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Commit | Line | Data |
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61989a80 NG |
1 | /* |
2 | * zsmalloc memory allocator | |
3 | * | |
4 | * Copyright (C) 2011 Nitin Gupta | |
31fc00bb | 5 | * Copyright (C) 2012, 2013 Minchan Kim |
61989a80 NG |
6 | * |
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 | ||
2db51dae | 14 | /* |
2db51dae NG |
15 | * 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: | |
3783689a | 19 | * page->private: points to zspage |
ffedd09f | 20 | * page->index: links together all component pages of a zspage |
48b4800a MK |
21 | * For the huge page, this is always 0, so we use this field |
22 | * to store handle. | |
ffedd09f | 23 | * page->page_type: first object offset in a subpage of zspage |
2db51dae NG |
24 | * |
25 | * Usage of struct page flags: | |
26 | * PG_private: identifies the first component page | |
399d8eeb | 27 | * PG_owner_priv_1: identifies the huge component page |
2db51dae NG |
28 | * |
29 | */ | |
30 | ||
4abaac9b DS |
31 | #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt |
32 | ||
b475d42d MK |
33 | /* |
34 | * lock ordering: | |
35 | * page_lock | |
c0547d0b | 36 | * pool->lock |
b475d42d MK |
37 | * zspage->lock |
38 | */ | |
39 | ||
61989a80 NG |
40 | #include <linux/module.h> |
41 | #include <linux/kernel.h> | |
312fcae2 | 42 | #include <linux/sched.h> |
61989a80 NG |
43 | #include <linux/bitops.h> |
44 | #include <linux/errno.h> | |
45 | #include <linux/highmem.h> | |
61989a80 NG |
46 | #include <linux/string.h> |
47 | #include <linux/slab.h> | |
ca5999fd | 48 | #include <linux/pgtable.h> |
65fddcfc | 49 | #include <asm/tlbflush.h> |
61989a80 NG |
50 | #include <linux/cpumask.h> |
51 | #include <linux/cpu.h> | |
0cbb613f | 52 | #include <linux/vmalloc.h> |
759b26b2 | 53 | #include <linux/preempt.h> |
0959c63f | 54 | #include <linux/spinlock.h> |
93144ca3 | 55 | #include <linux/shrinker.h> |
0959c63f | 56 | #include <linux/types.h> |
0f050d99 | 57 | #include <linux/debugfs.h> |
bcf1647d | 58 | #include <linux/zsmalloc.h> |
c795779d | 59 | #include <linux/zpool.h> |
dd4123f3 | 60 | #include <linux/migrate.h> |
701d6785 | 61 | #include <linux/wait.h> |
48b4800a | 62 | #include <linux/pagemap.h> |
cdc346b3 | 63 | #include <linux/fs.h> |
a3726599 | 64 | #include <linux/local_lock.h> |
48b4800a MK |
65 | |
66 | #define ZSPAGE_MAGIC 0x58 | |
0959c63f SJ |
67 | |
68 | /* | |
cb152a1a | 69 | * This must be power of 2 and greater than or equal to sizeof(link_free). |
0959c63f SJ |
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 | ||
2e40e163 MK |
76 | #define ZS_HANDLE_SIZE (sizeof(unsigned long)) |
77 | ||
0959c63f SJ |
78 | /* |
79 | * Object location (<PFN>, <obj_idx>) is encoded as | |
b956b5ac | 80 | * a single (unsigned long) handle value. |
0959c63f | 81 | * |
bfd093f5 | 82 | * Note that object index <obj_idx> starts from 0. |
0959c63f SJ |
83 | * |
84 | * This is made more complicated by various memory models and PAE. | |
85 | */ | |
86 | ||
02390b87 KS |
87 | #ifndef MAX_POSSIBLE_PHYSMEM_BITS |
88 | #ifdef MAX_PHYSMEM_BITS | |
89 | #define MAX_POSSIBLE_PHYSMEM_BITS MAX_PHYSMEM_BITS | |
90 | #else | |
0959c63f SJ |
91 | /* |
92 | * If this definition of MAX_PHYSMEM_BITS is used, OBJ_INDEX_BITS will just | |
93 | * be PAGE_SHIFT | |
94 | */ | |
02390b87 | 95 | #define MAX_POSSIBLE_PHYSMEM_BITS BITS_PER_LONG |
0959c63f SJ |
96 | #endif |
97 | #endif | |
02390b87 KS |
98 | |
99 | #define _PFN_BITS (MAX_POSSIBLE_PHYSMEM_BITS - PAGE_SHIFT) | |
312fcae2 | 100 | |
312fcae2 MK |
101 | /* |
102 | * Head in allocated object should have OBJ_ALLOCATED_TAG | |
103 | * to identify the object was allocated or not. | |
104 | * It's okay to add the status bit in the least bit because | |
105 | * header keeps handle which is 4byte-aligned address so we | |
106 | * have room for two bit at least. | |
107 | */ | |
108 | #define OBJ_ALLOCATED_TAG 1 | |
85b32581 | 109 | |
85b32581 NP |
110 | #define OBJ_TAG_BITS 1 |
111 | #define OBJ_TAG_MASK OBJ_ALLOCATED_TAG | |
85b32581 | 112 | |
312fcae2 | 113 | #define OBJ_INDEX_BITS (BITS_PER_LONG - _PFN_BITS - OBJ_TAG_BITS) |
0959c63f SJ |
114 | #define OBJ_INDEX_MASK ((_AC(1, UL) << OBJ_INDEX_BITS) - 1) |
115 | ||
a41ec880 | 116 | #define HUGE_BITS 1 |
4c7ac972 | 117 | #define FULLNESS_BITS 4 |
cf8e0fed | 118 | #define CLASS_BITS 8 |
4ff93b29 | 119 | #define ISOLATED_BITS 5 |
cf8e0fed JM |
120 | #define MAGIC_VAL_BITS 8 |
121 | ||
0959c63f | 122 | #define MAX(a, b) ((a) >= (b) ? (a) : (b)) |
4ff93b29 SS |
123 | |
124 | #define ZS_MAX_PAGES_PER_ZSPAGE (_AC(CONFIG_ZSMALLOC_CHAIN_SIZE, UL)) | |
125 | ||
0959c63f SJ |
126 | /* ZS_MIN_ALLOC_SIZE must be multiple of ZS_ALIGN */ |
127 | #define ZS_MIN_ALLOC_SIZE \ | |
128 | MAX(32, (ZS_MAX_PAGES_PER_ZSPAGE << PAGE_SHIFT >> OBJ_INDEX_BITS)) | |
2e40e163 | 129 | /* each chunk includes extra space to keep handle */ |
7b60a685 | 130 | #define ZS_MAX_ALLOC_SIZE PAGE_SIZE |
0959c63f SJ |
131 | |
132 | /* | |
7eb52512 | 133 | * On systems with 4K page size, this gives 255 size classes! There is a |
0959c63f SJ |
134 | * trader-off here: |
135 | * - Large number of size classes is potentially wasteful as free page are | |
136 | * spread across these classes | |
137 | * - Small number of size classes causes large internal fragmentation | |
138 | * - Probably its better to use specific size classes (empirically | |
139 | * determined). NOTE: all those class sizes must be set as multiple of | |
140 | * ZS_ALIGN to make sure link_free itself never has to span 2 pages. | |
141 | * | |
142 | * ZS_MIN_ALLOC_SIZE and ZS_SIZE_CLASS_DELTA must be multiple of ZS_ALIGN | |
143 | * (reason above) | |
144 | */ | |
3783689a | 145 | #define ZS_SIZE_CLASS_DELTA (PAGE_SIZE >> CLASS_BITS) |
cf8e0fed JM |
146 | #define ZS_SIZE_CLASSES (DIV_ROUND_UP(ZS_MAX_ALLOC_SIZE - ZS_MIN_ALLOC_SIZE, \ |
147 | ZS_SIZE_CLASS_DELTA) + 1) | |
0959c63f | 148 | |
4c7ac972 SS |
149 | /* |
150 | * Pages are distinguished by the ratio of used memory (that is the ratio | |
151 | * of ->inuse objects to all objects that page can store). For example, | |
152 | * INUSE_RATIO_10 means that the ratio of used objects is > 0% and <= 10%. | |
153 | * | |
154 | * The number of fullness groups is not random. It allows us to keep | |
155 | * difference between the least busy page in the group (minimum permitted | |
156 | * number of ->inuse objects) and the most busy page (maximum permitted | |
157 | * number of ->inuse objects) at a reasonable value. | |
158 | */ | |
0959c63f | 159 | enum fullness_group { |
4c7ac972 SS |
160 | ZS_INUSE_RATIO_0, |
161 | ZS_INUSE_RATIO_10, | |
e1807d5d | 162 | /* NOTE: 8 more fullness groups here */ |
4c7ac972 SS |
163 | ZS_INUSE_RATIO_99 = 10, |
164 | ZS_INUSE_RATIO_100, | |
165 | NR_FULLNESS_GROUPS, | |
0959c63f SJ |
166 | }; |
167 | ||
3828a764 | 168 | enum class_stat_type { |
4c7ac972 SS |
169 | /* NOTE: stats for 12 fullness groups here: from inuse 0 to 100 */ |
170 | ZS_OBJS_ALLOCATED = NR_FULLNESS_GROUPS, | |
171 | ZS_OBJS_INUSE, | |
172 | NR_CLASS_STAT_TYPES, | |
0f050d99 GM |
173 | }; |
174 | ||
0f050d99 | 175 | struct zs_size_stat { |
4c7ac972 | 176 | unsigned long objs[NR_CLASS_STAT_TYPES]; |
0f050d99 GM |
177 | }; |
178 | ||
57244594 SS |
179 | #ifdef CONFIG_ZSMALLOC_STAT |
180 | static struct dentry *zs_stat_root; | |
0f050d99 GM |
181 | #endif |
182 | ||
010b495e | 183 | static size_t huge_class_size; |
0959c63f SJ |
184 | |
185 | struct size_class { | |
4c7ac972 | 186 | struct list_head fullness_list[NR_FULLNESS_GROUPS]; |
0959c63f SJ |
187 | /* |
188 | * Size of objects stored in this class. Must be multiple | |
189 | * of ZS_ALIGN. | |
190 | */ | |
191 | int size; | |
1fc6e27d | 192 | int objs_per_zspage; |
7dfa4612 WY |
193 | /* Number of PAGE_SIZE sized pages to combine to form a 'zspage' */ |
194 | int pages_per_zspage; | |
48b4800a MK |
195 | |
196 | unsigned int index; | |
197 | struct zs_size_stat stats; | |
0959c63f SJ |
198 | }; |
199 | ||
200 | /* | |
201 | * Placed within free objects to form a singly linked list. | |
3783689a | 202 | * For every zspage, zspage->freeobj gives head of this list. |
0959c63f SJ |
203 | * |
204 | * This must be power of 2 and less than or equal to ZS_ALIGN | |
205 | */ | |
206 | struct link_free { | |
2e40e163 MK |
207 | union { |
208 | /* | |
bfd093f5 | 209 | * Free object index; |
2e40e163 MK |
210 | * It's valid for non-allocated object |
211 | */ | |
bfd093f5 | 212 | unsigned long next; |
2e40e163 MK |
213 | /* |
214 | * Handle of allocated object. | |
215 | */ | |
216 | unsigned long handle; | |
217 | }; | |
0959c63f SJ |
218 | }; |
219 | ||
220 | struct zs_pool { | |
6f3526d6 | 221 | const char *name; |
0f050d99 | 222 | |
cf8e0fed | 223 | struct size_class *size_class[ZS_SIZE_CLASSES]; |
2e40e163 | 224 | struct kmem_cache *handle_cachep; |
3783689a | 225 | struct kmem_cache *zspage_cachep; |
0959c63f | 226 | |
13de8933 | 227 | atomic_long_t pages_allocated; |
0f050d99 | 228 | |
7d3f3938 | 229 | struct zs_pool_stats stats; |
ab9d306d SS |
230 | |
231 | /* Compact classes */ | |
232 | struct shrinker shrinker; | |
93144ca3 | 233 | |
0f050d99 GM |
234 | #ifdef CONFIG_ZSMALLOC_STAT |
235 | struct dentry *stat_dentry; | |
236 | #endif | |
48b4800a | 237 | #ifdef CONFIG_COMPACTION |
48b4800a MK |
238 | struct work_struct free_work; |
239 | #endif | |
c0547d0b | 240 | spinlock_t lock; |
d2658f20 | 241 | atomic_t compaction_in_progress; |
0959c63f | 242 | }; |
61989a80 | 243 | |
3783689a MK |
244 | struct zspage { |
245 | struct { | |
a41ec880 | 246 | unsigned int huge:HUGE_BITS; |
3783689a | 247 | unsigned int fullness:FULLNESS_BITS; |
85d492f2 | 248 | unsigned int class:CLASS_BITS + 1; |
48b4800a MK |
249 | unsigned int isolated:ISOLATED_BITS; |
250 | unsigned int magic:MAGIC_VAL_BITS; | |
3783689a MK |
251 | }; |
252 | unsigned int inuse; | |
bfd093f5 | 253 | unsigned int freeobj; |
3783689a MK |
254 | struct page *first_page; |
255 | struct list_head list; /* fullness list */ | |
68f2736a | 256 | struct zs_pool *pool; |
48b4800a | 257 | rwlock_t lock; |
3783689a | 258 | }; |
61989a80 | 259 | |
f553646a | 260 | struct mapping_area { |
a3726599 | 261 | local_lock_t lock; |
f553646a | 262 | char *vm_buf; /* copy buffer for objects that span pages */ |
f553646a SJ |
263 | char *vm_addr; /* address of kmap_atomic()'ed pages */ |
264 | enum zs_mapmode vm_mm; /* mapping mode */ | |
265 | }; | |
266 | ||
a41ec880 MK |
267 | /* huge object: pages_per_zspage == 1 && maxobj_per_zspage == 1 */ |
268 | static void SetZsHugePage(struct zspage *zspage) | |
269 | { | |
270 | zspage->huge = 1; | |
271 | } | |
272 | ||
273 | static bool ZsHugePage(struct zspage *zspage) | |
274 | { | |
275 | return zspage->huge; | |
276 | } | |
277 | ||
48b4800a MK |
278 | static void migrate_lock_init(struct zspage *zspage); |
279 | static void migrate_read_lock(struct zspage *zspage); | |
280 | static void migrate_read_unlock(struct zspage *zspage); | |
9997bc01 NP |
281 | |
282 | #ifdef CONFIG_COMPACTION | |
b475d42d MK |
283 | static void migrate_write_lock(struct zspage *zspage); |
284 | static void migrate_write_lock_nested(struct zspage *zspage); | |
285 | static void migrate_write_unlock(struct zspage *zspage); | |
48b4800a MK |
286 | static void kick_deferred_free(struct zs_pool *pool); |
