page-flags.h 14 KB

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  1. /*
  2. * Macros for manipulating and testing page->flags
  3. */
  4. #ifndef PAGE_FLAGS_H
  5. #define PAGE_FLAGS_H
  6. #include <linux/percpu.h>
  7. #include <linux/cache.h>
  8. #include <asm/pgtable.h>
  9. /*
  10. * Various page->flags bits:
  11. *
  12. * PG_reserved is set for special pages, which can never be swapped out. Some
  13. * of them might not even exist (eg empty_bad_page)...
  14. *
  15. * The PG_private bitflag is set if page->private contains a valid value.
  16. *
  17. * During disk I/O, PG_locked is used. This bit is set before I/O and
  18. * reset when I/O completes. page_waitqueue(page) is a wait queue of all tasks
  19. * waiting for the I/O on this page to complete.
  20. *
  21. * PG_uptodate tells whether the page's contents is valid. When a read
  22. * completes, the page becomes uptodate, unless a disk I/O error happened.
  23. *
  24. * For choosing which pages to swap out, inode pages carry a PG_referenced bit,
  25. * which is set any time the system accesses that page through the (mapping,
  26. * index) hash table. This referenced bit, together with the referenced bit
  27. * in the page tables, is used to manipulate page->age and move the page across
  28. * the active, inactive_dirty and inactive_clean lists.
  29. *
  30. * Note that the referenced bit, the page->lru list_head and the active,
  31. * inactive_dirty and inactive_clean lists are protected by the
  32. * zone->lru_lock, and *NOT* by the usual PG_locked bit!
  33. *
  34. * PG_error is set to indicate that an I/O error occurred on this page.
  35. *
  36. * PG_arch_1 is an architecture specific page state bit. The generic code
  37. * guarantees that this bit is cleared for a page when it first is entered into
  38. * the page cache.
  39. *
  40. * PG_highmem pages are not permanently mapped into the kernel virtual address
  41. * space, they need to be kmapped separately for doing IO on the pages. The
  42. * struct page (these bits with information) are always mapped into kernel
  43. * address space...
  44. */
  45. /*
  46. * Don't use the *_dontuse flags. Use the macros. Otherwise you'll break
  47. * locked- and dirty-page accounting. The top eight bits of page->flags are
  48. * used for page->zone, so putting flag bits there doesn't work.
  49. */
  50. #define PG_locked 0 /* Page is locked. Don't touch. */
  51. #define PG_error 1
  52. #define PG_referenced 2
  53. #define PG_uptodate 3
  54. #define PG_dirty 4
  55. #define PG_lru 5
  56. #define PG_active 6
  57. #define PG_slab 7 /* slab debug (Suparna wants this) */
  58. #define PG_checked 8 /* kill me in 2.5.<early>. */
  59. #define PG_arch_1 9
  60. #define PG_reserved 10
  61. #define PG_private 11 /* Has something at ->private */
  62. #define PG_writeback 12 /* Page is under writeback */
  63. #define PG_nosave 13 /* Used for system suspend/resume */
  64. #define PG_compound 14 /* Part of a compound page */
  65. #define PG_swapcache 15 /* Swap page: swp_entry_t in private */
  66. #define PG_mappedtodisk 16 /* Has blocks allocated on-disk */
  67. #define PG_reclaim 17 /* To be reclaimed asap */
  68. #define PG_nosave_free 18 /* Free, should not be written */
  69. #define PG_uncached 19 /* Page has been mapped as uncached */
  70. /*
  71. * Global page accounting. One instance per CPU. Only unsigned longs are
  72. * allowed.
  73. *
  74. * - Fields can be modified with xxx_page_state and xxx_page_state_zone at
  75. * any time safely (which protects the instance from modification by
  76. * interrupt.
  77. * - The __xxx_page_state variants can be used safely when interrupts are
  78. * disabled.
  79. * - The __xxx_page_state variants can be used if the field is only
  80. * modified from process context, or only modified from interrupt context.
  81. * In this case, the field should be commented here.
  82. */
  83. struct page_state {
  84. unsigned long nr_dirty; /* Dirty writeable pages */
  85. unsigned long nr_writeback; /* Pages under writeback */
  86. unsigned long nr_unstable; /* NFS unstable pages */
  87. unsigned long nr_page_table_pages;/* Pages used for pagetables */
  88. unsigned long nr_mapped; /* mapped into pagetables.
  89. * only modified from process context */
  90. unsigned long nr_slab; /* In slab */
  91. #define GET_PAGE_STATE_LAST nr_slab
  92. /*
  93. * The below are zeroed by get_page_state(). Use get_full_page_state()
  94. * to add up all these.
