memcontrol.h 36.4 KB
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Balbir Singh 已提交
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/* memcontrol.h - Memory Controller
 *
 * Copyright IBM Corporation, 2007
 * Author Balbir Singh <balbir@linux.vnet.ibm.com>
 *
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 * Copyright 2007 OpenVZ SWsoft Inc
 * Author: Pavel Emelianov <xemul@openvz.org>
 *
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Balbir Singh 已提交
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 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 */

#ifndef _LINUX_MEMCONTROL_H
#define _LINUX_MEMCONTROL_H
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#include <linux/cgroup.h>
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#include <linux/vm_event_item.h>
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#include <linux/hardirq.h>
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#include <linux/jump_label.h>
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#include <linux/page_counter.h>
#include <linux/vmpressure.h>
#include <linux/eventfd.h>
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#include <linux/mm.h>
#include <linux/vmstat.h>
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#include <linux/writeback.h>
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#include <linux/page-flags.h>
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#include <linux/kidled.h>
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struct mem_cgroup;
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struct page;
struct mm_struct;
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struct kmem_cache;
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struct oom_control;

#define MEMCG_OOM_PRIORITY 12
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/* Cgroup-specific page state, on top of universal node page state */
enum memcg_stat_item {
	MEMCG_CACHE = NR_VM_NODE_STAT_ITEMS,
	MEMCG_RSS,
	MEMCG_RSS_HUGE,
	MEMCG_SWAP,
	MEMCG_SOCK,
	/* XXX: why are these zone and not node counters? */
	MEMCG_KERNEL_STACK_KB,
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	MEMCG_NR_STAT,
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};

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enum memcg_exstat_item {
	MEMCG_WMARK_MIN,
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	MEMCG_WMARK_RECLAIM,
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	MEMCG_NR_EXSTAT,
};

/* Only care about 64bit using "long" */
struct mem_cgroup_exstat_cpu {
	unsigned long item[MEMCG_NR_EXSTAT];
};

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enum memcg_memory_event {
	MEMCG_LOW,
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	MEMCG_HIGH,
	MEMCG_MAX,
	MEMCG_OOM,
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	MEMCG_OOM_KILL,
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	MEMCG_SWAP_MAX,
	MEMCG_SWAP_FAIL,
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	MEMCG_NR_MEMORY_EVENTS,
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};

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enum mem_cgroup_protection {
	MEMCG_PROT_NONE,
	MEMCG_PROT_LOW,
	MEMCG_PROT_MIN,
};

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struct mem_cgroup_reclaim_cookie {
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	pg_data_t *pgdat;
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	int priority;
	unsigned int generation;
};

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struct alloc_context;

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enum mem_lat_stat_item {
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	MEM_LAT_GLOBAL_DIRECT_RECLAIM,	/* global direct reclaim latency */
	MEM_LAT_MEMCG_DIRECT_RECLAIM,	/* memcg direct reclaim latency */
	MEM_LAT_DIRECT_COMPACT,		/* direct compact latency */
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	MEM_LAT_GLOBAL_DIRECT_SWAPOUT,	/* global direct swapout latency */
	MEM_LAT_MEMCG_DIRECT_SWAPOUT,	/* memcg direct swapout latency */
	MEM_LAT_DIRECT_SWAPIN,		/* direct swapin latency */
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	MEM_LAT_NR_STAT,
};

/* Memory latency histogram distribution, in milliseconds */
enum mem_lat_count_t {
	MEM_LAT_0_1,
	MEM_LAT_1_5,
	MEM_LAT_5_10,
	MEM_LAT_10_100,
	MEM_LAT_100_500,
	MEM_LAT_500_1000,
	MEM_LAT_1000_INF,
	MEM_LAT_TOTAL,
	MEM_LAT_NR_COUNT,
};

struct mem_cgroup_lat_stat_cpu {
	unsigned long item[MEM_LAT_NR_STAT][MEM_LAT_NR_COUNT];
};

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#ifdef CONFIG_MEMCG

#define MEM_CGROUP_ID_SHIFT	16
#define MEM_CGROUP_ID_MAX	USHRT_MAX

struct mem_cgroup_id {
	int id;
	atomic_t ref;
};

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/*
 * Per memcg event counter is incremented at every pagein/pageout. With THP,
 * it will be incremated by the number of pages. This counter is used for
 * for trigger some periodic events. This is straightforward and better
 * than using jiffies etc. to handle periodic memcg event.
 */
enum mem_cgroup_events_target {
	MEM_CGROUP_TARGET_THRESH,
	MEM_CGROUP_TARGET_SOFTLIMIT,
	MEM_CGROUP_TARGET_NUMAINFO,
	MEM_CGROUP_NTARGETS,
};

struct mem_cgroup_stat_cpu {
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	long count[MEMCG_NR_STAT];
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	unsigned long events[NR_VM_EVENT_ITEMS];
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	unsigned long nr_page_events;
	unsigned long targets[MEM_CGROUP_NTARGETS];
};

struct mem_cgroup_reclaim_iter {
	struct mem_cgroup *position;
	/* scan generation, increased every round-trip */
	unsigned int generation;
};

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struct lruvec_stat {
	long count[NR_VM_NODE_STAT_ITEMS];
};

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/*
 * Bitmap of shrinker::id corresponding to memcg-aware shrinkers,
 * which have elements charged to this memcg.
 */
struct memcg_shrinker_map {
	struct rcu_head rcu;
	unsigned long map[0];
};

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/*
 * per-zone information in memory controller.
 */
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struct mem_cgroup_per_node {
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	struct lruvec		lruvec;
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	struct lruvec_stat __percpu *lruvec_stat_cpu;
	atomic_long_t		lruvec_stat[NR_VM_NODE_STAT_ITEMS];

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	unsigned long		lru_zone_size[MAX_NR_ZONES][NR_LRU_LISTS];
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	struct mem_cgroup_reclaim_iter	iter[DEF_PRIORITY + 1];

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	struct memcg_shrinker_map __rcu	*shrinker_map;
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	struct rb_node		tree_node;	/* RB tree node */
	unsigned long		usage_in_excess;/* Set to the value by which */
						/* the soft limit is exceeded*/
	bool			on_tree;
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	bool			congested;	/* memcg has many dirty pages */
						/* backed by a congested BDI */
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	bool			dirty;		/* memcg has too many dirty pages */
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	bool			writeback;	/* memcg has too many writeback */
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#ifdef CONFIG_TRANSPARENT_HUGEPAGE
	struct deferred_split deferred_split_queue;
#endif

