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Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001/*
2 * linux/kernel/hrtimer.c
3 *
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08004 * Copyright(C) 2005-2006, Thomas Gleixner <tglx@linutronix.de>
Thomas Gleixner79bf2bb2007-02-16 01:28:03 -08005 * Copyright(C) 2005-2007, Red Hat, Inc., Ingo Molnar
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08006 * Copyright(C) 2006-2007 Timesys Corp., Thomas Gleixner
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08007 *
8 * High-resolution kernel timers
9 *
10 * In contrast to the low-resolution timeout API implemented in
11 * kernel/timer.c, hrtimers provide finer resolution and accuracy
12 * depending on system configuration and capabilities.
13 *
14 * These timers are currently used for:
15 * - itimers
16 * - POSIX timers
17 * - nanosleep
18 * - precise in-kernel timing
19 *
20 * Started by: Thomas Gleixner and Ingo Molnar
21 *
22 * Credits:
23 * based on kernel/timer.c
24 *
Thomas Gleixner66188fa2006-02-01 03:05:13 -080025 * Help, testing, suggestions, bugfixes, improvements were
26 * provided by:
27 *
28 * George Anzinger, Andrew Morton, Steven Rostedt, Roman Zippel
29 * et. al.
30 *
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080031 * For licencing details see kernel-base/COPYING
32 */
33
34#include <linux/cpu.h>
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -080035#include <linux/irq.h>
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080036#include <linux/module.h>
37#include <linux/percpu.h>
38#include <linux/hrtimer.h>
39#include <linux/notifier.h>
40#include <linux/syscalls.h>
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -080041#include <linux/kallsyms.h>
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080042#include <linux/interrupt.h>
Thomas Gleixner79bf2bb2007-02-16 01:28:03 -080043#include <linux/tick.h>
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -080044#include <linux/seq_file.h>
45#include <linux/err.h>
Thomas Gleixner237fc6e2008-04-30 00:55:04 -070046#include <linux/debugobjects.h>
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080047
48#include <asm/uaccess.h>
49
50/**
51 * ktime_get - get the monotonic time in ktime_t format
52 *
53 * returns the time in ktime_t format
54 */
Thomas Gleixnerd316c572007-02-16 01:28:00 -080055ktime_t ktime_get(void)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080056{
57 struct timespec now;
58
59 ktime_get_ts(&now);
60
61 return timespec_to_ktime(now);
62}
Patrick McHardy641b9e02007-03-16 01:18:42 -070063EXPORT_SYMBOL_GPL(ktime_get);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080064
65/**
66 * ktime_get_real - get the real (wall-) time in ktime_t format
67 *
68 * returns the time in ktime_t format
69 */
Thomas Gleixnerd316c572007-02-16 01:28:00 -080070ktime_t ktime_get_real(void)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080071{
72 struct timespec now;
73
74 getnstimeofday(&now);
75
76 return timespec_to_ktime(now);
77}
78
79EXPORT_SYMBOL_GPL(ktime_get_real);
80
81/*
82 * The timer bases:
George Anzinger7978672c2006-02-01 03:05:11 -080083 *
84 * Note: If we want to add new timer bases, we have to skip the two
85 * clock ids captured by the cpu-timers. We do this by holding empty
86 * entries rather than doing math adjustment of the clock ids.
87 * This ensures that we capture erroneous accesses to these clock ids
88 * rather than moving them into the range of valid clock id's.
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080089 */
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -080090DEFINE_PER_CPU(struct hrtimer_cpu_base, hrtimer_bases) =
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080091{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -080092
93 .clock_base =
Thomas Gleixnerc0a31322006-01-09 20:52:32 -080094 {
Thomas Gleixner3c8aa392007-02-16 01:27:50 -080095 {
96 .index = CLOCK_REALTIME,
97 .get_time = &ktime_get_real,
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -080098 .resolution = KTIME_LOW_RES,
Thomas Gleixner3c8aa392007-02-16 01:27:50 -080099 },
100 {
101 .index = CLOCK_MONOTONIC,
102 .get_time = &ktime_get,
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800103 .resolution = KTIME_LOW_RES,
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800104 },
105 }
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800106};
107
108/**
109 * ktime_get_ts - get the monotonic clock in timespec format
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800110 * @ts: pointer to timespec variable
111 *
112 * The function calculates the monotonic clock from the realtime
113 * clock and the wall_to_monotonic offset and stores the result
Robert P. J. Day72fd4a32007-02-10 01:45:59 -0800114 * in normalized timespec format in the variable pointed to by @ts.
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800115 */
116void ktime_get_ts(struct timespec *ts)
117{
118 struct timespec tomono;
119 unsigned long seq;
120
121 do {
122 seq = read_seqbegin(&xtime_lock);
123 getnstimeofday(ts);
124 tomono = wall_to_monotonic;
125
126 } while (read_seqretry(&xtime_lock, seq));
127
128 set_normalized_timespec(ts, ts->tv_sec + tomono.tv_sec,
129 ts->tv_nsec + tomono.tv_nsec);
130}
Matt Helsley69778e32006-01-09 20:52:39 -0800131EXPORT_SYMBOL_GPL(ktime_get_ts);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800132
133/*
Thomas Gleixner92127c72006-03-26 01:38:05 -0800134 * Get the coarse grained time at the softirq based on xtime and
135 * wall_to_monotonic.
136 */
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800137static void hrtimer_get_softirq_time(struct hrtimer_cpu_base *base)
Thomas Gleixner92127c72006-03-26 01:38:05 -0800138{
139 ktime_t xtim, tomono;
Thomas Gleixnerad28d942007-03-16 13:38:21 -0800140 struct timespec xts, tom;
Thomas Gleixner92127c72006-03-26 01:38:05 -0800141 unsigned long seq;
142
143 do {
144 seq = read_seqbegin(&xtime_lock);
john stultz2c6b47d2007-07-24 17:47:43 -0700145 xts = current_kernel_time();
Thomas Gleixnerad28d942007-03-16 13:38:21 -0800146 tom = wall_to_monotonic;
Thomas Gleixner92127c72006-03-26 01:38:05 -0800147 } while (read_seqretry(&xtime_lock, seq));
148
john stultzf4304ab2007-02-16 01:27:26 -0800149 xtim = timespec_to_ktime(xts);
Thomas Gleixnerad28d942007-03-16 13:38:21 -0800150 tomono = timespec_to_ktime(tom);
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800151 base->clock_base[CLOCK_REALTIME].softirq_time = xtim;
152 base->clock_base[CLOCK_MONOTONIC].softirq_time =
153 ktime_add(xtim, tomono);
Thomas Gleixner92127c72006-03-26 01:38:05 -0800154}
155
156/*
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800157 * Functions and macros which are different for UP/SMP systems are kept in a
158 * single place
159 */
160#ifdef CONFIG_SMP
161
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800162/*
163 * We are using hashed locking: holding per_cpu(hrtimer_bases)[n].lock
164 * means that all timers which are tied to this base via timer->base are
165 * locked, and the base itself is locked too.
166 *
167 * So __run_timers/migrate_timers can safely modify all timers which could
168 * be found on the lists/queues.
169 *
170 * When the timer's base is locked, and the timer removed from list, it is
171 * possible to set timer->base = NULL and drop the lock: the timer remains
172 * locked.
173 */
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800174static
175struct hrtimer_clock_base *lock_hrtimer_base(const struct hrtimer *timer,
176 unsigned long *flags)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800177{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800178 struct hrtimer_clock_base *base;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800179
180 for (;;) {
181 base = timer->base;
182 if (likely(base != NULL)) {
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800183 spin_lock_irqsave(&base->cpu_base->lock, *flags);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800184 if (likely(base == timer->base))
185 return base;
186 /* The timer has migrated to another CPU: */
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800187 spin_unlock_irqrestore(&base->cpu_base->lock, *flags);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800188 }
189 cpu_relax();
190 }
191}
192
193/*
194 * Switch the timer base to the current CPU when possible.
195 */
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800196static inline struct hrtimer_clock_base *
197switch_hrtimer_base(struct hrtimer *timer, struct hrtimer_clock_base *base)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800198{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800199 struct hrtimer_clock_base *new_base;
200 struct hrtimer_cpu_base *new_cpu_base;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800201
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800202 new_cpu_base = &__get_cpu_var(hrtimer_bases);
203 new_base = &new_cpu_base->clock_base[base->index];
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800204
205 if (base != new_base) {
206 /*
207 * We are trying to schedule the timer on the local CPU.
208 * However we can't change timer's base while it is running,
209 * so we keep it on the same CPU. No hassle vs. reprogramming
210 * the event source in the high resolution case. The softirq
211 * code will take care of this when the timer function has
212 * completed. There is no conflict as we hold the lock until
213 * the timer is enqueued.
