xref: /openbmc/linux/kernel/sched/idle.c (revision b240b419db5d624ce7a5a397d6f62a1a686009ec)
1 /*
2  * Generic entry points for the idle threads and
3  * implementation of the idle task scheduling class.
4  *
5  * (NOTE: these are not related to SCHED_IDLE batch scheduled
6  *        tasks which are handled in sched/fair.c )
7  */
8 #include "sched.h"
9 
10 #include <trace/events/power.h>
11 
12 /* Linker adds these: start and end of __cpuidle functions */
13 extern char __cpuidle_text_start[], __cpuidle_text_end[];
14 
15 /**
16  * sched_idle_set_state - Record idle state for the current CPU.
17  * @idle_state: State to record.
18  */
19 void sched_idle_set_state(struct cpuidle_state *idle_state)
20 {
21 	idle_set_state(this_rq(), idle_state);
22 }
23 
24 static int __read_mostly cpu_idle_force_poll;
25 
26 void cpu_idle_poll_ctrl(bool enable)
27 {
28 	if (enable) {
29 		cpu_idle_force_poll++;
30 	} else {
31 		cpu_idle_force_poll--;
32 		WARN_ON_ONCE(cpu_idle_force_poll < 0);
33 	}
34 }
35 
36 #ifdef CONFIG_GENERIC_IDLE_POLL_SETUP
37 static int __init cpu_idle_poll_setup(char *__unused)
38 {
39 	cpu_idle_force_poll = 1;
40 
41 	return 1;
42 }
43 __setup("nohlt", cpu_idle_poll_setup);
44 
45 static int __init cpu_idle_nopoll_setup(char *__unused)
46 {
47 	cpu_idle_force_poll = 0;
48 
49 	return 1;
50 }
51 __setup("hlt", cpu_idle_nopoll_setup);
52 #endif
53 
54 static noinline int __cpuidle cpu_idle_poll(void)
55 {
56 	rcu_idle_enter();
57 	trace_cpu_idle_rcuidle(0, smp_processor_id());
58 	local_irq_enable();
59 	stop_critical_timings();
60 
61 	while (!tif_need_resched() &&
62 		(cpu_idle_force_poll || tick_check_broadcast_expired()))
63 		cpu_relax();
64 	start_critical_timings();
65 	trace_cpu_idle_rcuidle(PWR_EVENT_EXIT, smp_processor_id());
66 	rcu_idle_exit();
67 
68 	return 1;
69 }
70 
71 /* Weak implementations for optional arch specific functions */
72 void __weak arch_cpu_idle_prepare(void) { }
73 void __weak arch_cpu_idle_enter(void) { }
74 void __weak arch_cpu_idle_exit(void) { }
75 void __weak arch_cpu_idle_dead(void) { }
76 void __weak arch_cpu_idle(void)
77 {
78 	cpu_idle_force_poll = 1;
79 	local_irq_enable();
80 }
81 
82 /**
83  * default_idle_call - Default CPU idle routine.
84  *
85  * To use when the cpuidle framework cannot be used.
86  */
87 void __cpuidle default_idle_call(void)
88 {
89 	if (current_clr_polling_and_test()) {
90 		local_irq_enable();
91 	} else {
92 		stop_critical_timings();
93 		arch_cpu_idle();
94 		start_critical_timings();
95 	}
96 }
97 
98 static int call_cpuidle(struct cpuidle_driver *drv, struct cpuidle_device *dev,
99 		      int next_state)
100 {
101 	/*
102 	 * The idle task must be scheduled, it is pointless to go to idle, just
103 	 * update no idle residency and return.
104 	 */
105 	if (current_clr_polling_and_test()) {
106 		dev->last_residency = 0;
107 		local_irq_enable();
108 		return -EBUSY;
109 	}
110 
111 	/*
112 	 * Enter the idle state previously returned by the governor decision.
