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Greg Kroah-Hartmanb2441312017-11-01 15:07:57 +01001/* SPDX-License-Identifier: GPL-2.0 */
Christoph Lameter97d06602012-07-06 15:25:11 -05002#ifndef MM_SLAB_H
3#define MM_SLAB_H
4/*
5 * Internal slab definitions
6 */
7
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +01008/* Reuses the bits in struct page */
9struct slab {
10 unsigned long __page_flags;
Vlastimil Babka401fb122021-11-04 11:30:58 +010011
12#if defined(CONFIG_SLAB)
13
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010014 union {
15 struct list_head slab_list;
Vlastimil Babka401fb122021-11-04 11:30:58 +010016 struct rcu_head rcu_head;
17 };
18 struct kmem_cache *slab_cache;
19 void *freelist; /* array of free object indexes */
20 void *s_mem; /* first object */
21 unsigned int active;
22
23#elif defined(CONFIG_SLUB)
24
25 union {
26 struct list_head slab_list;
27 struct rcu_head rcu_head;
Vlastimil Babka9c01e9a2021-11-10 14:12:45 +010028#ifdef CONFIG_SLUB_CPU_PARTIAL
Vlastimil Babka401fb122021-11-04 11:30:58 +010029 struct {
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010030 struct slab *next;
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010031 int slabs; /* Nr of slabs left */
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010032 };
Vlastimil Babka9c01e9a2021-11-10 14:12:45 +010033#endif
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010034 };
Vlastimil Babka401fb122021-11-04 11:30:58 +010035 struct kmem_cache *slab_cache;
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010036 /* Double-word boundary */
37 void *freelist; /* first free object */
38 union {
Vlastimil Babka401fb122021-11-04 11:30:58 +010039 unsigned long counters;
40 struct {
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010041 unsigned inuse:16;
42 unsigned objects:15;
43 unsigned frozen:1;
44 };
45 };
Vlastimil Babka401fb122021-11-04 11:30:58 +010046 unsigned int __unused;
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010047
Vlastimil Babka401fb122021-11-04 11:30:58 +010048#elif defined(CONFIG_SLOB)
49
50 struct list_head slab_list;
51 void *__unused_1;
52 void *freelist; /* first free block */
Hyeonggon Yoob01af5c2021-12-12 06:52:41 +000053 long units;
54 unsigned int __unused_2;
Vlastimil Babka401fb122021-11-04 11:30:58 +010055
56#else
57#error "Unexpected slab allocator configured"
58#endif
59
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010060 atomic_t __page_refcount;
61#ifdef CONFIG_MEMCG
62 unsigned long memcg_data;
63#endif
64};
65
66#define SLAB_MATCH(pg, sl) \
67 static_assert(offsetof(struct page, pg) == offsetof(struct slab, sl))
68SLAB_MATCH(flags, __page_flags);
69SLAB_MATCH(compound_head, slab_list); /* Ensure bit 0 is clear */
Vlastimil Babka401fb122021-11-04 11:30:58 +010070#ifndef CONFIG_SLOB
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010071SLAB_MATCH(rcu_head, rcu_head);
Vlastimil Babka401fb122021-11-04 11:30:58 +010072#endif
Matthew Wilcox (Oracle)d1220192021-10-04 14:45:51 +010073SLAB_MATCH(_refcount, __page_refcount);
74#ifdef CONFIG_MEMCG
75SLAB_MATCH(memcg_data, memcg_data);
76#endif
77#undef SLAB_MATCH
78static_assert(sizeof(struct slab) <= sizeof(struct page));
79
80/**
81 * folio_slab - Converts from folio to slab.
82 * @folio: The folio.
83 *
84 * Currently struct slab is a different representation of a folio where
85 * folio_test_slab() is true.
86 *
87 * Return: The slab which contains this folio.
88 */
89#define folio_slab(folio) (_Generic((folio), \
90 const struct folio *: (const struct slab *)(folio), \
91 struct folio *: (struct slab *)(folio)))
92
93/**
94 * slab_folio - The folio allocated for a slab
95 * @slab: The slab.
96 *
97 * Slabs are allocated as folios that contain the individual objects and are
98 * using some fields in the first struct page of the folio - those fields are
99 * now accessed by struct slab. It is occasionally necessary to convert back to
100 * a folio in order to communicate with the rest of the mm. Please use this
101 * helper function instead of casting yourself, as the implementation may change
102 * in the future.
103 */
104#define slab_folio(s) (_Generic((s), \
105 const struct slab *: (const struct folio *)s, \
106 struct slab *: (struct folio *)s))
107
108/**
109 * page_slab - Converts from first struct page to slab.
110 * @p: The first (either head of compound or single) page of slab.
111 *
112 * A temporary wrapper to convert struct page to struct slab in situations where
113 * we know the page is the compound head, or single order-0 page.
114 *
115 * Long-term ideally everything would work with struct slab directly or go
116 * through folio to struct slab.
117 *
118 * Return: The slab which contains this page
119 */
120#define page_slab(p) (_Generic((p), \
121 const struct page *: (const struct slab *)(p), \
122 struct page *: (struct slab *)(p)))
123
124/**
125 * slab_page - The first struct page allocated for a slab
126 * @slab: The slab.
127 *
128 * A convenience wrapper for converting slab to the first struct page of the
129 * underlying folio, to communicate with code not yet converted to folio or
130 * struct slab.
131 */
132#define slab_page(s) folio_page(slab_folio(s), 0)
133
134/*
135 * If network-based swap is enabled, sl*b must keep track of whether pages
136 * were allocated from pfmemalloc reserves.
