oom: add helpers for setting and clearing TIF_MEMDIE
[deliverable/linux.git] / mm / oom_kill.c
1 /*
2 * linux/mm/oom_kill.c
3 *
4 * Copyright (C) 1998,2000 Rik van Riel
5 * Thanks go out to Claus Fischer for some serious inspiration and
6 * for goading me into coding this file...
7 * Copyright (C) 2010 Google, Inc.
8 * Rewritten by David Rientjes
9 *
10 * The routines in this file are used to kill a process when
11 * we're seriously out of memory. This gets called from __alloc_pages()
12 * in mm/page_alloc.c when we really run out of memory.
13 *
14 * Since we won't call these routines often (on a well-configured
15 * machine) this file will double as a 'coding guide' and a signpost
16 * for newbie kernel hackers. It features several pointers to major
17 * kernel subsystems and hints as to where to find out what things do.
18 */
19
20 #include <linux/oom.h>
21 #include <linux/mm.h>
22 #include <linux/err.h>
23 #include <linux/gfp.h>
24 #include <linux/sched.h>
25 #include <linux/swap.h>
26 #include <linux/timex.h>
27 #include <linux/jiffies.h>
28 #include <linux/cpuset.h>
29 #include <linux/export.h>
30 #include <linux/notifier.h>
31 #include <linux/memcontrol.h>
32 #include <linux/mempolicy.h>
33 #include <linux/security.h>
34 #include <linux/ptrace.h>
35 #include <linux/freezer.h>
36 #include <linux/ftrace.h>
37 #include <linux/ratelimit.h>
38
39 #define CREATE_TRACE_POINTS
40 #include <trace/events/oom.h>
41
42 int sysctl_panic_on_oom;
43 int sysctl_oom_kill_allocating_task;
44 int sysctl_oom_dump_tasks = 1;
45 static DEFINE_SPINLOCK(zone_scan_lock);
46
47 #ifdef CONFIG_NUMA
48 /**
49 * has_intersects_mems_allowed() - check task eligiblity for kill
50 * @start: task struct of which task to consider
51 * @mask: nodemask passed to page allocator for mempolicy ooms
52 *
53 * Task eligibility is determined by whether or not a candidate task, @tsk,
54 * shares the same mempolicy nodes as current if it is bound by such a policy
55 * and whether or not it has the same set of allowed cpuset nodes.
56 */
57 static bool has_intersects_mems_allowed(struct task_struct *start,
58 const nodemask_t *mask)
59 {
60 struct task_struct *tsk;
61 bool ret = false;
62
63 rcu_read_lock();
64 for_each_thread(start, tsk) {
65 if (mask) {
66 /*
67 * If this is a mempolicy constrained oom, tsk's
68 * cpuset is irrelevant. Only return true if its
69 * mempolicy intersects current, otherwise it may be
70 * needlessly killed.
71 */
72 ret = mempolicy_nodemask_intersects(tsk, mask);
73 } else {
74 /*
75 * This is not a mempolicy constrained oom, so only
76 * check the mems of tsk's cpuset.
77 */
78 ret = cpuset_mems_allowed_intersects(current, tsk);
79 }
80 if (ret)
81 break;
82 }
83 rcu_read_unlock();
84
85 return ret;
86 }
87 #else
88 static bool has_intersects_mems_allowed(struct task_struct *tsk,
89 const nodemask_t *mask)
90 {
91 return true;
92 }
93 #endif /* CONFIG_NUMA */
94
95 /*
96 * The process p may have detached its own ->mm while exiting or through
97 * use_mm(), but one or more of its subthreads may still have a valid
98 * pointer. Return p, or any of its subthreads with a valid ->mm, with
99 * task_lock() held.
