slob: Define page struct fields used in mm_types.h
[deliverable/linux.git] / include / linux / mm_types.h
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1#ifndef _LINUX_MM_TYPES_H
2#define _LINUX_MM_TYPES_H
3
4f9a58d7 4#include <linux/auxvec.h>
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5#include <linux/types.h>
6#include <linux/threads.h>
7#include <linux/list.h>
8#include <linux/spinlock.h>
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9#include <linux/prio_tree.h>
10#include <linux/rbtree.h>
11#include <linux/rwsem.h>
12#include <linux/completion.h>
cddb8a5c 13#include <linux/cpumask.h>
6a11f75b 14#include <linux/page-debug-flags.h>
d4b3b638 15#include <linux/uprobes.h>
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16#include <asm/page.h>
17#include <asm/mmu.h>
5b99cd0e 18
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19#ifndef AT_VECTOR_SIZE_ARCH
20#define AT_VECTOR_SIZE_ARCH 0
21#endif
22#define AT_VECTOR_SIZE (2*(AT_VECTOR_SIZE_ARCH + AT_VECTOR_SIZE_BASE + 1))
23
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24struct address_space;
25
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26#define USE_SPLIT_PTLOCKS (NR_CPUS >= CONFIG_SPLIT_PTLOCK_CPUS)
27
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28/*
29 * Each physical page in the system has a struct page associated with
30 * it to keep track of whatever it is we are using the page for at the
31 * moment. Note that we have no way to track which tasks are using
32 * a page, though if it is a pagecache page, rmap structures can tell us
33 * who is mapping it.
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34 *
35 * The objects in struct page are organized in double word blocks in
36 * order to allows us to use atomic double word operations on portions
37 * of struct page. That is currently only used by slub but the arrangement
38 * allows the use of atomic double word operations on the flags/mapping
39 * and lru list pointers also.
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40 */
41struct page {
fc9bb8c7 42 /* First double word block */
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43 unsigned long flags; /* Atomic flags, some possibly
44 * updated asynchronously */
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45 struct address_space *mapping; /* If low bit clear, points to
46 * inode address_space, or NULL.
47 * If page mapped as anonymous
48 * memory, low bit is set, and
49 * it points to anon_vma object:
50 * see PAGE_MAPPING_ANON below.
51 */
52 /* Second double word */
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53 struct {
54 union {
fc9bb8c7 55 pgoff_t index; /* Our offset within mapping. */
b8c24c4a 56 void *freelist; /* slub/slob first free object */
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57 };
58
59 union {
60 /* Used for cmpxchg_double in slub */
61 unsigned long counters;
62
63 struct {
64
65 union {
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66 /*
67 * Count of ptes mapped in
68 * mms, to show when page is
69 * mapped & limit reverse map
70 * searches.
71 *
72 * Used also for tail pages
73 * refcounting instead of
74 * _count. Tail pages cannot
75 * be mapped and keeping the
76 * tail page _count zero at
77 * all times guarantees
78 * get_page_unless_zero() will
79 * never succeed on tail
80 * pages.
81 */
82 atomic_t _mapcount;
fc9bb8c7 83
b8c24c4a 84 struct { /* SLUB */
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85 unsigned inuse:16;
86 unsigned objects:15;
87 unsigned frozen:1;
88 };
b8c24c4a 89 int units; /* SLOB */
3adf004d 90 };
013e8963 91 atomic_t _count; /* Usage count, see below. */
fc9bb8c7 92 };
39b26464 93 };
81819f0f 94 };
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95
96 /* Third double word block */
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97 union {
98 struct list_head lru; /* Pageout list, eg. active_list
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99 * protected by zone->lru_lock !
