clockevents: Remove broadcast oneshot control leftovers
[linux-2.6-block.git] / kernel / cpu.c
CommitLineData
1da177e4
LT
1/* CPU control.
2 * (C) 2001, 2002, 2003, 2004 Rusty Russell
3 *
4 * This code is licenced under the GPL.
5 */
6#include <linux/proc_fs.h>
7#include <linux/smp.h>
8#include <linux/init.h>
9#include <linux/notifier.h>
10#include <linux/sched.h>
11#include <linux/unistd.h>
12#include <linux/cpu.h>
cb79295e
AV
13#include <linux/oom.h>
14#include <linux/rcupdate.h>
9984de1a 15#include <linux/export.h>
e4cc2f87 16#include <linux/bug.h>
1da177e4
LT
17#include <linux/kthread.h>
18#include <linux/stop_machine.h>
81615b62 19#include <linux/mutex.h>
5a0e3ad6 20#include <linux/gfp.h>
79cfbdfa 21#include <linux/suspend.h>
a19423b9 22#include <linux/lockdep.h>
345527b1 23#include <linux/tick.h>
bb3632c6 24#include <trace/events/power.h>
1da177e4 25
38498a67
TG
26#include "smpboot.h"
27
98a79d6a 28#ifdef CONFIG_SMP
b3199c02 29/* Serializes the updates to cpu_online_mask, cpu_present_mask */
aa953877 30static DEFINE_MUTEX(cpu_add_remove_lock);
1da177e4 31
79a6cdeb 32/*
93ae4f97
SB
33 * The following two APIs (cpu_maps_update_begin/done) must be used when
34 * attempting to serialize the updates to cpu_online_mask & cpu_present_mask.
35 * The APIs cpu_notifier_register_begin/done() must be used to protect CPU
36 * hotplug callback (un)registration performed using __register_cpu_notifier()
37 * or __unregister_cpu_notifier().
79a6cdeb
LJ
38 */
39void cpu_maps_update_begin(void)
40{
41 mutex_lock(&cpu_add_remove_lock);
42}
93ae4f97 43EXPORT_SYMBOL(cpu_notifier_register_begin);
79a6cdeb
LJ
44
45void cpu_maps_update_done(void)
46{
47 mutex_unlock(&cpu_add_remove_lock);
48}
93ae4f97 49EXPORT_SYMBOL(cpu_notifier_register_done);
79a6cdeb 50
5c113fbe 51static RAW_NOTIFIER_HEAD(cpu_chain);
1da177e4 52
e3920fb4
RW
53/* If set, cpu_up and cpu_down will return -EBUSY and do nothing.
54 * Should always be manipulated under cpu_add_remove_lock
55 */
56static int cpu_hotplug_disabled;
57
79a6cdeb
LJ
58#ifdef CONFIG_HOTPLUG_CPU
59
d221938c
GS
60static struct {
61 struct task_struct *active_writer;
87af9e7f
DH
62 /* wait queue to wake up the active_writer */
63 wait_queue_head_t wq;
64 /* verifies that no writer will get active while readers are active */
65 struct mutex lock;
d221938c
GS
66 /*
67 * Also blocks the new readers during
68 * an ongoing cpu hotplug operation.