100 */
101 struct task_struct *find_lock_task_mm(struct task_struct *p)
102 {
103 struct task_struct *t;
104
105 rcu_read_lock();
106
107 for_each_thread(p, t) {
108 task_lock(t);
109 if (likely(t->mm))
110 goto found;
111 task_unlock(t);
112 }
113 t = NULL;
114 found:
115 rcu_read_unlock();
116
117 return t;
118 }
119
120 /* return true if the task is not adequate as candidate victim task. */
121 static bool oom_unkillable_task(struct task_struct *p,
122 struct mem_cgroup *memcg, const nodemask_t *nodemask)
123 {
124 if (is_global_init(p))
125 return true;
126 if (p->flags & PF_KTHREAD)
127 return true;
128
129 /* When mem_cgroup_out_of_memory() and p is not member of the group */
130 if (memcg && !task_in_mem_cgroup(p, memcg))
131 return true;
132
133 /* p may not have freeable memory in nodemask */
134 if (!has_intersects_mems_allowed(p, nodemask))
135 return true;
136
137 return false;
138 }
139
140 /**
141 * oom_badness - heuristic function to determine which candidate task to kill
142 * @p: task struct of which task we should calculate
143 * @totalpages: total present RAM allowed for page allocation
144 *
145 * The heuristic for determining which task to kill is made to be as simple and
146 * predictable as possible. The goal is to return the highest value for the
147 * task consuming the most memory to avoid subsequent oom failures.
148 */
149 unsigned long oom_badness(struct task_struct *p, struct mem_cgroup *memcg,
150 const nodemask_t *nodemask, unsigned long totalpages)
151 {
152 long points;
153 long adj;
154
155 if (oom_unkillable_task(p, memcg, nodemask))
156 return 0;
157
158 p = find_lock_task_mm(p);
159 if (!p)
160 return 0;
161
162 adj = (long)p->signal->oom_score_adj;
163 if (adj == OOM_SCORE_ADJ_MIN) {
164 task_unlock(p);
165 return 0;
166 }
167
168 /*
169 * The baseline for the badness score is the proportion of RAM that each
170 * task's rss, pagetable and swap space use.
171 */
172 points = get_mm_rss(p->mm) + atomic_long_read(&p->mm->nr_ptes) +
173 get_mm_counter(p->mm, MM_SWAPENTS);
174 task_unlock(p);
175
176 /*
177 * Root processes get 3% bonus, just like the __vm_enough_memory()
178 * implementation used by LSMs.
179 */
180 if (has_capability_noaudit(p, CAP_SYS_ADMIN))
181 points -= (points * 3) / 100;
182
183 /* Normalize to oom_score_adj units */
184 adj *= totalpages / 1000;
185 points += adj;
186
187 /*
188 * Never return 0 for an eligible task regardless of the root bonus and
189 * oom_score_adj (oom_score_adj can't be OOM_SCORE_ADJ_MIN here).
190 */
191 return points > 0 ? points : 1;
192 }
193
194 /*
195 * Determine the type of allocation constraint.
196 */
197 #ifdef CONFIG_NUMA
198 static enum oom_constraint constrained_alloc(struct zonelist *zonelist,
199 gfp_t gfp_mask, nodemask_t *nodemask,
200 unsigned long *totalpages)
201 {
202 struct zone *zone;
203 struct zoneref *z;
204 enum zone_type high_zoneidx = gfp_zone(gfp_mask);
205 bool cpuset_limited = false;
206 int nid;
207
208 /* Default to all available memory */
209 *totalpages = totalram_pages + total_swap_pages;
210
211 if (!zonelist)
212 return CONSTRAINT_NONE;
213 /*
214 * Reach here only when __GFP_NOFAIL is used. So, we should avoid
215 * to kill current.We have to random task kill in this case.
216 * Hopefully, CONSTRAINT_THISNODE...but no way to handle it, now.
217 */
218 if (gfp_mask & __GFP_THISNODE)
219 return CONSTRAINT_NONE;
220
221 /*
222 * This is not a __GFP_THISNODE allocation, so a truncated nodemask in
223 * the page allocator means a mempolicy is in effect. Cpuset policy
224 * is enforced in get_page_from_freelist().
