blob: 2a82379510fc0ef5915b8dc5e94ddac950ece26a [file] [log] [blame]
xjb04a4022021-11-25 15:01:52 +08001// SPDX-License-Identifier: GPL-2.0
2#include <linux/debugfs.h>
3#include <linux/mm.h>
4#include <linux/slab.h>
5#include <linux/uaccess.h>
6#include <linux/bootmem.h>
7#include <linux/stacktrace.h>
8#include <linux/page_owner.h>
9#include <linux/jump_label.h>
10#include <linux/migrate.h>
11#include <linux/stackdepot.h>
12#include <linux/seq_file.h>
13#include <linux/stackdepot.h>
14
15#include "internal.h"
16
17/*
18 * TODO: teach PAGE_OWNER_STACK_DEPTH (__dump_page_owner and save_stack)
19 * to use off stack temporal storage
20 */
21#define PAGE_OWNER_STACK_DEPTH (16)
22
23struct page_owner {
24 unsigned short order;
25 short last_migrate_reason;
26 gfp_t gfp_mask;
27 depot_stack_handle_t handle;
28};
29
30static bool page_owner_disabled = true;
31DEFINE_STATIC_KEY_FALSE(page_owner_inited);
32
33static depot_stack_handle_t dummy_handle;
34static depot_stack_handle_t failure_handle;
35static depot_stack_handle_t early_handle;
36
37static void init_early_allocated_pages(void);
38
39static int __init early_page_owner_param(char *buf)
40{
41 if (!buf)
42 return -EINVAL;
43
44 if (strcmp(buf, "on") == 0)
45 page_owner_disabled = false;
46
47 return 0;
48}
49early_param("page_owner", early_page_owner_param);
50
51static bool need_page_owner(void)
52{
53 if (page_owner_disabled)
54 return false;
55
56 return true;
57}
58
59static __always_inline depot_stack_handle_t create_dummy_stack(void)
60{
61 unsigned long entries[4];
62 struct stack_trace dummy;
63
64 dummy.nr_entries = 0;
65 dummy.max_entries = ARRAY_SIZE(entries);
66 dummy.entries = &entries[0];
67 dummy.skip = 0;
68
69 save_stack_trace(&dummy);
70 return depot_save_stack(&dummy, GFP_KERNEL);
71}
72
73static noinline void register_dummy_stack(void)
74{
75 dummy_handle = create_dummy_stack();
76}
77
78static noinline void register_failure_stack(void)
79{
80 failure_handle = create_dummy_stack();
81}
82
83static noinline void register_early_stack(void)
84{
85 early_handle = create_dummy_stack();
86}
87
88static void init_page_owner(void)
89{
90 if (page_owner_disabled)
91 return;
92
93 register_dummy_stack();
94 register_failure_stack();
95 register_early_stack();
96 static_branch_enable(&page_owner_inited);
97 init_early_allocated_pages();
98}
99
100struct page_ext_operations page_owner_ops = {
101 .size = sizeof(struct page_owner),
102 .need = need_page_owner,
103 .init = init_page_owner,
104};
105
106static inline struct page_owner *get_page_owner(struct page_ext *page_ext)
107{
108 return (void *)page_ext + page_owner_ops.offset;
109}
110
111void __reset_page_owner(struct page *page, unsigned int order)
112{
113 int i;
114 struct page_ext *page_ext;
115
116 for (i = 0; i < (1 << order); i++) {
117 page_ext = lookup_page_ext(page + i);
118 if (unlikely(!page_ext))
119 continue;
120 __clear_bit(PAGE_EXT_OWNER, &page_ext->flags);
121 }
122}
123
124static inline bool check_recursive_alloc(struct stack_trace *trace,
125 unsigned long ip)
126{
127 int i;
128
129 if (!trace->nr_entries)
130 return false;
131
132 for (i = 0; i < trace->nr_entries; i++) {
133 if (trace->entries[i] == ip)
134 return true;
135 }
136
137 return false;
138}
139
140static noinline depot_stack_handle_t save_stack(gfp_t flags)
141{
142 unsigned long entries[PAGE_OWNER_STACK_DEPTH];
143 struct stack_trace trace = {
144 .nr_entries = 0,
145 .entries = entries,
146 .max_entries = PAGE_OWNER_STACK_DEPTH,
147 .skip = 2
148 };
149 depot_stack_handle_t handle;
150
151 save_stack_trace(&trace);
152 if (trace.nr_entries != 0 &&
153 trace.entries[trace.nr_entries-1] == ULONG_MAX)
154 trace.nr_entries--;
155
156 /*
157 * We need to check recursion here because our request to stackdepot
158 * could trigger memory allocation to save new entry. New memory
159 * allocation would reach here and call depot_save_stack() again
160 * if we don't catch it. There is still not enough memory in stackdepot
161 * so it would try to allocate memory again and loop forever.
