cpuidle: coupled: abort idle if pokes are pending
[deliverable/linux.git] / drivers / cpuidle / coupled.c
CommitLineData
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1/*
2 * coupled.c - helper functions to enter the same idle state on multiple cpus
3 *
4 * Copyright (c) 2011 Google, Inc.
5 *
6 * Author: Colin Cross <ccross@android.com>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful, but WITHOUT
14 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
16 * more details.
17 */
18
19#include <linux/kernel.h>
20#include <linux/cpu.h>
21#include <linux/cpuidle.h>
22#include <linux/mutex.h>
23#include <linux/sched.h>
24#include <linux/slab.h>
25#include <linux/spinlock.h>
26
27#include "cpuidle.h"
28
29/**
30 * DOC: Coupled cpuidle states
31 *
32 * On some ARM SMP SoCs (OMAP4460, Tegra 2, and probably more), the
33 * cpus cannot be independently powered down, either due to
34 * sequencing restrictions (on Tegra 2, cpu 0 must be the last to
35 * power down), or due to HW bugs (on OMAP4460, a cpu powering up
36 * will corrupt the gic state unless the other cpu runs a work
37 * around). Each cpu has a power state that it can enter without
38 * coordinating with the other cpu (usually Wait For Interrupt, or
39 * WFI), and one or more "coupled" power states that affect blocks
40 * shared between the cpus (L2 cache, interrupt controller, and
41 * sometimes the whole SoC). Entering a coupled power state must
42 * be tightly controlled on both cpus.
43 *
44 * This file implements a solution, where each cpu will wait in the
45 * WFI state until all cpus are ready to enter a coupled state, at
46 * which point the coupled state function will be called on all
47 * cpus at approximately the same time.
48 *
49 * Once all cpus are ready to enter idle, they are woken by an smp
50 * cross call. At this point, there is a chance that one of the
51 * cpus will find work to do, and choose not to enter idle. A
52 * final pass is needed to guarantee that all cpus will call the
53 * power state enter function at the same time. During this pass,
54 * each cpu will increment the ready counter, and continue once the
55 * ready counter matches the number of online coupled cpus. If any
56 * cpu exits idle, the other cpus will decrement their counter and
57 * retry.
58 *
59 * requested_state stores the deepest coupled idle state each cpu
60 * is ready for. It is assumed that the states are indexed from
61 * shallowest (highest power, lowest exit latency) to deepest
62 * (lowest power, highest exit latency). The requested_state
63 * variable is not locked. It is only written from the cpu that
64 * it stores (or by the on/offlining cpu if that cpu is offline),
65 * and only read after all the cpus are ready for the coupled idle
66 * state are are no longer updating it.
67 *
68 * Three atomic counters are used. alive_count tracks the number
69 * of cpus in the coupled set that are currently or soon will be
70 * online. waiting_count tracks the number of cpus that are in
71 * the waiting loop, in the ready loop, or in the coupled idle state.
72 * ready_count tracks the number of cpus that are in the ready loop
73 * or in the coupled idle state.
74 *
75 * To use coupled cpuidle states, a cpuidle driver must:
76 *
77 * Set struct cpuidle_device.coupled_cpus to the mask of all
78 * coupled cpus, usually the same as cpu_possible_mask if all cpus
79 * are part of the same cluster. The coupled_cpus mask must be
80 * set in the struct cpuidle_device for each cpu.
81 *
82 * Set struct cpuidle_device.safe_state to a state that is not a
83 * coupled state. This is usually WFI.
84 *
85 * Set CPUIDLE_FLAG_COUPLED in struct cpuidle_state.flags for each
86 * state that affects multiple cpus.
87 *
88 * Provide a struct cpuidle_state.enter function for each state
89 * that affects multiple cpus. This function is guaranteed to be
90 * called on all cpus at approximately the same time. The driver
91 * should ensure that the cpus all abort together if any cpu tries
92 * to abort once the function is called. The function should return
93 * with interrupts still disabled.