214 */
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800215 if (unlikely(hrtimer_callback_running(timer)))
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800216 return base;
217
218 /* See the comment in lock_timer_base() */
219 timer->base = NULL;
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800220 spin_unlock(&base->cpu_base->lock);
221 spin_lock(&new_base->cpu_base->lock);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800222 timer->base = new_base;
223 }
224 return new_base;
225}
226
227#else /* CONFIG_SMP */
228
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800229static inline struct hrtimer_clock_base *
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800230lock_hrtimer_base(const struct hrtimer *timer, unsigned long *flags)
231{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800232 struct hrtimer_clock_base *base = timer->base;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800233
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800234 spin_lock_irqsave(&base->cpu_base->lock, *flags);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800235
236 return base;
237}
238
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800239# define switch_hrtimer_base(t, b) (b)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800240
241#endif /* !CONFIG_SMP */
242
243/*
244 * Functions for the union type storage format of ktime_t which are
245 * too large for inlining:
246 */
247#if BITS_PER_LONG < 64
248# ifndef CONFIG_KTIME_SCALAR
249/**
250 * ktime_add_ns - Add a scalar nanoseconds value to a ktime_t variable
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800251 * @kt: addend
252 * @nsec: the scalar nsec value to add
253 *
254 * Returns the sum of kt and nsec in ktime_t format
255 */
256ktime_t ktime_add_ns(const ktime_t kt, u64 nsec)
257{
258 ktime_t tmp;
259
260 if (likely(nsec < NSEC_PER_SEC)) {
261 tmp.tv64 = nsec;
262 } else {
263 unsigned long rem = do_div(nsec, NSEC_PER_SEC);
264
265 tmp = ktime_set((long)nsec, rem);
266 }
267
268 return ktime_add(kt, tmp);
269}
David Howellsb8b8fd22007-04-27 15:31:24 -0700270
271EXPORT_SYMBOL_GPL(ktime_add_ns);
Arnaldo Carvalho de Meloa2723782007-08-19 17:16:05 -0700272
273/**
274 * ktime_sub_ns - Subtract a scalar nanoseconds value from a ktime_t variable
275 * @kt: minuend
276 * @nsec: the scalar nsec value to subtract
277 *
278 * Returns the subtraction of @nsec from @kt in ktime_t format
279 */
280ktime_t ktime_sub_ns(const ktime_t kt, u64 nsec)
281{
282 ktime_t tmp;
283
284 if (likely(nsec < NSEC_PER_SEC)) {
285 tmp.tv64 = nsec;
286 } else {
287 unsigned long rem = do_div(nsec, NSEC_PER_SEC);
288
289 tmp = ktime_set((long)nsec, rem);
290 }
291
292 return ktime_sub(kt, tmp);
293}
294
295EXPORT_SYMBOL_GPL(ktime_sub_ns);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800296# endif /* !CONFIG_KTIME_SCALAR */
297
298/*
299 * Divide a ktime value by a nanosecond value
300 */
Davide Libenzi4d672e72008-02-04 22:27:26 -0800301u64 ktime_divns(const ktime_t kt, s64 div)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800302{
Carlos R. Mafra900cfa42008-05-22 19:25:11 -0300303 u64 dclc;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800304 int sft = 0;
305
Carlos R. Mafra900cfa42008-05-22 19:25:11 -0300306 dclc = ktime_to_ns(kt);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800307 /* Make sure the divisor is less than 2^32: */
308 while (div >> 32) {
309 sft++;
310 div >>= 1;
311 }
312 dclc >>= sft;
313 do_div(dclc, (unsigned long) div);
314
Davide Libenzi4d672e72008-02-04 22:27:26 -0800315 return dclc;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800316}
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800317#endif /* BITS_PER_LONG >= 64 */
318
Peter Zijlstrad3d74452008-01-25 21:08:31 +0100319/*
Thomas Gleixner5a7780e2008-02-13 09:20:43 +0100320 * Add two ktime values and do a safety check for overflow:
321 */
322ktime_t ktime_add_safe(const ktime_t lhs, const ktime_t rhs)
323{
324 ktime_t res = ktime_add(lhs, rhs);
325
326 /*
327 * We use KTIME_SEC_MAX here, the maximum timeout which we can
328 * return to user space in a timespec:
329 */
330 if (res.tv64 < 0 || res.tv64 < lhs.tv64 || res.tv64 < rhs.tv64)
331 res = ktime_set(KTIME_SEC_MAX, 0);
332
333 return res;
334}
335
Thomas Gleixner237fc6e2008-04-30 00:55:04 -0700336#ifdef CONFIG_DEBUG_OBJECTS_TIMERS
337
338static struct debug_obj_descr hrtimer_debug_descr;
339
340/*
341 * fixup_init is called when:
342 * - an active object is initialized
343 */
344static int hrtimer_fixup_init(void *addr, enum debug_obj_state state)
345{
346 struct hrtimer *timer = addr;
347
348 switch (state) {
349 case ODEBUG_STATE_ACTIVE:
350 hrtimer_cancel(timer);
351 debug_object_init(timer, &hrtimer_debug_descr);
352 return 1;
353 default:
354 return 0;
355 }
356}
357
358/*
359 * fixup_activate is called when:
360 * - an active object is activated
361 * - an unknown object is activated (might be a statically initialized object)
362 */
363static int hrtimer_fixup_activate(void *addr, enum debug_obj_state state)
364{
365 switch (state) {
366
367 case ODEBUG_STATE_NOTAVAILABLE:
368 WARN_ON_ONCE(1);
369 return 0;
370
371 case ODEBUG_STATE_ACTIVE:
372 WARN_ON(1);
373
374 default:
375 return 0;
376 }
377}
378
379/*
380 * fixup_free is called when:
381 * - an active object is freed
382 */
383static int hrtimer_fixup_free(void *addr, enum debug_obj_state state)
384{
385 struct hrtimer *timer = addr;
386
387 switch (state) {
388 case ODEBUG_STATE_ACTIVE:
389 hrtimer_cancel(timer);
390 debug_object_free(timer, &hrtimer_debug_descr);
391 return 1;
392 default:
393 return 0;
394 }
395}
396
397static struct debug_obj_descr hrtimer_debug_descr = {
398 .name = "hrtimer",
399 .fixup_init = hrtimer_fixup_init,
400 .fixup_activate = hrtimer_fixup_activate,
401 .fixup_free = hrtimer_fixup_free,
402};
403
404static inline void debug_hrtimer_init(struct hrtimer *timer)
405{
406 debug_object_init(timer, &hrtimer_debug_descr);
407}
408
409static inline void debug_hrtimer_activate(struct hrtimer *timer)
410{
411 debug_object_activate(timer, &hrtimer_debug_descr);
412}
413
414static inline void debug_hrtimer_deactivate(struct hrtimer *timer)
415{
416 debug_object_deactivate(timer, &hrtimer_debug_descr);
417}
418
419static inline void debug_hrtimer_free(struct hrtimer *timer)
420{
421 debug_object_free(timer, &hrtimer_debug_descr);
422}
423
424static void __hrtimer_init(struct hrtimer *timer, clockid_t clock_id,
425 enum hrtimer_mode mode);
426
427void hrtimer_init_on_stack(struct hrtimer *timer, clockid_t clock_id,
428 enum hrtimer_mode mode)
429{
430 debug_object_init_on_stack(timer, &hrtimer_debug_descr);
431 __hrtimer_init(timer, clock_id, mode);
432}
433
434void destroy_hrtimer_on_stack(struct hrtimer *timer)
435{
436 debug_object_free(timer, &hrtimer_debug_descr);
437}
438
439#else
440static inline void debug_hrtimer_init(struct hrtimer *timer) { }
441static inline void debug_hrtimer_activate(struct hrtimer *timer) { }
442static inline void debug_hrtimer_deactivate(struct hrtimer *timer) { }
443#endif
444
Thomas Gleixner5a7780e2008-02-13 09:20:43 +0100445/*
Peter Zijlstrad3d74452008-01-25 21:08:31 +0100446 * Check, whether the timer is on the callback pending list
447 */
448static inline int hrtimer_cb_pending(const struct hrtimer *timer)
449{
450 return timer->state & HRTIMER_STATE_PENDING;
451}
452
453/*
454 * Remove a timer from the callback pending list
455 */
456static inline void hrtimer_remove_cb_pending(struct hrtimer *timer)
457{
458 list_del_init(&timer->cb_entry);
459}
460
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800461/* High resolution timer related functions */
462#ifdef CONFIG_HIGH_RES_TIMERS
463
464/*
465 * High resolution timer enabled ?
