blob: 1cebaa747ad3b58c7288c4920d767a37591f8422 [file] [log] [blame]
Christoph Lameter81819f02007-05-06 14:49:36 -07001/*
2 * SLUB: A slab allocator that limits cache line use instead of queuing
3 * objects in per cpu and per node lists.
4 *
5 * The allocator synchronizes using per slab locks and only
6 * uses a centralized lock to manage a pool of partial slabs.
7 *
Christoph Lametercde53532008-07-04 09:59:22 -07008 * (C) 2007 SGI, Christoph Lameter
Christoph Lameter81819f02007-05-06 14:49:36 -07009 */
10
11#include <linux/mm.h>
Nick Piggin1eb5ac62009-05-05 19:13:44 +100012#include <linux/swap.h> /* struct reclaim_state */
Christoph Lameter81819f02007-05-06 14:49:36 -070013#include <linux/module.h>
14#include <linux/bit_spinlock.h>
15#include <linux/interrupt.h>
16#include <linux/bitops.h>
17#include <linux/slab.h>
Alexey Dobriyan7b3c3a52008-10-06 02:42:17 +040018#include <linux/proc_fs.h>
Christoph Lameter81819f02007-05-06 14:49:36 -070019#include <linux/seq_file.h>
Zhaolei02af61b2009-04-10 14:26:18 +080020#include <linux/kmemtrace.h>
Vegard Nossum5a896d92008-04-04 00:54:48 +020021#include <linux/kmemcheck.h>
Christoph Lameter81819f02007-05-06 14:49:36 -070022#include <linux/cpu.h>
23#include <linux/cpuset.h>
Catalin Marinas06f22f12009-06-11 13:23:18 +010024#include <linux/kmemleak.h>
Christoph Lameter81819f02007-05-06 14:49:36 -070025#include <linux/mempolicy.h>
26#include <linux/ctype.h>
Thomas Gleixner3ac7fe52008-04-30 00:55:01 -070027#include <linux/debugobjects.h>
Christoph Lameter81819f02007-05-06 14:49:36 -070028#include <linux/kallsyms.h>
Yasunori Gotob9049e22007-10-21 16:41:37 -070029#include <linux/memory.h>
Roman Zippelf8bd2252008-05-01 04:34:31 -070030#include <linux/math64.h>
Akinobu Mita773ff602008-12-23 19:37:01 +090031#include <linux/fault-inject.h>
Christoph Lameter81819f02007-05-06 14:49:36 -070032
33/*
34 * Lock order:
35 * 1. slab_lock(page)
36 * 2. slab->list_lock
37 *
38 * The slab_lock protects operations on the object of a particular
39 * slab and its metadata in the page struct. If the slab lock
40 * has been taken then no allocations nor frees can be performed
41 * on the objects in the slab nor can the slab be added or removed
42 * from the partial or full lists since this would mean modifying
43 * the page_struct of the slab.
44 *
45 * The list_lock protects the partial and full list on each node and
46 * the partial slab counter. If taken then no new slabs may be added or
47 * removed from the lists nor make the number of partial slabs be modified.
48 * (Note that the total number of slabs is an atomic value that may be
49 * modified without taking the list lock).
50 *
51 * The list_lock is a centralized lock and thus we avoid taking it as
52 * much as possible. As long as SLUB does not have to handle partial
53 * slabs, operations can continue without any centralized lock. F.e.
54 * allocating a long series of objects that fill up slabs does not require
55 * the list lock.
56 *
57 * The lock order is sometimes inverted when we are trying to get a slab
58 * off a list. We take the list_lock and then look for a page on the list
59 * to use. While we do that objects in the slabs may be freed. We can
60 * only operate on the slab if we have also taken the slab_lock. So we use
61 * a slab_trylock() on the slab. If trylock was successful then no frees
62 * can occur anymore and we can use the slab for allocations etc. If the
63 * slab_trylock() does not succeed then frees are in progress in the slab and
64 * we must stay away from it for a while since we may cause a bouncing
65 * cacheline if we try to acquire the lock. So go onto the next slab.
66 * If all pages are busy then we may allocate a new slab instead of reusing
67 * a partial slab. A new slab has noone operating on it and thus there is
68 * no danger of cacheline contention.
69 *
70 * Interrupts are disabled during allocation and deallocation in order to
71 * make the slab allocator safe to use in the context of an irq. In addition
72 * interrupts are disabled to ensure that the processor does not change
73 * while handling per_cpu slabs, due to kernel preemption.
74 *
75 * SLUB assigns one slab for allocation to each processor.
76 * Allocations only occur from these slabs called cpu slabs.
77 *
Christoph Lameter672bba32007-05-09 02:32:39 -070078 * Slabs with free elements are kept on a partial list and during regular
79 * operations no list for full slabs is used. If an object in a full slab is
Christoph Lameter81819f02007-05-06 14:49:36 -070080 * freed then the slab will show up again on the partial lists.
Christoph Lameter672bba32007-05-09 02:32:39 -070081 * We track full slabs for debugging purposes though because otherwise we
82 * cannot scan all objects.
Christoph Lameter81819f02007-05-06 14:49:36 -070083 *
84 * Slabs are freed when they become empty. Teardown and setup is
85 * minimal so we rely on the page allocators per cpu caches for
86 * fast frees and allocs.
87 *
88 * Overloading of page flags that are otherwise used for LRU management.
89 *
Christoph Lameter4b6f0752007-05-16 22:10:53 -070090 * PageActive The slab is frozen and exempt from list processing.
91 * This means that the slab is dedicated to a purpose
92 * such as satisfying allocations for a specific
93 * processor. Objects may be freed in the slab while
94 * it is frozen but slab_free will then skip the usual
95 * list operations. It is up to the processor holding
96 * the slab to integrate the slab into the slab lists
97 * when the slab is no longer needed.
98 *
99 * One use of this flag is to mark slabs that are
100 * used for allocations. Then such a slab becomes a cpu
101 * slab. The cpu slab may be equipped with an additional
Christoph Lameterdfb4f092007-10-16 01:26:05 -0700102 * freelist that allows lockless access to
Christoph Lameter894b8782007-05-10 03:15:16 -0700103 * free objects in addition to the regular freelist
104 * that requires the slab lock.
Christoph Lameter81819f02007-05-06 14:49:36 -0700105 *
106 * PageError Slab requires special handling due to debug
107 * options set. This moves slab handling out of
Christoph Lameter894b8782007-05-10 03:15:16 -0700108 * the fast path and disables lockless freelists.
Christoph Lameter81819f02007-05-06 14:49:36 -0700109 */
110
Christoph Lameter5577bd82007-05-16 22:10:56 -0700111#ifdef CONFIG_SLUB_DEBUG
Andy Whitcroft8a380822008-07-23 21:27:18 -0700112#define SLABDEBUG 1
Christoph Lameter5577bd82007-05-16 22:10:56 -0700113#else
114#define SLABDEBUG 0
115#endif
116
Christoph Lameter81819f02007-05-06 14:49:36 -0700117/*
118 * Issues still to be resolved:
119 *
Christoph Lameter81819f02007-05-06 14:49:36 -0700120 * - Support PAGE_ALLOC_DEBUG. Should be easy to do.
121 *
Christoph Lameter81819f02007-05-06 14:49:36 -0700122 * - Variable sizing of the per node arrays
123 */
124
125/* Enable to test recovery from slab corruption on boot */
126#undef SLUB_RESILIENCY_TEST
127
Christoph Lameter81819f02007-05-06 14:49:36 -0700128/*
Christoph Lameter2086d262007-05-06 14:49:46 -0700129 * Mininum number of partial slabs. These will be left on the partial
130 * lists even if they are empty. kmem_cache_shrink may reclaim them.
131 */
Christoph Lameter76be8952007-12-21 14:37:37 -0800132#define MIN_PARTIAL 5
Christoph Lametere95eed52007-05-06 14:49:44 -0700133
Christoph Lameter2086d262007-05-06 14:49:46 -0700134/*
135 * Maximum number of desirable partial slabs.
136 * The existence of more partial slabs makes kmem_cache_shrink
137 * sort the partial list by the number of objects in the.
138 */
139#define MAX_PARTIAL 10
140
Christoph Lameter81819f02007-05-06 14:49:36 -0700141#define DEBUG_DEFAULT_FLAGS (SLAB_DEBUG_FREE | SLAB_RED_ZONE | \
142 SLAB_POISON | SLAB_STORE_USER)
Christoph Lameter672bba32007-05-09 02:32:39 -0700143
Christoph Lameter81819f02007-05-06 14:49:36 -0700144/*
145 * Set of flags that will prevent slab merging
146 */
147#define SLUB_NEVER_MERGE (SLAB_RED_ZONE | SLAB_POISON | SLAB_STORE_USER | \
Catalin Marinas06f22f12009-06-11 13:23:18 +0100148 SLAB_TRACE | SLAB_DESTROY_BY_RCU | SLAB_NOLEAKTRACE)
Christoph Lameter81819f02007-05-06 14:49:36 -0700149
150#define SLUB_MERGE_SAME (SLAB_DEBUG_FREE | SLAB_RECLAIM_ACCOUNT | \
Vegard Nossum5a896d92008-04-04 00:54:48 +0200151 SLAB_CACHE_DMA | SLAB_NOTRACK)
Christoph Lameter81819f02007-05-06 14:49:36 -0700152
153#ifndef ARCH_KMALLOC_MINALIGN
Christoph Lameter47bfdc02007-05-06 14:49:37 -0700154#define ARCH_KMALLOC_MINALIGN __alignof__(unsigned long long)
Christoph Lameter81819f02007-05-06 14:49:36 -0700155#endif
156
157#ifndef ARCH_SLAB_MINALIGN
Christoph Lameter47bfdc02007-05-06 14:49:37 -0700158#define ARCH_SLAB_MINALIGN __alignof__(unsigned long long)
Christoph Lameter81819f02007-05-06 14:49:36 -0700159#endif
160
Cyrill Gorcunov210b5c02008-10-22 23:00:38 +0400161#define OO_SHIFT 16
162#define OO_MASK ((1 << OO_SHIFT) - 1)
163#define MAX_OBJS_PER_PAGE 65535 /* since page.objects is u16 */
164
Christoph Lameter81819f02007-05-06 14:49:36 -0700165/* Internal SLUB flags */
Christoph Lameter1ceef402007-08-07 15:11:48 -0700166#define __OBJECT_POISON 0x80000000 /* Poison object */
167#define __SYSFS_ADD_DEFERRED 0x40000000 /* Not yet visible via sysfs */
Christoph Lameter81819f02007-05-06 14:49:36 -0700168
169static int kmem_size = sizeof(struct kmem_cache);
170
171#ifdef CONFIG_SMP
172static struct notifier_block slab_notifier;
173#endif
174
175static enum {
176 DOWN, /* No slab functionality available */
177 PARTIAL, /* kmem_cache_open() works but kmalloc does not */
Christoph Lameter672bba32007-05-09 02:32:39 -0700178 UP, /* Everything works but does not show up in sysfs */
Christoph Lameter81819f02007-05-06 14:49:36 -0700179 SYSFS /* Sysfs up */
180} slab_state = DOWN;
181
182/* A list of all slab caches on the system */
183static DECLARE_RWSEM(slub_lock);
Adrian Bunk5af328a2007-07-17 04:03:27 -0700184static LIST_HEAD(slab_caches);
Christoph Lameter81819f02007-05-06 14:49:36 -0700185
Christoph Lameter02cbc872007-05-09 02:32:43 -0700186/*
187 * Tracking user of a slab.
188 */
189struct track {
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +0300190 unsigned long addr; /* Called from address */
Christoph Lameter02cbc872007-05-09 02:32:43 -0700191 int cpu; /* Was running on cpu */
192 int pid; /* Pid context */
193 unsigned long when; /* When did the operation occur */
194};
195
196enum track_item { TRACK_ALLOC, TRACK_FREE };
197
Christoph Lameterf6acb632008-04-29 16:16:06 -0700198#ifdef CONFIG_SLUB_DEBUG
Christoph Lameter81819f02007-05-06 14:49:36 -0700199static int sysfs_slab_add(struct kmem_cache *);
200static int sysfs_slab_alias(struct kmem_cache *, const char *);
201static void sysfs_slab_remove(struct kmem_cache *);
Christoph Lameter8ff12cf2008-02-07 17:47:41 -0800202
Christoph Lameter81819f02007-05-06 14:49:36 -0700203#else
Christoph Lameter0c710012007-07-17 04:03:24 -0700204static inline int sysfs_slab_add(struct kmem_cache *s) { return 0; }
205static inline int sysfs_slab_alias(struct kmem_cache *s, const char *p)
206 { return 0; }
Christoph Lameter151c6022008-01-07 22:29:05 -0800207static inline void sysfs_slab_remove(struct kmem_cache *s)
208{
209 kfree(s);
210}
Christoph Lameter8ff12cf2008-02-07 17:47:41 -0800211
Christoph Lameter81819f02007-05-06 14:49:36 -0700212#endif
213
Christoph Lameter8ff12cf2008-02-07 17:47:41 -0800214static inline void stat(struct kmem_cache_cpu *c, enum stat_item si)
215{
216#ifdef CONFIG_SLUB_STATS
217 c->stat[si]++;
218#endif
219}
220
Christoph Lameter81819f02007-05-06 14:49:36 -0700221/********************************************************************
222 * Core slab cache functions
223 *******************************************************************/
224
225int slab_is_available(void)
226{
227 return slab_state >= UP;
228}
229
230static inline struct kmem_cache_node *get_node(struct kmem_cache *s, int node)
231{
232#ifdef CONFIG_NUMA
233 return s->node[node];
234#else
235 return &s->local_node;
236#endif
237}
238
Christoph Lameterdfb4f092007-10-16 01:26:05 -0700239static inline struct kmem_cache_cpu *get_cpu_slab(struct kmem_cache *s, int cpu)
240{
Christoph Lameter4c93c3552007-10-16 01:26:08 -0700241#ifdef CONFIG_SMP
242 return s->cpu_slab[cpu];
243#else
244 return &s->cpu_slab;
245#endif
Christoph Lameterdfb4f092007-10-16 01:26:05 -0700246}
247
Christoph Lameter6446faa2008-02-15 23:45:26 -0800248/* Verify that a pointer has an address that is valid within a slab page */
Christoph Lameter02cbc872007-05-09 02:32:43 -0700249static inline int check_valid_pointer(struct kmem_cache *s,
250 struct page *page, const void *object)
251{
252 void *base;
253
Christoph Lametera973e9d2008-03-01 13:40:44 -0800254 if (!object)
Christoph Lameter02cbc872007-05-09 02:32:43 -0700255 return 1;
256
Christoph Lametera973e9d2008-03-01 13:40:44 -0800257 base = page_address(page);
Christoph Lameter39b26462008-04-14 19:11:30 +0300258 if (object < base || object >= base + page->objects * s->size ||
Christoph Lameter02cbc872007-05-09 02:32:43 -0700259 (object - base) % s->size) {
260 return 0;
261 }
262
263 return 1;
264}
265
Christoph Lameter81819f02007-05-06 14:49:36 -0700266/*
Christoph Lameter7656c722007-05-09 02:32:40 -0700267 * Slow version of get and set free pointer.
268 *
269 * This version requires touching the cache lines of kmem_cache which
270 * we avoid to do in the fast alloc free paths. There we obtain the offset
271 * from the page struct.
272 */
273static inline void *get_freepointer(struct kmem_cache *s, void *object)
274{
275 return *(void **)(object + s->offset);
276}
277
278static inline void set_freepointer(struct kmem_cache *s, void *object, void *fp)
279{
280 *(void **)(object + s->offset) = fp;
281}
282
283/* Loop over all objects in a slab */
Christoph Lameter224a88b2008-04-14 19:11:31 +0300284#define for_each_object(__p, __s, __addr, __objects) \
285 for (__p = (__addr); __p < (__addr) + (__objects) * (__s)->size;\
Christoph Lameter7656c722007-05-09 02:32:40 -0700286 __p += (__s)->size)
287
288/* Scan freelist */
289#define for_each_free_object(__p, __s, __free) \
Christoph Lametera973e9d2008-03-01 13:40:44 -0800290 for (__p = (__free); __p; __p = get_freepointer((__s), __p))
Christoph Lameter7656c722007-05-09 02:32:40 -0700291
292/* Determine object index from a given position */
293static inline int slab_index(void *p, struct kmem_cache *s, void *addr)
294{
295 return (p - addr) / s->size;
296}
297
Christoph Lameter834f3d12008-04-14 19:11:31 +0300298static inline struct kmem_cache_order_objects oo_make(int order,
299 unsigned long size)
300{
301 struct kmem_cache_order_objects x = {
Cyrill Gorcunov210b5c02008-10-22 23:00:38 +0400302 (order << OO_SHIFT) + (PAGE_SIZE << order) / size
Christoph Lameter834f3d12008-04-14 19:11:31 +0300303 };
304
305 return x;
306}
307
308static inline int oo_order(struct kmem_cache_order_objects x)
309{
Cyrill Gorcunov210b5c02008-10-22 23:00:38 +0400310 return x.x >> OO_SHIFT;
Christoph Lameter834f3d12008-04-14 19:11:31 +0300311}
312
313static inline int oo_objects(struct kmem_cache_order_objects x)
314{
Cyrill Gorcunov210b5c02008-10-22 23:00:38 +0400315 return x.x & OO_MASK;
Christoph Lameter834f3d12008-04-14 19:11:31 +0300316}
317
Christoph Lameter41ecc552007-05-09 02:32:44 -0700318#ifdef CONFIG_SLUB_DEBUG
319/*
320 * Debug settings:
321 */
Christoph Lameterf0630ff2007-07-15 23:38:14 -0700322#ifdef CONFIG_SLUB_DEBUG_ON
323static int slub_debug = DEBUG_DEFAULT_FLAGS;
324#else
Christoph Lameter41ecc552007-05-09 02:32:44 -0700325static int slub_debug;
Christoph Lameterf0630ff2007-07-15 23:38:14 -0700326#endif
Christoph Lameter41ecc552007-05-09 02:32:44 -0700327
328static char *slub_debug_slabs;
329
Christoph Lameter7656c722007-05-09 02:32:40 -0700330/*
Christoph Lameter81819f02007-05-06 14:49:36 -0700331 * Object debugging
332 */
333static void print_section(char *text, u8 *addr, unsigned int length)
334{
335 int i, offset;
336 int newline = 1;
337 char ascii[17];
338
339 ascii[16] = 0;
340
341 for (i = 0; i < length; i++) {
342 if (newline) {
Christoph Lameter24922682007-07-17 04:03:18 -0700343 printk(KERN_ERR "%8s 0x%p: ", text, addr + i);
Christoph Lameter81819f02007-05-06 14:49:36 -0700344 newline = 0;
345 }
Pekka Enberg06428782008-01-07 23:20:27 -0800346 printk(KERN_CONT " %02x", addr[i]);
Christoph Lameter81819f02007-05-06 14:49:36 -0700347 offset = i % 16;
348 ascii[offset] = isgraph(addr[i]) ? addr[i] : '.';
349 if (offset == 15) {
Pekka Enberg06428782008-01-07 23:20:27 -0800350 printk(KERN_CONT " %s\n", ascii);
Christoph Lameter81819f02007-05-06 14:49:36 -0700351 newline = 1;
352 }
353 }
354 if (!newline) {
355 i %= 16;
356 while (i < 16) {
Pekka Enberg06428782008-01-07 23:20:27 -0800357 printk(KERN_CONT " ");
Christoph Lameter81819f02007-05-06 14:49:36 -0700358 ascii[i] = ' ';
359 i++;
360 }
Pekka Enberg06428782008-01-07 23:20:27 -0800361 printk(KERN_CONT " %s\n", ascii);
Christoph Lameter81819f02007-05-06 14:49:36 -0700362 }
363}
364
Christoph Lameter81819f02007-05-06 14:49:36 -0700365static struct track *get_track(struct kmem_cache *s, void *object,
366 enum track_item alloc)
367{
368 struct track *p;
369
370 if (s->offset)
371 p = object + s->offset + sizeof(void *);
372 else
373 p = object + s->inuse;
374
375 return p + alloc;
376}
377
378static void set_track(struct kmem_cache *s, void *object,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +0300379 enum track_item alloc, unsigned long addr)
Christoph Lameter81819f02007-05-06 14:49:36 -0700380{
Akinobu Mita1a00df42009-03-07 00:36:21 +0900381 struct track *p = get_track(s, object, alloc);
Christoph Lameter81819f02007-05-06 14:49:36 -0700382
Christoph Lameter81819f02007-05-06 14:49:36 -0700383 if (addr) {
384 p->addr = addr;
385 p->cpu = smp_processor_id();
Alexey Dobriyan88e4ccf2008-06-23 02:58:37 +0400386 p->pid = current->pid;
Christoph Lameter81819f02007-05-06 14:49:36 -0700387 p->when = jiffies;
388 } else
389 memset(p, 0, sizeof(struct track));
390}
391
Christoph Lameter81819f02007-05-06 14:49:36 -0700392static void init_tracking(struct kmem_cache *s, void *object)
393{
Christoph Lameter24922682007-07-17 04:03:18 -0700394 if (!(s->flags & SLAB_STORE_USER))
395 return;
396
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +0300397 set_track(s, object, TRACK_FREE, 0UL);
398 set_track(s, object, TRACK_ALLOC, 0UL);
Christoph Lameter81819f02007-05-06 14:49:36 -0700399}
400
401static void print_track(const char *s, struct track *t)
402{
403 if (!t->addr)
404 return;
405
Linus Torvalds7daf7052008-07-14 12:12:53 -0700406 printk(KERN_ERR "INFO: %s in %pS age=%lu cpu=%u pid=%d\n",
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +0300407 s, (void *)t->addr, jiffies - t->when, t->cpu, t->pid);
Christoph Lameter81819f02007-05-06 14:49:36 -0700408}
409
Christoph Lameter24922682007-07-17 04:03:18 -0700410static void print_tracking(struct kmem_cache *s, void *object)
411{
412 if (!(s->flags & SLAB_STORE_USER))
413 return;
414
415 print_track("Allocated", get_track(s, object, TRACK_ALLOC));
416 print_track("Freed", get_track(s, object, TRACK_FREE));
417}
418
419static void print_page_info(struct page *page)
420{
Christoph Lameter39b26462008-04-14 19:11:30 +0300421 printk(KERN_ERR "INFO: Slab 0x%p objects=%u used=%u fp=0x%p flags=0x%04lx\n",
422 page, page->objects, page->inuse, page->freelist, page->flags);
Christoph Lameter24922682007-07-17 04:03:18 -0700423
424}
425
426static void slab_bug(struct kmem_cache *s, char *fmt, ...)
427{
428 va_list args;
429 char buf[100];
430
431 va_start(args, fmt);
432 vsnprintf(buf, sizeof(buf), fmt, args);
433 va_end(args);
434 printk(KERN_ERR "========================================"
435 "=====================================\n");
436 printk(KERN_ERR "BUG %s: %s\n", s->name, buf);
437 printk(KERN_ERR "----------------------------------------"
438 "-------------------------------------\n\n");
439}
440
441static void slab_fix(struct kmem_cache *s, char *fmt, ...)
442{
443 va_list args;
444 char buf[100];
445
446 va_start(args, fmt);
447 vsnprintf(buf, sizeof(buf), fmt, args);
448 va_end(args);
449 printk(KERN_ERR "FIX %s: %s\n", s->name, buf);
450}
451
452static void print_trailer(struct kmem_cache *s, struct page *page, u8 *p)
Christoph Lameter81819f02007-05-06 14:49:36 -0700453{
454 unsigned int off; /* Offset of last byte */
Christoph Lametera973e9d2008-03-01 13:40:44 -0800455 u8 *addr = page_address(page);
Christoph Lameter24922682007-07-17 04:03:18 -0700456
457 print_tracking(s, p);
458
459 print_page_info(page);
460
461 printk(KERN_ERR "INFO: Object 0x%p @offset=%tu fp=0x%p\n\n",
462 p, p - addr, get_freepointer(s, p));
463
464 if (p > addr + 16)
465 print_section("Bytes b4", p - 16, 16);
466
Pekka Enberg0ebd6522008-07-19 14:17:22 +0300467 print_section("Object", p, min_t(unsigned long, s->objsize, PAGE_SIZE));
Christoph Lameter81819f02007-05-06 14:49:36 -0700468
469 if (s->flags & SLAB_RED_ZONE)
470 print_section("Redzone", p + s->objsize,
471 s->inuse - s->objsize);
472
Christoph Lameter81819f02007-05-06 14:49:36 -0700473 if (s->offset)
474 off = s->offset + sizeof(void *);
475 else
476 off = s->inuse;
477
Christoph Lameter24922682007-07-17 04:03:18 -0700478 if (s->flags & SLAB_STORE_USER)
Christoph Lameter81819f02007-05-06 14:49:36 -0700479 off += 2 * sizeof(struct track);
Christoph Lameter81819f02007-05-06 14:49:36 -0700480
481 if (off != s->size)
482 /* Beginning of the filler is the free pointer */
Christoph Lameter24922682007-07-17 04:03:18 -0700483 print_section("Padding", p + off, s->size - off);
484
485 dump_stack();
Christoph Lameter81819f02007-05-06 14:49:36 -0700486}
487
488static void object_err(struct kmem_cache *s, struct page *page,
489 u8 *object, char *reason)
490{
Christoph Lameter3dc50632008-04-23 12:28:01 -0700491 slab_bug(s, "%s", reason);
Christoph Lameter24922682007-07-17 04:03:18 -0700492 print_trailer(s, page, object);
Christoph Lameter81819f02007-05-06 14:49:36 -0700493}
494
Christoph Lameter24922682007-07-17 04:03:18 -0700495static void slab_err(struct kmem_cache *s, struct page *page, char *fmt, ...)
Christoph Lameter81819f02007-05-06 14:49:36 -0700496{
497 va_list args;
498 char buf[100];
499
Christoph Lameter24922682007-07-17 04:03:18 -0700500 va_start(args, fmt);
501 vsnprintf(buf, sizeof(buf), fmt, args);
Christoph Lameter81819f02007-05-06 14:49:36 -0700502 va_end(args);
Christoph Lameter3dc50632008-04-23 12:28:01 -0700503 slab_bug(s, "%s", buf);
Christoph Lameter24922682007-07-17 04:03:18 -0700504 print_page_info(page);
Christoph Lameter81819f02007-05-06 14:49:36 -0700505 dump_stack();
506}
507
508static void init_object(struct kmem_cache *s, void *object, int active)
509{
510 u8 *p = object;
511
512 if (s->flags & __OBJECT_POISON) {
513 memset(p, POISON_FREE, s->objsize - 1);
Pekka Enberg06428782008-01-07 23:20:27 -0800514 p[s->objsize - 1] = POISON_END;
Christoph Lameter81819f02007-05-06 14:49:36 -0700515 }
516
517 if (s->flags & SLAB_RED_ZONE)
518 memset(p + s->objsize,
519 active ? SLUB_RED_ACTIVE : SLUB_RED_INACTIVE,
520 s->inuse - s->objsize);
521}
522
Christoph Lameter24922682007-07-17 04:03:18 -0700523static u8 *check_bytes(u8 *start, unsigned int value, unsigned int bytes)
Christoph Lameter81819f02007-05-06 14:49:36 -0700524{
525 while (bytes) {
526 if (*start != (u8)value)
Christoph Lameter24922682007-07-17 04:03:18 -0700527 return start;
Christoph Lameter81819f02007-05-06 14:49:36 -0700528 start++;
529 bytes--;
530 }
Christoph Lameter24922682007-07-17 04:03:18 -0700531 return NULL;
532}
533
534static void restore_bytes(struct kmem_cache *s, char *message, u8 data,
535 void *from, void *to)
536{
537 slab_fix(s, "Restoring 0x%p-0x%p=0x%x\n", from, to - 1, data);
538 memset(from, data, to - from);
539}
540
541static int check_bytes_and_report(struct kmem_cache *s, struct page *page,
542 u8 *object, char *what,
Pekka Enberg06428782008-01-07 23:20:27 -0800543 u8 *start, unsigned int value, unsigned int bytes)
Christoph Lameter24922682007-07-17 04:03:18 -0700544{
545 u8 *fault;
546 u8 *end;
547
548 fault = check_bytes(start, value, bytes);
549 if (!fault)
550 return 1;
551
552 end = start + bytes;
553 while (end > fault && end[-1] == value)
554 end--;
555
556 slab_bug(s, "%s overwritten", what);
557 printk(KERN_ERR "INFO: 0x%p-0x%p. First byte 0x%x instead of 0x%x\n",
558 fault, end - 1, fault[0], value);
559 print_trailer(s, page, object);
560
561 restore_bytes(s, what, value, fault, end);
562 return 0;
Christoph Lameter81819f02007-05-06 14:49:36 -0700563}
564
Christoph Lameter81819f02007-05-06 14:49:36 -0700565/*
566 * Object layout:
567 *
568 * object address
569 * Bytes of the object to be managed.
570 * If the freepointer may overlay the object then the free
571 * pointer is the first word of the object.
Christoph Lameter672bba32007-05-09 02:32:39 -0700572 *
Christoph Lameter81819f02007-05-06 14:49:36 -0700573 * Poisoning uses 0x6b (POISON_FREE) and the last byte is
574 * 0xa5 (POISON_END)
575 *
576 * object + s->objsize
577 * Padding to reach word boundary. This is also used for Redzoning.
Christoph Lameter672bba32007-05-09 02:32:39 -0700578 * Padding is extended by another word if Redzoning is enabled and
579 * objsize == inuse.
580 *
Christoph Lameter81819f02007-05-06 14:49:36 -0700581 * We fill with 0xbb (RED_INACTIVE) for inactive objects and with
582 * 0xcc (RED_ACTIVE) for objects in use.
583 *
584 * object + s->inuse
Christoph Lameter672bba32007-05-09 02:32:39 -0700585 * Meta data starts here.
586 *
Christoph Lameter81819f02007-05-06 14:49:36 -0700587 * A. Free pointer (if we cannot overwrite object on free)
588 * B. Tracking data for SLAB_STORE_USER
Christoph Lameter672bba32007-05-09 02:32:39 -0700589 * C. Padding to reach required alignment boundary or at mininum
Christoph Lameter6446faa2008-02-15 23:45:26 -0800590 * one word if debugging is on to be able to detect writes
Christoph Lameter672bba32007-05-09 02:32:39 -0700591 * before the word boundary.
