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Balbir Singh8cdea7c2008-02-07 00:13:50 -08001/* memcontrol.c - Memory Controller
2 *
3 * Copyright IBM Corporation, 2007
4 * Author Balbir Singh <balbir@linux.vnet.ibm.com>
5 *
Pavel Emelianov78fb7462008-02-07 00:13:51 -08006 * Copyright 2007 OpenVZ SWsoft Inc
7 * Author: Pavel Emelianov <xemul@openvz.org>
8 *
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08009 * Memory thresholds
10 * Copyright (C) 2009 Nokia Corporation
11 * Author: Kirill A. Shutemov
12 *
Balbir Singh8cdea7c2008-02-07 00:13:50 -080013 * This program is free software; you can redistribute it and/or modify
14 * it under the terms of the GNU General Public License as published by
15 * the Free Software Foundation; either version 2 of the License, or
16 * (at your option) any later version.
17 *
18 * This program is distributed in the hope that it will be useful,
19 * but WITHOUT ANY WARRANTY; without even the implied warranty of
20 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
21 * GNU General Public License for more details.
22 */
23
24#include <linux/res_counter.h>
25#include <linux/memcontrol.h>
26#include <linux/cgroup.h>
Pavel Emelianov78fb7462008-02-07 00:13:51 -080027#include <linux/mm.h>
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -080028#include <linux/hugetlb.h>
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -080029#include <linux/pagemap.h>
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -080030#include <linux/smp.h>
Balbir Singh8a9f3cc2008-02-07 00:13:53 -080031#include <linux/page-flags.h>
Balbir Singh66e17072008-02-07 00:13:56 -080032#include <linux/backing-dev.h>
Balbir Singh8a9f3cc2008-02-07 00:13:53 -080033#include <linux/bit_spinlock.h>
34#include <linux/rcupdate.h>
Balbir Singhe2224322009-04-02 16:57:39 -070035#include <linux/limits.h>
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -080036#include <linux/mutex.h>
Balbir Singhf64c3f52009-09-23 15:56:37 -070037#include <linux/rbtree.h>
Balbir Singhb6ac57d2008-04-29 01:00:19 -070038#include <linux/slab.h>
Balbir Singh66e17072008-02-07 00:13:56 -080039#include <linux/swap.h>
Daisuke Nishimura02491442010-03-10 15:22:17 -080040#include <linux/swapops.h>
Balbir Singh66e17072008-02-07 00:13:56 -080041#include <linux/spinlock.h>
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -080042#include <linux/eventfd.h>
43#include <linux/sort.h>
Balbir Singh66e17072008-02-07 00:13:56 -080044#include <linux/fs.h>
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -080045#include <linux/seq_file.h>
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -070046#include <linux/vmalloc.h>
Christoph Lameterb69408e2008-10-18 20:26:14 -070047#include <linux/mm_inline.h>
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -070048#include <linux/page_cgroup.h>
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -080049#include <linux/cpu.h>
KAMEZAWA Hiroyuki158e0a22010-08-10 18:03:00 -070050#include <linux/oom.h>
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -080051#include "internal.h"
Balbir Singh8cdea7c2008-02-07 00:13:50 -080052
Balbir Singh8697d332008-02-07 00:13:59 -080053#include <asm/uaccess.h>
54
KOSAKI Motohirocc8e9702010-08-09 17:19:57 -070055#include <trace/events/vmscan.h>
56
KAMEZAWA Hiroyukia181b0e2008-07-25 01:47:08 -070057struct cgroup_subsys mem_cgroup_subsys __read_mostly;
KAMEZAWA Hiroyukia181b0e2008-07-25 01:47:08 -070058#define MEM_CGROUP_RECLAIM_RETRIES 5
Balbir Singh4b3bde42009-09-23 15:56:32 -070059struct mem_cgroup *root_mem_cgroup __read_mostly;
Balbir Singh8cdea7c2008-02-07 00:13:50 -080060
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -080061#ifdef CONFIG_CGROUP_MEM_RES_CTLR_SWAP
Li Zefan338c8432009-06-17 16:27:15 -070062/* Turned on only when memory cgroup is enabled && really_do_swap_account = 1 */
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -080063int do_swap_account __read_mostly;
Michal Hockoa42c3902010-11-24 12:57:08 -080064
65/* for remember boot option*/
66#ifdef CONFIG_CGROUP_MEM_RES_CTLR_SWAP_ENABLED
67static int really_do_swap_account __initdata = 1;
68#else
69static int really_do_swap_account __initdata = 0;
70#endif
71
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -080072#else
73#define do_swap_account (0)
74#endif
75
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -080076/*
77 * Per memcg event counter is incremented at every pagein/pageout. This counter
78 * is used for trigger some periodic events. This is straightforward and better
79 * than using jiffies etc. to handle periodic memcg event.
80 *
81 * These values will be used as !((event) & ((1 <<(thresh)) - 1))
82 */
83#define THRESHOLDS_EVENTS_THRESH (7) /* once in 128 */
84#define SOFTLIMIT_EVENTS_THRESH (10) /* once in 1024 */
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -080085
Balbir Singh8cdea7c2008-02-07 00:13:50 -080086/*
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -080087 * Statistics for memory cgroup.
88 */
89enum mem_cgroup_stat_index {
90 /*
91 * For MEM_CONTAINER_TYPE_ALL, usage = pagecache + rss.
92 */
93 MEM_CGROUP_STAT_CACHE, /* # of pages charged as cache */
Balbir Singhd69b0422009-06-17 16:26:34 -070094 MEM_CGROUP_STAT_RSS, /* # of pages charged as anon rss */
KAMEZAWA Hiroyukid8046582009-12-15 16:47:09 -080095 MEM_CGROUP_STAT_FILE_MAPPED, /* # of pages charged as file rss */
Balaji Rao55e462b2008-05-01 04:35:12 -070096 MEM_CGROUP_STAT_PGPGIN_COUNT, /* # of pages paged in */
97 MEM_CGROUP_STAT_PGPGOUT_COUNT, /* # of pages paged out */
Balbir Singh0c3e73e2009-09-23 15:56:42 -070098 MEM_CGROUP_STAT_SWAPOUT, /* # of pages, swapped out */
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -070099 MEM_CGROUP_STAT_DATA, /* end of data requires synchronization */
100 /* incremented at every pagein/pageout */
101 MEM_CGROUP_EVENTS = MEM_CGROUP_STAT_DATA,
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -0700102 MEM_CGROUP_ON_MOVE, /* someone is moving account between groups */
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800103
104 MEM_CGROUP_STAT_NSTATS,
105};
106
107struct mem_cgroup_stat_cpu {
108 s64 count[MEM_CGROUP_STAT_NSTATS];
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800109};
110
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800111/*
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800112 * per-zone information in memory controller.
113 */
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800114struct mem_cgroup_per_zone {
KAMEZAWA Hiroyuki072c56c12008-02-07 00:14:39 -0800115 /*
116 * spin_lock to protect the per cgroup LRU
117 */
Christoph Lameterb69408e2008-10-18 20:26:14 -0700118 struct list_head lists[NR_LRU_LISTS];
119 unsigned long count[NR_LRU_LISTS];
KOSAKI Motohiro3e2f41f2009-01-07 18:08:20 -0800120
121 struct zone_reclaim_stat reclaim_stat;
Balbir Singhf64c3f52009-09-23 15:56:37 -0700122 struct rb_node tree_node; /* RB tree node */
123 unsigned long long usage_in_excess;/* Set to the value by which */
124 /* the soft limit is exceeded*/
125 bool on_tree;
Balbir Singh4e416952009-09-23 15:56:39 -0700126 struct mem_cgroup *mem; /* Back pointer, we cannot */
127 /* use container_of */
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800128};
129/* Macro for accessing counter */
130#define MEM_CGROUP_ZSTAT(mz, idx) ((mz)->count[(idx)])
131
132struct mem_cgroup_per_node {
133 struct mem_cgroup_per_zone zoneinfo[MAX_NR_ZONES];
134};
135
136struct mem_cgroup_lru_info {
137 struct mem_cgroup_per_node *nodeinfo[MAX_NUMNODES];
138};
139
140/*
Balbir Singhf64c3f52009-09-23 15:56:37 -0700141 * Cgroups above their limits are maintained in a RB-Tree, independent of
142 * their hierarchy representation
143 */
144
145struct mem_cgroup_tree_per_zone {
146 struct rb_root rb_root;
147 spinlock_t lock;
148};
149
150struct mem_cgroup_tree_per_node {
151 struct mem_cgroup_tree_per_zone rb_tree_per_zone[MAX_NR_ZONES];
152};
153
154struct mem_cgroup_tree {
155 struct mem_cgroup_tree_per_node *rb_tree_per_node[MAX_NUMNODES];
156};
157
158static struct mem_cgroup_tree soft_limit_tree __read_mostly;
159
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800160struct mem_cgroup_threshold {
161 struct eventfd_ctx *eventfd;
162 u64 threshold;
163};
164
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -0700165/* For threshold */
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800166struct mem_cgroup_threshold_ary {
167 /* An array index points to threshold just below usage. */
Phil Carmody5407a562010-05-26 14:42:42 -0700168 int current_threshold;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800169 /* Size of entries[] */
170 unsigned int size;
171 /* Array of thresholds */
172 struct mem_cgroup_threshold entries[0];
173};
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -0700174
175struct mem_cgroup_thresholds {
176 /* Primary thresholds array */
177 struct mem_cgroup_threshold_ary *primary;
178 /*
179 * Spare threshold array.
180 * This is needed to make mem_cgroup_unregister_event() "never fail".
181 * It must be able to store at least primary->size - 1 entries.
182 */
183 struct mem_cgroup_threshold_ary *spare;
184};
185
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -0700186/* for OOM */
187struct mem_cgroup_eventfd_list {
188 struct list_head list;
189 struct eventfd_ctx *eventfd;
190};
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800191
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800192static void mem_cgroup_threshold(struct mem_cgroup *mem);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -0700193static void mem_cgroup_oom_notify(struct mem_cgroup *mem);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800194
Balbir Singhf64c3f52009-09-23 15:56:37 -0700195/*
Balbir Singh8cdea7c2008-02-07 00:13:50 -0800196 * The memory controller data structure. The memory controller controls both
197 * page cache and RSS per cgroup. We would eventually like to provide
198 * statistics based on the statistics developed by Rik Van Riel for clock-pro,
199 * to help the administrator determine what knobs to tune.
200 *
201 * TODO: Add a water mark for the memory controller. Reclaim will begin when
Balbir Singh8a9f3cc2008-02-07 00:13:53 -0800202 * we hit the water mark. May be even add a low water mark, such that
203 * no reclaim occurs from a cgroup at it's low water mark, this is
204 * a feature that will be implemented much later in the future.
Balbir Singh8cdea7c2008-02-07 00:13:50 -0800205 */
206struct mem_cgroup {
207 struct cgroup_subsys_state css;
208 /*
209 * the counter to account for memory usage
210 */
211 struct res_counter res;
Pavel Emelianov78fb7462008-02-07 00:13:51 -0800212 /*
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800213 * the counter to account for mem+swap usage.
214 */
215 struct res_counter memsw;
216 /*
Pavel Emelianov78fb7462008-02-07 00:13:51 -0800217 * Per cgroup active and inactive list, similar to the
218 * per zone LRU lists.
Pavel Emelianov78fb7462008-02-07 00:13:51 -0800219 */
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800220 struct mem_cgroup_lru_info info;
KAMEZAWA Hiroyuki072c56c12008-02-07 00:14:39 -0800221
KOSAKI Motohiro2733c062009-01-07 18:08:23 -0800222 /*
223 protect against reclaim related member.
224 */
225 spinlock_t reclaim_param_lock;
226
Balbir Singh6d61ef42009-01-07 18:08:06 -0800227 /*
André Goddard Rosaaf901ca2009-11-14 13:09:05 -0200228 * While reclaiming in a hierarchy, we cache the last child we
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -0700229 * reclaimed from.
Balbir Singh6d61ef42009-01-07 18:08:06 -0800230 */
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -0700231 int last_scanned_child;
Balbir Singh18f59ea2009-01-07 18:08:07 -0800232 /*
233 * Should the accounting and control be hierarchical, per subtree?
234 */
235 bool use_hierarchy;
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -0800236 atomic_t oom_lock;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800237 atomic_t refcnt;
KOSAKI Motohiro14797e22009-01-07 18:08:18 -0800238
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -0800239 unsigned int swappiness;
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -0700240 /* OOM-Killer disable */
241 int oom_kill_disable;
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -0800242
KAMEZAWA Hiroyuki22a668d2009-06-17 16:27:19 -0700243 /* set when res.limit == memsw.limit */
244 bool memsw_is_minimum;
245
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800246 /* protect arrays of thresholds */
247 struct mutex thresholds_lock;
248
249 /* thresholds for memory usage. RCU-protected */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -0700250 struct mem_cgroup_thresholds thresholds;
Kirill A. Shutemov907860e2010-05-26 14:42:46 -0700251
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800252 /* thresholds for mem+swap usage. RCU-protected */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -0700253 struct mem_cgroup_thresholds memsw_thresholds;
Kirill A. Shutemov907860e2010-05-26 14:42:46 -0700254
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -0700255 /* For oom notifier event fd */
256 struct list_head oom_notify;
257
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800258 /*
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -0800259 * Should we move charges of a task when a task is moved into this
260 * mem_cgroup ? And what type of charges should we move ?
261 */
262 unsigned long move_charge_at_immigrate;
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -0800263 /*
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800264 * percpu counter.
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800265 */
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800266 struct mem_cgroup_stat_cpu *stat;
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -0700267 /*
268 * used when a cpu is offlined or other synchronizations
269 * See mem_cgroup_read_stat().
270 */
271 struct mem_cgroup_stat_cpu nocpu_base;
272 spinlock_t pcp_counter_lock;
Balbir Singh8cdea7c2008-02-07 00:13:50 -0800273};
274
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -0800275/* Stuffs for move charges at task migration. */
276/*
277 * Types of charges to be moved. "move_charge_at_immitgrate" is treated as a
278 * left-shifted bitmap of these types.
279 */
280enum move_type {
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -0800281 MOVE_CHARGE_TYPE_ANON, /* private anonymous page and swap of it */
Daisuke Nishimura87946a72010-05-26 14:42:39 -0700282 MOVE_CHARGE_TYPE_FILE, /* file page(including tmpfs) and swap of it */
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -0800283 NR_MOVE_TYPE,
284};
285
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -0800286/* "mc" and its members are protected by cgroup_mutex */
287static struct move_charge_struct {
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -0800288 spinlock_t lock; /* for from, to */
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -0800289 struct mem_cgroup *from;
290 struct mem_cgroup *to;
291 unsigned long precharge;
Daisuke Nishimura854ffa82010-03-10 15:22:15 -0800292 unsigned long moved_charge;
Daisuke Nishimura483c30b2010-03-10 15:22:18 -0800293 unsigned long moved_swap;
Daisuke Nishimura8033b972010-03-10 15:22:16 -0800294 struct task_struct *moving_task; /* a task moving charges */
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -0800295 struct mm_struct *mm;
Daisuke Nishimura8033b972010-03-10 15:22:16 -0800296 wait_queue_head_t waitq; /* a waitq for other context */
297} mc = {
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -0700298 .lock = __SPIN_LOCK_UNLOCKED(mc.lock),
Daisuke Nishimura8033b972010-03-10 15:22:16 -0800299 .waitq = __WAIT_QUEUE_HEAD_INITIALIZER(mc.waitq),
300};
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -0800301
Daisuke Nishimura90254a62010-05-26 14:42:38 -0700302static bool move_anon(void)
303{
304 return test_bit(MOVE_CHARGE_TYPE_ANON,
305 &mc.to->move_charge_at_immigrate);
306}
307
Daisuke Nishimura87946a72010-05-26 14:42:39 -0700308static bool move_file(void)
309{
310 return test_bit(MOVE_CHARGE_TYPE_FILE,
311 &mc.to->move_charge_at_immigrate);
312}
313
Balbir Singh4e416952009-09-23 15:56:39 -0700314/*
315 * Maximum loops in mem_cgroup_hierarchical_reclaim(), used for soft
316 * limit reclaim to prevent infinite loops, if they ever occur.
317 */
318#define MEM_CGROUP_MAX_RECLAIM_LOOPS (100)
319#define MEM_CGROUP_MAX_SOFT_LIMIT_RECLAIM_LOOPS (2)
320
KAMEZAWA Hiroyuki217bc312008-02-07 00:14:17 -0800321enum charge_type {
322 MEM_CGROUP_CHARGE_TYPE_CACHE = 0,
323 MEM_CGROUP_CHARGE_TYPE_MAPPED,
Rik van Riel4f98a2f2008-10-18 20:26:32 -0700324 MEM_CGROUP_CHARGE_TYPE_SHMEM, /* used by page migration of shmem */
KAMEZAWA Hiroyukic05555b2008-10-18 20:28:11 -0700325 MEM_CGROUP_CHARGE_TYPE_FORCE, /* used by force_empty */
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -0800326 MEM_CGROUP_CHARGE_TYPE_SWAPOUT, /* for accounting swapcache */
KAMEZAWA Hiroyuki8a9478c2009-06-17 16:27:17 -0700327 MEM_CGROUP_CHARGE_TYPE_DROP, /* a page was unused swap cache */
KAMEZAWA Hiroyukic05555b2008-10-18 20:28:11 -0700328 NR_CHARGE_TYPE,
329};
330
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -0700331/* only for here (for easy reading.) */
332#define PCGF_CACHE (1UL << PCG_CACHE)
333#define PCGF_USED (1UL << PCG_USED)
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -0700334#define PCGF_LOCK (1UL << PCG_LOCK)
Balbir Singh4b3bde42009-09-23 15:56:32 -0700335/* Not used, but added here for completeness */
336#define PCGF_ACCT (1UL << PCG_ACCT)
KAMEZAWA Hiroyuki217bc312008-02-07 00:14:17 -0800337
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800338/* for encoding cft->private value on file */
339#define _MEM (0)
340#define _MEMSWAP (1)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -0700341#define _OOM_TYPE (2)
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800342#define MEMFILE_PRIVATE(x, val) (((x) << 16) | (val))
343#define MEMFILE_TYPE(val) (((val) >> 16) & 0xffff)
344#define MEMFILE_ATTR(val) ((val) & 0xffff)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -0700345/* Used for OOM nofiier */
346#define OOM_CONTROL (0)
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800347
Balbir Singh75822b42009-09-23 15:56:38 -0700348/*
349 * Reclaim flags for mem_cgroup_hierarchical_reclaim
350 */
351#define MEM_CGROUP_RECLAIM_NOSWAP_BIT 0x0
352#define MEM_CGROUP_RECLAIM_NOSWAP (1 << MEM_CGROUP_RECLAIM_NOSWAP_BIT)
353#define MEM_CGROUP_RECLAIM_SHRINK_BIT 0x1
354#define MEM_CGROUP_RECLAIM_SHRINK (1 << MEM_CGROUP_RECLAIM_SHRINK_BIT)
Balbir Singh4e416952009-09-23 15:56:39 -0700355#define MEM_CGROUP_RECLAIM_SOFT_BIT 0x2
356#define MEM_CGROUP_RECLAIM_SOFT (1 << MEM_CGROUP_RECLAIM_SOFT_BIT)
Balbir Singh75822b42009-09-23 15:56:38 -0700357
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800358static void mem_cgroup_get(struct mem_cgroup *mem);
359static void mem_cgroup_put(struct mem_cgroup *mem);
Daisuke Nishimura7bcc1bb2009-01-29 14:25:11 -0800360static struct mem_cgroup *parent_mem_cgroup(struct mem_cgroup *mem);
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -0800361static void drain_all_stock_async(void);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800362
Balbir Singhf64c3f52009-09-23 15:56:37 -0700363static struct mem_cgroup_per_zone *
364mem_cgroup_zoneinfo(struct mem_cgroup *mem, int nid, int zid)
365{
366 return &mem->info.nodeinfo[nid]->zoneinfo[zid];
367}
368
Wu Fengguangd3242362009-12-16 12:19:59 +0100369struct cgroup_subsys_state *mem_cgroup_css(struct mem_cgroup *mem)
370{
371 return &mem->css;
372}
373
Balbir Singhf64c3f52009-09-23 15:56:37 -0700374static struct mem_cgroup_per_zone *
375page_cgroup_zoneinfo(struct page_cgroup *pc)
376{
377 struct mem_cgroup *mem = pc->mem_cgroup;
378 int nid = page_cgroup_nid(pc);
379 int zid = page_cgroup_zid(pc);
380
381 if (!mem)
382 return NULL;
383
384 return mem_cgroup_zoneinfo(mem, nid, zid);
385}
386
387static struct mem_cgroup_tree_per_zone *
388soft_limit_tree_node_zone(int nid, int zid)
389{
390 return &soft_limit_tree.rb_tree_per_node[nid]->rb_tree_per_zone[zid];
391}
392
393static struct mem_cgroup_tree_per_zone *
394soft_limit_tree_from_page(struct page *page)
395{
396 int nid = page_to_nid(page);
397 int zid = page_zonenum(page);
398
399 return &soft_limit_tree.rb_tree_per_node[nid]->rb_tree_per_zone[zid];
400}
401
402static void
Balbir Singh4e416952009-09-23 15:56:39 -0700403__mem_cgroup_insert_exceeded(struct mem_cgroup *mem,
Balbir Singhf64c3f52009-09-23 15:56:37 -0700404 struct mem_cgroup_per_zone *mz,
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -0700405 struct mem_cgroup_tree_per_zone *mctz,
406 unsigned long long new_usage_in_excess)
Balbir Singhf64c3f52009-09-23 15:56:37 -0700407{
408 struct rb_node **p = &mctz->rb_root.rb_node;
409 struct rb_node *parent = NULL;
410 struct mem_cgroup_per_zone *mz_node;
411
412 if (mz->on_tree)
413 return;
414
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -0700415 mz->usage_in_excess = new_usage_in_excess;
416 if (!mz->usage_in_excess)
417 return;
Balbir Singhf64c3f52009-09-23 15:56:37 -0700418 while (*p) {
419 parent = *p;
420 mz_node = rb_entry(parent, struct mem_cgroup_per_zone,
421 tree_node);
422 if (mz->usage_in_excess < mz_node->usage_in_excess)
423 p = &(*p)->rb_left;
424 /*
425 * We can't avoid mem cgroups that are over their soft
426 * limit by the same amount
427 */
428 else if (mz->usage_in_excess >= mz_node->usage_in_excess)
429 p = &(*p)->rb_right;
430 }
431 rb_link_node(&mz->tree_node, parent, p);
432 rb_insert_color(&mz->tree_node, &mctz->rb_root);
433 mz->on_tree = true;
Balbir Singh4e416952009-09-23 15:56:39 -0700434}
435
436static void
437__mem_cgroup_remove_exceeded(struct mem_cgroup *mem,
438 struct mem_cgroup_per_zone *mz,
439 struct mem_cgroup_tree_per_zone *mctz)
440{
441 if (!mz->on_tree)
442 return;
443 rb_erase(&mz->tree_node, &mctz->rb_root);
444 mz->on_tree = false;
445}
446
447static void
Balbir Singhf64c3f52009-09-23 15:56:37 -0700448mem_cgroup_remove_exceeded(struct mem_cgroup *mem,
449 struct mem_cgroup_per_zone *mz,
450 struct mem_cgroup_tree_per_zone *mctz)
451{
452 spin_lock(&mctz->lock);
Balbir Singh4e416952009-09-23 15:56:39 -0700453 __mem_cgroup_remove_exceeded(mem, mz, mctz);
Balbir Singhf64c3f52009-09-23 15:56:37 -0700454 spin_unlock(&mctz->lock);
455}
456
Balbir Singhf64c3f52009-09-23 15:56:37 -0700457
458static void mem_cgroup_update_tree(struct mem_cgroup *mem, struct page *page)
459{
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -0700460 unsigned long long excess;
Balbir Singhf64c3f52009-09-23 15:56:37 -0700461 struct mem_cgroup_per_zone *mz;
462 struct mem_cgroup_tree_per_zone *mctz;
KAMEZAWA Hiroyuki4e649152009-10-01 15:44:11 -0700463 int nid = page_to_nid(page);
464 int zid = page_zonenum(page);
Balbir Singhf64c3f52009-09-23 15:56:37 -0700465 mctz = soft_limit_tree_from_page(page);
466
467 /*
KAMEZAWA Hiroyuki4e649152009-10-01 15:44:11 -0700468 * Necessary to update all ancestors when hierarchy is used.
469 * because their event counter is not touched.
Balbir Singhf64c3f52009-09-23 15:56:37 -0700470 */
KAMEZAWA Hiroyuki4e649152009-10-01 15:44:11 -0700471 for (; mem; mem = parent_mem_cgroup(mem)) {
472 mz = mem_cgroup_zoneinfo(mem, nid, zid);
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -0700473 excess = res_counter_soft_limit_excess(&mem->res);
KAMEZAWA Hiroyuki4e649152009-10-01 15:44:11 -0700474 /*
475 * We have to update the tree if mz is on RB-tree or
476 * mem is over its softlimit.
477 */
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -0700478 if (excess || mz->on_tree) {
KAMEZAWA Hiroyuki4e649152009-10-01 15:44:11 -0700479 spin_lock(&mctz->lock);
480 /* if on-tree, remove it */
481 if (mz->on_tree)
482 __mem_cgroup_remove_exceeded(mem, mz, mctz);
483 /*
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -0700484 * Insert again. mz->usage_in_excess will be updated.
485 * If excess is 0, no tree ops.
KAMEZAWA Hiroyuki4e649152009-10-01 15:44:11 -0700486 */
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -0700487 __mem_cgroup_insert_exceeded(mem, mz, mctz, excess);
KAMEZAWA Hiroyuki4e649152009-10-01 15:44:11 -0700488 spin_unlock(&mctz->lock);
489 }
Balbir Singhf64c3f52009-09-23 15:56:37 -0700490 }
491}
492
493static void mem_cgroup_remove_from_trees(struct mem_cgroup *mem)
494{
495 int node, zone;
496 struct mem_cgroup_per_zone *mz;
497 struct mem_cgroup_tree_per_zone *mctz;
498
499 for_each_node_state(node, N_POSSIBLE) {
500 for (zone = 0; zone < MAX_NR_ZONES; zone++) {
501 mz = mem_cgroup_zoneinfo(mem, node, zone);
502 mctz = soft_limit_tree_node_zone(node, zone);
503 mem_cgroup_remove_exceeded(mem, mz, mctz);
504 }
505 }
506}
507
Balbir Singh4e416952009-09-23 15:56:39 -0700508static inline unsigned long mem_cgroup_get_excess(struct mem_cgroup *mem)
509{
510 return res_counter_soft_limit_excess(&mem->res) >> PAGE_SHIFT;
511}
512
513static struct mem_cgroup_per_zone *
514__mem_cgroup_largest_soft_limit_node(struct mem_cgroup_tree_per_zone *mctz)
515{
516 struct rb_node *rightmost = NULL;
KAMEZAWA Hiroyuki26251ea2009-10-01 15:44:08 -0700517 struct mem_cgroup_per_zone *mz;
Balbir Singh4e416952009-09-23 15:56:39 -0700518
519retry:
KAMEZAWA Hiroyuki26251ea2009-10-01 15:44:08 -0700520 mz = NULL;
Balbir Singh4e416952009-09-23 15:56:39 -0700521 rightmost = rb_last(&mctz->rb_root);
522 if (!rightmost)
523 goto done; /* Nothing to reclaim from */
524
525 mz = rb_entry(rightmost, struct mem_cgroup_per_zone, tree_node);
526 /*
527 * Remove the node now but someone else can add it back,
528 * we will to add it back at the end of reclaim to its correct
529 * position in the tree.
530 */
531 __mem_cgroup_remove_exceeded(mz->mem, mz, mctz);
532 if (!res_counter_soft_limit_excess(&mz->mem->res) ||
533 !css_tryget(&mz->mem->css))
534 goto retry;
535done:
536 return mz;
537}
538
539static struct mem_cgroup_per_zone *
540mem_cgroup_largest_soft_limit_node(struct mem_cgroup_tree_per_zone *mctz)
541{
542 struct mem_cgroup_per_zone *mz;
543
544 spin_lock(&mctz->lock);
545 mz = __mem_cgroup_largest_soft_limit_node(mctz);
546 spin_unlock(&mctz->lock);
547 return mz;
548}
549
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -0700550/*
551 * Implementation Note: reading percpu statistics for memcg.
552 *
553 * Both of vmstat[] and percpu_counter has threshold and do periodic
554 * synchronization to implement "quick" read. There are trade-off between
555 * reading cost and precision of value. Then, we may have a chance to implement
556 * a periodic synchronizion of counter in memcg's counter.
