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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * linux/mm/slab.c
3 * Written by Mark Hemment, 1996/97.
4 * (markhe@nextd.demon.co.uk)
5 *
6 * kmem_cache_destroy() + some cleanup - 1999 Andrea Arcangeli
7 *
8 * Major cleanup, different bufctl logic, per-cpu arrays
9 * (c) 2000 Manfred Spraul
10 *
11 * Cleanup, make the head arrays unconditional, preparation for NUMA
12 * (c) 2002 Manfred Spraul
13 *
14 * An implementation of the Slab Allocator as described in outline in;
15 * UNIX Internals: The New Frontiers by Uresh Vahalia
16 * Pub: Prentice Hall ISBN 0-13-101908-2
17 * or with a little more detail in;
18 * The Slab Allocator: An Object-Caching Kernel Memory Allocator
19 * Jeff Bonwick (Sun Microsystems).
20 * Presented at: USENIX Summer 1994 Technical Conference
21 *
22 * The memory is organized in caches, one cache for each object type.
23 * (e.g. inode_cache, dentry_cache, buffer_head, vm_area_struct)
24 * Each cache consists out of many slabs (they are small (usually one
25 * page long) and always contiguous), and each slab contains multiple
26 * initialized objects.
27 *
28 * This means, that your constructor is used only for newly allocated
Simon Arlott183ff222007-10-20 01:27:18 +020029 * slabs and you must pass objects with the same initializations to
Linus Torvalds1da177e2005-04-16 15:20:36 -070030 * kmem_cache_free.
31 *
32 * Each cache can only support one memory type (GFP_DMA, GFP_HIGHMEM,
33 * normal). If you need a special memory type, then must create a new
34 * cache for that memory type.
35 *
36 * In order to reduce fragmentation, the slabs are sorted in 3 groups:
37 * full slabs with 0 free objects
38 * partial slabs
39 * empty slabs with no allocated objects
40 *
41 * If partial slabs exist, then new allocations come from these slabs,
42 * otherwise from empty slabs or new slabs are allocated.
43 *
44 * kmem_cache_destroy() CAN CRASH if you try to allocate from the cache
45 * during kmem_cache_destroy(). The caller must prevent concurrent allocs.
46 *
47 * Each cache has a short per-cpu head array, most allocs
48 * and frees go into that array, and if that array overflows, then 1/2
49 * of the entries in the array are given back into the global cache.
50 * The head array is strictly LIFO and should improve the cache hit rates.
51 * On SMP, it additionally reduces the spinlock operations.
52 *
Andrew Mortona737b3e2006-03-22 00:08:11 -080053 * The c_cpuarray may not be read with enabled local interrupts -
Linus Torvalds1da177e2005-04-16 15:20:36 -070054 * it's changed with a smp_call_function().
55 *
56 * SMP synchronization:
57 * constructors and destructors are called without any locking.
Pekka Enberg343e0d72006-02-01 03:05:50 -080058 * Several members in struct kmem_cache and struct slab never change, they
Linus Torvalds1da177e2005-04-16 15:20:36 -070059 * are accessed without any locking.
60 * The per-cpu arrays are never accessed from the wrong cpu, no locking,
61 * and local interrupts are disabled so slab code is preempt-safe.
62 * The non-constant members are protected with a per-cache irq spinlock.
63 *
64 * Many thanks to Mark Hemment, who wrote another per-cpu slab patch
65 * in 2000 - many ideas in the current implementation are derived from
66 * his patch.
67 *
68 * Further notes from the original documentation:
69 *
70 * 11 April '97. Started multi-threading - markhe
Christoph Lameter18004c52012-07-06 15:25:12 -050071 * The global cache-chain is protected by the mutex 'slab_mutex'.
Linus Torvalds1da177e2005-04-16 15:20:36 -070072 * The sem is only needed when accessing/extending the cache-chain, which
73 * can never happen inside an interrupt (kmem_cache_create(),
74 * kmem_cache_shrink() and kmem_cache_reap()).
75 *
76 * At present, each engine can be growing a cache. This should be blocked.
77 *
Christoph Lametere498be72005-09-09 13:03:32 -070078 * 15 March 2005. NUMA slab allocator.
79 * Shai Fultheim <shai@scalex86.org>.
80 * Shobhit Dayal <shobhit@calsoftinc.com>
81 * Alok N Kataria <alokk@calsoftinc.com>
82 * Christoph Lameter <christoph@lameter.com>
83 *
84 * Modified the slab allocator to be node aware on NUMA systems.
85 * Each node has its own list of partial, free and full slabs.
86 * All object allocations for a node occur from node specific slab lists.
Linus Torvalds1da177e2005-04-16 15:20:36 -070087 */
88
Linus Torvalds1da177e2005-04-16 15:20:36 -070089#include <linux/slab.h>
90#include <linux/mm.h>
Randy Dunlapc9cf5522006-06-27 02:53:52 -070091#include <linux/poison.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070092#include <linux/swap.h>
93#include <linux/cache.h>
94#include <linux/interrupt.h>
95#include <linux/init.h>
96#include <linux/compiler.h>
Paul Jackson101a5002006-03-24 03:16:07 -080097#include <linux/cpuset.h>
Alexey Dobriyana0ec95a2008-10-06 00:59:10 +040098#include <linux/proc_fs.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070099#include <linux/seq_file.h>
100#include <linux/notifier.h>
101#include <linux/kallsyms.h>
102#include <linux/cpu.h>
103#include <linux/sysctl.h>
104#include <linux/module.h>
105#include <linux/rcupdate.h>
Paulo Marques543537b2005-06-23 00:09:02 -0700106#include <linux/string.h>
Andrew Morton138ae662006-12-06 20:36:41 -0800107#include <linux/uaccess.h>
Christoph Lametere498be72005-09-09 13:03:32 -0700108#include <linux/nodemask.h>
Catalin Marinasd5cff632009-06-11 13:22:40 +0100109#include <linux/kmemleak.h>
Christoph Lameterdc85da12006-01-18 17:42:36 -0800110#include <linux/mempolicy.h>
Ingo Molnarfc0abb12006-01-18 17:42:33 -0800111#include <linux/mutex.h>
Akinobu Mita8a8b6502006-12-08 02:39:44 -0800112#include <linux/fault-inject.h>
Ingo Molnare7eebaf2006-06-27 02:54:55 -0700113#include <linux/rtmutex.h>
Eric Dumazet6a2d7a92006-12-13 00:34:27 -0800114#include <linux/reciprocal_div.h>
Thomas Gleixner3ac7fe52008-04-30 00:55:01 -0700115#include <linux/debugobjects.h>
Pekka Enbergc175eea2008-05-09 20:35:53 +0200116#include <linux/kmemcheck.h>
David Rientjes8f9f8d92010-03-27 19:40:47 -0700117#include <linux/memory.h>
Linus Torvalds268bb0c2011-05-20 12:50:29 -0700118#include <linux/prefetch.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -0700119
Mel Gorman381760e2012-07-31 16:44:30 -0700120#include <net/sock.h>
121
Linus Torvalds1da177e2005-04-16 15:20:36 -0700122#include <asm/cacheflush.h>
123#include <asm/tlbflush.h>
124#include <asm/page.h>
125
Steven Rostedt4dee6b62012-01-09 17:15:42 -0500126#include <trace/events/kmem.h>
127
Mel Gorman072bb0a2012-07-31 16:43:58 -0700128#include "internal.h"
129
Glauber Costab9ce5ef2012-12-18 14:22:46 -0800130#include "slab.h"
131
Linus Torvalds1da177e2005-04-16 15:20:36 -0700132/*
Christoph Lameter50953fe2007-05-06 14:50:16 -0700133 * DEBUG - 1 for kmem_cache_create() to honour; SLAB_RED_ZONE & SLAB_POISON.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700134 * 0 for faster, smaller code (especially in the critical paths).
135 *
136 * STATS - 1 to collect stats for /proc/slabinfo.
137 * 0 for faster, smaller code (especially in the critical paths).
138 *
139 * FORCED_DEBUG - 1 enables SLAB_RED_ZONE and SLAB_POISON (if possible)
140 */
141
142#ifdef CONFIG_DEBUG_SLAB
143#define DEBUG 1
144#define STATS 1
145#define FORCED_DEBUG 1
146#else
147#define DEBUG 0
148#define STATS 0
149#define FORCED_DEBUG 0
150#endif
151
Linus Torvalds1da177e2005-04-16 15:20:36 -0700152/* Shouldn't this be in a header file somewhere? */
153#define BYTES_PER_WORD sizeof(void *)
David Woodhouse87a927c2007-07-04 21:26:44 -0400154#define REDZONE_ALIGN max(BYTES_PER_WORD, __alignof__(unsigned long long))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700155
Linus Torvalds1da177e2005-04-16 15:20:36 -0700156#ifndef ARCH_KMALLOC_FLAGS
157#define ARCH_KMALLOC_FLAGS SLAB_HWCACHE_ALIGN
158#endif
159
Mel Gorman072bb0a2012-07-31 16:43:58 -0700160/*
161 * true if a page was allocated from pfmemalloc reserves for network-based
162 * swap
163 */
164static bool pfmemalloc_active __read_mostly;
165
Linus Torvalds1da177e2005-04-16 15:20:36 -0700166/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700167 * struct array_cache
168 *
Linus Torvalds1da177e2005-04-16 15:20:36 -0700169 * Purpose:
170 * - LIFO ordering, to hand out cache-warm objects from _alloc
171 * - reduce the number of linked list operations
172 * - reduce spinlock operations
173 *
174 * The limit is stored in the per-cpu structure to reduce the data cache
175 * footprint.
176 *
177 */
178struct array_cache {
179 unsigned int avail;
180 unsigned int limit;
181 unsigned int batchcount;
182 unsigned int touched;
Christoph Lametere498be72005-09-09 13:03:32 -0700183 spinlock_t lock;
Robert P. J. Daybda5b652007-10-16 23:30:05 -0700184 void *entry[]; /*
Andrew Mortona737b3e2006-03-22 00:08:11 -0800185 * Must have this definition in here for the proper
186 * alignment of array_cache. Also simplifies accessing
187 * the entries.
Mel Gorman072bb0a2012-07-31 16:43:58 -0700188 *
189 * Entries should not be directly dereferenced as
190 * entries belonging to slabs marked pfmemalloc will
191 * have the lower bits set SLAB_OBJ_PFMEMALLOC
Andrew Mortona737b3e2006-03-22 00:08:11 -0800192 */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700193};
194
Mel Gorman072bb0a2012-07-31 16:43:58 -0700195#define SLAB_OBJ_PFMEMALLOC 1
196static inline bool is_obj_pfmemalloc(void *objp)
197{
198 return (unsigned long)objp & SLAB_OBJ_PFMEMALLOC;
199}
200
201static inline void set_obj_pfmemalloc(void **objp)
202{
203 *objp = (void *)((unsigned long)*objp | SLAB_OBJ_PFMEMALLOC);
204 return;
205}
206
207static inline void clear_obj_pfmemalloc(void **objp)
208{
209 *objp = (void *)((unsigned long)*objp & ~SLAB_OBJ_PFMEMALLOC);
210}
211
Andrew Mortona737b3e2006-03-22 00:08:11 -0800212/*
213 * bootstrap: The caches do not work without cpuarrays anymore, but the
214 * cpuarrays are allocated from the generic caches...
Linus Torvalds1da177e2005-04-16 15:20:36 -0700215 */
216#define BOOT_CPUCACHE_ENTRIES 1
217struct arraycache_init {
218 struct array_cache cache;
Pekka Enbergb28a02d2006-01-08 01:00:37 -0800219 void *entries[BOOT_CPUCACHE_ENTRIES];
Linus Torvalds1da177e2005-04-16 15:20:36 -0700220};
221
222/*
Christoph Lametere498be72005-09-09 13:03:32 -0700223 * Need this for bootstrapping a per node allocator.
224 */
Pekka Enberg556a1692008-01-25 08:20:51 +0200225#define NUM_INIT_LISTS (3 * MAX_NUMNODES)
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000226static struct kmem_cache_node __initdata init_kmem_cache_node[NUM_INIT_LISTS];
Christoph Lametere498be72005-09-09 13:03:32 -0700227#define CACHE_CACHE 0
Pekka Enberg556a1692008-01-25 08:20:51 +0200228#define SIZE_AC MAX_NUMNODES
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000229#define SIZE_NODE (2 * MAX_NUMNODES)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700230
Christoph Lametered11d9e2006-06-30 01:55:45 -0700231static int drain_freelist(struct kmem_cache *cache,
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000232 struct kmem_cache_node *n, int tofree);
Christoph Lametered11d9e2006-06-30 01:55:45 -0700233static void free_block(struct kmem_cache *cachep, void **objpp, int len,
234 int node);
Pekka Enberg83b519e2009-06-10 19:40:04 +0300235static int enable_cpucache(struct kmem_cache *cachep, gfp_t gfp);
David Howells65f27f32006-11-22 14:55:48 +0000236static void cache_reap(struct work_struct *unused);
Christoph Lametered11d9e2006-06-30 01:55:45 -0700237
Ingo Molnare0a42722006-06-23 02:03:46 -0700238static int slab_early_init = 1;
239
Christoph Lametere3366012013-01-10 19:14:18 +0000240#define INDEX_AC kmalloc_index(sizeof(struct arraycache_init))
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000241#define INDEX_NODE kmalloc_index(sizeof(struct kmem_cache_node))
Christoph Lametere498be72005-09-09 13:03:32 -0700242
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000243static void kmem_cache_node_init(struct kmem_cache_node *parent)
Christoph Lametere498be72005-09-09 13:03:32 -0700244{
245 INIT_LIST_HEAD(&parent->slabs_full);
246 INIT_LIST_HEAD(&parent->slabs_partial);
247 INIT_LIST_HEAD(&parent->slabs_free);
248 parent->shared = NULL;
249 parent->alien = NULL;
Ravikiran G Thirumalai2e1217c2006-02-04 23:27:56 -0800250 parent->colour_next = 0;
Christoph Lametere498be72005-09-09 13:03:32 -0700251 spin_lock_init(&parent->list_lock);
252 parent->free_objects = 0;
253 parent->free_touched = 0;
254}
255
Andrew Mortona737b3e2006-03-22 00:08:11 -0800256#define MAKE_LIST(cachep, listp, slab, nodeid) \
257 do { \
258 INIT_LIST_HEAD(listp); \
Christoph Lameter6a673682013-01-10 19:14:19 +0000259 list_splice(&(cachep->node[nodeid]->slab), listp); \
Christoph Lametere498be72005-09-09 13:03:32 -0700260 } while (0)
261
Andrew Mortona737b3e2006-03-22 00:08:11 -0800262#define MAKE_ALL_LISTS(cachep, ptr, nodeid) \
263 do { \
Christoph Lametere498be72005-09-09 13:03:32 -0700264 MAKE_LIST((cachep), (&(ptr)->slabs_full), slabs_full, nodeid); \
265 MAKE_LIST((cachep), (&(ptr)->slabs_partial), slabs_partial, nodeid); \
266 MAKE_LIST((cachep), (&(ptr)->slabs_free), slabs_free, nodeid); \
267 } while (0)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700268
Linus Torvalds1da177e2005-04-16 15:20:36 -0700269#define CFLGS_OFF_SLAB (0x80000000UL)
270#define OFF_SLAB(x) ((x)->flags & CFLGS_OFF_SLAB)
271
272#define BATCHREFILL_LIMIT 16
Andrew Mortona737b3e2006-03-22 00:08:11 -0800273/*
274 * Optimization question: fewer reaps means less probability for unnessary
275 * cpucache drain/refill cycles.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700276 *
Adrian Bunkdc6f3f22005-11-08 16:44:08 +0100277 * OTOH the cpuarrays can contain lots of objects,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700278 * which could lock up otherwise freeable slabs.
279 */
280#define REAPTIMEOUT_CPUC (2*HZ)
281#define REAPTIMEOUT_LIST3 (4*HZ)
282
283#if STATS
284#define STATS_INC_ACTIVE(x) ((x)->num_active++)
285#define STATS_DEC_ACTIVE(x) ((x)->num_active--)
286#define STATS_INC_ALLOCED(x) ((x)->num_allocations++)
287#define STATS_INC_GROWN(x) ((x)->grown++)
Christoph Lametered11d9e2006-06-30 01:55:45 -0700288#define STATS_ADD_REAPED(x,y) ((x)->reaped += (y))
Andrew Mortona737b3e2006-03-22 00:08:11 -0800289#define STATS_SET_HIGH(x) \
290 do { \
291 if ((x)->num_active > (x)->high_mark) \
292 (x)->high_mark = (x)->num_active; \
293 } while (0)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700294#define STATS_INC_ERR(x) ((x)->errors++)
295#define STATS_INC_NODEALLOCS(x) ((x)->node_allocs++)
Christoph Lametere498be72005-09-09 13:03:32 -0700296#define STATS_INC_NODEFREES(x) ((x)->node_frees++)
Ravikiran G Thirumalaifb7faf32006-04-10 22:52:54 -0700297#define STATS_INC_ACOVERFLOW(x) ((x)->node_overflow++)
Andrew Mortona737b3e2006-03-22 00:08:11 -0800298#define STATS_SET_FREEABLE(x, i) \
299 do { \
300 if ((x)->max_freeable < i) \
301 (x)->max_freeable = i; \
302 } while (0)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700303#define STATS_INC_ALLOCHIT(x) atomic_inc(&(x)->allochit)
304#define STATS_INC_ALLOCMISS(x) atomic_inc(&(x)->allocmiss)
305#define STATS_INC_FREEHIT(x) atomic_inc(&(x)->freehit)
306#define STATS_INC_FREEMISS(x) atomic_inc(&(x)->freemiss)
307#else
308#define STATS_INC_ACTIVE(x) do { } while (0)
309#define STATS_DEC_ACTIVE(x) do { } while (0)
310#define STATS_INC_ALLOCED(x) do { } while (0)
311#define STATS_INC_GROWN(x) do { } while (0)
Andi Kleen4e60c862010-08-09 17:19:03 -0700312#define STATS_ADD_REAPED(x,y) do { (void)(y); } while (0)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700313#define STATS_SET_HIGH(x) do { } while (0)
314#define STATS_INC_ERR(x) do { } while (0)
315#define STATS_INC_NODEALLOCS(x) do { } while (0)
Christoph Lametere498be72005-09-09 13:03:32 -0700316#define STATS_INC_NODEFREES(x) do { } while (0)
Ravikiran G Thirumalaifb7faf32006-04-10 22:52:54 -0700317#define STATS_INC_ACOVERFLOW(x) do { } while (0)
Andrew Mortona737b3e2006-03-22 00:08:11 -0800318#define STATS_SET_FREEABLE(x, i) do { } while (0)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700319#define STATS_INC_ALLOCHIT(x) do { } while (0)
320#define STATS_INC_ALLOCMISS(x) do { } while (0)
321#define STATS_INC_FREEHIT(x) do { } while (0)
322#define STATS_INC_FREEMISS(x) do { } while (0)
323#endif
324
325#if DEBUG
Linus Torvalds1da177e2005-04-16 15:20:36 -0700326
Andrew Mortona737b3e2006-03-22 00:08:11 -0800327/*
328 * memory layout of objects:
Linus Torvalds1da177e2005-04-16 15:20:36 -0700329 * 0 : objp
Manfred Spraul3dafccf2006-02-01 03:05:42 -0800330 * 0 .. cachep->obj_offset - BYTES_PER_WORD - 1: padding. This ensures that
Linus Torvalds1da177e2005-04-16 15:20:36 -0700331 * the end of an object is aligned with the end of the real
332 * allocation. Catches writes behind the end of the allocation.
Manfred Spraul3dafccf2006-02-01 03:05:42 -0800333 * cachep->obj_offset - BYTES_PER_WORD .. cachep->obj_offset - 1:
Linus Torvalds1da177e2005-04-16 15:20:36 -0700334 * redzone word.
Manfred Spraul3dafccf2006-02-01 03:05:42 -0800335 * cachep->obj_offset: The real object.
Christoph Lameter3b0efdf2012-06-13 10:24:57 -0500336 * cachep->size - 2* BYTES_PER_WORD: redzone word [BYTES_PER_WORD long]
337 * cachep->size - 1* BYTES_PER_WORD: last caller address
Andrew Mortona737b3e2006-03-22 00:08:11 -0800338 * [BYTES_PER_WORD long]
Linus Torvalds1da177e2005-04-16 15:20:36 -0700339 */
Pekka Enberg343e0d72006-02-01 03:05:50 -0800340static int obj_offset(struct kmem_cache *cachep)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700341{
Manfred Spraul3dafccf2006-02-01 03:05:42 -0800342 return cachep->obj_offset;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700343}
344
David Woodhouseb46b8f12007-05-08 00:22:59 -0700345static unsigned long long *dbg_redzone1(struct kmem_cache *cachep, void *objp)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700346{
347 BUG_ON(!(cachep->flags & SLAB_RED_ZONE));
David Woodhouseb46b8f12007-05-08 00:22:59 -0700348 return (unsigned long long*) (objp + obj_offset(cachep) -
349 sizeof(unsigned long long));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700350}
351
David Woodhouseb46b8f12007-05-08 00:22:59 -0700352static unsigned long long *dbg_redzone2(struct kmem_cache *cachep, void *objp)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700353{
354 BUG_ON(!(cachep->flags & SLAB_RED_ZONE));
355 if (cachep->flags & SLAB_STORE_USER)
Christoph Lameter3b0efdf2012-06-13 10:24:57 -0500356 return (unsigned long long *)(objp + cachep->size -
David Woodhouseb46b8f12007-05-08 00:22:59 -0700357 sizeof(unsigned long long) -
David Woodhouse87a927c2007-07-04 21:26:44 -0400358 REDZONE_ALIGN);
Christoph Lameter3b0efdf2012-06-13 10:24:57 -0500359 return (unsigned long long *) (objp + cachep->size -
David Woodhouseb46b8f12007-05-08 00:22:59 -0700360 sizeof(unsigned long long));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700361}
362
Pekka Enberg343e0d72006-02-01 03:05:50 -0800363static void **dbg_userword(struct kmem_cache *cachep, void *objp)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700364{
365 BUG_ON(!(cachep->flags & SLAB_STORE_USER));
Christoph Lameter3b0efdf2012-06-13 10:24:57 -0500366 return (void **)(objp + cachep->size - BYTES_PER_WORD);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700367}
368
369#else
370
Manfred Spraul3dafccf2006-02-01 03:05:42 -0800371#define obj_offset(x) 0
David Woodhouseb46b8f12007-05-08 00:22:59 -0700372#define dbg_redzone1(cachep, objp) ({BUG(); (unsigned long long *)NULL;})
373#define dbg_redzone2(cachep, objp) ({BUG(); (unsigned long long *)NULL;})
Linus Torvalds1da177e2005-04-16 15:20:36 -0700374#define dbg_userword(cachep, objp) ({BUG(); (void **)NULL;})
375
376#endif
377
378/*
David Rientjes3df1ccc2011-10-18 22:09:28 -0700379 * Do not go above this order unless 0 objects fit into the slab or
380 * overridden on the command line.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700381 */
David Rientjes543585c2011-10-18 22:09:24 -0700382#define SLAB_MAX_ORDER_HI 1
383#define SLAB_MAX_ORDER_LO 0
384static int slab_max_order = SLAB_MAX_ORDER_LO;
David Rientjes3df1ccc2011-10-18 22:09:28 -0700385static bool slab_max_order_set __initdata;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700386
Pekka Enberg6ed5eb2212006-02-01 03:05:49 -0800387static inline struct kmem_cache *virt_to_cache(const void *obj)
388{
Christoph Lameterb49af682007-05-06 14:49:41 -0700389 struct page *page = virt_to_head_page(obj);
Christoph Lameter35026082012-06-13 10:24:56 -0500390 return page->slab_cache;
Pekka Enberg6ed5eb2212006-02-01 03:05:49 -0800391}
392
Joonsoo Kim8456a642013-10-24 10:07:49 +0900393static inline void *index_to_obj(struct kmem_cache *cache, struct page *page,
Pekka Enberg8fea4e92006-03-22 00:08:10 -0800394 unsigned int idx)
395{
Joonsoo Kim8456a642013-10-24 10:07:49 +0900396 return page->s_mem + cache->size * idx;
Pekka Enberg8fea4e92006-03-22 00:08:10 -0800397}
398
Eric Dumazet6a2d7a92006-12-13 00:34:27 -0800399/*
Christoph Lameter3b0efdf2012-06-13 10:24:57 -0500400 * We want to avoid an expensive divide : (offset / cache->size)
401 * Using the fact that size is a constant for a particular cache,
402 * we can replace (offset / cache->size) by
Eric Dumazet6a2d7a92006-12-13 00:34:27 -0800403 * reciprocal_divide(offset, cache->reciprocal_buffer_size)
404 */
405static inline unsigned int obj_to_index(const struct kmem_cache *cache,
Joonsoo Kim8456a642013-10-24 10:07:49 +0900406 const struct page *page, void *obj)
Pekka Enberg8fea4e92006-03-22 00:08:10 -0800407{
Joonsoo Kim8456a642013-10-24 10:07:49 +0900408 u32 offset = (obj - page->s_mem);
Eric Dumazet6a2d7a92006-12-13 00:34:27 -0800409 return reciprocal_divide(offset, cache->reciprocal_buffer_size);
Pekka Enberg8fea4e92006-03-22 00:08:10 -0800410}
411
Linus Torvalds1da177e2005-04-16 15:20:36 -0700412static struct arraycache_init initarray_generic =
Pekka Enbergb28a02d2006-01-08 01:00:37 -0800413 { {0, BOOT_CPUCACHE_ENTRIES, 1, 0} };
Linus Torvalds1da177e2005-04-16 15:20:36 -0700414
415/* internal cache of cache description objs */
Christoph Lameter9b030cb2012-09-05 00:20:33 +0000416static struct kmem_cache kmem_cache_boot = {
Pekka Enbergb28a02d2006-01-08 01:00:37 -0800417 .batchcount = 1,
418 .limit = BOOT_CPUCACHE_ENTRIES,
419 .shared = 1,
Christoph Lameter3b0efdf2012-06-13 10:24:57 -0500420 .size = sizeof(struct kmem_cache),
Pekka Enbergb28a02d2006-01-08 01:00:37 -0800421 .name = "kmem_cache",
Linus Torvalds1da177e2005-04-16 15:20:36 -0700422};
423
Ravikiran G Thirumalai056c6242006-09-25 23:31:38 -0700424#define BAD_ALIEN_MAGIC 0x01020304ul
425
Pekka Enbergce79ddc2009-11-23 22:01:15 +0200426#ifdef CONFIG_LOCKDEP
427
428/*
429 * Slab sometimes uses the kmalloc slabs to store the slab headers
430 * for other slabs "off slab".
431 * The locking for this is tricky in that it nests within the locks
432 * of all other slabs in a few places; to deal with this special
433 * locking we put on-slab caches into a separate lock-class.
434 *
435 * We set lock class for alien array caches which are up during init.
436 * The lock annotation will be lost if all cpus of a node goes down and
437 * then comes back up during hotplug
438 */
439static struct lock_class_key on_slab_l3_key;
440static struct lock_class_key on_slab_alc_key;
441
Peter Zijlstra83835b32011-07-22 15:26:05 +0200442static struct lock_class_key debugobj_l3_key;
443static struct lock_class_key debugobj_alc_key;
444
445static void slab_set_lock_classes(struct kmem_cache *cachep,
446 struct lock_class_key *l3_key, struct lock_class_key *alc_key,
447 int q)
448{
449 struct array_cache **alc;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000450 struct kmem_cache_node *n;
Peter Zijlstra83835b32011-07-22 15:26:05 +0200451 int r;
452
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000453 n = cachep->node[q];
454 if (!n)
Peter Zijlstra83835b32011-07-22 15:26:05 +0200455 return;
456
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000457 lockdep_set_class(&n->list_lock, l3_key);
458 alc = n->alien;
Peter Zijlstra83835b32011-07-22 15:26:05 +0200459 /*
460 * FIXME: This check for BAD_ALIEN_MAGIC
461 * should go away when common slab code is taught to
462 * work even without alien caches.
463 * Currently, non NUMA code returns BAD_ALIEN_MAGIC
464 * for alloc_alien_cache,
465 */
466 if (!alc || (unsigned long)alc == BAD_ALIEN_MAGIC)
467 return;
468 for_each_node(r) {
469 if (alc[r])
470 lockdep_set_class(&alc[r]->lock, alc_key);
471 }
472}
473
474static void slab_set_debugobj_lock_classes_node(struct kmem_cache *cachep, int node)
475{
476 slab_set_lock_classes(cachep, &debugobj_l3_key, &debugobj_alc_key, node);
477}
478
479static void slab_set_debugobj_lock_classes(struct kmem_cache *cachep)
480{
481 int node;
482
483 for_each_online_node(node)
484 slab_set_debugobj_lock_classes_node(cachep, node);
485}
486
Pekka Enbergce79ddc2009-11-23 22:01:15 +0200487static void init_node_lock_keys(int q)
488{
Christoph Lametere3366012013-01-10 19:14:18 +0000489 int i;
Pekka Enbergce79ddc2009-11-23 22:01:15 +0200490
Christoph Lameter97d06602012-07-06 15:25:11 -0500491 if (slab_state < UP)
Pekka Enbergce79ddc2009-11-23 22:01:15 +0200492 return;
493
Christoph Lameter0f8f8092013-07-02 12:12:10 -0700494 for (i = 1; i <= KMALLOC_SHIFT_HIGH; i++) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000495 struct kmem_cache_node *n;
Christoph Lametere3366012013-01-10 19:14:18 +0000496 struct kmem_cache *cache = kmalloc_caches[i];
Pekka Enbergce79ddc2009-11-23 22:01:15 +0200497
Christoph Lametere3366012013-01-10 19:14:18 +0000498 if (!cache)
Pekka Enberg00afa752009-12-27 14:33:14 +0200499 continue;
Peter Zijlstra83835b32011-07-22 15:26:05 +0200500
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000501 n = cache->node[q];
502 if (!n || OFF_SLAB(cache))
Christoph Lametere3366012013-01-10 19:14:18 +0000503 continue;
504
505 slab_set_lock_classes(cache, &on_slab_l3_key,
Peter Zijlstra83835b32011-07-22 15:26:05 +0200506 &on_slab_alc_key, q);
Pekka Enbergce79ddc2009-11-23 22:01:15 +0200507 }
508}
509
Glauber Costa6ccfb5b2012-12-18 14:22:31 -0800510static void on_slab_lock_classes_node(struct kmem_cache *cachep, int q)
511{
Christoph Lameter6a673682013-01-10 19:14:19 +0000512 if (!cachep->node[q])
Glauber Costa6ccfb5b2012-12-18 14:22:31 -0800513 return;
514
515 slab_set_lock_classes(cachep, &on_slab_l3_key,
516 &on_slab_alc_key, q);
517}
518
519static inline void on_slab_lock_classes(struct kmem_cache *cachep)
520{
521 int node;
522
523 VM_BUG_ON(OFF_SLAB(cachep));
524 for_each_node(node)
525 on_slab_lock_classes_node(cachep, node);
526}
527
Pekka Enbergce79ddc2009-11-23 22:01:15 +0200528static inline void init_lock_keys(void)
529{
530 int node;
531
532 for_each_node(node)
533 init_node_lock_keys(node);
534}
535#else
536static void init_node_lock_keys(int q)
537{
538}
539
540static inline void init_lock_keys(void)
541{
542}
Peter Zijlstra83835b32011-07-22 15:26:05 +0200543
Glauber Costa6ccfb5b2012-12-18 14:22:31 -0800544static inline void on_slab_lock_classes(struct kmem_cache *cachep)
545{
546}
547
548static inline void on_slab_lock_classes_node(struct kmem_cache *cachep, int node)
549{
550}
551
Peter Zijlstra83835b32011-07-22 15:26:05 +0200552static void slab_set_debugobj_lock_classes_node(struct kmem_cache *cachep, int node)
553{
554}
555
556static void slab_set_debugobj_lock_classes(struct kmem_cache *cachep)
557{
558}
Pekka Enbergce79ddc2009-11-23 22:01:15 +0200559#endif
560
Tejun Heo1871e522009-10-29 22:34:13 +0900561static DEFINE_PER_CPU(struct delayed_work, slab_reap_work);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700562
Pekka Enberg343e0d72006-02-01 03:05:50 -0800563static inline struct array_cache *cpu_cache_get(struct kmem_cache *cachep)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700564{
565 return cachep->array[smp_processor_id()];
566}
567
Joonsoo Kim9cef2e22013-12-02 17:49:39 +0900568static int calculate_nr_objs(size_t slab_size, size_t buffer_size,
569 size_t idx_size, size_t align)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700570{
Joonsoo Kim9cef2e22013-12-02 17:49:39 +0900571 int nr_objs;
572 size_t freelist_size;
573
574 /*
575 * Ignore padding for the initial guess. The padding
576 * is at most @align-1 bytes, and @buffer_size is at
577 * least @align. In the worst case, this result will
578 * be one greater than the number of objects that fit
579 * into the memory allocation when taking the padding
580 * into account.
