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Alessandro Zummo0c86edc2006-03-27 01:16:37 -08001/*
2 * RTC subsystem, interface functions
3 *
4 * Copyright (C) 2005 Tower Technologies
5 * Author: Alessandro Zummo <a.zummo@towertech.it>
6 *
7 * based on arch/arm/common/rtctime.c
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 as
11 * published by the Free Software Foundation.
12*/
13
14#include <linux/rtc.h>
Alexey Dobriyand43c36d2009-10-07 17:09:06 +040015#include <linux/sched.h>
Paul Gortmaker21138522011-05-27 09:57:25 -040016#include <linux/module.h>
David Brownell97144c62007-10-16 01:28:16 -070017#include <linux/log2.h>
John Stultz6610e082010-09-23 15:07:34 -070018#include <linux/workqueue.h>
19
Baolin Wang29a1f592017-12-14 13:31:43 +080020#define CREATE_TRACE_POINTS
21#include <trace/events/rtc.h>
22
John Stultzaa0be0f2011-01-20 15:26:12 -080023static int rtc_timer_enqueue(struct rtc_device *rtc, struct rtc_timer *timer);
24static void rtc_timer_remove(struct rtc_device *rtc, struct rtc_timer *timer);
25
Baolin Wang98951562018-01-08 14:04:50 +080026static void rtc_add_offset(struct rtc_device *rtc, struct rtc_time *tm)
27{
28 time64_t secs;
29
30 if (!rtc->offset_secs)
31 return;
32
33 secs = rtc_tm_to_time64(tm);
34
35 /*
36 * Since the reading time values from RTC device are always in the RTC
37 * original valid range, but we need to skip the overlapped region
38 * between expanded range and original range, which is no need to add
39 * the offset.
40 */
41 if ((rtc->start_secs > rtc->range_min && secs >= rtc->start_secs) ||
42 (rtc->start_secs < rtc->range_min &&
43 secs <= (rtc->start_secs + rtc->range_max - rtc->range_min)))
44 return;
45
46 rtc_time64_to_tm(secs + rtc->offset_secs, tm);
47}
48
49static void rtc_subtract_offset(struct rtc_device *rtc, struct rtc_time *tm)
50{
51 time64_t secs;
52
53 if (!rtc->offset_secs)
54 return;
55
56 secs = rtc_tm_to_time64(tm);
57
58 /*
59 * If the setting time values are in the valid range of RTC hardware
60 * device, then no need to subtract the offset when setting time to RTC
61 * device. Otherwise we need to subtract the offset to make the time
62 * values are valid for RTC hardware device.
63 */
64 if (secs >= rtc->range_min && secs <= rtc->range_max)
65 return;
66
67 rtc_time64_to_tm(secs - rtc->offset_secs, tm);
68}
69
Baolin Wang4c4e5df2018-01-08 14:04:49 +080070static int rtc_valid_range(struct rtc_device *rtc, struct rtc_time *tm)
71{
72 if (rtc->range_min != rtc->range_max) {
73 time64_t time = rtc_tm_to_time64(tm);
Baolin Wang98951562018-01-08 14:04:50 +080074 time64_t range_min = rtc->set_start_time ? rtc->start_secs :
75 rtc->range_min;
76 time64_t range_max = rtc->set_start_time ?
77 (rtc->start_secs + rtc->range_max - rtc->range_min) :
78 rtc->range_max;
Baolin Wang4c4e5df2018-01-08 14:04:49 +080079
Baolin Wang98951562018-01-08 14:04:50 +080080 if (time < range_min || time > range_max)
Baolin Wang4c4e5df2018-01-08 14:04:49 +080081 return -ERANGE;
82 }
83
84 return 0;
85}
86
John Stultz6610e082010-09-23 15:07:34 -070087static int __rtc_read_time(struct rtc_device *rtc, struct rtc_time *tm)
88{
89 int err;
90 if (!rtc->ops)
91 err = -ENODEV;
92 else if (!rtc->ops->read_time)
93 err = -EINVAL;
94 else {
95 memset(tm, 0, sizeof(struct rtc_time));
96 err = rtc->ops->read_time(rtc->dev.parent, tm);
Hyogi Gim16682c862014-12-10 15:52:27 -080097 if (err < 0) {
Aaro Koskinend0bddb52015-04-16 12:45:51 -070098 dev_dbg(&rtc->dev, "read_time: fail to read: %d\n",
99 err);
Hyogi Gim16682c862014-12-10 15:52:27 -0800100 return err;
101 }
102
Baolin Wang98951562018-01-08 14:04:50 +0800103 rtc_add_offset(rtc, tm);
104
Hyogi Gim16682c862014-12-10 15:52:27 -0800105 err = rtc_valid_tm(tm);
106 if (err < 0)
Aaro Koskinend0bddb52015-04-16 12:45:51 -0700107 dev_dbg(&rtc->dev, "read_time: rtc_time isn't valid\n");
John Stultz6610e082010-09-23 15:07:34 -0700108 }
109 return err;
110}
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800111
David Brownellab6a2d72007-05-08 00:33:30 -0700112int rtc_read_time(struct rtc_device *rtc, struct rtc_time *tm)
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800113{
114 int err;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800115
