riscv: Sparse-Memory/vmemmap out-of-bounds fix
[linux-block.git] / kernel / smp.c
CommitLineData
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>
f9d34595 17#include <linux/interrupt.h>
5a0e3ad6 18#include <linux/gfp.h>
3d442233 19#include <linux/smp.h>
8969a5ed 20#include <linux/cpu.h>
c6f4459f 21#include <linux/sched.h>
4c822698 22#include <linux/sched/idle.h>
47ae4b05 23#include <linux/hypervisor.h>
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24#include <linux/sched/clock.h>
25#include <linux/nmi.h>
26#include <linux/sched/debug.h>
8d0968cc 27#include <linux/jump_label.h>
3d442233 28
cc9cb0a7 29#include <trace/events/ipi.h>
949fa3f1
LB
30#define CREATE_TRACE_POINTS
31#include <trace/events/csd.h>
32#undef CREATE_TRACE_POINTS
cc9cb0a7 33
3bb5d2ee 34#include "smpboot.h"
1f8db415 35#include "sched/smp.h"
3bb5d2ee 36
545b8c8d 37#define CSD_TYPE(_csd) ((_csd)->node.u_flags & CSD_FLAG_TYPE_MASK)
3d442233
JA
38
39struct call_function_data {
6366d062 40 call_single_data_t __percpu *csd;
0b13fda1 41 cpumask_var_t cpumask;
3fc5b3b6 42 cpumask_var_t cpumask_ipi;
3d442233
JA
43};
44
a22793c7 45static DEFINE_PER_CPU_ALIGNED(struct call_function_data, cfd_data);
e03bcb68 46
6897fc22 47static DEFINE_PER_CPU_SHARED_ALIGNED(struct llist_head, call_single_queue);
8969a5ed 48
0d3a00b3
IK
49static DEFINE_PER_CPU(atomic_t, trigger_backtrace) = ATOMIC_INIT(1);
50
16bf5a5e 51static void __flush_smp_call_function_queue(bool warn_cpu_offline);
8d056c48 52
31487f83 53int smpcfd_prepare_cpu(unsigned int cpu)
8969a5ed 54{
8969a5ed
PZ
55 struct call_function_data *cfd = &per_cpu(cfd_data, cpu);
56
31487f83
RW
57 if (!zalloc_cpumask_var_node(&cfd->cpumask, GFP_KERNEL,
58 cpu_to_node(cpu)))
59 return -ENOMEM;
3fc5b3b6
AL
60 if (!zalloc_cpumask_var_node(&cfd->cpumask_ipi, GFP_KERNEL,
61 cpu_to_node(cpu))) {
62 free_cpumask_var(cfd->cpumask);
63 return -ENOMEM;
64 }
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65 cfd->csd = alloc_percpu(call_single_data_t);
66 if (!cfd->csd) {
8969a5ed 67 free_cpumask_var(cfd->cpumask);
3fc5b3b6 68 free_cpumask_var(cfd->cpumask_ipi);
31487f83
RW
69 return -ENOMEM;
70 }
71
72 return 0;
8969a5ed
PZ
73}
74
31487f83
RW
75int smpcfd_dead_cpu(unsigned int cpu)
76{
77 struct call_function_data *cfd = &per_cpu(cfd_data, cpu);
78
79 free_cpumask_var(cfd->cpumask);
3fc5b3b6 80 free_cpumask_var(cfd->cpumask_ipi);
6366d062 81 free_percpu(cfd->csd);
31487f83
RW
82 return 0;
83}
84
85int smpcfd_dying_cpu(unsigned int cpu)
86{
87 /*
88 * The IPIs for the smp-call-function callbacks queued by other
89 * CPUs might arrive late, either due to hardware latencies or
90 * because this CPU disabled interrupts (inside stop-machine)
91 * before the IPIs were sent. So flush out any pending callbacks
92 * explicitly (without waiting for the IPIs to arrive), to
93 * ensure that the outgoing CPU doesn't go offline with work
94 * still pending.
95 */
16bf5a5e 96 __flush_smp_call_function_queue(false);
afaa653c 97 irq_work_run();
31487f83
RW
98 return 0;
99}
8969a5ed 100
d8ad7d11 101void __init call_function_init(void)
3d442233
JA
102{
103 int i;
104
6897fc22
CH
105 for_each_possible_cpu(i)
106 init_llist_head(&per_cpu(call_single_queue, i));
8969a5ed 107
31487f83 108 smpcfd_prepare_cpu(smp_processor_id());
3d442233
JA
109}
110
08407b5f 111static __always_inline void
5c312497 112send_call_function_single_ipi(int cpu)
08407b5f 113{
68f4ff04 114 if (call_function_single_prep_ipi(cpu)) {
5c312497
PZ
115 trace_ipi_send_cpu(cpu, _RET_IP_,
116 generic_smp_call_function_single_interrupt);
68f4ff04
VS
117 arch_send_call_function_single_ipi(cpu);
118 }
119}
120
121static __always_inline void
5c312497 122send_call_function_ipi_mask(struct cpumask *mask)
68f4ff04 123{
5c312497
PZ
124 trace_ipi_send_cpumask(mask, _RET_IP_,
125 generic_smp_call_function_single_interrupt);
08407b5f
VS
126 arch_send_call_function_ipi_mask(mask);
127}
128
949fa3f1 129static __always_inline void
d090ec0d 130csd_do_func(smp_call_func_t func, void *info, call_single_data_t *csd)
949fa3f1
LB
131{
132 trace_csd_function_entry(func, csd);
133 func(info);
134 trace_csd_function_exit(func, csd);
135}
136
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137#ifdef CONFIG_CSD_LOCK_WAIT_DEBUG
138
c5219860 139static DEFINE_STATIC_KEY_MAYBE(CONFIG_CSD_LOCK_WAIT_DEBUG_DEFAULT, csdlock_debug_enabled);
8d0968cc 140
1771257c
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141/*
142 * Parse the csdlock_debug= kernel boot parameter.