581 */
582 nr_objs = slab_size / (buffer_size + idx_size);
583
584 /*
585 * This calculated number will be either the right
586 * amount, or one greater than what we want.
587 */
588 freelist_size = slab_size - nr_objs * buffer_size;
589 if (freelist_size < ALIGN(nr_objs * idx_size, align))
590 nr_objs--;
591
592 return nr_objs;
Steven Rostedtfbaccac2006-02-01 03:05:45 -0800593}
Linus Torvalds1da177e2005-04-16 15:20:36 -0700594
Andrew Mortona737b3e2006-03-22 00:08:11 -0800595/*
596 * Calculate the number of objects and left-over bytes for a given buffer size.
597 */
Steven Rostedtfbaccac2006-02-01 03:05:45 -0800598static void cache_estimate(unsigned long gfporder, size_t buffer_size,
599 size_t align, int flags, size_t *left_over,
600 unsigned int *num)
601{
602 int nr_objs;
603 size_t mgmt_size;
604 size_t slab_size = PAGE_SIZE << gfporder;
605
606 /*
607 * The slab management structure can be either off the slab or
608 * on it. For the latter case, the memory allocated for a
609 * slab is used for:
610 *
Joonsoo Kim16025172013-10-24 10:07:46 +0900611 * - One unsigned int for each object
Steven Rostedtfbaccac2006-02-01 03:05:45 -0800612 * - Padding to respect alignment of @align
613 * - @buffer_size bytes for each object
614 *
615 * If the slab management structure is off the slab, then the
616 * alignment will already be calculated into the size. Because
617 * the slabs are all pages aligned, the objects will be at the
618 * correct alignment when allocated.
619 */
620 if (flags & CFLGS_OFF_SLAB) {
621 mgmt_size = 0;
622 nr_objs = slab_size / buffer_size;
623
Steven Rostedtfbaccac2006-02-01 03:05:45 -0800624 } else {
Joonsoo Kim9cef2e22013-12-02 17:49:39 +0900625 nr_objs = calculate_nr_objs(slab_size, buffer_size,
626 sizeof(unsigned int), align);
627 mgmt_size = ALIGN(nr_objs * sizeof(unsigned int), align);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700628 }
Steven Rostedtfbaccac2006-02-01 03:05:45 -0800629 *num = nr_objs;
630 *left_over = slab_size - nr_objs*buffer_size - mgmt_size;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700631}
632
Christoph Lameterf28510d2012-09-11 19:49:38 +0000633#if DEBUG
Harvey Harrisond40cee22008-04-30 00:55:07 -0700634#define slab_error(cachep, msg) __slab_error(__func__, cachep, msg)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700635
Andrew Mortona737b3e2006-03-22 00:08:11 -0800636static void __slab_error(const char *function, struct kmem_cache *cachep,
637 char *msg)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700638{
639 printk(KERN_ERR "slab error in %s(): cache `%s': %s\n",
Pekka Enbergb28a02d2006-01-08 01:00:37 -0800640 function, cachep->name, msg);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700641 dump_stack();
Rusty Russell373d4d02013-01-21 17:17:39 +1030642 add_taint(TAINT_BAD_PAGE, LOCKDEP_NOW_UNRELIABLE);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700643}
Christoph Lameterf28510d2012-09-11 19:49:38 +0000644#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700645
Paul Menage3395ee02006-12-06 20:32:16 -0800646/*
647 * By default on NUMA we use alien caches to stage the freeing of
648 * objects allocated from other nodes. This causes massive memory
649 * inefficiencies when using fake NUMA setup to split memory into a
650 * large number of small nodes, so it can be disabled on the command
651 * line
652 */
653
654static int use_alien_caches __read_mostly = 1;
655static int __init noaliencache_setup(char *s)
656{
657 use_alien_caches = 0;
658 return 1;
659}
660__setup("noaliencache", noaliencache_setup);
661
David Rientjes3df1ccc2011-10-18 22:09:28 -0700662static int __init slab_max_order_setup(char *str)
663{
664 get_option(&str, &slab_max_order);
665 slab_max_order = slab_max_order < 0 ? 0 :
666 min(slab_max_order, MAX_ORDER - 1);
667 slab_max_order_set = true;
668
669 return 1;
670}
671__setup("slab_max_order=", slab_max_order_setup);
672
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800673#ifdef CONFIG_NUMA
674/*
675 * Special reaping functions for NUMA systems called from cache_reap().
676 * These take care of doing round robin flushing of alien caches (containing
677 * objects freed on different nodes from which they were allocated) and the
678 * flushing of remote pcps by calling drain_node_pages.
679 */
Tejun Heo1871e522009-10-29 22:34:13 +0900680static DEFINE_PER_CPU(unsigned long, slab_reap_node);
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800681
682static void init_reap_node(int cpu)
683{
684 int node;
685
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -0700686 node = next_node(cpu_to_mem(cpu), node_online_map);
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800687 if (node == MAX_NUMNODES)
Paul Jackson442295c2006-03-22 00:09:11 -0800688 node = first_node(node_online_map);
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800689
Tejun Heo1871e522009-10-29 22:34:13 +0900690 per_cpu(slab_reap_node, cpu) = node;
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800691}
692
693static void next_reap_node(void)
694{
Christoph Lameter909ea962010-12-08 16:22:55 +0100695 int node = __this_cpu_read(slab_reap_node);
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800696
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800697 node = next_node(node, node_online_map);
698 if (unlikely(node >= MAX_NUMNODES))
699 node = first_node(node_online_map);
Christoph Lameter909ea962010-12-08 16:22:55 +0100700 __this_cpu_write(slab_reap_node, node);
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800701}
702
703#else
704#define init_reap_node(cpu) do { } while (0)
705#define next_reap_node(void) do { } while (0)
706#endif
707
Linus Torvalds1da177e2005-04-16 15:20:36 -0700708/*
709 * Initiate the reap timer running on the target CPU. We run at around 1 to 2Hz
710 * via the workqueue/eventd.
711 * Add the CPU number into the expiration time to minimize the possibility of
712 * the CPUs getting into lockstep and contending for the global cache chain
713 * lock.
714 */
Paul Gortmaker0db06282013-06-19 14:53:51 -0400715static void start_cpu_timer(int cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700716{
Tejun Heo1871e522009-10-29 22:34:13 +0900717 struct delayed_work *reap_work = &per_cpu(slab_reap_work, cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700718
719 /*
720 * When this gets called from do_initcalls via cpucache_init(),
721 * init_workqueues() has already run, so keventd will be setup
722 * at that time.
723 */
David Howells52bad642006-11-22 14:54:01 +0000724 if (keventd_up() && reap_work->work.func == NULL) {
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800725 init_reap_node(cpu);
Tejun Heo203b42f2012-08-21 13:18:23 -0700726 INIT_DEFERRABLE_WORK(reap_work, cache_reap);
Arjan van de Ven2b284212006-12-10 02:21:28 -0800727 schedule_delayed_work_on(cpu, reap_work,
728 __round_jiffies_relative(HZ, cpu));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700729 }
730}
731
Christoph Lametere498be72005-09-09 13:03:32 -0700732static struct array_cache *alloc_arraycache(int node, int entries,
Pekka Enberg83b519e2009-06-10 19:40:04 +0300733 int batchcount, gfp_t gfp)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700734{
Pekka Enbergb28a02d2006-01-08 01:00:37 -0800735 int memsize = sizeof(void *) * entries + sizeof(struct array_cache);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700736 struct array_cache *nc = NULL;
737
Pekka Enberg83b519e2009-06-10 19:40:04 +0300738 nc = kmalloc_node(memsize, gfp, node);
Catalin Marinasd5cff632009-06-11 13:22:40 +0100739 /*
740 * The array_cache structures contain pointers to free object.
Lucas De Marchi25985ed2011-03-30 22:57:33 -0300741 * However, when such objects are allocated or transferred to another
Catalin Marinasd5cff632009-06-11 13:22:40 +0100742 * cache the pointers are not cleared and they could be counted as
743 * valid references during a kmemleak scan. Therefore, kmemleak must
744 * not scan such objects.
745 */
746 kmemleak_no_scan(nc);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700747 if (nc) {
748 nc->avail = 0;
749 nc->limit = entries;
750 nc->batchcount = batchcount;
751 nc->touched = 0;
Christoph Lametere498be72005-09-09 13:03:32 -0700752 spin_lock_init(&nc->lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700753 }
754 return nc;
755}
756
Joonsoo Kim8456a642013-10-24 10:07:49 +0900757static inline bool is_slab_pfmemalloc(struct page *page)
Mel Gorman072bb0a2012-07-31 16:43:58 -0700758{
Mel Gorman072bb0a2012-07-31 16:43:58 -0700759 return PageSlabPfmemalloc(page);
760}
761
762/* Clears pfmemalloc_active if no slabs have pfmalloc set */
763static void recheck_pfmemalloc_active(struct kmem_cache *cachep,
764 struct array_cache *ac)
765{
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000766 struct kmem_cache_node *n = cachep->node[numa_mem_id()];
Joonsoo Kim8456a642013-10-24 10:07:49 +0900767 struct page *page;
Mel Gorman072bb0a2012-07-31 16:43:58 -0700768 unsigned long flags;
769
770 if (!pfmemalloc_active)
771 return;
772
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000773 spin_lock_irqsave(&n->list_lock, flags);
Joonsoo Kim8456a642013-10-24 10:07:49 +0900774 list_for_each_entry(page, &n->slabs_full, lru)
775 if (is_slab_pfmemalloc(page))
Mel Gorman072bb0a2012-07-31 16:43:58 -0700776 goto out;
777
Joonsoo Kim8456a642013-10-24 10:07:49 +0900778 list_for_each_entry(page, &n->slabs_partial, lru)
779 if (is_slab_pfmemalloc(page))
Mel Gorman072bb0a2012-07-31 16:43:58 -0700780 goto out;
781
Joonsoo Kim8456a642013-10-24 10:07:49 +0900782 list_for_each_entry(page, &n->slabs_free, lru)
783 if (is_slab_pfmemalloc(page))
Mel Gorman072bb0a2012-07-31 16:43:58 -0700784 goto out;
785
786 pfmemalloc_active = false;
787out:
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000788 spin_unlock_irqrestore(&n->list_lock, flags);
Mel Gorman072bb0a2012-07-31 16:43:58 -0700789}
790
Mel Gorman381760e2012-07-31 16:44:30 -0700791static void *__ac_get_obj(struct kmem_cache *cachep, struct array_cache *ac,
Mel Gorman072bb0a2012-07-31 16:43:58 -0700792 gfp_t flags, bool force_refill)
793{
794 int i;
795 void *objp = ac->entry[--ac->avail];
796
797 /* Ensure the caller is allowed to use objects from PFMEMALLOC slab */
798 if (unlikely(is_obj_pfmemalloc(objp))) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000799 struct kmem_cache_node *n;
Mel Gorman072bb0a2012-07-31 16:43:58 -0700800
801 if (gfp_pfmemalloc_allowed(flags)) {
802 clear_obj_pfmemalloc(&objp);
803 return objp;
804 }
805
806 /* The caller cannot use PFMEMALLOC objects, find another one */
Joonsoo Kimd014dc22012-09-17 14:09:06 -0700807 for (i = 0; i < ac->avail; i++) {
Mel Gorman072bb0a2012-07-31 16:43:58 -0700808 /* If a !PFMEMALLOC object is found, swap them */
809 if (!is_obj_pfmemalloc(ac->entry[i])) {
810 objp = ac->entry[i];
811 ac->entry[i] = ac->entry[ac->avail];
812 ac->entry[ac->avail] = objp;
813 return objp;
814 }
815 }
816
817 /*
818 * If there are empty slabs on the slabs_free list and we are
819 * being forced to refill the cache, mark this one !pfmemalloc.
820 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000821 n = cachep->node[numa_mem_id()];
822 if (!list_empty(&n->slabs_free) && force_refill) {
Joonsoo Kim8456a642013-10-24 10:07:49 +0900823 struct page *page = virt_to_head_page(objp);
Joonsoo Kim7ecccf92013-10-24 10:07:50 +0900824 ClearPageSlabPfmemalloc(page);
Mel Gorman072bb0a2012-07-31 16:43:58 -0700825 clear_obj_pfmemalloc(&objp);
826 recheck_pfmemalloc_active(cachep, ac);
827 return objp;
828 }
829
830 /* No !PFMEMALLOC objects available */
831 ac->avail++;
832 objp = NULL;
833 }
834
835 return objp;
836}
837
Mel Gorman381760e2012-07-31 16:44:30 -0700838static inline void *ac_get_obj(struct kmem_cache *cachep,
839 struct array_cache *ac, gfp_t flags, bool force_refill)
840{
841 void *objp;
842
843 if (unlikely(sk_memalloc_socks()))
844 objp = __ac_get_obj(cachep, ac, flags, force_refill);
845 else
846 objp = ac->entry[--ac->avail];
847
848 return objp;
849}
850
851static void *__ac_put_obj(struct kmem_cache *cachep, struct array_cache *ac,
Mel Gorman072bb0a2012-07-31 16:43:58 -0700852 void *objp)
853{
854 if (unlikely(pfmemalloc_active)) {
855 /* Some pfmemalloc slabs exist, check if this is one */
Mel Gorman30c29be2012-09-17 14:09:03 -0700856 struct page *page = virt_to_head_page(objp);
Mel Gorman072bb0a2012-07-31 16:43:58 -0700857 if (PageSlabPfmemalloc(page))
858 set_obj_pfmemalloc(&objp);
859 }
860
Mel Gorman381760e2012-07-31 16:44:30 -0700861 return objp;
862}
863
864static inline void ac_put_obj(struct kmem_cache *cachep, struct array_cache *ac,
865 void *objp)
866{
867 if (unlikely(sk_memalloc_socks()))
868 objp = __ac_put_obj(cachep, ac, objp);
869
Mel Gorman072bb0a2012-07-31 16:43:58 -0700870 ac->entry[ac->avail++] = objp;
871}
872
Christoph Lameter3ded1752006-03-25 03:06:44 -0800873/*
874 * Transfer objects in one arraycache to another.
875 * Locking must be handled by the caller.
876 *
877 * Return the number of entries transferred.
878 */
879static int transfer_objects(struct array_cache *to,
880 struct array_cache *from, unsigned int max)
881{
882 /* Figure out how many entries to transfer */
Hagen Paul Pfeifer732eacc2010-10-26 14:22:23 -0700883 int nr = min3(from->avail, max, to->limit - to->avail);
Christoph Lameter3ded1752006-03-25 03:06:44 -0800884
885 if (!nr)
886 return 0;
887
888 memcpy(to->entry + to->avail, from->entry + from->avail -nr,
889 sizeof(void *) *nr);
890
891 from->avail -= nr;
892 to->avail += nr;
Christoph Lameter3ded1752006-03-25 03:06:44 -0800893 return nr;
894}
895
Christoph Lameter765c4502006-09-27 01:50:08 -0700896#ifndef CONFIG_NUMA
897
898#define drain_alien_cache(cachep, alien) do { } while (0)
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000899#define reap_alien(cachep, n) do { } while (0)
Christoph Lameter765c4502006-09-27 01:50:08 -0700900
Pekka Enberg83b519e2009-06-10 19:40:04 +0300901static inline struct array_cache **alloc_alien_cache(int node, int limit, gfp_t gfp)
Christoph Lameter765c4502006-09-27 01:50:08 -0700902{
903 return (struct array_cache **)BAD_ALIEN_MAGIC;
904}
905
906static inline void free_alien_cache(struct array_cache **ac_ptr)
907{
908}
909
910static inline int cache_free_alien(struct kmem_cache *cachep, void *objp)
911{
912 return 0;
913}
914
915static inline void *alternate_node_alloc(struct kmem_cache *cachep,
916 gfp_t flags)
917{
918 return NULL;
919}
920
Christoph Hellwig8b98c162006-12-06 20:32:30 -0800921static inline void *____cache_alloc_node(struct kmem_cache *cachep,
Christoph Lameter765c4502006-09-27 01:50:08 -0700922 gfp_t flags, int nodeid)
923{
924 return NULL;
925}
926
927#else /* CONFIG_NUMA */
928
Christoph Hellwig8b98c162006-12-06 20:32:30 -0800929static void *____cache_alloc_node(struct kmem_cache *, gfp_t, int);
Paul Jacksonc61afb12006-03-24 03:16:08 -0800930static void *alternate_node_alloc(struct kmem_cache *, gfp_t);
Christoph Lameterdc85da12006-01-18 17:42:36 -0800931
Pekka Enberg83b519e2009-06-10 19:40:04 +0300932static struct array_cache **alloc_alien_cache(int node, int limit, gfp_t gfp)
Christoph Lametere498be72005-09-09 13:03:32 -0700933{
934 struct array_cache **ac_ptr;
Christoph Lameter8ef82862007-02-20 13:57:52 -0800935 int memsize = sizeof(void *) * nr_node_ids;
Christoph Lametere498be72005-09-09 13:03:32 -0700936 int i;
937
938 if (limit > 1)
939 limit = 12;
Haicheng Lif3186a92010-01-06 15:25:23 +0800940 ac_ptr = kzalloc_node(memsize, gfp, node);
Christoph Lametere498be72005-09-09 13:03:32 -0700941 if (ac_ptr) {
942 for_each_node(i) {
Haicheng Lif3186a92010-01-06 15:25:23 +0800943 if (i == node || !node_online(i))
Christoph Lametere498be72005-09-09 13:03:32 -0700944 continue;
Pekka Enberg83b519e2009-06-10 19:40:04 +0300945 ac_ptr[i] = alloc_arraycache(node, limit, 0xbaadf00d, gfp);
Christoph Lametere498be72005-09-09 13:03:32 -0700946 if (!ac_ptr[i]) {
Akinobu Mitacc550de2007-11-14 16:58:35 -0800947 for (i--; i >= 0; i--)
Christoph Lametere498be72005-09-09 13:03:32 -0700948 kfree(ac_ptr[i]);
949 kfree(ac_ptr);
950 return NULL;
951 }
952 }
953 }
954 return ac_ptr;
955}
956
Pekka Enberg5295a742006-02-01 03:05:48 -0800957static void free_alien_cache(struct array_cache **ac_ptr)
Christoph Lametere498be72005-09-09 13:03:32 -0700958{
959 int i;
960
961 if (!ac_ptr)
962 return;
Christoph Lametere498be72005-09-09 13:03:32 -0700963 for_each_node(i)
Pekka Enbergb28a02d2006-01-08 01:00:37 -0800964 kfree(ac_ptr[i]);
Christoph Lametere498be72005-09-09 13:03:32 -0700965 kfree(ac_ptr);
966}
967
Pekka Enberg343e0d72006-02-01 03:05:50 -0800968static void __drain_alien_cache(struct kmem_cache *cachep,
Pekka Enberg5295a742006-02-01 03:05:48 -0800969 struct array_cache *ac, int node)
Christoph Lametere498be72005-09-09 13:03:32 -0700970{
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000971 struct kmem_cache_node *n = cachep->node[node];
Christoph Lametere498be72005-09-09 13:03:32 -0700972
973 if (ac->avail) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000974 spin_lock(&n->list_lock);
Christoph Lametere00946f2006-03-25 03:06:45 -0800975 /*
976 * Stuff objects into the remote nodes shared array first.
977 * That way we could avoid the overhead of putting the objects
978 * into the free lists and getting them back later.
979 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000980 if (n->shared)
981 transfer_objects(n->shared, ac, ac->limit);
Christoph Lametere00946f2006-03-25 03:06:45 -0800982
Christoph Lameterff694162005-09-22 21:44:02 -0700983 free_block(cachep, ac->entry, ac->avail, node);
Christoph Lametere498be72005-09-09 13:03:32 -0700984 ac->avail = 0;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000985 spin_unlock(&n->list_lock);
Christoph Lametere498be72005-09-09 13:03:32 -0700986 }
987}
988
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800989/*
990 * Called from cache_reap() to regularly drain alien caches round robin.
991 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000992static void reap_alien(struct kmem_cache *cachep, struct kmem_cache_node *n)
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800993{
Christoph Lameter909ea962010-12-08 16:22:55 +0100994 int node = __this_cpu_read(slab_reap_node);
Christoph Lameter8fce4d82006-03-09 17:33:54 -0800995
Christoph Lameterce8eb6c2013-01-10 19:14:19 +0000996 if (n->alien) {
997 struct array_cache *ac = n->alien[node];
Christoph Lametere00946f2006-03-25 03:06:45 -0800998
999 if (ac && ac->avail && spin_trylock_irq(&ac->lock)) {
Christoph Lameter8fce4d82006-03-09 17:33:54 -08001000 __drain_alien_cache(cachep, ac, node);
1001 spin_unlock_irq(&ac->lock);
1002 }
1003 }
1004}
1005
Andrew Mortona737b3e2006-03-22 00:08:11 -08001006static void drain_alien_cache(struct kmem_cache *cachep,
1007 struct array_cache **alien)
Christoph Lametere498be72005-09-09 13:03:32 -07001008{
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001009 int i = 0;
Christoph Lametere498be72005-09-09 13:03:32 -07001010 struct array_cache *ac;
1011 unsigned long flags;
1012
1013 for_each_online_node(i) {
Ravikiran G Thirumalai4484ebf2006-02-04 23:27:59 -08001014 ac = alien[i];
Christoph Lametere498be72005-09-09 13:03:32 -07001015 if (ac) {
1016 spin_lock_irqsave(&ac->lock, flags);
1017 __drain_alien_cache(cachep, ac, i);
1018 spin_unlock_irqrestore(&ac->lock, flags);
1019 }
1020 }
1021}
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001022
Ingo Molnar873623d2006-07-13 14:44:38 +02001023static inline int cache_free_alien(struct kmem_cache *cachep, void *objp)
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001024{
Joonsoo Kim1ea991b2013-10-24 10:07:40 +09001025 int nodeid = page_to_nid(virt_to_page(objp));
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001026 struct kmem_cache_node *n;
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001027 struct array_cache *alien = NULL;
Pekka Enberg1ca4cb22006-10-06 00:43:52 -07001028 int node;
1029
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07001030 node = numa_mem_id();
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001031
1032 /*
1033 * Make sure we are not freeing a object from another node to the array
1034 * cache on this cpu.
1035 */
Joonsoo Kim1ea991b2013-10-24 10:07:40 +09001036 if (likely(nodeid == node))
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001037 return 0;
1038
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001039 n = cachep->node[node];
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001040 STATS_INC_NODEFREES(cachep);
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001041 if (n->alien && n->alien[nodeid]) {
1042 alien = n->alien[nodeid];
Ingo Molnar873623d2006-07-13 14:44:38 +02001043 spin_lock(&alien->lock);
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001044 if (unlikely(alien->avail == alien->limit)) {
1045 STATS_INC_ACOVERFLOW(cachep);
1046 __drain_alien_cache(cachep, alien, nodeid);
1047 }
Mel Gorman072bb0a2012-07-31 16:43:58 -07001048 ac_put_obj(cachep, alien, objp);
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001049 spin_unlock(&alien->lock);
1050 } else {
Christoph Lameter6a673682013-01-10 19:14:19 +00001051 spin_lock(&(cachep->node[nodeid])->list_lock);
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001052 free_block(cachep, &objp, 1, nodeid);
Christoph Lameter6a673682013-01-10 19:14:19 +00001053 spin_unlock(&(cachep->node[nodeid])->list_lock);
Pekka Enberg729bd0b2006-06-23 02:03:05 -07001054 }
1055 return 1;
1056}
Christoph Lametere498be72005-09-09 13:03:32 -07001057#endif
1058
David Rientjes8f9f8d92010-03-27 19:40:47 -07001059/*
Christoph Lameter6a673682013-01-10 19:14:19 +00001060 * Allocates and initializes node for a node on each slab cache, used for
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001061 * either memory or cpu hotplug. If memory is being hot-added, the kmem_cache_node
David Rientjes8f9f8d92010-03-27 19:40:47 -07001062 * will be allocated off-node since memory is not yet online for the new node.
Christoph Lameter6a673682013-01-10 19:14:19 +00001063 * When hotplugging memory or a cpu, existing node are not replaced if
David Rientjes8f9f8d92010-03-27 19:40:47 -07001064 * already in use.
1065 *
Christoph Lameter18004c52012-07-06 15:25:12 -05001066 * Must hold slab_mutex.
David Rientjes8f9f8d92010-03-27 19:40:47 -07001067 */
Christoph Lameter6a673682013-01-10 19:14:19 +00001068static int init_cache_node_node(int node)
David Rientjes8f9f8d92010-03-27 19:40:47 -07001069{
1070 struct kmem_cache *cachep;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001071 struct kmem_cache_node *n;
Christoph Lameter6744f082013-01-10 19:12:17 +00001072 const int memsize = sizeof(struct kmem_cache_node);
David Rientjes8f9f8d92010-03-27 19:40:47 -07001073
Christoph Lameter18004c52012-07-06 15:25:12 -05001074 list_for_each_entry(cachep, &slab_caches, list) {
David Rientjes8f9f8d92010-03-27 19:40:47 -07001075 /*
1076 * Set up the size64 kmemlist for cpu before we can
1077 * begin anything. Make sure some other cpu on this
1078 * node has not already allocated this
1079 */
Christoph Lameter6a673682013-01-10 19:14:19 +00001080 if (!cachep->node[node]) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001081 n = kmalloc_node(memsize, GFP_KERNEL, node);
1082 if (!n)
David Rientjes8f9f8d92010-03-27 19:40:47 -07001083 return -ENOMEM;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001084 kmem_cache_node_init(n);
1085 n->next_reap = jiffies + REAPTIMEOUT_LIST3 +
David Rientjes8f9f8d92010-03-27 19:40:47 -07001086 ((unsigned long)cachep) % REAPTIMEOUT_LIST3;
1087
1088 /*
1089 * The l3s don't come and go as CPUs come and
Christoph Lameter18004c52012-07-06 15:25:12 -05001090 * go. slab_mutex is sufficient
David Rientjes8f9f8d92010-03-27 19:40:47 -07001091 * protection here.
1092 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001093 cachep->node[node] = n;
David Rientjes8f9f8d92010-03-27 19:40:47 -07001094 }
1095
Christoph Lameter6a673682013-01-10 19:14:19 +00001096 spin_lock_irq(&cachep->node[node]->list_lock);
1097 cachep->node[node]->free_limit =
David Rientjes8f9f8d92010-03-27 19:40:47 -07001098 (1 + nr_cpus_node(node)) *
1099 cachep->batchcount + cachep->num;
Christoph Lameter6a673682013-01-10 19:14:19 +00001100 spin_unlock_irq(&cachep->node[node]->list_lock);
David Rientjes8f9f8d92010-03-27 19:40:47 -07001101 }
1102 return 0;
1103}
1104
Wanpeng Li0fa81032013-07-04 08:33:22 +08001105static inline int slabs_tofree(struct kmem_cache *cachep,
1106 struct kmem_cache_node *n)
1107{
1108 return (n->free_objects + cachep->num - 1) / cachep->num;
1109}
1110
Paul Gortmaker0db06282013-06-19 14:53:51 -04001111static void cpuup_canceled(long cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001112{
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001113 struct kmem_cache *cachep;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001114 struct kmem_cache_node *n = NULL;
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07001115 int node = cpu_to_mem(cpu);
Rusty Russella70f7302009-03-13 14:49:46 +10301116 const struct cpumask *mask = cpumask_of_node(node);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001117
Christoph Lameter18004c52012-07-06 15:25:12 -05001118 list_for_each_entry(cachep, &slab_caches, list) {
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001119 struct array_cache *nc;
1120 struct array_cache *shared;
1121 struct array_cache **alien;
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001122
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001123 /* cpu is dead; no one can alloc from it. */
1124 nc = cachep->array[cpu];
1125 cachep->array[cpu] = NULL;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001126 n = cachep->node[node];
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001127
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001128 if (!n)
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001129 goto free_array_cache;
1130
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001131 spin_lock_irq(&n->list_lock);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001132
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001133 /* Free limit for this kmem_cache_node */
1134 n->free_limit -= cachep->batchcount;
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001135 if (nc)
1136 free_block(cachep, nc->entry, nc->avail, node);
1137
Rusty Russell58463c12009-12-17 11:43:12 -06001138 if (!cpumask_empty(mask)) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001139 spin_unlock_irq(&n->list_lock);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001140 goto free_array_cache;
1141 }
1142
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001143 shared = n->shared;
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001144 if (shared) {
1145 free_block(cachep, shared->entry,
1146 shared->avail, node);
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001147 n->shared = NULL;
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001148 }
1149
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001150 alien = n->alien;
1151 n->alien = NULL;
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001152
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001153 spin_unlock_irq(&n->list_lock);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001154
1155 kfree(shared);
1156 if (alien) {
1157 drain_alien_cache(cachep, alien);
1158 free_alien_cache(alien);
1159 }
1160free_array_cache:
1161 kfree(nc);
1162 }
1163 /*
1164 * In the previous loop, all the objects were freed to
1165 * the respective cache's slabs, now we can go ahead and
1166 * shrink each nodelist to its limit.