94 */
95
96/**
97 * struct cpuidle_coupled - data for set of cpus that share a coupled idle state
98 * @coupled_cpus: mask of cpus that are part of the coupled set
99 * @requested_state: array of requested states for cpus in the coupled set
100 * @ready_waiting_counts: combined count of cpus in ready or waiting loops
101 * @online_count: count of cpus that are online
102 * @refcnt: reference count of cpuidle devices that are using this struct
103 * @prevent: flag to prevent coupled idle while a cpu is hotplugging
104 */
105struct cpuidle_coupled {
106 cpumask_t coupled_cpus;
107 int requested_state[NR_CPUS];
108 atomic_t ready_waiting_counts;
f983827b 109 atomic_t abort_barrier;
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110 int online_count;
111 int refcnt;
112 int prevent;
113};
114
115#define WAITING_BITS 16
116#define MAX_WAITING_CPUS (1 << WAITING_BITS)
117#define WAITING_MASK (MAX_WAITING_CPUS - 1)
118#define READY_MASK (~WAITING_MASK)
119
120#define CPUIDLE_COUPLED_NOT_IDLE (-1)
121
122static DEFINE_MUTEX(cpuidle_coupled_lock);
123static DEFINE_PER_CPU(struct call_single_data, cpuidle_coupled_poke_cb);
124
125/*
f983827b 126 * The cpuidle_coupled_poke_pending mask is used to avoid calling
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127 * __smp_call_function_single with the per cpu call_single_data struct already
128 * in use. This prevents a deadlock where two cpus are waiting for each others
129 * call_single_data struct to be available
130 */
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131static cpumask_t cpuidle_coupled_poke_pending;
132
133/*
134 * The cpuidle_coupled_poked mask is used to ensure that each cpu has been poked
135 * once to minimize entering the ready loop with a poke pending, which would
136 * require aborting and retrying.
137 */
138static cpumask_t cpuidle_coupled_poked;
4126c019 139
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140/**
141 * cpuidle_coupled_parallel_barrier - synchronize all online coupled cpus
142 * @dev: cpuidle_device of the calling cpu
143 * @a: atomic variable to hold the barrier
144 *
145 * No caller to this function will return from this function until all online
146 * cpus in the same coupled group have called this function. Once any caller
147 * has returned from this function, the barrier is immediately available for
148 * reuse.
149 *
150 * The atomic variable a must be initialized to 0 before any cpu calls
151 * this function, will be reset to 0 before any cpu returns from this function.
152 *
153 * Must only be called from within a coupled idle state handler
154 * (state.enter when state.flags has CPUIDLE_FLAG_COUPLED set).
155 *
156 * Provides full smp barrier semantics before and after calling.
157 */
158void cpuidle_coupled_parallel_barrier(struct cpuidle_device *dev, atomic_t *a)
159{
160 int n = dev->coupled->online_count;
161
162 smp_mb__before_atomic_inc();
163 atomic_inc(a);
164
165 while (atomic_read(a) < n)
166 cpu_relax();
167
168 if (atomic_inc_return(a) == n * 2) {
169 atomic_set(a, 0);
170 return;
171 }
172
173 while (atomic_read(a) > n)
174 cpu_relax();
175}
176
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177/**
178 * cpuidle_state_is_coupled - check if a state is part of a coupled set
179 * @dev: struct cpuidle_device for the current cpu
180 * @drv: struct cpuidle_driver for the platform
181 * @state: index of the target state in drv->states
182 *
183 * Returns true if the target state is coupled with cpus besides this one
184 */
185bool cpuidle_state_is_coupled(struct cpuidle_device *dev,
186 struct cpuidle_driver *drv, int state)
187{
188 return drv->states[state].flags & CPUIDLE_FLAG_COUPLED;
189}
190
191/**
192 * cpuidle_coupled_set_ready - mark a cpu as ready
193 * @coupled: the struct coupled that contains the current cpu
194 */
195static inline void cpuidle_coupled_set_ready(struct cpuidle_coupled *coupled)
196{
197 atomic_add(MAX_WAITING_CPUS, &coupled->ready_waiting_counts);
198}
199
200/**
201 * cpuidle_coupled_set_not_ready - mark a cpu as not ready
202 * @coupled: the struct coupled that contains the current cpu
203 *
204 * Decrements the ready counter, unless the ready (and thus the waiting) counter
205 * is equal to the number of online cpus. Prevents a race where one cpu
206 * decrements the waiting counter and then re-increments it just before another
207 * cpu has decremented its ready counter, leading to the ready counter going
208 * down from the number of online cpus without going through the coupled idle
209 * state.
