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Thomas Gleixnerc942fdd2019-05-27 08:55:06 +02001// SPDX-License-Identifier: GPL-2.0-or-later
Balbir Singh8cdea7c2008-02-07 00:13:50 -08002/* memcontrol.c - Memory Controller
3 *
4 * Copyright IBM Corporation, 2007
5 * Author Balbir Singh <balbir@linux.vnet.ibm.com>
6 *
Pavel Emelianov78fb7462008-02-07 00:13:51 -08007 * Copyright 2007 OpenVZ SWsoft Inc
8 * Author: Pavel Emelianov <xemul@openvz.org>
9 *
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -080010 * Memory thresholds
11 * Copyright (C) 2009 Nokia Corporation
12 * Author: Kirill A. Shutemov
13 *
Glauber Costa7ae1e1d2012-12-18 14:21:56 -080014 * Kernel Memory Controller
15 * Copyright (C) 2012 Parallels Inc. and Google Inc.
16 * Authors: Glauber Costa and Suleiman Souhlal
17 *
Johannes Weiner1575e682015-04-14 15:44:51 -070018 * Native page reclaim
19 * Charge lifetime sanitation
20 * Lockless page tracking & accounting
21 * Unified hierarchy configuration model
22 * Copyright (C) 2015 Red Hat, Inc., Johannes Weiner
Balbir Singh8cdea7c2008-02-07 00:13:50 -080023 */
24
Johannes Weiner3e32cb22014-12-10 15:42:31 -080025#include <linux/page_counter.h>
Balbir Singh8cdea7c2008-02-07 00:13:50 -080026#include <linux/memcontrol.h>
27#include <linux/cgroup.h>
Christoph Hellwiga5201102019-08-28 16:19:53 +020028#include <linux/pagewalk.h>
Ingo Molnar6e84f312017-02-08 18:51:29 +010029#include <linux/sched/mm.h>
Hugh Dickins3a4f8a02017-02-24 14:59:36 -080030#include <linux/shmem_fs.h>
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -080031#include <linux/hugetlb.h>
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -080032#include <linux/pagemap.h>
Chris Down1ff9e6e2019-03-05 15:48:09 -080033#include <linux/vm_event_item.h>
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -080034#include <linux/smp.h>
Balbir Singh8a9f3cc2008-02-07 00:13:53 -080035#include <linux/page-flags.h>
Balbir Singh66e17072008-02-07 00:13:56 -080036#include <linux/backing-dev.h>
Balbir Singh8a9f3cc2008-02-07 00:13:53 -080037#include <linux/bit_spinlock.h>
38#include <linux/rcupdate.h>
Balbir Singhe2224322009-04-02 16:57:39 -070039#include <linux/limits.h>
Paul Gortmakerb9e15ba2011-05-26 16:00:52 -040040#include <linux/export.h>
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -080041#include <linux/mutex.h>
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -070042#include <linux/rbtree.h>
Balbir Singhb6ac57d2008-04-29 01:00:19 -070043#include <linux/slab.h>
Balbir Singh66e17072008-02-07 00:13:56 -080044#include <linux/swap.h>
Daisuke Nishimura02491442010-03-10 15:22:17 -080045#include <linux/swapops.h>
Balbir Singh66e17072008-02-07 00:13:56 -080046#include <linux/spinlock.h>
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -080047#include <linux/eventfd.h>
Tejun Heo79bd9812013-11-22 18:20:42 -050048#include <linux/poll.h>
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -080049#include <linux/sort.h>
Balbir Singh66e17072008-02-07 00:13:56 -080050#include <linux/fs.h>
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -080051#include <linux/seq_file.h>
Anton Vorontsov70ddf632013-04-29 15:08:31 -070052#include <linux/vmpressure.h>
Christoph Lameterb69408e2008-10-18 20:26:14 -070053#include <linux/mm_inline.h>
Johannes Weiner5d1ea482014-12-10 15:44:55 -080054#include <linux/swap_cgroup.h>
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -080055#include <linux/cpu.h>
KAMEZAWA Hiroyuki158e0a22010-08-10 18:03:00 -070056#include <linux/oom.h>
Johannes Weiner0056f4e2013-10-31 16:34:14 -070057#include <linux/lockdep.h>
Tejun Heo79bd9812013-11-22 18:20:42 -050058#include <linux/file.h>
Tejun Heob23afb92015-11-05 18:46:11 -080059#include <linux/tracehook.h>
Chris Down0e4b01d2019-09-23 15:34:55 -070060#include <linux/psi.h>
Johannes Weinerc8713d02019-07-11 20:55:59 -070061#include <linux/seq_buf.h>
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -080062#include "internal.h"
Glauber Costad1a4c0b2011-12-11 21:47:04 +000063#include <net/sock.h>
Michal Hocko4bd2c1e2012-10-08 16:33:10 -070064#include <net/ip.h>
Qiang Huangf35c3a82013-11-12 15:08:22 -080065#include "slab.h"
Balbir Singh8cdea7c2008-02-07 00:13:50 -080066
Linus Torvalds7c0f6ba2016-12-24 11:46:01 -080067#include <linux/uaccess.h>
Balbir Singh8697d332008-02-07 00:13:59 -080068
KOSAKI Motohirocc8e9702010-08-09 17:19:57 -070069#include <trace/events/vmscan.h>
70
Tejun Heo073219e2014-02-08 10:36:58 -050071struct cgroup_subsys memory_cgrp_subsys __read_mostly;
72EXPORT_SYMBOL(memory_cgrp_subsys);
David Rientjes68ae5642012-12-12 13:51:57 -080073
Johannes Weiner7d828602016-01-14 15:20:56 -080074struct mem_cgroup *root_mem_cgroup __read_mostly;
75
KAMEZAWA Hiroyukia181b0e2008-07-25 01:47:08 -070076#define MEM_CGROUP_RECLAIM_RETRIES 5
Balbir Singh8cdea7c2008-02-07 00:13:50 -080077
Johannes Weinerf7e1cb62016-01-14 15:21:29 -080078/* Socket memory accounting disabled? */
79static bool cgroup_memory_nosocket;
80
Vladimir Davydov04823c82016-01-20 15:02:38 -080081/* Kernel memory accounting disabled? */
82static bool cgroup_memory_nokmem;
83
Johannes Weiner21afa382015-02-11 15:26:36 -080084/* Whether the swap controller is active */
Andrew Mortonc255a452012-07-31 16:43:02 -070085#ifdef CONFIG_MEMCG_SWAP
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -080086int do_swap_account __read_mostly;
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -080087#else
Kirill A. Shutemova0db00f2012-05-29 15:06:56 -070088#define do_swap_account 0
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -080089#endif
90
Tejun Heo97b27822019-08-26 09:06:56 -070091#ifdef CONFIG_CGROUP_WRITEBACK
92static DECLARE_WAIT_QUEUE_HEAD(memcg_cgwb_frn_waitq);
93#endif
94
Johannes Weiner7941d212016-01-14 15:21:23 -080095/* Whether legacy memory+swap accounting is active */
96static bool do_memsw_account(void)
97{
98 return !cgroup_subsys_on_dfl(memory_cgrp_subsys) && do_swap_account;
99}
100
Kirill A. Shutemova0db00f2012-05-29 15:06:56 -0700101#define THRESHOLDS_EVENTS_TARGET 128
102#define SOFTLIMIT_EVENTS_TARGET 1024
Johannes Weinere9f89742011-03-23 16:42:37 -0700103
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700104/*
105 * Cgroups above their limits are maintained in a RB-Tree, independent of
106 * their hierarchy representation
107 */
108
Mel Gormanef8f2322016-07-28 15:46:05 -0700109struct mem_cgroup_tree_per_node {
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700110 struct rb_root rb_root;
Davidlohr Buesofa90b2f2017-09-08 16:15:21 -0700111 struct rb_node *rb_rightmost;
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700112 spinlock_t lock;
113};
114
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700115struct mem_cgroup_tree {
116 struct mem_cgroup_tree_per_node *rb_tree_per_node[MAX_NUMNODES];
117};
118
119static struct mem_cgroup_tree soft_limit_tree __read_mostly;
120
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -0700121/* for OOM */
122struct mem_cgroup_eventfd_list {
123 struct list_head list;
124 struct eventfd_ctx *eventfd;
125};
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800126
Tejun Heo79bd9812013-11-22 18:20:42 -0500127/*
128 * cgroup_event represents events which userspace want to receive.
129 */
Tejun Heo3bc942f2013-11-22 18:20:44 -0500130struct mem_cgroup_event {
Tejun Heo79bd9812013-11-22 18:20:42 -0500131 /*
Tejun Heo59b6f872013-11-22 18:20:43 -0500132 * memcg which the event belongs to.
Tejun Heo79bd9812013-11-22 18:20:42 -0500133 */
Tejun Heo59b6f872013-11-22 18:20:43 -0500134 struct mem_cgroup *memcg;
Tejun Heo79bd9812013-11-22 18:20:42 -0500135 /*
Tejun Heo79bd9812013-11-22 18:20:42 -0500136 * eventfd to signal userspace about the event.
137 */
138 struct eventfd_ctx *eventfd;
139 /*
140 * Each of these stored in a list by the cgroup.
141 */
142 struct list_head list;
143 /*
Tejun Heofba94802013-11-22 18:20:43 -0500144 * register_event() callback will be used to add new userspace
145 * waiter for changes related to this event. Use eventfd_signal()
146 * on eventfd to send notification to userspace.
147 */
Tejun Heo59b6f872013-11-22 18:20:43 -0500148 int (*register_event)(struct mem_cgroup *memcg,
Tejun Heo347c4a82013-11-22 18:20:43 -0500149 struct eventfd_ctx *eventfd, const char *args);
Tejun Heofba94802013-11-22 18:20:43 -0500150 /*
151 * unregister_event() callback will be called when userspace closes
152 * the eventfd or on cgroup removing. This callback must be set,
153 * if you want provide notification functionality.
154 */
Tejun Heo59b6f872013-11-22 18:20:43 -0500155 void (*unregister_event)(struct mem_cgroup *memcg,
Tejun Heofba94802013-11-22 18:20:43 -0500156 struct eventfd_ctx *eventfd);
157 /*
Tejun Heo79bd9812013-11-22 18:20:42 -0500158 * All fields below needed to unregister event when
159 * userspace closes eventfd.
160 */
161 poll_table pt;
162 wait_queue_head_t *wqh;
Ingo Molnarac6424b2017-06-20 12:06:13 +0200163 wait_queue_entry_t wait;
Tejun Heo79bd9812013-11-22 18:20:42 -0500164 struct work_struct remove;
165};
166
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -0700167static void mem_cgroup_threshold(struct mem_cgroup *memcg);
168static void mem_cgroup_oom_notify(struct mem_cgroup *memcg);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -0800169
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -0800170/* Stuffs for move charges at task migration. */
171/*
Johannes Weiner1dfab5a2015-02-11 15:26:09 -0800172 * Types of charges to be moved.
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -0800173 */
Johannes Weiner1dfab5a2015-02-11 15:26:09 -0800174#define MOVE_ANON 0x1U
175#define MOVE_FILE 0x2U
176#define MOVE_MASK (MOVE_ANON | MOVE_FILE)
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -0800177
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -0800178/* "mc" and its members are protected by cgroup_mutex */
179static struct move_charge_struct {
Daisuke Nishimurab1dd6932010-11-24 12:57:06 -0800180 spinlock_t lock; /* for from, to */
Tejun Heo264a0ae2016-04-21 19:09:02 -0400181 struct mm_struct *mm;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -0800182 struct mem_cgroup *from;
183 struct mem_cgroup *to;
Johannes Weiner1dfab5a2015-02-11 15:26:09 -0800184 unsigned long flags;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -0800185 unsigned long precharge;
Daisuke Nishimura854ffa82010-03-10 15:22:15 -0800186 unsigned long moved_charge;
Daisuke Nishimura483c30b2010-03-10 15:22:18 -0800187 unsigned long moved_swap;
Daisuke Nishimura8033b972010-03-10 15:22:16 -0800188 struct task_struct *moving_task; /* a task moving charges */
189 wait_queue_head_t waitq; /* a waitq for other context */
190} mc = {
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -0700191 .lock = __SPIN_LOCK_UNLOCKED(mc.lock),
Daisuke Nishimura8033b972010-03-10 15:22:16 -0800192 .waitq = __WAIT_QUEUE_HEAD_INITIALIZER(mc.waitq),
193};
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -0800194
Balbir Singh4e416952009-09-23 15:56:39 -0700195/*
196 * Maximum loops in mem_cgroup_hierarchical_reclaim(), used for soft
197 * limit reclaim to prevent infinite loops, if they ever occur.
198 */
Kirill A. Shutemova0db00f2012-05-29 15:06:56 -0700199#define MEM_CGROUP_MAX_RECLAIM_LOOPS 100
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700200#define MEM_CGROUP_MAX_SOFT_LIMIT_RECLAIM_LOOPS 2
Balbir Singh4e416952009-09-23 15:56:39 -0700201
KAMEZAWA Hiroyuki217bc312008-02-07 00:14:17 -0800202enum charge_type {
203 MEM_CGROUP_CHARGE_TYPE_CACHE = 0,
Kamezawa Hiroyuki41326c12012-07-31 16:41:40 -0700204 MEM_CGROUP_CHARGE_TYPE_ANON,
KAMEZAWA Hiroyukid13d1442009-01-07 18:07:56 -0800205 MEM_CGROUP_CHARGE_TYPE_SWAPOUT, /* for accounting swapcache */
KAMEZAWA Hiroyuki8a9478c2009-06-17 16:27:17 -0700206 MEM_CGROUP_CHARGE_TYPE_DROP, /* a page was unused swap cache */
KAMEZAWA Hiroyukic05555b2008-10-18 20:28:11 -0700207 NR_CHARGE_TYPE,
208};
209
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800210/* for encoding cft->private value on file */
Glauber Costa86ae53e2012-12-18 14:21:45 -0800211enum res_type {
212 _MEM,
213 _MEMSWAP,
214 _OOM_TYPE,
Glauber Costa510fc4e2012-12-18 14:21:47 -0800215 _KMEM,
Vladimir Davydovd55f90b2016-01-20 15:02:44 -0800216 _TCP,
Glauber Costa86ae53e2012-12-18 14:21:45 -0800217};
218
Kirill A. Shutemova0db00f2012-05-29 15:06:56 -0700219#define MEMFILE_PRIVATE(x, val) ((x) << 16 | (val))
220#define MEMFILE_TYPE(val) ((val) >> 16 & 0xffff)
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800221#define MEMFILE_ATTR(val) ((val) & 0xffff)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -0700222/* Used for OOM nofiier */
223#define OOM_CONTROL (0)
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -0800224
Kirill Tkhaib05706f2018-08-17 15:47:33 -0700225/*
226 * Iteration constructs for visiting all cgroups (under a tree). If
227 * loops are exited prematurely (break), mem_cgroup_iter_break() must
228 * be used for reference counting.
229 */
230#define for_each_mem_cgroup_tree(iter, root) \
231 for (iter = mem_cgroup_iter(root, NULL, NULL); \
232 iter != NULL; \
233 iter = mem_cgroup_iter(root, iter, NULL))
234
235#define for_each_mem_cgroup(iter) \
236 for (iter = mem_cgroup_iter(NULL, NULL, NULL); \
237 iter != NULL; \
238 iter = mem_cgroup_iter(NULL, iter, NULL))
239
Tetsuo Handa7775fac2019-03-05 15:46:47 -0800240static inline bool should_force_charge(void)
241{
242 return tsk_is_oom_victim(current) || fatal_signal_pending(current) ||
243 (current->flags & PF_EXITING);
244}
245
Anton Vorontsov70ddf632013-04-29 15:08:31 -0700246/* Some nice accessors for the vmpressure. */
247struct vmpressure *memcg_to_vmpressure(struct mem_cgroup *memcg)
248{
249 if (!memcg)
250 memcg = root_mem_cgroup;
251 return &memcg->vmpressure;
252}
253
254struct cgroup_subsys_state *vmpressure_to_css(struct vmpressure *vmpr)
255{
256 return &container_of(vmpr, struct mem_cgroup, vmpressure)->css;
257}
258
Kirill Tkhai84c07d12018-08-17 15:47:25 -0700259#ifdef CONFIG_MEMCG_KMEM
Glauber Costa55007d82012-12-18 14:22:38 -0800260/*
Vladimir Davydovf7ce3192015-02-12 14:59:20 -0800261 * This will be the memcg's index in each cache's ->memcg_params.memcg_caches.
Li Zefanb8627832013-09-23 16:56:47 +0800262 * The main reason for not using cgroup id for this:
263 * this works better in sparse environments, where we have a lot of memcgs,
264 * but only a few kmem-limited. Or also, if we have, for instance, 200
265 * memcgs, and none but the 200th is kmem-limited, we'd have to have a
266 * 200 entry array for that.
Glauber Costa55007d82012-12-18 14:22:38 -0800267 *
Vladimir Davydovdbcf73e2015-02-12 14:58:57 -0800268 * The current size of the caches array is stored in memcg_nr_cache_ids. It
269 * will double each time we have to increase it.
Glauber Costa55007d82012-12-18 14:22:38 -0800270 */
Vladimir Davydovdbcf73e2015-02-12 14:58:57 -0800271static DEFINE_IDA(memcg_cache_ida);
272int memcg_nr_cache_ids;
Glauber Costa749c5412012-12-18 14:23:01 -0800273
Vladimir Davydov05257a12015-02-12 14:59:01 -0800274/* Protects memcg_nr_cache_ids */
275static DECLARE_RWSEM(memcg_cache_ids_sem);
276
277void memcg_get_cache_ids(void)
278{
279 down_read(&memcg_cache_ids_sem);
280}
281
282void memcg_put_cache_ids(void)
283{
284 up_read(&memcg_cache_ids_sem);
285}
286
Glauber Costa55007d82012-12-18 14:22:38 -0800287/*
288 * MIN_SIZE is different than 1, because we would like to avoid going through
289 * the alloc/free process all the time. In a small machine, 4 kmem-limited
290 * cgroups is a reasonable guess. In the future, it could be a parameter or
291 * tunable, but that is strictly not necessary.
292 *
Li Zefanb8627832013-09-23 16:56:47 +0800293 * MAX_SIZE should be as large as the number of cgrp_ids. Ideally, we could get
Glauber Costa55007d82012-12-18 14:22:38 -0800294 * this constant directly from cgroup, but it is understandable that this is
295 * better kept as an internal representation in cgroup.c. In any case, the
Li Zefanb8627832013-09-23 16:56:47 +0800296 * cgrp_id space is not getting any smaller, and we don't have to necessarily
Glauber Costa55007d82012-12-18 14:22:38 -0800297 * increase ours as well if it increases.
298 */
299#define MEMCG_CACHES_MIN_SIZE 4
Li Zefanb8627832013-09-23 16:56:47 +0800300#define MEMCG_CACHES_MAX_SIZE MEM_CGROUP_ID_MAX
Glauber Costa55007d82012-12-18 14:22:38 -0800301
Glauber Costad7f25f82012-12-18 14:22:40 -0800302/*
303 * A lot of the calls to the cache allocation functions are expected to be
304 * inlined by the compiler. Since the calls to memcg_kmem_get_cache are
305 * conditional to this static branch, we'll have to allow modules that does
306 * kmem_cache_alloc and the such to see this symbol as well
307 */
Johannes Weineref129472016-01-14 15:21:34 -0800308DEFINE_STATIC_KEY_FALSE(memcg_kmem_enabled_key);
Glauber Costad7f25f82012-12-18 14:22:40 -0800309EXPORT_SYMBOL(memcg_kmem_enabled_key);
Glauber Costaa8964b92012-12-18 14:22:09 -0800310
Tejun Heo17cc4df2017-02-22 15:41:36 -0800311struct workqueue_struct *memcg_kmem_cache_wq;
Yang Shi0a432dc2019-09-23 15:38:12 -0700312#endif
Tejun Heo17cc4df2017-02-22 15:41:36 -0800313
Kirill Tkhai0a4465d2018-08-17 15:47:37 -0700314static int memcg_shrinker_map_size;
315static DEFINE_MUTEX(memcg_shrinker_map_mutex);
316
317static void memcg_free_shrinker_map_rcu(struct rcu_head *head)
318{
319 kvfree(container_of(head, struct memcg_shrinker_map, rcu));
320}
321
322static int memcg_expand_one_shrinker_map(struct mem_cgroup *memcg,
323 int size, int old_size)
324{
325 struct memcg_shrinker_map *new, *old;
326 int nid;
327
328 lockdep_assert_held(&memcg_shrinker_map_mutex);
329
330 for_each_node(nid) {
331 old = rcu_dereference_protected(
332 mem_cgroup_nodeinfo(memcg, nid)->shrinker_map, true);
333 /* Not yet online memcg */
334 if (!old)
335 return 0;
336
337 new = kvmalloc(sizeof(*new) + size, GFP_KERNEL);
338 if (!new)
339 return -ENOMEM;
340
341 /* Set all old bits, clear all new bits */
342 memset(new->map, (int)0xff, old_size);
343 memset((void *)new->map + old_size, 0, size - old_size);
344
345 rcu_assign_pointer(memcg->nodeinfo[nid]->shrinker_map, new);
346 call_rcu(&old->rcu, memcg_free_shrinker_map_rcu);
347 }
348
349 return 0;
350}
351
352static void memcg_free_shrinker_maps(struct mem_cgroup *memcg)
353{
354 struct mem_cgroup_per_node *pn;
355 struct memcg_shrinker_map *map;
356 int nid;
357
358 if (mem_cgroup_is_root(memcg))
359 return;
360
361 for_each_node(nid) {
362 pn = mem_cgroup_nodeinfo(memcg, nid);
363 map = rcu_dereference_protected(pn->shrinker_map, true);
364 if (map)
365 kvfree(map);
366 rcu_assign_pointer(pn->shrinker_map, NULL);
367 }
368}
369
370static int memcg_alloc_shrinker_maps(struct mem_cgroup *memcg)
371{
372 struct memcg_shrinker_map *map;
373 int nid, size, ret = 0;
374
375 if (mem_cgroup_is_root(memcg))
376 return 0;
377
378 mutex_lock(&memcg_shrinker_map_mutex);
379 size = memcg_shrinker_map_size;
380 for_each_node(nid) {
381 map = kvzalloc(sizeof(*map) + size, GFP_KERNEL);
382 if (!map) {
383 memcg_free_shrinker_maps(memcg);
384 ret = -ENOMEM;
385 break;
386 }
387 rcu_assign_pointer(memcg->nodeinfo[nid]->shrinker_map, map);
388 }
389 mutex_unlock(&memcg_shrinker_map_mutex);
390
391 return ret;
392}
393
394int memcg_expand_shrinker_maps(int new_id)
395{
396 int size, old_size, ret = 0;
397 struct mem_cgroup *memcg;
398
399 size = DIV_ROUND_UP(new_id + 1, BITS_PER_LONG) * sizeof(unsigned long);
400 old_size = memcg_shrinker_map_size;
401 if (size <= old_size)
402 return 0;
403
404 mutex_lock(&memcg_shrinker_map_mutex);
405 if (!root_mem_cgroup)
406 goto unlock;
407
408 for_each_mem_cgroup(memcg) {
409 if (mem_cgroup_is_root(memcg))
410 continue;
411 ret = memcg_expand_one_shrinker_map(memcg, size, old_size);
412 if (ret)
413 goto unlock;
414 }
415unlock:
416 if (!ret)
417 memcg_shrinker_map_size = size;
418 mutex_unlock(&memcg_shrinker_map_mutex);
419 return ret;
420}
Kirill Tkhaifae91d62018-08-17 15:48:10 -0700421
422void memcg_set_shrinker_bit(struct mem_cgroup *memcg, int nid, int shrinker_id)
423{
424 if (shrinker_id >= 0 && memcg && !mem_cgroup_is_root(memcg)) {
425 struct memcg_shrinker_map *map;
426
427 rcu_read_lock();
428 map = rcu_dereference(memcg->nodeinfo[nid]->shrinker_map);
Kirill Tkhaif90280d2018-08-17 15:48:25 -0700429 /* Pairs with smp mb in shrink_slab() */
430 smp_mb__before_atomic();
Kirill Tkhaifae91d62018-08-17 15:48:10 -0700431 set_bit(shrinker_id, map->map);
432 rcu_read_unlock();
433 }
434}
435
Tejun Heoad7fa852015-05-27 20:00:02 -0400436/**
437 * mem_cgroup_css_from_page - css of the memcg associated with a page
438 * @page: page of interest
439 *
440 * If memcg is bound to the default hierarchy, css of the memcg associated
441 * with @page is returned. The returned css remains associated with @page
442 * until it is released.
443 *
444 * If memcg is bound to a traditional hierarchy, the css of root_mem_cgroup
445 * is returned.
Tejun Heoad7fa852015-05-27 20:00:02 -0400446 */
447struct cgroup_subsys_state *mem_cgroup_css_from_page(struct page *page)
448{
449 struct mem_cgroup *memcg;
450
Tejun Heoad7fa852015-05-27 20:00:02 -0400451 memcg = page->mem_cgroup;
452
Tejun Heo9e10a132015-09-18 11:56:28 -0400453 if (!memcg || !cgroup_subsys_on_dfl(memory_cgrp_subsys))
Tejun Heoad7fa852015-05-27 20:00:02 -0400454 memcg = root_mem_cgroup;
455
Tejun Heoad7fa852015-05-27 20:00:02 -0400456 return &memcg->css;
457}
458
Vladimir Davydov2fc04522015-09-09 15:35:28 -0700459/**
460 * page_cgroup_ino - return inode number of the memcg a page is charged to
461 * @page: the page
462 *
463 * Look up the closest online ancestor of the memory cgroup @page is charged to
464 * and return its inode number or 0 if @page is not charged to any cgroup. It
465 * is safe to call this function without holding a reference to @page.
466 *
467 * Note, this function is inherently racy, because there is nothing to prevent
468 * the cgroup inode from getting torn down and potentially reallocated a moment
469 * after page_cgroup_ino() returns, so it only should be used by callers that
470 * do not care (such as procfs interfaces).
471 */
472ino_t page_cgroup_ino(struct page *page)
473{
474 struct mem_cgroup *memcg;
475 unsigned long ino = 0;
476
477 rcu_read_lock();
Roman Gushchin221ec5c2019-11-05 21:17:03 -0800478 if (PageSlab(page) && !PageTail(page))
Roman Gushchin4d96ba32019-07-11 20:56:31 -0700479 memcg = memcg_from_slab_page(page);
480 else
481 memcg = READ_ONCE(page->mem_cgroup);
Vladimir Davydov2fc04522015-09-09 15:35:28 -0700482 while (memcg && !(memcg->css.flags & CSS_ONLINE))
483 memcg = parent_mem_cgroup(memcg);
484 if (memcg)
485 ino = cgroup_ino(memcg->css.cgroup);
486 rcu_read_unlock();
487 return ino;
488}
489
Mel Gormanef8f2322016-07-28 15:46:05 -0700490static struct mem_cgroup_per_node *
491mem_cgroup_page_nodeinfo(struct mem_cgroup *memcg, struct page *page)
Balbir Singhf64c3f52009-09-23 15:56:37 -0700492{
Johannes Weiner97a6c372011-03-23 16:42:27 -0700493 int nid = page_to_nid(page);
Balbir Singhf64c3f52009-09-23 15:56:37 -0700494
Mel Gormanef8f2322016-07-28 15:46:05 -0700495 return memcg->nodeinfo[nid];
Balbir Singhf64c3f52009-09-23 15:56:37 -0700496}
497
Mel Gormanef8f2322016-07-28 15:46:05 -0700498static struct mem_cgroup_tree_per_node *
499soft_limit_tree_node(int nid)
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700500{
Mel Gormanef8f2322016-07-28 15:46:05 -0700501 return soft_limit_tree.rb_tree_per_node[nid];
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700502}
503
Mel Gormanef8f2322016-07-28 15:46:05 -0700504static struct mem_cgroup_tree_per_node *
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700505soft_limit_tree_from_page(struct page *page)
506{
507 int nid = page_to_nid(page);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700508
Mel Gormanef8f2322016-07-28 15:46:05 -0700509 return soft_limit_tree.rb_tree_per_node[nid];
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700510}
511
Mel Gormanef8f2322016-07-28 15:46:05 -0700512static void __mem_cgroup_insert_exceeded(struct mem_cgroup_per_node *mz,
513 struct mem_cgroup_tree_per_node *mctz,
Johannes Weiner3e32cb22014-12-10 15:42:31 -0800514 unsigned long new_usage_in_excess)
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700515{
516 struct rb_node **p = &mctz->rb_root.rb_node;
517 struct rb_node *parent = NULL;
Mel Gormanef8f2322016-07-28 15:46:05 -0700518 struct mem_cgroup_per_node *mz_node;
Davidlohr Buesofa90b2f2017-09-08 16:15:21 -0700519 bool rightmost = true;
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700520
521 if (mz->on_tree)
522 return;
523
524 mz->usage_in_excess = new_usage_in_excess;
525 if (!mz->usage_in_excess)
526 return;
527 while (*p) {
528 parent = *p;
Mel Gormanef8f2322016-07-28 15:46:05 -0700529 mz_node = rb_entry(parent, struct mem_cgroup_per_node,
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700530 tree_node);
Davidlohr Buesofa90b2f2017-09-08 16:15:21 -0700531 if (mz->usage_in_excess < mz_node->usage_in_excess) {
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700532 p = &(*p)->rb_left;
Davidlohr Buesofa90b2f2017-09-08 16:15:21 -0700533 rightmost = false;
534 }
535
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700536 /*
537 * We can't avoid mem cgroups that are over their soft
538 * limit by the same amount
539 */
540 else if (mz->usage_in_excess >= mz_node->usage_in_excess)
541 p = &(*p)->rb_right;
542 }
Davidlohr Buesofa90b2f2017-09-08 16:15:21 -0700543
544 if (rightmost)
545 mctz->rb_rightmost = &mz->tree_node;
546
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700547 rb_link_node(&mz->tree_node, parent, p);
548 rb_insert_color(&mz->tree_node, &mctz->rb_root);
549 mz->on_tree = true;
550}
551
Mel Gormanef8f2322016-07-28 15:46:05 -0700552static void __mem_cgroup_remove_exceeded(struct mem_cgroup_per_node *mz,
553 struct mem_cgroup_tree_per_node *mctz)
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700554{
555 if (!mz->on_tree)
556 return;
Davidlohr Buesofa90b2f2017-09-08 16:15:21 -0700557
558 if (&mz->tree_node == mctz->rb_rightmost)
559 mctz->rb_rightmost = rb_prev(&mz->tree_node);
560
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700561 rb_erase(&mz->tree_node, &mctz->rb_root);
562 mz->on_tree = false;
563}
564
Mel Gormanef8f2322016-07-28 15:46:05 -0700565static void mem_cgroup_remove_exceeded(struct mem_cgroup_per_node *mz,
566 struct mem_cgroup_tree_per_node *mctz)
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700567{
Johannes Weiner0a31bc92014-08-08 14:19:22 -0700568 unsigned long flags;
569
570 spin_lock_irqsave(&mctz->lock, flags);
Johannes Weinercf2c8122014-06-06 14:38:21 -0700571 __mem_cgroup_remove_exceeded(mz, mctz);
Johannes Weiner0a31bc92014-08-08 14:19:22 -0700572 spin_unlock_irqrestore(&mctz->lock, flags);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700573}
574
Johannes Weiner3e32cb22014-12-10 15:42:31 -0800575static unsigned long soft_limit_excess(struct mem_cgroup *memcg)
576{
577 unsigned long nr_pages = page_counter_read(&memcg->memory);
Jason Low4db0c3c2015-04-15 16:14:08 -0700578 unsigned long soft_limit = READ_ONCE(memcg->soft_limit);
Johannes Weiner3e32cb22014-12-10 15:42:31 -0800579 unsigned long excess = 0;
580
581 if (nr_pages > soft_limit)
582 excess = nr_pages - soft_limit;
583
584 return excess;
585}
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700586
587static void mem_cgroup_update_tree(struct mem_cgroup *memcg, struct page *page)
588{
Johannes Weiner3e32cb22014-12-10 15:42:31 -0800589 unsigned long excess;
Mel Gormanef8f2322016-07-28 15:46:05 -0700590 struct mem_cgroup_per_node *mz;
591 struct mem_cgroup_tree_per_node *mctz;
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700592
Jianyu Zhane2318752014-06-06 14:38:20 -0700593 mctz = soft_limit_tree_from_page(page);
Laurent Dufourbfc72282017-03-09 16:17:06 -0800594 if (!mctz)
595 return;
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700596 /*
597 * Necessary to update all ancestors when hierarchy is used.
598 * because their event counter is not touched.
599 */
600 for (; memcg; memcg = parent_mem_cgroup(memcg)) {
Mel Gormanef8f2322016-07-28 15:46:05 -0700601 mz = mem_cgroup_page_nodeinfo(memcg, page);
Johannes Weiner3e32cb22014-12-10 15:42:31 -0800602 excess = soft_limit_excess(memcg);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700603 /*
604 * We have to update the tree if mz is on RB-tree or
605 * mem is over its softlimit.
606 */
607 if (excess || mz->on_tree) {
Johannes Weiner0a31bc92014-08-08 14:19:22 -0700608 unsigned long flags;
609
610 spin_lock_irqsave(&mctz->lock, flags);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700611 /* if on-tree, remove it */
612 if (mz->on_tree)
Johannes Weinercf2c8122014-06-06 14:38:21 -0700613 __mem_cgroup_remove_exceeded(mz, mctz);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700614 /*
615 * Insert again. mz->usage_in_excess will be updated.
616 * If excess is 0, no tree ops.
617 */
Johannes Weinercf2c8122014-06-06 14:38:21 -0700618 __mem_cgroup_insert_exceeded(mz, mctz, excess);
Johannes Weiner0a31bc92014-08-08 14:19:22 -0700619 spin_unlock_irqrestore(&mctz->lock, flags);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700620 }
621 }
622}
623
624static void mem_cgroup_remove_from_trees(struct mem_cgroup *memcg)
625{
Mel Gormanef8f2322016-07-28 15:46:05 -0700626 struct mem_cgroup_tree_per_node *mctz;
627 struct mem_cgroup_per_node *mz;
628 int nid;
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700629
Jianyu Zhane2318752014-06-06 14:38:20 -0700630 for_each_node(nid) {
Mel Gormanef8f2322016-07-28 15:46:05 -0700631 mz = mem_cgroup_nodeinfo(memcg, nid);
632 mctz = soft_limit_tree_node(nid);
Laurent Dufourbfc72282017-03-09 16:17:06 -0800633 if (mctz)
634 mem_cgroup_remove_exceeded(mz, mctz);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700635 }
636}
637
Mel Gormanef8f2322016-07-28 15:46:05 -0700638static struct mem_cgroup_per_node *
639__mem_cgroup_largest_soft_limit_node(struct mem_cgroup_tree_per_node *mctz)
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700640{
Mel Gormanef8f2322016-07-28 15:46:05 -0700641 struct mem_cgroup_per_node *mz;
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700642
643retry:
644 mz = NULL;
Davidlohr Buesofa90b2f2017-09-08 16:15:21 -0700645 if (!mctz->rb_rightmost)
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700646 goto done; /* Nothing to reclaim from */
647
Davidlohr Buesofa90b2f2017-09-08 16:15:21 -0700648 mz = rb_entry(mctz->rb_rightmost,
649 struct mem_cgroup_per_node, tree_node);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700650 /*
651 * Remove the node now but someone else can add it back,
652 * we will to add it back at the end of reclaim to its correct
653 * position in the tree.
654 */
Johannes Weinercf2c8122014-06-06 14:38:21 -0700655 __mem_cgroup_remove_exceeded(mz, mctz);
Johannes Weiner3e32cb22014-12-10 15:42:31 -0800656 if (!soft_limit_excess(mz->memcg) ||
Tejun Heoec903c02014-05-13 12:11:01 -0400657 !css_tryget_online(&mz->memcg->css))
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700658 goto retry;
659done:
660 return mz;
661}
662
Mel Gormanef8f2322016-07-28 15:46:05 -0700663static struct mem_cgroup_per_node *
664mem_cgroup_largest_soft_limit_node(struct mem_cgroup_tree_per_node *mctz)
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700665{
Mel Gormanef8f2322016-07-28 15:46:05 -0700666 struct mem_cgroup_per_node *mz;
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700667
Johannes Weiner0a31bc92014-08-08 14:19:22 -0700668 spin_lock_irq(&mctz->lock);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700669 mz = __mem_cgroup_largest_soft_limit_node(mctz);
Johannes Weiner0a31bc92014-08-08 14:19:22 -0700670 spin_unlock_irq(&mctz->lock);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700671 return mz;
672}
673
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700674/**
675 * __mod_memcg_state - update cgroup memory statistics
676 * @memcg: the memory cgroup
677 * @idx: the stat item - can be enum memcg_stat_item or enum node_stat_item
678 * @val: delta to add to the counter, can be negative
679 */
680void __mod_memcg_state(struct mem_cgroup *memcg, int idx, int val)
681{
682 long x;
683
684 if (mem_cgroup_disabled())
685 return;
686
687 x = val + __this_cpu_read(memcg->vmstats_percpu->stat[idx]);
688 if (unlikely(abs(x) > MEMCG_CHARGE_BATCH)) {
Johannes Weiner42a30032019-05-14 15:47:12 -0700689 struct mem_cgroup *mi;
690
Yafang Shao766a4c12019-07-16 16:26:06 -0700691 /*
692 * Batch local counters to keep them in sync with
693 * the hierarchical ones.
694 */
695 __this_cpu_add(memcg->vmstats_local->stat[idx], x);
Johannes Weiner42a30032019-05-14 15:47:12 -0700696 for (mi = memcg; mi; mi = parent_mem_cgroup(mi))
697 atomic_long_add(x, &mi->vmstats[idx]);
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700698 x = 0;
699 }
700 __this_cpu_write(memcg->vmstats_percpu->stat[idx], x);
701}
702
Johannes Weiner42a30032019-05-14 15:47:12 -0700703static struct mem_cgroup_per_node *
704parent_nodeinfo(struct mem_cgroup_per_node *pn, int nid)
705{
706 struct mem_cgroup *parent;
707
708 parent = parent_mem_cgroup(pn->memcg);
709 if (!parent)
710 return NULL;
711 return mem_cgroup_nodeinfo(parent, nid);
712}
713
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700714/**
715 * __mod_lruvec_state - update lruvec memory statistics
716 * @lruvec: the lruvec
717 * @idx: the stat item
718 * @val: delta to add to the counter, can be negative
719 *
720 * The lruvec is the intersection of the NUMA node and a cgroup. This
721 * function updates the all three counters that are affected by a
722 * change of state at this level: per-node, per-cgroup, per-lruvec.
723 */
724void __mod_lruvec_state(struct lruvec *lruvec, enum node_stat_item idx,
725 int val)
726{
Johannes Weiner42a30032019-05-14 15:47:12 -0700727 pg_data_t *pgdat = lruvec_pgdat(lruvec);
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700728 struct mem_cgroup_per_node *pn;
Johannes Weiner42a30032019-05-14 15:47:12 -0700729 struct mem_cgroup *memcg;
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700730 long x;
731
732 /* Update node */
Johannes Weiner42a30032019-05-14 15:47:12 -0700733 __mod_node_page_state(pgdat, idx, val);
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700734
735 if (mem_cgroup_disabled())
736 return;
737
738 pn = container_of(lruvec, struct mem_cgroup_per_node, lruvec);
Johannes Weiner42a30032019-05-14 15:47:12 -0700739 memcg = pn->memcg;
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700740
741 /* Update memcg */
Johannes Weiner42a30032019-05-14 15:47:12 -0700742 __mod_memcg_state(memcg, idx, val);
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700743
Roman Gushchinb4c46482019-08-30 16:04:39 -0700744 /* Update lruvec */
745 __this_cpu_add(pn->lruvec_stat_local->count[idx], val);
746
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700747 x = val + __this_cpu_read(pn->lruvec_stat_cpu->count[idx]);
748 if (unlikely(abs(x) > MEMCG_CHARGE_BATCH)) {
Johannes Weiner42a30032019-05-14 15:47:12 -0700749 struct mem_cgroup_per_node *pi;
750
Johannes Weiner42a30032019-05-14 15:47:12 -0700751 for (pi = pn; pi; pi = parent_nodeinfo(pi, pgdat->node_id))
752 atomic_long_add(x, &pi->lruvec_stat[idx]);
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700753 x = 0;
754 }
755 __this_cpu_write(pn->lruvec_stat_cpu->count[idx], x);
756}
757
Roman Gushchinec9f0232019-08-13 15:37:41 -0700758void __mod_lruvec_slab_state(void *p, enum node_stat_item idx, int val)
759{
760 struct page *page = virt_to_head_page(p);
761 pg_data_t *pgdat = page_pgdat(page);
762 struct mem_cgroup *memcg;
763 struct lruvec *lruvec;
764
765 rcu_read_lock();
766 memcg = memcg_from_slab_page(page);
767
768 /* Untracked pages have no memcg, no lruvec. Update only the node */
769 if (!memcg || memcg == root_mem_cgroup) {
770 __mod_node_page_state(pgdat, idx, val);
771 } else {
Johannes Weiner867e5e12019-11-30 17:55:34 -0800772 lruvec = mem_cgroup_lruvec(memcg, pgdat);
Roman Gushchinec9f0232019-08-13 15:37:41 -0700773 __mod_lruvec_state(lruvec, idx, val);
774 }
775 rcu_read_unlock();
776}
777
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700778/**
779 * __count_memcg_events - account VM events in a cgroup
780 * @memcg: the memory cgroup
781 * @idx: the event item
782 * @count: the number of events that occured
783 */
784void __count_memcg_events(struct mem_cgroup *memcg, enum vm_event_item idx,
785 unsigned long count)
786{
787 unsigned long x;
788
789 if (mem_cgroup_disabled())
790 return;
791
792 x = count + __this_cpu_read(memcg->vmstats_percpu->events[idx]);
793 if (unlikely(x > MEMCG_CHARGE_BATCH)) {
Johannes Weiner42a30032019-05-14 15:47:12 -0700794 struct mem_cgroup *mi;
795
Yafang Shao766a4c12019-07-16 16:26:06 -0700796 /*
797 * Batch local counters to keep them in sync with
798 * the hierarchical ones.
799 */
800 __this_cpu_add(memcg->vmstats_local->events[idx], x);
Johannes Weiner42a30032019-05-14 15:47:12 -0700801 for (mi = memcg; mi; mi = parent_mem_cgroup(mi))
802 atomic_long_add(x, &mi->vmevents[idx]);
Johannes Weinerdb9adbc2019-05-14 15:47:09 -0700803 x = 0;
804 }
805 __this_cpu_write(memcg->vmstats_percpu->events[idx], x);
806}
807
Johannes Weiner42a30032019-05-14 15:47:12 -0700808static unsigned long memcg_events(struct mem_cgroup *memcg, int event)
Johannes Weinere9f89742011-03-23 16:42:37 -0700809{
Chris Down871789d2019-05-14 15:46:57 -0700810 return atomic_long_read(&memcg->vmevents[event]);
Johannes Weinere9f89742011-03-23 16:42:37 -0700811}
812
Johannes Weiner42a30032019-05-14 15:47:12 -0700813static unsigned long memcg_events_local(struct mem_cgroup *memcg, int event)
814{
Johannes Weiner815744d2019-06-13 15:55:46 -0700815 long x = 0;
816 int cpu;
817
818 for_each_possible_cpu(cpu)
819 x += per_cpu(memcg->vmstats_local->events[event], cpu);
820 return x;
Johannes Weiner42a30032019-05-14 15:47:12 -0700821}
822
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -0700823static void mem_cgroup_charge_statistics(struct mem_cgroup *memcg,
David Rientjesb070e652013-05-07 16:18:09 -0700824 struct page *page,
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -0800825 bool compound, int nr_pages)
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800826{
KAMEZAWA Hiroyukib24028572012-03-21 16:34:22 -0700827 /*
828 * Here, RSS means 'mapped anon' and anon's SwapCache. Shmem/tmpfs is
829 * counted as CACHE even if it's on ANON LRU.
830 */
Johannes Weiner0a31bc92014-08-08 14:19:22 -0700831 if (PageAnon(page))
Johannes Weinerc9019e92018-01-31 16:16:37 -0800832 __mod_memcg_state(memcg, MEMCG_RSS, nr_pages);
Johannes Weiner9a4caf12017-05-03 14:52:45 -0700833 else {
Johannes Weinerc9019e92018-01-31 16:16:37 -0800834 __mod_memcg_state(memcg, MEMCG_CACHE, nr_pages);
Johannes Weiner9a4caf12017-05-03 14:52:45 -0700835 if (PageSwapBacked(page))
Johannes Weinerc9019e92018-01-31 16:16:37 -0800836 __mod_memcg_state(memcg, NR_SHMEM, nr_pages);
Johannes Weiner9a4caf12017-05-03 14:52:45 -0700837 }
Balaji Rao55e462b2008-05-01 04:35:12 -0700838
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -0800839 if (compound) {
840 VM_BUG_ON_PAGE(!PageTransHuge(page), page);
Johannes Weinerc9019e92018-01-31 16:16:37 -0800841 __mod_memcg_state(memcg, MEMCG_RSS_HUGE, nr_pages);
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -0800842 }
David Rientjesb070e652013-05-07 16:18:09 -0700843
KAMEZAWA Hiroyukie401f172011-01-20 14:44:23 -0800844 /* pagein of a big page is an event. So, ignore page size */
845 if (nr_pages > 0)
Johannes Weinerc9019e92018-01-31 16:16:37 -0800846 __count_memcg_events(memcg, PGPGIN, 1);
KAMEZAWA Hiroyuki3751d602011-02-01 15:52:45 -0800847 else {
Johannes Weinerc9019e92018-01-31 16:16:37 -0800848 __count_memcg_events(memcg, PGPGOUT, 1);
KAMEZAWA Hiroyuki3751d602011-02-01 15:52:45 -0800849 nr_pages = -nr_pages; /* for event */
850 }
KAMEZAWA Hiroyukie401f172011-01-20 14:44:23 -0800851
Chris Down871789d2019-05-14 15:46:57 -0700852 __this_cpu_add(memcg->vmstats_percpu->nr_page_events, nr_pages);
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -0800853}
KAMEZAWA Hiroyukid52aa412008-02-07 00:14:24 -0800854
Johannes Weinerf53d7ce32012-01-12 17:18:23 -0800855static bool mem_cgroup_event_ratelimit(struct mem_cgroup *memcg,
856 enum mem_cgroup_events_target target)
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -0800857{
Johannes Weiner7a159cc2011-03-23 16:42:38 -0700858 unsigned long val, next;
859
Chris Down871789d2019-05-14 15:46:57 -0700860 val = __this_cpu_read(memcg->vmstats_percpu->nr_page_events);
861 next = __this_cpu_read(memcg->vmstats_percpu->targets[target]);
Johannes Weiner7a159cc2011-03-23 16:42:38 -0700862 /* from time_after() in jiffies.h */
Michal Hocko6a1a8b82017-07-10 15:48:53 -0700863 if ((long)(next - val) < 0) {
Johannes Weinerf53d7ce32012-01-12 17:18:23 -0800864 switch (target) {
865 case MEM_CGROUP_TARGET_THRESH:
866 next = val + THRESHOLDS_EVENTS_TARGET;
867 break;
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700868 case MEM_CGROUP_TARGET_SOFTLIMIT:
869 next = val + SOFTLIMIT_EVENTS_TARGET;
870 break;
Johannes Weinerf53d7ce32012-01-12 17:18:23 -0800871 default:
872 break;
873 }
Chris Down871789d2019-05-14 15:46:57 -0700874 __this_cpu_write(memcg->vmstats_percpu->targets[target], next);
Johannes Weinerf53d7ce32012-01-12 17:18:23 -0800875 return true;
Johannes Weiner7a159cc2011-03-23 16:42:38 -0700876 }
Johannes Weinerf53d7ce32012-01-12 17:18:23 -0800877 return false;
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -0800878}
879
880/*
881 * Check events in order.
882 *
883 */
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -0700884static void memcg_check_events(struct mem_cgroup *memcg, struct page *page)
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -0800885{
886 /* threshold event is triggered in finer grain than soft limit */
Johannes Weinerf53d7ce32012-01-12 17:18:23 -0800887 if (unlikely(mem_cgroup_event_ratelimit(memcg,
888 MEM_CGROUP_TARGET_THRESH))) {
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700889 bool do_softlimit;
Johannes Weinerf53d7ce32012-01-12 17:18:23 -0800890
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700891 do_softlimit = mem_cgroup_event_ratelimit(memcg,
892 MEM_CGROUP_TARGET_SOFTLIMIT);
Johannes Weinerf53d7ce32012-01-12 17:18:23 -0800893 mem_cgroup_threshold(memcg);
Andrew Mortonbb4cc1a82013-09-24 15:27:40 -0700894 if (unlikely(do_softlimit))
895 mem_cgroup_update_tree(memcg, page);
Johannes Weiner0a31bc92014-08-08 14:19:22 -0700896 }
KAMEZAWA Hiroyukid2265e62010-03-10 15:22:31 -0800897}
898
Balbir Singhcf475ad2008-04-29 01:00:16 -0700899struct mem_cgroup *mem_cgroup_from_task(struct task_struct *p)
Pavel Emelianov78fb7462008-02-07 00:13:51 -0800900{
Balbir Singh31a78f22008-09-28 23:09:31 +0100901 /*
902 * mm_update_next_owner() may clear mm->owner to NULL
903 * if it races with swapoff, page migration, etc.
904 * So this can be called with p == NULL.
905 */
906 if (unlikely(!p))
907 return NULL;
908
Tejun Heo073219e2014-02-08 10:36:58 -0500909 return mem_cgroup_from_css(task_css(p, memory_cgrp_id));
Pavel Emelianov78fb7462008-02-07 00:13:51 -0800910}
Michal Hocko33398cf2015-09-08 15:01:02 -0700911EXPORT_SYMBOL(mem_cgroup_from_task);
Pavel Emelianov78fb7462008-02-07 00:13:51 -0800912
Shakeel Buttd46eb14b2018-08-17 15:46:39 -0700913/**
914 * get_mem_cgroup_from_mm: Obtain a reference on given mm_struct's memcg.
915 * @mm: mm from which memcg should be extracted. It can be NULL.
916 *
917 * Obtain a reference on mm->memcg and returns it if successful. Otherwise
918 * root_mem_cgroup is returned. However if mem_cgroup is disabled, NULL is
919 * returned.
