1789Sahrens /* 2789Sahrens * CDDL HEADER START 3789Sahrens * 4789Sahrens * The contents of this file are subject to the terms of the 51485Slling * Common Development and Distribution License (the "License"). 61485Slling * You may not use this file except in compliance with the License. 7789Sahrens * 8789Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9789Sahrens * or http://www.opensolaris.org/os/licensing. 10789Sahrens * See the License for the specific language governing permissions 11789Sahrens * and limitations under the License. 12789Sahrens * 13789Sahrens * When distributing Covered Code, include this CDDL HEADER in each 14789Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15789Sahrens * If applicable, add the following below this CDDL HEADER, with the 16789Sahrens * fields enclosed by brackets "[]" replaced with your own identifying 17789Sahrens * information: Portions Copyright [yyyy] [name of copyright owner] 18789Sahrens * 19789Sahrens * CDDL HEADER END 20789Sahrens */ 212082Seschrock 22789Sahrens /* 238632SBill.Moore@Sun.COM * Copyright 2009 Sun Microsystems, Inc. All rights reserved. 24789Sahrens * Use is subject to license terms. 25789Sahrens */ 26789Sahrens 27789Sahrens #include <sys/zfs_context.h> 281544Seschrock #include <sys/fm/fs/zfs.h> 29789Sahrens #include <sys/spa.h> 30789Sahrens #include <sys/spa_impl.h> 31789Sahrens #include <sys/dmu.h> 32789Sahrens #include <sys/dmu_tx.h> 33789Sahrens #include <sys/vdev_impl.h> 34789Sahrens #include <sys/uberblock_impl.h> 35789Sahrens #include <sys/metaslab.h> 36789Sahrens #include <sys/metaslab_impl.h> 37789Sahrens #include <sys/space_map.h> 38789Sahrens #include <sys/zio.h> 39789Sahrens #include <sys/zap.h> 40789Sahrens #include <sys/fs/zfs.h> 416643Seschrock #include <sys/arc.h> 429701SGeorge.Wilson@Sun.COM #include <sys/zil.h> 43789Sahrens 44789Sahrens /* 45789Sahrens * Virtual device management. 46789Sahrens */ 47789Sahrens 48789Sahrens static vdev_ops_t *vdev_ops_table[] = { 49789Sahrens &vdev_root_ops, 50789Sahrens &vdev_raidz_ops, 51789Sahrens &vdev_mirror_ops, 52789Sahrens &vdev_replacing_ops, 532082Seschrock &vdev_spare_ops, 54789Sahrens &vdev_disk_ops, 55789Sahrens &vdev_file_ops, 56789Sahrens &vdev_missing_ops, 5710594SGeorge.Wilson@Sun.COM &vdev_hole_ops, 58789Sahrens NULL 59789Sahrens }; 60789Sahrens 617046Sahrens /* maximum scrub/resilver I/O queue per leaf vdev */ 627046Sahrens int zfs_scrub_limit = 10; 633697Smishra 64789Sahrens /* 65789Sahrens * Given a vdev type, return the appropriate ops vector. 66789Sahrens */ 67789Sahrens static vdev_ops_t * 68789Sahrens vdev_getops(const char *type) 69789Sahrens { 70789Sahrens vdev_ops_t *ops, **opspp; 71789Sahrens 72789Sahrens for (opspp = vdev_ops_table; (ops = *opspp) != NULL; opspp++) 73789Sahrens if (strcmp(ops->vdev_op_type, type) == 0) 74789Sahrens break; 75789Sahrens 76789Sahrens return (ops); 77789Sahrens } 78789Sahrens 79789Sahrens /* 80789Sahrens * Default asize function: return the MAX of psize with the asize of 81789Sahrens * all children. This is what's used by anything other than RAID-Z. 82789Sahrens */ 83789Sahrens uint64_t 84789Sahrens vdev_default_asize(vdev_t *vd, uint64_t psize) 85789Sahrens { 861732Sbonwick uint64_t asize = P2ROUNDUP(psize, 1ULL << vd->vdev_top->vdev_ashift); 87789Sahrens uint64_t csize; 889816SGeorge.Wilson@Sun.COM 899816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) { 90789Sahrens csize = vdev_psize_to_asize(vd->vdev_child[c], psize); 91789Sahrens asize = MAX(asize, csize); 92789Sahrens } 93789Sahrens 94789Sahrens return (asize); 95789Sahrens } 96789Sahrens 971175Slling /* 989816SGeorge.Wilson@Sun.COM * Get the minimum allocatable size. We define the allocatable size as 999816SGeorge.Wilson@Sun.COM * the vdev's asize rounded to the nearest metaslab. This allows us to 1009816SGeorge.Wilson@Sun.COM * replace or attach devices which don't have the same physical size but 1019816SGeorge.Wilson@Sun.COM * can still satisfy the same number of allocations. 1021175Slling */ 1031175Slling uint64_t 1049816SGeorge.Wilson@Sun.COM vdev_get_min_asize(vdev_t *vd) 1051175Slling { 1069816SGeorge.Wilson@Sun.COM vdev_t *pvd = vd->vdev_parent; 1079816SGeorge.Wilson@Sun.COM 1089816SGeorge.Wilson@Sun.COM /* 1099816SGeorge.Wilson@Sun.COM * The our parent is NULL (inactive spare or cache) or is the root, 1109816SGeorge.Wilson@Sun.COM * just return our own asize. 1119816SGeorge.Wilson@Sun.COM */ 1129816SGeorge.Wilson@Sun.COM if (pvd == NULL) 1139816SGeorge.Wilson@Sun.COM return (vd->vdev_asize); 1141175Slling 1151175Slling /* 1169816SGeorge.Wilson@Sun.COM * The top-level vdev just returns the allocatable size rounded 1179816SGeorge.Wilson@Sun.COM * to the nearest metaslab. 1189816SGeorge.Wilson@Sun.COM */ 1199816SGeorge.Wilson@Sun.COM if (vd == vd->vdev_top) 1209816SGeorge.Wilson@Sun.COM return (P2ALIGN(vd->vdev_asize, 1ULL << vd->vdev_ms_shift)); 1219816SGeorge.Wilson@Sun.COM 1229816SGeorge.Wilson@Sun.COM /* 1239816SGeorge.Wilson@Sun.COM * The allocatable space for a raidz vdev is N * sizeof(smallest child), 1249816SGeorge.Wilson@Sun.COM * so each child must provide at least 1/Nth of its asize. 1251175Slling */ 1269816SGeorge.Wilson@Sun.COM if (pvd->vdev_ops == &vdev_raidz_ops) 1279816SGeorge.Wilson@Sun.COM return (pvd->vdev_min_asize / pvd->vdev_children); 1289816SGeorge.Wilson@Sun.COM 1299816SGeorge.Wilson@Sun.COM return (pvd->vdev_min_asize); 1309816SGeorge.Wilson@Sun.COM } 1319816SGeorge.Wilson@Sun.COM 1329816SGeorge.Wilson@Sun.COM void 1339816SGeorge.Wilson@Sun.COM vdev_set_min_asize(vdev_t *vd) 1349816SGeorge.Wilson@Sun.COM { 1359816SGeorge.Wilson@Sun.COM vd->vdev_min_asize = vdev_get_min_asize(vd); 1369816SGeorge.Wilson@Sun.COM 1379816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 1389816SGeorge.Wilson@Sun.COM vdev_set_min_asize(vd->vdev_child[c]); 1391175Slling } 1401175Slling 141789Sahrens vdev_t * 142789Sahrens vdev_lookup_top(spa_t *spa, uint64_t vdev) 143789Sahrens { 144789Sahrens vdev_t *rvd = spa->spa_root_vdev; 145789Sahrens 1467754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_ALL, RW_READER) != 0); 1475530Sbonwick 1487046Sahrens if (vdev < rvd->vdev_children) { 1497046Sahrens ASSERT(rvd->vdev_child[vdev] != NULL); 150789Sahrens return (rvd->vdev_child[vdev]); 1517046Sahrens } 152789Sahrens 153789Sahrens return (NULL); 154789Sahrens } 155789Sahrens 156789Sahrens vdev_t * 157789Sahrens vdev_lookup_by_guid(vdev_t *vd, uint64_t guid) 158789Sahrens { 159789Sahrens vdev_t *mvd; 160789Sahrens 1611585Sbonwick if (vd->vdev_guid == guid) 162789Sahrens return (vd); 163789Sahrens 1649816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 165789Sahrens if ((mvd = vdev_lookup_by_guid(vd->vdev_child[c], guid)) != 166789Sahrens NULL) 167789Sahrens return (mvd); 168789Sahrens 169789Sahrens return (NULL); 170789Sahrens } 171789Sahrens 172789Sahrens void 173789Sahrens vdev_add_child(vdev_t *pvd, vdev_t *cvd) 174789Sahrens { 175789Sahrens size_t oldsize, newsize; 176789Sahrens uint64_t id = cvd->vdev_id; 177789Sahrens vdev_t **newchild; 178789Sahrens 1797754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(cvd->vdev_spa, SCL_ALL, RW_WRITER) == SCL_ALL); 180789Sahrens ASSERT(cvd->vdev_parent == NULL); 181789Sahrens 182789Sahrens cvd->vdev_parent = pvd; 183789Sahrens 184789Sahrens if (pvd == NULL) 185789Sahrens return; 186789Sahrens 187789Sahrens ASSERT(id >= pvd->vdev_children || pvd->vdev_child[id] == NULL); 188789Sahrens 189789Sahrens oldsize = pvd->vdev_children * sizeof (vdev_t *); 190789Sahrens pvd->vdev_children = MAX(pvd->vdev_children, id + 1); 191789Sahrens newsize = pvd->vdev_children * sizeof (vdev_t *); 192789Sahrens 193789Sahrens newchild = kmem_zalloc(newsize, KM_SLEEP); 194789Sahrens if (pvd->vdev_child != NULL) { 195789Sahrens bcopy(pvd->vdev_child, newchild, oldsize); 196789Sahrens kmem_free(pvd->vdev_child, oldsize); 197789Sahrens } 198789Sahrens 199789Sahrens pvd->vdev_child = newchild; 200789Sahrens pvd->vdev_child[id] = cvd; 201789Sahrens 202789Sahrens cvd->vdev_top = (pvd->vdev_top ? pvd->vdev_top: cvd); 203789Sahrens ASSERT(cvd->vdev_top->vdev_parent->vdev_parent == NULL); 204789Sahrens 205789Sahrens /* 206789Sahrens * Walk up all ancestors to update guid sum. 207789Sahrens */ 208789Sahrens for (; pvd != NULL; pvd = pvd->vdev_parent) 209789Sahrens pvd->vdev_guid_sum += cvd->vdev_guid_sum; 2103697Smishra 2113697Smishra if (cvd->vdev_ops->vdev_op_leaf) 2123697Smishra cvd->vdev_spa->spa_scrub_maxinflight += zfs_scrub_limit; 213789Sahrens } 214789Sahrens 215789Sahrens void 216789Sahrens vdev_remove_child(vdev_t *pvd, vdev_t *cvd) 217789Sahrens { 218789Sahrens int c; 219789Sahrens uint_t id = cvd->vdev_id; 220789Sahrens 221789Sahrens ASSERT(cvd->vdev_parent == pvd); 222789Sahrens 223789Sahrens if (pvd == NULL) 224789Sahrens return; 225789Sahrens 226789Sahrens ASSERT(id < pvd->vdev_children); 227789Sahrens ASSERT(pvd->vdev_child[id] == cvd); 228789Sahrens 229789Sahrens pvd->vdev_child[id] = NULL; 230789Sahrens cvd->vdev_parent = NULL; 231789Sahrens 232789Sahrens for (c = 0; c < pvd->vdev_children; c++) 233789Sahrens if (pvd->vdev_child[c]) 234789Sahrens break; 235789Sahrens 236789Sahrens if (c == pvd->vdev_children) { 237789Sahrens kmem_free(pvd->vdev_child, c * sizeof (vdev_t *)); 238789Sahrens pvd->vdev_child = NULL; 239789Sahrens pvd->vdev_children = 0; 240789Sahrens } 241789Sahrens 242789Sahrens /* 243789Sahrens * Walk up all ancestors to update guid sum. 244789Sahrens */ 245789Sahrens for (; pvd != NULL; pvd = pvd->vdev_parent) 246789Sahrens pvd->vdev_guid_sum -= cvd->vdev_guid_sum; 2473697Smishra 2483697Smishra if (cvd->vdev_ops->vdev_op_leaf) 2493697Smishra cvd->vdev_spa->spa_scrub_maxinflight -= zfs_scrub_limit; 250789Sahrens } 251789Sahrens 252789Sahrens /* 253789Sahrens * Remove any holes in the child array. 254789Sahrens */ 255789Sahrens void 256789Sahrens vdev_compact_children(vdev_t *pvd) 257789Sahrens { 258789Sahrens vdev_t **newchild, *cvd; 259789Sahrens int oldc = pvd->vdev_children; 2609816SGeorge.Wilson@Sun.COM int newc; 261789Sahrens 2627754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(pvd->vdev_spa, SCL_ALL, RW_WRITER) == SCL_ALL); 263789Sahrens 2649816SGeorge.Wilson@Sun.COM for (int c = newc = 0; c < oldc; c++) 265789Sahrens if (pvd->vdev_child[c]) 266789Sahrens newc++; 267789Sahrens 268789Sahrens newchild = kmem_alloc(newc * sizeof (vdev_t *), KM_SLEEP); 269789Sahrens 2709816SGeorge.Wilson@Sun.COM for (int c = newc = 0; c < oldc; c++) { 271789Sahrens if ((cvd = pvd->vdev_child[c]) != NULL) { 272789Sahrens newchild[newc] = cvd; 273789Sahrens cvd->vdev_id = newc++; 274789Sahrens } 275789Sahrens } 276789Sahrens 277789Sahrens kmem_free(pvd->vdev_child, oldc * sizeof (vdev_t *)); 278789Sahrens pvd->vdev_child = newchild; 279789Sahrens pvd->vdev_children = newc; 280789Sahrens } 281789Sahrens 282789Sahrens /* 283789Sahrens * Allocate and minimally initialize a vdev_t. 284789Sahrens */ 28510594SGeorge.Wilson@Sun.COM vdev_t * 286789Sahrens vdev_alloc_common(spa_t *spa, uint_t id, uint64_t guid, vdev_ops_t *ops) 287789Sahrens { 288789Sahrens vdev_t *vd; 289789Sahrens 2901585Sbonwick vd = kmem_zalloc(sizeof (vdev_t), KM_SLEEP); 2911585Sbonwick 2921585Sbonwick if (spa->spa_root_vdev == NULL) { 2931585Sbonwick ASSERT(ops == &vdev_root_ops); 2941585Sbonwick spa->spa_root_vdev = vd; 2951585Sbonwick } 296789Sahrens 29710594SGeorge.Wilson@Sun.COM if (guid == 0 && ops != &vdev_hole_ops) { 2981585Sbonwick if (spa->spa_root_vdev == vd) { 2991585Sbonwick /* 3001585Sbonwick * The root vdev's guid will also be the pool guid, 3011585Sbonwick * which must be unique among all pools. 3021585Sbonwick */ 3031585Sbonwick while (guid == 0 || spa_guid_exists(guid, 0)) 3041585Sbonwick guid = spa_get_random(-1ULL); 3051585Sbonwick } else { 3061585Sbonwick /* 3071585Sbonwick * Any other vdev's guid must be unique within the pool. 3081585Sbonwick */ 3091585Sbonwick while (guid == 0 || 3101585Sbonwick spa_guid_exists(spa_guid(spa), guid)) 3111585Sbonwick guid = spa_get_random(-1ULL); 3121585Sbonwick } 3131585Sbonwick ASSERT(!spa_guid_exists(spa_guid(spa), guid)); 3141585Sbonwick } 315789Sahrens 316789Sahrens vd->vdev_spa = spa; 317789Sahrens vd->vdev_id = id; 318789Sahrens vd->vdev_guid = guid; 319789Sahrens vd->vdev_guid_sum = guid; 320789Sahrens vd->vdev_ops = ops; 321789Sahrens vd->vdev_state = VDEV_STATE_CLOSED; 32210594SGeorge.Wilson@Sun.COM vd->vdev_ishole = (ops == &vdev_hole_ops); 323789Sahrens 324789Sahrens mutex_init(&vd->vdev_dtl_lock, NULL, MUTEX_DEFAULT, NULL); 3252856Snd150628 mutex_init(&vd->vdev_stat_lock, NULL, MUTEX_DEFAULT, NULL); 3267754SJeff.Bonwick@Sun.COM mutex_init(&vd->vdev_probe_lock, NULL, MUTEX_DEFAULT, NULL); 3278241SJeff.Bonwick@Sun.COM for (int t = 0; t < DTL_TYPES; t++) { 3288241SJeff.Bonwick@Sun.COM space_map_create(&vd->vdev_dtl[t], 0, -1ULL, 0, 3298241SJeff.Bonwick@Sun.COM &vd->vdev_dtl_lock); 3308241SJeff.Bonwick@Sun.COM } 331789Sahrens txg_list_create(&vd->vdev_ms_list, 332789Sahrens offsetof(struct metaslab, ms_txg_node)); 333789Sahrens txg_list_create(&vd->vdev_dtl_list, 334789Sahrens offsetof(struct vdev, vdev_dtl_node)); 335789Sahrens vd->vdev_stat.vs_timestamp = gethrtime(); 3364451Seschrock vdev_queue_init(vd); 3374451Seschrock vdev_cache_init(vd); 338789Sahrens 339789Sahrens return (vd); 340789Sahrens } 341789Sahrens 342789Sahrens /* 343789Sahrens * Allocate a new vdev. The 'alloctype' is used to control whether we are 344789Sahrens * creating a new vdev or loading an existing one - the behavior is slightly 345789Sahrens * different for each case. 346789Sahrens */ 3472082Seschrock int 3482082Seschrock vdev_alloc(spa_t *spa, vdev_t **vdp, nvlist_t *nv, vdev_t *parent, uint_t id, 3492082Seschrock int alloctype) 350789Sahrens { 351789Sahrens vdev_ops_t *ops; 352789Sahrens char *type; 3534527Sperrin uint64_t guid = 0, islog, nparity; 354789Sahrens vdev_t *vd; 355789Sahrens 3567754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_ALL, RW_WRITER) == SCL_ALL); 357789Sahrens 358789Sahrens if (nvlist_lookup_string(nv, ZPOOL_CONFIG_TYPE, &type) != 0) 3592082Seschrock return (EINVAL); 360789Sahrens 361789Sahrens if ((ops = vdev_getops(type)) == NULL) 3622082Seschrock return (EINVAL); 363789Sahrens 364789Sahrens /* 365789Sahrens * If this is a load, get the vdev guid from the nvlist. 366789Sahrens * Otherwise, vdev_alloc_common() will generate one for us. 367789Sahrens */ 368789Sahrens if (alloctype == VDEV_ALLOC_LOAD) { 369789Sahrens uint64_t label_id; 370789Sahrens 371789Sahrens if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ID, &label_id) || 372789Sahrens label_id != id) 3732082Seschrock return (EINVAL); 374789Sahrens 375789Sahrens if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &guid) != 0) 3762082Seschrock return (EINVAL); 3772082Seschrock } else if (alloctype == VDEV_ALLOC_SPARE) { 3782082Seschrock if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &guid) != 0) 3792082Seschrock return (EINVAL); 3805450Sbrendan } else if (alloctype == VDEV_ALLOC_L2CACHE) { 3815450Sbrendan if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &guid) != 0) 3825450Sbrendan return (EINVAL); 3839790SLin.Ling@Sun.COM } else if (alloctype == VDEV_ALLOC_ROOTPOOL) { 3849790SLin.Ling@Sun.COM if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &guid) != 0) 3859790SLin.Ling@Sun.COM return (EINVAL); 386789Sahrens } 387789Sahrens 3882082Seschrock /* 3892082Seschrock * The first allocated vdev must be of type 'root'. 3902082Seschrock */ 3912082Seschrock if (ops != &vdev_root_ops && spa->spa_root_vdev == NULL) 3922082Seschrock return (EINVAL); 3932082Seschrock 3944527Sperrin /* 3954527Sperrin * Determine whether we're a log vdev. 3964527Sperrin */ 3974527Sperrin islog = 0; 3984527Sperrin (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_IS_LOG, &islog); 3995094Slling if (islog && spa_version(spa) < SPA_VERSION_SLOGS) 4004527Sperrin return (ENOTSUP); 4014527Sperrin 40210594SGeorge.Wilson@Sun.COM if (ops == &vdev_hole_ops && spa_version(spa) < SPA_VERSION_HOLES) 40310594SGeorge.Wilson@Sun.COM return (ENOTSUP); 40410594SGeorge.Wilson@Sun.COM 4054527Sperrin /* 4064527Sperrin * Set the nparity property for RAID-Z vdevs. 4074527Sperrin */ 4084527Sperrin nparity = -1ULL; 4094527Sperrin if (ops == &vdev_raidz_ops) { 4104527Sperrin if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_NPARITY, 4114527Sperrin &nparity) == 0) { 4124527Sperrin /* 41310105Sadam.leventhal@sun.com * Currently, we can only support 3 parity devices. 4144527Sperrin */ 41510105Sadam.leventhal@sun.com if (nparity == 0 || nparity > 3) 4164527Sperrin return (EINVAL); 4174527Sperrin /* 41810105Sadam.leventhal@sun.com * Previous versions could only support 1 or 2 parity 41910105Sadam.leventhal@sun.com * device. 4204527Sperrin */ 42110105Sadam.leventhal@sun.com if (nparity > 1 && 42210105Sadam.leventhal@sun.com spa_version(spa) < SPA_VERSION_RAIDZ2) 42310105Sadam.leventhal@sun.com return (ENOTSUP); 42410105Sadam.leventhal@sun.com if (nparity > 2 && 42510105Sadam.leventhal@sun.com spa_version(spa) < SPA_VERSION_RAIDZ3) 4264527Sperrin return (ENOTSUP); 4274527Sperrin } else { 4284527Sperrin /* 4294527Sperrin * We require the parity to be specified for SPAs that 4304527Sperrin * support multiple parity levels. 