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16#include <linux/export.h>
17#include <linux/mm.h>
18#include <linux/mman.h>
19#include <linux/swap.h>
20#include <linux/file.h>
21#include <linux/highmem.h>
22#include <linux/pagemap.h>
23#include <linux/slab.h>
24#include <linux/vmalloc.h>
25#include <linux/blkdev.h>
26#include <linux/backing-dev.h>
27#include <linux/mount.h>
28#include <linux/personality.h>
29#include <linux/security.h>
30#include <linux/syscalls.h>
31#include <linux/audit.h>
32
33#include <asm/uaccess.h>
34#include <asm/tlb.h>
35#include <asm/tlbflush.h>
36#include <asm/mmu_context.h>
37#include "internal.h"
38
39#if 0
40#define kenter(FMT, ...) \
41 printk(KERN_DEBUG "==> %s("FMT")\n", __func__, ##__VA_ARGS__)
42#define kleave(FMT, ...) \
43 printk(KERN_DEBUG "<== %s()"FMT"\n", __func__, ##__VA_ARGS__)
44#define kdebug(FMT, ...) \
45 printk(KERN_DEBUG "xxx" FMT"yyy\n", ##__VA_ARGS__)
46#else
47#define kenter(FMT, ...) \
48 no_printk(KERN_DEBUG "==> %s("FMT")\n", __func__, ##__VA_ARGS__)
49#define kleave(FMT, ...) \
50 no_printk(KERN_DEBUG "<== %s()"FMT"\n", __func__, ##__VA_ARGS__)
51#define kdebug(FMT, ...) \
52 no_printk(KERN_DEBUG FMT"\n", ##__VA_ARGS__)
53#endif
54
55void *high_memory;
56struct page *mem_map;
57unsigned long max_mapnr;
58unsigned long num_physpages;
59unsigned long highest_memmap_pfn;
60struct percpu_counter vm_committed_as;
61int sysctl_overcommit_memory = OVERCOMMIT_GUESS;
62int sysctl_overcommit_ratio = 50;
63int sysctl_max_map_count = DEFAULT_MAX_MAP_COUNT;
64int sysctl_nr_trim_pages = CONFIG_NOMMU_INITIAL_TRIM_EXCESS;
65int heap_stack_gap = 0;
66
67atomic_long_t mmap_pages_allocated;
68
69EXPORT_SYMBOL(mem_map);
70EXPORT_SYMBOL(num_physpages);
71
72
73static struct kmem_cache *vm_region_jar;
74struct rb_root nommu_region_tree = RB_ROOT;
75DECLARE_RWSEM(nommu_region_sem);
76
77const struct vm_operations_struct generic_file_vm_ops = {
78};
79
80
81
82
83
84
85
86unsigned int kobjsize(const void *objp)
87{
88 struct page *page;
89
90
91
92
93
94 if (!objp || !virt_addr_valid(objp))
95 return 0;
96
97 page = virt_to_head_page(objp);
98
99
100
101
102
103 if (PageSlab(page))
104 return ksize(objp);
105
106
107
108
109
110
111
112 if (!PageCompound(page)) {
113 struct vm_area_struct *vma;
114
115 vma = find_vma(current->mm, (unsigned long)objp);
116 if (vma)
117 return vma->vm_end - vma->vm_start;
118 }
119
120
121
122
123
124 return PAGE_SIZE << compound_order(page);
125}
126
127int __get_user_pages(struct task_struct *tsk, struct mm_struct *mm,
128 unsigned long start, int nr_pages, unsigned int foll_flags,
129 struct page **pages, struct vm_area_struct **vmas,
130 int *retry)
131{
132 struct vm_area_struct *vma;
133 unsigned long vm_flags;
134 int i;
135
136
137
138
139 vm_flags = (foll_flags & FOLL_WRITE) ?
140 (VM_WRITE | VM_MAYWRITE) : (VM_READ | VM_MAYREAD);
141 vm_flags &= (foll_flags & FOLL_FORCE) ?
142 (VM_MAYREAD | VM_MAYWRITE) : (VM_READ | VM_WRITE);
143
144 for (i = 0; i < nr_pages; i++) {
145 vma = find_vma(mm, start);
146 if (!vma)
147 goto finish_or_fault;
148
149
150 if ((vma->vm_flags & (VM_IO | VM_PFNMAP)) ||
151 !(vm_flags & vma->vm_flags))
152 goto finish_or_fault;
153
154 if (pages) {
155 pages[i] = virt_to_page(start);
156 if (pages[i])
157 page_cache_get(pages[i]);
158 }
159 if (vmas)
160 vmas[i] = vma;
161 start = (start + PAGE_SIZE) & PAGE_MASK;
162 }
163
164 return i;
165
166finish_or_fault:
167 return i ? : -EFAULT;
168}
169
170
171
172
173
174
175
176
177int get_user_pages(struct task_struct *tsk, struct mm_struct *mm,
178 unsigned long start, int nr_pages, int write, int force,
179 struct page **pages, struct vm_area_struct **vmas)
180{
181 int flags = 0;
182
183 if (write)
184 flags |= FOLL_WRITE;
185 if (force)
186 flags |= FOLL_FORCE;
187
188 return __get_user_pages(tsk, mm, start, nr_pages, flags, pages, vmas,
189 NULL);
190}
191EXPORT_SYMBOL(get_user_pages);
192
193
194
195
196
197
198
199
200
201
202
203int follow_pfn(struct vm_area_struct *vma, unsigned long address,
204 unsigned long *pfn)
205{
206 if (!(vma->vm_flags & (VM_IO | VM_PFNMAP)))
207 return -EINVAL;
208
209 *pfn = address >> PAGE_SHIFT;
210 return 0;
211}
212EXPORT_SYMBOL(follow_pfn);
213
214DEFINE_RWLOCK(vmlist_lock);
215struct vm_struct *vmlist;
216
217void vfree(const void *addr)
218{
219 kfree(addr);
220}
221EXPORT_SYMBOL(vfree);
222
223void *__vmalloc(unsigned long size, gfp_t gfp_mask, pgprot_t prot)
224{
225
226
227
228
229 return kmalloc(size, (gfp_mask | __GFP_COMP) & ~__GFP_HIGHMEM);
230}
231EXPORT_SYMBOL(__vmalloc);
232
233void *vmalloc_user(unsigned long size)
234{
235 void *ret;
236
237 ret = __vmalloc(size, GFP_KERNEL | __GFP_HIGHMEM | __GFP_ZERO,
238 PAGE_KERNEL);
239 if (ret) {
240 struct vm_area_struct *vma;
241
242 down_write(¤t->mm->mmap_sem);
243 vma = find_vma(current->mm, (unsigned long)ret);
244 if (vma)
245 vma->vm_flags |= VM_USERMAP;
246 up_write(¤t->mm->mmap_sem);
247 }
248
249 return ret;
250}
251EXPORT_SYMBOL(vmalloc_user);
252
253struct page *vmalloc_to_page(const void *addr)
254{
255 return virt_to_page(addr);
256}
257EXPORT_SYMBOL(vmalloc_to_page);
258
259unsigned long vmalloc_to_pfn(const void *addr)
260{
261 return page_to_pfn(virt_to_page(addr));
262}
263EXPORT_SYMBOL(vmalloc_to_pfn);
264