466 */
467static int hrtimer_hres_enabled __read_mostly = 1;
468
469/*
470 * Enable / Disable high resolution mode
471 */
472static int __init setup_hrtimer_hres(char *str)
473{
474 if (!strcmp(str, "off"))
475 hrtimer_hres_enabled = 0;
476 else if (!strcmp(str, "on"))
477 hrtimer_hres_enabled = 1;
478 else
479 return 0;
480 return 1;
481}
482
483__setup("highres=", setup_hrtimer_hres);
484
485/*
486 * hrtimer_high_res_enabled - query, if the highres mode is enabled
487 */
488static inline int hrtimer_is_hres_enabled(void)
489{
490 return hrtimer_hres_enabled;
491}
492
493/*
494 * Is the high resolution mode active ?
495 */
496static inline int hrtimer_hres_active(void)
497{
498 return __get_cpu_var(hrtimer_bases).hres_active;
499}
500
501/*
502 * Reprogram the event source with checking both queues for the
503 * next event
504 * Called with interrupts disabled and base->lock held
505 */
506static void hrtimer_force_reprogram(struct hrtimer_cpu_base *cpu_base)
507{
508 int i;
509 struct hrtimer_clock_base *base = cpu_base->clock_base;
510 ktime_t expires;
511
512 cpu_base->expires_next.tv64 = KTIME_MAX;
513
514 for (i = 0; i < HRTIMER_MAX_CLOCK_BASES; i++, base++) {
515 struct hrtimer *timer;
516
517 if (!base->first)
518 continue;
519 timer = rb_entry(base->first, struct hrtimer, node);
520 expires = ktime_sub(timer->expires, base->offset);
521 if (expires.tv64 < cpu_base->expires_next.tv64)
522 cpu_base->expires_next = expires;
523 }
524
525 if (cpu_base->expires_next.tv64 != KTIME_MAX)
526 tick_program_event(cpu_base->expires_next, 1);
527}
528
529/*
530 * Shared reprogramming for clock_realtime and clock_monotonic
531 *
532 * When a timer is enqueued and expires earlier than the already enqueued
533 * timers, we have to check, whether it expires earlier than the timer for
534 * which the clock event device was armed.
535 *
536 * Called with interrupts disabled and base->cpu_base.lock held
537 */
538static int hrtimer_reprogram(struct hrtimer *timer,
539 struct hrtimer_clock_base *base)
540{
541 ktime_t *expires_next = &__get_cpu_var(hrtimer_bases).expires_next;
542 ktime_t expires = ktime_sub(timer->expires, base->offset);
543 int res;
544
Thomas Gleixner63070a72008-02-14 00:58:36 +0100545 WARN_ON_ONCE(timer->expires.tv64 < 0);
546
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800547 /*
548 * When the callback is running, we do not reprogram the clock event
549 * device. The timer callback is either running on a different CPU or
Robert P. J. Day3a4fa0a2007-10-19 23:10:43 +0200550 * the callback is executed in the hrtimer_interrupt context. The
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800551 * reprogramming is handled either by the softirq, which called the
552 * callback or at the end of the hrtimer_interrupt.
553 */
554 if (hrtimer_callback_running(timer))
555 return 0;
556
Thomas Gleixner63070a72008-02-14 00:58:36 +0100557 /*
558 * CLOCK_REALTIME timer might be requested with an absolute
559 * expiry time which is less than base->offset. Nothing wrong
560 * about that, just avoid to call into the tick code, which
561 * has now objections against negative expiry values.
562 */
563 if (expires.tv64 < 0)
564 return -ETIME;
565
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800566 if (expires.tv64 >= expires_next->tv64)
567 return 0;
568
569 /*
570 * Clockevents returns -ETIME, when the event was in the past.
571 */
572 res = tick_program_event(expires, 0);
573 if (!IS_ERR_VALUE(res))
574 *expires_next = expires;
575 return res;
576}
577
578
579/*
580 * Retrigger next event is called after clock was set
581 *
582 * Called with interrupts disabled via on_each_cpu()
583 */
584static void retrigger_next_event(void *arg)
585{
586 struct hrtimer_cpu_base *base;
587 struct timespec realtime_offset;
588 unsigned long seq;
589
590 if (!hrtimer_hres_active())
591 return;
592
593 do {
594 seq = read_seqbegin(&xtime_lock);
595 set_normalized_timespec(&realtime_offset,
596 -wall_to_monotonic.tv_sec,
597 -wall_to_monotonic.tv_nsec);
598 } while (read_seqretry(&xtime_lock, seq));
599
600 base = &__get_cpu_var(hrtimer_bases);
601
602 /* Adjust CLOCK_REALTIME offset */
603 spin_lock(&base->lock);
604 base->clock_base[CLOCK_REALTIME].offset =
605 timespec_to_ktime(realtime_offset);
606
607 hrtimer_force_reprogram(base);
608 spin_unlock(&base->lock);
609}
610
611/*
612 * Clock realtime was set
613 *
614 * Change the offset of the realtime clock vs. the monotonic
615 * clock.
616 *
617 * We might have to reprogram the high resolution timer interrupt. On
618 * SMP we call the architecture specific code to retrigger _all_ high
619 * resolution timer interrupts. On UP we just disable interrupts and
620 * call the high resolution interrupt code.
621 */
622void clock_was_set(void)
623{
624 /* Retrigger the CPU local events everywhere */
Jens Axboe15c8b6c2008-05-09 09:39:44 +0200625 on_each_cpu(retrigger_next_event, NULL, 1);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800626}
627
628/*
Ingo Molnar995f0542007-04-07 12:05:00 +0200629 * During resume we might have to reprogram the high resolution timer
630 * interrupt (on the local CPU):
631 */
632void hres_timers_resume(void)
633{
Ingo Molnar995f0542007-04-07 12:05:00 +0200634 /* Retrigger the CPU local events: */
635 retrigger_next_event(NULL);
636}
637
638/*
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800639 * Initialize the high resolution related parts of cpu_base
640 */
641static inline void hrtimer_init_hres(struct hrtimer_cpu_base *base)
642{
643 base->expires_next.tv64 = KTIME_MAX;
644 base->hres_active = 0;
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800645}
646
647/*
648 * Initialize the high resolution related parts of a hrtimer
649 */
650static inline void hrtimer_init_timer_hres(struct hrtimer *timer)
651{
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800652}
653
654/*
655 * When High resolution timers are active, try to reprogram. Note, that in case
656 * the state has HRTIMER_STATE_CALLBACK set, no reprogramming and no expiry
657 * check happens. The timer gets enqueued into the rbtree. The reprogramming
658 * and expiry check is done in the hrtimer_interrupt or in the softirq.
659 */
660static inline int hrtimer_enqueue_reprogram(struct hrtimer *timer,
661 struct hrtimer_clock_base *base)
662{
663 if (base->cpu_base->hres_active && hrtimer_reprogram(timer, base)) {
664
665 /* Timer is expired, act upon the callback mode */
666 switch(timer->cb_mode) {
667 case HRTIMER_CB_IRQSAFE_NO_RESTART:
Thomas Gleixner237fc6e2008-04-30 00:55:04 -0700668 debug_hrtimer_deactivate(timer);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800669 /*
670 * We can call the callback from here. No restart
671 * happens, so no danger of recursion
672 */
673 BUG_ON(timer->function(timer) != HRTIMER_NORESTART);
674 return 1;
675 case HRTIMER_CB_IRQSAFE_NO_SOFTIRQ:
676 /*
677 * This is solely for the sched tick emulation with
678 * dynamic tick support to ensure that we do not
679 * restart the tick right on the edge and end up with
680 * the tick timer in the softirq ! The calling site
681 * takes care of this.
682 */
Thomas Gleixner237fc6e2008-04-30 00:55:04 -0700683 debug_hrtimer_deactivate(timer);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800684 return 1;
685 case HRTIMER_CB_IRQSAFE:
686 case HRTIMER_CB_SOFTIRQ:
687 /*
688 * Move everything else into the softirq pending list !
