_lr_seq; 20804e8d558cSMartin Matuska 20814e8d558cSMartin Matuska lwb->lwb_nused += reclen + dnow; 2082*315ee00fSMartin Matuska ASSERT3U(lwb->lwb_nused, <=, lwb->lwb_nmax); 20834e8d558cSMartin Matuska ASSERT0(P2PHASE(lwb->lwb_nused, sizeof (uint64_t))); 20844e8d558cSMartin Matuska 20854e8d558cSMartin Matuska zil_lwb_add_txg(lwb, lr->lrc_txg); 20864e8d558cSMartin Matuska list_insert_tail(&lwb->lwb_itxs, citx); 20874e8d558cSMartin Matuska 20884e8d558cSMartin Matuska dlen -= dnow; 20894e8d558cSMartin Matuska if (dlen > 0) { 20904e8d558cSMartin Matuska zilog->zl_cur_used += reclen; 20914e8d558cSMartin Matuska goto cont; 20924e8d558cSMartin Matuska } 20934e8d558cSMartin Matuska 2094*315ee00fSMartin Matuska if (lr->lrc_txtype == TX_WRITE && 2095*315ee00fSMartin Matuska lr->lrc_txg > spa_freeze_txg(zilog->zl_spa)) 20964e8d558cSMartin Matuska txg_wait_synced(zilog->zl_dmu_pool, lr->lrc_txg); 20974e8d558cSMartin Matuska 20984e8d558cSMartin Matuska return (lwb); 20994e8d558cSMartin Matuska } 21004e8d558cSMartin Matuska 21014e8d558cSMartin Matuska /* 21024e8d558cSMartin Matuska * Fill the actual transaction data into the lwb, following zil_lwb_assign(). 21034e8d558cSMartin Matuska * Does not require locking. 21044e8d558cSMartin Matuska */ 21054e8d558cSMartin Matuska static void 21064e8d558cSMartin Matuska zil_lwb_commit(zilog_t *zilog, lwb_t *lwb, itx_t *itx) 21074e8d558cSMartin Matuska { 21084e8d558cSMartin Matuska lr_t *lr, *lrb; 21094e8d558cSMartin Matuska lr_write_t *lrw, *lrwb; 21104e8d558cSMartin Matuska char *lr_buf; 21114e8d558cSMartin Matuska uint64_t dlen, reclen; 21124e8d558cSMartin Matuska 21134e8d558cSMartin Matuska lr = &itx->itx_lr; 21144e8d558cSMartin Matuska lrw = (lr_write_t *)lr; 21154e8d558cSMartin Matuska 21164e8d558cSMartin Matuska if (lr->lrc_txtype == TX_COMMIT) 21174e8d558cSMartin Matuska return; 21184e8d558cSMartin Matuska 21194e8d558cSMartin Matuska if (lr->lrc_txtype == TX_WRITE && itx->itx_wr_state == WR_NEED_COPY) { 21204e8d558cSMartin Matuska dlen = P2ROUNDUP_TYPED( 21214e8d558cSMartin Matuska lrw->lr_length, sizeof (uint64_t), uint64_t); 21224e8d558cSMartin Matuska } else { 21234e8d558cSMartin Matuska dlen = 0; 21244e8d558cSMartin Matuska } 21254e8d558cSMartin Matuska reclen = lr->lrc_reclen; 21264e8d558cSMartin Matuska ASSERT3U(reclen + dlen, <=, lwb->lwb_nused - lwb->lwb_nfilled); 21274e8d558cSMartin Matuska 21284e8d558cSMartin Matuska lr_buf = lwb->lwb_buf + lwb->lwb_nfilled; 21294e8d558cSMartin Matuska memcpy(lr_buf, lr, reclen); 21304e8d558cSMartin Matuska lrb = (lr_t *)lr_buf; /* Like lr, but inside lwb. */ 21314e8d558cSMartin Matuska lrwb = (lr_write_t *)lrb; /* Like lrw, but inside lwb. */ 2132eda14cbcSMatt Macy 2133271171e0SMartin Matuska ZIL_STAT_BUMP(zilog, zil_itx_count); 2134eda14cbcSMatt Macy 2135eda14cbcSMatt Macy /* 2136eda14cbcSMatt Macy * If it's a write, fetch the data or get its blkptr as appropriate. 2137eda14cbcSMatt Macy */ 21384e8d558cSMartin Matuska if (lr->lrc_txtype == TX_WRITE) { 2139eda14cbcSMatt Macy if (itx->itx_wr_state == WR_COPIED) { 2140271171e0SMartin Matuska ZIL_STAT_BUMP(zilog, zil_itx_copied_count); 2141271171e0SMartin Matuska ZIL_STAT_INCR(zilog, zil_itx_copied_bytes, 2142271171e0SMartin Matuska lrw->lr_length); 2143eda14cbcSMatt Macy } else { 2144eda14cbcSMatt Macy char *dbuf; 2145eda14cbcSMatt Macy int error; 2146eda14cbcSMatt Macy 2147eda14cbcSMatt Macy if (itx->itx_wr_state == WR_NEED_COPY) { 2148eda14cbcSMatt Macy dbuf = lr_buf + reclen; 21494e8d558cSMartin Matuska lrb->lrc_reclen += dlen; 2150271171e0SMartin Matuska ZIL_STAT_BUMP(zilog, zil_itx_needcopy_count); 2151271171e0SMartin Matuska ZIL_STAT_INCR(zilog, zil_itx_needcopy_bytes, 21524e8d558cSMartin Matuska dlen); 2153eda14cbcSMatt Macy } else { 2154eda14cbcSMatt Macy ASSERT3S(itx->itx_wr_state, ==, WR_INDIRECT); 2155eda14cbcSMatt Macy dbuf = NULL; 2156271171e0SMartin Matuska ZIL_STAT_BUMP(zilog, zil_itx_indirect_count); 2157271171e0SMartin Matuska ZIL_STAT_INCR(zilog, zil_itx_indirect_bytes, 2158eda14cbcSMatt Macy lrw->lr_length); 2159*315ee00fSMartin Matuska if (lwb->lwb_child_zio == NULL) { 2160*315ee00fSMartin Matuska lwb->lwb_child_zio = zio_root( 2161*315ee00fSMartin Matuska zilog->zl_spa, NULL, NULL, 2162*315ee00fSMartin Matuska ZIO_FLAG_CANFAIL); 2163*315ee00fSMartin Matuska } 2164eda14cbcSMatt Macy } 2165eda14cbcSMatt Macy 2166eda14cbcSMatt Macy /* 2167*315ee00fSMartin Matuska * The "lwb_child_zio" we pass in will become a child of 2168*315ee00fSMartin Matuska * "lwb_write_zio", when one is created, so one will be 2169*315ee00fSMartin Matuska * a parent of any zio's created by the "zl_get_data". 2170*315ee00fSMartin Matuska * This way "lwb_write_zio" will first wait for children 2171*315ee00fSMartin Matuska * block pointers before own writing, and then for their 2172*315ee00fSMartin Matuska * writing completion before the vdev cache flushing. 2173eda14cbcSMatt Macy */ 2174eda14cbcSMatt Macy error = zilog->zl_get_data(itx->itx_private, 2175f9693befSMartin Matuska itx->itx_gen, lrwb, dbuf, lwb, 2176*315ee00fSMartin Matuska lwb->lwb_child_zio); 21774e8d558cSMartin Matuska if (dbuf != NULL && error == 0) { 21781f88aa09SMartin Matuska /* Zero any padding bytes in the last block. */ 21794e8d558cSMartin Matuska memset((char *)dbuf + lrwb->lr_length, 0, 21804e8d558cSMartin Matuska dlen - lrwb->lr_length); 21814e8d558cSMartin Matuska } 2182eda14cbcSMatt Macy 21832a58b312SMartin Matuska /* 21842a58b312SMartin Matuska * Typically, the only return values we should see from 21852a58b312SMartin Matuska * ->zl_get_data() are 0, EIO, ENOENT, EEXIST or 21862a58b312SMartin Matuska * EALREADY. However, it is also possible to see other 21872a58b312SMartin Matuska * error values such as ENOSPC or EINVAL from 21882a58b312SMartin Matuska * dmu_read() -> dnode_hold() -> dnode_hold_impl() or 21892a58b312SMartin Matuska * ENXIO as well as a multitude of others from the 21902a58b312SMartin Matuska * block layer through dmu_buf_hold() -> dbuf_read() 21912a58b312SMartin Matuska * -> zio_wait(), as well as through dmu_read() -> 21922a58b312SMartin Matuska * dnode_hold() -> dnode_hold_impl() -> dbuf_read() -> 21932a58b312SMartin Matuska * zio_wait(). When these errors happen, we can assume 21942a58b312SMartin Matuska * that neither an immediate write nor an indirect 21952a58b312SMartin Matuska * write occurred, so we need to fall back to 21962a58b312SMartin Matuska * txg_wait_synced(). This is unusual, so we print to 21972a58b312SMartin Matuska * dmesg whenever one of these errors occurs. 21982a58b312SMartin Matuska */ 21992a58b312SMartin Matuska switch (error) { 22002a58b312SMartin Matuska case 0: 22012a58b312SMartin Matuska break; 22022a58b312SMartin Matuska default: 22032a58b312SMartin Matuska cmn_err(CE_WARN, "zil_lwb_commit() received " 22042a58b312SMartin Matuska "unexpected error %d from ->zl_get_data()" 22052a58b312SMartin Matuska ". Falling back to txg_wait_synced().", 22062a58b312SMartin Matuska error); 22072a58b312SMartin Matuska zfs_fallthrough; 22082a58b312SMartin Matuska case EIO: 22094e8d558cSMartin Matuska txg_wait_synced(zilog->zl_dmu_pool, 22104e8d558cSMartin Matuska lr->lrc_txg); 22112a58b312SMartin Matuska zfs_fallthrough; 22122a58b312SMartin Matuska case ENOENT: 22132a58b312SMartin Matuska zfs_fallthrough; 22142a58b312SMartin Matuska case EEXIST: 22152a58b312SMartin Matuska zfs_fallthrough; 22162a58b312SMartin Matuska case EALREADY: 22174e8d558cSMartin Matuska return; 2218eda14cbcSMatt Macy } 2219eda14cbcSMatt Macy } 2220eda14cbcSMatt Macy } 2221eda14cbcSMatt Macy 22224e8d558cSMartin Matuska lwb->lwb_nfilled += reclen + dlen; 22234e8d558cSMartin Matuska ASSERT3S(lwb->lwb_nfilled, <=, lwb->lwb_nused); 22244e8d558cSMartin Matuska ASSERT0(P2PHASE(lwb->lwb_nfilled, sizeof (uint64_t))); 2225eda14cbcSMatt Macy } 2226eda14cbcSMatt Macy 2227eda14cbcSMatt Macy itx_t * 22281f88aa09SMartin Matuska zil_itx_create(uint64_t txtype, size_t olrsize) 2229eda14cbcSMatt Macy { 22301f88aa09SMartin Matuska size_t itxsize, lrsize; 2231eda14cbcSMatt Macy itx_t *itx; 2232eda14cbcSMatt Macy 22331f88aa09SMartin Matuska lrsize = P2ROUNDUP_TYPED(olrsize, sizeof (uint64_t), size_t); 2234eda14cbcSMatt Macy itxsize = offsetof(itx_t, itx_lr) + lrsize; 2235eda14cbcSMatt Macy 2236eda14cbcSMatt Macy itx = zio_data_buf_alloc(itxsize); 2237eda14cbcSMatt Macy itx->itx_lr.lrc_txtype = txtype; 2238eda14cbcSMatt Macy itx->itx_lr.lrc_reclen = lrsize; 2239eda14cbcSMatt Macy itx->itx_lr.lrc_seq = 0; /* defensive */ 2240da5137abSMartin Matuska memset((char *)&itx->itx_lr + olrsize, 0, lrsize - olrsize); 2241eda14cbcSMatt Macy itx->itx_sync = B_TRUE; /* default is synchronous */ 2242eda14cbcSMatt Macy itx->itx_callback = NULL; 2243eda14cbcSMatt Macy itx->itx_callback_data = NULL; 2244eda14cbcSMatt Macy itx->itx_size = itxsize; 2245eda14cbcSMatt Macy 2246eda14cbcSMatt Macy return (itx); 2247eda14cbcSMatt Macy } 2248eda14cbcSMatt Macy 22494e8d558cSMartin Matuska static itx_t * 22504e8d558cSMartin Matuska zil_itx_clone(itx_t *oitx) 22514e8d558cSMartin Matuska { 22524e8d558cSMartin Matuska itx_t *itx = zio_data_buf_alloc(oitx->itx_size); 22534e8d558cSMartin Matuska memcpy(itx, oitx, oitx->itx_size); 22544e8d558cSMartin Matuska itx->itx_callback = NULL; 22554e8d558cSMartin Matuska itx->itx_callback_data = NULL; 22564e8d558cSMartin Matuska return (itx); 22574e8d558cSMartin Matuska } 22584e8d558cSMartin Matuska 2259eda14cbcSMatt Macy void 2260eda14cbcSMatt Macy zil_itx_destroy(itx_t *itx) 2261eda14cbcSMatt Macy { 2262eda14cbcSMatt Macy IMPLY(itx->itx_lr.lrc_txtype == TX_COMMIT, itx->itx_callback == NULL); 2263eda14cbcSMatt Macy IMPLY(itx->itx_callback != NULL, itx->itx_lr.lrc_txtype != TX_COMMIT); 2264eda14cbcSMatt Macy 2265eda14cbcSMatt Macy if (itx->itx_callback != NULL) 2266eda14cbcSMatt Macy itx->itx_callback(itx->itx_callback_data); 2267eda14cbcSMatt Macy 2268eda14cbcSMatt Macy zio_data_buf_free(itx, itx->itx_size); 2269eda14cbcSMatt Macy } 2270eda14cbcSMatt Macy 2271eda14cbcSMatt Macy /* 2272eda14cbcSMatt Macy * Free up the sync and async itxs. The itxs_t has already been detached 2273eda14cbcSMatt Macy * so no locks are needed. 2274eda14cbcSMatt Macy */ 2275eda14cbcSMatt Macy static void 22763f9d360cSMartin Matuska zil_itxg_clean(void *arg) 2277eda14cbcSMatt Macy { 2278eda14cbcSMatt Macy itx_t *itx; 2279eda14cbcSMatt Macy list_t *list; 2280eda14cbcSMatt Macy avl_tree_t *t; 2281eda14cbcSMatt Macy void *cookie; 22823f9d360cSMartin Matuska itxs_t *itxs = arg; 2283eda14cbcSMatt Macy itx_async_node_t *ian; 2284eda14cbcSMatt Macy 2285eda14cbcSMatt Macy list = &itxs->i_sync_list; 2286c0a83fe0SMartin Matuska while ((itx = list_remove_head(list)) != NULL) { 2287eda14cbcSMatt Macy /* 2288eda14cbcSMatt Macy * In the general case, commit itxs will not be found 2289eda14cbcSMatt Macy * here, as they'll be committed to an lwb via 22904e8d558cSMartin Matuska * zil_lwb_assign(), and free'd in that function. Having 2291eda14cbcSMatt Macy * said that, it is still possible for commit itxs to be 2292eda14cbcSMatt Macy * found here, due to the following race: 2293eda14cbcSMatt Macy * 2294eda14cbcSMatt Macy * - a thread calls zil_commit() which assigns the 2295eda14cbcSMatt Macy * commit itx to a per-txg i_sync_list 2296eda14cbcSMatt Macy * - zil_itxg_clean() is called (e.g. via spa_sync()) 2297eda14cbcSMatt Macy * while the waiter is still on the i_sync_list 2298eda14cbcSMatt Macy * 2299eda14cbcSMatt Macy * There's nothing to prevent syncing the txg while the 2300eda14cbcSMatt Macy * waiter is on the i_sync_list. This normally doesn't 2301eda14cbcSMatt Macy * happen because spa_sync() is slower than zil_commit(), 2302eda14cbcSMatt Macy * but if zil_commit() calls txg_wait_synced() (e.g. 2303eda14cbcSMatt Macy * because zil_create() or zil_commit_writer_stall() is 2304eda14cbcSMatt Macy * called) we will hit this case. 2305eda14cbcSMatt Macy */ 2306eda14cbcSMatt Macy if (itx->itx_lr.lrc_txtype == TX_COMMIT) 2307eda14cbcSMatt Macy zil_commit_waiter_skip(itx->itx_private); 2308eda14cbcSMatt Macy 2309eda14cbcSMatt Macy zil_itx_destroy(itx); 2310eda14cbcSMatt Macy } 2311eda14cbcSMatt Macy 2312eda14cbcSMatt Macy cookie = NULL; 2313eda14cbcSMatt Macy t = &itxs->i_async_tree; 2314eda14cbcSMatt Macy while ((ian = avl_destroy_nodes(t, &cookie)) != NULL) { 2315eda14cbcSMatt Macy list = &ian->ia_list; 2316c0a83fe0SMartin Matuska while ((itx = list_remove_head(list)) != NULL) { 2317eda14cbcSMatt Macy /* commit itxs should never be on the async lists. */ 2318eda14cbcSMatt Macy ASSERT3U(itx->itx_lr.lrc_txtype, !=, TX_COMMIT); 2319eda14cbcSMatt Macy zil_itx_destroy(itx); 2320eda14cbcSMatt Macy } 2321eda14cbcSMatt Macy list_destroy(list); 2322eda14cbcSMatt Macy kmem_free(ian, sizeof (itx_async_node_t)); 2323eda14cbcSMatt Macy } 2324eda14cbcSMatt Macy avl_destroy(t); 2325eda14cbcSMatt Macy 2326eda14cbcSMatt Macy kmem_free(itxs, sizeof (itxs_t)); 2327eda14cbcSMatt Macy } 2328eda14cbcSMatt Macy 2329eda14cbcSMatt Macy static int 2330eda14cbcSMatt Macy zil_aitx_compare(const void *x1, const void *x2) 2331eda14cbcSMatt Macy { 2332eda14cbcSMatt Macy const uint64_t o1 = ((itx_async_node_t *)x1)->ia_foid; 2333eda14cbcSMatt Macy const uint64_t o2 = ((itx_async_node_t *)x2)->ia_foid; 2334eda14cbcSMatt Macy 2335eda14cbcSMatt Macy return (TREE_CMP(o1, o2)); 2336eda14cbcSMatt Macy } 2337eda14cbcSMatt Macy 2338eda14cbcSMatt Macy /* 2339eda14cbcSMatt Macy * Remove all async itx with the given oid. 2340eda14cbcSMatt Macy */ 2341eda14cbcSMatt Macy void 2342eda14cbcSMatt Macy zil_remove_async(zilog_t *zilog, uint64_t oid) 2343eda14cbcSMatt Macy { 2344eda14cbcSMatt Macy uint64_t otxg, txg; 2345eda14cbcSMatt Macy itx_async_node_t *ian; 2346eda14cbcSMatt Macy avl_tree_t *t; 2347eda14cbcSMatt Macy avl_index_t where; 2348eda14cbcSMatt Macy list_t clean_list; 2349eda14cbcSMatt Macy itx_t *itx; 2350eda14cbcSMatt Macy 2351eda14cbcSMatt Macy ASSERT(oid != 0); 2352eda14cbcSMatt Macy list_create(&clean_list, sizeof (itx_t), offsetof(itx_t, itx_node)); 2353eda14cbcSMatt Macy 2354eda14cbcSMatt Macy if (spa_freeze_txg(zilog->zl_spa) != UINT64_MAX) /* ziltest support */ 2355eda14cbcSMatt Macy otxg = ZILTEST_TXG; 2356eda14cbcSMatt Macy else 2357eda14cbcSMatt Macy otxg = spa_last_synced_txg(zilog->zl_spa) + 1; 2358eda14cbcSMatt Macy 2359eda14cbcSMatt Macy for (txg = otxg; txg < (otxg + TXG_CONCURRENT_STATES); txg++) { 2360eda14cbcSMatt Macy itxg_t *itxg = &zilog->zl_itxg[txg & TXG_MASK]; 2361eda14cbcSMatt Macy 2362eda14cbcSMatt Macy mutex_enter(&itxg->itxg_lock); 2363eda14cbcSMatt Macy if (itxg->itxg_txg != txg) { 2364eda14cbcSMatt Macy mutex_exit(&itxg->itxg_lock); 2365eda14cbcSMatt Macy continue; 2366eda14cbcSMatt Macy } 2367eda14cbcSMatt Macy 2368eda14cbcSMatt Macy /* 2369eda14cbcSMatt Macy * Locate the object node and append its list. 2370eda14cbcSMatt Macy */ 2371eda14cbcSMatt Macy t = &itxg->itxg_itxs->i_async_tree; 2372eda14cbcSMatt Macy ian = avl_find(t, &oid, &where); 2373eda14cbcSMatt Macy if (ian != NULL) 2374eda14cbcSMatt Macy list_move_tail(&clean_list, &ian->ia_list); 2375eda14cbcSMatt Macy mutex_exit(&itxg->itxg_lock); 2376eda14cbcSMatt Macy } 2377c0a83fe0SMartin Matuska while ((itx = list_remove_head(&clean_list)) != NULL) { 2378eda14cbcSMatt Macy /* commit itxs should never be on the async lists. */ 2379eda14cbcSMatt Macy ASSERT3U(itx->itx_lr.lrc_txtype, !