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Nitin Gupta61989a82012-01-09 16:51:56 -06001/*
2 * zsmalloc memory allocator
3 *
4 * Copyright (C) 2011 Nitin Gupta
Minchan Kim31fc00b2014-01-30 15:45:55 -08005 * Copyright (C) 2012, 2013 Minchan Kim
Nitin Gupta61989a82012-01-09 16:51:56 -06006 *
7 * This code is released using a dual license strategy: BSD/GPL
8 * You can choose the license that better fits your requirements.
9 *
10 * Released under the terms of 3-clause BSD License
11 * Released under the terms of GNU General Public License Version 2.0
12 */
13
Nitin Gupta2db51da2012-06-09 17:41:14 -070014/*
Nitin Gupta2db51da2012-06-09 17:41:14 -070015 * Following is how we use various fields and flags of underlying
16 * struct page(s) to form a zspage.
17 *
18 * Usage of struct page fields:
Kirill A. Shutemov32e7ba12015-11-06 16:29:47 -080019 * page->private: points to the first component (0-order) page
Nitin Gupta2db51da2012-06-09 17:41:14 -070020 * page->index (union with page->freelist): offset of the first object
21 * starting in this page. For the first page, this is
22 * always 0, so we use this field (aka freelist) to point
23 * to the first free object in zspage.
24 * page->lru: links together all component pages (except the first page)
25 * of a zspage
26 *
27 * For _first_ page only:
28 *
Kirill A. Shutemov32e7ba12015-11-06 16:29:47 -080029 * page->private: refers to the component page after the first page
Minchan Kim7b60a682015-04-15 16:15:39 -070030 * If the page is first_page for huge object, it stores handle.
31 * Look at size_class->huge.
Nitin Gupta2db51da2012-06-09 17:41:14 -070032 * page->freelist: points to the first free object in zspage.
33 * Free objects are linked together using in-place
34 * metadata.
35 * page->objects: maximum number of objects we can store in this
36 * zspage (class->zspage_order * PAGE_SIZE / class->size)
37 * page->lru: links together first pages of various zspages.
38 * Basically forming list of zspages in a fullness group.
39 * page->mapping: class index and fullness group of the zspage
Hui Zhu8f958c92015-11-06 16:29:23 -080040 * page->inuse: the number of objects that are used in this zspage
Nitin Gupta2db51da2012-06-09 17:41:14 -070041 *
42 * Usage of struct page flags:
43 * PG_private: identifies the first component page
44 * PG_private2: identifies the last component page
45 *
46 */
47
Nitin Gupta61989a82012-01-09 16:51:56 -060048#include <linux/module.h>
49#include <linux/kernel.h>
Minchan Kim312fcae2015-04-15 16:15:30 -070050#include <linux/sched.h>
Nitin Gupta61989a82012-01-09 16:51:56 -060051#include <linux/bitops.h>
52#include <linux/errno.h>
53#include <linux/highmem.h>
Nitin Gupta61989a82012-01-09 16:51:56 -060054#include <linux/string.h>
55#include <linux/slab.h>
56#include <asm/tlbflush.h>
57#include <asm/pgtable.h>
58#include <linux/cpumask.h>
59#include <linux/cpu.h>
Seth Jennings0cbb6132012-02-13 08:47:49 -060060#include <linux/vmalloc.h>
Sergey Senozhatsky759b26b2015-11-06 16:29:29 -080061#include <linux/preempt.h>
Seth Jennings0959c632012-08-08 15:12:17 +090062#include <linux/spinlock.h>
63#include <linux/types.h>
Ganesh Mahendran0f050d92015-02-12 15:00:54 -080064#include <linux/debugfs.h>
Minchan Kimbcf16472014-01-30 15:45:50 -080065#include <linux/zsmalloc.h>
Dan Streetmanc7957792014-08-06 16:08:38 -070066#include <linux/zpool.h>
Seth Jennings0959c632012-08-08 15:12:17 +090067
68/*
69 * This must be power of 2 and greater than of equal to sizeof(link_free).
70 * These two conditions ensure that any 'struct link_free' itself doesn't
71 * span more than 1 page which avoids complex case of mapping 2 pages simply
72 * to restore link_free pointer values.
73 */
74#define ZS_ALIGN 8
75
76/*
77 * A single 'zspage' is composed of up to 2^N discontiguous 0-order (single)
78 * pages. ZS_MAX_ZSPAGE_ORDER defines upper limit on N.
79 */
80#define ZS_MAX_ZSPAGE_ORDER 2
81#define ZS_MAX_PAGES_PER_ZSPAGE (_AC(1, UL) << ZS_MAX_ZSPAGE_ORDER)
82
Minchan Kim2e40e162015-04-15 16:15:23 -070083#define ZS_HANDLE_SIZE (sizeof(unsigned long))
84
Seth Jennings0959c632012-08-08 15:12:17 +090085/*
86 * Object location (<PFN>, <obj_idx>) is encoded as
Nitin Cuptac3e3e882013-12-11 11:04:37 +090087 * as single (unsigned long) handle value.
Seth Jennings0959c632012-08-08 15:12:17 +090088 *
89 * Note that object index <obj_idx> is relative to system
90 * page <PFN> it is stored in, so for each sub-page belonging
91 * to a zspage, obj_idx starts with 0.
92 *
93 * This is made more complicated by various memory models and PAE.
94 */
95
96#ifndef MAX_PHYSMEM_BITS
97#ifdef CONFIG_HIGHMEM64G
98#define MAX_PHYSMEM_BITS 36
99#else /* !CONFIG_HIGHMEM64G */
100/*
101 * If this definition of MAX_PHYSMEM_BITS is used, OBJ_INDEX_BITS will just
102 * be PAGE_SHIFT
103 */
104#define MAX_PHYSMEM_BITS BITS_PER_LONG
105#endif
106#endif
107#define _PFN_BITS (MAX_PHYSMEM_BITS - PAGE_SHIFT)
Minchan Kim312fcae2015-04-15 16:15:30 -0700108
109/*
110 * Memory for allocating for handle keeps object position by
111 * encoding <page, obj_idx> and the encoded value has a room
112 * in least bit(ie, look at obj_to_location).
113 * We use the bit to synchronize between object access by
114 * user and migration.
115 */
116#define HANDLE_PIN_BIT 0
117
118/*
119 * Head in allocated object should have OBJ_ALLOCATED_TAG
120 * to identify the object was allocated or not.
121 * It's okay to add the status bit in the least bit because
122 * header keeps handle which is 4byte-aligned address so we
123 * have room for two bit at least.
124 */
125#define OBJ_ALLOCATED_TAG 1
126#define OBJ_TAG_BITS 1
127#define OBJ_INDEX_BITS (BITS_PER_LONG - _PFN_BITS - OBJ_TAG_BITS)
Seth Jennings0959c632012-08-08 15:12:17 +0900128#define OBJ_INDEX_MASK ((_AC(1, UL) << OBJ_INDEX_BITS) - 1)
129
130#define MAX(a, b) ((a) >= (b) ? (a) : (b))
131/* ZS_MIN_ALLOC_SIZE must be multiple of ZS_ALIGN */
132#define ZS_MIN_ALLOC_SIZE \
133 MAX(32, (ZS_MAX_PAGES_PER_ZSPAGE << PAGE_SHIFT >> OBJ_INDEX_BITS))
Minchan Kim2e40e162015-04-15 16:15:23 -0700134/* each chunk includes extra space to keep handle */
Minchan Kim7b60a682015-04-15 16:15:39 -0700135#define ZS_MAX_ALLOC_SIZE PAGE_SIZE
Seth Jennings0959c632012-08-08 15:12:17 +0900136
137/*
Weijie Yang7eb52512014-06-04 16:11:08 -0700138 * On systems with 4K page size, this gives 255 size classes! There is a
Seth Jennings0959c632012-08-08 15:12:17 +0900139 * trader-off here:
140 * - Large number of size classes is potentially wasteful as free page are
141 * spread across these classes
142 * - Small number of size classes causes large internal fragmentation
143 * - Probably its better to use specific size classes (empirically
144 * determined). NOTE: all those class sizes must be set as multiple of
145 * ZS_ALIGN to make sure link_free itself never has to span 2 pages.
146 *
147 * ZS_MIN_ALLOC_SIZE and ZS_SIZE_CLASS_DELTA must be multiple of ZS_ALIGN
148 * (reason above)
149 */
Seth Jenningsd662b8e2013-01-25 11:46:18 -0600150#define ZS_SIZE_CLASS_DELTA (PAGE_SIZE >> 8)
Seth Jennings0959c632012-08-08 15:12:17 +0900151
152/*
153 * We do not maintain any list for completely empty or full pages
154 */
155enum fullness_group {
156 ZS_ALMOST_FULL,
157 ZS_ALMOST_EMPTY,
158 _ZS_NR_FULLNESS_GROUPS,
159
160 ZS_EMPTY,
161 ZS_FULL
162};
163
Ganesh Mahendran0f050d92015-02-12 15:00:54 -0800164enum zs_stat_type {
165 OBJ_ALLOCATED,
166 OBJ_USED,
Minchan Kim248ca1b2015-04-15 16:15:42 -0700167 CLASS_ALMOST_FULL,
168 CLASS_ALMOST_EMPTY,
Ganesh Mahendran0f050d92015-02-12 15:00:54 -0800169};
170
Sergey Senozhatsky6fe51862015-11-06 16:29:38 -0800171#ifdef CONFIG_ZSMALLOC_STAT
172#define NR_ZS_STAT_TYPE (CLASS_ALMOST_EMPTY + 1)
173#else
174#define NR_ZS_STAT_TYPE (OBJ_USED + 1)
175#endif
176
Ganesh Mahendran0f050d92015-02-12 15:00:54 -0800177struct zs_size_stat {
178 unsigned long objs[NR_ZS_STAT_TYPE];
179};
180
Sergey Senozhatsky57244592015-09-08 15:04:27 -0700181#ifdef CONFIG_ZSMALLOC_STAT
182static struct dentry *zs_stat_root;
Ganesh Mahendran0f050d92015-02-12 15:00:54 -0800183#endif
184
Seth Jennings0959c632012-08-08 15:12:17 +0900185/*
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -0800186 * number of size_classes
187 */
188static int zs_size_classes;
189
190/*
Seth Jennings0959c632012-08-08 15:12:17 +0900191 * We assign a page to ZS_ALMOST_EMPTY fullness group when:
192 * n <= N / f, where
193 * n = number of allocated objects
194 * N = total number of objects zspage can store
Wang Sheng-Hui6dd97372014-10-09 15:29:59 -0700195 * f = fullness_threshold_frac
Seth Jennings0959c632012-08-08 15:12:17 +0900196 *
197 * Similarly, we assign zspage to:
198 * ZS_ALMOST_FULL when n > N / f
199 * ZS_EMPTY when n == 0
200 * ZS_FULL when n == N
201 *
202 * (see: fix_fullness_group())
203 */
204static const int fullness_threshold_frac = 4;
205
206struct size_class {
Sergey Senozhatsky57244592015-09-08 15:04:27 -0700207 spinlock_t lock;
208 struct page *fullness_list[_ZS_NR_FULLNESS_GROUPS];
Seth Jennings0959c632012-08-08 15:12:17 +0900209 /*
210 * Size of objects stored in this class. Must be multiple
211 * of ZS_ALIGN.
212 */
213 int size;
214 unsigned int index;
215
Sergey Senozhatsky57244592015-09-08 15:04:27 -0700216 struct zs_size_stat stats;
217
Weijie Yang7dfa4612016-01-14 15:22:40 -0800218 /* Number of PAGE_SIZE sized pages to combine to form a 'zspage' */
219 int pages_per_zspage;
Minchan Kim7b60a682015-04-15 16:15:39 -0700220 /* huge object: pages_per_zspage == 1 && maxobj_per_zspage == 1 */
221 bool huge;
Seth Jennings0959c632012-08-08 15:12:17 +0900222};
223
224/*
225 * Placed within free objects to form a singly linked list.
226 * For every zspage, first_page->freelist gives head of this list.
227 *
228 * This must be power of 2 and less than or equal to ZS_ALIGN
229 */
230struct link_free {
Minchan Kim2e40e162015-04-15 16:15:23 -0700231 union {
232 /*
233 * Position of next free chunk (encodes <PFN, obj_idx>)
234 * It's valid for non-allocated object
235 */
236 void *next;
237 /*
238 * Handle of allocated object.