69 */
87af9e7f 70 atomic_t refcount;
a19423b9
GS
71
72#ifdef CONFIG_DEBUG_LOCK_ALLOC
73 struct lockdep_map dep_map;
74#endif
31950eb6
LT
75} cpu_hotplug = {
76 .active_writer = NULL,
87af9e7f 77 .wq = __WAIT_QUEUE_HEAD_INITIALIZER(cpu_hotplug.wq),
31950eb6 78 .lock = __MUTEX_INITIALIZER(cpu_hotplug.lock),
a19423b9
GS
79#ifdef CONFIG_DEBUG_LOCK_ALLOC
80 .dep_map = {.name = "cpu_hotplug.lock" },
81#endif
31950eb6 82};
d221938c 83
a19423b9
GS
84/* Lockdep annotations for get/put_online_cpus() and cpu_hotplug_begin/end() */
85#define cpuhp_lock_acquire_read() lock_map_acquire_read(&cpu_hotplug.dep_map)
dd56af42
PM
86#define cpuhp_lock_acquire_tryread() \
87 lock_map_acquire_tryread(&cpu_hotplug.dep_map)
a19423b9
GS
88#define cpuhp_lock_acquire() lock_map_acquire(&cpu_hotplug.dep_map)
89#define cpuhp_lock_release() lock_map_release(&cpu_hotplug.dep_map)
90
62db99f4 91
86ef5c9a 92void get_online_cpus(void)
a9d9baa1 93{
d221938c
GS
94 might_sleep();
95 if (cpu_hotplug.active_writer == current)
aa953877 96 return;
a19423b9 97 cpuhp_lock_acquire_read();
d221938c 98 mutex_lock(&cpu_hotplug.lock);
87af9e7f 99 atomic_inc(&cpu_hotplug.refcount);
d221938c 100 mutex_unlock(&cpu_hotplug.lock);
a9d9baa1 101}
86ef5c9a 102EXPORT_SYMBOL_GPL(get_online_cpus);
90d45d17 103
dd56af42
PM
104bool try_get_online_cpus(void)
105{
106 if (cpu_hotplug.active_writer == current)
107 return true;
108 if (!mutex_trylock(&cpu_hotplug.lock))
109 return false;
110 cpuhp_lock_acquire_tryread();
87af9e7f 111 atomic_inc(&cpu_hotplug.refcount);
dd56af42
PM
112 mutex_unlock(&cpu_hotplug.lock);
113 return true;
114}
115EXPORT_SYMBOL_GPL(try_get_online_cpus);
116
86ef5c9a 117void put_online_cpus(void)
a9d9baa1 118{
87af9e7f
DH
119 int refcount;
120
d221938c 121 if (cpu_hotplug.active_writer == current)
aa953877 122 return;
075663d1 123
87af9e7f
DH
124 refcount = atomic_dec_return(&cpu_hotplug.refcount);
125 if (WARN_ON(refcount < 0)) /* try to fix things up */
126 atomic_inc(&cpu_hotplug.refcount);
127
128 if (refcount <= 0 && waitqueue_active(&cpu_hotplug.wq))
129 wake_up(&cpu_hotplug.wq);
075663d1 130
a19423b9 131 cpuhp_lock_release();
d221938c 132
a9d9baa1 133}
86ef5c9a 134EXPORT_SYMBOL_GPL(put_online_cpus);
a9d9baa1 135
d221938c
GS
136/*
137 * This ensures that the hotplug operation can begin only when the
138 * refcount goes to zero.
139 *
140 * Note that during a cpu-hotplug operation, the new readers, if any,
141 * will be blocked by the cpu_hotplug.lock
142 *
d2ba7e2a
ON
143 * Since cpu_hotplug_begin() is always called after invoking
144 * cpu_maps_update_begin(), we can be sure that only one writer is active.
d221938c
GS
145 *
146 * Note that theoretically, there is a possibility of a livelock:
147 * - Refcount goes to zero, last reader wakes up the sleeping
148 * writer.
149 * - Last reader unlocks the cpu_hotplug.lock.
150 * - A new reader arrives at this moment, bumps up the refcount.
151 * - The writer acquires the cpu_hotplug.lock finds the refcount
152 * non zero and goes to sleep again.
153 *
154 * However, this is very difficult to achieve in practice since
86ef5c9a 155 * get_online_cpus() not an api which is called all that often.
d221938c
GS
156 *
157 */
b9d10be7 158void cpu_hotplug_begin(void)
d221938c 159{
87af9e7f 160 DEFINE_WAIT(wait);
d2ba7e2a 161
87af9e7f 162 cpu_hotplug.active_writer = current;
a19423b9 163 cpuhp_lock_acquire();
87af9e7f 164
d2ba7e2a
ON
165 for (;;) {
166 mutex_lock(&cpu_hotplug.lock);
87af9e7f
DH
167 prepare_to_wait(&cpu_hotplug.wq, &wait, TASK_UNINTERRUPTIBLE);
168 if (likely(!atomic_read(&cpu_hotplug.refcount)))
169 break;
d221938c
GS
170 mutex_unlock(&cpu_hotplug.lock);
171 schedule();
d221938c 172 }
87af9e7f 173 finish_wait(&cpu_hotplug.wq, &wait);
d221938c
GS
174}
175
b9d10be7 176void cpu_hotplug_done(void)
d221938c
GS
177{
178 cpu_hotplug.active_writer = NULL;
179 mutex_unlock(&cpu_hotplug.lock);
a19423b9 180 cpuhp_lock_release();
d221938c 181}
79a6cdeb 182
16e53dbf
SB
183/*
184 * Wait for currently running CPU hotplug operations to complete (if any) and
185 * disable future CPU hotplug (from sysfs). The 'cpu_add_remove_lock' protects
186 * the 'cpu_hotplug_disabled' flag. The same lock is also acquired by the
187 * hotplug path before performing hotplug operations. So acquiring that lock
188 * guarantees mutual exclusion from any currently running hotplug operations.