287 | static void init_deferred_free(struct zs_pool *pool); | |
288 | static void SetZsPageMovable(struct zs_pool *pool, struct zspage *zspage); | |
289 | #else | |
b475d42d MK |
290 | static void migrate_write_lock(struct zspage *zspage) {} |
291 | static void migrate_write_lock_nested(struct zspage *zspage) {} | |
292 | static void migrate_write_unlock(struct zspage *zspage) {} | |
48b4800a MK |
293 | static void kick_deferred_free(struct zs_pool *pool) {} |
294 | static void init_deferred_free(struct zs_pool *pool) {} | |
295 | static void SetZsPageMovable(struct zs_pool *pool, struct zspage *zspage) {} | |
296 | #endif | |
297 | ||
3783689a | 298 | static int create_cache(struct zs_pool *pool) |
2e40e163 MK |
299 | { |
300 | pool->handle_cachep = kmem_cache_create("zs_handle", ZS_HANDLE_SIZE, | |
301 | 0, 0, NULL); | |
3783689a MK |
302 | if (!pool->handle_cachep) |
303 | return 1; | |
304 | ||
305 | pool->zspage_cachep = kmem_cache_create("zspage", sizeof(struct zspage), | |
306 | 0, 0, NULL); | |
307 | if (!pool->zspage_cachep) { | |
308 | kmem_cache_destroy(pool->handle_cachep); | |
309 | pool->handle_cachep = NULL; | |
310 | return 1; | |
311 | } | |
312 | ||
313 | return 0; | |
2e40e163 MK |
314 | } |
315 | ||
3783689a | 316 | static void destroy_cache(struct zs_pool *pool) |
2e40e163 | 317 | { |
cd10add0 | 318 | kmem_cache_destroy(pool->handle_cachep); |
3783689a | 319 | kmem_cache_destroy(pool->zspage_cachep); |
2e40e163 MK |
320 | } |
321 | ||
3783689a | 322 | static unsigned long cache_alloc_handle(struct zs_pool *pool, gfp_t gfp) |
2e40e163 MK |
323 | { |
324 | return (unsigned long)kmem_cache_alloc(pool->handle_cachep, | |
48b4800a | 325 | gfp & ~(__GFP_HIGHMEM|__GFP_MOVABLE)); |
2e40e163 MK |
326 | } |
327 | ||
3783689a | 328 | static void cache_free_handle(struct zs_pool *pool, unsigned long handle) |
2e40e163 MK |
329 | { |
330 | kmem_cache_free(pool->handle_cachep, (void *)handle); | |
331 | } | |
332 | ||
3783689a MK |
333 | static struct zspage *cache_alloc_zspage(struct zs_pool *pool, gfp_t flags) |
334 | { | |
f0231305 | 335 | return kmem_cache_zalloc(pool->zspage_cachep, |
48b4800a | 336 | flags & ~(__GFP_HIGHMEM|__GFP_MOVABLE)); |
399d8eeb | 337 | } |
3783689a MK |
338 | |
339 | static void cache_free_zspage(struct zs_pool *pool, struct zspage *zspage) | |
340 | { | |
341 | kmem_cache_free(pool->zspage_cachep, zspage); | |
342 | } | |
343 | ||
c0547d0b | 344 | /* pool->lock(which owns the handle) synchronizes races */ |
2e40e163 MK |
345 | static void record_obj(unsigned long handle, unsigned long obj) |
346 | { | |
b475d42d | 347 | *(unsigned long *)handle = obj; |
2e40e163 MK |
348 | } |
349 | ||
c795779d DS |
350 | /* zpool driver */ |
351 | ||
352 | #ifdef CONFIG_ZPOOL | |
353 | ||
35499e2b | 354 | static void *zs_zpool_create(const char *name, gfp_t gfp) |
c795779d | 355 | { |
d0d8da2d SS |
356 | /* |
357 | * Ignore global gfp flags: zs_malloc() may be invoked from | |
358 | * different contexts and its caller must provide a valid | |
359 | * gfp mask. | |
360 | */ | |
b3067742 | 361 | return zs_create_pool(name); |
c795779d DS |
362 | } |
363 | ||
364 | static void zs_zpool_destroy(void *pool) | |
365 | { | |
366 | zs_destroy_pool(pool); | |
367 | } | |
368 | ||
369 | static int zs_zpool_malloc(void *pool, size_t size, gfp_t gfp, | |
370 | unsigned long *handle) | |
371 | { | |
d0d8da2d | 372 | *handle = zs_malloc(pool, size, gfp); |
c7e6f17b | 373 | |
65917b53 | 374 | if (IS_ERR_VALUE(*handle)) |
c7e6f17b HZ |
375 | return PTR_ERR((void *)*handle); |
376 | return 0; | |
c795779d DS |
377 | } |
378 | static void zs_zpool_free(void *pool, unsigned long handle) | |
379 | { | |
380 | zs_free(pool, handle); | |
381 | } | |
382 | ||
c795779d DS |
383 | static void *zs_zpool_map(void *pool, unsigned long handle, |
384 | enum zpool_mapmode mm) | |
385 | { | |
386 | enum zs_mapmode zs_mm; | |
387 | ||
388 | switch (mm) { | |
389 | case ZPOOL_MM_RO: | |
390 | zs_mm = ZS_MM_RO; | |
391 | break; | |
392 | case ZPOOL_MM_WO: | |
393 | zs_mm = ZS_MM_WO; | |
394 | break; | |
e4a9bc58 | 395 | case ZPOOL_MM_RW: |
c795779d DS |
396 | default: |
397 | zs_mm = ZS_MM_RW; | |
398 | break; | |
399 | } | |
400 | ||
401 | return zs_map_object(pool, handle, zs_mm); | |
402 | } | |
403 | static void zs_zpool_unmap(void *pool, unsigned long handle) | |
404 | { | |
405 | zs_unmap_object(pool, handle); | |
406 | } | |
407 | ||
408 | static u64 zs_zpool_total_size(void *pool) | |
409 | { | |
722cdc17 | 410 | return zs_get_total_pages(pool) << PAGE_SHIFT; |
c795779d DS |
411 | } |
412 | ||
413 | static struct zpool_driver zs_zpool_driver = { | |
c165f25d HZ |
414 | .type = "zsmalloc", |
415 | .owner = THIS_MODULE, | |
416 | .create = zs_zpool_create, | |
417 | .destroy = zs_zpool_destroy, | |
418 | .malloc_support_movable = true, | |
419 | .malloc = zs_zpool_malloc, | |
420 | .free = zs_zpool_free, | |
421 | .map = zs_zpool_map, | |
422 | .unmap = zs_zpool_unmap, | |
423 | .total_size = zs_zpool_total_size, | |
c795779d DS |
424 | }; |
425 | ||
137f8cff | 426 | MODULE_ALIAS("zpool-zsmalloc"); |
c795779d DS |
427 | #endif /* CONFIG_ZPOOL */ |
428 | ||
61989a80 | 429 | /* per-cpu VM mapping areas for zspage accesses that cross page boundaries */ |
a3726599 MG |
430 | static DEFINE_PER_CPU(struct mapping_area, zs_map_area) = { |
431 | .lock = INIT_LOCAL_LOCK(lock), | |
432 | }; | |
61989a80 | 433 | |
3457f414 | 434 | static __maybe_unused int is_first_page(struct page *page) |
61989a80 | 435 | { |
a27545bf | 436 | return PagePrivate(page); |
61989a80 NG |
437 | } |
438 | ||
c0547d0b | 439 | /* Protected by pool->lock */ |
3783689a | 440 | static inline int get_zspage_inuse(struct zspage *zspage) |
4f42047b | 441 | { |
3783689a | 442 | return zspage->inuse; |
4f42047b MK |
443 | } |
444 | ||
4f42047b | 445 | |
3783689a | 446 | static inline void mod_zspage_inuse(struct zspage *zspage, int val) |
4f42047b | 447 | { |
3783689a | 448 | zspage->inuse += val; |
4f42047b MK |
449 | } |
450 | ||
48b4800a | 451 | static inline struct page *get_first_page(struct zspage *zspage) |
4f42047b | 452 | { |
48b4800a | 453 | struct page *first_page = zspage->first_page; |
3783689a | 454 | |
48b4800a MK |
455 | VM_BUG_ON_PAGE(!is_first_page(first_page), first_page); |
456 | return first_page; | |
4f42047b MK |
457 | } |
458 | ||
671f2fa8 | 459 | static inline unsigned int get_first_obj_offset(struct page *page) |
4f42047b | 460 | { |
ffedd09f | 461 | return page->page_type; |
48b4800a | 462 | } |
3783689a | 463 | |
671f2fa8 | 464 | static inline void set_first_obj_offset(struct page *page, unsigned int offset) |
48b4800a | 465 | { |
ffedd09f | 466 | page->page_type = offset; |
4f42047b MK |
467 | } |
468 | ||
bfd093f5 | 469 | static inline unsigned int get_freeobj(struct zspage *zspage) |
4f42047b | 470 | { |
bfd093f5 | 471 | return zspage->freeobj; |
4f42047b MK |
472 | } |
473 | ||
bfd093f5 | 474 | static inline void set_freeobj(struct zspage *zspage, unsigned int obj) |
4f42047b | 475 | { |
bfd093f5 | 476 | zspage->freeobj = obj; |
4f42047b MK |
477 | } |
478 | ||
3783689a | 479 | static void get_zspage_mapping(struct zspage *zspage, |
4c7ac972 SS |
480 | unsigned int *class_idx, |
481 | int *fullness) | |
61989a80 | 482 | { |
48b4800a MK |
483 | BUG_ON(zspage->magic != ZSPAGE_MAGIC); |
484 | ||
3783689a MK |
485 | *fullness = zspage->fullness; |
486 | *class_idx = zspage->class; | |
61989a80 NG |
487 | } |
488 | ||
67f1c9cd | 489 | static struct size_class *zspage_class(struct zs_pool *pool, |
4c7ac972 | 490 | struct zspage *zspage) |
67f1c9cd MK |
491 | { |
492 | return pool->size_class[zspage->class]; | |
493 | } | |
494 | ||
3783689a | 495 | static void set_zspage_mapping(struct zspage *zspage, |
4c7ac972 SS |
496 | unsigned int class_idx, |
497 | int fullness) | |
61989a80 | 498 | { |
3783689a MK |
499 | zspage->class = class_idx; |
500 | zspage->fullness = fullness; | |
61989a80 NG |
501 | } |
502 | ||
c3e3e88a NC |
503 | /* |
504 | * zsmalloc divides the pool into various size classes where each | |
505 | * class maintains a list of zspages where each zspage is divided | |
506 | * into equal sized chunks. Each allocation falls into one of these | |
507 | * classes depending on its size. This function returns index of the | |
cb152a1a | 508 | * size class which has chunk size big enough to hold the given size. |
c3e3e88a | 509 | */ |
61989a80 NG |
510 | static int get_size_class_index(int size) |
511 | { | |
512 | int idx = 0; | |
513 | ||
514 | if (likely(size > ZS_MIN_ALLOC_SIZE)) | |
515 | idx = DIV_ROUND_UP(size - ZS_MIN_ALLOC_SIZE, | |
516 | ZS_SIZE_CLASS_DELTA); | |
517 | ||
cf8e0fed | 518 | return min_t(int, ZS_SIZE_CLASSES - 1, idx); |
61989a80 NG |
519 | } |
520 | ||
3828a764 | 521 | static inline void class_stat_inc(struct size_class *class, |
3eb95fea | 522 | int type, unsigned long cnt) |
248ca1b0 | 523 | { |
48b4800a | 524 | class->stats.objs[type] += cnt; |
248ca1b0 MK |
525 | } |
526 | ||
3828a764 | 527 | static inline void class_stat_dec(struct size_class *class, |
3eb95fea | 528 | int type, unsigned long cnt) |
248ca1b0 | 529 | { |
48b4800a | 530 | class->stats.objs[type] -= cnt; |
248ca1b0 MK |
531 | } |
532 | ||
4c7ac972 | 533 | static inline unsigned long zs_stat_get(struct size_class *class, int type) |
248ca1b0 | 534 | { |
48b4800a | 535 | return class->stats.objs[type]; |
248ca1b0 MK |
536 | } |
537 | ||
57244594 SS |
538 | #ifdef CONFIG_ZSMALLOC_STAT |
539 | ||
4abaac9b | 540 | static void __init zs_stat_init(void) |
248ca1b0 | 541 | { |
4abaac9b DS |
542 | if (!debugfs_initialized()) { |
543 | pr_warn("debugfs not available, stat dir not created\n"); | |
544 | return; | |
545 | } | |
248ca1b0 MK |
546 | |
547 | zs_stat_root = debugfs_create_dir("zsmalloc", NULL); | |
248ca1b0 MK |
548 | } |
549 | ||
550 | static void __exit zs_stat_exit(void) | |
551 | { | |
552 | debugfs_remove_recursive(zs_stat_root); | |
553 | } | |
554 | ||
1120ed54 SS |
555 | static unsigned long zs_can_compact(struct size_class *class); |
556 | ||
248ca1b0 MK |
557 | static int zs_stats_size_show(struct seq_file *s, void *v) |
558 | { | |
e1807d5d | 559 | int i, fg; |
248ca1b0 MK |
560 | struct zs_pool *pool = s->private; |
561 | struct size_class *class; | |
562 | int objs_per_zspage; | |
1120ed54 | 563 | unsigned long obj_allocated, obj_used, pages_used, freeable; |
248ca1b0 | 564 | unsigned long total_objs = 0, total_used_objs = 0, total_pages = 0; |
1120ed54 | 565 | unsigned long total_freeable = 0; |
e1807d5d | 566 | unsigned long inuse_totals[NR_FULLNESS_GROUPS] = {0, }; |
248ca1b0 | 567 | |
e1807d5d SS |
568 | seq_printf(s, " %5s %5s %9s %9s %9s %9s %9s %9s %9s %9s %9s %9s %9s %13s %10s %10s %16s %8s\n", |
569 | "class", "size", "10%", "20%", "30%", "40%", | |
570 | "50%", "60%", "70%", "80%", "90%", "99%", "100%", | |
248ca1b0 | 571 | "obj_allocated", "obj_used", "pages_used", |
1120ed54 | 572 | "pages_per_zspage", "freeable"); |
248ca1b0 | 573 | |
cf8e0fed | 574 | for (i = 0; i < ZS_SIZE_CLASSES; i++) { |
4c7ac972 | 575 | |
248ca1b0 MK |
576 | class = pool->size_class[i]; |
577 | ||
578 | if (class->index != i) | |
579 | continue; | |
580 | ||
c0547d0b | 581 | spin_lock(&pool->lock); |
e1807d5d SS |
582 | |
583 | seq_printf(s, " %5u %5u ", i, class->size); | |