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	struct mem_cgroup	*memcg;		/* Back pointer, we cannot */
						/* use container_of	   */
};

struct mem_cgroup_threshold {
	struct eventfd_ctx *eventfd;
	unsigned long threshold;
};

/* For threshold */
struct mem_cgroup_threshold_ary {
	/* An array index points to threshold just below or equal to usage. */
	int current_threshold;
	/* Size of entries[] */
	unsigned int size;
	/* Array of thresholds */
	struct mem_cgroup_threshold entries[0];
};

struct mem_cgroup_thresholds {
	/* Primary thresholds array */
	struct mem_cgroup_threshold_ary *primary;
	/*
	 * Spare threshold array.
	 * This is needed to make mem_cgroup_unregister_event() "never fail".
	 * It must be able to store at least primary->size - 1 entries.
	 */
	struct mem_cgroup_threshold_ary *spare;
};

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enum memcg_kmem_state {
	KMEM_NONE,
	KMEM_ALLOCATED,
	KMEM_ONLINE,
};

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#if defined(CONFIG_SMP)
struct memcg_padding {
	char x[0];
} ____cacheline_internodealigned_in_smp;
#define MEMCG_PADDING(name)      struct memcg_padding name;
#else
#define MEMCG_PADDING(name)
#endif

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/*
 * The memory controller data structure. The memory controller controls both
 * page cache and RSS per cgroup. We would eventually like to provide
 * statistics based on the statistics developed by Rik Van Riel for clock-pro,
 * to help the administrator determine what knobs to tune.
 */
struct mem_cgroup {
	struct cgroup_subsys_state css;

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	/* Private memcg ID. Used to ID objects that outlive the cgroup */
	struct mem_cgroup_id id;

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	/* Accounted resources */
	struct page_counter memory;
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	struct page_counter swap;
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	/* Legacy consumer-oriented counters */
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	struct page_counter memsw;
	struct page_counter kmem;
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	struct page_counter tcpmem;
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	/* Upper bound of normal memory consumption range */
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	unsigned long high;

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	/* Range enforcement for interrupt charges */
	struct work_struct high_work;

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	unsigned long soft_limit;

	/* vmpressure notifications */
	struct vmpressure vmpressure;

	/*
	 * Should the accounting and control be hierarchical, per subtree?
	 */
	bool use_hierarchy;

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	/*
	 * Should the OOM killer kill all belonging tasks, had it kill one?
	 */
	bool oom_group;

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	/* protected by memcg_oom_lock */
	bool		oom_lock;
	int		under_oom;

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	/* memcg priority */
	bool use_priority_oom;
	int priority;
	int num_oom_skip;
	struct mem_cgroup *next_reset;

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	int	swappiness;
	/* OOM-Killer disable */
	int		oom_kill_disable;

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	/* memory.events and memory.events.local */
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	struct cgroup_file events_file;
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	struct cgroup_file events_local_file;
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	/* handle for "memory.swap.events" */
	struct cgroup_file swap_events_file;

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	/* protect arrays of thresholds */
	struct mutex thresholds_lock;

	/* thresholds for memory usage. RCU-protected */
	struct mem_cgroup_thresholds thresholds;

	/* thresholds for mem+swap usage. RCU-protected */
	struct mem_cgroup_thresholds memsw_thresholds;

	/* For oom notifier event fd */
	struct list_head oom_notify;

	/*
	 * Should we move charges of a task when a task is moved into this
	 * mem_cgroup ? And what type of charges should we move ?
	 */
	unsigned long move_charge_at_immigrate;
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	/* taken only while moving_account > 0 */
	spinlock_t		move_lock;
	unsigned long		move_lock_flags;

	MEMCG_PADDING(_pad1_);

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	/*
	 * set > 0 if pages under this cgroup are moving to other cgroup.
	 */
	atomic_t		moving_account;
	struct task_struct	*move_lock_task;
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	/* memory.stat */
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	struct mem_cgroup_stat_cpu __percpu *stat_cpu;
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	MEMCG_PADDING(_pad2_);

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	atomic_long_t		stat[MEMCG_NR_STAT];
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	atomic_long_t		events[NR_VM_EVENT_ITEMS];
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	atomic_long_t memory_events[MEMCG_NR_MEMORY_EVENTS];
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	atomic_long_t		memory_events_local[MEMCG_NR_MEMORY_EVENTS];
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	unsigned long		socket_pressure;

	/* Legacy tcp memory accounting */
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	bool			tcpmem_active;
	int			tcpmem_pressure;
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	/* memory.exstat */
	struct mem_cgroup_exstat_cpu __percpu *exstat_cpu;

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	int			wmark_min_adj;	/* user-set value */
	int			wmark_min_eadj;	/* value in effect */

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	unsigned int		wmark_ratio;
	struct work_struct	wmark_work;
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	unsigned int		wmark_scale_factor;
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#ifdef CONFIG_MEMCG_KMEM
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        /* Index in the kmem_cache->memcg_params.memcg_caches array */
	int kmemcg_id;
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	enum memcg_kmem_state kmem_state;
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	struct list_head kmem_caches;
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#endif

	int last_scanned_node;
#if MAX_NUMNODES > 1
	nodemask_t	scan_nodes;
	atomic_t	numainfo_events;
	atomic_t	numainfo_updating;
#endif

#ifdef CONFIG_CGROUP_WRITEBACK
	struct list_head cgwb_list;
	struct wb_domain cgwb_domain;
#endif

	/* List of events which userspace want to receive */
	struct list_head event_list;
	spinlock_t event_list_lock;

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#ifdef CONFIG_KIDLED
	struct rw_semaphore idle_stats_rwsem;
	unsigned long idle_scans;
	struct kidled_scan_period scan_period;
	int idle_stable_idx;
	struct idle_page_stats idle_stats[KIDLED_STATS_NR_TYPE];
#endif

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	unsigned long offline_jiffies;

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	/* memory latency stat */
	struct mem_cgroup_lat_stat_cpu __percpu *lat_stat_cpu;

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	ALI_HOTFIX_RESERVE(1)
	ALI_HOTFIX_RESERVE(2)
	ALI_HOTFIX_RESERVE(3)
	ALI_HOTFIX_RESERVE(4)

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	struct mem_cgroup_per_node *nodeinfo[0];
	/* WARNING: nodeinfo must be the last member here */
};
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/*
 * size of first charge trial. "32" comes from vmscan.c's magic value.
 * TODO: maybe necessary to use big numbers in big irons.
 */
#define MEMCG_CHARGE_BATCH 32U

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extern struct mem_cgroup *root_mem_cgroup;
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static inline bool mem_cgroup_is_root(struct mem_cgroup *memcg)
{
	return (memcg == root_mem_cgroup);
}

