hugetlbpage.c 4.8 KB

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  1. /*
  2. * IBM System z Huge TLB Page Support for Kernel.
  3. *
  4. * Copyright IBM Corp. 2007
  5. * Author(s): Gerald Schaefer <gerald.schaefer@de.ibm.com>
  6. */
  7. #include <linux/mm.h>
  8. #include <linux/hugetlb.h>
  9. static inline pmd_t __pte_to_pmd(pte_t pte)
  10. {
  11. int none, prot;
  12. pmd_t pmd;
  13. /*
  14. * Convert encoding pte bits pmd bits
  15. * .IR.....wdtp ..R...I.....
  16. * empty .10.....0000 -> ..0...1.....
  17. * prot-none, clean .11.....0001 -> ..1...1.....
  18. * prot-none, dirty .10.....0101 -> ..1...1.....
  19. * read-only, clean .01.....0001 -> ..1...0.....
  20. * read-only, dirty .01.....0101 -> ..1...0.....
  21. * read-write, clean .01.....1001 -> ..0...0.....
  22. * read-write, dirty .00.....1101 -> ..0...0.....
  23. * Huge ptes are dirty by definition, a clean pte is made dirty
  24. * by the conversion.
  25. */
  26. if (pte_present(pte)) {
  27. pmd_val(pmd) = pte_val(pte) & PAGE_MASK;
  28. if (pte_val(pte) & _PAGE_INVALID)
  29. pmd_val(pmd) |= _SEGMENT_ENTRY_INVALID;
  30. none = (pte_val(pte) & _PAGE_PRESENT) &&
  31. (pte_val(pte) & _PAGE_INVALID);
  32. prot = (pte_val(pte) & _PAGE_PROTECT);
  33. if (prot || none)
  34. pmd_val(pmd) |= _SEGMENT_ENTRY_PROTECT;
  35. } else
  36. pmd_val(pmd) = _SEGMENT_ENTRY_INVALID;
  37. return pmd;
  38. }
  39. static inline pte_t __pmd_to_pte(pmd_t pmd)
  40. {
  41. pte_t pte;
  42. /*
  43. * Convert encoding pmd bits pte bits
  44. * ..R...I..... .IR.....wdtp
  45. * empty ..0...1..... -> .10.....0000
  46. * prot-none, young ..1...1..... -> .10.....0101
  47. * read-only, young ..1...0..... -> .01.....0101
  48. * read-write, young ..0...0..... -> .00.....1101
  49. * Huge ptes are dirty by definition
  50. */
  51. if (pmd_present(pmd)) {
  52. pte_val(pte) = _PAGE_PRESENT | _PAGE_LARGE | _PAGE_DIRTY |
  53. (pmd_val(pmd) & PAGE_MASK);
  54. if (pmd_val(pmd) & _SEGMENT_ENTRY_INVALID)
  55. pte_val(pte) |= _PAGE_INVALID;
  56. else {
  57. if (pmd_val(pmd) & _SEGMENT_ENTRY_PROTECT)
  58. pte_val(pte) |= _PAGE_PROTECT;
  59. else
  60. pte_val(pte) |= _PAGE_WRITE;
  61. }
  62. } else
  63. pte_val(pte) = _PAGE_INVALID;
  64. return pte;
  65. }
  66. void set_huge_pte_at(struct mm_struct *mm, unsigned long addr,
  67. pte_t *ptep, pte_t pte)
  68. {
  69. pmd_t pmd;
  70. pmd = __pte_to_pmd(pte);
  71. if (!MACHINE_HAS_HPAGE) {
  72. pmd_val(pmd) &= ~_SEGMENT_ENTRY_ORIGIN;
  73. pmd_val(pmd) |= pte_page(pte)[1].index;
  74. } else
  75. pmd_val(pmd) |= _SEGMENT_ENTRY_LARGE | _SEGMENT_ENTRY_CO;
  76. *(pmd_t *) ptep = pmd;
  77. }
  78. pte_t huge_ptep_get(pte_t *ptep)
  79. {
  80. unsigned long origin;
  81. pmd_t pmd;
  82. pmd = *(pmd_t *) ptep;
  83. if (!MACHINE_HAS_HPAGE && pmd_present(pmd)) {
  84. origin = pmd_val(pmd) & _SEGMENT_ENTRY_ORIGIN;
  85. pmd_val(pmd) &= ~_SEGMENT_ENTRY_ORIGIN;
