pgtable.h 16 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) 2003 Ralf Baechle
  7. */
  8. #ifndef _ASM_PGTABLE_H
  9. #define _ASM_PGTABLE_H
  10. #include <linux/mm_types.h>
  11. #include <linux/mmzone.h>
  12. #ifdef CONFIG_32BIT
  13. #include <asm/pgtable-32.h>
  14. #endif
  15. #ifdef CONFIG_64BIT
  16. #include <asm/pgtable-64.h>
  17. #endif
  18. #include <asm/io.h>
  19. #include <asm/pgtable-bits.h>
  20. struct mm_struct;
  21. struct vm_area_struct;
  22. #define PAGE_NONE __pgprot(_PAGE_PRESENT | _CACHE_CACHABLE_NONCOHERENT)
  23. #define PAGE_SHARED __pgprot(_PAGE_PRESENT | _PAGE_WRITE | (cpu_has_rixi ? 0 : _PAGE_READ) | \
  24. _page_cachable_default)
  25. #define PAGE_COPY __pgprot(_PAGE_PRESENT | (cpu_has_rixi ? 0 : _PAGE_READ) | \
  26. (cpu_has_rixi ? _PAGE_NO_EXEC : 0) | _page_cachable_default)
  27. #define PAGE_READONLY __pgprot(_PAGE_PRESENT | (cpu_has_rixi ? 0 : _PAGE_READ) | \
  28. _page_cachable_default)
  29. #define PAGE_KERNEL __pgprot(_PAGE_PRESENT | __READABLE | __WRITEABLE | \
  30. _PAGE_GLOBAL | _page_cachable_default)
  31. #define PAGE_KERNEL_NC __pgprot(_PAGE_PRESENT | __READABLE | __WRITEABLE | \
  32. _PAGE_GLOBAL | _CACHE_CACHABLE_NONCOHERENT)
  33. #define PAGE_USERIO __pgprot(_PAGE_PRESENT | (cpu_has_rixi ? 0 : _PAGE_READ) | _PAGE_WRITE | \
  34. _page_cachable_default)
  35. #define PAGE_KERNEL_UNCACHED __pgprot(_PAGE_PRESENT | __READABLE | \
  36. __WRITEABLE | _PAGE_GLOBAL | _CACHE_UNCACHED)
  37. /*
  38. * If _PAGE_NO_EXEC is not defined, we can't do page protection for
  39. * execute, and consider it to be the same as read. Also, write
  40. * permissions imply read permissions. This is the closest we can get
  41. * by reasonable means..
  42. */
  43. /*
  44. * Dummy values to fill the table in mmap.c
  45. * The real values will be generated at runtime
  46. */
  47. #define __P000 __pgprot(0)
  48. #define __P001 __pgprot(0)
  49. #define __P010 __pgprot(0)
  50. #define __P011 __pgprot(0)
  51. #define __P100 __pgprot(0)
  52. #define __P101 __pgprot(0)
  53. #define __P110 __pgprot(0)
  54. #define __P111 __pgprot(0)
  55. #define __S000 __pgprot(0)
  56. #define __S001 __pgprot(0)
  57. #define __S010 __pgprot(0)
  58. #define __S011 __pgprot(0)
  59. #define __S100 __pgprot(0)
  60. #define __S101 __pgprot(0)
  61. #define __S110 __pgprot(0)
  62. #define __S111 __pgprot(0)
  63. extern unsigned long _page_cachable_default;
  64. /*
  65. * ZERO_PAGE is a global shared page that is always zero; used
  66. * for zero-mapped memory areas etc..
  67. */
  68. extern unsigned long empty_zero_page;
  69. extern unsigned long zero_page_mask;
  70. #define ZERO_PAGE(vaddr) \
  71. (virt_to_page((void *)(empty_zero_page + (((unsigned long)(vaddr)) & zero_page_mask))))
  72. #define __HAVE_COLOR_ZERO_PAGE
  73. extern void paging_init(void);
  74. /*
  75. * Conversion functions: convert a page and protection to a page entry,
  76. * and a page entry and page directory to the page they refer to.
