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b2441318 | 1 | // SPDX-License-Identifier: GPL-2.0 |
1da177e4 LT |
2 | /* |
3 | * linux/mm/madvise.c | |
4 | * | |
5 | * Copyright (C) 1999 Linus Torvalds | |
6 | * Copyright (C) 2002 Christoph Hellwig | |
7 | */ | |
8 | ||
9 | #include <linux/mman.h> | |
10 | #include <linux/pagemap.h> | |
11 | #include <linux/syscalls.h> | |
05b74384 | 12 | #include <linux/mempolicy.h> |
afcf938e | 13 | #include <linux/page-isolation.h> |
9c276cc6 | 14 | #include <linux/page_idle.h> |
05ce7724 | 15 | #include <linux/userfaultfd_k.h> |
1da177e4 | 16 | #include <linux/hugetlb.h> |
3f31d075 | 17 | #include <linux/falloc.h> |
692fe624 | 18 | #include <linux/fadvise.h> |
e8edc6e0 | 19 | #include <linux/sched.h> |
f8af4da3 | 20 | #include <linux/ksm.h> |
3f31d075 | 21 | #include <linux/fs.h> |
9ab4233d | 22 | #include <linux/file.h> |
1998cc04 | 23 | #include <linux/blkdev.h> |
66114cad | 24 | #include <linux/backing-dev.h> |
a520110e | 25 | #include <linux/pagewalk.h> |
1998cc04 SL |
26 | #include <linux/swap.h> |
27 | #include <linux/swapops.h> | |
3a4f8a0b | 28 | #include <linux/shmem_fs.h> |
854e9ed0 | 29 | #include <linux/mmu_notifier.h> |
bc0c4d1e | 30 | #include <linux/sched/mm.h> |
854e9ed0 MK |
31 | |
32 | #include <asm/tlb.h> | |
1da177e4 | 33 | |
23519073 KS |
34 | #include "internal.h" |
35 | ||
d616d512 MK |
36 | struct madvise_walk_private { |
37 | struct mmu_gather *tlb; | |
38 | bool pageout; | |
39 | }; | |
40 | ||
0a27a14a NP |
41 | /* |
42 | * Any behaviour which results in changes to the vma->vm_flags needs to | |
43 | * take mmap_sem for writing. Others, which simply traverse vmas, need | |
44 | * to only take it for reading. | |
45 | */ | |
46 | static int madvise_need_mmap_write(int behavior) | |
47 | { | |
48 | switch (behavior) { | |
49 | case MADV_REMOVE: | |
50 | case MADV_WILLNEED: | |
51 | case MADV_DONTNEED: | |
9c276cc6 | 52 | case MADV_COLD: |
1a4e58cc | 53 | case MADV_PAGEOUT: |
854e9ed0 | 54 | case MADV_FREE: |
0a27a14a NP |
55 | return 0; |
56 | default: | |
57 | /* be safe, default to 1. list exceptions explicitly */ | |
58 | return 1; | |
59 | } | |
60 | } | |
61 | ||
1da177e4 LT |
62 | /* |
63 | * We can potentially split a vm area into separate | |
64 | * areas, each area with its own behavior. | |
65 | */ | |
ec9bed9d | 66 | static long madvise_behavior(struct vm_area_struct *vma, |
05b74384 PM |
67 | struct vm_area_struct **prev, |
68 | unsigned long start, unsigned long end, int behavior) | |
1da177e4 | 69 | { |
ec9bed9d | 70 | struct mm_struct *mm = vma->vm_mm; |
1da177e4 | 71 | int error = 0; |
05b74384 | 72 | pgoff_t pgoff; |
3866ea90 | 73 | unsigned long new_flags = vma->vm_flags; |
e798c6e8 PM |
74 | |
75 | switch (behavior) { | |
f8225661 MT |
76 | case MADV_NORMAL: |
77 | new_flags = new_flags & ~VM_RAND_READ & ~VM_SEQ_READ; | |
78 | break; | |
e798c6e8 | 79 | case MADV_SEQUENTIAL: |
f8225661 | 80 | new_flags = (new_flags & ~VM_RAND_READ) | VM_SEQ_READ; |
e798c6e8 PM |
81 | break; |
82 | case MADV_RANDOM: | |
f8225661 | 83 | new_flags = (new_flags & ~VM_SEQ_READ) | VM_RAND_READ; |
e798c6e8 | 84 | break; |
f8225661 MT |
85 | case MADV_DONTFORK: |
86 | new_flags |= VM_DONTCOPY; | |
87 | break; | |
88 | case MADV_DOFORK: | |
3866ea90 HD |
89 | if (vma->vm_flags & VM_IO) { |
90 | error = -EINVAL; | |
91 | goto out; | |
92 | } | |
f8225661 | 93 | new_flags &= ~VM_DONTCOPY; |
e798c6e8 | 94 | break; |
d2cd9ede RR |
95 | case MADV_WIPEONFORK: |
96 | /* MADV_WIPEONFORK is only supported on anonymous memory. */ | |
97 | if (vma->vm_file || vma->vm_flags & VM_SHARED) { | |
98 | error = -EINVAL; | |
99 | goto out; | |
100 | } | |
101 | new_flags |= VM_WIPEONFORK; | |
102 | break; | |
103 | case MADV_KEEPONFORK: | |
104 | new_flags &= ~VM_WIPEONFORK; | |
105 | break; | |
accb61fe | 106 | case MADV_DONTDUMP: |
0103bd16 | 107 | new_flags |= VM_DONTDUMP; |
accb61fe JB |
108 | break; |
109 | case MADV_DODUMP: | |
d41aa525 | 110 | if (!is_vm_hugetlb_page(vma) && new_flags & VM_SPECIAL) { |
0103bd16 KK |
111 | error = -EINVAL; |
112 | goto out; | |
113 | } | |
114 | new_flags &= ~VM_DONTDUMP; | |
accb61fe | 115 | break; |
f8af4da3 HD |
116 | case MADV_MERGEABLE: |
117 | case MADV_UNMERGEABLE: | |
118 | error = ksm_madvise(vma, start, end, behavior, &new_flags); | |
f3bc0dba MR |
119 | if (error) |
120 | goto out_convert_errno; | |
f8af4da3 | 121 | break; |
0af4e98b | 122 | case MADV_HUGEPAGE: |
a664b2d8 | 123 | case MADV_NOHUGEPAGE: |
60ab3244 | 124 | error = hugepage_madvise(vma, &new_flags, behavior); |
f3bc0dba MR |
125 | if (error) |
126 | goto out_convert_errno; | |
0af4e98b | 127 | break; |
e798c6e8 PM |
128 | } |
129 | ||
05b74384 PM |
130 | if (new_flags == vma->vm_flags) { |
131 | *prev = vma; | |
836d5ffd | 132 | goto out; |
05b74384 PM |
133 | } |
134 | ||
135 | pgoff = vma->vm_pgoff + ((start - vma->vm_start) >> PAGE_SHIFT); | |
136 | *prev = vma_merge(mm, *prev, start, end, new_flags, vma->anon_vma, | |
19a809af AA |
137 | vma->vm_file, pgoff, vma_policy(vma), |
138 | vma->vm_userfaultfd_ctx); | |
05b74384 PM |
139 | if (*prev) { |
140 | vma = *prev; | |
141 | goto success; | |
142 | } | |
143 | ||
144 | *prev = vma; | |
1da177e4 LT |
145 | |
146 | if (start != vma->vm_start) { | |
def5efe0 DR |
147 | if (unlikely(mm->map_count >= sysctl_max_map_count)) { |
148 | error = -ENOMEM; | |
1da177e4 | 149 | goto out; |
def5efe0 DR |
150 | } |
151 | error = __split_vma(mm, vma, start, 1); | |
f3bc0dba MR |
152 | if (error) |