557 *
558 * But this _read() function is used for user interface now. The user accounts
559 * memory usage by memory cgroup and he _always_ requires exact value because
560 * he accounts memory. Even if we provide quick-and-fuzzy read, we always
561 * have to visit all online cpus and make sum. So, for now, unnecessary
562 * synchronization is not implemented. (just implemented for cpu hotplug)
563 *
564 * If there are kernel internal actions which can make use of some not-exact
565 * value, and reading all cpu value can be performance bottleneck in some
566 * common workload, threashold and synchonization as vmstat[] should be
567 * implemented.
568 */
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800569static s64 mem_cgroup_read_stat(struct mem_cgroup *mem,
570 enum mem_cgroup_stat_index idx)
571{
572 int cpu;
573 s64 val = 0;
574
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -0700575 get_online_cpus();
576 for_each_online_cpu(cpu)
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800577 val += per_cpu(mem->stat->count[idx], cpu);
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -0700578#ifdef CONFIG_HOTPLUG_CPU
579 spin_lock(&mem->pcp_counter_lock);
580 val += mem->nocpu_base.count[idx];
581 spin_unlock(&mem->pcp_counter_lock);
582#endif
583 put_online_cpus();
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800584 return val;
585}
586
587static s64 mem_cgroup_local_usage(struct mem_cgroup *mem)
588{
589 s64 ret;
590
591 ret = mem_cgroup_read_stat(mem, MEM_CGROUP_STAT_RSS);
592 ret += mem_cgroup_read_stat(mem, MEM_CGROUP_STAT_CACHE);
593 return ret;
594}
595
Balbir Singh0c3e73e2009-09-23 15:56:42 -0700596static void mem_cgroup_swap_statistics(struct mem_cgroup *mem,
597 bool charge)
598{
599 int val = (charge) ? 1 : -1;
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800600 this_cpu_add(mem->stat->count[MEM_CGROUP_STAT_SWAPOUT], val);
Balbir Singh0c3e73e2009-09-23 15:56:42 -0700601}
602
KAMEZAWA Hiroyukic05555b2008-10-18 20:28:11 -0700603static void mem_cgroup_charge_statistics(struct mem_cgroup *mem,
604 struct page_cgroup *pc,
605 bool charge)
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800606{
Balbir Singh0c3e73e2009-09-23 15:56:42 -0700607 int val = (charge) ? 1 : -1;
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800608
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800609 preempt_disable();
610
KAMEZAWA Hiroyukic05555b2008-10-18 20:28:11 -0700611 if (PageCgroupCache(pc))
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800612 __this_cpu_add(mem->stat->count[MEM_CGROUP_STAT_CACHE], val);
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800613 else
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800614 __this_cpu_add(mem->stat->count[MEM_CGROUP_STAT_RSS], val);
Balaji Rao55e462b2008-05-01 04:35:12 -0700615
616 if (charge)
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800617 __this_cpu_inc(mem->stat->count[MEM_CGROUP_STAT_PGPGIN_COUNT]);
Balaji Rao55e462b2008-05-01 04:35:12 -0700618 else
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800619 __this_cpu_inc(mem->stat->count[MEM_CGROUP_STAT_PGPGOUT_COUNT]);
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -0800620 __this_cpu_inc(mem->stat->count[MEM_CGROUP_EVENTS]);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800621
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -0800622 preempt_enable();
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800623}
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800624
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -0700625static unsigned long mem_cgroup_get_local_zonestat(struct mem_cgroup *mem,
Christoph Lameterb69408e2008-10-18 20:26:14 -0700626 enum lru_list idx)
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800627{
628 int nid, zid;
629 struct mem_cgroup_per_zone *mz;
630 u64 total = 0;
631
632 for_each_online_node(nid)
633 for (zid = 0; zid < MAX_NR_ZONES; zid++) {
634 mz = mem_cgroup_zoneinfo(mem, nid, zid);
635 total += MEM_CGROUP_ZSTAT(mz, idx);
636 }
637 return total;
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800638}
639
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -0800640static bool __memcg_event_check(struct mem_cgroup *mem, int event_mask_shift)
641{
642 s64 val;
643
644 val = this_cpu_read(mem->stat->count[MEM_CGROUP_EVENTS]);
645
646 return !(val & ((1 << event_mask_shift) - 1));
647}
648
649/*
650 * Check events in order.
651 *
652 */
653static void memcg_check_events(struct mem_cgroup *mem, struct page *page)
654{
655 /* threshold event is triggered in finer grain than soft limit */
656 if (unlikely(__memcg_event_check(mem, THRESHOLDS_EVENTS_THRESH))) {
657 mem_cgroup_threshold(mem);
658 if (unlikely(__memcg_event_check(mem, SOFTLIMIT_EVENTS_THRESH)))
659 mem_cgroup_update_tree(mem, page);
660 }
661}
662
Hugh Dickinsd5b69e32008-03-04 14:29:10 -0800663static struct mem_cgroup *mem_cgroup_from_cont(struct cgroup *cont)
Balbir Singh8cdea7c2008-02-07 00:13:50 -0800664{
665 return container_of(cgroup_subsys_state(cont,
666 mem_cgroup_subsys_id), struct mem_cgroup,
667 css);
668}
669
Balbir Singhcf475ad2008-04-29 01:00:16 -0700670struct mem_cgroup *mem_cgroup_from_task(struct task_struct *p)
Pavel Emelianov78fb7462008-02-07 00:13:51 -0800671{
Balbir Singh31a78f22008-09-28 23:09:31 +0100672 /*
673 * mm_update_next_owner() may clear mm->owner to NULL
674 * if it races with swapoff, page migration, etc.
675 * So this can be called with p == NULL.
676 */
677 if (unlikely(!p))
678 return NULL;
679
Pavel Emelianov78fb7462008-02-07 00:13:51 -0800680 return container_of(task_subsys_state(p, mem_cgroup_subsys_id),
681 struct mem_cgroup, css);
682}
683
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -0800684static struct mem_cgroup *try_get_mem_cgroup_from_mm(struct mm_struct *mm)
685{
686 struct mem_cgroup *mem = NULL;
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -0700687
688 if (!mm)
689 return NULL;
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -0800690 /*
691 * Because we have no locks, mm->owner's may be being moved to other
692 * cgroup. We use css_tryget() here even if this looks
693 * pessimistic (rather than adding locks here).
694 */
695 rcu_read_lock();
696 do {
697 mem = mem_cgroup_from_task(rcu_dereference(mm->owner));
698 if (unlikely(!mem))
699 break;
700 } while (!css_tryget(&mem->css));
701 rcu_read_unlock();
702 return mem;
703}
704
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -0700705/* The caller has to guarantee "mem" exists before calling this */
706static struct mem_cgroup *mem_cgroup_start_loop(struct mem_cgroup *mem)
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -0700707{
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -0700708 struct cgroup_subsys_state *css;
709 int found;
710
711 if (!mem) /* ROOT cgroup has the smallest ID */
712 return root_mem_cgroup; /*css_put/get against root is ignored*/
713 if (!mem->use_hierarchy) {
714 if (css_tryget(&mem->css))
715 return mem;
716 return NULL;
717 }
718 rcu_read_lock();
719 /*
720 * searching a memory cgroup which has the smallest ID under given
721 * ROOT cgroup. (ID >= 1)
722 */
723 css = css_get_next(&mem_cgroup_subsys, 1, &mem->css, &found);
724 if (css && css_tryget(css))
725 mem = container_of(css, struct mem_cgroup, css);
726 else
727 mem = NULL;
728 rcu_read_unlock();
729 return mem;
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -0700730}
731
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -0700732static struct mem_cgroup *mem_cgroup_get_next(struct mem_cgroup *iter,
733 struct mem_cgroup *root,
734 bool cond)
735{
736 int nextid = css_id(&iter->css) + 1;
737 int found;
738 int hierarchy_used;
739 struct cgroup_subsys_state *css;
740
741 hierarchy_used = iter->use_hierarchy;
742
743 css_put(&iter->css);
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -0700744 /* If no ROOT, walk all, ignore hierarchy */
745 if (!cond || (root && !hierarchy_used))
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -0700746 return NULL;
747
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -0700748 if (!root)
749 root = root_mem_cgroup;
750
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -0700751 do {
752 iter = NULL;
753 rcu_read_lock();
754
755 css = css_get_next(&mem_cgroup_subsys, nextid,
756 &root->css, &found);
757 if (css && css_tryget(css))
758 iter = container_of(css, struct mem_cgroup, css);
759 rcu_read_unlock();
760 /* If css is NULL, no more cgroups will be found */
761 nextid = found + 1;
762 } while (css && !iter);
763
764 return iter;
765}
766/*
767 * for_eacn_mem_cgroup_tree() for visiting all cgroup under tree. Please
768 * be careful that "break" loop is not allowed. We have reference count.
769 * Instead of that modify "cond" to be false and "continue" to exit the loop.
770 */
771#define for_each_mem_cgroup_tree_cond(iter, root, cond) \
772 for (iter = mem_cgroup_start_loop(root);\
773 iter != NULL;\
774 iter = mem_cgroup_get_next(iter, root, cond))
775
776#define for_each_mem_cgroup_tree(iter, root) \
777 for_each_mem_cgroup_tree_cond(iter, root, true)
778
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -0700779#define for_each_mem_cgroup_all(iter) \
780 for_each_mem_cgroup_tree_cond(iter, NULL, true)
781
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -0700782
Balbir Singh4b3bde42009-09-23 15:56:32 -0700783static inline bool mem_cgroup_is_root(struct mem_cgroup *mem)
784{
785 return (mem == root_mem_cgroup);
786}
787
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800788/*
789 * Following LRU functions are allowed to be used without PCG_LOCK.
790 * Operations are called by routine of global LRU independently from memcg.
791 * What we have to take care of here is validness of pc->mem_cgroup.
792 *
793 * Changes to pc->mem_cgroup happens when
794 * 1. charge
795 * 2. moving account
796 * In typical case, "charge" is done before add-to-lru. Exception is SwapCache.
797 * It is added to LRU before charge.
798 * If PCG_USED bit is not set, page_cgroup is not added to this private LRU.
799 * When moving account, the page is not on LRU. It's isolated.
800 */
801
802void mem_cgroup_del_lru_list(struct page *page, enum lru_list lru)
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800803{
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800804 struct page_cgroup *pc;
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800805 struct mem_cgroup_per_zone *mz;
Rik van Riel4f98a2f2008-10-18 20:26:32 -0700806
Hirokazu Takahashif8d665422009-01-07 18:08:02 -0800807 if (mem_cgroup_disabled())
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800808 return;
809 pc = lookup_page_cgroup(page);
810 /* can happen while we handle swapcache. */
Balbir Singh4b3bde42009-09-23 15:56:32 -0700811 if (!TestClearPageCgroupAcctLRU(pc))
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800812 return;
Balbir Singh4b3bde42009-09-23 15:56:32 -0700813 VM_BUG_ON(!pc->mem_cgroup);
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -0800814 /*
815 * We don't check PCG_USED bit. It's cleared when the "page" is finally
816 * removed from global LRU.
817 */
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800818 mz = page_cgroup_zoneinfo(pc);
Christoph Lameterb69408e2008-10-18 20:26:14 -0700819 MEM_CGROUP_ZSTAT(mz, lru) -= 1;
Balbir Singh4b3bde42009-09-23 15:56:32 -0700820 if (mem_cgroup_is_root(pc->mem_cgroup))
821 return;
822 VM_BUG_ON(list_empty(&pc->lru));
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800823 list_del_init(&pc->lru);
824 return;
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800825}
826
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800827void mem_cgroup_del_lru(struct page *page)
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800828{
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800829 mem_cgroup_del_lru_list(page, page_lru(page));
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800830}
831
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800832void mem_cgroup_rotate_lru_list(struct page *page, enum lru_list lru)
Balbir Singh66e17072008-02-07 00:13:56 -0800833{
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800834 struct mem_cgroup_per_zone *mz;
835 struct page_cgroup *pc;
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800836
Hirokazu Takahashif8d665422009-01-07 18:08:02 -0800837 if (mem_cgroup_disabled())
Lee Schermerhorn894bc312008-10-18 20:26:39 -0700838 return;
Christoph Lameterb69408e2008-10-18 20:26:14 -0700839
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800840 pc = lookup_page_cgroup(page);
Daisuke Nishimurabd112db2009-01-15 13:51:11 -0800841 /*
842 * Used bit is set without atomic ops but after smp_wmb().
843 * For making pc->mem_cgroup visible, insert smp_rmb() here.
844 */
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800845 smp_rmb();
Balbir Singh4b3bde42009-09-23 15:56:32 -0700846 /* unused or root page is not rotated. */
847 if (!PageCgroupUsed(pc) || mem_cgroup_is_root(pc->mem_cgroup))
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800848 return;
849 mz = page_cgroup_zoneinfo(pc);
Christoph Lameterb69408e2008-10-18 20:26:14 -0700850 list_move(&pc->lru, &mz->lists[lru]);
Balbir Singh66e17072008-02-07 00:13:56 -0800851}
852
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800853void mem_cgroup_add_lru_list(struct page *page, enum lru_list lru)
854{
855 struct page_cgroup *pc;
856 struct mem_cgroup_per_zone *mz;
857
Hirokazu Takahashif8d665422009-01-07 18:08:02 -0800858 if (mem_cgroup_disabled())
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800859 return;
860 pc = lookup_page_cgroup(page);
Balbir Singh4b3bde42009-09-23 15:56:32 -0700861 VM_BUG_ON(PageCgroupAcctLRU(pc));
Daisuke Nishimurabd112db2009-01-15 13:51:11 -0800862 /*
863 * Used bit is set without atomic ops but after smp_wmb().
864 * For making pc->mem_cgroup visible, insert smp_rmb() here.
865 */
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800866 smp_rmb();
867 if (!PageCgroupUsed(pc))
868 return;
869
870 mz = page_cgroup_zoneinfo(pc);
871 MEM_CGROUP_ZSTAT(mz, lru) += 1;
Balbir Singh4b3bde42009-09-23 15:56:32 -0700872 SetPageCgroupAcctLRU(pc);
873 if (mem_cgroup_is_root(pc->mem_cgroup))
874 return;
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800875 list_add(&pc->lru, &mz->lists[lru]);
876}
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -0800877
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800878/*
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -0800879 * At handling SwapCache, pc->mem_cgroup may be changed while it's linked to
880 * lru because the page may.be reused after it's fully uncharged (because of
881 * SwapCache behavior).To handle that, unlink page_cgroup from LRU when charge
882 * it again. This function is only used to charge SwapCache. It's done under
883 * lock_page and expected that zone->lru_lock is never held.
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800884 */
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -0800885static void mem_cgroup_lru_del_before_commit_swapcache(struct page *page)
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800886{
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -0800887 unsigned long flags;
888 struct zone *zone = page_zone(page);
889 struct page_cgroup *pc = lookup_page_cgroup(page);
890
891 spin_lock_irqsave(&zone->lru_lock, flags);
892 /*
893 * Forget old LRU when this page_cgroup is *not* used. This Used bit
894 * is guarded by lock_page() because the page is SwapCache.
895 */
896 if (!PageCgroupUsed(pc))
897 mem_cgroup_del_lru_list(page, page_lru(page));
898 spin_unlock_irqrestore(&zone->lru_lock, flags);
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800899}
900
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -0800901static void mem_cgroup_lru_add_after_commit_swapcache(struct page *page)
902{
903 unsigned long flags;
904 struct zone *zone = page_zone(page);
905 struct page_cgroup *pc = lookup_page_cgroup(page);
906
907 spin_lock_irqsave(&zone->lru_lock, flags);
908 /* link when the page is linked to LRU but page_cgroup isn't */
Balbir Singh4b3bde42009-09-23 15:56:32 -0700909 if (PageLRU(page) && !PageCgroupAcctLRU(pc))
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -0800910 mem_cgroup_add_lru_list(page, page_lru(page));
911 spin_unlock_irqrestore(&zone->lru_lock, flags);
912}
913
914
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800915void mem_cgroup_move_lists(struct page *page,
916 enum lru_list from, enum lru_list to)
917{
Hirokazu Takahashif8d665422009-01-07 18:08:02 -0800918 if (mem_cgroup_disabled())
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -0800919 return;
920 mem_cgroup_del_lru_list(page, from);
921 mem_cgroup_add_lru_list(page, to);
922}
923
David Rientjes4c4a2212008-02-07 00:14:06 -0800924int task_in_mem_cgroup(struct task_struct *task, const struct mem_cgroup *mem)
925{
926 int ret;
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -0700927 struct mem_cgroup *curr = NULL;
KAMEZAWA Hiroyuki158e0a22010-08-10 18:03:00 -0700928 struct task_struct *p;
David Rientjes4c4a2212008-02-07 00:14:06 -0800929
KAMEZAWA Hiroyuki158e0a22010-08-10 18:03:00 -0700930 p = find_lock_task_mm(task);
931 if (!p)
932 return 0;
933 curr = try_get_mem_cgroup_from_mm(p->mm);
934 task_unlock(p);
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -0700935 if (!curr)
936 return 0;
Daisuke Nishimurad31f56d2009-12-15 16:47:12 -0800937 /*
938 * We should check use_hierarchy of "mem" not "curr". Because checking
939 * use_hierarchy of "curr" here make this function true if hierarchy is
940 * enabled in "curr" and "curr" is a child of "mem" in *cgroup*
941 * hierarchy(even if use_hierarchy is disabled in "mem").
942 */
943 if (mem->use_hierarchy)
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -0700944 ret = css_is_ancestor(&curr->css, &mem->css);
945 else
946 ret = (curr == mem);
947 css_put(&curr->css);
David Rientjes4c4a2212008-02-07 00:14:06 -0800948 return ret;
949}
950
KOSAKI Motohiroc772be92009-01-07 18:08:25 -0800951static int calc_inactive_ratio(struct mem_cgroup *memcg, unsigned long *present_pages)
KOSAKI Motohiro14797e22009-01-07 18:08:18 -0800952{
953 unsigned long active;
954 unsigned long inactive;
KOSAKI Motohiroc772be92009-01-07 18:08:25 -0800955 unsigned long gb;
956 unsigned long inactive_ratio;
KOSAKI Motohiro14797e22009-01-07 18:08:18 -0800957
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -0700958 inactive = mem_cgroup_get_local_zonestat(memcg, LRU_INACTIVE_ANON);
959 active = mem_cgroup_get_local_zonestat(memcg, LRU_ACTIVE_ANON);
KOSAKI Motohiro14797e22009-01-07 18:08:18 -0800960
KOSAKI Motohiroc772be92009-01-07 18:08:25 -0800961 gb = (inactive + active) >> (30 - PAGE_SHIFT);
962 if (gb)
963 inactive_ratio = int_sqrt(10 * gb);
964 else
965 inactive_ratio = 1;
966
967 if (present_pages) {
968 present_pages[0] = inactive;
969 present_pages[1] = active;
970 }
971
972 return inactive_ratio;
973}
974
975int mem_cgroup_inactive_anon_is_low(struct mem_cgroup *memcg)
976{
977 unsigned long active;
978 unsigned long inactive;
979 unsigned long present_pages[2];
980 unsigned long inactive_ratio;
981
982 inactive_ratio = calc_inactive_ratio(memcg, present_pages);
983
984 inactive = present_pages[0];
985 active = present_pages[1];
986
987 if (inactive * inactive_ratio < active)
KOSAKI Motohiro14797e22009-01-07 18:08:18 -0800988 return 1;
989
990 return 0;
991}
992
Rik van Riel56e49d22009-06-16 15:32:28 -0700993int mem_cgroup_inactive_file_is_low(struct mem_cgroup *memcg)
994{
995 unsigned long active;
996 unsigned long inactive;
997
998 inactive = mem_cgroup_get_local_zonestat(memcg, LRU_INACTIVE_FILE);
999 active = mem_cgroup_get_local_zonestat(memcg, LRU_ACTIVE_FILE);
1000
1001 return (active > inactive);
1002}
1003
KOSAKI Motohiroa3d8e052009-01-07 18:08:19 -08001004unsigned long mem_cgroup_zone_nr_pages(struct mem_cgroup *memcg,
1005 struct zone *zone,
1006 enum lru_list lru)
1007{
KOSAKI Motohiro13d7e3a2010-08-10 18:03:06 -07001008 int nid = zone_to_nid(zone);
KOSAKI Motohiroa3d8e052009-01-07 18:08:19 -08001009 int zid = zone_idx(zone);
1010 struct mem_cgroup_per_zone *mz = mem_cgroup_zoneinfo(memcg, nid, zid);
1011
1012 return MEM_CGROUP_ZSTAT(mz, lru);
1013}
1014
KOSAKI Motohiro3e2f41f2009-01-07 18:08:20 -08001015struct zone_reclaim_stat *mem_cgroup_get_reclaim_stat(struct mem_cgroup *memcg,
1016 struct zone *zone)
1017{
KOSAKI Motohiro13d7e3a2010-08-10 18:03:06 -07001018 int nid = zone_to_nid(zone);
KOSAKI Motohiro3e2f41f2009-01-07 18:08:20 -08001019 int zid = zone_idx(zone);
1020 struct mem_cgroup_per_zone *mz = mem_cgroup_zoneinfo(memcg, nid, zid);
1021
1022 return &mz->reclaim_stat;
1023}
1024
1025struct zone_reclaim_stat *
1026mem_cgroup_get_reclaim_stat_from_page(struct page *page)
1027{
1028 struct page_cgroup *pc;
1029 struct mem_cgroup_per_zone *mz;
Andrea Arcangeliec168512011-01-13 15:46:56 -08001030 int page_size = PAGE_SIZE;
1031
1032 if (PageTransHuge(page))
1033 page_size <<= compound_order(page);
KOSAKI Motohiro3e2f41f2009-01-07 18:08:20 -08001034
1035 if (mem_cgroup_disabled())
1036 return NULL;
1037
1038 pc = lookup_page_cgroup(page);
Daisuke Nishimurabd112db2009-01-15 13:51:11 -08001039 /*
1040 * Used bit is set without atomic ops but after smp_wmb().
1041 * For making pc->mem_cgroup visible, insert smp_rmb() here.
1042 */
1043 smp_rmb();
1044 if (!PageCgroupUsed(pc))
1045 return NULL;
1046
KOSAKI Motohiro3e2f41f2009-01-07 18:08:20 -08001047 mz = page_cgroup_zoneinfo(pc);
1048 if (!mz)
1049 return NULL;
1050
1051 return &mz->reclaim_stat;
1052}
1053
Balbir Singh66e17072008-02-07 00:13:56 -08001054unsigned long mem_cgroup_isolate_pages(unsigned long nr_to_scan,
1055 struct list_head *dst,
1056 unsigned long *scanned, int order,
1057 int mode, struct zone *z,
1058 struct mem_cgroup *mem_cont,
Rik van Riel4f98a2f2008-10-18 20:26:32 -07001059 int active, int file)
Balbir Singh66e17072008-02-07 00:13:56 -08001060{
1061 unsigned long nr_taken = 0;
1062 struct page *page;
1063 unsigned long scan;
1064 LIST_HEAD(pc_list);
1065 struct list_head *src;
KAMEZAWA Hiroyukiff7283f2008-02-07 00:14:11 -08001066 struct page_cgroup *pc, *tmp;
KOSAKI Motohiro13d7e3a2010-08-10 18:03:06 -07001067 int nid = zone_to_nid(z);
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08001068 int zid = zone_idx(z);
1069 struct mem_cgroup_per_zone *mz;
Johannes Weinerb7c46d12009-09-21 17:02:56 -07001070 int lru = LRU_FILE * file + active;
KAMEZAWA Hiroyuki2ffebca2009-06-17 16:27:21 -07001071 int ret;
Balbir Singh66e17072008-02-07 00:13:56 -08001072
Balbir Singhcf475ad2008-04-29 01:00:16 -07001073 BUG_ON(!mem_cont);
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08001074 mz = mem_cgroup_zoneinfo(mem_cont, nid, zid);
Christoph Lameterb69408e2008-10-18 20:26:14 -07001075 src = &mz->lists[lru];
Balbir Singh66e17072008-02-07 00:13:56 -08001076
KAMEZAWA Hiroyukiff7283f2008-02-07 00:14:11 -08001077 scan = 0;
1078 list_for_each_entry_safe_reverse(pc, tmp, src, lru) {
Hugh Dickins436c65412008-02-07 00:14:12 -08001079 if (scan >= nr_to_scan)
KAMEZAWA Hiroyukiff7283f2008-02-07 00:14:11 -08001080 break;
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08001081
1082 page = pc->page;
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07001083 if (unlikely(!PageCgroupUsed(pc)))
1084 continue;
Hugh Dickins436c65412008-02-07 00:14:12 -08001085 if (unlikely(!PageLRU(page)))
KAMEZAWA Hiroyukiff7283f2008-02-07 00:14:11 -08001086 continue;
KAMEZAWA Hiroyukiff7283f2008-02-07 00:14:11 -08001087
Hugh Dickins436c65412008-02-07 00:14:12 -08001088 scan++;
KAMEZAWA Hiroyuki2ffebca2009-06-17 16:27:21 -07001089 ret = __isolate_lru_page(page, mode, file);
1090 switch (ret) {
1091 case 0:
Balbir Singh66e17072008-02-07 00:13:56 -08001092 list_move(&page->lru, dst);
KAMEZAWA Hiroyuki2ffebca2009-06-17 16:27:21 -07001093 mem_cgroup_del_lru(page);
Balbir Singh66e17072008-02-07 00:13:56 -08001094 nr_taken++;
KAMEZAWA Hiroyuki2ffebca2009-06-17 16:27:21 -07001095 break;
1096 case -EBUSY:
1097 /* we don't affect global LRU but rotate in our LRU */
1098 mem_cgroup_rotate_lru_list(page, page_lru(page));
1099 break;
1100 default:
1101 break;
Balbir Singh66e17072008-02-07 00:13:56 -08001102 }
1103 }
1104
Balbir Singh66e17072008-02-07 00:13:56 -08001105 *scanned = scan;
KOSAKI Motohirocc8e9702010-08-09 17:19:57 -07001106
1107 trace_mm_vmscan_memcg_isolate(0, nr_to_scan, scan, nr_taken,
1108 0, 0, 0, mode);
1109
Balbir Singh66e17072008-02-07 00:13:56 -08001110 return nr_taken;
1111}
1112
Balbir Singh6d61ef42009-01-07 18:08:06 -08001113#define mem_cgroup_from_res_counter(counter, member) \
1114 container_of(counter, struct mem_cgroup, member)
1115
Daisuke Nishimurab85a96c2009-01-07 18:08:12 -08001116static bool mem_cgroup_check_under_limit(struct mem_cgroup *mem)
1117{
1118 if (do_swap_account) {
1119 if (res_counter_check_under_limit(&mem->res) &&
1120 res_counter_check_under_limit(&mem->memsw))
1121 return true;
1122 } else
1123 if (res_counter_check_under_limit(&mem->res))
1124 return true;
1125 return false;
1126}
1127
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08001128static unsigned int get_swappiness(struct mem_cgroup *memcg)
1129{
1130 struct cgroup *cgrp = memcg->css.cgroup;
1131 unsigned int swappiness;
1132
1133 /* root ? */
1134 if (cgrp->parent == NULL)
1135 return vm_swappiness;
1136
1137 spin_lock(&memcg->reclaim_param_lock);
1138 swappiness = memcg->swappiness;
1139 spin_unlock(&memcg->reclaim_param_lock);
1140
1141 return swappiness;
1142}
1143
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001144static void mem_cgroup_start_move(struct mem_cgroup *mem)
1145{
1146 int cpu;
KAMEZAWA Hiroyuki1489eba2010-10-27 15:33:42 -07001147
1148 get_online_cpus();
1149 spin_lock(&mem->pcp_counter_lock);
1150 for_each_online_cpu(cpu)
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001151 per_cpu(mem->stat->count[MEM_CGROUP_ON_MOVE], cpu) += 1;
KAMEZAWA Hiroyuki1489eba2010-10-27 15:33:42 -07001152 mem->nocpu_base.count[MEM_CGROUP_ON_MOVE] += 1;
1153 spin_unlock(&mem->pcp_counter_lock);
1154 put_online_cpus();
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001155
1156 synchronize_rcu();
1157}
1158
1159static void mem_cgroup_end_move(struct mem_cgroup *mem)
1160{
1161 int cpu;
1162
1163 if (!mem)
1164 return;
KAMEZAWA Hiroyuki1489eba2010-10-27 15:33:42 -07001165 get_online_cpus();
1166 spin_lock(&mem->pcp_counter_lock);
1167 for_each_online_cpu(cpu)
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001168 per_cpu(mem->stat->count[MEM_CGROUP_ON_MOVE], cpu) -= 1;
KAMEZAWA Hiroyuki1489eba2010-10-27 15:33:42 -07001169 mem->nocpu_base.count[MEM_CGROUP_ON_MOVE] -= 1;
1170 spin_unlock(&mem->pcp_counter_lock);
1171 put_online_cpus();
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001172}
1173/*
1174 * 2 routines for checking "mem" is under move_account() or not.