  77. */
  78. #define pmd_phys(pmd) virt_to_phys((void *)pmd_val(pmd))
  79. #define __pmd_page(pmd) (pfn_to_page(pmd_phys(pmd) >> PAGE_SHIFT))
  80. #ifndef CONFIG_TRANSPARENT_HUGEPAGE
  81. #define pmd_page(pmd) __pmd_page(pmd)
  82. #endif /* CONFIG_TRANSPARENT_HUGEPAGE */
  83. #define pmd_page_vaddr(pmd) pmd_val(pmd)
  84. #define htw_stop() \
  85. do { \
  86. unsigned long flags; \
  87. \
  88. if (cpu_has_htw) { \
  89. local_irq_save(flags); \
  90. if(!raw_current_cpu_data.htw_seq++) { \
  91. write_c0_pwctl(read_c0_pwctl() & \
  92. ~(1 << MIPS_PWCTL_PWEN_SHIFT)); \
  93. back_to_back_c0_hazard(); \
  94. } \
  95. local_irq_restore(flags); \
  96. } \
  97. } while(0)
  98. #define htw_start() \
  99. do { \
  100. unsigned long flags; \
  101. \
  102. if (cpu_has_htw) { \
  103. local_irq_save(flags); \
  104. if (!--raw_current_cpu_data.htw_seq) { \
  105. write_c0_pwctl(read_c0_pwctl() | \
  106. (1 << MIPS_PWCTL_PWEN_SHIFT)); \
  107. back_to_back_c0_hazard(); \
  108. } \
  109. local_irq_restore(flags); \
  110. } \
  111. } while(0)
  112. extern void set_pte_at(struct mm_struct *mm, unsigned long addr, pte_t *ptep,
  113. pte_t pteval);
  114. #if defined(CONFIG_64BIT_PHYS_ADDR) && defined(CONFIG_CPU_MIPS32)
  115. #define pte_none(pte) (!(((pte).pte_low | (pte).pte_high) & ~_PAGE_GLOBAL))
  116. #define pte_present(pte) ((pte).pte_low & _PAGE_PRESENT)
  117. static inline void set_pte(pte_t *ptep, pte_t pte)
  118. {
  119. ptep->pte_high = pte.pte_high;
  120. smp_wmb();
  121. ptep->pte_low = pte.pte_low;
  122. if (pte.pte_low & _PAGE_GLOBAL) {
  123. pte_t *buddy = ptep_buddy(ptep);
  124. /*
  125. * Make sure the buddy is global too (if it's !none,
  126. * it better already be global)
  127. */
  128. if (pte_none(*buddy)) {
  129. buddy->pte_low |= _PAGE_GLOBAL;
  130. buddy->pte_high |= _PAGE_GLOBAL;
  131. }
  132. }
  133. }
  134. static inline void pte_clear(struct mm_struct *mm, unsigned long addr, pte_t *ptep)
  135. {
  136. pte_t null = __pte(0);
  137. htw_stop();
  138. /* Preserve global status for the pair */
  139. if (ptep_buddy(ptep)->pte_low & _PAGE_GLOBAL)
  140. null.pte_low = null.pte_high = _PAGE_GLOBAL;
  141. set_pte_at(mm, addr, ptep, null);
  142. htw_start();
  143. }
  144. #else
  145. #define pte_none(pte) (!(pte_val(pte) & ~_PAGE_GLOBAL))
  146. #define pte_present(pte) (pte_val(pte) & _PAGE_PRESENT)
  147. /*
  148. * Certain architectures need to do special things when pte's
  149. * within a page table are directly modified. Thus, the following
  150. * hook is made available.
  151. */
  152. static inline void set_pte(pte_t *ptep, pte_t pteval)
  153. {
  154. *ptep = pteval;
  155. #if !defined(CONFIG_CPU_R3000) && !defined(CONFIG_CPU_TX39XX)
  156. if (pte_val(pteval) & _PAGE_GLOBAL) {
  157. pte_t *buddy = ptep_buddy(ptep);
  158. /*
  159. * Make sure the buddy is global too (if it's !none,
  160. * it better already be global)
  161. */
  162. if (pte_none(*buddy))
  163. pte_val(*buddy) = pte_val(*buddy) | _PAGE_GLOBAL;
  164. }
  165. #endif
  166. }
  167. static inline void pte_clear(struct mm_struct *mm, unsigned long addr, pte_t *ptep)
  168. {
  169. htw_stop();
  170. #if !defined(CONFIG_CPU_R3000) && !defined(CONFIG_CPU_TX39XX)
  171. /* Preserve global status for the pair */
  172. if (pte_val(*ptep_buddy(ptep)) & _PAGE_GLOBAL)
  173. set_pte_at(mm, addr, ptep, __pte(_PAGE_GLOBAL));
  174. else
  175. #endif
  176. set_pte_at(mm, addr, ptep, __pte(0));
  177. htw_start();
  178. }
  179. #endif
  180. /*
  181. * (pmds are folded into puds so this doesn't get actually called,
  182. * but the define is needed for a generic inline function.)
