block: Restore original read_ahead_kb mode
[GitHub/exynos8895/android_kernel_samsung_universal8895.git] / kernel / stop_machine.c
CommitLineData
1142d810
TH
1/*
2 * kernel/stop_machine.c
3 *
4 * Copyright (C) 2008, 2005 IBM Corporation.
5 * Copyright (C) 2008, 2005 Rusty Russell rusty@rustcorp.com.au
6 * Copyright (C) 2010 SUSE Linux Products GmbH
7 * Copyright (C) 2010 Tejun Heo <tj@kernel.org>
8 *
9 * This file is released under the GPLv2 and any later version.
e5582ca2 10 */
1142d810 11#include <linux/completion.h>
1da177e4 12#include <linux/cpu.h>
1142d810 13#include <linux/init.h>
ee527cd3 14#include <linux/kthread.h>
9984de1a 15#include <linux/export.h>
1142d810 16#include <linux/percpu.h>
ee527cd3
PB
17#include <linux/sched.h>
18#include <linux/stop_machine.h>
a12bb444 19#include <linux/interrupt.h>
1142d810 20#include <linux/kallsyms.h>
14e568e7 21#include <linux/smpboot.h>
60063497 22#include <linux/atomic.h>
7053ea1a 23#include <linux/lglock.h>
1142d810
TH
24
25/*
26 * Structure to determine completion condition and record errors. May
27 * be shared by works on different cpus.
28 */
29struct cpu_stop_done {
30 atomic_t nr_todo; /* nr left to execute */
31 bool executed; /* actually executed? */
32 int ret; /* collected return value */
33 struct completion completion; /* fired if nr_todo reaches 0 */
34};
35
36/* the actual stopper, one per every possible cpu, enabled on online cpus */
37struct cpu_stopper {
02cb7aa9
ON
38 struct task_struct *thread;
39
1142d810 40 spinlock_t lock;
878ae127 41 bool enabled; /* is this stopper enabled? */
1142d810 42 struct list_head works; /* list of pending works */
02cb7aa9
ON
43
44 struct cpu_stop_work stop_work; /* for stop_cpus */
1142d810
TH
45};
46
47static DEFINE_PER_CPU(struct cpu_stopper, cpu_stopper);
f445027e 48static bool stop_machine_initialized = false;
1142d810 49
7053ea1a
RR
50/*
51 * Avoids a race between stop_two_cpus and global stop_cpus, where
52 * the stoppers could get queued up in reverse order, leading to
53 * system deadlock. Using an lglock means stop_two_cpus remains
54 * relatively cheap.
55 */
56DEFINE_STATIC_LGLOCK(stop_cpus_lock);
57
1142d810
TH
58static void cpu_stop_init_done(struct cpu_stop_done *done, unsigned int nr_todo)
59{
60 memset(done, 0, sizeof(*done));
61 atomic_set(&done->nr_todo, nr_todo);
62 init_completion(&done->completion);
63}
64
65/* signal completion unless @done is NULL */
66static void cpu_stop_signal_done(struct cpu_stop_done *done, bool executed)
67{
68 if (done) {
69 if (executed)
70 done->executed = true;
71 if (atomic_dec_and_test(&done->nr_todo))
72 complete(&done->completion);
73 }
74}
75
5caa1c08
ON
76static void __cpu_stop_queue_work(struct cpu_stopper *stopper,
77 struct cpu_stop_work *work)
78{
79 list_add_tail(&work->list, &stopper->works);
80 wake_up_process(stopper->thread);
81}
82
1142d810 83/* queue @work to @stopper. if offline, @work is completed immediately */
860a0ffa 84static void cpu_stop_queue_work(unsigned int cpu, struct cpu_stop_work *work)
1142d810 85{
860a0ffa 86 struct cpu_stopper *stopper = &per_cpu(cpu_stopper, cpu);
1142d810
TH
87 unsigned long flags;
88
89 spin_lock_irqsave(&stopper->lock, flags);
5caa1c08
ON
90 if (stopper->enabled)
91 __cpu_stop_queue_work(stopper, work);
92 else
1142d810 93 cpu_stop_signal_done(work->done, false);
1142d810
TH
94 spin_unlock_irqrestore(&stopper->lock, flags);
95}
96
97/**
98 * stop_one_cpu - stop a cpu
99 * @cpu: cpu to stop
100 * @fn: function to execute
101 * @arg: argument to @fn
102 *
103 * Execute @fn(@arg) on @cpu. @fn is run in a process context with
104 * the highest priority preempting any task on the cpu and
105 * monopolizing it. This function returns after the execution is
106 * complete.