113 	 * This function will block until an interrupt occurs and will take
114 	 * care of re-enabling the local interrupts
115 	 */
116 	return cpuidle_enter(drv, dev, next_state);
117 }
118 
119 /**
120  * cpuidle_idle_call - the main idle function
121  *
122  * NOTE: no locks or semaphores should be used here
123  *
124  * On archs that support TIF_POLLING_NRFLAG, is called with polling
125  * set, and it returns with polling set.  If it ever stops polling, it
126  * must clear the polling bit.
127  */
128 static void cpuidle_idle_call(void)
129 {
130 	struct cpuidle_device *dev = cpuidle_get_device();
131 	struct cpuidle_driver *drv = cpuidle_get_cpu_driver(dev);
132 	int next_state, entered_state;
133 
134 	/*
135 	 * Check if the idle task must be rescheduled. If it is the
136 	 * case, exit the function after re-enabling the local irq.
137 	 */
138 	if (need_resched()) {
139 		local_irq_enable();
140 		return;
141 	}
142 
143 	/*
144 	 * Tell the RCU framework we are entering an idle section,
145 	 * so no more rcu read side critical sections and one more
146 	 * step to the grace period
147 	 */
148 	rcu_idle_enter();
149 
150 	if (cpuidle_not_available(drv, dev)) {
151 		default_idle_call();
152 		goto exit_idle;
153 	}
154 
155 	/*
156 	 * Suspend-to-idle ("s2idle") is a system state in which all user space
157 	 * has been frozen, all I/O devices have been suspended and the only
158 	 * activity happens here and in iterrupts (if any).  In that case bypass
159 	 * the cpuidle governor and go stratight for the deepest idle state
160 	 * available.  Possibly also suspend the local tick and the entire
161 	 * timekeeping to prevent timer interrupts from kicking us out of idle
162 	 * until a proper wakeup interrupt happens.
163 	 */
164 
165 	if (idle_should_enter_s2idle() || dev->use_deepest_state) {
166 		if (idle_should_enter_s2idle()) {
167 			entered_state = cpuidle_enter_s2idle(drv, dev);
168 			if (entered_state > 0) {
169 				local_irq_enable();
170 				goto exit_idle;
171 			}
172 		}
173 
174 		next_state = cpuidle_find_deepest_state(drv, dev);
175 		call_cpuidle(drv, dev, next_state);
176 	} else {
177 		/*
178 		 * Ask the cpuidle framework to choose a convenient idle state.
179 		 */
180 		next_state = cpuidle_select(drv, dev);
181 		entered_state = call_cpuidle(drv, dev, next_state);
182 		/*
183 		 * Give the governor an opportunity to reflect on the outcome
184 		 */
185 		cpuidle_reflect(dev, entered_state);
186 	}
187 
188 exit_idle:
189 	__current_set_polling();
190 
191 	/*
192 	 * It is up to the idle functions to reenable local interrupts
193 	 */
194 	if (WARN_ON_ONCE(irqs_disabled()))
195 		local_irq_enable();
196 
197 	rcu_idle_exit();
198 }
199 
200 /*
201  * Generic idle loop implementation
202  *
203  * Called with polling cleared.
204  */
205 static void do_idle(void)
206 {
207 	int cpu = smp_processor_id();
208 	/*
209 	 * If the arch has a polling bit, we maintain an invariant:
210 	 *
211 	 * Our polling bit is clear if we're not scheduled (i.e. if rq->curr !=
212 	 * rq->idle). This means that, if rq->idle has the polling bit set,
213 	 * then setting need_resched is guaranteed to cause the CPU to
214 	 * reschedule.
215 	 */
216 
217 	__current_set_polling();
218 	tick_nohz_idle_enter();
219 
220 	while (!need_resched()) {
221 		check_pgt_cache();
222 		rmb();
223 
224 		if (cpu_is_offline(cpu)) {
225 			cpuhp_report_idle_dead();
226 			arch_cpu_idle_dead();
227 		}
228 
229 		local_irq_disable();
230 		arch_cpu_idle_enter();
231 
232 		/*
233 		 * In poll mode we reenable interrupts and spin. Also if we
234 		 * detected in the wakeup from idle path that the tick
235 		 * broadcast device expired for us, we don't want to go deep
236 		 * idle as we know that the IPI is going to arrive right away.