584 | for (fg = ZS_INUSE_RATIO_10; fg < NR_FULLNESS_GROUPS; fg++) { | |
585 | inuse_totals[fg] += zs_stat_get(class, fg); | |
586 | seq_printf(s, "%9lu ", zs_stat_get(class, fg)); | |
587 | } | |
4c7ac972 SS |
588 | |
589 | obj_allocated = zs_stat_get(class, ZS_OBJS_ALLOCATED); | |
590 | obj_used = zs_stat_get(class, ZS_OBJS_INUSE); | |
1120ed54 | 591 | freeable = zs_can_compact(class); |
c0547d0b | 592 | spin_unlock(&pool->lock); |
248ca1b0 | 593 | |
b4fd07a0 | 594 | objs_per_zspage = class->objs_per_zspage; |
248ca1b0 MK |
595 | pages_used = obj_allocated / objs_per_zspage * |
596 | class->pages_per_zspage; | |
597 | ||
e1807d5d SS |
598 | seq_printf(s, "%13lu %10lu %10lu %16d %8lu\n", |
599 | obj_allocated, obj_used, pages_used, | |
600 | class->pages_per_zspage, freeable); | |
248ca1b0 | 601 | |
248ca1b0 MK |
602 | total_objs += obj_allocated; |
603 | total_used_objs += obj_used; | |
604 | total_pages += pages_used; | |
1120ed54 | 605 | total_freeable += freeable; |
248ca1b0 MK |
606 | } |
607 | ||
608 | seq_puts(s, "\n"); | |
e1807d5d SS |
609 | seq_printf(s, " %5s %5s ", "Total", ""); |
610 | ||
611 | for (fg = ZS_INUSE_RATIO_10; fg < NR_FULLNESS_GROUPS; fg++) | |
612 | seq_printf(s, "%9lu ", inuse_totals[fg]); | |
613 | ||
614 | seq_printf(s, "%13lu %10lu %10lu %16s %8lu\n", | |
615 | total_objs, total_used_objs, total_pages, "", | |
616 | total_freeable); | |
248ca1b0 MK |
617 | |
618 | return 0; | |
619 | } | |
5ad35093 | 620 | DEFINE_SHOW_ATTRIBUTE(zs_stats_size); |
248ca1b0 | 621 | |
d34f6157 | 622 | static void zs_pool_stat_create(struct zs_pool *pool, const char *name) |
248ca1b0 | 623 | { |
4abaac9b DS |
624 | if (!zs_stat_root) { |
625 | pr_warn("no root stat dir, not creating <%s> stat dir\n", name); | |
d34f6157 | 626 | return; |
4abaac9b | 627 | } |
248ca1b0 | 628 | |
4268509a GKH |
629 | pool->stat_dentry = debugfs_create_dir(name, zs_stat_root); |
630 | ||
631 | debugfs_create_file("classes", S_IFREG | 0444, pool->stat_dentry, pool, | |
632 | &zs_stats_size_fops); | |
248ca1b0 MK |
633 | } |
634 | ||
635 | static void zs_pool_stat_destroy(struct zs_pool *pool) | |
636 | { | |
637 | debugfs_remove_recursive(pool->stat_dentry); | |
638 | } | |
639 | ||
640 | #else /* CONFIG_ZSMALLOC_STAT */ | |
4abaac9b | 641 | static void __init zs_stat_init(void) |
248ca1b0 | 642 | { |
248ca1b0 MK |
643 | } |
644 | ||
645 | static void __exit zs_stat_exit(void) | |
646 | { | |
647 | } | |
648 | ||
d34f6157 | 649 | static inline void zs_pool_stat_create(struct zs_pool *pool, const char *name) |
248ca1b0 | 650 | { |
248ca1b0 MK |
651 | } |
652 | ||
653 | static inline void zs_pool_stat_destroy(struct zs_pool *pool) | |
654 | { | |
655 | } | |
248ca1b0 MK |
656 | #endif |
657 | ||
48b4800a | 658 | |
c3e3e88a NC |
659 | /* |
660 | * For each size class, zspages are divided into different groups | |
4c7ac972 | 661 | * depending on their usage ratio. This function returns fullness |
c3e3e88a NC |
662 | * status of the given page. |
663 | */ | |
4c7ac972 | 664 | static int get_fullness_group(struct size_class *class, struct zspage *zspage) |
61989a80 | 665 | { |
4c7ac972 | 666 | int inuse, objs_per_zspage, ratio; |
830e4bc5 | 667 | |
3783689a | 668 | inuse = get_zspage_inuse(zspage); |
1fc6e27d | 669 | objs_per_zspage = class->objs_per_zspage; |
61989a80 NG |
670 | |
671 | if (inuse == 0) | |
4c7ac972 SS |
672 | return ZS_INUSE_RATIO_0; |
673 | if (inuse == objs_per_zspage) | |
674 | return ZS_INUSE_RATIO_100; | |
61989a80 | 675 | |
4c7ac972 SS |
676 | ratio = 100 * inuse / objs_per_zspage; |
677 | /* | |
678 | * Take integer division into consideration: a page with one inuse | |
679 | * object out of 127 possible, will end up having 0 usage ratio, | |
680 | * which is wrong as it belongs in ZS_INUSE_RATIO_10 fullness group. | |
681 | */ | |
682 | return ratio / 10 + 1; | |
61989a80 NG |
683 | } |
684 | ||
c3e3e88a NC |
685 | /* |
686 | * Each size class maintains various freelists and zspages are assigned | |
687 | * to one of these freelists based on the number of live objects they | |
688 | * have. This functions inserts the given zspage into the freelist | |
689 | * identified by <class, fullness_group>. | |
690 | */ | |
251cbb95 | 691 | static void insert_zspage(struct size_class *class, |
3783689a | 692 | struct zspage *zspage, |
4c7ac972 | 693 | int fullness) |
61989a80 | 694 | { |
3828a764 | 695 | class_stat_inc(class, fullness, 1); |
a40a71e8 | 696 | list_add(&zspage->list, &class->fullness_list[fullness]); |
61989a80 NG |
697 | } |
698 | ||
c3e3e88a NC |
699 | /* |
700 | * This function removes the given zspage from the freelist identified | |
701 | * by <class, fullness_group>. | |
702 | */ | |
251cbb95 | 703 | static void remove_zspage(struct size_class *class, |
3783689a | 704 | struct zspage *zspage, |
4c7ac972 | 705 | int fullness) |
61989a80 | 706 | { |
3783689a | 707 | VM_BUG_ON(list_empty(&class->fullness_list[fullness])); |
61989a80 | 708 | |
3783689a | 709 | list_del_init(&zspage->list); |
3828a764 | 710 | class_stat_dec(class, fullness, 1); |
61989a80 NG |
711 | } |
712 | ||
c3e3e88a NC |
713 | /* |
714 | * Each size class maintains zspages in different fullness groups depending | |
715 | * on the number of live objects they contain. When allocating or freeing | |
4c7ac972 SS |
716 | * objects, the fullness status of the page can change, for instance, from |
717 | * INUSE_RATIO_80 to INUSE_RATIO_70 when freeing an object. This function | |
718 | * checks if such a status change has occurred for the given page and | |
719 | * accordingly moves the page from the list of the old fullness group to that | |
720 | * of the new fullness group. | |
c3e3e88a | 721 | */ |
4c7ac972 | 722 | static int fix_fullness_group(struct size_class *class, struct zspage *zspage) |
61989a80 NG |
723 | { |
724 | int class_idx; | |
4c7ac972 | 725 | int currfg, newfg; |
61989a80 | 726 | |
3783689a MK |
727 | get_zspage_mapping(zspage, &class_idx, &currfg); |
728 | newfg = get_fullness_group(class, zspage); | |
61989a80 NG |
729 | if (newfg == currfg) |
730 | goto out; | |
731 | ||
c4549b87 MK |
732 | remove_zspage(class, zspage, currfg); |
733 | insert_zspage(class, zspage, newfg); | |
3783689a | 734 | set_zspage_mapping(zspage, class_idx, newfg); |
61989a80 NG |
735 | out: |
736 | return newfg; | |
737 | } | |
738 | ||
3783689a | 739 | static struct zspage *get_zspage(struct page *page) |
61989a80 | 740 | { |
a6c5e0f7 | 741 | struct zspage *zspage = (struct zspage *)page_private(page); |
48b4800a MK |
742 | |
743 | BUG_ON(zspage->magic != ZSPAGE_MAGIC); | |
744 | return zspage; | |
61989a80 NG |
745 | } |
746 | ||
747 | static struct page *get_next_page(struct page *page) | |
748 | { | |
a41ec880 MK |
749 | struct zspage *zspage = get_zspage(page); |
750 | ||
751 | if (unlikely(ZsHugePage(zspage))) | |
48b4800a MK |
752 | return NULL; |
753 | ||
ffedd09f | 754 | return (struct page *)page->index; |
61989a80 NG |
755 | } |
756 | ||
bfd093f5 MK |
757 | /** |
758 | * obj_to_location - get (<page>, <obj_idx>) from encoded object value | |
e8b098fc | 759 | * @obj: the encoded object value |
bfd093f5 MK |
760 | * @page: page object resides in zspage |
761 | * @obj_idx: object index | |
67296874 | 762 | */ |
bfd093f5 MK |
763 | static void obj_to_location(unsigned long obj, struct page **page, |
764 | unsigned int *obj_idx) | |
61989a80 | 765 | { |
bfd093f5 MK |
766 | obj >>= OBJ_TAG_BITS; |
767 | *page = pfn_to_page(obj >> OBJ_INDEX_BITS); | |
768 | *obj_idx = (obj & OBJ_INDEX_MASK); | |
769 | } | |
61989a80 | 770 | |
67f1c9cd MK |
771 | static void obj_to_page(unsigned long obj, struct page **page) |
772 | { | |
773 | obj >>= OBJ_TAG_BITS; | |
774 | *page = pfn_to_page(obj >> OBJ_INDEX_BITS); | |
775 | } | |
776 | ||
bfd093f5 MK |
777 | /** |
778 | * location_to_obj - get obj value encoded from (<page>, <obj_idx>) | |
779 | * @page: page object resides in zspage | |
780 | * @obj_idx: object index | |
781 | */ | |
782 | static unsigned long location_to_obj(struct page *page, unsigned int obj_idx) | |
783 | { | |
784 | unsigned long obj; | |
61989a80 | 785 | |
312fcae2 | 786 | obj = page_to_pfn(page) << OBJ_INDEX_BITS; |
bfd093f5 | 787 | obj |= obj_idx & OBJ_INDEX_MASK; |
312fcae2 | 788 | obj <<= OBJ_TAG_BITS; |
61989a80 | 789 | |
bfd093f5 | 790 | return obj; |
61989a80 NG |
791 | } |
792 | ||
2e40e163 MK |
793 | static unsigned long handle_to_obj(unsigned long handle) |
794 | { | |
795 | return *(unsigned long *)handle; | |
796 | } | |
797 | ||
f9044f17 SS |
798 | static inline bool obj_allocated(struct page *page, void *obj, |
799 | unsigned long *phandle) | |
312fcae2 | 800 | { |
3ae92ac2 | 801 | unsigned long handle; |
a41ec880 | 802 | struct zspage *zspage = get_zspage(page); |
3ae92ac2 | 803 | |
a41ec880 | 804 | if (unlikely(ZsHugePage(zspage))) { |
830e4bc5 | 805 | VM_BUG_ON_PAGE(!is_first_page(page), page); |
3ae92ac2 | 806 | handle = page->index; |
7b60a685 | 807 | } else |
3ae92ac2 MK |
808 | handle = *(unsigned long *)obj; |
809 | ||
f9044f17 | 810 | if (!(handle & OBJ_ALLOCATED_TAG)) |
3ae92ac2 MK |
811 | return false; |
812 | ||
85b32581 NP |
813 | /* Clear all tags before returning the handle */ |
814 | *phandle = handle & ~OBJ_TAG_MASK; | |
3ae92ac2 | 815 | return true; |
312fcae2 MK |
816 | } |
817 | ||
f4477e90 NG |
818 | static void reset_page(struct page *page) |
819 | { | |
48b4800a | 820 | __ClearPageMovable(page); |
18fd06bf | 821 | ClearPagePrivate(page); |
f4477e90 | 822 | set_page_private(page, 0); |
48b4800a | 823 | page_mapcount_reset(page); |
ffedd09f | 824 | page->index = 0; |
48b4800a MK |
825 | } |
826 | ||
4d0a5402 | 827 | static int trylock_zspage(struct zspage *zspage) |
48b4800a MK |
828 | { |
829 | struct page *cursor, *fail; | |
830 | ||
831 | for (cursor = get_first_page(zspage); cursor != NULL; cursor = | |
832 | get_next_page(cursor)) { | |
833 | if (!trylock_page(cursor)) { | |
834 | fail = cursor; | |
835 | goto unlock; | |
836 | } | |
837 | } | |
838 | ||
839 | return 1; | |
840 | unlock: | |
841 | for (cursor = get_first_page(zspage); cursor != fail; cursor = | |
842 | get_next_page(cursor)) | |
843 | unlock_page(cursor); | |
844 | ||
845 | return 0; | |
f4477e90 NG |
846 | } |
847 | ||
48b4800a MK |
848 | static void __free_zspage(struct zs_pool *pool, struct size_class *class, |
849 | struct zspage *zspage) | |
61989a80 | 850 | { |
3783689a | 851 | struct page *page, *next; |
4c7ac972 | 852 | int fg; |
48b4800a MK |
853 | unsigned int class_idx; |
854 | ||
855 | get_zspage_mapping(zspage, &class_idx, &fg); | |
856 | ||
c0547d0b | 857 | assert_spin_locked(&pool->lock); |
61989a80 | 858 | |
3783689a | 859 | VM_BUG_ON(get_zspage_inuse(zspage)); |
4c7ac972 | 860 | VM_BUG_ON(fg != ZS_INUSE_RATIO_0); |
61989a80 | 861 | |
48b4800a | 862 | next = page = get_first_page(zspage); |
3783689a | 863 | do { |
48b4800a MK |
864 | VM_BUG_ON_PAGE(!PageLocked(page), page); |
865 | next = get_next_page(page); | |
3783689a | 866 | reset_page(page); |
48b4800a | 867 | unlock_page(page); |
91537fee | 868 | dec_zone_page_state(page, NR_ZSPAGES); |
3783689a MK |
869 | put_page(page); |
870 | page = next; | |
871 | } while (page != NULL); | |
61989a80 | 872 | |
3783689a | 873 | cache_free_zspage(pool, zspage); |
48b4800a | 874 | |
4c7ac972 SS |
875 | class_stat_dec(class, ZS_OBJS_ALLOCATED, class->objs_per_zspage); |
