Merge tag 'audit-pr-20221107' of git://git.kernel.org/pub/scm/linux/kernel/git/pcmoor...
[linux-block.git] / mm / mremap.c
CommitLineData
b2441318 1// SPDX-License-Identifier: GPL-2.0
1da177e4
LT
2/*
3 * mm/mremap.c
4 *
5 * (C) Copyright 1996 Linus Torvalds
6 *
046c6884 7 * Address space accounting code <alan@lxorguk.ukuu.org.uk>
1da177e4
LT
8 * (C) Copyright 2002 Red Hat Inc, All Rights Reserved
9 */
10
11#include <linux/mm.h>
ca3d76b0 12#include <linux/mm_inline.h>
1da177e4 13#include <linux/hugetlb.h>
1da177e4 14#include <linux/shm.h>
1ff82995 15#include <linux/ksm.h>
1da177e4
LT
16#include <linux/mman.h>
17#include <linux/swap.h>
c59ede7b 18#include <linux/capability.h>
1da177e4 19#include <linux/fs.h>
6dec97dc 20#include <linux/swapops.h>
1da177e4
LT
21#include <linux/highmem.h>
22#include <linux/security.h>
23#include <linux/syscalls.h>
cddb8a5c 24#include <linux/mmu_notifier.h>
2581d202 25#include <linux/uaccess.h>
72f87654 26#include <linux/userfaultfd_k.h>
ca3d76b0 27#include <linux/mempolicy.h>
1da177e4 28
1da177e4 29#include <asm/cacheflush.h>
3bbda69c 30#include <asm/tlb.h>
0881ace2 31#include <asm/pgalloc.h>
1da177e4 32
ba470de4
RR
33#include "internal.h"
34
c49dd340 35static pud_t *get_old_pud(struct mm_struct *mm, unsigned long addr)
1da177e4
LT
36{
37 pgd_t *pgd;
c2febafc 38 p4d_t *p4d;
1da177e4 39 pud_t *pud;
1da177e4
LT
40
41 pgd = pgd_offset(mm, addr);
42 if (pgd_none_or_clear_bad(pgd))
43 return NULL;
44
c2febafc
KS
45 p4d = p4d_offset(pgd, addr);
46 if (p4d_none_or_clear_bad(p4d))
47 return NULL;
48
49 pud = pud_offset(p4d, addr);
1da177e4
LT
50 if (pud_none_or_clear_bad(pud))
51 return NULL;
52
c49dd340
KS
53 return pud;
54}
55
56static pmd_t *get_old_pmd(struct mm_struct *mm, unsigned long addr)
57{
58 pud_t *pud;
59 pmd_t *pmd;
60
61 pud = get_old_pud(mm, addr);
62 if (!pud)
63 return NULL;
64
1da177e4 65 pmd = pmd_offset(pud, addr);
37a1c49a 66 if (pmd_none(*pmd))
1da177e4
LT
67 return NULL;
68
7be7a546 69 return pmd;
1da177e4
LT
70}
71
c49dd340 72static pud_t *alloc_new_pud(struct mm_struct *mm, struct vm_area_struct *vma,
8ac1f832 73 unsigned long addr)
1da177e4
LT
74{
75 pgd_t *pgd;
c2febafc 76 p4d_t *p4d;
1da177e4
LT
77
78 pgd = pgd_offset(mm, addr);
c2febafc
KS
79 p4d = p4d_alloc(mm, pgd, addr);
80 if (!p4d)
81 return NULL;
c49dd340
KS
82
83 return pud_alloc(mm, p4d, addr);
84}
85
86static pmd_t *alloc_new_pmd(struct mm_struct *mm, struct vm_area_struct *vma,
87 unsigned long addr)
88{
89 pud_t *pud;
90 pmd_t *pmd;
91
92 pud = alloc_new_pud(mm, vma, addr);
1da177e4 93 if (!pud)
c74df32c 94 return NULL;
7be7a546 95
1da177e4 96 pmd = pmd_alloc(mm, pud, addr);
57a8f0cd 97 if (!pmd)
c74df32c 98 return NULL;
7be7a546 99
8ac1f832 100 VM_BUG_ON(pmd_trans_huge(*pmd));
c74df32c 101
7be7a546 102 return pmd;
1da177e4
LT
103}
104
1d069b7d
HD
105static void take_rmap_locks(struct vm_area_struct *vma)
106{
107 if (vma->vm_file)
108 i_mmap_lock_write(vma->vm_file->f_mapping);
109 if (vma->anon_vma)
110 anon_vma_lock_write(vma->anon_vma);
111}
112
113static void drop_rmap_locks(struct vm_area_struct *vma)
114{
115 if (vma->anon_vma)
116 anon_vma_unlock_write(vma->anon_vma);
117 if (vma->vm_file)
118 i_mmap_unlock_write(vma->vm_file->f_mapping);
119}
120
6dec97dc
CG
121static pte_t move_soft_dirty_pte(pte_t pte)
122{
123 /*
124 * Set soft dirty bit so we can notice
125 * in userspace the ptes were moved.
126 */
127#ifdef CONFIG_MEM_SOFT_DIRTY
128 if (pte_present(pte))
129 pte = pte_mksoft_dirty(pte);
130 else if (is_swap_pte(pte))
131 pte = pte_swp_mksoft_dirty(pte);
6dec97dc
CG
132#endif
133 return pte;
134}
135
7be7a546
HD
136static void move_ptes(struct vm_area_struct *vma, pmd_t *old_pmd,
137 unsigned long old_addr, unsigned long old_end,
138 struct vm_area_struct *new_vma, pmd_t *new_pmd,
eb66ae03 139 unsigned long new_addr, bool need_rmap_locks)
1da177e4 140{
1da177e4 141 struct mm_struct *mm = vma->vm_mm;
7be7a546 142 pte_t *old_pte, *new_pte, pte;
4c21e2f2 143 spinlock_t *old_ptl, *new_ptl;
5d190420
AL
144 bool force_flush = false;
145 unsigned long len = old_end - old_addr;
1da177e4 146
38a76013 147 /*
c8c06efa 148 * When need_rmap_locks is true, we take the i_mmap_rwsem and anon_vma
38a76013
ML
149 * locks to ensure that rmap will always observe either the old or the
150 * new ptes. This is the easiest way to avoid races with
151 * truncate_pagecache(), page migration, etc...
