fix soft lock up at NFS mount via per-SB LRU-list of unused dentries
[deliverable/linux.git] / include / linux / page-flags.h
CommitLineData
1da177e4
LT
1/*
2 * Macros for manipulating and testing page->flags
3 */
4
5#ifndef PAGE_FLAGS_H
6#define PAGE_FLAGS_H
7
f886ed44 8#include <linux/types.h>
9223b419 9#ifndef __GENERATING_BOUNDS_H
6d777953 10#include <linux/mm_types.h>
9223b419
CL
11#include <linux/bounds.h>
12#endif /* !__GENERATING_BOUNDS_H */
f886ed44 13
1da177e4
LT
14/*
15 * Various page->flags bits:
16 *
17 * PG_reserved is set for special pages, which can never be swapped out. Some
18 * of them might not even exist (eg empty_bad_page)...
19 *
da6052f7
NP
20 * The PG_private bitflag is set on pagecache pages if they contain filesystem
21 * specific data (which is normally at page->private). It can be used by
22 * private allocations for its own usage.
1da177e4 23 *
da6052f7
NP
24 * During initiation of disk I/O, PG_locked is set. This bit is set before I/O
25 * and cleared when writeback _starts_ or when read _completes_. PG_writeback
26 * is set before writeback starts and cleared when it finishes.
27 *
28 * PG_locked also pins a page in pagecache, and blocks truncation of the file
29 * while it is held.
30 *
31 * page_waitqueue(page) is a wait queue of all tasks waiting for the page
32 * to become unlocked.
1da177e4
LT
33 *
34 * PG_uptodate tells whether the page's contents is valid. When a read
35 * completes, the page becomes uptodate, unless a disk I/O error happened.
36 *
da6052f7
NP
37 * PG_referenced, PG_reclaim are used for page reclaim for anonymous and
38 * file-backed pagecache (see mm/vmscan.c).
1da177e4
LT
39 *
40 * PG_error is set to indicate that an I/O error occurred on this page.
41 *
42 * PG_arch_1 is an architecture specific page state bit. The generic code
43 * guarantees that this bit is cleared for a page when it first is entered into
44 * the page cache.
45 *
46 * PG_highmem pages are not permanently mapped into the kernel virtual address
47 * space, they need to be kmapped separately for doing IO on the pages. The
48 * struct page (these bits with information) are always mapped into kernel
49 * address space...
da6052f7
NP
50 *
51 * PG_buddy is set to indicate that the page is free and in the buddy system
52 * (see mm/page_alloc.c).
53 *
1da177e4
LT
54 */
55
56/*
57 * Don't use the *_dontuse flags. Use the macros. Otherwise you'll break
91fc8ab3
AW
58 * locked- and dirty-page accounting.
59 *
60 * The page flags field is split into two parts, the main flags area
61 * which extends from the low bits upwards, and the fields area which
62 * extends from the high bits downwards.
63 *
64 * | FIELD | ... | FLAGS |
9223b419
CL
65 * N-1 ^ 0
66 * (NR_PAGEFLAGS)
91fc8ab3 67 *
9223b419
CL
68 * The fields area is reserved for fields mapping zone, node (for NUMA) and
69 * SPARSEMEM section (for variants of SPARSEMEM that require section ids like
70 * SPARSEMEM_EXTREME with !SPARSEMEM_VMEMMAP).
