xref: /onnv-gate/usr/src/uts/common/fs/zfs/arc.c (revision 3897)
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 /*
223403Sbmc  * Copyright 2007 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 /*
293403Sbmc  * DVA-based Adjustable Replacement 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>
1273403Sbmc #include <sys/kstat.h>
128789Sahrens 
129789Sahrens static kmutex_t		arc_reclaim_thr_lock;
130789Sahrens static kcondvar_t	arc_reclaim_thr_cv;	/* used to signal reclaim thr */
131789Sahrens static uint8_t		arc_thread_exit;
132789Sahrens 
1331484Sek110237 #define	ARC_REDUCE_DNLC_PERCENT	3
1341484Sek110237 uint_t arc_reduce_dnlc_percent = ARC_REDUCE_DNLC_PERCENT;
1351484Sek110237 
136789Sahrens typedef enum arc_reclaim_strategy {
137789Sahrens 	ARC_RECLAIM_AGGR,		/* Aggressive reclaim strategy */
138789Sahrens 	ARC_RECLAIM_CONS		/* Conservative reclaim strategy */
139789Sahrens } arc_reclaim_strategy_t;
140789Sahrens 
141789Sahrens /* number of seconds before growing cache again */
142789Sahrens static int		arc_grow_retry = 60;
143789Sahrens 
1442391Smaybee /*
1452638Sperrin  * minimum lifespan of a prefetch block in clock ticks
1462638Sperrin  * (initialized in arc_init())
1472391Smaybee  */
1482638Sperrin static int		arc_min_prefetch_lifespan;
1492391Smaybee 
150789Sahrens static int arc_dead;
151789Sahrens 
152789Sahrens /*
1532885Sahrens  * These tunables are for performance analysis.
1542885Sahrens  */
1552885Sahrens uint64_t zfs_arc_max;
1562885Sahrens uint64_t zfs_arc_min;
1572885Sahrens 
1582885Sahrens /*
159789Sahrens  * Note that buffers can be on one of 5 states:
160789Sahrens  *	ARC_anon	- anonymous (discussed below)
1611544Seschrock  *	ARC_mru		- recently used, currently cached
1621544Seschrock  *	ARC_mru_ghost	- recentely used, no longer in cache
1631544Seschrock  *	ARC_mfu		- frequently used, currently cached
1641544Seschrock  *	ARC_mfu_ghost	- frequently used, no longer in cache
165789Sahrens  * When there are no active references to the buffer, they
166789Sahrens  * are linked onto one of the lists in arc.  These are the
167789Sahrens  * only buffers that can be evicted or deleted.
168789Sahrens  *
169789Sahrens  * Anonymous buffers are buffers that are not associated with
170789Sahrens  * a DVA.  These are buffers that hold dirty block copies
171789Sahrens  * before they are written to stable storage.  By definition,
1721544Seschrock  * they are "ref'd" and are considered part of arc_mru
173789Sahrens  * that cannot be freed.  Generally, they will aquire a DVA
1741544Seschrock  * as they are written and migrate onto the arc_mru list.
175789Sahrens  */
176789Sahrens 
177789Sahrens typedef struct arc_state {
1783403Sbmc 	list_t	arcs_list;	/* linked list of evictable buffer in state */
1793403Sbmc 	uint64_t arcs_lsize;	/* total size of buffers in the linked list */
1803403Sbmc 	uint64_t arcs_size;	/* total size of all buffers in this state */
1813403Sbmc 	kmutex_t arcs_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 
1913403Sbmc typedef struct arc_stats {
1923403Sbmc 	kstat_named_t arcstat_hits;
1933403Sbmc 	kstat_named_t arcstat_misses;
1943403Sbmc 	kstat_named_t arcstat_demand_data_hits;
1953403Sbmc 	kstat_named_t arcstat_demand_data_misses;
1963403Sbmc 	kstat_named_t arcstat_demand_metadata_hits;
1973403Sbmc 	kstat_named_t arcstat_demand_metadata_misses;
1983403Sbmc 	kstat_named_t arcstat_prefetch_data_hits;
1993403Sbmc 	kstat_named_t arcstat_prefetch_data_misses;
2003403Sbmc 	kstat_named_t arcstat_prefetch_metadata_hits;
2013403Sbmc 	kstat_named_t arcstat_prefetch_metadata_misses;
2023403Sbmc 	kstat_named_t arcstat_mru_hits;
2033403Sbmc 	kstat_named_t arcstat_mru_ghost_hits;
2043403Sbmc 	kstat_named_t arcstat_mfu_hits;
2053403Sbmc 	kstat_named_t arcstat_mfu_ghost_hits;
2063403Sbmc 	kstat_named_t arcstat_deleted;
2073403Sbmc 	kstat_named_t arcstat_recycle_miss;
2083403Sbmc 	kstat_named_t arcstat_mutex_miss;
2093403Sbmc 	kstat_named_t arcstat_evict_skip;
2103403Sbmc 	kstat_named_t arcstat_hash_elements;
2113403Sbmc 	kstat_named_t arcstat_hash_elements_max;
2123403Sbmc 	kstat_named_t arcstat_hash_collisions;
2133403Sbmc 	kstat_named_t arcstat_hash_chains;
2143403Sbmc 	kstat_named_t arcstat_hash_chain_max;
2153403Sbmc 	kstat_named_t arcstat_p;
2163403Sbmc 	kstat_named_t arcstat_c;
2173403Sbmc 	kstat_named_t arcstat_c_min;
2183403Sbmc 	kstat_named_t arcstat_c_max;
2193403Sbmc 	kstat_named_t arcstat_size;
2203403Sbmc } arc_stats_t;
2213403Sbmc 
2223403Sbmc static arc_stats_t arc_stats = {
2233403Sbmc 	{ "hits",			KSTAT_DATA_UINT64 },
2243403Sbmc 	{ "misses",			KSTAT_DATA_UINT64 },
2253403Sbmc 	{ "demand_data_hits",		KSTAT_DATA_UINT64 },
2263403Sbmc 	{ "demand_data_misses",		KSTAT_DATA_UINT64 },
2273403Sbmc 	{ "demand_metadata_hits",	KSTAT_DATA_UINT64 },
2283403Sbmc 	{ "demand_metadata_misses",	KSTAT_DATA_UINT64 },
2293403Sbmc 	{ "prefetch_data_hits",		KSTAT_DATA_UINT64 },
2303403Sbmc 	{ "prefetch_data_misses",	KSTAT_DATA_UINT64 },
2313403Sbmc 	{ "prefetch_metadata_hits",	KSTAT_DATA_UINT64 },
2323403Sbmc 	{ "prefetch_metadata_misses",	KSTAT_DATA_UINT64 },
2333403Sbmc 	{ "mru_hits",			KSTAT_DATA_UINT64 },
2343403Sbmc 	{ "mru_ghost_hits",		KSTAT_DATA_UINT64 },
2353403Sbmc 	{ "mfu_hits",			KSTAT_DATA_UINT64 },
2363403Sbmc 	{ "mfu_ghost_hits",		KSTAT_DATA_UINT64 },
2373403Sbmc 	{ "deleted",			KSTAT_DATA_UINT64 },
2383403Sbmc 	{ "recycle_miss",		KSTAT_DATA_UINT64 },
2393403Sbmc 	{ "mutex_miss",			KSTAT_DATA_UINT64 },
2403403Sbmc 	{ "evict_skip",			KSTAT_DATA_UINT64 },
2413403Sbmc 	{ "hash_elements",		KSTAT_DATA_UINT64 },
2423403Sbmc 	{ "hash_elements_max",		KSTAT_DATA_UINT64 },
2433403Sbmc 	{ "hash_collisions",		KSTAT_DATA_UINT64 },
2443403Sbmc 	{ "hash_chains",		KSTAT_DATA_UINT64 },
2453403Sbmc 	{ "hash_chain_max",		KSTAT_DATA_UINT64 },
2463403Sbmc 	{ "p",				KSTAT_DATA_UINT64 },
2473403Sbmc 	{ "c",				KSTAT_DATA_UINT64 },
2483403Sbmc 	{ "c_min",			KSTAT_DATA_UINT64 },
2493403Sbmc 	{ "c_max",			KSTAT_DATA_UINT64 },
2503403Sbmc 	{ "size",			KSTAT_DATA_UINT64 }
2513403Sbmc };
252789Sahrens 
2533403Sbmc #define	ARCSTAT(stat)	(arc_stats.stat.value.ui64)
2543403Sbmc 
2553403Sbmc #define	ARCSTAT_INCR(stat, val) \
2563403Sbmc 	atomic_add_64(&arc_stats.stat.value.ui64, (val));
2573403Sbmc 
2583403Sbmc #define	ARCSTAT_BUMP(stat) 	ARCSTAT_INCR(stat, 1)
2593403Sbmc #define	ARCSTAT_BUMPDOWN(stat)	ARCSTAT_INCR(stat, -1)
2603403Sbmc 
2613403Sbmc #define	ARCSTAT_MAX(stat, val) {					\
2623403Sbmc 	uint64_t m;							\
2633403Sbmc 	while ((val) > (m = arc_stats.stat.value.ui64) &&		\
2643403Sbmc 	    (m != atomic_cas_64(&arc_stats.stat.value.ui64, m, (val))))	\
2653403Sbmc 		continue;						\
2663403Sbmc }
2673403Sbmc 
2683403Sbmc #define	ARCSTAT_MAXSTAT(stat) \
2693403Sbmc 	ARCSTAT_MAX(stat##_max, arc_stats.stat.value.ui64)
270789Sahrens 
2713403Sbmc /*
2723403Sbmc  * We define a macro to allow ARC hits/misses to be easily broken down by
2733403Sbmc  * two separate conditions, giving a total of four different subtypes for
2743403Sbmc  * each of hits and misses (so eight statistics total).
2753403Sbmc  */
2763403Sbmc #define	ARCSTAT_CONDSTAT(cond1, stat1, notstat1, cond2, stat2, notstat2, stat) \
2773403Sbmc 	if (cond1) {							\
2783403Sbmc 		if (cond2) {						\
2793403Sbmc 			ARCSTAT_BUMP(arcstat_##stat1##_##stat2##_##stat); \
2803403Sbmc 		} else {						\
2813403Sbmc 			ARCSTAT_BUMP(arcstat_##stat1##_##notstat2##_##stat); \
2823403Sbmc 		}							\
2833403Sbmc 	} else {							\
2843403Sbmc 		if (cond2) {						\
2853403Sbmc 			ARCSTAT_BUMP(arcstat_##notstat1##_##stat2##_##stat); \
2863403Sbmc 		} else {						\
2873403Sbmc 			ARCSTAT_BUMP(arcstat_##notstat1##_##notstat2##_##stat);\
2883403Sbmc 		}							\
2893403Sbmc 	}
290789Sahrens 
2913403Sbmc kstat_t			*arc_ksp;
2923403Sbmc static arc_state_t 	*arc_anon;
2933403Sbmc static arc_state_t	*arc_mru;
2943403Sbmc static arc_state_t	*arc_mru_ghost;
2953403Sbmc static arc_state_t	*arc_mfu;
2963403Sbmc static arc_state_t	*arc_mfu_ghost;
2973403Sbmc 
2983403Sbmc /*
2993403Sbmc  * There are several ARC variables that are critical to export as kstats --
3003403Sbmc  * but we don't want to have to grovel around in the kstat whenever we wish to
3013403Sbmc  * manipulate them.  For these variables, we therefore define them to be in
3023403Sbmc  * terms of the statistic variable.  This assures that we are not introducing
3033403Sbmc  * the possibility of inconsistency by having shadow copies of the variables,
3043403Sbmc  * while still allowing the code to be readable.
3053403Sbmc  */
3063403Sbmc #define	arc_size	ARCSTAT(arcstat_size)	/* actual total arc size */
3073403Sbmc #define	arc_p		ARCSTAT(arcstat_p)	/* target size of MRU */
3083403Sbmc #define	arc_c		ARCSTAT(arcstat_c)	/* target size of cache */
3093403Sbmc #define	arc_c_min	ARCSTAT(arcstat_c_min)	/* min target cache size */
3103403Sbmc #define	arc_c_max	ARCSTAT(arcstat_c_max)	/* max target cache size */
3113403Sbmc 
3123403Sbmc static int		arc_no_grow;	/* Don't try to grow cache size */
3133403Sbmc static uint64_t		arc_tempreserve;
314789Sahrens 
315789Sahrens typedef struct arc_callback arc_callback_t;
316789Sahrens 
317789Sahrens struct arc_callback {
3183547Smaybee 	void			*acb_private;
319789Sahrens 	arc_done_func_t		*acb_done;
320789Sahrens 	arc_byteswap_func_t	*acb_byteswap;
321789Sahrens 	arc_buf_t		*acb_buf;
322789Sahrens 	zio_t			*acb_zio_dummy;
323789Sahrens 	arc_callback_t		*acb_next;
324789Sahrens };
325789Sahrens 
3263547Smaybee typedef struct arc_write_callback arc_write_callback_t;
3273547Smaybee 
3283547Smaybee struct arc_write_callback {
3293547Smaybee 	void		*awcb_private;
3303547Smaybee 	arc_done_func_t	*awcb_ready;
3313547Smaybee 	arc_done_func_t	*awcb_done;
3323547Smaybee 	arc_buf_t	*awcb_buf;
3333547Smaybee };
3343547Smaybee 
335789Sahrens struct arc_buf_hdr {
336789Sahrens 	/* protected by hash lock */
337789Sahrens 	dva_t			b_dva;
338789Sahrens 	uint64_t		b_birth;
339789Sahrens 	uint64_t		b_cksum0;
340789Sahrens 
3413093Sahrens 	kmutex_t		b_freeze_lock;
3423093Sahrens 	zio_cksum_t		*b_freeze_cksum;
3433093Sahrens 
344789Sahrens 	arc_buf_hdr_t		*b_hash_next;
345789Sahrens 	arc_buf_t		*b_buf;
346789Sahrens 	uint32_t		b_flags;
3471544Seschrock 	uint32_t		b_datacnt;
348789Sahrens 
3493290Sjohansen 	arc_callback_t		*b_acb;
350789Sahrens 	kcondvar_t		b_cv;
3513290Sjohansen 
3523290Sjohansen 	/* immutable */
3533290Sjohansen 	arc_buf_contents_t	b_type;
3543290Sjohansen 	uint64_t		b_size;
3553290Sjohansen 	spa_t			*b_spa;
356789Sahrens 
357789Sahrens 	/* protected by arc state mutex */
358789Sahrens 	arc_state_t		*b_state;
359789Sahrens 	list_node_t		b_arc_node;
360789Sahrens 
361789Sahrens 	/* updated atomically */
362789Sahrens 	clock_t			b_arc_access;
363789Sahrens 
364789Sahrens 	/* self protecting */
365789Sahrens 	refcount_t		b_refcnt;
366789Sahrens };
367789Sahrens 
3681544Seschrock static arc_buf_t *arc_eviction_list;
3691544Seschrock static kmutex_t arc_eviction_mtx;
3702887Smaybee static arc_buf_hdr_t arc_eviction_hdr;
3712688Smaybee static void arc_get_data_buf(arc_buf_t *buf);
3722688Smaybee static void arc_access(arc_buf_hdr_t *buf, kmutex_t *hash_lock);
3731544Seschrock 
3741544Seschrock #define	GHOST_STATE(state)	\
3753403Sbmc 	((state) == arc_mru_ghost || (state) == arc_mfu_ghost)
3761544Seschrock 
377789Sahrens /*
378789Sahrens  * Private ARC flags.  These flags are private ARC only flags that will show up
379789Sahrens  * in b_flags in the arc_hdr_buf_t.  Some flags are publicly declared, and can
380789Sahrens  * be passed in as arc_flags in things like arc_read.  However, these flags
381789Sahrens  * should never be passed and should only be set by ARC code.  When adding new
382789Sahrens  * public flags, make sure not to smash the private ones.
383789Sahrens  */
384789Sahrens 
3851544Seschrock #define	ARC_IN_HASH_TABLE	(1 << 9)	/* this buffer is hashed */
386789Sahrens #define	ARC_IO_IN_PROGRESS	(1 << 10)	/* I/O in progress for buf */
387789Sahrens #define	ARC_IO_ERROR		(1 << 11)	/* I/O failed for buf */
388789Sahrens #define	ARC_FREED_IN_READ	(1 << 12)	/* buf freed while in read */
3891544Seschrock #define	ARC_BUF_AVAILABLE	(1 << 13)	/* block not in active use */
3902391Smaybee #define	ARC_INDIRECT		(1 << 14)	/* this is an indirect block */
391789Sahrens 
3921544Seschrock #define	HDR_IN_HASH_TABLE(hdr)	((hdr)->b_flags & ARC_IN_HASH_TABLE)
393789Sahrens #define	HDR_IO_IN_PROGRESS(hdr)	((hdr)->b_flags & ARC_IO_IN_PROGRESS)
394789Sahrens #define	HDR_IO_ERROR(hdr)	((hdr)->b_flags & ARC_IO_ERROR)
395789Sahrens #define	HDR_FREED_IN_READ(hdr)	((hdr)->b_flags & ARC_FREED_IN_READ)
3961544Seschrock #define	HDR_BUF_AVAILABLE(hdr)	((hdr)->b_flags & ARC_BUF_AVAILABLE)
397789Sahrens 
398789Sahrens /*
399789Sahrens  * Hash table routines
400789Sahrens  */
401789Sahrens 
402789Sahrens #define	HT_LOCK_PAD	64
403789Sahrens 
404789Sahrens struct ht_lock {
405789Sahrens 	kmutex_t	ht_lock;
406789Sahrens #ifdef _KERNEL
407789Sahrens 	unsigned char	pad[(HT_LOCK_PAD - sizeof (kmutex_t))];
408789Sahrens #endif
409789Sahrens };
410789Sahrens 
411789Sahrens #define	BUF_LOCKS 256
412789Sahrens typedef struct buf_hash_table {
413789Sahrens 	uint64_t ht_mask;
414789Sahrens 	arc_buf_hdr_t **ht_table;
415789Sahrens 	struct ht_lock ht_locks[BUF_LOCKS];
416789Sahrens } buf_hash_table_t;
417789Sahrens 
418789Sahrens static buf_hash_table_t buf_hash_table;
419789Sahrens 
420789Sahrens #define	BUF_HASH_INDEX(spa, dva, birth) \
421789Sahrens 	(buf_hash(spa, dva, birth) & buf_hash_table.ht_mask)
422789Sahrens #define	BUF_HASH_LOCK_NTRY(idx) (buf_hash_table.ht_locks[idx & (BUF_LOCKS-1)])
423789Sahrens #define	BUF_HASH_LOCK(idx)	(&(BUF_HASH_LOCK_NTRY(idx).ht_lock))
424789Sahrens #define	HDR_LOCK(buf) \
425789Sahrens 	(BUF_HASH_LOCK(BUF_HASH_INDEX(buf->b_spa, &buf->b_dva, buf->b_birth)))
426789Sahrens 
427789Sahrens uint64_t zfs_crc64_table[256];
428789Sahrens 
429789Sahrens static uint64_t
430789Sahrens buf_hash(spa_t *spa, dva_t *dva, uint64_t birth)
431789Sahrens {
432789Sahrens 	uintptr_t spav = (uintptr_t)spa;
433789Sahrens 	uint8_t *vdva = (uint8_t *)dva;
434789Sahrens 	uint64_t crc = -1ULL;
435789Sahrens 	int i;
436789Sahrens 
437789Sahrens 	ASSERT(zfs_crc64_table[128] == ZFS_CRC64_POLY);
438789Sahrens 
439789Sahrens 	for (i = 0; i < sizeof (dva_t); i++)
440789Sahrens 		crc = (crc >> 8) ^ zfs_crc64_table[(crc ^ vdva[i]) & 0xFF];
441789Sahrens 
442789Sahrens 	crc ^= (spav>>8) ^ birth;
443789Sahrens 
444789Sahrens 	return (crc);
445789Sahrens }
446789Sahrens 
447789Sahrens #define	BUF_EMPTY(buf)						\
448789Sahrens 	((buf)->b_dva.dva_word[0] == 0 &&			\
449789Sahrens 	(buf)->b_dva.dva_word[1] == 0 &&			\
450789Sahrens 	(buf)->b_birth == 0)
451789Sahrens 
452789Sahrens #define	BUF_EQUAL(spa, dva, birth, buf)				\
453789Sahrens 	((buf)->b_dva.dva_word[0] == (dva)->dva_word[0]) &&	\
454789Sahrens 	((buf)->b_dva.dva_word[1] == (dva)->dva_word[1]) &&	\
455789Sahrens 	((buf)->b_birth == birth) && ((buf)->b_spa == spa)
456789Sahrens 
457789Sahrens static arc_buf_hdr_t *
458789Sahrens buf_hash_find(spa_t *spa, dva_t *dva, uint64_t birth, kmutex_t **lockp)
459789Sahrens {
460789Sahrens 	uint64_t idx = BUF_HASH_INDEX(spa, dva, birth);
461789Sahrens 	kmutex_t *hash_lock = BUF_HASH_LOCK(idx);
462789Sahrens 	arc_buf_hdr_t *buf;
463789Sahrens 
464789Sahrens 	mutex_enter(hash_lock);
465789Sahrens 	for (buf = buf_hash_table.ht_table[idx]; buf != NULL;
466789Sahrens 	    buf = buf->b_hash_next) {
467789Sahrens 		if (BUF_EQUAL(spa, dva, birth, buf)) {
468789Sahrens 			*lockp = hash_lock;
469789Sahrens 			return (buf);
470789Sahrens 		}
471789Sahrens 	}
472789Sahrens 	mutex_exit(hash_lock);
473789Sahrens 	*lockp = NULL;
474789Sahrens 	return (NULL);
475789Sahrens }
476789Sahrens 
477789Sahrens /*
478789Sahrens  * Insert an entry into the hash table.  If there is already an element
479789Sahrens  * equal to elem in the hash table, then the already existing element
480789Sahrens  * will be returned and the new element will not be inserted.
