ALSA: hda - Fix pending unsol events at shutdown
[linux-2.6-block.git] / fs / mbcache.c
CommitLineData
09c434b8 1// SPDX-License-Identifier: GPL-2.0-only
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2#include <linux/spinlock.h>
3#include <linux/slab.h>
4#include <linux/list.h>
5#include <linux/list_bl.h>
6#include <linux/module.h>
7#include <linux/sched.h>
c2f3140f 8#include <linux/workqueue.h>
7a2508e1 9#include <linux/mbcache.h>
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10
11/*
12 * Mbcache is a simple key-value store. Keys need not be unique, however
13 * key-value pairs are expected to be unique (we use this fact in
c07dfcb4 14 * mb_cache_entry_delete()).
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15 *
16 * Ext2 and ext4 use this cache for deduplication of extended attribute blocks.
dec214d0
TE
17 * Ext4 also uses it for deduplication of xattr values stored in inodes.
18 * They use hash of data as a key and provide a value that may represent a
19 * block or inode number. That's why keys need not be unique (hash of different
20 * data may be the same). However user provided value always uniquely
21 * identifies a cache entry.
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22 *
23 * We provide functions for creation and removal of entries, search by key,
24 * and a special "delete entry with given key-value pair" operation. Fixed
25 * size hash table is used for fast key lookups.
26 */
27
7a2508e1 28struct mb_cache {
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29 /* Hash table of entries */
30 struct hlist_bl_head *c_hash;
31 /* log2 of hash table size */
32 int c_bucket_bits;
c2f3140f 33 /* Maximum entries in cache to avoid degrading hash too much */
132d4e2d 34 unsigned long c_max_entries;
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35 /* Protects c_list, c_entry_count */
36 spinlock_t c_list_lock;
37 struct list_head c_list;
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38 /* Number of entries in cache */
39 unsigned long c_entry_count;
40 struct shrinker c_shrink;
c2f3140f
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41 /* Work for shrinking when the cache has too many entries */
42 struct work_struct c_shrink_work;
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43};
44
7a2508e1 45static struct kmem_cache *mb_entry_cache;
f9a61eb4 46
7a2508e1 47static unsigned long mb_cache_shrink(struct mb_cache *cache,
132d4e2d 48 unsigned long nr_to_scan);
c2f3140f 49
dc8d5e56
AG
50static inline struct hlist_bl_head *mb_cache_entry_head(struct mb_cache *cache,
51 u32 key)
f0c8b462 52{
dc8d5e56 53 return &cache->c_hash[hash_32(key, cache->c_bucket_bits)];
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54}
55
c2f3140f
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56/*
57 * Number of entries to reclaim synchronously when there are too many entries
58 * in cache
59 */
60#define SYNC_SHRINK_BATCH 64
61
f9a61eb4 62/*
7a2508e1 63 * mb_cache_entry_create - create entry in cache
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64 * @cache - cache where the entry should be created
65 * @mask - gfp mask with which the entry should be allocated
66 * @key - key of the entry
c07dfcb4
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67 * @value - value of the entry
68 * @reusable - is the entry reusable by others?
f9a61eb4 69 *
c07dfcb4
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70 * Creates entry in @cache with key @key and value @value. The function returns
71 * -EBUSY if entry with the same key and value already exists in cache.
72 * Otherwise 0 is returned.
