blob: db24ec48b946dbe3d9891a727542450f70fb3154 [file] [log] [blame]
Christoph Lameter039363f2012-07-06 15:25:10 -05001/*
2 * Slab allocator functions that are independent of the allocator strategy
3 *
4 * (C) 2012 Christoph Lameter <cl@linux.com>
5 */
6#include <linux/slab.h>
7
8#include <linux/mm.h>
9#include <linux/poison.h>
10#include <linux/interrupt.h>
11#include <linux/memory.h>
12#include <linux/compiler.h>
13#include <linux/module.h>
Christoph Lameter20cea962012-07-06 15:25:13 -050014#include <linux/cpu.h>
15#include <linux/uaccess.h>
Glauber Costab7454ad2012-10-19 18:20:25 +040016#include <linux/seq_file.h>
17#include <linux/proc_fs.h>
Christoph Lameter039363f2012-07-06 15:25:10 -050018#include <asm/cacheflush.h>
19#include <asm/tlbflush.h>
20#include <asm/page.h>
Glauber Costa2633d7a2012-12-18 14:22:34 -080021#include <linux/memcontrol.h>
Christoph Lameterf1b6eb62013-09-04 16:35:34 +000022#include <trace/events/kmem.h>
Christoph Lameter039363f2012-07-06 15:25:10 -050023
Christoph Lameter97d06602012-07-06 15:25:11 -050024#include "slab.h"
25
26enum slab_state slab_state;
Christoph Lameter18004c52012-07-06 15:25:12 -050027LIST_HEAD(slab_caches);
28DEFINE_MUTEX(slab_mutex);
Christoph Lameter9b030cb2012-09-05 00:20:33 +000029struct kmem_cache *kmem_cache;
Christoph Lameter97d06602012-07-06 15:25:11 -050030
Shuah Khan77be4b12012-08-16 00:09:46 -070031#ifdef CONFIG_DEBUG_VM
Glauber Costa2633d7a2012-12-18 14:22:34 -080032static int kmem_cache_sanity_check(struct mem_cgroup *memcg, const char *name,
33 size_t size)
Shuah Khan77be4b12012-08-16 00:09:46 -070034{
35 struct kmem_cache *s = NULL;
36
37 if (!name || in_interrupt() || size < sizeof(void *) ||
38 size > KMALLOC_MAX_SIZE) {
39 pr_err("kmem_cache_create(%s) integrity check failed\n", name);
40 return -EINVAL;
41 }
42
43 list_for_each_entry(s, &slab_caches, list) {
44 char tmp;
45 int res;
46
47 /*
48 * This happens when the module gets unloaded and doesn't
49 * destroy its slab cache and no-one else reuses the vmalloc
50 * area of the module. Print a warning.
51 */
52 res = probe_kernel_address(s->name, tmp);
53 if (res) {
54 pr_err("Slab cache with size %d has lost its name\n",
55 s->object_size);
56 continue;
57 }
58
Christoph Lameter3e374912013-09-21 21:56:34 +000059#if !defined(CONFIG_SLUB) || !defined(CONFIG_SLUB_DEBUG_ON)
Glauber Costa2633d7a2012-12-18 14:22:34 -080060 /*
61 * For simplicity, we won't check this in the list of memcg
62 * caches. We have control over memcg naming, and if there
63 * aren't duplicates in the global list, there won't be any
64 * duplicates in the memcg lists as well.