189 */
190void cpu_hotplug_disable(void)
191{
192 cpu_maps_update_begin();
193 cpu_hotplug_disabled = 1;
194 cpu_maps_update_done();
195}
196
197void cpu_hotplug_enable(void)
198{
199 cpu_maps_update_begin();
200 cpu_hotplug_disabled = 0;
201 cpu_maps_update_done();
202}
203
b9d10be7 204#endif /* CONFIG_HOTPLUG_CPU */
79a6cdeb 205
1da177e4 206/* Need to know about CPUs going up/down? */
f7b16c10 207int __ref register_cpu_notifier(struct notifier_block *nb)
1da177e4 208{
bd5349cf 209 int ret;
d221938c 210 cpu_maps_update_begin();
bd5349cf 211 ret = raw_notifier_chain_register(&cpu_chain, nb);
d221938c 212 cpu_maps_update_done();
bd5349cf 213 return ret;
1da177e4 214}
65edc68c 215
93ae4f97
SB
216int __ref __register_cpu_notifier(struct notifier_block *nb)
217{
218 return raw_notifier_chain_register(&cpu_chain, nb);
219}
220
e9fb7631
AM
221static int __cpu_notify(unsigned long val, void *v, int nr_to_call,
222 int *nr_calls)
223{
e6bde73b
AM
224 int ret;
225
226 ret = __raw_notifier_call_chain(&cpu_chain, val, v, nr_to_call,
e9fb7631 227 nr_calls);
e6bde73b
AM
228
229 return notifier_to_errno(ret);
e9fb7631
AM
230}
231
232static int cpu_notify(unsigned long val, void *v)
233{
234 return __cpu_notify(val, v, -1, NULL);
235}
236
00b9b0af
LT
237#ifdef CONFIG_HOTPLUG_CPU
238
e9fb7631
AM
239static void cpu_notify_nofail(unsigned long val, void *v)
240{
00b9b0af 241 BUG_ON(cpu_notify(val, v));
e9fb7631 242}
1da177e4 243EXPORT_SYMBOL(register_cpu_notifier);
93ae4f97 244EXPORT_SYMBOL(__register_cpu_notifier);
1da177e4 245
9647155f 246void __ref unregister_cpu_notifier(struct notifier_block *nb)
1da177e4 247{
d221938c 248 cpu_maps_update_begin();
bd5349cf 249 raw_notifier_chain_unregister(&cpu_chain, nb);
d221938c 250 cpu_maps_update_done();
1da177e4
LT
251}
252EXPORT_SYMBOL(unregister_cpu_notifier);
253
93ae4f97
SB
254void __ref __unregister_cpu_notifier(struct notifier_block *nb)
255{
256 raw_notifier_chain_unregister(&cpu_chain, nb);
257}
258EXPORT_SYMBOL(__unregister_cpu_notifier);
259
e4cc2f87
AV
260/**
261 * clear_tasks_mm_cpumask - Safely clear tasks' mm_cpumask for a CPU
262 * @cpu: a CPU id
263 *
264 * This function walks all processes, finds a valid mm struct for each one and
265 * then clears a corresponding bit in mm's cpumask. While this all sounds
266 * trivial, there are various non-obvious corner cases, which this function
267 * tries to solve in a safe manner.
268 *
269 * Also note that the function uses a somewhat relaxed locking scheme, so it may
270 * be called only for an already offlined CPU.
271 */
cb79295e
AV
272void clear_tasks_mm_cpumask(int cpu)
273{
274 struct task_struct *p;
275
276 /*
277 * This function is called after the cpu is taken down and marked
278 * offline, so its not like new tasks will ever get this cpu set in
279 * their mm mask. -- Peter Zijlstra
280 * Thus, we may use rcu_read_lock() here, instead of grabbing
281 * full-fledged tasklist_lock.
282 */
e4cc2f87 283 WARN_ON(cpu_online(cpu));
cb79295e
AV
284 rcu_read_lock();
285 for_each_process(p) {
286 struct task_struct *t;
287
e4cc2f87
AV
288 /*
289 * Main thread might exit, but other threads may still have
290 * a valid mm. Find one.