137 */
138static inline bool slab_test_pfmemalloc(const struct slab *slab)
139{
140 return folio_test_active((struct folio *)slab_folio(slab));
141}
142
143static inline void slab_set_pfmemalloc(struct slab *slab)
144{
145 folio_set_active(slab_folio(slab));
146}
147
148static inline void slab_clear_pfmemalloc(struct slab *slab)
149{
150 folio_clear_active(slab_folio(slab));
151}
152
153static inline void __slab_clear_pfmemalloc(struct slab *slab)
154{
155 __folio_clear_active(slab_folio(slab));
156}
157
158static inline void *slab_address(const struct slab *slab)
159{
160 return folio_address(slab_folio(slab));
161}
162
163static inline int slab_nid(const struct slab *slab)
164{
165 return folio_nid(slab_folio(slab));
166}
167
168static inline pg_data_t *slab_pgdat(const struct slab *slab)
169{
170 return folio_pgdat(slab_folio(slab));
171}
172
173static inline struct slab *virt_to_slab(const void *addr)
174{
175 struct folio *folio = virt_to_folio(addr);
176
177 if (!folio_test_slab(folio))
178 return NULL;
179
180 return folio_slab(folio);
181}
182
183static inline int slab_order(const struct slab *slab)
184{
185 return folio_order((struct folio *)slab_folio(slab));
186}
187
188static inline size_t slab_size(const struct slab *slab)
189{
190 return PAGE_SIZE << slab_order(slab);
191}
192
Joonsoo Kim07f361b2014-10-09 15:26:00 -0700193#ifdef CONFIG_SLOB
194/*
195 * Common fields provided in kmem_cache by all slab allocators
196 * This struct is either used directly by the allocator (SLOB)
197 * or the allocator must include definitions for all fields
198 * provided in kmem_cache_common in their definition of kmem_cache.
199 *
200 * Once we can do anonymous structs (C11 standard) we could put a
201 * anonymous struct definition in these allocators so that the
202 * separate allocations in the kmem_cache structure of SLAB and
203 * SLUB is no longer needed.
204 */
205struct kmem_cache {
206 unsigned int object_size;/* The original size of the object */
207 unsigned int size; /* The aligned/padded/added on size */
208 unsigned int align; /* Alignment as calculated */
Alexey Dobriyand50112e2017-11-15 17:32:18 -0800209 slab_flags_t flags; /* Active flags on the slab */
Alexey Dobriyan7bbdb812018-04-05 16:21:31 -0700210 unsigned int useroffset;/* Usercopy region offset */
211 unsigned int usersize; /* Usercopy region size */
Joonsoo Kim07f361b2014-10-09 15:26:00 -0700212 const char *name; /* Slab name for sysfs */
213 int refcount; /* Use counter */
214 void (*ctor)(void *); /* Called on object slot creation */
215 struct list_head list; /* List of all slab caches on the system */
216};
217
218#endif /* CONFIG_SLOB */
219
220#ifdef CONFIG_SLAB
221#include <linux/slab_def.h>
222#endif
223
224#ifdef CONFIG_SLUB
225#include <linux/slub_def.h>
226#endif
227
228#include <linux/memcontrol.h>
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700229#include <linux/fault-inject.h>
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700230#include <linux/kasan.h>
231#include <linux/kmemleak.h>
Thomas Garnier7c00fce2016-07-26 15:21:56 -0700232#include <linux/random.h>
Peter Zijlstrad92a8cf2017-03-03 10:13:38 +0100233#include <linux/sched/mm.h>
Joonsoo Kim07f361b2014-10-09 15:26:00 -0700234
Christoph Lameter97d06602012-07-06 15:25:11 -0500235/*
236 * State of the slab allocator.
237 *
238 * This is used to describe the states of the allocator during bootup.
239 * Allocators use this to gradually bootstrap themselves. Most allocators
240 * have the problem that the structures used for managing slab caches are
241 * allocated from slab caches themselves.
242 */
243enum slab_state {
244 DOWN, /* No slab functionality yet */
245 PARTIAL, /* SLUB: kmem_cache_node available */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000246 PARTIAL_NODE, /* SLAB: kmalloc size for node struct available */
Christoph Lameter97d06602012-07-06 15:25:11 -0500247 UP, /* Slab caches usable but not all extras yet */
248 FULL /* Everything is working */
249};
250
251extern enum slab_state slab_state;
252
Christoph Lameter18004c52012-07-06 15:25:12 -0500253/* The slab cache mutex protects the management structures during changes */
254extern struct mutex slab_mutex;
Christoph Lameter9b030cb2012-09-05 00:20:33 +0000255
256/* The list of all slab caches on the system */
Christoph Lameter18004c52012-07-06 15:25:12 -0500257extern struct list_head slab_caches;
258
Christoph Lameter9b030cb2012-09-05 00:20:33 +0000259/* The slab cache that manages slab cache information */
260extern struct kmem_cache *kmem_cache;
261
