xref: /OK3568_Linux_fs/kernel/include/linux/hugetlb.h (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1 /* SPDX-License-Identifier: GPL-2.0 */
2 #ifndef _LINUX_HUGETLB_H
3 #define _LINUX_HUGETLB_H
4 
5 #include <linux/mm_types.h>
6 #include <linux/mmdebug.h>
7 #include <linux/fs.h>
8 #include <linux/hugetlb_inline.h>
9 #include <linux/cgroup.h>
10 #include <linux/list.h>
11 #include <linux/kref.h>
12 #include <linux/pgtable.h>
13 #include <linux/gfp.h>
14 #include <linux/userfaultfd_k.h>
15 
16 struct ctl_table;
17 struct user_struct;
18 struct mmu_gather;
19 
20 #ifndef is_hugepd
21 typedef struct { unsigned long pd; } hugepd_t;
22 #define is_hugepd(hugepd) (0)
23 #define __hugepd(x) ((hugepd_t) { (x) })
24 #endif
25 
26 #ifdef CONFIG_HUGETLB_PAGE
27 
28 #include <linux/mempolicy.h>
29 #include <linux/shm.h>
30 #include <asm/tlbflush.h>
31 
32 struct hugepage_subpool {
33 	spinlock_t lock;
34 	long count;
35 	long max_hpages;	/* Maximum huge pages or -1 if no maximum. */
36 	long used_hpages;	/* Used count against maximum, includes */
37 				/* both alloced and reserved pages. */
38 	struct hstate *hstate;
39 	long min_hpages;	/* Minimum huge pages or -1 if no minimum. */
40 	long rsv_hpages;	/* Pages reserved against global pool to */
41 				/* sasitfy minimum size. */
42 };
43 
44 struct resv_map {
45 	struct kref refs;
46 	spinlock_t lock;
47 	struct list_head regions;
48 	long adds_in_progress;
49 	struct list_head region_cache;
50 	long region_cache_count;
51 #ifdef CONFIG_CGROUP_HUGETLB
52 	/*
53 	 * On private mappings, the counter to uncharge reservations is stored
54 	 * here. If these fields are 0, then either the mapping is shared, or
55 	 * cgroup accounting is disabled for this resv_map.
56 	 */
57 	struct page_counter *reservation_counter;
58 	unsigned long pages_per_hpage;
59 	struct cgroup_subsys_state *css;
60 #endif
61 };
62 
63 /*
64  * Region tracking -- allows tracking of reservations and instantiated pages
65  *                    across the pages in a mapping.
66  *
67  * The region data structures are embedded into a resv_map and protected
68  * by a resv_map's lock.  The set of regions within the resv_map represent
69  * reservations for huge pages, or huge pages that have already been
70  * instantiated within the map.  The from and to elements are huge page
71  * indicies into the associated mapping.  from indicates the starting index
72  * of the region.  to represents the first index past the end of  the region.
73  *
74  * For example, a file region structure with from == 0 and to == 4 represents
75  * four huge pages in a mapping.  It is important to note that the to element
76  * represents the first element past the end of the region. This is used in
77  * arithmetic as 4(to) - 0(from) = 4 huge pages in the region.
78  *
79  * Interval notation of the form [from, to) will be used to indicate that
80  * the endpoint from is inclusive and to is exclusive.
81  */
82 struct file_region {
83 	struct list_head link;
84 	long from;
85 	long to;
86 #ifdef CONFIG_CGROUP_HUGETLB
87 	/*
88 	 * On shared mappings, each reserved region appears as a struct
89 	 * file_region in resv_map. These fields hold the info needed to
90 	 * uncharge each reservation.
91 	 */
92 	struct page_counter *reservation_counter;
93 	struct cgroup_subsys_state *css;
94 #endif
95 };
96 
97 extern struct resv_map *resv_map_alloc(void);
98 void resv_map_release(struct kref *ref);
99 
100 extern spinlock_t hugetlb_lock;
101 extern int hugetlb_max_hstate __read_mostly;
102 #define for_each_hstate(h) \
103 	for ((h) = hstates; (h) < &hstates[hugetlb_max_hstate]; (h)++)
104 
105 struct hugepage_subpool *hugepage_new_subpool(struct hstate *h, long max_hpages,
106 						long min_hpages);
107 void hugepage_put_subpool(struct hugepage_subpool *spool);
108 
109 void reset_vma_resv_huge_pages(struct vm_area_struct *vma);
110 int hugetlb_sysctl_handler(struct ctl_table *, int, void *, size_t *, loff_t *);
111 int hugetlb_overcommit_handler(struct ctl_table *, int, void *, size_t *,
112 		loff_t *);
113 int hugetlb_treat_movable_handler(struct ctl_table *, int, void *, size_t *,
114 		loff_t *);
115 int hugetlb_mempolicy_sysctl_handler(struct ctl_table *, int, void *, size_t *,
