cpu: Make CPU-offline idle-loop transition point more precise
[linux-2.6-block.git] / kernel / sched / idle.c
CommitLineData
cf37b6b4
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1/*
2 * Generic entry point for the idle threads
3 */
4#include <linux/sched.h>
5#include <linux/cpu.h>
6#include <linux/cpuidle.h>
7#include <linux/tick.h>
8#include <linux/mm.h>
9#include <linux/stackprotector.h>
38106313 10#include <linux/suspend.h>
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11
12#include <asm/tlb.h>
13
14#include <trace/events/power.h>
15
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16#include "sched.h"
17
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18static int __read_mostly cpu_idle_force_poll;
19
20void cpu_idle_poll_ctrl(bool enable)
21{
22 if (enable) {
23 cpu_idle_force_poll++;
24 } else {
25 cpu_idle_force_poll--;
26 WARN_ON_ONCE(cpu_idle_force_poll < 0);
27 }
28}
29
30#ifdef CONFIG_GENERIC_IDLE_POLL_SETUP
31static int __init cpu_idle_poll_setup(char *__unused)
32{
33 cpu_idle_force_poll = 1;
34 return 1;
35}
36__setup("nohlt", cpu_idle_poll_setup);
37
38static int __init cpu_idle_nopoll_setup(char *__unused)
39{
40 cpu_idle_force_poll = 0;
41 return 1;
42}
43__setup("hlt", cpu_idle_nopoll_setup);
44#endif
45
46static inline int cpu_idle_poll(void)
47{
48 rcu_idle_enter();
49 trace_cpu_idle_rcuidle(0, smp_processor_id());
50 local_irq_enable();
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51 while (!tif_need_resched() &&
52 (cpu_idle_force_poll || tick_check_broadcast_expired()))
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53 cpu_relax();
54 trace_cpu_idle_rcuidle(PWR_EVENT_EXIT, smp_processor_id());
55 rcu_idle_exit();
56 return 1;
57}
58
59/* Weak implementations for optional arch specific functions */
60void __weak arch_cpu_idle_prepare(void) { }
61void __weak arch_cpu_idle_enter(void) { }
62void __weak arch_cpu_idle_exit(void) { }
63void __weak arch_cpu_idle_dead(void) { }
64void __weak arch_cpu_idle(void)
65{
66 cpu_idle_force_poll = 1;
67 local_irq_enable();
68}
69
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70/**
71 * cpuidle_idle_call - the main idle function
72 *
73 * NOTE: no locks or semaphores should be used here
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74 *
75 * On archs that support TIF_POLLING_NRFLAG, is called with polling
76 * set, and it returns with polling set. If it ever stops polling, it
77 * must clear the polling bit.
30cdd69e 78 */
08c373e5 79static void cpuidle_idle_call(void)
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80{
81 struct cpuidle_device *dev = __this_cpu_read(cpuidle_devices);
82 struct cpuidle_driver *drv = cpuidle_get_cpu_driver(dev);
37352273 83 int next_state, entered_state;
89abb5ad 84 unsigned int broadcast;
30cdd69e 85
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86 /*
87 * Check if the idle task must be rescheduled. If it is the
c444117f 88 * case, exit the function after re-enabling the local irq.
a1d028bd 89 */
c444117f 90 if (need_resched()) {
8ca3c642 91 local_irq_enable();
08c373e5 92 return;
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93 }
94
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95 /*
96 * During the idle period, stop measuring the disabled irqs
97 * critical sections latencies
98 */
c8cc7d4d 99 stop_critical_timings();
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100
101 /*
102 * Tell the RCU framework we are entering an idle section,
103 * so no more rcu read side critical sections and one more
104 * step to the grace period
105 */
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106 rcu_idle_enter();
107
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108 /*
109 * Suspend-to-idle ("freeze") is a system state in which all user space
110 * has been frozen, all I/O devices have been suspended and the only
111 * activity happens here and in iterrupts (if any). In that case bypass
112 * the cpuidle governor and go stratight for the deepest idle state
113 * available. Possibly also suspend the local tick and the entire
114 * timekeeping to prevent timer interrupts from kicking us out of idle
115 * until a proper wakeup interrupt happens.
116 */
117 if (idle_should_freeze()) {
118 cpuidle_enter_freeze();
119 local_irq_enable();
120 goto exit_idle;
121 }
122
a1d028bd 123 /*
52c324f8 124 * Ask the cpuidle framework to choose a convenient idle state.
ec6e7f40 125 * Fall back to the default arch idle method on errors.
a1d028bd 126 */
52c324f8 127 next_state = cpuidle_select(drv, dev);
ec6e7f40 128 if (next_state < 0) {
37352273 129use_default:
a1d028bd 130 /*
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131 * We can't use the cpuidle framework, let's use the default
132 * idle routine.
