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457c8996 1// SPDX-License-Identifier: GPL-2.0-only
3d442233
JA
2/*
3 * Generic helpers for smp ipi calls
4 *
5 * (C) Jens Axboe <jens.axboe@oracle.com> 2008
3d442233 6 */
ca7dfdbb
ME
7
8#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
9
47885016 10#include <linux/irq_work.h>
3d442233 11#include <linux/rcupdate.h>
59190f42 12#include <linux/rculist.h>
641cd4cf 13#include <linux/kernel.h>
9984de1a 14#include <linux/export.h>
0b13fda1
IM
15#include <linux/percpu.h>
16#include <linux/init.h>
5a0e3ad6 17#include <linux/gfp.h>
3d442233 18#include <linux/smp.h>
8969a5ed 19#include <linux/cpu.h>
c6f4459f 20#include <linux/sched.h>
4c822698 21#include <linux/sched/idle.h>
47ae4b05 22#include <linux/hypervisor.h>
35feb604
PM
23#include <linux/sched/clock.h>
24#include <linux/nmi.h>
25#include <linux/sched/debug.h>
3d442233 26
3bb5d2ee 27#include "smpboot.h"
1f8db415 28#include "sched/smp.h"
3bb5d2ee 29
4b44a21d 30#define CSD_TYPE(_csd) ((_csd)->flags & CSD_FLAG_TYPE_MASK)
3d442233
JA
31
32struct call_function_data {
966a9671 33 call_single_data_t __percpu *csd;
0b13fda1 34 cpumask_var_t cpumask;
3fc5b3b6 35 cpumask_var_t cpumask_ipi;
3d442233
JA
36};
37
a22793c7 38static DEFINE_PER_CPU_ALIGNED(struct call_function_data, cfd_data);
e03bcb68 39
6897fc22 40static DEFINE_PER_CPU_SHARED_ALIGNED(struct llist_head, call_single_queue);
8969a5ed 41
8d056c48
SB
42static void flush_smp_call_function_queue(bool warn_cpu_offline);
43
31487f83 44int smpcfd_prepare_cpu(unsigned int cpu)
8969a5ed 45{
8969a5ed
PZ
46 struct call_function_data *cfd = &per_cpu(cfd_data, cpu);
47
31487f83
RW
48 if (!zalloc_cpumask_var_node(&cfd->cpumask, GFP_KERNEL,
49 cpu_to_node(cpu)))
50 return -ENOMEM;
3fc5b3b6
AL
51 if (!zalloc_cpumask_var_node(&cfd->cpumask_ipi, GFP_KERNEL,
52 cpu_to_node(cpu))) {
53 free_cpumask_var(cfd->cpumask);
54 return -ENOMEM;
55 }
966a9671 56 cfd->csd = alloc_percpu(call_single_data_t);
31487f83 57 if (!cfd->csd) {
8969a5ed 58 free_cpumask_var(cfd->cpumask);
3fc5b3b6 59 free_cpumask_var(cfd->cpumask_ipi);
31487f83
RW
60 return -ENOMEM;
61 }
62
63 return 0;
8969a5ed
PZ
64}
65
31487f83
RW
66int smpcfd_dead_cpu(unsigned int cpu)
67{
68 struct call_function_data *cfd = &per_cpu(cfd_data, cpu);
69
70 free_cpumask_var(cfd->cpumask);
3fc5b3b6 71 free_cpumask_var(cfd->cpumask_ipi);
31487f83
RW
72 free_percpu(cfd->csd);
73 return 0;
74}
75
76int smpcfd_dying_cpu(unsigned int cpu)
77{
78 /*
79 * The IPIs for the smp-call-function callbacks queued by other
80 * CPUs might arrive late, either due to hardware latencies or
81 * because this CPU disabled interrupts (inside stop-machine)
82 * before the IPIs were sent. So flush out any pending callbacks
83 * explicitly (without waiting for the IPIs to arrive), to
84 * ensure that the outgoing CPU doesn't go offline with work
85 * still pending.
86 */
87 flush_smp_call_function_queue(false);
afaa653c 88 irq_work_run();
31487f83
RW
89 return 0;
90}
8969a5ed 91
d8ad7d11 92void __init call_function_init(void)
3d442233
JA
93{
94 int i;
95
6897fc22
CH
96 for_each_possible_cpu(i)
97 init_llist_head(&per_cpu(call_single_queue, i));
8969a5ed 98
31487f83 99 smpcfd_prepare_cpu(smp_processor_id());
3d442233
JA
100}
101
35feb604
PM
102#ifdef CONFIG_CSD_LOCK_WAIT_DEBUG
103
104static DEFINE_PER_CPU(call_single_data_t *, cur_csd);
105static DEFINE_PER_CPU(smp_call_func_t, cur_csd_func);
106static DEFINE_PER_CPU(void *, cur_csd_info);
107
108#define CSD_LOCK_TIMEOUT (5ULL * NSEC_PER_SEC)
2b722160 109static atomic_t csd_bug_count = ATOMIC_INIT(0);
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PM
110
111/* Record current CSD work for current CPU, NULL to erase. */
112static void csd_lock_record(call_single_data_t *csd)
113{
114 if (!csd) {
115 smp_mb(); /* NULL cur_csd after unlock. */
116 __this_cpu_write(cur_csd, NULL);
117 return;
118 }
119 __this_cpu_write(cur_csd_func, csd->func);
120 __this_cpu_write(cur_csd_info, csd->info);
121 smp_wmb(); /* func and info before csd. */
122 __this_cpu_write(cur_csd, csd);
123 smp_mb(); /* Update cur_csd before function call. */
124 /* Or before unlock, as the case may be. */
125}
126
127static __always_inline int csd_lock_wait_getcpu(call_single_data_t *csd)
128{
129 unsigned int csd_type;
130
131 csd_type = CSD_TYPE(csd);
132 if (csd_type == CSD_TYPE_ASYNC || csd_type == CSD_TYPE_SYNC)
133 return csd->dst; /* Other CSD_TYPE_ values might not have ->dst. */
134 return -1;
135}
136
137/*
138 * Complain if too much time spent waiting. Note that only
139 * the CSD_TYPE_SYNC/ASYNC types provide the destination CPU,
140 * so waiting on other types gets much less information.