920 */
921struct mem_cgroup *get_mem_cgroup_from_mm(struct mm_struct *mm)
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -0800922{
Shakeel Buttd46eb14b2018-08-17 15:46:39 -0700923 struct mem_cgroup *memcg;
924
925 if (mem_cgroup_disabled())
926 return NULL;
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -0700927
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -0800928 rcu_read_lock();
929 do {
Michal Hocko6f6acb02014-05-22 11:54:19 -0700930 /*
931 * Page cache insertions can happen withou an
932 * actual mm context, e.g. during disk probing
933 * on boot, loopback IO, acct() writes etc.
934 */
935 if (unlikely(!mm))
Johannes Weinerdf381972014-04-07 15:37:43 -0700936 memcg = root_mem_cgroup;
Michal Hocko6f6acb02014-05-22 11:54:19 -0700937 else {
938 memcg = mem_cgroup_from_task(rcu_dereference(mm->owner));
939 if (unlikely(!memcg))
940 memcg = root_mem_cgroup;
941 }
Roman Gushchin00d484f2019-11-15 17:34:43 -0800942 } while (!css_tryget(&memcg->css));
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -0800943 rcu_read_unlock();
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -0700944 return memcg;
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -0800945}
Shakeel Buttd46eb14b2018-08-17 15:46:39 -0700946EXPORT_SYMBOL(get_mem_cgroup_from_mm);
947
948/**
Shakeel Buttf745c6f2018-08-17 15:46:44 -0700949 * get_mem_cgroup_from_page: Obtain a reference on given page's memcg.
950 * @page: page from which memcg should be extracted.
951 *
952 * Obtain a reference on page->memcg and returns it if successful. Otherwise
953 * root_mem_cgroup is returned.
954 */
955struct mem_cgroup *get_mem_cgroup_from_page(struct page *page)
956{
957 struct mem_cgroup *memcg = page->mem_cgroup;
958
959 if (mem_cgroup_disabled())
960 return NULL;
961
962 rcu_read_lock();
963 if (!memcg || !css_tryget_online(&memcg->css))
964 memcg = root_mem_cgroup;
965 rcu_read_unlock();
966 return memcg;
967}
968EXPORT_SYMBOL(get_mem_cgroup_from_page);
969
970/**
Shakeel Buttd46eb14b2018-08-17 15:46:39 -0700971 * If current->active_memcg is non-NULL, do not fallback to current->mm->memcg.
972 */
973static __always_inline struct mem_cgroup *get_mem_cgroup_from_current(void)
974{
975 if (unlikely(current->active_memcg)) {
976 struct mem_cgroup *memcg = root_mem_cgroup;
977
978 rcu_read_lock();
979 if (css_tryget_online(&current->active_memcg->css))
980 memcg = current->active_memcg;
981 rcu_read_unlock();
982 return memcg;
983 }
984 return get_mem_cgroup_from_mm(current->mm);
985}
KAMEZAWA Hiroyuki54595fe2009-01-07 18:08:33 -0800986
Johannes Weiner56600482012-01-12 17:17:59 -0800987/**
988 * mem_cgroup_iter - iterate over memory cgroup hierarchy
989 * @root: hierarchy root
990 * @prev: previously returned memcg, NULL on first invocation
991 * @reclaim: cookie for shared reclaim walks, NULL for full walks
992 *
993 * Returns references to children of the hierarchy below @root, or
994 * @root itself, or %NULL after a full round-trip.
995 *
996 * Caller must pass the return value in @prev on subsequent
997 * invocations for reference counting, or use mem_cgroup_iter_break()
998 * to cancel a hierarchy walk before the round-trip is complete.
999 *
Honglei Wangb213b542018-03-28 16:01:12 -07001000 * Reclaimers can specify a node and a priority level in @reclaim to
Johannes Weiner56600482012-01-12 17:17:59 -08001001 * divide up the memcgs in the hierarchy among all concurrent
Honglei Wangb213b542018-03-28 16:01:12 -07001002 * reclaimers operating on the same node and priority.
Johannes Weiner56600482012-01-12 17:17:59 -08001003 */
Andrew Morton694fbc02013-09-24 15:27:37 -07001004struct mem_cgroup *mem_cgroup_iter(struct mem_cgroup *root,
Johannes Weiner56600482012-01-12 17:17:59 -08001005 struct mem_cgroup *prev,
Andrew Morton694fbc02013-09-24 15:27:37 -07001006 struct mem_cgroup_reclaim_cookie *reclaim)
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07001007{
Michal Hocko33398cf2015-09-08 15:01:02 -07001008 struct mem_cgroup_reclaim_iter *uninitialized_var(iter);
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001009 struct cgroup_subsys_state *css = NULL;
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001010 struct mem_cgroup *memcg = NULL;
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001011 struct mem_cgroup *pos = NULL;
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001012
Andrew Morton694fbc02013-09-24 15:27:37 -07001013 if (mem_cgroup_disabled())
1014 return NULL;
Johannes Weiner56600482012-01-12 17:17:59 -08001015
KAMEZAWA Hiroyuki711d3d22010-10-27 15:33:42 -07001016 if (!root)
1017 root = root_mem_cgroup;
1018
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001019 if (prev && !reclaim)
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001020 pos = prev;
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001021
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001022 if (!root->use_hierarchy && root != root_mem_cgroup) {
1023 if (prev)
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001024 goto out;
Andrew Morton694fbc02013-09-24 15:27:37 -07001025 return root;
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001026 }
1027
Michal Hocko542f85f2013-04-29 15:07:15 -07001028 rcu_read_lock();
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001029
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001030 if (reclaim) {
Mel Gormanef8f2322016-07-28 15:46:05 -07001031 struct mem_cgroup_per_node *mz;
Johannes Weiner527a5ec2012-01-12 17:17:55 -08001032
Mel Gormanef8f2322016-07-28 15:46:05 -07001033 mz = mem_cgroup_nodeinfo(root, reclaim->pgdat->node_id);
Yafang Shao9da83f32019-11-30 17:50:03 -08001034 iter = &mz->iter;
Michal Hocko5f578162013-04-29 15:07:17 -07001035
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001036 if (prev && reclaim->generation != iter->generation)
Michal Hocko542f85f2013-04-29 15:07:15 -07001037 goto out_unlock;
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001038
Vladimir Davydov6df38682015-12-29 14:54:10 -08001039 while (1) {
Jason Low4db0c3c2015-04-15 16:14:08 -07001040 pos = READ_ONCE(iter->position);
Vladimir Davydov6df38682015-12-29 14:54:10 -08001041 if (!pos || css_tryget(&pos->css))
1042 break;
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001043 /*
Vladimir Davydov6df38682015-12-29 14:54:10 -08001044 * css reference reached zero, so iter->position will
1045 * be cleared by ->css_released. However, we should not
1046 * rely on this happening soon, because ->css_released
1047 * is called from a work queue, and by busy-waiting we
1048 * might block it. So we clear iter->position right
1049 * away.
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001050 */
Vladimir Davydov6df38682015-12-29 14:54:10 -08001051 (void)cmpxchg(&iter->position, pos, NULL);
1052 }
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001053 }
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001054
1055 if (pos)
1056 css = &pos->css;
1057
1058 for (;;) {
1059 css = css_next_descendant_pre(css, &root->css);
1060 if (!css) {
1061 /*
1062 * Reclaimers share the hierarchy walk, and a
1063 * new one might jump in right at the end of
1064 * the hierarchy - make sure they see at least
1065 * one group and restart from the beginning.
1066 */
1067 if (!prev)
1068 continue;
1069 break;
1070 }
1071
1072 /*
1073 * Verify the css and acquire a reference. The root
1074 * is provided by the caller, so we know it's alive
1075 * and kicking, and don't take an extra reference.
1076 */
1077 memcg = mem_cgroup_from_css(css);
1078
1079 if (css == &root->css)
1080 break;
1081
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08001082 if (css_tryget(css))
1083 break;
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001084
1085 memcg = NULL;
1086 }
1087
1088 if (reclaim) {
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001089 /*
Vladimir Davydov6df38682015-12-29 14:54:10 -08001090 * The position could have already been updated by a competing
1091 * thread, so check that the value hasn't changed since we read
1092 * it to avoid reclaiming from the same cgroup twice.
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001093 */
Vladimir Davydov6df38682015-12-29 14:54:10 -08001094 (void)cmpxchg(&iter->position, pos, memcg);
1095
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001096 if (pos)
1097 css_put(&pos->css);
1098
1099 if (!memcg)
1100 iter->generation++;
1101 else if (!prev)
1102 reclaim->generation = iter->generation;
1103 }
1104
Michal Hocko542f85f2013-04-29 15:07:15 -07001105out_unlock:
1106 rcu_read_unlock();
Johannes Weiner5ac8fb32014-12-10 15:42:39 -08001107out:
Michal Hockoc40046f2013-04-29 15:07:14 -07001108 if (prev && prev != root)
1109 css_put(&prev->css);
1110
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001111 return memcg;
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001112}
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001113
Johannes Weiner56600482012-01-12 17:17:59 -08001114/**
1115 * mem_cgroup_iter_break - abort a hierarchy walk prematurely
1116 * @root: hierarchy root
1117 * @prev: last visited hierarchy member as returned by mem_cgroup_iter()
1118 */
1119void mem_cgroup_iter_break(struct mem_cgroup *root,
1120 struct mem_cgroup *prev)
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001121{
1122 if (!root)
1123 root = root_mem_cgroup;
1124 if (prev && prev != root)
1125 css_put(&prev->css);
1126}
1127
Miles Chen54a83d62019-08-13 15:37:28 -07001128static void __invalidate_reclaim_iterators(struct mem_cgroup *from,
1129 struct mem_cgroup *dead_memcg)
Vladimir Davydov6df38682015-12-29 14:54:10 -08001130{
Vladimir Davydov6df38682015-12-29 14:54:10 -08001131 struct mem_cgroup_reclaim_iter *iter;
Mel Gormanef8f2322016-07-28 15:46:05 -07001132 struct mem_cgroup_per_node *mz;
1133 int nid;
Vladimir Davydov6df38682015-12-29 14:54:10 -08001134
Miles Chen54a83d62019-08-13 15:37:28 -07001135 for_each_node(nid) {
1136 mz = mem_cgroup_nodeinfo(from, nid);
Yafang Shao9da83f32019-11-30 17:50:03 -08001137 iter = &mz->iter;
1138 cmpxchg(&iter->position, dead_memcg, NULL);
Vladimir Davydov6df38682015-12-29 14:54:10 -08001139 }
1140}
1141
Miles Chen54a83d62019-08-13 15:37:28 -07001142static void invalidate_reclaim_iterators(struct mem_cgroup *dead_memcg)
1143{
1144 struct mem_cgroup *memcg = dead_memcg;
1145 struct mem_cgroup *last;
1146
1147 do {
1148 __invalidate_reclaim_iterators(memcg, dead_memcg);
1149 last = memcg;
1150 } while ((memcg = parent_mem_cgroup(memcg)));
1151
1152 /*
1153 * When cgruop1 non-hierarchy mode is used,
1154 * parent_mem_cgroup() does not walk all the way up to the
1155 * cgroup root (root_mem_cgroup). So we have to handle
1156 * dead_memcg from cgroup root separately.
1157 */
1158 if (last != root_mem_cgroup)
1159 __invalidate_reclaim_iterators(root_mem_cgroup,
1160 dead_memcg);
1161}
1162
Johannes Weiner925b7672012-01-12 17:18:15 -08001163/**
Vladimir Davydov7c5f64f2016-10-07 16:57:23 -07001164 * mem_cgroup_scan_tasks - iterate over tasks of a memory cgroup hierarchy
1165 * @memcg: hierarchy root
1166 * @fn: function to call for each task
1167 * @arg: argument passed to @fn
1168 *
1169 * This function iterates over tasks attached to @memcg or to any of its
1170 * descendants and calls @fn for each task. If @fn returns a non-zero
1171 * value, the function breaks the iteration loop and returns the value.
1172 * Otherwise, it will iterate over all tasks and return 0.
1173 *
1174 * This function must not be called for the root memory cgroup.
1175 */
1176int mem_cgroup_scan_tasks(struct mem_cgroup *memcg,
1177 int (*fn)(struct task_struct *, void *), void *arg)
1178{
1179 struct mem_cgroup *iter;
1180 int ret = 0;
1181
1182 BUG_ON(memcg == root_mem_cgroup);
1183
1184 for_each_mem_cgroup_tree(iter, memcg) {
1185 struct css_task_iter it;
1186 struct task_struct *task;
1187
Tetsuo Handaf168a9a2019-07-11 21:00:20 -07001188 css_task_iter_start(&iter->css, CSS_TASK_ITER_PROCS, &it);
Vladimir Davydov7c5f64f2016-10-07 16:57:23 -07001189 while (!ret && (task = css_task_iter_next(&it)))
1190 ret = fn(task, arg);
1191 css_task_iter_end(&it);
1192 if (ret) {
1193 mem_cgroup_iter_break(memcg, iter);
1194 break;
1195 }
1196 }
1197 return ret;
1198}
1199
1200/**
Johannes Weinerdfe0e772014-12-10 15:43:43 -08001201 * mem_cgroup_page_lruvec - return lruvec for isolating/putting an LRU page
Johannes Weiner925b7672012-01-12 17:18:15 -08001202 * @page: the page
Mike Rapoportf144c392018-02-06 15:42:16 -08001203 * @pgdat: pgdat of the page
Johannes Weinerdfe0e772014-12-10 15:43:43 -08001204 *
1205 * This function is only safe when following the LRU page isolation
1206 * and putback protocol: the LRU lock must be held, and the page must
1207 * either be PageLRU() or the caller must have isolated/allocated it.
Minchan Kim3f58a822011-03-22 16:32:53 -07001208 */
Mel Gorman599d0c92016-07-28 15:45:31 -07001209struct lruvec *mem_cgroup_page_lruvec(struct page *page, struct pglist_data *pgdat)
Minchan Kim3f58a822011-03-22 16:32:53 -07001210{
Mel Gormanef8f2322016-07-28 15:46:05 -07001211 struct mem_cgroup_per_node *mz;
Johannes Weiner925b7672012-01-12 17:18:15 -08001212 struct mem_cgroup *memcg;
Hugh Dickinsbea8c152012-11-16 14:14:54 -08001213 struct lruvec *lruvec;
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08001214
Hugh Dickinsbea8c152012-11-16 14:14:54 -08001215 if (mem_cgroup_disabled()) {
Johannes Weiner867e5e12019-11-30 17:55:34 -08001216 lruvec = &pgdat->__lruvec;
Hugh Dickinsbea8c152012-11-16 14:14:54 -08001217 goto out;
1218 }
Christoph Lameterb69408e2008-10-18 20:26:14 -07001219
Johannes Weiner1306a852014-12-10 15:44:52 -08001220 memcg = page->mem_cgroup;
Hugh Dickins75121022012-03-05 14:59:18 -08001221 /*
Johannes Weinerdfe0e772014-12-10 15:43:43 -08001222 * Swapcache readahead pages are added to the LRU - and
Johannes Weiner29833312014-12-10 15:44:02 -08001223 * possibly migrated - before they are charged.
Hugh Dickins75121022012-03-05 14:59:18 -08001224 */
Johannes Weiner29833312014-12-10 15:44:02 -08001225 if (!memcg)
1226 memcg = root_mem_cgroup;
Hugh Dickins75121022012-03-05 14:59:18 -08001227
Mel Gormanef8f2322016-07-28 15:46:05 -07001228 mz = mem_cgroup_page_nodeinfo(memcg, page);
Hugh Dickinsbea8c152012-11-16 14:14:54 -08001229 lruvec = &mz->lruvec;
1230out:
1231 /*
1232 * Since a node can be onlined after the mem_cgroup was created,
1233 * we have to be prepared to initialize lruvec->zone here;
1234 * and if offlined then reonlined, we need to reinitialize it.
1235 */
Mel Gorman599d0c92016-07-28 15:45:31 -07001236 if (unlikely(lruvec->pgdat != pgdat))
1237 lruvec->pgdat = pgdat;
Hugh Dickinsbea8c152012-11-16 14:14:54 -08001238 return lruvec;
Johannes Weiner925b7672012-01-12 17:18:15 -08001239}
1240
1241/**
Hugh Dickinsfa9add62012-05-29 15:07:09 -07001242 * mem_cgroup_update_lru_size - account for adding or removing an lru page
1243 * @lruvec: mem_cgroup per zone lru vector
1244 * @lru: index of lru list the page is sitting on
Michal Hockob4536f0c82017-01-10 16:58:04 -08001245 * @zid: zone id of the accounted pages
Hugh Dickinsfa9add62012-05-29 15:07:09 -07001246 * @nr_pages: positive when adding or negative when removing
Johannes Weiner925b7672012-01-12 17:18:15 -08001247 *
Hugh Dickinsca707232016-05-19 17:12:35 -07001248 * This function must be called under lru_lock, just before a page is added
1249 * to or just after a page is removed from an lru list (that ordering being
1250 * so as to allow it to check that lru_size 0 is consistent with list_empty).
Johannes Weiner925b7672012-01-12 17:18:15 -08001251 */
Hugh Dickinsfa9add62012-05-29 15:07:09 -07001252void mem_cgroup_update_lru_size(struct lruvec *lruvec, enum lru_list lru,
Michal Hockob4536f0c82017-01-10 16:58:04 -08001253 int zid, int nr_pages)
Johannes Weiner925b7672012-01-12 17:18:15 -08001254{
Mel Gormanef8f2322016-07-28 15:46:05 -07001255 struct mem_cgroup_per_node *mz;
Hugh Dickinsfa9add62012-05-29 15:07:09 -07001256 unsigned long *lru_size;
Hugh Dickinsca707232016-05-19 17:12:35 -07001257 long size;
Johannes Weiner925b7672012-01-12 17:18:15 -08001258
1259 if (mem_cgroup_disabled())
1260 return;
1261
Mel Gormanef8f2322016-07-28 15:46:05 -07001262 mz = container_of(lruvec, struct mem_cgroup_per_node, lruvec);
Michal Hockob4536f0c82017-01-10 16:58:04 -08001263 lru_size = &mz->lru_zone_size[zid][lru];
Hugh Dickinsca707232016-05-19 17:12:35 -07001264
1265 if (nr_pages < 0)
1266 *lru_size += nr_pages;
1267
1268 size = *lru_size;
Michal Hockob4536f0c82017-01-10 16:58:04 -08001269 if (WARN_ONCE(size < 0,
1270 "%s(%p, %d, %d): lru_size %ld\n",
1271 __func__, lruvec, lru, nr_pages, size)) {
Hugh Dickinsca707232016-05-19 17:12:35 -07001272 VM_BUG_ON(1);
1273 *lru_size = 0;
1274 }
1275
1276 if (nr_pages > 0)
1277 *lru_size += nr_pages;
KAMEZAWA Hiroyuki08e552c2009-01-07 18:08:01 -08001278}
KAMEZAWA Hiroyuki544122e2009-01-07 18:08:34 -08001279
Johannes Weiner19942822011-02-01 15:52:43 -08001280/**
Johannes Weiner9d11ea92011-03-23 16:42:21 -07001281 * mem_cgroup_margin - calculate chargeable space of a memory cgroup
Wanpeng Lidad75572012-06-20 12:53:01 -07001282 * @memcg: the memory cgroup
Johannes Weiner19942822011-02-01 15:52:43 -08001283 *
Johannes Weiner9d11ea92011-03-23 16:42:21 -07001284 * Returns the maximum amount of memory @mem can be charged with, in
Johannes Weiner7ec99d62011-03-23 16:42:36 -07001285 * pages.
Johannes Weiner19942822011-02-01 15:52:43 -08001286 */
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001287static unsigned long mem_cgroup_margin(struct mem_cgroup *memcg)
Johannes Weiner19942822011-02-01 15:52:43 -08001288{
Johannes Weiner3e32cb22014-12-10 15:42:31 -08001289 unsigned long margin = 0;
1290 unsigned long count;
1291 unsigned long limit;
Johannes Weiner9d11ea92011-03-23 16:42:21 -07001292
Johannes Weiner3e32cb22014-12-10 15:42:31 -08001293 count = page_counter_read(&memcg->memory);
Roman Gushchinbbec2e12018-06-07 17:06:18 -07001294 limit = READ_ONCE(memcg->memory.max);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08001295 if (count < limit)
1296 margin = limit - count;
1297
Johannes Weiner7941d212016-01-14 15:21:23 -08001298 if (do_memsw_account()) {
Johannes Weiner3e32cb22014-12-10 15:42:31 -08001299 count = page_counter_read(&memcg->memsw);
Roman Gushchinbbec2e12018-06-07 17:06:18 -07001300 limit = READ_ONCE(memcg->memsw.max);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08001301 if (count <= limit)
1302 margin = min(margin, limit - count);
Li RongQingcbedbac2016-05-27 14:27:43 -07001303 else
1304 margin = 0;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08001305 }
1306
1307 return margin;
Johannes Weiner19942822011-02-01 15:52:43 -08001308}
1309
KAMEZAWA Hiroyuki619d0942012-03-21 16:34:23 -07001310/*
Qiang Huangbdcbb652014-06-04 16:08:21 -07001311 * A routine for checking "mem" is under move_account() or not.
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001312 *
Qiang Huangbdcbb652014-06-04 16:08:21 -07001313 * Checking a cgroup is mc.from or mc.to or under hierarchy of
1314 * moving cgroups. This is for waiting at high-memory pressure
1315 * caused by "move".
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001316 */
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001317static bool mem_cgroup_under_move(struct mem_cgroup *memcg)
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001318{
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07001319 struct mem_cgroup *from;
1320 struct mem_cgroup *to;
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001321 bool ret = false;
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07001322 /*
1323 * Unlike task_move routines, we access mc.to, mc.from not under
1324 * mutual exclusion by cgroup_mutex. Here, we take spinlock instead.
1325 */
1326 spin_lock(&mc.lock);
1327 from = mc.from;
1328 to = mc.to;
1329 if (!from)
1330 goto unlock;
Michal Hocko3e920412011-07-26 16:08:29 -07001331
Johannes Weiner2314b422014-12-10 15:44:33 -08001332 ret = mem_cgroup_is_descendant(from, memcg) ||
1333 mem_cgroup_is_descendant(to, memcg);
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07001334unlock:
1335 spin_unlock(&mc.lock);
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001336 return ret;
1337}
1338
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001339static bool mem_cgroup_wait_acct_move(struct mem_cgroup *memcg)
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001340{
1341 if (mc.moving_task && current != mc.moving_task) {
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001342 if (mem_cgroup_under_move(memcg)) {
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07001343 DEFINE_WAIT(wait);
1344 prepare_to_wait(&mc.waitq, &wait, TASK_INTERRUPTIBLE);
1345 /* moving charge context might have finished. */
1346 if (mc.moving_task)
1347 schedule();
1348 finish_wait(&mc.waitq, &wait);
1349 return true;
1350 }
1351 }
1352 return false;
1353}
1354
Johannes Weinerc8713d02019-07-11 20:55:59 -07001355static char *memory_stat_format(struct mem_cgroup *memcg)
1356{
1357 struct seq_buf s;
1358 int i;
Johannes Weiner71cd3112017-05-03 14:55:13 -07001359
Johannes Weinerc8713d02019-07-11 20:55:59 -07001360 seq_buf_init(&s, kmalloc(PAGE_SIZE, GFP_KERNEL), PAGE_SIZE);
1361 if (!s.buffer)
1362 return NULL;
1363
1364 /*
1365 * Provide statistics on the state of the memory subsystem as
1366 * well as cumulative event counters that show past behavior.
1367 *
1368 * This list is ordered following a combination of these gradients:
1369 * 1) generic big picture -> specifics and details
1370 * 2) reflecting userspace activity -> reflecting kernel heuristics
1371 *
1372 * Current memory state:
1373 */
1374
1375 seq_buf_printf(&s, "anon %llu\n",
1376 (u64)memcg_page_state(memcg, MEMCG_RSS) *
1377 PAGE_SIZE);
1378 seq_buf_printf(&s, "file %llu\n",
1379 (u64)memcg_page_state(memcg, MEMCG_CACHE) *
1380 PAGE_SIZE);
1381 seq_buf_printf(&s, "kernel_stack %llu\n",
1382 (u64)memcg_page_state(memcg, MEMCG_KERNEL_STACK_KB) *
1383 1024);
1384 seq_buf_printf(&s, "slab %llu\n",
1385 (u64)(memcg_page_state(memcg, NR_SLAB_RECLAIMABLE) +
1386 memcg_page_state(memcg, NR_SLAB_UNRECLAIMABLE)) *
1387 PAGE_SIZE);
1388 seq_buf_printf(&s, "sock %llu\n",
1389 (u64)memcg_page_state(memcg, MEMCG_SOCK) *
1390 PAGE_SIZE);
1391
1392 seq_buf_printf(&s, "shmem %llu\n",
1393 (u64)memcg_page_state(memcg, NR_SHMEM) *
1394 PAGE_SIZE);
1395 seq_buf_printf(&s, "file_mapped %llu\n",
1396 (u64)memcg_page_state(memcg, NR_FILE_MAPPED) *
1397 PAGE_SIZE);
1398 seq_buf_printf(&s, "file_dirty %llu\n",
1399 (u64)memcg_page_state(memcg, NR_FILE_DIRTY) *
1400 PAGE_SIZE);
1401 seq_buf_printf(&s, "file_writeback %llu\n",
1402 (u64)memcg_page_state(memcg, NR_WRITEBACK) *
1403 PAGE_SIZE);
1404
1405 /*
1406 * TODO: We should eventually replace our own MEMCG_RSS_HUGE counter
1407 * with the NR_ANON_THP vm counter, but right now it's a pain in the
1408 * arse because it requires migrating the work out of rmap to a place
1409 * where the page->mem_cgroup is set up and stable.
1410 */
1411 seq_buf_printf(&s, "anon_thp %llu\n",
1412 (u64)memcg_page_state(memcg, MEMCG_RSS_HUGE) *
1413 PAGE_SIZE);
1414
1415 for (i = 0; i < NR_LRU_LISTS; i++)
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08001416 seq_buf_printf(&s, "%s %llu\n", lru_list_name(i),
Johannes Weinerc8713d02019-07-11 20:55:59 -07001417 (u64)memcg_page_state(memcg, NR_LRU_BASE + i) *
1418 PAGE_SIZE);
1419
1420 seq_buf_printf(&s, "slab_reclaimable %llu\n",
1421 (u64)memcg_page_state(memcg, NR_SLAB_RECLAIMABLE) *
1422 PAGE_SIZE);
1423 seq_buf_printf(&s, "slab_unreclaimable %llu\n",
1424 (u64)memcg_page_state(memcg, NR_SLAB_UNRECLAIMABLE) *
1425 PAGE_SIZE);
1426
1427 /* Accumulated memory events */
1428
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08001429 seq_buf_printf(&s, "%s %lu\n", vm_event_name(PGFAULT),
1430 memcg_events(memcg, PGFAULT));
1431 seq_buf_printf(&s, "%s %lu\n", vm_event_name(PGMAJFAULT),
1432 memcg_events(memcg, PGMAJFAULT));
Johannes Weinerc8713d02019-07-11 20:55:59 -07001433
1434 seq_buf_printf(&s, "workingset_refault %lu\n",
1435 memcg_page_state(memcg, WORKINGSET_REFAULT));
1436 seq_buf_printf(&s, "workingset_activate %lu\n",
1437 memcg_page_state(memcg, WORKINGSET_ACTIVATE));
1438 seq_buf_printf(&s, "workingset_nodereclaim %lu\n",
1439 memcg_page_state(memcg, WORKINGSET_NODERECLAIM));
1440
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08001441 seq_buf_printf(&s, "%s %lu\n", vm_event_name(PGREFILL),
1442 memcg_events(memcg, PGREFILL));
Johannes Weinerc8713d02019-07-11 20:55:59 -07001443 seq_buf_printf(&s, "pgscan %lu\n",
1444 memcg_events(memcg, PGSCAN_KSWAPD) +
1445 memcg_events(memcg, PGSCAN_DIRECT));
1446 seq_buf_printf(&s, "pgsteal %lu\n",
1447 memcg_events(memcg, PGSTEAL_KSWAPD) +
1448 memcg_events(memcg, PGSTEAL_DIRECT));
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08001449 seq_buf_printf(&s, "%s %lu\n", vm_event_name(PGACTIVATE),
1450 memcg_events(memcg, PGACTIVATE));
1451 seq_buf_printf(&s, "%s %lu\n", vm_event_name(PGDEACTIVATE),
1452 memcg_events(memcg, PGDEACTIVATE));
1453 seq_buf_printf(&s, "%s %lu\n", vm_event_name(PGLAZYFREE),
1454 memcg_events(memcg, PGLAZYFREE));
1455 seq_buf_printf(&s, "%s %lu\n", vm_event_name(PGLAZYFREED),
1456 memcg_events(memcg, PGLAZYFREED));
Johannes Weinerc8713d02019-07-11 20:55:59 -07001457
1458#ifdef CONFIG_TRANSPARENT_HUGEPAGE
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08001459 seq_buf_printf(&s, "%s %lu\n", vm_event_name(THP_FAULT_ALLOC),
Johannes Weinerc8713d02019-07-11 20:55:59 -07001460 memcg_events(memcg, THP_FAULT_ALLOC));
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08001461 seq_buf_printf(&s, "%s %lu\n", vm_event_name(THP_COLLAPSE_ALLOC),
Johannes Weinerc8713d02019-07-11 20:55:59 -07001462 memcg_events(memcg, THP_COLLAPSE_ALLOC));
1463#endif /* CONFIG_TRANSPARENT_HUGEPAGE */
1464
1465 /* The above should easily fit into one page */
1466 WARN_ON_ONCE(seq_buf_has_overflowed(&s));
1467
1468 return s.buffer;
1469}
Johannes Weiner71cd3112017-05-03 14:55:13 -07001470
Sha Zhengju58cf1882013-02-22 16:32:05 -08001471#define K(x) ((x) << (PAGE_SHIFT-10))
Balbir Singhe2224322009-04-02 16:57:39 -07001472/**
yuzhoujianf0c867d2018-12-28 00:36:10 -08001473 * mem_cgroup_print_oom_context: Print OOM information relevant to
1474 * memory controller.
Balbir Singhe2224322009-04-02 16:57:39 -07001475 * @memcg: The memory cgroup that went over limit
1476 * @p: Task that is going to be killed
1477 *
1478 * NOTE: @memcg and @p's mem_cgroup can be different when hierarchy is
1479 * enabled
1480 */
yuzhoujianf0c867d2018-12-28 00:36:10 -08001481void mem_cgroup_print_oom_context(struct mem_cgroup *memcg, struct task_struct *p)
1482{
1483 rcu_read_lock();
1484
1485 if (memcg) {
1486 pr_cont(",oom_memcg=");
1487 pr_cont_cgroup_path(memcg->css.cgroup);
1488 } else
1489 pr_cont(",global_oom");
1490 if (p) {
1491 pr_cont(",task_memcg=");
1492 pr_cont_cgroup_path(task_cgroup(p, memory_cgrp_id));
1493 }
1494 rcu_read_unlock();
1495}
1496
1497/**
1498 * mem_cgroup_print_oom_meminfo: Print OOM memory information relevant to
1499 * memory controller.
1500 * @memcg: The memory cgroup that went over limit
1501 */
1502void mem_cgroup_print_oom_meminfo(struct mem_cgroup *memcg)
Balbir Singhe2224322009-04-02 16:57:39 -07001503{
Johannes Weinerc8713d02019-07-11 20:55:59 -07001504 char *buf;
Balbir Singhe2224322009-04-02 16:57:39 -07001505
Johannes Weiner3e32cb22014-12-10 15:42:31 -08001506 pr_info("memory: usage %llukB, limit %llukB, failcnt %lu\n",
1507 K((u64)page_counter_read(&memcg->memory)),
Roman Gushchinbbec2e12018-06-07 17:06:18 -07001508 K((u64)memcg->memory.max), memcg->memory.failcnt);
Johannes Weinerc8713d02019-07-11 20:55:59 -07001509 if (cgroup_subsys_on_dfl(memory_cgrp_subsys))
1510 pr_info("swap: usage %llukB, limit %llukB, failcnt %lu\n",
1511 K((u64)page_counter_read(&memcg->swap)),
1512 K((u64)memcg->swap.max), memcg->swap.failcnt);
1513 else {
1514 pr_info("memory+swap: usage %llukB, limit %llukB, failcnt %lu\n",
1515 K((u64)page_counter_read(&memcg->memsw)),
1516 K((u64)memcg->memsw.max), memcg->memsw.failcnt);
1517 pr_info("kmem: usage %llukB, limit %llukB, failcnt %lu\n",
1518 K((u64)page_counter_read(&memcg->kmem)),
1519 K((u64)memcg->kmem.max), memcg->kmem.failcnt);
Sha Zhengju58cf1882013-02-22 16:32:05 -08001520 }
Johannes Weinerc8713d02019-07-11 20:55:59 -07001521
1522 pr_info("Memory cgroup stats for ");
1523 pr_cont_cgroup_path(memcg->css.cgroup);
1524 pr_cont(":");
1525 buf = memory_stat_format(memcg);
1526 if (!buf)
1527 return;
1528 pr_info("%s", buf);
1529 kfree(buf);
Balbir Singhe2224322009-04-02 16:57:39 -07001530}
1531
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07001532/*
David Rientjesa63d83f2010-08-09 17:19:46 -07001533 * Return the memory (and swap, if configured) limit for a memcg.
1534 */
Roman Gushchinbbec2e12018-06-07 17:06:18 -07001535unsigned long mem_cgroup_get_max(struct mem_cgroup *memcg)
David Rientjesa63d83f2010-08-09 17:19:46 -07001536{
Roman Gushchinbbec2e12018-06-07 17:06:18 -07001537 unsigned long max;
David Rientjesa63d83f2010-08-09 17:19:46 -07001538
Roman Gushchinbbec2e12018-06-07 17:06:18 -07001539 max = memcg->memory.max;
Michal Hocko9a5a8f12012-11-16 14:14:49 -08001540 if (mem_cgroup_swappiness(memcg)) {
Roman Gushchinbbec2e12018-06-07 17:06:18 -07001541 unsigned long memsw_max;
1542 unsigned long swap_max;
Michal Hocko9a5a8f12012-11-16 14:14:49 -08001543
Roman Gushchinbbec2e12018-06-07 17:06:18 -07001544 memsw_max = memcg->memsw.max;
1545 swap_max = memcg->swap.max;
1546 swap_max = min(swap_max, (unsigned long)total_swap_pages);
1547 max = min(max + swap_max, memsw_max);
Michal Hocko9a5a8f12012-11-16 14:14:49 -08001548 }
Roman Gushchinbbec2e12018-06-07 17:06:18 -07001549 return max;
David Rientjesa63d83f2010-08-09 17:19:46 -07001550}
1551
Chris Down9783aa92019-10-06 17:58:32 -07001552unsigned long mem_cgroup_size(struct mem_cgroup *memcg)
1553{
1554 return page_counter_read(&memcg->memory);
1555}
1556
Johannes Weinerb6e6edc2016-03-17 14:20:28 -07001557static bool mem_cgroup_out_of_memory(struct mem_cgroup *memcg, gfp_t gfp_mask,
David Rientjes19965462012-12-11 16:00:26 -08001558 int order)
David Rientjes9cbb78b2012-07-31 16:43:44 -07001559{
David Rientjes6e0fc462015-09-08 15:00:36 -07001560 struct oom_control oc = {
1561 .zonelist = NULL,
1562 .nodemask = NULL,
Vladimir Davydov2a966b72016-07-26 15:22:33 -07001563 .memcg = memcg,
David Rientjes6e0fc462015-09-08 15:00:36 -07001564 .gfp_mask = gfp_mask,
1565 .order = order,
David Rientjes6e0fc462015-09-08 15:00:36 -07001566 };
Vladimir Davydov7c5f64f2016-10-07 16:57:23 -07001567 bool ret;
David Rientjes9cbb78b2012-07-31 16:43:44 -07001568
Tetsuo Handa7775fac2019-03-05 15:46:47 -08001569 if (mutex_lock_killable(&oom_lock))
1570 return true;
1571 /*
1572 * A few threads which were not waiting at mutex_lock_killable() can
1573 * fail to bail out. Therefore, check again after holding oom_lock.
1574 */
1575 ret = should_force_charge() || out_of_memory(&oc);
Johannes Weinerdc564012015-06-24 16:57:19 -07001576 mutex_unlock(&oom_lock);
Vladimir Davydov7c5f64f2016-10-07 16:57:23 -07001577 return ret;
David Rientjes9cbb78b2012-07-31 16:43:44 -07001578}
1579
Andrew Morton0608f432013-09-24 15:27:41 -07001580static int mem_cgroup_soft_reclaim(struct mem_cgroup *root_memcg,
Mel Gormanef8f2322016-07-28 15:46:05 -07001581 pg_data_t *pgdat,
Andrew Morton0608f432013-09-24 15:27:41 -07001582 gfp_t gfp_mask,
1583 unsigned long *total_scanned)
Balbir Singh6d61ef42009-01-07 18:08:06 -08001584{
Andrew Morton0608f432013-09-24 15:27:41 -07001585 struct mem_cgroup *victim = NULL;
1586 int total = 0;
1587 int loop = 0;
1588 unsigned long excess;
1589 unsigned long nr_scanned;
1590 struct mem_cgroup_reclaim_cookie reclaim = {
Mel Gormanef8f2322016-07-28 15:46:05 -07001591 .pgdat = pgdat,
Andrew Morton0608f432013-09-24 15:27:41 -07001592 };
Johannes Weiner9d11ea92011-03-23 16:42:21 -07001593
Johannes Weiner3e32cb22014-12-10 15:42:31 -08001594 excess = soft_limit_excess(root_memcg);
Balbir Singh6d61ef42009-01-07 18:08:06 -08001595
Andrew Morton0608f432013-09-24 15:27:41 -07001596 while (1) {
1597 victim = mem_cgroup_iter(root_memcg, victim, &reclaim);
1598 if (!victim) {
1599 loop++;
1600 if (loop >= 2) {
1601 /*
1602 * If we have not been able to reclaim
1603 * anything, it might because there are
1604 * no reclaimable pages under this hierarchy
1605 */
1606 if (!total)
1607 break;
1608 /*
1609 * We want to do more targeted reclaim.
1610 * excess >> 2 is not to excessive so as to
1611 * reclaim too much, nor too less that we keep
1612 * coming back to reclaim from this cgroup
1613 */
1614 if (total >= (excess >> 2) ||
1615 (loop > MEM_CGROUP_MAX_RECLAIM_LOOPS))
1616 break;
1617 }
1618 continue;
1619 }
Mel Gormana9dd0a82016-07-28 15:46:02 -07001620 total += mem_cgroup_shrink_node(victim, gfp_mask, false,
Mel Gormanef8f2322016-07-28 15:46:05 -07001621 pgdat, &nr_scanned);
Andrew Morton0608f432013-09-24 15:27:41 -07001622 *total_scanned += nr_scanned;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08001623 if (!soft_limit_excess(root_memcg))
Andrew Morton0608f432013-09-24 15:27:41 -07001624 break;
Balbir Singh6d61ef42009-01-07 18:08:06 -08001625 }
Andrew Morton0608f432013-09-24 15:27:41 -07001626 mem_cgroup_iter_break(root_memcg, victim);
1627 return total;
Balbir Singh6d61ef42009-01-07 18:08:06 -08001628}
1629
Johannes Weiner0056f4e2013-10-31 16:34:14 -07001630#ifdef CONFIG_LOCKDEP
1631static struct lockdep_map memcg_oom_lock_dep_map = {
1632 .name = "memcg_oom_lock",
1633};
1634#endif
1635
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001636static DEFINE_SPINLOCK(memcg_oom_lock);
1637
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001638/*
1639 * Check OOM-Killer is already running under our hierarchy.
1640 * If someone is running, return false.
1641 */
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001642static bool mem_cgroup_oom_trylock(struct mem_cgroup *memcg)
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001643{
Michal Hocko79dfdac2011-07-26 16:08:23 -07001644 struct mem_cgroup *iter, *failed = NULL;
KAMEZAWA Hiroyukia636b322009-01-07 18:08:08 -08001645
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001646 spin_lock(&memcg_oom_lock);
1647
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001648 for_each_mem_cgroup_tree(iter, memcg) {
Johannes Weiner23751be2011-08-25 15:59:16 -07001649 if (iter->oom_lock) {
Michal Hocko79dfdac2011-07-26 16:08:23 -07001650 /*
1651 * this subtree of our hierarchy is already locked
1652 * so we cannot give a lock.
1653 */
Michal Hocko79dfdac2011-07-26 16:08:23 -07001654 failed = iter;
Johannes Weiner9f3a0d02012-01-12 17:17:48 -08001655 mem_cgroup_iter_break(memcg, iter);
1656 break;
Johannes Weiner23751be2011-08-25 15:59:16 -07001657 } else
1658 iter->oom_lock = true;
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001659 }
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001660
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001661 if (failed) {
1662 /*
1663 * OK, we failed to lock the whole subtree so we have
1664 * to clean up what we set up to the failing subtree
1665 */
1666 for_each_mem_cgroup_tree(iter, memcg) {
1667 if (iter == failed) {
1668 mem_cgroup_iter_break(memcg, iter);
1669 break;
1670 }
1671 iter->oom_lock = false;
Michal Hocko79dfdac2011-07-26 16:08:23 -07001672 }
Johannes Weiner0056f4e2013-10-31 16:34:14 -07001673 } else
1674 mutex_acquire(&memcg_oom_lock_dep_map, 0, 1, _RET_IP_);
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001675
1676 spin_unlock(&memcg_oom_lock);
1677
1678 return !failed;
KAMEZAWA Hiroyukia636b322009-01-07 18:08:08 -08001679}
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -07001680
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001681static void mem_cgroup_oom_unlock(struct mem_cgroup *memcg)
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -07001682{
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07001683 struct mem_cgroup *iter;
1684
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001685 spin_lock(&memcg_oom_lock);
Qian Cai5facae42019-09-19 12:09:40 -04001686 mutex_release(&memcg_oom_lock_dep_map, _RET_IP_);
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001687 for_each_mem_cgroup_tree(iter, memcg)
Michal Hocko79dfdac2011-07-26 16:08:23 -07001688 iter->oom_lock = false;
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001689 spin_unlock(&memcg_oom_lock);
Michal Hocko79dfdac2011-07-26 16:08:23 -07001690}
1691
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001692static void mem_cgroup_mark_under_oom(struct mem_cgroup *memcg)
Michal Hocko79dfdac2011-07-26 16:08:23 -07001693{
1694 struct mem_cgroup *iter;
1695
Tejun Heoc2b42d32015-06-24 16:58:23 -07001696 spin_lock(&memcg_oom_lock);
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001697 for_each_mem_cgroup_tree(iter, memcg)
Tejun Heoc2b42d32015-06-24 16:58:23 -07001698 iter->under_oom++;
1699 spin_unlock(&memcg_oom_lock);
Michal Hocko79dfdac2011-07-26 16:08:23 -07001700}
1701
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001702static void mem_cgroup_unmark_under_oom(struct mem_cgroup *memcg)
Michal Hocko79dfdac2011-07-26 16:08:23 -07001703{
1704 struct mem_cgroup *iter;
1705
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001706 /*
1707 * When a new child is created while the hierarchy is under oom,
Tejun Heoc2b42d32015-06-24 16:58:23 -07001708 * mem_cgroup_oom_lock() may not be called. Watch for underflow.
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001709 */
Tejun Heoc2b42d32015-06-24 16:58:23 -07001710 spin_lock(&memcg_oom_lock);
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001711 for_each_mem_cgroup_tree(iter, memcg)
Tejun Heoc2b42d32015-06-24 16:58:23 -07001712 if (iter->under_oom > 0)
1713 iter->under_oom--;
1714 spin_unlock(&memcg_oom_lock);
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -07001715}
1716
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001717static DECLARE_WAIT_QUEUE_HEAD(memcg_oom_waitq);
1718
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001719struct oom_wait_info {
Hugh Dickinsd79154b2012-03-21 16:34:18 -07001720 struct mem_cgroup *memcg;
Ingo Molnarac6424b2017-06-20 12:06:13 +02001721 wait_queue_entry_t wait;
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001722};
1723
Ingo Molnarac6424b2017-06-20 12:06:13 +02001724static int memcg_oom_wake_function(wait_queue_entry_t *wait,
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001725 unsigned mode, int sync, void *arg)
1726{
Hugh Dickinsd79154b2012-03-21 16:34:18 -07001727 struct mem_cgroup *wake_memcg = (struct mem_cgroup *)arg;
1728 struct mem_cgroup *oom_wait_memcg;
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001729 struct oom_wait_info *oom_wait_info;
1730
1731 oom_wait_info = container_of(wait, struct oom_wait_info, wait);
Hugh Dickinsd79154b2012-03-21 16:34:18 -07001732 oom_wait_memcg = oom_wait_info->memcg;
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001733
Johannes Weiner2314b422014-12-10 15:44:33 -08001734 if (!mem_cgroup_is_descendant(wake_memcg, oom_wait_memcg) &&
1735 !mem_cgroup_is_descendant(oom_wait_memcg, wake_memcg))
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001736 return 0;
KAMEZAWA Hiroyukidc98df52010-05-26 14:42:36 -07001737 return autoremove_wake_function(wait, mode, sync, arg);
1738}
1739
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001740static void memcg_oom_recover(struct mem_cgroup *memcg)
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001741{
Tejun Heoc2b42d32015-06-24 16:58:23 -07001742 /*
1743 * For the following lockless ->under_oom test, the only required
1744 * guarantee is that it must see the state asserted by an OOM when
1745 * this function is called as a result of userland actions
1746 * triggered by the notification of the OOM. This is trivially
1747 * achieved by invoking mem_cgroup_mark_under_oom() before
1748 * triggering notification.
1749 */
1750 if (memcg && memcg->under_oom)
Tejun Heof4b90b702015-06-24 16:58:21 -07001751 __wake_up(&memcg_oom_waitq, TASK_NORMAL, 0, memcg);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001752}
1753
Michal Hocko29ef6802018-08-17 15:47:11 -07001754enum oom_status {
1755 OOM_SUCCESS,
1756 OOM_FAILED,
1757 OOM_ASYNC,
1758 OOM_SKIPPED
1759};
1760
1761static enum oom_status mem_cgroup_oom(struct mem_cgroup *memcg, gfp_t mask, int order)
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001762{
Michal Hocko7056d3a2018-12-28 00:39:57 -08001763 enum oom_status ret;
1764 bool locked;
1765
Michal Hocko29ef6802018-08-17 15:47:11 -07001766 if (order > PAGE_ALLOC_COSTLY_ORDER)
1767 return OOM_SKIPPED;
1768
Roman Gushchin7a1adfd2018-10-26 15:09:48 -07001769 memcg_memory_event(memcg, MEMCG_OOM);
1770
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001771 /*
Johannes Weiner49426422013-10-16 13:46:59 -07001772 * We are in the middle of the charge context here, so we
1773 * don't want to block when potentially sitting on a callstack
1774 * that holds all kinds of filesystem and mm locks.
1775 *
Michal Hocko29ef6802018-08-17 15:47:11 -07001776 * cgroup1 allows disabling the OOM killer and waiting for outside
1777 * handling until the charge can succeed; remember the context and put
1778 * the task to sleep at the end of the page fault when all locks are
1779 * released.
Johannes Weiner49426422013-10-16 13:46:59 -07001780 *
Michal Hocko29ef6802018-08-17 15:47:11 -07001781 * On the other hand, in-kernel OOM killer allows for an async victim
1782 * memory reclaim (oom_reaper) and that means that we are not solely
1783 * relying on the oom victim to make a forward progress and we can
1784 * invoke the oom killer here.
1785 *
1786 * Please note that mem_cgroup_out_of_memory might fail to find a
1787 * victim and then we have to bail out from the charge path.
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001788 */
Michal Hocko29ef6802018-08-17 15:47:11 -07001789 if (memcg->oom_kill_disable) {
1790 if (!current->in_user_fault)
1791 return OOM_SKIPPED;
1792 css_get(&memcg->css);
1793 current->memcg_in_oom = memcg;
1794 current->memcg_oom_gfp_mask = mask;
1795 current->memcg_oom_order = order;
1796
1797 return OOM_ASYNC;
1798 }
1799
Michal Hocko7056d3a2018-12-28 00:39:57 -08001800 mem_cgroup_mark_under_oom(memcg);
Michal Hocko29ef6802018-08-17 15:47:11 -07001801
Michal Hocko7056d3a2018-12-28 00:39:57 -08001802 locked = mem_cgroup_oom_trylock(memcg);
1803
1804 if (locked)
1805 mem_cgroup_oom_notify(memcg);
1806
1807 mem_cgroup_unmark_under_oom(memcg);
1808 if (mem_cgroup_out_of_memory(memcg, mask, order))
1809 ret = OOM_SUCCESS;
1810 else
1811 ret = OOM_FAILED;
1812
1813 if (locked)
1814 mem_cgroup_oom_unlock(memcg);
1815
1816 return ret;
Johannes Weiner49426422013-10-16 13:46:59 -07001817}
1818
1819/**
1820 * mem_cgroup_oom_synchronize - complete memcg OOM handling
1821 * @handle: actually kill/wait or just clean up the OOM state
1822 *
1823 * This has to be called at the end of a page fault if the memcg OOM
1824 * handler was enabled.
1825 *
1826 * Memcg supports userspace OOM handling where failed allocations must
1827 * sleep on a waitqueue until the userspace task resolves the
1828 * situation. Sleeping directly in the charge context with all kinds
1829 * of locks held is not a good idea, instead we remember an OOM state
1830 * in the task and mem_cgroup_oom_synchronize() has to be called at
1831 * the end of the page fault to complete the OOM handling.
1832 *
1833 * Returns %true if an ongoing memcg OOM situation was detected and
1834 * completed, %false otherwise.