=, TX_COMMIT); 2380eda14cbcSMatt Macy zil_itx_destroy(itx); 2381eda14cbcSMatt Macy } 2382eda14cbcSMatt Macy list_destroy(&clean_list); 2383eda14cbcSMatt Macy } 2384eda14cbcSMatt Macy 2385eda14cbcSMatt Macy void 2386eda14cbcSMatt Macy zil_itx_assign(zilog_t *zilog, itx_t *itx, dmu_tx_t *tx) 2387eda14cbcSMatt Macy { 2388eda14cbcSMatt Macy uint64_t txg; 2389eda14cbcSMatt Macy itxg_t *itxg; 2390eda14cbcSMatt Macy itxs_t *itxs, *clean = NULL; 2391eda14cbcSMatt Macy 2392eda14cbcSMatt Macy /* 2393eda14cbcSMatt Macy * Ensure the data of a renamed file is committed before the rename. 2394eda14cbcSMatt Macy */ 2395eda14cbcSMatt Macy if ((itx->itx_lr.lrc_txtype & ~TX_CI) == TX_RENAME) 2396eda14cbcSMatt Macy zil_async_to_sync(zilog, itx->itx_oid); 2397eda14cbcSMatt Macy 2398eda14cbcSMatt Macy if (spa_freeze_txg(zilog->zl_spa) != UINT64_MAX) 2399eda14cbcSMatt Macy txg = ZILTEST_TXG; 2400eda14cbcSMatt Macy else 2401eda14cbcSMatt Macy txg = dmu_tx_get_txg(tx); 2402eda14cbcSMatt Macy 2403eda14cbcSMatt Macy itxg = &zilog->zl_itxg[txg & TXG_MASK]; 2404eda14cbcSMatt Macy mutex_enter(&itxg->itxg_lock); 2405eda14cbcSMatt Macy itxs = itxg->itxg_itxs; 2406eda14cbcSMatt Macy if (itxg->itxg_txg != txg) { 2407eda14cbcSMatt Macy if (itxs != NULL) { 2408eda14cbcSMatt Macy /* 2409eda14cbcSMatt Macy * The zil_clean callback hasn't got around to cleaning 2410eda14cbcSMatt Macy * this itxg. Save the itxs for release below. 2411eda14cbcSMatt Macy * This should be rare. 2412eda14cbcSMatt Macy */ 2413eda14cbcSMatt Macy zfs_dbgmsg("zil_itx_assign: missed itx cleanup for " 241433b8c039SMartin Matuska "txg %llu", (u_longlong_t)itxg->itxg_txg); 2415eda14cbcSMatt Macy clean = itxg->itxg_itxs; 2416eda14cbcSMatt Macy } 2417eda14cbcSMatt Macy itxg->itxg_txg = txg; 2418eda14cbcSMatt Macy itxs = itxg->itxg_itxs = kmem_zalloc(sizeof (itxs_t), 2419eda14cbcSMatt Macy KM_SLEEP); 2420eda14cbcSMatt Macy 2421eda14cbcSMatt Macy list_create(&itxs->i_sync_list, sizeof (itx_t), 2422eda14cbcSMatt Macy offsetof(itx_t, itx_node)); 2423eda14cbcSMatt Macy avl_create(&itxs->i_async_tree, zil_aitx_compare, 2424eda14cbcSMatt Macy sizeof (itx_async_node_t), 2425eda14cbcSMatt Macy offsetof(itx_async_node_t, ia_node)); 2426eda14cbcSMatt Macy } 2427eda14cbcSMatt Macy if (itx->itx_sync) { 2428eda14cbcSMatt Macy list_insert_tail(&itxs->i_sync_list, itx); 2429eda14cbcSMatt Macy } else { 2430eda14cbcSMatt Macy avl_tree_t *t = &itxs->i_async_tree; 2431eda14cbcSMatt Macy uint64_t foid = 2432eda14cbcSMatt Macy LR_FOID_GET_OBJ(((lr_ooo_t *)&itx->itx_lr)->lr_foid); 2433eda14cbcSMatt Macy itx_async_node_t *ian; 2434eda14cbcSMatt Macy avl_index_t where; 2435eda14cbcSMatt Macy 2436eda14cbcSMatt Macy ian = avl_find(t, &foid, &where); 2437eda14cbcSMatt Macy if (ian == NULL) { 2438eda14cbcSMatt Macy ian = kmem_alloc(sizeof (itx_async_node_t), 2439eda14cbcSMatt Macy KM_SLEEP); 2440eda14cbcSMatt Macy list_create(&ian->ia_list, sizeof (itx_t), 2441eda14cbcSMatt Macy offsetof(itx_t, itx_node)); 2442eda14cbcSMatt Macy ian->ia_foid = foid; 2443eda14cbcSMatt Macy avl_insert(t, ian, where); 2444eda14cbcSMatt Macy } 2445eda14cbcSMatt Macy list_insert_tail(&ian->ia_list, itx); 2446eda14cbcSMatt Macy } 2447eda14cbcSMatt Macy 2448eda14cbcSMatt Macy itx->itx_lr.lrc_txg = dmu_tx_get_txg(tx); 2449eda14cbcSMatt Macy 2450eda14cbcSMatt Macy /* 2451eda14cbcSMatt Macy * We don't want to dirty the ZIL using ZILTEST_TXG, because 2452eda14cbcSMatt Macy * zil_clean() will never be called using ZILTEST_TXG. Thus, we 2453eda14cbcSMatt Macy * need to be careful to always dirty the ZIL using the "real" 2454eda14cbcSMatt Macy * TXG (not itxg_txg) even when the SPA is frozen. 2455eda14cbcSMatt Macy */ 2456eda14cbcSMatt Macy zilog_dirty(zilog, dmu_tx_get_txg(tx)); 2457eda14cbcSMatt Macy mutex_exit(&itxg->itxg_lock); 2458eda14cbcSMatt Macy 2459eda14cbcSMatt Macy /* Release the old itxs now we've dropped the lock */ 2460eda14cbcSMatt Macy if (clean != NULL) 2461eda14cbcSMatt Macy zil_itxg_clean(clean); 2462eda14cbcSMatt Macy } 2463eda14cbcSMatt Macy 2464eda14cbcSMatt Macy /* 2465eda14cbcSMatt Macy * If there are any in-memory intent log transactions which have now been 2466eda14cbcSMatt Macy * synced then start up a taskq to free them. We should only do this after we 2467eda14cbcSMatt Macy * have written out the uberblocks (i.e. txg has been committed) so that 2468eda14cbcSMatt Macy * don't inadvertently clean out in-memory log records that would be required 2469eda14cbcSMatt Macy * by zil_commit(). 2470eda14cbcSMatt Macy */ 2471eda14cbcSMatt Macy void 2472eda14cbcSMatt Macy zil_clean(zilog_t *zilog, uint64_t synced_txg) 2473eda14cbcSMatt Macy { 2474eda14cbcSMatt Macy itxg_t *itxg = &zilog->zl_itxg[synced_txg & TXG_MASK]; 2475eda14cbcSMatt Macy itxs_t *clean_me; 2476eda14cbcSMatt Macy 2477eda14cbcSMatt Macy ASSERT3U(synced_txg, <, ZILTEST_TXG); 2478eda14cbcSMatt Macy 2479eda14cbcSMatt Macy mutex_enter(&itxg->itxg_lock); 2480eda14cbcSMatt Macy if (itxg->itxg_itxs == NULL || itxg->itxg_txg == ZILTEST_TXG) { 2481eda14cbcSMatt Macy mutex_exit(&itxg->itxg_lock); 2482eda14cbcSMatt Macy return; 2483eda14cbcSMatt Macy } 2484eda14cbcSMatt Macy ASSERT3U(itxg->itxg_txg, <=, synced_txg); 2485eda14cbcSMatt Macy ASSERT3U(itxg->itxg_txg, !=, 0); 2486eda14cbcSMatt Macy clean_me = itxg->itxg_itxs; 2487eda14cbcSMatt Macy itxg->itxg_itxs = NULL; 2488eda14cbcSMatt Macy itxg->itxg_txg = 0; 2489eda14cbcSMatt Macy mutex_exit(&itxg->itxg_lock); 2490eda14cbcSMatt Macy /* 2491eda14cbcSMatt Macy * Preferably start a task queue to free up the old itxs but 2492eda14cbcSMatt Macy * if taskq_dispatch can't allocate resources to do that then 2493eda14cbcSMatt Macy * free it in-line. This should be rare. Note, using TQ_SLEEP 2494eda14cbcSMatt Macy * created a bad performance problem. 2495eda14cbcSMatt Macy */ 2496eda14cbcSMatt Macy ASSERT3P(zilog->zl_dmu_pool, !=, NULL); 2497eda14cbcSMatt Macy ASSERT3P(zilog->zl_dmu_pool->dp_zil_clean_taskq, !=, NULL); 2498eda14cbcSMatt Macy taskqid_t id = taskq_dispatch(zilog->zl_dmu_pool->dp_zil_clean_taskq, 24993f9d360cSMartin Matuska zil_itxg_clean, clean_me, TQ_NOSLEEP); 2500eda14cbcSMatt Macy if (id == TASKQID_INVALID) 2501eda14cbcSMatt Macy zil_itxg_clean(clean_me); 2502eda14cbcSMatt Macy } 2503eda14cbcSMatt Macy 2504eda14cbcSMatt Macy /* 2505eda14cbcSMatt Macy * This function will traverse the queue of itxs that need to be 2506eda14cbcSMatt Macy * committed, and move them onto the ZIL's zl_itx_commit_list. 2507eda14cbcSMatt Macy */ 25080a97523dSMartin Matuska static uint64_t 2509eda14cbcSMatt Macy zil_get_commit_list(zilog_t *zilog) 2510eda14cbcSMatt Macy { 25110a97523dSMartin Matuska uint64_t otxg, txg, wtxg = 0; 2512eda14cbcSMatt Macy list_t *commit_list = &zilog->zl_itx_commit_list; 2513eda14cbcSMatt Macy 2514eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock)); 2515eda14cbcSMatt Macy 2516eda14cbcSMatt Macy if (spa_freeze_txg(zilog->zl_spa) != UINT64_MAX) /* ziltest support */ 2517eda14cbcSMatt Macy otxg = ZILTEST_TXG; 2518eda14cbcSMatt Macy else 2519eda14cbcSMatt Macy otxg = spa_last_synced_txg(zilog->zl_spa) + 1; 2520eda14cbcSMatt Macy 2521eda14cbcSMatt Macy /* 2522eda14cbcSMatt Macy * This is inherently racy, since there is nothing to prevent 2523eda14cbcSMatt Macy * the last synced txg from changing. That's okay since we'll 2524eda14cbcSMatt Macy * only commit things in the future. 2525eda14cbcSMatt Macy */ 2526eda14cbcSMatt Macy for (txg = otxg; txg < (otxg + TXG_CONCURRENT_STATES); txg++) { 2527eda14cbcSMatt Macy itxg_t *itxg = &zilog->zl_itxg[txg & TXG_MASK]; 2528eda14cbcSMatt Macy 2529eda14cbcSMatt Macy mutex_enter(&itxg->itxg_lock); 2530eda14cbcSMatt Macy if (itxg->itxg_txg != txg) { 2531eda14cbcSMatt Macy mutex_exit(&itxg->itxg_lock); 2532eda14cbcSMatt Macy continue; 2533eda14cbcSMatt Macy } 2534eda14cbcSMatt Macy 2535eda14cbcSMatt Macy /* 2536eda14cbcSMatt Macy * If we're adding itx records to the zl_itx_commit_list, 2537eda14cbcSMatt Macy * then the zil better be dirty in this "txg". We can assert 2538eda14cbcSMatt Macy * that here since we're holding the itxg_lock which will 2539eda14cbcSMatt Macy * prevent spa_sync from cleaning it. Once we add the itxs 2540eda14cbcSMatt Macy * to the zl_itx_commit_list we must commit it to disk even 2541eda14cbcSMatt Macy * if it's unnecessary (i.e. the txg was synced). 2542eda14cbcSMatt Macy */ 2543eda14cbcSMatt Macy ASSERT(zilog_is_dirty_in_txg(zilog, txg) || 2544eda14cbcSMatt Macy spa_freeze_txg(zilog->zl_spa) != UINT64_MAX); 25450a97523dSMartin Matuska list_t *sync_list = &itxg->itxg_itxs->i_sync_list; 25460a97523dSMartin Matuska if (unlikely(zilog->zl_suspend > 0)) { 25470a97523dSMartin Matuska /* 25480a97523dSMartin Matuska * ZIL was just suspended, but we lost the race. 25490a97523dSMartin Matuska * Allow all earlier itxs to be committed, but ask 25500a97523dSMartin Matuska * caller to do txg_wait_synced(txg) for any new. 25510a97523dSMartin Matuska */ 25520a97523dSMartin Matuska if (!list_is_empty(sync_list)) 25530a97523dSMartin Matuska wtxg = MAX(wtxg, txg); 25540a97523dSMartin Matuska } else { 25550a97523dSMartin Matuska list_move_tail(commit_list, sync_list); 25560a97523dSMartin Matuska } 2557eda14cbcSMatt Macy 2558eda14cbcSMatt Macy mutex_exit(&itxg->itxg_lock); 2559eda14cbcSMatt Macy } 25600a97523dSMartin Matuska return (wtxg); 2561eda14cbcSMatt Macy } 2562eda14cbcSMatt Macy 2563eda14cbcSMatt Macy /* 2564eda14cbcSMatt Macy * Move the async itxs for a specified object to commit into sync lists. 2565eda14cbcSMatt Macy */ 2566eda14cbcSMatt Macy void 2567eda14cbcSMatt Macy zil_async_to_sync(zilog_t *zilog, uint64_t foid) 2568eda14cbcSMatt Macy { 2569eda14cbcSMatt Macy uint64_t otxg, txg; 2570eda14cbcSMatt Macy itx_async_node_t *ian; 2571eda14cbcSMatt Macy avl_tree_t *t; 2572eda14cbcSMatt Macy avl_index_t where; 2573eda14cbcSMatt Macy 2574eda14cbcSMatt Macy if (spa_freeze_txg(zilog->zl_spa) != UINT64_MAX) /* ziltest support */ 2575eda14cbcSMatt Macy otxg = ZILTEST_TXG; 2576eda14cbcSMatt Macy else 2577eda14cbcSMatt Macy otxg = spa_last_synced_txg(zilog->zl_spa) + 1; 2578eda14cbcSMatt Macy 2579eda14cbcSMatt Macy /* 2580eda14cbcSMatt Macy * This is inherently racy, since there is nothing to prevent 2581eda14cbcSMatt Macy * the last synced txg from changing. 2582eda14cbcSMatt Macy */ 2583eda14cbcSMatt Macy for (txg = otxg; txg < (otxg + TXG_CONCURRENT_STATES); txg++) { 2584eda14cbcSMatt Macy itxg_t *itxg = &zilog->zl_itxg[txg & TXG_MASK]; 2585eda14cbcSMatt Macy 2586eda14cbcSMatt Macy mutex_enter(&itxg->itxg_lock); 2587eda14cbcSMatt Macy if (itxg->itxg_txg != txg) { 2588eda14cbcSMatt Macy mutex_exit(&itxg->itxg_lock); 2589eda14cbcSMatt Macy continue; 2590eda14cbcSMatt Macy } 2591eda14cbcSMatt Macy 2592eda14cbcSMatt Macy /* 2593eda14cbcSMatt Macy * If a foid is specified then find that node and append its 2594eda14cbcSMatt Macy * list. Otherwise walk the tree appending all the lists 2595eda14cbcSMatt Macy * to the sync list. We add to the end rather than the 2596eda14cbcSMatt Macy * beginning to ensure the create has happened. 2597eda14cbcSMatt Macy */ 2598eda14cbcSMatt Macy t = &itxg->itxg_itxs->i_async_tree; 2599eda14cbcSMatt Macy if (foid != 0) { 2600eda14cbcSMatt Macy ian = avl_find(t, &foid, &where); 2601eda14cbcSMatt Macy if (ian != NULL) { 2602eda14cbcSMatt Macy list_move_tail(&itxg->itxg_itxs->i_sync_list, 2603eda14cbcSMatt Macy &ian->ia_list); 2604eda14cbcSMatt Macy } 2605eda14cbcSMatt Macy } else { 2606eda14cbcSMatt Macy void *cookie = NULL; 2607eda14cbcSMatt Macy 2608eda14cbcSMatt Macy while ((ian = avl_destroy_nodes(t, &cookie)) != NULL) { 2609eda14cbcSMatt Macy list_move_tail(&itxg->itxg_itxs->i_sync_list, 2610eda14cbcSMatt Macy &ian->ia_list); 2611eda14cbcSMatt Macy list_destroy(&ian->ia_list); 2612eda14cbcSMatt Macy kmem_free(ian, sizeof (itx_async_node_t)); 2613eda14cbcSMatt Macy } 2614eda14cbcSMatt Macy } 2615eda14cbcSMatt Macy mutex_exit(&itxg->itxg_lock); 2616eda14cbcSMatt Macy } 2617eda14cbcSMatt Macy } 2618eda14cbcSMatt Macy 2619eda14cbcSMatt Macy /* 2620eda14cbcSMatt Macy * This function will prune commit itxs that are at the head of the 2621eda14cbcSMatt Macy * commit list (it won't prune past the first non-commit itx), and 2622eda14cbcSMatt Macy * either: a) attach them to the last lwb that's still pending 2623eda14cbcSMatt Macy * completion, or b) skip them altogether. 