  183. */
  184. #define set_pmd(pmdptr, pmdval) do { *(pmdptr) = (pmdval); } while(0)
  185. #ifndef __PAGETABLE_PMD_FOLDED
  186. /*
  187. * (puds are folded into pgds so this doesn't get actually called,
  188. * but the define is needed for a generic inline function.)
  189. */
  190. #define set_pud(pudptr, pudval) do { *(pudptr) = (pudval); } while(0)
  191. #endif
  192. #define PGD_T_LOG2 (__builtin_ffs(sizeof(pgd_t)) - 1)
  193. #define PMD_T_LOG2 (__builtin_ffs(sizeof(pmd_t)) - 1)
  194. #define PTE_T_LOG2 (__builtin_ffs(sizeof(pte_t)) - 1)
  195. /*
  196. * We used to declare this array with size but gcc 3.3 and older are not able
  197. * to find that this expression is a constant, so the size is dropped.
  198. */
  199. extern pgd_t swapper_pg_dir[];
  200. /*
  201. * The following only work if pte_present() is true.
  202. * Undefined behaviour if not..
  203. */
  204. #if defined(CONFIG_64BIT_PHYS_ADDR) && defined(CONFIG_CPU_MIPS32)
  205. static inline int pte_write(pte_t pte) { return pte.pte_low & _PAGE_WRITE; }
  206. static inline int pte_dirty(pte_t pte) { return pte.pte_low & _PAGE_MODIFIED; }
  207. static inline int pte_young(pte_t pte) { return pte.pte_low & _PAGE_ACCESSED; }
  208. static inline int pte_file(pte_t pte) { return pte.pte_low & _PAGE_FILE; }
  209. static inline pte_t pte_wrprotect(pte_t pte)
  210. {
  211. pte.pte_low &= ~(_PAGE_WRITE | _PAGE_SILENT_WRITE);
  212. pte.pte_high &= ~_PAGE_SILENT_WRITE;
  213. return pte;
  214. }
  215. static inline pte_t pte_mkclean(pte_t pte)
  216. {
  217. pte.pte_low &= ~(_PAGE_MODIFIED | _PAGE_SILENT_WRITE);
  218. pte.pte_high &= ~_PAGE_SILENT_WRITE;
  219. return pte;
  220. }
  221. static inline pte_t pte_mkold(pte_t pte)
  222. {
  223. pte.pte_low &= ~(_PAGE_ACCESSED | _PAGE_SILENT_READ);
  224. pte.pte_high &= ~_PAGE_SILENT_READ;
  225. return pte;
  226. }
  227. static inline pte_t pte_mkwrite(pte_t pte)
  228. {
  229. pte.pte_low |= _PAGE_WRITE;
  230. if (pte.pte_low & _PAGE_MODIFIED) {
  231. pte.pte_low |= _PAGE_SILENT_WRITE;
  232. pte.pte_high |= _PAGE_SILENT_WRITE;
  233. }
  234. return pte;
  235. }
  236. static inline pte_t pte_mkdirty(pte_t pte)
  237. {
  238. pte.pte_low |= _PAGE_MODIFIED;
  239. if (pte.pte_low & _PAGE_WRITE) {
  240. pte.pte_low |= _PAGE_SILENT_WRITE;
  241. pte.pte_high |= _PAGE_SILENT_WRITE;
  242. }
  243. return pte;
  244. }
  245. static inline pte_t pte_mkyoung(pte_t pte)
  246. {
  247. pte.pte_low |= _PAGE_ACCESSED;
  248. if (pte.pte_low & _PAGE_READ) {
  249. pte.pte_low |= _PAGE_SILENT_READ;
  250. pte.pte_high |= _PAGE_SILENT_READ;
  251. }
  252. return pte;
  253. }
  254. #else
  255. static inline int pte_write(pte_t pte) { return pte_val(pte) & _PAGE_WRITE; }
  256. static inline int pte_dirty(pte_t pte) { return pte_val(pte) & _PAGE_MODIFIED; }
