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1da177e4 LT |
1 | #ifndef _LINUX_MM_H |
2 | #define _LINUX_MM_H | |
3 | ||
4 | #include <linux/sched.h> | |
5 | #include <linux/errno.h> | |
c59ede7b | 6 | #include <linux/capability.h> |
1da177e4 LT |
7 | |
8 | #ifdef __KERNEL__ | |
9 | ||
10 | #include <linux/config.h> | |
11 | #include <linux/gfp.h> | |
12 | #include <linux/list.h> | |
13 | #include <linux/mmzone.h> | |
14 | #include <linux/rbtree.h> | |
15 | #include <linux/prio_tree.h> | |
16 | #include <linux/fs.h> | |
de5097c2 | 17 | #include <linux/mutex.h> |
1da177e4 LT |
18 | |
19 | struct mempolicy; | |
20 | struct anon_vma; | |
21 | ||
22 | #ifndef CONFIG_DISCONTIGMEM /* Don't use mapnrs, do it properly */ | |
23 | extern unsigned long max_mapnr; | |
24 | #endif | |
25 | ||
26 | extern unsigned long num_physpages; | |
27 | extern void * high_memory; | |
28 | extern unsigned long vmalloc_earlyreserve; | |
29 | extern int page_cluster; | |
30 | ||
31 | #ifdef CONFIG_SYSCTL | |
32 | extern int sysctl_legacy_va_layout; | |
33 | #else | |
34 | #define sysctl_legacy_va_layout 0 | |
35 | #endif | |
36 | ||
37 | #include <asm/page.h> | |
38 | #include <asm/pgtable.h> | |
39 | #include <asm/processor.h> | |
40 | #include <asm/atomic.h> | |
41 | ||
1da177e4 LT |
42 | #define nth_page(page,n) pfn_to_page(page_to_pfn((page)) + (n)) |
43 | ||
44 | /* | |
45 | * Linux kernel virtual memory manager primitives. | |
46 | * The idea being to have a "virtual" mm in the same way | |
47 | * we have a virtual fs - giving a cleaner interface to the | |
48 | * mm details, and allowing different kinds of memory mappings | |
49 | * (from shared memory to executable loading to arbitrary | |
50 | * mmap() functions). | |
51 | */ | |
52 | ||
53 | /* | |
54 | * This struct defines a memory VMM memory area. There is one of these | |
55 | * per VM-area/task. A VM area is any part of the process virtual memory | |
56 | * space that has a special rule for the page-fault handlers (ie a shared | |
57 | * library, the executable area etc). | |
58 | */ | |
59 | struct vm_area_struct { | |
60 | struct mm_struct * vm_mm; /* The address space we belong to. */ | |
61 | unsigned long vm_start; /* Our start address within vm_mm. */ | |
62 | unsigned long vm_end; /* The first byte after our end address | |
63 | within vm_mm. */ | |
64 | ||
65 | /* linked list of VM areas per task, sorted by address */ | |
66 | struct vm_area_struct *vm_next; | |
67 | ||
68 | pgprot_t vm_page_prot; /* Access permissions of this VMA. */ | |
69 | unsigned long vm_flags; /* Flags, listed below. */ | |
70 | ||
71 | struct rb_node vm_rb; | |
72 | ||
73 | /* | |
74 | * For areas with an address space and backing store, | |
75 | * linkage into the address_space->i_mmap prio tree, or | |
76 | * linkage to the list of like vmas hanging off its node, or | |
77 | * linkage of vma in the address_space->i_mmap_nonlinear list. | |
78 | */ | |
79 | union { | |
80 | struct { | |
81 | struct list_head list; | |
82 | void *parent; /* aligns with prio_tree_node parent */ | |
83 | struct vm_area_struct *head; | |
84 | } vm_set; | |
85 | ||
86 | struct raw_prio_tree_node prio_tree_node; | |
87 | } shared; | |
88 | ||
89 | /* | |
90 | * A file's MAP_PRIVATE vma can be in both i_mmap tree and anon_vma | |
91 | * list, after a COW of one of the file pages. A MAP_SHARED vma | |
92 | * can only be in the i_mmap tree. An anonymous MAP_PRIVATE, stack | |
93 | * or brk vma (with NULL file) can only be in an anon_vma list. | |
94 | */ | |
95 | struct list_head anon_vma_node; /* Serialized by anon_vma->lock */ | |
96 | struct anon_vma *anon_vma; /* Serialized by page_table_lock */ | |
97 | ||
98 | /* Function pointers to deal with this struct. */ | |
99 | struct vm_operations_struct * vm_ops; | |
100 | ||
101 | /* Information about our backing store: */ | |
102 | unsigned long vm_pgoff; /* Offset (within vm_file) in PAGE_SIZE | |
103 | units, *not* PAGE_CACHE_SIZE */ | |
104 | struct file * vm_file; /* File we map to (can be NULL). */ | |
105 | void * vm_private_data; /* was vm_pte (shared mem) */ | |
106 | unsigned long vm_truncate_count;/* truncate_count or restart_addr */ | |
107 | ||
108 | #ifndef CONFIG_MMU | |
109 | atomic_t vm_usage; /* refcount (VMAs shared if !MMU) */ | |
110 | #endif | |
111 | #ifdef CONFIG_NUMA | |
112 | struct mempolicy *vm_policy; /* NUMA policy for the VMA */ | |
113 | #endif | |
114 | }; | |
115 | ||
116 | /* | |
117 | * This struct defines the per-mm list of VMAs for uClinux. If CONFIG_MMU is | |
118 | * disabled, then there's a single shared list of VMAs maintained by the | |
119 | * system, and mm's subscribe to these individually | |
120 | */ | |
121 | struct vm_list_struct { | |
122 | struct vm_list_struct *next; | |
123 | struct vm_area_struct *vma; | |
124 | }; | |
125 | ||
126 | #ifndef CONFIG_MMU | |
127 | extern struct rb_root nommu_vma_tree; | |
128 | extern struct rw_semaphore nommu_vma_sem; | |
129 | ||
130 | extern unsigned int kobjsize(const void *objp); | |
131 | #endif | |
132 | ||
133 | /* | |
134 | * vm_flags.. | |
135 | */ | |
136 | #define VM_READ 0x00000001 /* currently active flags */ | |
137 | #define VM_WRITE 0x00000002 | |
138 | #define VM_EXEC 0x00000004 | |
139 | #define VM_SHARED 0x00000008 | |
140 | ||
7e2cff42 | 141 | /* mprotect() hardcodes VM_MAYREAD >> 4 == VM_READ, and so for r/w/x bits. */ |
1da177e4 LT |
142 | #define VM_MAYREAD 0x00000010 /* limits for mprotect() etc */ |
143 | #define VM_MAYWRITE 0x00000020 | |
144 | #define VM_MAYEXEC 0x00000040 | |
145 | #define VM_MAYSHARE 0x00000080 | |
146 | ||
147 | #define VM_GROWSDOWN 0x00000100 /* general info on the segment */ | |
148 | #define VM_GROWSUP 0x00000200 | |
0b14c179 | 149 | #define VM_SHM 0x00000000 /* Means nothing: delete it later */ |
6aab341e | 150 | #define VM_PFNMAP 0x00000400 /* Page-ranges managed without "struct page", just pure PFN */ |
1da177e4 LT |
151 | #define VM_DENYWRITE 0x00000800 /* ETXTBSY on write attempts.. */ |
