pgtable_32.h 13 KB

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  1. #ifndef _SPARC_PGTABLE_H
  2. #define _SPARC_PGTABLE_H
  3. /* asm/pgtable.h: Defines and functions used to work
  4. * with Sparc page tables.
  5. *
  6. * Copyright (C) 1995 David S. Miller (davem@caip.rutgers.edu)
  7. * Copyright (C) 1998 Jakub Jelinek (jj@sunsite.mff.cuni.cz)
  8. */
  9. #include <linux/const.h>
  10. #ifndef __ASSEMBLY__
  11. #include <asm-generic/4level-fixup.h>
  12. #include <linux/spinlock.h>
  13. #include <linux/swap.h>
  14. #include <asm/types.h>
  15. #include <asm/pgtsrmmu.h>
  16. #include <asm/vaddrs.h>
  17. #include <asm/oplib.h>
  18. #include <asm/cpu_type.h>
  19. struct vm_area_struct;
  20. struct page;
  21. extern void load_mmu(void);
  22. extern unsigned long calc_highpages(void);
  23. #define pte_ERROR(e) __builtin_trap()
  24. #define pmd_ERROR(e) __builtin_trap()
  25. #define pgd_ERROR(e) __builtin_trap()
  26. #define PMD_SHIFT 22
  27. #define PMD_SIZE (1UL << PMD_SHIFT)
  28. #define PMD_MASK (~(PMD_SIZE-1))
  29. #define PMD_ALIGN(__addr) (((__addr) + ~PMD_MASK) & PMD_MASK)
  30. #define PGDIR_SHIFT SRMMU_PGDIR_SHIFT
  31. #define PGDIR_SIZE SRMMU_PGDIR_SIZE
  32. #define PGDIR_MASK SRMMU_PGDIR_MASK
  33. #define PTRS_PER_PTE 1024
  34. #define PTRS_PER_PMD SRMMU_PTRS_PER_PMD
  35. #define PTRS_PER_PGD SRMMU_PTRS_PER_PGD
  36. #define USER_PTRS_PER_PGD PAGE_OFFSET / SRMMU_PGDIR_SIZE
  37. #define FIRST_USER_ADDRESS 0
  38. #define PTE_SIZE (PTRS_PER_PTE*4)
  39. #define PAGE_NONE SRMMU_PAGE_NONE
  40. #define PAGE_SHARED SRMMU_PAGE_SHARED
  41. #define PAGE_COPY SRMMU_PAGE_COPY
  42. #define PAGE_READONLY SRMMU_PAGE_RDONLY
  43. #define PAGE_KERNEL SRMMU_PAGE_KERNEL
  44. /* Top-level page directory */
  45. extern pgd_t swapper_pg_dir[1024];
  46. extern void paging_init(void);
  47. extern unsigned long ptr_in_current_pgd;
  48. /* xwr */
  49. #define __P000 PAGE_NONE
  50. #define __P001 PAGE_READONLY
  51. #define __P010 PAGE_COPY
  52. #define __P011 PAGE_COPY
  53. #define __P100 PAGE_READONLY
  54. #define __P101 PAGE_READONLY
  55. #define __P110 PAGE_COPY
  56. #define __P111 PAGE_COPY
  57. #define __S000 PAGE_NONE
  58. #define __S001 PAGE_READONLY
  59. #define __S010 PAGE_SHARED
  60. #define __S011 PAGE_SHARED
  61. #define __S100 PAGE_READONLY
  62. #define __S101 PAGE_READONLY
  63. #define __S110 PAGE_SHARED
  64. #define __S111 PAGE_SHARED
  65. extern int num_contexts;
  66. /* First physical page can be anywhere, the following is needed so that
  67. * va-->pa and vice versa conversions work properly without performance
  68. * hit for all __pa()/__va() operations.
  69. */
  70. extern unsigned long phys_base;
  71. extern unsigned long pfn_base;
  72. /*
  73. * BAD_PAGETABLE is used when we need a bogus page-table, while
  74. * BAD_PAGE is used for a bogus page.
