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2b281117
SJ
1/*
2 * zswap.c - zswap driver file
3 *
4 * zswap is a backend for frontswap that takes pages that are in the process
5 * of being swapped out and attempts to compress and store them in a
6 * RAM-based memory pool. This can result in a significant I/O reduction on
7 * the swap device and, in the case where decompressing from RAM is faster
8 * than reading from the swap device, can also improve workload performance.
9 *
10 * Copyright (C) 2012 Seth Jennings <sjenning@linux.vnet.ibm.com>
11 *
12 * This program is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU General Public License
14 * as published by the Free Software Foundation; either version 2
15 * of the License, or (at your option) any later version.
16 *
17 * This program is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 * GNU General Public License for more details.
21*/
22
23#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
24
25#include <linux/module.h>
26#include <linux/cpu.h>
27#include <linux/highmem.h>
28#include <linux/slab.h>
29#include <linux/spinlock.h>
30#include <linux/types.h>
31#include <linux/atomic.h>
32#include <linux/frontswap.h>
33#include <linux/rbtree.h>
34#include <linux/swap.h>
35#include <linux/crypto.h>
36#include <linux/mempool.h>
12d79d64 37#include <linux/zpool.h>
2b281117
SJ
38
39#include <linux/mm_types.h>
40#include <linux/page-flags.h>
41#include <linux/swapops.h>
42#include <linux/writeback.h>
43#include <linux/pagemap.h>
44
45/*********************************
46* statistics
47**********************************/
12d79d64
DS
48/* Total bytes used by the compressed storage */
49static u64 zswap_pool_total_size;
2b281117
SJ
50/* The number of compressed pages currently stored in zswap */
51static atomic_t zswap_stored_pages = ATOMIC_INIT(0);
52
53/*
54 * The statistics below are not protected from concurrent access for
55 * performance reasons so they may not be a 100% accurate. However,
56 * they do provide useful information on roughly how many times a
57 * certain event is occurring.
58*/
59
60/* Pool limit was hit (see zswap_max_pool_percent) */
61static u64 zswap_pool_limit_hit;
62/* Pages written back when pool limit was reached */
63static u64 zswap_written_back_pages;
64/* Store failed due to a reclaim failure after pool limit was reached */
65static u64 zswap_reject_reclaim_fail;
66/* Compressed page was too big for the allocator to (optimally) store */
67static u64 zswap_reject_compress_poor;
68/* Store failed because underlying allocator could not get memory */
69static u64 zswap_reject_alloc_fail;
70/* Store failed because the entry metadata could not be allocated (rare) */
71static u64 zswap_reject_kmemcache_fail;
72/* Duplicate store was encountered (rare) */
73static u64 zswap_duplicate_entry;
74
75/*********************************
76* tunables
77**********************************/
c00ed16a 78
bae21db8
DS
79#define ZSWAP_PARAM_UNSET ""
80
c00ed16a
DS
81/* Enable/disable zswap (disabled by default) */
82static bool zswap_enabled;
d7b028f5
DS
83static int zswap_enabled_param_set(const char *,
84 const struct kernel_param *);
85static struct kernel_param_ops zswap_enabled_param_ops = {
86 .set = zswap_enabled_param_set,
87 .get = param_get_bool,
88};
89module_param_cb(enabled, &zswap_enabled_param_ops, &zswap_enabled, 0644);
2b281117 90
90b0fc26 91/* Crypto compressor to use */
2b281117 92#define ZSWAP_COMPRESSOR_DEFAULT "lzo"
c99b42c3 93static char *zswap_compressor = ZSWAP_COMPRESSOR_DEFAULT;
90b0fc26
DS
94static int zswap_compressor_param_set(const char *,
95 const struct kernel_param *);
96static struct kernel_param_ops zswap_compressor_param_ops = {
97 .set = zswap_compressor_param_set,
c99b42c3
DS
98 .get = param_get_charp,
99 .free = param_free_charp,
90b0fc26
DS
100};
101module_param_cb(compressor, &zswap_compressor_param_ops,
c99b42c3 102 &zswap_compressor, 0644);
2b281117 103
90b0fc26 104/* Compressed storage zpool to use */
12d79d64 105#define ZSWAP_ZPOOL_DEFAULT "zbud"
c99b42c3 106static char *zswap_zpool_type = ZSWAP_ZPOOL_DEFAULT;
90b0fc26
DS
107static int zswap_zpool_param_set(const char *, const struct kernel_param *);
108static struct kernel_param_ops zswap_zpool_param_ops = {
c99b42c3
DS
109 .set = zswap_zpool_param_set,
110 .get = param_get_charp,
111 .free = param_free_charp,
90b0fc26 112};
c99b42c3 113module_param_cb(zpool, &zswap_zpool_param_ops, &zswap_zpool_type, 0644);
12d79d64 114
90b0fc26
DS
115/* The maximum percentage of memory that the compressed pool can occupy */
116static unsigned int zswap_max_pool_percent = 20;
117module_param_named(max_pool_percent, zswap_max_pool_percent, uint, 0644);
60105e12 118
2b281117 119/*********************************
f1c54846 120* data structures
2b281117 121**********************************/
2b281117 122
f1c54846
DS
123struct zswap_pool {
124 struct zpool *zpool;
125 struct crypto_comp * __percpu *tfm;
126 struct kref kref;
127 struct list_head list;
200867af 128 struct work_struct work;
cab7a7e5 129 struct hlist_node node;
f1c54846 130 char tfm_name[CRYPTO_MAX_ALG_NAME];
2b281117
SJ
131};
132
2b281117
SJ
133/*
134 * struct zswap_entry
135 *
136 * This structure contains the metadata for tracking a single compressed
137 * page within zswap.
138 *
139 * rbnode - links the entry into red-black tree for the appropriate swap type
f1c54846 140 * offset - the swap offset for the entry. Index into the red-black tree.
2b281117
SJ
141 * refcount - the number of outstanding reference to the entry. This is needed
142 * to protect against premature freeing of the entry by code
6b452516 143 * concurrent calls to load, invalidate, and writeback. The lock
2b281117
SJ
144 * for the zswap_tree structure that contains the entry must
145 * be held while changing the refcount. Since the lock must
146 * be held, there is no reason to also make refcount atomic.