876 | atomic_long_sub(class->pages_per_zspage, &pool->pages_allocated); | |
48b4800a MK |
877 | } |
878 | ||
879 | static void free_zspage(struct zs_pool *pool, struct size_class *class, | |
880 | struct zspage *zspage) | |
881 | { | |
882 | VM_BUG_ON(get_zspage_inuse(zspage)); | |
883 | VM_BUG_ON(list_empty(&zspage->list)); | |
884 | ||
b475d42d MK |
885 | /* |
886 | * Since zs_free couldn't be sleepable, this function cannot call | |
887 | * lock_page. The page locks trylock_zspage got will be released | |
888 | * by __free_zspage. | |
889 | */ | |
48b4800a MK |
890 | if (!trylock_zspage(zspage)) { |
891 | kick_deferred_free(pool); | |
892 | return; | |
893 | } | |
894 | ||
4c7ac972 | 895 | remove_zspage(class, zspage, ZS_INUSE_RATIO_0); |
48b4800a | 896 | __free_zspage(pool, class, zspage); |
61989a80 NG |
897 | } |
898 | ||
899 | /* Initialize a newly allocated zspage */ | |
3783689a | 900 | static void init_zspage(struct size_class *class, struct zspage *zspage) |
61989a80 | 901 | { |
bfd093f5 | 902 | unsigned int freeobj = 1; |
61989a80 | 903 | unsigned long off = 0; |
48b4800a | 904 | struct page *page = get_first_page(zspage); |
830e4bc5 | 905 | |
61989a80 NG |
906 | while (page) { |
907 | struct page *next_page; | |
908 | struct link_free *link; | |
af4ee5e9 | 909 | void *vaddr; |
61989a80 | 910 | |
3783689a | 911 | set_first_obj_offset(page, off); |
61989a80 | 912 | |
af4ee5e9 MK |
913 | vaddr = kmap_atomic(page); |
914 | link = (struct link_free *)vaddr + off / sizeof(*link); | |
5538c562 DS |
915 | |
916 | while ((off += class->size) < PAGE_SIZE) { | |
3b1d9ca6 | 917 | link->next = freeobj++ << OBJ_TAG_BITS; |
5538c562 | 918 | link += class->size / sizeof(*link); |
61989a80 NG |
919 | } |
920 | ||
921 | /* | |
922 | * We now come to the last (full or partial) object on this | |
923 | * page, which must point to the first object on the next | |
924 | * page (if present) | |
925 | */ | |
926 | next_page = get_next_page(page); | |
bfd093f5 | 927 | if (next_page) { |
3b1d9ca6 | 928 | link->next = freeobj++ << OBJ_TAG_BITS; |
bfd093f5 MK |
929 | } else { |
930 | /* | |
3b1d9ca6 | 931 | * Reset OBJ_TAG_BITS bit to last link to tell |
bfd093f5 MK |
932 | * whether it's allocated object or not. |
933 | */ | |
01a6ad9a | 934 | link->next = -1UL << OBJ_TAG_BITS; |
bfd093f5 | 935 | } |
af4ee5e9 | 936 | kunmap_atomic(vaddr); |
61989a80 | 937 | page = next_page; |
5538c562 | 938 | off %= PAGE_SIZE; |
61989a80 | 939 | } |
bdb0af7c | 940 | |
bfd093f5 | 941 | set_freeobj(zspage, 0); |
61989a80 NG |
942 | } |
943 | ||
48b4800a MK |
944 | static void create_page_chain(struct size_class *class, struct zspage *zspage, |
945 | struct page *pages[]) | |
61989a80 | 946 | { |
bdb0af7c MK |
947 | int i; |
948 | struct page *page; | |
949 | struct page *prev_page = NULL; | |
48b4800a | 950 | int nr_pages = class->pages_per_zspage; |
61989a80 NG |
951 | |
952 | /* | |
953 | * Allocate individual pages and link them together as: | |
ffedd09f | 954 | * 1. all pages are linked together using page->index |
3783689a | 955 | * 2. each sub-page point to zspage using page->private |
61989a80 | 956 | * |
3783689a | 957 | * we set PG_private to identify the first page (i.e. no other sub-page |
22c5cef1 | 958 | * has this flag set). |
61989a80 | 959 | */ |
bdb0af7c MK |
960 | for (i = 0; i < nr_pages; i++) { |
961 | page = pages[i]; | |
3783689a | 962 | set_page_private(page, (unsigned long)zspage); |
ffedd09f | 963 | page->index = 0; |
bdb0af7c | 964 | if (i == 0) { |
3783689a | 965 | zspage->first_page = page; |
a27545bf | 966 | SetPagePrivate(page); |
48b4800a MK |
967 | if (unlikely(class->objs_per_zspage == 1 && |
968 | class->pages_per_zspage == 1)) | |
a41ec880 | 969 | SetZsHugePage(zspage); |
3783689a | 970 | } else { |
ffedd09f | 971 | prev_page->index = (unsigned long)page; |
61989a80 | 972 | } |
61989a80 NG |
973 | prev_page = page; |
974 | } | |
bdb0af7c | 975 | } |
61989a80 | 976 | |
bdb0af7c MK |
977 | /* |
978 | * Allocate a zspage for the given size class | |
979 | */ | |
3783689a MK |
980 | static struct zspage *alloc_zspage(struct zs_pool *pool, |
981 | struct size_class *class, | |
982 | gfp_t gfp) | |
bdb0af7c MK |
983 | { |
984 | int i; | |
bdb0af7c | 985 | struct page *pages[ZS_MAX_PAGES_PER_ZSPAGE]; |
3783689a MK |
986 | struct zspage *zspage = cache_alloc_zspage(pool, gfp); |
987 | ||
988 | if (!zspage) | |
989 | return NULL; | |
990 | ||
48b4800a MK |
991 | zspage->magic = ZSPAGE_MAGIC; |
992 | migrate_lock_init(zspage); | |
61989a80 | 993 | |
bdb0af7c MK |
994 | for (i = 0; i < class->pages_per_zspage; i++) { |
995 | struct page *page; | |
61989a80 | 996 | |
3783689a | 997 | page = alloc_page(gfp); |
bdb0af7c | 998 | if (!page) { |
91537fee MK |
999 | while (--i >= 0) { |
1000 | dec_zone_page_state(pages[i], NR_ZSPAGES); | |
bdb0af7c | 1001 | __free_page(pages[i]); |
91537fee | 1002 | } |
3783689a | 1003 | cache_free_zspage(pool, zspage); |
bdb0af7c MK |
1004 | return NULL; |
1005 | } | |
91537fee MK |
1006 | |
1007 | inc_zone_page_state(page, NR_ZSPAGES); | |
bdb0af7c | 1008 | pages[i] = page; |
61989a80 NG |
1009 | } |
1010 | ||
48b4800a | 1011 | create_page_chain(class, zspage, pages); |
3783689a | 1012 | init_zspage(class, zspage); |
68f2736a | 1013 | zspage->pool = pool; |
bdb0af7c | 1014 | |
3783689a | 1015 | return zspage; |
61989a80 NG |
1016 | } |
1017 | ||
3783689a | 1018 | static struct zspage *find_get_zspage(struct size_class *class) |
61989a80 NG |
1019 | { |
1020 | int i; | |
3783689a | 1021 | struct zspage *zspage; |
61989a80 | 1022 | |
4c7ac972 | 1023 | for (i = ZS_INUSE_RATIO_99; i >= ZS_INUSE_RATIO_0; i--) { |
3783689a | 1024 | zspage = list_first_entry_or_null(&class->fullness_list[i], |
4c7ac972 | 1025 | struct zspage, list); |
3783689a | 1026 | if (zspage) |
61989a80 NG |
1027 | break; |
1028 | } | |
1029 | ||
3783689a | 1030 | return zspage; |
61989a80 NG |
1031 | } |
1032 | ||
f553646a SJ |
1033 | static inline int __zs_cpu_up(struct mapping_area *area) |
1034 | { | |
1035 | /* | |
1036 | * Make sure we don't leak memory if a cpu UP notification | |
1037 | * and zs_init() race and both call zs_cpu_up() on the same cpu | |
1038 | */ | |
1039 | if (area->vm_buf) | |
1040 | return 0; | |
40f9fb8c | 1041 | area->vm_buf = kmalloc(ZS_MAX_ALLOC_SIZE, GFP_KERNEL); |
f553646a SJ |
1042 | if (!area->vm_buf) |
1043 | return -ENOMEM; | |
1044 | return 0; | |
1045 | } | |
1046 | ||
1047 | static inline void __zs_cpu_down(struct mapping_area *area) | |
1048 | { | |
40f9fb8c | 1049 | kfree(area->vm_buf); |
f553646a SJ |
1050 | area->vm_buf = NULL; |
1051 | } | |
1052 | ||
1053 | static void *__zs_map_object(struct mapping_area *area, | |
1054 | struct page *pages[2], int off, int size) | |
5f601902 | 1055 | { |
5f601902 SJ |
1056 | int sizes[2]; |
1057 | void *addr; | |
f553646a | 1058 | char *buf = area->vm_buf; |
5f601902 | 1059 | |
f553646a SJ |
1060 | /* disable page faults to match kmap_atomic() return conditions */ |
1061 | pagefault_disable(); | |
1062 | ||
1063 | /* no read fastpath */ | |
1064 | if (area->vm_mm == ZS_MM_WO) | |
1065 | goto out; | |
5f601902 SJ |
1066 | |
1067 | sizes[0] = PAGE_SIZE - off; | |
1068 | sizes[1] = size - sizes[0]; | |
1069 | ||
5f601902 SJ |
1070 | /* copy object to per-cpu buffer */ |
1071 | addr = kmap_atomic(pages[0]); | |
1072 | memcpy(buf, addr + off, sizes[0]); | |
1073 | kunmap_atomic(addr); | |
1074 | addr = kmap_atomic(pages[1]); | |
1075 | memcpy(buf + sizes[0], addr, sizes[1]); | |
1076 | kunmap_atomic(addr); | |
f553646a SJ |
1077 | out: |
1078 | return area->vm_buf; | |
5f601902 SJ |
1079 | } |
1080 | ||
f553646a SJ |
1081 | static void __zs_unmap_object(struct mapping_area *area, |
1082 | struct page *pages[2], int off, int size) | |
5f601902 | 1083 | { |
5f601902 SJ |
1084 | int sizes[2]; |
1085 | void *addr; | |
2e40e163 | 1086 | char *buf; |
5f601902 | 1087 | |
f553646a SJ |
1088 | /* no write fastpath */ |
1089 | if (area->vm_mm == ZS_MM_RO) | |
1090 | goto out; | |
5f601902 | 1091 | |
7b60a685 | 1092 | buf = area->vm_buf; |
a82cbf07 YX |
1093 | buf = buf + ZS_HANDLE_SIZE; |
1094 | size -= ZS_HANDLE_SIZE; | |
1095 | off += ZS_HANDLE_SIZE; | |
2e40e163 | 1096 | |
5f601902 SJ |
1097 | sizes[0] = PAGE_SIZE - off; |
1098 | sizes[1] = size - sizes[0]; | |
1099 | ||
1100 | /* copy per-cpu buffer to object */ | |
1101 | addr = kmap_atomic(pages[0]); | |
1102 | memcpy(addr + off, buf, sizes[0]); | |
1103 | kunmap_atomic(addr); | |
1104 | addr = kmap_atomic(pages[1]); | |
1105 | memcpy(addr, buf + sizes[0], sizes[1]); | |
1106 | kunmap_atomic(addr); | |
f553646a SJ |
1107 | |
1108 | out: | |
1109 | /* enable page faults to match kunmap_atomic() return conditions */ | |
1110 | pagefault_enable(); | |
5f601902 | 1111 | } |
61989a80 | 1112 | |
215c89d0 | 1113 | static int zs_cpu_prepare(unsigned int cpu) |
61989a80 | 1114 | { |
61989a80 NG |
1115 | struct mapping_area *area; |
1116 | ||
215c89d0 SAS |
1117 | area = &per_cpu(zs_map_area, cpu); |
1118 | return __zs_cpu_up(area); | |
61989a80 NG |
1119 | } |
1120 | ||
215c89d0 | 1121 | static int zs_cpu_dead(unsigned int cpu) |
61989a80 | 1122 | { |
215c89d0 | 1123 | struct mapping_area *area; |
40f9fb8c | 1124 | |
215c89d0 SAS |
1125 | area = &per_cpu(zs_map_area, cpu); |
1126 | __zs_cpu_down(area); | |
1127 | return 0; | |
b1b00a5b SS |
1128 | } |
1129 | ||
64d90465 GM |
1130 | static bool can_merge(struct size_class *prev, int pages_per_zspage, |
1131 | int objs_per_zspage) | |
9eec4cd5 | 1132 | { |
64d90465 GM |
1133 | if (prev->pages_per_zspage == pages_per_zspage && |
1134 | prev->objs_per_zspage == objs_per_zspage) | |
1135 | return true; | |
9eec4cd5 | 1136 | |
64d90465 | 1137 | return false; |
9eec4cd5 JK |
1138 | } |
1139 | ||
3783689a | 1140 | static bool zspage_full(struct size_class *class, struct zspage *zspage) |
312fcae2 | 1141 | { |
3783689a | 1142 | return get_zspage_inuse(zspage) == class->objs_per_zspage; |
312fcae2 | 1143 | } |
7c2af309 | 1144 | |
df9cd3cb SS |
1145 | static bool zspage_empty(struct zspage *zspage) |
1146 | { | |
1147 | return get_zspage_inuse(zspage) == 0; | |
1148 | } | |
1149 | ||
7c2af309 AR |
1150 | /** |
1151 | * zs_lookup_class_index() - Returns index of the zsmalloc &size_class | |
1152 | * that hold objects of the provided size. | |
1153 | * @pool: zsmalloc pool to use | |
1154 | * @size: object size | |
1155 | * | |
1156 | * Context: Any context. | |
1157 | * | |
1158 | * Return: the index of the zsmalloc &size_class that hold objects of the | |
1159 | * provided size. | |
1160 | */ | |
1161 | unsigned int zs_lookup_class_index(struct zs_pool *pool, unsigned int size) | |
1162 | { | |
1163 | struct size_class *class; | |
1164 | ||
1165 | class = pool->size_class[get_size_class_index(size)]; | |
1166 | ||
1167 | return class->index; | |
1168 | } | |
1169 | EXPORT_SYMBOL_GPL(zs_lookup_class_index); | |
312fcae2 | 1170 | |
66cdef66 GM |
1171 | unsigned long zs_get_total_pages(struct zs_pool *pool) |
1172 | { | |
1173 | return atomic_long_read(&pool->pages_allocated); | |
1174 | } | |
1175 | EXPORT_SYMBOL_GPL(zs_get_total_pages); | |
1176 | ||
4bbc0bc0 | 1177 | /** |
66cdef66 GM |
1178 | * zs_map_object - get address of allocated object from handle. |
1179 | * @pool: pool from which the object was allocated | |