100 */
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101 struct { /* slub per cpu partial pages */
102 struct page *next; /* Next partial slab */
103#ifdef CONFIG_64BIT
104 int pages; /* Nr of partial slabs left */
105 int pobjects; /* Approximate # of objects */
106#else
107 short int pages;
108 short int pobjects;
109#endif
110 };
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111
112 struct list_head list; /* slobs list of pages */
49e22585 113 };
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114
115 /* Remainder is not double word aligned */
5b99cd0e 116 union {
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117 unsigned long private; /* Mapping-private opaque data:
118 * usually used for buffer_heads
119 * if PagePrivate set; used for
120 * swp_entry_t if PageSwapCache;
121 * indicates order in the buddy
122 * system if PG_buddy is set.
123 */
f7d0b926 124#if USE_SPLIT_PTLOCKS
fc9bb8c7 125 spinlock_t ptl;
5b99cd0e 126#endif
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127 struct kmem_cache *slab; /* SLUB: Pointer to slab */
128 struct page *first_page; /* Compound tail pages */
81819f0f 129 };
fc9bb8c7 130
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131 /*
132 * On machines where all RAM is mapped into kernel address space,
133 * we can simply calculate the virtual address. On machines with
134 * highmem some memory is mapped into kernel virtual memory
135 * dynamically, so we need a place to store that address.
136 * Note that this field could be 16 bits on x86 ... ;)
137 *
138 * Architectures with slow multiplication can define
139 * WANT_PAGE_VIRTUAL in asm/page.h
140 */
141#if defined(WANT_PAGE_VIRTUAL)
142 void *virtual; /* Kernel virtual address (NULL if
143 not kmapped, ie. highmem) */
144#endif /* WANT_PAGE_VIRTUAL */
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145#ifdef CONFIG_WANT_PAGE_DEBUG_FLAGS
146 unsigned long debug_flags; /* Use atomic bitops on this */
147#endif
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148
149#ifdef CONFIG_KMEMCHECK
150 /*
151 * kmemcheck wants to track the status of each byte in a page; this
152 * is a pointer to such a status block. NULL if not tracked.
153 */
154 void *shadow;
155#endif
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156}
157/*
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158 * The struct page can be forced to be double word aligned so that atomic ops
159 * on double words work. The SLUB allocator can make use of such a feature.
fc9bb8c7 160 */
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161#ifdef CONFIG_HAVE_ALIGNED_STRUCT_PAGE
162 __aligned(2 * sizeof(unsigned long))
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163#endif
164;
5b99cd0e 165
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166struct page_frag {
167 struct page *page;
168#if (BITS_PER_LONG > 32) || (PAGE_SIZE >= 65536)
169 __u32 offset;
170 __u32 size;
171#else
172 __u16 offset;
173 __u16 size;
174#endif
175};
176
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177typedef unsigned long __nocast vm_flags_t;
178
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179/*
180 * A region containing a mapping of a non-memory backed file under NOMMU
181 * conditions. These are held in a global tree and are pinned by the VMAs that
182 * map parts of them.
183 */
184struct vm_region {
185 struct rb_node vm_rb; /* link in global region tree */
ca16d140 186 vm_flags_t vm_flags; /* VMA vm_flags */
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187 unsigned long vm_start; /* start address of region */
188 unsigned long vm_end; /* region initialised to here */
dd8632a1 189 unsigned long vm_top; /* region allocated to here */
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190 unsigned long vm_pgoff; /* the offset in vm_file corresponding to vm_start */
191 struct file *vm_file; /* the backing file or NULL */
192
1e2ae599 193 int vm_usage; /* region usage count (access under nommu_region_sem) */
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194 bool vm_icache_flushed : 1; /* true if the icache has been flushed for
195 * this region */
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196};
197
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198/*
199 * This struct defines a memory VMM memory area. There is one of these
200 * per VM-area/task. A VM area is any part of the process virtual memory
201 * space that has a special rule for the page-fault handlers (ie a shared
202 * library, the executable area etc).
