linux/mm/internal.h
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   1/* internal.h: mm/ internal definitions
   2 *
   3 * Copyright (C) 2004 Red Hat, Inc. All Rights Reserved.
   4 * Written by David Howells (dhowells@redhat.com)
   5 *
   6 * This program is free software; you can redistribute it and/or
   7 * modify it under the terms of the GNU General Public License
   8 * as published by the Free Software Foundation; either version
   9 * 2 of the License, or (at your option) any later version.
  10 */
  11#ifndef __MM_INTERNAL_H
  12#define __MM_INTERNAL_H
  13
  14#include <linux/mm.h>
  15
  16void free_pgtables(struct mmu_gather *tlb, struct vm_area_struct *start_vma,
  17                unsigned long floor, unsigned long ceiling);
  18
  19extern void prep_compound_page(struct page *page, unsigned long order);
  20extern void prep_compound_gigantic_page(struct page *page, unsigned long order);
  21
  22static inline void set_page_count(struct page *page, int v)
  23{
  24        atomic_set(&page->_count, v);
  25}
  26
  27/*
  28 * Turn a non-refcounted page (->_count == 0) into refcounted with
  29 * a count of one.
  30 */
  31static inline void set_page_refcounted(struct page *page)
  32{
  33        VM_BUG_ON(PageTail(page));
  34        VM_BUG_ON(atomic_read(&page->_count));
  35        set_page_count(page, 1);
  36}
  37
  38static inline void __put_page(struct page *page)
  39{
  40        atomic_dec(&page->_count);
  41}
  42
  43/*
  44 * in mm/vmscan.c:
  45 */
  46extern int isolate_lru_page(struct page *page);
  47extern void putback_lru_page(struct page *page);
  48
  49/*
  50 * in mm/page_alloc.c
  51 */
  52extern unsigned long highest_memmap_pfn;
  53extern void __free_pages_bootmem(struct page *page, unsigned int order);
  54
  55/*
  56 * function for dealing with page's order in buddy system.
  57 * zone->lock is already acquired when we use these.
  58 * So, we don't need atomic page->flags operations here.
  59 */
  60static inline unsigned long page_order(struct page *page)
  61{
  62        VM_BUG_ON(!PageBuddy(page));
  63        return page_private(page);
  64}
  65
  66#ifdef CONFIG_HAVE_MLOCK
  67extern long mlock_vma_pages_range(struct vm_area_struct *vma,
  68                        unsigned long start, unsigned long end);
  69extern void munlock_vma_pages_range(struct vm_area_struct *vma,
  70                        unsigned long start, unsigned long end);
  71static inline void munlock_vma_pages_all(struct vm_area_struct *vma)
  72{
  73        munlock_vma_pages_range(vma, vma->vm_start, vma->vm_end);
  74}
  75#endif
  76
  77#ifdef CONFIG_UNEVICTABLE_LRU
  78/*
  79 * unevictable_migrate_page() called only from migrate_page_copy() to
  80 * migrate unevictable flag to new page.
  81 * Note that the old page has been isolated from the LRU lists at this
  82 * point so we don't need to worry about LRU statistics.
  83 */
  84static inline void unevictable_migrate_page(struct page *new, struct page *old)
  85{
  86        if (TestClearPageUnevictable(old))
  87                SetPageUnevictable(new);
  88}
  89#else
  90static inline void unevictable_migrate_page(struct page *new, struct page *old)
  91{
  92}
  93#endif
  94
  95#ifdef CONFIG_HAVE_MLOCKED_PAGE_BIT
  96/*
  97 * Called only in fault path via page_evictable() for a new page
  98 * to determine if it's being mapped into a LOCKED vma.
  99 * If so, mark page as mlocked.
 100 */
 101static inline int is_mlocked_vma(struct vm_area_struct *vma, struct page *page)
 102{
 103        VM_BUG_ON(PageLRU(page));
 104
 105        if (likely((vma->vm_flags & (VM_LOCKED | VM_SPECIAL)) != VM_LOCKED))
 106                return 0;
 107
 108        if (!TestSetPageMlocked(page)) {
 109                inc_zone_page_state(page, NR_MLOCK);
 110                count_vm_event(UNEVICTABLE_PGMLOCKED);
 111        }
 112        return 1;
 113}
 114
 115/*
 116 * must be called with vma's mmap_sem held for read, and page locked.
 117 */
 118extern void mlock_vma_page(struct page *page);
 119
 120/*
 121 * Clear the page's PageMlocked().  This can be useful in a situation where
 122 * we want to unconditionally remove a page from the pagecache -- e.g.,
 123 * on truncation or freeing.
 124 *
 125 * It is legal to call this function for any page, mlocked or not.
 126 * If called for a page that is still mapped by mlocked vmas, all we do
 127 * is revert to lazy LRU behaviour -- semantics are not broken.
 128 */
 129extern void __clear_page_mlock(struct page *page);
 130static inline void clear_page_mlock(struct page *page)
 131{
 132        if (unlikely(TestClearPageMlocked(page)))
 133                __clear_page_mlock(page);
 134}
 135
 136/*
 137 * mlock_migrate_page - called only from migrate_page_copy() to
 138 * migrate the Mlocked page flag; update statistics.
 139 */
 140static inline void mlock_migrate_page(struct page *newpage, struct page *page)
 141{
 142        if (TestClearPageMlocked(page)) {
 143                unsigned long flags;
 144
 145                local_irq_save(flags);
 146                __dec_zone_page_state(page, NR_MLOCK);
 147                SetPageMlocked(newpage);
 148                __inc_zone_page_state(newpage, NR_MLOCK);
 149                local_irq_restore(flags);
 150        }
 151}
 152
 153/*
 154 * free_page_mlock() -- clean up attempts to free and mlocked() page.