116 err = mutex_lock_interruptible(&rtc->ops_lock);
117 if (err)
David Brownellb68bb262008-07-29 22:33:30 -0700118 return err;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800119
John Stultz6610e082010-09-23 15:07:34 -0700120 err = __rtc_read_time(rtc, tm);
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800121 mutex_unlock(&rtc->ops_lock);
Baolin Wang29a1f592017-12-14 13:31:43 +0800122
123 trace_rtc_read_time(rtc_tm_to_time64(tm), err);
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800124 return err;
125}
126EXPORT_SYMBOL_GPL(rtc_read_time);
127
David Brownellab6a2d72007-05-08 00:33:30 -0700128int rtc_set_time(struct rtc_device *rtc, struct rtc_time *tm)
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800129{
130 int err;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800131
132 err = rtc_valid_tm(tm);
133 if (err != 0)
134 return err;
135
Baolin Wang4c4e5df2018-01-08 14:04:49 +0800136 err = rtc_valid_range(rtc, tm);
137 if (err)
138 return err;
Alexandre Belloni71db0492018-02-17 14:58:40 +0100139
Baolin Wang98951562018-01-08 14:04:50 +0800140 rtc_subtract_offset(rtc, tm);
141
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800142 err = mutex_lock_interruptible(&rtc->ops_lock);
143 if (err)
David Brownellb68bb262008-07-29 22:33:30 -0700144 return err;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800145
146 if (!rtc->ops)
147 err = -ENODEV;
Alessandro Zummobbccf832009-01-06 14:42:21 -0800148 else if (rtc->ops->set_time)
David Brownellcd966202007-05-08 00:33:40 -0700149 err = rtc->ops->set_time(rtc->dev.parent, tm);
Xunlei Pang8e4ff1a2015-04-01 20:34:27 -0700150 else if (rtc->ops->set_mmss64) {
151 time64_t secs64 = rtc_tm_to_time64(tm);
152
153 err = rtc->ops->set_mmss64(rtc->dev.parent, secs64);
154 } else if (rtc->ops->set_mmss) {
Xunlei Pangbc10aa92015-01-22 02:31:51 +0000155 time64_t secs64 = rtc_tm_to_time64(tm);
156 err = rtc->ops->set_mmss(rtc->dev.parent, secs64);
Alessandro Zummobbccf832009-01-06 14:42:21 -0800157 } else
158 err = -EINVAL;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800159
Zoran Markovic14d0e342013-06-26 16:09:13 -0700160 pm_stay_awake(rtc->dev.parent);
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800161 mutex_unlock(&rtc->ops_lock);
NeilBrown5f9679d2011-12-09 09:39:15 +1100162 /* A timer might have just expired */
163 schedule_work(&rtc->irqwork);
Baolin Wang29a1f592017-12-14 13:31:43 +0800164
165 trace_rtc_set_time(rtc_tm_to_time64(tm), err);
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800166 return err;
167}
168EXPORT_SYMBOL_GPL(rtc_set_time);
169
John Stultzf44f7f92011-02-21 22:58:51 -0800170static int rtc_read_alarm_internal(struct rtc_device *rtc, struct rtc_wkalrm *alarm)
171{
172 int err;
173
174 err = mutex_lock_interruptible(&rtc->ops_lock);
175 if (err)
176 return err;
177
178 if (rtc->ops == NULL)
179 err = -ENODEV;
180 else if (!rtc->ops->read_alarm)
181 err = -EINVAL;
182 else {
Uwe Kleine-Königd68778b2016-05-11 09:11:23 +0200183 alarm->enabled = 0;
184 alarm->pending = 0;
185 alarm->time.tm_sec = -1;
186 alarm->time.tm_min = -1;
187 alarm->time.tm_hour = -1;
188 alarm->time.tm_mday = -1;
189 alarm->time.tm_mon = -1;
190 alarm->time.tm_year = -1;
191 alarm->time.tm_wday = -1;
192 alarm->time.tm_yday = -1;
193 alarm->time.tm_isdst = -1;
John Stultzf44f7f92011-02-21 22:58:51 -0800194 err = rtc->ops->read_alarm(rtc->dev.parent, alarm);
195 }
196
197 mutex_unlock(&rtc->ops_lock);
Baolin Wang29a1f592017-12-14 13:31:43 +0800198
199 trace_rtc_read_alarm(rtc_tm_to_time64(&alarm->time), err);
John Stultzf44f7f92011-02-21 22:58:51 -0800200 return err;
201}
202
203int __rtc_read_alarm(struct rtc_device *rtc, struct rtc_wkalrm *alarm)
204{
205 int err;
206 struct rtc_time before, now;
207 int first_time = 1;
Xunlei Pangbc10aa92015-01-22 02:31:51 +0000208 time64_t t_now, t_alm;
John Stultzf44f7f92011-02-21 22:58:51 -0800209 enum { none, day, month, year } missing = none;
210 unsigned days;
211
212 /* The lower level RTC driver may return -1 in some fields,
213 * creating invalid alarm->time values, for reasons like:
214 *
215 * - The hardware may not be capable of filling them in;
216 * many alarms match only on time-of-day fields, not
217 * day/month/year calendar data.