237 		 */
238 		if (cpu_idle_force_poll || tick_check_broadcast_expired())
239 			cpu_idle_poll();
240 		else
241 			cpuidle_idle_call();
242 		arch_cpu_idle_exit();
243 	}
244 
245 	/*
246 	 * Since we fell out of the loop above, we know TIF_NEED_RESCHED must
247 	 * be set, propagate it into PREEMPT_NEED_RESCHED.
248 	 *
249 	 * This is required because for polling idle loops we will not have had
250 	 * an IPI to fold the state for us.
251 	 */
252 	preempt_set_need_resched();
253 	tick_nohz_idle_exit();
254 	__current_clr_polling();
255 
256 	/*
257 	 * We promise to call sched_ttwu_pending() and reschedule if
258 	 * need_resched() is set while polling is set. That means that clearing
259 	 * polling needs to be visible before doing these things.
260 	 */
261 	smp_mb__after_atomic();
262 
263 	sched_ttwu_pending();
264 	schedule_idle();
265 
266 	if (unlikely(klp_patch_pending(current)))
267 		klp_update_patch_state(current);
268 }
269 
270 bool cpu_in_idle(unsigned long pc)
271 {
272 	return pc >= (unsigned long)__cpuidle_text_start &&
273 		pc < (unsigned long)__cpuidle_text_end;
274 }
275 
276 struct idle_timer {
277 	struct hrtimer timer;
278 	int done;
279 };
280 
281 static enum hrtimer_restart idle_inject_timer_fn(struct hrtimer *timer)
282 {
283 	struct idle_timer *it = container_of(timer, struct idle_timer, timer);
284 
285 	WRITE_ONCE(it->done, 1);
286 	set_tsk_need_resched(current);
287 
288 	return HRTIMER_NORESTART;
289 }
290 
291 void play_idle(unsigned long duration_ms)
292 {
293 	struct idle_timer it;
294 
295 	/*
296 	 * Only FIFO tasks can disable the tick since they don't need the forced
297 	 * preemption.
298 	 */
299 	WARN_ON_ONCE(current->policy != SCHED_FIFO);
300 	WARN_ON_ONCE(current->nr_cpus_allowed != 1);
301 	WARN_ON_ONCE(!(current->flags & PF_KTHREAD));
302 	WARN_ON_ONCE(!(current->flags & PF_NO_SETAFFINITY));
303 	WARN_ON_ONCE(!duration_ms);
304 
305 	rcu_sleep_check();
306 	preempt_disable();
307 	current->flags |= PF_IDLE;
308 	cpuidle_use_deepest_state(true);
309 
310 	it.done = 0;
311 	hrtimer_init_on_stack(&it.timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
312 	it.timer.function = idle_inject_timer_fn;
313 	hrtimer_start(&it.timer, ms_to_ktime(duration_ms), HRTIMER_MODE_REL_PINNED);
314 
315 	while (!READ_ONCE(it.done))
316 		do_idle();
317 
318 	cpuidle_use_deepest_state(false);
319 	current->flags &= ~PF_IDLE;
320 
321 	preempt_fold_need_resched();
322 	preempt_enable();
323 }
324 EXPORT_SYMBOL_GPL(play_idle);
325 
326 void cpu_startup_entry(enum cpuhp_state state)
327 {
328 	/*
329 	 * This #ifdef needs to die, but it's too late in the cycle to
330 	 * make this generic (ARM and SH have never invoked the canary
331 	 * init for the non boot CPUs!). Will be fixed in 3.11
332 	 */
333 #ifdef CONFIG_X86
334 	/*
335 	 * If we're the non-boot CPU, nothing set the stack canary up
336 	 * for us. The boot CPU already has it initialized but no harm
337 	 * in doing it again. This is a good place for updating it, as
338 	 * we wont ever return from this function (so the invalid
339 	 * canaries already on the stack wont ever trigger).