65 */
66 if (!memcg && !strcmp(s->name, name)) {
Shuah Khan77be4b12012-08-16 00:09:46 -070067 pr_err("%s (%s): Cache name already exists.\n",
68 __func__, name);
69 dump_stack();
70 s = NULL;
71 return -EINVAL;
72 }
Christoph Lameter3e374912013-09-21 21:56:34 +000073#endif
Shuah Khan77be4b12012-08-16 00:09:46 -070074 }
75
76 WARN_ON(strchr(name, ' ')); /* It confuses parsers */
77 return 0;
78}
79#else
Glauber Costa2633d7a2012-12-18 14:22:34 -080080static inline int kmem_cache_sanity_check(struct mem_cgroup *memcg,
81 const char *name, size_t size)
Shuah Khan77be4b12012-08-16 00:09:46 -070082{
83 return 0;
84}
85#endif
86
Glauber Costa55007d82012-12-18 14:22:38 -080087#ifdef CONFIG_MEMCG_KMEM
88int memcg_update_all_caches(int num_memcgs)
89{
90 struct kmem_cache *s;
91 int ret = 0;
92 mutex_lock(&slab_mutex);
93
94 list_for_each_entry(s, &slab_caches, list) {
95 if (!is_root_cache(s))
96 continue;
97
98 ret = memcg_update_cache_size(s, num_memcgs);
99 /*
100 * See comment in memcontrol.c, memcg_update_cache_size:
101 * Instead of freeing the memory, we'll just leave the caches
102 * up to this point in an updated state.
103 */
104 if (ret)
105 goto out;
106 }
107
108 memcg_update_array_size(num_memcgs);
109out:
110 mutex_unlock(&slab_mutex);
111 return ret;
112}
113#endif
114
Christoph Lameter039363f2012-07-06 15:25:10 -0500115/*
Christoph Lameter45906852012-11-28 16:23:16 +0000116 * Figure out what the alignment of the objects will be given a set of
117 * flags, a user specified alignment and the size of the objects.
118 */
119unsigned long calculate_alignment(unsigned long flags,
120 unsigned long align, unsigned long size)
121{
122 /*
123 * If the user wants hardware cache aligned objects then follow that
124 * suggestion if the object is sufficiently large.
125 *
126 * The hardware cache alignment cannot override the specified
127 * alignment though. If that is greater then use it.
128 */
129 if (flags & SLAB_HWCACHE_ALIGN) {
130 unsigned long ralign = cache_line_size();
131 while (size <= ralign / 2)
132 ralign /= 2;
133 align = max(align, ralign);
134 }
135
136 if (align < ARCH_SLAB_MINALIGN)
137 align = ARCH_SLAB_MINALIGN;
138
139 return ALIGN(align, sizeof(void *));
140}
141
142
143/*
Christoph Lameter039363f2012-07-06 15:25:10 -0500144 * kmem_cache_create - Create a cache.
145 * @name: A string which is used in /proc/slabinfo to identify this cache.
146 * @size: The size of objects to be created in this cache.
147 * @align: The required alignment for the objects.
148 * @flags: SLAB flags
149 * @ctor: A constructor for the objects.
150 *
151 * Returns a ptr to the cache on success, NULL on failure.
152 * Cannot be called within a interrupt, but can be interrupted.
153 * The @ctor is run when new pages are allocated by the cache.
154 *
155 * The flags are
156 *
157 * %SLAB_POISON - Poison the slab with a known test pattern (a5a5a5a5)
158 * to catch references to uninitialised memory.
159 *
160 * %SLAB_RED_ZONE - Insert `Red' zones around the allocated memory to check
161 * for buffer overruns.
162 *
163 * %SLAB_HWCACHE_ALIGN - Align the objects in this cache to a hardware
164 * cacheline. This can be beneficial if you're counting cycles as closely
165 * as davem.