143 *
144 * If you need to restore the old "ext" value that once provided
145 * additional debugging information, reapply the following commits:
146 *
147 * de7b09ef658d ("locking/csd_lock: Prepare more CSD lock debugging")
148 * a5aabace5fb8 ("locking/csd_lock: Add more data to CSD lock debugging")
149 */
8d0968cc
JG
150static int __init csdlock_debug(char *str)
151{
203e4358 152 int ret;
8d0968cc
JG
153 unsigned int val = 0;
154
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PM
155 ret = get_option(&str, &val);
156 if (ret) {
157 if (val)
158 static_branch_enable(&csdlock_debug_enabled);
159 else
160 static_branch_disable(&csdlock_debug_enabled);
161 }
8d0968cc 162
9c9b26b0 163 return 1;
8d0968cc 164}
9c9b26b0 165__setup("csdlock_debug=", csdlock_debug);
8d0968cc 166
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167static DEFINE_PER_CPU(call_single_data_t *, cur_csd);
168static DEFINE_PER_CPU(smp_call_func_t, cur_csd_func);
169static DEFINE_PER_CPU(void *, cur_csd_info);
170
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171static ulong csd_lock_timeout = 5000; /* CSD lock timeout in milliseconds. */
172module_param(csd_lock_timeout, ulong, 0444);
94b3f0b5
RR
173static int panic_on_ipistall; /* CSD panic timeout in milliseconds, 300000 for five minutes. */
174module_param(panic_on_ipistall, int, 0444);
3791a223 175
2b722160 176static atomic_t csd_bug_count = ATOMIC_INIT(0);
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177
178/* Record current CSD work for current CPU, NULL to erase. */
d090ec0d 179static void __csd_lock_record(call_single_data_t *csd)
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180{
181 if (!csd) {
182 smp_mb(); /* NULL cur_csd after unlock. */
183 __this_cpu_write(cur_csd, NULL);
184 return;
185 }
186 __this_cpu_write(cur_csd_func, csd->func);
187 __this_cpu_write(cur_csd_info, csd->info);
188 smp_wmb(); /* func and info before csd. */
189 __this_cpu_write(cur_csd, csd);
190 smp_mb(); /* Update cur_csd before function call. */
191 /* Or before unlock, as the case may be. */
192}
193
d090ec0d 194static __always_inline void csd_lock_record(call_single_data_t *csd)
8d0968cc
JG
195{
196 if (static_branch_unlikely(&csdlock_debug_enabled))
197 __csd_lock_record(csd);
198}
199
d090ec0d 200static int csd_lock_wait_getcpu(call_single_data_t *csd)
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201{
202 unsigned int csd_type;
203
204 csd_type = CSD_TYPE(csd);
205 if (csd_type == CSD_TYPE_ASYNC || csd_type == CSD_TYPE_SYNC)
a787bdaf 206 return csd->node.dst; /* Other CSD_TYPE_ values might not have ->dst. */
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207 return -1;
208}
209
210/*
211 * Complain if too much time spent waiting. Note that only
212 * the CSD_TYPE_SYNC/ASYNC types provide the destination CPU,
213 * so waiting on other types gets much less information.
214 */
d090ec0d 215static bool csd_lock_wait_toolong(call_single_data_t *csd, u64 ts0, u64 *ts1, int *bug_id)
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216{
217 int cpu = -1;
218 int cpux;
219 bool firsttime;
220 u64 ts2, ts_delta;
221 call_single_data_t *cpu_cur_csd;
545b8c8d 222 unsigned int flags = READ_ONCE(csd->node.u_flags);
3791a223 223 unsigned long long csd_lock_timeout_ns = csd_lock_timeout * NSEC_PER_MSEC;
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224
225 if (!(flags & CSD_FLAG_LOCK)) {
226 if (!unlikely(*bug_id))
227 return true;
228 cpu = csd_lock_wait_getcpu(csd);
229 pr_alert("csd: CSD lock (#%d) got unstuck on CPU#%02d, CPU#%02d released the lock.\n",
230 *bug_id, raw_smp_processor_id(), cpu);
231 return true;
232 }
233
234 ts2 = sched_clock();
94b3f0b5 235 /* How long since we last checked for a stuck CSD lock.*/
35feb604 236 ts_delta = ts2 - *ts1;
3791a223 237 if (likely(ts_delta <= csd_lock_timeout_ns || csd_lock_timeout_ns == 0))
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238 return false;
239
240 firsttime = !*bug_id;
241 if (firsttime)
242 *bug_id = atomic_inc_return(&csd_bug_count);
243 cpu = csd_lock_wait_getcpu(csd);
244 if (WARN_ONCE(cpu < 0 || cpu >= nr_cpu_ids, "%s: cpu = %d\n", __func__, cpu))
245 cpux = 0;
246 else
247 cpux = cpu;
248 cpu_cur_csd = smp_load_acquire(&per_cpu(cur_csd, cpux)); /* Before func and info. */
94b3f0b5
RR
249 /* How long since this CSD lock was stuck. */
250 ts_delta = ts2 - ts0;
35feb604 251 pr_alert("csd: %s non-responsive CSD lock (#%d) on CPU#%d, waiting %llu ns for CPU#%02d %pS(%ps).\n",
94b3f0b5 252 firsttime ? "Detected" : "Continued", *bug_id, raw_smp_processor_id(), ts_delta,
35feb604 253 cpu, csd->func, csd->info);
94b3f0b5
RR
254 /*
255 * If the CSD lock is still stuck after 5 minutes, it is unlikely
256 * to become unstuck. Use a signed comparison to avoid triggering
257 * on underflows when the TSC is out of sync between sockets.
