pgtable.h 16 KB

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  1. #ifndef ASM_X86__PGTABLE_H
  2. #define ASM_X86__PGTABLE_H
  3. #define FIRST_USER_ADDRESS 0
  4. #define _PAGE_BIT_PRESENT 0 /* is present */
  5. #define _PAGE_BIT_RW 1 /* writeable */
  6. #define _PAGE_BIT_USER 2 /* userspace addressable */
  7. #define _PAGE_BIT_PWT 3 /* page write through */
  8. #define _PAGE_BIT_PCD 4 /* page cache disabled */
  9. #define _PAGE_BIT_ACCESSED 5 /* was accessed (raised by CPU) */
  10. #define _PAGE_BIT_DIRTY 6 /* was written to (raised by CPU) */
  11. #define _PAGE_BIT_FILE 6
  12. #define _PAGE_BIT_PSE 7 /* 4 MB (or 2MB) page */
  13. #define _PAGE_BIT_PAT 7 /* on 4KB pages */
  14. #define _PAGE_BIT_GLOBAL 8 /* Global TLB entry PPro+ */
  15. #define _PAGE_BIT_UNUSED1 9 /* available for programmer */
  16. #define _PAGE_BIT_UNUSED2 10
  17. #define _PAGE_BIT_UNUSED3 11
  18. #define _PAGE_BIT_PAT_LARGE 12 /* On 2MB or 1GB pages */
  19. #define _PAGE_BIT_SPECIAL _PAGE_BIT_UNUSED1
  20. #define _PAGE_BIT_CPA_TEST _PAGE_BIT_UNUSED1
  21. #define _PAGE_BIT_NX 63 /* No execute: only valid after cpuid check */
  22. #define _PAGE_PRESENT (_AT(pteval_t, 1) << _PAGE_BIT_PRESENT)
  23. #define _PAGE_RW (_AT(pteval_t, 1) << _PAGE_BIT_RW)
  24. #define _PAGE_USER (_AT(pteval_t, 1) << _PAGE_BIT_USER)
  25. #define _PAGE_PWT (_AT(pteval_t, 1) << _PAGE_BIT_PWT)
  26. #define _PAGE_PCD (_AT(pteval_t, 1) << _PAGE_BIT_PCD)
  27. #define _PAGE_ACCESSED (_AT(pteval_t, 1) << _PAGE_BIT_ACCESSED)
  28. #define _PAGE_DIRTY (_AT(pteval_t, 1) << _PAGE_BIT_DIRTY)
  29. #define _PAGE_PSE (_AT(pteval_t, 1) << _PAGE_BIT_PSE)
  30. #define _PAGE_GLOBAL (_AT(pteval_t, 1) << _PAGE_BIT_GLOBAL)
  31. #define _PAGE_UNUSED1 (_AT(pteval_t, 1) << _PAGE_BIT_UNUSED1)
  32. #define _PAGE_UNUSED2 (_AT(pteval_t, 1) << _PAGE_BIT_UNUSED2)
  33. #define _PAGE_UNUSED3 (_AT(pteval_t, 1) << _PAGE_BIT_UNUSED3)
  34. #define _PAGE_PAT (_AT(pteval_t, 1) << _PAGE_BIT_PAT)
  35. #define _PAGE_PAT_LARGE (_AT(pteval_t, 1) << _PAGE_BIT_PAT_LARGE)
  36. #define _PAGE_SPECIAL (_AT(pteval_t, 1) << _PAGE_BIT_SPECIAL)
  37. #define _PAGE_CPA_TEST (_AT(pteval_t, 1) << _PAGE_BIT_CPA_TEST)
  38. #define __HAVE_ARCH_PTE_SPECIAL
  39. #if defined(CONFIG_X86_64) || defined(CONFIG_X86_PAE)
  40. #define _PAGE_NX (_AT(pteval_t, 1) << _PAGE_BIT_NX)