218 *
219 * - Some hardware uses illegal values as "wildcard" match
220 * values, which non-Linux firmware (like a BIOS) may try
221 * to set up as e.g. "alarm 15 minutes after each hour".
222 * Linux uses only oneshot alarms.
223 *
224 * When we see that here, we deal with it by using values from
225 * a current RTC timestamp for any missing (-1) values. The
226 * RTC driver prevents "periodic alarm" modes.
227 *
228 * But this can be racey, because some fields of the RTC timestamp
229 * may have wrapped in the interval since we read the RTC alarm,
230 * which would lead to us inserting inconsistent values in place
231 * of the -1 fields.
232 *
233 * Reading the alarm and timestamp in the reverse sequence
234 * would have the same race condition, and not solve the issue.
235 *
236 * So, we must first read the RTC timestamp,
237 * then read the RTC alarm value,
238 * and then read a second RTC timestamp.
239 *
240 * If any fields of the second timestamp have changed
241 * when compared with the first timestamp, then we know
242 * our timestamp may be inconsistent with that used by
243 * the low-level rtc_read_alarm_internal() function.
244 *
245 * So, when the two timestamps disagree, we just loop and do
246 * the process again to get a fully consistent set of values.
247 *
248 * This could all instead be done in the lower level driver,
249 * but since more than one lower level RTC implementation needs it,
250 * then it's probably best best to do it here instead of there..
251 */
252
253 /* Get the "before" timestamp */
254 err = rtc_read_time(rtc, &before);
255 if (err < 0)
256 return err;
257 do {
258 if (!first_time)
259 memcpy(&before, &now, sizeof(struct rtc_time));
260 first_time = 0;
261
262 /* get the RTC alarm values, which may be incomplete */
263 err = rtc_read_alarm_internal(rtc, alarm);
264 if (err)
265 return err;
266
267 /* full-function RTCs won't have such missing fields */
Alexandre Bellonifd6792b2018-07-12 12:22:44 +0200268 if (rtc_valid_tm(&alarm->time) == 0) {
269 rtc_add_offset(rtc, &alarm->time);
John Stultzf44f7f92011-02-21 22:58:51 -0800270 return 0;
Alexandre Bellonifd6792b2018-07-12 12:22:44 +0200271 }
John Stultzf44f7f92011-02-21 22:58:51 -0800272
273 /* get the "after" timestamp, to detect wrapped fields */
274 err = rtc_read_time(rtc, &now);
275 if (err < 0)
276 return err;
277
278 /* note that tm_sec is a "don't care" value here: */
279 } while ( before.tm_min != now.tm_min
280 || before.tm_hour != now.tm_hour
281 || before.tm_mon != now.tm_mon
282 || before.tm_year != now.tm_year);
283
284 /* Fill in the missing alarm fields using the timestamp; we
285 * know there's at least one since alarm->time is invalid.
286 */
287 if (alarm->time.tm_sec == -1)
288 alarm->time.tm_sec = now.tm_sec;
289 if (alarm->time.tm_min == -1)
290 alarm->time.tm_min = now.tm_min;
291 if (alarm->time.tm_hour == -1)
292 alarm->time.tm_hour = now.tm_hour;
293
294 /* For simplicity, only support date rollover for now */
Ben Hutchingse74a8f22012-01-10 15:11:02 -0800295 if (alarm->time.tm_mday < 1 || alarm->time.tm_mday > 31) {
John Stultzf44f7f92011-02-21 22:58:51 -0800296 alarm->time.tm_mday = now.tm_mday;
297 missing = day;
298 }
Ben Hutchingse74a8f22012-01-10 15:11:02 -0800299 if ((unsigned)alarm->time.tm_mon >= 12) {
John Stultzf44f7f92011-02-21 22:58:51 -0800300 alarm->time.tm_mon = now.tm_mon;
301 if (missing == none)
302 missing = month;
303 }
304 if (alarm->time.tm_year == -1) {
305 alarm->time.tm_year = now.tm_year;
306 if (missing == none)
307 missing = year;
308 }
309
Vaibhav Jainda96aea2017-05-19 22:18:55 +0530310 /* Can't proceed if alarm is still invalid after replacing
311 * missing fields.
