1fa9e4066Sahrens /* 2fa9e4066Sahrens * CDDL HEADER START 3fa9e4066Sahrens * 4fa9e4066Sahrens * The contents of this file are subject to the terms of the 5ea8dc4b6Seschrock * Common Development and Distribution License (the "License"). 6ea8dc4b6Seschrock * You may not use this file except in compliance with the License. 7fa9e4066Sahrens * 8fa9e4066Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9fa9e4066Sahrens * or http://www.opensolaris.org/os/licensing. 10fa9e4066Sahrens * See the License for the specific language governing permissions 11fa9e4066Sahrens * and limitations under the License. 12fa9e4066Sahrens * 13fa9e4066Sahrens * When distributing Covered Code, include this CDDL HEADER in each 14fa9e4066Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15fa9e4066Sahrens * If applicable, add the following below this CDDL HEADER, with the 16fa9e4066Sahrens * fields enclosed by brackets "[]" replaced with your own identifying 17fa9e4066Sahrens * information: Portions Copyright [yyyy] [name of copyright owner] 18fa9e4066Sahrens * 19fa9e4066Sahrens * CDDL HEADER END 20fa9e4066Sahrens */ 21fa9e4066Sahrens /* 229842588bSGeorge Wilson * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved. 2381cd5c55SMatthew Ahrens * Copyright (c) 2011, 2015 by Delphix. All rights reserved. 24e495b6e6SSaso Kiselkov * Copyright 2015 Nexenta Systems, Inc. All rights reserved. 25bc9014e6SJustin Gibbs * Copyright (c) 2014 Spectra Logic Corporation, All rights reserved. 2645818ee1SMatthew Ahrens * Copyright 2013 Saso Kiselkov. All rights reserved. 27*c3d26abcSMatthew Ahrens * Copyright (c) 2014 Integros [integros.com] 28fa9e4066Sahrens */ 29fa9e4066Sahrens 30fa9e4066Sahrens #include <sys/zfs_context.h> 31fa9e4066Sahrens #include <sys/spa_impl.h> 32283b8460SGeorge.Wilson #include <sys/spa_boot.h> 33fa9e4066Sahrens #include <sys/zio.h> 34fa9e4066Sahrens #include <sys/zio_checksum.h> 35fa9e4066Sahrens #include <sys/zio_compress.h> 36fa9e4066Sahrens #include <sys/dmu.h> 37fa9e4066Sahrens #include <sys/dmu_tx.h> 38fa9e4066Sahrens #include <sys/zap.h> 39fa9e4066Sahrens #include <sys/zil.h> 40fa9e4066Sahrens #include <sys/vdev_impl.h> 41fa9e4066Sahrens #include <sys/metaslab.h> 42fa9e4066Sahrens #include <sys/uberblock_impl.h> 43fa9e4066Sahrens #include <sys/txg.h> 44fa9e4066Sahrens #include <sys/avl.h> 45fa9e4066Sahrens #include <sys/unique.h> 46fa9e4066Sahrens #include <sys/dsl_pool.h> 47fa9e4066Sahrens #include <sys/dsl_dir.h> 48fa9e4066Sahrens #include <sys/dsl_prop.h> 493f9d6ad7SLin Ling #include <sys/dsl_scan.h> 50fa9e4066Sahrens #include <sys/fs/zfs.h> 516ce0521aSperrin #include <sys/metaslab_impl.h> 52e14bb325SJeff Bonwick #include <sys/arc.h> 53485bbbf5SGeorge Wilson #include <sys/ddt.h> 5491ebeef5Sahrens #include "zfs_prop.h" 5545818ee1SMatthew Ahrens #include <sys/zfeature.h> 56fa9e4066Sahrens 57fa9e4066Sahrens /* 58fa9e4066Sahrens * SPA locking 59fa9e4066Sahrens * 60fa9e4066Sahrens * There are four basic locks for managing spa_t structures: 61fa9e4066Sahrens * 62fa9e4066Sahrens * spa_namespace_lock (global mutex) 63fa9e4066Sahrens * 64fa9e4066Sahrens * This lock must be acquired to do any of the following: 65fa9e4066Sahrens * 66fa9e4066Sahrens * - Lookup a spa_t by name 67fa9e4066Sahrens * - Add or remove a spa_t from the namespace 68fa9e4066Sahrens * - Increase spa_refcount from non-zero 69fa9e4066Sahrens * - Check if spa_refcount is zero 70fa9e4066Sahrens * - Rename a spa_t 71ea8dc4b6Seschrock * - add/remove/attach/detach devices 72fa9e4066Sahrens * - Held for the duration of create/destroy/import/export 73fa9e4066Sahrens * 74fa9e4066Sahrens * It does not need to handle recursion. A create or destroy may 75fa9e4066Sahrens * reference objects (files or zvols) in other pools, but by 76fa9e4066Sahrens * definition they must have an existing reference, and will never need 77fa9e4066Sahrens * to lookup a spa_t by name. 78fa9e4066Sahrens * 79fa9e4066Sahrens * spa_refcount (per-spa refcount_t protected by mutex) 80fa9e4066Sahrens * 81fa9e4066Sahrens * This reference count keep track of any active users of the spa_t. The 82fa9e4066Sahrens * spa_t cannot be destroyed or freed while this is non-zero. Internally, 83fa9e4066Sahrens * the refcount is never really 'zero' - opening a pool implicitly keeps 84088f3894Sahrens * some references in the DMU. Internally we check against spa_minref, but 85fa9e4066Sahrens * present the image of a zero/non-zero value to consumers. 86fa9e4066Sahrens * 87e14bb325SJeff Bonwick * spa_config_lock[] (per-spa array of rwlocks) 88fa9e4066Sahrens * 8991ebeef5Sahrens * This protects the spa_t from config changes, and must be held in 9091ebeef5Sahrens * the following circumstances: 91fa9e4066Sahrens * 92fa9e4066Sahrens * - RW_READER to perform I/O to the spa 93fa9e4066Sahrens * - RW_WRITER to change the vdev config 94fa9e4066Sahrens * 95fa9e4066Sahrens * The locking order is fairly straightforward: 96fa9e4066Sahrens * 97fa9e4066Sahrens * spa_namespace_lock -> spa_refcount 98fa9e4066Sahrens * 99fa9e4066Sahrens * The namespace lock must be acquired to increase the refcount from 0 100fa9e4066Sahrens * or to check if it is zero. 101fa9e4066Sahrens * 102e14bb325SJeff Bonwick * spa_refcount -> spa_config_lock[] 103fa9e4066Sahrens * 104fa9e4066Sahrens * There must be at least one valid reference on the spa_t to acquire 105fa9e4066Sahrens * the config lock. 106fa9e4066Sahrens * 107e14bb325SJeff Bonwick * spa_namespace_lock -> spa_config_lock[] 108fa9e4066Sahrens * 109ea8dc4b6Seschrock * The namespace lock must always be taken before the config lock. 110fa9e4066Sahrens * 111fa9e4066Sahrens * 112e14bb325SJeff Bonwick * The spa_namespace_lock can be acquired directly and is globally visible. 113fa9e4066Sahrens * 114e14bb325SJeff Bonwick * The namespace is manipulated using the following functions, all of which 115e14bb325SJeff Bonwick * require the spa_namespace_lock to be held. 116fa9e4066Sahrens * 117fa9e4066Sahrens * spa_lookup() Lookup a spa_t by name. 118fa9e4066Sahrens * 119fa9e4066Sahrens * spa_add() Create a new spa_t in the namespace. 120fa9e4066Sahrens * 121fa9e4066Sahrens * spa_remove() Remove a spa_t from the namespace. This also 122fa9e4066Sahrens * frees up any memory associated with the spa_t. 123fa9e4066Sahrens * 124fa9e4066Sahrens * spa_next() Returns the next spa_t in the system, or the 125fa9e4066Sahrens * first if NULL is passed. 126fa9e4066Sahrens * 127fa9e4066Sahrens * spa_evict_all() Shutdown and remove all spa_t structures in 128fa9e4066Sahrens * the system. 129fa9e4066Sahrens * 130ea8dc4b6Seschrock * spa_guid_exists() Determine whether a pool/device guid exists. 131fa9e4066Sahrens * 132fa9e4066Sahrens * The spa_refcount is manipulated using the following functions: 133fa9e4066Sahrens * 134fa9e4066Sahrens * spa_open_ref() Adds a reference to the given spa_t. Must be 135fa9e4066Sahrens * called with spa_namespace_lock held if the 136fa9e4066Sahrens * refcount is currently zero. 137fa9e4066Sahrens * 138fa9e4066Sahrens * spa_close() Remove a reference from the spa_t. This will 139fa9e4066Sahrens * not free the spa_t or remove it from the 140fa9e4066Sahrens * namespace. No locking is required. 141fa9e4066Sahrens * 142fa9e4066Sahrens * spa_refcount_zero() Returns true if the refcount is currently 143fa9e4066Sahrens * zero. Must be called with spa_namespace_lock 144fa9e4066Sahrens * held. 145fa9e4066Sahrens * 146e14bb325SJeff Bonwick * The spa_config_lock[] is an array of rwlocks, ordered as follows: 147e14bb325SJeff Bonwick * SCL_CONFIG > SCL_STATE > SCL_ALLOC > SCL_ZIO > SCL_FREE > SCL_VDEV. 148e14bb325SJeff Bonwick * spa_config_lock[] is manipulated with spa_config_{enter,exit,held}(). 149e14bb325SJeff Bonwick * 150e14bb325SJeff Bonwick * To read the configuration, it suffices to hold one of these locks as reader. 151e14bb325SJeff Bonwick * To modify the configuration, you must hold all locks as writer. To modify 152e14bb325SJeff Bonwick * vdev state without altering the vdev tree's topology (e.g. online/offline), 153e14bb325SJeff Bonwick * you must hold SCL_STATE and SCL_ZIO as writer. 154e14bb325SJeff Bonwick * 155e14bb325SJeff Bonwick * We use these distinct config locks to avoid recursive lock entry. 156e14bb325SJeff Bonwick * For example, spa_sync() (which holds SCL_CONFIG as reader) induces 157e14bb325SJeff Bonwick * block allocations (SCL_ALLOC), which may require reading space maps 158e14bb325SJeff Bonwick * from disk (dmu_read() -> zio_read() -> SCL_ZIO). 159e14bb325SJeff Bonwick * 160e14bb325SJeff Bonwick * The spa config locks cannot be normal rwlocks because we need the 161e14bb325SJeff Bonwick * ability to hand off ownership. For example, SCL_ZIO is acquired 162e14bb325SJeff Bonwick * by the issuing thread and later released by an interrupt thread. 163e14bb325SJeff Bonwick * They do, however, obey the usual write-wanted semantics to prevent 164e14bb325SJeff Bonwick * writer (i.e. system administrator) starvation. 165e14bb325SJeff Bonwick * 166e14bb325SJeff Bonwick * The lock acquisition rules are as follows: 167e14bb325SJeff Bonwick * 168e14bb325SJeff Bonwick * SCL_CONFIG 169e14bb325SJeff Bonwick * Protects changes to the vdev tree topology, such as vdev 170e14bb325SJeff Bonwick * add/remove/attach/detach. Protects the dirty config list 171e14bb325SJeff Bonwick * (spa_config_dirty_list) and the set of spares and l2arc devices. 172e14bb325SJeff Bonwick * 173e14bb325SJeff Bonwick * SCL_STATE 174e14bb325SJeff Bonwick * Protects changes to pool state and vdev state, such as vdev 175e14bb325SJeff Bonwick * online/offline/fault/degrade/clear. Protects the dirty state list 176e14bb325SJeff Bonwick * (spa_state_dirty_list) and global pool state (spa_state). 177e14bb325SJeff Bonwick * 178e14bb325SJeff Bonwick * SCL_ALLOC 179e14bb325SJeff Bonwick * Protects changes to metaslab groups and classes. 180e14bb325SJeff Bonwick * Held as reader by metaslab_alloc() and metaslab_claim(). 181e14bb325SJeff Bonwick * 182e14bb325SJeff Bonwick * SCL_ZIO 183e14bb325SJeff Bonwick * Held by bp-level zios (those which have no io_vd upon entry) 184e14bb325SJeff Bonwick * to prevent changes to the vdev tree. The bp-level zio implicitly 185e14bb325SJeff Bonwick * protects all of its vdev child zios, which do not hold SCL_ZIO. 186e14bb325SJeff Bonwick * 187e14bb325SJeff Bonwick * SCL_FREE 188e14bb325SJeff Bonwick * Protects changes to metaslab groups and classes. 189e14bb325SJeff Bonwick * Held as reader by metaslab_free(). SCL_FREE is distinct from 190e14bb325SJeff Bonwick * SCL_ALLOC, and lower than SCL_ZIO, so that we can safely free 191e14bb325SJeff Bonwick * blocks in zio_done() while another i/o that holds either 192e14bb325SJeff Bonwick * SCL_ALLOC or SCL_ZIO is waiting for this i/o to complete. 193e14bb325SJeff Bonwick * 194e14bb325SJeff Bonwick * SCL_VDEV 195e14bb325SJeff Bonwick * Held as reader to prevent changes to the vdev tree during trivial 196b24ab676SJeff Bonwick * inquiries such as bp_get_dsize(). SCL_VDEV is distinct from the 197e14bb325SJeff Bonwick * other locks, and lower than all of them, to ensure that it's safe 198e14bb325SJeff Bonwick * to acquire regardless of caller context. 199e14bb325SJeff Bonwick * 200e14bb325SJeff Bonwick * In addition, the following rules apply: 201e14bb325SJeff Bonwick * 202e14bb325SJeff Bonwick * (a) spa_props_lock protects pool properties, spa_config and spa_config_list. 203e14bb325SJeff Bonwick * The lock ordering is SCL_CONFIG > spa_props_lock. 204e14bb325SJeff Bonwick * 205e14bb325SJeff Bonwick * (b) I/O operations on leaf vdevs. For any zio operation that takes 206e14bb325SJeff Bonwick * an explicit vdev_t argument -- such as zio_ioctl(), zio_read_phys(), 207e14bb325SJeff Bonwick * or zio_write_phys() -- the caller must ensure that the config cannot 208e14bb325SJeff Bonwick * cannot change in the interim, and that the vdev cannot be reopened. 209e14bb325SJeff Bonwick * SCL_STATE as reader suffices for both. 210fa9e4066Sahrens * 211ea8dc4b6Seschrock * The vdev configuration is protected by spa_vdev_enter() / spa_vdev_exit(). 212fa9e4066Sahrens * 213ea8dc4b6Seschrock * spa_vdev_enter() Acquire the namespace lock and the config lock 214ea8dc4b6Seschrock * for writing. 