116 		loff_t *);
117 
118 int copy_hugetlb_page_range(struct mm_struct *, struct mm_struct *, struct vm_area_struct *);
119 long follow_hugetlb_page(struct mm_struct *, struct vm_area_struct *,
120 			 struct page **, struct vm_area_struct **,
121 			 unsigned long *, unsigned long *, long, unsigned int,
122 			 int *);
123 void unmap_hugepage_range(struct vm_area_struct *,
124 			  unsigned long, unsigned long, struct page *);
125 void __unmap_hugepage_range_final(struct mmu_gather *tlb,
126 			  struct vm_area_struct *vma,
127 			  unsigned long start, unsigned long end,
128 			  struct page *ref_page);
129 void __unmap_hugepage_range(struct mmu_gather *tlb, struct vm_area_struct *vma,
130 				unsigned long start, unsigned long end,
131 				struct page *ref_page);
132 void hugetlb_report_meminfo(struct seq_file *);
133 int hugetlb_report_node_meminfo(char *buf, int len, int nid);
134 void hugetlb_show_meminfo(void);
135 unsigned long hugetlb_total_pages(void);
136 vm_fault_t hugetlb_fault(struct mm_struct *mm, struct vm_area_struct *vma,
137 			unsigned long address, unsigned int flags);
138 #ifdef CONFIG_USERFAULTFD
139 int hugetlb_mcopy_atomic_pte(struct mm_struct *dst_mm, pte_t *dst_pte,
140 				struct vm_area_struct *dst_vma,
141 				unsigned long dst_addr,
142 				unsigned long src_addr,
143 				enum mcopy_atomic_mode mode,
144 				struct page **pagep);
145 #endif /* CONFIG_USERFAULTFD */
146 int hugetlb_reserve_pages(struct inode *inode, long from, long to,
147 						struct vm_area_struct *vma,
148 						vm_flags_t vm_flags);
149 long hugetlb_unreserve_pages(struct inode *inode, long start, long end,
150 						long freed);
151 bool isolate_huge_page(struct page *page, struct list_head *list);
152 void putback_active_hugepage(struct page *page);
153 void move_hugetlb_state(struct page *oldpage, struct page *newpage, int reason);
154 void free_huge_page(struct page *page);
155 void hugetlb_fix_reserve_counts(struct inode *inode);
156 extern struct mutex *hugetlb_fault_mutex_table;
157 u32 hugetlb_fault_mutex_hash(struct address_space *mapping, pgoff_t idx);
158 
159 pte_t *huge_pmd_share(struct mm_struct *mm, struct vm_area_struct *vma,
160 		      unsigned long addr, pud_t *pud);
161 
162 struct address_space *hugetlb_page_mapping_lock_write(struct page *hpage);
163 
164 extern int sysctl_hugetlb_shm_group;
165 extern struct list_head huge_boot_pages;
166 
167 /* arch callbacks */
168 
169 pte_t *huge_pte_alloc(struct mm_struct *mm, struct vm_area_struct *vma,
170 			unsigned long addr, unsigned long sz);
171 pte_t *huge_pte_offset(struct mm_struct *mm,
172 		       unsigned long addr, unsigned long sz);
173 int huge_pmd_unshare(struct mm_struct *mm, struct vm_area_struct *vma,
174 				unsigned long *addr, pte_t *ptep);
175 void adjust_range_if_pmd_sharing_possible(struct vm_area_struct *vma,
176 				unsigned long *start, unsigned long *end);
177 struct page *follow_huge_addr(struct mm_struct *mm, unsigned long address,
178 			      int write);
179 struct page *follow_huge_pd(struct vm_area_struct *vma,
180 			    unsigned long address, hugepd_t hpd,
181 			    int flags, int pdshift);
182 struct page *follow_huge_pmd_pte(struct vm_area_struct *vma, unsigned long address,
183 				 int flags);
184 struct page *follow_huge_pud(struct mm_struct *mm, unsigned long address,
185 				pud_t *pud, int flags);
186 struct page *follow_huge_pgd(struct mm_struct *mm, unsigned long address,
187 			     pgd_t *pgd, int flags);
188 
189 int pmd_huge(pmd_t pmd);
190 int pud_huge(pud_t pud);
191 unsigned long hugetlb_change_protection(struct vm_area_struct *vma,
192 		unsigned long address, unsigned long end, pgprot_t newprot);
193 
194 bool is_hugetlb_entry_migration(pte_t pte);
195 void hugetlb_unshare_all_pmds(struct vm_area_struct *vma);
196 
197 #else /* !CONFIG_HUGETLB_PAGE */
198 
reset_vma_resv_huge_pages(struct vm_area_struct * vma)199 static inline void reset_vma_resv_huge_pages(struct vm_area_struct *vma)
200 {
201 }
202 
hugetlb_total_pages(void)203 static inline unsigned long hugetlb_total_pages(void)
204 {
205 	return 0;
206 }
207 
hugetlb_page_mapping_lock_write(struct page * hpage)208 static inline struct address_space *hugetlb_page_mapping_lock_write(