153 | goto out_convert_errno; | |
1da177e4 LT |
154 | } |
155 | ||
156 | if (end != vma->vm_end) { | |
def5efe0 DR |
157 | if (unlikely(mm->map_count >= sysctl_max_map_count)) { |
158 | error = -ENOMEM; | |
1da177e4 | 159 | goto out; |
def5efe0 DR |
160 | } |
161 | error = __split_vma(mm, vma, end, 0); | |
f3bc0dba MR |
162 | if (error) |
163 | goto out_convert_errno; | |
1da177e4 LT |
164 | } |
165 | ||
836d5ffd | 166 | success: |
1da177e4 LT |
167 | /* |
168 | * vm_flags is protected by the mmap_sem held in write mode. | |
169 | */ | |
e798c6e8 | 170 | vma->vm_flags = new_flags; |
f3bc0dba MR |
171 | |
172 | out_convert_errno: | |
173 | /* | |
174 | * madvise() returns EAGAIN if kernel resources, such as | |
175 | * slab, are temporarily unavailable. | |
176 | */ | |
177 | if (error == -ENOMEM) | |
178 | error = -EAGAIN; | |
1da177e4 | 179 | out: |
1da177e4 LT |
180 | return error; |
181 | } | |
182 | ||
1998cc04 SL |
183 | #ifdef CONFIG_SWAP |
184 | static int swapin_walk_pmd_entry(pmd_t *pmd, unsigned long start, | |
185 | unsigned long end, struct mm_walk *walk) | |
186 | { | |
187 | pte_t *orig_pte; | |
188 | struct vm_area_struct *vma = walk->private; | |
189 | unsigned long index; | |
190 | ||
191 | if (pmd_none_or_trans_huge_or_clear_bad(pmd)) | |
192 | return 0; | |
193 | ||
194 | for (index = start; index != end; index += PAGE_SIZE) { | |
195 | pte_t pte; | |
196 | swp_entry_t entry; | |
197 | struct page *page; | |
198 | spinlock_t *ptl; | |
199 | ||
200 | orig_pte = pte_offset_map_lock(vma->vm_mm, pmd, start, &ptl); | |
201 | pte = *(orig_pte + ((index - start) / PAGE_SIZE)); | |
202 | pte_unmap_unlock(orig_pte, ptl); | |
203 | ||
0661a336 | 204 | if (pte_present(pte) || pte_none(pte)) |
1998cc04 SL |
205 | continue; |
206 | entry = pte_to_swp_entry(pte); | |
207 | if (unlikely(non_swap_entry(entry))) | |
208 | continue; | |
209 | ||
210 | page = read_swap_cache_async(entry, GFP_HIGHUSER_MOVABLE, | |
23955622 | 211 | vma, index, false); |
1998cc04 | 212 | if (page) |
09cbfeaf | 213 | put_page(page); |
1998cc04 SL |
214 | } |
215 | ||
216 | return 0; | |
217 | } | |
218 | ||
7b86ac33 CH |
219 | static const struct mm_walk_ops swapin_walk_ops = { |
220 | .pmd_entry = swapin_walk_pmd_entry, | |
221 | }; | |
1998cc04 SL |
222 | |
223 | static void force_shm_swapin_readahead(struct vm_area_struct *vma, | |
224 | unsigned long start, unsigned long end, | |
225 | struct address_space *mapping) | |
226 | { | |
227 | pgoff_t index; | |
228 | struct page *page; | |
229 | swp_entry_t swap; | |
230 | ||
231 | for (; start < end; start += PAGE_SIZE) { | |
232 | index = ((start - vma->vm_start) >> PAGE_SHIFT) + vma->vm_pgoff; | |
233 | ||
55231e5c | 234 | page = find_get_entry(mapping, index); |
3159f943 | 235 | if (!xa_is_value(page)) { |
1998cc04 | 236 | if (page) |
09cbfeaf | 237 | put_page(page); |
1998cc04 SL |
238 | continue; |
239 | } | |
240 | swap = radix_to_swp_entry(page); | |
241 | page = read_swap_cache_async(swap, GFP_HIGHUSER_MOVABLE, | |
23955622 | 242 | NULL, 0, false); |
1998cc04 | 243 | if (page) |
09cbfeaf | 244 | put_page(page); |
1998cc04 SL |
245 | } |
246 | ||
247 | lru_add_drain(); /* Push any new pages onto the LRU now */ | |
248 | } | |
249 | #endif /* CONFIG_SWAP */ | |
250 | ||
1da177e4 LT |
251 | /* |
252 | * Schedule all required I/O operations. Do not wait for completion. | |
253 | */ | |
ec9bed9d VC |
254 | static long madvise_willneed(struct vm_area_struct *vma, |
255 | struct vm_area_struct **prev, | |
1da177e4 LT |
256 | unsigned long start, unsigned long end) |
257 | { | |
258 | struct file *file = vma->vm_file; | |
692fe624 | 259 | loff_t offset; |
1da177e4 | 260 | |
6ea8d958 | 261 | *prev = vma; |
1998cc04 | 262 | #ifdef CONFIG_SWAP |
97b713ba | 263 | if (!file) { |
7b86ac33 CH |
264 | walk_page_range(vma->vm_mm, start, end, &swapin_walk_ops, vma); |
265 | lru_add_drain(); /* Push any new pages onto the LRU now */ | |
1998cc04 SL |
266 | return 0; |
267 | } | |
1998cc04 | 268 | |
97b713ba | 269 | if (shmem_mapping(file->f_mapping)) { |
97b713ba CH |
270 | force_shm_swapin_readahead(vma, start, end, |
271 | file->f_mapping); | |
272 | return 0; | |
273 | } | |
274 | #else | |
1bef4003 S |
275 | if (!file) |
276 | return -EBADF; | |
97b713ba | 277 | #endif |
1bef4003 | 278 | |
e748dcd0 | 279 | if (IS_DAX(file_inode(file))) { |
fe77ba6f CO |
280 | /* no bad return value, but ignore advice */ |
281 | return 0; | |
282 | } | |
283 | ||
692fe624 JK |
284 | /* |
285 | * Filesystem's fadvise may need to take various locks. We need to | |
286 | * explicitly grab a reference because the vma (and hence the | |
287 | * vma's reference to the file) can go away as soon as we drop | |
288 | * mmap_sem. | |
289 | */ | |
290 | *prev = NULL; /* tell sys_madvise we drop mmap_sem */ | |
291 | get_file(file); | |
292 | up_read(¤t->mm->mmap_sem); | |
293 | offset = (loff_t)(start - vma->vm_start) | |
294 | + ((loff_t)vma->vm_pgoff << PAGE_SHIFT); | |
295 | vfs_fadvise(file, offset, end - start, POSIX_FADV_WILLNEED); | |
296 | fput(file); | |
297 | down_read(¤t->mm->mmap_sem); | |
1da177e4 LT |
298 | return 0; |
299 | } | |
300 | ||
d616d512 MK |
301 | static int madvise_cold_or_pageout_pte_range(pmd_t *pmd, |
302 | unsigned long addr, unsigned long end, | |
303 | struct mm_walk *walk) | |
9c276cc6 | 304 | { |
d616d512 MK |
305 | struct madvise_walk_private *private = walk->private; |
306 | struct mmu_gather *tlb = private->tlb; | |
307 | bool pageout = private->pageout; | |
