mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git
synced 2026-09-05 08:44:14 +02:00
The anon/file scan balance in get_scan_count() is driven by two scalars in
struct lruvec, anon_cost and file_cost, accumulated by every reclaim
producer under lruvec->lru_lock. The acquisition sites for cost work
specifically are:
- shrink_inactive_list() re-takes lru_lock at function exit purely
to call lru_note_cost_unlock_irq() with (nr_pageout, nr_scanned -
nr_reclaimed). One acquisition per inactive shrink.
- shrink_active_list() does the same with (0, nr_rotated). One
acquisition per active shrink.
- workingset_refault() takes the lock via folio_lruvec_lock_irq()
purely to record the refault cost. One acquisition per refault.
- prepare_scan_control() takes lru_lock just to snapshot the two
scalars into sc->{anon,file}_cost.
- lru_note_cost_unlock_irq() itself walks parent_lruvec and
re-acquires lru_lock on each ancestor to propagate the update,
adding O(memcg-depth) acquisitions per producer call.
This hurts because lru_lock is already a heavy contention point on
memory-heavy workloads: every isolate_lru_folios(), move_folios_to_lru()
and folio_add_lru() takes it. The cost work itself is trivial (two scalar
bumps and one comparison), but it contends with and causes contention for
actual LRU manipulation. The parent_lruvec() walk also multiplies
cost-update overhead by memcg hierarchy depth.
The balance formula for anon and file, respectively, is this:
cost = nr_io * SWAP_CLUSTER_MAX + nr_rotated
Instead of recording cost and running averaging logic directly when these
events occur, snapshot running vmstat counters once per reclaim cycle and
derive the balance from event deltas since the last run.
Use PGROTATE_* from the preceding patch for the rotation input.
WORKINGSET_RESTORE_* and NR_VMSCAN_WRITE provide the remaining event
counters. Charge NR_VMSCAN_WRITE through lruvec stats so all inputs can
be sampled per lruvec and aggregated through the memcg hierarchy. This is
overall cheaper and has fewer lock acquisition sites.
Moving accumulation and decay to the reclaim side also improves the cost
model across reclaim gaps. With producer-side decay, events that happen
while reclaim is idle still age each other before reclaim ever samples the
costs. If a workload refaults a large anon set and then a smaller file
set before reclaim runs again, the later file activity can age the earlier
anon activity out of the cost model. The new scheme observes the whole
between-reclaim delta and decays anon and file proportionally, so the
scan-balance history better represents what happened since the last
reclaim pass.
A dedicated per-lruvec spinlock, cost_lock, serialises the delta
extraction, the cost->count update and the halving loop against concurrent
reclaimers in the same memcg+node.
NR_VMSCAN_WRITE is accounted at writeout(), so reclaim_stat.nr_pageout is
no longer needed and is removed.
memcg-v1's memory.stat anon_cost/file_cost is now sourced from
cost[].count instead of the removed lruvec anon_cost/file_cost fields.
The reported values only refresh when prepare_scan_control() runs and are
bounded at ~lrusize/4 by the halving loop; the scan-balance signal they
express is unchanged.
Under pure MGLRU the scan-balance signal itself is not consumed (both
prepare_scan_control() and get_scan_count() are short-circuited on the
MGLRU paths, and MGLRU's own type/tier selection comes from
read_ctrl_pos() on lrugen->{avg_refaulted,avg_total,refaulted,evicted},
not from anon_cost/file_cost). NR_VMSCAN_WRITE naturally covers writeout
from either reclaim implementation. The preceding patch also bumps
PGROTATE_{ANON,FILE} from evict_folios(), so rotation-driven reclaim work
is accounted consistently across both implementations.
