1789Sahrens /* 2789Sahrens * CDDL HEADER START 3789Sahrens * 4789Sahrens * The contents of this file are subject to the terms of the 51484Sek110237 * Common Development and Distribution License (the "License"). 61484Sek110237 * You may not use this file except in compliance with the License. 7789Sahrens * 8789Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9789Sahrens * or http://www.opensolaris.org/os/licensing. 10789Sahrens * See the License for the specific language governing permissions 11789Sahrens * and limitations under the License. 12789Sahrens * 13789Sahrens * When distributing Covered Code, include this CDDL HEADER in each 14789Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15789Sahrens * If applicable, add the following below this CDDL HEADER, with the 16789Sahrens * fields enclosed by brackets "[]" replaced with your own identifying 17789Sahrens * information: Portions Copyright [yyyy] [name of copyright owner] 18789Sahrens * 19789Sahrens * CDDL HEADER END 20789Sahrens */ 21789Sahrens /* 221484Sek110237 * Copyright 2006 Sun Microsystems, Inc. All rights reserved. 23789Sahrens * Use is subject to license terms. 24789Sahrens */ 25789Sahrens 26789Sahrens #pragma ident "%Z%%M% %I% %E% SMI" 27789Sahrens 28789Sahrens /* 29789Sahrens * DVA-based Adjustable Relpacement Cache 30789Sahrens * 311544Seschrock * While much of the theory of operation used here is 321544Seschrock * based on the self-tuning, low overhead replacement cache 33789Sahrens * presented by Megiddo and Modha at FAST 2003, there are some 34789Sahrens * significant differences: 35789Sahrens * 36789Sahrens * 1. The Megiddo and Modha model assumes any page is evictable. 37789Sahrens * Pages in its cache cannot be "locked" into memory. This makes 38789Sahrens * the eviction algorithm simple: evict the last page in the list. 39789Sahrens * This also make the performance characteristics easy to reason 40789Sahrens * about. Our cache is not so simple. At any given moment, some 41789Sahrens * subset of the blocks in the cache are un-evictable because we 42789Sahrens * have handed out a reference to them. Blocks are only evictable 43789Sahrens * when there are no external references active. This makes 44789Sahrens * eviction far more problematic: we choose to evict the evictable 45789Sahrens * blocks that are the "lowest" in the list. 46789Sahrens * 47789Sahrens * There are times when it is not possible to evict the requested 48789Sahrens * space. In these circumstances we are unable to adjust the cache 49789Sahrens * size. To prevent the cache growing unbounded at these times we 50789Sahrens * implement a "cache throttle" that slowes the flow of new data 51789Sahrens * into the cache until we can make space avaiable. 52789Sahrens * 53789Sahrens * 2. The Megiddo and Modha model assumes a fixed cache size. 54789Sahrens * Pages are evicted when the cache is full and there is a cache 55789Sahrens * miss. Our model has a variable sized cache. It grows with 56789Sahrens * high use, but also tries to react to memory preasure from the 57789Sahrens * operating system: decreasing its size when system memory is 58789Sahrens * tight. 59789Sahrens * 60789Sahrens * 3. The Megiddo and Modha model assumes a fixed page size. All 61789Sahrens * elements of the cache are therefor exactly the same size. So 62789Sahrens * when adjusting the cache size following a cache miss, its simply 63789Sahrens * a matter of choosing a single page to evict. In our model, we 64789Sahrens * have variable sized cache blocks (rangeing from 512 bytes to 65789Sahrens * 128K bytes). We therefor choose a set of blocks to evict to make 66789Sahrens * space for a cache miss that approximates as closely as possible 67789Sahrens * the space used by the new block. 68789Sahrens * 69789Sahrens * See also: "ARC: A Self-Tuning, Low Overhead Replacement Cache" 70789Sahrens * by N. Megiddo & D. Modha, FAST 2003 71789Sahrens */ 72789Sahrens 73789Sahrens /* 74789Sahrens * The locking model: 75789Sahrens * 76789Sahrens * A new reference to a cache buffer can be obtained in two 77789Sahrens * ways: 1) via a hash table lookup using the DVA as a key, 78789Sahrens * or 2) via one of the ARC lists. The arc_read() inerface 79789Sahrens * uses method 1, while the internal arc algorithms for 80789Sahrens * adjusting the cache use method 2. We therefor provide two 81789Sahrens * types of locks: 1) the hash table lock array, and 2) the 82789Sahrens * arc list locks. 83789Sahrens * 84789Sahrens * Buffers do not have their own mutexs, rather they rely on the 85789Sahrens * hash table mutexs for the bulk of their protection (i.e. most 86789Sahrens * fields in the arc_buf_hdr_t are protected by these mutexs). 87789Sahrens * 88789Sahrens * buf_hash_find() returns the appropriate mutex (held) when it 89789Sahrens * locates the requested buffer in the hash table. It returns 90789Sahrens * NULL for the mutex if the buffer was not in the table. 91789Sahrens * 92789Sahrens * buf_hash_remove() expects the appropriate hash mutex to be 93789Sahrens * already held before it is invoked. 94789Sahrens * 95789Sahrens * Each arc state also has a mutex which is used to protect the 96789Sahrens * buffer list associated with the state. When attempting to 97789Sahrens * obtain a hash table lock while holding an arc list lock you 98789Sahrens * must use: mutex_tryenter() to avoid deadlock. Also note that 992688Smaybee * the active state mutex must be held before the ghost state mutex. 100789Sahrens * 1011544Seschrock * Arc buffers may have an associated eviction callback function. 1021544Seschrock * This function will be invoked prior to removing the buffer (e.g. 1031544Seschrock * in arc_do_user_evicts()). Note however that the data associated 1041544Seschrock * with the buffer may be evicted prior to the callback. The callback 1051544Seschrock * must be made with *no locks held* (to prevent deadlock). Additionally, 1061544Seschrock * the users of callbacks must ensure that their private data is 1071544Seschrock * protected from simultaneous callbacks from arc_buf_evict() 1081544Seschrock * and arc_do_user_evicts(). 1091544Seschrock * 110789Sahrens * Note that the majority of the performance stats are manipulated 111789Sahrens * with atomic operations. 112789Sahrens */ 113789Sahrens 114789Sahrens #include <sys/spa.h> 115789Sahrens #include <sys/zio.h> 1163093Sahrens #include <sys/zio_checksum.h> 117789Sahrens #include <sys/zfs_context.h> 118789Sahrens #include <sys/arc.h> 119789Sahrens #include <sys/refcount.h> 120789Sahrens #ifdef _KERNEL 121789Sahrens #include <sys/vmsystm.h> 122789Sahrens #include <vm/anon.h> 123789Sahrens #include <sys/fs/swapnode.h> 1241484Sek110237 #include <sys/dnlc.h> 125789Sahrens #endif 126789Sahrens #include <sys/callb.h> 127789Sahrens 128789Sahrens static kmutex_t arc_reclaim_thr_lock; 129789Sahrens static kcondvar_t arc_reclaim_thr_cv; /* used to signal reclaim thr */ 130789Sahrens static uint8_t arc_thread_exit; 131789Sahrens 1321484Sek110237 #define ARC_REDUCE_DNLC_PERCENT 3 1331484Sek110237 uint_t arc_reduce_dnlc_percent = ARC_REDUCE_DNLC_PERCENT; 1341484Sek110237 135789Sahrens typedef enum arc_reclaim_strategy { 136789Sahrens ARC_RECLAIM_AGGR, /* Aggressive reclaim strategy */ 137789Sahrens ARC_RECLAIM_CONS /* Conservative reclaim strategy */ 138789Sahrens } arc_reclaim_strategy_t; 139789Sahrens 140789Sahrens /* number of seconds before growing cache again */ 141789Sahrens static int arc_grow_retry = 60; 142789Sahrens 1432391Smaybee /* 1442638Sperrin * minimum lifespan of a prefetch block in clock ticks 1452638Sperrin * (initialized in arc_init()) 1462391Smaybee */ 1472638Sperrin static int arc_min_prefetch_lifespan; 1482391Smaybee 149789Sahrens static int arc_dead; 150789Sahrens 151789Sahrens /* 1522885Sahrens * These tunables are for performance analysis. 1532885Sahrens */ 1542885Sahrens uint64_t zfs_arc_max; 1552885Sahrens uint64_t zfs_arc_min; 1562885Sahrens 1572885Sahrens /* 158789Sahrens * Note that buffers can be on one of 5 states: 159789Sahrens * ARC_anon - anonymous (discussed below) 1601544Seschrock * ARC_mru - recently used, currently cached 1611544Seschrock * ARC_mru_ghost - recentely used, no longer in cache 1621544Seschrock * ARC_mfu - frequently used, currently cached 1631544Seschrock * ARC_mfu_ghost - frequently used, no longer in cache 164789Sahrens * When there are no active references to the buffer, they 165789Sahrens * are linked onto one of the lists in arc. These are the 166789Sahrens * only buffers that can be evicted or deleted. 167789Sahrens * 168789Sahrens * Anonymous buffers are buffers that are not associated with 169789Sahrens * a DVA. These are buffers that hold dirty block copies 170789Sahrens * before they are written to stable storage. By definition, 1711544Seschrock * they are "ref'd" and are considered part of arc_mru 172789Sahrens * that cannot be freed. Generally, they will aquire a DVA 1731544Seschrock * as they are written and migrate onto the arc_mru list. 174789Sahrens */ 175789Sahrens 176789Sahrens typedef struct arc_state { 177789Sahrens list_t list; /* linked list of evictable buffer in state */ 178789Sahrens uint64_t lsize; /* total size of buffers in the linked list */ 179789Sahrens uint64_t size; /* total size of all buffers in this state */ 180789Sahrens uint64_t hits; 181789Sahrens kmutex_t mtx; 182789Sahrens } arc_state_t; 183789Sahrens 184789Sahrens /* The 5 states: */ 185789Sahrens static arc_state_t ARC_anon; 1861544Seschrock static arc_state_t ARC_mru; 1871544Seschrock static arc_state_t ARC_mru_ghost; 1881544Seschrock static arc_state_t ARC_mfu; 1891544Seschrock static arc_state_t ARC_mfu_ghost; 190789Sahrens 191789Sahrens static struct arc { 192789Sahrens arc_state_t *anon; 1931544Seschrock arc_state_t *mru; 1941544Seschrock arc_state_t *mru_ghost; 1951544Seschrock arc_state_t *mfu; 1961544Seschrock arc_state_t *mfu_ghost; 197789Sahrens uint64_t size; /* Actual total arc size */ 1981544Seschrock uint64_t p; /* Target size (in bytes) of mru */ 199789Sahrens uint64_t c; /* Target size of cache (in bytes) */ 200789Sahrens uint64_t c_min; /* Minimum target cache size */ 201789Sahrens uint64_t c_max; /* Maximum target cache size */ 202789Sahrens 203789Sahrens /* performance stats */ 204789Sahrens uint64_t hits; 205789Sahrens uint64_t misses; 206789Sahrens uint64_t deleted; 2072688Smaybee uint64_t recycle_miss; 2082688Smaybee uint64_t mutex_miss; 2092688Smaybee uint64_t evict_skip; 210789Sahrens uint64_t hash_elements; 211789Sahrens uint64_t hash_elements_max; 212789Sahrens uint64_t hash_collisions; 213789Sahrens uint64_t hash_chains; 214789Sahrens uint32_t hash_chain_max; 215789Sahrens 216789Sahrens int no_grow; /* Don't try to grow cache size */ 217789Sahrens } arc; 218789Sahrens 219789Sahrens static uint64_t arc_tempreserve; 220789Sahrens 221789Sahrens typedef struct arc_callback arc_callback_t; 222789Sahrens 223789Sahrens struct arc_callback { 224789Sahrens arc_done_func_t *acb_done; 225789Sahrens void *acb_private; 226789Sahrens arc_byteswap_func_t *acb_byteswap; 227789Sahrens arc_buf_t *acb_buf; 228789Sahrens zio_t *acb_zio_dummy; 229789Sahrens arc_callback_t *acb_next; 230789Sahrens }; 231789Sahrens 232789Sahrens struct arc_buf_hdr { 233789Sahrens /* immutable */ 234789Sahrens uint64_t b_size; 235789Sahrens spa_t *b_spa; 236789Sahrens 237789Sahrens /* protected by hash lock */ 238789Sahrens dva_t b_dva; 239789Sahrens uint64_t b_birth; 240789Sahrens uint64_t b_cksum0; 241789Sahrens 2423093Sahrens kmutex_t b_freeze_lock; 2433093Sahrens zio_cksum_t *b_freeze_cksum; 2443093Sahrens 245789Sahrens arc_buf_hdr_t *b_hash_next; 246789Sahrens arc_buf_t *b_buf; 247789Sahrens uint32_t b_flags; 2481544Seschrock uint32_t b_datacnt; 249789Sahrens 250789Sahrens kcondvar_t b_cv; 251789Sahrens arc_callback_t *b_acb; 252789Sahrens 253789Sahrens /* protected by arc state mutex */ 254789Sahrens arc_state_t *b_state; 255789Sahrens list_node_t b_arc_node; 256789Sahrens 257789Sahrens /* updated atomically */ 258789Sahrens clock_t b_arc_access; 259789Sahrens 260789Sahrens /* self protecting */ 261789Sahrens refcount_t b_refcnt; 262789Sahrens }; 263789Sahrens 2641544Seschrock static arc_buf_t *arc_eviction_list; 2651544Seschrock static kmutex_t arc_eviction_mtx; 2662887Smaybee static arc_buf_hdr_t arc_eviction_hdr; 2672688Smaybee static void arc_get_data_buf(arc_buf_t *buf); 2682688Smaybee static void arc_access(arc_buf_hdr_t *buf, kmutex_t *hash_lock); 2691544Seschrock 2701544Seschrock #define GHOST_STATE(state) \ 2711544Seschrock ((state) == arc.mru_ghost || (state) == arc.mfu_ghost) 2721544Seschrock 273789Sahrens /* 274789Sahrens * Private ARC flags. These flags are private ARC only flags that will show up 275789Sahrens * in b_flags in the arc_hdr_buf_t. Some flags are publicly declared, and can 276789Sahrens * be passed in as arc_flags in things like arc_read. However, these flags 277789Sahrens * should never be passed and should only be set by ARC code. When adding new 278789Sahrens * public flags, make sure not to smash the private ones. 279789Sahrens */ 280789Sahrens 2811544Seschrock #define ARC_IN_HASH_TABLE (1 << 9) /* this buffer is hashed */ 282789Sahrens #define ARC_IO_IN_PROGRESS (1 << 10) /* I/O in progress for buf */ 283789Sahrens #define ARC_IO_ERROR (1 << 11) /* I/O failed for buf */ 284789Sahrens #define ARC_FREED_IN_READ (1 << 12) /* buf freed while in read */ 2851544Seschrock #define ARC_BUF_AVAILABLE (1 << 13) /* block not in active use */ 2862391Smaybee #define ARC_INDIRECT (1 << 14) /* this is an indirect block */ 287789Sahrens 2881544Seschrock #define HDR_IN_HASH_TABLE(hdr) ((hdr)->b_flags & ARC_IN_HASH_TABLE) 289789Sahrens #define HDR_IO_IN_PROGRESS(hdr) ((hdr)->b_flags & ARC_IO_IN_PROGRESS) 290789Sahrens #define HDR_IO_ERROR(hdr) ((hdr)->b_flags & ARC_IO_ERROR) 291789Sahrens #define HDR_FREED_IN_READ(hdr) ((hdr)->b_flags & ARC_FREED_IN_READ) 2921544Seschrock #define HDR_BUF_AVAILABLE(hdr) ((hdr)->b_flags & ARC_BUF_AVAILABLE) 293789Sahrens 294789Sahrens /* 295789Sahrens * Hash table routines 296789Sahrens */ 297789Sahrens 298789Sahrens #define HT_LOCK_PAD 64 299789Sahrens 300789Sahrens struct ht_lock { 301789Sahrens kmutex_t ht_lock; 302789Sahrens #ifdef _KERNEL 303789Sahrens unsigned char pad[(HT_LOCK_PAD - sizeof (kmutex_t))]; 304789Sahrens #endif 305789Sahrens }; 306789Sahrens 307789Sahrens #define BUF_LOCKS 256 308789Sahrens typedef struct buf_hash_table { 309789Sahrens uint64_t ht_mask; 310789Sahrens arc_buf_hdr_t **ht_table; 311789Sahrens struct ht_lock ht_locks[BUF_LOCKS]; 312789Sahrens } buf_hash_table_t; 313789Sahrens 314789Sahrens static buf_hash_table_t buf_hash_table; 315789Sahrens 316789Sahrens #define BUF_HASH_INDEX(spa, dva, birth) \ 317789Sahrens (buf_hash(spa, dva, birth) & buf_hash_table.ht_mask) 318789Sahrens #define BUF_HASH_LOCK_NTRY(idx) (buf_hash_table.ht_locks[idx & (BUF_LOCKS-1)]) 319789Sahrens #define BUF_HASH_LOCK(idx) (&(BUF_HASH_LOCK_NTRY(idx).ht_lock)) 320789Sahrens #define HDR_LOCK(buf) \ 321789Sahrens (BUF_HASH_LOCK(BUF_HASH_INDEX(buf->b_spa, &buf->b_dva, buf->b_birth))) 322789Sahrens 323789Sahrens uint64_t zfs_crc64_table[256]; 324789Sahrens 325789Sahrens static uint64_t 326789Sahrens buf_hash(spa_t *spa, dva_t *dva, uint64_t birth) 327789Sahrens { 328789Sahrens uintptr_t spav = (uintptr_t)spa; 329789Sahrens uint8_t *vdva = (uint8_t *)dva; 330789Sahrens uint64_t crc = -1ULL; 331789Sahrens int i; 332789Sahrens 333789Sahrens ASSERT(zfs_crc64_table[128] == ZFS_CRC64_POLY); 334789Sahrens 335789Sahrens for (i = 0; i < sizeof (dva_t); i++) 336789Sahrens crc = (crc >> 8) ^ zfs_crc64_table[(crc ^ vdva[i]) & 0xFF]; 337789Sahrens 338789Sahrens crc ^= (spav>>8) ^ birth; 339789Sahrens 340789Sahrens return (crc); 341789Sahrens } 342789Sahrens 343789Sahrens #define BUF_EMPTY(buf) \ 344789Sahrens ((buf)->b_dva.dva_word[0] == 0 && \ 345789Sahrens (buf)->b_dva.dva_word[1] == 0 && \ 346789Sahrens (buf)->b_birth == 0) 347789Sahrens 348789Sahrens #define BUF_EQUAL(spa, dva, birth, buf) \ 349789Sahrens ((buf)->b_dva.dva_word[0] == (dva)->dva_word[0]) && \ 350789Sahrens ((buf)->b_dva.dva_word[1] == (dva)->dva_word[1]) && \ 351789Sahrens ((buf)->b_birth == birth) && ((buf)->b_spa == spa) 352789Sahrens 353789Sahrens static arc_buf_hdr_t * 354789Sahrens buf_hash_find(spa_t *spa, dva_t *dva, uint64_t birth, kmutex_t **lockp) 355789Sahrens { 356789Sahrens uint64_t idx = BUF_HASH_INDEX(spa, dva, birth); 357789Sahrens kmutex_t *hash_lock = BUF_HASH_LOCK(idx); 358789Sahrens arc_buf_hdr_t *buf; 359789Sahrens 360789Sahrens mutex_enter(hash_lock); 361789Sahrens for (buf = buf_hash_table.ht_table[idx]; buf != NULL; 362789Sahrens buf = buf->b_hash_next) { 363789Sahrens if (BUF_EQUAL(spa, dva, birth, buf)) { 364789Sahrens *lockp = hash_lock; 365789Sahrens return (buf); 366789Sahrens } 367789Sahrens } 368789Sahrens mutex_exit(hash_lock); 369789Sahrens *lockp = NULL; 370789Sahrens return (NULL); 371789Sahrens } 372789Sahrens 373789Sahrens /* 374789Sahrens * Insert an entry into the hash table. If there is already an element 375789Sahrens * equal to elem in the hash table, then the already existing element 376789Sahrens * will be returned and the new element will not be inserted. 377789Sahrens * Otherwise returns NULL. 378789Sahrens */ 379789Sahrens static arc_buf_hdr_t * 380789Sahrens buf_hash_insert(arc_buf_hdr_t *buf, kmutex_t **lockp) 381789Sahrens { 382789Sahrens uint64_t idx = BUF_HASH_INDEX(buf->b_spa, &buf->b_dva, buf->b_birth); 383789Sahrens kmutex_t *hash_lock = BUF_HASH_LOCK(idx); 384789Sahrens arc_buf_hdr_t *fbuf; 385789Sahrens uint32_t max, i; 386789Sahrens 3871544Seschrock ASSERT(!HDR_IN_HASH_TABLE(buf)); 388789Sahrens *lockp = hash_lock; 389789Sahrens mutex_enter(hash_lock); 390789Sahrens for (fbuf = buf_hash_table.ht_table[idx], i = 0; fbuf != NULL; 391789Sahrens fbuf = fbuf->b_hash_next, i++) { 392789Sahrens if (BUF_EQUAL(buf->b_spa, &buf->b_dva, buf->b_birth, fbuf)) 393789Sahrens return (fbuf); 394789Sahrens } 395789Sahrens 396789Sahrens buf->b_hash_next = buf_hash_table.ht_table[idx]; 397789Sahrens buf_hash_table.ht_table[idx] = buf; 3981544Seschrock buf->b_flags |= ARC_IN_HASH_TABLE; 399789Sahrens 400789Sahrens /* collect some hash table performance data */ 401789Sahrens if (i > 0) { 402789Sahrens atomic_add_64(&arc.hash_collisions, 1); 403789Sahrens if (i == 1) 404789Sahrens atomic_add_64(&arc.hash_chains, 1); 405789Sahrens } 406789Sahrens while (i > (max = arc.hash_chain_max) && 407789Sahrens max != atomic_cas_32(&arc.hash_chain_max, max, i)) { 408789Sahrens continue; 409789Sahrens } 410789Sahrens atomic_add_64(&arc.hash_elements, 1); 411789Sahrens if (arc.hash_elements > arc.hash_elements_max) 412789Sahrens atomic_add_64(&arc.hash_elements_max, 1); 413789Sahrens 414789Sahrens return (NULL); 415789Sahrens } 416789Sahrens 417789Sahrens static void 418789Sahrens buf_hash_remove(arc_buf_hdr_t *buf) 419789Sahrens { 420789Sahrens arc_buf_hdr_t *fbuf, **bufp; 421789Sahrens uint64_t idx = BUF_HASH_INDEX(buf->b_spa, &buf->b_dva, buf->b_birth); 422789Sahrens 423789Sahrens ASSERT(MUTEX_HELD(BUF_HASH_LOCK(idx))); 4241544Seschrock ASSERT(HDR_IN_HASH_TABLE(buf)); 425789Sahrens 426789Sahrens bufp = &buf_hash_table.ht_table[idx]; 427789Sahrens while ((fbuf = *bufp) != buf) { 428789Sahrens ASSERT(fbuf != NULL); 429789Sahrens bufp = &fbuf->b_hash_next; 430789Sahrens } 431789Sahrens *bufp = buf->b_hash_next; 432789Sahrens buf->b_hash_next = NULL; 4331544Seschrock buf->b_flags &= ~ARC_IN_HASH_TABLE; 434789Sahrens 435789Sahrens /* collect some hash table performance data */ 436789Sahrens atomic_add_64(&arc.hash_elements, -1); 437789Sahrens if (buf_hash_table.ht_table[idx] && 438789Sahrens buf_hash_table.ht_table[idx]->b_hash_next == NULL) 439789Sahrens atomic_add_64(&arc.hash_chains, -1); 440789Sahrens } 441789Sahrens 442789Sahrens /* 443789Sahrens * Global data structures and functions for the buf kmem cache. 444789Sahrens */ 445789Sahrens static kmem_cache_t *hdr_cache; 446789Sahrens static kmem_cache_t *buf_cache; 447789Sahrens 448789Sahrens static void 449789Sahrens buf_fini(void) 450789Sahrens { 451789Sahrens int i; 452789Sahrens 453789Sahrens kmem_free(buf_hash_table.ht_table, 454789Sahrens (buf_hash_table.ht_mask + 1) * sizeof (void *)); 455789Sahrens for (i = 0; i < BUF_LOCKS; i++) 456789Sahrens mutex_destroy(&buf_hash_table.ht_locks[i].ht_lock); 457789Sahrens kmem_cache_destroy(hdr_cache); 458789Sahrens kmem_cache_destroy(buf_cache); 459789Sahrens } 460789Sahrens 461789Sahrens /* 462789Sahrens * Constructor callback - called when the cache is empty 463789Sahrens * and a new buf is requested. 464789Sahrens */ 465789Sahrens /* ARGSUSED */ 466789Sahrens static int 467789Sahrens hdr_cons(void *vbuf, void *unused, int kmflag) 468789Sahrens { 469789Sahrens arc_buf_hdr_t *buf = vbuf; 470789Sahrens 471789Sahrens bzero(buf, sizeof (arc_buf_hdr_t)); 472789Sahrens refcount_create(&buf->b_refcnt); 473789Sahrens cv_init(&buf->b_cv, NULL, CV_DEFAULT, NULL); 474789Sahrens return (0); 475789Sahrens } 476789Sahrens 477789Sahrens /* 478789Sahrens * Destructor callback - called when a cached buf is 479789Sahrens * no longer required. 480789Sahrens */ 481789Sahrens /* ARGSUSED */ 482789Sahrens static void 483789Sahrens hdr_dest(void *vbuf, void *unused) 484789Sahrens { 485789Sahrens arc_buf_hdr_t *buf = vbuf; 486789Sahrens 487789Sahrens refcount_destroy(&buf->b_refcnt); 488789Sahrens cv_destroy(&buf->b_cv); 489789Sahrens } 490789Sahrens 491789Sahrens /* 492789Sahrens * Reclaim callback -- invoked when memory is low. 493789Sahrens */ 494789Sahrens /* ARGSUSED */ 495789Sahrens static void 496789Sahrens hdr_recl(void *unused) 497789Sahrens { 498789Sahrens dprintf("hdr_recl called\n"); 4993158Smaybee /* 5003158Smaybee * umem calls the reclaim func when we destroy the buf cache, 5013158Smaybee * which is after we do arc_fini(). 5023158Smaybee */ 5033158Smaybee if (!arc_dead) 5043158Smaybee cv_signal(&arc_reclaim_thr_cv); 505789Sahrens } 506789Sahrens 507789Sahrens static void 508789Sahrens buf_init(void) 509789Sahrens { 510789Sahrens uint64_t *ct; 5111544Seschrock uint64_t hsize = 1ULL << 12; 512789Sahrens int i, j; 513789Sahrens 514789Sahrens /* 515789Sahrens * The hash table is big enough to fill all of physical memory 5161544Seschrock * with an average 64K block size. The table will take up 5171544Seschrock * totalmem*sizeof(void*)/64K (eg. 128KB/GB with 8-byte pointers). 518789Sahrens */ 5191544Seschrock while (hsize * 65536 < physmem * PAGESIZE) 520789Sahrens hsize <<= 1; 5211544Seschrock retry: 522789Sahrens buf_hash_table.ht_mask = hsize - 1; 5231544Seschrock buf_hash_table.ht_table = 5241544Seschrock kmem_zalloc(hsize * sizeof (void*), KM_NOSLEEP); 5251544Seschrock if (buf_hash_table.ht_table == NULL) { 5261544Seschrock ASSERT(hsize > (1ULL << 8)); 5271544Seschrock hsize >>= 1; 5281544Seschrock goto retry; 5291544Seschrock } 530789Sahrens 531789Sahrens hdr_cache = kmem_cache_create("arc_buf_hdr_t", sizeof (arc_buf_hdr_t), 532789Sahrens 0, hdr_cons, hdr_dest, hdr_recl, NULL, NULL, 0); 533789Sahrens buf_cache = kmem_cache_create("arc_buf_t", sizeof (arc_buf_t), 534789Sahrens 0, NULL, NULL, NULL, NULL, NULL, 0); 535789Sahrens 536789Sahrens for (i = 0; i < 256; i++) 537789Sahrens for (ct = zfs_crc64_table + i, *ct = i, j = 8; j > 0; j--) 538789Sahrens *ct = (*ct >> 1) ^ (-(*ct & 1) & ZFS_CRC64_POLY); 539789Sahrens 540789Sahrens for (i = 0; i < BUF_LOCKS; i++) { 541789Sahrens mutex_init(&buf_hash_table.ht_locks[i].ht_lock, 542789Sahrens NULL, MUTEX_DEFAULT, NULL); 543789Sahrens } 544789Sahrens } 545789Sahrens 546789Sahrens #define ARC_MINTIME (hz>>4) /* 62 ms */ 547789Sahrens 548789Sahrens static void 5493093Sahrens arc_cksum_verify(arc_buf_t *buf) 5503093Sahrens { 5513093Sahrens zio_cksum_t zc; 5523093Sahrens 5533093Sahrens if (!zfs_flags & ZFS_DEBUG_MODIFY) 5543093Sahrens return; 5553093Sahrens 5563093Sahrens mutex_enter(&buf->b_hdr->b_freeze_lock); 557*3265Sahrens if (buf->b_hdr->b_freeze_cksum == NULL || 558*3265Sahrens (buf->b_hdr->b_flags & ARC_IO_ERROR)) { 5593093Sahrens mutex_exit(&buf->b_hdr->b_freeze_lock); 5603093Sahrens return; 5613093Sahrens } 5623093Sahrens fletcher_2_native(buf->b_data, buf->b_hdr->b_size, &zc); 5633093Sahrens if (!ZIO_CHECKSUM_EQUAL(*buf->b_hdr->b_freeze_cksum, zc)) 5643093Sahrens panic("buffer modified while frozen!"); 5653093Sahrens mutex_exit(&buf->b_hdr->b_freeze_lock); 5663093Sahrens } 5673093Sahrens 5683093Sahrens static void 5693093Sahrens arc_cksum_compute(arc_buf_t *buf) 5703093Sahrens { 5713093Sahrens if (!zfs_flags & ZFS_DEBUG_MODIFY) 5723093Sahrens return; 5733093Sahrens 5743093Sahrens mutex_enter(&buf->b_hdr->b_freeze_lock); 5753093Sahrens if (buf->b_hdr->b_freeze_cksum != NULL) { 5763093Sahrens mutex_exit(&buf->b_hdr->b_freeze_lock); 5773093Sahrens return; 5783093Sahrens } 5793093Sahrens buf->b_hdr->b_freeze_cksum = kmem_alloc(sizeof (zio_cksum_t), KM_SLEEP); 5803093Sahrens fletcher_2_native(buf->b_data, buf->b_hdr->b_size, 5813093Sahrens buf->b_hdr->b_freeze_cksum); 5823093Sahrens mutex_exit(&buf->b_hdr->b_freeze_lock); 5833093Sahrens } 5843093Sahrens 5853093Sahrens void 5863093Sahrens arc_buf_thaw(arc_buf_t *buf) 5873093Sahrens { 5883093Sahrens if (!zfs_flags & ZFS_DEBUG_MODIFY) 5893093Sahrens return; 5903093Sahrens 5913093Sahrens if (buf->b_hdr->b_state != arc.anon) 5923093Sahrens panic("modifying non-anon buffer!"); 5933093Sahrens if (buf->b_hdr->b_flags & ARC_IO_IN_PROGRESS) 5943093Sahrens panic("modifying buffer while i/o in progress!"); 5953093Sahrens arc_cksum_verify(buf); 5963093Sahrens mutex_enter(&buf->b_hdr->b_freeze_lock); 5973093Sahrens if (buf->b_hdr->b_freeze_cksum != NULL) { 5983093Sahrens kmem_free(buf->b_hdr->b_freeze_cksum, sizeof (zio_cksum_t)); 5993093Sahrens buf->b_hdr->b_freeze_cksum = NULL; 6003093Sahrens } 6013093Sahrens mutex_exit(&buf->b_hdr->b_freeze_lock); 6023093Sahrens } 6033093Sahrens 6043093Sahrens void 6053093Sahrens arc_buf_freeze(arc_buf_t *buf) 6063093Sahrens { 6073093Sahrens ASSERT(buf->b_hdr->b_freeze_cksum != NULL || 6083093Sahrens buf->b_hdr->b_state == arc.anon); 6093093Sahrens arc_cksum_compute(buf); 6103093Sahrens } 6113093Sahrens 6123093Sahrens static void 613789Sahrens add_reference(arc_buf_hdr_t *ab, kmutex_t *hash_lock, void *tag) 614789Sahrens { 615789Sahrens ASSERT(MUTEX_HELD(hash_lock)); 616789Sahrens 617789Sahrens if ((refcount_add(&ab->b_refcnt, tag) == 1) && 618789Sahrens (ab->b_state != arc.anon)) { 6191544Seschrock int delta = ab->b_size * ab->b_datacnt; 620789Sahrens 621789Sahrens ASSERT(!MUTEX_HELD(&ab->b_state->mtx)); 622789Sahrens mutex_enter(&ab->b_state->mtx); 623789Sahrens ASSERT(list_link_active(&ab->b_arc_node)); 624789Sahrens list_remove(&ab->b_state->list, ab); 6251544Seschrock if (GHOST_STATE(ab->b_state)) { 6261544Seschrock ASSERT3U(ab->b_datacnt, ==, 0); 6271544Seschrock ASSERT3P(ab->b_buf, ==, NULL); 6281544Seschrock delta = ab->b_size; 6291544Seschrock } 6301544Seschrock ASSERT(delta > 0); 6311544Seschrock ASSERT3U(ab->b_state->lsize, >=, delta); 6321544Seschrock atomic_add_64(&ab->b_state->lsize, -delta); 633789Sahrens mutex_exit(&ab->b_state->mtx); 6342391Smaybee /* remove the prefetch flag is we get a reference */ 6352391Smaybee if (ab->b_flags & ARC_PREFETCH) 6362391Smaybee ab->b_flags &= ~ARC_PREFETCH; 637789Sahrens } 638789Sahrens } 639789Sahrens 640789Sahrens static int 641789Sahrens remove_reference(arc_buf_hdr_t *ab, kmutex_t *hash_lock, void *tag) 642789Sahrens { 643789Sahrens int cnt; 644789Sahrens 6451544Seschrock ASSERT(ab->b_state == arc.anon || MUTEX_HELD(hash_lock)); 6461544Seschrock ASSERT(!GHOST_STATE(ab->b_state)); 647789Sahrens 648789Sahrens if (((cnt = refcount_remove(&ab->b_refcnt, tag)) == 0) && 649789Sahrens (ab->b_state != arc.anon)) { 650789Sahrens 651789Sahrens ASSERT(!MUTEX_HELD(&ab->b_state->mtx)); 652789Sahrens mutex_enter(&ab->b_state->mtx); 653789Sahrens ASSERT(!list_link_active(&ab->b_arc_node)); 654789Sahrens list_insert_head(&ab->b_state->list, ab); 6551544Seschrock ASSERT(ab->b_datacnt > 0); 6561544Seschrock atomic_add_64(&ab->b_state->lsize, ab->b_size * ab->b_datacnt); 6571544Seschrock ASSERT3U(ab->b_state->size, >=, ab->b_state->lsize); 658789Sahrens mutex_exit(&ab->b_state->mtx); 659789Sahrens } 660789Sahrens return (cnt); 661789Sahrens } 662789Sahrens 663789Sahrens /* 664789Sahrens * Move the supplied buffer to the indicated state. The mutex 665789Sahrens * for the buffer must be held by the caller. 