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Commit | Line | Data |
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79bf2bb3 TG |
1 | /* |
2 | * linux/kernel/time/tick-sched.c | |
3 | * | |
4 | * Copyright(C) 2005-2006, Thomas Gleixner <[email protected]> | |
5 | * Copyright(C) 2005-2007, Red Hat, Inc., Ingo Molnar | |
6 | * Copyright(C) 2006-2007 Timesys Corp., Thomas Gleixner | |
7 | * | |
8 | * No idle tick implementation for low and high resolution timers | |
9 | * | |
10 | * Started by: Thomas Gleixner and Ingo Molnar | |
11 | * | |
b10db7f0 | 12 | * Distribute under GPLv2. |
79bf2bb3 TG |
13 | */ |
14 | #include <linux/cpu.h> | |
15 | #include <linux/err.h> | |
16 | #include <linux/hrtimer.h> | |
17 | #include <linux/interrupt.h> | |
18 | #include <linux/kernel_stat.h> | |
19 | #include <linux/percpu.h> | |
20 | #include <linux/profile.h> | |
21 | #include <linux/sched.h> | |
8083e4ad | 22 | #include <linux/module.h> |
00b42959 | 23 | #include <linux/irq_work.h> |
9014c45d FW |
24 | #include <linux/posix-timers.h> |
25 | #include <linux/perf_event.h> | |
79bf2bb3 | 26 | |
9e203bcc DM |
27 | #include <asm/irq_regs.h> |
28 | ||
79bf2bb3 TG |
29 | #include "tick-internal.h" |
30 | ||
cb41a290 FW |
31 | #include <trace/events/timer.h> |
32 | ||
79bf2bb3 TG |
33 | /* |
34 | * Per cpu nohz control structure | |
35 | */ | |
33a5f626 | 36 | DEFINE_PER_CPU(struct tick_sched, tick_cpu_sched); |
79bf2bb3 TG |
37 | |
38 | /* | |
d6ad4187 | 39 | * The time, when the last jiffy update happened. Protected by jiffies_lock. |
79bf2bb3 TG |
40 | */ |
41 | static ktime_t last_jiffies_update; | |
42 | ||
289f480a IM |
43 | struct tick_sched *tick_get_tick_sched(int cpu) |
44 | { | |
45 | return &per_cpu(tick_cpu_sched, cpu); | |
46 | } | |
47 | ||
79bf2bb3 TG |
48 | /* |
49 | * Must be called with interrupts disabled ! | |
50 | */ | |
51 | static void tick_do_update_jiffies64(ktime_t now) | |
52 | { | |
53 | unsigned long ticks = 0; | |
54 | ktime_t delta; | |
55 | ||
7a14ce1d | 56 | /* |
d6ad4187 | 57 | * Do a quick check without holding jiffies_lock: |
7a14ce1d IM |
58 | */ |
59 | delta = ktime_sub(now, last_jiffies_update); | |
60 | if (delta.tv64 < tick_period.tv64) | |
61 | return; | |
62 | ||
d6ad4187 JS |
63 | /* Reevalute with jiffies_lock held */ |
64 | write_seqlock(&jiffies_lock); | |
79bf2bb3 TG |
65 | |
66 | delta = ktime_sub(now, last_jiffies_update); | |
67 | if (delta.tv64 >= tick_period.tv64) { | |
68 | ||
69 | delta = ktime_sub(delta, tick_period); | |
70 | last_jiffies_update = ktime_add(last_jiffies_update, | |
71 | tick_period); | |
72 | ||
73 | /* Slow path for long timeouts */ | |
74 | if (unlikely(delta.tv64 >= tick_period.tv64)) { | |
75 | s64 incr = ktime_to_ns(tick_period); | |
76 | ||
77 | ticks = ktime_divns(delta, incr); | |
78 | ||
79 | last_jiffies_update = ktime_add_ns(last_jiffies_update, | |
80 | incr * ticks); | |
81 | } | |
82 | do_timer(++ticks); | |
49d670fb TG |
83 | |
84 | /* Keep the tick_next_period variable up to date */ | |
85 | tick_next_period = ktime_add(last_jiffies_update, tick_period); | |
79bf2bb3 | 86 | } |
d6ad4187 | 87 | write_sequnlock(&jiffies_lock); |
79bf2bb3 TG |
88 | } |
89 | ||
90 | /* | |
91 | * Initialize and return retrieve the jiffies update. | |
92 | */ | |
93 | static ktime_t tick_init_jiffy_update(void) | |
94 | { | |
95 | ktime_t period; | |
96 | ||
d6ad4187 | 97 | write_seqlock(&jiffies_lock); |
79bf2bb3 TG |
98 | /* Did we start the jiffies update yet ? */ |
99 | if (last_jiffies_update.tv64 == 0) | |
100 | last_jiffies_update = tick_next_period; | |
101 | period = last_jiffies_update; | |
d6ad4187 | 102 | write_sequnlock(&jiffies_lock); |
79bf2bb3 TG |
103 | return period; |
104 | } | |
105 | ||
5bb96226 FW |
106 | |
107 | static void tick_sched_do_timer(ktime_t now) | |
108 | { | |
109 | int cpu = smp_processor_id(); | |
110 | ||
3451d024 | 111 | #ifdef CONFIG_NO_HZ_COMMON |
5bb96226 FW |
112 | /* |
113 | * Check if the do_timer duty was dropped. We don't care about | |
114 | * concurrency: This happens only when the cpu in charge went | |
115 | * into a long sleep. If two cpus happen to assign themself to | |
116 | * this duty, then the jiffies update is still serialized by | |
9c3f9e28 | 117 | * jiffies_lock. |
5bb96226 | 118 | */ |
a382bf93 | 119 | if (unlikely(tick_do_timer_cpu == TICK_DO_TIMER_NONE) |
c5bfece2 | 120 | && !tick_nohz_full_cpu(cpu)) |
5bb96226 FW |
121 | tick_do_timer_cpu = cpu; |
122 | #endif | |
123 | ||
124 | /* Check, if the jiffies need an update */ | |
125 | if (tick_do_timer_cpu == cpu) | |
126 | tick_do_update_jiffies64(now); | |
127 | } | |
128 | ||
9e8f559b FW |
129 | static void tick_sched_handle(struct tick_sched *ts, struct pt_regs *regs) |
130 | { | |
3451d024 | 131 | #ifdef CONFIG_NO_HZ_COMMON |
9e8f559b FW |
132 | /* |
133 | * When we are idle and the tick is stopped, we have to touch | |
134 | * the watchdog as we might not schedule for a really long | |
135 | * time. This happens on complete idle SMP systems while | |
136 | * waiting on the login prompt. We also increment the "start of | |
137 | * idle" jiffy stamp so the idle accounting adjustment we do | |
138 | * when we go busy again does not account too much ticks. | |
139 | */ | |
140 | if (ts->tick_stopped) { | |
141 | touch_softlockup_watchdog(); | |
142 | if (is_idle_task(current)) | |
143 | ts->idle_jiffies++; | |
144 | } | |
94a57140 | 145 | #endif |
9e8f559b FW |
146 | update_process_times(user_mode(regs)); |
147 | profile_tick(CPU_PROFILING); | |
148 | } | |
149 | ||
c5bfece2 FW |
150 | #ifdef CONFIG_NO_HZ_FULL |
151 | static cpumask_var_t nohz_full_mask; | |