Link: https://lore.kernel.org/20260727162550.2032-4-usama.arif@linux.dev
Signed-off-by: Usama Arif <usama.arif@linux.dev>
Acked-by: Shakeel Butt <shakeel.butt@linux.dev>
Acked-by: Johannes Weiner <hannes@cmpxchg.org>
Acked-by: Vlastimil Babka (SUSE) <vbabka@kernel.org>
Cc: Axel Rasmussen <axelrasmussen@google.com>
Cc: Baoquan He <baoquan.he@linux.dev>
Cc: Chris Li <chrisl@kernel.org>
Cc: David Hildenbrand <david@kernel.org>
Cc: David Rientjes <rientjes@google.com>
Cc: Kairui Song <kasong@tencent.com>
Cc: Liam R. Howlett <liam@infradead.org>
Cc: Lorenzo Stoakes <ljs@kernel.org>
Cc: Michal Hocko <mhocko@suse.com>
Cc: Mike Rapoport <rppt@kernel.org>
Cc: Muchun Song <muchun.song@linux.dev>
Cc: Nhat Pham <nphamcs@gmail.com>
Cc: Roman Gushchin <roman.gushchin@linux.dev>
Cc: Suren Baghdasaryan <surenb@google.com>
Cc: Wei Xu <weixugc@google.com>
Cc: Yuanchu Xie <yuanchu@google.com>
Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
583 lines
16 KiB
C
583 lines
16 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef _LINUX_VMSTAT_H
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#define _LINUX_VMSTAT_H
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#include <linux/types.h>
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#include <linux/percpu.h>
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#include <linux/mmzone.h>
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#include <linux/vm_event_item.h>
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#include <linux/atomic.h>
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#include <linux/static_key.h>
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#include <linux/mmdebug.h>
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#ifdef CONFIG_NUMA
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DECLARE_STATIC_KEY_TRUE(vm_numa_stat_key);
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#endif
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struct reclaim_stat {
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unsigned nr_dirty;
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unsigned nr_unqueued_dirty;
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unsigned nr_congested;
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unsigned nr_writeback;
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unsigned nr_immediate;
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unsigned nr_activate[ANON_AND_FILE];
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unsigned nr_ref_keep;
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unsigned nr_unmap_fail;
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unsigned nr_lazyfree_fail;
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unsigned nr_demoted;
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};
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/* Stat data for system wide items */
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enum vm_stat_item {
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NR_DIRTY_THRESHOLD,
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NR_DIRTY_BG_THRESHOLD,
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NR_MEMMAP_PAGES, /* page metadata allocated through buddy allocator */
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NR_MEMMAP_BOOT_PAGES, /* page metadata allocated through boot allocator */
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NR_VM_STAT_ITEMS,
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};
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#ifdef CONFIG_VM_EVENT_COUNTERS
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/*
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* Light weight per cpu counter implementation.
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*
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* Counters should only be incremented and no critical kernel component
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* should rely on the counter values.
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*
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* Counters are handled completely inline. On many platforms the code
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* generated will simply be the increment of a global address.
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*/
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struct vm_event_state {
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unsigned long event[NR_VM_EVENT_ITEMS];
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};
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DECLARE_PER_CPU(struct vm_event_state, vm_event_states);
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/*
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* vm counters are allowed to be racy. Use raw_cpu_ops to avoid the
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* local_irq_disable overhead.
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*/
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static inline void __count_vm_event(enum vm_event_item item)
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{
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raw_cpu_inc(vm_event_states.event[item]);
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}
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static inline void count_vm_event(enum vm_event_item item)
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{
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this_cpu_inc(vm_event_states.event[item]);
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}
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static inline void __count_vm_events(enum vm_event_item item, long delta)
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{
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raw_cpu_add(vm_event_states.event[item], delta);
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}
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static inline void count_vm_events(enum vm_event_item item, long delta)
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{
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this_cpu_add(vm_event_states.event[item], delta);
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}
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extern void all_vm_events(unsigned long *);
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extern void vm_events_fold_cpu(int cpu);
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#else
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/* Disable counters */
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static inline void count_vm_event(enum vm_event_item item)
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{
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}
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static inline void count_vm_events(enum vm_event_item item, long delta)
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{
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}
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static inline void __count_vm_event(enum vm_event_item item)
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{
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}
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static inline void __count_vm_events(enum vm_event_item item, long delta)
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{
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}
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static inline void all_vm_events(unsigned long *ret)
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{
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}
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static inline void vm_events_fold_cpu(int cpu)
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{
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}
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#endif /* CONFIG_VM_EVENT_COUNTERS */
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#ifdef CONFIG_NUMA_BALANCING
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#define count_vm_numa_event(x) count_vm_event(x)
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#define count_vm_numa_events(x, y) count_vm_events(x, y)
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#else
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#define count_vm_numa_event(x) do {} while (0)
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#define count_vm_numa_events(x, y) do { (void)(y); } while (0)
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#endif /* CONFIG_NUMA_BALANCING */
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#ifdef CONFIG_DEBUG_TLBFLUSH
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#define count_vm_tlb_event(x) count_vm_event(x)
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#define count_vm_tlb_events(x, y) count_vm_events(x, y)
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#else
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#define count_vm_tlb_event(x) do {} while (0)
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#define count_vm_tlb_events(x, y) do { (void)(y); } while (0)
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#endif
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#ifdef CONFIG_PER_VMA_LOCK_STATS
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#define count_vm_vma_lock_event(x) count_vm_event(x)
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#else
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#define count_vm_vma_lock_event(x) do {} while (0)
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#endif
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#define __count_zid_vm_events(item, zid, delta) \
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__count_vm_events(item##_NORMAL - ZONE_NORMAL + zid, delta)
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/*
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* Zone and node-based page accounting with per cpu differentials.