1180 | * @handle: handle returned from zs_malloc | |
f0953a1b | 1181 | * @mm: mapping mode to use |
4bbc0bc0 | 1182 | * |
66cdef66 GM |
1183 | * Before using an object allocated from zs_malloc, it must be mapped using |
1184 | * this function. When done with the object, it must be unmapped using | |
1185 | * zs_unmap_object. | |
4bbc0bc0 | 1186 | * |
66cdef66 GM |
1187 | * Only one object can be mapped per cpu at a time. There is no protection |
1188 | * against nested mappings. | |
1189 | * | |
1190 | * This function returns with preemption and page faults disabled. | |
4bbc0bc0 | 1191 | */ |
66cdef66 GM |
1192 | void *zs_map_object(struct zs_pool *pool, unsigned long handle, |
1193 | enum zs_mapmode mm) | |
61989a80 | 1194 | { |
3783689a | 1195 | struct zspage *zspage; |
66cdef66 | 1196 | struct page *page; |
bfd093f5 MK |
1197 | unsigned long obj, off; |
1198 | unsigned int obj_idx; | |
61989a80 | 1199 | |
66cdef66 GM |
1200 | struct size_class *class; |
1201 | struct mapping_area *area; | |
1202 | struct page *pages[2]; | |
2e40e163 | 1203 | void *ret; |
61989a80 | 1204 | |
9eec4cd5 | 1205 | /* |
66cdef66 GM |
1206 | * Because we use per-cpu mapping areas shared among the |
1207 | * pools/users, we can't allow mapping in interrupt context | |
1208 | * because it can corrupt another users mappings. | |
9eec4cd5 | 1209 | */ |
1aedcafb | 1210 | BUG_ON(in_interrupt()); |
61989a80 | 1211 | |
b475d42d | 1212 | /* It guarantees it can get zspage from handle safely */ |
c0547d0b | 1213 | spin_lock(&pool->lock); |
2e40e163 MK |
1214 | obj = handle_to_obj(handle); |
1215 | obj_to_location(obj, &page, &obj_idx); | |
3783689a | 1216 | zspage = get_zspage(page); |
48b4800a | 1217 | |
b475d42d | 1218 | /* |
c0547d0b | 1219 | * migration cannot move any zpages in this zspage. Here, pool->lock |
b475d42d MK |
1220 | * is too heavy since callers would take some time until they calls |
1221 | * zs_unmap_object API so delegate the locking from class to zspage | |
1222 | * which is smaller granularity. | |
1223 | */ | |
48b4800a | 1224 | migrate_read_lock(zspage); |
c0547d0b | 1225 | spin_unlock(&pool->lock); |
48b4800a | 1226 | |
67f1c9cd | 1227 | class = zspage_class(pool, zspage); |
f24f66ee | 1228 | off = offset_in_page(class->size * obj_idx); |
df8b5bb9 | 1229 | |
a3726599 MG |
1230 | local_lock(&zs_map_area.lock); |
1231 | area = this_cpu_ptr(&zs_map_area); | |
66cdef66 GM |
1232 | area->vm_mm = mm; |
1233 | if (off + class->size <= PAGE_SIZE) { | |
1234 | /* this object is contained entirely within a page */ | |
1235 | area->vm_addr = kmap_atomic(page); | |
2e40e163 MK |
1236 | ret = area->vm_addr + off; |
1237 | goto out; | |
61989a80 NG |
1238 | } |
1239 | ||
66cdef66 GM |
1240 | /* this object spans two pages */ |
1241 | pages[0] = page; | |
1242 | pages[1] = get_next_page(page); | |
1243 | BUG_ON(!pages[1]); | |
9eec4cd5 | 1244 | |
2e40e163 MK |
1245 | ret = __zs_map_object(area, pages, off, class->size); |
1246 | out: | |
a41ec880 | 1247 | if (likely(!ZsHugePage(zspage))) |
7b60a685 MK |
1248 | ret += ZS_HANDLE_SIZE; |
1249 | ||
1250 | return ret; | |
61989a80 | 1251 | } |
66cdef66 | 1252 | EXPORT_SYMBOL_GPL(zs_map_object); |
61989a80 | 1253 | |
66cdef66 | 1254 | void zs_unmap_object(struct zs_pool *pool, unsigned long handle) |
61989a80 | 1255 | { |
3783689a | 1256 | struct zspage *zspage; |
66cdef66 | 1257 | struct page *page; |
bfd093f5 MK |
1258 | unsigned long obj, off; |
1259 | unsigned int obj_idx; | |
61989a80 | 1260 | |
66cdef66 GM |
1261 | struct size_class *class; |
1262 | struct mapping_area *area; | |
9eec4cd5 | 1263 | |
2e40e163 MK |
1264 | obj = handle_to_obj(handle); |
1265 | obj_to_location(obj, &page, &obj_idx); | |
3783689a | 1266 | zspage = get_zspage(page); |
67f1c9cd | 1267 | class = zspage_class(pool, zspage); |
f24f66ee | 1268 | off = offset_in_page(class->size * obj_idx); |
61989a80 | 1269 | |
66cdef66 GM |
1270 | area = this_cpu_ptr(&zs_map_area); |
1271 | if (off + class->size <= PAGE_SIZE) | |
1272 | kunmap_atomic(area->vm_addr); | |
1273 | else { | |
1274 | struct page *pages[2]; | |
40f9fb8c | 1275 | |
66cdef66 GM |
1276 | pages[0] = page; |
1277 | pages[1] = get_next_page(page); | |
1278 | BUG_ON(!pages[1]); | |
1279 | ||
1280 | __zs_unmap_object(area, pages, off, class->size); | |
1281 | } | |
a3726599 | 1282 | local_unlock(&zs_map_area.lock); |
48b4800a MK |
1283 | |
1284 | migrate_read_unlock(zspage); | |
61989a80 | 1285 | } |
66cdef66 | 1286 | EXPORT_SYMBOL_GPL(zs_unmap_object); |
61989a80 | 1287 | |
010b495e SS |
1288 | /** |
1289 | * zs_huge_class_size() - Returns the size (in bytes) of the first huge | |
1290 | * zsmalloc &size_class. | |
1291 | * @pool: zsmalloc pool to use | |
1292 | * | |
1293 | * The function returns the size of the first huge class - any object of equal | |
1294 | * or bigger size will be stored in zspage consisting of a single physical | |
1295 | * page. | |
1296 | * | |
1297 | * Context: Any context. | |
1298 | * | |
1299 | * Return: the size (in bytes) of the first huge zsmalloc &size_class. | |
1300 | */ | |
1301 | size_t zs_huge_class_size(struct zs_pool *pool) | |
1302 | { | |
1303 | return huge_class_size; | |
1304 | } | |
1305 | EXPORT_SYMBOL_GPL(zs_huge_class_size); | |
1306 | ||
0a5f079b | 1307 | static unsigned long obj_malloc(struct zs_pool *pool, |
3783689a | 1308 | struct zspage *zspage, unsigned long handle) |
c7806261 | 1309 | { |
bfd093f5 | 1310 | int i, nr_page, offset; |
c7806261 MK |
1311 | unsigned long obj; |
1312 | struct link_free *link; | |
0a5f079b | 1313 | struct size_class *class; |
c7806261 MK |
1314 | |
1315 | struct page *m_page; | |
bfd093f5 | 1316 | unsigned long m_offset; |
c7806261 MK |
1317 | void *vaddr; |
1318 | ||
0a5f079b | 1319 | class = pool->size_class[zspage->class]; |
312fcae2 | 1320 | handle |= OBJ_ALLOCATED_TAG; |
3783689a | 1321 | obj = get_freeobj(zspage); |
bfd093f5 MK |
1322 | |
1323 | offset = obj * class->size; | |
1324 | nr_page = offset >> PAGE_SHIFT; | |
f24f66ee | 1325 | m_offset = offset_in_page(offset); |
bfd093f5 MK |
1326 | m_page = get_first_page(zspage); |
1327 | ||
1328 | for (i = 0; i < nr_page; i++) | |
1329 | m_page = get_next_page(m_page); | |
c7806261 MK |
1330 | |
1331 | vaddr = kmap_atomic(m_page); | |
1332 | link = (struct link_free *)vaddr + m_offset / sizeof(*link); | |
3b1d9ca6 | 1333 | set_freeobj(zspage, link->next >> OBJ_TAG_BITS); |
a41ec880 | 1334 | if (likely(!ZsHugePage(zspage))) |
7b60a685 MK |
1335 | /* record handle in the header of allocated chunk */ |
1336 | link->handle = handle; | |
1337 | else | |
3783689a MK |
1338 | /* record handle to page->index */ |
1339 | zspage->first_page->index = handle; | |
1340 | ||
c7806261 | 1341 | kunmap_atomic(vaddr); |
3783689a | 1342 | mod_zspage_inuse(zspage, 1); |
c7806261 | 1343 | |
bfd093f5 MK |
1344 | obj = location_to_obj(m_page, obj); |
1345 | ||
c7806261 MK |
1346 | return obj; |
1347 | } | |
1348 | ||
1349 | ||
61989a80 NG |
1350 | /** |
1351 | * zs_malloc - Allocate block of given size from pool. | |
1352 | * @pool: pool to allocate from | |
1353 | * @size: size of block to allocate | |
fd854463 | 1354 | * @gfp: gfp flags when allocating object |
61989a80 | 1355 | * |
00a61d86 | 1356 | * On success, handle to the allocated object is returned, |
c7e6f17b | 1357 | * otherwise an ERR_PTR(). |
61989a80 NG |
1358 | * Allocation requests with size > ZS_MAX_ALLOC_SIZE will fail. |
1359 | */ | |
d0d8da2d | 1360 | unsigned long zs_malloc(struct zs_pool *pool, size_t size, gfp_t gfp) |
61989a80 | 1361 | { |
2e40e163 | 1362 | unsigned long handle, obj; |
61989a80 | 1363 | struct size_class *class; |
4c7ac972 | 1364 | int newfg; |
3783689a | 1365 | struct zspage *zspage; |
61989a80 | 1366 | |
7b60a685 | 1367 | if (unlikely(!size || size > ZS_MAX_ALLOC_SIZE)) |
c7e6f17b | 1368 | return (unsigned long)ERR_PTR(-EINVAL); |
2e40e163 | 1369 | |
3783689a | 1370 | handle = cache_alloc_handle(pool, gfp); |
2e40e163 | 1371 | if (!handle) |
c7e6f17b | 1372 | return (unsigned long)ERR_PTR(-ENOMEM); |
61989a80 | 1373 | |
2e40e163 MK |
1374 | /* extra space in chunk to keep the handle */ |
1375 | size += ZS_HANDLE_SIZE; | |
9eec4cd5 | 1376 | class = pool->size_class[get_size_class_index(size)]; |
61989a80 | 1377 | |
c0547d0b NP |
1378 | /* pool->lock effectively protects the zpage migration */ |
1379 | spin_lock(&pool->lock); | |
3783689a | 1380 | zspage = find_get_zspage(class); |
48b4800a | 1381 | if (likely(zspage)) { |
0a5f079b | 1382 | obj = obj_malloc(pool, zspage, handle); |
48b4800a MK |
1383 | /* Now move the zspage to another fullness group, if required */ |
1384 | fix_fullness_group(class, zspage); | |
1385 | record_obj(handle, obj); | |
4c7ac972 | 1386 | class_stat_inc(class, ZS_OBJS_INUSE, 1); |
61989a80 | 1387 | |
d461aac9 | 1388 | goto out; |
48b4800a | 1389 | } |
0f050d99 | 1390 | |
c0547d0b | 1391 | spin_unlock(&pool->lock); |
48b4800a MK |
1392 | |
1393 | zspage = alloc_zspage(pool, class, gfp); | |
1394 | if (!zspage) { | |
1395 | cache_free_handle(pool, handle); | |
c7e6f17b | 1396 | return (unsigned long)ERR_PTR(-ENOMEM); |
61989a80 NG |
1397 | } |
1398 | ||
c0547d0b | 1399 | spin_lock(&pool->lock); |
0a5f079b | 1400 | obj = obj_malloc(pool, zspage, handle); |
48b4800a MK |
1401 | newfg = get_fullness_group(class, zspage); |
1402 | insert_zspage(class, zspage, newfg); | |
1403 | set_zspage_mapping(zspage, class->index, newfg); | |
2e40e163 | 1404 | record_obj(handle, obj); |
4c7ac972 SS |
1405 | atomic_long_add(class->pages_per_zspage, &pool->pages_allocated); |
1406 | class_stat_inc(class, ZS_OBJS_ALLOCATED, class->objs_per_zspage); | |
1407 | class_stat_inc(class, ZS_OBJS_INUSE, 1); | |
48b4800a MK |
1408 | |
1409 | /* We completely set up zspage so mark them as movable */ | |
1410 | SetZsPageMovable(pool, zspage); | |
d461aac9 | 1411 | out: |
c0547d0b | 1412 | spin_unlock(&pool->lock); |
61989a80 | 1413 | |
2e40e163 | 1414 | return handle; |
61989a80 NG |
1415 | } |
1416 | EXPORT_SYMBOL_GPL(zs_malloc); | |
1417 | ||
b3067742 | 1418 | static void obj_free(int class_size, unsigned long obj) |
61989a80 NG |
1419 | { |
1420 | struct link_free *link; | |
3783689a MK |
1421 | struct zspage *zspage; |
1422 | struct page *f_page; | |
bfd093f5 MK |
1423 | unsigned long f_offset; |
1424 | unsigned int f_objidx; | |
af4ee5e9 | 1425 | void *vaddr; |
61989a80 | 1426 | |
2e40e163 | 1427 | obj_to_location(obj, &f_page, &f_objidx); |
f24f66ee | 1428 | f_offset = offset_in_page(class_size * f_objidx); |
3783689a | 1429 | zspage = get_zspage(f_page); |
61989a80 | 1430 | |
c7806261 | 1431 | vaddr = kmap_atomic(f_page); |
af4ee5e9 | 1432 | link = (struct link_free *)(vaddr + f_offset); |
85b32581 | 1433 | |
b3067742 DC |
1434 | /* Insert this object in containing zspage's freelist */ |
1435 | if (likely(!ZsHugePage(zspage))) | |
1436 | link->next = get_freeobj(zspage) << OBJ_TAG_BITS; | |
1437 | else | |
1438 | f_page->index = 0; | |
1439 | set_freeobj(zspage, f_objidx); | |
85b32581 | 1440 | |
af4ee5e9 | 1441 | kunmap_atomic(vaddr); |
3783689a | 1442 | mod_zspage_inuse(zspage, -1); |
c7806261 MK |
1443 | } |
1444 | ||
1445 | void zs_free(struct zs_pool *pool, unsigned long handle) | |
1446 | { | |
3783689a MK |
1447 | struct zspage *zspage; |
1448 | struct page *f_page; | |
bfd093f5 | 1449 | unsigned long obj; |