9c276cc6 MK |
308 | struct mm_struct *mm = tlb->mm; |
309 | struct vm_area_struct *vma = walk->vma; | |
310 | pte_t *orig_pte, *pte, ptent; | |
311 | spinlock_t *ptl; | |
d616d512 MK |
312 | struct page *page = NULL; |
313 | LIST_HEAD(page_list); | |
314 | ||
315 | if (fatal_signal_pending(current)) | |
316 | return -EINTR; | |
9c276cc6 MK |
317 | |
318 | #ifdef CONFIG_TRANSPARENT_HUGEPAGE | |
319 | if (pmd_trans_huge(*pmd)) { | |
320 | pmd_t orig_pmd; | |
321 | unsigned long next = pmd_addr_end(addr, end); | |
322 | ||
323 | tlb_change_page_size(tlb, HPAGE_PMD_SIZE); | |
324 | ptl = pmd_trans_huge_lock(pmd, vma); | |
325 | if (!ptl) | |
326 | return 0; | |
327 | ||
328 | orig_pmd = *pmd; | |
329 | if (is_huge_zero_pmd(orig_pmd)) | |
330 | goto huge_unlock; | |
331 | ||
332 | if (unlikely(!pmd_present(orig_pmd))) { | |
333 | VM_BUG_ON(thp_migration_supported() && | |
334 | !is_pmd_migration_entry(orig_pmd)); | |
335 | goto huge_unlock; | |
336 | } | |
337 | ||
338 | page = pmd_page(orig_pmd); | |
12e967fd MH |
339 | |
340 | /* Do not interfere with other mappings of this page */ | |
341 | if (page_mapcount(page) != 1) | |
342 | goto huge_unlock; | |
343 | ||
9c276cc6 MK |
344 | if (next - addr != HPAGE_PMD_SIZE) { |
345 | int err; | |
346 | ||
9c276cc6 MK |
347 | get_page(page); |
348 | spin_unlock(ptl); | |
349 | lock_page(page); | |
350 | err = split_huge_page(page); | |
351 | unlock_page(page); | |
352 | put_page(page); | |
353 | if (!err) | |
354 | goto regular_page; | |
355 | return 0; | |
356 | } | |
357 | ||
358 | if (pmd_young(orig_pmd)) { | |
359 | pmdp_invalidate(vma, addr, pmd); | |
360 | orig_pmd = pmd_mkold(orig_pmd); | |
361 | ||
362 | set_pmd_at(mm, addr, pmd, orig_pmd); | |
363 | tlb_remove_pmd_tlb_entry(tlb, pmd, addr); | |
364 | } | |
365 | ||
d616d512 | 366 | ClearPageReferenced(page); |
9c276cc6 | 367 | test_and_clear_page_young(page); |
d616d512 | 368 | if (pageout) { |
82072962 | 369 | if (!isolate_lru_page(page)) { |
370 | if (PageUnevictable(page)) | |
371 | putback_lru_page(page); | |
372 | else | |
373 | list_add(&page->lru, &page_list); | |
374 | } | |
d616d512 MK |
375 | } else |
376 | deactivate_page(page); | |
9c276cc6 MK |
377 | huge_unlock: |
378 | spin_unlock(ptl); | |
d616d512 MK |
379 | if (pageout) |
380 | reclaim_pages(&page_list); | |
9c276cc6 MK |
381 | return 0; |
382 | } | |
383 | ||
384 | if (pmd_trans_unstable(pmd)) | |
385 | return 0; | |
386 | regular_page: | |
387 | #endif | |
388 | tlb_change_page_size(tlb, PAGE_SIZE); | |
389 | orig_pte = pte = pte_offset_map_lock(vma->vm_mm, pmd, addr, &ptl); | |
390 | flush_tlb_batched_pending(mm); | |
391 | arch_enter_lazy_mmu_mode(); | |
392 | for (; addr < end; pte++, addr += PAGE_SIZE) { | |
393 | ptent = *pte; | |
394 | ||
395 | if (pte_none(ptent)) | |
396 | continue; | |
397 | ||
398 | if (!pte_present(ptent)) | |
399 | continue; | |
400 | ||
401 | page = vm_normal_page(vma, addr, ptent); | |
402 | if (!page) | |
403 | continue; | |
404 | ||
405 | /* | |
406 | * Creating a THP page is expensive so split it only if we | |
407 | * are sure it's worth. Split it if we are only owner. | |
408 | */ | |
409 | if (PageTransCompound(page)) { | |
410 | if (page_mapcount(page) != 1) | |
411 | break; | |
412 | get_page(page); | |
413 | if (!trylock_page(page)) { | |
414 | put_page(page); | |
415 | break; | |
416 | } | |
417 | pte_unmap_unlock(orig_pte, ptl); | |
418 | if (split_huge_page(page)) { | |
419 | unlock_page(page); | |
420 | put_page(page); | |
421 | pte_offset_map_lock(mm, pmd, addr, &ptl); | |
422 | break; | |
423 | } | |
424 | unlock_page(page); | |
425 | put_page(page); | |
426 | pte = pte_offset_map_lock(mm, pmd, addr, &ptl); | |
427 | pte--; | |
428 | addr -= PAGE_SIZE; | |
429 | continue; | |
430 | } | |
431 | ||
12e967fd MH |
432 | /* Do not interfere with other mappings of this page */ |
433 | if (page_mapcount(page) != 1) | |
434 | continue; | |
435 | ||
9c276cc6 MK |
436 | VM_BUG_ON_PAGE(PageTransCompound(page), page); |
437 | ||
438 | if (pte_young(ptent)) { | |
439 | ptent = ptep_get_and_clear_full(mm, addr, pte, | |
440 | tlb->fullmm); | |
441 | ptent = pte_mkold(ptent); | |
442 | set_pte_at(mm, addr, pte, ptent); | |
443 | tlb_remove_tlb_entry(tlb, pte, addr); | |
444 | } | |
445 | ||
446 | /* | |
447 | * We are deactivating a page for accelerating reclaiming. | |
448 | * VM couldn't reclaim the page unless we clear PG_young. | |
449 | * As a side effect, it makes confuse idle-page tracking | |
450 | * because they will miss recent referenced history. | |
451 | */ | |
d616d512 | 452 | ClearPageReferenced(page); |
9c276cc6 | 453 | test_and_clear_page_young(page); |
d616d512 | 454 | if (pageout) { |
82072962 | 455 | if (!isolate_lru_page(page)) { |
456 | if (PageUnevictable(page)) | |
457 | putback_lru_page(page); | |
458 | else | |
459 | list_add(&page->lru, &page_list); | |
460 | } | |
d616d512 MK |
461 | } else |
462 | deactivate_page(page); | |
9c276cc6 MK |
463 | } |
464 | ||
465 | arch_leave_lazy_mmu_mode(); | |
466 | pte_unmap_unlock(orig_pte, ptl); | |
d616d512 MK |
467 | if (pageout) |
468 | reclaim_pages(&page_list); | |
9c276cc6 MK |
469 | cond_resched(); |
470 | ||
471 | return 0; | |
472 | } | |
473 | ||
474 | static const struct mm_walk_ops cold_walk_ops = { | |
d616d512 | 475 | .pmd_entry = madvise_cold_or_pageout_pte_range, |
9c276cc6 MK |
476 | }; |
477 | ||
478 | static void madvise_cold_page_range(struct mmu_gather *tlb, | |
479 | struct vm_area_struct *vma, | |