265long vread(char *buf, char *addr, unsigned long count)
266{
267 memcpy(buf, addr, count);
268 return count;
269}
270
271long vwrite(char *buf, char *addr, unsigned long count)
272{
273
274 if ((unsigned long) addr + count < count)
275 count = -(unsigned long) addr;
276
277 memcpy(addr, buf, count);
278 return(count);
279}
280
281
282
283
284
285
286
287
288
289
290
291
292void *vmalloc(unsigned long size)
293{
294 return __vmalloc(size, GFP_KERNEL | __GFP_HIGHMEM, PAGE_KERNEL);
295}
296EXPORT_SYMBOL(vmalloc);
297
298
299
300
301
302
303
304
305
306
307
308
309
310void *vzalloc(unsigned long size)
311{
312 return __vmalloc(size, GFP_KERNEL | __GFP_HIGHMEM | __GFP_ZERO,
313 PAGE_KERNEL);
314}
315EXPORT_SYMBOL(vzalloc);
316
317
318
319
320
321
322
323
324
325
326
327
328void *vmalloc_node(unsigned long size, int node)
329{
330 return vmalloc(size);
331}
332EXPORT_SYMBOL(vmalloc_node);
333
334
335
336
337
338
339
340
341
342
343
344
345
346void *vzalloc_node(unsigned long size, int node)
347{
348 return vzalloc(size);
349}
350EXPORT_SYMBOL(vzalloc_node);
351
352#ifndef PAGE_KERNEL_EXEC
353# define PAGE_KERNEL_EXEC PAGE_KERNEL
354#endif
355
356
357
358
359
360
361
362
363
364
365
366
367
368void *vmalloc_exec(unsigned long size)
369{
370 return __vmalloc(size, GFP_KERNEL | __GFP_HIGHMEM, PAGE_KERNEL_EXEC);
371}
372
373
374
375
376
377
378
379
380void *vmalloc_32(unsigned long size)
381{
382 return __vmalloc(size, GFP_KERNEL, PAGE_KERNEL);
383}
384EXPORT_SYMBOL(vmalloc_32);
385
386
387
388
389
390
391
392
393
394
395
396void *vmalloc_32_user(unsigned long size)
397{
398
399
400
401
402 return vmalloc_user(size);
403}
404EXPORT_SYMBOL(vmalloc_32_user);
405
406void *vmap(struct page **pages, unsigned int count, unsigned long flags, pgprot_t prot)
407{
408 BUG();
409 return NULL;
410}
411EXPORT_SYMBOL(vmap);
412
413void vunmap(const void *addr)
414{
415 BUG();
416}
417EXPORT_SYMBOL(vunmap);
418
419void *vm_map_ram(struct page **pages, unsigned int count, int node, pgprot_t prot)
420{
421 BUG();
422 return NULL;
423}
424EXPORT_SYMBOL(vm_map_ram);
425
426void vm_unmap_ram(const void *mem, unsigned int count)
427{
428 BUG();
429}
430EXPORT_SYMBOL(vm_unmap_ram);
431
432void vm_unmap_aliases(void)
433{
434}
435EXPORT_SYMBOL_GPL(vm_unmap_aliases);
436
437
438
439
440
441void __attribute__((weak)) vmalloc_sync_all(void)
442{
443}
444
445
446
447
448
449
450
451
452
453
454
455
456
457struct vm_struct *alloc_vm_area(size_t size, pte_t **ptes)
458{
459 BUG();
460 return NULL;
461}
462EXPORT_SYMBOL_GPL(alloc_vm_area);
463
464void free_vm_area(struct vm_struct *area)
465{
466 BUG();
467}
468EXPORT_SYMBOL_GPL(free_vm_area);
469
470int vm_insert_page(struct vm_area_struct *vma, unsigned long addr,
471 struct page *page)
472{
473 return -EINVAL;
474}
475EXPORT_SYMBOL(vm_insert_page);
476
477
478
479
480
481
482
483
484SYSCALL_DEFINE1(brk, unsigned long, brk)
485{
486 struct mm_struct *mm = current->mm;
487
488 if (brk < mm->start_brk || brk > mm->context.end_brk)
489 return mm->brk;
490
491 if (mm->brk == brk)
492 return mm->brk;
493
494
495
496
497 if (brk <= mm->brk) {
498 mm->brk = brk;
499 return brk;
500 }
501
502
503
504
505 flush_icache_range(mm->brk, brk);
506 return mm->brk = brk;
507}
508
509
510
511
512void __init mmap_init(void)
513{
514 int ret;
515
516 ret = percpu_counter_init(&vm_committed_as, 0);
517 VM_BUG_ON(ret);
518 vm_region_jar = KMEM_CACHE(vm_region, SLAB_PANIC);
519}
520
521
522
523
524
525#ifdef CONFIG_DEBUG_NOMMU_REGIONS
526static noinline void validate_nommu_regions(void)
527{
528 struct vm_region *region, *last;
529 struct rb_node *p, *lastp;
530
531 lastp = rb_first(&nommu_region_tree);
532 if (!lastp)
533 return;
534
535 last = rb_entry(lastp, struct vm_region, vm_rb);
536 BUG_ON(unlikely(last->vm_end <= last->vm_start));
537 BUG_ON(unlikely(last->vm_top < last->vm_end));
538
539 while ((p = rb_next(lastp))) {
540 region = rb_entry(p, struct vm_region, vm_rb);
541 last = rb_entry(lastp, struct vm_region, vm_rb);
542
543 BUG_ON(unlikely(region->vm_end <= region->vm_start));
544 BUG_ON(unlikely(region->vm_top < region->vm_end));
545 BUG_ON(unlikely(region->vm_start < last->vm_top));
546
547 lastp = p;
548 }
549}
550#else
551static void validate_nommu_regions(void)
552{
553}
554#endif
555
556
557
558
559static void add_nommu_region(struct vm_region *region)
560{
561 struct vm_region *pregion;
562 struct rb_node **p, *parent;
563
564 validate_nommu_regions();
565
566 parent = NULL;
567 p = &nommu_region_tree.rb_node;
568 while (*p) {
569 parent = *p;
570 pregion = rb_entry(parent, struct vm_region, vm_rb);
571 if (region->vm_start < pregion->vm_start)
572 p = &(*p)->rb_left;
573 else if (region->vm_start > pregion->vm_start)
574 p = &(*p)->rb_right;
575 else if (pregion == region)
576 return;
577 else
578 BUG();
579 }
580
581 rb_link_node(®ion->vm_rb, parent, p);
582 rb_insert_color(®ion->vm_rb, &nommu_region_tree);
583
584 validate_nommu_regions();
585}
586
587
588
589
590static void delete_nommu_region(struct vm_region *region)
591{
592 BUG_ON(!nommu_region_tree.rb_node);
593
594 validate_nommu_regions();
595 rb_erase(®ion->vm_rb, &nommu_region_tree);
596 validate_nommu_regions();
597}
598
599
600
601
602static void free_page_series(unsigned long from, unsigned long to)
603{
604 for (; from < to; from += PAGE_SIZE) {