 155 * Page should not be on lru, so no need to fix that up.
 156 * free_pages_check() will verify...
 157 */
 158static inline void free_page_mlock(struct page *page)
 159{
 160        if (unlikely(TestClearPageMlocked(page))) {
 161                unsigned long flags;
 162
 163                local_irq_save(flags);
 164                __dec_zone_page_state(page, NR_MLOCK);
 165                __count_vm_event(UNEVICTABLE_MLOCKFREED);
 166                local_irq_restore(flags);
 167        }
 168}
 169
 170#else /* CONFIG_HAVE_MLOCKED_PAGE_BIT */
 171static inline int is_mlocked_vma(struct vm_area_struct *v, struct page *p)
 172{
 173        return 0;
 174}
 175static inline void clear_page_mlock(struct page *page) { }
 176static inline void mlock_vma_page(struct page *page) { }
 177static inline void mlock_migrate_page(struct page *new, struct page *old) { }
 178static inline void free_page_mlock(struct page *page) { }
 179
 180#endif /* CONFIG_HAVE_MLOCKED_PAGE_BIT */
 181
 182/*
 183 * Return the mem_map entry representing the 'offset' subpage within
 184 * the maximally aligned gigantic page 'base'.  Handle any discontiguity
 185 * in the mem_map at MAX_ORDER_NR_PAGES boundaries.
 186 */
 187static inline struct page *mem_map_offset(struct page *base, int offset)
 188{
 189        if (unlikely(offset >= MAX_ORDER_NR_PAGES))
 190                return pfn_to_page(page_to_pfn(base) + offset);
 191        return base + offset;
 192}
 193
 194/*
 195 * Iterator over all subpages withing the maximally aligned gigantic
 196 * page 'base'.  Handle any discontiguity in the mem_map.
 197 */
 198static inline struct page *mem_map_next(struct page *iter,
 199                                                struct page *base, int offset)
 200{
 201        if (unlikely((offset & (MAX_ORDER_NR_PAGES - 1)) == 0)) {
 202                unsigned long pfn = page_to_pfn(base) + offset;
 203                if (!pfn_valid(pfn))
 204                        return NULL;
 205                return pfn_to_page(pfn);
 206        }
 207        return iter + 1;
 208}
 209
 210/*
 211 * FLATMEM and DISCONTIGMEM configurations use alloc_bootmem_node,
 212 * so all functions starting at paging_init should be marked __init
 213 * in those cases. SPARSEMEM, however, allows for memory hotplug,
 214 * and alloc_bootmem_node is not used.
 215 */
 216#ifdef CONFIG_SPARSEMEM
 217#define __paginginit __meminit
 218#else
 219#define __paginginit __init
 220#endif
 221
 222/* Memory initialisation debug and verification */
 223enum mminit_level {
 224        MMINIT_WARNING,
 225        MMINIT_VERIFY,
 226        MMINIT_TRACE
 227};
 228
 229#ifdef CONFIG_DEBUG_MEMORY_INIT
 230
 231extern int mminit_loglevel;
 232
 233#define mminit_dprintk(level, prefix, fmt, arg...) \
 234do { \
 235        if (level < mminit_loglevel) { \
 236                printk(level <= MMINIT_WARNING ? KERN_WARNING : KERN_DEBUG); \
 237                printk(KERN_CONT "mminit::" prefix " " fmt, ##arg); \
 238        } \
 239} while (0)
 240
 241extern void mminit_verify_pageflags_layout(void);
 242extern void mminit_verify_page_links(struct page *page,
 243                enum zone_type zone, unsigned long nid, unsigned long pfn);
 244extern void mminit_verify_zonelist(void);
 245
 246#else
 247
 248static inline void mminit_dprintk(enum mminit_level level,
 249                                const char *prefix, const char *fmt, ...)
 250{
 251}
 252
 253static inline void mminit_verify_pageflags_layout(void)
 254{
 255}
 256
 257static inline void mminit_verify_page_links(struct page *page,
 258                enum zone_type zone, unsigned long nid, unsigned long pfn)
 259{
 260}
 261
 262static inline void mminit_verify_zonelist(void)
 263{
 264}
 265#endif /* CONFIG_DEBUG_MEMORY_INIT */
 266
 267/* mminit_validate_memmodel_limits is independent of CONFIG_DEBUG_MEMORY_INIT */
 268#if defined(CONFIG_SPARSEMEM)
 269extern void mminit_validate_memmodel_limits(unsigned long *start_pfn,
 270                                unsigned long *end_pfn);
 271#else
 272static inline void mminit_validate_memmodel_limits(unsigned long *start_pfn,
 273                                unsigned long *end_pfn)
 274{
 275}
 276#endif /* CONFIG_SPARSEMEM */
 277
 278#define GUP_FLAGS_WRITE                  0x1
 279#define GUP_FLAGS_FORCE                  0x2
 280#define GUP_FLAGS_IGNORE_VMA_PERMISSIONS 0x4
 281#define GUP_FLAGS_IGNORE_SIGKILL         0x8
 282
 283int __get_user_pages(struct task_struct *tsk, struct mm_struct *mm,
 284                     unsigned long start, int len, int flags,
 285                     struct page **pages, struct vm_area_struct **vmas);
 286
 287#define ZONE_RECLAIM_NOSCAN     -2
 288#define ZONE_RECLAIM_FULL       -1
 289#define ZONE_RECLAIM_SOME       0
 290#define ZONE_RECLAIM_SUCCESS    1
 291#endif
 292
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