1835 */
1836bool mem_cgroup_oom_synchronize(bool handle)
1837{
Tejun Heo626ebc42015-11-05 18:46:09 -08001838 struct mem_cgroup *memcg = current->memcg_in_oom;
Johannes Weiner49426422013-10-16 13:46:59 -07001839 struct oom_wait_info owait;
1840 bool locked;
1841
1842 /* OOM is global, do not handle */
1843 if (!memcg)
1844 return false;
1845
Vladimir Davydov7c5f64f2016-10-07 16:57:23 -07001846 if (!handle)
Johannes Weiner49426422013-10-16 13:46:59 -07001847 goto cleanup;
1848
1849 owait.memcg = memcg;
1850 owait.wait.flags = 0;
1851 owait.wait.func = memcg_oom_wake_function;
1852 owait.wait.private = current;
Ingo Molnar2055da92017-06-20 12:06:46 +02001853 INIT_LIST_HEAD(&owait.wait.entry);
Johannes Weiner49426422013-10-16 13:46:59 -07001854
1855 prepare_to_wait(&memcg_oom_waitq, &owait.wait, TASK_KILLABLE);
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001856 mem_cgroup_mark_under_oom(memcg);
1857
1858 locked = mem_cgroup_oom_trylock(memcg);
1859
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001860 if (locked)
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07001861 mem_cgroup_oom_notify(memcg);
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001862
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001863 if (locked && !memcg->oom_kill_disable) {
1864 mem_cgroup_unmark_under_oom(memcg);
Johannes Weiner49426422013-10-16 13:46:59 -07001865 finish_wait(&memcg_oom_waitq, &owait.wait);
Tejun Heo626ebc42015-11-05 18:46:09 -08001866 mem_cgroup_out_of_memory(memcg, current->memcg_oom_gfp_mask,
1867 current->memcg_oom_order);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07001868 } else {
Johannes Weiner3812c8c2013-09-12 15:13:44 -07001869 schedule();
Johannes Weiner49426422013-10-16 13:46:59 -07001870 mem_cgroup_unmark_under_oom(memcg);
1871 finish_wait(&memcg_oom_waitq, &owait.wait);
1872 }
1873
1874 if (locked) {
Johannes Weinerfb2a6fc2013-09-12 15:13:43 -07001875 mem_cgroup_oom_unlock(memcg);
1876 /*
1877 * There is no guarantee that an OOM-lock contender
1878 * sees the wakeups triggered by the OOM kill
1879 * uncharges. Wake any sleepers explicitely.
1880 */
1881 memcg_oom_recover(memcg);
1882 }
Johannes Weiner49426422013-10-16 13:46:59 -07001883cleanup:
Tejun Heo626ebc42015-11-05 18:46:09 -08001884 current->memcg_in_oom = NULL;
Johannes Weiner3812c8c2013-09-12 15:13:44 -07001885 css_put(&memcg->css);
KAMEZAWA Hiroyuki867578c2010-03-10 15:22:39 -08001886 return true;
KAMEZAWA Hiroyuki0b7f5692009-04-02 16:57:38 -07001887}
1888
Johannes Weinerd7365e72014-10-29 14:50:48 -07001889/**
Roman Gushchin3d8b38e2018-08-21 21:53:54 -07001890 * mem_cgroup_get_oom_group - get a memory cgroup to clean up after OOM
1891 * @victim: task to be killed by the OOM killer
1892 * @oom_domain: memcg in case of memcg OOM, NULL in case of system-wide OOM
1893 *
1894 * Returns a pointer to a memory cgroup, which has to be cleaned up
1895 * by killing all belonging OOM-killable tasks.
1896 *
1897 * Caller has to call mem_cgroup_put() on the returned non-NULL memcg.
1898 */
1899struct mem_cgroup *mem_cgroup_get_oom_group(struct task_struct *victim,
1900 struct mem_cgroup *oom_domain)
1901{
1902 struct mem_cgroup *oom_group = NULL;
1903 struct mem_cgroup *memcg;
1904
1905 if (!cgroup_subsys_on_dfl(memory_cgrp_subsys))
1906 return NULL;
1907
1908 if (!oom_domain)
1909 oom_domain = root_mem_cgroup;
1910
1911 rcu_read_lock();
1912
1913 memcg = mem_cgroup_from_task(victim);
1914 if (memcg == root_mem_cgroup)
1915 goto out;
1916
1917 /*
1918 * Traverse the memory cgroup hierarchy from the victim task's
1919 * cgroup up to the OOMing cgroup (or root) to find the
1920 * highest-level memory cgroup with oom.group set.
1921 */
1922 for (; memcg; memcg = parent_mem_cgroup(memcg)) {
1923 if (memcg->oom_group)
1924 oom_group = memcg;
1925
1926 if (memcg == oom_domain)
1927 break;
1928 }
1929
1930 if (oom_group)
1931 css_get(&oom_group->css);
1932out:
1933 rcu_read_unlock();
1934
1935 return oom_group;
1936}
1937
1938void mem_cgroup_print_oom_group(struct mem_cgroup *memcg)
1939{
1940 pr_info("Tasks in ");
1941 pr_cont_cgroup_path(memcg->css.cgroup);
1942 pr_cont(" are going to be killed due to memory.oom.group set\n");
1943}
1944
1945/**
Johannes Weiner81f8c3a2016-03-15 14:57:04 -07001946 * lock_page_memcg - lock a page->mem_cgroup binding
1947 * @page: the page
KAMEZAWA Hiroyuki32047e22010-10-27 15:33:40 -07001948 *
Johannes Weiner81f8c3a2016-03-15 14:57:04 -07001949 * This function protects unlocked LRU pages from being moved to
Johannes Weiner739f79f2017-08-18 15:15:48 -07001950 * another cgroup.
1951 *
1952 * It ensures lifetime of the returned memcg. Caller is responsible
1953 * for the lifetime of the page; __unlock_page_memcg() is available
1954 * when @page might get freed inside the locked section.
Balbir Singhd69b0422009-06-17 16:26:34 -07001955 */
Johannes Weiner739f79f2017-08-18 15:15:48 -07001956struct mem_cgroup *lock_page_memcg(struct page *page)
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07001957{
1958 struct mem_cgroup *memcg;
Johannes Weiner6de22612015-02-11 15:25:01 -08001959 unsigned long flags;
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07001960
Johannes Weiner6de22612015-02-11 15:25:01 -08001961 /*
1962 * The RCU lock is held throughout the transaction. The fast
1963 * path can get away without acquiring the memcg->move_lock
1964 * because page moving starts with an RCU grace period.
Johannes Weiner739f79f2017-08-18 15:15:48 -07001965 *
1966 * The RCU lock also protects the memcg from being freed when
1967 * the page state that is going to change is the only thing
1968 * preventing the page itself from being freed. E.g. writeback
1969 * doesn't hold a page reference and relies on PG_writeback to
1970 * keep off truncation, migration and so forth.
1971 */
Johannes Weinerd7365e72014-10-29 14:50:48 -07001972 rcu_read_lock();
1973
1974 if (mem_cgroup_disabled())
Johannes Weiner739f79f2017-08-18 15:15:48 -07001975 return NULL;
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07001976again:
Johannes Weiner1306a852014-12-10 15:44:52 -08001977 memcg = page->mem_cgroup;
Johannes Weiner29833312014-12-10 15:44:02 -08001978 if (unlikely(!memcg))
Johannes Weiner739f79f2017-08-18 15:15:48 -07001979 return NULL;
Johannes Weinerd7365e72014-10-29 14:50:48 -07001980
Qiang Huangbdcbb652014-06-04 16:08:21 -07001981 if (atomic_read(&memcg->moving_account) <= 0)
Johannes Weiner739f79f2017-08-18 15:15:48 -07001982 return memcg;
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07001983
Johannes Weiner6de22612015-02-11 15:25:01 -08001984 spin_lock_irqsave(&memcg->move_lock, flags);
Johannes Weiner1306a852014-12-10 15:44:52 -08001985 if (memcg != page->mem_cgroup) {
Johannes Weiner6de22612015-02-11 15:25:01 -08001986 spin_unlock_irqrestore(&memcg->move_lock, flags);
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07001987 goto again;
1988 }
Johannes Weiner6de22612015-02-11 15:25:01 -08001989
1990 /*
1991 * When charge migration first begins, we can have locked and
1992 * unlocked page stat updates happening concurrently. Track
Johannes Weiner81f8c3a2016-03-15 14:57:04 -07001993 * the task who has the lock for unlock_page_memcg().
Johannes Weiner6de22612015-02-11 15:25:01 -08001994 */
1995 memcg->move_lock_task = current;
1996 memcg->move_lock_flags = flags;
Johannes Weinerd7365e72014-10-29 14:50:48 -07001997
Johannes Weiner739f79f2017-08-18 15:15:48 -07001998 return memcg;
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07001999}
Johannes Weiner81f8c3a2016-03-15 14:57:04 -07002000EXPORT_SYMBOL(lock_page_memcg);
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07002001
Johannes Weinerd7365e72014-10-29 14:50:48 -07002002/**
Johannes Weiner739f79f2017-08-18 15:15:48 -07002003 * __unlock_page_memcg - unlock and unpin a memcg
2004 * @memcg: the memcg
2005 *
2006 * Unlock and unpin a memcg returned by lock_page_memcg().
Johannes Weinerd7365e72014-10-29 14:50:48 -07002007 */
Johannes Weiner739f79f2017-08-18 15:15:48 -07002008void __unlock_page_memcg(struct mem_cgroup *memcg)
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07002009{
Johannes Weiner6de22612015-02-11 15:25:01 -08002010 if (memcg && memcg->move_lock_task == current) {
2011 unsigned long flags = memcg->move_lock_flags;
2012
2013 memcg->move_lock_task = NULL;
2014 memcg->move_lock_flags = 0;
2015
2016 spin_unlock_irqrestore(&memcg->move_lock, flags);
2017 }
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07002018
Johannes Weinerd7365e72014-10-29 14:50:48 -07002019 rcu_read_unlock();
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07002020}
Johannes Weiner739f79f2017-08-18 15:15:48 -07002021
2022/**
2023 * unlock_page_memcg - unlock a page->mem_cgroup binding
2024 * @page: the page
2025 */
2026void unlock_page_memcg(struct page *page)
2027{
2028 __unlock_page_memcg(page->mem_cgroup);
2029}
Johannes Weiner81f8c3a2016-03-15 14:57:04 -07002030EXPORT_SYMBOL(unlock_page_memcg);
KAMEZAWA Hiroyuki89c06bd2012-03-21 16:34:25 -07002031
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002032struct memcg_stock_pcp {
2033 struct mem_cgroup *cached; /* this never be root cgroup */
Johannes Weiner11c9ea42011-03-23 16:42:34 -07002034 unsigned int nr_pages;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002035 struct work_struct work;
KAMEZAWA Hiroyuki26fe6162011-06-15 15:08:45 -07002036 unsigned long flags;
Kirill A. Shutemova0db00f2012-05-29 15:06:56 -07002037#define FLUSHING_CACHED_CHARGE 0
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002038};
2039static DEFINE_PER_CPU(struct memcg_stock_pcp, memcg_stock);
Michal Hocko9f50fad2011-08-09 11:56:26 +02002040static DEFINE_MUTEX(percpu_charge_mutex);
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002041
Suleiman Souhlala0956d52012-12-18 14:21:36 -08002042/**
2043 * consume_stock: Try to consume stocked charge on this cpu.
2044 * @memcg: memcg to consume from.
2045 * @nr_pages: how many pages to charge.
2046 *
2047 * The charges will only happen if @memcg matches the current cpu's memcg
2048 * stock, and at least @nr_pages are available in that stock. Failure to
2049 * service an allocation will refill the stock.
2050 *
2051 * returns true if successful, false otherwise.
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002052 */
Suleiman Souhlala0956d52012-12-18 14:21:36 -08002053static bool consume_stock(struct mem_cgroup *memcg, unsigned int nr_pages)
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002054{
2055 struct memcg_stock_pcp *stock;
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002056 unsigned long flags;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002057 bool ret = false;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002058
Johannes Weinera983b5e2018-01-31 16:16:45 -08002059 if (nr_pages > MEMCG_CHARGE_BATCH)
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002060 return ret;
Suleiman Souhlala0956d52012-12-18 14:21:36 -08002061
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002062 local_irq_save(flags);
2063
2064 stock = this_cpu_ptr(&memcg_stock);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002065 if (memcg == stock->cached && stock->nr_pages >= nr_pages) {
Suleiman Souhlala0956d52012-12-18 14:21:36 -08002066 stock->nr_pages -= nr_pages;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002067 ret = true;
2068 }
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002069
2070 local_irq_restore(flags);
2071
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002072 return ret;
2073}
2074
2075/*
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002076 * Returns stocks cached in percpu and reset cached information.
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002077 */
2078static void drain_stock(struct memcg_stock_pcp *stock)
2079{
2080 struct mem_cgroup *old = stock->cached;
2081
Johannes Weiner11c9ea42011-03-23 16:42:34 -07002082 if (stock->nr_pages) {
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002083 page_counter_uncharge(&old->memory, stock->nr_pages);
Johannes Weiner7941d212016-01-14 15:21:23 -08002084 if (do_memsw_account())
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002085 page_counter_uncharge(&old->memsw, stock->nr_pages);
Johannes Weinere8ea14c2014-12-10 15:42:42 -08002086 css_put_many(&old->css, stock->nr_pages);
Johannes Weiner11c9ea42011-03-23 16:42:34 -07002087 stock->nr_pages = 0;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002088 }
2089 stock->cached = NULL;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002090}
2091
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002092static void drain_local_stock(struct work_struct *dummy)
2093{
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002094 struct memcg_stock_pcp *stock;
2095 unsigned long flags;
2096
Michal Hocko72f01842017-10-03 16:14:53 -07002097 /*
2098 * The only protection from memory hotplug vs. drain_stock races is
2099 * that we always operate on local CPU stock here with IRQ disabled
2100 */
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002101 local_irq_save(flags);
2102
2103 stock = this_cpu_ptr(&memcg_stock);
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002104 drain_stock(stock);
KAMEZAWA Hiroyuki26fe6162011-06-15 15:08:45 -07002105 clear_bit(FLUSHING_CACHED_CHARGE, &stock->flags);
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002106
2107 local_irq_restore(flags);
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002108}
2109
2110/*
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002111 * Cache charges(val) to local per_cpu area.
Greg Thelen320cc512010-03-15 15:27:28 +01002112 * This will be consumed by consume_stock() function, later.
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002113 */
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07002114static void refill_stock(struct mem_cgroup *memcg, unsigned int nr_pages)
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002115{
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002116 struct memcg_stock_pcp *stock;
2117 unsigned long flags;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002118
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002119 local_irq_save(flags);
2120
2121 stock = this_cpu_ptr(&memcg_stock);
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07002122 if (stock->cached != memcg) { /* reset if necessary */
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002123 drain_stock(stock);
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07002124 stock->cached = memcg;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002125 }
Johannes Weiner11c9ea42011-03-23 16:42:34 -07002126 stock->nr_pages += nr_pages;
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002127
Johannes Weinera983b5e2018-01-31 16:16:45 -08002128 if (stock->nr_pages > MEMCG_CHARGE_BATCH)
Roman Gushchin475d0482017-09-08 16:13:09 -07002129 drain_stock(stock);
2130
Johannes Weinerdb2ba40c2016-09-19 14:44:36 -07002131 local_irq_restore(flags);
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002132}
2133
2134/*
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07002135 * Drains all per-CPU charge caches for given root_memcg resp. subtree
Johannes Weiner6d3d6aa2014-12-10 15:42:50 -08002136 * of the hierarchy under it.
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002137 */
Johannes Weiner6d3d6aa2014-12-10 15:42:50 -08002138static void drain_all_stock(struct mem_cgroup *root_memcg)
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002139{
KAMEZAWA Hiroyuki26fe6162011-06-15 15:08:45 -07002140 int cpu, curcpu;
Michal Hockod38144b2011-07-26 16:08:28 -07002141
Johannes Weiner6d3d6aa2014-12-10 15:42:50 -08002142 /* If someone's already draining, avoid adding running more workers. */
2143 if (!mutex_trylock(&percpu_charge_mutex))
2144 return;
Michal Hocko72f01842017-10-03 16:14:53 -07002145 /*
2146 * Notify other cpus that system-wide "drain" is running
2147 * We do not care about races with the cpu hotplug because cpu down
2148 * as well as workers from this path always operate on the local
2149 * per-cpu data. CPU up doesn't touch memcg_stock at all.
2150 */
Johannes Weiner5af12d02011-08-25 15:59:07 -07002151 curcpu = get_cpu();
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002152 for_each_online_cpu(cpu) {
2153 struct memcg_stock_pcp *stock = &per_cpu(memcg_stock, cpu);
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07002154 struct mem_cgroup *memcg;
Roman Gushchine1a366b2019-09-23 15:34:58 -07002155 bool flush = false;
KAMEZAWA Hiroyuki26fe6162011-06-15 15:08:45 -07002156
Roman Gushchine1a366b2019-09-23 15:34:58 -07002157 rcu_read_lock();
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07002158 memcg = stock->cached;
Roman Gushchine1a366b2019-09-23 15:34:58 -07002159 if (memcg && stock->nr_pages &&
2160 mem_cgroup_is_descendant(memcg, root_memcg))
2161 flush = true;
2162 rcu_read_unlock();
2163
2164 if (flush &&
2165 !test_and_set_bit(FLUSHING_CACHED_CHARGE, &stock->flags)) {
Michal Hockod1a05b62011-07-26 16:08:27 -07002166 if (cpu == curcpu)
2167 drain_local_stock(&stock->work);
2168 else
2169 schedule_work_on(cpu, &stock->work);
2170 }
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002171 }
Johannes Weiner5af12d02011-08-25 15:59:07 -07002172 put_cpu();
Michal Hocko9f50fad2011-08-09 11:56:26 +02002173 mutex_unlock(&percpu_charge_mutex);
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002174}
2175
Sebastian Andrzej Siewior308167f2016-11-03 15:49:59 +01002176static int memcg_hotplug_cpu_dead(unsigned int cpu)
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002177{
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002178 struct memcg_stock_pcp *stock;
Johannes Weiner42a30032019-05-14 15:47:12 -07002179 struct mem_cgroup *memcg, *mi;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002180
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002181 stock = &per_cpu(memcg_stock, cpu);
2182 drain_stock(stock);
Johannes Weinera983b5e2018-01-31 16:16:45 -08002183
2184 for_each_mem_cgroup(memcg) {
2185 int i;
2186
2187 for (i = 0; i < MEMCG_NR_STAT; i++) {
2188 int nid;
2189 long x;
2190
Chris Down871789d2019-05-14 15:46:57 -07002191 x = this_cpu_xchg(memcg->vmstats_percpu->stat[i], 0);
Johannes Weiner815744d2019-06-13 15:55:46 -07002192 if (x)
Johannes Weiner42a30032019-05-14 15:47:12 -07002193 for (mi = memcg; mi; mi = parent_mem_cgroup(mi))
2194 atomic_long_add(x, &memcg->vmstats[i]);
Johannes Weinera983b5e2018-01-31 16:16:45 -08002195
2196 if (i >= NR_VM_NODE_STAT_ITEMS)
2197 continue;
2198
2199 for_each_node(nid) {
2200 struct mem_cgroup_per_node *pn;
2201
2202 pn = mem_cgroup_nodeinfo(memcg, nid);
2203 x = this_cpu_xchg(pn->lruvec_stat_cpu->count[i], 0);
Johannes Weiner815744d2019-06-13 15:55:46 -07002204 if (x)
Johannes Weiner42a30032019-05-14 15:47:12 -07002205 do {
2206 atomic_long_add(x, &pn->lruvec_stat[i]);
2207 } while ((pn = parent_nodeinfo(pn, nid)));
Johannes Weinera983b5e2018-01-31 16:16:45 -08002208 }
2209 }
2210
Johannes Weinere27be242018-04-10 16:29:45 -07002211 for (i = 0; i < NR_VM_EVENT_ITEMS; i++) {
Johannes Weinera983b5e2018-01-31 16:16:45 -08002212 long x;
2213
Chris Down871789d2019-05-14 15:46:57 -07002214 x = this_cpu_xchg(memcg->vmstats_percpu->events[i], 0);
Johannes Weiner815744d2019-06-13 15:55:46 -07002215 if (x)
Johannes Weiner42a30032019-05-14 15:47:12 -07002216 for (mi = memcg; mi; mi = parent_mem_cgroup(mi))
2217 atomic_long_add(x, &memcg->vmevents[i]);
Johannes Weinera983b5e2018-01-31 16:16:45 -08002218 }
2219 }
2220
Sebastian Andrzej Siewior308167f2016-11-03 15:49:59 +01002221 return 0;
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002222}
2223
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08002224static void reclaim_high(struct mem_cgroup *memcg,
2225 unsigned int nr_pages,
2226 gfp_t gfp_mask)
2227{
2228 do {
2229 if (page_counter_read(&memcg->memory) <= memcg->high)
2230 continue;
Johannes Weinere27be242018-04-10 16:29:45 -07002231 memcg_memory_event(memcg, MEMCG_HIGH);
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08002232 try_to_free_mem_cgroup_pages(memcg, nr_pages, gfp_mask, true);
2233 } while ((memcg = parent_mem_cgroup(memcg)));
2234}
2235
2236static void high_work_func(struct work_struct *work)
2237{
2238 struct mem_cgroup *memcg;
2239
2240 memcg = container_of(work, struct mem_cgroup, high_work);
Johannes Weinera983b5e2018-01-31 16:16:45 -08002241 reclaim_high(memcg, MEMCG_CHARGE_BATCH, GFP_KERNEL);
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08002242}
2243
Tejun Heob23afb92015-11-05 18:46:11 -08002244/*
Chris Down0e4b01d2019-09-23 15:34:55 -07002245 * Clamp the maximum sleep time per allocation batch to 2 seconds. This is
2246 * enough to still cause a significant slowdown in most cases, while still
2247 * allowing diagnostics and tracing to proceed without becoming stuck.
2248 */
2249#define MEMCG_MAX_HIGH_DELAY_JIFFIES (2UL*HZ)
2250
2251/*
2252 * When calculating the delay, we use these either side of the exponentiation to
2253 * maintain precision and scale to a reasonable number of jiffies (see the table
2254 * below.
2255 *
2256 * - MEMCG_DELAY_PRECISION_SHIFT: Extra precision bits while translating the
2257 * overage ratio to a delay.
2258 * - MEMCG_DELAY_SCALING_SHIFT: The number of bits to scale down down the
2259 * proposed penalty in order to reduce to a reasonable number of jiffies, and
2260 * to produce a reasonable delay curve.
2261 *
2262 * MEMCG_DELAY_SCALING_SHIFT just happens to be a number that produces a
2263 * reasonable delay curve compared to precision-adjusted overage, not
2264 * penalising heavily at first, but still making sure that growth beyond the
2265 * limit penalises misbehaviour cgroups by slowing them down exponentially. For
2266 * example, with a high of 100 megabytes:
2267 *
2268 * +-------+------------------------+
2269 * | usage | time to allocate in ms |
2270 * +-------+------------------------+
2271 * | 100M | 0 |
2272 * | 101M | 6 |
2273 * | 102M | 25 |
2274 * | 103M | 57 |
2275 * | 104M | 102 |
2276 * | 105M | 159 |
2277 * | 106M | 230 |
2278 * | 107M | 313 |
2279 * | 108M | 409 |
2280 * | 109M | 518 |
2281 * | 110M | 639 |
2282 * | 111M | 774 |
2283 * | 112M | 921 |
2284 * | 113M | 1081 |
2285 * | 114M | 1254 |
2286 * | 115M | 1439 |
2287 * | 116M | 1638 |
2288 * | 117M | 1849 |
2289 * | 118M | 2000 |
2290 * | 119M | 2000 |
2291 * | 120M | 2000 |
2292 * +-------+------------------------+
2293 */
2294 #define MEMCG_DELAY_PRECISION_SHIFT 20
2295 #define MEMCG_DELAY_SCALING_SHIFT 14
2296
2297/*
Tejun Heob23afb92015-11-05 18:46:11 -08002298 * Scheduled by try_charge() to be executed from the userland return path
2299 * and reclaims memory over the high limit.
2300 */
2301void mem_cgroup_handle_over_high(void)
2302{
Chris Down0e4b01d2019-09-23 15:34:55 -07002303 unsigned long usage, high, clamped_high;
2304 unsigned long pflags;
2305 unsigned long penalty_jiffies, overage;
Tejun Heob23afb92015-11-05 18:46:11 -08002306 unsigned int nr_pages = current->memcg_nr_pages_over_high;
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08002307 struct mem_cgroup *memcg;
Tejun Heob23afb92015-11-05 18:46:11 -08002308
2309 if (likely(!nr_pages))
2310 return;
2311
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08002312 memcg = get_mem_cgroup_from_mm(current->mm);
2313 reclaim_high(memcg, nr_pages, GFP_KERNEL);
Tejun Heob23afb92015-11-05 18:46:11 -08002314 current->memcg_nr_pages_over_high = 0;
Chris Down0e4b01d2019-09-23 15:34:55 -07002315
2316 /*
2317 * memory.high is breached and reclaim is unable to keep up. Throttle
2318 * allocators proactively to slow down excessive growth.
2319 *
2320 * We use overage compared to memory.high to calculate the number of
2321 * jiffies to sleep (penalty_jiffies). Ideally this value should be
2322 * fairly lenient on small overages, and increasingly harsh when the
2323 * memcg in question makes it clear that it has no intention of stopping
2324 * its crazy behaviour, so we exponentially increase the delay based on
2325 * overage amount.
2326 */
2327
2328 usage = page_counter_read(&memcg->memory);
2329 high = READ_ONCE(memcg->high);
2330
2331 if (usage <= high)
2332 goto out;
2333
2334 /*
2335 * Prevent division by 0 in overage calculation by acting as if it was a
2336 * threshold of 1 page
2337 */
2338 clamped_high = max(high, 1UL);
2339
2340 overage = div_u64((u64)(usage - high) << MEMCG_DELAY_PRECISION_SHIFT,
2341 clamped_high);
2342
2343 penalty_jiffies = ((u64)overage * overage * HZ)
2344 >> (MEMCG_DELAY_PRECISION_SHIFT + MEMCG_DELAY_SCALING_SHIFT);
2345
2346 /*
2347 * Factor in the task's own contribution to the overage, such that four
2348 * N-sized allocations are throttled approximately the same as one
2349 * 4N-sized allocation.
2350 *
2351 * MEMCG_CHARGE_BATCH pages is nominal, so work out how much smaller or
2352 * larger the current charge patch is than that.
2353 */
2354 penalty_jiffies = penalty_jiffies * nr_pages / MEMCG_CHARGE_BATCH;
2355
2356 /*
2357 * Clamp the max delay per usermode return so as to still keep the
2358 * application moving forwards and also permit diagnostics, albeit
2359 * extremely slowly.
2360 */
2361 penalty_jiffies = min(penalty_jiffies, MEMCG_MAX_HIGH_DELAY_JIFFIES);
2362
2363 /*
2364 * Don't sleep if the amount of jiffies this memcg owes us is so low
2365 * that it's not even worth doing, in an attempt to be nice to those who
2366 * go only a small amount over their memory.high value and maybe haven't
2367 * been aggressively reclaimed enough yet.
2368 */
2369 if (penalty_jiffies <= HZ / 100)
2370 goto out;
2371
2372 /*
2373 * If we exit early, we're guaranteed to die (since
2374 * schedule_timeout_killable sets TASK_KILLABLE). This means we don't
2375 * need to account for any ill-begotten jiffies to pay them off later.
2376 */
2377 psi_memstall_enter(&pflags);
2378 schedule_timeout_killable(penalty_jiffies);
2379 psi_memstall_leave(&pflags);
2380
2381out:
2382 css_put(&memcg->css);
Tejun Heob23afb92015-11-05 18:46:11 -08002383}
2384
Johannes Weiner00501b52014-08-08 14:19:20 -07002385static int try_charge(struct mem_cgroup *memcg, gfp_t gfp_mask,
2386 unsigned int nr_pages)
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002387{
Johannes Weinera983b5e2018-01-31 16:16:45 -08002388 unsigned int batch = max(MEMCG_CHARGE_BATCH, nr_pages);
Johannes Weiner9b130612014-08-06 16:05:51 -07002389 int nr_retries = MEM_CGROUP_RECLAIM_RETRIES;
Johannes Weiner6539cc02014-08-06 16:05:42 -07002390 struct mem_cgroup *mem_over_limit;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002391 struct page_counter *counter;
Johannes Weiner6539cc02014-08-06 16:05:42 -07002392 unsigned long nr_reclaimed;
Johannes Weinerb70a2a22014-10-09 15:28:56 -07002393 bool may_swap = true;
2394 bool drained = false;
Michal Hocko29ef6802018-08-17 15:47:11 -07002395 enum oom_status oom_status;
KAMEZAWA Hiroyukia636b322009-01-07 18:08:08 -08002396
Johannes Weinerce00a962014-09-05 08:43:57 -04002397 if (mem_cgroup_is_root(memcg))
Tejun Heo10d53c72015-11-05 18:46:17 -08002398 return 0;
Johannes Weiner6539cc02014-08-06 16:05:42 -07002399retry:
Michal Hockob6b6cc72014-04-07 15:37:44 -07002400 if (consume_stock(memcg, nr_pages))
Tejun Heo10d53c72015-11-05 18:46:17 -08002401 return 0;
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002402
Johannes Weiner7941d212016-01-14 15:21:23 -08002403 if (!do_memsw_account() ||
Johannes Weiner6071ca52015-11-05 18:50:26 -08002404 page_counter_try_charge(&memcg->memsw, batch, &counter)) {
2405 if (page_counter_try_charge(&memcg->memory, batch, &counter))
Johannes Weiner6539cc02014-08-06 16:05:42 -07002406 goto done_restock;
Johannes Weiner7941d212016-01-14 15:21:23 -08002407 if (do_memsw_account())
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002408 page_counter_uncharge(&memcg->memsw, batch);
2409 mem_over_limit = mem_cgroup_from_counter(counter, memory);
Johannes Weiner3fbe7242014-10-09 15:28:54 -07002410 } else {
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002411 mem_over_limit = mem_cgroup_from_counter(counter, memsw);
Johannes Weinerb70a2a22014-10-09 15:28:56 -07002412 may_swap = false;
Johannes Weiner3fbe7242014-10-09 15:28:54 -07002413 }
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002414
Johannes Weiner6539cc02014-08-06 16:05:42 -07002415 if (batch > nr_pages) {
2416 batch = nr_pages;
2417 goto retry;
2418 }
KAMEZAWA Hiroyukicdec2e42009-12-15 16:47:08 -08002419
Johannes Weiner06b078f2014-08-06 16:05:44 -07002420 /*
Johannes Weiner869712f2019-11-05 21:17:13 -08002421 * Memcg doesn't have a dedicated reserve for atomic
2422 * allocations. But like the global atomic pool, we need to
2423 * put the burden of reclaim on regular allocation requests
2424 * and let these go through as privileged allocations.
2425 */
2426 if (gfp_mask & __GFP_ATOMIC)
2427 goto force;
2428
2429 /*
Johannes Weiner06b078f2014-08-06 16:05:44 -07002430 * Unlike in global OOM situations, memcg is not in a physical
2431 * memory shortage. Allow dying and OOM-killed tasks to
2432 * bypass the last charges so that they can exit quickly and
2433 * free their memory.
2434 */
Tetsuo Handa7775fac2019-03-05 15:46:47 -08002435 if (unlikely(should_force_charge()))
Tejun Heo10d53c72015-11-05 18:46:17 -08002436 goto force;
Johannes Weiner06b078f2014-08-06 16:05:44 -07002437
Johannes Weiner89a28482016-10-27 17:46:56 -07002438 /*
2439 * Prevent unbounded recursion when reclaim operations need to
2440 * allocate memory. This might exceed the limits temporarily,
2441 * but we prefer facilitating memory reclaim and getting back
2442 * under the limit over triggering OOM kills in these cases.
2443 */
2444 if (unlikely(current->flags & PF_MEMALLOC))
2445 goto force;
2446
Johannes Weiner06b078f2014-08-06 16:05:44 -07002447 if (unlikely(task_in_memcg_oom(current)))
2448 goto nomem;
2449
Mel Gormand0164ad2015-11-06 16:28:21 -08002450 if (!gfpflags_allow_blocking(gfp_mask))
Johannes Weiner6539cc02014-08-06 16:05:42 -07002451 goto nomem;
KAMEZAWA Hiroyuki4b534332010-08-10 18:02:57 -07002452
Johannes Weinere27be242018-04-10 16:29:45 -07002453 memcg_memory_event(mem_over_limit, MEMCG_MAX);
Johannes Weiner241994ed2015-02-11 15:26:06 -08002454
Johannes Weinerb70a2a22014-10-09 15:28:56 -07002455 nr_reclaimed = try_to_free_mem_cgroup_pages(mem_over_limit, nr_pages,
2456 gfp_mask, may_swap);
Johannes Weiner6539cc02014-08-06 16:05:42 -07002457
Johannes Weiner61e02c72014-08-06 16:08:16 -07002458 if (mem_cgroup_margin(mem_over_limit) >= nr_pages)
Johannes Weiner6539cc02014-08-06 16:05:42 -07002459 goto retry;
Johannes Weiner28c34c22014-08-06 16:05:47 -07002460
Johannes Weinerb70a2a22014-10-09 15:28:56 -07002461 if (!drained) {
Johannes Weiner6d3d6aa2014-12-10 15:42:50 -08002462 drain_all_stock(mem_over_limit);
Johannes Weinerb70a2a22014-10-09 15:28:56 -07002463 drained = true;
2464 goto retry;
2465 }
2466
Johannes Weiner28c34c22014-08-06 16:05:47 -07002467 if (gfp_mask & __GFP_NORETRY)
2468 goto nomem;
Johannes Weiner6539cc02014-08-06 16:05:42 -07002469 /*
2470 * Even though the limit is exceeded at this point, reclaim
2471 * may have been able to free some pages. Retry the charge
2472 * before killing the task.
2473 *
2474 * Only for regular pages, though: huge pages are rather
2475 * unlikely to succeed so close to the limit, and we fall back
2476 * to regular pages anyway in case of failure.
2477 */
Johannes Weiner61e02c72014-08-06 16:08:16 -07002478 if (nr_reclaimed && nr_pages <= (1 << PAGE_ALLOC_COSTLY_ORDER))
Johannes Weiner6539cc02014-08-06 16:05:42 -07002479 goto retry;
2480 /*
2481 * At task move, charge accounts can be doubly counted. So, it's
2482 * better to wait until the end of task_move if something is going on.
2483 */
2484 if (mem_cgroup_wait_acct_move(mem_over_limit))
2485 goto retry;
2486
Johannes Weiner9b130612014-08-06 16:05:51 -07002487 if (nr_retries--)
2488 goto retry;
2489
Shakeel Butt38d38492019-07-11 20:55:48 -07002490 if (gfp_mask & __GFP_RETRY_MAYFAIL)
Michal Hocko29ef6802018-08-17 15:47:11 -07002491 goto nomem;
2492
Johannes Weiner06b078f2014-08-06 16:05:44 -07002493 if (gfp_mask & __GFP_NOFAIL)
Tejun Heo10d53c72015-11-05 18:46:17 -08002494 goto force;
Johannes Weiner06b078f2014-08-06 16:05:44 -07002495
Johannes Weiner6539cc02014-08-06 16:05:42 -07002496 if (fatal_signal_pending(current))
Tejun Heo10d53c72015-11-05 18:46:17 -08002497 goto force;
Johannes Weiner6539cc02014-08-06 16:05:42 -07002498
Michal Hocko29ef6802018-08-17 15:47:11 -07002499 /*
2500 * keep retrying as long as the memcg oom killer is able to make
2501 * a forward progress or bypass the charge if the oom killer
2502 * couldn't make any progress.
2503 */
2504 oom_status = mem_cgroup_oom(mem_over_limit, gfp_mask,
Jerome Marchand3608de02015-11-05 18:47:29 -08002505 get_order(nr_pages * PAGE_SIZE));
Michal Hocko29ef6802018-08-17 15:47:11 -07002506 switch (oom_status) {
2507 case OOM_SUCCESS:
2508 nr_retries = MEM_CGROUP_RECLAIM_RETRIES;
Michal Hocko29ef6802018-08-17 15:47:11 -07002509 goto retry;
2510 case OOM_FAILED:
2511 goto force;
2512 default:
2513 goto nomem;
2514 }
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002515nomem:
Johannes Weiner6d1fdc42014-04-07 15:37:45 -07002516 if (!(gfp_mask & __GFP_NOFAIL))
Johannes Weiner3168ecb2013-10-31 16:34:13 -07002517 return -ENOMEM;
Tejun Heo10d53c72015-11-05 18:46:17 -08002518force:
2519 /*
2520 * The allocation either can't fail or will lead to more memory
2521 * being freed very soon. Allow memory usage go over the limit
2522 * temporarily by force charging it.
2523 */
2524 page_counter_charge(&memcg->memory, nr_pages);
Johannes Weiner7941d212016-01-14 15:21:23 -08002525 if (do_memsw_account())
Tejun Heo10d53c72015-11-05 18:46:17 -08002526 page_counter_charge(&memcg->memsw, nr_pages);
2527 css_get_many(&memcg->css, nr_pages);
2528
2529 return 0;
Johannes Weiner6539cc02014-08-06 16:05:42 -07002530
2531done_restock:
Johannes Weinere8ea14c2014-12-10 15:42:42 -08002532 css_get_many(&memcg->css, batch);
Johannes Weiner6539cc02014-08-06 16:05:42 -07002533 if (batch > nr_pages)
2534 refill_stock(memcg, batch - nr_pages);
Tejun Heob23afb92015-11-05 18:46:11 -08002535
Johannes Weiner241994ed2015-02-11 15:26:06 -08002536 /*
Tejun Heob23afb92015-11-05 18:46:11 -08002537 * If the hierarchy is above the normal consumption range, schedule
2538 * reclaim on returning to userland. We can perform reclaim here
Mel Gorman71baba42015-11-06 16:28:28 -08002539 * if __GFP_RECLAIM but let's always punt for simplicity and so that
Tejun Heob23afb92015-11-05 18:46:11 -08002540 * GFP_KERNEL can consistently be used during reclaim. @memcg is
2541 * not recorded as it most likely matches current's and won't
2542 * change in the meantime. As high limit is checked again before
2543 * reclaim, the cost of mismatch is negligible.
Johannes Weiner241994ed2015-02-11 15:26:06 -08002544 */
2545 do {
Tejun Heob23afb92015-11-05 18:46:11 -08002546 if (page_counter_read(&memcg->memory) > memcg->high) {
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08002547 /* Don't bother a random interrupted task */
2548 if (in_interrupt()) {
2549 schedule_work(&memcg->high_work);
2550 break;
2551 }
Vladimir Davydov9516a182015-12-11 13:40:24 -08002552 current->memcg_nr_pages_over_high += batch;
Tejun Heob23afb92015-11-05 18:46:11 -08002553 set_notify_resume(current);
2554 break;
2555 }
Johannes Weiner241994ed2015-02-11 15:26:06 -08002556 } while ((memcg = parent_mem_cgroup(memcg)));
Tejun Heo10d53c72015-11-05 18:46:17 -08002557
2558 return 0;
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002559}
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002560
Johannes Weiner00501b52014-08-08 14:19:20 -07002561static void cancel_charge(struct mem_cgroup *memcg, unsigned int nr_pages)
Daisuke Nishimuraa3032a22009-12-15 16:47:10 -08002562{
Johannes Weinerce00a962014-09-05 08:43:57 -04002563 if (mem_cgroup_is_root(memcg))
2564 return;
2565
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002566 page_counter_uncharge(&memcg->memory, nr_pages);
Johannes Weiner7941d212016-01-14 15:21:23 -08002567 if (do_memsw_account())
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002568 page_counter_uncharge(&memcg->memsw, nr_pages);
Daisuke Nishimuraa3032a22009-12-15 16:47:10 -08002569
Johannes Weinere8ea14c2014-12-10 15:42:42 -08002570 css_put_many(&memcg->css, nr_pages);
KAMEZAWA Hiroyukid01dd172012-05-29 15:07:03 -07002571}
2572
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002573static void lock_page_lru(struct page *page, int *isolated)
2574{
Andrey Ryabininf4b7e272019-03-05 15:49:39 -08002575 pg_data_t *pgdat = page_pgdat(page);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002576
Andrey Ryabininf4b7e272019-03-05 15:49:39 -08002577 spin_lock_irq(&pgdat->lru_lock);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002578 if (PageLRU(page)) {
2579 struct lruvec *lruvec;
2580
Andrey Ryabininf4b7e272019-03-05 15:49:39 -08002581 lruvec = mem_cgroup_page_lruvec(page, pgdat);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002582 ClearPageLRU(page);
2583 del_page_from_lru_list(page, lruvec, page_lru(page));
2584 *isolated = 1;
2585 } else
2586 *isolated = 0;
2587}
2588
2589static void unlock_page_lru(struct page *page, int isolated)
2590{
Andrey Ryabininf4b7e272019-03-05 15:49:39 -08002591 pg_data_t *pgdat = page_pgdat(page);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002592
2593 if (isolated) {
2594 struct lruvec *lruvec;
2595
Andrey Ryabininf4b7e272019-03-05 15:49:39 -08002596 lruvec = mem_cgroup_page_lruvec(page, pgdat);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002597 VM_BUG_ON_PAGE(PageLRU(page), page);
2598 SetPageLRU(page);
2599 add_page_to_lru_list(page, lruvec, page_lru(page));
2600 }
Andrey Ryabininf4b7e272019-03-05 15:49:39 -08002601 spin_unlock_irq(&pgdat->lru_lock);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002602}
2603
Johannes Weiner00501b52014-08-08 14:19:20 -07002604static void commit_charge(struct page *page, struct mem_cgroup *memcg,
Johannes Weiner6abb5a82014-08-08 14:19:33 -07002605 bool lrucare)
KAMEZAWA Hiroyuki7a81b882009-01-07 18:07:48 -08002606{
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002607 int isolated;
Hugh Dickins9ce70c02012-03-05 14:59:16 -08002608
Johannes Weiner1306a852014-12-10 15:44:52 -08002609 VM_BUG_ON_PAGE(page->mem_cgroup, page);
Hugh Dickins9ce70c02012-03-05 14:59:16 -08002610
2611 /*
2612 * In some cases, SwapCache and FUSE(splice_buf->radixtree), the page
2613 * may already be on some other mem_cgroup's LRU. Take care of it.
2614 */
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002615 if (lrucare)
2616 lock_page_lru(page, &isolated);
Hugh Dickins9ce70c02012-03-05 14:59:16 -08002617
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002618 /*
2619 * Nobody should be changing or seriously looking at
Johannes Weiner1306a852014-12-10 15:44:52 -08002620 * page->mem_cgroup at this point:
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002621 *
2622 * - the page is uncharged
2623 *
2624 * - the page is off-LRU
2625 *
2626 * - an anonymous fault has exclusive page access, except for
2627 * a locked page table
2628 *
2629 * - a page cache insertion, a swapin fault, or a migration
2630 * have the page locked
2631 */
Johannes Weiner1306a852014-12-10 15:44:52 -08002632 page->mem_cgroup = memcg;
Hugh Dickins3be912772008-02-07 00:14:19 -08002633
Johannes Weiner0a31bc92014-08-08 14:19:22 -07002634 if (lrucare)
2635 unlock_page_lru(page, isolated);
Balbir Singh8a9f3cc2008-02-07 00:13:53 -08002636}
2637
Kirill Tkhai84c07d12018-08-17 15:47:25 -07002638#ifdef CONFIG_MEMCG_KMEM
Vladimir Davydovf3bb3042014-10-09 15:28:45 -07002639static int memcg_alloc_cache_id(void)
Glauber Costa55007d82012-12-18 14:22:38 -08002640{
Vladimir Davydovf3bb3042014-10-09 15:28:45 -07002641 int id, size;
2642 int err;
Glauber Costa55007d82012-12-18 14:22:38 -08002643
Vladimir Davydovdbcf73e2015-02-12 14:58:57 -08002644 id = ida_simple_get(&memcg_cache_ida,
Vladimir Davydovf3bb3042014-10-09 15:28:45 -07002645 0, MEMCG_CACHES_MAX_SIZE, GFP_KERNEL);
2646 if (id < 0)
2647 return id;
2648
Vladimir Davydovdbcf73e2015-02-12 14:58:57 -08002649 if (id < memcg_nr_cache_ids)
Vladimir Davydovf3bb3042014-10-09 15:28:45 -07002650 return id;
2651
2652 /*
2653 * There's no space for the new id in memcg_caches arrays,
2654 * so we have to grow them.
2655 */
Vladimir Davydov05257a12015-02-12 14:59:01 -08002656 down_write(&memcg_cache_ids_sem);
Vladimir Davydovf3bb3042014-10-09 15:28:45 -07002657
2658 size = 2 * (id + 1);
Glauber Costa55007d82012-12-18 14:22:38 -08002659 if (size < MEMCG_CACHES_MIN_SIZE)
2660 size = MEMCG_CACHES_MIN_SIZE;
2661 else if (size > MEMCG_CACHES_MAX_SIZE)
2662 size = MEMCG_CACHES_MAX_SIZE;
2663
Vladimir Davydovf3bb3042014-10-09 15:28:45 -07002664 err = memcg_update_all_caches(size);
Vladimir Davydov05257a12015-02-12 14:59:01 -08002665 if (!err)
Vladimir Davydov60d3fd32015-02-12 14:59:10 -08002666 err = memcg_update_all_list_lrus(size);
2667 if (!err)
Vladimir Davydov05257a12015-02-12 14:59:01 -08002668 memcg_nr_cache_ids = size;
2669
2670 up_write(&memcg_cache_ids_sem);
2671
Vladimir Davydovf3bb3042014-10-09 15:28:45 -07002672 if (err) {
Vladimir Davydovdbcf73e2015-02-12 14:58:57 -08002673 ida_simple_remove(&memcg_cache_ida, id);
Vladimir Davydovf3bb3042014-10-09 15:28:45 -07002674 return err;
2675 }
2676 return id;
2677}
2678
2679static void memcg_free_cache_id(int id)
2680{
Vladimir Davydovdbcf73e2015-02-12 14:58:57 -08002681 ida_simple_remove(&memcg_cache_ida, id);
Glauber Costa55007d82012-12-18 14:22:38 -08002682}
2683
Vladimir Davydovd5b3cf72015-02-10 14:11:47 -08002684struct memcg_kmem_cache_create_work {
Vladimir Davydov5722d092014-04-07 15:39:24 -07002685 struct mem_cgroup *memcg;
2686 struct kmem_cache *cachep;
2687 struct work_struct work;
2688};
2689
Vladimir Davydovd5b3cf72015-02-10 14:11:47 -08002690static void memcg_kmem_cache_create_func(struct work_struct *w)
Glauber Costad7f25f82012-12-18 14:22:40 -08002691{
Vladimir Davydovd5b3cf72015-02-10 14:11:47 -08002692 struct memcg_kmem_cache_create_work *cw =
2693 container_of(w, struct memcg_kmem_cache_create_work, work);
Vladimir Davydov5722d092014-04-07 15:39:24 -07002694 struct mem_cgroup *memcg = cw->memcg;
2695 struct kmem_cache *cachep = cw->cachep;
Glauber Costad7f25f82012-12-18 14:22:40 -08002696
Vladimir Davydovd5b3cf72015-02-10 14:11:47 -08002697 memcg_create_kmem_cache(memcg, cachep);
Vladimir Davydovbd673142014-06-04 16:07:40 -07002698
Vladimir Davydov5722d092014-04-07 15:39:24 -07002699 css_put(&memcg->css);
Glauber Costad7f25f82012-12-18 14:22:40 -08002700 kfree(cw);
2701}
2702
2703/*
2704 * Enqueue the creation of a per-memcg kmem_cache.
Glauber Costad7f25f82012-12-18 14:22:40 -08002705 */
Shakeel Butt85cfb242018-10-26 15:07:41 -07002706static void memcg_schedule_kmem_cache_create(struct mem_cgroup *memcg,
Vladimir Davydovd5b3cf72015-02-10 14:11:47 -08002707 struct kmem_cache *cachep)
Glauber Costad7f25f82012-12-18 14:22:40 -08002708{
Vladimir Davydovd5b3cf72015-02-10 14:11:47 -08002709 struct memcg_kmem_cache_create_work *cw;
Glauber Costad7f25f82012-12-18 14:22:40 -08002710
Roman Gushchinf0a3a242019-07-11 20:56:27 -07002711 if (!css_tryget_online(&memcg->css))
2712 return;
2713
Minchan Kimc892fd82018-04-20 14:56:17 -07002714 cw = kmalloc(sizeof(*cw), GFP_NOWAIT | __GFP_NOWARN);
Vladimir Davydov8135be52014-12-12 16:56:38 -08002715 if (!cw)
Glauber Costad7f25f82012-12-18 14:22:40 -08002716 return;
Vladimir Davydov8135be52014-12-12 16:56:38 -08002717
Glauber Costad7f25f82012-12-18 14:22:40 -08002718 cw->memcg = memcg;
2719 cw->cachep = cachep;
Vladimir Davydovd5b3cf72015-02-10 14:11:47 -08002720 INIT_WORK(&cw->work, memcg_kmem_cache_create_func);
Glauber Costad7f25f82012-12-18 14:22:40 -08002721
Tejun Heo17cc4df2017-02-22 15:41:36 -08002722 queue_work(memcg_kmem_cache_wq, &cw->work);
Glauber Costad7f25f82012-12-18 14:22:40 -08002723}
2724
Vladimir Davydov45264772016-07-26 15:24:21 -07002725static inline bool memcg_kmem_bypass(void)
2726{
2727 if (in_interrupt() || !current->mm || (current->flags & PF_KTHREAD))
2728 return true;
2729 return false;
2730}
2731
2732/**
2733 * memcg_kmem_get_cache: select the correct per-memcg cache for allocation
2734 * @cachep: the original global kmem cache
2735 *
Glauber Costad7f25f82012-12-18 14:22:40 -08002736 * Return the kmem_cache we're supposed to use for a slab allocation.
2737 * We try to use the current memcg's version of the cache.
2738 *
Vladimir Davydov45264772016-07-26 15:24:21 -07002739 * If the cache does not exist yet, if we are the first user of it, we
2740 * create it asynchronously in a workqueue and let the current allocation
2741 * go through with the original cache.
Glauber Costad7f25f82012-12-18 14:22:40 -08002742 *
Vladimir Davydov45264772016-07-26 15:24:21 -07002743 * This function takes a reference to the cache it returns to assure it
2744 * won't get destroyed while we are working with it. Once the caller is
2745 * done with it, memcg_kmem_put_cache() must be called to release the
2746 * reference.