2624eda14cbcSMatt Macy * 2625eda14cbcSMatt Macy * This is used as a performance optimization to prevent commit itxs 2626eda14cbcSMatt Macy * from generating new lwbs when it's unnecessary to do so. 2627eda14cbcSMatt Macy */ 2628eda14cbcSMatt Macy static void 2629eda14cbcSMatt Macy zil_prune_commit_list(zilog_t *zilog) 2630eda14cbcSMatt Macy { 2631eda14cbcSMatt Macy itx_t *itx; 2632eda14cbcSMatt Macy 2633eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock)); 2634eda14cbcSMatt Macy 2635eda14cbcSMatt Macy while ((itx = list_head(&zilog->zl_itx_commit_list)) != NULL) { 2636eda14cbcSMatt Macy lr_t *lrc = &itx->itx_lr; 2637eda14cbcSMatt Macy if (lrc->lrc_txtype != TX_COMMIT) 2638eda14cbcSMatt Macy break; 2639eda14cbcSMatt Macy 2640eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 2641eda14cbcSMatt Macy 2642eda14cbcSMatt Macy lwb_t *last_lwb = zilog->zl_last_lwb_opened; 2643eda14cbcSMatt Macy if (last_lwb == NULL || 2644eda14cbcSMatt Macy last_lwb->lwb_state == LWB_STATE_FLUSH_DONE) { 2645eda14cbcSMatt Macy /* 2646eda14cbcSMatt Macy * All of the itxs this waiter was waiting on 2647eda14cbcSMatt Macy * must have already completed (or there were 2648eda14cbcSMatt Macy * never any itx's for it to wait on), so it's 2649eda14cbcSMatt Macy * safe to skip this waiter and mark it done. 2650eda14cbcSMatt Macy */ 2651eda14cbcSMatt Macy zil_commit_waiter_skip(itx->itx_private); 2652eda14cbcSMatt Macy } else { 2653eda14cbcSMatt Macy zil_commit_waiter_link_lwb(itx->itx_private, last_lwb); 2654eda14cbcSMatt Macy } 2655eda14cbcSMatt Macy 2656eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 2657eda14cbcSMatt Macy 2658eda14cbcSMatt Macy list_remove(&zilog->zl_itx_commit_list, itx); 2659eda14cbcSMatt Macy zil_itx_destroy(itx); 2660eda14cbcSMatt Macy } 2661eda14cbcSMatt Macy 2662eda14cbcSMatt Macy IMPLY(itx != NULL, itx->itx_lr.lrc_txtype != TX_COMMIT); 2663eda14cbcSMatt Macy } 2664eda14cbcSMatt Macy 2665eda14cbcSMatt Macy static void 2666eda14cbcSMatt Macy zil_commit_writer_stall(zilog_t *zilog) 2667eda14cbcSMatt Macy { 2668eda14cbcSMatt Macy /* 2669eda14cbcSMatt Macy * When zio_alloc_zil() fails to allocate the next lwb block on 2670eda14cbcSMatt Macy * disk, we must call txg_wait_synced() to ensure all of the 2671eda14cbcSMatt Macy * lwbs in the zilog's zl_lwb_list are synced and then freed (in 2672eda14cbcSMatt Macy * zil_sync()), such that any subsequent ZIL writer (i.e. a call 2673eda14cbcSMatt Macy * to zil_process_commit_list()) will have to call zil_create(), 2674eda14cbcSMatt Macy * and start a new ZIL chain. 2675eda14cbcSMatt Macy * 2676eda14cbcSMatt Macy * Since zil_alloc_zil() failed, the lwb that was previously 2677eda14cbcSMatt Macy * issued does not have a pointer to the "next" lwb on disk. 2678eda14cbcSMatt Macy * Thus, if another ZIL writer thread was to allocate the "next" 2679eda14cbcSMatt Macy * on-disk lwb, that block could be leaked in the event of a 2680eda14cbcSMatt Macy * crash (because the previous lwb on-disk would not point to 2681eda14cbcSMatt Macy * it). 2682eda14cbcSMatt Macy * 2683eda14cbcSMatt Macy * We must hold the zilog's zl_issuer_lock while we do this, to 2684eda14cbcSMatt Macy * ensure no new threads enter zil_process_commit_list() until 2685eda14cbcSMatt Macy * all lwb's in the zl_lwb_list have been synced and freed 2686eda14cbcSMatt Macy * (which is achieved via the txg_wait_synced() call). 2687eda14cbcSMatt Macy */ 2688eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock)); 2689eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, 0); 2690c0a83fe0SMartin Matuska ASSERT(list_is_empty(&zilog->zl_lwb_list)); 2691eda14cbcSMatt Macy } 2692eda14cbcSMatt Macy 2693eda14cbcSMatt Macy /* 2694eda14cbcSMatt Macy * This function will traverse the commit list, creating new lwbs as 2695eda14cbcSMatt Macy * needed, and committing the itxs from the commit list to these newly 2696eda14cbcSMatt Macy * created lwbs. Additionally, as a new lwb is created, the previous 2697eda14cbcSMatt Macy * lwb will be issued to the zio layer to be written to disk. 2698eda14cbcSMatt Macy */ 2699eda14cbcSMatt Macy static void 27004e8d558cSMartin Matuska zil_process_commit_list(zilog_t *zilog, zil_commit_waiter_t *zcw, list_t *ilwbs) 2701eda14cbcSMatt Macy { 2702eda14cbcSMatt Macy spa_t *spa = zilog->zl_spa; 2703eda14cbcSMatt Macy list_t nolwb_itxs; 2704eda14cbcSMatt Macy list_t nolwb_waiters; 270515f0b8c3SMartin Matuska lwb_t *lwb, *plwb; 2706eda14cbcSMatt Macy itx_t *itx; 270715f0b8c3SMartin Matuska boolean_t first = B_TRUE; 2708eda14cbcSMatt Macy 2709eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zilog->zl_issuer_lock)); 2710eda14cbcSMatt Macy 2711eda14cbcSMatt Macy /* 2712eda14cbcSMatt Macy * Return if there's nothing to commit before we dirty the fs by 2713eda14cbcSMatt Macy * calling zil_create(). 2714eda14cbcSMatt Macy */ 2715c0a83fe0SMartin Matuska if (list_is_empty(&zilog->zl_itx_commit_list)) 2716eda14cbcSMatt Macy return; 2717eda14cbcSMatt Macy 2718eda14cbcSMatt Macy list_create(&nolwb_itxs, sizeof (itx_t), offsetof(itx_t, itx_node)); 2719eda14cbcSMatt Macy list_create(&nolwb_waiters, sizeof (zil_commit_waiter_t), 2720eda14cbcSMatt Macy offsetof(zil_commit_waiter_t, zcw_node)); 2721eda14cbcSMatt Macy 2722eda14cbcSMatt Macy lwb = list_tail(&zilog->zl_lwb_list); 2723eda14cbcSMatt Macy if (lwb == NULL) { 2724eda14cbcSMatt Macy lwb = zil_create(zilog); 2725eda14cbcSMatt Macy } else { 2726c03c5b1cSMartin Matuska /* 2727c03c5b1cSMartin Matuska * Activate SPA_FEATURE_ZILSAXATTR for the cases where ZIL will 2728c03c5b1cSMartin Matuska * have already been created (zl_lwb_list not empty). 2729c03c5b1cSMartin Matuska */ 2730c03c5b1cSMartin Matuska zil_commit_activate_saxattr_feature(zilog); 2731*315ee00fSMartin Matuska ASSERT(lwb->lwb_state == LWB_STATE_NEW || 2732*315ee00fSMartin Matuska lwb->lwb_state == LWB_STATE_OPENED); 2733*315ee00fSMartin Matuska first = (lwb->lwb_state == LWB_STATE_NEW) && 273415f0b8c3SMartin Matuska ((plwb = list_prev(&zilog->zl_lwb_list, lwb)) == NULL || 273515f0b8c3SMartin Matuska plwb->lwb_state == LWB_STATE_FLUSH_DONE); 2736eda14cbcSMatt Macy } 2737eda14cbcSMatt Macy 2738c0a83fe0SMartin Matuska while ((itx = list_remove_head(&zilog->zl_itx_commit_list)) != NULL) { 2739eda14cbcSMatt Macy lr_t *lrc = &itx->itx_lr; 2740eda14cbcSMatt Macy uint64_t txg = lrc->lrc_txg; 2741eda14cbcSMatt Macy 2742eda14cbcSMatt Macy ASSERT3U(txg, !=, 0); 2743eda14cbcSMatt Macy 2744eda14cbcSMatt Macy if (lrc->lrc_txtype == TX_COMMIT) { 2745eda14cbcSMatt Macy DTRACE_PROBE2(zil__process__commit__itx, 2746eda14cbcSMatt Macy zilog_t *, zilog, itx_t *, itx); 2747eda14cbcSMatt Macy } else { 2748eda14cbcSMatt Macy DTRACE_PROBE2(zil__process__normal__itx, 2749eda14cbcSMatt Macy zilog_t *, zilog, itx_t *, itx); 2750eda14cbcSMatt Macy } 2751eda14cbcSMatt Macy 2752eda14cbcSMatt Macy boolean_t synced = txg <= spa_last_synced_txg(spa); 2753eda14cbcSMatt Macy boolean_t frozen = txg > spa_freeze_txg(spa); 2754eda14cbcSMatt Macy 2755eda14cbcSMatt Macy /* 2756eda14cbcSMatt Macy * If the txg of this itx has already been synced out, then 2757eda14cbcSMatt Macy * we don't need to commit this itx to an lwb. This is 2758eda14cbcSMatt Macy * because the data of this itx will have already been 2759eda14cbcSMatt Macy * written to the main pool. This is inherently racy, and 2760eda14cbcSMatt Macy * it's still ok to commit an itx whose txg has already 2761eda14cbcSMatt Macy * been synced; this will result in a write that's 2762eda14cbcSMatt Macy * unnecessary, but will do no harm. 2763eda14cbcSMatt Macy * 2764eda14cbcSMatt Macy * With that said, we always want to commit TX_COMMIT itxs 2765eda14cbcSMatt Macy * to an lwb, regardless of whether or not that itx's txg 2766eda14cbcSMatt Macy * has been synced out. We do this to ensure any OPENED lwb 2767eda14cbcSMatt Macy * will always have at least one zil_commit_waiter_t linked 2768eda14cbcSMatt Macy * to the lwb. 2769eda14cbcSMatt Macy * 2770eda14cbcSMatt Macy * As a counter-example, if we skipped TX_COMMIT itx's 2771eda14cbcSMatt Macy * whose txg had already been synced, the following 2772eda14cbcSMatt Macy * situation could occur if we happened to be racing with 2773eda14cbcSMatt Macy * spa_sync: 2774eda14cbcSMatt Macy * 2775eda14cbcSMatt Macy * 1. We commit a non-TX_COMMIT itx to an lwb, where the 2776eda14cbcSMatt Macy * itx's txg is 10 and the last synced txg is 9. 2777eda14cbcSMatt Macy * 2. spa_sync finishes syncing out txg 10. 2778eda14cbcSMatt Macy * 3. We move to the next itx in the list, it's a TX_COMMIT 2779eda14cbcSMatt Macy * whose txg is 10, so we skip it rather than committing 2780eda14cbcSMatt Macy * it to the lwb used in (1). 2781eda14cbcSMatt Macy * 2782eda14cbcSMatt Macy * If the itx that is skipped in (3) is the last TX_COMMIT 2783eda14cbcSMatt Macy * itx in the commit list, than it's possible for the lwb 2784eda14cbcSMatt Macy * used in (1) to remain in the OPENED state indefinitely. 2785eda14cbcSMatt Macy * 2786eda14cbcSMatt Macy * To prevent the above scenario from occurring, ensuring 2787eda14cbcSMatt Macy * that once an lwb is OPENED it will transition to ISSUED 2788eda14cbcSMatt Macy * and eventually DONE, we always commit TX_COMMIT itx's to 2789eda14cbcSMatt Macy * an lwb here, even if that itx's txg has already been 2790eda14cbcSMatt Macy * synced. 2791eda14cbcSMatt Macy * 2792eda14cbcSMatt Macy * Finally, if the pool is frozen, we _always_ commit the 2793eda14cbcSMatt Macy * itx. The point of freezing the pool is to prevent data 2794eda14cbcSMatt Macy * from being written to the main pool via spa_sync, and 2795eda14cbcSMatt Macy * instead rely solely on the ZIL to persistently store the 2796eda14cbcSMatt Macy * data; i.e. when the pool is frozen, the last synced txg 2797eda14cbcSMatt Macy * value can't be trusted. 2798eda14cbcSMatt Macy */ 2799eda14cbcSMatt Macy if (frozen || !synced || lrc->lrc_txtype == TX_COMMIT) { 2800eda14cbcSMatt Macy if (lwb != NULL) { 28014e8d558cSMartin Matuska lwb = zil_lwb_assign(zilog, lwb, itx, ilwbs); 28024e8d558cSMartin Matuska if (lwb == NULL) { 2803eda14cbcSMatt Macy list_insert_tail(&nolwb_itxs, itx); 28044e8d558cSMartin Matuska } else if ((zcw->zcw_lwb != NULL && 28054e8d558cSMartin Matuska zcw->zcw_lwb != lwb) || zcw->zcw_done) { 28064e8d558cSMartin Matuska /* 28074e8d558cSMartin Matuska * Our lwb is done, leave the rest of 28084e8d558cSMartin Matuska * itx list to somebody else who care. 28094e8d558cSMartin Matuska */ 28104e8d558cSMartin Matuska first = B_FALSE; 28114e8d558cSMartin Matuska break; 28124e8d558cSMartin Matuska } 2813eda14cbcSMatt Macy } else { 2814eda14cbcSMatt Macy if (lrc->lrc_txtype == TX_COMMIT) { 2815eda14cbcSMatt Macy zil_commit_waiter_link_nolwb( 2816eda14cbcSMatt Macy itx->itx_private, &nolwb_waiters); 2817eda14cbcSMatt Macy } 2818eda14cbcSMatt Macy list_insert_tail(&nolwb_itxs, itx); 2819eda14cbcSMatt Macy } 2820eda14cbcSMatt Macy } else { 2821eda14cbcSMatt Macy ASSERT3S(lrc->lrc_txtype, !=, TX_COMMIT); 2822eda14cbcSMatt Macy zil_itx_destroy(itx); 2823eda14cbcSMatt Macy } 2824eda14cbcSMatt Macy } 2825eda14cbcSMatt Macy 2826eda14cbcSMatt Macy if (lwb == NULL) { 2827eda14cbcSMatt Macy /* 2828eda14cbcSMatt Macy * This indicates zio_alloc_zil() failed to allocate the 2829eda14cbcSMatt Macy * "next" lwb on-disk. When this happens, we must stall 2830eda14cbcSMatt Macy * the ZIL write pipeline; see the comment within 2831eda14cbcSMatt Macy * zil_commit_writer_stall() for more details. 2832eda14cbcSMatt Macy */ 28334e8d558cSMartin Matuska while ((lwb = list_remove_head(ilwbs)) != NULL) 28344e8d558cSMartin Matuska zil_lwb_write_issue(zilog, lwb); 2835eda14cbcSMatt Macy zil_commit_writer_stall(zilog); 2836eda14cbcSMatt Macy 2837eda14cbcSMatt Macy /* 2838eda14cbcSMatt Macy * Additionally, we have to signal and mark the "nolwb" 2839eda14cbcSMatt Macy * waiters as "done" here, since without an lwb, we 2840eda14cbcSMatt Macy * can't do this via zil_lwb_flush_vdevs_done() like 2841eda14cbcSMatt Macy * normal. 2842eda14cbcSMatt Macy */ 2843eda14cbcSMatt Macy zil_commit_waiter_t *zcw; 2844c0a83fe0SMartin Matuska while ((zcw = list_remove_head(&nolwb_waiters)) != NULL) 2845eda14cbcSMatt Macy zil_commit_waiter_skip(zcw); 2846eda14cbcSMatt Macy 2847eda14cbcSMatt Macy /* 2848eda14cbcSMatt Macy * And finally, we have to destroy the itx's that 2849eda14cbcSMatt Macy * couldn't be committed to an lwb; this will also call 2850eda14cbcSMatt Macy * the itx's callback if one exists for the itx. 2851eda14cbcSMatt Macy */ 2852c0a83fe0SMartin Matuska while ((itx = list_remove_head(&nolwb_itxs)) != NULL) 2853eda14cbcSMatt Macy zil_itx_destroy(itx); 2854eda14cbcSMatt Macy } else { 2855eda14cbcSMatt Macy ASSERT(list_is_empty(&nolwb_waiters)); 2856eda14cbcSMatt Macy ASSERT3P(lwb, !=, NULL); 2857*315ee00fSMartin Matuska ASSERT(lwb->lwb_state == LWB_STATE_NEW || 2858*315ee00fSMartin Matuska lwb->lwb_state == LWB_STATE_OPENED); 2859eda14cbcSMatt Macy 2860eda14cbcSMatt Macy /* 2861eda14cbcSMatt Macy * At this point, the ZIL block pointed at by the "lwb" 2862*315ee00fSMartin Matuska * variable is in "new" or "opened" state. 2863eda14cbcSMatt Macy * 2864*315ee00fSMartin Matuska * If it's "new", then no itxs have been committed to it, so 2865*315ee00fSMartin Matuska * there's no point in issuing its zio (i.e. it's "empty"). 2866eda14cbcSMatt Macy * 2867*315ee00fSMartin Matuska * If it's "opened", then it contains one or more itxs that 2868eda14cbcSMatt Macy * eventually need to be committed to stable storage. In 2869eda14cbcSMatt Macy * this case we intentionally do not issue the lwb's zio 2870eda14cbcSMatt Macy * to disk yet, and instead rely on one of the following 2871eda14cbcSMatt Macy * two mechanisms for issuing the zio: 2872eda14cbcSMatt Macy * 2873*315ee00fSMartin Matuska * 1. Ideally, there will be more ZIL activity occurring on 2874*315ee00fSMartin Matuska * the system, such that this function will be immediately 2875*315ee00fSMartin Matuska * called again by different thread and this lwb will be 2876*315ee00fSMartin Matuska * closed by zil_lwb_assign(). This way, the lwb will be 2877*315ee00fSMartin Matuska * "full" when it is issued to disk, and we'll make use of 2878*315ee00fSMartin Matuska * the lwb's size the best we can. 2879eda14cbcSMatt Macy * 2880eda14cbcSMatt Macy * 2. If there isn't sufficient ZIL activity occurring on 2881*315ee00fSMartin Matuska * the system, zil_commit_waiter() will close it and issue 2882*315ee00fSMartin Matuska * the zio. If this occurs, the lwb is not guaranteed 2883eda14cbcSMatt Macy * to be "full" by the time its zio is issued, and means 2884eda14cbcSMatt Macy * the size of the lwb was "too large" given the amount 2885eda14cbcSMatt Macy * of ZIL activity occurring on the system at that time. 2886eda14cbcSMatt Macy * 2887eda14cbcSMatt Macy * We do this for a couple of reasons: 2888eda14cbcSMatt Macy * 2889eda14cbcSMatt Macy * 1. To try and reduce the number of IOPs needed to 2890eda14cbcSMatt Macy * write the same number of itxs. If an lwb has space 2891eda14cbcSMatt Macy * available in its buffer for more itxs, and more itxs 2892eda14cbcSMatt Macy * will be committed relatively soon (relative to the 2893eda14cbcSMatt Macy * latency of performing a write), then it's beneficial 2894eda14cbcSMatt Macy * to wait for these "next" itxs. This way, more itxs 2895eda14cbcSMatt Macy * can be committed to stable storage with fewer writes. 