162 */
163 if (check_recursive_alloc(&trace, _RET_IP_))
164 return dummy_handle;
165
166 handle = depot_save_stack(&trace, flags);
167 if (!handle)
168 handle = failure_handle;
169
170 return handle;
171}
172
173static inline void __set_page_owner_handle(struct page_ext *page_ext,
174 depot_stack_handle_t handle, unsigned int order, gfp_t gfp_mask)
175{
176 struct page_owner *page_owner;
177
178 page_owner = get_page_owner(page_ext);
179 page_owner->handle = handle;
180 page_owner->order = order;
181 page_owner->gfp_mask = gfp_mask;
182 page_owner->last_migrate_reason = -1;
183
184 __set_bit(PAGE_EXT_OWNER, &page_ext->flags);
185}
186
187noinline void __set_page_owner(struct page *page, unsigned int order,
188 gfp_t gfp_mask)
189{
190 struct page_ext *page_ext = lookup_page_ext(page);
191 depot_stack_handle_t handle;
192
193 if (unlikely(!page_ext))
194 return;
195
196 handle = save_stack(gfp_mask);
197 __set_page_owner_handle(page_ext, handle, order, gfp_mask);
198}
199
200void __set_page_owner_migrate_reason(struct page *page, int reason)
201{
202 struct page_ext *page_ext = lookup_page_ext(page);
203 struct page_owner *page_owner;
204
205 if (unlikely(!page_ext))
206 return;
207
208 page_owner = get_page_owner(page_ext);
209 page_owner->last_migrate_reason = reason;
210}
211
212void __split_page_owner(struct page *page, unsigned int order)
213{
214 int i;
215 struct page_ext *page_ext = lookup_page_ext(page);
216 struct page_owner *page_owner;
217
218 if (unlikely(!page_ext))
219 return;
220
221 page_owner = get_page_owner(page_ext);
222 page_owner->order = 0;
223 for (i = 1; i < (1 << order); i++)
224 __copy_page_owner(page, page + i);
225}
226
227void __copy_page_owner(struct page *oldpage, struct page *newpage)
228{
229 struct page_ext *old_ext = lookup_page_ext(oldpage);
230 struct page_ext *new_ext = lookup_page_ext(newpage);
231 struct page_owner *old_page_owner, *new_page_owner;
232
233 if (unlikely(!old_ext || !new_ext))
234 return;
235
236 old_page_owner = get_page_owner(old_ext);
237 new_page_owner = get_page_owner(new_ext);
238 new_page_owner->order = old_page_owner->order;
239 new_page_owner->gfp_mask = old_page_owner->gfp_mask;
240 new_page_owner->last_migrate_reason =
241 old_page_owner->last_migrate_reason;
242 new_page_owner->handle = old_page_owner->handle;
243
244 /*
245 * We don't clear the bit on the oldpage as it's going to be freed
246 * after migration. Until then, the info can be useful in case of
247 * a bug, and the overal stats will be off a bit only temporarily.
248 * Also, migrate_misplaced_transhuge_page() can still fail the
249 * migration and then we want the oldpage to retain the info. But
250 * in that case we also don't need to explicitly clear the info from
251 * the new page, which will be freed.
