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457c8996 1// SPDX-License-Identifier: GPL-2.0-only
1da177e4
LT
2/*
3 * linux/mm/nommu.c
4 *
5 * Replacement code for mm functions to support CPU's that don't
6 * have any form of memory management unit (thus no virtual memory).
7 *
8 * See Documentation/nommu-mmap.txt
9 *
8feae131 10 * Copyright (c) 2004-2008 David Howells <dhowells@redhat.com>
1da177e4
LT
11 * Copyright (c) 2000-2003 David McCullough <davidm@snapgear.com>
12 * Copyright (c) 2000-2001 D Jeff Dionne <jeff@uClinux.org>
13 * Copyright (c) 2002 Greg Ungerer <gerg@snapgear.com>
29c185e5 14 * Copyright (c) 2007-2010 Paul Mundt <lethal@linux-sh.org>
1da177e4
LT
15 */
16
b1de0d13
MH
17#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
18
b95f1b31 19#include <linux/export.h>
1da177e4 20#include <linux/mm.h>
6e84f315 21#include <linux/sched/mm.h>
615d6e87 22#include <linux/vmacache.h>
1da177e4
LT
23#include <linux/mman.h>
24#include <linux/swap.h>
25#include <linux/file.h>
26#include <linux/highmem.h>
27#include <linux/pagemap.h>
28#include <linux/slab.h>
29#include <linux/vmalloc.h>
1da177e4
LT
30#include <linux/blkdev.h>
31#include <linux/backing-dev.h>
3b32123d 32#include <linux/compiler.h>
1da177e4
LT
33#include <linux/mount.h>
34#include <linux/personality.h>
35#include <linux/security.h>
36#include <linux/syscalls.h>
120a795d 37#include <linux/audit.h>
b1de0d13 38#include <linux/printk.h>
1da177e4 39
7c0f6ba6 40#include <linux/uaccess.h>
1da177e4
LT
41#include <asm/tlb.h>
42#include <asm/tlbflush.h>
eb8cdec4 43#include <asm/mmu_context.h>
8feae131
DH
44#include "internal.h"
45
1da177e4 46void *high_memory;
944b6874 47EXPORT_SYMBOL(high_memory);
1da177e4
LT
48struct page *mem_map;
49unsigned long max_mapnr;
5b8bf307 50EXPORT_SYMBOL(max_mapnr);
4266c97a 51unsigned long highest_memmap_pfn;
fc4d5c29 52int sysctl_nr_trim_pages = CONFIG_NOMMU_INITIAL_TRIM_EXCESS;
1da177e4
LT
53int heap_stack_gap = 0;
54
33e5d769 55atomic_long_t mmap_pages_allocated;
8feae131 56
1da177e4 57EXPORT_SYMBOL(mem_map);
1da177e4 58
8feae131
DH
59/* list of mapped, potentially shareable regions */
60static struct kmem_cache *vm_region_jar;
61struct rb_root nommu_region_tree = RB_ROOT;
62DECLARE_RWSEM(nommu_region_sem);
1da177e4 63
f0f37e2f 64const struct vm_operations_struct generic_file_vm_ops = {
1da177e4
LT
65};
66
1da177e4
LT
67/*
68 * Return the total memory allocated for this pointer, not
69 * just what the caller asked for.
70 *
71 * Doesn't have to be accurate, i.e. may have races.
72 */
73unsigned int kobjsize(const void *objp)
74{
75 struct page *page;
76
4016a139
MH
77 /*
78 * If the object we have should not have ksize performed on it,
79 * return size of 0
80 */
5a1603be 81 if (!objp || !virt_addr_valid(objp))
6cfd53fc
PM
82 return 0;
83
84 page = virt_to_head_page(objp);
6cfd53fc
PM
85
86 /*
87 * If the allocator sets PageSlab, we know the pointer came from
88 * kmalloc().
89 */
1da177e4
LT
90 if (PageSlab(page))
91 return ksize(objp);
92
ab2e83ea
PM
93 /*
94 * If it's not a compound page, see if we have a matching VMA
95 * region. This test is intentionally done in reverse order,
96 * so if there's no VMA, we still fall through and hand back
97 * PAGE_SIZE for 0-order pages.
98 */
99 if (!PageCompound(page)) {
100 struct vm_area_struct *vma;
101
102 vma = find_vma(current->mm, (unsigned long)objp);
103 if (vma)
104 return vma->vm_end - vma->vm_start;
105 }
106
6cfd53fc
PM
107 /*
108 * The ksize() function is only guaranteed to work for pointers
5a1603be 109 * returned by kmalloc(). So handle arbitrary pointers here.
6cfd53fc 110 */
a50b854e 111 return page_size(page);
1da177e4
LT
112}
113
dfc2f91a
PM
114/**
115 * follow_pfn - look up PFN at a user virtual address
116 * @vma: memory mapping
117 * @address: user virtual address
118 * @pfn: location to store found PFN
119 *
120 * Only IO mappings and raw PFN mappings are allowed.
121 *
122 * Returns zero and the pfn at @pfn on success, -ve otherwise.
123 */
124int follow_pfn(struct vm_area_struct *vma, unsigned long address,
125 unsigned long *pfn)
126{
127 if (!(vma->vm_flags & (VM_IO | VM_PFNMAP)))
128 return -EINVAL;
129
130 *pfn = address >> PAGE_SHIFT;
131 return 0;
132}
133EXPORT_SYMBOL(follow_pfn);
134
f1c4069e 135LIST_HEAD(vmap_area_list);
1da177e4 136
b3bdda02 137void vfree(const void *addr)
1da177e4
LT
138{
139 kfree(addr);
140}
b5073173 141EXPORT_SYMBOL(vfree);
1da177e4 142
dd0fc66f 143void *__vmalloc(unsigned long size, gfp_t gfp_mask, pgprot_t prot)
1da177e4
LT
144{
145 /*
8518609d
RD
146 * You can't specify __GFP_HIGHMEM with kmalloc() since kmalloc()
147 * returns only a logical address.
1da177e4 148 */
84097518 149 return kmalloc(size, (gfp_mask | __GFP_COMP) & ~__GFP_HIGHMEM);
1da177e4 150}
b5073173 151EXPORT_SYMBOL(__vmalloc);
1da177e4 152
a7c3e901
MH
153void *__vmalloc_node_flags(unsigned long size, int node, gfp_t flags)
154{
155 return __vmalloc(size, flags, PAGE_KERNEL);
156}
157
ed81745a 158static void *__vmalloc_user_flags(unsigned long size, gfp_t flags)
f905bc44
PM
159{
160 void *ret;
161
ed81745a 162 ret = __vmalloc(size, flags, PAGE_KERNEL);
f905bc44
PM
163 if (ret) {
164 struct vm_area_struct *vma;
165
166 down_write(&current->mm->mmap_sem);
167 vma = find_vma(current->mm, (unsigned long)ret);
168 if (vma)
169 vma->vm_flags |= VM_USERMAP;
170 up_write(&current->mm->mmap_sem);
171 }
172
173 return ret;
174}
ed81745a
AN
175
176void *vmalloc_user(unsigned long size)
177{
178 return __vmalloc_user_flags(size, GFP_KERNEL | __GFP_ZERO);
179}
f905bc44
PM
180EXPORT_SYMBOL(vmalloc_user);
181
ed81745a
AN
182void *vmalloc_user_node_flags(unsigned long size, int node, gfp_t flags)
183{
184 return __vmalloc_user_flags(size, flags | __GFP_ZERO);
185}
186EXPORT_SYMBOL(vmalloc_user_node_flags);
187
b3bdda02 188struct page *vmalloc_to_page(const void *addr)
1da177e4
LT
189{
190 return virt_to_page(addr);
191}
b5073173 192EXPORT_SYMBOL(vmalloc_to_page);
1da177e4 193
b3bdda02 194unsigned long vmalloc_to_pfn(const void *addr)
1da177e4
LT
195{
196 return page_to_pfn(virt_to_page(addr));
197}
b5073173 198EXPORT_SYMBOL(vmalloc_to_pfn);
1da177e4
LT
199
200long vread(char *buf, char *addr, unsigned long count)
201{
9bde916b
CG
202 /* Don't allow overflow */
203 if ((unsigned long) buf + count < count)
204 count = -(unsigned long) buf;
205
1da177e4
LT
206 memcpy(buf, addr, count);
207 return count;
208}
209
210long vwrite(char *buf, char *addr, unsigned long count)
211{
212 /* Don't allow overflow */
213 if ((unsigned long) addr + count < count)
214 count = -(unsigned long) addr;
215
216 memcpy(addr, buf, count);
ac714904 217 return count;
1da177e4
LT
218}
219
220/*
e1c05067 221 * vmalloc - allocate virtually contiguous memory
1da177e4
LT
222 *
223 * @size: allocation size
224 *
225 * Allocate enough pages to cover @size from the page level
e1c05067 226 * allocator and map them into contiguous kernel virtual space.
1da177e4 227 *
c1c8897f 228 * For tight control over page level allocator and protection flags
1da177e4
LT
229 * use __vmalloc() instead.
230 */
231void *vmalloc(unsigned long size)
232{
233 return __vmalloc(size, GFP_KERNEL | __GFP_HIGHMEM, PAGE_KERNEL);
234}
f6138882
AM
235EXPORT_SYMBOL(vmalloc);
236
e1ca7788 237/*
e1c05067 238 * vzalloc - allocate virtually contiguous memory with zero fill
e1ca7788
DY
239 *
240 * @size: allocation size
241 *
242 * Allocate enough pages to cover @size from the page level
e1c05067 243 * allocator and map them into contiguous kernel virtual space.
e1ca7788
DY
244 * The memory allocated is set to zero.
245 *
246 * For tight control over page level allocator and protection flags
247 * use __vmalloc() instead.