152 | ||
153 | #define VM_EXECUTABLE 0x00001000 | |
154 | #define VM_LOCKED 0x00002000 | |
155 | #define VM_IO 0x00004000 /* Memory mapped I/O or similar */ | |
156 | ||
157 | /* Used by sys_madvise() */ | |
158 | #define VM_SEQ_READ 0x00008000 /* App will access data sequentially */ | |
159 | #define VM_RAND_READ 0x00010000 /* App will not benefit from clustered reads */ | |
160 | ||
161 | #define VM_DONTCOPY 0x00020000 /* Do not copy this vma on fork */ | |
162 | #define VM_DONTEXPAND 0x00040000 /* Cannot expand with mremap() */ | |
0b14c179 | 163 | #define VM_RESERVED 0x00080000 /* Count as reserved_vm like IO */ |
1da177e4 LT |
164 | #define VM_ACCOUNT 0x00100000 /* Is a VM accounted object */ |
165 | #define VM_HUGETLB 0x00400000 /* Huge TLB Page VM */ | |
166 | #define VM_NONLINEAR 0x00800000 /* Is non-linear (remap_file_pages) */ | |
167 | #define VM_MAPPED_COPY 0x01000000 /* T if mapped copy of data (nommu mmap) */ | |
4d7672b4 | 168 | #define VM_INSERTPAGE 0x02000000 /* The vma has had "vm_insert_page()" done on it */ |
1da177e4 LT |
169 | |
170 | #ifndef VM_STACK_DEFAULT_FLAGS /* arch can override this */ | |
171 | #define VM_STACK_DEFAULT_FLAGS VM_DATA_DEFAULT_FLAGS | |
172 | #endif | |
173 | ||
174 | #ifdef CONFIG_STACK_GROWSUP | |
175 | #define VM_STACK_FLAGS (VM_GROWSUP | VM_STACK_DEFAULT_FLAGS | VM_ACCOUNT) | |
176 | #else | |
177 | #define VM_STACK_FLAGS (VM_GROWSDOWN | VM_STACK_DEFAULT_FLAGS | VM_ACCOUNT) | |
178 | #endif | |
179 | ||
180 | #define VM_READHINTMASK (VM_SEQ_READ | VM_RAND_READ) | |
181 | #define VM_ClearReadHint(v) (v)->vm_flags &= ~VM_READHINTMASK | |
182 | #define VM_NormalReadHint(v) (!((v)->vm_flags & VM_READHINTMASK)) | |
183 | #define VM_SequentialReadHint(v) ((v)->vm_flags & VM_SEQ_READ) | |
184 | #define VM_RandomReadHint(v) ((v)->vm_flags & VM_RAND_READ) | |
185 | ||
186 | /* | |
187 | * mapping from the currently active vm_flags protection bits (the | |
188 | * low four bits) to a page protection mask.. | |
189 | */ | |
190 | extern pgprot_t protection_map[16]; | |
191 | ||
192 | ||
193 | /* | |
194 | * These are the virtual MM functions - opening of an area, closing and | |
195 | * unmapping it (needed to keep files on disk up-to-date etc), pointer | |
196 | * to the functions called when a no-page or a wp-page exception occurs. | |
197 | */ | |
198 | struct vm_operations_struct { | |
199 | void (*open)(struct vm_area_struct * area); | |
200 | void (*close)(struct vm_area_struct * area); | |
201 | struct page * (*nopage)(struct vm_area_struct * area, unsigned long address, int *type); | |
202 | int (*populate)(struct vm_area_struct * area, unsigned long address, unsigned long len, pgprot_t prot, unsigned long pgoff, int nonblock); | |
203 | #ifdef CONFIG_NUMA | |
204 | int (*set_policy)(struct vm_area_struct *vma, struct mempolicy *new); | |
205 | struct mempolicy *(*get_policy)(struct vm_area_struct *vma, | |
206 | unsigned long addr); | |
207 | #endif | |
208 | }; | |
209 | ||
210 | struct mmu_gather; | |
211 | struct inode; | |
212 | ||
1da177e4 LT |
213 | /* |
214 | * Each physical page in the system has a struct page associated with | |
215 | * it to keep track of whatever it is we are using the page for at the | |
216 | * moment. Note that we have no way to track which tasks are using | |
217 | * a page. | |
218 | */ | |
219 | struct page { | |
07808b74 | 220 | unsigned long flags; /* Atomic flags, some possibly |
1da177e4 LT |
221 | * updated asynchronously */ |
222 | atomic_t _count; /* Usage count, see below. */ | |
223 | atomic_t _mapcount; /* Count of ptes mapped in mms, | |
224 | * to show when page is mapped | |
225 | * & limit reverse map searches. | |
226 | */ | |
4c21e2f2 | 227 | union { |
349aef0b AM |
228 | struct { |
229 | unsigned long private; /* Mapping-private opaque data: | |
230 | * usually used for buffer_heads | |
231 | * if PagePrivate set; used for | |
232 | * swp_entry_t if PageSwapCache. | |
233 | * When page is free, this | |
234 | * indicates order in the buddy | |
235 | * system. | |
236 | */ | |
237 | struct address_space *mapping; /* If low bit clear, points to | |
238 | * inode address_space, or NULL. | |
239 | * If page mapped as anonymous | |
240 | * memory, low bit is set, and | |
241 | * it points to anon_vma object: | |
242 | * see PAGE_MAPPING_ANON below. | |
243 | */ | |
244 | }; | |
4c21e2f2 | 245 | #if NR_CPUS >= CONFIG_SPLIT_PTLOCK_CPUS |
349aef0b | 246 | spinlock_t ptl; |
4c21e2f2 | 247 | #endif |
349aef0b | 248 | }; |
1da177e4 LT |
249 | pgoff_t index; /* Our offset within mapping. */ |
250 | struct list_head lru; /* Pageout list, eg. active_list | |
251 | * protected by zone->lru_lock ! | |
252 | */ | |
253 | /* | |
254 | * On machines where all RAM is mapped into kernel address space, | |
255 | * we can simply calculate the virtual address. On machines with | |
256 | * highmem some memory is mapped into kernel virtual memory | |
257 | * dynamically, so we need a place to store that address. | |
258 | * Note that this field could be 16 bits on x86 ... ;) | |
259 | * | |
260 | * Architectures with slow multiplication can define | |
261 | * WANT_PAGE_VIRTUAL in asm/page.h | |
262 | */ | |
263 | #if defined(WANT_PAGE_VIRTUAL) | |
264 | void *virtual; /* Kernel virtual address (NULL if | |
265 | not kmapped, ie. highmem) */ | |
266 | #endif /* WANT_PAGE_VIRTUAL */ | |
267 | }; | |
268 | ||
349aef0b AM |
269 | #define page_private(page) ((page)->private) |
270 | #define set_page_private(page, v) ((page)->private = (v)) | |
4c21e2f2 | 271 | |
1da177e4 LT |
272 | /* |
273 | * FIXME: take this include out, include page-flags.h in | |
274 | * files which need it (119 of them) | |
275 | */ | |
276 | #include <linux/page-flags.h> | |
277 | ||
278 | /* | |
279 | * Methods to modify the page usage count. | |
280 | * | |
281 | * What counts for a page usage: | |
282 | * - cache mapping (page->mapping) | |
283 | * - private data (page->private) | |