1175 *
1176 * mem_cgroup_stealed() - checking a cgroup is mc.from or not. This is used
1177 * for avoiding race in accounting. If true,
1178 * pc->mem_cgroup may be overwritten.
1179 *
1180 * mem_cgroup_under_move() - checking a cgroup is mc.from or mc.to or
1181 * under hierarchy of moving cgroups. This is for
1182 * waiting at hith-memory prressure caused by "move".
1183 */
1184
1185static bool mem_cgroup_stealed(struct mem_cgroup *mem)
1186{
1187 VM_BUG_ON(!rcu_read_lock_held());
1188 return this_cpu_read(mem->stat->count[MEM_CGROUP_ON_MOVE]) > 0;
1189}
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001190
1191static bool mem_cgroup_under_move(struct mem_cgroup *mem)
1192{
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07001193 struct mem_cgroup *from;
1194 struct mem_cgroup *to;
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001195 bool ret = false;
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07001196 /*
1197 * Unlike task_move routines, we access mc.to, mc.from not under
1198 * mutual exclusion by cgroup_mutex. Here, we take spinlock instead.
1199 */
1200 spin_lock(&mc.lock);
1201 from = mc.from;
1202 to = mc.to;
1203 if (!from)
1204 goto unlock;
1205 if (from == mem || to == mem
1206 || (mem->use_hierarchy && css_is_ancestor(&from->css, &mem->css))
1207 || (mem->use_hierarchy && css_is_ancestor(&to->css, &mem->css)))
1208 ret = true;
1209unlock:
1210 spin_unlock(&mc.lock);
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001211 return ret;
1212}
1213
1214static bool mem_cgroup_wait_acct_move(struct mem_cgroup *mem)
1215{
1216 if (mc.moving_task && current != mc.moving_task) {
1217 if (mem_cgroup_under_move(mem)) {
1218 DEFINE_WAIT(wait);
1219 prepare_to_wait(&mc.waitq, &wait, TASK_INTERRUPTIBLE);
1220 /* moving charge context might have finished. */
1221 if (mc.moving_task)
1222 schedule();
1223 finish_wait(&mc.waitq, &wait);
1224 return true;
1225 }
1226 }
1227 return false;
1228}
1229
Balbir Singhe2224322009-04-02 16:57:39 -07001230/**
Kirill A. Shutemov6a6135b2010-03-10 15:22:25 -08001231 * mem_cgroup_print_oom_info: Called from OOM with tasklist_lock held in read mode.
Balbir Singhe2224322009-04-02 16:57:39 -07001232 * @memcg: The memory cgroup that went over limit
1233 * @p: Task that is going to be killed
1234 *
1235 * NOTE: @memcg and @p's mem_cgroup can be different when hierarchy is
1236 * enabled
1237 */
1238void mem_cgroup_print_oom_info(struct mem_cgroup *memcg, struct task_struct *p)
1239{
1240 struct cgroup *task_cgrp;
1241 struct cgroup *mem_cgrp;
1242 /*
1243 * Need a buffer in BSS, can't rely on allocations. The code relies
1244 * on the assumption that OOM is serialized for memory controller.
1245 * If this assumption is broken, revisit this code.
1246 */
1247 static char memcg_name[PATH_MAX];
1248 int ret;
1249
Daisuke Nishimurad31f56d2009-12-15 16:47:12 -08001250 if (!memcg || !p)
Balbir Singhe2224322009-04-02 16:57:39 -07001251 return;
1252
1253
1254 rcu_read_lock();
1255
1256 mem_cgrp = memcg->css.cgroup;
1257 task_cgrp = task_cgroup(p, mem_cgroup_subsys_id);
1258
1259 ret = cgroup_path(task_cgrp, memcg_name, PATH_MAX);
1260 if (ret < 0) {
1261 /*
1262 * Unfortunately, we are unable to convert to a useful name
1263 * But we'll still print out the usage information
1264 */
1265 rcu_read_unlock();
1266 goto done;
1267 }
1268 rcu_read_unlock();
1269
1270 printk(KERN_INFO "Task in %s killed", memcg_name);
1271
1272 rcu_read_lock();
1273 ret = cgroup_path(mem_cgrp, memcg_name, PATH_MAX);
1274 if (ret < 0) {
1275 rcu_read_unlock();
1276 goto done;
1277 }
1278 rcu_read_unlock();
1279
1280 /*
1281 * Continues from above, so we don't need an KERN_ level
1282 */
1283 printk(KERN_CONT " as a result of limit of %s\n", memcg_name);
1284done:
1285
1286 printk(KERN_INFO "memory: usage %llukB, limit %llukB, failcnt %llu\n",
1287 res_counter_read_u64(&memcg->res, RES_USAGE) >> 10,
1288 res_counter_read_u64(&memcg->res, RES_LIMIT) >> 10,
1289 res_counter_read_u64(&memcg->res, RES_FAILCNT));
1290 printk(KERN_INFO "memory+swap: usage %llukB, limit %llukB, "
1291 "failcnt %llu\n",
1292 res_counter_read_u64(&memcg->memsw, RES_USAGE) >> 10,
1293 res_counter_read_u64(&memcg->memsw, RES_LIMIT) >> 10,
1294 res_counter_read_u64(&memcg->memsw, RES_FAILCNT));
1295}
1296
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07001297/*
1298 * This function returns the number of memcg under hierarchy tree. Returns
1299 * 1(self count) if no children.
1300 */
1301static int mem_cgroup_count_children(struct mem_cgroup *mem)
1302{
1303 int num = 0;
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001304 struct mem_cgroup *iter;
1305
1306 for_each_mem_cgroup_tree(iter, mem)
1307 num++;
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07001308 return num;
1309}
1310
Balbir Singh6d61ef42009-01-07 18:08:06 -08001311/*
David Rientjesa63d83f2010-08-09 17:19:46 -07001312 * Return the memory (and swap, if configured) limit for a memcg.
1313 */
1314u64 mem_cgroup_get_limit(struct mem_cgroup *memcg)
1315{
1316 u64 limit;
1317 u64 memsw;
1318
1319 limit = res_counter_read_u64(&memcg->res, RES_LIMIT) +
1320 total_swap_pages;
1321 memsw = res_counter_read_u64(&memcg->memsw, RES_LIMIT);
1322 /*
1323 * If memsw is finite and limits the amount of swap space available
1324 * to this memcg, return that limit.
1325 */
1326 return min(limit, memsw);
1327}
1328
1329/*
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001330 * Visit the first child (need not be the first child as per the ordering
1331 * of the cgroup list, since we track last_scanned_child) of @mem and use
1332 * that to reclaim free pages from.
1333 */
1334static struct mem_cgroup *
1335mem_cgroup_select_victim(struct mem_cgroup *root_mem)
1336{
1337 struct mem_cgroup *ret = NULL;
1338 struct cgroup_subsys_state *css;
1339 int nextid, found;
1340
1341 if (!root_mem->use_hierarchy) {
1342 css_get(&root_mem->css);
1343 ret = root_mem;
1344 }
1345
1346 while (!ret) {
1347 rcu_read_lock();
1348 nextid = root_mem->last_scanned_child + 1;
1349 css = css_get_next(&mem_cgroup_subsys, nextid, &root_mem->css,
1350 &found);
1351 if (css && css_tryget(css))
1352 ret = container_of(css, struct mem_cgroup, css);
1353
1354 rcu_read_unlock();
1355 /* Updates scanning parameter */
1356 spin_lock(&root_mem->reclaim_param_lock);
1357 if (!css) {
1358 /* this means start scan from ID:1 */
1359 root_mem->last_scanned_child = 0;
1360 } else
1361 root_mem->last_scanned_child = found;
1362 spin_unlock(&root_mem->reclaim_param_lock);
1363 }
1364
1365 return ret;
1366}
1367
1368/*
1369 * Scan the hierarchy if needed to reclaim memory. We remember the last child
1370 * we reclaimed from, so that we don't end up penalizing one child extensively
1371 * based on its position in the children list.
Balbir Singh6d61ef42009-01-07 18:08:06 -08001372 *
1373 * root_mem is the original ancestor that we've been reclaim from.
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001374 *
1375 * We give up and return to the caller when we visit root_mem twice.
1376 * (other groups can be removed while we're walking....)
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07001377 *
1378 * If shrink==true, for avoiding to free too much, this returns immedieately.
Balbir Singh6d61ef42009-01-07 18:08:06 -08001379 */
1380static int mem_cgroup_hierarchical_reclaim(struct mem_cgroup *root_mem,
Balbir Singh4e416952009-09-23 15:56:39 -07001381 struct zone *zone,
Balbir Singh75822b42009-09-23 15:56:38 -07001382 gfp_t gfp_mask,
1383 unsigned long reclaim_options)
Balbir Singh6d61ef42009-01-07 18:08:06 -08001384{
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001385 struct mem_cgroup *victim;
1386 int ret, total = 0;
1387 int loop = 0;
Balbir Singh75822b42009-09-23 15:56:38 -07001388 bool noswap = reclaim_options & MEM_CGROUP_RECLAIM_NOSWAP;
1389 bool shrink = reclaim_options & MEM_CGROUP_RECLAIM_SHRINK;
Balbir Singh4e416952009-09-23 15:56:39 -07001390 bool check_soft = reclaim_options & MEM_CGROUP_RECLAIM_SOFT;
1391 unsigned long excess = mem_cgroup_get_excess(root_mem);
Balbir Singh6d61ef42009-01-07 18:08:06 -08001392
KAMEZAWA Hiroyuki22a668d2009-06-17 16:27:19 -07001393 /* If memsw_is_minimum==1, swap-out is of-no-use. */
1394 if (root_mem->memsw_is_minimum)
1395 noswap = true;
1396
Balbir Singh4e416952009-09-23 15:56:39 -07001397 while (1) {
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001398 victim = mem_cgroup_select_victim(root_mem);
Balbir Singh4e416952009-09-23 15:56:39 -07001399 if (victim == root_mem) {
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001400 loop++;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08001401 if (loop >= 1)
1402 drain_all_stock_async();
Balbir Singh4e416952009-09-23 15:56:39 -07001403 if (loop >= 2) {
1404 /*
1405 * If we have not been able to reclaim
1406 * anything, it might because there are
1407 * no reclaimable pages under this hierarchy
1408 */
1409 if (!check_soft || !total) {
1410 css_put(&victim->css);
1411 break;
1412 }
1413 /*
1414 * We want to do more targetted reclaim.
1415 * excess >> 2 is not to excessive so as to
1416 * reclaim too much, nor too less that we keep
1417 * coming back to reclaim from this cgroup
1418 */
1419 if (total >= (excess >> 2) ||
1420 (loop > MEM_CGROUP_MAX_RECLAIM_LOOPS)) {
1421 css_put(&victim->css);
1422 break;
1423 }
1424 }
1425 }
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08001426 if (!mem_cgroup_local_usage(victim)) {
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001427 /* this cgroup's local usage == 0 */
1428 css_put(&victim->css);
Balbir Singh6d61ef42009-01-07 18:08:06 -08001429 continue;
1430 }
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001431 /* we use swappiness of local cgroup */
Balbir Singh4e416952009-09-23 15:56:39 -07001432 if (check_soft)
1433 ret = mem_cgroup_shrink_node_zone(victim, gfp_mask,
KOSAKI Motohiro14fec792010-08-10 18:03:05 -07001434 noswap, get_swappiness(victim), zone);
Balbir Singh4e416952009-09-23 15:56:39 -07001435 else
1436 ret = try_to_free_mem_cgroup_pages(victim, gfp_mask,
1437 noswap, get_swappiness(victim));
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001438 css_put(&victim->css);
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07001439 /*
1440 * At shrinking usage, we can't check we should stop here or
1441 * reclaim more. It's depends on callers. last_scanned_child
1442 * will work enough for keeping fairness under tree.
1443 */
1444 if (shrink)
1445 return ret;
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001446 total += ret;
Balbir Singh4e416952009-09-23 15:56:39 -07001447 if (check_soft) {
1448 if (res_counter_check_under_soft_limit(&root_mem->res))
1449 return total;
1450 } else if (mem_cgroup_check_under_limit(root_mem))
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001451 return 1 + total;
Balbir Singh6d61ef42009-01-07 18:08:06 -08001452 }
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07001453 return total;
Balbir Singh6d61ef42009-01-07 18:08:06 -08001454}
1455
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001456/*
1457 * Check OOM-Killer is already running under our hierarchy.
1458 * If someone is running, return false.
1459 */
1460static bool mem_cgroup_oom_lock(struct mem_cgroup *mem)
1461{
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001462 int x, lock_count = 0;
1463 struct mem_cgroup *iter;
KAMEZAWA Hiroyukia636b322009-01-07 18:08:08 -08001464
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001465 for_each_mem_cgroup_tree(iter, mem) {
1466 x = atomic_inc_return(&iter->oom_lock);
1467 lock_count = max(x, lock_count);
1468 }
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001469
1470 if (lock_count == 1)
1471 return true;
1472 return false;
KAMEZAWA Hiroyukia636b322009-01-07 18:08:08 -08001473}
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -07001474
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001475static int mem_cgroup_oom_unlock(struct mem_cgroup *mem)
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -07001476{
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001477 struct mem_cgroup *iter;
1478
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001479 /*
1480 * When a new child is created while the hierarchy is under oom,
1481 * mem_cgroup_oom_lock() may not be called. We have to use
1482 * atomic_add_unless() here.
1483 */
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001484 for_each_mem_cgroup_tree(iter, mem)
1485 atomic_add_unless(&iter->oom_lock, -1, 0);
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -07001486 return 0;
1487}
1488
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001489
1490static DEFINE_MUTEX(memcg_oom_mutex);
1491static DECLARE_WAIT_QUEUE_HEAD(memcg_oom_waitq);
1492
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001493struct oom_wait_info {
1494 struct mem_cgroup *mem;
1495 wait_queue_t wait;
1496};
1497
1498static int memcg_oom_wake_function(wait_queue_t *wait,
1499 unsigned mode, int sync, void *arg)
1500{
1501 struct mem_cgroup *wake_mem = (struct mem_cgroup *)arg;
1502 struct oom_wait_info *oom_wait_info;
1503
1504 oom_wait_info = container_of(wait, struct oom_wait_info, wait);
1505
1506 if (oom_wait_info->mem == wake_mem)
1507 goto wakeup;
1508 /* if no hierarchy, no match */
1509 if (!oom_wait_info->mem->use_hierarchy || !wake_mem->use_hierarchy)
1510 return 0;
1511 /*
1512 * Both of oom_wait_info->mem and wake_mem are stable under us.
1513 * Then we can use css_is_ancestor without taking care of RCU.
1514 */
1515 if (!css_is_ancestor(&oom_wait_info->mem->css, &wake_mem->css) &&
1516 !css_is_ancestor(&wake_mem->css, &oom_wait_info->mem->css))
1517 return 0;
1518
1519wakeup:
1520 return autoremove_wake_function(wait, mode, sync, arg);
1521}
1522
1523static void memcg_wakeup_oom(struct mem_cgroup *mem)
1524{
1525 /* for filtering, pass "mem" as argument. */
1526 __wake_up(&memcg_oom_waitq, TASK_NORMAL, 0, mem);
1527}
1528
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001529static void memcg_oom_recover(struct mem_cgroup *mem)
1530{
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07001531 if (mem && atomic_read(&mem->oom_lock))
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001532 memcg_wakeup_oom(mem);
1533}
1534
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001535/*
1536 * try to call OOM killer. returns false if we should exit memory-reclaim loop.
1537 */
1538bool mem_cgroup_handle_oom(struct mem_cgroup *mem, gfp_t mask)
1539{
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001540 struct oom_wait_info owait;
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001541 bool locked, need_to_kill;
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001542
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001543 owait.mem = mem;
1544 owait.wait.flags = 0;
1545 owait.wait.func = memcg_oom_wake_function;
1546 owait.wait.private = current;
1547 INIT_LIST_HEAD(&owait.wait.task_list);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001548 need_to_kill = true;
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001549 /* At first, try to OOM lock hierarchy under mem.*/
1550 mutex_lock(&memcg_oom_mutex);
1551 locked = mem_cgroup_oom_lock(mem);
1552 /*
1553 * Even if signal_pending(), we can't quit charge() loop without
1554 * accounting. So, UNINTERRUPTIBLE is appropriate. But SIGKILL
1555 * under OOM is always welcomed, use TASK_KILLABLE here.
1556 */
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001557 prepare_to_wait(&memcg_oom_waitq, &owait.wait, TASK_KILLABLE);
1558 if (!locked || mem->oom_kill_disable)
1559 need_to_kill = false;
1560 if (locked)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07001561 mem_cgroup_oom_notify(mem);
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001562 mutex_unlock(&memcg_oom_mutex);
1563
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001564 if (need_to_kill) {
1565 finish_wait(&memcg_oom_waitq, &owait.wait);
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001566 mem_cgroup_out_of_memory(mem, mask);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001567 } else {
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001568 schedule();
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001569 finish_wait(&memcg_oom_waitq, &owait.wait);
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001570 }
1571 mutex_lock(&memcg_oom_mutex);
1572 mem_cgroup_oom_unlock(mem);
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001573 memcg_wakeup_oom(mem);
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001574 mutex_unlock(&memcg_oom_mutex);
1575
1576 if (test_thread_flag(TIF_MEMDIE) || fatal_signal_pending(current))
1577 return false;
1578 /* Give chance to dying process */
1579 schedule_timeout(1);
1580 return true;
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -07001581}
1582
Balbir Singhd69b0422009-06-17 16:26:34 -07001583/*
1584 * Currently used to update mapped file statistics, but the routine can be
1585 * generalized to update other statistics as well.
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001586 *
1587 * Notes: Race condition
1588 *
1589 * We usually use page_cgroup_lock() for accessing page_cgroup member but
1590 * it tends to be costly. But considering some conditions, we doesn't need
1591 * to do so _always_.
1592 *
1593 * Considering "charge", lock_page_cgroup() is not required because all
1594 * file-stat operations happen after a page is attached to radix-tree. There
1595 * are no race with "charge".
1596 *
1597 * Considering "uncharge", we know that memcg doesn't clear pc->mem_cgroup
1598 * at "uncharge" intentionally. So, we always see valid pc->mem_cgroup even
1599 * if there are race with "uncharge". Statistics itself is properly handled
1600 * by flags.
1601 *
1602 * Considering "move", this is an only case we see a race. To make the race
1603 * small, we check MEM_CGROUP_ON_MOVE percpu value and detect there are
1604 * possibility of race condition. If there is, we take a lock.
Balbir Singhd69b0422009-06-17 16:26:34 -07001605 */
KAMEZAWA Hiroyuki26174ef2010-10-27 15:33:43 -07001606
1607static void mem_cgroup_update_file_stat(struct page *page, int idx, int val)
Balbir Singhd69b0422009-06-17 16:26:34 -07001608{
1609 struct mem_cgroup *mem;
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001610 struct page_cgroup *pc = lookup_page_cgroup(page);
1611 bool need_unlock = false;
Balbir Singhd69b0422009-06-17 16:26:34 -07001612
Balbir Singhd69b0422009-06-17 16:26:34 -07001613 if (unlikely(!pc))
1614 return;
1615
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001616 rcu_read_lock();
Balbir Singhd69b0422009-06-17 16:26:34 -07001617 mem = pc->mem_cgroup;
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001618 if (unlikely(!mem || !PageCgroupUsed(pc)))
1619 goto out;
1620 /* pc->mem_cgroup is unstable ? */
1621 if (unlikely(mem_cgroup_stealed(mem))) {
1622 /* take a lock against to access pc->mem_cgroup */
1623 lock_page_cgroup(pc);
1624 need_unlock = true;
1625 mem = pc->mem_cgroup;
1626 if (!mem || !PageCgroupUsed(pc))
1627 goto out;
1628 }
KAMEZAWA Hiroyuki26174ef2010-10-27 15:33:43 -07001629
1630 this_cpu_add(mem->stat->count[idx], val);
1631
1632 switch (idx) {
1633 case MEM_CGROUP_STAT_FILE_MAPPED:
1634 if (val > 0)
1635 SetPageCgroupFileMapped(pc);
1636 else if (!page_mapped(page))
KAMEZAWA Hiroyuki0c270f82010-10-27 15:33:39 -07001637 ClearPageCgroupFileMapped(pc);
KAMEZAWA Hiroyuki26174ef2010-10-27 15:33:43 -07001638 break;
1639 default:
1640 BUG();
KAMEZAWA Hiroyuki8725d542010-04-06 14:35:05 -07001641 }
Balbir Singhd69b0422009-06-17 16:26:34 -07001642
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001643out:
1644 if (unlikely(need_unlock))
1645 unlock_page_cgroup(pc);
1646 rcu_read_unlock();
1647 return;
Balbir Singhd69b0422009-06-17 16:26:34 -07001648}
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -07001649
KAMEZAWA Hiroyuki26174ef2010-10-27 15:33:43 -07001650void mem_cgroup_update_file_mapped(struct page *page, int val)
1651{
1652 mem_cgroup_update_file_stat(page, MEM_CGROUP_STAT_FILE_MAPPED, val);
1653}
1654
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08001655/*
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08001656 * size of first charge trial. "32" comes from vmscan.c's magic value.
1657 * TODO: maybe necessary to use big numbers in big irons.
1658 */
1659#define CHARGE_SIZE (32 * PAGE_SIZE)
1660struct memcg_stock_pcp {
1661 struct mem_cgroup *cached; /* this never be root cgroup */
1662 int charge;
1663 struct work_struct work;
1664};
1665static DEFINE_PER_CPU(struct memcg_stock_pcp, memcg_stock);
1666static atomic_t memcg_drain_count;
1667
1668/*
1669 * Try to consume stocked charge on this cpu. If success, PAGE_SIZE is consumed
1670 * from local stock and true is returned. If the stock is 0 or charges from a
1671 * cgroup which is not current target, returns false. This stock will be
1672 * refilled.
1673 */
1674static bool consume_stock(struct mem_cgroup *mem)
1675{
1676 struct memcg_stock_pcp *stock;
1677 bool ret = true;
1678
1679 stock = &get_cpu_var(memcg_stock);
1680 if (mem == stock->cached && stock->charge)
1681 stock->charge -= PAGE_SIZE;
1682 else /* need to call res_counter_charge */
1683 ret = false;
1684 put_cpu_var(memcg_stock);
1685 return ret;
1686}
1687
1688/*
1689 * Returns stocks cached in percpu to res_counter and reset cached information.
1690 */
1691static void drain_stock(struct memcg_stock_pcp *stock)
1692{
1693 struct mem_cgroup *old = stock->cached;
1694
1695 if (stock->charge) {
1696 res_counter_uncharge(&old->res, stock->charge);
1697 if (do_swap_account)
1698 res_counter_uncharge(&old->memsw, stock->charge);
1699 }
1700 stock->cached = NULL;
1701 stock->charge = 0;
1702}
1703
1704/*
1705 * This must be called under preempt disabled or must be called by
1706 * a thread which is pinned to local cpu.
1707 */
1708static void drain_local_stock(struct work_struct *dummy)
1709{
1710 struct memcg_stock_pcp *stock = &__get_cpu_var(memcg_stock);
1711 drain_stock(stock);
1712}
1713
1714/*
1715 * Cache charges(val) which is from res_counter, to local per_cpu area.
Greg Thelen320cc512010-03-15 15:27:28 +01001716 * This will be consumed by consume_stock() function, later.
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08001717 */
1718static void refill_stock(struct mem_cgroup *mem, int val)
1719{
1720 struct memcg_stock_pcp *stock = &get_cpu_var(memcg_stock);
1721
1722 if (stock->cached != mem) { /* reset if necessary */
1723 drain_stock(stock);
1724 stock->cached = mem;
1725 }
1726 stock->charge += val;
1727 put_cpu_var(memcg_stock);
1728}
1729
1730/*
1731 * Tries to drain stocked charges in other cpus. This function is asynchronous
1732 * and just put a work per cpu for draining localy on each cpu. Caller can
1733 * expects some charges will be back to res_counter later but cannot wait for
1734 * it.
1735 */
1736static void drain_all_stock_async(void)
1737{
1738 int cpu;
1739 /* This function is for scheduling "drain" in asynchronous way.
1740 * The result of "drain" is not directly handled by callers. Then,
1741 * if someone is calling drain, we don't have to call drain more.
1742 * Anyway, WORK_STRUCT_PENDING check in queue_work_on() will catch if
1743 * there is a race. We just do loose check here.
1744 */
1745 if (atomic_read(&memcg_drain_count))
1746 return;
1747 /* Notify other cpus that system-wide "drain" is running */
1748 atomic_inc(&memcg_drain_count);
1749 get_online_cpus();
1750 for_each_online_cpu(cpu) {
1751 struct memcg_stock_pcp *stock = &per_cpu(memcg_stock, cpu);
1752 schedule_work_on(cpu, &stock->work);
1753 }
1754 put_online_cpus();
1755 atomic_dec(&memcg_drain_count);
1756 /* We don't wait for flush_work */
1757}
1758
1759/* This is a synchronous drain interface. */
1760static void drain_all_stock_sync(void)
1761{
1762 /* called when force_empty is called */
1763 atomic_inc(&memcg_drain_count);
1764 schedule_on_each_cpu(drain_local_stock);
1765 atomic_dec(&memcg_drain_count);
1766}
1767
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -07001768/*
1769 * This function drains percpu counter value from DEAD cpu and
1770 * move it to local cpu. Note that this function can be preempted.
1771 */
1772static void mem_cgroup_drain_pcp_counter(struct mem_cgroup *mem, int cpu)
1773{
1774 int i;
1775
1776 spin_lock(&mem->pcp_counter_lock);
1777 for (i = 0; i < MEM_CGROUP_STAT_DATA; i++) {
1778 s64 x = per_cpu(mem->stat->count[i], cpu);
1779
1780 per_cpu(mem->stat->count[i], cpu) = 0;
1781 mem->nocpu_base.count[i] += x;
1782 }
KAMEZAWA Hiroyuki1489eba2010-10-27 15:33:42 -07001783 /* need to clear ON_MOVE value, works as a kind of lock. */
1784 per_cpu(mem->stat->count[MEM_CGROUP_ON_MOVE], cpu) = 0;
1785 spin_unlock(&mem->pcp_counter_lock);
1786}
1787
1788static void synchronize_mem_cgroup_on_move(struct mem_cgroup *mem, int cpu)
1789{
1790 int idx = MEM_CGROUP_ON_MOVE;
1791
1792 spin_lock(&mem->pcp_counter_lock);
1793 per_cpu(mem->stat->count[idx], cpu) = mem->nocpu_base.count[idx];
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -07001794 spin_unlock(&mem->pcp_counter_lock);
1795}
1796
1797static int __cpuinit memcg_cpu_hotplug_callback(struct notifier_block *nb,
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08001798 unsigned long action,
1799 void *hcpu)
1800{
1801 int cpu = (unsigned long)hcpu;
1802 struct memcg_stock_pcp *stock;
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -07001803 struct mem_cgroup *iter;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08001804
KAMEZAWA Hiroyuki1489eba2010-10-27 15:33:42 -07001805 if ((action == CPU_ONLINE)) {
1806 for_each_mem_cgroup_all(iter)
1807 synchronize_mem_cgroup_on_move(iter, cpu);
1808 return NOTIFY_OK;
1809 }
1810
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -07001811 if ((action != CPU_DEAD) || action != CPU_DEAD_FROZEN)
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08001812 return NOTIFY_OK;
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -07001813
1814 for_each_mem_cgroup_all(iter)
1815 mem_cgroup_drain_pcp_counter(iter, cpu);
1816
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08001817 stock = &per_cpu(memcg_stock, cpu);
1818 drain_stock(stock);
1819 return NOTIFY_OK;
1820}
1821
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001822
1823/* See __mem_cgroup_try_charge() for details */
1824enum {
1825 CHARGE_OK, /* success */
1826 CHARGE_RETRY, /* need to retry but retry is not bad */
1827 CHARGE_NOMEM, /* we can't do more. return -ENOMEM */
1828 CHARGE_WOULDBLOCK, /* GFP_WAIT wasn't set and no enough res. */
1829 CHARGE_OOM_DIE, /* the current is killed because of OOM */
1830};
1831
1832static int __mem_cgroup_do_charge(struct mem_cgroup *mem, gfp_t gfp_mask,
1833 int csize, bool oom_check)
1834{
1835 struct mem_cgroup *mem_over_limit;
1836 struct res_counter *fail_res;
1837 unsigned long flags = 0;
1838 int ret;
1839
1840 ret = res_counter_charge(&mem->res, csize, &fail_res);
1841
1842 if (likely(!ret)) {
1843 if (!do_swap_account)
1844 return CHARGE_OK;
1845 ret = res_counter_charge(&mem->memsw, csize, &fail_res);
1846 if (likely(!ret))
1847 return CHARGE_OK;
1848
1849 mem_over_limit = mem_cgroup_from_res_counter(fail_res, memsw);
1850 flags |= MEM_CGROUP_RECLAIM_NOSWAP;
1851 } else
1852 mem_over_limit = mem_cgroup_from_res_counter(fail_res, res);
1853
1854 if (csize > PAGE_SIZE) /* change csize and retry */
1855 return CHARGE_RETRY;
1856
1857 if (!(gfp_mask & __GFP_WAIT))
1858 return CHARGE_WOULDBLOCK;
1859
1860 ret = mem_cgroup_hierarchical_reclaim(mem_over_limit, NULL,
1861 gfp_mask, flags);
1862 /*
1863 * try_to_free_mem_cgroup_pages() might not give us a full
1864 * picture of reclaim. Some pages are reclaimed and might be
1865 * moved to swap cache or just unmapped from the cgroup.