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static inline bool mem_cgroup_disabled(void)
{
	return !cgroup_subsys_enabled(memory_cgrp_subsys);
}

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enum mem_cgroup_protection mem_cgroup_protected(struct mem_cgroup *root,
						struct mem_cgroup *memcg);
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int mem_cgroup_try_charge(struct page *page, struct mm_struct *mm,
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			  gfp_t gfp_mask, struct mem_cgroup **memcgp,
			  bool compound);
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int mem_cgroup_try_charge_delay(struct page *page, struct mm_struct *mm,
			  gfp_t gfp_mask, struct mem_cgroup **memcgp,
			  bool compound);
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void mem_cgroup_commit_charge(struct page *page, struct mem_cgroup *memcg,
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			      bool lrucare, bool compound);
void mem_cgroup_cancel_charge(struct page *page, struct mem_cgroup *memcg,
		bool compound);
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void mem_cgroup_uncharge(struct page *page);
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void mem_cgroup_uncharge_list(struct list_head *page_list);
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void mem_cgroup_migrate(struct page *oldpage, struct page *newpage);
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static struct mem_cgroup_per_node *
mem_cgroup_nodeinfo(struct mem_cgroup *memcg, int nid)
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{
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	return memcg->nodeinfo[nid];
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}

/**
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 * mem_cgroup_lruvec - get the lru list vector for a node or a memcg zone
 * @node: node of the wanted lruvec
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 * @memcg: memcg of the wanted lruvec
 *
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 * Returns the lru list vector holding pages for a given @node or a given
 * @memcg and @zone. This can be the node lruvec, if the memory controller
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 * is disabled.
 */
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static inline struct lruvec *mem_cgroup_lruvec(struct pglist_data *pgdat,
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				struct mem_cgroup *memcg)
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{
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	struct mem_cgroup_per_node *mz;
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	struct lruvec *lruvec;

	if (mem_cgroup_disabled()) {
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		lruvec = node_lruvec(pgdat);
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		goto out;
	}

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	mz = mem_cgroup_nodeinfo(memcg, pgdat->node_id);
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	lruvec = &mz->lruvec;
out:
	/*
	 * Since a node can be onlined after the mem_cgroup was created,
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	 * we have to be prepared to initialize lruvec->pgdat here;
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	 * and if offlined then reonlined, we need to reinitialize it.
	 */
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	if (unlikely(lruvec->pgdat != pgdat))
		lruvec->pgdat = pgdat;
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	return lruvec;
}

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struct lruvec *mem_cgroup_page_lruvec(struct page *, struct pglist_data *);
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bool task_in_mem_cgroup(struct task_struct *task, struct mem_cgroup *memcg);
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struct mem_cgroup *mem_cgroup_from_task(struct task_struct *p);
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struct mem_cgroup *get_mem_cgroup_from_mm(struct mm_struct *mm);

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struct mem_cgroup *get_mem_cgroup_from_page(struct page *page);

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static inline
struct mem_cgroup *mem_cgroup_from_css(struct cgroup_subsys_state *css){
	return css ? container_of(css, struct mem_cgroup, css) : NULL;
}

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static inline void mem_cgroup_put(struct mem_cgroup *memcg)
{
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	if (memcg)
		css_put(&memcg->css);
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}

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#define mem_cgroup_from_counter(counter, member)	\
	container_of(counter, struct mem_cgroup, member)

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struct mem_cgroup *mem_cgroup_iter(struct mem_cgroup *,
				   struct mem_cgroup *,
				   struct mem_cgroup_reclaim_cookie *);
void mem_cgroup_iter_break(struct mem_cgroup *, struct mem_cgroup *);
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int mem_cgroup_scan_tasks(struct mem_cgroup *,
			  int (*)(struct task_struct *, void *), void *);
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static inline unsigned short mem_cgroup_id(struct mem_cgroup *memcg)
{
	if (mem_cgroup_disabled())
		return 0;

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	return memcg->id.id;
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}
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struct mem_cgroup *mem_cgroup_from_id(unsigned short id);
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static inline struct mem_cgroup *lruvec_memcg(struct lruvec *lruvec)
{
	struct mem_cgroup_per_node *mz;

	if (mem_cgroup_disabled())
		return NULL;

	mz = container_of(lruvec, struct mem_cgroup_per_node, lruvec);
	return mz->memcg;
}

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/**
 * parent_mem_cgroup - find the accounting parent of a memcg
 * @memcg: memcg whose parent to find
 *
 * Returns the parent memcg, or NULL if this is the root or the memory
 * controller is in legacy no-hierarchy mode.
 */
static inline struct mem_cgroup *parent_mem_cgroup(struct mem_cgroup *memcg)
{
	if (!memcg->memory.parent)
		return NULL;
	return mem_cgroup_from_counter(memcg->memory.parent, memory);
}

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static inline bool mem_cgroup_is_descendant(struct mem_cgroup *memcg,
			      struct mem_cgroup *root)
{
	if (root == memcg)
		return true;
	if (!root->use_hierarchy)
		return false;
	return cgroup_is_descendant(memcg->css.cgroup, root->css.cgroup);
}
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static inline bool mm_match_cgroup(struct mm_struct *mm,
				   struct mem_cgroup *memcg)
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{
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	struct mem_cgroup *task_memcg;
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	bool match = false;
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	rcu_read_lock();
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	task_memcg = mem_cgroup_from_task(rcu_dereference(mm->owner));
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	if (task_memcg)
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		match = mem_cgroup_is_descendant(task_memcg, memcg);
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	rcu_read_unlock();
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	return match;
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}
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struct cgroup_subsys_state *mem_cgroup_css_from_page(struct page *page);
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ino_t page_cgroup_ino(struct page *page);
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static inline bool mem_cgroup_online(struct mem_cgroup *memcg)
{
	if (mem_cgroup_disabled())
		return true;
	return !!(memcg->css.flags & CSS_ONLINE);
}

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/* memcg priority*/
void mem_cgroup_account_oom_skip(struct task_struct *task,
	struct oom_control *oc);

void mem_cgroup_select_bad_process(struct oom_control *oc);

static inline bool root_memcg_use_priority_oom(void)
{
	if (mem_cgroup_disabled())
		return false;
	if (root_mem_cgroup->use_priority_oom)
		return true;
	return false;
}

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/*
 * For memory reclaim.
 */
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int mem_cgroup_select_victim_node(struct mem_cgroup *memcg);
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void mem_cgroup_update_lru_size(struct lruvec *lruvec, enum lru_list lru,
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		int zid, int nr_pages);
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unsigned long mem_cgroup_node_nr_lru_pages(struct mem_cgroup *memcg,
					   int nid, unsigned int lru_mask);