1167 */
Christoph Lameter18004c52012-07-06 15:25:12 -05001168 list_for_each_entry(cachep, &slab_caches, list) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001169 n = cachep->node[node];
1170 if (!n)
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001171 continue;
Wanpeng Li0fa81032013-07-04 08:33:22 +08001172 drain_freelist(cachep, n, slabs_tofree(cachep, n));
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001173 }
1174}
1175
Paul Gortmaker0db06282013-06-19 14:53:51 -04001176static int cpuup_prepare(long cpu)
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001177{
Pekka Enberg343e0d72006-02-01 03:05:50 -08001178 struct kmem_cache *cachep;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001179 struct kmem_cache_node *n = NULL;
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07001180 int node = cpu_to_mem(cpu);
David Rientjes8f9f8d92010-03-27 19:40:47 -07001181 int err;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001182
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001183 /*
1184 * We need to do this right in the beginning since
1185 * alloc_arraycache's are going to use this list.
1186 * kmalloc_node allows us to add the slab to the right
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001187 * kmem_cache_node and not this cpu's kmem_cache_node
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001188 */
Christoph Lameter6a673682013-01-10 19:14:19 +00001189 err = init_cache_node_node(node);
David Rientjes8f9f8d92010-03-27 19:40:47 -07001190 if (err < 0)
1191 goto bad;
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001192
1193 /*
1194 * Now we can go ahead with allocating the shared arrays and
1195 * array caches
1196 */
Christoph Lameter18004c52012-07-06 15:25:12 -05001197 list_for_each_entry(cachep, &slab_caches, list) {
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001198 struct array_cache *nc;
1199 struct array_cache *shared = NULL;
1200 struct array_cache **alien = NULL;
1201
1202 nc = alloc_arraycache(node, cachep->limit,
Pekka Enberg83b519e2009-06-10 19:40:04 +03001203 cachep->batchcount, GFP_KERNEL);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001204 if (!nc)
1205 goto bad;
1206 if (cachep->shared) {
1207 shared = alloc_arraycache(node,
1208 cachep->shared * cachep->batchcount,
Pekka Enberg83b519e2009-06-10 19:40:04 +03001209 0xbaadf00d, GFP_KERNEL);
Akinobu Mita12d00f62007-10-18 03:05:11 -07001210 if (!shared) {
1211 kfree(nc);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001212 goto bad;
Akinobu Mita12d00f62007-10-18 03:05:11 -07001213 }
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001214 }
1215 if (use_alien_caches) {
Pekka Enberg83b519e2009-06-10 19:40:04 +03001216 alien = alloc_alien_cache(node, cachep->limit, GFP_KERNEL);
Akinobu Mita12d00f62007-10-18 03:05:11 -07001217 if (!alien) {
1218 kfree(shared);
1219 kfree(nc);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001220 goto bad;
Akinobu Mita12d00f62007-10-18 03:05:11 -07001221 }
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001222 }
1223 cachep->array[cpu] = nc;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001224 n = cachep->node[node];
1225 BUG_ON(!n);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001226
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001227 spin_lock_irq(&n->list_lock);
1228 if (!n->shared) {
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001229 /*
1230 * We are serialised from CPU_DEAD or
1231 * CPU_UP_CANCELLED by the cpucontrol lock
1232 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001233 n->shared = shared;
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001234 shared = NULL;
1235 }
1236#ifdef CONFIG_NUMA
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001237 if (!n->alien) {
1238 n->alien = alien;
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001239 alien = NULL;
1240 }
1241#endif
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001242 spin_unlock_irq(&n->list_lock);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001243 kfree(shared);
1244 free_alien_cache(alien);
Peter Zijlstra83835b32011-07-22 15:26:05 +02001245 if (cachep->flags & SLAB_DEBUG_OBJECTS)
1246 slab_set_debugobj_lock_classes_node(cachep, node);
Glauber Costa6ccfb5b2012-12-18 14:22:31 -08001247 else if (!OFF_SLAB(cachep) &&
1248 !(cachep->flags & SLAB_DESTROY_BY_RCU))
1249 on_slab_lock_classes_node(cachep, node);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001250 }
Pekka Enbergce79ddc2009-11-23 22:01:15 +02001251 init_node_lock_keys(node);
1252
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001253 return 0;
1254bad:
Akinobu Mita12d00f62007-10-18 03:05:11 -07001255 cpuup_canceled(cpu);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001256 return -ENOMEM;
1257}
1258
Paul Gortmaker0db06282013-06-19 14:53:51 -04001259static int cpuup_callback(struct notifier_block *nfb,
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001260 unsigned long action, void *hcpu)
1261{
1262 long cpu = (long)hcpu;
1263 int err = 0;
1264
Linus Torvalds1da177e2005-04-16 15:20:36 -07001265 switch (action) {
Heiko Carstens38c3bd92007-05-09 02:34:05 -07001266 case CPU_UP_PREPARE:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001267 case CPU_UP_PREPARE_FROZEN:
Christoph Lameter18004c52012-07-06 15:25:12 -05001268 mutex_lock(&slab_mutex);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001269 err = cpuup_prepare(cpu);
Christoph Lameter18004c52012-07-06 15:25:12 -05001270 mutex_unlock(&slab_mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001271 break;
1272 case CPU_ONLINE:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001273 case CPU_ONLINE_FROZEN:
Linus Torvalds1da177e2005-04-16 15:20:36 -07001274 start_cpu_timer(cpu);
1275 break;
1276#ifdef CONFIG_HOTPLUG_CPU
Christoph Lameter5830c592007-05-09 02:34:22 -07001277 case CPU_DOWN_PREPARE:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001278 case CPU_DOWN_PREPARE_FROZEN:
Christoph Lameter5830c592007-05-09 02:34:22 -07001279 /*
Christoph Lameter18004c52012-07-06 15:25:12 -05001280 * Shutdown cache reaper. Note that the slab_mutex is
Christoph Lameter5830c592007-05-09 02:34:22 -07001281 * held so that if cache_reap() is invoked it cannot do
1282 * anything expensive but will only modify reap_work
1283 * and reschedule the timer.
1284 */
Tejun Heoafe2c512010-12-14 16:21:17 +01001285 cancel_delayed_work_sync(&per_cpu(slab_reap_work, cpu));
Christoph Lameter5830c592007-05-09 02:34:22 -07001286 /* Now the cache_reaper is guaranteed to be not running. */
Tejun Heo1871e522009-10-29 22:34:13 +09001287 per_cpu(slab_reap_work, cpu).work.func = NULL;
Christoph Lameter5830c592007-05-09 02:34:22 -07001288 break;
1289 case CPU_DOWN_FAILED:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001290 case CPU_DOWN_FAILED_FROZEN:
Christoph Lameter5830c592007-05-09 02:34:22 -07001291 start_cpu_timer(cpu);
1292 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001293 case CPU_DEAD:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001294 case CPU_DEAD_FROZEN:
Ravikiran G Thirumalai4484ebf2006-02-04 23:27:59 -08001295 /*
1296 * Even if all the cpus of a node are down, we don't free the
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001297 * kmem_cache_node of any cache. This to avoid a race between
Ravikiran G Thirumalai4484ebf2006-02-04 23:27:59 -08001298 * cpu_down, and a kmalloc allocation from another cpu for
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001299 * memory from the node of the cpu going down. The node
Ravikiran G Thirumalai4484ebf2006-02-04 23:27:59 -08001300 * structure is usually allocated from kmem_cache_create() and
1301 * gets destroyed at kmem_cache_destroy().
1302 */
Simon Arlott183ff222007-10-20 01:27:18 +02001303 /* fall through */
Ravikiran G Thirumalai8f5be202006-12-06 20:32:14 -08001304#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -07001305 case CPU_UP_CANCELED:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001306 case CPU_UP_CANCELED_FROZEN:
Christoph Lameter18004c52012-07-06 15:25:12 -05001307 mutex_lock(&slab_mutex);
Akinobu Mitafbf1e472007-10-18 03:05:09 -07001308 cpuup_canceled(cpu);
Christoph Lameter18004c52012-07-06 15:25:12 -05001309 mutex_unlock(&slab_mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001310 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001311 }
Akinobu Mitaeac40682010-05-26 14:43:32 -07001312 return notifier_from_errno(err);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001313}
1314
Paul Gortmaker0db06282013-06-19 14:53:51 -04001315static struct notifier_block cpucache_notifier = {
Chandra Seetharaman74b85f32006-06-27 02:54:09 -07001316 &cpuup_callback, NULL, 0
1317};
Linus Torvalds1da177e2005-04-16 15:20:36 -07001318
David Rientjes8f9f8d92010-03-27 19:40:47 -07001319#if defined(CONFIG_NUMA) && defined(CONFIG_MEMORY_HOTPLUG)
1320/*
1321 * Drains freelist for a node on each slab cache, used for memory hot-remove.
1322 * Returns -EBUSY if all objects cannot be drained so that the node is not
1323 * removed.
1324 *
Christoph Lameter18004c52012-07-06 15:25:12 -05001325 * Must hold slab_mutex.
David Rientjes8f9f8d92010-03-27 19:40:47 -07001326 */
Christoph Lameter6a673682013-01-10 19:14:19 +00001327static int __meminit drain_cache_node_node(int node)
David Rientjes8f9f8d92010-03-27 19:40:47 -07001328{
1329 struct kmem_cache *cachep;
1330 int ret = 0;
1331
Christoph Lameter18004c52012-07-06 15:25:12 -05001332 list_for_each_entry(cachep, &slab_caches, list) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001333 struct kmem_cache_node *n;
David Rientjes8f9f8d92010-03-27 19:40:47 -07001334
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001335 n = cachep->node[node];
1336 if (!n)
David Rientjes8f9f8d92010-03-27 19:40:47 -07001337 continue;
1338
Wanpeng Li0fa81032013-07-04 08:33:22 +08001339 drain_freelist(cachep, n, slabs_tofree(cachep, n));
David Rientjes8f9f8d92010-03-27 19:40:47 -07001340
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001341 if (!list_empty(&n->slabs_full) ||
1342 !list_empty(&n->slabs_partial)) {
David Rientjes8f9f8d92010-03-27 19:40:47 -07001343 ret = -EBUSY;
1344 break;
1345 }
1346 }
1347 return ret;
1348}
1349
1350static int __meminit slab_memory_callback(struct notifier_block *self,
1351 unsigned long action, void *arg)
1352{
1353 struct memory_notify *mnb = arg;
1354 int ret = 0;
1355 int nid;
1356
1357 nid = mnb->status_change_nid;
1358 if (nid < 0)
1359 goto out;
1360
1361 switch (action) {
1362 case MEM_GOING_ONLINE:
Christoph Lameter18004c52012-07-06 15:25:12 -05001363 mutex_lock(&slab_mutex);
Christoph Lameter6a673682013-01-10 19:14:19 +00001364 ret = init_cache_node_node(nid);
Christoph Lameter18004c52012-07-06 15:25:12 -05001365 mutex_unlock(&slab_mutex);
David Rientjes8f9f8d92010-03-27 19:40:47 -07001366 break;
1367 case MEM_GOING_OFFLINE:
Christoph Lameter18004c52012-07-06 15:25:12 -05001368 mutex_lock(&slab_mutex);
Christoph Lameter6a673682013-01-10 19:14:19 +00001369 ret = drain_cache_node_node(nid);
Christoph Lameter18004c52012-07-06 15:25:12 -05001370 mutex_unlock(&slab_mutex);
David Rientjes8f9f8d92010-03-27 19:40:47 -07001371 break;
1372 case MEM_ONLINE:
1373 case MEM_OFFLINE:
1374 case MEM_CANCEL_ONLINE:
1375 case MEM_CANCEL_OFFLINE:
1376 break;
1377 }
1378out:
Prarit Bhargava5fda1bd2011-03-22 16:30:49 -07001379 return notifier_from_errno(ret);
David Rientjes8f9f8d92010-03-27 19:40:47 -07001380}
1381#endif /* CONFIG_NUMA && CONFIG_MEMORY_HOTPLUG */
1382
Christoph Lametere498be72005-09-09 13:03:32 -07001383/*
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001384 * swap the static kmem_cache_node with kmalloced memory
Christoph Lametere498be72005-09-09 13:03:32 -07001385 */
Christoph Lameter6744f082013-01-10 19:12:17 +00001386static void __init init_list(struct kmem_cache *cachep, struct kmem_cache_node *list,
David Rientjes8f9f8d92010-03-27 19:40:47 -07001387 int nodeid)
Christoph Lametere498be72005-09-09 13:03:32 -07001388{
Christoph Lameter6744f082013-01-10 19:12:17 +00001389 struct kmem_cache_node *ptr;
Christoph Lametere498be72005-09-09 13:03:32 -07001390
Christoph Lameter6744f082013-01-10 19:12:17 +00001391 ptr = kmalloc_node(sizeof(struct kmem_cache_node), GFP_NOWAIT, nodeid);
Christoph Lametere498be72005-09-09 13:03:32 -07001392 BUG_ON(!ptr);
1393
Christoph Lameter6744f082013-01-10 19:12:17 +00001394 memcpy(ptr, list, sizeof(struct kmem_cache_node));
Ingo Molnar2b2d5492006-07-03 00:25:28 -07001395 /*
1396 * Do not assume that spinlocks can be initialized via memcpy:
1397 */
1398 spin_lock_init(&ptr->list_lock);
1399
Christoph Lametere498be72005-09-09 13:03:32 -07001400 MAKE_ALL_LISTS(cachep, ptr, nodeid);
Christoph Lameter6a673682013-01-10 19:14:19 +00001401 cachep->node[nodeid] = ptr;
Christoph Lametere498be72005-09-09 13:03:32 -07001402}
1403
Andrew Mortona737b3e2006-03-22 00:08:11 -08001404/*
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001405 * For setting up all the kmem_cache_node for cache whose buffer_size is same as
1406 * size of kmem_cache_node.
Pekka Enberg556a1692008-01-25 08:20:51 +02001407 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001408static void __init set_up_node(struct kmem_cache *cachep, int index)
Pekka Enberg556a1692008-01-25 08:20:51 +02001409{
1410 int node;
1411
1412 for_each_online_node(node) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001413 cachep->node[node] = &init_kmem_cache_node[index + node];
Christoph Lameter6a673682013-01-10 19:14:19 +00001414 cachep->node[node]->next_reap = jiffies +
Pekka Enberg556a1692008-01-25 08:20:51 +02001415 REAPTIMEOUT_LIST3 +
1416 ((unsigned long)cachep) % REAPTIMEOUT_LIST3;
1417 }
1418}
1419
1420/*
Christoph Lameter3c583462012-11-28 16:23:01 +00001421 * The memory after the last cpu cache pointer is used for the
Christoph Lameter6a673682013-01-10 19:14:19 +00001422 * the node pointer.
Christoph Lameter3c583462012-11-28 16:23:01 +00001423 */
Christoph Lameter6a673682013-01-10 19:14:19 +00001424static void setup_node_pointer(struct kmem_cache *cachep)
Christoph Lameter3c583462012-11-28 16:23:01 +00001425{
Christoph Lameter6a673682013-01-10 19:14:19 +00001426 cachep->node = (struct kmem_cache_node **)&cachep->array[nr_cpu_ids];
Christoph Lameter3c583462012-11-28 16:23:01 +00001427}
1428
1429/*
Andrew Mortona737b3e2006-03-22 00:08:11 -08001430 * Initialisation. Called after the page allocator have been initialised and
1431 * before smp_init().
Linus Torvalds1da177e2005-04-16 15:20:36 -07001432 */
1433void __init kmem_cache_init(void)
1434{
Christoph Lametere498be72005-09-09 13:03:32 -07001435 int i;
1436
Joonsoo Kim68126702013-10-24 10:07:42 +09001437 BUILD_BUG_ON(sizeof(((struct page *)NULL)->lru) <
1438 sizeof(struct rcu_head));
Christoph Lameter9b030cb2012-09-05 00:20:33 +00001439 kmem_cache = &kmem_cache_boot;
Christoph Lameter6a673682013-01-10 19:14:19 +00001440 setup_node_pointer(kmem_cache);
Christoph Lameter9b030cb2012-09-05 00:20:33 +00001441
Mel Gormanb6e68bc2009-06-16 15:32:16 -07001442 if (num_possible_nodes() == 1)
Siddha, Suresh B62918a02007-05-02 19:27:18 +02001443 use_alien_caches = 0;
1444
Christoph Lameter3c583462012-11-28 16:23:01 +00001445 for (i = 0; i < NUM_INIT_LISTS; i++)
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001446 kmem_cache_node_init(&init_kmem_cache_node[i]);
Christoph Lameter3c583462012-11-28 16:23:01 +00001447
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001448 set_up_node(kmem_cache, CACHE_CACHE);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001449
1450 /*
1451 * Fragmentation resistance on low memory - only use bigger
David Rientjes3df1ccc2011-10-18 22:09:28 -07001452 * page orders on machines with more than 32MB of memory if
1453 * not overridden on the command line.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001454 */
David Rientjes3df1ccc2011-10-18 22:09:28 -07001455 if (!slab_max_order_set && totalram_pages > (32 << 20) >> PAGE_SHIFT)
David Rientjes543585c2011-10-18 22:09:24 -07001456 slab_max_order = SLAB_MAX_ORDER_HI;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001457
Linus Torvalds1da177e2005-04-16 15:20:36 -07001458 /* Bootstrap is tricky, because several objects are allocated
1459 * from caches that do not exist yet:
Christoph Lameter9b030cb2012-09-05 00:20:33 +00001460 * 1) initialize the kmem_cache cache: it contains the struct
1461 * kmem_cache structures of all caches, except kmem_cache itself:
1462 * kmem_cache is statically allocated.
Christoph Lametere498be72005-09-09 13:03:32 -07001463 * Initially an __init data area is used for the head array and the
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001464 * kmem_cache_node structures, it's replaced with a kmalloc allocated
Christoph Lametere498be72005-09-09 13:03:32 -07001465 * array at the end of the bootstrap.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001466 * 2) Create the first kmalloc cache.
Pekka Enberg343e0d72006-02-01 03:05:50 -08001467 * The struct kmem_cache for the new cache is allocated normally.
Christoph Lametere498be72005-09-09 13:03:32 -07001468 * An __init data area is used for the head array.
1469 * 3) Create the remaining kmalloc caches, with minimally sized
1470 * head arrays.
Christoph Lameter9b030cb2012-09-05 00:20:33 +00001471 * 4) Replace the __init data head arrays for kmem_cache and the first
Linus Torvalds1da177e2005-04-16 15:20:36 -07001472 * kmalloc cache with kmalloc allocated arrays.
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001473 * 5) Replace the __init data for kmem_cache_node for kmem_cache and
Christoph Lametere498be72005-09-09 13:03:32 -07001474 * the other cache's with kmalloc allocated memory.
1475 * 6) Resize the head arrays of the kmalloc caches to their final sizes.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001476 */
1477
Christoph Lameter9b030cb2012-09-05 00:20:33 +00001478 /* 1) create the kmem_cache */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001479
Eric Dumazet8da34302007-05-06 14:49:29 -07001480 /*
Eric Dumazetb56efcf2011-07-20 19:04:23 +02001481 * struct kmem_cache size depends on nr_node_ids & nr_cpu_ids
Eric Dumazet8da34302007-05-06 14:49:29 -07001482 */
Christoph Lameter2f9baa92012-11-28 16:23:09 +00001483 create_boot_cache(kmem_cache, "kmem_cache",
1484 offsetof(struct kmem_cache, array[nr_cpu_ids]) +
Christoph Lameter6744f082013-01-10 19:12:17 +00001485 nr_node_ids * sizeof(struct kmem_cache_node *),
Christoph Lameter2f9baa92012-11-28 16:23:09 +00001486 SLAB_HWCACHE_ALIGN);
1487 list_add(&kmem_cache->list, &slab_caches);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001488
1489 /* 2+3) create the kmalloc caches */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001490
Andrew Mortona737b3e2006-03-22 00:08:11 -08001491 /*
1492 * Initialize the caches that provide memory for the array cache and the
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001493 * kmem_cache_node structures first. Without this, further allocations will
Andrew Mortona737b3e2006-03-22 00:08:11 -08001494 * bug.
Christoph Lametere498be72005-09-09 13:03:32 -07001495 */
1496
Christoph Lametere3366012013-01-10 19:14:18 +00001497 kmalloc_caches[INDEX_AC] = create_kmalloc_cache("kmalloc-ac",
1498 kmalloc_size(INDEX_AC), ARCH_KMALLOC_FLAGS);
Christoph Lametere498be72005-09-09 13:03:32 -07001499
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001500 if (INDEX_AC != INDEX_NODE)
1501 kmalloc_caches[INDEX_NODE] =
1502 create_kmalloc_cache("kmalloc-node",
1503 kmalloc_size(INDEX_NODE), ARCH_KMALLOC_FLAGS);
Christoph Lametere498be72005-09-09 13:03:32 -07001504
Ingo Molnare0a42722006-06-23 02:03:46 -07001505 slab_early_init = 0;
1506
Linus Torvalds1da177e2005-04-16 15:20:36 -07001507 /* 4) Replace the bootstrap head arrays */
1508 {
Ingo Molnar2b2d5492006-07-03 00:25:28 -07001509 struct array_cache *ptr;
Christoph Lametere498be72005-09-09 13:03:32 -07001510
Pekka Enberg83b519e2009-06-10 19:40:04 +03001511 ptr = kmalloc(sizeof(struct arraycache_init), GFP_NOWAIT);
Christoph Lametere498be72005-09-09 13:03:32 -07001512
Christoph Lameter9b030cb2012-09-05 00:20:33 +00001513 memcpy(ptr, cpu_cache_get(kmem_cache),
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001514 sizeof(struct arraycache_init));
Ingo Molnar2b2d5492006-07-03 00:25:28 -07001515 /*
1516 * Do not assume that spinlocks can be initialized via memcpy:
1517 */
1518 spin_lock_init(&ptr->lock);
1519
Christoph Lameter9b030cb2012-09-05 00:20:33 +00001520 kmem_cache->array[smp_processor_id()] = ptr;
Christoph Lametere498be72005-09-09 13:03:32 -07001521
Pekka Enberg83b519e2009-06-10 19:40:04 +03001522 ptr = kmalloc(sizeof(struct arraycache_init), GFP_NOWAIT);
Christoph Lametere498be72005-09-09 13:03:32 -07001523
Christoph Lametere3366012013-01-10 19:14:18 +00001524 BUG_ON(cpu_cache_get(kmalloc_caches[INDEX_AC])
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001525 != &initarray_generic.cache);
Christoph Lametere3366012013-01-10 19:14:18 +00001526 memcpy(ptr, cpu_cache_get(kmalloc_caches[INDEX_AC]),
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001527 sizeof(struct arraycache_init));
Ingo Molnar2b2d5492006-07-03 00:25:28 -07001528 /*
1529 * Do not assume that spinlocks can be initialized via memcpy:
1530 */
1531 spin_lock_init(&ptr->lock);
1532
Christoph Lametere3366012013-01-10 19:14:18 +00001533 kmalloc_caches[INDEX_AC]->array[smp_processor_id()] = ptr;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001534 }
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001535 /* 5) Replace the bootstrap kmem_cache_node */
Christoph Lametere498be72005-09-09 13:03:32 -07001536 {
Pekka Enberg1ca4cb22006-10-06 00:43:52 -07001537 int nid;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001538
Mel Gorman9c09a952008-01-24 05:49:54 -08001539 for_each_online_node(nid) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001540 init_list(kmem_cache, &init_kmem_cache_node[CACHE_CACHE + nid], nid);
Pekka Enberg556a1692008-01-25 08:20:51 +02001541
Christoph Lametere3366012013-01-10 19:14:18 +00001542 init_list(kmalloc_caches[INDEX_AC],
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001543 &init_kmem_cache_node[SIZE_AC + nid], nid);
Christoph Lametere498be72005-09-09 13:03:32 -07001544
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001545 if (INDEX_AC != INDEX_NODE) {
1546 init_list(kmalloc_caches[INDEX_NODE],
1547 &init_kmem_cache_node[SIZE_NODE + nid], nid);
Christoph Lametere498be72005-09-09 13:03:32 -07001548 }
1549 }
1550 }
1551
Christoph Lameterf97d5f62013-01-10 19:12:17 +00001552 create_kmalloc_caches(ARCH_KMALLOC_FLAGS);
Pekka Enberg8429db52009-06-12 15:58:59 +03001553}
Ravikiran G Thirumalai056c6242006-09-25 23:31:38 -07001554
Pekka Enberg8429db52009-06-12 15:58:59 +03001555void __init kmem_cache_init_late(void)
1556{
1557 struct kmem_cache *cachep;
1558
Christoph Lameter97d06602012-07-06 15:25:11 -05001559 slab_state = UP;
Peter Zijlstra52cef182011-11-28 21:12:40 +01001560
Pekka Enberg8429db52009-06-12 15:58:59 +03001561 /* 6) resize the head arrays to their final sizes */
Christoph Lameter18004c52012-07-06 15:25:12 -05001562 mutex_lock(&slab_mutex);
1563 list_for_each_entry(cachep, &slab_caches, list)
Pekka Enberg8429db52009-06-12 15:58:59 +03001564 if (enable_cpucache(cachep, GFP_NOWAIT))
1565 BUG();
Christoph Lameter18004c52012-07-06 15:25:12 -05001566 mutex_unlock(&slab_mutex);
Ravikiran G Thirumalai056c6242006-09-25 23:31:38 -07001567
Michael Wang947ca182012-09-05 10:33:18 +08001568 /* Annotate slab for lockdep -- annotate the malloc caches */
1569 init_lock_keys();
1570
Christoph Lameter97d06602012-07-06 15:25:11 -05001571 /* Done! */
1572 slab_state = FULL;
1573
Andrew Mortona737b3e2006-03-22 00:08:11 -08001574 /*
1575 * Register a cpu startup notifier callback that initializes
1576 * cpu_cache_get for all new cpus
Linus Torvalds1da177e2005-04-16 15:20:36 -07001577 */
1578 register_cpu_notifier(&cpucache_notifier);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001579
David Rientjes8f9f8d92010-03-27 19:40:47 -07001580#ifdef CONFIG_NUMA
1581 /*
1582 * Register a memory hotplug callback that initializes and frees
Christoph Lameter6a673682013-01-10 19:14:19 +00001583 * node.
David Rientjes8f9f8d92010-03-27 19:40:47 -07001584 */
1585 hotplug_memory_notifier(slab_memory_callback, SLAB_CALLBACK_PRI);
1586#endif
1587
Andrew Mortona737b3e2006-03-22 00:08:11 -08001588 /*
1589 * The reap timers are started later, with a module init call: That part
1590 * of the kernel is not yet operational.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001591 */
1592}
1593
1594static int __init cpucache_init(void)
1595{
1596 int cpu;
1597
Andrew Mortona737b3e2006-03-22 00:08:11 -08001598 /*
1599 * Register the timers that return unneeded pages to the page allocator
Linus Torvalds1da177e2005-04-16 15:20:36 -07001600 */
Christoph Lametere498be72005-09-09 13:03:32 -07001601 for_each_online_cpu(cpu)
Andrew Mortona737b3e2006-03-22 00:08:11 -08001602 start_cpu_timer(cpu);
Glauber Costaa164f8962012-06-21 00:59:18 +04001603
1604 /* Done! */
Christoph Lameter97d06602012-07-06 15:25:11 -05001605 slab_state = FULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001606 return 0;
1607}
Linus Torvalds1da177e2005-04-16 15:20:36 -07001608__initcall(cpucache_init);
1609
Rafael Aquini8bdec192012-03-09 17:27:27 -03001610static noinline void
1611slab_out_of_memory(struct kmem_cache *cachep, gfp_t gfpflags, int nodeid)
1612{
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001613 struct kmem_cache_node *n;
Joonsoo Kim8456a642013-10-24 10:07:49 +09001614 struct page *page;
Rafael Aquini8bdec192012-03-09 17:27:27 -03001615 unsigned long flags;
1616 int node;
1617
1618 printk(KERN_WARNING
1619 "SLAB: Unable to allocate memory on node %d (gfp=0x%x)\n",
1620 nodeid, gfpflags);
1621 printk(KERN_WARNING " cache: %s, object size: %d, order: %d\n",
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05001622 cachep->name, cachep->size, cachep->gfporder);
Rafael Aquini8bdec192012-03-09 17:27:27 -03001623
1624 for_each_online_node(node) {
1625 unsigned long active_objs = 0, num_objs = 0, free_objects = 0;
1626 unsigned long active_slabs = 0, num_slabs = 0;
1627
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001628 n = cachep->node[node];
1629 if (!n)
Rafael Aquini8bdec192012-03-09 17:27:27 -03001630 continue;
1631
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001632 spin_lock_irqsave(&n->list_lock, flags);
Joonsoo Kim8456a642013-10-24 10:07:49 +09001633 list_for_each_entry(page, &n->slabs_full, lru) {
Rafael Aquini8bdec192012-03-09 17:27:27 -03001634 active_objs += cachep->num;
1635 active_slabs++;
1636 }
Joonsoo Kim8456a642013-10-24 10:07:49 +09001637 list_for_each_entry(page, &n->slabs_partial, lru) {
1638 active_objs += page->active;
Rafael Aquini8bdec192012-03-09 17:27:27 -03001639 active_slabs++;
1640 }
Joonsoo Kim8456a642013-10-24 10:07:49 +09001641 list_for_each_entry(page, &n->slabs_free, lru)
Rafael Aquini8bdec192012-03-09 17:27:27 -03001642 num_slabs++;
1643
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00001644 free_objects += n->free_objects;
1645 spin_unlock_irqrestore(&n->list_lock, flags);
Rafael Aquini8bdec192012-03-09 17:27:27 -03001646
1647 num_slabs += active_slabs;
1648 num_objs = num_slabs * cachep->num;
1649 printk(KERN_WARNING
1650 " node %d: slabs: %ld/%ld, objs: %ld/%ld, free: %ld\n",
1651 node, active_slabs, num_slabs, active_objs, num_objs,
1652 free_objects);
1653 }
1654}
1655
Linus Torvalds1da177e2005-04-16 15:20:36 -07001656/*
1657 * Interface to system's page allocator. No need to hold the cache-lock.
1658 *
1659 * If we requested dmaable memory, we will get it. Even if we
1660 * did not request dmaable memory, we might get it, but that
1661 * would be relatively rare and ignorable.
