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mm: larger stack guard gap, between vmas
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1da177e4 1#include <linux/mm.h>
615d6e87 2#include <linux/vmacache.h>
1da177e4 3#include <linux/hugetlb.h>
22e057c5 4#include <linux/huge_mm.h>
1da177e4
LT
5#include <linux/mount.h>
6#include <linux/seq_file.h>
e070ad49 7#include <linux/highmem.h>
5096add8 8#include <linux/ptrace.h>
5a0e3ad6 9#include <linux/slab.h>
6e21c8f1
CL
10#include <linux/pagemap.h>
11#include <linux/mempolicy.h>
22e057c5 12#include <linux/rmap.h>
85863e47
MM
13#include <linux/swap.h>
14#include <linux/swapops.h>
0f8975ec 15#include <linux/mmu_notifier.h>
33c3fc71 16#include <linux/page_idle.h>
6a15a370 17#include <linux/shmem_fs.h>
e070ad49 18
1da177e4 19#include <asm/elf.h>
7c0f6ba6 20#include <linux/uaccess.h>
e070ad49 21#include <asm/tlbflush.h>
1da177e4
LT
22#include "internal.h"
23
df5f8314 24void task_mem(struct seq_file *m, struct mm_struct *mm)
1da177e4 25{
84638335 26 unsigned long text, lib, swap, ptes, pmds, anon, file, shmem;
365e9c87
HD
27 unsigned long hiwater_vm, total_vm, hiwater_rss, total_rss;
28
8cee852e
JM
29 anon = get_mm_counter(mm, MM_ANONPAGES);
30 file = get_mm_counter(mm, MM_FILEPAGES);
31 shmem = get_mm_counter(mm, MM_SHMEMPAGES);
32
365e9c87
HD
33 /*
34 * Note: to minimize their overhead, mm maintains hiwater_vm and
35 * hiwater_rss only when about to *lower* total_vm or rss. Any
36 * collector of these hiwater stats must therefore get total_vm
37 * and rss too, which will usually be the higher. Barriers? not
38 * worth the effort, such snapshots can always be inconsistent.
39 */
40 hiwater_vm = total_vm = mm->total_vm;
41 if (hiwater_vm < mm->hiwater_vm)
42 hiwater_vm = mm->hiwater_vm;
8cee852e 43 hiwater_rss = total_rss = anon + file + shmem;
365e9c87
HD
44 if (hiwater_rss < mm->hiwater_rss)
45 hiwater_rss = mm->hiwater_rss;
1da177e4 46
1da177e4
LT
47 text = (PAGE_ALIGN(mm->end_code) - (mm->start_code & PAGE_MASK)) >> 10;
48 lib = (mm->exec_vm << (PAGE_SHIFT-10)) - text;
b084d435 49 swap = get_mm_counter(mm, MM_SWAPENTS);
dc6c9a35
KS
50 ptes = PTRS_PER_PTE * sizeof(pte_t) * atomic_long_read(&mm->nr_ptes);
51 pmds = PTRS_PER_PMD * sizeof(pmd_t) * mm_nr_pmds(mm);
df5f8314 52 seq_printf(m,
365e9c87 53 "VmPeak:\t%8lu kB\n"
1da177e4
LT
54 "VmSize:\t%8lu kB\n"
55 "VmLck:\t%8lu kB\n"
bc3e53f6 56 "VmPin:\t%8lu kB\n"
365e9c87 57 "VmHWM:\t%8lu kB\n"
1da177e4 58 "VmRSS:\t%8lu kB\n"
8cee852e
JM
59 "RssAnon:\t%8lu kB\n"
60 "RssFile:\t%8lu kB\n"
61 "RssShmem:\t%8lu kB\n"
1da177e4
LT
62 "VmData:\t%8lu kB\n"
63 "VmStk:\t%8lu kB\n"
64 "VmExe:\t%8lu kB\n"
65 "VmLib:\t%8lu kB\n"
b084d435 66 "VmPTE:\t%8lu kB\n"
dc6c9a35 67 "VmPMD:\t%8lu kB\n"
b084d435 68 "VmSwap:\t%8lu kB\n",
365e9c87 69 hiwater_vm << (PAGE_SHIFT-10),
314e51b9 70 total_vm << (PAGE_SHIFT-10),
1da177e4 71 mm->locked_vm << (PAGE_SHIFT-10),
bc3e53f6 72 mm->pinned_vm << (PAGE_SHIFT-10),
365e9c87
HD
73 hiwater_rss << (PAGE_SHIFT-10),
74 total_rss << (PAGE_SHIFT-10),
8cee852e
JM
75 anon << (PAGE_SHIFT-10),
76 file << (PAGE_SHIFT-10),
77 shmem << (PAGE_SHIFT-10),
84638335 78 mm->data_vm << (PAGE_SHIFT-10),
1da177e4 79 mm->stack_vm << (PAGE_SHIFT-10), text, lib,
dc6c9a35
KS
80 ptes >> 10,
81 pmds >> 10,
b084d435 82 swap << (PAGE_SHIFT-10));
5d317b2b 83 hugetlb_report_usage(m, mm);
1da177e4
LT
84}
85
86unsigned long task_vsize(struct mm_struct *mm)
87{
88 return PAGE_SIZE * mm->total_vm;
89}
90
a2ade7b6
AD
91unsigned long task_statm(struct mm_struct *mm,
92 unsigned long *shared, unsigned long *text,
93 unsigned long *data, unsigned long *resident)
1da177e4 94{
eca56ff9
JM
95 *shared = get_mm_counter(mm, MM_FILEPAGES) +
96 get_mm_counter(mm, MM_SHMEMPAGES);
1da177e4
LT
97 *text = (PAGE_ALIGN(mm->end_code) - (mm->start_code & PAGE_MASK))
98 >> PAGE_SHIFT;
84638335 99 *data = mm->data_vm + mm->stack_vm;
d559db08 100 *resident = *shared + get_mm_counter(mm, MM_ANONPAGES);
1da177e4
LT
101 return mm->total_vm;
102}
103
9e781440
KH
104#ifdef CONFIG_NUMA
105/*
498f2371 106 * Save get_task_policy() for show_numa_map().
9e781440
KH
107 */
108static void hold_task_mempolicy(struct proc_maps_private *priv)
109{
110 struct task_struct *task = priv->task;
111
112 task_lock(task);
498f2371 113 priv->task_mempolicy = get_task_policy(task);
9e781440
KH
114 mpol_get(priv->task_mempolicy);
115 task_unlock(task);
116}
117static void release_task_mempolicy(struct proc_maps_private *priv)
118{
119 mpol_put(priv->task_mempolicy);
120}
121#else
122static void hold_task_mempolicy(struct proc_maps_private *priv)
123{
124}
125static void release_task_mempolicy(struct proc_maps_private *priv)
126{
127}
128#endif
129
59b4bf12 130static void vma_stop(struct proc_maps_private *priv)
a6198797 131{
59b4bf12
ON
132 struct mm_struct *mm = priv->mm;
133
134 release_task_mempolicy(priv);
135 up_read(&mm->mmap_sem);
136 mmput(mm);
a6198797 137}
ec4dd3eb 138
ad2a00e4
ON
139static struct vm_area_struct *
140m_next_vma(struct proc_maps_private *priv, struct vm_area_struct *vma)
141{
142 if (vma == priv->tail_vma)
143 return NULL;
144 return vma->vm_next ?: priv->tail_vma;
145}
146
b8c20a9b
ON
147static void m_cache_vma(struct seq_file *m, struct vm_area_struct *vma)
148{
149 if (m->count < m->size) /* vma is copied successfully */
855af072 150 m->version = m_next_vma(m->private, vma) ? vma->vm_end : -1UL;
b8c20a9b
ON
151}
152
0c255321 153static void *m_start(struct seq_file *m, loff_t *ppos)
e070ad49 154{
a6198797 155 struct proc_maps_private *priv = m->private;
b8c20a9b 156 unsigned long last_addr = m->version;
a6198797 157 struct mm_struct *mm;
0c255321
ON
158 struct vm_area_struct *vma;
159 unsigned int pos = *ppos;
a6198797 160
b8c20a9b
ON
161 /* See m_cache_vma(). Zero at the start or after lseek. */
162 if (last_addr == -1UL)
163 return NULL;
164
2c03376d 165 priv->task = get_proc_task(priv->inode);
a6198797 166 if (!priv->task)
ec6fd8a4 167 return ERR_PTR(-ESRCH);
a6198797 168
29a40ace
ON
169 mm = priv->mm;
170 if (!mm || !atomic_inc_not_zero(&mm->mm_users))
171 return NULL;
a6198797 172
0c255321 173 down_read(&mm->mmap_sem);
9e781440 174 hold_task_mempolicy(priv);
0c255321 175 priv->tail_vma = get_gate_vma(mm);
a6198797 176
b8c20a9b 177 if (last_addr) {
855af072
RH
178 vma = find_vma(mm, last_addr - 1);
179 if (vma && vma->vm_start <= last_addr)
180 vma = m_next_vma(priv, vma);
181 if (vma)
b8c20a9b
ON
182 return vma;
183 }
184
185 m->version = 0;
0c255321 186 if (pos < mm->map_count) {
557c2d8a
ON
187 for (vma = mm->mmap; pos; pos--) {
188 m->version = vma->vm_start;
a6198797 189 vma = vma->vm_next;
557c2d8a 190 }
a6198797 191 return vma;
0c255321 192 }
a6198797 193
557c2d8a 194 /* we do not bother to update m->version in this case */
0c255321
ON
195 if (pos == mm->map_count && priv->tail_vma)
196 return priv->tail_vma;
59b4bf12
ON
197
198 vma_stop(priv);
199 return NULL;
a6198797
MM
200}
201
202static void *m_next(struct seq_file *m, void *v, loff_t *pos)
203{
204 struct proc_maps_private *priv = m->private;
ad2a00e4 205 struct vm_area_struct *next;
a6198797
MM
206
207 (*pos)++;
ad2a00e4 208 next = m_next_vma(priv, v);
59b4bf12
ON
209 if (!next)
210 vma_stop(priv);
211 return next;
a6198797
MM
212}
213
214static void m_stop(struct seq_file *m, void *v)
215{
216 struct proc_maps_private *priv = m->private;
a6198797 217
59b4bf12
ON
218 if (!IS_ERR_OR_NULL(v))
219 vma_stop(priv);
0d5f5f45 220 if (priv->task) {
a6198797 221 put_task_struct(priv->task);
0d5f5f45
ON
222 priv->task = NULL;
223 }
a6198797
MM
224}
225
4db7d0ee
ON
226static int proc_maps_open(struct inode *inode, struct file *file,
227 const struct seq_operations *ops, int psize)
228{
229 struct proc_maps_private *priv = __seq_open_private(file, ops, psize);
230
231 if (!priv)
232 return -ENOMEM;
233
2c03376d 234 priv->inode = inode;
29a40ace
ON
235 priv->mm = proc_mem_open(inode, PTRACE_MODE_READ);
236 if (IS_ERR(priv->mm)) {
237 int err = PTR_ERR(priv->mm);
238
239 seq_release_private(inode, file);
240 return err;
241 }
242
4db7d0ee
ON
243 return 0;
244}
245
29a40ace
ON
246static int proc_map_release(struct inode *inode, struct file *file)
247{
248 struct seq_file *seq = file->private_data;
249 struct proc_maps_private *priv = seq->private;
250
251 if (priv->mm)
252 mmdrop(priv->mm);
253
254 return seq_release_private(inode, file);
255}
256
a6198797 257static int do_maps_open(struct inode *inode, struct file *file,
03a44825 258 const struct seq_operations *ops)
a6198797 259{
4db7d0ee
ON
260 return proc_maps_open(inode, file, ops,
261 sizeof(struct proc_maps_private));
a6198797 262}
e070ad49 263
65376df5
JW
264/*
265 * Indicate if the VMA is a stack for the given task; for
266 * /proc/PID/maps that is the stack of the main task.