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*/
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extern atomic_long_t vm_zone_stat[NR_VM_ZONE_STAT_ITEMS];
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extern atomic_long_t vm_node_stat[NR_VM_NODE_STAT_ITEMS];
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extern atomic_long_t vm_numa_event[NR_VM_NUMA_EVENT_ITEMS];
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#ifdef CONFIG_NUMA
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static inline void zone_numa_event_add(long x, struct zone *zone,
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enum numa_stat_item item)
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{
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atomic_long_add(x, &zone->vm_numa_event[item]);
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atomic_long_add(x, &vm_numa_event[item]);
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}
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static inline unsigned long zone_numa_event_state(struct zone *zone,
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enum numa_stat_item item)
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{
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return atomic_long_read(&zone->vm_numa_event[item]);
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}
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static inline unsigned long
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global_numa_event_state(enum numa_stat_item item)
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{
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return atomic_long_read(&vm_numa_event[item]);
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}
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#endif /* CONFIG_NUMA */
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static inline void zone_page_state_add(long x, struct zone *zone,
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enum zone_stat_item item)
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{
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atomic_long_add(x, &zone->vm_stat[item]);
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atomic_long_add(x, &vm_zone_stat[item]);
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}
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static inline void node_page_state_add(long x, struct pglist_data *pgdat,
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enum node_stat_item item)
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{
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atomic_long_add(x, &pgdat->vm_stat[item]);
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atomic_long_add(x, &vm_node_stat[item]);
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}
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static inline unsigned long global_zone_page_state(enum zone_stat_item item)
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{
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long x = atomic_long_read(&vm_zone_stat[item]);
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#ifdef CONFIG_SMP
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if (x < 0)
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x = 0;
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#endif
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return x;
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}
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static inline
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unsigned long global_node_page_state_pages(enum node_stat_item item)
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{
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long x = atomic_long_read(&vm_node_stat[item]);
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#ifdef CONFIG_SMP
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if (x < 0)
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x = 0;
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#endif
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return x;
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}
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/*
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* Non-clamping variant of global_node_page_state() intended for callers that
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* snapshot a monotonically-incremented counter and subtract two samples.
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* Returns the raw wrapping value so that unsigned modular subtraction stays
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* correct across a signed-long overflow (a real hazard on 32-bit) that the
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* clamp in global_node_page_state() would otherwise turn into a huge spurious
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* delta. Do NOT use for non-monotonic page-count reads.
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*/
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static inline unsigned long global_node_page_state_monotonic(enum node_stat_item item)
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{
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return (unsigned long)atomic_long_read(&vm_node_stat[item]);
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}
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static inline unsigned long global_node_page_state(enum node_stat_item item)
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{
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VM_WARN_ON_ONCE(vmstat_item_in_bytes(item));
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return global_node_page_state_pages(item);
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}
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static inline unsigned long zone_page_state(struct zone *zone,
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enum zone_stat_item item)
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{
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long x = atomic_long_read(&zone->vm_stat[item]);
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#ifdef CONFIG_SMP
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if (x < 0)
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x = 0;
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#endif
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return x;
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}
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/*
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* More accurate version that also considers the currently pending
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* deltas. For that we need to loop over all cpus to find the current
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* deltas. There is no synchronization so the result cannot be
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* exactly accurate either.