  257. static inline int pte_young(pte_t pte) { return pte_val(pte) & _PAGE_ACCESSED; }
  258. static inline int pte_file(pte_t pte) { return pte_val(pte) & _PAGE_FILE; }
  259. static inline pte_t pte_wrprotect(pte_t pte)
  260. {
  261. pte_val(pte) &= ~(_PAGE_WRITE | _PAGE_SILENT_WRITE);
  262. return pte;
  263. }
  264. static inline pte_t pte_mkclean(pte_t pte)
  265. {
  266. pte_val(pte) &= ~(_PAGE_MODIFIED|_PAGE_SILENT_WRITE);
  267. return pte;
  268. }
  269. static inline pte_t pte_mkold(pte_t pte)
  270. {
  271. pte_val(pte) &= ~(_PAGE_ACCESSED|_PAGE_SILENT_READ);
  272. return pte;
  273. }
  274. static inline pte_t pte_mkwrite(pte_t pte)
  275. {
  276. pte_val(pte) |= _PAGE_WRITE;
  277. if (pte_val(pte) & _PAGE_MODIFIED)
  278. pte_val(pte) |= _PAGE_SILENT_WRITE;
  279. return pte;
  280. }
  281. static inline pte_t pte_mkdirty(pte_t pte)
  282. {
  283. pte_val(pte) |= _PAGE_MODIFIED;
  284. if (pte_val(pte) & _PAGE_WRITE)
  285. pte_val(pte) |= _PAGE_SILENT_WRITE;
  286. return pte;
  287. }
  288. static inline pte_t pte_mkyoung(pte_t pte)
  289. {
  290. pte_val(pte) |= _PAGE_ACCESSED;
  291. if (cpu_has_rixi) {
  292. if (!(pte_val(pte) & _PAGE_NO_READ))
  293. pte_val(pte) |= _PAGE_SILENT_READ;
  294. } else {
  295. if (pte_val(pte) & _PAGE_READ)
  296. pte_val(pte) |= _PAGE_SILENT_READ;
  297. }
  298. return pte;
  299. }
  300. #ifdef _PAGE_HUGE
  301. static inline int pte_huge(pte_t pte) { return pte_val(pte) & _PAGE_HUGE; }
  302. static inline pte_t pte_mkhuge(pte_t pte)
  303. {
  304. pte_val(pte) |= _PAGE_HUGE;
  305. return pte;
  306. }
  307. #endif /* _PAGE_HUGE */
  308. #endif
  309. static inline int pte_special(pte_t pte) { return 0; }
  310. static inline pte_t pte_mkspecial(pte_t pte) { return pte; }
  311. /*
  312. * Macro to make mark a page protection value as "uncacheable". Note
  313. * that "protection" is really a misnomer here as the protection value
  314. * contains the memory attribute bits, dirty bits, and various other
  315. * bits as well.
  316. */
  317. #define pgprot_noncached pgprot_noncached
  318. static inline pgprot_t pgprot_noncached(pgprot_t _prot)
  319. {
  320. unsigned long prot = pgprot_val(_prot);
  321. prot = (prot & ~_CACHE_MASK) | _CACHE_UNCACHED;
  322. return __pgprot(prot);
  323. }
  324. static inline pgprot_t pgprot_writecombine(pgprot_t _prot)
  325. {
  326. unsigned long prot = pgprot_val(_prot);
  327. /* cpu_data[0].writecombine is already shifted by _CACHE_SHIFT */
  328. prot = (prot & ~_CACHE_MASK) | cpu_data[0].writecombine;
  329. return __pgprot(prot);
  330. }
  331. /*
  332. * Conversion functions: convert a page and protection to a page entry,
  333. * and a page entry and page directory to the page they refer to.