152 *
153 * When need_rmap_locks is false, we use other ways to avoid
154 * such races:
155 *
156 * - During exec() shift_arg_pages(), we use a specially tagged vma
222100ee 157 * which rmap call sites look for using vma_is_temporary_stack().
38a76013
ML
158 *
159 * - During mremap(), new_vma is often known to be placed after vma
160 * in rmap traversal order. This ensures rmap will always observe
161 * either the old pte, or the new pte, or both (the page table locks
162 * serialize access to individual ptes, but only rmap traversal
163 * order guarantees that we won't miss both the old and new ptes).
164 */
1d069b7d
HD
165 if (need_rmap_locks)
166 take_rmap_locks(vma);
1da177e4 167
4c21e2f2
HD
168 /*
169 * We don't have to worry about the ordering of src and dst
c1e8d7c6 170 * pte locks because exclusive mmap_lock prevents deadlock.
4c21e2f2 171 */
c74df32c 172 old_pte = pte_offset_map_lock(mm, old_pmd, old_addr, &old_ptl);
ece0e2b6 173 new_pte = pte_offset_map(new_pmd, new_addr);
4c21e2f2
HD
174 new_ptl = pte_lockptr(mm, new_pmd);
175 if (new_ptl != old_ptl)
f20dc5f7 176 spin_lock_nested(new_ptl, SINGLE_DEPTH_NESTING);
3ea27719 177 flush_tlb_batched_pending(vma->vm_mm);
6606c3e0 178 arch_enter_lazy_mmu_mode();
7be7a546
HD
179
180 for (; old_addr < old_end; old_pte++, old_addr += PAGE_SIZE,
181 new_pte++, new_addr += PAGE_SIZE) {
182 if (pte_none(*old_pte))
183 continue;
5d190420 184
a2ce2666 185 pte = ptep_get_and_clear(mm, old_addr, old_pte);
5d190420 186 /*
eb66ae03 187 * If we are remapping a valid PTE, make sure
a2ce2666 188 * to flush TLB before we drop the PTL for the
eb66ae03 189 * PTE.
a2ce2666 190 *
eb66ae03
LT
191 * NOTE! Both old and new PTL matter: the old one
192 * for racing with page_mkclean(), the new one to
193 * make sure the physical page stays valid until
194 * the TLB entry for the old mapping has been
195 * flushed.
5d190420 196 */
eb66ae03 197 if (pte_present(pte))
5d190420 198 force_flush = true;
7be7a546 199 pte = move_pte(pte, new_vma->vm_page_prot, old_addr, new_addr);
6dec97dc
CG
200 pte = move_soft_dirty_pte(pte);
201 set_pte_at(mm, new_addr, new_pte, pte);
1da177e4 202 }
7be7a546 203
6606c3e0 204 arch_leave_lazy_mmu_mode();
eb66ae03
LT
205 if (force_flush)
206 flush_tlb_range(vma, old_end - len, old_end);
4c21e2f2
HD
207 if (new_ptl != old_ptl)
208 spin_unlock(new_ptl);
ece0e2b6 209 pte_unmap(new_pte - 1);
c74df32c 210 pte_unmap_unlock(old_pte - 1, old_ptl);
1d069b7d
HD
211 if (need_rmap_locks)
212 drop_rmap_locks(vma);
1da177e4
LT
213}
214
3bbda69c
AK
215#ifndef arch_supports_page_table_move
216#define arch_supports_page_table_move arch_supports_page_table_move
217static inline bool arch_supports_page_table_move(void)
218{
219 return IS_ENABLED(CONFIG_HAVE_MOVE_PMD) ||
220 IS_ENABLED(CONFIG_HAVE_MOVE_PUD);
221}
222#endif
223
2c91bd4a
JFG
224#ifdef CONFIG_HAVE_MOVE_PMD
225static bool move_normal_pmd(struct vm_area_struct *vma, unsigned long old_addr,
b8aa9d9d 226 unsigned long new_addr, pmd_t *old_pmd, pmd_t *new_pmd)
2c91bd4a
JFG
227{
228 spinlock_t *old_ptl, *new_ptl;
229 struct mm_struct *mm = vma->vm_mm;
230 pmd_t pmd;
231
3bbda69c
AK
232 if (!arch_supports_page_table_move())
233 return false;
2c91bd4a
JFG
234 /*
235 * The destination pmd shouldn't be established, free_pgtables()
f81fdd0c
LT
236 * should have released it.
237 *
238 * However, there's a case during execve() where we use mremap
239 * to move the initial stack, and in that case the target area
240 * may overlap the source area (always moving down).
241 *
242 * If everything is PMD-aligned, that works fine, as moving
243 * each pmd down will clear the source pmd. But if we first
244 * have a few 4kB-only pages that get moved down, and then
245 * hit the "now the rest is PMD-aligned, let's do everything
246 * one pmd at a time", we will still have the old (now empty
247 * of any 4kB pages, but still there) PMD in the page table
248 * tree.
249 *
250 * Warn on it once - because we really should try to figure
251 * out how to do this better - but then say "I won't move
252 * this pmd".
253 *
254 * One alternative might be to just unmap the target pmd at
255 * this point, and verify that it really is empty. We'll see.
2c91bd4a 256 */
f81fdd0c 257 if (WARN_ON_ONCE(!pmd_none(*new_pmd)))
2c91bd4a
JFG
258 return false;
259
260 /*
261 * We don't have to worry about the ordering of src and dst
c1e8d7c6 262 * ptlocks because exclusive mmap_lock prevents deadlock.