Vlastimil Babkaaf3b5f82017-02-22 15:41:05 -0800262/* A table of kmalloc cache names and sizes */
263extern const struct kmalloc_info_struct {
Pengfei Licb5d9fb2019-11-30 17:49:21 -0800264 const char *name[NR_KMALLOC_TYPES];
Alexey Dobriyan55de8b92018-04-05 16:20:29 -0700265 unsigned int size;
Vlastimil Babkaaf3b5f82017-02-22 15:41:05 -0800266} kmalloc_info[];
267
Christoph Lameterf97d5f62013-01-10 19:12:17 +0000268#ifndef CONFIG_SLOB
269/* Kmalloc array related functions */
Daniel Sanders34cc6992015-06-24 16:55:57 -0700270void setup_kmalloc_cache_index_table(void);
Alexey Dobriyand50112e2017-11-15 17:32:18 -0800271void create_kmalloc_caches(slab_flags_t);
Christoph Lameter2c59dd62013-01-10 19:14:19 +0000272
273/* Find the kmalloc slab corresponding for a certain size */
274struct kmem_cache *kmalloc_slab(size_t, gfp_t);
Christoph Lameterf97d5f62013-01-10 19:12:17 +0000275#endif
276
Long Li44405092020-08-06 23:18:28 -0700277gfp_t kmalloc_fix_flags(gfp_t flags);
Christoph Lameterf97d5f62013-01-10 19:12:17 +0000278
Christoph Lameter9b030cb2012-09-05 00:20:33 +0000279/* Functions provided by the slab allocators */
Alexey Dobriyand50112e2017-11-15 17:32:18 -0800280int __kmem_cache_create(struct kmem_cache *, slab_flags_t flags);
Christoph Lameter97d06602012-07-06 15:25:11 -0500281
Alexey Dobriyan55de8b92018-04-05 16:20:29 -0700282struct kmem_cache *create_kmalloc_cache(const char *name, unsigned int size,
283 slab_flags_t flags, unsigned int useroffset,
284 unsigned int usersize);
Christoph Lameter45530c42012-11-28 16:23:07 +0000285extern void create_boot_cache(struct kmem_cache *, const char *name,
Alexey Dobriyan361d5752018-04-05 16:20:33 -0700286 unsigned int size, slab_flags_t flags,
287 unsigned int useroffset, unsigned int usersize);
Christoph Lameter45530c42012-11-28 16:23:07 +0000288
Joonsoo Kim423c9292014-10-09 15:26:22 -0700289int slab_unmergeable(struct kmem_cache *s);
Alexey Dobriyanf4957d52018-04-05 16:20:37 -0700290struct kmem_cache *find_mergeable(unsigned size, unsigned align,
Alexey Dobriyand50112e2017-11-15 17:32:18 -0800291 slab_flags_t flags, const char *name, void (*ctor)(void *));
Joonsoo Kim12220de2014-10-09 15:26:24 -0700292#ifndef CONFIG_SLOB
Glauber Costa2633d7a2012-12-18 14:22:34 -0800293struct kmem_cache *
Alexey Dobriyanf4957d52018-04-05 16:20:37 -0700294__kmem_cache_alias(const char *name, unsigned int size, unsigned int align,
Alexey Dobriyand50112e2017-11-15 17:32:18 -0800295 slab_flags_t flags, void (*ctor)(void *));
Joonsoo Kim423c9292014-10-09 15:26:22 -0700296
Alexey Dobriyan0293d1f2018-04-05 16:21:24 -0700297slab_flags_t kmem_cache_flags(unsigned int object_size,
Nikolay Borisov37540002021-02-24 12:00:58 -0800298 slab_flags_t flags, const char *name);
Christoph Lametercbb79692012-09-05 00:18:32 +0000299#else
Glauber Costa2633d7a2012-12-18 14:22:34 -0800300static inline struct kmem_cache *
Alexey Dobriyanf4957d52018-04-05 16:20:37 -0700301__kmem_cache_alias(const char *name, unsigned int size, unsigned int align,
Alexey Dobriyand50112e2017-11-15 17:32:18 -0800302 slab_flags_t flags, void (*ctor)(void *))
Christoph Lametercbb79692012-09-05 00:18:32 +0000303{ return NULL; }
Joonsoo Kim423c9292014-10-09 15:26:22 -0700304
Alexey Dobriyan0293d1f2018-04-05 16:21:24 -0700305static inline slab_flags_t kmem_cache_flags(unsigned int object_size,
Nikolay Borisov37540002021-02-24 12:00:58 -0800306 slab_flags_t flags, const char *name)
Joonsoo Kim423c9292014-10-09 15:26:22 -0700307{
308 return flags;
309}
Christoph Lametercbb79692012-09-05 00:18:32 +0000310#endif
311
312
Glauber Costad8843922012-10-17 15:36:51 +0400313/* Legal flag mask for kmem_cache_create(), for various configurations */
Nicolas Boichat6d6ea1e2019-03-28 20:43:42 -0700314#define SLAB_CORE_FLAGS (SLAB_HWCACHE_ALIGN | SLAB_CACHE_DMA | \
315 SLAB_CACHE_DMA32 | SLAB_PANIC | \
Paul E. McKenney5f0d5a32017-01-18 02:53:44 -0800316 SLAB_TYPESAFE_BY_RCU | SLAB_DEBUG_OBJECTS )
Glauber Costad8843922012-10-17 15:36:51 +0400317
318#if defined(CONFIG_DEBUG_SLAB)
319#define SLAB_DEBUG_FLAGS (SLAB_RED_ZONE | SLAB_POISON | SLAB_STORE_USER)
320#elif defined(CONFIG_SLUB_DEBUG)
321#define SLAB_DEBUG_FLAGS (SLAB_RED_ZONE | SLAB_POISON | SLAB_STORE_USER | \
Laura Abbottbecfda62016-03-15 14:55:06 -0700322 SLAB_TRACE | SLAB_CONSISTENCY_CHECKS)
Glauber Costad8843922012-10-17 15:36:51 +0400323#else
324#define SLAB_DEBUG_FLAGS (0)
325#endif
326
327#if defined(CONFIG_SLAB)
328#define SLAB_CACHE_FLAGS (SLAB_MEM_SPREAD | SLAB_NOLEAKTRACE | \
Vladimir Davydov230e9fc2016-01-14 15:18:15 -0800329 SLAB_RECLAIM_ACCOUNT | SLAB_TEMPORARY | \
Levin, Alexander (Sasha Levin)75f296d2017-11-15 17:35:54 -0800330 SLAB_ACCOUNT)