166 */
167
Glauber Costa2633d7a2012-12-18 14:22:34 -0800168struct kmem_cache *
169kmem_cache_create_memcg(struct mem_cgroup *memcg, const char *name, size_t size,
Glauber Costa943a4512012-12-18 14:23:03 -0800170 size_t align, unsigned long flags, void (*ctor)(void *),
171 struct kmem_cache *parent_cache)
Christoph Lameter039363f2012-07-06 15:25:10 -0500172{
173 struct kmem_cache *s = NULL;
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800174 int err;
Christoph Lameter039363f2012-07-06 15:25:10 -0500175
Pekka Enbergb9205362012-08-16 10:12:18 +0300176 get_online_cpus();
177 mutex_lock(&slab_mutex);
Christoph Lameter686d5502012-09-05 00:20:33 +0000178
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800179 err = kmem_cache_sanity_check(memcg, name, size);
180 if (err)
181 goto out_unlock;
Christoph Lameter686d5502012-09-05 00:20:33 +0000182
Glauber Costad8843922012-10-17 15:36:51 +0400183 /*
184 * Some allocators will constraint the set of valid flags to a subset
185 * of all flags. We expect them to define CACHE_CREATE_MASK in this
186 * case, and we'll just provide them with a sanitized version of the
187 * passed flags.
188 */
189 flags &= CACHE_CREATE_MASK;
Christoph Lameter686d5502012-09-05 00:20:33 +0000190
Glauber Costa2633d7a2012-12-18 14:22:34 -0800191 s = __kmem_cache_alias(memcg, name, size, align, flags, ctor);
Christoph Lametercbb79692012-09-05 00:18:32 +0000192 if (s)
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800193 goto out_unlock;
Christoph Lametercbb79692012-09-05 00:18:32 +0000194
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800195 err = -ENOMEM;
Christoph Lameter278b1bb2012-09-05 00:20:34 +0000196 s = kmem_cache_zalloc(kmem_cache, GFP_KERNEL);
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800197 if (!s)
198 goto out_unlock;
Glauber Costa2633d7a2012-12-18 14:22:34 -0800199
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800200 s->object_size = s->size = size;
201 s->align = calculate_alignment(flags, align, size);
202 s->ctor = ctor;
Glauber Costa2633d7a2012-12-18 14:22:34 -0800203
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800204 s->name = kstrdup(name, GFP_KERNEL);
205 if (!s->name)
206 goto out_free_cache;
Christoph Lameter8a13a4c2012-09-04 23:18:33 +0000207
Vladimir Davydov363a0442014-01-23 15:52:56 -0800208 err = memcg_alloc_cache_params(memcg, s, parent_cache);
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800209 if (err)
210 goto out_free_cache;
Christoph Lameter7c9adf52012-09-04 23:38:33 +0000211
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800212 err = __kmem_cache_create(s, flags);
213 if (err)
214 goto out_free_cache;
215
216 s->refcount = 1;
217 list_add(&s->list, &slab_caches);
Vladimir Davydov1aa13252014-01-23 15:52:58 -0800218 memcg_register_cache(s);
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800219
220out_unlock:
Christoph Lameter20cea962012-07-06 15:25:13 -0500221 mutex_unlock(&slab_mutex);
222 put_online_cpus();
223
Christoph Lameter686d5502012-09-05 00:20:33 +0000224 if (err) {
Christoph Lameter686d5502012-09-05 00:20:33 +0000225 if (flags & SLAB_PANIC)
226 panic("kmem_cache_create: Failed to create slab '%s'. Error %d\n",