2c91bd4a
JFG
263 */
264 old_ptl = pmd_lock(vma->vm_mm, old_pmd);
265 new_ptl = pmd_lockptr(mm, new_pmd);
266 if (new_ptl != old_ptl)
267 spin_lock_nested(new_ptl, SINGLE_DEPTH_NESTING);
268
269 /* Clear the pmd */
270 pmd = *old_pmd;
271 pmd_clear(old_pmd);
272
273 VM_BUG_ON(!pmd_none(*new_pmd));
274
0881ace2 275 pmd_populate(mm, new_pmd, pmd_pgtable(pmd));
2c91bd4a
JFG
276 flush_tlb_range(vma, old_addr, old_addr + PMD_SIZE);
277 if (new_ptl != old_ptl)
278 spin_unlock(new_ptl);
279 spin_unlock(old_ptl);
280
281 return true;
282}
c49dd340
KS
283#else
284static inline bool move_normal_pmd(struct vm_area_struct *vma,
285 unsigned long old_addr, unsigned long new_addr, pmd_t *old_pmd,
286 pmd_t *new_pmd)
287{
288 return false;
289}
290#endif
291
d6655dff 292#if CONFIG_PGTABLE_LEVELS > 2 && defined(CONFIG_HAVE_MOVE_PUD)
c49dd340
KS
293static bool move_normal_pud(struct vm_area_struct *vma, unsigned long old_addr,
294 unsigned long new_addr, pud_t *old_pud, pud_t *new_pud)
295{
296 spinlock_t *old_ptl, *new_ptl;
297 struct mm_struct *mm = vma->vm_mm;
298 pud_t pud;
299
3bbda69c
AK
300 if (!arch_supports_page_table_move())
301 return false;
c49dd340
KS
302 /*
303 * The destination pud shouldn't be established, free_pgtables()
304 * should have released it.
305 */
306 if (WARN_ON_ONCE(!pud_none(*new_pud)))
307 return false;
308
309 /*
310 * We don't have to worry about the ordering of src and dst
311 * ptlocks because exclusive mmap_lock prevents deadlock.
312 */
313 old_ptl = pud_lock(vma->vm_mm, old_pud);
314 new_ptl = pud_lockptr(mm, new_pud);
315 if (new_ptl != old_ptl)
316 spin_lock_nested(new_ptl, SINGLE_DEPTH_NESTING);
317
318 /* Clear the pud */
319 pud = *old_pud;
320 pud_clear(old_pud);
321
322 VM_BUG_ON(!pud_none(*new_pud));
323
0881ace2 324 pud_populate(mm, new_pud, pud_pgtable(pud));
c49dd340
KS
325 flush_tlb_range(vma, old_addr, old_addr + PUD_SIZE);
326 if (new_ptl != old_ptl)
327 spin_unlock(new_ptl);
328 spin_unlock(old_ptl);
329
330 return true;
331}
332#else
333static inline bool move_normal_pud(struct vm_area_struct *vma,
334 unsigned long old_addr, unsigned long new_addr, pud_t *old_pud,
335 pud_t *new_pud)
336{
337 return false;
338}
2c91bd4a
JFG
339#endif
340
7d846db7
AK
341#ifdef CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD
342static bool move_huge_pud(struct vm_area_struct *vma, unsigned long old_addr,
343 unsigned long new_addr, pud_t *old_pud, pud_t *new_pud)
344{
345 spinlock_t *old_ptl, *new_ptl;
346 struct mm_struct *mm = vma->vm_mm;
347 pud_t pud;
348
349 /*
350 * The destination pud shouldn't be established, free_pgtables()
351 * should have released it.
352 */
353 if (WARN_ON_ONCE(!pud_none(*new_pud)))
354 return false;
355
356 /*
357 * We don't have to worry about the ordering of src and dst
358 * ptlocks because exclusive mmap_lock prevents deadlock.
359 */
360 old_ptl = pud_lock(vma->vm_mm, old_pud);
361 new_ptl = pud_lockptr(mm, new_pud);
362 if (new_ptl != old_ptl)
363 spin_lock_nested(new_ptl, SINGLE_DEPTH_NESTING);
364
365 /* Clear the pud */
366 pud = *old_pud;
367 pud_clear(old_pud);
368
369 VM_BUG_ON(!pud_none(*new_pud));
370
371 /* Set the new pud */
372 /* mark soft_ditry when we add pud level soft dirty support */
373 set_pud_at(mm, new_addr, new_pud, pud);
374 flush_pud_tlb_range(vma, old_addr, old_addr + HPAGE_PUD_SIZE);
375 if (new_ptl != old_ptl)
376 spin_unlock(new_ptl);
377 spin_unlock(old_ptl);
378
379 return true;
380}
381#else
382static bool move_huge_pud(struct vm_area_struct *vma, unsigned long old_addr,
383 unsigned long new_addr, pud_t *old_pud, pud_t *new_pud)
384{
385 WARN_ON_ONCE(1);
386 return false;
387
388}
389#endif
390
c49dd340
KS
391enum pgt_entry {
392 NORMAL_PMD,
393 HPAGE_PMD,
394 NORMAL_PUD,
7d846db7 395 HPAGE_PUD,
c49dd340
KS
396};
397
398/*
399 * Returns an extent of the corresponding size for the pgt_entry specified if
400 * valid. Else returns a smaller extent bounded by the end of the source and
401 * destination pgt_entry.
402 */
a30a2909
AB
403static __always_inline unsigned long get_extent(enum pgt_entry entry,
404 unsigned long old_addr, unsigned long old_end,
405 unsigned long new_addr)
c49dd340
KS
406{
407 unsigned long next, extent, mask, size;
408
409 switch (entry) {
410 case HPAGE_PMD:
411 case NORMAL_PMD:
412 mask = PMD_MASK;
413 size = PMD_SIZE;
414 break;
7d846db7 415 case HPAGE_PUD:
c49dd340
KS
416 case NORMAL_PUD:
417 mask = PUD_MASK;
418 size = PUD_SIZE;
419 break;
420 default:
421 BUILD_BUG();
422 break;
423 }
424
425 next = (old_addr + size) & mask;
426 /* even if next overflowed, extent below will be ok */
e05986ee
KS
427 extent = next - old_addr;
428 if (extent > old_end - old_addr)
429 extent = old_end - old_addr;
c49dd340
KS
430 next = (new_addr + size) & mask;
431 if (extent > next - new_addr)
432 extent = next - new_addr;
433 return extent;
434}
435
436/*
437 * Attempts to speedup the move by moving entry at the level corresponding to
438 * pgt_entry. Returns true if the move was successful, else false.