4314527Sperrin */ 43210105Sadam.leventhal@sun.com if (spa_version(spa) >= SPA_VERSION_RAIDZ2) 4334527Sperrin return (EINVAL); 4344527Sperrin /* 4354527Sperrin * Otherwise, we default to 1 parity device for RAID-Z. 4364527Sperrin */ 4374527Sperrin nparity = 1; 4384527Sperrin } 4394527Sperrin } else { 4404527Sperrin nparity = 0; 4414527Sperrin } 4424527Sperrin ASSERT(nparity != -1ULL); 4434527Sperrin 444789Sahrens vd = vdev_alloc_common(spa, id, guid, ops); 445789Sahrens 4464527Sperrin vd->vdev_islog = islog; 4474527Sperrin vd->vdev_nparity = nparity; 4484527Sperrin 449789Sahrens if (nvlist_lookup_string(nv, ZPOOL_CONFIG_PATH, &vd->vdev_path) == 0) 450789Sahrens vd->vdev_path = spa_strdup(vd->vdev_path); 451789Sahrens if (nvlist_lookup_string(nv, ZPOOL_CONFIG_DEVID, &vd->vdev_devid) == 0) 452789Sahrens vd->vdev_devid = spa_strdup(vd->vdev_devid); 4534451Seschrock if (nvlist_lookup_string(nv, ZPOOL_CONFIG_PHYS_PATH, 4544451Seschrock &vd->vdev_physpath) == 0) 4554451Seschrock vd->vdev_physpath = spa_strdup(vd->vdev_physpath); 4569425SEric.Schrock@Sun.COM if (nvlist_lookup_string(nv, ZPOOL_CONFIG_FRU, &vd->vdev_fru) == 0) 4579425SEric.Schrock@Sun.COM vd->vdev_fru = spa_strdup(vd->vdev_fru); 458789Sahrens 459789Sahrens /* 4601171Seschrock * Set the whole_disk property. If it's not specified, leave the value 4611171Seschrock * as -1. 4621171Seschrock */ 4631171Seschrock if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_WHOLE_DISK, 4641171Seschrock &vd->vdev_wholedisk) != 0) 4651171Seschrock vd->vdev_wholedisk = -1ULL; 4661171Seschrock 4671171Seschrock /* 4681544Seschrock * Look for the 'not present' flag. This will only be set if the device 4691544Seschrock * was not present at the time of import. 4701544Seschrock */ 4719425SEric.Schrock@Sun.COM (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_NOT_PRESENT, 4729425SEric.Schrock@Sun.COM &vd->vdev_not_present); 4731544Seschrock 4741544Seschrock /* 4751732Sbonwick * Get the alignment requirement. 4761732Sbonwick */ 4771732Sbonwick (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ASHIFT, &vd->vdev_ashift); 4781732Sbonwick 4791732Sbonwick /* 48010594SGeorge.Wilson@Sun.COM * Retrieve the vdev creation time. 48110594SGeorge.Wilson@Sun.COM */ 48210594SGeorge.Wilson@Sun.COM (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_CREATE_TXG, 48310594SGeorge.Wilson@Sun.COM &vd->vdev_crtxg); 48410594SGeorge.Wilson@Sun.COM 48510594SGeorge.Wilson@Sun.COM /* 486789Sahrens * If we're a top-level vdev, try to load the allocation parameters. 487789Sahrens */ 488789Sahrens if (parent && !parent->vdev_parent && alloctype == VDEV_ALLOC_LOAD) { 489789Sahrens (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_METASLAB_ARRAY, 490789Sahrens &vd->vdev_ms_array); 491789Sahrens (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_METASLAB_SHIFT, 492789Sahrens &vd->vdev_ms_shift); 493789Sahrens (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ASIZE, 494789Sahrens &vd->vdev_asize); 495789Sahrens } 496789Sahrens 497789Sahrens /* 4984451Seschrock * If we're a leaf vdev, try to load the DTL object and other state. 499789Sahrens */ 5006643Seschrock if (vd->vdev_ops->vdev_op_leaf && 5019790SLin.Ling@Sun.COM (alloctype == VDEV_ALLOC_LOAD || alloctype == VDEV_ALLOC_L2CACHE || 5029790SLin.Ling@Sun.COM alloctype == VDEV_ALLOC_ROOTPOOL)) { 5036643Seschrock if (alloctype == VDEV_ALLOC_LOAD) { 5046643Seschrock (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_DTL, 5058241SJeff.Bonwick@Sun.COM &vd->vdev_dtl_smo.smo_object); 5066643Seschrock (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_UNSPARE, 5076643Seschrock &vd->vdev_unspare); 5086643Seschrock } 5099790SLin.Ling@Sun.COM 5109790SLin.Ling@Sun.COM if (alloctype == VDEV_ALLOC_ROOTPOOL) { 5119790SLin.Ling@Sun.COM uint64_t spare = 0; 5129790SLin.Ling@Sun.COM 5139790SLin.Ling@Sun.COM if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_IS_SPARE, 5149790SLin.Ling@Sun.COM &spare) == 0 && spare) 5159790SLin.Ling@Sun.COM spa_spare_add(vd); 5169790SLin.Ling@Sun.COM } 5179790SLin.Ling@Sun.COM 5181732Sbonwick (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_OFFLINE, 5191732Sbonwick &vd->vdev_offline); 5206643Seschrock 5214451Seschrock /* 5224451Seschrock * When importing a pool, we want to ignore the persistent fault 5234451Seschrock * state, as the diagnosis made on another system may not be 52410817SEric.Schrock@Sun.COM * valid in the current context. Local vdevs will 52510817SEric.Schrock@Sun.COM * remain in the faulted state. 5264451Seschrock */ 5274451Seschrock if (spa->spa_load_state == SPA_LOAD_OPEN) { 5284451Seschrock (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_FAULTED, 5294451Seschrock &vd->vdev_faulted); 5304451Seschrock (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_DEGRADED, 5314451Seschrock &vd->vdev_degraded); 5324451Seschrock (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_REMOVED, 5334451Seschrock &vd->vdev_removed); 53410817SEric.Schrock@Sun.COM 53510817SEric.Schrock@Sun.COM if (vd->vdev_faulted || vd->vdev_degraded) { 53610817SEric.Schrock@Sun.COM char *aux; 53710817SEric.Schrock@Sun.COM 53810817SEric.Schrock@Sun.COM vd->vdev_label_aux = 53910817SEric.Schrock@Sun.COM VDEV_AUX_ERR_EXCEEDED; 54010817SEric.Schrock@Sun.COM if (nvlist_lookup_string(nv, 54110817SEric.Schrock@Sun.COM ZPOOL_CONFIG_AUX_STATE, &aux) == 0 && 54210817SEric.Schrock@Sun.COM strcmp(aux, "external") == 0) 54310817SEric.Schrock@Sun.COM vd->vdev_label_aux = VDEV_AUX_EXTERNAL; 54410817SEric.Schrock@Sun.COM } 5454451Seschrock } 546789Sahrens } 547789Sahrens 548789Sahrens /* 549789Sahrens * Add ourselves to the parent's list of children. 550789Sahrens */ 551789Sahrens vdev_add_child(parent, vd); 552789Sahrens 5532082Seschrock *vdp = vd; 5542082Seschrock 5552082Seschrock return (0); 556789Sahrens } 557789Sahrens 558789Sahrens void 559789Sahrens vdev_free(vdev_t *vd) 560789Sahrens { 5614451Seschrock spa_t *spa = vd->vdev_spa; 562789Sahrens 563789Sahrens /* 564789Sahrens * vdev_free() implies closing the vdev first. This is simpler than 565789Sahrens * trying to ensure complicated semantics for all callers. 566789Sahrens */ 567789Sahrens vdev_close(vd); 568789Sahrens 5697754SJeff.Bonwick@Sun.COM ASSERT(!list_link_active(&vd->vdev_config_dirty_node)); 570789Sahrens 571789Sahrens /* 572789Sahrens * Free all children. 573789Sahrens */ 5749816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 575789Sahrens vdev_free(vd->vdev_child[c]); 576789Sahrens 577789Sahrens ASSERT(vd->vdev_child == NULL); 578789Sahrens ASSERT(vd->vdev_guid_sum == vd->vdev_guid); 579789Sahrens 580789Sahrens /* 581789Sahrens * Discard allocation state. 582789Sahrens */ 583789Sahrens if (vd == vd->vdev_top) 584789Sahrens vdev_metaslab_fini(vd); 585789Sahrens 586789Sahrens ASSERT3U(vd->vdev_stat.vs_space, ==, 0); 5872082Seschrock ASSERT3U(vd->vdev_stat.vs_dspace, ==, 0); 588789Sahrens ASSERT3U(vd->vdev_stat.vs_alloc, ==, 0); 589789Sahrens 590789Sahrens /* 591789Sahrens * Remove this vdev from its parent's child list. 592789Sahrens */ 593789Sahrens vdev_remove_child(vd->vdev_parent, vd); 594789Sahrens 595789Sahrens ASSERT(vd->vdev_parent == NULL); 596789Sahrens 5974451Seschrock /* 5984451Seschrock * Clean up vdev structure. 5994451Seschrock */ 6004451Seschrock vdev_queue_fini(vd); 6014451Seschrock vdev_cache_fini(vd); 6024451Seschrock 6034451Seschrock if (vd->vdev_path) 6044451Seschrock spa_strfree(vd->vdev_path); 6054451Seschrock if (vd->vdev_devid) 6064451Seschrock spa_strfree(vd->vdev_devid); 6074451Seschrock if (vd->vdev_physpath) 6084451Seschrock spa_strfree(vd->vdev_physpath); 6099425SEric.Schrock@Sun.COM if (vd->vdev_fru) 6109425SEric.Schrock@Sun.COM spa_strfree(vd->vdev_fru); 6114451Seschrock 6124451Seschrock if (vd->vdev_isspare) 6134451Seschrock spa_spare_remove(vd); 6145450Sbrendan if (vd->vdev_isl2cache) 6155450Sbrendan spa_l2cache_remove(vd); 6164451Seschrock 6174451Seschrock txg_list_destroy(&vd->vdev_ms_list); 6184451Seschrock txg_list_destroy(&vd->vdev_dtl_list); 6198241SJeff.Bonwick@Sun.COM 6204451Seschrock mutex_enter(&vd->vdev_dtl_lock); 6218241SJeff.Bonwick@Sun.COM for (int t = 0; t < DTL_TYPES; t++) { 6228241SJeff.Bonwick@Sun.COM space_map_unload(&vd->vdev_dtl[t]); 6238241SJeff.Bonwick@Sun.COM space_map_destroy(&vd->vdev_dtl[t]); 6248241SJeff.Bonwick@Sun.COM } 6254451Seschrock mutex_exit(&vd->vdev_dtl_lock); 6268241SJeff.Bonwick@Sun.COM 6274451Seschrock mutex_destroy(&vd->vdev_dtl_lock); 6284451Seschrock mutex_destroy(&vd->vdev_stat_lock); 6297754SJeff.Bonwick@Sun.COM mutex_destroy(&vd->vdev_probe_lock); 6304451Seschrock 6314451Seschrock if (vd == spa->spa_root_vdev) 6324451Seschrock spa->spa_root_vdev = NULL; 6334451Seschrock 6344451Seschrock kmem_free(vd, sizeof (vdev_t)); 635789Sahrens } 636789Sahrens 637789Sahrens /* 638789Sahrens * Transfer top-level vdev state from svd to tvd. 639789Sahrens */ 640789Sahrens static void 641789Sahrens vdev_top_transfer(vdev_t *svd, vdev_t *tvd) 642789Sahrens { 643789Sahrens spa_t *spa = svd->vdev_spa; 644789Sahrens metaslab_t *msp; 645789Sahrens vdev_t *vd; 646789Sahrens int t; 647789Sahrens 648789Sahrens ASSERT(tvd == tvd->vdev_top); 649789Sahrens 650789Sahrens tvd->vdev_ms_array = svd->vdev_ms_array; 651789Sahrens tvd->vdev_ms_shift = svd->vdev_ms_shift; 652789Sahrens tvd->vdev_ms_count = svd->vdev_ms_count; 653789Sahrens 654789Sahrens svd->vdev_ms_array = 0; 655789Sahrens svd->vdev_ms_shift = 0; 656789Sahrens svd->vdev_ms_count = 0; 657789Sahrens 658789Sahrens tvd->vdev_mg = svd->vdev_mg; 659789Sahrens tvd->vdev_ms = svd->vdev_ms; 660789Sahrens 661789Sahrens svd->vdev_mg = NULL; 662789Sahrens svd->vdev_ms = NULL; 6631732Sbonwick 6641732Sbonwick if (tvd->vdev_mg != NULL) 6651732Sbonwick tvd->vdev_mg->mg_vd = tvd; 666789Sahrens 667789Sahrens tvd->vdev_stat.vs_alloc = svd->vdev_stat.vs_alloc; 668789Sahrens tvd->vdev_stat.vs_space = svd->vdev_stat.vs_space; 6692082Seschrock tvd->vdev_stat.vs_dspace = svd->vdev_stat.vs_dspace; 670789Sahrens 671789Sahrens svd->vdev_stat.vs_alloc = 0; 672789Sahrens svd->vdev_stat.vs_space = 0; 6732082Seschrock svd->vdev_stat.vs_dspace = 0; 674789Sahrens 675789Sahrens for (t = 0; t < TXG_SIZE; t++) { 676789Sahrens while ((msp = txg_list_remove(&svd->vdev_ms_list, t)) != NULL) 677789Sahrens (void) txg_list_add(&tvd->vdev_ms_list, msp, t); 678789Sahrens while ((vd = txg_list_remove(&svd->vdev_dtl_list, t)) != NULL) 679789Sahrens (void) txg_list_add(&tvd->vdev_dtl_list, vd, t); 680789Sahrens if (txg_list_remove_this(&spa->spa_vdev_txg_list, svd, t)) 681789Sahrens (void) txg_list_add(&spa->spa_vdev_txg_list, tvd, t); 682789Sahrens } 683789Sahrens 6847754SJeff.Bonwick@Sun.COM if (list_link_active(&svd->vdev_config_dirty_node)) { 685789Sahrens vdev_config_clean(svd); 686789Sahrens vdev_config_dirty(tvd); 687789Sahrens } 688789Sahrens 6897754SJeff.Bonwick@Sun.COM if (list_link_active(&svd->vdev_state_dirty_node)) { 6907754SJeff.Bonwick@Sun.COM vdev_state_clean(svd); 6917754SJeff.Bonwick@Sun.COM vdev_state_dirty(tvd); 6927754SJeff.Bonwick@Sun.COM } 6937754SJeff.Bonwick@Sun.COM 6942082Seschrock tvd->vdev_deflate_ratio = svd->vdev_deflate_ratio; 6952082Seschrock svd->vdev_deflate_ratio = 0; 6964527Sperrin 6974527Sperrin tvd->vdev_islog = svd->vdev_islog; 6984527Sperrin svd->vdev_islog = 0; 699789Sahrens } 700789Sahrens 701789Sahrens static void 702789Sahrens vdev_top_update(vdev_t *tvd, vdev_t *vd) 703789Sahrens { 704789Sahrens if (vd == NULL) 705789Sahrens return; 706789Sahrens 707789Sahrens vd->vdev_top = tvd; 708789Sahrens 7099816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 710789Sahrens vdev_top_update(tvd, vd->vdev_child[c]); 711789Sahrens } 712789Sahrens 713789Sahrens /* 714789Sahrens * Add a mirror/replacing vdev above an existing vdev. 715789Sahrens */ 716789Sahrens vdev_t * 717789Sahrens vdev_add_parent(vdev_t *cvd, vdev_ops_t *ops) 718789Sahrens { 719789Sahrens spa_t *spa = cvd->vdev_spa; 720789Sahrens vdev_t *pvd = cvd->vdev_parent; 721789Sahrens vdev_t *mvd; 722789Sahrens 7237754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_ALL, RW_WRITER) == SCL_ALL); 724789Sahrens 725789Sahrens mvd = vdev_alloc_common(spa, cvd->vdev_id, 0, ops); 7261732Sbonwick 7271732Sbonwick mvd->vdev_asize = cvd->vdev_asize; 7289816SGeorge.Wilson@Sun.COM mvd->vdev_min_asize = cvd->vdev_min_asize; 7291732Sbonwick mvd->vdev_ashift = cvd->vdev_ashift; 7301732Sbonwick mvd->vdev_state = cvd->vdev_state; 73110594SGeorge.Wilson@Sun.COM mvd->vdev_crtxg = cvd->vdev_crtxg; 7321732Sbonwick 733789Sahrens vdev_remove_child(pvd, cvd); 734789Sahrens vdev_add_child(pvd, mvd); 735789Sahrens cvd->vdev_id = mvd->vdev_children; 736789Sahrens vdev_add_child(mvd, cvd); 737789Sahrens vdev_top_update(cvd->vdev_top, cvd->vdev_top); 738789Sahrens 739789Sahrens if (mvd == mvd->vdev_top) 740789Sahrens vdev_top_transfer(cvd, mvd); 741789Sahrens 742789Sahrens return (mvd); 743789Sahrens } 744789Sahrens 745789Sahrens /* 746789Sahrens * Remove a 1-way mirror/replacing vdev from the tree. 747789Sahrens */ 748789Sahrens void 749789Sahrens vdev_remove_parent(vdev_t *cvd) 750789Sahrens { 751789Sahrens vdev_t *mvd = cvd->vdev_parent; 752789Sahrens vdev_t *pvd = mvd->vdev_parent; 753789Sahrens 7547754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(cvd->vdev_spa, SCL_ALL, RW_WRITER) == SCL_ALL); 755789Sahrens 756789Sahrens ASSERT(mvd->vdev_children == 1); 757789Sahrens ASSERT(mvd->vdev_ops == &vdev_mirror_ops || 7582082Seschrock mvd->vdev_ops == &vdev_replacing_ops || 7592082Seschrock mvd->vdev_ops == &vdev_spare_ops); 7601732Sbonwick cvd->vdev_ashift = mvd->vdev_ashift; 761789Sahrens 762789Sahrens vdev_remove_child(mvd, cvd); 763789Sahrens vdev_remove_child(pvd, mvd); 7648241SJeff.Bonwick@Sun.COM 7657754SJeff.Bonwick@Sun.COM /* 7667754SJeff.Bonwick@Sun.COM * If cvd will replace mvd as a top-level vdev, preserve mvd's guid. 7677754SJeff.Bonwick@Sun.COM * Otherwise, we could have detached an offline device, and when we 7687754SJeff.Bonwick@Sun.COM * go to import the pool we'll think we have two top-level vdevs, 7697754SJeff.Bonwick@Sun.COM * instead of a different version of the same top-level vdev. 7707754SJeff.Bonwick@Sun.COM */ 7718241SJeff.Bonwick@Sun.COM if (mvd->vdev_top == mvd) { 7728241SJeff.Bonwick@Sun.COM uint64_t guid_delta = mvd->vdev_guid - cvd->vdev_guid; 7738241SJeff.Bonwick@Sun.COM cvd->vdev_guid += guid_delta; 7748241SJeff.Bonwick@Sun.COM cvd->vdev_guid_sum += guid_delta; 7758241SJeff.Bonwick@Sun.COM } 776789Sahrens cvd->vdev_id = mvd->vdev_id; 777789Sahrens vdev_add_child(pvd, cvd); 778789Sahrens vdev_top_update(cvd->vdev_top, cvd->vdev_top); 779789Sahrens 780789Sahrens if (cvd == cvd->vdev_top) 781789Sahrens vdev_top_transfer(mvd, cvd); 782789Sahrens 783789Sahrens ASSERT(mvd->vdev_children == 0); 784789Sahrens vdev_free(mvd); 785789Sahrens } 786789Sahrens 7871544Seschrock int 788789Sahrens vdev_metaslab_init(vdev_t *vd, uint64_t txg) 789789Sahrens { 790789Sahrens spa_t *spa = vd->vdev_spa; 7911732Sbonwick objset_t *mos = spa->spa_meta_objset; 7924527Sperrin metaslab_class_t *mc; 7931732Sbonwick uint64_t m; 794789Sahrens uint64_t oldc = vd->vdev_ms_count; 795789Sahrens uint64_t newc = vd->vdev_asize >> vd->vdev_ms_shift; 7961732Sbonwick metaslab_t **mspp; 7971732Sbonwick int error; 798789Sahrens 79910594SGeorge.Wilson@Sun.COM /* 80010594SGeorge.Wilson@Sun.COM * This vdev is not being allocated from yet or is a hole. 80110594SGeorge.Wilson@Sun.COM */ 80210594SGeorge.Wilson@Sun.COM if (vd->vdev_ms_shift == 0) 8031585Sbonwick return (0); 8041585Sbonwick 80510594SGeorge.Wilson@Sun.COM ASSERT(!vd->vdev_ishole); 80610594SGeorge.Wilson@Sun.COM 8079701SGeorge.Wilson@Sun.COM /* 8089701SGeorge.Wilson@Sun.COM * Compute the raidz-deflation ratio. Note, we hard-code 8099701SGeorge.Wilson@Sun.COM * in 128k (1 << 17) because it is the current "typical" blocksize. 