480 | unsigned long addr, unsigned long end) | |
481 | { | |
d616d512 MK |
482 | struct madvise_walk_private walk_private = { |
483 | .pageout = false, | |
484 | .tlb = tlb, | |
485 | }; | |
486 | ||
9c276cc6 | 487 | tlb_start_vma(tlb, vma); |
d616d512 | 488 | walk_page_range(vma->vm_mm, addr, end, &cold_walk_ops, &walk_private); |
9c276cc6 MK |
489 | tlb_end_vma(tlb, vma); |
490 | } | |
491 | ||
492 | static long madvise_cold(struct vm_area_struct *vma, | |
493 | struct vm_area_struct **prev, | |
494 | unsigned long start_addr, unsigned long end_addr) | |
495 | { | |
496 | struct mm_struct *mm = vma->vm_mm; | |
497 | struct mmu_gather tlb; | |
498 | ||
499 | *prev = vma; | |
500 | if (!can_madv_lru_vma(vma)) | |
501 | return -EINVAL; | |
502 | ||
503 | lru_add_drain(); | |
504 | tlb_gather_mmu(&tlb, mm, start_addr, end_addr); | |
505 | madvise_cold_page_range(&tlb, vma, start_addr, end_addr); | |
506 | tlb_finish_mmu(&tlb, start_addr, end_addr); | |
507 | ||
508 | return 0; | |
509 | } | |
510 | ||
1a4e58cc MK |
511 | static void madvise_pageout_page_range(struct mmu_gather *tlb, |
512 | struct vm_area_struct *vma, | |
513 | unsigned long addr, unsigned long end) | |
514 | { | |
d616d512 MK |
515 | struct madvise_walk_private walk_private = { |
516 | .pageout = true, | |
517 | .tlb = tlb, | |
518 | }; | |
519 | ||
1a4e58cc | 520 | tlb_start_vma(tlb, vma); |
d616d512 | 521 | walk_page_range(vma->vm_mm, addr, end, &cold_walk_ops, &walk_private); |
1a4e58cc MK |
522 | tlb_end_vma(tlb, vma); |
523 | } | |
524 | ||
525 | static inline bool can_do_pageout(struct vm_area_struct *vma) | |
526 | { | |
527 | if (vma_is_anonymous(vma)) | |
528 | return true; | |
529 | if (!vma->vm_file) | |
530 | return false; | |
531 | /* | |
532 | * paging out pagecache only for non-anonymous mappings that correspond | |
533 | * to the files the calling process could (if tried) open for writing; | |
534 | * otherwise we'd be including shared non-exclusive mappings, which | |
535 | * opens a side channel. | |
536 | */ | |
537 | return inode_owner_or_capable(file_inode(vma->vm_file)) || | |
538 | inode_permission(file_inode(vma->vm_file), MAY_WRITE) == 0; | |
539 | } | |
540 | ||
541 | static long madvise_pageout(struct vm_area_struct *vma, | |
542 | struct vm_area_struct **prev, | |
543 | unsigned long start_addr, unsigned long end_addr) | |
544 | { | |
545 | struct mm_struct *mm = vma->vm_mm; | |
546 | struct mmu_gather tlb; | |
547 | ||
548 | *prev = vma; | |
549 | if (!can_madv_lru_vma(vma)) | |
550 | return -EINVAL; | |
551 | ||
552 | if (!can_do_pageout(vma)) | |
553 | return 0; | |
554 | ||
555 | lru_add_drain(); | |
556 | tlb_gather_mmu(&tlb, mm, start_addr, end_addr); | |
557 | madvise_pageout_page_range(&tlb, vma, start_addr, end_addr); | |
558 | tlb_finish_mmu(&tlb, start_addr, end_addr); | |
559 | ||
560 | return 0; | |
561 | } | |
562 | ||
854e9ed0 MK |
563 | static int madvise_free_pte_range(pmd_t *pmd, unsigned long addr, |
564 | unsigned long end, struct mm_walk *walk) | |
565 | ||
566 | { | |
567 | struct mmu_gather *tlb = walk->private; | |
568 | struct mm_struct *mm = tlb->mm; | |
569 | struct vm_area_struct *vma = walk->vma; | |
570 | spinlock_t *ptl; | |
571 | pte_t *orig_pte, *pte, ptent; | |
572 | struct page *page; | |
64b42bc1 | 573 | int nr_swap = 0; |
b8d3c4c3 MK |
574 | unsigned long next; |
575 | ||
576 | next = pmd_addr_end(addr, end); | |
577 | if (pmd_trans_huge(*pmd)) | |
578 | if (madvise_free_huge_pmd(tlb, vma, pmd, addr, next)) | |
579 | goto next; | |
854e9ed0 | 580 | |
854e9ed0 MK |
581 | if (pmd_trans_unstable(pmd)) |
582 | return 0; | |
583 | ||
ed6a7935 | 584 | tlb_change_page_size(tlb, PAGE_SIZE); |
854e9ed0 | 585 | orig_pte = pte = pte_offset_map_lock(mm, pmd, addr, &ptl); |
3ea27719 | 586 | flush_tlb_batched_pending(mm); |
854e9ed0 MK |
587 | arch_enter_lazy_mmu_mode(); |
588 | for (; addr != end; pte++, addr += PAGE_SIZE) { | |
589 | ptent = *pte; | |
590 | ||
64b42bc1 | 591 | if (pte_none(ptent)) |
854e9ed0 | 592 | continue; |
64b42bc1 MK |
593 | /* |
594 | * If the pte has swp_entry, just clear page table to | |
595 | * prevent swap-in which is more expensive rather than | |
596 | * (page allocation + zeroing). | |
597 | */ | |
598 | if (!pte_present(ptent)) { | |
599 | swp_entry_t entry; | |
600 | ||
601 | entry = pte_to_swp_entry(ptent); | |
602 | if (non_swap_entry(entry)) | |
603 | continue; | |
604 | nr_swap--; | |
605 | free_swap_and_cache(entry); | |
606 | pte_clear_not_present_full(mm, addr, pte, tlb->fullmm); | |
607 | continue; | |
608 | } | |
854e9ed0 | 609 | |
25b2995a | 610 | page = vm_normal_page(vma, addr, ptent); |
854e9ed0 MK |
611 | if (!page) |
612 | continue; | |
613 | ||
614 | /* | |
615 | * If pmd isn't transhuge but the page is THP and | |
616 | * is owned by only this process, split it and | |
617 | * deactivate all pages. | |
618 | */ | |
619 | if (PageTransCompound(page)) { | |
620 | if (page_mapcount(page) != 1) | |
621 | goto out; | |
622 | get_page(page); | |
623 | if (!trylock_page(page)) { | |
624 | put_page(page); | |
625 | goto out; | |
626 | } | |
627 | pte_unmap_unlock(orig_pte, ptl); | |
628 | if (split_huge_page(page)) { | |
629 | unlock_page(page); | |
630 | put_page(page); | |
631 | pte_offset_map_lock(mm, pmd, addr, &ptl); | |
632 | goto out; | |
633 | } | |
854e9ed0 | 634 | unlock_page(page); |
263630e8 | 635 | put_page(page); |
854e9ed0 MK |
636 | pte = pte_offset_map_lock(mm, pmd, addr, &ptl); |
637 | pte--; | |