239 */
240 unsigned long handle;
241 };
Seth Jennings0959c632012-08-08 15:12:17 +0900242};
243
244struct zs_pool {
Sergey SENOZHATSKY6f3526d2015-11-06 16:29:21 -0800245 const char *name;
Ganesh Mahendran0f050d92015-02-12 15:00:54 -0800246
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -0800247 struct size_class **size_class;
Minchan Kim2e40e162015-04-15 16:15:23 -0700248 struct kmem_cache *handle_cachep;
Seth Jennings0959c632012-08-08 15:12:17 +0900249
250 gfp_t flags; /* allocation flags used when growing pool */
Minchan Kim13de8932014-10-09 15:29:48 -0700251 atomic_long_t pages_allocated;
Ganesh Mahendran0f050d92015-02-12 15:00:54 -0800252
Sergey Senozhatsky7d3f3932015-09-08 15:04:35 -0700253 struct zs_pool_stats stats;
Sergey Senozhatskyab9d3062015-09-08 15:04:41 -0700254
255 /* Compact classes */
256 struct shrinker shrinker;
257 /*
258 * To signify that register_shrinker() was successful
259 * and unregister_shrinker() will not Oops.
260 */
261 bool shrinker_enabled;
Ganesh Mahendran0f050d92015-02-12 15:00:54 -0800262#ifdef CONFIG_ZSMALLOC_STAT
263 struct dentry *stat_dentry;
264#endif
Seth Jennings0959c632012-08-08 15:12:17 +0900265};
Nitin Gupta61989a82012-01-09 16:51:56 -0600266
267/*
268 * A zspage's class index and fullness group
269 * are encoded in its (first)page->mapping
270 */
271#define CLASS_IDX_BITS 28
272#define FULLNESS_BITS 4
273#define CLASS_IDX_MASK ((1 << CLASS_IDX_BITS) - 1)
274#define FULLNESS_MASK ((1 << FULLNESS_BITS) - 1)
275
Seth Jenningsf5536462012-07-18 11:55:56 -0500276struct mapping_area {
Minchan Kim1b945ae2013-12-11 11:04:36 +0900277#ifdef CONFIG_PGTABLE_MAPPING
Seth Jenningsf5536462012-07-18 11:55:56 -0500278 struct vm_struct *vm; /* vm area for mapping object that span pages */
279#else
280 char *vm_buf; /* copy buffer for objects that span pages */
281#endif
282 char *vm_addr; /* address of kmap_atomic()'ed pages */
283 enum zs_mapmode vm_mm; /* mapping mode */
284};
285
Minchan Kim2e40e162015-04-15 16:15:23 -0700286static int create_handle_cache(struct zs_pool *pool)
287{
288 pool->handle_cachep = kmem_cache_create("zs_handle", ZS_HANDLE_SIZE,
289 0, 0, NULL);
290 return pool->handle_cachep ? 0 : 1;
291}
292
293static void destroy_handle_cache(struct zs_pool *pool)
294{
Sergey Senozhatskycd10add2015-09-08 15:04:55 -0700295 kmem_cache_destroy(pool->handle_cachep);
Minchan Kim2e40e162015-04-15 16:15:23 -0700296}
297
298static unsigned long alloc_handle(struct zs_pool *pool)
299{
300 return (unsigned long)kmem_cache_alloc(pool->handle_cachep,
301 pool->flags & ~__GFP_HIGHMEM);
302}
303
304static void free_handle(struct zs_pool *pool, unsigned long handle)
305{
306 kmem_cache_free(pool->handle_cachep, (void *)handle);
307}
308
309static void record_obj(unsigned long handle, unsigned long obj)
310{
Junil Leec102f072016-01-20 14:58:18 -0800311 /*
312 * lsb of @obj represents handle lock while other bits
313 * represent object value the handle is pointing so
314 * updating shouldn't do store tearing.
315 */
316 WRITE_ONCE(*(unsigned long *)handle, obj);
Minchan Kim2e40e162015-04-15 16:15:23 -0700317}
318
Dan Streetmanc7957792014-08-06 16:08:38 -0700319/* zpool driver */
320
321#ifdef CONFIG_ZPOOL
322
Sergey SENOZHATSKY6f3526d2015-11-06 16:29:21 -0800323static void *zs_zpool_create(const char *name, gfp_t gfp,
Krzysztof Kozlowski78672772015-09-08 15:05:03 -0700324 const struct zpool_ops *zpool_ops,
Dan Streetman479305f2015-06-25 15:00:40 -0700325 struct zpool *zpool)
Dan Streetmanc7957792014-08-06 16:08:38 -0700326{
Ganesh Mahendran3eba0c62015-02-12 15:00:51 -0800327 return zs_create_pool(name, gfp);
Dan Streetmanc7957792014-08-06 16:08:38 -0700328}
329
330static void zs_zpool_destroy(void *pool)
331{
332 zs_destroy_pool(pool);
333}
334
335static int zs_zpool_malloc(void *pool, size_t size, gfp_t gfp,
336 unsigned long *handle)
337{
338 *handle = zs_malloc(pool, size);
339 return *handle ? 0 : -1;
340}
341static void zs_zpool_free(void *pool, unsigned long handle)
342{
343 zs_free(pool, handle);
344}
345
346static int zs_zpool_shrink(void *pool, unsigned int pages,
347 unsigned int *reclaimed)
348{
349 return -EINVAL;
350}
351
352static void *zs_zpool_map(void *pool, unsigned long handle,
353 enum zpool_mapmode mm)
354{
355 enum zs_mapmode zs_mm;
356
357 switch (mm) {
358 case ZPOOL_MM_RO:
359 zs_mm = ZS_MM_RO;
360 break;
361 case ZPOOL_MM_WO:
362 zs_mm = ZS_MM_WO;
363 break;
364 case ZPOOL_MM_RW: /* fallthru */
365 default:
366 zs_mm = ZS_MM_RW;
367 break;
368 }
369
370 return zs_map_object(pool, handle, zs_mm);
371}
372static void zs_zpool_unmap(void *pool, unsigned long handle)
373{
374 zs_unmap_object(pool, handle);
375}
376
377static u64 zs_zpool_total_size(void *pool)
378{
Minchan Kim722cdc12014-10-09 15:29:50 -0700379 return zs_get_total_pages(pool) << PAGE_SHIFT;
Dan Streetmanc7957792014-08-06 16:08:38 -0700380}
381
382static struct zpool_driver zs_zpool_driver = {
383 .type = "zsmalloc",
384 .owner = THIS_MODULE,
385 .create = zs_zpool_create,
386 .destroy = zs_zpool_destroy,
387 .malloc = zs_zpool_malloc,
388 .free = zs_zpool_free,
389 .shrink = zs_zpool_shrink,
390 .map = zs_zpool_map,
391 .unmap = zs_zpool_unmap,
392 .total_size = zs_zpool_total_size,
393};
394
Kees Cook137f8cf2014-08-29 15:18:40 -0700395MODULE_ALIAS("zpool-zsmalloc");
Dan Streetmanc7957792014-08-06 16:08:38 -0700396#endif /* CONFIG_ZPOOL */
397
Minchan Kim248ca1b2015-04-15 16:15:42 -0700398static unsigned int get_maxobj_per_zspage(int size, int pages_per_zspage)
399{
400 return pages_per_zspage * PAGE_SIZE / size;
401}
402
Nitin Gupta61989a82012-01-09 16:51:56 -0600403/* per-cpu VM mapping areas for zspage accesses that cross page boundaries */
404static DEFINE_PER_CPU(struct mapping_area, zs_map_area);
405
406static int is_first_page(struct page *page)
407{
Minchan Kima27545bf2012-04-25 15:23:09 +0900408 return PagePrivate(page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600409}
410
411static int is_last_page(struct page *page)
412{
Minchan Kima27545bf2012-04-25 15:23:09 +0900413 return PagePrivate2(page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600414}
415
Minchan Kima4209462016-05-20 16:59:36 -0700416static void get_zspage_mapping(struct page *first_page,
417 unsigned int *class_idx,
Nitin Gupta61989a82012-01-09 16:51:56 -0600418 enum fullness_group *fullness)
419{
420 unsigned long m;
Minchan Kima4209462016-05-20 16:59:36 -0700421 BUG_ON(!is_first_page(first_page));
Nitin Gupta61989a82012-01-09 16:51:56 -0600422
Minchan Kima4209462016-05-20 16:59:36 -0700423 m = (unsigned long)first_page->mapping;
Nitin Gupta61989a82012-01-09 16:51:56 -0600424 *fullness = m & FULLNESS_MASK;
425 *class_idx = (m >> FULLNESS_BITS) & CLASS_IDX_MASK;
426}
427
Minchan Kima4209462016-05-20 16:59:36 -0700428static void set_zspage_mapping(struct page *first_page,
429 unsigned int class_idx,
Nitin Gupta61989a82012-01-09 16:51:56 -0600430 enum fullness_group fullness)
431{
432 unsigned long m;
Minchan Kima4209462016-05-20 16:59:36 -0700433 BUG_ON(!is_first_page(first_page));
Nitin Gupta61989a82012-01-09 16:51:56 -0600434
435 m = ((class_idx & CLASS_IDX_MASK) << FULLNESS_BITS) |
436 (fullness & FULLNESS_MASK);
Minchan Kima4209462016-05-20 16:59:36 -0700437 first_page->mapping = (struct address_space *)m;
Nitin Gupta61989a82012-01-09 16:51:56 -0600438}
439
Nitin Cuptac3e3e882013-12-11 11:04:37 +0900440/*
441 * zsmalloc divides the pool into various size classes where each
442 * class maintains a list of zspages where each zspage is divided
443 * into equal sized chunks. Each allocation falls into one of these
444 * classes depending on its size. This function returns index of the
445 * size class which has chunk size big enough to hold the give size.