340 	 */
341 	boot_init_stack_canary();
342 #endif
343 	arch_cpu_idle_prepare();
344 	cpuhp_online_idle(state);
345 	while (1)
346 		do_idle();
347 }
348 
349 /*
350  * idle-task scheduling class.
351  */
352 
353 #ifdef CONFIG_SMP
354 static int
355 select_task_rq_idle(struct task_struct *p, int cpu, int sd_flag, int flags)
356 {
357 	return task_cpu(p); /* IDLE tasks as never migrated */
358 }
359 #endif
360 
361 /*
362  * Idle tasks are unconditionally rescheduled:
363  */
364 static void check_preempt_curr_idle(struct rq *rq, struct task_struct *p, int flags)
365 {
366 	resched_curr(rq);
367 }
368 
369 static struct task_struct *
370 pick_next_task_idle(struct rq *rq, struct task_struct *prev, struct rq_flags *rf)
371 {
372 	put_prev_task(rq, prev);
373 	update_idle_core(rq);
374 	schedstat_inc(rq->sched_goidle);
375 
376 	return rq->idle;
377 }
378 
379 /*
380  * It is not legal to sleep in the idle task - print a warning
381  * message if some code attempts to do it:
382  */
383 static void
384 dequeue_task_idle(struct rq *rq, struct task_struct *p, int flags)
385 {
386 	raw_spin_unlock_irq(&rq->lock);
387 	printk(KERN_ERR "bad: scheduling from the idle thread!\n");
388 	dump_stack();
389 	raw_spin_lock_irq(&rq->lock);
390 }
391 
392 static void put_prev_task_idle(struct rq *rq, struct task_struct *prev)
393 {
394 }
395 
396 /*
397  * scheduler tick hitting a task of our scheduling class.
398  *
399  * NOTE: This function can be called remotely by the tick offload that
400  * goes along full dynticks. Therefore no local assumption can be made
401  * and everything must be accessed through the @rq and @curr passed in
402  * parameters.
403  */
404 static void task_tick_idle(struct rq *rq, struct task_struct *curr, int queued)
405 {
406 }
407 
408 static void set_curr_task_idle(struct rq *rq)
409 {
410 }
411 
412 static void switched_to_idle(struct rq *rq, struct task_struct *p)
413 {
414 	BUG();
415 }
416 
417 static void
418 prio_changed_idle(struct rq *rq, struct task_struct *p, int oldprio)
419 {
420 	BUG();
421 }
422 
423 static unsigned int get_rr_interval_idle(struct rq *rq, struct task_struct *task)
424 {
425 	return 0;
426 }
427 
428 static void update_curr_idle(struct rq *rq)
429 {
430 }
431 
432 /*
433  * Simple, special scheduling class for the per-CPU idle tasks:
434  */
435 const struct sched_class idle_sched_class = {
436 	/* .next is NULL */
437 	/* no enqueue/yield_task for idle tasks */
438 
439 	/* dequeue is not valid, we print a debug message there: */
440 	.dequeue_task		= dequeue_task_idle,
441 
442 	.check_preempt_curr	= check_preempt_curr_idle,
443 
444 	.pick_next_task		= pick_next_task_idle,
445 	.put_prev_task		= put_prev_task_idle,
446 
447 #ifdef CONFIG_SMP
448 	.select_task_rq		= select_task_rq_idle,
449 	.set_cpus_allowed	= set_cpus_allowed_common,
450 #endif
451 
452 	.set_curr_task          = set_curr_task_idle,
453 	.task_tick		= task_tick_idle,
454 
455 	.get_rr_interval	= get_rr_interval_idle,
456 
457 	.prio_changed		= prio_changed_idle,
458 	.switched_to		= switched_to_idle,
459 	.update_curr		= update_curr_idle,
460 };
461