a1d028bd 133 */
37352273 134 if (current_clr_polling_and_test())
8ca3c642 135 local_irq_enable();
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136 else
137 arch_cpu_idle();
138
139 goto exit_idle;
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140 }
141
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142
143 /*
144 * The idle task must be scheduled, it is pointless to
145 * go to idle, just update no idle residency and get
146 * out of this function
147 */
148 if (current_clr_polling_and_test()) {
149 dev->last_residency = 0;
150 entered_state = next_state;
151 local_irq_enable();
152 goto exit_idle;
c444117f 153 }
8ca3c642 154
89abb5ad 155 broadcast = drv->states[next_state].flags & CPUIDLE_FLAG_TIMER_STOP;
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156
157 /*
158 * Tell the time framework to switch to a broadcast timer
159 * because our local timer will be shutdown. If a local timer
160 * is used from another cpu as a broadcast timer, this call may
161 * fail if it is not available
162 */
163 if (broadcast &&
164 clockevents_notify(CLOCK_EVT_NOTIFY_BROADCAST_ENTER, &dev->cpu))
165 goto use_default;
166
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167 /* Take note of the planned idle state. */
168 idle_set_state(this_rq(), &drv->states[next_state]);
169
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170 /*
171 * Enter the idle state previously returned by the governor decision.
172 * This function will block until an interrupt occurs and will take
173 * care of re-enabling the local interrupts
174 */
175 entered_state = cpuidle_enter(drv, dev, next_state);
176
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177 /* The cpu is no longer idle or about to enter idle. */
178 idle_set_state(this_rq(), NULL);
179
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180 if (broadcast)
181 clockevents_notify(CLOCK_EVT_NOTIFY_BROADCAST_EXIT, &dev->cpu);
182
183 /*
184 * Give the governor an opportunity to reflect on the outcome
185 */
186 cpuidle_reflect(dev, entered_state);
187
188exit_idle:
8ca3c642 189 __current_set_polling();
30cdd69e 190
a1d028bd 191 /*
37352273 192 * It is up to the idle functions to reenable local interrupts
a1d028bd 193 */
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194 if (WARN_ON_ONCE(irqs_disabled()))
195 local_irq_enable();
196
197 rcu_idle_exit();
198 start_critical_timings();
30cdd69e 199}
30cdd69e 200
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201DEFINE_PER_CPU(bool, cpu_dead_idle);
202
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203/*
204 * Generic idle loop implementation
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205 *
206 * Called with polling cleared.
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207 */
208static void cpu_idle_loop(void)
209{
210 while (1) {
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211 /*
212 * If the arch has a polling bit, we maintain an invariant:
213 *
214 * Our polling bit is clear if we're not scheduled (i.e. if
215 * rq->curr != rq->idle). This means that, if rq->idle has
216 * the polling bit set, then setting need_resched is
217 * guaranteed to cause the cpu to reschedule.
218 */
219
220 __current_set_polling();
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221 tick_nohz_idle_enter();
222
223 while (!need_resched()) {
224 check_pgt_cache();
225 rmb();
226
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227 if (cpu_is_offline(smp_processor_id())) {
228 smp_mb(); /* all activity before dead. */
229 this_cpu_write(cpu_dead_idle, true);
cf37b6b4 230 arch_cpu_idle_dead();
528a25b0 231 }
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232
233 local_irq_disable();
234 arch_cpu_idle_enter();
235
236 /*
237 * In poll mode we reenable interrupts and spin.
238 *
239 * Also if we detected in the wakeup from idle
240 * path that the tick broadcast device expired
241 * for us, we don't want to go deep idle as we
242 * know that the IPI is going to arrive right
243 * away
244 */
8ca3c642 245 if (cpu_idle_force_poll || tick_check_broadcast_expired())
cf37b6b4 246 cpu_idle_poll();
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247 else
248 cpuidle_idle_call();
249
cf37b6b4 250 arch_cpu_idle_exit();
cf37b6b4 251 }
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252
253 /*
254 * Since we fell out of the loop above, we know
255 * TIF_NEED_RESCHED must be set, propagate it into
256 * PREEMPT_NEED_RESCHED.
257 *
258 * This is required because for polling idle loops we will
259 * not have had an IPI to fold the state for us.
260 */
261 preempt_set_need_resched();
cf37b6b4 262 tick_nohz_idle_exit();
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263 __current_clr_polling();
264
265 /*
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266 * We promise to call sched_ttwu_pending and reschedule
267 * if need_resched is set while polling is set. That
268 * means that clearing polling needs to be visible
269 * before doing these things.
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270 */
271 smp_mb__after_atomic();
272
e3baac47 273 sched_ttwu_pending();
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274 schedule_preempt_disabled();
275 }
276}
277
278void cpu_startup_entry(enum cpuhp_state state)
279{
280 /*
281 * This #ifdef needs to die, but it's too late in the cycle to
282 * make this generic (arm and sh have never invoked the canary
283 * init for the non boot cpus!). Will be fixed in 3.11
284 */
285#ifdef CONFIG_X86
286 /*
287 * If we're the non-boot CPU, nothing set the stack canary up
288 * for us. The boot CPU already has it initialized but no harm
289 * in doing it again. This is a good place for updating it, as
290 * we wont ever return from this function (so the invalid
291 * canaries already on the stack wont ever trigger).
292 */
293 boot_init_stack_canary();
294#endif
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295 arch_cpu_idle_prepare();
296 cpu_idle_loop();
297}