248 */
249void *vzalloc(unsigned long size)
250{
251 return __vmalloc(size, GFP_KERNEL | __GFP_HIGHMEM | __GFP_ZERO,
252 PAGE_KERNEL);
253}
254EXPORT_SYMBOL(vzalloc);
255
256/**
257 * vmalloc_node - allocate memory on a specific node
258 * @size: allocation size
259 * @node: numa node
260 *
261 * Allocate enough pages to cover @size from the page level
262 * allocator and map them into contiguous kernel virtual space.
263 *
264 * For tight control over page level allocator and protection flags
265 * use __vmalloc() instead.
266 */
f6138882
AM
267void *vmalloc_node(unsigned long size, int node)
268{
269 return vmalloc(size);
270}
9a14f653 271EXPORT_SYMBOL(vmalloc_node);
e1ca7788
DY
272
273/**
274 * vzalloc_node - allocate memory on a specific node with zero fill
275 * @size: allocation size
276 * @node: numa node
277 *
278 * Allocate enough pages to cover @size from the page level
279 * allocator and map them into contiguous kernel virtual space.
280 * The memory allocated is set to zero.
281 *
282 * For tight control over page level allocator and protection flags
283 * use __vmalloc() instead.
284 */
285void *vzalloc_node(unsigned long size, int node)
286{
287 return vzalloc(size);
288}
289EXPORT_SYMBOL(vzalloc_node);
1da177e4 290
1af446ed
PM
291/**
292 * vmalloc_exec - allocate virtually contiguous, executable memory
293 * @size: allocation size
294 *
295 * Kernel-internal function to allocate enough pages to cover @size
296 * the page level allocator and map them into contiguous and
297 * executable kernel virtual space.
298 *
299 * For tight control over page level allocator and protection flags
300 * use __vmalloc() instead.
301 */
302
303void *vmalloc_exec(unsigned long size)
304{
305 return __vmalloc(size, GFP_KERNEL | __GFP_HIGHMEM, PAGE_KERNEL_EXEC);
306}
307
b5073173
PM
308/**
309 * vmalloc_32 - allocate virtually contiguous memory (32bit addressable)
1da177e4
LT
310 * @size: allocation size
311 *
312 * Allocate enough 32bit PA addressable pages to cover @size from the
e1c05067 313 * page level allocator and map them into contiguous kernel virtual space.
1da177e4
LT
314 */
315void *vmalloc_32(unsigned long size)
316{
317 return __vmalloc(size, GFP_KERNEL, PAGE_KERNEL);
318}
b5073173
PM
319EXPORT_SYMBOL(vmalloc_32);
320
321/**
322 * vmalloc_32_user - allocate zeroed virtually contiguous 32bit memory
323 * @size: allocation size
324 *
325 * The resulting memory area is 32bit addressable and zeroed so it can be
326 * mapped to userspace without leaking data.
f905bc44
PM
327 *
328 * VM_USERMAP is set on the corresponding VMA so that subsequent calls to
329 * remap_vmalloc_range() are permissible.
b5073173
PM
330 */
331void *vmalloc_32_user(unsigned long size)
332{
f905bc44
PM
333 /*
334 * We'll have to sort out the ZONE_DMA bits for 64-bit,
335 * but for now this can simply use vmalloc_user() directly.
336 */
337 return vmalloc_user(size);
b5073173
PM
338}
339EXPORT_SYMBOL(vmalloc_32_user);
1da177e4
LT
340
341void *vmap(struct page **pages, unsigned int count, unsigned long flags, pgprot_t prot)
342{
343 BUG();
344 return NULL;
345}
b5073173 346EXPORT_SYMBOL(vmap);
1da177e4 347
b3bdda02 348void vunmap(const void *addr)
1da177e4
LT
349{
350 BUG();
351}
b5073173 352EXPORT_SYMBOL(vunmap);
1da177e4 353
eb6434d9
PM
354void *vm_map_ram(struct page **pages, unsigned int count, int node, pgprot_t prot)
355{
356 BUG();
357 return NULL;
358}
359EXPORT_SYMBOL(vm_map_ram);
360
361void vm_unmap_ram(const void *mem, unsigned int count)
362{
363 BUG();
364}
365EXPORT_SYMBOL(vm_unmap_ram);
366
367void vm_unmap_aliases(void)
368{
369}
370EXPORT_SYMBOL_GPL(vm_unmap_aliases);
371
1eeb66a1 372/*
763802b5
JR
373 * Implement a stub for vmalloc_sync_[un]mapping() if the architecture
374 * chose not to have one.
1eeb66a1 375 */
763802b5
JR
376void __weak vmalloc_sync_mappings(void)
377{
378}
379
380void __weak vmalloc_sync_unmappings(void)
1eeb66a1
CH
381{
382}
383
cd12909c 384struct vm_struct *alloc_vm_area(size_t size, pte_t **ptes)
29c185e5
PM
385{
386 BUG();
387 return NULL;
388}
389EXPORT_SYMBOL_GPL(alloc_vm_area);
390
391void free_vm_area(struct vm_struct *area)
392{
393 BUG();
394}
395EXPORT_SYMBOL_GPL(free_vm_area);
396
b5073173
PM
397int vm_insert_page(struct vm_area_struct *vma, unsigned long addr,
398 struct page *page)
399{
400 return -EINVAL;
401}
402EXPORT_SYMBOL(vm_insert_page);
403
a667d745
SJ
404int vm_map_pages(struct vm_area_struct *vma, struct page **pages,
405 unsigned long num)
406{
407 return -EINVAL;
408}
409EXPORT_SYMBOL(vm_map_pages);
410
411int vm_map_pages_zero(struct vm_area_struct *vma, struct page **pages,
412 unsigned long num)
413{
414 return -EINVAL;
415}
416EXPORT_SYMBOL(vm_map_pages_zero);
417
1da177e4
LT
418/*
419 * sys_brk() for the most part doesn't need the global kernel
420 * lock, except when an application is doing something nasty
421 * like trying to un-brk an area that has already been mapped
422 * to a regular file. in this case, the unmapping will need
423 * to invoke file system routines that need the global lock.
424 */
6a6160a7 425SYSCALL_DEFINE1(brk, unsigned long, brk)
1da177e4
LT
426{
427 struct mm_struct *mm = current->mm;
428
429 if (brk < mm->start_brk || brk > mm->context.end_brk)
430 return mm->brk;
431
432 if (mm->brk == brk)
433 return mm->brk;
434
435 /*
436 * Always allow shrinking brk
437 */
438 if (brk <= mm->brk) {
439 mm->brk = brk;
440 return brk;
441 }
442
443 /*
444 * Ok, looks good - let it rip.
445 */
cfe79c00 446 flush_icache_range(mm->brk, brk);
1da177e4
LT
447 return mm->brk = brk;
448}
449
8feae131 450/*
3edf41d8 451 * initialise the percpu counter for VM and region record slabs
8feae131
DH
452 */
453void __init mmap_init(void)
1da177e4 454{
00a62ce9
KM
455 int ret;
456
908c7f19 457 ret = percpu_counter_init(&vm_committed_as, 0, GFP_KERNEL);
00a62ce9 458 VM_BUG_ON(ret);
5d097056 459 vm_region_jar = KMEM_CACHE(vm_region, SLAB_PANIC|SLAB_ACCOUNT);
1da177e4 460}
1da177e4 461
3034097a 462/*
8feae131
DH
463 * validate the region tree
464 * - the caller must hold the region lock
3034097a 465 */
8feae131
DH
466#ifdef CONFIG_DEBUG_NOMMU_REGIONS
467static noinline void validate_nommu_regions(void)
3034097a 468{
8feae131
DH
469 struct vm_region *region, *last;
470 struct rb_node *p, *lastp;
3034097a 471
8feae131
DH
472 lastp = rb_first(&nommu_region_tree);
473 if (!lastp)
474 return;
475
476 last = rb_entry(lastp, struct vm_region, vm_rb);
c9427bc0
GT
477 BUG_ON(last->vm_end <= last->vm_start);
478 BUG_ON(last->vm_top < last->vm_end);
8feae131
DH
479
480 while ((p = rb_next(lastp))) {
481 region = rb_entry(p, struct vm_region, vm_rb);
482 last = rb_entry(lastp, struct vm_region, vm_rb);
483
c9427bc0
GT
484 BUG_ON(region->vm_end <= region->vm_start);
485 BUG_ON(region->vm_top < region->vm_end);
486 BUG_ON(region->vm_start < last->vm_top);
3034097a 487
8feae131
DH
488 lastp = p;
489 }
3034097a 490}
8feae131 491#else
33e5d769
DH
492static void validate_nommu_regions(void)
493{
494}
8feae131 495#endif
3034097a
DH
496
497/*
8feae131 498 * add a region into the global tree
3034097a 499 */
8feae131 500static void add_nommu_region(struct vm_region *region)
3034097a 501{
8feae131
DH
502 struct vm_region *pregion;
503 struct rb_node **p, *parent;