2896eda14cbcSMatt Macy * 2897eda14cbcSMatt Macy * 2. To try and use the largest lwb block size that the 2898eda14cbcSMatt Macy * incoming rate of itxs can support. Again, this is to 2899eda14cbcSMatt Macy * try and pack as many itxs into as few lwbs as 2900eda14cbcSMatt Macy * possible, without significantly impacting the latency 2901eda14cbcSMatt Macy * of each individual itx. 290215f0b8c3SMartin Matuska * 290315f0b8c3SMartin Matuska * If we had no already running or open LWBs, it can be 290415f0b8c3SMartin Matuska * the workload is single-threaded. And if the ZIL write 290515f0b8c3SMartin Matuska * latency is very small or if the LWB is almost full, it 290615f0b8c3SMartin Matuska * may be cheaper to bypass the delay. 2907eda14cbcSMatt Macy */ 290815f0b8c3SMartin Matuska if (lwb->lwb_state == LWB_STATE_OPENED && first) { 290915f0b8c3SMartin Matuska hrtime_t sleep = zilog->zl_last_lwb_latency * 291015f0b8c3SMartin Matuska zfs_commit_timeout_pct / 100; 291115f0b8c3SMartin Matuska if (sleep < zil_min_commit_timeout || 2912*315ee00fSMartin Matuska lwb->lwb_nmax - lwb->lwb_nused < 2913*315ee00fSMartin Matuska lwb->lwb_nmax / 8) { 2914*315ee00fSMartin Matuska list_insert_tail(ilwbs, lwb); 2915*315ee00fSMartin Matuska lwb = zil_lwb_write_close(zilog, lwb, 2916*315ee00fSMartin Matuska LWB_STATE_NEW); 291715f0b8c3SMartin Matuska zilog->zl_cur_used = 0; 29184e8d558cSMartin Matuska if (lwb == NULL) { 29194e8d558cSMartin Matuska while ((lwb = list_remove_head(ilwbs)) 29204e8d558cSMartin Matuska != NULL) 29214e8d558cSMartin Matuska zil_lwb_write_issue(zilog, lwb); 292215f0b8c3SMartin Matuska zil_commit_writer_stall(zilog); 292315f0b8c3SMartin Matuska } 292415f0b8c3SMartin Matuska } 2925eda14cbcSMatt Macy } 2926eda14cbcSMatt Macy } 29274e8d558cSMartin Matuska } 2928eda14cbcSMatt Macy 2929eda14cbcSMatt Macy /* 2930eda14cbcSMatt Macy * This function is responsible for ensuring the passed in commit waiter 2931eda14cbcSMatt Macy * (and associated commit itx) is committed to an lwb. If the waiter is 2932eda14cbcSMatt Macy * not already committed to an lwb, all itxs in the zilog's queue of 2933eda14cbcSMatt Macy * itxs will be processed. The assumption is the passed in waiter's 2934eda14cbcSMatt Macy * commit itx will found in the queue just like the other non-commit 2935eda14cbcSMatt Macy * itxs, such that when the entire queue is processed, the waiter will 2936eda14cbcSMatt Macy * have been committed to an lwb. 2937eda14cbcSMatt Macy * 2938eda14cbcSMatt Macy * The lwb associated with the passed in waiter is not guaranteed to 2939eda14cbcSMatt Macy * have been issued by the time this function completes. If the lwb is 2940eda14cbcSMatt Macy * not issued, we rely on future calls to zil_commit_writer() to issue 2941eda14cbcSMatt Macy * the lwb, or the timeout mechanism found in zil_commit_waiter(). 2942eda14cbcSMatt Macy */ 29430a97523dSMartin Matuska static uint64_t 2944eda14cbcSMatt Macy zil_commit_writer(zilog_t *zilog, zil_commit_waiter_t *zcw) 2945eda14cbcSMatt Macy { 29464e8d558cSMartin Matuska list_t ilwbs; 29474e8d558cSMartin Matuska lwb_t *lwb; 29480a97523dSMartin Matuska uint64_t wtxg = 0; 29494e8d558cSMartin Matuska 2950eda14cbcSMatt Macy ASSERT(!MUTEX_HELD(&zilog->zl_lock)); 2951eda14cbcSMatt Macy ASSERT(spa_writeable(zilog->zl_spa)); 2952eda14cbcSMatt Macy 29534e8d558cSMartin Matuska list_create(&ilwbs, sizeof (lwb_t), offsetof(lwb_t, lwb_issue_node)); 2954eda14cbcSMatt Macy mutex_enter(&zilog->zl_issuer_lock); 2955eda14cbcSMatt Macy 2956eda14cbcSMatt Macy if (zcw->zcw_lwb != NULL || zcw->zcw_done) { 2957eda14cbcSMatt Macy /* 2958eda14cbcSMatt Macy * It's possible that, while we were waiting to acquire 2959eda14cbcSMatt Macy * the "zl_issuer_lock", another thread committed this 2960eda14cbcSMatt Macy * waiter to an lwb. If that occurs, we bail out early, 2961eda14cbcSMatt Macy * without processing any of the zilog's queue of itxs. 2962eda14cbcSMatt Macy * 2963eda14cbcSMatt Macy * On certain workloads and system configurations, the 2964eda14cbcSMatt Macy * "zl_issuer_lock" can become highly contended. In an 2965eda14cbcSMatt Macy * attempt to reduce this contention, we immediately drop 2966eda14cbcSMatt Macy * the lock if the waiter has already been processed. 2967eda14cbcSMatt Macy * 2968eda14cbcSMatt Macy * We've measured this optimization to reduce CPU spent 2969eda14cbcSMatt Macy * contending on this lock by up to 5%, using a system 2970eda14cbcSMatt Macy * with 32 CPUs, low latency storage (~50 usec writes), 2971eda14cbcSMatt Macy * and 1024 threads performing sync writes. 2972eda14cbcSMatt Macy */ 2973eda14cbcSMatt Macy goto out; 2974eda14cbcSMatt Macy } 2975eda14cbcSMatt Macy 2976271171e0SMartin Matuska ZIL_STAT_BUMP(zilog, zil_commit_writer_count); 2977eda14cbcSMatt Macy 29780a97523dSMartin Matuska wtxg = zil_get_commit_list(zilog); 2979eda14cbcSMatt Macy zil_prune_commit_list(zilog); 29804e8d558cSMartin Matuska zil_process_commit_list(zilog, zcw, &ilwbs); 2981eda14cbcSMatt Macy 2982eda14cbcSMatt Macy out: 2983eda14cbcSMatt Macy mutex_exit(&zilog->zl_issuer_lock); 29844e8d558cSMartin Matuska while ((lwb = list_remove_head(&ilwbs)) != NULL) 29854e8d558cSMartin Matuska zil_lwb_write_issue(zilog, lwb); 29864e8d558cSMartin Matuska list_destroy(&ilwbs); 29870a97523dSMartin Matuska return (wtxg); 2988eda14cbcSMatt Macy } 2989eda14cbcSMatt Macy 2990eda14cbcSMatt Macy static void 2991eda14cbcSMatt Macy zil_commit_waiter_timeout(zilog_t *zilog, zil_commit_waiter_t *zcw) 2992eda14cbcSMatt Macy { 2993eda14cbcSMatt Macy ASSERT(!MUTEX_HELD(&zilog->zl_issuer_lock)); 2994eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zcw->zcw_lock)); 2995eda14cbcSMatt Macy ASSERT3B(zcw->zcw_done, ==, B_FALSE); 2996eda14cbcSMatt Macy 2997eda14cbcSMatt Macy lwb_t *lwb = zcw->zcw_lwb; 2998eda14cbcSMatt Macy ASSERT3P(lwb, !=, NULL); 2999*315ee00fSMartin Matuska ASSERT3S(lwb->lwb_state, !=, LWB_STATE_NEW); 3000eda14cbcSMatt Macy 3001eda14cbcSMatt Macy /* 3002eda14cbcSMatt Macy * If the lwb has already been issued by another thread, we can 3003eda14cbcSMatt Macy * immediately return since there's no work to be done (the 3004eda14cbcSMatt Macy * point of this function is to issue the lwb). Additionally, we 3005eda14cbcSMatt Macy * do this prior to acquiring the zl_issuer_lock, to avoid 3006eda14cbcSMatt Macy * acquiring it when it's not necessary to do so. 3007eda14cbcSMatt Macy */ 3008*315ee00fSMartin Matuska if (lwb->lwb_state != LWB_STATE_OPENED) 3009eda14cbcSMatt Macy return; 3010eda14cbcSMatt Macy 3011eda14cbcSMatt Macy /* 30124e8d558cSMartin Matuska * In order to call zil_lwb_write_close() we must hold the 3013eda14cbcSMatt Macy * zilog's "zl_issuer_lock". We can't simply acquire that lock, 3014eda14cbcSMatt Macy * since we're already holding the commit waiter's "zcw_lock", 3015eda14cbcSMatt Macy * and those two locks are acquired in the opposite order 3016eda14cbcSMatt Macy * elsewhere. 3017eda14cbcSMatt Macy */ 3018eda14cbcSMatt Macy mutex_exit(&zcw->zcw_lock); 3019eda14cbcSMatt Macy mutex_enter(&zilog->zl_issuer_lock); 3020eda14cbcSMatt Macy mutex_enter(&zcw->zcw_lock); 3021eda14cbcSMatt Macy 3022eda14cbcSMatt Macy /* 3023eda14cbcSMatt Macy * Since we just dropped and re-acquired the commit waiter's 3024eda14cbcSMatt Macy * lock, we have to re-check to see if the waiter was marked 3025eda14cbcSMatt Macy * "done" during that process. If the waiter was marked "done", 3026eda14cbcSMatt Macy * the "lwb" pointer is no longer valid (it can be free'd after 3027eda14cbcSMatt Macy * the waiter is marked "done"), so without this check we could 3028eda14cbcSMatt Macy * wind up with a use-after-free error below. 3029eda14cbcSMatt Macy */ 30304e8d558cSMartin Matuska if (zcw->zcw_done) { 3031*315ee00fSMartin Matuska mutex_exit(&zilog->zl_issuer_lock); 3032*315ee00fSMartin Matuska return; 30334e8d558cSMartin Matuska } 3034eda14cbcSMatt Macy 3035eda14cbcSMatt Macy ASSERT3P(lwb, ==, zcw->zcw_lwb); 3036eda14cbcSMatt Macy 3037eda14cbcSMatt Macy /* 3038eda14cbcSMatt Macy * We've already checked this above, but since we hadn't acquired 3039eda14cbcSMatt Macy * the zilog's zl_issuer_lock, we have to perform this check a 3040eda14cbcSMatt Macy * second time while holding the lock. 3041eda14cbcSMatt Macy * 3042eda14cbcSMatt Macy * We don't need to hold the zl_lock since the lwb cannot transition 3043*315ee00fSMartin Matuska * from OPENED to CLOSED while we hold the zl_issuer_lock. The lwb 3044*315ee00fSMartin Matuska * _can_ transition from CLOSED to DONE, but it's OK to race with 3045eda14cbcSMatt Macy * that transition since we treat the lwb the same, whether it's in 3046*315ee00fSMartin Matuska * the CLOSED, ISSUED or DONE states. 3047eda14cbcSMatt Macy * 3048eda14cbcSMatt Macy * The important thing, is we treat the lwb differently depending on 3049*315ee00fSMartin Matuska * if it's OPENED or CLOSED, and block any other threads that might 3050*315ee00fSMartin Matuska * attempt to close/issue this lwb. For that reason we hold the 3051eda14cbcSMatt Macy * zl_issuer_lock when checking the lwb_state; we must not call 3052*315ee00fSMartin Matuska * zil_lwb_write_close() if the lwb had already been closed/issued. 3053eda14cbcSMatt Macy * 3054eda14cbcSMatt Macy * See the comment above the lwb_state_t structure definition for 3055eda14cbcSMatt Macy * more details on the lwb states, and locking requirements. 3056eda14cbcSMatt Macy */ 3057*315ee00fSMartin Matuska if (lwb->lwb_state != LWB_STATE_OPENED) { 3058*315ee00fSMartin Matuska mutex_exit(&zilog->zl_issuer_lock); 3059*315ee00fSMartin Matuska return; 30604e8d558cSMartin Matuska } 3061eda14cbcSMatt Macy 3062*315ee00fSMartin Matuska /* 3063*315ee00fSMartin Matuska * We do not need zcw_lock once we hold zl_issuer_lock and know lwb 3064*315ee00fSMartin Matuska * is still open. But we have to drop it to avoid a deadlock in case 3065*315ee00fSMartin Matuska * callback of zio issued by zil_lwb_write_issue() try to get it, 3066*315ee00fSMartin Matuska * while zil_lwb_write_issue() is blocked on attempt to issue next 3067*315ee00fSMartin Matuska * lwb it found in LWB_STATE_READY state. 3068*315ee00fSMartin Matuska */ 3069*315ee00fSMartin Matuska mutex_exit(&zcw->zcw_lock); 3070eda14cbcSMatt Macy 3071eda14cbcSMatt Macy /* 3072eda14cbcSMatt Macy * As described in the comments above zil_commit_waiter() and 3073eda14cbcSMatt Macy * zil_process_commit_list(), we need to issue this lwb's zio 3074eda14cbcSMatt Macy * since we've reached the commit waiter's timeout and it still 3075eda14cbcSMatt Macy * hasn't been issued. 3076eda14cbcSMatt Macy */ 3077*315ee00fSMartin Matuska lwb_t *nlwb = zil_lwb_write_close(zilog, lwb, LWB_STATE_NEW); 3078eda14cbcSMatt Macy 3079*315ee00fSMartin Matuska ASSERT3S(lwb->lwb_state, ==, LWB_STATE_CLOSED); 3080eda14cbcSMatt Macy 3081eda14cbcSMatt Macy /* 3082eda14cbcSMatt Macy * Since the lwb's zio hadn't been issued by the time this thread 3083eda14cbcSMatt Macy * reached its timeout, we reset the zilog's "zl_cur_used" field 3084eda14cbcSMatt Macy * to influence the zil block size selection algorithm. 3085eda14cbcSMatt Macy * 3086eda14cbcSMatt Macy * By having to issue the lwb's zio here, it means the size of the 3087eda14cbcSMatt Macy * lwb was too large, given the incoming throughput of itxs. By 3088eda14cbcSMatt Macy * setting "zl_cur_used" to zero, we communicate this fact to the 3089eda14cbcSMatt Macy * block size selection algorithm, so it can take this information 3090eda14cbcSMatt Macy * into account, and potentially select a smaller size for the 3091eda14cbcSMatt Macy * next lwb block that is allocated. 3092eda14cbcSMatt Macy */ 3093eda14cbcSMatt Macy zilog->zl_cur_used = 0; 3094eda14cbcSMatt Macy 3095eda14cbcSMatt Macy if (nlwb == NULL) { 3096eda14cbcSMatt Macy /* 30974e8d558cSMartin Matuska * When zil_lwb_write_close() returns NULL, this 3098eda14cbcSMatt Macy * indicates zio_alloc_zil() failed to allocate the 3099eda14cbcSMatt Macy * "next" lwb on-disk. When this occurs, the ZIL write 3100eda14cbcSMatt Macy * pipeline must be stalled; see the comment within the 3101eda14cbcSMatt Macy * zil_commit_writer_stall() function for more details. 3102eda14cbcSMatt Macy */ 31034e8d558cSMartin Matuska zil_lwb_write_issue(zilog, lwb); 3104eda14cbcSMatt Macy zil_commit_writer_stall(zilog); 3105eda14cbcSMatt Macy mutex_exit(&zilog->zl_issuer_lock); 3106*315ee00fSMartin Matuska } else { 3107*315ee00fSMartin Matuska mutex_exit(&zilog->zl_issuer_lock); 31084e8d558cSMartin Matuska zil_lwb_write_issue(zilog, lwb); 3109*315ee00fSMartin Matuska } 3110*315ee00fSMartin Matuska mutex_enter(&zcw->zcw_lock); 3111eda14cbcSMatt Macy } 3112eda14cbcSMatt Macy 3113eda14cbcSMatt Macy /* 3114eda14cbcSMatt Macy * This function is responsible for performing the following two tasks: 3115eda14cbcSMatt Macy * 3116eda14cbcSMatt Macy * 1. its primary responsibility is to block until the given "commit 3117eda14cbcSMatt Macy * waiter" is considered "done". 3118eda14cbcSMatt Macy * 3119eda14cbcSMatt Macy * 2. its secondary responsibility is to issue the zio for the lwb that 3120eda14cbcSMatt Macy * the given "commit waiter" is waiting on, if this function has 3121eda14cbcSMatt Macy * waited "long enough" and the lwb is still in the "open" state. 3122eda14cbcSMatt Macy * 3123eda14cbcSMatt Macy * Given a sufficient amount of itxs being generated and written using 31244e8d558cSMartin Matuska * the ZIL, the lwb's zio will be issued via the zil_lwb_assign() 3125eda14cbcSMatt Macy * function. If this does not occur, this secondary responsibility will 3126eda14cbcSMatt Macy * ensure the lwb is issued even if there is not other synchronous 3127eda14cbcSMatt Macy * activity on the system. 3128eda14cbcSMatt Macy * 3129eda14cbcSMatt Macy * For more details, see zil_process_commit_list(); more specifically, 3130eda14cbcSMatt Macy * the comment at the bottom of that function. 3131eda14cbcSMatt Macy */ 3132eda14cbcSMatt Macy static void 3133eda14cbcSMatt Macy zil_commit_waiter(zilog_t *zilog, zil_commit_waiter_t *zcw) 3134eda14cbcSMatt Macy { 3135eda14cbcSMatt Macy ASSERT(!MUTEX_HELD(&zilog->zl_lock)); 3136eda14cbcSMatt Macy ASSERT(!MUTEX_HELD(&zilog->zl_issuer_lock)); 3137eda14cbcSMatt Macy ASSERT(spa_writeable(zilog->zl_spa)); 3138eda14cbcSMatt Macy 3139eda14cbcSMatt Macy mutex_enter(&zcw->zcw_lock); 3140eda14cbcSMatt Macy 3141eda14cbcSMatt Macy /* 3142eda14cbcSMatt Macy * The timeout is scaled based on the lwb latency to avoid 3143eda14cbcSMatt Macy * significantly impacting the latency of each individual itx. 3144eda14cbcSMatt Macy * For more details, see the comment at the bottom of the 3145eda14cbcSMatt Macy * zil_process_commit_list() function. 