267 */
268static int is_stack(struct proc_maps_private *priv,
b18cb64e 269 struct vm_area_struct *vma)
58cb6548 270{
b18cb64e
AL
271 /*
272 * We make no effort to guess what a given thread considers to be
273 * its "stack". It's not even well-defined for programs written
274 * languages like Go.
275 */
276 return vma->vm_start <= vma->vm_mm->start_stack &&
277 vma->vm_end >= vma->vm_mm->start_stack;
58cb6548
ON
278}
279
b7643757
SP
280static void
281show_map_vma(struct seq_file *m, struct vm_area_struct *vma, int is_pid)
1da177e4 282{
e070ad49
ML
283 struct mm_struct *mm = vma->vm_mm;
284 struct file *file = vma->vm_file;
b7643757 285 struct proc_maps_private *priv = m->private;
ca16d140 286 vm_flags_t flags = vma->vm_flags;
1da177e4 287 unsigned long ino = 0;
6260a4b0 288 unsigned long long pgoff = 0;
a09a79f6 289 unsigned long start, end;
1da177e4 290 dev_t dev = 0;
b7643757 291 const char *name = NULL;
1da177e4
LT
292
293 if (file) {
e14748e8
SF
294 struct inode *inode;
295
296 file = vma_pr_or_file(vma);
297 inode = file_inode(file);
1da177e4
LT
298 dev = inode->i_sb->s_dev;
299 ino = inode->i_ino;
6260a4b0 300 pgoff = ((loff_t)vma->vm_pgoff) << PAGE_SHIFT;
1da177e4
LT
301 }
302
d7824370
LT
303 /* We don't show the stack guard page in /proc/maps */
304 start = vma->vm_start;
a09a79f6 305 end = vma->vm_end;
d7824370 306
652586df
TH
307 seq_setwidth(m, 25 + sizeof(void *) * 6 - 1);
308 seq_printf(m, "%08lx-%08lx %c%c%c%c %08llx %02x:%02x %lu ",
d7824370 309 start,
a09a79f6 310 end,
1da177e4
LT
311 flags & VM_READ ? 'r' : '-',
312 flags & VM_WRITE ? 'w' : '-',
313 flags & VM_EXEC ? 'x' : '-',
314 flags & VM_MAYSHARE ? 's' : 'p',
6260a4b0 315 pgoff,
652586df 316 MAJOR(dev), MINOR(dev), ino);
1da177e4
LT
317
318 /*
319 * Print the dentry name for named mappings, and a
320 * special [heap] marker for the heap:
321 */
e070ad49 322 if (file) {
652586df 323 seq_pad(m, ' ');
2726d566 324 seq_file_path(m, file, "\n");
b7643757
SP
325 goto done;
326 }
327
78d683e8
AL
328 if (vma->vm_ops && vma->vm_ops->name) {
329 name = vma->vm_ops->name(vma);
330 if (name)
331 goto done;
332 }
333
b7643757
SP
334 name = arch_vma_name(vma);
335 if (!name) {
b7643757
SP
336 if (!mm) {
337 name = "[vdso]";
338 goto done;
339 }
340
341 if (vma->vm_start <= mm->brk &&
342 vma->vm_end >= mm->start_brk) {
343 name = "[heap]";
344 goto done;
345 }
346
b18cb64e 347 if (is_stack(priv, vma))
65376df5 348 name = "[stack]";
b7643757
SP
349 }
350
351done:
352 if (name) {
652586df 353 seq_pad(m, ' ');
b7643757 354 seq_puts(m, name);
1da177e4
LT
355 }
356 seq_putc(m, '\n');
7c88db0c
JK
357}
358
b7643757 359static int show_map(struct seq_file *m, void *v, int is_pid)
7c88db0c 360{
ebb6cdde 361 show_map_vma(m, v, is_pid);
b8c20a9b 362 m_cache_vma(m, v);
1da177e4
LT
363 return 0;
364}
365
b7643757
SP
366static int show_pid_map(struct seq_file *m, void *v)
367{
368 return show_map(m, v, 1);
369}
370
371static int show_tid_map(struct seq_file *m, void *v)
372{
373 return show_map(m, v, 0);
374}
375
03a44825 376static const struct seq_operations proc_pid_maps_op = {
a6198797
MM
377 .start = m_start,
378 .next = m_next,
379 .stop = m_stop,
b7643757
SP
380 .show = show_pid_map
381};
382
383static const struct seq_operations proc_tid_maps_op = {
384 .start = m_start,
385 .next = m_next,
386 .stop = m_stop,
387 .show = show_tid_map
a6198797
MM
388};
389
b7643757 390static int pid_maps_open(struct inode *inode, struct file *file)
a6198797
MM
391{
392 return do_maps_open(inode, file, &proc_pid_maps_op);
393}
394
b7643757
SP
395static int tid_maps_open(struct inode *inode, struct file *file)
396{
397 return do_maps_open(inode, file, &proc_tid_maps_op);
398}
399
400const struct file_operations proc_pid_maps_operations = {
401 .open = pid_maps_open,
402 .read = seq_read,
403 .llseek = seq_lseek,
29a40ace 404 .release = proc_map_release,
b7643757
SP
405};
406
407const struct file_operations proc_tid_maps_operations = {
408 .open = tid_maps_open,
a6198797
MM
409 .read = seq_read,
410 .llseek = seq_lseek,
29a40ace 411 .release = proc_map_release,
a6198797
MM
412};
413
414/*
415 * Proportional Set Size(PSS): my share of RSS.
416 *
417 * PSS of a process is the count of pages it has in memory, where each
418 * page is divided by the number of processes sharing it. So if a
419 * process has 1000 pages all to itself, and 1000 shared with one other
420 * process, its PSS will be 1500.
421 *
422 * To keep (accumulated) division errors low, we adopt a 64bit
423 * fixed-point pss counter to minimize division errors. So (pss >>
424 * PSS_SHIFT) would be the real byte count.
425 *
426 * A shift of 12 before division means (assuming 4K page size):
427 * - 1M 3-user-pages add up to 8KB errors;
428 * - supports mapcount up to 2^24, or 16M;
429 * - supports PSS up to 2^52 bytes, or 4PB.
430 */
431#define PSS_SHIFT 12
432
1e883281 433#ifdef CONFIG_PROC_PAGE_MONITOR
214e471f 434struct mem_size_stats {
a6198797
MM
435 unsigned long resident;
436 unsigned long shared_clean;
437 unsigned long shared_dirty;
438 unsigned long private_clean;
439 unsigned long private_dirty;
440 unsigned long referenced;
b40d4f84 441 unsigned long anonymous;
4031a219 442 unsigned long anonymous_thp;
65c45377 443 unsigned long shmem_thp;
214e471f 444 unsigned long swap;
25ee01a2
NH
445 unsigned long shared_hugetlb;
446 unsigned long private_hugetlb;
a6198797 447 u64 pss;
8334b962 448 u64 swap_pss;
c261e7d9 449 bool check_shmem_swap;
a6198797
MM
450};
451
c164e038 452static void smaps_account(struct mem_size_stats *mss, struct page *page,
afd9883f 453 bool compound, bool young, bool dirty)
c164e038 454{
f4be6153 455 int i, nr = compound ? 1 << compound_order(page) : 1;
afd9883f 456 unsigned long size = nr * PAGE_SIZE;
c164e038
KS
457
458 if (PageAnon(page))
459 mss->anonymous += size;
460
461 mss->resident += size;
462 /* Accumulate the size in pages that have been accessed. */
33c3fc71 463 if (young || page_is_young(page) || PageReferenced(page))
c164e038 464 mss->referenced += size;
c164e038 465
afd9883f
KS
466 /*
467 * page_count(page) == 1 guarantees the page is mapped exactly once.