210 *
211 * Returns 0 if the counter was decremented successfully, -EINVAL if the ready
212 * counter was equal to the number of online cpus.
213 */
214static
215inline int cpuidle_coupled_set_not_ready(struct cpuidle_coupled *coupled)
216{
217 int all;
218 int ret;
219
92638e2f 220 all = coupled->online_count | (coupled->online_count << WAITING_BITS);
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221 ret = atomic_add_unless(&coupled->ready_waiting_counts,
222 -MAX_WAITING_CPUS, all);
223
224 return ret ? 0 : -EINVAL;
225}
226
227/**
228 * cpuidle_coupled_no_cpus_ready - check if no cpus in a coupled set are ready
229 * @coupled: the struct coupled that contains the current cpu
230 *
231 * Returns true if all of the cpus in a coupled set are out of the ready loop.
232 */
233static inline int cpuidle_coupled_no_cpus_ready(struct cpuidle_coupled *coupled)
234{
235 int r = atomic_read(&coupled->ready_waiting_counts) >> WAITING_BITS;
236 return r == 0;
237}
238
239/**
240 * cpuidle_coupled_cpus_ready - check if all cpus in a coupled set are ready
241 * @coupled: the struct coupled that contains the current cpu
242 *
243 * Returns true if all cpus coupled to this target state are in the ready loop
244 */
245static inline bool cpuidle_coupled_cpus_ready(struct cpuidle_coupled *coupled)
246{
247 int r = atomic_read(&coupled->ready_waiting_counts) >> WAITING_BITS;
248 return r == coupled->online_count;
249}
250
251/**
252 * cpuidle_coupled_cpus_waiting - check if all cpus in a coupled set are waiting
253 * @coupled: the struct coupled that contains the current cpu
254 *
255 * Returns true if all cpus coupled to this target state are in the wait loop
256 */
257static inline bool cpuidle_coupled_cpus_waiting(struct cpuidle_coupled *coupled)
258{
259 int w = atomic_read(&coupled->ready_waiting_counts) & WAITING_MASK;
260 return w == coupled->online_count;
261}
262
263/**
264 * cpuidle_coupled_no_cpus_waiting - check if no cpus in coupled set are waiting
265 * @coupled: the struct coupled that contains the current cpu
266 *
267 * Returns true if all of the cpus in a coupled set are out of the waiting loop.
268 */
269static inline int cpuidle_coupled_no_cpus_waiting(struct cpuidle_coupled *coupled)
270{
271 int w = atomic_read(&coupled->ready_waiting_counts) & WAITING_MASK;
272 return w == 0;
273}
274
275/**
276 * cpuidle_coupled_get_state - determine the deepest idle state
277 * @dev: struct cpuidle_device for this cpu
278 * @coupled: the struct coupled that contains the current cpu
279 *
280 * Returns the deepest idle state that all coupled cpus can enter
281 */
282static inline int cpuidle_coupled_get_state(struct cpuidle_device *dev,
283 struct cpuidle_coupled *coupled)
284{
285 int i;
286 int state = INT_MAX;
287
288 /*
289 * Read barrier ensures that read of requested_state is ordered after
290 * reads of ready_count. Matches the write barriers
291 * cpuidle_set_state_waiting.
