hugetlb.h 16 KB

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  1. #ifndef _LINUX_HUGETLB_H
  2. #define _LINUX_HUGETLB_H
  3. #include <linux/mm_types.h>
  4. #include <linux/mmdebug.h>
  5. #include <linux/fs.h>
  6. #include <linux/hugetlb_inline.h>
  7. #include <linux/cgroup.h>
  8. #include <linux/list.h>
  9. #include <linux/kref.h>
  10. #include <asm/pgtable.h>
  11. struct ctl_table;
  12. struct user_struct;
  13. struct mmu_gather;
  14. #ifndef is_hugepd
  15. /*
  16. * Some architectures requires a hugepage directory format that is
  17. * required to support multiple hugepage sizes. For example
  18. * a4fe3ce76 "powerpc/mm: Allow more flexible layouts for hugepage pagetables"
  19. * introduced the same on powerpc. This allows for a more flexible hugepage
  20. * pagetable layout.
  21. */
  22. typedef struct { unsigned long pd; } hugepd_t;
  23. #define is_hugepd(hugepd) (0)
  24. #define __hugepd(x) ((hugepd_t) { (x) })
  25. static inline int gup_huge_pd(hugepd_t hugepd, unsigned long addr,
  26. unsigned pdshift, unsigned long end,
  27. int write, struct page **pages, int *nr)
  28. {
  29. return 0;
  30. }
  31. #else
  32. extern int gup_huge_pd(hugepd_t hugepd, unsigned long addr,
  33. unsigned pdshift, unsigned long end,
  34. int write, struct page **pages, int *nr);
  35. #endif
  36. #ifdef CONFIG_HUGETLB_PAGE
  37. #include <linux/mempolicy.h>
  38. #include <linux/shm.h>
  39. #include <asm/tlbflush.h>
  40. struct hugepage_subpool {
  41. spinlock_t lock;
  42. long count;
  43. long max_hpages; /* Maximum huge pages or -1 if no maximum. */
  44. long used_hpages; /* Used count against maximum, includes */
  45. /* both alloced and reserved pages. */
  46. struct hstate *hstate;
  47. long min_hpages; /* Minimum huge pages or -1 if no minimum. */
  48. long rsv_hpages; /* Pages reserved against global pool to */
  49. /* sasitfy minimum size. */
  50. };
  51. struct resv_map {
  52. struct kref refs;
  53. spinlock_t lock;
  54. struct list_head regions;
  55. long adds_in_progress;
  56. struct list_head region_cache;
  57. long region_cache_count;
  58. };
  59. extern struct resv_map *resv_map_alloc(void);
  60. void resv_map_release(struct kref *ref);
  61. extern spinlock_t hugetlb_lock;
  62. extern int hugetlb_max_hstate __read_mostly;
  63. #define for_each_hstate(h) \
  64. for ((h) = hstates; (h) < &hstates[hugetlb_max_hstate]; (h)++)
  65. struct hugepage_subpool *hugepage_new_subpool(struct hstate *h, long max_hpages,
  66. long min_hpages);
  67. void hugepage_put_subpool(struct hugepage_subpool *spool);
  68. void reset_vma_resv_huge_pages(struct vm_area_struct *vma);
  69. int hugetlb_sysctl_handler(struct ctl_table *, int, void __user *, size_t *, loff_t *);
  70. int hugetlb_overcommit_handler(struct ctl_table *, int, void __user *, size_t *, loff_t *);
  71. int hugetlb_treat_movable_handler(struct ctl_table *, int, void __user *, size_t *, loff_t *);
  72. #ifdef CONFIG_NUMA
  73. int hugetlb_mempolicy_sysctl_handler(struct ctl_table *, int,
  74. void __user *, size_t *, loff_t *);
  75. #endif
  76. int copy_hugetlb_page_range(struct mm_struct *, struct mm_struct *, struct vm_area_struct *);
  77. long follow_hugetlb_page(struct mm_struct *, struct vm_area_struct *,