8109701SGeorge.Wilson@Sun.COM * Even if SPA_MAXBLOCKSIZE changes, this algorithm must never change, 8119701SGeorge.Wilson@Sun.COM * or we will inconsistently account for existing bp's. 8129701SGeorge.Wilson@Sun.COM */ 8139701SGeorge.Wilson@Sun.COM vd->vdev_deflate_ratio = (1 << 17) / 8149701SGeorge.Wilson@Sun.COM (vdev_psize_to_asize(vd, 1 << 17) >> SPA_MINBLOCKSHIFT); 8159701SGeorge.Wilson@Sun.COM 816789Sahrens ASSERT(oldc <= newc); 817789Sahrens 8184527Sperrin if (vd->vdev_islog) 8194527Sperrin mc = spa->spa_log_class; 8204527Sperrin else 8214527Sperrin mc = spa->spa_normal_class; 8224527Sperrin 8231732Sbonwick if (vd->vdev_mg == NULL) 8241732Sbonwick vd->vdev_mg = metaslab_group_create(mc, vd); 8251732Sbonwick 8261732Sbonwick mspp = kmem_zalloc(newc * sizeof (*mspp), KM_SLEEP); 8271732Sbonwick 8281732Sbonwick if (oldc != 0) { 8291732Sbonwick bcopy(vd->vdev_ms, mspp, oldc * sizeof (*mspp)); 8301732Sbonwick kmem_free(vd->vdev_ms, oldc * sizeof (*mspp)); 8311732Sbonwick } 8321732Sbonwick 8331732Sbonwick vd->vdev_ms = mspp; 834789Sahrens vd->vdev_ms_count = newc; 835789Sahrens 8361732Sbonwick for (m = oldc; m < newc; m++) { 8371732Sbonwick space_map_obj_t smo = { 0, 0, 0 }; 838789Sahrens if (txg == 0) { 8391732Sbonwick uint64_t object = 0; 8401732Sbonwick error = dmu_read(mos, vd->vdev_ms_array, 8419512SNeil.Perrin@Sun.COM m * sizeof (uint64_t), sizeof (uint64_t), &object, 8429512SNeil.Perrin@Sun.COM DMU_READ_PREFETCH); 8431732Sbonwick if (error) 8441732Sbonwick return (error); 8451732Sbonwick if (object != 0) { 8461732Sbonwick dmu_buf_t *db; 8471732Sbonwick error = dmu_bonus_hold(mos, object, FTAG, &db); 8481732Sbonwick if (error) 8491732Sbonwick return (error); 8504944Smaybee ASSERT3U(db->db_size, >=, sizeof (smo)); 8514944Smaybee bcopy(db->db_data, &smo, sizeof (smo)); 8521732Sbonwick ASSERT3U(smo.smo_object, ==, object); 8531544Seschrock dmu_buf_rele(db, FTAG); 854789Sahrens } 855789Sahrens } 8561732Sbonwick vd->vdev_ms[m] = metaslab_init(vd->vdev_mg, &smo, 8571732Sbonwick m << vd->vdev_ms_shift, 1ULL << vd->vdev_ms_shift, txg); 858789Sahrens } 859789Sahrens 8601544Seschrock return (0); 861789Sahrens } 862789Sahrens 863789Sahrens void 864789Sahrens vdev_metaslab_fini(vdev_t *vd) 865789Sahrens { 866789Sahrens uint64_t m; 867789Sahrens uint64_t count = vd->vdev_ms_count; 868789Sahrens 869789Sahrens if (vd->vdev_ms != NULL) { 870789Sahrens for (m = 0; m < count; m++) 8711732Sbonwick if (vd->vdev_ms[m] != NULL) 8721732Sbonwick metaslab_fini(vd->vdev_ms[m]); 873789Sahrens kmem_free(vd->vdev_ms, count * sizeof (metaslab_t *)); 874789Sahrens vd->vdev_ms = NULL; 875789Sahrens } 876789Sahrens } 877789Sahrens 8787754SJeff.Bonwick@Sun.COM typedef struct vdev_probe_stats { 8797754SJeff.Bonwick@Sun.COM boolean_t vps_readable; 8807754SJeff.Bonwick@Sun.COM boolean_t vps_writeable; 8817754SJeff.Bonwick@Sun.COM int vps_flags; 8827754SJeff.Bonwick@Sun.COM } vdev_probe_stats_t; 8837754SJeff.Bonwick@Sun.COM 8847754SJeff.Bonwick@Sun.COM static void 8857754SJeff.Bonwick@Sun.COM vdev_probe_done(zio_t *zio) 8865329Sgw25295 { 8878241SJeff.Bonwick@Sun.COM spa_t *spa = zio->io_spa; 8888632SBill.Moore@Sun.COM vdev_t *vd = zio->io_vd; 8897754SJeff.Bonwick@Sun.COM vdev_probe_stats_t *vps = zio->io_private; 8908632SBill.Moore@Sun.COM 8918632SBill.Moore@Sun.COM ASSERT(vd->vdev_probe_zio != NULL); 8927754SJeff.Bonwick@Sun.COM 8937754SJeff.Bonwick@Sun.COM if (zio->io_type == ZIO_TYPE_READ) { 8947754SJeff.Bonwick@Sun.COM if (zio->io_error == 0) 8957754SJeff.Bonwick@Sun.COM vps->vps_readable = 1; 8968241SJeff.Bonwick@Sun.COM if (zio->io_error == 0 && spa_writeable(spa)) { 8978632SBill.Moore@Sun.COM zio_nowait(zio_write_phys(vd->vdev_probe_zio, vd, 8987754SJeff.Bonwick@Sun.COM zio->io_offset, zio->io_size, zio->io_data, 8997754SJeff.Bonwick@Sun.COM ZIO_CHECKSUM_OFF, vdev_probe_done, vps, 9007754SJeff.Bonwick@Sun.COM ZIO_PRIORITY_SYNC_WRITE, vps->vps_flags, B_TRUE)); 9017754SJeff.Bonwick@Sun.COM } else { 9027754SJeff.Bonwick@Sun.COM zio_buf_free(zio->io_data, zio->io_size); 9037754SJeff.Bonwick@Sun.COM } 9047754SJeff.Bonwick@Sun.COM } else if (zio->io_type == ZIO_TYPE_WRITE) { 9057754SJeff.Bonwick@Sun.COM if (zio->io_error == 0) 9067754SJeff.Bonwick@Sun.COM vps->vps_writeable = 1; 9077754SJeff.Bonwick@Sun.COM zio_buf_free(zio->io_data, zio->io_size); 9087754SJeff.Bonwick@Sun.COM } else if (zio->io_type == ZIO_TYPE_NULL) { 9098632SBill.Moore@Sun.COM zio_t *pio; 9107754SJeff.Bonwick@Sun.COM 9117754SJeff.Bonwick@Sun.COM vd->vdev_cant_read |= !vps->vps_readable; 9127754SJeff.Bonwick@Sun.COM vd->vdev_cant_write |= !vps->vps_writeable; 9137754SJeff.Bonwick@Sun.COM 9147754SJeff.Bonwick@Sun.COM if (vdev_readable(vd) && 9158241SJeff.Bonwick@Sun.COM (vdev_writeable(vd) || !spa_writeable(spa))) { 9167754SJeff.Bonwick@Sun.COM zio->io_error = 0; 9177754SJeff.Bonwick@Sun.COM } else { 9187754SJeff.Bonwick@Sun.COM ASSERT(zio->io_error != 0); 9197754SJeff.Bonwick@Sun.COM zfs_ereport_post(FM_EREPORT_ZFS_PROBE_FAILURE, 9208241SJeff.Bonwick@Sun.COM spa, vd, NULL, 0, 0); 9217754SJeff.Bonwick@Sun.COM zio->io_error = ENXIO; 9227754SJeff.Bonwick@Sun.COM } 9238632SBill.Moore@Sun.COM 9248632SBill.Moore@Sun.COM mutex_enter(&vd->vdev_probe_lock); 9258632SBill.Moore@Sun.COM ASSERT(vd->vdev_probe_zio == zio); 9268632SBill.Moore@Sun.COM vd->vdev_probe_zio = NULL; 9278632SBill.Moore@Sun.COM mutex_exit(&vd->vdev_probe_lock); 9288632SBill.Moore@Sun.COM 9298632SBill.Moore@Sun.COM while ((pio = zio_walk_parents(zio)) != NULL) 9308632SBill.Moore@Sun.COM if (!vdev_accessible(vd, pio)) 9318632SBill.Moore@Sun.COM pio->io_error = ENXIO; 9328632SBill.Moore@Sun.COM 9337754SJeff.Bonwick@Sun.COM kmem_free(vps, sizeof (*vps)); 9347754SJeff.Bonwick@Sun.COM } 9357754SJeff.Bonwick@Sun.COM } 9365329Sgw25295 9377754SJeff.Bonwick@Sun.COM /* 9387754SJeff.Bonwick@Sun.COM * Determine whether this device is accessible by reading and writing 9397754SJeff.Bonwick@Sun.COM * to several known locations: the pad regions of each vdev label 9407754SJeff.Bonwick@Sun.COM * but the first (which we leave alone in case it contains a VTOC). 9417754SJeff.Bonwick@Sun.COM */ 9427754SJeff.Bonwick@Sun.COM zio_t * 9438632SBill.Moore@Sun.COM vdev_probe(vdev_t *vd, zio_t *zio) 9447754SJeff.Bonwick@Sun.COM { 9457754SJeff.Bonwick@Sun.COM spa_t *spa = vd->vdev_spa; 9468632SBill.Moore@Sun.COM vdev_probe_stats_t *vps = NULL; 9478632SBill.Moore@Sun.COM zio_t *pio; 9487754SJeff.Bonwick@Sun.COM 9497754SJeff.Bonwick@Sun.COM ASSERT(vd->vdev_ops->vdev_op_leaf); 9507754SJeff.Bonwick@Sun.COM 9518632SBill.Moore@Sun.COM /* 9528632SBill.Moore@Sun.COM * Don't probe the probe. 9538632SBill.Moore@Sun.COM */ 9548632SBill.Moore@Sun.COM if (zio && (zio->io_flags & ZIO_FLAG_PROBE)) 9558632SBill.Moore@Sun.COM return (NULL); 9568632SBill.Moore@Sun.COM 9578632SBill.Moore@Sun.COM /* 9588632SBill.Moore@Sun.COM * To prevent 'probe storms' when a device fails, we create 9598632SBill.Moore@Sun.COM * just one probe i/o at a time. All zios that want to probe 9608632SBill.Moore@Sun.COM * this vdev will become parents of the probe io. 9618632SBill.Moore@Sun.COM */ 9628632SBill.Moore@Sun.COM mutex_enter(&vd->vdev_probe_lock); 9638632SBill.Moore@Sun.COM 9648632SBill.Moore@Sun.COM if ((pio = vd->vdev_probe_zio) == NULL) { 9658632SBill.Moore@Sun.COM vps = kmem_zalloc(sizeof (*vps), KM_SLEEP); 9668632SBill.Moore@Sun.COM 9678632SBill.Moore@Sun.COM vps->vps_flags = ZIO_FLAG_CANFAIL | ZIO_FLAG_PROBE | 9688632SBill.Moore@Sun.COM ZIO_FLAG_DONT_CACHE | ZIO_FLAG_DONT_AGGREGATE | 9699725SEric.Schrock@Sun.COM ZIO_FLAG_TRYHARD; 9708632SBill.Moore@Sun.COM 9718632SBill.Moore@Sun.COM if (spa_config_held(spa, SCL_ZIO, RW_WRITER)) { 9728632SBill.Moore@Sun.COM /* 9738632SBill.Moore@Sun.COM * vdev_cant_read and vdev_cant_write can only 9748632SBill.Moore@Sun.COM * transition from TRUE to FALSE when we have the 9758632SBill.Moore@Sun.COM * SCL_ZIO lock as writer; otherwise they can only 9768632SBill.Moore@Sun.COM * transition from FALSE to TRUE. This ensures that 9778632SBill.Moore@Sun.COM * any zio looking at these values can assume that 9788632SBill.Moore@Sun.COM * failures persist for the life of the I/O. That's 9798632SBill.Moore@Sun.COM * important because when a device has intermittent 9808632SBill.Moore@Sun.COM * connectivity problems, we want to ensure that 9818632SBill.Moore@Sun.COM * they're ascribed to the device (ENXIO) and not 9828632SBill.Moore@Sun.COM * the zio (EIO). 9838632SBill.Moore@Sun.COM * 9848632SBill.Moore@Sun.COM * Since we hold SCL_ZIO as writer here, clear both 9858632SBill.Moore@Sun.COM * values so the probe can reevaluate from first 9868632SBill.Moore@Sun.COM * principles. 9878632SBill.Moore@Sun.COM */ 9888632SBill.Moore@Sun.COM vps->vps_flags |= ZIO_FLAG_CONFIG_WRITER; 9898632SBill.Moore@Sun.COM vd->vdev_cant_read = B_FALSE; 9908632SBill.Moore@Sun.COM vd->vdev_cant_write = B_FALSE; 9918632SBill.Moore@Sun.COM } 9928632SBill.Moore@Sun.COM 9938632SBill.Moore@Sun.COM vd->vdev_probe_zio = pio = zio_null(NULL, spa, vd, 9948632SBill.Moore@Sun.COM vdev_probe_done, vps, 9958632SBill.Moore@Sun.COM vps->vps_flags | ZIO_FLAG_DONT_PROPAGATE); 9968632SBill.Moore@Sun.COM 9978632SBill.Moore@Sun.COM if (zio != NULL) { 9988632SBill.Moore@Sun.COM vd->vdev_probe_wanted = B_TRUE; 9998632SBill.Moore@Sun.COM spa_async_request(spa, SPA_ASYNC_PROBE); 10008632SBill.Moore@Sun.COM } 10018632SBill.Moore@Sun.COM } 10028632SBill.Moore@Sun.COM 10038632SBill.Moore@Sun.COM if (zio != NULL) 10048632SBill.Moore@Sun.COM zio_add_child(zio, pio); 10058632SBill.Moore@Sun.COM 10068632SBill.Moore@Sun.COM mutex_exit(&vd->vdev_probe_lock); 10078632SBill.Moore@Sun.COM 10088632SBill.Moore@Sun.COM if (vps == NULL) { 10098632SBill.Moore@Sun.COM ASSERT(zio != NULL); 10108632SBill.Moore@Sun.COM return (NULL); 10118632SBill.Moore@Sun.COM } 10127754SJeff.Bonwick@Sun.COM 10137754SJeff.Bonwick@Sun.COM for (int l = 1; l < VDEV_LABELS; l++) { 10148632SBill.Moore@Sun.COM zio_nowait(zio_read_phys(pio, vd, 10157754SJeff.Bonwick@Sun.COM vdev_label_offset(vd->vdev_psize, l, 10169056SLin.Ling@Sun.COM offsetof(vdev_label_t, vl_pad2)), 10179056SLin.Ling@Sun.COM VDEV_PAD_SIZE, zio_buf_alloc(VDEV_PAD_SIZE), 10187754SJeff.Bonwick@Sun.COM ZIO_CHECKSUM_OFF, vdev_probe_done, vps, 10197754SJeff.Bonwick@Sun.COM ZIO_PRIORITY_SYNC_READ, vps->vps_flags, B_TRUE)); 10207754SJeff.Bonwick@Sun.COM } 10217754SJeff.Bonwick@Sun.COM 10228632SBill.Moore@Sun.COM if (zio == NULL) 10238632SBill.Moore@Sun.COM return (pio); 10248632SBill.Moore@Sun.COM 10258632SBill.Moore@Sun.COM zio_nowait(pio); 10268632SBill.Moore@Sun.COM return (NULL); 10275329Sgw25295 } 10285329Sgw25295 10299846SEric.Taylor@Sun.COM static void 10309846SEric.Taylor@Sun.COM vdev_open_child(void *arg) 10319846SEric.Taylor@Sun.COM { 10329846SEric.Taylor@Sun.COM vdev_t *vd = arg; 10339846SEric.Taylor@Sun.COM 10349846SEric.Taylor@Sun.COM vd->vdev_open_thread = curthread; 10359846SEric.Taylor@Sun.COM vd->vdev_open_error = vdev_open(vd); 10369846SEric.Taylor@Sun.COM vd->vdev_open_thread = NULL; 10379846SEric.Taylor@Sun.COM } 10389846SEric.Taylor@Sun.COM 103910588SEric.Taylor@Sun.COM boolean_t 104010588SEric.Taylor@Sun.COM vdev_uses_zvols(vdev_t *vd) 104110588SEric.Taylor@Sun.COM { 104210588SEric.Taylor@Sun.COM if (vd->vdev_path && strncmp(vd->vdev_path, ZVOL_DIR, 104310588SEric.Taylor@Sun.COM strlen(ZVOL_DIR)) == 0) 104410588SEric.Taylor@Sun.COM return (B_TRUE); 104510588SEric.Taylor@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 104610588SEric.Taylor@Sun.COM if (vdev_uses_zvols(vd->vdev_child[c])) 104710588SEric.Taylor@Sun.COM return (B_TRUE); 104810588SEric.Taylor@Sun.COM return (B_FALSE); 104910588SEric.Taylor@Sun.COM } 105010588SEric.Taylor@Sun.COM 10519846SEric.Taylor@Sun.COM void 10529846SEric.Taylor@Sun.COM vdev_open_children(vdev_t *vd) 10539846SEric.Taylor@Sun.COM { 10549846SEric.Taylor@Sun.COM taskq_t *tq; 10559846SEric.Taylor@Sun.COM int children = vd->vdev_children; 10569846SEric.Taylor@Sun.COM 105710588SEric.Taylor@Sun.COM /* 105810588SEric.Taylor@Sun.COM * in order to handle pools on top of zvols, do the opens 105910588SEric.Taylor@Sun.COM * in a single thread so that the same thread holds the 106010588SEric.Taylor@Sun.COM * spa_namespace_lock 106110588SEric.Taylor@Sun.COM */ 106210588SEric.Taylor@Sun.COM if (vdev_uses_zvols(vd)) { 106310588SEric.Taylor@Sun.COM for (int c = 0; c < children; c++) 106410588SEric.Taylor@Sun.COM vd->vdev_child[c]->vdev_open_error = 106510588SEric.Taylor@Sun.COM vdev_open(vd->vdev_child[c]); 106610588SEric.Taylor@Sun.COM return; 106710588SEric.Taylor@Sun.COM } 10689846SEric.Taylor@Sun.COM tq = taskq_create("vdev_open", children, minclsyspri, 10699846SEric.Taylor@Sun.COM children, children, TASKQ_PREPOPULATE); 10709846SEric.Taylor@Sun.COM 10719846SEric.Taylor@Sun.COM for (int c = 0; c < children; c++) 10729846SEric.Taylor@Sun.COM VERIFY(taskq_dispatch(tq, vdev_open_child, vd->vdev_child[c], 10739846SEric.Taylor@Sun.COM TQ_SLEEP) != NULL); 10749846SEric.Taylor@Sun.COM 10759846SEric.Taylor@Sun.COM taskq_destroy(tq); 10769846SEric.Taylor@Sun.COM } 10779846SEric.Taylor@Sun.COM 1078789Sahrens /* 1079789Sahrens * Prepare a virtual device for access. 1080789Sahrens */ 1081789Sahrens int 1082789Sahrens vdev_open(vdev_t *vd) 1083789Sahrens { 10848241SJeff.Bonwick@Sun.COM spa_t *spa = vd->vdev_spa; 1085789Sahrens int error; 1086789Sahrens uint64_t osize = 0; 1087789Sahrens uint64_t asize, psize; 10881732Sbonwick uint64_t ashift = 0; 1089789Sahrens 10909846SEric.Taylor@Sun.COM ASSERT(vd->vdev_open_thread == curthread || 10919846SEric.Taylor@Sun.COM spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL); 1092789Sahrens ASSERT(vd->vdev_state == VDEV_STATE_CLOSED || 1093789Sahrens vd->vdev_state == VDEV_STATE_CANT_OPEN || 1094789Sahrens vd->vdev_state == VDEV_STATE_OFFLINE); 1095789Sahrens 1096789Sahrens vd->vdev_stat.vs_aux = VDEV_AUX_NONE; 10979701SGeorge.Wilson@Sun.COM vd->vdev_cant_read = B_FALSE; 10989701SGeorge.Wilson@Sun.COM vd->vdev_cant_write = B_FALSE; 10999816SGeorge.Wilson@Sun.COM vd->vdev_min_asize = vdev_get_min_asize(vd); 1100789Sahrens 110110817SEric.Schrock@Sun.COM /* 110210817SEric.Schrock@Sun.COM * If this vdev is not removed, check its fault status. If it's 110310817SEric.Schrock@Sun.COM * faulted, bail out of the open. 110410817SEric.Schrock@Sun.COM */ 11054451Seschrock if (!vd->vdev_removed && vd->vdev_faulted) { 11064451Seschrock ASSERT(vd->vdev_children == 0); 110710817SEric.Schrock@Sun.COM ASSERT(vd->vdev_label_aux == VDEV_AUX_ERR_EXCEEDED || 110810817SEric.Schrock@Sun.COM vd->vdev_label_aux == VDEV_AUX_EXTERNAL); 11094451Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_FAULTED, 111010817SEric.Schrock@Sun.COM vd->vdev_label_aux); 11114451Seschrock return (ENXIO); 11124451Seschrock } else if (vd->vdev_offline) { 1113789Sahrens ASSERT(vd->vdev_children == 0); 11141544Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_OFFLINE, VDEV_AUX_NONE); 1115789Sahrens return (ENXIO); 1116789Sahrens } 1117789Sahrens 1118789Sahrens error = vd->vdev_ops->vdev_op_open(vd, &osize, &ashift); 1119789Sahrens 112010850SGeorge.Wilson@Sun.COM /* 112110850SGeorge.Wilson@Sun.COM * Reset the vdev_reopening flag so that we actually close 112210850SGeorge.Wilson@Sun.COM * the vdev on error. 112310850SGeorge.Wilson@Sun.COM */ 112410850SGeorge.Wilson@Sun.COM vd->vdev_reopening = B_FALSE; 11251544Seschrock if (zio_injection_enabled && error == 0) 11269725SEric.Schrock@Sun.COM error = zio_handle_device_injection(vd, NULL, ENXIO); 11271544Seschrock 11284451Seschrock if (error) { 11294451Seschrock if (vd->vdev_removed && 11304451Seschrock vd->vdev_stat.vs_aux != VDEV_AUX_OPEN_FAILED) 11314451Seschrock vd->vdev_removed = B_FALSE; 1132789Sahrens 11331544Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN, 1134789Sahrens vd->vdev_stat.vs_aux); 1135789Sahrens return (error); 1136789Sahrens } 1137789Sahrens 11384451Seschrock vd->vdev_removed = B_FALSE; 11394451Seschrock 114010830SEric.Schrock@Sun.COM /* 114110830SEric.Schrock@Sun.COM * Recheck the faulted flag now that we have confirmed that 114210830SEric.Schrock@Sun.COM * the vdev is accessible. If we're faulted, bail. 114310830SEric.Schrock@Sun.COM */ 114410830SEric.Schrock@Sun.COM if (vd->vdev_faulted) { 114510830SEric.Schrock@Sun.COM ASSERT(vd->vdev_children == 0); 114610830SEric.Schrock@Sun.COM ASSERT(vd->vdev_label_aux == VDEV_AUX_ERR_EXCEEDED || 114710830SEric.Schrock@Sun.COM vd->vdev_label_aux == VDEV_AUX_EXTERNAL); 114810830SEric.Schrock@Sun.COM vdev_set_state(vd, B_TRUE, VDEV_STATE_FAULTED, 114910830SEric.Schrock@Sun.COM vd->vdev_label_aux); 115010830SEric.Schrock@Sun.COM return (ENXIO); 115110830SEric.Schrock@Sun.COM } 115210830SEric.Schrock@Sun.COM 11534451Seschrock if (vd->vdev_degraded) { 11544451Seschrock ASSERT(vd->vdev_children == 0); 11554451Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_DEGRADED, 11564451Seschrock VDEV_AUX_ERR_EXCEEDED); 11574451Seschrock } else { 115810817SEric.Schrock@Sun.COM vdev_set_state(vd, B_TRUE, VDEV_STATE_HEALTHY, 0); 11594451Seschrock } 1160789Sahrens 116110594SGeorge.Wilson@Sun.COM /* 116210594SGeorge.Wilson@Sun.COM * For hole or missing vdevs we just return success. 116310594SGeorge.Wilson@Sun.COM */ 116410594SGeorge.Wilson@Sun.COM if (vd->vdev_ishole || vd->vdev_ops == &vdev_missing_ops) 116510594SGeorge.Wilson@Sun.COM return (0); 116610594SGeorge.Wilson@Sun.COM 11679816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) { 11681544Seschrock if (vd->vdev_child[c]->vdev_state != VDEV_STATE_HEALTHY) { 11691544Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_DEGRADED, 11701544Seschrock VDEV_AUX_NONE); 11711544Seschrock break; 11721544Seschrock } 11739816SGeorge.Wilson@Sun.COM } 1174789Sahrens 1175789Sahrens osize = P2ALIGN(osize, (uint64_t)sizeof (vdev_label_t)); 1176789Sahrens 1177789Sahrens if (vd->vdev_children == 0) { 1178789Sahrens if (osize < SPA_MINDEVSIZE) { 11791544Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN, 11801544Seschrock VDEV_AUX_TOO_SMALL); 1181789Sahrens return (EOVERFLOW); 1182789Sahrens } 1183789Sahrens psize = osize; 1184789Sahrens asize = osize - (VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE); 1185789Sahrens } else { 11861732Sbonwick if (vd->vdev_parent != NULL && osize < SPA_MINDEVSIZE - 1187789Sahrens (VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE)) { 11881544Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN, 11891544Seschrock VDEV_AUX_TOO_SMALL); 1190789Sahrens return (EOVERFLOW); 1191789Sahrens } 1192789Sahrens psize = 0; 1193789Sahrens asize = osize; 1194789Sahrens } 1195789Sahrens 1196789Sahrens vd->vdev_psize = psize; 1197789Sahrens 11989816SGeorge.Wilson@Sun.COM /* 11999816SGeorge.Wilson@Sun.COM * Make sure the allocatable size hasn't shrunk. 12009816SGeorge.Wilson@Sun.COM */ 12019816SGeorge.Wilson@Sun.COM if (asize < vd->vdev_min_asize) { 12029816SGeorge.Wilson@Sun.COM vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN, 12039816SGeorge.Wilson@Sun.COM VDEV_AUX_BAD_LABEL); 12049816SGeorge.Wilson@Sun.COM return (EINVAL); 12059816SGeorge.Wilson@Sun.COM } 12069816SGeorge.Wilson@Sun.COM 1207789Sahrens if (vd->vdev_asize == 0) { 1208789Sahrens /* 1209789Sahrens * This is the first-ever open, so use the computed values. 12101732Sbonwick * For testing purposes, a higher ashift can be requested. 