blob: 9e786053ffa2dfbf8b2463194bf32101a4689511 [file] [log] [blame]
John Stultzff3ead92011-01-11 09:42:13 -08001/*
2 * Alarmtimer interface
3 *
4 * This interface provides a timer which is similarto hrtimers,
5 * but triggers a RTC alarm if the box is suspend.
6 *
7 * This interface is influenced by the Android RTC Alarm timer
8 * interface.
9 *
10 * Copyright (C) 2010 IBM Corperation
11 *
12 * Author: John Stultz <john.stultz@linaro.org>
13 *
14 * This program is free software; you can redistribute it and/or modify
15 * it under the terms of the GNU General Public License version 2 as
16 * published by the Free Software Foundation.
17 */
18#include <linux/time.h>
19#include <linux/hrtimer.h>
20#include <linux/timerqueue.h>
21#include <linux/rtc.h>
22#include <linux/alarmtimer.h>
23#include <linux/mutex.h>
24#include <linux/platform_device.h>
25#include <linux/posix-timers.h>
26#include <linux/workqueue.h>
27#include <linux/freezer.h>
28
John Stultz180bf812011-04-28 12:58:11 -070029/**
30 * struct alarm_base - Alarm timer bases
31 * @lock: Lock for syncrhonized access to the base
32 * @timerqueue: Timerqueue head managing the list of events
33 * @timer: hrtimer used to schedule events while running
34 * @gettime: Function to read the time correlating to the base
35 * @base_clockid: clockid for the base
John Stultz180bf812011-04-28 12:58:11 -070036 */
John Stultzff3ead92011-01-11 09:42:13 -080037static struct alarm_base {
38 spinlock_t lock;
39 struct timerqueue_head timerqueue;
40 struct hrtimer timer;
41 ktime_t (*gettime)(void);
42 clockid_t base_clockid;
John Stultzff3ead92011-01-11 09:42:13 -080043} alarm_bases[ALARM_NUMTYPE];
44
John Stultzc008ba52011-06-16 18:27:09 -070045/* freezer delta & lock used to handle clock_nanosleep triggered wakeups */
46static ktime_t freezer_delta;
47static DEFINE_SPINLOCK(freezer_delta_lock);
48
John Stultz472647d2011-04-29 15:03:10 -070049#ifdef CONFIG_RTC_CLASS
John Stultz180bf812011-04-28 12:58:11 -070050/* rtc timer and device for setting alarm wakeups at suspend */
John Stultzff3ead92011-01-11 09:42:13 -080051static struct rtc_timer rtctimer;
52static struct rtc_device *rtcdev;
John Stultzc008ba52011-06-16 18:27:09 -070053static DEFINE_SPINLOCK(rtcdev_lock);
John Stultzff3ead92011-01-11 09:42:13 -080054
John Stultzc008ba52011-06-16 18:27:09 -070055/**
56 * has_wakealarm - check rtc device has wakealarm ability
57 * @dev: current device
58 * @name_ptr: name to be returned
59 *
60 * This helper function checks to see if the rtc device can wake
61 * from suspend.
62 */
63static int has_wakealarm(struct device *dev, void *name_ptr)
64{
65 struct rtc_device *candidate = to_rtc_device(dev);
66
67 if (!candidate->ops->set_alarm)
68 return 0;
69 if (!device_may_wakeup(candidate->dev.parent))
70 return 0;
71
72 *(const char **)name_ptr = dev_name(dev);
73 return 1;
74}
75
76/**
77 * alarmtimer_get_rtcdev - Return selected rtcdevice
78 *
79 * This function returns the rtc device to use for wakealarms.
80 * If one has not already been chosen, it checks to see if a
81 * functional rtc device is available.