f9a61eb4 73 */
7a2508e1 74int mb_cache_entry_create(struct mb_cache *cache, gfp_t mask, u32 key,
c07dfcb4 75 u64 value, bool reusable)
f9a61eb4 76{
7a2508e1 77 struct mb_cache_entry *entry, *dup;
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78 struct hlist_bl_node *dup_node;
79 struct hlist_bl_head *head;
80
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81 /* Schedule background reclaim if there are too many entries */
82 if (cache->c_entry_count >= cache->c_max_entries)
83 schedule_work(&cache->c_shrink_work);
84 /* Do some sync reclaim if background reclaim cannot keep up */
85 if (cache->c_entry_count >= 2*cache->c_max_entries)
7a2508e1 86 mb_cache_shrink(cache, SYNC_SHRINK_BATCH);
c2f3140f 87
7a2508e1 88 entry = kmem_cache_alloc(mb_entry_cache, mask);
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89 if (!entry)
90 return -ENOMEM;
91
f0c8b462 92 INIT_LIST_HEAD(&entry->e_list);
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93 /* One ref for hash, one ref returned */
94 atomic_set(&entry->e_refcnt, 1);
95 entry->e_key = key;
c07dfcb4 96 entry->e_value = value;
6048c64b 97 entry->e_reusable = reusable;
3876bbe2 98 entry->e_referenced = 0;
dc8d5e56 99 head = mb_cache_entry_head(cache, key);
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100 hlist_bl_lock(head);
101 hlist_bl_for_each_entry(dup, dup_node, head, e_hash_list) {
c07dfcb4 102 if (dup->e_key == key && dup->e_value == value) {
f9a61eb4 103 hlist_bl_unlock(head);
7a2508e1 104 kmem_cache_free(mb_entry_cache, entry);
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105 return -EBUSY;
106 }
107 }
108 hlist_bl_add_head(&entry->e_hash_list, head);
109 hlist_bl_unlock(head);
110
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111 spin_lock(&cache->c_list_lock);
112 list_add_tail(&entry->e_list, &cache->c_list);
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113 /* Grab ref for LRU list */
114 atomic_inc(&entry->e_refcnt);
115 cache->c_entry_count++;
f0c8b462 116 spin_unlock(&cache->c_list_lock);
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117
118 return 0;
119}
7a2508e1 120EXPORT_SYMBOL(mb_cache_entry_create);
f9a61eb4 121
7a2508e1 122void __mb_cache_entry_free(struct mb_cache_entry *entry)
f9a61eb4 123{
7a2508e1 124 kmem_cache_free(mb_entry_cache, entry);
f9a61eb4 125}
7a2508e1 126EXPORT_SYMBOL(__mb_cache_entry_free);
f9a61eb4 127
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128static struct mb_cache_entry *__entry_find(struct mb_cache *cache,
129 struct mb_cache_entry *entry,
130 u32 key)
f9a61eb4 131{
7a2508e1 132 struct mb_cache_entry *old_entry = entry;
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133 struct hlist_bl_node *node;
134 struct hlist_bl_head *head;
135
dc8d5e56 136 head = mb_cache_entry_head(cache, key);
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137 hlist_bl_lock(head);
138 if (entry && !hlist_bl_unhashed(&entry->e_hash_list))
139 node = entry->e_hash_list.next;
140 else
141 node = hlist_bl_first(head);
142 while (node) {
7a2508e1 143 entry = hlist_bl_entry(node, struct mb_cache_entry,
f9a61eb4 144 e_hash_list);
6048c64b 145 if (entry->e_key == key && entry->e_reusable) {
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146 atomic_inc(&entry->e_refcnt);
147 goto out;
148 }
149 node = node->next;
150 }
151 entry = NULL;
152out:
153 hlist_bl_unlock(head);
154 if (old_entry)
7a2508e1 155 mb_cache_entry_put(cache, old_entry);
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156
157 return entry;
158}
159
160/*
b649668c 161 * mb_cache_entry_find_first - find the first reusable entry with the given key
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162 * @cache: cache where we should search
163 * @key: key to look for
164 *
b649668c
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165 * Search in @cache for a reusable entry with key @key. Grabs reference to the
166 * first reusable entry found and returns the entry.
f9a61eb4 167 */
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168struct mb_cache_entry *mb_cache_entry_find_first(struct mb_cache *cache,
169 u32 key)
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170{
171 return __entry_find(cache, NULL, key);
172}
7a2508e1 173EXPORT_SYMBOL(mb_cache_entry_find_first);
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174
175/*
b649668c 176 * mb_cache_entry_find_next - find next reusable entry with the same key
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177 * @cache: cache where we should search
178 * @entry: entry to start search from
179 *
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180 * Finds next reusable entry in the hash chain which has the same key as @entry.