1662 */
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09001663static struct page *kmem_getpages(struct kmem_cache *cachep, gfp_t flags,
1664 int nodeid)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001665{
1666 struct page *page;
Christoph Hellwige1b6aa62006-06-23 02:03:17 -07001667 int nr_pages;
Christoph Lameter765c4502006-09-27 01:50:08 -07001668
Glauber Costaa618e892012-06-14 16:17:21 +04001669 flags |= cachep->allocflags;
Mel Gormane12ba742007-10-16 01:25:52 -07001670 if (cachep->flags & SLAB_RECLAIM_ACCOUNT)
1671 flags |= __GFP_RECLAIMABLE;
Christoph Hellwige1b6aa62006-06-23 02:03:17 -07001672
Linus Torvalds517d0862009-06-16 19:50:13 -07001673 page = alloc_pages_exact_node(nodeid, flags | __GFP_NOTRACK, cachep->gfporder);
Rafael Aquini8bdec192012-03-09 17:27:27 -03001674 if (!page) {
1675 if (!(flags & __GFP_NOWARN) && printk_ratelimit())
1676 slab_out_of_memory(cachep, flags, nodeid);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001677 return NULL;
Rafael Aquini8bdec192012-03-09 17:27:27 -03001678 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001679
Mel Gormanb37f1dd2012-07-31 16:44:03 -07001680 /* Record if ALLOC_NO_WATERMARKS was set when allocating the slab */
Mel Gorman072bb0a2012-07-31 16:43:58 -07001681 if (unlikely(page->pfmemalloc))
1682 pfmemalloc_active = true;
1683
Christoph Hellwige1b6aa62006-06-23 02:03:17 -07001684 nr_pages = (1 << cachep->gfporder);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001685 if (cachep->flags & SLAB_RECLAIM_ACCOUNT)
Christoph Lameter972d1a72006-09-25 23:31:51 -07001686 add_zone_page_state(page_zone(page),
1687 NR_SLAB_RECLAIMABLE, nr_pages);
1688 else
1689 add_zone_page_state(page_zone(page),
1690 NR_SLAB_UNRECLAIMABLE, nr_pages);
Joonsoo Kima57a4982013-10-24 10:07:44 +09001691 __SetPageSlab(page);
1692 if (page->pfmemalloc)
1693 SetPageSlabPfmemalloc(page);
Glauber Costa1f458cb2012-12-18 14:22:50 -08001694 memcg_bind_pages(cachep, cachep->gfporder);
Mel Gorman072bb0a2012-07-31 16:43:58 -07001695
Vegard Nossumb1eeab62008-11-25 16:55:53 +01001696 if (kmemcheck_enabled && !(cachep->flags & SLAB_NOTRACK)) {
1697 kmemcheck_alloc_shadow(page, cachep->gfporder, flags, nodeid);
1698
1699 if (cachep->ctor)
1700 kmemcheck_mark_uninitialized_pages(page, nr_pages);
1701 else
1702 kmemcheck_mark_unallocated_pages(page, nr_pages);
1703 }
Pekka Enbergc175eea2008-05-09 20:35:53 +02001704
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09001705 return page;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001706}
1707
1708/*
1709 * Interface to system's page release.
1710 */
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09001711static void kmem_freepages(struct kmem_cache *cachep, struct page *page)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001712{
Joonsoo Kima57a4982013-10-24 10:07:44 +09001713 const unsigned long nr_freed = (1 << cachep->gfporder);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001714
Vegard Nossumb1eeab62008-11-25 16:55:53 +01001715 kmemcheck_free_shadow(page, cachep->gfporder);
Pekka Enbergc175eea2008-05-09 20:35:53 +02001716
Christoph Lameter972d1a72006-09-25 23:31:51 -07001717 if (cachep->flags & SLAB_RECLAIM_ACCOUNT)
1718 sub_zone_page_state(page_zone(page),
1719 NR_SLAB_RECLAIMABLE, nr_freed);
1720 else
1721 sub_zone_page_state(page_zone(page),
1722 NR_SLAB_UNRECLAIMABLE, nr_freed);
Joonsoo Kim73293c22013-10-24 10:07:37 +09001723
Joonsoo Kima57a4982013-10-24 10:07:44 +09001724 BUG_ON(!PageSlab(page));
Joonsoo Kim73293c22013-10-24 10:07:37 +09001725 __ClearPageSlabPfmemalloc(page);
Joonsoo Kima57a4982013-10-24 10:07:44 +09001726 __ClearPageSlab(page);
Joonsoo Kim8456a642013-10-24 10:07:49 +09001727 page_mapcount_reset(page);
1728 page->mapping = NULL;
Glauber Costa1f458cb2012-12-18 14:22:50 -08001729
1730 memcg_release_pages(cachep, cachep->gfporder);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001731 if (current->reclaim_state)
1732 current->reclaim_state->reclaimed_slab += nr_freed;
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09001733 __free_memcg_kmem_pages(page, cachep->gfporder);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001734}
1735
1736static void kmem_rcu_free(struct rcu_head *head)
1737{
Joonsoo Kim68126702013-10-24 10:07:42 +09001738 struct kmem_cache *cachep;
1739 struct page *page;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001740
Joonsoo Kim68126702013-10-24 10:07:42 +09001741 page = container_of(head, struct page, rcu_head);
1742 cachep = page->slab_cache;
1743
1744 kmem_freepages(cachep, page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001745}
1746
1747#if DEBUG
1748
1749#ifdef CONFIG_DEBUG_PAGEALLOC
Pekka Enberg343e0d72006-02-01 03:05:50 -08001750static void store_stackinfo(struct kmem_cache *cachep, unsigned long *addr,
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001751 unsigned long caller)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001752{
Christoph Lameter8c138bc2012-06-13 10:24:58 -05001753 int size = cachep->object_size;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001754
Manfred Spraul3dafccf2006-02-01 03:05:42 -08001755 addr = (unsigned long *)&((char *)addr)[obj_offset(cachep)];
Linus Torvalds1da177e2005-04-16 15:20:36 -07001756
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001757 if (size < 5 * sizeof(unsigned long))
Linus Torvalds1da177e2005-04-16 15:20:36 -07001758 return;
1759
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001760 *addr++ = 0x12345678;
1761 *addr++ = caller;
1762 *addr++ = smp_processor_id();
1763 size -= 3 * sizeof(unsigned long);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001764 {
1765 unsigned long *sptr = &caller;
1766 unsigned long svalue;
1767
1768 while (!kstack_end(sptr)) {
1769 svalue = *sptr++;
1770 if (kernel_text_address(svalue)) {
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001771 *addr++ = svalue;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001772 size -= sizeof(unsigned long);
1773 if (size <= sizeof(unsigned long))
1774 break;
1775 }
1776 }
1777
1778 }
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001779 *addr++ = 0x87654321;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001780}
1781#endif
1782
Pekka Enberg343e0d72006-02-01 03:05:50 -08001783static void poison_obj(struct kmem_cache *cachep, void *addr, unsigned char val)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001784{
Christoph Lameter8c138bc2012-06-13 10:24:58 -05001785 int size = cachep->object_size;
Manfred Spraul3dafccf2006-02-01 03:05:42 -08001786 addr = &((char *)addr)[obj_offset(cachep)];
Linus Torvalds1da177e2005-04-16 15:20:36 -07001787
1788 memset(addr, val, size);
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001789 *(unsigned char *)(addr + size - 1) = POISON_END;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001790}
1791
1792static void dump_line(char *data, int offset, int limit)
1793{
1794 int i;
Dave Jonesaa83aa42006-09-29 01:59:51 -07001795 unsigned char error = 0;
1796 int bad_count = 0;
1797
Sebastian Andrzej Siewiorfdde6ab2011-07-29 18:22:13 +02001798 printk(KERN_ERR "%03x: ", offset);
Dave Jonesaa83aa42006-09-29 01:59:51 -07001799 for (i = 0; i < limit; i++) {
1800 if (data[offset + i] != POISON_FREE) {
1801 error = data[offset + i];
1802 bad_count++;
1803 }
Dave Jonesaa83aa42006-09-29 01:59:51 -07001804 }
Sebastian Andrzej Siewiorfdde6ab2011-07-29 18:22:13 +02001805 print_hex_dump(KERN_CONT, "", 0, 16, 1,
1806 &data[offset], limit, 1);
Dave Jonesaa83aa42006-09-29 01:59:51 -07001807
1808 if (bad_count == 1) {
1809 error ^= POISON_FREE;
1810 if (!(error & (error - 1))) {
1811 printk(KERN_ERR "Single bit error detected. Probably "
1812 "bad RAM.\n");
1813#ifdef CONFIG_X86
1814 printk(KERN_ERR "Run memtest86+ or a similar memory "
1815 "test tool.\n");
1816#else
1817 printk(KERN_ERR "Run a memory test tool.\n");
1818#endif
1819 }
1820 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001821}
1822#endif
1823
1824#if DEBUG
1825
Pekka Enberg343e0d72006-02-01 03:05:50 -08001826static void print_objinfo(struct kmem_cache *cachep, void *objp, int lines)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001827{
1828 int i, size;
1829 char *realobj;
1830
1831 if (cachep->flags & SLAB_RED_ZONE) {
David Woodhouseb46b8f12007-05-08 00:22:59 -07001832 printk(KERN_ERR "Redzone: 0x%llx/0x%llx.\n",
Andrew Mortona737b3e2006-03-22 00:08:11 -08001833 *dbg_redzone1(cachep, objp),
1834 *dbg_redzone2(cachep, objp));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001835 }
1836
1837 if (cachep->flags & SLAB_STORE_USER) {
Joe Perches071361d2012-12-12 10:19:12 -08001838 printk(KERN_ERR "Last user: [<%p>](%pSR)\n",
1839 *dbg_userword(cachep, objp),
1840 *dbg_userword(cachep, objp));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001841 }
Manfred Spraul3dafccf2006-02-01 03:05:42 -08001842 realobj = (char *)objp + obj_offset(cachep);
Christoph Lameter8c138bc2012-06-13 10:24:58 -05001843 size = cachep->object_size;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001844 for (i = 0; i < size && lines; i += 16, lines--) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001845 int limit;
1846 limit = 16;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001847 if (i + limit > size)
1848 limit = size - i;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001849 dump_line(realobj, i, limit);
1850 }
1851}
1852
Pekka Enberg343e0d72006-02-01 03:05:50 -08001853static void check_poison_obj(struct kmem_cache *cachep, void *objp)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001854{
1855 char *realobj;
1856 int size, i;
1857 int lines = 0;
1858
Manfred Spraul3dafccf2006-02-01 03:05:42 -08001859 realobj = (char *)objp + obj_offset(cachep);
Christoph Lameter8c138bc2012-06-13 10:24:58 -05001860 size = cachep->object_size;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001861
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001862 for (i = 0; i < size; i++) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001863 char exp = POISON_FREE;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001864 if (i == size - 1)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001865 exp = POISON_END;
1866 if (realobj[i] != exp) {
1867 int limit;
1868 /* Mismatch ! */
1869 /* Print header */
1870 if (lines == 0) {
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001871 printk(KERN_ERR
Dave Jonesface37f2011-11-15 15:03:52 -08001872 "Slab corruption (%s): %s start=%p, len=%d\n",
1873 print_tainted(), cachep->name, realobj, size);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001874 print_objinfo(cachep, objp, 0);
1875 }
1876 /* Hexdump the affected line */
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001877 i = (i / 16) * 16;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001878 limit = 16;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001879 if (i + limit > size)
1880 limit = size - i;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001881 dump_line(realobj, i, limit);
1882 i += 16;
1883 lines++;
1884 /* Limit to 5 lines */
1885 if (lines > 5)
1886 break;
1887 }
1888 }
1889 if (lines != 0) {
1890 /* Print some data about the neighboring objects, if they
1891 * exist:
1892 */
Joonsoo Kim8456a642013-10-24 10:07:49 +09001893 struct page *page = virt_to_head_page(objp);
Pekka Enberg8fea4e92006-03-22 00:08:10 -08001894 unsigned int objnr;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001895
Joonsoo Kim8456a642013-10-24 10:07:49 +09001896 objnr = obj_to_index(cachep, page, objp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001897 if (objnr) {
Joonsoo Kim8456a642013-10-24 10:07:49 +09001898 objp = index_to_obj(cachep, page, objnr - 1);
Manfred Spraul3dafccf2006-02-01 03:05:42 -08001899 realobj = (char *)objp + obj_offset(cachep);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001900 printk(KERN_ERR "Prev obj: start=%p, len=%d\n",
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001901 realobj, size);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001902 print_objinfo(cachep, objp, 2);
1903 }
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001904 if (objnr + 1 < cachep->num) {
Joonsoo Kim8456a642013-10-24 10:07:49 +09001905 objp = index_to_obj(cachep, page, objnr + 1);
Manfred Spraul3dafccf2006-02-01 03:05:42 -08001906 realobj = (char *)objp + obj_offset(cachep);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001907 printk(KERN_ERR "Next obj: start=%p, len=%d\n",
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001908 realobj, size);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001909 print_objinfo(cachep, objp, 2);
1910 }
1911 }
1912}
1913#endif
1914
Linus Torvalds1da177e2005-04-16 15:20:36 -07001915#if DEBUG
Joonsoo Kim8456a642013-10-24 10:07:49 +09001916static void slab_destroy_debugcheck(struct kmem_cache *cachep,
1917 struct page *page)
Matthew Dobson12dd36f2006-02-01 03:05:46 -08001918{
Linus Torvalds1da177e2005-04-16 15:20:36 -07001919 int i;
1920 for (i = 0; i < cachep->num; i++) {
Joonsoo Kim8456a642013-10-24 10:07:49 +09001921 void *objp = index_to_obj(cachep, page, i);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001922
1923 if (cachep->flags & SLAB_POISON) {
1924#ifdef CONFIG_DEBUG_PAGEALLOC
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05001925 if (cachep->size % PAGE_SIZE == 0 &&
Andrew Mortona737b3e2006-03-22 00:08:11 -08001926 OFF_SLAB(cachep))
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001927 kernel_map_pages(virt_to_page(objp),
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05001928 cachep->size / PAGE_SIZE, 1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001929 else
1930 check_poison_obj(cachep, objp);
1931#else
1932 check_poison_obj(cachep, objp);
1933#endif
1934 }
1935 if (cachep->flags & SLAB_RED_ZONE) {
1936 if (*dbg_redzone1(cachep, objp) != RED_INACTIVE)
1937 slab_error(cachep, "start of a freed object "
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001938 "was overwritten");
Linus Torvalds1da177e2005-04-16 15:20:36 -07001939 if (*dbg_redzone2(cachep, objp) != RED_INACTIVE)
1940 slab_error(cachep, "end of a freed object "
Pekka Enbergb28a02d2006-01-08 01:00:37 -08001941 "was overwritten");
Linus Torvalds1da177e2005-04-16 15:20:36 -07001942 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001943 }
Matthew Dobson12dd36f2006-02-01 03:05:46 -08001944}
Linus Torvalds1da177e2005-04-16 15:20:36 -07001945#else
Joonsoo Kim8456a642013-10-24 10:07:49 +09001946static void slab_destroy_debugcheck(struct kmem_cache *cachep,
1947 struct page *page)
Matthew Dobson12dd36f2006-02-01 03:05:46 -08001948{
Matthew Dobson12dd36f2006-02-01 03:05:46 -08001949}
Linus Torvalds1da177e2005-04-16 15:20:36 -07001950#endif
1951
Randy Dunlap911851e2006-03-22 00:08:14 -08001952/**
1953 * slab_destroy - destroy and release all objects in a slab
1954 * @cachep: cache pointer being destroyed
Masanari Iidacb8ee1a2014-01-28 02:57:08 +09001955 * @page: page pointer being destroyed
Randy Dunlap911851e2006-03-22 00:08:14 -08001956 *
Matthew Dobson12dd36f2006-02-01 03:05:46 -08001957 * Destroy all the objs in a slab, and release the mem back to the system.
Andrew Mortona737b3e2006-03-22 00:08:11 -08001958 * Before calling the slab must have been unlinked from the cache. The
1959 * cache-lock is not held/needed.
Matthew Dobson12dd36f2006-02-01 03:05:46 -08001960 */
Joonsoo Kim8456a642013-10-24 10:07:49 +09001961static void slab_destroy(struct kmem_cache *cachep, struct page *page)
Matthew Dobson12dd36f2006-02-01 03:05:46 -08001962{
Joonsoo Kim7e007352013-10-30 19:04:01 +09001963 void *freelist;
Matthew Dobson12dd36f2006-02-01 03:05:46 -08001964
Joonsoo Kim8456a642013-10-24 10:07:49 +09001965 freelist = page->freelist;
1966 slab_destroy_debugcheck(cachep, page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001967 if (unlikely(cachep->flags & SLAB_DESTROY_BY_RCU)) {
Joonsoo Kim68126702013-10-24 10:07:42 +09001968 struct rcu_head *head;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001969
Joonsoo Kim68126702013-10-24 10:07:42 +09001970 /*
1971 * RCU free overloads the RCU head over the LRU.
1972 * slab_page has been overloeaded over the LRU,
1973 * however it is not used from now on so that
1974 * we can use it safely.
1975 */
1976 head = (void *)&page->rcu_head;
1977 call_rcu(head, kmem_rcu_free);
1978
Linus Torvalds1da177e2005-04-16 15:20:36 -07001979 } else {
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09001980 kmem_freepages(cachep, page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001981 }
Joonsoo Kim68126702013-10-24 10:07:42 +09001982
1983 /*
Joonsoo Kim8456a642013-10-24 10:07:49 +09001984 * From now on, we don't use freelist
Joonsoo Kim68126702013-10-24 10:07:42 +09001985 * although actual page can be freed in rcu context
1986 */
1987 if (OFF_SLAB(cachep))
Joonsoo Kim8456a642013-10-24 10:07:49 +09001988 kmem_cache_free(cachep->freelist_cache, freelist);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001989}
1990
1991/**
Randy.Dunlapa70773d2006-02-01 03:05:52 -08001992 * calculate_slab_order - calculate size (page order) of slabs
1993 * @cachep: pointer to the cache that is being created
1994 * @size: size of objects to be created in this cache.
1995 * @align: required alignment for the objects.
1996 * @flags: slab allocation flags
1997 *
1998 * Also calculates the number of objects per slab.
Pekka Enberg4d268eb2006-01-08 01:00:36 -08001999 *
2000 * This could be made much more intelligent. For now, try to avoid using
2001 * high order pages for slabs. When the gfp() functions are more friendly
2002 * towards high-order requests, this should be changed.
2003 */
Andrew Mortona737b3e2006-03-22 00:08:11 -08002004static size_t calculate_slab_order(struct kmem_cache *cachep,
Randy Dunlapee13d782006-02-01 03:05:53 -08002005 size_t size, size_t align, unsigned long flags)
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002006{
Ingo Molnarb1ab41c2006-06-02 15:44:58 +02002007 unsigned long offslab_limit;
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002008 size_t left_over = 0;
Linus Torvalds9888e6f2006-03-06 17:44:43 -08002009 int gfporder;
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002010
Christoph Lameter0aa817f2007-05-16 22:11:01 -07002011 for (gfporder = 0; gfporder <= KMALLOC_MAX_ORDER; gfporder++) {
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002012 unsigned int num;
2013 size_t remainder;
2014
Linus Torvalds9888e6f2006-03-06 17:44:43 -08002015 cache_estimate(gfporder, size, align, flags, &remainder, &num);
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002016 if (!num)
2017 continue;
Linus Torvalds9888e6f2006-03-06 17:44:43 -08002018
Ingo Molnarb1ab41c2006-06-02 15:44:58 +02002019 if (flags & CFLGS_OFF_SLAB) {
2020 /*
2021 * Max number of objs-per-slab for caches which
2022 * use off-slab slabs. Needed to avoid a possible
2023 * looping condition in cache_grow().
2024 */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002025 offslab_limit = size;
Joonsoo Kim16025172013-10-24 10:07:46 +09002026 offslab_limit /= sizeof(unsigned int);
Ingo Molnarb1ab41c2006-06-02 15:44:58 +02002027
2028 if (num > offslab_limit)
2029 break;
2030 }
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002031
Linus Torvalds9888e6f2006-03-06 17:44:43 -08002032 /* Found something acceptable - save it away */
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002033 cachep->num = num;
Linus Torvalds9888e6f2006-03-06 17:44:43 -08002034 cachep->gfporder = gfporder;
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002035 left_over = remainder;
2036
2037 /*
Linus Torvaldsf78bb8a2006-03-08 10:33:05 -08002038 * A VFS-reclaimable slab tends to have most allocations
2039 * as GFP_NOFS and we really don't want to have to be allocating
2040 * higher-order pages when we are unable to shrink dcache.
2041 */
2042 if (flags & SLAB_RECLAIM_ACCOUNT)
2043 break;
2044
2045 /*
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002046 * Large number of objects is good, but very large slabs are
2047 * currently bad for the gfp()s.
2048 */
David Rientjes543585c2011-10-18 22:09:24 -07002049 if (gfporder >= slab_max_order)
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002050 break;
2051
Linus Torvalds9888e6f2006-03-06 17:44:43 -08002052 /*
2053 * Acceptable internal fragmentation?
2054 */
Andrew Mortona737b3e2006-03-22 00:08:11 -08002055 if (left_over * 8 <= (PAGE_SIZE << gfporder))
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002056 break;
2057 }
2058 return left_over;
2059}
2060
Pekka Enberg83b519e2009-06-10 19:40:04 +03002061static int __init_refok setup_cpu_cache(struct kmem_cache *cachep, gfp_t gfp)
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002062{
Christoph Lameter97d06602012-07-06 15:25:11 -05002063 if (slab_state >= FULL)
Pekka Enberg83b519e2009-06-10 19:40:04 +03002064 return enable_cpucache(cachep, gfp);
Christoph Lameter2ed3a4e2006-09-25 23:31:38 -07002065
Christoph Lameter97d06602012-07-06 15:25:11 -05002066 if (slab_state == DOWN) {
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002067 /*
Christoph Lameter2f9baa92012-11-28 16:23:09 +00002068 * Note: Creation of first cache (kmem_cache).
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002069 * The setup_node is taken care
Christoph Lameter2f9baa92012-11-28 16:23:09 +00002070 * of by the caller of __kmem_cache_create
2071 */
2072 cachep->array[smp_processor_id()] = &initarray_generic.cache;
2073 slab_state = PARTIAL;
2074 } else if (slab_state == PARTIAL) {
2075 /*
2076 * Note: the second kmem_cache_create must create the cache
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002077 * that's used by kmalloc(24), otherwise the creation of
2078 * further caches will BUG().
2079 */
2080 cachep->array[smp_processor_id()] = &initarray_generic.cache;
2081
2082 /*
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002083 * If the cache that's used by kmalloc(sizeof(kmem_cache_node)) is
2084 * the second cache, then we need to set up all its node/,
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002085 * otherwise the creation of further caches will BUG().
2086 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002087 set_up_node(cachep, SIZE_AC);
2088 if (INDEX_AC == INDEX_NODE)
2089 slab_state = PARTIAL_NODE;
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002090 else
Christoph Lameter97d06602012-07-06 15:25:11 -05002091 slab_state = PARTIAL_ARRAYCACHE;
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002092 } else {
Christoph Lameter2f9baa92012-11-28 16:23:09 +00002093 /* Remaining boot caches */
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002094 cachep->array[smp_processor_id()] =
Pekka Enberg83b519e2009-06-10 19:40:04 +03002095 kmalloc(sizeof(struct arraycache_init), gfp);
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002096
Christoph Lameter97d06602012-07-06 15:25:11 -05002097 if (slab_state == PARTIAL_ARRAYCACHE) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002098 set_up_node(cachep, SIZE_NODE);
2099 slab_state = PARTIAL_NODE;
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002100 } else {
2101 int node;
Pekka Enberg556a1692008-01-25 08:20:51 +02002102 for_each_online_node(node) {
Christoph Lameter6a673682013-01-10 19:14:19 +00002103 cachep->node[node] =
Christoph Lameter6744f082013-01-10 19:12:17 +00002104 kmalloc_node(sizeof(struct kmem_cache_node),
Pekka Enbergeb91f1d2009-06-12 14:56:09 +03002105 gfp, node);
Christoph Lameter6a673682013-01-10 19:14:19 +00002106 BUG_ON(!cachep->node[node]);
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002107 kmem_cache_node_init(cachep->node[node]);
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002108 }
2109 }
2110 }
Christoph Lameter6a673682013-01-10 19:14:19 +00002111 cachep->node[numa_mem_id()]->next_reap =
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002112 jiffies + REAPTIMEOUT_LIST3 +
2113 ((unsigned long)cachep) % REAPTIMEOUT_LIST3;
2114
2115 cpu_cache_get(cachep)->avail = 0;
2116 cpu_cache_get(cachep)->limit = BOOT_CPUCACHE_ENTRIES;
2117 cpu_cache_get(cachep)->batchcount = 1;
2118 cpu_cache_get(cachep)->touched = 0;
2119 cachep->batchcount = 1;
2120 cachep->limit = BOOT_CPUCACHE_ENTRIES;
Christoph Lameter2ed3a4e2006-09-25 23:31:38 -07002121 return 0;
Pekka Enbergf30cf7d2006-03-22 00:08:11 -08002122}
2123
Pekka Enberg4d268eb2006-01-08 01:00:36 -08002124/**
Christoph Lameter039363f2012-07-06 15:25:10 -05002125 * __kmem_cache_create - Create a cache.
Randy Dunlapa755b762012-11-06 17:10:10 -08002126 * @cachep: cache management descriptor
Linus Torvalds1da177e2005-04-16 15:20:36 -07002127 * @flags: SLAB flags
Linus Torvalds1da177e2005-04-16 15:20:36 -07002128 *
2129 * Returns a ptr to the cache on success, NULL on failure.
2130 * Cannot be called within a int, but can be interrupted.
Paul Mundt20c2df82007-07-20 10:11:58 +09002131 * The @ctor is run when new pages are allocated by the cache.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002132 *
Linus Torvalds1da177e2005-04-16 15:20:36 -07002133 * The flags are
2134 *
2135 * %SLAB_POISON - Poison the slab with a known test pattern (a5a5a5a5)
2136 * to catch references to uninitialised memory.
2137 *
2138 * %SLAB_RED_ZONE - Insert `Red' zones around the allocated memory to check
2139 * for buffer overruns.
2140 *
Linus Torvalds1da177e2005-04-16 15:20:36 -07002141 * %SLAB_HWCACHE_ALIGN - Align the objects in this cache to a hardware
2142 * cacheline. This can be beneficial if you're counting cycles as closely
2143 * as davem.
2144 */
Christoph Lameter278b1bb2012-09-05 00:20:34 +00002145int
Christoph Lameter8a13a4c2012-09-04 23:18:33 +00002146__kmem_cache_create (struct kmem_cache *cachep, unsigned long flags)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002147{
Joonsoo Kim8456a642013-10-24 10:07:49 +09002148 size_t left_over, freelist_size, ralign;
Pekka Enberg83b519e2009-06-10 19:40:04 +03002149 gfp_t gfp;
Christoph Lameter278b1bb2012-09-05 00:20:34 +00002150 int err;
Christoph Lameter8a13a4c2012-09-04 23:18:33 +00002151 size_t size = cachep->size;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002152
Linus Torvalds1da177e2005-04-16 15:20:36 -07002153#if DEBUG
Linus Torvalds1da177e2005-04-16 15:20:36 -07002154#if FORCED_DEBUG
2155 /*
2156 * Enable redzoning and last user accounting, except for caches with
2157 * large objects, if the increased size would increase the object size
2158 * above the next power of two: caches with object sizes just above a
2159 * power of two have a significant amount of internal fragmentation.
2160 */
David Woodhouse87a927c2007-07-04 21:26:44 -04002161 if (size < 4096 || fls(size - 1) == fls(size-1 + REDZONE_ALIGN +
2162 2 * sizeof(unsigned long long)))
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002163 flags |= SLAB_RED_ZONE | SLAB_STORE_USER;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002164 if (!(flags & SLAB_DESTROY_BY_RCU))
2165 flags |= SLAB_POISON;
2166#endif
2167 if (flags & SLAB_DESTROY_BY_RCU)
2168 BUG_ON(flags & SLAB_POISON);
2169#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -07002170
Andrew Mortona737b3e2006-03-22 00:08:11 -08002171 /*
2172 * Check that size is in terms of words. This is needed to avoid
Linus Torvalds1da177e2005-04-16 15:20:36 -07002173 * unaligned accesses for some archs when redzoning is used, and makes
2174 * sure any on-slab bufctl's are also correctly aligned.
2175 */
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002176 if (size & (BYTES_PER_WORD - 1)) {
2177 size += (BYTES_PER_WORD - 1);
2178 size &= ~(BYTES_PER_WORD - 1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002179 }
2180
Pekka Enbergca5f9702006-09-25 23:31:25 -07002181 /*
David Woodhouse87a927c2007-07-04 21:26:44 -04002182 * Redzoning and user store require word alignment or possibly larger.
2183 * Note this will be overridden by architecture or caller mandated
2184 * alignment if either is greater than BYTES_PER_WORD.
Pekka Enbergca5f9702006-09-25 23:31:25 -07002185 */
David Woodhouse87a927c2007-07-04 21:26:44 -04002186 if (flags & SLAB_STORE_USER)
2187 ralign = BYTES_PER_WORD;
2188
2189 if (flags & SLAB_RED_ZONE) {
2190 ralign = REDZONE_ALIGN;
2191 /* If redzoning, ensure that the second redzone is suitably
2192 * aligned, by adjusting the object size accordingly. */
2193 size += REDZONE_ALIGN - 1;
2194 size &= ~(REDZONE_ALIGN - 1);
2195 }
Pekka Enbergca5f9702006-09-25 23:31:25 -07002196
Kevin Hilmana44b56d2006-12-06 20:32:11 -08002197 /* 3) caller mandated alignment */
Christoph Lameter8a13a4c2012-09-04 23:18:33 +00002198 if (ralign < cachep->align) {
2199 ralign = cachep->align;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002200 }
Pekka Enberg3ff84a72011-02-14 17:46:21 +02002201 /* disable debug if necessary */
2202 if (ralign > __alignof__(unsigned long long))
Kevin Hilmana44b56d2006-12-06 20:32:11 -08002203 flags &= ~(SLAB_RED_ZONE | SLAB_STORE_USER);
Andrew Mortona737b3e2006-03-22 00:08:11 -08002204 /*
Pekka Enbergca5f9702006-09-25 23:31:25 -07002205 * 4) Store it.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002206 */
Christoph Lameter8a13a4c2012-09-04 23:18:33 +00002207 cachep->align = ralign;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002208
Pekka Enberg83b519e2009-06-10 19:40:04 +03002209 if (slab_is_available())
2210 gfp = GFP_KERNEL;
2211 else
2212 gfp = GFP_NOWAIT;
2213
Christoph Lameter6a673682013-01-10 19:14:19 +00002214 setup_node_pointer(cachep);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002215#if DEBUG
Linus Torvalds1da177e2005-04-16 15:20:36 -07002216
Pekka Enbergca5f9702006-09-25 23:31:25 -07002217 /*
2218 * Both debugging options require word-alignment which is calculated
2219 * into align above.