468 * If any subpage of the compound page mapped with PTE it would elevate
469 * page_count().
470 */
471 if (page_count(page) == 1) {
c164e038
KS
472 if (dirty || PageDirty(page))
473 mss->private_dirty += size;
474 else
475 mss->private_clean += size;
476 mss->pss += (u64)size << PSS_SHIFT;
afd9883f
KS
477 return;
478 }
479
480 for (i = 0; i < nr; i++, page++) {
481 int mapcount = page_mapcount(page);
482
483 if (mapcount >= 2) {
484 if (dirty || PageDirty(page))
485 mss->shared_dirty += PAGE_SIZE;
486 else
487 mss->shared_clean += PAGE_SIZE;
488 mss->pss += (PAGE_SIZE << PSS_SHIFT) / mapcount;
489 } else {
490 if (dirty || PageDirty(page))
491 mss->private_dirty += PAGE_SIZE;
492 else
493 mss->private_clean += PAGE_SIZE;
494 mss->pss += PAGE_SIZE << PSS_SHIFT;
495 }
c164e038
KS
496 }
497}
ae11c4d9 498
c261e7d9 499#ifdef CONFIG_SHMEM
c261e7d9
VB
500static int smaps_pte_hole(unsigned long addr, unsigned long end,
501 struct mm_walk *walk)
502{
503 struct mem_size_stats *mss = walk->private;
504
48131e03
VB
505 mss->swap += shmem_partial_swap_usage(
506 walk->vma->vm_file->f_mapping, addr, end);
c261e7d9
VB
507
508 return 0;
509}
c261e7d9
VB
510#endif
511
c164e038
KS
512static void smaps_pte_entry(pte_t *pte, unsigned long addr,
513 struct mm_walk *walk)
ae11c4d9
DH
514{
515 struct mem_size_stats *mss = walk->private;
14eb6fdd 516 struct vm_area_struct *vma = walk->vma;
b1d4d9e0 517 struct page *page = NULL;
ae11c4d9 518
c164e038
KS
519 if (pte_present(*pte)) {
520 page = vm_normal_page(vma, addr, *pte);
521 } else if (is_swap_pte(*pte)) {
522 swp_entry_t swpent = pte_to_swp_entry(*pte);
ae11c4d9 523
8334b962
MK
524 if (!non_swap_entry(swpent)) {
525 int mapcount;
526
c164e038 527 mss->swap += PAGE_SIZE;
8334b962
MK
528 mapcount = swp_swapcount(swpent);
529 if (mapcount >= 2) {
530 u64 pss_delta = (u64)PAGE_SIZE << PSS_SHIFT;
531
532 do_div(pss_delta, mapcount);
533 mss->swap_pss += pss_delta;
534 } else {
535 mss->swap_pss += (u64)PAGE_SIZE << PSS_SHIFT;
536 }
537 } else if (is_migration_entry(swpent))
b1d4d9e0 538 page = migration_entry_to_page(swpent);
c261e7d9
VB
539 } else if (unlikely(IS_ENABLED(CONFIG_SHMEM) && mss->check_shmem_swap
540 && pte_none(*pte))) {
48131e03
VB
541 page = find_get_entry(vma->vm_file->f_mapping,
542 linear_page_index(vma, addr));
543 if (!page)
544 return;
545
546 if (radix_tree_exceptional_entry(page))
547 mss->swap += PAGE_SIZE;
548 else
09cbfeaf 549 put_page(page);
48131e03
VB
550
551 return;
b1d4d9e0 552 }
ae11c4d9 553
ae11c4d9
DH
554 if (!page)
555 return;
afd9883f
KS
556
557 smaps_account(mss, page, false, pte_young(*pte), pte_dirty(*pte));
ae11c4d9
DH
558}
559
c164e038
KS
560#ifdef CONFIG_TRANSPARENT_HUGEPAGE
561static void smaps_pmd_entry(pmd_t *pmd, unsigned long addr,
562 struct mm_walk *walk)
563{
564 struct mem_size_stats *mss = walk->private;
14eb6fdd 565 struct vm_area_struct *vma = walk->vma;
c164e038
KS
566 struct page *page;
567
568 /* FOLL_DUMP will return -EFAULT on huge zero page */
569 page = follow_trans_huge_pmd(vma, addr, pmd, FOLL_DUMP);
570 if (IS_ERR_OR_NULL(page))
571 return;
65c45377
KS
572 if (PageAnon(page))
573 mss->anonymous_thp += HPAGE_PMD_SIZE;
574 else if (PageSwapBacked(page))
575 mss->shmem_thp += HPAGE_PMD_SIZE;
ca120cf6
DW
576 else if (is_zone_device_page(page))
577 /* pass */;
65c45377
KS
578 else
579 VM_BUG_ON_PAGE(1, page);
afd9883f 580 smaps_account(mss, page, true, pmd_young(*pmd), pmd_dirty(*pmd));
c164e038
KS
581}
582#else
583static void smaps_pmd_entry(pmd_t *pmd, unsigned long addr,
584 struct mm_walk *walk)
585{
586}
587#endif
588
b3ae5acb 589static int smaps_pte_range(pmd_t *pmd, unsigned long addr, unsigned long end,
2165009b 590 struct mm_walk *walk)
e070ad49 591{
14eb6fdd 592 struct vm_area_struct *vma = walk->vma;
ae11c4d9 593 pte_t *pte;
705e87c0 594 spinlock_t *ptl;
e070ad49 595
b6ec57f4
KS
596 ptl = pmd_trans_huge_lock(pmd, vma);
597 if (ptl) {
c164e038 598 smaps_pmd_entry(pmd, addr, walk);
bf929152 599 spin_unlock(ptl);
025c5b24 600 return 0;
22e057c5 601 }
1a5a9906
AA
602
603 if (pmd_trans_unstable(pmd))
604 return 0;
22e057c5
DH
605 /*
606 * The mmap_sem held all the way back in m_start() is what
607 * keeps khugepaged out of here and from collapsing things
608 * in here.
609 */
705e87c0 610 pte = pte_offset_map_lock(vma->vm_mm, pmd, addr, &ptl);
ae11c4d9 611 for (; addr != end; pte++, addr += PAGE_SIZE)
c164e038 612 smaps_pte_entry(pte, addr, walk);
705e87c0
HD
613 pte_unmap_unlock(pte - 1, ptl);
614 cond_resched();
b3ae5acb 615 return 0;
e070ad49
ML
616}
617
834f82e2
CG
618static void show_smap_vma_flags(struct seq_file *m, struct vm_area_struct *vma)
619{
620 /*
621 * Don't forget to update Documentation/ on changes.
622 */
623 static const char mnemonics[BITS_PER_LONG][2] = {
624 /*
625 * In case if we meet a flag we don't know about.