152 | bool have_nohz_full_mask; | |
a831881b | 153 | |
9014c45d FW |
154 | static bool can_stop_full_tick(void) |
155 | { | |
156 | WARN_ON_ONCE(!irqs_disabled()); | |
157 | ||
cb41a290 FW |
158 | if (!sched_can_stop_tick()) { |
159 | trace_tick_stop(0, "more than 1 task in runqueue\n"); | |
9014c45d | 160 | return false; |
cb41a290 | 161 | } |
9014c45d | 162 | |
cb41a290 FW |
163 | if (!posix_cpu_timers_can_stop_tick(current)) { |
164 | trace_tick_stop(0, "posix timers running\n"); | |
9014c45d | 165 | return false; |
cb41a290 | 166 | } |
9014c45d | 167 | |
cb41a290 FW |
168 | if (!perf_event_can_stop_tick()) { |
169 | trace_tick_stop(0, "perf events running\n"); | |
9014c45d | 170 | return false; |
cb41a290 | 171 | } |
9014c45d FW |
172 | |
173 | /* sched_clock_tick() needs us? */ | |
174 | #ifdef CONFIG_HAVE_UNSTABLE_SCHED_CLOCK | |
175 | /* | |
176 | * TODO: kick full dynticks CPUs when | |
177 | * sched_clock_stable is set. | |
178 | */ | |
cb41a290 FW |
179 | if (!sched_clock_stable) { |
180 | trace_tick_stop(0, "unstable sched clock\n"); | |
9014c45d | 181 | return false; |
cb41a290 | 182 | } |
9014c45d FW |
183 | #endif |
184 | ||
185 | return true; | |
186 | } | |
187 | ||
188 | static void tick_nohz_restart_sched_tick(struct tick_sched *ts, ktime_t now); | |
189 | ||
76c24fb0 FW |
190 | /* |
191 | * Re-evaluate the need for the tick on the current CPU | |
192 | * and restart it if necessary. | |
193 | */ | |
ff442c51 | 194 | void tick_nohz_full_check(void) |
76c24fb0 | 195 | { |
9014c45d FW |
196 | struct tick_sched *ts = &__get_cpu_var(tick_cpu_sched); |
197 | ||
198 | if (tick_nohz_full_cpu(smp_processor_id())) { | |
199 | if (ts->tick_stopped && !is_idle_task(current)) { | |
200 | if (!can_stop_full_tick()) | |
201 | tick_nohz_restart_sched_tick(ts, ktime_get()); | |
202 | } | |
203 | } | |
76c24fb0 FW |
204 | } |
205 | ||
206 | static void nohz_full_kick_work_func(struct irq_work *work) | |
207 | { | |
208 | tick_nohz_full_check(); | |
209 | } | |
210 | ||
211 | static DEFINE_PER_CPU(struct irq_work, nohz_full_kick_work) = { | |
212 | .func = nohz_full_kick_work_func, | |
213 | }; | |
214 | ||
215 | /* | |
216 | * Kick the current CPU if it's full dynticks in order to force it to | |
217 | * re-evaluate its dependency on the tick and restart it if necessary. | |
218 | */ | |
219 | void tick_nohz_full_kick(void) | |
220 | { | |
221 | if (tick_nohz_full_cpu(smp_processor_id())) | |
222 | irq_work_queue(&__get_cpu_var(nohz_full_kick_work)); | |
223 | } | |
224 | ||
225 | static void nohz_full_kick_ipi(void *info) | |
226 | { | |
227 | tick_nohz_full_check(); | |
228 | } | |
229 | ||
230 | /* | |
231 | * Kick all full dynticks CPUs in order to force these to re-evaluate | |
232 | * their dependency on the tick and restart it if necessary. | |
233 | */ | |
234 | void tick_nohz_full_kick_all(void) | |
235 | { | |
236 | if (!have_nohz_full_mask) | |
237 | return; | |
238 | ||
239 | preempt_disable(); | |
240 | smp_call_function_many(nohz_full_mask, | |
241 | nohz_full_kick_ipi, NULL, false); | |
242 | preempt_enable(); | |
243 | } | |
244 | ||
99e5ada9 FW |
245 | /* |
246 | * Re-evaluate the need for the tick as we switch the current task. | |
247 | * It might need the tick due to per task/process properties: | |
248 | * perf events, posix cpu timers, ... | |
249 | */ | |
250 | void tick_nohz_task_switch(struct task_struct *tsk) | |
251 | { | |
252 | unsigned long flags; | |
253 | ||
99e5ada9 FW |
254 | local_irq_save(flags); |
255 | ||
6296ace4 LZ |
256 | if (!tick_nohz_full_cpu(smp_processor_id())) |
257 | goto out; | |
258 | ||
99e5ada9 FW |
259 | if (tick_nohz_tick_stopped() && !can_stop_full_tick()) |
260 | tick_nohz_full_kick(); | |
261 | ||
6296ace4 | 262 | out: |
99e5ada9 FW |
263 | local_irq_restore(flags); |
264 | } | |
265 | ||
c5bfece2 | 266 | int tick_nohz_full_cpu(int cpu) |
a831881b | 267 | { |
c5bfece2 | 268 | if (!have_nohz_full_mask) |
a831881b FW |
269 | return 0; |
270 | ||
c5bfece2 | 271 | return cpumask_test_cpu(cpu, nohz_full_mask); |
a831881b FW |
272 | } |
273 | ||
274 | /* Parse the boot-time nohz CPU list from the kernel parameters. */ | |
c5bfece2 | 275 | static int __init tick_nohz_full_setup(char *str) |
a831881b | 276 | { |
0453b435 FW |
277 | int cpu; |
278 | ||
c5bfece2 | 279 | alloc_bootmem_cpumask_var(&nohz_full_mask); |
0453b435 | 280 | if (cpulist_parse(str, nohz_full_mask) < 0) { |
c5bfece2 | 281 | pr_warning("NOHZ: Incorrect nohz_full cpumask\n"); |
0453b435 FW |
282 | return 1; |
283 | } | |
284 | ||
285 | cpu = smp_processor_id(); | |
286 | if (cpumask_test_cpu(cpu, nohz_full_mask)) { | |
287 | pr_warning("NO_HZ: Clearing %d from nohz_full range for timekeeping\n", cpu); | |
288 | cpumask_clear_cpu(cpu, nohz_full_mask); | |
289 | } | |
290 | have_nohz_full_mask = true; | |
291 | ||
a831881b FW |
292 | return 1; |
293 | } | |
c5bfece2 | 294 | __setup("nohz_full=", tick_nohz_full_setup); |
a831881b | 295 | |
a382bf93 FW |
296 | static int __cpuinit tick_nohz_cpu_down_callback(struct notifier_block *nfb, |
297 | unsigned long action, | |
298 | void *hcpu) | |
299 | { | |
300 | unsigned int cpu = (unsigned long)hcpu; | |
301 | ||
302 | switch (action & ~CPU_TASKS_FROZEN) { | |
303 | case CPU_DOWN_PREPARE: | |
304 | /* | |
305 | * If we handle the timekeeping duty for full dynticks CPUs, | |
306 | * we can't safely shutdown that CPU. | |
307 | */ | |
c5bfece2 | 308 | if (have_nohz_full_mask && tick_do_timer_cpu == cpu) |
1a7f829f | 309 | return NOTIFY_BAD; |
a382bf93 FW |
310 | break; |
311 | } | |
312 | return NOTIFY_OK; | |
313 | } | |
314 | ||
1034fc2f FW |
315 | /* |
316 | * Worst case string length in chunks of CPU range seems 2 steps | |