c7806261 | 1450 | struct size_class *class; |
4c7ac972 | 1451 | int fullness; |
c7806261 | 1452 | |
a5d21721 | 1453 | if (IS_ERR_OR_NULL((void *)handle)) |
c7806261 MK |
1454 | return; |
1455 | ||
b475d42d | 1456 | /* |
c0547d0b | 1457 | * The pool->lock protects the race with zpage's migration |
b475d42d MK |
1458 | * so it's safe to get the page from handle. |
1459 | */ | |
c0547d0b | 1460 | spin_lock(&pool->lock); |
c7806261 | 1461 | obj = handle_to_obj(handle); |
67f1c9cd | 1462 | obj_to_page(obj, &f_page); |
3783689a | 1463 | zspage = get_zspage(f_page); |
67f1c9cd | 1464 | class = zspage_class(pool, zspage); |
b475d42d | 1465 | |
4c7ac972 | 1466 | class_stat_dec(class, ZS_OBJS_INUSE, 1); |
b3067742 | 1467 | obj_free(class->size, obj); |
85b32581 | 1468 | |
3783689a | 1469 | fullness = fix_fullness_group(class, zspage); |
4c7ac972 | 1470 | if (fullness == ZS_INUSE_RATIO_0) |
9997bc01 | 1471 | free_zspage(pool, class, zspage); |
48b4800a | 1472 | |
c0547d0b | 1473 | spin_unlock(&pool->lock); |
3783689a | 1474 | cache_free_handle(pool, handle); |
312fcae2 MK |
1475 | } |
1476 | EXPORT_SYMBOL_GPL(zs_free); | |
1477 | ||
251cbb95 MK |
1478 | static void zs_object_copy(struct size_class *class, unsigned long dst, |
1479 | unsigned long src) | |
312fcae2 MK |
1480 | { |
1481 | struct page *s_page, *d_page; | |
bfd093f5 | 1482 | unsigned int s_objidx, d_objidx; |
312fcae2 MK |
1483 | unsigned long s_off, d_off; |
1484 | void *s_addr, *d_addr; | |
1485 | int s_size, d_size, size; | |
1486 | int written = 0; | |
1487 | ||
1488 | s_size = d_size = class->size; | |
1489 | ||
1490 | obj_to_location(src, &s_page, &s_objidx); | |
1491 | obj_to_location(dst, &d_page, &d_objidx); | |
1492 | ||
f24f66ee AR |
1493 | s_off = offset_in_page(class->size * s_objidx); |
1494 | d_off = offset_in_page(class->size * d_objidx); | |
312fcae2 MK |
1495 | |
1496 | if (s_off + class->size > PAGE_SIZE) | |
1497 | s_size = PAGE_SIZE - s_off; | |
1498 | ||
1499 | if (d_off + class->size > PAGE_SIZE) | |
1500 | d_size = PAGE_SIZE - d_off; | |
1501 | ||
1502 | s_addr = kmap_atomic(s_page); | |
1503 | d_addr = kmap_atomic(d_page); | |
1504 | ||
1505 | while (1) { | |
1506 | size = min(s_size, d_size); | |
1507 | memcpy(d_addr + d_off, s_addr + s_off, size); | |
1508 | written += size; | |
1509 | ||
1510 | if (written == class->size) | |
1511 | break; | |
1512 | ||
495819ea SS |
1513 | s_off += size; |
1514 | s_size -= size; | |
1515 | d_off += size; | |
1516 | d_size -= size; | |
1517 | ||
050a388b AR |
1518 | /* |
1519 | * Calling kunmap_atomic(d_addr) is necessary. kunmap_atomic() | |
1520 | * calls must occurs in reverse order of calls to kmap_atomic(). | |
1521 | * So, to call kunmap_atomic(s_addr) we should first call | |
46e87152 AR |
1522 | * kunmap_atomic(d_addr). For more details see |
1523 | * Documentation/mm/highmem.rst. | |
050a388b | 1524 | */ |
495819ea | 1525 | if (s_off >= PAGE_SIZE) { |
312fcae2 MK |
1526 | kunmap_atomic(d_addr); |
1527 | kunmap_atomic(s_addr); | |
1528 | s_page = get_next_page(s_page); | |
312fcae2 MK |
1529 | s_addr = kmap_atomic(s_page); |
1530 | d_addr = kmap_atomic(d_page); | |
1531 | s_size = class->size - written; | |
1532 | s_off = 0; | |
312fcae2 MK |
1533 | } |
1534 | ||
495819ea | 1535 | if (d_off >= PAGE_SIZE) { |
312fcae2 MK |
1536 | kunmap_atomic(d_addr); |
1537 | d_page = get_next_page(d_page); | |
312fcae2 MK |
1538 | d_addr = kmap_atomic(d_page); |
1539 | d_size = class->size - written; | |
1540 | d_off = 0; | |
312fcae2 MK |
1541 | } |
1542 | } | |
1543 | ||
1544 | kunmap_atomic(d_addr); | |
1545 | kunmap_atomic(s_addr); | |
1546 | } | |
1547 | ||
1548 | /* | |
f9044f17 | 1549 | * Find alloced object in zspage from index object and |
312fcae2 MK |
1550 | * return handle. |
1551 | */ | |
f9044f17 SS |
1552 | static unsigned long find_alloced_obj(struct size_class *class, |
1553 | struct page *page, int *obj_idx) | |
312fcae2 | 1554 | { |
671f2fa8 | 1555 | unsigned int offset; |
cf675acb | 1556 | int index = *obj_idx; |
312fcae2 MK |
1557 | unsigned long handle = 0; |
1558 | void *addr = kmap_atomic(page); | |
1559 | ||
3783689a | 1560 | offset = get_first_obj_offset(page); |
312fcae2 MK |
1561 | offset += class->size * index; |
1562 | ||
1563 | while (offset < PAGE_SIZE) { | |
f9044f17 | 1564 | if (obj_allocated(page, addr + offset, &handle)) |
b475d42d | 1565 | break; |
312fcae2 MK |
1566 | |
1567 | offset += class->size; | |
1568 | index++; | |
1569 | } | |
1570 | ||
1571 | kunmap_atomic(addr); | |
cf675acb GM |
1572 | |
1573 | *obj_idx = index; | |
1574 | ||
312fcae2 MK |
1575 | return handle; |
1576 | } | |
1577 | ||
ada5caed MK |
1578 | static void migrate_zspage(struct zs_pool *pool, struct zspage *src_zspage, |
1579 | struct zspage *dst_zspage) | |
312fcae2 MK |
1580 | { |
1581 | unsigned long used_obj, free_obj; | |
1582 | unsigned long handle; | |
ada5caed MK |
1583 | int obj_idx = 0; |
1584 | struct page *s_page = get_first_page(src_zspage); | |
1585 | struct size_class *class = pool->size_class[src_zspage->class]; | |
312fcae2 MK |
1586 | |
1587 | while (1) { | |
cf675acb | 1588 | handle = find_alloced_obj(class, s_page, &obj_idx); |
312fcae2 MK |
1589 | if (!handle) { |
1590 | s_page = get_next_page(s_page); | |
1591 | if (!s_page) | |
1592 | break; | |
41b88e14 | 1593 | obj_idx = 0; |
312fcae2 MK |
1594 | continue; |
1595 | } | |
1596 | ||
312fcae2 | 1597 | used_obj = handle_to_obj(handle); |
ada5caed | 1598 | free_obj = obj_malloc(pool, dst_zspage, handle); |
251cbb95 | 1599 | zs_object_copy(class, free_obj, used_obj); |
41b88e14 | 1600 | obj_idx++; |
312fcae2 | 1601 | record_obj(handle, free_obj); |
b3067742 | 1602 | obj_free(class->size, used_obj); |
df9cd3cb | 1603 | |
4ce36584 | 1604 | /* Stop if there is no more space */ |
ada5caed | 1605 | if (zspage_full(class, dst_zspage)) |
4ce36584 SS |
1606 | break; |
1607 | ||
df9cd3cb | 1608 | /* Stop if there are no more objects to migrate */ |
ada5caed | 1609 | if (zspage_empty(src_zspage)) |
df9cd3cb | 1610 | break; |
312fcae2 | 1611 | } |
312fcae2 MK |
1612 | } |
1613 | ||
4c7ac972 | 1614 | static struct zspage *isolate_src_zspage(struct size_class *class) |
312fcae2 | 1615 | { |
3783689a | 1616 | struct zspage *zspage; |
4c7ac972 | 1617 | int fg; |
312fcae2 | 1618 | |
4c7ac972 SS |
1619 | for (fg = ZS_INUSE_RATIO_10; fg <= ZS_INUSE_RATIO_99; fg++) { |
1620 | zspage = list_first_entry_or_null(&class->fullness_list[fg], | |
1621 | struct zspage, list); | |
1622 | if (zspage) { | |
1623 | remove_zspage(class, zspage, fg); | |
1624 | return zspage; | |
1625 | } | |
3783689a MK |
1626 | } |
1627 | ||
4c7ac972 SS |
1628 | return zspage; |
1629 | } | |
1630 | ||
1631 | static struct zspage *isolate_dst_zspage(struct size_class *class) | |
1632 | { | |
1633 | struct zspage *zspage; | |
1634 | int fg; | |
1635 | ||
1636 | for (fg = ZS_INUSE_RATIO_99; fg >= ZS_INUSE_RATIO_10; fg--) { | |
1637 | zspage = list_first_entry_or_null(&class->fullness_list[fg], | |
1638 | struct zspage, list); | |
3783689a | 1639 | if (zspage) { |
4c7ac972 | 1640 | remove_zspage(class, zspage, fg); |
3783689a | 1641 | return zspage; |
312fcae2 MK |
1642 | } |
1643 | } | |
1644 | ||
3783689a | 1645 | return zspage; |
312fcae2 MK |
1646 | } |
1647 | ||
860c707d | 1648 | /* |
3783689a | 1649 | * putback_zspage - add @zspage into right class's fullness list |
860c707d | 1650 | * @class: destination class |
3783689a | 1651 | * @zspage: target page |
860c707d | 1652 | * |
4c7ac972 | 1653 | * Return @zspage's fullness status |
860c707d | 1654 | */ |
4c7ac972 | 1655 | static int putback_zspage(struct size_class *class, struct zspage *zspage) |
312fcae2 | 1656 | { |
4c7ac972 | 1657 | int fullness; |
312fcae2 | 1658 | |
3783689a MK |
1659 | fullness = get_fullness_group(class, zspage); |
1660 | insert_zspage(class, zspage, fullness); | |
1661 | set_zspage_mapping(zspage, class->index, fullness); | |
839373e6 | 1662 | |
860c707d | 1663 | return fullness; |
61989a80 | 1664 | } |
312fcae2 | 1665 | |
b3067742 | 1666 | #ifdef CONFIG_COMPACTION |
4d0a5402 CIK |
1667 | /* |
1668 | * To prevent zspage destroy during migration, zspage freeing should | |
1669 | * hold locks of all pages in the zspage. | |
1670 | */ | |
1671 | static void lock_zspage(struct zspage *zspage) | |
1672 | { | |
2505a981 | 1673 | struct page *curr_page, *page; |
4d0a5402 | 1674 | |
2505a981 SA |
1675 | /* |
1676 | * Pages we haven't locked yet can be migrated off the list while we're | |
1677 | * trying to lock them, so we need to be careful and only attempt to | |
1678 | * lock each page under migrate_read_lock(). Otherwise, the page we lock | |
1679 | * may no longer belong to the zspage. This means that we may wait for | |
1680 | * the wrong page to unlock, so we must take a reference to the page | |
1681 | * prior to waiting for it to unlock outside migrate_read_lock(). | |
1682 | */ | |
1683 | while (1) { | |
1684 | migrate_read_lock(zspage); | |
1685 | page = get_first_page(zspage); | |
1686 | if (trylock_page(page)) | |
1687 | break; | |
1688 | get_page(page); | |
1689 | migrate_read_unlock(zspage); | |
1690 | wait_on_page_locked(page); | |
1691 | put_page(page); | |
1692 | } | |
1693 | ||
1694 | curr_page = page; | |
1695 | while ((page = get_next_page(curr_page))) { | |
1696 | if (trylock_page(page)) { | |
1697 | curr_page = page; | |
1698 | } else { | |
1699 | get_page(page); | |
1700 | migrate_read_unlock(zspage); | |
1701 | wait_on_page_locked(page); | |
1702 | put_page(page); | |
1703 | migrate_read_lock(zspage); | |
1704 | } | |
1705 | } | |
1706 | migrate_read_unlock(zspage); | |
4d0a5402 | 1707 | } |
b3067742 | 1708 | #endif /* CONFIG_COMPACTION */ |
4d0a5402 | 1709 | |
48b4800a MK |
1710 | static void migrate_lock_init(struct zspage *zspage) |
1711 | { | |
1712 | rwlock_init(&zspage->lock); | |
1713 | } | |
1714 | ||
cfc451cf | 1715 | static void migrate_read_lock(struct zspage *zspage) __acquires(&zspage->lock) |
48b4800a MK |
1716 | { |
1717 | read_lock(&zspage->lock); | |
1718 | } | |
1719 | ||
8a374ccc | 1720 | static void migrate_read_unlock(struct zspage *zspage) __releases(&zspage->lock) |
48b4800a MK |
1721 | { |
1722 | read_unlock(&zspage->lock); | |
1723 | } | |
1724 | ||
9997bc01 | 1725 | #ifdef CONFIG_COMPACTION |
48b4800a MK |
1726 | static void migrate_write_lock(struct zspage *zspage) |
1727 | { | |
1728 | write_lock(&zspage->lock); | |
1729 | } | |
1730 | ||
b475d42d MK |
1731 | static void migrate_write_lock_nested(struct zspage *zspage) |
1732 | { | |
1733 | write_lock_nested(&zspage->lock, SINGLE_DEPTH_NESTING); | |
1734 | } | |
1735 | ||
48b4800a MK |
1736 | static void migrate_write_unlock(struct zspage *zspage) |
1737 | { | |
1738 | write_unlock(&zspage->lock); | |
1739 | } | |
1740 | ||
1741 | /* Number of isolated subpage for *page migration* in this zspage */ | |
1742 | static void inc_zspage_isolation(struct zspage *zspage) | |
1743 | { | |
1744 | zspage->isolated++; | |
1745 | } | |
1746 | ||
1747 | static void dec_zspage_isolation(struct zspage *zspage) | |
1748 | { | |
c4549b87 | 1749 | VM_BUG_ON(zspage->isolated == 0); |
48b4800a MK |
1750 | zspage->isolated--; |
1751 | } | |
1752 | ||
68f2736a MWO |
1753 | static const struct movable_operations zsmalloc_mops; |
1754 | ||
48b4800a MK |
1755 | static void replace_sub_page(struct size_class *class, struct zspage *zspage, |