2220 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002221 if (flags & SLAB_RED_ZONE) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002222 /* add space for red zone words */
Pekka Enberg3ff84a72011-02-14 17:46:21 +02002223 cachep->obj_offset += sizeof(unsigned long long);
2224 size += 2 * sizeof(unsigned long long);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002225 }
2226 if (flags & SLAB_STORE_USER) {
Pekka Enbergca5f9702006-09-25 23:31:25 -07002227 /* user store requires one word storage behind the end of
David Woodhouse87a927c2007-07-04 21:26:44 -04002228 * the real object. But if the second red zone needs to be
2229 * aligned to 64 bits, we must allow that much space.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002230 */
David Woodhouse87a927c2007-07-04 21:26:44 -04002231 if (flags & SLAB_RED_ZONE)
2232 size += REDZONE_ALIGN;
2233 else
2234 size += BYTES_PER_WORD;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002235 }
2236#if FORCED_DEBUG && defined(CONFIG_DEBUG_PAGEALLOC)
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002237 if (size >= kmalloc_size(INDEX_NODE + 1)
Tetsuo Handa608da7e2012-09-30 17:28:25 +09002238 && cachep->object_size > cache_line_size()
2239 && ALIGN(size, cachep->align) < PAGE_SIZE) {
2240 cachep->obj_offset += PAGE_SIZE - ALIGN(size, cachep->align);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002241 size = PAGE_SIZE;
2242 }
2243#endif
2244#endif
2245
Ingo Molnare0a42722006-06-23 02:03:46 -07002246 /*
2247 * Determine if the slab management is 'on' or 'off' slab.
2248 * (bootstrapping cannot cope with offslab caches so don't do
Catalin Marinase7cb55b2009-10-28 13:33:08 +00002249 * it too early on. Always use on-slab management when
2250 * SLAB_NOLEAKTRACE to avoid recursive calls into kmemleak)
Ingo Molnare0a42722006-06-23 02:03:46 -07002251 */
Catalin Marinase7cb55b2009-10-28 13:33:08 +00002252 if ((size >= (PAGE_SIZE >> 3)) && !slab_early_init &&
2253 !(flags & SLAB_NOLEAKTRACE))
Linus Torvalds1da177e2005-04-16 15:20:36 -07002254 /*
2255 * Size is large, assume best to place the slab management obj
2256 * off-slab (should allow better packing of objs).
2257 */
2258 flags |= CFLGS_OFF_SLAB;
2259
Christoph Lameter8a13a4c2012-09-04 23:18:33 +00002260 size = ALIGN(size, cachep->align);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002261
Christoph Lameter8a13a4c2012-09-04 23:18:33 +00002262 left_over = calculate_slab_order(cachep, size, cachep->align, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002263
Christoph Lameter8a13a4c2012-09-04 23:18:33 +00002264 if (!cachep->num)
Christoph Lameter278b1bb2012-09-05 00:20:34 +00002265 return -E2BIG;
Christoph Lameter8a13a4c2012-09-04 23:18:33 +00002266
Joonsoo Kim8456a642013-10-24 10:07:49 +09002267 freelist_size =
2268 ALIGN(cachep->num * sizeof(unsigned int), cachep->align);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002269
2270 /*
2271 * If the slab has been placed off-slab, and we have enough space then
2272 * move it on-slab. This is at the expense of any extra colouring.
2273 */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002274 if (flags & CFLGS_OFF_SLAB && left_over >= freelist_size) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002275 flags &= ~CFLGS_OFF_SLAB;
Joonsoo Kim8456a642013-10-24 10:07:49 +09002276 left_over -= freelist_size;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002277 }
2278
2279 if (flags & CFLGS_OFF_SLAB) {
2280 /* really off slab. No need for manual alignment */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002281 freelist_size = cachep->num * sizeof(unsigned int);
Ron Lee67461362009-05-22 04:58:22 +09302282
2283#ifdef CONFIG_PAGE_POISONING
2284 /* If we're going to use the generic kernel_map_pages()
2285 * poisoning, then it's going to smash the contents of
2286 * the redzone and userword anyhow, so switch them off.
2287 */
2288 if (size % PAGE_SIZE == 0 && flags & SLAB_POISON)
2289 flags &= ~(SLAB_RED_ZONE | SLAB_STORE_USER);
2290#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -07002291 }
2292
2293 cachep->colour_off = cache_line_size();
2294 /* Offset must be a multiple of the alignment. */
Christoph Lameter8a13a4c2012-09-04 23:18:33 +00002295 if (cachep->colour_off < cachep->align)
2296 cachep->colour_off = cachep->align;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002297 cachep->colour = left_over / cachep->colour_off;
Joonsoo Kim8456a642013-10-24 10:07:49 +09002298 cachep->freelist_size = freelist_size;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002299 cachep->flags = flags;
Joonsoo Kima57a4982013-10-24 10:07:44 +09002300 cachep->allocflags = __GFP_COMP;
Christoph Lameter4b51d662007-02-10 01:43:10 -08002301 if (CONFIG_ZONE_DMA_FLAG && (flags & SLAB_CACHE_DMA))
Glauber Costaa618e892012-06-14 16:17:21 +04002302 cachep->allocflags |= GFP_DMA;
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05002303 cachep->size = size;
Eric Dumazet6a2d7a92006-12-13 00:34:27 -08002304 cachep->reciprocal_buffer_size = reciprocal_value(size);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002305
Ravikiran G Thirumalaie5ac9c52006-09-25 23:31:34 -07002306 if (flags & CFLGS_OFF_SLAB) {
Joonsoo Kim8456a642013-10-24 10:07:49 +09002307 cachep->freelist_cache = kmalloc_slab(freelist_size, 0u);
Ravikiran G Thirumalaie5ac9c52006-09-25 23:31:34 -07002308 /*
2309 * This is a possibility for one of the malloc_sizes caches.
2310 * But since we go off slab only for object size greater than
2311 * PAGE_SIZE/8, and malloc_sizes gets created in ascending order,
2312 * this should not happen at all.
2313 * But leave a BUG_ON for some lucky dude.
2314 */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002315 BUG_ON(ZERO_OR_NULL_PTR(cachep->freelist_cache));
Ravikiran G Thirumalaie5ac9c52006-09-25 23:31:34 -07002316 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002317
Christoph Lameter278b1bb2012-09-05 00:20:34 +00002318 err = setup_cpu_cache(cachep, gfp);
2319 if (err) {
Christoph Lameter12c36672012-09-04 23:38:33 +00002320 __kmem_cache_shutdown(cachep);
Christoph Lameter278b1bb2012-09-05 00:20:34 +00002321 return err;
Christoph Lameter2ed3a4e2006-09-25 23:31:38 -07002322 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002323
Peter Zijlstra83835b32011-07-22 15:26:05 +02002324 if (flags & SLAB_DEBUG_OBJECTS) {
2325 /*
2326 * Would deadlock through slab_destroy()->call_rcu()->
2327 * debug_object_activate()->kmem_cache_alloc().
2328 */
2329 WARN_ON_ONCE(flags & SLAB_DESTROY_BY_RCU);
2330
2331 slab_set_debugobj_lock_classes(cachep);
Glauber Costa6ccfb5b2012-12-18 14:22:31 -08002332 } else if (!OFF_SLAB(cachep) && !(flags & SLAB_DESTROY_BY_RCU))
2333 on_slab_lock_classes(cachep);
Peter Zijlstra83835b32011-07-22 15:26:05 +02002334
Christoph Lameter278b1bb2012-09-05 00:20:34 +00002335 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002336}
Linus Torvalds1da177e2005-04-16 15:20:36 -07002337
2338#if DEBUG
2339static void check_irq_off(void)
2340{
2341 BUG_ON(!irqs_disabled());
2342}
2343
2344static void check_irq_on(void)
2345{
2346 BUG_ON(irqs_disabled());
2347}
2348
Pekka Enberg343e0d72006-02-01 03:05:50 -08002349static void check_spinlock_acquired(struct kmem_cache *cachep)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002350{
2351#ifdef CONFIG_SMP
2352 check_irq_off();
Christoph Lameter6a673682013-01-10 19:14:19 +00002353 assert_spin_locked(&cachep->node[numa_mem_id()]->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002354#endif
2355}
Christoph Lametere498be72005-09-09 13:03:32 -07002356
Pekka Enberg343e0d72006-02-01 03:05:50 -08002357static void check_spinlock_acquired_node(struct kmem_cache *cachep, int node)
Christoph Lametere498be72005-09-09 13:03:32 -07002358{
2359#ifdef CONFIG_SMP
2360 check_irq_off();
Christoph Lameter6a673682013-01-10 19:14:19 +00002361 assert_spin_locked(&cachep->node[node]->list_lock);
Christoph Lametere498be72005-09-09 13:03:32 -07002362#endif
2363}
2364
Linus Torvalds1da177e2005-04-16 15:20:36 -07002365#else
2366#define check_irq_off() do { } while(0)
2367#define check_irq_on() do { } while(0)
2368#define check_spinlock_acquired(x) do { } while(0)
Christoph Lametere498be72005-09-09 13:03:32 -07002369#define check_spinlock_acquired_node(x, y) do { } while(0)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002370#endif
2371
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002372static void drain_array(struct kmem_cache *cachep, struct kmem_cache_node *n,
Christoph Lameteraab22072006-03-22 00:09:06 -08002373 struct array_cache *ac,
2374 int force, int node);
2375
Linus Torvalds1da177e2005-04-16 15:20:36 -07002376static void do_drain(void *arg)
2377{
Andrew Mortona737b3e2006-03-22 00:08:11 -08002378 struct kmem_cache *cachep = arg;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002379 struct array_cache *ac;
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07002380 int node = numa_mem_id();
Linus Torvalds1da177e2005-04-16 15:20:36 -07002381
2382 check_irq_off();
Pekka Enberg9a2dba42006-02-01 03:05:49 -08002383 ac = cpu_cache_get(cachep);
Christoph Lameter6a673682013-01-10 19:14:19 +00002384 spin_lock(&cachep->node[node]->list_lock);
Christoph Lameterff694162005-09-22 21:44:02 -07002385 free_block(cachep, ac->entry, ac->avail, node);
Christoph Lameter6a673682013-01-10 19:14:19 +00002386 spin_unlock(&cachep->node[node]->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002387 ac->avail = 0;
2388}
2389
Pekka Enberg343e0d72006-02-01 03:05:50 -08002390static void drain_cpu_caches(struct kmem_cache *cachep)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002391{
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002392 struct kmem_cache_node *n;
Christoph Lametere498be72005-09-09 13:03:32 -07002393 int node;
2394
Jens Axboe15c8b6c2008-05-09 09:39:44 +02002395 on_each_cpu(do_drain, cachep, 1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002396 check_irq_on();
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002397 for_each_online_node(node) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002398 n = cachep->node[node];
2399 if (n && n->alien)
2400 drain_alien_cache(cachep, n->alien);
Roland Dreiera4523a82006-05-15 11:41:00 -07002401 }
2402
2403 for_each_online_node(node) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002404 n = cachep->node[node];
2405 if (n)
2406 drain_array(cachep, n, n->shared, 1, node);
Christoph Lametere498be72005-09-09 13:03:32 -07002407 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002408}
2409
Christoph Lametered11d9e2006-06-30 01:55:45 -07002410/*
2411 * Remove slabs from the list of free slabs.
2412 * Specify the number of slabs to drain in tofree.
2413 *
2414 * Returns the actual number of slabs released.
2415 */
2416static int drain_freelist(struct kmem_cache *cache,
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002417 struct kmem_cache_node *n, int tofree)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002418{
Christoph Lametered11d9e2006-06-30 01:55:45 -07002419 struct list_head *p;
2420 int nr_freed;
Joonsoo Kim8456a642013-10-24 10:07:49 +09002421 struct page *page;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002422
Christoph Lametered11d9e2006-06-30 01:55:45 -07002423 nr_freed = 0;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002424 while (nr_freed < tofree && !list_empty(&n->slabs_free)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002425
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002426 spin_lock_irq(&n->list_lock);
2427 p = n->slabs_free.prev;
2428 if (p == &n->slabs_free) {
2429 spin_unlock_irq(&n->list_lock);
Christoph Lametered11d9e2006-06-30 01:55:45 -07002430 goto out;
2431 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002432
Joonsoo Kim8456a642013-10-24 10:07:49 +09002433 page = list_entry(p, struct page, lru);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002434#if DEBUG
Joonsoo Kim8456a642013-10-24 10:07:49 +09002435 BUG_ON(page->active);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002436#endif
Joonsoo Kim8456a642013-10-24 10:07:49 +09002437 list_del(&page->lru);
Christoph Lametered11d9e2006-06-30 01:55:45 -07002438 /*
2439 * Safe to drop the lock. The slab is no longer linked
2440 * to the cache.
2441 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002442 n->free_objects -= cache->num;
2443 spin_unlock_irq(&n->list_lock);
Joonsoo Kim8456a642013-10-24 10:07:49 +09002444 slab_destroy(cache, page);
Christoph Lametered11d9e2006-06-30 01:55:45 -07002445 nr_freed++;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002446 }
Christoph Lametered11d9e2006-06-30 01:55:45 -07002447out:
2448 return nr_freed;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002449}
2450
Christoph Lameter18004c52012-07-06 15:25:12 -05002451/* Called with slab_mutex held to protect against cpu hotplug */
Pekka Enberg343e0d72006-02-01 03:05:50 -08002452static int __cache_shrink(struct kmem_cache *cachep)
Christoph Lametere498be72005-09-09 13:03:32 -07002453{
2454 int ret = 0, i = 0;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002455 struct kmem_cache_node *n;
Christoph Lametere498be72005-09-09 13:03:32 -07002456
2457 drain_cpu_caches(cachep);
2458
2459 check_irq_on();
2460 for_each_online_node(i) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002461 n = cachep->node[i];
2462 if (!n)
Christoph Lametered11d9e2006-06-30 01:55:45 -07002463 continue;
2464
Wanpeng Li0fa81032013-07-04 08:33:22 +08002465 drain_freelist(cachep, n, slabs_tofree(cachep, n));
Christoph Lametered11d9e2006-06-30 01:55:45 -07002466
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002467 ret += !list_empty(&n->slabs_full) ||
2468 !list_empty(&n->slabs_partial);
Christoph Lametere498be72005-09-09 13:03:32 -07002469 }
2470 return (ret ? 1 : 0);
2471}
2472
Linus Torvalds1da177e2005-04-16 15:20:36 -07002473/**
2474 * kmem_cache_shrink - Shrink a cache.
2475 * @cachep: The cache to shrink.
2476 *
2477 * Releases as many slabs as possible for a cache.
2478 * To help debugging, a zero exit status indicates all slabs were released.
2479 */
Pekka Enberg343e0d72006-02-01 03:05:50 -08002480int kmem_cache_shrink(struct kmem_cache *cachep)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002481{
Ravikiran G Thirumalai8f5be202006-12-06 20:32:14 -08002482 int ret;
Eric Sesterhenn40094fa2006-04-02 13:49:25 +02002483 BUG_ON(!cachep || in_interrupt());
Linus Torvalds1da177e2005-04-16 15:20:36 -07002484
Gautham R Shenoy95402b32008-01-25 21:08:02 +01002485 get_online_cpus();
Christoph Lameter18004c52012-07-06 15:25:12 -05002486 mutex_lock(&slab_mutex);
Ravikiran G Thirumalai8f5be202006-12-06 20:32:14 -08002487 ret = __cache_shrink(cachep);
Christoph Lameter18004c52012-07-06 15:25:12 -05002488 mutex_unlock(&slab_mutex);
Gautham R Shenoy95402b32008-01-25 21:08:02 +01002489 put_online_cpus();
Ravikiran G Thirumalai8f5be202006-12-06 20:32:14 -08002490 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002491}
2492EXPORT_SYMBOL(kmem_cache_shrink);
2493
Christoph Lameter945cf2b2012-09-04 23:18:33 +00002494int __kmem_cache_shutdown(struct kmem_cache *cachep)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002495{
Christoph Lameter12c36672012-09-04 23:38:33 +00002496 int i;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002497 struct kmem_cache_node *n;
Christoph Lameter12c36672012-09-04 23:38:33 +00002498 int rc = __cache_shrink(cachep);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002499
Christoph Lameter12c36672012-09-04 23:38:33 +00002500 if (rc)
2501 return rc;
2502
2503 for_each_online_cpu(i)
2504 kfree(cachep->array[i]);
2505
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002506 /* NUMA: free the node structures */
Christoph Lameter12c36672012-09-04 23:38:33 +00002507 for_each_online_node(i) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002508 n = cachep->node[i];
2509 if (n) {
2510 kfree(n->shared);
2511 free_alien_cache(n->alien);
2512 kfree(n);
Christoph Lameter12c36672012-09-04 23:38:33 +00002513 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002514 }
Christoph Lameter12c36672012-09-04 23:38:33 +00002515 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002516}
Linus Torvalds1da177e2005-04-16 15:20:36 -07002517
Ravikiran G Thirumalaie5ac9c52006-09-25 23:31:34 -07002518/*
2519 * Get the memory for a slab management obj.
2520 * For a slab cache when the slab descriptor is off-slab, slab descriptors
2521 * always come from malloc_sizes caches. The slab descriptor cannot
2522 * come from the same cache which is getting created because,
2523 * when we are searching for an appropriate cache for these
2524 * descriptors in kmem_cache_create, we search through the malloc_sizes array.
2525 * If we are creating a malloc_sizes cache here it would not be visible to
2526 * kmem_find_general_cachep till the initialization is complete.
Joonsoo Kim8456a642013-10-24 10:07:49 +09002527 * Hence we cannot have freelist_cache same as the original cache.
Ravikiran G Thirumalaie5ac9c52006-09-25 23:31:34 -07002528 */
Joonsoo Kim7e007352013-10-30 19:04:01 +09002529static void *alloc_slabmgmt(struct kmem_cache *cachep,
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09002530 struct page *page, int colour_off,
2531 gfp_t local_flags, int nodeid)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002532{
Joonsoo Kim7e007352013-10-30 19:04:01 +09002533 void *freelist;
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09002534 void *addr = page_address(page);
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002535
Linus Torvalds1da177e2005-04-16 15:20:36 -07002536 if (OFF_SLAB(cachep)) {
2537 /* Slab management obj is off-slab. */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002538 freelist = kmem_cache_alloc_node(cachep->freelist_cache,
Pekka Enberg8759ec52008-11-26 10:01:31 +02002539 local_flags, nodeid);
Joonsoo Kim8456a642013-10-24 10:07:49 +09002540 if (!freelist)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002541 return NULL;
2542 } else {
Joonsoo Kim8456a642013-10-24 10:07:49 +09002543 freelist = addr + colour_off;
2544 colour_off += cachep->freelist_size;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002545 }
Joonsoo Kim8456a642013-10-24 10:07:49 +09002546 page->active = 0;
2547 page->s_mem = addr + colour_off;
2548 return freelist;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002549}
2550
Joonsoo Kime7444d92013-10-24 10:07:51 +09002551static inline unsigned int *slab_freelist(struct page *page)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002552{
Joonsoo Kim8456a642013-10-24 10:07:49 +09002553 return (unsigned int *)(page->freelist);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002554}
2555
Pekka Enberg343e0d72006-02-01 03:05:50 -08002556static void cache_init_objs(struct kmem_cache *cachep,
Joonsoo Kim8456a642013-10-24 10:07:49 +09002557 struct page *page)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002558{
2559 int i;
2560
2561 for (i = 0; i < cachep->num; i++) {
Joonsoo Kim8456a642013-10-24 10:07:49 +09002562 void *objp = index_to_obj(cachep, page, i);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002563#if DEBUG
2564 /* need to poison the objs? */
2565 if (cachep->flags & SLAB_POISON)
2566 poison_obj(cachep, objp, POISON_FREE);
2567 if (cachep->flags & SLAB_STORE_USER)
2568 *dbg_userword(cachep, objp) = NULL;
2569
2570 if (cachep->flags & SLAB_RED_ZONE) {
2571 *dbg_redzone1(cachep, objp) = RED_INACTIVE;
2572 *dbg_redzone2(cachep, objp) = RED_INACTIVE;
2573 }
2574 /*
Andrew Mortona737b3e2006-03-22 00:08:11 -08002575 * Constructors are not allowed to allocate memory from the same
2576 * cache which they are a constructor for. Otherwise, deadlock.
2577 * They must also be threaded.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002578 */
2579 if (cachep->ctor && !(cachep->flags & SLAB_POISON))
Alexey Dobriyan51cc5062008-07-25 19:45:34 -07002580 cachep->ctor(objp + obj_offset(cachep));
Linus Torvalds1da177e2005-04-16 15:20:36 -07002581
2582 if (cachep->flags & SLAB_RED_ZONE) {
2583 if (*dbg_redzone2(cachep, objp) != RED_INACTIVE)
2584 slab_error(cachep, "constructor overwrote the"
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002585 " end of an object");
Linus Torvalds1da177e2005-04-16 15:20:36 -07002586 if (*dbg_redzone1(cachep, objp) != RED_INACTIVE)
2587 slab_error(cachep, "constructor overwrote the"
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002588 " start of an object");
Linus Torvalds1da177e2005-04-16 15:20:36 -07002589 }
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05002590 if ((cachep->size % PAGE_SIZE) == 0 &&
Andrew Mortona737b3e2006-03-22 00:08:11 -08002591 OFF_SLAB(cachep) && cachep->flags & SLAB_POISON)
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002592 kernel_map_pages(virt_to_page(objp),
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05002593 cachep->size / PAGE_SIZE, 0);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002594#else
2595 if (cachep->ctor)
Alexey Dobriyan51cc5062008-07-25 19:45:34 -07002596 cachep->ctor(objp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002597#endif
Joonsoo Kime7444d92013-10-24 10:07:51 +09002598 slab_freelist(page)[i] = i;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002599 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002600}
2601
Pekka Enberg343e0d72006-02-01 03:05:50 -08002602static void kmem_flagcheck(struct kmem_cache *cachep, gfp_t flags)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002603{
Christoph Lameter4b51d662007-02-10 01:43:10 -08002604 if (CONFIG_ZONE_DMA_FLAG) {
2605 if (flags & GFP_DMA)
Glauber Costaa618e892012-06-14 16:17:21 +04002606 BUG_ON(!(cachep->allocflags & GFP_DMA));
Christoph Lameter4b51d662007-02-10 01:43:10 -08002607 else
Glauber Costaa618e892012-06-14 16:17:21 +04002608 BUG_ON(cachep->allocflags & GFP_DMA);
Christoph Lameter4b51d662007-02-10 01:43:10 -08002609 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002610}
2611
Joonsoo Kim8456a642013-10-24 10:07:49 +09002612static void *slab_get_obj(struct kmem_cache *cachep, struct page *page,
Andrew Mortona737b3e2006-03-22 00:08:11 -08002613 int nodeid)
Matthew Dobson78d382d2006-02-01 03:05:47 -08002614{
Joonsoo Kimb1cb0982013-10-24 10:07:45 +09002615 void *objp;
Matthew Dobson78d382d2006-02-01 03:05:47 -08002616
Joonsoo Kime7444d92013-10-24 10:07:51 +09002617 objp = index_to_obj(cachep, page, slab_freelist(page)[page->active]);
Joonsoo Kim8456a642013-10-24 10:07:49 +09002618 page->active++;
Matthew Dobson78d382d2006-02-01 03:05:47 -08002619#if DEBUG
Joonsoo Kim1ea991b2013-10-24 10:07:40 +09002620 WARN_ON(page_to_nid(virt_to_page(objp)) != nodeid);
Matthew Dobson78d382d2006-02-01 03:05:47 -08002621#endif
Matthew Dobson78d382d2006-02-01 03:05:47 -08002622
2623 return objp;
2624}
2625
Joonsoo Kim8456a642013-10-24 10:07:49 +09002626static void slab_put_obj(struct kmem_cache *cachep, struct page *page,
Andrew Mortona737b3e2006-03-22 00:08:11 -08002627 void *objp, int nodeid)
Matthew Dobson78d382d2006-02-01 03:05:47 -08002628{
Joonsoo Kim8456a642013-10-24 10:07:49 +09002629 unsigned int objnr = obj_to_index(cachep, page, objp);
Matthew Dobson78d382d2006-02-01 03:05:47 -08002630#if DEBUG
Joonsoo Kim16025172013-10-24 10:07:46 +09002631 unsigned int i;
Matthew Dobson78d382d2006-02-01 03:05:47 -08002632
Matthew Dobson78d382d2006-02-01 03:05:47 -08002633 /* Verify that the slab belongs to the intended node */
Joonsoo Kim1ea991b2013-10-24 10:07:40 +09002634 WARN_ON(page_to_nid(virt_to_page(objp)) != nodeid);
Matthew Dobson78d382d2006-02-01 03:05:47 -08002635
Joonsoo Kimb1cb0982013-10-24 10:07:45 +09002636 /* Verify double free bug */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002637 for (i = page->active; i < cachep->num; i++) {
Joonsoo Kime7444d92013-10-24 10:07:51 +09002638 if (slab_freelist(page)[i] == objnr) {
Joonsoo Kimb1cb0982013-10-24 10:07:45 +09002639 printk(KERN_ERR "slab: double free detected in cache "
2640 "'%s', objp %p\n", cachep->name, objp);
2641 BUG();
2642 }
Matthew Dobson78d382d2006-02-01 03:05:47 -08002643 }
2644#endif
Joonsoo Kim8456a642013-10-24 10:07:49 +09002645 page->active--;
Joonsoo Kime7444d92013-10-24 10:07:51 +09002646 slab_freelist(page)[page->active] = objnr;
Matthew Dobson78d382d2006-02-01 03:05:47 -08002647}
2648
Pekka Enberg47768742006-06-23 02:03:07 -07002649/*
2650 * Map pages beginning at addr to the given cache and slab. This is required
2651 * for the slab allocator to be able to lookup the cache and slab of a
Nick Pigginccd35fb2011-01-07 17:49:17 +11002652 * virtual address for kfree, ksize, and slab debugging.
Pekka Enberg47768742006-06-23 02:03:07 -07002653 */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002654static void slab_map_pages(struct kmem_cache *cache, struct page *page,
Joonsoo Kim7e007352013-10-30 19:04:01 +09002655 void *freelist)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002656{
Joonsoo Kima57a4982013-10-24 10:07:44 +09002657 page->slab_cache = cache;
Joonsoo Kim8456a642013-10-24 10:07:49 +09002658 page->freelist = freelist;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002659}
2660
2661/*
2662 * Grow (by 1) the number of slabs within a cache. This is called by
2663 * kmem_cache_alloc() when there are no active objs left in a cache.
2664 */
Christoph Lameter3c517a62006-12-06 20:33:29 -08002665static int cache_grow(struct kmem_cache *cachep,
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09002666 gfp_t flags, int nodeid, struct page *page)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002667{
Joonsoo Kim7e007352013-10-30 19:04:01 +09002668 void *freelist;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002669 size_t offset;
2670 gfp_t local_flags;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002671 struct kmem_cache_node *n;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002672
Andrew Mortona737b3e2006-03-22 00:08:11 -08002673 /*
2674 * Be lazy and only check for valid flags here, keeping it out of the
2675 * critical path in kmem_cache_alloc().
Linus Torvalds1da177e2005-04-16 15:20:36 -07002676 */
Christoph Lameter6cb06222007-10-16 01:25:41 -07002677 BUG_ON(flags & GFP_SLAB_BUG_MASK);
2678 local_flags = flags & (GFP_CONSTRAINT_MASK|GFP_RECLAIM_MASK);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002679
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002680 /* Take the node list lock to change the colour_next on this node */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002681 check_irq_off();
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002682 n = cachep->node[nodeid];
2683 spin_lock(&n->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002684
2685 /* Get colour for the slab, and cal the next value. */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002686 offset = n->colour_next;
2687 n->colour_next++;
2688 if (n->colour_next >= cachep->colour)
2689 n->colour_next = 0;
2690 spin_unlock(&n->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002691
Ravikiran G Thirumalai2e1217c2006-02-04 23:27:56 -08002692 offset *= cachep->colour_off;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002693
2694 if (local_flags & __GFP_WAIT)
2695 local_irq_enable();
2696
2697 /*
2698 * The test for missing atomic flag is performed here, rather than
2699 * the more obvious place, simply to reduce the critical path length
2700 * in kmem_cache_alloc(). If a caller is seriously mis-behaving they
2701 * will eventually be caught here (where it matters).
2702 */
2703 kmem_flagcheck(cachep, flags);
2704
Andrew Mortona737b3e2006-03-22 00:08:11 -08002705 /*
2706 * Get mem for the objs. Attempt to allocate a physical page from
2707 * 'nodeid'.
Christoph Lametere498be72005-09-09 13:03:32 -07002708 */
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09002709 if (!page)
2710 page = kmem_getpages(cachep, local_flags, nodeid);
2711 if (!page)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002712 goto failed;
2713
2714 /* Get slab management. */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002715 freelist = alloc_slabmgmt(cachep, page, offset,
Christoph Lameter6cb06222007-10-16 01:25:41 -07002716 local_flags & ~GFP_CONSTRAINT_MASK, nodeid);
Joonsoo Kim8456a642013-10-24 10:07:49 +09002717 if (!freelist)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002718 goto opps1;
2719
Joonsoo Kim8456a642013-10-24 10:07:49 +09002720 slab_map_pages(cachep, page, freelist);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002721
Joonsoo Kim8456a642013-10-24 10:07:49 +09002722 cache_init_objs(cachep, page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002723
2724 if (local_flags & __GFP_WAIT)
2725 local_irq_disable();
2726 check_irq_off();
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002727 spin_lock(&n->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002728
2729 /* Make slab active. */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002730 list_add_tail(&page->lru, &(n->slabs_free));
Linus Torvalds1da177e2005-04-16 15:20:36 -07002731 STATS_INC_GROWN(cachep);
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002732 n->free_objects += cachep->num;
2733 spin_unlock(&n->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002734 return 1;
Andrew Mortona737b3e2006-03-22 00:08:11 -08002735opps1:
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09002736 kmem_freepages(cachep, page);
Andrew Mortona737b3e2006-03-22 00:08:11 -08002737failed:
Linus Torvalds1da177e2005-04-16 15:20:36 -07002738 if (local_flags & __GFP_WAIT)
2739 local_irq_disable();
2740 return 0;
2741}
2742
2743#if DEBUG
2744
2745/*
2746 * Perform extra freeing checks:
2747 * - detect bad pointers.
2748 * - POISON/RED_ZONE checking
Linus Torvalds1da177e2005-04-16 15:20:36 -07002749 */
2750static void kfree_debugcheck(const void *objp)
2751{
Linus Torvalds1da177e2005-04-16 15:20:36 -07002752 if (!virt_addr_valid(objp)) {
2753 printk(KERN_ERR "kfree_debugcheck: out of range ptr %lxh.\n",
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002754 (unsigned long)objp);
2755 BUG();
Linus Torvalds1da177e2005-04-16 15:20:36 -07002756 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002757}
2758
Pekka Enberg58ce1fd2006-06-23 02:03:24 -07002759static inline void verify_redzone_free(struct kmem_cache *cache, void *obj)
2760{
David Woodhouseb46b8f12007-05-08 00:22:59 -07002761 unsigned long long redzone1, redzone2;
Pekka Enberg58ce1fd2006-06-23 02:03:24 -07002762
2763 redzone1 = *dbg_redzone1(cache, obj);
2764 redzone2 = *dbg_redzone2(cache, obj);
2765
2766 /*
2767 * Redzone is ok.