605 struct page *page = virt_to_page(from);
606
607 kdebug("- free %lx", from);
608 atomic_long_dec(&mmap_pages_allocated);
609 if (page_count(page) != 1)
610 kdebug("free page %p: refcount not one: %d",
611 page, page_count(page));
612 put_page(page);
613 }
614}
615
616
617
618
619
620
621
622static void __put_nommu_region(struct vm_region *region)
623 __releases(nommu_region_sem)
624{
625 kenter("%p{%d}", region, region->vm_usage);
626
627 BUG_ON(!nommu_region_tree.rb_node);
628
629 if (--region->vm_usage == 0) {
630 if (region->vm_top > region->vm_start)
631 delete_nommu_region(region);
632 up_write(&nommu_region_sem);
633
634 if (region->vm_file)
635 fput(region->vm_file);
636
637
638
639 if (region->vm_flags & VM_MAPPED_COPY) {
640 kdebug("free series");
641 free_page_series(region->vm_start, region->vm_top);
642 }
643 kmem_cache_free(vm_region_jar, region);
644 } else {
645 up_write(&nommu_region_sem);
646 }
647}
648
649
650
651
652static void put_nommu_region(struct vm_region *region)
653{
654 down_write(&nommu_region_sem);
655 __put_nommu_region(region);
656}
657
658
659
660
661static void protect_vma(struct vm_area_struct *vma, unsigned long flags)
662{
663#ifdef CONFIG_MPU
664 struct mm_struct *mm = vma->vm_mm;
665 long start = vma->vm_start & PAGE_MASK;
666 while (start < vma->vm_end) {
667 protect_page(mm, start, flags);
668 start += PAGE_SIZE;
669 }
670 update_protections(mm);
671#endif
672}
673
674
675
676
677
678
679
680static void add_vma_to_mm(struct mm_struct *mm, struct vm_area_struct *vma)
681{
682 struct vm_area_struct *pvma, *prev;
683 struct address_space *mapping;
684 struct rb_node **p, *parent, *rb_prev;
685
686 kenter(",%p", vma);
687
688 BUG_ON(!vma->vm_region);
689
690 mm->map_count++;
691 vma->vm_mm = mm;
692
693 protect_vma(vma, vma->vm_flags);
694
695
696 if (vma->vm_file) {
697 mapping = vma->vm_file->f_mapping;
698
699 mutex_lock(&mapping->i_mmap_mutex);
700 flush_dcache_mmap_lock(mapping);
701 vma_prio_tree_insert(vma, &mapping->i_mmap);
702 flush_dcache_mmap_unlock(mapping);
703 mutex_unlock(&mapping->i_mmap_mutex);
704 }
705
706
707 parent = rb_prev = NULL;
708 p = &mm->mm_rb.rb_node;
709 while (*p) {
710 parent = *p;
711 pvma = rb_entry(parent, struct vm_area_struct, vm_rb);
712
713
714
715 if (vma->vm_start < pvma->vm_start)
716 p = &(*p)->rb_left;
717 else if (vma->vm_start > pvma->vm_start) {
718 rb_prev = parent;
719 p = &(*p)->rb_right;
720 } else if (vma->vm_end < pvma->vm_end)
721 p = &(*p)->rb_left;
722 else if (vma->vm_end > pvma->vm_end) {
723 rb_prev = parent;
724 p = &(*p)->rb_right;
725 } else if (vma < pvma)
726 p = &(*p)->rb_left;
727 else if (vma > pvma) {
728 rb_prev = parent;
729 p = &(*p)->rb_right;
730 } else
731 BUG();
732 }
733
734 rb_link_node(&vma->vm_rb, parent, p);
735 rb_insert_color(&vma->vm_rb, &mm->mm_rb);
736
737
738 prev = NULL;
739 if (rb_prev)
740 prev = rb_entry(rb_prev, struct vm_area_struct, vm_rb);
741
742 __vma_link_list(mm, vma, prev, parent);
743}
744
745
746
747
748static void delete_vma_from_mm(struct vm_area_struct *vma)
749{
750 struct address_space *mapping;
751 struct mm_struct *mm = vma->vm_mm;
752
753 kenter("%p", vma);
754
755 protect_vma(vma, 0);
756
757 mm->map_count--;
758 if (mm->mmap_cache == vma)
759 mm->mmap_cache = NULL;
760
761
762 if (vma->vm_file) {
763 mapping = vma->vm_file->f_mapping;
764
765 mutex_lock(&mapping->i_mmap_mutex);
766 flush_dcache_mmap_lock(mapping);
767 vma_prio_tree_remove(vma, &mapping->i_mmap);
768 flush_dcache_mmap_unlock(mapping);
769 mutex_unlock(&mapping->i_mmap_mutex);
770 }
771
772
773 rb_erase(&vma->vm_rb, &mm->mm_rb);
774
775 if (vma->vm_prev)
776 vma->vm_prev->vm_next = vma->vm_next;
777 else
778 mm->mmap = vma->vm_next;
779
780 if (vma->vm_next)
781 vma->vm_next->vm_prev = vma->vm_prev;
782}
783
784
785
786
787static void delete_vma(struct mm_struct *mm, struct vm_area_struct *vma)
788{
789 kenter("%p", vma);
790 if (vma->vm_ops && vma->vm_ops->close)
791 vma->vm_ops->close(vma);
792 if (vma->vm_file) {
793 fput(vma->vm_file);
794 if (vma->vm_flags & VM_EXECUTABLE)
795 removed_exe_file_vma(mm);
796 }
797 put_nommu_region(vma->vm_region);
798 kmem_cache_free(vm_area_cachep, vma);
799}
800
801
802
803
804
805struct vm_area_struct *find_vma(struct mm_struct *mm, unsigned long addr)
806{
807 struct vm_area_struct *vma;
808
809
810 vma = mm->mmap_cache;
811 if (vma && vma->vm_start <= addr && vma->vm_end > addr)
812 return vma;
813
814
815
816 for (vma = mm->mmap; vma; vma = vma->vm_next) {
817 if (vma->vm_start > addr)
818 return NULL;
819 if (vma->vm_end > addr) {
820 mm->mmap_cache = vma;
821 return vma;
822 }
823 }
824
825 return NULL;
826}
827EXPORT_SYMBOL(find_vma);
828
829
830
831
832
833struct vm_area_struct *find_extend_vma(struct mm_struct *mm, unsigned long addr)
834{
835 return find_vma(mm, addr);
836}
837
838
839
840
841
842int expand_stack(struct vm_area_struct *vma, unsigned long address)
843{
844 return -ENOMEM;
845}
846
847
848
849
850
851static struct vm_area_struct *find_vma_exact(struct mm_struct *mm,
852 unsigned long addr,
853 unsigned long len)
854{
855 struct vm_area_struct *vma;
856 unsigned long end = addr + len;
857
858
859 vma = mm->mmap_cache;
860 if (vma && vma->vm_start == addr && vma->vm_end == end)
861 return vma;
862