203 */
204struct vm_area_struct {
205 struct mm_struct * vm_mm; /* The address space we belong to. */
206 unsigned long vm_start; /* Our start address within vm_mm. */
207 unsigned long vm_end; /* The first byte after our end address
208 within vm_mm. */
209
210 /* linked list of VM areas per task, sorted by address */
297c5eee 211 struct vm_area_struct *vm_next, *vm_prev;
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212
213 pgprot_t vm_page_prot; /* Access permissions of this VMA. */
605d9288 214 unsigned long vm_flags; /* Flags, see mm.h. */
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215
216 struct rb_node vm_rb;
217
218 /*
219 * For areas with an address space and backing store,
220 * linkage into the address_space->i_mmap prio tree, or
221 * linkage to the list of like vmas hanging off its node, or
222 * linkage of vma in the address_space->i_mmap_nonlinear list.
223 */
224 union {
225 struct {
226 struct list_head list;
227 void *parent; /* aligns with prio_tree_node parent */
228 struct vm_area_struct *head;
229 } vm_set;
230
231 struct raw_prio_tree_node prio_tree_node;
232 } shared;
233
234 /*
235 * A file's MAP_PRIVATE vma can be in both i_mmap tree and anon_vma
236 * list, after a COW of one of the file pages. A MAP_SHARED vma
237 * can only be in the i_mmap tree. An anonymous MAP_PRIVATE, stack
238 * or brk vma (with NULL file) can only be in an anon_vma list.
239 */
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240 struct list_head anon_vma_chain; /* Serialized by mmap_sem &
241 * page_table_lock */
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242 struct anon_vma *anon_vma; /* Serialized by page_table_lock */
243
244 /* Function pointers to deal with this struct. */
f0f37e2f 245 const struct vm_operations_struct *vm_ops;
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246
247 /* Information about our backing store: */
248 unsigned long vm_pgoff; /* Offset (within vm_file) in PAGE_SIZE
249 units, *not* PAGE_CACHE_SIZE */
250 struct file * vm_file; /* File we map to (can be NULL). */
251 void * vm_private_data; /* was vm_pte (shared mem) */
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252
253#ifndef CONFIG_MMU
8feae131 254 struct vm_region *vm_region; /* NOMMU mapping region */
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255#endif
256#ifdef CONFIG_NUMA
257 struct mempolicy *vm_policy; /* NUMA policy for the VMA */
258#endif
259};
260
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261struct core_thread {
262 struct task_struct *task;
263 struct core_thread *next;
264};
265
32ecb1f2 266struct core_state {
c5f1cc8c 267 atomic_t nr_threads;
b564daf8 268 struct core_thread dumper;
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269 struct completion startup;
270};
271
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272enum {
273 MM_FILEPAGES,
274 MM_ANONPAGES,
b084d435 275 MM_SWAPENTS,
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276 NR_MM_COUNTERS
277};
278
53bddb4e 279#if USE_SPLIT_PTLOCKS && defined(CONFIG_MMU)
34e55232 280#define SPLIT_RSS_COUNTING
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281/* per-thread cached information, */
282struct task_rss_stat {
283 int events; /* for synchronization threshold */
284 int count[NR_MM_COUNTERS];
285};
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286#endif /* USE_SPLIT_PTLOCKS */
287
d559db08 288struct mm_rss_stat {
172703b0 289 atomic_long_t count[NR_MM_COUNTERS];
d559db08 290};
d559db08 291
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292struct mm_struct {
293 struct vm_area_struct * mmap; /* list of VMAs */
294 struct rb_root mm_rb;
295 struct vm_area_struct * mmap_cache; /* last find_vma result */
efc1a3b1 296#ifdef CONFIG_MMU
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297 unsigned long (*get_unmapped_area) (struct file *filp,
298 unsigned long addr, unsigned long len,
299 unsigned long pgoff, unsigned long flags);
300 void (*unmap_area) (struct mm_struct *mm, unsigned long addr);
efc1a3b1 301#endif
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302 unsigned long mmap_base; /* base of mmap area */
303 unsigned long task_size; /* size of task vm space */
304 unsigned long cached_hole_size; /* if non-zero, the largest hole below free_area_cache */
