cache.c 6.7 KB

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  1. /*
  2. * This file is subject to the terms and conditions of the GNU General Public
  3. * License. See the file "COPYING" in the main directory of this archive
  4. * for more details.
  5. *
  6. * Copyright (C) 1994 - 2003, 06, 07 by Ralf Baechle (ralf@linux-mips.org)
  7. * Copyright (C) 2007 MIPS Technologies, Inc.
  8. */
  9. #include <linux/fs.h>
  10. #include <linux/fcntl.h>
  11. #include <linux/init.h>
  12. #include <linux/kernel.h>
  13. #include <linux/linkage.h>
  14. #include <linux/module.h>
  15. #include <linux/sched.h>
  16. #include <linux/syscalls.h>
  17. #include <linux/mm.h>
  18. #include <asm/cacheflush.h>
  19. #include <asm/processor.h>
  20. #include <asm/cpu.h>
  21. #include <asm/cpu-features.h>
  22. /* Cache operations. */
  23. void (*flush_cache_all)(void);
  24. void (*__flush_cache_all)(void);
  25. void (*flush_cache_mm)(struct mm_struct *mm);
  26. void (*flush_cache_range)(struct vm_area_struct *vma, unsigned long start,
  27. unsigned long end);
  28. void (*flush_cache_page)(struct vm_area_struct *vma, unsigned long page,
  29. unsigned long pfn);
  30. void (*flush_icache_range)(unsigned long start, unsigned long end);
  31. void (*local_flush_icache_range)(unsigned long start, unsigned long end);
  32. void (*__flush_cache_vmap)(void);
  33. void (*__flush_cache_vunmap)(void);
  34. void (*__flush_kernel_vmap_range)(unsigned long vaddr, int size);
  35. void (*__invalidate_kernel_vmap_range)(unsigned long vaddr, int size);
  36. EXPORT_SYMBOL_GPL(__flush_kernel_vmap_range);
  37. /* MIPS specific cache operations */
  38. void (*flush_cache_sigtramp)(unsigned long addr);
  39. void (*local_flush_data_cache_page)(void * addr);
  40. void (*flush_data_cache_page)(unsigned long addr);
  41. void (*flush_icache_all)(void);
  42. EXPORT_SYMBOL_GPL(local_flush_data_cache_page);
  43. EXPORT_SYMBOL(flush_data_cache_page);
  44. EXPORT_SYMBOL(flush_icache_all);
  45. #ifdef CONFIG_DMA_NONCOHERENT
  46. /* DMA cache operations. */
  47. void (*_dma_cache_wback_inv)(unsigned long start, unsigned long size);
  48. void (*_dma_cache_wback)(unsigned long start, unsigned long size);
  49. void (*_dma_cache_inv)(unsigned long start, unsigned long size);
  50. EXPORT_SYMBOL(_dma_cache_wback_inv);
  51. #endif /* CONFIG_DMA_NONCOHERENT */
  52. /*
  53. * We could optimize the case where the cache argument is not BCACHE but
  54. * that seems very atypical use ...
  55. */
  56. SYSCALL_DEFINE3(cacheflush, unsigned long, addr, unsigned long, bytes,
  57. unsigned int, cache)
  58. {
  59. if (bytes == 0)
  60. return 0;
  61. if (!access_ok(VERIFY_WRITE, (void __user *) addr, bytes))
  62. return -EFAULT;
  63. flush_icache_range(addr, addr + bytes);
  64. return 0;
  65. }
  66. void __flush_dcache_page(struct page *page)
  67. {
  68. struct address_space *mapping = page_mapping(page);
  69. unsigned long addr;
  70. if (PageHighMem(page))
  71. return;
  72. if (mapping && !mapping_mapped(mapping)) {
  73. SetPageDcacheDirty(page);
  74. return;
  75. }
  76. /*
  77. * We could delay the flush for the !page_mapping case too. But that
  78. * case is for exec env/arg pages and those are %99 certainly going to
  79. * get faulted into the tlb (and thus flushed) anyways.