209 							struct page *hpage)
210 {
211 	return NULL;
212 }
213 
huge_pmd_unshare(struct mm_struct * mm,struct vm_area_struct * vma,unsigned long * addr,pte_t * ptep)214 static inline int huge_pmd_unshare(struct mm_struct *mm,
215 					struct vm_area_struct *vma,
216 					unsigned long *addr, pte_t *ptep)
217 {
218 	return 0;
219 }
220 
adjust_range_if_pmd_sharing_possible(struct vm_area_struct * vma,unsigned long * start,unsigned long * end)221 static inline void adjust_range_if_pmd_sharing_possible(
222 				struct vm_area_struct *vma,
223 				unsigned long *start, unsigned long *end)
224 {
225 }
226 
follow_hugetlb_page(struct mm_struct * mm,struct vm_area_struct * vma,struct page ** pages,struct vm_area_struct ** vmas,unsigned long * position,unsigned long * nr_pages,long i,unsigned int flags,int * nonblocking)227 static inline long follow_hugetlb_page(struct mm_struct *mm,
228 			struct vm_area_struct *vma, struct page **pages,
229 			struct vm_area_struct **vmas, unsigned long *position,
230 			unsigned long *nr_pages, long i, unsigned int flags,
231 			int *nonblocking)
232 {
233 	BUG();
234 	return 0;
235 }
236 
follow_huge_addr(struct mm_struct * mm,unsigned long address,int write)237 static inline struct page *follow_huge_addr(struct mm_struct *mm,
238 					unsigned long address, int write)
239 {
240 	return ERR_PTR(-EINVAL);
241 }
242 
copy_hugetlb_page_range(struct mm_struct * dst,struct mm_struct * src,struct vm_area_struct * vma)243 static inline int copy_hugetlb_page_range(struct mm_struct *dst,
244 			struct mm_struct *src, struct vm_area_struct *vma)
245 {
246 	BUG();
247 	return 0;
248 }
249 
hugetlb_report_meminfo(struct seq_file * m)250 static inline void hugetlb_report_meminfo(struct seq_file *m)
251 {
252 }
253 
hugetlb_report_node_meminfo(char * buf,int len,int nid)254 static inline int hugetlb_report_node_meminfo(char *buf, int len, int nid)
255 {
256 	return 0;
257 }
258 
hugetlb_show_meminfo(void)259 static inline void hugetlb_show_meminfo(void)
260 {
261 }
262 
follow_huge_pd(struct vm_area_struct * vma,unsigned long address,hugepd_t hpd,int flags,int pdshift)263 static inline struct page *follow_huge_pd(struct vm_area_struct *vma,
264 				unsigned long address, hugepd_t hpd, int flags,
265 				int pdshift)
266 {
267 	return NULL;
268 }
269 
follow_huge_pmd_pte(struct vm_area_struct * vma,unsigned long address,int flags)270 static inline struct page *follow_huge_pmd_pte(struct vm_area_struct *vma,
271 				unsigned long address, int flags)
272 {
273 	return NULL;
274 }
275 
follow_huge_pud(struct mm_struct * mm,unsigned long address,pud_t * pud,int flags)276 static inline struct page *follow_huge_pud(struct mm_struct *mm,
277 				unsigned long address, pud_t *pud, int flags)
278 {
279 	return NULL;
280 }
281 
follow_huge_pgd(struct mm_struct * mm,unsigned long address,pgd_t * pgd,int flags)282 static inline struct page *follow_huge_pgd(struct mm_struct *mm,
283 				unsigned long address, pgd_t *pgd, int flags)
284 {
285 	return NULL;
286 }
287 
prepare_hugepage_range(struct file * file,unsigned long addr,unsigned long len)288 static inline int prepare_hugepage_range(struct file *file,
289 				unsigned long addr, unsigned long len)
290 {
291 	return -EINVAL;
292 }
293 
pmd_huge(pmd_t pmd)294 static inline int pmd_huge(pmd_t pmd)
295 {
296 	return 0;
297 }
298 
pud_huge(pud_t pud)299 static inline int pud_huge(pud_t pud)
300 {
301 	return 0;
302 }
303 
is_hugepage_only_range(struct mm_struct * mm,unsigned long addr,unsigned long len)304 static inline int is_hugepage_only_range(struct mm_struct *mm,
305 					unsigned long addr, unsigned long len)
306 {
307 	return 0;
308 }
309 
hugetlb_free_pgd_range(struct mmu_gather * tlb,unsigned long addr,unsigned long end,unsigned long floor,unsigned long ceiling)310 static inline void hugetlb_free_pgd_range(struct mmu_gather *tlb,
311 				unsigned long addr, unsigned long end,
312 				unsigned long floor, unsigned long ceiling)
313 {
314 	BUG();
315 }
316 
317 #ifdef CONFIG_USERFAULTFD
hugetlb_mcopy_atomic_pte(struct mm_struct * dst_mm,pte_t * dst_pte,struct vm_area_struct * dst_vma,unsigned long dst_addr,unsigned long src_addr,enum mcopy_atomic_mode mode,struct page ** pagep)318 static inline int hugetlb_mcopy_atomic_pte(struct mm_struct *dst_mm,