227 name, err);
228 else {
229 printk(KERN_WARNING "kmem_cache_create(%s) failed with error %d",
230 name, err);
231 dump_stack();
232 }
Christoph Lameter686d5502012-09-05 00:20:33 +0000233 return NULL;
234 }
Christoph Lameter039363f2012-07-06 15:25:10 -0500235 return s;
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800236
237out_free_cache:
Vladimir Davydov363a0442014-01-23 15:52:56 -0800238 memcg_free_cache_params(s);
Vladimir Davydov3965fc32014-01-23 15:52:55 -0800239 kfree(s->name);
240 kmem_cache_free(kmem_cache, s);
241 goto out_unlock;
Christoph Lameter039363f2012-07-06 15:25:10 -0500242}
Glauber Costa2633d7a2012-12-18 14:22:34 -0800243
244struct kmem_cache *
245kmem_cache_create(const char *name, size_t size, size_t align,
246 unsigned long flags, void (*ctor)(void *))
247{
Glauber Costa943a4512012-12-18 14:23:03 -0800248 return kmem_cache_create_memcg(NULL, name, size, align, flags, ctor, NULL);
Glauber Costa2633d7a2012-12-18 14:22:34 -0800249}
Christoph Lameter039363f2012-07-06 15:25:10 -0500250EXPORT_SYMBOL(kmem_cache_create);
Christoph Lameter97d06602012-07-06 15:25:11 -0500251
Christoph Lameter945cf2b2012-09-04 23:18:33 +0000252void kmem_cache_destroy(struct kmem_cache *s)
253{
Glauber Costa7cf27982012-12-18 14:22:55 -0800254 /* Destroy all the children caches if we aren't a memcg cache */
255 kmem_cache_destroy_memcg_children(s);
256
Christoph Lameter945cf2b2012-09-04 23:18:33 +0000257 get_online_cpus();
258 mutex_lock(&slab_mutex);
259 s->refcount--;
260 if (!s->refcount) {
261 list_del(&s->list);
262
263 if (!__kmem_cache_shutdown(s)) {
Jiri Kosina210ed9d2012-10-08 09:26:01 +0200264 mutex_unlock(&slab_mutex);
Christoph Lameter945cf2b2012-09-04 23:18:33 +0000265 if (s->flags & SLAB_DESTROY_BY_RCU)
266 rcu_barrier();
267
Vladimir Davydov1aa13252014-01-23 15:52:58 -0800268 memcg_unregister_cache(s);
269 memcg_free_cache_params(s);
Christoph Lameterdb265ec2012-09-04 23:18:33 +0000270 kfree(s->name);
Christoph Lameter8f4c7652012-09-05 00:18:32 +0000271 kmem_cache_free(kmem_cache, s);
Christoph Lameter945cf2b2012-09-04 23:18:33 +0000272 } else {
273 list_add(&s->list, &slab_caches);
Jiri Kosina210ed9d2012-10-08 09:26:01 +0200274 mutex_unlock(&slab_mutex);
Christoph Lameter945cf2b2012-09-04 23:18:33 +0000275 printk(KERN_ERR "kmem_cache_destroy %s: Slab cache still has objects\n",
276 s->name);
277 dump_stack();
278 }
Jiri Kosina210ed9d2012-10-08 09:26:01 +0200279 } else {
280 mutex_unlock(&slab_mutex);
Christoph Lameter945cf2b2012-09-04 23:18:33 +0000281 }
Christoph Lameter945cf2b2012-09-04 23:18:33 +0000282 put_online_cpus();
283}
284EXPORT_SYMBOL(kmem_cache_destroy);
285
Christoph Lameter97d06602012-07-06 15:25:11 -0500286int slab_is_available(void)
287{
288 return slab_state >= UP;
289}
Glauber Costab7454ad2012-10-19 18:20:25 +0400290
Christoph Lameter45530c42012-11-28 16:23:07 +0000291#ifndef CONFIG_SLOB
292/* Create a cache during boot when no slab services are available yet */
293void __init create_boot_cache(struct kmem_cache *s, const char *name, size_t size,
294 unsigned long flags)
295{
296 int err;
297
298 s->name = name;
299 s->size = s->object_size = size;