666789Sahrens */ 667789Sahrens static void 6681544Seschrock arc_change_state(arc_state_t *new_state, arc_buf_hdr_t *ab, kmutex_t *hash_lock) 669789Sahrens { 6701544Seschrock arc_state_t *old_state = ab->b_state; 6711544Seschrock int refcnt = refcount_count(&ab->b_refcnt); 6721544Seschrock int from_delta, to_delta; 673789Sahrens 674789Sahrens ASSERT(MUTEX_HELD(hash_lock)); 6751544Seschrock ASSERT(new_state != old_state); 6761544Seschrock ASSERT(refcnt == 0 || ab->b_datacnt > 0); 6771544Seschrock ASSERT(ab->b_datacnt == 0 || !GHOST_STATE(new_state)); 6781544Seschrock 6791544Seschrock from_delta = to_delta = ab->b_datacnt * ab->b_size; 680789Sahrens 681789Sahrens /* 682789Sahrens * If this buffer is evictable, transfer it from the 683789Sahrens * old state list to the new state list. 684789Sahrens */ 6851544Seschrock if (refcnt == 0) { 6861544Seschrock if (old_state != arc.anon) { 6871544Seschrock int use_mutex = !MUTEX_HELD(&old_state->mtx); 6881544Seschrock 6891544Seschrock if (use_mutex) 6901544Seschrock mutex_enter(&old_state->mtx); 6911544Seschrock 6921544Seschrock ASSERT(list_link_active(&ab->b_arc_node)); 6931544Seschrock list_remove(&old_state->list, ab); 694789Sahrens 6952391Smaybee /* 6962391Smaybee * If prefetching out of the ghost cache, 6972391Smaybee * we will have a non-null datacnt. 6982391Smaybee */ 6992391Smaybee if (GHOST_STATE(old_state) && ab->b_datacnt == 0) { 7002391Smaybee /* ghost elements have a ghost size */ 7011544Seschrock ASSERT(ab->b_buf == NULL); 7021544Seschrock from_delta = ab->b_size; 703789Sahrens } 7041544Seschrock ASSERT3U(old_state->lsize, >=, from_delta); 7051544Seschrock atomic_add_64(&old_state->lsize, -from_delta); 7061544Seschrock 7071544Seschrock if (use_mutex) 7081544Seschrock mutex_exit(&old_state->mtx); 709789Sahrens } 710789Sahrens if (new_state != arc.anon) { 7111544Seschrock int use_mutex = !MUTEX_HELD(&new_state->mtx); 712789Sahrens 7131544Seschrock if (use_mutex) 714789Sahrens mutex_enter(&new_state->mtx); 7151544Seschrock 716789Sahrens list_insert_head(&new_state->list, ab); 7171544Seschrock 7181544Seschrock /* ghost elements have a ghost size */ 7191544Seschrock if (GHOST_STATE(new_state)) { 7201544Seschrock ASSERT(ab->b_datacnt == 0); 7211544Seschrock ASSERT(ab->b_buf == NULL); 7221544Seschrock to_delta = ab->b_size; 7231544Seschrock } 7241544Seschrock atomic_add_64(&new_state->lsize, to_delta); 7251544Seschrock ASSERT3U(new_state->size + to_delta, >=, 7261544Seschrock new_state->lsize); 7271544Seschrock 7281544Seschrock if (use_mutex) 729789Sahrens mutex_exit(&new_state->mtx); 730789Sahrens } 731789Sahrens } 732789Sahrens 733789Sahrens ASSERT(!BUF_EMPTY(ab)); 7341544Seschrock if (new_state == arc.anon && old_state != arc.anon) { 735789Sahrens buf_hash_remove(ab); 736789Sahrens } 737789Sahrens 7381544Seschrock /* adjust state sizes */ 7391544Seschrock if (to_delta) 7401544Seschrock atomic_add_64(&new_state->size, to_delta); 7411544Seschrock if (from_delta) { 7421544Seschrock ASSERT3U(old_state->size, >=, from_delta); 7431544Seschrock atomic_add_64(&old_state->size, -from_delta); 744789Sahrens } 745789Sahrens ab->b_state = new_state; 746789Sahrens } 747789Sahrens 748789Sahrens arc_buf_t * 749789Sahrens arc_buf_alloc(spa_t *spa, int size, void *tag) 750789Sahrens { 751789Sahrens arc_buf_hdr_t *hdr; 752789Sahrens arc_buf_t *buf; 753789Sahrens 754789Sahrens ASSERT3U(size, >, 0); 755789Sahrens hdr = kmem_cache_alloc(hdr_cache, KM_SLEEP); 756789Sahrens ASSERT(BUF_EMPTY(hdr)); 757789Sahrens hdr->b_size = size; 758789Sahrens hdr->b_spa = spa; 759789Sahrens hdr->b_state = arc.anon; 760789Sahrens hdr->b_arc_access = 0; 761789Sahrens buf = kmem_cache_alloc(buf_cache, KM_SLEEP); 762789Sahrens buf->b_hdr = hdr; 7632688Smaybee buf->b_data = NULL; 7641544Seschrock buf->b_efunc = NULL; 7651544Seschrock buf->b_private = NULL; 766789Sahrens buf->b_next = NULL; 767789Sahrens hdr->b_buf = buf; 7682688Smaybee arc_get_data_buf(buf); 7691544Seschrock hdr->b_datacnt = 1; 770789Sahrens hdr->b_flags = 0; 771789Sahrens ASSERT(refcount_is_zero(&hdr->b_refcnt)); 772789Sahrens (void) refcount_add(&hdr->b_refcnt, tag); 773789Sahrens 774789Sahrens return (buf); 775789Sahrens } 776789Sahrens 7772688Smaybee static arc_buf_t * 7782688Smaybee arc_buf_clone(arc_buf_t *from) 7791544Seschrock { 7802688Smaybee arc_buf_t *buf; 7812688Smaybee arc_buf_hdr_t *hdr = from->b_hdr; 7822688Smaybee uint64_t size = hdr->b_size; 7831544Seschrock 7842688Smaybee buf = kmem_cache_alloc(buf_cache, KM_SLEEP); 7852688Smaybee buf->b_hdr = hdr; 7862688Smaybee buf->b_data = NULL; 7872688Smaybee buf->b_efunc = NULL; 7882688Smaybee buf->b_private = NULL; 7892688Smaybee buf->b_next = hdr->b_buf; 7902688Smaybee hdr->b_buf = buf; 7912688Smaybee arc_get_data_buf(buf); 7922688Smaybee bcopy(from->b_data, buf->b_data, size); 7932688Smaybee hdr->b_datacnt += 1; 7942688Smaybee return (buf); 7951544Seschrock } 7961544Seschrock 7971544Seschrock void 7981544Seschrock arc_buf_add_ref(arc_buf_t *buf, void* tag) 7991544Seschrock { 8002887Smaybee arc_buf_hdr_t *hdr; 8011544Seschrock kmutex_t *hash_lock; 8021544Seschrock 8032724Smaybee /* 8042724Smaybee * Check to see if this buffer is currently being evicted via 8052887Smaybee * arc_do_user_evicts(). 8062724Smaybee */ 8072887Smaybee mutex_enter(&arc_eviction_mtx); 8082887Smaybee hdr = buf->b_hdr; 8092887Smaybee if (hdr == NULL) { 8102887Smaybee mutex_exit(&arc_eviction_mtx); 8112724Smaybee return; 8122887Smaybee } 8132887Smaybee hash_lock = HDR_LOCK(hdr); 8142887Smaybee mutex_exit(&arc_eviction_mtx); 8152724Smaybee 8162724Smaybee mutex_enter(hash_lock); 8171544Seschrock if (buf->b_data == NULL) { 8181544Seschrock /* 8191544Seschrock * This buffer is evicted. 8201544Seschrock */ 8212724Smaybee mutex_exit(hash_lock); 8221544Seschrock return; 8231544Seschrock } 8241544Seschrock 8252724Smaybee ASSERT(buf->b_hdr == hdr); 8262724Smaybee ASSERT(hdr->b_state == arc.mru || hdr->b_state == arc.mfu); 8271544Seschrock add_reference(hdr, hash_lock, tag); 8282688Smaybee arc_access(hdr, hash_lock); 8292688Smaybee mutex_exit(hash_lock); 8301544Seschrock atomic_add_64(&arc.hits, 1); 8311544Seschrock } 8321544Seschrock 833789Sahrens static void 8342688Smaybee arc_buf_destroy(arc_buf_t *buf, boolean_t recycle, boolean_t all) 8351544Seschrock { 8361544Seschrock arc_buf_t **bufp; 8371544Seschrock 8381544Seschrock /* free up data associated with the buf */ 8391544Seschrock if (buf->b_data) { 8401544Seschrock arc_state_t *state = buf->b_hdr->b_state; 8411544Seschrock uint64_t size = buf->b_hdr->b_size; 8421544Seschrock 8433093Sahrens arc_cksum_verify(buf); 8442688Smaybee if (!recycle) { 8452688Smaybee zio_buf_free(buf->b_data, size); 8462688Smaybee atomic_add_64(&arc.size, -size); 8472688Smaybee } 8481544Seschrock if (list_link_active(&buf->b_hdr->b_arc_node)) { 8491544Seschrock ASSERT(refcount_is_zero(&buf->b_hdr->b_refcnt)); 8501544Seschrock ASSERT(state != arc.anon); 8511544Seschrock ASSERT3U(state->lsize, >=, size); 8521544Seschrock atomic_add_64(&state->lsize, -size); 8531544Seschrock } 8541544Seschrock ASSERT3U(state->size, >=, size); 8551544Seschrock atomic_add_64(&state->size, -size); 8561544Seschrock buf->b_data = NULL; 8571544Seschrock ASSERT(buf->b_hdr->b_datacnt > 0); 8581544Seschrock buf->b_hdr->b_datacnt -= 1; 8591544Seschrock } 8601544Seschrock 8611544Seschrock /* only remove the buf if requested */ 8621544Seschrock if (!all) 8631544Seschrock return; 8641544Seschrock 8651544Seschrock /* remove the buf from the hdr list */ 8661544Seschrock for (bufp = &buf->b_hdr->b_buf; *bufp != buf; bufp = &(*bufp)->b_next) 8671544Seschrock continue; 8681544Seschrock *bufp = buf->b_next; 8691544Seschrock 8701544Seschrock ASSERT(buf->b_efunc == NULL); 8711544Seschrock 8721544Seschrock /* clean up the buf */ 8731544Seschrock buf->b_hdr = NULL; 8741544Seschrock kmem_cache_free(buf_cache, buf); 8751544Seschrock } 8761544Seschrock 8771544Seschrock static void 8781544Seschrock arc_hdr_destroy(arc_buf_hdr_t *hdr) 879789Sahrens { 880789Sahrens ASSERT(refcount_is_zero(&hdr->b_refcnt)); 881789Sahrens ASSERT3P(hdr->b_state, ==, arc.anon); 8821544Seschrock ASSERT(!HDR_IO_IN_PROGRESS(hdr)); 883789Sahrens 884789Sahrens if (!BUF_EMPTY(hdr)) { 8851544Seschrock ASSERT(!HDR_IN_HASH_TABLE(hdr)); 886789Sahrens bzero(&hdr->b_dva, sizeof (dva_t)); 887789Sahrens hdr->b_birth = 0; 888789Sahrens hdr->b_cksum0 = 0; 889789Sahrens } 8901544Seschrock while (hdr->b_buf) { 891789Sahrens arc_buf_t *buf = hdr->b_buf; 892789Sahrens 8931544Seschrock if (buf->b_efunc) { 8941544Seschrock mutex_enter(&arc_eviction_mtx); 8951544Seschrock ASSERT(buf->b_hdr != NULL); 8962688Smaybee arc_buf_destroy(hdr->b_buf, FALSE, FALSE); 8971544Seschrock hdr->b_buf = buf->b_next; 8982887Smaybee buf->b_hdr = &arc_eviction_hdr; 8991544Seschrock buf->b_next = arc_eviction_list; 9001544Seschrock arc_eviction_list = buf; 9011544Seschrock mutex_exit(&arc_eviction_mtx); 9021544Seschrock } else { 9032688Smaybee arc_buf_destroy(hdr->b_buf, FALSE, TRUE); 9041544Seschrock } 905789Sahrens } 9063093Sahrens if (hdr->b_freeze_cksum != NULL) { 9073093Sahrens kmem_free(hdr->b_freeze_cksum, sizeof (zio_cksum_t)); 9083093Sahrens hdr->b_freeze_cksum = NULL; 9093093Sahrens } 9101544Seschrock 911789Sahrens ASSERT(!list_link_active(&hdr->b_arc_node)); 912789Sahrens ASSERT3P(hdr->b_hash_next, ==, NULL); 913789Sahrens ASSERT3P(hdr->b_acb, ==, NULL); 914789Sahrens kmem_cache_free(hdr_cache, hdr); 915789Sahrens } 916789Sahrens 917789Sahrens void 918789Sahrens arc_buf_free(arc_buf_t *buf, void *tag) 919789Sahrens { 920789Sahrens arc_buf_hdr_t *hdr = buf->b_hdr; 9211544Seschrock int hashed = hdr->b_state != arc.anon; 9221544Seschrock 9231544Seschrock ASSERT(buf->b_efunc == NULL); 9241544Seschrock ASSERT(buf->b_data != NULL); 9251544Seschrock 9261544Seschrock if (hashed) { 9271544Seschrock kmutex_t *hash_lock = HDR_LOCK(hdr); 9281544Seschrock 9291544Seschrock mutex_enter(hash_lock); 9301544Seschrock (void) remove_reference(hdr, hash_lock, tag); 9311544Seschrock if (hdr->b_datacnt > 1) 9322688Smaybee arc_buf_destroy(buf, FALSE, TRUE); 9331544Seschrock else 9341544Seschrock hdr->b_flags |= ARC_BUF_AVAILABLE; 9351544Seschrock mutex_exit(hash_lock); 9361544Seschrock } else if (HDR_IO_IN_PROGRESS(hdr)) { 9371544Seschrock int destroy_hdr; 9381544Seschrock /* 9391544Seschrock * We are in the middle of an async write. Don't destroy 9401544Seschrock * this buffer unless the write completes before we finish 9411544Seschrock * decrementing the reference count. 9421544Seschrock */ 9431544Seschrock mutex_enter(&arc_eviction_mtx); 9441544Seschrock (void) remove_reference(hdr, NULL, tag); 9451544Seschrock ASSERT(refcount_is_zero(&hdr->b_refcnt)); 9461544Seschrock destroy_hdr = !HDR_IO_IN_PROGRESS(hdr); 9471544Seschrock mutex_exit(&arc_eviction_mtx); 9481544Seschrock if (destroy_hdr) 9491544Seschrock arc_hdr_destroy(hdr); 9501544Seschrock } else { 9511544Seschrock if (remove_reference(hdr, NULL, tag) > 0) { 9521544Seschrock ASSERT(HDR_IO_ERROR(hdr)); 9532688Smaybee arc_buf_destroy(buf, FALSE, TRUE); 9541544Seschrock } else { 9551544Seschrock arc_hdr_destroy(hdr); 9561544Seschrock } 9571544Seschrock } 9581544Seschrock } 9591544Seschrock 9601544Seschrock int 9611544Seschrock arc_buf_remove_ref(arc_buf_t *buf, void* tag) 9621544Seschrock { 9631544Seschrock arc_buf_hdr_t *hdr = buf->b_hdr; 964789Sahrens kmutex_t *hash_lock = HDR_LOCK(hdr); 9651544Seschrock int no_callback = (buf->b_efunc == NULL); 9661544Seschrock 9671544Seschrock if (hdr->b_state == arc.anon) { 9681544Seschrock arc_buf_free(buf, tag); 9691544Seschrock return (no_callback); 9701544Seschrock } 971789Sahrens 972789Sahrens mutex_enter(hash_lock); 9731544Seschrock ASSERT(hdr->b_state != arc.anon); 9741544Seschrock ASSERT(buf->b_data != NULL); 975789Sahrens 9761544Seschrock (void) remove_reference(hdr, hash_lock, tag); 9771544Seschrock if (hdr->b_datacnt > 1) { 9781544Seschrock if (no_callback) 9792688Smaybee arc_buf_destroy(buf, FALSE, TRUE); 9801544Seschrock } else if (no_callback) { 9811544Seschrock ASSERT(hdr->b_buf == buf && buf->b_next == NULL); 9821544Seschrock hdr->b_flags |= ARC_BUF_AVAILABLE; 983789Sahrens } 9841544Seschrock ASSERT(no_callback || hdr->b_datacnt > 1 || 9851544Seschrock refcount_is_zero(&hdr->b_refcnt)); 986789Sahrens mutex_exit(hash_lock); 9871544Seschrock return (no_callback); 988789Sahrens } 989789Sahrens 990789Sahrens int 991789Sahrens arc_buf_size(arc_buf_t *buf) 992789Sahrens { 993789Sahrens return (buf->b_hdr->b_size); 994789Sahrens } 995789Sahrens 996789Sahrens /* 997789Sahrens * Evict buffers from list until we've removed the specified number of 998789Sahrens * bytes. Move the removed buffers to the appropriate evict state. 