284 | * - page mapped in a task's page tables, each mapping | |
285 | * is counted separately | |
286 | * | |
287 | * Also, many kernel routines increase the page count before a critical | |
288 | * routine so they can be sure the page doesn't go away from under them. | |
289 | * | |
290 | * Since 2.6.6 (approx), a free page has ->_count = -1. This is so that we | |
291 | * can use atomic_add_negative(-1, page->_count) to detect when the page | |
292 | * becomes free and so that we can also use atomic_inc_and_test to atomically | |
293 | * detect when we just tried to grab a ref on a page which some other CPU has | |
294 | * already deemed to be freeable. | |
295 | * | |
296 | * NO code should make assumptions about this internal detail! Use the provided | |
297 | * macros which retain the old rules: page_count(page) == 0 is a free page. | |
298 | */ | |
299 | ||
300 | /* | |
301 | * Drop a ref, return true if the logical refcount fell to zero (the page has | |
302 | * no users) | |
303 | */ | |
7c8ee9a8 NP |
304 | static inline int put_page_testzero(struct page *page) |
305 | { | |
306 | BUG_ON(atomic_read(&page->_count) == -1); | |
307 | return atomic_add_negative(-1, &page->_count); | |
308 | } | |
1da177e4 LT |
309 | |
310 | /* | |
7c8ee9a8 NP |
311 | * Try to grab a ref unless the page has a refcount of zero, return false if |
312 | * that is the case. | |
1da177e4 | 313 | */ |
7c8ee9a8 NP |
314 | static inline int get_page_unless_zero(struct page *page) |
315 | { | |
316 | return atomic_add_unless(&page->_count, 1, -1); | |
317 | } | |
1da177e4 | 318 | |
152194aa | 319 | #define set_page_count(p,v) atomic_set(&(p)->_count, (v) - 1) |
1da177e4 LT |
320 | #define __put_page(p) atomic_dec(&(p)->_count) |
321 | ||
322 | extern void FASTCALL(__page_cache_release(struct page *)); | |
323 | ||
4c21e2f2 | 324 | static inline int page_count(struct page *page) |
1da177e4 | 325 | { |
4c21e2f2 HD |
326 | if (PageCompound(page)) |
327 | page = (struct page *)page_private(page); | |
328 | return atomic_read(&page->_count) + 1; | |
1da177e4 LT |
329 | } |
330 | ||
331 | static inline void get_page(struct page *page) | |
332 | { | |
333 | if (unlikely(PageCompound(page))) | |
4c21e2f2 | 334 | page = (struct page *)page_private(page); |
1da177e4 LT |
335 | atomic_inc(&page->_count); |
336 | } | |
337 | ||
338 | void put_page(struct page *page); | |
339 | ||
1da177e4 LT |
340 | /* |
341 | * Multiple processes may "see" the same page. E.g. for untouched | |
342 | * mappings of /dev/null, all processes see the same page full of | |
343 | * zeroes, and text pages of executables and shared libraries have | |
344 | * only one copy in memory, at most, normally. | |
345 | * | |
346 | * For the non-reserved pages, page_count(page) denotes a reference count. | |
7e871b6c PBG |
347 | * page_count() == 0 means the page is free. page->lru is then used for |
348 | * freelist management in the buddy allocator. | |
1da177e4 LT |
349 | * page_count() == 1 means the page is used for exactly one purpose |
350 | * (e.g. a private data page of one process). | |
351 | * | |
352 | * A page may be used for kmalloc() or anyone else who does a | |
353 | * __get_free_page(). In this case the page_count() is at least 1, and | |
354 | * all other fields are unused but should be 0 or NULL. The | |
355 | * management of this page is the responsibility of the one who uses | |
356 | * it. | |
357 | * | |
358 | * The other pages (we may call them "process pages") are completely | |
359 | * managed by the Linux memory manager: I/O, buffers, swapping etc. | |
360 | * The following discussion applies only to them. | |
361 | * | |
362 | * A page may belong to an inode's memory mapping. In this case, | |
363 | * page->mapping is the pointer to the inode, and page->index is the | |
364 | * file offset of the page, in units of PAGE_CACHE_SIZE. | |
365 | * | |
366 | * A page contains an opaque `private' member, which belongs to the | |
367 | * page's address_space. Usually, this is the address of a circular | |
368 | * list of the page's disk buffers. | |
369 | * | |
370 | * For pages belonging to inodes, the page_count() is the number of | |
371 | * attaches, plus 1 if `private' contains something, plus one for | |
372 | * the page cache itself. | |
373 | * | |
7e871b6c PBG |
374 | * Instead of keeping dirty/clean pages in per address-space lists, we instead |
375 | * now tag pages as dirty/under writeback in the radix tree. | |
1da177e4 LT |
376 | * |
377 | * There is also a per-mapping radix tree mapping index to the page | |
378 | * in memory if present. The tree is rooted at mapping->root. | |
379 | * | |
380 | * All process pages can do I/O: | |
381 | * - inode pages may need to be read from disk, | |
382 | * - inode pages which have been modified and are MAP_SHARED may need | |
383 | * to be written to disk, | |
384 | * - private pages which have been modified may need to be swapped out | |
385 | * to swap space and (later) to be read back into memory. | |
386 | */ | |
387 | ||
388 | /* | |
389 | * The zone field is never updated after free_area_init_core() | |
390 | * sets it, so none of the operations on it need to be atomic. | |
1da177e4 | 391 | */ |
348f8b6c | 392 | |
d41dee36 AW |
393 | |
394 | /* | |
395 | * page->flags layout: | |
396 | * | |
397 | * There are three possibilities for how page->flags get | |
398 | * laid out. The first is for the normal case, without | |
399 | * sparsemem. The second is for sparsemem when there is | |
400 | * plenty of space for node and section. The last is when | |
401 | * we have run out of space and have to fall back to an | |
402 | * alternate (slower) way of determining the node. | |
403 | * | |
404 | * No sparsemem: | NODE | ZONE | ... | FLAGS | | |
405 | * with space for node: | SECTION | NODE | ZONE | ... | FLAGS | | |
406 | * no space for node: | SECTION | ZONE | ... | FLAGS | | |
407 | */ | |
408 | #ifdef CONFIG_SPARSEMEM | |
409 | #define SECTIONS_WIDTH SECTIONS_SHIFT | |
410 | #else | |