215fa9e4066Sahrens * 216fa9e4066Sahrens * spa_vdev_exit() Release the config lock, wait for all I/O 217ea8dc4b6Seschrock * to complete, sync the updated configs to the 218ea8dc4b6Seschrock * cache, and release the namespace lock. 219fa9e4066Sahrens * 220e14bb325SJeff Bonwick * vdev state is protected by spa_vdev_state_enter() / spa_vdev_state_exit(). 221e14bb325SJeff Bonwick * Like spa_vdev_enter/exit, these are convenience wrappers -- the actual 222e14bb325SJeff Bonwick * locking is, always, based on spa_namespace_lock and spa_config_lock[]. 223e14bb325SJeff Bonwick * 224ad135b5dSChristopher Siden * spa_rename() is also implemented within this file since it requires 225e14bb325SJeff Bonwick * manipulation of the namespace. 226fa9e4066Sahrens */ 227fa9e4066Sahrens 228fa9e4066Sahrens static avl_tree_t spa_namespace_avl; 229fa9e4066Sahrens kmutex_t spa_namespace_lock; 230fa9e4066Sahrens static kcondvar_t spa_namespace_cv; 2310373e76bSbonwick static int spa_active_count; 232416e0cd8Sek110237 int spa_max_replication_override = SPA_DVAS_PER_BP; 233fa9e4066Sahrens 23499653d4eSeschrock static kmutex_t spa_spare_lock; 23539c23413Seschrock static avl_tree_t spa_spare_avl; 236fa94a07fSbrendan static kmutex_t spa_l2cache_lock; 237fa94a07fSbrendan static avl_tree_t spa_l2cache_avl; 23899653d4eSeschrock 239fa9e4066Sahrens kmem_cache_t *spa_buffer_pool; 2408ad4d6ddSJeff Bonwick int spa_mode_global; 241fa9e4066Sahrens 242fa9e4066Sahrens #ifdef ZFS_DEBUG 2433b2aab18SMatthew Ahrens /* Everything except dprintf and spa is on by default in debug builds */ 2443b2aab18SMatthew Ahrens int zfs_flags = ~(ZFS_DEBUG_DPRINTF | ZFS_DEBUG_SPA); 245fa9e4066Sahrens #else 246fa9e4066Sahrens int zfs_flags = 0; 247fa9e4066Sahrens #endif 248fa9e4066Sahrens 2490125049cSahrens /* 2500125049cSahrens * zfs_recover can be set to nonzero to attempt to recover from 2510125049cSahrens * otherwise-fatal errors, typically caused by on-disk corruption. When 2520125049cSahrens * set, calls to zfs_panic_recover() will turn into warning messages. 2538b36997aSMatthew Ahrens * This should only be used as a last resort, as it typically results 2548b36997aSMatthew Ahrens * in leaked space, or worse. 2550125049cSahrens */ 2567fd05ac4SMatthew Ahrens boolean_t zfs_recover = B_FALSE; 2577fd05ac4SMatthew Ahrens 2587fd05ac4SMatthew Ahrens /* 2597fd05ac4SMatthew Ahrens * If destroy encounters an EIO while reading metadata (e.g. indirect 2607fd05ac4SMatthew Ahrens * blocks), space referenced by the missing metadata can not be freed. 2617fd05ac4SMatthew Ahrens * Normally this causes the background destroy to become "stalled", as 2627fd05ac4SMatthew Ahrens * it is unable to make forward progress. While in this stalled state, 2637fd05ac4SMatthew Ahrens * all remaining space to free from the error-encountering filesystem is 2647fd05ac4SMatthew Ahrens * "temporarily leaked". Set this flag to cause it to ignore the EIO, 2657fd05ac4SMatthew Ahrens * permanently leak the space from indirect blocks that can not be read, 2667fd05ac4SMatthew Ahrens * and continue to free everything else that it can. 2677fd05ac4SMatthew Ahrens * 2687fd05ac4SMatthew Ahrens * The default, "stalling" behavior is useful if the storage partially 2697fd05ac4SMatthew Ahrens * fails (i.e. some but not all i/os fail), and then later recovers. In 2707fd05ac4SMatthew Ahrens * this case, we will be able to continue pool operations while it is 2717fd05ac4SMatthew Ahrens * partially failed, and when it recovers, we can continue to free the 2727fd05ac4SMatthew Ahrens * space, with no leaks. However, note that this case is actually 2737fd05ac4SMatthew Ahrens * fairly rare. 2747fd05ac4SMatthew Ahrens * 2757fd05ac4SMatthew Ahrens * Typically pools either (a) fail completely (but perhaps temporarily, 2767fd05ac4SMatthew Ahrens * e.g. a top-level vdev going offline), or (b) have localized, 2777fd05ac4SMatthew Ahrens * permanent errors (e.g. disk returns the wrong data due to bit flip or 2787fd05ac4SMatthew Ahrens * firmware bug). In case (a), this setting does not matter because the 2797fd05ac4SMatthew Ahrens * pool will be suspended and the sync thread will not be able to make 2807fd05ac4SMatthew Ahrens * forward progress regardless. In case (b), because the error is 2817fd05ac4SMatthew Ahrens * permanent, the best we can do is leak the minimum amount of space, 2827fd05ac4SMatthew Ahrens * which is what setting this flag will do. Therefore, it is reasonable 2837fd05ac4SMatthew Ahrens * for this flag to normally be set, but we chose the more conservative 2847fd05ac4SMatthew Ahrens * approach of not setting it, so that there is no possibility of 2857fd05ac4SMatthew Ahrens * leaking space in the "partial temporary" failure case. 2867fd05ac4SMatthew Ahrens */ 2877fd05ac4SMatthew Ahrens boolean_t zfs_free_leak_on_eio = B_FALSE; 2880125049cSahrens 28969962b56SMatthew Ahrens /* 29069962b56SMatthew Ahrens * Expiration time in milliseconds. This value has two meanings. First it is 29169962b56SMatthew Ahrens * used to determine when the spa_deadman() logic should fire. By default the 29269962b56SMatthew Ahrens * spa_deadman() will fire if spa_sync() has not completed in 1000 seconds. 29369962b56SMatthew Ahrens * Secondly, the value determines if an I/O is considered "hung". Any I/O that 29469962b56SMatthew Ahrens * has not completed in zfs_deadman_synctime_ms is considered "hung" resulting 29569962b56SMatthew Ahrens * in a system panic. 29669962b56SMatthew Ahrens */ 29769962b56SMatthew Ahrens uint64_t zfs_deadman_synctime_ms = 1000000ULL; 298283b8460SGeorge.Wilson 299283b8460SGeorge.Wilson /* 30069962b56SMatthew Ahrens * Check time in milliseconds. This defines the frequency at which we check 30169962b56SMatthew Ahrens * for hung I/O. 302283b8460SGeorge.Wilson */ 30369962b56SMatthew Ahrens uint64_t zfs_deadman_checktime_ms = 5000ULL; 304283b8460SGeorge.Wilson 305283b8460SGeorge.Wilson /* 306283b8460SGeorge.Wilson * Override the zfs deadman behavior via /etc/system. By default the 307283b8460SGeorge.Wilson * deadman is enabled except on VMware and sparc deployments. 308283b8460SGeorge.Wilson */ 309283b8460SGeorge.Wilson int zfs_deadman_enabled = -1; 310283b8460SGeorge.Wilson 31169962b56SMatthew Ahrens /* 31269962b56SMatthew Ahrens * The worst case is single-sector max-parity RAID-Z blocks, in which 31369962b56SMatthew Ahrens * case the space requirement is exactly (VDEV_RAIDZ_MAXPARITY + 1) 31469962b56SMatthew Ahrens * times the size; so just assume that. Add to this the fact that 31569962b56SMatthew Ahrens * we can have up to 3 DVAs per bp, and one more factor of 2 because 31669962b56SMatthew Ahrens * the block may be dittoed with up to 3 DVAs by ddt_sync(). All together, 31769962b56SMatthew Ahrens * the worst case is: 31869962b56SMatthew Ahrens * (VDEV_RAIDZ_MAXPARITY + 1) * SPA_DVAS_PER_BP * 2 == 24 31969962b56SMatthew Ahrens */ 32069962b56SMatthew Ahrens int spa_asize_inflation = 24; 321fa9e4066Sahrens 322fa9e4066Sahrens /* 3237d46dc6cSMatthew Ahrens * Normally, we don't allow the last 3.2% (1/(2^spa_slop_shift)) of space in 3247d46dc6cSMatthew Ahrens * the pool to be consumed. This ensures that we don't run the pool 3257d46dc6cSMatthew Ahrens * completely out of space, due to unaccounted changes (e.g. to the MOS). 3267d46dc6cSMatthew Ahrens * It also limits the worst-case time to allocate space. If we have 3277d46dc6cSMatthew Ahrens * less than this amount of free space, most ZPL operations (e.g. write, 3287d46dc6cSMatthew Ahrens * create) will return ENOSPC. 3297d46dc6cSMatthew Ahrens * 3307d46dc6cSMatthew Ahrens * Certain operations (e.g. file removal, most administrative actions) can 3317d46dc6cSMatthew Ahrens * use half the slop space. They will only return ENOSPC if less than half 3327d46dc6cSMatthew Ahrens * the slop space is free. Typically, once the pool has less than the slop 3337d46dc6cSMatthew Ahrens * space free, the user will use these operations to free up space in the pool. 3347d46dc6cSMatthew Ahrens * These are the operations that call dsl_pool_adjustedsize() with the netfree 3357d46dc6cSMatthew Ahrens * argument set to TRUE. 3367d46dc6cSMatthew Ahrens * 3377d46dc6cSMatthew Ahrens * A very restricted set of operations are always permitted, regardless of 3387d46dc6cSMatthew Ahrens * the amount of free space. These are the operations that call 3397d46dc6cSMatthew Ahrens * dsl_sync_task(ZFS_SPACE_CHECK_NONE), e.g. "zfs destroy". If these 3407d46dc6cSMatthew Ahrens * operations result in a net increase in the amount of space used, 3417d46dc6cSMatthew Ahrens * it is possible to run the pool completely out of space, causing it to 3427d46dc6cSMatthew Ahrens * be permanently read-only. 3437d46dc6cSMatthew Ahrens * 3447d46dc6cSMatthew Ahrens * See also the comments in zfs_space_check_t. 3457d46dc6cSMatthew Ahrens */ 3467d46dc6cSMatthew Ahrens int spa_slop_shift = 5; 3477d46dc6cSMatthew Ahrens 3487d46dc6cSMatthew Ahrens /* 349fa9e4066Sahrens * ========================================================================== 350e05725b1Sbonwick * SPA config locking 351e05725b1Sbonwick * ========================================================================== 352e05725b1Sbonwick */ 353e05725b1Sbonwick static void 354e14bb325SJeff Bonwick spa_config_lock_init(spa_t *spa) 355e05725b1Sbonwick { 356e14bb325SJeff Bonwick for (int i = 0; i < SCL_LOCKS; i++) { 357e14bb325SJeff Bonwick spa_config_lock_t *scl = &spa->spa_config_lock[i]; 358e05725b1Sbonwick mutex_init(&scl->scl_lock, NULL, MUTEX_DEFAULT, NULL); 359e05725b1Sbonwick cv_init(&scl->scl_cv, NULL, CV_DEFAULT, NULL); 3603b2aab18SMatthew Ahrens refcount_create_untracked(&scl->scl_count); 361e14bb325SJeff Bonwick scl->scl_writer = NULL; 362e14bb325SJeff Bonwick scl->scl_write_wanted = 0; 363e14bb325SJeff Bonwick } 364e05725b1Sbonwick } 365e05725b1Sbonwick 366e05725b1Sbonwick static void 367e14bb325SJeff Bonwick spa_config_lock_destroy(spa_t *spa) 368e05725b1Sbonwick { 369e14bb325SJeff Bonwick for (int i = 0; i < SCL_LOCKS; i++) { 370e14bb325SJeff Bonwick spa_config_lock_t *scl = &spa->spa_config_lock[i]; 371e05725b1Sbonwick mutex_destroy(&scl->scl_lock); 372e05725b1Sbonwick cv_destroy(&scl->scl_cv); 373e05725b1Sbonwick refcount_destroy(&scl->scl_count); 374e14bb325SJeff Bonwick ASSERT(scl->scl_writer == NULL); 375e14bb325SJeff Bonwick ASSERT(scl->scl_write_wanted == 0); 376e14bb325SJeff Bonwick } 377e05725b1Sbonwick } 378e05725b1Sbonwick 379e14bb325SJeff Bonwick int 380e14bb325SJeff Bonwick spa_config_tryenter(spa_t *spa, int locks, void *tag, krw_t rw) 381e05725b1Sbonwick { 382e14bb325SJeff Bonwick for (int i = 0; i < SCL_LOCKS; i++) { 383e14bb325SJeff Bonwick spa_config_lock_t *scl = &spa->spa_config_lock[i]; 384e14bb325SJeff Bonwick if (!(locks & (1 << i))) 385e14bb325SJeff Bonwick continue; 386e05725b1Sbonwick mutex_enter(&scl->scl_lock); 387e05725b1Sbonwick if (rw == RW_READER) { 388e14bb325SJeff Bonwick if (scl->scl_writer || scl->scl_write_wanted) { 389e14bb325SJeff Bonwick mutex_exit(&scl->scl_lock); 390e495b6e6SSaso Kiselkov spa_config_exit(spa, locks & ((1 << i) - 1), 391e495b6e6SSaso Kiselkov tag); 392e14bb325SJeff Bonwick return (0); 393e14bb325SJeff Bonwick } 394e05725b1Sbonwick } else { 395e14bb325SJeff Bonwick ASSERT(scl->scl_writer != curthread); 396e14bb325SJeff Bonwick if (!refcount_is_zero(&scl->scl_count)) { 397e14bb325SJeff Bonwick mutex_exit(&scl->scl_lock); 398e495b6e6SSaso Kiselkov spa_config_exit(spa, locks & ((1 << i) - 1), 399e495b6e6SSaso Kiselkov tag); 400e14bb325SJeff Bonwick return (0); 401e14bb325SJeff Bonwick } 402e05725b1Sbonwick scl->scl_writer = curthread; 403e05725b1Sbonwick } 404e05725b1Sbonwick (void) refcount_add(&scl->scl_count, tag); 405e05725b1Sbonwick mutex_exit(&scl->scl_lock); 406e05725b1Sbonwick } 407e14bb325SJeff Bonwick return (1); 408e14bb325SJeff Bonwick } 409e05725b1Sbonwick 410e05725b1Sbonwick void 411e14bb325SJeff Bonwick spa_config_enter(spa_t *spa, int locks, void *tag, krw_t rw) 412e05725b1Sbonwick { 413f64c0e34SEric Taylor int wlocks_held = 0; 414f64c0e34SEric Taylor 4153b2aab18SMatthew Ahrens ASSERT3U(SCL_LOCKS, <, sizeof (wlocks_held) * NBBY); 4163b2aab18SMatthew Ahrens 417e14bb325SJeff Bonwick for (int i = 0; i < SCL_LOCKS; i++) { 418e14bb325SJeff Bonwick spa_config_lock_t *scl = &spa->spa_config_lock[i]; 419f64c0e34SEric Taylor if (scl->scl_writer == curthread) 420f64c0e34SEric Taylor wlocks_held |= (1 << i); 421e14bb325SJeff Bonwick if (!