2b281117 147 * length - the length in bytes of the compressed page data. Needed during
6b452516 148 * decompression
f1c54846
DS
149 * pool - the zswap_pool the entry's data is in
150 * handle - zpool allocation handle that stores the compressed page data
2b281117
SJ
151 */
152struct zswap_entry {
153 struct rb_node rbnode;
154 pgoff_t offset;
155 int refcount;
156 unsigned int length;
f1c54846 157 struct zswap_pool *pool;
2b281117
SJ
158 unsigned long handle;
159};
160
161struct zswap_header {
162 swp_entry_t swpentry;
163};
164
165/*
166 * The tree lock in the zswap_tree struct protects a few things:
167 * - the rbtree
168 * - the refcount field of each entry in the tree
169 */
170struct zswap_tree {
171 struct rb_root rbroot;
172 spinlock_t lock;
2b281117
SJ
173};
174
175static struct zswap_tree *zswap_trees[MAX_SWAPFILES];
176
f1c54846
DS
177/* RCU-protected iteration */
178static LIST_HEAD(zswap_pools);
179/* protects zswap_pools list modification */
180static DEFINE_SPINLOCK(zswap_pools_lock);
32a4e169
DS
181/* pool counter to provide unique names to zpool */
182static atomic_t zswap_pools_count = ATOMIC_INIT(0);
f1c54846 183
90b0fc26
DS
184/* used by param callback function */
185static bool zswap_init_started;
186
d7b028f5
DS
187/* fatal error during init */
188static bool zswap_init_failed;
189
ae3d89a7
DS
190/* init completed, but couldn't create the initial pool */
191static bool zswap_has_pool;
192
f1c54846
DS
193/*********************************
194* helpers and fwd declarations
195**********************************/
196
197#define zswap_pool_debug(msg, p) \
198 pr_debug("%s pool %s/%s\n", msg, (p)->tfm_name, \
199 zpool_get_type((p)->zpool))
200
201static int zswap_writeback_entry(struct zpool *pool, unsigned long handle);
202static int zswap_pool_get(struct zswap_pool *pool);
203static void zswap_pool_put(struct zswap_pool *pool);
204
205static const struct zpool_ops zswap_zpool_ops = {
206 .evict = zswap_writeback_entry
207};
208
209static bool zswap_is_full(void)
210{
211 return totalram_pages * zswap_max_pool_percent / 100 <
212 DIV_ROUND_UP(zswap_pool_total_size, PAGE_SIZE);
213}
214
215static void zswap_update_total_size(void)
216{
217 struct zswap_pool *pool;
218 u64 total = 0;
219
220 rcu_read_lock();
221
222 list_for_each_entry_rcu(pool, &zswap_pools, list)
223 total += zpool_get_total_size(pool->zpool);
224
225 rcu_read_unlock();
226
227 zswap_pool_total_size = total;
228}
229
2b281117
SJ
230/*********************************
231* zswap entry functions
232**********************************/
233static struct kmem_cache *zswap_entry_cache;
234
dd01d7d8 235static int __init zswap_entry_cache_create(void)
2b281117
SJ
236{
237 zswap_entry_cache = KMEM_CACHE(zswap_entry, 0);
5d2d42de 238 return zswap_entry_cache == NULL;
2b281117
SJ
239}
240
c119239b 241static void __init zswap_entry_cache_destroy(void)
2b281117
SJ
242{
243 kmem_cache_destroy(zswap_entry_cache);
244}
245
246static struct zswap_entry *zswap_entry_cache_alloc(gfp_t gfp)
247{
248 struct zswap_entry *entry;
249 entry = kmem_cache_alloc(zswap_entry_cache, gfp);
250 if (!entry)
251 return NULL;
252 entry->refcount = 1;
0ab0abcf 253 RB_CLEAR_NODE(&entry->rbnode);
2b281117
SJ
254 return entry;
255}
256
257static void zswap_entry_cache_free(struct zswap_entry *entry)
258{
259 kmem_cache_free(zswap_entry_cache, entry);
260}
261
2b281117
SJ
262/*********************************
263* rbtree functions
264**********************************/
265static struct zswap_entry *zswap_rb_search(struct rb_root *root, pgoff_t offset)
266{
267 struct rb_node *node = root->rb_node;
268 struct zswap_entry *entry;
269
270 while (node) {
271 entry = rb_entry(node, struct zswap_entry, rbnode);
272 if (entry->offset > offset)
273 node = node->rb_left;
274 else if (entry->offset < offset)
275 node = node->rb_right;
276 else
277 return entry;
278 }
279 return NULL;
280}
281
282/*
283 * In the case that a entry with the same offset is found, a pointer to
284 * the existing entry is stored in dupentry and the function returns -EEXIST
285 */
286static int zswap_rb_insert(struct rb_root *root, struct zswap_entry *entry,
287 struct zswap_entry **dupentry)
288{
289 struct rb_node **link = &root->rb_node, *parent = NULL;
290 struct zswap_entry *myentry;
291
292 while (*link) {
293 parent = *link;
294 myentry = rb_entry(parent, struct zswap_entry, rbnode);
295 if (myentry->offset > entry->offset)
296 link = &(*link)->rb_left;
297 else if (myentry->offset < entry->offset)
298 link = &(*link)->rb_right;
299 else {
300 *dupentry = myentry;
301 return -EEXIST;
302 }
303 }
304 rb_link_node(&entry->rbnode, parent, link);
305 rb_insert_color(&entry->rbnode, root);
306 return 0;
307}
308
0ab0abcf
WY
309static void zswap_rb_erase(struct rb_root *root, struct zswap_entry *entry)
310{
311 if (!RB_EMPTY_NODE(&entry->rbnode)) {
312 rb_erase(&entry->rbnode, root);
313 RB_CLEAR_NODE(&entry->rbnode);
314 }
315}
316
317/*
12d79d64 318 * Carries out the common pattern of freeing and entry's zpool allocation,
0ab0abcf
WY
319 * freeing the entry itself, and decrementing the number of stored pages.