82 */
83static struct rtc_device *alarmtimer_get_rtcdev(void)
84{
85 struct device *dev;
86 char *str;
87 unsigned long flags;
88 struct rtc_device *ret;
89
90 spin_lock_irqsave(&rtcdev_lock, flags);
91 if (!rtcdev) {
92 /* Find an rtc device and init the rtc_timer */
93 dev = class_find_device(rtc_class, NULL, &str, has_wakealarm);
94 /* If we have a device then str is valid. See has_wakealarm() */
95 if (dev) {
96 rtcdev = rtc_class_open(str);
97 /*
98 * Drop the reference we got in class_find_device,
99 * rtc_open takes its own.
100 */
101 put_device(dev);
102 rtc_timer_init(&rtctimer, NULL, NULL);
103 }
104 }
105 ret = rtcdev;
106 spin_unlock_irqrestore(&rtcdev_lock, flags);
107
108 return ret;
109}
John Stultz1c6b39a2011-06-16 18:47:37 -0700110#else
111#define alarmtimer_get_rtcdev() (0)
112#define rtcdev (0)
John Stultzc008ba52011-06-16 18:27:09 -0700113#endif
John Stultzff3ead92011-01-11 09:42:13 -0800114
115
John Stultz180bf812011-04-28 12:58:11 -0700116/**
John Stultzff3ead92011-01-11 09:42:13 -0800117 * alarmtimer_enqueue - Adds an alarm timer to an alarm_base timerqueue
118 * @base: pointer to the base where the timer is being run
119 * @alarm: pointer to alarm being enqueued.
120 *
121 * Adds alarm to a alarm_base timerqueue and if necessary sets
122 * an hrtimer to run.
123 *
124 * Must hold base->lock when calling.
125 */
126static void alarmtimer_enqueue(struct alarm_base *base, struct alarm *alarm)
127{
128 timerqueue_add(&base->timerqueue, &alarm->node);
129 if (&alarm->node == timerqueue_getnext(&base->timerqueue)) {
130 hrtimer_try_to_cancel(&base->timer);
131 hrtimer_start(&base->timer, alarm->node.expires,
132 HRTIMER_MODE_ABS);
133 }
134}
135
John Stultz180bf812011-04-28 12:58:11 -0700136/**
John Stultzff3ead92011-01-11 09:42:13 -0800137 * alarmtimer_remove - Removes an alarm timer from an alarm_base timerqueue
138 * @base: pointer to the base where the timer is running
139 * @alarm: pointer to alarm being removed
140 *
141 * Removes alarm to a alarm_base timerqueue and if necessary sets
142 * a new timer to run.
143 *
144 * Must hold base->lock when calling.
145 */
146static void alarmtimer_remove(struct alarm_base *base, struct alarm *alarm)
147{
148 struct timerqueue_node *next = timerqueue_getnext(&base->timerqueue);
149
150 timerqueue_del(&base->timerqueue, &alarm->node);
151 if (next == &alarm->node) {
152 hrtimer_try_to_cancel(&base->timer);
153 next = timerqueue_getnext(&base->timerqueue);
154 if (!next)
155 return;
156 hrtimer_start(&base->timer, next->expires, HRTIMER_MODE_ABS);
157 }
158}
159
John Stultz7068b7a2011-04-28 13:29:18 -0700160
John Stultz180bf812011-04-28 12:58:11 -0700161/**
John Stultz7068b7a2011-04-28 13:29:18 -0700162 * alarmtimer_fired - Handles alarm hrtimer being fired.
163 * @timer: pointer to hrtimer being run
John Stultzff3ead92011-01-11 09:42:13 -0800164 *
John Stultz180bf812011-04-28 12:58:11 -0700165 * When a alarm timer fires, this runs through the timerqueue to
166 * see which alarms expired, and runs those. If there are more alarm
167 * timers queued for the future, we set the hrtimer to fire when
168 * when the next future alarm timer expires.