292 */
293 smp_rmb();
294
295 for_each_cpu_mask(i, coupled->coupled_cpus)
296 if (cpu_online(i) && coupled->requested_state[i] < state)
297 state = coupled->requested_state[i];
298
299 return state;
300}
301
f983827b 302static void cpuidle_coupled_handle_poke(void *info)
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303{
304 int cpu = (unsigned long)info;
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305 cpumask_set_cpu(cpu, &cpuidle_coupled_poked);
306 cpumask_clear_cpu(cpu, &cpuidle_coupled_poke_pending);
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307}
308
309/**
310 * cpuidle_coupled_poke - wake up a cpu that may be waiting
311 * @cpu: target cpu
312 *
313 * Ensures that the target cpu exits it's waiting idle state (if it is in it)
314 * and will see updates to waiting_count before it re-enters it's waiting idle
315 * state.
316 *
317 * If cpuidle_coupled_poked_mask is already set for the target cpu, that cpu
318 * either has or will soon have a pending IPI that will wake it out of idle,
319 * or it is currently processing the IPI and is not in idle.
320 */
321static void cpuidle_coupled_poke(int cpu)
322{
323 struct call_single_data *csd = &per_cpu(cpuidle_coupled_poke_cb, cpu);
324
f983827b 325 if (!cpumask_test_and_set_cpu(cpu, &cpuidle_coupled_poke_pending))
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326 __smp_call_function_single(cpu, csd, 0);
327}
328
329/**
330 * cpuidle_coupled_poke_others - wake up all other cpus that may be waiting
331 * @dev: struct cpuidle_device for this cpu
332 * @coupled: the struct coupled that contains the current cpu
333 *
334 * Calls cpuidle_coupled_poke on all other online cpus.
335 */
336static void cpuidle_coupled_poke_others(int this_cpu,
337 struct cpuidle_coupled *coupled)
338{
339 int cpu;
340
341 for_each_cpu_mask(cpu, coupled->coupled_cpus)
342 if (cpu != this_cpu && cpu_online(cpu))
343 cpuidle_coupled_poke(cpu);
344}
345
346/**
347 * cpuidle_coupled_set_waiting - mark this cpu as in the wait loop
348 * @dev: struct cpuidle_device for this cpu
349 * @coupled: the struct coupled that contains the current cpu
350 * @next_state: the index in drv->states of the requested state for this cpu
351 *
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352 * Updates the requested idle state for the specified cpuidle device.
353 * Returns the number of waiting cpus.
4126c019 354 */
f983827b 355static int cpuidle_coupled_set_waiting(int cpu,
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356 struct cpuidle_coupled *coupled, int next_state)
357{
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358 coupled->requested_state[cpu] = next_state;
359
360 /*
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361 * The atomic_inc_return provides a write barrier to order the write
362 * to requested_state with the later write that increments ready_count.
363 */
f983827b 364 return atomic_inc_return(&coupled->ready_waiting_counts) & WAITING_MASK;
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365}
366
367/**
368 * cpuidle_coupled_set_not_waiting - mark this cpu as leaving the wait loop
369 * @dev: struct cpuidle_device for this cpu
370 * @coupled: the struct coupled that contains the current cpu
371 *
372 * Removes the requested idle state for the specified cpuidle device.
373 */
374static void cpuidle_coupled_set_not_waiting(int cpu,
375 struct cpuidle_coupled *coupled)
376{
377 /*
378 * Decrementing waiting count can race with incrementing it in
379 * cpuidle_coupled_set_waiting, but that's OK. Worst case, some
380 * cpus will increment ready_count and then spin until they
381 * notice that this cpu has cleared it's requested_state.