Glauber Costad8843922012-10-17 15:36:51 +0400331#elif defined(CONFIG_SLUB)
332#define SLAB_CACHE_FLAGS (SLAB_NOLEAKTRACE | SLAB_RECLAIM_ACCOUNT | \
Levin, Alexander (Sasha Levin)75f296d2017-11-15 17:35:54 -0800333 SLAB_TEMPORARY | SLAB_ACCOUNT)
Glauber Costad8843922012-10-17 15:36:51 +0400334#else
Rustam Kovhaev34dbc3aa2021-11-19 16:43:37 -0800335#define SLAB_CACHE_FLAGS (SLAB_NOLEAKTRACE)
Glauber Costad8843922012-10-17 15:36:51 +0400336#endif
337
Thomas Garniere70954f2016-12-12 16:41:38 -0800338/* Common flags available with current configuration */
Glauber Costad8843922012-10-17 15:36:51 +0400339#define CACHE_CREATE_MASK (SLAB_CORE_FLAGS | SLAB_DEBUG_FLAGS | SLAB_CACHE_FLAGS)
340
Thomas Garniere70954f2016-12-12 16:41:38 -0800341/* Common flags permitted for kmem_cache_create */
342#define SLAB_FLAGS_PERMITTED (SLAB_CORE_FLAGS | \
343 SLAB_RED_ZONE | \
344 SLAB_POISON | \
345 SLAB_STORE_USER | \
346 SLAB_TRACE | \
347 SLAB_CONSISTENCY_CHECKS | \
348 SLAB_MEM_SPREAD | \
349 SLAB_NOLEAKTRACE | \
350 SLAB_RECLAIM_ACCOUNT | \
351 SLAB_TEMPORARY | \
Thomas Garniere70954f2016-12-12 16:41:38 -0800352 SLAB_ACCOUNT)
353
Shakeel Buttf9e13c02018-04-05 16:21:57 -0700354bool __kmem_cache_empty(struct kmem_cache *);
Christoph Lameter945cf2b2012-09-04 23:18:33 +0000355int __kmem_cache_shutdown(struct kmem_cache *);
Dmitry Safonov52b4b952016-02-17 13:11:37 -0800356void __kmem_cache_release(struct kmem_cache *);
Tejun Heoc9fc5862017-02-22 15:41:27 -0800357int __kmem_cache_shrink(struct kmem_cache *);
Christoph Lameter41a21282014-05-06 12:50:08 -0700358void slab_kmem_cache_release(struct kmem_cache *);
Christoph Lameter945cf2b2012-09-04 23:18:33 +0000359
Glauber Costab7454ad2012-10-19 18:20:25 +0400360struct seq_file;
361struct file;
Glauber Costab7454ad2012-10-19 18:20:25 +0400362
Glauber Costa0d7561c2012-10-19 18:20:27 +0400363struct slabinfo {
364 unsigned long active_objs;
365 unsigned long num_objs;
366 unsigned long active_slabs;
367 unsigned long num_slabs;
368 unsigned long shared_avail;
369 unsigned int limit;
370 unsigned int batchcount;
371 unsigned int shared;
372 unsigned int objects_per_slab;
373 unsigned int cache_order;
374};
375
376void get_slabinfo(struct kmem_cache *s, struct slabinfo *sinfo);
377void slabinfo_show_stats(struct seq_file *m, struct kmem_cache *s);
Glauber Costab7454ad2012-10-19 18:20:25 +0400378ssize_t slabinfo_write(struct file *file, const char __user *buffer,
379 size_t count, loff_t *ppos);
Glauber Costaba6c4962012-12-18 14:22:27 -0800380
Christoph Lameter484748f2015-09-04 15:45:34 -0700381/*
382 * Generic implementation of bulk operations
383 * These are useful for situations in which the allocator cannot
Jesper Dangaard Brouer9f706d62016-03-15 14:54:03 -0700384 * perform optimizations. In that case segments of the object listed
Christoph Lameter484748f2015-09-04 15:45:34 -0700385 * may be allocated or freed using these operations.
386 */
387void __kmem_cache_free_bulk(struct kmem_cache *, size_t, void **);
Jesper Dangaard Brouer865762a2015-11-20 15:57:58 -0800388int __kmem_cache_alloc_bulk(struct kmem_cache *, gfp_t, size_t, void **);
Christoph Lameter484748f2015-09-04 15:45:34 -0700389
Muchun Song1a984c42020-12-14 19:06:24 -0800390static inline enum node_stat_item cache_vmstat_idx(struct kmem_cache *s)
Roman Gushchin6cea1d52019-07-11 20:56:16 -0700391{
392 return (s->flags & SLAB_RECLAIM_ACCOUNT) ?
Roman Gushchind42f3242020-08-06 23:20:39 -0700393 NR_SLAB_RECLAIMABLE_B : NR_SLAB_UNRECLAIMABLE_B;
Roman Gushchin6cea1d52019-07-11 20:56:16 -0700394}
395
Vlastimil Babkae42f1742020-08-06 23:19:05 -0700396#ifdef CONFIG_SLUB_DEBUG
397#ifdef CONFIG_SLUB_DEBUG_ON
398DECLARE_STATIC_KEY_TRUE(slub_debug_enabled);
399#else
400DECLARE_STATIC_KEY_FALSE(slub_debug_enabled);
401#endif
402extern void print_tracking(struct kmem_cache *s, void *object);
Oliver Glitta1f9f78b2021-06-28 19:34:33 -0700403long validate_slab_cache(struct kmem_cache *s);
Marco Elver0d4a0622021-07-14 21:26:34 -0700404static inline bool __slub_debug_enabled(void)
405{
406 return static_branch_unlikely(&slub_debug_enabled);
407}
Vlastimil Babkae42f1742020-08-06 23:19:05 -0700408#else
409static inline void print_tracking(struct kmem_cache *s, void *object)
410{
411}
Marco Elver0d4a0622021-07-14 21:26:34 -0700412static inline bool __slub_debug_enabled(void)
413{
414 return false;
415}
Vlastimil Babkae42f1742020-08-06 23:19:05 -0700416#endif
417
418/*
419 * Returns true if any of the specified slub_debug flags is enabled for the
420 * cache. Use only for flags parsed by setup_slub_debug() as it also enables
421 * the static key.