592 *
593 * Padding is done using 0x5a (POISON_INUSE)
Christoph Lameter81819f02007-05-06 14:49:36 -0700594 *
595 * object + s->size
Christoph Lameter672bba32007-05-09 02:32:39 -0700596 * Nothing is used beyond s->size.
Christoph Lameter81819f02007-05-06 14:49:36 -0700597 *
Christoph Lameter672bba32007-05-09 02:32:39 -0700598 * If slabcaches are merged then the objsize and inuse boundaries are mostly
599 * ignored. And therefore no slab options that rely on these boundaries
Christoph Lameter81819f02007-05-06 14:49:36 -0700600 * may be used with merged slabcaches.
601 */
602
Christoph Lameter81819f02007-05-06 14:49:36 -0700603static int check_pad_bytes(struct kmem_cache *s, struct page *page, u8 *p)
604{
605 unsigned long off = s->inuse; /* The end of info */
606
607 if (s->offset)
608 /* Freepointer is placed after the object. */
609 off += sizeof(void *);
610
611 if (s->flags & SLAB_STORE_USER)
612 /* We also have user information there */
613 off += 2 * sizeof(struct track);
614
615 if (s->size == off)
616 return 1;
617
Christoph Lameter24922682007-07-17 04:03:18 -0700618 return check_bytes_and_report(s, page, p, "Object padding",
619 p + off, POISON_INUSE, s->size - off);
Christoph Lameter81819f02007-05-06 14:49:36 -0700620}
621
Christoph Lameter39b26462008-04-14 19:11:30 +0300622/* Check the pad bytes at the end of a slab page */
Christoph Lameter81819f02007-05-06 14:49:36 -0700623static int slab_pad_check(struct kmem_cache *s, struct page *page)
624{
Christoph Lameter24922682007-07-17 04:03:18 -0700625 u8 *start;
626 u8 *fault;
627 u8 *end;
628 int length;
629 int remainder;
Christoph Lameter81819f02007-05-06 14:49:36 -0700630
631 if (!(s->flags & SLAB_POISON))
632 return 1;
633
Christoph Lametera973e9d2008-03-01 13:40:44 -0800634 start = page_address(page);
Christoph Lameter834f3d12008-04-14 19:11:31 +0300635 length = (PAGE_SIZE << compound_order(page));
Christoph Lameter39b26462008-04-14 19:11:30 +0300636 end = start + length;
637 remainder = length % s->size;
Christoph Lameter81819f02007-05-06 14:49:36 -0700638 if (!remainder)
639 return 1;
640
Christoph Lameter39b26462008-04-14 19:11:30 +0300641 fault = check_bytes(end - remainder, POISON_INUSE, remainder);
Christoph Lameter24922682007-07-17 04:03:18 -0700642 if (!fault)
643 return 1;
644 while (end > fault && end[-1] == POISON_INUSE)
645 end--;
646
647 slab_err(s, page, "Padding overwritten. 0x%p-0x%p", fault, end - 1);
Christoph Lameter39b26462008-04-14 19:11:30 +0300648 print_section("Padding", end - remainder, remainder);
Christoph Lameter24922682007-07-17 04:03:18 -0700649
650 restore_bytes(s, "slab padding", POISON_INUSE, start, end);
651 return 0;
Christoph Lameter81819f02007-05-06 14:49:36 -0700652}
653
654static int check_object(struct kmem_cache *s, struct page *page,
655 void *object, int active)
656{
657 u8 *p = object;
658 u8 *endobject = object + s->objsize;
659
660 if (s->flags & SLAB_RED_ZONE) {
661 unsigned int red =
662 active ? SLUB_RED_ACTIVE : SLUB_RED_INACTIVE;
663
Christoph Lameter24922682007-07-17 04:03:18 -0700664 if (!check_bytes_and_report(s, page, object, "Redzone",
665 endobject, red, s->inuse - s->objsize))
Christoph Lameter81819f02007-05-06 14:49:36 -0700666 return 0;
Christoph Lameter81819f02007-05-06 14:49:36 -0700667 } else {
Ingo Molnar3adbefe2008-02-05 17:57:39 -0800668 if ((s->flags & SLAB_POISON) && s->objsize < s->inuse) {
669 check_bytes_and_report(s, page, p, "Alignment padding",
670 endobject, POISON_INUSE, s->inuse - s->objsize);
671 }
Christoph Lameter81819f02007-05-06 14:49:36 -0700672 }
673
674 if (s->flags & SLAB_POISON) {
675 if (!active && (s->flags & __OBJECT_POISON) &&
Christoph Lameter24922682007-07-17 04:03:18 -0700676 (!check_bytes_and_report(s, page, p, "Poison", p,
677 POISON_FREE, s->objsize - 1) ||
678 !check_bytes_and_report(s, page, p, "Poison",
Pekka Enberg06428782008-01-07 23:20:27 -0800679 p + s->objsize - 1, POISON_END, 1)))
Christoph Lameter81819f02007-05-06 14:49:36 -0700680 return 0;
Christoph Lameter81819f02007-05-06 14:49:36 -0700681 /*
682 * check_pad_bytes cleans up on its own.
683 */
684 check_pad_bytes(s, page, p);
685 }
686
687 if (!s->offset && active)
688 /*
689 * Object and freepointer overlap. Cannot check
690 * freepointer while object is allocated.
691 */
692 return 1;
693
694 /* Check free pointer validity */
695 if (!check_valid_pointer(s, page, get_freepointer(s, p))) {
696 object_err(s, page, p, "Freepointer corrupt");
697 /*
Nick Andrew9f6c708e2008-12-05 14:08:08 +1100698 * No choice but to zap it and thus lose the remainder
Christoph Lameter81819f02007-05-06 14:49:36 -0700699 * of the free objects in this slab. May cause
Christoph Lameter672bba32007-05-09 02:32:39 -0700700 * another error because the object count is now wrong.
Christoph Lameter81819f02007-05-06 14:49:36 -0700701 */
Christoph Lametera973e9d2008-03-01 13:40:44 -0800702 set_freepointer(s, p, NULL);
Christoph Lameter81819f02007-05-06 14:49:36 -0700703 return 0;
704 }
705 return 1;
706}
707
708static int check_slab(struct kmem_cache *s, struct page *page)
709{
Christoph Lameter39b26462008-04-14 19:11:30 +0300710 int maxobj;
711
Christoph Lameter81819f02007-05-06 14:49:36 -0700712 VM_BUG_ON(!irqs_disabled());
713
714 if (!PageSlab(page)) {
Christoph Lameter24922682007-07-17 04:03:18 -0700715 slab_err(s, page, "Not a valid slab page");
Christoph Lameter81819f02007-05-06 14:49:36 -0700716 return 0;
717 }
Christoph Lameter39b26462008-04-14 19:11:30 +0300718
719 maxobj = (PAGE_SIZE << compound_order(page)) / s->size;
720 if (page->objects > maxobj) {
721 slab_err(s, page, "objects %u > max %u",
722 s->name, page->objects, maxobj);
723 return 0;
724 }
725 if (page->inuse > page->objects) {
Christoph Lameter24922682007-07-17 04:03:18 -0700726 slab_err(s, page, "inuse %u > max %u",
Christoph Lameter39b26462008-04-14 19:11:30 +0300727 s->name, page->inuse, page->objects);
Christoph Lameter81819f02007-05-06 14:49:36 -0700728 return 0;
729 }
730 /* Slab_pad_check fixes things up after itself */
731 slab_pad_check(s, page);
732 return 1;
733}
734
735/*
Christoph Lameter672bba32007-05-09 02:32:39 -0700736 * Determine if a certain object on a page is on the freelist. Must hold the
737 * slab lock to guarantee that the chains are in a consistent state.
Christoph Lameter81819f02007-05-06 14:49:36 -0700738 */
739static int on_freelist(struct kmem_cache *s, struct page *page, void *search)
740{
741 int nr = 0;
742 void *fp = page->freelist;
743 void *object = NULL;
Christoph Lameter224a88b2008-04-14 19:11:31 +0300744 unsigned long max_objects;
Christoph Lameter81819f02007-05-06 14:49:36 -0700745
Christoph Lameter39b26462008-04-14 19:11:30 +0300746 while (fp && nr <= page->objects) {
Christoph Lameter81819f02007-05-06 14:49:36 -0700747 if (fp == search)
748 return 1;
749 if (!check_valid_pointer(s, page, fp)) {
750 if (object) {
751 object_err(s, page, object,
752 "Freechain corrupt");
Christoph Lametera973e9d2008-03-01 13:40:44 -0800753 set_freepointer(s, object, NULL);
Christoph Lameter81819f02007-05-06 14:49:36 -0700754 break;
755 } else {
Christoph Lameter24922682007-07-17 04:03:18 -0700756 slab_err(s, page, "Freepointer corrupt");
Christoph Lametera973e9d2008-03-01 13:40:44 -0800757 page->freelist = NULL;
Christoph Lameter39b26462008-04-14 19:11:30 +0300758 page->inuse = page->objects;
Christoph Lameter24922682007-07-17 04:03:18 -0700759 slab_fix(s, "Freelist cleared");
Christoph Lameter81819f02007-05-06 14:49:36 -0700760 return 0;
761 }
762 break;
763 }
764 object = fp;
765 fp = get_freepointer(s, object);
766 nr++;
767 }
768
Christoph Lameter224a88b2008-04-14 19:11:31 +0300769 max_objects = (PAGE_SIZE << compound_order(page)) / s->size;
Cyrill Gorcunov210b5c02008-10-22 23:00:38 +0400770 if (max_objects > MAX_OBJS_PER_PAGE)
771 max_objects = MAX_OBJS_PER_PAGE;
Christoph Lameter224a88b2008-04-14 19:11:31 +0300772
773 if (page->objects != max_objects) {
774 slab_err(s, page, "Wrong number of objects. Found %d but "
775 "should be %d", page->objects, max_objects);
776 page->objects = max_objects;
777 slab_fix(s, "Number of objects adjusted.");
778 }
Christoph Lameter39b26462008-04-14 19:11:30 +0300779 if (page->inuse != page->objects - nr) {
Christoph Lameter70d71222007-05-06 14:49:47 -0700780 slab_err(s, page, "Wrong object count. Counter is %d but "
Christoph Lameter39b26462008-04-14 19:11:30 +0300781 "counted were %d", page->inuse, page->objects - nr);
782 page->inuse = page->objects - nr;
Christoph Lameter24922682007-07-17 04:03:18 -0700783 slab_fix(s, "Object count adjusted.");
Christoph Lameter81819f02007-05-06 14:49:36 -0700784 }
785 return search == NULL;
786}
787
Christoph Lameter0121c6192008-04-29 16:11:12 -0700788static void trace(struct kmem_cache *s, struct page *page, void *object,
789 int alloc)
Christoph Lameter3ec09742007-05-16 22:11:00 -0700790{
791 if (s->flags & SLAB_TRACE) {
792 printk(KERN_INFO "TRACE %s %s 0x%p inuse=%d fp=0x%p\n",
793 s->name,
794 alloc ? "alloc" : "free",
795 object, page->inuse,
796 page->freelist);
797
798 if (!alloc)
799 print_section("Object", (void *)object, s->objsize);
800
801 dump_stack();
802 }
803}
804
Christoph Lameter643b1132007-05-06 14:49:42 -0700805/*
Christoph Lameter672bba32007-05-09 02:32:39 -0700806 * Tracking of fully allocated slabs for debugging purposes.
Christoph Lameter643b1132007-05-06 14:49:42 -0700807 */
Christoph Lametere95eed52007-05-06 14:49:44 -0700808static void add_full(struct kmem_cache_node *n, struct page *page)
Christoph Lameter643b1132007-05-06 14:49:42 -0700809{
Christoph Lameter643b1132007-05-06 14:49:42 -0700810 spin_lock(&n->list_lock);
811 list_add(&page->lru, &n->full);
812 spin_unlock(&n->list_lock);
813}
814
815static void remove_full(struct kmem_cache *s, struct page *page)
816{
817 struct kmem_cache_node *n;
818
819 if (!(s->flags & SLAB_STORE_USER))
820 return;
821
822 n = get_node(s, page_to_nid(page));
823
824 spin_lock(&n->list_lock);
825 list_del(&page->lru);
826 spin_unlock(&n->list_lock);
827}
828
Christoph Lameter0f389ec2008-04-14 18:53:02 +0300829/* Tracking of the number of slabs for debugging purposes */
830static inline unsigned long slabs_node(struct kmem_cache *s, int node)
831{
832 struct kmem_cache_node *n = get_node(s, node);
833
834 return atomic_long_read(&n->nr_slabs);
835}
836
Christoph Lameter205ab992008-04-14 19:11:40 +0300837static inline void inc_slabs_node(struct kmem_cache *s, int node, int objects)
Christoph Lameter0f389ec2008-04-14 18:53:02 +0300838{
839 struct kmem_cache_node *n = get_node(s, node);
840
841 /*
842 * May be called early in order to allocate a slab for the
843 * kmem_cache_node structure. Solve the chicken-egg
844 * dilemma by deferring the increment of the count during
845 * bootstrap (see early_kmem_cache_node_alloc).
846 */
Christoph Lameter205ab992008-04-14 19:11:40 +0300847 if (!NUMA_BUILD || n) {
Christoph Lameter0f389ec2008-04-14 18:53:02 +0300848 atomic_long_inc(&n->nr_slabs);
Christoph Lameter205ab992008-04-14 19:11:40 +0300849 atomic_long_add(objects, &n->total_objects);
850 }
Christoph Lameter0f389ec2008-04-14 18:53:02 +0300851}
Christoph Lameter205ab992008-04-14 19:11:40 +0300852static inline void dec_slabs_node(struct kmem_cache *s, int node, int objects)
Christoph Lameter0f389ec2008-04-14 18:53:02 +0300853{
854 struct kmem_cache_node *n = get_node(s, node);
855
856 atomic_long_dec(&n->nr_slabs);
Christoph Lameter205ab992008-04-14 19:11:40 +0300857 atomic_long_sub(objects, &n->total_objects);
Christoph Lameter0f389ec2008-04-14 18:53:02 +0300858}
859
860/* Object debug checks for alloc/free paths */
Christoph Lameter3ec09742007-05-16 22:11:00 -0700861static void setup_object_debug(struct kmem_cache *s, struct page *page,
862 void *object)
863{
864 if (!(s->flags & (SLAB_STORE_USER|SLAB_RED_ZONE|__OBJECT_POISON)))
865 return;
866
867 init_object(s, object, 0);
868 init_tracking(s, object);
869}
870
871static int alloc_debug_processing(struct kmem_cache *s, struct page *page,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +0300872 void *object, unsigned long addr)
Christoph Lameter81819f02007-05-06 14:49:36 -0700873{
874 if (!check_slab(s, page))
875 goto bad;
876
Christoph Lameterd692ef62008-02-15 23:45:24 -0800877 if (!on_freelist(s, page, object)) {
Christoph Lameter24922682007-07-17 04:03:18 -0700878 object_err(s, page, object, "Object already allocated");
Christoph Lameter70d71222007-05-06 14:49:47 -0700879 goto bad;
Christoph Lameter81819f02007-05-06 14:49:36 -0700880 }
881
882 if (!check_valid_pointer(s, page, object)) {
883 object_err(s, page, object, "Freelist Pointer check fails");
Christoph Lameter70d71222007-05-06 14:49:47 -0700884 goto bad;
Christoph Lameter81819f02007-05-06 14:49:36 -0700885 }
886
Christoph Lameterd692ef62008-02-15 23:45:24 -0800887 if (!check_object(s, page, object, 0))
Christoph Lameter81819f02007-05-06 14:49:36 -0700888 goto bad;
Christoph Lameter81819f02007-05-06 14:49:36 -0700889
Christoph Lameter3ec09742007-05-16 22:11:00 -0700890 /* Success perform special debug activities for allocs */
891 if (s->flags & SLAB_STORE_USER)
892 set_track(s, object, TRACK_ALLOC, addr);
893 trace(s, page, object, 1);
894 init_object(s, object, 1);
Christoph Lameter81819f02007-05-06 14:49:36 -0700895 return 1;
Christoph Lameter3ec09742007-05-16 22:11:00 -0700896
Christoph Lameter81819f02007-05-06 14:49:36 -0700897bad:
898 if (PageSlab(page)) {
899 /*
900 * If this is a slab page then lets do the best we can
901 * to avoid issues in the future. Marking all objects
Christoph Lameter672bba32007-05-09 02:32:39 -0700902 * as used avoids touching the remaining objects.
Christoph Lameter81819f02007-05-06 14:49:36 -0700903 */
Christoph Lameter24922682007-07-17 04:03:18 -0700904 slab_fix(s, "Marking all objects used");
Christoph Lameter39b26462008-04-14 19:11:30 +0300905 page->inuse = page->objects;
Christoph Lametera973e9d2008-03-01 13:40:44 -0800906 page->freelist = NULL;
Christoph Lameter81819f02007-05-06 14:49:36 -0700907 }
908 return 0;
909}
910
Christoph Lameter3ec09742007-05-16 22:11:00 -0700911static int free_debug_processing(struct kmem_cache *s, struct page *page,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +0300912 void *object, unsigned long addr)
Christoph Lameter81819f02007-05-06 14:49:36 -0700913{
914 if (!check_slab(s, page))
915 goto fail;
916
917 if (!check_valid_pointer(s, page, object)) {
Christoph Lameter70d71222007-05-06 14:49:47 -0700918 slab_err(s, page, "Invalid object pointer 0x%p", object);
Christoph Lameter81819f02007-05-06 14:49:36 -0700919 goto fail;
920 }
921
922 if (on_freelist(s, page, object)) {
Christoph Lameter24922682007-07-17 04:03:18 -0700923 object_err(s, page, object, "Object already free");
Christoph Lameter81819f02007-05-06 14:49:36 -0700924 goto fail;
925 }
926
927 if (!check_object(s, page, object, 1))
928 return 0;
929
930 if (unlikely(s != page->slab)) {
Ingo Molnar3adbefe2008-02-05 17:57:39 -0800931 if (!PageSlab(page)) {
Christoph Lameter70d71222007-05-06 14:49:47 -0700932 slab_err(s, page, "Attempt to free object(0x%p) "
933 "outside of slab", object);
Ingo Molnar3adbefe2008-02-05 17:57:39 -0800934 } else if (!page->slab) {
Christoph Lameter81819f02007-05-06 14:49:36 -0700935 printk(KERN_ERR
Christoph Lameter70d71222007-05-06 14:49:47 -0700936 "SLUB <none>: no slab for object 0x%p.\n",
Christoph Lameter81819f02007-05-06 14:49:36 -0700937 object);
Christoph Lameter70d71222007-05-06 14:49:47 -0700938 dump_stack();
Pekka Enberg06428782008-01-07 23:20:27 -0800939 } else
Christoph Lameter24922682007-07-17 04:03:18 -0700940 object_err(s, page, object,
941 "page slab pointer corrupt.");
Christoph Lameter81819f02007-05-06 14:49:36 -0700942 goto fail;
943 }
Christoph Lameter3ec09742007-05-16 22:11:00 -0700944
945 /* Special debug activities for freeing objects */
Andy Whitcroft8a380822008-07-23 21:27:18 -0700946 if (!PageSlubFrozen(page) && !page->freelist)
Christoph Lameter3ec09742007-05-16 22:11:00 -0700947 remove_full(s, page);
948 if (s->flags & SLAB_STORE_USER)
949 set_track(s, object, TRACK_FREE, addr);
950 trace(s, page, object, 0);
951 init_object(s, object, 0);
Christoph Lameter81819f02007-05-06 14:49:36 -0700952 return 1;
Christoph Lameter3ec09742007-05-16 22:11:00 -0700953
Christoph Lameter81819f02007-05-06 14:49:36 -0700954fail:
Christoph Lameter24922682007-07-17 04:03:18 -0700955 slab_fix(s, "Object at 0x%p not freed", object);
Christoph Lameter81819f02007-05-06 14:49:36 -0700956 return 0;
957}
958
Christoph Lameter41ecc552007-05-09 02:32:44 -0700959static int __init setup_slub_debug(char *str)
960{
Christoph Lameterf0630ff2007-07-15 23:38:14 -0700961 slub_debug = DEBUG_DEFAULT_FLAGS;
962 if (*str++ != '=' || !*str)
963 /*
964 * No options specified. Switch on full debugging.
965 */
966 goto out;
Christoph Lameter41ecc552007-05-09 02:32:44 -0700967
968 if (*str == ',')
Christoph Lameterf0630ff2007-07-15 23:38:14 -0700969 /*
970 * No options but restriction on slabs. This means full
971 * debugging for slabs matching a pattern.
972 */
973 goto check_slabs;
974
975 slub_debug = 0;
976 if (*str == '-')
977 /*
978 * Switch off all debugging measures.
979 */
980 goto out;
981
982 /*
983 * Determine which debug features should be switched on
984 */
Pekka Enberg06428782008-01-07 23:20:27 -0800985 for (; *str && *str != ','; str++) {
Christoph Lameterf0630ff2007-07-15 23:38:14 -0700986 switch (tolower(*str)) {
987 case 'f':
988 slub_debug |= SLAB_DEBUG_FREE;
989 break;
990 case 'z':
991 slub_debug |= SLAB_RED_ZONE;
992 break;
993 case 'p':
994 slub_debug |= SLAB_POISON;
995 break;
996 case 'u':
997 slub_debug |= SLAB_STORE_USER;
998 break;
999 case 't':
1000 slub_debug |= SLAB_TRACE;
1001 break;
1002 default:
1003 printk(KERN_ERR "slub_debug option '%c' "
Pekka Enberg06428782008-01-07 23:20:27 -08001004 "unknown. skipped\n", *str);
Christoph Lameterf0630ff2007-07-15 23:38:14 -07001005 }
1006 }
1007
1008check_slabs:
1009 if (*str == ',')
Christoph Lameter41ecc552007-05-09 02:32:44 -07001010 slub_debug_slabs = str + 1;
Christoph Lameterf0630ff2007-07-15 23:38:14 -07001011out:
Christoph Lameter41ecc552007-05-09 02:32:44 -07001012 return 1;
1013}
1014
1015__setup("slub_debug", setup_slub_debug);
1016
Christoph Lameterba0268a2007-09-11 15:24:11 -07001017static unsigned long kmem_cache_flags(unsigned long objsize,
1018 unsigned long flags, const char *name,
Alexey Dobriyan51cc5062008-07-25 19:45:34 -07001019 void (*ctor)(void *))
Christoph Lameter41ecc552007-05-09 02:32:44 -07001020{
1021 /*
Christoph Lametere1533622008-02-15 23:45:24 -08001022 * Enable debugging if selected on the kernel commandline.
Christoph Lameter41ecc552007-05-09 02:32:44 -07001023 */
Christoph Lametere1533622008-02-15 23:45:24 -08001024 if (slub_debug && (!slub_debug_slabs ||
1025 strncmp(slub_debug_slabs, name, strlen(slub_debug_slabs)) == 0))
1026 flags |= slub_debug;
Christoph Lameterba0268a2007-09-11 15:24:11 -07001027
1028 return flags;
Christoph Lameter41ecc552007-05-09 02:32:44 -07001029}
1030#else
Christoph Lameter3ec09742007-05-16 22:11:00 -07001031static inline void setup_object_debug(struct kmem_cache *s,
1032 struct page *page, void *object) {}
Christoph Lameter41ecc552007-05-09 02:32:44 -07001033
Christoph Lameter3ec09742007-05-16 22:11:00 -07001034static inline int alloc_debug_processing(struct kmem_cache *s,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03001035 struct page *page, void *object, unsigned long addr) { return 0; }
Christoph Lameter41ecc552007-05-09 02:32:44 -07001036
Christoph Lameter3ec09742007-05-16 22:11:00 -07001037static inline int free_debug_processing(struct kmem_cache *s,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03001038 struct page *page, void *object, unsigned long addr) { return 0; }
Christoph Lameter41ecc552007-05-09 02:32:44 -07001039
Christoph Lameter41ecc552007-05-09 02:32:44 -07001040static inline int slab_pad_check(struct kmem_cache *s, struct page *page)
1041 { return 1; }
1042static inline int check_object(struct kmem_cache *s, struct page *page,
1043 void *object, int active) { return 1; }
Christoph Lameter3ec09742007-05-16 22:11:00 -07001044static inline void add_full(struct kmem_cache_node *n, struct page *page) {}
Christoph Lameterba0268a2007-09-11 15:24:11 -07001045static inline unsigned long kmem_cache_flags(unsigned long objsize,
1046 unsigned long flags, const char *name,
Alexey Dobriyan51cc5062008-07-25 19:45:34 -07001047 void (*ctor)(void *))
Christoph Lameterba0268a2007-09-11 15:24:11 -07001048{
1049 return flags;
1050}
Christoph Lameter41ecc552007-05-09 02:32:44 -07001051#define slub_debug 0
Christoph Lameter0f389ec2008-04-14 18:53:02 +03001052
1053static inline unsigned long slabs_node(struct kmem_cache *s, int node)
1054 { return 0; }
Christoph Lameter205ab992008-04-14 19:11:40 +03001055static inline void inc_slabs_node(struct kmem_cache *s, int node,
1056 int objects) {}
1057static inline void dec_slabs_node(struct kmem_cache *s, int node,
1058 int objects) {}
Christoph Lameter41ecc552007-05-09 02:32:44 -07001059#endif
Christoph Lameter205ab992008-04-14 19:11:40 +03001060
Christoph Lameter81819f02007-05-06 14:49:36 -07001061/*
1062 * Slab allocation and freeing
1063 */
Christoph Lameter65c33762008-04-14 19:11:40 +03001064static inline struct page *alloc_slab_page(gfp_t flags, int node,
1065 struct kmem_cache_order_objects oo)
1066{
1067 int order = oo_order(oo);
1068
1069 if (node == -1)
1070 return alloc_pages(flags, order);
1071 else
1072 return alloc_pages_node(node, flags, order);
1073}
1074
Christoph Lameter81819f02007-05-06 14:49:36 -07001075static struct page *allocate_slab(struct kmem_cache *s, gfp_t flags, int node)
1076{
Pekka Enberg06428782008-01-07 23:20:27 -08001077 struct page *page;
Christoph Lameter834f3d12008-04-14 19:11:31 +03001078 struct kmem_cache_order_objects oo = s->oo;
Christoph Lameter81819f02007-05-06 14:49:36 -07001079
Christoph Lameterb7a49f02008-02-14 14:21:32 -08001080 flags |= s->allocflags;
Mel Gormane12ba742007-10-16 01:25:52 -07001081
Christoph Lameter65c33762008-04-14 19:11:40 +03001082 page = alloc_slab_page(flags | __GFP_NOWARN | __GFP_NORETRY, node,
1083 oo);
1084 if (unlikely(!page)) {
1085 oo = s->min;
1086 /*
1087 * Allocation may have failed due to fragmentation.
1088 * Try a lower order alloc if possible
1089 */
1090 page = alloc_slab_page(flags, node, oo);
1091 if (!page)
1092 return NULL;
Christoph Lameter81819f02007-05-06 14:49:36 -07001093
Christoph Lameter65c33762008-04-14 19:11:40 +03001094 stat(get_cpu_slab(s, raw_smp_processor_id()), ORDER_FALLBACK);
1095 }
Vegard Nossum5a896d92008-04-04 00:54:48 +02001096
1097 if (kmemcheck_enabled
1098 && !(s->flags & (SLAB_NOTRACK | DEBUG_DEFAULT_FLAGS)))
1099 {
1100 kmemcheck_alloc_shadow(s, flags, node, page, compound_order(page));
1101 }
1102
Christoph Lameter834f3d12008-04-14 19:11:31 +03001103 page->objects = oo_objects(oo);
Christoph Lameter81819f02007-05-06 14:49:36 -07001104 mod_zone_page_state(page_zone(page),
1105 (s->flags & SLAB_RECLAIM_ACCOUNT) ?
1106 NR_SLAB_RECLAIMABLE : NR_SLAB_UNRECLAIMABLE,
Christoph Lameter65c33762008-04-14 19:11:40 +03001107 1 << oo_order(oo));
Christoph Lameter81819f02007-05-06 14:49:36 -07001108
1109 return page;
1110}
1111
1112static void setup_object(struct kmem_cache *s, struct page *page,
1113 void *object)
1114{
Christoph Lameter3ec09742007-05-16 22:11:00 -07001115 setup_object_debug(s, page, object);
Christoph Lameter4f104932007-05-06 14:50:17 -07001116 if (unlikely(s->ctor))
Alexey Dobriyan51cc5062008-07-25 19:45:34 -07001117 s->ctor(object);
Christoph Lameter81819f02007-05-06 14:49:36 -07001118}
1119
1120static struct page *new_slab(struct kmem_cache *s, gfp_t flags, int node)
1121{
1122 struct page *page;
Christoph Lameter81819f02007-05-06 14:49:36 -07001123 void *start;
Christoph Lameter81819f02007-05-06 14:49:36 -07001124 void *last;
1125 void *p;
1126
Christoph Lameter6cb06222007-10-16 01:25:41 -07001127 BUG_ON(flags & GFP_SLAB_BUG_MASK);
Christoph Lameter81819f02007-05-06 14:49:36 -07001128
Christoph Lameter6cb06222007-10-16 01:25:41 -07001129 page = allocate_slab(s,
1130 flags & (GFP_RECLAIM_MASK | GFP_CONSTRAINT_MASK), node);
Christoph Lameter81819f02007-05-06 14:49:36 -07001131 if (!page)
1132 goto out;
1133
Christoph Lameter205ab992008-04-14 19:11:40 +03001134 inc_slabs_node(s, page_to_nid(page), page->objects);
Christoph Lameter81819f02007-05-06 14:49:36 -07001135 page->slab = s;
1136 page->flags |= 1 << PG_slab;
1137 if (s->flags & (SLAB_DEBUG_FREE | SLAB_RED_ZONE | SLAB_POISON |
1138 SLAB_STORE_USER | SLAB_TRACE))
Andy Whitcroft8a380822008-07-23 21:27:18 -07001139 __SetPageSlubDebug(page);
Christoph Lameter81819f02007-05-06 14:49:36 -07001140
1141 start = page_address(page);
Christoph Lameter81819f02007-05-06 14:49:36 -07001142
1143 if (unlikely(s->flags & SLAB_POISON))
Christoph Lameter834f3d12008-04-14 19:11:31 +03001144 memset(start, POISON_INUSE, PAGE_SIZE << compound_order(page));
Christoph Lameter81819f02007-05-06 14:49:36 -07001145
1146 last = start;
Christoph Lameter224a88b2008-04-14 19:11:31 +03001147 for_each_object(p, s, start, page->objects) {
Christoph Lameter81819f02007-05-06 14:49:36 -07001148 setup_object(s, page, last);
1149 set_freepointer(s, last, p);
1150 last = p;
1151 }
1152 setup_object(s, page, last);
Christoph Lametera973e9d2008-03-01 13:40:44 -08001153 set_freepointer(s, last, NULL);
Christoph Lameter81819f02007-05-06 14:49:36 -07001154
1155 page->freelist = start;
1156 page->inuse = 0;
1157out:
Christoph Lameter81819f02007-05-06 14:49:36 -07001158 return page;
1159}
1160
1161static void __free_slab(struct kmem_cache *s, struct page *page)
1162{
Christoph Lameter834f3d12008-04-14 19:11:31 +03001163 int order = compound_order(page);
1164 int pages = 1 << order;
Christoph Lameter81819f02007-05-06 14:49:36 -07001165
Andy Whitcroft8a380822008-07-23 21:27:18 -07001166 if (unlikely(SLABDEBUG && PageSlubDebug(page))) {
Christoph Lameter81819f02007-05-06 14:49:36 -07001167 void *p;
1168
1169 slab_pad_check(s, page);
Christoph Lameter224a88b2008-04-14 19:11:31 +03001170 for_each_object(p, s, page_address(page),
1171 page->objects)
Christoph Lameter81819f02007-05-06 14:49:36 -07001172 check_object(s, page, p, 0);
Andy Whitcroft8a380822008-07-23 21:27:18 -07001173 __ClearPageSlubDebug(page);
Christoph Lameter81819f02007-05-06 14:49:36 -07001174 }
1175
Vegard Nossum5a896d92008-04-04 00:54:48 +02001176 if (kmemcheck_page_is_tracked(page))
1177 kmemcheck_free_shadow(s, page, compound_order(page));
1178
Christoph Lameter81819f02007-05-06 14:49:36 -07001179 mod_zone_page_state(page_zone(page),
1180 (s->flags & SLAB_RECLAIM_ACCOUNT) ?