689 */
690 list_add_tail(&timer->cb_entry,
691 &base->cpu_base->cb_pending);
692 timer->state = HRTIMER_STATE_PENDING;
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800693 return 1;
694 default:
695 BUG();
696 }
697 }
698 return 0;
699}
700
701/*
702 * Switch to high resolution mode
703 */
Thomas Gleixnerf8953852007-03-06 01:42:08 -0800704static int hrtimer_switch_to_hres(void)
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800705{
Ingo Molnar820de5c2007-07-21 04:37:36 -0700706 int cpu = smp_processor_id();
707 struct hrtimer_cpu_base *base = &per_cpu(hrtimer_bases, cpu);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800708 unsigned long flags;
709
710 if (base->hres_active)
Thomas Gleixnerf8953852007-03-06 01:42:08 -0800711 return 1;
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800712
713 local_irq_save(flags);
714
715 if (tick_init_highres()) {
716 local_irq_restore(flags);
Ingo Molnar820de5c2007-07-21 04:37:36 -0700717 printk(KERN_WARNING "Could not switch to high resolution "
718 "mode on CPU %d\n", cpu);
Thomas Gleixnerf8953852007-03-06 01:42:08 -0800719 return 0;
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800720 }
721 base->hres_active = 1;
722 base->clock_base[CLOCK_REALTIME].resolution = KTIME_HIGH_RES;
723 base->clock_base[CLOCK_MONOTONIC].resolution = KTIME_HIGH_RES;
724
725 tick_setup_sched_timer();
726
727 /* "Retrigger" the interrupt to get things going */
728 retrigger_next_event(NULL);
729 local_irq_restore(flags);
Michael Ellermanedfed662007-10-29 16:35:29 +1100730 printk(KERN_DEBUG "Switched to high resolution mode on CPU %d\n",
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800731 smp_processor_id());
Thomas Gleixnerf8953852007-03-06 01:42:08 -0800732 return 1;
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800733}
734
Thomas Gleixner0c96c592008-04-28 09:23:24 +0200735static inline void hrtimer_raise_softirq(void)
736{
737 raise_softirq(HRTIMER_SOFTIRQ);
738}
739
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800740#else
741
742static inline int hrtimer_hres_active(void) { return 0; }
743static inline int hrtimer_is_hres_enabled(void) { return 0; }
Thomas Gleixnerf8953852007-03-06 01:42:08 -0800744static inline int hrtimer_switch_to_hres(void) { return 0; }
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800745static inline void hrtimer_force_reprogram(struct hrtimer_cpu_base *base) { }
746static inline int hrtimer_enqueue_reprogram(struct hrtimer *timer,
747 struct hrtimer_clock_base *base)
748{
749 return 0;
750}
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800751static inline void hrtimer_init_hres(struct hrtimer_cpu_base *base) { }
752static inline void hrtimer_init_timer_hres(struct hrtimer *timer) { }
Peter Zijlstrad3d74452008-01-25 21:08:31 +0100753static inline int hrtimer_reprogram(struct hrtimer *timer,
754 struct hrtimer_clock_base *base)
755{
756 return 0;
757}
Thomas Gleixner0c96c592008-04-28 09:23:24 +0200758static inline void hrtimer_raise_softirq(void) { }
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800759
760#endif /* CONFIG_HIGH_RES_TIMERS */
761
Ingo Molnar82f67cd2007-02-16 01:28:13 -0800762#ifdef CONFIG_TIMER_STATS
763void __timer_stats_hrtimer_set_start_info(struct hrtimer *timer, void *addr)
764{
765 if (timer->start_site)
766 return;
767
768 timer->start_site = addr;
769 memcpy(timer->start_comm, current->comm, TASK_COMM_LEN);
770 timer->start_pid = current->pid;
771}
772#endif
773
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800774/*
Uwe Kleine-König6506f2a2007-10-20 01:56:53 +0200775 * Counterpart to lock_hrtimer_base above:
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800776 */
777static inline
778void unlock_hrtimer_base(const struct hrtimer *timer, unsigned long *flags)
779{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800780 spin_unlock_irqrestore(&timer->base->cpu_base->lock, *flags);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800781}
782
783/**
784 * hrtimer_forward - forward the timer expiry
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800785 * @timer: hrtimer to forward
Roman Zippel44f21472006-03-26 01:38:06 -0800786 * @now: forward past this time
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800787 * @interval: the interval to forward
788 *
789 * Forward the timer expiry so it will expire in the future.
Jonathan Corbet8dca6f32006-01-16 15:58:55 -0700790 * Returns the number of overruns.
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800791 */
Davide Libenzi4d672e72008-02-04 22:27:26 -0800792u64 hrtimer_forward(struct hrtimer *timer, ktime_t now, ktime_t interval)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800793{
Davide Libenzi4d672e72008-02-04 22:27:26 -0800794 u64 orun = 1;
Roman Zippel44f21472006-03-26 01:38:06 -0800795 ktime_t delta;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800796
797 delta = ktime_sub(now, timer->expires);
798
799 if (delta.tv64 < 0)
800 return 0;
801
Thomas Gleixnerc9db4fa2006-01-12 11:47:34 +0100802 if (interval.tv64 < timer->base->resolution.tv64)
803 interval.tv64 = timer->base->resolution.tv64;
804
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800805 if (unlikely(delta.tv64 >= interval.tv64)) {
Roman Zippeldf869b62006-03-26 01:38:11 -0800806 s64 incr = ktime_to_ns(interval);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800807
808 orun = ktime_divns(delta, incr);
809 timer->expires = ktime_add_ns(timer->expires, incr * orun);
810 if (timer->expires.tv64 > now.tv64)
811 return orun;
812 /*
813 * This (and the ktime_add() below) is the
814 * correction for exact:
815 */
816 orun++;
817 }
Thomas Gleixner5a7780e2008-02-13 09:20:43 +0100818 timer->expires = ktime_add_safe(timer->expires, interval);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800819
820 return orun;
821}
Stas Sergeev6bdb6b62007-05-08 00:31:58 -0700822EXPORT_SYMBOL_GPL(hrtimer_forward);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800823
824/*
825 * enqueue_hrtimer - internal function to (re)start a timer
826 *
827 * The timer is inserted in expiry order. Insertion into the
828 * red black tree is O(log(n)). Must hold the base lock.
829 */
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800830static void enqueue_hrtimer(struct hrtimer *timer,
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800831 struct hrtimer_clock_base *base, int reprogram)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800832{
833 struct rb_node **link = &base->active.rb_node;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800834 struct rb_node *parent = NULL;
835 struct hrtimer *entry;
Ingo Molnar99bc2fc2007-07-21 04:37:36 -0700836 int leftmost = 1;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800837
Thomas Gleixner237fc6e2008-04-30 00:55:04 -0700838 debug_hrtimer_activate(timer);
839
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800840 /*
841 * Find the right place in the rbtree:
842 */
843 while (*link) {
844 parent = *link;
845 entry = rb_entry(parent, struct hrtimer, node);
846 /*
847 * We dont care about collisions. Nodes with
848 * the same expiry time stay together.
849 */
Ingo Molnar99bc2fc2007-07-21 04:37:36 -0700850 if (timer->expires.tv64 < entry->expires.tv64) {
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800851 link = &(*link)->rb_left;
Ingo Molnar99bc2fc2007-07-21 04:37:36 -0700852 } else {
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800853 link = &(*link)->rb_right;
Ingo Molnar99bc2fc2007-07-21 04:37:36 -0700854 leftmost = 0;
855 }
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800856 }
857
858 /*
Thomas Gleixner288867e2006-01-12 11:25:54 +0100859 * Insert the timer to the rbtree and check whether it
860 * replaces the first pending timer
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800861 */
Ingo Molnar99bc2fc2007-07-21 04:37:36 -0700862 if (leftmost) {
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800863 /*
864 * Reprogram the clock event device. When the timer is already
865 * expired hrtimer_enqueue_reprogram has either called the
866 * callback or added it to the pending list and raised the
867 * softirq.
868 *
869 * This is a NOP for !HIGHRES
870 */
871 if (reprogram && hrtimer_enqueue_reprogram(timer, base))
872 return;
873
874 base->first = &timer->node;
875 }
876
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800877 rb_link_node(&timer->node, parent, link);
878 rb_insert_color(&timer->node, &base->active);
Thomas Gleixner303e9672007-02-16 01:27:51 -0800879 /*
880 * HRTIMER_STATE_ENQUEUED is or'ed to the current state to preserve the
881 * state of a possibly running callback.
882 */
883 timer->state |= HRTIMER_STATE_ENQUEUED;
Thomas Gleixner288867e2006-01-12 11:25:54 +0100884}
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800885
886/*
887 * __remove_hrtimer - internal function to remove a timer
888 *
889 * Caller must hold the base lock.
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800890 *
891 * High resolution timer mode reprograms the clock event device when the
892 * timer is the one which expires next. The caller can disable this by setting
893 * reprogram to zero. This is useful, when the context does a reprogramming
894 * anyway (e.g. timer interrupt)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800895 */
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800896static void __remove_hrtimer(struct hrtimer *timer,
Thomas Gleixner303e9672007-02-16 01:27:51 -0800897 struct hrtimer_clock_base *base,
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800898 unsigned long newstate, int reprogram)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800899{
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800900 /* High res. callback list. NOP for !HIGHRES */
901 if (hrtimer_cb_pending(timer))
902 hrtimer_remove_cb_pending(timer);
903 else {
904 /*
905 * Remove the timer from the rbtree and replace the
906 * first entry pointer if necessary.