107 *
108 * This function doesn't guarantee @cpu stays online till @fn
109 * completes. If @cpu goes down in the middle, execution may happen
110 * partially or fully on different cpus. @fn should either be ready
111 * for that or the caller should ensure that @cpu stays online until
112 * this function completes.
113 *
114 * CONTEXT:
115 * Might sleep.
116 *
117 * RETURNS:
118 * -ENOENT if @fn(@arg) was not executed because @cpu was offline;
119 * otherwise, the return value of @fn.
120 */
121int stop_one_cpu(unsigned int cpu, cpu_stop_fn_t fn, void *arg)
122{
123 struct cpu_stop_done done;
124 struct cpu_stop_work work = { .fn = fn, .arg = arg, .done = &done };
125
126 cpu_stop_init_done(&done, 1);
860a0ffa 127 cpu_stop_queue_work(cpu, &work);
1142d810
TH
128 wait_for_completion(&done.completion);
129 return done.executed ? done.ret : -ENOENT;
130}
131
1be0bd77
PZ
132/* This controls the threads on each CPU. */
133enum multi_stop_state {
134 /* Dummy starting state for thread. */
135 MULTI_STOP_NONE,
136 /* Awaiting everyone to be scheduled. */
137 MULTI_STOP_PREPARE,
138 /* Disable interrupts. */
139 MULTI_STOP_DISABLE_IRQ,
140 /* Run the function */
141 MULTI_STOP_RUN,
142 /* Exit */
143 MULTI_STOP_EXIT,
144};
145
146struct multi_stop_data {
9a301f22 147 cpu_stop_fn_t fn;
1be0bd77
PZ
148 void *data;
149 /* Like num_online_cpus(), but hotplug cpu uses us, so we need this. */
150 unsigned int num_threads;
151 const struct cpumask *active_cpus;
152
153 enum multi_stop_state state;
154 atomic_t thread_ack;
155};
156
157static void set_state(struct multi_stop_data *msdata,
158 enum multi_stop_state newstate)
159{
160 /* Reset ack counter. */
161 atomic_set(&msdata->thread_ack, msdata->num_threads);
162 smp_wmb();
163 msdata->state = newstate;
164}
165
166/* Last one to ack a state moves to the next state. */
167static void ack_state(struct multi_stop_data *msdata)
168{
169 if (atomic_dec_and_test(&msdata->thread_ack))
170 set_state(msdata, msdata->state + 1);
171}
172
173/* This is the cpu_stop function which stops the CPU. */
174static int multi_cpu_stop(void *data)
175{
176 struct multi_stop_data *msdata = data;
177 enum multi_stop_state curstate = MULTI_STOP_NONE;
178 int cpu = smp_processor_id(), err = 0;
179 unsigned long flags;
180 bool is_active;
181
182 /*
183 * When called from stop_machine_from_inactive_cpu(), irq might
184 * already be disabled. Save the state and restore it on exit.