John Stultzff3ead92011-01-11 09:42:13 -0800169 */
John Stultz7068b7a2011-04-28 13:29:18 -0700170static enum hrtimer_restart alarmtimer_fired(struct hrtimer *timer)
John Stultzff3ead92011-01-11 09:42:13 -0800171{
John Stultz7068b7a2011-04-28 13:29:18 -0700172 struct alarm_base *base = container_of(timer, struct alarm_base, timer);
John Stultzff3ead92011-01-11 09:42:13 -0800173 struct timerqueue_node *next;
174 unsigned long flags;
175 ktime_t now;
John Stultz7068b7a2011-04-28 13:29:18 -0700176 int ret = HRTIMER_NORESTART;
John Stultzff3ead92011-01-11 09:42:13 -0800177
178 spin_lock_irqsave(&base->lock, flags);
179 now = base->gettime();
180 while ((next = timerqueue_getnext(&base->timerqueue))) {
181 struct alarm *alarm;
182 ktime_t expired = next->expires;
183
184 if (expired.tv64 >= now.tv64)
185 break;
186
187 alarm = container_of(next, struct alarm, node);
188
189 timerqueue_del(&base->timerqueue, &alarm->node);
190 alarm->enabled = 0;
191 /* Re-add periodic timers */
192 if (alarm->period.tv64) {
193 alarm->node.expires = ktime_add(expired, alarm->period);
194 timerqueue_add(&base->timerqueue, &alarm->node);
195 alarm->enabled = 1;
196 }
197 spin_unlock_irqrestore(&base->lock, flags);
198 if (alarm->function)
John Stultz4b413082011-08-10 10:37:59 -0700199 alarm->function(alarm, now);
John Stultzff3ead92011-01-11 09:42:13 -0800200 spin_lock_irqsave(&base->lock, flags);
201 }
202
203 if (next) {
John Stultz7068b7a2011-04-28 13:29:18 -0700204 hrtimer_set_expires(&base->timer, next->expires);
205 ret = HRTIMER_RESTART;
John Stultzff3ead92011-01-11 09:42:13 -0800206 }
207 spin_unlock_irqrestore(&base->lock, flags);
John Stultzff3ead92011-01-11 09:42:13 -0800208
John Stultz7068b7a2011-04-28 13:29:18 -0700209 return ret;
John Stultzff3ead92011-01-11 09:42:13 -0800210
John Stultzff3ead92011-01-11 09:42:13 -0800211}
212
John Stultz472647d2011-04-29 15:03:10 -0700213#ifdef CONFIG_RTC_CLASS
John Stultz180bf812011-04-28 12:58:11 -0700214/**
John Stultzff3ead92011-01-11 09:42:13 -0800215 * alarmtimer_suspend - Suspend time callback
216 * @dev: unused
217 * @state: unused
218 *
219 * When we are going into suspend, we look through the bases
220 * to see which is the soonest timer to expire. We then
221 * set an rtc timer to fire that far into the future, which
222 * will wake us from suspend.
223 */
224static int alarmtimer_suspend(struct device *dev)
225{
226 struct rtc_time tm;
227 ktime_t min, now;
228 unsigned long flags;
John Stultzc008ba52011-06-16 18:27:09 -0700229 struct rtc_device *rtc;
John Stultzff3ead92011-01-11 09:42:13 -0800230 int i;
231
232 spin_lock_irqsave(&freezer_delta_lock, flags);
233 min = freezer_delta;
234 freezer_delta = ktime_set(0, 0);
235 spin_unlock_irqrestore(&freezer_delta_lock, flags);
236
John Stultz1c6b39a2011-06-16 18:47:37 -0700237 rtc = rtcdev;
John Stultzff3ead92011-01-11 09:42:13 -0800238 /* If we have no rtcdev, just return */
John Stultzc008ba52011-06-16 18:27:09 -0700239 if (!rtc)
John Stultzff3ead92011-01-11 09:42:13 -0800240 return 0;
241
242 /* Find the soonest timer to expire*/
243 for (i = 0; i < ALARM_NUMTYPE; i++) {
244 struct alarm_base *base = &alarm_bases[i];
245 struct timerqueue_node *next;
246 ktime_t delta;
247
248 spin_lock_irqsave(&base->lock, flags);
249 next = timerqueue_getnext(&base->timerqueue);
250 spin_unlock_irqrestore(&base->lock, flags);
251 if (!next)
252 continue;
253 delta = ktime_sub(next->expires, base->gettime());
254 if (!min.tv64 || (delta.tv64 < min.tv64))