1866 * Check the limit again to see if the reclaim reduced the
1867 * current usage of the cgroup before giving up
1868 */
1869 if (ret || mem_cgroup_check_under_limit(mem_over_limit))
1870 return CHARGE_RETRY;
1871
1872 /*
1873 * At task move, charge accounts can be doubly counted. So, it's
1874 * better to wait until the end of task_move if something is going on.
1875 */
1876 if (mem_cgroup_wait_acct_move(mem_over_limit))
1877 return CHARGE_RETRY;
1878
1879 /* If we don't need to call oom-killer at el, return immediately */
1880 if (!oom_check)
1881 return CHARGE_NOMEM;
1882 /* check OOM */
1883 if (!mem_cgroup_handle_oom(mem_over_limit, gfp_mask))
1884 return CHARGE_OOM_DIE;
1885
1886 return CHARGE_RETRY;
1887}
1888
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08001889/*
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08001890 * Unlike exported interface, "oom" parameter is added. if oom==true,
1891 * oom-killer can be invoked.
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08001892 */
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08001893static int __mem_cgroup_try_charge(struct mm_struct *mm,
Andrea Arcangeliec168512011-01-13 15:46:56 -08001894 gfp_t gfp_mask,
1895 struct mem_cgroup **memcg, bool oom,
1896 int page_size)
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08001897{
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001898 int nr_oom_retries = MEM_CGROUP_RECLAIM_RETRIES;
1899 struct mem_cgroup *mem = NULL;
1900 int ret;
Andrea Arcangeliec168512011-01-13 15:46:56 -08001901 int csize = max(CHARGE_SIZE, (unsigned long) page_size);
KAMEZAWA Hiroyukia636b322009-01-07 18:08:08 -08001902
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001903 /*
1904 * Unlike gloval-vm's OOM-kill, we're not in memory shortage
1905 * in system level. So, allow to go ahead dying process in addition to
1906 * MEMDIE process.
1907 */
1908 if (unlikely(test_thread_flag(TIF_MEMDIE)
1909 || fatal_signal_pending(current)))
1910 goto bypass;
KAMEZAWA Hiroyukia636b322009-01-07 18:08:08 -08001911
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08001912 /*
Hugh Dickins3be912772008-02-07 00:14:19 -08001913 * We always charge the cgroup the mm_struct belongs to.
1914 * The mm_struct's mem_cgroup changes on task migration if the
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08001915 * thread group leader migrates. It's possible that mm is not
1916 * set, if so charge the init_mm (happens for pagecache usage).
1917 */
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001918 if (!*memcg && !mm)
1919 goto bypass;
1920again:
1921 if (*memcg) { /* css should be a valid one */
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001922 mem = *memcg;
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001923 VM_BUG_ON(css_is_removed(&mem->css));
1924 if (mem_cgroup_is_root(mem))
1925 goto done;
Andrea Arcangeliec168512011-01-13 15:46:56 -08001926 if (page_size == PAGE_SIZE && consume_stock(mem))
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001927 goto done;
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08001928 css_get(&mem->css);
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001929 } else {
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001930 struct task_struct *p;
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -08001931
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001932 rcu_read_lock();
1933 p = rcu_dereference(mm->owner);
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001934 /*
KAMEZAWA Hiroyukiebb76ce2010-12-29 14:07:11 -08001935 * Because we don't have task_lock(), "p" can exit.
1936 * In that case, "mem" can point to root or p can be NULL with
1937 * race with swapoff. Then, we have small risk of mis-accouning.
1938 * But such kind of mis-account by race always happens because
1939 * we don't have cgroup_mutex(). It's overkill and we allo that
1940 * small race, here.
1941 * (*) swapoff at el will charge against mm-struct not against
1942 * task-struct. So, mm->owner can be NULL.
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001943 */
1944 mem = mem_cgroup_from_task(p);
KAMEZAWA Hiroyukiebb76ce2010-12-29 14:07:11 -08001945 if (!mem || mem_cgroup_is_root(mem)) {
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001946 rcu_read_unlock();
1947 goto done;
1948 }
Andrea Arcangeliec168512011-01-13 15:46:56 -08001949 if (page_size == PAGE_SIZE && consume_stock(mem)) {
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001950 /*
1951 * It seems dagerous to access memcg without css_get().
1952 * But considering how consume_stok works, it's not
1953 * necessary. If consume_stock success, some charges
1954 * from this memcg are cached on this cpu. So, we
1955 * don't need to call css_get()/css_tryget() before
1956 * calling consume_stock().
1957 */
1958 rcu_read_unlock();
1959 goto done;
1960 }
1961 /* after here, we may be blocked. we need to get refcnt */
1962 if (!css_tryget(&mem->css)) {
1963 rcu_read_unlock();
1964 goto again;
1965 }
1966 rcu_read_unlock();
1967 }
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08001968
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001969 do {
1970 bool oom_check;
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08001971
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001972 /* If killed, bypass charge */
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001973 if (fatal_signal_pending(current)) {
1974 css_put(&mem->css);
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001975 goto bypass;
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001976 }
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08001977
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001978 oom_check = false;
1979 if (oom && !nr_oom_retries) {
1980 oom_check = true;
1981 nr_oom_retries = MEM_CGROUP_RECLAIM_RETRIES;
1982 }
Balbir Singh6d61ef42009-01-07 18:08:06 -08001983
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001984 ret = __mem_cgroup_do_charge(mem, gfp_mask, csize, oom_check);
1985
1986 switch (ret) {
1987 case CHARGE_OK:
1988 break;
1989 case CHARGE_RETRY: /* not in OOM situation but retry */
Andrea Arcangeliec168512011-01-13 15:46:56 -08001990 csize = page_size;
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001991 css_put(&mem->css);
1992 mem = NULL;
1993 goto again;
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001994 case CHARGE_WOULDBLOCK: /* !__GFP_WAIT */
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001995 css_put(&mem->css);
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08001996 goto nomem;
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001997 case CHARGE_NOMEM: /* OOM routine works */
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07001998 if (!oom) {
1999 css_put(&mem->css);
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08002000 goto nomem;
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07002001 }
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07002002 /* If oom, we never return -ENOMEM */
2003 nr_oom_retries--;
2004 break;
2005 case CHARGE_OOM_DIE: /* Killed by OOM Killer */
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07002006 css_put(&mem->css);
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08002007 goto bypass;
Balbir Singh66e17072008-02-07 00:13:56 -08002008 }
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07002009 } while (ret != CHARGE_OK);
2010
Andrea Arcangeliec168512011-01-13 15:46:56 -08002011 if (csize > page_size)
2012 refill_stock(mem, csize - page_size);
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07002013 css_put(&mem->css);
Balbir Singh0c3e73e2009-09-23 15:56:42 -07002014done:
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07002015 *memcg = mem;
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002016 return 0;
2017nomem:
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07002018 *memcg = NULL;
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002019 return -ENOMEM;
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08002020bypass:
2021 *memcg = NULL;
2022 return 0;
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002023}
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002024
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002025/*
Daisuke Nishimuraa3032a22009-12-15 16:47:10 -08002026 * Somemtimes we have to undo a charge we got by try_charge().
2027 * This function is for that and do uncharge, put css's refcnt.
2028 * gotten by try_charge().
2029 */
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002030static void __mem_cgroup_cancel_charge(struct mem_cgroup *mem,
2031 unsigned long count)
Daisuke Nishimuraa3032a22009-12-15 16:47:10 -08002032{
2033 if (!mem_cgroup_is_root(mem)) {
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002034 res_counter_uncharge(&mem->res, PAGE_SIZE * count);
Daisuke Nishimuraa3032a22009-12-15 16:47:10 -08002035 if (do_swap_account)
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002036 res_counter_uncharge(&mem->memsw, PAGE_SIZE * count);
Daisuke Nishimuraa3032a22009-12-15 16:47:10 -08002037 }
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002038}
2039
Andrea Arcangeliec168512011-01-13 15:46:56 -08002040static void mem_cgroup_cancel_charge(struct mem_cgroup *mem,
2041 int page_size)
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002042{
Andrea Arcangeliec168512011-01-13 15:46:56 -08002043 __mem_cgroup_cancel_charge(mem, page_size >> PAGE_SHIFT);
Daisuke Nishimuraa3032a22009-12-15 16:47:10 -08002044}
2045
2046/*
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002047 * A helper function to get mem_cgroup from ID. must be called under
2048 * rcu_read_lock(). The caller must check css_is_removed() or some if
2049 * it's concern. (dropping refcnt from swap can be called against removed
2050 * memcg.)
2051 */
2052static struct mem_cgroup *mem_cgroup_lookup(unsigned short id)
2053{
2054 struct cgroup_subsys_state *css;
2055
2056 /* ID 0 is unused ID */
2057 if (!id)
2058 return NULL;
2059 css = css_lookup(&mem_cgroup_subsys, id);
2060 if (!css)
2061 return NULL;
2062 return container_of(css, struct mem_cgroup, css);
2063}
2064
Wu Fengguange42d9d52009-12-16 12:19:59 +01002065struct mem_cgroup *try_get_mem_cgroup_from_page(struct page *page)
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002066{
Wu Fengguange42d9d52009-12-16 12:19:59 +01002067 struct mem_cgroup *mem = NULL;
Daisuke Nishimura3c776e62009-04-02 16:57:43 -07002068 struct page_cgroup *pc;
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002069 unsigned short id;
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002070 swp_entry_t ent;
2071
Daisuke Nishimura3c776e62009-04-02 16:57:43 -07002072 VM_BUG_ON(!PageLocked(page));
2073
Daisuke Nishimura3c776e62009-04-02 16:57:43 -07002074 pc = lookup_page_cgroup(page);
Daisuke Nishimurac0bd3f62009-04-30 15:08:11 -07002075 lock_page_cgroup(pc);
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002076 if (PageCgroupUsed(pc)) {
Daisuke Nishimura3c776e62009-04-02 16:57:43 -07002077 mem = pc->mem_cgroup;
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002078 if (mem && !css_tryget(&mem->css))
2079 mem = NULL;
Wu Fengguange42d9d52009-12-16 12:19:59 +01002080 } else if (PageSwapCache(page)) {
Daisuke Nishimura3c776e62009-04-02 16:57:43 -07002081 ent.val = page_private(page);
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002082 id = lookup_swap_cgroup(ent);
2083 rcu_read_lock();
2084 mem = mem_cgroup_lookup(id);
2085 if (mem && !css_tryget(&mem->css))
2086 mem = NULL;
2087 rcu_read_unlock();
Daisuke Nishimura3c776e62009-04-02 16:57:43 -07002088 }
Daisuke Nishimurac0bd3f62009-04-30 15:08:11 -07002089 unlock_page_cgroup(pc);
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002090 return mem;
2091}
2092
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002093/*
Daisuke Nishimuraa5e924f2009-01-07 18:08:28 -08002094 * commit a charge got by __mem_cgroup_try_charge() and makes page_cgroup to be
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002095 * USED state. If already USED, uncharge and return.
2096 */
2097
2098static void __mem_cgroup_commit_charge(struct mem_cgroup *mem,
Andrea Arcangeliec168512011-01-13 15:46:56 -08002099 struct page_cgroup *pc,
2100 enum charge_type ctype,
2101 int page_size)
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002102{
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002103 /* try_charge() can return NULL to *memcg, taking care of it. */
2104 if (!mem)
2105 return;
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002106
2107 lock_page_cgroup(pc);
2108 if (unlikely(PageCgroupUsed(pc))) {
2109 unlock_page_cgroup(pc);
Andrea Arcangeliec168512011-01-13 15:46:56 -08002110 mem_cgroup_cancel_charge(mem, page_size);
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002111 return;
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002112 }
Balbir Singh4b3bde42009-09-23 15:56:32 -07002113
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002114 pc->mem_cgroup = mem;
KAMEZAWA Hiroyuki261fb612009-09-23 15:56:33 -07002115 /*
2116 * We access a page_cgroup asynchronously without lock_page_cgroup().
2117 * Especially when a page_cgroup is taken from a page, pc->mem_cgroup
2118 * is accessed after testing USED bit. To make pc->mem_cgroup visible
2119 * before USED bit, we need memory barrier here.
2120 * See mem_cgroup_add_lru_list(), etc.
2121 */
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002122 smp_wmb();
Balbir Singh4b3bde42009-09-23 15:56:32 -07002123 switch (ctype) {
2124 case MEM_CGROUP_CHARGE_TYPE_CACHE:
2125 case MEM_CGROUP_CHARGE_TYPE_SHMEM:
2126 SetPageCgroupCache(pc);
2127 SetPageCgroupUsed(pc);
2128 break;
2129 case MEM_CGROUP_CHARGE_TYPE_MAPPED:
2130 ClearPageCgroupCache(pc);
2131 SetPageCgroupUsed(pc);
2132 break;
2133 default:
2134 break;
2135 }
Hugh Dickins3be912772008-02-07 00:14:19 -08002136
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002137 mem_cgroup_charge_statistics(mem, pc, true);
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002138
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002139 unlock_page_cgroup(pc);
KAMEZAWA Hiroyuki430e48632010-03-10 15:22:30 -08002140 /*
2141 * "charge_statistics" updated event counter. Then, check it.
2142 * Insert ancestor (and ancestor's ancestors), to softlimit RB-tree.
2143 * if they exceeds softlimit.
2144 */
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -08002145 memcg_check_events(mem, pc->page);
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002146}
2147
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002148/**
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002149 * __mem_cgroup_move_account - move account of the page
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002150 * @pc: page_cgroup of the page.
2151 * @from: mem_cgroup which the page is moved from.
2152 * @to: mem_cgroup which the page is moved to. @from != @to.
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002153 * @uncharge: whether we should call uncharge and css_put against @from.
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002154 *
2155 * The caller must confirm following.
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002156 * - page is not on LRU (isolate_page() is useful.)
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002157 * - the pc is locked, used, and ->mem_cgroup points to @from.
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002158 *
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002159 * This function doesn't do "charge" nor css_get to new cgroup. It should be
2160 * done by a caller(__mem_cgroup_try_charge would be usefull). If @uncharge is
2161 * true, this function does "uncharge" from old cgroup, but it doesn't if
2162 * @uncharge is false, so a caller should do "uncharge".
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002163 */
2164
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002165static void __mem_cgroup_move_account(struct page_cgroup *pc,
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002166 struct mem_cgroup *from, struct mem_cgroup *to, bool uncharge)
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002167{
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002168 VM_BUG_ON(from == to);
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002169 VM_BUG_ON(PageLRU(pc->page));
Kirill A. Shutemov112bc2e2010-11-24 12:56:58 -08002170 VM_BUG_ON(!page_is_cgroup_locked(pc));
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002171 VM_BUG_ON(!PageCgroupUsed(pc));
2172 VM_BUG_ON(pc->mem_cgroup != from);
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002173
KAMEZAWA Hiroyuki8725d542010-04-06 14:35:05 -07002174 if (PageCgroupFileMapped(pc)) {
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08002175 /* Update mapped_file data for mem_cgroup */
2176 preempt_disable();
2177 __this_cpu_dec(from->stat->count[MEM_CGROUP_STAT_FILE_MAPPED]);
2178 __this_cpu_inc(to->stat->count[MEM_CGROUP_STAT_FILE_MAPPED]);
2179 preempt_enable();
Balbir Singhd69b0422009-06-17 16:26:34 -07002180 }
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002181 mem_cgroup_charge_statistics(from, pc, false);
2182 if (uncharge)
2183 /* This is not "cancel", but cancel_charge does all we need. */
Andrea Arcangeliec168512011-01-13 15:46:56 -08002184 mem_cgroup_cancel_charge(from, PAGE_SIZE);
Balbir Singhd69b0422009-06-17 16:26:34 -07002185
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002186 /* caller should have done css_get */
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002187 pc->mem_cgroup = to;
2188 mem_cgroup_charge_statistics(to, pc, true);
KAMEZAWA Hiroyuki88703262009-07-29 15:04:06 -07002189 /*
2190 * We charges against "to" which may not have any tasks. Then, "to"
2191 * can be under rmdir(). But in current implementation, caller of
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08002192 * this function is just force_empty() and move charge, so it's
2193 * garanteed that "to" is never removed. So, we don't check rmdir
2194 * status here.
KAMEZAWA Hiroyuki88703262009-07-29 15:04:06 -07002195 */
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002196}
2197
2198/*
2199 * check whether the @pc is valid for moving account and call
2200 * __mem_cgroup_move_account()
2201 */
2202static int mem_cgroup_move_account(struct page_cgroup *pc,
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002203 struct mem_cgroup *from, struct mem_cgroup *to, bool uncharge)
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002204{
2205 int ret = -EINVAL;
2206 lock_page_cgroup(pc);
2207 if (PageCgroupUsed(pc) && pc->mem_cgroup == from) {
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002208 __mem_cgroup_move_account(pc, from, to, uncharge);
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002209 ret = 0;
2210 }
2211 unlock_page_cgroup(pc);
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -08002212 /*
2213 * check events
2214 */
2215 memcg_check_events(to, pc->page);
2216 memcg_check_events(from, pc->page);
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002217 return ret;
2218}
2219
2220/*
2221 * move charges to its parent.
2222 */
2223
2224static int mem_cgroup_move_parent(struct page_cgroup *pc,
2225 struct mem_cgroup *child,
2226 gfp_t gfp_mask)
2227{
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002228 struct page *page = pc->page;
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002229 struct cgroup *cg = child->css.cgroup;
2230 struct cgroup *pcg = cg->parent;
2231 struct mem_cgroup *parent;
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002232 int ret;
2233
2234 /* Is ROOT ? */
2235 if (!pcg)
2236 return -EINVAL;
2237
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002238 ret = -EBUSY;
2239 if (!get_page_unless_zero(page))
2240 goto out;
2241 if (isolate_lru_page(page))
2242 goto put;
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002243
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002244 parent = mem_cgroup_from_cont(pcg);
Andrea Arcangeliec168512011-01-13 15:46:56 -08002245 ret = __mem_cgroup_try_charge(NULL, gfp_mask, &parent, false,
2246 PAGE_SIZE);
KAMEZAWA Hiroyukia636b322009-01-07 18:08:08 -08002247 if (ret || !parent)
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002248 goto put_back;
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002249
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08002250 ret = mem_cgroup_move_account(pc, child, parent, true);
2251 if (ret)
Andrea Arcangeliec168512011-01-13 15:46:56 -08002252 mem_cgroup_cancel_charge(parent, PAGE_SIZE);
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002253put_back:
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002254 putback_lru_page(page);
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002255put:
Daisuke Nishimura40d58132009-01-15 13:51:12 -08002256 put_page(page);
Daisuke Nishimura57f9fd7d2009-12-15 16:47:11 -08002257out:
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08002258 return ret;
2259}
2260
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002261/*
2262 * Charge the memory controller for page usage.
2263 * Return
2264 * 0 if the charge was successful
2265 * < 0 if the cgroup is over its limit
2266 */
2267static int mem_cgroup_charge_common(struct page *page, struct mm_struct *mm,
Daisuke Nishimura73045c42010-08-10 18:02:59 -07002268 gfp_t gfp_mask, enum charge_type ctype)
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002269{
Daisuke Nishimura73045c42010-08-10 18:02:59 -07002270 struct mem_cgroup *mem = NULL;
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002271 struct page_cgroup *pc;
2272 int ret;
Andrea Arcangeliec168512011-01-13 15:46:56 -08002273 int page_size = PAGE_SIZE;
2274
2275 if (PageTransHuge(page))
2276 page_size <<= compound_order(page);
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002277
2278 pc = lookup_page_cgroup(page);
2279 /* can happen at boot */
2280 if (unlikely(!pc))
2281 return 0;
2282 prefetchw(pc);
2283
Andrea Arcangeliec168512011-01-13 15:46:56 -08002284 ret = __mem_cgroup_try_charge(mm, gfp_mask, &mem, true, page_size);
KAMEZAWA Hiroyukia636b322009-01-07 18:08:08 -08002285 if (ret || !mem)
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002286 return ret;
2287
Andrea Arcangeliec168512011-01-13 15:46:56 -08002288 __mem_cgroup_commit_charge(mem, pc, ctype, page_size);
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002289 return 0;
2290}
2291
2292int mem_cgroup_newpage_charge(struct page *page,
2293 struct mm_struct *mm, gfp_t gfp_mask)
KAMEZAWA Hiroyuki217bc312008-02-07 00:14:17 -08002294{
Hirokazu Takahashif8d665422009-01-07 18:08:02 -08002295 if (mem_cgroup_disabled())
Li Zefancede86a2008-07-25 01:47:18 -07002296 return 0;
KAMEZAWA Hiroyuki69029cd2008-07-25 01:47:14 -07002297 /*
2298 * If already mapped, we don't have to account.
2299 * If page cache, page->mapping has address_space.
2300 * But page->mapping may have out-of-use anon_vma pointer,
2301 * detecit it by PageAnon() check. newly-mapped-anon's page->mapping
2302 * is NULL.
2303 */
2304 if (page_mapped(page) || (page->mapping && !PageAnon(page)))
2305 return 0;
2306 if (unlikely(!mm))
2307 mm = &init_mm;
KAMEZAWA Hiroyuki217bc312008-02-07 00:14:17 -08002308 return mem_cgroup_charge_common(page, mm, gfp_mask,
Daisuke Nishimura73045c42010-08-10 18:02:59 -07002309 MEM_CGROUP_CHARGE_TYPE_MAPPED);
KAMEZAWA Hiroyuki217bc312008-02-07 00:14:17 -08002310}
2311
Daisuke Nishimura83aae4c2009-04-02 16:57:48 -07002312static void
2313__mem_cgroup_commit_charge_swapin(struct page *page, struct mem_cgroup *ptr,
2314 enum charge_type ctype);
2315
Balbir Singhe1a1cd52008-02-07 00:14:02 -08002316int mem_cgroup_cache_charge(struct page *page, struct mm_struct *mm,
2317 gfp_t gfp_mask)
Balbir Singh8697d332008-02-07 00:13:59 -08002318{
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002319 int ret;
2320
Hirokazu Takahashif8d665422009-01-07 18:08:02 -08002321 if (mem_cgroup_disabled())
Li Zefancede86a2008-07-25 01:47:18 -07002322 return 0;
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002323 if (PageCompound(page))
2324 return 0;
KAMEZAWA Hiroyukiaccf1632008-07-25 01:47:17 -07002325 /*
2326 * Corner case handling. This is called from add_to_page_cache()
2327 * in usual. But some FS (shmem) precharges this page before calling it
2328 * and call add_to_page_cache() with GFP_NOWAIT.
2329 *
2330 * For GFP_NOWAIT case, the page may be pre-charged before calling
2331 * add_to_page_cache(). (See shmem.c) check it here and avoid to call
2332 * charge twice. (It works but has to pay a bit larger cost.)
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002333 * And when the page is SwapCache, it should take swap information
2334 * into account. This is under lock_page() now.
KAMEZAWA Hiroyukiaccf1632008-07-25 01:47:17 -07002335 */
2336 if (!(gfp_mask & __GFP_WAIT)) {
2337 struct page_cgroup *pc;
2338
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002339 pc = lookup_page_cgroup(page);
2340 if (!pc)
2341 return 0;
2342 lock_page_cgroup(pc);
2343 if (PageCgroupUsed(pc)) {
2344 unlock_page_cgroup(pc);
KAMEZAWA Hiroyukiaccf1632008-07-25 01:47:17 -07002345 return 0;
2346 }
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002347 unlock_page_cgroup(pc);
KAMEZAWA Hiroyukiaccf1632008-07-25 01:47:17 -07002348 }
2349
Daisuke Nishimura73045c42010-08-10 18:02:59 -07002350 if (unlikely(!mm))
Balbir Singh8697d332008-02-07 00:13:59 -08002351 mm = &init_mm;
KAMEZAWA Hiroyukiaccf1632008-07-25 01:47:17 -07002352
KAMEZAWA Hiroyukic05555b2008-10-18 20:28:11 -07002353 if (page_is_file_cache(page))
2354 return mem_cgroup_charge_common(page, mm, gfp_mask,
Daisuke Nishimura73045c42010-08-10 18:02:59 -07002355 MEM_CGROUP_CHARGE_TYPE_CACHE);
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002356
Daisuke Nishimura83aae4c2009-04-02 16:57:48 -07002357 /* shmem */
2358 if (PageSwapCache(page)) {
Daisuke Nishimura73045c42010-08-10 18:02:59 -07002359 struct mem_cgroup *mem = NULL;
2360
Daisuke Nishimura83aae4c2009-04-02 16:57:48 -07002361 ret = mem_cgroup_try_charge_swapin(mm, page, gfp_mask, &mem);
2362 if (!ret)
2363 __mem_cgroup_commit_charge_swapin(page, mem,
2364 MEM_CGROUP_CHARGE_TYPE_SHMEM);
2365 } else
2366 ret = mem_cgroup_charge_common(page, mm, gfp_mask,
Daisuke Nishimura73045c42010-08-10 18:02:59 -07002367 MEM_CGROUP_CHARGE_TYPE_SHMEM);
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002368
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002369 return ret;
KAMEZAWA Hiroyukie8589cc2008-07-25 01:47:10 -07002370}
2371
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -08002372/*
2373 * While swap-in, try_charge -> commit or cancel, the page is locked.
2374 * And when try_charge() successfully returns, one refcnt to memcg without
Uwe Kleine-König21ae2952009-10-07 15:21:09 +02002375 * struct page_cgroup is acquired. This refcnt will be consumed by
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -08002376 * "commit()" or removed by "cancel()"
2377 */
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002378int mem_cgroup_try_charge_swapin(struct mm_struct *mm,
2379 struct page *page,
2380 gfp_t mask, struct mem_cgroup **ptr)
2381{
2382 struct mem_cgroup *mem;
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -08002383 int ret;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002384
Hirokazu Takahashif8d665422009-01-07 18:08:02 -08002385 if (mem_cgroup_disabled())
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002386 return 0;
2387
2388 if (!do_swap_account)
2389 goto charge_cur_mm;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002390 /*
2391 * A racing thread's fault, or swapoff, may have already updated
Hugh Dickins407f9c82009-12-14 17:59:30 -08002392 * the pte, and even removed page from swap cache: in those cases
2393 * do_swap_page()'s pte_same() test will fail; but there's also a
2394 * KSM case which does need to charge the page.
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002395 */
2396 if (!PageSwapCache(page))
Hugh Dickins407f9c82009-12-14 17:59:30 -08002397 goto charge_cur_mm;
Wu Fengguange42d9d52009-12-16 12:19:59 +01002398 mem = try_get_mem_cgroup_from_page(page);
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -08002399 if (!mem)
2400 goto charge_cur_mm;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002401 *ptr = mem;
Andrea Arcangeliec168512011-01-13 15:46:56 -08002402 ret = __mem_cgroup_try_charge(NULL, mask, ptr, true, PAGE_SIZE);
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -08002403 css_put(&mem->css);
2404 return ret;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002405charge_cur_mm:
2406 if (unlikely(!mm))
2407 mm = &init_mm;
Andrea Arcangeliec168512011-01-13 15:46:56 -08002408 return __mem_cgroup_try_charge(mm, mask, ptr, true, PAGE_SIZE);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002409}
2410
Daisuke Nishimura83aae4c2009-04-02 16:57:48 -07002411static void
2412__mem_cgroup_commit_charge_swapin(struct page *page, struct mem_cgroup *ptr,
2413 enum charge_type ctype)
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002414{
2415 struct page_cgroup *pc;
2416
Hirokazu Takahashif8d665422009-01-07 18:08:02 -08002417 if (mem_cgroup_disabled())
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002418 return;
2419 if (!ptr)
2420 return;
KAMEZAWA Hiroyuki88703262009-07-29 15:04:06 -07002421 cgroup_exclude_rmdir(&ptr->css);
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002422 pc = lookup_page_cgroup(page);
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -08002423 mem_cgroup_lru_del_before_commit_swapcache(page);
Andrea Arcangeliec168512011-01-13 15:46:56 -08002424 __mem_cgroup_commit_charge(ptr, pc, ctype, PAGE_SIZE);
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -08002425 mem_cgroup_lru_add_after_commit_swapcache(page);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002426 /*
2427 * Now swap is on-memory. This means this page may be
2428 * counted both as mem and swap....double count.