185 */
186 local_save_flags(flags);
187
188 if (!msdata->active_cpus)
189 is_active = cpu == cpumask_first(cpu_online_mask);
190 else
191 is_active = cpumask_test_cpu(cpu, msdata->active_cpus);
192
193 /* Simple state machine */
194 do {
195 /* Chill out and ensure we re-read multi_stop_state. */
196 cpu_relax();
197 if (msdata->state != curstate) {
198 curstate = msdata->state;
199 switch (curstate) {
200 case MULTI_STOP_DISABLE_IRQ:
201 local_irq_disable();
202 hard_irq_disable();
203 break;
204 case MULTI_STOP_RUN:
205 if (is_active)
206 err = msdata->fn(msdata->data);
207 break;
208 default:
209 break;
210 }
211 ack_state(msdata);
212 }
1cac41cb
MB
213
214#ifdef CONFIG_ARM64
215 if (msdata->state == curstate)
216 wfe();
217 else {
218 dsb(sy);
219 sev();
220 }
221#endif
1be0bd77
PZ
222 } while (curstate != MULTI_STOP_EXIT);
223
224 local_irq_restore(flags);
225 return err;
226}
227
5caa1c08
ON
228static int cpu_stop_queue_two_works(int cpu1, struct cpu_stop_work *work1,
229 int cpu2, struct cpu_stop_work *work2)
230{
d8bc8535
ON
231 struct cpu_stopper *stopper1 = per_cpu_ptr(&cpu_stopper, cpu1);
232 struct cpu_stopper *stopper2 = per_cpu_ptr(&cpu_stopper, cpu2);
233 int err;
234
5caa1c08 235 lg_double_lock(&stop_cpus_lock, cpu1, cpu2);
d8bc8535
ON
236 spin_lock_irq(&stopper1->lock);
237 spin_lock_nested(&stopper2->lock, SINGLE_DEPTH_NESTING);
238
239 err = -ENOENT;
240 if (!stopper1->enabled || !stopper2->enabled)
241 goto unlock;
242
243 err = 0;
244 __cpu_stop_queue_work(stopper1, work1);
245 __cpu_stop_queue_work(stopper2, work2);
246unlock:
247 spin_unlock(&stopper2->lock);
248 spin_unlock_irq(&stopper1->lock);
5caa1c08
ON
249 lg_double_unlock(&stop_cpus_lock, cpu1, cpu2);
250
d8bc8535 251 return err;
5caa1c08 252}
1be0bd77
PZ
253/**
254 * stop_two_cpus - stops two cpus
255 * @cpu1: the cpu to stop
256 * @cpu2: the other cpu to stop
257 * @fn: function to execute
258 * @arg: argument to @fn
259 *
260 * Stops both the current and specified CPU and runs @fn on one of them.
261 *
262 * returns when both are completed.
263 */
264int stop_two_cpus(unsigned int cpu1, unsigned int cpu2, cpu_stop_fn_t fn, void *arg)
265{
1be0bd77
PZ
266 struct cpu_stop_done done;
267 struct cpu_stop_work work1, work2;
1cac41cb 268 struct multi_stop_data msdata = {
1be0bd77
PZ
269 .fn = fn,
270 .data = arg,
271 .num_threads = 2,
272 .active_cpus = cpumask_of(cpu1),
273 };
274
275 work1 = work2 = (struct cpu_stop_work){
276 .fn = multi_cpu_stop,
277 .arg = &msdata,
278 .done = &done
279 };
280
1be0bd77
PZ
281 cpu_stop_init_done(&done, 2);
282 set_state(&msdata, MULTI_STOP_PREPARE);
283
5caa1c08
ON
284 if (cpu1 > cpu2)
285 swap(cpu1, cpu2);
286 if (cpu_stop_queue_two_works(cpu1, &work1, cpu2, &work2)) {
287 preempt_enable();
288 return -ENOENT;
289 }
b17718d0 290
1be0bd77
PZ
291 wait_for_completion(&done.completion);
292 return done.executed ? done.ret : -ENOENT;
293}
294
1142d810
TH
295/**
296 * stop_one_cpu_nowait - stop a cpu but don't wait for completion
297 * @cpu: cpu to stop
298 * @fn: function to execute
299 * @arg: argument to @fn
cf250040 300 * @work_buf: pointer to cpu_stop_work structure
1142d810
TH
301 *
302 * Similar to stop_one_cpu() but doesn't wait for completion. The
303 * caller is responsible for ensuring @work_buf is currently unused
304 * and will remain untouched until stopper starts executing @fn.
305 *
306 * CONTEXT:
307 * Don't care.
308 */
309void stop_one_cpu_nowait(unsigned int cpu, cpu_stop_fn_t fn, void *arg,
310 struct cpu_stop_work *work_buf)
311{
312 *work_buf = (struct cpu_stop_work){ .fn = fn, .arg = arg, };
860a0ffa 313 cpu_stop_queue_work(cpu, work_buf);
1142d810
TH
314}
315
316/* static data for stop_cpus */
192d8857 317static DEFINE_MUTEX(stop_cpus_mutex);
1142d810 318
fd7355ba
TH
319static void queue_stop_cpus_work(const struct cpumask *cpumask,
320 cpu_stop_fn_t fn, void *arg,
321 struct cpu_stop_done *done)
1142d810
TH
322{
323 struct cpu_stop_work *work;
1142d810
TH
324 unsigned int cpu;
325
1142d810
TH
326 /*
327 * Disable preemption while queueing to avoid getting
328 * preempted by a stopper which might wait for other stoppers
329 * to enter @fn which can lead to deadlock.