312 */
313 err = rtc_valid_tm(&alarm->time);
314 if (err)
315 goto done;
316
John Stultzf44f7f92011-02-21 22:58:51 -0800317 /* with luck, no rollover is needed */
Xunlei Pangbc10aa92015-01-22 02:31:51 +0000318 t_now = rtc_tm_to_time64(&now);
319 t_alm = rtc_tm_to_time64(&alarm->time);
John Stultzf44f7f92011-02-21 22:58:51 -0800320 if (t_now < t_alm)
321 goto done;
322
323 switch (missing) {
324
325 /* 24 hour rollover ... if it's now 10am Monday, an alarm that
326 * that will trigger at 5am will do so at 5am Tuesday, which
327 * could also be in the next month or year. This is a common
328 * case, especially for PCs.
329 */
330 case day:
331 dev_dbg(&rtc->dev, "alarm rollover: %s\n", "day");
332 t_alm += 24 * 60 * 60;
Xunlei Pangbc10aa92015-01-22 02:31:51 +0000333 rtc_time64_to_tm(t_alm, &alarm->time);
John Stultzf44f7f92011-02-21 22:58:51 -0800334 break;
335
336 /* Month rollover ... if it's the 31th, an alarm on the 3rd will
337 * be next month. An alarm matching on the 30th, 29th, or 28th
338 * may end up in the month after that! Many newer PCs support
339 * this type of alarm.
340 */
341 case month:
342 dev_dbg(&rtc->dev, "alarm rollover: %s\n", "month");
343 do {
344 if (alarm->time.tm_mon < 11)
345 alarm->time.tm_mon++;
346 else {
347 alarm->time.tm_mon = 0;
348 alarm->time.tm_year++;
349 }
350 days = rtc_month_days(alarm->time.tm_mon,
351 alarm->time.tm_year);
352 } while (days < alarm->time.tm_mday);
353 break;
354
355 /* Year rollover ... easy except for leap years! */
356 case year:
357 dev_dbg(&rtc->dev, "alarm rollover: %s\n", "year");
358 do {
359 alarm->time.tm_year++;
Ales Novakee1d9012014-06-06 14:35:39 -0700360 } while (!is_leap_year(alarm->time.tm_year + 1900)
361 && rtc_valid_tm(&alarm->time) != 0);
John Stultzf44f7f92011-02-21 22:58:51 -0800362 break;
363
364 default:
365 dev_warn(&rtc->dev, "alarm rollover not handled\n");
366 }
367
Ales Novakee1d9012014-06-06 14:35:39 -0700368 err = rtc_valid_tm(&alarm->time);
369
Vaibhav Jainda96aea2017-05-19 22:18:55 +0530370done:
Andy Shevchenko5548cbf2018-12-04 23:23:12 +0200371 if (err)
372 dev_warn(&rtc->dev, "invalid alarm value: %ptR\n", &alarm->time);
Ales Novakee1d9012014-06-06 14:35:39 -0700373
374 return err;
John Stultzf44f7f92011-02-21 22:58:51 -0800375}
376
John Stultz6610e082010-09-23 15:07:34 -0700377int rtc_read_alarm(struct rtc_device *rtc, struct rtc_wkalrm *alarm)
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800378{
379 int err;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800380
381 err = mutex_lock_interruptible(&rtc->ops_lock);
382 if (err)
David Brownellb68bb262008-07-29 22:33:30 -0700383 return err;
John Stultzd5553a52011-01-20 15:26:13 -0800384 if (rtc->ops == NULL)
385 err = -ENODEV;
386 else if (!rtc->ops->read_alarm)
387 err = -EINVAL;
388 else {
389 memset(alarm, 0, sizeof(struct rtc_wkalrm));
390 alarm->enabled = rtc->aie_timer.enabled;
John Stultz6610e082010-09-23 15:07:34 -0700391 alarm->time = rtc_ktime_to_tm(rtc->aie_timer.node.expires);
John Stultzd5553a52011-01-20 15:26:13 -0800392 }
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800393 mutex_unlock(&rtc->ops_lock);
Mark Lord0e36a9a2007-10-16 01:28:21 -0700394
Baolin Wang29a1f592017-12-14 13:31:43 +0800395 trace_rtc_read_alarm(rtc_tm_to_time64(&alarm->time), err);
John Stultzd5553a52011-01-20 15:26:13 -0800396 return err;
Mark Lord0e36a9a2007-10-16 01:28:21 -0700397}
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800398EXPORT_SYMBOL_GPL(rtc_read_alarm);
399
Mark Brownd576fe42011-06-01 11:13:16 +0100400static int __rtc_set_alarm(struct rtc_device *rtc, struct rtc_wkalrm *alarm)
John Stultz6610e082010-09-23 15:07:34 -0700401{
402 struct rtc_time tm;
Xunlei Pangbc10aa92015-01-22 02:31:51 +0000403 time64_t now, scheduled;
John Stultz6610e082010-09-23 15:07:34 -0700404 int err;
405
406 err = rtc_valid_tm(&alarm->time);
407 if (err)
408 return err;
Baolin Wang98951562018-01-08 14:04:50 +0800409
Xunlei Pangbc10aa92015-01-22 02:31:51 +0000410 scheduled = rtc_tm_to_time64(&alarm->time);
John Stultz6610e082010-09-23 15:07:34 -0700411
412 /* Make sure we're not setting alarms in the past */
413 err = __rtc_read_time(rtc, &tm);
Hyogi Gimca6dc2d2014-08-08 14:20:11 -0700414 if (err)
415 return err;
Xunlei Pangbc10aa92015-01-22 02:31:51 +0000416 now = rtc_tm_to_time64(&tm);
John Stultz6610e082010-09-23 15:07:34 -0700417 if (scheduled <= now)
418 return -ETIME;
419 /*
420 * XXX - We just checked to make sure the alarm time is not
421 * in the past, but there is still a race window where if
422 * the is alarm set for the next second and the second ticks
423 * over right here, before we set the alarm.