  95. */
  96. unsigned long pgpgin; /* Disk reads */
  97. unsigned long pgpgout; /* Disk writes */
  98. unsigned long pswpin; /* swap reads */
  99. unsigned long pswpout; /* swap writes */
  100. unsigned long pgalloc_high; /* page allocations */
  101. unsigned long pgalloc_normal;
  102. unsigned long pgalloc_dma32;
  103. unsigned long pgalloc_dma;
  104. unsigned long pgfree; /* page freeings */
  105. unsigned long pgactivate; /* pages moved inactive->active */
  106. unsigned long pgdeactivate; /* pages moved active->inactive */
  107. unsigned long pgfault; /* faults (major+minor) */
  108. unsigned long pgmajfault; /* faults (major only) */
  109. unsigned long pgrefill_high; /* inspected in refill_inactive_zone */
  110. unsigned long pgrefill_normal;
  111. unsigned long pgrefill_dma32;
  112. unsigned long pgrefill_dma;
  113. unsigned long pgsteal_high; /* total highmem pages reclaimed */
  114. unsigned long pgsteal_normal;
  115. unsigned long pgsteal_dma32;
  116. unsigned long pgsteal_dma;
  117. unsigned long pgscan_kswapd_high;/* total highmem pages scanned */
  118. unsigned long pgscan_kswapd_normal;
  119. unsigned long pgscan_kswapd_dma32;
  120. unsigned long pgscan_kswapd_dma;
  121. unsigned long pgscan_direct_high;/* total highmem pages scanned */
  122. unsigned long pgscan_direct_normal;
  123. unsigned long pgscan_direct_dma32;
  124. unsigned long pgscan_direct_dma;
  125. unsigned long pginodesteal; /* pages reclaimed via inode freeing */
  126. unsigned long slabs_scanned; /* slab objects scanned */
  127. unsigned long kswapd_steal; /* pages reclaimed by kswapd */
  128. unsigned long kswapd_inodesteal;/* reclaimed via kswapd inode freeing */
  129. unsigned long pageoutrun; /* kswapd's calls to page reclaim */
  130. unsigned long allocstall; /* direct reclaim calls */
  131. unsigned long pgrotated; /* pages rotated to tail of the LRU */
  132. unsigned long nr_bounce; /* pages for bounce buffers */
  133. };
  134. extern void get_page_state(struct page_state *ret);
  135. extern void get_page_state_node(struct page_state *ret, int node);
  136. extern void get_full_page_state(struct page_state *ret);
  137. extern unsigned long read_page_state_offset(unsigned long offset);
  138. extern void mod_page_state_offset(unsigned long offset, unsigned long delta);
  139. extern void __mod_page_state_offset(unsigned long offset, unsigned long delta);
  140. #define read_page_state(member) \
  141. read_page_state_offset(offsetof(struct page_state, member))
  142. #define mod_page_state(member, delta) \
  143. mod_page_state_offset(offsetof(struct page_state, member), (delta))
  144. #define __mod_page_state(member, delta) \
  145. __mod_page_state_offset(offsetof(struct page_state, member), (delta))
  146. #define inc_page_state(member) mod_page_state(member, 1UL)
  147. #define dec_page_state(member) mod_page_state(member, 0UL - 1)
  148. #define add_page_state(member,delta) mod_page_state(member, (delta))
  149. #define sub_page_state(member,delta) mod_page_state(member, 0UL - (delta))
  150. #define __inc_page_state(member) __mod_page_state(member, 1UL)
  151. #define __dec_page_state(member) __mod_page_state(member, 0UL - 1)
  152. #define __add_page_state(member,delta) __mod_page_state(member, (delta))
  153. #define __sub_page_state(member,delta) __mod_page_state(member, 0UL - (delta))
  154. #define page_state(member) (*__page_state(offsetof(struct page_state, member)))
  155. #define state_zone_offset(zone, member) \
  156. ({ \
  157. unsigned offset; \
  158. if (is_highmem(zone)) \
  159. offset = offsetof(struct page_state, member##_high); \
  160. else if (is_normal(zone)) \
  161. offset = offsetof(struct page_state, member##_normal); \
  162. else if (is_dma32(zone)) \
  163. offset = offsetof(struct page_state, member##_dma32); \