  75. *
  76. * ZERO_PAGE is a global shared page that is always zero: used
  77. * for zero-mapped memory areas etc..
  78. */
  79. extern pte_t * __bad_pagetable(void);
  80. extern pte_t __bad_page(void);
  81. extern unsigned long empty_zero_page;
  82. #define BAD_PAGETABLE __bad_pagetable()
  83. #define BAD_PAGE __bad_page()
  84. #define ZERO_PAGE(vaddr) (virt_to_page(&empty_zero_page))
  85. /*
  86. * In general all page table modifications should use the V8 atomic
  87. * swap instruction. This insures the mmu and the cpu are in sync
  88. * with respect to ref/mod bits in the page tables.
  89. */
  90. static inline unsigned long srmmu_swap(unsigned long *addr, unsigned long value)
  91. {
  92. __asm__ __volatile__("swap [%2], %0" : "=&r" (value) : "0" (value), "r" (addr));
  93. return value;
  94. }
  95. /* Certain architectures need to do special things when pte's
  96. * within a page table are directly modified. Thus, the following
  97. * hook is made available.
  98. */
  99. static inline void set_pte(pte_t *ptep, pte_t pteval)
  100. {
  101. srmmu_swap((unsigned long *)ptep, pte_val(pteval));
  102. }
  103. #define set_pte_at(mm,addr,ptep,pteval) set_pte(ptep,pteval)
  104. static inline int srmmu_device_memory(unsigned long x)
  105. {
  106. return ((x & 0xF0000000) != 0);
  107. }
  108. static inline struct page *pmd_page(pmd_t pmd)
  109. {
  110. if (srmmu_device_memory(pmd_val(pmd)))
  111. BUG();
  112. return pfn_to_page((pmd_val(pmd) & SRMMU_PTD_PMASK) >> (PAGE_SHIFT-4));
  113. }
  114. static inline unsigned long pgd_page_vaddr(pgd_t pgd)
  115. {
  116. if (srmmu_device_memory(pgd_val(pgd))) {
  117. return ~0;
  118. } else {
  119. unsigned long v = pgd_val(pgd) & SRMMU_PTD_PMASK;
  120. return (unsigned long)__nocache_va(v << 4);
  121. }
  122. }
  123. static inline int pte_present(pte_t pte)
  124. {
  125. return ((pte_val(pte) & SRMMU_ET_MASK) == SRMMU_ET_PTE);
  126. }
  127. static inline int pte_none(pte_t pte)
  128. {
  129. return !pte_val(pte);
  130. }
  131. static inline void __pte_clear(pte_t *ptep)
  132. {
  133. set_pte(ptep, __pte(0));
  134. }
  135. static inline void pte_clear(struct mm_struct *mm, unsigned long addr, pte_t *ptep)
  136. {
  137. __pte_clear(ptep);
  138. }
  139. static inline int pmd_bad(pmd_t pmd)
  140. {
  141. return (pmd_val(pmd) & SRMMU_ET_MASK) != SRMMU_ET_PTD;
  142. }
  143. static inline int pmd_present(pmd_t pmd)
  144. {
  145. return ((pmd_val(pmd) & SRMMU_ET_MASK) == SRMMU_ET_PTD);
  146. }
  147. static inline int pmd_none(pmd_t pmd)
  148. {
  149. return !pmd_val(pmd);
  150. }
  151. static inline void pmd_clear(pmd_t *pmdp)
  152. {
  153. int i;
  154. for (i = 0; i < PTRS_PER_PTE/SRMMU_REAL_PTRS_PER_PTE; i++)
  155. set_pte((pte_t *)&pmdp->pmdv[i], __pte(0));
  156. }
  157. static inline int pgd_none(pgd_t pgd)
  158. {
  159. return !(pgd_val(pgd) & 0xFFFFFFF);
  160. }
  161. static inline int pgd_bad(pgd_t pgd)
  162. {
  163. return (pgd_val(pgd) & SRMMU_ET_MASK) != SRMMU_ET_PTD;
  164. }
  165. static inline int pgd_present(pgd_t pgd)
  166. {
  167. return ((pgd_val(pgd) & SRMMU_ET_MASK) == SRMMU_ET_PTD);
  168. }
  169. static inline void pgd_clear(pgd_t *pgdp)
  170. {
  171. set_pte((pte_t *)pgdp, __pte(0));
  172. }
  173. /*
  174. * The following only work if pte_present() is true.