317 | * separations: 0,2,4,6,... | |
318 | * This is NR_CPUS + sizeof('\0') | |
319 | */ | |
c5bfece2 | 320 | static char __initdata nohz_full_buf[NR_CPUS + 1]; |
1034fc2f | 321 | |
f98823ac FW |
322 | static int tick_nohz_init_all(void) |
323 | { | |
324 | int err = -1; | |
325 | ||
326 | #ifdef CONFIG_NO_HZ_FULL_ALL | |
327 | if (!alloc_cpumask_var(&nohz_full_mask, GFP_KERNEL)) { | |
328 | pr_err("NO_HZ: Can't allocate full dynticks cpumask\n"); | |
329 | return err; | |
330 | } | |
331 | err = 0; | |
332 | cpumask_setall(nohz_full_mask); | |
333 | cpumask_clear_cpu(smp_processor_id(), nohz_full_mask); | |
334 | have_nohz_full_mask = true; | |
335 | #endif | |
336 | return err; | |
337 | } | |
338 | ||
d1e43fa5 | 339 | void __init tick_nohz_init(void) |
a831881b | 340 | { |
d1e43fa5 FW |
341 | int cpu; |
342 | ||
f98823ac FW |
343 | if (!have_nohz_full_mask) { |
344 | if (tick_nohz_init_all() < 0) | |
345 | return; | |
346 | } | |
d1e43fa5 FW |
347 | |
348 | cpu_notifier(tick_nohz_cpu_down_callback, 0); | |
349 | ||
350 | /* Make sure full dynticks CPU are also RCU nocbs */ | |
351 | for_each_cpu(cpu, nohz_full_mask) { | |
352 | if (!rcu_is_nocb_cpu(cpu)) { | |
353 | pr_warning("NO_HZ: CPU %d is not RCU nocb: " | |
354 | "cleared from nohz_full range", cpu); | |
355 | cpumask_clear_cpu(cpu, nohz_full_mask); | |
356 | } | |
357 | } | |
a831881b | 358 | |
c5bfece2 FW |
359 | cpulist_scnprintf(nohz_full_buf, sizeof(nohz_full_buf), nohz_full_mask); |
360 | pr_info("NO_HZ: Full dynticks CPUs: %s.\n", nohz_full_buf); | |
a831881b | 361 | } |
a831881b | 362 | #else |
c5bfece2 | 363 | #define have_nohz_full_mask (0) |
a831881b FW |
364 | #endif |
365 | ||
79bf2bb3 TG |
366 | /* |
367 | * NOHZ - aka dynamic tick functionality | |
368 | */ | |
3451d024 | 369 | #ifdef CONFIG_NO_HZ_COMMON |
79bf2bb3 TG |
370 | /* |
371 | * NO HZ enabled ? | |
372 | */ | |
9d2ad243 | 373 | int tick_nohz_enabled __read_mostly = 1; |
79bf2bb3 TG |
374 | |
375 | /* | |
376 | * Enable / Disable tickless mode | |
377 | */ | |
378 | static int __init setup_tick_nohz(char *str) | |
379 | { | |
380 | if (!strcmp(str, "off")) | |
381 | tick_nohz_enabled = 0; | |
382 | else if (!strcmp(str, "on")) | |
383 | tick_nohz_enabled = 1; | |
384 | else | |
385 | return 0; | |
386 | return 1; | |
387 | } | |
388 | ||
389 | __setup("nohz=", setup_tick_nohz); | |
390 | ||
391 | /** | |
392 | * tick_nohz_update_jiffies - update jiffies when idle was interrupted | |
393 | * | |
394 | * Called from interrupt entry when the CPU was idle | |
395 | * | |
396 | * In case the sched_tick was stopped on this CPU, we have to check if jiffies | |
397 | * must be updated. Otherwise an interrupt handler could use a stale jiffy | |
398 | * value. We do this unconditionally on any cpu, as we don't know whether the | |
399 | * cpu, which has the update task assigned is in a long sleep. | |
400 | */ | |
eed3b9cf | 401 | static void tick_nohz_update_jiffies(ktime_t now) |
79bf2bb3 TG |
402 | { |
403 | int cpu = smp_processor_id(); | |
404 | struct tick_sched *ts = &per_cpu(tick_cpu_sched, cpu); | |
405 | unsigned long flags; | |
79bf2bb3 | 406 | |
5df7fa1c | 407 | ts->idle_waketime = now; |
79bf2bb3 TG |
408 | |
409 | local_irq_save(flags); | |
410 | tick_do_update_jiffies64(now); | |
411 | local_irq_restore(flags); | |
02ff3755 IM |
412 | |
413 | touch_softlockup_watchdog(); | |
79bf2bb3 TG |
414 | } |
415 | ||
595aac48 AV |
416 | /* |
417 | * Updates the per cpu time idle statistics counters | |
418 | */ | |
8d63bf94 | 419 | static void |
8c215bd3 | 420 | update_ts_time_stats(int cpu, struct tick_sched *ts, ktime_t now, u64 *last_update_time) |
6378ddb5 | 421 | { |
eed3b9cf | 422 | ktime_t delta; |
6378ddb5 | 423 | |
595aac48 AV |
424 | if (ts->idle_active) { |
425 | delta = ktime_sub(now, ts->idle_entrytime); | |
8c215bd3 | 426 | if (nr_iowait_cpu(cpu) > 0) |
0224cf4c | 427 | ts->iowait_sleeptime = ktime_add(ts->iowait_sleeptime, delta); |
6beea0cd MH |
428 | else |
429 | ts->idle_sleeptime = ktime_add(ts->idle_sleeptime, delta); | |
8c7b09f4 | 430 | ts->idle_entrytime = now; |
595aac48 | 431 | } |
8d63bf94 | 432 | |
e0e37c20 | 433 | if (last_update_time) |
8d63bf94 AV |
434 | *last_update_time = ktime_to_us(now); |
435 | ||
595aac48 AV |
436 | } |
437 | ||
438 | static void tick_nohz_stop_idle(int cpu, ktime_t now) | |
439 | { | |
440 | struct tick_sched *ts = &per_cpu(tick_cpu_sched, cpu); | |
441 | ||
8c215bd3 | 442 | update_ts_time_stats(cpu, ts, now, NULL); |
eed3b9cf | 443 | ts->idle_active = 0; |
56c7426b | 444 | |
eed3b9cf | 445 | sched_clock_idle_wakeup_event(0); |
6378ddb5 VP |
446 | } |
447 | ||
8c215bd3 | 448 | static ktime_t tick_nohz_start_idle(int cpu, struct tick_sched *ts) |
6378ddb5 | 449 | { |
430ee881 | 450 | ktime_t now = ktime_get(); |
595aac48 | 451 | |
6378ddb5 VP |
452 | ts->idle_entrytime = now; |
453 | ts->idle_active = 1; | |
56c7426b | 454 | sched_clock_idle_sleep_event(); |
6378ddb5 VP |
455 | return now; |
456 | } | |
457 | ||
b1f724c3 AV |
458 | /** |
459 | * get_cpu_idle_time_us - get the total idle time of a cpu | |
460 | * @cpu: CPU number to query | |
09a1d34f MH |
461 | * @last_update_time: variable to store update time in. Do not update |
462 | * counters if NULL. | |
b1f724c3 AV |
463 | * |
464 | * Return the cummulative idle time (since boot) for a given | |
6beea0cd | 465 | * CPU, in microseconds. |
b1f724c3 AV |
466 | * |
467 | * This time is measured via accounting rather than sampling, | |
468 | * and is as accurate as ktime_get() is. | |
469 | * | |
470 | * This function returns -1 if NOHZ is not enabled. | |
471 | */ | |
6378ddb5 VP |
