page.h 6.2 KB

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  1. #ifndef _ASM_X86_XEN_PAGE_H
  2. #define _ASM_X86_XEN_PAGE_H
  3. #include <linux/kernel.h>
  4. #include <linux/types.h>
  5. #include <linux/spinlock.h>
  6. #include <linux/pfn.h>
  7. #include <linux/mm.h>
  8. #include <asm/uaccess.h>
  9. #include <asm/page.h>
  10. #include <asm/pgtable.h>
  11. #include <xen/interface/xen.h>
  12. #include <xen/grant_table.h>
  13. #include <xen/features.h>
  14. /* Xen machine address */
  15. typedef struct xmaddr {
  16. phys_addr_t maddr;
  17. } xmaddr_t;
  18. /* Xen pseudo-physical address */
  19. typedef struct xpaddr {
  20. phys_addr_t paddr;
  21. } xpaddr_t;
  22. #define XMADDR(x) ((xmaddr_t) { .maddr = (x) })
  23. #define XPADDR(x) ((xpaddr_t) { .paddr = (x) })
  24. /**** MACHINE <-> PHYSICAL CONVERSION MACROS ****/
  25. #define INVALID_P2M_ENTRY (~0UL)
  26. #define FOREIGN_FRAME_BIT (1UL<<(BITS_PER_LONG-1))
  27. #define IDENTITY_FRAME_BIT (1UL<<(BITS_PER_LONG-2))
  28. #define FOREIGN_FRAME(m) ((m) | FOREIGN_FRAME_BIT)
  29. #define IDENTITY_FRAME(m) ((m) | IDENTITY_FRAME_BIT)
  30. /* Maximum amount of memory we can handle in a domain in pages */
  31. #define MAX_DOMAIN_PAGES \
  32. ((unsigned long)((u64)CONFIG_XEN_MAX_DOMAIN_MEMORY * 1024 * 1024 * 1024 / PAGE_SIZE))
  33. extern unsigned long *machine_to_phys_mapping;
  34. extern unsigned long machine_to_phys_nr;
  35. extern unsigned long get_phys_to_machine(unsigned long pfn);
  36. extern bool set_phys_to_machine(unsigned long pfn, unsigned long mfn);
  37. extern bool __set_phys_to_machine(unsigned long pfn, unsigned long mfn);
  38. extern unsigned long set_phys_range_identity(unsigned long pfn_s,
  39. unsigned long pfn_e);
  40. extern int m2p_add_override(unsigned long mfn, struct page *page,
  41. struct gnttab_map_grant_ref *kmap_op);
  42. extern int m2p_remove_override(struct page *page,
  43. struct gnttab_map_grant_ref *kmap_op);
  44. extern struct page *m2p_find_override(unsigned long mfn);
  45. extern unsigned long m2p_find_override_pfn(unsigned long mfn, unsigned long pfn);
  46. static inline unsigned long pfn_to_mfn(unsigned long pfn)
  47. {
  48. unsigned long mfn;
  49. if (xen_feature(XENFEAT_auto_translated_physmap))
  50. return pfn;
  51. mfn = get_phys_to_machine(pfn);
  52. if (mfn != INVALID_P2M_ENTRY)
  53. mfn &= ~(FOREIGN_FRAME_BIT | IDENTITY_FRAME_BIT);
  54. return mfn;
  55. }
  56. static inline int phys_to_machine_mapping_valid(unsigned long pfn)
  57. {
  58. if (xen_feature(XENFEAT_auto_translated_physmap))
  59. return 1;
  60. return get_phys_to_machine(pfn) != INVALID_P2M_ENTRY;
  61. }
  62. static inline unsigned long mfn_to_pfn(unsigned long mfn)
  63. {
  64. unsigned long pfn;
  65. int ret = 0;
  66. if (xen_feature(XENFEAT_auto_translated_physmap))
  67. return mfn;
  68. if (unlikely(mfn >= machine_to_phys_nr)) {
  69. pfn = ~0;
  70. goto try_override;
  71. }
  72. pfn = 0;
  73. /*
  74. * The array access can fail (e.g., device space beyond end of RAM).
  75. * In such cases it doesn't matter what we return (we return garbage),
  76. * but we must handle the fault without crashing!
  77. */
  78. ret = __get_user(pfn, &machine_to_phys_mapping[mfn]);
  79. try_override:
  80. /* ret might be < 0 if there are no entries in the m2p for mfn */
  81. if (ret < 0)
  82. pfn = ~0;
  83. else if (get_phys_to_machine(pfn) != mfn)
  84. /*
  85. * If this appears to be a foreign mfn (because the pfn
  86. * doesn't map back to the mfn), then check the local override
  87. * table to see if there's a better pfn to use.
  88. *
  89. * m2p_find_override_pfn returns ~0 if it doesn't find anything.