9992688Smaybee * If the recycle flag is set, then attempt to "recycle" a buffer: 10002688Smaybee * - look for a buffer to evict that is `bytes' long. 10012688Smaybee * - return the data block from this buffer rather than freeing it. 10022688Smaybee * This flag is used by callers that are trying to make space for a 10032688Smaybee * new buffer in a full arc cache. 1004789Sahrens */ 10052688Smaybee static void * 10062688Smaybee arc_evict(arc_state_t *state, int64_t bytes, boolean_t recycle) 1007789Sahrens { 1008789Sahrens arc_state_t *evicted_state; 10092688Smaybee uint64_t bytes_evicted = 0, skipped = 0, missed = 0; 10102918Smaybee arc_buf_hdr_t *ab, *ab_prev = NULL; 1011789Sahrens kmutex_t *hash_lock; 10122688Smaybee boolean_t have_lock; 10132918Smaybee void *stolen = NULL; 1014789Sahrens 10151544Seschrock ASSERT(state == arc.mru || state == arc.mfu); 1016789Sahrens 10171544Seschrock evicted_state = (state == arc.mru) ? arc.mru_ghost : arc.mfu_ghost; 1018789Sahrens 1019789Sahrens mutex_enter(&state->mtx); 1020789Sahrens mutex_enter(&evicted_state->mtx); 1021789Sahrens 1022789Sahrens for (ab = list_tail(&state->list); ab; ab = ab_prev) { 1023789Sahrens ab_prev = list_prev(&state->list, ab); 10242391Smaybee /* prefetch buffers have a minimum lifespan */ 10252688Smaybee if (HDR_IO_IN_PROGRESS(ab) || 10262688Smaybee (ab->b_flags & (ARC_PREFETCH|ARC_INDIRECT) && 10272688Smaybee lbolt - ab->b_arc_access < arc_min_prefetch_lifespan)) { 10282391Smaybee skipped++; 10292391Smaybee continue; 10302391Smaybee } 10312918Smaybee /* "lookahead" for better eviction candidate */ 10322918Smaybee if (recycle && ab->b_size != bytes && 10332918Smaybee ab_prev && ab_prev->b_size == bytes) 10342688Smaybee continue; 1035789Sahrens hash_lock = HDR_LOCK(ab); 10362688Smaybee have_lock = MUTEX_HELD(hash_lock); 10372688Smaybee if (have_lock || mutex_tryenter(hash_lock)) { 1038789Sahrens ASSERT3U(refcount_count(&ab->b_refcnt), ==, 0); 10391544Seschrock ASSERT(ab->b_datacnt > 0); 10401544Seschrock while (ab->b_buf) { 10411544Seschrock arc_buf_t *buf = ab->b_buf; 10422688Smaybee if (buf->b_data) { 10431544Seschrock bytes_evicted += ab->b_size; 10442918Smaybee if (recycle && ab->b_size == bytes) { 10452918Smaybee stolen = buf->b_data; 10462918Smaybee recycle = FALSE; 10472918Smaybee } 10482688Smaybee } 10491544Seschrock if (buf->b_efunc) { 10501544Seschrock mutex_enter(&arc_eviction_mtx); 10512918Smaybee arc_buf_destroy(buf, 10522918Smaybee buf->b_data == stolen, FALSE); 10531544Seschrock ab->b_buf = buf->b_next; 10542887Smaybee buf->b_hdr = &arc_eviction_hdr; 10551544Seschrock buf->b_next = arc_eviction_list; 10561544Seschrock arc_eviction_list = buf; 10571544Seschrock mutex_exit(&arc_eviction_mtx); 10581544Seschrock } else { 10592918Smaybee arc_buf_destroy(buf, 10602918Smaybee buf->b_data == stolen, TRUE); 10611544Seschrock } 10621544Seschrock } 10631544Seschrock ASSERT(ab->b_datacnt == 0); 1064789Sahrens arc_change_state(evicted_state, ab, hash_lock); 10651544Seschrock ASSERT(HDR_IN_HASH_TABLE(ab)); 10661544Seschrock ab->b_flags = ARC_IN_HASH_TABLE; 1067789Sahrens DTRACE_PROBE1(arc__evict, arc_buf_hdr_t *, ab); 10682688Smaybee if (!have_lock) 10692688Smaybee mutex_exit(hash_lock); 10701544Seschrock if (bytes >= 0 && bytes_evicted >= bytes) 1071789Sahrens break; 1072789Sahrens } else { 10732688Smaybee missed += 1; 1074789Sahrens } 1075789Sahrens } 1076789Sahrens mutex_exit(&evicted_state->mtx); 1077789Sahrens mutex_exit(&state->mtx); 1078789Sahrens 1079789Sahrens if (bytes_evicted < bytes) 1080789Sahrens dprintf("only evicted %lld bytes from %x", 1081789Sahrens (longlong_t)bytes_evicted, state); 1082789Sahrens 10832688Smaybee if (skipped) 10842688Smaybee atomic_add_64(&arc.evict_skip, skipped); 10852688Smaybee if (missed) 10862688Smaybee atomic_add_64(&arc.mutex_miss, missed); 10872918Smaybee return (stolen); 1088789Sahrens } 1089789Sahrens 1090789Sahrens /* 1091789Sahrens * Remove buffers from list until we've removed the specified number of 1092789Sahrens * bytes. Destroy the buffers that are removed. 1093789Sahrens */ 1094789Sahrens static void 10951544Seschrock arc_evict_ghost(arc_state_t *state, int64_t bytes) 1096789Sahrens { 1097789Sahrens arc_buf_hdr_t *ab, *ab_prev; 1098789Sahrens kmutex_t *hash_lock; 10991544Seschrock uint64_t bytes_deleted = 0; 11001544Seschrock uint_t bufs_skipped = 0; 1101789Sahrens 11021544Seschrock ASSERT(GHOST_STATE(state)); 1103789Sahrens top: 1104789Sahrens mutex_enter(&state->mtx); 1105789Sahrens for (ab = list_tail(&state->list); ab; ab = ab_prev) { 1106789Sahrens ab_prev = list_prev(&state->list, ab); 1107789Sahrens hash_lock = HDR_LOCK(ab); 1108789Sahrens if (mutex_tryenter(hash_lock)) { 11092391Smaybee ASSERT(!HDR_IO_IN_PROGRESS(ab)); 11101544Seschrock ASSERT(ab->b_buf == NULL); 1111789Sahrens arc_change_state(arc.anon, ab, hash_lock); 1112789Sahrens mutex_exit(hash_lock); 1113789Sahrens atomic_add_64(&arc.deleted, 1); 11141544Seschrock bytes_deleted += ab->b_size; 11151544Seschrock arc_hdr_destroy(ab); 1116789Sahrens DTRACE_PROBE1(arc__delete, arc_buf_hdr_t *, ab); 1117789Sahrens if (bytes >= 0 && bytes_deleted >= bytes) 1118789Sahrens break; 1119789Sahrens } else { 1120789Sahrens if (bytes < 0) { 1121789Sahrens mutex_exit(&state->mtx); 1122789Sahrens mutex_enter(hash_lock); 1123789Sahrens mutex_exit(hash_lock); 1124789Sahrens goto top; 1125789Sahrens } 1126789Sahrens bufs_skipped += 1; 1127789Sahrens } 1128789Sahrens } 1129789Sahrens mutex_exit(&state->mtx); 1130789Sahrens 1131789Sahrens if (bufs_skipped) { 11322688Smaybee atomic_add_64(&arc.mutex_miss, bufs_skipped); 1133789Sahrens ASSERT(bytes >= 0); 1134789Sahrens } 1135789Sahrens 1136789Sahrens if (bytes_deleted < bytes) 1137789Sahrens dprintf("only deleted %lld bytes from %p", 1138789Sahrens (longlong_t)bytes_deleted, state); 1139789Sahrens } 1140789Sahrens 1141789Sahrens static void 1142789Sahrens arc_adjust(void) 1143789Sahrens { 1144789Sahrens int64_t top_sz, mru_over, arc_over; 1145789Sahrens 11461544Seschrock top_sz = arc.anon->size + arc.mru->size; 1147789Sahrens 11481544Seschrock if (top_sz > arc.p && arc.mru->lsize > 0) { 11491544Seschrock int64_t toevict = MIN(arc.mru->lsize, top_sz-arc.p); 11502688Smaybee (void) arc_evict(arc.mru, toevict, FALSE); 11511544Seschrock top_sz = arc.anon->size + arc.mru->size; 1152789Sahrens } 1153789Sahrens 11541544Seschrock mru_over = top_sz + arc.mru_ghost->size - arc.c; 1155789Sahrens 1156789Sahrens if (mru_over > 0) { 11571544Seschrock if (arc.mru_ghost->lsize > 0) { 11581544Seschrock int64_t todelete = MIN(arc.mru_ghost->lsize, mru_over); 11591544Seschrock arc_evict_ghost(arc.mru_ghost, todelete); 1160789Sahrens } 1161789Sahrens } 1162789Sahrens 1163789Sahrens if ((arc_over = arc.size - arc.c) > 0) { 11641544Seschrock int64_t tbl_over; 1165789Sahrens 11661544Seschrock if (arc.mfu->lsize > 0) { 11671544Seschrock int64_t toevict = MIN(arc.mfu->lsize, arc_over); 11682688Smaybee (void) arc_evict(arc.mfu, toevict, FALSE); 1169789Sahrens } 1170789Sahrens 11711544Seschrock tbl_over = arc.size + arc.mru_ghost->lsize + 11721544Seschrock arc.mfu_ghost->lsize - arc.c*2; 1173789Sahrens 11741544Seschrock if (tbl_over > 0 && arc.mfu_ghost->lsize > 0) { 11751544Seschrock int64_t todelete = MIN(arc.mfu_ghost->lsize, tbl_over); 11761544Seschrock arc_evict_ghost(arc.mfu_ghost, todelete); 1177789Sahrens } 1178789Sahrens } 1179789Sahrens } 1180789Sahrens 11811544Seschrock static void 11821544Seschrock arc_do_user_evicts(void) 11831544Seschrock { 11841544Seschrock mutex_enter(&arc_eviction_mtx); 11851544Seschrock while (arc_eviction_list != NULL) { 11861544Seschrock arc_buf_t *buf = arc_eviction_list; 11871544Seschrock arc_eviction_list = buf->b_next; 11881544Seschrock buf->b_hdr = NULL; 11891544Seschrock mutex_exit(&arc_eviction_mtx); 11901544Seschrock 11911819Smaybee if (buf->b_efunc != NULL) 11921819Smaybee VERIFY(buf->b_efunc(buf) == 0); 11931544Seschrock 11941544Seschrock buf->b_efunc = NULL; 11951544Seschrock buf->b_private = NULL; 11961544Seschrock kmem_cache_free(buf_cache, buf); 11971544Seschrock mutex_enter(&arc_eviction_mtx); 11981544Seschrock } 11991544Seschrock mutex_exit(&arc_eviction_mtx); 12001544Seschrock } 12011544Seschrock 1202789Sahrens /* 1203789Sahrens * Flush all *evictable* data from the cache. 1204789Sahrens * NOTE: this will not touch "active" (i.e. referenced) data. 1205789Sahrens */ 1206789Sahrens void 1207789Sahrens arc_flush(void) 1208789Sahrens { 12092688Smaybee while (list_head(&arc.mru->list)) 12102688Smaybee (void) arc_evict(arc.mru, -1, FALSE); 12112688Smaybee while (list_head(&arc.mfu->list)) 12122688Smaybee (void) arc_evict(arc.mfu, -1, FALSE); 1213789Sahrens 12141544Seschrock arc_evict_ghost(arc.mru_ghost, -1); 12151544Seschrock arc_evict_ghost(arc.mfu_ghost, -1); 12161544Seschrock 12171544Seschrock mutex_enter(&arc_reclaim_thr_lock); 12181544Seschrock arc_do_user_evicts(); 12191544Seschrock mutex_exit(&arc_reclaim_thr_lock); 12201544Seschrock ASSERT(arc_eviction_list == NULL); 1221789Sahrens } 1222789Sahrens 12233158Smaybee int arc_shrink_shift = 5; /* log2(fraction of arc to reclaim) */ 12242391Smaybee 1225789Sahrens void 12263158Smaybee arc_shrink(void) 1227789Sahrens { 12283158Smaybee if (arc.c > arc.c_min) { 12293158Smaybee uint64_t to_free; 1230789Sahrens 12312048Sstans #ifdef _KERNEL 12323158Smaybee to_free = MAX(arc.c >> arc_shrink_shift, ptob(needfree)); 12332048Sstans #else 12343158Smaybee to_free = arc.c >> arc_shrink_shift; 12352048Sstans #endif 12363158Smaybee if (arc.c > arc.c_min + to_free) 12373158Smaybee atomic_add_64(&arc.c, -to_free); 12383158Smaybee else 12393158Smaybee arc.c = arc.c_min; 12402048Sstans 12413158Smaybee atomic_add_64(&arc.p, -(arc.p >> arc_shrink_shift)); 12423158Smaybee if (arc.c > arc.size) 12433158Smaybee arc.c = MAX(arc.size, arc.c_min); 12443158Smaybee if (arc.p > arc.c) 12453158Smaybee arc.p = (arc.c >> 1); 12463158Smaybee ASSERT(arc.c >= arc.c_min); 12473158Smaybee ASSERT((int64_t)arc.p >= 0); 12483158Smaybee } 1249789Sahrens 12503158Smaybee if (arc.size > arc.c) 12513158Smaybee arc_adjust(); 1252789Sahrens } 1253789Sahrens 1254789Sahrens static int 1255789Sahrens arc_reclaim_needed(void) 1256789Sahrens { 1257789Sahrens uint64_t extra; 1258789Sahrens 1259789Sahrens #ifdef _KERNEL 12602048Sstans 12612048Sstans if (needfree) 12622048Sstans return (1); 12632048Sstans 1264789Sahrens /* 1265789Sahrens * take 'desfree' extra pages, so we reclaim sooner, rather than later 1266789Sahrens */ 1267789Sahrens extra = desfree; 1268789Sahrens 1269789Sahrens /* 1270789Sahrens * check that we're out of range of the pageout scanner. It starts to 1271789Sahrens * schedule paging if freemem is less than lotsfree and needfree. 1272789Sahrens * lotsfree is the high-water mark for pageout, and needfree is the 1273789Sahrens * number of needed free pages. We add extra pages here to make sure 1274789Sahrens * the scanner doesn't start up while we're freeing memory. 1275789Sahrens */ 1276789Sahrens if (freemem < lotsfree + needfree + extra) 1277789Sahrens return (1); 1278789Sahrens 1279789Sahrens /* 1280789Sahrens * check to make sure that swapfs has enough space so that anon 1281789Sahrens * reservations can still succeeed. anon_resvmem() checks that the 1282789Sahrens * availrmem is greater than swapfs_minfree, and the number of reserved 1283789Sahrens * swap pages. We also add a bit of extra here just to prevent 1284789Sahrens * circumstances from getting really dire. 1285789Sahrens */ 1286789Sahrens if (availrmem < swapfs_minfree + swapfs_reserve + extra) 1287789Sahrens return (1); 1288789Sahrens 12891936Smaybee #if defined(__i386) 1290789Sahrens /* 1291789Sahrens * If we're on an i386 platform, it's possible that we'll exhaust the 1292789Sahrens * kernel heap space before we ever run out of available physical 1293789Sahrens * memory. Most checks of the size of the heap_area compare against 1294789Sahrens * tune.t_minarmem, which is the minimum available real memory that we 1295789Sahrens * can have in the system. However, this is generally fixed at 25 pages 1296789Sahrens * which is so low that it's useless. In this comparison, we seek to 1297789Sahrens * calculate the total heap-size, and reclaim if more than 3/4ths of the 1298789Sahrens * heap is allocated. (Or, in the caclulation, if less than 1/4th is 1299789Sahrens * free) 1300789Sahrens */ 1301789Sahrens if (btop(vmem_size(heap_arena, VMEM_FREE)) < 1302789Sahrens (btop(vmem_size(heap_arena, VMEM_FREE | VMEM_ALLOC)) >> 2)) 1303789Sahrens return (1); 1304789Sahrens #endif 1305789Sahrens 1306789Sahrens #else 1307789Sahrens if (spa_get_random(100) == 0) 1308789Sahrens return (1); 1309789Sahrens #endif 1310789Sahrens return (0); 1311789Sahrens } 1312789Sahrens 1313789Sahrens static void 1314789Sahrens arc_kmem_reap_now(arc_reclaim_strategy_t strat) 1315789Sahrens { 1316789Sahrens size_t i; 1317789Sahrens kmem_cache_t *prev_cache = NULL; 1318789Sahrens extern kmem_cache_t *zio_buf_cache[]; 1319789Sahrens 13201484Sek110237 #ifdef _KERNEL 13211484Sek110237 /* 13221484Sek110237 * First purge some DNLC entries, in case the DNLC is using 13231484Sek110237 * up too much memory. 