  41. #else
  42. #define _PAGE_NX (_AT(pteval_t, 0))
  43. #endif
  44. /* If _PAGE_PRESENT is clear, we use these: */
  45. #define _PAGE_FILE _PAGE_DIRTY /* nonlinear file mapping,
  46. * saved PTE; unset:swap */
  47. #define _PAGE_PROTNONE _PAGE_PSE /* if the user mapped it with PROT_NONE;
  48. pte_present gives true */
  49. #define _PAGE_TABLE (_PAGE_PRESENT | _PAGE_RW | _PAGE_USER | \
  50. _PAGE_ACCESSED | _PAGE_DIRTY)
  51. #define _KERNPG_TABLE (_PAGE_PRESENT | _PAGE_RW | _PAGE_ACCESSED | \
  52. _PAGE_DIRTY)
  53. /* Set of bits not changed in pte_modify */
  54. #define _PAGE_CHG_MASK (PTE_PFN_MASK | _PAGE_PCD | _PAGE_PWT | \
  55. _PAGE_SPECIAL | _PAGE_ACCESSED | _PAGE_DIRTY)
  56. #define _PAGE_CACHE_MASK (_PAGE_PCD | _PAGE_PWT)
  57. #define _PAGE_CACHE_WB (0)
  58. #define _PAGE_CACHE_WC (_PAGE_PWT)
  59. #define _PAGE_CACHE_UC_MINUS (_PAGE_PCD)
  60. #define _PAGE_CACHE_UC (_PAGE_PCD | _PAGE_PWT)
  61. #define PAGE_NONE __pgprot(_PAGE_PROTNONE | _PAGE_ACCESSED)
  62. #define PAGE_SHARED __pgprot(_PAGE_PRESENT | _PAGE_RW | _PAGE_USER | \
  63. _PAGE_ACCESSED | _PAGE_NX)
  64. #define PAGE_SHARED_EXEC __pgprot(_PAGE_PRESENT | _PAGE_RW | \
  65. _PAGE_USER | _PAGE_ACCESSED)
  66. #define PAGE_COPY_NOEXEC __pgprot(_PAGE_PRESENT | _PAGE_USER | \
  67. _PAGE_ACCESSED | _PAGE_NX)
  68. #define PAGE_COPY_EXEC __pgprot(_PAGE_PRESENT | _PAGE_USER | \
  69. _PAGE_ACCESSED)
  70. #define PAGE_COPY PAGE_COPY_NOEXEC
  71. #define PAGE_READONLY __pgprot(_PAGE_PRESENT | _PAGE_USER | \
  72. _PAGE_ACCESSED | _PAGE_NX)
  73. #define PAGE_READONLY_EXEC __pgprot(_PAGE_PRESENT | _PAGE_USER | \
  74. _PAGE_ACCESSED)
  75. #define __PAGE_KERNEL_EXEC \
  76. (_PAGE_PRESENT | _PAGE_RW | _PAGE_DIRTY | _PAGE_ACCESSED | _PAGE_GLOBAL)
  77. #define __PAGE_KERNEL (__PAGE_KERNEL_EXEC | _PAGE_NX)
  78. #define __PAGE_KERNEL_RO (__PAGE_KERNEL & ~_PAGE_RW)
  79. #define __PAGE_KERNEL_RX (__PAGE_KERNEL_EXEC & ~_PAGE_RW)
  80. #define __PAGE_KERNEL_EXEC_NOCACHE (__PAGE_KERNEL_EXEC | _PAGE_PCD | _PAGE_PWT)
  81. #define __PAGE_KERNEL_WC (__PAGE_KERNEL | _PAGE_CACHE_WC)
  82. #define __PAGE_KERNEL_NOCACHE (__PAGE_KERNEL | _PAGE_PCD | _PAGE_PWT)
  83. #define __PAGE_KERNEL_UC_MINUS (__PAGE_KERNEL | _PAGE_PCD)
  84. #define __PAGE_KERNEL_VSYSCALL (__PAGE_KERNEL_RX | _PAGE_USER)