141 */
142static __always_inline bool csd_lock_wait_toolong(call_single_data_t *csd, u64 ts0, u64 *ts1, int *bug_id)
143{
144 int cpu = -1;
145 int cpux;
146 bool firsttime;
147 u64 ts2, ts_delta;
148 call_single_data_t *cpu_cur_csd;
149 unsigned int flags = READ_ONCE(csd->flags);
150
151 if (!(flags & CSD_FLAG_LOCK)) {
152 if (!unlikely(*bug_id))
153 return true;
154 cpu = csd_lock_wait_getcpu(csd);
155 pr_alert("csd: CSD lock (#%d) got unstuck on CPU#%02d, CPU#%02d released the lock.\n",
156 *bug_id, raw_smp_processor_id(), cpu);
157 return true;
158 }
159
160 ts2 = sched_clock();
161 ts_delta = ts2 - *ts1;
162 if (likely(ts_delta <= CSD_LOCK_TIMEOUT))
163 return false;
164
165 firsttime = !*bug_id;
166 if (firsttime)
167 *bug_id = atomic_inc_return(&csd_bug_count);
168 cpu = csd_lock_wait_getcpu(csd);
169 if (WARN_ONCE(cpu < 0 || cpu >= nr_cpu_ids, "%s: cpu = %d\n", __func__, cpu))
170 cpux = 0;
171 else
172 cpux = cpu;
173 cpu_cur_csd = smp_load_acquire(&per_cpu(cur_csd, cpux)); /* Before func and info. */
174 pr_alert("csd: %s non-responsive CSD lock (#%d) on CPU#%d, waiting %llu ns for CPU#%02d %pS(%ps).\n",
175 firsttime ? "Detected" : "Continued", *bug_id, raw_smp_processor_id(), ts2 - ts0,
176 cpu, csd->func, csd->info);
177 if (cpu_cur_csd && csd != cpu_cur_csd) {
178 pr_alert("\tcsd: CSD lock (#%d) handling prior %pS(%ps) request.\n",
179 *bug_id, READ_ONCE(per_cpu(cur_csd_func, cpux)),
180 READ_ONCE(per_cpu(cur_csd_info, cpux)));
181 } else {
182 pr_alert("\tcsd: CSD lock (#%d) %s.\n",
183 *bug_id, !cpu_cur_csd ? "unresponsive" : "handling this request");
184 }
185 if (cpu >= 0) {
186 if (!trigger_single_cpu_backtrace(cpu))
187 dump_cpu_task(cpu);
188 if (!cpu_cur_csd) {
189 pr_alert("csd: Re-sending CSD lock (#%d) IPI from CPU#%02d to CPU#%02d\n", *bug_id, raw_smp_processor_id(), cpu);
190 arch_send_call_function_single_ipi(cpu);
191 }
192 }
193 dump_stack();
194 *ts1 = ts2;
195
196 return false;
197}
198
8969a5ed
PZ
199/*
200 * csd_lock/csd_unlock used to serialize access to per-cpu csd resources
201 *
0b13fda1
IM
202 * For non-synchronous ipi calls the csd can still be in use by the
203 * previous function call. For multi-cpu calls its even more interesting
204 * as we'll have to ensure no other cpu is observing our csd.