  334. */
  335. #define mk_pte(page, pgprot) pfn_pte(page_to_pfn(page), (pgprot))
  336. #if defined(CONFIG_64BIT_PHYS_ADDR) && defined(CONFIG_CPU_MIPS32)
  337. static inline pte_t pte_modify(pte_t pte, pgprot_t newprot)
  338. {
  339. pte.pte_low &= _PAGE_CHG_MASK;
  340. pte.pte_high &= ~0x3f;
  341. pte.pte_low |= pgprot_val(newprot);
  342. pte.pte_high |= pgprot_val(newprot) & 0x3f;
  343. return pte;
  344. }
  345. #else
  346. static inline pte_t pte_modify(pte_t pte, pgprot_t newprot)
  347. {
  348. return __pte((pte_val(pte) & _PAGE_CHG_MASK) | pgprot_val(newprot));
  349. }
  350. #endif
  351. extern void __update_tlb(struct vm_area_struct *vma, unsigned long address,
  352. pte_t pte);
  353. static inline void update_mmu_cache(struct vm_area_struct *vma,
  354. unsigned long address, pte_t *ptep)
  355. {
  356. pte_t pte = *ptep;
  357. __update_tlb(vma, address, pte);
  358. }
  359. static inline void update_mmu_cache_pmd(struct vm_area_struct *vma,
  360. unsigned long address, pmd_t *pmdp)
  361. {
  362. pte_t pte = *(pte_t *)pmdp;
  363. __update_tlb(vma, address, pte);
  364. }
  365. #define kern_addr_valid(addr) (1)
  366. #ifdef CONFIG_64BIT_PHYS_ADDR
  367. extern int remap_pfn_range(struct vm_area_struct *vma, unsigned long from, unsigned long pfn, unsigned long size, pgprot_t prot);
  368. static inline int io_remap_pfn_range(struct vm_area_struct *vma,
  369. unsigned long vaddr,
  370. unsigned long pfn,
  371. unsigned long size,
  372. pgprot_t prot)
  373. {
  374. phys_t phys_addr_high = fixup_bigphys_addr(pfn << PAGE_SHIFT, size);
  375. return remap_pfn_range(vma, vaddr, phys_addr_high >> PAGE_SHIFT, size, prot);
  376. }
  377. #define io_remap_pfn_range io_remap_pfn_range
  378. #endif
  379. #ifdef CONFIG_TRANSPARENT_HUGEPAGE
  380. extern int has_transparent_hugepage(void);
  381. static inline int pmd_trans_huge(pmd_t pmd)
  382. {
  383. return !!(pmd_val(pmd) & _PAGE_HUGE);
  384. }
  385. static inline pmd_t pmd_mkhuge(pmd_t pmd)
  386. {
  387. pmd_val(pmd) |= _PAGE_HUGE;
  388. return pmd;
  389. }
  390. static inline int pmd_trans_splitting(pmd_t pmd)
  391. {
  392. return !!(pmd_val(pmd) & _PAGE_SPLITTING);
  393. }
  394. static inline pmd_t pmd_mksplitting(pmd_t pmd)
  395. {
  396. pmd_val(pmd) |= _PAGE_SPLITTING;
  397. return pmd;
  398. }
  399. extern void set_pmd_at(struct mm_struct *mm, unsigned long addr,
  400. pmd_t *pmdp, pmd_t pmd);
  401. #define __HAVE_ARCH_PMDP_SPLITTING_FLUSH
  402. /* Extern to avoid header file madness */
  403. extern void pmdp_splitting_flush(struct vm_area_struct *vma,
  404. unsigned long address,
  405. pmd_t *pmdp);
  406. #define __HAVE_ARCH_PMD_WRITE
  407. static inline int pmd_write(pmd_t pmd)
  408. {
  409. return !!(pmd_val(pmd) & _PAGE_WRITE);
  410. }
  411. static inline pmd_t pmd_wrprotect(pmd_t pmd)
  412. {
  413. pmd_val(pmd) &= ~(_PAGE_WRITE | _PAGE_SILENT_WRITE);
  414. return pmd;
  415. }
  416. static inline pmd_t pmd_mkwrite(pmd_t pmd)
  417. {
  418. pmd_val(pmd) |= _PAGE_WRITE;
  419. if (pmd_val(pmd) & _PAGE_MODIFIED)
  420. pmd_val(pmd) |= _PAGE_SILENT_WRITE;
  421. return pmd;
  422. }