422 */
423static inline bool kmem_cache_debug_flags(struct kmem_cache *s, slab_flags_t flags)
424{
Marco Elver0d4a0622021-07-14 21:26:34 -0700425 if (IS_ENABLED(CONFIG_SLUB_DEBUG))
426 VM_WARN_ON_ONCE(!(flags & SLAB_DEBUG_FLAGS));
427 if (__slub_debug_enabled())
Vlastimil Babkae42f1742020-08-06 23:19:05 -0700428 return s->flags & flags;
Vlastimil Babkae42f1742020-08-06 23:19:05 -0700429 return false;
430}
431
Kirill Tkhai84c07d12018-08-17 15:47:25 -0700432#ifdef CONFIG_MEMCG_KMEM
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100433/*
434 * slab_objcgs - get the object cgroups vector associated with a slab
435 * @slab: a pointer to the slab struct
436 *
437 * Returns a pointer to the object cgroups vector associated with the slab,
438 * or NULL if no such vector has been associated yet.
439 */
440static inline struct obj_cgroup **slab_objcgs(struct slab *slab)
441{
442 unsigned long memcg_data = READ_ONCE(slab->memcg_data);
443
444 VM_BUG_ON_PAGE(memcg_data && !(memcg_data & MEMCG_DATA_OBJCGS),
445 slab_page(slab));
446 VM_BUG_ON_PAGE(memcg_data & MEMCG_DATA_KMEM, slab_page(slab));
447
448 return (struct obj_cgroup **)(memcg_data & ~MEMCG_DATA_FLAGS_MASK);
449}
450
451int memcg_alloc_slab_cgroups(struct slab *slab, struct kmem_cache *s,
452 gfp_t gfp, bool new_slab);
Waiman Longfdbcb2a2021-06-28 19:37:19 -0700453void mod_objcg_state(struct obj_cgroup *objcg, struct pglist_data *pgdat,
454 enum node_stat_item idx, int nr);
Roman Gushchin286e04b2020-08-06 23:20:52 -0700455
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100456static inline void memcg_free_slab_cgroups(struct slab *slab)
Roman Gushchin286e04b2020-08-06 23:20:52 -0700457{
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100458 kfree(slab_objcgs(slab));
459 slab->memcg_data = 0;
Roman Gushchin286e04b2020-08-06 23:20:52 -0700460}
461
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700462static inline size_t obj_full_size(struct kmem_cache *s)
463{
464 /*
465 * For each accounted object there is an extra space which is used
466 * to store obj_cgroup membership. Charge it too.
467 */
468 return s->size + sizeof(struct obj_cgroup *);
469}
470
Roman Gushchinbecaba62020-12-05 22:14:45 -0800471/*
472 * Returns false if the allocation should fail.
473 */
474static inline bool memcg_slab_pre_alloc_hook(struct kmem_cache *s,
475 struct obj_cgroup **objcgp,
476 size_t objects, gfp_t flags)
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700477{
Roman Gushchin98556092020-08-06 23:21:10 -0700478 struct obj_cgroup *objcg;
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700479
Roman Gushchinbecaba62020-12-05 22:14:45 -0800480 if (!memcg_kmem_enabled())
481 return true;
482
483 if (!(flags & __GFP_ACCOUNT) && !(s->flags & SLAB_ACCOUNT))
484 return true;
485
Roman Gushchin98556092020-08-06 23:21:10 -0700486 objcg = get_obj_cgroup_from_current();
487 if (!objcg)
Roman Gushchinbecaba62020-12-05 22:14:45 -0800488 return true;
Roman Gushchin98556092020-08-06 23:21:10 -0700489
490 if (obj_cgroup_charge(objcg, flags, objects * obj_full_size(s))) {
491 obj_cgroup_put(objcg);
Roman Gushchinbecaba62020-12-05 22:14:45 -0800492 return false;
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700493 }
494
Roman Gushchinbecaba62020-12-05 22:14:45 -0800495 *objcgp = objcg;
496 return true;
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700497}
498
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700499static inline void memcg_slab_post_alloc_hook(struct kmem_cache *s,
500 struct obj_cgroup *objcg,
Roman Gushchin10befea2020-08-06 23:21:27 -0700501 gfp_t flags, size_t size,
502 void **p)
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700503{
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100504 struct slab *slab;
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700505 unsigned long off;
506 size_t i;
507
Roman Gushchinbecaba62020-12-05 22:14:45 -0800508 if (!memcg_kmem_enabled() || !objcg)
Roman Gushchin10befea2020-08-06 23:21:27 -0700509 return;
510
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700511 for (i = 0; i < size; i++) {
512 if (likely(p[i])) {
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100513 slab = virt_to_slab(p[i]);
Roman Gushchin10befea2020-08-06 23:21:27 -0700514
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100515 if (!slab_objcgs(slab) &&
516 memcg_alloc_slab_cgroups(slab, s, flags,
Roman Gushchin2e9bd482021-02-24 12:03:11 -0800517 false)) {
Roman Gushchin10befea2020-08-06 23:21:27 -0700518 obj_cgroup_uncharge(objcg, obj_full_size(s));
519 continue;
520 }
521
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100522 off = obj_to_index(s, slab, p[i]);
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700523 obj_cgroup_get(objcg);
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100524 slab_objcgs(slab)[off] = objcg;
525 mod_objcg_state(objcg, slab_pgdat(slab),
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700526 cache_vmstat_idx(s), obj_full_size(s));
527 } else {
528 obj_cgroup_uncharge(objcg, obj_full_size(s));
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700529 }
530 }
531 obj_cgroup_put(objcg);
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700532}
533
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700534static inline void memcg_slab_free_hook(struct kmem_cache *s_orig,
535 void **p, int objects)