446 */
Nitin Gupta61989a82012-01-09 16:51:56 -0600447static int get_size_class_index(int size)
448{
449 int idx = 0;
450
451 if (likely(size > ZS_MIN_ALLOC_SIZE))
452 idx = DIV_ROUND_UP(size - ZS_MIN_ALLOC_SIZE,
453 ZS_SIZE_CLASS_DELTA);
454
Minchan Kim7b60a682015-04-15 16:15:39 -0700455 return min(zs_size_classes - 1, idx);
Nitin Gupta61989a82012-01-09 16:51:56 -0600456}
457
Minchan Kim248ca1b2015-04-15 16:15:42 -0700458static inline void zs_stat_inc(struct size_class *class,
459 enum zs_stat_type type, unsigned long cnt)
460{
Sergey Senozhatsky6fe51862015-11-06 16:29:38 -0800461 if (type < NR_ZS_STAT_TYPE)
462 class->stats.objs[type] += cnt;
Minchan Kim248ca1b2015-04-15 16:15:42 -0700463}
464
465static inline void zs_stat_dec(struct size_class *class,
466 enum zs_stat_type type, unsigned long cnt)
467{
Sergey Senozhatsky6fe51862015-11-06 16:29:38 -0800468 if (type < NR_ZS_STAT_TYPE)
469 class->stats.objs[type] -= cnt;
Minchan Kim248ca1b2015-04-15 16:15:42 -0700470}
471
472static inline unsigned long zs_stat_get(struct size_class *class,
473 enum zs_stat_type type)
474{
Sergey Senozhatsky6fe51862015-11-06 16:29:38 -0800475 if (type < NR_ZS_STAT_TYPE)
476 return class->stats.objs[type];
477 return 0;
Minchan Kim248ca1b2015-04-15 16:15:42 -0700478}
479
Sergey Senozhatsky57244592015-09-08 15:04:27 -0700480#ifdef CONFIG_ZSMALLOC_STAT
481
Minchan Kim248ca1b2015-04-15 16:15:42 -0700482static int __init zs_stat_init(void)
483{
484 if (!debugfs_initialized())
485 return -ENODEV;
486
487 zs_stat_root = debugfs_create_dir("zsmalloc", NULL);
488 if (!zs_stat_root)
489 return -ENOMEM;
490
491 return 0;
492}
493
494static void __exit zs_stat_exit(void)
495{
496 debugfs_remove_recursive(zs_stat_root);
497}
498
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700499static unsigned long zs_can_compact(struct size_class *class);
500
Minchan Kim248ca1b2015-04-15 16:15:42 -0700501static int zs_stats_size_show(struct seq_file *s, void *v)
502{
503 int i;
504 struct zs_pool *pool = s->private;
505 struct size_class *class;
506 int objs_per_zspage;
507 unsigned long class_almost_full, class_almost_empty;
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700508 unsigned long obj_allocated, obj_used, pages_used, freeable;
Minchan Kim248ca1b2015-04-15 16:15:42 -0700509 unsigned long total_class_almost_full = 0, total_class_almost_empty = 0;
510 unsigned long total_objs = 0, total_used_objs = 0, total_pages = 0;
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700511 unsigned long total_freeable = 0;
Minchan Kim248ca1b2015-04-15 16:15:42 -0700512
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700513 seq_printf(s, " %5s %5s %11s %12s %13s %10s %10s %16s %8s\n",
Minchan Kim248ca1b2015-04-15 16:15:42 -0700514 "class", "size", "almost_full", "almost_empty",
515 "obj_allocated", "obj_used", "pages_used",
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700516 "pages_per_zspage", "freeable");
Minchan Kim248ca1b2015-04-15 16:15:42 -0700517
518 for (i = 0; i < zs_size_classes; i++) {
519 class = pool->size_class[i];
520
521 if (class->index != i)
522 continue;
523
524 spin_lock(&class->lock);
525 class_almost_full = zs_stat_get(class, CLASS_ALMOST_FULL);
526 class_almost_empty = zs_stat_get(class, CLASS_ALMOST_EMPTY);
527 obj_allocated = zs_stat_get(class, OBJ_ALLOCATED);
528 obj_used = zs_stat_get(class, OBJ_USED);
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700529 freeable = zs_can_compact(class);
Minchan Kim248ca1b2015-04-15 16:15:42 -0700530 spin_unlock(&class->lock);
531
532 objs_per_zspage = get_maxobj_per_zspage(class->size,
533 class->pages_per_zspage);
534 pages_used = obj_allocated / objs_per_zspage *
535 class->pages_per_zspage;
536
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700537 seq_printf(s, " %5u %5u %11lu %12lu %13lu"
538 " %10lu %10lu %16d %8lu\n",
Minchan Kim248ca1b2015-04-15 16:15:42 -0700539 i, class->size, class_almost_full, class_almost_empty,
540 obj_allocated, obj_used, pages_used,
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700541 class->pages_per_zspage, freeable);
Minchan Kim248ca1b2015-04-15 16:15:42 -0700542
543 total_class_almost_full += class_almost_full;
544 total_class_almost_empty += class_almost_empty;
545 total_objs += obj_allocated;
546 total_used_objs += obj_used;
547 total_pages += pages_used;
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700548 total_freeable += freeable;
Minchan Kim248ca1b2015-04-15 16:15:42 -0700549 }
550
551 seq_puts(s, "\n");
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700552 seq_printf(s, " %5s %5s %11lu %12lu %13lu %10lu %10lu %16s %8lu\n",
Minchan Kim248ca1b2015-04-15 16:15:42 -0700553 "Total", "", total_class_almost_full,
554 total_class_almost_empty, total_objs,
Sergey Senozhatsky1120ed52016-03-17 14:20:42 -0700555 total_used_objs, total_pages, "", total_freeable);
Minchan Kim248ca1b2015-04-15 16:15:42 -0700556
557 return 0;
558}
559
560static int zs_stats_size_open(struct inode *inode, struct file *file)
561{
562 return single_open(file, zs_stats_size_show, inode->i_private);
563}
564
565static const struct file_operations zs_stat_size_ops = {
566 .open = zs_stats_size_open,
567 .read = seq_read,
568 .llseek = seq_lseek,
569 .release = single_release,
570};
571
Sergey SENOZHATSKY6f3526d2015-11-06 16:29:21 -0800572static int zs_pool_stat_create(const char *name, struct zs_pool *pool)
Minchan Kim248ca1b2015-04-15 16:15:42 -0700573{
574 struct dentry *entry;
575
576 if (!zs_stat_root)
577 return -ENODEV;
578
579 entry = debugfs_create_dir(name, zs_stat_root);
580 if (!entry) {
581 pr_warn("debugfs dir <%s> creation failed\n", name);
582 return -ENOMEM;
583 }
584 pool->stat_dentry = entry;
585
586 entry = debugfs_create_file("classes", S_IFREG | S_IRUGO,
587 pool->stat_dentry, pool, &zs_stat_size_ops);
588 if (!entry) {
589 pr_warn("%s: debugfs file entry <%s> creation failed\n",
590 name, "classes");
591 return -ENOMEM;
592 }
593
594 return 0;
595}
596
597static void zs_pool_stat_destroy(struct zs_pool *pool)
598{
599 debugfs_remove_recursive(pool->stat_dentry);
600}
601
602#else /* CONFIG_ZSMALLOC_STAT */
Minchan Kim248ca1b2015-04-15 16:15:42 -0700603static int __init zs_stat_init(void)
604{
605 return 0;
606}
607
608static void __exit zs_stat_exit(void)
609{
610}
611
Sergey SENOZHATSKY6f3526d2015-11-06 16:29:21 -0800612static inline int zs_pool_stat_create(const char *name, struct zs_pool *pool)
Minchan Kim248ca1b2015-04-15 16:15:42 -0700613{
614 return 0;
615}
616
617static inline void zs_pool_stat_destroy(struct zs_pool *pool)
618{
619}
Minchan Kim248ca1b2015-04-15 16:15:42 -0700620#endif
621
622
Nitin Cuptac3e3e882013-12-11 11:04:37 +0900623/*
624 * For each size class, zspages are divided into different groups
625 * depending on how "full" they are. This was done so that we could
626 * easily find empty or nearly empty zspages when we try to shrink
627 * the pool (not yet implemented). This function returns fullness
628 * status of the given page.
629 */
Minchan Kima4209462016-05-20 16:59:36 -0700630static enum fullness_group get_fullness_group(struct page *first_page)
Nitin Gupta61989a82012-01-09 16:51:56 -0600631{
632 int inuse, max_objects;
633 enum fullness_group fg;
Minchan Kima4209462016-05-20 16:59:36 -0700634 BUG_ON(!is_first_page(first_page));
Nitin Gupta61989a82012-01-09 16:51:56 -0600635
Minchan Kima4209462016-05-20 16:59:36 -0700636 inuse = first_page->inuse;
637 max_objects = first_page->objects;
Nitin Gupta61989a82012-01-09 16:51:56 -0600638
639 if (inuse == 0)
640 fg = ZS_EMPTY;
641 else if (inuse == max_objects)
642 fg = ZS_FULL;
Minchan Kimd3d07c92015-04-15 16:15:33 -0700643 else if (inuse <= 3 * max_objects / fullness_threshold_frac)
Nitin Gupta61989a82012-01-09 16:51:56 -0600644 fg = ZS_ALMOST_EMPTY;
645 else
646 fg = ZS_ALMOST_FULL;
647
648 return fg;
649}
650
Nitin Cuptac3e3e882013-12-11 11:04:37 +0900651/*
652 * Each size class maintains various freelists and zspages are assigned
653 * to one of these freelists based on the number of live objects they
654 * have. This functions inserts the given zspage into the freelist
655 * identified by <class, fullness_group>.
656 */
Minchan Kima4209462016-05-20 16:59:36 -0700657static void insert_zspage(struct page *first_page, struct size_class *class,
Nitin Gupta61989a82012-01-09 16:51:56 -0600658 enum fullness_group fullness)
659{
660 struct page **head;
661
Minchan Kima4209462016-05-20 16:59:36 -0700662 BUG_ON(!is_first_page(first_page));
Nitin Gupta61989a82012-01-09 16:51:56 -0600663
664 if (fullness >= _ZS_NR_FULLNESS_GROUPS)
665 return;
666
Minchan Kim248ca1b2015-04-15 16:15:42 -0700667 zs_stat_inc(class, fullness == ZS_ALMOST_EMPTY ?
668 CLASS_ALMOST_EMPTY : CLASS_ALMOST_FULL, 1);
Sergey Senozhatsky58f17112015-09-08 15:04:44 -0700669
670 head = &class->fullness_list[fullness];
671 if (!*head) {
Minchan Kima4209462016-05-20 16:59:36 -0700672 *head = first_page;
Sergey Senozhatsky58f17112015-09-08 15:04:44 -0700673 return;
674 }
675
676 /*
677 * We want to see more ZS_FULL pages and less almost
678 * empty/full. Put pages with higher ->inuse first.
679 */
Minchan Kima4209462016-05-20 16:59:36 -0700680 list_add_tail(&first_page->lru, &(*head)->lru);
681 if (first_page->inuse >= (*head)->inuse)
682 *head = first_page;
Nitin Gupta61989a82012-01-09 16:51:56 -0600683}
684
Nitin Cuptac3e3e882013-12-11 11:04:37 +0900685/*
686 * This function removes the given zspage from the freelist identified
687 * by <class, fullness_group>.
688 */
Minchan Kima4209462016-05-20 16:59:36 -0700689static void remove_zspage(struct page *first_page, struct size_class *class,
Nitin Gupta61989a82012-01-09 16:51:56 -0600690 enum fullness_group fullness)
691{
692 struct page **head;
693
Minchan Kima4209462016-05-20 16:59:36 -0700694 BUG_ON(!is_first_page(first_page));
Nitin Gupta61989a82012-01-09 16:51:56 -0600695
696 if (fullness >= _ZS_NR_FULLNESS_GROUPS)
697 return;
698
699 head = &class->fullness_list[fullness];
700 BUG_ON(!*head);
701 if (list_empty(&(*head)->lru))
702 *head = NULL;
Minchan Kima4209462016-05-20 16:59:36 -0700703 else if (*head == first_page)
Nitin Gupta61989a82012-01-09 16:51:56 -0600704 *head = (struct page *)list_entry((*head)->lru.next,
705 struct page, lru);
706
Minchan Kima4209462016-05-20 16:59:36 -0700707 list_del_init(&first_page->lru);
Minchan Kim248ca1b2015-04-15 16:15:42 -0700708 zs_stat_dec(class, fullness == ZS_ALMOST_EMPTY ?
709 CLASS_ALMOST_EMPTY : CLASS_ALMOST_FULL, 1);
Nitin Gupta61989a82012-01-09 16:51:56 -0600710}
711
Nitin Cuptac3e3e882013-12-11 11:04:37 +0900712/*
713 * Each size class maintains zspages in different fullness groups depending
714 * on the number of live objects they contain. When allocating or freeing
715 * objects, the fullness status of the page can change, say, from ALMOST_FULL
716 * to ALMOST_EMPTY when freeing an object. This function checks if such
717 * a status change has occurred for the given page and accordingly moves the
718 * page from the freelist of the old fullness group to that of the new
719 * fullness group.
720 */
Minchan Kimc7806262015-04-15 16:15:26 -0700721static enum fullness_group fix_fullness_group(struct size_class *class,
Minchan Kima4209462016-05-20 16:59:36 -0700722 struct page *first_page)
Nitin Gupta61989a82012-01-09 16:51:56 -0600723{
724 int class_idx;
Nitin Gupta61989a82012-01-09 16:51:56 -0600725 enum fullness_group currfg, newfg;
726
Minchan Kima4209462016-05-20 16:59:36 -0700727 BUG_ON(!is_first_page(first_page));
Nitin Gupta61989a82012-01-09 16:51:56 -0600728
Minchan Kima4209462016-05-20 16:59:36 -0700729 get_zspage_mapping(first_page, &class_idx, &currfg);
730 newfg = get_fullness_group(first_page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600731 if (newfg == currfg)
732 goto out;
733
Minchan Kima4209462016-05-20 16:59:36 -0700734 remove_zspage(first_page, class, currfg);
735 insert_zspage(first_page, class, newfg);
736 set_zspage_mapping(first_page, class_idx, newfg);
Nitin Gupta61989a82012-01-09 16:51:56 -0600737
738out:
739 return newfg;
740}
741
742/*
743 * We have to decide on how many pages to link together
744 * to form a zspage for each size class. This is important
745 * to reduce wastage due to unusable space left at end of
746 * each zspage which is given as:
Yinghao Xie888fa3742015-04-15 16:15:49 -0700747 * wastage = Zp % class_size
748 * usage = Zp - wastage
Nitin Gupta61989a82012-01-09 16:51:56 -0600749 * where Zp = zspage size = k * PAGE_SIZE where k = 1, 2, ...
750 *
751 * For example, for size class of 3/8 * PAGE_SIZE, we should
752 * link together 3 PAGE_SIZE sized pages to form a zspage
753 * since then we can perfectly fit in 8 such objects.