3034097a 504
8feae131
DH
505 validate_nommu_regions();
506
8feae131
DH
507 parent = NULL;
508 p = &nommu_region_tree.rb_node;
509 while (*p) {
510 parent = *p;
511 pregion = rb_entry(parent, struct vm_region, vm_rb);
512 if (region->vm_start < pregion->vm_start)
513 p = &(*p)->rb_left;
514 else if (region->vm_start > pregion->vm_start)
515 p = &(*p)->rb_right;
516 else if (pregion == region)
517 return;
518 else
519 BUG();
3034097a
DH
520 }
521
8feae131
DH
522 rb_link_node(&region->vm_rb, parent, p);
523 rb_insert_color(&region->vm_rb, &nommu_region_tree);
3034097a 524
8feae131 525 validate_nommu_regions();
3034097a 526}
3034097a 527
930e652a 528/*
8feae131 529 * delete a region from the global tree
930e652a 530 */
8feae131 531static void delete_nommu_region(struct vm_region *region)
930e652a 532{
8feae131 533 BUG_ON(!nommu_region_tree.rb_node);
930e652a 534
8feae131
DH
535 validate_nommu_regions();
536 rb_erase(&region->vm_rb, &nommu_region_tree);
537 validate_nommu_regions();
57c8f63e
GU
538}
539
6fa5f80b 540/*
8feae131 541 * free a contiguous series of pages
6fa5f80b 542 */
8feae131 543static void free_page_series(unsigned long from, unsigned long to)
6fa5f80b 544{
8feae131
DH
545 for (; from < to; from += PAGE_SIZE) {
546 struct page *page = virt_to_page(from);
547
33e5d769 548 atomic_long_dec(&mmap_pages_allocated);
8feae131 549 put_page(page);
6fa5f80b 550 }
6fa5f80b
DH
551}
552
3034097a 553/*
8feae131 554 * release a reference to a region
33e5d769 555 * - the caller must hold the region semaphore for writing, which this releases
dd8632a1 556 * - the region may not have been added to the tree yet, in which case vm_top
8feae131 557 * will equal vm_start
3034097a 558 */
8feae131
DH
559static void __put_nommu_region(struct vm_region *region)
560 __releases(nommu_region_sem)
1da177e4 561{
8feae131 562 BUG_ON(!nommu_region_tree.rb_node);
1da177e4 563
1e2ae599 564 if (--region->vm_usage == 0) {
dd8632a1 565 if (region->vm_top > region->vm_start)
8feae131
DH
566 delete_nommu_region(region);
567 up_write(&nommu_region_sem);
568
569 if (region->vm_file)
570 fput(region->vm_file);
571
572 /* IO memory and memory shared directly out of the pagecache
573 * from ramfs/tmpfs mustn't be released here */
22cc877b 574 if (region->vm_flags & VM_MAPPED_COPY)
dd8632a1 575 free_page_series(region->vm_start, region->vm_top);
8feae131
DH
576 kmem_cache_free(vm_region_jar, region);
577 } else {
578 up_write(&nommu_region_sem);
1da177e4 579 }
8feae131 580}
1da177e4 581
8feae131
DH
582/*
583 * release a reference to a region
584 */
585static void put_nommu_region(struct vm_region *region)
586{
587 down_write(&nommu_region_sem);
588 __put_nommu_region(region);
1da177e4
LT
589}
590
3034097a 591/*
8feae131
DH
592 * add a VMA into a process's mm_struct in the appropriate place in the list
593 * and tree and add to the address space's page tree also if not an anonymous
594 * page
595 * - should be called with mm->mmap_sem held writelocked
3034097a 596 */
8feae131 597static void add_vma_to_mm(struct mm_struct *mm, struct vm_area_struct *vma)
1da177e4 598{
6038def0 599 struct vm_area_struct *pvma, *prev;
1da177e4 600 struct address_space *mapping;
6038def0 601 struct rb_node **p, *parent, *rb_prev;
8feae131 602
8feae131
DH
603 BUG_ON(!vma->vm_region);
604
605 mm->map_count++;
606 vma->vm_mm = mm;
1da177e4
LT
607
608 /* add the VMA to the mapping */
609 if (vma->vm_file) {
610 mapping = vma->vm_file->f_mapping;
611
83cde9e8 612 i_mmap_lock_write(mapping);
1da177e4 613 flush_dcache_mmap_lock(mapping);
6b2dbba8 614 vma_interval_tree_insert(vma, &mapping->i_mmap);
1da177e4 615 flush_dcache_mmap_unlock(mapping);
83cde9e8 616 i_mmap_unlock_write(mapping);
1da177e4
LT
617 }
618
8feae131 619 /* add the VMA to the tree */
6038def0 620 parent = rb_prev = NULL;
8feae131 621 p = &mm->mm_rb.rb_node;
1da177e4
LT
622 while (*p) {
623 parent = *p;
624 pvma = rb_entry(parent, struct vm_area_struct, vm_rb);
625
8feae131
DH
626 /* sort by: start addr, end addr, VMA struct addr in that order
627 * (the latter is necessary as we may get identical VMAs) */
628 if (vma->vm_start < pvma->vm_start)
1da177e4 629 p = &(*p)->rb_left;
6038def0
NK
630 else if (vma->vm_start > pvma->vm_start) {
631 rb_prev = parent;
1da177e4 632 p = &(*p)->rb_right;
6038def0 633 } else if (vma->vm_end < pvma->vm_end)
8feae131 634 p = &(*p)->rb_left;
6038def0
NK
635 else if (vma->vm_end > pvma->vm_end) {
636 rb_prev = parent;
8feae131 637 p = &(*p)->rb_right;
6038def0 638 } else if (vma < pvma)
8feae131 639 p = &(*p)->rb_left;
6038def0
NK
640 else if (vma > pvma) {
641 rb_prev = parent;
8feae131 642 p = &(*p)->rb_right;
6038def0 643 } else
8feae131 644 BUG();
1da177e4
LT
645 }
646
647 rb_link_node(&vma->vm_rb, parent, p);
8feae131
DH
648 rb_insert_color(&vma->vm_rb, &mm->mm_rb);
649
650 /* add VMA to the VMA list also */
6038def0
NK
651 prev = NULL;
652 if (rb_prev)
653 prev = rb_entry(rb_prev, struct vm_area_struct, vm_rb);
8feae131 654
aba6dfb7 655 __vma_link_list(mm, vma, prev);
1da177e4
LT
656}
657
3034097a 658/*
8feae131 659 * delete a VMA from its owning mm_struct and address space
3034097a 660 */
8feae131 661static void delete_vma_from_mm(struct vm_area_struct *vma)
1da177e4 662{
615d6e87 663 int i;
1da177e4 664 struct address_space *mapping;
8feae131 665 struct mm_struct *mm = vma->vm_mm;
615d6e87 666 struct task_struct *curr = current;
8feae131 667
8feae131 668 mm->map_count--;
615d6e87
DB
669 for (i = 0; i < VMACACHE_SIZE; i++) {
670 /* if the vma is cached, invalidate the entire cache */
314ff785 671 if (curr->vmacache.vmas[i] == vma) {
e020d5bd 672 vmacache_invalidate(mm);
615d6e87
DB
673 break;
674 }
675 }
1da177e4
LT
676
677 /* remove the VMA from the mapping */
678 if (vma->vm_file) {
679 mapping = vma->vm_file->f_mapping;
680
83cde9e8 681 i_mmap_lock_write(mapping);
1da177e4 682 flush_dcache_mmap_lock(mapping);
6b2dbba8 683 vma_interval_tree_remove(vma, &mapping->i_mmap);
1da177e4 684 flush_dcache_mmap_unlock(mapping);
83cde9e8 685 i_mmap_unlock_write(mapping);
1da177e4
LT
686 }
687
8feae131
DH
688 /* remove from the MM's tree and list */
689 rb_erase(&vma->vm_rb, &mm->mm_rb);
b951bf2c 690
1b9fc5b2 691 __vma_unlink_list(mm, vma);
8feae131
DH
692}
693
694/*
695 * destroy a VMA record
696 */
697static void delete_vma(struct mm_struct *mm, struct vm_area_struct *vma)
698{
8feae131
DH
699 if (vma->vm_ops && vma->vm_ops->close)
700 vma->vm_ops->close(vma);
e9714acf 701 if (vma->vm_file)
8feae131 702 fput(vma->vm_file);
8feae131 703 put_nommu_region(vma->vm_region);
3928d4f5 704 vm_area_free(vma);
8feae131
DH
705}
706
707/*
708 * look up the first VMA in which addr resides, NULL if none
709 * - should be called with mm->mmap_sem at least held readlocked
710 */
711struct vm_area_struct *find_vma(struct mm_struct *mm, unsigned long addr)
712{
713 struct vm_area_struct *vma;
8feae131
DH
714
715 /* check the cache first */
615d6e87
DB
716 vma = vmacache_find(mm, addr);
717 if (likely(vma))
8feae131
DH
718 return vma;
719
e922c4c5 720 /* trawl the list (there may be multiple mappings in which addr
8feae131 721 * resides) */
e922c4c5 722 for (vma = mm->mmap; vma; vma = vma->vm_next) {
8feae131
DH
723 if (vma->vm_start > addr)