320 */
60105e12 321static void zswap_free_entry(struct zswap_entry *entry)
0ab0abcf 322{
f1c54846
DS
323 zpool_free(entry->pool->zpool, entry->handle);
324 zswap_pool_put(entry->pool);
0ab0abcf
WY
325 zswap_entry_cache_free(entry);
326 atomic_dec(&zswap_stored_pages);
f1c54846 327 zswap_update_total_size();
0ab0abcf
WY
328}
329
330/* caller must hold the tree lock */
331static void zswap_entry_get(struct zswap_entry *entry)
332{
333 entry->refcount++;
334}
335
336/* caller must hold the tree lock
337* remove from the tree and free it, if nobody reference the entry
338*/
339static void zswap_entry_put(struct zswap_tree *tree,
340 struct zswap_entry *entry)
341{
342 int refcount = --entry->refcount;
343
344 BUG_ON(refcount < 0);
345 if (refcount == 0) {
346 zswap_rb_erase(&tree->rbroot, entry);
60105e12 347 zswap_free_entry(entry);
0ab0abcf
WY
348 }
349}
350
351/* caller must hold the tree lock */
352static struct zswap_entry *zswap_entry_find_get(struct rb_root *root,
353 pgoff_t offset)
354{
b0c9865f 355 struct zswap_entry *entry;
0ab0abcf
WY
356
357 entry = zswap_rb_search(root, offset);
358 if (entry)
359 zswap_entry_get(entry);
360
361 return entry;
362}
363
2b281117
SJ
364/*********************************
365* per-cpu code
366**********************************/
367static DEFINE_PER_CPU(u8 *, zswap_dstmem);
368
ad7ed770 369static int zswap_dstmem_prepare(unsigned int cpu)
2b281117 370{
2b281117
SJ
371 u8 *dst;
372
ad7ed770 373 dst = kmalloc_node(PAGE_SIZE * 2, GFP_KERNEL, cpu_to_node(cpu));
2b2695f5 374 if (!dst)
ad7ed770 375 return -ENOMEM;
2b2695f5 376
ad7ed770
SAS
377 per_cpu(zswap_dstmem, cpu) = dst;
378 return 0;
2b281117
SJ
379}
380
ad7ed770 381static int zswap_dstmem_dead(unsigned int cpu)
2b281117 382{
ad7ed770 383 u8 *dst;
2b281117 384
ad7ed770
SAS
385 dst = per_cpu(zswap_dstmem, cpu);
386 kfree(dst);
387 per_cpu(zswap_dstmem, cpu) = NULL;
f1c54846 388
f1c54846 389 return 0;
f1c54846
DS
390}
391
cab7a7e5 392static int zswap_cpu_comp_prepare(unsigned int cpu, struct hlist_node *node)
f1c54846 393{
cab7a7e5 394 struct zswap_pool *pool = hlist_entry(node, struct zswap_pool, node);
f1c54846
DS
395 struct crypto_comp *tfm;
396
cab7a7e5
SAS
397 if (WARN_ON(*per_cpu_ptr(pool->tfm, cpu)))
398 return 0;
f1c54846 399
cab7a7e5
SAS
400 tfm = crypto_alloc_comp(pool->tfm_name, 0, 0);
401 if (IS_ERR_OR_NULL(tfm)) {
402 pr_err("could not alloc crypto comp %s : %ld\n",
403 pool->tfm_name, PTR_ERR(tfm));
404 return -ENOMEM;
405 }
406 *per_cpu_ptr(pool->tfm, cpu) = tfm;
2b281117 407 return 0;
2b281117
SJ
408}
409
cab7a7e5 410static int zswap_cpu_comp_dead(unsigned int cpu, struct hlist_node *node)
f1c54846 411{
cab7a7e5
SAS
412 struct zswap_pool *pool = hlist_entry(node, struct zswap_pool, node);
413 struct crypto_comp *tfm;
f1c54846 414
cab7a7e5
SAS
415 tfm = *per_cpu_ptr(pool->tfm, cpu);
416 if (!IS_ERR_OR_NULL(tfm))
417 crypto_free_comp(tfm);
418 *per_cpu_ptr(pool->tfm, cpu) = NULL;
419 return 0;
f1c54846
DS
420}
421
2b281117 422/*********************************
f1c54846 423* pool functions
2b281117 424**********************************/
f1c54846
DS
425
426static struct zswap_pool *__zswap_pool_current(void)
2b281117 427{
f1c54846
DS
428 struct zswap_pool *pool;
429
430 pool = list_first_or_null_rcu(&zswap_pools, typeof(*pool), list);
ae3d89a7
DS
431 WARN_ONCE(!pool && zswap_has_pool,
432 "%s: no page storage pool!\n", __func__);
f1c54846
DS
433
434 return pool;
435}
436
437static struct zswap_pool *zswap_pool_current(void)
438{
439 assert_spin_locked(&zswap_pools_lock);
440
441 return __zswap_pool_current();
442}
443
444static struct zswap_pool *zswap_pool_current_get(void)
445{
446 struct zswap_pool *pool;
447
448 rcu_read_lock();
449
450 pool = __zswap_pool_current();
ae3d89a7 451 if (!zswap_pool_get(pool))
f1c54846
DS
452 pool = NULL;
453
454 rcu_read_unlock();
455
456 return pool;
457}
458
459static struct zswap_pool *zswap_pool_last_get(void)
460{
461 struct zswap_pool *pool, *last = NULL;
462
463 rcu_read_lock();
464
465 list_for_each_entry_rcu(pool, &zswap_pools, list)
466 last = pool;
ae3d89a7
DS
467 WARN_ONCE(!last && zswap_has_pool,
468 "%s: no page storage pool!\n", __func__);
469 if (!zswap_pool_get(last))
f1c54846
DS
470 last = NULL;
471
472 rcu_read_unlock();
473
474 return last;
475}
476
8bc8b228 477/* type and compressor must be null-terminated */
f1c54846
DS
478static struct zswap_pool *zswap_pool_find_get(char *type, char *compressor)
479{
480 struct zswap_pool *pool;
481
482 assert_spin_locked(&zswap_pools_lock);
483
484 list_for_each_entry_rcu(pool, &zswap_pools, list) {
8bc8b228 485 if (strcmp(pool->tfm_name, compressor))
f1c54846 486 continue;
8bc8b228 487 if (strcmp(zpool_get_type(pool->zpool), type))
f1c54846
DS
488 continue;
489 /* if we can't get it, it's about to be destroyed */
490 if (!zswap_pool_get(pool))
491 continue;
492 return pool;
493 }
494
495 return NULL;
496}
497
498static struct zswap_pool *zswap_pool_create(char *type, char *compressor)
499{
500 struct zswap_pool *pool;
32a4e169 501 char name[38]; /* 'zswap' + 32 char (max) num + \0 */
d0164adc 502 gfp_t gfp = __GFP_NORETRY | __GFP_NOWARN | __GFP_KSWAPD_RECLAIM;
cab7a7e5 503 int ret;
f1c54846 504
bae21db8
DS
505 if (!zswap_has_pool) {
506 /* if either are unset, pool initialization failed, and we
507 * need both params to be set correctly before trying to
508 * create a pool.