319 						pte_t *dst_pte,
320 						struct vm_area_struct *dst_vma,
321 						unsigned long dst_addr,
322 						unsigned long src_addr,
323 						enum mcopy_atomic_mode mode,
324 						struct page **pagep)
325 {
326 	BUG();
327 	return 0;
328 }
329 #endif /* CONFIG_USERFAULTFD */
330 
huge_pte_offset(struct mm_struct * mm,unsigned long addr,unsigned long sz)331 static inline pte_t *huge_pte_offset(struct mm_struct *mm, unsigned long addr,
332 					unsigned long sz)
333 {
334 	return NULL;
335 }
336 
isolate_huge_page(struct page * page,struct list_head * list)337 static inline bool isolate_huge_page(struct page *page, struct list_head *list)
338 {
339 	return false;
340 }
341 
putback_active_hugepage(struct page * page)342 static inline void putback_active_hugepage(struct page *page)
343 {
344 }
345 
move_hugetlb_state(struct page * oldpage,struct page * newpage,int reason)346 static inline void move_hugetlb_state(struct page *oldpage,
347 					struct page *newpage, int reason)
348 {
349 }
350 
hugetlb_change_protection(struct vm_area_struct * vma,unsigned long address,unsigned long end,pgprot_t newprot)351 static inline unsigned long hugetlb_change_protection(
352 			struct vm_area_struct *vma, unsigned long address,
353 			unsigned long end, pgprot_t newprot)
354 {
355 	return 0;
356 }
357 
__unmap_hugepage_range_final(struct mmu_gather * tlb,struct vm_area_struct * vma,unsigned long start,unsigned long end,struct page * ref_page)358 static inline void __unmap_hugepage_range_final(struct mmu_gather *tlb,
359 			struct vm_area_struct *vma, unsigned long start,
360 			unsigned long end, struct page *ref_page)
361 {
362 	BUG();
363 }
364 
__unmap_hugepage_range(struct mmu_gather * tlb,struct vm_area_struct * vma,unsigned long start,unsigned long end,struct page * ref_page)365 static inline void __unmap_hugepage_range(struct mmu_gather *tlb,
366 			struct vm_area_struct *vma, unsigned long start,
367 			unsigned long end, struct page *ref_page)
368 {
369 	BUG();
370 }
371 
hugetlb_fault(struct mm_struct * mm,struct vm_area_struct * vma,unsigned long address,unsigned int flags)372 static inline vm_fault_t hugetlb_fault(struct mm_struct *mm,
373 			struct vm_area_struct *vma, unsigned long address,
374 			unsigned int flags)
375 {
376 	BUG();
377 	return 0;
378 }
379 
hugetlb_unshare_all_pmds(struct vm_area_struct * vma)380 static inline void hugetlb_unshare_all_pmds(struct vm_area_struct *vma) { }
381 
382 #endif /* !CONFIG_HUGETLB_PAGE */
383 /*
384  * hugepages at page global directory. If arch support
385  * hugepages at pgd level, they need to define this.
386  */
387 #ifndef pgd_huge
388 #define pgd_huge(x)	0
389 #endif
390 #ifndef p4d_huge
391 #define p4d_huge(x)	0
392 #endif
393 
394 #ifndef pgd_write
pgd_write(pgd_t pgd)395 static inline int pgd_write(pgd_t pgd)
396 {
397 	BUG();
398 	return 0;
399 }
400 #endif
401 
402 #define HUGETLB_ANON_FILE "anon_hugepage"
403 
404 enum {
405 	/*
406 	 * The file will be used as an shm file so shmfs accounting rules
407 	 * apply
408 	 */
409 	HUGETLB_SHMFS_INODE     = 1,
410 	/*
411 	 * The file is being created on the internal vfs mount and shmfs
412 	 * accounting rules do not apply
413 	 */
414 	HUGETLB_ANONHUGE_INODE  = 2,
415 };
416 
417 #ifdef CONFIG_HUGETLBFS
418 struct hugetlbfs_sb_info {
419 	long	max_inodes;   /* inodes allowed */
420 	long	free_inodes;  /* inodes free */
421 	spinlock_t	stat_lock;
422 	struct hstate *hstate;
423 	struct hugepage_subpool *spool;
424 	kuid_t	uid;
425 	kgid_t	gid;
426 	umode_t mode;
427 };
428 
HUGETLBFS_SB(struct super_block * sb)429 static inline struct hugetlbfs_sb_info *HUGETLBFS_SB(struct super_block *sb)
430 {
431 	return sb->s_fs_info;
432 }
433 
434 struct hugetlbfs_inode_info {
435 	struct shared_policy policy;
436 	struct inode vfs_inode;
437 	unsigned int seals;
438 };
439 
HUGETLBFS_I(struct inode * inode)440 static inline struct hugetlbfs_inode_info *HUGETLBFS_I(struct inode *inode)
441 {
442 	return container_of(inode, struct hugetlbfs_inode_info, vfs_inode);
443 }
444 
445 extern const struct file_operations hugetlbfs_file_operations;