424 */
425
Alexandre Bellonifd6792b2018-07-12 12:22:44 +0200426 rtc_subtract_offset(rtc, &alarm->time);
427
Linus Torvalds157e8bf2012-01-03 17:32:13 -0800428 if (!rtc->ops)
429 err = -ENODEV;
430 else if (!rtc->ops->set_alarm)
431 err = -EINVAL;
432 else
433 err = rtc->ops->set_alarm(rtc->dev.parent, alarm);
434
Baolin Wang29a1f592017-12-14 13:31:43 +0800435 trace_rtc_set_alarm(rtc_tm_to_time64(&alarm->time), err);
Linus Torvalds157e8bf2012-01-03 17:32:13 -0800436 return err;
John Stultz6610e082010-09-23 15:07:34 -0700437}
438
David Brownellab6a2d72007-05-08 00:33:30 -0700439int rtc_set_alarm(struct rtc_device *rtc, struct rtc_wkalrm *alarm)
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800440{
441 int err;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800442
Alexandre Belloniabfdff42018-06-05 23:09:14 +0200443 if (!rtc->ops)
444 return -ENODEV;
445 else if (!rtc->ops->set_alarm)
446 return -EINVAL;
447
David Brownellf8245c22007-05-08 00:34:07 -0700448 err = rtc_valid_tm(&alarm->time);
449 if (err != 0)
450 return err;
451
Baolin Wang4c4e5df2018-01-08 14:04:49 +0800452 err = rtc_valid_range(rtc, &alarm->time);
453 if (err)
454 return err;
Alexandre Belloni71db0492018-02-17 14:58:40 +0100455
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800456 err = mutex_lock_interruptible(&rtc->ops_lock);
457 if (err)
David Brownellb68bb262008-07-29 22:33:30 -0700458 return err;
Sachin Kamat3ff2e132013-07-03 15:05:42 -0700459 if (rtc->aie_timer.enabled)
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100460 rtc_timer_remove(rtc, &rtc->aie_timer);
Sachin Kamat3ff2e132013-07-03 15:05:42 -0700461
John Stultz6610e082010-09-23 15:07:34 -0700462 rtc->aie_timer.node.expires = rtc_tm_to_ktime(alarm->time);
Thomas Gleixner8b0e1952016-12-25 12:30:41 +0100463 rtc->aie_timer.period = 0;
Sachin Kamat3ff2e132013-07-03 15:05:42 -0700464 if (alarm->enabled)
John Stultzaa0be0f2011-01-20 15:26:12 -0800465 err = rtc_timer_enqueue(rtc, &rtc->aie_timer);
Sachin Kamat3ff2e132013-07-03 15:05:42 -0700466
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800467 mutex_unlock(&rtc->ops_lock);
Baolin Wang98951562018-01-08 14:04:50 +0800468
John Stultzaa0be0f2011-01-20 15:26:12 -0800469 return err;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800470}
471EXPORT_SYMBOL_GPL(rtc_set_alarm);
472
John Stultzf6d5b332011-03-29 18:00:27 -0700473/* Called once per device from rtc_device_register */
474int rtc_initialize_alarm(struct rtc_device *rtc, struct rtc_wkalrm *alarm)
475{
476 int err;
John Stultzbd729d72012-01-05 15:21:19 -0800477 struct rtc_time now;
John Stultzf6d5b332011-03-29 18:00:27 -0700478
479 err = rtc_valid_tm(&alarm->time);
480 if (err != 0)
481 return err;
482
John Stultzbd729d72012-01-05 15:21:19 -0800483 err = rtc_read_time(rtc, &now);
484 if (err)
485 return err;
486
John Stultzf6d5b332011-03-29 18:00:27 -0700487 err = mutex_lock_interruptible(&rtc->ops_lock);
488 if (err)
489 return err;
490
491 rtc->aie_timer.node.expires = rtc_tm_to_ktime(alarm->time);
Thomas Gleixner8b0e1952016-12-25 12:30:41 +0100492 rtc->aie_timer.period = 0;
John Stultzbd729d72012-01-05 15:21:19 -0800493
Uwe Kleine-König6785b3b2016-07-02 17:28:12 +0200494 /* Alarm has to be enabled & in the future for us to enqueue it */
Thomas Gleixner2456e852016-12-25 11:38:40 +0100495 if (alarm->enabled && (rtc_tm_to_ktime(now) <