382 */
383 atomic_dec(&coupled->ready_waiting_counts);
384
385 coupled->requested_state[cpu] = CPUIDLE_COUPLED_NOT_IDLE;
386}
387
388/**
389 * cpuidle_coupled_set_done - mark this cpu as leaving the ready loop
390 * @cpu: the current cpu
391 * @coupled: the struct coupled that contains the current cpu
392 *
393 * Marks this cpu as no longer in the ready and waiting loops. Decrements
394 * the waiting count first to prevent another cpu looping back in and seeing
395 * this cpu as waiting just before it exits idle.
396 */
397static void cpuidle_coupled_set_done(int cpu, struct cpuidle_coupled *coupled)
398{
399 cpuidle_coupled_set_not_waiting(cpu, coupled);
400 atomic_sub(MAX_WAITING_CPUS, &coupled->ready_waiting_counts);
401}
402
403/**
404 * cpuidle_coupled_clear_pokes - spin until the poke interrupt is processed
405 * @cpu - this cpu
406 *
407 * Turns on interrupts and spins until any outstanding poke interrupts have
408 * been processed and the poke bit has been cleared.
409 *
410 * Other interrupts may also be processed while interrupts are enabled, so
411 * need_resched() must be tested after turning interrupts off again to make sure
412 * the interrupt didn't schedule work that should take the cpu out of idle.
413 *
414 * Returns 0 if need_resched was false, -EINTR if need_resched was true.
415 */
416static int cpuidle_coupled_clear_pokes(int cpu)
417{
418 local_irq_enable();
f983827b 419 while (cpumask_test_cpu(cpu, &cpuidle_coupled_poke_pending))
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420 cpu_relax();
421 local_irq_disable();
422
423 return need_resched() ? -EINTR : 0;
424}
425
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426static bool cpuidle_coupled_any_pokes_pending(struct cpuidle_coupled *coupled)
427{
428 cpumask_t cpus;
429 int ret;
430
431 cpumask_and(&cpus, cpu_online_mask, &coupled->coupled_cpus);
432 ret = cpumask_and(&cpus, &cpuidle_coupled_poke_pending, &cpus);
433
434 return ret;
435}
436
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437/**
438 * cpuidle_enter_state_coupled - attempt to enter a state with coupled cpus
439 * @dev: struct cpuidle_device for the current cpu
440 * @drv: struct cpuidle_driver for the platform
441 * @next_state: index of the requested state in drv->states
442 *
443 * Coordinate with coupled cpus to enter the target state. This is a two
444 * stage process. In the first stage, the cpus are operating independently,
445 * and may call into cpuidle_enter_state_coupled at completely different times.
446 * To save as much power as possible, the first cpus to call this function will
447 * go to an intermediate state (the cpuidle_device's safe state), and wait for
448 * all the other cpus to call this function. Once all coupled cpus are idle,
449 * the second stage will start. Each coupled cpu will spin until all cpus have
450 * guaranteed that they will call the target_state.
451 *
452 * This function must be called with interrupts disabled. It may enable
453 * interrupts while preparing for idle, and it will always return with
454 * interrupts enabled.
455 */
456int cpuidle_enter_state_coupled(struct cpuidle_device *dev,
457 struct cpuidle_driver *drv, int next_state)
458{
459 int entered_state = -1;
460 struct cpuidle_coupled *coupled = dev->coupled;
f983827b 461 int w;
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462
463 if (!coupled)
464 return -EINVAL;
465
466 while (coupled->prevent) {
467 if (cpuidle_coupled_clear_pokes(dev->cpu)) {
468 local_irq_enable();
469 return entered_state;
470 }
471 entered_state = cpuidle_enter_state(dev, drv,
472 dev->safe_state_index);
59e99856 473 local_irq_disable();
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474 }
475
476 /* Read barrier ensures online_count is read after prevent is cleared */
477 smp_rmb();
478
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479reset:
480 cpumask_clear_cpu(dev->cpu, &cpuidle_coupled_poked);
481
482 w = cpuidle_coupled_set_waiting(dev->cpu, coupled, next_state);
483 /*
484 * If this is the last cpu to enter the waiting state, poke
485 * all the other cpus out of their waiting state so they can
486 * enter a deeper state. This can race with one of the cpus
487 * exiting the waiting state due to an interrupt and
488 * decrementing waiting_count, see comment below.