907 */
908 if (base->first == &timer->node) {
909 base->first = rb_next(&timer->node);
910 /* Reprogram the clock event device. if enabled */
911 if (reprogram && hrtimer_hres_active())
912 hrtimer_force_reprogram(base->cpu_base);
913 }
914 rb_erase(&timer->node, &base->active);
915 }
Thomas Gleixner303e9672007-02-16 01:27:51 -0800916 timer->state = newstate;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800917}
918
919/*
920 * remove hrtimer, called with base lock held
921 */
922static inline int
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800923remove_hrtimer(struct hrtimer *timer, struct hrtimer_clock_base *base)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800924{
Thomas Gleixner303e9672007-02-16 01:27:51 -0800925 if (hrtimer_is_queued(timer)) {
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800926 int reprogram;
927
928 /*
929 * Remove the timer and force reprogramming when high
930 * resolution mode is active and the timer is on the current
931 * CPU. If we remove a timer on another CPU, reprogramming is
932 * skipped. The interrupt event on this CPU is fired and
933 * reprogramming happens in the interrupt handler. This is a
934 * rare case and less expensive than a smp call.
935 */
Thomas Gleixner237fc6e2008-04-30 00:55:04 -0700936 debug_hrtimer_deactivate(timer);
Ingo Molnar82f67cd2007-02-16 01:28:13 -0800937 timer_stats_hrtimer_clear_start_info(timer);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -0800938 reprogram = base->cpu_base == &__get_cpu_var(hrtimer_bases);
939 __remove_hrtimer(timer, base, HRTIMER_STATE_INACTIVE,
940 reprogram);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800941 return 1;
942 }
943 return 0;
944}
945
946/**
947 * hrtimer_start - (re)start an relative timer on the current CPU
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800948 * @timer: the timer to be added
949 * @tim: expiry time
950 * @mode: expiry mode: absolute (HRTIMER_ABS) or relative (HRTIMER_REL)
951 *
952 * Returns:
953 * 0 on success
954 * 1 when the timer was active
955 */
956int
957hrtimer_start(struct hrtimer *timer, ktime_t tim, const enum hrtimer_mode mode)
958{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -0800959 struct hrtimer_clock_base *base, *new_base;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800960 unsigned long flags;
Thomas Gleixner0c96c592008-04-28 09:23:24 +0200961 int ret, raise;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800962
963 base = lock_hrtimer_base(timer, &flags);
964
965 /* Remove an active timer from the queue: */
966 ret = remove_hrtimer(timer, base);
967
968 /* Switch the timer base, if necessary: */
969 new_base = switch_hrtimer_base(timer, base);
970
Thomas Gleixnerc9cb2e32007-02-16 01:27:49 -0800971 if (mode == HRTIMER_MODE_REL) {
Thomas Gleixner5a7780e2008-02-13 09:20:43 +0100972 tim = ktime_add_safe(tim, new_base->get_time());
Ingo Molnar06027bd2006-02-14 13:53:15 -0800973 /*
974 * CONFIG_TIME_LOW_RES is a temporary way for architectures
975 * to signal that they simply return xtime in
976 * do_gettimeoffset(). In this case we want to round up by
977 * resolution when starting a relative timer, to avoid short
978 * timeouts. This will go away with the GTOD framework.
979 */
980#ifdef CONFIG_TIME_LOW_RES
Thomas Gleixner5a7780e2008-02-13 09:20:43 +0100981 tim = ktime_add_safe(tim, base->resolution);
Ingo Molnar06027bd2006-02-14 13:53:15 -0800982#endif
983 }
Thomas Gleixner237fc6e2008-04-30 00:55:04 -0700984
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800985 timer->expires = tim;
986
Ingo Molnar82f67cd2007-02-16 01:28:13 -0800987 timer_stats_hrtimer_set_start_info(timer);
988
Ingo Molnar935c6312007-03-28 13:17:18 +0200989 /*
990 * Only allow reprogramming if the new base is on this CPU.
991 * (it might still be on another CPU if the timer was pending)
992 */
993 enqueue_hrtimer(timer, new_base,
994 new_base->cpu_base == &__get_cpu_var(hrtimer_bases));
Thomas Gleixnerc0a31322006-01-09 20:52:32 -0800995
Thomas Gleixner0c96c592008-04-28 09:23:24 +0200996 /*
997 * The timer may be expired and moved to the cb_pending
998 * list. We can not raise the softirq with base lock held due
999 * to a possible deadlock with runqueue lock.
1000 */
1001 raise = timer->state == HRTIMER_STATE_PENDING;
1002
Steven Rostedtee3ece82008-07-03 14:31:26 -04001003 /*
1004 * We use preempt_disable to prevent this task from migrating after
1005 * setting up the softirq and raising it. Otherwise, if me migrate
1006 * we will raise the softirq on the wrong CPU.
1007 */
1008 preempt_disable();
1009
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001010 unlock_hrtimer_base(timer, &flags);
1011
Thomas Gleixner0c96c592008-04-28 09:23:24 +02001012 if (raise)
1013 hrtimer_raise_softirq();
Steven Rostedtee3ece82008-07-03 14:31:26 -04001014 preempt_enable();
Thomas Gleixner0c96c592008-04-28 09:23:24 +02001015
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001016 return ret;
1017}
Stephen Hemminger8d16b762006-05-30 21:26:09 -07001018EXPORT_SYMBOL_GPL(hrtimer_start);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001019
1020/**
1021 * hrtimer_try_to_cancel - try to deactivate a timer
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001022 * @timer: hrtimer to stop
1023 *
1024 * Returns:
1025 * 0 when the timer was not active
1026 * 1 when the timer was active
1027 * -1 when the timer is currently excuting the callback function and
Randy Dunlapfa9799e2006-06-25 05:49:15 -07001028 * cannot be stopped
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001029 */
1030int hrtimer_try_to_cancel(struct hrtimer *timer)
1031{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001032 struct hrtimer_clock_base *base;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001033 unsigned long flags;
1034 int ret = -1;
1035
1036 base = lock_hrtimer_base(timer, &flags);
1037
Thomas Gleixner303e9672007-02-16 01:27:51 -08001038 if (!hrtimer_callback_running(timer))
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001039 ret = remove_hrtimer(timer, base);
1040
1041 unlock_hrtimer_base(timer, &flags);
1042
1043 return ret;
1044
1045}
Stephen Hemminger8d16b762006-05-30 21:26:09 -07001046EXPORT_SYMBOL_GPL(hrtimer_try_to_cancel);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001047
1048/**
1049 * hrtimer_cancel - cancel a timer and wait for the handler to finish.
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001050 * @timer: the timer to be cancelled
1051 *
1052 * Returns:
1053 * 0 when the timer was not active
1054 * 1 when the timer was active
1055 */
1056int hrtimer_cancel(struct hrtimer *timer)
1057{
1058 for (;;) {
1059 int ret = hrtimer_try_to_cancel(timer);
1060
1061 if (ret >= 0)
1062 return ret;
Joe Korty5ef37b12006-04-10 22:54:13 -07001063 cpu_relax();
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001064 }
1065}
Stephen Hemminger8d16b762006-05-30 21:26:09 -07001066EXPORT_SYMBOL_GPL(hrtimer_cancel);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001067
1068/**
1069 * hrtimer_get_remaining - get remaining time for the timer
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001070 * @timer: the timer to read
1071 */
1072ktime_t hrtimer_get_remaining(const struct hrtimer *timer)
1073{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001074 struct hrtimer_clock_base *base;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001075 unsigned long flags;
1076 ktime_t rem;
1077
1078 base = lock_hrtimer_base(timer, &flags);
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001079 rem = ktime_sub(timer->expires, base->get_time());
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001080 unlock_hrtimer_base(timer, &flags);
1081
1082 return rem;
1083}
Stephen Hemminger8d16b762006-05-30 21:26:09 -07001084EXPORT_SYMBOL_GPL(hrtimer_get_remaining);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001085
Russell Kingee9c5782008-04-20 13:59:33 +01001086#ifdef CONFIG_NO_HZ
Tony Lindgren69239742006-03-06 15:42:45 -08001087/**
1088 * hrtimer_get_next_event - get the time until next expiry event
1089 *
1090 * Returns the delta to the next expiry event or KTIME_MAX if no timer
1091 * is pending.