472 | u64 get_cpu_idle_time_us(int cpu, u64 *last_update_time) |
473 | { | |
474 | struct tick_sched *ts = &per_cpu(tick_cpu_sched, cpu); | |
09a1d34f | 475 | ktime_t now, idle; |
6378ddb5 | 476 | |
8083e4ad | 477 | if (!tick_nohz_enabled) |
478 | return -1; | |
479 | ||
09a1d34f MH |
480 | now = ktime_get(); |
481 | if (last_update_time) { | |
482 | update_ts_time_stats(cpu, ts, now, last_update_time); | |
483 | idle = ts->idle_sleeptime; | |
484 | } else { | |
485 | if (ts->idle_active && !nr_iowait_cpu(cpu)) { | |
486 | ktime_t delta = ktime_sub(now, ts->idle_entrytime); | |
487 | ||
488 | idle = ktime_add(ts->idle_sleeptime, delta); | |
489 | } else { | |
490 | idle = ts->idle_sleeptime; | |
491 | } | |
492 | } | |
493 | ||
494 | return ktime_to_us(idle); | |
8083e4ad | 495 | |
6378ddb5 | 496 | } |
8083e4ad | 497 | EXPORT_SYMBOL_GPL(get_cpu_idle_time_us); |
6378ddb5 | 498 | |
6beea0cd | 499 | /** |
0224cf4c AV |
500 | * get_cpu_iowait_time_us - get the total iowait time of a cpu |
501 | * @cpu: CPU number to query | |
09a1d34f MH |
502 | * @last_update_time: variable to store update time in. Do not update |
503 | * counters if NULL. | |
0224cf4c AV |
504 | * |
505 | * Return the cummulative iowait time (since boot) for a given | |
506 | * CPU, in microseconds. | |
507 | * | |
508 | * This time is measured via accounting rather than sampling, | |
509 | * and is as accurate as ktime_get() is. | |
510 | * | |
511 | * This function returns -1 if NOHZ is not enabled. | |
512 | */ | |
513 | u64 get_cpu_iowait_time_us(int cpu, u64 *last_update_time) | |
514 | { | |
515 | struct tick_sched *ts = &per_cpu(tick_cpu_sched, cpu); | |
09a1d34f | 516 | ktime_t now, iowait; |
0224cf4c AV |
517 | |
518 | if (!tick_nohz_enabled) | |
519 | return -1; | |
520 | ||
09a1d34f MH |
521 | now = ktime_get(); |
522 | if (last_update_time) { | |
523 | update_ts_time_stats(cpu, ts, now, last_update_time); | |
524 | iowait = ts->iowait_sleeptime; | |
525 | } else { | |
526 | if (ts->idle_active && nr_iowait_cpu(cpu) > 0) { | |
527 | ktime_t delta = ktime_sub(now, ts->idle_entrytime); | |
0224cf4c | 528 | |
09a1d34f MH |
529 | iowait = ktime_add(ts->iowait_sleeptime, delta); |
530 | } else { | |
531 | iowait = ts->iowait_sleeptime; | |
532 | } | |
533 | } | |
0224cf4c | 534 | |
09a1d34f | 535 | return ktime_to_us(iowait); |
0224cf4c AV |
536 | } |
537 | EXPORT_SYMBOL_GPL(get_cpu_iowait_time_us); | |
538 | ||
84bf1bcc FW |
539 | static ktime_t tick_nohz_stop_sched_tick(struct tick_sched *ts, |
540 | ktime_t now, int cpu) | |
79bf2bb3 | 541 | { |
280f0677 | 542 | unsigned long seq, last_jiffies, next_jiffies, delta_jiffies; |
84bf1bcc | 543 | ktime_t last_update, expires, ret = { .tv64 = 0 }; |
aa9b1630 | 544 | unsigned long rcu_delta_jiffies; |
4f86d3a8 | 545 | struct clock_event_device *dev = __get_cpu_var(tick_cpu_device).evtdev; |
98962465 | 546 | u64 time_delta; |
79bf2bb3 | 547 | |
79bf2bb3 TG |
548 | /* Read jiffies and the time when jiffies were updated last */ |
549 | do { | |
d6ad4187 | 550 | seq = read_seqbegin(&jiffies_lock); |
79bf2bb3 TG |
551 | last_update = last_jiffies_update; |
552 | last_jiffies = jiffies; | |
27185016 | 553 | time_delta = timekeeping_max_deferment(); |
d6ad4187 | 554 | } while (read_seqretry(&jiffies_lock, seq)); |
79bf2bb3 | 555 | |
74876a98 | 556 | if (rcu_needs_cpu(cpu, &rcu_delta_jiffies) || |
00b42959 | 557 | arch_needs_cpu(cpu) || irq_work_needs_cpu()) { |
3c5d92a0 | 558 | next_jiffies = last_jiffies + 1; |
6ba9b346 | 559 | delta_jiffies = 1; |
3c5d92a0 MS |
560 | } else { |
561 | /* Get the next timer wheel timer */ | |
562 | next_jiffies = get_next_timer_interrupt(last_jiffies); | |
563 | delta_jiffies = next_jiffies - last_jiffies; | |
aa9b1630 PM |
564 | if (rcu_delta_jiffies < delta_jiffies) { |
565 | next_jiffies = last_jiffies + rcu_delta_jiffies; | |
566 | delta_jiffies = rcu_delta_jiffies; | |
567 | } | |
3c5d92a0 | 568 | } |
47aa8b6c | 569 | |
79bf2bb3 | 570 | /* |
47aa8b6c IM |
571 | * Do not stop the tick, if we are only one off (or less) |
572 | * or if the cpu is required for RCU: | |
79bf2bb3 | 573 | */ |
47aa8b6c | 574 | if (!ts->tick_stopped && delta_jiffies <= 1) |
79bf2bb3 TG |
575 | goto out; |
576 | ||
577 | /* Schedule the tick, if we are at least one jiffie off */ | |
578 | if ((long)delta_jiffies >= 1) { | |
579 | ||
00147449 WR |
580 | /* |
581 | * If this cpu is the one which updates jiffies, then | |
582 | * give up the assignment and let it be taken by the | |
583 | * cpu which runs the tick timer next, which might be | |
584 | * this cpu as well. If we don't drop this here the | |
585 | * jiffies might be stale and do_timer() never | |
27185016 TG |
586 | * invoked. Keep track of the fact that it was the one |
587 | * which had the do_timer() duty last. If this cpu is | |
588 | * the one which had the do_timer() duty last, we | |
589 | * limit the sleep time to the timekeeping | |
590 | * max_deferement value which we retrieved | |
591 | * above. Otherwise we can sleep as long as we want. | |
00147449 | 592 | */ |
27185016 | 593 | if (cpu == tick_do_timer_cpu) { |
00147449 | 594 | tick_do_timer_cpu = TICK_DO_TIMER_NONE; |
27185016 TG |
595 | ts->do_timer_last = 1; |
596 | } else if (tick_do_timer_cpu != TICK_DO_TIMER_NONE) { | |
597 | time_delta = KTIME_MAX; | |
598 | ts->do_timer_last = 0; | |
599 | } else if (!ts->do_timer_last) { | |
600 | time_delta = KTIME_MAX; | |
601 | } | |
602 | ||
265f22a9 FW |
603 | #ifdef CONFIG_NO_HZ_FULL |
604 | if (!ts->inidle) { | |
605 | time_delta = min(time_delta, | |
606 | scheduler_tick_max_deferment()); | |
607 | } | |
608 | #endif | |
609 | ||
00147449 | 610 | /* |