252 */
253 __set_bit(PAGE_EXT_OWNER, &new_ext->flags);
254}
255
256void pagetypeinfo_showmixedcount_print(struct seq_file *m,
257 pg_data_t *pgdat, struct zone *zone)
258{
259 struct page *page;
260 struct page_ext *page_ext;
261 struct page_owner *page_owner;
262 unsigned long pfn = zone->zone_start_pfn, block_end_pfn;
263 unsigned long end_pfn = pfn + zone->spanned_pages;
264 unsigned long count[MIGRATE_TYPES] = { 0, };
265 int pageblock_mt, page_mt;
266 int i;
267
268 /* Scan block by block. First and last block may be incomplete */
269 pfn = zone->zone_start_pfn;
270
271 /*
272 * Walk the zone in pageblock_nr_pages steps. If a page block spans
273 * a zone boundary, it will be double counted between zones. This does
274 * not matter as the mixed block count will still be correct
275 */
276 for (; pfn < end_pfn; ) {
277 page = pfn_to_online_page(pfn);
278 if (!page) {
279 pfn = ALIGN(pfn + 1, MAX_ORDER_NR_PAGES);
280 continue;
281 }
282
283 block_end_pfn = ALIGN(pfn + 1, pageblock_nr_pages);
284 block_end_pfn = min(block_end_pfn, end_pfn);
285
286 pageblock_mt = get_pageblock_migratetype(page);
287
288 for (; pfn < block_end_pfn; pfn++) {
289 if (!pfn_valid_within(pfn))
290 continue;
291
292 /* The pageblock is online, no need to recheck. */
293 page = pfn_to_page(pfn);
294
295 if (page_zone(page) != zone)
296 continue;
297
298 if (PageBuddy(page)) {
299 unsigned long freepage_order;
300
301 freepage_order = page_order_unsafe(page);
302 if (freepage_order < MAX_ORDER)
303 pfn += (1UL << freepage_order) - 1;
304 continue;
305 }
306
307 if (PageReserved(page))
308 continue;
309
310 page_ext = lookup_page_ext(page);
311 if (unlikely(!page_ext))
312 continue;
313
314 if (!test_bit(PAGE_EXT_OWNER, &page_ext->flags))
315 continue;
316
317 page_owner = get_page_owner(page_ext);
318 page_mt = gfpflags_to_migratetype(
319 page_owner->gfp_mask);
320 if (pageblock_mt != page_mt) {
321 if (is_migrate_cma(pageblock_mt))
322 count[MIGRATE_MOVABLE]++;
323 else
324 count[pageblock_mt]++;
325
326 pfn = block_end_pfn;
327 break;
328 }
329 pfn += (1UL << page_owner->order) - 1;
330 }
331 }
332
333 /* Print counts */
334 seq_printf(m, "Node %d, zone %8s ", pgdat->node_id, zone->name);
335 for (i = 0; i < MIGRATE_TYPES; i++)
336 seq_printf(m, "%12lu ", count[i]);
337 seq_putc(m, '\n');
338}
339
340static ssize_t
341print_page_owner(char __user *buf, size_t count, unsigned long pfn,
342 struct page *page, struct page_owner *page_owner,
343 depot_stack_handle_t handle)
344{
345 int ret;
346 int pageblock_mt, page_mt;
347 char *kbuf;
348 unsigned long entries[PAGE_OWNER_STACK_DEPTH];
349 struct stack_trace trace = {
350 .nr_entries = 0,
351 .entries = entries,
352 .max_entries = PAGE_OWNER_STACK_DEPTH,
353 .skip = 0
354 };
355
356 count = min_t(size_t, count, PAGE_SIZE);
357 kbuf = kmalloc(count, GFP_KERNEL);
358 if (!kbuf)
359 return -ENOMEM;
360
361 ret = snprintf(kbuf, count,
362 "Page allocated via order %u, mask %#x(%pGg)\n",
363 page_owner->order, page_owner->gfp_mask,
364 &page_owner->gfp_mask);
365
366 if (ret >= count)
367 goto err;
368
369 /* Print information relevant to grouping pages by mobility */
370 pageblock_mt = get_pageblock_migratetype(page);
371 page_mt = gfpflags_to_migratetype(page_owner->gfp_mask);
372 ret += snprintf(kbuf + ret, count - ret,
373 "PFN %lu type %s Block %lu type %s Flags %#lx(%pGp)\n",
374 pfn,
375 migratetype_names[page_mt],
376 pfn >> pageblock_order,
377 migratetype_names[pageblock_mt],