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static inline
unsigned long mem_cgroup_get_lru_size(struct lruvec *lruvec, enum lru_list lru)
{
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	struct mem_cgroup_per_node *mz;
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	unsigned long nr_pages = 0;
	int zid;
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	mz = container_of(lruvec, struct mem_cgroup_per_node, lruvec);
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	for (zid = 0; zid < MAX_NR_ZONES; zid++)
		nr_pages += mz->lru_zone_size[zid][lru];
	return nr_pages;
}

static inline
unsigned long mem_cgroup_get_zone_lru_size(struct lruvec *lruvec,
		enum lru_list lru, int zone_idx)
{
	struct mem_cgroup_per_node *mz;

	mz = container_of(lruvec, struct mem_cgroup_per_node, lruvec);
	return mz->lru_zone_size[zone_idx][lru];
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}

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void mem_cgroup_handle_over_high(void);
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void mem_cgroup_wmark_min_throttle(void);
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unsigned long mem_cgroup_get_max(struct mem_cgroup *memcg);
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void mem_cgroup_print_oom_info(struct mem_cgroup *memcg,
				struct task_struct *p);
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static inline void mem_cgroup_enter_user_fault(void)
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{
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	WARN_ON(current->in_user_fault);
	current->in_user_fault = 1;
637 638
}

639
static inline void mem_cgroup_exit_user_fault(void)
640
{
641 642
	WARN_ON(!current->in_user_fault);
	current->in_user_fault = 0;
643 644
}

645 646
static inline bool task_in_memcg_oom(struct task_struct *p)
{
T
Tejun Heo 已提交
647
	return p->memcg_in_oom;
648 649
}

650
bool mem_cgroup_oom_synchronize(bool wait);
651 652 653
struct mem_cgroup *mem_cgroup_get_oom_group(struct task_struct *victim,
					    struct mem_cgroup *oom_domain);
void mem_cgroup_print_oom_group(struct mem_cgroup *memcg);
654

A
Andrew Morton 已提交
655
#ifdef CONFIG_MEMCG_SWAP
656 657
extern int do_swap_account;
#endif
658

659 660
struct mem_cgroup *lock_page_memcg(struct page *page);
void __unlock_page_memcg(struct mem_cgroup *memcg);
J
Johannes Weiner 已提交
661
void unlock_page_memcg(struct page *page);
662

663 664 665 666
/*
 * idx can be of type enum memcg_stat_item or node_stat_item.
 * Keep in sync with memcg_exact_page_state().
 */
667
static inline unsigned long memcg_page_state(struct mem_cgroup *memcg,
668
					     int idx)
669
{
670 671 672 673 674 675
	long x = atomic_long_read(&memcg->stat[idx]);
#ifdef CONFIG_SMP
	if (x < 0)
		x = 0;
#endif
	return x;
676 677
}

678
/* idx can be of type enum memcg_stat_item or node_stat_item */
679
static inline void __mod_memcg_state(struct mem_cgroup *memcg,
680
				     int idx, int val)
681
{
682 683 684 685 686 687 688 689 690 691 692
	long x;

	if (mem_cgroup_disabled())
		return;

	x = val + __this_cpu_read(memcg->stat_cpu->count[idx]);
	if (unlikely(abs(x) > MEMCG_CHARGE_BATCH)) {
		atomic_long_add(x, &memcg->stat[idx]);
		x = 0;
	}
	__this_cpu_write(memcg->stat_cpu->count[idx], x);
693 694
}

695
/* idx can be of type enum memcg_stat_item or node_stat_item */
696
static inline void mod_memcg_state(struct mem_cgroup *memcg,
697
				   int idx, int val)
698
{
699 700 701
	unsigned long flags;

	local_irq_save(flags);
702
	__mod_memcg_state(memcg, idx, val);
703
	local_irq_restore(flags);
704 705
}

M
Michal Hocko 已提交
706
/**
707
 * mod_memcg_page_state - update page state statistics
J
Johannes Weiner 已提交
708
 * @page: the page
M
Michal Hocko 已提交
709 710 711
 * @idx: page state item to account
 * @val: number of pages (positive or negative)
 *
712 713 714
 * The @page must be locked or the caller must use lock_page_memcg()
 * to prevent double accounting when the page is concurrently being
 * moved to another memcg:
715
 *
716
 *   lock_page(page) or lock_page_memcg(page)
717
 *   if (TestClearPageState(page))
718
 *     mod_memcg_page_state(page, state, -1);
719
 *   unlock_page(page) or unlock_page_memcg(page)
720 721
 *
 * Kernel pages are an exception to this, since they'll never move.
M
Michal Hocko 已提交
722
 */
723
static inline void __mod_memcg_page_state(struct page *page,
724
					  int idx, int val)
725 726 727 728 729
{
	if (page->mem_cgroup)
		__mod_memcg_state(page->mem_cgroup, idx, val);
}

730
static inline void mod_memcg_page_state(struct page *page,
731
					int idx, int val)
M
Michal Hocko 已提交
732
{
J
Johannes Weiner 已提交
733
	if (page->mem_cgroup)
734
		mod_memcg_state(page->mem_cgroup, idx, val);
M
Michal Hocko 已提交
735 736
}

737 738
static inline unsigned long lruvec_page_state(struct lruvec *lruvec,
					      enum node_stat_item idx)
739
{
740
	struct mem_cgroup_per_node *pn;
741
	long x;
742 743 744 745 746

	if (mem_cgroup_disabled())
		return node_page_state(lruvec_pgdat(lruvec), idx);

	pn = container_of(lruvec, struct mem_cgroup_per_node, lruvec);
747 748 749 750 751 752
	x = atomic_long_read(&pn->lruvec_stat[idx]);
#ifdef CONFIG_SMP
	if (x < 0)
		x = 0;
#endif
	return x;
753 754
}

755 756
static inline void __mod_lruvec_state(struct lruvec *lruvec,
				      enum node_stat_item idx, int val)
757
{
758
	struct mem_cgroup_per_node *pn;
759
	long x;
760

761
	/* Update node */
762
	__mod_node_page_state(lruvec_pgdat(lruvec), idx, val);
763