8969a5ed 205 */
35feb604
PM
206static __always_inline void csd_lock_wait(call_single_data_t *csd)
207{
208 int bug_id = 0;
209 u64 ts0, ts1;
210
211 ts1 = ts0 = sched_clock();
212 for (;;) {
213 if (csd_lock_wait_toolong(csd, ts0, &ts1, &bug_id))
214 break;
215 cpu_relax();
216 }
217 smp_acquire__after_ctrl_dep();
218}
219
220#else
221static void csd_lock_record(call_single_data_t *csd)
222{
223}
224
966a9671 225static __always_inline void csd_lock_wait(call_single_data_t *csd)
8969a5ed 226{
1f03e8d2 227 smp_cond_load_acquire(&csd->flags, !(VAL & CSD_FLAG_LOCK));
6e275637 228}
35feb604 229#endif
6e275637 230
966a9671 231static __always_inline void csd_lock(call_single_data_t *csd)
6e275637 232{
e1d12f32
AM
233 csd_lock_wait(csd);
234 csd->flags |= CSD_FLAG_LOCK;
8969a5ed
PZ
235
236 /*
0b13fda1
IM
237 * prevent CPU from reordering the above assignment
238 * to ->flags with any subsequent assignments to other
966a9671 239 * fields of the specified call_single_data_t structure:
8969a5ed 240 */
8053871d 241 smp_wmb();
8969a5ed
PZ
242}
243
966a9671 244static __always_inline void csd_unlock(call_single_data_t *csd)
8969a5ed 245{
8053871d 246 WARN_ON(!(csd->flags & CSD_FLAG_LOCK));
0b13fda1 247
8969a5ed 248 /*
0b13fda1 249 * ensure we're all done before releasing data:
8969a5ed 250 */
8053871d 251 smp_store_release(&csd->flags, 0);
3d442233
JA
252}
253
966a9671 254static DEFINE_PER_CPU_SHARED_ALIGNED(call_single_data_t, csd_data);
8b28499a 255
4b44a21d
PZ
256void __smp_call_single_queue(int cpu, struct llist_node *node)
257{
258 /*
259 * The list addition should be visible before sending the IPI
260 * handler locks the list to pull the entry off it because of
261 * normal cache coherency rules implied by spinlocks.
262 *
263 * If IPIs can go out of order to the cache coherency protocol
264 * in an architecture, sufficient synchronisation should be added
265 * to arch code to make it appear to obey cache coherency WRT
266 * locking and barrier primitives. Generic code isn't really
267 * equipped to do the right thing...
268 */
269 if (llist_add(node, &per_cpu(call_single_queue, cpu)))
270 send_call_function_single_ipi(cpu);
271}
272
3d442233 273/*
966a9671 274 * Insert a previously allocated call_single_data_t element
0b13fda1
IM
275 * for execution on the given CPU. data must already have
276 * ->func, ->info, and ->flags set.
3d442233 277 */
4b44a21d 278static int generic_exec_single(int cpu, call_single_data_t *csd)
3d442233 279{
8b28499a 280 if (cpu == smp_processor_id()) {
4b44a21d
PZ
281 smp_call_func_t func = csd->func;
282 void *info = csd->info;
8053871d
LT
283 unsigned long flags;
284
285 /*
286 * We can unlock early even for the synchronous on-stack case,
287 * since we're doing this from the same CPU..
288 */
35feb604 289 csd_lock_record(csd);
8053871d 290 csd_unlock(csd);
8b28499a
FW
291 local_irq_save(flags);
292 func(info);
35feb604 293 csd_lock_record(NULL);
8b28499a
FW
294 local_irq_restore(flags);
295 return 0;
296 }
297
5224b961
LT
298 if ((unsigned)cpu >= nr_cpu_ids || !cpu_online(cpu)) {
299 csd_unlock(csd);
8b28499a 300 return -ENXIO;
5224b961 301 }
8b28499a 302
4b44a21d 303 __smp_call_single_queue(cpu, &csd->llist);
3d442233 304
8b28499a 305 return 0;
3d442233
JA
306}
307
8d056c48
SB
308/**
309 * generic_smp_call_function_single_interrupt - Execute SMP IPI callbacks
310 *
311 * Invoked by arch to handle an IPI for call function single.
312 * Must be called with interrupts disabled.
3d442233
JA
313 */
314void generic_smp_call_function_single_interrupt(void)
315{
8d056c48
SB
316 flush_smp_call_function_queue(true);
317}
318
319/**
320 * flush_smp_call_function_queue - Flush pending smp-call-function callbacks
321 *
322 * @warn_cpu_offline: If set to 'true', warn if callbacks were queued on an
323 * offline CPU. Skip this check if set to 'false'.
324 *
325 * Flush any pending smp-call-function callbacks queued on this CPU. This is
326 * invoked by the generic IPI handler, as well as by a CPU about to go offline,
327 * to ensure that all pending IPI callbacks are run before it goes completely
328 * offline.
329 *
330 * Loop through the call_single_queue and run all the queued callbacks.
331 * Must be called with interrupts disabled.
332 */
333static void flush_smp_call_function_queue(bool warn_cpu_offline)
334{
966a9671 335 call_single_data_t *csd, *csd_next;
52103be0
PZ
336 struct llist_node *entry, *prev;
337 struct llist_head *head;
a219ccf4
SB
338 static bool warned;
339
83efcbd0 340 lockdep_assert_irqs_disabled();
8d056c48 341
bb964a92 342 head = this_cpu_ptr(&call_single_queue);
8d056c48 343 entry = llist_del_all(head);
a219ccf4 344 entry = llist_reverse_order(entry);
3d442233 345
8d056c48
SB
346 /* There shouldn't be any pending callbacks on an offline CPU. */
347 if (unlikely(warn_cpu_offline && !cpu_online(smp_processor_id()) &&
348 !warned && !llist_empty(head))) {
a219ccf4
SB
349 warned = true;
350 WARN(1, "IPI on offline CPU %d\n", smp_processor_id());
351
352 /*
353 * We don't have to use the _safe() variant here
354 * because we are not invoking the IPI handlers yet.