  175. * Undefined behaviour if not..
  176. */
  177. static inline int pte_write(pte_t pte)
  178. {
  179. return pte_val(pte) & SRMMU_WRITE;
  180. }
  181. static inline int pte_dirty(pte_t pte)
  182. {
  183. return pte_val(pte) & SRMMU_DIRTY;
  184. }
  185. static inline int pte_young(pte_t pte)
  186. {
  187. return pte_val(pte) & SRMMU_REF;
  188. }
  189. /*
  190. * The following only work if pte_present() is not true.
  191. */
  192. static inline int pte_file(pte_t pte)
  193. {
  194. return pte_val(pte) & SRMMU_FILE;
  195. }
  196. static inline int pte_special(pte_t pte)
  197. {
  198. return 0;
  199. }
  200. static inline pte_t pte_wrprotect(pte_t pte)
  201. {
  202. return __pte(pte_val(pte) & ~SRMMU_WRITE);
  203. }
  204. static inline pte_t pte_mkclean(pte_t pte)
  205. {
  206. return __pte(pte_val(pte) & ~SRMMU_DIRTY);
  207. }
  208. static inline pte_t pte_mkold(pte_t pte)
  209. {
  210. return __pte(pte_val(pte) & ~SRMMU_REF);
  211. }
  212. static inline pte_t pte_mkwrite(pte_t pte)
  213. {
  214. return __pte(pte_val(pte) | SRMMU_WRITE);
  215. }
  216. static inline pte_t pte_mkdirty(pte_t pte)
  217. {
  218. return __pte(pte_val(pte) | SRMMU_DIRTY);
  219. }
  220. static inline pte_t pte_mkyoung(pte_t pte)
  221. {
  222. return __pte(pte_val(pte) | SRMMU_REF);
  223. }
  224. #define pte_mkspecial(pte) (pte)
  225. #define pfn_pte(pfn, prot) mk_pte(pfn_to_page(pfn), prot)
  226. static inline unsigned long pte_pfn(pte_t pte)
  227. {
  228. if (srmmu_device_memory(pte_val(pte))) {
  229. /* Just return something that will cause
  230. * pfn_valid() to return false. This makes
  231. * copy_one_pte() to just directly copy to
  232. * PTE over.
  233. */
  234. return ~0UL;
  235. }
  236. return (pte_val(pte) & SRMMU_PTE_PMASK) >> (PAGE_SHIFT-4);
  237. }
  238. #define pte_page(pte) pfn_to_page(pte_pfn(pte))
  239. /*
  240. * Conversion functions: convert a page and protection to a page entry,
  241. * and a page entry and page directory to the page they refer to.