626 */
627 [0 ... (BITS_PER_LONG-1)] = "??",
628
629 [ilog2(VM_READ)] = "rd",
630 [ilog2(VM_WRITE)] = "wr",
631 [ilog2(VM_EXEC)] = "ex",
632 [ilog2(VM_SHARED)] = "sh",
633 [ilog2(VM_MAYREAD)] = "mr",
634 [ilog2(VM_MAYWRITE)] = "mw",
635 [ilog2(VM_MAYEXEC)] = "me",
636 [ilog2(VM_MAYSHARE)] = "ms",
637 [ilog2(VM_GROWSDOWN)] = "gd",
638 [ilog2(VM_PFNMAP)] = "pf",
639 [ilog2(VM_DENYWRITE)] = "dw",
4aae7e43
QR
640#ifdef CONFIG_X86_INTEL_MPX
641 [ilog2(VM_MPX)] = "mp",
642#endif
834f82e2
CG
643 [ilog2(VM_LOCKED)] = "lo",
644 [ilog2(VM_IO)] = "io",
645 [ilog2(VM_SEQ_READ)] = "sr",
646 [ilog2(VM_RAND_READ)] = "rr",
647 [ilog2(VM_DONTCOPY)] = "dc",
648 [ilog2(VM_DONTEXPAND)] = "de",
649 [ilog2(VM_ACCOUNT)] = "ac",
650 [ilog2(VM_NORESERVE)] = "nr",
651 [ilog2(VM_HUGETLB)] = "ht",
834f82e2
CG
652 [ilog2(VM_ARCH_1)] = "ar",
653 [ilog2(VM_DONTDUMP)] = "dd",
ec8e41ae
NH
654#ifdef CONFIG_MEM_SOFT_DIRTY
655 [ilog2(VM_SOFTDIRTY)] = "sd",
656#endif
834f82e2
CG
657 [ilog2(VM_MIXEDMAP)] = "mm",
658 [ilog2(VM_HUGEPAGE)] = "hg",
659 [ilog2(VM_NOHUGEPAGE)] = "nh",
660 [ilog2(VM_MERGEABLE)] = "mg",
16ba6f81
AA
661 [ilog2(VM_UFFD_MISSING)]= "um",
662 [ilog2(VM_UFFD_WP)] = "uw",
c1192f84
DH
663#ifdef CONFIG_X86_INTEL_MEMORY_PROTECTION_KEYS
664 /* These come out via ProtectionKey: */
665 [ilog2(VM_PKEY_BIT0)] = "",
666 [ilog2(VM_PKEY_BIT1)] = "",
667 [ilog2(VM_PKEY_BIT2)] = "",
668 [ilog2(VM_PKEY_BIT3)] = "",
669#endif
834f82e2
CG
670 };
671 size_t i;
672
673 seq_puts(m, "VmFlags: ");
674 for (i = 0; i < BITS_PER_LONG; i++) {
c1192f84
DH
675 if (!mnemonics[i][0])
676 continue;
834f82e2
CG
677 if (vma->vm_flags & (1UL << i)) {
678 seq_printf(m, "%c%c ",
679 mnemonics[i][0], mnemonics[i][1]);
680 }
681 }
682 seq_putc(m, '\n');
683}
684
25ee01a2
NH
685#ifdef CONFIG_HUGETLB_PAGE
686static int smaps_hugetlb_range(pte_t *pte, unsigned long hmask,
687 unsigned long addr, unsigned long end,
688 struct mm_walk *walk)
689{
690 struct mem_size_stats *mss = walk->private;
691 struct vm_area_struct *vma = walk->vma;
692 struct page *page = NULL;
693
694 if (pte_present(*pte)) {
695 page = vm_normal_page(vma, addr, *pte);
696 } else if (is_swap_pte(*pte)) {
697 swp_entry_t swpent = pte_to_swp_entry(*pte);
698
699 if (is_migration_entry(swpent))
700 page = migration_entry_to_page(swpent);
701 }
702 if (page) {
703 int mapcount = page_mapcount(page);
704
705 if (mapcount >= 2)
706 mss->shared_hugetlb += huge_page_size(hstate_vma(vma));
707 else
708 mss->private_hugetlb += huge_page_size(hstate_vma(vma));
709 }
710 return 0;
711}
712#endif /* HUGETLB_PAGE */
713
c1192f84
DH
714void __weak arch_show_smap(struct seq_file *m, struct vm_area_struct *vma)
715{
716}
717
b7643757 718static int show_smap(struct seq_file *m, void *v, int is_pid)
e070ad49
ML
719{
720 struct vm_area_struct *vma = v;
e070ad49 721 struct mem_size_stats mss;
2165009b
DH
722 struct mm_walk smaps_walk = {
723 .pmd_entry = smaps_pte_range,
25ee01a2
NH
724#ifdef CONFIG_HUGETLB_PAGE
725 .hugetlb_entry = smaps_hugetlb_range,
726#endif
2165009b
DH
727 .mm = vma->vm_mm,
728 .private = &mss,
729 };
e070ad49
ML
730
731 memset(&mss, 0, sizeof mss);
c261e7d9
VB
732
733#ifdef CONFIG_SHMEM
734 if (vma->vm_file && shmem_mapping(vma->vm_file->f_mapping)) {
6a15a370
VB
735 /*
736 * For shared or readonly shmem mappings we know that all
737 * swapped out pages belong to the shmem object, and we can
738 * obtain the swap value much more efficiently. For private
739 * writable mappings, we might have COW pages that are
740 * not affected by the parent swapped out pages of the shmem
741 * object, so we have to distinguish them during the page walk.
742 * Unless we know that the shmem object (or the part mapped by
743 * our VMA) has no swapped out pages at all.
744 */
745 unsigned long shmem_swapped = shmem_swap_usage(vma);
746
747 if (!shmem_swapped || (vma->vm_flags & VM_SHARED) ||
748 !(vma->vm_flags & VM_WRITE)) {
749 mss.swap = shmem_swapped;
750 } else {
751 mss.check_shmem_swap = true;
752 smaps_walk.pte_hole = smaps_pte_hole;
753 }
c261e7d9
VB
754 }
755#endif
756
d82ef020 757 /* mmap_sem is held in m_start */
14eb6fdd 758 walk_page_vma(vma, &smaps_walk);
4752c369 759
b7643757 760 show_map_vma(m, vma, is_pid);
4752c369
MM
761
762 seq_printf(m,
763 "Size: %8lu kB\n"
764 "Rss: %8lu kB\n"
765 "Pss: %8lu kB\n"
766 "Shared_Clean: %8lu kB\n"
767 "Shared_Dirty: %8lu kB\n"
768 "Private_Clean: %8lu kB\n"
769 "Private_Dirty: %8lu kB\n"
214e471f 770 "Referenced: %8lu kB\n"
b40d4f84 771 "Anonymous: %8lu kB\n"
4031a219 772 "AnonHugePages: %8lu kB\n"
65c45377 773 "ShmemPmdMapped: %8lu kB\n"
25ee01a2
NH
774 "Shared_Hugetlb: %8lu kB\n"
775 "Private_Hugetlb: %7lu kB\n"
08fba699 776 "Swap: %8lu kB\n"
8334b962 777 "SwapPss: %8lu kB\n"
3340289d 778 "KernelPageSize: %8lu kB\n"
2d90508f
NK
779 "MMUPageSize: %8lu kB\n"
780 "Locked: %8lu kB\n",
4752c369
MM
781 (vma->vm_end - vma->vm_start) >> 10,
782 mss.resident >> 10,
783 (unsigned long)(mss.pss >> (10 + PSS_SHIFT)),
784 mss.shared_clean >> 10,
785 mss.shared_dirty >> 10,
786 mss.private_clean >> 10,
787 mss.private_dirty >> 10,
214e471f 788 mss.referenced >> 10,
b40d4f84 789 mss.anonymous >> 10,
4031a219 790 mss.anonymous_thp >> 10,
65c45377 791 mss.shmem_thp >> 10,
25ee01a2
NH
792 mss.shared_hugetlb >> 10,
793 mss.private_hugetlb >> 10,
08fba699 794 mss.swap >> 10,
8334b962 795 (unsigned long)(mss.swap_pss >> (10 + PSS_SHIFT)),
3340289d 796 vma_kernel_pagesize(vma) >> 10,
2d90508f
NK
797 vma_mmu_pagesize(vma) >> 10,
798 (vma->vm_flags & VM_LOCKED) ?
799 (unsigned long)(mss.pss >> (10 + PSS_SHIFT)) : 0);
4752c369 800
c1192f84 801 arch_show_smap(m, vma);
834f82e2 802 show_smap_vma_flags(m, vma);
b8c20a9b 803 m_cache_vma(m, vma);
7c88db0c 804 return 0;
e070ad49
ML
805}
806
b7643757
SP
807static int show_pid_smap(struct seq_file *m, void *v)
808{
809 return show_smap(m, v, 1);
810}
811
812static int show_tid_smap(struct seq_file *m, void *v)
813{
814 return show_smap(m, v, 0);
815}
816
03a44825 817static const struct seq_operations proc_pid_smaps_op = {
a6198797
MM
818 .start = m_start,
819 .next = m_next,
820 .stop = m_stop,
b7643757
SP
821 .show = show_pid_smap
822};
823
824static const struct seq_operations proc_tid_smaps_op = {
825 .start = m_start,
826 .next = m_next,
827 .stop = m_stop,
828 .show = show_tid_smap
a6198797
MM
829};
830
b7643757 831static int pid_smaps_open(struct inode *inode, struct file *file)
a6198797
MM
832{
833 return do_maps_open(inode, file, &proc_pid_smaps_op);
834}
835
b7643757
SP
836static int tid_smaps_open(struct inode *inode, struct file *file)
837{
838 return do_maps_open(inode, file, &proc_tid_smaps_op);
839}
840
841const struct file_operations proc_pid_smaps_operations = {
842 .open = pid_smaps_open,
843 .read = seq_read,
844 .llseek = seq_lseek,
29a40ace 845 .release = proc_map_release,
b7643757
SP
846};
847
848const struct file_operations proc_tid_smaps_operations = {
849 .open = tid_smaps_open,
a6198797
MM
850 .read = seq_read,
851 .llseek = seq_lseek,
29a40ace 852 .release = proc_map_release,
a6198797
MM
853};
854
040fa020
PE
855enum clear_refs_types {
856 CLEAR_REFS_ALL = 1,
857 CLEAR_REFS_ANON,
858 CLEAR_REFS_MAPPED,
0f8975ec 859 CLEAR_REFS_SOFT_DIRTY,
695f0559 860 CLEAR_REFS_MM_HIWATER_RSS,
040fa020
PE
861 CLEAR_REFS_LAST,
862};
863
af9de7eb 864struct clear_refs_private {
0f8975ec 865 enum clear_refs_types type;
af9de7eb
PE
866};
867
7d5b3bfa 868#ifdef CONFIG_MEM_SOFT_DIRTY
0f8975ec
PE
869static inline void clear_soft_dirty(struct vm_area_struct *vma,
870 unsigned long addr, pte_t *pte)
871{
0f8975ec
PE
872 /*
873 * The soft-dirty tracker uses #PF-s to catch writes
874 * to pages, so write-protect the pte as well. See the
875 * Documentation/vm/soft-dirty.txt for full description
876 * of how soft-dirty works.