3146eda14cbcSMatt Macy */ 3147eda14cbcSMatt Macy int pct = MAX(zfs_commit_timeout_pct, 1); 3148eda14cbcSMatt Macy hrtime_t sleep = (zilog->zl_last_lwb_latency * pct) / 100; 3149eda14cbcSMatt Macy hrtime_t wakeup = gethrtime() + sleep; 3150eda14cbcSMatt Macy boolean_t timedout = B_FALSE; 3151eda14cbcSMatt Macy 3152eda14cbcSMatt Macy while (!zcw->zcw_done) { 3153eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zcw->zcw_lock)); 3154eda14cbcSMatt Macy 3155eda14cbcSMatt Macy lwb_t *lwb = zcw->zcw_lwb; 3156eda14cbcSMatt Macy 3157eda14cbcSMatt Macy /* 3158eda14cbcSMatt Macy * Usually, the waiter will have a non-NULL lwb field here, 3159eda14cbcSMatt Macy * but it's possible for it to be NULL as a result of 3160eda14cbcSMatt Macy * zil_commit() racing with spa_sync(). 3161eda14cbcSMatt Macy * 3162eda14cbcSMatt Macy * When zil_clean() is called, it's possible for the itxg 3163eda14cbcSMatt Macy * list (which may be cleaned via a taskq) to contain 3164eda14cbcSMatt Macy * commit itxs. When this occurs, the commit waiters linked 3165eda14cbcSMatt Macy * off of these commit itxs will not be committed to an 3166eda14cbcSMatt Macy * lwb. Additionally, these commit waiters will not be 3167eda14cbcSMatt Macy * marked done until zil_commit_waiter_skip() is called via 3168eda14cbcSMatt Macy * zil_itxg_clean(). 3169eda14cbcSMatt Macy * 3170eda14cbcSMatt Macy * Thus, it's possible for this commit waiter (i.e. the 3171eda14cbcSMatt Macy * "zcw" variable) to be found in this "in between" state; 3172eda14cbcSMatt Macy * where it's "zcw_lwb" field is NULL, and it hasn't yet 3173eda14cbcSMatt Macy * been skipped, so it's "zcw_done" field is still B_FALSE. 3174eda14cbcSMatt Macy */ 3175*315ee00fSMartin Matuska IMPLY(lwb != NULL, lwb->lwb_state != LWB_STATE_NEW); 3176eda14cbcSMatt Macy 3177eda14cbcSMatt Macy if (lwb != NULL && lwb->lwb_state == LWB_STATE_OPENED) { 3178eda14cbcSMatt Macy ASSERT3B(timedout, ==, B_FALSE); 3179eda14cbcSMatt Macy 3180eda14cbcSMatt Macy /* 3181eda14cbcSMatt Macy * If the lwb hasn't been issued yet, then we 3182eda14cbcSMatt Macy * need to wait with a timeout, in case this 3183eda14cbcSMatt Macy * function needs to issue the lwb after the 3184eda14cbcSMatt Macy * timeout is reached; responsibility (2) from 3185eda14cbcSMatt Macy * the comment above this function. 3186eda14cbcSMatt Macy */ 3187eda14cbcSMatt Macy int rc = cv_timedwait_hires(&zcw->zcw_cv, 3188eda14cbcSMatt Macy &zcw->zcw_lock, wakeup, USEC2NSEC(1), 3189eda14cbcSMatt Macy CALLOUT_FLAG_ABSOLUTE); 3190eda14cbcSMatt Macy 3191eda14cbcSMatt Macy if (rc != -1 || zcw->zcw_done) 3192eda14cbcSMatt Macy continue; 3193eda14cbcSMatt Macy 3194eda14cbcSMatt Macy timedout = B_TRUE; 3195eda14cbcSMatt Macy zil_commit_waiter_timeout(zilog, zcw); 3196eda14cbcSMatt Macy 3197eda14cbcSMatt Macy if (!zcw->zcw_done) { 3198eda14cbcSMatt Macy /* 3199eda14cbcSMatt Macy * If the commit waiter has already been 3200eda14cbcSMatt Macy * marked "done", it's possible for the 3201eda14cbcSMatt Macy * waiter's lwb structure to have already 3202eda14cbcSMatt Macy * been freed. Thus, we can only reliably 3203eda14cbcSMatt Macy * make these assertions if the waiter 3204eda14cbcSMatt Macy * isn't done. 3205eda14cbcSMatt Macy */ 3206eda14cbcSMatt Macy ASSERT3P(lwb, ==, zcw->zcw_lwb); 3207eda14cbcSMatt Macy ASSERT3S(lwb->lwb_state, !=, LWB_STATE_OPENED); 3208eda14cbcSMatt Macy } 3209eda14cbcSMatt Macy } else { 3210eda14cbcSMatt Macy /* 3211eda14cbcSMatt Macy * If the lwb isn't open, then it must have already 3212eda14cbcSMatt Macy * been issued. In that case, there's no need to 3213eda14cbcSMatt Macy * use a timeout when waiting for the lwb to 3214eda14cbcSMatt Macy * complete. 3215eda14cbcSMatt Macy * 3216eda14cbcSMatt Macy * Additionally, if the lwb is NULL, the waiter 3217eda14cbcSMatt Macy * will soon be signaled and marked done via 3218eda14cbcSMatt Macy * zil_clean() and zil_itxg_clean(), so no timeout 3219eda14cbcSMatt Macy * is required. 3220eda14cbcSMatt Macy */ 3221eda14cbcSMatt Macy 3222eda14cbcSMatt Macy IMPLY(lwb != NULL, 3223*315ee00fSMartin Matuska lwb->lwb_state == LWB_STATE_CLOSED || 3224*315ee00fSMartin Matuska lwb->lwb_state == LWB_STATE_READY || 3225eda14cbcSMatt Macy lwb->lwb_state == LWB_STATE_ISSUED || 3226eda14cbcSMatt Macy lwb->lwb_state == LWB_STATE_WRITE_DONE || 3227eda14cbcSMatt Macy lwb->lwb_state == LWB_STATE_FLUSH_DONE); 3228eda14cbcSMatt Macy cv_wait(&zcw->zcw_cv, &zcw->zcw_lock); 3229eda14cbcSMatt Macy } 3230eda14cbcSMatt Macy } 3231eda14cbcSMatt Macy 3232eda14cbcSMatt Macy mutex_exit(&zcw->zcw_lock); 3233eda14cbcSMatt Macy } 3234eda14cbcSMatt Macy 3235eda14cbcSMatt Macy static zil_commit_waiter_t * 3236eda14cbcSMatt Macy zil_alloc_commit_waiter(void) 3237eda14cbcSMatt Macy { 3238eda14cbcSMatt Macy zil_commit_waiter_t *zcw = kmem_cache_alloc(zil_zcw_cache, KM_SLEEP); 3239eda14cbcSMatt Macy 3240eda14cbcSMatt Macy cv_init(&zcw->zcw_cv, NULL, CV_DEFAULT, NULL); 3241eda14cbcSMatt Macy mutex_init(&zcw->zcw_lock, NULL, MUTEX_DEFAULT, NULL); 3242eda14cbcSMatt Macy list_link_init(&zcw->zcw_node); 3243eda14cbcSMatt Macy zcw->zcw_lwb = NULL; 3244eda14cbcSMatt Macy zcw->zcw_done = B_FALSE; 3245eda14cbcSMatt Macy zcw->zcw_zio_error = 0; 3246eda14cbcSMatt Macy 3247eda14cbcSMatt Macy return (zcw); 3248eda14cbcSMatt Macy } 3249eda14cbcSMatt Macy 3250eda14cbcSMatt Macy static void 3251eda14cbcSMatt Macy zil_free_commit_waiter(zil_commit_waiter_t *zcw) 3252eda14cbcSMatt Macy { 3253eda14cbcSMatt Macy ASSERT(!list_link_active(&zcw->zcw_node)); 3254eda14cbcSMatt Macy ASSERT3P(zcw->zcw_lwb, ==, NULL); 3255eda14cbcSMatt Macy ASSERT3B(zcw->zcw_done, ==, B_TRUE); 3256eda14cbcSMatt Macy mutex_destroy(&zcw->zcw_lock); 3257eda14cbcSMatt Macy cv_destroy(&zcw->zcw_cv); 3258eda14cbcSMatt Macy kmem_cache_free(zil_zcw_cache, zcw); 3259eda14cbcSMatt Macy } 3260eda14cbcSMatt Macy 3261eda14cbcSMatt Macy /* 3262eda14cbcSMatt Macy * This function is used to create a TX_COMMIT itx and assign it. This 3263eda14cbcSMatt Macy * way, it will be linked into the ZIL's list of synchronous itxs, and 3264eda14cbcSMatt Macy * then later committed to an lwb (or skipped) when 3265eda14cbcSMatt Macy * zil_process_commit_list() is called. 3266eda14cbcSMatt Macy */ 3267eda14cbcSMatt Macy static void 3268eda14cbcSMatt Macy zil_commit_itx_assign(zilog_t *zilog, zil_commit_waiter_t *zcw) 3269eda14cbcSMatt Macy { 3270eda14cbcSMatt Macy dmu_tx_t *tx = dmu_tx_create(zilog->zl_os); 3271d411c1d6SMartin Matuska 3272d411c1d6SMartin Matuska /* 3273d411c1d6SMartin Matuska * Since we are not going to create any new dirty data, and we 3274d411c1d6SMartin Matuska * can even help with clearing the existing dirty data, we 3275d411c1d6SMartin Matuska * should not be subject to the dirty data based delays. We 3276d411c1d6SMartin Matuska * use TXG_NOTHROTTLE to bypass the delay mechanism. 3277d411c1d6SMartin Matuska */ 3278d411c1d6SMartin Matuska VERIFY0(dmu_tx_assign(tx, TXG_WAIT | TXG_NOTHROTTLE)); 3279eda14cbcSMatt Macy 3280eda14cbcSMatt Macy itx_t *itx = zil_itx_create(TX_COMMIT, sizeof (lr_t)); 3281eda14cbcSMatt Macy itx->itx_sync = B_TRUE; 3282eda14cbcSMatt Macy itx->itx_private = zcw; 3283eda14cbcSMatt Macy 3284eda14cbcSMatt Macy zil_itx_assign(zilog, itx, tx); 3285eda14cbcSMatt Macy 3286eda14cbcSMatt Macy dmu_tx_commit(tx); 3287eda14cbcSMatt Macy } 3288eda14cbcSMatt Macy 3289eda14cbcSMatt Macy /* 3290eda14cbcSMatt Macy * Commit ZFS Intent Log transactions (itxs) to stable storage. 3291eda14cbcSMatt Macy * 3292eda14cbcSMatt Macy * When writing ZIL transactions to the on-disk representation of the 3293eda14cbcSMatt Macy * ZIL, the itxs are committed to a Log Write Block (lwb). Multiple 3294eda14cbcSMatt Macy * itxs can be committed to a single lwb. Once a lwb is written and 3295eda14cbcSMatt Macy * committed to stable storage (i.e. the lwb is written, and vdevs have 3296eda14cbcSMatt Macy * been flushed), each itx that was committed to that lwb is also 3297eda14cbcSMatt Macy * considered to be committed to stable storage. 3298eda14cbcSMatt Macy * 3299eda14cbcSMatt Macy * When an itx is committed to an lwb, the log record (lr_t) contained 3300eda14cbcSMatt Macy * by the itx is copied into the lwb's zio buffer, and once this buffer 3301eda14cbcSMatt Macy * is written to disk, it becomes an on-disk ZIL block. 3302eda14cbcSMatt Macy * 3303eda14cbcSMatt Macy * As itxs are generated, they're inserted into the ZIL's queue of 3304eda14cbcSMatt Macy * uncommitted itxs. The semantics of zil_commit() are such that it will 3305eda14cbcSMatt Macy * block until all itxs that were in the queue when it was called, are 3306eda14cbcSMatt Macy * committed to stable storage. 3307eda14cbcSMatt Macy * 3308eda14cbcSMatt Macy * If "foid" is zero, this means all "synchronous" and "asynchronous" 3309eda14cbcSMatt Macy * itxs, for all objects in the dataset, will be committed to stable 3310eda14cbcSMatt Macy * storage prior to zil_commit() returning. If "foid" is non-zero, all 3311eda14cbcSMatt Macy * "synchronous" itxs for all objects, but only "asynchronous" itxs 3312eda14cbcSMatt Macy * that correspond to the foid passed in, will be committed to stable 3313eda14cbcSMatt Macy * storage prior to zil_commit() returning. 3314eda14cbcSMatt Macy * 3315eda14cbcSMatt Macy * Generally speaking, when zil_commit() is called, the consumer doesn't 3316eda14cbcSMatt Macy * actually care about _all_ of the uncommitted itxs. Instead, they're 3317eda14cbcSMatt Macy * simply trying to waiting for a specific itx to be committed to disk, 3318eda14cbcSMatt Macy * but the interface(s) for interacting with the ZIL don't allow such 3319eda14cbcSMatt Macy * fine-grained communication. A better interface would allow a consumer 3320eda14cbcSMatt Macy * to create and assign an itx, and then pass a reference to this itx to 3321eda14cbcSMatt Macy * zil_commit(); such that zil_commit() would return as soon as that 3322eda14cbcSMatt Macy * specific itx was committed to disk (instead of waiting for _all_ 3323eda14cbcSMatt Macy * itxs to be committed). 3324eda14cbcSMatt Macy * 3325eda14cbcSMatt Macy * When a thread calls zil_commit() a special "commit itx" will be 3326eda14cbcSMatt Macy * generated, along with a corresponding "waiter" for this commit itx. 3327eda14cbcSMatt Macy * zil_commit() will wait on this waiter's CV, such that when the waiter 3328eda14cbcSMatt Macy * is marked done, and signaled, zil_commit() will return. 3329eda14cbcSMatt Macy * 3330eda14cbcSMatt Macy * This commit itx is inserted into the queue of uncommitted itxs. This 3331eda14cbcSMatt Macy * provides an easy mechanism for determining which itxs were in the 3332eda14cbcSMatt Macy * queue prior to zil_commit() having been called, and which itxs were 3333eda14cbcSMatt Macy * added after zil_commit() was called. 3334eda14cbcSMatt Macy * 3335e3aa18adSMartin Matuska * The commit itx is special; it doesn't have any on-disk representation. 3336eda14cbcSMatt Macy * When a commit itx is "committed" to an lwb, the waiter associated 3337eda14cbcSMatt Macy * with it is linked onto the lwb's list of waiters. Then, when that lwb 3338eda14cbcSMatt Macy * completes, each waiter on the lwb's list is marked done and signaled 3339eda14cbcSMatt Macy * -- allowing the thread waiting on the waiter to return from zil_commit(). 3340eda14cbcSMatt Macy * 3341eda14cbcSMatt Macy * It's important to point out a few critical factors that allow us 3342eda14cbcSMatt Macy * to make use of the commit itxs, commit waiters, per-lwb lists of 3343eda14cbcSMatt Macy * commit waiters, and zio completion callbacks like we're doing: 3344eda14cbcSMatt Macy * 3345eda14cbcSMatt Macy * 1. The list of waiters for each lwb is traversed, and each commit 3346eda14cbcSMatt Macy * waiter is marked "done" and signaled, in the zio completion 3347eda14cbcSMatt Macy * callback of the lwb's zio[*]. 3348eda14cbcSMatt Macy * 3349eda14cbcSMatt Macy * * Actually, the waiters are signaled in the zio completion 3350eda14cbcSMatt Macy * callback of the root zio for the DKIOCFLUSHWRITECACHE commands 3351eda14cbcSMatt Macy * that are sent to the vdevs upon completion of the lwb zio. 3352eda14cbcSMatt Macy * 3353eda14cbcSMatt Macy * 2. When the itxs are inserted into the ZIL's queue of uncommitted 3354eda14cbcSMatt Macy * itxs, the order in which they are inserted is preserved[*]; as 3355eda14cbcSMatt Macy * itxs are added to the queue, they are added to the tail of 3356eda14cbcSMatt Macy * in-memory linked lists. 3357eda14cbcSMatt Macy * 3358eda14cbcSMatt Macy * When committing the itxs to lwbs (to be written to disk), they 3359eda14cbcSMatt Macy * are committed in the same order in which the itxs were added to 3360eda14cbcSMatt Macy * the uncommitted queue's linked list(s); i.e. the linked list of 3361eda14cbcSMatt Macy * itxs to commit is traversed from head to tail, and each itx is 3362eda14cbcSMatt Macy * committed to an lwb in that order. 3363eda14cbcSMatt Macy * 3364eda14cbcSMatt Macy * * To clarify: 3365eda14cbcSMatt Macy * 3366eda14cbcSMatt Macy * - the order of "sync" itxs is preserved w.r.t. other 3367eda14cbcSMatt Macy * "sync" itxs, regardless of the corresponding objects. 3368eda14cbcSMatt Macy * - the order of "async" itxs is preserved w.r.t. other 3369eda14cbcSMatt Macy * "async" itxs corresponding to the same object. 3370eda14cbcSMatt Macy * - the order of "async" itxs is *not* preserved w.r.t. other 3371eda14cbcSMatt Macy * "async" itxs corresponding to different objects. 3372eda14cbcSMatt Macy * - the order of "sync" itxs w.r.t. "async" itxs (or vice 3373eda14cbcSMatt Macy * versa) is *not* preserved, even for itxs that correspond 3374eda14cbcSMatt Macy * to the same object. 3375eda14cbcSMatt Macy * 3376eda14cbcSMatt Macy * For more details, see: zil_itx_assign(), zil_async_to_sync(), 3377eda14cbcSMatt Macy * zil_get_commit_list(), and zil_process_commit_list(). 3378eda14cbcSMatt Macy * 3379eda14cbcSMatt Macy * 3. The lwbs represent a linked list of blocks on disk. Thus, any 3380eda14cbcSMatt Macy * lwb cannot be considered committed to stable storage, until its 3381eda14cbcSMatt Macy * "previous" lwb is also committed to stable storage. This fact, 3382eda14cbcSMatt Macy * coupled with the fact described above, means that itxs are 3383eda14cbcSMatt Macy * committed in (roughly) the order in which they were generated. 