98962465 JH |
611 | * calculate the expiry time for the next timer wheel |
612 | * timer. delta_jiffies >= NEXT_TIMER_MAX_DELTA signals | |
613 | * that there is no timer pending or at least extremely | |
614 | * far into the future (12 days for HZ=1000). In this | |
615 | * case we set the expiry to the end of time. | |
616 | */ | |
617 | if (likely(delta_jiffies < NEXT_TIMER_MAX_DELTA)) { | |
618 | /* | |
619 | * Calculate the time delta for the next timer event. | |
620 | * If the time delta exceeds the maximum time delta | |
621 | * permitted by the current clocksource then adjust | |
622 | * the time delta accordingly to ensure the | |
623 | * clocksource does not wrap. | |
624 | */ | |
625 | time_delta = min_t(u64, time_delta, | |
626 | tick_period.tv64 * delta_jiffies); | |
98962465 | 627 | } |
00147449 | 628 | |
27185016 TG |
629 | if (time_delta < KTIME_MAX) |
630 | expires = ktime_add_ns(last_update, time_delta); | |
631 | else | |
632 | expires.tv64 = KTIME_MAX; | |
00147449 | 633 | |
00147449 WR |
634 | /* Skip reprogram of event if its not changed */ |
635 | if (ts->tick_stopped && ktime_equal(expires, dev->next_event)) | |
636 | goto out; | |
637 | ||
84bf1bcc FW |
638 | ret = expires; |
639 | ||
79bf2bb3 TG |
640 | /* |
641 | * nohz_stop_sched_tick can be called several times before | |
642 | * the nohz_restart_sched_tick is called. This happens when | |
643 | * interrupts arrive which do not cause a reschedule. In the | |
644 | * first call we save the current tick time, so we can restart | |
645 | * the scheduler tick in nohz_restart_sched_tick. | |
646 | */ | |
647 | if (!ts->tick_stopped) { | |
c1cc017c | 648 | nohz_balance_enter_idle(cpu); |
5167e8d5 | 649 | calc_load_enter_idle(); |
46cb4b7c | 650 | |
f5d411c9 | 651 | ts->last_tick = hrtimer_get_expires(&ts->sched_timer); |
79bf2bb3 | 652 | ts->tick_stopped = 1; |
cb41a290 | 653 | trace_tick_stop(1, " "); |
79bf2bb3 | 654 | } |
d3ed7824 | 655 | |
eaad084b | 656 | /* |
98962465 JH |
657 | * If the expiration time == KTIME_MAX, then |
658 | * in this case we simply stop the tick timer. | |
eaad084b | 659 | */ |
98962465 | 660 | if (unlikely(expires.tv64 == KTIME_MAX)) { |
eaad084b TG |
661 | if (ts->nohz_mode == NOHZ_MODE_HIGHRES) |
662 | hrtimer_cancel(&ts->sched_timer); | |
663 | goto out; | |
664 | } | |
665 | ||
79bf2bb3 TG |
666 | if (ts->nohz_mode == NOHZ_MODE_HIGHRES) { |
667 | hrtimer_start(&ts->sched_timer, expires, | |
5c333864 | 668 | HRTIMER_MODE_ABS_PINNED); |
79bf2bb3 TG |
669 | /* Check, if the timer was already in the past */ |
670 | if (hrtimer_active(&ts->sched_timer)) | |
671 | goto out; | |
4c9dc641 | 672 | } else if (!tick_program_event(expires, 0)) |
79bf2bb3 TG |
673 | goto out; |
674 | /* | |
675 | * We are past the event already. So we crossed a | |
676 | * jiffie boundary. Update jiffies and raise the | |
677 | * softirq. | |
678 | */ | |
679 | tick_do_update_jiffies64(ktime_get()); | |
79bf2bb3 TG |
680 | } |
681 | raise_softirq_irqoff(TIMER_SOFTIRQ); | |
682 | out: | |
683 | ts->next_jiffies = next_jiffies; | |
684 | ts->last_jiffies = last_jiffies; | |
4f86d3a8 | 685 | ts->sleep_length = ktime_sub(dev->next_event, now); |
84bf1bcc FW |
686 | |
687 | return ret; | |
280f0677 FW |
688 | } |
689 | ||
5811d996 FW |
690 | static void tick_nohz_full_stop_tick(struct tick_sched *ts) |
691 | { | |
692 | #ifdef CONFIG_NO_HZ_FULL | |
693 | int cpu = smp_processor_id(); | |
694 | ||
695 | if (!tick_nohz_full_cpu(cpu) || is_idle_task(current)) | |
696 | return; | |
697 | ||
698 | if (!ts->tick_stopped && ts->nohz_mode == NOHZ_MODE_INACTIVE) | |
699 | return; | |
700 | ||
701 | if (!can_stop_full_tick()) | |
702 | return; | |
703 | ||
704 | tick_nohz_stop_sched_tick(ts, ktime_get(), cpu); | |
705 | #endif | |
706 | } | |
707 | ||
5b39939a FW |
708 | static bool can_stop_idle_tick(int cpu, struct tick_sched *ts) |
709 | { | |
710 | /* | |
711 | * If this cpu is offline and it is the one which updates | |
712 | * jiffies, then give up the assignment and let it be taken by | |
713 | * the cpu which runs the tick timer next. If we don't drop | |
714 | * this here the jiffies might be stale and do_timer() never | |
715 | * invoked. | |
716 | */ | |
717 | if (unlikely(!cpu_online(cpu))) { | |
718 | if (cpu == tick_do_timer_cpu) | |
719 | tick_do_timer_cpu = TICK_DO_TIMER_NONE; | |
f7ea0fd6 | 720 | return false; |
5b39939a FW |
721 | } |
722 | ||
723 | if (unlikely(ts->nohz_mode == NOHZ_MODE_INACTIVE)) | |
724 | return false; | |
725 | ||
726 | if (need_resched()) | |
727 | return false; | |
728 | ||
729 | if (unlikely(local_softirq_pending() && cpu_online(cpu))) { | |
730 | static int ratelimit; | |
731 | ||
803b0eba PM |
732 | if (ratelimit < 10 && |
733 | (local_softirq_pending() & SOFTIRQ_STOP_IDLE_MASK)) { | |
cfea7d7e RV |
734 | pr_warn("NOHZ: local_softirq_pending %02x\n", |
735 | (unsigned int) local_softirq_pending()); | |
5b39939a FW |
736 | ratelimit++; |
737 | } | |
738 | return false; | |
739 | } | |
740 | ||
c5bfece2 | 741 | if (have_nohz_full_mask) { |
a382bf93 FW |
742 | /* |
743 | * Keep the tick alive to guarantee timekeeping progression | |
744 | * if there are full dynticks CPUs around | |
745 | */ | |
746 | if (tick_do_timer_cpu == cpu) | |
747 | return false; | |
748 | /* | |
749 | * Boot safety: make sure the timekeeping duty has been | |
750 | * assigned before entering dyntick-idle mode, | |
751 | */ | |
752 | if (tick_do_timer_cpu == TICK_DO_TIMER_NONE) | |
753 | return false; | |
754 | } | |
755 | ||
5b39939a FW |
756 | return true; |
757 | } | |
758 | ||
19f5f736 FW |
759 | static void __tick_nohz_idle_enter(struct tick_sched *ts) |