481789Sahrens  * Otherwise returns NULL.
482789Sahrens  */
483789Sahrens static arc_buf_hdr_t *
484789Sahrens buf_hash_insert(arc_buf_hdr_t *buf, kmutex_t **lockp)
485789Sahrens {
486789Sahrens 	uint64_t idx = BUF_HASH_INDEX(buf->b_spa, &buf->b_dva, buf->b_birth);
487789Sahrens 	kmutex_t *hash_lock = BUF_HASH_LOCK(idx);
488789Sahrens 	arc_buf_hdr_t *fbuf;
4893403Sbmc 	uint32_t i;
490789Sahrens 
4911544Seschrock 	ASSERT(!HDR_IN_HASH_TABLE(buf));
492789Sahrens 	*lockp = hash_lock;
493789Sahrens 	mutex_enter(hash_lock);
494789Sahrens 	for (fbuf = buf_hash_table.ht_table[idx], i = 0; fbuf != NULL;
495789Sahrens 	    fbuf = fbuf->b_hash_next, i++) {
496789Sahrens 		if (BUF_EQUAL(buf->b_spa, &buf->b_dva, buf->b_birth, fbuf))
497789Sahrens 			return (fbuf);
498789Sahrens 	}
499789Sahrens 
500789Sahrens 	buf->b_hash_next = buf_hash_table.ht_table[idx];
501789Sahrens 	buf_hash_table.ht_table[idx] = buf;
5021544Seschrock 	buf->b_flags |= ARC_IN_HASH_TABLE;
503789Sahrens 
504789Sahrens 	/* collect some hash table performance data */
505789Sahrens 	if (i > 0) {
5063403Sbmc 		ARCSTAT_BUMP(arcstat_hash_collisions);
507789Sahrens 		if (i == 1)
5083403Sbmc 			ARCSTAT_BUMP(arcstat_hash_chains);
5093403Sbmc 
5103403Sbmc 		ARCSTAT_MAX(arcstat_hash_chain_max, i);
511789Sahrens 	}
5123403Sbmc 
5133403Sbmc 	ARCSTAT_BUMP(arcstat_hash_elements);
5143403Sbmc 	ARCSTAT_MAXSTAT(arcstat_hash_elements);
515789Sahrens 
516789Sahrens 	return (NULL);
517789Sahrens }
518789Sahrens 
519789Sahrens static void
520789Sahrens buf_hash_remove(arc_buf_hdr_t *buf)
521789Sahrens {
522789Sahrens 	arc_buf_hdr_t *fbuf, **bufp;
523789Sahrens 	uint64_t idx = BUF_HASH_INDEX(buf->b_spa, &buf->b_dva, buf->b_birth);
524789Sahrens 
525789Sahrens 	ASSERT(MUTEX_HELD(BUF_HASH_LOCK(idx)));
5261544Seschrock 	ASSERT(HDR_IN_HASH_TABLE(buf));
527789Sahrens 
528789Sahrens 	bufp = &buf_hash_table.ht_table[idx];
529789Sahrens 	while ((fbuf = *bufp) != buf) {
530789Sahrens 		ASSERT(fbuf != NULL);
531789Sahrens 		bufp = &fbuf->b_hash_next;
532789Sahrens 	}
533789Sahrens 	*bufp = buf->b_hash_next;
534789Sahrens 	buf->b_hash_next = NULL;
5351544Seschrock 	buf->b_flags &= ~ARC_IN_HASH_TABLE;
536789Sahrens 
537789Sahrens 	/* collect some hash table performance data */
5383403Sbmc 	ARCSTAT_BUMPDOWN(arcstat_hash_elements);
5393403Sbmc 
540789Sahrens 	if (buf_hash_table.ht_table[idx] &&
541789Sahrens 	    buf_hash_table.ht_table[idx]->b_hash_next == NULL)
5423403Sbmc 		ARCSTAT_BUMPDOWN(arcstat_hash_chains);
543789Sahrens }
544789Sahrens 
545789Sahrens /*
546789Sahrens  * Global data structures and functions for the buf kmem cache.
547789Sahrens  */
548789Sahrens static kmem_cache_t *hdr_cache;
549789Sahrens static kmem_cache_t *buf_cache;
550789Sahrens 
551789Sahrens static void
552789Sahrens buf_fini(void)
553789Sahrens {
554789Sahrens 	int i;
555789Sahrens 
556789Sahrens 	kmem_free(buf_hash_table.ht_table,
557789Sahrens 	    (buf_hash_table.ht_mask + 1) * sizeof (void *));
558789Sahrens 	for (i = 0; i < BUF_LOCKS; i++)
559789Sahrens 		mutex_destroy(&buf_hash_table.ht_locks[i].ht_lock);
560789Sahrens 	kmem_cache_destroy(hdr_cache);
561789Sahrens 	kmem_cache_destroy(buf_cache);
562789Sahrens }
563789Sahrens 
564789Sahrens /*
565789Sahrens  * Constructor callback - called when the cache is empty
566789Sahrens  * and a new buf is requested.
567789Sahrens  */
568789Sahrens /* ARGSUSED */
569789Sahrens static int
570789Sahrens hdr_cons(void *vbuf, void *unused, int kmflag)
571789Sahrens {
572789Sahrens 	arc_buf_hdr_t *buf = vbuf;
573789Sahrens 
574789Sahrens 	bzero(buf, sizeof (arc_buf_hdr_t));
575789Sahrens 	refcount_create(&buf->b_refcnt);
576789Sahrens 	cv_init(&buf->b_cv, NULL, CV_DEFAULT, NULL);
577789Sahrens 	return (0);
578789Sahrens }
579789Sahrens 
580789Sahrens /*
581789Sahrens  * Destructor callback - called when a cached buf is
582789Sahrens  * no longer required.
583789Sahrens  */
584789Sahrens /* ARGSUSED */
585789Sahrens static void
586789Sahrens hdr_dest(void *vbuf, void *unused)
587789Sahrens {
588789Sahrens 	arc_buf_hdr_t *buf = vbuf;
589789Sahrens 
590789Sahrens 	refcount_destroy(&buf->b_refcnt);
591789Sahrens 	cv_destroy(&buf->b_cv);
592789Sahrens }
593789Sahrens 
594789Sahrens /*
595789Sahrens  * Reclaim callback -- invoked when memory is low.
596789Sahrens  */
597789Sahrens /* ARGSUSED */
598789Sahrens static void
599789Sahrens hdr_recl(void *unused)
600789Sahrens {
601789Sahrens 	dprintf("hdr_recl called\n");
6023158Smaybee 	/*
6033158Smaybee 	 * umem calls the reclaim func when we destroy the buf cache,
6043158Smaybee 	 * which is after we do arc_fini().
6053158Smaybee 	 */
6063158Smaybee 	if (!arc_dead)
6073158Smaybee 		cv_signal(&arc_reclaim_thr_cv);
608789Sahrens }
609789Sahrens 
610789Sahrens static void
611789Sahrens buf_init(void)
612789Sahrens {
613789Sahrens 	uint64_t *ct;
6141544Seschrock 	uint64_t hsize = 1ULL << 12;
615789Sahrens 	int i, j;
616789Sahrens 
617789Sahrens 	/*
618789Sahrens 	 * The hash table is big enough to fill all of physical memory
6191544Seschrock 	 * with an average 64K block size.  The table will take up
6201544Seschrock 	 * totalmem*sizeof(void*)/64K (eg. 128KB/GB with 8-byte pointers).
621789Sahrens 	 */
6221544Seschrock 	while (hsize * 65536 < physmem * PAGESIZE)
623789Sahrens 		hsize <<= 1;
6241544Seschrock retry:
625789Sahrens 	buf_hash_table.ht_mask = hsize - 1;
6261544Seschrock 	buf_hash_table.ht_table =
6271544Seschrock 	    kmem_zalloc(hsize * sizeof (void*), KM_NOSLEEP);
6281544Seschrock 	if (buf_hash_table.ht_table == NULL) {
6291544Seschrock 		ASSERT(hsize > (1ULL << 8));
6301544Seschrock 		hsize >>= 1;
6311544Seschrock 		goto retry;
6321544Seschrock 	}
633789Sahrens 
634789Sahrens 	hdr_cache = kmem_cache_create("arc_buf_hdr_t", sizeof (arc_buf_hdr_t),
635789Sahrens 	    0, hdr_cons, hdr_dest, hdr_recl, NULL, NULL, 0);
636789Sahrens 	buf_cache = kmem_cache_create("arc_buf_t", sizeof (arc_buf_t),
637789Sahrens 	    0, NULL, NULL, NULL, NULL, NULL, 0);
638789Sahrens 
639789Sahrens 	for (i = 0; i < 256; i++)
640789Sahrens 		for (ct = zfs_crc64_table + i, *ct = i, j = 8; j > 0; j--)
641789Sahrens 			*ct = (*ct >> 1) ^ (-(*ct & 1) & ZFS_CRC64_POLY);
642789Sahrens 
643789Sahrens 	for (i = 0; i < BUF_LOCKS; i++) {
644789Sahrens 		mutex_init(&buf_hash_table.ht_locks[i].ht_lock,
645789Sahrens 		    NULL, MUTEX_DEFAULT, NULL);
646789Sahrens 	}
647789Sahrens }
648789Sahrens 
649789Sahrens #define	ARC_MINTIME	(hz>>4) /* 62 ms */
650789Sahrens 
651789Sahrens static void
6523093Sahrens arc_cksum_verify(arc_buf_t *buf)
6533093Sahrens {
6543093Sahrens 	zio_cksum_t zc;
6553093Sahrens 
6563312Sahrens 	if (!(zfs_flags & ZFS_DEBUG_MODIFY))
6573093Sahrens 		return;
6583093Sahrens 
6593093Sahrens 	mutex_enter(&buf->b_hdr->b_freeze_lock);
6603265Sahrens 	if (buf->b_hdr->b_freeze_cksum == NULL ||
6613265Sahrens 	    (buf->b_hdr->b_flags & ARC_IO_ERROR)) {
6623093Sahrens 		mutex_exit(&buf->b_hdr->b_freeze_lock);
6633093Sahrens 		return;
6643093Sahrens 	}
6653093Sahrens 	fletcher_2_native(buf->b_data, buf->b_hdr->b_size, &zc);
6663093Sahrens 	if (!ZIO_CHECKSUM_EQUAL(*buf->b_hdr->b_freeze_cksum, zc))
6673093Sahrens 		panic("buffer modified while frozen!");
6683093Sahrens 	mutex_exit(&buf->b_hdr->b_freeze_lock);
6693093Sahrens }
6703093Sahrens 
6713093Sahrens static void
6723093Sahrens arc_cksum_compute(arc_buf_t *buf)
6733093Sahrens {
6743312Sahrens 	if (!(zfs_flags & ZFS_DEBUG_MODIFY))
6753093Sahrens 		return;
6763093Sahrens 
6773093Sahrens 	mutex_enter(&buf->b_hdr->b_freeze_lock);
6783093Sahrens 	if (buf->b_hdr->b_freeze_cksum != NULL) {
6793093Sahrens 		mutex_exit(&buf->b_hdr->b_freeze_lock);
6803093Sahrens 		return;
6813093Sahrens 	}
6823093Sahrens 	buf->b_hdr->b_freeze_cksum = kmem_alloc(sizeof (zio_cksum_t), KM_SLEEP);
6833093Sahrens 	fletcher_2_native(buf->b_data, buf->b_hdr->b_size,
6843093Sahrens 	    buf->b_hdr->b_freeze_cksum);
6853093Sahrens 	mutex_exit(&buf->b_hdr->b_freeze_lock);
6863093Sahrens }
6873093Sahrens 
6883093Sahrens void
6893093Sahrens arc_buf_thaw(arc_buf_t *buf)
6903093Sahrens {
6913312Sahrens 	if (!(zfs_flags & ZFS_DEBUG_MODIFY))
6923093Sahrens 		return;
6933093Sahrens 
6943403Sbmc 	if (buf->b_hdr->b_state != arc_anon)
6953093Sahrens 		panic("modifying non-anon buffer!");
6963093Sahrens 	if (buf->b_hdr->b_flags & ARC_IO_IN_PROGRESS)
6973093Sahrens 		panic("modifying buffer while i/o in progress!");
6983093Sahrens 	arc_cksum_verify(buf);
6993093Sahrens 	mutex_enter(&buf->b_hdr->b_freeze_lock);
7003093Sahrens 	if (buf->b_hdr->b_freeze_cksum != NULL) {
7013093Sahrens 		kmem_free(buf->b_hdr->b_freeze_cksum, sizeof (zio_cksum_t));
7023093Sahrens 		buf->b_hdr->b_freeze_cksum = NULL;
7033093Sahrens 	}
7043093Sahrens 	mutex_exit(&buf->b_hdr->b_freeze_lock);
7053093Sahrens }
7063093Sahrens 
7073093Sahrens void
7083093Sahrens arc_buf_freeze(arc_buf_t *buf)
7093093Sahrens {
7103312Sahrens 	if (!(zfs_flags & ZFS_DEBUG_MODIFY))
7113312Sahrens 		return;
7123312Sahrens 
7133093Sahrens 	ASSERT(buf->b_hdr->b_freeze_cksum != NULL ||
7143403Sbmc 	    buf->b_hdr->b_state == arc_anon);
7153093Sahrens 	arc_cksum_compute(buf);
7163093Sahrens }
7173093Sahrens 
7183093Sahrens static void
719789Sahrens add_reference(arc_buf_hdr_t *ab, kmutex_t *hash_lock, void *tag)
720789Sahrens {
721789Sahrens 	ASSERT(MUTEX_HELD(hash_lock));
722789Sahrens 
723789Sahrens 	if ((refcount_add(&ab->b_refcnt, tag) == 1) &&
7243403Sbmc 	    (ab->b_state != arc_anon)) {
7253700Sek110237 		uint64_t delta = ab->b_size * ab->b_datacnt;
726789Sahrens 
7273403Sbmc 		ASSERT(!MUTEX_HELD(&ab->b_state->arcs_mtx));
7283403Sbmc 		mutex_enter(&ab->b_state->arcs_mtx);
729789Sahrens 		ASSERT(list_link_active(&ab->b_arc_node));
7303403Sbmc 		list_remove(&ab->b_state->arcs_list, ab);
7311544Seschrock 		if (GHOST_STATE(ab->b_state)) {
7321544Seschrock 			ASSERT3U(ab->b_datacnt, ==, 0);
7331544Seschrock 			ASSERT3P(ab->b_buf, ==, NULL);
7341544Seschrock 			delta = ab->b_size;
7351544Seschrock 		}
7361544Seschrock 		ASSERT(delta > 0);
7373403Sbmc 		ASSERT3U(ab->b_state->arcs_lsize, >=, delta);
7383403Sbmc 		atomic_add_64(&ab->b_state->arcs_lsize, -delta);
7393403Sbmc 		mutex_exit(&ab->b_state->arcs_mtx);
7402391Smaybee 		/* remove the prefetch flag is we get a reference */
7412391Smaybee 		if (ab->b_flags & ARC_PREFETCH)
7422391Smaybee 			ab->b_flags &= ~ARC_PREFETCH;
743789Sahrens 	}
744789Sahrens }
745789Sahrens 
746789Sahrens static int
747789Sahrens remove_reference(arc_buf_hdr_t *ab, kmutex_t *hash_lock, void *tag)
748789Sahrens {
749789Sahrens 	int cnt;
7503403Sbmc 	arc_state_t *state = ab->b_state;
751789Sahrens 
7523403Sbmc 	ASSERT(state == arc_anon || MUTEX_HELD(hash_lock));
7533403Sbmc 	ASSERT(!GHOST_STATE(state));
754789Sahrens 
755789Sahrens 	if (((cnt = refcount_remove(&ab->b_refcnt, tag)) == 0) &&
7563403Sbmc 	    (state != arc_anon)) {
7573403Sbmc 		ASSERT(!MUTEX_HELD(&state->arcs_mtx));
7583403Sbmc 		mutex_enter(&state->arcs_mtx);
759789Sahrens 		ASSERT(!list_link_active(&ab->b_arc_node));
7603403Sbmc 		list_insert_head(&state->arcs_list, ab);
7611544Seschrock 		ASSERT(ab->b_datacnt > 0);
7623403Sbmc 		atomic_add_64(&state->arcs_lsize, ab->b_size * ab->b_datacnt);
7633403Sbmc 		ASSERT3U(state->arcs_size, >=, state->arcs_lsize);
7643403Sbmc 		mutex_exit(&state->arcs_mtx);
765789Sahrens 	}
766789Sahrens 	return (cnt);
767789Sahrens }
768789Sahrens 
769789Sahrens /*
770789Sahrens  * Move the supplied buffer to the indicated state.  The mutex
771789Sahrens  * for the buffer must be held by the caller.