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700536{
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700537 struct kmem_cache *s;
Roman Gushchin270c6a72020-12-01 13:58:28 -0800538 struct obj_cgroup **objcgs;
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700539 struct obj_cgroup *objcg;
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100540 struct slab *slab;
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700541 unsigned int off;
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700542 int i;
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700543
Roman Gushchin10befea2020-08-06 23:21:27 -0700544 if (!memcg_kmem_enabled())
545 return;
546
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700547 for (i = 0; i < objects; i++) {
548 if (unlikely(!p[i]))
549 continue;
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700550
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100551 slab = virt_to_slab(p[i]);
552 /* we could be given a kmalloc_large() object, skip those */
553 if (!slab)
554 continue;
555
556 objcgs = slab_objcgs(slab);
Roman Gushchin270c6a72020-12-01 13:58:28 -0800557 if (!objcgs)
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700558 continue;
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700559
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700560 if (!s_orig)
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100561 s = slab->slab_cache;
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700562 else
563 s = s_orig;
Roman Gushchin10befea2020-08-06 23:21:27 -0700564
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100565 off = obj_to_index(s, slab, p[i]);
Roman Gushchin270c6a72020-12-01 13:58:28 -0800566 objcg = objcgs[off];
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700567 if (!objcg)
568 continue;
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700569
Roman Gushchin270c6a72020-12-01 13:58:28 -0800570 objcgs[off] = NULL;
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700571 obj_cgroup_uncharge(objcg, obj_full_size(s));
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100572 mod_objcg_state(objcg, slab_pgdat(slab), cache_vmstat_idx(s),
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700573 -obj_full_size(s));
574 obj_cgroup_put(objcg);
575 }
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700576}
577
Kirill Tkhai84c07d12018-08-17 15:47:25 -0700578#else /* CONFIG_MEMCG_KMEM */
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100579static inline struct obj_cgroup **slab_objcgs(struct slab *slab)
580{
581 return NULL;
582}
583
Roman Gushchin98556092020-08-06 23:21:10 -0700584static inline struct mem_cgroup *memcg_from_slab_obj(void *ptr)
Roman Gushchin4d96ba32019-07-11 20:56:31 -0700585{
586 return NULL;
587}
588
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100589static inline int memcg_alloc_slab_cgroups(struct slab *slab,
Roman Gushchin2e9bd482021-02-24 12:03:11 -0800590 struct kmem_cache *s, gfp_t gfp,
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100591 bool new_slab)
Roman Gushchin286e04b2020-08-06 23:20:52 -0700592{
593 return 0;
594}
595
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100596static inline void memcg_free_slab_cgroups(struct slab *slab)
Roman Gushchin286e04b2020-08-06 23:20:52 -0700597{
598}
599
Roman Gushchinbecaba62020-12-05 22:14:45 -0800600static inline bool memcg_slab_pre_alloc_hook(struct kmem_cache *s,
601 struct obj_cgroup **objcgp,
602 size_t objects, gfp_t flags)
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700603{
Roman Gushchinbecaba62020-12-05 22:14:45 -0800604 return true;
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700605}
606
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700607static inline void memcg_slab_post_alloc_hook(struct kmem_cache *s,
608 struct obj_cgroup *objcg,
Roman Gushchin10befea2020-08-06 23:21:27 -0700609 gfp_t flags, size_t size,
610 void **p)
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700611{
612}
613
Bharata B Raod1b2cf62020-10-13 16:53:09 -0700614static inline void memcg_slab_free_hook(struct kmem_cache *s,
615 void **p, int objects)
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700616{
617}
Kirill Tkhai84c07d12018-08-17 15:47:25 -0700618#endif /* CONFIG_MEMCG_KMEM */
Glauber Costab9ce5ef2012-12-18 14:22:46 -0800619
Vlastimil Babka401fb122021-11-04 11:30:58 +0100620#ifndef CONFIG_SLOB
Kees Cooka64b5372019-07-11 20:53:26 -0700621static inline struct kmem_cache *virt_to_cache(const void *obj)
622{
Matthew Wilcox (Oracle)82c17752021-10-04 14:45:53 +0100623 struct slab *slab;
Kees Cooka64b5372019-07-11 20:53:26 -0700624
Matthew Wilcox (Oracle)82c17752021-10-04 14:45:53 +0100625 slab = virt_to_slab(obj);
626 if (WARN_ONCE(!slab, "%s: Object is not a Slab page!\n",
Kees Cooka64b5372019-07-11 20:53:26 -0700627 __func__))
628 return NULL;
Matthew Wilcox (Oracle)82c17752021-10-04 14:45:53 +0100629 return slab->slab_cache;
Kees Cooka64b5372019-07-11 20:53:26 -0700630}
631
Matthew Wilcox (Oracle)b9186532021-10-04 14:45:52 +0100632static __always_inline void account_slab(struct slab *slab, int order,
633 struct kmem_cache *s, gfp_t gfp)
Roman Gushchin6cea1d52019-07-11 20:56:16 -0700634{
Roman Gushchin2e9bd482021-02-24 12:03:11 -0800635 if (memcg_kmem_enabled() && (s->flags & SLAB_ACCOUNT))