509 */
510 if (!strcmp(type, ZSWAP_PARAM_UNSET))
511 return NULL;
512 if (!strcmp(compressor, ZSWAP_PARAM_UNSET))
513 return NULL;
514 }
515
f1c54846 516 pool = kzalloc(sizeof(*pool), GFP_KERNEL);
f4ae0ce0 517 if (!pool)
f1c54846 518 return NULL;
f1c54846 519
32a4e169
DS
520 /* unique name for each pool specifically required by zsmalloc */
521 snprintf(name, 38, "zswap%x", atomic_inc_return(&zswap_pools_count));
522
523 pool->zpool = zpool_create_pool(type, name, gfp, &zswap_zpool_ops);
f1c54846
DS
524 if (!pool->zpool) {
525 pr_err("%s zpool not available\n", type);
526 goto error;
527 }
528 pr_debug("using %s zpool\n", zpool_get_type(pool->zpool));
529
530 strlcpy(pool->tfm_name, compressor, sizeof(pool->tfm_name));
531 pool->tfm = alloc_percpu(struct crypto_comp *);
532 if (!pool->tfm) {
533 pr_err("percpu alloc failed\n");
534 goto error;
535 }
536
cab7a7e5
SAS
537 ret = cpuhp_state_add_instance(CPUHP_MM_ZSWP_POOL_PREPARE,
538 &pool->node);
539 if (ret)
f1c54846
DS
540 goto error;
541 pr_debug("using %s compressor\n", pool->tfm_name);
542
543 /* being the current pool takes 1 ref; this func expects the
544 * caller to always add the new pool as the current pool
545 */
546 kref_init(&pool->kref);
547 INIT_LIST_HEAD(&pool->list);
548
549 zswap_pool_debug("created", pool);
550
551 return pool;
552
553error:
554 free_percpu(pool->tfm);
555 if (pool->zpool)
556 zpool_destroy_pool(pool->zpool);
557 kfree(pool);
558 return NULL;
559}
560
c99b42c3 561static __init struct zswap_pool *__zswap_pool_create_fallback(void)
f1c54846 562{
bae21db8
DS
563 bool has_comp, has_zpool;
564
565 has_comp = crypto_has_comp(zswap_compressor, 0, 0);
566 if (!has_comp && strcmp(zswap_compressor, ZSWAP_COMPRESSOR_DEFAULT)) {
f1c54846
DS
567 pr_err("compressor %s not available, using default %s\n",
568 zswap_compressor, ZSWAP_COMPRESSOR_DEFAULT);
c99b42c3
DS
569 param_free_charp(&zswap_compressor);
570 zswap_compressor = ZSWAP_COMPRESSOR_DEFAULT;
bae21db8 571 has_comp = crypto_has_comp(zswap_compressor, 0, 0);
f1c54846 572 }
bae21db8
DS
573 if (!has_comp) {
574 pr_err("default compressor %s not available\n",
575 zswap_compressor);
576 param_free_charp(&zswap_compressor);
577 zswap_compressor = ZSWAP_PARAM_UNSET;
578 }
579
580 has_zpool = zpool_has_pool(zswap_zpool_type);
581 if (!has_zpool && strcmp(zswap_zpool_type, ZSWAP_ZPOOL_DEFAULT)) {
f1c54846
DS
582 pr_err("zpool %s not available, using default %s\n",
583 zswap_zpool_type, ZSWAP_ZPOOL_DEFAULT);
c99b42c3
DS
584 param_free_charp(&zswap_zpool_type);
585 zswap_zpool_type = ZSWAP_ZPOOL_DEFAULT;
bae21db8 586 has_zpool = zpool_has_pool(zswap_zpool_type);
f1c54846 587 }
bae21db8
DS
588 if (!has_zpool) {
589 pr_err("default zpool %s not available\n",
590 zswap_zpool_type);
591 param_free_charp(&zswap_zpool_type);
592 zswap_zpool_type = ZSWAP_PARAM_UNSET;
593 }
594
595 if (!has_comp || !has_zpool)
596 return NULL;
f1c54846
DS
597
598 return zswap_pool_create(zswap_zpool_type, zswap_compressor);
599}
600
601static void zswap_pool_destroy(struct zswap_pool *pool)
602{
603 zswap_pool_debug("destroying", pool);
604
cab7a7e5 605 cpuhp_state_remove_instance(CPUHP_MM_ZSWP_POOL_PREPARE, &pool->node);
f1c54846
DS
606 free_percpu(pool->tfm);
607 zpool_destroy_pool(pool->zpool);
608 kfree(pool);
609}
610
611static int __must_check zswap_pool_get(struct zswap_pool *pool)
612{
ae3d89a7
DS
613 if (!pool)
614 return 0;
615
f1c54846
DS
616 return kref_get_unless_zero(&pool->kref);
617}
618
200867af 619static void __zswap_pool_release(struct work_struct *work)
f1c54846 620{
200867af
DS
621 struct zswap_pool *pool = container_of(work, typeof(*pool), work);
622
623 synchronize_rcu();
f1c54846
DS
624
625 /* nobody should have been able to get a kref... */
626 WARN_ON(kref_get_unless_zero(&pool->kref));
627
628 /* pool is now off zswap_pools list and has no references. */
629 zswap_pool_destroy(pool);
630}
631
632static void __zswap_pool_empty(struct kref *kref)
633{
634 struct zswap_pool *pool;
635
636 pool = container_of(kref, typeof(*pool), kref);
637
638 spin_lock(&zswap_pools_lock);
639
640 WARN_ON(pool == zswap_pool_current());
641
642 list_del_rcu(&pool->list);
200867af
DS
643
644 INIT_WORK(&pool->work, __zswap_pool_release);
645 schedule_work(&pool->work);
f1c54846
DS
646
647 spin_unlock(&zswap_pools_lock);
648}
649
650static void zswap_pool_put(struct zswap_pool *pool)
651{
652 kref_put(&pool->kref, __zswap_pool_empty);
2b281117
SJ
653}
654
90b0fc26
DS
655/*********************************
656* param callbacks
657**********************************/
658
c99b42c3 659/* val must be a null-terminated string */
90b0fc26
DS
660static int __zswap_param_set(const char *val, const struct kernel_param *kp,
661 char *type, char *compressor)
662{
663 struct zswap_pool *pool, *put_pool = NULL;
c99b42c3 664 char *s = strstrip((char *)val);
90b0fc26
DS
665 int ret;
666
d7b028f5
DS
667 if (zswap_init_failed) {
668 pr_err("can't set param, initialization failed\n");
669 return -ENODEV;
670 }
671
c99b42c3 672 /* no change required */
ae3d89a7 673 if (!strcmp(s, *(char **)kp->arg) && zswap_has_pool)
c99b42c3 674 return 0;
90b0fc26
DS
675
676 /* if this is load-time (pre-init) param setting,
677 * don't create a pool; that's done during init.