754 */
Minchan Kim2e3b6152012-05-03 15:40:39 +0900755static int get_pages_per_zspage(int class_size)
Nitin Gupta61989a82012-01-09 16:51:56 -0600756{
757 int i, max_usedpc = 0;
758 /* zspage order which gives maximum used size per KB */
759 int max_usedpc_order = 1;
760
Seth Jennings84d4faa2012-03-05 11:33:21 -0600761 for (i = 1; i <= ZS_MAX_PAGES_PER_ZSPAGE; i++) {
Nitin Gupta61989a82012-01-09 16:51:56 -0600762 int zspage_size;
763 int waste, usedpc;
764
765 zspage_size = i * PAGE_SIZE;
766 waste = zspage_size % class_size;
767 usedpc = (zspage_size - waste) * 100 / zspage_size;
768
769 if (usedpc > max_usedpc) {
770 max_usedpc = usedpc;
771 max_usedpc_order = i;
772 }
773 }
774
775 return max_usedpc_order;
776}
777
778/*
779 * A single 'zspage' is composed of many system pages which are
780 * linked together using fields in struct page. This function finds
781 * the first/head page, given any component page of a zspage.
782 */
783static struct page *get_first_page(struct page *page)
784{
785 if (is_first_page(page))
786 return page;
787 else
Kirill A. Shutemov32e7ba12015-11-06 16:29:47 -0800788 return (struct page *)page_private(page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600789}
790
791static struct page *get_next_page(struct page *page)
792{
793 struct page *next;
794
795 if (is_last_page(page))
796 next = NULL;
797 else if (is_first_page(page))
Sunghan Suhe842b972013-07-12 16:08:13 +0900798 next = (struct page *)page_private(page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600799 else
800 next = list_entry(page->lru.next, struct page, lru);
801
802 return next;
803}
804
Olav Haugan67296872013-11-22 09:30:41 -0800805/*
806 * Encode <page, obj_idx> as a single handle value.
Minchan Kim312fcae2015-04-15 16:15:30 -0700807 * We use the least bit of handle for tagging.
Olav Haugan67296872013-11-22 09:30:41 -0800808 */
Minchan Kim312fcae2015-04-15 16:15:30 -0700809static void *location_to_obj(struct page *page, unsigned long obj_idx)
Nitin Gupta61989a82012-01-09 16:51:56 -0600810{
Minchan Kim312fcae2015-04-15 16:15:30 -0700811 unsigned long obj;
Nitin Gupta61989a82012-01-09 16:51:56 -0600812
813 if (!page) {
814 BUG_ON(obj_idx);
815 return NULL;
816 }
817
Minchan Kim312fcae2015-04-15 16:15:30 -0700818 obj = page_to_pfn(page) << OBJ_INDEX_BITS;
819 obj |= ((obj_idx) & OBJ_INDEX_MASK);
820 obj <<= OBJ_TAG_BITS;
Nitin Gupta61989a82012-01-09 16:51:56 -0600821
Minchan Kim312fcae2015-04-15 16:15:30 -0700822 return (void *)obj;
Nitin Gupta61989a82012-01-09 16:51:56 -0600823}
824
Olav Haugan67296872013-11-22 09:30:41 -0800825/*
826 * Decode <page, obj_idx> pair from the given object handle. We adjust the
827 * decoded obj_idx back to its original value since it was adjusted in
Minchan Kim312fcae2015-04-15 16:15:30 -0700828 * location_to_obj().
Olav Haugan67296872013-11-22 09:30:41 -0800829 */
Minchan Kim312fcae2015-04-15 16:15:30 -0700830static void obj_to_location(unsigned long obj, struct page **page,
Nitin Gupta61989a82012-01-09 16:51:56 -0600831 unsigned long *obj_idx)
832{
Minchan Kim312fcae2015-04-15 16:15:30 -0700833 obj >>= OBJ_TAG_BITS;
834 *page = pfn_to_page(obj >> OBJ_INDEX_BITS);
835 *obj_idx = (obj & OBJ_INDEX_MASK);
Nitin Gupta61989a82012-01-09 16:51:56 -0600836}
837
Minchan Kim2e40e162015-04-15 16:15:23 -0700838static unsigned long handle_to_obj(unsigned long handle)
839{
840 return *(unsigned long *)handle;
841}
842
Minchan Kim7b60a682015-04-15 16:15:39 -0700843static unsigned long obj_to_head(struct size_class *class, struct page *page,
844 void *obj)
Minchan Kim312fcae2015-04-15 16:15:30 -0700845{
Minchan Kim7b60a682015-04-15 16:15:39 -0700846 if (class->huge) {
847 VM_BUG_ON(!is_first_page(page));
Hui Zhu12a7bfa2015-11-06 16:29:26 -0800848 return page_private(page);
Minchan Kim7b60a682015-04-15 16:15:39 -0700849 } else
850 return *(unsigned long *)obj;
Minchan Kim312fcae2015-04-15 16:15:30 -0700851}
852
Nitin Gupta61989a82012-01-09 16:51:56 -0600853static unsigned long obj_idx_to_offset(struct page *page,
854 unsigned long obj_idx, int class_size)
855{
856 unsigned long off = 0;
857
858 if (!is_first_page(page))
859 off = page->index;
860
861 return off + obj_idx * class_size;
862}
863
Minchan Kim312fcae2015-04-15 16:15:30 -0700864static inline int trypin_tag(unsigned long handle)
865{
866 unsigned long *ptr = (unsigned long *)handle;
867
868 return !test_and_set_bit_lock(HANDLE_PIN_BIT, ptr);
869}
870
871static void pin_tag(unsigned long handle)
872{
873 while (!trypin_tag(handle));
874}
875
876static void unpin_tag(unsigned long handle)
877{
878 unsigned long *ptr = (unsigned long *)handle;
879
880 clear_bit_unlock(HANDLE_PIN_BIT, ptr);
881}
882
Nitin Guptaf4477e92012-04-02 09:13:56 -0500883static void reset_page(struct page *page)
884{
885 clear_bit(PG_private, &page->flags);
886 clear_bit(PG_private_2, &page->flags);
887 set_page_private(page, 0);
888 page->mapping = NULL;
889 page->freelist = NULL;
Mel Gorman22b751c2013-02-22 16:34:59 -0800890 page_mapcount_reset(page);
Nitin Guptaf4477e92012-04-02 09:13:56 -0500891}
892
Nitin Gupta61989a82012-01-09 16:51:56 -0600893static void free_zspage(struct page *first_page)
894{
Nitin Guptaf4477e92012-04-02 09:13:56 -0500895 struct page *nextp, *tmp, *head_extra;
Nitin Gupta61989a82012-01-09 16:51:56 -0600896
897 BUG_ON(!is_first_page(first_page));
898 BUG_ON(first_page->inuse);
899
Nitin Guptaf4477e92012-04-02 09:13:56 -0500900 head_extra = (struct page *)page_private(first_page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600901
Nitin Guptaf4477e92012-04-02 09:13:56 -0500902 reset_page(first_page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600903 __free_page(first_page);
904
905 /* zspage with only 1 system page */
Nitin Guptaf4477e92012-04-02 09:13:56 -0500906 if (!head_extra)
Nitin Gupta61989a82012-01-09 16:51:56 -0600907 return;
908
Nitin Guptaf4477e92012-04-02 09:13:56 -0500909 list_for_each_entry_safe(nextp, tmp, &head_extra->lru, lru) {
Nitin Gupta61989a82012-01-09 16:51:56 -0600910 list_del(&nextp->lru);
Nitin Guptaf4477e92012-04-02 09:13:56 -0500911 reset_page(nextp);
Nitin Gupta61989a82012-01-09 16:51:56 -0600912 __free_page(nextp);
913 }
Nitin Guptaf4477e92012-04-02 09:13:56 -0500914 reset_page(head_extra);
915 __free_page(head_extra);
Nitin Gupta61989a82012-01-09 16:51:56 -0600916}
917
918/* Initialize a newly allocated zspage */
919static void init_zspage(struct page *first_page, struct size_class *class)
920{
921 unsigned long off = 0;
922 struct page *page = first_page;
923
924 BUG_ON(!is_first_page(first_page));
925 while (page) {
926 struct page *next_page;
927 struct link_free *link;
Dan Streetman5538c562014-10-09 15:30:01 -0700928 unsigned int i = 1;
Minchan Kimaf4ee5e2014-12-12 16:56:58 -0800929 void *vaddr;
Nitin Gupta61989a82012-01-09 16:51:56 -0600930
931 /*
932 * page->index stores offset of first object starting
933 * in the page. For the first page, this is always 0,
934 * so we use first_page->index (aka ->freelist) to store
935 * head of corresponding zspage's freelist.
936 */
937 if (page != first_page)
938 page->index = off;
939
Minchan Kimaf4ee5e2014-12-12 16:56:58 -0800940 vaddr = kmap_atomic(page);
941 link = (struct link_free *)vaddr + off / sizeof(*link);
Nitin Gupta61989a82012-01-09 16:51:56 -0600942
Dan Streetman5538c562014-10-09 15:30:01 -0700943 while ((off += class->size) < PAGE_SIZE) {
Minchan Kim312fcae2015-04-15 16:15:30 -0700944 link->next = location_to_obj(page, i++);
Dan Streetman5538c562014-10-09 15:30:01 -0700945 link += class->size / sizeof(*link);
Nitin Gupta61989a82012-01-09 16:51:56 -0600946 }
947
948 /*
949 * We now come to the last (full or partial) object on this
950 * page, which must point to the first object on the next
951 * page (if present)
952 */
953 next_page = get_next_page(page);
Minchan Kim312fcae2015-04-15 16:15:30 -0700954 link->next = location_to_obj(next_page, 0);
Minchan Kimaf4ee5e2014-12-12 16:56:58 -0800955 kunmap_atomic(vaddr);
Nitin Gupta61989a82012-01-09 16:51:56 -0600956 page = next_page;
Dan Streetman5538c562014-10-09 15:30:01 -0700957 off %= PAGE_SIZE;
Nitin Gupta61989a82012-01-09 16:51:56 -0600958 }
959}
960
961/*
962 * Allocate a zspage for the given size class
963 */
964static struct page *alloc_zspage(struct size_class *class, gfp_t flags)
965{
966 int i, error;
Seth Jenningsb4b700c2012-06-13 16:03:42 -0500967 struct page *first_page = NULL, *uninitialized_var(prev_page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600968
969 /*
970 * Allocate individual pages and link them together as:
971 * 1. first page->private = first sub-page
972 * 2. all sub-pages are linked together using page->lru
Kirill A. Shutemov32e7ba12015-11-06 16:29:47 -0800973 * 3. each sub-page is linked to the first page using page->private
Nitin Gupta61989a82012-01-09 16:51:56 -0600974 *
975 * For each size class, First/Head pages are linked together using
976 * page->lru. Also, we set PG_private to identify the first page
977 * (i.e. no other sub-page has this flag set) and PG_private_2 to
978 * identify the last page.