489 */
490 if (w == coupled->online_count) {
491 cpumask_set_cpu(dev->cpu, &cpuidle_coupled_poked);
492 cpuidle_coupled_poke_others(dev->cpu, coupled);
493 }
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494
495retry:
496 /*
497 * Wait for all coupled cpus to be idle, using the deepest state
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498 * allowed for a single cpu. If this was not the poking cpu, wait
499 * for at least one poke before leaving to avoid a race where
500 * two cpus could arrive at the waiting loop at the same time,
501 * but the first of the two to arrive could skip the loop without
502 * processing the pokes from the last to arrive.
4126c019 503 */
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504 while (!cpuidle_coupled_cpus_waiting(coupled) ||
505 !cpumask_test_cpu(dev->cpu, &cpuidle_coupled_poked)) {
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506 if (cpuidle_coupled_clear_pokes(dev->cpu)) {
507 cpuidle_coupled_set_not_waiting(dev->cpu, coupled);
508 goto out;
509 }
510
511 if (coupled->prevent) {
512 cpuidle_coupled_set_not_waiting(dev->cpu, coupled);
513 goto out;
514 }
515
516 entered_state = cpuidle_enter_state(dev, drv,
517 dev->safe_state_index);
59e99856 518 local_irq_disable();
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519 }
520
521 if (cpuidle_coupled_clear_pokes(dev->cpu)) {
522 cpuidle_coupled_set_not_waiting(dev->cpu, coupled);
523 goto out;
524 }
525
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526 /*
527 * Make sure final poke status for this cpu is visible before setting
528 * cpu as ready.
529 */
530 smp_wmb();
531
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532 /*
533 * All coupled cpus are probably idle. There is a small chance that
534 * one of the other cpus just became active. Increment the ready count,
535 * and spin until all coupled cpus have incremented the counter. Once a
536 * cpu has incremented the ready counter, it cannot abort idle and must
537 * spin until either all cpus have incremented the ready counter, or
538 * another cpu leaves idle and decrements the waiting counter.
539 */
540
541 cpuidle_coupled_set_ready(coupled);
542 while (!cpuidle_coupled_cpus_ready(coupled)) {
543 /* Check if any other cpus bailed out of idle. */
544 if (!cpuidle_coupled_cpus_waiting(coupled))
545 if (!cpuidle_coupled_set_not_ready(coupled))
546 goto retry;
547
548 cpu_relax();
549 }
550
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551 /*
552 * Make sure read of all cpus ready is done before reading pending pokes
553 */
554 smp_rmb();
555
556 /*
557 * There is a small chance that a cpu left and reentered idle after this
558 * cpu saw that all cpus were waiting. The cpu that reentered idle will
559 * have sent this cpu a poke, which will still be pending after the
560 * ready loop. The pending interrupt may be lost by the interrupt
561 * controller when entering the deep idle state. It's not possible to
562 * clear a pending interrupt without turning interrupts on and handling
563 * it, and it's too late to turn on interrupts here, so reset the
564 * coupled idle state of all cpus and retry.
565 */
566 if (cpuidle_coupled_any_pokes_pending(coupled)) {
567 cpuidle_coupled_set_done(dev->cpu, coupled);
568 /* Wait for all cpus to see the pending pokes */
569 cpuidle_coupled_parallel_barrier(dev, &coupled->abort_barrier);
570 goto reset;
571 }
572
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573 /* all cpus have acked the coupled state */
574 next_state = cpuidle_coupled_get_state(dev, coupled);
575
576 entered_state = cpuidle_enter_state(dev, drv, next_state);
577
578 cpuidle_coupled_set_done(dev->cpu, coupled);
579
580out:
581 /*
582 * Normal cpuidle states are expected to return with irqs enabled.