  164. else \
  165. offset = offsetof(struct page_state, member##_dma); \
  166. offset; \
  167. })
  168. #define __mod_page_state_zone(zone, member, delta) \
  169. do { \
  170. __mod_page_state_offset(state_zone_offset(zone, member), (delta)); \
  171. } while (0)
  172. #define mod_page_state_zone(zone, member, delta) \
  173. do { \
  174. mod_page_state_offset(state_zone_offset(zone, member), (delta)); \
  175. } while (0)
  176. /*
  177. * Manipulation of page state flags
  178. */
  179. #define PageLocked(page) \
  180. test_bit(PG_locked, &(page)->flags)
  181. #define SetPageLocked(page) \
  182. set_bit(PG_locked, &(page)->flags)
  183. #define TestSetPageLocked(page) \
  184. test_and_set_bit(PG_locked, &(page)->flags)
  185. #define ClearPageLocked(page) \
  186. clear_bit(PG_locked, &(page)->flags)
  187. #define TestClearPageLocked(page) \
  188. test_and_clear_bit(PG_locked, &(page)->flags)
  189. #define PageError(page) test_bit(PG_error, &(page)->flags)
  190. #define SetPageError(page) set_bit(PG_error, &(page)->flags)
  191. #define ClearPageError(page) clear_bit(PG_error, &(page)->flags)
  192. #define PageReferenced(page) test_bit(PG_referenced, &(page)->flags)
  193. #define SetPageReferenced(page) set_bit(PG_referenced, &(page)->flags)
  194. #define ClearPageReferenced(page) clear_bit(PG_referenced, &(page)->flags)
  195. #define TestClearPageReferenced(page) test_and_clear_bit(PG_referenced, &(page)->flags)
  196. #define PageUptodate(page) test_bit(PG_uptodate, &(page)->flags)
  197. #ifndef SetPageUptodate
  198. #define SetPageUptodate(page) set_bit(PG_uptodate, &(page)->flags)
  199. #endif
  200. #define ClearPageUptodate(page) clear_bit(PG_uptodate, &(page)->flags)
  201. #define PageDirty(page) test_bit(PG_dirty, &(page)->flags)
  202. #define SetPageDirty(page) set_bit(PG_dirty, &(page)->flags)
  203. #define TestSetPageDirty(page) test_and_set_bit(PG_dirty, &(page)->flags)
  204. #define ClearPageDirty(page) clear_bit(PG_dirty, &(page)->flags)
  205. #define __ClearPageDirty(page) __clear_bit(PG_dirty, &(page)->flags)
  206. #define TestClearPageDirty(page) test_and_clear_bit(PG_dirty, &(page)->flags)
  207. #define SetPageLRU(page) set_bit(PG_lru, &(page)->flags)
  208. #define PageLRU(page) test_bit(PG_lru, &(page)->flags)
  209. #define TestSetPageLRU(page) test_and_set_bit(PG_lru, &(page)->flags)
  210. #define TestClearPageLRU(page) test_and_clear_bit(PG_lru, &(page)->flags)
  211. #define PageActive(page) test_bit(PG_active, &(page)->flags)
  212. #define SetPageActive(page) set_bit(PG_active, &(page)->flags)
  213. #define ClearPageActive(page) clear_bit(PG_active, &(page)->flags)
  214. #define TestClearPageActive(page) test_and_clear_bit(PG_active, &(page)->flags)
  215. #define TestSetPageActive(page) test_and_set_bit(PG_active, &(page)->flags)
  216. #define PageSlab(page) test_bit(PG_slab, &(page)->flags)
  217. #define SetPageSlab(page) set_bit(PG_slab, &(page)->flags)
  218. #define ClearPageSlab(page) clear_bit(PG_slab, &(page)->flags)
  219. #define TestClearPageSlab(page) test_and_clear_bit(PG_slab, &(page)->flags)
  220. #define TestSetPageSlab(page) test_and_set_bit(PG_slab, &(page)->flags)
  221. #ifdef CONFIG_HIGHMEM
  222. #define PageHighMem(page) is_highmem(page_zone(page))
  223. #else
  224. #define PageHighMem(page) 0 /* needed to optimize away at compile time */
  225. #endif
  226. #define PageChecked(page) test_bit(PG_checked, &(page)->flags)
  227. #define SetPageChecked(page) set_bit(PG_checked, &(page)->flags)
  228. #define ClearPageChecked(page) clear_bit(PG_checked, &(page)->flags)
  229. #define PageReserved(page) test_bit(PG_reserved, &(page)->flags)
  230. #define SetPageReserved(page) set_bit(PG_reserved, &(page)->flags)