877 */
878 pte_t ptent = *pte;
179ef71c
CG
879
880 if (pte_present(ptent)) {
326c2597 881 ptent = ptep_modify_prot_start(vma->vm_mm, addr, pte);
179ef71c 882 ptent = pte_wrprotect(ptent);
a7b76174 883 ptent = pte_clear_soft_dirty(ptent);
326c2597 884 ptep_modify_prot_commit(vma->vm_mm, addr, pte, ptent);
179ef71c
CG
885 } else if (is_swap_pte(ptent)) {
886 ptent = pte_swp_clear_soft_dirty(ptent);
326c2597 887 set_pte_at(vma->vm_mm, addr, pte, ptent);
179ef71c 888 }
0f8975ec 889}
5d3875a0
LD
890#else
891static inline void clear_soft_dirty(struct vm_area_struct *vma,
892 unsigned long addr, pte_t *pte)
893{
894}
895#endif
0f8975ec 896
5d3875a0 897#if defined(CONFIG_MEM_SOFT_DIRTY) && defined(CONFIG_TRANSPARENT_HUGEPAGE)
7d5b3bfa
KS
898static inline void clear_soft_dirty_pmd(struct vm_area_struct *vma,
899 unsigned long addr, pmd_t *pmdp)
900{
8a58cfbf
KS
901 pmd_t pmd = *pmdp;
902
903 /* See comment in change_huge_pmd() */
904 pmdp_invalidate(vma, addr, pmdp);
905 if (pmd_dirty(*pmdp))
906 pmd = pmd_mkdirty(pmd);
907 if (pmd_young(*pmdp))
908 pmd = pmd_mkyoung(pmd);
7d5b3bfa
KS
909
910 pmd = pmd_wrprotect(pmd);
a7b76174 911 pmd = pmd_clear_soft_dirty(pmd);
7d5b3bfa 912
7d5b3bfa
KS
913 set_pmd_at(vma->vm_mm, addr, pmdp, pmd);
914}
7d5b3bfa 915#else
7d5b3bfa
KS
916static inline void clear_soft_dirty_pmd(struct vm_area_struct *vma,
917 unsigned long addr, pmd_t *pmdp)
918{
919}
920#endif
921
a6198797 922static int clear_refs_pte_range(pmd_t *pmd, unsigned long addr,
2165009b 923 unsigned long end, struct mm_walk *walk)
a6198797 924{
af9de7eb 925 struct clear_refs_private *cp = walk->private;
5c64f52a 926 struct vm_area_struct *vma = walk->vma;
a6198797
MM
927 pte_t *pte, ptent;
928 spinlock_t *ptl;
929 struct page *page;
930
b6ec57f4
KS
931 ptl = pmd_trans_huge_lock(pmd, vma);
932 if (ptl) {
7d5b3bfa
KS
933 if (cp->type == CLEAR_REFS_SOFT_DIRTY) {
934 clear_soft_dirty_pmd(vma, addr, pmd);
935 goto out;
936 }
937
938 page = pmd_page(*pmd);
939
940 /* Clear accessed and referenced bits. */
941 pmdp_test_and_clear_young(vma, addr, pmd);
33c3fc71 942 test_and_clear_page_young(page);
7d5b3bfa
KS
943 ClearPageReferenced(page);
944out:
945 spin_unlock(ptl);
946 return 0;
947 }
948
1a5a9906
AA
949 if (pmd_trans_unstable(pmd))
950 return 0;
03319327 951
a6198797
MM
952 pte = pte_offset_map_lock(vma->vm_mm, pmd, addr, &ptl);
953 for (; addr != end; pte++, addr += PAGE_SIZE) {
954 ptent = *pte;
a6198797 955
0f8975ec
PE
956 if (cp->type == CLEAR_REFS_SOFT_DIRTY) {
957 clear_soft_dirty(vma, addr, pte);
958 continue;
959 }
960
179ef71c
CG
961 if (!pte_present(ptent))
962 continue;
963
a6198797
MM
964 page = vm_normal_page(vma, addr, ptent);
965 if (!page)
966 continue;
967
968 /* Clear accessed and referenced bits. */
969 ptep_test_and_clear_young(vma, addr, pte);
33c3fc71 970 test_and_clear_page_young(page);
a6198797
MM
971 ClearPageReferenced(page);
972 }
973 pte_unmap_unlock(pte - 1, ptl);
974 cond_resched();
975 return 0;
976}
977
5c64f52a
NH
978static int clear_refs_test_walk(unsigned long start, unsigned long end,
979 struct mm_walk *walk)
980{
981 struct clear_refs_private *cp = walk->private;
982 struct vm_area_struct *vma = walk->vma;
983
48684a65
NH
984 if (vma->vm_flags & VM_PFNMAP)
985 return 1;
986
5c64f52a
NH
987 /*
988 * Writing 1 to /proc/pid/clear_refs affects all pages.
989 * Writing 2 to /proc/pid/clear_refs only affects anonymous pages.
990 * Writing 3 to /proc/pid/clear_refs only affects file mapped pages.
991 * Writing 4 to /proc/pid/clear_refs affects all pages.
992 */
993 if (cp->type == CLEAR_REFS_ANON && vma->vm_file)
994 return 1;
995 if (cp->type == CLEAR_REFS_MAPPED && !vma->vm_file)
996 return 1;
997 return 0;
998}
999
f248dcb3
MM
1000static ssize_t clear_refs_write(struct file *file, const char __user *buf,
1001 size_t count, loff_t *ppos)
b813e931 1002{
f248dcb3 1003 struct task_struct *task;
fb92a4b0 1004 char buffer[PROC_NUMBUF];
f248dcb3 1005 struct mm_struct *mm;
b813e931 1006 struct vm_area_struct *vma;
040fa020
PE
1007 enum clear_refs_types type;
1008 int itype;
0a8cb8e3 1009 int rv;
b813e931 1010
f248dcb3
MM
1011 memset(buffer, 0, sizeof(buffer));
1012 if (count > sizeof(buffer) - 1)
1013 count = sizeof(buffer) - 1;
1014 if (copy_from_user(buffer, buf, count))
1015 return -EFAULT;
040fa020 1016 rv = kstrtoint(strstrip(buffer), 10, &itype);
0a8cb8e3
AD
1017 if (rv < 0)
1018 return rv;
040fa020
PE
1019 type = (enum clear_refs_types)itype;
1020 if (type < CLEAR_REFS_ALL || type >= CLEAR_REFS_LAST)
f248dcb3 1021 return -EINVAL;
541c237c 1022
496ad9aa 1023 task = get_proc_task(file_inode(file));
f248dcb3
MM
1024 if (!task)
1025 return -ESRCH;
1026 mm = get_task_mm(task);
1027 if (mm) {
af9de7eb 1028 struct clear_refs_private cp = {
0f8975ec 1029 .type = type,
af9de7eb 1030 };
20cbc972
AM
1031 struct mm_walk clear_refs_walk = {
1032 .pmd_entry = clear_refs_pte_range,
5c64f52a 1033 .test_walk = clear_refs_test_walk,
20cbc972 1034 .mm = mm,
af9de7eb 1035 .private = &cp,
20cbc972 1036 };
695f0559
PC
1037
1038 if (type == CLEAR_REFS_MM_HIWATER_RSS) {
4e80153a
MH
1039 if (down_write_killable(&mm->mmap_sem)) {
1040 count = -EINTR;
1041 goto out_mm;
1042 }
1043
695f0559
PC
1044 /*
1045 * Writing 5 to /proc/pid/clear_refs resets the peak
1046 * resident set size to this mm's current rss value.
1047 */
695f0559
PC
1048 reset_mm_hiwater_rss(mm);
1049 up_write(&mm->mmap_sem);
1050 goto out_mm;
1051 }
1052
f248dcb3 1053 down_read(&mm->mmap_sem);
64e45507
PF
1054 if (type == CLEAR_REFS_SOFT_DIRTY) {
1055 for (vma = mm->mmap; vma; vma = vma->vm_next) {
1056 if (!(vma->vm_flags & VM_SOFTDIRTY))
1057 continue;
1058 up_read(&mm->mmap_sem);
4e80153a
MH
1059 if (down_write_killable(&mm->mmap_sem)) {
1060 count = -EINTR;
1061 goto out_mm;
1062 }
64e45507
PF
1063 for (vma = mm->mmap; vma; vma = vma->vm_next) {
1064 vma->vm_flags &= ~VM_SOFTDIRTY;
1065 vma_set_page_prot(vma);
1066 }
1067 downgrade_write(&mm->mmap_sem);
1068 break;
1069 }
0f8975ec 1070 mmu_notifier_invalidate_range_start(mm, 0, -1);
64e45507 1071 }
0f30206b 1072 walk_page_range(0, mm->highest_vm_end, &clear_refs_walk);
0f8975ec
PE
1073 if (type == CLEAR_REFS_SOFT_DIRTY)
1074 mmu_notifier_invalidate_range_end(mm, 0, -1);
f248dcb3
MM
1075 flush_tlb_mm(mm);
1076 up_read(&mm->mmap_sem);
695f0559 1077out_mm:
f248dcb3
MM
1078 mmput(mm);
1079 }
1080 put_task_struct(task);
fb92a4b0
VL
1081
1082 return count;
b813e931
DR
1083}
1084
f248dcb3
MM
1085const struct file_operations proc_clear_refs_operations = {
1086 .write = clear_refs_write,
6038f373 1087 .llseek = noop_llseek,
f248dcb3
MM
1088};
1089
092b50ba
NH
1090typedef struct {
1091 u64 pme;
1092} pagemap_entry_t;
1093
85863e47 1094struct pagemapread {
8c829622 1095 int pos, len; /* units: PM_ENTRY_BYTES, not bytes */
092b50ba 1096 pagemap_entry_t *buffer;
1c90308e 1097 bool show_pfn;
85863e47
MM
1098};
1099
5aaabe83
NH
1100#define PAGEMAP_WALK_SIZE (PMD_SIZE)
1101#define PAGEMAP_WALK_MASK (PMD_MASK)
1102
deb94544
KK
1103#define PM_ENTRY_BYTES sizeof(pagemap_entry_t)
1104#define PM_PFRAME_BITS 55
1105#define PM_PFRAME_MASK GENMASK_ULL(PM_PFRAME_BITS - 1, 0)
1106#define PM_SOFT_DIRTY BIT_ULL(55)
77bb499b 1107#define PM_MMAP_EXCLUSIVE BIT_ULL(56)
deb94544
KK
1108#define PM_FILE BIT_ULL(61)
1109#define PM_SWAP BIT_ULL(62)
1110#define PM_PRESENT BIT_ULL(63)
1111
85863e47
MM
1112#define PM_END_OF_BUFFER 1
1113
deb94544 1114static inline pagemap_entry_t make_pme(u64 frame, u64 flags)
092b50ba 1115{
deb94544 1116 return (pagemap_entry_t) { .pme = (frame & PM_PFRAME_MASK) | flags };
092b50ba
NH
1117}
1118