355 */
4b44a21d
PZ
356 llist_for_each_entry(csd, entry, llist) {
357 switch (CSD_TYPE(csd)) {
358 case CSD_TYPE_ASYNC:
359 case CSD_TYPE_SYNC:
360 case CSD_TYPE_IRQ_WORK:
361 pr_warn("IPI callback %pS sent to offline CPU\n",
362 csd->func);
363 break;
364
a1488664
PZ
365 case CSD_TYPE_TTWU:
366 pr_warn("IPI task-wakeup sent to offline CPU\n");
367 break;
368
4b44a21d
PZ
369 default:
370 pr_warn("IPI callback, unknown type %d, sent to offline CPU\n",
371 CSD_TYPE(csd));
372 break;
373 }
374 }
a219ccf4 375 }
3d442233 376
52103be0
PZ
377 /*
378 * First; run all SYNC callbacks, people are waiting for us.
379 */
380 prev = NULL;
5fd77595 381 llist_for_each_entry_safe(csd, csd_next, entry, llist) {
8053871d 382 /* Do we wait until *after* callback? */
4b44a21d
PZ
383 if (CSD_TYPE(csd) == CSD_TYPE_SYNC) {
384 smp_call_func_t func = csd->func;
385 void *info = csd->info;
386
52103be0
PZ
387 if (prev) {
388 prev->next = &csd_next->llist;
389 } else {
390 entry = &csd_next->llist;
391 }
4b44a21d 392
35feb604 393 csd_lock_record(csd);
8053871d
LT
394 func(info);
395 csd_unlock(csd);
35feb604 396 csd_lock_record(NULL);
8053871d 397 } else {
52103be0 398 prev = &csd->llist;
8053871d 399 }
3d442233 400 }
47885016 401
a1488664
PZ
402 if (!entry)
403 return;
404
47885016 405 /*
52103be0 406 * Second; run all !SYNC callbacks.
47885016 407 */
a1488664 408 prev = NULL;
52103be0 409 llist_for_each_entry_safe(csd, csd_next, entry, llist) {
4b44a21d 410 int type = CSD_TYPE(csd);
52103be0 411
a1488664
PZ
412 if (type != CSD_TYPE_TTWU) {
413 if (prev) {
414 prev->next = &csd_next->llist;
415 } else {
416 entry = &csd_next->llist;
417 }
4b44a21d 418
a1488664
PZ
419 if (type == CSD_TYPE_ASYNC) {
420 smp_call_func_t func = csd->func;
421 void *info = csd->info;
422
35feb604 423 csd_lock_record(csd);
a1488664
PZ
424 csd_unlock(csd);
425 func(info);
35feb604 426 csd_lock_record(NULL);
a1488664
PZ
427 } else if (type == CSD_TYPE_IRQ_WORK) {
428 irq_work_single(csd);
429 }
430
431 } else {
432 prev = &csd->llist;
4b44a21d 433 }
52103be0 434 }
a1488664
PZ
435
436 /*
437 * Third; only CSD_TYPE_TTWU is left, issue those.
438 */
439 if (entry)
440 sched_ttwu_pending(entry);
3d442233
JA
441}
442
b2a02fc4
PZ
443void flush_smp_call_function_from_idle(void)
444{
445 unsigned long flags;
446
447 if (llist_empty(this_cpu_ptr(&call_single_queue)))
448 return;
449
450 local_irq_save(flags);
451 flush_smp_call_function_queue(true);
452 local_irq_restore(flags);
3d442233
JA
453}
454
455/*
456 * smp_call_function_single - Run a function on a specific CPU
457 * @func: The function to run. This must be fast and non-blocking.
458 * @info: An arbitrary pointer to pass to the function.
3d442233
JA
459 * @wait: If true, wait until function has completed on other CPUs.
460 *
72f279b2 461 * Returns 0 on success, else a negative status code.
3d442233 462 */
3a5f65df 463int smp_call_function_single(int cpu, smp_call_func_t func, void *info,
8691e5a8 464 int wait)
3d442233 465{
966a9671
YH
466 call_single_data_t *csd;
467 call_single_data_t csd_stack = {
4b44a21d 468 .flags = CSD_FLAG_LOCK | CSD_TYPE_SYNC,
966a9671 469 };
0b13fda1 470 int this_cpu;
8b28499a 471 int err;
3d442233 472
0b13fda1
IM
473 /*
474 * prevent preemption and reschedule on another processor,
475 * as well as CPU removal
476 */
477 this_cpu = get_cpu();
478
269c861b
SS
479 /*
480 * Can deadlock when called with interrupts disabled.
481 * We allow cpu's that are not yet online though, as no one else can
482 * send smp call function interrupt to this cpu and as such deadlocks
483 * can't happen.
484 */
485 WARN_ON_ONCE(cpu_online(this_cpu) && irqs_disabled()
486 && !oops_in_progress);
3d442233 487
19dbdcb8
PZ
488 /*
489 * When @wait we can deadlock when we interrupt between llist_add() and
490 * arch_send_call_function_ipi*(); when !@wait we can deadlock due to
491 * csd_lock() on because the interrupt context uses the same csd
492 * storage.