724 return NULL;
725 if (vma->vm_end > addr) {
615d6e87 726 vmacache_update(addr, vma);
8feae131
DH
727 return vma;
728 }
729 }
730
731 return NULL;
732}
733EXPORT_SYMBOL(find_vma);
734
735/*
736 * find a VMA
737 * - we don't extend stack VMAs under NOMMU conditions
738 */
739struct vm_area_struct *find_extend_vma(struct mm_struct *mm, unsigned long addr)
740{
7561e8ca 741 return find_vma(mm, addr);
8feae131
DH
742}
743
744/*
745 * expand a stack to a given address
746 * - not supported under NOMMU conditions
747 */
748int expand_stack(struct vm_area_struct *vma, unsigned long address)
749{
750 return -ENOMEM;
751}
752
753/*
754 * look up the first VMA exactly that exactly matches addr
755 * - should be called with mm->mmap_sem at least held readlocked
756 */
757static struct vm_area_struct *find_vma_exact(struct mm_struct *mm,
758 unsigned long addr,
759 unsigned long len)
760{
761 struct vm_area_struct *vma;
8feae131
DH
762 unsigned long end = addr + len;
763
764 /* check the cache first */
615d6e87
DB
765 vma = vmacache_find_exact(mm, addr, end);
766 if (vma)
8feae131
DH
767 return vma;
768
e922c4c5 769 /* trawl the list (there may be multiple mappings in which addr
8feae131 770 * resides) */
e922c4c5 771 for (vma = mm->mmap; vma; vma = vma->vm_next) {
8feae131
DH
772 if (vma->vm_start < addr)
773 continue;
774 if (vma->vm_start > addr)
775 return NULL;
776 if (vma->vm_end == end) {
615d6e87 777 vmacache_update(addr, vma);
8feae131
DH
778 return vma;
779 }
780 }
781
782 return NULL;
1da177e4
LT
783}
784
785/*
786 * determine whether a mapping should be permitted and, if so, what sort of
787 * mapping we're capable of supporting
788 */
789static int validate_mmap_request(struct file *file,
790 unsigned long addr,
791 unsigned long len,
792 unsigned long prot,
793 unsigned long flags,
794 unsigned long pgoff,
795 unsigned long *_capabilities)
796{
8feae131 797 unsigned long capabilities, rlen;
1da177e4
LT
798 int ret;
799
800 /* do the simple checks first */
22cc877b 801 if (flags & MAP_FIXED)
1da177e4 802 return -EINVAL;
1da177e4
LT
803
804 if ((flags & MAP_TYPE) != MAP_PRIVATE &&
805 (flags & MAP_TYPE) != MAP_SHARED)
806 return -EINVAL;
807
f81cff0d 808 if (!len)
1da177e4
LT
809 return -EINVAL;
810
f81cff0d 811 /* Careful about overflows.. */
8feae131
DH
812 rlen = PAGE_ALIGN(len);
813 if (!rlen || rlen > TASK_SIZE)
f81cff0d
MF
814 return -ENOMEM;
815
1da177e4 816 /* offset overflow? */
8feae131 817 if ((pgoff + (rlen >> PAGE_SHIFT)) < pgoff)
f81cff0d 818 return -EOVERFLOW;
1da177e4
LT
819
820 if (file) {
1da177e4 821 /* files must support mmap */
72c2d531 822 if (!file->f_op->mmap)
1da177e4
LT
823 return -ENODEV;
824
825 /* work out if what we've got could possibly be shared
826 * - we support chardevs that provide their own "memory"
827 * - we support files/blockdevs that are memory backed
828 */
b4caecd4
CH
829 if (file->f_op->mmap_capabilities) {
830 capabilities = file->f_op->mmap_capabilities(file);
831 } else {
1da177e4
LT
832 /* no explicit capabilities set, so assume some
833 * defaults */
496ad9aa 834 switch (file_inode(file)->i_mode & S_IFMT) {
1da177e4
LT
835 case S_IFREG:
836 case S_IFBLK:
b4caecd4 837 capabilities = NOMMU_MAP_COPY;
1da177e4
LT
838 break;
839
840 case S_IFCHR:
841 capabilities =
b4caecd4
CH
842 NOMMU_MAP_DIRECT |
843 NOMMU_MAP_READ |
844 NOMMU_MAP_WRITE;
1da177e4
LT
845 break;
846
847 default:
848 return -EINVAL;
849 }
850 }
851
852 /* eliminate any capabilities that we can't support on this
853 * device */
854 if (!file->f_op->get_unmapped_area)
b4caecd4 855 capabilities &= ~NOMMU_MAP_DIRECT;
6e242a1c 856 if (!(file->f_mode & FMODE_CAN_READ))
b4caecd4 857 capabilities &= ~NOMMU_MAP_COPY;
1da177e4 858
28d7a6ae
GY
859 /* The file shall have been opened with read permission. */
860 if (!(file->f_mode & FMODE_READ))
861 return -EACCES;
862
1da177e4
LT
863 if (flags & MAP_SHARED) {
864 /* do checks for writing, appending and locking */
865 if ((prot & PROT_WRITE) &&
866 !(file->f_mode & FMODE_WRITE))
867 return -EACCES;
868
496ad9aa 869 if (IS_APPEND(file_inode(file)) &&
1da177e4
LT
870 (file->f_mode & FMODE_WRITE))
871 return -EACCES;
872
d7a06983 873 if (locks_verify_locked(file))
1da177e4
LT
874 return -EAGAIN;
875
b4caecd4 876 if (!(capabilities & NOMMU_MAP_DIRECT))
1da177e4
LT
877 return -ENODEV;
878
1da177e4 879 /* we mustn't privatise shared mappings */
b4caecd4 880 capabilities &= ~NOMMU_MAP_COPY;
ac714904 881 } else {
1da177e4
LT
882 /* we're going to read the file into private memory we
883 * allocate */
b4caecd4 884 if (!(capabilities & NOMMU_MAP_COPY))
1da177e4
LT
885 return -ENODEV;
886
887 /* we don't permit a private writable mapping to be
888 * shared with the backing device */
889 if (prot & PROT_WRITE)
b4caecd4 890 capabilities &= ~NOMMU_MAP_DIRECT;
1da177e4
LT
891 }
892
b4caecd4
CH
893 if (capabilities & NOMMU_MAP_DIRECT) {
894 if (((prot & PROT_READ) && !(capabilities & NOMMU_MAP_READ)) ||
895 ((prot & PROT_WRITE) && !(capabilities & NOMMU_MAP_WRITE)) ||
896 ((prot & PROT_EXEC) && !(capabilities & NOMMU_MAP_EXEC))
3c7b2045 897 ) {
b4caecd4 898 capabilities &= ~NOMMU_MAP_DIRECT;
3c7b2045 899 if (flags & MAP_SHARED) {
22cc877b 900 pr_warn("MAP_SHARED not completely supported on !MMU\n");
3c7b2045
BS
901 return -EINVAL;
902 }
903 }
904 }
905
1da177e4
LT
906 /* handle executable mappings and implied executable
907 * mappings */
90f8572b 908 if (path_noexec(&file->f_path)) {
1da177e4
LT
909 if (prot & PROT_EXEC)
910 return -EPERM;
ac714904 911 } else if ((prot & PROT_READ) && !(prot & PROT_EXEC)) {
1da177e4
LT
912 /* handle implication of PROT_EXEC by PROT_READ */
913 if (current->personality & READ_IMPLIES_EXEC) {
b4caecd4 914 if (capabilities & NOMMU_MAP_EXEC)
1da177e4
LT
915 prot |= PROT_EXEC;
916 }
ac714904 917 } else if ((prot & PROT_READ) &&
1da177e4 918 (prot & PROT_EXEC) &&
b4caecd4 919 !(capabilities & NOMMU_MAP_EXEC)
1da177e4
LT
920 ) {
921 /* backing file is not executable, try to copy */
b4caecd4 922 capabilities &= ~NOMMU_MAP_DIRECT;
1da177e4 923 }
ac714904 924 } else {
1da177e4
LT
925 /* anonymous mappings are always memory backed and can be
926 * privately mapped
927 */
b4caecd4 928 capabilities = NOMMU_MAP_COPY;
1da177e4
LT
929
930 /* handle PROT_EXEC implication by PROT_READ */
931 if ((prot & PROT_READ) &&
932 (current->personality & READ_IMPLIES_EXEC))
933 prot |= PROT_EXEC;
934 }
935
936 /* allow the security API to have its say */
e5467859 937 ret = security_mmap_addr(addr);
1da177e4
LT
938 if (ret < 0)
939 return ret;
940
941 /* looks okay */
942 *_capabilities = capabilities;
943 return 0;
944}
945
946/*
947 * we've determined that we can make the mapping, now translate what we
948 * now know into VMA flags
949 */
950static unsigned long determine_vm_flags(struct file *file,
951 unsigned long prot,
952 unsigned long flags,
953 unsigned long capabilities)
954{
955 unsigned long vm_flags;
956
e6bfb709 957 vm_flags = calc_vm_prot_bits(prot, 0) | calc_vm_flag_bits(flags);
1da177e4
LT
958 /* vm_flags |= mm->def_flags; */
959
b4caecd4 960 if (!(capabilities & NOMMU_MAP_DIRECT)) {
1da177e4 961 /* attempt to share read-only copies of mapped file chunks */
3c7b2045 962 vm_flags |= VM_MAYREAD | VM_MAYWRITE | VM_MAYEXEC;