330 */
7053ea1a 331 lg_global_lock(&stop_cpus_lock);
b377c2a0
ON
332 for_each_cpu(cpu, cpumask) {
333 work = &per_cpu(cpu_stopper.stop_work, cpu);
334 work->fn = fn;
335 work->arg = arg;
336 work->done = done;
337 cpu_stop_queue_work(cpu, work);
338 }
7053ea1a 339 lg_global_unlock(&stop_cpus_lock);
fd7355ba 340}
1142d810 341
fd7355ba
TH
342static int __stop_cpus(const struct cpumask *cpumask,
343 cpu_stop_fn_t fn, void *arg)
344{
345 struct cpu_stop_done done;
346
347 cpu_stop_init_done(&done, cpumask_weight(cpumask));
348 queue_stop_cpus_work(cpumask, fn, arg, &done);
1142d810
TH
349 wait_for_completion(&done.completion);
350 return done.executed ? done.ret : -ENOENT;
351}
352
353/**
354 * stop_cpus - stop multiple cpus
355 * @cpumask: cpus to stop
356 * @fn: function to execute
357 * @arg: argument to @fn
358 *
359 * Execute @fn(@arg) on online cpus in @cpumask. On each target cpu,
360 * @fn is run in a process context with the highest priority
361 * preempting any task on the cpu and monopolizing it. This function
362 * returns after all executions are complete.
363 *
364 * This function doesn't guarantee the cpus in @cpumask stay online
365 * till @fn completes. If some cpus go down in the middle, execution
366 * on the cpu may happen partially or fully on different cpus. @fn
367 * should either be ready for that or the caller should ensure that
368 * the cpus stay online until this function completes.
369 *
370 * All stop_cpus() calls are serialized making it safe for @fn to wait
371 * for all cpus to start executing it.
372 *
373 * CONTEXT:
374 * Might sleep.
375 *
376 * RETURNS:
377 * -ENOENT if @fn(@arg) was not executed at all because all cpus in
378 * @cpumask were offline; otherwise, 0 if all executions of @fn
379 * returned 0, any non zero return value if any returned non zero.
380 */
381int stop_cpus(const struct cpumask *cpumask, cpu_stop_fn_t fn, void *arg)
382{
383 int ret;
384
385 /* static works are used, process one request at a time */
386 mutex_lock(&stop_cpus_mutex);
387 ret = __stop_cpus(cpumask, fn, arg);
388 mutex_unlock(&stop_cpus_mutex);
389 return ret;
390}
391
392/**
393 * try_stop_cpus - try to stop multiple cpus
394 * @cpumask: cpus to stop
395 * @fn: function to execute
396 * @arg: argument to @fn
397 *
398 * Identical to stop_cpus() except that it fails with -EAGAIN if
399 * someone else is already using the facility.
400 *
401 * CONTEXT:
402 * Might sleep.
403 *
404 * RETURNS:
405 * -EAGAIN if someone else is already stopping cpus, -ENOENT if
406 * @fn(@arg) was not executed at all because all cpus in @cpumask were
407 * offline; otherwise, 0 if all executions of @fn returned 0, any non
408 * zero return value if any returned non zero.