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*/
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static inline unsigned long zone_page_state_snapshot(struct zone *zone,
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enum zone_stat_item item)
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{
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long x = atomic_long_read(&zone->vm_stat[item]);
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#ifdef CONFIG_SMP
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int cpu;
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for_each_online_cpu(cpu)
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x += per_cpu_ptr(zone->per_cpu_zonestats, cpu)->vm_stat_diff[item];
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if (x < 0)
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x = 0;
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#endif
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return x;
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}
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#ifdef CONFIG_NUMA
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/* See __count_vm_event comment on why raw_cpu_inc is used. */
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static inline void
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__count_numa_event(struct zone *zone, enum numa_stat_item item)
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{
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struct per_cpu_zonestat __percpu *pzstats = zone->per_cpu_zonestats;
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raw_cpu_inc(pzstats->vm_numa_event[item]);
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}
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static inline void
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__count_numa_events(struct zone *zone, enum numa_stat_item item, long delta)
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{
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struct per_cpu_zonestat __percpu *pzstats = zone->per_cpu_zonestats;
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raw_cpu_add(pzstats->vm_numa_event[item], delta);
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}
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extern unsigned long sum_zone_node_page_state(int node,
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enum zone_stat_item item);
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extern unsigned long sum_zone_numa_event_state(int node, enum numa_stat_item item);
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extern unsigned long node_page_state(struct pglist_data *pgdat,
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enum node_stat_item item);
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extern unsigned long node_page_state_pages(struct pglist_data *pgdat,
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enum node_stat_item item);
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extern unsigned long node_page_state_monotonic(struct pglist_data *pgdat,
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enum node_stat_item item);
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extern void fold_vm_numa_events(void);
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#else
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#define sum_zone_node_page_state(node, item) global_zone_page_state(item)
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#define node_page_state(node, item) global_node_page_state(item)
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#define node_page_state_pages(node, item) global_node_page_state_pages(item)
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#define node_page_state_monotonic(node, item) global_node_page_state_monotonic(item)
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static inline void fold_vm_numa_events(void)
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{
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}
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#endif /* CONFIG_NUMA */
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#ifdef CONFIG_SMP
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void __mod_zone_page_state(struct zone *, enum zone_stat_item item, long);
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void __inc_zone_page_state(struct page *, enum zone_stat_item);
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void __dec_zone_page_state(struct page *, enum zone_stat_item);
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void __mod_node_page_state(struct pglist_data *, enum node_stat_item item, long);
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void __inc_node_page_state(struct page *, enum node_stat_item);
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void __dec_node_page_state(struct page *, enum node_stat_item);
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void mod_zone_page_state(struct zone *, enum zone_stat_item, long);
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void inc_zone_page_state(struct page *, enum zone_stat_item);
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void dec_zone_page_state(struct page *, enum zone_stat_item);
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void mod_node_page_state(struct pglist_data *, enum node_stat_item, long);
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void inc_node_page_state(struct page *, enum node_stat_item);
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void dec_node_page_state(struct page *, enum node_stat_item);
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extern void __inc_zone_state(struct zone *, enum zone_stat_item);
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extern void __inc_node_state(struct pglist_data *, enum node_stat_item);
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extern void __dec_zone_state(struct zone *, enum zone_stat_item);
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extern void __dec_node_state(struct pglist_data *, enum node_stat_item);
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void quiet_vmstat(void);
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void cpu_vm_stats_fold(int cpu);
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void refresh_zone_stat_thresholds(void);
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void drain_zonestat(struct zone *zone, struct per_cpu_zonestat *);
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int calculate_pressure_threshold(struct zone *zone);
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int calculate_normal_threshold(struct zone *zone);
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void set_pgdat_percpu_threshold(pg_data_t *pgdat,
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int (*calculate_pressure)(struct zone *));
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void vmstat_flush_workqueue(void);
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#else /* CONFIG_SMP */
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/*
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* We do not maintain differentials in a single processor configuration.
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* The functions directly modify the zone and global counters.
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*/
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static inline void __mod_zone_page_state(struct zone *zone,
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enum zone_stat_item item, long delta)
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{
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zone_page_state_add(delta, zone, item);
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}
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static inline void __mod_node_page_state(struct pglist_data *pgdat,
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enum node_stat_item item, int delta)
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{
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if (vmstat_item_in_bytes(item)) {
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/*
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* Only cgroups use subpage accounting right now; at
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* the global level, these items still change in
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* multiples of whole pages. Store them as pages
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* internally to keep the per-cpu counters compact.