439 */
440static bool move_pgt_entry(enum pgt_entry entry, struct vm_area_struct *vma,
441 unsigned long old_addr, unsigned long new_addr,
442 void *old_entry, void *new_entry, bool need_rmap_locks)
443{
444 bool moved = false;
445
446 /* See comment in move_ptes() */
447 if (need_rmap_locks)
448 take_rmap_locks(vma);
449
450 switch (entry) {
451 case NORMAL_PMD:
452 moved = move_normal_pmd(vma, old_addr, new_addr, old_entry,
453 new_entry);
454 break;
455 case NORMAL_PUD:
456 moved = move_normal_pud(vma, old_addr, new_addr, old_entry,
457 new_entry);
458 break;
459 case HPAGE_PMD:
460 moved = IS_ENABLED(CONFIG_TRANSPARENT_HUGEPAGE) &&
461 move_huge_pmd(vma, old_addr, new_addr, old_entry,
462 new_entry);
463 break;
7d846db7
AK
464 case HPAGE_PUD:
465 moved = IS_ENABLED(CONFIG_TRANSPARENT_HUGEPAGE) &&
466 move_huge_pud(vma, old_addr, new_addr, old_entry,
467 new_entry);
468 break;
469
c49dd340
KS
470 default:
471 WARN_ON_ONCE(1);
472 break;
473 }
474
475 if (need_rmap_locks)
476 drop_rmap_locks(vma);
477
478 return moved;
479}
480
b6a2fea3 481unsigned long move_page_tables(struct vm_area_struct *vma,
1da177e4 482 unsigned long old_addr, struct vm_area_struct *new_vma,
38a76013
ML
483 unsigned long new_addr, unsigned long len,
484 bool need_rmap_locks)
1da177e4 485{
c49dd340 486 unsigned long extent, old_end;
ac46d4f3 487 struct mmu_notifier_range range;
7be7a546 488 pmd_t *old_pmd, *new_pmd;
7d846db7 489 pud_t *old_pud, *new_pud;
1da177e4 490
01e67e04
PB
491 if (!len)
492 return 0;
493
7be7a546 494 old_end = old_addr + len;
1da177e4 495
550a7d60
MA
496 if (is_vm_hugetlb_page(vma))
497 return move_hugetlb_page_tables(vma, new_vma, old_addr,
498 new_addr, len);
499
3d0b95cd 500 flush_cache_range(vma, old_addr, old_end);
6f4f13e8
JG
501 mmu_notifier_range_init(&range, MMU_NOTIFY_UNMAP, 0, vma, vma->vm_mm,
502 old_addr, old_end);
ac46d4f3 503 mmu_notifier_invalidate_range_start(&range);
7b6efc2b 504
7be7a546 505 for (; old_addr < old_end; old_addr += extent, new_addr += extent) {
1da177e4 506 cond_resched();
c49dd340
KS
507 /*
508 * If extent is PUD-sized try to speed up the move by moving at the
509 * PUD level if possible.
510 */
511 extent = get_extent(NORMAL_PUD, old_addr, old_end, new_addr);
c49dd340 512
7d846db7
AK
513 old_pud = get_old_pud(vma->vm_mm, old_addr);
514 if (!old_pud)
515 continue;
516 new_pud = alloc_new_pud(vma->vm_mm, vma, new_addr);
517 if (!new_pud)
518 break;
519 if (pud_trans_huge(*old_pud) || pud_devmap(*old_pud)) {
520 if (extent == HPAGE_PUD_SIZE) {
521 move_pgt_entry(HPAGE_PUD, vma, old_addr, new_addr,
522 old_pud, new_pud, need_rmap_locks);
523 /* We ignore and continue on error? */
c49dd340 524 continue;
7d846db7
AK
525 }
526 } else if (IS_ENABLED(CONFIG_HAVE_MOVE_PUD) && extent == PUD_SIZE) {
527
c49dd340 528 if (move_pgt_entry(NORMAL_PUD, vma, old_addr, new_addr,
97113eb3 529 old_pud, new_pud, true))
c49dd340
KS
530 continue;
531 }
532
533 extent = get_extent(NORMAL_PMD, old_addr, old_end, new_addr);
7be7a546
HD
534 old_pmd = get_old_pmd(vma->vm_mm, old_addr);
535 if (!old_pmd)
536 continue;
8ac1f832 537 new_pmd = alloc_new_pmd(vma->vm_mm, vma, new_addr);
7be7a546
HD
538 if (!new_pmd)
539 break;
c49dd340
KS
540 if (is_swap_pmd(*old_pmd) || pmd_trans_huge(*old_pmd) ||
541 pmd_devmap(*old_pmd)) {
542 if (extent == HPAGE_PMD_SIZE &&
543 move_pgt_entry(HPAGE_PMD, vma, old_addr, new_addr,
544 old_pmd, new_pmd, need_rmap_locks))
545 continue;
4b471e88 546 split_huge_pmd(vma, old_pmd, old_addr);
337d9abf 547 if (pmd_trans_unstable(old_pmd))
6b9116a6 548 continue;
c49dd340
KS
549 } else if (IS_ENABLED(CONFIG_HAVE_MOVE_PMD) &&
550 extent == PMD_SIZE) {
2c91bd4a
JFG
551 /*
552 * If the extent is PMD-sized, try to speed the move by
553 * moving at the PMD level if possible.