3384eda14cbcSMatt Macy * This is essential because itxs are dependent on prior itxs. 3385eda14cbcSMatt Macy * Thus, we *must not* deem an itx as being committed to stable 3386eda14cbcSMatt Macy * storage, until *all* prior itxs have also been committed to 3387eda14cbcSMatt Macy * stable storage. 3388eda14cbcSMatt Macy * 3389eda14cbcSMatt Macy * To enforce this ordering of lwb zio's, while still leveraging as 3390eda14cbcSMatt Macy * much of the underlying storage performance as possible, we rely 3391eda14cbcSMatt Macy * on two fundamental concepts: 3392eda14cbcSMatt Macy * 3393eda14cbcSMatt Macy * 1. The creation and issuance of lwb zio's is protected by 3394eda14cbcSMatt Macy * the zilog's "zl_issuer_lock", which ensures only a single 3395eda14cbcSMatt Macy * thread is creating and/or issuing lwb's at a time 3396eda14cbcSMatt Macy * 2. The "previous" lwb is a child of the "current" lwb 3397eda14cbcSMatt Macy * (leveraging the zio parent-child dependency graph) 3398eda14cbcSMatt Macy * 3399eda14cbcSMatt Macy * By relying on this parent-child zio relationship, we can have 3400eda14cbcSMatt Macy * many lwb zio's concurrently issued to the underlying storage, 3401eda14cbcSMatt Macy * but the order in which they complete will be the same order in 3402eda14cbcSMatt Macy * which they were created. 3403eda14cbcSMatt Macy */ 3404eda14cbcSMatt Macy void 3405eda14cbcSMatt Macy zil_commit(zilog_t *zilog, uint64_t foid) 3406eda14cbcSMatt Macy { 3407eda14cbcSMatt Macy /* 3408eda14cbcSMatt Macy * We should never attempt to call zil_commit on a snapshot for 3409eda14cbcSMatt Macy * a couple of reasons: 3410eda14cbcSMatt Macy * 3411eda14cbcSMatt Macy * 1. A snapshot may never be modified, thus it cannot have any 3412eda14cbcSMatt Macy * in-flight itxs that would have modified the dataset. 3413eda14cbcSMatt Macy * 3414eda14cbcSMatt Macy * 2. By design, when zil_commit() is called, a commit itx will 3415eda14cbcSMatt Macy * be assigned to this zilog; as a result, the zilog will be 3416eda14cbcSMatt Macy * dirtied. We must not dirty the zilog of a snapshot; there's 3417eda14cbcSMatt Macy * checks in the code that enforce this invariant, and will 3418eda14cbcSMatt Macy * cause a panic if it's not upheld. 3419eda14cbcSMatt Macy */ 3420eda14cbcSMatt Macy ASSERT3B(dmu_objset_is_snapshot(zilog->zl_os), ==, B_FALSE); 3421eda14cbcSMatt Macy 3422eda14cbcSMatt Macy if (zilog->zl_sync == ZFS_SYNC_DISABLED) 3423eda14cbcSMatt Macy return; 3424eda14cbcSMatt Macy 3425eda14cbcSMatt Macy if (!spa_writeable(zilog->zl_spa)) { 3426eda14cbcSMatt Macy /* 3427eda14cbcSMatt Macy * If the SPA is not writable, there should never be any 3428eda14cbcSMatt Macy * pending itxs waiting to be committed to disk. If that 3429eda14cbcSMatt Macy * weren't true, we'd skip writing those itxs out, and 3430eda14cbcSMatt Macy * would break the semantics of zil_commit(); thus, we're 3431eda14cbcSMatt Macy * verifying that truth before we return to the caller. 3432eda14cbcSMatt Macy */ 3433eda14cbcSMatt Macy ASSERT(list_is_empty(&zilog->zl_lwb_list)); 3434eda14cbcSMatt Macy ASSERT3P(zilog->zl_last_lwb_opened, ==, NULL); 3435eda14cbcSMatt Macy for (int i = 0; i < TXG_SIZE; i++) 3436eda14cbcSMatt Macy ASSERT3P(zilog->zl_itxg[i].itxg_itxs, ==, NULL); 3437eda14cbcSMatt Macy return; 3438eda14cbcSMatt Macy } 3439eda14cbcSMatt Macy 3440eda14cbcSMatt Macy /* 3441eda14cbcSMatt Macy * If the ZIL is suspended, we don't want to dirty it by calling 3442eda14cbcSMatt Macy * zil_commit_itx_assign() below, nor can we write out 3443eda14cbcSMatt Macy * lwbs like would be done in zil_commit_write(). Thus, we 3444eda14cbcSMatt Macy * simply rely on txg_wait_synced() to maintain the necessary 3445eda14cbcSMatt Macy * semantics, and avoid calling those functions altogether. 3446eda14cbcSMatt Macy */ 3447eda14cbcSMatt Macy if (zilog->zl_suspend > 0) { 3448eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, 0); 3449eda14cbcSMatt Macy return; 3450eda14cbcSMatt Macy } 3451eda14cbcSMatt Macy 3452eda14cbcSMatt Macy zil_commit_impl(zilog, foid); 3453eda14cbcSMatt Macy } 3454eda14cbcSMatt Macy 3455eda14cbcSMatt Macy void 3456eda14cbcSMatt Macy zil_commit_impl(zilog_t *zilog, uint64_t foid) 3457eda14cbcSMatt Macy { 3458271171e0SMartin Matuska ZIL_STAT_BUMP(zilog, zil_commit_count); 3459eda14cbcSMatt Macy 3460eda14cbcSMatt Macy /* 3461eda14cbcSMatt Macy * Move the "async" itxs for the specified foid to the "sync" 3462eda14cbcSMatt Macy * queues, such that they will be later committed (or skipped) 3463eda14cbcSMatt Macy * to an lwb when zil_process_commit_list() is called. 3464eda14cbcSMatt Macy * 3465eda14cbcSMatt Macy * Since these "async" itxs must be committed prior to this 3466eda14cbcSMatt Macy * call to zil_commit returning, we must perform this operation 3467eda14cbcSMatt Macy * before we call zil_commit_itx_assign(). 3468eda14cbcSMatt Macy */ 3469eda14cbcSMatt Macy zil_async_to_sync(zilog, foid); 3470eda14cbcSMatt Macy 3471eda14cbcSMatt Macy /* 3472eda14cbcSMatt Macy * We allocate a new "waiter" structure which will initially be 3473eda14cbcSMatt Macy * linked to the commit itx using the itx's "itx_private" field. 3474eda14cbcSMatt Macy * Since the commit itx doesn't represent any on-disk state, 3475eda14cbcSMatt Macy * when it's committed to an lwb, rather than copying the its 3476eda14cbcSMatt Macy * lr_t into the lwb's buffer, the commit itx's "waiter" will be 3477eda14cbcSMatt Macy * added to the lwb's list of waiters. Then, when the lwb is 3478eda14cbcSMatt Macy * committed to stable storage, each waiter in the lwb's list of 3479eda14cbcSMatt Macy * waiters will be marked "done", and signalled. 3480eda14cbcSMatt Macy * 3481eda14cbcSMatt Macy * We must create the waiter and assign the commit itx prior to 3482eda14cbcSMatt Macy * calling zil_commit_writer(), or else our specific commit itx 3483eda14cbcSMatt Macy * is not guaranteed to be committed to an lwb prior to calling 3484eda14cbcSMatt Macy * zil_commit_waiter(). 3485eda14cbcSMatt Macy */ 3486eda14cbcSMatt Macy zil_commit_waiter_t *zcw = zil_alloc_commit_waiter(); 3487eda14cbcSMatt Macy zil_commit_itx_assign(zilog, zcw); 3488eda14cbcSMatt Macy 34890a97523dSMartin Matuska uint64_t wtxg = zil_commit_writer(zilog, zcw); 3490eda14cbcSMatt Macy zil_commit_waiter(zilog, zcw); 3491eda14cbcSMatt Macy 3492eda14cbcSMatt Macy if (zcw->zcw_zio_error != 0) { 3493eda14cbcSMatt Macy /* 3494eda14cbcSMatt Macy * If there was an error writing out the ZIL blocks that 3495eda14cbcSMatt Macy * this thread is waiting on, then we fallback to 3496eda14cbcSMatt Macy * relying on spa_sync() to write out the data this 3497eda14cbcSMatt Macy * thread is waiting on. Obviously this has performance 3498eda14cbcSMatt Macy * implications, but the expectation is for this to be 3499eda14cbcSMatt Macy * an exceptional case, and shouldn't occur often. 3500eda14cbcSMatt Macy */ 3501eda14cbcSMatt Macy DTRACE_PROBE2(zil__commit__io__error, 3502eda14cbcSMatt Macy zilog_t *, zilog, zil_commit_waiter_t *, zcw); 3503eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, 0); 35040a97523dSMartin Matuska } else if (wtxg != 0) { 35050a97523dSMartin Matuska txg_wait_synced(zilog->zl_dmu_pool, wtxg); 3506eda14cbcSMatt Macy } 3507eda14cbcSMatt Macy 3508eda14cbcSMatt Macy zil_free_commit_waiter(zcw); 3509eda14cbcSMatt Macy } 3510eda14cbcSMatt Macy 3511eda14cbcSMatt Macy /* 3512eda14cbcSMatt Macy * Called in syncing context to free committed log blocks and update log header. 3513eda14cbcSMatt Macy */ 3514eda14cbcSMatt Macy void 3515eda14cbcSMatt Macy zil_sync(zilog_t *zilog, dmu_tx_t *tx) 3516eda14cbcSMatt Macy { 3517eda14cbcSMatt Macy zil_header_t *zh = zil_header_in_syncing_context(zilog); 3518eda14cbcSMatt Macy uint64_t txg = dmu_tx_get_txg(tx); 3519eda14cbcSMatt Macy spa_t *spa = zilog->zl_spa; 3520eda14cbcSMatt Macy uint64_t *replayed_seq = &zilog->zl_replayed_seq[txg & TXG_MASK]; 3521eda14cbcSMatt Macy lwb_t *lwb; 3522eda14cbcSMatt Macy 3523eda14cbcSMatt Macy /* 3524eda14cbcSMatt Macy * We don't zero out zl_destroy_txg, so make sure we don't try 3525eda14cbcSMatt Macy * to destroy it twice. 3526eda14cbcSMatt Macy */ 3527eda14cbcSMatt Macy if (spa_sync_pass(spa) != 1) 3528eda14cbcSMatt Macy return; 3529eda14cbcSMatt Macy 3530e3aa18adSMartin Matuska zil_lwb_flush_wait_all(zilog, txg); 3531e3aa18adSMartin Matuska 3532eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 3533eda14cbcSMatt Macy 3534eda14cbcSMatt Macy ASSERT(zilog->zl_stop_sync == 0); 3535eda14cbcSMatt Macy 3536eda14cbcSMatt Macy if (*replayed_seq != 0) { 3537eda14cbcSMatt Macy ASSERT(zh->zh_replay_seq < *replayed_seq); 3538eda14cbcSMatt Macy zh->zh_replay_seq = *replayed_seq; 3539eda14cbcSMatt Macy *replayed_seq = 0; 3540eda14cbcSMatt Macy } 3541eda14cbcSMatt Macy 3542eda14cbcSMatt Macy if (zilog->zl_destroy_txg == txg) { 3543eda14cbcSMatt Macy blkptr_t blk = zh->zh_log; 3544c03c5b1cSMartin Matuska dsl_dataset_t *ds = dmu_objset_ds(zilog->zl_os); 3545eda14cbcSMatt Macy 3546c0a83fe0SMartin Matuska ASSERT(list_is_empty(&zilog->zl_lwb_list)); 3547eda14cbcSMatt Macy 3548da5137abSMartin Matuska memset(zh, 0, sizeof (zil_header_t)); 3549da5137abSMartin Matuska memset(zilog->zl_replayed_seq, 0, 3550da5137abSMartin Matuska sizeof (zilog->zl_replayed_seq)); 3551eda14cbcSMatt Macy 3552eda14cbcSMatt Macy if (zilog->zl_keep_first) { 3553eda14cbcSMatt Macy /* 3554eda14cbcSMatt Macy * If this block was part of log chain that couldn't 3555eda14cbcSMatt Macy * be claimed because a device was missing during 3556eda14cbcSMatt Macy * zil_claim(), but that device later returns, 3557eda14cbcSMatt Macy * then this block could erroneously appear valid. 3558eda14cbcSMatt Macy * To guard against this, assign a new GUID to the new 3559eda14cbcSMatt Macy * log chain so it doesn't matter what blk points to. 3560eda14cbcSMatt Macy */ 3561eda14cbcSMatt Macy zil_init_log_chain(zilog, &blk); 3562eda14cbcSMatt Macy zh->zh_log = blk; 3563c03c5b1cSMartin Matuska } else { 3564c03c5b1cSMartin Matuska /* 3565c03c5b1cSMartin Matuska * A destroyed ZIL chain can't contain any TX_SETSAXATTR 3566c03c5b1cSMartin Matuska * records. So, deactivate the feature for this dataset. 3567c03c5b1cSMartin Matuska * We activate it again when we start a new ZIL chain. 3568c03c5b1cSMartin Matuska */ 3569c03c5b1cSMartin Matuska if (dsl_dataset_feature_is_active(ds, 3570c03c5b1cSMartin Matuska SPA_FEATURE_ZILSAXATTR)) 3571c03c5b1cSMartin Matuska dsl_dataset_deactivate_feature(ds, 3572c03c5b1cSMartin Matuska SPA_FEATURE_ZILSAXATTR, tx); 3573eda14cbcSMatt Macy } 3574eda14cbcSMatt Macy } 3575eda14cbcSMatt Macy 3576eda14cbcSMatt Macy while ((lwb = list_head(&zilog->zl_lwb_list)) != NULL) { 3577eda14cbcSMatt Macy zh->zh_log = lwb->lwb_blk; 3578c0a83fe0SMartin Matuska if (lwb->lwb_state != LWB_STATE_FLUSH_DONE || 3579*315ee00fSMartin Matuska lwb->lwb_alloc_txg > txg || lwb->lwb_max_txg > txg) 3580eda14cbcSMatt Macy break; 3581eda14cbcSMatt Macy list_remove(&zilog->zl_lwb_list, lwb); 3582*315ee00fSMartin Matuska if (!BP_IS_HOLE(&lwb->lwb_blk)) 3583eda14cbcSMatt Macy zio_free(spa, txg, &lwb->lwb_blk); 3584eda14cbcSMatt Macy zil_free_lwb(zilog, lwb); 3585eda14cbcSMatt Macy 3586eda14cbcSMatt Macy /* 3587eda14cbcSMatt Macy * If we don't have anything left in the lwb list then 3588eda14cbcSMatt Macy * we've had an allocation failure and we need to zero 3589eda14cbcSMatt Macy * out the zil_header blkptr so that we don't end 3590eda14cbcSMatt Macy * up freeing the same block twice. 3591eda14cbcSMatt Macy */ 3592c0a83fe0SMartin Matuska if (list_is_empty(&zilog->zl_lwb_list)) 3593eda14cbcSMatt Macy BP_ZERO(&zh->zh_log); 3594eda14cbcSMatt Macy } 3595eda14cbcSMatt Macy 3596eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3597eda14cbcSMatt Macy } 3598eda14cbcSMatt Macy 3599eda14cbcSMatt Macy static int 3600eda14cbcSMatt Macy zil_lwb_cons(void *vbuf, void *unused, int kmflag) 3601eda14cbcSMatt Macy { 3602e92ffd9bSMartin Matuska (void) unused, (void) kmflag; 3603eda14cbcSMatt Macy lwb_t *lwb = vbuf; 3604eda14cbcSMatt Macy list_create(&lwb->lwb_itxs, sizeof (itx_t), offsetof(itx_t, itx_node)); 3605eda14cbcSMatt Macy list_create(&lwb->lwb_waiters, sizeof (zil_commit_waiter_t), 3606eda14cbcSMatt Macy offsetof(zil_commit_waiter_t, zcw_node)); 3607eda14cbcSMatt Macy avl_create(&lwb->lwb_vdev_tree, zil_lwb_vdev_compare, 3608eda14cbcSMatt Macy sizeof (zil_vdev_node_t), offsetof(zil_vdev_node_t, zv_node)); 3609eda14cbcSMatt Macy mutex_init(&lwb->lwb_vdev_lock, NULL, MUTEX_DEFAULT, NULL); 3610eda14cbcSMatt Macy return (0); 3611eda14cbcSMatt Macy } 3612eda14cbcSMatt Macy 3613eda14cbcSMatt Macy static void 3614eda14cbcSMatt Macy zil_lwb_dest(void *vbuf, void *unused) 3615eda14cbcSMatt Macy { 3616e92ffd9bSMartin Matuska (void) unused; 3617eda14cbcSMatt Macy lwb_t *lwb = vbuf; 3618eda14cbcSMatt Macy mutex_destroy(&lwb->lwb_vdev_lock); 3619eda14cbcSMatt Macy avl_destroy(&lwb->lwb_vdev_tree); 3620eda14cbcSMatt Macy list_destroy(&lwb->lwb_waiters); 3621eda14cbcSMatt Macy list_destroy(&lwb->lwb_itxs); 3622eda14cbcSMatt Macy } 3623eda14cbcSMatt Macy 3624eda14cbcSMatt Macy void 3625eda14cbcSMatt Macy zil_init(void) 3626eda14cbcSMatt Macy { 3627eda14cbcSMatt Macy zil_lwb_cache = kmem_cache_create("zil_lwb_cache", 3628eda14cbcSMatt Macy sizeof (lwb_t), 0, zil_lwb_cons, zil_lwb_dest, NULL, NULL, NULL, 0); 3629eda14cbcSMatt Macy 3630eda14cbcSMatt Macy zil_zcw_cache = kmem_cache_create("zil_zcw_cache", 3631eda14cbcSMatt Macy sizeof (zil_commit_waiter_t), 0, NULL, NULL, NULL, NULL, NULL, 0); 3632eda14cbcSMatt Macy 3633271171e0SMartin Matuska zil_sums_init(&zil_sums_global); 3634271171e0SMartin Matuska zil_kstats_global = kstat_create("zfs", 0, "zil", "misc", 3635eda14cbcSMatt Macy KSTAT_TYPE_NAMED, sizeof (zil_stats) / sizeof (kstat_named_t), 3636eda14cbcSMatt Macy KSTAT_FLAG_VIRTUAL); 3637eda14cbcSMatt Macy 3638271171e0SMartin Matuska if (zil_kstats_global != NULL) { 3639271171e0SMartin Matuska zil_kstats_global->ks_data = &zil_stats; 3640271171e0SMartin Matuska zil_kstats_global->ks_update = zil_kstats_global_update; 3641271171e0SMartin Matuska zil_kstats_global->ks_private = NULL; 3642271171e0SMartin Matuska kstat_install(zil_kstats_global); 3643eda14cbcSMatt Macy } 3644eda14cbcSMatt Macy } 3645eda14cbcSMatt Macy 3646eda14cbcSMatt Macy void 3647eda14cbcSMatt Macy