  85. #define __PAGE_KERNEL_VSYSCALL_NOCACHE (__PAGE_KERNEL_VSYSCALL | _PAGE_PCD | _PAGE_PWT)
  86. #define __PAGE_KERNEL_LARGE (__PAGE_KERNEL | _PAGE_PSE)
  87. #define __PAGE_KERNEL_LARGE_NOCACHE (__PAGE_KERNEL | _PAGE_CACHE_UC | _PAGE_PSE)
  88. #define __PAGE_KERNEL_LARGE_EXEC (__PAGE_KERNEL_EXEC | _PAGE_PSE)
  89. #define PAGE_KERNEL __pgprot(__PAGE_KERNEL)
  90. #define PAGE_KERNEL_RO __pgprot(__PAGE_KERNEL_RO)
  91. #define PAGE_KERNEL_EXEC __pgprot(__PAGE_KERNEL_EXEC)
  92. #define PAGE_KERNEL_RX __pgprot(__PAGE_KERNEL_RX)
  93. #define PAGE_KERNEL_WC __pgprot(__PAGE_KERNEL_WC)
  94. #define PAGE_KERNEL_NOCACHE __pgprot(__PAGE_KERNEL_NOCACHE)
  95. #define PAGE_KERNEL_UC_MINUS __pgprot(__PAGE_KERNEL_UC_MINUS)
  96. #define PAGE_KERNEL_EXEC_NOCACHE __pgprot(__PAGE_KERNEL_EXEC_NOCACHE)
  97. #define PAGE_KERNEL_LARGE __pgprot(__PAGE_KERNEL_LARGE)
  98. #define PAGE_KERNEL_LARGE_NOCACHE __pgprot(__PAGE_KERNEL_LARGE_NOCACHE)
  99. #define PAGE_KERNEL_LARGE_EXEC __pgprot(__PAGE_KERNEL_LARGE_EXEC)
  100. #define PAGE_KERNEL_VSYSCALL __pgprot(__PAGE_KERNEL_VSYSCALL)
  101. #define PAGE_KERNEL_VSYSCALL_NOCACHE __pgprot(__PAGE_KERNEL_VSYSCALL_NOCACHE)
  102. /* xwr */
  103. #define __P000 PAGE_NONE
  104. #define __P001 PAGE_READONLY
  105. #define __P010 PAGE_COPY
  106. #define __P011 PAGE_COPY
  107. #define __P100 PAGE_READONLY_EXEC
  108. #define __P101 PAGE_READONLY_EXEC
  109. #define __P110 PAGE_COPY_EXEC
  110. #define __P111 PAGE_COPY_EXEC
  111. #define __S000 PAGE_NONE
  112. #define __S001 PAGE_READONLY
  113. #define __S010 PAGE_SHARED
  114. #define __S011 PAGE_SHARED
  115. #define __S100 PAGE_READONLY_EXEC
  116. #define __S101 PAGE_READONLY_EXEC
  117. #define __S110 PAGE_SHARED_EXEC
  118. #define __S111 PAGE_SHARED_EXEC
  119. /*
  120. * early identity mapping pte attrib macros.
  121. */
  122. #ifdef CONFIG_X86_64
  123. #define __PAGE_KERNEL_IDENT_LARGE_EXEC __PAGE_KERNEL_LARGE_EXEC
  124. #else
  125. #define PTE_IDENT_ATTR 0x003 /* PRESENT+RW */
  126. #define PDE_IDENT_ATTR 0x063 /* PRESENT+RW+DIRTY+ACCESSED */
  127. #define PGD_IDENT_ATTR 0x001 /* PRESENT (no other attributes) */
  128. #endif
  129. #ifndef __ASSEMBLY__
  130. /*
  131. * ZERO_PAGE is a global shared page that is always zero: used
  132. * for zero-mapped memory areas etc..