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100636 memcg_alloc_slab_cgroups(slab, s, gfp, true);
Roman Gushchin2e9bd482021-02-24 12:03:11 -0800637
Matthew Wilcox (Oracle)b9186532021-10-04 14:45:52 +0100638 mod_node_page_state(slab_pgdat(slab), cache_vmstat_idx(s),
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700639 PAGE_SIZE << order);
Roman Gushchin6cea1d52019-07-11 20:56:16 -0700640}
641
Matthew Wilcox (Oracle)b9186532021-10-04 14:45:52 +0100642static __always_inline void unaccount_slab(struct slab *slab, int order,
643 struct kmem_cache *s)
Roman Gushchin6cea1d52019-07-11 20:56:16 -0700644{
Roman Gushchin10befea2020-08-06 23:21:27 -0700645 if (memcg_kmem_enabled())
Vlastimil Babka4b5f8d9a2021-11-02 22:42:04 +0100646 memcg_free_slab_cgroups(slab);
Roman Gushchin98556092020-08-06 23:21:10 -0700647
Matthew Wilcox (Oracle)b9186532021-10-04 14:45:52 +0100648 mod_node_page_state(slab_pgdat(slab), cache_vmstat_idx(s),
Roman Gushchinf2fe7b02020-08-06 23:20:59 -0700649 -(PAGE_SIZE << order));
Roman Gushchin6cea1d52019-07-11 20:56:16 -0700650}
651
Vlastimil Babkae42f1742020-08-06 23:19:05 -0700652static inline struct kmem_cache *cache_from_obj(struct kmem_cache *s, void *x)
653{
654 struct kmem_cache *cachep;
655
656 if (!IS_ENABLED(CONFIG_SLAB_FREELIST_HARDENED) &&
Vlastimil Babkae42f1742020-08-06 23:19:05 -0700657 !kmem_cache_debug_flags(s, SLAB_CONSISTENCY_CHECKS))
658 return s;
659
660 cachep = virt_to_cache(x);
Roman Gushchin10befea2020-08-06 23:21:27 -0700661 if (WARN(cachep && cachep != s,
Vlastimil Babkae42f1742020-08-06 23:19:05 -0700662 "%s: Wrong slab cache. %s but object is from %s\n",
663 __func__, s->name, cachep->name))
664 print_tracking(cachep, x);
665 return cachep;
666}
Vlastimil Babka401fb122021-11-04 11:30:58 +0100667#endif /* CONFIG_SLOB */
Vlastimil Babkae42f1742020-08-06 23:19:05 -0700668
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700669static inline size_t slab_ksize(const struct kmem_cache *s)
670{
671#ifndef CONFIG_SLUB
672 return s->object_size;
673
674#else /* CONFIG_SLUB */
675# ifdef CONFIG_SLUB_DEBUG
676 /*
677 * Debugging requires use of the padding between object
678 * and whatever may come after it.
679 */
680 if (s->flags & (SLAB_RED_ZONE | SLAB_POISON))
681 return s->object_size;
682# endif
Alexander Potapenko80a92012016-07-28 15:49:07 -0700683 if (s->flags & SLAB_KASAN)
684 return s->object_size;
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700685 /*
686 * If we have the need to store the freelist pointer
687 * back there or track user information then we can
688 * only use the space before that information.
689 */
Paul E. McKenney5f0d5a32017-01-18 02:53:44 -0800690 if (s->flags & (SLAB_TYPESAFE_BY_RCU | SLAB_STORE_USER))
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700691 return s->inuse;
692 /*
693 * Else we can use all the padding etc for the allocation
694 */
695 return s->size;
696#endif
697}
698
699static inline struct kmem_cache *slab_pre_alloc_hook(struct kmem_cache *s,
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700700 struct obj_cgroup **objcgp,
701 size_t size, gfp_t flags)
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700702{
703 flags &= gfp_allowed_mask;
Peter Zijlstrad92a8cf2017-03-03 10:13:38 +0100704
Daniel Vetter95d6c702020-12-14 19:08:34 -0800705 might_alloc(flags);
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700706
Jesper Dangaard Brouerfab99632016-03-15 14:53:38 -0700707 if (should_failslab(s, flags))
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700708 return NULL;
709
Roman Gushchinbecaba62020-12-05 22:14:45 -0800710 if (!memcg_slab_pre_alloc_hook(s, objcgp, size, flags))
711 return NULL;
Vladimir Davydov45264772016-07-26 15:24:21 -0700712
713 return s;
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700714}
715
Roman Gushchin964d4bd2020-08-06 23:20:56 -0700716static inline void slab_post_alloc_hook(struct kmem_cache *s,
Andrey Konovalovda844b72021-04-29 23:00:06 -0700717 struct obj_cgroup *objcg, gfp_t flags,
718 size_t size, void **p, bool init)
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700719{
720 size_t i;
721
722 flags &= gfp_allowed_mask;
Andrey Konovalovda844b72021-04-29 23:00:06 -0700723
724 /*
725 * As memory initialization might be integrated into KASAN,
726 * kasan_slab_alloc and initialization memset must be
727 * kept together to avoid discrepancies in behavior.
728 *
729 * As p[i] might get tagged, memset and kmemleak hook come after KASAN.
730 */
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700731 for (i = 0; i < size; i++) {
Andrey Konovalovda844b72021-04-29 23:00:06 -0700732 p[i] = kasan_slab_alloc(s, p[i], flags, init);
733 if (p[i] && init && !kasan_has_integrated_init())
734 memset(p[i], 0, s->object_size);
Andrey Konovalov53128242019-02-20 22:19:11 -0800735 kmemleak_alloc_recursive(p[i], s->object_size, 1,
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700736 s->flags, flags);
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700737 }
Vladimir Davydov45264772016-07-26 15:24:21 -0700738
Roman Gushchinbecaba62020-12-05 22:14:45 -0800739 memcg_slab_post_alloc_hook(s, objcg, flags, size, p);
Jesper Dangaard Brouer11c7aec2016-03-15 14:53:35 -0700740}
741
Christoph Lameter44c53562014-08-06 16:04:07 -0700742#ifndef CONFIG_SLOB
Christoph Lameterca349562013-01-10 19:14:19 +0000743/*
744 * The slab lists for all objects.