411 | #define SECTIONS_WIDTH 0 | |
412 | #endif | |
413 | ||
414 | #define ZONES_WIDTH ZONES_SHIFT | |
415 | ||
416 | #if SECTIONS_WIDTH+ZONES_WIDTH+NODES_SHIFT <= FLAGS_RESERVED | |
417 | #define NODES_WIDTH NODES_SHIFT | |
418 | #else | |
419 | #define NODES_WIDTH 0 | |
420 | #endif | |
421 | ||
422 | /* Page flags: | [SECTION] | [NODE] | ZONE | ... | FLAGS | */ | |
07808b74 | 423 | #define SECTIONS_PGOFF ((sizeof(unsigned long)*8) - SECTIONS_WIDTH) |
d41dee36 AW |
424 | #define NODES_PGOFF (SECTIONS_PGOFF - NODES_WIDTH) |
425 | #define ZONES_PGOFF (NODES_PGOFF - ZONES_WIDTH) | |
426 | ||
427 | /* | |
428 | * We are going to use the flags for the page to node mapping if its in | |
429 | * there. This includes the case where there is no node, so it is implicit. | |
430 | */ | |
431 | #define FLAGS_HAS_NODE (NODES_WIDTH > 0 || NODES_SHIFT == 0) | |
432 | ||
433 | #ifndef PFN_SECTION_SHIFT | |
434 | #define PFN_SECTION_SHIFT 0 | |
435 | #endif | |
348f8b6c DH |
436 | |
437 | /* | |
438 | * Define the bit shifts to access each section. For non-existant | |
439 | * sections we define the shift as 0; that plus a 0 mask ensures | |
440 | * the compiler will optimise away reference to them. | |
441 | */ | |
d41dee36 AW |
442 | #define SECTIONS_PGSHIFT (SECTIONS_PGOFF * (SECTIONS_WIDTH != 0)) |
443 | #define NODES_PGSHIFT (NODES_PGOFF * (NODES_WIDTH != 0)) | |
444 | #define ZONES_PGSHIFT (ZONES_PGOFF * (ZONES_WIDTH != 0)) | |
348f8b6c | 445 | |
d41dee36 AW |
446 | /* NODE:ZONE or SECTION:ZONE is used to lookup the zone from a page. */ |
447 | #if FLAGS_HAS_NODE | |
348f8b6c | 448 | #define ZONETABLE_SHIFT (NODES_SHIFT + ZONES_SHIFT) |
d41dee36 AW |
449 | #else |
450 | #define ZONETABLE_SHIFT (SECTIONS_SHIFT + ZONES_SHIFT) | |
451 | #endif | |
348f8b6c DH |
452 | #define ZONETABLE_PGSHIFT ZONES_PGSHIFT |
453 | ||
d41dee36 AW |
454 | #if SECTIONS_WIDTH+NODES_WIDTH+ZONES_WIDTH > FLAGS_RESERVED |
455 | #error SECTIONS_WIDTH+NODES_WIDTH+ZONES_WIDTH > FLAGS_RESERVED | |
348f8b6c DH |
456 | #endif |
457 | ||
d41dee36 AW |
458 | #define ZONES_MASK ((1UL << ZONES_WIDTH) - 1) |
459 | #define NODES_MASK ((1UL << NODES_WIDTH) - 1) | |
460 | #define SECTIONS_MASK ((1UL << SECTIONS_WIDTH) - 1) | |
348f8b6c DH |
461 | #define ZONETABLE_MASK ((1UL << ZONETABLE_SHIFT) - 1) |
462 | ||
1da177e4 LT |
463 | static inline unsigned long page_zonenum(struct page *page) |
464 | { | |
348f8b6c | 465 | return (page->flags >> ZONES_PGSHIFT) & ZONES_MASK; |
1da177e4 | 466 | } |
1da177e4 LT |
467 | |
468 | struct zone; | |
469 | extern struct zone *zone_table[]; | |
470 | ||
471 | static inline struct zone *page_zone(struct page *page) | |
472 | { | |
348f8b6c DH |
473 | return zone_table[(page->flags >> ZONETABLE_PGSHIFT) & |
474 | ZONETABLE_MASK]; | |
475 | } | |
476 | ||
d41dee36 AW |
477 | static inline unsigned long page_to_nid(struct page *page) |
478 | { | |
479 | if (FLAGS_HAS_NODE) | |
480 | return (page->flags >> NODES_PGSHIFT) & NODES_MASK; | |
481 | else | |
482 | return page_zone(page)->zone_pgdat->node_id; | |
483 | } | |
484 | static inline unsigned long page_to_section(struct page *page) | |
485 | { | |
486 | return (page->flags >> SECTIONS_PGSHIFT) & SECTIONS_MASK; | |
487 | } | |
488 | ||
348f8b6c DH |
489 | static inline void set_page_zone(struct page *page, unsigned long zone) |
490 | { | |
491 | page->flags &= ~(ZONES_MASK << ZONES_PGSHIFT); | |
492 | page->flags |= (zone & ZONES_MASK) << ZONES_PGSHIFT; | |
493 | } | |
494 | static inline void set_page_node(struct page *page, unsigned long node) | |
495 | { | |
496 | page->flags &= ~(NODES_MASK << NODES_PGSHIFT); | |
497 | page->flags |= (node & NODES_MASK) << NODES_PGSHIFT; | |
1da177e4 | 498 | } |
d41dee36 AW |
499 | static inline void set_page_section(struct page *page, unsigned long section) |
500 | { | |
501 | page->flags &= ~(SECTIONS_MASK << SECTIONS_PGSHIFT); | |
502 | page->flags |= (section & SECTIONS_MASK) << SECTIONS_PGSHIFT; | |
503 | } | |
1da177e4 | 504 | |
348f8b6c | 505 | static inline void set_page_links(struct page *page, unsigned long zone, |
d41dee36 | 506 | unsigned long node, unsigned long pfn) |
1da177e4 | 507 | { |
348f8b6c DH |
508 | set_page_zone(page, zone); |
509 | set_page_node(page, node); | |
d41dee36 | 510 | set_page_section(page, pfn_to_section_nr(pfn)); |
1da177e4 LT |
511 | } |
512 | ||
513 | #ifndef CONFIG_DISCONTIGMEM | |
514 | /* The array of struct pages - for discontigmem use pgdat->lmem_map */ | |
515 | extern struct page *mem_map; | |
516 | #endif | |
517 | ||
652050ae | 518 | static __always_inline void *lowmem_page_address(struct page *page) |
1da177e4 LT |
519 | { |
520 | return __va(page_to_pfn(page) << PAGE_SHIFT); | |
521 | } | |
522 | ||
523 | #if defined(CONFIG_HIGHMEM) && !defined(WANT_PAGE_VIRTUAL) | |
524 | #define HASHED_PAGE_VIRTUAL | |
525 | #endif | |
526 | ||
527 | #if defined(WANT_PAGE_VIRTUAL) | |
528 | #define page_address(page) ((page)->virtual) | |
529 | #define set_page_address(page, address) \ | |
530 | do { \ | |
531 | (page)->virtual = (address); \ | |
532 | } while(0) | |
533 | #define page_address_init() do { } while(0) | |
534 | #endif | |
535 | ||
536 | #if defined(HASHED_PAGE_VIRTUAL) | |
537 | void *page_address(struct page *page); | |
538 | void set_page_address(struct page *page, void *virtual); | |
539 | void page_address_init(void); | |
540 | #endif | |
541 | ||
542 | #if !defined(HASHED_PAGE_VIRTUAL) && !defined(WANT_PAGE_VIRTUAL) | |
543 | #define page_address(page) lowmem_page_address(page) | |
544 | #define set_page_address(page, address) do { } while(0) | |
545 | #define page_address_init() do { } while(0) | |
546 | #endif | |
547 | ||
548 | /* | |
549 | * On an anonymous page mapped into a user virtual memory area, | |
550 | * page->mapping points to its anon_vma, not to a struct address_space; | |
551 | * with the PAGE_MAPPING_ANON bit set to distinguish it. | |
552 | * | |
553 | * Please note that, confusingly, "page_mapping" refers to the inode | |