2768 */
2769 if (redzone1 == RED_ACTIVE && redzone2 == RED_ACTIVE)
2770 return;
2771
2772 if (redzone1 == RED_INACTIVE && redzone2 == RED_INACTIVE)
2773 slab_error(cache, "double free detected");
2774 else
2775 slab_error(cache, "memory outside object was overwritten");
2776
David Woodhouseb46b8f12007-05-08 00:22:59 -07002777 printk(KERN_ERR "%p: redzone 1:0x%llx, redzone 2:0x%llx.\n",
Pekka Enberg58ce1fd2006-06-23 02:03:24 -07002778 obj, redzone1, redzone2);
2779}
2780
Pekka Enberg343e0d72006-02-01 03:05:50 -08002781static void *cache_free_debugcheck(struct kmem_cache *cachep, void *objp,
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03002782 unsigned long caller)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002783{
Linus Torvalds1da177e2005-04-16 15:20:36 -07002784 unsigned int objnr;
Joonsoo Kim8456a642013-10-24 10:07:49 +09002785 struct page *page;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002786
Matthew Wilcox80cbd912007-11-29 12:05:13 -07002787 BUG_ON(virt_to_cache(objp) != cachep);
2788
Manfred Spraul3dafccf2006-02-01 03:05:42 -08002789 objp -= obj_offset(cachep);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002790 kfree_debugcheck(objp);
Christoph Lameterb49af682007-05-06 14:49:41 -07002791 page = virt_to_head_page(objp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002792
Linus Torvalds1da177e2005-04-16 15:20:36 -07002793 if (cachep->flags & SLAB_RED_ZONE) {
Pekka Enberg58ce1fd2006-06-23 02:03:24 -07002794 verify_redzone_free(cachep, objp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002795 *dbg_redzone1(cachep, objp) = RED_INACTIVE;
2796 *dbg_redzone2(cachep, objp) = RED_INACTIVE;
2797 }
2798 if (cachep->flags & SLAB_STORE_USER)
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03002799 *dbg_userword(cachep, objp) = (void *)caller;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002800
Joonsoo Kim8456a642013-10-24 10:07:49 +09002801 objnr = obj_to_index(cachep, page, objp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002802
2803 BUG_ON(objnr >= cachep->num);
Joonsoo Kim8456a642013-10-24 10:07:49 +09002804 BUG_ON(objp != index_to_obj(cachep, page, objnr));
Linus Torvalds1da177e2005-04-16 15:20:36 -07002805
Linus Torvalds1da177e2005-04-16 15:20:36 -07002806 if (cachep->flags & SLAB_POISON) {
2807#ifdef CONFIG_DEBUG_PAGEALLOC
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05002808 if ((cachep->size % PAGE_SIZE)==0 && OFF_SLAB(cachep)) {
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03002809 store_stackinfo(cachep, objp, caller);
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002810 kernel_map_pages(virt_to_page(objp),
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05002811 cachep->size / PAGE_SIZE, 0);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002812 } else {
2813 poison_obj(cachep, objp, POISON_FREE);
2814 }
2815#else
2816 poison_obj(cachep, objp, POISON_FREE);
2817#endif
2818 }
2819 return objp;
2820}
2821
Linus Torvalds1da177e2005-04-16 15:20:36 -07002822#else
2823#define kfree_debugcheck(x) do { } while(0)
2824#define cache_free_debugcheck(x,objp,z) (objp)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002825#endif
2826
Mel Gorman072bb0a2012-07-31 16:43:58 -07002827static void *cache_alloc_refill(struct kmem_cache *cachep, gfp_t flags,
2828 bool force_refill)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002829{
2830 int batchcount;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002831 struct kmem_cache_node *n;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002832 struct array_cache *ac;
Pekka Enberg1ca4cb22006-10-06 00:43:52 -07002833 int node;
2834
Joe Korty6d2144d2008-03-05 15:04:59 -08002835 check_irq_off();
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07002836 node = numa_mem_id();
Mel Gorman072bb0a2012-07-31 16:43:58 -07002837 if (unlikely(force_refill))
2838 goto force_grow;
2839retry:
Joe Korty6d2144d2008-03-05 15:04:59 -08002840 ac = cpu_cache_get(cachep);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002841 batchcount = ac->batchcount;
2842 if (!ac->touched && batchcount > BATCHREFILL_LIMIT) {
Andrew Mortona737b3e2006-03-22 00:08:11 -08002843 /*
2844 * If there was little recent activity on this cache, then
2845 * perform only a partial refill. Otherwise we could generate
2846 * refill bouncing.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002847 */
2848 batchcount = BATCHREFILL_LIMIT;
2849 }
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002850 n = cachep->node[node];
Linus Torvalds1da177e2005-04-16 15:20:36 -07002851
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002852 BUG_ON(ac->avail > 0 || !n);
2853 spin_lock(&n->list_lock);
Christoph Lametere498be72005-09-09 13:03:32 -07002854
Christoph Lameter3ded1752006-03-25 03:06:44 -08002855 /* See if we can refill from the shared array */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002856 if (n->shared && transfer_objects(ac, n->shared, batchcount)) {
2857 n->shared->touched = 1;
Christoph Lameter3ded1752006-03-25 03:06:44 -08002858 goto alloc_done;
Nick Piggin44b57f12010-01-27 22:27:40 +11002859 }
Christoph Lameter3ded1752006-03-25 03:06:44 -08002860
Linus Torvalds1da177e2005-04-16 15:20:36 -07002861 while (batchcount > 0) {
2862 struct list_head *entry;
Joonsoo Kim8456a642013-10-24 10:07:49 +09002863 struct page *page;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002864 /* Get slab alloc is to come from. */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002865 entry = n->slabs_partial.next;
2866 if (entry == &n->slabs_partial) {
2867 n->free_touched = 1;
2868 entry = n->slabs_free.next;
2869 if (entry == &n->slabs_free)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002870 goto must_grow;
2871 }
2872
Joonsoo Kim8456a642013-10-24 10:07:49 +09002873 page = list_entry(entry, struct page, lru);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002874 check_spinlock_acquired(cachep);
Pekka Enberg714b81712007-05-06 14:49:03 -07002875
2876 /*
2877 * The slab was either on partial or free list so
2878 * there must be at least one object available for
2879 * allocation.
2880 */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002881 BUG_ON(page->active >= cachep->num);
Pekka Enberg714b81712007-05-06 14:49:03 -07002882
Joonsoo Kim8456a642013-10-24 10:07:49 +09002883 while (page->active < cachep->num && batchcount--) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002884 STATS_INC_ALLOCED(cachep);
2885 STATS_INC_ACTIVE(cachep);
2886 STATS_SET_HIGH(cachep);
2887
Joonsoo Kim8456a642013-10-24 10:07:49 +09002888 ac_put_obj(cachep, ac, slab_get_obj(cachep, page,
Mel Gorman072bb0a2012-07-31 16:43:58 -07002889 node));
Linus Torvalds1da177e2005-04-16 15:20:36 -07002890 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002891
2892 /* move slabp to correct slabp list: */
Joonsoo Kim8456a642013-10-24 10:07:49 +09002893 list_del(&page->lru);
2894 if (page->active == cachep->num)
2895 list_add(&page->list, &n->slabs_full);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002896 else
Joonsoo Kim8456a642013-10-24 10:07:49 +09002897 list_add(&page->list, &n->slabs_partial);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002898 }
2899
Andrew Mortona737b3e2006-03-22 00:08:11 -08002900must_grow:
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002901 n->free_objects -= ac->avail;
Andrew Mortona737b3e2006-03-22 00:08:11 -08002902alloc_done:
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00002903 spin_unlock(&n->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002904
2905 if (unlikely(!ac->avail)) {
2906 int x;
Mel Gorman072bb0a2012-07-31 16:43:58 -07002907force_grow:
Christoph Lameter3c517a62006-12-06 20:33:29 -08002908 x = cache_grow(cachep, flags | GFP_THISNODE, node, NULL);
Christoph Lametere498be72005-09-09 13:03:32 -07002909
Andrew Mortona737b3e2006-03-22 00:08:11 -08002910 /* cache_grow can reenable interrupts, then ac could change. */
Pekka Enberg9a2dba42006-02-01 03:05:49 -08002911 ac = cpu_cache_get(cachep);
David Rientjes51cd8e62012-08-28 19:57:21 -07002912 node = numa_mem_id();
Mel Gorman072bb0a2012-07-31 16:43:58 -07002913
2914 /* no objects in sight? abort */
2915 if (!x && (ac->avail == 0 || force_refill))
Linus Torvalds1da177e2005-04-16 15:20:36 -07002916 return NULL;
2917
Andrew Mortona737b3e2006-03-22 00:08:11 -08002918 if (!ac->avail) /* objects refilled by interrupt? */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002919 goto retry;
2920 }
2921 ac->touched = 1;
Mel Gorman072bb0a2012-07-31 16:43:58 -07002922
2923 return ac_get_obj(cachep, ac, flags, force_refill);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002924}
2925
Andrew Mortona737b3e2006-03-22 00:08:11 -08002926static inline void cache_alloc_debugcheck_before(struct kmem_cache *cachep,
2927 gfp_t flags)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002928{
2929 might_sleep_if(flags & __GFP_WAIT);
2930#if DEBUG
2931 kmem_flagcheck(cachep, flags);
2932#endif
2933}
2934
2935#if DEBUG
Andrew Mortona737b3e2006-03-22 00:08:11 -08002936static void *cache_alloc_debugcheck_after(struct kmem_cache *cachep,
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03002937 gfp_t flags, void *objp, unsigned long caller)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002938{
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002939 if (!objp)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002940 return objp;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002941 if (cachep->flags & SLAB_POISON) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002942#ifdef CONFIG_DEBUG_PAGEALLOC
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05002943 if ((cachep->size % PAGE_SIZE) == 0 && OFF_SLAB(cachep))
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002944 kernel_map_pages(virt_to_page(objp),
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05002945 cachep->size / PAGE_SIZE, 1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002946 else
2947 check_poison_obj(cachep, objp);
2948#else
2949 check_poison_obj(cachep, objp);
2950#endif
2951 poison_obj(cachep, objp, POISON_INUSE);
2952 }
2953 if (cachep->flags & SLAB_STORE_USER)
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03002954 *dbg_userword(cachep, objp) = (void *)caller;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002955
2956 if (cachep->flags & SLAB_RED_ZONE) {
Andrew Mortona737b3e2006-03-22 00:08:11 -08002957 if (*dbg_redzone1(cachep, objp) != RED_INACTIVE ||
2958 *dbg_redzone2(cachep, objp) != RED_INACTIVE) {
2959 slab_error(cachep, "double free, or memory outside"
2960 " object was overwritten");
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002961 printk(KERN_ERR
David Woodhouseb46b8f12007-05-08 00:22:59 -07002962 "%p: redzone 1:0x%llx, redzone 2:0x%llx\n",
Andrew Mortona737b3e2006-03-22 00:08:11 -08002963 objp, *dbg_redzone1(cachep, objp),
2964 *dbg_redzone2(cachep, objp));
Linus Torvalds1da177e2005-04-16 15:20:36 -07002965 }
2966 *dbg_redzone1(cachep, objp) = RED_ACTIVE;
2967 *dbg_redzone2(cachep, objp) = RED_ACTIVE;
2968 }
Manfred Spraul3dafccf2006-02-01 03:05:42 -08002969 objp += obj_offset(cachep);
Christoph Lameter4f104932007-05-06 14:50:17 -07002970 if (cachep->ctor && cachep->flags & SLAB_POISON)
Alexey Dobriyan51cc5062008-07-25 19:45:34 -07002971 cachep->ctor(objp);
Tetsuo Handa7ea466f2011-07-21 09:42:45 +09002972 if (ARCH_SLAB_MINALIGN &&
2973 ((unsigned long)objp & (ARCH_SLAB_MINALIGN-1))) {
Kevin Hilmana44b56d2006-12-06 20:32:11 -08002974 printk(KERN_ERR "0x%p: not aligned to ARCH_SLAB_MINALIGN=%d\n",
Hugh Dickinsc2251502011-07-11 13:35:08 -07002975 objp, (int)ARCH_SLAB_MINALIGN);
Kevin Hilmana44b56d2006-12-06 20:32:11 -08002976 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002977 return objp;
2978}
2979#else
2980#define cache_alloc_debugcheck_after(a,b,objp,d) (objp)
2981#endif
2982
Akinobu Mita773ff602008-12-23 19:37:01 +09002983static bool slab_should_failslab(struct kmem_cache *cachep, gfp_t flags)
Akinobu Mita8a8b6502006-12-08 02:39:44 -08002984{
Christoph Lameter9b030cb2012-09-05 00:20:33 +00002985 if (cachep == kmem_cache)
Akinobu Mita773ff602008-12-23 19:37:01 +09002986 return false;
Akinobu Mita8a8b6502006-12-08 02:39:44 -08002987
Christoph Lameter8c138bc2012-06-13 10:24:58 -05002988 return should_failslab(cachep->object_size, flags, cachep->flags);
Akinobu Mita8a8b6502006-12-08 02:39:44 -08002989}
2990
Pekka Enberg343e0d72006-02-01 03:05:50 -08002991static inline void *____cache_alloc(struct kmem_cache *cachep, gfp_t flags)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002992{
Pekka Enbergb28a02d2006-01-08 01:00:37 -08002993 void *objp;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002994 struct array_cache *ac;
Mel Gorman072bb0a2012-07-31 16:43:58 -07002995 bool force_refill = false;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002996
Alok N Kataria5c382302005-09-27 21:45:46 -07002997 check_irq_off();
Akinobu Mita8a8b6502006-12-08 02:39:44 -08002998
Pekka Enberg9a2dba42006-02-01 03:05:49 -08002999 ac = cpu_cache_get(cachep);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003000 if (likely(ac->avail)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07003001 ac->touched = 1;
Mel Gorman072bb0a2012-07-31 16:43:58 -07003002 objp = ac_get_obj(cachep, ac, flags, false);
3003
J. R. Okajimaddbf2e82009-12-02 16:55:50 +09003004 /*
Mel Gorman072bb0a2012-07-31 16:43:58 -07003005 * Allow for the possibility all avail objects are not allowed
3006 * by the current flags
J. R. Okajimaddbf2e82009-12-02 16:55:50 +09003007 */
Mel Gorman072bb0a2012-07-31 16:43:58 -07003008 if (objp) {
3009 STATS_INC_ALLOCHIT(cachep);
3010 goto out;
3011 }
3012 force_refill = true;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003013 }
Mel Gorman072bb0a2012-07-31 16:43:58 -07003014
3015 STATS_INC_ALLOCMISS(cachep);
3016 objp = cache_alloc_refill(cachep, flags, force_refill);
3017 /*
3018 * the 'ac' may be updated by cache_alloc_refill(),
3019 * and kmemleak_erase() requires its correct value.
3020 */
3021 ac = cpu_cache_get(cachep);
3022
3023out:
Catalin Marinasd5cff632009-06-11 13:22:40 +01003024 /*
3025 * To avoid a false negative, if an object that is in one of the
3026 * per-CPU caches is leaked, we need to make sure kmemleak doesn't
3027 * treat the array pointers as a reference to the object.
3028 */
J. R. Okajimaf3d8b532009-12-02 16:55:49 +09003029 if (objp)
3030 kmemleak_erase(&ac->entry[ac->avail]);
Alok N Kataria5c382302005-09-27 21:45:46 -07003031 return objp;
3032}
3033
Christoph Lametere498be72005-09-09 13:03:32 -07003034#ifdef CONFIG_NUMA
3035/*
Paul Jacksonb2455392006-03-24 03:16:12 -08003036 * Try allocating on another node if PF_SPREAD_SLAB|PF_MEMPOLICY.
Paul Jacksonc61afb12006-03-24 03:16:08 -08003037 *
3038 * If we are in_interrupt, then process context, including cpusets and
3039 * mempolicy, may not apply and should not be used for allocation policy.
3040 */
3041static void *alternate_node_alloc(struct kmem_cache *cachep, gfp_t flags)
3042{
3043 int nid_alloc, nid_here;
3044
Christoph Lameter765c4502006-09-27 01:50:08 -07003045 if (in_interrupt() || (flags & __GFP_THISNODE))
Paul Jacksonc61afb12006-03-24 03:16:08 -08003046 return NULL;
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07003047 nid_alloc = nid_here = numa_mem_id();
Paul Jacksonc61afb12006-03-24 03:16:08 -08003048 if (cpuset_do_slab_mem_spread() && (cachep->flags & SLAB_MEM_SPREAD))
Jack Steiner6adef3e2010-05-26 14:42:49 -07003049 nid_alloc = cpuset_slab_spread_node();
Paul Jacksonc61afb12006-03-24 03:16:08 -08003050 else if (current->mempolicy)
Andi Kleene7b691b2012-06-09 02:40:03 -07003051 nid_alloc = slab_node();
Paul Jacksonc61afb12006-03-24 03:16:08 -08003052 if (nid_alloc != nid_here)
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003053 return ____cache_alloc_node(cachep, flags, nid_alloc);
Paul Jacksonc61afb12006-03-24 03:16:08 -08003054 return NULL;
3055}
3056
3057/*
Christoph Lameter765c4502006-09-27 01:50:08 -07003058 * Fallback function if there was no memory available and no objects on a
Christoph Lameter3c517a62006-12-06 20:33:29 -08003059 * certain node and fall back is permitted. First we scan all the
Christoph Lameter6a673682013-01-10 19:14:19 +00003060 * available node for available objects. If that fails then we
Christoph Lameter3c517a62006-12-06 20:33:29 -08003061 * perform an allocation without specifying a node. This allows the page
3062 * allocator to do its reclaim / fallback magic. We then insert the
3063 * slab into the proper nodelist and then allocate from it.
Christoph Lameter765c4502006-09-27 01:50:08 -07003064 */
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003065static void *fallback_alloc(struct kmem_cache *cache, gfp_t flags)
Christoph Lameter765c4502006-09-27 01:50:08 -07003066{
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003067 struct zonelist *zonelist;
3068 gfp_t local_flags;
Mel Gormandd1a2392008-04-28 02:12:17 -07003069 struct zoneref *z;
Mel Gorman54a6eb52008-04-28 02:12:16 -07003070 struct zone *zone;
3071 enum zone_type high_zoneidx = gfp_zone(flags);
Christoph Lameter765c4502006-09-27 01:50:08 -07003072 void *obj = NULL;
Christoph Lameter3c517a62006-12-06 20:33:29 -08003073 int nid;
Mel Gormancc9a6c82012-03-21 16:34:11 -07003074 unsigned int cpuset_mems_cookie;
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003075
3076 if (flags & __GFP_THISNODE)
3077 return NULL;
3078
Christoph Lameter6cb06222007-10-16 01:25:41 -07003079 local_flags = flags & (GFP_CONSTRAINT_MASK|GFP_RECLAIM_MASK);
Christoph Lameter765c4502006-09-27 01:50:08 -07003080
Mel Gormancc9a6c82012-03-21 16:34:11 -07003081retry_cpuset:
3082 cpuset_mems_cookie = get_mems_allowed();
Andi Kleene7b691b2012-06-09 02:40:03 -07003083 zonelist = node_zonelist(slab_node(), flags);
Mel Gormancc9a6c82012-03-21 16:34:11 -07003084
Christoph Lameter3c517a62006-12-06 20:33:29 -08003085retry:
3086 /*
3087 * Look through allowed nodes for objects available
3088 * from existing per node queues.
3089 */
Mel Gorman54a6eb52008-04-28 02:12:16 -07003090 for_each_zone_zonelist(zone, z, zonelist, high_zoneidx) {
3091 nid = zone_to_nid(zone);
Christoph Lameteraedb0eb2006-10-21 10:24:16 -07003092
Mel Gorman54a6eb52008-04-28 02:12:16 -07003093 if (cpuset_zone_allowed_hardwall(zone, flags) &&
Christoph Lameter6a673682013-01-10 19:14:19 +00003094 cache->node[nid] &&
3095 cache->node[nid]->free_objects) {
Christoph Lameter3c517a62006-12-06 20:33:29 -08003096 obj = ____cache_alloc_node(cache,
3097 flags | GFP_THISNODE, nid);
Christoph Lameter481c5342008-06-21 16:46:35 -07003098 if (obj)
3099 break;
3100 }
Christoph Lameter3c517a62006-12-06 20:33:29 -08003101 }
3102
Christoph Lametercfce6602007-05-06 14:50:17 -07003103 if (!obj) {
Christoph Lameter3c517a62006-12-06 20:33:29 -08003104 /*
3105 * This allocation will be performed within the constraints
3106 * of the current cpuset / memory policy requirements.
3107 * We may trigger various forms of reclaim on the allowed
3108 * set and go into memory reserves if necessary.
3109 */
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09003110 struct page *page;
3111
Christoph Lameterdd47ea72006-12-13 00:34:11 -08003112 if (local_flags & __GFP_WAIT)
3113 local_irq_enable();
3114 kmem_flagcheck(cache, flags);
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09003115 page = kmem_getpages(cache, local_flags, numa_mem_id());
Christoph Lameterdd47ea72006-12-13 00:34:11 -08003116 if (local_flags & __GFP_WAIT)
3117 local_irq_disable();
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09003118 if (page) {
Christoph Lameter3c517a62006-12-06 20:33:29 -08003119 /*
3120 * Insert into the appropriate per node queues
3121 */
Joonsoo Kim0c3aa832013-10-24 10:07:38 +09003122 nid = page_to_nid(page);
3123 if (cache_grow(cache, flags, nid, page)) {
Christoph Lameter3c517a62006-12-06 20:33:29 -08003124 obj = ____cache_alloc_node(cache,
3125 flags | GFP_THISNODE, nid);
3126 if (!obj)
3127 /*
3128 * Another processor may allocate the
3129 * objects in the slab since we are
3130 * not holding any locks.
3131 */
3132 goto retry;
3133 } else {
Hugh Dickinsb6a60452007-01-05 16:36:36 -08003134 /* cache_grow already freed obj */
Christoph Lameter3c517a62006-12-06 20:33:29 -08003135 obj = NULL;
3136 }
3137 }
Christoph Lameteraedb0eb2006-10-21 10:24:16 -07003138 }
Mel Gormancc9a6c82012-03-21 16:34:11 -07003139
3140 if (unlikely(!put_mems_allowed(cpuset_mems_cookie) && !obj))
3141 goto retry_cpuset;
Christoph Lameter765c4502006-09-27 01:50:08 -07003142 return obj;
3143}
3144
3145/*
Christoph Lametere498be72005-09-09 13:03:32 -07003146 * A interface to enable slab creation on nodeid
Linus Torvalds1da177e2005-04-16 15:20:36 -07003147 */
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003148static void *____cache_alloc_node(struct kmem_cache *cachep, gfp_t flags,
Andrew Mortona737b3e2006-03-22 00:08:11 -08003149 int nodeid)
Christoph Lametere498be72005-09-09 13:03:32 -07003150{
3151 struct list_head *entry;
Joonsoo Kim8456a642013-10-24 10:07:49 +09003152 struct page *page;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003153 struct kmem_cache_node *n;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003154 void *obj;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003155 int x;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003156
Aaron Tomlin14e50c62013-04-26 16:15:34 +01003157 VM_BUG_ON(nodeid > num_online_nodes());
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003158 n = cachep->node[nodeid];
3159 BUG_ON(!n);
Christoph Lametere498be72005-09-09 13:03:32 -07003160
Andrew Mortona737b3e2006-03-22 00:08:11 -08003161retry:
Ravikiran G Thirumalaica3b9b92006-02-04 23:27:58 -08003162 check_irq_off();
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003163 spin_lock(&n->list_lock);
3164 entry = n->slabs_partial.next;
3165 if (entry == &n->slabs_partial) {
3166 n->free_touched = 1;
3167 entry = n->slabs_free.next;
3168 if (entry == &n->slabs_free)
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003169 goto must_grow;
3170 }
Christoph Lametere498be72005-09-09 13:03:32 -07003171
Joonsoo Kim8456a642013-10-24 10:07:49 +09003172 page = list_entry(entry, struct page, lru);
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003173 check_spinlock_acquired_node(cachep, nodeid);
Christoph Lametere498be72005-09-09 13:03:32 -07003174
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003175 STATS_INC_NODEALLOCS(cachep);
3176 STATS_INC_ACTIVE(cachep);
3177 STATS_SET_HIGH(cachep);
Christoph Lametere498be72005-09-09 13:03:32 -07003178
Joonsoo Kim8456a642013-10-24 10:07:49 +09003179 BUG_ON(page->active == cachep->num);
Christoph Lametere498be72005-09-09 13:03:32 -07003180
Joonsoo Kim8456a642013-10-24 10:07:49 +09003181 obj = slab_get_obj(cachep, page, nodeid);
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003182 n->free_objects--;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003183 /* move slabp to correct slabp list: */
Joonsoo Kim8456a642013-10-24 10:07:49 +09003184 list_del(&page->lru);
Christoph Lametere498be72005-09-09 13:03:32 -07003185
Joonsoo Kim8456a642013-10-24 10:07:49 +09003186 if (page->active == cachep->num)
3187 list_add(&page->lru, &n->slabs_full);
Andrew Mortona737b3e2006-03-22 00:08:11 -08003188 else
Joonsoo Kim8456a642013-10-24 10:07:49 +09003189 list_add(&page->lru, &n->slabs_partial);
Christoph Lametere498be72005-09-09 13:03:32 -07003190
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003191 spin_unlock(&n->list_lock);
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003192 goto done;
Christoph Lametere498be72005-09-09 13:03:32 -07003193
Andrew Mortona737b3e2006-03-22 00:08:11 -08003194must_grow:
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003195 spin_unlock(&n->list_lock);
Christoph Lameter3c517a62006-12-06 20:33:29 -08003196 x = cache_grow(cachep, flags | GFP_THISNODE, nodeid, NULL);
Christoph Lameter765c4502006-09-27 01:50:08 -07003197 if (x)
3198 goto retry;
Christoph Lametere498be72005-09-09 13:03:32 -07003199
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003200 return fallback_alloc(cachep, flags);
Christoph Lameter765c4502006-09-27 01:50:08 -07003201
Andrew Mortona737b3e2006-03-22 00:08:11 -08003202done:
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003203 return obj;
Christoph Lametere498be72005-09-09 13:03:32 -07003204}
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003205
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003206static __always_inline void *
Ezequiel Garcia48356302012-09-08 17:47:57 -03003207slab_alloc_node(struct kmem_cache *cachep, gfp_t flags, int nodeid,
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003208 unsigned long caller)
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003209{
3210 unsigned long save_flags;
3211 void *ptr;
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07003212 int slab_node = numa_mem_id();
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003213
Benjamin Herrenschmidtdcce2842009-06-18 13:24:12 +10003214 flags &= gfp_allowed_mask;
Pekka Enberg7e85ee02009-06-12 14:03:06 +03003215
Nick Piggincf40bd12009-01-21 08:12:39 +01003216 lockdep_trace_alloc(flags);
3217
Akinobu Mita773ff602008-12-23 19:37:01 +09003218 if (slab_should_failslab(cachep, flags))
Akinobu Mita824ebef2007-05-06 14:49:58 -07003219 return NULL;
3220
Glauber Costad79923f2012-12-18 14:22:48 -08003221 cachep = memcg_kmem_get_cache(cachep, flags);
3222
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003223 cache_alloc_debugcheck_before(cachep, flags);
3224 local_irq_save(save_flags);
3225
Andrew Mortoneacbbae2011-07-28 13:59:49 -07003226 if (nodeid == NUMA_NO_NODE)
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07003227 nodeid = slab_node;
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003228
Christoph Lameter6a673682013-01-10 19:14:19 +00003229 if (unlikely(!cachep->node[nodeid])) {
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003230 /* Node not bootstrapped yet */
3231 ptr = fallback_alloc(cachep, flags);
3232 goto out;
3233 }
3234
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07003235 if (nodeid == slab_node) {
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003236 /*
3237 * Use the locally cached objects if possible.
3238 * However ____cache_alloc does not allow fallback
3239 * to other nodes. It may fail while we still have
3240 * objects on other nodes available.
3241 */
3242 ptr = ____cache_alloc(cachep, flags);
3243 if (ptr)
3244 goto out;
3245 }
3246 /* ___cache_alloc_node can fall back to other nodes */
3247 ptr = ____cache_alloc_node(cachep, flags, nodeid);
3248 out:
3249 local_irq_restore(save_flags);
3250 ptr = cache_alloc_debugcheck_after(cachep, flags, ptr, caller);
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003251 kmemleak_alloc_recursive(ptr, cachep->object_size, 1, cachep->flags,
Catalin Marinasd5cff632009-06-11 13:22:40 +01003252 flags);
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003253
Pekka Enbergc175eea2008-05-09 20:35:53 +02003254 if (likely(ptr))
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003255 kmemcheck_slab_alloc(cachep, flags, ptr, cachep->object_size);
Pekka Enbergc175eea2008-05-09 20:35:53 +02003256
Christoph Lameterd07dbea2007-07-17 04:03:23 -07003257 if (unlikely((flags & __GFP_ZERO) && ptr))
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003258 memset(ptr, 0, cachep->object_size);
Christoph Lameterd07dbea2007-07-17 04:03:23 -07003259
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003260 return ptr;
3261}
3262
3263static __always_inline void *
3264__do_cache_alloc(struct kmem_cache *cache, gfp_t flags)
3265{
3266 void *objp;
3267
3268 if (unlikely(current->flags & (PF_SPREAD_SLAB | PF_MEMPOLICY))) {
3269 objp = alternate_node_alloc(cache, flags);
3270 if (objp)
3271 goto out;
3272 }
3273 objp = ____cache_alloc(cache, flags);
3274
3275 /*
3276 * We may just have run out of memory on the local node.