678 */
679 if (!zswap_init_started)
c99b42c3 680 return param_set_charp(s, kp);
90b0fc26
DS
681
682 if (!type) {
c99b42c3
DS
683 if (!zpool_has_pool(s)) {
684 pr_err("zpool %s not available\n", s);
90b0fc26
DS
685 return -ENOENT;
686 }
c99b42c3 687 type = s;
90b0fc26 688 } else if (!compressor) {
c99b42c3
DS
689 if (!crypto_has_comp(s, 0, 0)) {
690 pr_err("compressor %s not available\n", s);
90b0fc26
DS
691 return -ENOENT;
692 }
c99b42c3
DS
693 compressor = s;
694 } else {
695 WARN_ON(1);
696 return -EINVAL;
90b0fc26
DS
697 }
698
699 spin_lock(&zswap_pools_lock);
700
701 pool = zswap_pool_find_get(type, compressor);
702 if (pool) {
703 zswap_pool_debug("using existing", pool);
fd5bb66c 704 WARN_ON(pool == zswap_pool_current());
90b0fc26 705 list_del_rcu(&pool->list);
90b0fc26
DS
706 }
707
fd5bb66c
DS
708 spin_unlock(&zswap_pools_lock);
709
710 if (!pool)
711 pool = zswap_pool_create(type, compressor);
712
90b0fc26 713 if (pool)
c99b42c3 714 ret = param_set_charp(s, kp);
90b0fc26
DS
715 else
716 ret = -EINVAL;
717
fd5bb66c
DS
718 spin_lock(&zswap_pools_lock);
719
90b0fc26
DS
720 if (!ret) {
721 put_pool = zswap_pool_current();
722 list_add_rcu(&pool->list, &zswap_pools);
ae3d89a7 723 zswap_has_pool = true;
90b0fc26
DS
724 } else if (pool) {
725 /* add the possibly pre-existing pool to the end of the pools
726 * list; if it's new (and empty) then it'll be removed and
727 * destroyed by the put after we drop the lock
728 */
729 list_add_tail_rcu(&pool->list, &zswap_pools);
730 put_pool = pool;
fd5bb66c
DS
731 }
732
733 spin_unlock(&zswap_pools_lock);
734
735 if (!zswap_has_pool && !pool) {
ae3d89a7
DS
736 /* if initial pool creation failed, and this pool creation also
737 * failed, maybe both compressor and zpool params were bad.
738 * Allow changing this param, so pool creation will succeed
739 * when the other param is changed. We already verified this
740 * param is ok in the zpool_has_pool() or crypto_has_comp()
741 * checks above.
742 */
743 ret = param_set_charp(s, kp);
90b0fc26
DS
744 }
745
90b0fc26
DS
746 /* drop the ref from either the old current pool,
747 * or the new pool we failed to add
748 */
749 if (put_pool)
750 zswap_pool_put(put_pool);
751
752 return ret;
753}
754
755static int zswap_compressor_param_set(const char *val,
756 const struct kernel_param *kp)
757{
758 return __zswap_param_set(val, kp, zswap_zpool_type, NULL);
759}
760
761static int zswap_zpool_param_set(const char *val,
762 const struct kernel_param *kp)
763{
764 return __zswap_param_set(val, kp, NULL, zswap_compressor);
765}
766
d7b028f5
DS
767static int zswap_enabled_param_set(const char *val,
768 const struct kernel_param *kp)
769{
770 if (zswap_init_failed) {
771 pr_err("can't enable, initialization failed\n");
772 return -ENODEV;
773 }
ae3d89a7
DS
774 if (!zswap_has_pool && zswap_init_started) {
775 pr_err("can't enable, no pool configured\n");
776 return -ENODEV;
777 }
d7b028f5
DS
778
779 return param_set_bool(val, kp);
780}
781
2b281117
SJ
782/*********************************
783* writeback code
784**********************************/
785/* return enum for zswap_get_swap_cache_page */
786enum zswap_get_swap_ret {
787 ZSWAP_SWAPCACHE_NEW,
788 ZSWAP_SWAPCACHE_EXIST,
67d13fe8 789 ZSWAP_SWAPCACHE_FAIL,
2b281117
SJ
790};
791
792/*
793 * zswap_get_swap_cache_page
794 *
795 * This is an adaption of read_swap_cache_async()
796 *
797 * This function tries to find a page with the given swap entry
798 * in the swapper_space address space (the swap cache). If the page
799 * is found, it is returned in retpage. Otherwise, a page is allocated,
800 * added to the swap cache, and returned in retpage.
801 *
802 * If success, the swap cache page is returned in retpage
67d13fe8
WY
803 * Returns ZSWAP_SWAPCACHE_EXIST if page was already in the swap cache
804 * Returns ZSWAP_SWAPCACHE_NEW if the new page needs to be populated,
805 * the new page is added to swapcache and locked
806 * Returns ZSWAP_SWAPCACHE_FAIL on error
2b281117
SJ
807 */
808static int zswap_get_swap_cache_page(swp_entry_t entry,
809 struct page **retpage)
810{
5b999aad 811 bool page_was_allocated;
2b281117 812
5b999aad
DS
813 *retpage = __read_swap_cache_async(entry, GFP_KERNEL,
814 NULL, 0, &page_was_allocated);
815 if (page_was_allocated)
816 return ZSWAP_SWAPCACHE_NEW;
817 if (!*retpage)
67d13fe8 818 return ZSWAP_SWAPCACHE_FAIL;
2b281117
SJ
819 return ZSWAP_SWAPCACHE_EXIST;
820}
821
822/*
823 * Attempts to free an entry by adding a page to the swap cache,
824 * decompressing the entry data into the page, and issuing a
825 * bio write to write the page back to the swap device.
826 *
827 * This can be thought of as a "resumed writeback" of the page
828 * to the swap device. We are basically resuming the same swap
829 * writeback path that was intercepted with the frontswap_store()
830 * in the first place. After the page has been decompressed into
831 * the swap cache, the compressed version stored by zswap can be
832 * freed.