772789Sahrens  */
773789Sahrens static void
7741544Seschrock arc_change_state(arc_state_t *new_state, arc_buf_hdr_t *ab, kmutex_t *hash_lock)
775789Sahrens {
7761544Seschrock 	arc_state_t *old_state = ab->b_state;
7773700Sek110237 	int64_t refcnt = refcount_count(&ab->b_refcnt);
7783700Sek110237 	uint64_t from_delta, to_delta;
779789Sahrens 
780789Sahrens 	ASSERT(MUTEX_HELD(hash_lock));
7811544Seschrock 	ASSERT(new_state != old_state);
7821544Seschrock 	ASSERT(refcnt == 0 || ab->b_datacnt > 0);
7831544Seschrock 	ASSERT(ab->b_datacnt == 0 || !GHOST_STATE(new_state));
7841544Seschrock 
7851544Seschrock 	from_delta = to_delta = ab->b_datacnt * ab->b_size;
786789Sahrens 
787789Sahrens 	/*
788789Sahrens 	 * If this buffer is evictable, transfer it from the
789789Sahrens 	 * old state list to the new state list.
790789Sahrens 	 */
7911544Seschrock 	if (refcnt == 0) {
7923403Sbmc 		if (old_state != arc_anon) {
7933403Sbmc 			int use_mutex = !MUTEX_HELD(&old_state->arcs_mtx);
7941544Seschrock 
7951544Seschrock 			if (use_mutex)
7963403Sbmc 				mutex_enter(&old_state->arcs_mtx);
7971544Seschrock 
7981544Seschrock 			ASSERT(list_link_active(&ab->b_arc_node));
7993403Sbmc 			list_remove(&old_state->arcs_list, ab);
800789Sahrens 
8012391Smaybee 			/*
8022391Smaybee 			 * If prefetching out of the ghost cache,
8032391Smaybee 			 * we will have a non-null datacnt.
8042391Smaybee 			 */
8052391Smaybee 			if (GHOST_STATE(old_state) && ab->b_datacnt == 0) {
8062391Smaybee 				/* ghost elements have a ghost size */
8071544Seschrock 				ASSERT(ab->b_buf == NULL);
8081544Seschrock 				from_delta = ab->b_size;
809789Sahrens 			}
8103403Sbmc 			ASSERT3U(old_state->arcs_lsize, >=, from_delta);
8113403Sbmc 			atomic_add_64(&old_state->arcs_lsize, -from_delta);
8121544Seschrock 
8131544Seschrock 			if (use_mutex)
8143403Sbmc 				mutex_exit(&old_state->arcs_mtx);
815789Sahrens 		}
8163403Sbmc 		if (new_state != arc_anon) {
8173403Sbmc 			int use_mutex = !MUTEX_HELD(&new_state->arcs_mtx);
818789Sahrens 
8191544Seschrock 			if (use_mutex)
8203403Sbmc 				mutex_enter(&new_state->arcs_mtx);
8211544Seschrock 
8223403Sbmc 			list_insert_head(&new_state->arcs_list, ab);
8231544Seschrock 
8241544Seschrock 			/* ghost elements have a ghost size */
8251544Seschrock 			if (GHOST_STATE(new_state)) {
8261544Seschrock 				ASSERT(ab->b_datacnt == 0);
8271544Seschrock 				ASSERT(ab->b_buf == NULL);
8281544Seschrock 				to_delta = ab->b_size;
8291544Seschrock 			}
8303403Sbmc 			atomic_add_64(&new_state->arcs_lsize, to_delta);
8313403Sbmc 			ASSERT3U(new_state->arcs_size + to_delta, >=,
8323403Sbmc 			    new_state->arcs_lsize);
8331544Seschrock 
8341544Seschrock 			if (use_mutex)
8353403Sbmc 				mutex_exit(&new_state->arcs_mtx);
836789Sahrens 		}
837789Sahrens 	}
838789Sahrens 
839789Sahrens 	ASSERT(!BUF_EMPTY(ab));
8403403Sbmc 	if (new_state == arc_anon && old_state != arc_anon) {
841789Sahrens 		buf_hash_remove(ab);
842789Sahrens 	}
843789Sahrens 
8441544Seschrock 	/* adjust state sizes */
8451544Seschrock 	if (to_delta)
8463403Sbmc 		atomic_add_64(&new_state->arcs_size, to_delta);
8471544Seschrock 	if (from_delta) {
8483403Sbmc 		ASSERT3U(old_state->arcs_size, >=, from_delta);
8493403Sbmc 		atomic_add_64(&old_state->arcs_size, -from_delta);
850789Sahrens 	}
851789Sahrens 	ab->b_state = new_state;
852789Sahrens }
853789Sahrens 
854789Sahrens arc_buf_t *
8553290Sjohansen arc_buf_alloc(spa_t *spa, int size, void *tag, arc_buf_contents_t type)
856789Sahrens {
857789Sahrens 	arc_buf_hdr_t *hdr;
858789Sahrens 	arc_buf_t *buf;
859789Sahrens 
860789Sahrens 	ASSERT3U(size, >, 0);
861789Sahrens 	hdr = kmem_cache_alloc(hdr_cache, KM_SLEEP);
862789Sahrens 	ASSERT(BUF_EMPTY(hdr));
863789Sahrens 	hdr->b_size = size;
8643290Sjohansen 	hdr->b_type = type;
865789Sahrens 	hdr->b_spa = spa;
8663403Sbmc 	hdr->b_state = arc_anon;
867789Sahrens 	hdr->b_arc_access = 0;
868789Sahrens 	buf = kmem_cache_alloc(buf_cache, KM_SLEEP);
869789Sahrens 	buf->b_hdr = hdr;
8702688Smaybee 	buf->b_data = NULL;
8711544Seschrock 	buf->b_efunc = NULL;
8721544Seschrock 	buf->b_private = NULL;
873789Sahrens 	buf->b_next = NULL;
874789Sahrens 	hdr->b_buf = buf;
8752688Smaybee 	arc_get_data_buf(buf);
8761544Seschrock 	hdr->b_datacnt = 1;
877789Sahrens 	hdr->b_flags = 0;
878789Sahrens 	ASSERT(refcount_is_zero(&hdr->b_refcnt));
879789Sahrens 	(void) refcount_add(&hdr->b_refcnt, tag);
880789Sahrens 
881789Sahrens 	return (buf);
882789Sahrens }
883789Sahrens 
8842688Smaybee static arc_buf_t *
8852688Smaybee arc_buf_clone(arc_buf_t *from)
8861544Seschrock {
8872688Smaybee 	arc_buf_t *buf;
8882688Smaybee 	arc_buf_hdr_t *hdr = from->b_hdr;
8892688Smaybee 	uint64_t size = hdr->b_size;
8901544Seschrock 
8912688Smaybee 	buf = kmem_cache_alloc(buf_cache, KM_SLEEP);
8922688Smaybee 	buf->b_hdr = hdr;
8932688Smaybee 	buf->b_data = NULL;
8942688Smaybee 	buf->b_efunc = NULL;
8952688Smaybee 	buf->b_private = NULL;
8962688Smaybee 	buf->b_next = hdr->b_buf;
8972688Smaybee 	hdr->b_buf = buf;
8982688Smaybee 	arc_get_data_buf(buf);
8992688Smaybee 	bcopy(from->b_data, buf->b_data, size);
9002688Smaybee 	hdr->b_datacnt += 1;
9012688Smaybee 	return (buf);
9021544Seschrock }
9031544Seschrock 
9041544Seschrock void
9051544Seschrock arc_buf_add_ref(arc_buf_t *buf, void* tag)
9061544Seschrock {
9072887Smaybee 	arc_buf_hdr_t *hdr;
9081544Seschrock 	kmutex_t *hash_lock;
9091544Seschrock 
9102724Smaybee 	/*
9112724Smaybee 	 * Check to see if this buffer is currently being evicted via
9122887Smaybee 	 * arc_do_user_evicts().
9132724Smaybee 	 */
9142887Smaybee 	mutex_enter(&arc_eviction_mtx);
9152887Smaybee 	hdr = buf->b_hdr;
9162887Smaybee 	if (hdr == NULL) {
9172887Smaybee 		mutex_exit(&arc_eviction_mtx);
9182724Smaybee 		return;
9192887Smaybee 	}
9202887Smaybee 	hash_lock = HDR_LOCK(hdr);
9212887Smaybee 	mutex_exit(&arc_eviction_mtx);
9222724Smaybee 
9232724Smaybee 	mutex_enter(hash_lock);
9241544Seschrock 	if (buf->b_data == NULL) {
9251544Seschrock 		/*
9261544Seschrock 		 * This buffer is evicted.
9271544Seschrock 		 */
9282724Smaybee 		mutex_exit(hash_lock);
9291544Seschrock 		return;
9301544Seschrock 	}
9311544Seschrock 
9322724Smaybee 	ASSERT(buf->b_hdr == hdr);
9333403Sbmc 	ASSERT(hdr->b_state == arc_mru || hdr->b_state == arc_mfu);
9341544Seschrock 	add_reference(hdr, hash_lock, tag);
9352688Smaybee 	arc_access(hdr, hash_lock);
9362688Smaybee 	mutex_exit(hash_lock);
9373403Sbmc 	ARCSTAT_BUMP(arcstat_hits);
9383403Sbmc 	ARCSTAT_CONDSTAT(!(hdr->b_flags & ARC_PREFETCH),
9393403Sbmc 	    demand, prefetch, hdr->b_type != ARC_BUFC_METADATA,
9403403Sbmc 	    data, metadata, hits);
9411544Seschrock }
9421544Seschrock 
943789Sahrens static void
9442688Smaybee arc_buf_destroy(arc_buf_t *buf, boolean_t recycle, boolean_t all)
9451544Seschrock {
9461544Seschrock 	arc_buf_t **bufp;
9471544Seschrock 
9481544Seschrock 	/* free up data associated with the buf */
9491544Seschrock 	if (buf->b_data) {
9501544Seschrock 		arc_state_t *state = buf->b_hdr->b_state;
9511544Seschrock 		uint64_t size = buf->b_hdr->b_size;
9523290Sjohansen 		arc_buf_contents_t type = buf->b_hdr->b_type;
9531544Seschrock 
9543093Sahrens 		arc_cksum_verify(buf);
9552688Smaybee 		if (!recycle) {
9563290Sjohansen 			if (type == ARC_BUFC_METADATA) {
9573290Sjohansen 				zio_buf_free(buf->b_data, size);
9583290Sjohansen 			} else {
9593290Sjohansen 				ASSERT(type == ARC_BUFC_DATA);
9603290Sjohansen 				zio_data_buf_free(buf->b_data, size);
9613290Sjohansen 			}
9623403Sbmc 			atomic_add_64(&arc_size, -size);
9632688Smaybee 		}
9641544Seschrock 		if (list_link_active(&buf->b_hdr->b_arc_node)) {
9651544Seschrock 			ASSERT(refcount_is_zero(&buf->b_hdr->b_refcnt));
9663403Sbmc 			ASSERT(state != arc_anon);
9673403Sbmc 			ASSERT3U(state->arcs_lsize, >=, size);
9683403Sbmc 			atomic_add_64(&state->arcs_lsize, -size);
9691544Seschrock 		}
9703403Sbmc 		ASSERT3U(state->arcs_size, >=, size);
9713403Sbmc 		atomic_add_64(&state->arcs_size, -size);
9721544Seschrock 		buf->b_data = NULL;
9731544Seschrock 		ASSERT(buf->b_hdr->b_datacnt > 0);
9741544Seschrock 		buf->b_hdr->b_datacnt -= 1;
9751544Seschrock 	}
9761544Seschrock 
9771544Seschrock 	/* only remove the buf if requested */
9781544Seschrock 	if (!all)
9791544Seschrock 		return;
9801544Seschrock 
9811544Seschrock 	/* remove the buf from the hdr list */
9821544Seschrock 	for (bufp = &buf->b_hdr->b_buf; *bufp != buf; bufp = &(*bufp)->b_next)
9831544Seschrock 		continue;
9841544Seschrock 	*bufp = buf->b_next;
9851544Seschrock 
9861544Seschrock 	ASSERT(buf->b_efunc == NULL);
9871544Seschrock 
9881544Seschrock 	/* clean up the buf */
9891544Seschrock 	buf->b_hdr = NULL;
9901544Seschrock 	kmem_cache_free(buf_cache, buf);
9911544Seschrock }
9921544Seschrock 
9931544Seschrock static void
9941544Seschrock arc_hdr_destroy(arc_buf_hdr_t *hdr)
995789Sahrens {
996789Sahrens 	ASSERT(refcount_is_zero(&hdr->b_refcnt));
9973403Sbmc 	ASSERT3P(hdr->b_state, ==, arc_anon);
9981544Seschrock 	ASSERT(!HDR_IO_IN_PROGRESS(hdr));
999789Sahrens 
1000789Sahrens 	if (!BUF_EMPTY(hdr)) {
10011544Seschrock 		ASSERT(!HDR_IN_HASH_TABLE(hdr));
1002789Sahrens 		bzero(&hdr->b_dva, sizeof (dva_t));
1003789Sahrens 		hdr->b_birth = 0;
1004789Sahrens 		hdr->b_cksum0 = 0;
1005789Sahrens 	}
10061544Seschrock 	while (hdr->b_buf) {
1007789Sahrens 		arc_buf_t *buf = hdr->b_buf;
1008789Sahrens 
10091544Seschrock 		if (buf->b_efunc) {
10101544Seschrock 			mutex_enter(&arc_eviction_mtx);
10111544Seschrock 			ASSERT(buf->b_hdr != NULL);
10122688Smaybee 			arc_buf_destroy(hdr->b_buf, FALSE, FALSE);
10131544Seschrock 			hdr->b_buf = buf->b_next;
10142887Smaybee 			buf->b_hdr = &arc_eviction_hdr;
10151544Seschrock 			buf->b_next = arc_eviction_list;
10161544Seschrock 			arc_eviction_list = buf;
10171544Seschrock 			mutex_exit(&arc_eviction_mtx);
10181544Seschrock 		} else {
10192688Smaybee 			arc_buf_destroy(hdr->b_buf, FALSE, TRUE);
10201544Seschrock 		}
1021789Sahrens 	}
10223093Sahrens 	if (hdr->b_freeze_cksum != NULL) {
10233093Sahrens 		kmem_free(hdr->b_freeze_cksum, sizeof (zio_cksum_t));
10243093Sahrens 		hdr->b_freeze_cksum = NULL;
10253093Sahrens 	}
10261544Seschrock 
1027789Sahrens 	ASSERT(!list_link_active(&hdr->b_arc_node));
1028789Sahrens 	ASSERT3P(hdr->b_hash_next, ==, NULL);
1029789Sahrens 	ASSERT3P(hdr->b_acb, ==, NULL);
1030789Sahrens 	kmem_cache_free(hdr_cache, hdr);
1031789Sahrens }
1032789Sahrens 
1033789Sahrens void
1034789Sahrens arc_buf_free(arc_buf_t *buf, void *tag)
1035789Sahrens {
1036789Sahrens 	arc_buf_hdr_t *hdr = buf->b_hdr;
10373403Sbmc 	int hashed = hdr->b_state != arc_anon;
10381544Seschrock 
10391544Seschrock 	ASSERT(buf->b_efunc == NULL);
10401544Seschrock 	ASSERT(buf->b_data != NULL);
10411544Seschrock 
10421544Seschrock 	if (hashed) {
10431544Seschrock 		kmutex_t *hash_lock = HDR_LOCK(hdr);
10441544Seschrock 
10451544Seschrock 		mutex_enter(hash_lock);
10461544Seschrock 		(void) remove_reference(hdr, hash_lock, tag);
10471544Seschrock 		if (hdr->b_datacnt > 1)
10482688Smaybee 			arc_buf_destroy(buf, FALSE, TRUE);
10491544Seschrock 		else
10501544Seschrock 			hdr->b_flags |= ARC_BUF_AVAILABLE;
10511544Seschrock 		mutex_exit(hash_lock);
10521544Seschrock 	} else if (HDR_IO_IN_PROGRESS(hdr)) {
10531544Seschrock 		int destroy_hdr;
10541544Seschrock 		/*
10551544Seschrock 		 * We are in the middle of an async write.  Don't destroy
10561544Seschrock 		 * this buffer unless the write completes before we finish
10571544Seschrock 		 * decrementing the reference count.
10581544Seschrock 		 */
10591544Seschrock 		mutex_enter(&arc_eviction_mtx);
10601544Seschrock 		(void) remove_reference(hdr, NULL, tag);
10611544Seschrock 		ASSERT(refcount_is_zero(&hdr->b_refcnt));
10621544Seschrock 		destroy_hdr = !HDR_IO_IN_PROGRESS(hdr);
10631544Seschrock 		mutex_exit(&arc_eviction_mtx);
10641544Seschrock 		if (destroy_hdr)
10651544Seschrock 			arc_hdr_destroy(hdr);
10661544Seschrock 	} else {
10671544Seschrock 		if (remove_reference(hdr, NULL, tag) > 0) {
10681544Seschrock 			ASSERT(HDR_IO_ERROR(hdr));
10692688Smaybee 			arc_buf_destroy(buf, FALSE, TRUE);
10701544Seschrock 		} else {
10711544Seschrock 			arc_hdr_destroy(hdr);
10721544Seschrock 		}
10731544Seschrock 	}
10741544Seschrock }
10751544Seschrock 
10761544Seschrock int
10771544Seschrock arc_buf_remove_ref(arc_buf_t *buf, void* tag)
10781544Seschrock {
10791544Seschrock 	arc_buf_hdr_t *hdr = buf->b_hdr;
1080789Sahrens 	kmutex_t *hash_lock = HDR_LOCK(hdr);
10811544Seschrock 	int no_callback = (buf->b_efunc == NULL);
10821544Seschrock 
10833403Sbmc 	if (hdr->b_state == arc_anon) {
10841544Seschrock 		arc_buf_free(buf, tag);
10851544Seschrock 		return (no_callback);
10861544Seschrock 	}
1087789Sahrens 
1088789Sahrens 	mutex_enter(hash_lock);
10893403Sbmc 	ASSERT(hdr->b_state != arc_anon);
10901544Seschrock 	ASSERT(buf->b_data != NULL);
1091789Sahrens 
10921544Seschrock 	(void) remove_reference(hdr, hash_lock, tag);
10931544Seschrock 	if (hdr->b_datacnt > 1) {
10941544Seschrock 		if (no_callback)
10952688Smaybee 			arc_buf_destroy(buf, FALSE, TRUE);
10961544Seschrock 	} else if (no_callback) {
10971544Seschrock 		ASSERT(hdr->b_buf == buf && buf->b_next == NULL);
10981544Seschrock 		hdr->b_flags |= ARC_BUF_AVAILABLE;
1099789Sahrens 	}
11001544Seschrock 	ASSERT(no_callback || hdr->b_datacnt > 1 ||
11011544Seschrock 	    refcount_is_zero(&hdr->b_refcnt));
1102789Sahrens 	mutex_exit(hash_lock);
11031544Seschrock 	return (no_callback);
1104789Sahrens }
1105789Sahrens 
1106789Sahrens int
1107789Sahrens arc_buf_size(arc_buf_t *buf)
1108789Sahrens {
1109789Sahrens 	return (buf->b_hdr->b_size);
1110789Sahrens }
1111789Sahrens 
1112789Sahrens /*
1113789Sahrens  * Evict buffers from list until we've removed the specified number of
1114789Sahrens  * bytes.  Move the removed buffers to the appropriate evict state.
11152688Smaybee  * If the recycle flag is set, then attempt to "recycle" a buffer:
11162688Smaybee  * - look for a buffer to evict that is `bytes' long.
11172688Smaybee  * - return the data block from this buffer rather than freeing it.