  423. static inline int pmd_dirty(pmd_t pmd)
  424. {
  425. return !!(pmd_val(pmd) & _PAGE_MODIFIED);
  426. }
  427. static inline pmd_t pmd_mkclean(pmd_t pmd)
  428. {
  429. pmd_val(pmd) &= ~(_PAGE_MODIFIED | _PAGE_SILENT_WRITE);
  430. return pmd;
  431. }
  432. static inline pmd_t pmd_mkdirty(pmd_t pmd)
  433. {
  434. pmd_val(pmd) |= _PAGE_MODIFIED;
  435. if (pmd_val(pmd) & _PAGE_WRITE)
  436. pmd_val(pmd) |= _PAGE_SILENT_WRITE;
  437. return pmd;
  438. }
  439. static inline int pmd_young(pmd_t pmd)
  440. {
  441. return !!(pmd_val(pmd) & _PAGE_ACCESSED);
  442. }
  443. static inline pmd_t pmd_mkold(pmd_t pmd)
  444. {
  445. pmd_val(pmd) &= ~(_PAGE_ACCESSED|_PAGE_SILENT_READ);
  446. return pmd;
  447. }
  448. static inline pmd_t pmd_mkyoung(pmd_t pmd)
  449. {
  450. pmd_val(pmd) |= _PAGE_ACCESSED;
  451. if (cpu_has_rixi) {
  452. if (!(pmd_val(pmd) & _PAGE_NO_READ))
  453. pmd_val(pmd) |= _PAGE_SILENT_READ;
  454. } else {
  455. if (pmd_val(pmd) & _PAGE_READ)
  456. pmd_val(pmd) |= _PAGE_SILENT_READ;
  457. }
  458. return pmd;
  459. }
  460. /* Extern to avoid header file madness */
  461. extern pmd_t mk_pmd(struct page *page, pgprot_t prot);
  462. static inline unsigned long pmd_pfn(pmd_t pmd)
  463. {
  464. return pmd_val(pmd) >> _PFN_SHIFT;
  465. }
  466. static inline struct page *pmd_page(pmd_t pmd)
  467. {
  468. if (pmd_trans_huge(pmd))
  469. return pfn_to_page(pmd_pfn(pmd));
  470. return pfn_to_page(pmd_phys(pmd) >> PAGE_SHIFT);
  471. }
  472. static inline pmd_t pmd_modify(pmd_t pmd, pgprot_t newprot)
  473. {
  474. pmd_val(pmd) = (pmd_val(pmd) & _PAGE_CHG_MASK) | pgprot_val(newprot);
  475. return pmd;
  476. }
  477. static inline pmd_t pmd_mknotpresent(pmd_t pmd)
  478. {
  479. pmd_val(pmd) &= ~(_PAGE_PRESENT | _PAGE_VALID | _PAGE_DIRTY);
  480. return pmd;
  481. }
  482. /*
  483. * The generic version pmdp_get_and_clear uses a version of pmd_clear() with a
  484. * different prototype.
  485. */
  486. #define __HAVE_ARCH_PMDP_GET_AND_CLEAR
  487. static inline pmd_t pmdp_get_and_clear(struct mm_struct *mm,
  488. unsigned long address, pmd_t *pmdp)
  489. {
  490. pmd_t old = *pmdp;
  491. pmd_clear(pmdp);
  492. return old;
  493. }
  494. #endif /* CONFIG_TRANSPARENT_HUGEPAGE */
  495. #include <asm-generic/pgtable.h>
  496. /*
  497. * uncached accelerated TLB map for video memory access
  498. */
  499. #ifdef CONFIG_CPU_SUPPORTS_UNCACHED_ACCELERATED
  500. #define __HAVE_PHYS_MEM_ACCESS_PROT
  501. struct file;
  502. pgprot_t phys_mem_access_prot(struct file *file, unsigned long pfn,
  503. unsigned long size, pgprot_t vma_prot);
  504. int phys_mem_access_prot_allowed(struct file *file, unsigned long pfn,
  505. unsigned long size, pgprot_t *vma_prot);
  506. #endif
  507. /*
  508. * We provide our own get_unmapped area to cope with the virtual aliasing
  509. * constraints placed on us by the cache architecture.
  510. */
  511. #define HAVE_ARCH_UNMAPPED_AREA
  512. #define HAVE_ARCH_UNMAPPED_AREA_TOPDOWN
  513. /*
  514. * No page table caches to initialise
  515. */
  516. #define pgtable_cache_init() do { } while (0)
  517. #endif /* _ASM_PGTABLE_H */