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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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b1e7a8fd85
This makes nr_dirty a per zone counter. Looping over all processors is avoided during writeback state determination. The counter aggregation for nr_dirty had to be undone in the NFS layer since we summed up the page counts from multiple zones. Someone more familiar with NFS should probably review what I have done. [akpm@osdl.org: bugfix] Signed-off-by: Christoph Lameter <clameter@sgi.com> Cc: Trond Myklebust <trond.myklebust@fys.uio.no> Signed-off-by: Andrew Morton <akpm@osdl.org> Signed-off-by: Linus Torvalds <torvalds@osdl.org>
261 lines
8.2 KiB
C
261 lines
8.2 KiB
C
#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/config.h>
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#include <linux/mmzone.h>
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#include <asm/atomic.h>
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/*
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* Global page accounting. One instance per CPU. Only unsigned longs are
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* allowed.
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*
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* - Fields can be modified with xxx_page_state and xxx_page_state_zone at
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* any time safely (which protects the instance from modification by
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* interrupt.
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* - The __xxx_page_state variants can be used safely when interrupts are
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* disabled.
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* - The __xxx_page_state variants can be used if the field is only
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* modified from process context and protected from preemption, or only
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* modified from interrupt context. In this case, the field should be
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* commented here.
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*/
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struct page_state {
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unsigned long nr_writeback; /* Pages under writeback */
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unsigned long nr_unstable; /* NFS unstable pages */
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#define GET_PAGE_STATE_LAST nr_unstable
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/*
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* The below are zeroed by get_page_state(). Use get_full_page_state()
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* to add up all these.
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*/
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unsigned long pgpgin; /* Disk reads */
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unsigned long pgpgout; /* Disk writes */
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unsigned long pswpin; /* swap reads */
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unsigned long pswpout; /* swap writes */
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unsigned long pgalloc_high; /* page allocations */
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unsigned long pgalloc_normal;
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unsigned long pgalloc_dma32;
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unsigned long pgalloc_dma;
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unsigned long pgfree; /* page freeings */
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unsigned long pgactivate; /* pages moved inactive->active */
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unsigned long pgdeactivate; /* pages moved active->inactive */
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unsigned long pgfault; /* faults (major+minor) */
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unsigned long pgmajfault; /* faults (major only) */
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unsigned long pgrefill_high; /* inspected in refill_inactive_zone */
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unsigned long pgrefill_normal;
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unsigned long pgrefill_dma32;
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unsigned long pgrefill_dma;
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unsigned long pgsteal_high; /* total highmem pages reclaimed */
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unsigned long pgsteal_normal;
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unsigned long pgsteal_dma32;
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unsigned long pgsteal_dma;
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unsigned long pgscan_kswapd_high;/* total highmem pages scanned */
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unsigned long pgscan_kswapd_normal;
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unsigned long pgscan_kswapd_dma32;
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unsigned long pgscan_kswapd_dma;
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unsigned long pgscan_direct_high;/* total highmem pages scanned */
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unsigned long pgscan_direct_normal;
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unsigned long pgscan_direct_dma32;
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unsigned long pgscan_direct_dma;
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unsigned long pginodesteal; /* pages reclaimed via inode freeing */
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unsigned long slabs_scanned; /* slab objects scanned */
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unsigned long kswapd_steal; /* pages reclaimed by kswapd */
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unsigned long kswapd_inodesteal;/* reclaimed via kswapd inode freeing */
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unsigned long pageoutrun; /* kswapd's calls to page reclaim */
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unsigned long allocstall; /* direct reclaim calls */
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unsigned long pgrotated; /* pages rotated to tail of the LRU */
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unsigned long nr_bounce; /* pages for bounce buffers */
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};
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extern void get_page_state(struct page_state *ret);
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extern void get_page_state_node(struct page_state *ret, int node);
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extern void get_full_page_state(struct page_state *ret);
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extern unsigned long read_page_state_offset(unsigned long offset);
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extern void mod_page_state_offset(unsigned long offset, unsigned long delta);
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extern void __mod_page_state_offset(unsigned long offset, unsigned long delta);
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#define read_page_state(member) \
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read_page_state_offset(offsetof(struct page_state, member))
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#define mod_page_state(member, delta) \
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mod_page_state_offset(offsetof(struct page_state, member), (delta))
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#define __mod_page_state(member, delta) \
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__mod_page_state_offset(offsetof(struct page_state, member), (delta))
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#define inc_page_state(member) mod_page_state(member, 1UL)
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#define dec_page_state(member) mod_page_state(member, 0UL - 1)
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#define add_page_state(member,delta) mod_page_state(member, (delta))