554 | * address_space which maps the page from disk; whereas "page_mapped" | |
555 | * refers to user virtual address space into which the page is mapped. | |
556 | */ | |
557 | #define PAGE_MAPPING_ANON 1 | |
558 | ||
559 | extern struct address_space swapper_space; | |
560 | static inline struct address_space *page_mapping(struct page *page) | |
561 | { | |
562 | struct address_space *mapping = page->mapping; | |
563 | ||
564 | if (unlikely(PageSwapCache(page))) | |
565 | mapping = &swapper_space; | |
566 | else if (unlikely((unsigned long)mapping & PAGE_MAPPING_ANON)) | |
567 | mapping = NULL; | |
568 | return mapping; | |
569 | } | |
570 | ||
571 | static inline int PageAnon(struct page *page) | |
572 | { | |
573 | return ((unsigned long)page->mapping & PAGE_MAPPING_ANON) != 0; | |
574 | } | |
575 | ||
576 | /* | |
577 | * Return the pagecache index of the passed page. Regular pagecache pages | |
578 | * use ->index whereas swapcache pages use ->private | |
579 | */ | |
580 | static inline pgoff_t page_index(struct page *page) | |
581 | { | |
582 | if (unlikely(PageSwapCache(page))) | |
4c21e2f2 | 583 | return page_private(page); |
1da177e4 LT |
584 | return page->index; |
585 | } | |
586 | ||
587 | /* | |
588 | * The atomic page->_mapcount, like _count, starts from -1: | |
589 | * so that transitions both from it and to it can be tracked, | |
590 | * using atomic_inc_and_test and atomic_add_negative(-1). | |
591 | */ | |
592 | static inline void reset_page_mapcount(struct page *page) | |
593 | { | |
594 | atomic_set(&(page)->_mapcount, -1); | |
595 | } | |
596 | ||
597 | static inline int page_mapcount(struct page *page) | |
598 | { | |
599 | return atomic_read(&(page)->_mapcount) + 1; | |
600 | } | |
601 | ||
602 | /* | |
603 | * Return true if this page is mapped into pagetables. | |
604 | */ | |
605 | static inline int page_mapped(struct page *page) | |
606 | { | |
607 | return atomic_read(&(page)->_mapcount) >= 0; | |
608 | } | |
609 | ||
610 | /* | |
611 | * Error return values for the *_nopage functions | |
612 | */ | |
613 | #define NOPAGE_SIGBUS (NULL) | |
614 | #define NOPAGE_OOM ((struct page *) (-1)) | |
615 | ||
616 | /* | |
617 | * Different kinds of faults, as returned by handle_mm_fault(). | |
618 | * Used to decide whether a process gets delivered SIGBUS or | |
619 | * just gets major/minor fault counters bumped up. | |
620 | */ | |
f33ea7f4 NP |
621 | #define VM_FAULT_OOM 0x00 |
622 | #define VM_FAULT_SIGBUS 0x01 | |
623 | #define VM_FAULT_MINOR 0x02 | |
624 | #define VM_FAULT_MAJOR 0x03 | |
625 | ||
626 | /* | |
627 | * Special case for get_user_pages. | |
628 | * Must be in a distinct bit from the above VM_FAULT_ flags. | |
629 | */ | |
630 | #define VM_FAULT_WRITE 0x10 | |
1da177e4 LT |
631 | |
632 | #define offset_in_page(p) ((unsigned long)(p) & ~PAGE_MASK) | |
633 | ||
634 | extern void show_free_areas(void); | |
635 | ||
636 | #ifdef CONFIG_SHMEM | |
637 | struct page *shmem_nopage(struct vm_area_struct *vma, | |
638 | unsigned long address, int *type); | |
639 | int shmem_set_policy(struct vm_area_struct *vma, struct mempolicy *new); | |
640 | struct mempolicy *shmem_get_policy(struct vm_area_struct *vma, | |
641 | unsigned long addr); | |
642 | int shmem_lock(struct file *file, int lock, struct user_struct *user); | |
643 | #else | |
644 | #define shmem_nopage filemap_nopage | |
03b00ebc RK |
645 | |
646 | static inline int shmem_lock(struct file *file, int lock, | |
647 | struct user_struct *user) | |
648 | { | |
649 | return 0; | |
650 | } | |
651 | ||
652 | static inline int shmem_set_policy(struct vm_area_struct *vma, | |
653 | struct mempolicy *new) | |
654 | { | |
655 | return 0; | |
656 | } | |
657 | ||
658 | static inline struct mempolicy *shmem_get_policy(struct vm_area_struct *vma, | |
659 | unsigned long addr) | |
660 | { | |
661 | return NULL; | |
662 | } | |
1da177e4 LT |
663 | #endif |
664 | struct file *shmem_file_setup(char *name, loff_t size, unsigned long flags); | |
b0e15190 | 665 | extern int shmem_mmap(struct file *file, struct vm_area_struct *vma); |
1da177e4 LT |
666 | |
667 | int shmem_zero_setup(struct vm_area_struct *); | |
668 | ||
b0e15190 DH |
669 | #ifndef CONFIG_MMU |
670 | extern unsigned long shmem_get_unmapped_area(struct file *file, | |
671 | unsigned long addr, | |
672 | unsigned long len, | |
673 | unsigned long pgoff, | |
674 | unsigned long flags); | |
675 | #endif | |
676 | ||
1da177e4 LT |
677 | static inline int can_do_mlock(void) |
678 | { | |
679 | if (capable(CAP_IPC_LOCK)) | |
680 | return 1; | |
681 | if (current->signal->rlim[RLIMIT_MEMLOCK].rlim_cur != 0) | |
682 | return 1; | |
683 | return 0; | |
684 | } | |
685 | extern int user_shm_lock(size_t, struct user_struct *); | |
686 | extern void user_shm_unlock(size_t, struct user_struct *); | |
687 | ||
688 | /* | |
689 | * Parameter block passed down to zap_pte_range in exceptional cases. | |
690 | */ | |
691 | struct zap_details { | |
692 | struct vm_area_struct *nonlinear_vma; /* Check page->index if set */ | |
693 | struct address_space *check_mapping; /* Check page->mapping if set */ | |
694 | pgoff_t first_index; /* Lowest page->index to unmap */ | |
695 | pgoff_t last_index; /* Highest page->index to unmap */ | |
696 | spinlock_t *i_mmap_lock; /* For unmap_mapping_range: */ | |
1da177e4 LT |
697 | unsigned long truncate_count; /* Compare vm_truncate_count */ |
698 | }; | |
699 | ||
6aab341e | 700 | struct page *vm_normal_page(struct vm_area_struct *, unsigned long, pte_t); |
ee39b37b | 701 | unsigned long zap_page_range(struct vm_area_struct *vma, unsigned long address, |
1da177e4 | 702 | unsigned long size, struct zap_details *); |
508034a3 | 703 | unsigned long unmap_vmas(struct mmu_gather **tlb, |
1da177e4 LT |
704 | struct vm_area_struct *start_vma, unsigned long start_addr, |
705 | unsigned long end_addr, unsigned long *nr_accounted, | |
706 | struct zap_details *); | |
3bf5ee95 HD |
707 | void free_pgd_range(struct mmu_gather **tlb, unsigned long addr, |