1da177e4
LT
963 if (file && !(prot & PROT_WRITE))
964 vm_flags |= VM_MAYSHARE;
3c7b2045 965 } else {
1da177e4
LT
966 /* overlay a shareable mapping on the backing device or inode
967 * if possible - used for chardevs, ramfs/tmpfs/shmfs and
968 * romfs/cramfs */
b4caecd4 969 vm_flags |= VM_MAYSHARE | (capabilities & NOMMU_VMFLAGS);
1da177e4 970 if (flags & MAP_SHARED)
3c7b2045 971 vm_flags |= VM_SHARED;
1da177e4
LT
972 }
973
974 /* refuse to let anyone share private mappings with this process if
975 * it's being traced - otherwise breakpoints set in it may interfere
976 * with another untraced process
977 */
a288eecc 978 if ((flags & MAP_PRIVATE) && current->ptrace)
1da177e4
LT
979 vm_flags &= ~VM_MAYSHARE;
980
981 return vm_flags;
982}
983
984/*
8feae131
DH
985 * set up a shared mapping on a file (the driver or filesystem provides and
986 * pins the storage)
1da177e4 987 */
8feae131 988static int do_mmap_shared_file(struct vm_area_struct *vma)
1da177e4
LT
989{
990 int ret;
991
f74ac015 992 ret = call_mmap(vma->vm_file, vma);
dd8632a1
PM
993 if (ret == 0) {
994 vma->vm_region->vm_top = vma->vm_region->vm_end;
645d83c5 995 return 0;
dd8632a1 996 }
1da177e4
LT
997 if (ret != -ENOSYS)
998 return ret;
999
3fa30460
DH
1000 /* getting -ENOSYS indicates that direct mmap isn't possible (as
1001 * opposed to tried but failed) so we can only give a suitable error as
1002 * it's not possible to make a private copy if MAP_SHARED was given */
1da177e4
LT
1003 return -ENODEV;
1004}
1005
1006/*
1007 * set up a private mapping or an anonymous shared mapping
1008 */
8feae131
DH
1009static int do_mmap_private(struct vm_area_struct *vma,
1010 struct vm_region *region,
645d83c5
DH
1011 unsigned long len,
1012 unsigned long capabilities)
1da177e4 1013{
dbc8358c 1014 unsigned long total, point;
1da177e4 1015 void *base;
8feae131 1016 int ret, order;
1da177e4
LT
1017
1018 /* invoke the file's mapping function so that it can keep track of
1019 * shared mappings on devices or memory
1020 * - VM_MAYSHARE will be set if it may attempt to share
1021 */
b4caecd4 1022 if (capabilities & NOMMU_MAP_DIRECT) {
f74ac015 1023 ret = call_mmap(vma->vm_file, vma);
dd8632a1 1024 if (ret == 0) {
1da177e4 1025 /* shouldn't return success if we're not sharing */
dd8632a1
PM
1026 BUG_ON(!(vma->vm_flags & VM_MAYSHARE));
1027 vma->vm_region->vm_top = vma->vm_region->vm_end;
645d83c5 1028 return 0;
1da177e4 1029 }
dd8632a1
PM
1030 if (ret != -ENOSYS)
1031 return ret;
1da177e4
LT
1032
1033 /* getting an ENOSYS error indicates that direct mmap isn't
1034 * possible (as opposed to tried but failed) so we'll try to
1035 * make a private copy of the data and map that instead */
1036 }
1037
8feae131 1038
1da177e4
LT
1039 /* allocate some memory to hold the mapping
1040 * - note that this may not return a page-aligned address if the object
1041 * we're allocating is smaller than a page
1042 */
f67d9b15 1043 order = get_order(len);
8feae131 1044 total = 1 << order;
f67d9b15 1045 point = len >> PAGE_SHIFT;
dd8632a1 1046
dbc8358c 1047 /* we don't want to allocate a power-of-2 sized page set */
22cc877b 1048 if (sysctl_nr_trim_pages && total - point >= sysctl_nr_trim_pages)
dbc8358c 1049 total = point;
8feae131 1050
da616534 1051 base = alloc_pages_exact(total << PAGE_SHIFT, GFP_KERNEL);
dbc8358c
JK
1052 if (!base)
1053 goto enomem;
1054
1055 atomic_long_add(total, &mmap_pages_allocated);
1da177e4 1056
8feae131
DH
1057 region->vm_flags = vma->vm_flags |= VM_MAPPED_COPY;
1058 region->vm_start = (unsigned long) base;
f67d9b15 1059 region->vm_end = region->vm_start + len;
dd8632a1 1060 region->vm_top = region->vm_start + (total << PAGE_SHIFT);
8feae131
DH
1061
1062 vma->vm_start = region->vm_start;
1063 vma->vm_end = region->vm_start + len;
1da177e4
LT
1064
1065 if (vma->vm_file) {
1066 /* read the contents of a file into the copy */
1da177e4
LT
1067 loff_t fpos;
1068
1069 fpos = vma->vm_pgoff;
1070 fpos <<= PAGE_SHIFT;
1071
b4bf802a 1072 ret = kernel_read(vma->vm_file, base, len, &fpos);
1da177e4
LT
1073 if (ret < 0)
1074 goto error_free;
1075
1076 /* clear the last little bit */
f67d9b15
BL
1077 if (ret < len)
1078 memset(base + ret, 0, len - ret);
1da177e4 1079
bfd40eaf
KS
1080 } else {
1081 vma_set_anonymous(vma);
1da177e4
LT
1082 }
1083
1084 return 0;
1085
1086error_free:
7223bb4a 1087 free_page_series(region->vm_start, region->vm_top);
8feae131
DH
1088 region->vm_start = vma->vm_start = 0;
1089 region->vm_end = vma->vm_end = 0;
dd8632a1 1090 region->vm_top = 0;
1da177e4
LT
1091 return ret;
1092
1093enomem:
b1de0d13 1094 pr_err("Allocation of length %lu from process %d (%s) failed\n",
05ae6fa3 1095 len, current->pid, current->comm);
9af744d7 1096 show_free_areas(0, NULL);
1da177e4
LT
1097 return -ENOMEM;
1098}
1099
1100/*
1101 * handle mapping creation for uClinux
1102 */
1fcfd8db
ON
1103unsigned long do_mmap(struct file *file,
1104 unsigned long addr,
1105 unsigned long len,
1106 unsigned long prot,
1107 unsigned long flags,
1108 vm_flags_t vm_flags,
1109 unsigned long pgoff,
897ab3e0
MR
1110 unsigned long *populate,
1111 struct list_head *uf)
1da177e4 1112{
8feae131
DH
1113 struct vm_area_struct *vma;
1114 struct vm_region *region;
1da177e4 1115 struct rb_node *rb;
1fcfd8db 1116 unsigned long capabilities, result;
1da177e4
LT
1117 int ret;
1118
41badc15 1119 *populate = 0;
bebeb3d6 1120
1da177e4
LT
1121 /* decide whether we should attempt the mapping, and if so what sort of
1122 * mapping */
1123 ret = validate_mmap_request(file, addr, len, prot, flags, pgoff,
1124 &capabilities);
22cc877b 1125 if (ret < 0)
1da177e4
LT
1126 return ret;
1127
06aab5a3
DH
1128 /* we ignore the address hint */
1129 addr = 0;
f67d9b15 1130 len = PAGE_ALIGN(len);
06aab5a3 1131
1da177e4
LT
1132 /* we've determined that we can make the mapping, now translate what we
1133 * now know into VMA flags */
1fcfd8db 1134 vm_flags |= determine_vm_flags(file, prot, flags, capabilities);
1da177e4 1135
8feae131
DH
1136 /* we're going to need to record the mapping */
1137 region = kmem_cache_zalloc(vm_region_jar, GFP_KERNEL);
1138 if (!region)
1139 goto error_getting_region;
1140
490fc053 1141 vma = vm_area_alloc(current->mm);
8feae131
DH
1142 if (!vma)
1143 goto error_getting_vma;
1da177e4 1144
1e2ae599 1145 region->vm_usage = 1;
8feae131
DH
1146 region->vm_flags = vm_flags;
1147 region->vm_pgoff = pgoff;
1148
8feae131
DH
1149 vma->vm_flags = vm_flags;
1150 vma->vm_pgoff = pgoff;
1da177e4 1151
8feae131 1152 if (file) {
cb0942b8
AV
1153 region->vm_file = get_file(file);
1154 vma->vm_file = get_file(file);
8feae131
DH
1155 }
1156
1157 down_write(&nommu_region_sem);
1158
1159 /* if we want to share, we need to check for regions created by other
1da177e4 1160 * mmap() calls that overlap with our proposed mapping
8feae131 1161 * - we can only share with a superset match on most regular files
1da177e4
LT
1162 * - shared mappings on character devices and memory backed files are
1163 * permitted to overlap inexactly as far as we are concerned for in
1164 * these cases, sharing is handled in the driver or filesystem rather
1165 * than here
1166 */
1167 if (vm_flags & VM_MAYSHARE) {
8feae131
DH
1168 struct vm_region *pregion;