863
864
865 for (vma = mm->mmap; vma; vma = vma->vm_next) {
866 if (vma->vm_start < addr)
867 continue;
868 if (vma->vm_start > addr)
869 return NULL;
870 if (vma->vm_end == end) {
871 mm->mmap_cache = vma;
872 return vma;
873 }
874 }
875
876 return NULL;
877}
878
879
880
881
882
883static int validate_mmap_request(struct file *file,
884 unsigned long addr,
885 unsigned long len,
886 unsigned long prot,
887 unsigned long flags,
888 unsigned long pgoff,
889 unsigned long *_capabilities)
890{
891 unsigned long capabilities, rlen;
892 unsigned long reqprot = prot;
893 int ret;
894
895
896 if (flags & MAP_FIXED) {
897 printk(KERN_DEBUG
898 "%d: Can't do fixed-address/overlay mmap of RAM\n",
899 current->pid);
900 return -EINVAL;
901 }
902
903 if ((flags & MAP_TYPE) != MAP_PRIVATE &&
904 (flags & MAP_TYPE) != MAP_SHARED)
905 return -EINVAL;
906
907 if (!len)
908 return -EINVAL;
909
910
911 rlen = PAGE_ALIGN(len);
912 if (!rlen || rlen > TASK_SIZE)
913 return -ENOMEM;
914
915
916 if ((pgoff + (rlen >> PAGE_SHIFT)) < pgoff)
917 return -EOVERFLOW;
918
919 if (file) {
920
921 struct address_space *mapping;
922
923
924 if (!file->f_op || !file->f_op->mmap)
925 return -ENODEV;
926
927
928
929
930
931 mapping = file->f_mapping;
932 if (!mapping)
933 mapping = file->f_path.dentry->d_inode->i_mapping;
934
935 capabilities = 0;
936 if (mapping && mapping->backing_dev_info)
937 capabilities = mapping->backing_dev_info->capabilities;
938
939 if (!capabilities) {
940
941
942 switch (file->f_path.dentry->d_inode->i_mode & S_IFMT) {
943 case S_IFREG:
944 case S_IFBLK:
945 capabilities = BDI_CAP_MAP_COPY;
946 break;
947
948 case S_IFCHR:
949 capabilities =
950 BDI_CAP_MAP_DIRECT |
951 BDI_CAP_READ_MAP |
952 BDI_CAP_WRITE_MAP;
953 break;
954
955 default:
956 return -EINVAL;
957 }
958 }
959
960
961
962 if (!file->f_op->get_unmapped_area)
963 capabilities &= ~BDI_CAP_MAP_DIRECT;
964 if (!file->f_op->read)
965 capabilities &= ~BDI_CAP_MAP_COPY;
966
967
968 if (!(file->f_mode & FMODE_READ))
969 return -EACCES;
970
971 if (flags & MAP_SHARED) {
972
973 if ((prot & PROT_WRITE) &&
974 !(file->f_mode & FMODE_WRITE))
975 return -EACCES;
976
977 if (IS_APPEND(file->f_path.dentry->d_inode) &&
978 (file->f_mode & FMODE_WRITE))
979 return -EACCES;
980
981 if (locks_verify_locked(file->f_path.dentry->d_inode))
982 return -EAGAIN;
983
984 if (!(capabilities & BDI_CAP_MAP_DIRECT))
985 return -ENODEV;
986
987
988 capabilities &= ~BDI_CAP_MAP_COPY;
989 }
990 else {
991
992
993 if (!(capabilities & BDI_CAP_MAP_COPY))
994 return -ENODEV;
995
996
997
998 if (prot & PROT_WRITE)
999 capabilities &= ~BDI_CAP_MAP_DIRECT;
1000 }
1001
1002 if (capabilities & BDI_CAP_MAP_DIRECT) {
1003 if (((prot & PROT_READ) && !(capabilities & BDI_CAP_READ_MAP)) ||
1004 ((prot & PROT_WRITE) && !(capabilities & BDI_CAP_WRITE_MAP)) ||
1005 ((prot & PROT_EXEC) && !(capabilities & BDI_CAP_EXEC_MAP))
1006 ) {
1007 capabilities &= ~BDI_CAP_MAP_DIRECT;
1008 if (flags & MAP_SHARED) {
1009 printk(KERN_WARNING
1010 "MAP_SHARED not completely supported on !MMU\n");
1011 return -EINVAL;
1012 }
1013 }
1014 }
1015
1016
1017
1018 if (file->f_path.mnt->mnt_flags & MNT_NOEXEC) {
1019 if (prot & PROT_EXEC)
1020 return -EPERM;
1021 }
1022 else if ((prot & PROT_READ) && !(prot & PROT_EXEC)) {
1023
1024 if (current->personality & READ_IMPLIES_EXEC) {
1025 if (capabilities & BDI_CAP_EXEC_MAP)
1026 prot |= PROT_EXEC;
1027 }
1028 }
1029 else if ((prot & PROT_READ) &&
1030 (prot & PROT_EXEC) &&
1031 !(capabilities & BDI_CAP_EXEC_MAP)
1032 ) {
1033
1034 capabilities &= ~BDI_CAP_MAP_DIRECT;
1035 }
1036 }
1037 else {
1038
1039
1040
1041 capabilities = BDI_CAP_MAP_COPY;
1042
1043
1044 if ((prot & PROT_READ) &&
1045 (current->personality & READ_IMPLIES_EXEC))
1046 prot |= PROT_EXEC;
1047 }
1048
1049
1050 ret = security_file_mmap(file, reqprot, prot, flags, addr, 0);
1051 if (ret < 0)
1052 return ret;
1053
1054
1055 *_capabilities = capabilities;
1056 return 0;
1057}
1058
1059
1060
1061
1062
1063static unsigned long determine_vm_flags(struct file *file,
1064 unsigned long prot,
1065 unsigned long flags,
1066 unsigned long capabilities)
1067{
1068 unsigned long vm_flags;
1069
1070 vm_flags = calc_vm_prot_bits(prot) | calc_vm_flag_bits(flags);
1071
1072
1073 if (!(capabilities & BDI_CAP_MAP_DIRECT)) {
1074
1075 vm_flags |= VM_MAYREAD | VM_MAYWRITE | VM_MAYEXEC;
1076 if (file && !(prot & PROT_WRITE))
1077 vm_flags |= VM_MAYSHARE;
1078 } else {
1079
1080
1081
1082 vm_flags |= VM_MAYSHARE | (capabilities & BDI_CAP_VMFLAGS);
1083 if (flags & MAP_SHARED)
1084 vm_flags |= VM_SHARED;
1085 }
1086
1087
1088
1089
1090
1091 if ((flags & MAP_PRIVATE) && current->ptrace)
1092 vm_flags &= ~VM_MAYSHARE;
1093
1094 return vm_flags;
1095}
1096
1097
1098
1099
1100
1101static int do_mmap_shared_file(struct vm_area_struct *vma)
1102{
1103 int ret;
1104
1105 ret = vma->vm_file->f_op->mmap(vma->vm_file, vma);
1106 if (ret == 0) {
1107 vma->vm_region->vm_top = vma->vm_region->vm_end;
1108 return 0;
1109 }
1110 if (ret != -ENOSYS)
1111 return ret;
1112
1113
1114
1115
1116 return -ENODEV;
1117}
1118
1119
1120
1121
1122static int do_mmap_private(struct vm_area_struct *vma,
1123 struct vm_region *region,
1124 unsigned long len,
1125 unsigned long capabilities)
1126{
1127 struct page *pages;
1128 unsigned long total, point, n;