  133. */
  134. extern unsigned long empty_zero_page[PAGE_SIZE / sizeof(unsigned long)];
  135. #define ZERO_PAGE(vaddr) (virt_to_page(empty_zero_page))
  136. extern spinlock_t pgd_lock;
  137. extern struct list_head pgd_list;
  138. /*
  139. * The following only work if pte_present() is true.
  140. * Undefined behaviour if not..
  141. */
  142. static inline int pte_dirty(pte_t pte)
  143. {
  144. return pte_flags(pte) & _PAGE_DIRTY;
  145. }
  146. static inline int pte_young(pte_t pte)
  147. {
  148. return pte_flags(pte) & _PAGE_ACCESSED;
  149. }
  150. static inline int pte_write(pte_t pte)
  151. {
  152. return pte_flags(pte) & _PAGE_RW;
  153. }
  154. static inline int pte_file(pte_t pte)
  155. {
  156. return pte_flags(pte) & _PAGE_FILE;
  157. }
  158. static inline int pte_huge(pte_t pte)
  159. {
  160. return pte_flags(pte) & _PAGE_PSE;
  161. }
  162. static inline int pte_global(pte_t pte)
  163. {
  164. return pte_flags(pte) & _PAGE_GLOBAL;
  165. }
  166. static inline int pte_exec(pte_t pte)
  167. {
  168. return !(pte_flags(pte) & _PAGE_NX);
  169. }
  170. static inline int pte_special(pte_t pte)
  171. {
  172. return pte_val(pte) & _PAGE_SPECIAL;
  173. }
  174. static inline unsigned long pte_pfn(pte_t pte)
  175. {
  176. return (pte_val(pte) & PTE_PFN_MASK) >> PAGE_SHIFT;
  177. }
  178. #define pte_page(pte) pfn_to_page(pte_pfn(pte))
  179. static inline int pmd_large(pmd_t pte)
  180. {
  181. return (pmd_val(pte) & (_PAGE_PSE | _PAGE_PRESENT)) ==
  182. (_PAGE_PSE | _PAGE_PRESENT);
  183. }
  184. static inline pte_t pte_mkclean(pte_t pte)
  185. {
  186. return __pte(pte_val(pte) & ~_PAGE_DIRTY);
  187. }
  188. static inline pte_t pte_mkold(pte_t pte)
  189. {
  190. return __pte(pte_val(pte) & ~_PAGE_ACCESSED);
  191. }
  192. static inline pte_t pte_wrprotect(pte_t pte)
  193. {
  194. return __pte(pte_val(pte) & ~_PAGE_RW);
  195. }
  196. static inline pte_t pte_mkexec(pte_t pte)
  197. {
  198. return __pte(pte_val(pte) & ~_PAGE_NX);
  199. }
  200. static inline pte_t pte_mkdirty(pte_t pte)
  201. {
  202. return __pte(pte_val(pte) | _PAGE_DIRTY);
  203. }
  204. static inline pte_t pte_mkyoung(pte_t pte)
  205. {
  206. return __pte(pte_val(pte) | _PAGE_ACCESSED);
  207. }
  208. static inline pte_t pte_mkwrite(pte_t pte)
  209. {
  210. return __pte(pte_val(pte) | _PAGE_RW);
  211. }
  212. static inline pte_t pte_mkhuge(pte_t pte)
  213. {
  214. return __pte(pte_val(pte) | _PAGE_PSE);
  215. }
  216. static inline pte_t pte_clrhuge(pte_t pte)
  217. {
  218. return __pte(pte_val(pte) & ~_PAGE_PSE);
  219. }
  220. static inline pte_t pte_mkglobal(pte_t pte)
  221. {
  222. return __pte(pte_val(pte) | _PAGE_GLOBAL);
  223. }
  224. static inline pte_t pte_clrglobal(pte_t pte)
  225. {
  226. return __pte(pte_val(pte) & ~_PAGE_GLOBAL);
  227. }
  228. static inline pte_t pte_mkspecial(pte_t pte)
  229. {
  230. return __pte(pte_val(pte) | _PAGE_SPECIAL);
  231. }
  232. extern pteval_t __supported_pte_mask;
  233. static inline pte_t pfn_pte(unsigned long page_nr, pgprot_t pgprot)