1181 NR_SLAB_RECLAIMABLE : NR_SLAB_UNRECLAIMABLE,
Pekka Enberg06428782008-01-07 23:20:27 -08001182 -pages);
Christoph Lameter81819f02007-05-06 14:49:36 -07001183
Christoph Lameter49bd5222008-04-14 18:52:18 +03001184 __ClearPageSlab(page);
1185 reset_page_mapcount(page);
Nick Piggin1eb5ac62009-05-05 19:13:44 +10001186 if (current->reclaim_state)
1187 current->reclaim_state->reclaimed_slab += pages;
Christoph Lameter834f3d12008-04-14 19:11:31 +03001188 __free_pages(page, order);
Christoph Lameter81819f02007-05-06 14:49:36 -07001189}
1190
1191static void rcu_free_slab(struct rcu_head *h)
1192{
1193 struct page *page;
1194
1195 page = container_of((struct list_head *)h, struct page, lru);
1196 __free_slab(page->slab, page);
1197}
1198
1199static void free_slab(struct kmem_cache *s, struct page *page)
1200{
1201 if (unlikely(s->flags & SLAB_DESTROY_BY_RCU)) {
1202 /*
1203 * RCU free overloads the RCU head over the LRU
1204 */
1205 struct rcu_head *head = (void *)&page->lru;
1206
1207 call_rcu(head, rcu_free_slab);
1208 } else
1209 __free_slab(s, page);
1210}
1211
1212static void discard_slab(struct kmem_cache *s, struct page *page)
1213{
Christoph Lameter205ab992008-04-14 19:11:40 +03001214 dec_slabs_node(s, page_to_nid(page), page->objects);
Christoph Lameter81819f02007-05-06 14:49:36 -07001215 free_slab(s, page);
1216}
1217
1218/*
1219 * Per slab locking using the pagelock
1220 */
1221static __always_inline void slab_lock(struct page *page)
1222{
1223 bit_spin_lock(PG_locked, &page->flags);
1224}
1225
1226static __always_inline void slab_unlock(struct page *page)
1227{
Nick Piggina76d3542008-01-07 23:20:27 -08001228 __bit_spin_unlock(PG_locked, &page->flags);
Christoph Lameter81819f02007-05-06 14:49:36 -07001229}
1230
1231static __always_inline int slab_trylock(struct page *page)
1232{
1233 int rc = 1;
1234
1235 rc = bit_spin_trylock(PG_locked, &page->flags);
1236 return rc;
1237}
1238
1239/*
1240 * Management of partially allocated slabs
1241 */
Christoph Lameter7c2e1322008-01-07 23:20:27 -08001242static void add_partial(struct kmem_cache_node *n,
1243 struct page *page, int tail)
Christoph Lameter81819f02007-05-06 14:49:36 -07001244{
Christoph Lametere95eed52007-05-06 14:49:44 -07001245 spin_lock(&n->list_lock);
1246 n->nr_partial++;
Christoph Lameter7c2e1322008-01-07 23:20:27 -08001247 if (tail)
1248 list_add_tail(&page->lru, &n->partial);
1249 else
1250 list_add(&page->lru, &n->partial);
Christoph Lameter81819f02007-05-06 14:49:36 -07001251 spin_unlock(&n->list_lock);
1252}
1253
Christoph Lameter0121c6192008-04-29 16:11:12 -07001254static void remove_partial(struct kmem_cache *s, struct page *page)
Christoph Lameter81819f02007-05-06 14:49:36 -07001255{
1256 struct kmem_cache_node *n = get_node(s, page_to_nid(page));
1257
1258 spin_lock(&n->list_lock);
1259 list_del(&page->lru);
1260 n->nr_partial--;
1261 spin_unlock(&n->list_lock);
1262}
1263
1264/*
Christoph Lameter672bba32007-05-09 02:32:39 -07001265 * Lock slab and remove from the partial list.
Christoph Lameter81819f02007-05-06 14:49:36 -07001266 *
Christoph Lameter672bba32007-05-09 02:32:39 -07001267 * Must hold list_lock.
Christoph Lameter81819f02007-05-06 14:49:36 -07001268 */
Christoph Lameter0121c6192008-04-29 16:11:12 -07001269static inline int lock_and_freeze_slab(struct kmem_cache_node *n,
1270 struct page *page)
Christoph Lameter81819f02007-05-06 14:49:36 -07001271{
1272 if (slab_trylock(page)) {
1273 list_del(&page->lru);
1274 n->nr_partial--;
Andy Whitcroft8a380822008-07-23 21:27:18 -07001275 __SetPageSlubFrozen(page);
Christoph Lameter81819f02007-05-06 14:49:36 -07001276 return 1;
1277 }
1278 return 0;
1279}
1280
1281/*
Christoph Lameter672bba32007-05-09 02:32:39 -07001282 * Try to allocate a partial slab from a specific node.
Christoph Lameter81819f02007-05-06 14:49:36 -07001283 */
1284static struct page *get_partial_node(struct kmem_cache_node *n)
1285{
1286 struct page *page;
1287
1288 /*
1289 * Racy check. If we mistakenly see no partial slabs then we
1290 * just allocate an empty slab. If we mistakenly try to get a
Christoph Lameter672bba32007-05-09 02:32:39 -07001291 * partial slab and there is none available then get_partials()
1292 * will return NULL.
Christoph Lameter81819f02007-05-06 14:49:36 -07001293 */
1294 if (!n || !n->nr_partial)
1295 return NULL;
1296
1297 spin_lock(&n->list_lock);
1298 list_for_each_entry(page, &n->partial, lru)
Christoph Lameter4b6f0752007-05-16 22:10:53 -07001299 if (lock_and_freeze_slab(n, page))
Christoph Lameter81819f02007-05-06 14:49:36 -07001300 goto out;
1301 page = NULL;
1302out:
1303 spin_unlock(&n->list_lock);
1304 return page;
1305}
1306
1307/*
Christoph Lameter672bba32007-05-09 02:32:39 -07001308 * Get a page from somewhere. Search in increasing NUMA distances.
Christoph Lameter81819f02007-05-06 14:49:36 -07001309 */
1310static struct page *get_any_partial(struct kmem_cache *s, gfp_t flags)
1311{
1312#ifdef CONFIG_NUMA
1313 struct zonelist *zonelist;
Mel Gormandd1a2392008-04-28 02:12:17 -07001314 struct zoneref *z;
Mel Gorman54a6eb52008-04-28 02:12:16 -07001315 struct zone *zone;
1316 enum zone_type high_zoneidx = gfp_zone(flags);
Christoph Lameter81819f02007-05-06 14:49:36 -07001317 struct page *page;
1318
1319 /*
Christoph Lameter672bba32007-05-09 02:32:39 -07001320 * The defrag ratio allows a configuration of the tradeoffs between
1321 * inter node defragmentation and node local allocations. A lower
1322 * defrag_ratio increases the tendency to do local allocations
1323 * instead of attempting to obtain partial slabs from other nodes.
Christoph Lameter81819f02007-05-06 14:49:36 -07001324 *
Christoph Lameter672bba32007-05-09 02:32:39 -07001325 * If the defrag_ratio is set to 0 then kmalloc() always
1326 * returns node local objects. If the ratio is higher then kmalloc()
1327 * may return off node objects because partial slabs are obtained
1328 * from other nodes and filled up.
Christoph Lameter81819f02007-05-06 14:49:36 -07001329 *
Christoph Lameter6446faa2008-02-15 23:45:26 -08001330 * If /sys/kernel/slab/xx/defrag_ratio is set to 100 (which makes
Christoph Lameter672bba32007-05-09 02:32:39 -07001331 * defrag_ratio = 1000) then every (well almost) allocation will
1332 * first attempt to defrag slab caches on other nodes. This means
1333 * scanning over all nodes to look for partial slabs which may be
1334 * expensive if we do it every time we are trying to find a slab
1335 * with available objects.
Christoph Lameter81819f02007-05-06 14:49:36 -07001336 */
Christoph Lameter98246012008-01-07 23:20:26 -08001337 if (!s->remote_node_defrag_ratio ||
1338 get_cycles() % 1024 > s->remote_node_defrag_ratio)
Christoph Lameter81819f02007-05-06 14:49:36 -07001339 return NULL;
1340
Mel Gorman0e884602008-04-28 02:12:14 -07001341 zonelist = node_zonelist(slab_node(current->mempolicy), flags);
Mel Gorman54a6eb52008-04-28 02:12:16 -07001342 for_each_zone_zonelist(zone, z, zonelist, high_zoneidx) {
Christoph Lameter81819f02007-05-06 14:49:36 -07001343 struct kmem_cache_node *n;
1344
Mel Gorman54a6eb52008-04-28 02:12:16 -07001345 n = get_node(s, zone_to_nid(zone));
Christoph Lameter81819f02007-05-06 14:49:36 -07001346
Mel Gorman54a6eb52008-04-28 02:12:16 -07001347 if (n && cpuset_zone_allowed_hardwall(zone, flags) &&
David Rientjes3b89d7d2009-02-22 17:40:07 -08001348 n->nr_partial > s->min_partial) {
Christoph Lameter81819f02007-05-06 14:49:36 -07001349 page = get_partial_node(n);
1350 if (page)
1351 return page;
1352 }
1353 }
1354#endif
1355 return NULL;
1356}
1357
1358/*
1359 * Get a partial page, lock it and return it.
1360 */
1361static struct page *get_partial(struct kmem_cache *s, gfp_t flags, int node)
1362{
1363 struct page *page;
1364 int searchnode = (node == -1) ? numa_node_id() : node;
1365
1366 page = get_partial_node(get_node(s, searchnode));
1367 if (page || (flags & __GFP_THISNODE))
1368 return page;
1369
1370 return get_any_partial(s, flags);
1371}
1372
1373/*
1374 * Move a page back to the lists.
1375 *
1376 * Must be called with the slab lock held.
1377 *
1378 * On exit the slab lock will have been dropped.
1379 */
Christoph Lameter7c2e1322008-01-07 23:20:27 -08001380static void unfreeze_slab(struct kmem_cache *s, struct page *page, int tail)
Christoph Lameter81819f02007-05-06 14:49:36 -07001381{
Christoph Lametere95eed52007-05-06 14:49:44 -07001382 struct kmem_cache_node *n = get_node(s, page_to_nid(page));
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001383 struct kmem_cache_cpu *c = get_cpu_slab(s, smp_processor_id());
Christoph Lametere95eed52007-05-06 14:49:44 -07001384
Andy Whitcroft8a380822008-07-23 21:27:18 -07001385 __ClearPageSlubFrozen(page);
Christoph Lameter81819f02007-05-06 14:49:36 -07001386 if (page->inuse) {
Christoph Lametere95eed52007-05-06 14:49:44 -07001387
Christoph Lametera973e9d2008-03-01 13:40:44 -08001388 if (page->freelist) {
Christoph Lameter7c2e1322008-01-07 23:20:27 -08001389 add_partial(n, page, tail);
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001390 stat(c, tail ? DEACTIVATE_TO_TAIL : DEACTIVATE_TO_HEAD);
1391 } else {
1392 stat(c, DEACTIVATE_FULL);
Andy Whitcroft8a380822008-07-23 21:27:18 -07001393 if (SLABDEBUG && PageSlubDebug(page) &&
1394 (s->flags & SLAB_STORE_USER))
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001395 add_full(n, page);
1396 }
Christoph Lameter81819f02007-05-06 14:49:36 -07001397 slab_unlock(page);
1398 } else {
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001399 stat(c, DEACTIVATE_EMPTY);
David Rientjes3b89d7d2009-02-22 17:40:07 -08001400 if (n->nr_partial < s->min_partial) {
Christoph Lametere95eed52007-05-06 14:49:44 -07001401 /*
Christoph Lameter672bba32007-05-09 02:32:39 -07001402 * Adding an empty slab to the partial slabs in order
1403 * to avoid page allocator overhead. This slab needs
1404 * to come after the other slabs with objects in
Christoph Lameter6446faa2008-02-15 23:45:26 -08001405 * so that the others get filled first. That way the
1406 * size of the partial list stays small.
1407 *
Christoph Lameter0121c6192008-04-29 16:11:12 -07001408 * kmem_cache_shrink can reclaim any empty slabs from
1409 * the partial list.
Christoph Lametere95eed52007-05-06 14:49:44 -07001410 */
Christoph Lameter7c2e1322008-01-07 23:20:27 -08001411 add_partial(n, page, 1);
Christoph Lametere95eed52007-05-06 14:49:44 -07001412 slab_unlock(page);
1413 } else {
1414 slab_unlock(page);
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001415 stat(get_cpu_slab(s, raw_smp_processor_id()), FREE_SLAB);
Christoph Lametere95eed52007-05-06 14:49:44 -07001416 discard_slab(s, page);
1417 }
Christoph Lameter81819f02007-05-06 14:49:36 -07001418 }
1419}
1420
1421/*
1422 * Remove the cpu slab
1423 */
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001424static void deactivate_slab(struct kmem_cache *s, struct kmem_cache_cpu *c)
Christoph Lameter81819f02007-05-06 14:49:36 -07001425{
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001426 struct page *page = c->page;
Christoph Lameter7c2e1322008-01-07 23:20:27 -08001427 int tail = 1;
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001428
Christoph Lameterb773ad72008-03-04 11:10:17 -08001429 if (page->freelist)
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001430 stat(c, DEACTIVATE_REMOTE_FREES);
Christoph Lameter894b8782007-05-10 03:15:16 -07001431 /*
Christoph Lameter6446faa2008-02-15 23:45:26 -08001432 * Merge cpu freelist into slab freelist. Typically we get here
Christoph Lameter894b8782007-05-10 03:15:16 -07001433 * because both freelists are empty. So this is unlikely
1434 * to occur.
1435 */
Christoph Lametera973e9d2008-03-01 13:40:44 -08001436 while (unlikely(c->freelist)) {
Christoph Lameter894b8782007-05-10 03:15:16 -07001437 void **object;
1438
Christoph Lameter7c2e1322008-01-07 23:20:27 -08001439 tail = 0; /* Hot objects. Put the slab first */
1440
Christoph Lameter894b8782007-05-10 03:15:16 -07001441 /* Retrieve object from cpu_freelist */
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001442 object = c->freelist;
Christoph Lameterb3fba8d2007-10-16 01:26:06 -07001443 c->freelist = c->freelist[c->offset];
Christoph Lameter894b8782007-05-10 03:15:16 -07001444
1445 /* And put onto the regular freelist */
Christoph Lameterb3fba8d2007-10-16 01:26:06 -07001446 object[c->offset] = page->freelist;
Christoph Lameter894b8782007-05-10 03:15:16 -07001447 page->freelist = object;
1448 page->inuse--;
1449 }
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001450 c->page = NULL;
Christoph Lameter7c2e1322008-01-07 23:20:27 -08001451 unfreeze_slab(s, page, tail);
Christoph Lameter81819f02007-05-06 14:49:36 -07001452}
1453
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001454static inline void flush_slab(struct kmem_cache *s, struct kmem_cache_cpu *c)
Christoph Lameter81819f02007-05-06 14:49:36 -07001455{
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001456 stat(c, CPUSLAB_FLUSH);
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001457 slab_lock(c->page);
1458 deactivate_slab(s, c);
Christoph Lameter81819f02007-05-06 14:49:36 -07001459}
1460
1461/*
1462 * Flush cpu slab.
Christoph Lameter6446faa2008-02-15 23:45:26 -08001463 *
Christoph Lameter81819f02007-05-06 14:49:36 -07001464 * Called from IPI handler with interrupts disabled.
1465 */
Christoph Lameter0c710012007-07-17 04:03:24 -07001466static inline void __flush_cpu_slab(struct kmem_cache *s, int cpu)
Christoph Lameter81819f02007-05-06 14:49:36 -07001467{
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001468 struct kmem_cache_cpu *c = get_cpu_slab(s, cpu);
Christoph Lameter81819f02007-05-06 14:49:36 -07001469
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001470 if (likely(c && c->page))
1471 flush_slab(s, c);
Christoph Lameter81819f02007-05-06 14:49:36 -07001472}
1473
1474static void flush_cpu_slab(void *d)
1475{
1476 struct kmem_cache *s = d;
Christoph Lameter81819f02007-05-06 14:49:36 -07001477
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001478 __flush_cpu_slab(s, smp_processor_id());
Christoph Lameter81819f02007-05-06 14:49:36 -07001479}
1480
1481static void flush_all(struct kmem_cache *s)
1482{
Jens Axboe15c8b6c2008-05-09 09:39:44 +02001483 on_each_cpu(flush_cpu_slab, s, 1);
Christoph Lameter81819f02007-05-06 14:49:36 -07001484}
1485
1486/*
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001487 * Check if the objects in a per cpu structure fit numa
1488 * locality expectations.
1489 */
1490static inline int node_match(struct kmem_cache_cpu *c, int node)
1491{
1492#ifdef CONFIG_NUMA
1493 if (node != -1 && c->node != node)
1494 return 0;
1495#endif
1496 return 1;
1497}
1498
1499/*
Christoph Lameter894b8782007-05-10 03:15:16 -07001500 * Slow path. The lockless freelist is empty or we need to perform
1501 * debugging duties.
Christoph Lameter81819f02007-05-06 14:49:36 -07001502 *
Christoph Lameter894b8782007-05-10 03:15:16 -07001503 * Interrupts are disabled.
Christoph Lameter81819f02007-05-06 14:49:36 -07001504 *
Christoph Lameter894b8782007-05-10 03:15:16 -07001505 * Processing is still very fast if new objects have been freed to the
1506 * regular freelist. In that case we simply take over the regular freelist
1507 * as the lockless freelist and zap the regular freelist.
Christoph Lameter81819f02007-05-06 14:49:36 -07001508 *
Christoph Lameter894b8782007-05-10 03:15:16 -07001509 * If that is not working then we fall back to the partial lists. We take the
1510 * first element of the freelist as the object to allocate now and move the
1511 * rest of the freelist to the lockless freelist.
1512 *
1513 * And if we were unable to get a new slab from the partial slab lists then
Christoph Lameter6446faa2008-02-15 23:45:26 -08001514 * we need to allocate a new slab. This is the slowest path since it involves
1515 * a call to the page allocator and the setup of a new slab.
Christoph Lameter81819f02007-05-06 14:49:36 -07001516 */
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03001517static void *__slab_alloc(struct kmem_cache *s, gfp_t gfpflags, int node,
1518 unsigned long addr, struct kmem_cache_cpu *c)
Christoph Lameter81819f02007-05-06 14:49:36 -07001519{
Christoph Lameter81819f02007-05-06 14:49:36 -07001520 void **object;
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001521 struct page *new;
Christoph Lameter81819f02007-05-06 14:49:36 -07001522
Linus Torvaldse72e9c22008-03-27 20:56:33 -07001523 /* We handle __GFP_ZERO in the caller */
1524 gfpflags &= ~__GFP_ZERO;
1525
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001526 if (!c->page)
Christoph Lameter81819f02007-05-06 14:49:36 -07001527 goto new_slab;
1528
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001529 slab_lock(c->page);
1530 if (unlikely(!node_match(c, node)))
Christoph Lameter81819f02007-05-06 14:49:36 -07001531 goto another_slab;
Christoph Lameter6446faa2008-02-15 23:45:26 -08001532
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001533 stat(c, ALLOC_REFILL);
Christoph Lameter6446faa2008-02-15 23:45:26 -08001534
Christoph Lameter894b8782007-05-10 03:15:16 -07001535load_freelist:
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001536 object = c->page->freelist;
Christoph Lametera973e9d2008-03-01 13:40:44 -08001537 if (unlikely(!object))
Christoph Lameter81819f02007-05-06 14:49:36 -07001538 goto another_slab;
Andy Whitcroft8a380822008-07-23 21:27:18 -07001539 if (unlikely(SLABDEBUG && PageSlubDebug(c->page)))
Christoph Lameter81819f02007-05-06 14:49:36 -07001540 goto debug;
1541
Christoph Lameterb3fba8d2007-10-16 01:26:06 -07001542 c->freelist = object[c->offset];
Christoph Lameter39b26462008-04-14 19:11:30 +03001543 c->page->inuse = c->page->objects;
Christoph Lametera973e9d2008-03-01 13:40:44 -08001544 c->page->freelist = NULL;
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001545 c->node = page_to_nid(c->page);
Christoph Lameter1f842602008-01-07 23:20:30 -08001546unlock_out:
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001547 slab_unlock(c->page);
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001548 stat(c, ALLOC_SLOWPATH);
Christoph Lameter81819f02007-05-06 14:49:36 -07001549 return object;
1550
1551another_slab:
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001552 deactivate_slab(s, c);
Christoph Lameter81819f02007-05-06 14:49:36 -07001553
1554new_slab:
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001555 new = get_partial(s, gfpflags, node);
1556 if (new) {
1557 c->page = new;
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001558 stat(c, ALLOC_FROM_PARTIAL);
Christoph Lameter894b8782007-05-10 03:15:16 -07001559 goto load_freelist;
Christoph Lameter81819f02007-05-06 14:49:36 -07001560 }
1561
Christoph Lameterb811c202007-10-16 23:25:51 -07001562 if (gfpflags & __GFP_WAIT)
1563 local_irq_enable();
1564
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001565 new = new_slab(s, gfpflags, node);
Christoph Lameterb811c202007-10-16 23:25:51 -07001566
1567 if (gfpflags & __GFP_WAIT)
1568 local_irq_disable();
1569
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001570 if (new) {
1571 c = get_cpu_slab(s, smp_processor_id());
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001572 stat(c, ALLOC_SLAB);
Christoph Lameter05aa3452007-11-05 11:31:58 -08001573 if (c->page)
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001574 flush_slab(s, c);
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001575 slab_lock(new);
Andy Whitcroft8a380822008-07-23 21:27:18 -07001576 __SetPageSlubFrozen(new);
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001577 c->page = new;
Christoph Lameter4b6f0752007-05-16 22:10:53 -07001578 goto load_freelist;
Christoph Lameter81819f02007-05-06 14:49:36 -07001579 }
Christoph Lameter71c7a062008-02-14 14:28:01 -08001580 return NULL;
Christoph Lameter81819f02007-05-06 14:49:36 -07001581debug:
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001582 if (!alloc_debug_processing(s, c->page, object, addr))
Christoph Lameter81819f02007-05-06 14:49:36 -07001583 goto another_slab;
Christoph Lameter894b8782007-05-10 03:15:16 -07001584
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001585 c->page->inuse++;
Christoph Lameterb3fba8d2007-10-16 01:26:06 -07001586 c->page->freelist = object[c->offset];
Christoph Lameteree3c72a2007-10-16 01:26:07 -07001587 c->node = -1;
Christoph Lameter1f842602008-01-07 23:20:30 -08001588 goto unlock_out;
Christoph Lameter894b8782007-05-10 03:15:16 -07001589}
1590
1591/*
1592 * Inlined fastpath so that allocation functions (kmalloc, kmem_cache_alloc)
1593 * have the fastpath folded into their functions. So no function call
1594 * overhead for requests that can be satisfied on the fastpath.
1595 *
1596 * The fastpath works by first checking if the lockless freelist can be used.
1597 * If not then __slab_alloc is called for slow processing.
1598 *
1599 * Otherwise we can simply pick the next object from the lockless free list.
1600 */
Pekka Enberg06428782008-01-07 23:20:27 -08001601static __always_inline void *slab_alloc(struct kmem_cache *s,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03001602 gfp_t gfpflags, int node, unsigned long addr)
Christoph Lameter894b8782007-05-10 03:15:16 -07001603{
Christoph Lameter894b8782007-05-10 03:15:16 -07001604 void **object;
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001605 struct kmem_cache_cpu *c;
Christoph Lameter1f842602008-01-07 23:20:30 -08001606 unsigned long flags;
Dmitry Adamushkobdb21922008-07-10 22:21:58 +02001607 unsigned int objsize;
Christoph Lameter1f842602008-01-07 23:20:30 -08001608
Nick Piggincf40bd12009-01-21 08:12:39 +01001609 lockdep_trace_alloc(gfpflags);
OGAWA Hirofumi89124d72008-11-19 21:23:59 +09001610 might_sleep_if(gfpflags & __GFP_WAIT);
Pekka Enberg3c506ef2008-12-29 11:47:05 +02001611
Akinobu Mita773ff602008-12-23 19:37:01 +09001612 if (should_failslab(s->objsize, gfpflags))
1613 return NULL;
1614
Christoph Lameter894b8782007-05-10 03:15:16 -07001615 local_irq_save(flags);
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001616 c = get_cpu_slab(s, smp_processor_id());
Dmitry Adamushkobdb21922008-07-10 22:21:58 +02001617 objsize = c->objsize;
Christoph Lametera973e9d2008-03-01 13:40:44 -08001618 if (unlikely(!c->freelist || !node_match(c, node)))
Christoph Lameter894b8782007-05-10 03:15:16 -07001619
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001620 object = __slab_alloc(s, gfpflags, node, addr, c);
Christoph Lameter894b8782007-05-10 03:15:16 -07001621
1622 else {
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001623 object = c->freelist;
Christoph Lameterb3fba8d2007-10-16 01:26:06 -07001624 c->freelist = object[c->offset];
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001625 stat(c, ALLOC_FASTPATH);
Christoph Lameter894b8782007-05-10 03:15:16 -07001626 }
1627 local_irq_restore(flags);
Christoph Lameterd07dbea2007-07-17 04:03:23 -07001628
1629 if (unlikely((gfpflags & __GFP_ZERO) && object))
Dmitry Adamushkobdb21922008-07-10 22:21:58 +02001630 memset(object, 0, objsize);
Christoph Lameterd07dbea2007-07-17 04:03:23 -07001631
Vegard Nossum5a896d92008-04-04 00:54:48 +02001632 kmemcheck_slab_alloc(s, gfpflags, object, c->objsize);
Catalin Marinas06f22f12009-06-11 13:23:18 +01001633 kmemleak_alloc_recursive(object, objsize, 1, s->flags, gfpflags);
Vegard Nossum5a896d92008-04-04 00:54:48 +02001634
Christoph Lameter894b8782007-05-10 03:15:16 -07001635 return object;
Christoph Lameter81819f02007-05-06 14:49:36 -07001636}
1637
1638void *kmem_cache_alloc(struct kmem_cache *s, gfp_t gfpflags)
1639{
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03001640 void *ret = slab_alloc(s, gfpflags, -1, _RET_IP_);
1641
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02001642 trace_kmem_cache_alloc(_RET_IP_, ret, s->objsize, s->size, gfpflags);
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03001643
1644 return ret;
Christoph Lameter81819f02007-05-06 14:49:36 -07001645}
1646EXPORT_SYMBOL(kmem_cache_alloc);
1647
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03001648#ifdef CONFIG_KMEMTRACE
1649void *kmem_cache_alloc_notrace(struct kmem_cache *s, gfp_t gfpflags)
1650{
1651 return slab_alloc(s, gfpflags, -1, _RET_IP_);
1652}
1653EXPORT_SYMBOL(kmem_cache_alloc_notrace);
1654#endif
1655
Christoph Lameter81819f02007-05-06 14:49:36 -07001656#ifdef CONFIG_NUMA
1657void *kmem_cache_alloc_node(struct kmem_cache *s, gfp_t gfpflags, int node)
1658{
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03001659 void *ret = slab_alloc(s, gfpflags, node, _RET_IP_);
1660
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02001661 trace_kmem_cache_alloc_node(_RET_IP_, ret,
1662 s->objsize, s->size, gfpflags, node);
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03001663
1664 return ret;
Christoph Lameter81819f02007-05-06 14:49:36 -07001665}
1666EXPORT_SYMBOL(kmem_cache_alloc_node);
1667#endif
1668
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03001669#ifdef CONFIG_KMEMTRACE
1670void *kmem_cache_alloc_node_notrace(struct kmem_cache *s,
1671 gfp_t gfpflags,
1672 int node)
1673{
1674 return slab_alloc(s, gfpflags, node, _RET_IP_);
1675}
1676EXPORT_SYMBOL(kmem_cache_alloc_node_notrace);
1677#endif
1678
Christoph Lameter81819f02007-05-06 14:49:36 -07001679/*
Christoph Lameter894b8782007-05-10 03:15:16 -07001680 * Slow patch handling. This may still be called frequently since objects
1681 * have a longer lifetime than the cpu slabs in most processing loads.
Christoph Lameter81819f02007-05-06 14:49:36 -07001682 *
Christoph Lameter894b8782007-05-10 03:15:16 -07001683 * So we still attempt to reduce cache line usage. Just take the slab
1684 * lock and free the item. If there is no additional partial page
1685 * handling required then we can return immediately.