225 */
226 if (nodemask && !nodes_subset(node_states[N_MEMORY], *nodemask)) {
227 *totalpages = total_swap_pages;
228 for_each_node_mask(nid, *nodemask)
229 *totalpages += node_spanned_pages(nid);
230 return CONSTRAINT_MEMORY_POLICY;
231 }
232
233 /* Check this allocation failure is caused by cpuset's wall function */
234 for_each_zone_zonelist_nodemask(zone, z, zonelist,
235 high_zoneidx, nodemask)
236 if (!cpuset_zone_allowed(zone, gfp_mask))
237 cpuset_limited = true;
238
239 if (cpuset_limited) {
240 *totalpages = total_swap_pages;
241 for_each_node_mask(nid, cpuset_current_mems_allowed)
242 *totalpages += node_spanned_pages(nid);
243 return CONSTRAINT_CPUSET;
244 }
245 return CONSTRAINT_NONE;
246 }
247 #else
248 static enum oom_constraint constrained_alloc(struct zonelist *zonelist,
249 gfp_t gfp_mask, nodemask_t *nodemask,
250 unsigned long *totalpages)
251 {
252 *totalpages = totalram_pages + total_swap_pages;
253 return CONSTRAINT_NONE;
254 }
255 #endif
256
257 enum oom_scan_t oom_scan_process_thread(struct task_struct *task,
258 unsigned long totalpages, const nodemask_t *nodemask,
259 bool force_kill)
260 {
261 if (oom_unkillable_task(task, NULL, nodemask))
262 return OOM_SCAN_CONTINUE;
263
264 /*
265 * This task already has access to memory reserves and is being killed.
266 * Don't allow any other task to have access to the reserves.
267 */
268 if (test_tsk_thread_flag(task, TIF_MEMDIE)) {
269 if (unlikely(frozen(task)))
270 __thaw_task(task);
271 if (!force_kill)
272 return OOM_SCAN_ABORT;
273 }
274 if (!task->mm)
275 return OOM_SCAN_CONTINUE;
276
277 /*
278 * If task is allocating a lot of memory and has been marked to be
279 * killed first if it triggers an oom, then select it.
280 */
281 if (oom_task_origin(task))
282 return OOM_SCAN_SELECT;
283
284 if (task_will_free_mem(task) && !force_kill)
285 return OOM_SCAN_ABORT;
286
287 return OOM_SCAN_OK;
288 }
289
290 /*
291 * Simple selection loop. We chose the process with the highest
292 * number of 'points'. Returns -1 on scan abort.
293 *
294 * (not docbooked, we don't want this one cluttering up the manual)
295 */
296 static struct task_struct *select_bad_process(unsigned int *ppoints,
297 unsigned long totalpages, const nodemask_t *nodemask,
298 bool force_kill)
299 {
300 struct task_struct *g, *p;
301 struct task_struct *chosen = NULL;
302 unsigned long chosen_points = 0;
303
304 rcu_read_lock();
305 for_each_process_thread(g, p) {
306 unsigned int points;
307
308 switch (oom_scan_process_thread(p, totalpages, nodemask,
309 force_kill)) {
310 case OOM_SCAN_SELECT:
311 chosen = p;
312 chosen_points = ULONG_MAX;
313 /* fall through */
314 case OOM_SCAN_CONTINUE:
315 continue;
316 case OOM_SCAN_ABORT:
317 rcu_read_unlock();
318 return (struct task_struct *)(-1UL);
319 case OOM_SCAN_OK:
320 break;
321 };
322 points = oom_badness(p, NULL, nodemask, totalpages);
323 if (!points || points < chosen_points)
324 continue;
325 /* Prefer thread group leaders for display purposes */
326 if (points == chosen_points && thread_group_leader(chosen))
327 continue;
328
329 chosen = p;
330 chosen_points = points;
331 }
332 if (chosen)
333 get_task_struct(chosen);
334 rcu_read_unlock();
335
336 *ppoints = chosen_points * 1000 / totalpages;
337 return chosen;
338 }
339
340 /**
341 * dump_tasks - dump current memory state of all system tasks
342 * @memcg: current's memory controller, if constrained
343 * @nodemask: nodemask passed to page allocator for mempolicy ooms
344 *
345 * Dumps the current memory state of all eligible tasks. Tasks not in the same
346 * memcg, not in the same cpuset, or bound to a disjoint set of mempolicy nodes
347 * are not shown.