258 */
259 BUG_ON(panic_on_ipistall > 0 && (s64)ts_delta > ((s64)panic_on_ipistall * NSEC_PER_MSEC));
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260 if (cpu_cur_csd && csd != cpu_cur_csd) {
261 pr_alert("\tcsd: CSD lock (#%d) handling prior %pS(%ps) request.\n",
262 *bug_id, READ_ONCE(per_cpu(cur_csd_func, cpux)),
263 READ_ONCE(per_cpu(cur_csd_info, cpux)));
264 } else {
265 pr_alert("\tcsd: CSD lock (#%d) %s.\n",
266 *bug_id, !cpu_cur_csd ? "unresponsive" : "handling this request");
267 }
268 if (cpu >= 0) {
0d3a00b3
IK
269 if (atomic_cmpxchg_acquire(&per_cpu(trigger_backtrace, cpu), 1, 0))
270 dump_cpu_task(cpu);
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271 if (!cpu_cur_csd) {
272 pr_alert("csd: Re-sending CSD lock (#%d) IPI from CPU#%02d to CPU#%02d\n", *bug_id, raw_smp_processor_id(), cpu);
273 arch_send_call_function_single_ipi(cpu);
274 }
275 }
5bd00f6d
IK
276 if (firsttime)
277 dump_stack();
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278 *ts1 = ts2;
279
280 return false;
281}
282
8969a5ed
PZ
283/*
284 * csd_lock/csd_unlock used to serialize access to per-cpu csd resources
285 *
0b13fda1
IM
286 * For non-synchronous ipi calls the csd can still be in use by the
287 * previous function call. For multi-cpu calls its even more interesting
288 * as we'll have to ensure no other cpu is observing our csd.
8969a5ed 289 */
d090ec0d 290static void __csd_lock_wait(call_single_data_t *csd)
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291{
292 int bug_id = 0;
293 u64 ts0, ts1;
294
295 ts1 = ts0 = sched_clock();
296 for (;;) {
297 if (csd_lock_wait_toolong(csd, ts0, &ts1, &bug_id))
298 break;
299 cpu_relax();
300 }
301 smp_acquire__after_ctrl_dep();
302}
303
d090ec0d 304static __always_inline void csd_lock_wait(call_single_data_t *csd)
8d0968cc
JG
305{
306 if (static_branch_unlikely(&csdlock_debug_enabled)) {
307 __csd_lock_wait(csd);
308 return;
309 }
310
311 smp_cond_load_acquire(&csd->node.u_flags, !(VAL & CSD_FLAG_LOCK));
312}
35feb604 313#else
d090ec0d 314static void csd_lock_record(call_single_data_t *csd)
35feb604
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315{
316}
317
d090ec0d 318static __always_inline void csd_lock_wait(call_single_data_t *csd)
8969a5ed 319{
545b8c8d 320 smp_cond_load_acquire(&csd->node.u_flags, !(VAL & CSD_FLAG_LOCK));
6e275637 321}
35feb604 322#endif
6e275637 323
d090ec0d 324static __always_inline void csd_lock(call_single_data_t *csd)
6e275637 325{
e1d12f32 326 csd_lock_wait(csd);
545b8c8d 327 csd->node.u_flags |= CSD_FLAG_LOCK;
8969a5ed
PZ
328
329 /*
0b13fda1
IM
330 * prevent CPU from reordering the above assignment
331 * to ->flags with any subsequent assignments to other
966a9671 332 * fields of the specified call_single_data_t structure:
8969a5ed 333 */
8053871d 334 smp_wmb();
8969a5ed
PZ
335}
336
d090ec0d 337static __always_inline void csd_unlock(call_single_data_t *csd)
8969a5ed 338{
545b8c8d 339 WARN_ON(!(csd->node.u_flags & CSD_FLAG_LOCK));
0b13fda1 340
8969a5ed 341 /*
0b13fda1 342 * ensure we're all done before releasing data:
8969a5ed 343 */
545b8c8d 344 smp_store_release(&csd->node.u_flags, 0);
3d442233
JA
345}
346
68f4ff04
VS
347static DEFINE_PER_CPU_SHARED_ALIGNED(call_single_data_t, csd_data);
348
349void __smp_call_single_queue(int cpu, struct llist_node *node)
350{
351 /*
352 * We have to check the type of the CSD before queueing it, because
353 * once queued it can have its flags cleared by
354 * flush_smp_call_function_queue()
355 * even if we haven't sent the smp_call IPI yet (e.g. the stopper
356 * executes migration_cpu_stop() on the remote CPU).
357 */
bf5a8c26 358 if (trace_csd_queue_cpu_enabled()) {
68f4ff04
VS
359 call_single_data_t *csd;
360 smp_call_func_t func;
361
362 csd = container_of(node, call_single_data_t, node.llist);
363 func = CSD_TYPE(csd) == CSD_TYPE_TTWU ?
364 sched_ttwu_pending : csd->func;
365
bf5a8c26 366 trace_csd_queue_cpu(cpu, _RET_IP_, func, csd);
68f4ff04 367 }
5c312497
PZ
368
369 /*
370 * The list addition should be visible to the target CPU when it pops
371 * the head of the list to pull the entry off it in the IPI handler
372 * because of normal cache coherency rules implied by the underlying
373 * llist ops.
374 *
375 * If IPIs can go out of order to the cache coherency protocol
376 * in an architecture, sufficient synchronisation should be added
377 * to arch code to make it appear to obey cache coherency WRT
378 * locking and barrier primitives. Generic code isn't really
379 * equipped to do the right thing...
380 */
381 if (llist_add(node, &per_cpu(call_single_queue, cpu)))
382 send_call_function_single_ipi(cpu);
4b44a21d
PZ
383}
384
3d442233 385/*
966a9671 386 * Insert a previously allocated call_single_data_t element
0b13fda1
IM
387 * for execution on the given CPU. data must already have
388 * ->func, ->info, and ->flags set.
3d442233 389 */
d090ec0d 390static int generic_exec_single(int cpu, call_single_data_t *csd)
3d442233 391{
8b28499a 392 if (cpu == smp_processor_id()) {
4b44a21d
PZ
393 smp_call_func_t func = csd->func;
394 void *info = csd->info;
8053871d
LT
395 unsigned long flags;
396
397 /*
398 * We can unlock early even for the synchronous on-stack case,
399 * since we're doing this from the same CPU..