1169 unsigned long pglen, rpglen, pgend, rpgend, start;
1da177e4 1170
8feae131
DH
1171 pglen = (len + PAGE_SIZE - 1) >> PAGE_SHIFT;
1172 pgend = pgoff + pglen;
165b2392 1173
8feae131
DH
1174 for (rb = rb_first(&nommu_region_tree); rb; rb = rb_next(rb)) {
1175 pregion = rb_entry(rb, struct vm_region, vm_rb);
1da177e4 1176
8feae131 1177 if (!(pregion->vm_flags & VM_MAYSHARE))
1da177e4
LT
1178 continue;
1179
1180 /* search for overlapping mappings on the same file */
496ad9aa
AV
1181 if (file_inode(pregion->vm_file) !=
1182 file_inode(file))
1da177e4
LT
1183 continue;
1184
8feae131 1185 if (pregion->vm_pgoff >= pgend)
1da177e4
LT
1186 continue;
1187
8feae131
DH
1188 rpglen = pregion->vm_end - pregion->vm_start;
1189 rpglen = (rpglen + PAGE_SIZE - 1) >> PAGE_SHIFT;
1190 rpgend = pregion->vm_pgoff + rpglen;
1191 if (pgoff >= rpgend)
1da177e4
LT
1192 continue;
1193
8feae131
DH
1194 /* handle inexactly overlapping matches between
1195 * mappings */
1196 if ((pregion->vm_pgoff != pgoff || rpglen != pglen) &&
1197 !(pgoff >= pregion->vm_pgoff && pgend <= rpgend)) {
1198 /* new mapping is not a subset of the region */
b4caecd4 1199 if (!(capabilities & NOMMU_MAP_DIRECT))
1da177e4
LT
1200 goto sharing_violation;
1201 continue;
1202 }
1203
8feae131 1204 /* we've found a region we can share */
1e2ae599 1205 pregion->vm_usage++;
8feae131
DH
1206 vma->vm_region = pregion;
1207 start = pregion->vm_start;
1208 start += (pgoff - pregion->vm_pgoff) << PAGE_SHIFT;
1209 vma->vm_start = start;
1210 vma->vm_end = start + len;
1211
22cc877b 1212 if (pregion->vm_flags & VM_MAPPED_COPY)
8feae131 1213 vma->vm_flags |= VM_MAPPED_COPY;
22cc877b 1214 else {
8feae131
DH
1215 ret = do_mmap_shared_file(vma);
1216 if (ret < 0) {
1217 vma->vm_region = NULL;
1218 vma->vm_start = 0;
1219 vma->vm_end = 0;
1e2ae599 1220 pregion->vm_usage--;
8feae131
DH
1221 pregion = NULL;
1222 goto error_just_free;
1223 }
1224 }
1225 fput(region->vm_file);
1226 kmem_cache_free(vm_region_jar, region);
1227 region = pregion;
1228 result = start;
1229 goto share;
1da177e4
LT
1230 }
1231
1da177e4
LT
1232 /* obtain the address at which to make a shared mapping
1233 * - this is the hook for quasi-memory character devices to
1234 * tell us the location of a shared mapping
1235 */
b4caecd4 1236 if (capabilities & NOMMU_MAP_DIRECT) {
1da177e4
LT
1237 addr = file->f_op->get_unmapped_area(file, addr, len,
1238 pgoff, flags);
bb005a59 1239 if (IS_ERR_VALUE(addr)) {
1da177e4 1240 ret = addr;
bb005a59 1241 if (ret != -ENOSYS)
8feae131 1242 goto error_just_free;
1da177e4
LT
1243
1244 /* the driver refused to tell us where to site
1245 * the mapping so we'll have to attempt to copy
1246 * it */
bb005a59 1247 ret = -ENODEV;
b4caecd4 1248 if (!(capabilities & NOMMU_MAP_COPY))
8feae131 1249 goto error_just_free;
1da177e4 1250
b4caecd4 1251 capabilities &= ~NOMMU_MAP_DIRECT;
8feae131
DH
1252 } else {
1253 vma->vm_start = region->vm_start = addr;
1254 vma->vm_end = region->vm_end = addr + len;
1da177e4
LT
1255 }
1256 }
1257 }
1258
8feae131 1259 vma->vm_region = region;
1da177e4 1260
645d83c5 1261 /* set up the mapping
b4caecd4 1262 * - the region is filled in if NOMMU_MAP_DIRECT is still set
645d83c5 1263 */
1da177e4 1264 if (file && vma->vm_flags & VM_SHARED)
8feae131 1265 ret = do_mmap_shared_file(vma);
1da177e4 1266 else
645d83c5 1267 ret = do_mmap_private(vma, region, len, capabilities);
1da177e4 1268 if (ret < 0)
645d83c5
DH
1269 goto error_just_free;
1270 add_nommu_region(region);
8feae131 1271
ea637639 1272 /* clear anonymous mappings that don't ask for uninitialized data */
0bf5f949
CH
1273 if (!vma->vm_file &&
1274 (!IS_ENABLED(CONFIG_MMAP_ALLOW_UNINITIALIZED) ||
1275 !(flags & MAP_UNINITIALIZED)))
ea637639
JZ
1276 memset((void *)region->vm_start, 0,
1277 region->vm_end - region->vm_start);
1278
1da177e4 1279 /* okay... we have a mapping; now we have to register it */
8feae131 1280 result = vma->vm_start;
1da177e4 1281
1da177e4
LT
1282 current->mm->total_vm += len >> PAGE_SHIFT;
1283
8feae131
DH
1284share:
1285 add_vma_to_mm(current->mm, vma);
1da177e4 1286
cfe79c00
MF
1287 /* we flush the region from the icache only when the first executable
1288 * mapping of it is made */
1289 if (vma->vm_flags & VM_EXEC && !region->vm_icache_flushed) {
1290 flush_icache_range(region->vm_start, region->vm_end);
1291 region->vm_icache_flushed = true;
1292 }
1da177e4 1293
cfe79c00 1294 up_write(&nommu_region_sem);
1da177e4 1295
8feae131 1296 return result;
1da177e4 1297
8feae131
DH
1298error_just_free:
1299 up_write(&nommu_region_sem);
1300error:
89a86402
DH
1301 if (region->vm_file)
1302 fput(region->vm_file);
8feae131 1303 kmem_cache_free(vm_region_jar, region);
89a86402
DH
1304 if (vma->vm_file)
1305 fput(vma->vm_file);
3928d4f5 1306 vm_area_free(vma);
8feae131
DH
1307 return ret;
1308
1309sharing_violation:
1310 up_write(&nommu_region_sem);
22cc877b 1311 pr_warn("Attempt to share mismatched mappings\n");
8feae131
DH
1312 ret = -EINVAL;
1313 goto error;
1da177e4 1314
8feae131
DH
1315error_getting_vma:
1316 kmem_cache_free(vm_region_jar, region);
22cc877b
LR
1317 pr_warn("Allocation of vma for %lu byte allocation from process %d failed\n",
1318 len, current->pid);
9af744d7 1319 show_free_areas(0, NULL);
1da177e4
LT
1320 return -ENOMEM;
1321
8feae131 1322error_getting_region:
22cc877b
LR
1323 pr_warn("Allocation of vm region for %lu byte allocation from process %d failed\n",
1324 len, current->pid);
9af744d7 1325 show_free_areas(0, NULL);
1da177e4
LT
1326 return -ENOMEM;
1327}
6be5ceb0 1328
a90f590a
DB
1329unsigned long ksys_mmap_pgoff(unsigned long addr, unsigned long len,
1330 unsigned long prot, unsigned long flags,
1331 unsigned long fd, unsigned long pgoff)
66f0dc48
HD
1332{
1333 struct file *file = NULL;
1334 unsigned long retval = -EBADF;
1335
120a795d 1336 audit_mmap_fd(fd, flags);
66f0dc48
HD
1337 if (!(flags & MAP_ANONYMOUS)) {
1338 file = fget(fd);
1339 if (!file)
1340 goto out;
1341 }
1342
1343 flags &= ~(MAP_EXECUTABLE | MAP_DENYWRITE);
1344
ad1ed293 1345 retval = vm_mmap_pgoff(file, addr, len, prot, flags, pgoff);
66f0dc48
HD
1346
1347 if (file)
1348 fput(file);
1349out:
1350 return retval;
1351}
1352
a90f590a
DB
1353SYSCALL_DEFINE6(mmap_pgoff, unsigned long, addr, unsigned long, len,
1354 unsigned long, prot, unsigned long, flags,
1355 unsigned long, fd, unsigned long, pgoff)
1356{
1357 return ksys_mmap_pgoff(addr, len, prot, flags, fd, pgoff);
1358}
1359
a4679373
CH
1360#ifdef __ARCH_WANT_SYS_OLD_MMAP
1361struct mmap_arg_struct {
1362 unsigned long addr;
1363 unsigned long len;
1364 unsigned long prot;
1365 unsigned long flags;
1366 unsigned long fd;
1367 unsigned long offset;
1368};
1369
1370SYSCALL_DEFINE1(old_mmap, struct mmap_arg_struct __user *, arg)
1371{
1372 struct mmap_arg_struct a;
1373
1374 if (copy_from_user(&a, arg, sizeof(a)))
1375 return -EFAULT;
1824cb75 1376 if (offset_in_page(a.offset))
a4679373
CH
1377 return -EINVAL;
1378
a90f590a
DB
1379 return ksys_mmap_pgoff(a.addr, a.len, a.prot, a.flags, a.fd,
1380 a.offset >> PAGE_SHIFT);
a4679373
CH
1381}
1382#endif /* __ARCH_WANT_SYS_OLD_MMAP */
1383
1da177e4 1384/*
8feae131
DH
1385 * split a vma into two pieces at address 'addr', a new vma is allocated either
1386 * for the first part or the tail.