493 */
494 WARN_ON_ONCE(!in_task());
495
8053871d
LT
496 csd = &csd_stack;
497 if (!wait) {
498 csd = this_cpu_ptr(&csd_data);
499 csd_lock(csd);
500 }
501
4b44a21d
PZ
502 csd->func = func;
503 csd->info = info;
35feb604
PM
504#ifdef CONFIG_CSD_LOCK_WAIT_DEBUG
505 csd->src = smp_processor_id();
e48c15b7
PM
506 csd->dst = cpu;
507#endif
4b44a21d
PZ
508
509 err = generic_exec_single(cpu, csd);
8053871d
LT
510
511 if (wait)
512 csd_lock_wait(csd);
3d442233
JA
513
514 put_cpu();
0b13fda1 515
f73be6de 516 return err;
3d442233
JA
517}
518EXPORT_SYMBOL(smp_call_function_single);
519
d7877c03 520/**
c46fff2a
FW
521 * smp_call_function_single_async(): Run an asynchronous function on a
522 * specific CPU.
d7877c03
FW
523 * @cpu: The CPU to run on.
524 * @csd: Pre-allocated and setup data structure
d7877c03 525 *
c46fff2a
FW
526 * Like smp_call_function_single(), but the call is asynchonous and
527 * can thus be done from contexts with disabled interrupts.
528 *
529 * The caller passes his own pre-allocated data structure
530 * (ie: embedded in an object) and is responsible for synchronizing it
531 * such that the IPIs performed on the @csd are strictly serialized.
532 *
5a18ceca
PX
533 * If the function is called with one csd which has not yet been
534 * processed by previous call to smp_call_function_single_async(), the
535 * function will return immediately with -EBUSY showing that the csd
536 * object is still in progress.
537 *
c46fff2a
FW
538 * NOTE: Be careful, there is unfortunately no current debugging facility to
539 * validate the correctness of this serialization.
d7877c03 540 */
966a9671 541int smp_call_function_single_async(int cpu, call_single_data_t *csd)
d7877c03
FW
542{
543 int err = 0;
d7877c03 544
fce8ad15 545 preempt_disable();
8053871d 546
5a18ceca
PX
547 if (csd->flags & CSD_FLAG_LOCK) {
548 err = -EBUSY;
549 goto out;
550 }
8053871d
LT
551
552 csd->flags = CSD_FLAG_LOCK;
553 smp_wmb();
554
4b44a21d 555 err = generic_exec_single(cpu, csd);
5a18ceca
PX
556
557out:
fce8ad15 558 preempt_enable();
d7877c03
FW
559
560 return err;
561}
c46fff2a 562EXPORT_SYMBOL_GPL(smp_call_function_single_async);
d7877c03 563
2ea6dec4
RR
564/*
565 * smp_call_function_any - Run a function on any of the given cpus
566 * @mask: The mask of cpus it can run on.
567 * @func: The function to run. This must be fast and non-blocking.
568 * @info: An arbitrary pointer to pass to the function.
569 * @wait: If true, wait until function has completed.
570 *
571 * Returns 0 on success, else a negative status code (if no cpus were online).
2ea6dec4
RR
572 *
573 * Selection preference:
574 * 1) current cpu if in @mask
575 * 2) any cpu of current node if in @mask
576 * 3) any other online cpu in @mask
577 */
578int smp_call_function_any(const struct cpumask *mask,
3a5f65df 579 smp_call_func_t func, void *info, int wait)
2ea6dec4
RR
580{
581 unsigned int cpu;
582 const struct cpumask *nodemask;
583 int ret;
584
585 /* Try for same CPU (cheapest) */
586 cpu = get_cpu();
587 if (cpumask_test_cpu(cpu, mask))
588 goto call;
589
590 /* Try for same node. */
af2422c4 591 nodemask = cpumask_of_node(cpu_to_node(cpu));
2ea6dec4
RR
592 for (cpu = cpumask_first_and(nodemask, mask); cpu < nr_cpu_ids;
593 cpu = cpumask_next_and(cpu, nodemask, mask)) {
594 if (cpu_online(cpu))
595 goto call;
596 }
597
598 /* Any online will do: smp_call_function_single handles nr_cpu_ids. */
599 cpu = cpumask_any_and(mask, cpu_online_mask);
600call:
601 ret = smp_call_function_single(cpu, func, info, wait);
602 put_cpu();
603 return ret;
604}
605EXPORT_SYMBOL_GPL(smp_call_function_any);
606
67719ef2
SAS
607static void smp_call_function_many_cond(const struct cpumask *mask,
608 smp_call_func_t func, void *info,
609 bool wait, smp_cond_func_t cond_func)
3d442233 610{
e1d12f32 611 struct call_function_data *cfd;
9a46ad6d 612 int cpu, next_cpu, this_cpu = smp_processor_id();
3d442233 613
269c861b
SS
614 /*
615 * Can deadlock when called with interrupts disabled.
616 * We allow cpu's that are not yet online though, as no one else can
617 * send smp call function interrupt to this cpu and as such deadlocks
618 * can't happen.
619 */
620 WARN_ON_ONCE(cpu_online(this_cpu) && irqs_disabled()
bd924e8c 621 && !oops_in_progress && !early_boot_irqs_disabled);
3d442233 622
19dbdcb8
PZ
623 /*
624 * When @wait we can deadlock when we interrupt between llist_add() and
625 * arch_send_call_function_ipi*(); when !@wait we can deadlock due to
626 * csd_lock() on because the interrupt context uses the same csd
627 * storage.