348 * State information includes task's pid, uid, tgid, vm size, rss, nr_ptes,
349 * swapents, oom_score_adj value, and name.
350 */
351 static void dump_tasks(struct mem_cgroup *memcg, const nodemask_t *nodemask)
352 {
353 struct task_struct *p;
354 struct task_struct *task;
355
356 pr_info("[ pid ] uid tgid total_vm rss nr_ptes swapents oom_score_adj name\n");
357 rcu_read_lock();
358 for_each_process(p) {
359 if (oom_unkillable_task(p, memcg, nodemask))
360 continue;
361
362 task = find_lock_task_mm(p);
363 if (!task) {
364 /*
365 * This is a kthread or all of p's threads have already
366 * detached their mm's. There's no need to report
367 * them; they can't be oom killed anyway.
368 */
369 continue;
370 }
371
372 pr_info("[%5d] %5d %5d %8lu %8lu %7ld %8lu %5hd %s\n",
373 task->pid, from_kuid(&init_user_ns, task_uid(task)),
374 task->tgid, task->mm->total_vm, get_mm_rss(task->mm),
375 atomic_long_read(&task->mm->nr_ptes),
376 get_mm_counter(task->mm, MM_SWAPENTS),
377 task->signal->oom_score_adj, task->comm);
378 task_unlock(task);
379 }
380 rcu_read_unlock();
381 }
382
383 static void dump_header(struct task_struct *p, gfp_t gfp_mask, int order,
384 struct mem_cgroup *memcg, const nodemask_t *nodemask)
385 {
386 task_lock(current);
387 pr_warning("%s invoked oom-killer: gfp_mask=0x%x, order=%d, "
388 "oom_score_adj=%hd\n",
389 current->comm, gfp_mask, order,
390 current->signal->oom_score_adj);
391 cpuset_print_task_mems_allowed(current);
392 task_unlock(current);
393 dump_stack();
394 if (memcg)
395 mem_cgroup_print_oom_info(memcg, p);
396 else
397 show_mem(SHOW_MEM_FILTER_NODES);
398 if (sysctl_oom_dump_tasks)
399 dump_tasks(memcg, nodemask);
400 }
401
402 /*
403 * Number of OOM killer invocations (including memcg OOM killer).
404 * Primarily used by PM freezer to check for potential races with
405 * OOM killed frozen task.
406 */
407 static atomic_t oom_kills = ATOMIC_INIT(0);
408
409 int oom_kills_count(void)
410 {
411 return atomic_read(&oom_kills);
412 }
413
414 void note_oom_kill(void)
415 {
416 atomic_inc(&oom_kills);
417 }
418
419 /**
420 * mark_tsk_oom_victim - marks the given taks as OOM victim.
421 * @tsk: task to mark
422 */
423 void mark_tsk_oom_victim(struct task_struct *tsk)
424 {
425 set_tsk_thread_flag(tsk, TIF_MEMDIE);
426 }
427
428 /**
429 * unmark_oom_victim - unmarks the current task as OOM victim.
430 */
431 void unmark_oom_victim(void)
432 {
433 clear_thread_flag(TIF_MEMDIE);
434 }
435
436 #define K(x) ((x) << (PAGE_SHIFT-10))
437 /*
438 * Must be called while holding a reference to p, which will be released upon
439 * returning.