1129 void *base;
1130 int ret, order;
1131
1132
1133
1134
1135
1136 if (capabilities & BDI_CAP_MAP_DIRECT) {
1137 ret = vma->vm_file->f_op->mmap(vma->vm_file, vma);
1138 if (ret == 0) {
1139
1140 BUG_ON(!(vma->vm_flags & VM_MAYSHARE));
1141 vma->vm_region->vm_top = vma->vm_region->vm_end;
1142 return 0;
1143 }
1144 if (ret != -ENOSYS)
1145 return ret;
1146
1147
1148
1149
1150 }
1151
1152
1153
1154
1155
1156
1157 order = get_order(len);
1158 kdebug("alloc order %d for %lx", order, len);
1159
1160 pages = alloc_pages(GFP_KERNEL, order);
1161 if (!pages)
1162 goto enomem;
1163
1164 total = 1 << order;
1165 atomic_long_add(total, &mmap_pages_allocated);
1166
1167 point = len >> PAGE_SHIFT;
1168
1169
1170
1171 if (sysctl_nr_trim_pages && total - point >= sysctl_nr_trim_pages) {
1172 while (total > point) {
1173 order = ilog2(total - point);
1174 n = 1 << order;
1175 kdebug("shave %lu/%lu @%lu", n, total - point, total);
1176 atomic_long_sub(n, &mmap_pages_allocated);
1177 total -= n;
1178 set_page_refcounted(pages + total);
1179 __free_pages(pages + total, order);
1180 }
1181 }
1182
1183 for (point = 1; point < total; point++)
1184 set_page_refcounted(&pages[point]);
1185
1186 base = page_address(pages);
1187 region->vm_flags = vma->vm_flags |= VM_MAPPED_COPY;
1188 region->vm_start = (unsigned long) base;
1189 region->vm_end = region->vm_start + len;
1190 region->vm_top = region->vm_start + (total << PAGE_SHIFT);
1191
1192 vma->vm_start = region->vm_start;
1193 vma->vm_end = region->vm_start + len;
1194
1195 if (vma->vm_file) {
1196
1197 mm_segment_t old_fs;
1198 loff_t fpos;
1199
1200 fpos = vma->vm_pgoff;
1201 fpos <<= PAGE_SHIFT;
1202
1203 old_fs = get_fs();
1204 set_fs(KERNEL_DS);
1205 ret = vma->vm_file->f_op->read(vma->vm_file, base, len, &fpos);
1206 set_fs(old_fs);
1207
1208 if (ret < 0)
1209 goto error_free;
1210
1211
1212 if (ret < len)
1213 memset(base + ret, 0, len - ret);
1214
1215 }
1216
1217 return 0;
1218
1219error_free:
1220 free_page_series(region->vm_start, region->vm_top);
1221 region->vm_start = vma->vm_start = 0;
1222 region->vm_end = vma->vm_end = 0;
1223 region->vm_top = 0;
1224 return ret;
1225
1226enomem:
1227 printk("Allocation of length %lu from process %d (%s) failed\n",
1228 len, current->pid, current->comm);
1229 show_free_areas(0);
1230 return -ENOMEM;
1231}
1232
1233
1234
1235
1236unsigned long do_mmap_pgoff(struct file *file,
1237 unsigned long addr,
1238 unsigned long len,
1239 unsigned long prot,
1240 unsigned long flags,
1241 unsigned long pgoff)
1242{
1243 struct vm_area_struct *vma;
1244 struct vm_region *region;
1245 struct rb_node *rb;
1246 unsigned long capabilities, vm_flags, result;
1247 int ret;
1248
1249 kenter(",%lx,%lx,%lx,%lx,%lx", addr, len, prot, flags, pgoff);
1250
1251
1252
1253 ret = validate_mmap_request(file, addr, len, prot, flags, pgoff,
1254 &capabilities);
1255 if (ret < 0) {
1256 kleave(" = %d [val]", ret);
1257 return ret;
1258 }
1259
1260
1261 addr = 0;
1262 len = PAGE_ALIGN(len);
1263
1264
1265
1266 vm_flags = determine_vm_flags(file, prot, flags, capabilities);
1267
1268
1269 region = kmem_cache_zalloc(vm_region_jar, GFP_KERNEL);
1270 if (!region)
1271 goto error_getting_region;
1272
1273 vma = kmem_cache_zalloc(vm_area_cachep, GFP_KERNEL);
1274 if (!vma)
1275 goto error_getting_vma;
1276
1277 region->vm_usage = 1;
1278 region->vm_flags = vm_flags;
1279 region->vm_pgoff = pgoff;
1280
1281 INIT_LIST_HEAD(&vma->anon_vma_chain);
1282 vma->vm_flags = vm_flags;
1283 vma->vm_pgoff = pgoff;
1284
1285 if (file) {
1286 region->vm_file = file;
1287 get_file(file);
1288 vma->vm_file = file;
1289 get_file(file);
1290 if (vm_flags & VM_EXECUTABLE) {
1291 added_exe_file_vma(current->mm);
1292 vma->vm_mm = current->mm;
1293 }
1294 }
1295
1296 down_write(&nommu_region_sem);
1297
1298
1299
1300
1301
1302
1303
1304
1305
1306 if (vm_flags & VM_MAYSHARE) {
1307 struct vm_region *pregion;
1308 unsigned long pglen, rpglen, pgend, rpgend, start;
1309
1310 pglen = (len + PAGE_SIZE - 1) >> PAGE_SHIFT;
1311 pgend = pgoff + pglen;
1312
1313 for (rb = rb_first(&nommu_region_tree); rb; rb = rb_next(rb)) {
1314 pregion = rb_entry(rb, struct vm_region, vm_rb);
1315
1316 if (!(pregion->vm_flags & VM_MAYSHARE))
1317 continue;
1318
1319
1320 if (pregion->vm_file->f_path.dentry->d_inode !=
1321 file->f_path.dentry->d_inode)
1322 continue;
1323
1324 if (pregion->vm_pgoff >= pgend)
1325 continue;
1326
1327 rpglen = pregion->vm_end - pregion->vm_start;
1328 rpglen = (rpglen + PAGE_SIZE - 1) >> PAGE_SHIFT;
1329 rpgend = pregion->vm_pgoff + rpglen;
1330 if (pgoff >= rpgend)
1331 continue;
1332
1333
1334
1335 if ((pregion->vm_pgoff != pgoff || rpglen != pglen) &&
1336 !(pgoff >= pregion->vm_pgoff && pgend <= rpgend)) {
1337
1338 if (!(capabilities & BDI_CAP_MAP_DIRECT))
1339 goto sharing_violation;
1340 continue;
1341 }
1342
1343
1344 pregion->vm_usage++;
1345 vma->vm_region = pregion;
1346 start = pregion->vm_start;
1347 start += (pgoff - pregion->vm_pgoff) << PAGE_SHIFT;
1348 vma->vm_start = start;
1349 vma->vm_end = start + len;
1350
1351 if (pregion->vm_flags & VM_MAPPED_COPY) {
1352 kdebug("share copy");
1353 vma->vm_flags |= VM_MAPPED_COPY;
1354 } else {
1355 kdebug("share mmap");
1356 ret = do_mmap_shared_file(vma);
1357 if (ret < 0) {