13241484Sek110237 */ 13251505Sek110237 dnlc_reduce_cache((void *)(uintptr_t)arc_reduce_dnlc_percent); 13261936Smaybee 13271936Smaybee #if defined(__i386) 13281936Smaybee /* 13291936Smaybee * Reclaim unused memory from all kmem caches. 13301936Smaybee */ 13311936Smaybee kmem_reap(); 13321936Smaybee #endif 13331484Sek110237 #endif 13341484Sek110237 1335789Sahrens /* 13361544Seschrock * An agressive reclamation will shrink the cache size as well as 13371544Seschrock * reap free buffers from the arc kmem caches. 1338789Sahrens */ 1339789Sahrens if (strat == ARC_RECLAIM_AGGR) 13403158Smaybee arc_shrink(); 1341789Sahrens 1342789Sahrens for (i = 0; i < SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT; i++) { 1343789Sahrens if (zio_buf_cache[i] != prev_cache) { 1344789Sahrens prev_cache = zio_buf_cache[i]; 1345789Sahrens kmem_cache_reap_now(zio_buf_cache[i]); 1346789Sahrens } 1347789Sahrens } 13481544Seschrock kmem_cache_reap_now(buf_cache); 13491544Seschrock kmem_cache_reap_now(hdr_cache); 1350789Sahrens } 1351789Sahrens 1352789Sahrens static void 1353789Sahrens arc_reclaim_thread(void) 1354789Sahrens { 1355789Sahrens clock_t growtime = 0; 1356789Sahrens arc_reclaim_strategy_t last_reclaim = ARC_RECLAIM_CONS; 1357789Sahrens callb_cpr_t cpr; 1358789Sahrens 1359789Sahrens CALLB_CPR_INIT(&cpr, &arc_reclaim_thr_lock, callb_generic_cpr, FTAG); 1360789Sahrens 1361789Sahrens mutex_enter(&arc_reclaim_thr_lock); 1362789Sahrens while (arc_thread_exit == 0) { 1363789Sahrens if (arc_reclaim_needed()) { 1364789Sahrens 1365789Sahrens if (arc.no_grow) { 1366789Sahrens if (last_reclaim == ARC_RECLAIM_CONS) { 1367789Sahrens last_reclaim = ARC_RECLAIM_AGGR; 1368789Sahrens } else { 1369789Sahrens last_reclaim = ARC_RECLAIM_CONS; 1370789Sahrens } 1371789Sahrens } else { 1372789Sahrens arc.no_grow = TRUE; 1373789Sahrens last_reclaim = ARC_RECLAIM_AGGR; 1374789Sahrens membar_producer(); 1375789Sahrens } 1376789Sahrens 1377789Sahrens /* reset the growth delay for every reclaim */ 1378789Sahrens growtime = lbolt + (arc_grow_retry * hz); 13792856Snd150628 ASSERT(growtime > 0); 1380789Sahrens 1381789Sahrens arc_kmem_reap_now(last_reclaim); 1382789Sahrens 1383789Sahrens } else if ((growtime > 0) && ((growtime - lbolt) <= 0)) { 1384789Sahrens arc.no_grow = FALSE; 1385789Sahrens } 1386789Sahrens 13871544Seschrock if (arc_eviction_list != NULL) 13881544Seschrock arc_do_user_evicts(); 13891544Seschrock 1390789Sahrens /* block until needed, or one second, whichever is shorter */ 1391789Sahrens CALLB_CPR_SAFE_BEGIN(&cpr); 1392789Sahrens (void) cv_timedwait(&arc_reclaim_thr_cv, 1393789Sahrens &arc_reclaim_thr_lock, (lbolt + hz)); 1394789Sahrens CALLB_CPR_SAFE_END(&cpr, &arc_reclaim_thr_lock); 1395789Sahrens } 1396789Sahrens 1397789Sahrens arc_thread_exit = 0; 1398789Sahrens cv_broadcast(&arc_reclaim_thr_cv); 1399789Sahrens CALLB_CPR_EXIT(&cpr); /* drops arc_reclaim_thr_lock */ 1400789Sahrens thread_exit(); 1401789Sahrens } 1402789Sahrens 14031544Seschrock /* 14041544Seschrock * Adapt arc info given the number of bytes we are trying to add and 14051544Seschrock * the state that we are comming from. This function is only called 14061544Seschrock * when we are adding new content to the cache. 14071544Seschrock */ 1408789Sahrens static void 14091544Seschrock arc_adapt(int bytes, arc_state_t *state) 1410789Sahrens { 14111544Seschrock int mult; 14121544Seschrock 14131544Seschrock ASSERT(bytes > 0); 1414789Sahrens /* 14151544Seschrock * Adapt the target size of the MRU list: 14161544Seschrock * - if we just hit in the MRU ghost list, then increase 14171544Seschrock * the target size of the MRU list. 14181544Seschrock * - if we just hit in the MFU ghost list, then increase 14191544Seschrock * the target size of the MFU list by decreasing the 14201544Seschrock * target size of the MRU list. 1421789Sahrens */ 14221544Seschrock if (state == arc.mru_ghost) { 14231544Seschrock mult = ((arc.mru_ghost->size >= arc.mfu_ghost->size) ? 14241544Seschrock 1 : (arc.mfu_ghost->size/arc.mru_ghost->size)); 14251544Seschrock 14261544Seschrock arc.p = MIN(arc.c, arc.p + bytes * mult); 14271544Seschrock } else if (state == arc.mfu_ghost) { 14281544Seschrock mult = ((arc.mfu_ghost->size >= arc.mru_ghost->size) ? 14291544Seschrock 1 : (arc.mru_ghost->size/arc.mfu_ghost->size)); 14301544Seschrock 14311544Seschrock arc.p = MAX(0, (int64_t)arc.p - bytes * mult); 14321544Seschrock } 14331544Seschrock ASSERT((int64_t)arc.p >= 0); 1434789Sahrens 1435789Sahrens if (arc_reclaim_needed()) { 1436789Sahrens cv_signal(&arc_reclaim_thr_cv); 1437789Sahrens return; 1438789Sahrens } 1439789Sahrens 1440789Sahrens if (arc.no_grow) 1441789Sahrens return; 1442789Sahrens 14431544Seschrock if (arc.c >= arc.c_max) 14441544Seschrock return; 14451544Seschrock 1446789Sahrens /* 14471544Seschrock * If we're within (2 * maxblocksize) bytes of the target 14481544Seschrock * cache size, increment the target cache size 1449789Sahrens */ 14501544Seschrock if (arc.size > arc.c - (2ULL << SPA_MAXBLOCKSHIFT)) { 14511544Seschrock atomic_add_64(&arc.c, (int64_t)bytes); 1452789Sahrens if (arc.c > arc.c_max) 1453789Sahrens arc.c = arc.c_max; 14541544Seschrock else if (state == arc.anon) 14551544Seschrock atomic_add_64(&arc.p, (int64_t)bytes); 14561544Seschrock if (arc.p > arc.c) 14571544Seschrock arc.p = arc.c; 1458789Sahrens } 14591544Seschrock ASSERT((int64_t)arc.p >= 0); 1460789Sahrens } 1461789Sahrens 1462789Sahrens /* 14631544Seschrock * Check if the cache has reached its limits and eviction is required 14641544Seschrock * prior to insert. 1465789Sahrens */ 1466789Sahrens static int 1467789Sahrens arc_evict_needed() 1468789Sahrens { 1469789Sahrens if (arc_reclaim_needed()) 1470789Sahrens return (1); 1471789Sahrens 14721544Seschrock return (arc.size > arc.c); 1473789Sahrens } 1474789Sahrens 1475789Sahrens /* 14762688Smaybee * The buffer, supplied as the first argument, needs a data block. 14772688Smaybee * So, if we are at cache max, determine which cache should be victimized. 14782688Smaybee * We have the following cases: 1479789Sahrens * 14801544Seschrock * 1. Insert for MRU, p > sizeof(arc.anon + arc.mru) -> 1481789Sahrens * In this situation if we're out of space, but the resident size of the MFU is 1482789Sahrens * under the limit, victimize the MFU cache to satisfy this insertion request. 1483789Sahrens * 14841544Seschrock * 2. Insert for MRU, p <= sizeof(arc.anon + arc.mru) -> 1485789Sahrens * Here, we've used up all of the available space for the MRU, so we need to 1486789Sahrens * evict from our own cache instead. Evict from the set of resident MRU 1487789Sahrens * entries. 1488789Sahrens * 14891544Seschrock * 3. Insert for MFU (c - p) > sizeof(arc.mfu) -> 1490789Sahrens * c minus p represents the MFU space in the cache, since p is the size of the 1491789Sahrens * cache that is dedicated to the MRU. In this situation there's still space on 1492789Sahrens * the MFU side, so the MRU side needs to be victimized. 1493789Sahrens * 14941544Seschrock * 4. Insert for MFU (c - p) < sizeof(arc.mfu) -> 1495789Sahrens * MFU's resident set is consuming more space than it has been allotted. In 1496789Sahrens * this situation, we must victimize our own cache, the MFU, for this insertion. 1497789Sahrens */ 1498789Sahrens static void 14992688Smaybee arc_get_data_buf(arc_buf_t *buf) 1500789Sahrens { 15012688Smaybee arc_state_t *state = buf->b_hdr->b_state; 15022688Smaybee uint64_t size = buf->b_hdr->b_size; 15032688Smaybee 15042688Smaybee arc_adapt(size, state); 1505789Sahrens 15062688Smaybee /* 15072688Smaybee * We have not yet reached cache maximum size, 15082688Smaybee * just allocate a new buffer. 15092688Smaybee */ 15102688Smaybee if (!arc_evict_needed()) { 15112688Smaybee buf->b_data = zio_buf_alloc(size); 15122688Smaybee atomic_add_64(&arc.size, size); 15132688Smaybee goto out; 15142688Smaybee } 15152688Smaybee 15162688Smaybee /* 15172688Smaybee * If we are prefetching from the mfu ghost list, this buffer 15182688Smaybee * will end up on the mru list; so steal space from there. 15192688Smaybee */ 15202688Smaybee if (state == arc.mfu_ghost) 15212688Smaybee state = buf->b_hdr->b_flags & ARC_PREFETCH ? arc.mru : arc.mfu; 15222688Smaybee else if (state == arc.mru_ghost) 15232688Smaybee state = arc.mru; 1524789Sahrens 15252688Smaybee if (state == arc.mru || state == arc.anon) { 15262688Smaybee uint64_t mru_used = arc.anon->size + arc.mru->size; 15272688Smaybee state = (arc.p > mru_used) ? arc.mfu : arc.mru; 1528789Sahrens } else { 15292688Smaybee /* MFU cases */ 15302688Smaybee uint64_t mfu_space = arc.c - arc.p; 15312688Smaybee state = (mfu_space > arc.mfu->size) ? arc.mru : arc.mfu; 15322688Smaybee } 15332688Smaybee if ((buf->b_data = arc_evict(state, size, TRUE)) == NULL) { 15342688Smaybee buf->b_data = zio_buf_alloc(size); 15352688Smaybee atomic_add_64(&arc.size, size); 15362688Smaybee atomic_add_64(&arc.recycle_miss, 1); 15372688Smaybee } 15382688Smaybee ASSERT(buf->b_data != NULL); 15392688Smaybee out: 15402688Smaybee /* 15412688Smaybee * Update the state size. Note that ghost states have a 15422688Smaybee * "ghost size" and so don't need to be updated. 15432688Smaybee */ 15442688Smaybee if (!GHOST_STATE(buf->b_hdr->b_state)) { 15452688Smaybee arc_buf_hdr_t *hdr = buf->b_hdr; 15462688Smaybee 15472688Smaybee atomic_add_64(&hdr->b_state->size, size); 15482688Smaybee if (list_link_active(&hdr->b_arc_node)) { 15492688Smaybee ASSERT(refcount_is_zero(&hdr->b_refcnt)); 15502688Smaybee atomic_add_64(&hdr->b_state->lsize, size); 1551789Sahrens } 1552789Sahrens } 1553789Sahrens } 1554789Sahrens 1555789Sahrens /* 1556789Sahrens * This routine is called whenever a buffer is accessed. 15571544Seschrock * NOTE: the hash lock is dropped in this function. 1558789Sahrens */ 1559789Sahrens static void 15602688Smaybee arc_access(arc_buf_hdr_t *buf, kmutex_t *hash_lock) 1561789Sahrens { 1562789Sahrens ASSERT(MUTEX_HELD(hash_lock)); 1563789Sahrens 1564789Sahrens if (buf->b_state == arc.anon) { 1565789Sahrens /* 1566789Sahrens * This buffer is not in the cache, and does not 1567789Sahrens * appear in our "ghost" list. Add the new buffer 1568789Sahrens * to the MRU state. 1569789Sahrens */ 1570789Sahrens 1571789Sahrens ASSERT(buf->b_arc_access == 0); 1572789Sahrens buf->b_arc_access = lbolt; 15731544Seschrock DTRACE_PROBE1(new_state__mru, arc_buf_hdr_t *, buf); 15741544Seschrock arc_change_state(arc.mru, buf, hash_lock); 1575789Sahrens 15761544Seschrock } else if (buf->b_state == arc.mru) { 1577789Sahrens /* 15782391Smaybee * If this buffer is here because of a prefetch, then either: 15792391Smaybee * - clear the flag if this is a "referencing" read 15802391Smaybee * (any subsequent access will bump this into the MFU state). 15812391Smaybee * or 15822391Smaybee * - move the buffer to the head of the list if this is 15832391Smaybee * another prefetch (to make it less likely to be evicted). 1584789Sahrens */ 1585789Sahrens if ((buf->b_flags & ARC_PREFETCH) != 0) { 15862391Smaybee if (refcount_count(&buf->b_refcnt) == 0) { 15872391Smaybee ASSERT(list_link_active(&buf->b_arc_node)); 15882391Smaybee mutex_enter(&arc.mru->mtx); 15892391Smaybee list_remove(&arc.mru->list, buf); 15902391Smaybee list_insert_head(&arc.mru->list, buf); 15912391Smaybee mutex_exit(&arc.mru->mtx); 15922391Smaybee } else { 15932391Smaybee buf->b_flags &= ~ARC_PREFETCH; 15942391Smaybee atomic_add_64(&arc.mru->hits, 1); 15952391Smaybee } 15962391Smaybee buf->b_arc_access = lbolt; 1597789Sahrens return; 1598789Sahrens } 1599789Sahrens 1600789Sahrens /* 1601789Sahrens * This buffer has been "accessed" only once so far, 1602789Sahrens * but it is still in the cache. Move it to the MFU 1603789Sahrens * state. 1604789Sahrens */ 1605789Sahrens if (lbolt > buf->b_arc_access + ARC_MINTIME) { 1606789Sahrens /* 1607789Sahrens * More than 125ms have passed since we 1608789Sahrens * instantiated this buffer. Move it to the 1609789Sahrens * most frequently used state. 1610789Sahrens */ 1611789Sahrens buf->b_arc_access = lbolt; 16121544Seschrock DTRACE_PROBE1(new_state__mfu, arc_buf_hdr_t *, buf); 16131544Seschrock arc_change_state(arc.mfu, buf, hash_lock); 1614789Sahrens } 16151544Seschrock atomic_add_64(&arc.mru->hits, 1); 16161544Seschrock } else if (buf->b_state == arc.mru_ghost) { 1617789Sahrens arc_state_t *new_state; 1618789Sahrens /* 1619789Sahrens * This buffer has been "accessed" recently, but 1620789Sahrens * was evicted from the cache. Move it to the 1621789Sahrens * MFU state. 