979 */
980 error = -ENOMEM;
Minchan Kim2e3b6152012-05-03 15:40:39 +0900981 for (i = 0; i < class->pages_per_zspage; i++) {
Seth Jenningsb4b700c2012-06-13 16:03:42 -0500982 struct page *page;
Nitin Gupta61989a82012-01-09 16:51:56 -0600983
984 page = alloc_page(flags);
985 if (!page)
986 goto cleanup;
987
988 INIT_LIST_HEAD(&page->lru);
989 if (i == 0) { /* first page */
Minchan Kima27545bf2012-04-25 15:23:09 +0900990 SetPagePrivate(page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600991 set_page_private(page, 0);
992 first_page = page;
993 first_page->inuse = 0;
994 }
995 if (i == 1)
Sunghan Suhe842b972013-07-12 16:08:13 +0900996 set_page_private(first_page, (unsigned long)page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600997 if (i >= 1)
Kirill A. Shutemov32e7ba12015-11-06 16:29:47 -0800998 set_page_private(page, (unsigned long)first_page);
Nitin Gupta61989a82012-01-09 16:51:56 -0600999 if (i >= 2)
1000 list_add(&page->lru, &prev_page->lru);
Minchan Kim2e3b6152012-05-03 15:40:39 +09001001 if (i == class->pages_per_zspage - 1) /* last page */
Minchan Kima27545bf2012-04-25 15:23:09 +09001002 SetPagePrivate2(page);
Nitin Gupta61989a82012-01-09 16:51:56 -06001003 prev_page = page;
1004 }
1005
1006 init_zspage(first_page, class);
1007
Minchan Kim312fcae2015-04-15 16:15:30 -07001008 first_page->freelist = location_to_obj(first_page, 0);
Nitin Gupta61989a82012-01-09 16:51:56 -06001009 /* Maximum number of objects we can store in this zspage */
Minchan Kim2e3b6152012-05-03 15:40:39 +09001010 first_page->objects = class->pages_per_zspage * PAGE_SIZE / class->size;
Nitin Gupta61989a82012-01-09 16:51:56 -06001011
1012 error = 0; /* Success */
1013
1014cleanup:
1015 if (unlikely(error) && first_page) {
1016 free_zspage(first_page);
1017 first_page = NULL;
1018 }
1019
1020 return first_page;
1021}
1022
1023static struct page *find_get_zspage(struct size_class *class)
1024{
1025 int i;
1026 struct page *page;
1027
1028 for (i = 0; i < _ZS_NR_FULLNESS_GROUPS; i++) {
1029 page = class->fullness_list[i];
1030 if (page)
1031 break;
1032 }
1033
1034 return page;
1035}
1036
Minchan Kim1b945ae2013-12-11 11:04:36 +09001037#ifdef CONFIG_PGTABLE_MAPPING
Seth Jenningsf5536462012-07-18 11:55:56 -05001038static inline int __zs_cpu_up(struct mapping_area *area)
Seth Jennings5f601902012-07-02 16:15:49 -05001039{
Seth Jenningsf5536462012-07-18 11:55:56 -05001040 /*
1041 * Make sure we don't leak memory if a cpu UP notification
1042 * and zs_init() race and both call zs_cpu_up() on the same cpu
1043 */
1044 if (area->vm)
1045 return 0;
1046 area->vm = alloc_vm_area(PAGE_SIZE * 2, NULL);
1047 if (!area->vm)
1048 return -ENOMEM;
1049 return 0;
1050}
1051
1052static inline void __zs_cpu_down(struct mapping_area *area)
1053{
1054 if (area->vm)
1055 free_vm_area(area->vm);
1056 area->vm = NULL;
1057}
1058
1059static inline void *__zs_map_object(struct mapping_area *area,
1060 struct page *pages[2], int off, int size)
1061{
WANG Chaof6f8ed42014-08-06 16:06:58 -07001062 BUG_ON(map_vm_area(area->vm, PAGE_KERNEL, pages));
Seth Jenningsf5536462012-07-18 11:55:56 -05001063 area->vm_addr = area->vm->addr;
1064 return area->vm_addr + off;
1065}
1066
1067static inline void __zs_unmap_object(struct mapping_area *area,
1068 struct page *pages[2], int off, int size)
1069{
1070 unsigned long addr = (unsigned long)area->vm_addr;
Seth Jenningsf5536462012-07-18 11:55:56 -05001071
Joerg Roedeld95abbb2013-03-27 01:43:14 +01001072 unmap_kernel_range(addr, PAGE_SIZE * 2);
Seth Jenningsf5536462012-07-18 11:55:56 -05001073}
1074
Minchan Kim1b945ae2013-12-11 11:04:36 +09001075#else /* CONFIG_PGTABLE_MAPPING */
Seth Jenningsf5536462012-07-18 11:55:56 -05001076
1077static inline int __zs_cpu_up(struct mapping_area *area)
1078{
1079 /*
1080 * Make sure we don't leak memory if a cpu UP notification
1081 * and zs_init() race and both call zs_cpu_up() on the same cpu
1082 */
1083 if (area->vm_buf)
1084 return 0;
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -08001085 area->vm_buf = kmalloc(ZS_MAX_ALLOC_SIZE, GFP_KERNEL);
Seth Jenningsf5536462012-07-18 11:55:56 -05001086 if (!area->vm_buf)
1087 return -ENOMEM;
1088 return 0;
1089}
1090
1091static inline void __zs_cpu_down(struct mapping_area *area)
1092{
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -08001093 kfree(area->vm_buf);
Seth Jenningsf5536462012-07-18 11:55:56 -05001094 area->vm_buf = NULL;
1095}
1096
1097static void *__zs_map_object(struct mapping_area *area,
1098 struct page *pages[2], int off, int size)
1099{
Seth Jennings5f601902012-07-02 16:15:49 -05001100 int sizes[2];
1101 void *addr;
Seth Jenningsf5536462012-07-18 11:55:56 -05001102 char *buf = area->vm_buf;
Seth Jennings5f601902012-07-02 16:15:49 -05001103
Seth Jenningsf5536462012-07-18 11:55:56 -05001104 /* disable page faults to match kmap_atomic() return conditions */
1105 pagefault_disable();
1106
1107 /* no read fastpath */
1108 if (area->vm_mm == ZS_MM_WO)
1109 goto out;
Seth Jennings5f601902012-07-02 16:15:49 -05001110
1111 sizes[0] = PAGE_SIZE - off;
1112 sizes[1] = size - sizes[0];
1113
Seth Jennings5f601902012-07-02 16:15:49 -05001114 /* copy object to per-cpu buffer */
1115 addr = kmap_atomic(pages[0]);
1116 memcpy(buf, addr + off, sizes[0]);
1117 kunmap_atomic(addr);
1118 addr = kmap_atomic(pages[1]);
1119 memcpy(buf + sizes[0], addr, sizes[1]);
1120 kunmap_atomic(addr);
Seth Jenningsf5536462012-07-18 11:55:56 -05001121out:
1122 return area->vm_buf;
Seth Jennings5f601902012-07-02 16:15:49 -05001123}
1124
Seth Jenningsf5536462012-07-18 11:55:56 -05001125static void __zs_unmap_object(struct mapping_area *area,
1126 struct page *pages[2], int off, int size)
Seth Jennings5f601902012-07-02 16:15:49 -05001127{
Seth Jennings5f601902012-07-02 16:15:49 -05001128 int sizes[2];
1129 void *addr;
Minchan Kim2e40e162015-04-15 16:15:23 -07001130 char *buf;
Seth Jennings5f601902012-07-02 16:15:49 -05001131
Seth Jenningsf5536462012-07-18 11:55:56 -05001132 /* no write fastpath */
1133 if (area->vm_mm == ZS_MM_RO)
1134 goto out;
Seth Jennings5f601902012-07-02 16:15:49 -05001135
Minchan Kim7b60a682015-04-15 16:15:39 -07001136 buf = area->vm_buf;
YiPing Xua82cbf02016-03-17 14:20:39 -07001137 buf = buf + ZS_HANDLE_SIZE;
1138 size -= ZS_HANDLE_SIZE;
1139 off += ZS_HANDLE_SIZE;
Minchan Kim2e40e162015-04-15 16:15:23 -07001140
Seth Jennings5f601902012-07-02 16:15:49 -05001141 sizes[0] = PAGE_SIZE - off;
1142 sizes[1] = size - sizes[0];
1143
1144 /* copy per-cpu buffer to object */
1145 addr = kmap_atomic(pages[0]);
1146 memcpy(addr + off, buf, sizes[0]);
1147 kunmap_atomic(addr);
1148 addr = kmap_atomic(pages[1]);
1149 memcpy(addr, buf + sizes[0], sizes[1]);
1150 kunmap_atomic(addr);
Seth Jenningsf5536462012-07-18 11:55:56 -05001151
1152out:
1153 /* enable page faults to match kunmap_atomic() return conditions */
1154 pagefault_enable();
Seth Jennings5f601902012-07-02 16:15:49 -05001155}
Nitin Gupta61989a82012-01-09 16:51:56 -06001156
Minchan Kim1b945ae2013-12-11 11:04:36 +09001157#endif /* CONFIG_PGTABLE_MAPPING */
Seth Jenningsf5536462012-07-18 11:55:56 -05001158
Nitin Gupta61989a82012-01-09 16:51:56 -06001159static int zs_cpu_notifier(struct notifier_block *nb, unsigned long action,
1160 void *pcpu)
1161{
Seth Jenningsf5536462012-07-18 11:55:56 -05001162 int ret, cpu = (long)pcpu;
Nitin Gupta61989a82012-01-09 16:51:56 -06001163 struct mapping_area *area;
1164
1165 switch (action) {
1166 case CPU_UP_PREPARE:
1167 area = &per_cpu(zs_map_area, cpu);
Seth Jenningsf5536462012-07-18 11:55:56 -05001168 ret = __zs_cpu_up(area);
1169 if (ret)
1170 return notifier_from_errno(ret);
Nitin Gupta61989a82012-01-09 16:51:56 -06001171 break;
1172 case CPU_DEAD:
1173 case CPU_UP_CANCELED:
1174 area = &per_cpu(zs_map_area, cpu);
Seth Jenningsf5536462012-07-18 11:55:56 -05001175 __zs_cpu_down(area);
Nitin Gupta61989a82012-01-09 16:51:56 -06001176 break;
1177 }
1178
1179 return NOTIFY_OK;
1180}
1181
1182static struct notifier_block zs_cpu_nb = {
1183 .notifier_call = zs_cpu_notifier
1184};
1185
Sergey Senozhatskyb1b00a52014-12-12 16:56:56 -08001186static int zs_register_cpu_notifier(void)
Nitin Gupta61989a82012-01-09 16:51:56 -06001187{
Sergey Senozhatskyb1b00a52014-12-12 16:56:56 -08001188 int cpu, uninitialized_var(ret);
Nitin Gupta61989a82012-01-09 16:51:56 -06001189
Srivatsa S. Bhatf0e71fc2014-03-11 02:09:59 +05301190 cpu_notifier_register_begin();
1191
1192 __register_cpu_notifier(&zs_cpu_nb);
Nitin Gupta61989a82012-01-09 16:51:56 -06001193 for_each_online_cpu(cpu) {
1194 ret = zs_cpu_notifier(NULL, CPU_UP_PREPARE, (void *)(long)cpu);
Sergey Senozhatskyb1b00a52014-12-12 16:56:56 -08001195 if (notifier_to_errno(ret))
1196 break;
Nitin Gupta61989a82012-01-09 16:51:56 -06001197 }
Srivatsa S. Bhatf0e71fc2014-03-11 02:09:59 +05301198
1199 cpu_notifier_register_done();
Sergey Senozhatskyb1b00a52014-12-12 16:56:56 -08001200 return notifier_to_errno(ret);
1201}
1202
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001203static void zs_unregister_cpu_notifier(void)
1204{
1205 int cpu;
1206
1207 cpu_notifier_register_begin();
1208
1209 for_each_online_cpu(cpu)
1210 zs_cpu_notifier(NULL, CPU_DEAD, (void *)(long)cpu);
1211 __unregister_cpu_notifier(&zs_cpu_nb);
1212
1213 cpu_notifier_register_done();
1214}
1215
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -08001216static void init_zs_size_classes(void)
1217{
1218 int nr;
1219
1220 nr = (ZS_MAX_ALLOC_SIZE - ZS_MIN_ALLOC_SIZE) / ZS_SIZE_CLASS_DELTA + 1;
1221 if ((ZS_MAX_ALLOC_SIZE - ZS_MIN_ALLOC_SIZE) % ZS_SIZE_CLASS_DELTA)
1222 nr += 1;
1223
1224 zs_size_classes = nr;
1225}
1226
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001227static bool can_merge(struct size_class *prev, int size, int pages_per_zspage)
1228{
1229 if (prev->pages_per_zspage != pages_per_zspage)
1230 return false;
1231
1232 if (get_maxobj_per_zspage(prev->size, prev->pages_per_zspage)
1233 != get_maxobj_per_zspage(size, pages_per_zspage))
1234 return false;
1235
1236 return true;
1237}
1238
Minchan Kima4209462016-05-20 16:59:36 -07001239static bool zspage_full(struct page *first_page)
Minchan Kim312fcae2015-04-15 16:15:30 -07001240{
Minchan Kima4209462016-05-20 16:59:36 -07001241 BUG_ON(!is_first_page(first_page));
Minchan Kim312fcae2015-04-15 16:15:30 -07001242
Minchan Kima4209462016-05-20 16:59:36 -07001243 return first_page->inuse == first_page->objects;
Minchan Kim312fcae2015-04-15 16:15:30 -07001244}
1245
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001246unsigned long zs_get_total_pages(struct zs_pool *pool)
1247{
1248 return atomic_long_read(&pool->pages_allocated);
1249}
1250EXPORT_SYMBOL_GPL(zs_get_total_pages);
1251
1252/**
1253 * zs_map_object - get address of allocated object from handle.