(locks & (1 << i))) 422e14bb325SJeff Bonwick continue; 423e05725b1Sbonwick mutex_enter(&scl->scl_lock); 424e14bb325SJeff Bonwick if (rw == RW_READER) { 425e14bb325SJeff Bonwick while (scl->scl_writer || scl->scl_write_wanted) { 426e14bb325SJeff Bonwick cv_wait(&scl->scl_cv, &scl->scl_lock); 427e05725b1Sbonwick } 428e14bb325SJeff Bonwick } else { 429e14bb325SJeff Bonwick ASSERT(scl->scl_writer != curthread); 430e14bb325SJeff Bonwick while (!refcount_is_zero(&scl->scl_count)) { 431e14bb325SJeff Bonwick scl->scl_write_wanted++; 432e14bb325SJeff Bonwick cv_wait(&scl->scl_cv, &scl->scl_lock); 433e14bb325SJeff Bonwick scl->scl_write_wanted--; 434e14bb325SJeff Bonwick } 435e14bb325SJeff Bonwick scl->scl_writer = curthread; 436e14bb325SJeff Bonwick } 437e14bb325SJeff Bonwick (void) refcount_add(&scl->scl_count, tag); 438e05725b1Sbonwick mutex_exit(&scl->scl_lock); 439e05725b1Sbonwick } 440f64c0e34SEric Taylor ASSERT(wlocks_held <= locks); 441e14bb325SJeff Bonwick } 442e05725b1Sbonwick 443e14bb325SJeff Bonwick void 444e14bb325SJeff Bonwick spa_config_exit(spa_t *spa, int locks, void *tag) 445e05725b1Sbonwick { 446e14bb325SJeff Bonwick for (int i = SCL_LOCKS - 1; i >= 0; i--) { 447e14bb325SJeff Bonwick spa_config_lock_t *scl = &spa->spa_config_lock[i]; 448e14bb325SJeff Bonwick if (!(locks & (1 << i))) 449e14bb325SJeff Bonwick continue; 450e14bb325SJeff Bonwick mutex_enter(&scl->scl_lock); 451e14bb325SJeff Bonwick ASSERT(!refcount_is_zero(&scl->scl_count)); 452e14bb325SJeff Bonwick if (refcount_remove(&scl->scl_count, tag) == 0) { 453e14bb325SJeff Bonwick ASSERT(scl->scl_writer == NULL || 454e14bb325SJeff Bonwick scl->scl_writer == curthread); 455e14bb325SJeff Bonwick scl->scl_writer = NULL; /* OK in either case */ 456e14bb325SJeff Bonwick cv_broadcast(&scl->scl_cv); 457e14bb325SJeff Bonwick } 458e14bb325SJeff Bonwick mutex_exit(&scl->scl_lock); 459e14bb325SJeff Bonwick } 460e14bb325SJeff Bonwick } 461e05725b1Sbonwick 462e14bb325SJeff Bonwick int 463e14bb325SJeff Bonwick spa_config_held(spa_t *spa, int locks, krw_t rw) 464e14bb325SJeff Bonwick { 465e14bb325SJeff Bonwick int locks_held = 0; 466e14bb325SJeff Bonwick 467e14bb325SJeff Bonwick for (int i = 0; i < SCL_LOCKS; i++) { 468e14bb325SJeff Bonwick spa_config_lock_t *scl = &spa->spa_config_lock[i]; 469e14bb325SJeff Bonwick if (!(locks & (1 << i))) 470e14bb325SJeff Bonwick continue; 471e14bb325SJeff Bonwick if ((rw == RW_READER && !refcount_is_zero(&scl->scl_count)) || 472e14bb325SJeff Bonwick (rw == RW_WRITER && scl->scl_writer == curthread)) 473e14bb325SJeff Bonwick locks_held |= 1 << i; 474e14bb325SJeff Bonwick } 475e14bb325SJeff Bonwick 476e14bb325SJeff Bonwick return (locks_held); 477e05725b1Sbonwick } 478e05725b1Sbonwick 479e05725b1Sbonwick /* 480e05725b1Sbonwick * ========================================================================== 481fa9e4066Sahrens * SPA namespace functions 482fa9e4066Sahrens * ========================================================================== 483fa9e4066Sahrens */ 484fa9e4066Sahrens 485fa9e4066Sahrens /* 486fa9e4066Sahrens * Lookup the named spa_t in the AVL tree. The spa_namespace_lock must be held. 487fa9e4066Sahrens * Returns NULL if no matching spa_t is found. 488fa9e4066Sahrens */ 489fa9e4066Sahrens spa_t * 490fa9e4066Sahrens spa_lookup(const char *name) 491fa9e4066Sahrens { 492e14bb325SJeff Bonwick static spa_t search; /* spa_t is large; don't allocate on stack */ 493e14bb325SJeff Bonwick spa_t *spa; 494fa9e4066Sahrens avl_index_t where; 49540feaa91Sahrens char *cp; 496fa9e4066Sahrens 497fa9e4066Sahrens ASSERT(MUTEX_HELD(&spa_namespace_lock)); 498fa9e4066Sahrens 4993b2aab18SMatthew Ahrens (void) strlcpy(search.spa_name, name, sizeof (search.spa_name)); 5003b2aab18SMatthew Ahrens 50140feaa91Sahrens /* 50240feaa91Sahrens * If it's a full dataset name, figure out the pool name and 50340feaa91Sahrens * just use that. 50440feaa91Sahrens */ 50578f17100SMatthew Ahrens cp = strpbrk(search.spa_name, "/@#"); 5063b2aab18SMatthew Ahrens if (cp != NULL) 50740feaa91Sahrens *cp = '\0'; 50840feaa91Sahrens 509fa9e4066Sahrens spa = avl_find(&spa_namespace_avl, &search, &where); 510fa9e4066Sahrens 511fa9e4066Sahrens return (spa); 512fa9e4066Sahrens } 513fa9e4066Sahrens 514fa9e4066Sahrens /* 515283b8460SGeorge.Wilson * Fires when spa_sync has not completed within zfs_deadman_synctime_ms. 516283b8460SGeorge.Wilson * If the zfs_deadman_enabled flag is set then it inspects all vdev queues 517283b8460SGeorge.Wilson * looking for potentially hung I/Os. 518283b8460SGeorge.Wilson */ 519283b8460SGeorge.Wilson void 520283b8460SGeorge.Wilson spa_deadman(void *arg) 521283b8460SGeorge.Wilson { 522283b8460SGeorge.Wilson spa_t *spa = arg; 523283b8460SGeorge.Wilson 5240713e232SGeorge Wilson /* 5250713e232SGeorge Wilson * Disable the deadman timer if the pool is suspended. 5260713e232SGeorge Wilson */ 5270713e232SGeorge Wilson if (spa_suspended(spa)) { 5280713e232SGeorge Wilson VERIFY(cyclic_reprogram(spa->spa_deadman_cycid, CY_INFINITY)); 5290713e232SGeorge Wilson return; 5300713e232SGeorge Wilson } 5310713e232SGeorge Wilson 532283b8460SGeorge.Wilson zfs_dbgmsg("slow spa_sync: started %llu seconds ago, calls %llu", 533283b8460SGeorge.Wilson (gethrtime() - spa->spa_sync_starttime) / NANOSEC, 534283b8460SGeorge.Wilson ++spa->spa_deadman_calls); 535283b8460SGeorge.Wilson if (zfs_deadman_enabled) 536283b8460SGeorge.Wilson vdev_deadman(spa->spa_root_vdev); 537283b8460SGeorge.Wilson } 538283b8460SGeorge.Wilson 539283b8460SGeorge.Wilson /* 540fa9e4066Sahrens * Create an uninitialized spa_t with the given name. Requires 541fa9e4066Sahrens * spa_namespace_lock. The caller must ensure that the spa_t doesn't already 542fa9e4066Sahrens * exist by calling spa_lookup() first. 543fa9e4066Sahrens */ 544fa9e4066Sahrens spa_t * 545468c413aSTim Haley spa_add(const char *name, nvlist_t *config, const char *altroot) 546fa9e4066Sahrens { 547fa9e4066Sahrens spa_t *spa; 548c5904d13Seschrock spa_config_dirent_t *dp; 549283b8460SGeorge.Wilson cyc_handler_t hdlr; 550283b8460SGeorge.Wilson cyc_time_t when; 551fa9e4066Sahrens 552fa9e4066Sahrens ASSERT(MUTEX_HELD(&spa_namespace_lock)); 553fa9e4066Sahrens 554fa9e4066Sahrens spa = kmem_zalloc(sizeof (spa_t), KM_SLEEP); 555fa9e4066Sahrens 556c25056deSgw25295 mutex_init(&spa->spa_async_lock, NULL, MUTEX_DEFAULT, NULL); 557c25056deSgw25295 mutex_init(&spa->spa_errlist_lock, NULL, MUTEX_DEFAULT, NULL); 55835a5a358SJonathan Adams mutex_init(&spa->spa_errlog_lock, NULL, MUTEX_DEFAULT, NULL); 559bc9014e6SJustin Gibbs mutex_init(&spa->spa_evicting_os_lock, NULL, MUTEX_DEFAULT, NULL); 560c25056deSgw25295 mutex_init(&spa->spa_history_lock, NULL, MUTEX_DEFAULT, NULL); 56135a5a358SJonathan Adams mutex_init(&spa->spa_proc_lock, NULL, MUTEX_DEFAULT, NULL); 562c25056deSgw25295 mutex_init(&spa->spa_props_lock, NULL, MUTEX_DEFAULT, NULL); 56345818ee1SMatthew Ahrens mutex_init(&spa->spa_cksum_tmpls_lock, NULL, MUTEX_DEFAULT, NULL); 56435a5a358SJonathan Adams mutex_init(&spa->spa_scrub_lock, NULL, MUTEX_DEFAULT, NULL); 565a1521560SJeff Bonwick mutex_init(&spa->spa_suspend_lock, NULL, MUTEX_DEFAULT, NULL); 566a1521560SJeff Bonwick mutex_init(&spa->spa_vdev_top_lock, NULL, MUTEX_DEFAULT, NULL); 567c3a66015SMatthew Ahrens mutex_init(&spa->spa_iokstat_lock, NULL, MUTEX_DEFAULT, NULL); 568c25056deSgw25295 569c25056deSgw25295 cv_init(&spa->spa_async_cv, NULL, CV_DEFAULT, NULL); 570bc9014e6SJustin Gibbs cv_init(&spa->spa_evicting_os_cv, NULL, CV_DEFAULT, NULL); 57135a5a358SJonathan Adams cv_init(&spa->spa_proc_cv, NULL, CV_DEFAULT, NULL); 572c25056deSgw25295 cv_init(&spa->spa_scrub_io_cv, NULL, CV_DEFAULT, NULL); 573e14bb325SJeff Bonwick cv_init(&spa->spa_suspend_cv, NULL, CV_DEFAULT, NULL); 574c25056deSgw25295 575b24ab676SJeff Bonwick for (int t = 0; t < TXG_SIZE; t++) 576cde58dbcSMatthew Ahrens bplist_create(&spa->spa_free_bplist[t]); 577b24ab676SJeff Bonwick 578e14bb325SJeff Bonwick (void) strlcpy(spa->spa_name, name, sizeof (spa->spa_name)); 579fa9e4066Sahrens spa->spa_state = POOL_STATE_UNINITIALIZED; 580fa9e4066Sahrens spa->spa_freeze_txg = UINT64_MAX; 5810373e76bSbonwick spa->spa_final_txg = UINT64_MAX; 582468c413aSTim Haley spa->spa_load_max_txg = UINT64_MAX; 58335a5a358SJonathan Adams spa->spa_proc = &p0; 58435a5a358SJonathan Adams spa->spa_proc_state = SPA_PROC_NONE; 585fa9e4066Sahrens 586283b8460SGeorge.Wilson hdlr.cyh_func = spa_deadman; 587283b8460SGeorge.Wilson hdlr.cyh_arg = spa; 588283b8460SGeorge.Wilson hdlr.cyh_level = CY_LOW_LEVEL; 589283b8460SGeorge.Wilson 59069962b56SMatthew Ahrens spa->spa_deadman_synctime = MSEC2NSEC(zfs_deadman_synctime_ms); 591283b8460SGeorge.Wilson 592283b8460SGeorge.Wilson /* 593283b8460SGeorge.Wilson * This determines how often we need to check for hung I/Os after 594283b8460SGeorge.Wilson * the cyclic has already fired. Since checking for hung I/Os is 595283b8460SGeorge.Wilson * an expensive operation we don't want to check too frequently. 59669962b56SMatthew Ahrens * Instead wait for 5 seconds before checking again. 597283b8460SGeorge.Wilson */ 59869962b56SMatthew Ahrens when.cyt_interval = MSEC2NSEC(zfs_deadman_checktime_ms); 599283b8460SGeorge.Wilson when.cyt_when = CY_INFINITY; 600283b8460SGeorge.Wilson mutex_enter(&cpu_lock); 601283b8460SGeorge.Wilson spa->spa_deadman_cycid = cyclic_add(&hdlr, &when); 602283b8460SGeorge.Wilson mutex_exit(&cpu_lock); 603283b8460SGeorge.Wilson 604fa9e4066Sahrens refcount_create(&spa->spa_refcount); 605e14bb325SJeff Bonwick spa_config_lock_init(spa); 606fa9e4066Sahrens 607fa9e4066Sahrens avl_add(&spa_namespace_avl, spa); 608fa9e4066Sahrens 6090373e76bSbonwick /* 6100373e76bSbonwick * Set the alternate root, if there is one. 6110373e76bSbonwick */ 6120373e76bSbonwick if (altroot) { 6130373e76bSbonwick spa->spa_root = spa_strdup(altroot); 6140373e76bSbonwick spa_active_count++; 6150373e76bSbonwick } 6160373e76bSbonwick 617c5904d13Seschrock /* 618c5904d13Seschrock * Every pool starts with the default cachefile 619c5904d13Seschrock */ 620c5904d13Seschrock list_create(&spa->spa_config_list, sizeof (spa_config_dirent_t), 621c5904d13Seschrock offsetof(spa_config_dirent_t, scd_link)); 622c5904d13Seschrock 623c5904d13Seschrock dp = kmem_zalloc(sizeof (spa_config_dirent_t), KM_SLEEP); 624ef912c80STim Haley dp->scd_path = altroot ? NULL : spa_strdup(spa_config_path); 625c5904d13Seschrock list_insert_head(&spa->spa_config_list, dp); 626c5904d13Seschrock 6274b964adaSGeorge Wilson VERIFY(nvlist_alloc(&spa->spa_load_info, NV_UNIQUE_NAME, 6284b964adaSGeorge Wilson KM_SLEEP) == 0); 6294b964adaSGeorge Wilson 630ad135b5dSChristopher Siden if (config != NULL) { 631ad135b5dSChristopher Siden nvlist_t *features; 632ad135b5dSChristopher Siden 633ad135b5dSChristopher Siden if (nvlist_lookup_nvlist(config, ZPOOL_CONFIG_FEATURES_FOR_READ, 634ad135b5dSChristopher Siden &features) == 0) { 635ad135b5dSChristopher Siden VERIFY(nvlist_dup(features, &spa->spa_label_features, 636ad135b5dSChristopher Siden 0) == 0); 637ad135b5dSChristopher Siden } 638ad135b5dSChristopher Siden 639468c413aSTim Haley VERIFY(nvlist_dup(config, &spa->spa_config, 0) == 0); 640ad135b5dSChristopher Siden } 641ad135b5dSChristopher Siden 642ad135b5dSChristopher Siden if (spa->spa_label_features == NULL) { 643ad135b5dSChristopher Siden VERIFY(nvlist_alloc(&spa->spa_label_features, NV_UNIQUE_NAME, 644ad135b5dSChristopher Siden KM_SLEEP) == 0); 645ad135b5dSChristopher Siden } 646468c413aSTim Haley 647c3a66015SMatthew Ahrens spa->spa_iokstat = kstat_create("zfs", 0, name, 648c3a66015SMatthew Ahrens "disk", KSTAT_TYPE_IO, 1, 0); 649c3a66015SMatthew Ahrens if (spa->spa_iokstat) { 650c3a66015SMatthew Ahrens spa->spa_iokstat->ks_lock = &spa->spa_iokstat_lock; 651c3a66015SMatthew Ahrens kstat_install(spa->spa_iokstat); 652c3a66015SMatthew Ahrens } 653c3a66015SMatthew Ahrens 6543b2aab18SMatthew Ahrens spa->spa_debug = ((zfs_flags & ZFS_DEBUG_SPA) != 0); 6553b2aab18SMatthew Ahrens 65681cd5c55SMatthew Ahrens spa->spa_min_ashift = INT_MAX; 65781cd5c55SMatthew Ahrens spa->spa_max_ashift = 0; 65881cd5c55SMatthew Ahrens 65943466aaeSMax Grossman /* 66043466aaeSMax Grossman * As a pool is being created, treat all features as disabled by 66143466aaeSMax Grossman * setting SPA_FEATURE_DISABLED for all entries in the feature 66243466aaeSMax Grossman * refcount cache. 