446 extern const struct vm_operations_struct hugetlb_vm_ops;
447 struct file *hugetlb_file_setup(const char *name, size_t size, vm_flags_t acct,
448 				struct user_struct **user, int creat_flags,
449 				int page_size_log);
450 
is_file_hugepages(struct file * file)451 static inline bool is_file_hugepages(struct file *file)
452 {
453 	if (file->f_op == &hugetlbfs_file_operations)
454 		return true;
455 
456 	return is_file_shm_hugepages(file);
457 }
458 
hstate_inode(struct inode * i)459 static inline struct hstate *hstate_inode(struct inode *i)
460 {
461 	return HUGETLBFS_SB(i->i_sb)->hstate;
462 }
463 #else /* !CONFIG_HUGETLBFS */
464 
465 #define is_file_hugepages(file)			false
466 static inline struct file *
hugetlb_file_setup(const char * name,size_t size,vm_flags_t acctflag,struct user_struct ** user,int creat_flags,int page_size_log)467 hugetlb_file_setup(const char *name, size_t size, vm_flags_t acctflag,
468 		struct user_struct **user, int creat_flags,
469 		int page_size_log)
470 {
471 	return ERR_PTR(-ENOSYS);
472 }
473 
hstate_inode(struct inode * i)474 static inline struct hstate *hstate_inode(struct inode *i)
475 {
476 	return NULL;
477 }
478 #endif /* !CONFIG_HUGETLBFS */
479 
480 #ifdef HAVE_ARCH_HUGETLB_UNMAPPED_AREA
481 unsigned long hugetlb_get_unmapped_area(struct file *file, unsigned long addr,
482 					unsigned long len, unsigned long pgoff,
483 					unsigned long flags);
484 #endif /* HAVE_ARCH_HUGETLB_UNMAPPED_AREA */
485 
486 #ifdef CONFIG_HUGETLB_PAGE
487 
488 #define HSTATE_NAME_LEN 32
489 /* Defines one hugetlb page size */
490 struct hstate {
491 	int next_nid_to_alloc;
492 	int next_nid_to_free;
493 	unsigned int order;
494 	unsigned long mask;
495 	unsigned long max_huge_pages;
496 	unsigned long nr_huge_pages;
497 	unsigned long free_huge_pages;
498 	unsigned long resv_huge_pages;
499 	unsigned long surplus_huge_pages;
500 	unsigned long nr_overcommit_huge_pages;
501 	struct list_head hugepage_activelist;
502 	struct list_head hugepage_freelists[MAX_NUMNODES];
503 	unsigned int nr_huge_pages_node[MAX_NUMNODES];
504 	unsigned int free_huge_pages_node[MAX_NUMNODES];
505 	unsigned int surplus_huge_pages_node[MAX_NUMNODES];
506 #ifdef CONFIG_CGROUP_HUGETLB
507 	/* cgroup control files */
508 	struct cftype cgroup_files_dfl[7];
509 	struct cftype cgroup_files_legacy[9];
510 #endif
511 	char name[HSTATE_NAME_LEN];
512 };
513 
514 struct huge_bootmem_page {
515 	struct list_head list;
516 	struct hstate *hstate;
517 };
518 
519 struct page *alloc_huge_page(struct vm_area_struct *vma,
520 				unsigned long addr, int avoid_reserve);
521 struct page *alloc_huge_page_nodemask(struct hstate *h, int preferred_nid,
522 				nodemask_t *nmask, gfp_t gfp_mask);
523 struct page *alloc_huge_page_vma(struct hstate *h, struct vm_area_struct *vma,
524 				unsigned long address);
525 int huge_add_to_page_cache(struct page *page, struct address_space *mapping,
526 			pgoff_t idx);
527 
528 /* arch callback */
529 int __init __alloc_bootmem_huge_page(struct hstate *h);
530 int __init alloc_bootmem_huge_page(struct hstate *h);
531 
532 void __init hugetlb_add_hstate(unsigned order);
533 bool __init arch_hugetlb_valid_size(unsigned long size);
534 struct hstate *size_to_hstate(unsigned long size);
535 
536 #ifndef HUGE_MAX_HSTATE
537 #define HUGE_MAX_HSTATE 1
538 #endif
539 
540 extern struct hstate hstates[HUGE_MAX_HSTATE];
541 extern unsigned int default_hstate_idx;
542 
543 #define default_hstate (hstates[default_hstate_idx])
544 
hstate_file(struct file * f)545 static inline struct hstate *hstate_file(struct file *f)
546 {
547 	return hstate_inode(file_inode(f));
548 }
549 
hstate_sizelog(int page_size_log)550 static inline struct hstate *hstate_sizelog(int page_size_log)
551 {
552 	if (!page_size_log)
553 		return &default_hstate;
554 
555 	return size_to_hstate(1UL << page_size_log);
556 }
557 
hstate_vma(struct vm_area_struct * vma)558 static inline struct hstate *hstate_vma(struct vm_area_struct *vma)
559 {
560 	return hstate_file(vma->vm_file);
561 }
562 
huge_page_size(struct hstate * h)563 static inline unsigned long huge_page_size(struct hstate *h)
564 {
565 	return (unsigned long)PAGE_SIZE << h->order;