Christoph Lameter81819f02007-05-06 14:49:36 -07001686 */
Christoph Lameter894b8782007-05-10 03:15:16 -07001687static void __slab_free(struct kmem_cache *s, struct page *page,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03001688 void *x, unsigned long addr, unsigned int offset)
Christoph Lameter81819f02007-05-06 14:49:36 -07001689{
1690 void *prior;
1691 void **object = (void *)x;
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001692 struct kmem_cache_cpu *c;
Christoph Lameter81819f02007-05-06 14:49:36 -07001693
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001694 c = get_cpu_slab(s, raw_smp_processor_id());
1695 stat(c, FREE_SLOWPATH);
Christoph Lameter81819f02007-05-06 14:49:36 -07001696 slab_lock(page);
1697
Andy Whitcroft8a380822008-07-23 21:27:18 -07001698 if (unlikely(SLABDEBUG && PageSlubDebug(page)))
Christoph Lameter81819f02007-05-06 14:49:36 -07001699 goto debug;
Christoph Lameter6446faa2008-02-15 23:45:26 -08001700
Christoph Lameter81819f02007-05-06 14:49:36 -07001701checks_ok:
Christoph Lameterb3fba8d2007-10-16 01:26:06 -07001702 prior = object[offset] = page->freelist;
Christoph Lameter81819f02007-05-06 14:49:36 -07001703 page->freelist = object;
1704 page->inuse--;
1705
Andy Whitcroft8a380822008-07-23 21:27:18 -07001706 if (unlikely(PageSlubFrozen(page))) {
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001707 stat(c, FREE_FROZEN);
Christoph Lameter81819f02007-05-06 14:49:36 -07001708 goto out_unlock;
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001709 }
Christoph Lameter81819f02007-05-06 14:49:36 -07001710
1711 if (unlikely(!page->inuse))
1712 goto slab_empty;
1713
1714 /*
Christoph Lameter6446faa2008-02-15 23:45:26 -08001715 * Objects left in the slab. If it was not on the partial list before
Christoph Lameter81819f02007-05-06 14:49:36 -07001716 * then add it.
1717 */
Christoph Lametera973e9d2008-03-01 13:40:44 -08001718 if (unlikely(!prior)) {
Christoph Lameter7c2e1322008-01-07 23:20:27 -08001719 add_partial(get_node(s, page_to_nid(page)), page, 1);
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001720 stat(c, FREE_ADD_PARTIAL);
1721 }
Christoph Lameter81819f02007-05-06 14:49:36 -07001722
1723out_unlock:
1724 slab_unlock(page);
Christoph Lameter81819f02007-05-06 14:49:36 -07001725 return;
1726
1727slab_empty:
Christoph Lametera973e9d2008-03-01 13:40:44 -08001728 if (prior) {
Christoph Lameter81819f02007-05-06 14:49:36 -07001729 /*
Christoph Lameter672bba32007-05-09 02:32:39 -07001730 * Slab still on the partial list.
Christoph Lameter81819f02007-05-06 14:49:36 -07001731 */
1732 remove_partial(s, page);
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001733 stat(c, FREE_REMOVE_PARTIAL);
1734 }
Christoph Lameter81819f02007-05-06 14:49:36 -07001735 slab_unlock(page);
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001736 stat(c, FREE_SLAB);
Christoph Lameter81819f02007-05-06 14:49:36 -07001737 discard_slab(s, page);
Christoph Lameter81819f02007-05-06 14:49:36 -07001738 return;
1739
1740debug:
Christoph Lameter3ec09742007-05-16 22:11:00 -07001741 if (!free_debug_processing(s, page, x, addr))
Christoph Lameter77c5e2d2007-05-06 14:49:42 -07001742 goto out_unlock;
Christoph Lameter77c5e2d2007-05-06 14:49:42 -07001743 goto checks_ok;
Christoph Lameter81819f02007-05-06 14:49:36 -07001744}
1745
Christoph Lameter894b8782007-05-10 03:15:16 -07001746/*
1747 * Fastpath with forced inlining to produce a kfree and kmem_cache_free that
1748 * can perform fastpath freeing without additional function calls.
1749 *
1750 * The fastpath is only possible if we are freeing to the current cpu slab
1751 * of this processor. This typically the case if we have just allocated
1752 * the item before.
1753 *
1754 * If fastpath is not possible then fall back to __slab_free where we deal
1755 * with all sorts of special processing.
1756 */
Pekka Enberg06428782008-01-07 23:20:27 -08001757static __always_inline void slab_free(struct kmem_cache *s,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03001758 struct page *page, void *x, unsigned long addr)
Christoph Lameter894b8782007-05-10 03:15:16 -07001759{
1760 void **object = (void *)x;
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001761 struct kmem_cache_cpu *c;
Christoph Lameter1f842602008-01-07 23:20:30 -08001762 unsigned long flags;
1763
Catalin Marinas06f22f12009-06-11 13:23:18 +01001764 kmemleak_free_recursive(x, s->flags);
Christoph Lameter894b8782007-05-10 03:15:16 -07001765 local_irq_save(flags);
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001766 c = get_cpu_slab(s, smp_processor_id());
Vegard Nossum5a896d92008-04-04 00:54:48 +02001767 kmemcheck_slab_free(s, object, c->objsize);
Christoph Lameter27d9e4e2008-02-15 23:45:25 -08001768 debug_check_no_locks_freed(object, c->objsize);
Thomas Gleixner3ac7fe52008-04-30 00:55:01 -07001769 if (!(s->flags & SLAB_DEBUG_OBJECTS))
Pekka Enberg6047a002009-01-14 12:22:25 +02001770 debug_check_no_obj_freed(object, c->objsize);
Christoph Lameteree3c72a2007-10-16 01:26:07 -07001771 if (likely(page == c->page && c->node >= 0)) {
Christoph Lameterb3fba8d2007-10-16 01:26:06 -07001772 object[c->offset] = c->freelist;
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001773 c->freelist = object;
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08001774 stat(c, FREE_FASTPATH);
Christoph Lameter894b8782007-05-10 03:15:16 -07001775 } else
Christoph Lameterb3fba8d2007-10-16 01:26:06 -07001776 __slab_free(s, page, x, addr, c->offset);
Christoph Lameter894b8782007-05-10 03:15:16 -07001777
1778 local_irq_restore(flags);
1779}
1780
Christoph Lameter81819f02007-05-06 14:49:36 -07001781void kmem_cache_free(struct kmem_cache *s, void *x)
1782{
Christoph Lameter77c5e2d2007-05-06 14:49:42 -07001783 struct page *page;
Christoph Lameter81819f02007-05-06 14:49:36 -07001784
Christoph Lameterb49af682007-05-06 14:49:41 -07001785 page = virt_to_head_page(x);
Christoph Lameter81819f02007-05-06 14:49:36 -07001786
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03001787 slab_free(s, page, x, _RET_IP_);
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03001788
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02001789 trace_kmem_cache_free(_RET_IP_, x);
Christoph Lameter81819f02007-05-06 14:49:36 -07001790}
1791EXPORT_SYMBOL(kmem_cache_free);
1792
Cyrill Gorcunove9beef12008-10-28 22:02:26 +03001793/* Figure out on which slab page the object resides */
Christoph Lameter81819f02007-05-06 14:49:36 -07001794static struct page *get_object_page(const void *x)
1795{
Christoph Lameterb49af682007-05-06 14:49:41 -07001796 struct page *page = virt_to_head_page(x);
Christoph Lameter81819f02007-05-06 14:49:36 -07001797
1798 if (!PageSlab(page))
1799 return NULL;
1800
1801 return page;
1802}
1803
1804/*
Christoph Lameter672bba32007-05-09 02:32:39 -07001805 * Object placement in a slab is made very easy because we always start at
1806 * offset 0. If we tune the size of the object to the alignment then we can
1807 * get the required alignment by putting one properly sized object after
1808 * another.
Christoph Lameter81819f02007-05-06 14:49:36 -07001809 *
1810 * Notice that the allocation order determines the sizes of the per cpu
1811 * caches. Each processor has always one slab available for allocations.
1812 * Increasing the allocation order reduces the number of times that slabs
Christoph Lameter672bba32007-05-09 02:32:39 -07001813 * must be moved on and off the partial lists and is therefore a factor in
Christoph Lameter81819f02007-05-06 14:49:36 -07001814 * locking overhead.
Christoph Lameter81819f02007-05-06 14:49:36 -07001815 */
1816
1817/*
1818 * Mininum / Maximum order of slab pages. This influences locking overhead
1819 * and slab fragmentation. A higher order reduces the number of partial slabs
1820 * and increases the number of allocations possible without having to
1821 * take the list_lock.
1822 */
1823static int slub_min_order;
Christoph Lameter114e9e82008-04-14 19:11:41 +03001824static int slub_max_order = PAGE_ALLOC_COSTLY_ORDER;
Christoph Lameter9b2cd502008-04-14 19:11:41 +03001825static int slub_min_objects;
Christoph Lameter81819f02007-05-06 14:49:36 -07001826
1827/*
1828 * Merge control. If this is set then no merging of slab caches will occur.
Christoph Lameter672bba32007-05-09 02:32:39 -07001829 * (Could be removed. This was introduced to pacify the merge skeptics.)
Christoph Lameter81819f02007-05-06 14:49:36 -07001830 */
1831static int slub_nomerge;
1832
1833/*
Christoph Lameter81819f02007-05-06 14:49:36 -07001834 * Calculate the order of allocation given an slab object size.
1835 *
Christoph Lameter672bba32007-05-09 02:32:39 -07001836 * The order of allocation has significant impact on performance and other
1837 * system components. Generally order 0 allocations should be preferred since
1838 * order 0 does not cause fragmentation in the page allocator. Larger objects
1839 * be problematic to put into order 0 slabs because there may be too much
Christoph Lameterc124f5b2008-04-14 19:13:29 +03001840 * unused space left. We go to a higher order if more than 1/16th of the slab
Christoph Lameter672bba32007-05-09 02:32:39 -07001841 * would be wasted.
Christoph Lameter81819f02007-05-06 14:49:36 -07001842 *
Christoph Lameter672bba32007-05-09 02:32:39 -07001843 * In order to reach satisfactory performance we must ensure that a minimum
1844 * number of objects is in one slab. Otherwise we may generate too much
1845 * activity on the partial lists which requires taking the list_lock. This is
1846 * less a concern for large slabs though which are rarely used.
Christoph Lameter81819f02007-05-06 14:49:36 -07001847 *
Christoph Lameter672bba32007-05-09 02:32:39 -07001848 * slub_max_order specifies the order where we begin to stop considering the
1849 * number of objects in a slab as critical. If we reach slub_max_order then
1850 * we try to keep the page order as low as possible. So we accept more waste
1851 * of space in favor of a small page order.
1852 *
1853 * Higher order allocations also allow the placement of more objects in a
1854 * slab and thereby reduce object handling overhead. If the user has
1855 * requested a higher mininum order then we start with that one instead of
1856 * the smallest order which will fit the object.
Christoph Lameter81819f02007-05-06 14:49:36 -07001857 */
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001858static inline int slab_order(int size, int min_objects,
1859 int max_order, int fract_leftover)
Christoph Lameter81819f02007-05-06 14:49:36 -07001860{
1861 int order;
1862 int rem;
Christoph Lameter6300ea72007-07-17 04:03:20 -07001863 int min_order = slub_min_order;
Christoph Lameter81819f02007-05-06 14:49:36 -07001864
Cyrill Gorcunov210b5c02008-10-22 23:00:38 +04001865 if ((PAGE_SIZE << min_order) / size > MAX_OBJS_PER_PAGE)
1866 return get_order(size * MAX_OBJS_PER_PAGE) - 1;
Christoph Lameter39b26462008-04-14 19:11:30 +03001867
Christoph Lameter6300ea72007-07-17 04:03:20 -07001868 for (order = max(min_order,
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001869 fls(min_objects * size - 1) - PAGE_SHIFT);
1870 order <= max_order; order++) {
1871
Christoph Lameter81819f02007-05-06 14:49:36 -07001872 unsigned long slab_size = PAGE_SIZE << order;
1873
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001874 if (slab_size < min_objects * size)
Christoph Lameter81819f02007-05-06 14:49:36 -07001875 continue;
1876
Christoph Lameter81819f02007-05-06 14:49:36 -07001877 rem = slab_size % size;
1878
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001879 if (rem <= slab_size / fract_leftover)
Christoph Lameter81819f02007-05-06 14:49:36 -07001880 break;
1881
1882 }
Christoph Lameter672bba32007-05-09 02:32:39 -07001883
Christoph Lameter81819f02007-05-06 14:49:36 -07001884 return order;
1885}
1886
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001887static inline int calculate_order(int size)
1888{
1889 int order;
1890 int min_objects;
1891 int fraction;
Zhang Yanmine8120ff2009-02-12 18:00:17 +02001892 int max_objects;
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001893
1894 /*
1895 * Attempt to find best configuration for a slab. This
1896 * works by first attempting to generate a layout with
1897 * the best configuration and backing off gradually.
1898 *
1899 * First we reduce the acceptable waste in a slab. Then
1900 * we reduce the minimum objects required in a slab.
1901 */
1902 min_objects = slub_min_objects;
Christoph Lameter9b2cd502008-04-14 19:11:41 +03001903 if (!min_objects)
1904 min_objects = 4 * (fls(nr_cpu_ids) + 1);
Zhang Yanmine8120ff2009-02-12 18:00:17 +02001905 max_objects = (PAGE_SIZE << slub_max_order)/size;
1906 min_objects = min(min_objects, max_objects);
1907
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001908 while (min_objects > 1) {
Christoph Lameterc124f5b2008-04-14 19:13:29 +03001909 fraction = 16;
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001910 while (fraction >= 4) {
1911 order = slab_order(size, min_objects,
1912 slub_max_order, fraction);
1913 if (order <= slub_max_order)
1914 return order;
1915 fraction /= 2;
1916 }
Zhang Yanmine8120ff2009-02-12 18:00:17 +02001917 min_objects --;
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001918 }
1919
1920 /*
1921 * We were unable to place multiple objects in a slab. Now
1922 * lets see if we can place a single object there.
1923 */
1924 order = slab_order(size, 1, slub_max_order, 1);
1925 if (order <= slub_max_order)
1926 return order;
1927
1928 /*
1929 * Doh this slab cannot be placed using slub_max_order.
1930 */
1931 order = slab_order(size, 1, MAX_ORDER, 1);
David Rientjes818cf592009-04-23 09:58:22 +03001932 if (order < MAX_ORDER)
Christoph Lameter5e6d4442007-05-09 02:32:46 -07001933 return order;
1934 return -ENOSYS;
1935}
1936
Christoph Lameter81819f02007-05-06 14:49:36 -07001937/*
Christoph Lameter672bba32007-05-09 02:32:39 -07001938 * Figure out what the alignment of the objects will be.
Christoph Lameter81819f02007-05-06 14:49:36 -07001939 */
1940static unsigned long calculate_alignment(unsigned long flags,
1941 unsigned long align, unsigned long size)
1942{
1943 /*
Christoph Lameter6446faa2008-02-15 23:45:26 -08001944 * If the user wants hardware cache aligned objects then follow that
1945 * suggestion if the object is sufficiently large.
Christoph Lameter81819f02007-05-06 14:49:36 -07001946 *
Christoph Lameter6446faa2008-02-15 23:45:26 -08001947 * The hardware cache alignment cannot override the specified
1948 * alignment though. If that is greater then use it.
Christoph Lameter81819f02007-05-06 14:49:36 -07001949 */
Nick Pigginb6210382008-03-05 14:05:56 -08001950 if (flags & SLAB_HWCACHE_ALIGN) {
1951 unsigned long ralign = cache_line_size();
1952 while (size <= ralign / 2)
1953 ralign /= 2;
1954 align = max(align, ralign);
1955 }
Christoph Lameter81819f02007-05-06 14:49:36 -07001956
1957 if (align < ARCH_SLAB_MINALIGN)
Nick Pigginb6210382008-03-05 14:05:56 -08001958 align = ARCH_SLAB_MINALIGN;
Christoph Lameter81819f02007-05-06 14:49:36 -07001959
1960 return ALIGN(align, sizeof(void *));
1961}
1962
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001963static void init_kmem_cache_cpu(struct kmem_cache *s,
1964 struct kmem_cache_cpu *c)
1965{
1966 c->page = NULL;
Christoph Lametera973e9d2008-03-01 13:40:44 -08001967 c->freelist = NULL;
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001968 c->node = 0;
Christoph Lameter42a9fdb2007-10-16 01:26:09 -07001969 c->offset = s->offset / sizeof(void *);
1970 c->objsize = s->objsize;
Pekka Enberg62f75532008-04-14 18:50:44 +03001971#ifdef CONFIG_SLUB_STATS
1972 memset(c->stat, 0, NR_SLUB_STAT_ITEMS * sizeof(unsigned));
1973#endif
Christoph Lameterdfb4f092007-10-16 01:26:05 -07001974}
1975
Pekka Enberg5595cff2008-08-05 09:28:47 +03001976static void
1977init_kmem_cache_node(struct kmem_cache_node *n, struct kmem_cache *s)
Christoph Lameter81819f02007-05-06 14:49:36 -07001978{
1979 n->nr_partial = 0;
Christoph Lameter81819f02007-05-06 14:49:36 -07001980 spin_lock_init(&n->list_lock);
1981 INIT_LIST_HEAD(&n->partial);
Christoph Lameter8ab13722007-07-17 04:03:32 -07001982#ifdef CONFIG_SLUB_DEBUG
Christoph Lameter0f389ec2008-04-14 18:53:02 +03001983 atomic_long_set(&n->nr_slabs, 0);
Salman Qazi02b71b72008-09-11 12:25:41 -07001984 atomic_long_set(&n->total_objects, 0);
Christoph Lameter643b1132007-05-06 14:49:42 -07001985 INIT_LIST_HEAD(&n->full);
Christoph Lameter8ab13722007-07-17 04:03:32 -07001986#endif
Christoph Lameter81819f02007-05-06 14:49:36 -07001987}
1988
Christoph Lameter4c93c3552007-10-16 01:26:08 -07001989#ifdef CONFIG_SMP
1990/*
1991 * Per cpu array for per cpu structures.
1992 *
1993 * The per cpu array places all kmem_cache_cpu structures from one processor
1994 * close together meaning that it becomes possible that multiple per cpu
1995 * structures are contained in one cacheline. This may be particularly
1996 * beneficial for the kmalloc caches.
1997 *
1998 * A desktop system typically has around 60-80 slabs. With 100 here we are
1999 * likely able to get per cpu structures for all caches from the array defined
2000 * here. We must be able to cover all kmalloc caches during bootstrap.
2001 *
2002 * If the per cpu array is exhausted then fall back to kmalloc
2003 * of individual cachelines. No sharing is possible then.
2004 */
2005#define NR_KMEM_CACHE_CPU 100
2006
2007static DEFINE_PER_CPU(struct kmem_cache_cpu,
2008 kmem_cache_cpu)[NR_KMEM_CACHE_CPU];
2009
2010static DEFINE_PER_CPU(struct kmem_cache_cpu *, kmem_cache_cpu_free);
Rusty Russell174596a2009-01-01 10:12:29 +10302011static DECLARE_BITMAP(kmem_cach_cpu_free_init_once, CONFIG_NR_CPUS);
Christoph Lameter4c93c3552007-10-16 01:26:08 -07002012
2013static struct kmem_cache_cpu *alloc_kmem_cache_cpu(struct kmem_cache *s,
2014 int cpu, gfp_t flags)
2015{
2016 struct kmem_cache_cpu *c = per_cpu(kmem_cache_cpu_free, cpu);
2017
2018 if (c)
2019 per_cpu(kmem_cache_cpu_free, cpu) =
2020 (void *)c->freelist;
2021 else {
2022 /* Table overflow: So allocate ourselves */
2023 c = kmalloc_node(
2024 ALIGN(sizeof(struct kmem_cache_cpu), cache_line_size()),
2025 flags, cpu_to_node(cpu));
2026 if (!c)
2027 return NULL;
2028 }
2029
2030 init_kmem_cache_cpu(s, c);
2031 return c;
2032}
2033
2034static void free_kmem_cache_cpu(struct kmem_cache_cpu *c, int cpu)
2035{
2036 if (c < per_cpu(kmem_cache_cpu, cpu) ||
David Rientjes37189092009-01-27 18:59:46 -08002037 c >= per_cpu(kmem_cache_cpu, cpu) + NR_KMEM_CACHE_CPU) {
Christoph Lameter4c93c3552007-10-16 01:26:08 -07002038 kfree(c);
2039 return;
2040 }
2041 c->freelist = (void *)per_cpu(kmem_cache_cpu_free, cpu);
2042 per_cpu(kmem_cache_cpu_free, cpu) = c;
2043}
2044
2045static void free_kmem_cache_cpus(struct kmem_cache *s)
2046{
2047 int cpu;
2048
2049 for_each_online_cpu(cpu) {
2050 struct kmem_cache_cpu *c = get_cpu_slab(s, cpu);
2051
2052 if (c) {
2053 s->cpu_slab[cpu] = NULL;
2054 free_kmem_cache_cpu(c, cpu);
2055 }
2056 }
2057}
2058
2059static int alloc_kmem_cache_cpus(struct kmem_cache *s, gfp_t flags)
2060{
2061 int cpu;
2062
2063 for_each_online_cpu(cpu) {
2064 struct kmem_cache_cpu *c = get_cpu_slab(s, cpu);
2065
2066 if (c)
2067 continue;
2068
2069 c = alloc_kmem_cache_cpu(s, cpu, flags);
2070 if (!c) {
2071 free_kmem_cache_cpus(s);
2072 return 0;
2073 }
2074 s->cpu_slab[cpu] = c;
2075 }
2076 return 1;
2077}
2078
2079/*
2080 * Initialize the per cpu array.
2081 */
2082static void init_alloc_cpu_cpu(int cpu)
2083{
2084 int i;
2085
Rusty Russell174596a2009-01-01 10:12:29 +10302086 if (cpumask_test_cpu(cpu, to_cpumask(kmem_cach_cpu_free_init_once)))
Christoph Lameter4c93c3552007-10-16 01:26:08 -07002087 return;
2088
2089 for (i = NR_KMEM_CACHE_CPU - 1; i >= 0; i--)
2090 free_kmem_cache_cpu(&per_cpu(kmem_cache_cpu, cpu)[i], cpu);
2091
Rusty Russell174596a2009-01-01 10:12:29 +10302092 cpumask_set_cpu(cpu, to_cpumask(kmem_cach_cpu_free_init_once));
Christoph Lameter4c93c3552007-10-16 01:26:08 -07002093}
2094
2095static void __init init_alloc_cpu(void)
2096{
2097 int cpu;
2098
2099 for_each_online_cpu(cpu)
2100 init_alloc_cpu_cpu(cpu);
2101 }
2102
2103#else
2104static inline void free_kmem_cache_cpus(struct kmem_cache *s) {}
2105static inline void init_alloc_cpu(void) {}
2106
2107static inline int alloc_kmem_cache_cpus(struct kmem_cache *s, gfp_t flags)
2108{
2109 init_kmem_cache_cpu(s, &s->cpu_slab);
2110 return 1;
2111}
2112#endif
2113
Christoph Lameter81819f02007-05-06 14:49:36 -07002114#ifdef CONFIG_NUMA
2115/*
2116 * No kmalloc_node yet so do it by hand. We know that this is the first
2117 * slab on the node for this slabcache. There are no concurrent accesses
2118 * possible.
2119 *
2120 * Note that this function only works on the kmalloc_node_cache
Christoph Lameter4c93c3552007-10-16 01:26:08 -07002121 * when allocating for the kmalloc_node_cache. This is used for bootstrapping
2122 * memory on a fresh node that has no slab structures yet.
Christoph Lameter81819f02007-05-06 14:49:36 -07002123 */
David Rientjes0094de92008-11-25 19:14:19 -08002124static void early_kmem_cache_node_alloc(gfp_t gfpflags, int node)
Christoph Lameter81819f02007-05-06 14:49:36 -07002125{
2126 struct page *page;
2127 struct kmem_cache_node *n;
rootba84c732008-01-07 23:20:28 -08002128 unsigned long flags;
Christoph Lameter81819f02007-05-06 14:49:36 -07002129
2130 BUG_ON(kmalloc_caches->size < sizeof(struct kmem_cache_node));
2131
Christoph Lametera2f92ee2007-08-22 14:01:57 -07002132 page = new_slab(kmalloc_caches, gfpflags, node);
Christoph Lameter81819f02007-05-06 14:49:36 -07002133
2134 BUG_ON(!page);
Christoph Lametera2f92ee2007-08-22 14:01:57 -07002135 if (page_to_nid(page) != node) {
2136 printk(KERN_ERR "SLUB: Unable to allocate memory from "
2137 "node %d\n", node);
2138 printk(KERN_ERR "SLUB: Allocating a useless per node structure "
2139 "in order to be able to continue\n");
2140 }
2141
Christoph Lameter81819f02007-05-06 14:49:36 -07002142 n = page->freelist;
2143 BUG_ON(!n);
2144 page->freelist = get_freepointer(kmalloc_caches, n);
2145 page->inuse++;
2146 kmalloc_caches->node[node] = n;
Christoph Lameter8ab13722007-07-17 04:03:32 -07002147#ifdef CONFIG_SLUB_DEBUG
Christoph Lameterd45f39c2007-07-17 04:03:21 -07002148 init_object(kmalloc_caches, n, 1);
2149 init_tracking(kmalloc_caches, n);
Christoph Lameter8ab13722007-07-17 04:03:32 -07002150#endif
Pekka Enberg5595cff2008-08-05 09:28:47 +03002151 init_kmem_cache_node(n, kmalloc_caches);
Christoph Lameter205ab992008-04-14 19:11:40 +03002152 inc_slabs_node(kmalloc_caches, node, page->objects);
Christoph Lameter6446faa2008-02-15 23:45:26 -08002153
rootba84c732008-01-07 23:20:28 -08002154 /*
2155 * lockdep requires consistent irq usage for each lock
2156 * so even though there cannot be a race this early in
2157 * the boot sequence, we still disable irqs.
2158 */
2159 local_irq_save(flags);
Christoph Lameter7c2e1322008-01-07 23:20:27 -08002160 add_partial(n, page, 0);
rootba84c732008-01-07 23:20:28 -08002161 local_irq_restore(flags);
Christoph Lameter81819f02007-05-06 14:49:36 -07002162}
2163
2164static void free_kmem_cache_nodes(struct kmem_cache *s)
2165{
2166 int node;
2167
Christoph Lameterf64dc582007-10-16 01:25:33 -07002168 for_each_node_state(node, N_NORMAL_MEMORY) {
Christoph Lameter81819f02007-05-06 14:49:36 -07002169 struct kmem_cache_node *n = s->node[node];
2170 if (n && n != &s->local_node)
2171 kmem_cache_free(kmalloc_caches, n);
2172 s->node[node] = NULL;
2173 }
2174}
2175
2176static int init_kmem_cache_nodes(struct kmem_cache *s, gfp_t gfpflags)
2177{
2178 int node;
2179 int local_node;
2180
2181 if (slab_state >= UP)
2182 local_node = page_to_nid(virt_to_page(s));
2183 else
2184 local_node = 0;
2185
Christoph Lameterf64dc582007-10-16 01:25:33 -07002186 for_each_node_state(node, N_NORMAL_MEMORY) {
Christoph Lameter81819f02007-05-06 14:49:36 -07002187 struct kmem_cache_node *n;
2188
2189 if (local_node == node)
2190 n = &s->local_node;
2191 else {
2192 if (slab_state == DOWN) {
David Rientjes0094de92008-11-25 19:14:19 -08002193 early_kmem_cache_node_alloc(gfpflags, node);
Christoph Lameter81819f02007-05-06 14:49:36 -07002194 continue;
2195 }
2196 n = kmem_cache_alloc_node(kmalloc_caches,
2197 gfpflags, node);
2198
2199 if (!n) {
2200 free_kmem_cache_nodes(s);
2201 return 0;
2202 }
2203
2204 }
2205 s->node[node] = n;
Pekka Enberg5595cff2008-08-05 09:28:47 +03002206 init_kmem_cache_node(n, s);
Christoph Lameter81819f02007-05-06 14:49:36 -07002207 }
2208 return 1;
2209}
2210#else
2211static void free_kmem_cache_nodes(struct kmem_cache *s)
2212{
2213}
2214
2215static int init_kmem_cache_nodes(struct kmem_cache *s, gfp_t gfpflags)
2216{
Pekka Enberg5595cff2008-08-05 09:28:47 +03002217 init_kmem_cache_node(&s->local_node, s);
Christoph Lameter81819f02007-05-06 14:49:36 -07002218 return 1;
2219}
2220#endif
2221
David Rientjesc0bdb232009-02-25 09:16:35 +02002222static void set_min_partial(struct kmem_cache *s, unsigned long min)
David Rientjes3b89d7d2009-02-22 17:40:07 -08002223{
2224 if (min < MIN_PARTIAL)
2225 min = MIN_PARTIAL;
2226 else if (min > MAX_PARTIAL)
2227 min = MAX_PARTIAL;
2228 s->min_partial = min;
2229}
2230
Christoph Lameter81819f02007-05-06 14:49:36 -07002231/*
2232 * calculate_sizes() determines the order and the distribution of data within
2233 * a slab object.
2234 */
Christoph Lameter06b285d2008-04-14 19:11:41 +03002235static int calculate_sizes(struct kmem_cache *s, int forced_order)
Christoph Lameter81819f02007-05-06 14:49:36 -07002236{
2237 unsigned long flags = s->flags;
2238 unsigned long size = s->objsize;
2239 unsigned long align = s->align;
Christoph Lameter834f3d12008-04-14 19:11:31 +03002240 int order;
Christoph Lameter81819f02007-05-06 14:49:36 -07002241
2242 /*
Christoph Lameterd8b42bf2008-02-15 23:45:25 -08002243 * Round up object size to the next word boundary. We can only
2244 * place the free pointer at word boundaries and this determines
2245 * the possible location of the free pointer.
2246 */
2247 size = ALIGN(size, sizeof(void *));
2248
2249#ifdef CONFIG_SLUB_DEBUG
2250 /*
Christoph Lameter81819f02007-05-06 14:49:36 -07002251 * Determine if we can poison the object itself. If the user of
2252 * the slab may touch the object after free or before allocation
2253 * then we should never poison the object itself.