1254 * @pool: pool from which the object was allocated
1255 * @handle: handle returned from zs_malloc
1256 *
1257 * Before using an object allocated from zs_malloc, it must be mapped using
1258 * this function. When done with the object, it must be unmapped using
1259 * zs_unmap_object.
1260 *
1261 * Only one object can be mapped per cpu at a time. There is no protection
1262 * against nested mappings.
1263 *
1264 * This function returns with preemption and page faults disabled.
1265 */
1266void *zs_map_object(struct zs_pool *pool, unsigned long handle,
1267 enum zs_mapmode mm)
1268{
1269 struct page *page;
Minchan Kim2e40e162015-04-15 16:15:23 -07001270 unsigned long obj, obj_idx, off;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001271
1272 unsigned int class_idx;
1273 enum fullness_group fg;
1274 struct size_class *class;
1275 struct mapping_area *area;
1276 struct page *pages[2];
Minchan Kim2e40e162015-04-15 16:15:23 -07001277 void *ret;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001278
1279 BUG_ON(!handle);
1280
1281 /*
1282 * Because we use per-cpu mapping areas shared among the
1283 * pools/users, we can't allow mapping in interrupt context
1284 * because it can corrupt another users mappings.
1285 */
1286 BUG_ON(in_interrupt());
1287
Minchan Kim312fcae2015-04-15 16:15:30 -07001288 /* From now on, migration cannot move the object */
1289 pin_tag(handle);
1290
Minchan Kim2e40e162015-04-15 16:15:23 -07001291 obj = handle_to_obj(handle);
1292 obj_to_location(obj, &page, &obj_idx);
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001293 get_zspage_mapping(get_first_page(page), &class_idx, &fg);
1294 class = pool->size_class[class_idx];
1295 off = obj_idx_to_offset(page, obj_idx, class->size);
1296
1297 area = &get_cpu_var(zs_map_area);
1298 area->vm_mm = mm;
1299 if (off + class->size <= PAGE_SIZE) {
1300 /* this object is contained entirely within a page */
1301 area->vm_addr = kmap_atomic(page);
Minchan Kim2e40e162015-04-15 16:15:23 -07001302 ret = area->vm_addr + off;
1303 goto out;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001304 }
1305
1306 /* this object spans two pages */
1307 pages[0] = page;
1308 pages[1] = get_next_page(page);
1309 BUG_ON(!pages[1]);
1310
Minchan Kim2e40e162015-04-15 16:15:23 -07001311 ret = __zs_map_object(area, pages, off, class->size);
1312out:
Minchan Kim7b60a682015-04-15 16:15:39 -07001313 if (!class->huge)
1314 ret += ZS_HANDLE_SIZE;
1315
1316 return ret;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001317}
1318EXPORT_SYMBOL_GPL(zs_map_object);
1319
1320void zs_unmap_object(struct zs_pool *pool, unsigned long handle)
1321{
1322 struct page *page;
Minchan Kim2e40e162015-04-15 16:15:23 -07001323 unsigned long obj, obj_idx, off;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001324
1325 unsigned int class_idx;
1326 enum fullness_group fg;
1327 struct size_class *class;
1328 struct mapping_area *area;
1329
1330 BUG_ON(!handle);
1331
Minchan Kim2e40e162015-04-15 16:15:23 -07001332 obj = handle_to_obj(handle);
1333 obj_to_location(obj, &page, &obj_idx);
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001334 get_zspage_mapping(get_first_page(page), &class_idx, &fg);
1335 class = pool->size_class[class_idx];
1336 off = obj_idx_to_offset(page, obj_idx, class->size);
1337
1338 area = this_cpu_ptr(&zs_map_area);
1339 if (off + class->size <= PAGE_SIZE)
1340 kunmap_atomic(area->vm_addr);
1341 else {
1342 struct page *pages[2];
1343
1344 pages[0] = page;
1345 pages[1] = get_next_page(page);
1346 BUG_ON(!pages[1]);
1347
1348 __zs_unmap_object(area, pages, off, class->size);
1349 }
1350 put_cpu_var(zs_map_area);
Minchan Kim312fcae2015-04-15 16:15:30 -07001351 unpin_tag(handle);
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001352}
1353EXPORT_SYMBOL_GPL(zs_unmap_object);
1354
Minchan Kimc7806262015-04-15 16:15:26 -07001355static unsigned long obj_malloc(struct page *first_page,
1356 struct size_class *class, unsigned long handle)
1357{
1358 unsigned long obj;
1359 struct link_free *link;
1360
1361 struct page *m_page;
1362 unsigned long m_objidx, m_offset;
1363 void *vaddr;
1364
Minchan Kim312fcae2015-04-15 16:15:30 -07001365 handle |= OBJ_ALLOCATED_TAG;
Minchan Kimc7806262015-04-15 16:15:26 -07001366 obj = (unsigned long)first_page->freelist;
1367 obj_to_location(obj, &m_page, &m_objidx);
1368 m_offset = obj_idx_to_offset(m_page, m_objidx, class->size);
1369
1370 vaddr = kmap_atomic(m_page);
1371 link = (struct link_free *)vaddr + m_offset / sizeof(*link);
1372 first_page->freelist = link->next;
Minchan Kim7b60a682015-04-15 16:15:39 -07001373 if (!class->huge)
1374 /* record handle in the header of allocated chunk */
1375 link->handle = handle;
1376 else
1377 /* record handle in first_page->private */
1378 set_page_private(first_page, handle);
Minchan Kimc7806262015-04-15 16:15:26 -07001379 kunmap_atomic(vaddr);
1380 first_page->inuse++;
1381 zs_stat_inc(class, OBJ_USED, 1);
1382
1383 return obj;
1384}
1385
1386
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001387/**
1388 * zs_malloc - Allocate block of given size from pool.
1389 * @pool: pool to allocate from
1390 * @size: size of block to allocate
1391 *
1392 * On success, handle to the allocated object is returned,
1393 * otherwise 0.
1394 * Allocation requests with size > ZS_MAX_ALLOC_SIZE will fail.
1395 */
1396unsigned long zs_malloc(struct zs_pool *pool, size_t size)
1397{
Minchan Kim2e40e162015-04-15 16:15:23 -07001398 unsigned long handle, obj;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001399 struct size_class *class;
Minchan Kimc7806262015-04-15 16:15:26 -07001400 struct page *first_page;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001401
Minchan Kim7b60a682015-04-15 16:15:39 -07001402 if (unlikely(!size || size > ZS_MAX_ALLOC_SIZE))
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001403 return 0;
1404
Minchan Kim2e40e162015-04-15 16:15:23 -07001405 handle = alloc_handle(pool);
1406 if (!handle)
1407 return 0;
1408
1409 /* extra space in chunk to keep the handle */
1410 size += ZS_HANDLE_SIZE;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001411 class = pool->size_class[get_size_class_index(size)];
1412
1413 spin_lock(&class->lock);
1414 first_page = find_get_zspage(class);
1415
1416 if (!first_page) {
1417 spin_unlock(&class->lock);
1418 first_page = alloc_zspage(class, pool->flags);
Minchan Kim2e40e162015-04-15 16:15:23 -07001419 if (unlikely(!first_page)) {
1420 free_handle(pool, handle);
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001421 return 0;
Minchan Kim2e40e162015-04-15 16:15:23 -07001422 }
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001423
1424 set_zspage_mapping(first_page, class->index, ZS_EMPTY);
1425 atomic_long_add(class->pages_per_zspage,
1426 &pool->pages_allocated);
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08001427
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001428 spin_lock(&class->lock);
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08001429 zs_stat_inc(class, OBJ_ALLOCATED, get_maxobj_per_zspage(
1430 class->size, class->pages_per_zspage));
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001431 }
1432
Minchan Kimc7806262015-04-15 16:15:26 -07001433 obj = obj_malloc(first_page, class, handle);
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001434 /* Now move the zspage to another fullness group, if required */
Minchan Kimc7806262015-04-15 16:15:26 -07001435 fix_fullness_group(class, first_page);
Minchan Kim2e40e162015-04-15 16:15:23 -07001436 record_obj(handle, obj);
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001437 spin_unlock(&class->lock);
1438
Minchan Kim2e40e162015-04-15 16:15:23 -07001439 return handle;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001440}
1441EXPORT_SYMBOL_GPL(zs_malloc);
1442
Minchan Kimc7806262015-04-15 16:15:26 -07001443static void obj_free(struct zs_pool *pool, struct size_class *class,
1444 unsigned long obj)
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001445{
1446 struct link_free *link;
1447 struct page *first_page, *f_page;
Minchan Kimc7806262015-04-15 16:15:26 -07001448 unsigned long f_objidx, f_offset;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001449 void *vaddr;
1450
Minchan Kimc7806262015-04-15 16:15:26 -07001451 BUG_ON(!obj);
1452
Minchan Kim312fcae2015-04-15 16:15:30 -07001453 obj &= ~OBJ_ALLOCATED_TAG;
Minchan Kimc7806262015-04-15 16:15:26 -07001454 obj_to_location(obj, &f_page, &f_objidx);
1455 first_page = get_first_page(f_page);
1456
Minchan Kimc7806262015-04-15 16:15:26 -07001457 f_offset = obj_idx_to_offset(f_page, f_objidx, class->size);
1458
1459 vaddr = kmap_atomic(f_page);
1460
1461 /* Insert this object in containing zspage's freelist */
1462 link = (struct link_free *)(vaddr + f_offset);
1463 link->next = first_page->freelist;
Minchan Kim7b60a682015-04-15 16:15:39 -07001464 if (class->huge)
1465 set_page_private(first_page, 0);
Minchan Kimc7806262015-04-15 16:15:26 -07001466 kunmap_atomic(vaddr);
1467 first_page->freelist = (void *)obj;
1468 first_page->inuse--;
1469 zs_stat_dec(class, OBJ_USED, 1);
1470}
1471
1472void zs_free(struct zs_pool *pool, unsigned long handle)
1473{
1474 struct page *first_page, *f_page;
1475 unsigned long obj, f_objidx;
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001476 int class_idx;
1477 struct size_class *class;
1478 enum fullness_group fullness;
1479
Minchan Kim2e40e162015-04-15 16:15:23 -07001480 if (unlikely(!handle))
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001481 return;
1482
Minchan Kim312fcae2015-04-15 16:15:30 -07001483 pin_tag(handle);
Minchan Kim2e40e162015-04-15 16:15:23 -07001484 obj = handle_to_obj(handle);
Minchan Kim2e40e162015-04-15 16:15:23 -07001485 obj_to_location(obj, &f_page, &f_objidx);
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001486 first_page = get_first_page(f_page);
1487
1488 get_zspage_mapping(first_page, &class_idx, &fullness);
1489 class = pool->size_class[class_idx];
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001490
1491 spin_lock(&class->lock);
Minchan Kimc7806262015-04-15 16:15:26 -07001492 obj_free(pool, class, obj);
1493 fullness = fix_fullness_group(class, first_page);
Minchan Kim312fcae2015-04-15 16:15:30 -07001494 if (fullness == ZS_EMPTY) {
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08001495 zs_stat_dec(class, OBJ_ALLOCATED, get_maxobj_per_zspage(
1496 class->size, class->pages_per_zspage));
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001497 atomic_long_sub(class->pages_per_zspage,
1498 &pool->pages_allocated);
1499 free_zspage(first_page);
1500 }
Minchan Kim312fcae2015-04-15 16:15:30 -07001501 spin_unlock(&class->lock);
1502 unpin_tag(handle);
1503
1504 free_handle(pool, handle);
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08001505}
1506EXPORT_SYMBOL_GPL(zs_free);
1507
Sergey Senozhatsky0dc63d42015-09-08 15:04:33 -07001508static void zs_object_copy(unsigned long dst, unsigned long src,
Minchan Kim312fcae2015-04-15 16:15:30 -07001509 struct size_class *class)
1510{
1511 struct page *s_page, *d_page;
1512 unsigned long s_objidx, d_objidx;
1513 unsigned long s_off, d_off;
1514 void *s_addr, *d_addr;
1515 int s_size, d_size, size;
1516 int written = 0;
1517
1518 s_size = d_size = class->size;
1519
1520 obj_to_location(src, &s_page, &s_objidx);
1521 obj_to_location(dst, &d_page, &d_objidx);
1522
1523 s_off = obj_idx_to_offset(s_page, s_objidx, class->size);
1524 d_off = obj_idx_to_offset(d_page, d_objidx, class->size);
1525
1526 if (s_off + class->size > PAGE_SIZE)
1527 s_size = PAGE_SIZE - s_off;
1528
1529 if (d_off + class->size > PAGE_SIZE)
1530 d_size = PAGE_SIZE - d_off;
1531
1532 s_addr = kmap_atomic(s_page);
1533 d_addr = kmap_atomic(d_page);
1534
1535 while (1) {
1536 size = min(s_size, d_size);
1537 memcpy(d_addr + d_off, s_addr + s_off, size);
1538 written += size;
1539
1540 if (written == class->size)
1541 break;
1542
Sergey Senozhatsky495819e2015-04-15 16:16:15 -07001543 s_off += size;
1544 s_size -= size;
1545 d_off += size;
1546 d_size -= size;
1547
1548 if (s_off >= PAGE_SIZE) {
Minchan Kim312fcae2015-04-15 16:15:30 -07001549 kunmap_atomic(d_addr);
1550 kunmap_atomic(s_addr);
1551 s_page = get_next_page(s_page);
1552 BUG_ON(!s_page);
1553 s_addr = kmap_atomic(s_page);
1554 d_addr = kmap_atomic(d_page);
1555 s_size = class->size - written;
1556 s_off = 0;
Minchan Kim312fcae2015-04-15 16:15:30 -07001557 }
1558
Sergey Senozhatsky495819e2015-04-15 16:16:15 -07001559 if (d_off >= PAGE_SIZE) {
Minchan Kim312fcae2015-04-15 16:15:30 -07001560 kunmap_atomic(d_addr);
1561 d_page = get_next_page(d_page);
1562 BUG_ON(!d_page);
1563 d_addr = kmap_atomic(d_page);
1564 d_size = class->size - written;
1565 d_off = 0;
Minchan Kim312fcae2015-04-15 16:15:30 -07001566 }
1567 }
1568
1569 kunmap_atomic(d_addr);
1570 kunmap_atomic(s_addr);
1571}
1572
1573/*
1574 * Find alloced object in zspage from index object and
1575 * return handle.