745 */
746struct kmem_cache_node {
747 spinlock_t list_lock;
748
749#ifdef CONFIG_SLAB
750 struct list_head slabs_partial; /* partial list first, better asm code */
751 struct list_head slabs_full;
752 struct list_head slabs_free;
David Rientjesbf00bd32016-12-12 16:41:44 -0800753 unsigned long total_slabs; /* length of all slab lists */
754 unsigned long free_slabs; /* length of free slab list only */
Christoph Lameterca349562013-01-10 19:14:19 +0000755 unsigned long free_objects;
756 unsigned int free_limit;
757 unsigned int colour_next; /* Per-node cache coloring */
758 struct array_cache *shared; /* shared per node */
Joonsoo Kimc8522a32014-08-06 16:04:29 -0700759 struct alien_cache **alien; /* on other nodes */
Christoph Lameterca349562013-01-10 19:14:19 +0000760 unsigned long next_reap; /* updated without locking */
761 int free_touched; /* updated without locking */
762#endif
763
764#ifdef CONFIG_SLUB
765 unsigned long nr_partial;
766 struct list_head partial;
767#ifdef CONFIG_SLUB_DEBUG
768 atomic_long_t nr_slabs;
769 atomic_long_t total_objects;
770 struct list_head full;
771#endif
772#endif
773
774};
Wanpeng Lie25839f2013-07-04 08:33:23 +0800775
Christoph Lameter44c53562014-08-06 16:04:07 -0700776static inline struct kmem_cache_node *get_node(struct kmem_cache *s, int node)
777{
778 return s->node[node];
779}
780
781/*
782 * Iterator over all nodes. The body will be executed for each node that has
783 * a kmem_cache_node structure allocated (which is true for all online nodes)
784 */
785#define for_each_kmem_cache_node(__s, __node, __n) \
Mikulas Patocka91635822014-10-09 15:26:20 -0700786 for (__node = 0; __node < nr_node_ids; __node++) \
787 if ((__n = get_node(__s, __node)))
Christoph Lameter44c53562014-08-06 16:04:07 -0700788
789#endif
790
Yang Shi852d8be2017-11-15 17:32:07 -0800791#if defined(CONFIG_SLAB) || defined(CONFIG_SLUB_DEBUG)
792void dump_unreclaimable_slab(void);
793#else
794static inline void dump_unreclaimable_slab(void)
795{
796}
797#endif
798
Alexander Potapenko55834c52016-05-20 16:59:11 -0700799void ___cache_free(struct kmem_cache *cache, void *x, unsigned long addr);
800
Thomas Garnier7c00fce2016-07-26 15:21:56 -0700801#ifdef CONFIG_SLAB_FREELIST_RANDOM
802int cache_random_seq_create(struct kmem_cache *cachep, unsigned int count,
803 gfp_t gfp);
804void cache_random_seq_destroy(struct kmem_cache *cachep);
805#else
806static inline int cache_random_seq_create(struct kmem_cache *cachep,
807 unsigned int count, gfp_t gfp)
808{
809 return 0;
810}
811static inline void cache_random_seq_destroy(struct kmem_cache *cachep) { }
812#endif /* CONFIG_SLAB_FREELIST_RANDOM */
813
Alexander Potapenko64713842019-07-11 20:59:19 -0700814static inline bool slab_want_init_on_alloc(gfp_t flags, struct kmem_cache *c)
815{
Kees Cook51cba1e2021-04-01 16:23:43 -0700816 if (static_branch_maybe(CONFIG_INIT_ON_ALLOC_DEFAULT_ON,
817 &init_on_alloc)) {
Alexander Potapenko64713842019-07-11 20:59:19 -0700818 if (c->ctor)
819 return false;
820 if (c->flags & (SLAB_TYPESAFE_BY_RCU | SLAB_POISON))
821 return flags & __GFP_ZERO;
822 return true;
823 }
824 return flags & __GFP_ZERO;
825}
826
827static inline bool slab_want_init_on_free(struct kmem_cache *c)
828{
Kees Cook51cba1e2021-04-01 16:23:43 -0700829 if (static_branch_maybe(CONFIG_INIT_ON_FREE_DEFAULT_ON,
830 &init_on_free))
Alexander Potapenko64713842019-07-11 20:59:19 -0700831 return !(c->ctor ||
832 (c->flags & (SLAB_TYPESAFE_BY_RCU | SLAB_POISON)));
833 return false;
834}
835
Faiyaz Mohammed64dd6842021-06-28 19:34:55 -0700836#if defined(CONFIG_DEBUG_FS) && defined(CONFIG_SLUB_DEBUG)
837void debugfs_slab_release(struct kmem_cache *);
838#else
839static inline void debugfs_slab_release(struct kmem_cache *s) { }
840#endif
841
Paul E. McKenney5bb1bb32021-01-07 13:46:11 -0800842#ifdef CONFIG_PRINTK
Paul E. McKenney8e7f37f2020-12-07 17:41:02 -0800843#define KS_ADDRS_COUNT 16
844struct kmem_obj_info {
845 void *kp_ptr;
Matthew Wilcox (Oracle)72132302021-10-04 14:45:55 +0100846 struct slab *kp_slab;
Paul E. McKenney8e7f37f2020-12-07 17:41:02 -0800847 void *kp_objp;
848 unsigned long kp_data_offset;
849 struct kmem_cache *kp_slab_cache;
850 void *kp_ret;
851 void *kp_stack[KS_ADDRS_COUNT];
Maninder Singhe548eaa2021-03-16 16:07:11 +0530852 void *kp_free_stack[KS_ADDRS_COUNT];
Paul E. McKenney8e7f37f2020-12-07 17:41:02 -0800853};
Matthew Wilcox (Oracle)72132302021-10-04 14:45:55 +0100854void kmem_obj_info(struct kmem_obj_info *kpp, void *object, struct slab *slab);
Paul E. McKenney5bb1bb32021-01-07 13:46:11 -0800855#endif
Paul E. McKenney8e7f37f2020-12-07 17:41:02 -0800856
Matthew Wilcox (Oracle)0b3eb0912021-10-04 14:45:56 +0100857#ifdef CONFIG_HAVE_HARDENED_USERCOPY_ALLOCATOR
858void __check_heap_object(const void *ptr, unsigned long n,
859 const struct slab *slab, bool to_user);
860#else
861static inline
862void __check_heap_object(const void *ptr, unsigned long n,
863 const struct slab *slab, bool to_user)
864{
865}
866#endif
867
Andrey Ryabinin5240ab42014-08-06 16:04:14 -0700868#endif /* MM_SLAB_H */