833 */
12d79d64 834static int zswap_writeback_entry(struct zpool *pool, unsigned long handle)
2b281117
SJ
835{
836 struct zswap_header *zhdr;
837 swp_entry_t swpentry;
838 struct zswap_tree *tree;
839 pgoff_t offset;
840 struct zswap_entry *entry;
841 struct page *page;
f1c54846 842 struct crypto_comp *tfm;
2b281117
SJ
843 u8 *src, *dst;
844 unsigned int dlen;
0ab0abcf 845 int ret;
2b281117
SJ
846 struct writeback_control wbc = {
847 .sync_mode = WB_SYNC_NONE,
848 };
849
850 /* extract swpentry from data */
12d79d64 851 zhdr = zpool_map_handle(pool, handle, ZPOOL_MM_RO);
2b281117 852 swpentry = zhdr->swpentry; /* here */
12d79d64 853 zpool_unmap_handle(pool, handle);
2b281117
SJ
854 tree = zswap_trees[swp_type(swpentry)];
855 offset = swp_offset(swpentry);
2b281117
SJ
856
857 /* find and ref zswap entry */
858 spin_lock(&tree->lock);
0ab0abcf 859 entry = zswap_entry_find_get(&tree->rbroot, offset);
2b281117
SJ
860 if (!entry) {
861 /* entry was invalidated */
862 spin_unlock(&tree->lock);
863 return 0;
864 }
2b281117
SJ
865 spin_unlock(&tree->lock);
866 BUG_ON(offset != entry->offset);
867
868 /* try to allocate swap cache page */
869 switch (zswap_get_swap_cache_page(swpentry, &page)) {
67d13fe8 870 case ZSWAP_SWAPCACHE_FAIL: /* no memory or invalidate happened */
2b281117
SJ
871 ret = -ENOMEM;
872 goto fail;
873
67d13fe8 874 case ZSWAP_SWAPCACHE_EXIST:
2b281117 875 /* page is already in the swap cache, ignore for now */
09cbfeaf 876 put_page(page);
2b281117
SJ
877 ret = -EEXIST;
878 goto fail;
879
880 case ZSWAP_SWAPCACHE_NEW: /* page is locked */
881 /* decompress */
882 dlen = PAGE_SIZE;
f1c54846 883 src = (u8 *)zpool_map_handle(entry->pool->zpool, entry->handle,
12d79d64 884 ZPOOL_MM_RO) + sizeof(struct zswap_header);
2b281117 885 dst = kmap_atomic(page);
f1c54846
DS
886 tfm = *get_cpu_ptr(entry->pool->tfm);
887 ret = crypto_comp_decompress(tfm, src, entry->length,
888 dst, &dlen);
889 put_cpu_ptr(entry->pool->tfm);
2b281117 890 kunmap_atomic(dst);
f1c54846 891 zpool_unmap_handle(entry->pool->zpool, entry->handle);
2b281117
SJ
892 BUG_ON(ret);
893 BUG_ON(dlen != PAGE_SIZE);
894
895 /* page is up to date */
896 SetPageUptodate(page);
897 }
898
b349acc7
WY
899 /* move it to the tail of the inactive list after end_writeback */
900 SetPageReclaim(page);
901
2b281117
SJ
902 /* start writeback */
903 __swap_writepage(page, &wbc, end_swap_bio_write);
09cbfeaf 904 put_page(page);
2b281117
SJ
905 zswap_written_back_pages++;
906
907 spin_lock(&tree->lock);
2b281117 908 /* drop local reference */
0ab0abcf 909 zswap_entry_put(tree, entry);
2b281117
SJ
910
911 /*
0ab0abcf
WY
912 * There are two possible situations for entry here:
913 * (1) refcount is 1(normal case), entry is valid and on the tree
914 * (2) refcount is 0, entry is freed and not on the tree
915 * because invalidate happened during writeback
916 * search the tree and free the entry if find entry
917 */
918 if (entry == zswap_rb_search(&tree->rbroot, offset))
919 zswap_entry_put(tree, entry);
2b281117 920 spin_unlock(&tree->lock);
2b281117 921
0ab0abcf
WY
922 goto end;
923
924 /*
925 * if we get here due to ZSWAP_SWAPCACHE_EXIST
926 * a load may happening concurrently
927 * it is safe and okay to not free the entry
928 * if we free the entry in the following put
929 * it it either okay to return !0
930 */
2b281117
SJ
931fail:
932 spin_lock(&tree->lock);
0ab0abcf 933 zswap_entry_put(tree, entry);
2b281117 934 spin_unlock(&tree->lock);
0ab0abcf
WY
935
936end:
2b281117
SJ
937 return ret;
938}
939
f1c54846
DS
940static int zswap_shrink(void)
941{
942 struct zswap_pool *pool;
943 int ret;
944
945 pool = zswap_pool_last_get();
946 if (!pool)
947 return -ENOENT;
948
949 ret = zpool_shrink(pool->zpool, 1, NULL);
950
951 zswap_pool_put(pool);
952
953 return ret;
954}
955
2b281117
SJ
956/*********************************
957* frontswap hooks
958**********************************/
959/* attempts to compress and store an single page */
960static int zswap_frontswap_store(unsigned type, pgoff_t offset,
961 struct page *page)
962{
963 struct zswap_tree *tree = zswap_trees[type];
964 struct zswap_entry *entry, *dupentry;
f1c54846 965 struct crypto_comp *tfm;
2b281117
SJ
966 int ret;
967 unsigned int dlen = PAGE_SIZE, len;
968 unsigned long handle;
969 char *buf;
970 u8 *src, *dst;
971 struct zswap_header *zhdr;
972
4e3742c0
HY
973 /* THP isn't supported */
974 if (PageTransHuge(page)) {
975 ret = -EINVAL;
976 goto reject;
977 }
978
c00ed16a 979 if (!zswap_enabled || !tree) {
2b281117
SJ
980 ret = -ENODEV;
981 goto reject;
982 }
983
984 /* reclaim space if needed */
985 if (zswap_is_full()) {
986 zswap_pool_limit_hit++;
f1c54846 987 if (zswap_shrink()) {
2b281117
SJ
988 zswap_reject_reclaim_fail++;
989 ret = -ENOMEM;
990 goto reject;
991 }
992 }
993