764 765
	if (mem_cgroup_disabled())
		return;
766

767
	pn = container_of(lruvec, struct mem_cgroup_per_node, lruvec);
768 769

	/* Update memcg */
770
	__mod_memcg_state(pn->memcg, idx, val);
771 772

	/* Update lruvec */
773 774 775 776 777 778
	x = val + __this_cpu_read(pn->lruvec_stat_cpu->count[idx]);
	if (unlikely(abs(x) > MEMCG_CHARGE_BATCH)) {
		atomic_long_add(x, &pn->lruvec_stat[idx]);
		x = 0;
	}
	__this_cpu_write(pn->lruvec_stat_cpu->count[idx], x);
779 780 781 782 783
}

static inline void mod_lruvec_state(struct lruvec *lruvec,
				    enum node_stat_item idx, int val)
{
784 785 786
	unsigned long flags;

	local_irq_save(flags);
787
	__mod_lruvec_state(lruvec, idx, val);
788
	local_irq_restore(flags);
789 790 791 792 793
}

static inline void __mod_lruvec_page_state(struct page *page,
					   enum node_stat_item idx, int val)
{
794 795
	pg_data_t *pgdat = page_pgdat(page);
	struct lruvec *lruvec;
796

797 798 799
	/* Untracked pages have no memcg, no lruvec. Update only the node */
	if (!page->mem_cgroup) {
		__mod_node_page_state(pgdat, idx, val);
800
		return;
801 802 803 804
	}

	lruvec = mem_cgroup_lruvec(pgdat, page->mem_cgroup);
	__mod_lruvec_state(lruvec, idx, val);
805 806 807 808 809
}

static inline void mod_lruvec_page_state(struct page *page,
					 enum node_stat_item idx, int val)
{
810 811 812
	unsigned long flags;

	local_irq_save(flags);
813
	__mod_lruvec_page_state(page, idx, val);
814
	local_irq_restore(flags);
815 816
}

817
unsigned long mem_cgroup_soft_limit_reclaim(pg_data_t *pgdat, int order,
818 819
						gfp_t gfp_mask,
						unsigned long *total_scanned);
D
David Rientjes 已提交
820

821
static inline void __count_memcg_events(struct mem_cgroup *memcg,
822 823
					enum vm_event_item idx,
					unsigned long count)
824
{
825 826 827 828 829 830 831 832 833 834 835
	unsigned long x;

	if (mem_cgroup_disabled())
		return;

	x = count + __this_cpu_read(memcg->stat_cpu->events[idx]);
	if (unlikely(x > MEMCG_CHARGE_BATCH)) {
		atomic_long_add(x, &memcg->events[idx]);
		x = 0;
	}
	__this_cpu_write(memcg->stat_cpu->events[idx], x);
836 837
}

838
static inline void count_memcg_events(struct mem_cgroup *memcg,
839 840
				      enum vm_event_item idx,
				      unsigned long count)
841
{
842 843 844
	unsigned long flags;

	local_irq_save(flags);
845
	__count_memcg_events(memcg, idx, count);
846
	local_irq_restore(flags);
847 848 849
}

static inline void count_memcg_page_event(struct page *page,
850
					  enum vm_event_item idx)
851 852 853 854 855 856 857
{
	if (page->mem_cgroup)
		count_memcg_events(page->mem_cgroup, idx, 1);
}

static inline void count_memcg_event_mm(struct mm_struct *mm,
					enum vm_event_item idx)
858
{
M
Michal Hocko 已提交
859 860
	struct mem_cgroup *memcg;

861 862
	if (mem_cgroup_disabled())
		return;
M
Michal Hocko 已提交
863 864 865

	rcu_read_lock();
	memcg = mem_cgroup_from_task(rcu_dereference(mm->owner));
R
Roman Gushchin 已提交
866
	if (likely(memcg))
867
		count_memcg_events(memcg, idx, 1);
M
Michal Hocko 已提交
868
	rcu_read_unlock();
869
}
870

871 872
static inline void memcg_memory_event(struct mem_cgroup *memcg,
				      enum memcg_memory_event event)
873
{
874 875 876
	atomic_long_inc(&memcg->memory_events_local[event]);
	cgroup_file_notify(&memcg->events_local_file);

877 878 879 880 881
	do {
		atomic_long_inc(&memcg->memory_events[event]);
		cgroup_file_notify(&memcg->events_file);
	} while ((memcg = parent_mem_cgroup(memcg)) &&
		 !mem_cgroup_is_root(memcg));
882 883
}

R
Roman Gushchin 已提交
884 885 886 887 888 889 890 891 892 893 894 895 896 897 898
static inline void memcg_memory_event_mm(struct mm_struct *mm,
					 enum memcg_memory_event event)
{
	struct mem_cgroup *memcg;

	if (mem_cgroup_disabled())
		return;

	rcu_read_lock();
	memcg = mem_cgroup_from_task(rcu_dereference(mm->owner));
	if (likely(memcg))
		memcg_memory_event(memcg, event);
	rcu_read_unlock();
}

899
#ifdef CONFIG_TRANSPARENT_HUGEPAGE
900
void mem_cgroup_split_huge_fixup(struct page *head);
901 902
#endif

G
Gavin Shan 已提交
903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924
#ifdef CONFIG_KIDLED
static inline struct idle_page_stats *
mem_cgroup_get_stable_idle_stats(struct mem_cgroup *memcg)
{
	return &memcg->idle_stats[memcg->idle_stable_idx];
}

static inline struct idle_page_stats *
mem_cgroup_get_unstable_idle_stats(struct mem_cgroup *memcg)
{
	return &memcg->idle_stats[KIDLED_STATS_NR_TYPE - 1 -
				  memcg->idle_stable_idx];
}

static inline void
mem_cgroup_idle_page_stats_switch(struct mem_cgroup *memcg)
{
	memcg->idle_stable_idx = KIDLED_STATS_NR_TYPE - 1 -
				 memcg->idle_stable_idx;
}
#endif /* CONFIG_KIDLED */

925 926
void drain_all_stock(struct mem_cgroup *root_memcg);

927 928 929 930 931 932 933 934
static inline bool is_wmark_ok(struct mem_cgroup *memcg, bool high)
{
	if (high)
		return page_counter_read(&memcg->memory) < memcg->memory.wmark_high;

	return page_counter_read(&memcg->memory) < memcg->memory.wmark_low;
}

935 936 937
int memcg_get_wmark_min_adj(struct task_struct *curr);
void memcg_check_wmark_min_adj(struct task_struct *curr,
		struct alloc_context *ac);
A
Andrew Morton 已提交
938
#else /* CONFIG_MEMCG */
939 940 941 942

#define MEM_CGROUP_ID_SHIFT	0
#define MEM_CGROUP_ID_MAX	0

943 944
struct mem_cgroup;

945 946 947 948 949
static inline bool mem_cgroup_is_root(struct mem_cgroup *memcg)
{
	return true;
}