181 * If @entry is unhashed (which can happen when deletion of entry races with the
182 * search), finds the first reusable entry in the hash chain. The function drops
183 * reference to @entry and returns with a reference to the found entry.
f9a61eb4 184 */
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185struct mb_cache_entry *mb_cache_entry_find_next(struct mb_cache *cache,
186 struct mb_cache_entry *entry)
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187{
188 return __entry_find(cache, entry, entry->e_key);
189}
7a2508e1 190EXPORT_SYMBOL(mb_cache_entry_find_next);
f9a61eb4 191
6048c64b 192/*
c07dfcb4 193 * mb_cache_entry_get - get a cache entry by value (and key)
6048c64b 194 * @cache - cache we work with
c07dfcb4
TE
195 * @key - key
196 * @value - value
6048c64b
AG
197 */
198struct mb_cache_entry *mb_cache_entry_get(struct mb_cache *cache, u32 key,
c07dfcb4 199 u64 value)
6048c64b
AG
200{
201 struct hlist_bl_node *node;
202 struct hlist_bl_head *head;
203 struct mb_cache_entry *entry;
204
205 head = mb_cache_entry_head(cache, key);
206 hlist_bl_lock(head);
207 hlist_bl_for_each_entry(entry, node, head, e_hash_list) {
c07dfcb4 208 if (entry->e_key == key && entry->e_value == value) {
6048c64b
AG
209 atomic_inc(&entry->e_refcnt);
210 goto out;
211 }
212 }
213 entry = NULL;
214out:
215 hlist_bl_unlock(head);
216 return entry;
217}
218EXPORT_SYMBOL(mb_cache_entry_get);
219
c07dfcb4 220/* mb_cache_entry_delete - remove a cache entry
f9a61eb4 221 * @cache - cache we work with
c07dfcb4
TE
222 * @key - key
223 * @value - value
f9a61eb4 224 *
c07dfcb4 225 * Remove entry from cache @cache with key @key and value @value.
f9a61eb4 226 */
c07dfcb4 227void mb_cache_entry_delete(struct mb_cache *cache, u32 key, u64 value)
f9a61eb4
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228{
229 struct hlist_bl_node *node;
230 struct hlist_bl_head *head;
7a2508e1 231 struct mb_cache_entry *entry;
f9a61eb4 232
dc8d5e56 233 head = mb_cache_entry_head(cache, key);
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234 hlist_bl_lock(head);
235 hlist_bl_for_each_entry(entry, node, head, e_hash_list) {
c07dfcb4 236 if (entry->e_key == key && entry->e_value == value) {
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237 /* We keep hash list reference to keep entry alive */
238 hlist_bl_del_init(&entry->e_hash_list);
239 hlist_bl_unlock(head);
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240 spin_lock(&cache->c_list_lock);
241 if (!list_empty(&entry->e_list)) {
242 list_del_init(&entry->e_list);
9ee93ba3
JB
243 if (!WARN_ONCE(cache->c_entry_count == 0,
244 "mbcache: attempt to decrement c_entry_count past zero"))
245 cache->c_entry_count--;
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246 atomic_dec(&entry->e_refcnt);
247 }
f0c8b462 248 spin_unlock(&cache->c_list_lock);
7a2508e1 249 mb_cache_entry_put(cache, entry);
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250 return;
251 }
252 }
253 hlist_bl_unlock(head);
254}
c07dfcb4 255EXPORT_SYMBOL(mb_cache_entry_delete);
f9a61eb4 256
7a2508e1 257/* mb_cache_entry_touch - cache entry got used
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258 * @cache - cache the entry belongs to
259 * @entry - entry that got used
260 *
f0c8b462 261 * Marks entry as used to give hit higher chances of surviving in cache.
