flush.c 6.6 KB

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  1. /*
  2. * linux/arch/arm/mm/flush.c
  3. *
  4. * Copyright (C) 1995-2002 Russell King
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License version 2 as
  8. * published by the Free Software Foundation.
  9. */
  10. #include <linux/module.h>
  11. #include <linux/mm.h>
  12. #include <linux/pagemap.h>
  13. #include <asm/cacheflush.h>
  14. #include <asm/cachetype.h>
  15. #include <asm/system.h>
  16. #include <asm/tlbflush.h>
  17. #include "mm.h"
  18. #ifdef CONFIG_CPU_CACHE_VIPT
  19. #define ALIAS_FLUSH_START 0xffff4000
  20. static void flush_pfn_alias(unsigned long pfn, unsigned long vaddr)
  21. {
  22. unsigned long to = ALIAS_FLUSH_START + (CACHE_COLOUR(vaddr) << PAGE_SHIFT);
  23. const int zero = 0;
  24. set_pte_ext(TOP_PTE(to), pfn_pte(pfn, PAGE_KERNEL), 0);
  25. flush_tlb_kernel_page(to);
  26. asm( "mcrr p15, 0, %1, %0, c14\n"
  27. " mcr p15, 0, %2, c7, c10, 4"
  28. :
  29. : "r" (to), "r" (to + PAGE_SIZE - L1_CACHE_BYTES), "r" (zero)
  30. : "cc");
  31. }
  32. void flush_cache_mm(struct mm_struct *mm)
  33. {
  34. if (cache_is_vivt()) {
  35. vivt_flush_cache_mm(mm);
  36. return;
  37. }
  38. if (cache_is_vipt_aliasing()) {
  39. asm( "mcr p15, 0, %0, c7, c14, 0\n"
  40. " mcr p15, 0, %0, c7, c10, 4"
  41. :
  42. : "r" (0)
  43. : "cc");
  44. }
  45. }
  46. void flush_cache_range(struct vm_area_struct *vma, unsigned long start, unsigned long end)
  47. {
  48. if (cache_is_vivt()) {
  49. vivt_flush_cache_range(vma, start, end);
  50. return;
  51. }
  52. if (cache_is_vipt_aliasing()) {
  53. asm( "mcr p15, 0, %0, c7, c14, 0\n"
  54. " mcr p15, 0, %0, c7, c10, 4"
  55. :
  56. : "r" (0)
  57. : "cc");
  58. }
  59. if (vma->vm_flags & VM_EXEC)
  60. __flush_icache_all();
  61. }
  62. void flush_cache_page(struct vm_area_struct *vma, unsigned long user_addr, unsigned long pfn)
  63. {
  64. if (cache_is_vivt()) {
  65. vivt_flush_cache_page(vma, user_addr, pfn);
  66. return;
  67. }
  68. if (cache_is_vipt_aliasing()) {
  69. flush_pfn_alias(pfn, user_addr);
  70. __flush_icache_all();
  71. }
  72. if (vma->vm_flags & VM_EXEC && icache_is_vivt_asid_tagged())
  73. __flush_icache_all();
  74. }
  75. void flush_ptrace_access(struct vm_area_struct *vma, struct page *page,
  76. unsigned long uaddr, void *kaddr,
  77. unsigned long len, int write)
  78. {
  79. if (cache_is_vivt()) {
  80. vivt_flush_ptrace_access(vma, page, uaddr, kaddr, len, write);
  81. return;
  82. }
  83. if (cache_is_vipt_aliasing()) {
  84. flush_pfn_alias(page_to_pfn(page), uaddr);
  85. __flush_icache_all();
  86. return;
  87. }
  88. /* VIPT non-aliasing cache */
  89. if (cpumask_test_cpu(smp_processor_id(), mm_cpumask(vma->vm_mm)) &&
  90. vma->vm_flags & VM_EXEC) {
  91. unsigned long addr = (unsigned long)kaddr;
  92. /* only flushing the kernel mapping on non-aliasing VIPT */
  93. __cpuc_coherent_kern_range(addr, addr + len);
  94. }
  95. }
  96. #else
  97. #define flush_pfn_alias(pfn,vaddr) do { } while (0)
  98. #endif
  99. void __flush_dcache_page(struct address_space *mapping, struct page *page)
  100. {
  101. void *addr = page_address(page);
  102. /*
  103. * Writeback any data associated with the kernel mapping of this
  104. * page. This ensures that data in the physical page is mutually
  105. * coherent with the kernels mapping.
  106. */
  107. #ifdef CONFIG_HIGHMEM
  108. /*
  109. * kmap_atomic() doesn't set the page virtual address, and
  110. * kunmap_atomic() takes care of cache flushing already.