  242. */
  243. static inline pte_t mk_pte(struct page *page, pgprot_t pgprot)
  244. {
  245. return __pte((page_to_pfn(page) << (PAGE_SHIFT-4)) | pgprot_val(pgprot));
  246. }
  247. static inline pte_t mk_pte_phys(unsigned long page, pgprot_t pgprot)
  248. {
  249. return __pte(((page) >> 4) | pgprot_val(pgprot));
  250. }
  251. static inline pte_t mk_pte_io(unsigned long page, pgprot_t pgprot, int space)
  252. {
  253. return __pte(((page) >> 4) | (space << 28) | pgprot_val(pgprot));
  254. }
  255. #define pgprot_noncached pgprot_noncached
  256. static inline pgprot_t pgprot_noncached(pgprot_t prot)
  257. {
  258. prot &= ~__pgprot(SRMMU_CACHE);
  259. return prot;
  260. }
  261. static pte_t pte_modify(pte_t pte, pgprot_t newprot) __attribute_const__;
  262. static inline pte_t pte_modify(pte_t pte, pgprot_t newprot)
  263. {
  264. return __pte((pte_val(pte) & SRMMU_CHG_MASK) |
  265. pgprot_val(newprot));
  266. }
  267. #define pgd_index(address) ((address) >> PGDIR_SHIFT)
  268. /* to find an entry in a page-table-directory */
  269. #define pgd_offset(mm, address) ((mm)->pgd + pgd_index(address))
  270. /* to find an entry in a kernel page-table-directory */
  271. #define pgd_offset_k(address) pgd_offset(&init_mm, address)
  272. /* Find an entry in the second-level page table.. */
  273. static inline pmd_t *pmd_offset(pgd_t * dir, unsigned long address)
  274. {
  275. return (pmd_t *) pgd_page_vaddr(*dir) +
  276. ((address >> PMD_SHIFT) & (PTRS_PER_PMD - 1));
  277. }
  278. /* Find an entry in the third-level page table.. */
  279. pte_t *pte_offset_kernel(pmd_t * dir, unsigned long address);
  280. /*
  281. * This shortcut works on sun4m (and sun4d) because the nocache area is static.
  282. */
  283. #define pte_offset_map(d, a) pte_offset_kernel(d,a)
  284. #define pte_unmap(pte) do{}while(0)
  285. struct seq_file;
  286. void mmu_info(struct seq_file *m);
  287. /* Fault handler stuff... */
  288. #define FAULT_CODE_PROT 0x1
  289. #define FAULT_CODE_WRITE 0x2
  290. #define FAULT_CODE_USER 0x4
  291. #define update_mmu_cache(vma, address, ptep) do { } while (0)
  292. void srmmu_mapiorange(unsigned int bus, unsigned long xpa,
  293. unsigned long xva, unsigned int len);
  294. void srmmu_unmapiorange(unsigned long virt_addr, unsigned int len);
  295. /* Encode and de-code a swap entry */
  296. static inline unsigned long __swp_type(swp_entry_t entry)
  297. {
  298. return (entry.val >> SRMMU_SWP_TYPE_SHIFT) & SRMMU_SWP_TYPE_MASK;
  299. }
  300. static inline unsigned long __swp_offset(swp_entry_t entry)
  301. {
  302. return (entry.val >> SRMMU_SWP_OFF_SHIFT) & SRMMU_SWP_OFF_MASK;
  303. }
  304. static inline swp_entry_t __swp_entry(unsigned long type, unsigned long offset)
  305. {
  306. return (swp_entry_t) {
  307. (type & SRMMU_SWP_TYPE_MASK) << SRMMU_SWP_TYPE_SHIFT
  308. | (offset & SRMMU_SWP_OFF_MASK) << SRMMU_SWP_OFF_SHIFT };
  309. }
  310. #define __pte_to_swp_entry(pte) ((swp_entry_t) { pte_val(pte) })
  311. #define __swp_entry_to_pte(x) ((pte_t) { (x).val })
  312. /* file-offset-in-pte helpers */
  313. static inline unsigned long pte_to_pgoff(pte_t pte)
  314. {
  315. return pte_val(pte) >> SRMMU_PTE_FILE_SHIFT;
  316. }
  317. static inline pte_t pgoff_to_pte(unsigned long pgoff)
  318. {
  319. return __pte((pgoff << SRMMU_PTE_FILE_SHIFT) | SRMMU_FILE);
  320. }
  321. /*
  322. * This is made a constant because mm/fremap.c required a constant.