1576 */
1577static unsigned long find_alloced_obj(struct page *page, int index,
1578 struct size_class *class)
1579{
1580 unsigned long head;
1581 int offset = 0;
1582 unsigned long handle = 0;
1583 void *addr = kmap_atomic(page);
1584
1585 if (!is_first_page(page))
1586 offset = page->index;
1587 offset += class->size * index;
1588
1589 while (offset < PAGE_SIZE) {
Minchan Kim7b60a682015-04-15 16:15:39 -07001590 head = obj_to_head(class, page, addr + offset);
Minchan Kim312fcae2015-04-15 16:15:30 -07001591 if (head & OBJ_ALLOCATED_TAG) {
1592 handle = head & ~OBJ_ALLOCATED_TAG;
1593 if (trypin_tag(handle))
1594 break;
1595 handle = 0;
1596 }
1597
1598 offset += class->size;
1599 index++;
1600 }
1601
1602 kunmap_atomic(addr);
1603 return handle;
1604}
1605
1606struct zs_compact_control {
1607 /* Source page for migration which could be a subpage of zspage. */
1608 struct page *s_page;
1609 /* Destination page for migration which should be a first page
1610 * of zspage. */
1611 struct page *d_page;
1612 /* Starting object index within @s_page which used for live object
1613 * in the subpage. */
1614 int index;
Minchan Kim312fcae2015-04-15 16:15:30 -07001615};
1616
1617static int migrate_zspage(struct zs_pool *pool, struct size_class *class,
1618 struct zs_compact_control *cc)
1619{
1620 unsigned long used_obj, free_obj;
1621 unsigned long handle;
1622 struct page *s_page = cc->s_page;
1623 struct page *d_page = cc->d_page;
1624 unsigned long index = cc->index;
Minchan Kim312fcae2015-04-15 16:15:30 -07001625 int ret = 0;
1626
1627 while (1) {
1628 handle = find_alloced_obj(s_page, index, class);
1629 if (!handle) {
1630 s_page = get_next_page(s_page);
1631 if (!s_page)
1632 break;
1633 index = 0;
1634 continue;
1635 }
1636
1637 /* Stop if there is no more space */
1638 if (zspage_full(d_page)) {
1639 unpin_tag(handle);
1640 ret = -ENOMEM;
1641 break;
1642 }
1643
1644 used_obj = handle_to_obj(handle);
1645 free_obj = obj_malloc(d_page, class, handle);
Sergey Senozhatsky0dc63d42015-09-08 15:04:33 -07001646 zs_object_copy(free_obj, used_obj, class);
Minchan Kim312fcae2015-04-15 16:15:30 -07001647 index++;
Junil Leec102f072016-01-20 14:58:18 -08001648 /*
1649 * record_obj updates handle's value to free_obj and it will
1650 * invalidate lock bit(ie, HANDLE_PIN_BIT) of handle, which
1651 * breaks synchronization using pin_tag(e,g, zs_free) so
1652 * let's keep the lock bit.
1653 */
1654 free_obj |= BIT(HANDLE_PIN_BIT);
Minchan Kim312fcae2015-04-15 16:15:30 -07001655 record_obj(handle, free_obj);
1656 unpin_tag(handle);
1657 obj_free(pool, class, used_obj);
Minchan Kim312fcae2015-04-15 16:15:30 -07001658 }
1659
1660 /* Remember last position in this iteration */
1661 cc->s_page = s_page;
1662 cc->index = index;
Minchan Kim312fcae2015-04-15 16:15:30 -07001663
1664 return ret;
1665}
1666
Sergey Senozhatsky0dc63d42015-09-08 15:04:33 -07001667static struct page *isolate_target_page(struct size_class *class)
Minchan Kim312fcae2015-04-15 16:15:30 -07001668{
1669 int i;
1670 struct page *page;
1671
1672 for (i = 0; i < _ZS_NR_FULLNESS_GROUPS; i++) {
1673 page = class->fullness_list[i];
1674 if (page) {
1675 remove_zspage(page, class, i);
1676 break;
1677 }
1678 }
1679
1680 return page;
1681}
1682
Sergey Senozhatsky860c7072015-09-08 15:04:38 -07001683/*
1684 * putback_zspage - add @first_page into right class's fullness list
1685 * @pool: target pool
1686 * @class: destination class
1687 * @first_page: target page
1688 *
1689 * Return @fist_page's fullness_group
1690 */
1691static enum fullness_group putback_zspage(struct zs_pool *pool,
1692 struct size_class *class,
1693 struct page *first_page)
Minchan Kim312fcae2015-04-15 16:15:30 -07001694{
Minchan Kim312fcae2015-04-15 16:15:30 -07001695 enum fullness_group fullness;
1696
1697 BUG_ON(!is_first_page(first_page));
1698
Minchan Kim839373e2015-04-15 16:16:18 -07001699 fullness = get_fullness_group(first_page);
Minchan Kim312fcae2015-04-15 16:15:30 -07001700 insert_zspage(first_page, class, fullness);
Minchan Kim839373e2015-04-15 16:16:18 -07001701 set_zspage_mapping(first_page, class->index, fullness);
1702
Minchan Kim312fcae2015-04-15 16:15:30 -07001703 if (fullness == ZS_EMPTY) {
1704 zs_stat_dec(class, OBJ_ALLOCATED, get_maxobj_per_zspage(
1705 class->size, class->pages_per_zspage));
1706 atomic_long_sub(class->pages_per_zspage,
1707 &pool->pages_allocated);
1708
1709 free_zspage(first_page);
1710 }
Sergey Senozhatsky860c7072015-09-08 15:04:38 -07001711
1712 return fullness;
Minchan Kim312fcae2015-04-15 16:15:30 -07001713}
1714
1715static struct page *isolate_source_page(struct size_class *class)
1716{
Minchan Kimad9d5e12015-09-08 15:04:47 -07001717 int i;
1718 struct page *page = NULL;
Minchan Kim312fcae2015-04-15 16:15:30 -07001719
Minchan Kimad9d5e12015-09-08 15:04:47 -07001720 for (i = ZS_ALMOST_EMPTY; i >= ZS_ALMOST_FULL; i--) {
1721 page = class->fullness_list[i];
1722 if (!page)
1723 continue;
1724
1725 remove_zspage(page, class, i);
1726 break;
1727 }
Minchan Kim312fcae2015-04-15 16:15:30 -07001728
1729 return page;
1730}
1731
Sergey Senozhatsky04f05902015-09-08 15:04:30 -07001732/*
1733 *
1734 * Based on the number of unused allocated objects calculate
1735 * and return the number of pages that we can free.
Sergey Senozhatsky04f05902015-09-08 15:04:30 -07001736 */
1737static unsigned long zs_can_compact(struct size_class *class)
1738{
1739 unsigned long obj_wasted;
Sergey Senozhatsky44f43e92016-05-09 16:28:49 -07001740 unsigned long obj_allocated = zs_stat_get(class, OBJ_ALLOCATED);
1741 unsigned long obj_used = zs_stat_get(class, OBJ_USED);
Sergey Senozhatsky04f05902015-09-08 15:04:30 -07001742
Sergey Senozhatsky44f43e92016-05-09 16:28:49 -07001743 if (obj_allocated <= obj_used)
1744 return 0;
Sergey Senozhatsky04f05902015-09-08 15:04:30 -07001745
Sergey Senozhatsky44f43e92016-05-09 16:28:49 -07001746 obj_wasted = obj_allocated - obj_used;
Sergey Senozhatsky04f05902015-09-08 15:04:30 -07001747 obj_wasted /= get_maxobj_per_zspage(class->size,
1748 class->pages_per_zspage);
1749
Minchan Kim6cbf16b2015-09-08 15:04:49 -07001750 return obj_wasted * class->pages_per_zspage;
Sergey Senozhatsky04f05902015-09-08 15:04:30 -07001751}
1752
Sergey Senozhatsky7d3f3932015-09-08 15:04:35 -07001753static void __zs_compact(struct zs_pool *pool, struct size_class *class)
Minchan Kim312fcae2015-04-15 16:15:30 -07001754{
Minchan Kim312fcae2015-04-15 16:15:30 -07001755 struct zs_compact_control cc;
1756 struct page *src_page;
1757 struct page *dst_page = NULL;
Minchan Kim312fcae2015-04-15 16:15:30 -07001758
Minchan Kim312fcae2015-04-15 16:15:30 -07001759 spin_lock(&class->lock);
1760 while ((src_page = isolate_source_page(class))) {
1761
1762 BUG_ON(!is_first_page(src_page));
1763
Sergey Senozhatsky04f05902015-09-08 15:04:30 -07001764 if (!zs_can_compact(class))
1765 break;
1766
Minchan Kim312fcae2015-04-15 16:15:30 -07001767 cc.index = 0;
1768 cc.s_page = src_page;
1769
Sergey Senozhatsky0dc63d42015-09-08 15:04:33 -07001770 while ((dst_page = isolate_target_page(class))) {
Minchan Kim312fcae2015-04-15 16:15:30 -07001771 cc.d_page = dst_page;
1772 /*
Sergey Senozhatsky0dc63d42015-09-08 15:04:33 -07001773 * If there is no more space in dst_page, resched
1774 * and see if anyone had allocated another zspage.