  234. {
  235. return __pte((((phys_addr_t)page_nr << PAGE_SHIFT) |
  236. pgprot_val(pgprot)) & __supported_pte_mask);
  237. }
  238. static inline pmd_t pfn_pmd(unsigned long page_nr, pgprot_t pgprot)
  239. {
  240. return __pmd((((phys_addr_t)page_nr << PAGE_SHIFT) |
  241. pgprot_val(pgprot)) & __supported_pte_mask);
  242. }
  243. static inline pte_t pte_modify(pte_t pte, pgprot_t newprot)
  244. {
  245. pteval_t val = pte_val(pte);
  246. /*
  247. * Chop off the NX bit (if present), and add the NX portion of
  248. * the newprot (if present):
  249. */
  250. val &= _PAGE_CHG_MASK;
  251. val |= pgprot_val(newprot) & (~_PAGE_CHG_MASK) & __supported_pte_mask;
  252. return __pte(val);
  253. }
  254. /* mprotect needs to preserve PAT bits when updating vm_page_prot */
  255. #define pgprot_modify pgprot_modify
  256. static inline pgprot_t pgprot_modify(pgprot_t oldprot, pgprot_t newprot)
  257. {
  258. pgprotval_t preservebits = pgprot_val(oldprot) & _PAGE_CHG_MASK;
  259. pgprotval_t addbits = pgprot_val(newprot);
  260. return __pgprot(preservebits | addbits);
  261. }
  262. #define pte_pgprot(x) __pgprot(pte_flags(x) & PTE_FLAGS_MASK)
  263. #define canon_pgprot(p) __pgprot(pgprot_val(p) & __supported_pte_mask)
  264. #ifndef __ASSEMBLY__
  265. #define __HAVE_PHYS_MEM_ACCESS_PROT
  266. struct file;
  267. pgprot_t phys_mem_access_prot(struct file *file, unsigned long pfn,
  268. unsigned long size, pgprot_t vma_prot);
  269. int phys_mem_access_prot_allowed(struct file *file, unsigned long pfn,
  270. unsigned long size, pgprot_t *vma_prot);
  271. #endif
  272. /* Install a pte for a particular vaddr in kernel space. */
  273. void set_pte_vaddr(unsigned long vaddr, pte_t pte);
  274. #ifdef CONFIG_X86_32
  275. extern void native_pagetable_setup_start(pgd_t *base);
  276. extern void native_pagetable_setup_done(pgd_t *base);
  277. #else
  278. static inline void native_pagetable_setup_start(pgd_t *base) {}
  279. static inline void native_pagetable_setup_done(pgd_t *base) {}
  280. #endif
  281. extern int arch_report_meminfo(char *page);
  282. #ifdef CONFIG_PARAVIRT
  283. #include <asm/paravirt.h>
  284. #else /* !CONFIG_PARAVIRT */
  285. #define set_pte(ptep, pte) native_set_pte(ptep, pte)
  286. #define set_pte_at(mm, addr, ptep, pte) native_set_pte_at(mm, addr, ptep, pte)
  287. #define set_pte_present(mm, addr, ptep, pte) \
  288. native_set_pte_present(mm, addr, ptep, pte)
  289. #define set_pte_atomic(ptep, pte) \
  290. native_set_pte_atomic(ptep, pte)
  291. #define set_pmd(pmdp, pmd) native_set_pmd(pmdp, pmd)
  292. #ifndef __PAGETABLE_PUD_FOLDED
  293. #define set_pgd(pgdp, pgd) native_set_pgd(pgdp, pgd)
  294. #define pgd_clear(pgd) native_pgd_clear(pgd)
  295. #endif
  296. #ifndef set_pud
  297. # define set_pud(pudp, pud) native_set_pud(pudp, pud)
  298. #endif
  299. #ifndef __PAGETABLE_PMD_FOLDED
  300. #define pud_clear(pud) native_pud_clear(pud)
  301. #endif
  302. #define pte_clear(mm, addr, ptep) native_pte_clear(mm, addr, ptep)
  303. #define pmd_clear(pmd) native_pmd_clear(pmd)