1119static int add_to_pagemap(unsigned long addr, pagemap_entry_t *pme,
85863e47
MM
1120 struct pagemapread *pm)
1121{
092b50ba 1122 pm->buffer[pm->pos++] = *pme;
d82ef020 1123 if (pm->pos >= pm->len)
aae8679b 1124 return PM_END_OF_BUFFER;
85863e47
MM
1125 return 0;
1126}
1127
1128static int pagemap_pte_hole(unsigned long start, unsigned long end,
2165009b 1129 struct mm_walk *walk)
85863e47 1130{
2165009b 1131 struct pagemapread *pm = walk->private;
68b5a652 1132 unsigned long addr = start;
85863e47 1133 int err = 0;
092b50ba 1134
68b5a652
PF
1135 while (addr < end) {
1136 struct vm_area_struct *vma = find_vma(walk->mm, addr);
deb94544 1137 pagemap_entry_t pme = make_pme(0, 0);
87e6d49a
PF
1138 /* End of address space hole, which we mark as non-present. */
1139 unsigned long hole_end;
68b5a652 1140
87e6d49a
PF
1141 if (vma)
1142 hole_end = min(end, vma->vm_start);
1143 else
1144 hole_end = end;
1145
1146 for (; addr < hole_end; addr += PAGE_SIZE) {
1147 err = add_to_pagemap(addr, &pme, pm);
1148 if (err)
1149 goto out;
68b5a652
PF
1150 }
1151
87e6d49a
PF
1152 if (!vma)
1153 break;
1154
1155 /* Addresses in the VMA. */
1156 if (vma->vm_flags & VM_SOFTDIRTY)
deb94544 1157 pme = make_pme(0, PM_SOFT_DIRTY);
87e6d49a 1158 for (; addr < min(end, vma->vm_end); addr += PAGE_SIZE) {
68b5a652
PF
1159 err = add_to_pagemap(addr, &pme, pm);
1160 if (err)
1161 goto out;
1162 }
85863e47 1163 }
68b5a652 1164out:
85863e47
MM
1165 return err;
1166}
1167
deb94544 1168static pagemap_entry_t pte_to_pagemap_entry(struct pagemapread *pm,
052fb0d6 1169 struct vm_area_struct *vma, unsigned long addr, pte_t pte)
85863e47 1170{
deb94544 1171 u64 frame = 0, flags = 0;
052fb0d6 1172 struct page *page = NULL;
85863e47 1173
052fb0d6 1174 if (pte_present(pte)) {
1c90308e
KK
1175 if (pm->show_pfn)
1176 frame = pte_pfn(pte);
deb94544 1177 flags |= PM_PRESENT;
052fb0d6 1178 page = vm_normal_page(vma, addr, pte);
e9cdd6e7 1179 if (pte_soft_dirty(pte))
deb94544 1180 flags |= PM_SOFT_DIRTY;
052fb0d6 1181 } else if (is_swap_pte(pte)) {
179ef71c
CG
1182 swp_entry_t entry;
1183 if (pte_swp_soft_dirty(pte))
deb94544 1184 flags |= PM_SOFT_DIRTY;
179ef71c 1185 entry = pte_to_swp_entry(pte);
052fb0d6
KK
1186 frame = swp_type(entry) |
1187 (swp_offset(entry) << MAX_SWAPFILES_SHIFT);
deb94544 1188 flags |= PM_SWAP;
052fb0d6
KK
1189 if (is_migration_entry(entry))
1190 page = migration_entry_to_page(entry);
052fb0d6
KK
1191 }
1192
1193 if (page && !PageAnon(page))
1194 flags |= PM_FILE;
77bb499b
KK
1195 if (page && page_mapcount(page) == 1)
1196 flags |= PM_MMAP_EXCLUSIVE;
deb94544
KK
1197 if (vma->vm_flags & VM_SOFTDIRTY)
1198 flags |= PM_SOFT_DIRTY;
052fb0d6 1199
deb94544 1200 return make_pme(frame, flags);
bcf8039e
DH
1201}
1202
356515e7 1203static int pagemap_pmd_range(pmd_t *pmdp, unsigned long addr, unsigned long end,
2165009b 1204 struct mm_walk *walk)
85863e47 1205{
f995ece2 1206 struct vm_area_struct *vma = walk->vma;
2165009b 1207 struct pagemapread *pm = walk->private;
bf929152 1208 spinlock_t *ptl;
05fbf357 1209 pte_t *pte, *orig_pte;
85863e47
MM
1210 int err = 0;
1211
356515e7 1212#ifdef CONFIG_TRANSPARENT_HUGEPAGE
b6ec57f4
KS
1213 ptl = pmd_trans_huge_lock(pmdp, vma);
1214 if (ptl) {
356515e7
KK
1215 u64 flags = 0, frame = 0;
1216 pmd_t pmd = *pmdp;
0f8975ec 1217
356515e7 1218 if ((vma->vm_flags & VM_SOFTDIRTY) || pmd_soft_dirty(pmd))
deb94544 1219 flags |= PM_SOFT_DIRTY;
d9104d1c 1220
356515e7
KK
1221 /*
1222 * Currently pmd for thp is always present because thp
1223 * can not be swapped-out, migrated, or HWPOISONed
1224 * (split in such cases instead.)
1225 * This if-check is just to prepare for future implementation.
1226 */
1227 if (pmd_present(pmd)) {
77bb499b
KK
1228 struct page *page = pmd_page(pmd);
1229
1230 if (page_mapcount(page) == 1)
1231 flags |= PM_MMAP_EXCLUSIVE;
1232
356515e7 1233 flags |= PM_PRESENT;
1c90308e
KK
1234 if (pm->show_pfn)
1235 frame = pmd_pfn(pmd) +
1236 ((addr & ~PMD_MASK) >> PAGE_SHIFT);
356515e7
KK
1237 }
1238
025c5b24 1239 for (; addr != end; addr += PAGE_SIZE) {
356515e7 1240 pagemap_entry_t pme = make_pme(frame, flags);
025c5b24 1241
092b50ba 1242 err = add_to_pagemap(addr, &pme, pm);
025c5b24
NH
1243 if (err)
1244 break;
1c90308e 1245 if (pm->show_pfn && (flags & PM_PRESENT))
356515e7 1246 frame++;
5aaabe83 1247 }
bf929152 1248 spin_unlock(ptl);
025c5b24 1249 return err;
5aaabe83
NH
1250 }
1251
356515e7 1252 if (pmd_trans_unstable(pmdp))
45f83cef 1253 return 0;
356515e7 1254#endif /* CONFIG_TRANSPARENT_HUGEPAGE */
81d0fa62 1255
f995ece2
NH
1256 /*
1257 * We can assume that @vma always points to a valid one and @end never
1258 * goes beyond vma->vm_end.
1259 */
356515e7 1260 orig_pte = pte = pte_offset_map_lock(walk->mm, pmdp, addr, &ptl);
f995ece2
NH
1261 for (; addr < end; pte++, addr += PAGE_SIZE) {
1262 pagemap_entry_t pme;
05fbf357 1263
deb94544 1264 pme = pte_to_pagemap_entry(pm, vma, addr, *pte);
f995ece2 1265 err = add_to_pagemap(addr, &pme, pm);
05fbf357 1266 if (err)
81d0fa62 1267 break;
85863e47 1268 }
f995ece2 1269 pte_unmap_unlock(orig_pte, ptl);
85863e47
MM
1270
1271 cond_resched();
1272
1273 return err;
1274}
1275
1a5cb814 1276#ifdef CONFIG_HUGETLB_PAGE
116354d1 1277/* This function walks within one hugetlb entry in the single call */
356515e7 1278static int pagemap_hugetlb_range(pte_t *ptep, unsigned long hmask,
116354d1
NH
1279 unsigned long addr, unsigned long end,
1280 struct mm_walk *walk)
5dc37642 1281{
5dc37642 1282 struct pagemapread *pm = walk->private;
f995ece2 1283 struct vm_area_struct *vma = walk->vma;
356515e7 1284 u64 flags = 0, frame = 0;
5dc37642 1285 int err = 0;
356515e7 1286 pte_t pte;
5dc37642 1287
f995ece2 1288 if (vma->vm_flags & VM_SOFTDIRTY)
deb94544 1289 flags |= PM_SOFT_DIRTY;
d9104d1c 1290
356515e7
KK
1291 pte = huge_ptep_get(ptep);
1292 if (pte_present(pte)) {
1293 struct page *page = pte_page(pte);
1294
1295 if (!PageAnon(page))
1296 flags |= PM_FILE;
1297
77bb499b
KK
1298 if (page_mapcount(page) == 1)
1299 flags |= PM_MMAP_EXCLUSIVE;
1300
356515e7 1301 flags |= PM_PRESENT;
1c90308e
KK
1302 if (pm->show_pfn)
1303 frame = pte_pfn(pte) +
1304 ((addr & ~hmask) >> PAGE_SHIFT);
356515e7
KK
1305 }
1306
5dc37642 1307 for (; addr != end; addr += PAGE_SIZE) {
356515e7
KK
1308 pagemap_entry_t pme = make_pme(frame, flags);
1309
092b50ba 1310 err = add_to_pagemap(addr, &pme, pm);
5dc37642
NH
1311 if (err)
1312 return err;
1c90308e 1313 if (pm->show_pfn && (flags & PM_PRESENT))
356515e7 1314 frame++;
5dc37642
NH
1315 }
1316
1317 cond_resched();
1318
1319 return err;
1320}
1a5cb814 1321#endif /* HUGETLB_PAGE */
5dc37642 1322
85863e47
MM
1323/*
1324 * /proc/pid/pagemap - an array mapping virtual pages to pfns
1325 *
f16278c6
HR
1326 * For each page in the address space, this file contains one 64-bit entry
1327 * consisting of the following:
1328 *
052fb0d6 1329 * Bits 0-54 page frame number (PFN) if present
f16278c6 1330 * Bits 0-4 swap type if swapped
052fb0d6 1331 * Bits 5-54 swap offset if swapped
deb94544 1332 * Bit 55 pte is soft-dirty (see Documentation/vm/soft-dirty.txt)
77bb499b
KK
1333 * Bit 56 page exclusively mapped
1334 * Bits 57-60 zero
052fb0d6 1335 * Bit 61 page is file-page or shared-anon
f16278c6
HR
1336 * Bit 62 page swapped
1337 * Bit 63 page present
1338 *
1339 * If the page is not present but in swap, then the PFN contains an
1340 * encoding of the swap file number and the page's offset into the
1341 * swap. Unmapped pages return a null PFN. This allows determining
85863e47
MM
1342 * precisely which pages are mapped (or in swap) and comparing mapped
1343 * pages between processes.