zil_fini(void) 3648eda14cbcSMatt Macy { 3649eda14cbcSMatt Macy kmem_cache_destroy(zil_zcw_cache); 3650eda14cbcSMatt Macy kmem_cache_destroy(zil_lwb_cache); 3651eda14cbcSMatt Macy 3652271171e0SMartin Matuska if (zil_kstats_global != NULL) { 3653271171e0SMartin Matuska kstat_delete(zil_kstats_global); 3654271171e0SMartin Matuska zil_kstats_global = NULL; 3655eda14cbcSMatt Macy } 3656271171e0SMartin Matuska 3657271171e0SMartin Matuska zil_sums_fini(&zil_sums_global); 3658eda14cbcSMatt Macy } 3659eda14cbcSMatt Macy 3660eda14cbcSMatt Macy void 3661eda14cbcSMatt Macy zil_set_sync(zilog_t *zilog, uint64_t sync) 3662eda14cbcSMatt Macy { 3663eda14cbcSMatt Macy zilog->zl_sync = sync; 3664eda14cbcSMatt Macy } 3665eda14cbcSMatt Macy 3666eda14cbcSMatt Macy void 3667eda14cbcSMatt Macy zil_set_logbias(zilog_t *zilog, uint64_t logbias) 3668eda14cbcSMatt Macy { 3669eda14cbcSMatt Macy zilog->zl_logbias = logbias; 3670eda14cbcSMatt Macy } 3671eda14cbcSMatt Macy 3672eda14cbcSMatt Macy zilog_t * 3673eda14cbcSMatt Macy zil_alloc(objset_t *os, zil_header_t *zh_phys) 3674eda14cbcSMatt Macy { 3675eda14cbcSMatt Macy zilog_t *zilog; 3676eda14cbcSMatt Macy 3677eda14cbcSMatt Macy zilog = kmem_zalloc(sizeof (zilog_t), KM_SLEEP); 3678eda14cbcSMatt Macy 3679eda14cbcSMatt Macy zilog->zl_header = zh_phys; 3680eda14cbcSMatt Macy zilog->zl_os = os; 3681eda14cbcSMatt Macy zilog->zl_spa = dmu_objset_spa(os); 3682eda14cbcSMatt Macy zilog->zl_dmu_pool = dmu_objset_pool(os); 3683eda14cbcSMatt Macy zilog->zl_destroy_txg = TXG_INITIAL - 1; 3684eda14cbcSMatt Macy zilog->zl_logbias = dmu_objset_logbias(os); 3685eda14cbcSMatt Macy zilog->zl_sync = dmu_objset_syncprop(os); 3686eda14cbcSMatt Macy zilog->zl_dirty_max_txg = 0; 3687eda14cbcSMatt Macy zilog->zl_last_lwb_opened = NULL; 3688eda14cbcSMatt Macy zilog->zl_last_lwb_latency = 0; 3689eda14cbcSMatt Macy zilog->zl_max_block_size = zil_maxblocksize; 3690eda14cbcSMatt Macy 3691eda14cbcSMatt Macy mutex_init(&zilog->zl_lock, NULL, MUTEX_DEFAULT, NULL); 3692eda14cbcSMatt Macy mutex_init(&zilog->zl_issuer_lock, NULL, MUTEX_DEFAULT, NULL); 3693e3aa18adSMartin Matuska mutex_init(&zilog->zl_lwb_io_lock, NULL, MUTEX_DEFAULT, NULL); 3694eda14cbcSMatt Macy 3695eda14cbcSMatt Macy for (int i = 0; i < TXG_SIZE; i++) { 3696eda14cbcSMatt Macy mutex_init(&zilog->zl_itxg[i].itxg_lock, NULL, 3697eda14cbcSMatt Macy MUTEX_DEFAULT, NULL); 3698eda14cbcSMatt Macy } 3699eda14cbcSMatt Macy 3700eda14cbcSMatt Macy list_create(&zilog->zl_lwb_list, sizeof (lwb_t), 3701eda14cbcSMatt Macy offsetof(lwb_t, lwb_node)); 3702eda14cbcSMatt Macy 3703eda14cbcSMatt Macy list_create(&zilog->zl_itx_commit_list, sizeof (itx_t), 3704eda14cbcSMatt Macy offsetof(itx_t, itx_node)); 3705eda14cbcSMatt Macy 3706eda14cbcSMatt Macy cv_init(&zilog->zl_cv_suspend, NULL, CV_DEFAULT, NULL); 3707e3aa18adSMartin Matuska cv_init(&zilog->zl_lwb_io_cv, NULL, CV_DEFAULT, NULL); 3708eda14cbcSMatt Macy 3709eda14cbcSMatt Macy return (zilog); 3710eda14cbcSMatt Macy } 3711eda14cbcSMatt Macy 3712eda14cbcSMatt Macy void 3713eda14cbcSMatt Macy zil_free(zilog_t *zilog) 3714eda14cbcSMatt Macy { 3715eda14cbcSMatt Macy int i; 3716eda14cbcSMatt Macy 3717eda14cbcSMatt Macy zilog->zl_stop_sync = 1; 3718eda14cbcSMatt Macy 3719eda14cbcSMatt Macy ASSERT0(zilog->zl_suspend); 3720eda14cbcSMatt Macy ASSERT0(zilog->zl_suspending); 3721eda14cbcSMatt Macy 3722eda14cbcSMatt Macy ASSERT(list_is_empty(&zilog->zl_lwb_list)); 3723eda14cbcSMatt Macy list_destroy(&zilog->zl_lwb_list); 3724eda14cbcSMatt Macy 3725eda14cbcSMatt Macy ASSERT(list_is_empty(&zilog->zl_itx_commit_list)); 3726eda14cbcSMatt Macy list_destroy(&zilog->zl_itx_commit_list); 3727eda14cbcSMatt Macy 3728eda14cbcSMatt Macy for (i = 0; i < TXG_SIZE; i++) { 3729eda14cbcSMatt Macy /* 3730eda14cbcSMatt Macy * It's possible for an itx to be generated that doesn't dirty 3731eda14cbcSMatt Macy * a txg (e.g. ztest TX_TRUNCATE). So there's no zil_clean() 3732eda14cbcSMatt Macy * callback to remove the entry. We remove those here. 3733eda14cbcSMatt Macy * 3734eda14cbcSMatt Macy * Also free up the ziltest itxs. 3735eda14cbcSMatt Macy */ 3736eda14cbcSMatt Macy if (zilog->zl_itxg[i].itxg_itxs) 3737eda14cbcSMatt Macy zil_itxg_clean(zilog->zl_itxg[i].itxg_itxs); 3738eda14cbcSMatt Macy mutex_destroy(&zilog->zl_itxg[i].itxg_lock); 3739eda14cbcSMatt Macy } 3740eda14cbcSMatt Macy 3741eda14cbcSMatt Macy mutex_destroy(&zilog->zl_issuer_lock); 3742eda14cbcSMatt Macy mutex_destroy(&zilog->zl_lock); 3743e3aa18adSMartin Matuska mutex_destroy(&zilog->zl_lwb_io_lock); 3744eda14cbcSMatt Macy 3745eda14cbcSMatt Macy cv_destroy(&zilog->zl_cv_suspend); 3746e3aa18adSMartin Matuska cv_destroy(&zilog->zl_lwb_io_cv); 3747eda14cbcSMatt Macy 3748eda14cbcSMatt Macy kmem_free(zilog, sizeof (zilog_t)); 3749eda14cbcSMatt Macy } 3750eda14cbcSMatt Macy 3751eda14cbcSMatt Macy /* 3752eda14cbcSMatt Macy * Open an intent log. 3753eda14cbcSMatt Macy */ 3754eda14cbcSMatt Macy zilog_t * 3755271171e0SMartin Matuska zil_open(objset_t *os, zil_get_data_t *get_data, zil_sums_t *zil_sums) 3756eda14cbcSMatt Macy { 3757eda14cbcSMatt Macy zilog_t *zilog = dmu_objset_zil(os); 3758eda14cbcSMatt Macy 3759eda14cbcSMatt Macy ASSERT3P(zilog->zl_get_data, ==, NULL); 3760eda14cbcSMatt Macy ASSERT3P(zilog->zl_last_lwb_opened, ==, NULL); 3761eda14cbcSMatt Macy ASSERT(list_is_empty(&zilog->zl_lwb_list)); 3762eda14cbcSMatt Macy 3763eda14cbcSMatt Macy zilog->zl_get_data = get_data; 3764271171e0SMartin Matuska zilog->zl_sums = zil_sums; 3765eda14cbcSMatt Macy 3766eda14cbcSMatt Macy return (zilog); 3767eda14cbcSMatt Macy } 3768eda14cbcSMatt Macy 3769eda14cbcSMatt Macy /* 3770eda14cbcSMatt Macy * Close an intent log. 3771eda14cbcSMatt Macy */ 3772eda14cbcSMatt Macy void 3773eda14cbcSMatt Macy zil_close(zilog_t *zilog) 3774eda14cbcSMatt Macy { 3775eda14cbcSMatt Macy lwb_t *lwb; 3776eda14cbcSMatt Macy uint64_t txg; 3777eda14cbcSMatt Macy 3778eda14cbcSMatt Macy if (!dmu_objset_is_snapshot(zilog->zl_os)) { 3779eda14cbcSMatt Macy zil_commit(zilog, 0); 3780eda14cbcSMatt Macy } else { 3781c0a83fe0SMartin Matuska ASSERT(list_is_empty(&zilog->zl_lwb_list)); 3782eda14cbcSMatt Macy ASSERT0(zilog->zl_dirty_max_txg); 3783eda14cbcSMatt Macy ASSERT3B(zilog_is_dirty(zilog), ==, B_FALSE); 3784eda14cbcSMatt Macy } 3785eda14cbcSMatt Macy 3786eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 3787eda14cbcSMatt Macy txg = zilog->zl_dirty_max_txg; 3788*315ee00fSMartin Matuska lwb = list_tail(&zilog->zl_lwb_list); 3789*315ee00fSMartin Matuska if (lwb != NULL) { 3790*315ee00fSMartin Matuska txg = MAX(txg, lwb->lwb_alloc_txg); 3791*315ee00fSMartin Matuska txg = MAX(txg, lwb->lwb_max_txg); 3792*315ee00fSMartin Matuska } 3793eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3794eda14cbcSMatt Macy 3795eda14cbcSMatt Macy /* 3796e3aa18adSMartin Matuska * zl_lwb_max_issued_txg may be larger than lwb_max_txg. It depends 3797e3aa18adSMartin Matuska * on the time when the dmu_tx transaction is assigned in 3798*315ee00fSMartin Matuska * zil_lwb_write_issue(). 3799e3aa18adSMartin Matuska */ 3800e3aa18adSMartin Matuska mutex_enter(&zilog->zl_lwb_io_lock); 3801e3aa18adSMartin Matuska txg = MAX(zilog->zl_lwb_max_issued_txg, txg); 3802e3aa18adSMartin Matuska mutex_exit(&zilog->zl_lwb_io_lock); 3803e3aa18adSMartin Matuska 3804e3aa18adSMartin Matuska /* 3805e3aa18adSMartin Matuska * We need to use txg_wait_synced() to wait until that txg is synced. 3806e3aa18adSMartin Matuska * zil_sync() will guarantee all lwbs up to that txg have been 3807e3aa18adSMartin Matuska * written out, flushed, and cleaned. 3808eda14cbcSMatt Macy */ 3809eda14cbcSMatt Macy if (txg != 0) 3810eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, txg); 3811eda14cbcSMatt Macy 3812eda14cbcSMatt Macy if (zilog_is_dirty(zilog)) 381333b8c039SMartin Matuska zfs_dbgmsg("zil (%px) is dirty, txg %llu", zilog, 381433b8c039SMartin Matuska (u_longlong_t)txg); 3815eda14cbcSMatt Macy if (txg < spa_freeze_txg(zilog->zl_spa)) 3816eda14cbcSMatt Macy VERIFY(!zilog_is_dirty(zilog)); 3817eda14cbcSMatt Macy 3818eda14cbcSMatt Macy zilog->zl_get_data = NULL; 3819eda14cbcSMatt Macy 3820eda14cbcSMatt Macy /* 3821eda14cbcSMatt Macy * We should have only one lwb left on the list; remove it now. 3822eda14cbcSMatt Macy */ 3823eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 3824c0a83fe0SMartin Matuska lwb = list_remove_head(&zilog->zl_lwb_list); 3825eda14cbcSMatt Macy if (lwb != NULL) { 3826c0a83fe0SMartin Matuska ASSERT(list_is_empty(&zilog->zl_lwb_list)); 3827*315ee00fSMartin Matuska ASSERT3S(lwb->lwb_state, ==, LWB_STATE_NEW); 3828eda14cbcSMatt Macy zio_buf_free(lwb->lwb_buf, lwb->lwb_sz); 3829eda14cbcSMatt Macy zil_free_lwb(zilog, lwb); 3830eda14cbcSMatt Macy } 3831eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3832eda14cbcSMatt Macy } 3833eda14cbcSMatt Macy 3834a0b956f5SMartin Matuska static const char *suspend_tag = "zil suspending"; 3835eda14cbcSMatt Macy 3836eda14cbcSMatt Macy /* 3837eda14cbcSMatt Macy * Suspend an intent log. While in suspended mode, we still honor 3838eda14cbcSMatt Macy * synchronous semantics, but we rely on txg_wait_synced() to do it. 3839eda14cbcSMatt Macy * On old version pools, we suspend the log briefly when taking a 3840eda14cbcSMatt Macy * snapshot so that it will have an empty intent log. 3841eda14cbcSMatt Macy * 3842eda14cbcSMatt Macy * Long holds are not really intended to be used the way we do here -- 3843eda14cbcSMatt Macy * held for such a short time. A concurrent caller of dsl_dataset_long_held() 3844eda14cbcSMatt Macy * could fail. Therefore we take pains to only put a long hold if it is 3845eda14cbcSMatt Macy * actually necessary. Fortunately, it will only be necessary if the 3846eda14cbcSMatt Macy * objset is currently mounted (or the ZVOL equivalent). In that case it 3847eda14cbcSMatt Macy * will already have a long hold, so we are not really making things any worse. 3848eda14cbcSMatt Macy * 3849eda14cbcSMatt Macy * Ideally, we would locate the existing long-holder (i.e. the zfsvfs_t or 3850eda14cbcSMatt Macy * zvol_state_t), and use their mechanism to prevent their hold from being 3851eda14cbcSMatt Macy * dropped (e.g. VFS_HOLD()). However, that would be even more pain for 3852eda14cbcSMatt Macy * very little gain. 3853eda14cbcSMatt Macy * 3854eda14cbcSMatt Macy * if cookiep == NULL, this does both the suspend & resume. 3855eda14cbcSMatt Macy * Otherwise, it returns with the dataset "long held", and the cookie 3856eda14cbcSMatt Macy * should be passed into zil_resume(). 3857eda14cbcSMatt Macy */ 3858eda14cbcSMatt Macy int 3859eda14cbcSMatt Macy zil_suspend(const char *osname, void **cookiep) 3860eda14cbcSMatt Macy { 3861eda14cbcSMatt Macy objset_t *os; 3862eda14cbcSMatt Macy zilog_t *zilog; 3863eda14cbcSMatt Macy const zil_header_t *zh; 3864eda14cbcSMatt Macy int error; 3865eda14cbcSMatt Macy 3866eda14cbcSMatt Macy error = dmu_objset_hold(osname, suspend_tag, &os); 3867eda14cbcSMatt Macy if (error != 0) 3868eda14cbcSMatt Macy return (error); 3869eda14cbcSMatt Macy zilog = dmu_objset_zil(os); 3870eda14cbcSMatt Macy 3871eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 3872eda14cbcSMatt Macy zh = zilog->zl_header; 3873eda14cbcSMatt Macy 3874eda14cbcSMatt Macy if (zh->zh_flags & ZIL_REPLAY_NEEDED) { /* unplayed log */ 3875eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3876eda14cbcSMatt Macy dmu_objset_rele(os, suspend_tag); 3877eda14cbcSMatt Macy return (SET_ERROR(EBUSY)); 3878eda14cbcSMatt Macy } 3879eda14cbcSMatt Macy 3880eda14cbcSMatt Macy /* 3881eda14cbcSMatt Macy * Don't put a long hold in the cases where we can avoid it. This 3882eda14cbcSMatt Macy * is when there is no cookie so we are doing a suspend & resume 3883eda14cbcSMatt Macy * (i.e. called from zil_vdev_offline()), and there's nothing to do 3884eda14cbcSMatt Macy * for the suspend because it's already suspended, or there's no ZIL. 3885eda14cbcSMatt Macy */ 3886eda14cbcSMatt Macy if (cookiep == NULL && !zilog->zl_suspending && 3887eda14cbcSMatt Macy (zilog->zl_suspend > 0 || BP_IS_HOLE(&zh->zh_log))) { 3888eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3889eda14cbcSMatt Macy dmu_objset_rele(os, suspend_tag); 3890eda14cbcSMatt Macy return (0); 3891eda14cbcSMatt Macy } 3892eda14cbcSMatt Macy 3893eda14cbcSMatt Macy dsl_dataset_long_hold(dmu_objset_ds(os), suspend_tag); 3894eda14cbcSMatt Macy dsl_pool_rele(dmu_objset_pool(os), suspend_tag); 3895eda14cbcSMatt Macy 3896eda14cbcSMatt Macy zilog->zl_suspend++; 3897eda14cbcSMatt Macy 3898eda14cbcSMatt Macy if (zilog->zl_suspend > 1) { 3899eda14cbcSMatt Macy /* 3900eda14cbcSMatt Macy * Someone else is already suspending it. 3901eda14cbcSMatt Macy * Just wait for them to finish. 3902eda14cbcSMatt Macy */ 3903eda14cbcSMatt Macy 3904eda14cbcSMatt Macy while (zilog->zl_suspending) 3905eda14cbcSMatt Macy cv_wait(&zilog->zl_cv_suspend, &zilog->zl_lock); 3906eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3907eda14cbcSMatt Macy 3908eda14cbcSMatt Macy if (cookiep == NULL) 3909eda14cbcSMatt Macy zil_resume(os); 3910eda14cbcSMatt Macy else 3911eda14cbcSMatt Macy *cookiep = os; 3912eda14cbcSMatt Macy return (0); 3913eda14cbcSMatt Macy } 3914eda14cbcSMatt Macy 3915eda14cbcSMatt Macy /* 3916eda14cbcSMatt Macy * If there is no pointer to an on-disk block, this ZIL must not 3917eda14cbcSMatt Macy * be active (e.g. filesystem not mounted), so there's nothing 3918eda14cbcSMatt Macy * to clean up. 3919eda14cbcSMatt Macy */ 3920eda14cbcSMatt Macy if (BP_IS_HOLE(&zh->zh_log)) { 3921eda14cbcSMatt Macy ASSERT(cookiep != NULL); /* fast path already handled */ 3922eda14cbcSMatt Macy 3923eda14cbcSMatt Macy *cookiep = os; 3924eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3925eda14cbcSMatt Macy return (0); 3926eda14cbcSMatt Macy } 3927eda14cbcSMatt Macy 3928eda14cbcSMatt Macy /* 3929eda14cbcSMatt Macy * The ZIL has work to do. Ensure that the associated encryption 3930eda14cbcSMatt Macy * key will remain mapped while we are committing the log by 3931eda14cbcSMatt Macy * grabbing a reference to it. If the key isn't loaded we have no 3932eda14cbcSMatt Macy * choice but to return an error until the wrapping key is loaded. 