554 */
c49dd340 555 if (move_pgt_entry(NORMAL_PMD, vma, old_addr, new_addr,
97113eb3 556 old_pmd, new_pmd, true))
2c91bd4a 557 continue;
37a1c49a 558 }
2c91bd4a 559
4cf58924 560 if (pte_alloc(new_vma->vm_mm, new_pmd))
37a1c49a 561 break;
5d190420 562 move_ptes(vma, old_pmd, old_addr, old_addr + extent, new_vma,
eb66ae03 563 new_pmd, new_addr, need_rmap_locks);
1da177e4 564 }
7b6efc2b 565
ac46d4f3 566 mmu_notifier_invalidate_range_end(&range);
7be7a546
HD
567
568 return len + old_addr - old_end; /* how much done */
1da177e4
LT
569}
570
571static unsigned long move_vma(struct vm_area_struct *vma,
572 unsigned long old_addr, unsigned long old_len,
72f87654 573 unsigned long new_len, unsigned long new_addr,
e346b381
BG
574 bool *locked, unsigned long flags,
575 struct vm_userfaultfd_ctx *uf, struct list_head *uf_unmap)
1da177e4 576{
fdbef614 577 long to_account = new_len - old_len;
1da177e4
LT
578 struct mm_struct *mm = vma->vm_mm;
579 struct vm_area_struct *new_vma;
580 unsigned long vm_flags = vma->vm_flags;
581 unsigned long new_pgoff;
582 unsigned long moved_len;
583 unsigned long excess = 0;
365e9c87 584 unsigned long hiwater_vm;
1da177e4 585 int split = 0;
73d5e062 586 int err = 0;
38a76013 587 bool need_rmap_locks;
1da177e4
LT
588
589 /*
590 * We'd prefer to avoid failure later on in do_munmap:
591 * which may split one vma into three before unmapping.
592 */
593 if (mm->map_count >= sysctl_max_map_count - 3)
594 return -ENOMEM;
595
fdbef614
DS
596 if (unlikely(flags & MREMAP_DONTUNMAP))
597 to_account = new_len;
598
73d5e062
DS
599 if (vma->vm_ops && vma->vm_ops->may_split) {
600 if (vma->vm_start != old_addr)
601 err = vma->vm_ops->may_split(vma, old_addr);
602 if (!err && vma->vm_end != old_addr + old_len)
603 err = vma->vm_ops->may_split(vma, old_addr + old_len);
604 if (err)
605 return err;
606 }
607
1ff82995
HD
608 /*
609 * Advise KSM to break any KSM pages in the area to be moved:
610 * it would be confusing if they were to turn up at the new
611 * location, where they happen to coincide with different KSM
612 * pages recently unmapped. But leave vma->vm_flags as it was,
613 * so KSM can come around to merge on vma and new_vma afterwards.
614 */
7103ad32
HD
615 err = ksm_madvise(vma, old_addr, old_addr + old_len,
616 MADV_UNMERGEABLE, &vm_flags);
617 if (err)
618 return err;
1ff82995 619
fdbef614
DS
620 if (vm_flags & VM_ACCOUNT) {
621 if (security_vm_enough_memory_mm(mm, to_account >> PAGE_SHIFT))
ad8ee77e
DS
622 return -ENOMEM;
623 }
624
1da177e4 625 new_pgoff = vma->vm_pgoff + ((old_addr - vma->vm_start) >> PAGE_SHIFT);
38a76013
ML
626 new_vma = copy_vma(&vma, new_addr, new_len, new_pgoff,
627 &need_rmap_locks);
ad8ee77e 628 if (!new_vma) {
fdbef614
DS
629 if (vm_flags & VM_ACCOUNT)
630 vm_unacct_memory(to_account >> PAGE_SHIFT);
1da177e4 631 return -ENOMEM;
ad8ee77e 632 }
1da177e4 633
38a76013
ML
634 moved_len = move_page_tables(vma, old_addr, new_vma, new_addr, old_len,
635 need_rmap_locks);
1da177e4 636 if (moved_len < old_len) {
df1eab30 637 err = -ENOMEM;
5477e70a 638 } else if (vma->vm_ops && vma->vm_ops->mremap) {
14d07113 639 err = vma->vm_ops->mremap(new_vma);
df1eab30
ON
640 }
641
642 if (unlikely(err)) {
1da177e4
LT
643 /*
644 * On error, move entries back from new area to old,
645 * which will succeed since page tables still there,
646 * and then proceed to unmap new area instead of old.
647 */
38a76013
ML
648 move_page_tables(new_vma, new_addr, vma, old_addr, moved_len,
649 true);
1da177e4
LT
650 vma = new_vma;
651 old_len = new_len;
652 old_addr = new_addr;
df1eab30 653 new_addr = err;
4abad2ca 654 } else {
72f87654 655 mremap_userfaultfd_prep(new_vma, uf);
b2edffdd 656 }
1da177e4 657
550a7d60
MA
658 if (is_vm_hugetlb_page(vma)) {
659 clear_vma_resv_huge_pages(vma);
660 }
661
1da177e4 662 /* Conceal VM_ACCOUNT so old reservation is not undone */
ad8ee77e 663 if (vm_flags & VM_ACCOUNT && !(flags & MREMAP_DONTUNMAP)) {
1da177e4
LT
664 vma->vm_flags &= ~VM_ACCOUNT;
665 excess = vma->vm_end - vma->vm_start - old_len;
666 if (old_addr > vma->vm_start &&
667 old_addr + old_len < vma->vm_end)
668 split = 1;
669 }
670
71799062 671 /*
365e9c87
HD
672 * If we failed to move page tables we still do total_vm increment
673 * since do_munmap() will decrement it by old_len == new_len.
674 *
675 * Since total_vm is about to be raised artificially high for a
676 * moment, we need to restore high watermark afterwards: if stats
677 * are taken meanwhile, total_vm and hiwater_vm appear too high.
678 * If this were a serious issue, we'd add a flag to do_munmap().
71799062 679 */
365e9c87 680 hiwater_vm = mm->hiwater_vm;
84638335 681 vm_stat_account(mm, vma->vm_flags, new_len >> PAGE_SHIFT);
71799062 682
d9fe4fab
TK
683 /* Tell pfnmap has moved from this vma */
684 if (unlikely(vma->vm_flags & VM_PFNMAP))
685 untrack_pfn_moved(vma);
686
e346b381 687 if (unlikely(!err && (flags & MREMAP_DONTUNMAP))) {
e346b381
BG
688 /* We always clear VM_LOCKED[ONFAULT] on the old vma */
689 vma->vm_flags &= VM_LOCKED_CLEAR_MASK;
690
1583aa27
LX
691 /*
692 * anon_vma links of the old vma is no longer needed after its page
693 * table has been moved.