  304. #define pte_update(mm, addr, ptep) do { } while (0)
  305. #define pte_update_defer(mm, addr, ptep) do { } while (0)
  306. static inline void __init paravirt_pagetable_setup_start(pgd_t *base)
  307. {
  308. native_pagetable_setup_start(base);
  309. }
  310. static inline void __init paravirt_pagetable_setup_done(pgd_t *base)
  311. {
  312. native_pagetable_setup_done(base);
  313. }
  314. #endif /* CONFIG_PARAVIRT */
  315. #endif /* __ASSEMBLY__ */
  316. #ifdef CONFIG_X86_32
  317. # include "pgtable_32.h"
  318. #else
  319. # include "pgtable_64.h"
  320. #endif
  321. /*
  322. * the pgd page can be thought of an array like this: pgd_t[PTRS_PER_PGD]
  323. *
  324. * this macro returns the index of the entry in the pgd page which would
  325. * control the given virtual address
  326. */
  327. #define pgd_index(address) (((address) >> PGDIR_SHIFT) & (PTRS_PER_PGD - 1))
  328. /*
  329. * pgd_offset() returns a (pgd_t *)
  330. * pgd_index() is used get the offset into the pgd page's array of pgd_t's;
  331. */
  332. #define pgd_offset(mm, address) ((mm)->pgd + pgd_index((address)))
  333. /*
  334. * a shortcut which implies the use of the kernel's pgd, instead
  335. * of a process's
  336. */
  337. #define pgd_offset_k(address) pgd_offset(&init_mm, (address))
  338. #define KERNEL_PGD_BOUNDARY pgd_index(PAGE_OFFSET)
  339. #define KERNEL_PGD_PTRS (PTRS_PER_PGD - KERNEL_PGD_BOUNDARY)
  340. #ifndef __ASSEMBLY__
  341. enum {
  342. PG_LEVEL_NONE,
  343. PG_LEVEL_4K,
  344. PG_LEVEL_2M,
  345. PG_LEVEL_1G,
  346. PG_LEVEL_NUM
  347. };
  348. #ifdef CONFIG_PROC_FS
  349. extern void update_page_count(int level, unsigned long pages);
  350. #else
  351. static inline void update_page_count(int level, unsigned long pages) { }
  352. #endif
  353. /*
  354. * Helper function that returns the kernel pagetable entry controlling
  355. * the virtual address 'address'. NULL means no pagetable entry present.
  356. * NOTE: the return type is pte_t but if the pmd is PSE then we return it
  357. * as a pte too.
  358. */
  359. extern pte_t *lookup_address(unsigned long address, unsigned int *level);
  360. /* local pte updates need not use xchg for locking */
  361. static inline pte_t native_local_ptep_get_and_clear(pte_t *ptep)
  362. {
  363. pte_t res = *ptep;
  364. /* Pure native function needs no input for mm, addr */
  365. native_pte_clear(NULL, 0, ptep);
  366. return res;
  367. }
  368. static inline void native_set_pte_at(struct mm_struct *mm, unsigned long addr,
  369. pte_t *ptep , pte_t pte)
  370. {
  371. native_set_pte(ptep, pte);
  372. }
  373. #ifndef CONFIG_PARAVIRT
  374. /*
  375. * Rules for using pte_update - it must be called after any PTE update which
  376. * has not been done using the set_pte / clear_pte interfaces. It is used by
  377. * shadow mode hypervisors to resynchronize the shadow page tables. Kernel PTE
  378. * updates should either be sets, clears, or set_pte_atomic for P->P
  379. * transitions, which means this hook should only be called for user PTEs.