  78. struct page **, struct vm_area_struct **,
  79. unsigned long *, unsigned long *, long, unsigned int,
  80. int *);
  81. void unmap_hugepage_range(struct vm_area_struct *,
  82. unsigned long, unsigned long, struct page *);
  83. void __unmap_hugepage_range_final(struct mmu_gather *tlb,
  84. struct vm_area_struct *vma,
  85. unsigned long start, unsigned long end,
  86. struct page *ref_page);
  87. void __unmap_hugepage_range(struct mmu_gather *tlb, struct vm_area_struct *vma,
  88. unsigned long start, unsigned long end,
  89. struct page *ref_page);
  90. void hugetlb_report_meminfo(struct seq_file *);
  91. int hugetlb_report_node_meminfo(int, char *);
  92. void hugetlb_show_meminfo(void);
  93. unsigned long hugetlb_total_pages(void);
  94. int hugetlb_fault(struct mm_struct *mm, struct vm_area_struct *vma,
  95. unsigned long address, unsigned int flags);
  96. int hugetlb_mcopy_atomic_pte(struct mm_struct *dst_mm, pte_t *dst_pte,
  97. struct vm_area_struct *dst_vma,
  98. unsigned long dst_addr,
  99. unsigned long src_addr,
  100. struct page **pagep);
  101. int hugetlb_reserve_pages(struct inode *inode, long from, long to,
  102. struct vm_area_struct *vma,
  103. vm_flags_t vm_flags);
  104. long hugetlb_unreserve_pages(struct inode *inode, long start, long end,
  105. long freed);
  106. bool isolate_huge_page(struct page *page, struct list_head *list);
  107. void putback_active_hugepage(struct page *page);
  108. void free_huge_page(struct page *page);
  109. void hugetlb_fix_reserve_counts(struct inode *inode);
  110. extern struct mutex *hugetlb_fault_mutex_table;
  111. u32 hugetlb_fault_mutex_hash(struct hstate *h, struct mm_struct *mm,
  112. struct vm_area_struct *vma,
  113. struct address_space *mapping,
  114. pgoff_t idx, unsigned long address);
  115. pte_t *huge_pmd_share(struct mm_struct *mm, unsigned long addr, pud_t *pud);
  116. extern int hugepages_treat_as_movable;
  117. extern int sysctl_hugetlb_shm_group;
  118. extern struct list_head huge_boot_pages;
  119. /* arch callbacks */
  120. pte_t *huge_pte_alloc(struct mm_struct *mm,
  121. unsigned long addr, unsigned long sz);
  122. pte_t *huge_pte_offset(struct mm_struct *mm,
  123. unsigned long addr, unsigned long sz);
  124. int huge_pmd_unshare(struct mm_struct *mm, unsigned long *addr, pte_t *ptep);
  125. struct page *follow_huge_addr(struct mm_struct *mm, unsigned long address,
  126. int write);
  127. struct page *follow_huge_pd(struct vm_area_struct *vma,
  128. unsigned long address, hugepd_t hpd,
  129. int flags, int pdshift);
  130. struct page *follow_huge_pmd(struct mm_struct *mm, unsigned long address,
  131. pmd_t *pmd, int flags);
  132. struct page *follow_huge_pud(struct mm_struct *mm, unsigned long address,
  133. pud_t *pud, int flags);
  134. struct page *follow_huge_pgd(struct mm_struct *mm, unsigned long address,
  135. pgd_t *pgd, int flags);
  136. int pmd_huge(pmd_t pmd);
  137. int pud_huge(pud_t pud);
  138. unsigned long hugetlb_change_protection(struct vm_area_struct *vma,
  139. unsigned long address, unsigned long end, pgprot_t newprot);
  140. bool is_hugetlb_entry_migration(pte_t pte);
  141. #else /* !CONFIG_HUGETLB_PAGE */
  142. static inline void reset_vma_resv_huge_pages(struct vm_area_struct *vma)
  143. {
  144. }