2254 */
2255 if ((flags & SLAB_POISON) && !(flags & SLAB_DESTROY_BY_RCU) &&
Christoph Lameterc59def92007-05-16 22:10:50 -07002256 !s->ctor)
Christoph Lameter81819f02007-05-06 14:49:36 -07002257 s->flags |= __OBJECT_POISON;
2258 else
2259 s->flags &= ~__OBJECT_POISON;
2260
Christoph Lameter81819f02007-05-06 14:49:36 -07002261
2262 /*
Christoph Lameter672bba32007-05-09 02:32:39 -07002263 * If we are Redzoning then check if there is some space between the
Christoph Lameter81819f02007-05-06 14:49:36 -07002264 * end of the object and the free pointer. If not then add an
Christoph Lameter672bba32007-05-09 02:32:39 -07002265 * additional word to have some bytes to store Redzone information.
Christoph Lameter81819f02007-05-06 14:49:36 -07002266 */
2267 if ((flags & SLAB_RED_ZONE) && size == s->objsize)
2268 size += sizeof(void *);
Christoph Lameter41ecc552007-05-09 02:32:44 -07002269#endif
Christoph Lameter81819f02007-05-06 14:49:36 -07002270
2271 /*
Christoph Lameter672bba32007-05-09 02:32:39 -07002272 * With that we have determined the number of bytes in actual use
2273 * by the object. This is the potential offset to the free pointer.
Christoph Lameter81819f02007-05-06 14:49:36 -07002274 */
2275 s->inuse = size;
2276
2277 if (((flags & (SLAB_DESTROY_BY_RCU | SLAB_POISON)) ||
Christoph Lameterc59def92007-05-16 22:10:50 -07002278 s->ctor)) {
Christoph Lameter81819f02007-05-06 14:49:36 -07002279 /*
2280 * Relocate free pointer after the object if it is not
2281 * permitted to overwrite the first word of the object on
2282 * kmem_cache_free.
2283 *
2284 * This is the case if we do RCU, have a constructor or
2285 * destructor or are poisoning the objects.
2286 */
2287 s->offset = size;
2288 size += sizeof(void *);
2289 }
2290
Christoph Lameterc12b3c62007-05-23 13:57:31 -07002291#ifdef CONFIG_SLUB_DEBUG
Christoph Lameter81819f02007-05-06 14:49:36 -07002292 if (flags & SLAB_STORE_USER)
2293 /*
2294 * Need to store information about allocs and frees after
2295 * the object.
2296 */
2297 size += 2 * sizeof(struct track);
2298
Christoph Lameterbe7b3fb2007-05-09 02:32:36 -07002299 if (flags & SLAB_RED_ZONE)
Christoph Lameter81819f02007-05-06 14:49:36 -07002300 /*
2301 * Add some empty padding so that we can catch
2302 * overwrites from earlier objects rather than let
2303 * tracking information or the free pointer be
Frederik Schwarzer0211a9c2008-12-29 22:14:56 +01002304 * corrupted if a user writes before the start
Christoph Lameter81819f02007-05-06 14:49:36 -07002305 * of the object.
2306 */
2307 size += sizeof(void *);
Christoph Lameter41ecc552007-05-09 02:32:44 -07002308#endif
Christoph Lameter672bba32007-05-09 02:32:39 -07002309
Christoph Lameter81819f02007-05-06 14:49:36 -07002310 /*
2311 * Determine the alignment based on various parameters that the
Christoph Lameter65c02d42007-05-09 02:32:35 -07002312 * user specified and the dynamic determination of cache line size
2313 * on bootup.
Christoph Lameter81819f02007-05-06 14:49:36 -07002314 */
2315 align = calculate_alignment(flags, align, s->objsize);
2316
2317 /*
2318 * SLUB stores one object immediately after another beginning from
2319 * offset 0. In order to align the objects we have to simply size
2320 * each object to conform to the alignment.
2321 */
2322 size = ALIGN(size, align);
2323 s->size = size;
Christoph Lameter06b285d2008-04-14 19:11:41 +03002324 if (forced_order >= 0)
2325 order = forced_order;
2326 else
2327 order = calculate_order(size);
Christoph Lameter81819f02007-05-06 14:49:36 -07002328
Christoph Lameter834f3d12008-04-14 19:11:31 +03002329 if (order < 0)
Christoph Lameter81819f02007-05-06 14:49:36 -07002330 return 0;
2331
Christoph Lameterb7a49f02008-02-14 14:21:32 -08002332 s->allocflags = 0;
Christoph Lameter834f3d12008-04-14 19:11:31 +03002333 if (order)
Christoph Lameterb7a49f02008-02-14 14:21:32 -08002334 s->allocflags |= __GFP_COMP;
2335
2336 if (s->flags & SLAB_CACHE_DMA)
2337 s->allocflags |= SLUB_DMA;
2338
2339 if (s->flags & SLAB_RECLAIM_ACCOUNT)
2340 s->allocflags |= __GFP_RECLAIMABLE;
2341
Christoph Lameter81819f02007-05-06 14:49:36 -07002342 /*
2343 * Determine the number of objects per slab
2344 */
Christoph Lameter834f3d12008-04-14 19:11:31 +03002345 s->oo = oo_make(order, size);
Christoph Lameter65c33762008-04-14 19:11:40 +03002346 s->min = oo_make(get_order(size), size);
Christoph Lameter205ab992008-04-14 19:11:40 +03002347 if (oo_objects(s->oo) > oo_objects(s->max))
2348 s->max = s->oo;
Christoph Lameter81819f02007-05-06 14:49:36 -07002349
Christoph Lameter834f3d12008-04-14 19:11:31 +03002350 return !!oo_objects(s->oo);
Christoph Lameter81819f02007-05-06 14:49:36 -07002351
2352}
2353
Christoph Lameter81819f02007-05-06 14:49:36 -07002354static int kmem_cache_open(struct kmem_cache *s, gfp_t gfpflags,
2355 const char *name, size_t size,
2356 size_t align, unsigned long flags,
Alexey Dobriyan51cc5062008-07-25 19:45:34 -07002357 void (*ctor)(void *))
Christoph Lameter81819f02007-05-06 14:49:36 -07002358{
2359 memset(s, 0, kmem_size);
2360 s->name = name;
2361 s->ctor = ctor;
Christoph Lameter81819f02007-05-06 14:49:36 -07002362 s->objsize = size;
Christoph Lameter81819f02007-05-06 14:49:36 -07002363 s->align = align;
Christoph Lameterba0268a2007-09-11 15:24:11 -07002364 s->flags = kmem_cache_flags(size, flags, name, ctor);
Christoph Lameter81819f02007-05-06 14:49:36 -07002365
Christoph Lameter06b285d2008-04-14 19:11:41 +03002366 if (!calculate_sizes(s, -1))
Christoph Lameter81819f02007-05-06 14:49:36 -07002367 goto error;
2368
David Rientjes3b89d7d2009-02-22 17:40:07 -08002369 /*
2370 * The larger the object size is, the more pages we want on the partial
2371 * list to avoid pounding the page allocator excessively.
2372 */
David Rientjesc0bdb232009-02-25 09:16:35 +02002373 set_min_partial(s, ilog2(s->size));
Christoph Lameter81819f02007-05-06 14:49:36 -07002374 s->refcount = 1;
2375#ifdef CONFIG_NUMA
Christoph Lametere2cb96b2008-08-19 08:51:22 -05002376 s->remote_node_defrag_ratio = 1000;
Christoph Lameter81819f02007-05-06 14:49:36 -07002377#endif
Christoph Lameterdfb4f092007-10-16 01:26:05 -07002378 if (!init_kmem_cache_nodes(s, gfpflags & ~SLUB_DMA))
2379 goto error;
Christoph Lameter81819f02007-05-06 14:49:36 -07002380
Christoph Lameterdfb4f092007-10-16 01:26:05 -07002381 if (alloc_kmem_cache_cpus(s, gfpflags & ~SLUB_DMA))
Christoph Lameter81819f02007-05-06 14:49:36 -07002382 return 1;
Christoph Lameter4c93c3552007-10-16 01:26:08 -07002383 free_kmem_cache_nodes(s);
Christoph Lameter81819f02007-05-06 14:49:36 -07002384error:
2385 if (flags & SLAB_PANIC)
2386 panic("Cannot create slab %s size=%lu realsize=%u "
2387 "order=%u offset=%u flags=%lx\n",
Christoph Lameter834f3d12008-04-14 19:11:31 +03002388 s->name, (unsigned long)size, s->size, oo_order(s->oo),
Christoph Lameter81819f02007-05-06 14:49:36 -07002389 s->offset, flags);
2390 return 0;
2391}
Christoph Lameter81819f02007-05-06 14:49:36 -07002392
2393/*
2394 * Check if a given pointer is valid
2395 */
2396int kmem_ptr_validate(struct kmem_cache *s, const void *object)
2397{
Pekka Enberg06428782008-01-07 23:20:27 -08002398 struct page *page;
Christoph Lameter81819f02007-05-06 14:49:36 -07002399
2400 page = get_object_page(object);
2401
2402 if (!page || s != page->slab)
2403 /* No slab or wrong slab */
2404 return 0;
2405
Christoph Lameterabcd08a2007-05-09 02:32:37 -07002406 if (!check_valid_pointer(s, page, object))
Christoph Lameter81819f02007-05-06 14:49:36 -07002407 return 0;
2408
2409 /*
2410 * We could also check if the object is on the slabs freelist.
2411 * But this would be too expensive and it seems that the main
Christoph Lameter6446faa2008-02-15 23:45:26 -08002412 * purpose of kmem_ptr_valid() is to check if the object belongs
Christoph Lameter81819f02007-05-06 14:49:36 -07002413 * to a certain slab.
2414 */
2415 return 1;
2416}
2417EXPORT_SYMBOL(kmem_ptr_validate);
2418
2419/*
2420 * Determine the size of a slab object
2421 */
2422unsigned int kmem_cache_size(struct kmem_cache *s)
2423{
2424 return s->objsize;
2425}
2426EXPORT_SYMBOL(kmem_cache_size);
2427
2428const char *kmem_cache_name(struct kmem_cache *s)
2429{
2430 return s->name;
2431}
2432EXPORT_SYMBOL(kmem_cache_name);
2433
Christoph Lameter33b12c32008-04-25 12:22:43 -07002434static void list_slab_objects(struct kmem_cache *s, struct page *page,
2435 const char *text)
Christoph Lameter81819f02007-05-06 14:49:36 -07002436{
Christoph Lameter33b12c32008-04-25 12:22:43 -07002437#ifdef CONFIG_SLUB_DEBUG
2438 void *addr = page_address(page);
2439 void *p;
2440 DECLARE_BITMAP(map, page->objects);
2441
2442 bitmap_zero(map, page->objects);
2443 slab_err(s, page, "%s", text);
2444 slab_lock(page);
2445 for_each_free_object(p, s, page->freelist)
2446 set_bit(slab_index(p, s, addr), map);
2447
2448 for_each_object(p, s, addr, page->objects) {
2449
2450 if (!test_bit(slab_index(p, s, addr), map)) {
2451 printk(KERN_ERR "INFO: Object 0x%p @offset=%tu\n",
2452 p, p - addr);
2453 print_tracking(s, p);
2454 }
2455 }
2456 slab_unlock(page);
2457#endif
2458}
2459
Christoph Lameter81819f02007-05-06 14:49:36 -07002460/*
Christoph Lameter599870b2008-04-23 12:36:52 -07002461 * Attempt to free all partial slabs on a node.
Christoph Lameter81819f02007-05-06 14:49:36 -07002462 */
Christoph Lameter599870b2008-04-23 12:36:52 -07002463static void free_partial(struct kmem_cache *s, struct kmem_cache_node *n)
Christoph Lameter81819f02007-05-06 14:49:36 -07002464{
Christoph Lameter81819f02007-05-06 14:49:36 -07002465 unsigned long flags;
2466 struct page *page, *h;
2467
2468 spin_lock_irqsave(&n->list_lock, flags);
Christoph Lameter33b12c32008-04-25 12:22:43 -07002469 list_for_each_entry_safe(page, h, &n->partial, lru) {
Christoph Lameter81819f02007-05-06 14:49:36 -07002470 if (!page->inuse) {
2471 list_del(&page->lru);
2472 discard_slab(s, page);
Christoph Lameter599870b2008-04-23 12:36:52 -07002473 n->nr_partial--;
Christoph Lameter33b12c32008-04-25 12:22:43 -07002474 } else {
2475 list_slab_objects(s, page,
2476 "Objects remaining on kmem_cache_close()");
Christoph Lameter599870b2008-04-23 12:36:52 -07002477 }
Christoph Lameter33b12c32008-04-25 12:22:43 -07002478 }
Christoph Lameter81819f02007-05-06 14:49:36 -07002479 spin_unlock_irqrestore(&n->list_lock, flags);
Christoph Lameter81819f02007-05-06 14:49:36 -07002480}
2481
2482/*
Christoph Lameter672bba32007-05-09 02:32:39 -07002483 * Release all resources used by a slab cache.
Christoph Lameter81819f02007-05-06 14:49:36 -07002484 */
Christoph Lameter0c710012007-07-17 04:03:24 -07002485static inline int kmem_cache_close(struct kmem_cache *s)
Christoph Lameter81819f02007-05-06 14:49:36 -07002486{
2487 int node;
2488
2489 flush_all(s);
2490
2491 /* Attempt to free all objects */
Christoph Lameter4c93c3552007-10-16 01:26:08 -07002492 free_kmem_cache_cpus(s);
Christoph Lameterf64dc582007-10-16 01:25:33 -07002493 for_each_node_state(node, N_NORMAL_MEMORY) {
Christoph Lameter81819f02007-05-06 14:49:36 -07002494 struct kmem_cache_node *n = get_node(s, node);
2495
Christoph Lameter599870b2008-04-23 12:36:52 -07002496 free_partial(s, n);
2497 if (n->nr_partial || slabs_node(s, node))
Christoph Lameter81819f02007-05-06 14:49:36 -07002498 return 1;
2499 }
2500 free_kmem_cache_nodes(s);
2501 return 0;
2502}
2503
2504/*
2505 * Close a cache and release the kmem_cache structure
2506 * (must be used for caches created using kmem_cache_create)
2507 */
2508void kmem_cache_destroy(struct kmem_cache *s)
2509{
2510 down_write(&slub_lock);
2511 s->refcount--;
2512 if (!s->refcount) {
2513 list_del(&s->list);
Christoph Lametera0e1d1b2007-07-17 04:03:31 -07002514 up_write(&slub_lock);
Pekka Enbergd629d812008-04-23 22:31:08 +03002515 if (kmem_cache_close(s)) {
2516 printk(KERN_ERR "SLUB %s: %s called for cache that "
2517 "still has objects.\n", s->name, __func__);
2518 dump_stack();
2519 }
Christoph Lameter81819f02007-05-06 14:49:36 -07002520 sysfs_slab_remove(s);
Christoph Lametera0e1d1b2007-07-17 04:03:31 -07002521 } else
2522 up_write(&slub_lock);
Christoph Lameter81819f02007-05-06 14:49:36 -07002523}
2524EXPORT_SYMBOL(kmem_cache_destroy);
2525
2526/********************************************************************
2527 * Kmalloc subsystem
2528 *******************************************************************/
2529
Christoph Lameterffadd4d2009-02-17 12:05:07 -05002530struct kmem_cache kmalloc_caches[SLUB_PAGE_SHIFT] __cacheline_aligned;
Christoph Lameter81819f02007-05-06 14:49:36 -07002531EXPORT_SYMBOL(kmalloc_caches);
2532
Christoph Lameter81819f02007-05-06 14:49:36 -07002533static int __init setup_slub_min_order(char *str)
2534{
Pekka Enberg06428782008-01-07 23:20:27 -08002535 get_option(&str, &slub_min_order);
Christoph Lameter81819f02007-05-06 14:49:36 -07002536
2537 return 1;
2538}
2539
2540__setup("slub_min_order=", setup_slub_min_order);
2541
2542static int __init setup_slub_max_order(char *str)
2543{
Pekka Enberg06428782008-01-07 23:20:27 -08002544 get_option(&str, &slub_max_order);
David Rientjes818cf592009-04-23 09:58:22 +03002545 slub_max_order = min(slub_max_order, MAX_ORDER - 1);
Christoph Lameter81819f02007-05-06 14:49:36 -07002546
2547 return 1;
2548}
2549
2550__setup("slub_max_order=", setup_slub_max_order);
2551
2552static int __init setup_slub_min_objects(char *str)
2553{
Pekka Enberg06428782008-01-07 23:20:27 -08002554 get_option(&str, &slub_min_objects);
Christoph Lameter81819f02007-05-06 14:49:36 -07002555
2556 return 1;
2557}
2558
2559__setup("slub_min_objects=", setup_slub_min_objects);
2560
2561static int __init setup_slub_nomerge(char *str)
2562{
2563 slub_nomerge = 1;
2564 return 1;
2565}
2566
2567__setup("slub_nomerge", setup_slub_nomerge);
2568
Christoph Lameter81819f02007-05-06 14:49:36 -07002569static struct kmem_cache *create_kmalloc_cache(struct kmem_cache *s,
2570 const char *name, int size, gfp_t gfp_flags)
2571{
2572 unsigned int flags = 0;
2573
2574 if (gfp_flags & SLUB_DMA)
2575 flags = SLAB_CACHE_DMA;
2576
Pekka Enberg83b519e2009-06-10 19:40:04 +03002577 /*
2578 * This function is called with IRQs disabled during early-boot on
2579 * single CPU so there's no need to take slub_lock here.
2580 */
Christoph Lameter81819f02007-05-06 14:49:36 -07002581 if (!kmem_cache_open(s, gfp_flags, name, size, ARCH_KMALLOC_MINALIGN,
Christoph Lameter319d1e22008-04-14 19:11:41 +03002582 flags, NULL))
Christoph Lameter81819f02007-05-06 14:49:36 -07002583 goto panic;
2584
2585 list_add(&s->list, &slab_caches);
Pekka Enberg83b519e2009-06-10 19:40:04 +03002586
Christoph Lameter81819f02007-05-06 14:49:36 -07002587 if (sysfs_slab_add(s))
2588 goto panic;
2589 return s;
2590
2591panic:
2592 panic("Creation of kmalloc slab %s size=%d failed.\n", name, size);
2593}
2594
Christoph Lameter2e443fd2007-07-17 04:03:24 -07002595#ifdef CONFIG_ZONE_DMA
Christoph Lameterffadd4d2009-02-17 12:05:07 -05002596static struct kmem_cache *kmalloc_caches_dma[SLUB_PAGE_SHIFT];
Christoph Lameter1ceef402007-08-07 15:11:48 -07002597
2598static void sysfs_add_func(struct work_struct *w)
2599{
2600 struct kmem_cache *s;
2601
2602 down_write(&slub_lock);
2603 list_for_each_entry(s, &slab_caches, list) {
2604 if (s->flags & __SYSFS_ADD_DEFERRED) {
2605 s->flags &= ~__SYSFS_ADD_DEFERRED;
2606 sysfs_slab_add(s);
2607 }
2608 }
2609 up_write(&slub_lock);
2610}
2611
2612static DECLARE_WORK(sysfs_add_work, sysfs_add_func);
2613
Christoph Lameter2e443fd2007-07-17 04:03:24 -07002614static noinline struct kmem_cache *dma_kmalloc_cache(int index, gfp_t flags)
2615{
2616 struct kmem_cache *s;
Christoph Lameter2e443fd2007-07-17 04:03:24 -07002617 char *text;
2618 size_t realsize;
2619
2620 s = kmalloc_caches_dma[index];
2621 if (s)
2622 return s;
2623
2624 /* Dynamically create dma cache */
Christoph Lameter1ceef402007-08-07 15:11:48 -07002625 if (flags & __GFP_WAIT)
2626 down_write(&slub_lock);
2627 else {
2628 if (!down_write_trylock(&slub_lock))
2629 goto out;
2630 }
2631
2632 if (kmalloc_caches_dma[index])
2633 goto unlock_out;
Christoph Lameter2e443fd2007-07-17 04:03:24 -07002634
Christoph Lameter7b55f622007-07-17 04:03:27 -07002635 realsize = kmalloc_caches[index].objsize;
Ingo Molnar3adbefe2008-02-05 17:57:39 -08002636 text = kasprintf(flags & ~SLUB_DMA, "kmalloc_dma-%d",
2637 (unsigned int)realsize);
Christoph Lameter1ceef402007-08-07 15:11:48 -07002638 s = kmalloc(kmem_size, flags & ~SLUB_DMA);
2639
2640 if (!s || !text || !kmem_cache_open(s, flags, text,
2641 realsize, ARCH_KMALLOC_MINALIGN,
Vegard Nossum5a896d92008-04-04 00:54:48 +02002642 SLAB_CACHE_DMA|SLAB_NOTRACK|__SYSFS_ADD_DEFERRED,
2643 NULL)) {
Christoph Lameter1ceef402007-08-07 15:11:48 -07002644 kfree(s);
2645 kfree(text);
2646 goto unlock_out;
Christoph Lameterdfce8642007-07-17 04:03:25 -07002647 }
Christoph Lameter1ceef402007-08-07 15:11:48 -07002648
2649 list_add(&s->list, &slab_caches);
2650 kmalloc_caches_dma[index] = s;
2651
2652 schedule_work(&sysfs_add_work);
2653
2654unlock_out:
Christoph Lameterdfce8642007-07-17 04:03:25 -07002655 up_write(&slub_lock);
Christoph Lameter1ceef402007-08-07 15:11:48 -07002656out:
Christoph Lameterdfce8642007-07-17 04:03:25 -07002657 return kmalloc_caches_dma[index];
Christoph Lameter2e443fd2007-07-17 04:03:24 -07002658}
2659#endif
2660
Christoph Lameterf1b26332007-07-17 04:03:26 -07002661/*
2662 * Conversion table for small slabs sizes / 8 to the index in the
2663 * kmalloc array. This is necessary for slabs < 192 since we have non power
2664 * of two cache sizes there. The size of larger slabs can be determined using
2665 * fls.
2666 */
2667static s8 size_index[24] = {
2668 3, /* 8 */
2669 4, /* 16 */
2670 5, /* 24 */
2671 5, /* 32 */
2672 6, /* 40 */
2673 6, /* 48 */
2674 6, /* 56 */
2675 6, /* 64 */
2676 1, /* 72 */
2677 1, /* 80 */
2678 1, /* 88 */
2679 1, /* 96 */
2680 7, /* 104 */
2681 7, /* 112 */
2682 7, /* 120 */
2683 7, /* 128 */
2684 2, /* 136 */
2685 2, /* 144 */
2686 2, /* 152 */
2687 2, /* 160 */
2688 2, /* 168 */
2689 2, /* 176 */
2690 2, /* 184 */
2691 2 /* 192 */
2692};
2693
Christoph Lameter81819f02007-05-06 14:49:36 -07002694static struct kmem_cache *get_slab(size_t size, gfp_t flags)
2695{
Christoph Lameterf1b26332007-07-17 04:03:26 -07002696 int index;
Christoph Lameter81819f02007-05-06 14:49:36 -07002697
Christoph Lameterf1b26332007-07-17 04:03:26 -07002698 if (size <= 192) {
2699 if (!size)
2700 return ZERO_SIZE_PTR;
Christoph Lameter81819f02007-05-06 14:49:36 -07002701
Christoph Lameterf1b26332007-07-17 04:03:26 -07002702 index = size_index[(size - 1) / 8];
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07002703 } else
Christoph Lameterf1b26332007-07-17 04:03:26 -07002704 index = fls(size - 1);
Christoph Lameter81819f02007-05-06 14:49:36 -07002705
2706#ifdef CONFIG_ZONE_DMA
Christoph Lameterf1b26332007-07-17 04:03:26 -07002707 if (unlikely((flags & SLUB_DMA)))
Christoph Lameter2e443fd2007-07-17 04:03:24 -07002708 return dma_kmalloc_cache(index, flags);
Christoph Lameterf1b26332007-07-17 04:03:26 -07002709
Christoph Lameter81819f02007-05-06 14:49:36 -07002710#endif
2711 return &kmalloc_caches[index];
2712}
2713
2714void *__kmalloc(size_t size, gfp_t flags)
2715{
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07002716 struct kmem_cache *s;
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03002717 void *ret;
Christoph Lameter81819f02007-05-06 14:49:36 -07002718
Christoph Lameterffadd4d2009-02-17 12:05:07 -05002719 if (unlikely(size > SLUB_MAX_SIZE))
Pekka Enbergeada35e2008-02-11 22:47:46 +02002720 return kmalloc_large(size, flags);
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07002721
2722 s = get_slab(size, flags);
2723
2724 if (unlikely(ZERO_OR_NULL_PTR(s)))
Christoph Lameter6cb8f912007-07-17 04:03:22 -07002725 return s;
2726
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03002727 ret = slab_alloc(s, flags, -1, _RET_IP_);
2728
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02002729 trace_kmalloc(_RET_IP_, ret, size, s->size, flags);
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03002730
2731 return ret;
Christoph Lameter81819f02007-05-06 14:49:36 -07002732}
2733EXPORT_SYMBOL(__kmalloc);
2734
Christoph Lameterf619cfe2008-03-01 13:56:40 -08002735static void *kmalloc_large_node(size_t size, gfp_t flags, int node)
2736{
2737 struct page *page = alloc_pages_node(node, flags | __GFP_COMP,
2738 get_order(size));
2739
2740 if (page)
2741 return page_address(page);
2742 else
2743 return NULL;
2744}
2745
Christoph Lameter81819f02007-05-06 14:49:36 -07002746#ifdef CONFIG_NUMA
2747void *__kmalloc_node(size_t size, gfp_t flags, int node)
2748{
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07002749 struct kmem_cache *s;
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03002750 void *ret;
Christoph Lameter81819f02007-05-06 14:49:36 -07002751
Ingo Molnar057685c2009-02-20 12:15:30 +01002752 if (unlikely(size > SLUB_MAX_SIZE)) {
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03002753 ret = kmalloc_large_node(size, flags, node);
2754
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02002755 trace_kmalloc_node(_RET_IP_, ret,
2756 size, PAGE_SIZE << get_order(size),
2757 flags, node);
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03002758
2759 return ret;
2760 }
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07002761
2762 s = get_slab(size, flags);
2763
2764 if (unlikely(ZERO_OR_NULL_PTR(s)))
Christoph Lameter6cb8f912007-07-17 04:03:22 -07002765 return s;
2766
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03002767 ret = slab_alloc(s, flags, node, _RET_IP_);
2768
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02002769 trace_kmalloc_node(_RET_IP_, ret, size, s->size, flags, node);
Eduard - Gabriel Munteanu5b882be2008-08-19 20:43:26 +03002770
2771 return ret;
Christoph Lameter81819f02007-05-06 14:49:36 -07002772}
2773EXPORT_SYMBOL(__kmalloc_node);
2774#endif
2775
2776size_t ksize(const void *object)
2777{
Christoph Lameter272c1d22007-06-08 13:46:49 -07002778 struct page *page;
Christoph Lameter81819f02007-05-06 14:49:36 -07002779 struct kmem_cache *s;
2780
Christoph Lameteref8b4522007-10-16 01:24:46 -07002781 if (unlikely(object == ZERO_SIZE_PTR))
Christoph Lameter272c1d22007-06-08 13:46:49 -07002782 return 0;
2783
Vegard Nossum294a80a2007-12-04 23:45:30 -08002784 page = virt_to_head_page(object);
Vegard Nossum294a80a2007-12-04 23:45:30 -08002785
Pekka Enberg76994412008-05-22 19:22:25 +03002786 if (unlikely(!PageSlab(page))) {
2787 WARN_ON(!PageCompound(page));
Vegard Nossum294a80a2007-12-04 23:45:30 -08002788 return PAGE_SIZE << compound_order(page);
Pekka Enberg76994412008-05-22 19:22:25 +03002789 }
Christoph Lameter81819f02007-05-06 14:49:36 -07002790 s = page->slab;
Christoph Lameter81819f02007-05-06 14:49:36 -07002791
Christoph Lameterae20bfd2008-02-15 23:45:25 -08002792#ifdef CONFIG_SLUB_DEBUG
Christoph Lameter81819f02007-05-06 14:49:36 -07002793 /*
2794 * Debugging requires use of the padding between object
2795 * and whatever may come after it.
2796 */
2797 if (s->flags & (SLAB_RED_ZONE | SLAB_POISON))
2798 return s->objsize;
2799
Christoph Lameterae20bfd2008-02-15 23:45:25 -08002800#endif
Christoph Lameter81819f02007-05-06 14:49:36 -07002801 /*
2802 * If we have the need to store the freelist pointer
2803 * back there or track user information then we can
2804 * only use the space before that information.
2805 */
2806 if (s->flags & (SLAB_DESTROY_BY_RCU | SLAB_STORE_USER))
2807 return s->inuse;
Christoph Lameter81819f02007-05-06 14:49:36 -07002808 /*
2809 * Else we can use all the padding etc for the allocation
2810 */
2811 return s->size;
2812}
Kirill A. Shutemovb1aabec2009-02-10 15:21:44 +02002813EXPORT_SYMBOL(ksize);
Christoph Lameter81819f02007-05-06 14:49:36 -07002814
2815void kfree(const void *x)
2816{
Christoph Lameter81819f02007-05-06 14:49:36 -07002817 struct page *page;
Christoph Lameter5bb983b2008-02-07 17:47:41 -08002818 void *object = (void *)x;
Christoph Lameter81819f02007-05-06 14:49:36 -07002819
Pekka Enberg2121db72009-03-25 11:05:57 +02002820 trace_kfree(_RET_IP_, x);
2821
Satyam Sharma2408c552007-10-16 01:24:44 -07002822 if (unlikely(ZERO_OR_NULL_PTR(x)))
Christoph Lameter81819f02007-05-06 14:49:36 -07002823 return;
2824
Christoph Lameterb49af682007-05-06 14:49:41 -07002825 page = virt_to_head_page(x);
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07002826 if (unlikely(!PageSlab(page))) {
Christoph Lameter09375022008-05-28 10:32:22 -07002827 BUG_ON(!PageCompound(page));
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07002828 put_page(page);
2829 return;
2830 }
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03002831 slab_free(page->slab, page, object, _RET_IP_);
Christoph Lameter81819f02007-05-06 14:49:36 -07002832}
2833EXPORT_SYMBOL(kfree);
2834
Christoph Lameter2086d262007-05-06 14:49:46 -07002835/*
Christoph Lameter672bba32007-05-09 02:32:39 -07002836 * kmem_cache_shrink removes empty slabs from the partial lists and sorts
2837 * the remaining slabs by the number of items in use. The slabs with the
2838 * most items in use come first. New allocations will then fill those up
2839 * and thus they can be removed from the partial lists.