440 */
441 void oom_kill_process(struct task_struct *p, gfp_t gfp_mask, int order,
442 unsigned int points, unsigned long totalpages,
443 struct mem_cgroup *memcg, nodemask_t *nodemask,
444 const char *message)
445 {
446 struct task_struct *victim = p;
447 struct task_struct *child;
448 struct task_struct *t;
449 struct mm_struct *mm;
450 unsigned int victim_points = 0;
451 static DEFINE_RATELIMIT_STATE(oom_rs, DEFAULT_RATELIMIT_INTERVAL,
452 DEFAULT_RATELIMIT_BURST);
453
454 /*
455 * If the task is already exiting, don't alarm the sysadmin or kill
456 * its children or threads, just set TIF_MEMDIE so it can die quickly
457 */
458 task_lock(p);
459 if (p->mm && task_will_free_mem(p)) {
460 mark_tsk_oom_victim(p);
461 task_unlock(p);
462 put_task_struct(p);
463 return;
464 }
465 task_unlock(p);
466
467 if (__ratelimit(&oom_rs))
468 dump_header(p, gfp_mask, order, memcg, nodemask);
469
470 task_lock(p);
471 pr_err("%s: Kill process %d (%s) score %d or sacrifice child\n",
472 message, task_pid_nr(p), p->comm, points);
473 task_unlock(p);
474
475 /*
476 * If any of p's children has a different mm and is eligible for kill,
477 * the one with the highest oom_badness() score is sacrificed for its
478 * parent. This attempts to lose the minimal amount of work done while
479 * still freeing memory.
480 */
481 read_lock(&tasklist_lock);
482 for_each_thread(p, t) {
483 list_for_each_entry(child, &t->children, sibling) {
484 unsigned int child_points;
485
486 if (child->mm == p->mm)
487 continue;
488 /*
489 * oom_badness() returns 0 if the thread is unkillable
490 */
491 child_points = oom_badness(child, memcg, nodemask,
492 totalpages);
493 if (child_points > victim_points) {
494 put_task_struct(victim);
495 victim = child;
496 victim_points = child_points;
497 get_task_struct(victim);
498 }
499 }
500 }
501 read_unlock(&tasklist_lock);
502
503 p = find_lock_task_mm(victim);
504 if (!p) {
505 put_task_struct(victim);
506 return;
507 } else if (victim != p) {
508 get_task_struct(p);
509 put_task_struct(victim);
510 victim = p;
511 }
512
513 /* mm cannot safely be dereferenced after task_unlock(victim) */
514 mm = victim->mm;
515 mark_tsk_oom_victim(victim);
516 pr_err("Killed process %d (%s) total-vm:%lukB, anon-rss:%lukB, file-rss:%lukB\n",
517 task_pid_nr(victim), victim->comm, K(victim->mm->total_vm),
518 K(get_mm_counter(victim->mm, MM_ANONPAGES)),
519 K(get_mm_counter(victim->mm, MM_FILEPAGES)));
520 task_unlock(victim);
521
522 /*
523 * Kill all user processes sharing victim->mm in other thread groups, if
524 * any. They don't get access to memory reserves, though, to avoid
525 * depletion of all memory. This prevents mm->mmap_sem livelock when an
526 * oom killed thread cannot exit because it requires the semaphore and
527 * its contended by another thread trying to allocate memory itself.
528 * That thread will now get access to memory reserves since it has a
529 * pending fatal signal.