1358 vma->vm_region = NULL;
1359 vma->vm_start = 0;
1360 vma->vm_end = 0;
1361 pregion->vm_usage--;
1362 pregion = NULL;
1363 goto error_just_free;
1364 }
1365 }
1366 fput(region->vm_file);
1367 kmem_cache_free(vm_region_jar, region);
1368 region = pregion;
1369 result = start;
1370 goto share;
1371 }
1372
1373
1374
1375
1376
1377 if (capabilities & BDI_CAP_MAP_DIRECT) {
1378 addr = file->f_op->get_unmapped_area(file, addr, len,
1379 pgoff, flags);
1380 if (IS_ERR_VALUE(addr)) {
1381 ret = addr;
1382 if (ret != -ENOSYS)
1383 goto error_just_free;
1384
1385
1386
1387
1388 ret = -ENODEV;
1389 if (!(capabilities & BDI_CAP_MAP_COPY))
1390 goto error_just_free;
1391
1392 capabilities &= ~BDI_CAP_MAP_DIRECT;
1393 } else {
1394 vma->vm_start = region->vm_start = addr;
1395 vma->vm_end = region->vm_end = addr + len;
1396 }
1397 }
1398 }
1399
1400 vma->vm_region = region;
1401
1402
1403
1404
1405 if (file && vma->vm_flags & VM_SHARED)
1406 ret = do_mmap_shared_file(vma);
1407 else
1408 ret = do_mmap_private(vma, region, len, capabilities);
1409 if (ret < 0)
1410 goto error_just_free;
1411 add_nommu_region(region);
1412
1413
1414 if (!vma->vm_file && !(flags & MAP_UNINITIALIZED))
1415 memset((void *)region->vm_start, 0,
1416 region->vm_end - region->vm_start);
1417
1418
1419 result = vma->vm_start;
1420
1421 current->mm->total_vm += len >> PAGE_SHIFT;
1422
1423share:
1424 add_vma_to_mm(current->mm, vma);
1425
1426
1427
1428 if (vma->vm_flags & VM_EXEC && !region->vm_icache_flushed) {
1429 flush_icache_range(region->vm_start, region->vm_end);
1430 region->vm_icache_flushed = true;
1431 }
1432
1433 up_write(&nommu_region_sem);
1434
1435 kleave(" = %lx", result);
1436 return result;
1437
1438error_just_free:
1439 up_write(&nommu_region_sem);
1440error:
1441 if (region->vm_file)
1442 fput(region->vm_file);
1443 kmem_cache_free(vm_region_jar, region);
1444 if (vma->vm_file)
1445 fput(vma->vm_file);
1446 if (vma->vm_flags & VM_EXECUTABLE)
1447 removed_exe_file_vma(vma->vm_mm);
1448 kmem_cache_free(vm_area_cachep, vma);
1449 kleave(" = %d", ret);
1450 return ret;
1451
1452sharing_violation:
1453 up_write(&nommu_region_sem);
1454 printk(KERN_WARNING "Attempt to share mismatched mappings\n");
1455 ret = -EINVAL;
1456 goto error;
1457
1458error_getting_vma:
1459 kmem_cache_free(vm_region_jar, region);
1460 printk(KERN_WARNING "Allocation of vma for %lu byte allocation"
1461 " from process %d failed\n",
1462 len, current->pid);
1463 show_free_areas(0);
1464 return -ENOMEM;
1465
1466error_getting_region:
1467 printk(KERN_WARNING "Allocation of vm region for %lu byte allocation"
1468 " from process %d failed\n",
1469 len, current->pid);
1470 show_free_areas(0);
1471 return -ENOMEM;
1472}
1473EXPORT_SYMBOL(do_mmap_pgoff);
1474
1475SYSCALL_DEFINE6(mmap_pgoff, unsigned long, addr, unsigned long, len,
1476 unsigned long, prot, unsigned long, flags,
1477 unsigned long, fd, unsigned long, pgoff)
1478{
1479 struct file *file = NULL;
1480 unsigned long retval = -EBADF;
1481
1482 audit_mmap_fd(fd, flags);
1483 if (!(flags & MAP_ANONYMOUS)) {
1484 file = fget(fd);
1485 if (!file)
1486 goto out;
1487 }
1488
1489 flags &= ~(MAP_EXECUTABLE | MAP_DENYWRITE);
1490
1491 down_write(¤t->mm->mmap_sem);
1492 retval = do_mmap_pgoff(file, addr, len, prot, flags, pgoff);
1493 up_write(¤t->mm->mmap_sem);
1494
1495 if (file)
1496 fput(file);
1497out:
1498 return retval;
1499}
1500
1501#ifdef __ARCH_WANT_SYS_OLD_MMAP
1502struct mmap_arg_struct {
1503 unsigned long addr;
1504 unsigned long len;
1505 unsigned long prot;
1506 unsigned long flags;
1507 unsigned long fd;
1508 unsigned long offset;
1509};
1510
1511SYSCALL_DEFINE1(old_mmap, struct mmap_arg_struct __user *, arg)
1512{
1513 struct mmap_arg_struct a;
1514
1515 if (copy_from_user(&a, arg, sizeof(a)))
1516 return -EFAULT;
1517 if (a.offset & ~PAGE_MASK)
1518 return -EINVAL;
1519
1520 return sys_mmap_pgoff(a.addr, a.len, a.prot, a.flags, a.fd,
1521 a.offset >> PAGE_SHIFT);
1522}
1523#endif
1524
1525
1526
1527
1528
1529int split_vma(struct mm_struct *mm, struct vm_area_struct *vma,
1530 unsigned long addr, int new_below)
1531{
1532 struct vm_area_struct *new;
1533 struct vm_region *region;
1534 unsigned long npages;
1535
1536 kenter("");
1537
1538
1539
1540 if (vma->vm_file)
1541 return -ENOMEM;
1542
1543 if (mm->map_count >= sysctl_max_map_count)
1544 return -ENOMEM;
1545
1546 region = kmem_cache_alloc(vm_region_jar, GFP_KERNEL);
1547 if (!region)
1548 return -ENOMEM;
1549
1550 new = kmem_cache_alloc(vm_area_cachep, GFP_KERNEL);
1551 if (!new) {
1552 kmem_cache_free(vm_region_jar, region);
1553 return -ENOMEM;
1554 }
1555
1556
1557 *new = *vma;
1558 *region = *vma->vm_region;
1559 new->vm_region = region;
1560
1561 npages = (addr - vma->vm_start) >> PAGE_SHIFT;
1562
1563 if (new_below) {
1564 region->vm_top = region->vm_end = new->vm_end = addr;
1565 } else {
1566 region->vm_start = new->vm_start = addr;
1567 region->vm_pgoff = new->vm_pgoff += npages;
1568 }
1569
1570 if (new->vm_ops && new->vm_ops->open)
1571 new->vm_ops->open(new);
1572
1573 delete_vma_from_mm(vma);
1574 down_write(&nommu_region_sem);
1575 delete_nommu_region(vma->vm_region);
1576 if (new_below) {
1577 vma->vm_region->vm_start = vma->vm_start = addr;
1578 vma->vm_region->vm_pgoff = vma->vm_pgoff += npages;
1579 } else {