11182688Smaybee  * This flag is used by callers that are trying to make space for a
11192688Smaybee  * new buffer in a full arc cache.
1120789Sahrens  */
11212688Smaybee static void *
11223290Sjohansen arc_evict(arc_state_t *state, int64_t bytes, boolean_t recycle,
11233290Sjohansen     arc_buf_contents_t type)
1124789Sahrens {
1125789Sahrens 	arc_state_t *evicted_state;
11262688Smaybee 	uint64_t bytes_evicted = 0, skipped = 0, missed = 0;
11272918Smaybee 	arc_buf_hdr_t *ab, *ab_prev = NULL;
1128789Sahrens 	kmutex_t *hash_lock;
11292688Smaybee 	boolean_t have_lock;
11302918Smaybee 	void *stolen = NULL;
1131789Sahrens 
11323403Sbmc 	ASSERT(state == arc_mru || state == arc_mfu);
1133789Sahrens 
11343403Sbmc 	evicted_state = (state == arc_mru) ? arc_mru_ghost : arc_mfu_ghost;
1135789Sahrens 
11363403Sbmc 	mutex_enter(&state->arcs_mtx);
11373403Sbmc 	mutex_enter(&evicted_state->arcs_mtx);
1138789Sahrens 
11393403Sbmc 	for (ab = list_tail(&state->arcs_list); ab; ab = ab_prev) {
11403403Sbmc 		ab_prev = list_prev(&state->arcs_list, ab);
11412391Smaybee 		/* prefetch buffers have a minimum lifespan */
11422688Smaybee 		if (HDR_IO_IN_PROGRESS(ab) ||
11432688Smaybee 		    (ab->b_flags & (ARC_PREFETCH|ARC_INDIRECT) &&
11442688Smaybee 		    lbolt - ab->b_arc_access < arc_min_prefetch_lifespan)) {
11452391Smaybee 			skipped++;
11462391Smaybee 			continue;
11472391Smaybee 		}
11482918Smaybee 		/* "lookahead" for better eviction candidate */
11492918Smaybee 		if (recycle && ab->b_size != bytes &&
11502918Smaybee 		    ab_prev && ab_prev->b_size == bytes)
11512688Smaybee 			continue;
1152789Sahrens 		hash_lock = HDR_LOCK(ab);
11532688Smaybee 		have_lock = MUTEX_HELD(hash_lock);
11542688Smaybee 		if (have_lock || mutex_tryenter(hash_lock)) {
1155789Sahrens 			ASSERT3U(refcount_count(&ab->b_refcnt), ==, 0);
11561544Seschrock 			ASSERT(ab->b_datacnt > 0);
11571544Seschrock 			while (ab->b_buf) {
11581544Seschrock 				arc_buf_t *buf = ab->b_buf;
11592688Smaybee 				if (buf->b_data) {
11601544Seschrock 					bytes_evicted += ab->b_size;
11613290Sjohansen 					if (recycle && ab->b_type == type &&
11623290Sjohansen 					    ab->b_size == bytes) {
11632918Smaybee 						stolen = buf->b_data;
11642918Smaybee 						recycle = FALSE;
11652918Smaybee 					}
11662688Smaybee 				}
11671544Seschrock 				if (buf->b_efunc) {
11681544Seschrock 					mutex_enter(&arc_eviction_mtx);
11692918Smaybee 					arc_buf_destroy(buf,
11702918Smaybee 					    buf->b_data == stolen, FALSE);
11711544Seschrock 					ab->b_buf = buf->b_next;
11722887Smaybee 					buf->b_hdr = &arc_eviction_hdr;
11731544Seschrock 					buf->b_next = arc_eviction_list;
11741544Seschrock 					arc_eviction_list = buf;
11751544Seschrock 					mutex_exit(&arc_eviction_mtx);
11761544Seschrock 				} else {
11772918Smaybee 					arc_buf_destroy(buf,
11782918Smaybee 					    buf->b_data == stolen, TRUE);
11791544Seschrock 				}
11801544Seschrock 			}
11811544Seschrock 			ASSERT(ab->b_datacnt == 0);
1182789Sahrens 			arc_change_state(evicted_state, ab, hash_lock);
11831544Seschrock 			ASSERT(HDR_IN_HASH_TABLE(ab));
11841544Seschrock 			ab->b_flags = ARC_IN_HASH_TABLE;
1185789Sahrens 			DTRACE_PROBE1(arc__evict, arc_buf_hdr_t *, ab);
11862688Smaybee 			if (!have_lock)
11872688Smaybee 				mutex_exit(hash_lock);
11881544Seschrock 			if (bytes >= 0 && bytes_evicted >= bytes)
1189789Sahrens 				break;
1190789Sahrens 		} else {
11912688Smaybee 			missed += 1;
1192789Sahrens 		}
1193789Sahrens 	}
11943403Sbmc 
11953403Sbmc 	mutex_exit(&evicted_state->arcs_mtx);
11963403Sbmc 	mutex_exit(&state->arcs_mtx);
1197789Sahrens 
1198789Sahrens 	if (bytes_evicted < bytes)
1199789Sahrens 		dprintf("only evicted %lld bytes from %x",
1200789Sahrens 		    (longlong_t)bytes_evicted, state);
1201789Sahrens 
12022688Smaybee 	if (skipped)
12033403Sbmc 		ARCSTAT_INCR(arcstat_evict_skip, skipped);
12043403Sbmc 
12052688Smaybee 	if (missed)
12063403Sbmc 		ARCSTAT_INCR(arcstat_mutex_miss, missed);
12073403Sbmc 
12082918Smaybee 	return (stolen);
1209789Sahrens }
1210789Sahrens 
1211789Sahrens /*
1212789Sahrens  * Remove buffers from list until we've removed the specified number of
1213789Sahrens  * bytes.  Destroy the buffers that are removed.
1214789Sahrens  */
1215789Sahrens static void
12161544Seschrock arc_evict_ghost(arc_state_t *state, int64_t bytes)
1217789Sahrens {
1218789Sahrens 	arc_buf_hdr_t *ab, *ab_prev;
1219789Sahrens 	kmutex_t *hash_lock;
12201544Seschrock 	uint64_t bytes_deleted = 0;
12213700Sek110237 	uint64_t bufs_skipped = 0;
1222789Sahrens 
12231544Seschrock 	ASSERT(GHOST_STATE(state));
1224789Sahrens top:
12253403Sbmc 	mutex_enter(&state->arcs_mtx);
12263403Sbmc 	for (ab = list_tail(&state->arcs_list); ab; ab = ab_prev) {
12273403Sbmc 		ab_prev = list_prev(&state->arcs_list, ab);
1228789Sahrens 		hash_lock = HDR_LOCK(ab);
1229789Sahrens 		if (mutex_tryenter(hash_lock)) {
12302391Smaybee 			ASSERT(!HDR_IO_IN_PROGRESS(ab));
12311544Seschrock 			ASSERT(ab->b_buf == NULL);
12323403Sbmc 			arc_change_state(arc_anon, ab, hash_lock);
1233789Sahrens 			mutex_exit(hash_lock);
12343403Sbmc 			ARCSTAT_BUMP(arcstat_deleted);
12351544Seschrock 			bytes_deleted += ab->b_size;
12361544Seschrock 			arc_hdr_destroy(ab);
1237789Sahrens 			DTRACE_PROBE1(arc__delete, arc_buf_hdr_t *, ab);
1238789Sahrens 			if (bytes >= 0 && bytes_deleted >= bytes)
1239789Sahrens 				break;
1240789Sahrens 		} else {
1241789Sahrens 			if (bytes < 0) {
12423403Sbmc 				mutex_exit(&state->arcs_mtx);
1243789Sahrens 				mutex_enter(hash_lock);
1244789Sahrens 				mutex_exit(hash_lock);
1245789Sahrens 				goto top;
1246789Sahrens 			}
1247789Sahrens 			bufs_skipped += 1;
1248789Sahrens 		}
1249789Sahrens 	}
12503403Sbmc 	mutex_exit(&state->arcs_mtx);
1251789Sahrens 
1252789Sahrens 	if (bufs_skipped) {
12533403Sbmc 		ARCSTAT_INCR(arcstat_mutex_miss, bufs_skipped);
1254789Sahrens 		ASSERT(bytes >= 0);
1255789Sahrens 	}
1256789Sahrens 
1257789Sahrens 	if (bytes_deleted < bytes)
1258789Sahrens 		dprintf("only deleted %lld bytes from %p",
1259789Sahrens 		    (longlong_t)bytes_deleted, state);
1260789Sahrens }
1261789Sahrens 
1262789Sahrens static void
1263789Sahrens arc_adjust(void)
1264789Sahrens {
12653403Sbmc 	int64_t top_sz, mru_over, arc_over, todelete;
1266789Sahrens 
12673403Sbmc 	top_sz = arc_anon->arcs_size + arc_mru->arcs_size;
1268789Sahrens 
12693403Sbmc 	if (top_sz > arc_p && arc_mru->arcs_lsize > 0) {
12703403Sbmc 		int64_t toevict = MIN(arc_mru->arcs_lsize, top_sz - arc_p);
12713403Sbmc 		(void) arc_evict(arc_mru, toevict, FALSE, ARC_BUFC_UNDEF);
12723403Sbmc 		top_sz = arc_anon->arcs_size + arc_mru->arcs_size;
1273789Sahrens 	}
1274789Sahrens 
12753403Sbmc 	mru_over = top_sz + arc_mru_ghost->arcs_size - arc_c;
1276789Sahrens 
1277789Sahrens 	if (mru_over > 0) {
12783403Sbmc 		if (arc_mru_ghost->arcs_lsize > 0) {
12793403Sbmc 			todelete = MIN(arc_mru_ghost->arcs_lsize, mru_over);
12803403Sbmc 			arc_evict_ghost(arc_mru_ghost, todelete);
1281789Sahrens 		}
1282789Sahrens 	}
1283789Sahrens 
12843403Sbmc 	if ((arc_over = arc_size - arc_c) > 0) {
12851544Seschrock 		int64_t tbl_over;
1286789Sahrens 
12873403Sbmc 		if (arc_mfu->arcs_lsize > 0) {
12883403Sbmc 			int64_t toevict = MIN(arc_mfu->arcs_lsize, arc_over);
12893403Sbmc 			(void) arc_evict(arc_mfu, toevict, FALSE,
12903290Sjohansen 			    ARC_BUFC_UNDEF);
1291789Sahrens 		}
1292789Sahrens 
12933403Sbmc 		tbl_over = arc_size + arc_mru_ghost->arcs_lsize +
12943403Sbmc 		    arc_mfu_ghost->arcs_lsize - arc_c*2;
1295789Sahrens 
12963403Sbmc 		if (tbl_over > 0 && arc_mfu_ghost->arcs_lsize > 0) {
12973403Sbmc 			todelete = MIN(arc_mfu_ghost->arcs_lsize, tbl_over);
12983403Sbmc 			arc_evict_ghost(arc_mfu_ghost, todelete);
1299789Sahrens 		}
1300789Sahrens 	}
1301789Sahrens }
1302789Sahrens 
13031544Seschrock static void
13041544Seschrock arc_do_user_evicts(void)
13051544Seschrock {
13061544Seschrock 	mutex_enter(&arc_eviction_mtx);
13071544Seschrock 	while (arc_eviction_list != NULL) {
13081544Seschrock 		arc_buf_t *buf = arc_eviction_list;
13091544Seschrock 		arc_eviction_list = buf->b_next;
13101544Seschrock 		buf->b_hdr = NULL;
13111544Seschrock 		mutex_exit(&arc_eviction_mtx);
13121544Seschrock 
13131819Smaybee 		if (buf->b_efunc != NULL)
13141819Smaybee 			VERIFY(buf->b_efunc(buf) == 0);
13151544Seschrock 
13161544Seschrock 		buf->b_efunc = NULL;
13171544Seschrock 		buf->b_private = NULL;
13181544Seschrock 		kmem_cache_free(buf_cache, buf);
13191544Seschrock 		mutex_enter(&arc_eviction_mtx);
13201544Seschrock 	}
13211544Seschrock 	mutex_exit(&arc_eviction_mtx);
13221544Seschrock }
13231544Seschrock 
1324789Sahrens /*
1325789Sahrens  * Flush all *evictable* data from the cache.
1326789Sahrens  * NOTE: this will not touch "active" (i.e. referenced) data.
1327789Sahrens  */
1328789Sahrens void
1329789Sahrens arc_flush(void)
1330789Sahrens {
13313403Sbmc 	while (list_head(&arc_mru->arcs_list))
13323403Sbmc 		(void) arc_evict(arc_mru, -1, FALSE, ARC_BUFC_UNDEF);
13333403Sbmc 	while (list_head(&arc_mfu->arcs_list))
13343403Sbmc 		(void) arc_evict(arc_mfu, -1, FALSE, ARC_BUFC_UNDEF);
1335789Sahrens 
13363403Sbmc 	arc_evict_ghost(arc_mru_ghost, -1);
13373403Sbmc 	arc_evict_ghost(arc_mfu_ghost, -1);
13381544Seschrock 
13391544Seschrock 	mutex_enter(&arc_reclaim_thr_lock);
13401544Seschrock 	arc_do_user_evicts();
13411544Seschrock 	mutex_exit(&arc_reclaim_thr_lock);
13421544Seschrock 	ASSERT(arc_eviction_list == NULL);
1343789Sahrens }
1344789Sahrens 
13453158Smaybee int arc_shrink_shift = 5;		/* log2(fraction of arc to reclaim) */
13462391Smaybee 
1347789Sahrens void
13483158Smaybee arc_shrink(void)
1349789Sahrens {
13503403Sbmc 	if (arc_c > arc_c_min) {
13513158Smaybee 		uint64_t to_free;
1352789Sahrens 
13532048Sstans #ifdef _KERNEL
13543403Sbmc 		to_free = MAX(arc_c >> arc_shrink_shift, ptob(needfree));
13552048Sstans #else
13563403Sbmc 		to_free = arc_c >> arc_shrink_shift;
13572048Sstans #endif
13583403Sbmc 		if (arc_c > arc_c_min + to_free)
13593403Sbmc 			atomic_add_64(&arc_c, -to_free);
13603158Smaybee 		else
13613403Sbmc 			arc_c = arc_c_min;
13622048Sstans 
13633403Sbmc 		atomic_add_64(&arc_p, -(arc_p >> arc_shrink_shift));
13643403Sbmc 		if (arc_c > arc_size)
13653403Sbmc 			arc_c = MAX(arc_size, arc_c_min);
13663403Sbmc 		if (arc_p > arc_c)
13673403Sbmc 			arc_p = (arc_c >> 1);
13683403Sbmc 		ASSERT(arc_c >= arc_c_min);
13693403Sbmc 		ASSERT((int64_t)arc_p >= 0);
13703158Smaybee 	}
1371789Sahrens 
13723403Sbmc 	if (arc_size > arc_c)
13733158Smaybee 		arc_adjust();
1374789Sahrens }
1375789Sahrens 
1376789Sahrens static int
1377789Sahrens arc_reclaim_needed(void)
1378789Sahrens {
1379789Sahrens 	uint64_t extra;
1380789Sahrens 
1381789Sahrens #ifdef _KERNEL
13822048Sstans 
13832048Sstans 	if (needfree)
13842048Sstans 		return (1);
13852048Sstans 
1386789Sahrens 	/*
1387789Sahrens 	 * take 'desfree' extra pages, so we reclaim sooner, rather than later
1388789Sahrens 	 */
1389789Sahrens 	extra = desfree;
1390789Sahrens 
1391789Sahrens 	/*
1392789Sahrens 	 * check that we're out of range of the pageout scanner.  It starts to
1393789Sahrens 	 * schedule paging if freemem is less than lotsfree and needfree.
1394789Sahrens 	 * lotsfree is the high-water mark for pageout, and needfree is the
1395789Sahrens 	 * number of needed free pages.  We add extra pages here to make sure
1396789Sahrens 	 * the scanner doesn't start up while we're freeing memory.
1397789Sahrens 	 */
1398789Sahrens 	if (freemem < lotsfree + needfree + extra)
1399789Sahrens 		return (1);
1400789Sahrens 
1401789Sahrens 	/*
1402789Sahrens 	 * check to make sure that swapfs has enough space so that anon
1403789Sahrens 	 * reservations can still succeeed. anon_resvmem() checks that the
1404789Sahrens 	 * availrmem is greater than swapfs_minfree, and the number of reserved
1405789Sahrens 	 * swap pages.  We also add a bit of extra here just to prevent
1406789Sahrens 	 * circumstances from getting really dire.
1407789Sahrens 	 */
1408789Sahrens 	if (availrmem < swapfs_minfree + swapfs_reserve + extra)
1409789Sahrens 		return (1);
1410789Sahrens 
14113307Sjohansen 	/*
14123307Sjohansen 	 * If zio data pages are being allocated out of a separate heap segment,
14133307Sjohansen 	 * then check that the size of available vmem for this area remains
14143552Sjohansen 	 * above 1/4th free.  This needs to be done when the size of the
14153307Sjohansen 	 * non-default segment is smaller than physical memory, so we could
14163307Sjohansen 	 * conceivably run out of VA in that segment before running out of
14173307Sjohansen 	 * physical memory.
14183307Sjohansen 	 */
14193552Sjohansen 	if (zio_arena != NULL) {
14203718Sjohansen 		size_t arc_ziosize =
14213718Sjohansen 		    btop(vmem_size(zio_arena, VMEM_FREE | VMEM_ALLOC));
14223718Sjohansen 
14233718Sjohansen 		if ((physmem > arc_ziosize) &&
14243552Sjohansen 		    (btop(vmem_size(zio_arena, VMEM_FREE)) < arc_ziosize >> 2))
14253718Sjohansen 			return (1);
14263552Sjohansen 	}
14273307Sjohansen 
14281936Smaybee #if defined(__i386)
1429789Sahrens 	/*
1430789Sahrens 	 * If we're on an i386 platform, it's possible that we'll exhaust the
1431789Sahrens 	 * kernel heap space before we ever run out of available physical
1432789Sahrens 	 * memory.  Most checks of the size of the heap_area compare against
1433789Sahrens 	 * tune.t_minarmem, which is the minimum available real memory that we
1434789Sahrens 	 * can have in the system.  However, this is generally fixed at 25 pages
1435789Sahrens 	 * which is so low that it's useless.  In this comparison, we seek to
1436789Sahrens 	 * calculate the total heap-size, and reclaim if more than 3/4ths of the
1437789Sahrens 	 * heap is allocated.  (Or, in the caclulation, if less than 1/4th is
1438789Sahrens 	 * free)
1439789Sahrens 	 */
1440789Sahrens 	if (btop(vmem_size(heap_arena, VMEM_FREE)) <
1441789Sahrens 	    (btop(vmem_size(heap_arena, VMEM_FREE | VMEM_ALLOC)) >> 2))
1442789Sahrens 		return (1);
1443789Sahrens #endif
1444789Sahrens 
1445789Sahrens #else
1446789Sahrens 	if (spa_get_random(100) == 0)
1447789Sahrens 		return (1);
1448789Sahrens #endif
1449789Sahrens 	return (0);
1450789Sahrens }
1451789Sahrens 
1452789Sahrens static void
1453789Sahrens arc_kmem_reap_now(arc_reclaim_strategy_t strat)
1454789Sahrens {
1455789Sahrens 	size_t			i;
1456789Sahrens 	kmem_cache_t		*prev_cache = NULL;
14573290Sjohansen 	kmem_cache_t		*prev_data_cache = NULL;
1458789Sahrens 	extern kmem_cache_t	*zio_buf_cache[];
14593290Sjohansen 	extern kmem_cache_t	*zio_data_buf_cache[];
1460789Sahrens 
14611484Sek110237 #ifdef _KERNEL
14621484Sek110237 	/*
14631484Sek110237 	 * First purge some DNLC entries, in case the DNLC is using
14641484Sek110237 	 * up too much memory.