638 | addr -= PAGE_SIZE; | |
639 | continue; | |
640 | } | |
641 | ||
642 | VM_BUG_ON_PAGE(PageTransCompound(page), page); | |
643 | ||
644 | if (PageSwapCache(page) || PageDirty(page)) { | |
645 | if (!trylock_page(page)) | |
646 | continue; | |
647 | /* | |
648 | * If page is shared with others, we couldn't clear | |
649 | * PG_dirty of the page. | |
650 | */ | |
651 | if (page_mapcount(page) != 1) { | |
652 | unlock_page(page); | |
653 | continue; | |
654 | } | |
655 | ||
656 | if (PageSwapCache(page) && !try_to_free_swap(page)) { | |
657 | unlock_page(page); | |
658 | continue; | |
659 | } | |
660 | ||
661 | ClearPageDirty(page); | |
662 | unlock_page(page); | |
663 | } | |
664 | ||
665 | if (pte_young(ptent) || pte_dirty(ptent)) { | |
666 | /* | |
667 | * Some of architecture(ex, PPC) don't update TLB | |
668 | * with set_pte_at and tlb_remove_tlb_entry so for | |
669 | * the portability, remap the pte with old|clean | |
670 | * after pte clearing. | |
671 | */ | |
672 | ptent = ptep_get_and_clear_full(mm, addr, pte, | |
673 | tlb->fullmm); | |
674 | ||
675 | ptent = pte_mkold(ptent); | |
676 | ptent = pte_mkclean(ptent); | |
677 | set_pte_at(mm, addr, pte, ptent); | |
678 | tlb_remove_tlb_entry(tlb, pte, addr); | |
679 | } | |
802a3a92 | 680 | mark_page_lazyfree(page); |
854e9ed0 MK |
681 | } |
682 | out: | |
64b42bc1 MK |
683 | if (nr_swap) { |
684 | if (current->mm == mm) | |
685 | sync_mm_rss(mm); | |
686 | ||
687 | add_mm_counter(mm, MM_SWAPENTS, nr_swap); | |
688 | } | |
854e9ed0 MK |
689 | arch_leave_lazy_mmu_mode(); |
690 | pte_unmap_unlock(orig_pte, ptl); | |
691 | cond_resched(); | |
b8d3c4c3 | 692 | next: |
854e9ed0 MK |
693 | return 0; |
694 | } | |
695 | ||
7b86ac33 CH |
696 | static const struct mm_walk_ops madvise_free_walk_ops = { |
697 | .pmd_entry = madvise_free_pte_range, | |
698 | }; | |
854e9ed0 MK |
699 | |
700 | static int madvise_free_single_vma(struct vm_area_struct *vma, | |
701 | unsigned long start_addr, unsigned long end_addr) | |
702 | { | |
854e9ed0 | 703 | struct mm_struct *mm = vma->vm_mm; |
ac46d4f3 | 704 | struct mmu_notifier_range range; |
854e9ed0 MK |
705 | struct mmu_gather tlb; |
706 | ||
854e9ed0 MK |
707 | /* MADV_FREE works for only anon vma at the moment */ |
708 | if (!vma_is_anonymous(vma)) | |
709 | return -EINVAL; | |
710 | ||
ac46d4f3 JG |
711 | range.start = max(vma->vm_start, start_addr); |
712 | if (range.start >= vma->vm_end) | |
854e9ed0 | 713 | return -EINVAL; |
ac46d4f3 JG |
714 | range.end = min(vma->vm_end, end_addr); |
715 | if (range.end <= vma->vm_start) | |
854e9ed0 | 716 | return -EINVAL; |
7269f999 | 717 | mmu_notifier_range_init(&range, MMU_NOTIFY_CLEAR, 0, vma, mm, |
6f4f13e8 | 718 | range.start, range.end); |
854e9ed0 MK |
719 | |
720 | lru_add_drain(); | |
ac46d4f3 | 721 | tlb_gather_mmu(&tlb, mm, range.start, range.end); |
854e9ed0 MK |
722 | update_hiwater_rss(mm); |
723 | ||
ac46d4f3 | 724 | mmu_notifier_invalidate_range_start(&range); |
7b86ac33 CH |
725 | tlb_start_vma(&tlb, vma); |
726 | walk_page_range(vma->vm_mm, range.start, range.end, | |
727 | &madvise_free_walk_ops, &tlb); | |
728 | tlb_end_vma(&tlb, vma); | |
ac46d4f3 JG |
729 | mmu_notifier_invalidate_range_end(&range); |
730 | tlb_finish_mmu(&tlb, range.start, range.end); | |
854e9ed0 MK |
731 | |
732 | return 0; | |
733 | } | |
734 | ||
1da177e4 LT |
735 | /* |
736 | * Application no longer needs these pages. If the pages are dirty, | |
737 | * it's OK to just throw them away. The app will be more careful about | |
738 | * data it wants to keep. Be sure to free swap resources too. The | |
7e6cbea3 | 739 | * zap_page_range call sets things up for shrink_active_list to actually free |
1da177e4 LT |
740 | * these pages later if no one else has touched them in the meantime, |
741 | * although we could add these pages to a global reuse list for | |
7e6cbea3 | 742 | * shrink_active_list to pick up before reclaiming other pages. |
1da177e4 LT |
743 | * |
744 | * NB: This interface discards data rather than pushes it out to swap, | |
745 | * as some implementations do. This has performance implications for | |
746 | * applications like large transactional databases which want to discard | |
747 | * pages in anonymous maps after committing to backing store the data | |
748 | * that was kept in them. There is no reason to write this data out to | |
749 | * the swap area if the application is discarding it. | |
750 | * | |
751 | * An interface that causes the system to free clean pages and flush | |
752 | * dirty pages is already available as msync(MS_INVALIDATE). | |
753 | */ | |
230ca982 MR |
754 | static long madvise_dontneed_single_vma(struct vm_area_struct *vma, |
755 | unsigned long start, unsigned long end) | |
756 | { | |
757 | zap_page_range(vma, start, end - start); | |
758 | return 0; | |
759 | } | |
760 | ||
761 | static long madvise_dontneed_free(struct vm_area_struct *vma, | |
762 | struct vm_area_struct **prev, | |
763 | unsigned long start, unsigned long end, | |
764 | int behavior) | |
1da177e4 | 765 | { |
05b74384 | 766 | *prev = vma; |
9c276cc6 | 767 | if (!can_madv_lru_vma(vma)) |
1da177e4 LT |
768 | return -EINVAL; |
769 | ||
70ccb92f AA |
770 | if (!userfaultfd_remove(vma, start, end)) { |
771 | *prev = NULL; /* mmap_sem has been dropped, prev is stale */ | |
772 | ||
773 | down_read(¤t->mm->mmap_sem); | |
774 | vma = find_vma(current->mm, start); | |
775 | if (!vma) | |
776 | return -ENOMEM; | |
777 | if (start < vma->vm_start) { | |