291 */
cb79295e
AV
292 t = find_lock_task_mm(p);
293 if (!t)
294 continue;
295 cpumask_clear_cpu(cpu, mm_cpumask(t->mm));
296 task_unlock(t);
297 }
298 rcu_read_unlock();
299}
300
b728ca06 301static inline void check_for_tasks(int dead_cpu)
1da177e4 302{
b728ca06 303 struct task_struct *g, *p;
1da177e4 304
b728ca06
KT
305 read_lock_irq(&tasklist_lock);
306 do_each_thread(g, p) {
307 if (!p->on_rq)
308 continue;
309 /*
310 * We do the check with unlocked task_rq(p)->lock.
311 * Order the reading to do not warn about a task,
312 * which was running on this cpu in the past, and
313 * it's just been woken on another cpu.
314 */
315 rmb();
316 if (task_cpu(p) != dead_cpu)
317 continue;
318
319 pr_warn("Task %s (pid=%d) is on cpu %d (state=%ld, flags=%x)\n",
320 p->comm, task_pid_nr(p), dead_cpu, p->state, p->flags);
321 } while_each_thread(g, p);
322 read_unlock_irq(&tasklist_lock);
1da177e4
LT
323}
324
db912f96
AK
325struct take_cpu_down_param {
326 unsigned long mod;
327 void *hcpu;
328};
329
1da177e4 330/* Take this CPU down. */
514a20a5 331static int __ref take_cpu_down(void *_param)
1da177e4 332{
db912f96 333 struct take_cpu_down_param *param = _param;
1da177e4
LT
334 int err;
335
1da177e4
LT
336 /* Ensure this CPU doesn't handle any more interrupts. */
337 err = __cpu_disable();
338 if (err < 0)
f3705136 339 return err;
1da177e4 340
e9fb7631 341 cpu_notify(CPU_DYING | param->mod, param->hcpu);
14e568e7
TG
342 /* Park the stopper thread */
343 kthread_park(current);
f3705136 344 return 0;
1da177e4
LT
345}
346
e3920fb4 347/* Requires cpu_add_remove_lock to be held */
514a20a5 348static int __ref _cpu_down(unsigned int cpu, int tasks_frozen)
1da177e4 349{
e7407dcc 350 int err, nr_calls = 0;
e7407dcc 351 void *hcpu = (void *)(long)cpu;
8bb78442 352 unsigned long mod = tasks_frozen ? CPU_TASKS_FROZEN : 0;
db912f96
AK
353 struct take_cpu_down_param tcd_param = {
354 .mod = mod,
355 .hcpu = hcpu,
356 };
1da177e4 357
e3920fb4
RW
358 if (num_online_cpus() == 1)
359 return -EBUSY;
1da177e4 360
e3920fb4
RW
361 if (!cpu_online(cpu))
362 return -EINVAL;
1da177e4 363
d221938c 364 cpu_hotplug_begin();
4d51985e 365
e9fb7631 366 err = __cpu_notify(CPU_DOWN_PREPARE | mod, hcpu, -1, &nr_calls);
e6bde73b 367 if (err) {
a0d8cdb6 368 nr_calls--;
e9fb7631 369 __cpu_notify(CPU_DOWN_FAILED | mod, hcpu, nr_calls, NULL);
84117da5
FF
370 pr_warn("%s: attempt to take down CPU %u failed\n",
371 __func__, cpu);
baaca49f 372 goto out_release;
1da177e4
LT
373 }
374
6acce3ef
PZ
375 /*
376 * By now we've cleared cpu_active_mask, wait for all preempt-disabled
377 * and RCU users of this state to go away such that all new such users
378 * will observe it.
379 *
380 * For CONFIG_PREEMPT we have preemptible RCU and its sync_rcu() might
381 * not imply sync_sched(), so explicitly call both.
106dd5af
M
382 *
383 * Do sync before park smpboot threads to take care the rcu boost case.
6acce3ef
PZ
384 */
385#ifdef CONFIG_PREEMPT
386 synchronize_sched();
387#endif
388 synchronize_rcu();
389
106dd5af
M
390 smpboot_park_threads(cpu);
391
6acce3ef
PZ
392 /*
393 * So now all preempt/rcu users must observe !cpu_active().