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#define sub_page_state(member,delta) mod_page_state(member, 0UL - (delta))
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#define __inc_page_state(member) __mod_page_state(member, 1UL)
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#define __dec_page_state(member) __mod_page_state(member, 0UL - 1)
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#define __add_page_state(member,delta) __mod_page_state(member, (delta))
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#define __sub_page_state(member,delta) __mod_page_state(member, 0UL - (delta))
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#define page_state(member) (*__page_state(offsetof(struct page_state, member)))
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#define state_zone_offset(zone, member) \
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({ \
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unsigned offset; \
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if (is_highmem(zone)) \
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offset = offsetof(struct page_state, member##_high); \
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else if (is_normal(zone)) \
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offset = offsetof(struct page_state, member##_normal); \
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else if (is_dma32(zone)) \
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offset = offsetof(struct page_state, member##_dma32); \
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else \
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offset = offsetof(struct page_state, member##_dma); \
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offset; \
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})
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#define __mod_page_state_zone(zone, member, delta) \
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do { \
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__mod_page_state_offset(state_zone_offset(zone, member), (delta)); \
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} while (0)
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#define mod_page_state_zone(zone, member, delta) \
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do { \
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mod_page_state_offset(state_zone_offset(zone, member), (delta)); \
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} while (0)
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DECLARE_PER_CPU(struct page_state, page_states);
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/*
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* Zone based page accounting with per cpu differentials.
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*/
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extern atomic_long_t vm_stat[NR_VM_ZONE_STAT_ITEMS];
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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_stat[item]);
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}
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static inline unsigned long global_page_state(enum zone_stat_item item)
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{
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long x = atomic_long_read(&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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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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#ifdef CONFIG_NUMA
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/*
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* Determine the per node value of a stat item. This function
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* is called frequently in a NUMA machine, so try to be as
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* frugal as possible.
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*/
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static inline unsigned long node_page_state(int node,
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enum zone_stat_item item)
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{
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struct zone *zones = NODE_DATA(node)->node_zones;
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return
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#ifndef CONFIG_DMA_IS_NORMAL
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#if !defined(CONFIG_DMA_IS_DMA32) && BITS_PER_LONG >= 64
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zone_page_state(&zones[ZONE_DMA32], item) +
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#endif
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zone_page_state(&zones[ZONE_NORMAL], item) +
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#endif
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#ifdef CONFIG_HIGHMEM
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zone_page_state(&zones[ZONE_HIGHMEM], item) +
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#endif
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zone_page_state(&zones[ZONE_DMA], item);
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}
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#else
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#define node_page_state(node, item) global_page_state(item)
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#endif
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#define __add_zone_page_state(__z, __i, __d) \
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__mod_zone_page_state(__z, __i, __d)
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#define __sub_zone_page_state(__z, __i, __d) \
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__mod_zone_page_state(__z, __i,-(__d))
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#define add_zone_page_state(__z, __i, __d) mod_zone_page_state(__z, __i, __d)
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#define sub_zone_page_state(__z, __i, __d) mod_zone_page_state(__z, __i, -(__d))
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static inline void zap_zone_vm_stats(struct zone *zone)
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{
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memset(zone->vm_stat, 0, sizeof(zone->vm_stat));
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}
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#ifdef CONFIG_SMP
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void __mod_zone_page_state(struct zone *, enum zone_stat_item item, int);
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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_zone_page_state(struct zone *, enum zone_stat_item, int);
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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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extern void inc_zone_state(struct zone *, enum zone_stat_item);
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void refresh_cpu_vm_stats(int);
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void refresh_vm_stats(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, int 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 __inc_zone_page_state(struct page *page,
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enum zone_stat_item item)
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{
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atomic_long_inc(&page_zone(page)->vm_stat[item]);
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atomic_long_inc(&vm_stat[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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atomic_long_dec(&page_zone(page)->vm_stat[item]);
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atomic_long_dec(&vm_stat[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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static inline void refresh_cpu_vm_stats(int cpu) { }
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static inline void refresh_vm_stats(void) { }
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#endif
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#endif /* _LINUX_VMSTAT_H */
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