1622789Sahrens */ 1623789Sahrens 1624789Sahrens if (buf->b_flags & ARC_PREFETCH) { 16251544Seschrock new_state = arc.mru; 16262391Smaybee if (refcount_count(&buf->b_refcnt) > 0) 16272391Smaybee buf->b_flags &= ~ARC_PREFETCH; 16281544Seschrock DTRACE_PROBE1(new_state__mru, arc_buf_hdr_t *, buf); 1629789Sahrens } else { 16301544Seschrock new_state = arc.mfu; 16311544Seschrock DTRACE_PROBE1(new_state__mfu, arc_buf_hdr_t *, buf); 1632789Sahrens } 1633789Sahrens 1634789Sahrens buf->b_arc_access = lbolt; 1635789Sahrens arc_change_state(new_state, buf, hash_lock); 1636789Sahrens 16371544Seschrock atomic_add_64(&arc.mru_ghost->hits, 1); 16381544Seschrock } else if (buf->b_state == arc.mfu) { 1639789Sahrens /* 1640789Sahrens * This buffer has been accessed more than once and is 1641789Sahrens * still in the cache. Keep it in the MFU state. 1642789Sahrens * 16432391Smaybee * NOTE: an add_reference() that occurred when we did 16442391Smaybee * the arc_read() will have kicked this off the list. 16452391Smaybee * If it was a prefetch, we will explicitly move it to 16462391Smaybee * the head of the list now. 1647789Sahrens */ 16482391Smaybee if ((buf->b_flags & ARC_PREFETCH) != 0) { 16492391Smaybee ASSERT(refcount_count(&buf->b_refcnt) == 0); 16502391Smaybee ASSERT(list_link_active(&buf->b_arc_node)); 16512391Smaybee mutex_enter(&arc.mfu->mtx); 16522391Smaybee list_remove(&arc.mfu->list, buf); 16532391Smaybee list_insert_head(&arc.mfu->list, buf); 16542391Smaybee mutex_exit(&arc.mfu->mtx); 16552391Smaybee } 16561544Seschrock atomic_add_64(&arc.mfu->hits, 1); 16572391Smaybee buf->b_arc_access = lbolt; 16581544Seschrock } else if (buf->b_state == arc.mfu_ghost) { 16592391Smaybee arc_state_t *new_state = arc.mfu; 1660789Sahrens /* 1661789Sahrens * This buffer has been accessed more than once but has 1662789Sahrens * been evicted from the cache. Move it back to the 1663789Sahrens * MFU state. 1664789Sahrens */ 1665789Sahrens 16662391Smaybee if (buf->b_flags & ARC_PREFETCH) { 16672391Smaybee /* 16682391Smaybee * This is a prefetch access... 16692391Smaybee * move this block back to the MRU state. 16702391Smaybee */ 16712391Smaybee ASSERT3U(refcount_count(&buf->b_refcnt), ==, 0); 16722391Smaybee new_state = arc.mru; 16732391Smaybee } 16742391Smaybee 1675789Sahrens buf->b_arc_access = lbolt; 16761544Seschrock DTRACE_PROBE1(new_state__mfu, arc_buf_hdr_t *, buf); 16772391Smaybee arc_change_state(new_state, buf, hash_lock); 1678789Sahrens 16791544Seschrock atomic_add_64(&arc.mfu_ghost->hits, 1); 1680789Sahrens } else { 1681789Sahrens ASSERT(!"invalid arc state"); 1682789Sahrens } 1683789Sahrens } 1684789Sahrens 1685789Sahrens /* a generic arc_done_func_t which you can use */ 1686789Sahrens /* ARGSUSED */ 1687789Sahrens void 1688789Sahrens arc_bcopy_func(zio_t *zio, arc_buf_t *buf, void *arg) 1689789Sahrens { 1690789Sahrens bcopy(buf->b_data, arg, buf->b_hdr->b_size); 16911544Seschrock VERIFY(arc_buf_remove_ref(buf, arg) == 1); 1692789Sahrens } 1693789Sahrens 1694789Sahrens /* a generic arc_done_func_t which you can use */ 1695789Sahrens void 1696789Sahrens arc_getbuf_func(zio_t *zio, arc_buf_t *buf, void *arg) 1697789Sahrens { 1698789Sahrens arc_buf_t **bufp = arg; 1699789Sahrens if (zio && zio->io_error) { 17001544Seschrock VERIFY(arc_buf_remove_ref(buf, arg) == 1); 1701789Sahrens *bufp = NULL; 1702789Sahrens } else { 1703789Sahrens *bufp = buf; 1704789Sahrens } 1705789Sahrens } 1706789Sahrens 1707789Sahrens static void 1708789Sahrens arc_read_done(zio_t *zio) 1709789Sahrens { 17101589Smaybee arc_buf_hdr_t *hdr, *found; 1711789Sahrens arc_buf_t *buf; 1712789Sahrens arc_buf_t *abuf; /* buffer we're assigning to callback */ 1713789Sahrens kmutex_t *hash_lock; 1714789Sahrens arc_callback_t *callback_list, *acb; 1715789Sahrens int freeable = FALSE; 1716789Sahrens 1717789Sahrens buf = zio->io_private; 1718789Sahrens hdr = buf->b_hdr; 1719789Sahrens 17201589Smaybee /* 17211589Smaybee * The hdr was inserted into hash-table and removed from lists 17221589Smaybee * prior to starting I/O. We should find this header, since 17231589Smaybee * it's in the hash table, and it should be legit since it's 17241589Smaybee * not possible to evict it during the I/O. The only possible 17251589Smaybee * reason for it not to be found is if we were freed during the 17261589Smaybee * read. 17271589Smaybee */ 17281589Smaybee found = buf_hash_find(zio->io_spa, &hdr->b_dva, hdr->b_birth, 17293093Sahrens &hash_lock); 1730789Sahrens 17311589Smaybee ASSERT((found == NULL && HDR_FREED_IN_READ(hdr) && hash_lock == NULL) || 17321589Smaybee (found == hdr && DVA_EQUAL(&hdr->b_dva, BP_IDENTITY(zio->io_bp)))); 1733789Sahrens 1734789Sahrens /* byteswap if necessary */ 1735789Sahrens callback_list = hdr->b_acb; 1736789Sahrens ASSERT(callback_list != NULL); 1737789Sahrens if (BP_SHOULD_BYTESWAP(zio->io_bp) && callback_list->acb_byteswap) 1738789Sahrens callback_list->acb_byteswap(buf->b_data, hdr->b_size); 1739789Sahrens 17403093Sahrens arc_cksum_compute(buf); 17413093Sahrens 1742789Sahrens /* create copies of the data buffer for the callers */ 1743789Sahrens abuf = buf; 1744789Sahrens for (acb = callback_list; acb; acb = acb->acb_next) { 1745789Sahrens if (acb->acb_done) { 17462688Smaybee if (abuf == NULL) 17472688Smaybee abuf = arc_buf_clone(buf); 1748789Sahrens acb->acb_buf = abuf; 1749789Sahrens abuf = NULL; 1750789Sahrens } 1751789Sahrens } 1752789Sahrens hdr->b_acb = NULL; 1753789Sahrens hdr->b_flags &= ~ARC_IO_IN_PROGRESS; 17541544Seschrock ASSERT(!HDR_BUF_AVAILABLE(hdr)); 17551544Seschrock if (abuf == buf) 17561544Seschrock hdr->b_flags |= ARC_BUF_AVAILABLE; 1757789Sahrens 1758789Sahrens ASSERT(refcount_is_zero(&hdr->b_refcnt) || callback_list != NULL); 1759789Sahrens 1760789Sahrens if (zio->io_error != 0) { 1761789Sahrens hdr->b_flags |= ARC_IO_ERROR; 1762789Sahrens if (hdr->b_state != arc.anon) 1763789Sahrens arc_change_state(arc.anon, hdr, hash_lock); 17641544Seschrock if (HDR_IN_HASH_TABLE(hdr)) 17651544Seschrock buf_hash_remove(hdr); 1766789Sahrens freeable = refcount_is_zero(&hdr->b_refcnt); 17672391Smaybee /* convert checksum errors into IO errors */ 17681544Seschrock if (zio->io_error == ECKSUM) 17691544Seschrock zio->io_error = EIO; 1770789Sahrens } 1771789Sahrens 17721544Seschrock /* 17732391Smaybee * Broadcast before we drop the hash_lock to avoid the possibility 17742391Smaybee * that the hdr (and hence the cv) might be freed before we get to 17752391Smaybee * the cv_broadcast(). 17761544Seschrock */ 17771544Seschrock cv_broadcast(&hdr->b_cv); 17781544Seschrock 17791589Smaybee if (hash_lock) { 1780789Sahrens /* 1781789Sahrens * Only call arc_access on anonymous buffers. This is because 1782789Sahrens * if we've issued an I/O for an evicted buffer, we've already 1783789Sahrens * called arc_access (to prevent any simultaneous readers from 1784789Sahrens * getting confused). 1785789Sahrens */ 1786789Sahrens if (zio->io_error == 0 && hdr->b_state == arc.anon) 17872688Smaybee arc_access(hdr, hash_lock); 17882688Smaybee mutex_exit(hash_lock); 1789789Sahrens } else { 1790789Sahrens /* 1791789Sahrens * This block was freed while we waited for the read to 1792789Sahrens * complete. It has been removed from the hash table and 1793789Sahrens * moved to the anonymous state (so that it won't show up 1794789Sahrens * in the cache). 1795789Sahrens */ 1796789Sahrens ASSERT3P(hdr->b_state, ==, arc.anon); 1797789Sahrens freeable = refcount_is_zero(&hdr->b_refcnt); 1798789Sahrens } 1799789Sahrens 1800789Sahrens /* execute each callback and free its structure */ 1801789Sahrens while ((acb = callback_list) != NULL) { 1802789Sahrens if (acb->acb_done) 1803789Sahrens acb->acb_done(zio, acb->acb_buf, acb->acb_private); 1804789Sahrens 1805789Sahrens if (acb->acb_zio_dummy != NULL) { 1806789Sahrens acb->acb_zio_dummy->io_error = zio->io_error; 1807789Sahrens zio_nowait(acb->acb_zio_dummy); 1808789Sahrens } 1809789Sahrens 1810789Sahrens callback_list = acb->acb_next; 1811789Sahrens kmem_free(acb, sizeof (arc_callback_t)); 1812789Sahrens } 1813789Sahrens 1814789Sahrens if (freeable) 18151544Seschrock arc_hdr_destroy(hdr); 1816789Sahrens } 1817789Sahrens 1818789Sahrens /* 1819789Sahrens * "Read" the block block at the specified DVA (in bp) via the 1820789Sahrens * cache. If the block is found in the cache, invoke the provided 1821789Sahrens * callback immediately and return. Note that the `zio' parameter 1822789Sahrens * in the callback will be NULL in this case, since no IO was 1823789Sahrens * required. If the block is not in the cache pass the read request 1824789Sahrens * on to the spa with a substitute callback function, so that the 1825789Sahrens * requested block will be added to the cache. 1826789Sahrens * 1827789Sahrens * If a read request arrives for a block that has a read in-progress, 1828789Sahrens * either wait for the in-progress read to complete (and return the 1829789Sahrens * results); or, if this is a read with a "done" func, add a record 1830789Sahrens * to the read to invoke the "done" func when the read completes, 1831789Sahrens * and return; or just return. 1832789Sahrens * 1833789Sahrens * arc_read_done() will invoke all the requested "done" functions 1834789Sahrens * for readers of this block. 1835789Sahrens */ 1836789Sahrens int 1837789Sahrens arc_read(zio_t *pio, spa_t *spa, blkptr_t *bp, arc_byteswap_func_t *swap, 1838789Sahrens arc_done_func_t *done, void *private, int priority, int flags, 18392391Smaybee uint32_t *arc_flags, zbookmark_t *zb) 1840789Sahrens { 1841789Sahrens arc_buf_hdr_t *hdr; 1842789Sahrens arc_buf_t *buf; 1843789Sahrens kmutex_t *hash_lock; 1844789Sahrens zio_t *rzio; 1845789Sahrens 1846789Sahrens top: 1847789Sahrens hdr = buf_hash_find(spa, BP_IDENTITY(bp), bp->blk_birth, &hash_lock); 18481544Seschrock if (hdr && hdr->b_datacnt > 0) { 1849789Sahrens 18502391Smaybee *arc_flags |= ARC_CACHED; 18512391Smaybee 1852789Sahrens if (HDR_IO_IN_PROGRESS(hdr)) { 18532391Smaybee 18542391Smaybee if (*arc_flags & ARC_WAIT) { 18552391Smaybee cv_wait(&hdr->b_cv, hash_lock); 18562391Smaybee mutex_exit(hash_lock); 18572391Smaybee goto top; 18582391Smaybee } 18592391Smaybee ASSERT(*arc_flags & ARC_NOWAIT); 18602391Smaybee 18612391Smaybee if (done) { 1862789Sahrens arc_callback_t *acb = NULL; 1863789Sahrens 1864789Sahrens acb = kmem_zalloc(sizeof (arc_callback_t), 1865789Sahrens KM_SLEEP); 1866789Sahrens acb->acb_done = done; 1867789Sahrens acb->acb_private = private; 1868789Sahrens acb->acb_byteswap = swap; 1869789Sahrens if (pio != NULL) 1870789Sahrens acb->acb_zio_dummy = zio_null(pio, 1871789Sahrens spa, NULL, NULL, flags); 1872789Sahrens 1873789Sahrens ASSERT(acb->acb_done != NULL); 1874789Sahrens acb->acb_next = hdr->b_acb; 1875789Sahrens hdr->b_acb = acb; 1876789Sahrens add_reference(hdr, hash_lock, private); 1877789Sahrens mutex_exit(hash_lock); 1878789Sahrens return (0); 1879789Sahrens } 1880789Sahrens mutex_exit(hash_lock); 1881789Sahrens return (0); 1882789Sahrens } 1883789Sahrens 18841544Seschrock ASSERT(hdr->b_state == arc.mru || hdr->b_state == arc.mfu); 1885789Sahrens 18861544Seschrock if (done) { 18872688Smaybee add_reference(hdr, hash_lock, private); 18881544Seschrock /* 18891544Seschrock * If this block is already in use, create a new 18901544Seschrock * copy of the data so that we will be guaranteed 18911544Seschrock * that arc_release() will always succeed. 