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Christoph Lameter81819f02007-05-06 14:49:36 -07001#ifndef _LINUX_SLUB_DEF_H
2#define _LINUX_SLUB_DEF_H
3
4/*
5 * SLUB : A Slab allocator without object queues.
6 *
Christoph Lametercde53532008-07-04 09:59:22 -07007 * (C) 2007 SGI, Christoph Lameter
Christoph Lameter81819f02007-05-06 14:49:36 -07008 */
9#include <linux/types.h>
10#include <linux/gfp.h>
11#include <linux/workqueue.h>
12#include <linux/kobject.h>
13
Richard Kennedy4a923792010-10-21 10:29:19 +010014#include <linux/kmemleak.h>
Li Zefan039ca4e2010-05-26 17:22:17 +080015
Christoph Lameter8ff12cf2008-02-07 17:47:41 -080016enum stat_item {
17 ALLOC_FASTPATH, /* Allocation from cpu slab */
18 ALLOC_SLOWPATH, /* Allocation by getting a new cpu slab */
19 FREE_FASTPATH, /* Free to cpu slub */
20 FREE_SLOWPATH, /* Freeing not to cpu slab */
21 FREE_FROZEN, /* Freeing to frozen slab */
22 FREE_ADD_PARTIAL, /* Freeing moves slab to partial list */
23 FREE_REMOVE_PARTIAL, /* Freeing removes last object */
24 ALLOC_FROM_PARTIAL, /* Cpu slab acquired from partial list */
25 ALLOC_SLAB, /* Cpu slab acquired from page allocator */
26 ALLOC_REFILL, /* Refill cpu slab from slab freelist */
27 FREE_SLAB, /* Slab freed to the page allocator */
28 CPUSLAB_FLUSH, /* Abandoning of the cpu slab */
29 DEACTIVATE_FULL, /* Cpu slab was full when deactivated */
30 DEACTIVATE_EMPTY, /* Cpu slab was empty when deactivated */
31 DEACTIVATE_TO_HEAD, /* Cpu slab was moved to the head of partials */
32 DEACTIVATE_TO_TAIL, /* Cpu slab was moved to the tail of partials */
33 DEACTIVATE_REMOTE_FREES,/* Slab contained remotely freed objects */
Christoph Lameter65c33762008-04-14 19:11:40 +030034 ORDER_FALLBACK, /* Number of times fallback was necessary */
Christoph Lameter4fdccdf2011-03-22 13:35:00 -050035 CMPXCHG_DOUBLE_CPU_FAIL,/* Failure of this_cpu_cmpxchg_double */
Christoph Lameterb789ef52011-06-01 12:25:49 -050036 CMPXCHG_DOUBLE_FAIL, /* Number of times that cmpxchg double did not match */
Christoph Lameter8ff12cf2008-02-07 17:47:41 -080037 NR_SLUB_STAT_ITEMS };
38
Christoph Lameterdfb4f092007-10-16 01:26:05 -070039struct kmem_cache_cpu {
Christoph Lameter8a5ec0b2011-02-25 11:38:54 -060040 void **freelist; /* Pointer to next available object */
Christoph Lameter8a5ec0b2011-02-25 11:38:54 -060041 unsigned long tid; /* Globally unique transaction id */
Christoph Lameterda89b792008-01-07 23:20:31 -080042 struct page *page; /* The slab from which we are allocating */
43 int node; /* The node of the page (or -1 for debug) */
Christoph Lameter8ff12cf2008-02-07 17:47:41 -080044#ifdef CONFIG_SLUB_STATS
45 unsigned stat[NR_SLUB_STAT_ITEMS];
46#endif
Christoph Lameter4c93c3552007-10-16 01:26:08 -070047};
Christoph Lameterdfb4f092007-10-16 01:26:05 -070048
Christoph Lameter81819f02007-05-06 14:49:36 -070049struct kmem_cache_node {
50 spinlock_t list_lock; /* Protect partial list and nr_partial */
51 unsigned long nr_partial;
Christoph Lameter81819f02007-05-06 14:49:36 -070052 struct list_head partial;
Christoph Lameter0c710012007-07-17 04:03:24 -070053#ifdef CONFIG_SLUB_DEBUG
Christoph Lameter0f389ec2008-04-14 18:53:02 +030054 atomic_long_t nr_slabs;
Christoph Lameter205ab992008-04-14 19:11:40 +030055 atomic_long_t total_objects;
Christoph Lameter643b1132007-05-06 14:49:42 -070056 struct list_head full;
Christoph Lameter0c710012007-07-17 04:03:24 -070057#endif
Christoph Lameter81819f02007-05-06 14:49:36 -070058};
59
60/*
Christoph Lameter834f3d12008-04-14 19:11:31 +030061 * Word size structure that can be atomically updated or read and that
62 * contains both the order and the number of objects that a slab of the
63 * given order would contain.