1da177e4 71 */
e2683181
CL
72enum pageflags {
73 PG_locked, /* Page is locked. Don't touch. */
74 PG_error,
75 PG_referenced,
76 PG_uptodate,
77 PG_dirty,
78 PG_lru,
79 PG_active,
80 PG_slab,
81 PG_owner_priv_1, /* Owner use. If pagecache, fs may use*/
e2683181
CL
82 PG_arch_1,
83 PG_reserved,
84 PG_private, /* If pagecache, has fs-private data */
85 PG_writeback, /* Page is under writeback */
e20b8cca
CL
86#ifdef CONFIG_PAGEFLAGS_EXTENDED
87 PG_head, /* A head page */
88 PG_tail, /* A tail page */
89#else
e2683181 90 PG_compound, /* A compound page */
e20b8cca 91#endif
e2683181
CL
92 PG_swapcache, /* Swap page: swp_entry_t in private */
93 PG_mappedtodisk, /* Has blocks allocated on-disk */
94 PG_reclaim, /* To be reclaimed asap */
e2683181 95 PG_buddy, /* Page is free, on buddy lists */
602c4d11
CL
96#ifdef CONFIG_IA64_UNCACHED_ALLOCATOR
97 PG_uncached, /* Page has been mapped as uncached */
f886ed44 98#endif
9223b419 99 __NR_PAGEFLAGS
e2683181 100};
1da177e4 101
9223b419
CL
102#ifndef __GENERATING_BOUNDS_H
103
f94a62e9
CL
104/*
105 * Macros to create function definitions for page flags
106 */
107#define TESTPAGEFLAG(uname, lname) \
108static inline int Page##uname(struct page *page) \
109 { return test_bit(PG_##lname, &page->flags); }
110
111#define SETPAGEFLAG(uname, lname) \
112static inline void SetPage##uname(struct page *page) \
113 { set_bit(PG_##lname, &page->flags); }
114
115#define CLEARPAGEFLAG(uname, lname) \
116static inline void ClearPage##uname(struct page *page) \
117 { clear_bit(PG_##lname, &page->flags); }
118
119#define __SETPAGEFLAG(uname, lname) \
120static inline void __SetPage##uname(struct page *page) \
121 { __set_bit(PG_##lname, &page->flags); }
122
123#define __CLEARPAGEFLAG(uname, lname) \
124static inline void __ClearPage##uname(struct page *page) \
125 { __clear_bit(PG_##lname, &page->flags); }
126
127#define TESTSETFLAG(uname, lname) \
128static inline int TestSetPage##uname(struct page *page) \
129 { return test_and_set_bit(PG_##lname, &page->flags); }
130
131#define TESTCLEARFLAG(uname, lname) \
132static inline int TestClearPage##uname(struct page *page) \
133 { return test_and_clear_bit(PG_##lname, &page->flags); }
134
135
136#define PAGEFLAG(uname, lname) TESTPAGEFLAG(uname, lname) \
137 SETPAGEFLAG(uname, lname) CLEARPAGEFLAG(uname, lname)
138
139#define __PAGEFLAG(uname, lname) TESTPAGEFLAG(uname, lname) \
140 __SETPAGEFLAG(uname, lname) __CLEARPAGEFLAG(uname, lname)
141
ec7cade8
CL
142#define PAGEFLAG_FALSE(uname) \
143static inline int Page##uname(struct page *page) \
144 { return 0; }
145
f94a62e9
CL
146#define TESTSCFLAG(uname, lname) \
147 TESTSETFLAG(uname, lname) TESTCLEARFLAG(uname, lname)
148
6a1e7f77
CL
149struct page; /* forward declaration */
150
151PAGEFLAG(Locked, locked) TESTSCFLAG(Locked, locked)
152PAGEFLAG(Error, error)
153PAGEFLAG(Referenced, referenced) TESTCLEARFLAG(Referenced, referenced)
154PAGEFLAG(Dirty, dirty) TESTSCFLAG(Dirty, dirty) __CLEARPAGEFLAG(Dirty, dirty)
155PAGEFLAG(LRU, lru) __CLEARPAGEFLAG(LRU, lru)
156PAGEFLAG(Active, active) __CLEARPAGEFLAG(Active, active)
157__PAGEFLAG(Slab, slab)
0a128b2b
CL
158PAGEFLAG(Checked, owner_priv_1) /* Used by some filesystems */
159PAGEFLAG(Pinned, owner_priv_1) TESTSCFLAG(Pinned, owner_priv_1) /* Xen */
0e91398f 160PAGEFLAG(SavePinned, dirty); /* Xen */
6a1e7f77
CL
161PAGEFLAG(Reserved, reserved) __CLEARPAGEFLAG(Reserved, reserved)
162PAGEFLAG(Private, private) __CLEARPAGEFLAG(Private, private)
163 __SETPAGEFLAG(Private, private)
164
165/*
166 * Only test-and-set exist for PG_writeback. The unconditional operators are
167 * risky: they bypass page accounting.