566 }
567 
568 extern unsigned long vma_kernel_pagesize(struct vm_area_struct *vma);
569 
570 extern unsigned long vma_mmu_pagesize(struct vm_area_struct *vma);
571 
huge_page_mask(struct hstate * h)572 static inline unsigned long huge_page_mask(struct hstate *h)
573 {
574 	return h->mask;
575 }
576 
huge_page_order(struct hstate * h)577 static inline unsigned int huge_page_order(struct hstate *h)
578 {
579 	return h->order;
580 }
581 
huge_page_shift(struct hstate * h)582 static inline unsigned huge_page_shift(struct hstate *h)
583 {
584 	return h->order + PAGE_SHIFT;
585 }
586 
hstate_is_gigantic(struct hstate * h)587 static inline bool hstate_is_gigantic(struct hstate *h)
588 {
589 	return huge_page_order(h) >= MAX_ORDER;
590 }
591 
pages_per_huge_page(struct hstate * h)592 static inline unsigned int pages_per_huge_page(struct hstate *h)
593 {
594 	return 1 << h->order;
595 }
596 
blocks_per_huge_page(struct hstate * h)597 static inline unsigned int blocks_per_huge_page(struct hstate *h)
598 {
599 	return huge_page_size(h) / 512;
600 }
601 
602 #include <asm/hugetlb.h>
603 
604 #ifndef is_hugepage_only_range
is_hugepage_only_range(struct mm_struct * mm,unsigned long addr,unsigned long len)605 static inline int is_hugepage_only_range(struct mm_struct *mm,
606 					unsigned long addr, unsigned long len)
607 {
608 	return 0;
609 }
610 #define is_hugepage_only_range is_hugepage_only_range
611 #endif
612 
613 #ifndef arch_clear_hugepage_flags
arch_clear_hugepage_flags(struct page * page)614 static inline void arch_clear_hugepage_flags(struct page *page) { }
615 #define arch_clear_hugepage_flags arch_clear_hugepage_flags
616 #endif
617 
618 #ifndef arch_make_huge_pte
arch_make_huge_pte(pte_t entry,struct vm_area_struct * vma,struct page * page,int writable)619 static inline pte_t arch_make_huge_pte(pte_t entry, struct vm_area_struct *vma,
620 				       struct page *page, int writable)
621 {
622 	return entry;
623 }
624 #endif
625 
page_hstate(struct page * page)626 static inline struct hstate *page_hstate(struct page *page)
627 {
628 	VM_BUG_ON_PAGE(!PageHuge(page), page);
629 	return size_to_hstate(page_size(page));
630 }
631 
hstate_index_to_shift(unsigned index)632 static inline unsigned hstate_index_to_shift(unsigned index)
633 {
634 	return hstates[index].order + PAGE_SHIFT;
635 }
636 
hstate_index(struct hstate * h)637 static inline int hstate_index(struct hstate *h)
638 {
639 	return h - hstates;
640 }
641 
642 extern int dissolve_free_huge_page(struct page *page);
643 extern int dissolve_free_huge_pages(unsigned long start_pfn,
644 				    unsigned long end_pfn);
645 
646 #ifdef CONFIG_ARCH_ENABLE_HUGEPAGE_MIGRATION
647 #ifndef arch_hugetlb_migration_supported
arch_hugetlb_migration_supported(struct hstate * h)648 static inline bool arch_hugetlb_migration_supported(struct hstate *h)
649 {
650 	if ((huge_page_shift(h) == PMD_SHIFT) ||
651 		(huge_page_shift(h) == PUD_SHIFT) ||
652 			(huge_page_shift(h) == PGDIR_SHIFT))
653 		return true;
654 	else
655 		return false;
656 }
657 #endif
658 #else
arch_hugetlb_migration_supported(struct hstate * h)659 static inline bool arch_hugetlb_migration_supported(struct hstate *h)
660 {
661 	return false;
662 }
663 #endif
664 
hugepage_migration_supported(struct hstate * h)665 static inline bool hugepage_migration_supported(struct hstate *h)
666 {
667 	return arch_hugetlb_migration_supported(h);
668 }
669 
670 /*
671  * Movability check is different as compared to migration check.
672  * It determines whether or not a huge page should be placed on
673  * movable zone or not. Movability of any huge page should be
674  * required only if huge page size is supported for migration.
675  * There wont be any reason for the huge page to be movable if
676  * it is not migratable to start with. Also the size of the huge
677  * page should be large enough to be placed under a movable zone
678  * and still feasible enough to be migratable. Just the presence
679  * in movable zone does not make the migration feasible.
680  *
681  * So even though large huge page sizes like the gigantic ones
682  * are migratable they should not be movable because its not
683  * feasible to migrate them from movable zone.