694 */
695 if (new_vma != vma && vma->vm_start == old_addr &&
696 vma->vm_end == (old_addr + old_len))
697 unlink_anon_vmas(vma);
698
e346b381 699 /* Because we won't unmap we don't need to touch locked_vm */
ad8ee77e 700 return new_addr;
e346b381
BG
701 }
702
897ab3e0 703 if (do_munmap(mm, old_addr, old_len, uf_unmap) < 0) {
1da177e4 704 /* OOM: unable to split vma, just get accounts right */
ad8ee77e 705 if (vm_flags & VM_ACCOUNT && !(flags & MREMAP_DONTUNMAP))
5e22928a 706 vm_acct_memory(old_len >> PAGE_SHIFT);
1da177e4
LT
707 excess = 0;
708 }
e346b381
BG
709
710 if (vm_flags & VM_LOCKED) {
711 mm->locked_vm += new_len >> PAGE_SHIFT;
712 *locked = true;
713 }
ad8ee77e 714
365e9c87 715 mm->hiwater_vm = hiwater_vm;
1da177e4
LT
716
717 /* Restore VM_ACCOUNT if one or two pieces of vma left */
718 if (excess) {
719 vma->vm_flags |= VM_ACCOUNT;
720 if (split)
396a44cc 721 find_vma(mm, vma->vm_end)->vm_flags |= VM_ACCOUNT;
1da177e4
LT
722 }
723
1da177e4
LT
724 return new_addr;
725}
726
54f5de70 727static struct vm_area_struct *vma_to_resize(unsigned long addr,
fdbef614 728 unsigned long old_len, unsigned long new_len, unsigned long flags)
54f5de70
AV
729{
730 struct mm_struct *mm = current->mm;
5aaf07f0 731 struct vm_area_struct *vma;
1d391686 732 unsigned long pgoff;
54f5de70 733
5aaf07f0
LH
734 vma = vma_lookup(mm, addr);
735 if (!vma)
6cd57613 736 return ERR_PTR(-EFAULT);
54f5de70 737
dba58d3b
MK
738 /*
739 * !old_len is a special case where an attempt is made to 'duplicate'
740 * a mapping. This makes no sense for private mappings as it will
741 * instead create a fresh/new mapping unrelated to the original. This
742 * is contrary to the basic idea of mremap which creates new mappings
743 * based on the original. There are no known use cases for this
744 * behavior. As a result, fail such attempts.
745 */
746 if (!old_len && !(vma->vm_flags & (VM_SHARED | VM_MAYSHARE))) {
747 pr_warn_once("%s (%d): attempted to duplicate a private mapping with mremap. This is not supported.\n", current->comm, current->pid);
748 return ERR_PTR(-EINVAL);
749 }
750
a4609387
BG
751 if ((flags & MREMAP_DONTUNMAP) &&
752 (vma->vm_flags & (VM_DONTEXPAND | VM_PFNMAP)))
e346b381
BG
753 return ERR_PTR(-EINVAL);
754
54f5de70
AV
755 /* We can't remap across vm area boundaries */
756 if (old_len > vma->vm_end - addr)
6cd57613 757 return ERR_PTR(-EFAULT);
54f5de70 758
1d391686
ON
759 if (new_len == old_len)
760 return vma;
761
982134ba 762 /* Need to be careful about a growing mapping */
1d391686
ON
763 pgoff = (addr - vma->vm_start) >> PAGE_SHIFT;
764 pgoff += vma->vm_pgoff;
765 if (pgoff + (new_len >> PAGE_SHIFT) < pgoff)
766 return ERR_PTR(-EINVAL);
767
768 if (vma->vm_flags & (VM_DONTEXPAND | VM_PFNMAP))
769 return ERR_PTR(-EFAULT);
54f5de70 770
f4331956
ML
771 if (mlock_future_check(mm, vma->vm_flags, new_len - old_len))
772 return ERR_PTR(-EAGAIN);
54f5de70 773
84638335
KK
774 if (!may_expand_vm(mm, vma->vm_flags,
775 (new_len - old_len) >> PAGE_SHIFT))
6cd57613 776 return ERR_PTR(-ENOMEM);
54f5de70 777
54f5de70 778 return vma;
54f5de70
AV
779}
780
81909b84 781static unsigned long mremap_to(unsigned long addr, unsigned long old_len,
72f87654 782 unsigned long new_addr, unsigned long new_len, bool *locked,
e346b381 783 unsigned long flags, struct vm_userfaultfd_ctx *uf,
b2282371 784 struct list_head *uf_unmap_early,
897ab3e0 785 struct list_head *uf_unmap)
ecc1a899
AV
786{
787 struct mm_struct *mm = current->mm;
788 struct vm_area_struct *vma;
789 unsigned long ret = -EINVAL;
e346b381 790 unsigned long map_flags = 0;
ecc1a899 791
f19cb115 792 if (offset_in_page(new_addr))
ecc1a899
AV
793 goto out;
794
795 if (new_len > TASK_SIZE || new_addr > TASK_SIZE - new_len)
796 goto out;
797
9943242c
ON
798 /* Ensure the old/new locations do not overlap */
799 if (addr + old_len > new_addr && new_addr + new_len > addr)
ecc1a899
AV
800 goto out;
801
ea2c3f6f
OS
802 /*
803 * move_vma() need us to stay 4 maps below the threshold, otherwise
804 * it will bail out at the very beginning.
805 * That is a problem if we have already unmaped the regions here
806 * (new_addr, and old_addr), because userspace will not know the
807 * state of the vma's after it gets -ENOMEM.
808 * So, to avoid such scenario we can pre-compute if the whole
809 * operation has high chances to success map-wise.
810 * Worst-scenario case is when both vma's (new_addr and old_addr) get
f0953a1b 811 * split in 3 before unmapping it.
ea2c3f6f
OS
812 * That means 2 more maps (1 for each) to the ones we already hold.
813 * Check whether current map count plus 2 still leads us to 4 maps below
814 * the threshold, otherwise return -ENOMEM here to be more safe.