3277 * ____cache_alloc_node() knows how to locate memory on other nodes
3278 */
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07003279 if (!objp)
3280 objp = ____cache_alloc_node(cache, flags, numa_mem_id());
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003281
3282 out:
3283 return objp;
3284}
3285#else
3286
3287static __always_inline void *
3288__do_cache_alloc(struct kmem_cache *cachep, gfp_t flags)
3289{
3290 return ____cache_alloc(cachep, flags);
3291}
3292
3293#endif /* CONFIG_NUMA */
3294
3295static __always_inline void *
Ezequiel Garcia48356302012-09-08 17:47:57 -03003296slab_alloc(struct kmem_cache *cachep, gfp_t flags, unsigned long caller)
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003297{
3298 unsigned long save_flags;
3299 void *objp;
3300
Benjamin Herrenschmidtdcce2842009-06-18 13:24:12 +10003301 flags &= gfp_allowed_mask;
Pekka Enberg7e85ee02009-06-12 14:03:06 +03003302
Nick Piggincf40bd12009-01-21 08:12:39 +01003303 lockdep_trace_alloc(flags);
3304
Akinobu Mita773ff602008-12-23 19:37:01 +09003305 if (slab_should_failslab(cachep, flags))
Akinobu Mita824ebef2007-05-06 14:49:58 -07003306 return NULL;
3307
Glauber Costad79923f2012-12-18 14:22:48 -08003308 cachep = memcg_kmem_get_cache(cachep, flags);
3309
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003310 cache_alloc_debugcheck_before(cachep, flags);
3311 local_irq_save(save_flags);
3312 objp = __do_cache_alloc(cachep, flags);
3313 local_irq_restore(save_flags);
3314 objp = cache_alloc_debugcheck_after(cachep, flags, objp, caller);
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003315 kmemleak_alloc_recursive(objp, cachep->object_size, 1, cachep->flags,
Catalin Marinasd5cff632009-06-11 13:22:40 +01003316 flags);
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003317 prefetchw(objp);
3318
Pekka Enbergc175eea2008-05-09 20:35:53 +02003319 if (likely(objp))
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003320 kmemcheck_slab_alloc(cachep, flags, objp, cachep->object_size);
Pekka Enbergc175eea2008-05-09 20:35:53 +02003321
Christoph Lameterd07dbea2007-07-17 04:03:23 -07003322 if (unlikely((flags & __GFP_ZERO) && objp))
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003323 memset(objp, 0, cachep->object_size);
Christoph Lameterd07dbea2007-07-17 04:03:23 -07003324
Pekka Enberg8c8cc2c2007-02-10 01:42:53 -08003325 return objp;
3326}
Christoph Lametere498be72005-09-09 13:03:32 -07003327
3328/*
3329 * Caller needs to acquire correct kmem_list's list_lock
3330 */
Pekka Enberg343e0d72006-02-01 03:05:50 -08003331static void free_block(struct kmem_cache *cachep, void **objpp, int nr_objects,
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003332 int node)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003333{
3334 int i;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003335 struct kmem_cache_node *n;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003336
3337 for (i = 0; i < nr_objects; i++) {
Mel Gorman072bb0a2012-07-31 16:43:58 -07003338 void *objp;
Joonsoo Kim8456a642013-10-24 10:07:49 +09003339 struct page *page;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003340
Mel Gorman072bb0a2012-07-31 16:43:58 -07003341 clear_obj_pfmemalloc(&objpp[i]);
3342 objp = objpp[i];
3343
Joonsoo Kim8456a642013-10-24 10:07:49 +09003344 page = virt_to_head_page(objp);
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003345 n = cachep->node[node];
Joonsoo Kim8456a642013-10-24 10:07:49 +09003346 list_del(&page->lru);
Christoph Lameterff694162005-09-22 21:44:02 -07003347 check_spinlock_acquired_node(cachep, node);
Joonsoo Kim8456a642013-10-24 10:07:49 +09003348 slab_put_obj(cachep, page, objp, node);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003349 STATS_DEC_ACTIVE(cachep);
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003350 n->free_objects++;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003351
3352 /* fixup slab chains */
Joonsoo Kim8456a642013-10-24 10:07:49 +09003353 if (page->active == 0) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003354 if (n->free_objects > n->free_limit) {
3355 n->free_objects -= cachep->num;
Ravikiran G Thirumalaie5ac9c52006-09-25 23:31:34 -07003356 /* No need to drop any previously held
3357 * lock here, even if we have a off-slab slab
3358 * descriptor it is guaranteed to come from
3359 * a different cache, refer to comments before
3360 * alloc_slabmgmt.
3361 */
Joonsoo Kim8456a642013-10-24 10:07:49 +09003362 slab_destroy(cachep, page);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003363 } else {
Joonsoo Kim8456a642013-10-24 10:07:49 +09003364 list_add(&page->lru, &n->slabs_free);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003365 }
3366 } else {
3367 /* Unconditionally move a slab to the end of the
3368 * partial list on free - maximum time for the
3369 * other objects to be freed, too.
3370 */
Joonsoo Kim8456a642013-10-24 10:07:49 +09003371 list_add_tail(&page->lru, &n->slabs_partial);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003372 }
3373 }
3374}
3375
Pekka Enberg343e0d72006-02-01 03:05:50 -08003376static void cache_flusharray(struct kmem_cache *cachep, struct array_cache *ac)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003377{
3378 int batchcount;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003379 struct kmem_cache_node *n;
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07003380 int node = numa_mem_id();
Linus Torvalds1da177e2005-04-16 15:20:36 -07003381
3382 batchcount = ac->batchcount;
3383#if DEBUG
3384 BUG_ON(!batchcount || batchcount > ac->avail);
3385#endif
3386 check_irq_off();
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003387 n = cachep->node[node];
3388 spin_lock(&n->list_lock);
3389 if (n->shared) {
3390 struct array_cache *shared_array = n->shared;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003391 int max = shared_array->limit - shared_array->avail;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003392 if (max) {
3393 if (batchcount > max)
3394 batchcount = max;
Christoph Lametere498be72005-09-09 13:03:32 -07003395 memcpy(&(shared_array->entry[shared_array->avail]),
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003396 ac->entry, sizeof(void *) * batchcount);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003397 shared_array->avail += batchcount;
3398 goto free_done;
3399 }
3400 }
3401
Christoph Lameterff694162005-09-22 21:44:02 -07003402 free_block(cachep, ac->entry, batchcount, node);
Andrew Mortona737b3e2006-03-22 00:08:11 -08003403free_done:
Linus Torvalds1da177e2005-04-16 15:20:36 -07003404#if STATS
3405 {
3406 int i = 0;
3407 struct list_head *p;
3408
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003409 p = n->slabs_free.next;
3410 while (p != &(n->slabs_free)) {
Joonsoo Kim8456a642013-10-24 10:07:49 +09003411 struct page *page;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003412
Joonsoo Kim8456a642013-10-24 10:07:49 +09003413 page = list_entry(p, struct page, lru);
3414 BUG_ON(page->active);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003415
3416 i++;
3417 p = p->next;
3418 }
3419 STATS_SET_FREEABLE(cachep, i);
3420 }
3421#endif
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003422 spin_unlock(&n->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003423 ac->avail -= batchcount;
Andrew Mortona737b3e2006-03-22 00:08:11 -08003424 memmove(ac->entry, &(ac->entry[batchcount]), sizeof(void *)*ac->avail);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003425}
3426
3427/*
Andrew Mortona737b3e2006-03-22 00:08:11 -08003428 * Release an obj back to its cache. If the obj has a constructed state, it must
3429 * be in this state _before_ it is released. Called with disabled ints.
Linus Torvalds1da177e2005-04-16 15:20:36 -07003430 */
Suleiman Souhlala947eb92011-06-02 00:16:42 -07003431static inline void __cache_free(struct kmem_cache *cachep, void *objp,
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003432 unsigned long caller)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003433{
Pekka Enberg9a2dba42006-02-01 03:05:49 -08003434 struct array_cache *ac = cpu_cache_get(cachep);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003435
3436 check_irq_off();
Catalin Marinasd5cff632009-06-11 13:22:40 +01003437 kmemleak_free_recursive(objp, cachep->flags);
Suleiman Souhlala947eb92011-06-02 00:16:42 -07003438 objp = cache_free_debugcheck(cachep, objp, caller);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003439
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003440 kmemcheck_slab_free(cachep, objp, cachep->object_size);
Pekka Enbergc175eea2008-05-09 20:35:53 +02003441
Siddha, Suresh B1807a1a2007-08-22 14:01:49 -07003442 /*
3443 * Skip calling cache_free_alien() when the platform is not numa.
3444 * This will avoid cache misses that happen while accessing slabp (which
3445 * is per page memory reference) to get nodeid. Instead use a global
3446 * variable to skip the call, which is mostly likely to be present in
3447 * the cache.
3448 */
Mel Gormanb6e68bc2009-06-16 15:32:16 -07003449 if (nr_online_nodes > 1 && cache_free_alien(cachep, objp))
Pekka Enberg729bd0b2006-06-23 02:03:05 -07003450 return;
Christoph Lametere498be72005-09-09 13:03:32 -07003451
Linus Torvalds1da177e2005-04-16 15:20:36 -07003452 if (likely(ac->avail < ac->limit)) {
3453 STATS_INC_FREEHIT(cachep);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003454 } else {
3455 STATS_INC_FREEMISS(cachep);
3456 cache_flusharray(cachep, ac);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003457 }
Zhao Jin42c8c992011-08-27 00:26:17 +08003458
Mel Gorman072bb0a2012-07-31 16:43:58 -07003459 ac_put_obj(cachep, ac, objp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003460}
3461
3462/**
3463 * kmem_cache_alloc - Allocate an object
3464 * @cachep: The cache to allocate from.
3465 * @flags: See kmalloc().
3466 *
3467 * Allocate an object from this cache. The flags are only relevant
3468 * if the cache has no available objects.
3469 */
Pekka Enberg343e0d72006-02-01 03:05:50 -08003470void *kmem_cache_alloc(struct kmem_cache *cachep, gfp_t flags)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003471{
Ezequiel Garcia48356302012-09-08 17:47:57 -03003472 void *ret = slab_alloc(cachep, flags, _RET_IP_);
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003473
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02003474 trace_kmem_cache_alloc(_RET_IP_, ret,
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003475 cachep->object_size, cachep->size, flags);
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003476
3477 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003478}
3479EXPORT_SYMBOL(kmem_cache_alloc);
3480
Li Zefan0f24f122009-12-11 15:45:30 +08003481#ifdef CONFIG_TRACING
Steven Rostedt85beb582010-11-24 16:23:34 -05003482void *
Ezequiel Garcia40521472012-09-08 17:47:56 -03003483kmem_cache_alloc_trace(struct kmem_cache *cachep, gfp_t flags, size_t size)
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003484{
Steven Rostedt85beb582010-11-24 16:23:34 -05003485 void *ret;
3486
Ezequiel Garcia48356302012-09-08 17:47:57 -03003487 ret = slab_alloc(cachep, flags, _RET_IP_);
Steven Rostedt85beb582010-11-24 16:23:34 -05003488
3489 trace_kmalloc(_RET_IP_, ret,
Ezequiel Garciaff4fcd02012-09-08 17:47:52 -03003490 size, cachep->size, flags);
Steven Rostedt85beb582010-11-24 16:23:34 -05003491 return ret;
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003492}
Steven Rostedt85beb582010-11-24 16:23:34 -05003493EXPORT_SYMBOL(kmem_cache_alloc_trace);
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003494#endif
3495
Linus Torvalds1da177e2005-04-16 15:20:36 -07003496#ifdef CONFIG_NUMA
Zhouping Liud0d04b72013-05-16 11:36:23 +08003497/**
3498 * kmem_cache_alloc_node - Allocate an object on the specified node
3499 * @cachep: The cache to allocate from.
3500 * @flags: See kmalloc().
3501 * @nodeid: node number of the target node.
3502 *
3503 * Identical to kmem_cache_alloc but it will allocate memory on the given
3504 * node, which can improve the performance for cpu bound structures.
3505 *
3506 * Fallback to other node is possible if __GFP_THISNODE is not set.
3507 */
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003508void *kmem_cache_alloc_node(struct kmem_cache *cachep, gfp_t flags, int nodeid)
3509{
Ezequiel Garcia48356302012-09-08 17:47:57 -03003510 void *ret = slab_alloc_node(cachep, flags, nodeid, _RET_IP_);
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003511
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02003512 trace_kmem_cache_alloc_node(_RET_IP_, ret,
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003513 cachep->object_size, cachep->size,
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02003514 flags, nodeid);
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003515
3516 return ret;
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003517}
Linus Torvalds1da177e2005-04-16 15:20:36 -07003518EXPORT_SYMBOL(kmem_cache_alloc_node);
3519
Li Zefan0f24f122009-12-11 15:45:30 +08003520#ifdef CONFIG_TRACING
Ezequiel Garcia40521472012-09-08 17:47:56 -03003521void *kmem_cache_alloc_node_trace(struct kmem_cache *cachep,
Steven Rostedt85beb582010-11-24 16:23:34 -05003522 gfp_t flags,
Ezequiel Garcia40521472012-09-08 17:47:56 -03003523 int nodeid,
3524 size_t size)
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003525{
Steven Rostedt85beb582010-11-24 16:23:34 -05003526 void *ret;
3527
Ezequiel Garcia592f4142012-09-25 08:07:08 -03003528 ret = slab_alloc_node(cachep, flags, nodeid, _RET_IP_);
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003529
Steven Rostedt85beb582010-11-24 16:23:34 -05003530 trace_kmalloc_node(_RET_IP_, ret,
Ezequiel Garciaff4fcd02012-09-08 17:47:52 -03003531 size, cachep->size,
Steven Rostedt85beb582010-11-24 16:23:34 -05003532 flags, nodeid);
3533 return ret;
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003534}
Steven Rostedt85beb582010-11-24 16:23:34 -05003535EXPORT_SYMBOL(kmem_cache_alloc_node_trace);
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003536#endif
3537
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003538static __always_inline void *
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003539__do_kmalloc_node(size_t size, gfp_t flags, int node, unsigned long caller)
Manfred Spraul97e2bde2005-05-01 08:58:38 -07003540{
Pekka Enberg343e0d72006-02-01 03:05:50 -08003541 struct kmem_cache *cachep;
Manfred Spraul97e2bde2005-05-01 08:58:38 -07003542
Christoph Lameter2c59dd62013-01-10 19:14:19 +00003543 cachep = kmalloc_slab(size, flags);
Christoph Lameter6cb8f912007-07-17 04:03:22 -07003544 if (unlikely(ZERO_OR_NULL_PTR(cachep)))
3545 return cachep;
Ezequiel Garcia40521472012-09-08 17:47:56 -03003546 return kmem_cache_alloc_node_trace(cachep, flags, node, size);
Manfred Spraul97e2bde2005-05-01 08:58:38 -07003547}
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003548
Li Zefan0bb38a52009-12-11 15:45:50 +08003549#if defined(CONFIG_DEBUG_SLAB) || defined(CONFIG_TRACING)
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003550void *__kmalloc_node(size_t size, gfp_t flags, int node)
3551{
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003552 return __do_kmalloc_node(size, flags, node, _RET_IP_);
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003553}
Christoph Hellwigdbe5e692006-09-25 23:31:36 -07003554EXPORT_SYMBOL(__kmalloc_node);
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003555
3556void *__kmalloc_node_track_caller(size_t size, gfp_t flags,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03003557 int node, unsigned long caller)
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003558{
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003559 return __do_kmalloc_node(size, flags, node, caller);
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003560}
3561EXPORT_SYMBOL(__kmalloc_node_track_caller);
3562#else
3563void *__kmalloc_node(size_t size, gfp_t flags, int node)
3564{
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003565 return __do_kmalloc_node(size, flags, node, 0);
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003566}
3567EXPORT_SYMBOL(__kmalloc_node);
Li Zefan0bb38a52009-12-11 15:45:50 +08003568#endif /* CONFIG_DEBUG_SLAB || CONFIG_TRACING */
Christoph Hellwig8b98c162006-12-06 20:32:30 -08003569#endif /* CONFIG_NUMA */
Linus Torvalds1da177e2005-04-16 15:20:36 -07003570
3571/**
Paul Drynoff800590f2006-06-23 02:03:48 -07003572 * __do_kmalloc - allocate memory
Linus Torvalds1da177e2005-04-16 15:20:36 -07003573 * @size: how many bytes of memory are required.
Paul Drynoff800590f2006-06-23 02:03:48 -07003574 * @flags: the type of memory to allocate (see kmalloc).
Randy Dunlap911851e2006-03-22 00:08:14 -08003575 * @caller: function caller for debug tracking of the caller
Linus Torvalds1da177e2005-04-16 15:20:36 -07003576 */
Pekka Enberg7fd6b142006-02-01 03:05:52 -08003577static __always_inline void *__do_kmalloc(size_t size, gfp_t flags,
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003578 unsigned long caller)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003579{
Pekka Enberg343e0d72006-02-01 03:05:50 -08003580 struct kmem_cache *cachep;
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003581 void *ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003582
Manfred Spraul97e2bde2005-05-01 08:58:38 -07003583 /* If you want to save a few bytes .text space: replace
3584 * __ with kmem_.
3585 * Then kmalloc uses the uninlined functions instead of the inline
3586 * functions.
3587 */
Christoph Lameter2c59dd62013-01-10 19:14:19 +00003588 cachep = kmalloc_slab(size, flags);
Linus Torvaldsa5c96d82007-07-19 13:17:15 -07003589 if (unlikely(ZERO_OR_NULL_PTR(cachep)))
3590 return cachep;
Ezequiel Garcia48356302012-09-08 17:47:57 -03003591 ret = slab_alloc(cachep, flags, caller);
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003592
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003593 trace_kmalloc(caller, ret,
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05003594 size, cachep->size, flags);
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003595
3596 return ret;
Pekka Enberg7fd6b142006-02-01 03:05:52 -08003597}
3598
Pekka Enberg7fd6b142006-02-01 03:05:52 -08003599
Li Zefan0bb38a52009-12-11 15:45:50 +08003600#if defined(CONFIG_DEBUG_SLAB) || defined(CONFIG_TRACING)
Pekka Enberg7fd6b142006-02-01 03:05:52 -08003601void *__kmalloc(size_t size, gfp_t flags)
3602{
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003603 return __do_kmalloc(size, flags, _RET_IP_);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003604}
3605EXPORT_SYMBOL(__kmalloc);
3606
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03003607void *__kmalloc_track_caller(size_t size, gfp_t flags, unsigned long caller)
Pekka Enberg7fd6b142006-02-01 03:05:52 -08003608{
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003609 return __do_kmalloc(size, flags, caller);
Pekka Enberg7fd6b142006-02-01 03:05:52 -08003610}
3611EXPORT_SYMBOL(__kmalloc_track_caller);
Christoph Hellwig1d2c8ee2006-10-04 02:15:25 -07003612
3613#else
3614void *__kmalloc(size_t size, gfp_t flags)
3615{
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003616 return __do_kmalloc(size, flags, 0);
Christoph Hellwig1d2c8ee2006-10-04 02:15:25 -07003617}
3618EXPORT_SYMBOL(__kmalloc);
Pekka Enberg7fd6b142006-02-01 03:05:52 -08003619#endif
3620
Linus Torvalds1da177e2005-04-16 15:20:36 -07003621/**
3622 * kmem_cache_free - Deallocate an object
3623 * @cachep: The cache the allocation was from.
3624 * @objp: The previously allocated object.
3625 *
3626 * Free an object which was previously allocated from this
3627 * cache.
3628 */
Pekka Enberg343e0d72006-02-01 03:05:50 -08003629void kmem_cache_free(struct kmem_cache *cachep, void *objp)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003630{
3631 unsigned long flags;
Glauber Costab9ce5ef2012-12-18 14:22:46 -08003632 cachep = cache_from_obj(cachep, objp);
3633 if (!cachep)
3634 return;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003635
3636 local_irq_save(flags);
Feng Tangd97d4762012-07-02 14:29:10 +08003637 debug_check_no_locks_freed(objp, cachep->object_size);
Thomas Gleixner3ac7fe52008-04-30 00:55:01 -07003638 if (!(cachep->flags & SLAB_DEBUG_OBJECTS))
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003639 debug_check_no_obj_freed(objp, cachep->object_size);
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003640 __cache_free(cachep, objp, _RET_IP_);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003641 local_irq_restore(flags);
Eduard - Gabriel Munteanu36555752008-08-10 20:14:05 +03003642
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02003643 trace_kmem_cache_free(_RET_IP_, objp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003644}
3645EXPORT_SYMBOL(kmem_cache_free);
3646
3647/**
Linus Torvalds1da177e2005-04-16 15:20:36 -07003648 * kfree - free previously allocated memory
3649 * @objp: pointer returned by kmalloc.
3650 *
Pekka Enberg80e93ef2005-09-09 13:10:16 -07003651 * If @objp is NULL, no operation is performed.
3652 *
Linus Torvalds1da177e2005-04-16 15:20:36 -07003653 * Don't free memory not originally allocated by kmalloc()
3654 * or you will run into trouble.
3655 */
3656void kfree(const void *objp)
3657{
Pekka Enberg343e0d72006-02-01 03:05:50 -08003658 struct kmem_cache *c;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003659 unsigned long flags;
3660
Pekka Enberg2121db72009-03-25 11:05:57 +02003661 trace_kfree(_RET_IP_, objp);
3662
Christoph Lameter6cb8f912007-07-17 04:03:22 -07003663 if (unlikely(ZERO_OR_NULL_PTR(objp)))
Linus Torvalds1da177e2005-04-16 15:20:36 -07003664 return;
3665 local_irq_save(flags);
3666 kfree_debugcheck(objp);
Pekka Enberg6ed5eb2212006-02-01 03:05:49 -08003667 c = virt_to_cache(objp);
Christoph Lameter8c138bc2012-06-13 10:24:58 -05003668 debug_check_no_locks_freed(objp, c->object_size);
3669
3670 debug_check_no_obj_freed(objp, c->object_size);
Ezequiel Garcia7c0cb9c2012-09-08 17:47:55 -03003671 __cache_free(c, (void *)objp, _RET_IP_);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003672 local_irq_restore(flags);
3673}
3674EXPORT_SYMBOL(kfree);
3675
Christoph Lametere498be72005-09-09 13:03:32 -07003676/*
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003677 * This initializes kmem_cache_node or resizes various caches for all nodes.
Christoph Lametere498be72005-09-09 13:03:32 -07003678 */
Pekka Enberg83b519e2009-06-10 19:40:04 +03003679static int alloc_kmemlist(struct kmem_cache *cachep, gfp_t gfp)
Christoph Lametere498be72005-09-09 13:03:32 -07003680{
3681 int node;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003682 struct kmem_cache_node *n;
Christoph Lametercafeb022006-03-25 03:06:46 -08003683 struct array_cache *new_shared;
Paul Menage3395ee02006-12-06 20:32:16 -08003684 struct array_cache **new_alien = NULL;
Christoph Lametere498be72005-09-09 13:03:32 -07003685
Mel Gorman9c09a952008-01-24 05:49:54 -08003686 for_each_online_node(node) {
Christoph Lametercafeb022006-03-25 03:06:46 -08003687
Paul Menage3395ee02006-12-06 20:32:16 -08003688 if (use_alien_caches) {
Pekka Enberg83b519e2009-06-10 19:40:04 +03003689 new_alien = alloc_alien_cache(node, cachep->limit, gfp);
Paul Menage3395ee02006-12-06 20:32:16 -08003690 if (!new_alien)
3691 goto fail;
3692 }
Christoph Lametercafeb022006-03-25 03:06:46 -08003693
Eric Dumazet63109842007-05-06 14:49:28 -07003694 new_shared = NULL;
3695 if (cachep->shared) {
3696 new_shared = alloc_arraycache(node,
Christoph Lameter0718dc22006-03-25 03:06:47 -08003697 cachep->shared*cachep->batchcount,
Pekka Enberg83b519e2009-06-10 19:40:04 +03003698 0xbaadf00d, gfp);
Eric Dumazet63109842007-05-06 14:49:28 -07003699 if (!new_shared) {
3700 free_alien_cache(new_alien);
3701 goto fail;
3702 }
Christoph Lameter0718dc22006-03-25 03:06:47 -08003703 }
Christoph Lametercafeb022006-03-25 03:06:46 -08003704
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003705 n = cachep->node[node];
3706 if (n) {
3707 struct array_cache *shared = n->shared;
Christoph Lametercafeb022006-03-25 03:06:46 -08003708
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003709 spin_lock_irq(&n->list_lock);
Christoph Lametere498be72005-09-09 13:03:32 -07003710
Christoph Lametercafeb022006-03-25 03:06:46 -08003711 if (shared)
Christoph Lameter0718dc22006-03-25 03:06:47 -08003712 free_block(cachep, shared->entry,
3713 shared->avail, node);
Christoph Lametere498be72005-09-09 13:03:32 -07003714
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003715 n->shared = new_shared;
3716 if (!n->alien) {
3717 n->alien = new_alien;
Christoph Lametere498be72005-09-09 13:03:32 -07003718 new_alien = NULL;
3719 }
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003720 n->free_limit = (1 + nr_cpus_node(node)) *
Andrew Mortona737b3e2006-03-22 00:08:11 -08003721 cachep->batchcount + cachep->num;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003722 spin_unlock_irq(&n->list_lock);
Christoph Lametercafeb022006-03-25 03:06:46 -08003723 kfree(shared);
Christoph Lametere498be72005-09-09 13:03:32 -07003724 free_alien_cache(new_alien);
3725 continue;
3726 }
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003727 n = kmalloc_node(sizeof(struct kmem_cache_node), gfp, node);
3728 if (!n) {
Christoph Lameter0718dc22006-03-25 03:06:47 -08003729 free_alien_cache(new_alien);
3730 kfree(new_shared);
Christoph Lametere498be72005-09-09 13:03:32 -07003731 goto fail;
Christoph Lameter0718dc22006-03-25 03:06:47 -08003732 }
Christoph Lametere498be72005-09-09 13:03:32 -07003733
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003734 kmem_cache_node_init(n);
3735 n->next_reap = jiffies + REAPTIMEOUT_LIST3 +
Andrew Mortona737b3e2006-03-22 00:08:11 -08003736 ((unsigned long)cachep) % REAPTIMEOUT_LIST3;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003737 n->shared = new_shared;
3738 n->alien = new_alien;
3739 n->free_limit = (1 + nr_cpus_node(node)) *
Andrew Mortona737b3e2006-03-22 00:08:11 -08003740 cachep->batchcount + cachep->num;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003741 cachep->node[node] = n;
Christoph Lametere498be72005-09-09 13:03:32 -07003742 }
Christoph Lametercafeb022006-03-25 03:06:46 -08003743 return 0;
Christoph Lameter0718dc22006-03-25 03:06:47 -08003744
Andrew Mortona737b3e2006-03-22 00:08:11 -08003745fail:
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05003746 if (!cachep->list.next) {
Christoph Lameter0718dc22006-03-25 03:06:47 -08003747 /* Cache is not active yet. Roll back what we did */
3748 node--;
3749 while (node >= 0) {
Christoph Lameter6a673682013-01-10 19:14:19 +00003750 if (cachep->node[node]) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003751 n = cachep->node[node];
Christoph Lameter0718dc22006-03-25 03:06:47 -08003752
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003753 kfree(n->shared);
3754 free_alien_cache(n->alien);
3755 kfree(n);
Christoph Lameter6a673682013-01-10 19:14:19 +00003756 cachep->node[node] = NULL;
Christoph Lameter0718dc22006-03-25 03:06:47 -08003757 }
3758 node--;
3759 }
3760 }
Christoph Lametercafeb022006-03-25 03:06:46 -08003761 return -ENOMEM;
Christoph Lametere498be72005-09-09 13:03:32 -07003762}
3763
Linus Torvalds1da177e2005-04-16 15:20:36 -07003764struct ccupdate_struct {
Pekka Enberg343e0d72006-02-01 03:05:50 -08003765 struct kmem_cache *cachep;
Eric Dumazetacfe7d72011-07-25 08:55:42 +02003766 struct array_cache *new[0];
Linus Torvalds1da177e2005-04-16 15:20:36 -07003767};
3768
3769static void do_ccupdate_local(void *info)
3770{
Andrew Mortona737b3e2006-03-22 00:08:11 -08003771 struct ccupdate_struct *new = info;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003772 struct array_cache *old;
3773
3774 check_irq_off();
Pekka Enberg9a2dba42006-02-01 03:05:49 -08003775 old = cpu_cache_get(new->cachep);
Christoph Lametere498be72005-09-09 13:03:32 -07003776
Linus Torvalds1da177e2005-04-16 15:20:36 -07003777 new->cachep->array[smp_processor_id()] = new->new[smp_processor_id()];
3778 new->new[smp_processor_id()] = old;
3779}
3780
Christoph Lameter18004c52012-07-06 15:25:12 -05003781/* Always called with the slab_mutex held */
Glauber Costa943a4512012-12-18 14:23:03 -08003782static int __do_tune_cpucache(struct kmem_cache *cachep, int limit,
Pekka Enberg83b519e2009-06-10 19:40:04 +03003783 int batchcount, int shared, gfp_t gfp)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003784{
Siddha, Suresh Bd2e7b7d2006-09-25 23:31:47 -07003785 struct ccupdate_struct *new;
Christoph Lameter2ed3a4e2006-09-25 23:31:38 -07003786 int i;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003787
Eric Dumazetacfe7d72011-07-25 08:55:42 +02003788 new = kzalloc(sizeof(*new) + nr_cpu_ids * sizeof(struct array_cache *),
3789 gfp);
Siddha, Suresh Bd2e7b7d2006-09-25 23:31:47 -07003790 if (!new)
3791 return -ENOMEM;
3792
Christoph Lametere498be72005-09-09 13:03:32 -07003793 for_each_online_cpu(i) {
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07003794 new->new[i] = alloc_arraycache(cpu_to_mem(i), limit,
Pekka Enberg83b519e2009-06-10 19:40:04 +03003795 batchcount, gfp);
Siddha, Suresh Bd2e7b7d2006-09-25 23:31:47 -07003796 if (!new->new[i]) {
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003797 for (i--; i >= 0; i--)
Siddha, Suresh Bd2e7b7d2006-09-25 23:31:47 -07003798 kfree(new->new[i]);
3799 kfree(new);
Christoph Lametere498be72005-09-09 13:03:32 -07003800 return -ENOMEM;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003801 }
3802 }
Siddha, Suresh Bd2e7b7d2006-09-25 23:31:47 -07003803 new->cachep = cachep;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003804
Jens Axboe15c8b6c2008-05-09 09:39:44 +02003805 on_each_cpu(do_ccupdate_local, (void *)new, 1);
Christoph Lametere498be72005-09-09 13:03:32 -07003806
Linus Torvalds1da177e2005-04-16 15:20:36 -07003807 check_irq_on();
Linus Torvalds1da177e2005-04-16 15:20:36 -07003808 cachep->batchcount = batchcount;
3809 cachep->limit = limit;
Christoph Lametere498be72005-09-09 13:03:32 -07003810 cachep->shared = shared;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003811
Christoph Lametere498be72005-09-09 13:03:32 -07003812 for_each_online_cpu(i) {
Siddha, Suresh Bd2e7b7d2006-09-25 23:31:47 -07003813 struct array_cache *ccold = new->new[i];
Linus Torvalds1da177e2005-04-16 15:20:36 -07003814 if (!ccold)
3815 continue;
Christoph Lameter6a673682013-01-10 19:14:19 +00003816 spin_lock_irq(&cachep->node[cpu_to_mem(i)]->list_lock);
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07003817 free_block(cachep, ccold->entry, ccold->avail, cpu_to_mem(i));
Christoph Lameter6a673682013-01-10 19:14:19 +00003818 spin_unlock_irq(&cachep->node[cpu_to_mem(i)]->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003819 kfree(ccold);
3820 }
Siddha, Suresh Bd2e7b7d2006-09-25 23:31:47 -07003821 kfree(new);
Pekka Enberg83b519e2009-06-10 19:40:04 +03003822 return alloc_kmemlist(cachep, gfp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003823}
3824
Glauber Costa943a4512012-12-18 14:23:03 -08003825static int do_tune_cpucache(struct kmem_cache *cachep, int limit,
3826 int batchcount, int shared, gfp_t gfp)
3827{
3828 int ret;
3829 struct kmem_cache *c = NULL;
3830 int i = 0;
3831
3832 ret = __do_tune_cpucache(cachep, limit, batchcount, shared, gfp);
3833
3834 if (slab_state < FULL)
3835 return ret;
3836
3837 if ((ret < 0) || !is_root_cache(cachep))
3838 return ret;
3839
Glauber Costaebe945c2012-12-18 14:23:10 -08003840 VM_BUG_ON(!mutex_is_locked(&slab_mutex));
Glauber Costa943a4512012-12-18 14:23:03 -08003841 for_each_memcg_cache_index(i) {
Qiang Huang2ade4de2013-11-12 15:08:23 -08003842 c = cache_from_memcg_idx(cachep, i);
Glauber Costa943a4512012-12-18 14:23:03 -08003843 if (c)
3844 /* return value determined by the parent cache only */
3845 __do_tune_cpucache(c, limit, batchcount, shared, gfp);
3846 }
3847
3848 return ret;
3849}
3850
Christoph Lameter18004c52012-07-06 15:25:12 -05003851/* Called with slab_mutex held always */
Pekka Enberg83b519e2009-06-10 19:40:04 +03003852static int enable_cpucache(struct kmem_cache *cachep, gfp_t gfp)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003853{
3854 int err;
Glauber Costa943a4512012-12-18 14:23:03 -08003855 int limit = 0;
3856 int shared = 0;
3857 int batchcount = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003858
Glauber Costa943a4512012-12-18 14:23:03 -08003859 if (!is_root_cache(cachep)) {
3860 struct kmem_cache *root = memcg_root_cache(cachep);
3861 limit = root->limit;
3862 shared = root->shared;
3863 batchcount = root->batchcount;
3864 }
3865
3866 if (limit && shared && batchcount)
3867 goto skip_setup;
Andrew Mortona737b3e2006-03-22 00:08:11 -08003868 /*
3869 * The head array serves three purposes:
Linus Torvalds1da177e2005-04-16 15:20:36 -07003870 * - create a LIFO ordering, i.e. return objects that are cache-warm
3871 * - reduce the number of spinlock operations.