  111. */
  112. if (addr)
  113. #endif
  114. __cpuc_flush_dcache_area(addr, PAGE_SIZE);
  115. /*
  116. * If this is a page cache page, and we have an aliasing VIPT cache,
  117. * we only need to do one flush - which would be at the relevant
  118. * userspace colour, which is congruent with page->index.
  119. */
  120. if (mapping && cache_is_vipt_aliasing())
  121. flush_pfn_alias(page_to_pfn(page),
  122. page->index << PAGE_CACHE_SHIFT);
  123. }
  124. static void __flush_dcache_aliases(struct address_space *mapping, struct page *page)
  125. {
  126. struct mm_struct *mm = current->active_mm;
  127. struct vm_area_struct *mpnt;
  128. struct prio_tree_iter iter;
  129. pgoff_t pgoff;
  130. /*
  131. * There are possible user space mappings of this page:
  132. * - VIVT cache: we need to also write back and invalidate all user
  133. * data in the current VM view associated with this page.
  134. * - aliasing VIPT: we only need to find one mapping of this page.
  135. */
  136. pgoff = page->index << (PAGE_CACHE_SHIFT - PAGE_SHIFT);
  137. flush_dcache_mmap_lock(mapping);
  138. vma_prio_tree_foreach(mpnt, &iter, &mapping->i_mmap, pgoff, pgoff) {
  139. unsigned long offset;
  140. /*
  141. * If this VMA is not in our MM, we can ignore it.
  142. */
  143. if (mpnt->vm_mm != mm)
  144. continue;
  145. if (!(mpnt->vm_flags & VM_MAYSHARE))
  146. continue;
  147. offset = (pgoff - mpnt->vm_pgoff) << PAGE_SHIFT;
  148. flush_cache_page(mpnt, mpnt->vm_start + offset, page_to_pfn(page));
  149. }
  150. flush_dcache_mmap_unlock(mapping);
  151. }
  152. /*
  153. * Ensure cache coherency between kernel mapping and userspace mapping
  154. * of this page.
  155. *
  156. * We have three cases to consider:
  157. * - VIPT non-aliasing cache: fully coherent so nothing required.
  158. * - VIVT: fully aliasing, so we need to handle every alias in our
  159. * current VM view.
  160. * - VIPT aliasing: need to handle one alias in our current VM view.
  161. *
  162. * If we need to handle aliasing:
  163. * If the page only exists in the page cache and there are no user
  164. * space mappings, we can be lazy and remember that we may have dirty
  165. * kernel cache lines for later. Otherwise, we assume we have
  166. * aliasing mappings.
  167. *
  168. * Note that we disable the lazy flush for SMP.
  169. */
  170. void flush_dcache_page(struct page *page)
  171. {
  172. struct address_space *mapping;
  173. /*
  174. * The zero page is never written to, so never has any dirty
  175. * cache lines, and therefore never needs to be flushed.
  176. */
  177. if (page == ZERO_PAGE(0))
  178. return;
  179. mapping = page_mapping(page);
  180. #ifndef CONFIG_SMP
  181. if (!PageHighMem(page) && mapping && !mapping_mapped(mapping))
  182. set_bit(PG_dcache_dirty, &page->flags);
  183. else
  184. #endif
  185. {
  186. __flush_dcache_page(mapping, page);
  187. if (mapping && cache_is_vivt())
  188. __flush_dcache_aliases(mapping, page);
  189. else if (mapping)
  190. __flush_icache_all();
  191. }
  192. }
  193. EXPORT_SYMBOL(flush_dcache_page);
  194. /*
  195. * Flush an anonymous page so that users of get_user_pages()
  196. * can safely access the data. The expected sequence is:
  197. *
  198. * get_user_pages()
  199. * -> flush_anon_page
  200. * memcpy() to/from page
  201. * if written to page, flush_dcache_page()
  202. */
  203. void __flush_anon_page(struct vm_area_struct *vma, struct page *page, unsigned long vmaddr)
  204. {
  205. unsigned long pfn;
  206. /* VIPT non-aliasing caches need do nothing */
  207. if (cache_is_vipt_nonaliasing())
  208. return;
  209. /*
  210. * Write back and invalidate userspace mapping.
  211. */
  212. pfn = page_to_pfn(page);
  213. if (cache_is_vivt()) {
  214. flush_cache_page(vma, vmaddr, pfn);
  215. } else {
  216. /*
  217. * For aliasing VIPT, we can flush an alias of the
  218. * userspace address only.
  219. */
  220. flush_pfn_alias(pfn, vmaddr);
  221. __flush_icache_all();
  222. }
  223. /*
  224. * Invalidate kernel mapping. No data should be contained
  225. * in this mapping of the page. FIXME: this is overkill
  226. * since we actually ask for a write-back and invalidate.
  227. */
  228. __cpuc_flush_dcache_area(page_address(page), PAGE_SIZE);
  229. }