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b2441318 1/* SPDX-License-Identifier: GPL-2.0 */
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2#ifndef _LINUX_SLUB_DEF_H
3#define _LINUX_SLUB_DEF_H
4
5/*
6 * SLUB : A Slab allocator without object queues.
7 *
cde53535 8 * (C) 2007 SGI, Christoph Lameter
81819f0f 9 */
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10#include <linux/kobject.h>
11
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12enum stat_item {
13 ALLOC_FASTPATH, /* Allocation from cpu slab */
14 ALLOC_SLOWPATH, /* Allocation by getting a new cpu slab */
a941f836 15 FREE_FASTPATH, /* Free to cpu slab */
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16 FREE_SLOWPATH, /* Freeing not to cpu slab */
17 FREE_FROZEN, /* Freeing to frozen slab */
18 FREE_ADD_PARTIAL, /* Freeing moves slab to partial list */
19 FREE_REMOVE_PARTIAL, /* Freeing removes last object */
8028dcea 20 ALLOC_FROM_PARTIAL, /* Cpu slab acquired from node partial list */
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21 ALLOC_SLAB, /* Cpu slab acquired from page allocator */
22 ALLOC_REFILL, /* Refill cpu slab from slab freelist */
e36a2652 23 ALLOC_NODE_MISMATCH, /* Switching cpu slab */
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24 FREE_SLAB, /* Slab freed to the page allocator */
25 CPUSLAB_FLUSH, /* Abandoning of the cpu slab */
26 DEACTIVATE_FULL, /* Cpu slab was full when deactivated */
27 DEACTIVATE_EMPTY, /* Cpu slab was empty when deactivated */
28 DEACTIVATE_TO_HEAD, /* Cpu slab was moved to the head of partials */
29 DEACTIVATE_TO_TAIL, /* Cpu slab was moved to the tail of partials */
30 DEACTIVATE_REMOTE_FREES,/* Slab contained remotely freed objects */
03e404af 31 DEACTIVATE_BYPASS, /* Implicit deactivation */
65c3376a 32 ORDER_FALLBACK, /* Number of times fallback was necessary */
4fdccdfb 33 CMPXCHG_DOUBLE_CPU_FAIL,/* Failure of this_cpu_cmpxchg_double */
b789ef51 34 CMPXCHG_DOUBLE_FAIL, /* Number of times that cmpxchg double did not match */
49e22585 35 CPU_PARTIAL_ALLOC, /* Used cpu partial on alloc */
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36 CPU_PARTIAL_FREE, /* Refill cpu partial on free */
37 CPU_PARTIAL_NODE, /* Refill cpu partial from node partial */
38 CPU_PARTIAL_DRAIN, /* Drain cpu partial to node partial */
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39 NR_SLUB_STAT_ITEMS };
40
dfb4f096 41struct kmem_cache_cpu {
8a5ec0ba 42 void **freelist; /* Pointer to next available object */
8a5ec0ba 43 unsigned long tid; /* Globally unique transaction id */
da89b79e 44 struct page *page; /* The slab from which we are allocating */
a93cf07b 45#ifdef CONFIG_SLUB_CPU_PARTIAL
49e22585 46 struct page *partial; /* Partially allocated frozen slabs */
a93cf07b 47#endif
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48#ifdef CONFIG_SLUB_STATS
49 unsigned stat[NR_SLUB_STAT_ITEMS];
50#endif
4c93c355 51};
dfb4f096 52
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53#ifdef CONFIG_SLUB_CPU_PARTIAL
54#define slub_percpu_partial(c) ((c)->partial)
55
56#define slub_set_percpu_partial(c, p) \
57({ \
58 slub_percpu_partial(c) = (p)->next; \
59})
60
61#define slub_percpu_partial_read_once(c) READ_ONCE(slub_percpu_partial(c))
62#else
63#define slub_percpu_partial(c) NULL
64
65#define slub_set_percpu_partial(c, p)
66
67#define slub_percpu_partial_read_once(c) NULL
68#endif // CONFIG_SLUB_CPU_PARTIAL
69
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70/*
71 * Word size structure that can be atomically updated or read and that
72 * contains both the order and the number of objects that a slab of the
73 * given order would contain.
74 */
75struct kmem_cache_order_objects {
76 unsigned long x;
77};
78
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79/*
80 * Slab cache management.