f9a61eb4 262 */
7a2508e1
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263void mb_cache_entry_touch(struct mb_cache *cache,
264 struct mb_cache_entry *entry)
f9a61eb4 265{
dc8d5e56 266 entry->e_referenced = 1;
f9a61eb4 267}
7a2508e1 268EXPORT_SYMBOL(mb_cache_entry_touch);
f9a61eb4 269
7a2508e1
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270static unsigned long mb_cache_count(struct shrinker *shrink,
271 struct shrink_control *sc)
f9a61eb4 272{
7a2508e1
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273 struct mb_cache *cache = container_of(shrink, struct mb_cache,
274 c_shrink);
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275
276 return cache->c_entry_count;
277}
278
279/* Shrink number of entries in cache */
7a2508e1 280static unsigned long mb_cache_shrink(struct mb_cache *cache,
132d4e2d 281 unsigned long nr_to_scan)
f9a61eb4 282{
7a2508e1 283 struct mb_cache_entry *entry;
f9a61eb4 284 struct hlist_bl_head *head;
132d4e2d 285 unsigned long shrunk = 0;
f9a61eb4 286
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287 spin_lock(&cache->c_list_lock);
288 while (nr_to_scan-- && !list_empty(&cache->c_list)) {
289 entry = list_first_entry(&cache->c_list,
7a2508e1 290 struct mb_cache_entry, e_list);
dc8d5e56
AG
291 if (entry->e_referenced) {
292 entry->e_referenced = 0;
918b7306 293 list_move_tail(&entry->e_list, &cache->c_list);
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294 continue;
295 }
296 list_del_init(&entry->e_list);
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297 cache->c_entry_count--;
298 /*
299 * We keep LRU list reference so that entry doesn't go away
300 * from under us.
301 */
f0c8b462 302 spin_unlock(&cache->c_list_lock);
dc8d5e56 303 head = mb_cache_entry_head(cache, entry->e_key);
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304 hlist_bl_lock(head);
305 if (!hlist_bl_unhashed(&entry->e_hash_list)) {
306 hlist_bl_del_init(&entry->e_hash_list);
307 atomic_dec(&entry->e_refcnt);
308 }
309 hlist_bl_unlock(head);
7a2508e1 310 if (mb_cache_entry_put(cache, entry))
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311 shrunk++;
312 cond_resched();
f0c8b462 313 spin_lock(&cache->c_list_lock);
f9a61eb4 314 }
f0c8b462 315 spin_unlock(&cache->c_list_lock);
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316
317 return shrunk;
318}
319
7a2508e1
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320static unsigned long mb_cache_scan(struct shrinker *shrink,
321 struct shrink_control *sc)
c2f3140f 322{
7a2508e1 323 struct mb_cache *cache = container_of(shrink, struct mb_cache,
c2f3140f 324 c_shrink);
132d4e2d 325 return mb_cache_shrink(cache, sc->nr_to_scan);
c2f3140f
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326}
327
328/* We shrink 1/X of the cache when we have too many entries in it */
329#define SHRINK_DIVISOR 16
330
7a2508e1 331static void mb_cache_shrink_worker(struct work_struct *work)
c2f3140f 332{
7a2508e1
JK
333 struct mb_cache *cache = container_of(work, struct mb_cache,
334 c_shrink_work);
335 mb_cache_shrink(cache, cache->c_max_entries / SHRINK_DIVISOR);
c2f3140f
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336}
337
f9a61eb4 338/*
7a2508e1 339 * mb_cache_create - create cache
f9a61eb4
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340 * @bucket_bits: log2 of the hash table size
341 *
342 * Create cache for keys with 2^bucket_bits hash entries.