684  */
hugepage_movable_supported(struct hstate * h)685 static inline bool hugepage_movable_supported(struct hstate *h)
686 {
687 	if (!hugepage_migration_supported(h))
688 		return false;
689 
690 	if (hstate_is_gigantic(h))
691 		return false;
692 	return true;
693 }
694 
695 /* Movability of hugepages depends on migration support. */
htlb_alloc_mask(struct hstate * h)696 static inline gfp_t htlb_alloc_mask(struct hstate *h)
697 {
698 	if (hugepage_movable_supported(h))
699 		return GFP_HIGHUSER_MOVABLE;
700 	else
701 		return GFP_HIGHUSER;
702 }
703 
htlb_modify_alloc_mask(struct hstate * h,gfp_t gfp_mask)704 static inline gfp_t htlb_modify_alloc_mask(struct hstate *h, gfp_t gfp_mask)
705 {
706 	gfp_t modified_mask = htlb_alloc_mask(h);
707 
708 	/* Some callers might want to enforce node */
709 	modified_mask |= (gfp_mask & __GFP_THISNODE);
710 
711 	modified_mask |= (gfp_mask & __GFP_NOWARN);
712 
713 	return modified_mask;
714 }
715 
huge_pte_lockptr(struct hstate * h,struct mm_struct * mm,pte_t * pte)716 static inline spinlock_t *huge_pte_lockptr(struct hstate *h,
717 					   struct mm_struct *mm, pte_t *pte)
718 {
719 	if (huge_page_size(h) == PMD_SIZE)
720 		return pmd_lockptr(mm, (pmd_t *) pte);
721 	VM_BUG_ON(huge_page_size(h) == PAGE_SIZE);
722 	return &mm->page_table_lock;
723 }
724 
725 #ifndef hugepages_supported
726 /*
727  * Some platform decide whether they support huge pages at boot
728  * time. Some of them, such as powerpc, set HPAGE_SHIFT to 0
729  * when there is no such support
730  */
731 #define hugepages_supported() (HPAGE_SHIFT != 0)
732 #endif
733 
734 void hugetlb_report_usage(struct seq_file *m, struct mm_struct *mm);
735 
hugetlb_count_init(struct mm_struct * mm)736 static inline void hugetlb_count_init(struct mm_struct *mm)
737 {
738 	atomic_long_set(&mm->hugetlb_usage, 0);
739 }
740 
hugetlb_count_add(long l,struct mm_struct * mm)741 static inline void hugetlb_count_add(long l, struct mm_struct *mm)
742 {
743 	atomic_long_add(l, &mm->hugetlb_usage);
744 }
745 
hugetlb_count_sub(long l,struct mm_struct * mm)746 static inline void hugetlb_count_sub(long l, struct mm_struct *mm)
747 {
748 	atomic_long_sub(l, &mm->hugetlb_usage);
749 }
750 
751 #ifndef set_huge_swap_pte_at
set_huge_swap_pte_at(struct mm_struct * mm,unsigned long addr,pte_t * ptep,pte_t pte,unsigned long sz)752 static inline void set_huge_swap_pte_at(struct mm_struct *mm, unsigned long addr,
753 					pte_t *ptep, pte_t pte, unsigned long sz)
754 {
755 	set_huge_pte_at(mm, addr, ptep, pte);
756 }
757 #endif
758 
759 #ifndef huge_ptep_modify_prot_start
760 #define huge_ptep_modify_prot_start huge_ptep_modify_prot_start
huge_ptep_modify_prot_start(struct vm_area_struct * vma,unsigned long addr,pte_t * ptep)761 static inline pte_t huge_ptep_modify_prot_start(struct vm_area_struct *vma,
762 						unsigned long addr, pte_t *ptep)
763 {
764 	return huge_ptep_get_and_clear(vma->vm_mm, addr, ptep);
765 }
766 #endif
767 
768 #ifndef huge_ptep_modify_prot_commit
769 #define huge_ptep_modify_prot_commit huge_ptep_modify_prot_commit
huge_ptep_modify_prot_commit(struct vm_area_struct * vma,unsigned long addr,pte_t * ptep,pte_t old_pte,pte_t pte)770 static inline void huge_ptep_modify_prot_commit(struct vm_area_struct *vma,
771 						unsigned long addr, pte_t *ptep,
772 						pte_t old_pte, pte_t pte)
773 {
774 	set_huge_pte_at(vma->vm_mm, addr, ptep, pte);
775 }
776 #endif
777 
778 void set_page_huge_active(struct page *page);
779 
780 #else	/* CONFIG_HUGETLB_PAGE */
781 struct hstate {};
782 
alloc_huge_page(struct vm_area_struct * vma,unsigned long addr,int avoid_reserve)783 static inline struct page *alloc_huge_page(struct vm_area_struct *vma,
784 					   unsigned long addr,
785 					   int avoid_reserve)
786 {
787 	return NULL;
788 }
789 
790 static inline struct page *
alloc_huge_page_nodemask(struct hstate * h,int preferred_nid,nodemask_t * nmask,gfp_t gfp_mask)791 alloc_huge_page_nodemask(struct hstate *h, int preferred_nid,
792 			nodemask_t *nmask, gfp_t gfp_mask)
793 {
794 	return NULL;
795 }
796 
alloc_huge_page_vma(struct hstate * h,struct vm_area_struct * vma,unsigned long address)797 static inline struct page *alloc_huge_page_vma(struct hstate *h,
798 					       struct vm_area_struct *vma,
799 					       unsigned long address)
800 {
801 	return NULL;
802 }
803 
__alloc_bootmem_huge_page(struct hstate * h)804 static inline int __alloc_bootmem_huge_page(struct hstate *h)
805 {
806 	return 0;
807 }
808 
hstate_file(struct file * f)809 static inline struct hstate *hstate_file(struct file *f)
810 {
811 	return NULL;
812 }
813 
hstate_sizelog(int page_size_log)814 static inline struct hstate *hstate_sizelog(int page_size_log)