583 * That leads to an inefficiency where a cpu receiving an interrupt
584 * that brings it out of idle will process that interrupt before
585 * exiting the idle enter function and decrementing ready_count. All
586 * other cpus will need to spin waiting for the cpu that is processing
587 * the interrupt. If the driver returns with interrupts disabled,
588 * all other cpus will loop back into the safe idle state instead of
589 * spinning, saving power.
590 *
591 * Calling local_irq_enable here allows coupled states to return with
592 * interrupts disabled, but won't cause problems for drivers that
593 * exit with interrupts enabled.
594 */
595 local_irq_enable();
596
597 /*
598 * Wait until all coupled cpus have exited idle. There is no risk that
599 * a cpu exits and re-enters the ready state because this cpu has
600 * already decremented its waiting_count.
601 */
602 while (!cpuidle_coupled_no_cpus_ready(coupled))
603 cpu_relax();
604
605 return entered_state;
606}
607
608static void cpuidle_coupled_update_online_cpus(struct cpuidle_coupled *coupled)
609{
610 cpumask_t cpus;
611 cpumask_and(&cpus, cpu_online_mask, &coupled->coupled_cpus);
612 coupled->online_count = cpumask_weight(&cpus);
613}
614
615/**
616 * cpuidle_coupled_register_device - register a coupled cpuidle device
617 * @dev: struct cpuidle_device for the current cpu
618 *
619 * Called from cpuidle_register_device to handle coupled idle init. Finds the
620 * cpuidle_coupled struct for this set of coupled cpus, or creates one if none
621 * exists yet.
622 */
623int cpuidle_coupled_register_device(struct cpuidle_device *dev)
624{
625 int cpu;
626 struct cpuidle_device *other_dev;
627 struct call_single_data *csd;
628 struct cpuidle_coupled *coupled;
629
630 if (cpumask_empty(&dev->coupled_cpus))
631 return 0;
632
633 for_each_cpu_mask(cpu, dev->coupled_cpus) {
634 other_dev = per_cpu(cpuidle_devices, cpu);
635 if (other_dev && other_dev->coupled) {
636 coupled = other_dev->coupled;
637 goto have_coupled;
638 }
639 }
640
641 /* No existing coupled info found, create a new one */
642 coupled = kzalloc(sizeof(struct cpuidle_coupled), GFP_KERNEL);
643 if (!coupled)
644 return -ENOMEM;
645
646 coupled->coupled_cpus = dev->coupled_cpus;
647
648have_coupled:
649 dev->coupled = coupled;
650 if (WARN_ON(!cpumask_equal(&dev->coupled_cpus, &coupled->coupled_cpus)))
651 coupled->prevent++;
652
653 cpuidle_coupled_update_online_cpus(coupled);
654
655 coupled->refcnt++;
656
657 csd = &per_cpu(cpuidle_coupled_poke_cb, dev->cpu);
f983827b 658 csd->func = cpuidle_coupled_handle_poke;
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659 csd->info = (void *)(unsigned long)dev->cpu;
660
661 return 0;
662}
663
664/**
665 * cpuidle_coupled_unregister_device - unregister a coupled cpuidle device
666 * @dev: struct cpuidle_device for the current cpu
667 *
668 * Called from cpuidle_unregister_device to tear down coupled idle. Removes the
669 * cpu from the coupled idle set, and frees the cpuidle_coupled_info struct if
670 * this was the last cpu in the set.