950 951 952 953 954
static inline bool mem_cgroup_disabled(void)
{
	return true;
}

955 956
static inline void memcg_memory_event(struct mem_cgroup *memcg,
				      enum memcg_memory_event event)
957 958 959
{
}

R
Roman Gushchin 已提交
960 961 962 963 964
static inline void memcg_memory_event_mm(struct mm_struct *mm,
					 enum memcg_memory_event event)
{
}

R
Roman Gushchin 已提交
965 966
static inline enum mem_cgroup_protection mem_cgroup_protected(
	struct mem_cgroup *root, struct mem_cgroup *memcg)
967
{
R
Roman Gushchin 已提交
968
	return MEMCG_PROT_NONE;
969 970
}

971 972
static inline int mem_cgroup_try_charge(struct page *page, struct mm_struct *mm,
					gfp_t gfp_mask,
973 974
					struct mem_cgroup **memcgp,
					bool compound)
975
{
976
	*memcgp = NULL;
977 978 979
	return 0;
}

980 981 982 983 984 985 986 987 988 989
static inline int mem_cgroup_try_charge_delay(struct page *page,
					      struct mm_struct *mm,
					      gfp_t gfp_mask,
					      struct mem_cgroup **memcgp,
					      bool compound)
{
	*memcgp = NULL;
	return 0;
}

990 991
static inline void mem_cgroup_commit_charge(struct page *page,
					    struct mem_cgroup *memcg,
992
					    bool lrucare, bool compound)
993 994 995
{
}

996
static inline void mem_cgroup_cancel_charge(struct page *page,
997 998
					    struct mem_cgroup *memcg,
					    bool compound)
999 1000 1001
{
}

1002
static inline void mem_cgroup_uncharge(struct page *page)
1003 1004 1005
{
}

1006
static inline void mem_cgroup_uncharge_list(struct list_head *page_list)
1007 1008 1009
{
}

1010
static inline void mem_cgroup_migrate(struct page *old, struct page *new)
1011 1012 1013
{
}

1014
static inline struct lruvec *mem_cgroup_lruvec(struct pglist_data *pgdat,
1015
				struct mem_cgroup *memcg)
K
KAMEZAWA Hiroyuki 已提交
1016
{
1017
	return node_lruvec(pgdat);
K
KAMEZAWA Hiroyuki 已提交
1018 1019
}

1020
static inline struct lruvec *mem_cgroup_page_lruvec(struct page *page,
M
Mel Gorman 已提交
1021
						    struct pglist_data *pgdat)
1022
{
M
Mel Gorman 已提交
1023
	return &pgdat->lruvec;
1024 1025
}

1026
static inline bool mm_match_cgroup(struct mm_struct *mm,
1027
		struct mem_cgroup *memcg)
1028
{
1029
	return true;
1030 1031
}

1032 1033
static inline bool task_in_mem_cgroup(struct task_struct *task,
				      const struct mem_cgroup *memcg)
1034
{
1035
	return true;
1036 1037
}

1038 1039 1040 1041 1042
static inline struct mem_cgroup *get_mem_cgroup_from_mm(struct mm_struct *mm)
{
	return NULL;
}

1043 1044 1045 1046 1047
static inline struct mem_cgroup *get_mem_cgroup_from_page(struct page *page)
{
	return NULL;
}

1048 1049 1050 1051
static inline void mem_cgroup_put(struct mem_cgroup *memcg)
{
}

1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064
static inline struct mem_cgroup *
mem_cgroup_iter(struct mem_cgroup *root,
		struct mem_cgroup *prev,
		struct mem_cgroup_reclaim_cookie *reclaim)
{
	return NULL;
}

static inline void mem_cgroup_iter_break(struct mem_cgroup *root,
					 struct mem_cgroup *prev)
{
}

1065 1066 1067 1068 1069 1070
static inline int mem_cgroup_scan_tasks(struct mem_cgroup *memcg,
		int (*fn)(struct task_struct *, void *), void *arg)
{
	return 0;
}

1071
static inline unsigned short mem_cgroup_id(struct mem_cgroup *memcg)
1072
{
1073 1074 1075 1076 1077 1078 1079 1080
	return 0;
}

static inline struct mem_cgroup *mem_cgroup_from_id(unsigned short id)
{
	WARN_ON_ONCE(id);
	/* XXX: This should always return root_mem_cgroup */
	return NULL;
1081
}
1082

1083 1084 1085 1086 1087
static inline struct mem_cgroup *lruvec_memcg(struct lruvec *lruvec)
{
	return NULL;
}

1088
static inline bool mem_cgroup_online(struct mem_cgroup *memcg)
1089
{
1090
	return true;
1091 1092
}

1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107
/* memcg priority */
static inline void mem_cgroup_account_oom_skip(struct task_struct *task,
		struct oom_control *oc)
{
}

static inline void mem_cgroup_select_bad_process(struct oom_control *oc)
{
}

static inline bool root_memcg_use_priority_oom(void)
{
	return false;
}

1108
static inline unsigned long
1109
mem_cgroup_get_lru_size(struct lruvec *lruvec, enum lru_list lru)
1110 1111 1112
{
	return 0;
}
1113 1114 1115 1116 1117 1118
static inline
unsigned long mem_cgroup_get_zone_lru_size(struct lruvec *lruvec,
		enum lru_list lru, int zone_idx)
{
	return 0;
}
1119

1120 1121 1122 1123 1124 1125 1126
static inline unsigned long
mem_cgroup_node_nr_lru_pages(struct mem_cgroup *memcg,
			     int nid, unsigned int lru_mask)
{
	return 0;
}

1127
static inline unsigned long mem_cgroup_get_max(struct mem_cgroup *memcg)
1128 1129 1130 1131
{
	return 0;
}

1132 1133 1134 1135 1136
static inline void
mem_cgroup_print_oom_info(struct mem_cgroup *memcg, struct task_struct *p)
{
}

1137 1138 1139 1140 1141 1142
static inline struct mem_cgroup *lock_page_memcg(struct page *page)
{
	return NULL;
}

static inline void __unlock_page_memcg(struct mem_cgroup *memcg)
1143 1144 1145
{
}

J
Johannes Weiner 已提交
1146
static inline void unlock_page_memcg(struct page *page)
1147 1148 1149
{
}

1150 1151 1152 1153
static inline void mem_cgroup_handle_over_high(void)
{
}

1154 1155 1156 1157
static inline void mem_cgroup_wmark_min_throttle(void)
{
}

1158
static inline void mem_cgroup_enter_user_fault(void)
1159 1160 1161
{
}

1162
static inline void mem_cgroup_exit_user_fault(void)
1163 1164 1165
{
}

1166 1167 1168 1169 1170
static inline bool task_in_memcg_oom(struct task_struct *p)
{
	return false;
}