  145. static inline unsigned long hugetlb_total_pages(void)
  146. {
  147. return 0;
  148. }
  149. #define follow_hugetlb_page(m,v,p,vs,a,b,i,w,n) ({ BUG(); 0; })
  150. #define follow_huge_addr(mm, addr, write) ERR_PTR(-EINVAL)
  151. #define copy_hugetlb_page_range(src, dst, vma) ({ BUG(); 0; })
  152. static inline void hugetlb_report_meminfo(struct seq_file *m)
  153. {
  154. }
  155. #define hugetlb_report_node_meminfo(n, buf) 0
  156. static inline void hugetlb_show_meminfo(void)
  157. {
  158. }
  159. #define follow_huge_pd(vma, addr, hpd, flags, pdshift) NULL
  160. #define follow_huge_pmd(mm, addr, pmd, flags) NULL
  161. #define follow_huge_pud(mm, addr, pud, flags) NULL
  162. #define follow_huge_pgd(mm, addr, pgd, flags) NULL
  163. #define prepare_hugepage_range(file, addr, len) (-EINVAL)
  164. #define pmd_huge(x) 0
  165. #define pud_huge(x) 0
  166. #define is_hugepage_only_range(mm, addr, len) 0
  167. #define hugetlb_free_pgd_range(tlb, addr, end, floor, ceiling) ({BUG(); 0; })
  168. #define hugetlb_fault(mm, vma, addr, flags) ({ BUG(); 0; })
  169. #define hugetlb_mcopy_atomic_pte(dst_mm, dst_pte, dst_vma, dst_addr, \
  170. src_addr, pagep) ({ BUG(); 0; })
  171. #define huge_pte_offset(mm, address, sz) 0
  172. static inline bool isolate_huge_page(struct page *page, struct list_head *list)
  173. {
  174. return false;
  175. }
  176. #define putback_active_hugepage(p) do {} while (0)
  177. static inline unsigned long hugetlb_change_protection(struct vm_area_struct *vma,
  178. unsigned long address, unsigned long end, pgprot_t newprot)
  179. {
  180. return 0;
  181. }
  182. static inline void __unmap_hugepage_range_final(struct mmu_gather *tlb,
  183. struct vm_area_struct *vma, unsigned long start,
  184. unsigned long end, struct page *ref_page)
  185. {
  186. BUG();
  187. }
  188. static inline void __unmap_hugepage_range(struct mmu_gather *tlb,
  189. struct vm_area_struct *vma, unsigned long start,
  190. unsigned long end, struct page *ref_page)
  191. {
  192. BUG();
  193. }
  194. #endif /* !CONFIG_HUGETLB_PAGE */
  195. /*
  196. * hugepages at page global directory. If arch support
  197. * hugepages at pgd level, they need to define this.
  198. */
  199. #ifndef pgd_huge
  200. #define pgd_huge(x) 0
  201. #endif
  202. #ifndef p4d_huge
  203. #define p4d_huge(x) 0
  204. #endif
  205. #ifndef pgd_write
  206. static inline int pgd_write(pgd_t pgd)
  207. {
  208. BUG();
  209. return 0;
  210. }
  211. #endif
  212. #ifndef pud_write
  213. static inline int pud_write(pud_t pud)
  214. {
  215. BUG();
  216. return 0;
  217. }
  218. #endif
  219. #define HUGETLB_ANON_FILE "anon_hugepage"
  220. enum {
  221. /*
  222. * The file will be used as an shm file so shmfs accounting rules
  223. * apply
  224. */
  225. HUGETLB_SHMFS_INODE = 1,
  226. /*
  227. * The file is being created on the internal vfs mount and shmfs
  228. * accounting rules do not apply
  229. */
  230. HUGETLB_ANONHUGE_INODE = 2,
  231. };
  232. #ifdef CONFIG_HUGETLBFS
  233. struct hugetlbfs_sb_info {
  234. long max_inodes; /* inodes allowed */
  235. long free_inodes; /* inodes free */
  236. spinlock_t stat_lock;
  237. struct hstate *hstate;
  238. struct hugepage_subpool *spool;
  239. };
  240. static inline struct hugetlbfs_sb_info *HUGETLBFS_SB(struct super_block *sb)