628 */
629 WARN_ON_ONCE(!in_task());
630
723aae25 631 /* Try to fastpath. So, what's a CPU they want? Ignoring this one. */
54b11e6d 632 cpu = cpumask_first_and(mask, cpu_online_mask);
0b13fda1 633 if (cpu == this_cpu)
54b11e6d 634 cpu = cpumask_next_and(cpu, mask, cpu_online_mask);
0b13fda1 635
54b11e6d
RR
636 /* No online cpus? We're done. */
637 if (cpu >= nr_cpu_ids)
638 return;
639
640 /* Do we have another CPU which isn't us? */
641 next_cpu = cpumask_next_and(cpu, mask, cpu_online_mask);
0b13fda1 642 if (next_cpu == this_cpu)
54b11e6d
RR
643 next_cpu = cpumask_next_and(next_cpu, mask, cpu_online_mask);
644
645 /* Fastpath: do that cpu by itself. */
646 if (next_cpu >= nr_cpu_ids) {
25a3a154 647 if (!cond_func || cond_func(cpu, info))
67719ef2 648 smp_call_function_single(cpu, func, info, wait);
54b11e6d 649 return;
3d442233
JA
650 }
651
bb964a92 652 cfd = this_cpu_ptr(&cfd_data);
45a57919 653
e1d12f32 654 cpumask_and(cfd->cpumask, mask, cpu_online_mask);
6c8557bd 655 __cpumask_clear_cpu(this_cpu, cfd->cpumask);
723aae25
MM
656
657 /* Some callers race with other cpus changing the passed mask */
e1d12f32 658 if (unlikely(!cpumask_weight(cfd->cpumask)))
723aae25 659 return;
3d442233 660
3fc5b3b6 661 cpumask_clear(cfd->cpumask_ipi);
e1d12f32 662 for_each_cpu(cpu, cfd->cpumask) {
966a9671 663 call_single_data_t *csd = per_cpu_ptr(cfd->csd, cpu);
9a46ad6d 664
67719ef2
SAS
665 if (cond_func && !cond_func(cpu, info))
666 continue;
667
9a46ad6d 668 csd_lock(csd);
8053871d 669 if (wait)
4b44a21d 670 csd->flags |= CSD_TYPE_SYNC;
9a46ad6d
SL
671 csd->func = func;
672 csd->info = info;
35feb604
PM
673#ifdef CONFIG_CSD_LOCK_WAIT_DEBUG
674 csd->src = smp_processor_id();
e48c15b7
PM
675 csd->dst = cpu;
676#endif
3fc5b3b6 677 if (llist_add(&csd->llist, &per_cpu(call_single_queue, cpu)))
6c8557bd 678 __cpumask_set_cpu(cpu, cfd->cpumask_ipi);
9a46ad6d 679 }
561920a0 680
3d442233 681 /* Send a message to all CPUs in the map */
3fc5b3b6 682 arch_send_call_function_ipi_mask(cfd->cpumask_ipi);
3d442233 683
9a46ad6d 684 if (wait) {
e1d12f32 685 for_each_cpu(cpu, cfd->cpumask) {
966a9671 686 call_single_data_t *csd;
e1d12f32
AM
687
688 csd = per_cpu_ptr(cfd->csd, cpu);
9a46ad6d
SL
689 csd_lock_wait(csd);
690 }
691 }
3d442233 692}
67719ef2
SAS
693
694/**
695 * smp_call_function_many(): Run a function on a set of other CPUs.
696 * @mask: The set of cpus to run on (only runs on online subset).
697 * @func: The function to run. This must be fast and non-blocking.
698 * @info: An arbitrary pointer to pass to the function.
699 * @wait: If true, wait (atomically) until function has completed
700 * on other CPUs.
701 *
702 * If @wait is true, then returns once @func has returned.
703 *
704 * You must not call this function with disabled interrupts or from a
705 * hardware interrupt handler or from a bottom half handler. Preemption
706 * must be disabled when calling this function.
707 */
708void smp_call_function_many(const struct cpumask *mask,
709 smp_call_func_t func, void *info, bool wait)
710{
711 smp_call_function_many_cond(mask, func, info, wait, NULL);
712}
54b11e6d 713EXPORT_SYMBOL(smp_call_function_many);
3d442233
JA
714
715/**
716 * smp_call_function(): Run a function on all other CPUs.
717 * @func: The function to run. This must be fast and non-blocking.
718 * @info: An arbitrary pointer to pass to the function.
0b13fda1
IM
719 * @wait: If true, wait (atomically) until function has completed
720 * on other CPUs.
3d442233 721 *
54b11e6d 722 * Returns 0.
3d442233
JA
723 *
724 * If @wait is true, then returns once @func has returned; otherwise
72f279b2 725 * it returns just before the target cpu calls @func.
3d442233
JA
726 *
727 * You must not call this function with disabled interrupts or from a
728 * hardware interrupt handler or from a bottom half handler.
729 */
caa75932 730void smp_call_function(smp_call_func_t func, void *info, int wait)
3d442233 731{
3d442233 732 preempt_disable();
54b11e6d 733 smp_call_function_many(cpu_online_mask, func, info, wait);
3d442233 734 preempt_enable();
3d442233
JA
735}
736EXPORT_SYMBOL(smp_call_function);
351f8f8e 737
34db18a0
AW
738/* Setup configured maximum number of CPUs to activate */
739unsigned int setup_max_cpus = NR_CPUS;
740EXPORT_SYMBOL(setup_max_cpus);
741
742
743/*
744 * Setup routine for controlling SMP activation
745 *
746 * Command-line option of "nosmp" or "maxcpus=0" will disable SMP
747 * activation entirely (the MPS table probe still happens, though).
