mm rmap: remove vma_address check for address inside vma
[deliverable/linux.git] / include / linux / rmap.h
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1da177e4
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1#ifndef _LINUX_RMAP_H
2#define _LINUX_RMAP_H
3/*
4 * Declarations for Reverse Mapping functions in mm/rmap.c
5 */
6
1da177e4
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7#include <linux/list.h>
8#include <linux/slab.h>
9#include <linux/mm.h>
2b575eb6 10#include <linux/mutex.h>
bed7161a 11#include <linux/memcontrol.h>
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12
13/*
14 * The anon_vma heads a list of private "related" vmas, to scan if
15 * an anonymous page pointing to this anon_vma needs to be unmapped:
16 * the vmas on the list will be related by forking, or by splitting.
17 *
18 * Since vmas come and go as they are split and merged (particularly
19 * in mprotect), the mapping field of an anonymous page cannot point
20 * directly to a vma: instead it points to an anon_vma, on whose list
21 * the related vmas can be easily linked or unlinked.
22 *
23 * After unlinking the last vma on the list, we must garbage collect
24 * the anon_vma object itself: we're guaranteed no page can be
25 * pointing to this anon_vma once its vma list is empty.
26 */
27struct anon_vma {
5c341ee1 28 struct anon_vma *root; /* Root of this anon_vma tree */
2b575eb6 29 struct mutex mutex; /* Serialize access to vma list */
7f60c214 30 /*
83813267 31 * The refcount is taken on an anon_vma when there is no
7f60c214
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32 * guarantee that the vma of page tables will exist for
33 * the duration of the operation. A caller that takes
34 * the reference is responsible for clearing up the
35 * anon_vma if they are the last user on release
36 */
83813267
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37 atomic_t refcount;
38
7906d00c 39 /*
bf181b9f 40 * NOTE: the LSB of the rb_root.rb_node is set by
7906d00c 41 * mm_take_all_locks() _after_ taking the above lock. So the
bf181b9f 42 * rb_root must only be read/written after taking the above lock
7906d00c
AA
43 * to be sure to see a valid next pointer. The LSB bit itself
44 * is serialized by a system wide lock only visible to
45 * mm_take_all_locks() (mm_all_locks_mutex).
46 */
bf181b9f 47 struct rb_root rb_root; /* Interval tree of private "related" vmas */
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48};
49
50/*
51 * The copy-on-write semantics of fork mean that an anon_vma
52 * can become associated with multiple processes. Furthermore,
53 * each child process will have its own anon_vma, where new
54 * pages for that process are instantiated.
55 *
56 * This structure allows us to find the anon_vmas associated
57 * with a VMA, or the VMAs associated with an anon_vma.
58 * The "same_vma" list contains the anon_vma_chains linking
59 * all the anon_vmas associated with this VMA.
bf181b9f 60 * The "rb" field indexes on an interval tree the anon_vma_chains
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61 * which link all the VMAs associated with this anon_vma.
62 */
63struct anon_vma_chain {
64 struct vm_area_struct *vma;
65 struct anon_vma *anon_vma;
66 struct list_head same_vma; /* locked by mmap_sem & page_table_lock */
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67 struct rb_node rb; /* locked by anon_vma->mutex */
68 unsigned long rb_subtree_last;
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69};
70
71#ifdef CONFIG_MMU
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72static inline void get_anon_vma(struct anon_vma *anon_vma)
73{
83813267 74 atomic_inc(&anon_vma->refcount);
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75}
76
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77void __put_anon_vma(struct anon_vma *anon_vma);
78
79static inline void put_anon_vma(struct anon_vma *anon_vma)
80{
81 if (atomic_dec_and_test(&anon_vma->refcount))
82 __put_anon_vma(anon_vma);
83}
1da177e4 84
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85static inline struct anon_vma *page_anon_vma(struct page *page)
86{
87 if (((unsigned long)page->mapping & PAGE_MAPPING_FLAGS) !=
88 PAGE_MAPPING_ANON)
89 return NULL;
90 return page_rmapping(page);
91}
92
bb4a340e 93static inline void vma_lock_anon_vma(struct vm_area_struct *vma)
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94{
95 struct anon_vma *anon_vma = vma->anon_vma;
96 if (anon_vma)
2b575eb6 97 mutex_lock(&anon_vma->root->mutex);
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98}
99
bb4a340e 100static inline void vma_unlock_anon_vma(struct vm_area_struct *vma)
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101{
102 struct anon_vma *anon_vma = vma->anon_vma;
103 if (anon_vma)
2b575eb6 104 mutex_unlock(&anon_vma->root->mutex);
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105}
106
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107static inline void anon_vma_lock(struct anon_vma *anon_vma)
108{
2b575eb6 109 mutex_lock(&anon_vma->root->mutex);
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110}
111
112static inline void anon_vma_unlock(struct anon_vma *anon_vma)
113{
2b575eb6 114 mutex_unlock(&anon_vma->root->mutex);
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115}
116
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117/*
118 * anon_vma helper functions.