  380. * This hook implies a P->P protection or access change has taken place, which
  381. * requires a subsequent TLB flush. The notification can optionally be delayed
  382. * until the TLB flush event by using the pte_update_defer form of the
  383. * interface, but care must be taken to assure that the flush happens while
  384. * still holding the same page table lock so that the shadow and primary pages
  385. * do not become out of sync on SMP.
  386. */
  387. #define pte_update(mm, addr, ptep) do { } while (0)
  388. #define pte_update_defer(mm, addr, ptep) do { } while (0)
  389. #endif
  390. /*
  391. * We only update the dirty/accessed state if we set
  392. * the dirty bit by hand in the kernel, since the hardware
  393. * will do the accessed bit for us, and we don't want to
  394. * race with other CPU's that might be updating the dirty
  395. * bit at the same time.
  396. */
  397. struct vm_area_struct;
  398. #define __HAVE_ARCH_PTEP_SET_ACCESS_FLAGS
  399. extern int ptep_set_access_flags(struct vm_area_struct *vma,
  400. unsigned long address, pte_t *ptep,
  401. pte_t entry, int dirty);
  402. #define __HAVE_ARCH_PTEP_TEST_AND_CLEAR_YOUNG
  403. extern int ptep_test_and_clear_young(struct vm_area_struct *vma,
  404. unsigned long addr, pte_t *ptep);
  405. #define __HAVE_ARCH_PTEP_CLEAR_YOUNG_FLUSH
  406. extern int ptep_clear_flush_young(struct vm_area_struct *vma,
  407. unsigned long address, pte_t *ptep);
  408. #define __HAVE_ARCH_PTEP_GET_AND_CLEAR
  409. static inline pte_t ptep_get_and_clear(struct mm_struct *mm, unsigned long addr,
  410. pte_t *ptep)
  411. {
  412. pte_t pte = native_ptep_get_and_clear(ptep);
  413. pte_update(mm, addr, ptep);
  414. return pte;
  415. }
  416. #define __HAVE_ARCH_PTEP_GET_AND_CLEAR_FULL
  417. static inline pte_t ptep_get_and_clear_full(struct mm_struct *mm,
  418. unsigned long addr, pte_t *ptep,
  419. int full)
  420. {
  421. pte_t pte;
  422. if (full) {
  423. /*
  424. * Full address destruction in progress; paravirt does not
  425. * care about updates and native needs no locking
  426. */
  427. pte = native_local_ptep_get_and_clear(ptep);
  428. } else {
  429. pte = ptep_get_and_clear(mm, addr, ptep);
  430. }
  431. return pte;
  432. }
  433. #define __HAVE_ARCH_PTEP_SET_WRPROTECT
  434. static inline void ptep_set_wrprotect(struct mm_struct *mm,
  435. unsigned long addr, pte_t *ptep)
  436. {
  437. clear_bit(_PAGE_BIT_RW, (unsigned long *)&ptep->pte);
  438. pte_update(mm, addr, ptep);
  439. }
  440. /*
  441. * clone_pgd_range(pgd_t *dst, pgd_t *src, int count);
  442. *
  443. * dst - pointer to pgd range anwhere on a pgd page
  444. * src - ""
  445. * count - the number of pgds to copy.
  446. *
  447. * dst and src can be on the same page, but the range must not overlap,
  448. * and must not cross a page boundary.
  449. */
  450. static inline void clone_pgd_range(pgd_t *dst, pgd_t *src, int count)
  451. {
  452. memcpy(dst, src, count * sizeof(pgd_t));
  453. }
  454. #include <asm-generic/pgtable.h>
  455. #endif /* __ASSEMBLY__ */
  456. #endif /* ASM_X86__PGTABLE_H */