1580 vma->vm_region->vm_end = vma->vm_end = addr;
1581 vma->vm_region->vm_top = addr;
1582 }
1583 add_nommu_region(vma->vm_region);
1584 add_nommu_region(new->vm_region);
1585 up_write(&nommu_region_sem);
1586 add_vma_to_mm(mm, vma);
1587 add_vma_to_mm(mm, new);
1588 return 0;
1589}
1590
1591
1592
1593
1594
1595static int shrink_vma(struct mm_struct *mm,
1596 struct vm_area_struct *vma,
1597 unsigned long from, unsigned long to)
1598{
1599 struct vm_region *region;
1600
1601 kenter("");
1602
1603
1604
1605 delete_vma_from_mm(vma);
1606 if (from > vma->vm_start)
1607 vma->vm_end = from;
1608 else
1609 vma->vm_start = to;
1610 add_vma_to_mm(mm, vma);
1611
1612
1613 region = vma->vm_region;
1614 BUG_ON(region->vm_usage != 1);
1615
1616 down_write(&nommu_region_sem);
1617 delete_nommu_region(region);
1618 if (from > region->vm_start) {
1619 to = region->vm_top;
1620 region->vm_top = region->vm_end = from;
1621 } else {
1622 region->vm_start = to;
1623 }
1624 add_nommu_region(region);
1625 up_write(&nommu_region_sem);
1626
1627 free_page_series(from, to);
1628 return 0;
1629}
1630
1631
1632
1633
1634
1635
1636int do_munmap(struct mm_struct *mm, unsigned long start, size_t len)
1637{
1638 struct vm_area_struct *vma;
1639 unsigned long end;
1640 int ret;
1641
1642 kenter(",%lx,%zx", start, len);
1643
1644 len = PAGE_ALIGN(len);
1645 if (len == 0)
1646 return -EINVAL;
1647
1648 end = start + len;
1649
1650
1651 vma = find_vma(mm, start);
1652 if (!vma) {
1653 static int limit = 0;
1654 if (limit < 5) {
1655 printk(KERN_WARNING
1656 "munmap of memory not mmapped by process %d"
1657 " (%s): 0x%lx-0x%lx\n",
1658 current->pid, current->comm,
1659 start, start + len - 1);
1660 limit++;
1661 }
1662 return -EINVAL;
1663 }
1664
1665
1666 if (vma->vm_file) {
1667 do {
1668 if (start > vma->vm_start) {
1669 kleave(" = -EINVAL [miss]");
1670 return -EINVAL;
1671 }
1672 if (end == vma->vm_end)
1673 goto erase_whole_vma;
1674 vma = vma->vm_next;
1675 } while (vma);
1676 kleave(" = -EINVAL [split file]");
1677 return -EINVAL;
1678 } else {
1679
1680 if (start == vma->vm_start && end == vma->vm_end)
1681 goto erase_whole_vma;
1682 if (start < vma->vm_start || end > vma->vm_end) {
1683 kleave(" = -EINVAL [superset]");
1684 return -EINVAL;
1685 }
1686 if (start & ~PAGE_MASK) {
1687 kleave(" = -EINVAL [unaligned start]");
1688 return -EINVAL;
1689 }
1690 if (end != vma->vm_end && end & ~PAGE_MASK) {
1691 kleave(" = -EINVAL [unaligned split]");
1692 return -EINVAL;
1693 }
1694 if (start != vma->vm_start && end != vma->vm_end) {
1695 ret = split_vma(mm, vma, start, 1);
1696 if (ret < 0) {
1697 kleave(" = %d [split]", ret);
1698 return ret;
1699 }
1700 }
1701 return shrink_vma(mm, vma, start, end);
1702 }
1703
1704erase_whole_vma:
1705 delete_vma_from_mm(vma);
1706 delete_vma(mm, vma);
1707 kleave(" = 0");
1708 return 0;
1709}
1710EXPORT_SYMBOL(do_munmap);
1711
1712SYSCALL_DEFINE2(munmap, unsigned long, addr, size_t, len)
1713{
1714 int ret;
1715 struct mm_struct *mm = current->mm;
1716
1717 down_write(&mm->mmap_sem);
1718 ret = do_munmap(mm, addr, len);
1719 up_write(&mm->mmap_sem);
1720 return ret;
1721}
1722
1723
1724
1725
1726void exit_mmap(struct mm_struct *mm)
1727{
1728 struct vm_area_struct *vma;
1729
1730 if (!mm)
1731 return;
1732
1733 kenter("");
1734
1735 mm->total_vm = 0;
1736
1737 while ((vma = mm->mmap)) {
1738 mm->mmap = vma->vm_next;
1739 delete_vma_from_mm(vma);
1740 delete_vma(mm, vma);
1741 cond_resched();
1742 }
1743
1744 kleave("");
1745}
1746
1747unsigned long do_brk(unsigned long addr, unsigned long len)
1748{
1749 return -ENOMEM;
1750}
1751
1752
1753
1754
1755
1756
1757
1758
1759
1760
1761
1762unsigned long do_mremap(unsigned long addr,
1763 unsigned long old_len, unsigned long new_len,
1764 unsigned long flags, unsigned long new_addr)
1765{
1766 struct vm_area_struct *vma;
1767
1768
1769 old_len = PAGE_ALIGN(old_len);
1770 new_len = PAGE_ALIGN(new_len);
1771 if (old_len == 0 || new_len == 0)
1772 return (unsigned long) -EINVAL;
1773
1774 if (addr & ~PAGE_MASK)
1775 return -EINVAL;
1776
1777 if (flags & MREMAP_FIXED && new_addr != addr)
1778 return (unsigned long) -EINVAL;
1779
1780 vma = find_vma_exact(current->mm, addr, old_len);
1781 if (!vma)
1782 return (unsigned long) -EINVAL;
1783
1784 if (vma->vm_end != vma->vm_start + old_len)
1785 return (unsigned long) -EFAULT;
1786
1787 if (vma->vm_flags & VM_MAYSHARE)
1788 return (unsigned long) -EPERM;
1789
1790 if (new_len > vma->vm_region->vm_end - vma->vm_region->vm_start)
1791 return (unsigned long) -ENOMEM;
1792
1793
1794 vma->vm_end = vma->vm_start + new_len;
1795 return vma->vm_start;
1796}
1797EXPORT_SYMBOL(do_mremap);
1798
1799SYSCALL_DEFINE5(mremap, unsigned long, addr, unsigned long, old_len,
1800 unsigned long, new_len, unsigned long, flags,
1801 unsigned long, new_addr)
1802{
1803 unsigned long ret;
1804
1805 down_write(¤t->mm->mmap_sem);
1806 ret = do_mremap(addr, old_len, new_len, flags, new_addr);
1807 up_write(¤t->mm->mmap_sem);
1808 return ret;
1809}
1810
1811struct page *follow_page(struct vm_area_struct *vma, unsigned long address,
1812 unsigned int foll_flags)
1813{
1814 return NULL;
1815}
1816
1817int remap_pfn_range(struct vm_area_struct *vma, unsigned long addr,
1818 unsigned long pfn, unsigned long size, pgprot_t prot)
1819{