Glauber Costad7f25f82012-12-18 14:22:40 -08002747 */
Vladimir Davydov45264772016-07-26 15:24:21 -07002748struct kmem_cache *memcg_kmem_get_cache(struct kmem_cache *cachep)
Glauber Costad7f25f82012-12-18 14:22:40 -08002749{
2750 struct mem_cgroup *memcg;
Vladimir Davydov959c8962014-01-23 15:52:59 -08002751 struct kmem_cache *memcg_cachep;
Roman Gushchinf0a3a242019-07-11 20:56:27 -07002752 struct memcg_cache_array *arr;
Vladimir Davydov2a4db7e2015-02-12 14:59:32 -08002753 int kmemcg_id;
Glauber Costad7f25f82012-12-18 14:22:40 -08002754
Vladimir Davydovf7ce3192015-02-12 14:59:20 -08002755 VM_BUG_ON(!is_root_cache(cachep));
Glauber Costad7f25f82012-12-18 14:22:40 -08002756
Vladimir Davydov45264772016-07-26 15:24:21 -07002757 if (memcg_kmem_bypass())
Vladimir Davydov230e9fc2016-01-14 15:18:15 -08002758 return cachep;
2759
Roman Gushchinf0a3a242019-07-11 20:56:27 -07002760 rcu_read_lock();
2761
2762 if (unlikely(current->active_memcg))
2763 memcg = current->active_memcg;
2764 else
2765 memcg = mem_cgroup_from_task(current);
2766
2767 if (!memcg || memcg == root_mem_cgroup)
2768 goto out_unlock;
2769
Jason Low4db0c3c2015-04-15 16:14:08 -07002770 kmemcg_id = READ_ONCE(memcg->kmemcg_id);
Vladimir Davydov2a4db7e2015-02-12 14:59:32 -08002771 if (kmemcg_id < 0)
Roman Gushchinf0a3a242019-07-11 20:56:27 -07002772 goto out_unlock;
Glauber Costad7f25f82012-12-18 14:22:40 -08002773
Roman Gushchinf0a3a242019-07-11 20:56:27 -07002774 arr = rcu_dereference(cachep->memcg_params.memcg_caches);
2775
2776 /*
2777 * Make sure we will access the up-to-date value. The code updating
2778 * memcg_caches issues a write barrier to match the data dependency
2779 * barrier inside READ_ONCE() (see memcg_create_kmem_cache()).
2780 */
2781 memcg_cachep = READ_ONCE(arr->entries[kmemcg_id]);
Li Zefanca0dde92013-04-29 15:08:57 -07002782
2783 /*
2784 * If we are in a safe context (can wait, and not in interrupt
2785 * context), we could be be predictable and return right away.
2786 * This would guarantee that the allocation being performed
2787 * already belongs in the new cache.
2788 *
2789 * However, there are some clashes that can arrive from locking.
2790 * For instance, because we acquire the slab_mutex while doing
Vladimir Davydov776ed0f2014-06-04 16:10:02 -07002791 * memcg_create_kmem_cache, this means no further allocation
2792 * could happen with the slab_mutex held. So it's better to
2793 * defer everything.
Roman Gushchinf0a3a242019-07-11 20:56:27 -07002794 *
2795 * If the memcg is dying or memcg_cache is about to be released,
2796 * don't bother creating new kmem_caches. Because memcg_cachep
2797 * is ZEROed as the fist step of kmem offlining, we don't need
2798 * percpu_ref_tryget_live() here. css_tryget_online() check in
2799 * memcg_schedule_kmem_cache_create() will prevent us from
2800 * creation of a new kmem_cache.
Li Zefanca0dde92013-04-29 15:08:57 -07002801 */
Roman Gushchinf0a3a242019-07-11 20:56:27 -07002802 if (unlikely(!memcg_cachep))
2803 memcg_schedule_kmem_cache_create(memcg, cachep);
2804 else if (percpu_ref_tryget(&memcg_cachep->memcg_params.refcnt))
2805 cachep = memcg_cachep;
2806out_unlock:
2807 rcu_read_unlock();
Li Zefanca0dde92013-04-29 15:08:57 -07002808 return cachep;
Glauber Costad7f25f82012-12-18 14:22:40 -08002809}
Glauber Costad7f25f82012-12-18 14:22:40 -08002810
Vladimir Davydov45264772016-07-26 15:24:21 -07002811/**
2812 * memcg_kmem_put_cache: drop reference taken by memcg_kmem_get_cache
2813 * @cachep: the cache returned by memcg_kmem_get_cache
2814 */
2815void memcg_kmem_put_cache(struct kmem_cache *cachep)
Vladimir Davydov8135be52014-12-12 16:56:38 -08002816{
2817 if (!is_root_cache(cachep))
Roman Gushchinf0a3a242019-07-11 20:56:27 -07002818 percpu_ref_put(&cachep->memcg_params.refcnt);
Vladimir Davydov8135be52014-12-12 16:56:38 -08002819}
2820
Vladimir Davydov45264772016-07-26 15:24:21 -07002821/**
Shakeel Butt60cd4bc2019-03-05 15:43:13 -08002822 * __memcg_kmem_charge_memcg: charge a kmem page
Vladimir Davydov45264772016-07-26 15:24:21 -07002823 * @page: page to charge
2824 * @gfp: reclaim mode
2825 * @order: allocation order
2826 * @memcg: memory cgroup to charge
2827 *
2828 * Returns 0 on success, an error code on failure.
2829 */
Shakeel Butt60cd4bc2019-03-05 15:43:13 -08002830int __memcg_kmem_charge_memcg(struct page *page, gfp_t gfp, int order,
Vladimir Davydov45264772016-07-26 15:24:21 -07002831 struct mem_cgroup *memcg)
Vladimir Davydovf3ccb2c42015-11-05 18:49:01 -08002832{
2833 unsigned int nr_pages = 1 << order;
2834 struct page_counter *counter;
Johannes Weiner6071ca52015-11-05 18:50:26 -08002835 int ret;
Vladimir Davydovf3ccb2c42015-11-05 18:49:01 -08002836
Vladimir Davydovf3ccb2c42015-11-05 18:49:01 -08002837 ret = try_charge(memcg, gfp, nr_pages);
Johannes Weiner52c29b02016-01-20 15:02:35 -08002838 if (ret)
Vladimir Davydovf3ccb2c42015-11-05 18:49:01 -08002839 return ret;
Johannes Weiner52c29b02016-01-20 15:02:35 -08002840
2841 if (!cgroup_subsys_on_dfl(memory_cgrp_subsys) &&
2842 !page_counter_try_charge(&memcg->kmem, nr_pages, &counter)) {
Michal Hockoe55d9d92019-09-25 16:45:53 -07002843
2844 /*
2845 * Enforce __GFP_NOFAIL allocation because callers are not
2846 * prepared to see failures and likely do not have any failure
2847 * handling code.
2848 */
2849 if (gfp & __GFP_NOFAIL) {
2850 page_counter_charge(&memcg->kmem, nr_pages);
2851 return 0;
2852 }
Johannes Weiner52c29b02016-01-20 15:02:35 -08002853 cancel_charge(memcg, nr_pages);
2854 return -ENOMEM;
Vladimir Davydovf3ccb2c42015-11-05 18:49:01 -08002855 }
Vladimir Davydovf3ccb2c42015-11-05 18:49:01 -08002856 return 0;
2857}
2858
Vladimir Davydov45264772016-07-26 15:24:21 -07002859/**
Shakeel Butt60cd4bc2019-03-05 15:43:13 -08002860 * __memcg_kmem_charge: charge a kmem page to the current memory cgroup
Vladimir Davydov45264772016-07-26 15:24:21 -07002861 * @page: page to charge
2862 * @gfp: reclaim mode
2863 * @order: allocation order
2864 *
2865 * Returns 0 on success, an error code on failure.
2866 */
Shakeel Butt60cd4bc2019-03-05 15:43:13 -08002867int __memcg_kmem_charge(struct page *page, gfp_t gfp, int order)
Glauber Costa7ae1e1d2012-12-18 14:21:56 -08002868{
2869 struct mem_cgroup *memcg;
Vladimir Davydovfcff7d72016-03-17 14:17:29 -07002870 int ret = 0;
Glauber Costa7ae1e1d2012-12-18 14:21:56 -08002871
Shakeel Butt60cd4bc2019-03-05 15:43:13 -08002872 if (memcg_kmem_bypass())
Vladimir Davydov45264772016-07-26 15:24:21 -07002873 return 0;
2874
Shakeel Buttd46eb14b2018-08-17 15:46:39 -07002875 memcg = get_mem_cgroup_from_current();
Vladimir Davydovc4159a72016-08-08 23:03:12 +03002876 if (!mem_cgroup_is_root(memcg)) {
Shakeel Butt60cd4bc2019-03-05 15:43:13 -08002877 ret = __memcg_kmem_charge_memcg(page, gfp, order, memcg);
Roman Gushchin4d96ba32019-07-11 20:56:31 -07002878 if (!ret) {
2879 page->mem_cgroup = memcg;
Vladimir Davydovc4159a72016-08-08 23:03:12 +03002880 __SetPageKmemcg(page);
Roman Gushchin4d96ba32019-07-11 20:56:31 -07002881 }
Vladimir Davydovc4159a72016-08-08 23:03:12 +03002882 }
Glauber Costa7ae1e1d2012-12-18 14:21:56 -08002883 css_put(&memcg->css);
Vladimir Davydovd05e83a2015-11-05 18:48:59 -08002884 return ret;
Glauber Costa7ae1e1d2012-12-18 14:21:56 -08002885}
Roman Gushchin49a18ea2019-07-11 20:56:13 -07002886
2887/**
2888 * __memcg_kmem_uncharge_memcg: uncharge a kmem page
2889 * @memcg: memcg to uncharge
2890 * @nr_pages: number of pages to uncharge
2891 */
2892void __memcg_kmem_uncharge_memcg(struct mem_cgroup *memcg,
2893 unsigned int nr_pages)
2894{
2895 if (!cgroup_subsys_on_dfl(memory_cgrp_subsys))
2896 page_counter_uncharge(&memcg->kmem, nr_pages);
2897
2898 page_counter_uncharge(&memcg->memory, nr_pages);
2899 if (do_memsw_account())
2900 page_counter_uncharge(&memcg->memsw, nr_pages);
2901}
Vladimir Davydov45264772016-07-26 15:24:21 -07002902/**
Shakeel Butt60cd4bc2019-03-05 15:43:13 -08002903 * __memcg_kmem_uncharge: uncharge a kmem page
Vladimir Davydov45264772016-07-26 15:24:21 -07002904 * @page: page to uncharge
2905 * @order: allocation order
2906 */
Shakeel Butt60cd4bc2019-03-05 15:43:13 -08002907void __memcg_kmem_uncharge(struct page *page, int order)
Glauber Costa7ae1e1d2012-12-18 14:21:56 -08002908{
Johannes Weiner1306a852014-12-10 15:44:52 -08002909 struct mem_cgroup *memcg = page->mem_cgroup;
Vladimir Davydovf3ccb2c42015-11-05 18:49:01 -08002910 unsigned int nr_pages = 1 << order;
Glauber Costa7ae1e1d2012-12-18 14:21:56 -08002911
Glauber Costa7ae1e1d2012-12-18 14:21:56 -08002912 if (!memcg)
2913 return;
2914
Sasha Levin309381fea2014-01-23 15:52:54 -08002915 VM_BUG_ON_PAGE(mem_cgroup_is_root(memcg), page);
Roman Gushchin49a18ea2019-07-11 20:56:13 -07002916 __memcg_kmem_uncharge_memcg(memcg, nr_pages);
Johannes Weiner1306a852014-12-10 15:44:52 -08002917 page->mem_cgroup = NULL;
Vladimir Davydovc4159a72016-08-08 23:03:12 +03002918
2919 /* slab pages do not have PageKmemcg flag set */
2920 if (PageKmemcg(page))
2921 __ClearPageKmemcg(page);
2922
Vladimir Davydovf3ccb2c42015-11-05 18:49:01 -08002923 css_put_many(&memcg->css, nr_pages);
Vladimir Davydov60d3fd32015-02-12 14:59:10 -08002924}
Kirill Tkhai84c07d12018-08-17 15:47:25 -07002925#endif /* CONFIG_MEMCG_KMEM */
Glauber Costa7ae1e1d2012-12-18 14:21:56 -08002926
KAMEZAWA Hiroyukica3e0212011-01-20 14:44:24 -08002927#ifdef CONFIG_TRANSPARENT_HUGEPAGE
2928
KAMEZAWA Hiroyukica3e0212011-01-20 14:44:24 -08002929/*
2930 * Because tail pages are not marked as "used", set it. We're under
Andrey Ryabininf4b7e272019-03-05 15:49:39 -08002931 * pgdat->lru_lock and migration entries setup in all page mappings.
KAMEZAWA Hiroyukica3e0212011-01-20 14:44:24 -08002932 */
KAMEZAWA Hiroyukie94c8a92012-01-12 17:18:20 -08002933void mem_cgroup_split_huge_fixup(struct page *head)
KAMEZAWA Hiroyukica3e0212011-01-20 14:44:24 -08002934{
KAMEZAWA Hiroyukie94c8a92012-01-12 17:18:20 -08002935 int i;
KAMEZAWA Hiroyukica3e0212011-01-20 14:44:24 -08002936
KAMEZAWA Hiroyuki3d37c4a2011-01-25 15:07:28 -08002937 if (mem_cgroup_disabled())
2938 return;
David Rientjesb070e652013-05-07 16:18:09 -07002939
Johannes Weiner29833312014-12-10 15:44:02 -08002940 for (i = 1; i < HPAGE_PMD_NR; i++)
Johannes Weiner1306a852014-12-10 15:44:52 -08002941 head[i].mem_cgroup = head->mem_cgroup;
Michal Hockob9982f82014-12-10 15:43:51 -08002942
Johannes Weinerc9019e92018-01-31 16:16:37 -08002943 __mod_memcg_state(head->mem_cgroup, MEMCG_RSS_HUGE, -HPAGE_PMD_NR);
KAMEZAWA Hiroyukica3e0212011-01-20 14:44:24 -08002944}
Hugh Dickins12d27102012-01-12 17:19:52 -08002945#endif /* CONFIG_TRANSPARENT_HUGEPAGE */
KAMEZAWA Hiroyukica3e0212011-01-20 14:44:24 -08002946
Andrew Mortonc255a452012-07-31 16:43:02 -07002947#ifdef CONFIG_MEMCG_SWAP
Daisuke Nishimura02491442010-03-10 15:22:17 -08002948/**
2949 * mem_cgroup_move_swap_account - move swap charge and swap_cgroup's record.
2950 * @entry: swap entry to be moved
2951 * @from: mem_cgroup which the entry is moved from
2952 * @to: mem_cgroup which the entry is moved to
2953 *
2954 * It succeeds only when the swap_cgroup's record for this entry is the same
2955 * as the mem_cgroup's id of @from.
2956 *
2957 * Returns 0 on success, -EINVAL on failure.
2958 *
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002959 * The caller must have charged to @to, IOW, called page_counter_charge() about
Daisuke Nishimura02491442010-03-10 15:22:17 -08002960 * both res and memsw, and called css_get().
2961 */
2962static int mem_cgroup_move_swap_account(swp_entry_t entry,
Hugh Dickinse91cbb42012-05-29 15:06:51 -07002963 struct mem_cgroup *from, struct mem_cgroup *to)
Daisuke Nishimura02491442010-03-10 15:22:17 -08002964{
2965 unsigned short old_id, new_id;
2966
Li Zefan34c00c32013-09-23 16:56:01 +08002967 old_id = mem_cgroup_id(from);
2968 new_id = mem_cgroup_id(to);
Daisuke Nishimura02491442010-03-10 15:22:17 -08002969
2970 if (swap_cgroup_cmpxchg(entry, old_id, new_id) == old_id) {
Johannes Weinerc9019e92018-01-31 16:16:37 -08002971 mod_memcg_state(from, MEMCG_SWAP, -1);
2972 mod_memcg_state(to, MEMCG_SWAP, 1);
Daisuke Nishimura02491442010-03-10 15:22:17 -08002973 return 0;
2974 }
2975 return -EINVAL;
2976}
2977#else
2978static inline int mem_cgroup_move_swap_account(swp_entry_t entry,
Hugh Dickinse91cbb42012-05-29 15:06:51 -07002979 struct mem_cgroup *from, struct mem_cgroup *to)
Daisuke Nishimura02491442010-03-10 15:22:17 -08002980{
2981 return -EINVAL;
2982}
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08002983#endif
2984
Roman Gushchinbbec2e12018-06-07 17:06:18 -07002985static DEFINE_MUTEX(memcg_max_mutex);
Daisuke Nishimuraf212ad72011-03-23 16:42:25 -07002986
Roman Gushchinbbec2e12018-06-07 17:06:18 -07002987static int mem_cgroup_resize_max(struct mem_cgroup *memcg,
2988 unsigned long max, bool memsw)
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07002989{
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002990 bool enlarge = false;
Shakeel Buttbb4a7ea2018-06-07 17:07:27 -07002991 bool drained = false;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002992 int ret;
Yu Zhaoc054a782018-01-31 16:20:02 -08002993 bool limits_invariant;
2994 struct page_counter *counter = memsw ? &memcg->memsw : &memcg->memory;
KAMEZAWA Hiroyuki81d39c22009-04-02 16:57:36 -07002995
Johannes Weiner3e32cb22014-12-10 15:42:31 -08002996 do {
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07002997 if (signal_pending(current)) {
2998 ret = -EINTR;
2999 break;
3000 }
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003001
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003002 mutex_lock(&memcg_max_mutex);
Yu Zhaoc054a782018-01-31 16:20:02 -08003003 /*
3004 * Make sure that the new limit (memsw or memory limit) doesn't
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003005 * break our basic invariant rule memory.max <= memsw.max.
Yu Zhaoc054a782018-01-31 16:20:02 -08003006 */
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003007 limits_invariant = memsw ? max >= memcg->memory.max :
3008 max <= memcg->memsw.max;
Yu Zhaoc054a782018-01-31 16:20:02 -08003009 if (!limits_invariant) {
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003010 mutex_unlock(&memcg_max_mutex);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003011 ret = -EINVAL;
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003012 break;
3013 }
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003014 if (max > counter->max)
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003015 enlarge = true;
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003016 ret = page_counter_set_max(counter, max);
3017 mutex_unlock(&memcg_max_mutex);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003018
3019 if (!ret)
3020 break;
3021
Shakeel Buttbb4a7ea2018-06-07 17:07:27 -07003022 if (!drained) {
3023 drain_all_stock(memcg);
3024 drained = true;
3025 continue;
3026 }
3027
Andrey Ryabinin1ab5c052018-01-31 16:20:37 -08003028 if (!try_to_free_mem_cgroup_pages(memcg, 1,
3029 GFP_KERNEL, !memsw)) {
3030 ret = -EBUSY;
3031 break;
3032 }
3033 } while (true);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003034
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07003035 if (!ret && enlarge)
3036 memcg_oom_recover(memcg);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003037
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003038 return ret;
3039}
3040
Mel Gormanef8f2322016-07-28 15:46:05 -07003041unsigned long mem_cgroup_soft_limit_reclaim(pg_data_t *pgdat, int order,
Andrew Morton0608f432013-09-24 15:27:41 -07003042 gfp_t gfp_mask,
3043 unsigned long *total_scanned)
3044{
3045 unsigned long nr_reclaimed = 0;
Mel Gormanef8f2322016-07-28 15:46:05 -07003046 struct mem_cgroup_per_node *mz, *next_mz = NULL;
Andrew Morton0608f432013-09-24 15:27:41 -07003047 unsigned long reclaimed;
3048 int loop = 0;
Mel Gormanef8f2322016-07-28 15:46:05 -07003049 struct mem_cgroup_tree_per_node *mctz;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003050 unsigned long excess;
Andrew Morton0608f432013-09-24 15:27:41 -07003051 unsigned long nr_scanned;
3052
3053 if (order > 0)
3054 return 0;
3055
Mel Gormanef8f2322016-07-28 15:46:05 -07003056 mctz = soft_limit_tree_node(pgdat->node_id);
Michal Hockod6507ff2016-08-02 14:02:37 -07003057
3058 /*
3059 * Do not even bother to check the largest node if the root
3060 * is empty. Do it lockless to prevent lock bouncing. Races
3061 * are acceptable as soft limit is best effort anyway.
3062 */
Laurent Dufourbfc72282017-03-09 16:17:06 -08003063 if (!mctz || RB_EMPTY_ROOT(&mctz->rb_root))
Michal Hockod6507ff2016-08-02 14:02:37 -07003064 return 0;
3065
Andrew Morton0608f432013-09-24 15:27:41 -07003066 /*
3067 * This loop can run a while, specially if mem_cgroup's continuously
3068 * keep exceeding their soft limit and putting the system under
3069 * pressure
3070 */
3071 do {
3072 if (next_mz)
3073 mz = next_mz;
3074 else
3075 mz = mem_cgroup_largest_soft_limit_node(mctz);
3076 if (!mz)
3077 break;
3078
3079 nr_scanned = 0;
Mel Gormanef8f2322016-07-28 15:46:05 -07003080 reclaimed = mem_cgroup_soft_reclaim(mz->memcg, pgdat,
Andrew Morton0608f432013-09-24 15:27:41 -07003081 gfp_mask, &nr_scanned);
3082 nr_reclaimed += reclaimed;
3083 *total_scanned += nr_scanned;
Johannes Weiner0a31bc92014-08-08 14:19:22 -07003084 spin_lock_irq(&mctz->lock);
Vladimir Davydovbc2f2e72014-12-10 15:43:40 -08003085 __mem_cgroup_remove_exceeded(mz, mctz);
Andrew Morton0608f432013-09-24 15:27:41 -07003086
3087 /*
3088 * If we failed to reclaim anything from this memory cgroup
3089 * it is time to move on to the next cgroup
3090 */
3091 next_mz = NULL;
Vladimir Davydovbc2f2e72014-12-10 15:43:40 -08003092 if (!reclaimed)
3093 next_mz = __mem_cgroup_largest_soft_limit_node(mctz);
3094
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003095 excess = soft_limit_excess(mz->memcg);
Andrew Morton0608f432013-09-24 15:27:41 -07003096 /*
3097 * One school of thought says that we should not add
3098 * back the node to the tree if reclaim returns 0.
3099 * But our reclaim could return 0, simply because due
3100 * to priority we are exposing a smaller subset of
3101 * memory to reclaim from. Consider this as a longer
3102 * term TODO.
3103 */
3104 /* If excess == 0, no tree ops */
Johannes Weinercf2c8122014-06-06 14:38:21 -07003105 __mem_cgroup_insert_exceeded(mz, mctz, excess);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07003106 spin_unlock_irq(&mctz->lock);
Andrew Morton0608f432013-09-24 15:27:41 -07003107 css_put(&mz->memcg->css);
3108 loop++;
3109 /*
3110 * Could not reclaim anything and there are no more
3111 * mem cgroups to try or we seem to be looping without
3112 * reclaiming anything.
3113 */
3114 if (!nr_reclaimed &&
3115 (next_mz == NULL ||
3116 loop > MEM_CGROUP_MAX_SOFT_LIMIT_RECLAIM_LOOPS))
3117 break;
3118 } while (!nr_reclaimed);
3119 if (next_mz)
3120 css_put(&next_mz->memcg->css);
3121 return nr_reclaimed;
3122}
3123
Tejun Heoea280e72014-05-16 13:22:48 -04003124/*
3125 * Test whether @memcg has children, dead or alive. Note that this
3126 * function doesn't care whether @memcg has use_hierarchy enabled and
3127 * returns %true if there are child csses according to the cgroup
3128 * hierarchy. Testing use_hierarchy is the caller's responsiblity.
3129 */
Glauber Costab5f99b52013-02-22 16:34:53 -08003130static inline bool memcg_has_children(struct mem_cgroup *memcg)
3131{
Tejun Heoea280e72014-05-16 13:22:48 -04003132 bool ret;
3133
Tejun Heoea280e72014-05-16 13:22:48 -04003134 rcu_read_lock();
3135 ret = css_next_child(NULL, &memcg->css);
3136 rcu_read_unlock();
3137 return ret;
Glauber Costab5f99b52013-02-22 16:34:53 -08003138}
3139
3140/*
Greg Thelen51038172016-05-20 16:58:18 -07003141 * Reclaims as many pages from the given memcg as possible.
Michal Hockoc26251f2012-10-26 13:37:28 +02003142 *
3143 * Caller is responsible for holding css reference for memcg.
3144 */
3145static int mem_cgroup_force_empty(struct mem_cgroup *memcg)
3146{
3147 int nr_retries = MEM_CGROUP_RECLAIM_RETRIES;
Michal Hockoc26251f2012-10-26 13:37:28 +02003148
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003149 /* we call try-to-free pages for make this cgroup empty */
3150 lru_add_drain_all();
Junaid Shahidd12c60f2018-06-07 17:07:31 -07003151
3152 drain_all_stock(memcg);
3153
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003154 /* try to free all pages in this cgroup */
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003155 while (nr_retries && page_counter_read(&memcg->memory)) {
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003156 int progress;
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003157
Michal Hockoc26251f2012-10-26 13:37:28 +02003158 if (signal_pending(current))
3159 return -EINTR;
3160
Johannes Weinerb70a2a22014-10-09 15:28:56 -07003161 progress = try_to_free_mem_cgroup_pages(memcg, 1,
3162 GFP_KERNEL, true);
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003163 if (!progress) {
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003164 nr_retries--;
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003165 /* maybe some writeback is necessary */
Jens Axboe8aa7e842009-07-09 14:52:32 +02003166 congestion_wait(BLK_RW_ASYNC, HZ/10);
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003167 }
KAMEZAWA Hiroyukif817ed42009-01-07 18:07:53 -08003168
3169 }
Michal Hockoab5196c2012-10-26 13:37:32 +02003170
3171 return 0;
KAMEZAWA Hiroyukicc847582008-02-07 00:14:16 -08003172}
3173
Tejun Heo6770c642014-05-13 12:16:21 -04003174static ssize_t mem_cgroup_force_empty_write(struct kernfs_open_file *of,
3175 char *buf, size_t nbytes,
3176 loff_t off)
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003177{
Tejun Heo6770c642014-05-13 12:16:21 -04003178 struct mem_cgroup *memcg = mem_cgroup_from_css(of_css(of));
Michal Hockoc26251f2012-10-26 13:37:28 +02003179
Michal Hockod8423012012-10-26 13:37:29 +02003180 if (mem_cgroup_is_root(memcg))
3181 return -EINVAL;
Tejun Heo6770c642014-05-13 12:16:21 -04003182 return mem_cgroup_force_empty(memcg) ?: nbytes;
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08003183}
3184
Tejun Heo182446d2013-08-08 20:11:24 -04003185static u64 mem_cgroup_hierarchy_read(struct cgroup_subsys_state *css,
3186 struct cftype *cft)
Balbir Singh18f59ea2009-01-07 18:08:07 -08003187{
Tejun Heo182446d2013-08-08 20:11:24 -04003188 return mem_cgroup_from_css(css)->use_hierarchy;
Balbir Singh18f59ea2009-01-07 18:08:07 -08003189}
3190
Tejun Heo182446d2013-08-08 20:11:24 -04003191static int mem_cgroup_hierarchy_write(struct cgroup_subsys_state *css,
3192 struct cftype *cft, u64 val)
Balbir Singh18f59ea2009-01-07 18:08:07 -08003193{
3194 int retval = 0;
Tejun Heo182446d2013-08-08 20:11:24 -04003195 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
Tejun Heo5c9d5352014-05-16 13:22:48 -04003196 struct mem_cgroup *parent_memcg = mem_cgroup_from_css(memcg->css.parent);
Balbir Singh18f59ea2009-01-07 18:08:07 -08003197
Glauber Costa567fb432012-07-31 16:43:07 -07003198 if (memcg->use_hierarchy == val)
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08003199 return 0;
Glauber Costa567fb432012-07-31 16:43:07 -07003200
Balbir Singh18f59ea2009-01-07 18:08:07 -08003201 /*
André Goddard Rosaaf901ca2009-11-14 13:09:05 -02003202 * If parent's use_hierarchy is set, we can't make any modifications
Balbir Singh18f59ea2009-01-07 18:08:07 -08003203 * in the child subtrees. If it is unset, then the change can
3204 * occur, provided the current cgroup has no children.
3205 *
3206 * For the root cgroup, parent_mem is NULL, we allow value to be
3207 * set if there are no children.
3208 */
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07003209 if ((!parent_memcg || !parent_memcg->use_hierarchy) &&
Balbir Singh18f59ea2009-01-07 18:08:07 -08003210 (val == 1 || val == 0)) {
Tejun Heoea280e72014-05-16 13:22:48 -04003211 if (!memcg_has_children(memcg))
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07003212 memcg->use_hierarchy = val;
Balbir Singh18f59ea2009-01-07 18:08:07 -08003213 else
3214 retval = -EBUSY;
3215 } else
3216 retval = -EINVAL;
Glauber Costa567fb432012-07-31 16:43:07 -07003217
Balbir Singh18f59ea2009-01-07 18:08:07 -08003218 return retval;
3219}
3220
Andrew Morton6f646152015-11-06 16:28:58 -08003221static unsigned long mem_cgroup_usage(struct mem_cgroup *memcg, bool swap)
Johannes Weinerce00a962014-09-05 08:43:57 -04003222{
Johannes Weiner42a30032019-05-14 15:47:12 -07003223 unsigned long val;
Johannes Weinerce00a962014-09-05 08:43:57 -04003224
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003225 if (mem_cgroup_is_root(memcg)) {
Johannes Weiner42a30032019-05-14 15:47:12 -07003226 val = memcg_page_state(memcg, MEMCG_CACHE) +
3227 memcg_page_state(memcg, MEMCG_RSS);
3228 if (swap)
3229 val += memcg_page_state(memcg, MEMCG_SWAP);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003230 } else {
Johannes Weinerce00a962014-09-05 08:43:57 -04003231 if (!swap)
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003232 val = page_counter_read(&memcg->memory);
Johannes Weinerce00a962014-09-05 08:43:57 -04003233 else
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003234 val = page_counter_read(&memcg->memsw);
Johannes Weinerce00a962014-09-05 08:43:57 -04003235 }
Michal Hockoc12176d2015-11-05 18:50:29 -08003236 return val;
Johannes Weinerce00a962014-09-05 08:43:57 -04003237}
3238
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003239enum {
3240 RES_USAGE,
3241 RES_LIMIT,
3242 RES_MAX_USAGE,
3243 RES_FAILCNT,
3244 RES_SOFT_LIMIT,
3245};
Johannes Weinerce00a962014-09-05 08:43:57 -04003246
Tejun Heo791badb2013-12-05 12:28:02 -05003247static u64 mem_cgroup_read_u64(struct cgroup_subsys_state *css,
Johannes Weiner05b84302014-08-06 16:05:59 -07003248 struct cftype *cft)
Balbir Singh8cdea7c2008-02-07 00:13:50 -08003249{
Tejun Heo182446d2013-08-08 20:11:24 -04003250 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003251 struct page_counter *counter;
Tejun Heoaf36f902012-04-01 12:09:55 -07003252
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003253 switch (MEMFILE_TYPE(cft->private)) {
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003254 case _MEM:
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003255 counter = &memcg->memory;
Glauber Costa510fc4e2012-12-18 14:21:47 -08003256 break;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003257 case _MEMSWAP:
3258 counter = &memcg->memsw;
3259 break;
3260 case _KMEM:
3261 counter = &memcg->kmem;
3262 break;
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003263 case _TCP:
Johannes Weiner0db15292016-01-20 15:02:50 -08003264 counter = &memcg->tcpmem;
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003265 break;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003266 default:
3267 BUG();
3268 }
3269
3270 switch (MEMFILE_ATTR(cft->private)) {
3271 case RES_USAGE:
3272 if (counter == &memcg->memory)
Michal Hockoc12176d2015-11-05 18:50:29 -08003273 return (u64)mem_cgroup_usage(memcg, false) * PAGE_SIZE;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003274 if (counter == &memcg->memsw)
Michal Hockoc12176d2015-11-05 18:50:29 -08003275 return (u64)mem_cgroup_usage(memcg, true) * PAGE_SIZE;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003276 return (u64)page_counter_read(counter) * PAGE_SIZE;
3277 case RES_LIMIT:
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003278 return (u64)counter->max * PAGE_SIZE;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003279 case RES_MAX_USAGE:
3280 return (u64)counter->watermark * PAGE_SIZE;
3281 case RES_FAILCNT:
3282 return counter->failcnt;
3283 case RES_SOFT_LIMIT:
3284 return (u64)memcg->soft_limit * PAGE_SIZE;
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003285 default:
3286 BUG();
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003287 }
Balbir Singh8cdea7c2008-02-07 00:13:50 -08003288}
Glauber Costa510fc4e2012-12-18 14:21:47 -08003289
Roman Gushchinbee07b32019-08-30 16:04:32 -07003290static void memcg_flush_percpu_vmstats(struct mem_cgroup *memcg, bool slab_only)
Roman Gushchinc350a992019-08-24 17:54:47 -07003291{
3292 unsigned long stat[MEMCG_NR_STAT];
3293 struct mem_cgroup *mi;
3294 int node, cpu, i;
Roman Gushchinbee07b32019-08-30 16:04:32 -07003295 int min_idx, max_idx;
Roman Gushchinc350a992019-08-24 17:54:47 -07003296
Roman Gushchinbee07b32019-08-30 16:04:32 -07003297 if (slab_only) {
3298 min_idx = NR_SLAB_RECLAIMABLE;
3299 max_idx = NR_SLAB_UNRECLAIMABLE;
3300 } else {
3301 min_idx = 0;
3302 max_idx = MEMCG_NR_STAT;
3303 }
3304
3305 for (i = min_idx; i < max_idx; i++)
Roman Gushchinc350a992019-08-24 17:54:47 -07003306 stat[i] = 0;
3307
3308 for_each_online_cpu(cpu)
Roman Gushchinbee07b32019-08-30 16:04:32 -07003309 for (i = min_idx; i < max_idx; i++)
Shakeel Butt6c1c2802019-08-30 16:04:53 -07003310 stat[i] += per_cpu(memcg->vmstats_percpu->stat[i], cpu);
Roman Gushchinc350a992019-08-24 17:54:47 -07003311
3312 for (mi = memcg; mi; mi = parent_mem_cgroup(mi))
Roman Gushchinbee07b32019-08-30 16:04:32 -07003313 for (i = min_idx; i < max_idx; i++)
Roman Gushchinc350a992019-08-24 17:54:47 -07003314 atomic_long_add(stat[i], &mi->vmstats[i]);
3315
Roman Gushchinbee07b32019-08-30 16:04:32 -07003316 if (!slab_only)
3317 max_idx = NR_VM_NODE_STAT_ITEMS;
3318
Roman Gushchinc350a992019-08-24 17:54:47 -07003319 for_each_node(node) {
3320 struct mem_cgroup_per_node *pn = memcg->nodeinfo[node];
3321 struct mem_cgroup_per_node *pi;
3322
Roman Gushchinbee07b32019-08-30 16:04:32 -07003323 for (i = min_idx; i < max_idx; i++)
Roman Gushchinc350a992019-08-24 17:54:47 -07003324 stat[i] = 0;
3325
3326 for_each_online_cpu(cpu)
Roman Gushchinbee07b32019-08-30 16:04:32 -07003327 for (i = min_idx; i < max_idx; i++)
Shakeel Butt6c1c2802019-08-30 16:04:53 -07003328 stat[i] += per_cpu(
3329 pn->lruvec_stat_cpu->count[i], cpu);
Roman Gushchinc350a992019-08-24 17:54:47 -07003330
3331 for (pi = pn; pi; pi = parent_nodeinfo(pi, node))
Roman Gushchinbee07b32019-08-30 16:04:32 -07003332 for (i = min_idx; i < max_idx; i++)
Roman Gushchinc350a992019-08-24 17:54:47 -07003333 atomic_long_add(stat[i], &pi->lruvec_stat[i]);
3334 }
3335}
3336
Roman Gushchinbb65f892019-08-24 17:54:50 -07003337static void memcg_flush_percpu_vmevents(struct mem_cgroup *memcg)
3338{
3339 unsigned long events[NR_VM_EVENT_ITEMS];
3340 struct mem_cgroup *mi;
3341 int cpu, i;
3342
3343 for (i = 0; i < NR_VM_EVENT_ITEMS; i++)
3344 events[i] = 0;
3345
3346 for_each_online_cpu(cpu)
3347 for (i = 0; i < NR_VM_EVENT_ITEMS; i++)
Shakeel Butt6c1c2802019-08-30 16:04:53 -07003348 events[i] += per_cpu(memcg->vmstats_percpu->events[i],
3349 cpu);
Roman Gushchinbb65f892019-08-24 17:54:50 -07003350
3351 for (mi = memcg; mi; mi = parent_mem_cgroup(mi))
3352 for (i = 0; i < NR_VM_EVENT_ITEMS; i++)
3353 atomic_long_add(events[i], &mi->vmevents[i]);
3354}
3355
Kirill Tkhai84c07d12018-08-17 15:47:25 -07003356#ifdef CONFIG_MEMCG_KMEM
Johannes Weiner567e9ab2016-01-20 15:02:24 -08003357static int memcg_online_kmem(struct mem_cgroup *memcg)
Vladimir Davydovd6441632014-01-23 15:53:09 -08003358{
Vladimir Davydovd6441632014-01-23 15:53:09 -08003359 int memcg_id;
3360
Vladimir Davydovb313aee2016-03-17 14:18:27 -07003361 if (cgroup_memory_nokmem)
3362 return 0;
3363
Vladimir Davydov2a4db7e2015-02-12 14:59:32 -08003364 BUG_ON(memcg->kmemcg_id >= 0);
Johannes Weiner567e9ab2016-01-20 15:02:24 -08003365 BUG_ON(memcg->kmem_state);
Vladimir Davydovd6441632014-01-23 15:53:09 -08003366
Vladimir Davydovf3bb3042014-10-09 15:28:45 -07003367 memcg_id = memcg_alloc_cache_id();
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08003368 if (memcg_id < 0)
3369 return memcg_id;
Vladimir Davydovd6441632014-01-23 15:53:09 -08003370
Johannes Weineref129472016-01-14 15:21:34 -08003371 static_branch_inc(&memcg_kmem_enabled_key);
Vladimir Davydovd6441632014-01-23 15:53:09 -08003372 /*
Johannes Weiner567e9ab2016-01-20 15:02:24 -08003373 * A memory cgroup is considered kmem-online as soon as it gets
Vladimir Davydov900a38f2014-12-12 16:55:10 -08003374 * kmemcg_id. Setting the id after enabling static branching will
Vladimir Davydovd6441632014-01-23 15:53:09 -08003375 * guarantee no one starts accounting before all call sites are
3376 * patched.
3377 */
Vladimir Davydov900a38f2014-12-12 16:55:10 -08003378 memcg->kmemcg_id = memcg_id;
Johannes Weiner567e9ab2016-01-20 15:02:24 -08003379 memcg->kmem_state = KMEM_ONLINE;
Tejun Heobc2791f2017-02-22 15:41:21 -08003380 INIT_LIST_HEAD(&memcg->kmem_caches);
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08003381
3382 return 0;
Vladimir Davydovd6441632014-01-23 15:53:09 -08003383}
3384
Johannes Weiner8e0a8912016-01-20 15:02:26 -08003385static void memcg_offline_kmem(struct mem_cgroup *memcg)
3386{
3387 struct cgroup_subsys_state *css;
3388 struct mem_cgroup *parent, *child;
3389 int kmemcg_id;
3390
3391 if (memcg->kmem_state != KMEM_ONLINE)
3392 return;
3393 /*
3394 * Clear the online state before clearing memcg_caches array
3395 * entries. The slab_mutex in memcg_deactivate_kmem_caches()
3396 * guarantees that no cache will be created for this cgroup
3397 * after we are done (see memcg_create_kmem_cache()).
3398 */
3399 memcg->kmem_state = KMEM_ALLOCATED;
3400
Johannes Weiner8e0a8912016-01-20 15:02:26 -08003401 parent = parent_mem_cgroup(memcg);
3402 if (!parent)
3403 parent = root_mem_cgroup;
3404
Roman Gushchinbee07b32019-08-30 16:04:32 -07003405 /*
3406 * Deactivate and reparent kmem_caches. Then flush percpu
3407 * slab statistics to have precise values at the parent and
3408 * all ancestor levels. It's required to keep slab stats
3409 * accurate after the reparenting of kmem_caches.
3410 */
Roman Gushchinfb2f2b02019-07-11 20:56:34 -07003411 memcg_deactivate_kmem_caches(memcg, parent);
Roman Gushchinbee07b32019-08-30 16:04:32 -07003412 memcg_flush_percpu_vmstats(memcg, true);
Roman Gushchinfb2f2b02019-07-11 20:56:34 -07003413
3414 kmemcg_id = memcg->kmemcg_id;
3415 BUG_ON(kmemcg_id < 0);
3416
Johannes Weiner8e0a8912016-01-20 15:02:26 -08003417 /*
3418 * Change kmemcg_id of this cgroup and all its descendants to the
3419 * parent's id, and then move all entries from this cgroup's list_lrus
3420 * to ones of the parent. After we have finished, all list_lrus
3421 * corresponding to this cgroup are guaranteed to remain empty. The
3422 * ordering is imposed by list_lru_node->lock taken by
3423 * memcg_drain_all_list_lrus().
3424 */
Tejun Heo3a06bb72016-06-03 14:55:44 -07003425 rcu_read_lock(); /* can be called from css_free w/o cgroup_mutex */
Johannes Weiner8e0a8912016-01-20 15:02:26 -08003426 css_for_each_descendant_pre(css, &memcg->css) {
3427 child = mem_cgroup_from_css(css);
3428 BUG_ON(child->kmemcg_id != kmemcg_id);
3429 child->kmemcg_id = parent->kmemcg_id;
3430 if (!memcg->use_hierarchy)
3431 break;
3432 }
Tejun Heo3a06bb72016-06-03 14:55:44 -07003433 rcu_read_unlock();
3434
Kirill Tkhai9bec5c32018-08-17 15:47:58 -07003435 memcg_drain_all_list_lrus(kmemcg_id, parent);
Johannes Weiner8e0a8912016-01-20 15:02:26 -08003436
3437 memcg_free_cache_id(kmemcg_id);
3438}
3439
3440static void memcg_free_kmem(struct mem_cgroup *memcg)
3441{
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08003442 /* css_alloc() failed, offlining didn't happen */
3443 if (unlikely(memcg->kmem_state == KMEM_ONLINE))
3444 memcg_offline_kmem(memcg);
3445
Johannes Weiner8e0a8912016-01-20 15:02:26 -08003446 if (memcg->kmem_state == KMEM_ALLOCATED) {
Roman Gushchinf0a3a242019-07-11 20:56:27 -07003447 WARN_ON(!list_empty(&memcg->kmem_caches));
Johannes Weiner8e0a8912016-01-20 15:02:26 -08003448 static_branch_dec(&memcg_kmem_enabled_key);
Johannes Weiner8e0a8912016-01-20 15:02:26 -08003449 }
Johannes Weiner8e0a8912016-01-20 15:02:26 -08003450}
Vladimir Davydovd6441632014-01-23 15:53:09 -08003451#else
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08003452static int memcg_online_kmem(struct mem_cgroup *memcg)
Johannes Weiner127424c2016-01-20 15:02:32 -08003453{
3454 return 0;
3455}
3456static void memcg_offline_kmem(struct mem_cgroup *memcg)
3457{
3458}
3459static void memcg_free_kmem(struct mem_cgroup *memcg)
3460{
3461}
Kirill Tkhai84c07d12018-08-17 15:47:25 -07003462#endif /* CONFIG_MEMCG_KMEM */
Johannes Weiner127424c2016-01-20 15:02:32 -08003463
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003464static int memcg_update_kmem_max(struct mem_cgroup *memcg,
3465 unsigned long max)
Johannes Weiner127424c2016-01-20 15:02:32 -08003466{
Vladimir Davydovb313aee2016-03-17 14:18:27 -07003467 int ret;
Johannes Weiner127424c2016-01-20 15:02:32 -08003468
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003469 mutex_lock(&memcg_max_mutex);
3470 ret = page_counter_set_max(&memcg->kmem, max);
3471 mutex_unlock(&memcg_max_mutex);
Johannes Weiner127424c2016-01-20 15:02:32 -08003472 return ret;
3473}
Glauber Costa510fc4e2012-12-18 14:21:47 -08003474
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003475static int memcg_update_tcp_max(struct mem_cgroup *memcg, unsigned long max)
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003476{
3477 int ret;
3478
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003479 mutex_lock(&memcg_max_mutex);
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003480
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003481 ret = page_counter_set_max(&memcg->tcpmem, max);
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003482 if (ret)
3483 goto out;
3484
Johannes Weiner0db15292016-01-20 15:02:50 -08003485 if (!memcg->tcpmem_active) {
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003486 /*
3487 * The active flag needs to be written after the static_key
3488 * update. This is what guarantees that the socket activation
Johannes Weiner2d758072016-10-07 17:00:58 -07003489 * function is the last one to run. See mem_cgroup_sk_alloc()
3490 * for details, and note that we don't mark any socket as
3491 * belonging to this memcg until that flag is up.
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003492 *
3493 * We need to do this, because static_keys will span multiple
3494 * sites, but we can't control their order. If we mark a socket
3495 * as accounted, but the accounting functions are not patched in
3496 * yet, we'll lose accounting.
3497 *
Johannes Weiner2d758072016-10-07 17:00:58 -07003498 * We never race with the readers in mem_cgroup_sk_alloc(),
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003499 * because when this value change, the code to process it is not
3500 * patched in yet.
3501 */
3502 static_branch_inc(&memcg_sockets_enabled_key);
Johannes Weiner0db15292016-01-20 15:02:50 -08003503 memcg->tcpmem_active = true;
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003504 }
3505out:
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003506 mutex_unlock(&memcg_max_mutex);
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003507 return ret;
3508}
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003509
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003510/*
3511 * The user of this function is...
3512 * RES_LIMIT.
3513 */
Tejun Heo451af502014-05-13 12:16:21 -04003514static ssize_t mem_cgroup_write(struct kernfs_open_file *of,
3515 char *buf, size_t nbytes, loff_t off)
Balbir Singh8cdea7c2008-02-07 00:13:50 -08003516{
Tejun Heo451af502014-05-13 12:16:21 -04003517 struct mem_cgroup *memcg = mem_cgroup_from_css(of_css(of));
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003518 unsigned long nr_pages;
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003519 int ret;
3520
Tejun Heo451af502014-05-13 12:16:21 -04003521 buf = strstrip(buf);
Johannes Weiner650c5e52015-02-11 15:26:03 -08003522 ret = page_counter_memparse(buf, "-1", &nr_pages);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003523 if (ret)
3524 return ret;
Tejun Heoaf36f902012-04-01 12:09:55 -07003525
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003526 switch (MEMFILE_ATTR(of_cft(of)->private)) {
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003527 case RES_LIMIT:
Balbir Singh4b3bde42009-09-23 15:56:32 -07003528 if (mem_cgroup_is_root(memcg)) { /* Can't set limit on root */
3529 ret = -EINVAL;
3530 break;
3531 }
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003532 switch (MEMFILE_TYPE(of_cft(of)->private)) {
3533 case _MEM:
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003534 ret = mem_cgroup_resize_max(memcg, nr_pages, false);
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08003535 break;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003536 case _MEMSWAP:
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003537 ret = mem_cgroup_resize_max(memcg, nr_pages, true);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003538 break;
3539 case _KMEM:
Michal Hocko01581152019-09-23 15:37:22 -07003540 pr_warn_once("kmem.limit_in_bytes is deprecated and will be removed. "
3541 "Please report your usecase to linux-mm@kvack.org if you "
3542 "depend on this functionality.\n");
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003543 ret = memcg_update_kmem_max(memcg, nr_pages);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003544 break;
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003545 case _TCP:
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003546 ret = memcg_update_tcp_max(memcg, nr_pages);
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003547 break;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003548 }
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003549 break;
Balbir Singh296c81d2009-09-23 15:56:36 -07003550 case RES_SOFT_LIMIT:
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003551 memcg->soft_limit = nr_pages;
3552 ret = 0;
KAMEZAWA Hiroyuki628f4232008-07-25 01:47:20 -07003553 break;
3554 }
Tejun Heo451af502014-05-13 12:16:21 -04003555 return ret ?: nbytes;
Balbir Singh8cdea7c2008-02-07 00:13:50 -08003556}
3557
Tejun Heo6770c642014-05-13 12:16:21 -04003558static ssize_t mem_cgroup_reset(struct kernfs_open_file *of, char *buf,
3559 size_t nbytes, loff_t off)
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07003560{
Tejun Heo6770c642014-05-13 12:16:21 -04003561 struct mem_cgroup *memcg = mem_cgroup_from_css(of_css(of));
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003562 struct page_counter *counter;
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07003563
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003564 switch (MEMFILE_TYPE(of_cft(of)->private)) {
3565 case _MEM:
3566 counter = &memcg->memory;
3567 break;
3568 case _MEMSWAP:
3569 counter = &memcg->memsw;
3570 break;
3571 case _KMEM:
3572 counter = &memcg->kmem;
3573 break;
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003574 case _TCP:
Johannes Weiner0db15292016-01-20 15:02:50 -08003575 counter = &memcg->tcpmem;
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08003576 break;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003577 default:
3578 BUG();
3579 }
Tejun Heoaf36f902012-04-01 12:09:55 -07003580
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003581 switch (MEMFILE_ATTR(of_cft(of)->private)) {
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07003582 case RES_MAX_USAGE:
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003583 page_counter_reset_watermark(counter);
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07003584 break;
3585 case RES_FAILCNT:
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003586 counter->failcnt = 0;
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07003587 break;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003588 default:
3589 BUG();
Pavel Emelyanov29f2a4d2008-04-29 01:00:21 -07003590 }
Balbir Singhf64c3f52009-09-23 15:56:37 -07003591
Tejun Heo6770c642014-05-13 12:16:21 -04003592 return nbytes;
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07003593}
3594
Tejun Heo182446d2013-08-08 20:11:24 -04003595static u64 mem_cgroup_move_charge_read(struct cgroup_subsys_state *css,
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003596 struct cftype *cft)
3597{
Tejun Heo182446d2013-08-08 20:11:24 -04003598 return mem_cgroup_from_css(css)->move_charge_at_immigrate;
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003599}
3600
Daisuke Nishimura02491442010-03-10 15:22:17 -08003601#ifdef CONFIG_MMU
Tejun Heo182446d2013-08-08 20:11:24 -04003602static int mem_cgroup_move_charge_write(struct cgroup_subsys_state *css,
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003603 struct cftype *cft, u64 val)
3604{
Tejun Heo182446d2013-08-08 20:11:24 -04003605 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003606
Johannes Weiner1dfab5a2015-02-11 15:26:09 -08003607 if (val & ~MOVE_MASK)
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003608 return -EINVAL;
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003609
Glauber Costaee5e8472013-02-22 16:34:50 -08003610 /*
3611 * No kind of locking is needed in here, because ->can_attach() will
3612 * check this value once in the beginning of the process, and then carry
3613 * on with stale data. This means that changes to this value will only
3614 * affect task migrations starting after the change.