1171
static inline bool mem_cgroup_oom_synchronize(bool wait)
1172 1173 1174 1175
{
	return false;
}

1176 1177 1178 1179 1180 1181 1182 1183 1184 1185
static inline struct mem_cgroup *mem_cgroup_get_oom_group(
	struct task_struct *victim, struct mem_cgroup *oom_domain)
{
	return NULL;
}

static inline void mem_cgroup_print_oom_group(struct mem_cgroup *memcg)
{
}

1186
static inline unsigned long memcg_page_state(struct mem_cgroup *memcg,
1187
					     int idx)
1188 1189 1190 1191
{
	return 0;
}

1192
static inline void __mod_memcg_state(struct mem_cgroup *memcg,
1193
				     int idx,
1194
				     int nr)
1195 1196 1197
{
}

1198
static inline void mod_memcg_state(struct mem_cgroup *memcg,
1199
				   int idx,
1200
				   int nr)
1201 1202 1203
{
}

1204
static inline void __mod_memcg_page_state(struct page *page,
1205
					  int idx,
1206
					  int nr)
1207 1208 1209
{
}

1210
static inline void mod_memcg_page_state(struct page *page,
1211
					int idx,
1212
					int nr)
1213 1214 1215
{
}

1216 1217
static inline unsigned long lruvec_page_state(struct lruvec *lruvec,
					      enum node_stat_item idx)
1218
{
1219
	return node_page_state(lruvec_pgdat(lruvec), idx);
1220 1221
}

1222 1223
static inline void __mod_lruvec_state(struct lruvec *lruvec,
				      enum node_stat_item idx, int val)
1224
{
1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243
	__mod_node_page_state(lruvec_pgdat(lruvec), idx, val);
}

static inline void mod_lruvec_state(struct lruvec *lruvec,
				    enum node_stat_item idx, int val)
{
	mod_node_page_state(lruvec_pgdat(lruvec), idx, val);
}

static inline void __mod_lruvec_page_state(struct page *page,
					   enum node_stat_item idx, int val)
{
	__mod_node_page_state(page_pgdat(page), idx, val);
}

static inline void mod_lruvec_page_state(struct page *page,
					 enum node_stat_item idx, int val)
{
	mod_node_page_state(page_pgdat(page), idx, val);
1244 1245
}

1246
static inline
1247
unsigned long mem_cgroup_soft_limit_reclaim(pg_data_t *pgdat, int order,
1248 1249
					    gfp_t gfp_mask,
					    unsigned long *total_scanned)
1250
{
1251
	return 0;
1252 1253
}

1254
static inline void mem_cgroup_split_huge_fixup(struct page *head)
1255 1256 1257
{
}

1258 1259 1260 1261 1262 1263 1264
static inline void count_memcg_events(struct mem_cgroup *memcg,
				      enum vm_event_item idx,
				      unsigned long count)
{
}

static inline void count_memcg_page_event(struct page *page,
1265
					  int idx)
1266 1267 1268
{
}

1269
static inline
1270
void count_memcg_event_mm(struct mm_struct *mm, enum vm_event_item idx)
1271 1272
{
}
1273 1274 1275 1276 1277

static inline bool is_wmark_ok(struct mem_cgroup *memcg, bool low)
{
	return false;
}
1278 1279 1280 1281 1282 1283 1284 1285 1286 1287

static inline int memcg_get_wmark_min_adj(struct task_struct *curr)
{
	return 0;
}

static inline void memcg_check_wmark_min_adj(struct task_struct *curr,
		struct alloc_context *ac)
{
}
X
Xu Yu 已提交
1288
#endif /* CONFIG_MEMCG */
1289

X
Xu Yu 已提交
1290 1291
#ifdef CONFIG_MEMSLI
extern void memcg_lat_stat_start(u64 *start);
1292
extern void memcg_lat_stat_end(enum mem_lat_stat_item sidx, u64 start);
X
Xu Yu 已提交
1293
#else
1294 1295 1296 1297
static inline void memcg_lat_stat_start(u64 *start)
{
}

1298
static inline void memcg_lat_stat_end(enum mem_lat_stat_item sidx, u64 start)
1299 1300
{
}
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Xu Yu 已提交
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#endif /* CONFIG_MEMSLI */
1302

1303
/* idx can be of type enum memcg_stat_item or node_stat_item */
1304
static inline void __inc_memcg_state(struct mem_cgroup *memcg,
1305
				     int idx)
1306 1307 1308 1309
{
	__mod_memcg_state(memcg, idx, 1);
}

1310
/* idx can be of type enum memcg_stat_item or node_stat_item */
1311
static inline void __dec_memcg_state(struct mem_cgroup *memcg,
1312
				     int idx)
1313 1314 1315 1316
{
	__mod_memcg_state(memcg, idx, -1);
}

1317
/* idx can be of type enum memcg_stat_item or node_stat_item */
1318
static inline void __inc_memcg_page_state(struct page *page,
1319
					  int idx)
1320 1321 1322 1323
{
	__mod_memcg_page_state(page, idx, 1);
}

1324
/* idx can be of type enum memcg_stat_item or node_stat_item */
1325
static inline void __dec_memcg_page_state(struct page *page,
1326
					  int idx)
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{
	__mod_memcg_page_state(page, idx, -1);
}

static inline void __inc_lruvec_state(struct lruvec *lruvec,
				      enum node_stat_item idx)
{
	__mod_lruvec_state(lruvec, idx, 1);
}

static inline void __dec_lruvec_state(struct lruvec *lruvec,
				      enum node_stat_item idx)
{
	__mod_lruvec_state(lruvec, idx, -1);
}

static inline void __inc_lruvec_page_state(struct page *page,
					   enum node_stat_item idx)
{
	__mod_lruvec_page_state(page, idx, 1);
}

static inline void __dec_lruvec_page_state(struct page *page,
					   enum node_stat_item idx)
{
	__mod_lruvec_page_state(page, idx, -1);
}

1355
/* idx can be of type enum memcg_stat_item or node_stat_item */
1356
static inline void inc_memcg_state(struct mem_cgroup *memcg,
1357
				   int idx)
1358 1359 1360 1361
{
	mod_memcg_state(memcg, idx, 1);
}

1362
/* idx can be of type enum memcg_stat_item or node_stat_item */
1363
static inline void dec_memcg_state(struct mem_cgroup *memcg,
1364
				   int idx)
1365 1366 1367 1368
{
	mod_memcg_state(memcg, idx, -1);
}