815 */
816 if ((mm->map_count + 2) >= sysctl_max_map_count - 3)
817 return -ENOMEM;
818
e346b381
BG
819 if (flags & MREMAP_FIXED) {
820 ret = do_munmap(mm, new_addr, new_len, uf_unmap_early);
821 if (ret)
822 goto out;
823 }
ecc1a899 824
3c9fe8b8 825 if (old_len > new_len) {
897ab3e0 826 ret = do_munmap(mm, addr+new_len, old_len - new_len, uf_unmap);
3c9fe8b8 827 if (ret)
ecc1a899
AV
828 goto out;
829 old_len = new_len;
830 }
831
fdbef614 832 vma = vma_to_resize(addr, old_len, new_len, flags);
ecc1a899
AV
833 if (IS_ERR(vma)) {
834 ret = PTR_ERR(vma);
835 goto out;
836 }
837
e346b381
BG
838 /* MREMAP_DONTUNMAP expands by old_len since old_len == new_len */
839 if (flags & MREMAP_DONTUNMAP &&
840 !may_expand_vm(mm, vma->vm_flags, old_len >> PAGE_SHIFT)) {
841 ret = -ENOMEM;
842 goto out;
843 }
844
845 if (flags & MREMAP_FIXED)
846 map_flags |= MAP_FIXED;
847
097eed10
AV
848 if (vma->vm_flags & VM_MAYSHARE)
849 map_flags |= MAP_SHARED;
9206de95 850
097eed10
AV
851 ret = get_unmapped_area(vma->vm_file, new_addr, new_len, vma->vm_pgoff +
852 ((addr - vma->vm_start) >> PAGE_SHIFT),
853 map_flags);
ff68dac6 854 if (IS_ERR_VALUE(ret))
fdbef614 855 goto out;
097eed10 856
e346b381
BG
857 /* We got a new mapping */
858 if (!(flags & MREMAP_FIXED))
859 new_addr = ret;
860
861 ret = move_vma(vma, addr, old_len, new_len, new_addr, locked, flags, uf,
897ab3e0 862 uf_unmap);
e346b381 863
ecc1a899
AV
864out:
865 return ret;
866}
867
1a0ef85f
AV
868static int vma_expandable(struct vm_area_struct *vma, unsigned long delta)
869{
f106af4e 870 unsigned long end = vma->vm_end + delta;
396a44cc 871
9206de95 872 if (end < vma->vm_end) /* overflow */
f106af4e 873 return 0;
396a44cc 874 if (find_vma_intersection(vma->vm_mm, vma->vm_end, end))
f106af4e
AV
875 return 0;
876 if (get_unmapped_area(NULL, vma->vm_start, end - vma->vm_start,
877 0, MAP_FIXED) & ~PAGE_MASK)
1a0ef85f 878 return 0;
1a0ef85f
AV
879 return 1;
880}
881
1da177e4
LT
882/*
883 * Expand (or shrink) an existing mapping, potentially moving it at the
884 * same time (controlled by the MREMAP_MAYMOVE flag and available VM space)
885 *
886 * MREMAP_FIXED option added 5-Dec-1999 by Benjamin LaHaise
887 * This option implies MREMAP_MAYMOVE.
888 */
63a81db1
AV
889SYSCALL_DEFINE5(mremap, unsigned long, addr, unsigned long, old_len,
890 unsigned long, new_len, unsigned long, flags,
891 unsigned long, new_addr)
1da177e4 892{
d0de32d9 893 struct mm_struct *mm = current->mm;
1da177e4
LT
894 struct vm_area_struct *vma;
895 unsigned long ret = -EINVAL;
81909b84 896 bool locked = false;
85a06835 897 bool downgraded = false;
72f87654 898 struct vm_userfaultfd_ctx uf = NULL_VM_UFFD_CTX;
b2282371 899 LIST_HEAD(uf_unmap_early);
897ab3e0 900 LIST_HEAD(uf_unmap);
1da177e4 901
b2a84de2
WD
902 /*
903 * There is a deliberate asymmetry here: we strip the pointer tag
904 * from the old address but leave the new address alone. This is
905 * for consistency with mmap(), where we prevent the creation of
906 * aliasing mappings in userspace by leaving the tag bits of the
907 * mapping address intact. A non-zero tag will cause the subsequent
908 * range checks to reject the address as invalid.
909 *
910 * See Documentation/arm64/tagged-address-abi.rst for more information.
911 */
057d3389
AK
912 addr = untagged_addr(addr);
913
e346b381 914 if (flags & ~(MREMAP_FIXED | MREMAP_MAYMOVE | MREMAP_DONTUNMAP))
9a2458a6
RV
915 return ret;
916
917 if (flags & MREMAP_FIXED && !(flags & MREMAP_MAYMOVE))
918 return ret;
1da177e4 919
e346b381
BG
920 /*
921 * MREMAP_DONTUNMAP is always a move and it does not allow resizing
922 * in the process.
923 */
924 if (flags & MREMAP_DONTUNMAP &&
925 (!(flags & MREMAP_MAYMOVE) || old_len != new_len))
926 return ret;
927
928
f19cb115 929 if (offset_in_page(addr))
9a2458a6 930 return ret;
1da177e4
LT
931
932 old_len = PAGE_ALIGN(old_len);
933 new_len = PAGE_ALIGN(new_len);
934
935 /*
936 * We allow a zero old-len as a special case
937 * for DOS-emu "duplicate shm area" thing. But
938 * a zero new-len is nonsensical.
939 */
940 if (!new_len)
9a2458a6
RV
941 return ret;
942
d8ed45c5 943 if (mmap_write_lock_killable(current->mm))
dc0ef0df 944 return -EINTR;
0e6799db
ML
945 vma = vma_lookup(mm, addr);
946 if (!vma) {
7d1e6496 947 ret = -EFAULT;
550a7d60
MA
948 goto out;
949 }
950
951 if (is_vm_hugetlb_page(vma)) {
952 struct hstate *h __maybe_unused = hstate_vma(vma);
953
954 old_len = ALIGN(old_len, huge_page_size(h));
955 new_len = ALIGN(new_len, huge_page_size(h));
956
957 /* addrs must be huge page aligned */
958 if (addr & ~huge_page_mask(h))
959 goto out;
960 if (new_addr & ~huge_page_mask(h))
961 goto out;
962
963 /*
964 * Don't allow remap expansion, because the underlying hugetlb
965 * reservation is not yet capable to handle split reservation.