1820 if (addr != (pfn << PAGE_SHIFT))
1821 return -EINVAL;
1822
1823 vma->vm_flags |= VM_IO | VM_RESERVED | VM_PFNMAP;
1824 return 0;
1825}
1826EXPORT_SYMBOL(remap_pfn_range);
1827
1828int remap_vmalloc_range(struct vm_area_struct *vma, void *addr,
1829 unsigned long pgoff)
1830{
1831 unsigned int size = vma->vm_end - vma->vm_start;
1832
1833 if (!(vma->vm_flags & VM_USERMAP))
1834 return -EINVAL;
1835
1836 vma->vm_start = (unsigned long)(addr + (pgoff << PAGE_SHIFT));
1837 vma->vm_end = vma->vm_start + size;
1838
1839 return 0;
1840}
1841EXPORT_SYMBOL(remap_vmalloc_range);
1842
1843unsigned long arch_get_unmapped_area(struct file *file, unsigned long addr,
1844 unsigned long len, unsigned long pgoff, unsigned long flags)
1845{
1846 return -ENOMEM;
1847}
1848
1849void arch_unmap_area(struct mm_struct *mm, unsigned long addr)
1850{
1851}
1852
1853void unmap_mapping_range(struct address_space *mapping,
1854 loff_t const holebegin, loff_t const holelen,
1855 int even_cows)
1856{
1857}
1858EXPORT_SYMBOL(unmap_mapping_range);
1859
1860
1861
1862
1863
1864
1865
1866
1867
1868
1869
1870
1871
1872
1873
1874
1875
1876int __vm_enough_memory(struct mm_struct *mm, long pages, int cap_sys_admin)
1877{
1878 unsigned long free, allowed;
1879
1880 vm_acct_memory(pages);
1881
1882
1883
1884
1885 if (sysctl_overcommit_memory == OVERCOMMIT_ALWAYS)
1886 return 0;
1887
1888 if (sysctl_overcommit_memory == OVERCOMMIT_GUESS) {
1889 free = global_page_state(NR_FREE_PAGES);
1890 free += global_page_state(NR_FILE_PAGES);
1891
1892
1893
1894
1895
1896
1897
1898 free -= global_page_state(NR_SHMEM);
1899
1900 free += nr_swap_pages;
1901
1902
1903
1904
1905
1906
1907
1908 free += global_page_state(NR_SLAB_RECLAIMABLE);
1909
1910
1911
1912
1913 if (free <= totalreserve_pages)
1914 goto error;
1915 else
1916 free -= totalreserve_pages;
1917
1918
1919
1920
1921 if (!cap_sys_admin)
1922 free -= free / 32;
1923
1924 if (free > pages)
1925 return 0;
1926
1927 goto error;
1928 }
1929
1930 allowed = totalram_pages * sysctl_overcommit_ratio / 100;
1931
1932
1933
1934 if (!cap_sys_admin)
1935 allowed -= allowed / 32;
1936 allowed += total_swap_pages;
1937
1938
1939
1940 if (mm)
1941 allowed -= mm->total_vm / 32;
1942
1943 if (percpu_counter_read_positive(&vm_committed_as) < allowed)
1944 return 0;
1945
1946error:
1947 vm_unacct_memory(pages);
1948
1949 return -ENOMEM;
1950}
1951
1952int in_gate_area_no_mm(unsigned long addr)
1953{
1954 return 0;
1955}
1956
1957int filemap_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
1958{
1959 BUG();
1960 return 0;
1961}
1962EXPORT_SYMBOL(filemap_fault);
1963
1964static int __access_remote_vm(struct task_struct *tsk, struct mm_struct *mm,
1965 unsigned long addr, void *buf, int len, int write)
1966{
1967 struct vm_area_struct *vma;
1968
1969 down_read(&mm->mmap_sem);
1970
1971
1972 vma = find_vma(mm, addr);
1973 if (vma) {
1974
1975 if (addr + len >= vma->vm_end)
1976 len = vma->vm_end - addr;
1977
1978
1979 if (write && vma->vm_flags & VM_MAYWRITE)
1980 copy_to_user_page(vma, NULL, addr,
1981 (void *) addr, buf, len);
1982 else if (!write && vma->vm_flags & VM_MAYREAD)
1983 copy_from_user_page(vma, NULL, addr,
1984 buf, (void *) addr, len);
1985 else
1986 len = 0;
1987 } else {
1988 len = 0;
1989 }
1990
1991 up_read(&mm->mmap_sem);
1992
1993 return len;
1994}
1995
1996
1997
1998
1999
2000
2001
2002
2003
2004
2005
2006int access_remote_vm(struct mm_struct *mm, unsigned long addr,
2007 void *buf, int len, int write)
2008{
2009 return __access_remote_vm(NULL, mm, addr, buf, len, write);
2010}
2011
2012
2013
2014
2015
2016int access_process_vm(struct task_struct *tsk, unsigned long addr, void *buf, int len, int write)
2017{
2018 struct mm_struct *mm;
2019
2020 if (addr + len < addr)
2021 return 0;
2022
2023 mm = get_task_mm(tsk);
2024 if (!mm)
2025 return 0;
2026
2027 len = __access_remote_vm(tsk, mm, addr, buf, len, write);
2028
2029 mmput(mm);
2030 return len;
2031}
2032
2033
2034
2035
2036
2037
2038
2039
2040
2041
2042
2043
2044int nommu_shrink_inode_mappings(struct inode *inode, size_t size,
2045 size_t newsize)
2046{
2047 struct vm_area_struct *vma;
2048 struct prio_tree_iter iter;
2049 struct vm_region *region;
2050 pgoff_t low, high;
2051 size_t r_size, r_top;
2052
2053 low = newsize >> PAGE_SHIFT;
2054 high = (size + PAGE_SIZE - 1) >> PAGE_SHIFT;
2055
2056 down_write(&nommu_region_sem);
2057 mutex_lock(&inode->i_mapping->i_mmap_mutex);
2058
2059
2060 vma_prio_tree_foreach(vma, &iter, &inode->i_mapping->i_mmap,
2061 low, high) {
2062
2063
2064 if (vma->vm_flags & VM_SHARED) {
2065 mutex_unlock(&inode->i_mapping->i_mmap_mutex);
2066 up_write(&nommu_region_sem);
2067 return -ETXTBSY;
2068 }
2069 }
2070
2071
2072
2073
2074
2075
2076
2077 vma_prio_tree_foreach(vma, &iter, &inode->i_mapping->i_mmap,
2078 0, ULONG_MAX) {
2079 if (!(vma->vm_flags & VM_SHARED))
2080 continue;
2081
2082 region = vma->vm_region;
2083 r_size = region->vm_top - region->vm_start;
2084 r_top = (region->vm_pgoff << PAGE_SHIFT) + r_size;
2085
2086 if (r_top > newsize) {
2087 region->vm_top -= r_top - newsize;
2088 if (region->vm_end > region->vm_top)
2089 region->vm_end = region->vm_top;
2090 }
2091 }
2092
2093 mutex_unlock(&inode->i_mapping->i_mmap_mutex);
2094 up_write(&nommu_region_sem);
2095 return 0;
2096}
2097