64 */
65struct kmem_cache_order_objects {
66 unsigned long x;
67};
68
69/*
Christoph Lameter81819f02007-05-06 14:49:36 -070070 * Slab cache management.
71 */
72struct kmem_cache {
Namhyung Kim1b5ad242010-08-07 14:29:22 +020073 struct kmem_cache_cpu __percpu *cpu_slab;
Christoph Lameter81819f02007-05-06 14:49:36 -070074 /* Used for retriving partial slabs etc */
75 unsigned long flags;
Christoph Lameter1a757fe2011-02-25 11:38:51 -060076 unsigned long min_partial;
Christoph Lameter81819f02007-05-06 14:49:36 -070077 int size; /* The size of an object including meta data */
78 int objsize; /* The size of an object without meta data */
79 int offset; /* Free pointer offset. */
Christoph Lameter834f3d12008-04-14 19:11:31 +030080 struct kmem_cache_order_objects oo;
Christoph Lameter81819f02007-05-06 14:49:36 -070081
Christoph Lameter81819f02007-05-06 14:49:36 -070082 /* Allocation and freeing of slabs */
Christoph Lameter205ab992008-04-14 19:11:40 +030083 struct kmem_cache_order_objects max;
Christoph Lameter65c33762008-04-14 19:11:40 +030084 struct kmem_cache_order_objects min;
Christoph Lameterb7a49f02008-02-14 14:21:32 -080085 gfp_t allocflags; /* gfp flags to use on each alloc */
Christoph Lameter81819f02007-05-06 14:49:36 -070086 int refcount; /* Refcount for slab cache destroy */
Alexey Dobriyan51cc5062008-07-25 19:45:34 -070087 void (*ctor)(void *);
Christoph Lameter81819f02007-05-06 14:49:36 -070088 int inuse; /* Offset to metadata */
89 int align; /* Alignment */
Lai Jiangshanab9a0f12011-03-10 15:21:48 +080090 int reserved; /* Reserved bytes at the end of slabs */
Christoph Lameter81819f02007-05-06 14:49:36 -070091 const char *name; /* Name (only for display!) */
92 struct list_head list; /* List of slab caches */
Christoph Lameterab4d5ed2010-10-05 13:57:26 -050093#ifdef CONFIG_SYSFS
Christoph Lameter81819f02007-05-06 14:49:36 -070094 struct kobject kobj; /* For sysfs */
Christoph Lameter0c710012007-07-17 04:03:24 -070095#endif
Christoph Lameter81819f02007-05-06 14:49:36 -070096
97#ifdef CONFIG_NUMA
Christoph Lameter98246012008-01-07 23:20:26 -080098 /*
99 * Defragmentation by allocating from a remote node.
100 */
101 int remote_node_defrag_ratio;
Christoph Lameter81819f02007-05-06 14:49:36 -0700102#endif
Christoph Lameter7340cc82010-09-28 08:10:26 -0500103 struct kmem_cache_node *node[MAX_NUMNODES];
Christoph Lameter81819f02007-05-06 14:49:36 -0700104};
105
106/*
107 * Kmalloc subsystem.