1211789Sahrens */ 1212789Sahrens vd->vdev_asize = asize; 12131732Sbonwick vd->vdev_ashift = MAX(ashift, vd->vdev_ashift); 1214789Sahrens } else { 1215789Sahrens /* 1216789Sahrens * Make sure the alignment requirement hasn't increased. 1217789Sahrens */ 12181732Sbonwick if (ashift > vd->vdev_top->vdev_ashift) { 12191544Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN, 12201544Seschrock VDEV_AUX_BAD_LABEL); 1221789Sahrens return (EINVAL); 1222789Sahrens } 1223789Sahrens } 1224789Sahrens 12251544Seschrock /* 12269816SGeorge.Wilson@Sun.COM * If all children are healthy and the asize has increased, 12279816SGeorge.Wilson@Sun.COM * then we've experienced dynamic LUN growth. If automatic 12289816SGeorge.Wilson@Sun.COM * expansion is enabled then use the additional space. 12299816SGeorge.Wilson@Sun.COM */ 12309816SGeorge.Wilson@Sun.COM if (vd->vdev_state == VDEV_STATE_HEALTHY && asize > vd->vdev_asize && 12319816SGeorge.Wilson@Sun.COM (vd->vdev_expanding || spa->spa_autoexpand)) 12329816SGeorge.Wilson@Sun.COM vd->vdev_asize = asize; 12339816SGeorge.Wilson@Sun.COM 12349816SGeorge.Wilson@Sun.COM vdev_set_min_asize(vd); 12359816SGeorge.Wilson@Sun.COM 12369816SGeorge.Wilson@Sun.COM /* 12375329Sgw25295 * Ensure we can issue some IO before declaring the 12385329Sgw25295 * vdev open for business. 12395329Sgw25295 */ 12407754SJeff.Bonwick@Sun.COM if (vd->vdev_ops->vdev_op_leaf && 12417754SJeff.Bonwick@Sun.COM (error = zio_wait(vdev_probe(vd, NULL))) != 0) { 12425329Sgw25295 vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN, 12437754SJeff.Bonwick@Sun.COM VDEV_AUX_IO_FAILURE); 12445329Sgw25295 return (error); 12455329Sgw25295 } 12465329Sgw25295 12475329Sgw25295 /* 12487046Sahrens * If a leaf vdev has a DTL, and seems healthy, then kick off a 12498241SJeff.Bonwick@Sun.COM * resilver. But don't do this if we are doing a reopen for a scrub, 12508241SJeff.Bonwick@Sun.COM * since this would just restart the scrub we are already doing. 12517046Sahrens */ 12528241SJeff.Bonwick@Sun.COM if (vd->vdev_ops->vdev_op_leaf && !spa->spa_scrub_reopen && 12538241SJeff.Bonwick@Sun.COM vdev_resilver_needed(vd, NULL, NULL)) 12548241SJeff.Bonwick@Sun.COM spa_async_request(spa, SPA_ASYNC_RESILVER); 12557046Sahrens 1256789Sahrens return (0); 1257789Sahrens } 1258789Sahrens 1259789Sahrens /* 12601986Seschrock * Called once the vdevs are all opened, this routine validates the label 12611986Seschrock * contents. This needs to be done before vdev_load() so that we don't 12624451Seschrock * inadvertently do repair I/Os to the wrong device. 12631986Seschrock * 12641986Seschrock * This function will only return failure if one of the vdevs indicates that it 12651986Seschrock * has since been destroyed or exported. This is only possible if 12661986Seschrock * /etc/zfs/zpool.cache was readonly at the time. Otherwise, the vdev state 12671986Seschrock * will be updated but the function will return 0. 12681986Seschrock */ 12691986Seschrock int 12701986Seschrock vdev_validate(vdev_t *vd) 12711986Seschrock { 12721986Seschrock spa_t *spa = vd->vdev_spa; 12731986Seschrock nvlist_t *label; 12747754SJeff.Bonwick@Sun.COM uint64_t guid, top_guid; 12751986Seschrock uint64_t state; 12761986Seschrock 12779816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 12781986Seschrock if (vdev_validate(vd->vdev_child[c]) != 0) 12794070Smc142369 return (EBADF); 12801986Seschrock 12812174Seschrock /* 12822174Seschrock * If the device has already failed, or was marked offline, don't do 12832174Seschrock * any further validation. Otherwise, label I/O will fail and we will 12842174Seschrock * overwrite the previous state. 12852174Seschrock */ 12867754SJeff.Bonwick@Sun.COM if (vd->vdev_ops->vdev_op_leaf && vdev_readable(vd)) { 12871986Seschrock 12881986Seschrock if ((label = vdev_label_read_config(vd)) == NULL) { 12891986Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN, 12901986Seschrock VDEV_AUX_BAD_LABEL); 12911986Seschrock return (0); 12921986Seschrock } 12931986Seschrock 12941986Seschrock if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_GUID, 12951986Seschrock &guid) != 0 || guid != spa_guid(spa)) { 12961986Seschrock vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN, 12971986Seschrock VDEV_AUX_CORRUPT_DATA); 12981986Seschrock nvlist_free(label); 12991986Seschrock return (0); 13001986Seschrock } 13011986Seschrock 13027754SJeff.Bonwick@Sun.COM /* 13037754SJeff.Bonwick@Sun.COM * If this vdev just became a top-level vdev because its 13047754SJeff.Bonwick@Sun.COM * sibling was detached, it will have adopted the parent's 13057754SJeff.Bonwick@Sun.COM * vdev guid -- but the label may or may not be on disk yet. 13067754SJeff.Bonwick@Sun.COM * Fortunately, either version of the label will have the 13077754SJeff.Bonwick@Sun.COM * same top guid, so if we're a top-level vdev, we can 13087754SJeff.Bonwick@Sun.COM * safely compare to that instead. 13097754SJeff.Bonwick@Sun.COM */ 13101986Seschrock if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_GUID, 13117754SJeff.Bonwick@Sun.COM &guid) != 0 || 13127754SJeff.Bonwick@Sun.COM nvlist_lookup_uint64(label, ZPOOL_CONFIG_TOP_GUID, 13137754SJeff.Bonwick@Sun.COM &top_guid) != 0 || 13147754SJeff.Bonwick@Sun.COM (vd->vdev_guid != guid && 13157754SJeff.Bonwick@Sun.COM (vd->vdev_guid != top_guid || vd != vd->vdev_top))) { 13161986Seschrock vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN, 13171986Seschrock VDEV_AUX_CORRUPT_DATA); 13181986Seschrock nvlist_free(label); 13191986Seschrock return (0); 13201986Seschrock } 13211986Seschrock 13221986Seschrock if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_STATE, 13231986Seschrock &state) != 0) { 13241986Seschrock vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN, 13251986Seschrock VDEV_AUX_CORRUPT_DATA); 13261986Seschrock nvlist_free(label); 13271986Seschrock return (0); 13281986Seschrock } 13291986Seschrock 13301986Seschrock nvlist_free(label); 13311986Seschrock 133210100SLin.Ling@Sun.COM /* 133310100SLin.Ling@Sun.COM * If spa->spa_load_verbatim is true, no need to check the 133410100SLin.Ling@Sun.COM * state of the pool. 133510100SLin.Ling@Sun.COM */ 133610100SLin.Ling@Sun.COM if (!spa->spa_load_verbatim && 133710100SLin.Ling@Sun.COM spa->spa_load_state == SPA_LOAD_OPEN && 133810100SLin.Ling@Sun.COM state != POOL_STATE_ACTIVE) 13394070Smc142369 return (EBADF); 13406976Seschrock 13416976Seschrock /* 13426976Seschrock * If we were able to open and validate a vdev that was 13436976Seschrock * previously marked permanently unavailable, clear that state 13446976Seschrock * now. 13456976Seschrock */ 13466976Seschrock if (vd->vdev_not_present) 13476976Seschrock vd->vdev_not_present = 0; 13481986Seschrock } 13491986Seschrock 13501986Seschrock return (0); 13511986Seschrock } 13521986Seschrock 13531986Seschrock /* 1354789Sahrens * Close a virtual device. 1355789Sahrens */ 1356789Sahrens void 1357789Sahrens vdev_close(vdev_t *vd) 1358789Sahrens { 13598241SJeff.Bonwick@Sun.COM spa_t *spa = vd->vdev_spa; 136010850SGeorge.Wilson@Sun.COM vdev_t *pvd = vd->vdev_parent; 13618241SJeff.Bonwick@Sun.COM 13628241SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL); 13638241SJeff.Bonwick@Sun.COM 136410850SGeorge.Wilson@Sun.COM if (pvd != NULL && pvd->vdev_reopening) 136510850SGeorge.Wilson@Sun.COM vd->vdev_reopening = pvd->vdev_reopening; 136610850SGeorge.Wilson@Sun.COM 1367789Sahrens vd->vdev_ops->vdev_op_close(vd); 1368789Sahrens 13694451Seschrock vdev_cache_purge(vd); 1370789Sahrens 13711986Seschrock /* 13729816SGeorge.Wilson@Sun.COM * We record the previous state before we close it, so that if we are 13731986Seschrock * doing a reopen(), we don't generate FMA ereports if we notice that 13741986Seschrock * it's still faulted. 13751986Seschrock */ 13761986Seschrock vd->vdev_prevstate = vd->vdev_state; 13771986Seschrock 1378789Sahrens if (vd->vdev_offline) 1379789Sahrens vd->vdev_state = VDEV_STATE_OFFLINE; 1380789Sahrens else 1381789Sahrens vd->vdev_state = VDEV_STATE_CLOSED; 13821544Seschrock vd->vdev_stat.vs_aux = VDEV_AUX_NONE; 1383789Sahrens } 1384789Sahrens 138510850SGeorge.Wilson@Sun.COM /* 138610850SGeorge.Wilson@Sun.COM * Reopen all interior vdevs and any unopened leaves. We don't actually 138710850SGeorge.Wilson@Sun.COM * reopen leaf vdevs which had previously been opened as they might deadlock 138810850SGeorge.Wilson@Sun.COM * on the spa_config_lock. Instead we only obtain the leaf's physical size. 138910850SGeorge.Wilson@Sun.COM * If the leaf has never been opened then open it, as usual. 139010850SGeorge.Wilson@Sun.COM */ 1391789Sahrens void 13921544Seschrock vdev_reopen(vdev_t *vd) 1393789Sahrens { 13941544Seschrock spa_t *spa = vd->vdev_spa; 1395789Sahrens 13967754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL); 13971544Seschrock 139810850SGeorge.Wilson@Sun.COM vd->vdev_reopening = B_TRUE; 1399789Sahrens vdev_close(vd); 1400789Sahrens (void) vdev_open(vd); 1401789Sahrens 1402789Sahrens /* 14033377Seschrock * Call vdev_validate() here to make sure we have the same device. 14043377Seschrock * Otherwise, a device with an invalid label could be successfully 14053377Seschrock * opened in response to vdev_reopen(). 14063377Seschrock */ 14076643Seschrock if (vd->vdev_aux) { 14086643Seschrock (void) vdev_validate_aux(vd); 14097754SJeff.Bonwick@Sun.COM if (vdev_readable(vd) && vdev_writeable(vd) && 14109425SEric.Schrock@Sun.COM vd->vdev_aux == &spa->spa_l2cache && 14119816SGeorge.Wilson@Sun.COM !l2arc_vdev_present(vd)) 14129816SGeorge.Wilson@Sun.COM l2arc_add_vdev(spa, vd); 14136643Seschrock } else { 14146643Seschrock (void) vdev_validate(vd); 14156643Seschrock } 14163377Seschrock 14173377Seschrock /* 14184451Seschrock * Reassess parent vdev's health. 1419789Sahrens */ 14204451Seschrock vdev_propagate_state(vd); 1421789Sahrens } 1422789Sahrens 1423789Sahrens int 14242082Seschrock vdev_create(vdev_t *vd, uint64_t txg, boolean_t isreplacing) 1425789Sahrens { 1426789Sahrens int error; 1427789Sahrens 1428789Sahrens /* 1429789Sahrens * Normally, partial opens (e.g. of a mirror) are allowed. 1430789Sahrens * For a create, however, we want to fail the request if 1431789Sahrens * there are any components we can't open. 1432789Sahrens */ 1433789Sahrens error = vdev_open(vd); 1434789Sahrens 1435789Sahrens if (error || vd->vdev_state != VDEV_STATE_HEALTHY) { 1436789Sahrens vdev_close(vd); 1437789Sahrens return (error ? error : ENXIO); 1438789Sahrens } 1439789Sahrens 1440789Sahrens /* 1441789Sahrens * Recursively initialize all labels. 1442789Sahrens */ 14433377Seschrock if ((error = vdev_label_init(vd, txg, isreplacing ? 14443377Seschrock VDEV_LABEL_REPLACE : VDEV_LABEL_CREATE)) != 0) { 1445789Sahrens vdev_close(vd); 1446789Sahrens return (error); 1447789Sahrens } 1448789Sahrens 1449789Sahrens return (0); 1450789Sahrens } 1451789Sahrens 14521585Sbonwick void 14539816SGeorge.Wilson@Sun.COM vdev_metaslab_set_size(vdev_t *vd) 1454789Sahrens { 1455789Sahrens /* 1456789Sahrens * Aim for roughly 200 metaslabs per vdev. 1457789Sahrens */ 1458789Sahrens vd->vdev_ms_shift = highbit(vd->vdev_asize / 200); 1459789Sahrens vd->vdev_ms_shift = MAX(vd->vdev_ms_shift, SPA_MAXBLOCKSHIFT); 1460789Sahrens } 1461789Sahrens 1462789Sahrens void 14631732Sbonwick vdev_dirty(vdev_t *vd, int flags, void *arg, uint64_t txg) 1464789Sahrens { 14651732Sbonwick ASSERT(vd == vd->vdev_top); 146610594SGeorge.Wilson@Sun.COM ASSERT(!vd->vdev_ishole); 14671732Sbonwick ASSERT(ISP2(flags)); 1468789Sahrens 14691732Sbonwick if (flags & VDD_METASLAB) 14701732Sbonwick (void) txg_list_add(&vd->vdev_ms_list, arg, txg); 14711732Sbonwick 14721732Sbonwick if (flags & VDD_DTL) 14731732Sbonwick (void) txg_list_add(&vd->vdev_dtl_list, arg, txg); 14741732Sbonwick 14751732Sbonwick (void) txg_list_add(&vd->vdev_spa->spa_vdev_txg_list, vd, txg); 1476789Sahrens } 1477789Sahrens 14788241SJeff.Bonwick@Sun.COM /* 14798241SJeff.Bonwick@Sun.COM * DTLs. 14808241SJeff.Bonwick@Sun.COM * 14818241SJeff.Bonwick@Sun.COM * A vdev's DTL (dirty time log) is the set of transaction groups for which 14828241SJeff.Bonwick@Sun.COM * the vdev has less than perfect replication. There are three kinds of DTL: 14838241SJeff.Bonwick@Sun.COM * 14848241SJeff.Bonwick@Sun.COM * DTL_MISSING: txgs for which the vdev has no valid copies of the data 14858241SJeff.Bonwick@Sun.COM * 14868241SJeff.Bonwick@Sun.COM * DTL_PARTIAL: txgs for which data is available, but not fully replicated 14878241SJeff.Bonwick@Sun.COM * 14888241SJeff.Bonwick@Sun.COM * DTL_SCRUB: the txgs that could not be repaired by the last scrub; upon 14898241SJeff.Bonwick@Sun.COM * scrub completion, DTL_SCRUB replaces DTL_MISSING in the range of 14908241SJeff.Bonwick@Sun.COM * txgs that was scrubbed. 14918241SJeff.Bonwick@Sun.COM * 14928241SJeff.Bonwick@Sun.COM * DTL_OUTAGE: txgs which cannot currently be read, whether due to 14938241SJeff.Bonwick@Sun.COM * persistent errors or just some device being offline. 14948241SJeff.Bonwick@Sun.COM * Unlike the other three, the DTL_OUTAGE map is not generally 14958241SJeff.Bonwick@Sun.COM * maintained; it's only computed when needed, typically to 14968241SJeff.Bonwick@Sun.COM * determine whether a device can be detached. 14978241SJeff.Bonwick@Sun.COM * 14988241SJeff.Bonwick@Sun.COM * For leaf vdevs, DTL_MISSING and DTL_PARTIAL are identical: the device 14998241SJeff.Bonwick@Sun.COM * either has the data or it doesn't. 15008241SJeff.Bonwick@Sun.COM * 15018241SJeff.Bonwick@Sun.COM * For interior vdevs such as mirror and RAID-Z the picture is more complex. 15028241SJeff.Bonwick@Sun.COM * A vdev's DTL_PARTIAL is the union of its children's DTL_PARTIALs, because 15038241SJeff.Bonwick@Sun.COM * if any child is less than fully replicated, then so is its parent. 15048241SJeff.Bonwick@Sun.COM * A vdev's DTL_MISSING is a modified union of its children's DTL_MISSINGs, 15058241SJeff.Bonwick@Sun.COM * comprising only those txgs which appear in 'maxfaults' or more children; 15068241SJeff.Bonwick@Sun.COM * those are the txgs we don't have enough replication to read. For example, 15078241SJeff.Bonwick@Sun.COM * double-parity RAID-Z can tolerate up to two missing devices (maxfaults == 2); 15088241SJeff.Bonwick@Sun.COM * thus, its DTL_MISSING consists of the set of txgs that appear in more than 15098241SJeff.Bonwick@Sun.COM * two child DTL_MISSING maps. 15108241SJeff.Bonwick@Sun.COM * 15118241SJeff.Bonwick@Sun.COM * It should be clear from the above that to compute the DTLs and outage maps 15128241SJeff.Bonwick@Sun.COM * for all vdevs, it suffices to know just the leaf vdevs' DTL_MISSING maps. 15138241SJeff.Bonwick@Sun.COM * Therefore, that is all we keep on disk. When loading the pool, or after 15148241SJeff.Bonwick@Sun.COM * a configuration change, we generate all other DTLs from first principles. 15158241SJeff.Bonwick@Sun.COM */ 1516789Sahrens void 15178241SJeff.Bonwick@Sun.COM vdev_dtl_dirty(vdev_t *vd, vdev_dtl_type_t t, uint64_t txg, uint64_t size) 1518789Sahrens { 15198241SJeff.Bonwick@Sun.COM space_map_t *sm = &vd->vdev_dtl[t]; 15208241SJeff.Bonwick@Sun.COM 15218241SJeff.Bonwick@Sun.COM ASSERT(t < DTL_TYPES); 15228241SJeff.Bonwick@Sun.COM ASSERT(vd != vd->vdev_spa->spa_root_vdev); 15238241SJeff.Bonwick@Sun.COM 1524789Sahrens mutex_enter(sm->sm_lock); 1525789Sahrens if (!space_map_contains(sm, txg, size)) 1526789Sahrens space_map_add(sm, txg, size); 1527789Sahrens mutex_exit(sm->sm_lock); 1528789Sahrens } 1529789Sahrens 15308241SJeff.Bonwick@Sun.COM boolean_t 15318241SJeff.Bonwick@Sun.COM vdev_dtl_contains(vdev_t *vd, vdev_dtl_type_t t, uint64_t txg, uint64_t size) 1532789Sahrens { 15338241SJeff.Bonwick@Sun.COM space_map_t *sm = &vd->vdev_dtl[t]; 15348241SJeff.Bonwick@Sun.COM boolean_t dirty = B_FALSE; 15358241SJeff.Bonwick@Sun.COM 15368241SJeff.Bonwick@Sun.COM ASSERT(t < DTL_TYPES); 15378241SJeff.Bonwick@Sun.COM ASSERT(vd != vd->vdev_spa->spa_root_vdev); 1538789Sahrens 1539789Sahrens mutex_enter(sm->sm_lock); 15408241SJeff.Bonwick@Sun.COM if (sm->sm_space != 0) 15418241SJeff.Bonwick@Sun.COM dirty = space_map_contains(sm, txg, size); 1542789Sahrens mutex_exit(sm->sm_lock); 1543789Sahrens 1544789Sahrens return (dirty); 1545789Sahrens } 1546789Sahrens 15478241SJeff.Bonwick@Sun.COM boolean_t 15488241SJeff.Bonwick@Sun.COM vdev_dtl_empty(vdev_t *vd, vdev_dtl_type_t t) 15498241SJeff.Bonwick@Sun.COM { 15508241SJeff.Bonwick@Sun.COM space_map_t *sm = &vd->vdev_dtl[t]; 15518241SJeff.Bonwick@Sun.COM boolean_t empty; 15528241SJeff.Bonwick@Sun.COM 15538241SJeff.Bonwick@Sun.COM mutex_enter(sm->sm_lock); 15548241SJeff.Bonwick@Sun.COM empty = (sm->sm_space == 0); 15558241SJeff.Bonwick@Sun.COM mutex_exit(sm->sm_lock); 15568241SJeff.Bonwick@Sun.COM 15578241SJeff.Bonwick@Sun.COM return (empty); 15588241SJeff.Bonwick@Sun.COM } 15598241SJeff.Bonwick@Sun.COM 1560789Sahrens /* 1561789Sahrens * Reassess DTLs after a config change or scrub completion. 