Christoph Lameter45906852012-11-28 16:23:16 +0000300 s->align = calculate_alignment(flags, ARCH_KMALLOC_MINALIGN, size);
Christoph Lameter45530c42012-11-28 16:23:07 +0000301 err = __kmem_cache_create(s, flags);
302
303 if (err)
Christoph Lameter31ba7342013-01-10 19:00:53 +0000304 panic("Creation of kmalloc slab %s size=%zu failed. Reason %d\n",
Christoph Lameter45530c42012-11-28 16:23:07 +0000305 name, size, err);
306
307 s->refcount = -1; /* Exempt from merging for now */
308}
309
310struct kmem_cache *__init create_kmalloc_cache(const char *name, size_t size,
311 unsigned long flags)
312{
313 struct kmem_cache *s = kmem_cache_zalloc(kmem_cache, GFP_NOWAIT);
314
315 if (!s)
316 panic("Out of memory when creating slab %s\n", name);
317
318 create_boot_cache(s, name, size, flags);
319 list_add(&s->list, &slab_caches);
320 s->refcount = 1;
321 return s;
322}
323
Christoph Lameter9425c582013-01-10 19:12:17 +0000324struct kmem_cache *kmalloc_caches[KMALLOC_SHIFT_HIGH + 1];
325EXPORT_SYMBOL(kmalloc_caches);
326
327#ifdef CONFIG_ZONE_DMA
328struct kmem_cache *kmalloc_dma_caches[KMALLOC_SHIFT_HIGH + 1];
329EXPORT_SYMBOL(kmalloc_dma_caches);
330#endif
331
Christoph Lameterf97d5f62013-01-10 19:12:17 +0000332/*
Christoph Lameter2c59dd62013-01-10 19:14:19 +0000333 * Conversion table for small slabs sizes / 8 to the index in the
334 * kmalloc array. This is necessary for slabs < 192 since we have non power
335 * of two cache sizes there. The size of larger slabs can be determined using
336 * fls.
337 */
338static s8 size_index[24] = {
339 3, /* 8 */
340 4, /* 16 */
341 5, /* 24 */
342 5, /* 32 */
343 6, /* 40 */
344 6, /* 48 */
345 6, /* 56 */
346 6, /* 64 */
347 1, /* 72 */
348 1, /* 80 */
349 1, /* 88 */
350 1, /* 96 */
351 7, /* 104 */
352 7, /* 112 */
353 7, /* 120 */
354 7, /* 128 */
355 2, /* 136 */
356 2, /* 144 */
357 2, /* 152 */
358 2, /* 160 */
359 2, /* 168 */
360 2, /* 176 */
361 2, /* 184 */
362 2 /* 192 */
363};
364
365static inline int size_index_elem(size_t bytes)
366{
367 return (bytes - 1) / 8;
368}
369
370/*
371 * Find the kmem_cache structure that serves a given size of
372 * allocation
373 */
374struct kmem_cache *kmalloc_slab(size_t size, gfp_t flags)
375{
376 int index;
377
Joonsoo Kim9de1bc82013-08-02 11:02:42 +0900378 if (unlikely(size > KMALLOC_MAX_SIZE)) {
Sasha Levin907985f2013-06-10 15:18:00 -0400379 WARN_ON_ONCE(!(flags & __GFP_NOWARN));
Christoph Lameter6286ae92013-05-03 15:43:18 +0000380 return NULL;
Sasha Levin907985f2013-06-10 15:18:00 -0400381 }
Christoph Lameter6286ae92013-05-03 15:43:18 +0000382
Christoph Lameter2c59dd62013-01-10 19:14:19 +0000383 if (size <= 192) {
384 if (!size)
385 return ZERO_SIZE_PTR;
386
387 index = size_index[size_index_elem(size)];
388 } else
389 index = fls(size - 1);
390
391#ifdef CONFIG_ZONE_DMA
Joonsoo Kimb1e05412013-02-04 23:46:46 +0900392 if (unlikely((flags & GFP_DMA)))
Christoph Lameter2c59dd62013-01-10 19:14:19 +0000393 return kmalloc_dma_caches[index];
394
395#endif
396 return kmalloc_caches[index];
397}
398
399/*
Christoph Lameterf97d5f62013-01-10 19:12:17 +0000400 * Create the kmalloc array. Some of the regular kmalloc arrays
401 * may already have been created because they were needed to
402 * enable allocations for slab creation.