1da177e4 1387 */
8feae131
DH
1388int split_vma(struct mm_struct *mm, struct vm_area_struct *vma,
1389 unsigned long addr, int new_below)
1da177e4 1390{
8feae131
DH
1391 struct vm_area_struct *new;
1392 struct vm_region *region;
1393 unsigned long npages;
1da177e4 1394
779c1023
DH
1395 /* we're only permitted to split anonymous regions (these should have
1396 * only a single usage on the region) */
1397 if (vma->vm_file)
8feae131 1398 return -ENOMEM;
1da177e4 1399
8feae131
DH
1400 if (mm->map_count >= sysctl_max_map_count)
1401 return -ENOMEM;
1da177e4 1402
8feae131
DH
1403 region = kmem_cache_alloc(vm_region_jar, GFP_KERNEL);
1404 if (!region)
1405 return -ENOMEM;
1da177e4 1406
3928d4f5 1407 new = vm_area_dup(vma);
8feae131
DH
1408 if (!new) {
1409 kmem_cache_free(vm_region_jar, region);
1410 return -ENOMEM;
1411 }
1412
1413 /* most fields are the same, copy all, and then fixup */
8feae131
DH
1414 *region = *vma->vm_region;
1415 new->vm_region = region;
1416
1417 npages = (addr - vma->vm_start) >> PAGE_SHIFT;
1418
1419 if (new_below) {
dd8632a1 1420 region->vm_top = region->vm_end = new->vm_end = addr;
8feae131
DH
1421 } else {
1422 region->vm_start = new->vm_start = addr;
1423 region->vm_pgoff = new->vm_pgoff += npages;
1da177e4 1424 }
8feae131
DH
1425
1426 if (new->vm_ops && new->vm_ops->open)
1427 new->vm_ops->open(new);
1428
1429 delete_vma_from_mm(vma);
1430 down_write(&nommu_region_sem);
1431 delete_nommu_region(vma->vm_region);
1432 if (new_below) {
1433 vma->vm_region->vm_start = vma->vm_start = addr;
1434 vma->vm_region->vm_pgoff = vma->vm_pgoff += npages;
1435 } else {
1436 vma->vm_region->vm_end = vma->vm_end = addr;
dd8632a1 1437 vma->vm_region->vm_top = addr;
8feae131
DH
1438 }
1439 add_nommu_region(vma->vm_region);
1440 add_nommu_region(new->vm_region);
1441 up_write(&nommu_region_sem);
1442 add_vma_to_mm(mm, vma);
1443 add_vma_to_mm(mm, new);
1444 return 0;
1da177e4
LT
1445}
1446
3034097a 1447/*
8feae131
DH
1448 * shrink a VMA by removing the specified chunk from either the beginning or
1449 * the end
3034097a 1450 */
8feae131
DH
1451static int shrink_vma(struct mm_struct *mm,
1452 struct vm_area_struct *vma,
1453 unsigned long from, unsigned long to)
1da177e4 1454{
8feae131 1455 struct vm_region *region;
1da177e4 1456
8feae131
DH
1457 /* adjust the VMA's pointers, which may reposition it in the MM's tree
1458 * and list */
1459 delete_vma_from_mm(vma);
1460 if (from > vma->vm_start)
1461 vma->vm_end = from;
1462 else
1463 vma->vm_start = to;
1464 add_vma_to_mm(mm, vma);
1da177e4 1465
8feae131
DH
1466 /* cut the backing region down to size */
1467 region = vma->vm_region;
1e2ae599 1468 BUG_ON(region->vm_usage != 1);
8feae131
DH
1469
1470 down_write(&nommu_region_sem);
1471 delete_nommu_region(region);
dd8632a1
PM
1472 if (from > region->vm_start) {
1473 to = region->vm_top;
1474 region->vm_top = region->vm_end = from;
1475 } else {
8feae131 1476 region->vm_start = to;
dd8632a1 1477 }
8feae131
DH
1478 add_nommu_region(region);
1479 up_write(&nommu_region_sem);
1480
1481 free_page_series(from, to);
1482 return 0;
1483}
1da177e4 1484
8feae131
DH
1485/*
1486 * release a mapping
1487 * - under NOMMU conditions the chunk to be unmapped must be backed by a single
1488 * VMA, though it need not cover the whole VMA
1489 */
897ab3e0 1490int do_munmap(struct mm_struct *mm, unsigned long start, size_t len, struct list_head *uf)
8feae131
DH
1491{
1492 struct vm_area_struct *vma;
f67d9b15 1493 unsigned long end;
8feae131 1494 int ret;
1da177e4 1495
f67d9b15 1496 len = PAGE_ALIGN(len);
8feae131
DH
1497 if (len == 0)
1498 return -EINVAL;
365e9c87 1499
f67d9b15
BL
1500 end = start + len;
1501
8feae131
DH
1502 /* find the first potentially overlapping VMA */
1503 vma = find_vma(mm, start);
1504 if (!vma) {
ac714904 1505 static int limit;
33e5d769 1506 if (limit < 5) {
22cc877b
LR
1507 pr_warn("munmap of memory not mmapped by process %d (%s): 0x%lx-0x%lx\n",
1508 current->pid, current->comm,
1509 start, start + len - 1);
33e5d769
DH
1510 limit++;
1511 }
8feae131
DH
1512 return -EINVAL;
1513 }
1da177e4 1514
8feae131
DH
1515 /* we're allowed to split an anonymous VMA but not a file-backed one */
1516 if (vma->vm_file) {
1517 do {
22cc877b 1518 if (start > vma->vm_start)
8feae131 1519 return -EINVAL;
8feae131
DH
1520 if (end == vma->vm_end)
1521 goto erase_whole_vma;
d75a310c
NK
1522 vma = vma->vm_next;
1523 } while (vma);
8feae131
DH
1524 return -EINVAL;
1525 } else {
1526 /* the chunk must be a subset of the VMA found */
1527 if (start == vma->vm_start && end == vma->vm_end)
1528 goto erase_whole_vma;
22cc877b 1529 if (start < vma->vm_start || end > vma->vm_end)
8feae131 1530 return -EINVAL;
1824cb75 1531 if (offset_in_page(start))
8feae131 1532 return -EINVAL;
1824cb75 1533 if (end != vma->vm_end && offset_in_page(end))
8feae131 1534 return -EINVAL;
8feae131
DH
1535 if (start != vma->vm_start && end != vma->vm_end) {
1536 ret = split_vma(mm, vma, start, 1);
22cc877b 1537 if (ret < 0)
8feae131 1538 return ret;
8feae131
DH
1539 }
1540 return shrink_vma(mm, vma, start, end);
1541 }
1da177e4 1542
8feae131
DH
1543erase_whole_vma:
1544 delete_vma_from_mm(vma);
1545 delete_vma(mm, vma);
1da177e4
LT
1546 return 0;
1547}
b5073173 1548EXPORT_SYMBOL(do_munmap);
1da177e4 1549
bfce281c 1550int vm_munmap(unsigned long addr, size_t len)
3034097a 1551{
bfce281c 1552 struct mm_struct *mm = current->mm;
3034097a 1553 int ret;
3034097a
DH
1554
1555 down_write(&mm->mmap_sem);
897ab3e0 1556 ret = do_munmap(mm, addr, len, NULL);
3034097a
DH
1557 up_write(&mm->mmap_sem);
1558 return ret;
1559}
a46ef99d
LT
1560EXPORT_SYMBOL(vm_munmap);
1561
1562SYSCALL_DEFINE2(munmap, unsigned long, addr, size_t, len)
1563{
bfce281c 1564 return vm_munmap(addr, len);
a46ef99d 1565}
3034097a
DH
1566
1567/*
8feae131 1568 * release all the mappings made in a process's VM space
3034097a 1569 */
8feae131 1570void exit_mmap(struct mm_struct *mm)
1da177e4 1571{
8feae131 1572 struct vm_area_struct *vma;
1da177e4 1573
8feae131
DH
1574 if (!mm)
1575 return;
1da177e4 1576
8feae131 1577 mm->total_vm = 0;
1da177e4 1578
8feae131
DH
1579 while ((vma = mm->mmap)) {
1580 mm->mmap = vma->vm_next;
1581 delete_vma_from_mm(vma);
1582 delete_vma(mm, vma);
04c34961 1583 cond_resched();
1da177e4
LT
1584 }
1585}
1586
5d22fc25 1587int vm_brk(unsigned long addr, unsigned long len)
1da177e4
LT
1588{
1589 return -ENOMEM;
1590}
1591
1592/*
6fa5f80b
DH
1593 * expand (or shrink) an existing mapping, potentially moving it at the same
1594 * time (controlled by the MREMAP_MAYMOVE flag and available VM space)
1da177e4 1595 *
6fa5f80b 1596 * under NOMMU conditions, we only permit changing a mapping's size, and only
8feae131
DH
1597 * as long as it stays within the region allocated by do_mmap_private() and the
1598 * block is not shareable
1da177e4 1599 *
6fa5f80b 1600 * MREMAP_FIXED is not supported under NOMMU conditions
1da177e4 1601 */
4b377bab 1602static unsigned long do_mremap(unsigned long addr,
1da177e4
LT
1603 unsigned long old_len, unsigned long new_len,
1604 unsigned long flags, unsigned long new_addr)
1605{
6fa5f80b 1606 struct vm_area_struct *vma;
1da177e4
LT
1607
1608 /* insanity checks first */
f67d9b15
BL
1609 old_len = PAGE_ALIGN(old_len);
1610 new_len = PAGE_ALIGN(new_len);
8feae131 1611 if (old_len == 0 || new_len == 0)
1da177e4
LT
1612 return (unsigned long) -EINVAL;
1613
1824cb75 1614 if (offset_in_page(addr))
8feae131
DH
1615 return -EINVAL;
1616
1da177e4
LT
1617 if (flags & MREMAP_FIXED && new_addr != addr)
1618 return (unsigned long) -EINVAL;
1619
8feae131 1620 vma = find_vma_exact(current->mm, addr, old_len);
6fa5f80b
DH
1621 if (!vma)
1622 return (unsigned long) -EINVAL;
1da177e4 1623
6fa5f80b 1624 if (vma->vm_end != vma->vm_start + old_len)
1da177e4
LT
1625 return (unsigned long) -EFAULT;
1626
6fa5f80b 1627 if (vma->vm_flags & VM_MAYSHARE)
1da177e4
LT
1628 return (unsigned long) -EPERM;
1629
8feae131 1630 if (new_len > vma->vm_region->vm_end - vma->vm_region->vm_start)
1da177e4
LT
1631 return (unsigned long) -ENOMEM;
1632
1633 /* all checks complete - do it */
6fa5f80b 1634 vma->vm_end = vma->vm_start + new_len;
6fa5f80b
DH
1635 return vma->vm_start;
1636}
1637
6a6160a7
HC
1638SYSCALL_DEFINE5(mremap, unsigned long, addr, unsigned long, old_len,
1639 unsigned long, new_len, unsigned long, flags,
1640 unsigned long, new_addr)