3933eda14cbcSMatt Macy */ 3934eda14cbcSMatt Macy if (os->os_encrypted && 3935eda14cbcSMatt Macy dsl_dataset_create_key_mapping(dmu_objset_ds(os)) != 0) { 3936eda14cbcSMatt Macy zilog->zl_suspend--; 3937eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3938eda14cbcSMatt Macy dsl_dataset_long_rele(dmu_objset_ds(os), suspend_tag); 3939eda14cbcSMatt Macy dsl_dataset_rele(dmu_objset_ds(os), suspend_tag); 3940eda14cbcSMatt Macy return (SET_ERROR(EACCES)); 3941eda14cbcSMatt Macy } 3942eda14cbcSMatt Macy 3943eda14cbcSMatt Macy zilog->zl_suspending = B_TRUE; 3944eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3945eda14cbcSMatt Macy 3946eda14cbcSMatt Macy /* 3947eda14cbcSMatt Macy * We need to use zil_commit_impl to ensure we wait for all 3948*315ee00fSMartin Matuska * LWB_STATE_OPENED, _CLOSED and _READY lwbs to be committed 3949eda14cbcSMatt Macy * to disk before proceeding. If we used zil_commit instead, it 3950eda14cbcSMatt Macy * would just call txg_wait_synced(), because zl_suspend is set. 3951eda14cbcSMatt Macy * txg_wait_synced() doesn't wait for these lwb's to be 3952eda14cbcSMatt Macy * LWB_STATE_FLUSH_DONE before returning. 3953eda14cbcSMatt Macy */ 3954eda14cbcSMatt Macy zil_commit_impl(zilog, 0); 3955eda14cbcSMatt Macy 3956eda14cbcSMatt Macy /* 3957eda14cbcSMatt Macy * Now that we've ensured all lwb's are LWB_STATE_FLUSH_DONE, we 3958eda14cbcSMatt Macy * use txg_wait_synced() to ensure the data from the zilog has 3959eda14cbcSMatt Macy * migrated to the main pool before calling zil_destroy(). 3960eda14cbcSMatt Macy */ 3961eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, 0); 3962eda14cbcSMatt Macy 3963eda14cbcSMatt Macy zil_destroy(zilog, B_FALSE); 3964eda14cbcSMatt Macy 3965eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 3966eda14cbcSMatt Macy zilog->zl_suspending = B_FALSE; 3967eda14cbcSMatt Macy cv_broadcast(&zilog->zl_cv_suspend); 3968eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3969eda14cbcSMatt Macy 3970eda14cbcSMatt Macy if (os->os_encrypted) 3971eda14cbcSMatt Macy dsl_dataset_remove_key_mapping(dmu_objset_ds(os)); 3972eda14cbcSMatt Macy 3973eda14cbcSMatt Macy if (cookiep == NULL) 3974eda14cbcSMatt Macy zil_resume(os); 3975eda14cbcSMatt Macy else 3976eda14cbcSMatt Macy *cookiep = os; 3977eda14cbcSMatt Macy return (0); 3978eda14cbcSMatt Macy } 3979eda14cbcSMatt Macy 3980eda14cbcSMatt Macy void 3981eda14cbcSMatt Macy zil_resume(void *cookie) 3982eda14cbcSMatt Macy { 3983eda14cbcSMatt Macy objset_t *os = cookie; 3984eda14cbcSMatt Macy zilog_t *zilog = dmu_objset_zil(os); 3985eda14cbcSMatt Macy 3986eda14cbcSMatt Macy mutex_enter(&zilog->zl_lock); 3987eda14cbcSMatt Macy ASSERT(zilog->zl_suspend != 0); 3988eda14cbcSMatt Macy zilog->zl_suspend--; 3989eda14cbcSMatt Macy mutex_exit(&zilog->zl_lock); 3990eda14cbcSMatt Macy dsl_dataset_long_rele(dmu_objset_ds(os), suspend_tag); 3991eda14cbcSMatt Macy dsl_dataset_rele(dmu_objset_ds(os), suspend_tag); 3992eda14cbcSMatt Macy } 3993eda14cbcSMatt Macy 3994eda14cbcSMatt Macy typedef struct zil_replay_arg { 3995e92ffd9bSMartin Matuska zil_replay_func_t *const *zr_replay; 3996eda14cbcSMatt Macy void *zr_arg; 3997eda14cbcSMatt Macy boolean_t zr_byteswap; 3998eda14cbcSMatt Macy char *zr_lr; 3999eda14cbcSMatt Macy } zil_replay_arg_t; 4000eda14cbcSMatt Macy 4001eda14cbcSMatt Macy static int 4002180f8225SMatt Macy zil_replay_error(zilog_t *zilog, const lr_t *lr, int error) 4003eda14cbcSMatt Macy { 4004eda14cbcSMatt Macy char name[ZFS_MAX_DATASET_NAME_LEN]; 4005eda14cbcSMatt Macy 4006eda14cbcSMatt Macy zilog->zl_replaying_seq--; /* didn't actually replay this one */ 4007eda14cbcSMatt Macy 4008eda14cbcSMatt Macy dmu_objset_name(zilog->zl_os, name); 4009eda14cbcSMatt Macy 4010eda14cbcSMatt Macy cmn_err(CE_WARN, "ZFS replay transaction error %d, " 4011eda14cbcSMatt Macy "dataset %s, seq 0x%llx, txtype %llu %s\n", error, name, 4012eda14cbcSMatt Macy (u_longlong_t)lr->lrc_seq, 4013eda14cbcSMatt Macy (u_longlong_t)(lr->lrc_txtype & ~TX_CI), 4014eda14cbcSMatt Macy (lr->lrc_txtype & TX_CI) ? "CI" : ""); 4015eda14cbcSMatt Macy 4016eda14cbcSMatt Macy return (error); 4017eda14cbcSMatt Macy } 4018eda14cbcSMatt Macy 4019eda14cbcSMatt Macy static int 4020180f8225SMatt Macy zil_replay_log_record(zilog_t *zilog, const lr_t *lr, void *zra, 4021180f8225SMatt Macy uint64_t claim_txg) 4022eda14cbcSMatt Macy { 4023eda14cbcSMatt Macy zil_replay_arg_t *zr = zra; 4024eda14cbcSMatt Macy const zil_header_t *zh = zilog->zl_header; 4025eda14cbcSMatt Macy uint64_t reclen = lr->lrc_reclen; 4026eda14cbcSMatt Macy uint64_t txtype = lr->lrc_txtype; 4027eda14cbcSMatt Macy int error = 0; 4028eda14cbcSMatt Macy 4029eda14cbcSMatt Macy zilog->zl_replaying_seq = lr->lrc_seq; 4030eda14cbcSMatt Macy 4031eda14cbcSMatt Macy if (lr->lrc_seq <= zh->zh_replay_seq) /* already replayed */ 4032eda14cbcSMatt Macy return (0); 4033eda14cbcSMatt Macy 4034eda14cbcSMatt Macy if (lr->lrc_txg < claim_txg) /* already committed */ 4035eda14cbcSMatt Macy return (0); 4036eda14cbcSMatt Macy 4037eda14cbcSMatt Macy /* Strip case-insensitive bit, still present in log record */ 4038eda14cbcSMatt Macy txtype &= ~TX_CI; 4039eda14cbcSMatt Macy 4040eda14cbcSMatt Macy if (txtype == 0 || txtype >= TX_MAX_TYPE) 4041eda14cbcSMatt Macy return (zil_replay_error(zilog, lr, EINVAL)); 4042eda14cbcSMatt Macy 4043eda14cbcSMatt Macy /* 4044eda14cbcSMatt Macy * If this record type can be logged out of order, the object 4045eda14cbcSMatt Macy * (lr_foid) may no longer exist. That's legitimate, not an error. 4046eda14cbcSMatt Macy */ 4047eda14cbcSMatt Macy if (TX_OOO(txtype)) { 4048eda14cbcSMatt Macy error = dmu_object_info(zilog->zl_os, 4049eda14cbcSMatt Macy LR_FOID_GET_OBJ(((lr_ooo_t *)lr)->lr_foid), NULL); 4050eda14cbcSMatt Macy if (error == ENOENT || error == EEXIST) 4051eda14cbcSMatt Macy return (0); 4052eda14cbcSMatt Macy } 4053eda14cbcSMatt Macy 4054eda14cbcSMatt Macy /* 4055eda14cbcSMatt Macy * Make a copy of the data so we can revise and extend it. 4056eda14cbcSMatt Macy */ 4057da5137abSMartin Matuska memcpy(zr->zr_lr, lr, reclen); 4058eda14cbcSMatt Macy 4059eda14cbcSMatt Macy /* 4060eda14cbcSMatt Macy * If this is a TX_WRITE with a blkptr, suck in the data. 4061eda14cbcSMatt Macy */ 4062eda14cbcSMatt Macy if (txtype == TX_WRITE && reclen == sizeof (lr_write_t)) { 4063eda14cbcSMatt Macy error = zil_read_log_data(zilog, (lr_write_t *)lr, 4064eda14cbcSMatt Macy zr->zr_lr + reclen); 4065eda14cbcSMatt Macy if (error != 0) 4066eda14cbcSMatt Macy return (zil_replay_error(zilog, lr, error)); 4067eda14cbcSMatt Macy } 4068eda14cbcSMatt Macy 4069eda14cbcSMatt Macy /* 4070eda14cbcSMatt Macy * The log block containing this lr may have been byteswapped 4071eda14cbcSMatt Macy * so that we can easily examine common fields like lrc_txtype. 4072eda14cbcSMatt Macy * However, the log is a mix of different record types, and only the 4073eda14cbcSMatt Macy * replay vectors know how to byteswap their records. Therefore, if 4074eda14cbcSMatt Macy * the lr was byteswapped, undo it before invoking the replay vector. 4075eda14cbcSMatt Macy */ 4076eda14cbcSMatt Macy if (zr->zr_byteswap) 4077eda14cbcSMatt Macy byteswap_uint64_array(zr->zr_lr, reclen); 4078eda14cbcSMatt Macy 4079eda14cbcSMatt Macy /* 4080eda14cbcSMatt Macy * We must now do two things atomically: replay this log record, 4081eda14cbcSMatt Macy * and update the log header sequence number to reflect the fact that 4082eda14cbcSMatt Macy * we did so. At the end of each replay function the sequence number 4083eda14cbcSMatt Macy * is updated if we are in replay mode. 4084eda14cbcSMatt Macy */ 4085eda14cbcSMatt Macy error = zr->zr_replay[txtype](zr->zr_arg, zr->zr_lr, zr->zr_byteswap); 4086eda14cbcSMatt Macy if (error != 0) { 4087eda14cbcSMatt Macy /* 4088eda14cbcSMatt Macy * The DMU's dnode layer doesn't see removes until the txg 4089eda14cbcSMatt Macy * commits, so a subsequent claim can spuriously fail with 4090eda14cbcSMatt Macy * EEXIST. So if we receive any error we try syncing out 4091eda14cbcSMatt Macy * any removes then retry the transaction. Note that we 4092eda14cbcSMatt Macy * specify B_FALSE for byteswap now, so we don't do it twice. 4093eda14cbcSMatt Macy */ 4094eda14cbcSMatt Macy txg_wait_synced(spa_get_dsl(zilog->zl_spa), 0); 4095eda14cbcSMatt Macy error = zr->zr_replay[txtype](zr->zr_arg, zr->zr_lr, B_FALSE); 4096eda14cbcSMatt Macy if (error != 0) 4097eda14cbcSMatt Macy return (zil_replay_error(zilog, lr, error)); 4098eda14cbcSMatt Macy } 4099eda14cbcSMatt Macy return (0); 4100eda14cbcSMatt Macy } 4101eda14cbcSMatt Macy 4102eda14cbcSMatt Macy static int 4103180f8225SMatt Macy zil_incr_blks(zilog_t *zilog, const blkptr_t *bp, void *arg, uint64_t claim_txg) 4104eda14cbcSMatt Macy { 4105e92ffd9bSMartin Matuska (void) bp, (void) arg, (void) claim_txg; 4106e92ffd9bSMartin Matuska 4107eda14cbcSMatt Macy zilog->zl_replay_blks++; 4108eda14cbcSMatt Macy 4109eda14cbcSMatt Macy return (0); 4110eda14cbcSMatt Macy } 4111eda14cbcSMatt Macy 4112eda14cbcSMatt Macy /* 4113eda14cbcSMatt Macy * If this dataset has a non-empty intent log, replay it and destroy it. 4114dbd5678dSMartin Matuska * Return B_TRUE if there were any entries to replay. 4115eda14cbcSMatt Macy */ 4116dbd5678dSMartin Matuska boolean_t 4117e92ffd9bSMartin Matuska zil_replay(objset_t *os, void *arg, 4118e92ffd9bSMartin Matuska zil_replay_func_t *const replay_func[TX_MAX_TYPE]) 4119eda14cbcSMatt Macy { 4120eda14cbcSMatt Macy zilog_t *zilog = dmu_objset_zil(os); 4121eda14cbcSMatt Macy const zil_header_t *zh = zilog->zl_header; 4122eda14cbcSMatt Macy zil_replay_arg_t zr; 4123eda14cbcSMatt Macy 4124eda14cbcSMatt Macy if ((zh->zh_flags & ZIL_REPLAY_NEEDED) == 0) { 4125dbd5678dSMartin Matuska return (zil_destroy(zilog, B_TRUE)); 4126eda14cbcSMatt Macy } 4127eda14cbcSMatt Macy 4128eda14cbcSMatt Macy zr.zr_replay = replay_func; 4129eda14cbcSMatt Macy zr.zr_arg = arg; 4130eda14cbcSMatt Macy zr.zr_byteswap = BP_SHOULD_BYTESWAP(&zh->zh_log); 4131eda14cbcSMatt Macy zr.zr_lr = vmem_alloc(2 * SPA_MAXBLOCKSIZE, KM_SLEEP); 4132eda14cbcSMatt Macy 4133eda14cbcSMatt Macy /* 4134eda14cbcSMatt Macy * Wait for in-progress removes to sync before starting replay. 4135eda14cbcSMatt Macy */ 4136eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, 0); 4137eda14cbcSMatt Macy 4138eda14cbcSMatt Macy zilog->zl_replay = B_TRUE; 4139eda14cbcSMatt Macy zilog->zl_replay_time = ddi_get_lbolt(); 4140eda14cbcSMatt Macy ASSERT(zilog->zl_replay_blks == 0); 4141eda14cbcSMatt Macy (void) zil_parse(zilog, zil_incr_blks, zil_replay_log_record, &zr, 4142eda14cbcSMatt Macy zh->zh_claim_txg, B_TRUE); 4143eda14cbcSMatt Macy vmem_free(zr.zr_lr, 2 * SPA_MAXBLOCKSIZE); 4144eda14cbcSMatt Macy 4145eda14cbcSMatt Macy zil_destroy(zilog, B_FALSE); 4146eda14cbcSMatt Macy txg_wait_synced(zilog->zl_dmu_pool, zilog->zl_destroy_txg); 4147eda14cbcSMatt Macy zilog->zl_replay = B_FALSE; 4148dbd5678dSMartin Matuska 4149dbd5678dSMartin Matuska return (B_TRUE); 4150eda14cbcSMatt Macy } 4151eda14cbcSMatt Macy 4152eda14cbcSMatt Macy boolean_t 4153eda14cbcSMatt Macy zil_replaying(zilog_t *zilog, dmu_tx_t *tx) 4154eda14cbcSMatt Macy { 4155eda14cbcSMatt Macy if (zilog->zl_sync == ZFS_SYNC_DISABLED) 4156eda14cbcSMatt Macy return (B_TRUE); 4157eda14cbcSMatt Macy 4158eda14cbcSMatt Macy if (zilog->zl_replay) { 4159eda14cbcSMatt Macy dsl_dataset_dirty(dmu_objset_ds(zilog->zl_os), tx); 4160eda14cbcSMatt Macy zilog->zl_replayed_seq[dmu_tx_get_txg(tx) & TXG_MASK] = 4161eda14cbcSMatt Macy zilog->zl_replaying_seq; 4162eda14cbcSMatt Macy return (B_TRUE); 4163eda14cbcSMatt Macy } 4164eda14cbcSMatt Macy 4165eda14cbcSMatt Macy return (B_FALSE); 4166eda14cbcSMatt Macy } 4167eda14cbcSMatt Macy 4168eda14cbcSMatt Macy int 4169eda14cbcSMatt Macy zil_reset(const char *osname, void *arg) 4170eda14cbcSMatt Macy { 4171e92ffd9bSMartin Matuska (void) arg; 4172eda14cbcSMatt Macy 4173e92ffd9bSMartin Matuska int error = zil_suspend(osname, NULL); 4174eda14cbcSMatt Macy /* EACCES means crypto key not loaded */ 4175eda14cbcSMatt Macy if ((error == EACCES) || (error == EBUSY)) 4176eda14cbcSMatt Macy return (SET_ERROR(error)); 4177eda14cbcSMatt Macy if (error != 0) 4178eda14cbcSMatt Macy return (SET_ERROR(EEXIST)); 4179eda14cbcSMatt Macy return (0); 4180eda14cbcSMatt Macy } 4181eda14cbcSMatt Macy 4182eda14cbcSMatt Macy EXPORT_SYMBOL(zil_alloc); 4183eda14cbcSMatt Macy EXPORT_SYMBOL(zil_free); 4184eda14cbcSMatt Macy EXPORT_SYMBOL(zil_open); 4185eda14cbcSMatt Macy EXPORT_SYMBOL(zil_close); 4186eda14cbcSMatt Macy EXPORT_SYMBOL(zil_replay); 4187eda14cbcSMatt Macy EXPORT_SYMBOL(zil_replaying); 4188eda14cbcSMatt Macy EXPORT_SYMBOL(zil_destroy); 4189eda14cbcSMatt Macy EXPORT_SYMBOL(zil_destroy_sync); 4190eda14cbcSMatt Macy EXPORT_SYMBOL(zil_itx_create); 4191eda14cbcSMatt Macy EXPORT_SYMBOL(zil_itx_destroy); 4192eda14cbcSMatt Macy EXPORT_SYMBOL(zil_itx_assign); 4193eda14cbcSMatt Macy EXPORT_SYMBOL(zil_commit); 4194eda14cbcSMatt Macy EXPORT_SYMBOL(zil_claim); 4195eda14cbcSMatt Macy EXPORT_SYMBOL(zil_check_log_chain); 4196eda14cbcSMatt Macy EXPORT_SYMBOL(zil_sync); 4197eda14cbcSMatt Macy EXPORT_SYMBOL(zil_clean); 4198eda14cbcSMatt Macy EXPORT_SYMBOL(zil_suspend); 4199eda14cbcSMatt Macy EXPORT_SYMBOL(zil_resume); 4200eda14cbcSMatt Macy EXPORT_SYMBOL(zil_lwb_add_block); 4201eda14cbcSMatt Macy EXPORT_SYMBOL(zil_bp_tree_add); 4202eda14cbcSMatt Macy EXPORT_SYMBOL(zil_set_sync); 4203eda14cbcSMatt Macy EXPORT_SYMBOL(zil_set_logbias); 4204271171e0SMartin Matuska EXPORT_SYMBOL(zil_sums_init); 4205271171e0SMartin Matuska EXPORT_SYMBOL(zil_sums_fini); 4206271171e0SMartin Matuska EXPORT_SYMBOL(zil_kstat_values_update); 4207eda14cbcSMatt Macy 4208be181ee2SMartin Matuska ZFS_MODULE_PARAM(zfs, zfs_, commit_timeout_pct, UINT, ZMOD_RW, 4209eda14cbcSMatt Macy "ZIL block open timeout percentage"); 4210eda14cbcSMatt Macy 421115f0b8c3SMartin Matuska ZFS_MODULE_PARAM(zfs_zil, zil_, min_commit_timeout, U64, ZMOD_RW, 421215f0b8c3SMartin Matuska "Minimum delay we care for ZIL block commit"); 421315f0b8c3SMartin Matuska 4214eda14cbcSMatt Macy ZFS_MODULE_PARAM(zfs_zil, zil_, replay_disable, INT, ZMOD_RW, 4215eda14cbcSMatt Macy "Disable intent logging replay"); 4216eda14cbcSMatt Macy 4217eda14cbcSMatt Macy ZFS_MODULE_PARAM(zfs_zil, zil_, nocacheflush, INT, ZMOD_RW, 4218eda14cbcSMatt Macy "Disable ZIL cache flushes"); 4219eda14cbcSMatt Macy 4220dbd5678dSMartin Matuska ZFS_MODULE_PARAM(zfs_zil, zil_, slog_bulk, U64, ZMOD_RW, 4221eda14cbcSMatt Macy "Limit in bytes slog sync writes per commit"); 4222eda14cbcSMatt Macy 4223be181ee2SMartin Matuska ZFS_MODULE_PARAM(zfs_zil, zil_, maxblocksize, UINT, ZMOD_RW, 4224eda14cbcSMatt Macy "Limit in bytes of ZIL log block size"); 4225