1092 */
1093ktime_t hrtimer_get_next_event(void)
1094{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001095 struct hrtimer_cpu_base *cpu_base = &__get_cpu_var(hrtimer_bases);
1096 struct hrtimer_clock_base *base = cpu_base->clock_base;
Tony Lindgren69239742006-03-06 15:42:45 -08001097 ktime_t delta, mindelta = { .tv64 = KTIME_MAX };
1098 unsigned long flags;
1099 int i;
1100
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001101 spin_lock_irqsave(&cpu_base->lock, flags);
1102
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001103 if (!hrtimer_hres_active()) {
1104 for (i = 0; i < HRTIMER_MAX_CLOCK_BASES; i++, base++) {
1105 struct hrtimer *timer;
Tony Lindgren69239742006-03-06 15:42:45 -08001106
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001107 if (!base->first)
1108 continue;
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001109
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001110 timer = rb_entry(base->first, struct hrtimer, node);
1111 delta.tv64 = timer->expires.tv64;
1112 delta = ktime_sub(delta, base->get_time());
1113 if (delta.tv64 < mindelta.tv64)
1114 mindelta.tv64 = delta.tv64;
1115 }
Tony Lindgren69239742006-03-06 15:42:45 -08001116 }
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001117
1118 spin_unlock_irqrestore(&cpu_base->lock, flags);
1119
Tony Lindgren69239742006-03-06 15:42:45 -08001120 if (mindelta.tv64 < 0)
1121 mindelta.tv64 = 0;
1122 return mindelta;
1123}
1124#endif
1125
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001126static void __hrtimer_init(struct hrtimer *timer, clockid_t clock_id,
1127 enum hrtimer_mode mode)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001128{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001129 struct hrtimer_cpu_base *cpu_base;
George Anzinger7978672c2006-02-01 03:05:11 -08001130
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001131 memset(timer, 0, sizeof(struct hrtimer));
George Anzinger7978672c2006-02-01 03:05:11 -08001132
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001133 cpu_base = &__raw_get_cpu_var(hrtimer_bases);
George Anzinger7978672c2006-02-01 03:05:11 -08001134
Thomas Gleixnerc9cb2e32007-02-16 01:27:49 -08001135 if (clock_id == CLOCK_REALTIME && mode != HRTIMER_MODE_ABS)
George Anzinger7978672c2006-02-01 03:05:11 -08001136 clock_id = CLOCK_MONOTONIC;
1137
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001138 timer->base = &cpu_base->clock_base[clock_id];
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001139 INIT_LIST_HEAD(&timer->cb_entry);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001140 hrtimer_init_timer_hres(timer);
Ingo Molnar82f67cd2007-02-16 01:28:13 -08001141
1142#ifdef CONFIG_TIMER_STATS
1143 timer->start_site = NULL;
1144 timer->start_pid = -1;
1145 memset(timer->start_comm, 0, TASK_COMM_LEN);
1146#endif
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001147}
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001148
1149/**
1150 * hrtimer_init - initialize a timer to the given clock
1151 * @timer: the timer to be initialized
1152 * @clock_id: the clock to be used
1153 * @mode: timer mode abs/rel
1154 */
1155void hrtimer_init(struct hrtimer *timer, clockid_t clock_id,
1156 enum hrtimer_mode mode)
1157{
1158 debug_hrtimer_init(timer);
1159 __hrtimer_init(timer, clock_id, mode);
1160}
Stephen Hemminger8d16b762006-05-30 21:26:09 -07001161EXPORT_SYMBOL_GPL(hrtimer_init);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001162
1163/**
1164 * hrtimer_get_res - get the timer resolution for a clock
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001165 * @which_clock: which clock to query
1166 * @tp: pointer to timespec variable to store the resolution
1167 *
Robert P. J. Day72fd4a32007-02-10 01:45:59 -08001168 * Store the resolution of the clock selected by @which_clock in the
1169 * variable pointed to by @tp.
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001170 */
1171int hrtimer_get_res(const clockid_t which_clock, struct timespec *tp)
1172{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001173 struct hrtimer_cpu_base *cpu_base;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001174
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001175 cpu_base = &__raw_get_cpu_var(hrtimer_bases);
1176 *tp = ktime_to_timespec(cpu_base->clock_base[which_clock].resolution);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001177
1178 return 0;
1179}
Stephen Hemminger8d16b762006-05-30 21:26:09 -07001180EXPORT_SYMBOL_GPL(hrtimer_get_res);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001181
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001182static void run_hrtimer_pending(struct hrtimer_cpu_base *cpu_base)
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001183{
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001184 spin_lock_irq(&cpu_base->lock);
1185
1186 while (!list_empty(&cpu_base->cb_pending)) {
1187 enum hrtimer_restart (*fn)(struct hrtimer *);
1188 struct hrtimer *timer;
1189 int restart;
1190
1191 timer = list_entry(cpu_base->cb_pending.next,
1192 struct hrtimer, cb_entry);
1193
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001194 debug_hrtimer_deactivate(timer);
Ingo Molnar82f67cd2007-02-16 01:28:13 -08001195 timer_stats_account_hrtimer(timer);
1196
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001197 fn = timer->function;
1198 __remove_hrtimer(timer, timer->base, HRTIMER_STATE_CALLBACK, 0);
1199 spin_unlock_irq(&cpu_base->lock);
1200
1201 restart = fn(timer);
1202
1203 spin_lock_irq(&cpu_base->lock);
1204
1205 timer->state &= ~HRTIMER_STATE_CALLBACK;
1206 if (restart == HRTIMER_RESTART) {
1207 BUG_ON(hrtimer_active(timer));
1208 /*
1209 * Enqueue the timer, allow reprogramming of the event
1210 * device
1211 */
1212 enqueue_hrtimer(timer, timer->base, 1);
1213 } else if (hrtimer_active(timer)) {
1214 /*
1215 * If the timer was rearmed on another CPU, reprogram
1216 * the event device.
1217 */
Bodo Stroesserd7b41a22008-04-26 14:10:16 -07001218 struct hrtimer_clock_base *base = timer->base;
1219
1220 if (base->first == &timer->node &&
1221 hrtimer_reprogram(timer, base)) {
1222 /*
1223 * Timer is expired. Thus move it from tree to
1224 * pending list again.
1225 */
1226 __remove_hrtimer(timer, base,
1227 HRTIMER_STATE_PENDING, 0);
1228 list_add_tail(&timer->cb_entry,
1229 &base->cpu_base->cb_pending);
1230 }
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001231 }
1232 }
1233 spin_unlock_irq(&cpu_base->lock);
1234}
1235
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001236static void __run_hrtimer(struct hrtimer *timer)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001237{
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001238 struct hrtimer_clock_base *base = timer->base;
1239 struct hrtimer_cpu_base *cpu_base = base->cpu_base;
1240 enum hrtimer_restart (*fn)(struct hrtimer *);
1241 int restart;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001242
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001243 debug_hrtimer_deactivate(timer);
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001244 __remove_hrtimer(timer, base, HRTIMER_STATE_CALLBACK, 0);
1245 timer_stats_account_hrtimer(timer);
Dimitri Sivanich3055add2006-03-31 02:31:20 -08001246
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001247 fn = timer->function;
1248 if (timer->cb_mode == HRTIMER_CB_IRQSAFE_NO_SOFTIRQ) {
1249 /*
1250 * Used for scheduler timers, avoid lock inversion with
1251 * rq->lock and tasklist_lock.
1252 *
1253 * These timers are required to deal with enqueue expiry
1254 * themselves and are not allowed to migrate.
1255 */
1256 spin_unlock(&cpu_base->lock);
1257 restart = fn(timer);
1258 spin_lock(&cpu_base->lock);
1259 } else
Roman Zippel05cfb612006-03-26 01:38:12 -08001260 restart = fn(timer);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001261
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001262 /*
1263 * Note: We clear the CALLBACK bit after enqueue_hrtimer to avoid
1264 * reprogramming of the event hardware. This happens at the end of this
1265 * function anyway.
1266 */
1267 if (restart != HRTIMER_NORESTART) {
1268 BUG_ON(timer->state != HRTIMER_STATE_CALLBACK);
1269 enqueue_hrtimer(timer, base, 0);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001270 }
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001271 timer->state &= ~HRTIMER_STATE_CALLBACK;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001272}
1273
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001274#ifdef CONFIG_HIGH_RES_TIMERS
1275
1276/*
1277 * High resolution timer interrupt
1278 * Called with interrupts disabled
1279 */
1280void hrtimer_interrupt(struct clock_event_device *dev)
1281{
1282 struct hrtimer_cpu_base *cpu_base = &__get_cpu_var(hrtimer_bases);
1283 struct hrtimer_clock_base *base;
1284 ktime_t expires_next, now;
1285 int i, raise = 0;
1286
1287 BUG_ON(!cpu_base->hres_active);
1288 cpu_base->nr_events++;
1289 dev->next_event.tv64 = KTIME_MAX;
1290
1291 retry:
1292 now = ktime_get();
1293
1294 expires_next.tv64 = KTIME_MAX;
1295
1296 base = cpu_base->clock_base;
1297
1298 for (i = 0; i < HRTIMER_MAX_CLOCK_BASES; i++) {
1299 ktime_t basenow;
1300 struct rb_node *node;
1301
1302 spin_lock(&cpu_base->lock);
1303
1304 basenow = ktime_add(now, base->offset);
1305
1306 while ((node = base->first)) {
1307 struct hrtimer *timer;
1308
1309 timer = rb_entry(node, struct hrtimer, node);
1310
1311 if (basenow.tv64 < timer->expires.tv64) {
1312 ktime_t expires;
1313
1314 expires = ktime_sub(timer->expires,
1315 base->offset);
1316 if (expires.tv64 < expires_next.tv64)
1317 expires_next = expires;
1318 break;
1319 }
1320
1321 /* Move softirq callbacks to the pending list */
1322 if (timer->cb_mode == HRTIMER_CB_SOFTIRQ) {
1323 __remove_hrtimer(timer, base,
1324 HRTIMER_STATE_PENDING, 0);
1325 list_add_tail(&timer->cb_entry,
1326 &base->cpu_base->cb_pending);
1327 raise = 1;
1328 continue;
1329 }
1330
1331 __run_hrtimer(timer);
1332 }
1333 spin_unlock(&cpu_base->lock);
1334 base++;
1335 }
1336
1337 cpu_base->expires_next = expires_next;
1338
1339 /* Reprogramming necessary ? */
1340 if (expires_next.tv64 != KTIME_MAX) {
1341 if (tick_program_event(expires_next, 0))
1342 goto retry;
1343 }
1344
1345 /* Raise softirq ? */
1346 if (raise)
1347 raise_softirq(HRTIMER_SOFTIRQ);
1348}
1349
1350static void run_hrtimer_softirq(struct softirq_action *h)
1351{
1352 run_hrtimer_pending(&__get_cpu_var(hrtimer_bases));
1353}
1354
1355#endif /* CONFIG_HIGH_RES_TIMERS */
1356
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001357/*
1358 * Called from timer softirq every jiffy, expire hrtimers:
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001359 *
1360 * For HRT its the fall back code to run the softirq in the timer
1361 * softirq context in case the hrtimer initialization failed or has
1362 * not been done yet.