18921544Seschrock */ 18931544Seschrock buf = hdr->b_buf; 18941544Seschrock ASSERT(buf); 18951544Seschrock ASSERT(buf->b_data); 18962688Smaybee if (HDR_BUF_AVAILABLE(hdr)) { 18971544Seschrock ASSERT(buf->b_efunc == NULL); 18981544Seschrock hdr->b_flags &= ~ARC_BUF_AVAILABLE; 18992688Smaybee } else { 19002688Smaybee buf = arc_buf_clone(buf); 19011544Seschrock } 19022391Smaybee } else if (*arc_flags & ARC_PREFETCH && 19032391Smaybee refcount_count(&hdr->b_refcnt) == 0) { 19042391Smaybee hdr->b_flags |= ARC_PREFETCH; 1905789Sahrens } 1906789Sahrens DTRACE_PROBE1(arc__hit, arc_buf_hdr_t *, hdr); 19072688Smaybee arc_access(hdr, hash_lock); 19082688Smaybee mutex_exit(hash_lock); 1909789Sahrens atomic_add_64(&arc.hits, 1); 1910789Sahrens if (done) 1911789Sahrens done(NULL, buf, private); 1912789Sahrens } else { 1913789Sahrens uint64_t size = BP_GET_LSIZE(bp); 1914789Sahrens arc_callback_t *acb; 1915789Sahrens 1916789Sahrens if (hdr == NULL) { 1917789Sahrens /* this block is not in the cache */ 1918789Sahrens arc_buf_hdr_t *exists; 1919789Sahrens 1920789Sahrens buf = arc_buf_alloc(spa, size, private); 1921789Sahrens hdr = buf->b_hdr; 1922789Sahrens hdr->b_dva = *BP_IDENTITY(bp); 1923789Sahrens hdr->b_birth = bp->blk_birth; 1924789Sahrens hdr->b_cksum0 = bp->blk_cksum.zc_word[0]; 1925789Sahrens exists = buf_hash_insert(hdr, &hash_lock); 1926789Sahrens if (exists) { 1927789Sahrens /* somebody beat us to the hash insert */ 1928789Sahrens mutex_exit(hash_lock); 1929789Sahrens bzero(&hdr->b_dva, sizeof (dva_t)); 1930789Sahrens hdr->b_birth = 0; 1931789Sahrens hdr->b_cksum0 = 0; 19321544Seschrock (void) arc_buf_remove_ref(buf, private); 1933789Sahrens goto top; /* restart the IO request */ 1934789Sahrens } 19352391Smaybee /* if this is a prefetch, we don't have a reference */ 19362391Smaybee if (*arc_flags & ARC_PREFETCH) { 19372391Smaybee (void) remove_reference(hdr, hash_lock, 19382391Smaybee private); 19392391Smaybee hdr->b_flags |= ARC_PREFETCH; 19402391Smaybee } 19412391Smaybee if (BP_GET_LEVEL(bp) > 0) 19422391Smaybee hdr->b_flags |= ARC_INDIRECT; 1943789Sahrens } else { 1944789Sahrens /* this block is in the ghost cache */ 19451544Seschrock ASSERT(GHOST_STATE(hdr->b_state)); 19461544Seschrock ASSERT(!HDR_IO_IN_PROGRESS(hdr)); 19472391Smaybee ASSERT3U(refcount_count(&hdr->b_refcnt), ==, 0); 19482391Smaybee ASSERT(hdr->b_buf == NULL); 1949789Sahrens 19502391Smaybee /* if this is a prefetch, we don't have a reference */ 19512391Smaybee if (*arc_flags & ARC_PREFETCH) 19522391Smaybee hdr->b_flags |= ARC_PREFETCH; 19532391Smaybee else 19542391Smaybee add_reference(hdr, hash_lock, private); 1955789Sahrens buf = kmem_cache_alloc(buf_cache, KM_SLEEP); 19561544Seschrock buf->b_hdr = hdr; 19572688Smaybee buf->b_data = NULL; 19581544Seschrock buf->b_efunc = NULL; 19591544Seschrock buf->b_private = NULL; 19601544Seschrock buf->b_next = NULL; 19611544Seschrock hdr->b_buf = buf; 19622688Smaybee arc_get_data_buf(buf); 19631544Seschrock ASSERT(hdr->b_datacnt == 0); 19641544Seschrock hdr->b_datacnt = 1; 19652391Smaybee 1966789Sahrens } 1967789Sahrens 1968789Sahrens acb = kmem_zalloc(sizeof (arc_callback_t), KM_SLEEP); 1969789Sahrens acb->acb_done = done; 1970789Sahrens acb->acb_private = private; 1971789Sahrens acb->acb_byteswap = swap; 1972789Sahrens 1973789Sahrens ASSERT(hdr->b_acb == NULL); 1974789Sahrens hdr->b_acb = acb; 1975789Sahrens hdr->b_flags |= ARC_IO_IN_PROGRESS; 1976789Sahrens 1977789Sahrens /* 1978789Sahrens * If the buffer has been evicted, migrate it to a present state 1979789Sahrens * before issuing the I/O. Once we drop the hash-table lock, 1980789Sahrens * the header will be marked as I/O in progress and have an 1981789Sahrens * attached buffer. At this point, anybody who finds this 1982789Sahrens * buffer ought to notice that it's legit but has a pending I/O. 1983789Sahrens */ 1984789Sahrens 19851544Seschrock if (GHOST_STATE(hdr->b_state)) 19862688Smaybee arc_access(hdr, hash_lock); 19872688Smaybee mutex_exit(hash_lock); 1988789Sahrens 1989789Sahrens ASSERT3U(hdr->b_size, ==, size); 19901596Sahrens DTRACE_PROBE3(arc__miss, blkptr_t *, bp, uint64_t, size, 19911596Sahrens zbookmark_t *, zb); 1992789Sahrens atomic_add_64(&arc.misses, 1); 19931544Seschrock 1994789Sahrens rzio = zio_read(pio, spa, bp, buf->b_data, size, 19951544Seschrock arc_read_done, buf, priority, flags, zb); 1996789Sahrens 19972391Smaybee if (*arc_flags & ARC_WAIT) 1998789Sahrens return (zio_wait(rzio)); 1999789Sahrens 20002391Smaybee ASSERT(*arc_flags & ARC_NOWAIT); 2001789Sahrens zio_nowait(rzio); 2002789Sahrens } 2003789Sahrens return (0); 2004789Sahrens } 2005789Sahrens 2006789Sahrens /* 2007789Sahrens * arc_read() variant to support pool traversal. If the block is already 2008789Sahrens * in the ARC, make a copy of it; otherwise, the caller will do the I/O. 2009789Sahrens * The idea is that we don't want pool traversal filling up memory, but 2010789Sahrens * if the ARC already has the data anyway, we shouldn't pay for the I/O. 2011789Sahrens */ 2012789Sahrens int 2013789Sahrens arc_tryread(spa_t *spa, blkptr_t *bp, void *data) 2014789Sahrens { 2015789Sahrens arc_buf_hdr_t *hdr; 2016789Sahrens kmutex_t *hash_mtx; 2017789Sahrens int rc = 0; 2018789Sahrens 2019789Sahrens hdr = buf_hash_find(spa, BP_IDENTITY(bp), bp->blk_birth, &hash_mtx); 2020789Sahrens 20211544Seschrock if (hdr && hdr->b_datacnt > 0 && !HDR_IO_IN_PROGRESS(hdr)) { 20221544Seschrock arc_buf_t *buf = hdr->b_buf; 20231544Seschrock 20241544Seschrock ASSERT(buf); 20251544Seschrock while (buf->b_data == NULL) { 20261544Seschrock buf = buf->b_next; 20271544Seschrock ASSERT(buf); 20281544Seschrock } 20291544Seschrock bcopy(buf->b_data, data, hdr->b_size); 20301544Seschrock } else { 2031789Sahrens rc = ENOENT; 20321544Seschrock } 2033789Sahrens 2034789Sahrens if (hash_mtx) 2035789Sahrens mutex_exit(hash_mtx); 2036789Sahrens 2037789Sahrens return (rc); 2038789Sahrens } 2039789Sahrens 20401544Seschrock void 20411544Seschrock arc_set_callback(arc_buf_t *buf, arc_evict_func_t *func, void *private) 20421544Seschrock { 20431544Seschrock ASSERT(buf->b_hdr != NULL); 20441544Seschrock ASSERT(buf->b_hdr->b_state != arc.anon); 20451544Seschrock ASSERT(!refcount_is_zero(&buf->b_hdr->b_refcnt) || func == NULL); 20461544Seschrock buf->b_efunc = func; 20471544Seschrock buf->b_private = private; 20481544Seschrock } 20491544Seschrock 20501544Seschrock /* 20511544Seschrock * This is used by the DMU to let the ARC know that a buffer is 20521544Seschrock * being evicted, so the ARC should clean up. If this arc buf 20531544Seschrock * is not yet in the evicted state, it will be put there. 20541544Seschrock */ 20551544Seschrock int 20561544Seschrock arc_buf_evict(arc_buf_t *buf) 20571544Seschrock { 20582887Smaybee arc_buf_hdr_t *hdr; 20591544Seschrock kmutex_t *hash_lock; 20601544Seschrock arc_buf_t **bufp; 20611544Seschrock 20622887Smaybee mutex_enter(&arc_eviction_mtx); 20632887Smaybee hdr = buf->b_hdr; 20641544Seschrock if (hdr == NULL) { 20651544Seschrock /* 20661544Seschrock * We are in arc_do_user_evicts(). 20671544Seschrock */ 20681544Seschrock ASSERT(buf->b_data == NULL); 20692887Smaybee mutex_exit(&arc_eviction_mtx); 20701544Seschrock return (0); 20711544Seschrock } 20722887Smaybee hash_lock = HDR_LOCK(hdr); 20732887Smaybee mutex_exit(&arc_eviction_mtx); 20741544Seschrock 20751544Seschrock mutex_enter(hash_lock); 20761544Seschrock 20772724Smaybee if (buf->b_data == NULL) { 20782724Smaybee /* 20792724Smaybee * We are on the eviction list. 20802724Smaybee */ 20812724Smaybee mutex_exit(hash_lock); 20822724Smaybee mutex_enter(&arc_eviction_mtx); 20832724Smaybee if (buf->b_hdr == NULL) { 20842724Smaybee /* 20852724Smaybee * We are already in arc_do_user_evicts(). 20862724Smaybee */ 20872724Smaybee mutex_exit(&arc_eviction_mtx); 20882724Smaybee return (0); 20892724Smaybee } else { 20902724Smaybee arc_buf_t copy = *buf; /* structure assignment */ 20912724Smaybee /* 20922724Smaybee * Process this buffer now 20932724Smaybee * but let arc_do_user_evicts() do the reaping. 20942724Smaybee */ 20952724Smaybee buf->b_efunc = NULL; 20962724Smaybee mutex_exit(&arc_eviction_mtx); 20972724Smaybee VERIFY(copy.b_efunc(©) == 0); 20982724Smaybee return (1); 20992724Smaybee } 21002724Smaybee } 21012724Smaybee 21022724Smaybee ASSERT(buf->b_hdr == hdr); 21032724Smaybee ASSERT3U(refcount_count(&hdr->b_refcnt), <, hdr->b_datacnt); 21041544Seschrock ASSERT(hdr->b_state == arc.mru || hdr->b_state == arc.mfu); 21051544Seschrock 21061544Seschrock /* 21071544Seschrock * Pull this buffer off of the hdr 21081544Seschrock */ 21091544Seschrock bufp = &hdr->b_buf; 21101544Seschrock while (*bufp != buf) 21111544Seschrock bufp = &(*bufp)->b_next; 21121544Seschrock *bufp = buf->b_next; 21131544Seschrock 21141544Seschrock ASSERT(buf->b_data != NULL); 21152688Smaybee arc_buf_destroy(buf, FALSE, FALSE); 21161544Seschrock 21171544Seschrock if (hdr->b_datacnt == 0) { 21181544Seschrock arc_state_t *old_state = hdr->b_state; 21191544Seschrock arc_state_t *evicted_state; 21201544Seschrock 21211544Seschrock ASSERT(refcount_is_zero(&hdr->b_refcnt)); 21221544Seschrock 21231544Seschrock evicted_state = 21241544Seschrock (old_state == arc.mru) ? arc.mru_ghost : arc.mfu_ghost; 21251544Seschrock 21261544Seschrock mutex_enter(&old_state->mtx); 21271544Seschrock mutex_enter(&evicted_state->mtx); 21281544Seschrock 21291544Seschrock arc_change_state(evicted_state, hdr, hash_lock); 21301544Seschrock ASSERT(HDR_IN_HASH_TABLE(hdr)); 21311544Seschrock hdr->b_flags = ARC_IN_HASH_TABLE; 21321544Seschrock 21331544Seschrock mutex_exit(&evicted_state->mtx); 21341544Seschrock mutex_exit(&old_state->mtx); 21351544Seschrock } 21361544Seschrock mutex_exit(hash_lock); 21371819Smaybee 21381544Seschrock VERIFY(buf->b_efunc(buf) == 0); 21391544Seschrock buf->b_efunc = NULL; 21401544Seschrock buf->b_private = NULL; 21411544Seschrock buf->b_hdr = NULL; 21421544Seschrock kmem_cache_free(buf_cache, buf); 21431544Seschrock return (1); 21441544Seschrock } 21451544Seschrock 2146789Sahrens /* 2147789Sahrens * Release this buffer from the cache. This must be done 2148789Sahrens * after a read and prior to modifying the buffer contents. 2149789Sahrens * If the buffer has more than one reference, we must make 2150789Sahrens * make a new hdr for the buffer. 2151789Sahrens */ 2152789Sahrens void 2153789Sahrens arc_release(arc_buf_t *buf, void *tag) 2154789Sahrens { 2155789Sahrens arc_buf_hdr_t *hdr = buf->b_hdr; 2156789Sahrens kmutex_t *hash_lock = HDR_LOCK(hdr); 2157789Sahrens 2158789Sahrens /* this buffer is not on any list */ 2159789Sahrens ASSERT(refcount_count(&hdr->b_refcnt) > 0); 2160789Sahrens 2161789Sahrens if (hdr->b_state == arc.anon) { 2162789Sahrens /* this buffer is already released */ 2163789Sahrens ASSERT3U(refcount_count(&hdr->b_refcnt), ==, 1); 2164789Sahrens ASSERT(BUF_EMPTY(hdr)); 21651544Seschrock ASSERT(buf->b_efunc == NULL); 21663093Sahrens arc_buf_thaw(buf); 2167789Sahrens return; 2168789Sahrens } 2169789Sahrens 2170789Sahrens mutex_enter(hash_lock); 2171789Sahrens 21721544Seschrock /* 21731544Seschrock * Do we have more than one buf? 21741544Seschrock */ 21751544Seschrock if (hdr->b_buf != buf || buf->b_next != NULL) { 2176789Sahrens arc_buf_hdr_t *nhdr; 2177789Sahrens arc_buf_t **bufp; 2178789Sahrens uint64_t blksz = hdr->b_size; 2179789Sahrens spa_t *spa = hdr->b_spa; 2180789Sahrens 21811544Seschrock ASSERT(hdr->b_datacnt > 1); 2182789Sahrens /* 2183789Sahrens * Pull the data off of this buf and attach it to 2184789Sahrens * a new anonymous buf. 2185789Sahrens */ 21861544Seschrock (void) remove_reference(hdr, hash_lock, tag); 2187789Sahrens bufp = &hdr->b_buf; 21881544Seschrock while (*bufp != buf) 2189789Sahrens bufp = &(*bufp)->b_next; 2190789Sahrens *bufp = (*bufp)->b_next; 21911544Seschrock 2192789Sahrens ASSERT3U(hdr->b_state->size, >=, hdr->b_size); 2193789Sahrens atomic_add_64(&hdr->b_state->size, -hdr->b_size); 21941544Seschrock if (refcount_is_zero(&hdr->b_refcnt)) { 21951544Seschrock ASSERT3U(hdr->b_state->lsize, >=, hdr->b_size); 21961544Seschrock atomic_add_64(&hdr->b_state->lsize, -hdr->b_size); 21971544Seschrock } 21981544Seschrock hdr->b_datacnt -= 1; 21991544Seschrock 2200789Sahrens mutex_exit(hash_lock); 2201789Sahrens 2202789Sahrens nhdr = kmem_cache_alloc(hdr_cache, KM_SLEEP); 2203789Sahrens nhdr->b_size = blksz; 2204789Sahrens nhdr->b_spa = spa; 2205789Sahrens nhdr->b_buf = buf; 2206789Sahrens nhdr->b_state = arc.anon; 2207789Sahrens nhdr->b_arc_access = 0; 2208789Sahrens nhdr->b_flags = 0; 22091544Seschrock nhdr->b_datacnt = 1; 22103093Sahrens nhdr->b_freeze_cksum = 22113093Sahrens kmem_alloc(sizeof (zio_cksum_t), KM_SLEEP); 22123093Sahrens *nhdr->b_freeze_cksum = *hdr->b_freeze_cksum; /* struct copy */ 2213789Sahrens buf->b_hdr = nhdr; 2214789Sahrens buf->b_next = NULL; 2215789Sahrens (void) refcount_add(&nhdr->b_refcnt, tag); 2216789Sahrens atomic_add_64(&arc.anon->size, blksz); 2217789Sahrens 2218789Sahrens hdr = nhdr; 2219789Sahrens } else { 22201544Seschrock ASSERT(refcount_count(&hdr->b_refcnt) == 1); 2221789Sahrens ASSERT(!list_link_active(&hdr->b_arc_node)); 2222789Sahrens ASSERT(!HDR_IO_IN_PROGRESS(hdr)); 2223789Sahrens arc_change_state(arc.anon, hdr, hash_lock); 2224789Sahrens hdr->b_arc_access = 0; 2225789Sahrens mutex_exit(hash_lock); 2226789Sahrens bzero(&hdr->b_dva, sizeof (dva_t)); 2227789Sahrens hdr->b_birth = 0; 2228789Sahrens hdr->b_cksum0 = 0; 2229789Sahrens } 22301544Seschrock buf->b_efunc = NULL; 22311544Seschrock buf->b_private = NULL; 22323093Sahrens arc_buf_thaw(buf); 2233789Sahrens } 2234789Sahrens 2235789Sahrens int 2236789Sahrens arc_released(arc_buf_t *buf) 2237789Sahrens { 22381544Seschrock return (buf->b_data != NULL && buf->b_hdr->b_state == arc.anon); 22391544Seschrock } 22401544Seschrock 22411544Seschrock int 22421544Seschrock arc_has_callback(arc_buf_t *buf) 22431544Seschrock { 22441544Seschrock return (buf->b_efunc != NULL); 2245789Sahrens } 2246789Sahrens 22471544Seschrock #ifdef ZFS_DEBUG 22481544Seschrock int 22491544Seschrock arc_referenced(arc_buf_t *buf) 22501544Seschrock { 22511544Seschrock return (refcount_count(&buf->b_hdr->b_refcnt)); 22521544Seschrock } 22531544Seschrock #endif 22541544Seschrock 2255789Sahrens static void 2256789Sahrens arc_write_done(zio_t *zio) 2257789Sahrens { 2258789Sahrens arc_buf_t *buf; 2259789Sahrens arc_buf_hdr_t *hdr; 2260789Sahrens arc_callback_t *acb; 2261789Sahrens 2262789Sahrens buf = zio->io_private; 2263789Sahrens hdr = buf->b_hdr; 2264789Sahrens acb = hdr->b_acb; 2265789Sahrens hdr->b_acb = NULL; 22661544Seschrock ASSERT(acb != NULL); 2267789Sahrens 2268789Sahrens /* this buffer is on no lists and is not in the hash table */ 2269789Sahrens ASSERT3P(hdr->b_state, ==, arc.anon); 2270789Sahrens 2271789Sahrens hdr->b_dva = *BP_IDENTITY(zio->io_bp); 2272789Sahrens hdr->b_birth = zio->io_bp->blk_birth; 2273789Sahrens hdr->b_cksum0 = zio->io_bp->blk_cksum.zc_word[0]; 22741544Seschrock /* 22751544Seschrock * If the block to be written was all-zero, we may have 22761544Seschrock * compressed it away. In this case no write was performed 22771544Seschrock * so there will be no dva/birth-date/checksum. The buffer 22781544Seschrock * must therefor remain anonymous (and uncached). 