403 */
404void __init create_kmalloc_caches(unsigned long flags)
405{
406 int i;
407
Christoph Lameter2c59dd62013-01-10 19:14:19 +0000408 /*
409 * Patch up the size_index table if we have strange large alignment
410 * requirements for the kmalloc array. This is only the case for
411 * MIPS it seems. The standard arches will not generate any code here.
412 *
413 * Largest permitted alignment is 256 bytes due to the way we
414 * handle the index determination for the smaller caches.
415 *
416 * Make sure that nothing crazy happens if someone starts tinkering
417 * around with ARCH_KMALLOC_MINALIGN
418 */
419 BUILD_BUG_ON(KMALLOC_MIN_SIZE > 256 ||
420 (KMALLOC_MIN_SIZE & (KMALLOC_MIN_SIZE - 1)));
421
422 for (i = 8; i < KMALLOC_MIN_SIZE; i += 8) {
423 int elem = size_index_elem(i);
424
425 if (elem >= ARRAY_SIZE(size_index))
426 break;
427 size_index[elem] = KMALLOC_SHIFT_LOW;
428 }
429
430 if (KMALLOC_MIN_SIZE >= 64) {
431 /*
432 * The 96 byte size cache is not used if the alignment
433 * is 64 byte.
434 */
435 for (i = 64 + 8; i <= 96; i += 8)
436 size_index[size_index_elem(i)] = 7;
437
438 }
439
440 if (KMALLOC_MIN_SIZE >= 128) {
441 /*
442 * The 192 byte sized cache is not used if the alignment
443 * is 128 byte. Redirect kmalloc to use the 256 byte cache
444 * instead.
445 */
446 for (i = 128 + 8; i <= 192; i += 8)
447 size_index[size_index_elem(i)] = 8;
448 }
Christoph Lameter8a965b32013-05-03 18:04:18 +0000449 for (i = KMALLOC_SHIFT_LOW; i <= KMALLOC_SHIFT_HIGH; i++) {
450 if (!kmalloc_caches[i]) {
Christoph Lameterf97d5f62013-01-10 19:12:17 +0000451 kmalloc_caches[i] = create_kmalloc_cache(NULL,
452 1 << i, flags);
Christoph Lameter8a965b32013-05-03 18:04:18 +0000453 }
Chris Mason956e46e2013-05-08 15:56:28 -0400454
455 /*
456 * Caches that are not of the two-to-the-power-of size.
457 * These have to be created immediately after the
458 * earlier power of two caches
459 */
460 if (KMALLOC_MIN_SIZE <= 32 && !kmalloc_caches[1] && i == 6)
461 kmalloc_caches[1] = create_kmalloc_cache(NULL, 96, flags);
462
463 if (KMALLOC_MIN_SIZE <= 64 && !kmalloc_caches[2] && i == 7)
464 kmalloc_caches[2] = create_kmalloc_cache(NULL, 192, flags);
Christoph Lameter8a965b32013-05-03 18:04:18 +0000465 }
466
Christoph Lameterf97d5f62013-01-10 19:12:17 +0000467 /* Kmalloc array is now usable */
468 slab_state = UP;
469
470 for (i = 0; i <= KMALLOC_SHIFT_HIGH; i++) {
471 struct kmem_cache *s = kmalloc_caches[i];
472 char *n;
473
474 if (s) {
475 n = kasprintf(GFP_NOWAIT, "kmalloc-%d", kmalloc_size(i));
476
477 BUG_ON(!n);
478 s->name = n;
479 }
480 }
481
482#ifdef CONFIG_ZONE_DMA
483 for (i = 0; i <= KMALLOC_SHIFT_HIGH; i++) {
484 struct kmem_cache *s = kmalloc_caches[i];
485
486 if (s) {
487 int size = kmalloc_size(i);
488 char *n = kasprintf(GFP_NOWAIT,
489 "dma-kmalloc-%d", size);
490
491 BUG_ON(!n);