409 */
410int try_stop_cpus(const struct cpumask *cpumask, cpu_stop_fn_t fn, void *arg)
411{
412 int ret;
413
414 /* static works are used, process one request at a time */
415 if (!mutex_trylock(&stop_cpus_mutex))
416 return -EAGAIN;
417 ret = __stop_cpus(cpumask, fn, arg);
418 mutex_unlock(&stop_cpus_mutex);
419 return ret;
420}
421
14e568e7
TG
422static int cpu_stop_should_run(unsigned int cpu)
423{
424 struct cpu_stopper *stopper = &per_cpu(cpu_stopper, cpu);
425 unsigned long flags;
426 int run;
427
428 spin_lock_irqsave(&stopper->lock, flags);
429 run = !list_empty(&stopper->works);
430 spin_unlock_irqrestore(&stopper->lock, flags);
431 return run;
432}
433
434static void cpu_stopper_thread(unsigned int cpu)
1142d810 435{
14e568e7 436 struct cpu_stopper *stopper = &per_cpu(cpu_stopper, cpu);
1142d810
TH
437 struct cpu_stop_work *work;
438 int ret;
439
440repeat:
1142d810
TH
441 work = NULL;
442 spin_lock_irq(&stopper->lock);
443 if (!list_empty(&stopper->works)) {
444 work = list_first_entry(&stopper->works,
445 struct cpu_stop_work, list);
446 list_del_init(&work->list);
447 }
448 spin_unlock_irq(&stopper->lock);
449
450 if (work) {
451 cpu_stop_fn_t fn = work->fn;
452 void *arg = work->arg;
453 struct cpu_stop_done *done = work->done;
ca51c5a7 454 char ksym_buf[KSYM_NAME_LEN] __maybe_unused;
1142d810 455
1142d810
TH
456 /* cpu stop callbacks are not allowed to sleep */
457 preempt_disable();
458
459 ret = fn(arg);
460 if (ret)
461 done->ret = ret;
462
463 /* restore preemption and check it's still balanced */
464 preempt_enable();
465 WARN_ONCE(preempt_count(),
466 "cpu_stop: %s(%p) leaked preempt count\n",
467 kallsyms_lookup((unsigned long)fn, NULL, NULL, NULL,
468 ksym_buf), arg);
469
470 cpu_stop_signal_done(done, true);
14e568e7
TG
471 goto repeat;
472 }
1142d810
TH
473}
474
233e7f26
ON
475void stop_machine_park(int cpu)
476{
477 struct cpu_stopper *stopper = &per_cpu(cpu_stopper, cpu);
478 /*
479 * Lockless. cpu_stopper_thread() will take stopper->lock and flush
480 * the pending works before it parks, until then it is fine to queue
481 * the new works.
482 */
483 stopper->enabled = false;
484 kthread_park(stopper->thread);
485}
486
34f971f6
PZ
487extern void sched_set_stop_task(int cpu, struct task_struct *stop);
488
14e568e7
TG
489static void cpu_stop_create(unsigned int cpu)
490{
02cb7aa9 491 sched_set_stop_task(cpu, per_cpu(cpu_stopper.thread, cpu));
14e568e7
TG
492}
493
494static void cpu_stop_park(unsigned int cpu)
1142d810 495{
1142d810 496 struct cpu_stopper *stopper = &per_cpu(cpu_stopper, cpu);
1142d810 497
233e7f26 498 WARN_ON(!list_empty(&stopper->works));
14e568e7 499}
1142d810 500
c00166d8
ON
501void stop_machine_unpark(int cpu)
502{
503 struct cpu_stopper *stopper = &per_cpu(cpu_stopper, cpu);
504
f0cf16cb 505 stopper->enabled = true;
c00166d8
ON
506 kthread_unpark(stopper->thread);
507}
508
14e568e7 509static struct smp_hotplug_thread cpu_stop_threads = {
02cb7aa9 510 .store = &cpu_stopper.thread,
14e568e7
TG
511 .thread_should_run = cpu_stop_should_run,
512 .thread_fn = cpu_stopper_thread,
513 .thread_comm = "migration/%u",
514 .create = cpu_stop_create,
14e568e7 515 .park = cpu_stop_park,
14e568e7 516 .selfparking = true,
1142d810
TH
517};
518
519static int __init cpu_stop_init(void)
520{
1142d810 521 unsigned int cpu;
1142d810
TH
522
523 for_each_possible_cpu(cpu) {
524 struct cpu_stopper *stopper = &per_cpu(cpu_stopper, cpu);
525
526 spin_lock_init(&stopper->lock);
527 INIT_LIST_HEAD(&stopper->works);
528 }
529
14e568e7 530 BUG_ON(smpboot_register_percpu_thread(&cpu_stop_threads));
c00166d8 531 stop_machine_unpark(raw_smp_processor_id());
f445027e 532 stop_machine_initialized = true;
1142d810
TH
533 return 0;
534}
535early_initcall(cpu_stop_init);
1da177e4 536
86fffe4a 537#if defined(CONFIG_SMP) || defined(CONFIG_HOTPLUG_CPU)
bbf1bb3e 538
9a301f22 539static int __stop_machine(cpu_stop_fn_t fn, void *data, const struct cpumask *cpus)
1da177e4 540{
1be0bd77
PZ
541 struct multi_stop_data msdata = {
542 .fn = fn,
543 .data = data,
544 .num_threads = num_online_cpus(),
545 .active_cpus = cpus,
546 };
3fc1f1e2 547
f445027e
JF
548 if (!stop_machine_initialized) {
549 /*
550 * Handle the case where stop_machine() is called
551 * early in boot before stop_machine() has been
552 * initialized.