748 *
749 * Command-line option of "maxcpus=<NUM>", where <NUM> is an integer
750 * greater than 0, limits the maximum number of CPUs activated in
751 * SMP mode to <NUM>.
752 */
753
754void __weak arch_disable_smp_support(void) { }
755
756static int __init nosmp(char *str)
757{
758 setup_max_cpus = 0;
759 arch_disable_smp_support();
760
761 return 0;
762}
763
764early_param("nosmp", nosmp);
765
766/* this is hard limit */
767static int __init nrcpus(char *str)
768{
769 int nr_cpus;
770
58934356 771 if (get_option(&str, &nr_cpus) && nr_cpus > 0 && nr_cpus < nr_cpu_ids)
34db18a0
AW
772 nr_cpu_ids = nr_cpus;
773
774 return 0;
775}
776
777early_param("nr_cpus", nrcpus);
778
779static int __init maxcpus(char *str)
780{
781 get_option(&str, &setup_max_cpus);
782 if (setup_max_cpus == 0)
783 arch_disable_smp_support();
784
785 return 0;
786}
787
788early_param("maxcpus", maxcpus);
789
790/* Setup number of possible processor ids */
9b130ad5 791unsigned int nr_cpu_ids __read_mostly = NR_CPUS;
34db18a0
AW
792EXPORT_SYMBOL(nr_cpu_ids);
793
794/* An arch may set nr_cpu_ids earlier if needed, so this would be redundant */
795void __init setup_nr_cpu_ids(void)
796{
797 nr_cpu_ids = find_last_bit(cpumask_bits(cpu_possible_mask),NR_CPUS) + 1;
798}
799
800/* Called by boot processor to activate the rest. */
801void __init smp_init(void)
802{
92b23278 803 int num_nodes, num_cpus;
34db18a0 804
3bb5d2ee 805 idle_threads_init();
4cb28ced 806 cpuhp_threads_init();
3bb5d2ee 807
51111dce
ME
808 pr_info("Bringing up secondary CPUs ...\n");
809
b99a2659 810 bringup_nonboot_cpus(setup_max_cpus);
34db18a0 811
92b23278
ME
812 num_nodes = num_online_nodes();
813 num_cpus = num_online_cpus();
814 pr_info("Brought up %d node%s, %d CPU%s\n",
815 num_nodes, (num_nodes > 1 ? "s" : ""),
816 num_cpus, (num_cpus > 1 ? "s" : ""));
817
34db18a0 818 /* Any cleanup work */
34db18a0
AW
819 smp_cpus_done(setup_max_cpus);
820}
821
351f8f8e 822/*
bd924e8c
TH
823 * Call a function on all processors. May be used during early boot while
824 * early_boot_irqs_disabled is set. Use local_irq_save/restore() instead
825 * of local_irq_disable/enable().
351f8f8e 826 */
58eb7b77 827void on_each_cpu(smp_call_func_t func, void *info, int wait)
351f8f8e 828{
bd924e8c 829 unsigned long flags;
351f8f8e
AW
830
831 preempt_disable();
caa75932 832 smp_call_function(func, info, wait);
bd924e8c 833 local_irq_save(flags);
351f8f8e 834 func(info);
bd924e8c 835 local_irq_restore(flags);
351f8f8e 836 preempt_enable();
351f8f8e
AW
837}
838EXPORT_SYMBOL(on_each_cpu);
3fc498f1
GBY
839
840/**
841 * on_each_cpu_mask(): Run a function on processors specified by
842 * cpumask, which may include the local processor.
843 * @mask: The set of cpus to run on (only runs on online subset).
844 * @func: The function to run. This must be fast and non-blocking.
845 * @info: An arbitrary pointer to pass to the function.
846 * @wait: If true, wait (atomically) until function has completed
847 * on other CPUs.
848 *
849 * If @wait is true, then returns once @func has returned.
850 *
202da400
DD
851 * You must not call this function with disabled interrupts or from a
852 * hardware interrupt handler or from a bottom half handler. The
853 * exception is that it may be used during early boot while
854 * early_boot_irqs_disabled is set.
3fc498f1
GBY
855 */
856void on_each_cpu_mask(const struct cpumask *mask, smp_call_func_t func,
857 void *info, bool wait)
858{
859 int cpu = get_cpu();
860
861 smp_call_function_many(mask, func, info, wait);
862 if (cpumask_test_cpu(cpu, mask)) {
202da400
DD
863 unsigned long flags;
864 local_irq_save(flags);
3fc498f1 865 func(info);
202da400 866 local_irq_restore(flags);
3fc498f1
GBY
867 }
868 put_cpu();
869}
870EXPORT_SYMBOL(on_each_cpu_mask);
b3a7e98e
GBY
871
872/*
873 * on_each_cpu_cond(): Call a function on each processor for which
874 * the supplied function cond_func returns true, optionally waiting
875 * for all the required CPUs to finish. This may include the local
876 * processor.