2840 *
2841 * The slabs with the least items are placed last. This results in them
2842 * being allocated from last increasing the chance that the last objects
2843 * are freed in them.
Christoph Lameter2086d262007-05-06 14:49:46 -07002844 */
2845int kmem_cache_shrink(struct kmem_cache *s)
2846{
2847 int node;
2848 int i;
2849 struct kmem_cache_node *n;
2850 struct page *page;
2851 struct page *t;
Christoph Lameter205ab992008-04-14 19:11:40 +03002852 int objects = oo_objects(s->max);
Christoph Lameter2086d262007-05-06 14:49:46 -07002853 struct list_head *slabs_by_inuse =
Christoph Lameter834f3d12008-04-14 19:11:31 +03002854 kmalloc(sizeof(struct list_head) * objects, GFP_KERNEL);
Christoph Lameter2086d262007-05-06 14:49:46 -07002855 unsigned long flags;
2856
2857 if (!slabs_by_inuse)
2858 return -ENOMEM;
2859
2860 flush_all(s);
Christoph Lameterf64dc582007-10-16 01:25:33 -07002861 for_each_node_state(node, N_NORMAL_MEMORY) {
Christoph Lameter2086d262007-05-06 14:49:46 -07002862 n = get_node(s, node);
2863
2864 if (!n->nr_partial)
2865 continue;
2866
Christoph Lameter834f3d12008-04-14 19:11:31 +03002867 for (i = 0; i < objects; i++)
Christoph Lameter2086d262007-05-06 14:49:46 -07002868 INIT_LIST_HEAD(slabs_by_inuse + i);
2869
2870 spin_lock_irqsave(&n->list_lock, flags);
2871
2872 /*
Christoph Lameter672bba32007-05-09 02:32:39 -07002873 * Build lists indexed by the items in use in each slab.
Christoph Lameter2086d262007-05-06 14:49:46 -07002874 *
Christoph Lameter672bba32007-05-09 02:32:39 -07002875 * Note that concurrent frees may occur while we hold the
2876 * list_lock. page->inuse here is the upper limit.
Christoph Lameter2086d262007-05-06 14:49:46 -07002877 */
2878 list_for_each_entry_safe(page, t, &n->partial, lru) {
2879 if (!page->inuse && slab_trylock(page)) {
2880 /*
2881 * Must hold slab lock here because slab_free
2882 * may have freed the last object and be
2883 * waiting to release the slab.
2884 */
2885 list_del(&page->lru);
2886 n->nr_partial--;
2887 slab_unlock(page);
2888 discard_slab(s, page);
2889 } else {
Christoph Lameterfcda3d82007-07-30 13:06:46 -07002890 list_move(&page->lru,
2891 slabs_by_inuse + page->inuse);
Christoph Lameter2086d262007-05-06 14:49:46 -07002892 }
2893 }
2894
Christoph Lameter2086d262007-05-06 14:49:46 -07002895 /*
Christoph Lameter672bba32007-05-09 02:32:39 -07002896 * Rebuild the partial list with the slabs filled up most
2897 * first and the least used slabs at the end.
Christoph Lameter2086d262007-05-06 14:49:46 -07002898 */
Christoph Lameter834f3d12008-04-14 19:11:31 +03002899 for (i = objects - 1; i >= 0; i--)
Christoph Lameter2086d262007-05-06 14:49:46 -07002900 list_splice(slabs_by_inuse + i, n->partial.prev);
2901
Christoph Lameter2086d262007-05-06 14:49:46 -07002902 spin_unlock_irqrestore(&n->list_lock, flags);
2903 }
2904
2905 kfree(slabs_by_inuse);
2906 return 0;
2907}
2908EXPORT_SYMBOL(kmem_cache_shrink);
2909
Yasunori Gotob9049e22007-10-21 16:41:37 -07002910#if defined(CONFIG_NUMA) && defined(CONFIG_MEMORY_HOTPLUG)
2911static int slab_mem_going_offline_callback(void *arg)
2912{
2913 struct kmem_cache *s;
2914
2915 down_read(&slub_lock);
2916 list_for_each_entry(s, &slab_caches, list)
2917 kmem_cache_shrink(s);
2918 up_read(&slub_lock);
2919
2920 return 0;
2921}
2922
2923static void slab_mem_offline_callback(void *arg)
2924{
2925 struct kmem_cache_node *n;
2926 struct kmem_cache *s;
2927 struct memory_notify *marg = arg;
2928 int offline_node;
2929
2930 offline_node = marg->status_change_nid;
2931
2932 /*
2933 * If the node still has available memory. we need kmem_cache_node
2934 * for it yet.
2935 */
2936 if (offline_node < 0)
2937 return;
2938
2939 down_read(&slub_lock);
2940 list_for_each_entry(s, &slab_caches, list) {
2941 n = get_node(s, offline_node);
2942 if (n) {
2943 /*
2944 * if n->nr_slabs > 0, slabs still exist on the node
2945 * that is going down. We were unable to free them,
2946 * and offline_pages() function shoudn't call this
2947 * callback. So, we must fail.
2948 */
Christoph Lameter0f389ec2008-04-14 18:53:02 +03002949 BUG_ON(slabs_node(s, offline_node));
Yasunori Gotob9049e22007-10-21 16:41:37 -07002950
2951 s->node[offline_node] = NULL;
2952 kmem_cache_free(kmalloc_caches, n);
2953 }
2954 }
2955 up_read(&slub_lock);
2956}
2957
2958static int slab_mem_going_online_callback(void *arg)
2959{
2960 struct kmem_cache_node *n;
2961 struct kmem_cache *s;
2962 struct memory_notify *marg = arg;
2963 int nid = marg->status_change_nid;
2964 int ret = 0;
2965
2966 /*
2967 * If the node's memory is already available, then kmem_cache_node is
2968 * already created. Nothing to do.
2969 */
2970 if (nid < 0)
2971 return 0;
2972
2973 /*
Christoph Lameter0121c6192008-04-29 16:11:12 -07002974 * We are bringing a node online. No memory is available yet. We must
Yasunori Gotob9049e22007-10-21 16:41:37 -07002975 * allocate a kmem_cache_node structure in order to bring the node
2976 * online.
2977 */
2978 down_read(&slub_lock);
2979 list_for_each_entry(s, &slab_caches, list) {
2980 /*
2981 * XXX: kmem_cache_alloc_node will fallback to other nodes
2982 * since memory is not yet available from the node that
2983 * is brought up.
2984 */
2985 n = kmem_cache_alloc(kmalloc_caches, GFP_KERNEL);
2986 if (!n) {
2987 ret = -ENOMEM;
2988 goto out;
2989 }
Pekka Enberg5595cff2008-08-05 09:28:47 +03002990 init_kmem_cache_node(n, s);
Yasunori Gotob9049e22007-10-21 16:41:37 -07002991 s->node[nid] = n;
2992 }
2993out:
2994 up_read(&slub_lock);
2995 return ret;
2996}
2997
2998static int slab_memory_callback(struct notifier_block *self,
2999 unsigned long action, void *arg)
3000{
3001 int ret = 0;
3002
3003 switch (action) {
3004 case MEM_GOING_ONLINE:
3005 ret = slab_mem_going_online_callback(arg);
3006 break;
3007 case MEM_GOING_OFFLINE:
3008 ret = slab_mem_going_offline_callback(arg);
3009 break;
3010 case MEM_OFFLINE:
3011 case MEM_CANCEL_ONLINE:
3012 slab_mem_offline_callback(arg);
3013 break;
3014 case MEM_ONLINE:
3015 case MEM_CANCEL_OFFLINE:
3016 break;
3017 }
KAMEZAWA Hiroyukidc19f9d2008-12-01 13:13:48 -08003018 if (ret)
3019 ret = notifier_from_errno(ret);
3020 else
3021 ret = NOTIFY_OK;
Yasunori Gotob9049e22007-10-21 16:41:37 -07003022 return ret;
3023}
3024
3025#endif /* CONFIG_MEMORY_HOTPLUG */
3026
Christoph Lameter81819f02007-05-06 14:49:36 -07003027/********************************************************************
3028 * Basic setup of slabs
3029 *******************************************************************/
3030
3031void __init kmem_cache_init(void)
3032{
3033 int i;
Christoph Lameter4b356be2007-06-16 10:16:13 -07003034 int caches = 0;
Christoph Lameter81819f02007-05-06 14:49:36 -07003035
Christoph Lameter4c93c3552007-10-16 01:26:08 -07003036 init_alloc_cpu();
3037
Christoph Lameter81819f02007-05-06 14:49:36 -07003038#ifdef CONFIG_NUMA
3039 /*
3040 * Must first have the slab cache available for the allocations of the
Christoph Lameter672bba32007-05-09 02:32:39 -07003041 * struct kmem_cache_node's. There is special bootstrap code in
Christoph Lameter81819f02007-05-06 14:49:36 -07003042 * kmem_cache_open for slab_state == DOWN.
3043 */
3044 create_kmalloc_cache(&kmalloc_caches[0], "kmem_cache_node",
Pekka Enberg83b519e2009-06-10 19:40:04 +03003045 sizeof(struct kmem_cache_node), GFP_NOWAIT);
Christoph Lameter8ffa6872007-05-31 00:40:51 -07003046 kmalloc_caches[0].refcount = -1;
Christoph Lameter4b356be2007-06-16 10:16:13 -07003047 caches++;
Yasunori Gotob9049e22007-10-21 16:41:37 -07003048
Nadia Derbey0c40ba42008-04-29 01:00:41 -07003049 hotplug_memory_notifier(slab_memory_callback, SLAB_CALLBACK_PRI);
Christoph Lameter81819f02007-05-06 14:49:36 -07003050#endif
3051
3052 /* Able to allocate the per node structures */
3053 slab_state = PARTIAL;
3054
3055 /* Caches that are not of the two-to-the-power-of size */
Christoph Lameter4b356be2007-06-16 10:16:13 -07003056 if (KMALLOC_MIN_SIZE <= 64) {
3057 create_kmalloc_cache(&kmalloc_caches[1],
Pekka Enberg83b519e2009-06-10 19:40:04 +03003058 "kmalloc-96", 96, GFP_NOWAIT);
Christoph Lameter4b356be2007-06-16 10:16:13 -07003059 caches++;
Christoph Lameter4b356be2007-06-16 10:16:13 -07003060 create_kmalloc_cache(&kmalloc_caches[2],
Pekka Enberg83b519e2009-06-10 19:40:04 +03003061 "kmalloc-192", 192, GFP_NOWAIT);
Christoph Lameter4b356be2007-06-16 10:16:13 -07003062 caches++;
3063 }
Christoph Lameter81819f02007-05-06 14:49:36 -07003064
Christoph Lameterffadd4d2009-02-17 12:05:07 -05003065 for (i = KMALLOC_SHIFT_LOW; i < SLUB_PAGE_SHIFT; i++) {
Christoph Lameter81819f02007-05-06 14:49:36 -07003066 create_kmalloc_cache(&kmalloc_caches[i],
Pekka Enberg83b519e2009-06-10 19:40:04 +03003067 "kmalloc", 1 << i, GFP_NOWAIT);
Christoph Lameter4b356be2007-06-16 10:16:13 -07003068 caches++;
3069 }
Christoph Lameter81819f02007-05-06 14:49:36 -07003070
Christoph Lameterf1b26332007-07-17 04:03:26 -07003071
3072 /*
3073 * Patch up the size_index table if we have strange large alignment
3074 * requirements for the kmalloc array. This is only the case for
Christoph Lameter6446faa2008-02-15 23:45:26 -08003075 * MIPS it seems. The standard arches will not generate any code here.
Christoph Lameterf1b26332007-07-17 04:03:26 -07003076 *
3077 * Largest permitted alignment is 256 bytes due to the way we
3078 * handle the index determination for the smaller caches.
3079 *
3080 * Make sure that nothing crazy happens if someone starts tinkering
3081 * around with ARCH_KMALLOC_MINALIGN
3082 */
3083 BUILD_BUG_ON(KMALLOC_MIN_SIZE > 256 ||
3084 (KMALLOC_MIN_SIZE & (KMALLOC_MIN_SIZE - 1)));
3085
Christoph Lameter12ad6842007-07-17 04:03:28 -07003086 for (i = 8; i < KMALLOC_MIN_SIZE; i += 8)
Christoph Lameterf1b26332007-07-17 04:03:26 -07003087 size_index[(i - 1) / 8] = KMALLOC_SHIFT_LOW;
3088
Christoph Lameter41d54d32008-07-03 09:14:26 -05003089 if (KMALLOC_MIN_SIZE == 128) {
3090 /*
3091 * The 192 byte sized cache is not used if the alignment
3092 * is 128 byte. Redirect kmalloc to use the 256 byte cache
3093 * instead.
3094 */
3095 for (i = 128 + 8; i <= 192; i += 8)
3096 size_index[(i - 1) / 8] = 8;
3097 }
3098
Christoph Lameter81819f02007-05-06 14:49:36 -07003099 slab_state = UP;
3100
3101 /* Provide the correct kmalloc names now that the caches are up */
Christoph Lameterffadd4d2009-02-17 12:05:07 -05003102 for (i = KMALLOC_SHIFT_LOW; i < SLUB_PAGE_SHIFT; i++)
Christoph Lameter81819f02007-05-06 14:49:36 -07003103 kmalloc_caches[i]. name =
Pekka Enberg83b519e2009-06-10 19:40:04 +03003104 kasprintf(GFP_NOWAIT, "kmalloc-%d", 1 << i);
Christoph Lameter81819f02007-05-06 14:49:36 -07003105
3106#ifdef CONFIG_SMP
3107 register_cpu_notifier(&slab_notifier);
Christoph Lameter4c93c3552007-10-16 01:26:08 -07003108 kmem_size = offsetof(struct kmem_cache, cpu_slab) +
3109 nr_cpu_ids * sizeof(struct kmem_cache_cpu *);
3110#else
3111 kmem_size = sizeof(struct kmem_cache);
Christoph Lameter81819f02007-05-06 14:49:36 -07003112#endif
3113
Ingo Molnar3adbefe2008-02-05 17:57:39 -08003114 printk(KERN_INFO
3115 "SLUB: Genslabs=%d, HWalign=%d, Order=%d-%d, MinObjects=%d,"
Christoph Lameter4b356be2007-06-16 10:16:13 -07003116 " CPUs=%d, Nodes=%d\n",
3117 caches, cache_line_size(),
Christoph Lameter81819f02007-05-06 14:49:36 -07003118 slub_min_order, slub_max_order, slub_min_objects,
3119 nr_cpu_ids, nr_node_ids);
3120}
3121
3122/*
3123 * Find a mergeable slab cache
3124 */
3125static int slab_unmergeable(struct kmem_cache *s)
3126{
3127 if (slub_nomerge || (s->flags & SLUB_NEVER_MERGE))
3128 return 1;
3129
Christoph Lameterc59def92007-05-16 22:10:50 -07003130 if (s->ctor)
Christoph Lameter81819f02007-05-06 14:49:36 -07003131 return 1;
3132
Christoph Lameter8ffa6872007-05-31 00:40:51 -07003133 /*
3134 * We may have set a slab to be unmergeable during bootstrap.
3135 */
3136 if (s->refcount < 0)
3137 return 1;
3138
Christoph Lameter81819f02007-05-06 14:49:36 -07003139 return 0;
3140}
3141
3142static struct kmem_cache *find_mergeable(size_t size,
Christoph Lameterba0268a2007-09-11 15:24:11 -07003143 size_t align, unsigned long flags, const char *name,
Alexey Dobriyan51cc5062008-07-25 19:45:34 -07003144 void (*ctor)(void *))
Christoph Lameter81819f02007-05-06 14:49:36 -07003145{
Christoph Lameter5b95a4ac2007-07-17 04:03:19 -07003146 struct kmem_cache *s;
Christoph Lameter81819f02007-05-06 14:49:36 -07003147
3148 if (slub_nomerge || (flags & SLUB_NEVER_MERGE))
3149 return NULL;
3150
Christoph Lameterc59def92007-05-16 22:10:50 -07003151 if (ctor)
Christoph Lameter81819f02007-05-06 14:49:36 -07003152 return NULL;
3153
3154 size = ALIGN(size, sizeof(void *));
3155 align = calculate_alignment(flags, align, size);
3156 size = ALIGN(size, align);
Christoph Lameterba0268a2007-09-11 15:24:11 -07003157 flags = kmem_cache_flags(size, flags, name, NULL);
Christoph Lameter81819f02007-05-06 14:49:36 -07003158
Christoph Lameter5b95a4ac2007-07-17 04:03:19 -07003159 list_for_each_entry(s, &slab_caches, list) {
Christoph Lameter81819f02007-05-06 14:49:36 -07003160 if (slab_unmergeable(s))
3161 continue;
3162
3163 if (size > s->size)
3164 continue;
3165
Christoph Lameterba0268a2007-09-11 15:24:11 -07003166 if ((flags & SLUB_MERGE_SAME) != (s->flags & SLUB_MERGE_SAME))
Christoph Lameter81819f02007-05-06 14:49:36 -07003167 continue;
3168 /*
3169 * Check if alignment is compatible.
3170 * Courtesy of Adrian Drzewiecki
3171 */
Pekka Enberg06428782008-01-07 23:20:27 -08003172 if ((s->size & ~(align - 1)) != s->size)
Christoph Lameter81819f02007-05-06 14:49:36 -07003173 continue;
3174
3175 if (s->size - size >= sizeof(void *))
3176 continue;
3177
3178 return s;
3179 }
3180 return NULL;
3181}
3182
3183struct kmem_cache *kmem_cache_create(const char *name, size_t size,
Alexey Dobriyan51cc5062008-07-25 19:45:34 -07003184 size_t align, unsigned long flags, void (*ctor)(void *))
Christoph Lameter81819f02007-05-06 14:49:36 -07003185{
3186 struct kmem_cache *s;
3187
3188 down_write(&slub_lock);
Christoph Lameterba0268a2007-09-11 15:24:11 -07003189 s = find_mergeable(size, align, flags, name, ctor);
Christoph Lameter81819f02007-05-06 14:49:36 -07003190 if (s) {
Christoph Lameter42a9fdb2007-10-16 01:26:09 -07003191 int cpu;
3192
Christoph Lameter81819f02007-05-06 14:49:36 -07003193 s->refcount++;
3194 /*
3195 * Adjust the object sizes so that we clear
3196 * the complete object on kzalloc.
3197 */
3198 s->objsize = max(s->objsize, (int)size);
Christoph Lameter42a9fdb2007-10-16 01:26:09 -07003199
3200 /*
3201 * And then we need to update the object size in the
3202 * per cpu structures
3203 */
3204 for_each_online_cpu(cpu)
3205 get_cpu_slab(s, cpu)->objsize = s->objsize;
Christoph Lameter6446faa2008-02-15 23:45:26 -08003206
Christoph Lameter81819f02007-05-06 14:49:36 -07003207 s->inuse = max_t(int, s->inuse, ALIGN(size, sizeof(void *)));
Christoph Lametera0e1d1b2007-07-17 04:03:31 -07003208 up_write(&slub_lock);
Christoph Lameter6446faa2008-02-15 23:45:26 -08003209
David Rientjes7b8f3b62008-12-17 22:09:46 -08003210 if (sysfs_slab_alias(s, name)) {
3211 down_write(&slub_lock);
3212 s->refcount--;
3213 up_write(&slub_lock);
Christoph Lameter81819f02007-05-06 14:49:36 -07003214 goto err;
David Rientjes7b8f3b62008-12-17 22:09:46 -08003215 }
Christoph Lametera0e1d1b2007-07-17 04:03:31 -07003216 return s;
3217 }
Christoph Lameter6446faa2008-02-15 23:45:26 -08003218
Christoph Lametera0e1d1b2007-07-17 04:03:31 -07003219 s = kmalloc(kmem_size, GFP_KERNEL);
3220 if (s) {
3221 if (kmem_cache_open(s, GFP_KERNEL, name,
Christoph Lameterc59def92007-05-16 22:10:50 -07003222 size, align, flags, ctor)) {
Christoph Lameter81819f02007-05-06 14:49:36 -07003223 list_add(&s->list, &slab_caches);
Christoph Lametera0e1d1b2007-07-17 04:03:31 -07003224 up_write(&slub_lock);
David Rientjes7b8f3b62008-12-17 22:09:46 -08003225 if (sysfs_slab_add(s)) {
3226 down_write(&slub_lock);
3227 list_del(&s->list);
3228 up_write(&slub_lock);
3229 kfree(s);
Christoph Lametera0e1d1b2007-07-17 04:03:31 -07003230 goto err;
David Rientjes7b8f3b62008-12-17 22:09:46 -08003231 }
Christoph Lametera0e1d1b2007-07-17 04:03:31 -07003232 return s;
3233 }
3234 kfree(s);
Christoph Lameter81819f02007-05-06 14:49:36 -07003235 }
3236 up_write(&slub_lock);
Christoph Lameter81819f02007-05-06 14:49:36 -07003237
3238err:
Christoph Lameter81819f02007-05-06 14:49:36 -07003239 if (flags & SLAB_PANIC)
3240 panic("Cannot create slabcache %s\n", name);
3241 else
3242 s = NULL;
3243 return s;
3244}
3245EXPORT_SYMBOL(kmem_cache_create);
3246
Christoph Lameter81819f02007-05-06 14:49:36 -07003247#ifdef CONFIG_SMP
Christoph Lameter27390bc2007-06-01 00:47:09 -07003248/*
Christoph Lameter672bba32007-05-09 02:32:39 -07003249 * Use the cpu notifier to insure that the cpu slabs are flushed when
3250 * necessary.
Christoph Lameter81819f02007-05-06 14:49:36 -07003251 */
3252static int __cpuinit slab_cpuup_callback(struct notifier_block *nfb,
3253 unsigned long action, void *hcpu)
3254{
3255 long cpu = (long)hcpu;
Christoph Lameter5b95a4ac2007-07-17 04:03:19 -07003256 struct kmem_cache *s;
3257 unsigned long flags;
Christoph Lameter81819f02007-05-06 14:49:36 -07003258
3259 switch (action) {
Christoph Lameter4c93c3552007-10-16 01:26:08 -07003260 case CPU_UP_PREPARE:
3261 case CPU_UP_PREPARE_FROZEN:
3262 init_alloc_cpu_cpu(cpu);
3263 down_read(&slub_lock);
3264 list_for_each_entry(s, &slab_caches, list)
3265 s->cpu_slab[cpu] = alloc_kmem_cache_cpu(s, cpu,
3266 GFP_KERNEL);
3267 up_read(&slub_lock);
3268 break;
3269
Christoph Lameter81819f02007-05-06 14:49:36 -07003270 case CPU_UP_CANCELED:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07003271 case CPU_UP_CANCELED_FROZEN:
Christoph Lameter81819f02007-05-06 14:49:36 -07003272 case CPU_DEAD:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07003273 case CPU_DEAD_FROZEN:
Christoph Lameter5b95a4ac2007-07-17 04:03:19 -07003274 down_read(&slub_lock);
3275 list_for_each_entry(s, &slab_caches, list) {
Christoph Lameter4c93c3552007-10-16 01:26:08 -07003276 struct kmem_cache_cpu *c = get_cpu_slab(s, cpu);
3277
Christoph Lameter5b95a4ac2007-07-17 04:03:19 -07003278 local_irq_save(flags);
3279 __flush_cpu_slab(s, cpu);
3280 local_irq_restore(flags);
Christoph Lameter4c93c3552007-10-16 01:26:08 -07003281 free_kmem_cache_cpu(c, cpu);
3282 s->cpu_slab[cpu] = NULL;
Christoph Lameter5b95a4ac2007-07-17 04:03:19 -07003283 }
3284 up_read(&slub_lock);
Christoph Lameter81819f02007-05-06 14:49:36 -07003285 break;
3286 default:
3287 break;
3288 }
3289 return NOTIFY_OK;
3290}
3291
Pekka Enberg06428782008-01-07 23:20:27 -08003292static struct notifier_block __cpuinitdata slab_notifier = {
Ingo Molnar3adbefe2008-02-05 17:57:39 -08003293 .notifier_call = slab_cpuup_callback
Pekka Enberg06428782008-01-07 23:20:27 -08003294};
Christoph Lameter81819f02007-05-06 14:49:36 -07003295
3296#endif
3297
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03003298void *__kmalloc_track_caller(size_t size, gfp_t gfpflags, unsigned long caller)
Christoph Lameter81819f02007-05-06 14:49:36 -07003299{
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07003300 struct kmem_cache *s;
Eduard - Gabriel Munteanu94b528d2008-08-24 20:49:35 +03003301 void *ret;
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07003302
Christoph Lameterffadd4d2009-02-17 12:05:07 -05003303 if (unlikely(size > SLUB_MAX_SIZE))
Pekka Enbergeada35e2008-02-11 22:47:46 +02003304 return kmalloc_large(size, gfpflags);
3305
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07003306 s = get_slab(size, gfpflags);
Christoph Lameter81819f02007-05-06 14:49:36 -07003307
Satyam Sharma2408c552007-10-16 01:24:44 -07003308 if (unlikely(ZERO_OR_NULL_PTR(s)))
Christoph Lameter6cb8f912007-07-17 04:03:22 -07003309 return s;
Christoph Lameter81819f02007-05-06 14:49:36 -07003310
Eduard - Gabriel Munteanu94b528d2008-08-24 20:49:35 +03003311 ret = slab_alloc(s, gfpflags, -1, caller);
3312
3313 /* Honor the call site pointer we recieved. */
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02003314 trace_kmalloc(caller, ret, size, s->size, gfpflags);
Eduard - Gabriel Munteanu94b528d2008-08-24 20:49:35 +03003315
3316 return ret;
Christoph Lameter81819f02007-05-06 14:49:36 -07003317}
3318
3319void *__kmalloc_node_track_caller(size_t size, gfp_t gfpflags,
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03003320 int node, unsigned long caller)
Christoph Lameter81819f02007-05-06 14:49:36 -07003321{
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07003322 struct kmem_cache *s;
Eduard - Gabriel Munteanu94b528d2008-08-24 20:49:35 +03003323 void *ret;
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07003324
Christoph Lameterffadd4d2009-02-17 12:05:07 -05003325 if (unlikely(size > SLUB_MAX_SIZE))
Christoph Lameterf619cfe2008-03-01 13:56:40 -08003326 return kmalloc_large_node(size, gfpflags, node);
Pekka Enbergeada35e2008-02-11 22:47:46 +02003327
Christoph Lameteraadb4bc2007-10-16 01:24:38 -07003328 s = get_slab(size, gfpflags);
Christoph Lameter81819f02007-05-06 14:49:36 -07003329
Satyam Sharma2408c552007-10-16 01:24:44 -07003330 if (unlikely(ZERO_OR_NULL_PTR(s)))
Christoph Lameter6cb8f912007-07-17 04:03:22 -07003331 return s;
Christoph Lameter81819f02007-05-06 14:49:36 -07003332
Eduard - Gabriel Munteanu94b528d2008-08-24 20:49:35 +03003333 ret = slab_alloc(s, gfpflags, node, caller);
3334
3335 /* Honor the call site pointer we recieved. */
Eduard - Gabriel Munteanuca2b84cb2009-03-23 15:12:24 +02003336 trace_kmalloc_node(caller, ret, size, s->size, gfpflags, node);
Eduard - Gabriel Munteanu94b528d2008-08-24 20:49:35 +03003337
3338 return ret;
Christoph Lameter81819f02007-05-06 14:49:36 -07003339}
3340
Christoph Lameterf6acb632008-04-29 16:16:06 -07003341#ifdef CONFIG_SLUB_DEBUG
Christoph Lameter205ab992008-04-14 19:11:40 +03003342static unsigned long count_partial(struct kmem_cache_node *n,
3343 int (*get_count)(struct page *))
Christoph Lameter5b06c8532008-04-14 18:51:34 +03003344{
3345 unsigned long flags;
3346 unsigned long x = 0;
3347 struct page *page;
3348
3349 spin_lock_irqsave(&n->list_lock, flags);
3350 list_for_each_entry(page, &n->partial, lru)
Christoph Lameter205ab992008-04-14 19:11:40 +03003351 x += get_count(page);
Christoph Lameter5b06c8532008-04-14 18:51:34 +03003352 spin_unlock_irqrestore(&n->list_lock, flags);
3353 return x;
3354}
Christoph Lameter205ab992008-04-14 19:11:40 +03003355
3356static int count_inuse(struct page *page)
3357{
3358 return page->inuse;
3359}
3360
3361static int count_total(struct page *page)
3362{
3363 return page->objects;
3364}
3365
3366static int count_free(struct page *page)
3367{
3368 return page->objects - page->inuse;
3369}
Christoph Lameter5b06c8532008-04-14 18:51:34 +03003370
Christoph Lameter434e2452007-07-17 04:03:30 -07003371static int validate_slab(struct kmem_cache *s, struct page *page,
3372 unsigned long *map)
Christoph Lameter53e15af2007-05-06 14:49:43 -07003373{
3374 void *p;
Christoph Lametera973e9d2008-03-01 13:40:44 -08003375 void *addr = page_address(page);
Christoph Lameter53e15af2007-05-06 14:49:43 -07003376
3377 if (!check_slab(s, page) ||
3378 !on_freelist(s, page, NULL))
3379 return 0;
3380
3381 /* Now we know that a valid freelist exists */
Christoph Lameter39b26462008-04-14 19:11:30 +03003382 bitmap_zero(map, page->objects);
Christoph Lameter53e15af2007-05-06 14:49:43 -07003383
Christoph Lameter7656c722007-05-09 02:32:40 -07003384 for_each_free_object(p, s, page->freelist) {
3385 set_bit(slab_index(p, s, addr), map);
Christoph Lameter53e15af2007-05-06 14:49:43 -07003386 if (!check_object(s, page, p, 0))
3387 return 0;
3388 }
3389
Christoph Lameter224a88b2008-04-14 19:11:31 +03003390 for_each_object(p, s, addr, page->objects)
Christoph Lameter7656c722007-05-09 02:32:40 -07003391 if (!test_bit(slab_index(p, s, addr), map))
Christoph Lameter53e15af2007-05-06 14:49:43 -07003392 if (!check_object(s, page, p, 1))
3393 return 0;
3394 return 1;
3395}
3396
Christoph Lameter434e2452007-07-17 04:03:30 -07003397static void validate_slab_slab(struct kmem_cache *s, struct page *page,
3398 unsigned long *map)
Christoph Lameter53e15af2007-05-06 14:49:43 -07003399{
3400 if (slab_trylock(page)) {
Christoph Lameter434e2452007-07-17 04:03:30 -07003401 validate_slab(s, page, map);
Christoph Lameter53e15af2007-05-06 14:49:43 -07003402 slab_unlock(page);
3403 } else
3404 printk(KERN_INFO "SLUB %s: Skipped busy slab 0x%p\n",
3405 s->name, page);
3406
3407 if (s->flags & DEBUG_DEFAULT_FLAGS) {
Andy Whitcroft8a380822008-07-23 21:27:18 -07003408 if (!PageSlubDebug(page))
3409 printk(KERN_ERR "SLUB %s: SlubDebug not set "
Christoph Lameter53e15af2007-05-06 14:49:43 -07003410 "on slab 0x%p\n", s->name, page);
3411 } else {
Andy Whitcroft8a380822008-07-23 21:27:18 -07003412 if (PageSlubDebug(page))
3413 printk(KERN_ERR "SLUB %s: SlubDebug set on "
Christoph Lameter53e15af2007-05-06 14:49:43 -07003414 "slab 0x%p\n", s->name, page);
3415 }
3416}
3417
Christoph Lameter434e2452007-07-17 04:03:30 -07003418static int validate_slab_node(struct kmem_cache *s,
3419 struct kmem_cache_node *n, unsigned long *map)
Christoph Lameter53e15af2007-05-06 14:49:43 -07003420{
3421 unsigned long count = 0;
3422 struct page *page;
3423 unsigned long flags;
3424
3425 spin_lock_irqsave(&n->list_lock, flags);
3426
3427 list_for_each_entry(page, &n->partial, lru) {
Christoph Lameter434e2452007-07-17 04:03:30 -07003428 validate_slab_slab(s, page, map);
Christoph Lameter53e15af2007-05-06 14:49:43 -07003429 count++;
3430 }
3431 if (count != n->nr_partial)
3432 printk(KERN_ERR "SLUB %s: %ld partial slabs counted but "
3433 "counter=%ld\n", s->name, count, n->nr_partial);
3434
3435 if (!(s->flags & SLAB_STORE_USER))
3436 goto out;
3437
3438 list_for_each_entry(page, &n->full, lru) {
Christoph Lameter434e2452007-07-17 04:03:30 -07003439 validate_slab_slab(s, page, map);
Christoph Lameter53e15af2007-05-06 14:49:43 -07003440 count++;
3441 }
3442 if (count != atomic_long_read(&n->nr_slabs))
3443 printk(KERN_ERR "SLUB: %s %ld slabs counted but "
3444 "counter=%ld\n", s->name, count,
3445 atomic_long_read(&n->nr_slabs));
3446
3447out:
3448 spin_unlock_irqrestore(&n->list_lock, flags);
3449 return count;
3450}
3451
Christoph Lameter434e2452007-07-17 04:03:30 -07003452static long validate_slab_cache(struct kmem_cache *s)
Christoph Lameter53e15af2007-05-06 14:49:43 -07003453{
3454 int node;
3455 unsigned long count = 0;
Christoph Lameter205ab992008-04-14 19:11:40 +03003456 unsigned long *map = kmalloc(BITS_TO_LONGS(oo_objects(s->max)) *
Christoph Lameter434e2452007-07-17 04:03:30 -07003457 sizeof(unsigned long), GFP_KERNEL);
3458
3459 if (!map)
3460 return -ENOMEM;
Christoph Lameter53e15af2007-05-06 14:49:43 -07003461
3462 flush_all(s);
Christoph Lameterf64dc582007-10-16 01:25:33 -07003463 for_each_node_state(node, N_NORMAL_MEMORY) {
Christoph Lameter53e15af2007-05-06 14:49:43 -07003464 struct kmem_cache_node *n = get_node(s, node);
3465
Christoph Lameter434e2452007-07-17 04:03:30 -07003466 count += validate_slab_node(s, n, map);
Christoph Lameter53e15af2007-05-06 14:49:43 -07003467 }
Christoph Lameter434e2452007-07-17 04:03:30 -07003468 kfree(map);
Christoph Lameter53e15af2007-05-06 14:49:43 -07003469 return count;
3470}
3471
Christoph Lameterb3459702007-05-09 02:32:41 -07003472#ifdef SLUB_RESILIENCY_TEST
3473static void resiliency_test(void)
3474{
3475 u8 *p;
3476
3477 printk(KERN_ERR "SLUB resiliency testing\n");
3478 printk(KERN_ERR "-----------------------\n");
3479 printk(KERN_ERR "A. Corruption after allocation\n");
3480
3481 p = kzalloc(16, GFP_KERNEL);
3482 p[16] = 0x12;
3483 printk(KERN_ERR "\n1. kmalloc-16: Clobber Redzone/next pointer"
3484 " 0x12->0x%p\n\n", p + 16);
3485
3486 validate_slab_cache(kmalloc_caches + 4);
3487
3488 /* Hmmm... The next two are dangerous */
3489 p = kzalloc(32, GFP_KERNEL);
3490 p[32 + sizeof(void *)] = 0x34;
3491 printk(KERN_ERR "\n2. kmalloc-32: Clobber next pointer/next slab"
Ingo Molnar3adbefe2008-02-05 17:57:39 -08003492 " 0x34 -> -0x%p\n", p);
3493 printk(KERN_ERR
3494 "If allocated object is overwritten then not detectable\n\n");
Christoph Lameterb3459702007-05-09 02:32:41 -07003495
3496 validate_slab_cache(kmalloc_caches + 5);
3497 p = kzalloc(64, GFP_KERNEL);
3498 p += 64 + (get_cycles() & 0xff) * sizeof(void *);
3499 *p = 0x56;
3500 printk(KERN_ERR "\n3. kmalloc-64: corrupting random byte 0x56->0x%p\n",
3501 p);
Ingo Molnar3adbefe2008-02-05 17:57:39 -08003502 printk(KERN_ERR
3503 "If allocated object is overwritten then not detectable\n\n");
Christoph Lameterb3459702007-05-09 02:32:41 -07003504 validate_slab_cache(kmalloc_caches + 6);
3505
3506 printk(KERN_ERR "\nB. Corruption after free\n");
3507 p = kzalloc(128, GFP_KERNEL);
3508 kfree(p);
3509 *p = 0x78;
3510 printk(KERN_ERR "1. kmalloc-128: Clobber first word 0x78->0x%p\n\n", p);
3511 validate_slab_cache(kmalloc_caches + 7);
3512
3513 p = kzalloc(256, GFP_KERNEL);
3514 kfree(p);
3515 p[50] = 0x9a;
Ingo Molnar3adbefe2008-02-05 17:57:39 -08003516 printk(KERN_ERR "\n2. kmalloc-256: Clobber 50th byte 0x9a->0x%p\n\n",
3517 p);
Christoph Lameterb3459702007-05-09 02:32:41 -07003518 validate_slab_cache(kmalloc_caches + 8);
3519
3520 p = kzalloc(512, GFP_KERNEL);
3521 kfree(p);
3522 p[512] = 0xab;
3523 printk(KERN_ERR "\n3. kmalloc-512: Clobber redzone 0xab->0x%p\n\n", p);
3524 validate_slab_cache(kmalloc_caches + 9);
3525}
3526#else
3527static void resiliency_test(void) {};
3528#endif
3529
Christoph Lameter88a420e2007-05-06 14:49:45 -07003530/*
Christoph Lameter672bba32007-05-09 02:32:39 -07003531 * Generate lists of code addresses where slabcache objects are allocated
Christoph Lameter88a420e2007-05-06 14:49:45 -07003532 * and freed.