66343466aaeSMax Grossman */ 66443466aaeSMax Grossman for (int i = 0; i < SPA_FEATURES; i++) { 66543466aaeSMax Grossman spa->spa_feat_refcount_cache[i] = SPA_FEATURE_DISABLED; 66643466aaeSMax Grossman } 66743466aaeSMax Grossman 668fa9e4066Sahrens return (spa); 669fa9e4066Sahrens } 670fa9e4066Sahrens 671fa9e4066Sahrens /* 672fa9e4066Sahrens * Removes a spa_t from the namespace, freeing up any memory used. Requires 673fa9e4066Sahrens * spa_namespace_lock. This is called only after the spa_t has been closed and 674fa9e4066Sahrens * deactivated. 675fa9e4066Sahrens */ 676fa9e4066Sahrens void 677fa9e4066Sahrens spa_remove(spa_t *spa) 678fa9e4066Sahrens { 679c5904d13Seschrock spa_config_dirent_t *dp; 680c5904d13Seschrock 681fa9e4066Sahrens ASSERT(MUTEX_HELD(&spa_namespace_lock)); 682fa9e4066Sahrens ASSERT(spa->spa_state == POOL_STATE_UNINITIALIZED); 683bc9014e6SJustin Gibbs ASSERT3U(refcount_count(&spa->spa_refcount), ==, 0); 684fa9e4066Sahrens 6851195e687SMark J Musante nvlist_free(spa->spa_config_splitting); 6861195e687SMark J Musante 687fa9e4066Sahrens avl_remove(&spa_namespace_avl, spa); 688fa9e4066Sahrens cv_broadcast(&spa_namespace_cv); 689fa9e4066Sahrens 6900373e76bSbonwick if (spa->spa_root) { 691fa9e4066Sahrens spa_strfree(spa->spa_root); 6920373e76bSbonwick spa_active_count--; 6930373e76bSbonwick } 694fa9e4066Sahrens 695c5904d13Seschrock while ((dp = list_head(&spa->spa_config_list)) != NULL) { 696c5904d13Seschrock list_remove(&spa->spa_config_list, dp); 697c5904d13Seschrock if (dp->scd_path != NULL) 698c5904d13Seschrock spa_strfree(dp->scd_path); 699c5904d13Seschrock kmem_free(dp, sizeof (spa_config_dirent_t)); 700c5904d13Seschrock } 701c5904d13Seschrock 702c5904d13Seschrock list_destroy(&spa->spa_config_list); 7032f8aaab3Seschrock 704ad135b5dSChristopher Siden nvlist_free(spa->spa_label_features); 7054b964adaSGeorge Wilson nvlist_free(spa->spa_load_info); 706fa9e4066Sahrens spa_config_set(spa, NULL); 707fa9e4066Sahrens 708283b8460SGeorge.Wilson mutex_enter(&cpu_lock); 709283b8460SGeorge.Wilson if (spa->spa_deadman_cycid != CYCLIC_NONE) 710283b8460SGeorge.Wilson cyclic_remove(spa->spa_deadman_cycid); 711283b8460SGeorge.Wilson mutex_exit(&cpu_lock); 712283b8460SGeorge.Wilson spa->spa_deadman_cycid = CYCLIC_NONE; 713283b8460SGeorge.Wilson 714fa9e4066Sahrens refcount_destroy(&spa->spa_refcount); 71591ebeef5Sahrens 716e14bb325SJeff Bonwick spa_config_lock_destroy(spa); 717fa9e4066Sahrens 718c3a66015SMatthew Ahrens kstat_delete(spa->spa_iokstat); 719c3a66015SMatthew Ahrens spa->spa_iokstat = NULL; 720c3a66015SMatthew Ahrens 721b24ab676SJeff Bonwick for (int t = 0; t < TXG_SIZE; t++) 722cde58dbcSMatthew Ahrens bplist_destroy(&spa->spa_free_bplist[t]); 723b24ab676SJeff Bonwick 72445818ee1SMatthew Ahrens zio_checksum_templates_free(spa); 72545818ee1SMatthew Ahrens 726c25056deSgw25295 cv_destroy(&spa->spa_async_cv); 727bc9014e6SJustin Gibbs cv_destroy(&spa->spa_evicting_os_cv); 72835a5a358SJonathan Adams cv_destroy(&spa->spa_proc_cv); 729c25056deSgw25295 cv_destroy(&spa->spa_scrub_io_cv); 730e14bb325SJeff Bonwick cv_destroy(&spa->spa_suspend_cv); 731c25056deSgw25295 7325ad82045Snd150628 mutex_destroy(&spa->spa_async_lock); 733c25056deSgw25295 mutex_destroy(&spa->spa_errlist_lock); 73435a5a358SJonathan Adams mutex_destroy(&spa->spa_errlog_lock); 735bc9014e6SJustin Gibbs mutex_destroy(&spa->spa_evicting_os_lock); 73606eeb2adSek110237 mutex_destroy(&spa->spa_history_lock); 73735a5a358SJonathan Adams mutex_destroy(&spa->spa_proc_lock); 738b1b8ab34Slling mutex_destroy(&spa->spa_props_lock); 73945818ee1SMatthew Ahrens mutex_destroy(&spa->spa_cksum_tmpls_lock); 74035a5a358SJonathan Adams mutex_destroy(&spa->spa_scrub_lock); 741e14bb325SJeff Bonwick mutex_destroy(&spa->spa_suspend_lock); 742a1521560SJeff Bonwick mutex_destroy(&spa->spa_vdev_top_lock); 743c3a66015SMatthew Ahrens mutex_destroy(&spa->spa_iokstat_lock); 7445ad82045Snd150628 745fa9e4066Sahrens kmem_free(spa, sizeof (spa_t)); 746fa9e4066Sahrens } 747fa9e4066Sahrens 748fa9e4066Sahrens /* 749fa9e4066Sahrens * Given a pool, return the next pool in the namespace, or NULL if there is 750fa9e4066Sahrens * none. If 'prev' is NULL, return the first pool. 751fa9e4066Sahrens */ 752fa9e4066Sahrens spa_t * 753fa9e4066Sahrens spa_next(spa_t *prev) 754fa9e4066Sahrens { 755fa9e4066Sahrens ASSERT(MUTEX_HELD(&spa_namespace_lock)); 756fa9e4066Sahrens 757fa9e4066Sahrens if (prev) 758fa9e4066Sahrens return (AVL_NEXT(&spa_namespace_avl, prev)); 759fa9e4066Sahrens else 760fa9e4066Sahrens return (avl_first(&spa_namespace_avl)); 761fa9e4066Sahrens } 762fa9e4066Sahrens 763fa9e4066Sahrens /* 764fa9e4066Sahrens * ========================================================================== 765fa9e4066Sahrens * SPA refcount functions 766fa9e4066Sahrens * ========================================================================== 767fa9e4066Sahrens */ 768fa9e4066Sahrens 769fa9e4066Sahrens /* 770fa9e4066Sahrens * Add a reference to the given spa_t. Must have at least one reference, or 771fa9e4066Sahrens * have the namespace lock held. 772fa9e4066Sahrens */ 773fa9e4066Sahrens void 774fa9e4066Sahrens spa_open_ref(spa_t *spa, void *tag) 775fa9e4066Sahrens { 776088f3894Sahrens ASSERT(refcount_count(&spa->spa_refcount) >= spa->spa_minref || 777fa9e4066Sahrens MUTEX_HELD(&spa_namespace_lock)); 778fa9e4066Sahrens (void) refcount_add(&spa->spa_refcount, tag); 779fa9e4066Sahrens } 780fa9e4066Sahrens 781fa9e4066Sahrens /* 782fa9e4066Sahrens * Remove a reference to the given spa_t. Must have at least one reference, or 783fa9e4066Sahrens * have the namespace lock held. 784fa9e4066Sahrens */ 785fa9e4066Sahrens void 786fa9e4066Sahrens spa_close(spa_t *spa, void *tag) 787fa9e4066Sahrens { 788088f3894Sahrens ASSERT(refcount_count(&spa->spa_refcount) > spa->spa_minref || 789fa9e4066Sahrens MUTEX_HELD(&spa_namespace_lock)); 790fa9e4066Sahrens (void) refcount_remove(&spa->spa_refcount, tag); 791fa9e4066Sahrens } 792fa9e4066Sahrens 793fa9e4066Sahrens /* 794bc9014e6SJustin Gibbs * Remove a reference to the given spa_t held by a dsl dir that is 795bc9014e6SJustin Gibbs * being asynchronously released. Async releases occur from a taskq 796bc9014e6SJustin Gibbs * performing eviction of dsl datasets and dirs. The namespace lock 797bc9014e6SJustin Gibbs * isn't held and the hold by the object being evicted may contribute to 798bc9014e6SJustin Gibbs * spa_minref (e.g. dataset or directory released during pool export), 799bc9014e6SJustin Gibbs * so the asserts in spa_close() do not apply. 800bc9014e6SJustin Gibbs */ 801bc9014e6SJustin Gibbs void 802bc9014e6SJustin Gibbs spa_async_close(spa_t *spa, void *tag) 803bc9014e6SJustin Gibbs { 804bc9014e6SJustin Gibbs (void) refcount_remove(&spa->spa_refcount, tag); 805bc9014e6SJustin Gibbs } 806bc9014e6SJustin Gibbs 807bc9014e6SJustin Gibbs /* 808fa9e4066Sahrens * Check to see if the spa refcount is zero. Must be called with 809088f3894Sahrens * spa_namespace_lock held. We really compare against spa_minref, which is the 810fa9e4066Sahrens * number of references acquired when opening a pool 811fa9e4066Sahrens */ 812fa9e4066Sahrens boolean_t 813fa9e4066Sahrens spa_refcount_zero(spa_t *spa) 814fa9e4066Sahrens { 815fa9e4066Sahrens ASSERT(MUTEX_HELD(&spa_namespace_lock)); 816fa9e4066Sahrens 817088f3894Sahrens return (refcount_count(&spa->spa_refcount) == spa->spa_minref); 818fa9e4066Sahrens } 819fa9e4066Sahrens 820fa9e4066Sahrens /* 821fa9e4066Sahrens * ========================================================================== 822fa94a07fSbrendan * SPA spare and l2cache tracking 82399653d4eSeschrock * ========================================================================== 82499653d4eSeschrock */ 82599653d4eSeschrock 82699653d4eSeschrock /* 827fa94a07fSbrendan * Hot spares and cache devices are tracked using the same code below, 828fa94a07fSbrendan * for 'auxiliary' devices. 829fa94a07fSbrendan */ 830fa94a07fSbrendan 831fa94a07fSbrendan typedef struct spa_aux { 832fa94a07fSbrendan uint64_t aux_guid; 833fa94a07fSbrendan uint64_t aux_pool; 834fa94a07fSbrendan avl_node_t aux_avl; 835fa94a07fSbrendan int aux_count; 836fa94a07fSbrendan } spa_aux_t; 837fa94a07fSbrendan 838fa94a07fSbrendan static int 839fa94a07fSbrendan spa_aux_compare(const void *a, const void *b) 840fa94a07fSbrendan { 841fa94a07fSbrendan const spa_aux_t *sa = a; 842fa94a07fSbrendan const spa_aux_t *sb = b; 843fa94a07fSbrendan 844fa94a07fSbrendan if (sa->aux_guid < sb->aux_guid) 845fa94a07fSbrendan return (-1); 846fa94a07fSbrendan else if (sa->aux_guid > sb->aux_guid) 847fa94a07fSbrendan return (1); 848fa94a07fSbrendan else 849fa94a07fSbrendan return (0); 850fa94a07fSbrendan } 851fa94a07fSbrendan 852fa94a07fSbrendan void 853fa94a07fSbrendan spa_aux_add(vdev_t *vd, avl_tree_t *avl) 854fa94a07fSbrendan { 855fa94a07fSbrendan avl_index_t where; 856fa94a07fSbrendan spa_aux_t search; 857fa94a07fSbrendan spa_aux_t *aux; 858fa94a07fSbrendan 859fa94a07fSbrendan search.aux_guid = vd->vdev_guid; 860fa94a07fSbrendan if ((aux = avl_find(avl, &search, &where)) != NULL) { 861fa94a07fSbrendan aux->aux_count++; 862fa94a07fSbrendan } else { 863fa94a07fSbrendan aux = kmem_zalloc(sizeof (spa_aux_t), KM_SLEEP); 864fa94a07fSbrendan aux->aux_guid = vd->vdev_guid; 865fa94a07fSbrendan aux->aux_count = 1; 866fa94a07fSbrendan avl_insert(avl, aux, where); 867fa94a07fSbrendan } 868fa94a07fSbrendan } 869fa94a07fSbrendan 870fa94a07fSbrendan void 871fa94a07fSbrendan spa_aux_remove(vdev_t *vd, avl_tree_t *avl) 872fa94a07fSbrendan { 873fa94a07fSbrendan spa_aux_t search; 874fa94a07fSbrendan spa_aux_t *aux; 875fa94a07fSbrendan avl_index_t where; 876fa94a07fSbrendan 877fa94a07fSbrendan search.aux_guid = vd->vdev_guid; 878fa94a07fSbrendan aux = avl_find(avl, &search, &where); 879fa94a07fSbrendan 880fa94a07fSbrendan ASSERT(aux != NULL); 881fa94a07fSbrendan 882fa94a07fSbrendan if (--aux->aux_count == 0) { 883fa94a07fSbrendan avl_remove(avl, aux); 884fa94a07fSbrendan kmem_free(aux, sizeof (spa_aux_t)); 885fa94a07fSbrendan } else if (aux->aux_pool == spa_guid(vd->vdev_spa)) { 886fa94a07fSbrendan aux->aux_pool = 0ULL; 887fa94a07fSbrendan } 888fa94a07fSbrendan } 889fa94a07fSbrendan 890fa94a07fSbrendan boolean_t 89189a89ebfSlling spa_aux_exists(uint64_t guid, uint64_t *pool, int *refcnt, avl_tree_t *avl) 892fa94a07fSbrendan { 893fa94a07fSbrendan spa_aux_t search, *found; 894fa94a07fSbrendan 895fa94a07fSbrendan search.aux_guid = guid; 89689a89ebfSlling found = avl_find(avl, &search, NULL); 897fa94a07fSbrendan 898fa94a07fSbrendan if (pool) { 899fa94a07fSbrendan if (found) 900fa94a07fSbrendan *pool = found->aux_pool; 901fa94a07fSbrendan else 902fa94a07fSbrendan *pool = 0ULL; 903fa94a07fSbrendan } 904fa94a07fSbrendan 90589a89ebfSlling if (refcnt) { 90689a89ebfSlling if (found) 90789a89ebfSlling *refcnt = found->aux_count; 90889a89ebfSlling else 90989a89ebfSlling *refcnt = 0; 91089a89ebfSlling } 91189a89ebfSlling 912fa94a07fSbrendan return (found != NULL); 913fa94a07fSbrendan } 914fa94a07fSbrendan 915fa94a07fSbrendan void 916fa94a07fSbrendan spa_aux_activate(vdev_t *vd, avl_tree_t *avl) 917fa94a07fSbrendan { 918fa94a07fSbrendan spa_aux_t search, *found; 919fa94a07fSbrendan avl_index_t where; 920fa94a07fSbrendan 921fa94a07fSbrendan search.aux_guid = vd->vdev_guid; 922fa94a07fSbrendan found = avl_find(avl, &search, &where); 923fa94a07fSbrendan ASSERT(found != NULL); 924fa94a07fSbrendan ASSERT(found->aux_pool == 0ULL); 925fa94a07fSbrendan 926fa94a07fSbrendan found->aux_pool = spa_guid(vd->vdev_spa); 927fa94a07fSbrendan } 928fa94a07fSbrendan 929fa94a07fSbrendan /* 93039c23413Seschrock * Spares are tracked globally due to the following constraints: 93139c23413Seschrock * 93239c23413Seschrock * - A spare may be part of multiple pools. 