394 */
395
e0b582ec 396 err = __stop_machine(take_cpu_down, &tcd_param, cpumask_of(cpu));
04321587 397 if (err) {
1da177e4 398 /* CPU didn't die: tell everyone. Can't complain. */
f97f8f06 399 smpboot_unpark_threads(cpu);
e9fb7631 400 cpu_notify_nofail(CPU_DOWN_FAILED | mod, hcpu);
6a1bdc1b 401 goto out_release;
8fa1d7d3 402 }
04321587 403 BUG_ON(cpu_online(cpu));
1da177e4 404
48c5ccae
PZ
405 /*
406 * The migration_call() CPU_DYING callback will have removed all
407 * runnable tasks from the cpu, there's only the idle task left now
408 * that the migration thread is done doing the stop_machine thing.
51a96c77
PZ
409 *
410 * Wait for the stop thread to go away.
48c5ccae 411 */
51a96c77
PZ
412 while (!idle_cpu(cpu))
413 cpu_relax();
1da177e4 414
345527b1 415 hotplug_cpu__broadcast_tick_pull(cpu);
1da177e4
LT
416 /* This actually kills the CPU. */
417 __cpu_die(cpu);
418
1da177e4 419 /* CPU is completely dead: tell everyone. Too late to complain. */
e9fb7631 420 cpu_notify_nofail(CPU_DEAD | mod, hcpu);
1da177e4
LT
421
422 check_for_tasks(cpu);
423
baaca49f 424out_release:
d221938c 425 cpu_hotplug_done();
e9fb7631
AM
426 if (!err)
427 cpu_notify_nofail(CPU_POST_DEAD | mod, hcpu);
e3920fb4
RW
428 return err;
429}
430
514a20a5 431int __ref cpu_down(unsigned int cpu)
e3920fb4 432{
9ea09af3 433 int err;
e3920fb4 434
d221938c 435 cpu_maps_update_begin();
e761b772
MK
436
437 if (cpu_hotplug_disabled) {
e3920fb4 438 err = -EBUSY;
e761b772
MK
439 goto out;
440 }
441
e761b772 442 err = _cpu_down(cpu, 0);
e3920fb4 443
e761b772 444out:
d221938c 445 cpu_maps_update_done();
1da177e4
LT
446 return err;
447}
b62b8ef9 448EXPORT_SYMBOL(cpu_down);
1da177e4
LT
449#endif /*CONFIG_HOTPLUG_CPU*/
450
e3920fb4 451/* Requires cpu_add_remove_lock to be held */
0db0628d 452static int _cpu_up(unsigned int cpu, int tasks_frozen)
1da177e4 453{
baaca49f 454 int ret, nr_calls = 0;
1da177e4 455 void *hcpu = (void *)(long)cpu;
8bb78442 456 unsigned long mod = tasks_frozen ? CPU_TASKS_FROZEN : 0;
3bb5d2ee 457 struct task_struct *idle;
1da177e4 458
d221938c 459 cpu_hotplug_begin();
38498a67 460
5e5041f3
YI
461 if (cpu_online(cpu) || !cpu_present(cpu)) {
462 ret = -EINVAL;
463 goto out;
464 }
465
3bb5d2ee
SS
466 idle = idle_thread_get(cpu);
467 if (IS_ERR(idle)) {
468 ret = PTR_ERR(idle);
38498a67 469 goto out;
3bb5d2ee 470 }
38498a67 471
f97f8f06
TG
472 ret = smpboot_create_threads(cpu);
473 if (ret)
474 goto out;
475
e9fb7631 476 ret = __cpu_notify(CPU_UP_PREPARE | mod, hcpu, -1, &nr_calls);
e6bde73b 477 if (ret) {
a0d8cdb6 478 nr_calls--;
84117da5
FF
479 pr_warn("%s: attempt to bring up CPU %u failed\n",
480 __func__, cpu);
1da177e4
LT
481 goto out_notify;
482 }
483
484 /* Arch-specific enabling code. */
3bb5d2ee 485 ret = __cpu_up(cpu, idle);
1da177e4
LT
486 if (ret != 0)
487 goto out_notify;
6978c705 488 BUG_ON(!cpu_online(cpu));
1da177e4 489
f97f8f06
TG
490 /* Wake the per cpu threads */
491 smpboot_unpark_threads(cpu);
492
1da177e4 493 /* Now call notifier in preparation. */
e9fb7631 494 cpu_notify(CPU_ONLINE | mod, hcpu);
1da177e4
LT
495
496out_notify:
497 if (ret != 0)
e9fb7631 498 __cpu_notify(CPU_UP_CANCELED | mod, hcpu, nr_calls, NULL);
38498a67 499out:
d221938c 500 cpu_hotplug_done();
e3920fb4
RW
501
502 return ret;
503}
504
0db0628d 505int cpu_up(unsigned int cpu)
e3920fb4
RW
506{
507 int err = 0;
cf23422b 508
e0b582ec 509 if (!cpu_possible(cpu)) {
84117da5
FF
510 pr_err("can't online cpu %d because it is not configured as may-hotadd at boot time\n",
511 cpu);
87d5e023 512#if defined(CONFIG_IA64)