1344 *
1345 * Efficient users of this interface will use /proc/pid/maps to
1346 * determine which areas of memory are actually mapped and llseek to
1347 * skip over unmapped regions.
1348 */
1349static ssize_t pagemap_read(struct file *file, char __user *buf,
1350 size_t count, loff_t *ppos)
1351{
a06db751 1352 struct mm_struct *mm = file->private_data;
85863e47 1353 struct pagemapread pm;
ee1e6ab6 1354 struct mm_walk pagemap_walk = {};
5d7e0d2b
AM
1355 unsigned long src;
1356 unsigned long svpfn;
1357 unsigned long start_vaddr;
1358 unsigned long end_vaddr;
a06db751 1359 int ret = 0, copied = 0;
85863e47 1360
a06db751 1361 if (!mm || !atomic_inc_not_zero(&mm->mm_users))
85863e47
MM
1362 goto out;
1363
85863e47
MM
1364 ret = -EINVAL;
1365 /* file position must be aligned */
aae8679b 1366 if ((*ppos % PM_ENTRY_BYTES) || (count % PM_ENTRY_BYTES))
a06db751 1367 goto out_mm;
85863e47
MM
1368
1369 ret = 0;
08161786 1370 if (!count)
a06db751 1371 goto out_mm;
08161786 1372
1c90308e
KK
1373 /* do not disclose physical addresses: attack vector */
1374 pm.show_pfn = file_ns_capable(file, &init_user_ns, CAP_SYS_ADMIN);
1375
8c829622 1376 pm.len = (PAGEMAP_WALK_SIZE >> PAGE_SHIFT);
1377 pm.buffer = kmalloc(pm.len * PM_ENTRY_BYTES, GFP_TEMPORARY);
5d7e0d2b 1378 ret = -ENOMEM;
d82ef020 1379 if (!pm.buffer)
a06db751 1380 goto out_mm;
85863e47 1381
356515e7 1382 pagemap_walk.pmd_entry = pagemap_pmd_range;
5d7e0d2b 1383 pagemap_walk.pte_hole = pagemap_pte_hole;
1a5cb814 1384#ifdef CONFIG_HUGETLB_PAGE
5dc37642 1385 pagemap_walk.hugetlb_entry = pagemap_hugetlb_range;
1a5cb814 1386#endif
5d7e0d2b
AM
1387 pagemap_walk.mm = mm;
1388 pagemap_walk.private = &pm;
1389
1390 src = *ppos;
1391 svpfn = src / PM_ENTRY_BYTES;
1392 start_vaddr = svpfn << PAGE_SHIFT;
a06db751 1393 end_vaddr = mm->task_size;
5d7e0d2b
AM
1394
1395 /* watch out for wraparound */
a06db751 1396 if (svpfn > mm->task_size >> PAGE_SHIFT)
5d7e0d2b
AM
1397 start_vaddr = end_vaddr;
1398
1399 /*
1400 * The odds are that this will stop walking way
1401 * before end_vaddr, because the length of the
1402 * user buffer is tracked in "pm", and the walk
1403 * will stop when we hit the end of the buffer.
1404 */
d82ef020
KH
1405 ret = 0;
1406 while (count && (start_vaddr < end_vaddr)) {
1407 int len;
1408 unsigned long end;
1409
1410 pm.pos = 0;
ea251c1d 1411 end = (start_vaddr + PAGEMAP_WALK_SIZE) & PAGEMAP_WALK_MASK;
d82ef020
KH
1412 /* overflow ? */
1413 if (end < start_vaddr || end > end_vaddr)
1414 end = end_vaddr;
1415 down_read(&mm->mmap_sem);
1416 ret = walk_page_range(start_vaddr, end, &pagemap_walk);
1417 up_read(&mm->mmap_sem);
1418 start_vaddr = end;
1419
1420 len = min(count, PM_ENTRY_BYTES * pm.pos);
309361e0 1421 if (copy_to_user(buf, pm.buffer, len)) {
d82ef020 1422 ret = -EFAULT;
a06db751 1423 goto out_free;
d82ef020
KH
1424 }
1425 copied += len;
1426 buf += len;
1427 count -= len;
85863e47 1428 }
d82ef020
KH
1429 *ppos += copied;
1430 if (!ret || ret == PM_END_OF_BUFFER)
1431 ret = copied;
1432
98bc93e5
KM
1433out_free:
1434 kfree(pm.buffer);
a06db751
KK
1435out_mm:
1436 mmput(mm);
85863e47
MM
1437out:
1438 return ret;
1439}
1440
541c237c
PE
1441static int pagemap_open(struct inode *inode, struct file *file)
1442{
a06db751
KK
1443 struct mm_struct *mm;
1444
a06db751
KK
1445 mm = proc_mem_open(inode, PTRACE_MODE_READ);
1446 if (IS_ERR(mm))
1447 return PTR_ERR(mm);
1448 file->private_data = mm;
1449 return 0;
1450}
1451
1452static int pagemap_release(struct inode *inode, struct file *file)
1453{
1454 struct mm_struct *mm = file->private_data;
1455
1456 if (mm)
1457 mmdrop(mm);
541c237c
PE
1458 return 0;
1459}
1460
85863e47
MM
1461const struct file_operations proc_pagemap_operations = {
1462 .llseek = mem_lseek, /* borrow this */
1463 .read = pagemap_read,
541c237c 1464 .open = pagemap_open,
a06db751 1465 .release = pagemap_release,
85863e47 1466};
1e883281 1467#endif /* CONFIG_PROC_PAGE_MONITOR */
85863e47 1468
6e21c8f1 1469#ifdef CONFIG_NUMA
6e21c8f1 1470
f69ff943 1471struct numa_maps {
f69ff943
SW
1472 unsigned long pages;
1473 unsigned long anon;
1474 unsigned long active;
1475 unsigned long writeback;
1476 unsigned long mapcount_max;
1477 unsigned long dirty;
1478 unsigned long swapcache;
1479 unsigned long node[MAX_NUMNODES];
1480};
1481
5b52fc89
SW
1482struct numa_maps_private {
1483 struct proc_maps_private proc_maps;
1484 struct numa_maps md;
1485};
1486
eb4866d0
DH
1487static void gather_stats(struct page *page, struct numa_maps *md, int pte_dirty,
1488 unsigned long nr_pages)
f69ff943
SW
1489{
1490 int count = page_mapcount(page);
1491
eb4866d0 1492 md->pages += nr_pages;
f69ff943 1493 if (pte_dirty || PageDirty(page))
eb4866d0 1494 md->dirty += nr_pages;
f69ff943
SW
1495
1496 if (PageSwapCache(page))
eb4866d0 1497 md->swapcache += nr_pages;
f69ff943
SW
1498
1499 if (PageActive(page) || PageUnevictable(page))
eb4866d0 1500 md->active += nr_pages;
f69ff943
SW
1501
1502 if (PageWriteback(page))
eb4866d0 1503 md->writeback += nr_pages;
f69ff943
SW
1504
1505 if (PageAnon(page))
eb4866d0 1506 md->anon += nr_pages;
f69ff943
SW
1507
1508 if (count > md->mapcount_max)
1509 md->mapcount_max = count;
1510
eb4866d0 1511 md->node[page_to_nid(page)] += nr_pages;
f69ff943
SW
1512}
1513
3200a8aa
DH
1514static struct page *can_gather_numa_stats(pte_t pte, struct vm_area_struct *vma,
1515 unsigned long addr)
1516{
1517 struct page *page;
1518 int nid;
1519
1520 if (!pte_present(pte))
1521 return NULL;
1522
1523 page = vm_normal_page(vma, addr, pte);
1524 if (!page)
1525 return NULL;
1526
1527 if (PageReserved(page))
1528 return NULL;
1529
1530 nid = page_to_nid(page);
4ff1b2c2 1531 if (!node_isset(nid, node_states[N_MEMORY]))
3200a8aa
DH
1532 return NULL;
1533
1534 return page;
1535}
1536
28093f9f
GS
1537#ifdef CONFIG_TRANSPARENT_HUGEPAGE
1538static struct page *can_gather_numa_stats_pmd(pmd_t pmd,
1539 struct vm_area_struct *vma,
1540 unsigned long addr)
1541{
1542 struct page *page;
1543 int nid;
1544
1545 if (!pmd_present(pmd))
1546 return NULL;
1547
1548 page = vm_normal_page_pmd(vma, addr, pmd);
1549 if (!page)
1550 return NULL;
1551
1552 if (PageReserved(page))
1553 return NULL;
1554
1555 nid = page_to_nid(page);
1556 if (!node_isset(nid, node_states[N_MEMORY]))
1557 return NULL;
1558
1559 return page;
1560}
1561#endif
1562
f69ff943
SW
1563static int gather_pte_stats(pmd_t *pmd, unsigned long addr,
1564 unsigned long end, struct mm_walk *walk)