400 */
35feb604 401 csd_lock_record(csd);
8053871d 402 csd_unlock(csd);
8b28499a 403 local_irq_save(flags);
949fa3f1 404 csd_do_func(func, info, NULL);
35feb604 405 csd_lock_record(NULL);
8b28499a
FW
406 local_irq_restore(flags);
407 return 0;
408 }
409
5224b961
LT
410 if ((unsigned)cpu >= nr_cpu_ids || !cpu_online(cpu)) {
411 csd_unlock(csd);
8b28499a 412 return -ENXIO;
5224b961 413 }
8b28499a 414
545b8c8d 415 __smp_call_single_queue(cpu, &csd->node.llist);
3d442233 416
8b28499a 417 return 0;
3d442233
JA
418}
419
8d056c48
SB
420/**
421 * generic_smp_call_function_single_interrupt - Execute SMP IPI callbacks
422 *
423 * Invoked by arch to handle an IPI for call function single.
424 * Must be called with interrupts disabled.
3d442233
JA
425 */
426void generic_smp_call_function_single_interrupt(void)
427{
16bf5a5e 428 __flush_smp_call_function_queue(true);
8d056c48
SB
429}
430
431/**
16bf5a5e 432 * __flush_smp_call_function_queue - Flush pending smp-call-function callbacks
8d056c48
SB
433 *
434 * @warn_cpu_offline: If set to 'true', warn if callbacks were queued on an
435 * offline CPU. Skip this check if set to 'false'.
436 *
437 * Flush any pending smp-call-function callbacks queued on this CPU. This is
438 * invoked by the generic IPI handler, as well as by a CPU about to go offline,
439 * to ensure that all pending IPI callbacks are run before it goes completely
440 * offline.
441 *
442 * Loop through the call_single_queue and run all the queued callbacks.
443 * Must be called with interrupts disabled.
444 */
16bf5a5e 445static void __flush_smp_call_function_queue(bool warn_cpu_offline)
8d056c48 446{
966a9671 447 call_single_data_t *csd, *csd_next;
52103be0
PZ
448 struct llist_node *entry, *prev;
449 struct llist_head *head;
a219ccf4 450 static bool warned;
0d3a00b3 451 atomic_t *tbt;
a219ccf4 452
83efcbd0 453 lockdep_assert_irqs_disabled();
8d056c48 454
0d3a00b3
IK
455 /* Allow waiters to send backtrace NMI from here onwards */
456 tbt = this_cpu_ptr(&trigger_backtrace);
457 atomic_set_release(tbt, 1);
458
bb964a92 459 head = this_cpu_ptr(&call_single_queue);
8d056c48 460 entry = llist_del_all(head);
a219ccf4 461 entry = llist_reverse_order(entry);
3d442233 462
8d056c48
SB
463 /* There shouldn't be any pending callbacks on an offline CPU. */
464 if (unlikely(warn_cpu_offline && !cpu_online(smp_processor_id()) &&
9e949a38 465 !warned && entry != NULL)) {
a219ccf4
SB
466 warned = true;
467 WARN(1, "IPI on offline CPU %d\n", smp_processor_id());
468
469 /*
470 * We don't have to use the _safe() variant here
471 * because we are not invoking the IPI handlers yet.
472 */
545b8c8d 473 llist_for_each_entry(csd, entry, node.llist) {
4b44a21d
PZ
474 switch (CSD_TYPE(csd)) {
475 case CSD_TYPE_ASYNC:
476 case CSD_TYPE_SYNC:
477 case CSD_TYPE_IRQ_WORK:
478 pr_warn("IPI callback %pS sent to offline CPU\n",
479 csd->func);
480 break;
481
a1488664
PZ
482 case CSD_TYPE_TTWU:
483 pr_warn("IPI task-wakeup sent to offline CPU\n");
484 break;
485
4b44a21d
PZ
486 default:
487 pr_warn("IPI callback, unknown type %d, sent to offline CPU\n",
488 CSD_TYPE(csd));
489 break;
490 }
491 }
a219ccf4 492 }
3d442233 493
52103be0
PZ
494 /*
495 * First; run all SYNC callbacks, people are waiting for us.
496 */
497 prev = NULL;
545b8c8d 498 llist_for_each_entry_safe(csd, csd_next, entry, node.llist) {
8053871d 499 /* Do we wait until *after* callback? */
4b44a21d
PZ
500 if (CSD_TYPE(csd) == CSD_TYPE_SYNC) {
501 smp_call_func_t func = csd->func;
502 void *info = csd->info;
503
52103be0 504 if (prev) {
545b8c8d 505 prev->next = &csd_next->node.llist;
52103be0 506 } else {
545b8c8d 507 entry = &csd_next->node.llist;
52103be0 508 }
4b44a21d 509
35feb604 510 csd_lock_record(csd);
949fa3f1 511 csd_do_func(func, info, csd);
8053871d 512 csd_unlock(csd);
35feb604 513 csd_lock_record(NULL);
8053871d 514 } else {
545b8c8d 515 prev = &csd->node.llist;
8053871d 516 }
3d442233 517 }
47885016 518
1771257c 519 if (!entry)
a1488664
PZ
520 return;
521
47885016 522 /*
52103be0 523 * Second; run all !SYNC callbacks.
47885016 524 */
a1488664 525 prev = NULL;
545b8c8d 526 llist_for_each_entry_safe(csd, csd_next, entry, node.llist) {
4b44a21d 527 int type = CSD_TYPE(csd);
52103be0 528
a1488664
PZ
529 if (type != CSD_TYPE_TTWU) {
530 if (prev) {
545b8c8d 531 prev->next = &csd_next->node.llist;
a1488664 532 } else {
545b8c8d 533 entry = &csd_next->node.llist;
a1488664 534 }
4b44a21d 535
a1488664
PZ
536 if (type == CSD_TYPE_ASYNC) {
537 smp_call_func_t func = csd->func;
538 void *info = csd->info;
539
35feb604 540 csd_lock_record(csd);
a1488664 541 csd_unlock(csd);
949fa3f1 542 csd_do_func(func, info, csd);
35feb604 543 csd_lock_record(NULL);
a1488664
PZ
544 } else if (type == CSD_TYPE_IRQ_WORK) {
545 irq_work_single(csd);
546 }
547
548 } else {
545b8c8d 549 prev = &csd->node.llist;
4b44a21d 550 }
52103be0 551 }
a1488664
PZ
552
553 /*
554 * Third; only CSD_TYPE_TTWU is left, issue those.