84117da5 513 pr_err("please check additional_cpus= boot parameter\n");
73e753a5
KH
514#endif
515 return -EINVAL;
516 }
e3920fb4 517
01b0f197
TK
518 err = try_online_node(cpu_to_node(cpu));
519 if (err)
520 return err;
cf23422b 521
d221938c 522 cpu_maps_update_begin();
e761b772
MK
523
524 if (cpu_hotplug_disabled) {
e3920fb4 525 err = -EBUSY;
e761b772
MK
526 goto out;
527 }
528
529 err = _cpu_up(cpu, 0);
530
e761b772 531out:
d221938c 532 cpu_maps_update_done();
e3920fb4
RW
533 return err;
534}
a513f6ba 535EXPORT_SYMBOL_GPL(cpu_up);
e3920fb4 536
f3de4be9 537#ifdef CONFIG_PM_SLEEP_SMP
e0b582ec 538static cpumask_var_t frozen_cpus;
e3920fb4
RW
539
540int disable_nonboot_cpus(void)
541{
e9a5f426 542 int cpu, first_cpu, error = 0;
e3920fb4 543
d221938c 544 cpu_maps_update_begin();
e0b582ec 545 first_cpu = cpumask_first(cpu_online_mask);
9ee349ad
XF
546 /*
547 * We take down all of the non-boot CPUs in one shot to avoid races
e3920fb4
RW
548 * with the userspace trying to use the CPU hotplug at the same time
549 */
e0b582ec 550 cpumask_clear(frozen_cpus);
6ad4c188 551
84117da5 552 pr_info("Disabling non-boot CPUs ...\n");
e3920fb4
RW
553 for_each_online_cpu(cpu) {
554 if (cpu == first_cpu)
555 continue;
bb3632c6 556 trace_suspend_resume(TPS("CPU_OFF"), cpu, true);
8bb78442 557 error = _cpu_down(cpu, 1);
bb3632c6 558 trace_suspend_resume(TPS("CPU_OFF"), cpu, false);
feae3203 559 if (!error)
e0b582ec 560 cpumask_set_cpu(cpu, frozen_cpus);
feae3203 561 else {
84117da5 562 pr_err("Error taking CPU%d down: %d\n", cpu, error);
e3920fb4
RW
563 break;
564 }
565 }
86886e55 566
e3920fb4
RW
567 if (!error) {
568 BUG_ON(num_online_cpus() > 1);
569 /* Make sure the CPUs won't be enabled by someone else */
570 cpu_hotplug_disabled = 1;
571 } else {
84117da5 572 pr_err("Non-boot CPUs are not disabled\n");
e3920fb4 573 }
d221938c 574 cpu_maps_update_done();
e3920fb4
RW
575 return error;
576}
577
d0af9eed
SS
578void __weak arch_enable_nonboot_cpus_begin(void)
579{
580}
581
582void __weak arch_enable_nonboot_cpus_end(void)
583{
584}
585
fa7303e2 586void __ref enable_nonboot_cpus(void)
e3920fb4
RW
587{
588 int cpu, error;
589
590 /* Allow everyone to use the CPU hotplug again */
d221938c 591 cpu_maps_update_begin();
e3920fb4 592 cpu_hotplug_disabled = 0;
e0b582ec 593 if (cpumask_empty(frozen_cpus))
1d64b9cb 594 goto out;
e3920fb4 595
84117da5 596 pr_info("Enabling non-boot CPUs ...\n");
d0af9eed
SS
597
598 arch_enable_nonboot_cpus_begin();
599
e0b582ec 600 for_each_cpu(cpu, frozen_cpus) {
bb3632c6 601 trace_suspend_resume(TPS("CPU_ON"), cpu, true);
8bb78442 602 error = _cpu_up(cpu, 1);
bb3632c6 603 trace_suspend_resume(TPS("CPU_ON"), cpu, false);
e3920fb4 604 if (!error) {
84117da5 605 pr_info("CPU%d is up\n", cpu);
e3920fb4
RW
606 continue;
607 }
84117da5 608 pr_warn("Error taking CPU%d up: %d\n", cpu, error);
e3920fb4 609 }
d0af9eed
SS
610
611 arch_enable_nonboot_cpus_end();
612
e0b582ec 613 cpumask_clear(frozen_cpus);
1d64b9cb 614out:
d221938c 615 cpu_maps_update_done();
1da177e4 616}
e0b582ec 617
d7268a31 618static int __init alloc_frozen_cpus(void)
e0b582ec
RR
619{
620 if (!alloc_cpumask_var(&frozen_cpus, GFP_KERNEL|__GFP_ZERO))
621 return -ENOMEM;
622 return 0;
623}
624core_initcall(alloc_frozen_cpus);
79cfbdfa 625
79cfbdfa
SB
626/*
627 * When callbacks for CPU hotplug notifications are being executed, we must
628 * ensure that the state of the system with respect to the tasks being frozen
629 * or not, as reported by the notification, remains unchanged *throughout the
630 * duration* of the execution of the callbacks.