778 | /* | |
779 | * This "vma" under revalidation is the one | |
780 | * with the lowest vma->vm_start where start | |
781 | * is also < vma->vm_end. If start < | |
782 | * vma->vm_start it means an hole materialized | |
783 | * in the user address space within the | |
230ca982 MR |
784 | * virtual range passed to MADV_DONTNEED |
785 | * or MADV_FREE. | |
70ccb92f AA |
786 | */ |
787 | return -ENOMEM; | |
788 | } | |
9c276cc6 | 789 | if (!can_madv_lru_vma(vma)) |
70ccb92f AA |
790 | return -EINVAL; |
791 | if (end > vma->vm_end) { | |
792 | /* | |
793 | * Don't fail if end > vma->vm_end. If the old | |
794 | * vma was splitted while the mmap_sem was | |
795 | * released the effect of the concurrent | |
230ca982 | 796 | * operation may not cause madvise() to |
70ccb92f AA |
797 | * have an undefined result. There may be an |
798 | * adjacent next vma that we'll walk | |
799 | * next. userfaultfd_remove() will generate an | |
800 | * UFFD_EVENT_REMOVE repetition on the | |
801 | * end-vma->vm_end range, but the manager can | |
802 | * handle a repetition fine. | |
803 | */ | |
804 | end = vma->vm_end; | |
805 | } | |
806 | VM_WARN_ON(start >= end); | |
807 | } | |
230ca982 MR |
808 | |
809 | if (behavior == MADV_DONTNEED) | |
810 | return madvise_dontneed_single_vma(vma, start, end); | |
811 | else if (behavior == MADV_FREE) | |
812 | return madvise_free_single_vma(vma, start, end); | |
813 | else | |
814 | return -EINVAL; | |
1da177e4 LT |
815 | } |
816 | ||
f6b3ec23 BP |
817 | /* |
818 | * Application wants to free up the pages and associated backing store. | |
819 | * This is effectively punching a hole into the middle of a file. | |
f6b3ec23 BP |
820 | */ |
821 | static long madvise_remove(struct vm_area_struct *vma, | |
00e9fa2d | 822 | struct vm_area_struct **prev, |
f6b3ec23 BP |
823 | unsigned long start, unsigned long end) |
824 | { | |
3f31d075 | 825 | loff_t offset; |
90ed52eb | 826 | int error; |
9ab4233d | 827 | struct file *f; |
f6b3ec23 | 828 | |
90ed52eb | 829 | *prev = NULL; /* tell sys_madvise we drop mmap_sem */ |
00e9fa2d | 830 | |
72079ba0 | 831 | if (vma->vm_flags & VM_LOCKED) |
f6b3ec23 BP |
832 | return -EINVAL; |
833 | ||
9ab4233d AL |
834 | f = vma->vm_file; |
835 | ||
836 | if (!f || !f->f_mapping || !f->f_mapping->host) { | |
f6b3ec23 BP |
837 | return -EINVAL; |
838 | } | |
839 | ||
69cf0fac HD |
840 | if ((vma->vm_flags & (VM_SHARED|VM_WRITE)) != (VM_SHARED|VM_WRITE)) |
841 | return -EACCES; | |
842 | ||
f6b3ec23 BP |
843 | offset = (loff_t)(start - vma->vm_start) |
844 | + ((loff_t)vma->vm_pgoff << PAGE_SHIFT); | |
90ed52eb | 845 | |
9ab4233d AL |
846 | /* |
847 | * Filesystem's fallocate may need to take i_mutex. We need to | |
848 | * explicitly grab a reference because the vma (and hence the | |
849 | * vma's reference to the file) can go away as soon as we drop | |
850 | * mmap_sem. | |
851 | */ | |
852 | get_file(f); | |
70ccb92f AA |
853 | if (userfaultfd_remove(vma, start, end)) { |
854 | /* mmap_sem was not released by userfaultfd_remove() */ | |
855 | up_read(¤t->mm->mmap_sem); | |
856 | } | |
72c72bdf | 857 | error = vfs_fallocate(f, |
3f31d075 HD |
858 | FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE, |
859 | offset, end - start); | |
9ab4233d | 860 | fput(f); |
0a27a14a | 861 | down_read(¤t->mm->mmap_sem); |
90ed52eb | 862 | return error; |
f6b3ec23 BP |
863 | } |
864 | ||
9893e49d AK |
865 | #ifdef CONFIG_MEMORY_FAILURE |
866 | /* | |
867 | * Error injection support for memory error handling. | |
868 | */ | |
97167a76 AK |
869 | static int madvise_inject_error(int behavior, |
870 | unsigned long start, unsigned long end) | |
9893e49d | 871 | { |
97167a76 | 872 | struct page *page; |
c461ad6a | 873 | struct zone *zone; |
d3cd257c | 874 | unsigned long size; |
97167a76 | 875 | |
9893e49d AK |
876 | if (!capable(CAP_SYS_ADMIN)) |
877 | return -EPERM; | |
97167a76 | 878 | |
19bfbe22 | 879 | |
d3cd257c | 880 | for (; start < end; start += size) { |
23e7b5c2 | 881 | unsigned long pfn; |
325c4ef5 AM |
882 | int ret; |
883 | ||
97167a76 | 884 | ret = get_user_pages_fast(start, 1, 0, &page); |
9893e49d AK |
885 | if (ret != 1) |
886 | return ret; | |
23e7b5c2 | 887 | pfn = page_to_pfn(page); |
325c4ef5 | 888 | |
19bfbe22 AM |
889 | /* |
890 | * When soft offlining hugepages, after migrating the page | |
891 | * we dissolve it, therefore in the second loop "page" will | |
d3cd257c | 892 | * no longer be a compound page. |
19bfbe22 | 893 | */ |
d3cd257c | 894 | size = page_size(compound_head(page)); |
19bfbe22 | 895 | |
97167a76 AK |
896 | if (PageHWPoison(page)) { |
897 | put_page(page); | |
29b4eede WL |
898 | continue; |
899 | } | |
97167a76 AK |
900 | |
901 | if (behavior == MADV_SOFT_OFFLINE) { | |
902 | pr_info("Soft offlining pfn %#lx at process virtual address %#lx\n", | |
23e7b5c2 | 903 | pfn, start); |
97167a76 | 904 | |
feec24a6 | 905 | ret = soft_offline_page(pfn, MF_COUNT_INCREASED); |
afcf938e | 906 | if (ret) |
8302423b | 907 | return ret; |
afcf938e AK |
908 | continue; |
909 | } | |
23e7b5c2 | 910 | |
97167a76 | 911 | pr_info("Injecting memory failure for pfn %#lx at process virtual address %#lx\n", |
23e7b5c2 | 912 | pfn, start); |
97167a76 | 913 | |
23e7b5c2 DW |
914 | /* |
915 | * Drop the page reference taken by get_user_pages_fast(). In | |
916 | * the absence of MF_COUNT_INCREASED the memory_failure() | |
917 | * routine is responsible for pinning the page to prevent it | |
918 | * from being released back to the page allocator. | |