1756 | struct page *newpage, struct page *oldpage) | |
1757 | { | |
1758 | struct page *page; | |
1759 | struct page *pages[ZS_MAX_PAGES_PER_ZSPAGE] = {NULL, }; | |
1760 | int idx = 0; | |
1761 | ||
1762 | page = get_first_page(zspage); | |
1763 | do { | |
1764 | if (page == oldpage) | |
1765 | pages[idx] = newpage; | |
1766 | else | |
1767 | pages[idx] = page; | |
1768 | idx++; | |
1769 | } while ((page = get_next_page(page)) != NULL); | |
1770 | ||
1771 | create_page_chain(class, zspage, pages); | |
1772 | set_first_obj_offset(newpage, get_first_obj_offset(oldpage)); | |
a41ec880 | 1773 | if (unlikely(ZsHugePage(zspage))) |
48b4800a | 1774 | newpage->index = oldpage->index; |
68f2736a | 1775 | __SetPageMovable(newpage, &zsmalloc_mops); |
48b4800a MK |
1776 | } |
1777 | ||
4d0a5402 | 1778 | static bool zs_page_isolate(struct page *page, isolate_mode_t mode) |
48b4800a | 1779 | { |
4b5d1e47 | 1780 | struct zs_pool *pool; |
48b4800a | 1781 | struct zspage *zspage; |
48b4800a MK |
1782 | |
1783 | /* | |
1784 | * Page is locked so zspage couldn't be destroyed. For detail, look at | |
1785 | * lock_zspage in free_zspage. | |
1786 | */ | |
48b4800a MK |
1787 | VM_BUG_ON_PAGE(PageIsolated(page), page); |
1788 | ||
1789 | zspage = get_zspage(page); | |
4b5d1e47 AY |
1790 | pool = zspage->pool; |
1791 | spin_lock(&pool->lock); | |
48b4800a | 1792 | inc_zspage_isolation(zspage); |
4b5d1e47 | 1793 | spin_unlock(&pool->lock); |
48b4800a MK |
1794 | |
1795 | return true; | |
1796 | } | |
1797 | ||
68f2736a MWO |
1798 | static int zs_page_migrate(struct page *newpage, struct page *page, |
1799 | enum migrate_mode mode) | |
48b4800a MK |
1800 | { |
1801 | struct zs_pool *pool; | |
1802 | struct size_class *class; | |
48b4800a MK |
1803 | struct zspage *zspage; |
1804 | struct page *dummy; | |
1805 | void *s_addr, *d_addr, *addr; | |
671f2fa8 | 1806 | unsigned int offset; |
3ae92ac2 | 1807 | unsigned long handle; |
48b4800a MK |
1808 | unsigned long old_obj, new_obj; |
1809 | unsigned int obj_idx; | |
48b4800a | 1810 | |
2916ecc0 JG |
1811 | /* |
1812 | * We cannot support the _NO_COPY case here, because copy needs to | |
1813 | * happen under the zs lock, which does not work with | |
1814 | * MIGRATE_SYNC_NO_COPY workflow. | |
1815 | */ | |
1816 | if (mode == MIGRATE_SYNC_NO_COPY) | |
1817 | return -EINVAL; | |
1818 | ||
48b4800a MK |
1819 | VM_BUG_ON_PAGE(!PageIsolated(page), page); |
1820 | ||
68f2736a MWO |
1821 | /* The page is locked, so this pointer must remain valid */ |
1822 | zspage = get_zspage(page); | |
1823 | pool = zspage->pool; | |
b475d42d MK |
1824 | |
1825 | /* | |
c0547d0b | 1826 | * The pool's lock protects the race between zpage migration |
b475d42d MK |
1827 | * and zs_free. |
1828 | */ | |
c0547d0b | 1829 | spin_lock(&pool->lock); |
67f1c9cd | 1830 | class = zspage_class(pool, zspage); |
48b4800a | 1831 | |
b475d42d MK |
1832 | /* the migrate_write_lock protects zpage access via zs_map_object */ |
1833 | migrate_write_lock(zspage); | |
48b4800a | 1834 | |
b475d42d | 1835 | offset = get_first_obj_offset(page); |
48b4800a | 1836 | s_addr = kmap_atomic(page); |
48b4800a MK |
1837 | |
1838 | /* | |
1839 | * Here, any user cannot access all objects in the zspage so let's move. | |
1840 | */ | |
1841 | d_addr = kmap_atomic(newpage); | |
1842 | memcpy(d_addr, s_addr, PAGE_SIZE); | |
1843 | kunmap_atomic(d_addr); | |
1844 | ||
b475d42d | 1845 | for (addr = s_addr + offset; addr < s_addr + PAGE_SIZE; |
48b4800a | 1846 | addr += class->size) { |
3ae92ac2 | 1847 | if (obj_allocated(page, addr, &handle)) { |
48b4800a MK |
1848 | |
1849 | old_obj = handle_to_obj(handle); | |
1850 | obj_to_location(old_obj, &dummy, &obj_idx); | |
1851 | new_obj = (unsigned long)location_to_obj(newpage, | |
1852 | obj_idx); | |
48b4800a MK |
1853 | record_obj(handle, new_obj); |
1854 | } | |
1855 | } | |
b475d42d | 1856 | kunmap_atomic(s_addr); |
48b4800a MK |
1857 | |
1858 | replace_sub_page(class, zspage, newpage, page); | |
4b5d1e47 | 1859 | dec_zspage_isolation(zspage); |
b475d42d MK |
1860 | /* |
1861 | * Since we complete the data copy and set up new zspage structure, | |
c0547d0b | 1862 | * it's okay to release the pool's lock. |
b475d42d | 1863 | */ |
c0547d0b | 1864 | spin_unlock(&pool->lock); |
b475d42d | 1865 | migrate_write_unlock(zspage); |
48b4800a | 1866 | |
b475d42d | 1867 | get_page(newpage); |
ac8f05da CM |
1868 | if (page_zone(newpage) != page_zone(page)) { |
1869 | dec_zone_page_state(page, NR_ZSPAGES); | |
1870 | inc_zone_page_state(newpage, NR_ZSPAGES); | |
1871 | } | |
1872 | ||
48b4800a MK |
1873 | reset_page(page); |
1874 | put_page(page); | |
48b4800a | 1875 | |
b475d42d | 1876 | return MIGRATEPAGE_SUCCESS; |
48b4800a MK |
1877 | } |
1878 | ||
4d0a5402 | 1879 | static void zs_page_putback(struct page *page) |
48b4800a | 1880 | { |
4b5d1e47 | 1881 | struct zs_pool *pool; |
48b4800a MK |
1882 | struct zspage *zspage; |
1883 | ||
48b4800a MK |
1884 | VM_BUG_ON_PAGE(!PageIsolated(page), page); |
1885 | ||
1886 | zspage = get_zspage(page); | |
4b5d1e47 AY |
1887 | pool = zspage->pool; |
1888 | spin_lock(&pool->lock); | |
48b4800a | 1889 | dec_zspage_isolation(zspage); |
4b5d1e47 | 1890 | spin_unlock(&pool->lock); |
48b4800a MK |
1891 | } |
1892 | ||
68f2736a | 1893 | static const struct movable_operations zsmalloc_mops = { |
48b4800a | 1894 | .isolate_page = zs_page_isolate, |
68f2736a | 1895 | .migrate_page = zs_page_migrate, |
48b4800a MK |
1896 | .putback_page = zs_page_putback, |
1897 | }; | |
1898 | ||
48b4800a MK |
1899 | /* |
1900 | * Caller should hold page_lock of all pages in the zspage | |
1901 | * In here, we cannot use zspage meta data. | |
1902 | */ | |
1903 | static void async_free_zspage(struct work_struct *work) | |
1904 | { | |
1905 | int i; | |
1906 | struct size_class *class; | |
1907 | unsigned int class_idx; | |
4c7ac972 | 1908 | int fullness; |
48b4800a MK |
1909 | struct zspage *zspage, *tmp; |
1910 | LIST_HEAD(free_pages); | |
1911 | struct zs_pool *pool = container_of(work, struct zs_pool, | |
1912 | free_work); | |
1913 | ||
cf8e0fed | 1914 | for (i = 0; i < ZS_SIZE_CLASSES; i++) { |
48b4800a MK |
1915 | class = pool->size_class[i]; |
1916 | if (class->index != i) | |
1917 | continue; | |
1918 | ||
c0547d0b | 1919 | spin_lock(&pool->lock); |
4c7ac972 SS |
1920 | list_splice_init(&class->fullness_list[ZS_INUSE_RATIO_0], |
1921 | &free_pages); | |
c0547d0b | 1922 | spin_unlock(&pool->lock); |
48b4800a MK |
1923 | } |
1924 | ||
48b4800a MK |
1925 | list_for_each_entry_safe(zspage, tmp, &free_pages, list) { |
1926 | list_del(&zspage->list); | |
1927 | lock_zspage(zspage); | |
1928 | ||
1929 | get_zspage_mapping(zspage, &class_idx, &fullness); | |
4c7ac972 | 1930 | VM_BUG_ON(fullness != ZS_INUSE_RATIO_0); |
48b4800a | 1931 | class = pool->size_class[class_idx]; |
c0547d0b | 1932 | spin_lock(&pool->lock); |
33848337 | 1933 | __free_zspage(pool, class, zspage); |
c0547d0b | 1934 | spin_unlock(&pool->lock); |
48b4800a MK |
1935 | } |
1936 | }; | |
1937 | ||
1938 | static void kick_deferred_free(struct zs_pool *pool) | |
1939 | { | |
1940 | schedule_work(&pool->free_work); | |
1941 | } | |
1942 | ||
68f2736a MWO |
1943 | static void zs_flush_migration(struct zs_pool *pool) |
1944 | { | |
1945 | flush_work(&pool->free_work); | |
1946 | } | |
1947 | ||
48b4800a MK |
1948 | static void init_deferred_free(struct zs_pool *pool) |
1949 | { | |
1950 | INIT_WORK(&pool->free_work, async_free_zspage); | |
1951 | } | |
1952 | ||
1953 | static void SetZsPageMovable(struct zs_pool *pool, struct zspage *zspage) | |
1954 | { | |
1955 | struct page *page = get_first_page(zspage); | |
1956 | ||
1957 | do { | |
1958 | WARN_ON(!trylock_page(page)); | |
68f2736a | 1959 | __SetPageMovable(page, &zsmalloc_mops); |
48b4800a MK |
1960 | unlock_page(page); |
1961 | } while ((page = get_next_page(page)) != NULL); | |
1962 | } | |
68f2736a MWO |
1963 | #else |
1964 | static inline void zs_flush_migration(struct zs_pool *pool) { } | |
48b4800a MK |
1965 | #endif |
1966 | ||
04f05909 SS |
1967 | /* |
1968 | * | |
1969 | * Based on the number of unused allocated objects calculate | |
1970 | * and return the number of pages that we can free. | |
04f05909 SS |
1971 | */ |
1972 | static unsigned long zs_can_compact(struct size_class *class) | |
1973 | { | |
1974 | unsigned long obj_wasted; | |
4c7ac972 SS |
1975 | unsigned long obj_allocated = zs_stat_get(class, ZS_OBJS_ALLOCATED); |
1976 | unsigned long obj_used = zs_stat_get(class, ZS_OBJS_INUSE); | |
04f05909 | 1977 | |
44f43e99 SS |
1978 | if (obj_allocated <= obj_used) |
1979 | return 0; | |
04f05909 | 1980 | |
44f43e99 | 1981 | obj_wasted = obj_allocated - obj_used; |
b4fd07a0 | 1982 | obj_wasted /= class->objs_per_zspage; |
04f05909 | 1983 | |
6cbf16b3 | 1984 | return obj_wasted * class->pages_per_zspage; |
04f05909 SS |
1985 | } |
1986 | ||
23959281 RY |
1987 | static unsigned long __zs_compact(struct zs_pool *pool, |
1988 | struct size_class *class) | |
312fcae2 | 1989 | { |
5a845e9f | 1990 | struct zspage *src_zspage = NULL; |
3783689a | 1991 | struct zspage *dst_zspage = NULL; |
23959281 | 1992 | unsigned long pages_freed = 0; |
312fcae2 | 1993 | |
c0547d0b NP |
1994 | /* |
1995 | * protect the race between zpage migration and zs_free | |
1996 | * as well as zpage allocation/free | |
1997 | */ | |
1998 | spin_lock(&pool->lock); | |
5a845e9f SS |
1999 | while (zs_can_compact(class)) { |
2000 | int fg; | |
312fcae2 | 2001 | |
5a845e9f SS |
2002 | if (!dst_zspage) { |
2003 | dst_zspage = isolate_dst_zspage(class); | |
2004 | if (!dst_zspage) | |
2005 | break; | |
2006 | migrate_write_lock(dst_zspage); | |
5a845e9f SS |
2007 | } |
2008 | ||
2009 | src_zspage = isolate_src_zspage(class); | |
2010 | if (!src_zspage) | |
04f05909 SS |
2011 | break; |
2012 | ||
5a845e9f SS |
2013 | migrate_write_lock_nested(src_zspage); |
2014 | ||
ada5caed | 2015 | migrate_zspage(pool, src_zspage, dst_zspage); |
5a845e9f SS |
2016 | fg = putback_zspage(class, src_zspage); |
2017 | migrate_write_unlock(src_zspage); | |
312fcae2 | 2018 | |
5a845e9f SS |
2019 | if (fg == ZS_INUSE_RATIO_0) { |
2020 | free_zspage(pool, class, src_zspage); | |
2021 | pages_freed += class->pages_per_zspage; | |
5a845e9f | 2022 | } |
f7ddb612 | 2023 | src_zspage = NULL; |
312fcae2 | 2024 | |
5a845e9f SS |
2025 | if (get_fullness_group(class, dst_zspage) == ZS_INUSE_RATIO_100 |
2026 | || spin_is_contended(&pool->lock)) { | |
4aa409ca | 2027 | putback_zspage(class, dst_zspage); |
b475d42d MK |
2028 | migrate_write_unlock(dst_zspage); |
2029 | dst_zspage = NULL; | |
b475d42d | 2030 | |
5a845e9f SS |
2031 | spin_unlock(&pool->lock); |
2032 | cond_resched(); | |
2033 | spin_lock(&pool->lock); | |
2034 | } | |
312fcae2 MK |
2035 | } |
2036 | ||
b475d42d | 2037 | if (src_zspage) { |
4aa409ca | 2038 | putback_zspage(class, src_zspage); |
b475d42d MK |
2039 | migrate_write_unlock(src_zspage); |
2040 | } | |
312fcae2 | 2041 | |
5a845e9f SS |
2042 | if (dst_zspage) { |
2043 | putback_zspage(class, dst_zspage); | |
2044 | migrate_write_unlock(dst_zspage); | |
2045 | } | |
c0547d0b | 2046 | spin_unlock(&pool->lock); |
23959281 RY |
2047 | |
2048 | return pages_freed; | |
312fcae2 MK |
2049 | } |
2050 | ||
2051 | unsigned long zs_compact(struct zs_pool *pool) | |
2052 | { | |