708 | unsigned long end, unsigned long floor, unsigned long ceiling); | |
709 | void free_pgtables(struct mmu_gather **tlb, struct vm_area_struct *start_vma, | |
e0da382c | 710 | unsigned long floor, unsigned long ceiling); |
1da177e4 LT |
711 | int copy_page_range(struct mm_struct *dst, struct mm_struct *src, |
712 | struct vm_area_struct *vma); | |
713 | int zeromap_page_range(struct vm_area_struct *vma, unsigned long from, | |
714 | unsigned long size, pgprot_t prot); | |
715 | void unmap_mapping_range(struct address_space *mapping, | |
716 | loff_t const holebegin, loff_t const holelen, int even_cows); | |
717 | ||
718 | static inline void unmap_shared_mapping_range(struct address_space *mapping, | |
719 | loff_t const holebegin, loff_t const holelen) | |
720 | { | |
721 | unmap_mapping_range(mapping, holebegin, holelen, 0); | |
722 | } | |
723 | ||
724 | extern int vmtruncate(struct inode * inode, loff_t offset); | |
f6b3ec23 | 725 | extern int vmtruncate_range(struct inode * inode, loff_t offset, loff_t end); |
1da177e4 LT |
726 | extern int install_page(struct mm_struct *mm, struct vm_area_struct *vma, unsigned long addr, struct page *page, pgprot_t prot); |
727 | extern int install_file_pte(struct mm_struct *mm, struct vm_area_struct *vma, unsigned long addr, unsigned long pgoff, pgprot_t prot); | |
f33ea7f4 | 728 | |
7ee1dd3f DH |
729 | #ifdef CONFIG_MMU |
730 | extern int __handle_mm_fault(struct mm_struct *mm,struct vm_area_struct *vma, | |
731 | unsigned long address, int write_access); | |
732 | ||
733 | static inline int handle_mm_fault(struct mm_struct *mm, | |
734 | struct vm_area_struct *vma, unsigned long address, | |
735 | int write_access) | |
f33ea7f4 | 736 | { |
7ee1dd3f DH |
737 | return __handle_mm_fault(mm, vma, address, write_access) & |
738 | (~VM_FAULT_WRITE); | |
f33ea7f4 | 739 | } |
7ee1dd3f DH |
740 | #else |
741 | static inline int handle_mm_fault(struct mm_struct *mm, | |
742 | struct vm_area_struct *vma, unsigned long address, | |
743 | int write_access) | |
744 | { | |
745 | /* should never happen if there's no MMU */ | |
746 | BUG(); | |
747 | return VM_FAULT_SIGBUS; | |
748 | } | |
749 | #endif | |
f33ea7f4 | 750 | |
1da177e4 LT |
751 | extern int make_pages_present(unsigned long addr, unsigned long end); |
752 | extern int access_process_vm(struct task_struct *tsk, unsigned long addr, void *buf, int len, int write); | |
753 | void install_arg_page(struct vm_area_struct *, struct page *, unsigned long); | |
754 | ||
755 | int get_user_pages(struct task_struct *tsk, struct mm_struct *mm, unsigned long start, | |
756 | int len, int write, int force, struct page **pages, struct vm_area_struct **vmas); | |
b5810039 | 757 | void print_bad_pte(struct vm_area_struct *, pte_t, unsigned long); |
1da177e4 LT |
758 | |
759 | int __set_page_dirty_buffers(struct page *page); | |
760 | int __set_page_dirty_nobuffers(struct page *page); | |
761 | int redirty_page_for_writepage(struct writeback_control *wbc, | |
762 | struct page *page); | |
763 | int FASTCALL(set_page_dirty(struct page *page)); | |
764 | int set_page_dirty_lock(struct page *page); | |
765 | int clear_page_dirty_for_io(struct page *page); | |
766 | ||
767 | extern unsigned long do_mremap(unsigned long addr, | |
768 | unsigned long old_len, unsigned long new_len, | |
769 | unsigned long flags, unsigned long new_addr); | |
770 | ||
771 | /* | |
772 | * Prototype to add a shrinker callback for ageable caches. | |
773 | * | |
774 | * These functions are passed a count `nr_to_scan' and a gfpmask. They should | |
775 | * scan `nr_to_scan' objects, attempting to free them. | |
776 | * | |
845d3431 | 777 | * The callback must return the number of objects which remain in the cache. |
1da177e4 | 778 | * |
845d3431 | 779 | * The callback will be passed nr_to_scan == 0 when the VM is querying the |
1da177e4 LT |
780 | * cache size, so a fastpath for that case is appropriate. |
781 | */ | |
6daa0e28 | 782 | typedef int (*shrinker_t)(int nr_to_scan, gfp_t gfp_mask); |
1da177e4 LT |
783 | |
784 | /* | |
785 | * Add an aging callback. The int is the number of 'seeks' it takes | |
786 | * to recreate one of the objects that these functions age. | |
787 | */ | |
788 | ||
789 | #define DEFAULT_SEEKS 2 | |
790 | struct shrinker; | |
791 | extern struct shrinker *set_shrinker(int, shrinker_t); | |
792 | extern void remove_shrinker(struct shrinker *shrinker); | |
793 | ||
c9cfcddf LT |
794 | extern pte_t *FASTCALL(get_locked_pte(struct mm_struct *mm, unsigned long addr, spinlock_t **ptl)); |
795 | ||
1bb3630e HD |
796 | int __pud_alloc(struct mm_struct *mm, pgd_t *pgd, unsigned long address); |
797 | int __pmd_alloc(struct mm_struct *mm, pud_t *pud, unsigned long address); | |
798 | int __pte_alloc(struct mm_struct *mm, pmd_t *pmd, unsigned long address); | |
799 | int __pte_alloc_kernel(pmd_t *pmd, unsigned long address); | |
800 | ||
1da177e4 LT |
801 | /* |
802 | * The following ifdef needed to get the 4level-fixup.h header to work. | |
803 | * Remove it when 4level-fixup.h has been removed. | |
804 | */ | |
1bb3630e | 805 | #if defined(CONFIG_MMU) && !defined(__ARCH_HAS_4LEVEL_HACK) |
1da177e4 LT |
806 | static inline pud_t *pud_alloc(struct mm_struct *mm, pgd_t *pgd, unsigned long address) |
807 | { | |
1bb3630e HD |
808 | return (unlikely(pgd_none(*pgd)) && __pud_alloc(mm, pgd, address))? |
809 | NULL: pud_offset(pgd, address); | |
1da177e4 LT |
810 | } |
811 | ||
812 | static inline pmd_t *pmd_alloc(struct mm_struct *mm, pud_t *pud, unsigned long address) | |
813 | { | |
1bb3630e HD |
814 | return (unlikely(pud_none(*pud)) && __pmd_alloc(mm, pud, address))? |
815 | NULL: pmd_offset(pud, address); | |
1da177e4 | 816 | } |
1bb3630e HD |
817 | #endif /* CONFIG_MMU && !__ARCH_HAS_4LEVEL_HACK */ |
818 | ||
4c21e2f2 HD |
819 | #if NR_CPUS >= CONFIG_SPLIT_PTLOCK_CPUS |
820 | /* | |
821 | * We tuck a spinlock to guard each pagetable page into its struct page, | |