14651484Sek110237 	 */
14661505Sek110237 	dnlc_reduce_cache((void *)(uintptr_t)arc_reduce_dnlc_percent);
14671936Smaybee 
14681936Smaybee #if defined(__i386)
14691936Smaybee 	/*
14701936Smaybee 	 * Reclaim unused memory from all kmem caches.
14711936Smaybee 	 */
14721936Smaybee 	kmem_reap();
14731936Smaybee #endif
14741484Sek110237 #endif
14751484Sek110237 
1476789Sahrens 	/*
14771544Seschrock 	 * An agressive reclamation will shrink the cache size as well as
14781544Seschrock 	 * reap free buffers from the arc kmem caches.
1479789Sahrens 	 */
1480789Sahrens 	if (strat == ARC_RECLAIM_AGGR)
14813158Smaybee 		arc_shrink();
1482789Sahrens 
1483789Sahrens 	for (i = 0; i < SPA_MAXBLOCKSIZE >> SPA_MINBLOCKSHIFT; i++) {
1484789Sahrens 		if (zio_buf_cache[i] != prev_cache) {
1485789Sahrens 			prev_cache = zio_buf_cache[i];
1486789Sahrens 			kmem_cache_reap_now(zio_buf_cache[i]);
1487789Sahrens 		}
14883290Sjohansen 		if (zio_data_buf_cache[i] != prev_data_cache) {
14893290Sjohansen 			prev_data_cache = zio_data_buf_cache[i];
14903290Sjohansen 			kmem_cache_reap_now(zio_data_buf_cache[i]);
14913290Sjohansen 		}
1492789Sahrens 	}
14931544Seschrock 	kmem_cache_reap_now(buf_cache);
14941544Seschrock 	kmem_cache_reap_now(hdr_cache);
1495789Sahrens }
1496789Sahrens 
1497789Sahrens static void
1498789Sahrens arc_reclaim_thread(void)
1499789Sahrens {
1500789Sahrens 	clock_t			growtime = 0;
1501789Sahrens 	arc_reclaim_strategy_t	last_reclaim = ARC_RECLAIM_CONS;
1502789Sahrens 	callb_cpr_t		cpr;
1503789Sahrens 
1504789Sahrens 	CALLB_CPR_INIT(&cpr, &arc_reclaim_thr_lock, callb_generic_cpr, FTAG);
1505789Sahrens 
1506789Sahrens 	mutex_enter(&arc_reclaim_thr_lock);
1507789Sahrens 	while (arc_thread_exit == 0) {
1508789Sahrens 		if (arc_reclaim_needed()) {
1509789Sahrens 
15103403Sbmc 			if (arc_no_grow) {
1511789Sahrens 				if (last_reclaim == ARC_RECLAIM_CONS) {
1512789Sahrens 					last_reclaim = ARC_RECLAIM_AGGR;
1513789Sahrens 				} else {
1514789Sahrens 					last_reclaim = ARC_RECLAIM_CONS;
1515789Sahrens 				}
1516789Sahrens 			} else {
15173403Sbmc 				arc_no_grow = TRUE;
1518789Sahrens 				last_reclaim = ARC_RECLAIM_AGGR;
1519789Sahrens 				membar_producer();
1520789Sahrens 			}
1521789Sahrens 
1522789Sahrens 			/* reset the growth delay for every reclaim */
1523789Sahrens 			growtime = lbolt + (arc_grow_retry * hz);
15242856Snd150628 			ASSERT(growtime > 0);
1525789Sahrens 
1526789Sahrens 			arc_kmem_reap_now(last_reclaim);
1527789Sahrens 
1528789Sahrens 		} else if ((growtime > 0) && ((growtime - lbolt) <= 0)) {
15293403Sbmc 			arc_no_grow = FALSE;
1530789Sahrens 		}
1531789Sahrens 
15323403Sbmc 		if (2 * arc_c < arc_size +
15333403Sbmc 		    arc_mru_ghost->arcs_size + arc_mfu_ghost->arcs_size)
15343298Smaybee 			arc_adjust();
15353298Smaybee 
15361544Seschrock 		if (arc_eviction_list != NULL)
15371544Seschrock 			arc_do_user_evicts();
15381544Seschrock 
1539789Sahrens 		/* block until needed, or one second, whichever is shorter */
1540789Sahrens 		CALLB_CPR_SAFE_BEGIN(&cpr);
1541789Sahrens 		(void) cv_timedwait(&arc_reclaim_thr_cv,
1542789Sahrens 		    &arc_reclaim_thr_lock, (lbolt + hz));
1543789Sahrens 		CALLB_CPR_SAFE_END(&cpr, &arc_reclaim_thr_lock);
1544789Sahrens 	}
1545789Sahrens 
1546789Sahrens 	arc_thread_exit = 0;
1547789Sahrens 	cv_broadcast(&arc_reclaim_thr_cv);
1548789Sahrens 	CALLB_CPR_EXIT(&cpr);		/* drops arc_reclaim_thr_lock */
1549789Sahrens 	thread_exit();
1550789Sahrens }
1551789Sahrens 
15521544Seschrock /*
15531544Seschrock  * Adapt arc info given the number of bytes we are trying to add and
15541544Seschrock  * the state that we are comming from.  This function is only called
15551544Seschrock  * when we are adding new content to the cache.
15561544Seschrock  */
1557789Sahrens static void
15581544Seschrock arc_adapt(int bytes, arc_state_t *state)
1559789Sahrens {
15601544Seschrock 	int mult;
15611544Seschrock 
15621544Seschrock 	ASSERT(bytes > 0);
1563789Sahrens 	/*
15641544Seschrock 	 * Adapt the target size of the MRU list:
15651544Seschrock 	 *	- if we just hit in the MRU ghost list, then increase
15661544Seschrock 	 *	  the target size of the MRU list.
15671544Seschrock 	 *	- if we just hit in the MFU ghost list, then increase
15681544Seschrock 	 *	  the target size of the MFU list by decreasing the
15691544Seschrock 	 *	  target size of the MRU list.
1570789Sahrens 	 */
15713403Sbmc 	if (state == arc_mru_ghost) {
15723403Sbmc 		mult = ((arc_mru_ghost->arcs_size >= arc_mfu_ghost->arcs_size) ?
15733403Sbmc 		    1 : (arc_mfu_ghost->arcs_size/arc_mru_ghost->arcs_size));
15741544Seschrock 
15753403Sbmc 		arc_p = MIN(arc_c, arc_p + bytes * mult);
15763403Sbmc 	} else if (state == arc_mfu_ghost) {
15773403Sbmc 		mult = ((arc_mfu_ghost->arcs_size >= arc_mru_ghost->arcs_size) ?
15783403Sbmc 		    1 : (arc_mru_ghost->arcs_size/arc_mfu_ghost->arcs_size));
15791544Seschrock 
15803403Sbmc 		arc_p = MAX(0, (int64_t)arc_p - bytes * mult);
15811544Seschrock 	}
15823403Sbmc 	ASSERT((int64_t)arc_p >= 0);
1583789Sahrens 
1584789Sahrens 	if (arc_reclaim_needed()) {
1585789Sahrens 		cv_signal(&arc_reclaim_thr_cv);
1586789Sahrens 		return;
1587789Sahrens 	}
1588789Sahrens 
15893403Sbmc 	if (arc_no_grow)
1590789Sahrens 		return;
1591789Sahrens 
15923403Sbmc 	if (arc_c >= arc_c_max)
15931544Seschrock 		return;
15941544Seschrock 
1595789Sahrens 	/*
15961544Seschrock 	 * If we're within (2 * maxblocksize) bytes of the target
15971544Seschrock 	 * cache size, increment the target cache size
1598789Sahrens 	 */
15993403Sbmc 	if (arc_size > arc_c - (2ULL << SPA_MAXBLOCKSHIFT)) {
16003403Sbmc 		atomic_add_64(&arc_c, (int64_t)bytes);
16013403Sbmc 		if (arc_c > arc_c_max)
16023403Sbmc 			arc_c = arc_c_max;
16033403Sbmc 		else if (state == arc_anon)
16043403Sbmc 			atomic_add_64(&arc_p, (int64_t)bytes);
16053403Sbmc 		if (arc_p > arc_c)
16063403Sbmc 			arc_p = arc_c;
1607789Sahrens 	}
16083403Sbmc 	ASSERT((int64_t)arc_p >= 0);
1609789Sahrens }
1610789Sahrens 
1611789Sahrens /*
16121544Seschrock  * Check if the cache has reached its limits and eviction is required
16131544Seschrock  * prior to insert.
1614789Sahrens  */
1615789Sahrens static int
1616789Sahrens arc_evict_needed()
1617789Sahrens {
1618789Sahrens 	if (arc_reclaim_needed())
1619789Sahrens 		return (1);
1620789Sahrens 
16213403Sbmc 	return (arc_size > arc_c);
1622789Sahrens }
1623789Sahrens 
1624789Sahrens /*
16252688Smaybee  * The buffer, supplied as the first argument, needs a data block.
16262688Smaybee  * So, if we are at cache max, determine which cache should be victimized.
16272688Smaybee  * We have the following cases:
1628789Sahrens  *
16293403Sbmc  * 1. Insert for MRU, p > sizeof(arc_anon + arc_mru) ->
1630789Sahrens  * In this situation if we're out of space, but the resident size of the MFU is
1631789Sahrens  * under the limit, victimize the MFU cache to satisfy this insertion request.
1632789Sahrens  *
16333403Sbmc  * 2. Insert for MRU, p <= sizeof(arc_anon + arc_mru) ->
1634789Sahrens  * Here, we've used up all of the available space for the MRU, so we need to
1635789Sahrens  * evict from our own cache instead.  Evict from the set of resident MRU
1636789Sahrens  * entries.
1637789Sahrens  *
16383403Sbmc  * 3. Insert for MFU (c - p) > sizeof(arc_mfu) ->
1639789Sahrens  * c minus p represents the MFU space in the cache, since p is the size of the
1640789Sahrens  * cache that is dedicated to the MRU.  In this situation there's still space on
1641789Sahrens  * the MFU side, so the MRU side needs to be victimized.
1642789Sahrens  *
16433403Sbmc  * 4. Insert for MFU (c - p) < sizeof(arc_mfu) ->
1644789Sahrens  * MFU's resident set is consuming more space than it has been allotted.  In
1645789Sahrens  * this situation, we must victimize our own cache, the MFU, for this insertion.
1646789Sahrens  */
1647789Sahrens static void
16482688Smaybee arc_get_data_buf(arc_buf_t *buf)
1649789Sahrens {
16503290Sjohansen 	arc_state_t		*state = buf->b_hdr->b_state;
16513290Sjohansen 	uint64_t		size = buf->b_hdr->b_size;
16523290Sjohansen 	arc_buf_contents_t	type = buf->b_hdr->b_type;
16532688Smaybee 
16542688Smaybee 	arc_adapt(size, state);
1655789Sahrens 
16562688Smaybee 	/*
16572688Smaybee 	 * We have not yet reached cache maximum size,
16582688Smaybee 	 * just allocate a new buffer.
16592688Smaybee 	 */
16602688Smaybee 	if (!arc_evict_needed()) {
16613290Sjohansen 		if (type == ARC_BUFC_METADATA) {
16623290Sjohansen 			buf->b_data = zio_buf_alloc(size);
16633290Sjohansen 		} else {
16643290Sjohansen 			ASSERT(type == ARC_BUFC_DATA);
16653290Sjohansen 			buf->b_data = zio_data_buf_alloc(size);
16663290Sjohansen 		}
16673403Sbmc 		atomic_add_64(&arc_size, size);
16682688Smaybee 		goto out;
16692688Smaybee 	}
16702688Smaybee 
16712688Smaybee 	/*
16722688Smaybee 	 * If we are prefetching from the mfu ghost list, this buffer
16732688Smaybee 	 * will end up on the mru list; so steal space from there.
16742688Smaybee 	 */
16753403Sbmc 	if (state == arc_mfu_ghost)
16763403Sbmc 		state = buf->b_hdr->b_flags & ARC_PREFETCH ? arc_mru : arc_mfu;
16773403Sbmc 	else if (state == arc_mru_ghost)
16783403Sbmc 		state = arc_mru;
1679789Sahrens 
16803403Sbmc 	if (state == arc_mru || state == arc_anon) {
16813403Sbmc 		uint64_t mru_used = arc_anon->arcs_size + arc_mru->arcs_size;
16823403Sbmc 		state = (arc_p > mru_used) ? arc_mfu : arc_mru;
1683789Sahrens 	} else {
16842688Smaybee 		/* MFU cases */
16853403Sbmc 		uint64_t mfu_space = arc_c - arc_p;
16863403Sbmc 		state =  (mfu_space > arc_mfu->arcs_size) ? arc_mru : arc_mfu;
16872688Smaybee 	}
16883290Sjohansen 	if ((buf->b_data = arc_evict(state, size, TRUE, type)) == NULL) {
16893290Sjohansen 		if (type == ARC_BUFC_METADATA) {
16903290Sjohansen 			buf->b_data = zio_buf_alloc(size);
16913290Sjohansen 		} else {
16923290Sjohansen 			ASSERT(type == ARC_BUFC_DATA);
16933290Sjohansen 			buf->b_data = zio_data_buf_alloc(size);
16943290Sjohansen 		}
16953403Sbmc 		atomic_add_64(&arc_size, size);
16963403Sbmc 		ARCSTAT_BUMP(arcstat_recycle_miss);
16972688Smaybee 	}
16982688Smaybee 	ASSERT(buf->b_data != NULL);
16992688Smaybee out:
17002688Smaybee 	/*
17012688Smaybee 	 * Update the state size.  Note that ghost states have a
17022688Smaybee 	 * "ghost size" and so don't need to be updated.
17032688Smaybee 	 */
17042688Smaybee 	if (!GHOST_STATE(buf->b_hdr->b_state)) {
17052688Smaybee 		arc_buf_hdr_t *hdr = buf->b_hdr;
17062688Smaybee 
17073403Sbmc 		atomic_add_64(&hdr->b_state->arcs_size, size);
17082688Smaybee 		if (list_link_active(&hdr->b_arc_node)) {
17092688Smaybee 			ASSERT(refcount_is_zero(&hdr->b_refcnt));
17103403Sbmc 			atomic_add_64(&hdr->b_state->arcs_lsize, size);
1711789Sahrens 		}
17123298Smaybee 		/*
17133298Smaybee 		 * If we are growing the cache, and we are adding anonymous
17143403Sbmc 		 * data, and we have outgrown arc_p, update arc_p
17153298Smaybee 		 */
17163403Sbmc 		if (arc_size < arc_c && hdr->b_state == arc_anon &&
17173403Sbmc 		    arc_anon->arcs_size + arc_mru->arcs_size > arc_p)
17183403Sbmc 			arc_p = MIN(arc_c, arc_p + size);
1719789Sahrens 	}
1720789Sahrens }
1721789Sahrens 
1722789Sahrens /*
1723789Sahrens  * This routine is called whenever a buffer is accessed.
17241544Seschrock  * NOTE: the hash lock is dropped in this function.
1725789Sahrens  */
1726789Sahrens static void
17272688Smaybee arc_access(arc_buf_hdr_t *buf, kmutex_t *hash_lock)
1728789Sahrens {
1729789Sahrens 	ASSERT(MUTEX_HELD(hash_lock));
1730789Sahrens 
17313403Sbmc 	if (buf->b_state == arc_anon) {
1732789Sahrens 		/*
1733789Sahrens 		 * This buffer is not in the cache, and does not
1734789Sahrens 		 * appear in our "ghost" list.  Add the new buffer
1735789Sahrens 		 * to the MRU state.
1736789Sahrens 		 */
1737789Sahrens 
1738789Sahrens 		ASSERT(buf->b_arc_access == 0);
1739789Sahrens 		buf->b_arc_access = lbolt;
17401544Seschrock 		DTRACE_PROBE1(new_state__mru, arc_buf_hdr_t *, buf);
17413403Sbmc 		arc_change_state(arc_mru, buf, hash_lock);
1742789Sahrens 
17433403Sbmc 	} else if (buf->b_state == arc_mru) {
1744789Sahrens 		/*
17452391Smaybee 		 * If this buffer is here because of a prefetch, then either:
17462391Smaybee 		 * - clear the flag if this is a "referencing" read
17472391Smaybee 		 *   (any subsequent access will bump this into the MFU state).
17482391Smaybee 		 * or
17492391Smaybee 		 * - move the buffer to the head of the list if this is
17502391Smaybee 		 *   another prefetch (to make it less likely to be evicted).
1751789Sahrens 		 */
1752789Sahrens 		if ((buf->b_flags & ARC_PREFETCH) != 0) {
17532391Smaybee 			if (refcount_count(&buf->b_refcnt) == 0) {
17542391Smaybee 				ASSERT(list_link_active(&buf->b_arc_node));
17553403Sbmc 				mutex_enter(&arc_mru->arcs_mtx);
17563403Sbmc 				list_remove(&arc_mru->arcs_list, buf);
17573403Sbmc 				list_insert_head(&arc_mru->arcs_list, buf);
17583403Sbmc 				mutex_exit(&arc_mru->arcs_mtx);
17592391Smaybee 			} else {
17602391Smaybee 				buf->b_flags &= ~ARC_PREFETCH;
17613403Sbmc 				ARCSTAT_BUMP(arcstat_mru_hits);
17622391Smaybee 			}
17632391Smaybee 			buf->b_arc_access = lbolt;
1764789Sahrens 			return;
1765789Sahrens 		}
1766789Sahrens 
1767789Sahrens 		/*
1768789Sahrens 		 * This buffer has been "accessed" only once so far,
1769789Sahrens 		 * but it is still in the cache. Move it to the MFU
1770789Sahrens 		 * state.
1771789Sahrens 		 */
1772789Sahrens 		if (lbolt > buf->b_arc_access + ARC_MINTIME) {
1773789Sahrens 			/*
1774789Sahrens 			 * More than 125ms have passed since we
1775789Sahrens 			 * instantiated this buffer.  Move it to the
1776789Sahrens 			 * most frequently used state.
1777789Sahrens 			 */
1778789Sahrens 			buf->b_arc_access = lbolt;
17791544Seschrock 			DTRACE_PROBE1(new_state__mfu, arc_buf_hdr_t *, buf);
17803403Sbmc 			arc_change_state(arc_mfu, buf, hash_lock);
1781789Sahrens 		}
17823403Sbmc 		ARCSTAT_BUMP(arcstat_mru_hits);
17833403Sbmc 	} else if (buf->b_state == arc_mru_ghost) {
1784789Sahrens 		arc_state_t	*new_state;
1785789Sahrens 		/*
1786789Sahrens 		 * This buffer has been "accessed" recently, but
1787789Sahrens 		 * was evicted from the cache.  Move it to the
1788789Sahrens 		 * MFU state.