555 */
949fa3f1
LB
556 if (entry) {
557 csd = llist_entry(entry, typeof(*csd), node.llist);
558 csd_do_func(sched_ttwu_pending, entry, csd);
559 }
3d442233
JA
560}
561
16bf5a5e
TG
562
563/**
564 * flush_smp_call_function_queue - Flush pending smp-call-function callbacks
565 * from task context (idle, migration thread)
566 *
567 * When TIF_POLLING_NRFLAG is supported and a CPU is in idle and has it
568 * set, then remote CPUs can avoid sending IPIs and wake the idle CPU by
569 * setting TIF_NEED_RESCHED. The idle task on the woken up CPU has to
570 * handle queued SMP function calls before scheduling.
571 *
572 * The migration thread has to ensure that an eventually pending wakeup has
573 * been handled before it migrates a task.
574 */
575void flush_smp_call_function_queue(void)
b2a02fc4 576{
1a90bfd2 577 unsigned int was_pending;
b2a02fc4
PZ
578 unsigned long flags;
579
580 if (llist_empty(this_cpu_ptr(&call_single_queue)))
581 return;
582
583 local_irq_save(flags);
1a90bfd2
SAS
584 /* Get the already pending soft interrupts for RT enabled kernels */
585 was_pending = local_softirq_pending();
16bf5a5e 586 __flush_smp_call_function_queue(true);
f9d34595 587 if (local_softirq_pending())
1a90bfd2 588 do_softirq_post_smp_call_flush(was_pending);
f9d34595 589
b2a02fc4 590 local_irq_restore(flags);
3d442233
JA
591}
592
593/*
594 * smp_call_function_single - Run a function on a specific CPU
595 * @func: The function to run. This must be fast and non-blocking.
596 * @info: An arbitrary pointer to pass to the function.
3d442233
JA
597 * @wait: If true, wait until function has completed on other CPUs.
598 *
72f279b2 599 * Returns 0 on success, else a negative status code.
3d442233 600 */
3a5f65df 601int smp_call_function_single(int cpu, smp_call_func_t func, void *info,
8691e5a8 602 int wait)
3d442233 603{
966a9671
YH
604 call_single_data_t *csd;
605 call_single_data_t csd_stack = {
545b8c8d 606 .node = { .u_flags = CSD_FLAG_LOCK | CSD_TYPE_SYNC, },
966a9671 607 };
0b13fda1 608 int this_cpu;
8b28499a 609 int err;
3d442233 610
0b13fda1
IM
611 /*
612 * prevent preemption and reschedule on another processor,
613 * as well as CPU removal
614 */
615 this_cpu = get_cpu();
616
269c861b
SS
617 /*
618 * Can deadlock when called with interrupts disabled.
619 * We allow cpu's that are not yet online though, as no one else can
620 * send smp call function interrupt to this cpu and as such deadlocks
621 * can't happen.
622 */
623 WARN_ON_ONCE(cpu_online(this_cpu) && irqs_disabled()
624 && !oops_in_progress);
3d442233 625
19dbdcb8
PZ
626 /*
627 * When @wait we can deadlock when we interrupt between llist_add() and
628 * arch_send_call_function_ipi*(); when !@wait we can deadlock due to
629 * csd_lock() on because the interrupt context uses the same csd
630 * storage.
631 */
632 WARN_ON_ONCE(!in_task());
633
8053871d
LT
634 csd = &csd_stack;
635 if (!wait) {
636 csd = this_cpu_ptr(&csd_data);
637 csd_lock(csd);
638 }
639
4b44a21d
PZ
640 csd->func = func;
641 csd->info = info;
35feb604 642#ifdef CONFIG_CSD_LOCK_WAIT_DEBUG
545b8c8d
PZ
643 csd->node.src = smp_processor_id();
644 csd->node.dst = cpu;
e48c15b7 645#endif
4b44a21d
PZ
646
647 err = generic_exec_single(cpu, csd);
8053871d
LT
648
649 if (wait)
650 csd_lock_wait(csd);
3d442233
JA
651
652 put_cpu();
0b13fda1 653
f73be6de 654 return err;
3d442233
JA
655}
656EXPORT_SYMBOL(smp_call_function_single);
657
d7877c03 658/**
49b3bd21 659 * smp_call_function_single_async() - Run an asynchronous function on a
c46fff2a 660 * specific CPU.
d7877c03
FW
661 * @cpu: The CPU to run on.
662 * @csd: Pre-allocated and setup data structure
d7877c03 663 *
c46fff2a
FW
664 * Like smp_call_function_single(), but the call is asynchonous and
665 * can thus be done from contexts with disabled interrupts.
666 *
667 * The caller passes his own pre-allocated data structure
668 * (ie: embedded in an object) and is responsible for synchronizing it
669 * such that the IPIs performed on the @csd are strictly serialized.
670 *
5a18ceca
PX
671 * If the function is called with one csd which has not yet been
672 * processed by previous call to smp_call_function_single_async(), the
673 * function will return immediately with -EBUSY showing that the csd
674 * object is still in progress.
675 *
c46fff2a
FW
676 * NOTE: Be careful, there is unfortunately no current debugging facility to
677 * validate the correctness of this serialization.
49b3bd21
RD
678 *
679 * Return: %0 on success or negative errno value on error
d7877c03 680 */
d090ec0d 681int smp_call_function_single_async(int cpu, call_single_data_t *csd)
d7877c03
FW
682{
683 int err = 0;
d7877c03 684
fce8ad15 685 preempt_disable();
8053871d 686
545b8c8d 687 if (csd->node.u_flags & CSD_FLAG_LOCK) {
5a18ceca
PX
688 err = -EBUSY;
689 goto out;
690 }
8053871d 691
545b8c8d 692 csd->node.u_flags = CSD_FLAG_LOCK;
8053871d
LT
693 smp_wmb();
694
4b44a21d 695 err = generic_exec_single(cpu, csd);
5a18ceca
PX
696
697out:
fce8ad15 698 preempt_enable();
d7877c03
FW
699
700 return err;
701}
c46fff2a 702EXPORT_SYMBOL_GPL(smp_call_function_single_async);
d7877c03 703
2ea6dec4
RR
704/*
705 * smp_call_function_any - Run a function on any of the given cpus
706 * @mask: The mask of cpus it can run on.