760 | { | |
84bf1bcc | 761 | ktime_t now, expires; |
5b39939a | 762 | int cpu = smp_processor_id(); |
19f5f736 | 763 | |
5b39939a | 764 | now = tick_nohz_start_idle(cpu, ts); |
2ac0d98f | 765 | |
5b39939a FW |
766 | if (can_stop_idle_tick(cpu, ts)) { |
767 | int was_stopped = ts->tick_stopped; | |
768 | ||
769 | ts->idle_calls++; | |
84bf1bcc FW |
770 | |
771 | expires = tick_nohz_stop_sched_tick(ts, now, cpu); | |
772 | if (expires.tv64 > 0LL) { | |
773 | ts->idle_sleeps++; | |
774 | ts->idle_expires = expires; | |
775 | } | |
5b39939a FW |
776 | |
777 | if (!was_stopped && ts->tick_stopped) | |
778 | ts->idle_jiffies = ts->last_jiffies; | |
779 | } | |
280f0677 FW |
780 | } |
781 | ||
782 | /** | |
783 | * tick_nohz_idle_enter - stop the idle tick from the idle task | |
784 | * | |
785 | * When the next event is more than a tick into the future, stop the idle tick | |
786 | * Called when we start the idle loop. | |
2bbb6817 | 787 | * |
1268fbc7 | 788 | * The arch is responsible of calling: |
2bbb6817 FW |
789 | * |
790 | * - rcu_idle_enter() after its last use of RCU before the CPU is put | |
791 | * to sleep. | |
792 | * - rcu_idle_exit() before the first use of RCU after the CPU is woken up. | |
280f0677 | 793 | */ |
1268fbc7 | 794 | void tick_nohz_idle_enter(void) |
280f0677 FW |
795 | { |
796 | struct tick_sched *ts; | |
797 | ||
1268fbc7 FW |
798 | WARN_ON_ONCE(irqs_disabled()); |
799 | ||
0db49b72 LT |
800 | /* |
801 | * Update the idle state in the scheduler domain hierarchy | |
802 | * when tick_nohz_stop_sched_tick() is called from the idle loop. | |
803 | * State will be updated to busy during the first busy tick after | |
804 | * exiting idle. | |
805 | */ | |
806 | set_cpu_sd_state_idle(); | |
807 | ||
1268fbc7 FW |
808 | local_irq_disable(); |
809 | ||
280f0677 FW |
810 | ts = &__get_cpu_var(tick_cpu_sched); |
811 | /* | |
812 | * set ts->inidle unconditionally. even if the system did not | |
813 | * switch to nohz mode the cpu frequency governers rely on the | |
814 | * update of the idle time accounting in tick_nohz_start_idle(). | |
815 | */ | |
816 | ts->inidle = 1; | |
19f5f736 | 817 | __tick_nohz_idle_enter(ts); |
1268fbc7 FW |
818 | |
819 | local_irq_enable(); | |
280f0677 | 820 | } |
4dbd2771 | 821 | EXPORT_SYMBOL_GPL(tick_nohz_idle_enter); |
280f0677 FW |
822 | |
823 | /** | |
824 | * tick_nohz_irq_exit - update next tick event from interrupt exit | |
825 | * | |
826 | * When an interrupt fires while we are idle and it doesn't cause | |
827 | * a reschedule, it may still add, modify or delete a timer, enqueue | |
828 | * an RCU callback, etc... | |
829 | * So we need to re-calculate and reprogram the next tick event. | |
830 | */ | |
831 | void tick_nohz_irq_exit(void) | |
832 | { | |
833 | struct tick_sched *ts = &__get_cpu_var(tick_cpu_sched); | |
834 | ||
5811d996 FW |
835 | if (ts->inidle) { |
836 | /* Cancel the timer because CPU already waken up from the C-states*/ | |
837 | menu_hrtimer_cancel(); | |
838 | __tick_nohz_idle_enter(ts); | |
839 | } else { | |
840 | tick_nohz_full_stop_tick(ts); | |
841 | } | |
79bf2bb3 TG |
842 | } |
843 | ||
4f86d3a8 LB |
844 | /** |
845 | * tick_nohz_get_sleep_length - return the length of the current sleep | |
846 | * | |
847 | * Called from power state control code with interrupts disabled | |
848 | */ | |
849 | ktime_t tick_nohz_get_sleep_length(void) | |
850 | { | |
851 | struct tick_sched *ts = &__get_cpu_var(tick_cpu_sched); | |
852 | ||
853 | return ts->sleep_length; | |
854 | } | |
855 | ||
c34bec5a TG |
856 | static void tick_nohz_restart(struct tick_sched *ts, ktime_t now) |
857 | { | |
858 | hrtimer_cancel(&ts->sched_timer); | |
f5d411c9 | 859 | hrtimer_set_expires(&ts->sched_timer, ts->last_tick); |
c34bec5a TG |
860 | |
861 | while (1) { | |
862 | /* Forward the time to expire in the future */ | |
863 | hrtimer_forward(&ts->sched_timer, now, tick_period); | |
864 | ||
865 | if (ts->nohz_mode == NOHZ_MODE_HIGHRES) { | |
268a3dcf | 866 | hrtimer_start_expires(&ts->sched_timer, |
5c333864 | 867 | HRTIMER_MODE_ABS_PINNED); |
c34bec5a TG |
868 | /* Check, if the timer was already in the past */ |
869 | if (hrtimer_active(&ts->sched_timer)) | |
870 | break; | |
871 | } else { | |
268a3dcf TG |
872 | if (!tick_program_event( |
873 | hrtimer_get_expires(&ts->sched_timer), 0)) | |
c34bec5a TG |
874 | break; |
875 | } | |
6f103929 | 876 | /* Reread time and update jiffies */ |
c34bec5a | 877 | now = ktime_get(); |
6f103929 | 878 | tick_do_update_jiffies64(now); |
c34bec5a TG |
879 | } |
880 | } | |
881 | ||
19f5f736 | 882 | static void tick_nohz_restart_sched_tick(struct tick_sched *ts, ktime_t now) |
79bf2bb3 | 883 | { |
79bf2bb3 | 884 | /* Update jiffies first */ |
79bf2bb3 | 885 | tick_do_update_jiffies64(now); |
5aaa0b7a | 886 | update_cpu_load_nohz(); |
79bf2bb3 | 887 | |
749c8814 | 888 | calc_load_exit_idle(); |
2ac0d98f FW |
889 | touch_softlockup_watchdog(); |
890 | /* | |
891 | * Cancel the scheduled timer and restore the tick | |
892 | */ | |
893 | ts->tick_stopped = 0; | |
894 | ts->idle_exittime = now; | |
895 | ||
896 | tick_nohz_restart(ts, now); | |
897 | } | |
898 | ||
899 | static void tick_nohz_account_idle_ticks(struct tick_sched *ts) | |
900 | { | |
3f4724ea | 901 | #ifndef CONFIG_VIRT_CPU_ACCOUNTING_NATIVE |
2ac0d98f | 902 | unsigned long ticks; |
3f4724ea FW |
903 | |
904 | if (vtime_accounting_enabled()) | |
905 | return; | |
79bf2bb3 TG |
906 | /* |
907 | * We stopped the tick in idle. Update process times would miss the | |
908 | * time we slept as update_process_times does only a 1 tick | |
909 | * accounting. Enforce that this is accounted to idle ! | |