6fa5f80b
DH
1641{
1642 unsigned long ret;
1643
1644 down_write(&current->mm->mmap_sem);
1645 ret = do_mremap(addr, old_len, new_len, flags, new_addr);
1646 up_write(&current->mm->mmap_sem);
1647 return ret;
1da177e4
LT
1648}
1649
df06b37f
KB
1650struct page *follow_page(struct vm_area_struct *vma, unsigned long address,
1651 unsigned int foll_flags)
1da177e4
LT
1652{
1653 return NULL;
1654}
1655
8f3b1327
BL
1656int remap_pfn_range(struct vm_area_struct *vma, unsigned long addr,
1657 unsigned long pfn, unsigned long size, pgprot_t prot)
1da177e4 1658{
8f3b1327
BL
1659 if (addr != (pfn << PAGE_SHIFT))
1660 return -EINVAL;
1661
314e51b9 1662 vma->vm_flags |= VM_IO | VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP;
66aa2b4b 1663 return 0;
1da177e4 1664}
22c4af40 1665EXPORT_SYMBOL(remap_pfn_range);
1da177e4 1666
3c0b9de6
LT
1667int vm_iomap_memory(struct vm_area_struct *vma, phys_addr_t start, unsigned long len)
1668{
1669 unsigned long pfn = start >> PAGE_SHIFT;
1670 unsigned long vm_len = vma->vm_end - vma->vm_start;
1671
1672 pfn += vma->vm_pgoff;
1673 return io_remap_pfn_range(vma, vma->vm_start, pfn, vm_len, vma->vm_page_prot);
1674}
1675EXPORT_SYMBOL(vm_iomap_memory);
1676
f905bc44
PM
1677int remap_vmalloc_range(struct vm_area_struct *vma, void *addr,
1678 unsigned long pgoff)
1679{
1680 unsigned int size = vma->vm_end - vma->vm_start;
1681
1682 if (!(vma->vm_flags & VM_USERMAP))
1683 return -EINVAL;
1684
1685 vma->vm_start = (unsigned long)(addr + (pgoff << PAGE_SHIFT));
1686 vma->vm_end = vma->vm_start + size;
1687
1688 return 0;
1689}
1690EXPORT_SYMBOL(remap_vmalloc_range);
1691
1da177e4
LT
1692unsigned long arch_get_unmapped_area(struct file *file, unsigned long addr,
1693 unsigned long len, unsigned long pgoff, unsigned long flags)
1694{
1695 return -ENOMEM;
1696}
1697
2bcd6454 1698vm_fault_t filemap_fault(struct vm_fault *vmf)
b0e15190
DH
1699{
1700 BUG();
d0217ac0 1701 return 0;
b0e15190 1702}
b5073173 1703EXPORT_SYMBOL(filemap_fault);
0ec76a11 1704
82b0f8c3 1705void filemap_map_pages(struct vm_fault *vmf,
bae473a4 1706 pgoff_t start_pgoff, pgoff_t end_pgoff)
f1820361
KS
1707{
1708 BUG();
1709}
1710EXPORT_SYMBOL(filemap_map_pages);
1711
84d77d3f 1712int __access_remote_vm(struct task_struct *tsk, struct mm_struct *mm,
442486ec 1713 unsigned long addr, void *buf, int len, unsigned int gup_flags)
0ec76a11 1714{
0ec76a11 1715 struct vm_area_struct *vma;
442486ec 1716 int write = gup_flags & FOLL_WRITE;
0ec76a11 1717
1e426fe2
KK
1718 if (down_read_killable(&mm->mmap_sem))
1719 return 0;
0ec76a11
DH
1720
1721 /* the access must start within one of the target process's mappings */
0159b141
DH
1722 vma = find_vma(mm, addr);
1723 if (vma) {
0ec76a11
DH
1724 /* don't overrun this mapping */
1725 if (addr + len >= vma->vm_end)
1726 len = vma->vm_end - addr;
1727
1728 /* only read or write mappings where it is permitted */
d00c7b99 1729 if (write && vma->vm_flags & VM_MAYWRITE)
7959722b
JZ
1730 copy_to_user_page(vma, NULL, addr,
1731 (void *) addr, buf, len);
d00c7b99 1732 else if (!write && vma->vm_flags & VM_MAYREAD)
7959722b
JZ
1733 copy_from_user_page(vma, NULL, addr,
1734 buf, (void *) addr, len);
0ec76a11
DH
1735 else
1736 len = 0;
1737 } else {
1738 len = 0;
1739 }
1740
1741 up_read(&mm->mmap_sem);
f55f199b
MF
1742
1743 return len;
1744}
1745
1746/**
b7701a5f 1747 * access_remote_vm - access another process' address space
f55f199b
MF
1748 * @mm: the mm_struct of the target address space
1749 * @addr: start address to access
1750 * @buf: source or destination buffer
1751 * @len: number of bytes to transfer
6347e8d5 1752 * @gup_flags: flags modifying lookup behaviour
f55f199b
MF
1753 *
1754 * The caller must hold a reference on @mm.
1755 */
1756int access_remote_vm(struct mm_struct *mm, unsigned long addr,
6347e8d5 1757 void *buf, int len, unsigned int gup_flags)
f55f199b 1758{
6347e8d5 1759 return __access_remote_vm(NULL, mm, addr, buf, len, gup_flags);
f55f199b
MF
1760}
1761
1762/*
1763 * Access another process' address space.
1764 * - source/target buffer must be kernel space
1765 */
f307ab6d
LS
1766int access_process_vm(struct task_struct *tsk, unsigned long addr, void *buf, int len,
1767 unsigned int gup_flags)
f55f199b
MF
1768{
1769 struct mm_struct *mm;
1770
1771 if (addr + len < addr)
1772 return 0;
1773
1774 mm = get_task_mm(tsk);
1775 if (!mm)
1776 return 0;
1777
f307ab6d 1778 len = __access_remote_vm(tsk, mm, addr, buf, len, gup_flags);
f55f199b 1779
0ec76a11
DH
1780 mmput(mm);
1781 return len;
1782}
fcd35857 1783EXPORT_SYMBOL_GPL(access_process_vm);
7e660872
DH
1784
1785/**
1786 * nommu_shrink_inode_mappings - Shrink the shared mappings on an inode
1787 * @inode: The inode to check
1788 * @size: The current filesize of the inode
1789 * @newsize: The proposed filesize of the inode
1790 *
1791 * Check the shared mappings on an inode on behalf of a shrinking truncate to
1792 * make sure that that any outstanding VMAs aren't broken and then shrink the
1793 * vm_regions that extend that beyond so that do_mmap_pgoff() doesn't
1794 * automatically grant mappings that are too large.
1795 */
1796int nommu_shrink_inode_mappings(struct inode *inode, size_t size,
1797 size_t newsize)
1798{
1799 struct vm_area_struct *vma;
7e660872
DH
1800 struct vm_region *region;
1801 pgoff_t low, high;
1802 size_t r_size, r_top;
1803
1804 low = newsize >> PAGE_SHIFT;
1805 high = (size + PAGE_SIZE - 1) >> PAGE_SHIFT;
1806
1807 down_write(&nommu_region_sem);
1acf2e04 1808 i_mmap_lock_read(inode->i_mapping);
7e660872
DH
1809
1810 /* search for VMAs that fall within the dead zone */
6b2dbba8 1811 vma_interval_tree_foreach(vma, &inode->i_mapping->i_mmap, low, high) {
7e660872
DH
1812 /* found one - only interested if it's shared out of the page
1813 * cache */
1814 if (vma->vm_flags & VM_SHARED) {
1acf2e04 1815 i_mmap_unlock_read(inode->i_mapping);
7e660872
DH
1816 up_write(&nommu_region_sem);
1817 return -ETXTBSY; /* not quite true, but near enough */
1818 }
1819 }
1820
1821 /* reduce any regions that overlap the dead zone - if in existence,
1822 * these will be pointed to by VMAs that don't overlap the dead zone
1823 *
1824 * we don't check for any regions that start beyond the EOF as there
1825 * shouldn't be any
1826 */
1acf2e04 1827 vma_interval_tree_foreach(vma, &inode->i_mapping->i_mmap, 0, ULONG_MAX) {
7e660872
DH
1828 if (!(vma->vm_flags & VM_SHARED))
1829 continue;
1830
1831 region = vma->vm_region;
1832 r_size = region->vm_top - region->vm_start;
1833 r_top = (region->vm_pgoff << PAGE_SHIFT) + r_size;
1834
1835 if (r_top > newsize) {
1836 region->vm_top -= r_top - newsize;
1837 if (region->vm_end > region->vm_top)
1838 region->vm_end = region->vm_top;
1839 }
1840 }
1841
1acf2e04 1842 i_mmap_unlock_read(inode->i_mapping);
7e660872
DH
1843 up_write(&nommu_region_sem);
1844 return 0;
1845}
c9b1d098
AS
1846
1847/*
1848 * Initialise sysctl_user_reserve_kbytes.
1849 *
1850 * This is intended to prevent a user from starting a single memory hogging
1851 * process, such that they cannot recover (kill the hog) in OVERCOMMIT_NEVER
1852 * mode.
1853 *
1854 * The default value is min(3% of free memory, 128MB)
1855 * 128MB is enough to recover with sshd/login, bash, and top/kill.
1856 */
1857static int __meminit init_user_reserve(void)
1858{
1859 unsigned long free_kbytes;
1860
c41f012a 1861 free_kbytes = global_zone_page_state(NR_FREE_PAGES) << (PAGE_SHIFT - 10);
c9b1d098
AS
1862
1863 sysctl_user_reserve_kbytes = min(free_kbytes / 32, 1UL << 17);
1864 return 0;
1865}
a4bc6fc7 1866subsys_initcall(init_user_reserve);
4eeab4f5
AS
1867
1868/*
1869 * Initialise sysctl_admin_reserve_kbytes.
1870 *
1871 * The purpose of sysctl_admin_reserve_kbytes is to allow the sys admin
1872 * to log in and kill a memory hogging process.
1873 *
1874 * Systems with more than 256MB will reserve 8MB, enough to recover
1875 * with sshd, bash, and top in OVERCOMMIT_GUESS. Smaller systems will
1876 * only reserve 3% of free pages by default.
1877 */
1878static int __meminit init_admin_reserve(void)
1879{
1880 unsigned long free_kbytes;
1881
c41f012a 1882 free_kbytes = global_zone_page_state(NR_FREE_PAGES) << (PAGE_SHIFT - 10);
4eeab4f5
AS
1883
1884 sysctl_admin_reserve_kbytes = min(free_kbytes / 32, 1UL << 13);
1885 return 0;
1886}
a4bc6fc7 1887subsys_initcall(init_admin_reserve);