496 rtc->aie_timer.node.expires)) {
John Stultzbd729d72012-01-05 15:21:19 -0800497
John Stultzf6d5b332011-03-29 18:00:27 -0700498 rtc->aie_timer.enabled = 1;
499 timerqueue_add(&rtc->timerqueue, &rtc->aie_timer.node);
Baolin Wang29a1f592017-12-14 13:31:43 +0800500 trace_rtc_timer_enqueue(&rtc->aie_timer);
John Stultzf6d5b332011-03-29 18:00:27 -0700501 }
502 mutex_unlock(&rtc->ops_lock);
503 return err;
504}
505EXPORT_SYMBOL_GPL(rtc_initialize_alarm);
506
Alessandro Zummo099e6572009-01-04 12:00:54 -0800507int rtc_alarm_irq_enable(struct rtc_device *rtc, unsigned int enabled)
508{
509 int err = mutex_lock_interruptible(&rtc->ops_lock);
510 if (err)
511 return err;
512
John Stultz6610e082010-09-23 15:07:34 -0700513 if (rtc->aie_timer.enabled != enabled) {
John Stultzaa0be0f2011-01-20 15:26:12 -0800514 if (enabled)
515 err = rtc_timer_enqueue(rtc, &rtc->aie_timer);
516 else
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100517 rtc_timer_remove(rtc, &rtc->aie_timer);
John Stultz6610e082010-09-23 15:07:34 -0700518 }
519
John Stultzaa0be0f2011-01-20 15:26:12 -0800520 if (err)
Uwe Kleine-König516373b2011-02-14 11:33:17 +0100521 /* nothing */;
522 else if (!rtc->ops)
Alessandro Zummo099e6572009-01-04 12:00:54 -0800523 err = -ENODEV;
524 else if (!rtc->ops->alarm_irq_enable)
525 err = -EINVAL;
526 else
527 err = rtc->ops->alarm_irq_enable(rtc->dev.parent, enabled);
528
529 mutex_unlock(&rtc->ops_lock);
Baolin Wang29a1f592017-12-14 13:31:43 +0800530
531 trace_rtc_alarm_irq_enable(enabled, err);
Alessandro Zummo099e6572009-01-04 12:00:54 -0800532 return err;
533}
534EXPORT_SYMBOL_GPL(rtc_alarm_irq_enable);
535
536int rtc_update_irq_enable(struct rtc_device *rtc, unsigned int enabled)
537{
538 int err = mutex_lock_interruptible(&rtc->ops_lock);
539 if (err)
540 return err;
541
John Stultz456d66e2011-02-11 18:15:23 -0800542#ifdef CONFIG_RTC_INTF_DEV_UIE_EMUL
543 if (enabled == 0 && rtc->uie_irq_active) {
544 mutex_unlock(&rtc->ops_lock);
545 return rtc_dev_update_irq_enable_emul(rtc, 0);
546 }
547#endif
John Stultz6610e082010-09-23 15:07:34 -0700548 /* make sure we're changing state */
549 if (rtc->uie_rtctimer.enabled == enabled)
550 goto out;
551
John Stultz4a649902012-03-06 17:16:09 -0800552 if (rtc->uie_unsupported) {
553 err = -EINVAL;
554 goto out;
555 }
556
John Stultz6610e082010-09-23 15:07:34 -0700557 if (enabled) {
558 struct rtc_time tm;
559 ktime_t now, onesec;
560
561 __rtc_read_time(rtc, &tm);
562 onesec = ktime_set(1, 0);
563 now = rtc_tm_to_ktime(tm);
564 rtc->uie_rtctimer.node.expires = ktime_add(now, onesec);
565 rtc->uie_rtctimer.period = ktime_set(1, 0);
John Stultzaa0be0f2011-01-20 15:26:12 -0800566 err = rtc_timer_enqueue(rtc, &rtc->uie_rtctimer);
567 } else
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100568 rtc_timer_remove(rtc, &rtc->uie_rtctimer);
Alessandro Zummo099e6572009-01-04 12:00:54 -0800569
John Stultz6610e082010-09-23 15:07:34 -0700570out:
Alessandro Zummo099e6572009-01-04 12:00:54 -0800571 mutex_unlock(&rtc->ops_lock);
John Stultz456d66e2011-02-11 18:15:23 -0800572#ifdef CONFIG_RTC_INTF_DEV_UIE_EMUL
573 /*
574 * Enable emulation if the driver did not provide
575 * the update_irq_enable function pointer or if returned
576 * -EINVAL to signal that it has been configured without
577 * interrupts or that are not available at the moment.