530 */
531 rcu_read_lock();
532 for_each_process(p)
533 if (p->mm == mm && !same_thread_group(p, victim) &&
534 !(p->flags & PF_KTHREAD)) {
535 if (p->signal->oom_score_adj == OOM_SCORE_ADJ_MIN)
536 continue;
537
538 task_lock(p); /* Protect ->comm from prctl() */
539 pr_err("Kill process %d (%s) sharing same memory\n",
540 task_pid_nr(p), p->comm);
541 task_unlock(p);
542 do_send_sig_info(SIGKILL, SEND_SIG_FORCED, p, true);
543 }
544 rcu_read_unlock();
545
546 do_send_sig_info(SIGKILL, SEND_SIG_FORCED, victim, true);
547 put_task_struct(victim);
548 }
549 #undef K
550
551 /*
552 * Determines whether the kernel must panic because of the panic_on_oom sysctl.
553 */
554 void check_panic_on_oom(enum oom_constraint constraint, gfp_t gfp_mask,
555 int order, const nodemask_t *nodemask)
556 {
557 if (likely(!sysctl_panic_on_oom))
558 return;
559 if (sysctl_panic_on_oom != 2) {
560 /*
561 * panic_on_oom == 1 only affects CONSTRAINT_NONE, the kernel
562 * does not panic for cpuset, mempolicy, or memcg allocation
563 * failures.
564 */
565 if (constraint != CONSTRAINT_NONE)
566 return;
567 }
568 dump_header(NULL, gfp_mask, order, NULL, nodemask);
569 panic("Out of memory: %s panic_on_oom is enabled\n",
570 sysctl_panic_on_oom == 2 ? "compulsory" : "system-wide");
571 }
572
573 static BLOCKING_NOTIFIER_HEAD(oom_notify_list);
574
575 int register_oom_notifier(struct notifier_block *nb)
576 {
577 return blocking_notifier_chain_register(&oom_notify_list, nb);
578 }
579 EXPORT_SYMBOL_GPL(register_oom_notifier);
580
581 int unregister_oom_notifier(struct notifier_block *nb)
582 {
583 return blocking_notifier_chain_unregister(&oom_notify_list, nb);
584 }
585 EXPORT_SYMBOL_GPL(unregister_oom_notifier);
586
587 /*
588 * Try to acquire the OOM killer lock for the zones in zonelist. Returns zero
589 * if a parallel OOM killing is already taking place that includes a zone in
590 * the zonelist. Otherwise, locks all zones in the zonelist and returns 1.
591 */
592 bool oom_zonelist_trylock(struct zonelist *zonelist, gfp_t gfp_mask)
593 {
594 struct zoneref *z;
595 struct zone *zone;
596 bool ret = true;
597
598 spin_lock(&zone_scan_lock);
599 for_each_zone_zonelist(zone, z, zonelist, gfp_zone(gfp_mask))
600 if (test_bit(ZONE_OOM_LOCKED, &zone->flags)) {
601 ret = false;
602 goto out;
603 }
604
605 /*
606 * Lock each zone in the zonelist under zone_scan_lock so a parallel
607 * call to oom_zonelist_trylock() doesn't succeed when it shouldn't.
608 */
609 for_each_zone_zonelist(zone, z, zonelist, gfp_zone(gfp_mask))
610 set_bit(ZONE_OOM_LOCKED, &zone->flags);
611
612 out:
613 spin_unlock(&zone_scan_lock);
614 return ret;
615 }
616
617 /*
618 * Clears the ZONE_OOM_LOCKED flag for all zones in the zonelist so that failed
619 * allocation attempts with zonelists containing them may now recall the OOM
620 * killer, if necessary.
621 */
622 void oom_zonelist_unlock(struct zonelist *zonelist, gfp_t gfp_mask)
623 {
624 struct zoneref *z;
625 struct zone *zone;
626
627 spin_lock(&zone_scan_lock);
628 for_each_zone_zonelist(zone, z, zonelist, gfp_zone(gfp_mask))
629 clear_bit(ZONE_OOM_LOCKED, &zone->flags);
630 spin_unlock(&zone_scan_lock);
631 }
632
633 /**
634 * out_of_memory - kill the "best" process when we run out of memory
635 * @zonelist: zonelist pointer
636 * @gfp_mask: memory allocation flags
637 * @order: amount of memory being requested as a power of 2
638 * @nodemask: nodemask passed to page allocator
639 * @force_kill: true if a task must be killed, even if others are exiting
640 *
641 * If we run out of memory, we have the choice between either
642 * killing a random task (bad), letting the system crash (worse)
643 * OR try to be smart about which process to kill. Note that we
644 * don't have to be perfect here, we just have to be good.