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*/
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VM_WARN_ON_ONCE(delta & (PAGE_SIZE - 1));
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delta >>= PAGE_SHIFT;
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}
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node_page_state_add(delta, pgdat, item);
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}
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static inline void __inc_zone_state(struct zone *zone, enum zone_stat_item item)
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{
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atomic_long_inc(&zone->vm_stat[item]);
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atomic_long_inc(&vm_zone_stat[item]);
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}
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static inline void __inc_node_state(struct pglist_data *pgdat, enum node_stat_item item)
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{
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atomic_long_inc(&pgdat->vm_stat[item]);
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atomic_long_inc(&vm_node_stat[item]);
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}
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static inline void __dec_zone_state(struct zone *zone, enum zone_stat_item item)
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{
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atomic_long_dec(&zone->vm_stat[item]);
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atomic_long_dec(&vm_zone_stat[item]);
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}
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static inline void __dec_node_state(struct pglist_data *pgdat, enum node_stat_item item)
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{
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atomic_long_dec(&pgdat->vm_stat[item]);
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atomic_long_dec(&vm_node_stat[item]);
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}
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static inline void __inc_zone_page_state(struct page *page,
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enum zone_stat_item item)
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{
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__inc_zone_state(page_zone(page), item);
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}
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static inline void __inc_node_page_state(struct page *page,
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enum node_stat_item item)
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{
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__inc_node_state(page_pgdat(page), item);
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}
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static inline void __dec_zone_page_state(struct page *page,
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enum zone_stat_item item)
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{
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__dec_zone_state(page_zone(page), item);
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}
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static inline void __dec_node_page_state(struct page *page,
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enum node_stat_item item)
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{
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__dec_node_state(page_pgdat(page), item);
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}
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/*
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* We only use atomic operations to update counters. So there is no need to
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|
* disable interrupts.
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|
*/
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|
#define inc_zone_page_state __inc_zone_page_state
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|
#define dec_zone_page_state __dec_zone_page_state
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|
#define mod_zone_page_state __mod_zone_page_state
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|
|
|
#define inc_node_page_state __inc_node_page_state
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|
#define dec_node_page_state __dec_node_page_state
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|
#define mod_node_page_state __mod_node_page_state
|
|
|
|
#define set_pgdat_percpu_threshold(pgdat, callback) { }
|
|
|
|
static inline void refresh_zone_stat_thresholds(void) { }