919 | */ | |
920 | put_page(page); | |
921 | ret = memory_failure(pfn, 0); | |
23a003bf NH |
922 | if (ret) |
923 | return ret; | |
9893e49d | 924 | } |
c461ad6a MG |
925 | |
926 | /* Ensure that all poisoned pages are removed from per-cpu lists */ | |
927 | for_each_populated_zone(zone) | |
928 | drain_all_pages(zone); | |
929 | ||
325c4ef5 | 930 | return 0; |
9893e49d AK |
931 | } |
932 | #endif | |
933 | ||
165cd402 | 934 | static long |
935 | madvise_vma(struct vm_area_struct *vma, struct vm_area_struct **prev, | |
936 | unsigned long start, unsigned long end, int behavior) | |
1da177e4 | 937 | { |
1da177e4 | 938 | switch (behavior) { |
f6b3ec23 | 939 | case MADV_REMOVE: |
3866ea90 | 940 | return madvise_remove(vma, prev, start, end); |
1da177e4 | 941 | case MADV_WILLNEED: |
3866ea90 | 942 | return madvise_willneed(vma, prev, start, end); |
9c276cc6 MK |
943 | case MADV_COLD: |
944 | return madvise_cold(vma, prev, start, end); | |
1a4e58cc MK |
945 | case MADV_PAGEOUT: |
946 | return madvise_pageout(vma, prev, start, end); | |
854e9ed0 | 947 | case MADV_FREE: |
1da177e4 | 948 | case MADV_DONTNEED: |
230ca982 | 949 | return madvise_dontneed_free(vma, prev, start, end, behavior); |
1da177e4 | 950 | default: |
3866ea90 | 951 | return madvise_behavior(vma, prev, start, end, behavior); |
1da177e4 | 952 | } |
1da177e4 LT |
953 | } |
954 | ||
1ecef9ed | 955 | static bool |
75927af8 NP |
956 | madvise_behavior_valid(int behavior) |
957 | { | |
958 | switch (behavior) { | |
959 | case MADV_DOFORK: | |
960 | case MADV_DONTFORK: | |
961 | case MADV_NORMAL: | |
962 | case MADV_SEQUENTIAL: | |
963 | case MADV_RANDOM: | |
964 | case MADV_REMOVE: | |
965 | case MADV_WILLNEED: | |
966 | case MADV_DONTNEED: | |
854e9ed0 | 967 | case MADV_FREE: |
9c276cc6 | 968 | case MADV_COLD: |
1a4e58cc | 969 | case MADV_PAGEOUT: |
f8af4da3 HD |
970 | #ifdef CONFIG_KSM |
971 | case MADV_MERGEABLE: | |
972 | case MADV_UNMERGEABLE: | |
0af4e98b AA |
973 | #endif |
974 | #ifdef CONFIG_TRANSPARENT_HUGEPAGE | |
975 | case MADV_HUGEPAGE: | |
a664b2d8 | 976 | case MADV_NOHUGEPAGE: |
f8af4da3 | 977 | #endif |
accb61fe JB |
978 | case MADV_DONTDUMP: |
979 | case MADV_DODUMP: | |
d2cd9ede RR |
980 | case MADV_WIPEONFORK: |
981 | case MADV_KEEPONFORK: | |
5e451be7 AK |
982 | #ifdef CONFIG_MEMORY_FAILURE |
983 | case MADV_SOFT_OFFLINE: | |
984 | case MADV_HWPOISON: | |
985 | #endif | |
1ecef9ed | 986 | return true; |
75927af8 NP |
987 | |
988 | default: | |
1ecef9ed | 989 | return false; |
75927af8 NP |
990 | } |
991 | } | |
3866ea90 | 992 | |
1da177e4 LT |
993 | /* |
994 | * The madvise(2) system call. | |
995 | * | |
996 | * Applications can use madvise() to advise the kernel how it should | |
997 | * handle paging I/O in this VM area. The idea is to help the kernel | |
998 | * use appropriate read-ahead and caching techniques. The information | |
999 | * provided is advisory only, and can be safely disregarded by the | |
1000 | * kernel without affecting the correct operation of the application. | |
1001 | * | |
1002 | * behavior values: | |
1003 | * MADV_NORMAL - the default behavior is to read clusters. This | |
1004 | * results in some read-ahead and read-behind. | |
1005 | * MADV_RANDOM - the system should read the minimum amount of data | |
1006 | * on any access, since it is unlikely that the appli- | |
1007 | * cation will need more than what it asks for. | |
1008 | * MADV_SEQUENTIAL - pages in the given range will probably be accessed | |
1009 | * once, so they can be aggressively read ahead, and | |
1010 | * can be freed soon after they are accessed. | |
1011 | * MADV_WILLNEED - the application is notifying the system to read | |
1012 | * some pages ahead. | |
1013 | * MADV_DONTNEED - the application is finished with the given range, | |
1014 | * so the kernel can free resources associated with it. | |
d7206a70 NH |
1015 | * MADV_FREE - the application marks pages in the given range as lazy free, |
1016 | * where actual purges are postponed until memory pressure happens. | |
f6b3ec23 BP |
1017 | * MADV_REMOVE - the application wants to free up the given range of |
1018 | * pages and associated backing store. | |
3866ea90 HD |
1019 | * MADV_DONTFORK - omit this area from child's address space when forking: |
1020 | * typically, to avoid COWing pages pinned by get_user_pages(). | |
1021 | * MADV_DOFORK - cancel MADV_DONTFORK: no longer omit this area when forking. | |
c02c3009 YS |
1022 | * MADV_WIPEONFORK - present the child process with zero-filled memory in this |
1023 | * range after a fork. | |
1024 | * MADV_KEEPONFORK - undo the effect of MADV_WIPEONFORK | |
d7206a70 NH |
1025 | * MADV_HWPOISON - trigger memory error handler as if the given memory range |
1026 | * were corrupted by unrecoverable hardware memory failure. | |
1027 | * MADV_SOFT_OFFLINE - try to soft-offline the given range of memory. | |
f8af4da3 HD |
1028 | * MADV_MERGEABLE - the application recommends that KSM try to merge pages in |
1029 | * this area with pages of identical content from other such areas. | |
1030 | * MADV_UNMERGEABLE- cancel MADV_MERGEABLE: no longer merge pages with others. | |
d7206a70 NH |
1031 | * MADV_HUGEPAGE - the application wants to back the given range by transparent |
1032 | * huge pages in the future. Existing pages might be coalesced and | |
1033 | * new pages might be allocated as THP. | |
1034 | * MADV_NOHUGEPAGE - mark the given range as not worth being backed by | |