KAMEZAWA Hiroyuki03f3c432009-01-07 18:08:31 -08002429 * Fix it by uncharging from memsw. Basically, this SwapCache is stable
2430 * under lock_page(). But in do_swap_page()::memory.c, reuse_swap_page()
2431 * may call delete_from_swap_cache() before reach here.
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002432 */
KAMEZAWA Hiroyuki03f3c432009-01-07 18:08:31 -08002433 if (do_swap_account && PageSwapCache(page)) {
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002434 swp_entry_t ent = {.val = page_private(page)};
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002435 unsigned short id;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002436 struct mem_cgroup *memcg;
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002437
2438 id = swap_cgroup_record(ent, 0);
2439 rcu_read_lock();
2440 memcg = mem_cgroup_lookup(id);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002441 if (memcg) {
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002442 /*
2443 * This recorded memcg can be obsolete one. So, avoid
2444 * calling css_tryget
2445 */
Balbir Singh0c3e73e2009-09-23 15:56:42 -07002446 if (!mem_cgroup_is_root(memcg))
KAMEZAWA Hiroyuki4e649152009-10-01 15:44:11 -07002447 res_counter_uncharge(&memcg->memsw, PAGE_SIZE);
Balbir Singh0c3e73e2009-09-23 15:56:42 -07002448 mem_cgroup_swap_statistics(memcg, false);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002449 mem_cgroup_put(memcg);
2450 }
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002451 rcu_read_unlock();
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002452 }
KAMEZAWA Hiroyuki88703262009-07-29 15:04:06 -07002453 /*
2454 * At swapin, we may charge account against cgroup which has no tasks.
2455 * So, rmdir()->pre_destroy() can be called while we do this charge.
2456 * In that case, we need to call pre_destroy() again. check it here.
2457 */
2458 cgroup_release_and_wakeup_rmdir(&ptr->css);
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002459}
2460
Daisuke Nishimura83aae4c2009-04-02 16:57:48 -07002461void mem_cgroup_commit_charge_swapin(struct page *page, struct mem_cgroup *ptr)
2462{
2463 __mem_cgroup_commit_charge_swapin(page, ptr,
2464 MEM_CGROUP_CHARGE_TYPE_MAPPED);
2465}
2466
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002467void mem_cgroup_cancel_charge_swapin(struct mem_cgroup *mem)
2468{
Hirokazu Takahashif8d665422009-01-07 18:08:02 -08002469 if (mem_cgroup_disabled())
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002470 return;
2471 if (!mem)
2472 return;
Andrea Arcangeliec168512011-01-13 15:46:56 -08002473 mem_cgroup_cancel_charge(mem, PAGE_SIZE);
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002474}
2475
KAMEZAWA Hiroyuki569b8462009-12-15 16:47:03 -08002476static void
Andrea Arcangeliec168512011-01-13 15:46:56 -08002477__do_uncharge(struct mem_cgroup *mem, const enum charge_type ctype,
2478 int page_size)
KAMEZAWA Hiroyuki569b8462009-12-15 16:47:03 -08002479{
2480 struct memcg_batch_info *batch = NULL;
2481 bool uncharge_memsw = true;
2482 /* If swapout, usage of swap doesn't decrease */
2483 if (!do_swap_account || ctype == MEM_CGROUP_CHARGE_TYPE_SWAPOUT)
2484 uncharge_memsw = false;
KAMEZAWA Hiroyuki569b8462009-12-15 16:47:03 -08002485
2486 batch = &current->memcg_batch;
2487 /*
2488 * In usual, we do css_get() when we remember memcg pointer.
2489 * But in this case, we keep res->usage until end of a series of
2490 * uncharges. Then, it's ok to ignore memcg's refcnt.
2491 */
2492 if (!batch->memcg)
2493 batch->memcg = mem;
2494 /*
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07002495 * do_batch > 0 when unmapping pages or inode invalidate/truncate.
2496 * In those cases, all pages freed continously can be expected to be in
2497 * the same cgroup and we have chance to coalesce uncharges.
2498 * But we do uncharge one by one if this is killed by OOM(TIF_MEMDIE)
2499 * because we want to do uncharge as soon as possible.
2500 */
2501
2502 if (!batch->do_batch || test_thread_flag(TIF_MEMDIE))
2503 goto direct_uncharge;
2504
Andrea Arcangeliec168512011-01-13 15:46:56 -08002505 if (page_size != PAGE_SIZE)
2506 goto direct_uncharge;
2507
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07002508 /*
KAMEZAWA Hiroyuki569b8462009-12-15 16:47:03 -08002509 * In typical case, batch->memcg == mem. This means we can
2510 * merge a series of uncharges to an uncharge of res_counter.
2511 * If not, we uncharge res_counter ony by one.
2512 */
2513 if (batch->memcg != mem)
2514 goto direct_uncharge;
2515 /* remember freed charge and uncharge it later */
2516 batch->bytes += PAGE_SIZE;
2517 if (uncharge_memsw)
2518 batch->memsw_bytes += PAGE_SIZE;
2519 return;
2520direct_uncharge:
Andrea Arcangeliec168512011-01-13 15:46:56 -08002521 res_counter_uncharge(&mem->res, page_size);
KAMEZAWA Hiroyuki569b8462009-12-15 16:47:03 -08002522 if (uncharge_memsw)
Andrea Arcangeliec168512011-01-13 15:46:56 -08002523 res_counter_uncharge(&mem->memsw, page_size);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07002524 if (unlikely(batch->memcg != mem))
2525 memcg_oom_recover(mem);
KAMEZAWA Hiroyuki569b8462009-12-15 16:47:03 -08002526 return;
2527}
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002528
Balbir Singh8697d332008-02-07 00:13:59 -08002529/*
KAMEZAWA Hiroyuki69029cd2008-07-25 01:47:14 -07002530 * uncharge if !page_mapped(page)
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002531 */
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002532static struct mem_cgroup *
KAMEZAWA Hiroyuki69029cd2008-07-25 01:47:14 -07002533__mem_cgroup_uncharge_common(struct page *page, enum charge_type ctype)
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002534{
Hugh Dickins82895462008-03-04 14:29:08 -08002535 struct page_cgroup *pc;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002536 struct mem_cgroup *mem = NULL;
Andrea Arcangeliec168512011-01-13 15:46:56 -08002537 int page_size = PAGE_SIZE;
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002538
Hirokazu Takahashif8d665422009-01-07 18:08:02 -08002539 if (mem_cgroup_disabled())
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002540 return NULL;
Balbir Singh40779602008-04-04 14:29:59 -07002541
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002542 if (PageSwapCache(page))
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002543 return NULL;
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002544
Andrea Arcangeliec168512011-01-13 15:46:56 -08002545 if (PageTransHuge(page))
2546 page_size <<= compound_order(page);
2547
Balbir Singh8697d332008-02-07 00:13:59 -08002548 /*
Balbir Singh3c541e12008-02-07 00:14:41 -08002549 * Check if our page_cgroup is valid
Balbir Singh8697d332008-02-07 00:13:59 -08002550 */
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002551 pc = lookup_page_cgroup(page);
2552 if (unlikely(!pc || !PageCgroupUsed(pc)))
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002553 return NULL;
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002554
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002555 lock_page_cgroup(pc);
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002556
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002557 mem = pc->mem_cgroup;
2558
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002559 if (!PageCgroupUsed(pc))
2560 goto unlock_out;
2561
2562 switch (ctype) {
2563 case MEM_CGROUP_CHARGE_TYPE_MAPPED:
KAMEZAWA Hiroyuki8a9478c2009-06-17 16:27:17 -07002564 case MEM_CGROUP_CHARGE_TYPE_DROP:
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002565 /* See mem_cgroup_prepare_migration() */
2566 if (page_mapped(page) || PageCgroupMigration(pc))
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002567 goto unlock_out;
2568 break;
2569 case MEM_CGROUP_CHARGE_TYPE_SWAPOUT:
2570 if (!PageAnon(page)) { /* Shared memory */
2571 if (page->mapping && !page_is_file_cache(page))
2572 goto unlock_out;
2573 } else if (page_mapped(page)) /* Anon */
2574 goto unlock_out;
2575 break;
2576 default:
2577 break;
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002578 }
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002579
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08002580 mem_cgroup_charge_statistics(mem, pc, false);
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07002581
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002582 ClearPageCgroupUsed(pc);
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -08002583 /*
2584 * pc->mem_cgroup is not cleared here. It will be accessed when it's
2585 * freed from LRU. This is safe because uncharged page is expected not
2586 * to be reused (freed soon). Exception is SwapCache, it's handled by
2587 * special functions.
2588 */
Hugh Dickinsb9c565d2008-03-04 14:29:11 -08002589
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002590 unlock_page_cgroup(pc);
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07002591 /*
2592 * even after unlock, we have mem->res.usage here and this memcg
2593 * will never be freed.
2594 */
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -08002595 memcg_check_events(mem, page);
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07002596 if (do_swap_account && ctype == MEM_CGROUP_CHARGE_TYPE_SWAPOUT) {
2597 mem_cgroup_swap_statistics(mem, true);
2598 mem_cgroup_get(mem);
2599 }
2600 if (!mem_cgroup_is_root(mem))
Andrea Arcangeliec168512011-01-13 15:46:56 -08002601 __do_uncharge(mem, ctype, page_size);
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08002602
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002603 return mem;
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002604
2605unlock_out:
2606 unlock_page_cgroup(pc);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002607 return NULL;
Balbir Singh3c541e12008-02-07 00:14:41 -08002608}
2609
KAMEZAWA Hiroyuki69029cd2008-07-25 01:47:14 -07002610void mem_cgroup_uncharge_page(struct page *page)
2611{
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002612 /* early check. */
2613 if (page_mapped(page))
2614 return;
2615 if (page->mapping && !PageAnon(page))
2616 return;
KAMEZAWA Hiroyuki69029cd2008-07-25 01:47:14 -07002617 __mem_cgroup_uncharge_common(page, MEM_CGROUP_CHARGE_TYPE_MAPPED);
2618}
2619
2620void mem_cgroup_uncharge_cache_page(struct page *page)
2621{
2622 VM_BUG_ON(page_mapped(page));
KAMEZAWA Hiroyukib7abea92008-10-18 20:28:09 -07002623 VM_BUG_ON(page->mapping);
KAMEZAWA Hiroyuki69029cd2008-07-25 01:47:14 -07002624 __mem_cgroup_uncharge_common(page, MEM_CGROUP_CHARGE_TYPE_CACHE);
2625}
2626
KAMEZAWA Hiroyuki569b8462009-12-15 16:47:03 -08002627/*
2628 * Batch_start/batch_end is called in unmap_page_range/invlidate/trucate.
2629 * In that cases, pages are freed continuously and we can expect pages
2630 * are in the same memcg. All these calls itself limits the number of
2631 * pages freed at once, then uncharge_start/end() is called properly.
2632 * This may be called prural(2) times in a context,
2633 */
2634
2635void mem_cgroup_uncharge_start(void)
2636{
2637 current->memcg_batch.do_batch++;
2638 /* We can do nest. */
2639 if (current->memcg_batch.do_batch == 1) {
2640 current->memcg_batch.memcg = NULL;
2641 current->memcg_batch.bytes = 0;
2642 current->memcg_batch.memsw_bytes = 0;
2643 }
2644}
2645
2646void mem_cgroup_uncharge_end(void)
2647{
2648 struct memcg_batch_info *batch = &current->memcg_batch;
2649
2650 if (!batch->do_batch)
2651 return;
2652
2653 batch->do_batch--;
2654 if (batch->do_batch) /* If stacked, do nothing. */
2655 return;
2656
2657 if (!batch->memcg)
2658 return;
2659 /*
2660 * This "batch->memcg" is valid without any css_get/put etc...
2661 * bacause we hide charges behind us.
2662 */
2663 if (batch->bytes)
2664 res_counter_uncharge(&batch->memcg->res, batch->bytes);
2665 if (batch->memsw_bytes)
2666 res_counter_uncharge(&batch->memcg->memsw, batch->memsw_bytes);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07002667 memcg_oom_recover(batch->memcg);
KAMEZAWA Hiroyuki569b8462009-12-15 16:47:03 -08002668 /* forget this pointer (for sanity check) */
2669 batch->memcg = NULL;
2670}
2671
Daisuke Nishimurae767e052009-05-28 14:34:28 -07002672#ifdef CONFIG_SWAP
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002673/*
Daisuke Nishimurae767e052009-05-28 14:34:28 -07002674 * called after __delete_from_swap_cache() and drop "page" account.
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002675 * memcg information is recorded to swap_cgroup of "ent"
2676 */
KAMEZAWA Hiroyuki8a9478c2009-06-17 16:27:17 -07002677void
2678mem_cgroup_uncharge_swapcache(struct page *page, swp_entry_t ent, bool swapout)
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002679{
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002680 struct mem_cgroup *memcg;
KAMEZAWA Hiroyuki8a9478c2009-06-17 16:27:17 -07002681 int ctype = MEM_CGROUP_CHARGE_TYPE_SWAPOUT;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002682
KAMEZAWA Hiroyuki8a9478c2009-06-17 16:27:17 -07002683 if (!swapout) /* this was a swap cache but the swap is unused ! */
2684 ctype = MEM_CGROUP_CHARGE_TYPE_DROP;
2685
2686 memcg = __mem_cgroup_uncharge_common(page, ctype);
2687
KAMEZAWA Hiroyukif75ca962010-08-10 18:03:02 -07002688 /*
2689 * record memcg information, if swapout && memcg != NULL,
2690 * mem_cgroup_get() was called in uncharge().
2691 */
2692 if (do_swap_account && swapout && memcg)
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002693 swap_cgroup_record(ent, css_id(&memcg->css));
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002694}
Daisuke Nishimurae767e052009-05-28 14:34:28 -07002695#endif
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -08002696
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002697#ifdef CONFIG_CGROUP_MEM_RES_CTLR_SWAP
2698/*
2699 * called from swap_entry_free(). remove record in swap_cgroup and
2700 * uncharge "memsw" account.
2701 */
2702void mem_cgroup_uncharge_swap(swp_entry_t ent)
2703{
2704 struct mem_cgroup *memcg;
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002705 unsigned short id;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002706
2707 if (!do_swap_account)
2708 return;
2709
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002710 id = swap_cgroup_record(ent, 0);
2711 rcu_read_lock();
2712 memcg = mem_cgroup_lookup(id);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002713 if (memcg) {
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002714 /*
2715 * We uncharge this because swap is freed.
2716 * This memcg can be obsolete one. We avoid calling css_tryget
2717 */
Balbir Singh0c3e73e2009-09-23 15:56:42 -07002718 if (!mem_cgroup_is_root(memcg))
KAMEZAWA Hiroyuki4e649152009-10-01 15:44:11 -07002719 res_counter_uncharge(&memcg->memsw, PAGE_SIZE);
Balbir Singh0c3e73e2009-09-23 15:56:42 -07002720 mem_cgroup_swap_statistics(memcg, false);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002721 mem_cgroup_put(memcg);
2722 }
KAMEZAWA Hiroyukia3b2d692009-04-02 16:57:45 -07002723 rcu_read_unlock();
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002724}
Daisuke Nishimura02491442010-03-10 15:22:17 -08002725
2726/**
2727 * mem_cgroup_move_swap_account - move swap charge and swap_cgroup's record.
2728 * @entry: swap entry to be moved
2729 * @from: mem_cgroup which the entry is moved from
2730 * @to: mem_cgroup which the entry is moved to
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08002731 * @need_fixup: whether we should fixup res_counters and refcounts.
Daisuke Nishimura02491442010-03-10 15:22:17 -08002732 *
2733 * It succeeds only when the swap_cgroup's record for this entry is the same
2734 * as the mem_cgroup's id of @from.
2735 *
2736 * Returns 0 on success, -EINVAL on failure.
2737 *
2738 * The caller must have charged to @to, IOW, called res_counter_charge() about
2739 * both res and memsw, and called css_get().
2740 */
2741static int mem_cgroup_move_swap_account(swp_entry_t entry,
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08002742 struct mem_cgroup *from, struct mem_cgroup *to, bool need_fixup)
Daisuke Nishimura02491442010-03-10 15:22:17 -08002743{
2744 unsigned short old_id, new_id;
2745
2746 old_id = css_id(&from->css);
2747 new_id = css_id(&to->css);
2748
2749 if (swap_cgroup_cmpxchg(entry, old_id, new_id) == old_id) {
Daisuke Nishimura02491442010-03-10 15:22:17 -08002750 mem_cgroup_swap_statistics(from, false);
Daisuke Nishimura02491442010-03-10 15:22:17 -08002751 mem_cgroup_swap_statistics(to, true);
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08002752 /*
2753 * This function is only called from task migration context now.
2754 * It postpones res_counter and refcount handling till the end
2755 * of task migration(mem_cgroup_clear_mc()) for performance
2756 * improvement. But we cannot postpone mem_cgroup_get(to)
2757 * because if the process that has been moved to @to does
2758 * swap-in, the refcount of @to might be decreased to 0.
2759 */
Daisuke Nishimura02491442010-03-10 15:22:17 -08002760 mem_cgroup_get(to);
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08002761 if (need_fixup) {
2762 if (!mem_cgroup_is_root(from))
2763 res_counter_uncharge(&from->memsw, PAGE_SIZE);
2764 mem_cgroup_put(from);
2765 /*
2766 * we charged both to->res and to->memsw, so we should
2767 * uncharge to->res.
2768 */
2769 if (!mem_cgroup_is_root(to))
2770 res_counter_uncharge(&to->res, PAGE_SIZE);
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08002771 }
Daisuke Nishimura02491442010-03-10 15:22:17 -08002772 return 0;
2773 }
2774 return -EINVAL;
2775}
2776#else
2777static inline int mem_cgroup_move_swap_account(swp_entry_t entry,
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08002778 struct mem_cgroup *from, struct mem_cgroup *to, bool need_fixup)
Daisuke Nishimura02491442010-03-10 15:22:17 -08002779{
2780 return -EINVAL;
2781}
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002782#endif
2783
KAMEZAWA Hiroyukiae41be32008-02-07 00:14:10 -08002784/*
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002785 * Before starting migration, account PAGE_SIZE to mem_cgroup that the old
2786 * page belongs to.
KAMEZAWA Hiroyukiae41be32008-02-07 00:14:10 -08002787 */
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002788int mem_cgroup_prepare_migration(struct page *page,
2789 struct page *newpage, struct mem_cgroup **ptr)
KAMEZAWA Hiroyukiae41be32008-02-07 00:14:10 -08002790{
2791 struct page_cgroup *pc;
KAMEZAWA Hiroyukie8589cc2008-07-25 01:47:10 -07002792 struct mem_cgroup *mem = NULL;
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002793 enum charge_type ctype;
KAMEZAWA Hiroyukie8589cc2008-07-25 01:47:10 -07002794 int ret = 0;
Hugh Dickins8869b8f2008-03-04 14:29:09 -08002795
Andrea Arcangeliec168512011-01-13 15:46:56 -08002796 VM_BUG_ON(PageTransHuge(page));
Hirokazu Takahashif8d665422009-01-07 18:08:02 -08002797 if (mem_cgroup_disabled())
Balbir Singh40779602008-04-04 14:29:59 -07002798 return 0;
2799
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002800 pc = lookup_page_cgroup(page);
2801 lock_page_cgroup(pc);
2802 if (PageCgroupUsed(pc)) {
KAMEZAWA Hiroyukie8589cc2008-07-25 01:47:10 -07002803 mem = pc->mem_cgroup;
2804 css_get(&mem->css);
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002805 /*
2806 * At migrating an anonymous page, its mapcount goes down
2807 * to 0 and uncharge() will be called. But, even if it's fully
2808 * unmapped, migration may fail and this page has to be
2809 * charged again. We set MIGRATION flag here and delay uncharge
2810 * until end_migration() is called
2811 *
2812 * Corner Case Thinking
2813 * A)
2814 * When the old page was mapped as Anon and it's unmap-and-freed
2815 * while migration was ongoing.
2816 * If unmap finds the old page, uncharge() of it will be delayed
2817 * until end_migration(). If unmap finds a new page, it's
2818 * uncharged when it make mapcount to be 1->0. If unmap code
2819 * finds swap_migration_entry, the new page will not be mapped
2820 * and end_migration() will find it(mapcount==0).
2821 *
2822 * B)
2823 * When the old page was mapped but migraion fails, the kernel
2824 * remaps it. A charge for it is kept by MIGRATION flag even
2825 * if mapcount goes down to 0. We can do remap successfully
2826 * without charging it again.
2827 *
2828 * C)
2829 * The "old" page is under lock_page() until the end of
2830 * migration, so, the old page itself will not be swapped-out.
2831 * If the new page is swapped out before end_migraton, our
2832 * hook to usual swap-out path will catch the event.
2833 */
2834 if (PageAnon(page))
2835 SetPageCgroupMigration(pc);
Hugh Dickinsb9c565d2008-03-04 14:29:11 -08002836 }
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07002837 unlock_page_cgroup(pc);
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002838 /*
2839 * If the page is not charged at this point,
2840 * we return here.
2841 */
2842 if (!mem)
2843 return 0;
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002844
Andrea Arcangeli93d5c9b2010-04-23 13:17:39 -04002845 *ptr = mem;
Andrea Arcangeliec168512011-01-13 15:46:56 -08002846 ret = __mem_cgroup_try_charge(NULL, GFP_KERNEL, ptr, false, PAGE_SIZE);
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002847 css_put(&mem->css);/* drop extra refcnt */
2848 if (ret || *ptr == NULL) {
2849 if (PageAnon(page)) {
2850 lock_page_cgroup(pc);
2851 ClearPageCgroupMigration(pc);
2852 unlock_page_cgroup(pc);
2853 /*
2854 * The old page may be fully unmapped while we kept it.
2855 */
2856 mem_cgroup_uncharge_page(page);
2857 }
2858 return -ENOMEM;
KAMEZAWA Hiroyukie8589cc2008-07-25 01:47:10 -07002859 }
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002860 /*
2861 * We charge new page before it's used/mapped. So, even if unlock_page()
2862 * is called before end_migration, we can catch all events on this new
2863 * page. In the case new page is migrated but not remapped, new page's
2864 * mapcount will be finally 0 and we call uncharge in end_migration().
2865 */
2866 pc = lookup_page_cgroup(newpage);
2867 if (PageAnon(page))
2868 ctype = MEM_CGROUP_CHARGE_TYPE_MAPPED;
2869 else if (page_is_file_cache(page))
2870 ctype = MEM_CGROUP_CHARGE_TYPE_CACHE;
2871 else
2872 ctype = MEM_CGROUP_CHARGE_TYPE_SHMEM;
Andrea Arcangeliec168512011-01-13 15:46:56 -08002873 __mem_cgroup_commit_charge(mem, pc, ctype, PAGE_SIZE);
KAMEZAWA Hiroyukie8589cc2008-07-25 01:47:10 -07002874 return ret;
2875}
Hugh Dickinsfb59e9f2008-03-04 14:29:16 -08002876
KAMEZAWA Hiroyuki69029cd2008-07-25 01:47:14 -07002877/* remove redundant charge if migration failed*/
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002878void mem_cgroup_end_migration(struct mem_cgroup *mem,
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002879 struct page *oldpage, struct page *newpage)
KAMEZAWA Hiroyukie8589cc2008-07-25 01:47:10 -07002880{
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002881 struct page *used, *unused;
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002882 struct page_cgroup *pc;
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002883
2884 if (!mem)
2885 return;
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002886 /* blocks rmdir() */
KAMEZAWA Hiroyuki88703262009-07-29 15:04:06 -07002887 cgroup_exclude_rmdir(&mem->css);
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002888 /* at migration success, oldpage->mapping is NULL. */
2889 if (oldpage->mapping) {
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002890 used = oldpage;
2891 unused = newpage;
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002892 } else {
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002893 used = newpage;
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002894 unused = oldpage;
2895 }
KAMEZAWA Hiroyuki69029cd2008-07-25 01:47:14 -07002896 /*
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002897 * We disallowed uncharge of pages under migration because mapcount
2898 * of the page goes down to zero, temporarly.
2899 * Clear the flag and check the page should be charged.
KAMEZAWA Hiroyuki69029cd2008-07-25 01:47:14 -07002900 */
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002901 pc = lookup_page_cgroup(oldpage);
2902 lock_page_cgroup(pc);
2903 ClearPageCgroupMigration(pc);
2904 unlock_page_cgroup(pc);
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002905
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002906 __mem_cgroup_uncharge_common(unused, MEM_CGROUP_CHARGE_TYPE_FORCE);
2907
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002908 /*
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002909 * If a page is a file cache, radix-tree replacement is very atomic
2910 * and we can skip this check. When it was an Anon page, its mapcount
2911 * goes down to 0. But because we added MIGRATION flage, it's not
2912 * uncharged yet. There are several case but page->mapcount check
2913 * and USED bit check in mem_cgroup_uncharge_page() will do enough
2914 * check. (see prepare_charge() also)
KAMEZAWA Hiroyuki01b1ae62009-01-07 18:07:50 -08002915 */
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002916 if (PageAnon(used))
2917 mem_cgroup_uncharge_page(used);
KAMEZAWA Hiroyuki88703262009-07-29 15:04:06 -07002918 /*
akpm@linux-foundation.orgac39cf82010-05-26 14:42:46 -07002919 * At migration, we may charge account against cgroup which has no
2920 * tasks.
KAMEZAWA Hiroyuki88703262009-07-29 15:04:06 -07002921 * So, rmdir()->pre_destroy() can be called while we do this charge.
2922 * In that case, we need to call pre_destroy() again. check it here.
2923 */
2924 cgroup_release_and_wakeup_rmdir(&mem->css);
KAMEZAWA Hiroyukiae41be32008-02-07 00:14:10 -08002925}
Pavel Emelianov78fb7462008-02-07 00:13:51 -08002926
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08002927/*
Daisuke Nishimuraae3abae2009-04-30 15:08:19 -07002928 * A call to try to shrink memory usage on charge failure at shmem's swapin.
2929 * Calling hierarchical_reclaim is not enough because we should update
2930 * last_oom_jiffies to prevent pagefault_out_of_memory from invoking global OOM.
2931 * Moreover considering hierarchy, we should reclaim from the mem_over_limit,
2932 * not from the memcg which this page would be charged to.
2933 * try_charge_swapin does all of these works properly.
KAMEZAWA Hiroyukic9b0ed52008-07-25 01:47:15 -07002934 */
Daisuke Nishimuraae3abae2009-04-30 15:08:19 -07002935int mem_cgroup_shmem_charge_fallback(struct page *page,
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002936 struct mm_struct *mm,
2937 gfp_t gfp_mask)
KAMEZAWA Hiroyukic9b0ed52008-07-25 01:47:15 -07002938{
KAMEZAWA Hiroyukib5a84312009-01-07 18:08:35 -08002939 struct mem_cgroup *mem = NULL;
Daisuke Nishimuraae3abae2009-04-30 15:08:19 -07002940 int ret;
KAMEZAWA Hiroyukic9b0ed52008-07-25 01:47:15 -07002941
Hirokazu Takahashif8d665422009-01-07 18:08:02 -08002942 if (mem_cgroup_disabled())
Li Zefancede86a2008-07-25 01:47:18 -07002943 return 0;
KAMEZAWA Hiroyukic9b0ed52008-07-25 01:47:15 -07002944
Daisuke Nishimuraae3abae2009-04-30 15:08:19 -07002945 ret = mem_cgroup_try_charge_swapin(mm, page, gfp_mask, &mem);
2946 if (!ret)
2947 mem_cgroup_cancel_charge_swapin(mem); /* it does !mem check */
KAMEZAWA Hiroyukic9b0ed52008-07-25 01:47:15 -07002948
Daisuke Nishimuraae3abae2009-04-30 15:08:19 -07002949 return ret;
KAMEZAWA Hiroyukic9b0ed52008-07-25 01:47:15 -07002950}
2951
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002952static DEFINE_MUTEX(set_limit_mutex);
2953
KOSAKI Motohirod38d2a72009-01-06 14:39:44 -08002954static int mem_cgroup_resize_limit(struct mem_cgroup *memcg,
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002955 unsigned long long val)
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07002956{
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07002957 int retry_count;
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07002958 u64 memswlimit, memlimit;
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07002959 int ret = 0;
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07002960 int children = mem_cgroup_count_children(memcg);
2961 u64 curusage, oldusage;
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07002962 int enlarge;
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07002963
2964 /*
2965 * For keeping hierarchical_reclaim simple, how long we should retry
2966 * is depends on callers. We set our retry-count to be function
2967 * of # of children which we should visit in this loop.