492 kmalloc_dma_caches[i] = create_kmalloc_cache(n,
493 size, SLAB_CACHE_DMA | flags);
494 }
495 }
496#endif
497}
Christoph Lameter45530c42012-11-28 16:23:07 +0000498#endif /* !CONFIG_SLOB */
499
Christoph Lameterf1b6eb62013-09-04 16:35:34 +0000500#ifdef CONFIG_TRACING
501void *kmalloc_order_trace(size_t size, gfp_t flags, unsigned int order)
502{
503 void *ret = kmalloc_order(size, flags, order);
504 trace_kmalloc(_RET_IP_, ret, size, PAGE_SIZE << order, flags);
505 return ret;
506}
507EXPORT_SYMBOL(kmalloc_order_trace);
508#endif
Christoph Lameter45530c42012-11-28 16:23:07 +0000509
Glauber Costab7454ad2012-10-19 18:20:25 +0400510#ifdef CONFIG_SLABINFO
Wanpeng Lie9b4db22013-07-04 08:33:24 +0800511
512#ifdef CONFIG_SLAB
513#define SLABINFO_RIGHTS (S_IWUSR | S_IRUSR)
514#else
515#define SLABINFO_RIGHTS S_IRUSR
516#endif
517
Glauber Costa749c5412012-12-18 14:23:01 -0800518void print_slabinfo_header(struct seq_file *m)
Glauber Costabcee6e22012-10-19 18:20:26 +0400519{
520 /*
521 * Output format version, so at least we can change it
522 * without _too_ many complaints.
523 */
524#ifdef CONFIG_DEBUG_SLAB
525 seq_puts(m, "slabinfo - version: 2.1 (statistics)\n");
526#else
527 seq_puts(m, "slabinfo - version: 2.1\n");
528#endif
529 seq_puts(m, "# name <active_objs> <num_objs> <objsize> "
530 "<objperslab> <pagesperslab>");
531 seq_puts(m, " : tunables <limit> <batchcount> <sharedfactor>");
532 seq_puts(m, " : slabdata <active_slabs> <num_slabs> <sharedavail>");
533#ifdef CONFIG_DEBUG_SLAB
534 seq_puts(m, " : globalstat <listallocs> <maxobjs> <grown> <reaped> "
535 "<error> <maxfreeable> <nodeallocs> <remotefrees> <alienoverflow>");
536 seq_puts(m, " : cpustat <allochit> <allocmiss> <freehit> <freemiss>");
537#endif
538 seq_putc(m, '\n');
539}
540
Glauber Costab7454ad2012-10-19 18:20:25 +0400541static void *s_start(struct seq_file *m, loff_t *pos)
542{
543 loff_t n = *pos;
544
545 mutex_lock(&slab_mutex);
546 if (!n)
547 print_slabinfo_header(m);
548
549 return seq_list_start(&slab_caches, *pos);
550}
551
Wanpeng Li276a2432013-07-08 08:08:28 +0800552void *slab_next(struct seq_file *m, void *p, loff_t *pos)
Glauber Costab7454ad2012-10-19 18:20:25 +0400553{
554 return seq_list_next(p, &slab_caches, pos);
555}
556
Wanpeng Li276a2432013-07-08 08:08:28 +0800557void slab_stop(struct seq_file *m, void *p)
Glauber Costab7454ad2012-10-19 18:20:25 +0400558{
559 mutex_unlock(&slab_mutex);
560}
561
Glauber Costa749c5412012-12-18 14:23:01 -0800562static void
563memcg_accumulate_slabinfo(struct kmem_cache *s, struct slabinfo *info)
Glauber Costab7454ad2012-10-19 18:20:25 +0400564{
Glauber Costa749c5412012-12-18 14:23:01 -0800565 struct kmem_cache *c;
566 struct slabinfo sinfo;
567 int i;
568
569 if (!is_root_cache(s))
570 return;
571
572 for_each_memcg_cache_index(i) {