Andrew Mortona737b3e2006-03-22 00:08:11 -08003872 * - reduce the number of linked list operations on the slab and
Linus Torvalds1da177e2005-04-16 15:20:36 -07003873 * bufctl chains: array operations are cheaper.
3874 * The numbers are guessed, we should auto-tune as described by
3875 * Bonwick.
3876 */
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05003877 if (cachep->size > 131072)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003878 limit = 1;
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05003879 else if (cachep->size > PAGE_SIZE)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003880 limit = 8;
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05003881 else if (cachep->size > 1024)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003882 limit = 24;
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05003883 else if (cachep->size > 256)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003884 limit = 54;
3885 else
3886 limit = 120;
3887
Andrew Mortona737b3e2006-03-22 00:08:11 -08003888 /*
3889 * CPU bound tasks (e.g. network routing) can exhibit cpu bound
Linus Torvalds1da177e2005-04-16 15:20:36 -07003890 * allocation behaviour: Most allocs on one cpu, most free operations
3891 * on another cpu. For these cases, an efficient object passing between
3892 * cpus is necessary. This is provided by a shared array. The array
3893 * replaces Bonwick's magazine layer.
3894 * On uniprocessor, it's functionally equivalent (but less efficient)
3895 * to a larger limit. Thus disabled by default.
3896 */
3897 shared = 0;
Christoph Lameter3b0efdf2012-06-13 10:24:57 -05003898 if (cachep->size <= PAGE_SIZE && num_possible_cpus() > 1)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003899 shared = 8;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003900
3901#if DEBUG
Andrew Mortona737b3e2006-03-22 00:08:11 -08003902 /*
3903 * With debugging enabled, large batchcount lead to excessively long
3904 * periods with disabled local interrupts. Limit the batchcount
Linus Torvalds1da177e2005-04-16 15:20:36 -07003905 */
3906 if (limit > 32)
3907 limit = 32;
3908#endif
Glauber Costa943a4512012-12-18 14:23:03 -08003909 batchcount = (limit + 1) / 2;
3910skip_setup:
3911 err = do_tune_cpucache(cachep, limit, batchcount, shared, gfp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003912 if (err)
3913 printk(KERN_ERR "enable_cpucache failed for %s, error %d.\n",
Pekka Enbergb28a02d2006-01-08 01:00:37 -08003914 cachep->name, -err);
Christoph Lameter2ed3a4e2006-09-25 23:31:38 -07003915 return err;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003916}
3917
Christoph Lameter1b552532006-03-22 00:09:07 -08003918/*
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003919 * Drain an array if it contains any elements taking the node lock only if
3920 * necessary. Note that the node listlock also protects the array_cache
Christoph Lameterb18e7e62006-03-22 00:09:07 -08003921 * if drain_array() is used on the shared array.
Christoph Lameter1b552532006-03-22 00:09:07 -08003922 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003923static void drain_array(struct kmem_cache *cachep, struct kmem_cache_node *n,
Christoph Lameter1b552532006-03-22 00:09:07 -08003924 struct array_cache *ac, int force, int node)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003925{
3926 int tofree;
3927
Christoph Lameter1b552532006-03-22 00:09:07 -08003928 if (!ac || !ac->avail)
3929 return;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003930 if (ac->touched && !force) {
3931 ac->touched = 0;
Christoph Lameterb18e7e62006-03-22 00:09:07 -08003932 } else {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003933 spin_lock_irq(&n->list_lock);
Christoph Lameterb18e7e62006-03-22 00:09:07 -08003934 if (ac->avail) {
3935 tofree = force ? ac->avail : (ac->limit + 4) / 5;
3936 if (tofree > ac->avail)
3937 tofree = (ac->avail + 1) / 2;
3938 free_block(cachep, ac->entry, tofree, node);
3939 ac->avail -= tofree;
3940 memmove(ac->entry, &(ac->entry[tofree]),
3941 sizeof(void *) * ac->avail);
3942 }
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003943 spin_unlock_irq(&n->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003944 }
3945}
3946
3947/**
3948 * cache_reap - Reclaim memory from caches.
Randy Dunlap05fb6bf2007-02-28 20:12:13 -08003949 * @w: work descriptor
Linus Torvalds1da177e2005-04-16 15:20:36 -07003950 *
3951 * Called from workqueue/eventd every few seconds.
3952 * Purpose:
3953 * - clear the per-cpu caches for this CPU.
3954 * - return freeable pages to the main free memory pool.
3955 *
Andrew Mortona737b3e2006-03-22 00:08:11 -08003956 * If we cannot acquire the cache chain mutex then just give up - we'll try
3957 * again on the next iteration.
Linus Torvalds1da177e2005-04-16 15:20:36 -07003958 */
Christoph Lameter7c5cae32007-02-10 01:42:55 -08003959static void cache_reap(struct work_struct *w)
Linus Torvalds1da177e2005-04-16 15:20:36 -07003960{
Christoph Hellwig7a7c3812006-06-23 02:03:17 -07003961 struct kmem_cache *searchp;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003962 struct kmem_cache_node *n;
Lee Schermerhorn7d6e6d02010-05-26 14:45:03 -07003963 int node = numa_mem_id();
Jean Delvarebf6aede2009-04-02 16:56:54 -07003964 struct delayed_work *work = to_delayed_work(w);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003965
Christoph Lameter18004c52012-07-06 15:25:12 -05003966 if (!mutex_trylock(&slab_mutex))
Linus Torvalds1da177e2005-04-16 15:20:36 -07003967 /* Give up. Setup the next iteration. */
Christoph Lameter7c5cae32007-02-10 01:42:55 -08003968 goto out;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003969
Christoph Lameter18004c52012-07-06 15:25:12 -05003970 list_for_each_entry(searchp, &slab_caches, list) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07003971 check_irq_on();
3972
Christoph Lameter35386e32006-03-22 00:09:05 -08003973 /*
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003974 * We only take the node lock if absolutely necessary and we
Christoph Lameter35386e32006-03-22 00:09:05 -08003975 * have established with reasonable certainty that
3976 * we can do some work if the lock was obtained.
3977 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003978 n = searchp->node[node];
Christoph Lameter35386e32006-03-22 00:09:05 -08003979
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003980 reap_alien(searchp, n);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003981
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003982 drain_array(searchp, n, cpu_cache_get(searchp), 0, node);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003983
Christoph Lameter35386e32006-03-22 00:09:05 -08003984 /*
3985 * These are racy checks but it does not matter
3986 * if we skip one check or scan twice.
3987 */
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003988 if (time_after(n->next_reap, jiffies))
Christoph Lameter35386e32006-03-22 00:09:05 -08003989 goto next;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003990
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003991 n->next_reap = jiffies + REAPTIMEOUT_LIST3;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003992
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003993 drain_array(searchp, n, n->shared, 0, node);
Linus Torvalds1da177e2005-04-16 15:20:36 -07003994
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00003995 if (n->free_touched)
3996 n->free_touched = 0;
Christoph Lametered11d9e2006-06-30 01:55:45 -07003997 else {
3998 int freed;
3999
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004000 freed = drain_freelist(searchp, n, (n->free_limit +
Christoph Lametered11d9e2006-06-30 01:55:45 -07004001 5 * searchp->num - 1) / (5 * searchp->num));
4002 STATS_ADD_REAPED(searchp, freed);
Linus Torvalds1da177e2005-04-16 15:20:36 -07004003 }
Christoph Lameter35386e32006-03-22 00:09:05 -08004004next:
Linus Torvalds1da177e2005-04-16 15:20:36 -07004005 cond_resched();
4006 }
4007 check_irq_on();
Christoph Lameter18004c52012-07-06 15:25:12 -05004008 mutex_unlock(&slab_mutex);
Christoph Lameter8fce4d82006-03-09 17:33:54 -08004009 next_reap_node();
Christoph Lameter7c5cae32007-02-10 01:42:55 -08004010out:
Andrew Mortona737b3e2006-03-22 00:08:11 -08004011 /* Set up the next iteration */
Christoph Lameter7c5cae32007-02-10 01:42:55 -08004012 schedule_delayed_work(work, round_jiffies_relative(REAPTIMEOUT_CPUC));
Linus Torvalds1da177e2005-04-16 15:20:36 -07004013}
4014
Linus Torvalds158a9622008-01-02 13:04:48 -08004015#ifdef CONFIG_SLABINFO
Glauber Costa0d7561c2012-10-19 18:20:27 +04004016void get_slabinfo(struct kmem_cache *cachep, struct slabinfo *sinfo)
Linus Torvalds1da177e2005-04-16 15:20:36 -07004017{
Joonsoo Kim8456a642013-10-24 10:07:49 +09004018 struct page *page;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08004019 unsigned long active_objs;
4020 unsigned long num_objs;
4021 unsigned long active_slabs = 0;
4022 unsigned long num_slabs, free_objects = 0, shared_avail = 0;
Christoph Lametere498be72005-09-09 13:03:32 -07004023 const char *name;
Linus Torvalds1da177e2005-04-16 15:20:36 -07004024 char *error = NULL;
Christoph Lametere498be72005-09-09 13:03:32 -07004025 int node;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004026 struct kmem_cache_node *n;
Linus Torvalds1da177e2005-04-16 15:20:36 -07004027
Linus Torvalds1da177e2005-04-16 15:20:36 -07004028 active_objs = 0;
4029 num_slabs = 0;
Christoph Lametere498be72005-09-09 13:03:32 -07004030 for_each_online_node(node) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004031 n = cachep->node[node];
4032 if (!n)
Christoph Lametere498be72005-09-09 13:03:32 -07004033 continue;
4034
Ravikiran G Thirumalaica3b9b92006-02-04 23:27:58 -08004035 check_irq_on();
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004036 spin_lock_irq(&n->list_lock);
Christoph Lametere498be72005-09-09 13:03:32 -07004037
Joonsoo Kim8456a642013-10-24 10:07:49 +09004038 list_for_each_entry(page, &n->slabs_full, lru) {
4039 if (page->active != cachep->num && !error)
Christoph Lametere498be72005-09-09 13:03:32 -07004040 error = "slabs_full accounting error";
4041 active_objs += cachep->num;
4042 active_slabs++;
4043 }
Joonsoo Kim8456a642013-10-24 10:07:49 +09004044 list_for_each_entry(page, &n->slabs_partial, lru) {
4045 if (page->active == cachep->num && !error)
Joonsoo Kim106a74e2013-10-24 10:07:48 +09004046 error = "slabs_partial accounting error";
Joonsoo Kim8456a642013-10-24 10:07:49 +09004047 if (!page->active && !error)
Joonsoo Kim106a74e2013-10-24 10:07:48 +09004048 error = "slabs_partial accounting error";
Joonsoo Kim8456a642013-10-24 10:07:49 +09004049 active_objs += page->active;
Christoph Lametere498be72005-09-09 13:03:32 -07004050 active_slabs++;
4051 }
Joonsoo Kim8456a642013-10-24 10:07:49 +09004052 list_for_each_entry(page, &n->slabs_free, lru) {
4053 if (page->active && !error)
Joonsoo Kim106a74e2013-10-24 10:07:48 +09004054 error = "slabs_free accounting error";
Christoph Lametere498be72005-09-09 13:03:32 -07004055 num_slabs++;
4056 }
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004057 free_objects += n->free_objects;
4058 if (n->shared)
4059 shared_avail += n->shared->avail;
Christoph Lametere498be72005-09-09 13:03:32 -07004060
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004061 spin_unlock_irq(&n->list_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07004062 }
Pekka Enbergb28a02d2006-01-08 01:00:37 -08004063 num_slabs += active_slabs;
4064 num_objs = num_slabs * cachep->num;
Christoph Lametere498be72005-09-09 13:03:32 -07004065 if (num_objs - active_objs != free_objects && !error)
Linus Torvalds1da177e2005-04-16 15:20:36 -07004066 error = "free_objects accounting error";
4067
Pekka Enbergb28a02d2006-01-08 01:00:37 -08004068 name = cachep->name;
Linus Torvalds1da177e2005-04-16 15:20:36 -07004069 if (error)
4070 printk(KERN_ERR "slab: cache %s error: %s\n", name, error);
4071
Glauber Costa0d7561c2012-10-19 18:20:27 +04004072 sinfo->active_objs = active_objs;
4073 sinfo->num_objs = num_objs;
4074 sinfo->active_slabs = active_slabs;
4075 sinfo->num_slabs = num_slabs;
4076 sinfo->shared_avail = shared_avail;
4077 sinfo->limit = cachep->limit;
4078 sinfo->batchcount = cachep->batchcount;
4079 sinfo->shared = cachep->shared;
4080 sinfo->objects_per_slab = cachep->num;
4081 sinfo->cache_order = cachep->gfporder;
4082}
4083
4084void slabinfo_show_stats(struct seq_file *m, struct kmem_cache *cachep)
4085{
Linus Torvalds1da177e2005-04-16 15:20:36 -07004086#if STATS
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004087 { /* node stats */
Linus Torvalds1da177e2005-04-16 15:20:36 -07004088 unsigned long high = cachep->high_mark;
4089 unsigned long allocs = cachep->num_allocations;
4090 unsigned long grown = cachep->grown;
4091 unsigned long reaped = cachep->reaped;
4092 unsigned long errors = cachep->errors;
4093 unsigned long max_freeable = cachep->max_freeable;
Linus Torvalds1da177e2005-04-16 15:20:36 -07004094 unsigned long node_allocs = cachep->node_allocs;
Christoph Lametere498be72005-09-09 13:03:32 -07004095 unsigned long node_frees = cachep->node_frees;
Ravikiran G Thirumalaifb7faf32006-04-10 22:52:54 -07004096 unsigned long overflows = cachep->node_overflow;
Linus Torvalds1da177e2005-04-16 15:20:36 -07004097
Joe Perchese92dd4f2010-03-26 19:27:58 -07004098 seq_printf(m, " : globalstat %7lu %6lu %5lu %4lu "
4099 "%4lu %4lu %4lu %4lu %4lu",
4100 allocs, high, grown,
4101 reaped, errors, max_freeable, node_allocs,
4102 node_frees, overflows);
Linus Torvalds1da177e2005-04-16 15:20:36 -07004103 }
4104 /* cpu stats */
4105 {
4106 unsigned long allochit = atomic_read(&cachep->allochit);
4107 unsigned long allocmiss = atomic_read(&cachep->allocmiss);
4108 unsigned long freehit = atomic_read(&cachep->freehit);
4109 unsigned long freemiss = atomic_read(&cachep->freemiss);
4110
4111 seq_printf(m, " : cpustat %6lu %6lu %6lu %6lu",
Pekka Enbergb28a02d2006-01-08 01:00:37 -08004112 allochit, allocmiss, freehit, freemiss);
Linus Torvalds1da177e2005-04-16 15:20:36 -07004113 }
4114#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -07004115}
4116
Linus Torvalds1da177e2005-04-16 15:20:36 -07004117#define MAX_SLABINFO_WRITE 128
4118/**
4119 * slabinfo_write - Tuning for the slab allocator
4120 * @file: unused
4121 * @buffer: user buffer
4122 * @count: data length
4123 * @ppos: unused
4124 */
Glauber Costab7454ad2012-10-19 18:20:25 +04004125ssize_t slabinfo_write(struct file *file, const char __user *buffer,
Pekka Enbergb28a02d2006-01-08 01:00:37 -08004126 size_t count, loff_t *ppos)
Linus Torvalds1da177e2005-04-16 15:20:36 -07004127{
Pekka Enbergb28a02d2006-01-08 01:00:37 -08004128 char kbuf[MAX_SLABINFO_WRITE + 1], *tmp;
Linus Torvalds1da177e2005-04-16 15:20:36 -07004129 int limit, batchcount, shared, res;
Christoph Hellwig7a7c3812006-06-23 02:03:17 -07004130 struct kmem_cache *cachep;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08004131
Linus Torvalds1da177e2005-04-16 15:20:36 -07004132 if (count > MAX_SLABINFO_WRITE)
4133 return -EINVAL;
4134 if (copy_from_user(&kbuf, buffer, count))
4135 return -EFAULT;
Pekka Enbergb28a02d2006-01-08 01:00:37 -08004136 kbuf[MAX_SLABINFO_WRITE] = '\0';
Linus Torvalds1da177e2005-04-16 15:20:36 -07004137
4138 tmp = strchr(kbuf, ' ');
4139 if (!tmp)
4140 return -EINVAL;
4141 *tmp = '\0';
4142 tmp++;
4143 if (sscanf(tmp, " %d %d %d", &limit, &batchcount, &shared) != 3)
4144 return -EINVAL;
4145
4146 /* Find the cache in the chain of caches. */
Christoph Lameter18004c52012-07-06 15:25:12 -05004147 mutex_lock(&slab_mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07004148 res = -EINVAL;
Christoph Lameter18004c52012-07-06 15:25:12 -05004149 list_for_each_entry(cachep, &slab_caches, list) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07004150 if (!strcmp(cachep->name, kbuf)) {
Andrew Mortona737b3e2006-03-22 00:08:11 -08004151 if (limit < 1 || batchcount < 1 ||
4152 batchcount > limit || shared < 0) {
Christoph Lametere498be72005-09-09 13:03:32 -07004153 res = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07004154 } else {
Christoph Lametere498be72005-09-09 13:03:32 -07004155 res = do_tune_cpucache(cachep, limit,
Pekka Enberg83b519e2009-06-10 19:40:04 +03004156 batchcount, shared,
4157 GFP_KERNEL);
Linus Torvalds1da177e2005-04-16 15:20:36 -07004158 }
4159 break;
4160 }
4161 }
Christoph Lameter18004c52012-07-06 15:25:12 -05004162 mutex_unlock(&slab_mutex);
Linus Torvalds1da177e2005-04-16 15:20:36 -07004163 if (res >= 0)
4164 res = count;
4165 return res;
4166}
Al Viro871751e2006-03-25 03:06:39 -08004167
4168#ifdef CONFIG_DEBUG_SLAB_LEAK
4169
4170static void *leaks_start(struct seq_file *m, loff_t *pos)
4171{
Christoph Lameter18004c52012-07-06 15:25:12 -05004172 mutex_lock(&slab_mutex);
4173 return seq_list_start(&slab_caches, *pos);
Al Viro871751e2006-03-25 03:06:39 -08004174}
4175
4176static inline int add_caller(unsigned long *n, unsigned long v)
4177{
4178 unsigned long *p;
4179 int l;
4180 if (!v)
4181 return 1;
4182 l = n[1];
4183 p = n + 2;
4184 while (l) {
4185 int i = l/2;
4186 unsigned long *q = p + 2 * i;
4187 if (*q == v) {
4188 q[1]++;
4189 return 1;
4190 }
4191 if (*q > v) {
4192 l = i;
4193 } else {
4194 p = q + 2;
4195 l -= i + 1;
4196 }
4197 }
4198 if (++n[1] == n[0])
4199 return 0;
4200 memmove(p + 2, p, n[1] * 2 * sizeof(unsigned long) - ((void *)p - (void *)n));
4201 p[0] = v;
4202 p[1] = 1;
4203 return 1;
4204}
4205
Joonsoo Kim8456a642013-10-24 10:07:49 +09004206static void handle_slab(unsigned long *n, struct kmem_cache *c,
4207 struct page *page)
Al Viro871751e2006-03-25 03:06:39 -08004208{
4209 void *p;
Joonsoo Kimb1cb0982013-10-24 10:07:45 +09004210 int i, j;
4211
Al Viro871751e2006-03-25 03:06:39 -08004212 if (n[0] == n[1])
4213 return;
Joonsoo Kim8456a642013-10-24 10:07:49 +09004214 for (i = 0, p = page->s_mem; i < c->num; i++, p += c->size) {
Joonsoo Kimb1cb0982013-10-24 10:07:45 +09004215 bool active = true;
4216
Joonsoo Kim8456a642013-10-24 10:07:49 +09004217 for (j = page->active; j < c->num; j++) {
Joonsoo Kimb1cb0982013-10-24 10:07:45 +09004218 /* Skip freed item */
Joonsoo Kime7444d92013-10-24 10:07:51 +09004219 if (slab_freelist(page)[j] == i) {
Joonsoo Kimb1cb0982013-10-24 10:07:45 +09004220 active = false;
4221 break;
4222 }
4223 }
4224 if (!active)
Al Viro871751e2006-03-25 03:06:39 -08004225 continue;
Joonsoo Kimb1cb0982013-10-24 10:07:45 +09004226
Al Viro871751e2006-03-25 03:06:39 -08004227 if (!add_caller(n, (unsigned long)*dbg_userword(c, p)))
4228 return;
4229 }
4230}
4231
4232static void show_symbol(struct seq_file *m, unsigned long address)
4233{
4234#ifdef CONFIG_KALLSYMS
Al Viro871751e2006-03-25 03:06:39 -08004235 unsigned long offset, size;
Tejun Heo9281ace2007-07-17 04:03:51 -07004236 char modname[MODULE_NAME_LEN], name[KSYM_NAME_LEN];
Al Viro871751e2006-03-25 03:06:39 -08004237
Alexey Dobriyana5c43da2007-05-08 00:28:47 -07004238 if (lookup_symbol_attrs(address, &size, &offset, modname, name) == 0) {
Al Viro871751e2006-03-25 03:06:39 -08004239 seq_printf(m, "%s+%#lx/%#lx", name, offset, size);
Alexey Dobriyana5c43da2007-05-08 00:28:47 -07004240 if (modname[0])
Al Viro871751e2006-03-25 03:06:39 -08004241 seq_printf(m, " [%s]", modname);
4242 return;
4243 }
4244#endif
4245 seq_printf(m, "%p", (void *)address);
4246}
4247
4248static int leaks_show(struct seq_file *m, void *p)
4249{
Thierry Reding0672aa72012-06-22 19:42:49 +02004250 struct kmem_cache *cachep = list_entry(p, struct kmem_cache, list);
Joonsoo Kim8456a642013-10-24 10:07:49 +09004251 struct page *page;
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004252 struct kmem_cache_node *n;
Al Viro871751e2006-03-25 03:06:39 -08004253 const char *name;
Christoph Lameterdb845062013-02-05 18:45:23 +00004254 unsigned long *x = m->private;
Al Viro871751e2006-03-25 03:06:39 -08004255 int node;
4256 int i;
4257
4258 if (!(cachep->flags & SLAB_STORE_USER))
4259 return 0;
4260 if (!(cachep->flags & SLAB_RED_ZONE))
4261 return 0;
4262
4263 /* OK, we can do it */
4264
Christoph Lameterdb845062013-02-05 18:45:23 +00004265 x[1] = 0;
Al Viro871751e2006-03-25 03:06:39 -08004266
4267 for_each_online_node(node) {
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004268 n = cachep->node[node];
4269 if (!n)
Al Viro871751e2006-03-25 03:06:39 -08004270 continue;
4271
4272 check_irq_on();
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004273 spin_lock_irq(&n->list_lock);
Al Viro871751e2006-03-25 03:06:39 -08004274
Joonsoo Kim8456a642013-10-24 10:07:49 +09004275 list_for_each_entry(page, &n->slabs_full, lru)
4276 handle_slab(x, cachep, page);
4277 list_for_each_entry(page, &n->slabs_partial, lru)
4278 handle_slab(x, cachep, page);
Christoph Lameterce8eb6c2013-01-10 19:14:19 +00004279 spin_unlock_irq(&n->list_lock);
Al Viro871751e2006-03-25 03:06:39 -08004280 }
4281 name = cachep->name;
Christoph Lameterdb845062013-02-05 18:45:23 +00004282 if (x[0] == x[1]) {
Al Viro871751e2006-03-25 03:06:39 -08004283 /* Increase the buffer size */
Christoph Lameter18004c52012-07-06 15:25:12 -05004284 mutex_unlock(&slab_mutex);
Christoph Lameterdb845062013-02-05 18:45:23 +00004285 m->private = kzalloc(x[0] * 4 * sizeof(unsigned long), GFP_KERNEL);
Al Viro871751e2006-03-25 03:06:39 -08004286 if (!m->private) {
4287 /* Too bad, we are really out */
Christoph Lameterdb845062013-02-05 18:45:23 +00004288 m->private = x;
Christoph Lameter18004c52012-07-06 15:25:12 -05004289 mutex_lock(&slab_mutex);
Al Viro871751e2006-03-25 03:06:39 -08004290 return -ENOMEM;
4291 }
Christoph Lameterdb845062013-02-05 18:45:23 +00004292 *(unsigned long *)m->private = x[0] * 2;
4293 kfree(x);
Christoph Lameter18004c52012-07-06 15:25:12 -05004294 mutex_lock(&slab_mutex);
Al Viro871751e2006-03-25 03:06:39 -08004295 /* Now make sure this entry will be retried */
4296 m->count = m->size;
4297 return 0;
4298 }
Christoph Lameterdb845062013-02-05 18:45:23 +00004299 for (i = 0; i < x[1]; i++) {
4300 seq_printf(m, "%s: %lu ", name, x[2*i+3]);
4301 show_symbol(m, x[2*i+2]);
Al Viro871751e2006-03-25 03:06:39 -08004302 seq_putc(m, '\n');
4303 }
Siddha, Suresh Bd2e7b7d2006-09-25 23:31:47 -07004304
Al Viro871751e2006-03-25 03:06:39 -08004305 return 0;
4306}
4307
Alexey Dobriyana0ec95a2008-10-06 00:59:10 +04004308static const struct seq_operations slabstats_op = {
Al Viro871751e2006-03-25 03:06:39 -08004309 .start = leaks_start,
Wanpeng Li276a2432013-07-08 08:08:28 +08004310 .next = slab_next,
4311 .stop = slab_stop,
Al Viro871751e2006-03-25 03:06:39 -08004312 .show = leaks_show,
4313};
Alexey Dobriyana0ec95a2008-10-06 00:59:10 +04004314
4315static int slabstats_open(struct inode *inode, struct file *file)
4316{
4317 unsigned long *n = kzalloc(PAGE_SIZE, GFP_KERNEL);
4318 int ret = -ENOMEM;
4319 if (n) {
4320 ret = seq_open(file, &slabstats_op);
4321 if (!ret) {
4322 struct seq_file *m = file->private_data;
4323 *n = PAGE_SIZE / (2 * sizeof(unsigned long));
4324 m->private = n;
4325 n = NULL;
4326 }
4327 kfree(n);
4328 }
4329 return ret;
4330}
4331
4332static const struct file_operations proc_slabstats_operations = {
4333 .open = slabstats_open,
4334 .read = seq_read,
4335 .llseek = seq_lseek,
4336 .release = seq_release_private,
4337};
Al Viro871751e2006-03-25 03:06:39 -08004338#endif
Alexey Dobriyana0ec95a2008-10-06 00:59:10 +04004339
4340static int __init slab_proc_init(void)
4341{
4342#ifdef CONFIG_DEBUG_SLAB_LEAK
4343 proc_create("slab_allocators", 0, NULL, &proc_slabstats_operations);
4344#endif
4345 return 0;
4346}
4347module_init(slab_proc_init);
Linus Torvalds1da177e2005-04-16 15:20:36 -07004348#endif
4349
Manfred Spraul00e145b2005-09-03 15:55:07 -07004350/**
4351 * ksize - get the actual amount of memory allocated for a given object
4352 * @objp: Pointer to the object
4353 *
4354 * kmalloc may internally round up allocations and return more memory
4355 * than requested. ksize() can be used to determine the actual amount of
4356 * memory allocated. The caller may use this additional memory, even though
4357 * a smaller amount of memory was initially specified with the kmalloc call.
4358 * The caller must guarantee that objp points to a valid object previously
4359 * allocated with either kmalloc() or kmem_cache_alloc(). The object
4360 * must not be freed during the duration of the call.
4361 */
Pekka Enbergfd76bab2007-05-06 14:48:40 -07004362size_t ksize(const void *objp)
Linus Torvalds1da177e2005-04-16 15:20:36 -07004363{
Christoph Lameteref8b4522007-10-16 01:24:46 -07004364 BUG_ON(!objp);
4365 if (unlikely(objp == ZERO_SIZE_PTR))
Manfred Spraul00e145b2005-09-03 15:55:07 -07004366 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07004367
Christoph Lameter8c138bc2012-06-13 10:24:58 -05004368 return virt_to_cache(objp)->object_size;
Linus Torvalds1da177e2005-04-16 15:20:36 -07004369}
Kirill A. Shutemovb1aabec2009-02-10 15:21:44 +02004370EXPORT_SYMBOL(ksize);