2968 */
2969 retry_count = MEM_CGROUP_RECLAIM_RETRIES * children;
2970
2971 oldusage = res_counter_read_u64(&memcg->res, RES_USAGE);
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07002972
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07002973 enlarge = 0;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002974 while (retry_count) {
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07002975 if (signal_pending(current)) {
2976 ret = -EINTR;
2977 break;
2978 }
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002979 /*
2980 * Rather than hide all in some function, I do this in
2981 * open coded manner. You see what this really does.
2982 * We have to guarantee mem->res.limit < mem->memsw.limit.
2983 */
2984 mutex_lock(&set_limit_mutex);
2985 memswlimit = res_counter_read_u64(&memcg->memsw, RES_LIMIT);
2986 if (memswlimit < val) {
2987 ret = -EINVAL;
2988 mutex_unlock(&set_limit_mutex);
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07002989 break;
2990 }
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07002991
2992 memlimit = res_counter_read_u64(&memcg->res, RES_LIMIT);
2993 if (memlimit < val)
2994 enlarge = 1;
2995
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002996 ret = res_counter_set_limit(&memcg->res, val);
KAMEZAWA Hiroyuki22a668d2009-06-17 16:27:19 -07002997 if (!ret) {
2998 if (memswlimit == val)
2999 memcg->memsw_is_minimum = true;
3000 else
3001 memcg->memsw_is_minimum = false;
3002 }
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003003 mutex_unlock(&set_limit_mutex);
3004
3005 if (!ret)
3006 break;
3007
Bob Liuaa20d482009-12-15 16:47:14 -08003008 mem_cgroup_hierarchical_reclaim(memcg, NULL, GFP_KERNEL,
Balbir Singh4e416952009-09-23 15:56:39 -07003009 MEM_CGROUP_RECLAIM_SHRINK);
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07003010 curusage = res_counter_read_u64(&memcg->res, RES_USAGE);
3011 /* Usage is reduced ? */
3012 if (curusage >= oldusage)
3013 retry_count--;
3014 else
3015 oldusage = curusage;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003016 }
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07003017 if (!ret && enlarge)
3018 memcg_oom_recover(memcg);
KOSAKI Motohiro14797e22009-01-07 18:08:18 -08003019
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003020 return ret;
3021}
3022
Li Zefan338c8432009-06-17 16:27:15 -07003023static int mem_cgroup_resize_memsw_limit(struct mem_cgroup *memcg,
3024 unsigned long long val)
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003025{
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07003026 int retry_count;
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07003027 u64 memlimit, memswlimit, oldusage, curusage;
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07003028 int children = mem_cgroup_count_children(memcg);
3029 int ret = -EBUSY;
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07003030 int enlarge = 0;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003031
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07003032 /* see mem_cgroup_resize_res_limit */
3033 retry_count = children * MEM_CGROUP_RECLAIM_RETRIES;
3034 oldusage = res_counter_read_u64(&memcg->memsw, RES_USAGE);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003035 while (retry_count) {
3036 if (signal_pending(current)) {
3037 ret = -EINTR;
3038 break;
3039 }
3040 /*
3041 * Rather than hide all in some function, I do this in
3042 * open coded manner. You see what this really does.
3043 * We have to guarantee mem->res.limit < mem->memsw.limit.
3044 */
3045 mutex_lock(&set_limit_mutex);
3046 memlimit = res_counter_read_u64(&memcg->res, RES_LIMIT);
3047 if (memlimit > val) {
3048 ret = -EINVAL;
3049 mutex_unlock(&set_limit_mutex);
3050 break;
3051 }
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07003052 memswlimit = res_counter_read_u64(&memcg->memsw, RES_LIMIT);
3053 if (memswlimit < val)
3054 enlarge = 1;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003055 ret = res_counter_set_limit(&memcg->memsw, val);
KAMEZAWA Hiroyuki22a668d2009-06-17 16:27:19 -07003056 if (!ret) {
3057 if (memlimit == val)
3058 memcg->memsw_is_minimum = true;
3059 else
3060 memcg->memsw_is_minimum = false;
3061 }
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003062 mutex_unlock(&set_limit_mutex);
3063
3064 if (!ret)
3065 break;
3066
Balbir Singh4e416952009-09-23 15:56:39 -07003067 mem_cgroup_hierarchical_reclaim(memcg, NULL, GFP_KERNEL,
Balbir Singh75822b42009-09-23 15:56:38 -07003068 MEM_CGROUP_RECLAIM_NOSWAP |
3069 MEM_CGROUP_RECLAIM_SHRINK);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003070 curusage = res_counter_read_u64(&memcg->memsw, RES_USAGE);
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07003071 /* Usage is reduced ? */
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003072 if (curusage >= oldusage)
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003073 retry_count--;
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07003074 else
3075 oldusage = curusage;
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003076 }
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07003077 if (!ret && enlarge)
3078 memcg_oom_recover(memcg);
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003079 return ret;
3080}
3081
Balbir Singh4e416952009-09-23 15:56:39 -07003082unsigned long mem_cgroup_soft_limit_reclaim(struct zone *zone, int order,
KOSAKI Motohiro00918b62010-08-10 18:03:05 -07003083 gfp_t gfp_mask)
Balbir Singh4e416952009-09-23 15:56:39 -07003084{
3085 unsigned long nr_reclaimed = 0;
3086 struct mem_cgroup_per_zone *mz, *next_mz = NULL;
3087 unsigned long reclaimed;
3088 int loop = 0;
3089 struct mem_cgroup_tree_per_zone *mctz;
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -07003090 unsigned long long excess;
Balbir Singh4e416952009-09-23 15:56:39 -07003091
3092 if (order > 0)
3093 return 0;
3094
KOSAKI Motohiro00918b62010-08-10 18:03:05 -07003095 mctz = soft_limit_tree_node_zone(zone_to_nid(zone), zone_idx(zone));
Balbir Singh4e416952009-09-23 15:56:39 -07003096 /*
3097 * This loop can run a while, specially if mem_cgroup's continuously
3098 * keep exceeding their soft limit and putting the system under
3099 * pressure
3100 */
3101 do {
3102 if (next_mz)
3103 mz = next_mz;
3104 else
3105 mz = mem_cgroup_largest_soft_limit_node(mctz);
3106 if (!mz)
3107 break;
3108
3109 reclaimed = mem_cgroup_hierarchical_reclaim(mz->mem, zone,
3110 gfp_mask,
3111 MEM_CGROUP_RECLAIM_SOFT);
3112 nr_reclaimed += reclaimed;
3113 spin_lock(&mctz->lock);
3114
3115 /*
3116 * If we failed to reclaim anything from this memory cgroup
3117 * it is time to move on to the next cgroup
3118 */
3119 next_mz = NULL;
3120 if (!reclaimed) {
3121 do {
3122 /*
3123 * Loop until we find yet another one.
3124 *
3125 * By the time we get the soft_limit lock
3126 * again, someone might have aded the
3127 * group back on the RB tree. Iterate to
3128 * make sure we get a different mem.
3129 * mem_cgroup_largest_soft_limit_node returns
3130 * NULL if no other cgroup is present on
3131 * the tree
3132 */
3133 next_mz =
3134 __mem_cgroup_largest_soft_limit_node(mctz);
3135 if (next_mz == mz) {
3136 css_put(&next_mz->mem->css);
3137 next_mz = NULL;
3138 } else /* next_mz == NULL or other memcg */
3139 break;
3140 } while (1);
3141 }
Balbir Singh4e416952009-09-23 15:56:39 -07003142 __mem_cgroup_remove_exceeded(mz->mem, mz, mctz);
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -07003143 excess = res_counter_soft_limit_excess(&mz->mem->res);
Balbir Singh4e416952009-09-23 15:56:39 -07003144 /*
3145 * One school of thought says that we should not add
3146 * back the node to the tree if reclaim returns 0.
3147 * But our reclaim could return 0, simply because due
3148 * to priority we are exposing a smaller subset of
3149 * memory to reclaim from. Consider this as a longer
3150 * term TODO.
3151 */
KAMEZAWA Hiroyukief8745c2009-10-01 15:44:12 -07003152 /* If excess == 0, no tree ops */
3153 __mem_cgroup_insert_exceeded(mz->mem, mz, mctz, excess);
Balbir Singh4e416952009-09-23 15:56:39 -07003154 spin_unlock(&mctz->lock);
3155 css_put(&mz->mem->css);
3156 loop++;
3157 /*
3158 * Could not reclaim anything and there are no more
3159 * mem cgroups to try or we seem to be looping without
3160 * reclaiming anything.
3161 */
3162 if (!nr_reclaimed &&
3163 (next_mz == NULL ||
3164 loop > MEM_CGROUP_MAX_SOFT_LIMIT_RECLAIM_LOOPS))
3165 break;
3166 } while (!nr_reclaimed);
3167 if (next_mz)
3168 css_put(&next_mz->mem->css);
3169 return nr_reclaimed;
3170}
3171
KAMEZAWA Hiroyukic9b0ed52008-07-25 01:47:15 -07003172/*
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003173 * This routine traverse page_cgroup in given list and drop them all.
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003174 * *And* this routine doesn't reclaim page itself, just removes page_cgroup.
3175 */
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003176static int mem_cgroup_force_empty_list(struct mem_cgroup *mem,
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003177 int node, int zid, enum lru_list lru)
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003178{
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003179 struct zone *zone;
3180 struct mem_cgroup_per_zone *mz;
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003181 struct page_cgroup *pc, *busy;
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003182 unsigned long flags, loop;
KAMEZAWA Hiroyuki072c56c12008-02-07 00:14:39 -08003183 struct list_head *list;
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003184 int ret = 0;
KAMEZAWA Hiroyuki072c56c12008-02-07 00:14:39 -08003185
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003186 zone = &NODE_DATA(node)->node_zones[zid];
3187 mz = mem_cgroup_zoneinfo(mem, node, zid);
Christoph Lameterb69408e2008-10-18 20:26:14 -07003188 list = &mz->lists[lru];
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003189
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003190 loop = MEM_CGROUP_ZSTAT(mz, lru);
3191 /* give some margin against EBUSY etc...*/
3192 loop += 256;
3193 busy = NULL;
3194 while (loop--) {
3195 ret = 0;
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003196 spin_lock_irqsave(&zone->lru_lock, flags);
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003197 if (list_empty(list)) {
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003198 spin_unlock_irqrestore(&zone->lru_lock, flags);
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07003199 break;
3200 }
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003201 pc = list_entry(list->prev, struct page_cgroup, lru);
3202 if (busy == pc) {
3203 list_move(&pc->lru, list);
Thiago Farina648bcc72010-03-05 13:42:04 -08003204 busy = NULL;
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003205 spin_unlock_irqrestore(&zone->lru_lock, flags);
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003206 continue;
3207 }
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003208 spin_unlock_irqrestore(&zone->lru_lock, flags);
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003209
KAMEZAWA Hiroyuki2c26fdd2009-01-07 18:08:10 -08003210 ret = mem_cgroup_move_parent(pc, mem, GFP_KERNEL);
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003211 if (ret == -ENOMEM)
3212 break;
3213
3214 if (ret == -EBUSY || ret == -EINVAL) {
3215 /* found lock contention or "pc" is obsolete. */
3216 busy = pc;
3217 cond_resched();
3218 } else
3219 busy = NULL;
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003220 }
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003221
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003222 if (!ret && !list_empty(list))
3223 return -EBUSY;
3224 return ret;
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003225}
3226
3227/*
3228 * make mem_cgroup's charge to be 0 if there is no task.
3229 * This enables deleting this mem_cgroup.
3230 */
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003231static int mem_cgroup_force_empty(struct mem_cgroup *mem, bool free_all)
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003232{
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003233 int ret;
3234 int node, zid, shrink;
3235 int nr_retries = MEM_CGROUP_RECLAIM_RETRIES;
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003236 struct cgroup *cgrp = mem->css.cgroup;
Hugh Dickins8869b8f2008-03-04 14:29:09 -08003237
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003238 css_get(&mem->css);
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003239
3240 shrink = 0;
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003241 /* should free all ? */
3242 if (free_all)
3243 goto try_to_free;
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003244move_account:
Daisuke Nishimurafce66472010-01-15 17:01:30 -08003245 do {
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003246 ret = -EBUSY;
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003247 if (cgroup_task_count(cgrp) || !list_empty(&cgrp->children))
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003248 goto out;
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003249 ret = -EINTR;
3250 if (signal_pending(current))
3251 goto out;
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07003252 /* This is for making all *used* pages to be on LRU. */
3253 lru_add_drain_all();
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08003254 drain_all_stock_sync();
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003255 ret = 0;
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07003256 mem_cgroup_start_move(mem);
KAMEZAWA Hiroyuki299b4ea2009-01-29 14:25:17 -08003257 for_each_node_state(node, N_HIGH_MEMORY) {
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003258 for (zid = 0; !ret && zid < MAX_NR_ZONES; zid++) {
Christoph Lameterb69408e2008-10-18 20:26:14 -07003259 enum lru_list l;
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003260 for_each_lru(l) {
3261 ret = mem_cgroup_force_empty_list(mem,
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003262 node, zid, l);
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003263 if (ret)
3264 break;
3265 }
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08003266 }
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003267 if (ret)
3268 break;
3269 }
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07003270 mem_cgroup_end_move(mem);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07003271 memcg_oom_recover(mem);
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003272 /* it seems parent cgroup doesn't have enough mem */
3273 if (ret == -ENOMEM)
3274 goto try_to_free;
KAMEZAWA Hiroyuki52d4b9a2008-10-18 20:28:16 -07003275 cond_resched();
Daisuke Nishimurafce66472010-01-15 17:01:30 -08003276 /* "ret" should also be checked to ensure all lists are empty. */
3277 } while (mem->res.usage > 0 || ret);
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003278out:
3279 css_put(&mem->css);
3280 return ret;
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003281
3282try_to_free:
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003283 /* returns EBUSY if there is a task or if we come here twice. */
3284 if (cgroup_task_count(cgrp) || !list_empty(&cgrp->children) || shrink) {
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003285 ret = -EBUSY;
3286 goto out;
3287 }
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003288 /* we call try-to-free pages for make this cgroup empty */
3289 lru_add_drain_all();
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003290 /* try to free all pages in this cgroup */
3291 shrink = 1;
3292 while (nr_retries && mem->res.usage > 0) {
3293 int progress;
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003294
3295 if (signal_pending(current)) {
3296 ret = -EINTR;
3297 goto out;
3298 }
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003299 progress = try_to_free_mem_cgroup_pages(mem, GFP_KERNEL,
3300 false, get_swappiness(mem));
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003301 if (!progress) {
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003302 nr_retries--;
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003303 /* maybe some writeback is necessary */
Jens Axboe8aa7e842009-07-09 14:52:32 +02003304 congestion_wait(BLK_RW_ASYNC, HZ/10);
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003305 }
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003306
3307 }
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08003308 lru_add_drain();
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003309 /* try move_account...there may be some *locked* pages. */
Daisuke Nishimurafce66472010-01-15 17:01:30 -08003310 goto move_account;
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003311}
3312
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003313int mem_cgroup_force_empty_write(struct cgroup *cont, unsigned int event)
3314{
3315 return mem_cgroup_force_empty(mem_cgroup_from_cont(cont), true);
3316}
3317
3318
Balbir Singh18f59ea2009-01-07 18:08:07 -08003319static u64 mem_cgroup_hierarchy_read(struct cgroup *cont, struct cftype *cft)
3320{
3321 return mem_cgroup_from_cont(cont)->use_hierarchy;
3322}
3323
3324static int mem_cgroup_hierarchy_write(struct cgroup *cont, struct cftype *cft,
3325 u64 val)
3326{
3327 int retval = 0;
3328 struct mem_cgroup *mem = mem_cgroup_from_cont(cont);
3329 struct cgroup *parent = cont->parent;
3330 struct mem_cgroup *parent_mem = NULL;
3331
3332 if (parent)
3333 parent_mem = mem_cgroup_from_cont(parent);
3334
3335 cgroup_lock();
3336 /*
André Goddard Rosaaf901ca2009-11-14 13:09:05 -02003337 * If parent's use_hierarchy is set, we can't make any modifications
Balbir Singh18f59ea2009-01-07 18:08:07 -08003338 * in the child subtrees. If it is unset, then the change can
3339 * occur, provided the current cgroup has no children.
3340 *
3341 * For the root cgroup, parent_mem is NULL, we allow value to be
3342 * set if there are no children.
3343 */
3344 if ((!parent_mem || !parent_mem->use_hierarchy) &&
3345 (val == 1 || val == 0)) {
3346 if (list_empty(&cont->children))
3347 mem->use_hierarchy = val;
3348 else
3349 retval = -EBUSY;
3350 } else
3351 retval = -EINVAL;
3352 cgroup_unlock();
3353
3354 return retval;
3355}
3356
Balbir Singh0c3e73e2009-09-23 15:56:42 -07003357
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003358static u64 mem_cgroup_get_recursive_idx_stat(struct mem_cgroup *mem,
3359 enum mem_cgroup_stat_index idx)
Balbir Singh0c3e73e2009-09-23 15:56:42 -07003360{
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003361 struct mem_cgroup *iter;
3362 s64 val = 0;
Balbir Singh0c3e73e2009-09-23 15:56:42 -07003363
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003364 /* each per cpu's value can be minus.Then, use s64 */
3365 for_each_mem_cgroup_tree(iter, mem)
3366 val += mem_cgroup_read_stat(iter, idx);
3367
3368 if (val < 0) /* race ? */
3369 val = 0;
3370 return val;
Balbir Singh0c3e73e2009-09-23 15:56:42 -07003371}
3372
Kirill A. Shutemov104f3922010-03-10 15:22:21 -08003373static inline u64 mem_cgroup_usage(struct mem_cgroup *mem, bool swap)
3374{
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003375 u64 val;
Kirill A. Shutemov104f3922010-03-10 15:22:21 -08003376
3377 if (!mem_cgroup_is_root(mem)) {
3378 if (!swap)
3379 return res_counter_read_u64(&mem->res, RES_USAGE);
3380 else
3381 return res_counter_read_u64(&mem->memsw, RES_USAGE);
3382 }
3383
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003384 val = mem_cgroup_get_recursive_idx_stat(mem, MEM_CGROUP_STAT_CACHE);
3385 val += mem_cgroup_get_recursive_idx_stat(mem, MEM_CGROUP_STAT_RSS);
Kirill A. Shutemov104f3922010-03-10 15:22:21 -08003386
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003387 if (swap)
3388 val += mem_cgroup_get_recursive_idx_stat(mem,
3389 MEM_CGROUP_STAT_SWAPOUT);
Kirill A. Shutemov104f3922010-03-10 15:22:21 -08003390
3391 return val << PAGE_SHIFT;
3392}
3393
Paul Menage2c3daa72008-04-29 00:59:58 -07003394static u64 mem_cgroup_read(struct cgroup *cont, struct cftype *cft)
Balbir Singh8cdea7c2008-02-07 00:13:50 -08003395{
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003396 struct mem_cgroup *mem = mem_cgroup_from_cont(cont);
Kirill A. Shutemov104f3922010-03-10 15:22:21 -08003397 u64 val;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003398 int type, name;
3399
3400 type = MEMFILE_TYPE(cft->private);
3401 name = MEMFILE_ATTR(cft->private);
3402 switch (type) {
3403 case _MEM:
Kirill A. Shutemov104f3922010-03-10 15:22:21 -08003404 if (name == RES_USAGE)
3405 val = mem_cgroup_usage(mem, false);
3406 else
Balbir Singh0c3e73e2009-09-23 15:56:42 -07003407 val = res_counter_read_u64(&mem->res, name);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003408 break;
3409 case _MEMSWAP:
Kirill A. Shutemov104f3922010-03-10 15:22:21 -08003410 if (name == RES_USAGE)
3411 val = mem_cgroup_usage(mem, true);
3412 else
Balbir Singh0c3e73e2009-09-23 15:56:42 -07003413 val = res_counter_read_u64(&mem->memsw, name);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003414 break;
3415 default:
3416 BUG();
3417 break;
3418 }
3419 return val;
Balbir Singh8cdea7c2008-02-07 00:13:50 -08003420}
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003421/*
3422 * The user of this function is...
3423 * RES_LIMIT.
3424 */
Paul Menage856c13a2008-07-25 01:47:04 -07003425static int mem_cgroup_write(struct cgroup *cont, struct cftype *cft,
3426 const char *buffer)
Balbir Singh8cdea7c2008-02-07 00:13:50 -08003427{
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003428 struct mem_cgroup *memcg = mem_cgroup_from_cont(cont);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003429 int type, name;
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003430 unsigned long long val;
3431 int ret;
3432
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003433 type = MEMFILE_TYPE(cft->private);
3434 name = MEMFILE_ATTR(cft->private);
3435 switch (name) {
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003436 case RES_LIMIT:
Balbir Singh4b3bde42009-09-23 15:56:32 -07003437 if (mem_cgroup_is_root(memcg)) { /* Can't set limit on root */
3438 ret = -EINVAL;
3439 break;
3440 }
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003441 /* This function does all necessary parse...reuse it */
3442 ret = res_counter_memparse_write_strategy(buffer, &val);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003443 if (ret)
3444 break;
3445 if (type == _MEM)
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003446 ret = mem_cgroup_resize_limit(memcg, val);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003447 else
3448 ret = mem_cgroup_resize_memsw_limit(memcg, val);
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003449 break;
Balbir Singh296c81d2009-09-23 15:56:36 -07003450 case RES_SOFT_LIMIT:
3451 ret = res_counter_memparse_write_strategy(buffer, &val);
3452 if (ret)
3453 break;
3454 /*
3455 * For memsw, soft limits are hard to implement in terms
3456 * of semantics, for now, we support soft limits for
3457 * control without swap
3458 */
3459 if (type == _MEM)
3460 ret = res_counter_set_soft_limit(&memcg->res, val);
3461 else
3462 ret = -EINVAL;
3463 break;
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003464 default:
3465 ret = -EINVAL; /* should be BUG() ? */
3466 break;
3467 }
3468 return ret;
Balbir Singh8cdea7c2008-02-07 00:13:50 -08003469}
3470
KAMEZAWA Hiroyukifee7b542009-01-07 18:08:26 -08003471static void memcg_get_hierarchical_limit(struct mem_cgroup *memcg,
3472 unsigned long long *mem_limit, unsigned long long *memsw_limit)
3473{
3474 struct cgroup *cgroup;
3475 unsigned long long min_limit, min_memsw_limit, tmp;
3476
3477 min_limit = res_counter_read_u64(&memcg->res, RES_LIMIT);
3478 min_memsw_limit = res_counter_read_u64(&memcg->memsw, RES_LIMIT);
3479 cgroup = memcg->css.cgroup;
3480 if (!memcg->use_hierarchy)
3481 goto out;
3482
3483 while (cgroup->parent) {
3484 cgroup = cgroup->parent;
3485 memcg = mem_cgroup_from_cont(cgroup);
3486 if (!memcg->use_hierarchy)
3487 break;
3488 tmp = res_counter_read_u64(&memcg->res, RES_LIMIT);
3489 min_limit = min(min_limit, tmp);
3490 tmp = res_counter_read_u64(&memcg->memsw, RES_LIMIT);
3491 min_memsw_limit = min(min_memsw_limit, tmp);
3492 }
3493out:
3494 *mem_limit = min_limit;
3495 *memsw_limit = min_memsw_limit;
3496 return;
3497}
3498
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07003499static int mem_cgroup_reset(struct cgroup *cont, unsigned int event)
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07003500{
3501 struct mem_cgroup *mem;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003502 int type, name;
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07003503
3504 mem = mem_cgroup_from_cont(cont);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003505 type = MEMFILE_TYPE(event);
3506 name = MEMFILE_ATTR(event);
3507 switch (name) {
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07003508 case RES_MAX_USAGE:
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003509 if (type == _MEM)
3510 res_counter_reset_max(&mem->res);
3511 else
3512 res_counter_reset_max(&mem->memsw);
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07003513 break;
3514 case RES_FAILCNT:
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003515 if (type == _MEM)
3516 res_counter_reset_failcnt(&mem->res);
3517 else
3518 res_counter_reset_failcnt(&mem->memsw);
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07003519 break;
3520 }
Balbir Singhf64c3f52009-09-23 15:56:37 -07003521
Pavel Emelyanov85cc59d2008-04-29 01:00:20 -07003522 return 0;
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07003523}
3524
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003525static u64 mem_cgroup_move_charge_read(struct cgroup *cgrp,
3526 struct cftype *cft)
3527{
3528 return mem_cgroup_from_cont(cgrp)->move_charge_at_immigrate;
3529}
3530
Daisuke Nishimura02491442010-03-10 15:22:17 -08003531#ifdef CONFIG_MMU
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003532static int mem_cgroup_move_charge_write(struct cgroup *cgrp,
3533 struct cftype *cft, u64 val)
3534{
3535 struct mem_cgroup *mem = mem_cgroup_from_cont(cgrp);
3536
3537 if (val >= (1 << NR_MOVE_TYPE))
3538 return -EINVAL;
3539 /*
3540 * We check this value several times in both in can_attach() and
3541 * attach(), so we need cgroup lock to prevent this value from being
3542 * inconsistent.