168 */
169TESTPAGEFLAG(Writeback, writeback) TESTSCFLAG(Writeback, writeback)
170__PAGEFLAG(Buddy, buddy)
171PAGEFLAG(MappedToDisk, mappedtodisk)
172
173/* PG_readahead is only used for file reads; PG_reclaim is only for writes */
174PAGEFLAG(Reclaim, reclaim) TESTCLEARFLAG(Reclaim, reclaim)
0a128b2b 175PAGEFLAG(Readahead, reclaim) /* Reminder to do async read-ahead */
6a1e7f77
CL
176
177#ifdef CONFIG_HIGHMEM
1da177e4 178/*
6a1e7f77
CL
179 * Must use a macro here due to header dependency issues. page_zone() is not
180 * available at this point.
1da177e4 181 */
0a128b2b 182#define PageHighMem(__p) is_highmem(page_zone(__p))
6a1e7f77 183#else
ec7cade8 184PAGEFLAG_FALSE(HighMem)
6a1e7f77
CL
185#endif
186
187#ifdef CONFIG_SWAP
188PAGEFLAG(SwapCache, swapcache)
189#else
ec7cade8 190PAGEFLAG_FALSE(SwapCache)
6a1e7f77
CL
191#endif
192
602c4d11 193#ifdef CONFIG_IA64_UNCACHED_ALLOCATOR
6a1e7f77 194PAGEFLAG(Uncached, uncached)
602c4d11 195#else
ec7cade8 196PAGEFLAG_FALSE(Uncached)
6a1e7f77 197#endif
1da177e4 198
0ed361de
NP
199static inline int PageUptodate(struct page *page)
200{
201 int ret = test_bit(PG_uptodate, &(page)->flags);
202
203 /*
204 * Must ensure that the data we read out of the page is loaded
205 * _after_ we've loaded page->flags to check for PageUptodate.
206 * We can skip the barrier if the page is not uptodate, because
207 * we wouldn't be reading anything from it.
208 *
209 * See SetPageUptodate() for the other side of the story.
210 */
211 if (ret)
212 smp_rmb();
213
214 return ret;
215}
216
217static inline void __SetPageUptodate(struct page *page)
218{
219 smp_wmb();
220 __set_bit(PG_uptodate, &(page)->flags);
f6ac2354 221#ifdef CONFIG_S390
0ed361de
NP
222 page_clear_dirty(page);
223#endif
224}
225
2dcea57a
HC
226static inline void SetPageUptodate(struct page *page)
227{
0ed361de 228#ifdef CONFIG_S390
2dcea57a 229 if (!test_and_set_bit(PG_uptodate, &page->flags))
6c210482 230 page_clear_dirty(page);
f6ac2354 231#else
0ed361de
NP
232 /*
233 * Memory barrier must be issued before setting the PG_uptodate bit,
234 * so that all previous stores issued in order to bring the page
235 * uptodate are actually visible before PageUptodate becomes true.
236 *
237 * s390 doesn't need an explicit smp_wmb here because the test and
238 * set bit already provides full barriers.