  231. #define ClearPageReserved(page) clear_bit(PG_reserved, &(page)->flags)
  232. #define __ClearPageReserved(page) __clear_bit(PG_reserved, &(page)->flags)
  233. #define SetPagePrivate(page) set_bit(PG_private, &(page)->flags)
  234. #define ClearPagePrivate(page) clear_bit(PG_private, &(page)->flags)
  235. #define PagePrivate(page) test_bit(PG_private, &(page)->flags)
  236. #define __SetPagePrivate(page) __set_bit(PG_private, &(page)->flags)
  237. #define __ClearPagePrivate(page) __clear_bit(PG_private, &(page)->flags)
  238. #define PageWriteback(page) test_bit(PG_writeback, &(page)->flags)
  239. #define SetPageWriteback(page) \
  240. do { \
  241. if (!test_and_set_bit(PG_writeback, \
  242. &(page)->flags)) \
  243. inc_page_state(nr_writeback); \
  244. } while (0)
  245. #define TestSetPageWriteback(page) \
  246. ({ \
  247. int ret; \
  248. ret = test_and_set_bit(PG_writeback, \
  249. &(page)->flags); \
  250. if (!ret) \
  251. inc_page_state(nr_writeback); \
  252. ret; \
  253. })
  254. #define ClearPageWriteback(page) \
  255. do { \
  256. if (test_and_clear_bit(PG_writeback, \
  257. &(page)->flags)) \
  258. dec_page_state(nr_writeback); \
  259. } while (0)
  260. #define TestClearPageWriteback(page) \
  261. ({ \
  262. int ret; \
  263. ret = test_and_clear_bit(PG_writeback, \
  264. &(page)->flags); \
  265. if (ret) \
  266. dec_page_state(nr_writeback); \
  267. ret; \
  268. })
  269. #define PageNosave(page) test_bit(PG_nosave, &(page)->flags)
  270. #define SetPageNosave(page) set_bit(PG_nosave, &(page)->flags)
  271. #define TestSetPageNosave(page) test_and_set_bit(PG_nosave, &(page)->flags)
  272. #define ClearPageNosave(page) clear_bit(PG_nosave, &(page)->flags)
  273. #define TestClearPageNosave(page) test_and_clear_bit(PG_nosave, &(page)->flags)
  274. #define PageNosaveFree(page) test_bit(PG_nosave_free, &(page)->flags)
  275. #define SetPageNosaveFree(page) set_bit(PG_nosave_free, &(page)->flags)
  276. #define ClearPageNosaveFree(page) clear_bit(PG_nosave_free, &(page)->flags)
  277. #define PageMappedToDisk(page) test_bit(PG_mappedtodisk, &(page)->flags)
  278. #define SetPageMappedToDisk(page) set_bit(PG_mappedtodisk, &(page)->flags)
  279. #define ClearPageMappedToDisk(page) clear_bit(PG_mappedtodisk, &(page)->flags)
  280. #define PageReclaim(page) test_bit(PG_reclaim, &(page)->flags)
  281. #define SetPageReclaim(page) set_bit(PG_reclaim, &(page)->flags)
  282. #define ClearPageReclaim(page) clear_bit(PG_reclaim, &(page)->flags)
  283. #define TestClearPageReclaim(page) test_and_clear_bit(PG_reclaim, &(page)->flags)
  284. #define PageCompound(page) test_bit(PG_compound, &(page)->flags)
  285. #define SetPageCompound(page) set_bit(PG_compound, &(page)->flags)
  286. #define ClearPageCompound(page) clear_bit(PG_compound, &(page)->flags)
  287. #ifdef CONFIG_SWAP
  288. #define PageSwapCache(page) test_bit(PG_swapcache, &(page)->flags)
  289. #define SetPageSwapCache(page) set_bit(PG_swapcache, &(page)->flags)
  290. #define ClearPageSwapCache(page) clear_bit(PG_swapcache, &(page)->flags)
  291. #else
  292. #define PageSwapCache(page) 0
  293. #endif
  294. #define PageUncached(page) test_bit(PG_uncached, &(page)->flags)
  295. #define SetPageUncached(page) set_bit(PG_uncached, &(page)->flags)
  296. #define ClearPageUncached(page) clear_bit(PG_uncached, &(page)->flags)
  297. struct page; /* forward declaration */
  298. int test_clear_page_dirty(struct page *page);
  299. int test_clear_page_writeback(struct page *page);
  300. int test_set_page_writeback(struct page *page);
  301. static inline void clear_page_dirty(struct page *page)
  302. {
  303. test_clear_page_dirty(page);
  304. }
  305. static inline void set_page_writeback(struct page *page)
  306. {
  307. test_set_page_writeback(page);
  308. }
  309. #endif /* PAGE_FLAGS_H */