378 page->flags, &page->flags);
379
380 if (ret >= count)
381 goto err;
382
383 depot_fetch_stack(handle, &trace);
384 ret += snprint_stack_trace(kbuf + ret, count - ret, &trace, 0);
385 if (ret >= count)
386 goto err;
387
388 if (page_owner->last_migrate_reason != -1) {
389 ret += snprintf(kbuf + ret, count - ret,
390 "Page has been migrated, last migrate reason: %s\n",
391 migrate_reason_names[page_owner->last_migrate_reason]);
392 if (ret >= count)
393 goto err;
394 }
395
396 ret += snprintf(kbuf + ret, count - ret, "\n");
397 if (ret >= count)
398 goto err;
399
400 if (copy_to_user(buf, kbuf, ret))
401 ret = -EFAULT;
402
403 kfree(kbuf);
404 return ret;
405
406err:
407 kfree(kbuf);
408 return -ENOMEM;
409}
410
411void __dump_page_owner(struct page *page)
412{
413 struct page_ext *page_ext = lookup_page_ext(page);
414 struct page_owner *page_owner;
415 unsigned long entries[PAGE_OWNER_STACK_DEPTH];
416 struct stack_trace trace = {
417 .nr_entries = 0,
418 .entries = entries,
419 .max_entries = PAGE_OWNER_STACK_DEPTH,
420 .skip = 0
421 };
422 depot_stack_handle_t handle;
423 gfp_t gfp_mask;
424 int mt;
425
426 if (unlikely(!page_ext)) {
427 pr_alert("There is not page extension available.\n");
428 return;
429 }
430
431 page_owner = get_page_owner(page_ext);
432 gfp_mask = page_owner->gfp_mask;
433 mt = gfpflags_to_migratetype(gfp_mask);
434
435 if (!test_bit(PAGE_EXT_OWNER, &page_ext->flags)) {
436 pr_alert("page_owner info is not active (free page?)\n");
437 return;
438 }
439
440 handle = READ_ONCE(page_owner->handle);
441 if (!handle) {
442 pr_alert("page_owner info is not active (free page?)\n");
443 return;
444 }
445
446 depot_fetch_stack(handle, &trace);
447 pr_alert("page allocated via order %u, migratetype %s, gfp_mask %#x(%pGg)\n",
448 page_owner->order, migratetype_names[mt], gfp_mask, &gfp_mask);
449 print_stack_trace(&trace, 0);
450
451 if (page_owner->last_migrate_reason != -1)
452 pr_alert("page has been migrated, last migrate reason: %s\n",
453 migrate_reason_names[page_owner->last_migrate_reason]);
454}
455
456static ssize_t
457read_page_owner(struct file *file, char __user *buf, size_t count, loff_t *ppos)
458{
459 unsigned long pfn;
460 struct page *page;
461 struct page_ext *page_ext;
462 struct page_owner *page_owner;
463 depot_stack_handle_t handle;
464
465 if (!static_branch_unlikely(&page_owner_inited))
466 return -EINVAL;
467
468 page = NULL;
469 pfn = min_low_pfn + *ppos;
470
471 /* Find a valid PFN or the start of a MAX_ORDER_NR_PAGES area */
472 while (!pfn_valid(pfn) && (pfn & (MAX_ORDER_NR_PAGES - 1)) != 0)
473 pfn++;
474
475 drain_all_pages(NULL);
476
477 /* Find an allocated page */
478 for (; pfn < max_pfn; pfn++) {
479 /*
480 * If the new page is in a new MAX_ORDER_NR_PAGES area,
481 * validate the area as existing, skip it if not
482 */
483 if ((pfn & (MAX_ORDER_NR_PAGES - 1)) == 0 && !pfn_valid(pfn)) {
484 pfn += MAX_ORDER_NR_PAGES - 1;
485 continue;
486 }
487
488 /* Check for holes within a MAX_ORDER area */
489 if (!pfn_valid_within(pfn))
490 continue;
491
492 page = pfn_to_page(pfn);
493 if (PageBuddy(page)) {
494 unsigned long freepage_order = page_order_unsafe(page);
495
496 if (freepage_order < MAX_ORDER)
497 pfn += (1UL << freepage_order) - 1;
498 continue;
499 }
500
501 page_ext = lookup_page_ext(page);
502 if (unlikely(!page_ext))
503 continue;
504
505 /*
506 * Some pages could be missed by concurrent allocation or free,
507 * because we don't hold the zone lock.