3615 */
3616 memcg->move_charge_at_immigrate = val;
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003617 return 0;
3618}
Daisuke Nishimura02491442010-03-10 15:22:17 -08003619#else
Tejun Heo182446d2013-08-08 20:11:24 -04003620static int mem_cgroup_move_charge_write(struct cgroup_subsys_state *css,
Daisuke Nishimura02491442010-03-10 15:22:17 -08003621 struct cftype *cft, u64 val)
3622{
3623 return -ENOSYS;
3624}
3625#endif
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08003626
Ying Han406eb0c2011-05-26 16:25:37 -07003627#ifdef CONFIG_NUMA
Johannes Weiner113b7df2019-05-13 17:18:11 -07003628
3629#define LRU_ALL_FILE (BIT(LRU_INACTIVE_FILE) | BIT(LRU_ACTIVE_FILE))
3630#define LRU_ALL_ANON (BIT(LRU_INACTIVE_ANON) | BIT(LRU_ACTIVE_ANON))
3631#define LRU_ALL ((1 << NR_LRU_LISTS) - 1)
3632
3633static unsigned long mem_cgroup_node_nr_lru_pages(struct mem_cgroup *memcg,
3634 int nid, unsigned int lru_mask)
3635{
Johannes Weiner867e5e12019-11-30 17:55:34 -08003636 struct lruvec *lruvec = mem_cgroup_lruvec(memcg, NODE_DATA(nid));
Johannes Weiner113b7df2019-05-13 17:18:11 -07003637 unsigned long nr = 0;
3638 enum lru_list lru;
3639
3640 VM_BUG_ON((unsigned)nid >= nr_node_ids);
3641
3642 for_each_lru(lru) {
3643 if (!(BIT(lru) & lru_mask))
3644 continue;
Johannes Weiner205b20c2019-05-14 15:47:06 -07003645 nr += lruvec_page_state_local(lruvec, NR_LRU_BASE + lru);
Johannes Weiner113b7df2019-05-13 17:18:11 -07003646 }
3647 return nr;
3648}
3649
3650static unsigned long mem_cgroup_nr_lru_pages(struct mem_cgroup *memcg,
3651 unsigned int lru_mask)
3652{
3653 unsigned long nr = 0;
3654 enum lru_list lru;
3655
3656 for_each_lru(lru) {
3657 if (!(BIT(lru) & lru_mask))
3658 continue;
Johannes Weiner205b20c2019-05-14 15:47:06 -07003659 nr += memcg_page_state_local(memcg, NR_LRU_BASE + lru);
Johannes Weiner113b7df2019-05-13 17:18:11 -07003660 }
3661 return nr;
3662}
3663
Tejun Heo2da8ca82013-12-05 12:28:04 -05003664static int memcg_numa_stat_show(struct seq_file *m, void *v)
Ying Han406eb0c2011-05-26 16:25:37 -07003665{
Greg Thelen25485de2013-11-12 15:07:40 -08003666 struct numa_stat {
3667 const char *name;
3668 unsigned int lru_mask;
3669 };
3670
3671 static const struct numa_stat stats[] = {
3672 { "total", LRU_ALL },
3673 { "file", LRU_ALL_FILE },
3674 { "anon", LRU_ALL_ANON },
3675 { "unevictable", BIT(LRU_UNEVICTABLE) },
3676 };
3677 const struct numa_stat *stat;
Ying Han406eb0c2011-05-26 16:25:37 -07003678 int nid;
Greg Thelen25485de2013-11-12 15:07:40 -08003679 unsigned long nr;
Chris Downaa9694b2019-03-05 15:45:52 -08003680 struct mem_cgroup *memcg = mem_cgroup_from_seq(m);
Ying Han406eb0c2011-05-26 16:25:37 -07003681
Greg Thelen25485de2013-11-12 15:07:40 -08003682 for (stat = stats; stat < stats + ARRAY_SIZE(stats); stat++) {
3683 nr = mem_cgroup_nr_lru_pages(memcg, stat->lru_mask);
3684 seq_printf(m, "%s=%lu", stat->name, nr);
3685 for_each_node_state(nid, N_MEMORY) {
3686 nr = mem_cgroup_node_nr_lru_pages(memcg, nid,
3687 stat->lru_mask);
3688 seq_printf(m, " N%d=%lu", nid, nr);
3689 }
3690 seq_putc(m, '\n');
Ying Han406eb0c2011-05-26 16:25:37 -07003691 }
Ying Han406eb0c2011-05-26 16:25:37 -07003692
Ying Han071aee12013-11-12 15:07:41 -08003693 for (stat = stats; stat < stats + ARRAY_SIZE(stats); stat++) {
3694 struct mem_cgroup *iter;
Ying Han406eb0c2011-05-26 16:25:37 -07003695
Ying Han071aee12013-11-12 15:07:41 -08003696 nr = 0;
3697 for_each_mem_cgroup_tree(iter, memcg)
3698 nr += mem_cgroup_nr_lru_pages(iter, stat->lru_mask);
3699 seq_printf(m, "hierarchical_%s=%lu", stat->name, nr);
3700 for_each_node_state(nid, N_MEMORY) {
3701 nr = 0;
3702 for_each_mem_cgroup_tree(iter, memcg)
3703 nr += mem_cgroup_node_nr_lru_pages(
3704 iter, nid, stat->lru_mask);
3705 seq_printf(m, " N%d=%lu", nid, nr);
3706 }
3707 seq_putc(m, '\n');
Ying Han406eb0c2011-05-26 16:25:37 -07003708 }
Ying Han406eb0c2011-05-26 16:25:37 -07003709
Ying Han406eb0c2011-05-26 16:25:37 -07003710 return 0;
3711}
3712#endif /* CONFIG_NUMA */
3713
Johannes Weinerc8713d02019-07-11 20:55:59 -07003714static const unsigned int memcg1_stats[] = {
3715 MEMCG_CACHE,
3716 MEMCG_RSS,
3717 MEMCG_RSS_HUGE,
3718 NR_SHMEM,
3719 NR_FILE_MAPPED,
3720 NR_FILE_DIRTY,
3721 NR_WRITEBACK,
3722 MEMCG_SWAP,
3723};
3724
3725static const char *const memcg1_stat_names[] = {
3726 "cache",
3727 "rss",
3728 "rss_huge",
3729 "shmem",
3730 "mapped_file",
3731 "dirty",
3732 "writeback",
3733 "swap",
3734};
3735
Johannes Weinerdf0e53d2017-05-03 14:55:10 -07003736/* Universal VM events cgroup1 shows, original sort order */
Greg Thelen8dd53fd2018-06-07 17:07:23 -07003737static const unsigned int memcg1_events[] = {
Johannes Weinerdf0e53d2017-05-03 14:55:10 -07003738 PGPGIN,
3739 PGPGOUT,
3740 PGFAULT,
3741 PGMAJFAULT,
3742};
3743
Tejun Heo2da8ca82013-12-05 12:28:04 -05003744static int memcg_stat_show(struct seq_file *m, void *v)
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08003745{
Chris Downaa9694b2019-03-05 15:45:52 -08003746 struct mem_cgroup *memcg = mem_cgroup_from_seq(m);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003747 unsigned long memory, memsw;
Johannes Weineraf7c4b02012-05-29 15:07:08 -07003748 struct mem_cgroup *mi;
3749 unsigned int i;
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08003750
Johannes Weiner71cd3112017-05-03 14:55:13 -07003751 BUILD_BUG_ON(ARRAY_SIZE(memcg1_stat_names) != ARRAY_SIZE(memcg1_stats));
Rickard Strandqvist70bc0682014-12-12 16:56:41 -08003752
Johannes Weiner71cd3112017-05-03 14:55:13 -07003753 for (i = 0; i < ARRAY_SIZE(memcg1_stats); i++) {
3754 if (memcg1_stats[i] == MEMCG_SWAP && !do_memsw_account())
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003755 continue;
Johannes Weiner71cd3112017-05-03 14:55:13 -07003756 seq_printf(m, "%s %lu\n", memcg1_stat_names[i],
Johannes Weiner205b20c2019-05-14 15:47:06 -07003757 memcg_page_state_local(memcg, memcg1_stats[i]) *
Johannes Weiner71cd3112017-05-03 14:55:13 -07003758 PAGE_SIZE);
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003759 }
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08003760
Johannes Weinerdf0e53d2017-05-03 14:55:10 -07003761 for (i = 0; i < ARRAY_SIZE(memcg1_events); i++)
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08003762 seq_printf(m, "%s %lu\n", vm_event_name(memcg1_events[i]),
Johannes Weiner205b20c2019-05-14 15:47:06 -07003763 memcg_events_local(memcg, memcg1_events[i]));
Johannes Weineraf7c4b02012-05-29 15:07:08 -07003764
3765 for (i = 0; i < NR_LRU_LISTS; i++)
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08003766 seq_printf(m, "%s %lu\n", lru_list_name(i),
Johannes Weiner205b20c2019-05-14 15:47:06 -07003767 memcg_page_state_local(memcg, NR_LRU_BASE + i) *
Johannes Weiner21d89d12019-05-13 17:18:08 -07003768 PAGE_SIZE);
Johannes Weineraf7c4b02012-05-29 15:07:08 -07003769
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003770 /* Hierarchical information */
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003771 memory = memsw = PAGE_COUNTER_MAX;
3772 for (mi = memcg; mi; mi = parent_mem_cgroup(mi)) {
Roman Gushchinbbec2e12018-06-07 17:06:18 -07003773 memory = min(memory, mi->memory.max);
3774 memsw = min(memsw, mi->memsw.max);
KAMEZAWA Hiroyukifee7b542009-01-07 18:08:26 -08003775 }
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003776 seq_printf(m, "hierarchical_memory_limit %llu\n",
3777 (u64)memory * PAGE_SIZE);
Johannes Weiner7941d212016-01-14 15:21:23 -08003778 if (do_memsw_account())
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003779 seq_printf(m, "hierarchical_memsw_limit %llu\n",
3780 (u64)memsw * PAGE_SIZE);
KOSAKI Motohiro7f016ee2009-01-07 18:08:22 -08003781
Shakeel Butt8de7ecc62018-08-21 21:53:17 -07003782 for (i = 0; i < ARRAY_SIZE(memcg1_stats); i++) {
Johannes Weiner71cd3112017-05-03 14:55:13 -07003783 if (memcg1_stats[i] == MEMCG_SWAP && !do_memsw_account())
Daisuke Nishimura1dd3a272009-09-23 15:56:43 -07003784 continue;
Shakeel Butt8de7ecc62018-08-21 21:53:17 -07003785 seq_printf(m, "total_%s %llu\n", memcg1_stat_names[i],
Yafang Shaodd923992019-07-11 20:52:11 -07003786 (u64)memcg_page_state(memcg, memcg1_stats[i]) *
3787 PAGE_SIZE);
Johannes Weineraf7c4b02012-05-29 15:07:08 -07003788 }
3789
Shakeel Butt8de7ecc62018-08-21 21:53:17 -07003790 for (i = 0; i < ARRAY_SIZE(memcg1_events); i++)
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08003791 seq_printf(m, "total_%s %llu\n",
3792 vm_event_name(memcg1_events[i]),
Yafang Shaodd923992019-07-11 20:52:11 -07003793 (u64)memcg_events(memcg, memcg1_events[i]));
Johannes Weineraf7c4b02012-05-29 15:07:08 -07003794
Shakeel Butt8de7ecc62018-08-21 21:53:17 -07003795 for (i = 0; i < NR_LRU_LISTS; i++)
Konstantin Khlebnikovebc5d83d2019-12-04 16:49:53 -08003796 seq_printf(m, "total_%s %llu\n", lru_list_name(i),
Johannes Weiner42a30032019-05-14 15:47:12 -07003797 (u64)memcg_page_state(memcg, NR_LRU_BASE + i) *
3798 PAGE_SIZE);
KAMEZAWA Hiroyuki14067bb2009-04-02 16:57:35 -07003799
KOSAKI Motohiro7f016ee2009-01-07 18:08:22 -08003800#ifdef CONFIG_DEBUG_VM
KOSAKI Motohiro7f016ee2009-01-07 18:08:22 -08003801 {
Mel Gormanef8f2322016-07-28 15:46:05 -07003802 pg_data_t *pgdat;
3803 struct mem_cgroup_per_node *mz;
Hugh Dickins89abfab2012-05-29 15:06:53 -07003804 struct zone_reclaim_stat *rstat;
KOSAKI Motohiro7f016ee2009-01-07 18:08:22 -08003805 unsigned long recent_rotated[2] = {0, 0};
3806 unsigned long recent_scanned[2] = {0, 0};
3807
Mel Gormanef8f2322016-07-28 15:46:05 -07003808 for_each_online_pgdat(pgdat) {
3809 mz = mem_cgroup_nodeinfo(memcg, pgdat->node_id);
3810 rstat = &mz->lruvec.reclaim_stat;
KOSAKI Motohiro7f016ee2009-01-07 18:08:22 -08003811
Mel Gormanef8f2322016-07-28 15:46:05 -07003812 recent_rotated[0] += rstat->recent_rotated[0];
3813 recent_rotated[1] += rstat->recent_rotated[1];
3814 recent_scanned[0] += rstat->recent_scanned[0];
3815 recent_scanned[1] += rstat->recent_scanned[1];
3816 }
Johannes Weiner78ccf5b2012-05-29 15:07:06 -07003817 seq_printf(m, "recent_rotated_anon %lu\n", recent_rotated[0]);
3818 seq_printf(m, "recent_rotated_file %lu\n", recent_rotated[1]);
3819 seq_printf(m, "recent_scanned_anon %lu\n", recent_scanned[0]);
3820 seq_printf(m, "recent_scanned_file %lu\n", recent_scanned[1]);
KOSAKI Motohiro7f016ee2009-01-07 18:08:22 -08003821 }
3822#endif
3823
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08003824 return 0;
3825}
3826
Tejun Heo182446d2013-08-08 20:11:24 -04003827static u64 mem_cgroup_swappiness_read(struct cgroup_subsys_state *css,
3828 struct cftype *cft)
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003829{
Tejun Heo182446d2013-08-08 20:11:24 -04003830 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003831
KAMEZAWA Hiroyuki1f4c0252011-07-26 16:08:21 -07003832 return mem_cgroup_swappiness(memcg);
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003833}
3834
Tejun Heo182446d2013-08-08 20:11:24 -04003835static int mem_cgroup_swappiness_write(struct cgroup_subsys_state *css,
3836 struct cftype *cft, u64 val)
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003837{
Tejun Heo182446d2013-08-08 20:11:24 -04003838 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
Li Zefan068b38c2009-01-15 13:51:26 -08003839
Johannes Weiner3dae7fe2014-06-04 16:07:01 -07003840 if (val > 100)
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003841 return -EINVAL;
3842
Linus Torvalds14208b02014-06-09 15:03:33 -07003843 if (css->parent)
Johannes Weiner3dae7fe2014-06-04 16:07:01 -07003844 memcg->swappiness = val;
3845 else
3846 vm_swappiness = val;
Li Zefan068b38c2009-01-15 13:51:26 -08003847
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08003848 return 0;
3849}
3850
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003851static void __mem_cgroup_threshold(struct mem_cgroup *memcg, bool swap)
3852{
3853 struct mem_cgroup_threshold_ary *t;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003854 unsigned long usage;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003855 int i;
3856
3857 rcu_read_lock();
3858 if (!swap)
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003859 t = rcu_dereference(memcg->thresholds.primary);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003860 else
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003861 t = rcu_dereference(memcg->memsw_thresholds.primary);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003862
3863 if (!t)
3864 goto unlock;
3865
Johannes Weinerce00a962014-09-05 08:43:57 -04003866 usage = mem_cgroup_usage(memcg, swap);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003867
3868 /*
Sha Zhengju748dad32012-05-29 15:06:57 -07003869 * current_threshold points to threshold just below or equal to usage.
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003870 * If it's not true, a threshold was crossed after last
3871 * call of __mem_cgroup_threshold().
3872 */
Phil Carmody5407a562010-05-26 14:42:42 -07003873 i = t->current_threshold;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003874
3875 /*
3876 * Iterate backward over array of thresholds starting from
3877 * current_threshold and check if a threshold is crossed.
3878 * If none of thresholds below usage is crossed, we read
3879 * only one element of the array here.
3880 */
3881 for (; i >= 0 && unlikely(t->entries[i].threshold > usage); i--)
3882 eventfd_signal(t->entries[i].eventfd, 1);
3883
3884 /* i = current_threshold + 1 */
3885 i++;
3886
3887 /*
3888 * Iterate forward over array of thresholds starting from
3889 * current_threshold+1 and check if a threshold is crossed.
3890 * If none of thresholds above usage is crossed, we read
3891 * only one element of the array here.
3892 */
3893 for (; i < t->size && unlikely(t->entries[i].threshold <= usage); i++)
3894 eventfd_signal(t->entries[i].eventfd, 1);
3895
3896 /* Update current_threshold */
Phil Carmody5407a562010-05-26 14:42:42 -07003897 t->current_threshold = i - 1;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003898unlock:
3899 rcu_read_unlock();
3900}
3901
3902static void mem_cgroup_threshold(struct mem_cgroup *memcg)
3903{
Kirill A. Shutemovad4ca5f2010-10-07 12:59:27 -07003904 while (memcg) {
3905 __mem_cgroup_threshold(memcg, false);
Johannes Weiner7941d212016-01-14 15:21:23 -08003906 if (do_memsw_account())
Kirill A. Shutemovad4ca5f2010-10-07 12:59:27 -07003907 __mem_cgroup_threshold(memcg, true);
3908
3909 memcg = parent_mem_cgroup(memcg);
3910 }
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003911}
3912
3913static int compare_thresholds(const void *a, const void *b)
3914{
3915 const struct mem_cgroup_threshold *_a = a;
3916 const struct mem_cgroup_threshold *_b = b;
3917
Greg Thelen2bff24a2013-09-11 14:23:08 -07003918 if (_a->threshold > _b->threshold)
3919 return 1;
3920
3921 if (_a->threshold < _b->threshold)
3922 return -1;
3923
3924 return 0;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003925}
3926
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07003927static int mem_cgroup_oom_notify_cb(struct mem_cgroup *memcg)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07003928{
3929 struct mem_cgroup_eventfd_list *ev;
3930
Michal Hocko2bcf2e92014-07-30 16:08:33 -07003931 spin_lock(&memcg_oom_lock);
3932
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07003933 list_for_each_entry(ev, &memcg->oom_notify, list)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07003934 eventfd_signal(ev->eventfd, 1);
Michal Hocko2bcf2e92014-07-30 16:08:33 -07003935
3936 spin_unlock(&memcg_oom_lock);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07003937 return 0;
3938}
3939
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07003940static void mem_cgroup_oom_notify(struct mem_cgroup *memcg)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07003941{
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003942 struct mem_cgroup *iter;
3943
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07003944 for_each_mem_cgroup_tree(iter, memcg)
KAMEZAWA Hiroyuki7d74b062010-10-27 15:33:41 -07003945 mem_cgroup_oom_notify_cb(iter);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07003946}
3947
Tejun Heo59b6f872013-11-22 18:20:43 -05003948static int __mem_cgroup_usage_register_event(struct mem_cgroup *memcg,
Tejun Heo347c4a82013-11-22 18:20:43 -05003949 struct eventfd_ctx *eventfd, const char *args, enum res_type type)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003950{
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003951 struct mem_cgroup_thresholds *thresholds;
3952 struct mem_cgroup_threshold_ary *new;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08003953 unsigned long threshold;
3954 unsigned long usage;
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003955 int i, size, ret;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003956
Johannes Weiner650c5e52015-02-11 15:26:03 -08003957 ret = page_counter_memparse(args, "-1", &threshold);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003958 if (ret)
3959 return ret;
3960
3961 mutex_lock(&memcg->thresholds_lock);
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003962
Johannes Weiner05b84302014-08-06 16:05:59 -07003963 if (type == _MEM) {
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003964 thresholds = &memcg->thresholds;
Johannes Weinerce00a962014-09-05 08:43:57 -04003965 usage = mem_cgroup_usage(memcg, false);
Johannes Weiner05b84302014-08-06 16:05:59 -07003966 } else if (type == _MEMSWAP) {
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003967 thresholds = &memcg->memsw_thresholds;
Johannes Weinerce00a962014-09-05 08:43:57 -04003968 usage = mem_cgroup_usage(memcg, true);
Johannes Weiner05b84302014-08-06 16:05:59 -07003969 } else
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003970 BUG();
3971
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003972 /* Check if a threshold crossed before adding a new one */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003973 if (thresholds->primary)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003974 __mem_cgroup_threshold(memcg, type == _MEMSWAP);
3975
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003976 size = thresholds->primary ? thresholds->primary->size + 1 : 1;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003977
3978 /* Allocate memory for new array of thresholds */
Gustavo A. R. Silva67b80462019-03-05 15:44:05 -08003979 new = kmalloc(struct_size(new, entries, size), GFP_KERNEL);
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003980 if (!new) {
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003981 ret = -ENOMEM;
3982 goto unlock;
3983 }
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003984 new->size = size;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003985
3986 /* Copy thresholds (if any) to new array */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003987 if (thresholds->primary) {
3988 memcpy(new->entries, thresholds->primary->entries, (size - 1) *
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003989 sizeof(struct mem_cgroup_threshold));
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003990 }
3991
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003992 /* Add new threshold */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003993 new->entries[size - 1].eventfd = eventfd;
3994 new->entries[size - 1].threshold = threshold;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003995
3996 /* Sort thresholds. Registering of new threshold isn't time-critical */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07003997 sort(new->entries, size, sizeof(struct mem_cgroup_threshold),
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08003998 compare_thresholds, NULL);
3999
4000 /* Find current threshold */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004001 new->current_threshold = -1;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004002 for (i = 0; i < size; i++) {
Sha Zhengju748dad32012-05-29 15:06:57 -07004003 if (new->entries[i].threshold <= usage) {
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004004 /*
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004005 * new->current_threshold will not be used until
4006 * rcu_assign_pointer(), so it's safe to increment
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004007 * it here.
4008 */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004009 ++new->current_threshold;
Sha Zhengju748dad32012-05-29 15:06:57 -07004010 } else
4011 break;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004012 }
4013
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004014 /* Free old spare buffer and save old primary buffer as spare */
4015 kfree(thresholds->spare);
4016 thresholds->spare = thresholds->primary;
4017
4018 rcu_assign_pointer(thresholds->primary, new);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004019
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07004020 /* To be sure that nobody uses thresholds */
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004021 synchronize_rcu();
4022
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004023unlock:
4024 mutex_unlock(&memcg->thresholds_lock);
4025
4026 return ret;
4027}
4028
Tejun Heo59b6f872013-11-22 18:20:43 -05004029static int mem_cgroup_usage_register_event(struct mem_cgroup *memcg,
Tejun Heo347c4a82013-11-22 18:20:43 -05004030 struct eventfd_ctx *eventfd, const char *args)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004031{
Tejun Heo59b6f872013-11-22 18:20:43 -05004032 return __mem_cgroup_usage_register_event(memcg, eventfd, args, _MEM);
Tejun Heo347c4a82013-11-22 18:20:43 -05004033}
4034
Tejun Heo59b6f872013-11-22 18:20:43 -05004035static int memsw_cgroup_usage_register_event(struct mem_cgroup *memcg,
Tejun Heo347c4a82013-11-22 18:20:43 -05004036 struct eventfd_ctx *eventfd, const char *args)
4037{
Tejun Heo59b6f872013-11-22 18:20:43 -05004038 return __mem_cgroup_usage_register_event(memcg, eventfd, args, _MEMSWAP);
Tejun Heo347c4a82013-11-22 18:20:43 -05004039}
4040
Tejun Heo59b6f872013-11-22 18:20:43 -05004041static void __mem_cgroup_usage_unregister_event(struct mem_cgroup *memcg,
Tejun Heo347c4a82013-11-22 18:20:43 -05004042 struct eventfd_ctx *eventfd, enum res_type type)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004043{
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004044 struct mem_cgroup_thresholds *thresholds;
4045 struct mem_cgroup_threshold_ary *new;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08004046 unsigned long usage;
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004047 int i, j, size;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004048
4049 mutex_lock(&memcg->thresholds_lock);
Johannes Weiner05b84302014-08-06 16:05:59 -07004050
4051 if (type == _MEM) {
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004052 thresholds = &memcg->thresholds;
Johannes Weinerce00a962014-09-05 08:43:57 -04004053 usage = mem_cgroup_usage(memcg, false);
Johannes Weiner05b84302014-08-06 16:05:59 -07004054 } else if (type == _MEMSWAP) {
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004055 thresholds = &memcg->memsw_thresholds;
Johannes Weinerce00a962014-09-05 08:43:57 -04004056 usage = mem_cgroup_usage(memcg, true);
Johannes Weiner05b84302014-08-06 16:05:59 -07004057 } else
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004058 BUG();
4059
Anton Vorontsov371528c2012-02-24 05:14:46 +04004060 if (!thresholds->primary)
4061 goto unlock;
4062
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004063 /* Check if a threshold crossed before removing */
4064 __mem_cgroup_threshold(memcg, type == _MEMSWAP);
4065
4066 /* Calculate new number of threshold */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004067 size = 0;
4068 for (i = 0; i < thresholds->primary->size; i++) {
4069 if (thresholds->primary->entries[i].eventfd != eventfd)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004070 size++;
4071 }
4072
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004073 new = thresholds->spare;
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07004074
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004075 /* Set thresholds array to NULL if we don't have thresholds */
4076 if (!size) {
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004077 kfree(new);
4078 new = NULL;
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07004079 goto swap_buffers;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004080 }
4081
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004082 new->size = size;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004083
4084 /* Copy thresholds and find current threshold */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004085 new->current_threshold = -1;
4086 for (i = 0, j = 0; i < thresholds->primary->size; i++) {
4087 if (thresholds->primary->entries[i].eventfd == eventfd)
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004088 continue;
4089
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004090 new->entries[j] = thresholds->primary->entries[i];
Sha Zhengju748dad32012-05-29 15:06:57 -07004091 if (new->entries[j].threshold <= usage) {
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004092 /*
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004093 * new->current_threshold will not be used
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004094 * until rcu_assign_pointer(), so it's safe to increment
4095 * it here.
4096 */
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004097 ++new->current_threshold;
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004098 }
4099 j++;
4100 }
4101
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07004102swap_buffers:
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004103 /* Swap primary and spare array */
4104 thresholds->spare = thresholds->primary;
Sha Zhengju8c757762012-05-10 13:01:45 -07004105
Kirill A. Shutemov2c488db2010-05-26 14:42:47 -07004106 rcu_assign_pointer(thresholds->primary, new);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004107
Kirill A. Shutemov907860e2010-05-26 14:42:46 -07004108 /* To be sure that nobody uses thresholds */
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004109 synchronize_rcu();
Martijn Coenen6611d8d2016-01-15 16:57:49 -08004110
4111 /* If all events are unregistered, free the spare array */
4112 if (!new) {
4113 kfree(thresholds->spare);
4114 thresholds->spare = NULL;
4115 }
Anton Vorontsov371528c2012-02-24 05:14:46 +04004116unlock:
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004117 mutex_unlock(&memcg->thresholds_lock);
Kirill A. Shutemov2e72b632010-03-10 15:22:24 -08004118}
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08004119
Tejun Heo59b6f872013-11-22 18:20:43 -05004120static void mem_cgroup_usage_unregister_event(struct mem_cgroup *memcg,
Tejun Heo347c4a82013-11-22 18:20:43 -05004121 struct eventfd_ctx *eventfd)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004122{
Tejun Heo59b6f872013-11-22 18:20:43 -05004123 return __mem_cgroup_usage_unregister_event(memcg, eventfd, _MEM);
Tejun Heo347c4a82013-11-22 18:20:43 -05004124}
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004125
Tejun Heo59b6f872013-11-22 18:20:43 -05004126static void memsw_cgroup_usage_unregister_event(struct mem_cgroup *memcg,
Tejun Heo347c4a82013-11-22 18:20:43 -05004127 struct eventfd_ctx *eventfd)
4128{
Tejun Heo59b6f872013-11-22 18:20:43 -05004129 return __mem_cgroup_usage_unregister_event(memcg, eventfd, _MEMSWAP);
Tejun Heo347c4a82013-11-22 18:20:43 -05004130}
4131
Tejun Heo59b6f872013-11-22 18:20:43 -05004132static int mem_cgroup_oom_register_event(struct mem_cgroup *memcg,
Tejun Heo347c4a82013-11-22 18:20:43 -05004133 struct eventfd_ctx *eventfd, const char *args)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004134{
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004135 struct mem_cgroup_eventfd_list *event;
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004136
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004137 event = kmalloc(sizeof(*event), GFP_KERNEL);
4138 if (!event)
4139 return -ENOMEM;
4140
Michal Hocko1af8efe2011-07-26 16:08:24 -07004141 spin_lock(&memcg_oom_lock);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004142
4143 event->eventfd = eventfd;
4144 list_add(&event->list, &memcg->oom_notify);
4145
4146 /* already in OOM ? */
Tejun Heoc2b42d32015-06-24 16:58:23 -07004147 if (memcg->under_oom)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004148 eventfd_signal(eventfd, 1);
Michal Hocko1af8efe2011-07-26 16:08:24 -07004149 spin_unlock(&memcg_oom_lock);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004150
4151 return 0;
4152}
4153
Tejun Heo59b6f872013-11-22 18:20:43 -05004154static void mem_cgroup_oom_unregister_event(struct mem_cgroup *memcg,
Tejun Heo347c4a82013-11-22 18:20:43 -05004155 struct eventfd_ctx *eventfd)
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004156{
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004157 struct mem_cgroup_eventfd_list *ev, *tmp;
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004158
Michal Hocko1af8efe2011-07-26 16:08:24 -07004159 spin_lock(&memcg_oom_lock);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004160
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07004161 list_for_each_entry_safe(ev, tmp, &memcg->oom_notify, list) {
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004162 if (ev->eventfd == eventfd) {
4163 list_del(&ev->list);
4164 kfree(ev);
4165 }
4166 }
4167
Michal Hocko1af8efe2011-07-26 16:08:24 -07004168 spin_unlock(&memcg_oom_lock);
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004169}
4170
Tejun Heo2da8ca82013-12-05 12:28:04 -05004171static int mem_cgroup_oom_control_read(struct seq_file *sf, void *v)
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004172{
Chris Downaa9694b2019-03-05 15:45:52 -08004173 struct mem_cgroup *memcg = mem_cgroup_from_seq(sf);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004174
Tejun Heo791badb2013-12-05 12:28:02 -05004175 seq_printf(sf, "oom_kill_disable %d\n", memcg->oom_kill_disable);
Tejun Heoc2b42d32015-06-24 16:58:23 -07004176 seq_printf(sf, "under_oom %d\n", (bool)memcg->under_oom);
Roman Gushchinfe6bdfc2018-06-14 15:28:05 -07004177 seq_printf(sf, "oom_kill %lu\n",
4178 atomic_long_read(&memcg->memory_events[MEMCG_OOM_KILL]));
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004179 return 0;
4180}
4181
Tejun Heo182446d2013-08-08 20:11:24 -04004182static int mem_cgroup_oom_control_write(struct cgroup_subsys_state *css,
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004183 struct cftype *cft, u64 val)
4184{
Tejun Heo182446d2013-08-08 20:11:24 -04004185 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004186
4187 /* cannot set to root cgroup and only 0 and 1 are allowed */
Linus Torvalds14208b02014-06-09 15:03:33 -07004188 if (!css->parent || !((val == 0) || (val == 1)))
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004189 return -EINVAL;
4190
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07004191 memcg->oom_kill_disable = val;
KAMEZAWA Hiroyuki4d845eb2010-06-29 15:05:18 -07004192 if (!val)
Raghavendra K Tc0ff4b82011-11-02 13:38:15 -07004193 memcg_oom_recover(memcg);
Johannes Weiner3dae7fe2014-06-04 16:07:01 -07004194
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004195 return 0;
4196}
4197
Tejun Heo52ebea72015-05-22 17:13:37 -04004198#ifdef CONFIG_CGROUP_WRITEBACK
4199
Tejun Heo3a8e9ac2019-08-29 15:47:19 -07004200#include <trace/events/writeback.h>
4201
Tejun Heo841710a2015-05-22 18:23:33 -04004202static int memcg_wb_domain_init(struct mem_cgroup *memcg, gfp_t gfp)
4203{
4204 return wb_domain_init(&memcg->cgwb_domain, gfp);
4205}
4206
4207static void memcg_wb_domain_exit(struct mem_cgroup *memcg)
4208{
4209 wb_domain_exit(&memcg->cgwb_domain);
4210}
4211
Tejun Heo2529bb32015-05-22 18:23:34 -04004212static void memcg_wb_domain_size_changed(struct mem_cgroup *memcg)
4213{
4214 wb_domain_size_changed(&memcg->cgwb_domain);
4215}
4216
Tejun Heo841710a2015-05-22 18:23:33 -04004217struct wb_domain *mem_cgroup_wb_domain(struct bdi_writeback *wb)
4218{
4219 struct mem_cgroup *memcg = mem_cgroup_from_css(wb->memcg_css);
4220
4221 if (!memcg->css.parent)
4222 return NULL;
4223
4224 return &memcg->cgwb_domain;
4225}
4226
Greg Thelen0b3d6e62019-04-05 18:39:18 -07004227/*
4228 * idx can be of type enum memcg_stat_item or node_stat_item.
4229 * Keep in sync with memcg_exact_page().
4230 */
4231static unsigned long memcg_exact_page_state(struct mem_cgroup *memcg, int idx)
4232{
Chris Down871789d2019-05-14 15:46:57 -07004233 long x = atomic_long_read(&memcg->vmstats[idx]);
Greg Thelen0b3d6e62019-04-05 18:39:18 -07004234 int cpu;
4235
4236 for_each_online_cpu(cpu)
Chris Down871789d2019-05-14 15:46:57 -07004237 x += per_cpu_ptr(memcg->vmstats_percpu, cpu)->stat[idx];
Greg Thelen0b3d6e62019-04-05 18:39:18 -07004238 if (x < 0)
4239 x = 0;
4240 return x;
4241}
4242
Tejun Heoc2aa7232015-05-22 18:23:35 -04004243/**
4244 * mem_cgroup_wb_stats - retrieve writeback related stats from its memcg
4245 * @wb: bdi_writeback in question
Tejun Heoc5edf9c2015-09-29 13:04:26 -04004246 * @pfilepages: out parameter for number of file pages
4247 * @pheadroom: out parameter for number of allocatable pages according to memcg
Tejun Heoc2aa7232015-05-22 18:23:35 -04004248 * @pdirty: out parameter for number of dirty pages
4249 * @pwriteback: out parameter for number of pages under writeback
4250 *
Tejun Heoc5edf9c2015-09-29 13:04:26 -04004251 * Determine the numbers of file, headroom, dirty, and writeback pages in
4252 * @wb's memcg. File, dirty and writeback are self-explanatory. Headroom
4253 * is a bit more involved.
Tejun Heoc2aa7232015-05-22 18:23:35 -04004254 *
Tejun Heoc5edf9c2015-09-29 13:04:26 -04004255 * A memcg's headroom is "min(max, high) - used". In the hierarchy, the
4256 * headroom is calculated as the lowest headroom of itself and the
4257 * ancestors. Note that this doesn't consider the actual amount of
4258 * available memory in the system. The caller should further cap
4259 * *@pheadroom accordingly.
Tejun Heoc2aa7232015-05-22 18:23:35 -04004260 */
Tejun Heoc5edf9c2015-09-29 13:04:26 -04004261void mem_cgroup_wb_stats(struct bdi_writeback *wb, unsigned long *pfilepages,
4262 unsigned long *pheadroom, unsigned long *pdirty,
4263 unsigned long *pwriteback)
Tejun Heoc2aa7232015-05-22 18:23:35 -04004264{
4265 struct mem_cgroup *memcg = mem_cgroup_from_css(wb->memcg_css);
4266 struct mem_cgroup *parent;
Tejun Heoc2aa7232015-05-22 18:23:35 -04004267
Greg Thelen0b3d6e62019-04-05 18:39:18 -07004268 *pdirty = memcg_exact_page_state(memcg, NR_FILE_DIRTY);
Tejun Heoc2aa7232015-05-22 18:23:35 -04004269
4270 /* this should eventually include NR_UNSTABLE_NFS */
Greg Thelen0b3d6e62019-04-05 18:39:18 -07004271 *pwriteback = memcg_exact_page_state(memcg, NR_WRITEBACK);
Johannes Weiner21d89d12019-05-13 17:18:08 -07004272 *pfilepages = memcg_exact_page_state(memcg, NR_INACTIVE_FILE) +
4273 memcg_exact_page_state(memcg, NR_ACTIVE_FILE);
Tejun Heoc5edf9c2015-09-29 13:04:26 -04004274 *pheadroom = PAGE_COUNTER_MAX;
Tejun Heoc2aa7232015-05-22 18:23:35 -04004275
Tejun Heoc2aa7232015-05-22 18:23:35 -04004276 while ((parent = parent_mem_cgroup(memcg))) {
Roman Gushchinbbec2e12018-06-07 17:06:18 -07004277 unsigned long ceiling = min(memcg->memory.max, memcg->high);
Tejun Heoc2aa7232015-05-22 18:23:35 -04004278 unsigned long used = page_counter_read(&memcg->memory);
4279
Tejun Heoc5edf9c2015-09-29 13:04:26 -04004280 *pheadroom = min(*pheadroom, ceiling - min(ceiling, used));
Tejun Heoc2aa7232015-05-22 18:23:35 -04004281 memcg = parent;
4282 }
Tejun Heoc2aa7232015-05-22 18:23:35 -04004283}
4284
Tejun Heo97b27822019-08-26 09:06:56 -07004285/*
4286 * Foreign dirty flushing
4287 *
4288 * There's an inherent mismatch between memcg and writeback. The former
4289 * trackes ownership per-page while the latter per-inode. This was a
4290 * deliberate design decision because honoring per-page ownership in the
4291 * writeback path is complicated, may lead to higher CPU and IO overheads
4292 * and deemed unnecessary given that write-sharing an inode across
4293 * different cgroups isn't a common use-case.
4294 *
4295 * Combined with inode majority-writer ownership switching, this works well
4296 * enough in most cases but there are some pathological cases. For
4297 * example, let's say there are two cgroups A and B which keep writing to
4298 * different but confined parts of the same inode. B owns the inode and
4299 * A's memory is limited far below B's. A's dirty ratio can rise enough to
4300 * trigger balance_dirty_pages() sleeps but B's can be low enough to avoid
4301 * triggering background writeback. A will be slowed down without a way to
4302 * make writeback of the dirty pages happen.
4303 *
4304 * Conditions like the above can lead to a cgroup getting repatedly and
4305 * severely throttled after making some progress after each
4306 * dirty_expire_interval while the underyling IO device is almost
4307 * completely idle.
4308 *
4309 * Solving this problem completely requires matching the ownership tracking
4310 * granularities between memcg and writeback in either direction. However,
4311 * the more egregious behaviors can be avoided by simply remembering the
4312 * most recent foreign dirtying events and initiating remote flushes on
4313 * them when local writeback isn't enough to keep the memory clean enough.
4314 *
4315 * The following two functions implement such mechanism. When a foreign
4316 * page - a page whose memcg and writeback ownerships don't match - is
4317 * dirtied, mem_cgroup_track_foreign_dirty() records the inode owning
4318 * bdi_writeback on the page owning memcg. When balance_dirty_pages()
4319 * decides that the memcg needs to sleep due to high dirty ratio, it calls
4320 * mem_cgroup_flush_foreign() which queues writeback on the recorded
4321 * foreign bdi_writebacks which haven't expired. Both the numbers of
4322 * recorded bdi_writebacks and concurrent in-flight foreign writebacks are
4323 * limited to MEMCG_CGWB_FRN_CNT.
4324 *
4325 * The mechanism only remembers IDs and doesn't hold any object references.
4326 * As being wrong occasionally doesn't matter, updates and accesses to the
4327 * records are lockless and racy.
4328 */
4329void mem_cgroup_track_foreign_dirty_slowpath(struct page *page,
4330 struct bdi_writeback *wb)
4331{
4332 struct mem_cgroup *memcg = page->mem_cgroup;
4333 struct memcg_cgwb_frn *frn;
4334 u64 now = get_jiffies_64();
4335 u64 oldest_at = now;
4336 int oldest = -1;
4337 int i;
4338
Tejun Heo3a8e9ac2019-08-29 15:47:19 -07004339 trace_track_foreign_dirty(page, wb);
4340
Tejun Heo97b27822019-08-26 09:06:56 -07004341 /*
4342 * Pick the slot to use. If there is already a slot for @wb, keep
4343 * using it. If not replace the oldest one which isn't being
4344 * written out.
4345 */
4346 for (i = 0; i < MEMCG_CGWB_FRN_CNT; i++) {
4347 frn = &memcg->cgwb_frn[i];
4348 if (frn->bdi_id == wb->bdi->id &&
4349 frn->memcg_id == wb->memcg_css->id)
4350 break;
4351 if (time_before64(frn->at, oldest_at) &&
4352 atomic_read(&frn->done.cnt) == 1) {
4353 oldest = i;
4354 oldest_at = frn->at;
4355 }
4356 }
4357
4358 if (i < MEMCG_CGWB_FRN_CNT) {
4359 /*
4360 * Re-using an existing one. Update timestamp lazily to
4361 * avoid making the cacheline hot. We want them to be
4362 * reasonably up-to-date and significantly shorter than
4363 * dirty_expire_interval as that's what expires the record.
4364 * Use the shorter of 1s and dirty_expire_interval / 8.
4365 */
4366 unsigned long update_intv =
4367 min_t(unsigned long, HZ,
4368 msecs_to_jiffies(dirty_expire_interval * 10) / 8);
4369
4370 if (time_before64(frn->at, now - update_intv))
4371 frn->at = now;
4372 } else if (oldest >= 0) {
4373 /* replace the oldest free one */
4374 frn = &memcg->cgwb_frn[oldest];
4375 frn->bdi_id = wb->bdi->id;
4376 frn->memcg_id = wb->memcg_css->id;
4377 frn->at = now;
4378 }
4379}
4380
4381/* issue foreign writeback flushes for recorded foreign dirtying events */
4382void mem_cgroup_flush_foreign(struct bdi_writeback *wb)
4383{
4384 struct mem_cgroup *memcg = mem_cgroup_from_css(wb->memcg_css);
4385 unsigned long intv = msecs_to_jiffies(dirty_expire_interval * 10);
4386 u64 now = jiffies_64;
4387 int i;
4388
4389 for (i = 0; i < MEMCG_CGWB_FRN_CNT; i++) {
4390 struct memcg_cgwb_frn *frn = &memcg->cgwb_frn[i];
4391
4392 /*
4393 * If the record is older than dirty_expire_interval,
4394 * writeback on it has already started. No need to kick it
4395 * off again. Also, don't start a new one if there's
4396 * already one in flight.
4397 */
4398 if (time_after64(frn->at, now - intv) &&
4399 atomic_read(&frn->done.cnt) == 1) {
4400 frn->at = 0;
Tejun Heo3a8e9ac2019-08-29 15:47:19 -07004401 trace_flush_foreign(wb, frn->bdi_id, frn->memcg_id);
Tejun Heo97b27822019-08-26 09:06:56 -07004402 cgroup_writeback_by_id(frn->bdi_id, frn->memcg_id, 0,
4403 WB_REASON_FOREIGN_FLUSH,
4404 &frn->done);
4405 }
4406 }
4407}
4408
Tejun Heo841710a2015-05-22 18:23:33 -04004409#else /* CONFIG_CGROUP_WRITEBACK */
4410
4411static int memcg_wb_domain_init(struct mem_cgroup *memcg, gfp_t gfp)
4412{
4413 return 0;
4414}
4415
4416static void memcg_wb_domain_exit(struct mem_cgroup *memcg)
4417{
4418}
4419
Tejun Heo2529bb32015-05-22 18:23:34 -04004420static void memcg_wb_domain_size_changed(struct mem_cgroup *memcg)
4421{
4422}
4423
Tejun Heo52ebea72015-05-22 17:13:37 -04004424#endif /* CONFIG_CGROUP_WRITEBACK */
4425
Tejun Heo79bd9812013-11-22 18:20:42 -05004426/*
Tejun Heo3bc942f2013-11-22 18:20:44 -05004427 * DO NOT USE IN NEW FILES.
4428 *
4429 * "cgroup.event_control" implementation.
4430 *
4431 * This is way over-engineered. It tries to support fully configurable
4432 * events for each user. Such level of flexibility is completely
4433 * unnecessary especially in the light of the planned unified hierarchy.
4434 *
4435 * Please deprecate this and replace with something simpler if at all
4436 * possible.
4437 */
4438
4439/*
Tejun Heo79bd9812013-11-22 18:20:42 -05004440 * Unregister event and free resources.
4441 *
4442 * Gets called from workqueue.
4443 */
Tejun Heo3bc942f2013-11-22 18:20:44 -05004444static void memcg_event_remove(struct work_struct *work)
Tejun Heo79bd9812013-11-22 18:20:42 -05004445{
Tejun Heo3bc942f2013-11-22 18:20:44 -05004446 struct mem_cgroup_event *event =
4447 container_of(work, struct mem_cgroup_event, remove);
Tejun Heo59b6f872013-11-22 18:20:43 -05004448 struct mem_cgroup *memcg = event->memcg;
Tejun Heo79bd9812013-11-22 18:20:42 -05004449
4450 remove_wait_queue(event->wqh, &event->wait);
4451
Tejun Heo59b6f872013-11-22 18:20:43 -05004452 event->unregister_event(memcg, event->eventfd);
Tejun Heo79bd9812013-11-22 18:20:42 -05004453
4454 /* Notify userspace the event is going away. */
4455 eventfd_signal(event->eventfd, 1);
4456
4457 eventfd_ctx_put(event->eventfd);
4458 kfree(event);
Tejun Heo59b6f872013-11-22 18:20:43 -05004459 css_put(&memcg->css);
Tejun Heo79bd9812013-11-22 18:20:42 -05004460}
4461
4462/*
Linus Torvaldsa9a08842018-02-11 14:34:03 -08004463 * Gets called on EPOLLHUP on eventfd when user closes it.
Tejun Heo79bd9812013-11-22 18:20:42 -05004464 *
4465 * Called with wqh->lock held and interrupts disabled.
4466 */
Ingo Molnarac6424b2017-06-20 12:06:13 +02004467static int memcg_event_wake(wait_queue_entry_t *wait, unsigned mode,
Tejun Heo3bc942f2013-11-22 18:20:44 -05004468 int sync, void *key)
Tejun Heo79bd9812013-11-22 18:20:42 -05004469{
Tejun Heo3bc942f2013-11-22 18:20:44 -05004470 struct mem_cgroup_event *event =
4471 container_of(wait, struct mem_cgroup_event, wait);
Tejun Heo59b6f872013-11-22 18:20:43 -05004472 struct mem_cgroup *memcg = event->memcg;
Al Viro3ad6f932017-07-03 20:14:56 -04004473 __poll_t flags = key_to_poll(key);
Tejun Heo79bd9812013-11-22 18:20:42 -05004474
Linus Torvaldsa9a08842018-02-11 14:34:03 -08004475 if (flags & EPOLLHUP) {
Tejun Heo79bd9812013-11-22 18:20:42 -05004476 /*
4477 * If the event has been detached at cgroup removal, we
4478 * can simply return knowing the other side will cleanup
4479 * for us.
4480 *
4481 * We can't race against event freeing since the other
4482 * side will require wqh->lock via remove_wait_queue(),
4483 * which we hold.
4484 */
Tejun Heofba94802013-11-22 18:20:43 -05004485 spin_lock(&memcg->event_list_lock);
Tejun Heo79bd9812013-11-22 18:20:42 -05004486 if (!list_empty(&event->list)) {
4487 list_del_init(&event->list);
4488 /*
4489 * We are in atomic context, but cgroup_event_remove()
4490 * may sleep, so we have to call it in workqueue.
4491 */
4492 schedule_work(&event->remove);
4493 }
Tejun Heofba94802013-11-22 18:20:43 -05004494 spin_unlock(&memcg->event_list_lock);
Tejun Heo79bd9812013-11-22 18:20:42 -05004495 }
4496
4497 return 0;
4498}
4499
Tejun Heo3bc942f2013-11-22 18:20:44 -05004500static void memcg_event_ptable_queue_proc(struct file *file,
Tejun Heo79bd9812013-11-22 18:20:42 -05004501 wait_queue_head_t *wqh, poll_table *pt)
4502{
Tejun Heo3bc942f2013-11-22 18:20:44 -05004503 struct mem_cgroup_event *event =
4504 container_of(pt, struct mem_cgroup_event, pt);
Tejun Heo79bd9812013-11-22 18:20:42 -05004505
4506 event->wqh = wqh;
4507 add_wait_queue(wqh, &event->wait);
4508}
4509
4510/*
Tejun Heo3bc942f2013-11-22 18:20:44 -05004511 * DO NOT USE IN NEW FILES.
4512 *
Tejun Heo79bd9812013-11-22 18:20:42 -05004513 * Parse input and register new cgroup event handler.
4514 *
4515 * Input must be in format '<event_fd> <control_fd> <args>'.
4516 * Interpretation of args is defined by control file implementation.