553 */
554 unsigned long flags;
555 int ret;
556
1be0bd77 557 WARN_ON_ONCE(msdata.num_threads != 1);
f445027e
JF
558
559 local_irq_save(flags);
560 hard_irq_disable();
561 ret = (*fn)(data);
562 local_irq_restore(flags);
563
564 return ret;
565 }
566
3fc1f1e2 567 /* Set the initial state and stop all online cpus. */
1be0bd77
PZ
568 set_state(&msdata, MULTI_STOP_PREPARE);
569 return stop_cpus(cpu_online_mask, multi_cpu_stop, &msdata);
1da177e4
LT
570}
571
9a301f22 572int stop_machine(cpu_stop_fn_t fn, void *data, const struct cpumask *cpus)
1da177e4 573{
1da177e4
LT
574 int ret;
575
576 /* No CPUs can come up or down during this. */
86ef5c9a 577 get_online_cpus();
eeec4fad 578 ret = __stop_machine(fn, data, cpus);
86ef5c9a 579 put_online_cpus();
1da177e4
LT
580 return ret;
581}
eeec4fad 582EXPORT_SYMBOL_GPL(stop_machine);
bbf1bb3e 583
f740e6cd
TH
584/**
585 * stop_machine_from_inactive_cpu - stop_machine() from inactive CPU
586 * @fn: the function to run
587 * @data: the data ptr for the @fn()
588 * @cpus: the cpus to run the @fn() on (NULL = any online cpu)
589 *
590 * This is identical to stop_machine() but can be called from a CPU which
591 * is not active. The local CPU is in the process of hotplug (so no other
592 * CPU hotplug can start) and not marked active and doesn't have enough
593 * context to sleep.
594 *
595 * This function provides stop_machine() functionality for such state by
596 * using busy-wait for synchronization and executing @fn directly for local
597 * CPU.
598 *
599 * CONTEXT:
600 * Local CPU is inactive. Temporarily stops all active CPUs.
601 *
602 * RETURNS:
603 * 0 if all executions of @fn returned 0, any non zero return value if any
604 * returned non zero.
605 */
9a301f22 606int stop_machine_from_inactive_cpu(cpu_stop_fn_t fn, void *data,
f740e6cd
TH
607 const struct cpumask *cpus)
608{
1be0bd77 609 struct multi_stop_data msdata = { .fn = fn, .data = data,
f740e6cd
TH
610 .active_cpus = cpus };
611 struct cpu_stop_done done;
612 int ret;
613
614 /* Local CPU must be inactive and CPU hotplug in progress. */
615 BUG_ON(cpu_active(raw_smp_processor_id()));
1be0bd77 616 msdata.num_threads = num_active_cpus() + 1; /* +1 for local */
f740e6cd
TH
617
618 /* No proper task established and can't sleep - busy wait for lock. */
619 while (!mutex_trylock(&stop_cpus_mutex))
620 cpu_relax();
621
622 /* Schedule work on other CPUs and execute directly for local CPU */
1be0bd77 623 set_state(&msdata, MULTI_STOP_PREPARE);
f740e6cd 624 cpu_stop_init_done(&done, num_active_cpus());
1be0bd77 625 queue_stop_cpus_work(cpu_active_mask, multi_cpu_stop, &msdata,
f740e6cd 626 &done);
1be0bd77 627 ret = multi_cpu_stop(&msdata);
f740e6cd
TH
628
629 /* Busy wait for completion. */
630 while (!completion_done(&done.completion))
631 cpu_relax();
632
633 mutex_unlock(&stop_cpus_mutex);
634 return ret ?: done.ret;
635}
636
86fffe4a 637#endif /* CONFIG_SMP || CONFIG_HOTPLUG_CPU */