822 | * at page->private, with BUILD_BUG_ON to make sure that this will not | |
823 | * overflow into the next struct page (as it might with DEBUG_SPINLOCK). | |
824 | * When freeing, reset page->mapping so free_pages_check won't complain. | |
825 | */ | |
349aef0b | 826 | #define __pte_lockptr(page) &((page)->ptl) |
4c21e2f2 HD |
827 | #define pte_lock_init(_page) do { \ |
828 | spin_lock_init(__pte_lockptr(_page)); \ | |
829 | } while (0) | |
830 | #define pte_lock_deinit(page) ((page)->mapping = NULL) | |
831 | #define pte_lockptr(mm, pmd) ({(void)(mm); __pte_lockptr(pmd_page(*(pmd)));}) | |
832 | #else | |
833 | /* | |
834 | * We use mm->page_table_lock to guard all pagetable pages of the mm. | |
835 | */ | |
836 | #define pte_lock_init(page) do {} while (0) | |
837 | #define pte_lock_deinit(page) do {} while (0) | |
838 | #define pte_lockptr(mm, pmd) ({(void)(pmd); &(mm)->page_table_lock;}) | |
839 | #endif /* NR_CPUS < CONFIG_SPLIT_PTLOCK_CPUS */ | |
840 | ||
c74df32c HD |
841 | #define pte_offset_map_lock(mm, pmd, address, ptlp) \ |
842 | ({ \ | |
4c21e2f2 | 843 | spinlock_t *__ptl = pte_lockptr(mm, pmd); \ |
c74df32c HD |
844 | pte_t *__pte = pte_offset_map(pmd, address); \ |
845 | *(ptlp) = __ptl; \ | |
846 | spin_lock(__ptl); \ | |
847 | __pte; \ | |
848 | }) | |
849 | ||
850 | #define pte_unmap_unlock(pte, ptl) do { \ | |
851 | spin_unlock(ptl); \ | |
852 | pte_unmap(pte); \ | |
853 | } while (0) | |
854 | ||
1bb3630e HD |
855 | #define pte_alloc_map(mm, pmd, address) \ |
856 | ((unlikely(!pmd_present(*(pmd))) && __pte_alloc(mm, pmd, address))? \ | |
857 | NULL: pte_offset_map(pmd, address)) | |
858 | ||
c74df32c HD |
859 | #define pte_alloc_map_lock(mm, pmd, address, ptlp) \ |
860 | ((unlikely(!pmd_present(*(pmd))) && __pte_alloc(mm, pmd, address))? \ | |
861 | NULL: pte_offset_map_lock(mm, pmd, address, ptlp)) | |
862 | ||
1bb3630e HD |
863 | #define pte_alloc_kernel(pmd, address) \ |
864 | ((unlikely(!pmd_present(*(pmd))) && __pte_alloc_kernel(pmd, address))? \ | |
865 | NULL: pte_offset_kernel(pmd, address)) | |
1da177e4 LT |
866 | |
867 | extern void free_area_init(unsigned long * zones_size); | |
868 | extern void free_area_init_node(int nid, pg_data_t *pgdat, | |
869 | unsigned long * zones_size, unsigned long zone_start_pfn, | |
870 | unsigned long *zholes_size); | |
871 | extern void memmap_init_zone(unsigned long, int, unsigned long, unsigned long); | |
3947be19 | 872 | extern void setup_per_zone_pages_min(void); |
1da177e4 LT |
873 | extern void mem_init(void); |
874 | extern void show_mem(void); | |
875 | extern void si_meminfo(struct sysinfo * val); | |
876 | extern void si_meminfo_node(struct sysinfo *val, int nid); | |
877 | ||
e7c8d5c9 CL |
878 | #ifdef CONFIG_NUMA |
879 | extern void setup_per_cpu_pageset(void); | |
880 | #else | |
881 | static inline void setup_per_cpu_pageset(void) {} | |
882 | #endif | |
883 | ||
1da177e4 LT |
884 | /* prio_tree.c */ |
885 | void vma_prio_tree_add(struct vm_area_struct *, struct vm_area_struct *old); | |
886 | void vma_prio_tree_insert(struct vm_area_struct *, struct prio_tree_root *); | |
887 | void vma_prio_tree_remove(struct vm_area_struct *, struct prio_tree_root *); | |
888 | struct vm_area_struct *vma_prio_tree_next(struct vm_area_struct *vma, | |
889 | struct prio_tree_iter *iter); | |
890 | ||
891 | #define vma_prio_tree_foreach(vma, iter, root, begin, end) \ | |
892 | for (prio_tree_iter_init(iter, root, begin, end), vma = NULL; \ | |
893 | (vma = vma_prio_tree_next(vma, iter)); ) | |
894 | ||
895 | static inline void vma_nonlinear_insert(struct vm_area_struct *vma, | |
896 | struct list_head *list) | |
897 | { | |
898 | vma->shared.vm_set.parent = NULL; | |
899 | list_add_tail(&vma->shared.vm_set.list, list); | |
900 | } | |
901 | ||
902 | /* mmap.c */ | |
903 | extern int __vm_enough_memory(long pages, int cap_sys_admin); | |
904 | extern void vma_adjust(struct vm_area_struct *vma, unsigned long start, | |
905 | unsigned long end, pgoff_t pgoff, struct vm_area_struct *insert); | |
906 | extern struct vm_area_struct *vma_merge(struct mm_struct *, | |
907 | struct vm_area_struct *prev, unsigned long addr, unsigned long end, | |
908 | unsigned long vm_flags, struct anon_vma *, struct file *, pgoff_t, | |
909 | struct mempolicy *); | |
910 | extern struct anon_vma *find_mergeable_anon_vma(struct vm_area_struct *); | |
911 | extern int split_vma(struct mm_struct *, | |
912 | struct vm_area_struct *, unsigned long addr, int new_below); | |
913 | extern int insert_vm_struct(struct mm_struct *, struct vm_area_struct *); | |
914 | extern void __vma_link_rb(struct mm_struct *, struct vm_area_struct *, | |
915 | struct rb_node **, struct rb_node *); | |
a8fb5618 | 916 | extern void unlink_file_vma(struct vm_area_struct *); |
1da177e4 LT |
917 | extern struct vm_area_struct *copy_vma(struct vm_area_struct **, |
918 | unsigned long addr, unsigned long len, pgoff_t pgoff); | |
919 | extern void exit_mmap(struct mm_struct *); | |
119f657c | 920 | extern int may_expand_vm(struct mm_struct *mm, unsigned long npages); |
1da177e4 LT |
921 | |
922 | extern unsigned long get_unmapped_area(struct file *, unsigned long, unsigned long, unsigned long, unsigned long); | |
923 | ||
924 | extern unsigned long do_mmap_pgoff(struct file *file, unsigned long addr, | |
925 | unsigned long len, unsigned long prot, | |
926 | unsigned long flag, unsigned long pgoff); | |
927 | ||
928 | static inline unsigned long do_mmap(struct file *file, unsigned long addr, | |
929 | unsigned long len, unsigned long prot, | |
930 | unsigned long flag, unsigned long offset) | |
931 | { | |
932 | unsigned long ret = -EINVAL; | |
933 | if ((offset + PAGE_ALIGN(len)) < offset) | |
934 | goto out; | |
935 | if (!(offset & ~PAGE_MASK)) | |
936 | ret = do_mmap_pgoff(file, addr, len, prot, flag, offset >> PAGE_SHIFT); | |
937 | out: | |
938 | return ret; | |
939 | } | |
940 | ||
941 | extern int do_munmap(struct mm_struct *, unsigned long, size_t); | |