631 * Hence we need to prevent the freezer from racing with regular CPU hotplug.
632 *
633 * This synchronization is implemented by mutually excluding regular CPU
634 * hotplug and Suspend/Hibernate call paths by hooking onto the Suspend/
635 * Hibernate notifications.
636 */
637static int
638cpu_hotplug_pm_callback(struct notifier_block *nb,
639 unsigned long action, void *ptr)
640{
641 switch (action) {
642
643 case PM_SUSPEND_PREPARE:
644 case PM_HIBERNATION_PREPARE:
16e53dbf 645 cpu_hotplug_disable();
79cfbdfa
SB
646 break;
647
648 case PM_POST_SUSPEND:
649 case PM_POST_HIBERNATION:
16e53dbf 650 cpu_hotplug_enable();
79cfbdfa
SB
651 break;
652
653 default:
654 return NOTIFY_DONE;
655 }
656
657 return NOTIFY_OK;
658}
659
660
d7268a31 661static int __init cpu_hotplug_pm_sync_init(void)
79cfbdfa 662{
6e32d479
FY
663 /*
664 * cpu_hotplug_pm_callback has higher priority than x86
665 * bsp_pm_callback which depends on cpu_hotplug_pm_callback
666 * to disable cpu hotplug to avoid cpu hotplug race.
667 */
79cfbdfa
SB
668 pm_notifier(cpu_hotplug_pm_callback, 0);
669 return 0;
670}
671core_initcall(cpu_hotplug_pm_sync_init);
672
f3de4be9 673#endif /* CONFIG_PM_SLEEP_SMP */
68f4f1ec 674
e545a614
MS
675/**
676 * notify_cpu_starting(cpu) - call the CPU_STARTING notifiers
677 * @cpu: cpu that just started
678 *
679 * This function calls the cpu_chain notifiers with CPU_STARTING.
680 * It must be called by the arch code on the new cpu, before the new cpu
681 * enables interrupts and before the "boot" cpu returns from __cpu_up().
682 */
0db0628d 683void notify_cpu_starting(unsigned int cpu)
e545a614
MS
684{
685 unsigned long val = CPU_STARTING;
686
687#ifdef CONFIG_PM_SLEEP_SMP
e0b582ec 688 if (frozen_cpus != NULL && cpumask_test_cpu(cpu, frozen_cpus))
e545a614
MS
689 val = CPU_STARTING_FROZEN;
690#endif /* CONFIG_PM_SLEEP_SMP */
e9fb7631 691 cpu_notify(val, (void *)(long)cpu);
e545a614
MS
692}
693
68f4f1ec 694#endif /* CONFIG_SMP */
b8d317d1 695
e56b3bc7
LT
696/*
697 * cpu_bit_bitmap[] is a special, "compressed" data structure that
698 * represents all NR_CPUS bits binary values of 1<<nr.
699 *
e0b582ec 700 * It is used by cpumask_of() to get a constant address to a CPU
e56b3bc7
LT
701 * mask value that has a single bit set only.