645 */
646 void out_of_memory(struct zonelist *zonelist, gfp_t gfp_mask,
647 int order, nodemask_t *nodemask, bool force_kill)
648 {
649 const nodemask_t *mpol_mask;
650 struct task_struct *p;
651 unsigned long totalpages;
652 unsigned long freed = 0;
653 unsigned int uninitialized_var(points);
654 enum oom_constraint constraint = CONSTRAINT_NONE;
655 int killed = 0;
656
657 blocking_notifier_call_chain(&oom_notify_list, 0, &freed);
658 if (freed > 0)
659 /* Got some memory back in the last second. */
660 return;
661
662 /*
663 * If current has a pending SIGKILL or is exiting, then automatically
664 * select it. The goal is to allow it to allocate so that it may
665 * quickly exit and free its memory.
666 *
667 * But don't select if current has already released its mm and cleared
668 * TIF_MEMDIE flag at exit_mm(), otherwise an OOM livelock may occur.
669 */
670 if (current->mm &&
671 (fatal_signal_pending(current) || task_will_free_mem(current))) {
672 mark_tsk_oom_victim(current);
673 return;
674 }
675
676 /*
677 * Check if there were limitations on the allocation (only relevant for
678 * NUMA) that may require different handling.
679 */
680 constraint = constrained_alloc(zonelist, gfp_mask, nodemask,
681 &totalpages);
682 mpol_mask = (constraint == CONSTRAINT_MEMORY_POLICY) ? nodemask : NULL;
683 check_panic_on_oom(constraint, gfp_mask, order, mpol_mask);
684
685 if (sysctl_oom_kill_allocating_task && current->mm &&
686 !oom_unkillable_task(current, NULL, nodemask) &&
687 current->signal->oom_score_adj != OOM_SCORE_ADJ_MIN) {
688 get_task_struct(current);
689 oom_kill_process(current, gfp_mask, order, 0, totalpages, NULL,
690 nodemask,
691 "Out of memory (oom_kill_allocating_task)");
692 goto out;
693 }
694
695 p = select_bad_process(&points, totalpages, mpol_mask, force_kill);
696 /* Found nothing?!?! Either we hang forever, or we panic. */
697 if (!p) {
698 dump_header(NULL, gfp_mask, order, NULL, mpol_mask);
699 panic("Out of memory and no killable processes...\n");
700 }
701 if (p != (void *)-1UL) {
702 oom_kill_process(p, gfp_mask, order, points, totalpages, NULL,
703 nodemask, "Out of memory");
704 killed = 1;
705 }
706 out:
707 /*
708 * Give the killed threads a good chance of exiting before trying to
709 * allocate memory again.
710 */
711 if (killed)
712 schedule_timeout_killable(1);
713 }
714
715 /*
716 * The pagefault handler calls here because it is out of memory, so kill a
717 * memory-hogging task. If any populated zone has ZONE_OOM_LOCKED set, a
718 * parallel oom killing is already in progress so do nothing.
719 */
720 void pagefault_out_of_memory(void)
721 {
722 struct zonelist *zonelist;
723
724 if (mem_cgroup_oom_synchronize(true))
725 return;
726
727 zonelist = node_zonelist(first_memory_node, GFP_KERNEL);
728 if (oom_zonelist_trylock(zonelist, GFP_KERNEL)) {
729 out_of_memory(NULL, 0, 0, NULL, false);
730 oom_zonelist_unlock(zonelist, GFP_KERNEL);
731 }
732 }
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