|
|
static inline void cpu_vm_stats_fold(int cpu) { }
|
|
static inline void quiet_vmstat(void) { }
|
|
static inline void vmstat_flush_workqueue(void) { }
|
|
|
|
static inline void drain_zonestat(struct zone *zone,
|
|
struct per_cpu_zonestat *pzstats) { }
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|
#endif /* CONFIG_SMP */
|
|
|
|
static inline void __zone_stat_mod_folio(struct folio *folio,
|
|
enum zone_stat_item item, long nr)
|
|
{
|
|
__mod_zone_page_state(folio_zone(folio), item, nr);
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|
}
|
|
|
|
static inline void __zone_stat_add_folio(struct folio *folio,
|
|
enum zone_stat_item item)
|
|
{
|
|
__mod_zone_page_state(folio_zone(folio), item, folio_nr_pages(folio));
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|
}
|
|
|
|
static inline void __zone_stat_sub_folio(struct folio *folio,
|
|
enum zone_stat_item item)
|
|
{
|
|
__mod_zone_page_state(folio_zone(folio), item, -folio_nr_pages(folio));
|
|
}
|
|
|
|
static inline void zone_stat_mod_folio(struct folio *folio,
|
|
enum zone_stat_item item, long nr)
|
|
{
|
|
mod_zone_page_state(folio_zone(folio), item, nr);
|
|
}
|
|
|
|
static inline void zone_stat_add_folio(struct folio *folio,
|
|
enum zone_stat_item item)
|
|
{
|
|
mod_zone_page_state(folio_zone(folio), item, folio_nr_pages(folio));
|
|
}
|
|
|
|
static inline void zone_stat_sub_folio(struct folio *folio,
|
|
enum zone_stat_item item)
|
|
{
|
|
mod_zone_page_state(folio_zone(folio), item, -folio_nr_pages(folio));
|
|
}
|
|
|
|
static inline void __node_stat_mod_folio(struct folio *folio,
|
|
enum node_stat_item item, long nr)
|
|
{
|
|
__mod_node_page_state(folio_pgdat(folio), item, nr);
|
|
}
|
|
|
|
static inline void __node_stat_add_folio(struct folio *folio,
|
|
enum node_stat_item item)
|
|
{
|
|
__mod_node_page_state(folio_pgdat(folio), item, folio_nr_pages(folio));
|
|
}
|
|
|
|
static inline void __node_stat_sub_folio(struct folio *folio,
|
|
enum node_stat_item item)
|
|
{
|
|
__mod_node_page_state(folio_pgdat(folio), item, -folio_nr_pages(folio));
|
|
}
|
|
|
|
static inline void node_stat_mod_folio(struct folio *folio,
|
|
enum node_stat_item item, long nr)
|
|
{
|
|
mod_node_page_state(folio_pgdat(folio), item, nr);
|
|
}
|
|
|
|
static inline void node_stat_add_folio(struct folio *folio,
|
|
enum node_stat_item item)
|
|
{
|
|
mod_node_page_state(folio_pgdat(folio), item, folio_nr_pages(folio));
|
|
}
|
|
|
|
static inline void node_stat_sub_folio(struct folio *folio,
|
|
enum node_stat_item item)
|
|
{
|
|
mod_node_page_state(folio_pgdat(folio), item, -folio_nr_pages(folio));
|
|
}
|
|
|
|
extern const char * const vmstat_text[];
|
|
|
|
static inline const char *zone_stat_name(enum zone_stat_item item)
|
|
{
|
|
return vmstat_text[item];
|
|
}
|
|
|
|
#ifdef CONFIG_NUMA
|
|
static inline const char *numa_stat_name(enum numa_stat_item item)
|
|
{
|
|
return vmstat_text[NR_VM_ZONE_STAT_ITEMS +
|
|
item];
|
|
}
|
|
#endif /* CONFIG_NUMA */
|
|
|
|
static inline const char *node_stat_name(enum node_stat_item item)
|
|
{
|
|
return vmstat_text[NR_VM_ZONE_STAT_ITEMS +
|
|
NR_VM_NUMA_EVENT_ITEMS +
|
|
item];
|
|
}
|
|
|
|
static inline const char *lru_list_name(enum lru_list lru)
|
|
{
|
|
return node_stat_name(NR_LRU_BASE + lru) + 3; // skip "nr_"
|
|
}
|
|
|
|
#if defined(CONFIG_VM_EVENT_COUNTERS)
|
|
static inline const char *vm_event_name(enum vm_event_item item)
|
|
{
|
|
return vmstat_text[NR_VM_ZONE_STAT_ITEMS +
|
|
NR_VM_NUMA_EVENT_ITEMS +
|
|
NR_VM_NODE_STAT_ITEMS +
|
|
NR_VM_STAT_ITEMS +
|
|
item];
|
|
}
|
|
#endif /* CONFIG_VM_EVENT_COUNTERS */
|
|
|
|
#ifdef CONFIG_MEMCG
|
|
|
|
void mod_lruvec_state(struct lruvec *lruvec, enum node_stat_item idx,
|
|
int val);
|
|
|
|
void lruvec_stat_mod_folio(struct folio *folio,
|
|
enum node_stat_item idx, int val);
|
|
|
|
static inline void mod_lruvec_page_state(struct page *page,
|
|
enum node_stat_item idx, int val)
|
|
{
|
|
lruvec_stat_mod_folio(page_folio(page), idx, val);
|
|
}
|
|
|
|
#else
|
|
|
|
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 lruvec_stat_mod_folio(struct folio *folio,
|
|
enum node_stat_item idx, int val)
|
|
{
|
|
mod_node_page_state(folio_pgdat(folio), 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);
|
|
}
|
|
|
|
#endif /* CONFIG_MEMCG */
|
|
|
|
static inline void lruvec_stat_add_folio(struct folio *folio,
|
|
enum node_stat_item idx)
|
|
{
|
|
lruvec_stat_mod_folio(folio, idx, folio_nr_pages(folio));
|
|
}
|
|
|
|
static inline void lruvec_stat_sub_folio(struct folio *folio,
|
|
enum node_stat_item idx)
|
|
{
|
|
lruvec_stat_mod_folio(folio, idx, -folio_nr_pages(folio));
|
|
}
|
|
|
|
void memmap_boot_pages_add(long delta);
|
|
void memmap_pages_add(long delta);
|
|
#endif /* _LINUX_VMSTAT_H */
|