108 */
FUJITA Tomonoria6eb9fe2010-08-10 18:03:22 -0700109#if defined(ARCH_DMA_MINALIGN) && ARCH_DMA_MINALIGN > 8
110#define KMALLOC_MIN_SIZE ARCH_DMA_MINALIGN
Christoph Lameter4b356be2007-06-16 10:16:13 -0700111#else
112#define KMALLOC_MIN_SIZE 8
113#endif
114
115#define KMALLOC_SHIFT_LOW ilog2(KMALLOC_MIN_SIZE)
Christoph Lameter81819f02007-05-06 14:49:36 -0700116
FUJITA Tomonoria6eb9fe2010-08-10 18:03:22 -0700117#ifdef ARCH_DMA_MINALIGN
118#define ARCH_KMALLOC_MINALIGN ARCH_DMA_MINALIGN
119#else
David Woodhouse4581ced32010-05-19 12:02:14 +0100120#define ARCH_KMALLOC_MINALIGN __alignof__(unsigned long long)
121#endif
122
123#ifndef ARCH_SLAB_MINALIGN
124#define ARCH_SLAB_MINALIGN __alignof__(unsigned long long)
125#endif
126
Christoph Lameter81819f02007-05-06 14:49:36 -0700127/*
Christoph Lameterffadd4d2009-02-17 12:05:07 -0500128 * Maximum kmalloc object size handled by SLUB. Larger object allocations
129 * are passed through to the page allocator. The page allocator "fastpath"
130 * is relatively slow so we need this value sufficiently high so that
131 * performance critical objects are allocated through the SLUB fastpath.
132 *
133 * This should be dropped to PAGE_SIZE / 2 once the page allocator
134 * "fastpath" becomes competitive with the slab allocator fastpaths.
135 */
Pekka Enberg51735a72009-02-20 12:21:33 +0200136#define SLUB_MAX_SIZE (2 * PAGE_SIZE)
Christoph Lameterffadd4d2009-02-17 12:05:07 -0500137
Pekka Enberg51735a72009-02-20 12:21:33 +0200138#define SLUB_PAGE_SHIFT (PAGE_SHIFT + 2)
Christoph Lameterffadd4d2009-02-17 12:05:07 -0500139
Christoph Lameter756dee72009-12-18 16:26:21 -0600140#ifdef CONFIG_ZONE_DMA
141#define SLUB_DMA __GFP_DMA
Christoph Lameter756dee72009-12-18 16:26:21 -0600142#else
143/* Disable DMA functionality */
144#define SLUB_DMA (__force gfp_t)0
Christoph Lameter756dee72009-12-18 16:26:21 -0600145#endif
146
Christoph Lameterffadd4d2009-02-17 12:05:07 -0500147/*
Christoph Lameter81819f02007-05-06 14:49:36 -0700148 * We keep the general caches in an array of slab caches that are used for
149 * 2^x bytes of allocations.
150 */
Christoph Lameter51df1142010-08-20 12:37:15 -0500151extern struct kmem_cache *kmalloc_caches[SLUB_PAGE_SHIFT];
Christoph Lameter81819f02007-05-06 14:49:36 -0700152
153/*
154 * Sorry that the following has to be that ugly but some versions of GCC
155 * have trouble with constant propagation and loops.
156 */
Christoph Lameteraa137f92007-08-31 00:48:45 -0700157static __always_inline int kmalloc_index(size_t size)
Christoph Lameter81819f02007-05-06 14:49:36 -0700158{
Christoph Lameter272c1d22007-06-08 13:46:49 -0700159 if (!size)
160 return 0;
Christoph Lameter614410d2007-05-06 14:49:38 -0700161
Christoph Lameter4b356be2007-06-16 10:16:13 -0700162 if (size <= KMALLOC_MIN_SIZE)
163 return KMALLOC_SHIFT_LOW;
164
Aaro Koskinenacdfcd02009-08-28 14:28:54 +0300165 if (KMALLOC_MIN_SIZE <= 32 && size > 64 && size <= 96)
Christoph Lameter81819f02007-05-06 14:49:36 -0700166 return 1;
Aaro Koskinenacdfcd02009-08-28 14:28:54 +0300167 if (KMALLOC_MIN_SIZE <= 64 && size > 128 && size <= 192)
Christoph Lameter81819f02007-05-06 14:49:36 -0700168 return 2;
169 if (size <= 8) return 3;
170 if (size <= 16) return 4;
171 if (size <= 32) return 5;
172 if (size <= 64) return 6;
173 if (size <= 128) return 7;
174 if (size <= 256) return 8;
175 if (size <= 512) return 9;
176 if (size <= 1024) return 10;
177 if (size <= 2 * 1024) return 11;
Christoph Lameter6446faa2008-02-15 23:45:26 -0800178 if (size <= 4 * 1024) return 12;
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700179/*
180 * The following is only needed to support architectures with a larger page
Christoph Lameter3e0c2ab2011-05-20 09:42:48 -0500181 * size than 4k. We need to support 2 * PAGE_SIZE here. So for a 64k page
182 * size we would have to go up to 128k.