578 */
579 if (err == -EINVAL)
580 err = rtc_dev_update_irq_enable_emul(rtc, enabled);
581#endif
Alessandro Zummo099e6572009-01-04 12:00:54 -0800582 return err;
John Stultz6610e082010-09-23 15:07:34 -0700583
Alessandro Zummo099e6572009-01-04 12:00:54 -0800584}
585EXPORT_SYMBOL_GPL(rtc_update_irq_enable);
586
John Stultz6610e082010-09-23 15:07:34 -0700587
David Brownelld728b1e2006-11-25 11:09:28 -0800588/**
John Stultz6610e082010-09-23 15:07:34 -0700589 * rtc_handle_legacy_irq - AIE, UIE and PIE event hook
590 * @rtc: pointer to the rtc device
591 *
592 * This function is called when an AIE, UIE or PIE mode interrupt
Lucas De Marchi25985ed2011-03-30 22:57:33 -0300593 * has occurred (or been emulated).
John Stultz6610e082010-09-23 15:07:34 -0700594 *
John Stultz6610e082010-09-23 15:07:34 -0700595 */
John Stultz456d66e2011-02-11 18:15:23 -0800596void rtc_handle_legacy_irq(struct rtc_device *rtc, int num, int mode)
John Stultz6610e082010-09-23 15:07:34 -0700597{
598 unsigned long flags;
599
600 /* mark one irq of the appropriate mode */
601 spin_lock_irqsave(&rtc->irq_lock, flags);
602 rtc->irq_data = (rtc->irq_data + (num << 8)) | (RTC_IRQF|mode);
603 spin_unlock_irqrestore(&rtc->irq_lock, flags);
604
John Stultz6610e082010-09-23 15:07:34 -0700605 wake_up_interruptible(&rtc->irq_queue);
606 kill_fasync(&rtc->async_queue, SIGIO, POLL_IN);
607}
608
609
610/**
611 * rtc_aie_update_irq - AIE mode rtctimer hook
612 * @private: pointer to the rtc_device
613 *
614 * This functions is called when the aie_timer expires.
615 */
616void rtc_aie_update_irq(void *private)
617{
618 struct rtc_device *rtc = (struct rtc_device *)private;
619 rtc_handle_legacy_irq(rtc, 1, RTC_AF);
620}
621
622
623/**
624 * rtc_uie_update_irq - UIE mode rtctimer hook
625 * @private: pointer to the rtc_device
626 *
627 * This functions is called when the uie_timer expires.
628 */
629void rtc_uie_update_irq(void *private)
630{
631 struct rtc_device *rtc = (struct rtc_device *)private;
632 rtc_handle_legacy_irq(rtc, 1, RTC_UF);
633}
634
635
636/**
637 * rtc_pie_update_irq - PIE mode hrtimer hook
638 * @timer: pointer to the pie mode hrtimer
639 *
640 * This function is used to emulate PIE mode interrupts
641 * using an hrtimer. This function is called when the periodic
642 * hrtimer expires.
643 */
644enum hrtimer_restart rtc_pie_update_irq(struct hrtimer *timer)
645{
646 struct rtc_device *rtc;
647 ktime_t period;
648 int count;
649 rtc = container_of(timer, struct rtc_device, pie_timer);
650
Thomas Gleixner8b0e1952016-12-25 12:30:41 +0100651 period = NSEC_PER_SEC / rtc->irq_freq;
John Stultz6610e082010-09-23 15:07:34 -0700652 count = hrtimer_forward_now(timer, period);
653
654 rtc_handle_legacy_irq(rtc, count, RTC_PF);
655
656 return HRTIMER_RESTART;
657}
658
659/**
660 * rtc_update_irq - Triggered when a RTC interrupt occurs.