81 */
82struct kmem_cache {
1b5ad248 83 struct kmem_cache_cpu __percpu *cpu_slab;
81819f0f 84 /* Used for retriving partial slabs etc */
d50112ed 85 slab_flags_t flags;
1a757fe5 86 unsigned long min_partial;
81819f0f 87 int size; /* The size of an object including meta data */
3b0efdfa 88 int object_size; /* The size of an object without meta data */
81819f0f 89 int offset; /* Free pointer offset. */
e6d0e1dc 90#ifdef CONFIG_SLUB_CPU_PARTIAL
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91 /* Number of per cpu partial objects to keep around */
92 unsigned int cpu_partial;
e6d0e1dc 93#endif
834f3d11 94 struct kmem_cache_order_objects oo;
81819f0f 95
81819f0f 96 /* Allocation and freeing of slabs */
205ab99d 97 struct kmem_cache_order_objects max;
65c3376a 98 struct kmem_cache_order_objects min;
b7a49f0d 99 gfp_t allocflags; /* gfp flags to use on each alloc */
81819f0f 100 int refcount; /* Refcount for slab cache destroy */
51cc5068 101 void (*ctor)(void *);
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102 int inuse; /* Offset to metadata */
103 int align; /* Alignment */
ab9a0f19 104 int reserved; /* Reserved bytes at the end of slabs */
d3111e6c 105 int red_left_pad; /* Left redzone padding size */
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106 const char *name; /* Name (only for display!) */
107 struct list_head list; /* List of slab caches */
ab4d5ed5 108#ifdef CONFIG_SYSFS
81819f0f 109 struct kobject kobj; /* For sysfs */
3b7b3140 110 struct work_struct kobj_remove_work;
0c710013 111#endif
127424c8 112#ifdef CONFIG_MEMCG
f7ce3190 113 struct memcg_cache_params memcg_params;
107dab5c 114 int max_attr_size; /* for propagation, maximum size of a stored attr */
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115#ifdef CONFIG_SYSFS
116 struct kset *memcg_kset;
117#endif
ba6c496e 118#endif
81819f0f 119
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120#ifdef CONFIG_SLAB_FREELIST_HARDENED
121 unsigned long random;
122#endif
123
81819f0f 124#ifdef CONFIG_NUMA
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125 /*
126 * Defragmentation by allocating from a remote node.
127 */
128 int remote_node_defrag_ratio;
81819f0f 129#endif
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130
131#ifdef CONFIG_SLAB_FREELIST_RANDOM
132 unsigned int *random_seq;
133#endif
134
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135#ifdef CONFIG_KASAN
136 struct kasan_cache kasan_info;
137#endif
138
7340cc84 139 struct kmem_cache_node *node[MAX_NUMNODES];
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140};
141
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142#ifdef CONFIG_SLUB_CPU_PARTIAL
143#define slub_cpu_partial(s) ((s)->cpu_partial)
144#define slub_set_cpu_partial(s, n) \
145({ \
146 slub_cpu_partial(s) = (n); \
147})
148#else
149#define slub_cpu_partial(s) (0)
150#define slub_set_cpu_partial(s, n)
151#endif // CONFIG_SLUB_CPU_PARTIAL
152
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153#ifdef CONFIG_SYSFS
154#define SLAB_SUPPORTS_SYSFS
ee32e808 155void sysfs_slab_unlink(struct kmem_cache *);
bf5eb3de 156void sysfs_slab_release(struct kmem_cache *);
41a21285 157#else
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158static inline void sysfs_slab_unlink(struct kmem_cache *s)
159{
160}
bf5eb3de 161static inline void sysfs_slab_release(struct kmem_cache *s)
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162{
163}
164#endif
165
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166void object_err(struct kmem_cache *s, struct page *page,
167 u8 *object, char *reason);
168
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169void *fixup_red_left(struct kmem_cache *s, void *p);
170
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171static inline void *nearest_obj(struct kmem_cache *cache, struct page *page,
172 void *x) {
173 void *object = x - (x - page_address(page)) % cache->size;
174 void *last_object = page_address(page) +
175 (page->objects - 1) * cache->size;
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176 void *result = (unlikely(object > last_object)) ? last_object : object;
177
178 result = fixup_red_left(cache, result);
179 return result;
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180}
181
81819f0f 182#endif /* _LINUX_SLUB_DEF_H */