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001363 */
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001364void hrtimer_run_pending(void)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001365{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001366 struct hrtimer_cpu_base *cpu_base = &__get_cpu_var(hrtimer_bases);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001367
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001368 if (hrtimer_hres_active())
1369 return;
1370
Thomas Gleixner79bf2bb2007-02-16 01:28:03 -08001371 /*
1372 * This _is_ ugly: We have to check in the softirq context,
1373 * whether we can switch to highres and / or nohz mode. The
1374 * clocksource switch happens in the timer interrupt with
1375 * xtime_lock held. Notification from there only sets the
1376 * check bit in the tick_oneshot code, otherwise we might
1377 * deadlock vs. xtime_lock.
1378 */
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001379 if (tick_check_oneshot_change(!hrtimer_is_hres_enabled()))
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001380 hrtimer_switch_to_hres();
1381
1382 run_hrtimer_pending(cpu_base);
1383}
1384
1385/*
1386 * Called from hardirq context every jiffy
1387 */
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001388void hrtimer_run_queues(void)
1389{
Dimitri Sivanich833883d2008-04-18 13:39:00 -07001390 struct rb_node *node;
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001391 struct hrtimer_cpu_base *cpu_base = &__get_cpu_var(hrtimer_bases);
Dimitri Sivanich833883d2008-04-18 13:39:00 -07001392 struct hrtimer_clock_base *base;
1393 int index, gettime = 1;
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001394
1395 if (hrtimer_hres_active())
1396 return;
Thomas Gleixner79bf2bb2007-02-16 01:28:03 -08001397
Dimitri Sivanich833883d2008-04-18 13:39:00 -07001398 for (index = 0; index < HRTIMER_MAX_CLOCK_BASES; index++) {
1399 base = &cpu_base->clock_base[index];
Thomas Gleixner92127c72006-03-26 01:38:05 -08001400
Dimitri Sivanich833883d2008-04-18 13:39:00 -07001401 if (!base->first)
1402 continue;
1403
Mark McLoughlind7cfb602008-09-19 13:13:44 +01001404 if (gettime) {
Dimitri Sivanich833883d2008-04-18 13:39:00 -07001405 hrtimer_get_softirq_time(cpu_base);
1406 gettime = 0;
1407 }
1408
Dimitri Sivanich833883d2008-04-18 13:39:00 -07001409 spin_lock(&cpu_base->lock);
1410
1411 while ((node = base->first)) {
1412 struct hrtimer *timer;
1413
1414 timer = rb_entry(node, struct hrtimer, node);
1415 if (base->softirq_time.tv64 <= timer->expires.tv64)
1416 break;
1417
1418 if (timer->cb_mode == HRTIMER_CB_SOFTIRQ) {
1419 __remove_hrtimer(timer, base,
1420 HRTIMER_STATE_PENDING, 0);
1421 list_add_tail(&timer->cb_entry,
1422 &base->cpu_base->cb_pending);
1423 continue;
1424 }
1425
1426 __run_hrtimer(timer);
1427 }
1428 spin_unlock(&cpu_base->lock);
1429 }
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001430}
1431
1432/*
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001433 * Sleep related functions:
1434 */
Thomas Gleixnerc9cb2e32007-02-16 01:27:49 -08001435static enum hrtimer_restart hrtimer_wakeup(struct hrtimer *timer)
Thomas Gleixner00362e32006-03-31 02:31:17 -08001436{
1437 struct hrtimer_sleeper *t =
1438 container_of(timer, struct hrtimer_sleeper, timer);
1439 struct task_struct *task = t->task;
1440
1441 t->task = NULL;
1442 if (task)
1443 wake_up_process(task);
1444
1445 return HRTIMER_NORESTART;
1446}
1447
Ingo Molnar36c8b582006-07-03 00:25:41 -07001448void hrtimer_init_sleeper(struct hrtimer_sleeper *sl, struct task_struct *task)
Thomas Gleixner00362e32006-03-31 02:31:17 -08001449{
1450 sl->timer.function = hrtimer_wakeup;
1451 sl->task = task;
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001452#ifdef CONFIG_HIGH_RES_TIMERS
Peter Zijlstra37bb6cb2008-01-25 21:08:32 +01001453 sl->timer.cb_mode = HRTIMER_CB_IRQSAFE_NO_SOFTIRQ;
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001454#endif
Thomas Gleixner00362e32006-03-31 02:31:17 -08001455}
1456
Thomas Gleixner669d7862006-03-31 02:31:19 -08001457static int __sched do_nanosleep(struct hrtimer_sleeper *t, enum hrtimer_mode mode)
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001458{
Thomas Gleixner669d7862006-03-31 02:31:19 -08001459 hrtimer_init_sleeper(t, current);
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001460
Roman Zippel432569b2006-03-26 01:38:08 -08001461 do {
1462 set_current_state(TASK_INTERRUPTIBLE);
1463 hrtimer_start(&t->timer, t->timer.expires, mode);
Peter Zijlstra37bb6cb2008-01-25 21:08:32 +01001464 if (!hrtimer_active(&t->timer))
1465 t->task = NULL;
Roman Zippel432569b2006-03-26 01:38:08 -08001466
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001467 if (likely(t->task))
1468 schedule();
Roman Zippel432569b2006-03-26 01:38:08 -08001469
Thomas Gleixner669d7862006-03-31 02:31:19 -08001470 hrtimer_cancel(&t->timer);
Thomas Gleixnerc9cb2e32007-02-16 01:27:49 -08001471 mode = HRTIMER_MODE_ABS;
Roman Zippel432569b2006-03-26 01:38:08 -08001472
Thomas Gleixner669d7862006-03-31 02:31:19 -08001473 } while (t->task && !signal_pending(current));
1474
Peter Zijlstra3588a082008-02-01 17:45:13 +01001475 __set_current_state(TASK_RUNNING);
1476
Thomas Gleixner669d7862006-03-31 02:31:19 -08001477 return t->task == NULL;
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001478}
1479
Oleg Nesterov080344b2008-02-01 17:29:05 +03001480static int update_rmtp(struct hrtimer *timer, struct timespec __user *rmtp)
1481{
1482 struct timespec rmt;
1483 ktime_t rem;
1484
1485 rem = ktime_sub(timer->expires, timer->base->get_time());
1486 if (rem.tv64 <= 0)
1487 return 0;
1488 rmt = ktime_to_timespec(rem);
1489
1490 if (copy_to_user(rmtp, &rmt, sizeof(*rmtp)))
1491 return -EFAULT;
1492
1493 return 1;
1494}
1495
Toyo Abe1711ef32006-09-29 02:00:28 -07001496long __sched hrtimer_nanosleep_restart(struct restart_block *restart)
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001497{
Thomas Gleixner669d7862006-03-31 02:31:19 -08001498 struct hrtimer_sleeper t;
Oleg Nesterov080344b2008-02-01 17:29:05 +03001499 struct timespec __user *rmtp;
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001500 int ret = 0;
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001501
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001502 hrtimer_init_on_stack(&t.timer, restart->nanosleep.index,
1503 HRTIMER_MODE_ABS);
Thomas Gleixner029a07e2008-02-10 09:17:43 +01001504 t.timer.expires.tv64 = restart->nanosleep.expires;
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001505
Thomas Gleixnerc9cb2e32007-02-16 01:27:49 -08001506 if (do_nanosleep(&t, HRTIMER_MODE_ABS))
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001507 goto out;
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001508
Thomas Gleixner029a07e2008-02-10 09:17:43 +01001509 rmtp = restart->nanosleep.rmtp;
Roman Zippel432569b2006-03-26 01:38:08 -08001510 if (rmtp) {
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001511 ret = update_rmtp(&t.timer, rmtp);
Oleg Nesterov080344b2008-02-01 17:29:05 +03001512 if (ret <= 0)
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001513 goto out;
Roman Zippel432569b2006-03-26 01:38:08 -08001514 }
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001515
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001516 /* The other values in restart are already filled in */
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001517 ret = -ERESTART_RESTARTBLOCK;
1518out:
1519 destroy_hrtimer_on_stack(&t.timer);
1520 return ret;
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001521}
1522
Oleg Nesterov080344b2008-02-01 17:29:05 +03001523long hrtimer_nanosleep(struct timespec *rqtp, struct timespec __user *rmtp,
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001524 const enum hrtimer_mode mode, const clockid_t clockid)
1525{
1526 struct restart_block *restart;