877 * @cond_func: A callback function that is passed a cpu id and
7b7b8a2c 878 * the info parameter. The function is called
b3a7e98e
GBY
879 * with preemption disabled. The function should
880 * return a blooean value indicating whether to IPI
881 * the specified CPU.
882 * @func: The function to run on all applicable CPUs.
883 * This must be fast and non-blocking.
884 * @info: An arbitrary pointer to pass to both functions.
885 * @wait: If true, wait (atomically) until function has
886 * completed on other CPUs.
b3a7e98e
GBY
887 *
888 * Preemption is disabled to protect against CPUs going offline but not online.
889 * CPUs going online during the call will not be seen or sent an IPI.
890 *
891 * You must not call this function with disabled interrupts or
892 * from a hardware interrupt handler or from a bottom half handler.
893 */
5671d814 894void on_each_cpu_cond_mask(smp_cond_func_t cond_func, smp_call_func_t func,
cb923159 895 void *info, bool wait, const struct cpumask *mask)
b3a7e98e 896{
67719ef2
SAS
897 int cpu = get_cpu();
898
899 smp_call_function_many_cond(mask, func, info, wait, cond_func);
900 if (cpumask_test_cpu(cpu, mask) && cond_func(cpu, info)) {
901 unsigned long flags;
902
903 local_irq_save(flags);
904 func(info);
905 local_irq_restore(flags);
b3a7e98e 906 }
67719ef2 907 put_cpu();
b3a7e98e 908}
7d49b28a
RR
909EXPORT_SYMBOL(on_each_cpu_cond_mask);
910
5671d814 911void on_each_cpu_cond(smp_cond_func_t cond_func, smp_call_func_t func,
cb923159 912 void *info, bool wait)
7d49b28a 913{
cb923159 914 on_each_cpu_cond_mask(cond_func, func, info, wait, cpu_online_mask);
7d49b28a 915}
b3a7e98e 916EXPORT_SYMBOL(on_each_cpu_cond);
f37f435f
TG
917
918static void do_nothing(void *unused)
919{
920}
921
922/**
923 * kick_all_cpus_sync - Force all cpus out of idle
924 *
925 * Used to synchronize the update of pm_idle function pointer. It's
926 * called after the pointer is updated and returns after the dummy
927 * callback function has been executed on all cpus. The execution of
928 * the function can only happen on the remote cpus after they have
929 * left the idle function which had been called via pm_idle function
930 * pointer. So it's guaranteed that nothing uses the previous pointer
931 * anymore.
932 */
933void kick_all_cpus_sync(void)
934{
935 /* Make sure the change is visible before we kick the cpus */
936 smp_mb();
937 smp_call_function(do_nothing, NULL, 1);
938}
939EXPORT_SYMBOL_GPL(kick_all_cpus_sync);
c6f4459f
CL
940
941/**
942 * wake_up_all_idle_cpus - break all cpus out of idle
943 * wake_up_all_idle_cpus try to break all cpus which is in idle state even
944 * including idle polling cpus, for non-idle cpus, we will do nothing
945 * for them.
946 */
947void wake_up_all_idle_cpus(void)
948{
949 int cpu;
950
951 preempt_disable();
952 for_each_online_cpu(cpu) {
953 if (cpu == smp_processor_id())
954 continue;
955
956 wake_up_if_idle(cpu);
957 }
958 preempt_enable();
959}
960EXPORT_SYMBOL_GPL(wake_up_all_idle_cpus);
df8ce9d7
JG
961
962/**
963 * smp_call_on_cpu - Call a function on a specific cpu
964 *
965 * Used to call a function on a specific cpu and wait for it to return.
966 * Optionally make sure the call is done on a specified physical cpu via vcpu
967 * pinning in order to support virtualized environments.
968 */
969struct smp_call_on_cpu_struct {
970 struct work_struct work;
971 struct completion done;
972 int (*func)(void *);
973 void *data;
974 int ret;
975 int cpu;
976};
977
978static void smp_call_on_cpu_callback(struct work_struct *work)
979{
980 struct smp_call_on_cpu_struct *sscs;
981
982 sscs = container_of(work, struct smp_call_on_cpu_struct, work);
983 if (sscs->cpu >= 0)
984 hypervisor_pin_vcpu(sscs->cpu);
985 sscs->ret = sscs->func(sscs->data);
986 if (sscs->cpu >= 0)
987 hypervisor_pin_vcpu(-1);
988
989 complete(&sscs->done);
990}
991
992int smp_call_on_cpu(unsigned int cpu, int (*func)(void *), void *par, bool phys)
993{
994 struct smp_call_on_cpu_struct sscs = {
df8ce9d7
JG
995 .done = COMPLETION_INITIALIZER_ONSTACK(sscs.done),
996 .func = func,
997 .data = par,
998 .cpu = phys ? cpu : -1,
999 };
1000
8db54949
PZ
1001 INIT_WORK_ONSTACK(&sscs.work, smp_call_on_cpu_callback);
1002
df8ce9d7
JG
1003 if (cpu >= nr_cpu_ids || !cpu_online(cpu))
1004 return -ENXIO;
1005
1006 queue_work_on(cpu, system_wq, &sscs.work);
1007 wait_for_completion(&sscs.done);
1008
1009 return sscs.ret;
1010}
1011EXPORT_SYMBOL_GPL(smp_call_on_cpu);