4517 */
Tejun Heo451af502014-05-13 12:16:21 -04004518static ssize_t memcg_write_event_control(struct kernfs_open_file *of,
4519 char *buf, size_t nbytes, loff_t off)
Tejun Heo79bd9812013-11-22 18:20:42 -05004520{
Tejun Heo451af502014-05-13 12:16:21 -04004521 struct cgroup_subsys_state *css = of_css(of);
Tejun Heofba94802013-11-22 18:20:43 -05004522 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
Tejun Heo3bc942f2013-11-22 18:20:44 -05004523 struct mem_cgroup_event *event;
Tejun Heo79bd9812013-11-22 18:20:42 -05004524 struct cgroup_subsys_state *cfile_css;
4525 unsigned int efd, cfd;
4526 struct fd efile;
4527 struct fd cfile;
Tejun Heofba94802013-11-22 18:20:43 -05004528 const char *name;
Tejun Heo79bd9812013-11-22 18:20:42 -05004529 char *endp;
4530 int ret;
4531
Tejun Heo451af502014-05-13 12:16:21 -04004532 buf = strstrip(buf);
4533
4534 efd = simple_strtoul(buf, &endp, 10);
Tejun Heo79bd9812013-11-22 18:20:42 -05004535 if (*endp != ' ')
4536 return -EINVAL;
Tejun Heo451af502014-05-13 12:16:21 -04004537 buf = endp + 1;
Tejun Heo79bd9812013-11-22 18:20:42 -05004538
Tejun Heo451af502014-05-13 12:16:21 -04004539 cfd = simple_strtoul(buf, &endp, 10);
Tejun Heo79bd9812013-11-22 18:20:42 -05004540 if ((*endp != ' ') && (*endp != '\0'))
4541 return -EINVAL;
Tejun Heo451af502014-05-13 12:16:21 -04004542 buf = endp + 1;
Tejun Heo79bd9812013-11-22 18:20:42 -05004543
4544 event = kzalloc(sizeof(*event), GFP_KERNEL);
4545 if (!event)
4546 return -ENOMEM;
4547
Tejun Heo59b6f872013-11-22 18:20:43 -05004548 event->memcg = memcg;
Tejun Heo79bd9812013-11-22 18:20:42 -05004549 INIT_LIST_HEAD(&event->list);
Tejun Heo3bc942f2013-11-22 18:20:44 -05004550 init_poll_funcptr(&event->pt, memcg_event_ptable_queue_proc);
4551 init_waitqueue_func_entry(&event->wait, memcg_event_wake);
4552 INIT_WORK(&event->remove, memcg_event_remove);
Tejun Heo79bd9812013-11-22 18:20:42 -05004553
4554 efile = fdget(efd);
4555 if (!efile.file) {
4556 ret = -EBADF;
4557 goto out_kfree;
4558 }
4559
4560 event->eventfd = eventfd_ctx_fileget(efile.file);
4561 if (IS_ERR(event->eventfd)) {
4562 ret = PTR_ERR(event->eventfd);
4563 goto out_put_efile;
4564 }
4565
4566 cfile = fdget(cfd);
4567 if (!cfile.file) {
4568 ret = -EBADF;
4569 goto out_put_eventfd;
4570 }
4571
4572 /* the process need read permission on control file */
4573 /* AV: shouldn't we check that it's been opened for read instead? */
4574 ret = inode_permission(file_inode(cfile.file), MAY_READ);
4575 if (ret < 0)
4576 goto out_put_cfile;
4577
Tejun Heo79bd9812013-11-22 18:20:42 -05004578 /*
Tejun Heofba94802013-11-22 18:20:43 -05004579 * Determine the event callbacks and set them in @event. This used
4580 * to be done via struct cftype but cgroup core no longer knows
4581 * about these events. The following is crude but the whole thing
4582 * is for compatibility anyway.
Tejun Heo3bc942f2013-11-22 18:20:44 -05004583 *
4584 * DO NOT ADD NEW FILES.
Tejun Heofba94802013-11-22 18:20:43 -05004585 */
Al Virob5830432014-10-31 01:22:04 -04004586 name = cfile.file->f_path.dentry->d_name.name;
Tejun Heofba94802013-11-22 18:20:43 -05004587
4588 if (!strcmp(name, "memory.usage_in_bytes")) {
4589 event->register_event = mem_cgroup_usage_register_event;
4590 event->unregister_event = mem_cgroup_usage_unregister_event;
4591 } else if (!strcmp(name, "memory.oom_control")) {
4592 event->register_event = mem_cgroup_oom_register_event;
4593 event->unregister_event = mem_cgroup_oom_unregister_event;
4594 } else if (!strcmp(name, "memory.pressure_level")) {
4595 event->register_event = vmpressure_register_event;
4596 event->unregister_event = vmpressure_unregister_event;
4597 } else if (!strcmp(name, "memory.memsw.usage_in_bytes")) {
Tejun Heo347c4a82013-11-22 18:20:43 -05004598 event->register_event = memsw_cgroup_usage_register_event;
4599 event->unregister_event = memsw_cgroup_usage_unregister_event;
Tejun Heofba94802013-11-22 18:20:43 -05004600 } else {
4601 ret = -EINVAL;
4602 goto out_put_cfile;
4603 }
4604
4605 /*
Tejun Heob5557c42013-11-22 18:20:42 -05004606 * Verify @cfile should belong to @css. Also, remaining events are
4607 * automatically removed on cgroup destruction but the removal is
4608 * asynchronous, so take an extra ref on @css.
Tejun Heo79bd9812013-11-22 18:20:42 -05004609 */
Al Virob5830432014-10-31 01:22:04 -04004610 cfile_css = css_tryget_online_from_dir(cfile.file->f_path.dentry->d_parent,
Tejun Heoec903c02014-05-13 12:11:01 -04004611 &memory_cgrp_subsys);
Tejun Heo79bd9812013-11-22 18:20:42 -05004612 ret = -EINVAL;
Tejun Heo5a17f542014-02-11 11:52:47 -05004613 if (IS_ERR(cfile_css))
Tejun Heo79bd9812013-11-22 18:20:42 -05004614 goto out_put_cfile;
Tejun Heo5a17f542014-02-11 11:52:47 -05004615 if (cfile_css != css) {
4616 css_put(cfile_css);
4617 goto out_put_cfile;
4618 }
Tejun Heo79bd9812013-11-22 18:20:42 -05004619
Tejun Heo451af502014-05-13 12:16:21 -04004620 ret = event->register_event(memcg, event->eventfd, buf);
Tejun Heo79bd9812013-11-22 18:20:42 -05004621 if (ret)
4622 goto out_put_css;
4623
Christoph Hellwig9965ed172018-03-05 07:26:05 -08004624 vfs_poll(efile.file, &event->pt);
Tejun Heo79bd9812013-11-22 18:20:42 -05004625
Tejun Heofba94802013-11-22 18:20:43 -05004626 spin_lock(&memcg->event_list_lock);
4627 list_add(&event->list, &memcg->event_list);
4628 spin_unlock(&memcg->event_list_lock);
Tejun Heo79bd9812013-11-22 18:20:42 -05004629
4630 fdput(cfile);
4631 fdput(efile);
4632
Tejun Heo451af502014-05-13 12:16:21 -04004633 return nbytes;
Tejun Heo79bd9812013-11-22 18:20:42 -05004634
4635out_put_css:
Tejun Heob5557c42013-11-22 18:20:42 -05004636 css_put(css);
Tejun Heo79bd9812013-11-22 18:20:42 -05004637out_put_cfile:
4638 fdput(cfile);
4639out_put_eventfd:
4640 eventfd_ctx_put(event->eventfd);
4641out_put_efile:
4642 fdput(efile);
4643out_kfree:
4644 kfree(event);
4645
4646 return ret;
4647}
4648
Johannes Weiner241994ed2015-02-11 15:26:06 -08004649static struct cftype mem_cgroup_legacy_files[] = {
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004650 {
Balbir Singh0eea1032008-02-07 00:13:57 -08004651 .name = "usage_in_bytes",
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004652 .private = MEMFILE_PRIVATE(_MEM, RES_USAGE),
Tejun Heo791badb2013-12-05 12:28:02 -05004653 .read_u64 = mem_cgroup_read_u64,
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004654 },
4655 {
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07004656 .name = "max_usage_in_bytes",
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004657 .private = MEMFILE_PRIVATE(_MEM, RES_MAX_USAGE),
Tejun Heo6770c642014-05-13 12:16:21 -04004658 .write = mem_cgroup_reset,
Tejun Heo791badb2013-12-05 12:28:02 -05004659 .read_u64 = mem_cgroup_read_u64,
Pavel Emelyanovc84872e2008-04-29 01:00:17 -07004660 },
4661 {
Balbir Singh0eea1032008-02-07 00:13:57 -08004662 .name = "limit_in_bytes",
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004663 .private = MEMFILE_PRIVATE(_MEM, RES_LIMIT),
Tejun Heo451af502014-05-13 12:16:21 -04004664 .write = mem_cgroup_write,
Tejun Heo791badb2013-12-05 12:28:02 -05004665 .read_u64 = mem_cgroup_read_u64,
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004666 },
4667 {
Balbir Singh296c81d2009-09-23 15:56:36 -07004668 .name = "soft_limit_in_bytes",
4669 .private = MEMFILE_PRIVATE(_MEM, RES_SOFT_LIMIT),
Tejun Heo451af502014-05-13 12:16:21 -04004670 .write = mem_cgroup_write,
Tejun Heo791badb2013-12-05 12:28:02 -05004671 .read_u64 = mem_cgroup_read_u64,
Balbir Singh296c81d2009-09-23 15:56:36 -07004672 },
4673 {
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004674 .name = "failcnt",
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004675 .private = MEMFILE_PRIVATE(_MEM, RES_FAILCNT),
Tejun Heo6770c642014-05-13 12:16:21 -04004676 .write = mem_cgroup_reset,
Tejun Heo791badb2013-12-05 12:28:02 -05004677 .read_u64 = mem_cgroup_read_u64,
Balbir Singh8cdea7c2008-02-07 00:13:50 -08004678 },
Balbir Singh8697d332008-02-07 00:13:59 -08004679 {
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08004680 .name = "stat",
Tejun Heo2da8ca82013-12-05 12:28:04 -05004681 .seq_show = memcg_stat_show,
KAMEZAWA Hiroyukid2ceb9b2008-02-07 00:14:25 -08004682 },
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08004683 {
4684 .name = "force_empty",
Tejun Heo6770c642014-05-13 12:16:21 -04004685 .write = mem_cgroup_force_empty_write,
KAMEZAWA Hiroyukic1e862c2009-01-07 18:07:55 -08004686 },
Balbir Singh18f59ea2009-01-07 18:08:07 -08004687 {
4688 .name = "use_hierarchy",
4689 .write_u64 = mem_cgroup_hierarchy_write,
4690 .read_u64 = mem_cgroup_hierarchy_read,
4691 },
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08004692 {
Tejun Heo3bc942f2013-11-22 18:20:44 -05004693 .name = "cgroup.event_control", /* XXX: for compat */
Tejun Heo451af502014-05-13 12:16:21 -04004694 .write = memcg_write_event_control,
Tejun Heo7dbdb192015-09-18 17:54:23 -04004695 .flags = CFTYPE_NO_PREFIX | CFTYPE_WORLD_WRITABLE,
Tejun Heo79bd9812013-11-22 18:20:42 -05004696 },
4697 {
KOSAKI Motohiroa7885eb2009-01-07 18:08:24 -08004698 .name = "swappiness",
4699 .read_u64 = mem_cgroup_swappiness_read,
4700 .write_u64 = mem_cgroup_swappiness_write,
4701 },
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08004702 {
4703 .name = "move_charge_at_immigrate",
4704 .read_u64 = mem_cgroup_move_charge_read,
4705 .write_u64 = mem_cgroup_move_charge_write,
4706 },
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004707 {
4708 .name = "oom_control",
Tejun Heo2da8ca82013-12-05 12:28:04 -05004709 .seq_show = mem_cgroup_oom_control_read,
KAMEZAWA Hiroyuki3c11ecf2010-05-26 14:42:37 -07004710 .write_u64 = mem_cgroup_oom_control_write,
KAMEZAWA Hiroyuki9490ff22010-05-26 14:42:36 -07004711 .private = MEMFILE_PRIVATE(_OOM_TYPE, OOM_CONTROL),
4712 },
Anton Vorontsov70ddf632013-04-29 15:08:31 -07004713 {
4714 .name = "pressure_level",
Anton Vorontsov70ddf632013-04-29 15:08:31 -07004715 },
Ying Han406eb0c2011-05-26 16:25:37 -07004716#ifdef CONFIG_NUMA
4717 {
4718 .name = "numa_stat",
Tejun Heo2da8ca82013-12-05 12:28:04 -05004719 .seq_show = memcg_numa_stat_show,
Ying Han406eb0c2011-05-26 16:25:37 -07004720 },
4721#endif
Glauber Costa510fc4e2012-12-18 14:21:47 -08004722 {
4723 .name = "kmem.limit_in_bytes",
4724 .private = MEMFILE_PRIVATE(_KMEM, RES_LIMIT),
Tejun Heo451af502014-05-13 12:16:21 -04004725 .write = mem_cgroup_write,
Tejun Heo791badb2013-12-05 12:28:02 -05004726 .read_u64 = mem_cgroup_read_u64,
Glauber Costa510fc4e2012-12-18 14:21:47 -08004727 },
4728 {
4729 .name = "kmem.usage_in_bytes",
4730 .private = MEMFILE_PRIVATE(_KMEM, RES_USAGE),
Tejun Heo791badb2013-12-05 12:28:02 -05004731 .read_u64 = mem_cgroup_read_u64,
Glauber Costa510fc4e2012-12-18 14:21:47 -08004732 },
4733 {
4734 .name = "kmem.failcnt",
4735 .private = MEMFILE_PRIVATE(_KMEM, RES_FAILCNT),
Tejun Heo6770c642014-05-13 12:16:21 -04004736 .write = mem_cgroup_reset,
Tejun Heo791badb2013-12-05 12:28:02 -05004737 .read_u64 = mem_cgroup_read_u64,
Glauber Costa510fc4e2012-12-18 14:21:47 -08004738 },
4739 {
4740 .name = "kmem.max_usage_in_bytes",
4741 .private = MEMFILE_PRIVATE(_KMEM, RES_MAX_USAGE),
Tejun Heo6770c642014-05-13 12:16:21 -04004742 .write = mem_cgroup_reset,
Tejun Heo791badb2013-12-05 12:28:02 -05004743 .read_u64 = mem_cgroup_read_u64,
Glauber Costa510fc4e2012-12-18 14:21:47 -08004744 },
Yang Shi5b365772017-11-15 17:32:03 -08004745#if defined(CONFIG_SLAB) || defined(CONFIG_SLUB_DEBUG)
Glauber Costa749c5412012-12-18 14:23:01 -08004746 {
4747 .name = "kmem.slabinfo",
Tejun Heobc2791f2017-02-22 15:41:21 -08004748 .seq_start = memcg_slab_start,
4749 .seq_next = memcg_slab_next,
4750 .seq_stop = memcg_slab_stop,
Vladimir Davydovb0475012014-12-10 15:44:19 -08004751 .seq_show = memcg_slab_show,
Glauber Costa749c5412012-12-18 14:23:01 -08004752 },
4753#endif
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08004754 {
4755 .name = "kmem.tcp.limit_in_bytes",
4756 .private = MEMFILE_PRIVATE(_TCP, RES_LIMIT),
4757 .write = mem_cgroup_write,
4758 .read_u64 = mem_cgroup_read_u64,
4759 },
4760 {
4761 .name = "kmem.tcp.usage_in_bytes",
4762 .private = MEMFILE_PRIVATE(_TCP, RES_USAGE),
4763 .read_u64 = mem_cgroup_read_u64,
4764 },
4765 {
4766 .name = "kmem.tcp.failcnt",
4767 .private = MEMFILE_PRIVATE(_TCP, RES_FAILCNT),
4768 .write = mem_cgroup_reset,
4769 .read_u64 = mem_cgroup_read_u64,
4770 },
4771 {
4772 .name = "kmem.tcp.max_usage_in_bytes",
4773 .private = MEMFILE_PRIVATE(_TCP, RES_MAX_USAGE),
4774 .write = mem_cgroup_reset,
4775 .read_u64 = mem_cgroup_read_u64,
4776 },
Tejun Heo6bc10342012-04-01 12:09:55 -07004777 { }, /* terminate */
Tejun Heoaf36f902012-04-01 12:09:55 -07004778};
KAMEZAWA Hiroyuki8c7c6e342009-01-07 18:08:00 -08004779
Johannes Weiner73f576c2016-07-20 15:44:57 -07004780/*
4781 * Private memory cgroup IDR
4782 *
4783 * Swap-out records and page cache shadow entries need to store memcg
4784 * references in constrained space, so we maintain an ID space that is
4785 * limited to 16 bit (MEM_CGROUP_ID_MAX), limiting the total number of
4786 * memory-controlled cgroups to 64k.
4787 *
4788 * However, there usually are many references to the oflline CSS after
4789 * the cgroup has been destroyed, such as page cache or reclaimable
4790 * slab objects, that don't need to hang on to the ID. We want to keep
4791 * those dead CSS from occupying IDs, or we might quickly exhaust the
4792 * relatively small ID space and prevent the creation of new cgroups
4793 * even when there are much fewer than 64k cgroups - possibly none.
4794 *
4795 * Maintain a private 16-bit ID space for memcg, and allow the ID to
4796 * be freed and recycled when it's no longer needed, which is usually
4797 * when the CSS is offlined.
4798 *
4799 * The only exception to that are records of swapped out tmpfs/shmem
4800 * pages that need to be attributed to live ancestors on swapin. But
4801 * those references are manageable from userspace.
4802 */
4803
4804static DEFINE_IDR(mem_cgroup_idr);
4805
Kirill Tkhai7e97de02018-08-02 15:36:01 -07004806static void mem_cgroup_id_remove(struct mem_cgroup *memcg)
4807{
4808 if (memcg->id.id > 0) {
4809 idr_remove(&mem_cgroup_idr, memcg->id.id);
4810 memcg->id.id = 0;
4811 }
4812}
4813
Vladimir Davydov615d66c2016-08-11 15:33:03 -07004814static void mem_cgroup_id_get_many(struct mem_cgroup *memcg, unsigned int n)
Johannes Weiner73f576c2016-07-20 15:44:57 -07004815{
Kirill Tkhai1c2d4792018-10-26 15:09:28 -07004816 refcount_add(n, &memcg->id.ref);
Johannes Weiner73f576c2016-07-20 15:44:57 -07004817}
4818
Vladimir Davydov615d66c2016-08-11 15:33:03 -07004819static void mem_cgroup_id_put_many(struct mem_cgroup *memcg, unsigned int n)
Johannes Weiner73f576c2016-07-20 15:44:57 -07004820{
Kirill Tkhai1c2d4792018-10-26 15:09:28 -07004821 if (refcount_sub_and_test(n, &memcg->id.ref)) {
Kirill Tkhai7e97de02018-08-02 15:36:01 -07004822 mem_cgroup_id_remove(memcg);
Johannes Weiner73f576c2016-07-20 15:44:57 -07004823
4824 /* Memcg ID pins CSS */
4825 css_put(&memcg->css);
4826 }
4827}
4828
Vladimir Davydov615d66c2016-08-11 15:33:03 -07004829static inline void mem_cgroup_id_put(struct mem_cgroup *memcg)
4830{
4831 mem_cgroup_id_put_many(memcg, 1);
4832}
4833
Johannes Weiner73f576c2016-07-20 15:44:57 -07004834/**
4835 * mem_cgroup_from_id - look up a memcg from a memcg id
4836 * @id: the memcg id to look up
4837 *
4838 * Caller must hold rcu_read_lock().
4839 */
4840struct mem_cgroup *mem_cgroup_from_id(unsigned short id)
4841{
4842 WARN_ON_ONCE(!rcu_read_lock_held());
4843 return idr_find(&mem_cgroup_idr, id);
4844}
4845
Mel Gormanef8f2322016-07-28 15:46:05 -07004846static int alloc_mem_cgroup_per_node_info(struct mem_cgroup *memcg, int node)
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004847{
4848 struct mem_cgroup_per_node *pn;
Mel Gormanef8f2322016-07-28 15:46:05 -07004849 int tmp = node;
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004850 /*
4851 * This routine is called against possible nodes.
4852 * But it's BUG to call kmalloc() against offline node.
4853 *
4854 * TODO: this routine can waste much memory for nodes which will
4855 * never be onlined. It's better to use memory hotplug callback
4856 * function.
4857 */
KAMEZAWA Hiroyuki41e33552008-04-08 17:41:54 -07004858 if (!node_state(node, N_NORMAL_MEMORY))
4859 tmp = -1;
Jesper Juhl17295c82011-01-13 15:47:42 -08004860 pn = kzalloc_node(sizeof(*pn), GFP_KERNEL, tmp);
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004861 if (!pn)
4862 return 1;
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004863
Johannes Weiner815744d2019-06-13 15:55:46 -07004864 pn->lruvec_stat_local = alloc_percpu(struct lruvec_stat);
4865 if (!pn->lruvec_stat_local) {
4866 kfree(pn);
4867 return 1;
4868 }
4869
Johannes Weinera983b5e2018-01-31 16:16:45 -08004870 pn->lruvec_stat_cpu = alloc_percpu(struct lruvec_stat);
4871 if (!pn->lruvec_stat_cpu) {
Johannes Weiner815744d2019-06-13 15:55:46 -07004872 free_percpu(pn->lruvec_stat_local);
Johannes Weiner00f3ca22017-07-06 15:40:52 -07004873 kfree(pn);
4874 return 1;
4875 }
4876
Mel Gormanef8f2322016-07-28 15:46:05 -07004877 lruvec_init(&pn->lruvec);
4878 pn->usage_in_excess = 0;
4879 pn->on_tree = false;
4880 pn->memcg = memcg;
4881
Johannes Weiner54f72fe2013-07-08 15:59:49 -07004882 memcg->nodeinfo[node] = pn;
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08004883 return 0;
4884}
4885
Mel Gormanef8f2322016-07-28 15:46:05 -07004886static void free_mem_cgroup_per_node_info(struct mem_cgroup *memcg, int node)
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004887{
Johannes Weiner00f3ca22017-07-06 15:40:52 -07004888 struct mem_cgroup_per_node *pn = memcg->nodeinfo[node];
4889
Michal Hocko4eaf4312018-04-10 16:29:52 -07004890 if (!pn)
4891 return;
4892
Johannes Weinera983b5e2018-01-31 16:16:45 -08004893 free_percpu(pn->lruvec_stat_cpu);
Johannes Weiner815744d2019-06-13 15:55:46 -07004894 free_percpu(pn->lruvec_stat_local);
Johannes Weiner00f3ca22017-07-06 15:40:52 -07004895 kfree(pn);
KAMEZAWA Hiroyuki1ecaab22008-02-07 00:14:38 -08004896}
4897
Tahsin Erdogan40e952f2017-03-09 16:17:26 -08004898static void __mem_cgroup_free(struct mem_cgroup *memcg)
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004899{
4900 int node;
4901
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004902 for_each_node(node)
Mel Gormanef8f2322016-07-28 15:46:05 -07004903 free_mem_cgroup_per_node_info(memcg, node);
Chris Down871789d2019-05-14 15:46:57 -07004904 free_percpu(memcg->vmstats_percpu);
Johannes Weiner815744d2019-06-13 15:55:46 -07004905 free_percpu(memcg->vmstats_local);
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004906 kfree(memcg);
4907}
4908
Tahsin Erdogan40e952f2017-03-09 16:17:26 -08004909static void mem_cgroup_free(struct mem_cgroup *memcg)
4910{
4911 memcg_wb_domain_exit(memcg);
Shakeel Butt7961eee2019-11-05 21:16:21 -08004912 /*
4913 * Flush percpu vmstats and vmevents to guarantee the value correctness
4914 * on parent's and all ancestor levels.
4915 */
4916 memcg_flush_percpu_vmstats(memcg, false);
4917 memcg_flush_percpu_vmevents(memcg);
Tahsin Erdogan40e952f2017-03-09 16:17:26 -08004918 __mem_cgroup_free(memcg);
4919}
4920
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004921static struct mem_cgroup *mem_cgroup_alloc(void)
4922{
Hugh Dickinsd79154b2012-03-21 16:34:18 -07004923 struct mem_cgroup *memcg;
Alexey Dobriyanb9726c22019-03-05 15:48:26 -08004924 unsigned int size;
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004925 int node;
Tejun Heo97b27822019-08-26 09:06:56 -07004926 int __maybe_unused i;
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004927
Vladimir Davydov8ff69e22014-01-23 15:52:52 -08004928 size = sizeof(struct mem_cgroup);
4929 size += nr_node_ids * sizeof(struct mem_cgroup_per_node *);
KAMEZAWA Hiroyuki33327942008-04-29 01:00:24 -07004930
Vladimir Davydov8ff69e22014-01-23 15:52:52 -08004931 memcg = kzalloc(size, GFP_KERNEL);
Hugh Dickinsd79154b2012-03-21 16:34:18 -07004932 if (!memcg)
Dan Carpentere7bbcdf2010-03-23 13:35:12 -07004933 return NULL;
4934
Johannes Weiner73f576c2016-07-20 15:44:57 -07004935 memcg->id.id = idr_alloc(&mem_cgroup_idr, NULL,
4936 1, MEM_CGROUP_ID_MAX,
4937 GFP_KERNEL);
4938 if (memcg->id.id < 0)
4939 goto fail;
4940
Johannes Weiner815744d2019-06-13 15:55:46 -07004941 memcg->vmstats_local = alloc_percpu(struct memcg_vmstats_percpu);
4942 if (!memcg->vmstats_local)
4943 goto fail;
4944
Chris Down871789d2019-05-14 15:46:57 -07004945 memcg->vmstats_percpu = alloc_percpu(struct memcg_vmstats_percpu);
4946 if (!memcg->vmstats_percpu)
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004947 goto fail;
Pavel Emelianov78fb7462008-02-07 00:13:51 -08004948
Bob Liu3ed28fa2012-01-12 17:19:04 -08004949 for_each_node(node)
Mel Gormanef8f2322016-07-28 15:46:05 -07004950 if (alloc_mem_cgroup_per_node_info(memcg, node))
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004951 goto fail;
Balbir Singhf64c3f52009-09-23 15:56:37 -07004952
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004953 if (memcg_wb_domain_init(memcg, GFP_KERNEL))
4954 goto fail;
Balbir Singh28dbc4b2009-01-07 18:08:05 -08004955
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08004956 INIT_WORK(&memcg->high_work, high_work_func);
Glauber Costad142e3e2013-02-22 16:34:52 -08004957 INIT_LIST_HEAD(&memcg->oom_notify);
Glauber Costad142e3e2013-02-22 16:34:52 -08004958 mutex_init(&memcg->thresholds_lock);
4959 spin_lock_init(&memcg->move_lock);
Anton Vorontsov70ddf632013-04-29 15:08:31 -07004960 vmpressure_init(&memcg->vmpressure);
Tejun Heofba94802013-11-22 18:20:43 -05004961 INIT_LIST_HEAD(&memcg->event_list);
4962 spin_lock_init(&memcg->event_list_lock);
Johannes Weinerd886f4e2016-01-20 15:02:47 -08004963 memcg->socket_pressure = jiffies;
Kirill Tkhai84c07d12018-08-17 15:47:25 -07004964#ifdef CONFIG_MEMCG_KMEM
Vladimir Davydov900a38f2014-12-12 16:55:10 -08004965 memcg->kmemcg_id = -1;
Vladimir Davydov900a38f2014-12-12 16:55:10 -08004966#endif
Tejun Heo52ebea72015-05-22 17:13:37 -04004967#ifdef CONFIG_CGROUP_WRITEBACK
4968 INIT_LIST_HEAD(&memcg->cgwb_list);
Tejun Heo97b27822019-08-26 09:06:56 -07004969 for (i = 0; i < MEMCG_CGWB_FRN_CNT; i++)
4970 memcg->cgwb_frn[i].done =
4971 __WB_COMPLETION_INIT(&memcg_cgwb_frn_waitq);
Tejun Heo52ebea72015-05-22 17:13:37 -04004972#endif
Yang Shi87eaceb2019-09-23 15:38:15 -07004973#ifdef CONFIG_TRANSPARENT_HUGEPAGE
4974 spin_lock_init(&memcg->deferred_split_queue.split_queue_lock);
4975 INIT_LIST_HEAD(&memcg->deferred_split_queue.split_queue);
4976 memcg->deferred_split_queue.split_queue_len = 0;
4977#endif
Johannes Weiner73f576c2016-07-20 15:44:57 -07004978 idr_replace(&mem_cgroup_idr, memcg, memcg->id.id);
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004979 return memcg;
4980fail:
Kirill Tkhai7e97de02018-08-02 15:36:01 -07004981 mem_cgroup_id_remove(memcg);
Tahsin Erdogan40e952f2017-03-09 16:17:26 -08004982 __mem_cgroup_free(memcg);
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004983 return NULL;
Glauber Costad142e3e2013-02-22 16:34:52 -08004984}
4985
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004986static struct cgroup_subsys_state * __ref
4987mem_cgroup_css_alloc(struct cgroup_subsys_state *parent_css)
Glauber Costad142e3e2013-02-22 16:34:52 -08004988{
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004989 struct mem_cgroup *parent = mem_cgroup_from_css(parent_css);
4990 struct mem_cgroup *memcg;
4991 long error = -ENOMEM;
Glauber Costad142e3e2013-02-22 16:34:52 -08004992
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004993 memcg = mem_cgroup_alloc();
4994 if (!memcg)
4995 return ERR_PTR(error);
Li Zefan4219b2d2013-09-23 16:56:29 +08004996
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08004997 memcg->high = PAGE_COUNTER_MAX;
4998 memcg->soft_limit = PAGE_COUNTER_MAX;
4999 if (parent) {
5000 memcg->swappiness = mem_cgroup_swappiness(parent);
5001 memcg->oom_kill_disable = parent->oom_kill_disable;
5002 }
5003 if (parent && parent->use_hierarchy) {
5004 memcg->use_hierarchy = true;
Johannes Weiner3e32cb22014-12-10 15:42:31 -08005005 page_counter_init(&memcg->memory, &parent->memory);
Vladimir Davydov37e84352016-01-20 15:02:56 -08005006 page_counter_init(&memcg->swap, &parent->swap);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08005007 page_counter_init(&memcg->memsw, &parent->memsw);
5008 page_counter_init(&memcg->kmem, &parent->kmem);
Johannes Weiner0db15292016-01-20 15:02:50 -08005009 page_counter_init(&memcg->tcpmem, &parent->tcpmem);
Balbir Singh18f59ea2009-01-07 18:08:07 -08005010 } else {
Johannes Weiner3e32cb22014-12-10 15:42:31 -08005011 page_counter_init(&memcg->memory, NULL);
Vladimir Davydov37e84352016-01-20 15:02:56 -08005012 page_counter_init(&memcg->swap, NULL);
Johannes Weiner3e32cb22014-12-10 15:42:31 -08005013 page_counter_init(&memcg->memsw, NULL);
5014 page_counter_init(&memcg->kmem, NULL);
Johannes Weiner0db15292016-01-20 15:02:50 -08005015 page_counter_init(&memcg->tcpmem, NULL);
Tejun Heo8c7f6ed2012-09-13 12:20:58 -07005016 /*
5017 * Deeper hierachy with use_hierarchy == false doesn't make
5018 * much sense so let cgroup subsystem know about this
5019 * unfortunate state in our controller.
5020 */
Glauber Costad142e3e2013-02-22 16:34:52 -08005021 if (parent != root_mem_cgroup)
Tejun Heo073219e2014-02-08 10:36:58 -05005022 memory_cgrp_subsys.broken_hierarchy = true;
Balbir Singh18f59ea2009-01-07 18:08:07 -08005023 }
Vladimir Davydovd6441632014-01-23 15:53:09 -08005024
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08005025 /* The following stuff does not apply to the root */
5026 if (!parent) {
Roman Gushchinfb2f2b02019-07-11 20:56:34 -07005027#ifdef CONFIG_MEMCG_KMEM
5028 INIT_LIST_HEAD(&memcg->kmem_caches);
5029#endif
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08005030 root_mem_cgroup = memcg;
5031 return &memcg->css;
5032 }
5033
Vladimir Davydovb313aee2016-03-17 14:18:27 -07005034 error = memcg_online_kmem(memcg);
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08005035 if (error)
5036 goto fail;
Johannes Weiner127424c2016-01-20 15:02:32 -08005037
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08005038 if (cgroup_subsys_on_dfl(memory_cgrp_subsys) && !cgroup_memory_nosocket)
Johannes Weineref129472016-01-14 15:21:34 -08005039 static_branch_inc(&memcg_sockets_enabled_key);
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08005040
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08005041 return &memcg->css;
5042fail:
Kirill Tkhai7e97de02018-08-02 15:36:01 -07005043 mem_cgroup_id_remove(memcg);
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08005044 mem_cgroup_free(memcg);
Tejun Heoea3a9642016-06-24 14:49:58 -07005045 return ERR_PTR(-ENOMEM);
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08005046}
5047
Johannes Weiner73f576c2016-07-20 15:44:57 -07005048static int mem_cgroup_css_online(struct cgroup_subsys_state *css)
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08005049{
Vladimir Davydov58fa2a52016-10-07 16:57:29 -07005050 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
5051
Kirill Tkhai0a4465d2018-08-17 15:47:37 -07005052 /*
5053 * A memcg must be visible for memcg_expand_shrinker_maps()
5054 * by the time the maps are allocated. So, we allocate maps
5055 * here, when for_each_mem_cgroup() can't skip it.
5056 */
5057 if (memcg_alloc_shrinker_maps(memcg)) {
5058 mem_cgroup_id_remove(memcg);
5059 return -ENOMEM;
5060 }
5061
Johannes Weiner73f576c2016-07-20 15:44:57 -07005062 /* Online state pins memcg ID, memcg ID pins CSS */
Kirill Tkhai1c2d4792018-10-26 15:09:28 -07005063 refcount_set(&memcg->id.ref, 1);
Johannes Weiner73f576c2016-07-20 15:44:57 -07005064 css_get(css);
Johannes Weiner2f7dd7a2014-10-02 16:16:57 -07005065 return 0;
Balbir Singh8cdea7c2008-02-07 00:13:50 -08005066}
5067
Tejun Heoeb954192013-08-08 20:11:23 -04005068static void mem_cgroup_css_offline(struct cgroup_subsys_state *css)
KAMEZAWA Hiroyukidf878fb2008-02-07 00:14:28 -08005069{
Tejun Heoeb954192013-08-08 20:11:23 -04005070 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
Tejun Heo3bc942f2013-11-22 18:20:44 -05005071 struct mem_cgroup_event *event, *tmp;
Tejun Heo79bd9812013-11-22 18:20:42 -05005072
5073 /*
5074 * Unregister events and notify userspace.
5075 * Notify userspace about cgroup removing only after rmdir of cgroup
5076 * directory to avoid race between userspace and kernelspace.
5077 */
Tejun Heofba94802013-11-22 18:20:43 -05005078 spin_lock(&memcg->event_list_lock);
5079 list_for_each_entry_safe(event, tmp, &memcg->event_list, list) {
Tejun Heo79bd9812013-11-22 18:20:42 -05005080 list_del_init(&event->list);
5081 schedule_work(&event->remove);
5082 }
Tejun Heofba94802013-11-22 18:20:43 -05005083 spin_unlock(&memcg->event_list_lock);
KAMEZAWA Hiroyukiec64f512009-04-02 16:57:26 -07005084
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07005085 page_counter_set_min(&memcg->memory, 0);
Roman Gushchin23067152018-06-07 17:06:22 -07005086 page_counter_set_low(&memcg->memory, 0);
Roman Gushchin63677c742017-09-06 16:21:47 -07005087
Johannes Weiner567e9ab2016-01-20 15:02:24 -08005088 memcg_offline_kmem(memcg);
Tejun Heo52ebea72015-05-22 17:13:37 -04005089 wb_memcg_offline(memcg);
Johannes Weiner73f576c2016-07-20 15:44:57 -07005090
Roman Gushchin591edfb2018-10-26 15:03:23 -07005091 drain_all_stock(memcg);
5092
Johannes Weiner73f576c2016-07-20 15:44:57 -07005093 mem_cgroup_id_put(memcg);
KAMEZAWA Hiroyukidf878fb2008-02-07 00:14:28 -08005094}
5095
Vladimir Davydov6df38682015-12-29 14:54:10 -08005096static void mem_cgroup_css_released(struct cgroup_subsys_state *css)
5097{
5098 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
5099
5100 invalidate_reclaim_iterators(memcg);
5101}
5102
Tejun Heoeb954192013-08-08 20:11:23 -04005103static void mem_cgroup_css_free(struct cgroup_subsys_state *css)
Balbir Singh8cdea7c2008-02-07 00:13:50 -08005104{
Tejun Heoeb954192013-08-08 20:11:23 -04005105 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
Tejun Heo97b27822019-08-26 09:06:56 -07005106 int __maybe_unused i;
Daisuke Nishimurac268e992009-01-15 13:51:13 -08005107
Tejun Heo97b27822019-08-26 09:06:56 -07005108#ifdef CONFIG_CGROUP_WRITEBACK
5109 for (i = 0; i < MEMCG_CGWB_FRN_CNT; i++)
5110 wb_wait_for_completion(&memcg->cgwb_frn[i].done);
5111#endif
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08005112 if (cgroup_subsys_on_dfl(memory_cgrp_subsys) && !cgroup_memory_nosocket)
Johannes Weineref129472016-01-14 15:21:34 -08005113 static_branch_dec(&memcg_sockets_enabled_key);
Johannes Weiner3893e302016-01-20 15:02:29 -08005114
Johannes Weiner0db15292016-01-20 15:02:50 -08005115 if (!cgroup_subsys_on_dfl(memory_cgrp_subsys) && memcg->tcpmem_active)
Vladimir Davydovd55f90b2016-01-20 15:02:44 -08005116 static_branch_dec(&memcg_sockets_enabled_key);
Johannes Weiner3893e302016-01-20 15:02:29 -08005117
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08005118 vmpressure_cleanup(&memcg->vmpressure);
5119 cancel_work_sync(&memcg->high_work);
5120 mem_cgroup_remove_from_trees(memcg);
Kirill Tkhai0a4465d2018-08-17 15:47:37 -07005121 memcg_free_shrinker_maps(memcg);
Johannes Weinerd886f4e2016-01-20 15:02:47 -08005122 memcg_free_kmem(memcg);
Johannes Weiner0b8f73e2016-01-20 15:02:53 -08005123 mem_cgroup_free(memcg);
Balbir Singh8cdea7c2008-02-07 00:13:50 -08005124}
5125
Tejun Heo1ced9532014-07-08 18:02:57 -04005126/**
5127 * mem_cgroup_css_reset - reset the states of a mem_cgroup
5128 * @css: the target css
5129 *
5130 * Reset the states of the mem_cgroup associated with @css. This is
5131 * invoked when the userland requests disabling on the default hierarchy
5132 * but the memcg is pinned through dependency. The memcg should stop
5133 * applying policies and should revert to the vanilla state as it may be
5134 * made visible again.
5135 *
5136 * The current implementation only resets the essential configurations.
5137 * This needs to be expanded to cover all the visible parts.
5138 */
5139static void mem_cgroup_css_reset(struct cgroup_subsys_state *css)
5140{
5141 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
5142
Roman Gushchinbbec2e12018-06-07 17:06:18 -07005143 page_counter_set_max(&memcg->memory, PAGE_COUNTER_MAX);
5144 page_counter_set_max(&memcg->swap, PAGE_COUNTER_MAX);
5145 page_counter_set_max(&memcg->memsw, PAGE_COUNTER_MAX);
5146 page_counter_set_max(&memcg->kmem, PAGE_COUNTER_MAX);
5147 page_counter_set_max(&memcg->tcpmem, PAGE_COUNTER_MAX);
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07005148 page_counter_set_min(&memcg->memory, 0);
Roman Gushchin23067152018-06-07 17:06:22 -07005149 page_counter_set_low(&memcg->memory, 0);
Johannes Weiner241994ed2015-02-11 15:26:06 -08005150 memcg->high = PAGE_COUNTER_MAX;
Johannes Weiner24d404d2015-01-08 14:32:35 -08005151 memcg->soft_limit = PAGE_COUNTER_MAX;
Tejun Heo2529bb32015-05-22 18:23:34 -04005152 memcg_wb_domain_size_changed(memcg);
Tejun Heo1ced9532014-07-08 18:02:57 -04005153}
5154
Daisuke Nishimura02491442010-03-10 15:22:17 -08005155#ifdef CONFIG_MMU
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005156/* Handlers for move charge at task migration. */
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005157static int mem_cgroup_do_precharge(unsigned long count)
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005158{
Johannes Weiner05b84302014-08-06 16:05:59 -07005159 int ret;
Johannes Weiner9476db92014-08-06 16:05:55 -07005160
Mel Gormand0164ad2015-11-06 16:28:21 -08005161 /* Try a single bulk charge without reclaim first, kswapd may wake */
5162 ret = try_charge(mc.to, GFP_KERNEL & ~__GFP_DIRECT_RECLAIM, count);
Johannes Weiner9476db92014-08-06 16:05:55 -07005163 if (!ret) {
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005164 mc.precharge += count;
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005165 return ret;
5166 }
Johannes Weiner9476db92014-08-06 16:05:55 -07005167
David Rientjes36745342017-01-24 15:18:10 -08005168 /* Try charges one by one with reclaim, but do not retry */
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005169 while (count--) {
David Rientjes36745342017-01-24 15:18:10 -08005170 ret = try_charge(mc.to, GFP_KERNEL | __GFP_NORETRY, 1);
KAMEZAWA Hiroyuki38c5d722012-01-12 17:19:01 -08005171 if (ret)
KAMEZAWA Hiroyuki38c5d722012-01-12 17:19:01 -08005172 return ret;
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005173 mc.precharge++;
Johannes Weiner9476db92014-08-06 16:05:55 -07005174 cond_resched();
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005175 }
Johannes Weiner9476db92014-08-06 16:05:55 -07005176 return 0;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005177}
5178
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005179union mc_target {
5180 struct page *page;
Daisuke Nishimura02491442010-03-10 15:22:17 -08005181 swp_entry_t ent;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005182};
5183
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005184enum mc_target_type {
Naoya Horiguchi8d32ff82012-03-21 16:34:27 -07005185 MC_TARGET_NONE = 0,
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005186 MC_TARGET_PAGE,
Daisuke Nishimura02491442010-03-10 15:22:17 -08005187 MC_TARGET_SWAP,
Jérôme Glissec733a822017-09-08 16:11:54 -07005188 MC_TARGET_DEVICE,
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005189};
5190
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005191static struct page *mc_handle_present_pte(struct vm_area_struct *vma,
5192 unsigned long addr, pte_t ptent)
5193{
Christoph Hellwig25b29952019-06-13 22:50:49 +02005194 struct page *page = vm_normal_page(vma, addr, ptent);
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005195
5196 if (!page || !page_mapped(page))
5197 return NULL;
5198 if (PageAnon(page)) {
Johannes Weiner1dfab5a2015-02-11 15:26:09 -08005199 if (!(mc.flags & MOVE_ANON))
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005200 return NULL;
Johannes Weiner1dfab5a2015-02-11 15:26:09 -08005201 } else {
5202 if (!(mc.flags & MOVE_FILE))
5203 return NULL;
5204 }
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005205 if (!get_page_unless_zero(page))
5206 return NULL;
5207
5208 return page;
5209}
5210
Jérôme Glissec733a822017-09-08 16:11:54 -07005211#if defined(CONFIG_SWAP) || defined(CONFIG_DEVICE_PRIVATE)
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005212static struct page *mc_handle_swap_pte(struct vm_area_struct *vma,
Li RongQing48406ef2016-07-26 15:22:14 -07005213 pte_t ptent, swp_entry_t *entry)
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005214{
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005215 struct page *page = NULL;
5216 swp_entry_t ent = pte_to_swp_entry(ptent);
5217
Johannes Weiner1dfab5a2015-02-11 15:26:09 -08005218 if (!(mc.flags & MOVE_ANON) || non_swap_entry(ent))
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005219 return NULL;
Jérôme Glissec733a822017-09-08 16:11:54 -07005220
5221 /*
5222 * Handle MEMORY_DEVICE_PRIVATE which are ZONE_DEVICE page belonging to
5223 * a device and because they are not accessible by CPU they are store
5224 * as special swap entry in the CPU page table.
5225 */
5226 if (is_device_private_entry(ent)) {
5227 page = device_private_entry_to_page(ent);
5228 /*
5229 * MEMORY_DEVICE_PRIVATE means ZONE_DEVICE page and which have
5230 * a refcount of 1 when free (unlike normal page)
5231 */
5232 if (!page_ref_add_unless(page, 1, 1))
5233 return NULL;
5234 return page;
5235 }
5236
KAMEZAWA Hiroyuki4b913552012-05-29 15:06:51 -07005237 /*
5238 * Because lookup_swap_cache() updates some statistics counter,
5239 * we call find_get_page() with swapper_space directly.
5240 */
Huang Yingf6ab1f72016-10-07 17:00:21 -07005241 page = find_get_page(swap_address_space(ent), swp_offset(ent));
Johannes Weiner7941d212016-01-14 15:21:23 -08005242 if (do_memsw_account())
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005243 entry->val = ent.val;
5244
5245 return page;
5246}
KAMEZAWA Hiroyuki4b913552012-05-29 15:06:51 -07005247#else
5248static struct page *mc_handle_swap_pte(struct vm_area_struct *vma,
Li RongQing48406ef2016-07-26 15:22:14 -07005249 pte_t ptent, swp_entry_t *entry)
KAMEZAWA Hiroyuki4b913552012-05-29 15:06:51 -07005250{
5251 return NULL;
5252}
5253#endif
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005254
Daisuke Nishimura87946a72010-05-26 14:42:39 -07005255static struct page *mc_handle_file_pte(struct vm_area_struct *vma,
5256 unsigned long addr, pte_t ptent, swp_entry_t *entry)
5257{
5258 struct page *page = NULL;
Daisuke Nishimura87946a72010-05-26 14:42:39 -07005259 struct address_space *mapping;
5260 pgoff_t pgoff;
5261
5262 if (!vma->vm_file) /* anonymous vma */
5263 return NULL;
Johannes Weiner1dfab5a2015-02-11 15:26:09 -08005264 if (!(mc.flags & MOVE_FILE))
Daisuke Nishimura87946a72010-05-26 14:42:39 -07005265 return NULL;
5266
Daisuke Nishimura87946a72010-05-26 14:42:39 -07005267 mapping = vma->vm_file->f_mapping;
Kirill A. Shutemov0661a332015-02-10 14:10:04 -08005268 pgoff = linear_page_index(vma, addr);
Daisuke Nishimura87946a72010-05-26 14:42:39 -07005269
5270 /* page is moved even if it's not RSS of this task(page-faulted). */
Hugh Dickinsaa3b1892011-08-03 16:21:24 -07005271#ifdef CONFIG_SWAP
5272 /* shmem/tmpfs may report page out on swap: account for that too. */
Johannes Weiner139b6a62014-05-06 12:50:05 -07005273 if (shmem_mapping(mapping)) {
5274 page = find_get_entry(mapping, pgoff);
Matthew Wilcox3159f942017-11-03 13:30:42 -04005275 if (xa_is_value(page)) {
Johannes Weiner139b6a62014-05-06 12:50:05 -07005276 swp_entry_t swp = radix_to_swp_entry(page);
Johannes Weiner7941d212016-01-14 15:21:23 -08005277 if (do_memsw_account())
Johannes Weiner139b6a62014-05-06 12:50:05 -07005278 *entry = swp;
Huang Yingf6ab1f72016-10-07 17:00:21 -07005279 page = find_get_page(swap_address_space(swp),
5280 swp_offset(swp));
Johannes Weiner139b6a62014-05-06 12:50:05 -07005281 }
5282 } else
5283 page = find_get_page(mapping, pgoff);
5284#else
5285 page = find_get_page(mapping, pgoff);
Hugh Dickinsaa3b1892011-08-03 16:21:24 -07005286#endif
Daisuke Nishimura87946a72010-05-26 14:42:39 -07005287 return page;
5288}
5289
Chen Gangb1b0dea2015-04-14 15:47:35 -07005290/**
5291 * mem_cgroup_move_account - move account of the page
5292 * @page: the page
Li RongQing25843c22016-07-26 15:26:56 -07005293 * @compound: charge the page as compound or small page
Chen Gangb1b0dea2015-04-14 15:47:35 -07005294 * @from: mem_cgroup which the page is moved from.
5295 * @to: mem_cgroup which the page is moved to. @from != @to.
5296 *
Kirill A. Shutemov3ac808f2016-01-15 16:53:07 -08005297 * The caller must make sure the page is not on LRU (isolate_page() is useful.)
Chen Gangb1b0dea2015-04-14 15:47:35 -07005298 *
5299 * This function doesn't do "charge" to new cgroup and doesn't do "uncharge"
5300 * from old cgroup.
5301 */
5302static int mem_cgroup_move_account(struct page *page,
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08005303 bool compound,
Chen Gangb1b0dea2015-04-14 15:47:35 -07005304 struct mem_cgroup *from,
5305 struct mem_cgroup *to)
5306{
Konstantin Khlebnikovae8af432019-10-18 20:20:11 -07005307 struct lruvec *from_vec, *to_vec;
5308 struct pglist_data *pgdat;
Chen Gangb1b0dea2015-04-14 15:47:35 -07005309 unsigned long flags;
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08005310 unsigned int nr_pages = compound ? hpage_nr_pages(page) : 1;
Chen Gangb1b0dea2015-04-14 15:47:35 -07005311 int ret;
Greg Thelenc4843a72015-05-22 17:13:16 -04005312 bool anon;
Chen Gangb1b0dea2015-04-14 15:47:35 -07005313
5314 VM_BUG_ON(from == to);
5315 VM_BUG_ON_PAGE(PageLRU(page), page);
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08005316 VM_BUG_ON(compound && !PageTransHuge(page));
Chen Gangb1b0dea2015-04-14 15:47:35 -07005317
5318 /*
Johannes Weiner6a93ca82016-03-15 14:57:19 -07005319 * Prevent mem_cgroup_migrate() from looking at
Hugh Dickins45637ba2015-11-05 18:49:40 -08005320 * page->mem_cgroup of its source page while we change it.
Chen Gangb1b0dea2015-04-14 15:47:35 -07005321 */
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08005322 ret = -EBUSY;
Chen Gangb1b0dea2015-04-14 15:47:35 -07005323 if (!trylock_page(page))
5324 goto out;
5325
5326 ret = -EINVAL;
5327 if (page->mem_cgroup != from)
5328 goto out_unlock;
5329
Greg Thelenc4843a72015-05-22 17:13:16 -04005330 anon = PageAnon(page);
5331
Konstantin Khlebnikovae8af432019-10-18 20:20:11 -07005332 pgdat = page_pgdat(page);
Johannes Weiner867e5e12019-11-30 17:55:34 -08005333 from_vec = mem_cgroup_lruvec(from, pgdat);
5334 to_vec = mem_cgroup_lruvec(to, pgdat);
Konstantin Khlebnikovae8af432019-10-18 20:20:11 -07005335
Chen Gangb1b0dea2015-04-14 15:47:35 -07005336 spin_lock_irqsave(&from->move_lock, flags);
5337
Greg Thelenc4843a72015-05-22 17:13:16 -04005338 if (!anon && page_mapped(page)) {
Konstantin Khlebnikovae8af432019-10-18 20:20:11 -07005339 __mod_lruvec_state(from_vec, NR_FILE_MAPPED, -nr_pages);
5340 __mod_lruvec_state(to_vec, NR_FILE_MAPPED, nr_pages);
Chen Gangb1b0dea2015-04-14 15:47:35 -07005341 }
5342
Greg Thelenc4843a72015-05-22 17:13:16 -04005343 /*
5344 * move_lock grabbed above and caller set from->moving_account, so
Johannes Weinerccda7f42017-05-03 14:55:16 -07005345 * mod_memcg_page_state will serialize updates to PageDirty.
Greg Thelenc4843a72015-05-22 17:13:16 -04005346 * So mapping should be stable for dirty pages.