1035 | * transparent huge pages so the existing pages will not be | |
1036 | * coalesced into THP and new pages will not be allocated as THP. | |
1037 | * MADV_DONTDUMP - the application wants to prevent pages in the given range | |
1038 | * from being included in its core dump. | |
1039 | * MADV_DODUMP - cancel MADV_DONTDUMP: no longer exclude from core dump. | |
1da177e4 LT |
1040 | * |
1041 | * return values: | |
1042 | * zero - success | |
1043 | * -EINVAL - start + len < 0, start is not page-aligned, | |
1044 | * "behavior" is not a valid value, or application | |
c02c3009 YS |
1045 | * is attempting to release locked or shared pages, |
1046 | * or the specified address range includes file, Huge TLB, | |
1047 | * MAP_SHARED or VMPFNMAP range. | |
1da177e4 LT |
1048 | * -ENOMEM - addresses in the specified range are not currently |
1049 | * mapped, or are outside the AS of the process. | |
1050 | * -EIO - an I/O error occurred while paging in data. | |
1051 | * -EBADF - map exists, but area maps something that isn't a file. | |
1052 | * -EAGAIN - a kernel resource was temporarily unavailable. | |
1053 | */ | |
db08ca25 | 1054 | int do_madvise(unsigned long start, size_t len_in, int behavior) |
1da177e4 | 1055 | { |
05b74384 | 1056 | unsigned long end, tmp; |
ec9bed9d | 1057 | struct vm_area_struct *vma, *prev; |
1da177e4 LT |
1058 | int unmapped_error = 0; |
1059 | int error = -EINVAL; | |
f7977793 | 1060 | int write; |
1da177e4 | 1061 | size_t len; |
1998cc04 | 1062 | struct blk_plug plug; |
1da177e4 | 1063 | |
057d3389 AK |
1064 | start = untagged_addr(start); |
1065 | ||
75927af8 NP |
1066 | if (!madvise_behavior_valid(behavior)) |
1067 | return error; | |
1068 | ||
df6c6500 | 1069 | if (!PAGE_ALIGNED(start)) |
84d96d89 | 1070 | return error; |
df6c6500 | 1071 | len = PAGE_ALIGN(len_in); |
1da177e4 LT |
1072 | |
1073 | /* Check to see whether len was rounded up from small -ve to zero */ | |
1074 | if (len_in && !len) | |
84d96d89 | 1075 | return error; |
1da177e4 LT |
1076 | |
1077 | end = start + len; | |
1078 | if (end < start) | |
84d96d89 | 1079 | return error; |
1da177e4 LT |
1080 | |
1081 | error = 0; | |
1082 | if (end == start) | |
84d96d89 RV |
1083 | return error; |
1084 | ||
5e451be7 AK |
1085 | #ifdef CONFIG_MEMORY_FAILURE |
1086 | if (behavior == MADV_HWPOISON || behavior == MADV_SOFT_OFFLINE) | |
1087 | return madvise_inject_error(behavior, start, start + len_in); | |
1088 | #endif | |
1089 | ||
84d96d89 | 1090 | write = madvise_need_mmap_write(behavior); |
dc0ef0df MH |
1091 | if (write) { |
1092 | if (down_write_killable(¤t->mm->mmap_sem)) | |
1093 | return -EINTR; | |
bc0c4d1e LT |
1094 | |
1095 | /* | |
1096 | * We may have stolen the mm from another process | |
1097 | * that is undergoing core dumping. | |
1098 | * | |
1099 | * Right now that's io_ring, in the future it may | |
1100 | * be remote process management and not "current" | |
1101 | * at all. | |
1102 | * | |
1103 | * We need to fix core dumping to not do this, | |
1104 | * but for now we have the mmget_still_valid() | |
1105 | * model. | |
1106 | */ | |
1107 | if (!mmget_still_valid(current->mm)) { | |
1108 | up_write(¤t->mm->mmap_sem); | |
1109 | return -EINTR; | |
1110 | } | |
dc0ef0df | 1111 | } else { |
84d96d89 | 1112 | down_read(¤t->mm->mmap_sem); |
dc0ef0df | 1113 | } |
1da177e4 LT |
1114 | |
1115 | /* | |
1116 | * If the interval [start,end) covers some unmapped address | |
1117 | * ranges, just ignore them, but return -ENOMEM at the end. | |
05b74384 | 1118 | * - different from the way of handling in mlock etc. |
1da177e4 | 1119 | */ |
05b74384 | 1120 | vma = find_vma_prev(current->mm, start, &prev); |
836d5ffd HD |
1121 | if (vma && start > vma->vm_start) |
1122 | prev = vma; | |
1123 | ||
1998cc04 | 1124 | blk_start_plug(&plug); |
1da177e4 LT |
1125 | for (;;) { |
1126 | /* Still start < end. */ | |
1127 | error = -ENOMEM; | |
1128 | if (!vma) | |
84d96d89 | 1129 | goto out; |
1da177e4 | 1130 | |
05b74384 | 1131 | /* Here start < (end|vma->vm_end). */ |
1da177e4 LT |
1132 | if (start < vma->vm_start) { |
1133 | unmapped_error = -ENOMEM; | |
1134 | start = vma->vm_start; | |
05b74384 | 1135 | if (start >= end) |
84d96d89 | 1136 | goto out; |
1da177e4 LT |
1137 | } |
1138 | ||
05b74384 PM |
1139 | /* Here vma->vm_start <= start < (end|vma->vm_end) */ |
1140 | tmp = vma->vm_end; | |
1141 | if (end < tmp) | |
1142 | tmp = end; | |
1da177e4 | 1143 | |
05b74384 PM |
1144 | /* Here vma->vm_start <= start < tmp <= (end|vma->vm_end). */ |
1145 | error = madvise_vma(vma, &prev, start, tmp, behavior); | |
1da177e4 | 1146 | if (error) |
84d96d89 | 1147 | goto out; |
05b74384 | 1148 | start = tmp; |
90ed52eb | 1149 | if (prev && start < prev->vm_end) |
05b74384 PM |
1150 | start = prev->vm_end; |
1151 | error = unmapped_error; | |
1152 | if (start >= end) | |
84d96d89 | 1153 | goto out; |
90ed52eb HD |
1154 | if (prev) |
1155 | vma = prev->vm_next; | |
1156 | else /* madvise_remove dropped mmap_sem */ | |
1157 | vma = find_vma(current->mm, start); | |
1da177e4 | 1158 | } |
1da177e4 | 1159 | out: |
84d96d89 | 1160 | blk_finish_plug(&plug); |
f7977793 | 1161 | if (write) |
0a27a14a NP |
1162 | up_write(¤t->mm->mmap_sem); |
1163 | else | |
1164 | up_read(¤t->mm->mmap_sem); | |
1165 | ||
1da177e4 LT |
1166 | return error; |
1167 | } | |
db08ca25 JA |
1168 | |
1169 | SYSCALL_DEFINE3(madvise, unsigned long, start, size_t, len_in, int, behavior) | |
1170 | { | |
1171 | return do_madvise(start, len_in, behavior); | |
1172 | } |