Thomas Gleixner669d7862006-03-31 02:31:19 -08001527 struct hrtimer_sleeper t;
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001528 int ret = 0;
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001529
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001530 hrtimer_init_on_stack(&t.timer, clockid, mode);
Roman Zippel432569b2006-03-26 01:38:08 -08001531 t.timer.expires = timespec_to_ktime(*rqtp);
1532 if (do_nanosleep(&t, mode))
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001533 goto out;
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001534
George Anzinger7978672c2006-02-01 03:05:11 -08001535 /* Absolute timers do not update the rmtp value and restart: */
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001536 if (mode == HRTIMER_MODE_ABS) {
1537 ret = -ERESTARTNOHAND;
1538 goto out;
1539 }
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001540
Roman Zippel432569b2006-03-26 01:38:08 -08001541 if (rmtp) {
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001542 ret = update_rmtp(&t.timer, rmtp);
Oleg Nesterov080344b2008-02-01 17:29:05 +03001543 if (ret <= 0)
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001544 goto out;
Roman Zippel432569b2006-03-26 01:38:08 -08001545 }
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001546
1547 restart = &current_thread_info()->restart_block;
Toyo Abe1711ef32006-09-29 02:00:28 -07001548 restart->fn = hrtimer_nanosleep_restart;
Thomas Gleixner029a07e2008-02-10 09:17:43 +01001549 restart->nanosleep.index = t.timer.base->index;
1550 restart->nanosleep.rmtp = rmtp;
1551 restart->nanosleep.expires = t.timer.expires.tv64;
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001552
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001553 ret = -ERESTART_RESTARTBLOCK;
1554out:
1555 destroy_hrtimer_on_stack(&t.timer);
1556 return ret;
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001557}
1558
Thomas Gleixner6ba1b912006-01-09 20:52:36 -08001559asmlinkage long
1560sys_nanosleep(struct timespec __user *rqtp, struct timespec __user *rmtp)
1561{
Oleg Nesterov080344b2008-02-01 17:29:05 +03001562 struct timespec tu;
Thomas Gleixner6ba1b912006-01-09 20:52:36 -08001563
1564 if (copy_from_user(&tu, rqtp, sizeof(tu)))
1565 return -EFAULT;
1566
1567 if (!timespec_valid(&tu))
1568 return -EINVAL;
1569
Oleg Nesterov080344b2008-02-01 17:29:05 +03001570 return hrtimer_nanosleep(&tu, rmtp, HRTIMER_MODE_REL, CLOCK_MONOTONIC);
Thomas Gleixner6ba1b912006-01-09 20:52:36 -08001571}
1572
Thomas Gleixner10c94ec2006-01-09 20:52:35 -08001573/*
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001574 * Functions related to boot-time initialization:
1575 */
Randy Dunlap0ec160d2008-01-21 17:18:24 -08001576static void __cpuinit init_hrtimers_cpu(int cpu)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001577{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001578 struct hrtimer_cpu_base *cpu_base = &per_cpu(hrtimer_bases, cpu);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001579 int i;
1580
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001581 spin_lock_init(&cpu_base->lock);
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001582
1583 for (i = 0; i < HRTIMER_MAX_CLOCK_BASES; i++)
1584 cpu_base->clock_base[i].cpu_base = cpu_base;
1585
Peter Zijlstrad3d74452008-01-25 21:08:31 +01001586 INIT_LIST_HEAD(&cpu_base->cb_pending);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001587 hrtimer_init_hres(cpu_base);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001588}
1589
1590#ifdef CONFIG_HOTPLUG_CPU
1591
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001592static void migrate_hrtimer_list(struct hrtimer_clock_base *old_base,
1593 struct hrtimer_clock_base *new_base)
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001594{
1595 struct hrtimer *timer;
1596 struct rb_node *node;
1597
1598 while ((node = rb_first(&old_base->active))) {
1599 timer = rb_entry(node, struct hrtimer, node);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001600 BUG_ON(hrtimer_callback_running(timer));
Thomas Gleixner237fc6e2008-04-30 00:55:04 -07001601 debug_hrtimer_deactivate(timer);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001602 __remove_hrtimer(timer, old_base, HRTIMER_STATE_INACTIVE, 0);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001603 timer->base = new_base;
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001604 /*
1605 * Enqueue the timer. Allow reprogramming of the event device
1606 */
1607 enqueue_hrtimer(timer, new_base, 1);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001608 }
1609}
1610
1611static void migrate_hrtimers(int cpu)
1612{
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001613 struct hrtimer_cpu_base *old_base, *new_base;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001614 int i;
1615
1616 BUG_ON(cpu_online(cpu));
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001617 old_base = &per_cpu(hrtimer_bases, cpu);
1618 new_base = &get_cpu_var(hrtimer_bases);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001619
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001620 tick_cancel_sched_timer(cpu);
Oleg Nesterovd82f0b02008-08-20 16:46:04 -07001621 /*
1622 * The caller is globally serialized and nobody else
1623 * takes two locks at once, deadlock is not possible.
1624 */
1625 spin_lock_irq(&new_base->lock);
Oleg Nesterov8e60e052008-04-04 20:54:10 +02001626 spin_lock_nested(&old_base->lock, SINGLE_DEPTH_NESTING);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001627
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001628 for (i = 0; i < HRTIMER_MAX_CLOCK_BASES; i++) {
Thomas Gleixner3c8aa392007-02-16 01:27:50 -08001629 migrate_hrtimer_list(&old_base->clock_base[i],
1630 &new_base->clock_base[i]);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001631 }
1632
Oleg Nesterov8e60e052008-04-04 20:54:10 +02001633 spin_unlock(&old_base->lock);
Oleg Nesterovd82f0b02008-08-20 16:46:04 -07001634 spin_unlock_irq(&new_base->lock);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001635 put_cpu_var(hrtimer_bases);
1636}
1637#endif /* CONFIG_HOTPLUG_CPU */
1638
Chandra Seetharaman8c78f302006-07-30 03:03:35 -07001639static int __cpuinit hrtimer_cpu_notify(struct notifier_block *self,
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001640 unsigned long action, void *hcpu)
1641{
David Miller7713a7d2007-07-16 17:17:44 -07001642 unsigned int cpu = (long)hcpu;
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001643
1644 switch (action) {
1645
1646 case CPU_UP_PREPARE:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001647 case CPU_UP_PREPARE_FROZEN:
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001648 init_hrtimers_cpu(cpu);
1649 break;
1650
1651#ifdef CONFIG_HOTPLUG_CPU
1652 case CPU_DEAD:
Rafael J. Wysocki8bb78442007-05-09 02:35:10 -07001653 case CPU_DEAD_FROZEN:
Thomas Gleixnerd316c572007-02-16 01:28:00 -08001654 clockevents_notify(CLOCK_EVT_NOTIFY_CPU_DEAD, &cpu);
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001655 migrate_hrtimers(cpu);
1656 break;
1657#endif
1658
1659 default:
1660 break;
1661 }
1662
1663 return NOTIFY_OK;
1664}
1665
Chandra Seetharaman8c78f302006-07-30 03:03:35 -07001666static struct notifier_block __cpuinitdata hrtimers_nb = {
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001667 .notifier_call = hrtimer_cpu_notify,
1668};
1669
1670void __init hrtimers_init(void)
1671{
1672 hrtimer_cpu_notify(&hrtimers_nb, (unsigned long)CPU_UP_PREPARE,
1673 (void *)(long)smp_processor_id());
1674 register_cpu_notifier(&hrtimers_nb);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001675#ifdef CONFIG_HIGH_RES_TIMERS
Carlos R. Mafra962cf362008-05-15 11:15:37 -03001676 open_softirq(HRTIMER_SOFTIRQ, run_hrtimer_softirq);
Thomas Gleixner54cdfdb2007-02-16 01:28:11 -08001677#endif
Thomas Gleixnerc0a31322006-01-09 20:52:32 -08001678}
1679