1369
/* idx can be of type enum memcg_stat_item or node_stat_item */
1370
static inline void inc_memcg_page_state(struct page *page,
1371
					int idx)
1372 1373 1374 1375
{
	mod_memcg_page_state(page, idx, 1);
}

1376
/* idx can be of type enum memcg_stat_item or node_stat_item */
1377
static inline void dec_memcg_page_state(struct page *page,
1378
					int idx)
1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406
{
	mod_memcg_page_state(page, idx, -1);
}

static inline void inc_lruvec_state(struct lruvec *lruvec,
				    enum node_stat_item idx)
{
	mod_lruvec_state(lruvec, idx, 1);
}

static inline void dec_lruvec_state(struct lruvec *lruvec,
				    enum node_stat_item idx)
{
	mod_lruvec_state(lruvec, idx, -1);
}

static inline void inc_lruvec_page_state(struct page *page,
					 enum node_stat_item idx)
{
	mod_lruvec_page_state(page, idx, 1);
}

static inline void dec_lruvec_page_state(struct page *page,
					 enum node_stat_item idx)
{
	mod_lruvec_page_state(page, idx, -1);
}

1407
#ifdef CONFIG_CGROUP_WRITEBACK
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Tejun Heo 已提交
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struct wb_domain *mem_cgroup_wb_domain(struct bdi_writeback *wb);
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void mem_cgroup_wb_stats(struct bdi_writeback *wb, unsigned long *pfilepages,
			 unsigned long *pheadroom, unsigned long *pdirty,
			 unsigned long *pwriteback);
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Tejun Heo 已提交
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#else	/* CONFIG_CGROUP_WRITEBACK */

static inline struct wb_domain *mem_cgroup_wb_domain(struct bdi_writeback *wb)
{
	return NULL;
}

1421
static inline void mem_cgroup_wb_stats(struct bdi_writeback *wb,
1422 1423
				       unsigned long *pfilepages,
				       unsigned long *pheadroom,
1424 1425 1426 1427 1428
				       unsigned long *pdirty,
				       unsigned long *pwriteback)
{
}

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#endif	/* CONFIG_CGROUP_WRITEBACK */
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struct sock;
1432 1433
bool mem_cgroup_charge_skmem(struct mem_cgroup *memcg, unsigned int nr_pages);
void mem_cgroup_uncharge_skmem(struct mem_cgroup *memcg, unsigned int nr_pages);
1434
#ifdef CONFIG_MEMCG
1435 1436
extern struct static_key_false memcg_sockets_enabled_key;
#define mem_cgroup_sockets_enabled static_branch_unlikely(&memcg_sockets_enabled_key)
1437 1438
void mem_cgroup_sk_alloc(struct sock *sk);
void mem_cgroup_sk_free(struct sock *sk);
1439
static inline bool mem_cgroup_under_socket_pressure(struct mem_cgroup *memcg)
1440
{
1441
	if (!cgroup_subsys_on_dfl(memory_cgrp_subsys) && memcg->tcpmem_pressure)
1442 1443 1444 1445 1446 1447
		return true;
	do {
		if (time_before(jiffies, memcg->socket_pressure))
			return true;
	} while ((memcg = parent_mem_cgroup(memcg)));
	return false;
1448
}
1449 1450 1451 1452 1453

extern int memcg_expand_shrinker_maps(int new_id);

extern void memcg_set_shrinker_bit(struct mem_cgroup *memcg,
				   int nid, int shrinker_id);
1454
#else
1455
#define mem_cgroup_sockets_enabled 0
1456 1457
static inline void mem_cgroup_sk_alloc(struct sock *sk) { };
static inline void mem_cgroup_sk_free(struct sock *sk) { };
1458
static inline bool mem_cgroup_under_socket_pressure(struct mem_cgroup *memcg)
1459 1460 1461
{
	return false;
}
1462 1463 1464 1465 1466

static inline void memcg_set_shrinker_bit(struct mem_cgroup *memcg,
					  int nid, int shrinker_id)
{
}
1467
#endif
1468

1469 1470 1471 1472 1473 1474 1475
struct kmem_cache *memcg_kmem_get_cache(struct kmem_cache *cachep);
void memcg_kmem_put_cache(struct kmem_cache *cachep);
int memcg_kmem_charge_memcg(struct page *page, gfp_t gfp, int order,
			    struct mem_cgroup *memcg);
int memcg_kmem_charge(struct page *page, gfp_t gfp, int order);
void memcg_kmem_uncharge(struct page *page, int order);

1476
#ifdef CONFIG_MEMCG_KMEM
1477
extern struct static_key_false memcg_kmem_enabled_key;
1478
extern struct workqueue_struct *memcg_kmem_cache_wq;
1479

1480
extern int memcg_nr_cache_ids;
1481 1482
void memcg_get_cache_ids(void);
void memcg_put_cache_ids(void);
1483 1484 1485 1486 1487 1488

/*
 * Helper macro to loop through all memcg-specific caches. Callers must still
 * check if the cache is valid (it is either valid or NULL).
 * the slab_mutex must be held when looping through those caches
 */
1489
#define for_each_memcg_cache_index(_idx)	\
1490
	for ((_idx) = 0; (_idx) < memcg_nr_cache_ids; (_idx)++)
1491

1492 1493
static inline bool memcg_kmem_enabled(void)
{
1494
	return static_branch_unlikely(&memcg_kmem_enabled_key);
1495 1496
}

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Michal Hocko 已提交
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/*
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Jesper Dangaard Brouer 已提交
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 * helper for accessing a memcg's index. It will be used as an index in the
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Michal Hocko 已提交
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 * child cache array in kmem_cache, and also to derive its name. This function
 * will return -1 when this is not a kmem-limited memcg.
 */
static inline int memcg_cache_id(struct mem_cgroup *memcg)
{
	return memcg ? memcg->kmemcg_id : -1;
}
1506

1507
#else
1508 1509 1510
#define for_each_memcg_cache_index(_idx)	\
	for (; NULL; )

1511 1512 1513 1514 1515
static inline bool memcg_kmem_enabled(void)
{
	return false;
}

1516 1517 1518 1519 1520
static inline int memcg_cache_id(struct mem_cgroup *memcg)
{
	return -1;
}

1521 1522 1523 1524 1525 1526 1527 1528
static inline void memcg_get_cache_ids(void)
{
}

static inline void memcg_put_cache_ids(void)
{
}

1529
#endif /* CONFIG_MEMCG_KMEM */
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Balbir Singh 已提交
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#endif /* _LINUX_MEMCONTROL_H */