5347 */
5348 if (!anon && PageDirty(page)) {
5349 struct address_space *mapping = page_mapping(page);
5350
5351 if (mapping_cap_account_dirty(mapping)) {
Konstantin Khlebnikovae8af432019-10-18 20:20:11 -07005352 __mod_lruvec_state(from_vec, NR_FILE_DIRTY, -nr_pages);
5353 __mod_lruvec_state(to_vec, NR_FILE_DIRTY, nr_pages);
Greg Thelenc4843a72015-05-22 17:13:16 -04005354 }
5355 }
5356
Chen Gangb1b0dea2015-04-14 15:47:35 -07005357 if (PageWriteback(page)) {
Konstantin Khlebnikovae8af432019-10-18 20:20:11 -07005358 __mod_lruvec_state(from_vec, NR_WRITEBACK, -nr_pages);
5359 __mod_lruvec_state(to_vec, NR_WRITEBACK, nr_pages);
Chen Gangb1b0dea2015-04-14 15:47:35 -07005360 }
5361
Yang Shi87eaceb2019-09-23 15:38:15 -07005362#ifdef CONFIG_TRANSPARENT_HUGEPAGE
5363 if (compound && !list_empty(page_deferred_list(page))) {
5364 spin_lock(&from->deferred_split_queue.split_queue_lock);
5365 list_del_init(page_deferred_list(page));
5366 from->deferred_split_queue.split_queue_len--;
5367 spin_unlock(&from->deferred_split_queue.split_queue_lock);
5368 }
5369#endif
Chen Gangb1b0dea2015-04-14 15:47:35 -07005370 /*
5371 * It is safe to change page->mem_cgroup here because the page
5372 * is referenced, charged, and isolated - we can't race with
5373 * uncharging, charging, migration, or LRU putback.
5374 */
5375
5376 /* caller should have done css_get */
5377 page->mem_cgroup = to;
Yang Shi87eaceb2019-09-23 15:38:15 -07005378
5379#ifdef CONFIG_TRANSPARENT_HUGEPAGE
5380 if (compound && list_empty(page_deferred_list(page))) {
5381 spin_lock(&to->deferred_split_queue.split_queue_lock);
5382 list_add_tail(page_deferred_list(page),
5383 &to->deferred_split_queue.split_queue);
5384 to->deferred_split_queue.split_queue_len++;
5385 spin_unlock(&to->deferred_split_queue.split_queue_lock);
5386 }
5387#endif
5388
Chen Gangb1b0dea2015-04-14 15:47:35 -07005389 spin_unlock_irqrestore(&from->move_lock, flags);
5390
5391 ret = 0;
5392
5393 local_irq_disable();
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08005394 mem_cgroup_charge_statistics(to, page, compound, nr_pages);
Chen Gangb1b0dea2015-04-14 15:47:35 -07005395 memcg_check_events(to, page);
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08005396 mem_cgroup_charge_statistics(from, page, compound, -nr_pages);
Chen Gangb1b0dea2015-04-14 15:47:35 -07005397 memcg_check_events(from, page);
5398 local_irq_enable();
5399out_unlock:
5400 unlock_page(page);
5401out:
5402 return ret;
5403}
5404
Li RongQing7cf78062016-05-27 14:27:46 -07005405/**
5406 * get_mctgt_type - get target type of moving charge
5407 * @vma: the vma the pte to be checked belongs
5408 * @addr: the address corresponding to the pte to be checked
5409 * @ptent: the pte to be checked
5410 * @target: the pointer the target page or swap ent will be stored(can be NULL)
5411 *
5412 * Returns
5413 * 0(MC_TARGET_NONE): if the pte is not a target for move charge.
5414 * 1(MC_TARGET_PAGE): if the page corresponding to this pte is a target for
5415 * move charge. if @target is not NULL, the page is stored in target->page
5416 * with extra refcnt got(Callers should handle it).
5417 * 2(MC_TARGET_SWAP): if the swap entry corresponding to this pte is a
5418 * target for charge migration. if @target is not NULL, the entry is stored
5419 * in target->ent.
Christoph Hellwig25b29952019-06-13 22:50:49 +02005420 * 3(MC_TARGET_DEVICE): like MC_TARGET_PAGE but page is MEMORY_DEVICE_PRIVATE
5421 * (so ZONE_DEVICE page and thus not on the lru).
Jérôme Glissedf6ad692017-09-08 16:12:24 -07005422 * For now we such page is charge like a regular page would be as for all
5423 * intent and purposes it is just special memory taking the place of a
5424 * regular page.
Jérôme Glissec733a822017-09-08 16:11:54 -07005425 *
5426 * See Documentations/vm/hmm.txt and include/linux/hmm.h
Li RongQing7cf78062016-05-27 14:27:46 -07005427 *
5428 * Called with pte lock held.
5429 */
5430
Naoya Horiguchi8d32ff82012-03-21 16:34:27 -07005431static enum mc_target_type get_mctgt_type(struct vm_area_struct *vma,
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005432 unsigned long addr, pte_t ptent, union mc_target *target)
5433{
Daisuke Nishimura02491442010-03-10 15:22:17 -08005434 struct page *page = NULL;
Naoya Horiguchi8d32ff82012-03-21 16:34:27 -07005435 enum mc_target_type ret = MC_TARGET_NONE;
Daisuke Nishimura02491442010-03-10 15:22:17 -08005436 swp_entry_t ent = { .val = 0 };
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005437
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005438 if (pte_present(ptent))
5439 page = mc_handle_present_pte(vma, addr, ptent);
5440 else if (is_swap_pte(ptent))
Li RongQing48406ef2016-07-26 15:22:14 -07005441 page = mc_handle_swap_pte(vma, ptent, &ent);
Kirill A. Shutemov0661a332015-02-10 14:10:04 -08005442 else if (pte_none(ptent))
Daisuke Nishimura87946a72010-05-26 14:42:39 -07005443 page = mc_handle_file_pte(vma, addr, ptent, &ent);
Daisuke Nishimura90254a62010-05-26 14:42:38 -07005444
5445 if (!page && !ent.val)
Naoya Horiguchi8d32ff82012-03-21 16:34:27 -07005446 return ret;
Daisuke Nishimura02491442010-03-10 15:22:17 -08005447 if (page) {
Daisuke Nishimura02491442010-03-10 15:22:17 -08005448 /*
Johannes Weiner0a31bc92014-08-08 14:19:22 -07005449 * Do only loose check w/o serialization.
Johannes Weiner1306a852014-12-10 15:44:52 -08005450 * mem_cgroup_move_account() checks the page is valid or
Johannes Weiner0a31bc92014-08-08 14:19:22 -07005451 * not under LRU exclusion.
Daisuke Nishimura02491442010-03-10 15:22:17 -08005452 */
Johannes Weiner1306a852014-12-10 15:44:52 -08005453 if (page->mem_cgroup == mc.from) {
Daisuke Nishimura02491442010-03-10 15:22:17 -08005454 ret = MC_TARGET_PAGE;
Christoph Hellwig25b29952019-06-13 22:50:49 +02005455 if (is_device_private_page(page))
Jérôme Glissec733a822017-09-08 16:11:54 -07005456 ret = MC_TARGET_DEVICE;
Daisuke Nishimura02491442010-03-10 15:22:17 -08005457 if (target)
5458 target->page = page;
5459 }
5460 if (!ret || !target)
5461 put_page(page);
5462 }
Huang Ying3e14a572017-09-06 16:22:37 -07005463 /*
5464 * There is a swap entry and a page doesn't exist or isn't charged.
5465 * But we cannot move a tail-page in a THP.
5466 */
5467 if (ent.val && !ret && (!page || !PageTransCompound(page)) &&
Li Zefan34c00c32013-09-23 16:56:01 +08005468 mem_cgroup_id(mc.from) == lookup_swap_cgroup_id(ent)) {
KAMEZAWA Hiroyuki7f0f1542010-05-11 14:06:58 -07005469 ret = MC_TARGET_SWAP;
5470 if (target)
5471 target->ent = ent;
Daisuke Nishimura02491442010-03-10 15:22:17 -08005472 }
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005473 return ret;
5474}
5475
Naoya Horiguchi12724852012-03-21 16:34:28 -07005476#ifdef CONFIG_TRANSPARENT_HUGEPAGE
5477/*
Huang Yingd6810d72017-09-06 16:22:45 -07005478 * We don't consider PMD mapped swapping or file mapped pages because THP does
5479 * not support them for now.
Naoya Horiguchi12724852012-03-21 16:34:28 -07005480 * Caller should make sure that pmd_trans_huge(pmd) is true.
5481 */
5482static enum mc_target_type get_mctgt_type_thp(struct vm_area_struct *vma,
5483 unsigned long addr, pmd_t pmd, union mc_target *target)
5484{
5485 struct page *page = NULL;
Naoya Horiguchi12724852012-03-21 16:34:28 -07005486 enum mc_target_type ret = MC_TARGET_NONE;
5487
Zi Yan84c3fc42017-09-08 16:11:01 -07005488 if (unlikely(is_swap_pmd(pmd))) {
5489 VM_BUG_ON(thp_migration_supported() &&
5490 !is_pmd_migration_entry(pmd));
5491 return ret;
5492 }
Naoya Horiguchi12724852012-03-21 16:34:28 -07005493 page = pmd_page(pmd);
Sasha Levin309381fea2014-01-23 15:52:54 -08005494 VM_BUG_ON_PAGE(!page || !PageHead(page), page);
Johannes Weiner1dfab5a2015-02-11 15:26:09 -08005495 if (!(mc.flags & MOVE_ANON))
Naoya Horiguchi12724852012-03-21 16:34:28 -07005496 return ret;
Johannes Weiner1306a852014-12-10 15:44:52 -08005497 if (page->mem_cgroup == mc.from) {
Naoya Horiguchi12724852012-03-21 16:34:28 -07005498 ret = MC_TARGET_PAGE;
5499 if (target) {
5500 get_page(page);
5501 target->page = page;
5502 }
5503 }
5504 return ret;
5505}
5506#else
5507static inline enum mc_target_type get_mctgt_type_thp(struct vm_area_struct *vma,
5508 unsigned long addr, pmd_t pmd, union mc_target *target)
5509{
5510 return MC_TARGET_NONE;
5511}
5512#endif
5513
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005514static int mem_cgroup_count_precharge_pte_range(pmd_t *pmd,
5515 unsigned long addr, unsigned long end,
5516 struct mm_walk *walk)
5517{
Naoya Horiguchi26bcd642015-02-11 15:27:57 -08005518 struct vm_area_struct *vma = walk->vma;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005519 pte_t *pte;
5520 spinlock_t *ptl;
5521
Kirill A. Shutemovb6ec57f2016-01-21 16:40:25 -08005522 ptl = pmd_trans_huge_lock(pmd, vma);
5523 if (ptl) {
Jérôme Glissec733a822017-09-08 16:11:54 -07005524 /*
5525 * Note their can not be MC_TARGET_DEVICE for now as we do not
Christoph Hellwig25b29952019-06-13 22:50:49 +02005526 * support transparent huge page with MEMORY_DEVICE_PRIVATE but
5527 * this might change.
Jérôme Glissec733a822017-09-08 16:11:54 -07005528 */
Naoya Horiguchi12724852012-03-21 16:34:28 -07005529 if (get_mctgt_type_thp(vma, addr, *pmd, NULL) == MC_TARGET_PAGE)
5530 mc.precharge += HPAGE_PMD_NR;
Kirill A. Shutemovbf929152013-11-14 14:30:54 -08005531 spin_unlock(ptl);
Andrea Arcangeli1a5a9902012-03-21 16:33:42 -07005532 return 0;
Naoya Horiguchi12724852012-03-21 16:34:28 -07005533 }
Dave Hansen03319322011-03-22 16:32:56 -07005534
Andrea Arcangeli45f83ce2012-03-28 14:42:40 -07005535 if (pmd_trans_unstable(pmd))
5536 return 0;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005537 pte = pte_offset_map_lock(vma->vm_mm, pmd, addr, &ptl);
5538 for (; addr != end; pte++, addr += PAGE_SIZE)
Naoya Horiguchi8d32ff82012-03-21 16:34:27 -07005539 if (get_mctgt_type(vma, addr, *pte, NULL))
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005540 mc.precharge++; /* increment precharge temporarily */
5541 pte_unmap_unlock(pte - 1, ptl);
5542 cond_resched();
5543
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005544 return 0;
5545}
5546
Christoph Hellwig7b86ac32019-08-28 16:19:54 +02005547static const struct mm_walk_ops precharge_walk_ops = {
5548 .pmd_entry = mem_cgroup_count_precharge_pte_range,
5549};
5550
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005551static unsigned long mem_cgroup_count_precharge(struct mm_struct *mm)
5552{
5553 unsigned long precharge;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005554
Daisuke Nishimuradfe076b2011-01-13 15:47:41 -08005555 down_read(&mm->mmap_sem);
Christoph Hellwig7b86ac32019-08-28 16:19:54 +02005556 walk_page_range(mm, 0, mm->highest_vm_end, &precharge_walk_ops, NULL);
Daisuke Nishimuradfe076b2011-01-13 15:47:41 -08005557 up_read(&mm->mmap_sem);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005558
5559 precharge = mc.precharge;
5560 mc.precharge = 0;
5561
5562 return precharge;
5563}
5564
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005565static int mem_cgroup_precharge_mc(struct mm_struct *mm)
5566{
Daisuke Nishimuradfe076b2011-01-13 15:47:41 -08005567 unsigned long precharge = mem_cgroup_count_precharge(mm);
5568
5569 VM_BUG_ON(mc.moving_task);
5570 mc.moving_task = current;
5571 return mem_cgroup_do_precharge(precharge);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005572}
5573
Daisuke Nishimuradfe076b2011-01-13 15:47:41 -08005574/* cancels all extra charges on mc.from and mc.to, and wakes up all waiters. */
5575static void __mem_cgroup_clear_mc(void)
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005576{
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07005577 struct mem_cgroup *from = mc.from;
5578 struct mem_cgroup *to = mc.to;
5579
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005580 /* we must uncharge all the leftover precharges from mc.to */
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005581 if (mc.precharge) {
Johannes Weiner00501b52014-08-08 14:19:20 -07005582 cancel_charge(mc.to, mc.precharge);
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005583 mc.precharge = 0;
5584 }
5585 /*
5586 * we didn't uncharge from mc.from at mem_cgroup_move_account(), so
5587 * we must uncharge here.
5588 */
5589 if (mc.moved_charge) {
Johannes Weiner00501b52014-08-08 14:19:20 -07005590 cancel_charge(mc.from, mc.moved_charge);
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005591 mc.moved_charge = 0;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005592 }
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08005593 /* we must fixup refcnts and charges */
5594 if (mc.moved_swap) {
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08005595 /* uncharge swap account from the old cgroup */
Johannes Weinerce00a962014-09-05 08:43:57 -04005596 if (!mem_cgroup_is_root(mc.from))
Johannes Weiner3e32cb22014-12-10 15:42:31 -08005597 page_counter_uncharge(&mc.from->memsw, mc.moved_swap);
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08005598
Vladimir Davydov615d66c2016-08-11 15:33:03 -07005599 mem_cgroup_id_put_many(mc.from, mc.moved_swap);
5600
Johannes Weiner05b84302014-08-06 16:05:59 -07005601 /*
Johannes Weiner3e32cb22014-12-10 15:42:31 -08005602 * we charged both to->memory and to->memsw, so we
5603 * should uncharge to->memory.
Johannes Weiner05b84302014-08-06 16:05:59 -07005604 */
Johannes Weinerce00a962014-09-05 08:43:57 -04005605 if (!mem_cgroup_is_root(mc.to))
Johannes Weiner3e32cb22014-12-10 15:42:31 -08005606 page_counter_uncharge(&mc.to->memory, mc.moved_swap);
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08005607
Vladimir Davydov615d66c2016-08-11 15:33:03 -07005608 mem_cgroup_id_get_many(mc.to, mc.moved_swap);
5609 css_put_many(&mc.to->css, mc.moved_swap);
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08005610
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08005611 mc.moved_swap = 0;
5612 }
Daisuke Nishimuradfe076b2011-01-13 15:47:41 -08005613 memcg_oom_recover(from);
5614 memcg_oom_recover(to);
5615 wake_up_all(&mc.waitq);
5616}
5617
5618static void mem_cgroup_clear_mc(void)
5619{
Tejun Heo264a0ae2016-04-21 19:09:02 -04005620 struct mm_struct *mm = mc.mm;
5621
Daisuke Nishimuradfe076b2011-01-13 15:47:41 -08005622 /*
5623 * we must clear moving_task before waking up waiters at the end of
5624 * task migration.
5625 */
5626 mc.moving_task = NULL;
5627 __mem_cgroup_clear_mc();
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07005628 spin_lock(&mc.lock);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005629 mc.from = NULL;
5630 mc.to = NULL;
Tejun Heo264a0ae2016-04-21 19:09:02 -04005631 mc.mm = NULL;
KAMEZAWA Hiroyuki2bd9bb22010-08-10 18:02:58 -07005632 spin_unlock(&mc.lock);
Tejun Heo264a0ae2016-04-21 19:09:02 -04005633
5634 mmput(mm);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005635}
5636
Tejun Heo1f7dd3e52015-12-03 10:18:21 -05005637static int mem_cgroup_can_attach(struct cgroup_taskset *tset)
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005638{
Tejun Heo1f7dd3e52015-12-03 10:18:21 -05005639 struct cgroup_subsys_state *css;
Ross Zwislereed67d72015-12-23 14:53:27 -07005640 struct mem_cgroup *memcg = NULL; /* unneeded init to make gcc happy */
Tejun Heo9f2115f2015-09-08 15:01:10 -07005641 struct mem_cgroup *from;
Tejun Heo4530edd2015-09-11 15:00:19 -04005642 struct task_struct *leader, *p;
Tejun Heo9f2115f2015-09-08 15:01:10 -07005643 struct mm_struct *mm;
Johannes Weiner1dfab5a2015-02-11 15:26:09 -08005644 unsigned long move_flags;
Tejun Heo9f2115f2015-09-08 15:01:10 -07005645 int ret = 0;
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005646
Tejun Heo1f7dd3e52015-12-03 10:18:21 -05005647 /* charge immigration isn't supported on the default hierarchy */
5648 if (cgroup_subsys_on_dfl(memory_cgrp_subsys))
Tejun Heo9f2115f2015-09-08 15:01:10 -07005649 return 0;
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005650
Tejun Heo4530edd2015-09-11 15:00:19 -04005651 /*
5652 * Multi-process migrations only happen on the default hierarchy
5653 * where charge immigration is not used. Perform charge
5654 * immigration if @tset contains a leader and whine if there are
5655 * multiple.
5656 */
5657 p = NULL;
Tejun Heo1f7dd3e52015-12-03 10:18:21 -05005658 cgroup_taskset_for_each_leader(leader, css, tset) {
Tejun Heo4530edd2015-09-11 15:00:19 -04005659 WARN_ON_ONCE(p);
5660 p = leader;
Tejun Heo1f7dd3e52015-12-03 10:18:21 -05005661 memcg = mem_cgroup_from_css(css);
Tejun Heo4530edd2015-09-11 15:00:19 -04005662 }
5663 if (!p)
5664 return 0;
5665
Tejun Heo1f7dd3e52015-12-03 10:18:21 -05005666 /*
5667 * We are now commited to this value whatever it is. Changes in this
5668 * tunable will only affect upcoming migrations, not the current one.
5669 * So we need to save it, and keep it going.
5670 */
5671 move_flags = READ_ONCE(memcg->move_charge_at_immigrate);
5672 if (!move_flags)
5673 return 0;
5674
Tejun Heo9f2115f2015-09-08 15:01:10 -07005675 from = mem_cgroup_from_task(p);
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005676
Tejun Heo9f2115f2015-09-08 15:01:10 -07005677 VM_BUG_ON(from == memcg);
Johannes Weiner247b1442014-12-10 15:44:11 -08005678
Tejun Heo9f2115f2015-09-08 15:01:10 -07005679 mm = get_task_mm(p);
5680 if (!mm)
5681 return 0;
5682 /* We move charges only when we move a owner of the mm */
5683 if (mm->owner == p) {
5684 VM_BUG_ON(mc.from);
5685 VM_BUG_ON(mc.to);
5686 VM_BUG_ON(mc.precharge);
5687 VM_BUG_ON(mc.moved_charge);
5688 VM_BUG_ON(mc.moved_swap);
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005689
Tejun Heo9f2115f2015-09-08 15:01:10 -07005690 spin_lock(&mc.lock);
Tejun Heo264a0ae2016-04-21 19:09:02 -04005691 mc.mm = mm;
Tejun Heo9f2115f2015-09-08 15:01:10 -07005692 mc.from = from;
5693 mc.to = memcg;
5694 mc.flags = move_flags;
5695 spin_unlock(&mc.lock);
5696 /* We set mc.moving_task later */
5697
5698 ret = mem_cgroup_precharge_mc(mm);
5699 if (ret)
5700 mem_cgroup_clear_mc();
Tejun Heo264a0ae2016-04-21 19:09:02 -04005701 } else {
5702 mmput(mm);
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005703 }
5704 return ret;
5705}
5706
Tejun Heo1f7dd3e52015-12-03 10:18:21 -05005707static void mem_cgroup_cancel_attach(struct cgroup_taskset *tset)
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005708{
Johannes Weiner4e2f2452014-12-10 15:44:08 -08005709 if (mc.to)
5710 mem_cgroup_clear_mc();
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005711}
5712
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005713static int mem_cgroup_move_charge_pte_range(pmd_t *pmd,
5714 unsigned long addr, unsigned long end,
5715 struct mm_walk *walk)
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005716{
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005717 int ret = 0;
Naoya Horiguchi26bcd642015-02-11 15:27:57 -08005718 struct vm_area_struct *vma = walk->vma;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005719 pte_t *pte;
5720 spinlock_t *ptl;
Naoya Horiguchi12724852012-03-21 16:34:28 -07005721 enum mc_target_type target_type;
5722 union mc_target target;
5723 struct page *page;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005724
Kirill A. Shutemovb6ec57f2016-01-21 16:40:25 -08005725 ptl = pmd_trans_huge_lock(pmd, vma);
5726 if (ptl) {
Hugh Dickins62ade862012-05-18 11:28:34 -07005727 if (mc.precharge < HPAGE_PMD_NR) {
Kirill A. Shutemovbf929152013-11-14 14:30:54 -08005728 spin_unlock(ptl);
Naoya Horiguchi12724852012-03-21 16:34:28 -07005729 return 0;
5730 }
5731 target_type = get_mctgt_type_thp(vma, addr, *pmd, &target);
5732 if (target_type == MC_TARGET_PAGE) {
5733 page = target.page;
5734 if (!isolate_lru_page(page)) {
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08005735 if (!mem_cgroup_move_account(page, true,
Johannes Weiner1306a852014-12-10 15:44:52 -08005736 mc.from, mc.to)) {
Naoya Horiguchi12724852012-03-21 16:34:28 -07005737 mc.precharge -= HPAGE_PMD_NR;
5738 mc.moved_charge += HPAGE_PMD_NR;
5739 }
5740 putback_lru_page(page);
5741 }
5742 put_page(page);
Jérôme Glissec733a822017-09-08 16:11:54 -07005743 } else if (target_type == MC_TARGET_DEVICE) {
5744 page = target.page;
5745 if (!mem_cgroup_move_account(page, true,
5746 mc.from, mc.to)) {
5747 mc.precharge -= HPAGE_PMD_NR;
5748 mc.moved_charge += HPAGE_PMD_NR;
5749 }
5750 put_page(page);
Naoya Horiguchi12724852012-03-21 16:34:28 -07005751 }
Kirill A. Shutemovbf929152013-11-14 14:30:54 -08005752 spin_unlock(ptl);
Andrea Arcangeli1a5a9902012-03-21 16:33:42 -07005753 return 0;
Naoya Horiguchi12724852012-03-21 16:34:28 -07005754 }
5755
Andrea Arcangeli45f83ce2012-03-28 14:42:40 -07005756 if (pmd_trans_unstable(pmd))
5757 return 0;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005758retry:
5759 pte = pte_offset_map_lock(vma->vm_mm, pmd, addr, &ptl);
5760 for (; addr != end; addr += PAGE_SIZE) {
5761 pte_t ptent = *(pte++);
Jérôme Glissec733a822017-09-08 16:11:54 -07005762 bool device = false;
Daisuke Nishimura02491442010-03-10 15:22:17 -08005763 swp_entry_t ent;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005764
5765 if (!mc.precharge)
5766 break;
5767
Naoya Horiguchi8d32ff82012-03-21 16:34:27 -07005768 switch (get_mctgt_type(vma, addr, ptent, &target)) {
Jérôme Glissec733a822017-09-08 16:11:54 -07005769 case MC_TARGET_DEVICE:
5770 device = true;
5771 /* fall through */
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005772 case MC_TARGET_PAGE:
5773 page = target.page;
Kirill A. Shutemov53f92632016-01-15 16:53:42 -08005774 /*
5775 * We can have a part of the split pmd here. Moving it
5776 * can be done but it would be too convoluted so simply
5777 * ignore such a partial THP and keep it in original
5778 * memcg. There should be somebody mapping the head.
5779 */
5780 if (PageTransCompound(page))
5781 goto put;
Jérôme Glissec733a822017-09-08 16:11:54 -07005782 if (!device && isolate_lru_page(page))
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005783 goto put;
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08005784 if (!mem_cgroup_move_account(page, false,
5785 mc.from, mc.to)) {
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005786 mc.precharge--;
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005787 /* we uncharge from mc.from later. */
5788 mc.moved_charge++;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005789 }
Jérôme Glissec733a822017-09-08 16:11:54 -07005790 if (!device)
5791 putback_lru_page(page);
Naoya Horiguchi8d32ff82012-03-21 16:34:27 -07005792put: /* get_mctgt_type() gets the page */
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005793 put_page(page);
5794 break;
Daisuke Nishimura02491442010-03-10 15:22:17 -08005795 case MC_TARGET_SWAP:
5796 ent = target.ent;
Hugh Dickinse91cbb42012-05-29 15:06:51 -07005797 if (!mem_cgroup_move_swap_account(ent, mc.from, mc.to)) {
Daisuke Nishimura02491442010-03-10 15:22:17 -08005798 mc.precharge--;
Daisuke Nishimura483c30b2010-03-10 15:22:18 -08005799 /* we fixup refcnts and charges later. */
5800 mc.moved_swap++;
5801 }
Daisuke Nishimura02491442010-03-10 15:22:17 -08005802 break;
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005803 default:
5804 break;
5805 }
5806 }
5807 pte_unmap_unlock(pte - 1, ptl);
5808 cond_resched();
5809
5810 if (addr != end) {
5811 /*
5812 * We have consumed all precharges we got in can_attach().
5813 * We try charge one by one, but don't do any additional
5814 * charges to mc.to if we have failed in charge once in attach()
5815 * phase.
5816 */
Daisuke Nishimura854ffa82010-03-10 15:22:15 -08005817 ret = mem_cgroup_do_precharge(1);
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005818 if (!ret)
5819 goto retry;
5820 }
5821
5822 return ret;
5823}
5824
Christoph Hellwig7b86ac32019-08-28 16:19:54 +02005825static const struct mm_walk_ops charge_walk_ops = {
5826 .pmd_entry = mem_cgroup_move_charge_pte_range,
5827};
5828
Tejun Heo264a0ae2016-04-21 19:09:02 -04005829static void mem_cgroup_move_charge(void)
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005830{
Daisuke Nishimura4ffef5f2010-03-10 15:22:14 -08005831 lru_add_drain_all();
Johannes Weiner312722c2014-12-10 15:44:25 -08005832 /*
Johannes Weiner81f8c3a2016-03-15 14:57:04 -07005833 * Signal lock_page_memcg() to take the memcg's move_lock
5834 * while we're moving its pages to another memcg. Then wait
5835 * for already started RCU-only updates to finish.
Johannes Weiner312722c2014-12-10 15:44:25 -08005836 */
5837 atomic_inc(&mc.from->moving_account);
5838 synchronize_rcu();
Daisuke Nishimuradfe076b2011-01-13 15:47:41 -08005839retry:
Tejun Heo264a0ae2016-04-21 19:09:02 -04005840 if (unlikely(!down_read_trylock(&mc.mm->mmap_sem))) {
Daisuke Nishimuradfe076b2011-01-13 15:47:41 -08005841 /*
5842 * Someone who are holding the mmap_sem might be waiting in
5843 * waitq. So we cancel all extra charges, wake up all waiters,
5844 * and retry. Because we cancel precharges, we might not be able
5845 * to move enough charges, but moving charge is a best-effort
5846 * feature anyway, so it wouldn't be a big problem.
5847 */
5848 __mem_cgroup_clear_mc();
5849 cond_resched();
5850 goto retry;
5851 }
Naoya Horiguchi26bcd642015-02-11 15:27:57 -08005852 /*
5853 * When we have consumed all precharges and failed in doing
5854 * additional charge, the page walk just aborts.
5855 */
Christoph Hellwig7b86ac32019-08-28 16:19:54 +02005856 walk_page_range(mc.mm, 0, mc.mm->highest_vm_end, &charge_walk_ops,
5857 NULL);
James Morse0247f3f2016-10-07 17:00:12 -07005858
Tejun Heo264a0ae2016-04-21 19:09:02 -04005859 up_read(&mc.mm->mmap_sem);
Johannes Weiner312722c2014-12-10 15:44:25 -08005860 atomic_dec(&mc.from->moving_account);
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08005861}
5862
Tejun Heo264a0ae2016-04-21 19:09:02 -04005863static void mem_cgroup_move_task(void)
Balbir Singh67e465a2008-02-07 00:13:54 -08005864{
Tejun Heo264a0ae2016-04-21 19:09:02 -04005865 if (mc.to) {
5866 mem_cgroup_move_charge();
KOSAKI Motohiroa4336582011-06-15 15:08:13 -07005867 mem_cgroup_clear_mc();
Tejun Heo264a0ae2016-04-21 19:09:02 -04005868 }
Balbir Singh67e465a2008-02-07 00:13:54 -08005869}
Daisuke Nishimura5cfb80a2010-03-23 13:35:11 -07005870#else /* !CONFIG_MMU */
Tejun Heo1f7dd3e52015-12-03 10:18:21 -05005871static int mem_cgroup_can_attach(struct cgroup_taskset *tset)
Daisuke Nishimura5cfb80a2010-03-23 13:35:11 -07005872{
5873 return 0;
5874}
Tejun Heo1f7dd3e52015-12-03 10:18:21 -05005875static void mem_cgroup_cancel_attach(struct cgroup_taskset *tset)
Daisuke Nishimura5cfb80a2010-03-23 13:35:11 -07005876{
5877}
Tejun Heo264a0ae2016-04-21 19:09:02 -04005878static void mem_cgroup_move_task(void)
Daisuke Nishimura5cfb80a2010-03-23 13:35:11 -07005879{
5880}
5881#endif
Balbir Singh67e465a2008-02-07 00:13:54 -08005882
Tejun Heof00baae2013-04-15 13:41:15 -07005883/*
5884 * Cgroup retains root cgroups across [un]mount cycles making it necessary
Tejun Heoaa6ec292014-07-09 10:08:08 -04005885 * to verify whether we're attached to the default hierarchy on each mount
5886 * attempt.
Tejun Heof00baae2013-04-15 13:41:15 -07005887 */
Tejun Heoeb954192013-08-08 20:11:23 -04005888static void mem_cgroup_bind(struct cgroup_subsys_state *root_css)
Tejun Heof00baae2013-04-15 13:41:15 -07005889{
5890 /*
Tejun Heoaa6ec292014-07-09 10:08:08 -04005891 * use_hierarchy is forced on the default hierarchy. cgroup core
Tejun Heof00baae2013-04-15 13:41:15 -07005892 * guarantees that @root doesn't have any children, so turning it
5893 * on for the root memcg is enough.
5894 */
Tejun Heo9e10a132015-09-18 11:56:28 -04005895 if (cgroup_subsys_on_dfl(memory_cgrp_subsys))
Vladimir Davydov7feee5902015-03-12 16:26:19 -07005896 root_mem_cgroup->use_hierarchy = true;
5897 else
5898 root_mem_cgroup->use_hierarchy = false;
Tejun Heof00baae2013-04-15 13:41:15 -07005899}
5900
Chris Down677dc972019-03-05 15:45:55 -08005901static int seq_puts_memcg_tunable(struct seq_file *m, unsigned long value)
5902{
5903 if (value == PAGE_COUNTER_MAX)
5904 seq_puts(m, "max\n");
5905 else
5906 seq_printf(m, "%llu\n", (u64)value * PAGE_SIZE);
5907
5908 return 0;
5909}
5910
Johannes Weiner241994ed2015-02-11 15:26:06 -08005911static u64 memory_current_read(struct cgroup_subsys_state *css,
5912 struct cftype *cft)
5913{
Johannes Weinerf5fc3c5d2015-11-05 18:50:23 -08005914 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
5915
5916 return (u64)page_counter_read(&memcg->memory) * PAGE_SIZE;
Johannes Weiner241994ed2015-02-11 15:26:06 -08005917}
5918
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07005919static int memory_min_show(struct seq_file *m, void *v)
5920{
Chris Down677dc972019-03-05 15:45:55 -08005921 return seq_puts_memcg_tunable(m,
5922 READ_ONCE(mem_cgroup_from_seq(m)->memory.min));
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07005923}
5924
5925static ssize_t memory_min_write(struct kernfs_open_file *of,
5926 char *buf, size_t nbytes, loff_t off)
5927{
5928 struct mem_cgroup *memcg = mem_cgroup_from_css(of_css(of));
5929 unsigned long min;
5930 int err;
5931
5932 buf = strstrip(buf);
5933 err = page_counter_memparse(buf, "max", &min);
5934 if (err)
5935 return err;
5936
5937 page_counter_set_min(&memcg->memory, min);
5938
5939 return nbytes;
5940}
5941
Johannes Weiner241994ed2015-02-11 15:26:06 -08005942static int memory_low_show(struct seq_file *m, void *v)
5943{
Chris Down677dc972019-03-05 15:45:55 -08005944 return seq_puts_memcg_tunable(m,
5945 READ_ONCE(mem_cgroup_from_seq(m)->memory.low));
Johannes Weiner241994ed2015-02-11 15:26:06 -08005946}
5947
5948static ssize_t memory_low_write(struct kernfs_open_file *of,
5949 char *buf, size_t nbytes, loff_t off)
5950{
5951 struct mem_cgroup *memcg = mem_cgroup_from_css(of_css(of));
5952 unsigned long low;
5953 int err;
5954
5955 buf = strstrip(buf);
Johannes Weinerd2973692015-02-27 15:52:04 -08005956 err = page_counter_memparse(buf, "max", &low);
Johannes Weiner241994ed2015-02-11 15:26:06 -08005957 if (err)
5958 return err;
5959
Roman Gushchin23067152018-06-07 17:06:22 -07005960 page_counter_set_low(&memcg->memory, low);
Johannes Weiner241994ed2015-02-11 15:26:06 -08005961
5962 return nbytes;
5963}
5964
5965static int memory_high_show(struct seq_file *m, void *v)
5966{
Chris Down677dc972019-03-05 15:45:55 -08005967 return seq_puts_memcg_tunable(m, READ_ONCE(mem_cgroup_from_seq(m)->high));
Johannes Weiner241994ed2015-02-11 15:26:06 -08005968}
5969
5970static ssize_t memory_high_write(struct kernfs_open_file *of,
5971 char *buf, size_t nbytes, loff_t off)
5972{
5973 struct mem_cgroup *memcg = mem_cgroup_from_css(of_css(of));
Johannes Weiner8c8c3832019-11-30 17:50:09 -08005974 unsigned int nr_retries = MEM_CGROUP_RECLAIM_RETRIES;
5975 bool drained = false;
Johannes Weiner241994ed2015-02-11 15:26:06 -08005976 unsigned long high;
5977 int err;
5978
5979 buf = strstrip(buf);
Johannes Weinerd2973692015-02-27 15:52:04 -08005980 err = page_counter_memparse(buf, "max", &high);
Johannes Weiner241994ed2015-02-11 15:26:06 -08005981 if (err)
5982 return err;
5983
5984 memcg->high = high;
5985
Johannes Weiner8c8c3832019-11-30 17:50:09 -08005986 for (;;) {
5987 unsigned long nr_pages = page_counter_read(&memcg->memory);
5988 unsigned long reclaimed;
Johannes Weiner588083b2016-03-17 14:20:25 -07005989
Johannes Weiner8c8c3832019-11-30 17:50:09 -08005990 if (nr_pages <= high)
5991 break;
5992
5993 if (signal_pending(current))
5994 break;
5995
5996 if (!drained) {
5997 drain_all_stock(memcg);
5998 drained = true;
5999 continue;
6000 }
6001
6002 reclaimed = try_to_free_mem_cgroup_pages(memcg, nr_pages - high,
6003 GFP_KERNEL, true);
6004
6005 if (!reclaimed && !nr_retries--)
6006 break;
6007 }
6008
Johannes Weiner241994ed2015-02-11 15:26:06 -08006009 return nbytes;
6010}
6011
6012static int memory_max_show(struct seq_file *m, void *v)
6013{
Chris Down677dc972019-03-05 15:45:55 -08006014 return seq_puts_memcg_tunable(m,
6015 READ_ONCE(mem_cgroup_from_seq(m)->memory.max));
Johannes Weiner241994ed2015-02-11 15:26:06 -08006016}
6017
6018static ssize_t memory_max_write(struct kernfs_open_file *of,
6019 char *buf, size_t nbytes, loff_t off)
6020{
6021 struct mem_cgroup *memcg = mem_cgroup_from_css(of_css(of));
Johannes Weinerb6e6edc2016-03-17 14:20:28 -07006022 unsigned int nr_reclaims = MEM_CGROUP_RECLAIM_RETRIES;
6023 bool drained = false;
Johannes Weiner241994ed2015-02-11 15:26:06 -08006024 unsigned long max;
6025 int err;
6026
6027 buf = strstrip(buf);
Johannes Weinerd2973692015-02-27 15:52:04 -08006028 err = page_counter_memparse(buf, "max", &max);
Johannes Weiner241994ed2015-02-11 15:26:06 -08006029 if (err)
6030 return err;
6031
Roman Gushchinbbec2e12018-06-07 17:06:18 -07006032 xchg(&memcg->memory.max, max);
Johannes Weinerb6e6edc2016-03-17 14:20:28 -07006033
6034 for (;;) {
6035 unsigned long nr_pages = page_counter_read(&memcg->memory);
6036
6037 if (nr_pages <= max)
6038 break;
6039
Johannes Weiner7249c9f2019-11-30 17:50:06 -08006040 if (signal_pending(current))
Johannes Weinerb6e6edc2016-03-17 14:20:28 -07006041 break;
Johannes Weinerb6e6edc2016-03-17 14:20:28 -07006042
6043 if (!drained) {
6044 drain_all_stock(memcg);
6045 drained = true;
6046 continue;
6047 }
6048
6049 if (nr_reclaims) {
6050 if (!try_to_free_mem_cgroup_pages(memcg, nr_pages - max,
6051 GFP_KERNEL, true))
6052 nr_reclaims--;
6053 continue;
6054 }
6055
Johannes Weinere27be242018-04-10 16:29:45 -07006056 memcg_memory_event(memcg, MEMCG_OOM);
Johannes Weinerb6e6edc2016-03-17 14:20:28 -07006057 if (!mem_cgroup_out_of_memory(memcg, GFP_KERNEL, 0))
6058 break;
6059 }
Johannes Weiner241994ed2015-02-11 15:26:06 -08006060
Tejun Heo2529bb32015-05-22 18:23:34 -04006061 memcg_wb_domain_size_changed(memcg);
Johannes Weiner241994ed2015-02-11 15:26:06 -08006062 return nbytes;
6063}
6064
Shakeel Butt1e577f92019-07-11 20:55:55 -07006065static void __memory_events_show(struct seq_file *m, atomic_long_t *events)
6066{
6067 seq_printf(m, "low %lu\n", atomic_long_read(&events[MEMCG_LOW]));
6068 seq_printf(m, "high %lu\n", atomic_long_read(&events[MEMCG_HIGH]));
6069 seq_printf(m, "max %lu\n", atomic_long_read(&events[MEMCG_MAX]));
6070 seq_printf(m, "oom %lu\n", atomic_long_read(&events[MEMCG_OOM]));
6071 seq_printf(m, "oom_kill %lu\n",
6072 atomic_long_read(&events[MEMCG_OOM_KILL]));
6073}
6074
Johannes Weiner241994ed2015-02-11 15:26:06 -08006075static int memory_events_show(struct seq_file *m, void *v)
6076{
Chris Downaa9694b2019-03-05 15:45:52 -08006077 struct mem_cgroup *memcg = mem_cgroup_from_seq(m);
Johannes Weiner241994ed2015-02-11 15:26:06 -08006078
Shakeel Butt1e577f92019-07-11 20:55:55 -07006079 __memory_events_show(m, memcg->memory_events);
6080 return 0;
6081}
Johannes Weiner241994ed2015-02-11 15:26:06 -08006082
Shakeel Butt1e577f92019-07-11 20:55:55 -07006083static int memory_events_local_show(struct seq_file *m, void *v)
6084{
6085 struct mem_cgroup *memcg = mem_cgroup_from_seq(m);
6086
6087 __memory_events_show(m, memcg->memory_events_local);
Johannes Weiner241994ed2015-02-11 15:26:06 -08006088 return 0;
6089}
6090
Johannes Weiner587d9f72016-01-20 15:03:19 -08006091static int memory_stat_show(struct seq_file *m, void *v)
6092{
Chris Downaa9694b2019-03-05 15:45:52 -08006093 struct mem_cgroup *memcg = mem_cgroup_from_seq(m);
Johannes Weinerc8713d02019-07-11 20:55:59 -07006094 char *buf;
Johannes Weiner587d9f72016-01-20 15:03:19 -08006095
Johannes Weinerc8713d02019-07-11 20:55:59 -07006096 buf = memory_stat_format(memcg);
6097 if (!buf)
6098 return -ENOMEM;
6099 seq_puts(m, buf);
6100 kfree(buf);
Johannes Weiner587d9f72016-01-20 15:03:19 -08006101 return 0;
6102}
6103
Roman Gushchin3d8b38e2018-08-21 21:53:54 -07006104static int memory_oom_group_show(struct seq_file *m, void *v)
6105{
Chris Downaa9694b2019-03-05 15:45:52 -08006106 struct mem_cgroup *memcg = mem_cgroup_from_seq(m);
Roman Gushchin3d8b38e2018-08-21 21:53:54 -07006107
6108 seq_printf(m, "%d\n", memcg->oom_group);
6109
6110 return 0;
6111}
6112
6113static ssize_t memory_oom_group_write(struct kernfs_open_file *of,
6114 char *buf, size_t nbytes, loff_t off)
6115{
6116 struct mem_cgroup *memcg = mem_cgroup_from_css(of_css(of));
6117 int ret, oom_group;
6118
6119 buf = strstrip(buf);
6120 if (!buf)
6121 return -EINVAL;
6122
6123 ret = kstrtoint(buf, 0, &oom_group);
6124 if (ret)
6125 return ret;
6126
6127 if (oom_group != 0 && oom_group != 1)
6128 return -EINVAL;
6129
6130 memcg->oom_group = oom_group;
6131
6132 return nbytes;
6133}
6134
Johannes Weiner241994ed2015-02-11 15:26:06 -08006135static struct cftype memory_files[] = {
6136 {
6137 .name = "current",
Johannes Weinerf5fc3c5d2015-11-05 18:50:23 -08006138 .flags = CFTYPE_NOT_ON_ROOT,
Johannes Weiner241994ed2015-02-11 15:26:06 -08006139 .read_u64 = memory_current_read,
6140 },
6141 {
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006142 .name = "min",
6143 .flags = CFTYPE_NOT_ON_ROOT,
6144 .seq_show = memory_min_show,
6145 .write = memory_min_write,
6146 },
6147 {
Johannes Weiner241994ed2015-02-11 15:26:06 -08006148 .name = "low",
6149 .flags = CFTYPE_NOT_ON_ROOT,
6150 .seq_show = memory_low_show,
6151 .write = memory_low_write,
6152 },
6153 {
6154 .name = "high",
6155 .flags = CFTYPE_NOT_ON_ROOT,
6156 .seq_show = memory_high_show,
6157 .write = memory_high_write,
6158 },
6159 {
6160 .name = "max",
6161 .flags = CFTYPE_NOT_ON_ROOT,
6162 .seq_show = memory_max_show,
6163 .write = memory_max_write,
6164 },
6165 {
6166 .name = "events",
6167 .flags = CFTYPE_NOT_ON_ROOT,
Tejun Heo472912a2015-09-18 18:01:59 -04006168 .file_offset = offsetof(struct mem_cgroup, events_file),
Johannes Weiner241994ed2015-02-11 15:26:06 -08006169 .seq_show = memory_events_show,
6170 },
Johannes Weiner587d9f72016-01-20 15:03:19 -08006171 {
Shakeel Butt1e577f92019-07-11 20:55:55 -07006172 .name = "events.local",
6173 .flags = CFTYPE_NOT_ON_ROOT,
6174 .file_offset = offsetof(struct mem_cgroup, events_local_file),
6175 .seq_show = memory_events_local_show,
6176 },
6177 {
Johannes Weiner587d9f72016-01-20 15:03:19 -08006178 .name = "stat",
6179 .flags = CFTYPE_NOT_ON_ROOT,
6180 .seq_show = memory_stat_show,
6181 },
Roman Gushchin3d8b38e2018-08-21 21:53:54 -07006182 {
6183 .name = "oom.group",
6184 .flags = CFTYPE_NOT_ON_ROOT | CFTYPE_NS_DELEGATABLE,
6185 .seq_show = memory_oom_group_show,
6186 .write = memory_oom_group_write,
6187 },
Johannes Weiner241994ed2015-02-11 15:26:06 -08006188 { } /* terminate */
6189};
6190
Tejun Heo073219e2014-02-08 10:36:58 -05006191struct cgroup_subsys memory_cgrp_subsys = {
Tejun Heo92fb9742012-11-19 08:13:38 -08006192 .css_alloc = mem_cgroup_css_alloc,
Glauber Costad142e3e2013-02-22 16:34:52 -08006193 .css_online = mem_cgroup_css_online,
Tejun Heo92fb9742012-11-19 08:13:38 -08006194 .css_offline = mem_cgroup_css_offline,
Vladimir Davydov6df38682015-12-29 14:54:10 -08006195 .css_released = mem_cgroup_css_released,
Tejun Heo92fb9742012-11-19 08:13:38 -08006196 .css_free = mem_cgroup_css_free,
Tejun Heo1ced9532014-07-08 18:02:57 -04006197 .css_reset = mem_cgroup_css_reset,
Daisuke Nishimura7dc74be2010-03-10 15:22:13 -08006198 .can_attach = mem_cgroup_can_attach,
6199 .cancel_attach = mem_cgroup_cancel_attach,
Tejun Heo264a0ae2016-04-21 19:09:02 -04006200 .post_attach = mem_cgroup_move_task,
Tejun Heof00baae2013-04-15 13:41:15 -07006201 .bind = mem_cgroup_bind,
Johannes Weiner241994ed2015-02-11 15:26:06 -08006202 .dfl_cftypes = memory_files,
6203 .legacy_cftypes = mem_cgroup_legacy_files,
KAMEZAWA Hiroyuki6d12e2d2008-02-07 00:14:31 -08006204 .early_init = 0,
Balbir Singh8cdea7c2008-02-07 00:13:50 -08006205};
KAMEZAWA Hiroyukic0777192009-01-07 18:07:57 -08006206
Johannes Weiner241994ed2015-02-11 15:26:06 -08006207/**
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006208 * mem_cgroup_protected - check if memory consumption is in the normal range
Sean Christopherson34c81052017-07-10 15:48:05 -07006209 * @root: the top ancestor of the sub-tree being checked
Johannes Weiner241994ed2015-02-11 15:26:06 -08006210 * @memcg: the memory cgroup to check
6211 *
Roman Gushchin23067152018-06-07 17:06:22 -07006212 * WARNING: This function is not stateless! It can only be used as part
6213 * of a top-down tree iteration, not for isolated queries.
Sean Christopherson34c81052017-07-10 15:48:05 -07006214 *
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006215 * Returns one of the following:
6216 * MEMCG_PROT_NONE: cgroup memory is not protected
6217 * MEMCG_PROT_LOW: cgroup memory is protected as long there is
6218 * an unprotected supply of reclaimable memory from other cgroups.
6219 * MEMCG_PROT_MIN: cgroup memory is protected
Sean Christopherson34c81052017-07-10 15:48:05 -07006220 *
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006221 * @root is exclusive; it is never protected when looked at directly
Sean Christopherson34c81052017-07-10 15:48:05 -07006222 *
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006223 * To provide a proper hierarchical behavior, effective memory.min/low values
6224 * are used. Below is the description of how effective memory.low is calculated.
6225 * Effective memory.min values is calculated in the same way.
Sean Christopherson34c81052017-07-10 15:48:05 -07006226 *
Roman Gushchin23067152018-06-07 17:06:22 -07006227 * Effective memory.low is always equal or less than the original memory.low.
6228 * If there is no memory.low overcommittment (which is always true for
6229 * top-level memory cgroups), these two values are equal.
6230 * Otherwise, it's a part of parent's effective memory.low,
6231 * calculated as a cgroup's memory.low usage divided by sum of sibling's
6232 * memory.low usages, where memory.low usage is the size of actually
6233 * protected memory.
Sean Christopherson34c81052017-07-10 15:48:05 -07006234 *
Roman Gushchin23067152018-06-07 17:06:22 -07006235 * low_usage
6236 * elow = min( memory.low, parent->elow * ------------------ ),
6237 * siblings_low_usage
Sean Christopherson34c81052017-07-10 15:48:05 -07006238 *
Roman Gushchin23067152018-06-07 17:06:22 -07006239 * | memory.current, if memory.current < memory.low
6240 * low_usage = |
Qian Cai82ede7e2019-03-05 15:49:53 -08006241 * | 0, otherwise.
Sean Christopherson34c81052017-07-10 15:48:05 -07006242 *
Roman Gushchin23067152018-06-07 17:06:22 -07006243 *
6244 * Such definition of the effective memory.low provides the expected
6245 * hierarchical behavior: parent's memory.low value is limiting
6246 * children, unprotected memory is reclaimed first and cgroups,
6247 * which are not using their guarantee do not affect actual memory
6248 * distribution.