1789789Sahrens 		 */
1790789Sahrens 
1791789Sahrens 		if (buf->b_flags & ARC_PREFETCH) {
17923403Sbmc 			new_state = arc_mru;
17932391Smaybee 			if (refcount_count(&buf->b_refcnt) > 0)
17942391Smaybee 				buf->b_flags &= ~ARC_PREFETCH;
17951544Seschrock 			DTRACE_PROBE1(new_state__mru, arc_buf_hdr_t *, buf);
1796789Sahrens 		} else {
17973403Sbmc 			new_state = arc_mfu;
17981544Seschrock 			DTRACE_PROBE1(new_state__mfu, arc_buf_hdr_t *, buf);
1799789Sahrens 		}
1800789Sahrens 
1801789Sahrens 		buf->b_arc_access = lbolt;
1802789Sahrens 		arc_change_state(new_state, buf, hash_lock);
1803789Sahrens 
18043403Sbmc 		ARCSTAT_BUMP(arcstat_mru_ghost_hits);
18053403Sbmc 	} else if (buf->b_state == arc_mfu) {
1806789Sahrens 		/*
1807789Sahrens 		 * This buffer has been accessed more than once and is
1808789Sahrens 		 * still in the cache.  Keep it in the MFU state.
1809789Sahrens 		 *
18102391Smaybee 		 * NOTE: an add_reference() that occurred when we did
18112391Smaybee 		 * the arc_read() will have kicked this off the list.
18122391Smaybee 		 * If it was a prefetch, we will explicitly move it to
18132391Smaybee 		 * the head of the list now.
1814789Sahrens 		 */
18152391Smaybee 		if ((buf->b_flags & ARC_PREFETCH) != 0) {
18162391Smaybee 			ASSERT(refcount_count(&buf->b_refcnt) == 0);
18172391Smaybee 			ASSERT(list_link_active(&buf->b_arc_node));
18183403Sbmc 			mutex_enter(&arc_mfu->arcs_mtx);
18193403Sbmc 			list_remove(&arc_mfu->arcs_list, buf);
18203403Sbmc 			list_insert_head(&arc_mfu->arcs_list, buf);
18213403Sbmc 			mutex_exit(&arc_mfu->arcs_mtx);
18222391Smaybee 		}
18233403Sbmc 		ARCSTAT_BUMP(arcstat_mfu_hits);
18242391Smaybee 		buf->b_arc_access = lbolt;
18253403Sbmc 	} else if (buf->b_state == arc_mfu_ghost) {
18263403Sbmc 		arc_state_t	*new_state = arc_mfu;
1827789Sahrens 		/*
1828789Sahrens 		 * This buffer has been accessed more than once but has
1829789Sahrens 		 * been evicted from the cache.  Move it back to the
1830789Sahrens 		 * MFU state.
1831789Sahrens 		 */
1832789Sahrens 
18332391Smaybee 		if (buf->b_flags & ARC_PREFETCH) {
18342391Smaybee 			/*
18352391Smaybee 			 * This is a prefetch access...
18362391Smaybee 			 * move this block back to the MRU state.
18372391Smaybee 			 */
18382391Smaybee 			ASSERT3U(refcount_count(&buf->b_refcnt), ==, 0);
18393403Sbmc 			new_state = arc_mru;
18402391Smaybee 		}
18412391Smaybee 
1842789Sahrens 		buf->b_arc_access = lbolt;
18431544Seschrock 		DTRACE_PROBE1(new_state__mfu, arc_buf_hdr_t *, buf);
18442391Smaybee 		arc_change_state(new_state, buf, hash_lock);
1845789Sahrens 
18463403Sbmc 		ARCSTAT_BUMP(arcstat_mfu_ghost_hits);
1847789Sahrens 	} else {
1848789Sahrens 		ASSERT(!"invalid arc state");
1849789Sahrens 	}
1850789Sahrens }
1851789Sahrens 
1852789Sahrens /* a generic arc_done_func_t which you can use */
1853789Sahrens /* ARGSUSED */
1854789Sahrens void
1855789Sahrens arc_bcopy_func(zio_t *zio, arc_buf_t *buf, void *arg)
1856789Sahrens {
1857789Sahrens 	bcopy(buf->b_data, arg, buf->b_hdr->b_size);
18581544Seschrock 	VERIFY(arc_buf_remove_ref(buf, arg) == 1);
1859789Sahrens }
1860789Sahrens 
1861789Sahrens /* a generic arc_done_func_t which you can use */
1862789Sahrens void
1863789Sahrens arc_getbuf_func(zio_t *zio, arc_buf_t *buf, void *arg)
1864789Sahrens {
1865789Sahrens 	arc_buf_t **bufp = arg;
1866789Sahrens 	if (zio && zio->io_error) {
18671544Seschrock 		VERIFY(arc_buf_remove_ref(buf, arg) == 1);
1868789Sahrens 		*bufp = NULL;
1869789Sahrens 	} else {
1870789Sahrens 		*bufp = buf;
1871789Sahrens 	}
1872789Sahrens }
1873789Sahrens 
1874789Sahrens static void
1875789Sahrens arc_read_done(zio_t *zio)
1876789Sahrens {
18771589Smaybee 	arc_buf_hdr_t	*hdr, *found;
1878789Sahrens 	arc_buf_t	*buf;
1879789Sahrens 	arc_buf_t	*abuf;	/* buffer we're assigning to callback */
1880789Sahrens 	kmutex_t	*hash_lock;
1881789Sahrens 	arc_callback_t	*callback_list, *acb;
1882789Sahrens 	int		freeable = FALSE;
1883789Sahrens 
1884789Sahrens 	buf = zio->io_private;
1885789Sahrens 	hdr = buf->b_hdr;
1886789Sahrens 
18871589Smaybee 	/*
18881589Smaybee 	 * The hdr was inserted into hash-table and removed from lists
18891589Smaybee 	 * prior to starting I/O.  We should find this header, since
18901589Smaybee 	 * it's in the hash table, and it should be legit since it's
18911589Smaybee 	 * not possible to evict it during the I/O.  The only possible
18921589Smaybee 	 * reason for it not to be found is if we were freed during the
18931589Smaybee 	 * read.
18941589Smaybee 	 */
18951589Smaybee 	found = buf_hash_find(zio->io_spa, &hdr->b_dva, hdr->b_birth,
18963093Sahrens 	    &hash_lock);
1897789Sahrens 
18981589Smaybee 	ASSERT((found == NULL && HDR_FREED_IN_READ(hdr) && hash_lock == NULL) ||
18991589Smaybee 	    (found == hdr && DVA_EQUAL(&hdr->b_dva, BP_IDENTITY(zio->io_bp))));
1900789Sahrens 
1901789Sahrens 	/* byteswap if necessary */
1902789Sahrens 	callback_list = hdr->b_acb;
1903789Sahrens 	ASSERT(callback_list != NULL);
1904789Sahrens 	if (BP_SHOULD_BYTESWAP(zio->io_bp) && callback_list->acb_byteswap)
1905789Sahrens 		callback_list->acb_byteswap(buf->b_data, hdr->b_size);
1906789Sahrens 
19073093Sahrens 	arc_cksum_compute(buf);
19083093Sahrens 
1909789Sahrens 	/* create copies of the data buffer for the callers */
1910789Sahrens 	abuf = buf;
1911789Sahrens 	for (acb = callback_list; acb; acb = acb->acb_next) {
1912789Sahrens 		if (acb->acb_done) {
19132688Smaybee 			if (abuf == NULL)
19142688Smaybee 				abuf = arc_buf_clone(buf);
1915789Sahrens 			acb->acb_buf = abuf;
1916789Sahrens 			abuf = NULL;
1917789Sahrens 		}
1918789Sahrens 	}
1919789Sahrens 	hdr->b_acb = NULL;
1920789Sahrens 	hdr->b_flags &= ~ARC_IO_IN_PROGRESS;
19211544Seschrock 	ASSERT(!HDR_BUF_AVAILABLE(hdr));
19221544Seschrock 	if (abuf == buf)
19231544Seschrock 		hdr->b_flags |= ARC_BUF_AVAILABLE;
1924789Sahrens 
1925789Sahrens 	ASSERT(refcount_is_zero(&hdr->b_refcnt) || callback_list != NULL);
1926789Sahrens 
1927789Sahrens 	if (zio->io_error != 0) {
1928789Sahrens 		hdr->b_flags |= ARC_IO_ERROR;
19293403Sbmc 		if (hdr->b_state != arc_anon)
19303403Sbmc 			arc_change_state(arc_anon, hdr, hash_lock);
19311544Seschrock 		if (HDR_IN_HASH_TABLE(hdr))
19321544Seschrock 			buf_hash_remove(hdr);
1933789Sahrens 		freeable = refcount_is_zero(&hdr->b_refcnt);
19342391Smaybee 		/* convert checksum errors into IO errors */
19351544Seschrock 		if (zio->io_error == ECKSUM)
19361544Seschrock 			zio->io_error = EIO;
1937789Sahrens 	}
1938789Sahrens 
19391544Seschrock 	/*
19402391Smaybee 	 * Broadcast before we drop the hash_lock to avoid the possibility
19412391Smaybee 	 * that the hdr (and hence the cv) might be freed before we get to
19422391Smaybee 	 * the cv_broadcast().
19431544Seschrock 	 */
19441544Seschrock 	cv_broadcast(&hdr->b_cv);
19451544Seschrock 
19461589Smaybee 	if (hash_lock) {
1947789Sahrens 		/*
1948789Sahrens 		 * Only call arc_access on anonymous buffers.  This is because
1949789Sahrens 		 * if we've issued an I/O for an evicted buffer, we've already
1950789Sahrens 		 * called arc_access (to prevent any simultaneous readers from
1951789Sahrens 		 * getting confused).
1952789Sahrens 		 */
19533403Sbmc 		if (zio->io_error == 0 && hdr->b_state == arc_anon)
19542688Smaybee 			arc_access(hdr, hash_lock);
19552688Smaybee 		mutex_exit(hash_lock);
1956789Sahrens 	} else {
1957789Sahrens 		/*
1958789Sahrens 		 * This block was freed while we waited for the read to
1959789Sahrens 		 * complete.  It has been removed from the hash table and
1960789Sahrens 		 * moved to the anonymous state (so that it won't show up
1961789Sahrens 		 * in the cache).
1962789Sahrens 		 */
19633403Sbmc 		ASSERT3P(hdr->b_state, ==, arc_anon);
1964789Sahrens 		freeable = refcount_is_zero(&hdr->b_refcnt);
1965789Sahrens 	}
1966789Sahrens 
1967789Sahrens 	/* execute each callback and free its structure */
1968789Sahrens 	while ((acb = callback_list) != NULL) {
1969789Sahrens 		if (acb->acb_done)
1970789Sahrens 			acb->acb_done(zio, acb->acb_buf, acb->acb_private);
1971789Sahrens 
1972789Sahrens 		if (acb->acb_zio_dummy != NULL) {
1973789Sahrens 			acb->acb_zio_dummy->io_error = zio->io_error;
1974789Sahrens 			zio_nowait(acb->acb_zio_dummy);
1975789Sahrens 		}
1976789Sahrens 
1977789Sahrens 		callback_list = acb->acb_next;
1978789Sahrens 		kmem_free(acb, sizeof (arc_callback_t));
1979789Sahrens 	}
1980789Sahrens 
1981789Sahrens 	if (freeable)
19821544Seschrock 		arc_hdr_destroy(hdr);
1983789Sahrens }
1984789Sahrens 
1985789Sahrens /*
1986789Sahrens  * "Read" the block block at the specified DVA (in bp) via the
1987789Sahrens  * cache.  If the block is found in the cache, invoke the provided
1988789Sahrens  * callback immediately and return.  Note that the `zio' parameter
1989789Sahrens  * in the callback will be NULL in this case, since no IO was
1990789Sahrens  * required.  If the block is not in the cache pass the read request
1991789Sahrens  * on to the spa with a substitute callback function, so that the
1992789Sahrens  * requested block will be added to the cache.
1993789Sahrens  *
1994789Sahrens  * If a read request arrives for a block that has a read in-progress,
1995789Sahrens  * either wait for the in-progress read to complete (and return the
1996789Sahrens  * results); or, if this is a read with a "done" func, add a record
1997789Sahrens  * to the read to invoke the "done" func when the read completes,
1998789Sahrens  * and return; or just return.
1999789Sahrens  *
2000789Sahrens  * arc_read_done() will invoke all the requested "done" functions
2001789Sahrens  * for readers of this block.
2002789Sahrens  */
2003789Sahrens int
2004789Sahrens arc_read(zio_t *pio, spa_t *spa, blkptr_t *bp, arc_byteswap_func_t *swap,
2005789Sahrens     arc_done_func_t *done, void *private, int priority, int flags,
20062391Smaybee     uint32_t *arc_flags, zbookmark_t *zb)
2007789Sahrens {
2008789Sahrens 	arc_buf_hdr_t *hdr;
2009789Sahrens 	arc_buf_t *buf;
2010789Sahrens 	kmutex_t *hash_lock;
2011789Sahrens 	zio_t	*rzio;
2012789Sahrens 
2013789Sahrens top:
2014789Sahrens 	hdr = buf_hash_find(spa, BP_IDENTITY(bp), bp->blk_birth, &hash_lock);
20151544Seschrock 	if (hdr && hdr->b_datacnt > 0) {
2016789Sahrens 
20172391Smaybee 		*arc_flags |= ARC_CACHED;
20182391Smaybee 
2019789Sahrens 		if (HDR_IO_IN_PROGRESS(hdr)) {
20202391Smaybee 
20212391Smaybee 			if (*arc_flags & ARC_WAIT) {
20222391Smaybee 				cv_wait(&hdr->b_cv, hash_lock);
20232391Smaybee 				mutex_exit(hash_lock);
20242391Smaybee 				goto top;
20252391Smaybee 			}
20262391Smaybee 			ASSERT(*arc_flags & ARC_NOWAIT);
20272391Smaybee 
20282391Smaybee 			if (done) {
2029789Sahrens 				arc_callback_t	*acb = NULL;
2030789Sahrens 
2031789Sahrens 				acb = kmem_zalloc(sizeof (arc_callback_t),
2032789Sahrens 				    KM_SLEEP);
2033789Sahrens 				acb->acb_done = done;
2034789Sahrens 				acb->acb_private = private;
2035789Sahrens 				acb->acb_byteswap = swap;
2036789Sahrens 				if (pio != NULL)
2037789Sahrens 					acb->acb_zio_dummy = zio_null(pio,
2038789Sahrens 					    spa, NULL, NULL, flags);
2039789Sahrens 
2040789Sahrens 				ASSERT(acb->acb_done != NULL);
2041789Sahrens 				acb->acb_next = hdr->b_acb;
2042789Sahrens 				hdr->b_acb = acb;
2043789Sahrens 				add_reference(hdr, hash_lock, private);
2044789Sahrens 				mutex_exit(hash_lock);
2045789Sahrens 				return (0);
2046789Sahrens 			}
2047789Sahrens 			mutex_exit(hash_lock);
2048789Sahrens 			return (0);
2049789Sahrens 		}
2050789Sahrens 
20513403Sbmc 		ASSERT(hdr->b_state == arc_mru || hdr->b_state == arc_mfu);
2052789Sahrens 
20531544Seschrock 		if (done) {
20542688Smaybee 			add_reference(hdr, hash_lock, private);
20551544Seschrock 			/*
20561544Seschrock 			 * If this block is already in use, create a new
20571544Seschrock 			 * copy of the data so that we will be guaranteed
20581544Seschrock 			 * that arc_release() will always succeed.
20591544Seschrock 			 */
20601544Seschrock 			buf = hdr->b_buf;
20611544Seschrock 			ASSERT(buf);
20621544Seschrock 			ASSERT(buf->b_data);
20632688Smaybee 			if (HDR_BUF_AVAILABLE(hdr)) {
20641544Seschrock 				ASSERT(buf->b_efunc == NULL);
20651544Seschrock 				hdr->b_flags &= ~ARC_BUF_AVAILABLE;
20662688Smaybee 			} else {
20672688Smaybee 				buf = arc_buf_clone(buf);
20681544Seschrock 			}
20692391Smaybee 		} else if (*arc_flags & ARC_PREFETCH &&
20702391Smaybee 		    refcount_count(&hdr->b_refcnt) == 0) {
20712391Smaybee 			hdr->b_flags |= ARC_PREFETCH;
2072789Sahrens 		}
2073789Sahrens 		DTRACE_PROBE1(arc__hit, arc_buf_hdr_t *, hdr);
20742688Smaybee 		arc_access(hdr, hash_lock);
20752688Smaybee 		mutex_exit(hash_lock);
20763403Sbmc 		ARCSTAT_BUMP(arcstat_hits);
20773403Sbmc 		ARCSTAT_CONDSTAT(!(hdr->b_flags & ARC_PREFETCH),
20783403Sbmc 		    demand, prefetch, hdr->b_type != ARC_BUFC_METADATA,
20793403Sbmc 		    data, metadata, hits);
20803403Sbmc 
2081789Sahrens 		if (done)
2082789Sahrens 			done(NULL, buf, private);
2083789Sahrens 	} else {
2084789Sahrens 		uint64_t size = BP_GET_LSIZE(bp);
2085789Sahrens 		arc_callback_t	*acb;
2086789Sahrens 
2087789Sahrens 		if (hdr == NULL) {
2088789Sahrens 			/* this block is not in the cache */
2089789Sahrens 			arc_buf_hdr_t	*exists;
20903290Sjohansen 			arc_buf_contents_t type = BP_GET_BUFC_TYPE(bp);
20913290Sjohansen 			buf = arc_buf_alloc(spa, size, private, type);
2092789Sahrens 			hdr = buf->b_hdr;
2093789Sahrens 			hdr->b_dva = *BP_IDENTITY(bp);
2094789Sahrens 			hdr->b_birth = bp->blk_birth;
2095789Sahrens 			hdr->b_cksum0 = bp->blk_cksum.zc_word[0];
2096789Sahrens 			exists = buf_hash_insert(hdr, &hash_lock);
2097789Sahrens 			if (exists) {
2098789Sahrens 				/* somebody beat us to the hash insert */
2099789Sahrens 				mutex_exit(hash_lock);
2100789Sahrens 				bzero(&hdr->b_dva, sizeof (dva_t));
2101789Sahrens 				hdr->b_birth = 0;
2102789Sahrens 				hdr->b_cksum0 = 0;
21031544Seschrock 				(void) arc_buf_remove_ref(buf, private);
2104789Sahrens 				goto top; /* restart the IO request */
2105789Sahrens 			}
21062391Smaybee 			/* if this is a prefetch, we don't have a reference */
21072391Smaybee 			if (*arc_flags & ARC_PREFETCH) {
21082391Smaybee 				(void) remove_reference(hdr, hash_lock,
21092391Smaybee 				    private);
21102391Smaybee 				hdr->b_flags |= ARC_PREFETCH;
21112391Smaybee 			}
21122391Smaybee 			if (BP_GET_LEVEL(bp) > 0)
21132391Smaybee 				hdr->b_flags |= ARC_INDIRECT;
2114789Sahrens 		} else {
2115789Sahrens 			/* this block is in the ghost cache */
21161544Seschrock 			ASSERT(GHOST_STATE(hdr->b_state));
21171544Seschrock 			ASSERT(!HDR_IO_IN_PROGRESS(hdr));
21182391Smaybee 			ASSERT3U(refcount_count(&hdr->b_refcnt), ==, 0);
21192391Smaybee 			ASSERT(hdr->b_buf == NULL);
2120789Sahrens 
21212391Smaybee 			/* if this is a prefetch, we don't have a reference */
21222391Smaybee 			if (*arc_flags & ARC_PREFETCH)
21232391Smaybee 				hdr->b_flags |= ARC_PREFETCH;
21242391Smaybee 			else
21252391Smaybee 				add_reference(hdr, hash_lock, private);
2126789Sahrens 			buf = kmem_cache_alloc(buf_cache, KM_SLEEP);
21271544Seschrock 			buf->b_hdr = hdr;
21282688Smaybee 			buf->b_data = NULL;
21291544Seschrock 			buf->b_efunc = NULL;
21301544Seschrock 			buf->b_private = NULL;
21311544Seschrock 			buf->b_next = NULL;
21321544Seschrock 			hdr->b_buf = buf;
21332688Smaybee 			arc_get_data_buf(buf);
21341544Seschrock 			ASSERT(hdr->b_datacnt == 0);
21351544Seschrock 			hdr->b_datacnt = 1;
21362391Smaybee 
2137789Sahrens 		}
2138789Sahrens 
2139789Sahrens 		acb = kmem_zalloc(sizeof (arc_callback_t), KM_SLEEP);
2140789Sahrens 		acb->acb_done = done;
2141789Sahrens 		acb->acb_private = private;
2142789Sahrens 		acb->acb_byteswap = swap;
2143789Sahrens 
2144789Sahrens 		ASSERT(hdr->b_acb == NULL);
2145789Sahrens 		hdr->b_acb = acb;
2146789Sahrens 		hdr->b_flags |= ARC_IO_IN_PROGRESS;
2147789Sahrens 
2148789Sahrens 		/*
2149789Sahrens 		 * If the buffer has been evicted, migrate it to a present state
2150789Sahrens 		 * before issuing the I/O.  Once we drop the hash-table lock,
2151789Sahrens 		 * the header will be marked as I/O in progress and have an
2152789Sahrens 		 * attached buffer.  At this point, anybody who finds this
2153789Sahrens 		 * buffer ought to notice that it's legit but has a pending I/O.