707 * @func: The function to run. This must be fast and non-blocking.
708 * @info: An arbitrary pointer to pass to the function.
709 * @wait: If true, wait until function has completed.
710 *
711 * Returns 0 on success, else a negative status code (if no cpus were online).
2ea6dec4
RR
712 *
713 * Selection preference:
714 * 1) current cpu if in @mask
715 * 2) any cpu of current node if in @mask
716 * 3) any other online cpu in @mask
717 */
718int smp_call_function_any(const struct cpumask *mask,
3a5f65df 719 smp_call_func_t func, void *info, int wait)
2ea6dec4
RR
720{
721 unsigned int cpu;
722 const struct cpumask *nodemask;
723 int ret;
724
725 /* Try for same CPU (cheapest) */
726 cpu = get_cpu();
727 if (cpumask_test_cpu(cpu, mask))
728 goto call;
729
730 /* Try for same node. */
af2422c4 731 nodemask = cpumask_of_node(cpu_to_node(cpu));
2ea6dec4
RR
732 for (cpu = cpumask_first_and(nodemask, mask); cpu < nr_cpu_ids;
733 cpu = cpumask_next_and(cpu, nodemask, mask)) {
734 if (cpu_online(cpu))
735 goto call;
736 }
737
738 /* Any online will do: smp_call_function_single handles nr_cpu_ids. */
739 cpu = cpumask_any_and(mask, cpu_online_mask);
740call:
741 ret = smp_call_function_single(cpu, func, info, wait);
742 put_cpu();
743 return ret;
744}
745EXPORT_SYMBOL_GPL(smp_call_function_any);
746
a32a4d8a
NA
747/*
748 * Flags to be used as scf_flags argument of smp_call_function_many_cond().
749 *
750 * %SCF_WAIT: Wait until function execution is completed
751 * %SCF_RUN_LOCAL: Run also locally if local cpu is set in cpumask
752 */
753#define SCF_WAIT (1U << 0)
754#define SCF_RUN_LOCAL (1U << 1)
755
67719ef2
SAS
756static void smp_call_function_many_cond(const struct cpumask *mask,
757 smp_call_func_t func, void *info,
a32a4d8a
NA
758 unsigned int scf_flags,
759 smp_cond_func_t cond_func)
3d442233 760{
a32a4d8a 761 int cpu, last_cpu, this_cpu = smp_processor_id();
e1d12f32 762 struct call_function_data *cfd;
a32a4d8a 763 bool wait = scf_flags & SCF_WAIT;
bf5a8c26 764 int nr_cpus = 0;
a32a4d8a
NA
765 bool run_remote = false;
766 bool run_local = false;
a32a4d8a
NA
767
768 lockdep_assert_preemption_disabled();
3d442233 769
269c861b
SS
770 /*
771 * Can deadlock when called with interrupts disabled.
772 * We allow cpu's that are not yet online though, as no one else can
773 * send smp call function interrupt to this cpu and as such deadlocks
774 * can't happen.
775 */
a32a4d8a
NA
776 if (cpu_online(this_cpu) && !oops_in_progress &&
777 !early_boot_irqs_disabled)
778 lockdep_assert_irqs_enabled();
3d442233 779
19dbdcb8
PZ
780 /*
781 * When @wait we can deadlock when we interrupt between llist_add() and
782 * arch_send_call_function_ipi*(); when !@wait we can deadlock due to
783 * csd_lock() on because the interrupt context uses the same csd
784 * storage.
785 */
786 WARN_ON_ONCE(!in_task());
787
a32a4d8a
NA
788 /* Check if we need local execution. */
789 if ((scf_flags & SCF_RUN_LOCAL) && cpumask_test_cpu(this_cpu, mask))
790 run_local = true;
791
792 /* Check if we need remote execution, i.e., any CPU excluding this one. */
54b11e6d 793 cpu = cpumask_first_and(mask, cpu_online_mask);
0b13fda1 794 if (cpu == this_cpu)
54b11e6d 795 cpu = cpumask_next_and(cpu, mask, cpu_online_mask);
a32a4d8a
NA
796 if (cpu < nr_cpu_ids)
797 run_remote = true;
0b13fda1 798
a32a4d8a
NA
799 if (run_remote) {
800 cfd = this_cpu_ptr(&cfd_data);
801 cpumask_and(cfd->cpumask, mask, cpu_online_mask);
802 __cpumask_clear_cpu(this_cpu, cfd->cpumask);
45a57919 803
a32a4d8a
NA
804 cpumask_clear(cfd->cpumask_ipi);
805 for_each_cpu(cpu, cfd->cpumask) {
6366d062 806 call_single_data_t *csd = per_cpu_ptr(cfd->csd, cpu);
9a46ad6d 807
5c312497
PZ
808 if (cond_func && !cond_func(cpu, info)) {
809 __cpumask_clear_cpu(cpu, cfd->cpumask);
a32a4d8a 810 continue;
5c312497 811 }
67719ef2 812
a32a4d8a
NA
813 csd_lock(csd);
814 if (wait)
815 csd->node.u_flags |= CSD_TYPE_SYNC;
816 csd->func = func;
817 csd->info = info;
35feb604 818#ifdef CONFIG_CSD_LOCK_WAIT_DEBUG
a32a4d8a
NA
819 csd->node.src = smp_processor_id();
820 csd->node.dst = cpu;
e48c15b7 821#endif
bf5a8c26
LB
822 trace_csd_queue_cpu(cpu, _RET_IP_, func, csd);
823
a32a4d8a
NA
824 if (llist_add(&csd->node.llist, &per_cpu(call_single_queue, cpu))) {
825 __cpumask_set_cpu(cpu, cfd->cpumask_ipi);
826 nr_cpus++;
827 last_cpu = cpu;
828 }
829 }
830
831 /*
832 * Choose the most efficient way to send an IPI. Note that the
833 * number of CPUs might be zero due to concurrent changes to the
834 * provided mask.