93339c23413Seschrock * - A spare may be added to a pool even if it's actively in use within 93439c23413Seschrock * another pool. 93539c23413Seschrock * - A spare in use in any pool can only be the source of a replacement if 93639c23413Seschrock * the target is a spare in the same pool. 93739c23413Seschrock * 93839c23413Seschrock * We keep track of all spares on the system through the use of a reference 93939c23413Seschrock * counted AVL tree. When a vdev is added as a spare, or used as a replacement 94039c23413Seschrock * spare, then we bump the reference count in the AVL tree. In addition, we set 94139c23413Seschrock * the 'vdev_isspare' member to indicate that the device is a spare (active or 94239c23413Seschrock * inactive). When a spare is made active (used to replace a device in the 94339c23413Seschrock * pool), we also keep track of which pool its been made a part of. 94439c23413Seschrock * 94539c23413Seschrock * The 'spa_spare_lock' protects the AVL tree. These functions are normally 94639c23413Seschrock * called under the spa_namespace lock as part of vdev reconfiguration. The 94739c23413Seschrock * separate spare lock exists for the status query path, which does not need to 94839c23413Seschrock * be completely consistent with respect to other vdev configuration changes. 94999653d4eSeschrock */ 95039c23413Seschrock 95199653d4eSeschrock static int 95299653d4eSeschrock spa_spare_compare(const void *a, const void *b) 95399653d4eSeschrock { 954fa94a07fSbrendan return (spa_aux_compare(a, b)); 95599653d4eSeschrock } 95699653d4eSeschrock 95799653d4eSeschrock void 95839c23413Seschrock spa_spare_add(vdev_t *vd) 95999653d4eSeschrock { 96099653d4eSeschrock mutex_enter(&spa_spare_lock); 96139c23413Seschrock ASSERT(!vd->vdev_isspare); 962fa94a07fSbrendan spa_aux_add(vd, &spa_spare_avl); 96339c23413Seschrock vd->vdev_isspare = B_TRUE; 96499653d4eSeschrock mutex_exit(&spa_spare_lock); 96599653d4eSeschrock } 96699653d4eSeschrock 96799653d4eSeschrock void 96839c23413Seschrock spa_spare_remove(vdev_t *vd) 96999653d4eSeschrock { 97099653d4eSeschrock mutex_enter(&spa_spare_lock); 97139c23413Seschrock ASSERT(vd->vdev_isspare); 972fa94a07fSbrendan spa_aux_remove(vd, &spa_spare_avl); 97339c23413Seschrock vd->vdev_isspare = B_FALSE; 97499653d4eSeschrock mutex_exit(&spa_spare_lock); 97599653d4eSeschrock } 97699653d4eSeschrock 97799653d4eSeschrock boolean_t 97889a89ebfSlling spa_spare_exists(uint64_t guid, uint64_t *pool, int *refcnt) 97999653d4eSeschrock { 980fa94a07fSbrendan boolean_t found; 98199653d4eSeschrock 98299653d4eSeschrock mutex_enter(&spa_spare_lock); 98389a89ebfSlling found = spa_aux_exists(guid, pool, refcnt, &spa_spare_avl); 98499653d4eSeschrock mutex_exit(&spa_spare_lock); 98599653d4eSeschrock 986fa94a07fSbrendan return (found); 98739c23413Seschrock } 98839c23413Seschrock 98939c23413Seschrock void 99039c23413Seschrock spa_spare_activate(vdev_t *vd) 99139c23413Seschrock { 99239c23413Seschrock mutex_enter(&spa_spare_lock); 99339c23413Seschrock ASSERT(vd->vdev_isspare); 994fa94a07fSbrendan spa_aux_activate(vd, &spa_spare_avl); 99539c23413Seschrock mutex_exit(&spa_spare_lock); 99699653d4eSeschrock } 99799653d4eSeschrock 99899653d4eSeschrock /* 999fa94a07fSbrendan * Level 2 ARC devices are tracked globally for the same reasons as spares. 1000fa94a07fSbrendan * Cache devices currently only support one pool per cache device, and so 1001fa94a07fSbrendan * for these devices the aux reference count is currently unused beyond 1. 1002fa94a07fSbrendan */ 1003fa94a07fSbrendan 1004fa94a07fSbrendan static int 1005fa94a07fSbrendan spa_l2cache_compare(const void *a, const void *b) 1006fa94a07fSbrendan { 1007fa94a07fSbrendan return (spa_aux_compare(a, b)); 1008fa94a07fSbrendan } 1009fa94a07fSbrendan 1010fa94a07fSbrendan void 1011fa94a07fSbrendan spa_l2cache_add(vdev_t *vd) 1012fa94a07fSbrendan { 1013fa94a07fSbrendan mutex_enter(&spa_l2cache_lock); 1014fa94a07fSbrendan ASSERT(!vd->vdev_isl2cache); 1015fa94a07fSbrendan spa_aux_add(vd, &spa_l2cache_avl); 1016fa94a07fSbrendan vd->vdev_isl2cache = B_TRUE; 1017fa94a07fSbrendan mutex_exit(&spa_l2cache_lock); 1018fa94a07fSbrendan } 1019fa94a07fSbrendan 1020fa94a07fSbrendan void 1021fa94a07fSbrendan spa_l2cache_remove(vdev_t *vd) 1022fa94a07fSbrendan { 1023fa94a07fSbrendan mutex_enter(&spa_l2cache_lock); 1024fa94a07fSbrendan ASSERT(vd->vdev_isl2cache); 1025fa94a07fSbrendan spa_aux_remove(vd, &spa_l2cache_avl); 1026fa94a07fSbrendan vd->vdev_isl2cache = B_FALSE; 1027fa94a07fSbrendan mutex_exit(&spa_l2cache_lock); 1028fa94a07fSbrendan } 1029fa94a07fSbrendan 1030fa94a07fSbrendan boolean_t 1031fa94a07fSbrendan spa_l2cache_exists(uint64_t guid, uint64_t *pool) 1032fa94a07fSbrendan { 1033fa94a07fSbrendan boolean_t found; 1034fa94a07fSbrendan 1035fa94a07fSbrendan mutex_enter(&spa_l2cache_lock); 103689a89ebfSlling found = spa_aux_exists(guid, pool, NULL, &spa_l2cache_avl); 1037fa94a07fSbrendan mutex_exit(&spa_l2cache_lock); 1038fa94a07fSbrendan 1039fa94a07fSbrendan return (found); 1040fa94a07fSbrendan } 1041fa94a07fSbrendan 1042fa94a07fSbrendan void 1043fa94a07fSbrendan spa_l2cache_activate(vdev_t *vd) 1044fa94a07fSbrendan { 1045fa94a07fSbrendan mutex_enter(&spa_l2cache_lock); 1046fa94a07fSbrendan ASSERT(vd->vdev_isl2cache); 1047fa94a07fSbrendan spa_aux_activate(vd, &spa_l2cache_avl); 1048fa94a07fSbrendan mutex_exit(&spa_l2cache_lock); 1049fa94a07fSbrendan } 1050fa94a07fSbrendan 1051fa94a07fSbrendan /* 105299653d4eSeschrock * ========================================================================== 1053fa9e4066Sahrens * SPA vdev locking 1054fa9e4066Sahrens * ========================================================================== 1055fa9e4066Sahrens */ 1056fa9e4066Sahrens 1057fa9e4066Sahrens /* 1058ea8dc4b6Seschrock * Lock the given spa_t for the purpose of adding or removing a vdev. 1059ea8dc4b6Seschrock * Grabs the global spa_namespace_lock plus the spa config lock for writing. 1060fa9e4066Sahrens * It returns the next transaction group for the spa_t. 1061fa9e4066Sahrens */ 1062fa9e4066Sahrens uint64_t 1063fa9e4066Sahrens spa_vdev_enter(spa_t *spa) 1064fa9e4066Sahrens { 1065a1521560SJeff Bonwick mutex_enter(&spa->spa_vdev_top_lock); 1066bbfd46c4SJeff Bonwick mutex_enter(&spa_namespace_lock); 106788ecc943SGeorge Wilson return (spa_vdev_config_enter(spa)); 106888ecc943SGeorge Wilson } 106988ecc943SGeorge Wilson 107088ecc943SGeorge Wilson /* 107188ecc943SGeorge Wilson * Internal implementation for spa_vdev_enter(). Used when a vdev 107288ecc943SGeorge Wilson * operation requires multiple syncs (i.e. removing a device) while 107388ecc943SGeorge Wilson * keeping the spa_namespace_lock held. 107488ecc943SGeorge Wilson */ 107588ecc943SGeorge Wilson uint64_t 107688ecc943SGeorge Wilson spa_vdev_config_enter(spa_t *spa) 107788ecc943SGeorge Wilson { 107888ecc943SGeorge Wilson ASSERT(MUTEX_HELD(&spa_namespace_lock)); 10793d7072f8Seschrock 1080e14bb325SJeff Bonwick spa_config_enter(spa, SCL_ALL, spa, RW_WRITER); 1081fa9e4066Sahrens 1082fa9e4066Sahrens return (spa_last_synced_txg(spa) + 1); 1083fa9e4066Sahrens } 1084fa9e4066Sahrens 1085fa9e4066Sahrens /* 108688ecc943SGeorge Wilson * Used in combination with spa_vdev_config_enter() to allow the syncing 108788ecc943SGeorge Wilson * of multiple transactions without releasing the spa_namespace_lock. 1088fa9e4066Sahrens */ 108988ecc943SGeorge Wilson void 109088ecc943SGeorge Wilson spa_vdev_config_exit(spa_t *spa, vdev_t *vd, uint64_t txg, int error, char *tag) 1091fa9e4066Sahrens { 109288ecc943SGeorge Wilson ASSERT(MUTEX_HELD(&spa_namespace_lock)); 109388ecc943SGeorge Wilson 10940e34b6a7Sbonwick int config_changed = B_FALSE; 1095ea8dc4b6Seschrock 10960373e76bSbonwick ASSERT(txg > spa_last_synced_txg(spa)); 10970e34b6a7Sbonwick 1098e14bb325SJeff Bonwick spa->spa_pending_vdev = NULL; 1099e14bb325SJeff Bonwick 11000e34b6a7Sbonwick /* 11010e34b6a7Sbonwick * Reassess the DTLs. 11020e34b6a7Sbonwick */ 11030373e76bSbonwick vdev_dtl_reassess(spa->spa_root_vdev, 0, 0, B_FALSE); 11040e34b6a7Sbonwick 1105e14bb325SJeff Bonwick if (error == 0 && !list_is_empty(&spa->spa_config_dirty_list)) { 11060e34b6a7Sbonwick config_changed = B_TRUE; 11078f18d1faSGeorge Wilson spa->spa_config_generation++; 11080e34b6a7Sbonwick } 1109fa9e4066Sahrens 111088ecc943SGeorge Wilson /* 111188ecc943SGeorge Wilson * Verify the metaslab classes. 111288ecc943SGeorge Wilson */ 1113b24ab676SJeff Bonwick ASSERT(metaslab_class_validate(spa_normal_class(spa)) == 0); 1114b24ab676SJeff Bonwick ASSERT(metaslab_class_validate(spa_log_class(spa)) == 0); 111588ecc943SGeorge Wilson 1116e14bb325SJeff Bonwick spa_config_exit(spa, SCL_ALL, spa); 1117fa9e4066Sahrens 1118ea8dc4b6Seschrock /* 111988ecc943SGeorge Wilson * Panic the system if the specified tag requires it. This 112088ecc943SGeorge Wilson * is useful for ensuring that configurations are updated 112188ecc943SGeorge Wilson * transactionally. 112288ecc943SGeorge Wilson */ 112388ecc943SGeorge Wilson if (zio_injection_enabled) 11241195e687SMark J Musante zio_handle_panic_injection(spa, tag, 0); 112588ecc943SGeorge Wilson 112688ecc943SGeorge Wilson /* 1127fa9e4066Sahrens * Note: this txg_wait_synced() is important because it ensures 1128fa9e4066Sahrens * that there won't be more than one config change per txg. 1129fa9e4066Sahrens * This allows us to use the txg as the generation number. 1130fa9e4066Sahrens */ 1131fa9e4066Sahrens if (error == 0) 1132fa9e4066Sahrens txg_wait_synced(spa->spa_dsl_pool, txg); 1133fa9e4066Sahrens 1134fa9e4066Sahrens if (vd != NULL) { 11350713e232SGeorge Wilson ASSERT(!vd->vdev_detached || vd->vdev_dtl_sm == NULL); 11368ad4d6ddSJeff Bonwick spa_config_enter(spa, SCL_ALL, spa, RW_WRITER); 1137fa9e4066Sahrens vdev_free(vd); 11388ad4d6ddSJeff Bonwick spa_config_exit(spa, SCL_ALL, spa); 1139fa9e4066Sahrens } 1140fa9e4066Sahrens 1141fa9e4066Sahrens /* 11420e34b6a7Sbonwick * If the config changed, update the config cache. 1143fa9e4066Sahrens */ 11440e34b6a7Sbonwick if (config_changed) 1145c5904d13Seschrock spa_config_sync(spa, B_FALSE, B_TRUE); 114688ecc943SGeorge Wilson } 1147ea8dc4b6Seschrock 114888ecc943SGeorge Wilson /* 114988ecc943SGeorge Wilson * Unlock the spa_t after adding or removing a vdev. Besides undoing the 115088ecc943SGeorge Wilson * locking of spa_vdev_enter(), we also want make sure the transactions have 115188ecc943SGeorge Wilson * synced to disk, and then update the global configuration cache with the new 115288ecc943SGeorge Wilson * information. 115388ecc943SGeorge Wilson */ 115488ecc943SGeorge Wilson int 115588ecc943SGeorge Wilson spa_vdev_exit(spa_t *spa, vdev_t *vd, uint64_t txg, int error) 115688ecc943SGeorge Wilson { 115788ecc943SGeorge Wilson spa_vdev_config_exit(spa, vd, txg, error, FTAG); 1158fa9e4066Sahrens mutex_exit(&spa_namespace_lock); 1159bbfd46c4SJeff Bonwick mutex_exit(&spa->spa_vdev_top_lock); 1160fa9e4066Sahrens 1161fa9e4066Sahrens return (error); 1162fa9e4066Sahrens } 1163fa9e4066Sahrens 1164fa9e4066Sahrens /* 1165e14bb325SJeff Bonwick * Lock the given spa_t for the purpose of changing vdev state. 