343 */
7a2508e1 344struct mb_cache *mb_cache_create(int bucket_bits)
f9a61eb4 345{
7a2508e1 346 struct mb_cache *cache;
132d4e2d
EB
347 unsigned long bucket_count = 1UL << bucket_bits;
348 unsigned long i;
f9a61eb4 349
7a2508e1 350 cache = kzalloc(sizeof(struct mb_cache), GFP_KERNEL);
f9a61eb4
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351 if (!cache)
352 goto err_out;
353 cache->c_bucket_bits = bucket_bits;
c2f3140f 354 cache->c_max_entries = bucket_count << 4;
f0c8b462
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355 INIT_LIST_HEAD(&cache->c_list);
356 spin_lock_init(&cache->c_list_lock);
6da2ec56
KC
357 cache->c_hash = kmalloc_array(bucket_count,
358 sizeof(struct hlist_bl_head),
359 GFP_KERNEL);
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360 if (!cache->c_hash) {
361 kfree(cache);
362 goto err_out;
363 }
364 for (i = 0; i < bucket_count; i++)
365 INIT_HLIST_BL_HEAD(&cache->c_hash[i]);
366
7a2508e1
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367 cache->c_shrink.count_objects = mb_cache_count;
368 cache->c_shrink.scan_objects = mb_cache_scan;
f9a61eb4 369 cache->c_shrink.seeks = DEFAULT_SEEKS;
8913f343
CY
370 if (register_shrinker(&cache->c_shrink)) {
371 kfree(cache->c_hash);
372 kfree(cache);
373 goto err_out;
374 }
f9a61eb4 375
7a2508e1 376 INIT_WORK(&cache->c_shrink_work, mb_cache_shrink_worker);
c2f3140f 377
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378 return cache;
379
380err_out:
f9a61eb4
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381 return NULL;
382}
7a2508e1 383EXPORT_SYMBOL(mb_cache_create);
f9a61eb4
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384
385/*
7a2508e1 386 * mb_cache_destroy - destroy cache
f9a61eb4
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387 * @cache: the cache to destroy
388 *
389 * Free all entries in cache and cache itself. Caller must make sure nobody
390 * (except shrinker) can reach @cache when calling this.
391 */
7a2508e1 392void mb_cache_destroy(struct mb_cache *cache)
f9a61eb4 393{
7a2508e1 394 struct mb_cache_entry *entry, *next;
f9a61eb4
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395
396 unregister_shrinker(&cache->c_shrink);
397
398 /*
399 * We don't bother with any locking. Cache must not be used at this
400 * point.
401 */
f0c8b462 402 list_for_each_entry_safe(entry, next, &cache->c_list, e_list) {
f9a61eb4
JK
403 if (!hlist_bl_unhashed(&entry->e_hash_list)) {
404 hlist_bl_del_init(&entry->e_hash_list);
405 atomic_dec(&entry->e_refcnt);
406 } else
407 WARN_ON(1);
f0c8b462 408 list_del(&entry->e_list);
f9a61eb4 409 WARN_ON(atomic_read(&entry->e_refcnt) != 1);
7a2508e1 410 mb_cache_entry_put(cache, entry);
f9a61eb4
JK
411 }
412 kfree(cache->c_hash);
413 kfree(cache);
f9a61eb4 414}
7a2508e1 415EXPORT_SYMBOL(mb_cache_destroy);
f9a61eb4 416
7a2508e1 417static int __init mbcache_init(void)
f9a61eb4 418{
7a2508e1
JK
419 mb_entry_cache = kmem_cache_create("mbcache",
420 sizeof(struct mb_cache_entry), 0,
f9a61eb4 421 SLAB_RECLAIM_ACCOUNT|SLAB_MEM_SPREAD, NULL);
21d0f4fa
EB
422 if (!mb_entry_cache)
423 return -ENOMEM;
f9a61eb4
JK
424 return 0;
425}
426
7a2508e1 427static void __exit mbcache_exit(void)
f9a61eb4 428{
7a2508e1 429 kmem_cache_destroy(mb_entry_cache);
f9a61eb4
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430}
431
7a2508e1
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432module_init(mbcache_init)
433module_exit(mbcache_exit)
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434
435MODULE_AUTHOR("Jan Kara <jack@suse.cz>");
436MODULE_DESCRIPTION("Meta block cache (for extended attributes)");
437MODULE_LICENSE("GPL");