255 min = delta;
256 }
257 if (min.tv64 == 0)
258 return 0;
259
260 /* XXX - Should we enforce a minimum sleep time? */
261 WARN_ON(min.tv64 < NSEC_PER_SEC);
262
263 /* Setup an rtc timer to fire that far in the future */
John Stultzc008ba52011-06-16 18:27:09 -0700264 rtc_timer_cancel(rtc, &rtctimer);
265 rtc_read_time(rtc, &tm);
John Stultzff3ead92011-01-11 09:42:13 -0800266 now = rtc_tm_to_ktime(tm);
267 now = ktime_add(now, min);
268
John Stultzc008ba52011-06-16 18:27:09 -0700269 rtc_timer_start(rtc, &rtctimer, now, ktime_set(0, 0));
John Stultzff3ead92011-01-11 09:42:13 -0800270
271 return 0;
272}
John Stultz472647d2011-04-29 15:03:10 -0700273#else
274static int alarmtimer_suspend(struct device *dev)
275{
276 return 0;
277}
278#endif
John Stultzff3ead92011-01-11 09:42:13 -0800279
John Stultz9a7adcf2011-01-11 09:54:33 -0800280static void alarmtimer_freezerset(ktime_t absexp, enum alarmtimer_type type)
281{
282 ktime_t delta;
283 unsigned long flags;
284 struct alarm_base *base = &alarm_bases[type];
285
286 delta = ktime_sub(absexp, base->gettime());
287
288 spin_lock_irqsave(&freezer_delta_lock, flags);
289 if (!freezer_delta.tv64 || (delta.tv64 < freezer_delta.tv64))
290 freezer_delta = delta;
291 spin_unlock_irqrestore(&freezer_delta_lock, flags);
292}
293
294
John Stultz180bf812011-04-28 12:58:11 -0700295/**
John Stultzff3ead92011-01-11 09:42:13 -0800296 * alarm_init - Initialize an alarm structure
297 * @alarm: ptr to alarm to be initialized
298 * @type: the type of the alarm
299 * @function: callback that is run when the alarm fires
John Stultzff3ead92011-01-11 09:42:13 -0800300 */
301void alarm_init(struct alarm *alarm, enum alarmtimer_type type,
John Stultz4b413082011-08-10 10:37:59 -0700302 enum alarmtimer_restart (*function)(struct alarm *, ktime_t))
John Stultzff3ead92011-01-11 09:42:13 -0800303{
304 timerqueue_init(&alarm->node);
305 alarm->period = ktime_set(0, 0);
306 alarm->function = function;
307 alarm->type = type;
308 alarm->enabled = 0;
309}
310
John Stultz180bf812011-04-28 12:58:11 -0700311/**
John Stultzff3ead92011-01-11 09:42:13 -0800312 * alarm_start - Sets an alarm to fire
313 * @alarm: ptr to alarm to set
314 * @start: time to run the alarm
315 * @period: period at which the alarm will recur
John Stultzff3ead92011-01-11 09:42:13 -0800316 */
317void alarm_start(struct alarm *alarm, ktime_t start, ktime_t period)
318{
319 struct alarm_base *base = &alarm_bases[alarm->type];
320 unsigned long flags;
321
322 spin_lock_irqsave(&base->lock, flags);
323 if (alarm->enabled)
324 alarmtimer_remove(base, alarm);
325 alarm->node.expires = start;
326 alarm->period = period;
327 alarmtimer_enqueue(base, alarm);
328 alarm->enabled = 1;
329 spin_unlock_irqrestore(&base->lock, flags);
330}
331
John Stultz180bf812011-04-28 12:58:11 -0700332/**
John Stultzff3ead92011-01-11 09:42:13 -0800333 * alarm_cancel - Tries to cancel an alarm timer
334 * @alarm: ptr to alarm to be canceled
John Stultzff3ead92011-01-11 09:42:13 -0800335 */
336void alarm_cancel(struct alarm *alarm)
337{
338 struct alarm_base *base = &alarm_bases[alarm->type];
339 unsigned long flags;
340
341 spin_lock_irqsave(&base->lock, flags);
342 if (alarm->enabled)
343 alarmtimer_remove(base, alarm);
344 alarm->enabled = 0;
345 spin_unlock_irqrestore(&base->lock, flags);
346}
347
348
John Stultz180bf812011-04-28 12:58:11 -0700349/**
John Stultz9a7adcf2011-01-11 09:54:33 -0800350 * clock2alarm - helper that converts from clockid to alarmtypes
351 * @clockid: clockid.