239 */
240 smp_wmb();
241 set_bit(PG_uptodate, &(page)->flags);
1da177e4 242#endif
0ed361de
NP
243}
244
6a1e7f77 245CLEARPAGEFLAG(Uptodate, uptodate)
1da177e4 246
6a1e7f77 247extern void cancel_dirty_page(struct page *page, unsigned int account_size);
d77c2d7c 248
6a1e7f77
CL
249int test_clear_page_writeback(struct page *page);
250int test_set_page_writeback(struct page *page);
1da177e4 251
6a1e7f77
CL
252static inline void set_page_writeback(struct page *page)
253{
254 test_set_page_writeback(page);
255}
1da177e4 256
e20b8cca
CL
257#ifdef CONFIG_PAGEFLAGS_EXTENDED
258/*
259 * System with lots of page flags available. This allows separate
260 * flags for PageHead() and PageTail() checks of compound pages so that bit
261 * tests can be used in performance sensitive paths. PageCompound is
262 * generally not used in hot code paths.
263 */
264__PAGEFLAG(Head, head)
265__PAGEFLAG(Tail, tail)
266
267static inline int PageCompound(struct page *page)
268{
269 return page->flags & ((1L << PG_head) | (1L << PG_tail));
270
271}
272#else
273/*
274 * Reduce page flag use as much as possible by overlapping
275 * compound page flags with the flags used for page cache pages. Possible
276 * because PageCompound is always set for compound pages and not for
277 * pages on the LRU and/or pagecache.
278 */
6a1e7f77
CL
279TESTPAGEFLAG(Compound, compound)
280__PAGEFLAG(Head, compound)
1da177e4 281
d85f3385 282/*
6d777953 283 * PG_reclaim is used in combination with PG_compound to mark the
6a1e7f77
CL
284 * head and tail of a compound page. This saves one page flag
285 * but makes it impossible to use compound pages for the page cache.
286 * The PG_reclaim bit would have to be used for reclaim or readahead
287 * if compound pages enter the page cache.
6d777953
CL
288 *
289 * PG_compound & PG_reclaim => Tail page
290 * PG_compound & ~PG_reclaim => Head page
d85f3385 291 */
6d777953
CL
292#define PG_head_tail_mask ((1L << PG_compound) | (1L << PG_reclaim))
293
6a1e7f77
CL
294static inline int PageTail(struct page *page)
295{
296 return ((page->flags & PG_head_tail_mask) == PG_head_tail_mask);
297}
6d777953
CL
298
299static inline void __SetPageTail(struct page *page)
300{
301 page->flags |= PG_head_tail_mask;
302}
303
304static inline void __ClearPageTail(struct page *page)
305{
306 page->flags &= ~PG_head_tail_mask;
307}
308
e20b8cca 309#endif /* !PAGEFLAGS_EXTENDED */
dfa7e20c
RA
310
311#define PAGE_FLAGS (1 << PG_lru | 1 << PG_private | 1 << PG_locked | \
312 1 << PG_buddy | 1 << PG_writeback | \
313 1 << PG_slab | 1 << PG_swapcache | 1 << PG_active)
314
315/*
316 * Flags checked in bad_page(). Pages on the free list should not have
317 * these flags set. It they are, there is a problem.
318 */
319#define PAGE_FLAGS_CLEAR_WHEN_BAD (PAGE_FLAGS | 1 << PG_reclaim | 1 << PG_dirty)
320
321/*
322 * Flags checked when a page is freed. Pages being freed should not have
323 * these flags set. It they are, there is a problem.
324 */
325#define PAGE_FLAGS_CHECK_AT_FREE (PAGE_FLAGS | 1 << PG_reserved)
326
327/*
328 * Flags checked when a page is prepped for return by the page allocator.
329 * Pages being prepped should not have these flags set. It they are, there
330 * is a problem.
331 */
332#define PAGE_FLAGS_CHECK_AT_PREP (PAGE_FLAGS | 1 << PG_reserved | 1 << PG_dirty)
333
9223b419 334#endif /* !__GENERATING_BOUNDS_H */
1da177e4 335#endif /* PAGE_FLAGS_H */
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