508 */
509 if (!test_bit(PAGE_EXT_OWNER, &page_ext->flags))
510 continue;
511
512 page_owner = get_page_owner(page_ext);
513
514 /*
515 * Access to page_ext->handle isn't synchronous so we should
516 * be careful to access it.
517 */
518 handle = READ_ONCE(page_owner->handle);
519 if (!handle)
520 continue;
521
522 /* Record the next PFN to read in the file offset */
523 *ppos = (pfn - min_low_pfn) + 1;
524
525 return print_page_owner(buf, count, pfn, page,
526 page_owner, handle);
527 }
528
529 return 0;
530}
531
532static void init_pages_in_zone(pg_data_t *pgdat, struct zone *zone)
533{
534 unsigned long pfn = zone->zone_start_pfn;
535 unsigned long end_pfn = zone_end_pfn(zone);
536 unsigned long count = 0;
537
538 /*
539 * Walk the zone in pageblock_nr_pages steps. If a page block spans
540 * a zone boundary, it will be double counted between zones. This does
541 * not matter as the mixed block count will still be correct
542 */
543 for (; pfn < end_pfn; ) {
544 unsigned long block_end_pfn;
545
546 if (!pfn_valid(pfn)) {
547 pfn = ALIGN(pfn + 1, MAX_ORDER_NR_PAGES);
548 continue;
549 }
550
551 block_end_pfn = ALIGN(pfn + 1, pageblock_nr_pages);
552 block_end_pfn = min(block_end_pfn, end_pfn);
553
554 for (; pfn < block_end_pfn; pfn++) {
555 struct page *page;
556 struct page_ext *page_ext;
557
558 if (!pfn_valid_within(pfn))
559 continue;
560
561 page = pfn_to_page(pfn);
562
563 if (page_zone(page) != zone)
564 continue;
565
566 /*
567 * To avoid having to grab zone->lock, be a little
568 * careful when reading buddy page order. The only
569 * danger is that we skip too much and potentially miss
570 * some early allocated pages, which is better than
571 * heavy lock contention.