1166e14bb325SJeff Bonwick */ 1167e14bb325SJeff Bonwick void 11688f18d1faSGeorge Wilson spa_vdev_state_enter(spa_t *spa, int oplocks) 1169e14bb325SJeff Bonwick { 11708f18d1faSGeorge Wilson int locks = SCL_STATE_ALL | oplocks; 11718f18d1faSGeorge Wilson 1172dcba9f3fSGeorge Wilson /* 1173dcba9f3fSGeorge Wilson * Root pools may need to read of the underlying devfs filesystem 1174dcba9f3fSGeorge Wilson * when opening up a vdev. Unfortunately if we're holding the 1175dcba9f3fSGeorge Wilson * SCL_ZIO lock it will result in a deadlock when we try to issue 1176dcba9f3fSGeorge Wilson * the read from the root filesystem. Instead we "prefetch" 1177dcba9f3fSGeorge Wilson * the associated vnodes that we need prior to opening the 1178dcba9f3fSGeorge Wilson * underlying devices and cache them so that we can prevent 1179dcba9f3fSGeorge Wilson * any I/O when we are doing the actual open. 1180dcba9f3fSGeorge Wilson */ 1181dcba9f3fSGeorge Wilson if (spa_is_root(spa)) { 11829842588bSGeorge Wilson int low = locks & ~(SCL_ZIO - 1); 11839842588bSGeorge Wilson int high = locks & ~low; 11849842588bSGeorge Wilson 11859842588bSGeorge Wilson spa_config_enter(spa, high, spa, RW_WRITER); 1186dcba9f3fSGeorge Wilson vdev_hold(spa->spa_root_vdev); 11879842588bSGeorge Wilson spa_config_enter(spa, low, spa, RW_WRITER); 1188dcba9f3fSGeorge Wilson } else { 11898f18d1faSGeorge Wilson spa_config_enter(spa, locks, spa, RW_WRITER); 1190dcba9f3fSGeorge Wilson } 11918f18d1faSGeorge Wilson spa->spa_vdev_locks = locks; 1192e14bb325SJeff Bonwick } 1193e14bb325SJeff Bonwick 1194e14bb325SJeff Bonwick int 1195e14bb325SJeff Bonwick spa_vdev_state_exit(spa_t *spa, vdev_t *vd, int error) 1196e14bb325SJeff Bonwick { 1197c6065d0fSGeorge Wilson boolean_t config_changed = B_FALSE; 1198c6065d0fSGeorge Wilson 1199b24ab676SJeff Bonwick if (vd != NULL || error == 0) 1200b24ab676SJeff Bonwick vdev_dtl_reassess(vd ? vd->vdev_top : spa->spa_root_vdev, 1201b24ab676SJeff Bonwick 0, 0, B_FALSE); 1202b24ab676SJeff Bonwick 12038f18d1faSGeorge Wilson if (vd != NULL) { 1204e14bb325SJeff Bonwick vdev_state_dirty(vd->vdev_top); 1205c6065d0fSGeorge Wilson config_changed = B_TRUE; 12068f18d1faSGeorge Wilson spa->spa_config_generation++; 12078f18d1faSGeorge Wilson } 1208e14bb325SJeff Bonwick 1209dcba9f3fSGeorge Wilson if (spa_is_root(spa)) 1210dcba9f3fSGeorge Wilson vdev_rele(spa->spa_root_vdev); 1211dcba9f3fSGeorge Wilson 12128f18d1faSGeorge Wilson ASSERT3U(spa->spa_vdev_locks, >=, SCL_STATE_ALL); 12138f18d1faSGeorge Wilson spa_config_exit(spa, spa->spa_vdev_locks, spa); 1214e14bb325SJeff Bonwick 12158ad4d6ddSJeff Bonwick /* 12168ad4d6ddSJeff Bonwick * If anything changed, wait for it to sync. This ensures that, 12178ad4d6ddSJeff Bonwick * from the system administrator's perspective, zpool(1M) commands 12188ad4d6ddSJeff Bonwick * are synchronous. This is important for things like zpool offline: 12198ad4d6ddSJeff Bonwick * when the command completes, you expect no further I/O from ZFS. 12208ad4d6ddSJeff Bonwick */ 12218ad4d6ddSJeff Bonwick if (vd != NULL) 12228ad4d6ddSJeff Bonwick txg_wait_synced(spa->spa_dsl_pool, 0); 12238ad4d6ddSJeff Bonwick 1224c6065d0fSGeorge Wilson /* 1225c6065d0fSGeorge Wilson * If the config changed, update the config cache. 1226c6065d0fSGeorge Wilson */ 1227c6065d0fSGeorge Wilson if (config_changed) { 1228c6065d0fSGeorge Wilson mutex_enter(&spa_namespace_lock); 1229c6065d0fSGeorge Wilson spa_config_sync(spa, B_FALSE, B_TRUE); 1230c6065d0fSGeorge Wilson mutex_exit(&spa_namespace_lock); 1231c6065d0fSGeorge Wilson } 1232c6065d0fSGeorge Wilson 1233e14bb325SJeff Bonwick return (error); 1234e14bb325SJeff Bonwick } 1235e14bb325SJeff Bonwick 1236e14bb325SJeff Bonwick /* 1237fa9e4066Sahrens * ========================================================================== 1238fa9e4066Sahrens * Miscellaneous functions 1239fa9e4066Sahrens * ========================================================================== 1240fa9e4066Sahrens */ 1241fa9e4066Sahrens 1242ad135b5dSChristopher Siden void 124343466aaeSMax Grossman spa_activate_mos_feature(spa_t *spa, const char *feature, dmu_tx_t *tx) 1244ad135b5dSChristopher Siden { 12452acef22dSMatthew Ahrens if (!nvlist_exists(spa->spa_label_features, feature)) { 12462acef22dSMatthew Ahrens fnvlist_add_boolean(spa->spa_label_features, feature); 124743466aaeSMax Grossman /* 124843466aaeSMax Grossman * When we are creating the pool (tx_txg==TXG_INITIAL), we can't 124943466aaeSMax Grossman * dirty the vdev config because lock SCL_CONFIG is not held. 125043466aaeSMax Grossman * Thankfully, in this case we don't need to dirty the config 125143466aaeSMax Grossman * because it will be written out anyway when we finish 125243466aaeSMax Grossman * creating the pool. 125343466aaeSMax Grossman */ 125443466aaeSMax Grossman if (tx->tx_txg != TXG_INITIAL) 1255ad135b5dSChristopher Siden vdev_config_dirty(spa->spa_root_vdev); 1256ad135b5dSChristopher Siden } 12572acef22dSMatthew Ahrens } 1258ad135b5dSChristopher Siden 1259ad135b5dSChristopher Siden void 1260ad135b5dSChristopher Siden spa_deactivate_mos_feature(spa_t *spa, const char *feature) 1261ad135b5dSChristopher Siden { 12622acef22dSMatthew Ahrens if (nvlist_remove_all(spa->spa_label_features, feature) == 0) 1263ad135b5dSChristopher Siden vdev_config_dirty(spa->spa_root_vdev); 1264ad135b5dSChristopher Siden } 1265ad135b5dSChristopher Siden 1266fa9e4066Sahrens /* 1267fa9e4066Sahrens * Rename a spa_t. 1268fa9e4066Sahrens */ 1269fa9e4066Sahrens int 1270fa9e4066Sahrens spa_rename(const char *name, const char *newname) 1271fa9e4066Sahrens { 1272fa9e4066Sahrens spa_t *spa; 1273fa9e4066Sahrens int err; 1274fa9e4066Sahrens 1275fa9e4066Sahrens /* 1276fa9e4066Sahrens * Lookup the spa_t and grab the config lock for writing. We need to 1277fa9e4066Sahrens * actually open the pool so that we can sync out the necessary labels. 1278fa9e4066Sahrens * It's OK to call spa_open() with the namespace lock held because we 1279ea8dc4b6Seschrock * allow recursive calls for other reasons. 1280fa9e4066Sahrens */ 1281fa9e4066Sahrens mutex_enter(&spa_namespace_lock); 1282fa9e4066Sahrens if ((err = spa_open(name, &spa, FTAG)) != 0) { 1283fa9e4066Sahrens mutex_exit(&spa_namespace_lock); 1284fa9e4066Sahrens return (err); 1285fa9e4066Sahrens } 1286fa9e4066Sahrens 1287e14bb325SJeff Bonwick spa_config_enter(spa, SCL_ALL, FTAG, RW_WRITER); 1288fa9e4066Sahrens 1289fa9e4066Sahrens avl_remove(&spa_namespace_avl, spa); 1290e14bb325SJeff Bonwick (void) strlcpy(spa->spa_name, newname, sizeof (spa->spa_name)); 1291fa9e4066Sahrens avl_add(&spa_namespace_avl, spa); 1292fa9e4066Sahrens 1293fa9e4066Sahrens /* 1294fa9e4066Sahrens * Sync all labels to disk with the new names by marking the root vdev 1295fa9e4066Sahrens * dirty and waiting for it to sync. It will pick up the new pool name 1296fa9e4066Sahrens * during the sync. 1297fa9e4066Sahrens */ 1298fa9e4066Sahrens vdev_config_dirty(spa->spa_root_vdev); 1299fa9e4066Sahrens 1300e14bb325SJeff Bonwick spa_config_exit(spa, SCL_ALL, FTAG); 1301fa9e4066Sahrens 13020373e76bSbonwick txg_wait_synced(spa->spa_dsl_pool, 0); 1303fa9e4066Sahrens 1304fa9e4066Sahrens /* 1305fa9e4066Sahrens * Sync the updated config cache. 1306fa9e4066Sahrens */ 1307c5904d13Seschrock spa_config_sync(spa, B_FALSE, B_TRUE); 1308fa9e4066Sahrens 1309fa9e4066Sahrens spa_close(spa, FTAG); 1310fa9e4066Sahrens 1311fa9e4066Sahrens mutex_exit(&spa_namespace_lock); 1312fa9e4066Sahrens 1313fa9e4066Sahrens return (0); 1314fa9e4066Sahrens } 1315fa9e4066Sahrens 1316fa9e4066Sahrens /* 1317f9af39baSGeorge Wilson * Return the spa_t associated with given pool_guid, if it exists. If 1318f9af39baSGeorge Wilson * device_guid is non-zero, determine whether the pool exists *and* contains 1319f9af39baSGeorge Wilson * a device with the specified device_guid. 1320fa9e4066Sahrens */ 1321f9af39baSGeorge Wilson spa_t * 1322f9af39baSGeorge Wilson spa_by_guid(uint64_t pool_guid, uint64_t device_guid) 1323fa9e4066Sahrens { 1324fa9e4066Sahrens spa_t *spa; 1325fa9e4066Sahrens avl_tree_t *t = &spa_namespace_avl; 1326fa9e4066Sahrens 1327ea8dc4b6Seschrock ASSERT(MUTEX_HELD(&spa_namespace_lock)); 1328fa9e4066Sahrens 1329fa9e4066Sahrens for (spa = avl_first(t); spa != NULL; spa = AVL_NEXT(t, spa)) { 1330fa9e4066Sahrens if (spa->spa_state == POOL_STATE_UNINITIALIZED) 1331fa9e4066Sahrens continue; 1332fa9e4066Sahrens if (spa->spa_root_vdev == NULL) 1333fa9e4066Sahrens continue; 133439c23413Seschrock if (spa_guid(spa) == pool_guid) { 133539c23413Seschrock if (device_guid == 0) 1336fa9e4066Sahrens break; 133739c23413Seschrock 133839c23413Seschrock if (vdev_lookup_by_guid(spa->spa_root_vdev, 133939c23413Seschrock device_guid) != NULL) 134039c23413Seschrock break; 134139c23413Seschrock 134239c23413Seschrock /* 13438654d025Sperrin * Check any devices we may be in the process of adding. 134439c23413Seschrock */ 134539c23413Seschrock if (spa->spa_pending_vdev) { 134639c23413Seschrock if (vdev_lookup_by_guid(spa->spa_pending_vdev, 134739c23413Seschrock device_guid) != NULL) 134839c23413Seschrock break; 134939c23413Seschrock } 135039c23413Seschrock } 1351fa9e4066Sahrens } 1352fa9e4066Sahrens 1353f9af39baSGeorge Wilson return (spa); 1354f9af39baSGeorge Wilson } 1355f9af39baSGeorge Wilson 1356f9af39baSGeorge Wilson /* 1357f9af39baSGeorge Wilson * Determine whether a pool with the given pool_guid exists. 1358f9af39baSGeorge Wilson */ 1359f9af39baSGeorge Wilson boolean_t 1360f9af39baSGeorge Wilson spa_guid_exists(uint64_t pool_guid, uint64_t device_guid) 1361f9af39baSGeorge Wilson { 1362f9af39baSGeorge Wilson return (spa_by_guid(pool_guid, device_guid) != NULL); 1363fa9e4066Sahrens } 1364fa9e4066Sahrens 1365fa9e4066Sahrens char * 1366fa9e4066Sahrens spa_strdup(const char *s) 1367fa9e4066Sahrens { 1368fa9e4066Sahrens size_t len; 1369fa9e4066Sahrens char *new; 1370fa9e4066Sahrens 1371fa9e4066Sahrens len = strlen(s); 1372fa9e4066Sahrens new = kmem_alloc(len + 1, KM_SLEEP); 1373fa9e4066Sahrens bcopy(s, new, len); 1374fa9e4066Sahrens new[len] = '\0'; 1375fa9e4066Sahrens 1376fa9e4066Sahrens return (new); 1377fa9e4066Sahrens } 1378fa9e4066Sahrens 1379fa9e4066Sahrens void 1380fa9e4066Sahrens spa_strfree(char *s) 1381fa9e4066Sahrens { 1382fa9e4066Sahrens kmem_free(s, strlen(s) + 1); 1383fa9e4066Sahrens } 1384fa9e4066Sahrens 1385fa9e4066Sahrens uint64_t 1386fa9e4066Sahrens spa_get_random(uint64_t range) 1387fa9e4066Sahrens { 1388fa9e4066Sahrens uint64_t r; 1389fa9e4066Sahrens 1390fa9e4066Sahrens ASSERT(range != 0); 1391fa9e4066Sahrens 1392fa9e4066Sahrens (void) random_get_pseudo_bytes((void *)&r, sizeof (uint64_t)); 1393fa9e4066Sahrens 1394fa9e4066Sahrens return (r % range); 1395fa9e4066Sahrens } 1396fa9e4066Sahrens 13971195e687SMark J Musante uint64_t 13981195e687SMark J Musante spa_generate_guid(spa_t *spa) 13991195e687SMark J Musante { 14001195e687SMark J Musante uint64_t guid = spa_get_random(-1ULL); 14011195e687SMark J Musante 14021195e687SMark J Musante if (spa != NULL) { 14031195e687SMark J Musante while (guid == 0 || spa_guid_exists(spa_guid(spa), guid)) 14041195e687SMark J Musante guid = spa_get_random(-1ULL); 14051195e687SMark J Musante } else { 14061195e687SMark J Musante while (guid == 0 || spa_guid_exists(guid, 0)) 14071195e687SMark J Musante guid = spa_get_random(-1ULL); 14081195e687SMark J Musante } 14091195e687SMark J Musante 14101195e687SMark J Musante return (guid); 14111195e687SMark J Musante } 14121195e687SMark J Musante 1413fa9e4066Sahrens void 141443466aaeSMax Grossman snprintf_blkptr(char *buf, size_t buflen, const blkptr_t *bp) 1415fa9e4066Sahrens { 1416ad135b5dSChristopher Siden char type[256]; 1417f0ba89beSJeff Bonwick char *checksum = NULL; 1418f0ba89beSJeff Bonwick char *compress = NULL; 1419f0ba89beSJeff Bonwick 1420f0ba89beSJeff Bonwick if (bp != NULL) { 1421ad135b5dSChristopher Siden if (BP_GET_TYPE(bp) & DMU_OT_NEWTYPE) { 1422ad135b5dSChristopher Siden dmu_object_byteswap_t bswap = 1423ad135b5dSChristopher Siden DMU_OT_BYTESWAP(BP_GET_TYPE(bp)); 1424ad135b5dSChristopher Siden (void) snprintf(type, sizeof (type), "bswap %s %s", 1425ad135b5dSChristopher Siden DMU_OT_IS_METADATA(BP_GET_TYPE(bp)) ? 1426ad135b5dSChristopher Siden "metadata" : "data", 1427ad135b5dSChristopher Siden dmu_ot_byteswap[bswap].ob_name); 1428ad135b5dSChristopher Siden } else { 1429ad135b5dSChristopher Siden (void) strlcpy(type, dmu_ot[BP_GET_TYPE(bp)].ot_name, 1430ad135b5dSChristopher Siden sizeof (type)); 1431ad135b5dSChristopher Siden } 14325d7b4d43SMatthew Ahrens if (!BP_IS_EMBEDDED(bp)) { 14335d7b4d43SMatthew Ahrens checksum = 14345d7b4d43SMatthew Ahrens zio_checksum_table[BP_GET_CHECKSUM(bp)].ci_name; 14355d7b4d43SMatthew Ahrens } 1436f0ba89beSJeff Bonwick compress = zio_compress_table[BP_GET_COMPRESS(bp)].ci_name; 1437f0ba89beSJeff Bonwick } 1438fa9e4066Sahrens 143943466aaeSMax Grossman SNPRINTF_BLKPTR(snprintf, ' ', buf, buflen, bp, type, checksum, 144043466aaeSMax Grossman compress); 1441fa9e4066Sahrens } 1442fa9e4066Sahrens 1443fa9e4066Sahrens void 1444fa9e4066Sahrens spa_freeze(spa_t *spa) 1445fa9e4066Sahrens { 1446fa9e4066Sahrens uint64_t freeze_txg = 0; 1447fa9e4066Sahrens 1448e14bb325SJeff Bonwick spa_config_enter(spa, SCL_ALL, FTAG, RW_WRITER); 1449fa9e4066Sahrens if (spa->spa_freeze_txg == UINT64_MAX) { 1450fa9e4066Sahrens freeze_txg = spa_last_synced_txg(spa) + TXG_SIZE; 1451fa9e4066Sahrens spa->spa_freeze_txg = freeze_txg; 1452fa9e4066Sahrens } 1453e14bb325SJeff Bonwick spa_config_exit(spa, SCL_ALL, FTAG); 1454fa9e4066Sahrens if (freeze_txg != 0) 1455fa9e4066Sahrens txg_wait_synced(spa_get_dsl(spa), freeze_txg); 1456fa9e4066Sahrens } 1457fa9e4066Sahrens 14580125049cSahrens void 14590125049cSahrens zfs_panic_recover(const char *fmt, ...) 