6249 *
6250 * For example, if there are memcgs A, A/B, A/C, A/D and A/E:
6251 *
6252 * A A/memory.low = 2G, A/memory.current = 6G
6253 * //\\
6254 * BC DE B/memory.low = 3G B/memory.current = 2G
6255 * C/memory.low = 1G C/memory.current = 2G
6256 * D/memory.low = 0 D/memory.current = 2G
6257 * E/memory.low = 10G E/memory.current = 0
6258 *
6259 * and the memory pressure is applied, the following memory distribution
6260 * is expected (approximately):
6261 *
6262 * A/memory.current = 2G
6263 *
6264 * B/memory.current = 1.3G
6265 * C/memory.current = 0.6G
6266 * D/memory.current = 0
6267 * E/memory.current = 0
6268 *
6269 * These calculations require constant tracking of the actual low usages
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006270 * (see propagate_protected_usage()), as well as recursive calculation of
6271 * effective memory.low values. But as we do call mem_cgroup_protected()
Roman Gushchin23067152018-06-07 17:06:22 -07006272 * path for each memory cgroup top-down from the reclaim,
6273 * it's possible to optimize this part, and save calculated elow
6274 * for next usage. This part is intentionally racy, but it's ok,
6275 * as memory.low is a best-effort mechanism.
Johannes Weiner241994ed2015-02-11 15:26:06 -08006276 */
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006277enum mem_cgroup_protection mem_cgroup_protected(struct mem_cgroup *root,
6278 struct mem_cgroup *memcg)
Johannes Weiner241994ed2015-02-11 15:26:06 -08006279{
Roman Gushchin23067152018-06-07 17:06:22 -07006280 struct mem_cgroup *parent;
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006281 unsigned long emin, parent_emin;
6282 unsigned long elow, parent_elow;
6283 unsigned long usage;
Roman Gushchin23067152018-06-07 17:06:22 -07006284
Johannes Weiner241994ed2015-02-11 15:26:06 -08006285 if (mem_cgroup_disabled())
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006286 return MEMCG_PROT_NONE;
Johannes Weiner241994ed2015-02-11 15:26:06 -08006287
Sean Christopherson34c81052017-07-10 15:48:05 -07006288 if (!root)
6289 root = root_mem_cgroup;
6290 if (memcg == root)
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006291 return MEMCG_PROT_NONE;
Johannes Weiner241994ed2015-02-11 15:26:06 -08006292
Roman Gushchin23067152018-06-07 17:06:22 -07006293 usage = page_counter_read(&memcg->memory);
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006294 if (!usage)
6295 return MEMCG_PROT_NONE;
Sean Christopherson34c81052017-07-10 15:48:05 -07006296
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006297 emin = memcg->memory.min;
6298 elow = memcg->memory.low;
6299
6300 parent = parent_mem_cgroup(memcg);
Roman Gushchindf2a4192018-06-14 15:26:17 -07006301 /* No parent means a non-hierarchical mode on v1 memcg */
6302 if (!parent)
6303 return MEMCG_PROT_NONE;
6304
Roman Gushchin23067152018-06-07 17:06:22 -07006305 if (parent == root)
6306 goto exit;
6307
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006308 parent_emin = READ_ONCE(parent->memory.emin);
6309 emin = min(emin, parent_emin);
6310 if (emin && parent_emin) {
6311 unsigned long min_usage, siblings_min_usage;
6312
6313 min_usage = min(usage, memcg->memory.min);
6314 siblings_min_usage = atomic_long_read(
6315 &parent->memory.children_min_usage);
6316
6317 if (min_usage && siblings_min_usage)
6318 emin = min(emin, parent_emin * min_usage /
6319 siblings_min_usage);
6320 }
6321
Roman Gushchin23067152018-06-07 17:06:22 -07006322 parent_elow = READ_ONCE(parent->memory.elow);
6323 elow = min(elow, parent_elow);
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006324 if (elow && parent_elow) {
6325 unsigned long low_usage, siblings_low_usage;
Roman Gushchin23067152018-06-07 17:06:22 -07006326
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006327 low_usage = min(usage, memcg->memory.low);
6328 siblings_low_usage = atomic_long_read(
6329 &parent->memory.children_low_usage);
Roman Gushchin23067152018-06-07 17:06:22 -07006330
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006331 if (low_usage && siblings_low_usage)
6332 elow = min(elow, parent_elow * low_usage /
6333 siblings_low_usage);
6334 }
Roman Gushchin23067152018-06-07 17:06:22 -07006335
Roman Gushchin23067152018-06-07 17:06:22 -07006336exit:
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006337 memcg->memory.emin = emin;
Roman Gushchin23067152018-06-07 17:06:22 -07006338 memcg->memory.elow = elow;
Roman Gushchinbf8d5d52018-06-07 17:07:46 -07006339
6340 if (usage <= emin)
6341 return MEMCG_PROT_MIN;
6342 else if (usage <= elow)
6343 return MEMCG_PROT_LOW;
6344 else
6345 return MEMCG_PROT_NONE;
Johannes Weiner241994ed2015-02-11 15:26:06 -08006346}
6347
Johannes Weiner00501b52014-08-08 14:19:20 -07006348/**
6349 * mem_cgroup_try_charge - try charging a page
6350 * @page: page to charge
6351 * @mm: mm context of the victim
6352 * @gfp_mask: reclaim mode
6353 * @memcgp: charged memcg return
Li RongQing25843c22016-07-26 15:26:56 -07006354 * @compound: charge the page as compound or small page
Johannes Weiner00501b52014-08-08 14:19:20 -07006355 *
6356 * Try to charge @page to the memcg that @mm belongs to, reclaiming
6357 * pages according to @gfp_mask if necessary.
6358 *
6359 * Returns 0 on success, with *@memcgp pointing to the charged memcg.
6360 * Otherwise, an error code is returned.
6361 *
6362 * After page->mapping has been set up, the caller must finalize the
6363 * charge with mem_cgroup_commit_charge(). Or abort the transaction
6364 * with mem_cgroup_cancel_charge() in case page instantiation fails.
6365 */
6366int mem_cgroup_try_charge(struct page *page, struct mm_struct *mm,
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08006367 gfp_t gfp_mask, struct mem_cgroup **memcgp,
6368 bool compound)
Johannes Weiner00501b52014-08-08 14:19:20 -07006369{
6370 struct mem_cgroup *memcg = NULL;
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08006371 unsigned int nr_pages = compound ? hpage_nr_pages(page) : 1;
Johannes Weiner00501b52014-08-08 14:19:20 -07006372 int ret = 0;
6373
6374 if (mem_cgroup_disabled())
6375 goto out;
6376
6377 if (PageSwapCache(page)) {
Johannes Weiner00501b52014-08-08 14:19:20 -07006378 /*
6379 * Every swap fault against a single page tries to charge the
6380 * page, bail as early as possible. shmem_unuse() encounters
6381 * already charged pages, too. The USED bit is protected by
6382 * the page lock, which serializes swap cache removal, which
6383 * in turn serializes uncharging.
6384 */
Vladimir Davydove993d902015-09-09 15:35:35 -07006385 VM_BUG_ON_PAGE(!PageLocked(page), page);
Huang Yingabe28952017-09-06 16:22:41 -07006386 if (compound_head(page)->mem_cgroup)
Johannes Weiner00501b52014-08-08 14:19:20 -07006387 goto out;
Vladimir Davydove993d902015-09-09 15:35:35 -07006388
Vladimir Davydov37e84352016-01-20 15:02:56 -08006389 if (do_swap_account) {
Vladimir Davydove993d902015-09-09 15:35:35 -07006390 swp_entry_t ent = { .val = page_private(page), };
6391 unsigned short id = lookup_swap_cgroup_id(ent);
6392
6393 rcu_read_lock();
6394 memcg = mem_cgroup_from_id(id);
6395 if (memcg && !css_tryget_online(&memcg->css))
6396 memcg = NULL;
6397 rcu_read_unlock();
6398 }
Johannes Weiner00501b52014-08-08 14:19:20 -07006399 }
6400
Johannes Weiner00501b52014-08-08 14:19:20 -07006401 if (!memcg)
6402 memcg = get_mem_cgroup_from_mm(mm);
6403
6404 ret = try_charge(memcg, gfp_mask, nr_pages);
6405
6406 css_put(&memcg->css);
Johannes Weiner00501b52014-08-08 14:19:20 -07006407out:
6408 *memcgp = memcg;
6409 return ret;
6410}
6411
Tejun Heo2cf85582018-07-03 11:14:56 -04006412int mem_cgroup_try_charge_delay(struct page *page, struct mm_struct *mm,
6413 gfp_t gfp_mask, struct mem_cgroup **memcgp,
6414 bool compound)
6415{
6416 struct mem_cgroup *memcg;
6417 int ret;
6418
6419 ret = mem_cgroup_try_charge(page, mm, gfp_mask, memcgp, compound);
6420 memcg = *memcgp;
6421 mem_cgroup_throttle_swaprate(memcg, page_to_nid(page), gfp_mask);
6422 return ret;
6423}
6424
Johannes Weiner00501b52014-08-08 14:19:20 -07006425/**
6426 * mem_cgroup_commit_charge - commit a page charge
6427 * @page: page to charge
6428 * @memcg: memcg to charge the page to
6429 * @lrucare: page might be on LRU already
Li RongQing25843c22016-07-26 15:26:56 -07006430 * @compound: charge the page as compound or small page
Johannes Weiner00501b52014-08-08 14:19:20 -07006431 *
6432 * Finalize a charge transaction started by mem_cgroup_try_charge(),
6433 * after page->mapping has been set up. This must happen atomically
6434 * as part of the page instantiation, i.e. under the page table lock
6435 * for anonymous pages, under the page lock for page and swap cache.
6436 *
6437 * In addition, the page must not be on the LRU during the commit, to
6438 * prevent racing with task migration. If it might be, use @lrucare.
6439 *
6440 * Use mem_cgroup_cancel_charge() to cancel the transaction instead.
6441 */
6442void mem_cgroup_commit_charge(struct page *page, struct mem_cgroup *memcg,
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08006443 bool lrucare, bool compound)
Johannes Weiner00501b52014-08-08 14:19:20 -07006444{
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08006445 unsigned int nr_pages = compound ? hpage_nr_pages(page) : 1;
Johannes Weiner00501b52014-08-08 14:19:20 -07006446
6447 VM_BUG_ON_PAGE(!page->mapping, page);
6448 VM_BUG_ON_PAGE(PageLRU(page) && !lrucare, page);
6449
6450 if (mem_cgroup_disabled())
6451 return;
6452 /*
6453 * Swap faults will attempt to charge the same page multiple
6454 * times. But reuse_swap_page() might have removed the page
6455 * from swapcache already, so we can't check PageSwapCache().
6456 */
6457 if (!memcg)
6458 return;
6459
Johannes Weiner6abb5a82014-08-08 14:19:33 -07006460 commit_charge(page, memcg, lrucare);
6461
Johannes Weiner6abb5a82014-08-08 14:19:33 -07006462 local_irq_disable();
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08006463 mem_cgroup_charge_statistics(memcg, page, compound, nr_pages);
Johannes Weiner6abb5a82014-08-08 14:19:33 -07006464 memcg_check_events(memcg, page);
6465 local_irq_enable();
Johannes Weiner00501b52014-08-08 14:19:20 -07006466
Johannes Weiner7941d212016-01-14 15:21:23 -08006467 if (do_memsw_account() && PageSwapCache(page)) {
Johannes Weiner00501b52014-08-08 14:19:20 -07006468 swp_entry_t entry = { .val = page_private(page) };
6469 /*
6470 * The swap entry might not get freed for a long time,
6471 * let's not wait for it. The page already received a
6472 * memory+swap charge, drop the swap entry duplicate.
6473 */
Huang Ying38d8b4e2017-07-06 15:37:18 -07006474 mem_cgroup_uncharge_swap(entry, nr_pages);
Johannes Weiner00501b52014-08-08 14:19:20 -07006475 }
6476}
6477
6478/**
6479 * mem_cgroup_cancel_charge - cancel a page charge
6480 * @page: page to charge
6481 * @memcg: memcg to charge the page to
Li RongQing25843c22016-07-26 15:26:56 -07006482 * @compound: charge the page as compound or small page
Johannes Weiner00501b52014-08-08 14:19:20 -07006483 *
6484 * Cancel a charge transaction started by mem_cgroup_try_charge().
6485 */
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08006486void mem_cgroup_cancel_charge(struct page *page, struct mem_cgroup *memcg,
6487 bool compound)
Johannes Weiner00501b52014-08-08 14:19:20 -07006488{
Kirill A. Shutemovf627c2f2016-01-15 16:52:20 -08006489 unsigned int nr_pages = compound ? hpage_nr_pages(page) : 1;
Johannes Weiner00501b52014-08-08 14:19:20 -07006490
6491 if (mem_cgroup_disabled())
6492 return;
6493 /*
6494 * Swap faults will attempt to charge the same page multiple
6495 * times. But reuse_swap_page() might have removed the page
6496 * from swapcache already, so we can't check PageSwapCache().
6497 */
6498 if (!memcg)
6499 return;
6500
Johannes Weiner00501b52014-08-08 14:19:20 -07006501 cancel_charge(memcg, nr_pages);
6502}
6503
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006504struct uncharge_gather {
6505 struct mem_cgroup *memcg;
6506 unsigned long pgpgout;
6507 unsigned long nr_anon;
6508 unsigned long nr_file;
6509 unsigned long nr_kmem;
6510 unsigned long nr_huge;
6511 unsigned long nr_shmem;
6512 struct page *dummy_page;
6513};
6514
6515static inline void uncharge_gather_clear(struct uncharge_gather *ug)
Johannes Weiner747db952014-08-08 14:19:24 -07006516{
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006517 memset(ug, 0, sizeof(*ug));
6518}
6519
6520static void uncharge_batch(const struct uncharge_gather *ug)
6521{
6522 unsigned long nr_pages = ug->nr_anon + ug->nr_file + ug->nr_kmem;
Johannes Weiner747db952014-08-08 14:19:24 -07006523 unsigned long flags;
6524
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006525 if (!mem_cgroup_is_root(ug->memcg)) {
6526 page_counter_uncharge(&ug->memcg->memory, nr_pages);
Johannes Weiner7941d212016-01-14 15:21:23 -08006527 if (do_memsw_account())
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006528 page_counter_uncharge(&ug->memcg->memsw, nr_pages);
6529 if (!cgroup_subsys_on_dfl(memory_cgrp_subsys) && ug->nr_kmem)
6530 page_counter_uncharge(&ug->memcg->kmem, ug->nr_kmem);
6531 memcg_oom_recover(ug->memcg);
Johannes Weinerce00a962014-09-05 08:43:57 -04006532 }
Johannes Weiner747db952014-08-08 14:19:24 -07006533
6534 local_irq_save(flags);
Johannes Weinerc9019e92018-01-31 16:16:37 -08006535 __mod_memcg_state(ug->memcg, MEMCG_RSS, -ug->nr_anon);
6536 __mod_memcg_state(ug->memcg, MEMCG_CACHE, -ug->nr_file);
6537 __mod_memcg_state(ug->memcg, MEMCG_RSS_HUGE, -ug->nr_huge);
6538 __mod_memcg_state(ug->memcg, NR_SHMEM, -ug->nr_shmem);
6539 __count_memcg_events(ug->memcg, PGPGOUT, ug->pgpgout);
Chris Down871789d2019-05-14 15:46:57 -07006540 __this_cpu_add(ug->memcg->vmstats_percpu->nr_page_events, nr_pages);
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006541 memcg_check_events(ug->memcg, ug->dummy_page);
Johannes Weiner747db952014-08-08 14:19:24 -07006542 local_irq_restore(flags);
Johannes Weinere8ea14c2014-12-10 15:42:42 -08006543
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006544 if (!mem_cgroup_is_root(ug->memcg))
6545 css_put_many(&ug->memcg->css, nr_pages);
6546}
6547
6548static void uncharge_page(struct page *page, struct uncharge_gather *ug)
6549{
6550 VM_BUG_ON_PAGE(PageLRU(page), page);
Jérôme Glisse3f2eb022017-10-03 16:14:57 -07006551 VM_BUG_ON_PAGE(page_count(page) && !is_zone_device_page(page) &&
6552 !PageHWPoison(page) , page);
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006553
6554 if (!page->mem_cgroup)
6555 return;
6556
6557 /*
6558 * Nobody should be changing or seriously looking at
6559 * page->mem_cgroup at this point, we have fully
6560 * exclusive access to the page.
6561 */
6562
6563 if (ug->memcg != page->mem_cgroup) {
6564 if (ug->memcg) {
6565 uncharge_batch(ug);
6566 uncharge_gather_clear(ug);
6567 }
6568 ug->memcg = page->mem_cgroup;
6569 }
6570
6571 if (!PageKmemcg(page)) {
6572 unsigned int nr_pages = 1;
6573
6574 if (PageTransHuge(page)) {
Matthew Wilcox (Oracle)d8c65462019-09-23 15:34:30 -07006575 nr_pages = compound_nr(page);
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006576 ug->nr_huge += nr_pages;
6577 }
6578 if (PageAnon(page))
6579 ug->nr_anon += nr_pages;
6580 else {
6581 ug->nr_file += nr_pages;
6582 if (PageSwapBacked(page))
6583 ug->nr_shmem += nr_pages;
6584 }
6585 ug->pgpgout++;
6586 } else {
Matthew Wilcox (Oracle)d8c65462019-09-23 15:34:30 -07006587 ug->nr_kmem += compound_nr(page);
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006588 __ClearPageKmemcg(page);
6589 }
6590
6591 ug->dummy_page = page;
6592 page->mem_cgroup = NULL;
Johannes Weiner747db952014-08-08 14:19:24 -07006593}
6594
6595static void uncharge_list(struct list_head *page_list)
6596{
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006597 struct uncharge_gather ug;
Johannes Weiner747db952014-08-08 14:19:24 -07006598 struct list_head *next;
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006599
6600 uncharge_gather_clear(&ug);
Johannes Weiner747db952014-08-08 14:19:24 -07006601
Johannes Weiner8b592652016-03-17 14:20:31 -07006602 /*
6603 * Note that the list can be a single page->lru; hence the
6604 * do-while loop instead of a simple list_for_each_entry().
6605 */
Johannes Weiner747db952014-08-08 14:19:24 -07006606 next = page_list->next;
6607 do {
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006608 struct page *page;
6609
Johannes Weiner747db952014-08-08 14:19:24 -07006610 page = list_entry(next, struct page, lru);
6611 next = page->lru.next;
6612
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006613 uncharge_page(page, &ug);
Johannes Weiner747db952014-08-08 14:19:24 -07006614 } while (next != page_list);
6615
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006616 if (ug.memcg)
6617 uncharge_batch(&ug);
Johannes Weiner747db952014-08-08 14:19:24 -07006618}
6619
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006620/**
6621 * mem_cgroup_uncharge - uncharge a page
6622 * @page: page to uncharge
6623 *
6624 * Uncharge a page previously charged with mem_cgroup_try_charge() and
6625 * mem_cgroup_commit_charge().
6626 */
6627void mem_cgroup_uncharge(struct page *page)
6628{
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006629 struct uncharge_gather ug;
6630
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006631 if (mem_cgroup_disabled())
6632 return;
6633
Johannes Weiner747db952014-08-08 14:19:24 -07006634 /* Don't touch page->lru of any random page, pre-check: */
Johannes Weiner1306a852014-12-10 15:44:52 -08006635 if (!page->mem_cgroup)
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006636 return;
6637
Jérôme Glissea9d5ade2017-09-08 16:11:50 -07006638 uncharge_gather_clear(&ug);
6639 uncharge_page(page, &ug);
6640 uncharge_batch(&ug);
Johannes Weiner747db952014-08-08 14:19:24 -07006641}
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006642
Johannes Weiner747db952014-08-08 14:19:24 -07006643/**
6644 * mem_cgroup_uncharge_list - uncharge a list of page
6645 * @page_list: list of pages to uncharge
6646 *
6647 * Uncharge a list of pages previously charged with
6648 * mem_cgroup_try_charge() and mem_cgroup_commit_charge().
6649 */
6650void mem_cgroup_uncharge_list(struct list_head *page_list)
6651{
6652 if (mem_cgroup_disabled())
6653 return;
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006654
Johannes Weiner747db952014-08-08 14:19:24 -07006655 if (!list_empty(page_list))
6656 uncharge_list(page_list);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006657}
6658
6659/**
Johannes Weiner6a93ca82016-03-15 14:57:19 -07006660 * mem_cgroup_migrate - charge a page's replacement
6661 * @oldpage: currently circulating page
6662 * @newpage: replacement page
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006663 *
Johannes Weiner6a93ca82016-03-15 14:57:19 -07006664 * Charge @newpage as a replacement page for @oldpage. @oldpage will
6665 * be uncharged upon free.
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006666 *
6667 * Both pages must be locked, @newpage->mapping must be set up.
6668 */
Johannes Weiner6a93ca82016-03-15 14:57:19 -07006669void mem_cgroup_migrate(struct page *oldpage, struct page *newpage)
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006670{
Johannes Weiner29833312014-12-10 15:44:02 -08006671 struct mem_cgroup *memcg;
Johannes Weiner44b7a8d2016-01-20 15:03:16 -08006672 unsigned int nr_pages;
6673 bool compound;
Tejun Heod93c4132016-06-24 14:49:54 -07006674 unsigned long flags;
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006675
6676 VM_BUG_ON_PAGE(!PageLocked(oldpage), oldpage);
6677 VM_BUG_ON_PAGE(!PageLocked(newpage), newpage);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006678 VM_BUG_ON_PAGE(PageAnon(oldpage) != PageAnon(newpage), newpage);
Johannes Weiner6abb5a82014-08-08 14:19:33 -07006679 VM_BUG_ON_PAGE(PageTransHuge(oldpage) != PageTransHuge(newpage),
6680 newpage);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006681
6682 if (mem_cgroup_disabled())
6683 return;
6684
6685 /* Page cache replacement: new page already charged? */
Johannes Weiner1306a852014-12-10 15:44:52 -08006686 if (newpage->mem_cgroup)
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006687 return;
6688
Hugh Dickins45637ba2015-11-05 18:49:40 -08006689 /* Swapcache readahead pages can get replaced before being charged */
Johannes Weiner1306a852014-12-10 15:44:52 -08006690 memcg = oldpage->mem_cgroup;
Johannes Weiner29833312014-12-10 15:44:02 -08006691 if (!memcg)
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006692 return;
6693
Johannes Weiner44b7a8d2016-01-20 15:03:16 -08006694 /* Force-charge the new page. The old one will be freed soon */
6695 compound = PageTransHuge(newpage);
6696 nr_pages = compound ? hpage_nr_pages(newpage) : 1;
6697
6698 page_counter_charge(&memcg->memory, nr_pages);
6699 if (do_memsw_account())
6700 page_counter_charge(&memcg->memsw, nr_pages);
6701 css_get_many(&memcg->css, nr_pages);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006702
Johannes Weiner9cf76662016-03-15 14:57:58 -07006703 commit_charge(newpage, memcg, false);
Johannes Weiner44b7a8d2016-01-20 15:03:16 -08006704
Tejun Heod93c4132016-06-24 14:49:54 -07006705 local_irq_save(flags);
Johannes Weiner44b7a8d2016-01-20 15:03:16 -08006706 mem_cgroup_charge_statistics(memcg, newpage, compound, nr_pages);
6707 memcg_check_events(memcg, newpage);
Tejun Heod93c4132016-06-24 14:49:54 -07006708 local_irq_restore(flags);
Johannes Weiner0a31bc92014-08-08 14:19:22 -07006709}
6710
Johannes Weineref129472016-01-14 15:21:34 -08006711DEFINE_STATIC_KEY_FALSE(memcg_sockets_enabled_key);
Johannes Weiner11092082016-01-14 15:21:26 -08006712EXPORT_SYMBOL(memcg_sockets_enabled_key);
6713
Johannes Weiner2d758072016-10-07 17:00:58 -07006714void mem_cgroup_sk_alloc(struct sock *sk)
Johannes Weiner11092082016-01-14 15:21:26 -08006715{
6716 struct mem_cgroup *memcg;
6717
Johannes Weiner2d758072016-10-07 17:00:58 -07006718 if (!mem_cgroup_sockets_enabled)
6719 return;
6720
Roman Gushchinedbe69e2018-02-02 15:26:57 +00006721 /*
6722 * Socket cloning can throw us here with sk_memcg already
6723 * filled. It won't however, necessarily happen from
6724 * process context. So the test for root memcg given
6725 * the current task's memcg won't help us in this case.
6726 *
6727 * Respecting the original socket's memcg is a better
6728 * decision in this case.
6729 */
6730 if (sk->sk_memcg) {
6731 css_get(&sk->sk_memcg->css);
6732 return;
6733 }
6734
Johannes Weiner11092082016-01-14 15:21:26 -08006735 rcu_read_lock();
6736 memcg = mem_cgroup_from_task(current);
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006737 if (memcg == root_mem_cgroup)
6738 goto out;
Johannes Weiner0db15292016-01-20 15:02:50 -08006739 if (!cgroup_subsys_on_dfl(memory_cgrp_subsys) && !memcg->tcpmem_active)
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006740 goto out;
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006741 if (css_tryget_online(&memcg->css))
Johannes Weiner11092082016-01-14 15:21:26 -08006742 sk->sk_memcg = memcg;
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006743out:
Johannes Weiner11092082016-01-14 15:21:26 -08006744 rcu_read_unlock();
6745}
Johannes Weiner11092082016-01-14 15:21:26 -08006746
Johannes Weiner2d758072016-10-07 17:00:58 -07006747void mem_cgroup_sk_free(struct sock *sk)
Johannes Weiner11092082016-01-14 15:21:26 -08006748{
Johannes Weiner2d758072016-10-07 17:00:58 -07006749 if (sk->sk_memcg)
6750 css_put(&sk->sk_memcg->css);
Johannes Weiner11092082016-01-14 15:21:26 -08006751}
6752
6753/**
6754 * mem_cgroup_charge_skmem - charge socket memory
6755 * @memcg: memcg to charge
6756 * @nr_pages: number of pages to charge
6757 *
6758 * Charges @nr_pages to @memcg. Returns %true if the charge fit within
6759 * @memcg's configured limit, %false if the charge had to be forced.
6760 */
6761bool mem_cgroup_charge_skmem(struct mem_cgroup *memcg, unsigned int nr_pages)
6762{
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006763 gfp_t gfp_mask = GFP_KERNEL;
Johannes Weiner11092082016-01-14 15:21:26 -08006764
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006765 if (!cgroup_subsys_on_dfl(memory_cgrp_subsys)) {
Johannes Weiner0db15292016-01-20 15:02:50 -08006766 struct page_counter *fail;
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006767
Johannes Weiner0db15292016-01-20 15:02:50 -08006768 if (page_counter_try_charge(&memcg->tcpmem, nr_pages, &fail)) {
6769 memcg->tcpmem_pressure = 0;
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006770 return true;
6771 }
Johannes Weiner0db15292016-01-20 15:02:50 -08006772 page_counter_charge(&memcg->tcpmem, nr_pages);
6773 memcg->tcpmem_pressure = 1;
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006774 return false;
Johannes Weiner11092082016-01-14 15:21:26 -08006775 }
Johannes Weinerd886f4e2016-01-20 15:02:47 -08006776
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006777 /* Don't block in the packet receive path */
6778 if (in_softirq())
6779 gfp_mask = GFP_NOWAIT;
6780
Johannes Weinerc9019e92018-01-31 16:16:37 -08006781 mod_memcg_state(memcg, MEMCG_SOCK, nr_pages);
Johannes Weinerb2807f02016-01-20 15:03:22 -08006782
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006783 if (try_charge(memcg, gfp_mask, nr_pages) == 0)
6784 return true;
6785
6786 try_charge(memcg, gfp_mask|__GFP_NOFAIL, nr_pages);
Johannes Weiner11092082016-01-14 15:21:26 -08006787 return false;
6788}
6789
6790/**
6791 * mem_cgroup_uncharge_skmem - uncharge socket memory
Mike Rapoportb7701a52018-02-06 15:42:13 -08006792 * @memcg: memcg to uncharge
6793 * @nr_pages: number of pages to uncharge
Johannes Weiner11092082016-01-14 15:21:26 -08006794 */
6795void mem_cgroup_uncharge_skmem(struct mem_cgroup *memcg, unsigned int nr_pages)
6796{
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006797 if (!cgroup_subsys_on_dfl(memory_cgrp_subsys)) {
Johannes Weiner0db15292016-01-20 15:02:50 -08006798 page_counter_uncharge(&memcg->tcpmem, nr_pages);
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006799 return;
6800 }
Johannes Weinerd886f4e2016-01-20 15:02:47 -08006801
Johannes Weinerc9019e92018-01-31 16:16:37 -08006802 mod_memcg_state(memcg, MEMCG_SOCK, -nr_pages);
Johannes Weinerb2807f02016-01-20 15:03:22 -08006803
Roman Gushchin475d0482017-09-08 16:13:09 -07006804 refill_stock(memcg, nr_pages);
Johannes Weiner11092082016-01-14 15:21:26 -08006805}
6806
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006807static int __init cgroup_memory(char *s)
6808{
6809 char *token;
6810
6811 while ((token = strsep(&s, ",")) != NULL) {
6812 if (!*token)
6813 continue;
6814 if (!strcmp(token, "nosocket"))
6815 cgroup_memory_nosocket = true;
Vladimir Davydov04823c82016-01-20 15:02:38 -08006816 if (!strcmp(token, "nokmem"))
6817 cgroup_memory_nokmem = true;
Johannes Weinerf7e1cb62016-01-14 15:21:29 -08006818 }
6819 return 0;
6820}
6821__setup("cgroup.memory=", cgroup_memory);
Johannes Weiner11092082016-01-14 15:21:26 -08006822
Michal Hocko2d110852013-02-22 16:34:43 -08006823/*
Michal Hocko10813122013-02-22 16:35:41 -08006824 * subsys_initcall() for memory controller.
6825 *
Sebastian Andrzej Siewior308167f2016-11-03 15:49:59 +01006826 * Some parts like memcg_hotplug_cpu_dead() have to be initialized from this
6827 * context because of lock dependencies (cgroup_lock -> cpu hotplug) but
6828 * basically everything that doesn't depend on a specific mem_cgroup structure
6829 * should be initialized from here.
Michal Hocko2d110852013-02-22 16:34:43 -08006830 */
6831static int __init mem_cgroup_init(void)
6832{
Johannes Weiner95a045f2015-02-11 15:26:33 -08006833 int cpu, node;
6834
Kirill Tkhai84c07d12018-08-17 15:47:25 -07006835#ifdef CONFIG_MEMCG_KMEM
Vladimir Davydov13583c32016-12-12 16:41:29 -08006836 /*
6837 * Kmem cache creation is mostly done with the slab_mutex held,
Tejun Heo17cc4df2017-02-22 15:41:36 -08006838 * so use a workqueue with limited concurrency to avoid stalling
6839 * all worker threads in case lots of cgroups are created and
6840 * destroyed simultaneously.
Vladimir Davydov13583c32016-12-12 16:41:29 -08006841 */
Tejun Heo17cc4df2017-02-22 15:41:36 -08006842 memcg_kmem_cache_wq = alloc_workqueue("memcg_kmem_cache", 0, 1);
6843 BUG_ON(!memcg_kmem_cache_wq);
Vladimir Davydov13583c32016-12-12 16:41:29 -08006844#endif
6845
Sebastian Andrzej Siewior308167f2016-11-03 15:49:59 +01006846 cpuhp_setup_state_nocalls(CPUHP_MM_MEMCQ_DEAD, "mm/memctrl:dead", NULL,
6847 memcg_hotplug_cpu_dead);
Johannes Weiner95a045f2015-02-11 15:26:33 -08006848
6849 for_each_possible_cpu(cpu)
6850 INIT_WORK(&per_cpu_ptr(&memcg_stock, cpu)->work,
6851 drain_local_stock);
6852
6853 for_each_node(node) {
6854 struct mem_cgroup_tree_per_node *rtpn;
Johannes Weiner95a045f2015-02-11 15:26:33 -08006855
6856 rtpn = kzalloc_node(sizeof(*rtpn), GFP_KERNEL,
6857 node_online(node) ? node : NUMA_NO_NODE);
6858
Mel Gormanef8f2322016-07-28 15:46:05 -07006859 rtpn->rb_root = RB_ROOT;
Davidlohr Buesofa90b2f2017-09-08 16:15:21 -07006860 rtpn->rb_rightmost = NULL;
Mel Gormanef8f2322016-07-28 15:46:05 -07006861 spin_lock_init(&rtpn->lock);
Johannes Weiner95a045f2015-02-11 15:26:33 -08006862 soft_limit_tree.rb_tree_per_node[node] = rtpn;
6863 }
6864
Michal Hocko2d110852013-02-22 16:34:43 -08006865 return 0;
6866}
6867subsys_initcall(mem_cgroup_init);
Johannes Weiner21afa382015-02-11 15:26:36 -08006868
6869#ifdef CONFIG_MEMCG_SWAP
Arnd Bergmann358c07f2016-08-25 15:17:08 -07006870static struct mem_cgroup *mem_cgroup_id_get_online(struct mem_cgroup *memcg)
6871{
Kirill Tkhai1c2d4792018-10-26 15:09:28 -07006872 while (!refcount_inc_not_zero(&memcg->id.ref)) {
Arnd Bergmann358c07f2016-08-25 15:17:08 -07006873 /*
6874 * The root cgroup cannot be destroyed, so it's refcount must
6875 * always be >= 1.
6876 */
6877 if (WARN_ON_ONCE(memcg == root_mem_cgroup)) {
6878 VM_BUG_ON(1);
6879 break;
6880 }
6881 memcg = parent_mem_cgroup(memcg);
6882 if (!memcg)
6883 memcg = root_mem_cgroup;
6884 }
6885 return memcg;
6886}
6887
Johannes Weiner21afa382015-02-11 15:26:36 -08006888/**
6889 * mem_cgroup_swapout - transfer a memsw charge to swap
6890 * @page: page whose memsw charge to transfer
6891 * @entry: swap entry to move the charge to
6892 *
6893 * Transfer the memsw charge of @page to @entry.
6894 */
6895void mem_cgroup_swapout(struct page *page, swp_entry_t entry)
6896{
Vladimir Davydov1f47b612016-08-11 15:33:00 -07006897 struct mem_cgroup *memcg, *swap_memcg;
Huang Yingd6810d72017-09-06 16:22:45 -07006898 unsigned int nr_entries;
Johannes Weiner21afa382015-02-11 15:26:36 -08006899 unsigned short oldid;
6900
6901 VM_BUG_ON_PAGE(PageLRU(page), page);
6902 VM_BUG_ON_PAGE(page_count(page), page);
6903
Johannes Weiner7941d212016-01-14 15:21:23 -08006904 if (!do_memsw_account())
Johannes Weiner21afa382015-02-11 15:26:36 -08006905 return;
6906
6907 memcg = page->mem_cgroup;
6908
6909 /* Readahead page, never charged */
6910 if (!memcg)
6911 return;
6912
Vladimir Davydov1f47b612016-08-11 15:33:00 -07006913 /*
6914 * In case the memcg owning these pages has been offlined and doesn't
6915 * have an ID allocated to it anymore, charge the closest online
6916 * ancestor for the swap instead and transfer the memory+swap charge.
6917 */
6918 swap_memcg = mem_cgroup_id_get_online(memcg);
Huang Yingd6810d72017-09-06 16:22:45 -07006919 nr_entries = hpage_nr_pages(page);
6920 /* Get references for the tail pages, too */
6921 if (nr_entries > 1)
6922 mem_cgroup_id_get_many(swap_memcg, nr_entries - 1);
6923 oldid = swap_cgroup_record(entry, mem_cgroup_id(swap_memcg),
6924 nr_entries);
Johannes Weiner21afa382015-02-11 15:26:36 -08006925 VM_BUG_ON_PAGE(oldid, page);
Johannes Weinerc9019e92018-01-31 16:16:37 -08006926 mod_memcg_state(swap_memcg, MEMCG_SWAP, nr_entries);
Johannes Weiner21afa382015-02-11 15:26:36 -08006927
6928 page->mem_cgroup = NULL;
6929
6930 if (!mem_cgroup_is_root(memcg))
Huang Yingd6810d72017-09-06 16:22:45 -07006931 page_counter_uncharge(&memcg->memory, nr_entries);
Johannes Weiner21afa382015-02-11 15:26:36 -08006932
Vladimir Davydov1f47b612016-08-11 15:33:00 -07006933 if (memcg != swap_memcg) {
6934 if (!mem_cgroup_is_root(swap_memcg))
Huang Yingd6810d72017-09-06 16:22:45 -07006935 page_counter_charge(&swap_memcg->memsw, nr_entries);
6936 page_counter_uncharge(&memcg->memsw, nr_entries);
Vladimir Davydov1f47b612016-08-11 15:33:00 -07006937 }
6938
Sebastian Andrzej Siewiorce9ce662015-09-04 15:47:50 -07006939 /*
6940 * Interrupts should be disabled here because the caller holds the
Matthew Wilcoxb93b0162018-04-10 16:36:56 -07006941 * i_pages lock which is taken with interrupts-off. It is
Sebastian Andrzej Siewiorce9ce662015-09-04 15:47:50 -07006942 * important here to have the interrupts disabled because it is the
Matthew Wilcoxb93b0162018-04-10 16:36:56 -07006943 * only synchronisation we have for updating the per-CPU variables.
Sebastian Andrzej Siewiorce9ce662015-09-04 15:47:50 -07006944 */
6945 VM_BUG_ON(!irqs_disabled());
Huang Yingd6810d72017-09-06 16:22:45 -07006946 mem_cgroup_charge_statistics(memcg, page, PageTransHuge(page),
6947 -nr_entries);
Johannes Weiner21afa382015-02-11 15:26:36 -08006948 memcg_check_events(memcg, page);
Johannes Weiner73f576c2016-07-20 15:44:57 -07006949
6950 if (!mem_cgroup_is_root(memcg))
Shakeel Buttd08afa142017-11-29 16:11:15 -08006951 css_put_many(&memcg->css, nr_entries);
Johannes Weiner21afa382015-02-11 15:26:36 -08006952}
6953
Huang Ying38d8b4e2017-07-06 15:37:18 -07006954/**
6955 * mem_cgroup_try_charge_swap - try charging swap space for a page
Vladimir Davydov37e84352016-01-20 15:02:56 -08006956 * @page: page being added to swap
6957 * @entry: swap entry to charge
6958 *
Huang Ying38d8b4e2017-07-06 15:37:18 -07006959 * Try to charge @page's memcg for the swap space at @entry.
Vladimir Davydov37e84352016-01-20 15:02:56 -08006960 *
6961 * Returns 0 on success, -ENOMEM on failure.
6962 */
6963int mem_cgroup_try_charge_swap(struct page *page, swp_entry_t entry)
6964{
Huang Ying38d8b4e2017-07-06 15:37:18 -07006965 unsigned int nr_pages = hpage_nr_pages(page);
Vladimir Davydov37e84352016-01-20 15:02:56 -08006966 struct page_counter *counter;
Huang Ying38d8b4e2017-07-06 15:37:18 -07006967 struct mem_cgroup *memcg;
Vladimir Davydov37e84352016-01-20 15:02:56 -08006968 unsigned short oldid;
6969
6970 if (!cgroup_subsys_on_dfl(memory_cgrp_subsys) || !do_swap_account)
6971 return 0;
6972
6973 memcg = page->mem_cgroup;
6974
6975 /* Readahead page, never charged */
6976 if (!memcg)
6977 return 0;
6978
Tejun Heof3a53a32018-06-07 17:05:35 -07006979 if (!entry.val) {
6980 memcg_memory_event(memcg, MEMCG_SWAP_FAIL);
Tejun Heobb98f2c2018-06-07 17:05:31 -07006981 return 0;
Tejun Heof3a53a32018-06-07 17:05:35 -07006982 }
Tejun Heobb98f2c2018-06-07 17:05:31 -07006983
Vladimir Davydov1f47b612016-08-11 15:33:00 -07006984 memcg = mem_cgroup_id_get_online(memcg);
Vladimir Davydov37e84352016-01-20 15:02:56 -08006985
Vladimir Davydov1f47b612016-08-11 15:33:00 -07006986 if (!mem_cgroup_is_root(memcg) &&
Huang Ying38d8b4e2017-07-06 15:37:18 -07006987 !page_counter_try_charge(&memcg->swap, nr_pages, &counter)) {
Tejun Heof3a53a32018-06-07 17:05:35 -07006988 memcg_memory_event(memcg, MEMCG_SWAP_MAX);
6989 memcg_memory_event(memcg, MEMCG_SWAP_FAIL);
Vladimir Davydov1f47b612016-08-11 15:33:00 -07006990 mem_cgroup_id_put(memcg);
6991 return -ENOMEM;
6992 }
6993
Huang Ying38d8b4e2017-07-06 15:37:18 -07006994 /* Get references for the tail pages, too */
6995 if (nr_pages > 1)
6996 mem_cgroup_id_get_many(memcg, nr_pages - 1);
6997 oldid = swap_cgroup_record(entry, mem_cgroup_id(memcg), nr_pages);
Vladimir Davydov37e84352016-01-20 15:02:56 -08006998 VM_BUG_ON_PAGE(oldid, page);
Johannes Weinerc9019e92018-01-31 16:16:37 -08006999 mod_memcg_state(memcg, MEMCG_SWAP, nr_pages);
Vladimir Davydov37e84352016-01-20 15:02:56 -08007000
Vladimir Davydov37e84352016-01-20 15:02:56 -08007001 return 0;
7002}
7003
Johannes Weiner21afa382015-02-11 15:26:36 -08007004/**
Huang Ying38d8b4e2017-07-06 15:37:18 -07007005 * mem_cgroup_uncharge_swap - uncharge swap space
Johannes Weiner21afa382015-02-11 15:26:36 -08007006 * @entry: swap entry to uncharge
Huang Ying38d8b4e2017-07-06 15:37:18 -07007007 * @nr_pages: the amount of swap space to uncharge
Johannes Weiner21afa382015-02-11 15:26:36 -08007008 */
Huang Ying38d8b4e2017-07-06 15:37:18 -07007009void mem_cgroup_uncharge_swap(swp_entry_t entry, unsigned int nr_pages)
Johannes Weiner21afa382015-02-11 15:26:36 -08007010{
7011 struct mem_cgroup *memcg;
7012 unsigned short id;
7013
Vladimir Davydov37e84352016-01-20 15:02:56 -08007014 if (!do_swap_account)
Johannes Weiner21afa382015-02-11 15:26:36 -08007015 return;
7016
Huang Ying38d8b4e2017-07-06 15:37:18 -07007017 id = swap_cgroup_record(entry, 0, nr_pages);
Johannes Weiner21afa382015-02-11 15:26:36 -08007018 rcu_read_lock();
Vladimir Davydovadbe4272015-04-15 16:13:00 -07007019 memcg = mem_cgroup_from_id(id);
Johannes Weiner21afa382015-02-11 15:26:36 -08007020 if (memcg) {
Vladimir Davydov37e84352016-01-20 15:02:56 -08007021 if (!mem_cgroup_is_root(memcg)) {
7022 if (cgroup_subsys_on_dfl(memory_cgrp_subsys))
Huang Ying38d8b4e2017-07-06 15:37:18 -07007023 page_counter_uncharge(&memcg->swap, nr_pages);
Vladimir Davydov37e84352016-01-20 15:02:56 -08007024 else
Huang Ying38d8b4e2017-07-06 15:37:18 -07007025 page_counter_uncharge(&memcg->memsw, nr_pages);
Vladimir Davydov37e84352016-01-20 15:02:56 -08007026 }
Johannes Weinerc9019e92018-01-31 16:16:37 -08007027 mod_memcg_state(memcg, MEMCG_SWAP, -nr_pages);
Huang Ying38d8b4e2017-07-06 15:37:18 -07007028 mem_cgroup_id_put_many(memcg, nr_pages);
Johannes Weiner21afa382015-02-11 15:26:36 -08007029 }
7030 rcu_read_unlock();
7031}
7032
Vladimir Davydovd8b38432016-01-20 15:03:07 -08007033long mem_cgroup_get_nr_swap_pages(struct mem_cgroup *memcg)
7034{
7035 long nr_swap_pages = get_nr_swap_pages();
7036
7037 if (!do_swap_account || !cgroup_subsys_on_dfl(memory_cgrp_subsys))
7038 return nr_swap_pages;
7039 for (; memcg != root_mem_cgroup; memcg = parent_mem_cgroup(memcg))
7040 nr_swap_pages = min_t(long, nr_swap_pages,
Roman Gushchinbbec2e12018-06-07 17:06:18 -07007041 READ_ONCE(memcg->swap.max) -
Vladimir Davydovd8b38432016-01-20 15:03:07 -08007042 page_counter_read(&memcg->swap));
7043 return nr_swap_pages;
7044}
7045
Vladimir Davydov5ccc5ab2016-01-20 15:03:10 -08007046bool mem_cgroup_swap_full(struct page *page)
7047{
7048 struct mem_cgroup *memcg;
7049
7050 VM_BUG_ON_PAGE(!PageLocked(page), page);
7051
7052 if (vm_swap_full())
7053 return true;
7054 if (!do_swap_account || !cgroup_subsys_on_dfl(memory_cgrp_subsys))
7055 return false;
7056
7057 memcg = page->mem_cgroup;
7058 if (!memcg)
7059 return false;
7060
7061 for (; memcg != root_mem_cgroup; memcg = parent_mem_cgroup(memcg))
Roman Gushchinbbec2e12018-06-07 17:06:18 -07007062 if (page_counter_read(&memcg->swap) * 2 >= memcg->swap.max)
Vladimir Davydov5ccc5ab2016-01-20 15:03:10 -08007063 return true;
7064
7065 return false;
7066}
7067
Johannes Weiner21afa382015-02-11 15:26:36 -08007068/* for remember boot option*/
7069#ifdef CONFIG_MEMCG_SWAP_ENABLED
7070static int really_do_swap_account __initdata = 1;
7071#else
7072static int really_do_swap_account __initdata;
7073#endif
7074
7075static int __init enable_swap_account(char *s)
7076{
7077 if (!strcmp(s, "1"))
7078 really_do_swap_account = 1;
7079 else if (!strcmp(s, "0"))
7080 really_do_swap_account = 0;
7081 return 1;
7082}
7083__setup("swapaccount=", enable_swap_account);
7084
Vladimir Davydov37e84352016-01-20 15:02:56 -08007085static u64 swap_current_read(struct cgroup_subsys_state *css,
7086 struct cftype *cft)
7087{
7088 struct mem_cgroup *memcg = mem_cgroup_from_css(css);
7089
7090 return (u64)page_counter_read(&memcg->swap) * PAGE_SIZE;
7091}
7092
7093static int swap_max_show(struct seq_file *m, void *v)
7094{
Chris Down677dc972019-03-05 15:45:55 -08007095 return seq_puts_memcg_tunable(m,
7096 READ_ONCE(mem_cgroup_from_seq(m)->swap.max));
Vladimir Davydov37e84352016-01-20 15:02:56 -08007097}
7098
7099static ssize_t swap_max_write(struct kernfs_open_file *of,
7100 char *buf, size_t nbytes, loff_t off)
7101{
7102 struct mem_cgroup *memcg = mem_cgroup_from_css(of_css(of));
7103 unsigned long max;
7104 int err;
7105
7106 buf = strstrip(buf);
7107 err = page_counter_memparse(buf, "max", &max);
7108 if (err)
7109 return err;
7110
Tejun Heobe091022018-06-07 17:09:21 -07007111 xchg(&memcg->swap.max, max);
Vladimir Davydov37e84352016-01-20 15:02:56 -08007112
7113 return nbytes;
7114}
7115
Tejun Heof3a53a32018-06-07 17:05:35 -07007116static int swap_events_show(struct seq_file *m, void *v)
7117{
Chris Downaa9694b2019-03-05 15:45:52 -08007118 struct mem_cgroup *memcg = mem_cgroup_from_seq(m);
Tejun Heof3a53a32018-06-07 17:05:35 -07007119
7120 seq_printf(m, "max %lu\n",
7121 atomic_long_read(&memcg->memory_events[MEMCG_SWAP_MAX]));
7122 seq_printf(m, "fail %lu\n",
7123 atomic_long_read(&memcg->memory_events[MEMCG_SWAP_FAIL]));
7124
7125 return 0;
7126}
7127
Vladimir Davydov37e84352016-01-20 15:02:56 -08007128static struct cftype swap_files[] = {
7129 {
7130 .name = "swap.current",
7131 .flags = CFTYPE_NOT_ON_ROOT,
7132 .read_u64 = swap_current_read,
7133 },
7134 {
7135 .name = "swap.max",
7136 .flags = CFTYPE_NOT_ON_ROOT,
7137 .seq_show = swap_max_show,
7138 .write = swap_max_write,
7139 },
Tejun Heof3a53a32018-06-07 17:05:35 -07007140 {
7141 .name = "swap.events",
7142 .flags = CFTYPE_NOT_ON_ROOT,
7143 .file_offset = offsetof(struct mem_cgroup, swap_events_file),
7144 .seq_show = swap_events_show,
7145 },
Vladimir Davydov37e84352016-01-20 15:02:56 -08007146 { } /* terminate */
7147};
7148
Johannes Weiner21afa382015-02-11 15:26:36 -08007149static struct cftype memsw_cgroup_files[] = {
7150 {
7151 .name = "memsw.usage_in_bytes",
7152 .private = MEMFILE_PRIVATE(_MEMSWAP, RES_USAGE),
7153 .read_u64 = mem_cgroup_read_u64,
7154 },
7155 {
7156 .name = "memsw.max_usage_in_bytes",
7157 .private = MEMFILE_PRIVATE(_MEMSWAP, RES_MAX_USAGE),
7158 .write = mem_cgroup_reset,
7159 .read_u64 = mem_cgroup_read_u64,
7160 },
7161 {
7162 .name = "memsw.limit_in_bytes",
7163 .private = MEMFILE_PRIVATE(_MEMSWAP, RES_LIMIT),
7164 .write = mem_cgroup_write,
7165 .read_u64 = mem_cgroup_read_u64,
7166 },
7167 {
7168 .name = "memsw.failcnt",
7169 .private = MEMFILE_PRIVATE(_MEMSWAP, RES_FAILCNT),
7170 .write = mem_cgroup_reset,
7171 .read_u64 = mem_cgroup_read_u64,
7172 },
7173 { }, /* terminate */
7174};
7175
7176static int __init mem_cgroup_swap_init(void)
7177{
7178 if (!mem_cgroup_disabled() && really_do_swap_account) {
7179 do_swap_account = 1;
Vladimir Davydov37e84352016-01-20 15:02:56 -08007180 WARN_ON(cgroup_add_dfl_cftypes(&memory_cgrp_subsys,
7181 swap_files));
Johannes Weiner21afa382015-02-11 15:26:36 -08007182 WARN_ON(cgroup_add_legacy_cftypes(&memory_cgrp_subsys,
7183 memsw_cgroup_files));
7184 }
7185 return 0;
7186}
7187subsys_initcall(mem_cgroup_swap_init);
7188
7189#endif /* CONFIG_MEMCG_SWAP */