2154789Sahrens 		 */
2155789Sahrens 
21561544Seschrock 		if (GHOST_STATE(hdr->b_state))
21572688Smaybee 			arc_access(hdr, hash_lock);
21582688Smaybee 		mutex_exit(hash_lock);
2159789Sahrens 
2160789Sahrens 		ASSERT3U(hdr->b_size, ==, size);
21611596Sahrens 		DTRACE_PROBE3(arc__miss, blkptr_t *, bp, uint64_t, size,
21621596Sahrens 		    zbookmark_t *, zb);
21633403Sbmc 		ARCSTAT_BUMP(arcstat_misses);
21643403Sbmc 		ARCSTAT_CONDSTAT(!(hdr->b_flags & ARC_PREFETCH),
21653403Sbmc 		    demand, prefetch, hdr->b_type != ARC_BUFC_METADATA,
21663403Sbmc 		    data, metadata, misses);
21671544Seschrock 
2168789Sahrens 		rzio = zio_read(pio, spa, bp, buf->b_data, size,
21691544Seschrock 		    arc_read_done, buf, priority, flags, zb);
2170789Sahrens 
21712391Smaybee 		if (*arc_flags & ARC_WAIT)
2172789Sahrens 			return (zio_wait(rzio));
2173789Sahrens 
21742391Smaybee 		ASSERT(*arc_flags & ARC_NOWAIT);
2175789Sahrens 		zio_nowait(rzio);
2176789Sahrens 	}
2177789Sahrens 	return (0);
2178789Sahrens }
2179789Sahrens 
2180789Sahrens /*
2181789Sahrens  * arc_read() variant to support pool traversal.  If the block is already
2182789Sahrens  * in the ARC, make a copy of it; otherwise, the caller will do the I/O.
2183789Sahrens  * The idea is that we don't want pool traversal filling up memory, but
2184789Sahrens  * if the ARC already has the data anyway, we shouldn't pay for the I/O.
2185789Sahrens  */
2186789Sahrens int
2187789Sahrens arc_tryread(spa_t *spa, blkptr_t *bp, void *data)
2188789Sahrens {
2189789Sahrens 	arc_buf_hdr_t *hdr;
2190789Sahrens 	kmutex_t *hash_mtx;
2191789Sahrens 	int rc = 0;
2192789Sahrens 
2193789Sahrens 	hdr = buf_hash_find(spa, BP_IDENTITY(bp), bp->blk_birth, &hash_mtx);
2194789Sahrens 
21951544Seschrock 	if (hdr && hdr->b_datacnt > 0 && !HDR_IO_IN_PROGRESS(hdr)) {
21961544Seschrock 		arc_buf_t *buf = hdr->b_buf;
21971544Seschrock 
21981544Seschrock 		ASSERT(buf);
21991544Seschrock 		while (buf->b_data == NULL) {
22001544Seschrock 			buf = buf->b_next;
22011544Seschrock 			ASSERT(buf);
22021544Seschrock 		}
22031544Seschrock 		bcopy(buf->b_data, data, hdr->b_size);
22041544Seschrock 	} else {
2205789Sahrens 		rc = ENOENT;
22061544Seschrock 	}
2207789Sahrens 
2208789Sahrens 	if (hash_mtx)
2209789Sahrens 		mutex_exit(hash_mtx);
2210789Sahrens 
2211789Sahrens 	return (rc);
2212789Sahrens }
2213789Sahrens 
22141544Seschrock void
22151544Seschrock arc_set_callback(arc_buf_t *buf, arc_evict_func_t *func, void *private)
22161544Seschrock {
22171544Seschrock 	ASSERT(buf->b_hdr != NULL);
22183403Sbmc 	ASSERT(buf->b_hdr->b_state != arc_anon);
22191544Seschrock 	ASSERT(!refcount_is_zero(&buf->b_hdr->b_refcnt) || func == NULL);
22201544Seschrock 	buf->b_efunc = func;
22211544Seschrock 	buf->b_private = private;
22221544Seschrock }
22231544Seschrock 
22241544Seschrock /*
22251544Seschrock  * This is used by the DMU to let the ARC know that a buffer is
22261544Seschrock  * being evicted, so the ARC should clean up.  If this arc buf
22271544Seschrock  * is not yet in the evicted state, it will be put there.
22281544Seschrock  */
22291544Seschrock int
22301544Seschrock arc_buf_evict(arc_buf_t *buf)
22311544Seschrock {
22322887Smaybee 	arc_buf_hdr_t *hdr;
22331544Seschrock 	kmutex_t *hash_lock;
22341544Seschrock 	arc_buf_t **bufp;
22351544Seschrock 
22362887Smaybee 	mutex_enter(&arc_eviction_mtx);
22372887Smaybee 	hdr = buf->b_hdr;
22381544Seschrock 	if (hdr == NULL) {
22391544Seschrock 		/*
22401544Seschrock 		 * We are in arc_do_user_evicts().
22411544Seschrock 		 */
22421544Seschrock 		ASSERT(buf->b_data == NULL);
22432887Smaybee 		mutex_exit(&arc_eviction_mtx);
22441544Seschrock 		return (0);
22451544Seschrock 	}
22462887Smaybee 	hash_lock = HDR_LOCK(hdr);
22472887Smaybee 	mutex_exit(&arc_eviction_mtx);
22481544Seschrock 
22491544Seschrock 	mutex_enter(hash_lock);
22501544Seschrock 
22512724Smaybee 	if (buf->b_data == NULL) {
22522724Smaybee 		/*
22532724Smaybee 		 * We are on the eviction list.
22542724Smaybee 		 */
22552724Smaybee 		mutex_exit(hash_lock);
22562724Smaybee 		mutex_enter(&arc_eviction_mtx);
22572724Smaybee 		if (buf->b_hdr == NULL) {
22582724Smaybee 			/*
22592724Smaybee 			 * We are already in arc_do_user_evicts().
22602724Smaybee 			 */
22612724Smaybee 			mutex_exit(&arc_eviction_mtx);
22622724Smaybee 			return (0);
22632724Smaybee 		} else {
22642724Smaybee 			arc_buf_t copy = *buf; /* structure assignment */
22652724Smaybee 			/*
22662724Smaybee 			 * Process this buffer now
22672724Smaybee 			 * but let arc_do_user_evicts() do the reaping.
22682724Smaybee 			 */
22692724Smaybee 			buf->b_efunc = NULL;
22702724Smaybee 			mutex_exit(&arc_eviction_mtx);
22712724Smaybee 			VERIFY(copy.b_efunc(&copy) == 0);
22722724Smaybee 			return (1);
22732724Smaybee 		}
22742724Smaybee 	}
22752724Smaybee 
22762724Smaybee 	ASSERT(buf->b_hdr == hdr);
22772724Smaybee 	ASSERT3U(refcount_count(&hdr->b_refcnt), <, hdr->b_datacnt);
22783403Sbmc 	ASSERT(hdr->b_state == arc_mru || hdr->b_state == arc_mfu);
22791544Seschrock 
22801544Seschrock 	/*
22811544Seschrock 	 * Pull this buffer off of the hdr
22821544Seschrock 	 */
22831544Seschrock 	bufp = &hdr->b_buf;
22841544Seschrock 	while (*bufp != buf)
22851544Seschrock 		bufp = &(*bufp)->b_next;
22861544Seschrock 	*bufp = buf->b_next;
22871544Seschrock 
22881544Seschrock 	ASSERT(buf->b_data != NULL);
22892688Smaybee 	arc_buf_destroy(buf, FALSE, FALSE);
22901544Seschrock 
22911544Seschrock 	if (hdr->b_datacnt == 0) {
22921544Seschrock 		arc_state_t *old_state = hdr->b_state;
22931544Seschrock 		arc_state_t *evicted_state;
22941544Seschrock 
22951544Seschrock 		ASSERT(refcount_is_zero(&hdr->b_refcnt));
22961544Seschrock 
22971544Seschrock 		evicted_state =
22983403Sbmc 		    (old_state == arc_mru) ? arc_mru_ghost : arc_mfu_ghost;
22991544Seschrock 
23003403Sbmc 		mutex_enter(&old_state->arcs_mtx);
23013403Sbmc 		mutex_enter(&evicted_state->arcs_mtx);
23021544Seschrock 
23031544Seschrock 		arc_change_state(evicted_state, hdr, hash_lock);
23041544Seschrock 		ASSERT(HDR_IN_HASH_TABLE(hdr));
23051544Seschrock 		hdr->b_flags = ARC_IN_HASH_TABLE;
23061544Seschrock 
23073403Sbmc 		mutex_exit(&evicted_state->arcs_mtx);
23083403Sbmc 		mutex_exit(&old_state->arcs_mtx);
23091544Seschrock 	}
23101544Seschrock 	mutex_exit(hash_lock);
23111819Smaybee 
23121544Seschrock 	VERIFY(buf->b_efunc(buf) == 0);
23131544Seschrock 	buf->b_efunc = NULL;
23141544Seschrock 	buf->b_private = NULL;
23151544Seschrock 	buf->b_hdr = NULL;
23161544Seschrock 	kmem_cache_free(buf_cache, buf);
23171544Seschrock 	return (1);
23181544Seschrock }
23191544Seschrock 
2320789Sahrens /*
2321789Sahrens  * Release this buffer from the cache.  This must be done
2322789Sahrens  * after a read and prior to modifying the buffer contents.
2323789Sahrens  * If the buffer has more than one reference, we must make
2324789Sahrens  * make a new hdr for the buffer.
2325789Sahrens  */
2326789Sahrens void
2327789Sahrens arc_release(arc_buf_t *buf, void *tag)
2328789Sahrens {
2329789Sahrens 	arc_buf_hdr_t *hdr = buf->b_hdr;
2330789Sahrens 	kmutex_t *hash_lock = HDR_LOCK(hdr);
2331789Sahrens 
2332789Sahrens 	/* this buffer is not on any list */
2333789Sahrens 	ASSERT(refcount_count(&hdr->b_refcnt) > 0);
2334789Sahrens 
23353403Sbmc 	if (hdr->b_state == arc_anon) {
2336789Sahrens 		/* this buffer is already released */
2337789Sahrens 		ASSERT3U(refcount_count(&hdr->b_refcnt), ==, 1);
2338789Sahrens 		ASSERT(BUF_EMPTY(hdr));
23391544Seschrock 		ASSERT(buf->b_efunc == NULL);
23403093Sahrens 		arc_buf_thaw(buf);
2341789Sahrens 		return;
2342789Sahrens 	}
2343789Sahrens 
2344789Sahrens 	mutex_enter(hash_lock);
2345789Sahrens 
23461544Seschrock 	/*
23471544Seschrock 	 * Do we have more than one buf?
23481544Seschrock 	 */
23491544Seschrock 	if (hdr->b_buf != buf || buf->b_next != NULL) {
2350789Sahrens 		arc_buf_hdr_t *nhdr;
2351789Sahrens 		arc_buf_t **bufp;
2352789Sahrens 		uint64_t blksz = hdr->b_size;
2353789Sahrens 		spa_t *spa = hdr->b_spa;
23543290Sjohansen 		arc_buf_contents_t type = hdr->b_type;
2355789Sahrens 
23561544Seschrock 		ASSERT(hdr->b_datacnt > 1);
2357789Sahrens 		/*
2358789Sahrens 		 * Pull the data off of this buf and attach it to
2359789Sahrens 		 * a new anonymous buf.
2360789Sahrens 		 */
23611544Seschrock 		(void) remove_reference(hdr, hash_lock, tag);
2362789Sahrens 		bufp = &hdr->b_buf;
23631544Seschrock 		while (*bufp != buf)
2364789Sahrens 			bufp = &(*bufp)->b_next;
2365789Sahrens 		*bufp = (*bufp)->b_next;
2366*3897Smaybee 		buf->b_next = NULL;
23671544Seschrock 
23683403Sbmc 		ASSERT3U(hdr->b_state->arcs_size, >=, hdr->b_size);
23693403Sbmc 		atomic_add_64(&hdr->b_state->arcs_size, -hdr->b_size);
23701544Seschrock 		if (refcount_is_zero(&hdr->b_refcnt)) {
23713403Sbmc 			ASSERT3U(hdr->b_state->arcs_lsize, >=, hdr->b_size);
23723403Sbmc 			atomic_add_64(&hdr->b_state->arcs_lsize, -hdr->b_size);
23731544Seschrock 		}
23741544Seschrock 		hdr->b_datacnt -= 1;
23753547Smaybee 		arc_cksum_verify(buf);
23761544Seschrock 
2377789Sahrens 		mutex_exit(hash_lock);
2378789Sahrens 
2379789Sahrens 		nhdr = kmem_cache_alloc(hdr_cache, KM_SLEEP);
2380789Sahrens 		nhdr->b_size = blksz;
2381789Sahrens 		nhdr->b_spa = spa;
23823290Sjohansen 		nhdr->b_type = type;
2383789Sahrens 		nhdr->b_buf = buf;
23843403Sbmc 		nhdr->b_state = arc_anon;
2385789Sahrens 		nhdr->b_arc_access = 0;
2386789Sahrens 		nhdr->b_flags = 0;
23871544Seschrock 		nhdr->b_datacnt = 1;
23883547Smaybee 		nhdr->b_freeze_cksum = NULL;
2389*3897Smaybee 		(void) refcount_add(&nhdr->b_refcnt, tag);
2390789Sahrens 		buf->b_hdr = nhdr;
23913403Sbmc 		atomic_add_64(&arc_anon->arcs_size, blksz);
2392789Sahrens 
2393789Sahrens 		hdr = nhdr;
2394789Sahrens 	} else {
23951544Seschrock 		ASSERT(refcount_count(&hdr->b_refcnt) == 1);
2396789Sahrens 		ASSERT(!list_link_active(&hdr->b_arc_node));
2397789Sahrens 		ASSERT(!HDR_IO_IN_PROGRESS(hdr));
23983403Sbmc 		arc_change_state(arc_anon, hdr, hash_lock);
2399789Sahrens 		hdr->b_arc_access = 0;
2400789Sahrens 		mutex_exit(hash_lock);
2401789Sahrens 		bzero(&hdr->b_dva, sizeof (dva_t));
2402789Sahrens 		hdr->b_birth = 0;
2403789Sahrens 		hdr->b_cksum0 = 0;
24043547Smaybee 		arc_buf_thaw(buf);
2405789Sahrens 	}
24061544Seschrock 	buf->b_efunc = NULL;
24071544Seschrock 	buf->b_private = NULL;
2408789Sahrens }
2409789Sahrens 
2410789Sahrens int
2411789Sahrens arc_released(arc_buf_t *buf)
2412789Sahrens {
24133403Sbmc 	return (buf->b_data != NULL && buf->b_hdr->b_state == arc_anon);
24141544Seschrock }
24151544Seschrock 
24161544Seschrock int
24171544Seschrock arc_has_callback(arc_buf_t *buf)
24181544Seschrock {
24191544Seschrock 	return (buf->b_efunc != NULL);
2420789Sahrens }
2421789Sahrens 
24221544Seschrock #ifdef ZFS_DEBUG
24231544Seschrock int
24241544Seschrock arc_referenced(arc_buf_t *buf)
24251544Seschrock {
24261544Seschrock 	return (refcount_count(&buf->b_hdr->b_refcnt));
24271544Seschrock }
24281544Seschrock #endif
24291544Seschrock 
2430789Sahrens static void
24313547Smaybee arc_write_ready(zio_t *zio)
24323547Smaybee {
24333547Smaybee 	arc_write_callback_t *callback = zio->io_private;
24343547Smaybee 	arc_buf_t *buf = callback->awcb_buf;
24353547Smaybee 
24363547Smaybee 	if (callback->awcb_ready) {
24373547Smaybee 		ASSERT(!refcount_is_zero(&buf->b_hdr->b_refcnt));
24383547Smaybee 		callback->awcb_ready(zio, buf, callback->awcb_private);
24393547Smaybee 	}
24403547Smaybee 	arc_cksum_compute(buf);
24413547Smaybee }
24423547Smaybee 
24433547Smaybee static void
2444789Sahrens arc_write_done(zio_t *zio)
2445789Sahrens {
24463547Smaybee 	arc_write_callback_t *callback = zio->io_private;
24473547Smaybee 	arc_buf_t *buf = callback->awcb_buf;
24483547Smaybee 	arc_buf_hdr_t *hdr = buf->b_hdr;
2449789Sahrens 
2450789Sahrens 	hdr->b_acb = NULL;
2451789Sahrens 
2452789Sahrens 	/* this buffer is on no lists and is not in the hash table */
24533403Sbmc 	ASSERT3P(hdr->b_state, ==, arc_anon);
2454789Sahrens 
2455789Sahrens 	hdr->b_dva = *BP_IDENTITY(zio->io_bp);
2456789Sahrens 	hdr->b_birth = zio->io_bp->blk_birth;
2457789Sahrens 	hdr->b_cksum0 = zio->io_bp->blk_cksum.zc_word[0];
24581544Seschrock 	/*
24591544Seschrock 	 * If the block to be written was all-zero, we may have
24601544Seschrock 	 * compressed it away.  In this case no write was performed
24611544Seschrock 	 * so there will be no dva/birth-date/checksum.  The buffer
24621544Seschrock 	 * must therefor remain anonymous (and uncached).
24631544Seschrock 	 */
2464789Sahrens 	if (!BUF_EMPTY(hdr)) {
2465789Sahrens 		arc_buf_hdr_t *exists;
2466789Sahrens 		kmutex_t *hash_lock;
2467789Sahrens 
24683093Sahrens 		arc_cksum_verify(buf);
24693093Sahrens 
2470789Sahrens 		exists = buf_hash_insert(hdr, &hash_lock);
2471789Sahrens 		if (exists) {
2472789Sahrens 			/*
2473789Sahrens 			 * This can only happen if we overwrite for
2474789Sahrens 			 * sync-to-convergence, because we remove
2475789Sahrens 			 * buffers from the hash table when we arc_free().