1562789Sahrens */ 1563789Sahrens void 1564789Sahrens vdev_dtl_reassess(vdev_t *vd, uint64_t txg, uint64_t scrub_txg, int scrub_done) 1565789Sahrens { 15661544Seschrock spa_t *spa = vd->vdev_spa; 15678241SJeff.Bonwick@Sun.COM avl_tree_t reftree; 15688241SJeff.Bonwick@Sun.COM int minref; 15698241SJeff.Bonwick@Sun.COM 15708241SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_ALL, RW_READER) != 0); 15718241SJeff.Bonwick@Sun.COM 15728241SJeff.Bonwick@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 15738241SJeff.Bonwick@Sun.COM vdev_dtl_reassess(vd->vdev_child[c], txg, 15748241SJeff.Bonwick@Sun.COM scrub_txg, scrub_done); 15758241SJeff.Bonwick@Sun.COM 157610594SGeorge.Wilson@Sun.COM if (vd == spa->spa_root_vdev || vd->vdev_ishole) 15778241SJeff.Bonwick@Sun.COM return; 15788241SJeff.Bonwick@Sun.COM 15798241SJeff.Bonwick@Sun.COM if (vd->vdev_ops->vdev_op_leaf) { 1580789Sahrens mutex_enter(&vd->vdev_dtl_lock); 15817046Sahrens if (scrub_txg != 0 && 15827046Sahrens (spa->spa_scrub_started || spa->spa_scrub_errors == 0)) { 15837046Sahrens /* XXX should check scrub_done? */ 15847046Sahrens /* 15857046Sahrens * We completed a scrub up to scrub_txg. If we 15867046Sahrens * did it without rebooting, then the scrub dtl 15877046Sahrens * will be valid, so excise the old region and 15887046Sahrens * fold in the scrub dtl. Otherwise, leave the 15897046Sahrens * dtl as-is if there was an error. 15908241SJeff.Bonwick@Sun.COM * 15918241SJeff.Bonwick@Sun.COM * There's little trick here: to excise the beginning 15928241SJeff.Bonwick@Sun.COM * of the DTL_MISSING map, we put it into a reference 15938241SJeff.Bonwick@Sun.COM * tree and then add a segment with refcnt -1 that 15948241SJeff.Bonwick@Sun.COM * covers the range [0, scrub_txg). This means 15958241SJeff.Bonwick@Sun.COM * that each txg in that range has refcnt -1 or 0. 15968241SJeff.Bonwick@Sun.COM * We then add DTL_SCRUB with a refcnt of 2, so that 15978241SJeff.Bonwick@Sun.COM * entries in the range [0, scrub_txg) will have a 15988241SJeff.Bonwick@Sun.COM * positive refcnt -- either 1 or 2. We then convert 15998241SJeff.Bonwick@Sun.COM * the reference tree into the new DTL_MISSING map. 16007046Sahrens */ 16018241SJeff.Bonwick@Sun.COM space_map_ref_create(&reftree); 16028241SJeff.Bonwick@Sun.COM space_map_ref_add_map(&reftree, 16038241SJeff.Bonwick@Sun.COM &vd->vdev_dtl[DTL_MISSING], 1); 16048241SJeff.Bonwick@Sun.COM space_map_ref_add_seg(&reftree, 0, scrub_txg, -1); 16058241SJeff.Bonwick@Sun.COM space_map_ref_add_map(&reftree, 16068241SJeff.Bonwick@Sun.COM &vd->vdev_dtl[DTL_SCRUB], 2); 16078241SJeff.Bonwick@Sun.COM space_map_ref_generate_map(&reftree, 16088241SJeff.Bonwick@Sun.COM &vd->vdev_dtl[DTL_MISSING], 1); 16098241SJeff.Bonwick@Sun.COM space_map_ref_destroy(&reftree); 1610789Sahrens } 16118241SJeff.Bonwick@Sun.COM space_map_vacate(&vd->vdev_dtl[DTL_PARTIAL], NULL, NULL); 16128241SJeff.Bonwick@Sun.COM space_map_walk(&vd->vdev_dtl[DTL_MISSING], 16138241SJeff.Bonwick@Sun.COM space_map_add, &vd->vdev_dtl[DTL_PARTIAL]); 1614789Sahrens if (scrub_done) 16158241SJeff.Bonwick@Sun.COM space_map_vacate(&vd->vdev_dtl[DTL_SCRUB], NULL, NULL); 16168241SJeff.Bonwick@Sun.COM space_map_vacate(&vd->vdev_dtl[DTL_OUTAGE], NULL, NULL); 16178241SJeff.Bonwick@Sun.COM if (!vdev_readable(vd)) 16188241SJeff.Bonwick@Sun.COM space_map_add(&vd->vdev_dtl[DTL_OUTAGE], 0, -1ULL); 16198241SJeff.Bonwick@Sun.COM else 16208241SJeff.Bonwick@Sun.COM space_map_walk(&vd->vdev_dtl[DTL_MISSING], 16218241SJeff.Bonwick@Sun.COM space_map_add, &vd->vdev_dtl[DTL_OUTAGE]); 1622789Sahrens mutex_exit(&vd->vdev_dtl_lock); 16237046Sahrens 16241732Sbonwick if (txg != 0) 16251732Sbonwick vdev_dirty(vd->vdev_top, VDD_DTL, vd, txg); 1626789Sahrens return; 1627789Sahrens } 1628789Sahrens 1629789Sahrens mutex_enter(&vd->vdev_dtl_lock); 16308241SJeff.Bonwick@Sun.COM for (int t = 0; t < DTL_TYPES; t++) { 1631*10890SEric.Taylor@Sun.COM /* account for child's outage in parent's missing map */ 1632*10890SEric.Taylor@Sun.COM int s = (t == DTL_MISSING) ? DTL_OUTAGE: t; 16338241SJeff.Bonwick@Sun.COM if (t == DTL_SCRUB) 16348241SJeff.Bonwick@Sun.COM continue; /* leaf vdevs only */ 16358241SJeff.Bonwick@Sun.COM if (t == DTL_PARTIAL) 16368241SJeff.Bonwick@Sun.COM minref = 1; /* i.e. non-zero */ 16378241SJeff.Bonwick@Sun.COM else if (vd->vdev_nparity != 0) 16388241SJeff.Bonwick@Sun.COM minref = vd->vdev_nparity + 1; /* RAID-Z */ 16398241SJeff.Bonwick@Sun.COM else 16408241SJeff.Bonwick@Sun.COM minref = vd->vdev_children; /* any kind of mirror */ 16418241SJeff.Bonwick@Sun.COM space_map_ref_create(&reftree); 16428241SJeff.Bonwick@Sun.COM for (int c = 0; c < vd->vdev_children; c++) { 16438241SJeff.Bonwick@Sun.COM vdev_t *cvd = vd->vdev_child[c]; 16448241SJeff.Bonwick@Sun.COM mutex_enter(&cvd->vdev_dtl_lock); 1645*10890SEric.Taylor@Sun.COM space_map_ref_add_map(&reftree, &cvd->vdev_dtl[s], 1); 16468241SJeff.Bonwick@Sun.COM mutex_exit(&cvd->vdev_dtl_lock); 16478241SJeff.Bonwick@Sun.COM } 16488241SJeff.Bonwick@Sun.COM space_map_ref_generate_map(&reftree, &vd->vdev_dtl[t], minref); 16498241SJeff.Bonwick@Sun.COM space_map_ref_destroy(&reftree); 16508241SJeff.Bonwick@Sun.COM } 1651789Sahrens mutex_exit(&vd->vdev_dtl_lock); 1652789Sahrens } 1653789Sahrens 1654789Sahrens static int 1655789Sahrens vdev_dtl_load(vdev_t *vd) 1656789Sahrens { 1657789Sahrens spa_t *spa = vd->vdev_spa; 16588241SJeff.Bonwick@Sun.COM space_map_obj_t *smo = &vd->vdev_dtl_smo; 16591732Sbonwick objset_t *mos = spa->spa_meta_objset; 1660789Sahrens dmu_buf_t *db; 1661789Sahrens int error; 1662789Sahrens 1663789Sahrens ASSERT(vd->vdev_children == 0); 1664789Sahrens 1665789Sahrens if (smo->smo_object == 0) 1666789Sahrens return (0); 1667789Sahrens 166810594SGeorge.Wilson@Sun.COM ASSERT(!vd->vdev_ishole); 166910594SGeorge.Wilson@Sun.COM 16701732Sbonwick if ((error = dmu_bonus_hold(mos, smo->smo_object, FTAG, &db)) != 0) 16711544Seschrock return (error); 16721732Sbonwick 16734944Smaybee ASSERT3U(db->db_size, >=, sizeof (*smo)); 16744944Smaybee bcopy(db->db_data, smo, sizeof (*smo)); 16751544Seschrock dmu_buf_rele(db, FTAG); 1676789Sahrens 1677789Sahrens mutex_enter(&vd->vdev_dtl_lock); 16788241SJeff.Bonwick@Sun.COM error = space_map_load(&vd->vdev_dtl[DTL_MISSING], 16798241SJeff.Bonwick@Sun.COM NULL, SM_ALLOC, smo, mos); 1680789Sahrens mutex_exit(&vd->vdev_dtl_lock); 1681789Sahrens 1682789Sahrens return (error); 1683789Sahrens } 1684789Sahrens 1685789Sahrens void 1686789Sahrens vdev_dtl_sync(vdev_t *vd, uint64_t txg) 1687789Sahrens { 1688789Sahrens spa_t *spa = vd->vdev_spa; 16898241SJeff.Bonwick@Sun.COM space_map_obj_t *smo = &vd->vdev_dtl_smo; 16908241SJeff.Bonwick@Sun.COM space_map_t *sm = &vd->vdev_dtl[DTL_MISSING]; 16911732Sbonwick objset_t *mos = spa->spa_meta_objset; 1692789Sahrens space_map_t smsync; 1693789Sahrens kmutex_t smlock; 1694789Sahrens dmu_buf_t *db; 1695789Sahrens dmu_tx_t *tx; 1696789Sahrens 169710594SGeorge.Wilson@Sun.COM ASSERT(!vd->vdev_ishole); 169810594SGeorge.Wilson@Sun.COM 1699789Sahrens tx = dmu_tx_create_assigned(spa->spa_dsl_pool, txg); 1700789Sahrens 1701789Sahrens if (vd->vdev_detached) { 1702789Sahrens if (smo->smo_object != 0) { 17031732Sbonwick int err = dmu_object_free(mos, smo->smo_object, tx); 1704789Sahrens ASSERT3U(err, ==, 0); 1705789Sahrens smo->smo_object = 0; 1706789Sahrens } 1707789Sahrens dmu_tx_commit(tx); 1708789Sahrens return; 1709789Sahrens } 1710789Sahrens 1711789Sahrens if (smo->smo_object == 0) { 1712789Sahrens ASSERT(smo->smo_objsize == 0); 1713789Sahrens ASSERT(smo->smo_alloc == 0); 17141732Sbonwick smo->smo_object = dmu_object_alloc(mos, 1715789Sahrens DMU_OT_SPACE_MAP, 1 << SPACE_MAP_BLOCKSHIFT, 1716789Sahrens DMU_OT_SPACE_MAP_HEADER, sizeof (*smo), tx); 1717789Sahrens ASSERT(smo->smo_object != 0); 1718789Sahrens vdev_config_dirty(vd->vdev_top); 1719789Sahrens } 1720789Sahrens 1721789Sahrens mutex_init(&smlock, NULL, MUTEX_DEFAULT, NULL); 1722789Sahrens 1723789Sahrens space_map_create(&smsync, sm->sm_start, sm->sm_size, sm->sm_shift, 1724789Sahrens &smlock); 1725789Sahrens 1726789Sahrens mutex_enter(&smlock); 1727789Sahrens 1728789Sahrens mutex_enter(&vd->vdev_dtl_lock); 17291732Sbonwick space_map_walk(sm, space_map_add, &smsync); 1730789Sahrens mutex_exit(&vd->vdev_dtl_lock); 1731789Sahrens 17321732Sbonwick space_map_truncate(smo, mos, tx); 17331732Sbonwick space_map_sync(&smsync, SM_ALLOC, smo, mos, tx); 1734789Sahrens 1735789Sahrens space_map_destroy(&smsync); 1736789Sahrens 1737789Sahrens mutex_exit(&smlock); 1738789Sahrens mutex_destroy(&smlock); 1739789Sahrens 17401732Sbonwick VERIFY(0 == dmu_bonus_hold(mos, smo->smo_object, FTAG, &db)); 1741789Sahrens dmu_buf_will_dirty(db, tx); 17424944Smaybee ASSERT3U(db->db_size, >=, sizeof (*smo)); 17434944Smaybee bcopy(smo, db->db_data, sizeof (*smo)); 17441544Seschrock dmu_buf_rele(db, FTAG); 1745789Sahrens 1746789Sahrens dmu_tx_commit(tx); 1747789Sahrens } 1748789Sahrens 17497046Sahrens /* 17508241SJeff.Bonwick@Sun.COM * Determine whether the specified vdev can be offlined/detached/removed 17518241SJeff.Bonwick@Sun.COM * without losing data. 17528241SJeff.Bonwick@Sun.COM */ 17538241SJeff.Bonwick@Sun.COM boolean_t 17548241SJeff.Bonwick@Sun.COM vdev_dtl_required(vdev_t *vd) 17558241SJeff.Bonwick@Sun.COM { 17568241SJeff.Bonwick@Sun.COM spa_t *spa = vd->vdev_spa; 17578241SJeff.Bonwick@Sun.COM vdev_t *tvd = vd->vdev_top; 17588241SJeff.Bonwick@Sun.COM uint8_t cant_read = vd->vdev_cant_read; 17598241SJeff.Bonwick@Sun.COM boolean_t required; 17608241SJeff.Bonwick@Sun.COM 17618241SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL); 17628241SJeff.Bonwick@Sun.COM 17638241SJeff.Bonwick@Sun.COM if (vd == spa->spa_root_vdev || vd == tvd) 17648241SJeff.Bonwick@Sun.COM return (B_TRUE); 17658241SJeff.Bonwick@Sun.COM 17668241SJeff.Bonwick@Sun.COM /* 17678241SJeff.Bonwick@Sun.COM * Temporarily mark the device as unreadable, and then determine 17688241SJeff.Bonwick@Sun.COM * whether this results in any DTL outages in the top-level vdev. 17698241SJeff.Bonwick@Sun.COM * If not, we can safely offline/detach/remove the device. 17708241SJeff.Bonwick@Sun.COM */ 17718241SJeff.Bonwick@Sun.COM vd->vdev_cant_read = B_TRUE; 17728241SJeff.Bonwick@Sun.COM vdev_dtl_reassess(tvd, 0, 0, B_FALSE); 17738241SJeff.Bonwick@Sun.COM required = !vdev_dtl_empty(tvd, DTL_OUTAGE); 17748241SJeff.Bonwick@Sun.COM vd->vdev_cant_read = cant_read; 17758241SJeff.Bonwick@Sun.COM vdev_dtl_reassess(tvd, 0, 0, B_FALSE); 17768241SJeff.Bonwick@Sun.COM 17778241SJeff.Bonwick@Sun.COM return (required); 17788241SJeff.Bonwick@Sun.COM } 17798241SJeff.Bonwick@Sun.COM 17808241SJeff.Bonwick@Sun.COM /* 17817046Sahrens * Determine if resilver is needed, and if so the txg range. 17827046Sahrens */ 17837046Sahrens boolean_t 17847046Sahrens vdev_resilver_needed(vdev_t *vd, uint64_t *minp, uint64_t *maxp) 17857046Sahrens { 17867046Sahrens boolean_t needed = B_FALSE; 17877046Sahrens uint64_t thismin = UINT64_MAX; 17887046Sahrens uint64_t thismax = 0; 17897046Sahrens 17907046Sahrens if (vd->vdev_children == 0) { 17917046Sahrens mutex_enter(&vd->vdev_dtl_lock); 17928241SJeff.Bonwick@Sun.COM if (vd->vdev_dtl[DTL_MISSING].sm_space != 0 && 17938241SJeff.Bonwick@Sun.COM vdev_writeable(vd)) { 17947046Sahrens space_seg_t *ss; 17957046Sahrens 17968241SJeff.Bonwick@Sun.COM ss = avl_first(&vd->vdev_dtl[DTL_MISSING].sm_root); 17977046Sahrens thismin = ss->ss_start - 1; 17988241SJeff.Bonwick@Sun.COM ss = avl_last(&vd->vdev_dtl[DTL_MISSING].sm_root); 17997046Sahrens thismax = ss->ss_end; 18007046Sahrens needed = B_TRUE; 18017046Sahrens } 18027046Sahrens mutex_exit(&vd->vdev_dtl_lock); 18037046Sahrens } else { 18048241SJeff.Bonwick@Sun.COM for (int c = 0; c < vd->vdev_children; c++) { 18057046Sahrens vdev_t *cvd = vd->vdev_child[c]; 18067046Sahrens uint64_t cmin, cmax; 18077046Sahrens 18087046Sahrens if (vdev_resilver_needed(cvd, &cmin, &cmax)) { 18097046Sahrens thismin = MIN(thismin, cmin); 18107046Sahrens thismax = MAX(thismax, cmax); 18117046Sahrens needed = B_TRUE; 18127046Sahrens } 18137046Sahrens } 18147046Sahrens } 18157046Sahrens 18167046Sahrens if (needed && minp) { 18177046Sahrens *minp = thismin; 18187046Sahrens *maxp = thismax; 18197046Sahrens } 18207046Sahrens return (needed); 18217046Sahrens } 18227046Sahrens 18231986Seschrock void 18241544Seschrock vdev_load(vdev_t *vd) 1825789Sahrens { 1826789Sahrens /* 1827789Sahrens * Recursively load all children. 1828789Sahrens */ 18298241SJeff.Bonwick@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 18301986Seschrock vdev_load(vd->vdev_child[c]); 1831789Sahrens 1832789Sahrens /* 18331585Sbonwick * If this is a top-level vdev, initialize its metaslabs. 1834789Sahrens */ 183510594SGeorge.Wilson@Sun.COM if (vd == vd->vdev_top && !vd->vdev_ishole && 18361986Seschrock (vd->vdev_ashift == 0 || vd->vdev_asize == 0 || 18371986Seschrock vdev_metaslab_init(vd, 0) != 0)) 18381986Seschrock vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN, 18391986Seschrock VDEV_AUX_CORRUPT_DATA); 1840789Sahrens 1841789Sahrens /* 1842789Sahrens * If this is a leaf vdev, load its DTL. 1843789Sahrens */ 18441986Seschrock if (vd->vdev_ops->vdev_op_leaf && vdev_dtl_load(vd) != 0) 18451986Seschrock vdev_set_state(vd, B_FALSE, VDEV_STATE_CANT_OPEN, 18461986Seschrock VDEV_AUX_CORRUPT_DATA); 1847789Sahrens } 1848789Sahrens 18492082Seschrock /* 18505450Sbrendan * The special vdev case is used for hot spares and l2cache devices. Its 18515450Sbrendan * sole purpose it to set the vdev state for the associated vdev. To do this, 18525450Sbrendan * we make sure that we can open the underlying device, then try to read the 18535450Sbrendan * label, and make sure that the label is sane and that it hasn't been 18545450Sbrendan * repurposed to another pool. 18552082Seschrock */ 18562082Seschrock int 18575450Sbrendan vdev_validate_aux(vdev_t *vd) 18582082Seschrock { 18592082Seschrock nvlist_t *label; 18602082Seschrock uint64_t guid, version; 18612082Seschrock uint64_t state; 18622082Seschrock 18637754SJeff.Bonwick@Sun.COM if (!vdev_readable(vd)) 18646643Seschrock return (0); 18656643Seschrock 18662082Seschrock if ((label = vdev_label_read_config(vd)) == NULL) { 18672082Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN, 18682082Seschrock VDEV_AUX_CORRUPT_DATA); 18692082Seschrock return (-1); 18702082Seschrock } 18712082Seschrock 18722082Seschrock if (nvlist_lookup_uint64(label, ZPOOL_CONFIG_VERSION, &version) != 0 || 18734577Sahrens version > SPA_VERSION || 18742082Seschrock nvlist_lookup_uint64(label, ZPOOL_CONFIG_GUID, &guid) != 0 || 18752082Seschrock guid != vd->vdev_guid || 18762082Seschrock nvlist_lookup_uint64(label, ZPOOL_CONFIG_POOL_STATE, &state) != 0) { 18772082Seschrock vdev_set_state(vd, B_TRUE, VDEV_STATE_CANT_OPEN, 18782082Seschrock VDEV_AUX_CORRUPT_DATA); 18792082Seschrock nvlist_free(label); 18802082Seschrock return (-1); 18812082Seschrock } 18822082Seschrock 18832082Seschrock /* 18842082Seschrock * We don't actually check the pool state here. If it's in fact in 18852082Seschrock * use by another pool, we update this fact on the fly when requested. 18862082Seschrock */ 18872082Seschrock nvlist_free(label); 18882082Seschrock return (0); 18892082Seschrock } 18902082Seschrock 1891789Sahrens void 189210594SGeorge.Wilson@Sun.COM vdev_remove(vdev_t *vd, uint64_t txg) 189310594SGeorge.Wilson@Sun.COM { 189410594SGeorge.Wilson@Sun.COM spa_t *spa = vd->vdev_spa; 189510594SGeorge.Wilson@Sun.COM objset_t *mos = spa->spa_meta_objset; 189610594SGeorge.Wilson@Sun.COM dmu_tx_t *tx; 189710594SGeorge.Wilson@Sun.COM 189810594SGeorge.Wilson@Sun.COM tx = dmu_tx_create_assigned(spa_get_dsl(spa), txg); 189910594SGeorge.Wilson@Sun.COM 190010594SGeorge.Wilson@Sun.COM if (vd->vdev_dtl_smo.smo_object) { 190110594SGeorge.Wilson@Sun.COM ASSERT3U(vd->vdev_dtl_smo.smo_alloc, ==, 0); 190210594SGeorge.Wilson@Sun.COM (void) dmu_object_free(mos, vd->vdev_dtl_smo.smo_object, tx); 190310594SGeorge.Wilson@Sun.COM vd->vdev_dtl_smo.smo_object = 0; 190410594SGeorge.Wilson@Sun.COM } 190510594SGeorge.Wilson@Sun.COM 190610594SGeorge.Wilson@Sun.COM if (vd->vdev_ms != NULL) { 190710594SGeorge.Wilson@Sun.COM for (int m = 0; m < vd->vdev_ms_count; m++) { 190810594SGeorge.Wilson@Sun.COM metaslab_t *msp = vd->vdev_ms[m]; 190910594SGeorge.Wilson@Sun.COM 191010594SGeorge.Wilson@Sun.COM if (msp == NULL || msp->ms_smo.smo_object == 0) 191110594SGeorge.Wilson@Sun.COM continue; 191210594SGeorge.Wilson@Sun.COM 191310594SGeorge.Wilson@Sun.COM ASSERT3U(msp->ms_smo.smo_alloc, ==, 0); 191410594SGeorge.Wilson@Sun.COM (void) dmu_object_free(mos, msp->ms_smo.smo_object, tx); 191510594SGeorge.Wilson@Sun.COM msp->ms_smo.smo_object = 0; 191610594SGeorge.Wilson@Sun.COM } 191710594SGeorge.Wilson@Sun.COM } 191810594SGeorge.Wilson@Sun.COM 191910594SGeorge.Wilson@Sun.COM if (vd->vdev_ms_array) { 192010594SGeorge.Wilson@Sun.COM (void) dmu_object_free(mos, vd->vdev_ms_array, tx); 192110594SGeorge.Wilson@Sun.COM vd->vdev_ms_array = 0; 192210594SGeorge.Wilson@Sun.COM vd->vdev_ms_shift = 0; 192310594SGeorge.Wilson@Sun.COM } 192410594SGeorge.Wilson@Sun.COM dmu_tx_commit(tx); 192510594SGeorge.Wilson@Sun.COM } 192610594SGeorge.Wilson@Sun.COM 192710594SGeorge.Wilson@Sun.COM void 1928789Sahrens vdev_sync_done(vdev_t *vd, uint64_t txg) 1929789Sahrens { 1930789Sahrens metaslab_t *msp; 1931789Sahrens 193210594SGeorge.Wilson@Sun.COM ASSERT(!vd->vdev_ishole); 193310594SGeorge.Wilson@Sun.COM 1934789Sahrens while (msp = txg_list_remove(&vd->vdev_ms_list, TXG_CLEAN(txg))) 1935789Sahrens metaslab_sync_done(msp, txg); 1936789Sahrens } 1937789Sahrens 1938789Sahrens void 1939789Sahrens vdev_sync(vdev_t *vd, uint64_t txg) 1940789Sahrens { 1941789Sahrens spa_t *spa = vd->vdev_spa; 1942789Sahrens vdev_t *lvd; 1943789Sahrens metaslab_t *msp; 19441732Sbonwick dmu_tx_t *tx; 1945789Sahrens 194610594SGeorge.Wilson@Sun.COM ASSERT(!vd->vdev_ishole); 194710594SGeorge.Wilson@Sun.COM 19481732Sbonwick if (vd->vdev_ms_array == 0 && vd->vdev_ms_shift != 0) { 19491732Sbonwick ASSERT(vd == vd->vdev_top); 19501732Sbonwick tx = dmu_tx_create_assigned(spa->spa_dsl_pool, txg); 19511732Sbonwick vd->vdev_ms_array = dmu_object_alloc(spa->spa_meta_objset, 19521732Sbonwick DMU_OT_OBJECT_ARRAY, 0, DMU_OT_NONE, 0, tx); 19531732Sbonwick ASSERT(vd->vdev_ms_array != 0); 19541732Sbonwick vdev_config_dirty(vd); 19551732Sbonwick dmu_tx_commit(tx); 19561732Sbonwick } 1957789Sahrens 195810594SGeorge.Wilson@Sun.COM if (vd->vdev_removing) 195910594SGeorge.Wilson@Sun.COM vdev_remove(vd, txg); 196010594SGeorge.Wilson@Sun.COM 19611732Sbonwick while ((msp = txg_list_remove(&vd->vdev_ms_list, txg)) != NULL) { 1962789Sahrens metaslab_sync(msp, txg); 19631732Sbonwick (void) txg_list_add(&vd->vdev_ms_list, msp, TXG_CLEAN(txg)); 19641732Sbonwick } 1965789Sahrens 1966789Sahrens while ((lvd = txg_list_remove(&vd->vdev_dtl_list, txg)) != NULL) 1967789Sahrens vdev_dtl_sync(lvd, txg); 1968789Sahrens 1969789Sahrens (void) txg_list_add(&spa->spa_vdev_txg_list, vd, TXG_CLEAN(txg)); 1970789Sahrens } 1971789Sahrens 1972789Sahrens uint64_t 1973789Sahrens vdev_psize_to_asize(vdev_t *vd, uint64_t psize) 1974789Sahrens { 1975789Sahrens return (vd->vdev_ops->vdev_op_asize(vd, psize)); 1976789Sahrens } 1977789Sahrens 19784451Seschrock /* 19794451Seschrock * Mark the given vdev faulted. A faulted vdev behaves as if the device could 19804451Seschrock * not be opened, and no I/O is attempted. 