966 */
967 if (new_len > old_len)
968 goto out;
969 }
1da177e4 970
e346b381 971 if (flags & (MREMAP_FIXED | MREMAP_DONTUNMAP)) {
9a2458a6 972 ret = mremap_to(addr, old_len, new_addr, new_len,
e346b381
BG
973 &locked, flags, &uf, &uf_unmap_early,
974 &uf_unmap);
ecc1a899 975 goto out;
1da177e4
LT
976 }
977
978 /*
979 * Always allow a shrinking remap: that just unmaps
980 * the unnecessary pages..
11f9a21a 981 * do_mas_munmap does all the needed commit accounting, and
c1e8d7c6 982 * downgrades mmap_lock to read if so directed.
1da177e4
LT
983 */
984 if (old_len >= new_len) {
85a06835 985 int retval;
11f9a21a 986 MA_STATE(mas, &mm->mm_mt, addr + new_len, addr + new_len);
85a06835 987
11f9a21a
LH
988 retval = do_mas_munmap(&mas, mm, addr + new_len,
989 old_len - new_len, &uf_unmap, true);
c1e8d7c6 990 /* Returning 1 indicates mmap_lock is downgraded to read. */
11f9a21a 991 if (retval == 1) {
85a06835 992 downgraded = true;
11f9a21a
LH
993 } else if (retval < 0 && old_len != new_len) {
994 ret = retval;
995 goto out;
996 }
997
1da177e4 998 ret = addr;
ecc1a899 999 goto out;
1da177e4
LT
1000 }
1001
1002 /*
ecc1a899 1003 * Ok, we need to grow..
1da177e4 1004 */
fdbef614 1005 vma = vma_to_resize(addr, old_len, new_len, flags);
54f5de70
AV
1006 if (IS_ERR(vma)) {
1007 ret = PTR_ERR(vma);
1da177e4 1008 goto out;
119f657c 1009 }
1da177e4 1010
1da177e4 1011 /* old_len exactly to the end of the area..
1da177e4 1012 */
ecc1a899 1013 if (old_len == vma->vm_end - addr) {
1da177e4 1014 /* can we just expand the current mapping? */
1a0ef85f 1015 if (vma_expandable(vma, new_len - old_len)) {
fdbef614 1016 long pages = (new_len - old_len) >> PAGE_SHIFT;
ca3d76b0
JM
1017 unsigned long extension_start = addr + old_len;
1018 unsigned long extension_end = addr + new_len;
1019 pgoff_t extension_pgoff = vma->vm_pgoff + (old_len >> PAGE_SHIFT);
fdbef614
DS
1020
1021 if (vma->vm_flags & VM_ACCOUNT) {
1022 if (security_vm_enough_memory_mm(mm, pages)) {
1023 ret = -ENOMEM;
1024 goto out;
1025 }
1026 }
1da177e4 1027
ca3d76b0
JM
1028 /*
1029 * Function vma_merge() is called on the extension we are adding to
1030 * the already existing vma, vma_merge() will merge this extension with
1031 * the already existing vma (expand operation itself) and possibly also
1032 * with the next vma if it becomes adjacent to the expanded vma and
1033 * otherwise compatible.
1034 */
1035 vma = vma_merge(mm, vma, extension_start, extension_end,
1036 vma->vm_flags, vma->anon_vma, vma->vm_file,
1037 extension_pgoff, vma_policy(vma),
1038 vma->vm_userfaultfd_ctx, anon_vma_name(vma));
1039 if (!vma) {
fdbef614 1040 vm_unacct_memory(pages);
5beb4930
RR
1041 ret = -ENOMEM;
1042 goto out;
1043 }
1da177e4 1044
84638335 1045 vm_stat_account(mm, vma->vm_flags, pages);
1da177e4 1046 if (vma->vm_flags & VM_LOCKED) {
d0de32d9 1047 mm->locked_vm += pages;
81909b84
ML
1048 locked = true;
1049 new_addr = addr;
1da177e4
LT
1050 }
1051 ret = addr;
1052 goto out;
1053 }
1054 }
1055
1056 /*
1057 * We weren't able to just expand or shrink the area,
1058 * we need to create a new one and move it..
1059 */
1060 ret = -ENOMEM;
1061 if (flags & MREMAP_MAYMOVE) {
ecc1a899
AV
1062 unsigned long map_flags = 0;
1063 if (vma->vm_flags & VM_MAYSHARE)
1064 map_flags |= MAP_SHARED;
1065
1066 new_addr = get_unmapped_area(vma->vm_file, 0, new_len,
93587414
AV
1067 vma->vm_pgoff +
1068 ((addr - vma->vm_start) >> PAGE_SHIFT),
1069 map_flags);
ff68dac6 1070 if (IS_ERR_VALUE(new_addr)) {
ecc1a899
AV
1071 ret = new_addr;
1072 goto out;
1da177e4 1073 }
ecc1a899 1074
72f87654 1075 ret = move_vma(vma, addr, old_len, new_len, new_addr,
e346b381 1076 &locked, flags, &uf, &uf_unmap);
1da177e4
LT
1077 }
1078out:
fdbef614 1079 if (offset_in_page(ret))
fa1f68cc 1080 locked = false;
85a06835 1081 if (downgraded)
d8ed45c5 1082 mmap_read_unlock(current->mm);
85a06835 1083 else
d8ed45c5 1084 mmap_write_unlock(current->mm);
81909b84
ML
1085 if (locked && new_len > old_len)
1086 mm_populate(new_addr + old_len, new_len - old_len);
b2282371 1087 userfaultfd_unmap_complete(mm, &uf_unmap_early);
d1564926 1088 mremap_userfaultfd_complete(&uf, addr, ret, old_len);
897ab3e0 1089 userfaultfd_unmap_complete(mm, &uf_unmap);
1da177e4
LT
1090 return ret;
1091}