305 unsigned long free_area_cache; /* first hole of size cached_hole_size or larger */
306 pgd_t * pgd;
307 atomic_t mm_users; /* How many users with user space? */
308 atomic_t mm_count; /* How many references to "struct mm_struct" (users count as 1) */
309 int map_count; /* number of VMAs */
481b4bb5 310
c92ff1bd 311 spinlock_t page_table_lock; /* Protects page tables and some counters */
481b4bb5 312 struct rw_semaphore mmap_sem;
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313
314 struct list_head mmlist; /* List of maybe swapped mm's. These are globally strung
315 * together off init_mm.mmlist, and are protected
316 * by mmlist_lock
317 */
318
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319
320 unsigned long hiwater_rss; /* High-watermark of RSS usage */
321 unsigned long hiwater_vm; /* High-water virtual memory usage */
322
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323 unsigned long total_vm; /* Total pages mapped */
324 unsigned long locked_vm; /* Pages that have PG_mlocked set */
325 unsigned long pinned_vm; /* Refcount permanently increased */
326 unsigned long shared_vm; /* Shared pages (files) */
327 unsigned long exec_vm; /* VM_EXEC & ~VM_WRITE */
328 unsigned long stack_vm; /* VM_GROWSUP/DOWN */
329 unsigned long reserved_vm; /* VM_RESERVED|VM_IO pages */
330 unsigned long def_flags;
331 unsigned long nr_ptes; /* Page table pages */
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332 unsigned long start_code, end_code, start_data, end_data;
333 unsigned long start_brk, brk, start_stack;
334 unsigned long arg_start, arg_end, env_start, env_end;
335
336 unsigned long saved_auxv[AT_VECTOR_SIZE]; /* for /proc/PID/auxv */
337
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338 /*
339 * Special counters, in some configurations protected by the
340 * page_table_lock, in other configurations by being atomic.
341 */
342 struct mm_rss_stat rss_stat;
343
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344 struct linux_binfmt *binfmt;
345
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346 cpumask_var_t cpu_vm_mask_var;
347
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348 /* Architecture-specific MM context */
349 mm_context_t context;
350
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351 unsigned long flags; /* Must use atomic bitops to access the bits */
352
a94e2d40 353 struct core_state *core_state; /* coredumping support */
858f0993 354#ifdef CONFIG_AIO
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355 spinlock_t ioctx_lock;
356 struct hlist_head ioctx_list;
858f0993 357#endif
cf475ad2 358#ifdef CONFIG_MM_OWNER
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359 /*
360 * "owner" points to a task that is regarded as the canonical
361 * user/owner of this mm. All of the following must be true in
362 * order for it to be changed:
363 *
364 * current == mm->owner
365 * current->mm != mm
366 * new_owner->mm == mm
367 * new_owner->alloc_lock is held
368 */
4d2deb40 369 struct task_struct __rcu *owner;
78fb7466 370#endif
925d1c40 371
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372 /* store ref to file /proc/<pid>/exe symlink points to */
373 struct file *exe_file;
374 unsigned long num_exe_file_vmas;
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375#ifdef CONFIG_MMU_NOTIFIER
376 struct mmu_notifier_mm *mmu_notifier_mm;
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377#endif
378#ifdef CONFIG_TRANSPARENT_HUGEPAGE
379 pgtable_t pmd_huge_pte; /* protected by page_table_lock */
cddb8a5c 380#endif
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381#ifdef CONFIG_CPUMASK_OFFSTACK
382 struct cpumask cpumask_allocation;
383#endif
d4b3b638 384 struct uprobes_state uprobes_state;
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385};
386
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387static inline void mm_init_cpumask(struct mm_struct *mm)
388{
389#ifdef CONFIG_CPUMASK_OFFSTACK
390 mm->cpu_vm_mask_var = &mm->cpumask_allocation;
391#endif
392}
393
45e575ab 394/* Future-safe accessor for struct mm_struct's cpu_vm_mask. */
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395static inline cpumask_t *mm_cpumask(struct mm_struct *mm)
396{
397 return mm->cpu_vm_mask_var;
398}
45e575ab 399
5b99cd0e 400#endif /* _LINUX_MM_TYPES_H */
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