994 /* allocate entry */
995 entry = zswap_entry_cache_alloc(GFP_KERNEL);
996 if (!entry) {
997 zswap_reject_kmemcache_fail++;
998 ret = -ENOMEM;
999 goto reject;
1000 }
1001
f1c54846
DS
1002 /* if entry is successfully added, it keeps the reference */
1003 entry->pool = zswap_pool_current_get();
1004 if (!entry->pool) {
1005 ret = -EINVAL;
1006 goto freepage;
1007 }
1008
2b281117
SJ
1009 /* compress */
1010 dst = get_cpu_var(zswap_dstmem);
f1c54846 1011 tfm = *get_cpu_ptr(entry->pool->tfm);
2b281117 1012 src = kmap_atomic(page);
f1c54846 1013 ret = crypto_comp_compress(tfm, src, PAGE_SIZE, dst, &dlen);
2b281117 1014 kunmap_atomic(src);
f1c54846 1015 put_cpu_ptr(entry->pool->tfm);
2b281117
SJ
1016 if (ret) {
1017 ret = -EINVAL;
f1c54846 1018 goto put_dstmem;
2b281117
SJ
1019 }
1020
1021 /* store */
1022 len = dlen + sizeof(struct zswap_header);
f1c54846 1023 ret = zpool_malloc(entry->pool->zpool, len,
d0164adc
MG
1024 __GFP_NORETRY | __GFP_NOWARN | __GFP_KSWAPD_RECLAIM,
1025 &handle);
2b281117
SJ
1026 if (ret == -ENOSPC) {
1027 zswap_reject_compress_poor++;
f1c54846 1028 goto put_dstmem;
2b281117
SJ
1029 }
1030 if (ret) {
1031 zswap_reject_alloc_fail++;
f1c54846 1032 goto put_dstmem;
2b281117 1033 }
f1c54846 1034 zhdr = zpool_map_handle(entry->pool->zpool, handle, ZPOOL_MM_RW);
2b281117
SJ
1035 zhdr->swpentry = swp_entry(type, offset);
1036 buf = (u8 *)(zhdr + 1);
1037 memcpy(buf, dst, dlen);
f1c54846 1038 zpool_unmap_handle(entry->pool->zpool, handle);
2b281117
SJ
1039 put_cpu_var(zswap_dstmem);
1040
1041 /* populate entry */
1042 entry->offset = offset;
1043 entry->handle = handle;
1044 entry->length = dlen;
1045
1046 /* map */
1047 spin_lock(&tree->lock);
1048 do {
1049 ret = zswap_rb_insert(&tree->rbroot, entry, &dupentry);
1050 if (ret == -EEXIST) {
1051 zswap_duplicate_entry++;
1052 /* remove from rbtree */
0ab0abcf
WY
1053 zswap_rb_erase(&tree->rbroot, dupentry);
1054 zswap_entry_put(tree, dupentry);
2b281117
SJ
1055 }
1056 } while (ret == -EEXIST);
1057 spin_unlock(&tree->lock);
1058
1059 /* update stats */
1060 atomic_inc(&zswap_stored_pages);
f1c54846 1061 zswap_update_total_size();
2b281117
SJ
1062
1063 return 0;
1064
f1c54846 1065put_dstmem:
2b281117 1066 put_cpu_var(zswap_dstmem);
f1c54846
DS
1067 zswap_pool_put(entry->pool);
1068freepage:
2b281117
SJ
1069 zswap_entry_cache_free(entry);
1070reject:
1071 return ret;
1072}
1073
1074/*
1075 * returns 0 if the page was successfully decompressed
1076 * return -1 on entry not found or error
1077*/
1078static int zswap_frontswap_load(unsigned type, pgoff_t offset,
1079 struct page *page)
1080{
1081 struct zswap_tree *tree = zswap_trees[type];
1082 struct zswap_entry *entry;
f1c54846 1083 struct crypto_comp *tfm;
2b281117
SJ
1084 u8 *src, *dst;
1085 unsigned int dlen;
0ab0abcf 1086 int ret;
2b281117
SJ
1087
1088 /* find */
1089 spin_lock(&tree->lock);
0ab0abcf 1090 entry = zswap_entry_find_get(&tree->rbroot, offset);
2b281117
SJ
1091 if (!entry) {
1092 /* entry was written back */
1093 spin_unlock(&tree->lock);
1094 return -1;
1095 }
2b281117
SJ
1096 spin_unlock(&tree->lock);
1097
1098 /* decompress */
1099 dlen = PAGE_SIZE;
f1c54846 1100 src = (u8 *)zpool_map_handle(entry->pool->zpool, entry->handle,
12d79d64 1101 ZPOOL_MM_RO) + sizeof(struct zswap_header);
2b281117 1102 dst = kmap_atomic(page);
f1c54846
DS
1103 tfm = *get_cpu_ptr(entry->pool->tfm);
1104 ret = crypto_comp_decompress(tfm, src, entry->length, dst, &dlen);
1105 put_cpu_ptr(entry->pool->tfm);
2b281117 1106 kunmap_atomic(dst);
f1c54846 1107 zpool_unmap_handle(entry->pool->zpool, entry->handle);
2b281117
SJ
1108 BUG_ON(ret);
1109
1110 spin_lock(&tree->lock);
0ab0abcf 1111 zswap_entry_put(tree, entry);
2b281117
SJ
1112 spin_unlock(&tree->lock);
1113
2b281117
SJ
1114 return 0;
1115}
1116
1117/* frees an entry in zswap */
1118static void zswap_frontswap_invalidate_page(unsigned type, pgoff_t offset)
1119{
1120 struct zswap_tree *tree = zswap_trees[type];
1121 struct zswap_entry *entry;
2b281117
SJ
1122
1123 /* find */
1124 spin_lock(&tree->lock);
1125 entry = zswap_rb_search(&tree->rbroot, offset);
1126 if (!entry) {
1127 /* entry was written back */
1128 spin_unlock(&tree->lock);
1129 return;
1130 }
1131
1132 /* remove from rbtree */
0ab0abcf 1133 zswap_rb_erase(&tree->rbroot, entry);
2b281117
SJ
1134
1135 /* drop the initial reference from entry creation */
0ab0abcf 1136 zswap_entry_put(tree, entry);
2b281117
SJ
1137
1138 spin_unlock(&tree->lock);
2b281117
SJ
1139}
1140
1141/* frees all zswap entries for the given swap type */
1142static void zswap_frontswap_invalidate_area(unsigned type)
1143{
1144 struct zswap_tree *tree = zswap_trees[type];
0bd42136 1145 struct zswap_entry *entry, *n;
2b281117
SJ
1146
1147 if (!tree)
1148 return;
1149
1150 /* walk the tree and free everything */