14600125049cSahrens { 14610125049cSahrens va_list adx; 14620125049cSahrens 14630125049cSahrens va_start(adx, fmt); 14640125049cSahrens vcmn_err(zfs_recover ? CE_WARN : CE_PANIC, fmt, adx); 14650125049cSahrens va_end(adx); 14660125049cSahrens } 14670125049cSahrens 1468fa9e4066Sahrens /* 14693f9d6ad7SLin Ling * This is a stripped-down version of strtoull, suitable only for converting 1470f7170741SWill Andrews * lowercase hexadecimal numbers that don't overflow. 14713f9d6ad7SLin Ling */ 14723f9d6ad7SLin Ling uint64_t 14733f9d6ad7SLin Ling strtonum(const char *str, char **nptr) 14743f9d6ad7SLin Ling { 14753f9d6ad7SLin Ling uint64_t val = 0; 14763f9d6ad7SLin Ling char c; 14773f9d6ad7SLin Ling int digit; 14783f9d6ad7SLin Ling 14793f9d6ad7SLin Ling while ((c = *str) != '\0') { 14803f9d6ad7SLin Ling if (c >= '0' && c <= '9') 14813f9d6ad7SLin Ling digit = c - '0'; 14823f9d6ad7SLin Ling else if (c >= 'a' && c <= 'f') 14833f9d6ad7SLin Ling digit = 10 + c - 'a'; 14843f9d6ad7SLin Ling else 14853f9d6ad7SLin Ling break; 14863f9d6ad7SLin Ling 14873f9d6ad7SLin Ling val *= 16; 14883f9d6ad7SLin Ling val += digit; 14893f9d6ad7SLin Ling 14903f9d6ad7SLin Ling str++; 14913f9d6ad7SLin Ling } 14923f9d6ad7SLin Ling 14933f9d6ad7SLin Ling if (nptr) 14943f9d6ad7SLin Ling *nptr = (char *)str; 14953f9d6ad7SLin Ling 14963f9d6ad7SLin Ling return (val); 14973f9d6ad7SLin Ling } 14983f9d6ad7SLin Ling 14993f9d6ad7SLin Ling /* 1500fa9e4066Sahrens * ========================================================================== 1501fa9e4066Sahrens * Accessor functions 1502fa9e4066Sahrens * ========================================================================== 1503fa9e4066Sahrens */ 1504fa9e4066Sahrens 1505088f3894Sahrens boolean_t 150688b7b0f2SMatthew Ahrens spa_shutting_down(spa_t *spa) 1507fa9e4066Sahrens { 150888b7b0f2SMatthew Ahrens return (spa->spa_async_suspended); 1509fa9e4066Sahrens } 1510fa9e4066Sahrens 1511fa9e4066Sahrens dsl_pool_t * 1512fa9e4066Sahrens spa_get_dsl(spa_t *spa) 1513fa9e4066Sahrens { 1514fa9e4066Sahrens return (spa->spa_dsl_pool); 1515fa9e4066Sahrens } 1516fa9e4066Sahrens 1517ad135b5dSChristopher Siden boolean_t 1518ad135b5dSChristopher Siden spa_is_initializing(spa_t *spa) 1519ad135b5dSChristopher Siden { 1520ad135b5dSChristopher Siden return (spa->spa_is_initializing); 1521ad135b5dSChristopher Siden } 1522ad135b5dSChristopher Siden 1523fa9e4066Sahrens blkptr_t * 1524fa9e4066Sahrens spa_get_rootblkptr(spa_t *spa) 1525fa9e4066Sahrens { 1526fa9e4066Sahrens return (&spa->spa_ubsync.ub_rootbp); 1527fa9e4066Sahrens } 1528fa9e4066Sahrens 1529fa9e4066Sahrens void 1530fa9e4066Sahrens spa_set_rootblkptr(spa_t *spa, const blkptr_t *bp) 1531fa9e4066Sahrens { 1532fa9e4066Sahrens spa->spa_uberblock.ub_rootbp = *bp; 1533fa9e4066Sahrens } 1534fa9e4066Sahrens 1535fa9e4066Sahrens void 1536fa9e4066Sahrens spa_altroot(spa_t *spa, char *buf, size_t buflen) 1537fa9e4066Sahrens { 1538fa9e4066Sahrens if (spa->spa_root == NULL) 1539fa9e4066Sahrens buf[0] = '\0'; 1540fa9e4066Sahrens else 1541fa9e4066Sahrens (void) strncpy(buf, spa->spa_root, buflen); 1542fa9e4066Sahrens } 1543fa9e4066Sahrens 1544fa9e4066Sahrens int 1545fa9e4066Sahrens spa_sync_pass(spa_t *spa) 1546fa9e4066Sahrens { 1547fa9e4066Sahrens return (spa->spa_sync_pass); 1548fa9e4066Sahrens } 1549fa9e4066Sahrens 1550fa9e4066Sahrens char * 1551fa9e4066Sahrens spa_name(spa_t *spa) 1552fa9e4066Sahrens { 1553fa9e4066Sahrens return (spa->spa_name); 1554fa9e4066Sahrens } 1555fa9e4066Sahrens 1556fa9e4066Sahrens uint64_t 1557fa9e4066Sahrens spa_guid(spa_t *spa) 1558fa9e4066Sahrens { 1559dfbb9432SGeorge Wilson dsl_pool_t *dp = spa_get_dsl(spa); 1560dfbb9432SGeorge Wilson uint64_t guid; 1561dfbb9432SGeorge Wilson 1562b5989ec7Seschrock /* 1563b5989ec7Seschrock * If we fail to parse the config during spa_load(), we can go through 1564b5989ec7Seschrock * the error path (which posts an ereport) and end up here with no root 1565e9103aaeSGarrett D'Amore * vdev. We stash the original pool guid in 'spa_config_guid' to handle 1566b5989ec7Seschrock * this case. 1567b5989ec7Seschrock */ 1568dfbb9432SGeorge Wilson if (spa->spa_root_vdev == NULL) 1569dfbb9432SGeorge Wilson return (spa->spa_config_guid); 1570dfbb9432SGeorge Wilson 1571dfbb9432SGeorge Wilson guid = spa->spa_last_synced_guid != 0 ? 1572dfbb9432SGeorge Wilson spa->spa_last_synced_guid : spa->spa_root_vdev->vdev_guid; 1573dfbb9432SGeorge Wilson 1574dfbb9432SGeorge Wilson /* 1575dfbb9432SGeorge Wilson * Return the most recently synced out guid unless we're 1576dfbb9432SGeorge Wilson * in syncing context. 1577dfbb9432SGeorge Wilson */ 1578dfbb9432SGeorge Wilson if (dp && dsl_pool_sync_context(dp)) 1579fa9e4066Sahrens return (spa->spa_root_vdev->vdev_guid); 1580b5989ec7Seschrock else 1581dfbb9432SGeorge Wilson return (guid); 1582e9103aaeSGarrett D'Amore } 1583e9103aaeSGarrett D'Amore 1584e9103aaeSGarrett D'Amore uint64_t 1585e9103aaeSGarrett D'Amore spa_load_guid(spa_t *spa) 1586e9103aaeSGarrett D'Amore { 1587e9103aaeSGarrett D'Amore /* 1588e9103aaeSGarrett D'Amore * This is a GUID that exists solely as a reference for the 1589e9103aaeSGarrett D'Amore * purposes of the arc. It is generated at load time, and 1590e9103aaeSGarrett D'Amore * is never written to persistent storage. 1591e9103aaeSGarrett D'Amore */ 1592b5989ec7Seschrock return (spa->spa_load_guid); 1593fa9e4066Sahrens } 1594fa9e4066Sahrens 1595fa9e4066Sahrens uint64_t 1596fa9e4066Sahrens spa_last_synced_txg(spa_t *spa) 1597fa9e4066Sahrens { 1598fa9e4066Sahrens return (spa->spa_ubsync.ub_txg); 1599fa9e4066Sahrens } 1600fa9e4066Sahrens 1601fa9e4066Sahrens uint64_t 1602fa9e4066Sahrens spa_first_txg(spa_t *spa) 1603fa9e4066Sahrens { 1604fa9e4066Sahrens return (spa->spa_first_txg); 1605fa9e4066Sahrens } 1606fa9e4066Sahrens 1607b24ab676SJeff Bonwick uint64_t 1608b24ab676SJeff Bonwick spa_syncing_txg(spa_t *spa) 1609b24ab676SJeff Bonwick { 1610b24ab676SJeff Bonwick return (spa->spa_syncing_txg); 1611b24ab676SJeff Bonwick } 1612b24ab676SJeff Bonwick 161388b7b0f2SMatthew Ahrens pool_state_t 1614fa9e4066Sahrens spa_state(spa_t *spa) 1615fa9e4066Sahrens { 1616fa9e4066Sahrens return (spa->spa_state); 1617fa9e4066Sahrens } 1618fa9e4066Sahrens 1619b16da2e2SGeorge Wilson spa_load_state_t 1620b16da2e2SGeorge Wilson spa_load_state(spa_t *spa) 1621b16da2e2SGeorge Wilson { 1622b16da2e2SGeorge Wilson return (spa->spa_load_state); 1623b16da2e2SGeorge Wilson } 1624b16da2e2SGeorge Wilson 1625fa9e4066Sahrens uint64_t 1626fa9e4066Sahrens spa_freeze_txg(spa_t *spa) 1627fa9e4066Sahrens { 1628fa9e4066Sahrens return (spa->spa_freeze_txg); 1629fa9e4066Sahrens } 1630fa9e4066Sahrens 1631fa9e4066Sahrens /* ARGSUSED */ 1632fa9e4066Sahrens uint64_t 1633fa9e4066Sahrens spa_get_asize(spa_t *spa, uint64_t lsize) 1634fa9e4066Sahrens { 163569962b56SMatthew Ahrens return (lsize * spa_asize_inflation); 163644cd46caSbillm } 163744cd46caSbillm 16387d46dc6cSMatthew Ahrens /* 16397d46dc6cSMatthew Ahrens * Return the amount of slop space in bytes. It is 1/32 of the pool (3.2%), 16407d46dc6cSMatthew Ahrens * or at least 32MB. 16417d46dc6cSMatthew Ahrens * 16427d46dc6cSMatthew Ahrens * See the comment above spa_slop_shift for details. 16437d46dc6cSMatthew Ahrens */ 16447d46dc6cSMatthew Ahrens uint64_t 16457d46dc6cSMatthew Ahrens spa_get_slop_space(spa_t *spa) { 16467d46dc6cSMatthew Ahrens uint64_t space = spa_get_dspace(spa); 16477d46dc6cSMatthew Ahrens return (MAX(space >> spa_slop_shift, SPA_MINDEVSIZE >> 1)); 16487d46dc6cSMatthew Ahrens } 16497d46dc6cSMatthew Ahrens 1650485bbbf5SGeorge Wilson uint64_t 1651485bbbf5SGeorge Wilson spa_get_dspace(spa_t *spa) 1652485bbbf5SGeorge Wilson { 1653485bbbf5SGeorge Wilson return (spa->spa_dspace); 1654485bbbf5SGeorge Wilson } 1655485bbbf5SGeorge Wilson 1656485bbbf5SGeorge Wilson void 1657485bbbf5SGeorge Wilson spa_update_dspace(spa_t *spa) 1658485bbbf5SGeorge Wilson { 1659485bbbf5SGeorge Wilson spa->spa_dspace = metaslab_class_get_dspace(spa_normal_class(spa)) + 1660485bbbf5SGeorge Wilson ddt_get_dedup_dspace(spa); 1661485bbbf5SGeorge Wilson } 1662485bbbf5SGeorge Wilson 16630a4e9518Sgw25295 /* 16640a4e9518Sgw25295 * Return the failure mode that has been set to this pool. The default 16650a4e9518Sgw25295 * behavior will be to block all I/Os when a complete failure occurs. 16660a4e9518Sgw25295 */ 16670a4e9518Sgw25295 uint8_t 16680a4e9518Sgw25295 spa_get_failmode(spa_t *spa) 16690a4e9518Sgw25295 { 16700a4e9518Sgw25295 return (spa->spa_failmode); 16710a4e9518Sgw25295 } 16720a4e9518Sgw25295 1673e14bb325SJeff Bonwick boolean_t 1674e14bb325SJeff Bonwick spa_suspended(spa_t *spa) 1675e14bb325SJeff Bonwick { 1676e14bb325SJeff Bonwick return (spa->spa_suspended); 1677e14bb325SJeff Bonwick } 1678e14bb325SJeff Bonwick 167944cd46caSbillm uint64_t 168044cd46caSbillm spa_version(spa_t *spa) 168144cd46caSbillm { 168244cd46caSbillm return (spa->spa_ubsync.ub_version); 168344cd46caSbillm } 168444cd46caSbillm 1685b24ab676SJeff Bonwick boolean_t 1686b24ab676SJeff Bonwick spa_deflate(spa_t *spa) 1687b24ab676SJeff Bonwick { 1688b24ab676SJeff Bonwick return (spa->spa_deflate); 1689b24ab676SJeff Bonwick } 1690b24ab676SJeff Bonwick 1691b24ab676SJeff Bonwick metaslab_class_t * 1692b24ab676SJeff Bonwick spa_normal_class(spa_t *spa) 1693b24ab676SJeff Bonwick { 1694b24ab676SJeff Bonwick return (spa->spa_normal_class); 1695b24ab676SJeff Bonwick } 1696b24ab676SJeff Bonwick 1697b24ab676SJeff Bonwick metaslab_class_t * 1698b24ab676SJeff Bonwick spa_log_class(spa_t *spa) 1699b24ab676SJeff Bonwick { 1700b24ab676SJeff Bonwick return (spa->spa_log_class); 1701b24ab676SJeff Bonwick } 1702b24ab676SJeff Bonwick 1703bc9014e6SJustin Gibbs void 1704bc9014e6SJustin Gibbs spa_evicting_os_register(spa_t *spa, objset_t *os) 1705bc9014e6SJustin Gibbs { 1706bc9014e6SJustin Gibbs mutex_enter(&spa->spa_evicting_os_lock); 1707bc9014e6SJustin Gibbs list_insert_head(&spa->spa_evicting_os_list, os); 1708bc9014e6SJustin Gibbs mutex_exit(&spa->spa_evicting_os_lock); 1709bc9014e6SJustin Gibbs } 1710bc9014e6SJustin Gibbs 1711bc9014e6SJustin Gibbs void 1712bc9014e6SJustin Gibbs spa_evicting_os_deregister(spa_t *spa, objset_t *os) 1713bc9014e6SJustin Gibbs { 1714bc9014e6SJustin Gibbs mutex_enter(&spa->spa_evicting_os_lock); 1715bc9014e6SJustin Gibbs list_remove(&spa->spa_evicting_os_list, os); 1716bc9014e6SJustin Gibbs cv_broadcast(&spa->spa_evicting_os_cv); 1717bc9014e6SJustin Gibbs mutex_exit(&spa->spa_evicting_os_lock); 1718bc9014e6SJustin Gibbs } 1719bc9014e6SJustin Gibbs 1720bc9014e6SJustin Gibbs void 1721bc9014e6SJustin Gibbs spa_evicting_os_wait(spa_t *spa) 1722bc9014e6SJustin Gibbs { 1723bc9014e6SJustin Gibbs mutex_enter(&spa->spa_evicting_os_lock); 1724bc9014e6SJustin Gibbs while (!list_is_empty(&spa->spa_evicting_os_list)) 1725bc9014e6SJustin Gibbs cv_wait(&spa->spa_evicting_os_cv, &spa->spa_evicting_os_lock); 1726bc9014e6SJustin Gibbs mutex_exit(&spa->spa_evicting_os_lock); 1727bc9014e6SJustin Gibbs 1728bc9014e6SJustin Gibbs dmu_buf_user_evict_wait(); 1729bc9014e6SJustin Gibbs } 1730bc9014e6SJustin Gibbs 173144cd46caSbillm int 173244cd46caSbillm spa_max_replication(spa_t *spa) 173344cd46caSbillm { 173444cd46caSbillm /* 1735e7437265Sahrens * As of SPA_VERSION == SPA_VERSION_DITTO_BLOCKS, we are able to 173644cd46caSbillm * handle BPs with more than one DVA allocated. Set our max 173744cd46caSbillm * replication level accordingly. 