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700183 */
Christoph Lameter81819f02007-05-06 14:49:36 -0700184 if (size <= 8 * 1024) return 13;
185 if (size <= 16 * 1024) return 14;
186 if (size <= 32 * 1024) return 15;
187 if (size <= 64 * 1024) return 16;
188 if (size <= 128 * 1024) return 17;
189 if (size <= 256 * 1024) return 18;
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700190 if (size <= 512 * 1024) return 19;
Christoph Lameter81819f02007-05-06 14:49:36 -0700191 if (size <= 1024 * 1024) return 20;
Christoph Lameter81819f02007-05-06 14:49:36 -0700192 if (size <= 2 * 1024 * 1024) return 21;
Christoph Lameter3e0c2ab2011-05-20 09:42:48 -0500193 BUG();
194 return -1; /* Will never be reached */
Christoph Lameter81819f02007-05-06 14:49:36 -0700195
196/*
197 * What we really wanted to do and cannot do because of compiler issues is:
198 * int i;
199 * for (i = KMALLOC_SHIFT_LOW; i <= KMALLOC_SHIFT_HIGH; i++)
200 * if (size <= (1 << i))
201 * return i;
202 */
203}
204
205/*
206 * Find the slab cache for a given combination of allocation flags and size.
207 *
208 * This ought to end up with a global pointer to the right cache
209 * in kmalloc_caches.
210 */
Christoph Lameteraa137f92007-08-31 00:48:45 -0700211static __always_inline struct kmem_cache *kmalloc_slab(size_t size)
Christoph Lameter81819f02007-05-06 14:49:36 -0700212{
213 int index = kmalloc_index(size);
214
215 if (index == 0)
216 return NULL;
217
Christoph Lameter51df1142010-08-20 12:37:15 -0500218 return kmalloc_caches[index];
Christoph Lameter81819f02007-05-06 14:49:36 -0700219}
220
Paul Mundt6193a2f2007-07-15 23:38:22 -0700221void *kmem_cache_alloc(struct kmem_cache *, gfp_t);
222void *__kmalloc(size_t size, gfp_t flags);
223
Richard Kennedy4a923792010-10-21 10:29:19 +0100224static __always_inline void *
225kmalloc_order(size_t size, gfp_t flags, unsigned int order)
226{
227 void *ret = (void *) __get_free_pages(flags | __GFP_COMP, order);
228 kmemleak_alloc(ret, size, 1, flags);
229 return ret;
230}
231
Li Zefan0f24f122009-12-11 15:45:30 +0800232#ifdef CONFIG_TRACING
Richard Kennedy4a923792010-10-21 10:29:19 +0100233extern void *
234kmem_cache_alloc_trace(struct kmem_cache *s, gfp_t gfpflags, size_t size);
235extern void *kmalloc_order_trace(size_t size, gfp_t flags, unsigned int order);
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +0300236#else
237static __always_inline void *
Richard Kennedy4a923792010-10-21 10:29:19 +0100238kmem_cache_alloc_trace(struct kmem_cache *s, gfp_t gfpflags, size_t size)
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +0300239{
240 return kmem_cache_alloc(s, gfpflags);
241}
Richard Kennedy4a923792010-10-21 10:29:19 +0100242
243static __always_inline void *
244kmalloc_order_trace(size_t size, gfp_t flags, unsigned int order)
245{
246 return kmalloc_order(size, flags, order);
247}
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +0300248#endif
249
Pekka Enbergeada35e2008-02-11 22:47:46 +0200250static __always_inline void *kmalloc_large(size_t size, gfp_t flags)
251{
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +0300252 unsigned int order = get_order(size);
Richard Kennedy4a923792010-10-21 10:29:19 +0100253 return kmalloc_order_trace(size, flags, order);