19814451Seschrock */ 1982789Sahrens int 198310817SEric.Schrock@Sun.COM vdev_fault(spa_t *spa, uint64_t guid, vdev_aux_t aux) 19844451Seschrock { 19856643Seschrock vdev_t *vd; 19864451Seschrock 198710685SGeorge.Wilson@Sun.COM spa_vdev_state_enter(spa, SCL_NONE); 19884451Seschrock 19896643Seschrock if ((vd = spa_lookup_by_guid(spa, guid, B_TRUE)) == NULL) 19907754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, ENODEV)); 19917754SJeff.Bonwick@Sun.COM 19924451Seschrock if (!vd->vdev_ops->vdev_op_leaf) 19937754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, ENOTSUP)); 19944451Seschrock 19954451Seschrock /* 199610817SEric.Schrock@Sun.COM * We don't directly use the aux state here, but if we do a 199710817SEric.Schrock@Sun.COM * vdev_reopen(), we need this value to be present to remember why we 199810817SEric.Schrock@Sun.COM * were faulted. 199910817SEric.Schrock@Sun.COM */ 200010817SEric.Schrock@Sun.COM vd->vdev_label_aux = aux; 200110817SEric.Schrock@Sun.COM 200210817SEric.Schrock@Sun.COM /* 20034451Seschrock * Faulted state takes precedence over degraded. 20044451Seschrock */ 20054451Seschrock vd->vdev_faulted = 1ULL; 20064451Seschrock vd->vdev_degraded = 0ULL; 200710817SEric.Schrock@Sun.COM vdev_set_state(vd, B_FALSE, VDEV_STATE_FAULTED, aux); 20084451Seschrock 20094451Seschrock /* 20108123SDavid.Marker@sun.com * If marking the vdev as faulted cause the top-level vdev to become 20114451Seschrock * unavailable, then back off and simply mark the vdev as degraded 20124451Seschrock * instead. 20134451Seschrock */ 201410685SGeorge.Wilson@Sun.COM if (vdev_is_dead(vd->vdev_top) && !vd->vdev_islog && 201510685SGeorge.Wilson@Sun.COM vd->vdev_aux == NULL) { 20164451Seschrock vd->vdev_degraded = 1ULL; 20174451Seschrock vd->vdev_faulted = 0ULL; 20184451Seschrock 20194451Seschrock /* 20204451Seschrock * If we reopen the device and it's not dead, only then do we 20214451Seschrock * mark it degraded. 20224451Seschrock */ 20234451Seschrock vdev_reopen(vd); 20244451Seschrock 202510817SEric.Schrock@Sun.COM if (vdev_readable(vd)) 202610817SEric.Schrock@Sun.COM vdev_set_state(vd, B_FALSE, VDEV_STATE_DEGRADED, aux); 20274451Seschrock } 20284451Seschrock 20297754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, vd, 0)); 20304451Seschrock } 20314451Seschrock 20324451Seschrock /* 20334451Seschrock * Mark the given vdev degraded. A degraded vdev is purely an indication to the 20344451Seschrock * user that something is wrong. The vdev continues to operate as normal as far 20354451Seschrock * as I/O is concerned. 20364451Seschrock */ 20374451Seschrock int 203810817SEric.Schrock@Sun.COM vdev_degrade(spa_t *spa, uint64_t guid, vdev_aux_t aux) 20394451Seschrock { 20406643Seschrock vdev_t *vd; 20414451Seschrock 204210685SGeorge.Wilson@Sun.COM spa_vdev_state_enter(spa, SCL_NONE); 20434451Seschrock 20446643Seschrock if ((vd = spa_lookup_by_guid(spa, guid, B_TRUE)) == NULL) 20457754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, ENODEV)); 20467754SJeff.Bonwick@Sun.COM 20474451Seschrock if (!vd->vdev_ops->vdev_op_leaf) 20487754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, ENOTSUP)); 20494451Seschrock 20504451Seschrock /* 20514451Seschrock * If the vdev is already faulted, then don't do anything. 20524451Seschrock */ 20537754SJeff.Bonwick@Sun.COM if (vd->vdev_faulted || vd->vdev_degraded) 20547754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, 0)); 20554451Seschrock 20564451Seschrock vd->vdev_degraded = 1ULL; 20574451Seschrock if (!vdev_is_dead(vd)) 20584451Seschrock vdev_set_state(vd, B_FALSE, VDEV_STATE_DEGRADED, 205910817SEric.Schrock@Sun.COM aux); 20604451Seschrock 20617754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, vd, 0)); 20624451Seschrock } 20634451Seschrock 20644451Seschrock /* 20654451Seschrock * Online the given vdev. If 'unspare' is set, it implies two things. First, 20664451Seschrock * any attached spare device should be detached when the device finishes 20674451Seschrock * resilvering. Second, the online should be treated like a 'test' online case, 20684451Seschrock * so no FMA events are generated if the device fails to open. 20694451Seschrock */ 20704451Seschrock int 20717754SJeff.Bonwick@Sun.COM vdev_online(spa_t *spa, uint64_t guid, uint64_t flags, vdev_state_t *newstate) 2072789Sahrens { 20739816SGeorge.Wilson@Sun.COM vdev_t *vd, *tvd, *pvd, *rvd = spa->spa_root_vdev; 2074789Sahrens 207510685SGeorge.Wilson@Sun.COM spa_vdev_state_enter(spa, SCL_NONE); 20761485Slling 20776643Seschrock if ((vd = spa_lookup_by_guid(spa, guid, B_TRUE)) == NULL) 20787754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, ENODEV)); 2079789Sahrens 20801585Sbonwick if (!vd->vdev_ops->vdev_op_leaf) 20817754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, ENOTSUP)); 20821585Sbonwick 20839816SGeorge.Wilson@Sun.COM tvd = vd->vdev_top; 2084789Sahrens vd->vdev_offline = B_FALSE; 20851485Slling vd->vdev_tmpoffline = B_FALSE; 20867754SJeff.Bonwick@Sun.COM vd->vdev_checkremove = !!(flags & ZFS_ONLINE_CHECKREMOVE); 20877754SJeff.Bonwick@Sun.COM vd->vdev_forcefault = !!(flags & ZFS_ONLINE_FORCEFAULT); 20889816SGeorge.Wilson@Sun.COM 20899816SGeorge.Wilson@Sun.COM /* XXX - L2ARC 1.0 does not support expansion */ 20909816SGeorge.Wilson@Sun.COM if (!vd->vdev_aux) { 20919816SGeorge.Wilson@Sun.COM for (pvd = vd; pvd != rvd; pvd = pvd->vdev_parent) 20929816SGeorge.Wilson@Sun.COM pvd->vdev_expanding = !!(flags & ZFS_ONLINE_EXPAND); 20939816SGeorge.Wilson@Sun.COM } 20949816SGeorge.Wilson@Sun.COM 20959816SGeorge.Wilson@Sun.COM vdev_reopen(tvd); 20964451Seschrock vd->vdev_checkremove = vd->vdev_forcefault = B_FALSE; 20974451Seschrock 20989816SGeorge.Wilson@Sun.COM if (!vd->vdev_aux) { 20999816SGeorge.Wilson@Sun.COM for (pvd = vd; pvd != rvd; pvd = pvd->vdev_parent) 21009816SGeorge.Wilson@Sun.COM pvd->vdev_expanding = B_FALSE; 21019816SGeorge.Wilson@Sun.COM } 21029816SGeorge.Wilson@Sun.COM 21034451Seschrock if (newstate) 21044451Seschrock *newstate = vd->vdev_state; 21054451Seschrock if ((flags & ZFS_ONLINE_UNSPARE) && 21064451Seschrock !vdev_is_dead(vd) && vd->vdev_parent && 21074451Seschrock vd->vdev_parent->vdev_ops == &vdev_spare_ops && 21084451Seschrock vd->vdev_parent->vdev_child[0] == vd) 21094451Seschrock vd->vdev_unspare = B_TRUE; 2110789Sahrens 21119816SGeorge.Wilson@Sun.COM if ((flags & ZFS_ONLINE_EXPAND) || spa->spa_autoexpand) { 21129816SGeorge.Wilson@Sun.COM 21139816SGeorge.Wilson@Sun.COM /* XXX - L2ARC 1.0 does not support expansion */ 21149816SGeorge.Wilson@Sun.COM if (vd->vdev_aux) 21159816SGeorge.Wilson@Sun.COM return (spa_vdev_state_exit(spa, vd, ENOTSUP)); 21169816SGeorge.Wilson@Sun.COM spa_async_request(spa, SPA_ASYNC_CONFIG_UPDATE); 21179816SGeorge.Wilson@Sun.COM } 21188241SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, vd, 0)); 2119789Sahrens } 2120789Sahrens 2121789Sahrens int 212210685SGeorge.Wilson@Sun.COM vdev_offline_log(spa_t *spa) 212310685SGeorge.Wilson@Sun.COM { 212410685SGeorge.Wilson@Sun.COM int error = 0; 212510685SGeorge.Wilson@Sun.COM 212610685SGeorge.Wilson@Sun.COM if ((error = dmu_objset_find(spa_name(spa), zil_vdev_offline, 212710685SGeorge.Wilson@Sun.COM NULL, DS_FIND_CHILDREN)) == 0) { 212810685SGeorge.Wilson@Sun.COM 212910685SGeorge.Wilson@Sun.COM /* 213010685SGeorge.Wilson@Sun.COM * We successfully offlined the log device, sync out the 213110685SGeorge.Wilson@Sun.COM * current txg so that the "stubby" block can be removed 213210685SGeorge.Wilson@Sun.COM * by zil_sync(). 213310685SGeorge.Wilson@Sun.COM */ 213410685SGeorge.Wilson@Sun.COM txg_wait_synced(spa->spa_dsl_pool, 0); 213510685SGeorge.Wilson@Sun.COM } 213610685SGeorge.Wilson@Sun.COM return (error); 213710685SGeorge.Wilson@Sun.COM } 213810685SGeorge.Wilson@Sun.COM 213910685SGeorge.Wilson@Sun.COM int 21404451Seschrock vdev_offline(spa_t *spa, uint64_t guid, uint64_t flags) 2141789Sahrens { 21429701SGeorge.Wilson@Sun.COM vdev_t *vd, *tvd; 214310685SGeorge.Wilson@Sun.COM int error = 0; 214410685SGeorge.Wilson@Sun.COM uint64_t generation; 214510685SGeorge.Wilson@Sun.COM metaslab_group_t *mg; 214610685SGeorge.Wilson@Sun.COM 214710685SGeorge.Wilson@Sun.COM top: 214810685SGeorge.Wilson@Sun.COM spa_vdev_state_enter(spa, SCL_ALLOC); 2149789Sahrens 21506643Seschrock if ((vd = spa_lookup_by_guid(spa, guid, B_TRUE)) == NULL) 21517754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, ENODEV)); 2152789Sahrens 21531585Sbonwick if (!vd->vdev_ops->vdev_op_leaf) 21547754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, ENOTSUP)); 21551585Sbonwick 21569701SGeorge.Wilson@Sun.COM tvd = vd->vdev_top; 215710685SGeorge.Wilson@Sun.COM mg = tvd->vdev_mg; 215810685SGeorge.Wilson@Sun.COM generation = spa->spa_config_generation + 1; 21599701SGeorge.Wilson@Sun.COM 2160789Sahrens /* 21611732Sbonwick * If the device isn't already offline, try to offline it. 2162789Sahrens */ 21631732Sbonwick if (!vd->vdev_offline) { 21641732Sbonwick /* 21658241SJeff.Bonwick@Sun.COM * If this device has the only valid copy of some data, 21669701SGeorge.Wilson@Sun.COM * don't allow it to be offlined. Log devices are always 21679701SGeorge.Wilson@Sun.COM * expendable. 21681732Sbonwick */ 21699701SGeorge.Wilson@Sun.COM if (!tvd->vdev_islog && vd->vdev_aux == NULL && 21709701SGeorge.Wilson@Sun.COM vdev_dtl_required(vd)) 21717754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, EBUSY)); 2172789Sahrens 21731732Sbonwick /* 217410685SGeorge.Wilson@Sun.COM * If the top-level is a slog and it's had allocations 217510685SGeorge.Wilson@Sun.COM * then proceed. We check that the vdev's metaslab 217610685SGeorge.Wilson@Sun.COM * grop is not NULL since it's possible that we may 217710685SGeorge.Wilson@Sun.COM * have just added this vdev and have not yet initialized 217810685SGeorge.Wilson@Sun.COM * it's metaslabs. 217910685SGeorge.Wilson@Sun.COM */ 218010685SGeorge.Wilson@Sun.COM if (tvd->vdev_islog && mg != NULL) { 218110685SGeorge.Wilson@Sun.COM /* 218210685SGeorge.Wilson@Sun.COM * Prevent any future allocations. 218310685SGeorge.Wilson@Sun.COM */ 218410685SGeorge.Wilson@Sun.COM metaslab_class_remove(spa->spa_log_class, mg); 218510685SGeorge.Wilson@Sun.COM (void) spa_vdev_state_exit(spa, vd, 0); 218610685SGeorge.Wilson@Sun.COM 218710685SGeorge.Wilson@Sun.COM error = vdev_offline_log(spa); 218810685SGeorge.Wilson@Sun.COM 218910685SGeorge.Wilson@Sun.COM spa_vdev_state_enter(spa, SCL_ALLOC); 219010685SGeorge.Wilson@Sun.COM 219110685SGeorge.Wilson@Sun.COM /* 219210685SGeorge.Wilson@Sun.COM * Check to see if the config has changed. 219310685SGeorge.Wilson@Sun.COM */ 219410685SGeorge.Wilson@Sun.COM if (error || generation != spa->spa_config_generation) { 219510685SGeorge.Wilson@Sun.COM metaslab_class_add(spa->spa_log_class, mg); 219610685SGeorge.Wilson@Sun.COM if (error) 219710685SGeorge.Wilson@Sun.COM return (spa_vdev_state_exit(spa, 219810685SGeorge.Wilson@Sun.COM vd, error)); 219910685SGeorge.Wilson@Sun.COM (void) spa_vdev_state_exit(spa, vd, 0); 220010685SGeorge.Wilson@Sun.COM goto top; 220110685SGeorge.Wilson@Sun.COM } 220210685SGeorge.Wilson@Sun.COM ASSERT3U(tvd->vdev_stat.vs_alloc, ==, 0); 220310685SGeorge.Wilson@Sun.COM } 220410685SGeorge.Wilson@Sun.COM 220510685SGeorge.Wilson@Sun.COM /* 22061732Sbonwick * Offline this device and reopen its top-level vdev. 22079701SGeorge.Wilson@Sun.COM * If the top-level vdev is a log device then just offline 22089701SGeorge.Wilson@Sun.COM * it. Otherwise, if this action results in the top-level 22099701SGeorge.Wilson@Sun.COM * vdev becoming unusable, undo it and fail the request. 22101732Sbonwick */ 22111732Sbonwick vd->vdev_offline = B_TRUE; 22129701SGeorge.Wilson@Sun.COM vdev_reopen(tvd); 22139701SGeorge.Wilson@Sun.COM 22149701SGeorge.Wilson@Sun.COM if (!tvd->vdev_islog && vd->vdev_aux == NULL && 22159701SGeorge.Wilson@Sun.COM vdev_is_dead(tvd)) { 22161732Sbonwick vd->vdev_offline = B_FALSE; 22179701SGeorge.Wilson@Sun.COM vdev_reopen(tvd); 22187754SJeff.Bonwick@Sun.COM return (spa_vdev_state_exit(spa, NULL, EBUSY)); 22191732Sbonwick } 222010685SGeorge.Wilson@Sun.COM 222110685SGeorge.Wilson@Sun.COM /* 222210685SGeorge.Wilson@Sun.COM * Add the device back into the metaslab rotor so that 222310685SGeorge.Wilson@Sun.COM * once we online the device it's open for business. 222410685SGeorge.Wilson@Sun.COM */ 222510685SGeorge.Wilson@Sun.COM if (tvd->vdev_islog && mg != NULL) 222610685SGeorge.Wilson@Sun.COM metaslab_class_add(spa->spa_log_class, mg); 2227789Sahrens } 2228789Sahrens 22297754SJeff.Bonwick@Sun.COM vd->vdev_tmpoffline = !!(flags & ZFS_OFFLINE_TEMPORARY); 22301732Sbonwick 223110685SGeorge.Wilson@Sun.COM return (spa_vdev_state_exit(spa, vd, 0)); 2232789Sahrens } 2233789Sahrens 22341544Seschrock /* 22351544Seschrock * Clear the error counts associated with this vdev. Unlike vdev_online() and 22361544Seschrock * vdev_offline(), we assume the spa config is locked. We also clear all 22371544Seschrock * children. If 'vd' is NULL, then the user wants to clear all vdevs. 22381544Seschrock */ 22391544Seschrock void 22407754SJeff.Bonwick@Sun.COM vdev_clear(spa_t *spa, vdev_t *vd) 2241789Sahrens { 22427754SJeff.Bonwick@Sun.COM vdev_t *rvd = spa->spa_root_vdev; 22437754SJeff.Bonwick@Sun.COM 22447754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL); 2245789Sahrens 22461544Seschrock if (vd == NULL) 22477754SJeff.Bonwick@Sun.COM vd = rvd; 2248789Sahrens 22491544Seschrock vd->vdev_stat.vs_read_errors = 0; 22501544Seschrock vd->vdev_stat.vs_write_errors = 0; 22511544Seschrock vd->vdev_stat.vs_checksum_errors = 0; 2252789Sahrens 22537754SJeff.Bonwick@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 22547754SJeff.Bonwick@Sun.COM vdev_clear(spa, vd->vdev_child[c]); 22554451Seschrock 22564451Seschrock /* 22576959Sek110237 * If we're in the FAULTED state or have experienced failed I/O, then 22586959Sek110237 * clear the persistent state and attempt to reopen the device. We 22596959Sek110237 * also mark the vdev config dirty, so that the new faulted state is 22606959Sek110237 * written out to disk. 22614451Seschrock */ 22627754SJeff.Bonwick@Sun.COM if (vd->vdev_faulted || vd->vdev_degraded || 22637754SJeff.Bonwick@Sun.COM !vdev_readable(vd) || !vdev_writeable(vd)) { 22646959Sek110237 226510830SEric.Schrock@Sun.COM /* 226610830SEric.Schrock@Sun.COM * When reopening in reponse to a clear event, it may be due to 226710830SEric.Schrock@Sun.COM * a fmadm repair request. In this case, if the device is 226810830SEric.Schrock@Sun.COM * still broken, we want to still post the ereport again. 226910830SEric.Schrock@Sun.COM */ 227010830SEric.Schrock@Sun.COM vd->vdev_forcefault = B_TRUE; 227110830SEric.Schrock@Sun.COM 22724451Seschrock vd->vdev_faulted = vd->vdev_degraded = 0; 22737754SJeff.Bonwick@Sun.COM vd->vdev_cant_read = B_FALSE; 22747754SJeff.Bonwick@Sun.COM vd->vdev_cant_write = B_FALSE; 22757754SJeff.Bonwick@Sun.COM 22764451Seschrock vdev_reopen(vd); 22774451Seschrock 227810830SEric.Schrock@Sun.COM vd->vdev_forcefault = B_FALSE; 227910830SEric.Schrock@Sun.COM 22807754SJeff.Bonwick@Sun.COM if (vd != rvd) 22817754SJeff.Bonwick@Sun.COM vdev_state_dirty(vd->vdev_top); 22827754SJeff.Bonwick@Sun.COM 22837754SJeff.Bonwick@Sun.COM if (vd->vdev_aux == NULL && !vdev_is_dead(vd)) 22844808Sek110237 spa_async_request(spa, SPA_ASYNC_RESILVER); 22854451Seschrock 22864451Seschrock spa_event_notify(spa, vd, ESC_ZFS_VDEV_CLEAR); 22874451Seschrock } 228810830SEric.Schrock@Sun.COM 228910830SEric.Schrock@Sun.COM /* 229010830SEric.Schrock@Sun.COM * When clearing a FMA-diagnosed fault, we always want to 229110830SEric.Schrock@Sun.COM * unspare the device, as we assume that the original spare was 229210830SEric.Schrock@Sun.COM * done in response to the FMA fault. 229310830SEric.Schrock@Sun.COM */ 229410830SEric.Schrock@Sun.COM if (!vdev_is_dead(vd) && vd->vdev_parent != NULL && 229510830SEric.Schrock@Sun.COM vd->vdev_parent->vdev_ops == &vdev_spare_ops && 229610830SEric.Schrock@Sun.COM vd->vdev_parent->vdev_child[0] == vd) 229710830SEric.Schrock@Sun.COM vd->vdev_unspare = B_TRUE; 2298789Sahrens } 2299789Sahrens 23007754SJeff.Bonwick@Sun.COM boolean_t 23017754SJeff.Bonwick@Sun.COM vdev_is_dead(vdev_t *vd) 23025329Sgw25295 { 230310594SGeorge.Wilson@Sun.COM /* 230410594SGeorge.Wilson@Sun.COM * Holes and missing devices are always considered "dead". 