John Stultz9a7adcf2011-01-11 09:54:33 -0800352 */
353static enum alarmtimer_type clock2alarm(clockid_t clockid)
354{
355 if (clockid == CLOCK_REALTIME_ALARM)
356 return ALARM_REALTIME;
357 if (clockid == CLOCK_BOOTTIME_ALARM)
358 return ALARM_BOOTTIME;
359 return -1;
360}
361
John Stultz180bf812011-04-28 12:58:11 -0700362/**
John Stultz9a7adcf2011-01-11 09:54:33 -0800363 * alarm_handle_timer - Callback for posix timers
364 * @alarm: alarm that fired
365 *
366 * Posix timer callback for expired alarm timers.
367 */
John Stultz4b413082011-08-10 10:37:59 -0700368static enum alarmtimer_restart alarm_handle_timer(struct alarm *alarm,
369 ktime_t now)
John Stultz9a7adcf2011-01-11 09:54:33 -0800370{
371 struct k_itimer *ptr = container_of(alarm, struct k_itimer,
372 it.alarmtimer);
373 if (posix_timer_event(ptr, 0) != 0)
374 ptr->it_overrun++;
John Stultz4b413082011-08-10 10:37:59 -0700375
376 return ALARMTIMER_NORESTART;
John Stultz9a7adcf2011-01-11 09:54:33 -0800377}
378
John Stultz180bf812011-04-28 12:58:11 -0700379/**
John Stultz9a7adcf2011-01-11 09:54:33 -0800380 * alarm_clock_getres - posix getres interface
381 * @which_clock: clockid
382 * @tp: timespec to fill
383 *
384 * Returns the granularity of underlying alarm base clock
385 */
386static int alarm_clock_getres(const clockid_t which_clock, struct timespec *tp)
387{
388 clockid_t baseid = alarm_bases[clock2alarm(which_clock)].base_clockid;
389
John Stultz1c6b39a2011-06-16 18:47:37 -0700390 if (!alarmtimer_get_rtcdev())
391 return -ENOTSUPP;
392
John Stultz9a7adcf2011-01-11 09:54:33 -0800393 return hrtimer_get_res(baseid, tp);
394}
395
396/**
397 * alarm_clock_get - posix clock_get interface
398 * @which_clock: clockid
399 * @tp: timespec to fill.
400 *
401 * Provides the underlying alarm base time.
402 */
403static int alarm_clock_get(clockid_t which_clock, struct timespec *tp)
404{
405 struct alarm_base *base = &alarm_bases[clock2alarm(which_clock)];
406
John Stultz1c6b39a2011-06-16 18:47:37 -0700407 if (!alarmtimer_get_rtcdev())
408 return -ENOTSUPP;
409
John Stultz9a7adcf2011-01-11 09:54:33 -0800410 *tp = ktime_to_timespec(base->gettime());
411 return 0;
412}
413
414/**
415 * alarm_timer_create - posix timer_create interface
416 * @new_timer: k_itimer pointer to manage
417 *
418 * Initializes the k_itimer structure.