671 */
672void cpuidle_coupled_unregister_device(struct cpuidle_device *dev)
673{
674 struct cpuidle_coupled *coupled = dev->coupled;
675
676 if (cpumask_empty(&dev->coupled_cpus))
677 return;
678
679 if (--coupled->refcnt)
680 kfree(coupled);
681 dev->coupled = NULL;
682}
683
684/**
685 * cpuidle_coupled_prevent_idle - prevent cpus from entering a coupled state
686 * @coupled: the struct coupled that contains the cpu that is changing state
687 *
688 * Disables coupled cpuidle on a coupled set of cpus. Used to ensure that
689 * cpu_online_mask doesn't change while cpus are coordinating coupled idle.
690 */
691static void cpuidle_coupled_prevent_idle(struct cpuidle_coupled *coupled)
692{
693 int cpu = get_cpu();
694
695 /* Force all cpus out of the waiting loop. */
696 coupled->prevent++;
697 cpuidle_coupled_poke_others(cpu, coupled);
698 put_cpu();
699 while (!cpuidle_coupled_no_cpus_waiting(coupled))
700 cpu_relax();
701}
702
703/**
704 * cpuidle_coupled_allow_idle - allows cpus to enter a coupled state
705 * @coupled: the struct coupled that contains the cpu that is changing state
706 *
707 * Enables coupled cpuidle on a coupled set of cpus. Used to ensure that
708 * cpu_online_mask doesn't change while cpus are coordinating coupled idle.
709 */
710static void cpuidle_coupled_allow_idle(struct cpuidle_coupled *coupled)
711{
712 int cpu = get_cpu();
713
714 /*
715 * Write barrier ensures readers see the new online_count when they
716 * see prevent == 0.
717 */
718 smp_wmb();
719 coupled->prevent--;
720 /* Force cpus out of the prevent loop. */
721 cpuidle_coupled_poke_others(cpu, coupled);
722 put_cpu();
723}
724
725/**
726 * cpuidle_coupled_cpu_notify - notifier called during hotplug transitions
727 * @nb: notifier block
728 * @action: hotplug transition
729 * @hcpu: target cpu number
730 *
731 * Called when a cpu is brought on or offline using hotplug. Updates the
732 * coupled cpu set appropriately
733 */
734static int cpuidle_coupled_cpu_notify(struct notifier_block *nb,
735 unsigned long action, void *hcpu)
736{
737 int cpu = (unsigned long)hcpu;
738 struct cpuidle_device *dev;
739
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CC
740 switch (action & ~CPU_TASKS_FROZEN) {
741 case CPU_UP_PREPARE:
742 case CPU_DOWN_PREPARE:
743 case CPU_ONLINE:
744 case CPU_DEAD:
745 case CPU_UP_CANCELED:
746 case CPU_DOWN_FAILED:
747 break;
748 default:
749 return NOTIFY_OK;
750 }
751
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752 mutex_lock(&cpuidle_lock);
753
754 dev = per_cpu(cpuidle_devices, cpu);
5fbbb90d 755 if (!dev || !dev->coupled)
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756 goto out;
757
758 switch (action & ~CPU_TASKS_FROZEN) {
759 case CPU_UP_PREPARE:
760 case CPU_DOWN_PREPARE:
761 cpuidle_coupled_prevent_idle(dev->coupled);
762 break;
763 case CPU_ONLINE:
764 case CPU_DEAD:
765 cpuidle_coupled_update_online_cpus(dev->coupled);
766 /* Fall through */
767 case CPU_UP_CANCELED:
768 case CPU_DOWN_FAILED:
769 cpuidle_coupled_allow_idle(dev->coupled);
770 break;
771 }
772
773out:
774 mutex_unlock(&cpuidle_lock);
775 return NOTIFY_OK;
776}
777
778static struct notifier_block cpuidle_coupled_cpu_notifier = {
779 .notifier_call = cpuidle_coupled_cpu_notify,
780};
781
782static int __init cpuidle_coupled_init(void)
783{
784 return register_cpu_notifier(&cpuidle_coupled_cpu_notifier);
785}
786core_initcall(cpuidle_coupled_init);
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