173844cd46caSbillm */ 1739e7437265Sahrens if (spa_version(spa) < SPA_VERSION_DITTO_BLOCKS) 174044cd46caSbillm return (1); 174144cd46caSbillm return (MIN(SPA_DVAS_PER_BP, spa_max_replication_override)); 1742fa9e4066Sahrens } 1743fa9e4066Sahrens 17443f9d6ad7SLin Ling int 17453f9d6ad7SLin Ling spa_prev_software_version(spa_t *spa) 17463f9d6ad7SLin Ling { 17473f9d6ad7SLin Ling return (spa->spa_prev_software_version); 17483f9d6ad7SLin Ling } 17493f9d6ad7SLin Ling 175099653d4eSeschrock uint64_t 1751283b8460SGeorge.Wilson spa_deadman_synctime(spa_t *spa) 1752283b8460SGeorge.Wilson { 1753283b8460SGeorge.Wilson return (spa->spa_deadman_synctime); 1754283b8460SGeorge.Wilson } 1755283b8460SGeorge.Wilson 1756283b8460SGeorge.Wilson uint64_t 1757b24ab676SJeff Bonwick dva_get_dsize_sync(spa_t *spa, const dva_t *dva) 175899653d4eSeschrock { 1759b24ab676SJeff Bonwick uint64_t asize = DVA_GET_ASIZE(dva); 1760b24ab676SJeff Bonwick uint64_t dsize = asize; 176199653d4eSeschrock 1762b24ab676SJeff Bonwick ASSERT(spa_config_held(spa, SCL_ALL, RW_READER) != 0); 1763b24ab676SJeff Bonwick 1764b24ab676SJeff Bonwick if (asize != 0 && spa->spa_deflate) { 1765b24ab676SJeff Bonwick vdev_t *vd = vdev_lookup_top(spa, DVA_GET_VDEV(dva)); 1766b24ab676SJeff Bonwick dsize = (asize >> SPA_MINBLOCKSHIFT) * vd->vdev_deflate_ratio; 1767b24ab676SJeff Bonwick } 1768b24ab676SJeff Bonwick 1769b24ab676SJeff Bonwick return (dsize); 1770b24ab676SJeff Bonwick } 1771b24ab676SJeff Bonwick 1772b24ab676SJeff Bonwick uint64_t 1773b24ab676SJeff Bonwick bp_get_dsize_sync(spa_t *spa, const blkptr_t *bp) 1774b24ab676SJeff Bonwick { 1775b24ab676SJeff Bonwick uint64_t dsize = 0; 1776b24ab676SJeff Bonwick 17775d7b4d43SMatthew Ahrens for (int d = 0; d < BP_GET_NDVAS(bp); d++) 1778b24ab676SJeff Bonwick dsize += dva_get_dsize_sync(spa, &bp->blk_dva[d]); 1779b24ab676SJeff Bonwick 1780b24ab676SJeff Bonwick return (dsize); 1781b24ab676SJeff Bonwick } 1782b24ab676SJeff Bonwick 1783b24ab676SJeff Bonwick uint64_t 1784b24ab676SJeff Bonwick bp_get_dsize(spa_t *spa, const blkptr_t *bp) 1785b24ab676SJeff Bonwick { 1786b24ab676SJeff Bonwick uint64_t dsize = 0; 178799653d4eSeschrock 1788e14bb325SJeff Bonwick spa_config_enter(spa, SCL_VDEV, FTAG, RW_READER); 1789b24ab676SJeff Bonwick 17905d7b4d43SMatthew Ahrens for (int d = 0; d < BP_GET_NDVAS(bp); d++) 1791b24ab676SJeff Bonwick dsize += dva_get_dsize_sync(spa, &bp->blk_dva[d]); 1792b24ab676SJeff Bonwick 1793e14bb325SJeff Bonwick spa_config_exit(spa, SCL_VDEV, FTAG); 1794b24ab676SJeff Bonwick 1795b24ab676SJeff Bonwick return (dsize); 179699653d4eSeschrock } 179799653d4eSeschrock 1798fa9e4066Sahrens /* 1799fa9e4066Sahrens * ========================================================================== 1800fa9e4066Sahrens * Initialization and Termination 1801fa9e4066Sahrens * ========================================================================== 1802fa9e4066Sahrens */ 1803fa9e4066Sahrens 1804fa9e4066Sahrens static int 1805fa9e4066Sahrens spa_name_compare(const void *a1, const void *a2) 1806fa9e4066Sahrens { 1807fa9e4066Sahrens const spa_t *s1 = a1; 1808fa9e4066Sahrens const spa_t *s2 = a2; 1809fa9e4066Sahrens int s; 1810fa9e4066Sahrens 1811fa9e4066Sahrens s = strcmp(s1->spa_name, s2->spa_name); 1812fa9e4066Sahrens if (s > 0) 1813fa9e4066Sahrens return (1); 1814fa9e4066Sahrens if (s < 0) 1815fa9e4066Sahrens return (-1); 1816fa9e4066Sahrens return (0); 1817fa9e4066Sahrens } 1818fa9e4066Sahrens 18190373e76bSbonwick int 18200373e76bSbonwick spa_busy(void) 18210373e76bSbonwick { 18220373e76bSbonwick return (spa_active_count); 18230373e76bSbonwick } 18240373e76bSbonwick 1825fa9e4066Sahrens void 1826e7cbe64fSgw25295 spa_boot_init() 1827e7cbe64fSgw25295 { 1828e7cbe64fSgw25295 spa_config_load(); 1829e7cbe64fSgw25295 } 1830e7cbe64fSgw25295 1831e7cbe64fSgw25295 void 1832fa9e4066Sahrens spa_init(int mode) 1833fa9e4066Sahrens { 1834fa9e4066Sahrens mutex_init(&spa_namespace_lock, NULL, MUTEX_DEFAULT, NULL); 1835c25056deSgw25295 mutex_init(&spa_spare_lock, NULL, MUTEX_DEFAULT, NULL); 1836fa94a07fSbrendan mutex_init(&spa_l2cache_lock, NULL, MUTEX_DEFAULT, NULL); 1837fa9e4066Sahrens cv_init(&spa_namespace_cv, NULL, CV_DEFAULT, NULL); 1838fa9e4066Sahrens 1839fa9e4066Sahrens avl_create(&spa_namespace_avl, spa_name_compare, sizeof (spa_t), 1840fa9e4066Sahrens offsetof(spa_t, spa_avl)); 1841fa9e4066Sahrens 1842fa94a07fSbrendan avl_create(&spa_spare_avl, spa_spare_compare, sizeof (spa_aux_t), 1843fa94a07fSbrendan offsetof(spa_aux_t, aux_avl)); 1844fa94a07fSbrendan 1845fa94a07fSbrendan avl_create(&spa_l2cache_avl, spa_l2cache_compare, sizeof (spa_aux_t), 1846fa94a07fSbrendan offsetof(spa_aux_t, aux_avl)); 184799653d4eSeschrock 18488ad4d6ddSJeff Bonwick spa_mode_global = mode; 1849fa9e4066Sahrens 1850283b8460SGeorge.Wilson #ifdef _KERNEL 1851283b8460SGeorge.Wilson spa_arch_init(); 1852283b8460SGeorge.Wilson #else 1853cd1c8b85SMatthew Ahrens if (spa_mode_global != FREAD && dprintf_find_string("watch")) { 1854cd1c8b85SMatthew Ahrens arc_procfd = open("/proc/self/ctl", O_WRONLY); 1855cd1c8b85SMatthew Ahrens if (arc_procfd == -1) { 1856cd1c8b85SMatthew Ahrens perror("could not enable watchpoints: " 1857cd1c8b85SMatthew Ahrens "opening /proc/self/ctl failed: "); 1858cd1c8b85SMatthew Ahrens } else { 1859cd1c8b85SMatthew Ahrens arc_watch = B_TRUE; 1860cd1c8b85SMatthew Ahrens } 1861cd1c8b85SMatthew Ahrens } 1862cd1c8b85SMatthew Ahrens #endif 1863cd1c8b85SMatthew Ahrens 1864fa9e4066Sahrens refcount_init(); 1865fa9e4066Sahrens unique_init(); 18660713e232SGeorge Wilson range_tree_init(); 1867fa9e4066Sahrens zio_init(); 1868fa9e4066Sahrens dmu_init(); 1869fa9e4066Sahrens zil_init(); 187087db74c1Sek110237 vdev_cache_stat_init(); 187191ebeef5Sahrens zfs_prop_init(); 1872990b4856Slling zpool_prop_init(); 1873ad135b5dSChristopher Siden zpool_feature_init(); 1874fa9e4066Sahrens spa_config_load(); 1875e14bb325SJeff Bonwick l2arc_start(); 1876fa9e4066Sahrens } 1877fa9e4066Sahrens 1878fa9e4066Sahrens void 1879fa9e4066Sahrens spa_fini(void) 1880fa9e4066Sahrens { 1881e14bb325SJeff Bonwick l2arc_stop(); 1882e14bb325SJeff Bonwick 1883fa9e4066Sahrens spa_evict_all(); 1884fa9e4066Sahrens 188587db74c1Sek110237 vdev_cache_stat_fini(); 1886fa9e4066Sahrens zil_fini(); 1887fa9e4066Sahrens dmu_fini(); 1888fa9e4066Sahrens zio_fini(); 18890713e232SGeorge Wilson range_tree_fini(); 189091ebeef5Sahrens unique_fini(); 1891fa9e4066Sahrens refcount_fini(); 1892fa9e4066Sahrens 1893fa9e4066Sahrens avl_destroy(&spa_namespace_avl); 189499653d4eSeschrock avl_destroy(&spa_spare_avl); 1895fa94a07fSbrendan avl_destroy(&spa_l2cache_avl); 1896fa9e4066Sahrens 1897fa9e4066Sahrens cv_destroy(&spa_namespace_cv); 1898fa9e4066Sahrens mutex_destroy(&spa_namespace_lock); 1899c25056deSgw25295 mutex_destroy(&spa_spare_lock); 1900fa94a07fSbrendan mutex_destroy(&spa_l2cache_lock); 1901fa9e4066Sahrens } 19026ce0521aSperrin 19036ce0521aSperrin /* 19046ce0521aSperrin * Return whether this pool has slogs. No locking needed. 19056ce0521aSperrin * It's not a problem if the wrong answer is returned as it's only for 19066ce0521aSperrin * performance and not correctness 19076ce0521aSperrin */ 19086ce0521aSperrin boolean_t 19096ce0521aSperrin spa_has_slogs(spa_t *spa) 19106ce0521aSperrin { 19116ce0521aSperrin return (spa->spa_log_class->mc_rotor != NULL); 19126ce0521aSperrin } 1913bf82a41bSeschrock 1914b24ab676SJeff Bonwick spa_log_state_t 1915b24ab676SJeff Bonwick spa_get_log_state(spa_t *spa) 1916b24ab676SJeff Bonwick { 1917b24ab676SJeff Bonwick return (spa->spa_log_state); 1918b24ab676SJeff Bonwick } 1919b24ab676SJeff Bonwick 1920b24ab676SJeff Bonwick void 1921b24ab676SJeff Bonwick spa_set_log_state(spa_t *spa, spa_log_state_t state) 1922b24ab676SJeff Bonwick { 1923b24ab676SJeff Bonwick spa->spa_log_state = state; 1924b24ab676SJeff Bonwick } 1925b24ab676SJeff Bonwick 1926bf82a41bSeschrock boolean_t 1927bf82a41bSeschrock spa_is_root(spa_t *spa) 1928bf82a41bSeschrock { 1929bf82a41bSeschrock return (spa->spa_is_root); 1930bf82a41bSeschrock } 19318ad4d6ddSJeff Bonwick 19328ad4d6ddSJeff Bonwick boolean_t 19338ad4d6ddSJeff Bonwick spa_writeable(spa_t *spa) 19348ad4d6ddSJeff Bonwick { 19358ad4d6ddSJeff Bonwick return (!!(spa->spa_mode & FWRITE)); 19368ad4d6ddSJeff Bonwick } 19378ad4d6ddSJeff Bonwick 193873527f44SAlex Reece /* 193973527f44SAlex Reece * Returns true if there is a pending sync task in any of the current 194073527f44SAlex Reece * syncing txg, the current quiescing txg, or the current open txg. 194173527f44SAlex Reece */ 194273527f44SAlex Reece boolean_t 194373527f44SAlex Reece spa_has_pending_synctask(spa_t *spa) 194473527f44SAlex Reece { 194573527f44SAlex Reece return (!txg_all_lists_empty(&spa->spa_dsl_pool->dp_sync_tasks)); 194673527f44SAlex Reece } 194773527f44SAlex Reece 19488ad4d6ddSJeff Bonwick int 19498ad4d6ddSJeff Bonwick spa_mode(spa_t *spa) 19508ad4d6ddSJeff Bonwick { 19518ad4d6ddSJeff Bonwick return (spa->spa_mode); 19528ad4d6ddSJeff Bonwick } 1953b24ab676SJeff Bonwick 1954b24ab676SJeff Bonwick uint64_t 1955b24ab676SJeff Bonwick spa_bootfs(spa_t *spa) 1956b24ab676SJeff Bonwick { 1957b24ab676SJeff Bonwick return (spa->spa_bootfs); 1958b24ab676SJeff Bonwick } 1959b24ab676SJeff Bonwick 1960b24ab676SJeff Bonwick uint64_t 1961b24ab676SJeff Bonwick spa_delegation(spa_t *spa) 1962b24ab676SJeff Bonwick { 1963b24ab676SJeff Bonwick return (spa->spa_delegation); 1964b24ab676SJeff Bonwick } 1965b24ab676SJeff Bonwick 1966b24ab676SJeff Bonwick objset_t * 1967b24ab676SJeff Bonwick spa_meta_objset(spa_t *spa) 1968b24ab676SJeff Bonwick { 1969b24ab676SJeff Bonwick return (spa->spa_meta_objset); 1970b24ab676SJeff Bonwick } 1971b24ab676SJeff Bonwick 1972b24ab676SJeff Bonwick enum zio_checksum 1973b24ab676SJeff Bonwick spa_dedup_checksum(spa_t *spa) 1974b24ab676SJeff Bonwick { 1975b24ab676SJeff Bonwick return (spa->spa_dedup_checksum); 1976b24ab676SJeff Bonwick } 19773f9d6ad7SLin Ling 19783f9d6ad7SLin Ling /* 19793f9d6ad7SLin Ling * Reset pool scan stat per scan pass (or reboot). 19803f9d6ad7SLin Ling */ 19813f9d6ad7SLin Ling void 19823f9d6ad7SLin Ling spa_scan_stat_init(spa_t *spa) 19833f9d6ad7SLin Ling { 19843f9d6ad7SLin Ling /* data not stored on disk */ 19853f9d6ad7SLin Ling spa->spa_scan_pass_start = gethrestime_sec(); 19863f9d6ad7SLin Ling spa->spa_scan_pass_exam = 0; 19873f9d6ad7SLin Ling vdev_scan_stat_init(spa->spa_root_vdev); 19883f9d6ad7SLin Ling } 19893f9d6ad7SLin Ling 19903f9d6ad7SLin Ling /* 19913f9d6ad7SLin Ling * Get scan stats for zpool status reports 19923f9d6ad7SLin Ling */ 19933f9d6ad7SLin Ling int 19943f9d6ad7SLin Ling spa_scan_get_stats(spa_t *spa, pool_scan_stat_t *ps) 19953f9d6ad7SLin Ling { 19963f9d6ad7SLin Ling dsl_scan_t *scn = spa->spa_dsl_pool ? spa->spa_dsl_pool->dp_scan : NULL; 19973f9d6ad7SLin Ling 19983f9d6ad7SLin Ling if (scn == NULL || scn->scn_phys.scn_func == POOL_SCAN_NONE) 1999be6fd75aSMatthew Ahrens return (SET_ERROR(ENOENT)); 20003f9d6ad7SLin Ling bzero(ps, sizeof (pool_scan_stat_t)); 20013f9d6ad7SLin Ling 20023f9d6ad7SLin Ling /* data stored on disk */ 20033f9d6ad7SLin Ling ps->pss_func = scn->scn_phys.scn_func; 20043f9d6ad7SLin Ling ps->pss_start_time = scn->scn_phys.scn_start_time; 20053f9d6ad7SLin Ling ps->pss_end_time = scn->scn_phys.scn_end_time; 20063f9d6ad7SLin Ling ps->pss_to_examine = scn->scn_phys.scn_to_examine; 20073f9d6ad7SLin Ling ps->pss_examined = scn->scn_phys.scn_examined; 20083f9d6ad7SLin Ling ps->pss_to_process = scn->scn_phys.scn_to_process; 20093f9d6ad7SLin Ling ps->pss_processed = scn->scn_phys.scn_processed; 20103f9d6ad7SLin Ling ps->pss_errors = scn->scn_phys.scn_errors; 20113f9d6ad7SLin Ling ps->pss_state = scn->scn_phys.scn_state; 20123f9d6ad7SLin Ling 20133f9d6ad7SLin Ling /* data not stored on disk */ 20143f9d6ad7SLin Ling ps->pss_pass_start = spa->spa_scan_pass_start; 20153f9d6ad7SLin Ling ps->pss_pass_exam = spa->spa_scan_pass_exam; 20163f9d6ad7SLin Ling 20173f9d6ad7SLin Ling return (0); 20183f9d6ad7SLin Ling } 201909c9d376SGeorge Wilson 202009c9d376SGeorge Wilson boolean_t 202109c9d376SGeorge Wilson spa_debug_enabled(spa_t *spa) 202209c9d376SGeorge Wilson { 202309c9d376SGeorge Wilson return (spa->spa_debug); 202409c9d376SGeorge Wilson } 2025b5152584SMatthew Ahrens 2026b5152584SMatthew Ahrens int 2027b5152584SMatthew Ahrens spa_maxblocksize(spa_t *spa) 2028b5152584SMatthew Ahrens { 2029b5152584SMatthew Ahrens if (spa_feature_is_enabled(spa, SPA_FEATURE_LARGE_BLOCKS)) 2030b5152584SMatthew Ahrens return (SPA_MAXBLOCKSIZE); 2031b5152584SMatthew Ahrens else 2032b5152584SMatthew Ahrens return (SPA_OLD_MAXBLOCKSIZE); 2033b5152584SMatthew Ahrens } 2034