3533 */
3534
3535struct location {
3536 unsigned long count;
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03003537 unsigned long addr;
Christoph Lameter45edfa52007-05-09 02:32:45 -07003538 long long sum_time;
3539 long min_time;
3540 long max_time;
3541 long min_pid;
3542 long max_pid;
Rusty Russell174596a2009-01-01 10:12:29 +10303543 DECLARE_BITMAP(cpus, NR_CPUS);
Christoph Lameter45edfa52007-05-09 02:32:45 -07003544 nodemask_t nodes;
Christoph Lameter88a420e2007-05-06 14:49:45 -07003545};
3546
3547struct loc_track {
3548 unsigned long max;
3549 unsigned long count;
3550 struct location *loc;
3551};
3552
3553static void free_loc_track(struct loc_track *t)
3554{
3555 if (t->max)
3556 free_pages((unsigned long)t->loc,
3557 get_order(sizeof(struct location) * t->max));
3558}
3559
Christoph Lameter68dff6a2007-07-17 04:03:20 -07003560static int alloc_loc_track(struct loc_track *t, unsigned long max, gfp_t flags)
Christoph Lameter88a420e2007-05-06 14:49:45 -07003561{
3562 struct location *l;
3563 int order;
3564
Christoph Lameter88a420e2007-05-06 14:49:45 -07003565 order = get_order(sizeof(struct location) * max);
3566
Christoph Lameter68dff6a2007-07-17 04:03:20 -07003567 l = (void *)__get_free_pages(flags, order);
Christoph Lameter88a420e2007-05-06 14:49:45 -07003568 if (!l)
3569 return 0;
3570
3571 if (t->count) {
3572 memcpy(l, t->loc, sizeof(struct location) * t->count);
3573 free_loc_track(t);
3574 }
3575 t->max = max;
3576 t->loc = l;
3577 return 1;
3578}
3579
3580static int add_location(struct loc_track *t, struct kmem_cache *s,
Christoph Lameter45edfa52007-05-09 02:32:45 -07003581 const struct track *track)
Christoph Lameter88a420e2007-05-06 14:49:45 -07003582{
3583 long start, end, pos;
3584 struct location *l;
Eduard - Gabriel Munteanuce71e272008-08-19 20:43:25 +03003585 unsigned long caddr;
Christoph Lameter45edfa52007-05-09 02:32:45 -07003586 unsigned long age = jiffies - track->when;
Christoph Lameter88a420e2007-05-06 14:49:45 -07003587
3588 start = -1;
3589 end = t->count;
3590
3591 for ( ; ; ) {
3592 pos = start + (end - start + 1) / 2;
3593
3594 /*
3595 * There is nothing at "end". If we end up there
3596 * we need to add something to before end.
3597 */
3598 if (pos == end)
3599 break;
3600
3601 caddr = t->loc[pos].addr;
Christoph Lameter45edfa52007-05-09 02:32:45 -07003602 if (track->addr == caddr) {
3603
3604 l = &t->loc[pos];
3605 l->count++;
3606 if (track->when) {
3607 l->sum_time += age;
3608 if (age < l->min_time)
3609 l->min_time = age;
3610 if (age > l->max_time)
3611 l->max_time = age;
3612
3613 if (track->pid < l->min_pid)
3614 l->min_pid = track->pid;
3615 if (track->pid > l->max_pid)
3616 l->max_pid = track->pid;
3617
Rusty Russell174596a2009-01-01 10:12:29 +10303618 cpumask_set_cpu(track->cpu,
3619 to_cpumask(l->cpus));
Christoph Lameter45edfa52007-05-09 02:32:45 -07003620 }
3621 node_set(page_to_nid(virt_to_page(track)), l->nodes);
Christoph Lameter88a420e2007-05-06 14:49:45 -07003622 return 1;
3623 }
3624
Christoph Lameter45edfa52007-05-09 02:32:45 -07003625 if (track->addr < caddr)
Christoph Lameter88a420e2007-05-06 14:49:45 -07003626 end = pos;
3627 else
3628 start = pos;
3629 }
3630
3631 /*
Christoph Lameter672bba32007-05-09 02:32:39 -07003632 * Not found. Insert new tracking element.
Christoph Lameter88a420e2007-05-06 14:49:45 -07003633 */
Christoph Lameter68dff6a2007-07-17 04:03:20 -07003634 if (t->count >= t->max && !alloc_loc_track(t, 2 * t->max, GFP_ATOMIC))
Christoph Lameter88a420e2007-05-06 14:49:45 -07003635 return 0;
3636
3637 l = t->loc + pos;
3638 if (pos < t->count)
3639 memmove(l + 1, l,
3640 (t->count - pos) * sizeof(struct location));
3641 t->count++;
3642 l->count = 1;
Christoph Lameter45edfa52007-05-09 02:32:45 -07003643 l->addr = track->addr;
3644 l->sum_time = age;
3645 l->min_time = age;
3646 l->max_time = age;
3647 l->min_pid = track->pid;
3648 l->max_pid = track->pid;
Rusty Russell174596a2009-01-01 10:12:29 +10303649 cpumask_clear(to_cpumask(l->cpus));
3650 cpumask_set_cpu(track->cpu, to_cpumask(l->cpus));
Christoph Lameter45edfa52007-05-09 02:32:45 -07003651 nodes_clear(l->nodes);
3652 node_set(page_to_nid(virt_to_page(track)), l->nodes);
Christoph Lameter88a420e2007-05-06 14:49:45 -07003653 return 1;
3654}
3655
3656static void process_slab(struct loc_track *t, struct kmem_cache *s,
3657 struct page *page, enum track_item alloc)
3658{
Christoph Lametera973e9d2008-03-01 13:40:44 -08003659 void *addr = page_address(page);
Christoph Lameter39b26462008-04-14 19:11:30 +03003660 DECLARE_BITMAP(map, page->objects);
Christoph Lameter88a420e2007-05-06 14:49:45 -07003661 void *p;
3662
Christoph Lameter39b26462008-04-14 19:11:30 +03003663 bitmap_zero(map, page->objects);
Christoph Lameter7656c722007-05-09 02:32:40 -07003664 for_each_free_object(p, s, page->freelist)
3665 set_bit(slab_index(p, s, addr), map);
Christoph Lameter88a420e2007-05-06 14:49:45 -07003666
Christoph Lameter224a88b2008-04-14 19:11:31 +03003667 for_each_object(p, s, addr, page->objects)
Christoph Lameter45edfa52007-05-09 02:32:45 -07003668 if (!test_bit(slab_index(p, s, addr), map))
3669 add_location(t, s, get_track(s, p, alloc));
Christoph Lameter88a420e2007-05-06 14:49:45 -07003670}
3671
3672static int list_locations(struct kmem_cache *s, char *buf,
3673 enum track_item alloc)
3674{
Harvey Harrisone374d482008-01-31 15:20:50 -08003675 int len = 0;
Christoph Lameter88a420e2007-05-06 14:49:45 -07003676 unsigned long i;
Christoph Lameter68dff6a2007-07-17 04:03:20 -07003677 struct loc_track t = { 0, 0, NULL };
Christoph Lameter88a420e2007-05-06 14:49:45 -07003678 int node;
3679
Christoph Lameter68dff6a2007-07-17 04:03:20 -07003680 if (!alloc_loc_track(&t, PAGE_SIZE / sizeof(struct location),
Andrew Mortonea3061d2007-10-16 01:26:09 -07003681 GFP_TEMPORARY))
Christoph Lameter68dff6a2007-07-17 04:03:20 -07003682 return sprintf(buf, "Out of memory\n");
Christoph Lameter88a420e2007-05-06 14:49:45 -07003683
3684 /* Push back cpu slabs */
3685 flush_all(s);
3686
Christoph Lameterf64dc582007-10-16 01:25:33 -07003687 for_each_node_state(node, N_NORMAL_MEMORY) {
Christoph Lameter88a420e2007-05-06 14:49:45 -07003688 struct kmem_cache_node *n = get_node(s, node);
3689 unsigned long flags;
3690 struct page *page;
3691
Christoph Lameter9e869432007-08-22 14:01:56 -07003692 if (!atomic_long_read(&n->nr_slabs))
Christoph Lameter88a420e2007-05-06 14:49:45 -07003693 continue;
3694
3695 spin_lock_irqsave(&n->list_lock, flags);
3696 list_for_each_entry(page, &n->partial, lru)
3697 process_slab(&t, s, page, alloc);
3698 list_for_each_entry(page, &n->full, lru)
3699 process_slab(&t, s, page, alloc);
3700 spin_unlock_irqrestore(&n->list_lock, flags);
3701 }
3702
3703 for (i = 0; i < t.count; i++) {
Christoph Lameter45edfa52007-05-09 02:32:45 -07003704 struct location *l = &t.loc[i];
Christoph Lameter88a420e2007-05-06 14:49:45 -07003705
Hugh Dickins9c246242008-12-09 13:14:27 -08003706 if (len > PAGE_SIZE - KSYM_SYMBOL_LEN - 100)
Christoph Lameter88a420e2007-05-06 14:49:45 -07003707 break;
Harvey Harrisone374d482008-01-31 15:20:50 -08003708 len += sprintf(buf + len, "%7ld ", l->count);
Christoph Lameter45edfa52007-05-09 02:32:45 -07003709
3710 if (l->addr)
Harvey Harrisone374d482008-01-31 15:20:50 -08003711 len += sprint_symbol(buf + len, (unsigned long)l->addr);
Christoph Lameter88a420e2007-05-06 14:49:45 -07003712 else
Harvey Harrisone374d482008-01-31 15:20:50 -08003713 len += sprintf(buf + len, "<not-available>");
Christoph Lameter45edfa52007-05-09 02:32:45 -07003714
3715 if (l->sum_time != l->min_time) {
Harvey Harrisone374d482008-01-31 15:20:50 -08003716 len += sprintf(buf + len, " age=%ld/%ld/%ld",
Roman Zippelf8bd2252008-05-01 04:34:31 -07003717 l->min_time,
3718 (long)div_u64(l->sum_time, l->count),
3719 l->max_time);
Christoph Lameter45edfa52007-05-09 02:32:45 -07003720 } else
Harvey Harrisone374d482008-01-31 15:20:50 -08003721 len += sprintf(buf + len, " age=%ld",
Christoph Lameter45edfa52007-05-09 02:32:45 -07003722 l->min_time);
3723
3724 if (l->min_pid != l->max_pid)
Harvey Harrisone374d482008-01-31 15:20:50 -08003725 len += sprintf(buf + len, " pid=%ld-%ld",
Christoph Lameter45edfa52007-05-09 02:32:45 -07003726 l->min_pid, l->max_pid);
3727 else
Harvey Harrisone374d482008-01-31 15:20:50 -08003728 len += sprintf(buf + len, " pid=%ld",
Christoph Lameter45edfa52007-05-09 02:32:45 -07003729 l->min_pid);
3730
Rusty Russell174596a2009-01-01 10:12:29 +10303731 if (num_online_cpus() > 1 &&
3732 !cpumask_empty(to_cpumask(l->cpus)) &&
Harvey Harrisone374d482008-01-31 15:20:50 -08003733 len < PAGE_SIZE - 60) {
3734 len += sprintf(buf + len, " cpus=");
3735 len += cpulist_scnprintf(buf + len, PAGE_SIZE - len - 50,
Rusty Russell174596a2009-01-01 10:12:29 +10303736 to_cpumask(l->cpus));
Christoph Lameter45edfa52007-05-09 02:32:45 -07003737 }
3738
Christoph Lameter84966342007-06-23 17:16:32 -07003739 if (num_online_nodes() > 1 && !nodes_empty(l->nodes) &&
Harvey Harrisone374d482008-01-31 15:20:50 -08003740 len < PAGE_SIZE - 60) {
3741 len += sprintf(buf + len, " nodes=");
3742 len += nodelist_scnprintf(buf + len, PAGE_SIZE - len - 50,
Christoph Lameter45edfa52007-05-09 02:32:45 -07003743 l->nodes);
3744 }
3745
Harvey Harrisone374d482008-01-31 15:20:50 -08003746 len += sprintf(buf + len, "\n");
Christoph Lameter88a420e2007-05-06 14:49:45 -07003747 }
3748
3749 free_loc_track(&t);
3750 if (!t.count)
Harvey Harrisone374d482008-01-31 15:20:50 -08003751 len += sprintf(buf, "No data\n");
3752 return len;
Christoph Lameter88a420e2007-05-06 14:49:45 -07003753}
3754
Christoph Lameter81819f02007-05-06 14:49:36 -07003755enum slab_stat_type {
Christoph Lameter205ab992008-04-14 19:11:40 +03003756 SL_ALL, /* All slabs */
3757 SL_PARTIAL, /* Only partially allocated slabs */
3758 SL_CPU, /* Only slabs used for cpu caches */
3759 SL_OBJECTS, /* Determine allocated objects not slabs */
3760 SL_TOTAL /* Determine object capacity not slabs */
Christoph Lameter81819f02007-05-06 14:49:36 -07003761};
3762
Christoph Lameter205ab992008-04-14 19:11:40 +03003763#define SO_ALL (1 << SL_ALL)
Christoph Lameter81819f02007-05-06 14:49:36 -07003764#define SO_PARTIAL (1 << SL_PARTIAL)
3765#define SO_CPU (1 << SL_CPU)
3766#define SO_OBJECTS (1 << SL_OBJECTS)
Christoph Lameter205ab992008-04-14 19:11:40 +03003767#define SO_TOTAL (1 << SL_TOTAL)
Christoph Lameter81819f02007-05-06 14:49:36 -07003768
Cyrill Gorcunov62e5c4b2008-03-02 23:28:24 +03003769static ssize_t show_slab_objects(struct kmem_cache *s,
3770 char *buf, unsigned long flags)
Christoph Lameter81819f02007-05-06 14:49:36 -07003771{
3772 unsigned long total = 0;
Christoph Lameter81819f02007-05-06 14:49:36 -07003773 int node;
3774 int x;
3775 unsigned long *nodes;
3776 unsigned long *per_cpu;
3777
3778 nodes = kzalloc(2 * sizeof(unsigned long) * nr_node_ids, GFP_KERNEL);
Cyrill Gorcunov62e5c4b2008-03-02 23:28:24 +03003779 if (!nodes)
3780 return -ENOMEM;
Christoph Lameter81819f02007-05-06 14:49:36 -07003781 per_cpu = nodes + nr_node_ids;
3782
Christoph Lameter205ab992008-04-14 19:11:40 +03003783 if (flags & SO_CPU) {
3784 int cpu;
Christoph Lameter81819f02007-05-06 14:49:36 -07003785
Christoph Lameter205ab992008-04-14 19:11:40 +03003786 for_each_possible_cpu(cpu) {
3787 struct kmem_cache_cpu *c = get_cpu_slab(s, cpu);
Christoph Lameterdfb4f092007-10-16 01:26:05 -07003788
Christoph Lameter205ab992008-04-14 19:11:40 +03003789 if (!c || c->node < 0)
3790 continue;
3791
3792 if (c->page) {
3793 if (flags & SO_TOTAL)
3794 x = c->page->objects;
3795 else if (flags & SO_OBJECTS)
3796 x = c->page->inuse;
Christoph Lameter81819f02007-05-06 14:49:36 -07003797 else
3798 x = 1;
Christoph Lameter205ab992008-04-14 19:11:40 +03003799
Christoph Lameter81819f02007-05-06 14:49:36 -07003800 total += x;
Christoph Lameter205ab992008-04-14 19:11:40 +03003801 nodes[c->node] += x;
Christoph Lameter81819f02007-05-06 14:49:36 -07003802 }
Christoph Lameter205ab992008-04-14 19:11:40 +03003803 per_cpu[c->node]++;
Christoph Lameter81819f02007-05-06 14:49:36 -07003804 }
3805 }
3806
Christoph Lameter205ab992008-04-14 19:11:40 +03003807 if (flags & SO_ALL) {
3808 for_each_node_state(node, N_NORMAL_MEMORY) {
3809 struct kmem_cache_node *n = get_node(s, node);
Christoph Lameter81819f02007-05-06 14:49:36 -07003810
Christoph Lameter205ab992008-04-14 19:11:40 +03003811 if (flags & SO_TOTAL)
3812 x = atomic_long_read(&n->total_objects);
3813 else if (flags & SO_OBJECTS)
3814 x = atomic_long_read(&n->total_objects) -
3815 count_partial(n, count_free);
3816
3817 else
3818 x = atomic_long_read(&n->nr_slabs);
3819 total += x;
3820 nodes[node] += x;
3821 }
3822
3823 } else if (flags & SO_PARTIAL) {
3824 for_each_node_state(node, N_NORMAL_MEMORY) {
3825 struct kmem_cache_node *n = get_node(s, node);
3826
3827 if (flags & SO_TOTAL)
3828 x = count_partial(n, count_total);
3829 else if (flags & SO_OBJECTS)
3830 x = count_partial(n, count_inuse);
Christoph Lameter81819f02007-05-06 14:49:36 -07003831 else
3832 x = n->nr_partial;
3833 total += x;
3834 nodes[node] += x;
3835 }
Christoph Lameter81819f02007-05-06 14:49:36 -07003836 }
Christoph Lameter81819f02007-05-06 14:49:36 -07003837 x = sprintf(buf, "%lu", total);
3838#ifdef CONFIG_NUMA
Christoph Lameterf64dc582007-10-16 01:25:33 -07003839 for_each_node_state(node, N_NORMAL_MEMORY)
Christoph Lameter81819f02007-05-06 14:49:36 -07003840 if (nodes[node])
3841 x += sprintf(buf + x, " N%d=%lu",
3842 node, nodes[node]);
3843#endif
3844 kfree(nodes);
3845 return x + sprintf(buf + x, "\n");
3846}
3847
3848static int any_slab_objects(struct kmem_cache *s)
3849{
3850 int node;
Christoph Lameterdfb4f092007-10-16 01:26:05 -07003851
3852 for_each_online_node(node) {
Christoph Lameter81819f02007-05-06 14:49:36 -07003853 struct kmem_cache_node *n = get_node(s, node);
3854
Christoph Lameterdfb4f092007-10-16 01:26:05 -07003855 if (!n)
3856 continue;
3857
Benjamin Herrenschmidt4ea33e22008-05-06 20:42:39 -07003858 if (atomic_long_read(&n->total_objects))
Christoph Lameter81819f02007-05-06 14:49:36 -07003859 return 1;
3860 }
3861 return 0;
3862}
3863
3864#define to_slab_attr(n) container_of(n, struct slab_attribute, attr)
3865#define to_slab(n) container_of(n, struct kmem_cache, kobj);
3866
3867struct slab_attribute {
3868 struct attribute attr;
3869 ssize_t (*show)(struct kmem_cache *s, char *buf);
3870 ssize_t (*store)(struct kmem_cache *s, const char *x, size_t count);
3871};
3872
3873#define SLAB_ATTR_RO(_name) \
3874 static struct slab_attribute _name##_attr = __ATTR_RO(_name)
3875
3876#define SLAB_ATTR(_name) \
3877 static struct slab_attribute _name##_attr = \
3878 __ATTR(_name, 0644, _name##_show, _name##_store)
3879
Christoph Lameter81819f02007-05-06 14:49:36 -07003880static ssize_t slab_size_show(struct kmem_cache *s, char *buf)
3881{
3882 return sprintf(buf, "%d\n", s->size);
3883}
3884SLAB_ATTR_RO(slab_size);
3885
3886static ssize_t align_show(struct kmem_cache *s, char *buf)
3887{
3888 return sprintf(buf, "%d\n", s->align);
3889}
3890SLAB_ATTR_RO(align);
3891
3892static ssize_t object_size_show(struct kmem_cache *s, char *buf)
3893{
3894 return sprintf(buf, "%d\n", s->objsize);
3895}
3896SLAB_ATTR_RO(object_size);
3897
3898static ssize_t objs_per_slab_show(struct kmem_cache *s, char *buf)
3899{
Christoph Lameter834f3d12008-04-14 19:11:31 +03003900 return sprintf(buf, "%d\n", oo_objects(s->oo));
Christoph Lameter81819f02007-05-06 14:49:36 -07003901}
3902SLAB_ATTR_RO(objs_per_slab);
3903
Christoph Lameter06b285d2008-04-14 19:11:41 +03003904static ssize_t order_store(struct kmem_cache *s,
3905 const char *buf, size_t length)
3906{
Christoph Lameter0121c6192008-04-29 16:11:12 -07003907 unsigned long order;
3908 int err;
3909
3910 err = strict_strtoul(buf, 10, &order);
3911 if (err)
3912 return err;
Christoph Lameter06b285d2008-04-14 19:11:41 +03003913
3914 if (order > slub_max_order || order < slub_min_order)
3915 return -EINVAL;
3916
3917 calculate_sizes(s, order);
3918 return length;
3919}
3920
Christoph Lameter81819f02007-05-06 14:49:36 -07003921static ssize_t order_show(struct kmem_cache *s, char *buf)
3922{
Christoph Lameter834f3d12008-04-14 19:11:31 +03003923 return sprintf(buf, "%d\n", oo_order(s->oo));
Christoph Lameter81819f02007-05-06 14:49:36 -07003924}
Christoph Lameter06b285d2008-04-14 19:11:41 +03003925SLAB_ATTR(order);
Christoph Lameter81819f02007-05-06 14:49:36 -07003926
David Rientjes73d342b2009-02-22 17:40:09 -08003927static ssize_t min_partial_show(struct kmem_cache *s, char *buf)
3928{
3929 return sprintf(buf, "%lu\n", s->min_partial);
3930}
3931
3932static ssize_t min_partial_store(struct kmem_cache *s, const char *buf,
3933 size_t length)
3934{
3935 unsigned long min;
3936 int err;
3937
3938 err = strict_strtoul(buf, 10, &min);
3939 if (err)
3940 return err;
3941
David Rientjesc0bdb232009-02-25 09:16:35 +02003942 set_min_partial(s, min);
David Rientjes73d342b2009-02-22 17:40:09 -08003943 return length;
3944}
3945SLAB_ATTR(min_partial);
3946
Christoph Lameter81819f02007-05-06 14:49:36 -07003947static ssize_t ctor_show(struct kmem_cache *s, char *buf)
3948{
3949 if (s->ctor) {
3950 int n = sprint_symbol(buf, (unsigned long)s->ctor);
3951
3952 return n + sprintf(buf + n, "\n");
3953 }
3954 return 0;
3955}
3956SLAB_ATTR_RO(ctor);
3957
Christoph Lameter81819f02007-05-06 14:49:36 -07003958static ssize_t aliases_show(struct kmem_cache *s, char *buf)
3959{
3960 return sprintf(buf, "%d\n", s->refcount - 1);
3961}
3962SLAB_ATTR_RO(aliases);
3963
3964static ssize_t slabs_show(struct kmem_cache *s, char *buf)
3965{
Christoph Lameter205ab992008-04-14 19:11:40 +03003966 return show_slab_objects(s, buf, SO_ALL);
Christoph Lameter81819f02007-05-06 14:49:36 -07003967}
3968SLAB_ATTR_RO(slabs);
3969
3970static ssize_t partial_show(struct kmem_cache *s, char *buf)
3971{
Christoph Lameterd9acf4b2008-02-15 15:22:21 -08003972 return show_slab_objects(s, buf, SO_PARTIAL);
Christoph Lameter81819f02007-05-06 14:49:36 -07003973}
3974SLAB_ATTR_RO(partial);
3975
3976static ssize_t cpu_slabs_show(struct kmem_cache *s, char *buf)
3977{
Christoph Lameterd9acf4b2008-02-15 15:22:21 -08003978 return show_slab_objects(s, buf, SO_CPU);
Christoph Lameter81819f02007-05-06 14:49:36 -07003979}
3980SLAB_ATTR_RO(cpu_slabs);
3981
3982static ssize_t objects_show(struct kmem_cache *s, char *buf)
3983{
Christoph Lameter205ab992008-04-14 19:11:40 +03003984 return show_slab_objects(s, buf, SO_ALL|SO_OBJECTS);
Christoph Lameter81819f02007-05-06 14:49:36 -07003985}
3986SLAB_ATTR_RO(objects);
3987
Christoph Lameter205ab992008-04-14 19:11:40 +03003988static ssize_t objects_partial_show(struct kmem_cache *s, char *buf)
3989{
3990 return show_slab_objects(s, buf, SO_PARTIAL|SO_OBJECTS);
3991}
3992SLAB_ATTR_RO(objects_partial);
3993
3994static ssize_t total_objects_show(struct kmem_cache *s, char *buf)
3995{
3996 return show_slab_objects(s, buf, SO_ALL|SO_TOTAL);
3997}
3998SLAB_ATTR_RO(total_objects);
3999
Christoph Lameter81819f02007-05-06 14:49:36 -07004000static ssize_t sanity_checks_show(struct kmem_cache *s, char *buf)
4001{
4002 return sprintf(buf, "%d\n", !!(s->flags & SLAB_DEBUG_FREE));
4003}
4004
4005static ssize_t sanity_checks_store(struct kmem_cache *s,
4006 const char *buf, size_t length)
4007{
4008 s->flags &= ~SLAB_DEBUG_FREE;
4009 if (buf[0] == '1')
4010 s->flags |= SLAB_DEBUG_FREE;
4011 return length;
4012}
4013SLAB_ATTR(sanity_checks);
4014
4015static ssize_t trace_show(struct kmem_cache *s, char *buf)
4016{
4017 return sprintf(buf, "%d\n", !!(s->flags & SLAB_TRACE));
4018}
4019
4020static ssize_t trace_store(struct kmem_cache *s, const char *buf,
4021 size_t length)
4022{
4023 s->flags &= ~SLAB_TRACE;
4024 if (buf[0] == '1')
4025 s->flags |= SLAB_TRACE;
4026 return length;
4027}
4028SLAB_ATTR(trace);
4029
4030static ssize_t reclaim_account_show(struct kmem_cache *s, char *buf)
4031{
4032 return sprintf(buf, "%d\n", !!(s->flags & SLAB_RECLAIM_ACCOUNT));
4033}
4034
4035static ssize_t reclaim_account_store(struct kmem_cache *s,
4036 const char *buf, size_t length)
4037{
4038 s->flags &= ~SLAB_RECLAIM_ACCOUNT;
4039 if (buf[0] == '1')
4040 s->flags |= SLAB_RECLAIM_ACCOUNT;
4041 return length;
4042}
4043SLAB_ATTR(reclaim_account);
4044
4045static ssize_t hwcache_align_show(struct kmem_cache *s, char *buf)
4046{
Christoph Lameter5af60832007-05-06 14:49:56 -07004047 return sprintf(buf, "%d\n", !!(s->flags & SLAB_HWCACHE_ALIGN));
Christoph Lameter81819f02007-05-06 14:49:36 -07004048}
4049SLAB_ATTR_RO(hwcache_align);
4050