Minchan Kim312fcae2015-04-15 16:15:30 -07001775 */
1776 if (!migrate_zspage(pool, class, &cc))
1777 break;
1778
1779 putback_zspage(pool, class, dst_page);
Minchan Kim312fcae2015-04-15 16:15:30 -07001780 }
1781
1782 /* Stop if we couldn't find slot */
1783 if (dst_page == NULL)
1784 break;
1785
1786 putback_zspage(pool, class, dst_page);
Sergey Senozhatsky860c7072015-09-08 15:04:38 -07001787 if (putback_zspage(pool, class, src_page) == ZS_EMPTY)
Minchan Kim6cbf16b2015-09-08 15:04:49 -07001788 pool->stats.pages_compacted += class->pages_per_zspage;
Minchan Kim312fcae2015-04-15 16:15:30 -07001789 spin_unlock(&class->lock);
Minchan Kim312fcae2015-04-15 16:15:30 -07001790 cond_resched();
1791 spin_lock(&class->lock);
1792 }
1793
1794 if (src_page)
1795 putback_zspage(pool, class, src_page);
1796
Sergey Senozhatsky7d3f3932015-09-08 15:04:35 -07001797 spin_unlock(&class->lock);
Minchan Kim312fcae2015-04-15 16:15:30 -07001798}
1799
1800unsigned long zs_compact(struct zs_pool *pool)
1801{
1802 int i;
Minchan Kim312fcae2015-04-15 16:15:30 -07001803 struct size_class *class;
1804
1805 for (i = zs_size_classes - 1; i >= 0; i--) {
1806 class = pool->size_class[i];
1807 if (!class)
1808 continue;
1809 if (class->index != i)
1810 continue;
Sergey Senozhatsky7d3f3932015-09-08 15:04:35 -07001811 __zs_compact(pool, class);
Minchan Kim312fcae2015-04-15 16:15:30 -07001812 }
1813
Sergey Senozhatsky860c7072015-09-08 15:04:38 -07001814 return pool->stats.pages_compacted;
Minchan Kim312fcae2015-04-15 16:15:30 -07001815}
1816EXPORT_SYMBOL_GPL(zs_compact);
1817
Sergey Senozhatsky7d3f3932015-09-08 15:04:35 -07001818void zs_pool_stats(struct zs_pool *pool, struct zs_pool_stats *stats)
1819{
1820 memcpy(stats, &pool->stats, sizeof(struct zs_pool_stats));
1821}
1822EXPORT_SYMBOL_GPL(zs_pool_stats);
1823
Sergey Senozhatskyab9d3062015-09-08 15:04:41 -07001824static unsigned long zs_shrinker_scan(struct shrinker *shrinker,
1825 struct shrink_control *sc)
1826{
1827 unsigned long pages_freed;
1828 struct zs_pool *pool = container_of(shrinker, struct zs_pool,
1829 shrinker);
1830
1831 pages_freed = pool->stats.pages_compacted;
1832 /*
1833 * Compact classes and calculate compaction delta.
1834 * Can run concurrently with a manually triggered
1835 * (by user) compaction.
1836 */
1837 pages_freed = zs_compact(pool) - pages_freed;
1838
1839 return pages_freed ? pages_freed : SHRINK_STOP;
1840}
1841
1842static unsigned long zs_shrinker_count(struct shrinker *shrinker,
1843 struct shrink_control *sc)
1844{
1845 int i;
1846 struct size_class *class;
1847 unsigned long pages_to_free = 0;
1848 struct zs_pool *pool = container_of(shrinker, struct zs_pool,
1849 shrinker);
1850
Sergey Senozhatskyab9d3062015-09-08 15:04:41 -07001851 for (i = zs_size_classes - 1; i >= 0; i--) {
1852 class = pool->size_class[i];
1853 if (!class)
1854 continue;
1855 if (class->index != i)
1856 continue;
1857
Sergey Senozhatskyab9d3062015-09-08 15:04:41 -07001858 pages_to_free += zs_can_compact(class);
Sergey Senozhatskyab9d3062015-09-08 15:04:41 -07001859 }
1860
1861 return pages_to_free;
1862}
1863
1864static void zs_unregister_shrinker(struct zs_pool *pool)
1865{
1866 if (pool->shrinker_enabled) {
1867 unregister_shrinker(&pool->shrinker);
1868 pool->shrinker_enabled = false;
1869 }
1870}
1871
1872static int zs_register_shrinker(struct zs_pool *pool)
1873{
1874 pool->shrinker.scan_objects = zs_shrinker_scan;
1875 pool->shrinker.count_objects = zs_shrinker_count;
1876 pool->shrinker.batch = 0;
1877 pool->shrinker.seeks = DEFAULT_SEEKS;
1878
1879 return register_shrinker(&pool->shrinker);
1880}
1881
Davidlohr Bueso4bbc0bc2013-01-04 12:14:00 -08001882/**
1883 * zs_create_pool - Creates an allocation pool to work from.
Seth Jennings0d145a52013-01-30 09:36:52 -06001884 * @flags: allocation flags used to allocate pool metadata
Davidlohr Bueso4bbc0bc2013-01-04 12:14:00 -08001885 *
1886 * This function must be called before anything when using
1887 * the zsmalloc allocator.
1888 *
1889 * On success, a pointer to the newly created pool is returned,
1890 * otherwise NULL.
1891 */
Sergey SENOZHATSKY6f3526d2015-11-06 16:29:21 -08001892struct zs_pool *zs_create_pool(const char *name, gfp_t flags)
Nitin Gupta61989a82012-01-09 16:51:56 -06001893{
Ganesh Mahendran18136652014-12-12 16:57:10 -08001894 int i;
Nitin Gupta61989a82012-01-09 16:51:56 -06001895 struct zs_pool *pool;
Ganesh Mahendrandf8b5bb2014-12-12 16:57:07 -08001896 struct size_class *prev_class = NULL;
Nitin Gupta61989a82012-01-09 16:51:56 -06001897
Ganesh Mahendran18136652014-12-12 16:57:10 -08001898 pool = kzalloc(sizeof(*pool), GFP_KERNEL);
Nitin Gupta61989a82012-01-09 16:51:56 -06001899 if (!pool)
1900 return NULL;
1901
Minchan Kim2e40e162015-04-15 16:15:23 -07001902 pool->size_class = kcalloc(zs_size_classes, sizeof(struct size_class *),
1903 GFP_KERNEL);
1904 if (!pool->size_class) {
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08001905 kfree(pool);
1906 return NULL;
1907 }
1908
Minchan Kim2e40e162015-04-15 16:15:23 -07001909 pool->name = kstrdup(name, GFP_KERNEL);
1910 if (!pool->name)
1911 goto err;
1912
1913 if (create_handle_cache(pool))
1914 goto err;
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -08001915
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001916 /*
1917 * Iterate reversly, because, size of size_class that we want to use
1918 * for merging should be larger or equal to current size.
1919 */
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -08001920 for (i = zs_size_classes - 1; i >= 0; i--) {
Nitin Gupta61989a82012-01-09 16:51:56 -06001921 int size;
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001922 int pages_per_zspage;
Nitin Gupta61989a82012-01-09 16:51:56 -06001923 struct size_class *class;
1924
1925 size = ZS_MIN_ALLOC_SIZE + i * ZS_SIZE_CLASS_DELTA;
1926 if (size > ZS_MAX_ALLOC_SIZE)
1927 size = ZS_MAX_ALLOC_SIZE;
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001928 pages_per_zspage = get_pages_per_zspage(size);
Nitin Gupta61989a82012-01-09 16:51:56 -06001929
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001930 /*
1931 * size_class is used for normal zsmalloc operation such
1932 * as alloc/free for that size. Although it is natural that we
1933 * have one size_class for each size, there is a chance that we
1934 * can get more memory utilization if we use one size_class for
1935 * many different sizes whose size_class have same
1936 * characteristics. So, we makes size_class point to
1937 * previous size_class if possible.
1938 */
Ganesh Mahendrandf8b5bb2014-12-12 16:57:07 -08001939 if (prev_class) {
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001940 if (can_merge(prev_class, size, pages_per_zspage)) {
1941 pool->size_class[i] = prev_class;
1942 continue;
1943 }
1944 }
1945
1946 class = kzalloc(sizeof(struct size_class), GFP_KERNEL);
1947 if (!class)
1948 goto err;
1949
Nitin Gupta61989a82012-01-09 16:51:56 -06001950 class->size = size;
1951 class->index = i;
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001952 class->pages_per_zspage = pages_per_zspage;
Minchan Kim7b60a682015-04-15 16:15:39 -07001953 if (pages_per_zspage == 1 &&
1954 get_maxobj_per_zspage(size, pages_per_zspage) == 1)
1955 class->huge = true;
Nitin Gupta61989a82012-01-09 16:51:56 -06001956 spin_lock_init(&class->lock);
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001957 pool->size_class[i] = class;
Ganesh Mahendrandf8b5bb2014-12-12 16:57:07 -08001958
1959 prev_class = class;
Nitin Gupta61989a82012-01-09 16:51:56 -06001960 }
1961
Nitin Gupta61989a82012-01-09 16:51:56 -06001962 pool->flags = flags;
Nitin Gupta61989a82012-01-09 16:51:56 -06001963
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08001964 if (zs_pool_stat_create(name, pool))
1965 goto err;
1966
Sergey Senozhatskyab9d3062015-09-08 15:04:41 -07001967 /*
1968 * Not critical, we still can use the pool
1969 * and user can trigger compaction manually.
1970 */
1971 if (zs_register_shrinker(pool) == 0)
1972 pool->shrinker_enabled = true;
Nitin Gupta61989a82012-01-09 16:51:56 -06001973 return pool;
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001974
1975err:
1976 zs_destroy_pool(pool);
1977 return NULL;
Nitin Gupta61989a82012-01-09 16:51:56 -06001978}
1979EXPORT_SYMBOL_GPL(zs_create_pool);
1980
1981void zs_destroy_pool(struct zs_pool *pool)
1982{
1983 int i;
1984
Sergey Senozhatskyab9d3062015-09-08 15:04:41 -07001985 zs_unregister_shrinker(pool);
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08001986 zs_pool_stat_destroy(pool);
1987
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -08001988 for (i = 0; i < zs_size_classes; i++) {
Nitin Gupta61989a82012-01-09 16:51:56 -06001989 int fg;
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08001990 struct size_class *class = pool->size_class[i];
1991
1992 if (!class)
1993 continue;
1994
1995 if (class->index != i)
1996 continue;
Nitin Gupta61989a82012-01-09 16:51:56 -06001997
1998 for (fg = 0; fg < _ZS_NR_FULLNESS_GROUPS; fg++) {
1999 if (class->fullness_list[fg]) {
Marlies Ruck93ad5ab2013-05-15 16:56:49 -04002000 pr_info("Freeing non-empty class with size %db, fullness group %d\n",
Nitin Gupta61989a82012-01-09 16:51:56 -06002001 class->size, fg);
2002 }
2003 }
Joonsoo Kim9eec4cd2014-12-12 16:56:44 -08002004 kfree(class);
Nitin Gupta61989a82012-01-09 16:51:56 -06002005 }
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -08002006
Minchan Kim2e40e162015-04-15 16:15:23 -07002007 destroy_handle_cache(pool);
Mahendran Ganesh40f9fb82014-12-12 16:57:01 -08002008 kfree(pool->size_class);
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08002009 kfree(pool->name);
Nitin Gupta61989a82012-01-09 16:51:56 -06002010 kfree(pool);
2011}
2012EXPORT_SYMBOL_GPL(zs_destroy_pool);
2013
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08002014static int __init zs_init(void)
Nitin Gupta61989a82012-01-09 16:51:56 -06002015{
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08002016 int ret = zs_register_cpu_notifier();
Nitin Gupta61989a82012-01-09 16:51:56 -06002017
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08002018 if (ret)
2019 goto notifier_fail;
Nitin Gupta61989a82012-01-09 16:51:56 -06002020
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08002021 init_zs_size_classes();
Nitin Gupta61989a82012-01-09 16:51:56 -06002022
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08002023#ifdef CONFIG_ZPOOL
2024 zpool_register_driver(&zs_zpool_driver);
2025#endif
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08002026
2027 ret = zs_stat_init();
2028 if (ret) {
2029 pr_err("zs stat initialization failed\n");
2030 goto stat_fail;
2031 }
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08002032 return 0;
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08002033
2034stat_fail:
2035#ifdef CONFIG_ZPOOL
2036 zpool_unregister_driver(&zs_zpool_driver);
2037#endif
2038notifier_fail:
2039 zs_unregister_cpu_notifier();
2040
2041 return ret;
Nitin Gupta61989a82012-01-09 16:51:56 -06002042}
Nitin Gupta61989a82012-01-09 16:51:56 -06002043
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08002044static void __exit zs_exit(void)
Nitin Gupta61989a82012-01-09 16:51:56 -06002045{
Ganesh Mahendran66cdef62014-12-18 16:17:40 -08002046#ifdef CONFIG_ZPOOL
2047 zpool_unregister_driver(&zs_zpool_driver);
2048#endif
2049 zs_unregister_cpu_notifier();
Ganesh Mahendran0f050d92015-02-12 15:00:54 -08002050
2051 zs_stat_exit();
Nitin Gupta61989a82012-01-09 16:51:56 -06002052}
Ben Hutchings069f1012012-06-20 02:31:11 +01002053
2054module_init(zs_init);
2055module_exit(zs_exit);
2056
2057MODULE_LICENSE("Dual BSD/GPL");
2058MODULE_AUTHOR("Nitin Gupta <ngupta@vflare.org>");