  90. */
  91. pfn = m2p_find_override_pfn(mfn, ~0);
  92. /*
  93. * pfn is ~0 if there are no entries in the m2p for mfn or if the
  94. * entry doesn't map back to the mfn and m2p_override doesn't have a
  95. * valid entry for it.
  96. */
  97. if (pfn == ~0 &&
  98. get_phys_to_machine(mfn) == IDENTITY_FRAME(mfn))
  99. pfn = mfn;
  100. return pfn;
  101. }
  102. static inline xmaddr_t phys_to_machine(xpaddr_t phys)
  103. {
  104. unsigned offset = phys.paddr & ~PAGE_MASK;
  105. return XMADDR(PFN_PHYS(pfn_to_mfn(PFN_DOWN(phys.paddr))) | offset);
  106. }
  107. static inline xpaddr_t machine_to_phys(xmaddr_t machine)
  108. {
  109. unsigned offset = machine.maddr & ~PAGE_MASK;
  110. return XPADDR(PFN_PHYS(mfn_to_pfn(PFN_DOWN(machine.maddr))) | offset);
  111. }
  112. /*
  113. * We detect special mappings in one of two ways:
  114. * 1. If the MFN is an I/O page then Xen will set the m2p entry
  115. * to be outside our maximum possible pseudophys range.
  116. * 2. If the MFN belongs to a different domain then we will certainly
  117. * not have MFN in our p2m table. Conversely, if the page is ours,
  118. * then we'll have p2m(m2p(MFN))==MFN.
  119. * If we detect a special mapping then it doesn't have a 'struct page'.
  120. * We force !pfn_valid() by returning an out-of-range pointer.
  121. *
  122. * NB. These checks require that, for any MFN that is not in our reservation,
  123. * there is no PFN such that p2m(PFN) == MFN. Otherwise we can get confused if
  124. * we are foreign-mapping the MFN, and the other domain as m2p(MFN) == PFN.
  125. * Yikes! Various places must poke in INVALID_P2M_ENTRY for safety.
  126. *
  127. * NB2. When deliberately mapping foreign pages into the p2m table, you *must*
  128. * use FOREIGN_FRAME(). This will cause pte_pfn() to choke on it, as we
  129. * require. In all the cases we care about, the FOREIGN_FRAME bit is
  130. * masked (e.g., pfn_to_mfn()) so behaviour there is correct.
  131. */
  132. static inline unsigned long mfn_to_local_pfn(unsigned long mfn)
  133. {
  134. unsigned long pfn = mfn_to_pfn(mfn);
  135. if (get_phys_to_machine(pfn) != mfn)
  136. return -1; /* force !pfn_valid() */
  137. return pfn;
  138. }
  139. /* VIRT <-> MACHINE conversion */
  140. #define virt_to_machine(v) (phys_to_machine(XPADDR(__pa(v))))
  141. #define virt_to_pfn(v) (PFN_DOWN(__pa(v)))
  142. #define virt_to_mfn(v) (pfn_to_mfn(virt_to_pfn(v)))
  143. #define mfn_to_virt(m) (__va(mfn_to_pfn(m) << PAGE_SHIFT))
  144. static inline unsigned long pte_mfn(pte_t pte)
  145. {
  146. return (pte.pte & PTE_PFN_MASK) >> PAGE_SHIFT;
  147. }
  148. static inline pte_t mfn_pte(unsigned long page_nr, pgprot_t pgprot)
  149. {
  150. pte_t pte;
  151. pte.pte = ((phys_addr_t)page_nr << PAGE_SHIFT) |
  152. massage_pgprot(pgprot);
  153. return pte;
  154. }
  155. static inline pteval_t pte_val_ma(pte_t pte)
  156. {
  157. return pte.pte;
  158. }
  159. static inline pte_t __pte_ma(pteval_t x)
  160. {
  161. return (pte_t) { .pte = x };
  162. }
  163. #define pmd_val_ma(v) ((v).pmd)
  164. #ifdef __PAGETABLE_PUD_FOLDED
  165. #define pud_val_ma(v) ((v).pgd.pgd)
  166. #else
  167. #define pud_val_ma(v) ((v).pud)
  168. #endif
  169. #define __pmd_ma(x) ((pmd_t) { (x) } )
  170. #define pgd_val_ma(x) ((x).pgd)
  171. void xen_set_domain_pte(pte_t *ptep, pte_t pteval, unsigned domid);
  172. xmaddr_t arbitrary_virt_to_machine(void *address);
  173. unsigned long arbitrary_virt_to_mfn(void *vaddr);
  174. void make_lowmem_page_readonly(void *vaddr);
  175. void make_lowmem_page_readwrite(void *vaddr);
  176. #endif /* _ASM_X86_XEN_PAGE_H */