419 */
420static int alarm_timer_create(struct k_itimer *new_timer)
421{
422 enum alarmtimer_type type;
423 struct alarm_base *base;
424
John Stultz1c6b39a2011-06-16 18:47:37 -0700425 if (!alarmtimer_get_rtcdev())
426 return -ENOTSUPP;
427
John Stultz9a7adcf2011-01-11 09:54:33 -0800428 if (!capable(CAP_WAKE_ALARM))
429 return -EPERM;
430
431 type = clock2alarm(new_timer->it_clock);
432 base = &alarm_bases[type];
433 alarm_init(&new_timer->it.alarmtimer, type, alarm_handle_timer);
434 return 0;
435}
436
437/**
438 * alarm_timer_get - posix timer_get interface
439 * @new_timer: k_itimer pointer
440 * @cur_setting: itimerspec data to fill
441 *
442 * Copies the itimerspec data out from the k_itimer
443 */
444static void alarm_timer_get(struct k_itimer *timr,
445 struct itimerspec *cur_setting)
446{
John Stultzea7802f2011-08-04 07:51:56 -0700447 memset(cur_setting, 0, sizeof(struct itimerspec));
448
John Stultz9a7adcf2011-01-11 09:54:33 -0800449 cur_setting->it_interval =
450 ktime_to_timespec(timr->it.alarmtimer.period);
451 cur_setting->it_value =
452 ktime_to_timespec(timr->it.alarmtimer.node.expires);
453 return;
454}
455
456/**
457 * alarm_timer_del - posix timer_del interface
458 * @timr: k_itimer pointer to be deleted
459 *
460 * Cancels any programmed alarms for the given timer.
461 */
462static int alarm_timer_del(struct k_itimer *timr)
463{
John Stultz1c6b39a2011-06-16 18:47:37 -0700464 if (!rtcdev)
465 return -ENOTSUPP;
466
John Stultz9a7adcf2011-01-11 09:54:33 -0800467 alarm_cancel(&timr->it.alarmtimer);
468 return 0;
469}
470
471/**
472 * alarm_timer_set - posix timer_set interface
473 * @timr: k_itimer pointer to be deleted
474 * @flags: timer flags
475 * @new_setting: itimerspec to be used
476 * @old_setting: itimerspec being replaced
477 *
478 * Sets the timer to new_setting, and starts the timer.
479 */
480static int alarm_timer_set(struct k_itimer *timr, int flags,
481 struct itimerspec *new_setting,
482 struct itimerspec *old_setting)
483{
John Stultz1c6b39a2011-06-16 18:47:37 -0700484 if (!rtcdev)
485 return -ENOTSUPP;
486
John Stultz6af7e472011-08-10 10:26:09 -0700487 /*
488 * XXX HACK! Currently we can DOS a system if the interval
489 * period on alarmtimers is too small. Cap the interval here
490 * to 100us and solve this properly in a future patch! -jstultz
491 */
492 if ((new_setting->it_interval.tv_sec == 0) &&
493 (new_setting->it_interval.tv_nsec < 100000))
494 new_setting->it_interval.tv_nsec = 100000;
495
John Stultz971c90b2011-08-04 07:25:35 -0700496 if (old_setting)
497 alarm_timer_get(timr, old_setting);
John Stultz9a7adcf2011-01-11 09:54:33 -0800498
499 /* If the timer was already set, cancel it */
500 alarm_cancel(&timr->it.alarmtimer);
501
502 /* start the timer */
503 alarm_start(&timr->it.alarmtimer,
504 timespec_to_ktime(new_setting->it_value),
505 timespec_to_ktime(new_setting->it_interval));
506 return 0;
507}
508
509/**
510 * alarmtimer_nsleep_wakeup - Wakeup function for alarm_timer_nsleep
511 * @alarm: ptr to alarm that fired
512 *
513 * Wakes up the task that set the alarmtimer
514 */
John Stultz4b413082011-08-10 10:37:59 -0700515static enum alarmtimer_restart alarmtimer_nsleep_wakeup(struct alarm *alarm,
516 ktime_t now)
John Stultz9a7adcf2011-01-11 09:54:33 -0800517{
518 struct task_struct *task = (struct task_struct *)alarm->data;
519
520 alarm->data = NULL;
521 if (task)
522 wake_up_process(task);
John Stultz4b413082011-08-10 10:37:59 -0700523 return ALARMTIMER_NORESTART;
John Stultz9a7adcf2011-01-11 09:54:33 -0800524}
525
526/**
527 * alarmtimer_do_nsleep - Internal alarmtimer nsleep implementation
528 * @alarm: ptr to alarmtimer
529 * @absexp: absolute expiration time
530 *
531 * Sets the alarm timer and sleeps until it is fired or interrupted.