  241. {
  242. return sb->s_fs_info;
  243. }
  244. extern const struct file_operations hugetlbfs_file_operations;
  245. extern const struct vm_operations_struct hugetlb_vm_ops;
  246. struct file *hugetlb_file_setup(const char *name, size_t size, vm_flags_t acct,
  247. struct user_struct **user, int creat_flags,
  248. int page_size_log);
  249. static inline bool is_file_hugepages(struct file *file)
  250. {
  251. if (file->f_op == &hugetlbfs_file_operations)
  252. return true;
  253. return is_file_shm_hugepages(file);
  254. }
  255. #else /* !CONFIG_HUGETLBFS */
  256. #define is_file_hugepages(file) false
  257. static inline struct file *
  258. hugetlb_file_setup(const char *name, size_t size, vm_flags_t acctflag,
  259. struct user_struct **user, int creat_flags,
  260. int page_size_log)
  261. {
  262. return ERR_PTR(-ENOSYS);
  263. }
  264. #endif /* !CONFIG_HUGETLBFS */
  265. #ifdef HAVE_ARCH_HUGETLB_UNMAPPED_AREA
  266. unsigned long hugetlb_get_unmapped_area(struct file *file, unsigned long addr,
  267. unsigned long len, unsigned long pgoff,
  268. unsigned long flags);
  269. #endif /* HAVE_ARCH_HUGETLB_UNMAPPED_AREA */
  270. #ifdef CONFIG_HUGETLB_PAGE
  271. #define HSTATE_NAME_LEN 32
  272. /* Defines one hugetlb page size */
  273. struct hstate {
  274. int next_nid_to_alloc;
  275. int next_nid_to_free;
  276. unsigned int order;
  277. unsigned long mask;
  278. unsigned long max_huge_pages;
  279. unsigned long nr_huge_pages;
  280. unsigned long free_huge_pages;
  281. unsigned long resv_huge_pages;
  282. unsigned long surplus_huge_pages;
  283. unsigned long nr_overcommit_huge_pages;
  284. struct list_head hugepage_activelist;
  285. struct list_head hugepage_freelists[MAX_NUMNODES];
  286. unsigned int nr_huge_pages_node[MAX_NUMNODES];
  287. unsigned int free_huge_pages_node[MAX_NUMNODES];
  288. unsigned int surplus_huge_pages_node[MAX_NUMNODES];
  289. #ifdef CONFIG_CGROUP_HUGETLB
  290. /* cgroup control files */
  291. struct cftype cgroup_files[5];
  292. #endif
  293. char name[HSTATE_NAME_LEN];
  294. };
  295. struct huge_bootmem_page {
  296. struct list_head list;
  297. struct hstate *hstate;
  298. #ifdef CONFIG_HIGHMEM
  299. phys_addr_t phys;
  300. #endif
  301. };
  302. struct page *alloc_huge_page(struct vm_area_struct *vma,
  303. unsigned long addr, int avoid_reserve);
  304. struct page *alloc_huge_page_node(struct hstate *h, int nid);
  305. struct page *alloc_huge_page_noerr(struct vm_area_struct *vma,
  306. unsigned long addr, int avoid_reserve);
  307. struct page *alloc_huge_page_nodemask(struct hstate *h, nodemask_t *nmask);
  308. int huge_add_to_page_cache(struct page *page, struct address_space *mapping,
  309. pgoff_t idx);
  310. /* arch callback */
  311. int __init alloc_bootmem_huge_page(struct hstate *h);
  312. void __init hugetlb_bad_size(void);
  313. void __init hugetlb_add_hstate(unsigned order);
  314. struct hstate *size_to_hstate(unsigned long size);
  315. #ifndef HUGE_MAX_HSTATE
  316. #define HUGE_MAX_HSTATE 1
  317. #endif
  318. extern struct hstate hstates[HUGE_MAX_HSTATE];
  319. extern unsigned int default_hstate_idx;
  320. #define default_hstate (hstates[default_hstate_idx])
  321. static inline struct hstate *hstate_inode(struct inode *i)