910 | */ | |
911 | ticks = jiffies - ts->idle_jiffies; | |
912 | /* | |
913 | * We might be one off. Do not randomly account a huge number of ticks! | |
914 | */ | |
79741dd3 MS |
915 | if (ticks && ticks < LONG_MAX) |
916 | account_idle_ticks(ticks); | |
917 | #endif | |
19f5f736 FW |
918 | } |
919 | ||
79bf2bb3 | 920 | /** |
280f0677 | 921 | * tick_nohz_idle_exit - restart the idle tick from the idle task |
79bf2bb3 TG |
922 | * |
923 | * Restart the idle tick when the CPU is woken up from idle | |
280f0677 FW |
924 | * This also exit the RCU extended quiescent state. The CPU |
925 | * can use RCU again after this function is called. | |
79bf2bb3 | 926 | */ |
280f0677 | 927 | void tick_nohz_idle_exit(void) |
79bf2bb3 TG |
928 | { |
929 | int cpu = smp_processor_id(); | |
930 | struct tick_sched *ts = &per_cpu(tick_cpu_sched, cpu); | |
6378ddb5 | 931 | ktime_t now; |
79bf2bb3 | 932 | |
6378ddb5 | 933 | local_irq_disable(); |
2bbb6817 | 934 | |
15f827be FW |
935 | WARN_ON_ONCE(!ts->inidle); |
936 | ||
937 | ts->inidle = 0; | |
938 | ||
69a37bea YS |
939 | /* Cancel the timer because CPU already waken up from the C-states*/ |
940 | menu_hrtimer_cancel(); | |
15f827be | 941 | if (ts->idle_active || ts->tick_stopped) |
eed3b9cf MS |
942 | now = ktime_get(); |
943 | ||
944 | if (ts->idle_active) | |
945 | tick_nohz_stop_idle(cpu, now); | |
6378ddb5 | 946 | |
2ac0d98f | 947 | if (ts->tick_stopped) { |
19f5f736 | 948 | tick_nohz_restart_sched_tick(ts, now); |
2ac0d98f | 949 | tick_nohz_account_idle_ticks(ts); |
6378ddb5 | 950 | } |
79bf2bb3 | 951 | |
79bf2bb3 TG |
952 | local_irq_enable(); |
953 | } | |
4dbd2771 | 954 | EXPORT_SYMBOL_GPL(tick_nohz_idle_exit); |
79bf2bb3 TG |
955 | |
956 | static int tick_nohz_reprogram(struct tick_sched *ts, ktime_t now) | |
957 | { | |
958 | hrtimer_forward(&ts->sched_timer, now, tick_period); | |
cc584b21 | 959 | return tick_program_event(hrtimer_get_expires(&ts->sched_timer), 0); |
79bf2bb3 TG |
960 | } |
961 | ||
962 | /* | |
963 | * The nohz low res interrupt handler | |
964 | */ | |
965 | static void tick_nohz_handler(struct clock_event_device *dev) | |
966 | { | |
967 | struct tick_sched *ts = &__get_cpu_var(tick_cpu_sched); | |
968 | struct pt_regs *regs = get_irq_regs(); | |
969 | ktime_t now = ktime_get(); | |
970 | ||
971 | dev->next_event.tv64 = KTIME_MAX; | |
972 | ||
5bb96226 | 973 | tick_sched_do_timer(now); |
9e8f559b | 974 | tick_sched_handle(ts, regs); |
79bf2bb3 | 975 | |
79bf2bb3 TG |
976 | while (tick_nohz_reprogram(ts, now)) { |
977 | now = ktime_get(); | |
978 | tick_do_update_jiffies64(now); | |
979 | } | |
980 | } | |
981 | ||
982 | /** | |
983 | * tick_nohz_switch_to_nohz - switch to nohz mode | |
984 | */ | |
985 | static void tick_nohz_switch_to_nohz(void) | |
986 | { | |
987 | struct tick_sched *ts = &__get_cpu_var(tick_cpu_sched); | |
988 | ktime_t next; | |
989 | ||
990 | if (!tick_nohz_enabled) | |
991 | return; | |
992 | ||
993 | local_irq_disable(); | |
994 | if (tick_switch_to_oneshot(tick_nohz_handler)) { | |
995 | local_irq_enable(); | |
996 | return; | |
997 | } | |
998 | ||
999 | ts->nohz_mode = NOHZ_MODE_LOWRES; | |
1000 | ||
1001 | /* | |
1002 | * Recycle the hrtimer in ts, so we can share the | |
1003 | * hrtimer_forward with the highres code. | |
1004 | */ | |
1005 | hrtimer_init(&ts->sched_timer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS); | |
1006 | /* Get the next period */ | |
1007 | next = tick_init_jiffy_update(); | |
1008 | ||
1009 | for (;;) { | |
cc584b21 | 1010 | hrtimer_set_expires(&ts->sched_timer, next); |
79bf2bb3 TG |
1011 | if (!tick_program_event(next, 0)) |
1012 | break; | |
1013 | next = ktime_add(next, tick_period); | |
1014 | } | |
1015 | local_irq_enable(); | |
79bf2bb3 TG |
1016 | } |
1017 | ||
fb02fbc1 TG |
1018 | /* |
1019 | * When NOHZ is enabled and the tick is stopped, we need to kick the | |
1020 | * tick timer from irq_enter() so that the jiffies update is kept | |
1021 | * alive during long running softirqs. That's ugly as hell, but | |
1022 | * correctness is key even if we need to fix the offending softirq in | |
1023 | * the first place. | |
1024 | * | |
1025 | * Note, this is different to tick_nohz_restart. We just kick the | |
1026 | * timer and do not touch the other magic bits which need to be done | |
1027 | * when idle is left. | |
1028 | */ | |
eed3b9cf | 1029 | static void tick_nohz_kick_tick(int cpu, ktime_t now) |
fb02fbc1 | 1030 | { |
ae99286b TG |
1031 | #if 0 |
1032 | /* Switch back to 2.6.27 behaviour */ | |
1033 | ||
fb02fbc1 | 1034 | struct tick_sched *ts = &per_cpu(tick_cpu_sched, cpu); |
eed3b9cf | 1035 | ktime_t delta; |
fb02fbc1 | 1036 | |
c4bd822e TG |
1037 | /* |
1038 | * Do not touch the tick device, when the next expiry is either | |
1039 | * already reached or less/equal than the tick period. | |
1040 | */ | |
268a3dcf | 1041 | delta = ktime_sub(hrtimer_get_expires(&ts->sched_timer), now); |
c4bd822e TG |
1042 | if (delta.tv64 <= tick_period.tv64) |
1043 | return; | |
1044 | ||
1045 | tick_nohz_restart(ts, now); | |
ae99286b | 1046 | #endif |
fb02fbc1 TG |
1047 | } |
1048 | ||
eed3b9cf MS |
1049 | static inline void tick_check_nohz(int cpu) |
1050 | { | |
1051 | struct tick_sched *ts = &per_cpu(tick_cpu_sched, cpu); | |
1052 | ktime_t now; | |
1053 | ||
1054 | if (!ts->idle_active && !ts->tick_stopped) | |
1055 | return; | |
1056 | now = ktime_get(); | |
1057 | if (ts->idle_active) | |
1058 | tick_nohz_stop_idle(cpu, now); | |
1059 | if (ts->tick_stopped) { | |
1060 | tick_nohz_update_jiffies(now); | |
1061 | tick_nohz_kick_tick(cpu, now); | |
1062 | } | |
1063 | } | |
1064 | ||
79bf2bb3 TG |
1065 | #else |