1565{
d85f4d6d
NH
1566 struct numa_maps *md = walk->private;
1567 struct vm_area_struct *vma = walk->vma;
f69ff943
SW
1568 spinlock_t *ptl;
1569 pte_t *orig_pte;
1570 pte_t *pte;
1571
28093f9f 1572#ifdef CONFIG_TRANSPARENT_HUGEPAGE
b6ec57f4
KS
1573 ptl = pmd_trans_huge_lock(pmd, vma);
1574 if (ptl) {
025c5b24
NH
1575 struct page *page;
1576
28093f9f 1577 page = can_gather_numa_stats_pmd(*pmd, vma, addr);
025c5b24 1578 if (page)
28093f9f 1579 gather_stats(page, md, pmd_dirty(*pmd),
025c5b24 1580 HPAGE_PMD_SIZE/PAGE_SIZE);
bf929152 1581 spin_unlock(ptl);
025c5b24 1582 return 0;
32ef4384
DH
1583 }
1584
1a5a9906
AA
1585 if (pmd_trans_unstable(pmd))
1586 return 0;
28093f9f 1587#endif
f69ff943
SW
1588 orig_pte = pte = pte_offset_map_lock(walk->mm, pmd, addr, &ptl);
1589 do {
d85f4d6d 1590 struct page *page = can_gather_numa_stats(*pte, vma, addr);
f69ff943
SW
1591 if (!page)
1592 continue;
eb4866d0 1593 gather_stats(page, md, pte_dirty(*pte), 1);
f69ff943
SW
1594
1595 } while (pte++, addr += PAGE_SIZE, addr != end);
1596 pte_unmap_unlock(orig_pte, ptl);
a66c0410 1597 cond_resched();
f69ff943
SW
1598 return 0;
1599}
1600#ifdef CONFIG_HUGETLB_PAGE
632fd60f 1601static int gather_hugetlb_stats(pte_t *pte, unsigned long hmask,
f69ff943
SW
1602 unsigned long addr, unsigned long end, struct mm_walk *walk)
1603{
5c2ff95e 1604 pte_t huge_pte = huge_ptep_get(pte);
f69ff943
SW
1605 struct numa_maps *md;
1606 struct page *page;
1607
5c2ff95e 1608 if (!pte_present(huge_pte))
f69ff943
SW
1609 return 0;
1610
5c2ff95e 1611 page = pte_page(huge_pte);
f69ff943
SW
1612 if (!page)
1613 return 0;
1614
1615 md = walk->private;
5c2ff95e 1616 gather_stats(page, md, pte_dirty(huge_pte), 1);
f69ff943
SW
1617 return 0;
1618}
1619
1620#else
632fd60f 1621static int gather_hugetlb_stats(pte_t *pte, unsigned long hmask,
f69ff943
SW
1622 unsigned long addr, unsigned long end, struct mm_walk *walk)
1623{
1624 return 0;
1625}
1626#endif
1627
1628/*
1629 * Display pages allocated per node and memory policy via /proc.
1630 */
b7643757 1631static int show_numa_map(struct seq_file *m, void *v, int is_pid)
f69ff943 1632{
5b52fc89
SW
1633 struct numa_maps_private *numa_priv = m->private;
1634 struct proc_maps_private *proc_priv = &numa_priv->proc_maps;
f69ff943 1635 struct vm_area_struct *vma = v;
5b52fc89 1636 struct numa_maps *md = &numa_priv->md;
e14748e8 1637 struct file *file = vma_pr_or_file(vma);
f69ff943 1638 struct mm_struct *mm = vma->vm_mm;
d85f4d6d
NH
1639 struct mm_walk walk = {
1640 .hugetlb_entry = gather_hugetlb_stats,
1641 .pmd_entry = gather_pte_stats,
1642 .private = md,
1643 .mm = mm,
1644 };
f69ff943 1645 struct mempolicy *pol;
948927ee
DR
1646 char buffer[64];
1647 int nid;
f69ff943
SW
1648
1649 if (!mm)
1650 return 0;
1651
5b52fc89
SW
1652 /* Ensure we start with an empty set of numa_maps statistics. */
1653 memset(md, 0, sizeof(*md));
f69ff943 1654
498f2371
ON
1655 pol = __get_vma_policy(vma, vma->vm_start);
1656 if (pol) {
1657 mpol_to_str(buffer, sizeof(buffer), pol);
1658 mpol_cond_put(pol);
1659 } else {
1660 mpol_to_str(buffer, sizeof(buffer), proc_priv->task_mempolicy);
1661 }
f69ff943
SW
1662
1663 seq_printf(m, "%08lx %s", vma->vm_start, buffer);
1664
1665 if (file) {
17c2b4ee 1666 seq_puts(m, " file=");
2726d566 1667 seq_file_path(m, file, "\n\t= ");
f69ff943 1668 } else if (vma->vm_start <= mm->brk && vma->vm_end >= mm->start_brk) {
17c2b4ee 1669 seq_puts(m, " heap");
b18cb64e 1670 } else if (is_stack(proc_priv, vma)) {
65376df5 1671 seq_puts(m, " stack");
f69ff943
SW
1672 }
1673
fc360bd9 1674 if (is_vm_hugetlb_page(vma))
17c2b4ee 1675 seq_puts(m, " huge");
fc360bd9 1676
d85f4d6d
NH
1677 /* mmap_sem is held by m_start */
1678 walk_page_vma(vma, &walk);
f69ff943
SW
1679
1680 if (!md->pages)
1681 goto out;
1682
1683 if (md->anon)
1684 seq_printf(m, " anon=%lu", md->anon);
1685
1686 if (md->dirty)
1687 seq_printf(m, " dirty=%lu", md->dirty);
1688
1689 if (md->pages != md->anon && md->pages != md->dirty)
1690 seq_printf(m, " mapped=%lu", md->pages);
1691
1692 if (md->mapcount_max > 1)
1693 seq_printf(m, " mapmax=%lu", md->mapcount_max);
1694
1695 if (md->swapcache)
1696 seq_printf(m, " swapcache=%lu", md->swapcache);
1697
1698 if (md->active < md->pages && !is_vm_hugetlb_page(vma))
1699 seq_printf(m, " active=%lu", md->active);
1700
1701 if (md->writeback)
1702 seq_printf(m, " writeback=%lu", md->writeback);
1703
948927ee
DR
1704 for_each_node_state(nid, N_MEMORY)
1705 if (md->node[nid])
1706 seq_printf(m, " N%d=%lu", nid, md->node[nid]);
198d1597
RA
1707
1708 seq_printf(m, " kernelpagesize_kB=%lu", vma_kernel_pagesize(vma) >> 10);
f69ff943
SW
1709out:
1710 seq_putc(m, '\n');
b8c20a9b 1711 m_cache_vma(m, vma);
f69ff943
SW
1712 return 0;
1713}
5b52fc89 1714
b7643757
SP
1715static int show_pid_numa_map(struct seq_file *m, void *v)
1716{
1717 return show_numa_map(m, v, 1);
1718}
1719
1720static int show_tid_numa_map(struct seq_file *m, void *v)
1721{
1722 return show_numa_map(m, v, 0);
1723}
1724
03a44825 1725static const struct seq_operations proc_pid_numa_maps_op = {
b7643757
SP
1726 .start = m_start,
1727 .next = m_next,
1728 .stop = m_stop,
1729 .show = show_pid_numa_map,
6e21c8f1 1730};
662795de 1731
b7643757
SP
1732static const struct seq_operations proc_tid_numa_maps_op = {
1733 .start = m_start,
1734 .next = m_next,
1735 .stop = m_stop,
1736 .show = show_tid_numa_map,
1737};
1738
1739static int numa_maps_open(struct inode *inode, struct file *file,
1740 const struct seq_operations *ops)
662795de 1741{
4db7d0ee
ON
1742 return proc_maps_open(inode, file, ops,
1743 sizeof(struct numa_maps_private));
662795de
EB
1744}
1745
b7643757
SP
1746static int pid_numa_maps_open(struct inode *inode, struct file *file)
1747{
1748 return numa_maps_open(inode, file, &proc_pid_numa_maps_op);
1749}
1750
1751static int tid_numa_maps_open(struct inode *inode, struct file *file)
1752{
1753 return numa_maps_open(inode, file, &proc_tid_numa_maps_op);
1754}
1755
1756const struct file_operations proc_pid_numa_maps_operations = {
1757 .open = pid_numa_maps_open,
1758 .read = seq_read,
1759 .llseek = seq_lseek,
29a40ace 1760 .release = proc_map_release,
b7643757
SP
1761};
1762
1763const struct file_operations proc_tid_numa_maps_operations = {
1764 .open = tid_numa_maps_open,
662795de
EB
1765 .read = seq_read,
1766 .llseek = seq_lseek,
29a40ace 1767 .release = proc_map_release,
662795de 1768};
f69ff943 1769#endif /* CONFIG_NUMA */