3543 */
3544 cgroup_lock();
3545 mem->move_charge_at_immigrate = val;
3546 cgroup_unlock();
3547
3548 return 0;
3549}
Daisuke Nishimura02491442010-03-10 15:22:17 -08003550#else
3551static int mem_cgroup_move_charge_write(struct cgroup *cgrp,
3552 struct cftype *cft, u64 val)
3553{
3554 return -ENOSYS;
3555}
3556#endif
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003557
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003558
3559/* For read statistics */
3560enum {
3561 MCS_CACHE,
3562 MCS_RSS,
KAMEZAWA Hiroyukid8046582009-12-15 16:47:09 -08003563 MCS_FILE_MAPPED,
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003564 MCS_PGPGIN,
3565 MCS_PGPGOUT,
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003566 MCS_SWAP,
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003567 MCS_INACTIVE_ANON,
3568 MCS_ACTIVE_ANON,
3569 MCS_INACTIVE_FILE,
3570 MCS_ACTIVE_FILE,
3571 MCS_UNEVICTABLE,
3572 NR_MCS_STAT,
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08003573};
3574
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003575struct mcs_total_stat {
3576 s64 stat[NR_MCS_STAT];
3577};
3578
3579struct {
3580 char *local_name;
3581 char *total_name;
3582} memcg_stat_strings[NR_MCS_STAT] = {
3583 {"cache", "total_cache"},
3584 {"rss", "total_rss"},
Balbir Singhd69b0422009-06-17 16:26:34 -07003585 {"mapped_file", "total_mapped_file"},
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003586 {"pgpgin", "total_pgpgin"},
3587 {"pgpgout", "total_pgpgout"},
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003588 {"swap", "total_swap"},
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003589 {"inactive_anon", "total_inactive_anon"},
3590 {"active_anon", "total_active_anon"},
3591 {"inactive_file", "total_inactive_file"},
3592 {"active_file", "total_active_file"},
3593 {"unevictable", "total_unevictable"}
3594};
3595
3596
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003597static void
3598mem_cgroup_get_local_stat(struct mem_cgroup *mem, struct mcs_total_stat *s)
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003599{
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003600 s64 val;
3601
3602 /* per cpu stat */
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08003603 val = mem_cgroup_read_stat(mem, MEM_CGROUP_STAT_CACHE);
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003604 s->stat[MCS_CACHE] += val * PAGE_SIZE;
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08003605 val = mem_cgroup_read_stat(mem, MEM_CGROUP_STAT_RSS);
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003606 s->stat[MCS_RSS] += val * PAGE_SIZE;
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08003607 val = mem_cgroup_read_stat(mem, MEM_CGROUP_STAT_FILE_MAPPED);
KAMEZAWA Hiroyukid8046582009-12-15 16:47:09 -08003608 s->stat[MCS_FILE_MAPPED] += val * PAGE_SIZE;
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08003609 val = mem_cgroup_read_stat(mem, MEM_CGROUP_STAT_PGPGIN_COUNT);
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003610 s->stat[MCS_PGPGIN] += val;
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08003611 val = mem_cgroup_read_stat(mem, MEM_CGROUP_STAT_PGPGOUT_COUNT);
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003612 s->stat[MCS_PGPGOUT] += val;
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003613 if (do_swap_account) {
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08003614 val = mem_cgroup_read_stat(mem, MEM_CGROUP_STAT_SWAPOUT);
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003615 s->stat[MCS_SWAP] += val * PAGE_SIZE;
3616 }
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003617
3618 /* per zone stat */
3619 val = mem_cgroup_get_local_zonestat(mem, LRU_INACTIVE_ANON);
3620 s->stat[MCS_INACTIVE_ANON] += val * PAGE_SIZE;
3621 val = mem_cgroup_get_local_zonestat(mem, LRU_ACTIVE_ANON);
3622 s->stat[MCS_ACTIVE_ANON] += val * PAGE_SIZE;
3623 val = mem_cgroup_get_local_zonestat(mem, LRU_INACTIVE_FILE);
3624 s->stat[MCS_INACTIVE_FILE] += val * PAGE_SIZE;
3625 val = mem_cgroup_get_local_zonestat(mem, LRU_ACTIVE_FILE);
3626 s->stat[MCS_ACTIVE_FILE] += val * PAGE_SIZE;
3627 val = mem_cgroup_get_local_zonestat(mem, LRU_UNEVICTABLE);
3628 s->stat[MCS_UNEVICTABLE] += val * PAGE_SIZE;
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003629}
3630
3631static void
3632mem_cgroup_get_total_stat(struct mem_cgroup *mem, struct mcs_total_stat *s)
3633{
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003634 struct mem_cgroup *iter;
3635
3636 for_each_mem_cgroup_tree(iter, mem)
3637 mem_cgroup_get_local_stat(iter, s);
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003638}
3639
Paul Menagec64745c2008-04-29 01:00:02 -07003640static int mem_control_stat_show(struct cgroup *cont, struct cftype *cft,
3641 struct cgroup_map_cb *cb)
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08003642{
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08003643 struct mem_cgroup *mem_cont = mem_cgroup_from_cont(cont);
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003644 struct mcs_total_stat mystat;
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08003645 int i;
3646
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003647 memset(&mystat, 0, sizeof(mystat));
3648 mem_cgroup_get_local_stat(mem_cont, &mystat);
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08003649
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003650 for (i = 0; i < NR_MCS_STAT; i++) {
3651 if (i == MCS_SWAP && !do_swap_account)
3652 continue;
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003653 cb->fill(cb, memcg_stat_strings[i].local_name, mystat.stat[i]);
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003654 }
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08003655
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003656 /* Hierarchical information */
KAMEZAWA Hiroyukifee7b542009-01-07 18:08:26 -08003657 {
3658 unsigned long long limit, memsw_limit;
3659 memcg_get_hierarchical_limit(mem_cont, &limit, &memsw_limit);
3660 cb->fill(cb, "hierarchical_memory_limit", limit);
3661 if (do_swap_account)
3662 cb->fill(cb, "hierarchical_memsw_limit", memsw_limit);
3663 }
KOSAKI Motohiro7f016ee2009-01-07 18:08:22 -08003664
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003665 memset(&mystat, 0, sizeof(mystat));
3666 mem_cgroup_get_total_stat(mem_cont, &mystat);
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003667 for (i = 0; i < NR_MCS_STAT; i++) {
3668 if (i == MCS_SWAP && !do_swap_account)
3669 continue;
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003670 cb->fill(cb, memcg_stat_strings[i].total_name, mystat.stat[i]);
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003671 }
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003672
KOSAKI Motohiro7f016ee2009-01-07 18:08:22 -08003673#ifdef CONFIG_DEBUG_VM
KOSAKI Motohiroc772be92009-01-07 18:08:25 -08003674 cb->fill(cb, "inactive_ratio", calc_inactive_ratio(mem_cont, NULL));
KOSAKI Motohiro7f016ee2009-01-07 18:08:22 -08003675
3676 {
3677 int nid, zid;
3678 struct mem_cgroup_per_zone *mz;
3679 unsigned long recent_rotated[2] = {0, 0};
3680 unsigned long recent_scanned[2] = {0, 0};
3681
3682 for_each_online_node(nid)
3683 for (zid = 0; zid < MAX_NR_ZONES; zid++) {
3684 mz = mem_cgroup_zoneinfo(mem_cont, nid, zid);
3685
3686 recent_rotated[0] +=
3687 mz->reclaim_stat.recent_rotated[0];
3688 recent_rotated[1] +=
3689 mz->reclaim_stat.recent_rotated[1];
3690 recent_scanned[0] +=
3691 mz->reclaim_stat.recent_scanned[0];
3692 recent_scanned[1] +=
3693 mz->reclaim_stat.recent_scanned[1];
3694 }
3695 cb->fill(cb, "recent_rotated_anon", recent_rotated[0]);
3696 cb->fill(cb, "recent_rotated_file", recent_rotated[1]);
3697 cb->fill(cb, "recent_scanned_anon", recent_scanned[0]);
3698 cb->fill(cb, "recent_scanned_file", recent_scanned[1]);
3699 }
3700#endif
3701
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08003702 return 0;
3703}
3704
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003705static u64 mem_cgroup_swappiness_read(struct cgroup *cgrp, struct cftype *cft)
3706{
3707 struct mem_cgroup *memcg = mem_cgroup_from_cont(cgrp);
3708
3709 return get_swappiness(memcg);
3710}
3711
3712static int mem_cgroup_swappiness_write(struct cgroup *cgrp, struct cftype *cft,
3713 u64 val)
3714{
3715 struct mem_cgroup *memcg = mem_cgroup_from_cont(cgrp);
3716 struct mem_cgroup *parent;
Li Zefan068b38c2009-01-15 13:51:26 -08003717
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003718 if (val > 100)
3719 return -EINVAL;
3720
3721 if (cgrp->parent == NULL)
3722 return -EINVAL;
3723
3724 parent = mem_cgroup_from_cont(cgrp->parent);
Li Zefan068b38c2009-01-15 13:51:26 -08003725
3726 cgroup_lock();
3727
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003728 /* If under hierarchy, only empty-root can set this value */
3729 if ((parent->use_hierarchy) ||
Li Zefan068b38c2009-01-15 13:51:26 -08003730 (memcg->use_hierarchy && !list_empty(&cgrp->children))) {
3731 cgroup_unlock();
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003732 return -EINVAL;
Li Zefan068b38c2009-01-15 13:51:26 -08003733 }
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003734
3735 spin_lock(&memcg->reclaim_param_lock);
3736 memcg->swappiness = val;
3737 spin_unlock(&memcg->reclaim_param_lock);
3738
Li Zefan068b38c2009-01-15 13:51:26 -08003739 cgroup_unlock();
3740
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003741 return 0;
3742}
3743
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003744static void __mem_cgroup_threshold(struct mem_cgroup *memcg, bool swap)
3745{
3746 struct mem_cgroup_threshold_ary *t;
3747 u64 usage;
3748 int i;
3749
3750 rcu_read_lock();
3751 if (!swap)
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003752 t = rcu_dereference(memcg->thresholds.primary);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003753 else
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003754 t = rcu_dereference(memcg->memsw_thresholds.primary);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003755
3756 if (!t)
3757 goto unlock;
3758
3759 usage = mem_cgroup_usage(memcg, swap);
3760
3761 /*
3762 * current_threshold points to threshold just below usage.
3763 * If it's not true, a threshold was crossed after last
3764 * call of __mem_cgroup_threshold().
3765 */
Phil Carmody5407a562010-05-26 14:42:42 -07003766 i = t->current_threshold;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003767
3768 /*
3769 * Iterate backward over array of thresholds starting from
3770 * current_threshold and check if a threshold is crossed.
3771 * If none of thresholds below usage is crossed, we read
3772 * only one element of the array here.
3773 */
3774 for (; i >= 0 && unlikely(t->entries[i].threshold > usage); i--)
3775 eventfd_signal(t->entries[i].eventfd, 1);
3776
3777 /* i = current_threshold + 1 */
3778 i++;
3779
3780 /*
3781 * Iterate forward over array of thresholds starting from
3782 * current_threshold+1 and check if a threshold is crossed.
3783 * If none of thresholds above usage is crossed, we read
3784 * only one element of the array here.
3785 */
3786 for (; i < t->size && unlikely(t->entries[i].threshold <= usage); i++)
3787 eventfd_signal(t->entries[i].eventfd, 1);
3788
3789 /* Update current_threshold */
Phil Carmody5407a562010-05-26 14:42:42 -07003790 t->current_threshold = i - 1;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003791unlock:
3792 rcu_read_unlock();
3793}
3794
3795static void mem_cgroup_threshold(struct mem_cgroup *memcg)
3796{
Kirill A. Shutemovad4ca5f2010-10-07 12:59:27 -07003797 while (memcg) {
3798 __mem_cgroup_threshold(memcg, false);
3799 if (do_swap_account)
3800 __mem_cgroup_threshold(memcg, true);
3801
3802 memcg = parent_mem_cgroup(memcg);
3803 }
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003804}
3805
3806static int compare_thresholds(const void *a, const void *b)
3807{
3808 const struct mem_cgroup_threshold *_a = a;
3809 const struct mem_cgroup_threshold *_b = b;
3810
3811 return _a->threshold - _b->threshold;
3812}
3813
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003814static int mem_cgroup_oom_notify_cb(struct mem_cgroup *mem)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07003815{
3816 struct mem_cgroup_eventfd_list *ev;
3817
3818 list_for_each_entry(ev, &mem->oom_notify, list)
3819 eventfd_signal(ev->eventfd, 1);
3820 return 0;
3821}
3822
3823static void mem_cgroup_oom_notify(struct mem_cgroup *mem)
3824{
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003825 struct mem_cgroup *iter;
3826
3827 for_each_mem_cgroup_tree(iter, mem)
3828 mem_cgroup_oom_notify_cb(iter);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07003829}
3830
3831static int mem_cgroup_usage_register_event(struct cgroup *cgrp,
3832 struct cftype *cft, struct eventfd_ctx *eventfd, const char *args)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003833{
3834 struct mem_cgroup *memcg = mem_cgroup_from_cont(cgrp);
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003835 struct mem_cgroup_thresholds *thresholds;
3836 struct mem_cgroup_threshold_ary *new;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003837 int type = MEMFILE_TYPE(cft->private);
3838 u64 threshold, usage;
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003839 int i, size, ret;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003840
3841 ret = res_counter_memparse_write_strategy(args, &threshold);
3842 if (ret)
3843 return ret;
3844
3845 mutex_lock(&memcg->thresholds_lock);
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003846
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003847 if (type == _MEM)
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003848 thresholds = &memcg->thresholds;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003849 else if (type == _MEMSWAP)
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003850 thresholds = &memcg->memsw_thresholds;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003851 else
3852 BUG();
3853
3854 usage = mem_cgroup_usage(memcg, type == _MEMSWAP);
3855
3856 /* Check if a threshold crossed before adding a new one */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003857 if (thresholds->primary)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003858 __mem_cgroup_threshold(memcg, type == _MEMSWAP);
3859
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003860 size = thresholds->primary ? thresholds->primary->size + 1 : 1;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003861
3862 /* Allocate memory for new array of thresholds */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003863 new = kmalloc(sizeof(*new) + size * sizeof(struct mem_cgroup_threshold),
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003864 GFP_KERNEL);
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003865 if (!new) {
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003866 ret = -ENOMEM;
3867 goto unlock;
3868 }
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003869 new->size = size;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003870
3871 /* Copy thresholds (if any) to new array */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003872 if (thresholds->primary) {
3873 memcpy(new->entries, thresholds->primary->entries, (size - 1) *
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003874 sizeof(struct mem_cgroup_threshold));
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003875 }
3876
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003877 /* Add new threshold */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003878 new->entries[size - 1].eventfd = eventfd;
3879 new->entries[size - 1].threshold = threshold;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003880
3881 /* Sort thresholds. Registering of new threshold isn't time-critical */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003882 sort(new->entries, size, sizeof(struct mem_cgroup_threshold),
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003883 compare_thresholds, NULL);
3884
3885 /* Find current threshold */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003886 new->current_threshold = -1;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003887 for (i = 0; i < size; i++) {
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003888 if (new->entries[i].threshold < usage) {
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003889 /*
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003890 * new->current_threshold will not be used until
3891 * rcu_assign_pointer(), so it's safe to increment
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003892 * it here.
3893 */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003894 ++new->current_threshold;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003895 }
3896 }
3897
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003898 /* Free old spare buffer and save old primary buffer as spare */
3899 kfree(thresholds->spare);
3900 thresholds->spare = thresholds->primary;
3901
3902 rcu_assign_pointer(thresholds->primary, new);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003903
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07003904 /* To be sure that nobody uses thresholds */
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003905 synchronize_rcu();
3906
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003907unlock:
3908 mutex_unlock(&memcg->thresholds_lock);
3909
3910 return ret;
3911}
3912
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07003913static void mem_cgroup_usage_unregister_event(struct cgroup *cgrp,
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07003914 struct cftype *cft, struct eventfd_ctx *eventfd)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003915{
3916 struct mem_cgroup *memcg = mem_cgroup_from_cont(cgrp);
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003917 struct mem_cgroup_thresholds *thresholds;
3918 struct mem_cgroup_threshold_ary *new;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003919 int type = MEMFILE_TYPE(cft->private);
3920 u64 usage;
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003921 int i, j, size;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003922
3923 mutex_lock(&memcg->thresholds_lock);
3924 if (type == _MEM)
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003925 thresholds = &memcg->thresholds;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003926 else if (type == _MEMSWAP)
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003927 thresholds = &memcg->memsw_thresholds;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003928 else
3929 BUG();
3930
3931 /*
3932 * Something went wrong if we trying to unregister a threshold
3933 * if we don't have thresholds
3934 */
3935 BUG_ON(!thresholds);
3936
3937 usage = mem_cgroup_usage(memcg, type == _MEMSWAP);
3938
3939 /* Check if a threshold crossed before removing */
3940 __mem_cgroup_threshold(memcg, type == _MEMSWAP);
3941
3942 /* Calculate new number of threshold */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003943 size = 0;
3944 for (i = 0; i < thresholds->primary->size; i++) {
3945 if (thresholds->primary->entries[i].eventfd != eventfd)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003946 size++;
3947 }
3948
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003949 new = thresholds->spare;
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07003950
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003951 /* Set thresholds array to NULL if we don't have thresholds */
3952 if (!size) {
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003953 kfree(new);
3954 new = NULL;
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07003955 goto swap_buffers;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003956 }
3957
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003958 new->size = size;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003959
3960 /* Copy thresholds and find current threshold */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003961 new->current_threshold = -1;
3962 for (i = 0, j = 0; i < thresholds->primary->size; i++) {
3963 if (thresholds->primary->entries[i].eventfd == eventfd)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003964 continue;
3965
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003966 new->entries[j] = thresholds->primary->entries[i];
3967 if (new->entries[j].threshold < usage) {
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003968 /*
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003969 * new->current_threshold will not be used
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003970 * until rcu_assign_pointer(), so it's safe to increment
3971 * it here.
3972 */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003973 ++new->current_threshold;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003974 }
3975 j++;
3976 }
3977
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07003978swap_buffers:
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003979 /* Swap primary and spare array */
3980 thresholds->spare = thresholds->primary;
3981 rcu_assign_pointer(thresholds->primary, new);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003982
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07003983 /* To be sure that nobody uses thresholds */
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003984 synchronize_rcu();
3985
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003986 mutex_unlock(&memcg->thresholds_lock);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003987}
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003988
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07003989static int mem_cgroup_oom_register_event(struct cgroup *cgrp,
3990 struct cftype *cft, struct eventfd_ctx *eventfd, const char *args)
3991{
3992 struct mem_cgroup *memcg = mem_cgroup_from_cont(cgrp);
3993 struct mem_cgroup_eventfd_list *event;
3994 int type = MEMFILE_TYPE(cft->private);
3995
3996 BUG_ON(type != _OOM_TYPE);
3997 event = kmalloc(sizeof(*event), GFP_KERNEL);
3998 if (!event)
3999 return -ENOMEM;
4000
4001 mutex_lock(&memcg_oom_mutex);
4002
4003 event->eventfd = eventfd;
4004 list_add(&event->list, &memcg->oom_notify);
4005
4006 /* already in OOM ? */
4007 if (atomic_read(&memcg->oom_lock))
4008 eventfd_signal(eventfd, 1);
4009 mutex_unlock(&memcg_oom_mutex);
4010
4011 return 0;
4012}
4013
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07004014static void mem_cgroup_oom_unregister_event(struct cgroup *cgrp,
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004015 struct cftype *cft, struct eventfd_ctx *eventfd)
4016{
4017 struct mem_cgroup *mem = mem_cgroup_from_cont(cgrp);
4018 struct mem_cgroup_eventfd_list *ev, *tmp;
4019 int type = MEMFILE_TYPE(cft->private);
4020
4021 BUG_ON(type != _OOM_TYPE);
4022
4023 mutex_lock(&memcg_oom_mutex);
4024
4025 list_for_each_entry_safe(ev, tmp, &mem->oom_notify, list) {
4026 if (ev->eventfd == eventfd) {
4027 list_del(&ev->list);
4028 kfree(ev);
4029 }
4030 }
4031
4032 mutex_unlock(&memcg_oom_mutex);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004033}
4034
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004035static int mem_cgroup_oom_control_read(struct cgroup *cgrp,
4036 struct cftype *cft, struct cgroup_map_cb *cb)
4037{
4038 struct mem_cgroup *mem = mem_cgroup_from_cont(cgrp);
4039
4040 cb->fill(cb, "oom_kill_disable", mem->oom_kill_disable);
4041
4042 if (atomic_read(&mem->oom_lock))
4043 cb->fill(cb, "under_oom", 1);
4044 else
4045 cb->fill(cb, "under_oom", 0);
4046 return 0;
4047}
4048
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004049static int mem_cgroup_oom_control_write(struct cgroup *cgrp,
4050 struct cftype *cft, u64 val)
4051{
4052 struct mem_cgroup *mem = mem_cgroup_from_cont(cgrp);
4053 struct mem_cgroup *parent;
4054
4055 /* cannot set to root cgroup and only 0 and 1 are allowed */
4056 if (!cgrp->parent || !((val == 0) || (val == 1)))
4057 return -EINVAL;
4058
4059 parent = mem_cgroup_from_cont(cgrp->parent);
4060
4061 cgroup_lock();
4062 /* oom-kill-disable is a flag for subhierarchy. */
4063 if ((parent->use_hierarchy) ||
4064 (mem->use_hierarchy && !list_empty(&cgrp->children))) {
4065 cgroup_unlock();
4066 return -EINVAL;
4067 }
4068 mem->oom_kill_disable = val;
KAMEZAWA Hiroyuki4d845eb2010-06-29 15:05:18 -07004069 if (!val)
4070 memcg_oom_recover(mem);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004071 cgroup_unlock();
4072 return 0;
4073}
4074
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004075static struct cftype mem_cgroup_files[] = {
4076 {
Balbir Singh0eea1032008-02-07 00:13:57 -08004077 .name = "usage_in_bytes",
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004078 .private = MEMFILE_PRIVATE(_MEM, RES_USAGE),
Paul Menage2c3daa72008-04-29 00:59:58 -07004079 .read_u64 = mem_cgroup_read,
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004080 .register_event = mem_cgroup_usage_register_event,
4081 .unregister_event = mem_cgroup_usage_unregister_event,
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004082 },
4083 {
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07004084 .name = "max_usage_in_bytes",
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004085 .private = MEMFILE_PRIVATE(_MEM, RES_MAX_USAGE),
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07004086 .trigger = mem_cgroup_reset,
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07004087 .read_u64 = mem_cgroup_read,
4088 },
4089 {
Balbir Singh0eea1032008-02-07 00:13:57 -08004090 .name = "limit_in_bytes",
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004091 .private = MEMFILE_PRIVATE(_MEM, RES_LIMIT),
Paul Menage856c13a2008-07-25 01:47:04 -07004092 .write_string = mem_cgroup_write,
Paul Menage2c3daa72008-04-29 00:59:58 -07004093 .read_u64 = mem_cgroup_read,
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004094 },
4095 {
Balbir Singh296c81d2009-09-23 15:56:36 -07004096 .name = "soft_limit_in_bytes",
4097 .private = MEMFILE_PRIVATE(_MEM, RES_SOFT_LIMIT),
4098 .write_string = mem_cgroup_write,
4099 .read_u64 = mem_cgroup_read,
4100 },
4101 {
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004102 .name = "failcnt",
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004103 .private = MEMFILE_PRIVATE(_MEM, RES_FAILCNT),
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07004104 .trigger = mem_cgroup_reset,
Paul Menage2c3daa72008-04-29 00:59:58 -07004105 .read_u64 = mem_cgroup_read,
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004106 },
Balbir Singh8697d332008-02-07 00:13:59 -08004107 {
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08004108 .name = "stat",
Paul Menagec64745c2008-04-29 01:00:02 -07004109 .read_map = mem_control_stat_show,
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08004110 },
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08004111 {
4112 .name = "force_empty",
4113 .trigger = mem_cgroup_force_empty_write,
4114 },
Balbir Singh18f59ea2009-01-07 18:08:07 -08004115 {
4116 .name = "use_hierarchy",
4117 .write_u64 = mem_cgroup_hierarchy_write,
4118 .read_u64 = mem_cgroup_hierarchy_read,
4119 },
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08004120 {
4121 .name = "swappiness",
4122 .read_u64 = mem_cgroup_swappiness_read,
4123 .write_u64 = mem_cgroup_swappiness_write,
4124 },
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004125 {
4126 .name = "move_charge_at_immigrate",
4127 .read_u64 = mem_cgroup_move_charge_read,
4128 .write_u64 = mem_cgroup_move_charge_write,
4129 },
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004130 {
4131 .name = "oom_control",
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004132 .read_map = mem_cgroup_oom_control_read,
4133 .write_u64 = mem_cgroup_oom_control_write,
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004134 .register_event = mem_cgroup_oom_register_event,
4135 .unregister_event = mem_cgroup_oom_unregister_event,
4136 .private = MEMFILE_PRIVATE(_OOM_TYPE, OOM_CONTROL),
4137 },
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004138};
4139
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004140#ifdef CONFIG_CGROUP_MEM_RES_CTLR_SWAP
4141static struct cftype memsw_cgroup_files[] = {
4142 {
4143 .name = "memsw.usage_in_bytes",
4144 .private = MEMFILE_PRIVATE(_MEMSWAP, RES_USAGE),
4145 .read_u64 = mem_cgroup_read,
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004146 .register_event = mem_cgroup_usage_register_event,
4147 .unregister_event = mem_cgroup_usage_unregister_event,
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004148 },
4149 {
4150 .name = "memsw.max_usage_in_bytes",
4151 .private = MEMFILE_PRIVATE(_MEMSWAP, RES_MAX_USAGE),
4152 .trigger = mem_cgroup_reset,
4153 .read_u64 = mem_cgroup_read,
4154 },
4155 {
4156 .name = "memsw.limit_in_bytes",
4157 .private = MEMFILE_PRIVATE(_MEMSWAP, RES_LIMIT),
4158 .write_string = mem_cgroup_write,
4159 .read_u64 = mem_cgroup_read,
4160 },
4161 {
4162 .name = "memsw.failcnt",
4163 .private = MEMFILE_PRIVATE(_MEMSWAP, RES_FAILCNT),
4164 .trigger = mem_cgroup_reset,
4165 .read_u64 = mem_cgroup_read,
4166 },
4167};
4168
4169static int register_memsw_files(struct cgroup *cont, struct cgroup_subsys *ss)
4170{
4171 if (!do_swap_account)
4172 return 0;
4173 return cgroup_add_files(cont, ss, memsw_cgroup_files,
4174 ARRAY_SIZE(memsw_cgroup_files));
4175};
4176#else
4177static int register_memsw_files(struct cgroup *cont, struct cgroup_subsys *ss)
4178{
4179 return 0;
4180}
4181#endif
4182
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004183static int alloc_mem_cgroup_per_zone_info(struct mem_cgroup *mem, int node)
4184{
4185 struct mem_cgroup_per_node *pn;
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004186 struct mem_cgroup_per_zone *mz;
Christoph Lameterb69408e2008-10-18 20:26:14 -07004187 enum lru_list l;
KAMEZAWA Hiroyuki41e33552008-04-08 17:41:54 -07004188 int zone, tmp = node;
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004189 /*
4190 * This routine is called against possible nodes.
4191 * But it's BUG to call kmalloc() against offline node.
4192 *
4193 * TODO: this routine can waste much memory for nodes which will
4194 * never be onlined. It's better to use memory hotplug callback
4195 * function.
4196 */
KAMEZAWA Hiroyuki41e33552008-04-08 17:41:54 -07004197 if (!node_state(node, N_NORMAL_MEMORY))
4198 tmp = -1;
4199 pn = kmalloc_node(sizeof(*pn), GFP_KERNEL, tmp);
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004200 if (!pn)
4201 return 1;
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004202
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004203 mem->info.nodeinfo[node] = pn;
4204 memset(pn, 0, sizeof(*pn));
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004205
4206 for (zone = 0; zone < MAX_NR_ZONES; zone++) {
4207 mz = &pn->zoneinfo[zone];
Christoph Lameterb69408e2008-10-18 20:26:14 -07004208 for_each_lru(l)
4209 INIT_LIST_HEAD(&mz->lists[l]);
Balbir Singhf64c3f52009-09-23 15:56:37 -07004210 mz->usage_in_excess = 0;
Balbir Singh4e416952009-09-23 15:56:39 -07004211 mz->on_tree = false;
4212 mz->mem = mem;
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004213 }
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004214 return 0;
4215}
4216
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004217static void free_mem_cgroup_per_zone_info(struct mem_cgroup *mem, int node)
4218{
4219 kfree(mem->info.nodeinfo[node]);
4220}
4221
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004222static struct mem_cgroup *mem_cgroup_alloc(void)
4223{
4224 struct mem_cgroup *mem;
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08004225 int size = sizeof(struct mem_cgroup);
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004226
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08004227 /* Can be very big if MAX_NUMNODES is very big */
Jan Blunckc8dad2b2009-01-07 18:07:53 -08004228 if (size < PAGE_SIZE)
4229 mem = kmalloc(size, GFP_KERNEL);
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004230 else
Jan Blunckc8dad2b2009-01-07 18:07:53 -08004231 mem = vmalloc(size);
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004232
Dan Carpentere7bbcdf2010-03-23 13:35:12 -07004233 if (!mem)
4234 return NULL;
4235
4236 memset(mem, 0, size);
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08004237 mem->stat = alloc_percpu(struct mem_cgroup_stat_cpu);
Dan Carpenterd2e61b82010-11-11 14:05:12 -08004238 if (!mem->stat)
4239 goto out_free;
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -07004240 spin_lock_init(&mem->pcp_counter_lock);
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004241 return mem;
Dan Carpenterd2e61b82010-11-11 14:05:12 -08004242
4243out_free:
4244 if (size < PAGE_SIZE)
4245 kfree(mem);
4246 else
4247 vfree(mem);
4248 return NULL;
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004249}
4250
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004251/*
4252 * At destroying mem_cgroup, references from swap_cgroup can remain.
4253 * (scanning all at force_empty is too costly...)
4254 *
4255 * Instead of clearing all references at force_empty, we remember
4256 * the number of reference from swap_cgroup and free mem_cgroup when
4257 * it goes down to 0.
4258 *
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004259 * Removal of cgroup itself succeeds regardless of refs from swap.
4260 */
4261
KAMEZAWA Hiroyukia7ba0ee2009-01-07 18:08:32 -08004262static void __mem_cgroup_free(struct mem_cgroup *mem)
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004263{
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08004264 int node;
4265
Balbir Singhf64c3f52009-09-23 15:56:37 -07004266 mem_cgroup_remove_from_trees(mem);
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07004267 free_css_id(&mem_cgroup_subsys, &mem->css);
4268
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08004269 for_each_node_state(node, N_POSSIBLE)
4270 free_mem_cgroup_per_zone_info(mem, node);
4271
KAMEZAWA Hiroyukic62b1a32010-03-10 15:22:29 -08004272 free_percpu(mem->stat);
4273 if (sizeof(struct mem_cgroup) < PAGE_SIZE)
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004274 kfree(mem);
4275 else
4276 vfree(mem);
4277}
4278
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004279static void mem_cgroup_get(struct mem_cgroup *mem)
4280{
4281 atomic_inc(&mem->refcnt);
4282}
4283
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004284static void __mem_cgroup_put(struct mem_cgroup *mem, int count)
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004285{
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004286 if (atomic_sub_and_test(count, &mem->refcnt)) {
Daisuke Nishimura7bcc1bb2009-01-29 14:25:11 -08004287 struct mem_cgroup *parent = parent_mem_cgroup(mem);
KAMEZAWA Hiroyukia7ba0ee2009-01-07 18:08:32 -08004288 __mem_cgroup_free(mem);
Daisuke Nishimura7bcc1bb2009-01-29 14:25:11 -08004289 if (parent)
4290 mem_cgroup_put(parent);
4291 }
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004292}
4293
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004294static void mem_cgroup_put(struct mem_cgroup *mem)
4295{
4296 __mem_cgroup_put(mem, 1);
4297}
4298
Daisuke Nishimura7bcc1bb2009-01-29 14:25:11 -08004299/*
4300 * Returns the parent mem_cgroup in memcgroup hierarchy with hierarchy enabled.