Qiang Huang2ade4de2013-11-12 15:08:23 -0800573 c = cache_from_memcg_idx(s, i);
Glauber Costa749c5412012-12-18 14:23:01 -0800574 if (!c)
575 continue;
576
577 memset(&sinfo, 0, sizeof(sinfo));
578 get_slabinfo(c, &sinfo);
579
580 info->active_slabs += sinfo.active_slabs;
581 info->num_slabs += sinfo.num_slabs;
582 info->shared_avail += sinfo.shared_avail;
583 info->active_objs += sinfo.active_objs;
584 info->num_objs += sinfo.num_objs;
585 }
586}
587
588int cache_show(struct kmem_cache *s, struct seq_file *m)
589{
Glauber Costa0d7561c2012-10-19 18:20:27 +0400590 struct slabinfo sinfo;
591
592 memset(&sinfo, 0, sizeof(sinfo));
593 get_slabinfo(s, &sinfo);
594
Glauber Costa749c5412012-12-18 14:23:01 -0800595 memcg_accumulate_slabinfo(s, &sinfo);
596
Glauber Costa0d7561c2012-10-19 18:20:27 +0400597 seq_printf(m, "%-17s %6lu %6lu %6u %4u %4d",
Glauber Costa749c5412012-12-18 14:23:01 -0800598 cache_name(s), sinfo.active_objs, sinfo.num_objs, s->size,
Glauber Costa0d7561c2012-10-19 18:20:27 +0400599 sinfo.objects_per_slab, (1 << sinfo.cache_order));
600
601 seq_printf(m, " : tunables %4u %4u %4u",
602 sinfo.limit, sinfo.batchcount, sinfo.shared);
603 seq_printf(m, " : slabdata %6lu %6lu %6lu",
604 sinfo.active_slabs, sinfo.num_slabs, sinfo.shared_avail);
605 slabinfo_show_stats(m, s);
606 seq_putc(m, '\n');
607 return 0;
Glauber Costab7454ad2012-10-19 18:20:25 +0400608}
609
Glauber Costa749c5412012-12-18 14:23:01 -0800610static int s_show(struct seq_file *m, void *p)
611{
612 struct kmem_cache *s = list_entry(p, struct kmem_cache, list);
613
614 if (!is_root_cache(s))
615 return 0;
616 return cache_show(s, m);
617}
618
Glauber Costab7454ad2012-10-19 18:20:25 +0400619/*
620 * slabinfo_op - iterator that generates /proc/slabinfo
621 *
622 * Output layout:
623 * cache-name
624 * num-active-objs
625 * total-objs
626 * object size
627 * num-active-slabs
628 * total-slabs
629 * num-pages-per-slab
630 * + further values on SMP and with statistics enabled
631 */
632static const struct seq_operations slabinfo_op = {
633 .start = s_start,
Wanpeng Li276a2432013-07-08 08:08:28 +0800634 .next = slab_next,
635 .stop = slab_stop,
Glauber Costab7454ad2012-10-19 18:20:25 +0400636 .show = s_show,
637};
638
639static int slabinfo_open(struct inode *inode, struct file *file)
640{
641 return seq_open(file, &slabinfo_op);
642}
643
644static const struct file_operations proc_slabinfo_operations = {
645 .open = slabinfo_open,
646 .read = seq_read,
647 .write = slabinfo_write,
648 .llseek = seq_lseek,
649 .release = seq_release,
650};
651
652static int __init slab_proc_init(void)
653{
Wanpeng Lie9b4db22013-07-04 08:33:24 +0800654 proc_create("slabinfo", SLABINFO_RIGHTS, NULL,
655 &proc_slabinfo_operations);
Glauber Costab7454ad2012-10-19 18:20:25 +0400656 return 0;
657}
658module_init(slab_proc_init);
659#endif /* CONFIG_SLABINFO */