230510594SGeorge.Wilson@Sun.COM * This simplifies the code since we don't have to check for 230610594SGeorge.Wilson@Sun.COM * these types of devices in the various code paths. 230710594SGeorge.Wilson@Sun.COM * Instead we rely on the fact that we skip over dead devices 230810594SGeorge.Wilson@Sun.COM * before issuing I/O to them. 230910594SGeorge.Wilson@Sun.COM */ 231010594SGeorge.Wilson@Sun.COM return (vd->vdev_state < VDEV_STATE_DEGRADED || vd->vdev_ishole || 231110594SGeorge.Wilson@Sun.COM vd->vdev_ops == &vdev_missing_ops); 23125329Sgw25295 } 23135329Sgw25295 23147754SJeff.Bonwick@Sun.COM boolean_t 23157754SJeff.Bonwick@Sun.COM vdev_readable(vdev_t *vd) 2316789Sahrens { 23177754SJeff.Bonwick@Sun.COM return (!vdev_is_dead(vd) && !vd->vdev_cant_read); 2318789Sahrens } 2319789Sahrens 23207754SJeff.Bonwick@Sun.COM boolean_t 23217754SJeff.Bonwick@Sun.COM vdev_writeable(vdev_t *vd) 2322789Sahrens { 23237754SJeff.Bonwick@Sun.COM return (!vdev_is_dead(vd) && !vd->vdev_cant_write); 23247754SJeff.Bonwick@Sun.COM } 2325789Sahrens 23267754SJeff.Bonwick@Sun.COM boolean_t 23277980SGeorge.Wilson@Sun.COM vdev_allocatable(vdev_t *vd) 23287980SGeorge.Wilson@Sun.COM { 23298241SJeff.Bonwick@Sun.COM uint64_t state = vd->vdev_state; 23308241SJeff.Bonwick@Sun.COM 23317980SGeorge.Wilson@Sun.COM /* 23328241SJeff.Bonwick@Sun.COM * We currently allow allocations from vdevs which may be in the 23337980SGeorge.Wilson@Sun.COM * process of reopening (i.e. VDEV_STATE_CLOSED). If the device 23347980SGeorge.Wilson@Sun.COM * fails to reopen then we'll catch it later when we're holding 23358241SJeff.Bonwick@Sun.COM * the proper locks. Note that we have to get the vdev state 23368241SJeff.Bonwick@Sun.COM * in a local variable because although it changes atomically, 23378241SJeff.Bonwick@Sun.COM * we're asking two separate questions about it. 23387980SGeorge.Wilson@Sun.COM */ 23398241SJeff.Bonwick@Sun.COM return (!(state < VDEV_STATE_DEGRADED && state != VDEV_STATE_CLOSED) && 234010594SGeorge.Wilson@Sun.COM !vd->vdev_cant_write && !vd->vdev_ishole && !vd->vdev_removing); 23417980SGeorge.Wilson@Sun.COM } 23427980SGeorge.Wilson@Sun.COM 23437980SGeorge.Wilson@Sun.COM boolean_t 23447754SJeff.Bonwick@Sun.COM vdev_accessible(vdev_t *vd, zio_t *zio) 23457754SJeff.Bonwick@Sun.COM { 23467754SJeff.Bonwick@Sun.COM ASSERT(zio->io_vd == vd); 2347789Sahrens 23487754SJeff.Bonwick@Sun.COM if (vdev_is_dead(vd) || vd->vdev_remove_wanted) 23497754SJeff.Bonwick@Sun.COM return (B_FALSE); 2350789Sahrens 23517754SJeff.Bonwick@Sun.COM if (zio->io_type == ZIO_TYPE_READ) 23527754SJeff.Bonwick@Sun.COM return (!vd->vdev_cant_read); 2353789Sahrens 23547754SJeff.Bonwick@Sun.COM if (zio->io_type == ZIO_TYPE_WRITE) 23557754SJeff.Bonwick@Sun.COM return (!vd->vdev_cant_write); 23567754SJeff.Bonwick@Sun.COM 23577754SJeff.Bonwick@Sun.COM return (B_TRUE); 2358789Sahrens } 2359789Sahrens 2360789Sahrens /* 2361789Sahrens * Get statistics for the given vdev. 2362789Sahrens */ 2363789Sahrens void 2364789Sahrens vdev_get_stats(vdev_t *vd, vdev_stat_t *vs) 2365789Sahrens { 2366789Sahrens vdev_t *rvd = vd->vdev_spa->spa_root_vdev; 2367789Sahrens 2368789Sahrens mutex_enter(&vd->vdev_stat_lock); 2369789Sahrens bcopy(&vd->vdev_stat, vs, sizeof (*vs)); 23707046Sahrens vs->vs_scrub_errors = vd->vdev_spa->spa_scrub_errors; 2371789Sahrens vs->vs_timestamp = gethrtime() - vs->vs_timestamp; 2372789Sahrens vs->vs_state = vd->vdev_state; 23739816SGeorge.Wilson@Sun.COM vs->vs_rsize = vdev_get_min_asize(vd); 23749816SGeorge.Wilson@Sun.COM if (vd->vdev_ops->vdev_op_leaf) 23759816SGeorge.Wilson@Sun.COM vs->vs_rsize += VDEV_LABEL_START_SIZE + VDEV_LABEL_END_SIZE; 2376789Sahrens mutex_exit(&vd->vdev_stat_lock); 2377789Sahrens 2378789Sahrens /* 2379789Sahrens * If we're getting stats on the root vdev, aggregate the I/O counts 2380789Sahrens * over all top-level vdevs (i.e. the direct children of the root). 2381789Sahrens */ 2382789Sahrens if (vd == rvd) { 23837754SJeff.Bonwick@Sun.COM for (int c = 0; c < rvd->vdev_children; c++) { 2384789Sahrens vdev_t *cvd = rvd->vdev_child[c]; 2385789Sahrens vdev_stat_t *cvs = &cvd->vdev_stat; 2386789Sahrens 2387789Sahrens mutex_enter(&vd->vdev_stat_lock); 23887754SJeff.Bonwick@Sun.COM for (int t = 0; t < ZIO_TYPES; t++) { 2389789Sahrens vs->vs_ops[t] += cvs->vs_ops[t]; 2390789Sahrens vs->vs_bytes[t] += cvs->vs_bytes[t]; 2391789Sahrens } 2392789Sahrens vs->vs_scrub_examined += cvs->vs_scrub_examined; 2393789Sahrens mutex_exit(&vd->vdev_stat_lock); 2394789Sahrens } 2395789Sahrens } 2396789Sahrens } 2397789Sahrens 2398789Sahrens void 23995450Sbrendan vdev_clear_stats(vdev_t *vd) 24005450Sbrendan { 24015450Sbrendan mutex_enter(&vd->vdev_stat_lock); 24025450Sbrendan vd->vdev_stat.vs_space = 0; 24035450Sbrendan vd->vdev_stat.vs_dspace = 0; 24045450Sbrendan vd->vdev_stat.vs_alloc = 0; 24055450Sbrendan mutex_exit(&vd->vdev_stat_lock); 24065450Sbrendan } 24075450Sbrendan 24085450Sbrendan void 24097754SJeff.Bonwick@Sun.COM vdev_stat_update(zio_t *zio, uint64_t psize) 2410789Sahrens { 24118241SJeff.Bonwick@Sun.COM spa_t *spa = zio->io_spa; 24128241SJeff.Bonwick@Sun.COM vdev_t *rvd = spa->spa_root_vdev; 24137754SJeff.Bonwick@Sun.COM vdev_t *vd = zio->io_vd ? zio->io_vd : rvd; 2414789Sahrens vdev_t *pvd; 2415789Sahrens uint64_t txg = zio->io_txg; 2416789Sahrens vdev_stat_t *vs = &vd->vdev_stat; 2417789Sahrens zio_type_t type = zio->io_type; 2418789Sahrens int flags = zio->io_flags; 2419789Sahrens 24207754SJeff.Bonwick@Sun.COM /* 24217754SJeff.Bonwick@Sun.COM * If this i/o is a gang leader, it didn't do any actual work. 24227754SJeff.Bonwick@Sun.COM */ 24237754SJeff.Bonwick@Sun.COM if (zio->io_gang_tree) 24247754SJeff.Bonwick@Sun.COM return; 24257754SJeff.Bonwick@Sun.COM 2426789Sahrens if (zio->io_error == 0) { 24277754SJeff.Bonwick@Sun.COM /* 24287754SJeff.Bonwick@Sun.COM * If this is a root i/o, don't count it -- we've already 24297754SJeff.Bonwick@Sun.COM * counted the top-level vdevs, and vdev_get_stats() will 24307754SJeff.Bonwick@Sun.COM * aggregate them when asked. This reduces contention on 24317754SJeff.Bonwick@Sun.COM * the root vdev_stat_lock and implicitly handles blocks 24327754SJeff.Bonwick@Sun.COM * that compress away to holes, for which there is no i/o. 24337754SJeff.Bonwick@Sun.COM * (Holes never create vdev children, so all the counters 24347754SJeff.Bonwick@Sun.COM * remain zero, which is what we want.) 24357754SJeff.Bonwick@Sun.COM * 24367754SJeff.Bonwick@Sun.COM * Note: this only applies to successful i/o (io_error == 0) 24377754SJeff.Bonwick@Sun.COM * because unlike i/o counts, errors are not additive. 24387754SJeff.Bonwick@Sun.COM * When reading a ditto block, for example, failure of 24397754SJeff.Bonwick@Sun.COM * one top-level vdev does not imply a root-level error. 24407754SJeff.Bonwick@Sun.COM */ 24417754SJeff.Bonwick@Sun.COM if (vd == rvd) 24427754SJeff.Bonwick@Sun.COM return; 24437754SJeff.Bonwick@Sun.COM 24447754SJeff.Bonwick@Sun.COM ASSERT(vd == zio->io_vd); 24458241SJeff.Bonwick@Sun.COM 24468241SJeff.Bonwick@Sun.COM if (flags & ZIO_FLAG_IO_BYPASS) 24478241SJeff.Bonwick@Sun.COM return; 24488241SJeff.Bonwick@Sun.COM 24498241SJeff.Bonwick@Sun.COM mutex_enter(&vd->vdev_stat_lock); 24508241SJeff.Bonwick@Sun.COM 24517754SJeff.Bonwick@Sun.COM if (flags & ZIO_FLAG_IO_REPAIR) { 24521807Sbonwick if (flags & ZIO_FLAG_SCRUB_THREAD) 24537754SJeff.Bonwick@Sun.COM vs->vs_scrub_repaired += psize; 24548241SJeff.Bonwick@Sun.COM if (flags & ZIO_FLAG_SELF_HEAL) 24557754SJeff.Bonwick@Sun.COM vs->vs_self_healed += psize; 2456789Sahrens } 24578241SJeff.Bonwick@Sun.COM 24588241SJeff.Bonwick@Sun.COM vs->vs_ops[type]++; 24598241SJeff.Bonwick@Sun.COM vs->vs_bytes[type] += psize; 24608241SJeff.Bonwick@Sun.COM 24618241SJeff.Bonwick@Sun.COM mutex_exit(&vd->vdev_stat_lock); 2462789Sahrens return; 2463789Sahrens } 2464789Sahrens 2465789Sahrens if (flags & ZIO_FLAG_SPECULATIVE) 2466789Sahrens return; 2467789Sahrens 24689725SEric.Schrock@Sun.COM /* 24699725SEric.Schrock@Sun.COM * If this is an I/O error that is going to be retried, then ignore the 24709725SEric.Schrock@Sun.COM * error. Otherwise, the user may interpret B_FAILFAST I/O errors as 24719725SEric.Schrock@Sun.COM * hard errors, when in reality they can happen for any number of 24729725SEric.Schrock@Sun.COM * innocuous reasons (bus resets, MPxIO link failure, etc). 24739725SEric.Schrock@Sun.COM */ 24749725SEric.Schrock@Sun.COM if (zio->io_error == EIO && 24759725SEric.Schrock@Sun.COM !(zio->io_flags & ZIO_FLAG_IO_RETRY)) 24769725SEric.Schrock@Sun.COM return; 24779725SEric.Schrock@Sun.COM 247810685SGeorge.Wilson@Sun.COM /* 247910685SGeorge.Wilson@Sun.COM * Intent logs writes won't propagate their error to the root 248010685SGeorge.Wilson@Sun.COM * I/O so don't mark these types of failures as pool-level 248110685SGeorge.Wilson@Sun.COM * errors. 248210685SGeorge.Wilson@Sun.COM */ 248310685SGeorge.Wilson@Sun.COM if (zio->io_vd == NULL && (zio->io_flags & ZIO_FLAG_DONT_PROPAGATE)) 248410685SGeorge.Wilson@Sun.COM return; 248510685SGeorge.Wilson@Sun.COM 24867754SJeff.Bonwick@Sun.COM mutex_enter(&vd->vdev_stat_lock); 24879230SGeorge.Wilson@Sun.COM if (type == ZIO_TYPE_READ && !vdev_is_dead(vd)) { 24887754SJeff.Bonwick@Sun.COM if (zio->io_error == ECKSUM) 24897754SJeff.Bonwick@Sun.COM vs->vs_checksum_errors++; 24907754SJeff.Bonwick@Sun.COM else 24917754SJeff.Bonwick@Sun.COM vs->vs_read_errors++; 2492789Sahrens } 24939230SGeorge.Wilson@Sun.COM if (type == ZIO_TYPE_WRITE && !vdev_is_dead(vd)) 24947754SJeff.Bonwick@Sun.COM vs->vs_write_errors++; 24957754SJeff.Bonwick@Sun.COM mutex_exit(&vd->vdev_stat_lock); 2496789Sahrens 24978241SJeff.Bonwick@Sun.COM if (type == ZIO_TYPE_WRITE && txg != 0 && 24988241SJeff.Bonwick@Sun.COM (!(flags & ZIO_FLAG_IO_REPAIR) || 24998241SJeff.Bonwick@Sun.COM (flags & ZIO_FLAG_SCRUB_THREAD))) { 25008241SJeff.Bonwick@Sun.COM /* 25018241SJeff.Bonwick@Sun.COM * This is either a normal write (not a repair), or it's a 25028241SJeff.Bonwick@Sun.COM * repair induced by the scrub thread. In the normal case, 25038241SJeff.Bonwick@Sun.COM * we commit the DTL change in the same txg as the block 25048241SJeff.Bonwick@Sun.COM * was born. In the scrub-induced repair case, we know that 25058241SJeff.Bonwick@Sun.COM * scrubs run in first-pass syncing context, so we commit 25068241SJeff.Bonwick@Sun.COM * the DTL change in spa->spa_syncing_txg. 25078241SJeff.Bonwick@Sun.COM * 25088241SJeff.Bonwick@Sun.COM * We currently do not make DTL entries for failed spontaneous 25098241SJeff.Bonwick@Sun.COM * self-healing writes triggered by normal (non-scrubbing) 25108241SJeff.Bonwick@Sun.COM * reads, because we have no transactional context in which to 25118241SJeff.Bonwick@Sun.COM * do so -- and it's not clear that it'd be desirable anyway. 25128241SJeff.Bonwick@Sun.COM */ 25138241SJeff.Bonwick@Sun.COM if (vd->vdev_ops->vdev_op_leaf) { 25148241SJeff.Bonwick@Sun.COM uint64_t commit_txg = txg; 25158241SJeff.Bonwick@Sun.COM if (flags & ZIO_FLAG_SCRUB_THREAD) { 25168241SJeff.Bonwick@Sun.COM ASSERT(flags & ZIO_FLAG_IO_REPAIR); 25178241SJeff.Bonwick@Sun.COM ASSERT(spa_sync_pass(spa) == 1); 25188241SJeff.Bonwick@Sun.COM vdev_dtl_dirty(vd, DTL_SCRUB, txg, 1); 25198241SJeff.Bonwick@Sun.COM commit_txg = spa->spa_syncing_txg; 25208241SJeff.Bonwick@Sun.COM } 25218241SJeff.Bonwick@Sun.COM ASSERT(commit_txg >= spa->spa_syncing_txg); 25228241SJeff.Bonwick@Sun.COM if (vdev_dtl_contains(vd, DTL_MISSING, txg, 1)) 25238241SJeff.Bonwick@Sun.COM return; 25248241SJeff.Bonwick@Sun.COM for (pvd = vd; pvd != rvd; pvd = pvd->vdev_parent) 25258241SJeff.Bonwick@Sun.COM vdev_dtl_dirty(pvd, DTL_PARTIAL, txg, 1); 25268241SJeff.Bonwick@Sun.COM vdev_dirty(vd->vdev_top, VDD_DTL, vd, commit_txg); 2527789Sahrens } 25288241SJeff.Bonwick@Sun.COM if (vd != rvd) 25298241SJeff.Bonwick@Sun.COM vdev_dtl_dirty(vd, DTL_MISSING, txg, 1); 2530789Sahrens } 2531789Sahrens } 2532789Sahrens 2533789Sahrens void 2534789Sahrens vdev_scrub_stat_update(vdev_t *vd, pool_scrub_type_t type, boolean_t complete) 2535789Sahrens { 2536789Sahrens vdev_stat_t *vs = &vd->vdev_stat; 2537789Sahrens 25389816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) 2539789Sahrens vdev_scrub_stat_update(vd->vdev_child[c], type, complete); 2540789Sahrens 2541789Sahrens mutex_enter(&vd->vdev_stat_lock); 2542789Sahrens 2543789Sahrens if (type == POOL_SCRUB_NONE) { 2544789Sahrens /* 2545789Sahrens * Update completion and end time. Leave everything else alone 2546789Sahrens * so we can report what happened during the previous scrub. 2547789Sahrens */ 2548789Sahrens vs->vs_scrub_complete = complete; 2549789Sahrens vs->vs_scrub_end = gethrestime_sec(); 2550789Sahrens } else { 2551789Sahrens vs->vs_scrub_type = type; 2552789Sahrens vs->vs_scrub_complete = 0; 2553789Sahrens vs->vs_scrub_examined = 0; 2554789Sahrens vs->vs_scrub_repaired = 0; 2555789Sahrens vs->vs_scrub_start = gethrestime_sec(); 2556789Sahrens vs->vs_scrub_end = 0; 2557789Sahrens } 2558789Sahrens 2559789Sahrens mutex_exit(&vd->vdev_stat_lock); 2560789Sahrens } 2561789Sahrens 2562789Sahrens /* 2563789Sahrens * Update the in-core space usage stats for this vdev and the root vdev. 2564789Sahrens */ 2565789Sahrens void 25665450Sbrendan vdev_space_update(vdev_t *vd, int64_t space_delta, int64_t alloc_delta, 25675450Sbrendan boolean_t update_root) 2568789Sahrens { 25694527Sperrin int64_t dspace_delta = space_delta; 25704527Sperrin spa_t *spa = vd->vdev_spa; 25714527Sperrin vdev_t *rvd = spa->spa_root_vdev; 25724527Sperrin 2573789Sahrens ASSERT(vd == vd->vdev_top); 25744527Sperrin 25754527Sperrin /* 25764527Sperrin * Apply the inverse of the psize-to-asize (ie. RAID-Z) space-expansion 25774527Sperrin * factor. We must calculate this here and not at the root vdev 25784527Sperrin * because the root vdev's psize-to-asize is simply the max of its 25794527Sperrin * childrens', thus not accurate enough for us. 25804527Sperrin */ 25814527Sperrin ASSERT((dspace_delta & (SPA_MINBLOCKSIZE-1)) == 0); 25829701SGeorge.Wilson@Sun.COM ASSERT(vd->vdev_deflate_ratio != 0 || vd->vdev_isl2cache); 25834527Sperrin dspace_delta = (dspace_delta >> SPA_MINBLOCKSHIFT) * 25844527Sperrin vd->vdev_deflate_ratio; 2585789Sahrens 25864527Sperrin mutex_enter(&vd->vdev_stat_lock); 25874527Sperrin vd->vdev_stat.vs_space += space_delta; 25884527Sperrin vd->vdev_stat.vs_alloc += alloc_delta; 25894527Sperrin vd->vdev_stat.vs_dspace += dspace_delta; 25904527Sperrin mutex_exit(&vd->vdev_stat_lock); 25912082Seschrock 25925450Sbrendan if (update_root) { 25935450Sbrendan ASSERT(rvd == vd->vdev_parent); 25945450Sbrendan ASSERT(vd->vdev_ms_count != 0); 25954527Sperrin 25965450Sbrendan /* 25975450Sbrendan * Don't count non-normal (e.g. intent log) space as part of 25985450Sbrendan * the pool's capacity. 25995450Sbrendan */ 260010594SGeorge.Wilson@Sun.COM if (vd->vdev_islog) 26015450Sbrendan return; 26025450Sbrendan 26035450Sbrendan mutex_enter(&rvd->vdev_stat_lock); 26045450Sbrendan rvd->vdev_stat.vs_space += space_delta; 26055450Sbrendan rvd->vdev_stat.vs_alloc += alloc_delta; 26065450Sbrendan rvd->vdev_stat.vs_dspace += dspace_delta; 26075450Sbrendan mutex_exit(&rvd->vdev_stat_lock); 26085450Sbrendan } 2609789Sahrens } 2610789Sahrens 2611789Sahrens /* 2612789Sahrens * Mark a top-level vdev's config as dirty, placing it on the dirty list 2613789Sahrens * so that it will be written out next time the vdev configuration is synced. 2614789Sahrens * If the root vdev is specified (vdev_top == NULL), dirty all top-level vdevs. 2615789Sahrens */ 2616789Sahrens void 2617789Sahrens vdev_config_dirty(vdev_t *vd) 2618789Sahrens { 2619789Sahrens spa_t *spa = vd->vdev_spa; 2620789Sahrens vdev_t *rvd = spa->spa_root_vdev; 2621789Sahrens int c; 2622789Sahrens 26231601Sbonwick /* 26249425SEric.Schrock@Sun.COM * If this is an aux vdev (as with l2cache and spare devices), then we 26259425SEric.Schrock@Sun.COM * update the vdev config manually and set the sync flag. 26266643Seschrock */ 26276643Seschrock if (vd->vdev_aux != NULL) { 26286643Seschrock spa_aux_vdev_t *sav = vd->vdev_aux; 26296643Seschrock nvlist_t **aux; 26306643Seschrock uint_t naux; 26316643Seschrock 26326643Seschrock for (c = 0; c < sav->sav_count; c++) { 26336643Seschrock if (sav->sav_vdevs[c] == vd) 26346643Seschrock break; 26356643Seschrock } 26366643Seschrock 26377754SJeff.Bonwick@Sun.COM if (c == sav->sav_count) { 26387754SJeff.Bonwick@Sun.COM /* 26397754SJeff.Bonwick@Sun.COM * We're being removed. There's nothing more to do. 26407754SJeff.Bonwick@Sun.COM */ 26417754SJeff.Bonwick@Sun.COM ASSERT(sav->sav_sync == B_TRUE); 26427754SJeff.Bonwick@Sun.COM return; 26437754SJeff.Bonwick@Sun.COM } 26447754SJeff.Bonwick@Sun.COM 26456643Seschrock sav->sav_sync = B_TRUE; 26466643Seschrock 26479425SEric.Schrock@Sun.COM if (nvlist_lookup_nvlist_array(sav->sav_config, 26489425SEric.Schrock@Sun.COM ZPOOL_CONFIG_L2CACHE, &aux, &naux) != 0) { 26499425SEric.Schrock@Sun.COM VERIFY(nvlist_lookup_nvlist_array(sav->sav_config, 26509425SEric.Schrock@Sun.COM ZPOOL_CONFIG_SPARES, &aux, &naux) == 0); 26519425SEric.Schrock@Sun.COM } 26526643Seschrock 26536643Seschrock ASSERT(c < naux); 26546643Seschrock 26556643Seschrock /* 26566643Seschrock * Setting the nvlist in the middle if the array is a little 26576643Seschrock * sketchy, but it will work. 26586643Seschrock */ 26596643Seschrock nvlist_free(aux[c]); 26606643Seschrock aux[c] = vdev_config_generate(spa, vd, B_TRUE, B_FALSE, B_TRUE); 26616643Seschrock 26626643Seschrock return; 26636643Seschrock } 26646643Seschrock 26656643Seschrock /* 26667754SJeff.Bonwick@Sun.COM * The dirty list is protected by the SCL_CONFIG lock. The caller 26677754SJeff.Bonwick@Sun.COM * must either hold SCL_CONFIG as writer, or must be the sync thread 26687754SJeff.Bonwick@Sun.COM * (which holds SCL_CONFIG as reader). There's only one sync thread, 26691601Sbonwick * so this is sufficient to ensure mutual exclusion. 