1066 | ||
1067 | static inline void tick_nohz_switch_to_nohz(void) { } | |
eed3b9cf | 1068 | static inline void tick_check_nohz(int cpu) { } |
79bf2bb3 | 1069 | |
3451d024 | 1070 | #endif /* CONFIG_NO_HZ_COMMON */ |
79bf2bb3 | 1071 | |
719254fa TG |
1072 | /* |
1073 | * Called from irq_enter to notify about the possible interruption of idle() | |
1074 | */ | |
1075 | void tick_check_idle(int cpu) | |
1076 | { | |
fb02fbc1 | 1077 | tick_check_oneshot_broadcast(cpu); |
eed3b9cf | 1078 | tick_check_nohz(cpu); |
719254fa TG |
1079 | } |
1080 | ||
79bf2bb3 TG |
1081 | /* |
1082 | * High resolution timer specific code | |
1083 | */ | |
1084 | #ifdef CONFIG_HIGH_RES_TIMERS | |
1085 | /* | |
4c9dc641 | 1086 | * We rearm the timer until we get disabled by the idle code. |
351f181f | 1087 | * Called with interrupts disabled. |
79bf2bb3 TG |
1088 | */ |
1089 | static enum hrtimer_restart tick_sched_timer(struct hrtimer *timer) | |
1090 | { | |
1091 | struct tick_sched *ts = | |
1092 | container_of(timer, struct tick_sched, sched_timer); | |
79bf2bb3 TG |
1093 | struct pt_regs *regs = get_irq_regs(); |
1094 | ktime_t now = ktime_get(); | |
d3ed7824 | 1095 | |
5bb96226 | 1096 | tick_sched_do_timer(now); |
79bf2bb3 TG |
1097 | |
1098 | /* | |
1099 | * Do not call, when we are not in irq context and have | |
1100 | * no valid regs pointer | |
1101 | */ | |
9e8f559b FW |
1102 | if (regs) |
1103 | tick_sched_handle(ts, regs); | |
79bf2bb3 | 1104 | |
79bf2bb3 TG |
1105 | hrtimer_forward(timer, now, tick_period); |
1106 | ||
1107 | return HRTIMER_RESTART; | |
1108 | } | |
1109 | ||
5307c955 MG |
1110 | static int sched_skew_tick; |
1111 | ||
62cf20b3 TG |
1112 | static int __init skew_tick(char *str) |
1113 | { | |
1114 | get_option(&str, &sched_skew_tick); | |
1115 | ||
1116 | return 0; | |
1117 | } | |
1118 | early_param("skew_tick", skew_tick); | |
1119 | ||
79bf2bb3 TG |
1120 | /** |
1121 | * tick_setup_sched_timer - setup the tick emulation timer | |
1122 | */ | |
1123 | void tick_setup_sched_timer(void) | |
1124 | { | |
1125 | struct tick_sched *ts = &__get_cpu_var(tick_cpu_sched); | |
1126 | ktime_t now = ktime_get(); | |
1127 | ||
1128 | /* | |
1129 | * Emulate tick processing via per-CPU hrtimers: | |
1130 | */ | |
1131 | hrtimer_init(&ts->sched_timer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS); | |
1132 | ts->sched_timer.function = tick_sched_timer; | |
79bf2bb3 | 1133 | |
3704540b | 1134 | /* Get the next period (per cpu) */ |
cc584b21 | 1135 | hrtimer_set_expires(&ts->sched_timer, tick_init_jiffy_update()); |
79bf2bb3 | 1136 | |
9c3f9e28 | 1137 | /* Offset the tick to avert jiffies_lock contention. */ |
5307c955 MG |
1138 | if (sched_skew_tick) { |
1139 | u64 offset = ktime_to_ns(tick_period) >> 1; | |
1140 | do_div(offset, num_possible_cpus()); | |
1141 | offset *= smp_processor_id(); | |
1142 | hrtimer_add_expires_ns(&ts->sched_timer, offset); | |
1143 | } | |
1144 | ||
79bf2bb3 TG |
1145 | for (;;) { |
1146 | hrtimer_forward(&ts->sched_timer, now, tick_period); | |
5c333864 AB |
1147 | hrtimer_start_expires(&ts->sched_timer, |
1148 | HRTIMER_MODE_ABS_PINNED); | |
79bf2bb3 TG |
1149 | /* Check, if the timer was already in the past */ |
1150 | if (hrtimer_active(&ts->sched_timer)) | |
1151 | break; | |
1152 | now = ktime_get(); | |
1153 | } | |
1154 | ||
3451d024 | 1155 | #ifdef CONFIG_NO_HZ_COMMON |
29c158e8 | 1156 | if (tick_nohz_enabled) |
79bf2bb3 TG |
1157 | ts->nohz_mode = NOHZ_MODE_HIGHRES; |
1158 | #endif | |
1159 | } | |
3c4fbe5e | 1160 | #endif /* HIGH_RES_TIMERS */ |
79bf2bb3 | 1161 | |
3451d024 | 1162 | #if defined CONFIG_NO_HZ_COMMON || defined CONFIG_HIGH_RES_TIMERS |
79bf2bb3 TG |
1163 | void tick_cancel_sched_timer(int cpu) |
1164 | { | |
1165 | struct tick_sched *ts = &per_cpu(tick_cpu_sched, cpu); | |
1166 | ||
3c4fbe5e | 1167 | # ifdef CONFIG_HIGH_RES_TIMERS |
79bf2bb3 TG |
1168 | if (ts->sched_timer.base) |
1169 | hrtimer_cancel(&ts->sched_timer); | |
3c4fbe5e | 1170 | # endif |
a7901766 | 1171 | |
4b0c0f29 | 1172 | memset(ts, 0, sizeof(*ts)); |
79bf2bb3 | 1173 | } |
3c4fbe5e | 1174 | #endif |
79bf2bb3 TG |
1175 | |
1176 | /** | |
1177 | * Async notification about clocksource changes | |
1178 | */ | |
1179 | void tick_clock_notify(void) | |
1180 | { | |
1181 | int cpu; | |
1182 | ||
1183 | for_each_possible_cpu(cpu) | |
1184 | set_bit(0, &per_cpu(tick_cpu_sched, cpu).check_clocks); | |
1185 | } | |
1186 | ||
1187 | /* | |
1188 | * Async notification about clock event changes | |
1189 | */ | |
1190 | void tick_oneshot_notify(void) | |
1191 | { | |
1192 | struct tick_sched *ts = &__get_cpu_var(tick_cpu_sched); | |
1193 | ||
1194 | set_bit(0, &ts->check_clocks); | |
1195 | } | |
1196 | ||
1197 | /** | |
1198 | * Check, if a change happened, which makes oneshot possible. | |
1199 | * | |
1200 | * Called cyclic from the hrtimer softirq (driven by the timer | |
1201 | * softirq) allow_nohz signals, that we can switch into low-res nohz | |
1202 | * mode, because high resolution timers are disabled (either compile | |
1203 | * or runtime). | |
1204 | */ | |
1205 | int tick_check_oneshot_change(int allow_nohz) | |
1206 | { | |
1207 | struct tick_sched *ts = &__get_cpu_var(tick_cpu_sched); | |
1208 | ||
1209 | if (!test_and_clear_bit(0, &ts->check_clocks)) | |
1210 | return 0; | |
1211 | ||
1212 | if (ts->nohz_mode != NOHZ_MODE_INACTIVE) | |
1213 | return 0; | |
1214 | ||
cf4fc6cb | 1215 | if (!timekeeping_valid_for_hres() || !tick_is_oneshot_available()) |
79bf2bb3 TG |
1216 | return 0; |
1217 | ||
1218 | if (!allow_nohz) | |
1219 | return 1; | |
1220 | ||
1221 | tick_nohz_switch_to_nohz(); | |
1222 | return 0; | |
1223 | } |