  322. {
  323. return HUGETLBFS_SB(i->i_sb)->hstate;
  324. }
  325. static inline struct hstate *hstate_file(struct file *f)
  326. {
  327. return hstate_inode(file_inode(f));
  328. }
  329. static inline struct hstate *hstate_sizelog(int page_size_log)
  330. {
  331. if (!page_size_log)
  332. return &default_hstate;
  333. return size_to_hstate(1UL << page_size_log);
  334. }
  335. static inline struct hstate *hstate_vma(struct vm_area_struct *vma)
  336. {
  337. return hstate_file(vma->vm_file);
  338. }
  339. static inline unsigned long huge_page_size(struct hstate *h)
  340. {
  341. return (unsigned long)PAGE_SIZE << h->order;
  342. }
  343. extern unsigned long vma_kernel_pagesize(struct vm_area_struct *vma);
  344. extern unsigned long vma_mmu_pagesize(struct vm_area_struct *vma);
  345. static inline unsigned long huge_page_mask(struct hstate *h)
  346. {
  347. return h->mask;
  348. }
  349. static inline unsigned int huge_page_order(struct hstate *h)
  350. {
  351. return h->order;
  352. }
  353. static inline unsigned huge_page_shift(struct hstate *h)
  354. {
  355. return h->order + PAGE_SHIFT;
  356. }
  357. static inline bool hstate_is_gigantic(struct hstate *h)
  358. {
  359. return huge_page_order(h) >= MAX_ORDER;
  360. }
  361. static inline unsigned int pages_per_huge_page(struct hstate *h)
  362. {
  363. return 1 << h->order;
  364. }
  365. static inline unsigned int blocks_per_huge_page(struct hstate *h)
  366. {
  367. return huge_page_size(h) / 512;
  368. }
  369. #include <asm/hugetlb.h>
  370. #ifndef arch_make_huge_pte
  371. static inline pte_t arch_make_huge_pte(pte_t entry, struct vm_area_struct *vma,
  372. struct page *page, int writable)
  373. {
  374. return entry;
  375. }
  376. #endif
  377. static inline struct hstate *page_hstate(struct page *page)
  378. {
  379. VM_BUG_ON_PAGE(!PageHuge(page), page);
  380. return size_to_hstate(PAGE_SIZE << compound_order(page));
  381. }
  382. static inline unsigned hstate_index_to_shift(unsigned index)
  383. {
  384. return hstates[index].order + PAGE_SHIFT;
  385. }
  386. static inline int hstate_index(struct hstate *h)
  387. {
  388. return h - hstates;
  389. }
  390. pgoff_t __basepage_index(struct page *page);
  391. /* Return page->index in PAGE_SIZE units */
  392. static inline pgoff_t basepage_index(struct page *page)
  393. {
  394. if (!PageCompound(page))
  395. return page->index;
  396. return __basepage_index(page);
  397. }
  398. extern int dissolve_free_huge_page(struct page *page);
  399. extern int dissolve_free_huge_pages(unsigned long start_pfn,
  400. unsigned long end_pfn);
  401. static inline bool hugepage_migration_supported(struct hstate *h)
  402. {
  403. #ifdef CONFIG_ARCH_ENABLE_HUGEPAGE_MIGRATION
  404. if ((huge_page_shift(h) == PMD_SHIFT) ||
  405. (huge_page_shift(h) == PGDIR_SHIFT))
  406. return true;
  407. else
  408. return false;
  409. #else
  410. return false;
  411. #endif
  412. }
  413. static inline spinlock_t *huge_pte_lockptr(struct hstate *h,
  414. struct mm_struct *mm, pte_t *pte)
  415. {
  416. if (huge_page_size(h) == PMD_SIZE)
  417. return pmd_lockptr(mm, (pmd_t *) pte);
  418. VM_BUG_ON(huge_page_size(h) == PAGE_SIZE);
  419. return &mm->page_table_lock;
  420. }
  421. #ifndef hugepages_supported