835 */
836 if (nr_cpus == 1)
5c312497 837 send_call_function_single_ipi(last_cpu);
a32a4d8a 838 else if (likely(nr_cpus > 1))
5c312497 839 send_call_function_ipi_mask(cfd->cpumask_ipi);
9a46ad6d 840 }
561920a0 841
a32a4d8a
NA
842 if (run_local && (!cond_func || cond_func(this_cpu, info))) {
843 unsigned long flags;
844
845 local_irq_save(flags);
949fa3f1 846 csd_do_func(func, info, NULL);
a32a4d8a
NA
847 local_irq_restore(flags);
848 }
3d442233 849
a32a4d8a 850 if (run_remote && wait) {
e1d12f32 851 for_each_cpu(cpu, cfd->cpumask) {
966a9671 852 call_single_data_t *csd;
e1d12f32 853
6366d062 854 csd = per_cpu_ptr(cfd->csd, cpu);
9a46ad6d
SL
855 csd_lock_wait(csd);
856 }
857 }
3d442233 858}
67719ef2
SAS
859
860/**
a32a4d8a 861 * smp_call_function_many(): Run a function on a set of CPUs.
67719ef2
SAS
862 * @mask: The set of cpus to run on (only runs on online subset).
863 * @func: The function to run. This must be fast and non-blocking.
864 * @info: An arbitrary pointer to pass to the function.
49b3bd21 865 * @wait: Bitmask that controls the operation. If %SCF_WAIT is set, wait
a32a4d8a
NA
866 * (atomically) until function has completed on other CPUs. If
867 * %SCF_RUN_LOCAL is set, the function will also be run locally
868 * if the local CPU is set in the @cpumask.
67719ef2
SAS
869 *
870 * If @wait is true, then returns once @func has returned.
871 *
872 * You must not call this function with disabled interrupts or from a
873 * hardware interrupt handler or from a bottom half handler. Preemption
874 * must be disabled when calling this function.
875 */
876void smp_call_function_many(const struct cpumask *mask,
877 smp_call_func_t func, void *info, bool wait)
878{
a32a4d8a 879 smp_call_function_many_cond(mask, func, info, wait * SCF_WAIT, NULL);
67719ef2 880}
54b11e6d 881EXPORT_SYMBOL(smp_call_function_many);
3d442233
JA
882
883/**
884 * smp_call_function(): Run a function on all other CPUs.
885 * @func: The function to run. This must be fast and non-blocking.
886 * @info: An arbitrary pointer to pass to the function.
0b13fda1
IM
887 * @wait: If true, wait (atomically) until function has completed
888 * on other CPUs.
3d442233 889 *
54b11e6d 890 * Returns 0.
3d442233
JA
891 *
892 * If @wait is true, then returns once @func has returned; otherwise
72f279b2 893 * it returns just before the target cpu calls @func.
3d442233
JA
894 *
895 * You must not call this function with disabled interrupts or from a
896 * hardware interrupt handler or from a bottom half handler.
897 */
caa75932 898void smp_call_function(smp_call_func_t func, void *info, int wait)
3d442233 899{
3d442233 900 preempt_disable();
54b11e6d 901 smp_call_function_many(cpu_online_mask, func, info, wait);
3d442233 902 preempt_enable();
3d442233
JA
903}
904EXPORT_SYMBOL(smp_call_function);
351f8f8e 905
34db18a0
AW
906/* Setup configured maximum number of CPUs to activate */
907unsigned int setup_max_cpus = NR_CPUS;
908EXPORT_SYMBOL(setup_max_cpus);
909
910
911/*
912 * Setup routine for controlling SMP activation
913 *
914 * Command-line option of "nosmp" or "maxcpus=0" will disable SMP
915 * activation entirely (the MPS table probe still happens, though).
916 *
917 * Command-line option of "maxcpus=<NUM>", where <NUM> is an integer
918 * greater than 0, limits the maximum number of CPUs activated in
919 * SMP mode to <NUM>.
920 */
921
ba831b7b 922void __weak __init arch_disable_smp_support(void) { }
34db18a0
AW
923
924static int __init nosmp(char *str)
925{
926 setup_max_cpus = 0;
927 arch_disable_smp_support();
928
929 return 0;
930}
931
932early_param("nosmp", nosmp);
933
934/* this is hard limit */
935static int __init nrcpus(char *str)
936{
937 int nr_cpus;
938
58934356 939 if (get_option(&str, &nr_cpus) && nr_cpus > 0 && nr_cpus < nr_cpu_ids)
38bef8e5 940 set_nr_cpu_ids(nr_cpus);
34db18a0
AW
941
942 return 0;
943}
944
945early_param("nr_cpus", nrcpus);
946
947static int __init maxcpus(char *str)
948{
949 get_option(&str, &setup_max_cpus);
950 if (setup_max_cpus == 0)
951 arch_disable_smp_support();
952
953 return 0;
954}
955
956early_param("maxcpus", maxcpus);
957
6f9c07be 958#if (NR_CPUS > 1) && !defined(CONFIG_FORCE_NR_CPUS)
34db18a0 959/* Setup number of possible processor ids */
9b130ad5 960unsigned int nr_cpu_ids __read_mostly = NR_CPUS;
34db18a0 961EXPORT_SYMBOL(nr_cpu_ids);
53fc190c 962#endif
34db18a0
AW
963
964/* An arch may set nr_cpu_ids earlier if needed, so this would be redundant */
965void __init setup_nr_cpu_ids(void)
966{
38bef8e5 967 set_nr_cpu_ids(find_last_bit(cpumask_bits(cpu_possible_mask), NR_CPUS) + 1);
34db18a0
AW
968}
969
970/* Called by boot processor to activate the rest. */
971void __init smp_init(void)
972{
92b23278 973 int num_nodes, num_cpus;
34db18a0 974
3bb5d2ee 975 idle_threads_init();
4cb28ced 976 cpuhp_threads_init();
3bb5d2ee 977
51111dce
ME
978 pr_info("Bringing up secondary CPUs ...\n");
979
b99a2659 980 bringup_nonboot_cpus(setup_max_cpus);
34db18a0 981
92b23278
ME
982 num_nodes = num_online_nodes();
983 num_cpus = num_online_cpus();
984 pr_info("Brought up %d node%s, %d CPU%s\n",
985 num_nodes, (num_nodes > 1 ? "s" : ""),
986 num_cpus, (num_cpus > 1 ? "s" : ""));
987
34db18a0 988 /* Any cleanup work */
34db18a0
AW
989 smp_cpus_done(setup_max_cpus);
990}
991
b3a7e98e
GBY
992/*
993 * on_each_cpu_cond(): Call a function on each processor for which
994 * the supplied function cond_func returns true, optionally waiting
995 * for all the required CPUs to finish. This may include the local
996 * processor.