702 */
b8d317d1 703
e56b3bc7 704/* cpu_bit_bitmap[0] is empty - so we can back into it */
4d51985e 705#define MASK_DECLARE_1(x) [x+1][0] = (1UL << (x))
e56b3bc7
LT
706#define MASK_DECLARE_2(x) MASK_DECLARE_1(x), MASK_DECLARE_1(x+1)
707#define MASK_DECLARE_4(x) MASK_DECLARE_2(x), MASK_DECLARE_2(x+2)
708#define MASK_DECLARE_8(x) MASK_DECLARE_4(x), MASK_DECLARE_4(x+4)
b8d317d1 709
e56b3bc7
LT
710const unsigned long cpu_bit_bitmap[BITS_PER_LONG+1][BITS_TO_LONGS(NR_CPUS)] = {
711
712 MASK_DECLARE_8(0), MASK_DECLARE_8(8),
713 MASK_DECLARE_8(16), MASK_DECLARE_8(24),
714#if BITS_PER_LONG > 32
715 MASK_DECLARE_8(32), MASK_DECLARE_8(40),
716 MASK_DECLARE_8(48), MASK_DECLARE_8(56),
b8d317d1
MT
717#endif
718};
e56b3bc7 719EXPORT_SYMBOL_GPL(cpu_bit_bitmap);
2d3854a3
RR
720
721const DECLARE_BITMAP(cpu_all_bits, NR_CPUS) = CPU_BITS_ALL;
722EXPORT_SYMBOL(cpu_all_bits);
b3199c02
RR
723
724#ifdef CONFIG_INIT_ALL_POSSIBLE
725static DECLARE_BITMAP(cpu_possible_bits, CONFIG_NR_CPUS) __read_mostly
726 = CPU_BITS_ALL;
727#else
728static DECLARE_BITMAP(cpu_possible_bits, CONFIG_NR_CPUS) __read_mostly;
729#endif
730const struct cpumask *const cpu_possible_mask = to_cpumask(cpu_possible_bits);
731EXPORT_SYMBOL(cpu_possible_mask);
732
733static DECLARE_BITMAP(cpu_online_bits, CONFIG_NR_CPUS) __read_mostly;
734const struct cpumask *const cpu_online_mask = to_cpumask(cpu_online_bits);
735EXPORT_SYMBOL(cpu_online_mask);
736
737static DECLARE_BITMAP(cpu_present_bits, CONFIG_NR_CPUS) __read_mostly;
738const struct cpumask *const cpu_present_mask = to_cpumask(cpu_present_bits);
739EXPORT_SYMBOL(cpu_present_mask);
740
741static DECLARE_BITMAP(cpu_active_bits, CONFIG_NR_CPUS) __read_mostly;
742const struct cpumask *const cpu_active_mask = to_cpumask(cpu_active_bits);
743EXPORT_SYMBOL(cpu_active_mask);
3fa41520
RR
744
745void set_cpu_possible(unsigned int cpu, bool possible)
746{
747 if (possible)
748 cpumask_set_cpu(cpu, to_cpumask(cpu_possible_bits));
749 else
750 cpumask_clear_cpu(cpu, to_cpumask(cpu_possible_bits));
751}
752
753void set_cpu_present(unsigned int cpu, bool present)
754{
755 if (present)
756 cpumask_set_cpu(cpu, to_cpumask(cpu_present_bits));
757 else
758 cpumask_clear_cpu(cpu, to_cpumask(cpu_present_bits));
759}
760
761void set_cpu_online(unsigned int cpu, bool online)
762{
6acbfb96 763 if (online) {
3fa41520 764 cpumask_set_cpu(cpu, to_cpumask(cpu_online_bits));
6acbfb96
LJ
765 cpumask_set_cpu(cpu, to_cpumask(cpu_active_bits));
766 } else {
3fa41520 767 cpumask_clear_cpu(cpu, to_cpumask(cpu_online_bits));
6acbfb96 768 }
3fa41520
RR
769}
770
771void set_cpu_active(unsigned int cpu, bool active)
772{
773 if (active)
774 cpumask_set_cpu(cpu, to_cpumask(cpu_active_bits));
775 else
776 cpumask_clear_cpu(cpu, to_cpumask(cpu_active_bits));
777}
778
779void init_cpu_present(const struct cpumask *src)
780{
781 cpumask_copy(to_cpumask(cpu_present_bits), src);
782}
783
784void init_cpu_possible(const struct cpumask *src)
785{
786 cpumask_copy(to_cpumask(cpu_possible_bits), src);
787}
788
789void init_cpu_online(const struct cpumask *src)
790{
791 cpumask_copy(to_cpumask(cpu_online_bits), src);
792}