815 {
816 	return NULL;
817 }
818 
hstate_vma(struct vm_area_struct * vma)819 static inline struct hstate *hstate_vma(struct vm_area_struct *vma)
820 {
821 	return NULL;
822 }
823 
page_hstate(struct page * page)824 static inline struct hstate *page_hstate(struct page *page)
825 {
826 	return NULL;
827 }
828 
huge_page_size(struct hstate * h)829 static inline unsigned long huge_page_size(struct hstate *h)
830 {
831 	return PAGE_SIZE;
832 }
833 
huge_page_mask(struct hstate * h)834 static inline unsigned long huge_page_mask(struct hstate *h)
835 {
836 	return PAGE_MASK;
837 }
838 
vma_kernel_pagesize(struct vm_area_struct * vma)839 static inline unsigned long vma_kernel_pagesize(struct vm_area_struct *vma)
840 {
841 	return PAGE_SIZE;
842 }
843 
vma_mmu_pagesize(struct vm_area_struct * vma)844 static inline unsigned long vma_mmu_pagesize(struct vm_area_struct *vma)
845 {
846 	return PAGE_SIZE;
847 }
848 
huge_page_order(struct hstate * h)849 static inline unsigned int huge_page_order(struct hstate *h)
850 {
851 	return 0;
852 }
853 
huge_page_shift(struct hstate * h)854 static inline unsigned int huge_page_shift(struct hstate *h)
855 {
856 	return PAGE_SHIFT;
857 }
858 
hstate_is_gigantic(struct hstate * h)859 static inline bool hstate_is_gigantic(struct hstate *h)
860 {
861 	return false;
862 }
863 
pages_per_huge_page(struct hstate * h)864 static inline unsigned int pages_per_huge_page(struct hstate *h)
865 {
866 	return 1;
867 }
868 
hstate_index_to_shift(unsigned index)869 static inline unsigned hstate_index_to_shift(unsigned index)
870 {
871 	return 0;
872 }
873 
hstate_index(struct hstate * h)874 static inline int hstate_index(struct hstate *h)
875 {
876 	return 0;
877 }
878 
dissolve_free_huge_page(struct page * page)879 static inline int dissolve_free_huge_page(struct page *page)
880 {
881 	return 0;
882 }
883 
dissolve_free_huge_pages(unsigned long start_pfn,unsigned long end_pfn)884 static inline int dissolve_free_huge_pages(unsigned long start_pfn,
885 					   unsigned long end_pfn)
886 {
887 	return 0;
888 }
889 
hugepage_migration_supported(struct hstate * h)890 static inline bool hugepage_migration_supported(struct hstate *h)
891 {
892 	return false;
893 }
894 
hugepage_movable_supported(struct hstate * h)895 static inline bool hugepage_movable_supported(struct hstate *h)
896 {
897 	return false;
898 }
899 
htlb_alloc_mask(struct hstate * h)900 static inline gfp_t htlb_alloc_mask(struct hstate *h)
901 {
902 	return 0;
903 }
904 
htlb_modify_alloc_mask(struct hstate * h,gfp_t gfp_mask)905 static inline gfp_t htlb_modify_alloc_mask(struct hstate *h, gfp_t gfp_mask)
906 {
907 	return 0;
908 }
909 
huge_pte_lockptr(struct hstate * h,struct mm_struct * mm,pte_t * pte)910 static inline spinlock_t *huge_pte_lockptr(struct hstate *h,
911 					   struct mm_struct *mm, pte_t *pte)
912 {
913 	return &mm->page_table_lock;
914 }
915 
hugetlb_count_init(struct mm_struct * mm)916 static inline void hugetlb_count_init(struct mm_struct *mm)
917 {
918 }
919 
hugetlb_report_usage(struct seq_file * f,struct mm_struct * m)920 static inline void hugetlb_report_usage(struct seq_file *f, struct mm_struct *m)
921 {
922 }
923 
hugetlb_count_sub(long l,struct mm_struct * mm)924 static inline void hugetlb_count_sub(long l, struct mm_struct *mm)
925 {
926 }
927 
set_huge_swap_pte_at(struct mm_struct * mm,unsigned long addr,pte_t * ptep,pte_t pte,unsigned long sz)928 static inline void set_huge_swap_pte_at(struct mm_struct *mm, unsigned long addr,
929 					pte_t *ptep, pte_t pte, unsigned long sz)
930 {
931 }
932 #endif	/* CONFIG_HUGETLB_PAGE */
933 
huge_pte_lock(struct hstate * h,struct mm_struct * mm,pte_t * pte)934 static inline spinlock_t *huge_pte_lock(struct hstate *h,
935 					struct mm_struct *mm, pte_t *pte)
936 {
937 	spinlock_t *ptl;
938 
939 	ptl = huge_pte_lockptr(h, mm, pte);
940 	spin_lock(ptl);
941 	return ptl;
942 }
943 
944 #if defined(CONFIG_HUGETLB_PAGE) && defined(CONFIG_CMA)
945 extern void __init hugetlb_cma_reserve(int order);
946 extern void __init hugetlb_cma_check(void);
947 #else
hugetlb_cma_reserve(int order)948 static inline __init void hugetlb_cma_reserve(int order)
949 {
950 }
hugetlb_cma_check(void)951 static inline __init void hugetlb_cma_check(void)
952 {
953 }
954 #endif
955 
956 bool want_pmd_share(struct vm_area_struct *vma, unsigned long addr);
957 
958 #ifndef __HAVE_ARCH_FLUSH_HUGETLB_TLB_RANGE
959 /*
960  * ARCHes with special requirements for evicting HUGETLB backing TLB entries can
961  * implement this.
962  */
963 #define flush_hugetlb_tlb_range(vma, addr, end)	flush_tlb_range(vma, addr, end)
964 #endif
965 
966 #endif /* _LINUX_HUGETLB_H */
967