119 */
120void anon_vma_init(void); /* create anon_vma_cachep */
121int anon_vma_prepare(struct vm_area_struct *);
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122void unlink_anon_vmas(struct vm_area_struct *);
123int anon_vma_clone(struct vm_area_struct *, struct vm_area_struct *);
124int anon_vma_fork(struct vm_area_struct *, struct vm_area_struct *);
1da177e4 125
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126static inline void anon_vma_merge(struct vm_area_struct *vma,
127 struct vm_area_struct *next)
128{
129 VM_BUG_ON(vma->anon_vma != next->anon_vma);
130 unlink_anon_vmas(next);
131}
132
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133struct anon_vma *page_get_anon_vma(struct page *page);
134
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135/*
136 * rmap interfaces called when adding or removing pte of page
137 */
c44b6743 138void page_move_anon_rmap(struct page *, struct vm_area_struct *, unsigned long);
1da177e4 139void page_add_anon_rmap(struct page *, struct vm_area_struct *, unsigned long);
ad8c2ee8
RR
140void do_page_add_anon_rmap(struct page *, struct vm_area_struct *,
141 unsigned long, int);
9617d95e 142void page_add_new_anon_rmap(struct page *, struct vm_area_struct *, unsigned long);
1da177e4 143void page_add_file_rmap(struct page *);
edc315fd 144void page_remove_rmap(struct page *);
1da177e4 145
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146void hugepage_add_anon_rmap(struct page *, struct vm_area_struct *,
147 unsigned long);
148void hugepage_add_new_anon_rmap(struct page *, struct vm_area_struct *,
149 unsigned long);
150
21333b2b 151static inline void page_dup_rmap(struct page *page)
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152{
153 atomic_inc(&page->_mapcount);
154}
155
156/*
157 * Called from mm/vmscan.c to handle paging out
158 */
6fe6b7e3 159int page_referenced(struct page *, int is_locked,
72835c86 160 struct mem_cgroup *memcg, unsigned long *vm_flags);
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161int page_referenced_one(struct page *, struct vm_area_struct *,
162 unsigned long address, unsigned int *mapcount, unsigned long *vm_flags);
163
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164enum ttu_flags {
165 TTU_UNMAP = 0, /* unmap mode */
166 TTU_MIGRATION = 1, /* migration mode */
167 TTU_MUNLOCK = 2, /* munlock mode */
168 TTU_ACTION_MASK = 0xff,
169
170 TTU_IGNORE_MLOCK = (1 << 8), /* ignore mlock */
171 TTU_IGNORE_ACCESS = (1 << 9), /* don't age */
888b9f7c 172 TTU_IGNORE_HWPOISON = (1 << 10),/* corrupted page is recoverable */
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173};
174#define TTU_ACTION(x) ((x) & TTU_ACTION_MASK)
175
176int try_to_unmap(struct page *, enum ttu_flags flags);
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HD
177int try_to_unmap_one(struct page *, struct vm_area_struct *,
178 unsigned long address, enum ttu_flags flags);
1da177e4 179
ceffc078
CO
180/*
181 * Called from mm/filemap_xip.c to unmap empty zero page
182 */
e9a81a82 183pte_t *__page_check_address(struct page *, struct mm_struct *,
479db0bf 184 unsigned long, spinlock_t **, int);
ceffc078 185
e9a81a82
NK
186static inline pte_t *page_check_address(struct page *page, struct mm_struct *mm,
187 unsigned long address,
188 spinlock_t **ptlp, int sync)
189{
190 pte_t *ptep;
191
192 __cond_lock(*ptlp, ptep = __page_check_address(page, mm, address,
193 ptlp, sync));
194 return ptep;
195}
196
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197/*
198 * Used by swapoff to help locate where page is expected in vma.
199 */
200unsigned long page_address_in_vma(struct page *, struct vm_area_struct *);
201
d08b3851
PZ
202/*
203 * Cleans the PTEs of shared mappings.
204 * (and since clean PTEs should also be readonly, write protects them too)
205 *
206 * returns the number of cleaned PTEs.
207 */
208int page_mkclean(struct page *);
209
b291f000
NP
210/*
211 * called in munlock()/munmap() path to check for other vmas holding
212 * the page mlocked.
213 */
214int try_to_munlock(struct page *);
b291f000 215
10be22df
AK
216/*
217 * Called by memory-failure.c to kill processes.
218 */
25aeeb04 219struct anon_vma *page_lock_anon_vma(struct page *page);
10be22df 220void page_unlock_anon_vma(struct anon_vma *anon_vma);
6a46079c 221int page_mapped_in_vma(struct page *page, struct vm_area_struct *vma);
10be22df 222
e9995ef9
HD
223/*
224 * Called by migrate.c to remove migration ptes, but might be used more later.
225 */
226int rmap_walk(struct page *page, int (*rmap_one)(struct page *,
227 struct vm_area_struct *, unsigned long, void *), void *arg);
228
1da177e4
LT
229#else /* !CONFIG_MMU */
230
231#define anon_vma_init() do {} while (0)
232#define anon_vma_prepare(vma) (0)
233#define anon_vma_link(vma) do {} while (0)
234
01ff53f4 235static inline int page_referenced(struct page *page, int is_locked,
72835c86 236 struct mem_cgroup *memcg,
01ff53f4
MF
237 unsigned long *vm_flags)
238{
239 *vm_flags = 0;
64574746 240 return 0;
01ff53f4
MF
241}
242
a48d07af 243#define try_to_unmap(page, refs) SWAP_FAIL
1da177e4 244
d08b3851
PZ
245static inline int page_mkclean(struct page *page)
246{
247 return 0;
248}
249
250
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251#endif /* CONFIG_MMU */
252
253/*
254 * Return values of try_to_unmap
255 */
256#define SWAP_SUCCESS 0
257#define SWAP_AGAIN 1
258#define SWAP_FAIL 2
b291f000 259#define SWAP_MLOCK 3
1da177e4
LT
260
261#endif /* _LINUX_RMAP_H */
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