  323. */
  324. #define PTE_FILE_MAX_BITS 24
  325. /*
  326. */
  327. struct ctx_list {
  328. struct ctx_list *next;
  329. struct ctx_list *prev;
  330. unsigned int ctx_number;
  331. struct mm_struct *ctx_mm;
  332. };
  333. extern struct ctx_list *ctx_list_pool; /* Dynamically allocated */
  334. extern struct ctx_list ctx_free; /* Head of free list */
  335. extern struct ctx_list ctx_used; /* Head of used contexts list */
  336. #define NO_CONTEXT -1
  337. static inline void remove_from_ctx_list(struct ctx_list *entry)
  338. {
  339. entry->next->prev = entry->prev;
  340. entry->prev->next = entry->next;
  341. }
  342. static inline void add_to_ctx_list(struct ctx_list *head, struct ctx_list *entry)
  343. {
  344. entry->next = head;
  345. (entry->prev = head->prev)->next = entry;
  346. head->prev = entry;
  347. }
  348. #define add_to_free_ctxlist(entry) add_to_ctx_list(&ctx_free, entry)
  349. #define add_to_used_ctxlist(entry) add_to_ctx_list(&ctx_used, entry)
  350. static inline unsigned long
  351. __get_phys (unsigned long addr)
  352. {
  353. switch (sparc_cpu_model){
  354. case sun4m:
  355. case sun4d:
  356. return ((srmmu_get_pte (addr) & 0xffffff00) << 4);
  357. default:
  358. return 0;
  359. }
  360. }
  361. static inline int
  362. __get_iospace (unsigned long addr)
  363. {
  364. switch (sparc_cpu_model){
  365. case sun4m:
  366. case sun4d:
  367. return (srmmu_get_pte (addr) >> 28);
  368. default:
  369. return -1;
  370. }
  371. }
  372. extern unsigned long *sparc_valid_addr_bitmap;
  373. /* Needs to be defined here and not in linux/mm.h, as it is arch dependent */
  374. #define kern_addr_valid(addr) \
  375. (test_bit(__pa((unsigned long)(addr))>>20, sparc_valid_addr_bitmap))
  376. /*
  377. * For sparc32&64, the pfn in io_remap_pfn_range() carries <iospace> in
  378. * its high 4 bits. These macros/functions put it there or get it from there.
  379. */
  380. #define MK_IOSPACE_PFN(space, pfn) (pfn | (space << (BITS_PER_LONG - 4)))
  381. #define GET_IOSPACE(pfn) (pfn >> (BITS_PER_LONG - 4))
  382. #define GET_PFN(pfn) (pfn & 0x0fffffffUL)
  383. extern int remap_pfn_range(struct vm_area_struct *, unsigned long, unsigned long,
  384. unsigned long, pgprot_t);
  385. static inline int io_remap_pfn_range(struct vm_area_struct *vma,
  386. unsigned long from, unsigned long pfn,
  387. unsigned long size, pgprot_t prot)
  388. {
  389. unsigned long long offset, space, phys_base;
  390. offset = ((unsigned long long) GET_PFN(pfn)) << PAGE_SHIFT;
  391. space = GET_IOSPACE(pfn);
  392. phys_base = offset | (space << 32ULL);
  393. return remap_pfn_range(vma, from, phys_base >> PAGE_SHIFT, size, prot);
  394. }
  395. #define __HAVE_ARCH_PTEP_SET_ACCESS_FLAGS
  396. #define ptep_set_access_flags(__vma, __address, __ptep, __entry, __dirty) \
  397. ({ \
  398. int __changed = !pte_same(*(__ptep), __entry); \
  399. if (__changed) { \
  400. set_pte_at((__vma)->vm_mm, (__address), __ptep, __entry); \
  401. flush_tlb_page(__vma, __address); \
  402. } \
  403. __changed; \
  404. })
  405. #include <asm-generic/pgtable.h>
  406. #endif /* !(__ASSEMBLY__) */
  407. #define VMALLOC_START _AC(0xfe600000,UL)
  408. #define VMALLOC_END _AC(0xffc00000,UL)
  409. /* We provide our own get_unmapped_area to cope with VA holes for userland */
  410. #define HAVE_ARCH_UNMAPPED_AREA
  411. /*
  412. * No page table caches to initialise
  413. */
  414. #define pgtable_cache_init() do { } while (0)
  415. #endif /* !(_SPARC_PGTABLE_H) */