532 */
533static int alarmtimer_do_nsleep(struct alarm *alarm, ktime_t absexp)
534{
535 alarm->data = (void *)current;
536 do {
537 set_current_state(TASK_INTERRUPTIBLE);
538 alarm_start(alarm, absexp, ktime_set(0, 0));
539 if (likely(alarm->data))
540 schedule();
541
542 alarm_cancel(alarm);
543 } while (alarm->data && !signal_pending(current));
544
545 __set_current_state(TASK_RUNNING);
546
547 return (alarm->data == NULL);
548}
549
550
551/**
552 * update_rmtp - Update remaining timespec value
553 * @exp: expiration time
554 * @type: timer type
555 * @rmtp: user pointer to remaining timepsec value
556 *
557 * Helper function that fills in rmtp value with time between
558 * now and the exp value
559 */
560static int update_rmtp(ktime_t exp, enum alarmtimer_type type,
561 struct timespec __user *rmtp)
562{
563 struct timespec rmt;
564 ktime_t rem;
565
566 rem = ktime_sub(exp, alarm_bases[type].gettime());
567
568 if (rem.tv64 <= 0)
569 return 0;
570 rmt = ktime_to_timespec(rem);
571
572 if (copy_to_user(rmtp, &rmt, sizeof(*rmtp)))
573 return -EFAULT;
574
575 return 1;
576
577}
578
579/**
580 * alarm_timer_nsleep_restart - restartblock alarmtimer nsleep
581 * @restart: ptr to restart block
582 *
583 * Handles restarted clock_nanosleep calls
584 */
585static long __sched alarm_timer_nsleep_restart(struct restart_block *restart)
586{
Thomas Gleixnerab8177b2011-05-20 13:05:15 +0200587 enum alarmtimer_type type = restart->nanosleep.clockid;
John Stultz9a7adcf2011-01-11 09:54:33 -0800588 ktime_t exp;
589 struct timespec __user *rmtp;
590 struct alarm alarm;
591 int ret = 0;
592
593 exp.tv64 = restart->nanosleep.expires;
594 alarm_init(&alarm, type, alarmtimer_nsleep_wakeup);
595
596 if (alarmtimer_do_nsleep(&alarm, exp))
597 goto out;
598
599 if (freezing(current))
600 alarmtimer_freezerset(exp, type);
601
602 rmtp = restart->nanosleep.rmtp;
603 if (rmtp) {
604 ret = update_rmtp(exp, type, rmtp);
605 if (ret <= 0)
606 goto out;
607 }
608
609
610 /* The other values in restart are already filled in */
611 ret = -ERESTART_RESTARTBLOCK;
612out:
613 return ret;
614}
615
616/**
617 * alarm_timer_nsleep - alarmtimer nanosleep
618 * @which_clock: clockid
619 * @flags: determins abstime or relative
620 * @tsreq: requested sleep time (abs or rel)
621 * @rmtp: remaining sleep time saved
622 *
623 * Handles clock_nanosleep calls against _ALARM clockids
624 */
625static int alarm_timer_nsleep(const clockid_t which_clock, int flags,
626 struct timespec *tsreq, struct timespec __user *rmtp)
627{
628 enum alarmtimer_type type = clock2alarm(which_clock);
629 struct alarm alarm;
630 ktime_t exp;
631 int ret = 0;
632 struct restart_block *restart;
633
John Stultz1c6b39a2011-06-16 18:47:37 -0700634 if (!alarmtimer_get_rtcdev())
635 return -ENOTSUPP;
636
John Stultz9a7adcf2011-01-11 09:54:33 -0800637 if (!capable(CAP_WAKE_ALARM))
638 return -EPERM;
639
640 alarm_init(&alarm, type, alarmtimer_nsleep_wakeup);