997 * @cond_func: A callback function that is passed a cpu id and
7b7b8a2c 998 * the info parameter. The function is called
b3a7e98e
GBY
999 * with preemption disabled. The function should
1000 * return a blooean value indicating whether to IPI
1001 * the specified CPU.
1002 * @func: The function to run on all applicable CPUs.
1003 * This must be fast and non-blocking.
1004 * @info: An arbitrary pointer to pass to both functions.
1005 * @wait: If true, wait (atomically) until function has
1006 * completed on other CPUs.
b3a7e98e
GBY
1007 *
1008 * Preemption is disabled to protect against CPUs going offline but not online.
1009 * CPUs going online during the call will not be seen or sent an IPI.
1010 *
1011 * You must not call this function with disabled interrupts or
1012 * from a hardware interrupt handler or from a bottom half handler.
1013 */
5671d814 1014void on_each_cpu_cond_mask(smp_cond_func_t cond_func, smp_call_func_t func,
cb923159 1015 void *info, bool wait, const struct cpumask *mask)
b3a7e98e 1016{
a32a4d8a 1017 unsigned int scf_flags = SCF_RUN_LOCAL;
67719ef2 1018
a32a4d8a
NA
1019 if (wait)
1020 scf_flags |= SCF_WAIT;
67719ef2 1021
a32a4d8a
NA
1022 preempt_disable();
1023 smp_call_function_many_cond(mask, func, info, scf_flags, cond_func);
1024 preempt_enable();
b3a7e98e 1025}
7d49b28a
RR
1026EXPORT_SYMBOL(on_each_cpu_cond_mask);
1027
f37f435f
TG
1028static void do_nothing(void *unused)
1029{
1030}
1031
1032/**
1033 * kick_all_cpus_sync - Force all cpus out of idle
1034 *
1035 * Used to synchronize the update of pm_idle function pointer. It's
1036 * called after the pointer is updated and returns after the dummy
1037 * callback function has been executed on all cpus. The execution of
1038 * the function can only happen on the remote cpus after they have
1039 * left the idle function which had been called via pm_idle function
1040 * pointer. So it's guaranteed that nothing uses the previous pointer
1041 * anymore.
1042 */
1043void kick_all_cpus_sync(void)
1044{
1045 /* Make sure the change is visible before we kick the cpus */
1046 smp_mb();
1047 smp_call_function(do_nothing, NULL, 1);
1048}
1049EXPORT_SYMBOL_GPL(kick_all_cpus_sync);
c6f4459f
CL
1050
1051/**
1052 * wake_up_all_idle_cpus - break all cpus out of idle
1053 * wake_up_all_idle_cpus try to break all cpus which is in idle state even
1054 * including idle polling cpus, for non-idle cpus, we will do nothing
1055 * for them.
1056 */
1057void wake_up_all_idle_cpus(void)
1058{
1059 int cpu;
1060
96611c26
PZ
1061 for_each_possible_cpu(cpu) {
1062 preempt_disable();
1063 if (cpu != smp_processor_id() && cpu_online(cpu))
1064 wake_up_if_idle(cpu);
1065 preempt_enable();
c6f4459f 1066 }
c6f4459f
CL
1067}
1068EXPORT_SYMBOL_GPL(wake_up_all_idle_cpus);
df8ce9d7
JG
1069
1070/**
49b3bd21
RD
1071 * struct smp_call_on_cpu_struct - Call a function on a specific CPU
1072 * @work: &work_struct
1073 * @done: &completion to signal
1074 * @func: function to call
1075 * @data: function's data argument
1076 * @ret: return value from @func
1077 * @cpu: target CPU (%-1 for any CPU)
df8ce9d7
JG
1078 *
1079 * Used to call a function on a specific cpu and wait for it to return.
1080 * Optionally make sure the call is done on a specified physical cpu via vcpu
1081 * pinning in order to support virtualized environments.
1082 */
1083struct smp_call_on_cpu_struct {
1084 struct work_struct work;
1085 struct completion done;
1086 int (*func)(void *);
1087 void *data;
1088 int ret;
1089 int cpu;
1090};
1091
1092static void smp_call_on_cpu_callback(struct work_struct *work)
1093{
1094 struct smp_call_on_cpu_struct *sscs;
1095
1096 sscs = container_of(work, struct smp_call_on_cpu_struct, work);
1097 if (sscs->cpu >= 0)
1098 hypervisor_pin_vcpu(sscs->cpu);
1099 sscs->ret = sscs->func(sscs->data);
1100 if (sscs->cpu >= 0)
1101 hypervisor_pin_vcpu(-1);
1102
1103 complete(&sscs->done);
1104}
1105
1106int smp_call_on_cpu(unsigned int cpu, int (*func)(void *), void *par, bool phys)
1107{
1108 struct smp_call_on_cpu_struct sscs = {
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1109 .done = COMPLETION_INITIALIZER_ONSTACK(sscs.done),
1110 .func = func,
1111 .data = par,
1112 .cpu = phys ? cpu : -1,
1113 };
1114
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1115 INIT_WORK_ONSTACK(&sscs.work, smp_call_on_cpu_callback);
1116
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1117 if (cpu >= nr_cpu_ids || !cpu_online(cpu))
1118 return -ENXIO;
1119
1120 queue_work_on(cpu, system_wq, &sscs.work);
1121 wait_for_completion(&sscs.done);
1122
1123 return sscs.ret;
1124}
1125EXPORT_SYMBOL_GPL(smp_call_on_cpu);