  86. pmd_val(pmd) |= *(unsigned long *) origin;
  87. }
  88. return __pmd_to_pte(pmd);
  89. }
  90. pte_t huge_ptep_get_and_clear(struct mm_struct *mm,
  91. unsigned long addr, pte_t *ptep)
  92. {
  93. pmd_t *pmdp = (pmd_t *) ptep;
  94. pte_t pte = huge_ptep_get(ptep);
  95. if (MACHINE_HAS_IDTE)
  96. __pmd_idte(addr, pmdp);
  97. else
  98. __pmd_csp(pmdp);
  99. pmd_val(*pmdp) = _SEGMENT_ENTRY_EMPTY;
  100. return pte;
  101. }
  102. int arch_prepare_hugepage(struct page *page)
  103. {
  104. unsigned long addr = page_to_phys(page);
  105. pte_t pte;
  106. pte_t *ptep;
  107. int i;
  108. if (MACHINE_HAS_HPAGE)
  109. return 0;
  110. ptep = (pte_t *) pte_alloc_one(&init_mm, addr);
  111. if (!ptep)
  112. return -ENOMEM;
  113. pte_val(pte) = addr;
  114. for (i = 0; i < PTRS_PER_PTE; i++) {
  115. set_pte_at(&init_mm, addr + i * PAGE_SIZE, ptep + i, pte);
  116. pte_val(pte) += PAGE_SIZE;
  117. }
  118. page[1].index = (unsigned long) ptep;
  119. return 0;
  120. }
  121. void arch_release_hugepage(struct page *page)
  122. {
  123. pte_t *ptep;
  124. if (MACHINE_HAS_HPAGE)
  125. return;
  126. ptep = (pte_t *) page[1].index;
  127. if (!ptep)
  128. return;
  129. clear_table((unsigned long *) ptep, _PAGE_INVALID,
  130. PTRS_PER_PTE * sizeof(pte_t));
  131. page_table_free(&init_mm, (unsigned long *) ptep);
  132. page[1].index = 0;
  133. }
  134. pte_t *huge_pte_alloc(struct mm_struct *mm,
  135. unsigned long addr, unsigned long sz)
  136. {
  137. pgd_t *pgdp;
  138. pud_t *pudp;
  139. pmd_t *pmdp = NULL;
  140. pgdp = pgd_offset(mm, addr);
  141. pudp = pud_alloc(mm, pgdp, addr);
  142. if (pudp)
  143. pmdp = pmd_alloc(mm, pudp, addr);
  144. return (pte_t *) pmdp;
  145. }
  146. pte_t *huge_pte_offset(struct mm_struct *mm, unsigned long addr)
  147. {
  148. pgd_t *pgdp;
  149. pud_t *pudp;
  150. pmd_t *pmdp = NULL;
  151. pgdp = pgd_offset(mm, addr);
  152. if (pgd_present(*pgdp)) {
  153. pudp = pud_offset(pgdp, addr);
  154. if (pud_present(*pudp))
  155. pmdp = pmd_offset(pudp, addr);
  156. }
  157. return (pte_t *) pmdp;
  158. }
  159. int huge_pmd_unshare(struct mm_struct *mm, unsigned long *addr, pte_t *ptep)
  160. {
  161. return 0;
  162. }
  163. struct page *follow_huge_addr(struct mm_struct *mm, unsigned long address,
  164. int write)
  165. {
  166. return ERR_PTR(-EINVAL);
  167. }
  168. int pmd_huge(pmd_t pmd)
  169. {
  170. if (!MACHINE_HAS_HPAGE)
  171. return 0;
  172. return !!(pmd_val(pmd) & _SEGMENT_ENTRY_LARGE);
  173. }
  174. int pud_huge(pud_t pud)
  175. {
  176. return 0;
  177. }
  178. struct page *follow_huge_pmd(struct mm_struct *mm, unsigned long address,
  179. pmd_t *pmdp, int write)
  180. {
  181. struct page *page;
  182. if (!MACHINE_HAS_HPAGE)
  183. return NULL;
  184. page = pmd_page(*pmdp);
  185. if (page)
  186. page += ((address & ~HPAGE_MASK) >> PAGE_SHIFT);
  187. return page;
  188. }