  80. */
  81. addr = (unsigned long) page_address(page);
  82. flush_data_cache_page(addr);
  83. }
  84. EXPORT_SYMBOL(__flush_dcache_page);
  85. void __flush_anon_page(struct page *page, unsigned long vmaddr)
  86. {
  87. unsigned long addr = (unsigned long) page_address(page);
  88. if (pages_do_alias(addr, vmaddr)) {
  89. if (page_mapped(page) && !Page_dcache_dirty(page)) {
  90. void *kaddr;
  91. kaddr = kmap_coherent(page, vmaddr);
  92. flush_data_cache_page((unsigned long)kaddr);
  93. kunmap_coherent();
  94. } else
  95. flush_data_cache_page(addr);
  96. }
  97. }
  98. EXPORT_SYMBOL(__flush_anon_page);
  99. void __update_cache(struct vm_area_struct *vma, unsigned long address,
  100. pte_t pte)
  101. {
  102. struct page *page;
  103. unsigned long pfn, addr;
  104. int exec = (vma->vm_flags & VM_EXEC) && !cpu_has_ic_fills_f_dc;
  105. pfn = pte_pfn(pte);
  106. if (unlikely(!pfn_valid(pfn)))
  107. return;
  108. page = pfn_to_page(pfn);
  109. if (page_mapping(page) && Page_dcache_dirty(page)) {
  110. addr = (unsigned long) page_address(page);
  111. if (exec || pages_do_alias(addr, address & PAGE_MASK))
  112. flush_data_cache_page(addr);
  113. ClearPageDcacheDirty(page);
  114. }
  115. }
  116. unsigned long _page_cachable_default;
  117. EXPORT_SYMBOL(_page_cachable_default);
  118. static inline void setup_protection_map(void)
  119. {
  120. if (cpu_has_rixi) {
  121. protection_map[0] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_EXEC | _PAGE_NO_READ);
  122. protection_map[1] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_EXEC);
  123. protection_map[2] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_EXEC | _PAGE_NO_READ);
  124. protection_map[3] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_EXEC);
  125. protection_map[4] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_READ);
  126. protection_map[5] = __pgprot(_page_cachable_default | _PAGE_PRESENT);
  127. protection_map[6] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_READ);
  128. protection_map[7] = __pgprot(_page_cachable_default | _PAGE_PRESENT);
  129. protection_map[8] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_EXEC | _PAGE_NO_READ);
  130. protection_map[9] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_EXEC);
  131. protection_map[10] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_EXEC | _PAGE_WRITE | _PAGE_NO_READ);
  132. protection_map[11] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_EXEC | _PAGE_WRITE);
  133. protection_map[12] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_NO_READ);
  134. protection_map[13] = __pgprot(_page_cachable_default | _PAGE_PRESENT);
  135. protection_map[14] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_WRITE | _PAGE_NO_READ);
  136. protection_map[15] = __pgprot(_page_cachable_default | _PAGE_PRESENT | _PAGE_WRITE);
  137. } else {
  138. protection_map[0] = PAGE_NONE;
  139. protection_map[1] = PAGE_READONLY;
  140. protection_map[2] = PAGE_COPY;
  141. protection_map[3] = PAGE_COPY;
  142. protection_map[4] = PAGE_READONLY;
  143. protection_map[5] = PAGE_READONLY;
  144. protection_map[6] = PAGE_COPY;
  145. protection_map[7] = PAGE_COPY;
  146. protection_map[8] = PAGE_NONE;
  147. protection_map[9] = PAGE_READONLY;
  148. protection_map[10] = PAGE_SHARED;
  149. protection_map[11] = PAGE_SHARED;
  150. protection_map[12] = PAGE_READONLY;
  151. protection_map[13] = PAGE_READONLY;
  152. protection_map[14] = PAGE_SHARED;
  153. protection_map[15] = PAGE_SHARED;
  154. }
  155. }
  156. void cpu_cache_init(void)
  157. {
  158. if (cpu_has_3k_cache) {
  159. extern void __weak r3k_cache_init(void);
  160. r3k_cache_init();
  161. }
  162. if (cpu_has_6k_cache) {
  163. extern void __weak r6k_cache_init(void);
  164. r6k_cache_init();
  165. }
  166. if (cpu_has_4k_cache) {
  167. extern void __weak r4k_cache_init(void);
  168. r4k_cache_init();
  169. }
  170. if (cpu_has_8k_cache) {
  171. extern void __weak r8k_cache_init(void);
  172. r8k_cache_init();
  173. }
  174. if (cpu_has_tx39_cache) {
  175. extern void __weak tx39_cache_init(void);
  176. tx39_cache_init();
  177. }
  178. if (cpu_has_octeon_cache) {
  179. extern void __weak octeon_cache_init(void);
  180. octeon_cache_init();
  181. }
  182. setup_protection_map();
  183. }
  184. int __weak __uncached_access(struct file *file, unsigned long addr)
  185. {
  186. if (file->f_flags & O_DSYNC)
  187. return 1;
  188. return addr >= __pa(high_memory);
  189. }