572 */
573 if (PageBuddy(page)) {
574 unsigned long order = page_order_unsafe(page);
575
576 if (order > 0 && order < MAX_ORDER)
577 pfn += (1UL << order) - 1;
578 continue;
579 }
580
581 if (PageReserved(page))
582 continue;
583
584 page_ext = lookup_page_ext(page);
585 if (unlikely(!page_ext))
586 continue;
587
588 /* Maybe overlapping zone */
589 if (test_bit(PAGE_EXT_OWNER, &page_ext->flags))
590 continue;
591
592 /* Found early allocated page */
593 __set_page_owner_handle(page_ext, early_handle, 0, 0);
594 count++;
595 }
596 cond_resched();
597 }
598
599 pr_info("Node %d, zone %8s: page owner found early allocated %lu pages\n",
600 pgdat->node_id, zone->name, count);
601}
602
603static void init_zones_in_node(pg_data_t *pgdat)
604{
605 struct zone *zone;
606 struct zone *node_zones = pgdat->node_zones;
607
608 for (zone = node_zones; zone - node_zones < MAX_NR_ZONES; ++zone) {
609 if (!populated_zone(zone))
610 continue;
611
612 init_pages_in_zone(pgdat, zone);
613 }
614}
615
616static void init_early_allocated_pages(void)
617{
618 pg_data_t *pgdat;
619
620 for_each_online_pgdat(pgdat)
621 init_zones_in_node(pgdat);
622}
623
624static const struct file_operations proc_page_owner_operations = {
625 .read = read_page_owner,
626};
627
628static int __init pageowner_init(void)
629{
630 struct dentry *dentry;
631
632 if (!static_branch_unlikely(&page_owner_inited)) {
633 pr_info("page_owner is disabled\n");
634 return 0;
635 }
636
637 dentry = debugfs_create_file("page_owner", 0400, NULL,
638 NULL, &proc_page_owner_operations);
639
640 return PTR_ERR_OR_ZERO(dentry);
641}
642late_initcall(pageowner_init)
643
644static ssize_t __update_max_page_owner(unsigned long pfn,
645 struct page *page, struct page_owner *page_owner,
646 depot_stack_handle_t handle)
647{
648 unsigned long entries[PAGE_OWNER_STACK_DEPTH];
649 struct stack_trace trace = {
650 .nr_entries = 0,
651 .entries = entries,
652 .max_entries = PAGE_OWNER_STACK_DEPTH,
653 .skip = 0
654 };
655
656 depot_hit_stack(handle, &trace, (1 << page_owner->order));
657 return 0;
658}
659
660ssize_t print_max_page_owner(void)
661{
662 unsigned long pfn;
663 struct page *page;
664 struct page_ext *page_ext;
665 struct page_owner *page_owner;
666 depot_stack_handle_t handle;
667
668 if (!static_branch_unlikely(&page_owner_inited))
669 return -EINVAL;
670
671 page = NULL;
672 pfn = min_low_pfn;
673
674 /* Find a valid PFN or the start of a MAX_ORDER_NR_PAGES area */
675 while (!pfn_valid(pfn) && (pfn & (MAX_ORDER_NR_PAGES - 1)) != 0)
676 pfn++;
677
678 drain_all_pages(NULL);
679
680 /* Find an allocated page */
681 for (; pfn < max_pfn; pfn++) {
682 /*
683 * If the new page is in a new MAX_ORDER_NR_PAGES area,
684 * validate the area as existing, skip it if not
685 */
686 if ((pfn & (MAX_ORDER_NR_PAGES - 1)) == 0 && !pfn_valid(pfn)) {
687 pfn += MAX_ORDER_NR_PAGES - 1;
688 continue;
689 }
690
691 /* Check for holes within a MAX_ORDER area */
692 if (!pfn_valid_within(pfn))
693 continue;
694
695 page = pfn_to_page(pfn);
696 if (PageBuddy(page)) {
697 unsigned long freepage_order = page_order_unsafe(page);
698
699 if (freepage_order < MAX_ORDER)
700 pfn += (1UL << freepage_order) - 1;
701 continue;
702 }
703
704 page_ext = lookup_page_ext(page);
705 if (unlikely(!page_ext))
706 continue;
707
708 /*
709 * Some pages could be missed by concurrent allocation or free,
710 * because we don't hold the zone lock.
711 */
712 if (!test_bit(PAGE_EXT_OWNER, &page_ext->flags))
713 continue;
714
715 page_owner = get_page_owner(page_ext);
716
717 /*
718 * Access to page_ext->handle isn't synchronous so we should
719 * be careful to access it.
720 */
721 handle = READ_ONCE(page_owner->handle);
722 if (!handle)
723 continue;
724
725 __update_max_page_owner(pfn, page, page_owner, handle);
726 }
727
728 show_max_hit_page();
729
730 return 0;
731}