Pekka Enbergeada35e2008-02-11 22:47:46 +0200254}
255
Christoph Lameteraa137f92007-08-31 00:48:45 -0700256static __always_inline void *kmalloc(size_t size, gfp_t flags)
Christoph Lameter81819f02007-05-06 14:49:36 -0700257{
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700258 if (__builtin_constant_p(size)) {
Christoph Lameterffadd4d2009-02-17 12:05:07 -0500259 if (size > SLUB_MAX_SIZE)
Pekka Enbergeada35e2008-02-11 22:47:46 +0200260 return kmalloc_large(size, flags);
Christoph Lameter81819f02007-05-06 14:49:36 -0700261
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700262 if (!(flags & SLUB_DMA)) {
263 struct kmem_cache *s = kmalloc_slab(size);
Christoph Lameter81819f02007-05-06 14:49:36 -0700264
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700265 if (!s)
266 return ZERO_SIZE_PTR;
267
Richard Kennedy4a923792010-10-21 10:29:19 +0100268 return kmem_cache_alloc_trace(s, flags, size);
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700269 }
270 }
271 return __kmalloc(size, flags);
Christoph Lameter81819f02007-05-06 14:49:36 -0700272}
273
Christoph Lameter81819f02007-05-06 14:49:36 -0700274#ifdef CONFIG_NUMA
Paul Mundt6193a2f2007-07-15 23:38:22 -0700275void *__kmalloc_node(size_t size, gfp_t flags, int node);
276void *kmem_cache_alloc_node(struct kmem_cache *, gfp_t flags, int node);
Christoph Lameter81819f02007-05-06 14:49:36 -0700277
Li Zefan0f24f122009-12-11 15:45:30 +0800278#ifdef CONFIG_TRACING
Richard Kennedy4a923792010-10-21 10:29:19 +0100279extern void *kmem_cache_alloc_node_trace(struct kmem_cache *s,
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +0300280 gfp_t gfpflags,
Richard Kennedy4a923792010-10-21 10:29:19 +0100281 int node, size_t size);
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +0300282#else
283static __always_inline void *
Richard Kennedy4a923792010-10-21 10:29:19 +0100284kmem_cache_alloc_node_trace(struct kmem_cache *s,
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +0300285 gfp_t gfpflags,
Richard Kennedy4a923792010-10-21 10:29:19 +0100286 int node, size_t size)
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +0300287{
288 return kmem_cache_alloc_node(s, gfpflags, node);
289}
290#endif
291
Christoph Lameteraa137f92007-08-31 00:48:45 -0700292static __always_inline void *kmalloc_node(size_t size, gfp_t flags, int node)
Christoph Lameter81819f02007-05-06 14:49:36 -0700293{
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700294 if (__builtin_constant_p(size) &&
Christoph Lameterffadd4d2009-02-17 12:05:07 -0500295 size <= SLUB_MAX_SIZE && !(flags & SLUB_DMA)) {
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700296 struct kmem_cache *s = kmalloc_slab(size);
Christoph Lameter81819f02007-05-06 14:49:36 -0700297
298 if (!s)
Christoph Lameter272c1d22007-06-08 13:46:49 -0700299 return ZERO_SIZE_PTR;
Christoph Lameter81819f02007-05-06 14:49:36 -0700300
Richard Kennedy4a923792010-10-21 10:29:19 +0100301 return kmem_cache_alloc_node_trace(s, flags, node, size);
Christoph Lameteraadb4bc2007-10-16 01:24:38 -0700302 }
303 return __kmalloc_node(size, flags, node);
Christoph Lameter81819f02007-05-06 14:49:36 -0700304}
305#endif
306
Christoph Lameter81819f02007-05-06 14:49:36 -0700307#endif /* _LINUX_SLUB_DEF_H */