4051#ifdef CONFIG_ZONE_DMA
4052static ssize_t cache_dma_show(struct kmem_cache *s, char *buf)
4053{
4054 return sprintf(buf, "%d\n", !!(s->flags & SLAB_CACHE_DMA));
4055}
4056SLAB_ATTR_RO(cache_dma);
4057#endif
4058
4059static ssize_t destroy_by_rcu_show(struct kmem_cache *s, char *buf)
4060{
4061 return sprintf(buf, "%d\n", !!(s->flags & SLAB_DESTROY_BY_RCU));
4062}
4063SLAB_ATTR_RO(destroy_by_rcu);
4064
4065static ssize_t red_zone_show(struct kmem_cache *s, char *buf)
4066{
4067 return sprintf(buf, "%d\n", !!(s->flags & SLAB_RED_ZONE));
4068}
4069
4070static ssize_t red_zone_store(struct kmem_cache *s,
4071 const char *buf, size_t length)
4072{
4073 if (any_slab_objects(s))
4074 return -EBUSY;
4075
4076 s->flags &= ~SLAB_RED_ZONE;
4077 if (buf[0] == '1')
4078 s->flags |= SLAB_RED_ZONE;
Christoph Lameter06b285d2008-04-14 19:11:41 +03004079 calculate_sizes(s, -1);
Christoph Lameter81819f02007-05-06 14:49:36 -07004080 return length;
4081}
4082SLAB_ATTR(red_zone);
4083
4084static ssize_t poison_show(struct kmem_cache *s, char *buf)
4085{
4086 return sprintf(buf, "%d\n", !!(s->flags & SLAB_POISON));
4087}
4088
4089static ssize_t poison_store(struct kmem_cache *s,
4090 const char *buf, size_t length)
4091{
4092 if (any_slab_objects(s))
4093 return -EBUSY;
4094
4095 s->flags &= ~SLAB_POISON;
4096 if (buf[0] == '1')
4097 s->flags |= SLAB_POISON;
Christoph Lameter06b285d2008-04-14 19:11:41 +03004098 calculate_sizes(s, -1);
Christoph Lameter81819f02007-05-06 14:49:36 -07004099 return length;
4100}
4101SLAB_ATTR(poison);
4102
4103static ssize_t store_user_show(struct kmem_cache *s, char *buf)
4104{
4105 return sprintf(buf, "%d\n", !!(s->flags & SLAB_STORE_USER));
4106}
4107
4108static ssize_t store_user_store(struct kmem_cache *s,
4109 const char *buf, size_t length)
4110{
4111 if (any_slab_objects(s))
4112 return -EBUSY;
4113
4114 s->flags &= ~SLAB_STORE_USER;
4115 if (buf[0] == '1')
4116 s->flags |= SLAB_STORE_USER;
Christoph Lameter06b285d2008-04-14 19:11:41 +03004117 calculate_sizes(s, -1);
Christoph Lameter81819f02007-05-06 14:49:36 -07004118 return length;
4119}
4120SLAB_ATTR(store_user);
4121
Christoph Lameter53e15af2007-05-06 14:49:43 -07004122static ssize_t validate_show(struct kmem_cache *s, char *buf)
4123{
4124 return 0;
4125}
4126
4127static ssize_t validate_store(struct kmem_cache *s,
4128 const char *buf, size_t length)
4129{
Christoph Lameter434e2452007-07-17 04:03:30 -07004130 int ret = -EINVAL;
4131
4132 if (buf[0] == '1') {
4133 ret = validate_slab_cache(s);
4134 if (ret >= 0)
4135 ret = length;
4136 }
4137 return ret;
Christoph Lameter53e15af2007-05-06 14:49:43 -07004138}
4139SLAB_ATTR(validate);
4140
Christoph Lameter2086d262007-05-06 14:49:46 -07004141static ssize_t shrink_show(struct kmem_cache *s, char *buf)
4142{
4143 return 0;
4144}
4145
4146static ssize_t shrink_store(struct kmem_cache *s,
4147 const char *buf, size_t length)
4148{
4149 if (buf[0] == '1') {
4150 int rc = kmem_cache_shrink(s);
4151
4152 if (rc)
4153 return rc;
4154 } else
4155 return -EINVAL;
4156 return length;
4157}
4158SLAB_ATTR(shrink);
4159
Christoph Lameter88a420e2007-05-06 14:49:45 -07004160static ssize_t alloc_calls_show(struct kmem_cache *s, char *buf)
4161{
4162 if (!(s->flags & SLAB_STORE_USER))
4163 return -ENOSYS;
4164 return list_locations(s, buf, TRACK_ALLOC);
4165}
4166SLAB_ATTR_RO(alloc_calls);
4167
4168static ssize_t free_calls_show(struct kmem_cache *s, char *buf)
4169{
4170 if (!(s->flags & SLAB_STORE_USER))
4171 return -ENOSYS;
4172 return list_locations(s, buf, TRACK_FREE);
4173}
4174SLAB_ATTR_RO(free_calls);
4175
Christoph Lameter81819f02007-05-06 14:49:36 -07004176#ifdef CONFIG_NUMA
Christoph Lameter98246012008-01-07 23:20:26 -08004177static ssize_t remote_node_defrag_ratio_show(struct kmem_cache *s, char *buf)
Christoph Lameter81819f02007-05-06 14:49:36 -07004178{
Christoph Lameter98246012008-01-07 23:20:26 -08004179 return sprintf(buf, "%d\n", s->remote_node_defrag_ratio / 10);
Christoph Lameter81819f02007-05-06 14:49:36 -07004180}
4181
Christoph Lameter98246012008-01-07 23:20:26 -08004182static ssize_t remote_node_defrag_ratio_store(struct kmem_cache *s,
Christoph Lameter81819f02007-05-06 14:49:36 -07004183 const char *buf, size_t length)
4184{
Christoph Lameter0121c6192008-04-29 16:11:12 -07004185 unsigned long ratio;
4186 int err;
Christoph Lameter81819f02007-05-06 14:49:36 -07004187
Christoph Lameter0121c6192008-04-29 16:11:12 -07004188 err = strict_strtoul(buf, 10, &ratio);
4189 if (err)
4190 return err;
4191
Christoph Lametere2cb96b2008-08-19 08:51:22 -05004192 if (ratio <= 100)
Christoph Lameter0121c6192008-04-29 16:11:12 -07004193 s->remote_node_defrag_ratio = ratio * 10;
4194
Christoph Lameter81819f02007-05-06 14:49:36 -07004195 return length;
4196}
Christoph Lameter98246012008-01-07 23:20:26 -08004197SLAB_ATTR(remote_node_defrag_ratio);
Christoph Lameter81819f02007-05-06 14:49:36 -07004198#endif
4199
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08004200#ifdef CONFIG_SLUB_STATS
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08004201static int show_stat(struct kmem_cache *s, char *buf, enum stat_item si)
4202{
4203 unsigned long sum = 0;
4204 int cpu;
4205 int len;
4206 int *data = kmalloc(nr_cpu_ids * sizeof(int), GFP_KERNEL);
4207
4208 if (!data)
4209 return -ENOMEM;
4210
4211 for_each_online_cpu(cpu) {
4212 unsigned x = get_cpu_slab(s, cpu)->stat[si];
4213
4214 data[cpu] = x;
4215 sum += x;
4216 }
4217
4218 len = sprintf(buf, "%lu", sum);
4219
Christoph Lameter50ef37b2008-04-14 18:52:05 +03004220#ifdef CONFIG_SMP
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08004221 for_each_online_cpu(cpu) {
4222 if (data[cpu] && len < PAGE_SIZE - 20)
Christoph Lameter50ef37b2008-04-14 18:52:05 +03004223 len += sprintf(buf + len, " C%d=%u", cpu, data[cpu]);
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08004224 }
Christoph Lameter50ef37b2008-04-14 18:52:05 +03004225#endif
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08004226 kfree(data);
4227 return len + sprintf(buf + len, "\n");
4228}
4229
4230#define STAT_ATTR(si, text) \
4231static ssize_t text##_show(struct kmem_cache *s, char *buf) \
4232{ \
4233 return show_stat(s, buf, si); \
4234} \
4235SLAB_ATTR_RO(text); \
4236
4237STAT_ATTR(ALLOC_FASTPATH, alloc_fastpath);
4238STAT_ATTR(ALLOC_SLOWPATH, alloc_slowpath);
4239STAT_ATTR(FREE_FASTPATH, free_fastpath);
4240STAT_ATTR(FREE_SLOWPATH, free_slowpath);
4241STAT_ATTR(FREE_FROZEN, free_frozen);
4242STAT_ATTR(FREE_ADD_PARTIAL, free_add_partial);
4243STAT_ATTR(FREE_REMOVE_PARTIAL, free_remove_partial);
4244STAT_ATTR(ALLOC_FROM_PARTIAL, alloc_from_partial);
4245STAT_ATTR(ALLOC_SLAB, alloc_slab);
4246STAT_ATTR(ALLOC_REFILL, alloc_refill);
4247STAT_ATTR(FREE_SLAB, free_slab);
4248STAT_ATTR(CPUSLAB_FLUSH, cpuslab_flush);
4249STAT_ATTR(DEACTIVATE_FULL, deactivate_full);
4250STAT_ATTR(DEACTIVATE_EMPTY, deactivate_empty);
4251STAT_ATTR(DEACTIVATE_TO_HEAD, deactivate_to_head);
4252STAT_ATTR(DEACTIVATE_TO_TAIL, deactivate_to_tail);
4253STAT_ATTR(DEACTIVATE_REMOTE_FREES, deactivate_remote_frees);
Christoph Lameter65c33762008-04-14 19:11:40 +03004254STAT_ATTR(ORDER_FALLBACK, order_fallback);
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08004255#endif
4256
Pekka Enberg06428782008-01-07 23:20:27 -08004257static struct attribute *slab_attrs[] = {
Christoph Lameter81819f02007-05-06 14:49:36 -07004258 &slab_size_attr.attr,
4259 &object_size_attr.attr,
4260 &objs_per_slab_attr.attr,
4261 &order_attr.attr,
David Rientjes73d342b2009-02-22 17:40:09 -08004262 &min_partial_attr.attr,
Christoph Lameter81819f02007-05-06 14:49:36 -07004263 &objects_attr.attr,
Christoph Lameter205ab992008-04-14 19:11:40 +03004264 &objects_partial_attr.attr,
4265 &total_objects_attr.attr,
Christoph Lameter81819f02007-05-06 14:49:36 -07004266 &slabs_attr.attr,
4267 &partial_attr.attr,
4268 &cpu_slabs_attr.attr,
4269 &ctor_attr.attr,
Christoph Lameter81819f02007-05-06 14:49:36 -07004270 &aliases_attr.attr,
4271 &align_attr.attr,
4272 &sanity_checks_attr.attr,
4273 &trace_attr.attr,
4274 &hwcache_align_attr.attr,
4275 &reclaim_account_attr.attr,
4276 &destroy_by_rcu_attr.attr,
4277 &red_zone_attr.attr,
4278 &poison_attr.attr,
4279 &store_user_attr.attr,
Christoph Lameter53e15af2007-05-06 14:49:43 -07004280 &validate_attr.attr,
Christoph Lameter2086d262007-05-06 14:49:46 -07004281 &shrink_attr.attr,
Christoph Lameter88a420e2007-05-06 14:49:45 -07004282 &alloc_calls_attr.attr,
4283 &free_calls_attr.attr,
Christoph Lameter81819f02007-05-06 14:49:36 -07004284#ifdef CONFIG_ZONE_DMA
4285 &cache_dma_attr.attr,
4286#endif
4287#ifdef CONFIG_NUMA
Christoph Lameter98246012008-01-07 23:20:26 -08004288 &remote_node_defrag_ratio_attr.attr,
Christoph Lameter81819f02007-05-06 14:49:36 -07004289#endif
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08004290#ifdef CONFIG_SLUB_STATS
4291 &alloc_fastpath_attr.attr,
4292 &alloc_slowpath_attr.attr,
4293 &free_fastpath_attr.attr,
4294 &free_slowpath_attr.attr,
4295 &free_frozen_attr.attr,
4296 &free_add_partial_attr.attr,
4297 &free_remove_partial_attr.attr,
4298 &alloc_from_partial_attr.attr,
4299 &alloc_slab_attr.attr,
4300 &alloc_refill_attr.attr,
4301 &free_slab_attr.attr,
4302 &cpuslab_flush_attr.attr,
4303 &deactivate_full_attr.attr,
4304 &deactivate_empty_attr.attr,
4305 &deactivate_to_head_attr.attr,
4306 &deactivate_to_tail_attr.attr,
4307 &deactivate_remote_frees_attr.attr,
Christoph Lameter65c33762008-04-14 19:11:40 +03004308 &order_fallback_attr.attr,
Christoph Lameter8ff12cf2008-02-07 17:47:41 -08004309#endif
Christoph Lameter81819f02007-05-06 14:49:36 -07004310 NULL
4311};
4312
4313static struct attribute_group slab_attr_group = {
4314 .attrs = slab_attrs,
4315};
4316
4317static ssize_t slab_attr_show(struct kobject *kobj,
4318 struct attribute *attr,
4319 char *buf)
4320{
4321 struct slab_attribute *attribute;
4322 struct kmem_cache *s;
4323 int err;
4324
4325 attribute = to_slab_attr(attr);
4326 s = to_slab(kobj);
4327
4328 if (!attribute->show)
4329 return -EIO;
4330
4331 err = attribute->show(s, buf);
4332
4333 return err;
4334}
4335
4336static ssize_t slab_attr_store(struct kobject *kobj,
4337 struct attribute *attr,
4338 const char *buf, size_t len)
4339{
4340 struct slab_attribute *attribute;
4341 struct kmem_cache *s;
4342 int err;
4343
4344 attribute = to_slab_attr(attr);
4345 s = to_slab(kobj);
4346
4347 if (!attribute->store)
4348 return -EIO;
4349
4350 err = attribute->store(s, buf, len);
4351
4352 return err;
4353}
4354
Christoph Lameter151c6022008-01-07 22:29:05 -08004355static void kmem_cache_release(struct kobject *kobj)
4356{
4357 struct kmem_cache *s = to_slab(kobj);
4358
4359 kfree(s);
4360}
4361
Christoph Lameter81819f02007-05-06 14:49:36 -07004362static struct sysfs_ops slab_sysfs_ops = {
4363 .show = slab_attr_show,
4364 .store = slab_attr_store,
4365};
4366
4367static struct kobj_type slab_ktype = {
4368 .sysfs_ops = &slab_sysfs_ops,
Christoph Lameter151c6022008-01-07 22:29:05 -08004369 .release = kmem_cache_release
Christoph Lameter81819f02007-05-06 14:49:36 -07004370};
4371
4372static int uevent_filter(struct kset *kset, struct kobject *kobj)
4373{
4374 struct kobj_type *ktype = get_ktype(kobj);
4375
4376 if (ktype == &slab_ktype)
4377 return 1;
4378 return 0;
4379}
4380
4381static struct kset_uevent_ops slab_uevent_ops = {
4382 .filter = uevent_filter,
4383};
4384
Greg Kroah-Hartman27c3a312007-11-01 09:29:06 -06004385static struct kset *slab_kset;
Christoph Lameter81819f02007-05-06 14:49:36 -07004386
4387#define ID_STR_LENGTH 64
4388
4389/* Create a unique string id for a slab cache:
Christoph Lameter6446faa2008-02-15 23:45:26 -08004390 *
4391 * Format :[flags-]size
Christoph Lameter81819f02007-05-06 14:49:36 -07004392 */
4393static char *create_unique_id(struct kmem_cache *s)
4394{
4395 char *name = kmalloc(ID_STR_LENGTH, GFP_KERNEL);
4396 char *p = name;
4397
4398 BUG_ON(!name);
4399
4400 *p++ = ':';
4401 /*
4402 * First flags affecting slabcache operations. We will only
4403 * get here for aliasable slabs so we do not need to support
4404 * too many flags. The flags here must cover all flags that
4405 * are matched during merging to guarantee that the id is
4406 * unique.
4407 */
4408 if (s->flags & SLAB_CACHE_DMA)
4409 *p++ = 'd';
4410 if (s->flags & SLAB_RECLAIM_ACCOUNT)
4411 *p++ = 'a';
4412 if (s->flags & SLAB_DEBUG_FREE)
4413 *p++ = 'F';
Vegard Nossum5a896d92008-04-04 00:54:48 +02004414 if (!(s->flags & SLAB_NOTRACK))
4415 *p++ = 't';
Christoph Lameter81819f02007-05-06 14:49:36 -07004416 if (p != name + 1)
4417 *p++ = '-';
4418 p += sprintf(p, "%07d", s->size);
4419 BUG_ON(p > name + ID_STR_LENGTH - 1);
4420 return name;
4421}
4422
4423static int sysfs_slab_add(struct kmem_cache *s)
4424{
4425 int err;
4426 const char *name;
4427 int unmergeable;
4428
4429 if (slab_state < SYSFS)
4430 /* Defer until later */
4431 return 0;
4432
4433 unmergeable = slab_unmergeable(s);
4434 if (unmergeable) {
4435 /*
4436 * Slabcache can never be merged so we can use the name proper.
4437 * This is typically the case for debug situations. In that
4438 * case we can catch duplicate names easily.
4439 */
Greg Kroah-Hartman27c3a312007-11-01 09:29:06 -06004440 sysfs_remove_link(&slab_kset->kobj, s->name);
Christoph Lameter81819f02007-05-06 14:49:36 -07004441 name = s->name;
4442 } else {
4443 /*
4444 * Create a unique name for the slab as a target
4445 * for the symlinks.
4446 */
4447 name = create_unique_id(s);
4448 }
4449
Greg Kroah-Hartman27c3a312007-11-01 09:29:06 -06004450 s->kobj.kset = slab_kset;
Greg Kroah-Hartman1eada112007-12-17 23:05:35 -07004451 err = kobject_init_and_add(&s->kobj, &slab_ktype, NULL, name);
4452 if (err) {
4453 kobject_put(&s->kobj);
Christoph Lameter81819f02007-05-06 14:49:36 -07004454 return err;
Greg Kroah-Hartman1eada112007-12-17 23:05:35 -07004455 }
Christoph Lameter81819f02007-05-06 14:49:36 -07004456
4457 err = sysfs_create_group(&s->kobj, &slab_attr_group);
4458 if (err)
4459 return err;
4460 kobject_uevent(&s->kobj, KOBJ_ADD);
4461 if (!unmergeable) {
4462 /* Setup first alias */
4463 sysfs_slab_alias(s, s->name);
4464 kfree(name);
4465 }
4466 return 0;
4467}
4468
4469static void sysfs_slab_remove(struct kmem_cache *s)
4470{
4471 kobject_uevent(&s->kobj, KOBJ_REMOVE);
4472 kobject_del(&s->kobj);
Christoph Lameter151c6022008-01-07 22:29:05 -08004473 kobject_put(&s->kobj);
Christoph Lameter81819f02007-05-06 14:49:36 -07004474}
4475
4476/*
4477 * Need to buffer aliases during bootup until sysfs becomes
Nick Andrew9f6c708e2008-12-05 14:08:08 +11004478 * available lest we lose that information.
Christoph Lameter81819f02007-05-06 14:49:36 -07004479 */
4480struct saved_alias {
4481 struct kmem_cache *s;
4482 const char *name;
4483 struct saved_alias *next;
4484};
4485
Adrian Bunk5af328a2007-07-17 04:03:27 -07004486static struct saved_alias *alias_list;
Christoph Lameter81819f02007-05-06 14:49:36 -07004487
4488static int sysfs_slab_alias(struct kmem_cache *s, const char *name)
4489{
4490 struct saved_alias *al;
4491
4492 if (slab_state == SYSFS) {
4493 /*
4494 * If we have a leftover link then remove it.
4495 */
Greg Kroah-Hartman27c3a312007-11-01 09:29:06 -06004496 sysfs_remove_link(&slab_kset->kobj, name);
4497 return sysfs_create_link(&slab_kset->kobj, &s->kobj, name);
Christoph Lameter81819f02007-05-06 14:49:36 -07004498 }
4499
4500 al = kmalloc(sizeof(struct saved_alias), GFP_KERNEL);
4501 if (!al)
4502 return -ENOMEM;
4503
4504 al->s = s;
4505 al->name = name;
4506 al->next = alias_list;
4507 alias_list = al;
4508 return 0;
4509}
4510
4511static int __init slab_sysfs_init(void)
4512{
Christoph Lameter5b95a4ac2007-07-17 04:03:19 -07004513 struct kmem_cache *s;
Christoph Lameter81819f02007-05-06 14:49:36 -07004514 int err;
4515
Greg Kroah-Hartman0ff21e42007-11-06 10:36:58 -08004516 slab_kset = kset_create_and_add("slab", &slab_uevent_ops, kernel_kobj);
Greg Kroah-Hartman27c3a312007-11-01 09:29:06 -06004517 if (!slab_kset) {
Christoph Lameter81819f02007-05-06 14:49:36 -07004518 printk(KERN_ERR "Cannot register slab subsystem.\n");
4519 return -ENOSYS;
4520 }
4521
Christoph Lameter26a7bd02007-05-09 02:32:39 -07004522 slab_state = SYSFS;
4523
Christoph Lameter5b95a4ac2007-07-17 04:03:19 -07004524 list_for_each_entry(s, &slab_caches, list) {
Christoph Lameter26a7bd02007-05-09 02:32:39 -07004525 err = sysfs_slab_add(s);
Christoph Lameter5d540fb2007-08-30 23:56:26 -07004526 if (err)
4527 printk(KERN_ERR "SLUB: Unable to add boot slab %s"
4528 " to sysfs\n", s->name);
Christoph Lameter26a7bd02007-05-09 02:32:39 -07004529 }
Christoph Lameter81819f02007-05-06 14:49:36 -07004530
4531 while (alias_list) {
4532 struct saved_alias *al = alias_list;
4533
4534 alias_list = alias_list->next;
4535 err = sysfs_slab_alias(al->s, al->name);
Christoph Lameter5d540fb2007-08-30 23:56:26 -07004536 if (err)
4537 printk(KERN_ERR "SLUB: Unable to add boot slab alias"
4538 " %s to sysfs\n", s->name);
Christoph Lameter81819f02007-05-06 14:49:36 -07004539 kfree(al);
4540 }
4541
4542 resiliency_test();
4543 return 0;
4544}
4545
4546__initcall(slab_sysfs_init);
Christoph Lameter81819f02007-05-06 14:49:36 -07004547#endif
Pekka J Enberg57ed3ed2008-01-01 17:23:28 +01004548
4549/*
4550 * The /proc/slabinfo ABI
4551 */
Linus Torvalds158a9622008-01-02 13:04:48 -08004552#ifdef CONFIG_SLABINFO
Pekka J Enberg57ed3ed2008-01-01 17:23:28 +01004553static void print_slabinfo_header(struct seq_file *m)
4554{
4555 seq_puts(m, "slabinfo - version: 2.1\n");
4556 seq_puts(m, "# name <active_objs> <num_objs> <objsize> "
4557 "<objperslab> <pagesperslab>");
4558 seq_puts(m, " : tunables <limit> <batchcount> <sharedfactor>");
4559 seq_puts(m, " : slabdata <active_slabs> <num_slabs> <sharedavail>");
4560 seq_putc(m, '\n');
4561}
4562
4563static void *s_start(struct seq_file *m, loff_t *pos)
4564{
4565 loff_t n = *pos;
4566
4567 down_read(&slub_lock);
4568 if (!n)
4569 print_slabinfo_header(m);
4570
4571 return seq_list_start(&slab_caches, *pos);
4572}
4573
4574static void *s_next(struct seq_file *m, void *p, loff_t *pos)
4575{
4576 return seq_list_next(p, &slab_caches, pos);
4577}
4578
4579static void s_stop(struct seq_file *m, void *p)
4580{
4581 up_read(&slub_lock);
4582}
4583
4584static int s_show(struct seq_file *m, void *p)
4585{
4586 unsigned long nr_partials = 0;
4587 unsigned long nr_slabs = 0;
4588 unsigned long nr_inuse = 0;
Christoph Lameter205ab992008-04-14 19:11:40 +03004589 unsigned long nr_objs = 0;
4590 unsigned long nr_free = 0;
Pekka J Enberg57ed3ed2008-01-01 17:23:28 +01004591 struct kmem_cache *s;
4592 int node;
4593
4594 s = list_entry(p, struct kmem_cache, list);
4595
4596 for_each_online_node(node) {
4597 struct kmem_cache_node *n = get_node(s, node);
4598
4599 if (!n)
4600 continue;
4601
4602 nr_partials += n->nr_partial;
4603 nr_slabs += atomic_long_read(&n->nr_slabs);
Christoph Lameter205ab992008-04-14 19:11:40 +03004604 nr_objs += atomic_long_read(&n->total_objects);
4605 nr_free += count_partial(n, count_free);
Pekka J Enberg57ed3ed2008-01-01 17:23:28 +01004606 }
4607
Christoph Lameter205ab992008-04-14 19:11:40 +03004608 nr_inuse = nr_objs - nr_free;
Pekka J Enberg57ed3ed2008-01-01 17:23:28 +01004609
4610 seq_printf(m, "%-17s %6lu %6lu %6u %4u %4d", s->name, nr_inuse,
Christoph Lameter834f3d12008-04-14 19:11:31 +03004611 nr_objs, s->size, oo_objects(s->oo),
4612 (1 << oo_order(s->oo)));
Pekka J Enberg57ed3ed2008-01-01 17:23:28 +01004613 seq_printf(m, " : tunables %4u %4u %4u", 0, 0, 0);
4614 seq_printf(m, " : slabdata %6lu %6lu %6lu", nr_slabs, nr_slabs,
4615 0UL);
4616 seq_putc(m, '\n');
4617 return 0;
4618}
4619
Alexey Dobriyan7b3c3a52008-10-06 02:42:17 +04004620static const struct seq_operations slabinfo_op = {
Pekka J Enberg57ed3ed2008-01-01 17:23:28 +01004621 .start = s_start,
4622 .next = s_next,
4623 .stop = s_stop,
4624 .show = s_show,
4625};
4626
Alexey Dobriyan7b3c3a52008-10-06 02:42:17 +04004627static int slabinfo_open(struct inode *inode, struct file *file)
4628{
4629 return seq_open(file, &slabinfo_op);
4630}
4631
4632static const struct file_operations proc_slabinfo_operations = {
4633 .open = slabinfo_open,
4634 .read = seq_read,
4635 .llseek = seq_lseek,
4636 .release = seq_release,
4637};
4638
4639static int __init slab_proc_init(void)
4640{
4641 proc_create("slabinfo",S_IWUSR|S_IRUGO,NULL,&proc_slabinfo_operations);
4642 return 0;
4643}
4644module_init(slab_proc_init);
Linus Torvalds158a9622008-01-02 13:04:48 -08004645#endif /* CONFIG_SLABINFO */