22791544Seschrock */ 2280789Sahrens if (!BUF_EMPTY(hdr)) { 2281789Sahrens arc_buf_hdr_t *exists; 2282789Sahrens kmutex_t *hash_lock; 2283789Sahrens 22843093Sahrens arc_cksum_verify(buf); 22853093Sahrens 2286789Sahrens exists = buf_hash_insert(hdr, &hash_lock); 2287789Sahrens if (exists) { 2288789Sahrens /* 2289789Sahrens * This can only happen if we overwrite for 2290789Sahrens * sync-to-convergence, because we remove 2291789Sahrens * buffers from the hash table when we arc_free(). 2292789Sahrens */ 2293789Sahrens ASSERT(DVA_EQUAL(BP_IDENTITY(&zio->io_bp_orig), 2294789Sahrens BP_IDENTITY(zio->io_bp))); 2295789Sahrens ASSERT3U(zio->io_bp_orig.blk_birth, ==, 2296789Sahrens zio->io_bp->blk_birth); 2297789Sahrens 2298789Sahrens ASSERT(refcount_is_zero(&exists->b_refcnt)); 2299789Sahrens arc_change_state(arc.anon, exists, hash_lock); 2300789Sahrens mutex_exit(hash_lock); 23011544Seschrock arc_hdr_destroy(exists); 2302789Sahrens exists = buf_hash_insert(hdr, &hash_lock); 2303789Sahrens ASSERT3P(exists, ==, NULL); 2304789Sahrens } 23051544Seschrock hdr->b_flags &= ~ARC_IO_IN_PROGRESS; 23062688Smaybee arc_access(hdr, hash_lock); 23072688Smaybee mutex_exit(hash_lock); 23081544Seschrock } else if (acb->acb_done == NULL) { 23091544Seschrock int destroy_hdr; 23101544Seschrock /* 23111544Seschrock * This is an anonymous buffer with no user callback, 23121544Seschrock * destroy it if there are no active references. 23131544Seschrock */ 23141544Seschrock mutex_enter(&arc_eviction_mtx); 23151544Seschrock destroy_hdr = refcount_is_zero(&hdr->b_refcnt); 23161544Seschrock hdr->b_flags &= ~ARC_IO_IN_PROGRESS; 23171544Seschrock mutex_exit(&arc_eviction_mtx); 23181544Seschrock if (destroy_hdr) 23191544Seschrock arc_hdr_destroy(hdr); 23201544Seschrock } else { 23211544Seschrock hdr->b_flags &= ~ARC_IO_IN_PROGRESS; 2322789Sahrens } 23231544Seschrock 23241544Seschrock if (acb->acb_done) { 2325789Sahrens ASSERT(!refcount_is_zero(&hdr->b_refcnt)); 2326789Sahrens acb->acb_done(zio, buf, acb->acb_private); 2327789Sahrens } 2328789Sahrens 23291544Seschrock kmem_free(acb, sizeof (arc_callback_t)); 2330789Sahrens } 2331789Sahrens 2332789Sahrens int 23331775Sbillm arc_write(zio_t *pio, spa_t *spa, int checksum, int compress, int ncopies, 2334789Sahrens uint64_t txg, blkptr_t *bp, arc_buf_t *buf, 2335789Sahrens arc_done_func_t *done, void *private, int priority, int flags, 23361544Seschrock uint32_t arc_flags, zbookmark_t *zb) 2337789Sahrens { 2338789Sahrens arc_buf_hdr_t *hdr = buf->b_hdr; 2339789Sahrens arc_callback_t *acb; 2340789Sahrens zio_t *rzio; 2341789Sahrens 2342789Sahrens /* this is a private buffer - no locking required */ 2343789Sahrens ASSERT3P(hdr->b_state, ==, arc.anon); 2344789Sahrens ASSERT(BUF_EMPTY(hdr)); 2345789Sahrens ASSERT(!HDR_IO_ERROR(hdr)); 23462237Smaybee ASSERT((hdr->b_flags & ARC_IO_IN_PROGRESS) == 0); 23472237Smaybee ASSERT(hdr->b_acb == 0); 2348789Sahrens acb = kmem_zalloc(sizeof (arc_callback_t), KM_SLEEP); 2349789Sahrens acb->acb_done = done; 2350789Sahrens acb->acb_private = private; 2351789Sahrens acb->acb_byteswap = (arc_byteswap_func_t *)-1; 2352789Sahrens hdr->b_acb = acb; 23531544Seschrock hdr->b_flags |= ARC_IO_IN_PROGRESS; 23543093Sahrens arc_cksum_compute(buf); 23551775Sbillm rzio = zio_write(pio, spa, checksum, compress, ncopies, txg, bp, 23561544Seschrock buf->b_data, hdr->b_size, arc_write_done, buf, priority, flags, zb); 2357789Sahrens 2358789Sahrens if (arc_flags & ARC_WAIT) 2359789Sahrens return (zio_wait(rzio)); 2360789Sahrens 2361789Sahrens ASSERT(arc_flags & ARC_NOWAIT); 2362789Sahrens zio_nowait(rzio); 2363789Sahrens 2364789Sahrens return (0); 2365789Sahrens } 2366789Sahrens 2367789Sahrens int 2368789Sahrens arc_free(zio_t *pio, spa_t *spa, uint64_t txg, blkptr_t *bp, 2369789Sahrens zio_done_func_t *done, void *private, uint32_t arc_flags) 2370789Sahrens { 2371789Sahrens arc_buf_hdr_t *ab; 2372789Sahrens kmutex_t *hash_lock; 2373789Sahrens zio_t *zio; 2374789Sahrens 2375789Sahrens /* 2376789Sahrens * If this buffer is in the cache, release it, so it 2377789Sahrens * can be re-used. 2378789Sahrens */ 2379789Sahrens ab = buf_hash_find(spa, BP_IDENTITY(bp), bp->blk_birth, &hash_lock); 2380789Sahrens if (ab != NULL) { 2381789Sahrens /* 2382789Sahrens * The checksum of blocks to free is not always 2383789Sahrens * preserved (eg. on the deadlist). However, if it is 2384789Sahrens * nonzero, it should match what we have in the cache. 2385789Sahrens */ 2386789Sahrens ASSERT(bp->blk_cksum.zc_word[0] == 0 || 2387789Sahrens ab->b_cksum0 == bp->blk_cksum.zc_word[0]); 23881990Smaybee if (ab->b_state != arc.anon) 23891990Smaybee arc_change_state(arc.anon, ab, hash_lock); 23902391Smaybee if (HDR_IO_IN_PROGRESS(ab)) { 23912391Smaybee /* 23922391Smaybee * This should only happen when we prefetch. 23932391Smaybee */ 23942391Smaybee ASSERT(ab->b_flags & ARC_PREFETCH); 23952391Smaybee ASSERT3U(ab->b_datacnt, ==, 1); 23962391Smaybee ab->b_flags |= ARC_FREED_IN_READ; 23972391Smaybee if (HDR_IN_HASH_TABLE(ab)) 23982391Smaybee buf_hash_remove(ab); 23992391Smaybee ab->b_arc_access = 0; 24002391Smaybee bzero(&ab->b_dva, sizeof (dva_t)); 24012391Smaybee ab->b_birth = 0; 24022391Smaybee ab->b_cksum0 = 0; 24032391Smaybee ab->b_buf->b_efunc = NULL; 24042391Smaybee ab->b_buf->b_private = NULL; 24052391Smaybee mutex_exit(hash_lock); 24062391Smaybee } else if (refcount_is_zero(&ab->b_refcnt)) { 2407789Sahrens mutex_exit(hash_lock); 24081544Seschrock arc_hdr_destroy(ab); 2409789Sahrens atomic_add_64(&arc.deleted, 1); 2410789Sahrens } else { 24111589Smaybee /* 24122391Smaybee * We still have an active reference on this 24132391Smaybee * buffer. This can happen, e.g., from 24142391Smaybee * dbuf_unoverride(). 24151589Smaybee */ 24162391Smaybee ASSERT(!HDR_IN_HASH_TABLE(ab)); 2417789Sahrens ab->b_arc_access = 0; 2418789Sahrens bzero(&ab->b_dva, sizeof (dva_t)); 2419789Sahrens ab->b_birth = 0; 2420789Sahrens ab->b_cksum0 = 0; 24211544Seschrock ab->b_buf->b_efunc = NULL; 24221544Seschrock ab->b_buf->b_private = NULL; 2423789Sahrens mutex_exit(hash_lock); 2424789Sahrens } 2425789Sahrens } 2426789Sahrens 2427789Sahrens zio = zio_free(pio, spa, txg, bp, done, private); 2428789Sahrens 2429789Sahrens if (arc_flags & ARC_WAIT) 2430789Sahrens return (zio_wait(zio)); 2431789Sahrens 2432789Sahrens ASSERT(arc_flags & ARC_NOWAIT); 2433789Sahrens zio_nowait(zio); 2434789Sahrens 2435789Sahrens return (0); 2436789Sahrens } 2437789Sahrens 2438789Sahrens void 2439789Sahrens arc_tempreserve_clear(uint64_t tempreserve) 2440789Sahrens { 2441789Sahrens atomic_add_64(&arc_tempreserve, -tempreserve); 2442789Sahrens ASSERT((int64_t)arc_tempreserve >= 0); 2443789Sahrens } 2444789Sahrens 2445789Sahrens int 2446789Sahrens arc_tempreserve_space(uint64_t tempreserve) 2447789Sahrens { 2448789Sahrens #ifdef ZFS_DEBUG 2449789Sahrens /* 2450789Sahrens * Once in a while, fail for no reason. Everything should cope. 2451789Sahrens */ 2452789Sahrens if (spa_get_random(10000) == 0) { 2453789Sahrens dprintf("forcing random failure\n"); 2454789Sahrens return (ERESTART); 2455789Sahrens } 2456789Sahrens #endif 2457982Smaybee if (tempreserve > arc.c/4 && !arc.no_grow) 2458982Smaybee arc.c = MIN(arc.c_max, tempreserve * 4); 2459982Smaybee if (tempreserve > arc.c) 2460982Smaybee return (ENOMEM); 2461982Smaybee 2462789Sahrens /* 2463982Smaybee * Throttle writes when the amount of dirty data in the cache 2464982Smaybee * gets too large. We try to keep the cache less than half full 2465982Smaybee * of dirty blocks so that our sync times don't grow too large. 2466982Smaybee * Note: if two requests come in concurrently, we might let them 2467982Smaybee * both succeed, when one of them should fail. Not a huge deal. 2468982Smaybee * 2469982Smaybee * XXX The limit should be adjusted dynamically to keep the time 2470982Smaybee * to sync a dataset fixed (around 1-5 seconds?). 2471789Sahrens */ 2472789Sahrens 2473982Smaybee if (tempreserve + arc_tempreserve + arc.anon->size > arc.c / 2 && 2474982Smaybee arc_tempreserve + arc.anon->size > arc.c / 4) { 2475789Sahrens dprintf("failing, arc_tempreserve=%lluK anon=%lluK " 2476789Sahrens "tempreserve=%lluK arc.c=%lluK\n", 2477789Sahrens arc_tempreserve>>10, arc.anon->lsize>>10, 2478789Sahrens tempreserve>>10, arc.c>>10); 2479789Sahrens return (ERESTART); 2480789Sahrens } 2481789Sahrens atomic_add_64(&arc_tempreserve, tempreserve); 2482789Sahrens return (0); 2483789Sahrens } 2484789Sahrens 2485789Sahrens void 2486789Sahrens arc_init(void) 2487789Sahrens { 2488789Sahrens mutex_init(&arc_reclaim_thr_lock, NULL, MUTEX_DEFAULT, NULL); 2489789Sahrens cv_init(&arc_reclaim_thr_cv, NULL, CV_DEFAULT, NULL); 2490789Sahrens 24912391Smaybee /* Convert seconds to clock ticks */ 24922638Sperrin arc_min_prefetch_lifespan = 1 * hz; 24932391Smaybee 2494789Sahrens /* Start out with 1/8 of all memory */ 2495789Sahrens arc.c = physmem * PAGESIZE / 8; 2496789Sahrens 2497789Sahrens #ifdef _KERNEL 2498789Sahrens /* 2499789Sahrens * On architectures where the physical memory can be larger 2500789Sahrens * than the addressable space (intel in 32-bit mode), we may 2501789Sahrens * need to limit the cache to 1/8 of VM size. 2502789Sahrens */ 2503789Sahrens arc.c = MIN(arc.c, vmem_size(heap_arena, VMEM_ALLOC | VMEM_FREE) / 8); 2504789Sahrens #endif 2505789Sahrens 2506982Smaybee /* set min cache to 1/32 of all memory, or 64MB, whichever is more */ 2507789Sahrens arc.c_min = MAX(arc.c / 4, 64<<20); 2508982Smaybee /* set max to 3/4 of all memory, or all but 1GB, whichever is more */ 2509789Sahrens if (arc.c * 8 >= 1<<30) 2510789Sahrens arc.c_max = (arc.c * 8) - (1<<30); 2511789Sahrens else 2512789Sahrens arc.c_max = arc.c_min; 2513789Sahrens arc.c_max = MAX(arc.c * 6, arc.c_max); 25142885Sahrens 25152885Sahrens /* 25162885Sahrens * Allow the tunables to override our calculations if they are 25172885Sahrens * reasonable (ie. over 64MB) 25182885Sahrens */ 25192885Sahrens if (zfs_arc_max > 64<<20 && zfs_arc_max < physmem * PAGESIZE) 25202885Sahrens arc.c_max = zfs_arc_max; 25212885Sahrens if (zfs_arc_min > 64<<20 && zfs_arc_min <= arc.c_max) 25222885Sahrens arc.c_min = zfs_arc_min; 25232885Sahrens 2524789Sahrens arc.c = arc.c_max; 2525789Sahrens arc.p = (arc.c >> 1); 2526789Sahrens 2527789Sahrens /* if kmem_flags are set, lets try to use less memory */ 2528789Sahrens if (kmem_debugging()) 2529789Sahrens arc.c = arc.c / 2; 2530789Sahrens if (arc.c < arc.c_min) 2531789Sahrens arc.c = arc.c_min; 2532789Sahrens 2533789Sahrens arc.anon = &ARC_anon; 25341544Seschrock arc.mru = &ARC_mru; 25351544Seschrock arc.mru_ghost = &ARC_mru_ghost; 25361544Seschrock arc.mfu = &ARC_mfu; 25371544Seschrock arc.mfu_ghost = &ARC_mfu_ghost; 25381544Seschrock arc.size = 0; 2539789Sahrens 25402688Smaybee arc.hits = 0; 25412688Smaybee arc.recycle_miss = 0; 25422688Smaybee arc.evict_skip = 0; 25432688Smaybee arc.mutex_miss = 0; 25442688Smaybee 25452856Snd150628 mutex_init(&arc.anon->mtx, NULL, MUTEX_DEFAULT, NULL); 25462856Snd150628 mutex_init(&arc.mru->mtx, NULL, MUTEX_DEFAULT, NULL); 25472856Snd150628 mutex_init(&arc.mru_ghost->mtx, NULL, MUTEX_DEFAULT, NULL); 25482856Snd150628 mutex_init(&arc.mfu->mtx, NULL, MUTEX_DEFAULT, NULL); 25492856Snd150628 mutex_init(&arc.mfu_ghost->mtx, NULL, MUTEX_DEFAULT, NULL); 25502856Snd150628 25511544Seschrock list_create(&arc.mru->list, sizeof (arc_buf_hdr_t), 2552789Sahrens offsetof(arc_buf_hdr_t, b_arc_node)); 25531544Seschrock list_create(&arc.mru_ghost->list, sizeof (arc_buf_hdr_t), 2554789Sahrens offsetof(arc_buf_hdr_t, b_arc_node)); 25551544Seschrock list_create(&arc.mfu->list, sizeof (arc_buf_hdr_t), 2556789Sahrens offsetof(arc_buf_hdr_t, b_arc_node)); 25571544Seschrock list_create(&arc.mfu_ghost->list, sizeof (arc_buf_hdr_t), 2558789Sahrens offsetof(arc_buf_hdr_t, b_arc_node)); 2559789Sahrens 2560789Sahrens buf_init(); 2561789Sahrens 2562789Sahrens arc_thread_exit = 0; 25631544Seschrock arc_eviction_list = NULL; 25641544Seschrock mutex_init(&arc_eviction_mtx, NULL, MUTEX_DEFAULT, NULL); 25652887Smaybee bzero(&arc_eviction_hdr, sizeof (arc_buf_hdr_t)); 2566789Sahrens 2567789Sahrens (void) thread_create(NULL, 0, arc_reclaim_thread, NULL, 0, &p0, 2568789Sahrens TS_RUN, minclsyspri); 25693158Smaybee 25703158Smaybee arc_dead = FALSE; 2571789Sahrens } 2572789Sahrens 2573789Sahrens void 2574789Sahrens arc_fini(void) 2575789Sahrens { 2576789Sahrens mutex_enter(&arc_reclaim_thr_lock); 2577789Sahrens arc_thread_exit = 1; 2578789Sahrens while (arc_thread_exit != 0) 2579789Sahrens cv_wait(&arc_reclaim_thr_cv, &arc_reclaim_thr_lock); 2580789Sahrens mutex_exit(&arc_reclaim_thr_lock); 2581789Sahrens 2582789Sahrens arc_flush(); 2583789Sahrens 2584789Sahrens arc_dead = TRUE; 2585789Sahrens 25861544Seschrock mutex_destroy(&arc_eviction_mtx); 2587789Sahrens mutex_destroy(&arc_reclaim_thr_lock); 2588789Sahrens cv_destroy(&arc_reclaim_thr_cv); 2589789Sahrens 25901544Seschrock list_destroy(&arc.mru->list); 25911544Seschrock list_destroy(&arc.mru_ghost->list); 25921544Seschrock list_destroy(&arc.mfu->list); 25931544Seschrock list_destroy(&arc.mfu_ghost->list); 2594789Sahrens 25952856Snd150628 mutex_destroy(&arc.anon->mtx); 25962856Snd150628 mutex_destroy(&arc.mru->mtx); 25972856Snd150628 mutex_destroy(&arc.mru_ghost->mtx); 25982856Snd150628 mutex_destroy(&arc.mfu->mtx); 25992856Snd150628 mutex_destroy(&arc.mfu_ghost->mtx); 26002856Snd150628 2601789Sahrens buf_fini(); 2602789Sahrens } 2603