4301 */
4302static struct mem_cgroup *parent_mem_cgroup(struct mem_cgroup *mem)
4303{
4304 if (!mem->res.parent)
4305 return NULL;
4306 return mem_cgroup_from_res_counter(mem->res.parent, res);
4307}
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004308
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -08004309#ifdef CONFIG_CGROUP_MEM_RES_CTLR_SWAP
4310static void __init enable_swap_cgroup(void)
4311{
Hirokazu Takahashif8d665422009-01-07 18:08:02 -08004312 if (!mem_cgroup_disabled() && really_do_swap_account)
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -08004313 do_swap_account = 1;
4314}
4315#else
4316static void __init enable_swap_cgroup(void)
4317{
4318}
4319#endif
4320
Balbir Singhf64c3f52009-09-23 15:56:37 -07004321static int mem_cgroup_soft_limit_tree_init(void)
4322{
4323 struct mem_cgroup_tree_per_node *rtpn;
4324 struct mem_cgroup_tree_per_zone *rtpz;
4325 int tmp, node, zone;
4326
4327 for_each_node_state(node, N_POSSIBLE) {
4328 tmp = node;
4329 if (!node_state(node, N_NORMAL_MEMORY))
4330 tmp = -1;
4331 rtpn = kzalloc_node(sizeof(*rtpn), GFP_KERNEL, tmp);
4332 if (!rtpn)
4333 return 1;
4334
4335 soft_limit_tree.rb_tree_per_node[node] = rtpn;
4336
4337 for (zone = 0; zone < MAX_NR_ZONES; zone++) {
4338 rtpz = &rtpn->rb_tree_per_zone[zone];
4339 rtpz->rb_root = RB_ROOT;
4340 spin_lock_init(&rtpz->lock);
4341 }
4342 }
4343 return 0;
4344}
4345
Li Zefan0eb253e2009-01-15 13:51:25 -08004346static struct cgroup_subsys_state * __ref
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004347mem_cgroup_create(struct cgroup_subsys *ss, struct cgroup *cont)
4348{
Balbir Singh28dbc4b2009-01-07 18:08:05 -08004349 struct mem_cgroup *mem, *parent;
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07004350 long error = -ENOMEM;
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004351 int node;
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004352
Jan Blunckc8dad2b2009-01-07 18:07:53 -08004353 mem = mem_cgroup_alloc();
4354 if (!mem)
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07004355 return ERR_PTR(error);
Pavel Emelianov78fb7462008-02-07 00:13:51 -08004356
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004357 for_each_node_state(node, N_POSSIBLE)
4358 if (alloc_mem_cgroup_per_zone_info(mem, node))
4359 goto free_out;
Balbir Singhf64c3f52009-09-23 15:56:37 -07004360
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -08004361 /* root ? */
Balbir Singh28dbc4b2009-01-07 18:08:05 -08004362 if (cont->parent == NULL) {
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08004363 int cpu;
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -08004364 enable_swap_cgroup();
Balbir Singh28dbc4b2009-01-07 18:08:05 -08004365 parent = NULL;
Balbir Singh4b3bde42009-09-23 15:56:32 -07004366 root_mem_cgroup = mem;
Balbir Singhf64c3f52009-09-23 15:56:37 -07004367 if (mem_cgroup_soft_limit_tree_init())
4368 goto free_out;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08004369 for_each_possible_cpu(cpu) {
4370 struct memcg_stock_pcp *stock =
4371 &per_cpu(memcg_stock, cpu);
4372 INIT_WORK(&stock->work, drain_local_stock);
4373 }
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -07004374 hotcpu_notifier(memcg_cpu_hotplug_callback, 0);
Balbir Singh18f59ea2009-01-07 18:08:07 -08004375 } else {
Balbir Singh28dbc4b2009-01-07 18:08:05 -08004376 parent = mem_cgroup_from_cont(cont->parent);
Balbir Singh18f59ea2009-01-07 18:08:07 -08004377 mem->use_hierarchy = parent->use_hierarchy;
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004378 mem->oom_kill_disable = parent->oom_kill_disable;
Balbir Singh18f59ea2009-01-07 18:08:07 -08004379 }
Balbir Singh28dbc4b2009-01-07 18:08:05 -08004380
Balbir Singh18f59ea2009-01-07 18:08:07 -08004381 if (parent && parent->use_hierarchy) {
4382 res_counter_init(&mem->res, &parent->res);
4383 res_counter_init(&mem->memsw, &parent->memsw);
Daisuke Nishimura7bcc1bb2009-01-29 14:25:11 -08004384 /*
4385 * We increment refcnt of the parent to ensure that we can
4386 * safely access it on res_counter_charge/uncharge.
4387 * This refcnt will be decremented when freeing this
4388 * mem_cgroup(see mem_cgroup_put).
4389 */
4390 mem_cgroup_get(parent);
Balbir Singh18f59ea2009-01-07 18:08:07 -08004391 } else {
4392 res_counter_init(&mem->res, NULL);
4393 res_counter_init(&mem->memsw, NULL);
4394 }
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07004395 mem->last_scanned_child = 0;
KOSAKI Motohiro2733c062009-01-07 18:08:23 -08004396 spin_lock_init(&mem->reclaim_param_lock);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004397 INIT_LIST_HEAD(&mem->oom_notify);
Balbir Singh6d61ef42009-01-07 18:08:06 -08004398
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08004399 if (parent)
4400 mem->swappiness = get_swappiness(parent);
KAMEZAWA Hiroyukia7ba0ee2009-01-07 18:08:32 -08004401 atomic_set(&mem->refcnt, 1);
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004402 mem->move_charge_at_immigrate = 0;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004403 mutex_init(&mem->thresholds_lock);
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004404 return &mem->css;
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004405free_out:
KAMEZAWA Hiroyukia7ba0ee2009-01-07 18:08:32 -08004406 __mem_cgroup_free(mem);
Balbir Singh4b3bde42009-09-23 15:56:32 -07004407 root_mem_cgroup = NULL;
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07004408 return ERR_PTR(error);
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004409}
4410
KAMEZAWA Hiroyukiec64f512009-04-02 16:57:26 -07004411static int mem_cgroup_pre_destroy(struct cgroup_subsys *ss,
KAMEZAWA Hiroyukidf878fb2008-02-07 00:14:28 -08004412 struct cgroup *cont)
4413{
4414 struct mem_cgroup *mem = mem_cgroup_from_cont(cont);
KAMEZAWA Hiroyukiec64f512009-04-02 16:57:26 -07004415
4416 return mem_cgroup_force_empty(mem, false);
KAMEZAWA Hiroyukidf878fb2008-02-07 00:14:28 -08004417}
4418
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004419static void mem_cgroup_destroy(struct cgroup_subsys *ss,
4420 struct cgroup *cont)
4421{
Daisuke Nishimurac268e992009-01-15 13:51:13 -08004422 struct mem_cgroup *mem = mem_cgroup_from_cont(cont);
Daisuke Nishimurac268e992009-01-15 13:51:13 -08004423
Daisuke Nishimurac268e992009-01-15 13:51:13 -08004424 mem_cgroup_put(mem);
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004425}
4426
4427static int mem_cgroup_populate(struct cgroup_subsys *ss,
4428 struct cgroup *cont)
4429{
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004430 int ret;
4431
4432 ret = cgroup_add_files(cont, ss, mem_cgroup_files,
4433 ARRAY_SIZE(mem_cgroup_files));
4434
4435 if (!ret)
4436 ret = register_memsw_files(cont, ss);
4437 return ret;
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004438}
4439
Daisuke Nishimura02491442010-03-10 15:22:17 -08004440#ifdef CONFIG_MMU
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004441/* Handlers for move charge at task migration. */
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004442#define PRECHARGE_COUNT_AT_ONCE 256
4443static int mem_cgroup_do_precharge(unsigned long count)
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004444{
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004445 int ret = 0;
4446 int batch_count = PRECHARGE_COUNT_AT_ONCE;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004447 struct mem_cgroup *mem = mc.to;
4448
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004449 if (mem_cgroup_is_root(mem)) {
4450 mc.precharge += count;
4451 /* we don't need css_get for root */
4452 return ret;
4453 }
4454 /* try to charge at once */
4455 if (count > 1) {
4456 struct res_counter *dummy;
4457 /*
4458 * "mem" cannot be under rmdir() because we've already checked
4459 * by cgroup_lock_live_cgroup() that it is not removed and we
4460 * are still under the same cgroup_mutex. So we can postpone
4461 * css_get().
4462 */
4463 if (res_counter_charge(&mem->res, PAGE_SIZE * count, &dummy))
4464 goto one_by_one;
4465 if (do_swap_account && res_counter_charge(&mem->memsw,
4466 PAGE_SIZE * count, &dummy)) {
4467 res_counter_uncharge(&mem->res, PAGE_SIZE * count);
4468 goto one_by_one;
4469 }
4470 mc.precharge += count;
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004471 return ret;
4472 }
4473one_by_one:
4474 /* fall back to one by one charge */
4475 while (count--) {
4476 if (signal_pending(current)) {
4477 ret = -EINTR;
4478 break;
4479 }
4480 if (!batch_count--) {
4481 batch_count = PRECHARGE_COUNT_AT_ONCE;
4482 cond_resched();
4483 }
Andrea Arcangeliec168512011-01-13 15:46:56 -08004484 ret = __mem_cgroup_try_charge(NULL, GFP_KERNEL, &mem, false,
4485 PAGE_SIZE);
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004486 if (ret || !mem)
4487 /* mem_cgroup_clear_mc() will do uncharge later */
4488 return -ENOMEM;
4489 mc.precharge++;
4490 }
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004491 return ret;
4492}
4493
4494/**
4495 * is_target_pte_for_mc - check a pte whether it is valid for move charge
4496 * @vma: the vma the pte to be checked belongs
4497 * @addr: the address corresponding to the pte to be checked
4498 * @ptent: the pte to be checked
Daisuke Nishimura02491442010-03-10 15:22:17 -08004499 * @target: the pointer the target page or swap ent will be stored(can be NULL)
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004500 *
4501 * Returns
4502 * 0(MC_TARGET_NONE): if the pte is not a target for move charge.
4503 * 1(MC_TARGET_PAGE): if the page corresponding to this pte is a target for
4504 * move charge. if @target is not NULL, the page is stored in target->page
4505 * with extra refcnt got(Callers should handle it).
Daisuke Nishimura02491442010-03-10 15:22:17 -08004506 * 2(MC_TARGET_SWAP): if the swap entry corresponding to this pte is a
4507 * target for charge migration. if @target is not NULL, the entry is stored
4508 * in target->ent.
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004509 *
4510 * Called with pte lock held.
4511 */
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004512union mc_target {
4513 struct page *page;
Daisuke Nishimura02491442010-03-10 15:22:17 -08004514 swp_entry_t ent;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004515};
4516
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004517enum mc_target_type {
4518 MC_TARGET_NONE, /* not used */
4519 MC_TARGET_PAGE,
Daisuke Nishimura02491442010-03-10 15:22:17 -08004520 MC_TARGET_SWAP,
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004521};
4522
Daisuke Nishimura90254a62010-05-26 14:42:38 -07004523static struct page *mc_handle_present_pte(struct vm_area_struct *vma,
4524 unsigned long addr, pte_t ptent)
4525{
4526 struct page *page = vm_normal_page(vma, addr, ptent);
4527
4528 if (!page || !page_mapped(page))
4529 return NULL;
4530 if (PageAnon(page)) {
4531 /* we don't move shared anon */
4532 if (!move_anon() || page_mapcount(page) > 2)
4533 return NULL;
Daisuke Nishimura87946a72010-05-26 14:42:39 -07004534 } else if (!move_file())
4535 /* we ignore mapcount for file pages */
Daisuke Nishimura90254a62010-05-26 14:42:38 -07004536 return NULL;
4537 if (!get_page_unless_zero(page))
4538 return NULL;
4539
4540 return page;
4541}
4542
4543static struct page *mc_handle_swap_pte(struct vm_area_struct *vma,
4544 unsigned long addr, pte_t ptent, swp_entry_t *entry)
4545{
4546 int usage_count;
4547 struct page *page = NULL;
4548 swp_entry_t ent = pte_to_swp_entry(ptent);
4549
4550 if (!move_anon() || non_swap_entry(ent))
4551 return NULL;
4552 usage_count = mem_cgroup_count_swap_user(ent, &page);
4553 if (usage_count > 1) { /* we don't move shared anon */
4554 if (page)
4555 put_page(page);
4556 return NULL;
4557 }
4558 if (do_swap_account)
4559 entry->val = ent.val;
4560
4561 return page;
4562}
4563
Daisuke Nishimura87946a72010-05-26 14:42:39 -07004564static struct page *mc_handle_file_pte(struct vm_area_struct *vma,
4565 unsigned long addr, pte_t ptent, swp_entry_t *entry)
4566{
4567 struct page *page = NULL;
4568 struct inode *inode;
4569 struct address_space *mapping;
4570 pgoff_t pgoff;
4571
4572 if (!vma->vm_file) /* anonymous vma */
4573 return NULL;
4574 if (!move_file())
4575 return NULL;
4576
4577 inode = vma->vm_file->f_path.dentry->d_inode;
4578 mapping = vma->vm_file->f_mapping;
4579 if (pte_none(ptent))
4580 pgoff = linear_page_index(vma, addr);
4581 else /* pte_file(ptent) is true */
4582 pgoff = pte_to_pgoff(ptent);
4583
4584 /* page is moved even if it's not RSS of this task(page-faulted). */
4585 if (!mapping_cap_swap_backed(mapping)) { /* normal file */
4586 page = find_get_page(mapping, pgoff);
4587 } else { /* shmem/tmpfs file. we should take account of swap too. */
4588 swp_entry_t ent;
4589 mem_cgroup_get_shmem_target(inode, pgoff, &page, &ent);
4590 if (do_swap_account)
4591 entry->val = ent.val;
4592 }
4593
4594 return page;
4595}
4596
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004597static int is_target_pte_for_mc(struct vm_area_struct *vma,
4598 unsigned long addr, pte_t ptent, union mc_target *target)
4599{
Daisuke Nishimura02491442010-03-10 15:22:17 -08004600 struct page *page = NULL;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004601 struct page_cgroup *pc;
4602 int ret = 0;
Daisuke Nishimura02491442010-03-10 15:22:17 -08004603 swp_entry_t ent = { .val = 0 };
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004604
Daisuke Nishimura90254a62010-05-26 14:42:38 -07004605 if (pte_present(ptent))
4606 page = mc_handle_present_pte(vma, addr, ptent);
4607 else if (is_swap_pte(ptent))
4608 page = mc_handle_swap_pte(vma, addr, ptent, &ent);
Daisuke Nishimura87946a72010-05-26 14:42:39 -07004609 else if (pte_none(ptent) || pte_file(ptent))
4610 page = mc_handle_file_pte(vma, addr, ptent, &ent);
Daisuke Nishimura90254a62010-05-26 14:42:38 -07004611
4612 if (!page && !ent.val)
Daisuke Nishimura02491442010-03-10 15:22:17 -08004613 return 0;
Daisuke Nishimura02491442010-03-10 15:22:17 -08004614 if (page) {
4615 pc = lookup_page_cgroup(page);
4616 /*
4617 * Do only loose check w/o page_cgroup lock.
4618 * mem_cgroup_move_account() checks the pc is valid or not under
4619 * the lock.
4620 */
4621 if (PageCgroupUsed(pc) && pc->mem_cgroup == mc.from) {
4622 ret = MC_TARGET_PAGE;
4623 if (target)
4624 target->page = page;
4625 }
4626 if (!ret || !target)
4627 put_page(page);
4628 }
Daisuke Nishimura90254a62010-05-26 14:42:38 -07004629 /* There is a swap entry and a page doesn't exist or isn't charged */
4630 if (ent.val && !ret &&
KAMEZAWA Hiroyuki7f0f1542010-05-11 14:06:58 -07004631 css_id(&mc.from->css) == lookup_swap_cgroup(ent)) {
4632 ret = MC_TARGET_SWAP;
4633 if (target)
4634 target->ent = ent;
Daisuke Nishimura02491442010-03-10 15:22:17 -08004635 }
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004636 return ret;
4637}
4638
4639static int mem_cgroup_count_precharge_pte_range(pmd_t *pmd,
4640 unsigned long addr, unsigned long end,
4641 struct mm_walk *walk)
4642{
4643 struct vm_area_struct *vma = walk->private;
4644 pte_t *pte;
4645 spinlock_t *ptl;
4646
Andrea Arcangeliec168512011-01-13 15:46:56 -08004647 VM_BUG_ON(pmd_trans_huge(*pmd));
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004648 pte = pte_offset_map_lock(vma->vm_mm, pmd, addr, &ptl);
4649 for (; addr != end; pte++, addr += PAGE_SIZE)
4650 if (is_target_pte_for_mc(vma, addr, *pte, NULL))
4651 mc.precharge++; /* increment precharge temporarily */
4652 pte_unmap_unlock(pte - 1, ptl);
4653 cond_resched();
4654
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004655 return 0;
4656}
4657
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004658static unsigned long mem_cgroup_count_precharge(struct mm_struct *mm)
4659{
4660 unsigned long precharge;
4661 struct vm_area_struct *vma;
4662
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004663 /* We've already held the mmap_sem */
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004664 for (vma = mm->mmap; vma; vma = vma->vm_next) {
4665 struct mm_walk mem_cgroup_count_precharge_walk = {
4666 .pmd_entry = mem_cgroup_count_precharge_pte_range,
4667 .mm = mm,
4668 .private = vma,
4669 };
4670 if (is_vm_hugetlb_page(vma))
4671 continue;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004672 walk_page_range(vma->vm_start, vma->vm_end,
4673 &mem_cgroup_count_precharge_walk);
4674 }
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004675
4676 precharge = mc.precharge;
4677 mc.precharge = 0;
4678
4679 return precharge;
4680}
4681
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004682static int mem_cgroup_precharge_mc(struct mm_struct *mm)
4683{
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004684 return mem_cgroup_do_precharge(mem_cgroup_count_precharge(mm));
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004685}
4686
4687static void mem_cgroup_clear_mc(void)
4688{
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07004689 struct mem_cgroup *from = mc.from;
4690 struct mem_cgroup *to = mc.to;
4691
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004692 /* we must uncharge all the leftover precharges from mc.to */
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004693 if (mc.precharge) {
4694 __mem_cgroup_cancel_charge(mc.to, mc.precharge);
4695 mc.precharge = 0;
4696 }
4697 /*
4698 * we didn't uncharge from mc.from at mem_cgroup_move_account(), so
4699 * we must uncharge here.
4700 */
4701 if (mc.moved_charge) {
4702 __mem_cgroup_cancel_charge(mc.from, mc.moved_charge);
4703 mc.moved_charge = 0;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004704 }
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004705 /* we must fixup refcnts and charges */
4706 if (mc.moved_swap) {
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004707 /* uncharge swap account from the old cgroup */
4708 if (!mem_cgroup_is_root(mc.from))
4709 res_counter_uncharge(&mc.from->memsw,
4710 PAGE_SIZE * mc.moved_swap);
4711 __mem_cgroup_put(mc.from, mc.moved_swap);
4712
4713 if (!mem_cgroup_is_root(mc.to)) {
4714 /*
4715 * we charged both to->res and to->memsw, so we should
4716 * uncharge to->res.
4717 */
4718 res_counter_uncharge(&mc.to->res,
4719 PAGE_SIZE * mc.moved_swap);
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004720 }
4721 /* we've already done mem_cgroup_get(mc.to) */
4722
4723 mc.moved_swap = 0;
4724 }
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004725 if (mc.mm) {
4726 up_read(&mc.mm->mmap_sem);
4727 mmput(mc.mm);
4728 }
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07004729 spin_lock(&mc.lock);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004730 mc.from = NULL;
4731 mc.to = NULL;
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07004732 spin_unlock(&mc.lock);
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004733 mc.moving_task = NULL;
4734 mc.mm = NULL;
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07004735 mem_cgroup_end_move(from);
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07004736 memcg_oom_recover(from);
4737 memcg_oom_recover(to);
Daisuke Nishimura8033b972010-03-10 15:22:16 -08004738 wake_up_all(&mc.waitq);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004739}
4740
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004741static int mem_cgroup_can_attach(struct cgroup_subsys *ss,
4742 struct cgroup *cgroup,
4743 struct task_struct *p,
4744 bool threadgroup)
4745{
4746 int ret = 0;
4747 struct mem_cgroup *mem = mem_cgroup_from_cont(cgroup);
4748
4749 if (mem->move_charge_at_immigrate) {
4750 struct mm_struct *mm;
4751 struct mem_cgroup *from = mem_cgroup_from_task(p);
4752
4753 VM_BUG_ON(from == mem);
4754
4755 mm = get_task_mm(p);
4756 if (!mm)
4757 return 0;
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004758 /* We move charges only when we move a owner of the mm */
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004759 if (mm->owner == p) {
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004760 /*
4761 * We do all the move charge works under one mmap_sem to
4762 * avoid deadlock with down_write(&mmap_sem)
4763 * -> try_charge() -> if (mc.moving_task) -> sleep.
4764 */
4765 down_read(&mm->mmap_sem);
4766
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004767 VM_BUG_ON(mc.from);
4768 VM_BUG_ON(mc.to);
4769 VM_BUG_ON(mc.precharge);
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004770 VM_BUG_ON(mc.moved_charge);
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004771 VM_BUG_ON(mc.moved_swap);
Daisuke Nishimura8033b972010-03-10 15:22:16 -08004772 VM_BUG_ON(mc.moving_task);
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004773 VM_BUG_ON(mc.mm);
4774
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07004775 mem_cgroup_start_move(from);
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07004776 spin_lock(&mc.lock);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004777 mc.from = from;
4778 mc.to = mem;
4779 mc.precharge = 0;
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004780 mc.moved_charge = 0;
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004781 mc.moved_swap = 0;
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07004782 spin_unlock(&mc.lock);
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004783 mc.moving_task = current;
4784 mc.mm = mm;
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004785
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004786 ret = mem_cgroup_precharge_mc(mm);
4787 if (ret)
4788 mem_cgroup_clear_mc();
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004789 /* We call up_read() and mmput() in clear_mc(). */
4790 } else
4791 mmput(mm);
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004792 }
4793 return ret;
4794}
4795
4796static void mem_cgroup_cancel_attach(struct cgroup_subsys *ss,
4797 struct cgroup *cgroup,
4798 struct task_struct *p,
4799 bool threadgroup)
4800{
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004801 mem_cgroup_clear_mc();
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004802}
4803
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004804static int mem_cgroup_move_charge_pte_range(pmd_t *pmd,
4805 unsigned long addr, unsigned long end,
4806 struct mm_walk *walk)
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004807{
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004808 int ret = 0;
4809 struct vm_area_struct *vma = walk->private;
4810 pte_t *pte;
4811 spinlock_t *ptl;
4812
4813retry:
Andrea Arcangeliec168512011-01-13 15:46:56 -08004814 VM_BUG_ON(pmd_trans_huge(*pmd));
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004815 pte = pte_offset_map_lock(vma->vm_mm, pmd, addr, &ptl);
4816 for (; addr != end; addr += PAGE_SIZE) {
4817 pte_t ptent = *(pte++);
4818 union mc_target target;
4819 int type;
4820 struct page *page;
4821 struct page_cgroup *pc;
Daisuke Nishimura02491442010-03-10 15:22:17 -08004822 swp_entry_t ent;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004823
4824 if (!mc.precharge)
4825 break;
4826
4827 type = is_target_pte_for_mc(vma, addr, ptent, &target);
4828 switch (type) {
4829 case MC_TARGET_PAGE:
4830 page = target.page;
4831 if (isolate_lru_page(page))
4832 goto put;
4833 pc = lookup_page_cgroup(page);
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004834 if (!mem_cgroup_move_account(pc,
4835 mc.from, mc.to, false)) {
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004836 mc.precharge--;
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004837 /* we uncharge from mc.from later. */
4838 mc.moved_charge++;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004839 }
4840 putback_lru_page(page);
4841put: /* is_target_pte_for_mc() gets the page */
4842 put_page(page);
4843 break;
Daisuke Nishimura02491442010-03-10 15:22:17 -08004844 case MC_TARGET_SWAP:
4845 ent = target.ent;
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004846 if (!mem_cgroup_move_swap_account(ent,
4847 mc.from, mc.to, false)) {
Daisuke Nishimura02491442010-03-10 15:22:17 -08004848 mc.precharge--;
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08004849 /* we fixup refcnts and charges later. */
4850 mc.moved_swap++;
4851 }
Daisuke Nishimura02491442010-03-10 15:22:17 -08004852 break;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004853 default:
4854 break;
4855 }
4856 }
4857 pte_unmap_unlock(pte - 1, ptl);
4858 cond_resched();
4859
4860 if (addr != end) {
4861 /*
4862 * We have consumed all precharges we got in can_attach().
4863 * We try charge one by one, but don't do any additional
4864 * charges to mc.to if we have failed in charge once in attach()
4865 * phase.
4866 */
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08004867 ret = mem_cgroup_do_precharge(1);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004868 if (!ret)
4869 goto retry;
4870 }
4871
4872 return ret;
4873}
4874
4875static void mem_cgroup_move_charge(struct mm_struct *mm)
4876{
4877 struct vm_area_struct *vma;
4878
4879 lru_add_drain_all();
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004880 /* We've already held the mmap_sem */
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004881 for (vma = mm->mmap; vma; vma = vma->vm_next) {
4882 int ret;
4883 struct mm_walk mem_cgroup_move_charge_walk = {
4884 .pmd_entry = mem_cgroup_move_charge_pte_range,
4885 .mm = mm,
4886 .private = vma,
4887 };
4888 if (is_vm_hugetlb_page(vma))
4889 continue;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004890 ret = walk_page_range(vma->vm_start, vma->vm_end,
4891 &mem_cgroup_move_charge_walk);
4892 if (ret)
4893 /*
4894 * means we have consumed all precharges and failed in
4895 * doing additional charge. Just abandon here.
4896 */
4897 break;
4898 }
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004899}
4900
Balbir Singh67e465a2008-02-07 00:13:54 -08004901static void mem_cgroup_move_task(struct cgroup_subsys *ss,
4902 struct cgroup *cont,
4903 struct cgroup *old_cont,
Ben Blumbe367d02009-09-23 15:56:31 -07004904 struct task_struct *p,
4905 bool threadgroup)
Balbir Singh67e465a2008-02-07 00:13:54 -08004906{
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004907 if (!mc.mm)
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004908 /* no need to move charge */
4909 return;
4910
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -08004911 mem_cgroup_move_charge(mc.mm);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08004912 mem_cgroup_clear_mc();
Balbir Singh67e465a2008-02-07 00:13:54 -08004913}
Daisuke Nishimura5cfb80a2010-03-23 13:35:11 -07004914#else /* !CONFIG_MMU */
4915static int mem_cgroup_can_attach(struct cgroup_subsys *ss,
4916 struct cgroup *cgroup,
4917 struct task_struct *p,
4918 bool threadgroup)
4919{
4920 return 0;
4921}
4922static void mem_cgroup_cancel_attach(struct cgroup_subsys *ss,
4923 struct cgroup *cgroup,
4924 struct task_struct *p,
4925 bool threadgroup)
4926{
4927}
4928static void mem_cgroup_move_task(struct cgroup_subsys *ss,
4929 struct cgroup *cont,
4930 struct cgroup *old_cont,
4931 struct task_struct *p,
4932 bool threadgroup)
4933{
4934}
4935#endif
Balbir Singh67e465a2008-02-07 00:13:54 -08004936
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004937struct cgroup_subsys mem_cgroup_subsys = {
4938 .name = "memory",
4939 .subsys_id = mem_cgroup_subsys_id,
4940 .create = mem_cgroup_create,
KAMEZAWA Hiroyukidf878fb2008-02-07 00:14:28 -08004941 .pre_destroy = mem_cgroup_pre_destroy,
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004942 .destroy = mem_cgroup_destroy,
4943 .populate = mem_cgroup_populate,
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004944 .can_attach = mem_cgroup_can_attach,
4945 .cancel_attach = mem_cgroup_cancel_attach,
Balbir Singh67e465a2008-02-07 00:13:54 -08004946 .attach = mem_cgroup_move_task,
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004947 .early_init = 0,
KAMEZAWA Hiroyuki04046e12009-04-02 16:57:33 -07004948 .use_id = 1,
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004949};
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -08004950
4951#ifdef CONFIG_CGROUP_MEM_RES_CTLR_SWAP
Michal Hockoa42c3902010-11-24 12:57:08 -08004952static int __init enable_swap_account(char *s)
4953{
4954 /* consider enabled if no parameter or 1 is given */
4955 if (!s || !strcmp(s, "1"))
4956 really_do_swap_account = 1;
4957 else if (!strcmp(s, "0"))
4958 really_do_swap_account = 0;
4959 return 1;
4960}
4961__setup("swapaccount", enable_swap_account);
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -08004962
4963static int __init disable_swap_account(char *s)
4964{
Michal Hockoa42c3902010-11-24 12:57:08 -08004965 enable_swap_account("0");
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -08004966 return 1;
4967}
4968__setup("noswapaccount", disable_swap_account);
4969#endif