942 | ||
943 | extern unsigned long do_brk(unsigned long, unsigned long); | |
944 | ||
945 | /* filemap.c */ | |
946 | extern unsigned long page_unuse(struct page *); | |
947 | extern void truncate_inode_pages(struct address_space *, loff_t); | |
d7339071 HR |
948 | extern void truncate_inode_pages_range(struct address_space *, |
949 | loff_t lstart, loff_t lend); | |
1da177e4 LT |
950 | |
951 | /* generic vm_area_ops exported for stackable file systems */ | |
952 | extern struct page *filemap_nopage(struct vm_area_struct *, unsigned long, int *); | |
953 | extern int filemap_populate(struct vm_area_struct *, unsigned long, | |
954 | unsigned long, pgprot_t, unsigned long, int); | |
955 | ||
956 | /* mm/page-writeback.c */ | |
957 | int write_one_page(struct page *page, int wait); | |
958 | ||
959 | /* readahead.c */ | |
960 | #define VM_MAX_READAHEAD 128 /* kbytes */ | |
961 | #define VM_MIN_READAHEAD 16 /* kbytes (includes current page) */ | |
962 | #define VM_MAX_CACHE_HIT 256 /* max pages in a row in cache before | |
963 | * turning readahead off */ | |
964 | ||
965 | int do_page_cache_readahead(struct address_space *mapping, struct file *filp, | |
7361f4d8 | 966 | pgoff_t offset, unsigned long nr_to_read); |
1da177e4 | 967 | int force_page_cache_readahead(struct address_space *mapping, struct file *filp, |
7361f4d8 AM |
968 | pgoff_t offset, unsigned long nr_to_read); |
969 | unsigned long page_cache_readahead(struct address_space *mapping, | |
1da177e4 LT |
970 | struct file_ra_state *ra, |
971 | struct file *filp, | |
7361f4d8 | 972 | pgoff_t offset, |
1da177e4 LT |
973 | unsigned long size); |
974 | void handle_ra_miss(struct address_space *mapping, | |
975 | struct file_ra_state *ra, pgoff_t offset); | |
976 | unsigned long max_sane_readahead(unsigned long nr); | |
977 | ||
978 | /* Do stack extension */ | |
46dea3d0 | 979 | extern int expand_stack(struct vm_area_struct *vma, unsigned long address); |
9ab88515 | 980 | #ifdef CONFIG_IA64 |
46dea3d0 | 981 | extern int expand_upwards(struct vm_area_struct *vma, unsigned long address); |
9ab88515 | 982 | #endif |
1da177e4 LT |
983 | |
984 | /* Look up the first VMA which satisfies addr < vm_end, NULL if none. */ | |
985 | extern struct vm_area_struct * find_vma(struct mm_struct * mm, unsigned long addr); | |
986 | extern struct vm_area_struct * find_vma_prev(struct mm_struct * mm, unsigned long addr, | |
987 | struct vm_area_struct **pprev); | |
988 | ||
989 | /* Look up the first VMA which intersects the interval start_addr..end_addr-1, | |
990 | NULL if none. Assume start_addr < end_addr. */ | |
991 | static inline struct vm_area_struct * find_vma_intersection(struct mm_struct * mm, unsigned long start_addr, unsigned long end_addr) | |
992 | { | |
993 | struct vm_area_struct * vma = find_vma(mm,start_addr); | |
994 | ||
995 | if (vma && end_addr <= vma->vm_start) | |
996 | vma = NULL; | |
997 | return vma; | |
998 | } | |
999 | ||
1000 | static inline unsigned long vma_pages(struct vm_area_struct *vma) | |
1001 | { | |
1002 | return (vma->vm_end - vma->vm_start) >> PAGE_SHIFT; | |
1003 | } | |
1004 | ||
deceb6cd HD |
1005 | struct vm_area_struct *find_extend_vma(struct mm_struct *, unsigned long addr); |
1006 | struct page *vmalloc_to_page(void *addr); | |
1007 | unsigned long vmalloc_to_pfn(void *addr); | |
1008 | int remap_pfn_range(struct vm_area_struct *, unsigned long addr, | |
1009 | unsigned long pfn, unsigned long size, pgprot_t); | |
a145dd41 | 1010 | int vm_insert_page(struct vm_area_struct *, unsigned long addr, struct page *); |
deceb6cd | 1011 | |
6aab341e | 1012 | struct page *follow_page(struct vm_area_struct *, unsigned long address, |
deceb6cd HD |
1013 | unsigned int foll_flags); |
1014 | #define FOLL_WRITE 0x01 /* check pte is writable */ | |
1015 | #define FOLL_TOUCH 0x02 /* mark page accessed */ | |
1016 | #define FOLL_GET 0x04 /* do get_page on page */ | |
1017 | #define FOLL_ANON 0x08 /* give ZERO_PAGE if no pgtable */ | |
1da177e4 LT |
1018 | |
1019 | #ifdef CONFIG_PROC_FS | |
ab50b8ed | 1020 | void vm_stat_account(struct mm_struct *, unsigned long, struct file *, long); |
1da177e4 | 1021 | #else |
ab50b8ed | 1022 | static inline void vm_stat_account(struct mm_struct *mm, |
1da177e4 LT |
1023 | unsigned long flags, struct file *file, long pages) |
1024 | { | |
1025 | } | |
1026 | #endif /* CONFIG_PROC_FS */ | |
1027 | ||
1da177e4 LT |
1028 | #ifndef CONFIG_DEBUG_PAGEALLOC |
1029 | static inline void | |
1030 | kernel_map_pages(struct page *page, int numpages, int enable) | |
1031 | { | |
de5097c2 IM |
1032 | if (!PageHighMem(page) && !enable) |
1033 | mutex_debug_check_no_locks_freed(page_address(page), | |
a4fc7ab1 | 1034 | numpages * PAGE_SIZE); |
1da177e4 LT |
1035 | } |
1036 | #endif | |
1037 | ||
1038 | extern struct vm_area_struct *get_gate_vma(struct task_struct *tsk); | |
1039 | #ifdef __HAVE_ARCH_GATE_AREA | |
1040 | int in_gate_area_no_task(unsigned long addr); | |
1041 | int in_gate_area(struct task_struct *task, unsigned long addr); | |
1042 | #else | |
1043 | int in_gate_area_no_task(unsigned long addr); | |
1044 | #define in_gate_area(task, addr) ({(void)task; in_gate_area_no_task(addr);}) | |
1045 | #endif /* __HAVE_ARCH_GATE_AREA */ | |
1046 | ||
79befd0c AA |
1047 | /* /proc/<pid>/oom_adj set to -17 protects from the oom-killer */ |
1048 | #define OOM_DISABLE -17 | |
1049 | ||
9d0243bc AM |
1050 | int drop_caches_sysctl_handler(struct ctl_table *, int, struct file *, |
1051 | void __user *, size_t *, loff_t *); | |
1052 | int shrink_slab(unsigned long scanned, gfp_t gfp_mask, | |
1053 | unsigned long lru_pages); | |
1054 | void drop_pagecache(void); | |
1055 | void drop_slab(void); | |
1056 | ||
7a9166e3 LY |
1057 | #ifndef CONFIG_MMU |
1058 | #define randomize_va_space 0 | |
1059 | #else | |
a62eaf15 | 1060 | extern int randomize_va_space; |
7a9166e3 | 1061 | #endif |
a62eaf15 | 1062 | |
1da177e4 LT |
1063 | #endif /* __KERNEL__ */ |
1064 | #endif /* _LINUX_MM_H */ |