2476789Sahrens 			 */
2477789Sahrens 			ASSERT(DVA_EQUAL(BP_IDENTITY(&zio->io_bp_orig),
2478789Sahrens 			    BP_IDENTITY(zio->io_bp)));
2479789Sahrens 			ASSERT3U(zio->io_bp_orig.blk_birth, ==,
2480789Sahrens 			    zio->io_bp->blk_birth);
2481789Sahrens 
2482789Sahrens 			ASSERT(refcount_is_zero(&exists->b_refcnt));
24833403Sbmc 			arc_change_state(arc_anon, exists, hash_lock);
2484789Sahrens 			mutex_exit(hash_lock);
24851544Seschrock 			arc_hdr_destroy(exists);
2486789Sahrens 			exists = buf_hash_insert(hdr, &hash_lock);
2487789Sahrens 			ASSERT3P(exists, ==, NULL);
2488789Sahrens 		}
24891544Seschrock 		hdr->b_flags &= ~ARC_IO_IN_PROGRESS;
24902688Smaybee 		arc_access(hdr, hash_lock);
24912688Smaybee 		mutex_exit(hash_lock);
24923547Smaybee 	} else if (callback->awcb_done == NULL) {
24931544Seschrock 		int destroy_hdr;
24941544Seschrock 		/*
24951544Seschrock 		 * This is an anonymous buffer with no user callback,
24961544Seschrock 		 * destroy it if there are no active references.
24971544Seschrock 		 */
24981544Seschrock 		mutex_enter(&arc_eviction_mtx);
24991544Seschrock 		destroy_hdr = refcount_is_zero(&hdr->b_refcnt);
25001544Seschrock 		hdr->b_flags &= ~ARC_IO_IN_PROGRESS;
25011544Seschrock 		mutex_exit(&arc_eviction_mtx);
25021544Seschrock 		if (destroy_hdr)
25031544Seschrock 			arc_hdr_destroy(hdr);
25041544Seschrock 	} else {
25051544Seschrock 		hdr->b_flags &= ~ARC_IO_IN_PROGRESS;
2506789Sahrens 	}
25071544Seschrock 
25083547Smaybee 	if (callback->awcb_done) {
2509789Sahrens 		ASSERT(!refcount_is_zero(&hdr->b_refcnt));
25103547Smaybee 		callback->awcb_done(zio, buf, callback->awcb_private);
2511789Sahrens 	}
2512789Sahrens 
25133547Smaybee 	kmem_free(callback, sizeof (arc_write_callback_t));
2514789Sahrens }
2515789Sahrens 
25163547Smaybee zio_t *
25171775Sbillm arc_write(zio_t *pio, spa_t *spa, int checksum, int compress, int ncopies,
2518789Sahrens     uint64_t txg, blkptr_t *bp, arc_buf_t *buf,
25193547Smaybee     arc_done_func_t *ready, arc_done_func_t *done, void *private, int priority,
25203547Smaybee     int flags, zbookmark_t *zb)
2521789Sahrens {
2522789Sahrens 	arc_buf_hdr_t *hdr = buf->b_hdr;
25233547Smaybee 	arc_write_callback_t *callback;
25243547Smaybee 	zio_t	*zio;
2525789Sahrens 
2526789Sahrens 	/* this is a private buffer - no locking required */
25273403Sbmc 	ASSERT3P(hdr->b_state, ==, arc_anon);
2528789Sahrens 	ASSERT(BUF_EMPTY(hdr));
2529789Sahrens 	ASSERT(!HDR_IO_ERROR(hdr));
25302237Smaybee 	ASSERT((hdr->b_flags & ARC_IO_IN_PROGRESS) == 0);
25312237Smaybee 	ASSERT(hdr->b_acb == 0);
25323547Smaybee 	callback = kmem_zalloc(sizeof (arc_write_callback_t), KM_SLEEP);
25333547Smaybee 	callback->awcb_ready = ready;
25343547Smaybee 	callback->awcb_done = done;
25353547Smaybee 	callback->awcb_private = private;
25363547Smaybee 	callback->awcb_buf = buf;
25371544Seschrock 	hdr->b_flags |= ARC_IO_IN_PROGRESS;
25383547Smaybee 	zio = zio_write(pio, spa, checksum, compress, ncopies, txg, bp,
25393547Smaybee 	    buf->b_data, hdr->b_size, arc_write_ready, arc_write_done, callback,
25403547Smaybee 	    priority, flags, zb);
2541789Sahrens 
25423547Smaybee 	return (zio);
2543789Sahrens }
2544789Sahrens 
2545789Sahrens int
2546789Sahrens arc_free(zio_t *pio, spa_t *spa, uint64_t txg, blkptr_t *bp,
2547789Sahrens     zio_done_func_t *done, void *private, uint32_t arc_flags)
2548789Sahrens {
2549789Sahrens 	arc_buf_hdr_t *ab;
2550789Sahrens 	kmutex_t *hash_lock;
2551789Sahrens 	zio_t	*zio;
2552789Sahrens 
2553789Sahrens 	/*
2554789Sahrens 	 * If this buffer is in the cache, release it, so it
2555789Sahrens 	 * can be re-used.
2556789Sahrens 	 */
2557789Sahrens 	ab = buf_hash_find(spa, BP_IDENTITY(bp), bp->blk_birth, &hash_lock);
2558789Sahrens 	if (ab != NULL) {
2559789Sahrens 		/*
2560789Sahrens 		 * The checksum of blocks to free is not always
2561789Sahrens 		 * preserved (eg. on the deadlist).  However, if it is
2562789Sahrens 		 * nonzero, it should match what we have in the cache.
2563789Sahrens 		 */
2564789Sahrens 		ASSERT(bp->blk_cksum.zc_word[0] == 0 ||
2565789Sahrens 		    ab->b_cksum0 == bp->blk_cksum.zc_word[0]);
25663403Sbmc 		if (ab->b_state != arc_anon)
25673403Sbmc 			arc_change_state(arc_anon, ab, hash_lock);
25682391Smaybee 		if (HDR_IO_IN_PROGRESS(ab)) {
25692391Smaybee 			/*
25702391Smaybee 			 * This should only happen when we prefetch.
25712391Smaybee 			 */
25722391Smaybee 			ASSERT(ab->b_flags & ARC_PREFETCH);
25732391Smaybee 			ASSERT3U(ab->b_datacnt, ==, 1);
25742391Smaybee 			ab->b_flags |= ARC_FREED_IN_READ;
25752391Smaybee 			if (HDR_IN_HASH_TABLE(ab))
25762391Smaybee 				buf_hash_remove(ab);
25772391Smaybee 			ab->b_arc_access = 0;
25782391Smaybee 			bzero(&ab->b_dva, sizeof (dva_t));
25792391Smaybee 			ab->b_birth = 0;
25802391Smaybee 			ab->b_cksum0 = 0;
25812391Smaybee 			ab->b_buf->b_efunc = NULL;
25822391Smaybee 			ab->b_buf->b_private = NULL;
25832391Smaybee 			mutex_exit(hash_lock);
25842391Smaybee 		} else if (refcount_is_zero(&ab->b_refcnt)) {
2585789Sahrens 			mutex_exit(hash_lock);
25861544Seschrock 			arc_hdr_destroy(ab);
25873403Sbmc 			ARCSTAT_BUMP(arcstat_deleted);
2588789Sahrens 		} else {
25891589Smaybee 			/*
25902391Smaybee 			 * We still have an active reference on this
25912391Smaybee 			 * buffer.  This can happen, e.g., from
25922391Smaybee 			 * dbuf_unoverride().
25931589Smaybee 			 */
25942391Smaybee 			ASSERT(!HDR_IN_HASH_TABLE(ab));
2595789Sahrens 			ab->b_arc_access = 0;
2596789Sahrens 			bzero(&ab->b_dva, sizeof (dva_t));
2597789Sahrens 			ab->b_birth = 0;
2598789Sahrens 			ab->b_cksum0 = 0;
25991544Seschrock 			ab->b_buf->b_efunc = NULL;
26001544Seschrock 			ab->b_buf->b_private = NULL;
2601789Sahrens 			mutex_exit(hash_lock);
2602789Sahrens 		}
2603789Sahrens 	}
2604789Sahrens 
2605789Sahrens 	zio = zio_free(pio, spa, txg, bp, done, private);
2606789Sahrens 
2607789Sahrens 	if (arc_flags & ARC_WAIT)
2608789Sahrens 		return (zio_wait(zio));
2609789Sahrens 
2610789Sahrens 	ASSERT(arc_flags & ARC_NOWAIT);
2611789Sahrens 	zio_nowait(zio);
2612789Sahrens 
2613789Sahrens 	return (0);
2614789Sahrens }
2615789Sahrens 
2616789Sahrens void
2617789Sahrens arc_tempreserve_clear(uint64_t tempreserve)
2618789Sahrens {
2619789Sahrens 	atomic_add_64(&arc_tempreserve, -tempreserve);
2620789Sahrens 	ASSERT((int64_t)arc_tempreserve >= 0);
2621789Sahrens }
2622789Sahrens 
2623789Sahrens int
2624789Sahrens arc_tempreserve_space(uint64_t tempreserve)
2625789Sahrens {
2626789Sahrens #ifdef ZFS_DEBUG
2627789Sahrens 	/*
2628789Sahrens 	 * Once in a while, fail for no reason.  Everything should cope.
2629789Sahrens 	 */
2630789Sahrens 	if (spa_get_random(10000) == 0) {
2631789Sahrens 		dprintf("forcing random failure\n");
2632789Sahrens 		return (ERESTART);
2633789Sahrens 	}
2634789Sahrens #endif
26353403Sbmc 	if (tempreserve > arc_c/4 && !arc_no_grow)
26363403Sbmc 		arc_c = MIN(arc_c_max, tempreserve * 4);
26373403Sbmc 	if (tempreserve > arc_c)
2638982Smaybee 		return (ENOMEM);
2639982Smaybee 
2640789Sahrens 	/*
2641982Smaybee 	 * Throttle writes when the amount of dirty data in the cache
2642982Smaybee 	 * gets too large.  We try to keep the cache less than half full
2643982Smaybee 	 * of dirty blocks so that our sync times don't grow too large.
2644982Smaybee 	 * Note: if two requests come in concurrently, we might let them
2645982Smaybee 	 * both succeed, when one of them should fail.  Not a huge deal.
2646982Smaybee 	 *
2647982Smaybee 	 * XXX The limit should be adjusted dynamically to keep the time
2648982Smaybee 	 * to sync a dataset fixed (around 1-5 seconds?).
2649789Sahrens 	 */
2650789Sahrens 
26513403Sbmc 	if (tempreserve + arc_tempreserve + arc_anon->arcs_size > arc_c / 2 &&
26523403Sbmc 	    arc_tempreserve + arc_anon->arcs_size > arc_c / 4) {
2653789Sahrens 		dprintf("failing, arc_tempreserve=%lluK anon=%lluK "
26543403Sbmc 		    "tempreserve=%lluK arc_c=%lluK\n",
26553403Sbmc 		    arc_tempreserve>>10, arc_anon->arcs_lsize>>10,
26563403Sbmc 		    tempreserve>>10, arc_c>>10);
2657789Sahrens 		return (ERESTART);
2658789Sahrens 	}
2659789Sahrens 	atomic_add_64(&arc_tempreserve, tempreserve);
2660789Sahrens 	return (0);
2661789Sahrens }
2662789Sahrens 
2663789Sahrens void
2664789Sahrens arc_init(void)
2665789Sahrens {
2666789Sahrens 	mutex_init(&arc_reclaim_thr_lock, NULL, MUTEX_DEFAULT, NULL);
2667789Sahrens 	cv_init(&arc_reclaim_thr_cv, NULL, CV_DEFAULT, NULL);
2668789Sahrens 
26692391Smaybee 	/* Convert seconds to clock ticks */
26702638Sperrin 	arc_min_prefetch_lifespan = 1 * hz;
26712391Smaybee 
2672789Sahrens 	/* Start out with 1/8 of all memory */
26733403Sbmc 	arc_c = physmem * PAGESIZE / 8;
2674789Sahrens 
2675789Sahrens #ifdef _KERNEL
2676789Sahrens 	/*
2677789Sahrens 	 * On architectures where the physical memory can be larger
2678789Sahrens 	 * than the addressable space (intel in 32-bit mode), we may
2679789Sahrens 	 * need to limit the cache to 1/8 of VM size.
2680789Sahrens 	 */
26813403Sbmc 	arc_c = MIN(arc_c, vmem_size(heap_arena, VMEM_ALLOC | VMEM_FREE) / 8);
2682789Sahrens #endif
2683789Sahrens 
2684982Smaybee 	/* set min cache to 1/32 of all memory, or 64MB, whichever is more */
26853403Sbmc 	arc_c_min = MAX(arc_c / 4, 64<<20);
2686982Smaybee 	/* set max to 3/4 of all memory, or all but 1GB, whichever is more */
26873403Sbmc 	if (arc_c * 8 >= 1<<30)
26883403Sbmc 		arc_c_max = (arc_c * 8) - (1<<30);
2689789Sahrens 	else
26903403Sbmc 		arc_c_max = arc_c_min;
26913403Sbmc 	arc_c_max = MAX(arc_c * 6, arc_c_max);
26922885Sahrens 
26932885Sahrens 	/*
26942885Sahrens 	 * Allow the tunables to override our calculations if they are
26952885Sahrens 	 * reasonable (ie. over 64MB)
26962885Sahrens 	 */
26972885Sahrens 	if (zfs_arc_max > 64<<20 && zfs_arc_max < physmem * PAGESIZE)
26983403Sbmc 		arc_c_max = zfs_arc_max;
26993403Sbmc 	if (zfs_arc_min > 64<<20 && zfs_arc_min <= arc_c_max)
27003403Sbmc 		arc_c_min = zfs_arc_min;
27012885Sahrens 
27023403Sbmc 	arc_c = arc_c_max;
27033403Sbmc 	arc_p = (arc_c >> 1);
2704789Sahrens 
2705789Sahrens 	/* if kmem_flags are set, lets try to use less memory */
2706789Sahrens 	if (kmem_debugging())
27073403Sbmc 		arc_c = arc_c / 2;
27083403Sbmc 	if (arc_c < arc_c_min)
27093403Sbmc 		arc_c = arc_c_min;
2710789Sahrens 
27113403Sbmc 	arc_anon = &ARC_anon;
27123403Sbmc 	arc_mru = &ARC_mru;
27133403Sbmc 	arc_mru_ghost = &ARC_mru_ghost;
27143403Sbmc 	arc_mfu = &ARC_mfu;
27153403Sbmc 	arc_mfu_ghost = &ARC_mfu_ghost;
27163403Sbmc 	arc_size = 0;
2717789Sahrens 
27183403Sbmc 	mutex_init(&arc_anon->arcs_mtx, NULL, MUTEX_DEFAULT, NULL);
27193403Sbmc 	mutex_init(&arc_mru->arcs_mtx, NULL, MUTEX_DEFAULT, NULL);
27203403Sbmc 	mutex_init(&arc_mru_ghost->arcs_mtx, NULL, MUTEX_DEFAULT, NULL);
27213403Sbmc 	mutex_init(&arc_mfu->arcs_mtx, NULL, MUTEX_DEFAULT, NULL);
27223403Sbmc 	mutex_init(&arc_mfu_ghost->arcs_mtx, NULL, MUTEX_DEFAULT, NULL);
27232688Smaybee 
27243403Sbmc 	list_create(&arc_mru->arcs_list, sizeof (arc_buf_hdr_t),
27253403Sbmc 	    offsetof(arc_buf_hdr_t, b_arc_node));
27263403Sbmc 	list_create(&arc_mru_ghost->arcs_list, sizeof (arc_buf_hdr_t),
2727789Sahrens 	    offsetof(arc_buf_hdr_t, b_arc_node));
27283403Sbmc 	list_create(&arc_mfu->arcs_list, sizeof (arc_buf_hdr_t),
2729789Sahrens 	    offsetof(arc_buf_hdr_t, b_arc_node));
27303403Sbmc 	list_create(&arc_mfu_ghost->arcs_list, sizeof (arc_buf_hdr_t),
2731789Sahrens 	    offsetof(arc_buf_hdr_t, b_arc_node));
2732789Sahrens 
2733789Sahrens 	buf_init();
2734789Sahrens 
2735789Sahrens 	arc_thread_exit = 0;
27361544Seschrock 	arc_eviction_list = NULL;
27371544Seschrock 	mutex_init(&arc_eviction_mtx, NULL, MUTEX_DEFAULT, NULL);
27382887Smaybee 	bzero(&arc_eviction_hdr, sizeof (arc_buf_hdr_t));
2739789Sahrens 
27403403Sbmc 	arc_ksp = kstat_create("zfs", 0, "arcstats", "misc", KSTAT_TYPE_NAMED,
27413403Sbmc 	    sizeof (arc_stats) / sizeof (kstat_named_t), KSTAT_FLAG_VIRTUAL);
27423403Sbmc 
27433403Sbmc 	if (arc_ksp != NULL) {
27443403Sbmc 		arc_ksp->ks_data = &arc_stats;
27453403Sbmc 		kstat_install(arc_ksp);
27463403Sbmc 	}
27473403Sbmc 
2748789Sahrens 	(void) thread_create(NULL, 0, arc_reclaim_thread, NULL, 0, &p0,
2749789Sahrens 	    TS_RUN, minclsyspri);
27503158Smaybee 
27513158Smaybee 	arc_dead = FALSE;
2752789Sahrens }
2753789Sahrens 
2754789Sahrens void
2755789Sahrens arc_fini(void)
2756789Sahrens {
2757789Sahrens 	mutex_enter(&arc_reclaim_thr_lock);
2758789Sahrens 	arc_thread_exit = 1;
2759789Sahrens 	while (arc_thread_exit != 0)
2760789Sahrens 		cv_wait(&arc_reclaim_thr_cv, &arc_reclaim_thr_lock);
2761789Sahrens 	mutex_exit(&arc_reclaim_thr_lock);
2762789Sahrens 
2763789Sahrens 	arc_flush();
2764789Sahrens 
2765789Sahrens 	arc_dead = TRUE;
2766789Sahrens 
27673403Sbmc 	if (arc_ksp != NULL) {
27683403Sbmc 		kstat_delete(arc_ksp);
27693403Sbmc 		arc_ksp = NULL;
27703403Sbmc 	}
27713403Sbmc 
27721544Seschrock 	mutex_destroy(&arc_eviction_mtx);
2773789Sahrens 	mutex_destroy(&arc_reclaim_thr_lock);
2774789Sahrens 	cv_destroy(&arc_reclaim_thr_cv);
2775789Sahrens 
27763403Sbmc 	list_destroy(&arc_mru->arcs_list);
27773403Sbmc 	list_destroy(&arc_mru_ghost->arcs_list);
27783403Sbmc 	list_destroy(&arc_mfu->arcs_list);
27793403Sbmc 	list_destroy(&arc_mfu_ghost->arcs_list);
2780789Sahrens 
27813403Sbmc 	mutex_destroy(&arc_anon->arcs_mtx);
27823403Sbmc 	mutex_destroy(&arc_mru->arcs_mtx);
27833403Sbmc 	mutex_destroy(&arc_mru_ghost->arcs_mtx);
27843403Sbmc 	mutex_destroy(&arc_mfu->arcs_mtx);
27853403Sbmc 	mutex_destroy(&arc_mfu_ghost->arcs_mtx);
27862856Snd150628 
2787789Sahrens 	buf_fini();
2788789Sahrens }
2789