  422. /*
  423. * Some platform decide whether they support huge pages at boot
  424. * time. Some of them, such as powerpc, set HPAGE_SHIFT to 0
  425. * when there is no such support
  426. */
  427. #define hugepages_supported() (HPAGE_SHIFT != 0)
  428. #endif
  429. void hugetlb_report_usage(struct seq_file *m, struct mm_struct *mm);
  430. static inline void hugetlb_count_add(long l, struct mm_struct *mm)
  431. {
  432. atomic_long_add(l, &mm->hugetlb_usage);
  433. }
  434. static inline void hugetlb_count_sub(long l, struct mm_struct *mm)
  435. {
  436. atomic_long_sub(l, &mm->hugetlb_usage);
  437. }
  438. #ifndef set_huge_swap_pte_at
  439. static inline void set_huge_swap_pte_at(struct mm_struct *mm, unsigned long addr,
  440. pte_t *ptep, pte_t pte, unsigned long sz)
  441. {
  442. set_huge_pte_at(mm, addr, ptep, pte);
  443. }
  444. #endif
  445. #else /* CONFIG_HUGETLB_PAGE */
  446. struct hstate {};
  447. #define alloc_huge_page(v, a, r) NULL
  448. #define alloc_huge_page_node(h, nid) NULL
  449. #define alloc_huge_page_nodemask(h, nmask) NULL
  450. #define alloc_huge_page_noerr(v, a, r) NULL
  451. #define alloc_bootmem_huge_page(h) NULL
  452. #define hstate_file(f) NULL
  453. #define hstate_sizelog(s) NULL
  454. #define hstate_vma(v) NULL
  455. #define hstate_inode(i) NULL
  456. #define page_hstate(page) NULL
  457. #define huge_page_size(h) PAGE_SIZE
  458. #define huge_page_mask(h) PAGE_MASK
  459. #define vma_kernel_pagesize(v) PAGE_SIZE
  460. #define vma_mmu_pagesize(v) PAGE_SIZE
  461. #define huge_page_order(h) 0
  462. #define huge_page_shift(h) PAGE_SHIFT
  463. static inline bool hstate_is_gigantic(struct hstate *h)
  464. {
  465. return false;
  466. }
  467. static inline unsigned int pages_per_huge_page(struct hstate *h)
  468. {
  469. return 1;
  470. }
  471. static inline unsigned hstate_index_to_shift(unsigned index)
  472. {
  473. return 0;
  474. }
  475. static inline int hstate_index(struct hstate *h)
  476. {
  477. return 0;
  478. }
  479. static inline pgoff_t basepage_index(struct page *page)
  480. {
  481. return page->index;
  482. }
  483. static inline int dissolve_free_huge_page(struct page *page)
  484. {
  485. return 0;
  486. }
  487. static inline int dissolve_free_huge_pages(unsigned long start_pfn,
  488. unsigned long end_pfn)
  489. {
  490. return 0;
  491. }
  492. static inline bool hugepage_migration_supported(struct hstate *h)
  493. {
  494. return false;
  495. }
  496. static inline spinlock_t *huge_pte_lockptr(struct hstate *h,
  497. struct mm_struct *mm, pte_t *pte)
  498. {
  499. return &mm->page_table_lock;
  500. }
  501. static inline void hugetlb_report_usage(struct seq_file *f, struct mm_struct *m)
  502. {
  503. }
  504. static inline void hugetlb_count_sub(long l, struct mm_struct *mm)
  505. {
  506. }
  507. static inline void set_huge_swap_pte_at(struct mm_struct *mm, unsigned long addr,
  508. pte_t *ptep, pte_t pte, unsigned long sz)
  509. {
  510. }
  511. #endif /* CONFIG_HUGETLB_PAGE */
  512. static inline spinlock_t *huge_pte_lock(struct hstate *h,
  513. struct mm_struct *mm, pte_t *pte)
  514. {
  515. spinlock_t *ptl;
  516. ptl = huge_pte_lockptr(h, mm, pte);
  517. spin_lock(ptl);
  518. return ptl;
  519. }
  520. #endif /* _LINUX_HUGETLB_H */