26701601Sbonwick */ 26717754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_CONFIG, RW_WRITER) || 26727754SJeff.Bonwick@Sun.COM (dsl_pool_sync_context(spa_get_dsl(spa)) && 26737754SJeff.Bonwick@Sun.COM spa_config_held(spa, SCL_CONFIG, RW_READER))); 26741601Sbonwick 2675789Sahrens if (vd == rvd) { 2676789Sahrens for (c = 0; c < rvd->vdev_children; c++) 2677789Sahrens vdev_config_dirty(rvd->vdev_child[c]); 2678789Sahrens } else { 2679789Sahrens ASSERT(vd == vd->vdev_top); 2680789Sahrens 268110594SGeorge.Wilson@Sun.COM if (!list_link_active(&vd->vdev_config_dirty_node) && 268210594SGeorge.Wilson@Sun.COM !vd->vdev_ishole) 26837754SJeff.Bonwick@Sun.COM list_insert_head(&spa->spa_config_dirty_list, vd); 2684789Sahrens } 2685789Sahrens } 2686789Sahrens 2687789Sahrens void 2688789Sahrens vdev_config_clean(vdev_t *vd) 2689789Sahrens { 26901601Sbonwick spa_t *spa = vd->vdev_spa; 26911601Sbonwick 26927754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_CONFIG, RW_WRITER) || 26937754SJeff.Bonwick@Sun.COM (dsl_pool_sync_context(spa_get_dsl(spa)) && 26947754SJeff.Bonwick@Sun.COM spa_config_held(spa, SCL_CONFIG, RW_READER))); 26957754SJeff.Bonwick@Sun.COM 26967754SJeff.Bonwick@Sun.COM ASSERT(list_link_active(&vd->vdev_config_dirty_node)); 26977754SJeff.Bonwick@Sun.COM list_remove(&spa->spa_config_dirty_list, vd); 26987754SJeff.Bonwick@Sun.COM } 26997754SJeff.Bonwick@Sun.COM 27007754SJeff.Bonwick@Sun.COM /* 27017754SJeff.Bonwick@Sun.COM * Mark a top-level vdev's state as dirty, so that the next pass of 27027754SJeff.Bonwick@Sun.COM * spa_sync() can convert this into vdev_config_dirty(). We distinguish 27037754SJeff.Bonwick@Sun.COM * the state changes from larger config changes because they require 27047754SJeff.Bonwick@Sun.COM * much less locking, and are often needed for administrative actions. 27057754SJeff.Bonwick@Sun.COM */ 27067754SJeff.Bonwick@Sun.COM void 27077754SJeff.Bonwick@Sun.COM vdev_state_dirty(vdev_t *vd) 27087754SJeff.Bonwick@Sun.COM { 27097754SJeff.Bonwick@Sun.COM spa_t *spa = vd->vdev_spa; 27107754SJeff.Bonwick@Sun.COM 27117754SJeff.Bonwick@Sun.COM ASSERT(vd == vd->vdev_top); 27121601Sbonwick 27137754SJeff.Bonwick@Sun.COM /* 27147754SJeff.Bonwick@Sun.COM * The state list is protected by the SCL_STATE lock. The caller 27157754SJeff.Bonwick@Sun.COM * must either hold SCL_STATE as writer, or must be the sync thread 27167754SJeff.Bonwick@Sun.COM * (which holds SCL_STATE as reader). There's only one sync thread, 27177754SJeff.Bonwick@Sun.COM * so this is sufficient to ensure mutual exclusion. 27187754SJeff.Bonwick@Sun.COM */ 27197754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_STATE, RW_WRITER) || 27207754SJeff.Bonwick@Sun.COM (dsl_pool_sync_context(spa_get_dsl(spa)) && 27217754SJeff.Bonwick@Sun.COM spa_config_held(spa, SCL_STATE, RW_READER))); 27227754SJeff.Bonwick@Sun.COM 27237754SJeff.Bonwick@Sun.COM if (!list_link_active(&vd->vdev_state_dirty_node)) 27247754SJeff.Bonwick@Sun.COM list_insert_head(&spa->spa_state_dirty_list, vd); 27257754SJeff.Bonwick@Sun.COM } 27267754SJeff.Bonwick@Sun.COM 27277754SJeff.Bonwick@Sun.COM void 27287754SJeff.Bonwick@Sun.COM vdev_state_clean(vdev_t *vd) 27297754SJeff.Bonwick@Sun.COM { 27307754SJeff.Bonwick@Sun.COM spa_t *spa = vd->vdev_spa; 27317754SJeff.Bonwick@Sun.COM 27327754SJeff.Bonwick@Sun.COM ASSERT(spa_config_held(spa, SCL_STATE, RW_WRITER) || 27337754SJeff.Bonwick@Sun.COM (dsl_pool_sync_context(spa_get_dsl(spa)) && 27347754SJeff.Bonwick@Sun.COM spa_config_held(spa, SCL_STATE, RW_READER))); 27357754SJeff.Bonwick@Sun.COM 27367754SJeff.Bonwick@Sun.COM ASSERT(list_link_active(&vd->vdev_state_dirty_node)); 27377754SJeff.Bonwick@Sun.COM list_remove(&spa->spa_state_dirty_list, vd); 2738789Sahrens } 2739789Sahrens 27406523Sek110237 /* 27416523Sek110237 * Propagate vdev state up from children to parent. 27426523Sek110237 */ 27431775Sbillm void 27441775Sbillm vdev_propagate_state(vdev_t *vd) 27451775Sbillm { 27468241SJeff.Bonwick@Sun.COM spa_t *spa = vd->vdev_spa; 27478241SJeff.Bonwick@Sun.COM vdev_t *rvd = spa->spa_root_vdev; 27481775Sbillm int degraded = 0, faulted = 0; 27491775Sbillm int corrupted = 0; 27501775Sbillm vdev_t *child; 27511775Sbillm 27524451Seschrock if (vd->vdev_children > 0) { 27539816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) { 27544451Seschrock child = vd->vdev_child[c]; 27556976Seschrock 275610594SGeorge.Wilson@Sun.COM /* 275710594SGeorge.Wilson@Sun.COM * Don't factor holes into the decision. 275810594SGeorge.Wilson@Sun.COM */ 275910594SGeorge.Wilson@Sun.COM if (child->vdev_ishole) 276010594SGeorge.Wilson@Sun.COM continue; 276110594SGeorge.Wilson@Sun.COM 27627754SJeff.Bonwick@Sun.COM if (!vdev_readable(child) || 27638241SJeff.Bonwick@Sun.COM (!vdev_writeable(child) && spa_writeable(spa))) { 27646976Seschrock /* 27656976Seschrock * Root special: if there is a top-level log 27666976Seschrock * device, treat the root vdev as if it were 27676976Seschrock * degraded. 27686976Seschrock */ 27696976Seschrock if (child->vdev_islog && vd == rvd) 27706976Seschrock degraded++; 27716976Seschrock else 27726976Seschrock faulted++; 27736976Seschrock } else if (child->vdev_state <= VDEV_STATE_DEGRADED) { 27744451Seschrock degraded++; 27756976Seschrock } 27764451Seschrock 27774451Seschrock if (child->vdev_stat.vs_aux == VDEV_AUX_CORRUPT_DATA) 27784451Seschrock corrupted++; 27794451Seschrock } 27801775Sbillm 27814451Seschrock vd->vdev_ops->vdev_op_state_change(vd, faulted, degraded); 27824451Seschrock 27834451Seschrock /* 27847754SJeff.Bonwick@Sun.COM * Root special: if there is a top-level vdev that cannot be 27854451Seschrock * opened due to corrupted metadata, then propagate the root 27864451Seschrock * vdev's aux state as 'corrupt' rather than 'insufficient 27874451Seschrock * replicas'. 27884451Seschrock */ 27894451Seschrock if (corrupted && vd == rvd && 27904451Seschrock rvd->vdev_state == VDEV_STATE_CANT_OPEN) 27914451Seschrock vdev_set_state(rvd, B_FALSE, VDEV_STATE_CANT_OPEN, 27924451Seschrock VDEV_AUX_CORRUPT_DATA); 27931775Sbillm } 27941775Sbillm 27956976Seschrock if (vd->vdev_parent) 27964451Seschrock vdev_propagate_state(vd->vdev_parent); 27971775Sbillm } 27981775Sbillm 2799789Sahrens /* 28001544Seschrock * Set a vdev's state. If this is during an open, we don't update the parent 28011544Seschrock * state, because we're in the process of opening children depth-first. 28021544Seschrock * Otherwise, we propagate the change to the parent. 28031544Seschrock * 28041544Seschrock * If this routine places a device in a faulted state, an appropriate ereport is 28051544Seschrock * generated. 2806789Sahrens */ 2807789Sahrens void 28081544Seschrock vdev_set_state(vdev_t *vd, boolean_t isopen, vdev_state_t state, vdev_aux_t aux) 2809789Sahrens { 28101986Seschrock uint64_t save_state; 28116643Seschrock spa_t *spa = vd->vdev_spa; 28121544Seschrock 28131544Seschrock if (state == vd->vdev_state) { 28141544Seschrock vd->vdev_stat.vs_aux = aux; 2815789Sahrens return; 28161544Seschrock } 28171544Seschrock 28181986Seschrock save_state = vd->vdev_state; 2819789Sahrens 2820789Sahrens vd->vdev_state = state; 2821789Sahrens vd->vdev_stat.vs_aux = aux; 2822789Sahrens 28234451Seschrock /* 28244451Seschrock * If we are setting the vdev state to anything but an open state, then 28254451Seschrock * always close the underlying device. Otherwise, we keep accessible 28264451Seschrock * but invalid devices open forever. We don't call vdev_close() itself, 28274451Seschrock * because that implies some extra checks (offline, etc) that we don't 28284451Seschrock * want here. This is limited to leaf devices, because otherwise 28294451Seschrock * closing the device will affect other children. 28304451Seschrock */ 28317780SJeff.Bonwick@Sun.COM if (vdev_is_dead(vd) && vd->vdev_ops->vdev_op_leaf) 28324451Seschrock vd->vdev_ops->vdev_op_close(vd); 28334451Seschrock 283410817SEric.Schrock@Sun.COM /* 283510817SEric.Schrock@Sun.COM * If we have brought this vdev back into service, we need 283610817SEric.Schrock@Sun.COM * to notify fmd so that it can gracefully repair any outstanding 283710817SEric.Schrock@Sun.COM * cases due to a missing device. We do this in all cases, even those 283810817SEric.Schrock@Sun.COM * that probably don't correlate to a repaired fault. This is sure to 283910817SEric.Schrock@Sun.COM * catch all cases, and we let the zfs-retire agent sort it out. If 284010817SEric.Schrock@Sun.COM * this is a transient state it's OK, as the retire agent will 284110817SEric.Schrock@Sun.COM * double-check the state of the vdev before repairing it. 284210817SEric.Schrock@Sun.COM */ 284310817SEric.Schrock@Sun.COM if (state == VDEV_STATE_HEALTHY && vd->vdev_ops->vdev_op_leaf && 284410817SEric.Schrock@Sun.COM vd->vdev_prevstate != state) 284510817SEric.Schrock@Sun.COM zfs_post_state_change(spa, vd); 284610817SEric.Schrock@Sun.COM 28474451Seschrock if (vd->vdev_removed && 28484451Seschrock state == VDEV_STATE_CANT_OPEN && 28494451Seschrock (aux == VDEV_AUX_OPEN_FAILED || vd->vdev_checkremove)) { 28504451Seschrock /* 28514451Seschrock * If the previous state is set to VDEV_STATE_REMOVED, then this 28524451Seschrock * device was previously marked removed and someone attempted to 28534451Seschrock * reopen it. If this failed due to a nonexistent device, then 28544451Seschrock * keep the device in the REMOVED state. We also let this be if 28554451Seschrock * it is one of our special test online cases, which is only 28564451Seschrock * attempting to online the device and shouldn't generate an FMA 28574451Seschrock * fault. 28584451Seschrock */ 28594451Seschrock vd->vdev_state = VDEV_STATE_REMOVED; 28604451Seschrock vd->vdev_stat.vs_aux = VDEV_AUX_NONE; 28614451Seschrock } else if (state == VDEV_STATE_REMOVED) { 28624451Seschrock vd->vdev_removed = B_TRUE; 28634451Seschrock } else if (state == VDEV_STATE_CANT_OPEN) { 28641544Seschrock /* 28651544Seschrock * If we fail to open a vdev during an import, we mark it as 28661544Seschrock * "not available", which signifies that it was never there to 28671544Seschrock * begin with. Failure to open such a device is not considered 28681544Seschrock * an error. 28691544Seschrock */ 28706643Seschrock if (spa->spa_load_state == SPA_LOAD_IMPORT && 28711986Seschrock vd->vdev_ops->vdev_op_leaf) 28721986Seschrock vd->vdev_not_present = 1; 28731986Seschrock 28741986Seschrock /* 28751986Seschrock * Post the appropriate ereport. If the 'prevstate' field is 28761986Seschrock * set to something other than VDEV_STATE_UNKNOWN, it indicates 28771986Seschrock * that this is part of a vdev_reopen(). In this case, we don't 28781986Seschrock * want to post the ereport if the device was already in the 28791986Seschrock * CANT_OPEN state beforehand. 28804451Seschrock * 28814451Seschrock * If the 'checkremove' flag is set, then this is an attempt to 28824451Seschrock * online the device in response to an insertion event. If we 28834451Seschrock * hit this case, then we have detected an insertion event for a 28844451Seschrock * faulted or offline device that wasn't in the removed state. 28854451Seschrock * In this scenario, we don't post an ereport because we are 28864451Seschrock * about to replace the device, or attempt an online with 28874451Seschrock * vdev_forcefault, which will generate the fault for us. 28881986Seschrock */ 28894451Seschrock if ((vd->vdev_prevstate != state || vd->vdev_forcefault) && 28904451Seschrock !vd->vdev_not_present && !vd->vdev_checkremove && 28916643Seschrock vd != spa->spa_root_vdev) { 28921544Seschrock const char *class; 28931544Seschrock 28941544Seschrock switch (aux) { 28951544Seschrock case VDEV_AUX_OPEN_FAILED: 28961544Seschrock class = FM_EREPORT_ZFS_DEVICE_OPEN_FAILED; 28971544Seschrock break; 28981544Seschrock case VDEV_AUX_CORRUPT_DATA: 28991544Seschrock class = FM_EREPORT_ZFS_DEVICE_CORRUPT_DATA; 29001544Seschrock break; 29011544Seschrock case VDEV_AUX_NO_REPLICAS: 29021544Seschrock class = FM_EREPORT_ZFS_DEVICE_NO_REPLICAS; 29031544Seschrock break; 29041544Seschrock case VDEV_AUX_BAD_GUID_SUM: 29051544Seschrock class = FM_EREPORT_ZFS_DEVICE_BAD_GUID_SUM; 29061544Seschrock break; 29071544Seschrock case VDEV_AUX_TOO_SMALL: 29081544Seschrock class = FM_EREPORT_ZFS_DEVICE_TOO_SMALL; 29091544Seschrock break; 29101544Seschrock case VDEV_AUX_BAD_LABEL: 29111544Seschrock class = FM_EREPORT_ZFS_DEVICE_BAD_LABEL; 29121544Seschrock break; 29137754SJeff.Bonwick@Sun.COM case VDEV_AUX_IO_FAILURE: 29147754SJeff.Bonwick@Sun.COM class = FM_EREPORT_ZFS_IO_FAILURE; 29157754SJeff.Bonwick@Sun.COM break; 29161544Seschrock default: 29171544Seschrock class = FM_EREPORT_ZFS_DEVICE_UNKNOWN; 29181544Seschrock } 29191544Seschrock 29206643Seschrock zfs_ereport_post(class, spa, vd, NULL, save_state, 0); 29211544Seschrock } 29224451Seschrock 29234451Seschrock /* Erase any notion of persistent removed state */ 29244451Seschrock vd->vdev_removed = B_FALSE; 29254451Seschrock } else { 29264451Seschrock vd->vdev_removed = B_FALSE; 29271544Seschrock } 29281544Seschrock 29299583STim.Haley@Sun.COM if (!isopen && vd->vdev_parent) 29309583STim.Haley@Sun.COM vdev_propagate_state(vd->vdev_parent); 2931789Sahrens } 29327042Sgw25295 29337042Sgw25295 /* 29347042Sgw25295 * Check the vdev configuration to ensure that it's capable of supporting 29357042Sgw25295 * a root pool. Currently, we do not support RAID-Z or partial configuration. 29367042Sgw25295 * In addition, only a single top-level vdev is allowed and none of the leaves 29377042Sgw25295 * can be wholedisks. 29387042Sgw25295 */ 29397042Sgw25295 boolean_t 29407042Sgw25295 vdev_is_bootable(vdev_t *vd) 29417042Sgw25295 { 29427042Sgw25295 if (!vd->vdev_ops->vdev_op_leaf) { 29437042Sgw25295 char *vdev_type = vd->vdev_ops->vdev_op_type; 29447042Sgw25295 29457042Sgw25295 if (strcmp(vdev_type, VDEV_TYPE_ROOT) == 0 && 29467042Sgw25295 vd->vdev_children > 1) { 29477042Sgw25295 return (B_FALSE); 29487042Sgw25295 } else if (strcmp(vdev_type, VDEV_TYPE_RAIDZ) == 0 || 29497042Sgw25295 strcmp(vdev_type, VDEV_TYPE_MISSING) == 0) { 29507042Sgw25295 return (B_FALSE); 29517042Sgw25295 } 29527042Sgw25295 } else if (vd->vdev_wholedisk == 1) { 29537042Sgw25295 return (B_FALSE); 29547042Sgw25295 } 29557042Sgw25295 29569816SGeorge.Wilson@Sun.COM for (int c = 0; c < vd->vdev_children; c++) { 29577042Sgw25295 if (!vdev_is_bootable(vd->vdev_child[c])) 29587042Sgw25295 return (B_FALSE); 29597042Sgw25295 } 29607042Sgw25295 return (B_TRUE); 29617042Sgw25295 } 29629701SGeorge.Wilson@Sun.COM 296310594SGeorge.Wilson@Sun.COM /* 296410594SGeorge.Wilson@Sun.COM * Load the state from the original vdev tree (ovd) which 296510594SGeorge.Wilson@Sun.COM * we've retrieved from the MOS config object. If the original 296610594SGeorge.Wilson@Sun.COM * vdev was offline then we transfer that state to the device 296710594SGeorge.Wilson@Sun.COM * in the current vdev tree (nvd). 296810594SGeorge.Wilson@Sun.COM */ 29699701SGeorge.Wilson@Sun.COM void 297010594SGeorge.Wilson@Sun.COM vdev_load_log_state(vdev_t *nvd, vdev_t *ovd) 29719701SGeorge.Wilson@Sun.COM { 297210594SGeorge.Wilson@Sun.COM spa_t *spa = nvd->vdev_spa; 297310594SGeorge.Wilson@Sun.COM 297410594SGeorge.Wilson@Sun.COM ASSERT(spa_config_held(spa, SCL_STATE_ALL, RW_WRITER) == SCL_STATE_ALL); 297510594SGeorge.Wilson@Sun.COM ASSERT3U(nvd->vdev_guid, ==, ovd->vdev_guid); 297610594SGeorge.Wilson@Sun.COM 297710594SGeorge.Wilson@Sun.COM for (int c = 0; c < nvd->vdev_children; c++) 297810594SGeorge.Wilson@Sun.COM vdev_load_log_state(nvd->vdev_child[c], ovd->vdev_child[c]); 297910594SGeorge.Wilson@Sun.COM 298010594SGeorge.Wilson@Sun.COM if (nvd->vdev_ops->vdev_op_leaf && ovd->vdev_offline) { 29819701SGeorge.Wilson@Sun.COM /* 29829701SGeorge.Wilson@Sun.COM * It would be nice to call vdev_offline() 29839701SGeorge.Wilson@Sun.COM * directly but the pool isn't fully loaded and 29849701SGeorge.Wilson@Sun.COM * the txg threads have not been started yet. 29859701SGeorge.Wilson@Sun.COM */ 298610594SGeorge.Wilson@Sun.COM nvd->vdev_offline = ovd->vdev_offline; 298710594SGeorge.Wilson@Sun.COM vdev_reopen(nvd->vdev_top); 29889701SGeorge.Wilson@Sun.COM } 29899701SGeorge.Wilson@Sun.COM } 29909816SGeorge.Wilson@Sun.COM 29919816SGeorge.Wilson@Sun.COM /* 29929816SGeorge.Wilson@Sun.COM * Expand a vdev if possible. 29939816SGeorge.Wilson@Sun.COM */ 29949816SGeorge.Wilson@Sun.COM void 29959816SGeorge.Wilson@Sun.COM vdev_expand(vdev_t *vd, uint64_t txg) 29969816SGeorge.Wilson@Sun.COM { 29979816SGeorge.Wilson@Sun.COM ASSERT(vd->vdev_top == vd); 29989816SGeorge.Wilson@Sun.COM ASSERT(spa_config_held(vd->vdev_spa, SCL_ALL, RW_WRITER) == SCL_ALL); 29999816SGeorge.Wilson@Sun.COM 30009816SGeorge.Wilson@Sun.COM if ((vd->vdev_asize >> vd->vdev_ms_shift) > vd->vdev_ms_count) { 30019816SGeorge.Wilson@Sun.COM VERIFY(vdev_metaslab_init(vd, txg) == 0); 30029816SGeorge.Wilson@Sun.COM vdev_config_dirty(vd); 30039816SGeorge.Wilson@Sun.COM } 30049816SGeorge.Wilson@Sun.COM } 3005