641
642 exp = timespec_to_ktime(*tsreq);
643 /* Convert (if necessary) to absolute time */
644 if (flags != TIMER_ABSTIME) {
645 ktime_t now = alarm_bases[type].gettime();
646 exp = ktime_add(now, exp);
647 }
648
649 if (alarmtimer_do_nsleep(&alarm, exp))
650 goto out;
651
652 if (freezing(current))
653 alarmtimer_freezerset(exp, type);
654
655 /* abs timers don't set remaining time or restart */
656 if (flags == TIMER_ABSTIME) {
657 ret = -ERESTARTNOHAND;
658 goto out;
659 }
660
661 if (rmtp) {
662 ret = update_rmtp(exp, type, rmtp);
663 if (ret <= 0)
664 goto out;
665 }
666
667 restart = &current_thread_info()->restart_block;
668 restart->fn = alarm_timer_nsleep_restart;
Thomas Gleixnerab8177b2011-05-20 13:05:15 +0200669 restart->nanosleep.clockid = type;
John Stultz9a7adcf2011-01-11 09:54:33 -0800670 restart->nanosleep.expires = exp.tv64;
671 restart->nanosleep.rmtp = rmtp;
672 ret = -ERESTART_RESTARTBLOCK;
673
674out:
675 return ret;
676}
John Stultzff3ead92011-01-11 09:42:13 -0800677
John Stultzff3ead92011-01-11 09:42:13 -0800678
679/* Suspend hook structures */
680static const struct dev_pm_ops alarmtimer_pm_ops = {
681 .suspend = alarmtimer_suspend,
682};
683
684static struct platform_driver alarmtimer_driver = {
685 .driver = {
686 .name = "alarmtimer",
687 .pm = &alarmtimer_pm_ops,
688 }
689};
690
691/**
692 * alarmtimer_init - Initialize alarm timer code
693 *
694 * This function initializes the alarm bases and registers
695 * the posix clock ids.
696 */
697static int __init alarmtimer_init(void)
698{
699 int error = 0;
700 int i;
John Stultz9a7adcf2011-01-11 09:54:33 -0800701 struct k_clock alarm_clock = {
702 .clock_getres = alarm_clock_getres,
703 .clock_get = alarm_clock_get,
704 .timer_create = alarm_timer_create,
705 .timer_set = alarm_timer_set,
706 .timer_del = alarm_timer_del,
707 .timer_get = alarm_timer_get,
708 .nsleep = alarm_timer_nsleep,
709 };
710
711 posix_timers_register_clock(CLOCK_REALTIME_ALARM, &alarm_clock);
712 posix_timers_register_clock(CLOCK_BOOTTIME_ALARM, &alarm_clock);
John Stultzff3ead92011-01-11 09:42:13 -0800713
714 /* Initialize alarm bases */
715 alarm_bases[ALARM_REALTIME].base_clockid = CLOCK_REALTIME;
716 alarm_bases[ALARM_REALTIME].gettime = &ktime_get_real;
717 alarm_bases[ALARM_BOOTTIME].base_clockid = CLOCK_BOOTTIME;
718 alarm_bases[ALARM_BOOTTIME].gettime = &ktime_get_boottime;
719 for (i = 0; i < ALARM_NUMTYPE; i++) {
720 timerqueue_init_head(&alarm_bases[i].timerqueue);
721 spin_lock_init(&alarm_bases[i].lock);
722 hrtimer_init(&alarm_bases[i].timer,
723 alarm_bases[i].base_clockid,
724 HRTIMER_MODE_ABS);
725 alarm_bases[i].timer.function = alarmtimer_fired;
John Stultzff3ead92011-01-11 09:42:13 -0800726 }
727 error = platform_driver_register(&alarmtimer_driver);
728 platform_device_register_simple("alarmtimer", -1, NULL, 0);
729
730 return error;
731}
732device_initcall(alarmtimer_init);
733