2053 | int i; | |
312fcae2 | 2054 | struct size_class *class; |
23959281 | 2055 | unsigned long pages_freed = 0; |
312fcae2 | 2056 | |
d2658f20 SS |
2057 | /* |
2058 | * Pool compaction is performed under pool->lock so it is basically | |
2059 | * single-threaded. Having more than one thread in __zs_compact() | |
2060 | * will increase pool->lock contention, which will impact other | |
2061 | * zsmalloc operations that need pool->lock. | |
2062 | */ | |
2063 | if (atomic_xchg(&pool->compaction_in_progress, 1)) | |
2064 | return 0; | |
2065 | ||
cf8e0fed | 2066 | for (i = ZS_SIZE_CLASSES - 1; i >= 0; i--) { |
312fcae2 | 2067 | class = pool->size_class[i]; |
312fcae2 MK |
2068 | if (class->index != i) |
2069 | continue; | |
23959281 | 2070 | pages_freed += __zs_compact(pool, class); |
312fcae2 | 2071 | } |
23959281 | 2072 | atomic_long_add(pages_freed, &pool->stats.pages_compacted); |
d2658f20 | 2073 | atomic_set(&pool->compaction_in_progress, 0); |
312fcae2 | 2074 | |
23959281 | 2075 | return pages_freed; |
312fcae2 MK |
2076 | } |
2077 | EXPORT_SYMBOL_GPL(zs_compact); | |
61989a80 | 2078 | |
7d3f3938 SS |
2079 | void zs_pool_stats(struct zs_pool *pool, struct zs_pool_stats *stats) |
2080 | { | |
2081 | memcpy(stats, &pool->stats, sizeof(struct zs_pool_stats)); | |
2082 | } | |
2083 | EXPORT_SYMBOL_GPL(zs_pool_stats); | |
2084 | ||
ab9d306d SS |
2085 | static unsigned long zs_shrinker_scan(struct shrinker *shrinker, |
2086 | struct shrink_control *sc) | |
2087 | { | |
2088 | unsigned long pages_freed; | |
2089 | struct zs_pool *pool = container_of(shrinker, struct zs_pool, | |
2090 | shrinker); | |
2091 | ||
ab9d306d SS |
2092 | /* |
2093 | * Compact classes and calculate compaction delta. | |
2094 | * Can run concurrently with a manually triggered | |
2095 | * (by user) compaction. | |
2096 | */ | |
23959281 | 2097 | pages_freed = zs_compact(pool); |
ab9d306d SS |
2098 | |
2099 | return pages_freed ? pages_freed : SHRINK_STOP; | |
2100 | } | |
2101 | ||
2102 | static unsigned long zs_shrinker_count(struct shrinker *shrinker, | |
2103 | struct shrink_control *sc) | |
2104 | { | |
2105 | int i; | |
2106 | struct size_class *class; | |
2107 | unsigned long pages_to_free = 0; | |
2108 | struct zs_pool *pool = container_of(shrinker, struct zs_pool, | |
2109 | shrinker); | |
2110 | ||
cf8e0fed | 2111 | for (i = ZS_SIZE_CLASSES - 1; i >= 0; i--) { |
ab9d306d | 2112 | class = pool->size_class[i]; |
ab9d306d SS |
2113 | if (class->index != i) |
2114 | continue; | |
2115 | ||
ab9d306d | 2116 | pages_to_free += zs_can_compact(class); |
ab9d306d SS |
2117 | } |
2118 | ||
2119 | return pages_to_free; | |
2120 | } | |
2121 | ||
2122 | static void zs_unregister_shrinker(struct zs_pool *pool) | |
2123 | { | |
93144ca3 | 2124 | unregister_shrinker(&pool->shrinker); |
ab9d306d SS |
2125 | } |
2126 | ||
2127 | static int zs_register_shrinker(struct zs_pool *pool) | |
2128 | { | |
2129 | pool->shrinker.scan_objects = zs_shrinker_scan; | |
2130 | pool->shrinker.count_objects = zs_shrinker_count; | |
2131 | pool->shrinker.batch = 0; | |
2132 | pool->shrinker.seeks = DEFAULT_SEEKS; | |
2133 | ||
e33c267a RG |
2134 | return register_shrinker(&pool->shrinker, "mm-zspool:%s", |
2135 | pool->name); | |
ab9d306d SS |
2136 | } |
2137 | ||
6260ae35 SS |
2138 | static int calculate_zspage_chain_size(int class_size) |
2139 | { | |
2140 | int i, min_waste = INT_MAX; | |
2141 | int chain_size = 1; | |
2142 | ||
e1d1f354 SS |
2143 | if (is_power_of_2(class_size)) |
2144 | return chain_size; | |
2145 | ||
6260ae35 SS |
2146 | for (i = 1; i <= ZS_MAX_PAGES_PER_ZSPAGE; i++) { |
2147 | int waste; | |
2148 | ||
2149 | waste = (i * PAGE_SIZE) % class_size; | |
2150 | if (waste < min_waste) { | |
2151 | min_waste = waste; | |
2152 | chain_size = i; | |
2153 | } | |
2154 | } | |
2155 | ||
2156 | return chain_size; | |
2157 | } | |
2158 | ||
00a61d86 | 2159 | /** |
66cdef66 | 2160 | * zs_create_pool - Creates an allocation pool to work from. |
fd854463 | 2161 | * @name: pool name to be created |
166cfda7 | 2162 | * |
66cdef66 GM |
2163 | * This function must be called before anything when using |
2164 | * the zsmalloc allocator. | |
166cfda7 | 2165 | * |
66cdef66 GM |
2166 | * On success, a pointer to the newly created pool is returned, |
2167 | * otherwise NULL. | |
396b7fd6 | 2168 | */ |
d0d8da2d | 2169 | struct zs_pool *zs_create_pool(const char *name) |
61989a80 | 2170 | { |
66cdef66 GM |
2171 | int i; |
2172 | struct zs_pool *pool; | |
2173 | struct size_class *prev_class = NULL; | |
61989a80 | 2174 | |
66cdef66 GM |
2175 | pool = kzalloc(sizeof(*pool), GFP_KERNEL); |
2176 | if (!pool) | |
2177 | return NULL; | |
61989a80 | 2178 | |
48b4800a | 2179 | init_deferred_free(pool); |
c0547d0b | 2180 | spin_lock_init(&pool->lock); |
d2658f20 | 2181 | atomic_set(&pool->compaction_in_progress, 0); |
61989a80 | 2182 | |
2e40e163 MK |
2183 | pool->name = kstrdup(name, GFP_KERNEL); |
2184 | if (!pool->name) | |
2185 | goto err; | |
2186 | ||
3783689a | 2187 | if (create_cache(pool)) |
2e40e163 MK |
2188 | goto err; |
2189 | ||
c60369f0 | 2190 | /* |
399d8eeb | 2191 | * Iterate reversely, because, size of size_class that we want to use |
66cdef66 | 2192 | * for merging should be larger or equal to current size. |
c60369f0 | 2193 | */ |
cf8e0fed | 2194 | for (i = ZS_SIZE_CLASSES - 1; i >= 0; i--) { |
66cdef66 GM |
2195 | int size; |
2196 | int pages_per_zspage; | |
64d90465 | 2197 | int objs_per_zspage; |
66cdef66 | 2198 | struct size_class *class; |
4c7ac972 | 2199 | int fullness; |
c60369f0 | 2200 | |
66cdef66 GM |
2201 | size = ZS_MIN_ALLOC_SIZE + i * ZS_SIZE_CLASS_DELTA; |
2202 | if (size > ZS_MAX_ALLOC_SIZE) | |
2203 | size = ZS_MAX_ALLOC_SIZE; | |
6260ae35 | 2204 | pages_per_zspage = calculate_zspage_chain_size(size); |
64d90465 | 2205 | objs_per_zspage = pages_per_zspage * PAGE_SIZE / size; |
61989a80 | 2206 | |
010b495e SS |
2207 | /* |
2208 | * We iterate from biggest down to smallest classes, | |
2209 | * so huge_class_size holds the size of the first huge | |
2210 | * class. Any object bigger than or equal to that will | |
2211 | * endup in the huge class. | |
2212 | */ | |
2213 | if (pages_per_zspage != 1 && objs_per_zspage != 1 && | |
2214 | !huge_class_size) { | |
2215 | huge_class_size = size; | |
2216 | /* | |
2217 | * The object uses ZS_HANDLE_SIZE bytes to store the | |
2218 | * handle. We need to subtract it, because zs_malloc() | |
2219 | * unconditionally adds handle size before it performs | |
2220 | * size class search - so object may be smaller than | |
2221 | * huge class size, yet it still can end up in the huge | |
2222 | * class because it grows by ZS_HANDLE_SIZE extra bytes | |
2223 | * right before class lookup. | |
2224 | */ | |
2225 | huge_class_size -= (ZS_HANDLE_SIZE - 1); | |
2226 | } | |
2227 | ||
66cdef66 GM |
2228 | /* |
2229 | * size_class is used for normal zsmalloc operation such | |
2230 | * as alloc/free for that size. Although it is natural that we | |
2231 | * have one size_class for each size, there is a chance that we | |
2232 | * can get more memory utilization if we use one size_class for | |
2233 | * many different sizes whose size_class have same | |
2234 | * characteristics. So, we makes size_class point to | |
2235 | * previous size_class if possible. | |
2236 | */ | |
2237 | if (prev_class) { | |
64d90465 | 2238 | if (can_merge(prev_class, pages_per_zspage, objs_per_zspage)) { |
66cdef66 GM |
2239 | pool->size_class[i] = prev_class; |
2240 | continue; | |
2241 | } | |
2242 | } | |
2243 | ||
2244 | class = kzalloc(sizeof(struct size_class), GFP_KERNEL); | |
2245 | if (!class) | |
2246 | goto err; | |
2247 | ||
2248 | class->size = size; | |
2249 | class->index = i; | |
2250 | class->pages_per_zspage = pages_per_zspage; | |
64d90465 | 2251 | class->objs_per_zspage = objs_per_zspage; |
66cdef66 | 2252 | pool->size_class[i] = class; |
4c7ac972 SS |
2253 | |
2254 | fullness = ZS_INUSE_RATIO_0; | |
2255 | while (fullness < NR_FULLNESS_GROUPS) { | |
3783689a | 2256 | INIT_LIST_HEAD(&class->fullness_list[fullness]); |
4c7ac972 SS |
2257 | fullness++; |
2258 | } | |
66cdef66 GM |
2259 | |
2260 | prev_class = class; | |
61989a80 NG |
2261 | } |
2262 | ||
d34f6157 DS |
2263 | /* debug only, don't abort if it fails */ |
2264 | zs_pool_stat_create(pool, name); | |
0f050d99 | 2265 | |
ab9d306d | 2266 | /* |
93144ca3 AK |
2267 | * Not critical since shrinker is only used to trigger internal |
2268 | * defragmentation of the pool which is pretty optional thing. If | |
2269 | * registration fails we still can use the pool normally and user can | |
2270 | * trigger compaction manually. Thus, ignore return code. | |
ab9d306d | 2271 | */ |
93144ca3 AK |
2272 | zs_register_shrinker(pool); |
2273 | ||
66cdef66 GM |
2274 | return pool; |
2275 | ||
2276 | err: | |
2277 | zs_destroy_pool(pool); | |
2278 | return NULL; | |
61989a80 | 2279 | } |
66cdef66 | 2280 | EXPORT_SYMBOL_GPL(zs_create_pool); |
61989a80 | 2281 | |
66cdef66 | 2282 | void zs_destroy_pool(struct zs_pool *pool) |
61989a80 | 2283 | { |
66cdef66 | 2284 | int i; |
61989a80 | 2285 | |
ab9d306d | 2286 | zs_unregister_shrinker(pool); |
68f2736a | 2287 | zs_flush_migration(pool); |
0f050d99 GM |
2288 | zs_pool_stat_destroy(pool); |
2289 | ||
cf8e0fed | 2290 | for (i = 0; i < ZS_SIZE_CLASSES; i++) { |
66cdef66 GM |
2291 | int fg; |
2292 | struct size_class *class = pool->size_class[i]; | |
61989a80 | 2293 | |
4249a05f AR |
2294 | if (!class) |
2295 | continue; | |
2296 | ||
66cdef66 GM |
2297 | if (class->index != i) |
2298 | continue; | |
61989a80 | 2299 | |
4c7ac972 SS |
2300 | for (fg = ZS_INUSE_RATIO_0; fg < NR_FULLNESS_GROUPS; fg++) { |
2301 | if (list_empty(&class->fullness_list[fg])) | |
2302 | continue; | |
2303 | ||
2304 | pr_err("Class-%d fullness group %d is not empty\n", | |
2305 | class->size, fg); | |
66cdef66 GM |
2306 | } |
2307 | kfree(class); | |
2308 | } | |
f553646a | 2309 | |
3783689a | 2310 | destroy_cache(pool); |
0f050d99 | 2311 | kfree(pool->name); |
66cdef66 GM |
2312 | kfree(pool); |
2313 | } | |
2314 | EXPORT_SYMBOL_GPL(zs_destroy_pool); | |
b7418510 | 2315 | |
66cdef66 GM |
2316 | static int __init zs_init(void) |
2317 | { | |
48b4800a MK |
2318 | int ret; |
2319 | ||
215c89d0 SAS |
2320 | ret = cpuhp_setup_state(CPUHP_MM_ZS_PREPARE, "mm/zsmalloc:prepare", |
2321 | zs_cpu_prepare, zs_cpu_dead); | |
0f050d99 | 2322 | if (ret) |
68f2736a | 2323 | goto out; |
66cdef66 | 2324 | |
66cdef66 GM |
2325 | #ifdef CONFIG_ZPOOL |
2326 | zpool_register_driver(&zs_zpool_driver); | |
2327 | #endif | |
0f050d99 | 2328 | |
4abaac9b DS |
2329 | zs_stat_init(); |
2330 | ||
66cdef66 | 2331 | return 0; |
0f050d99 | 2332 | |
48b4800a | 2333 | out: |
0f050d99 | 2334 | return ret; |
61989a80 | 2335 | } |
61989a80 | 2336 | |
66cdef66 | 2337 | static void __exit zs_exit(void) |
61989a80 | 2338 | { |
66cdef66 GM |
2339 | #ifdef CONFIG_ZPOOL |
2340 | zpool_unregister_driver(&zs_zpool_driver); | |
2341 | #endif | |
215c89d0 | 2342 | cpuhp_remove_state(CPUHP_MM_ZS_PREPARE); |
0f050d99 GM |
2343 | |
2344 | zs_stat_exit(); | |
61989a80 | 2345 | } |
069f101f BH |
2346 | |
2347 | module_init(zs_init); | |
2348 | module_exit(zs_exit); | |
2349 | ||
2350 | MODULE_LICENSE("Dual BSD/GPL"); | |
2351 | MODULE_AUTHOR("Nitin Gupta <[email protected]>"); |