1151 spin_lock(&tree->lock);
0ab0abcf 1152 rbtree_postorder_for_each_entry_safe(entry, n, &tree->rbroot, rbnode)
60105e12 1153 zswap_free_entry(entry);
2b281117
SJ
1154 tree->rbroot = RB_ROOT;
1155 spin_unlock(&tree->lock);
aa9bca05
WY
1156 kfree(tree);
1157 zswap_trees[type] = NULL;
2b281117
SJ
1158}
1159
2b281117
SJ
1160static void zswap_frontswap_init(unsigned type)
1161{
1162 struct zswap_tree *tree;
1163
9cd1f701 1164 tree = kzalloc(sizeof(*tree), GFP_KERNEL);
60105e12
MK
1165 if (!tree) {
1166 pr_err("alloc failed, zswap disabled for swap type %d\n", type);
1167 return;
1168 }
1169
2b281117
SJ
1170 tree->rbroot = RB_ROOT;
1171 spin_lock_init(&tree->lock);
1172 zswap_trees[type] = tree;
2b281117
SJ
1173}
1174
1175static struct frontswap_ops zswap_frontswap_ops = {
1176 .store = zswap_frontswap_store,
1177 .load = zswap_frontswap_load,
1178 .invalidate_page = zswap_frontswap_invalidate_page,
1179 .invalidate_area = zswap_frontswap_invalidate_area,
1180 .init = zswap_frontswap_init
1181};
1182
1183/*********************************
1184* debugfs functions
1185**********************************/
1186#ifdef CONFIG_DEBUG_FS
1187#include <linux/debugfs.h>
1188
1189static struct dentry *zswap_debugfs_root;
1190
1191static int __init zswap_debugfs_init(void)
1192{
1193 if (!debugfs_initialized())
1194 return -ENODEV;
1195
1196 zswap_debugfs_root = debugfs_create_dir("zswap", NULL);
1197 if (!zswap_debugfs_root)
1198 return -ENOMEM;
1199
1200 debugfs_create_u64("pool_limit_hit", S_IRUGO,
1201 zswap_debugfs_root, &zswap_pool_limit_hit);
1202 debugfs_create_u64("reject_reclaim_fail", S_IRUGO,
1203 zswap_debugfs_root, &zswap_reject_reclaim_fail);
1204 debugfs_create_u64("reject_alloc_fail", S_IRUGO,
1205 zswap_debugfs_root, &zswap_reject_alloc_fail);
1206 debugfs_create_u64("reject_kmemcache_fail", S_IRUGO,
1207 zswap_debugfs_root, &zswap_reject_kmemcache_fail);
1208 debugfs_create_u64("reject_compress_poor", S_IRUGO,
1209 zswap_debugfs_root, &zswap_reject_compress_poor);
1210 debugfs_create_u64("written_back_pages", S_IRUGO,
1211 zswap_debugfs_root, &zswap_written_back_pages);
1212 debugfs_create_u64("duplicate_entry", S_IRUGO,
1213 zswap_debugfs_root, &zswap_duplicate_entry);
12d79d64
DS
1214 debugfs_create_u64("pool_total_size", S_IRUGO,
1215 zswap_debugfs_root, &zswap_pool_total_size);
2b281117
SJ
1216 debugfs_create_atomic_t("stored_pages", S_IRUGO,
1217 zswap_debugfs_root, &zswap_stored_pages);
1218
1219 return 0;
1220}
1221
1222static void __exit zswap_debugfs_exit(void)
1223{
1224 debugfs_remove_recursive(zswap_debugfs_root);
1225}
1226#else
1227static int __init zswap_debugfs_init(void)
1228{
1229 return 0;
1230}
1231
1232static void __exit zswap_debugfs_exit(void) { }
1233#endif
1234
1235/*********************************
1236* module init and exit
1237**********************************/
1238static int __init init_zswap(void)
1239{
f1c54846 1240 struct zswap_pool *pool;
ad7ed770 1241 int ret;
60105e12 1242
90b0fc26
DS
1243 zswap_init_started = true;
1244
2b281117
SJ
1245 if (zswap_entry_cache_create()) {
1246 pr_err("entry cache creation failed\n");
f1c54846 1247 goto cache_fail;
2b281117 1248 }
f1c54846 1249
ad7ed770
SAS
1250 ret = cpuhp_setup_state(CPUHP_MM_ZSWP_MEM_PREPARE, "mm/zswap:prepare",
1251 zswap_dstmem_prepare, zswap_dstmem_dead);
1252 if (ret) {
f1c54846
DS
1253 pr_err("dstmem alloc failed\n");
1254 goto dstmem_fail;
2b281117 1255 }
f1c54846 1256
cab7a7e5
SAS
1257 ret = cpuhp_setup_state_multi(CPUHP_MM_ZSWP_POOL_PREPARE,
1258 "mm/zswap_pool:prepare",
1259 zswap_cpu_comp_prepare,
1260 zswap_cpu_comp_dead);
1261 if (ret)
1262 goto hp_fail;
1263
f1c54846 1264 pool = __zswap_pool_create_fallback();
ae3d89a7
DS
1265 if (pool) {
1266 pr_info("loaded using pool %s/%s\n", pool->tfm_name,
1267 zpool_get_type(pool->zpool));
1268 list_add(&pool->list, &zswap_pools);
1269 zswap_has_pool = true;
1270 } else {
f1c54846 1271 pr_err("pool creation failed\n");
ae3d89a7 1272 zswap_enabled = false;
2b281117 1273 }
60105e12 1274
2b281117
SJ
1275 frontswap_register_ops(&zswap_frontswap_ops);
1276 if (zswap_debugfs_init())
1277 pr_warn("debugfs initialization failed\n");
1278 return 0;
f1c54846 1279
cab7a7e5 1280hp_fail:
ad7ed770 1281 cpuhp_remove_state(CPUHP_MM_ZSWP_MEM_PREPARE);
f1c54846 1282dstmem_fail:
c119239b 1283 zswap_entry_cache_destroy();
f1c54846 1284cache_fail:
d7b028f5
DS
1285 /* if built-in, we aren't unloaded on failure; don't allow use */
1286 zswap_init_failed = true;
1287 zswap_enabled = false;
2b281117
SJ
1288 return -ENOMEM;
1289}
1290/* must be late so crypto has time to come up */
1291late_initcall(init_zswap);
1292
1293MODULE_LICENSE("GPL");
68386da8 1294MODULE_AUTHOR("Seth Jennings <sjennings@variantweb.net>");
2b281117 1295MODULE_DESCRIPTION("Compressed cache for swap pages");