David Brownellab6a2d72007-05-08 00:33:30 -0700661 * @rtc: the rtc device
David Brownelld728b1e2006-11-25 11:09:28 -0800662 * @num: how many irqs are being reported (usually one)
663 * @events: mask of RTC_IRQF with one or more of RTC_PF, RTC_AF, RTC_UF
Atsushi Nemotoe6229bec2009-06-18 16:49:09 -0700664 * Context: any
David Brownelld728b1e2006-11-25 11:09:28 -0800665 */
David Brownellab6a2d72007-05-08 00:33:30 -0700666void rtc_update_irq(struct rtc_device *rtc,
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800667 unsigned long num, unsigned long events)
668{
viresh kumare7cba882015-07-31 16:23:43 +0530669 if (IS_ERR_OR_NULL(rtc))
Alessandro Zummo131c9cc2014-04-03 14:50:09 -0700670 return;
671
NeilBrown7523cee2012-08-05 22:56:20 +0200672 pm_stay_awake(rtc->dev.parent);
John Stultz6610e082010-09-23 15:07:34 -0700673 schedule_work(&rtc->irqwork);
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800674}
675EXPORT_SYMBOL_GPL(rtc_update_irq);
676
Michał Mirosław9f3b7952013-02-01 20:40:17 +0100677static int __rtc_match(struct device *dev, const void *data)
Dave Young71da8902008-01-22 14:00:34 +0800678{
Michał Mirosław9f3b7952013-02-01 20:40:17 +0100679 const char *name = data;
Dave Young71da8902008-01-22 14:00:34 +0800680
Kay Sieversd4afc762009-01-06 14:42:11 -0800681 if (strcmp(dev_name(dev), name) == 0)
Dave Young71da8902008-01-22 14:00:34 +0800682 return 1;
683 return 0;
684}
685
Michał Mirosław9f3b7952013-02-01 20:40:17 +0100686struct rtc_device *rtc_class_open(const char *name)
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800687{
David Brownellcd966202007-05-08 00:33:40 -0700688 struct device *dev;
David Brownellab6a2d72007-05-08 00:33:30 -0700689 struct rtc_device *rtc = NULL;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800690
Greg Kroah-Hartman695794a2008-05-22 17:21:08 -0400691 dev = class_find_device(rtc_class, NULL, name, __rtc_match);
Dave Young71da8902008-01-22 14:00:34 +0800692 if (dev)
693 rtc = to_rtc_device(dev);
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800694
David Brownellab6a2d72007-05-08 00:33:30 -0700695 if (rtc) {
696 if (!try_module_get(rtc->owner)) {
David Brownellcd966202007-05-08 00:33:40 -0700697 put_device(dev);
David Brownellab6a2d72007-05-08 00:33:30 -0700698 rtc = NULL;
699 }
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800700 }
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800701
David Brownellab6a2d72007-05-08 00:33:30 -0700702 return rtc;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800703}
704EXPORT_SYMBOL_GPL(rtc_class_open);
705
David Brownellab6a2d72007-05-08 00:33:30 -0700706void rtc_class_close(struct rtc_device *rtc)
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800707{
David Brownellab6a2d72007-05-08 00:33:30 -0700708 module_put(rtc->owner);
David Brownellcd966202007-05-08 00:33:40 -0700709 put_device(&rtc->dev);
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800710}
711EXPORT_SYMBOL_GPL(rtc_class_close);
712
Thomas Gleixner3c8bb90e2011-07-22 09:12:51 +0000713static int rtc_update_hrtimer(struct rtc_device *rtc, int enabled)
714{
715 /*
716 * We always cancel the timer here first, because otherwise
717 * we could run into BUG_ON(timer->state != HRTIMER_STATE_CALLBACK);
718 * when we manage to start the timer before the callback
719 * returns HRTIMER_RESTART.
720 *
721 * We cannot use hrtimer_cancel() here as a running callback
722 * could be blocked on rtc->irq_task_lock and hrtimer_cancel()
723 * would spin forever.
724 */
725 if (hrtimer_try_to_cancel(&rtc->pie_timer) < 0)
726 return -1;
727
728 if (enabled) {
Thomas Gleixner8b0e1952016-12-25 12:30:41 +0100729 ktime_t period = NSEC_PER_SEC / rtc->irq_freq;
Thomas Gleixner3c8bb90e2011-07-22 09:12:51 +0000730
731 hrtimer_start(&rtc->pie_timer, period, HRTIMER_MODE_REL);
732 }
733 return 0;
734}
735
David Brownell97144c62007-10-16 01:28:16 -0700736/**
737 * rtc_irq_set_state - enable/disable 2^N Hz periodic IRQs
738 * @rtc: the rtc device
David Brownell97144c62007-10-16 01:28:16 -0700739 * @enabled: true to enable periodic IRQs
740 * Context: any
741 *
742 * Note that rtc_irq_set_freq() should previously have been used to
Alexandre Belloniacecb3a2018-07-25 14:58:10 +0200743 * specify the desired frequency of periodic IRQ.
David Brownell97144c62007-10-16 01:28:16 -0700744 */
Alexandre Belloni8719d3c2018-07-25 15:07:09 +0200745int rtc_irq_set_state(struct rtc_device *rtc, int enabled)
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800746{
747 int err = 0;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800748
Alexandre Belloniacecb3a2018-07-25 14:58:10 +0200749 while (rtc_update_hrtimer(rtc, enabled) < 0)
750 cpu_relax();
751
752 rtc->pie_enabled = enabled;
Baolin Wang29a1f592017-12-14 13:31:43 +0800753
754 trace_rtc_irq_set_state(enabled, err);
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800755 return err;
756}
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800757
David Brownell97144c62007-10-16 01:28:16 -0700758/**
759 * rtc_irq_set_freq - set 2^N Hz periodic IRQ frequency for IRQ
760 * @rtc: the rtc device
Alexandre Belloniacecb3a2018-07-25 14:58:10 +0200761 * @freq: positive frequency
David Brownell97144c62007-10-16 01:28:16 -0700762 * Context: any
763 *
764 * Note that rtc_irq_set_state() is used to enable or disable the
765 * periodic IRQs.
766 */
Alexandre Belloni8719d3c2018-07-25 15:07:09 +0200767int rtc_irq_set_freq(struct rtc_device *rtc, int freq)
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800768{
Alessandro Zummo56f10c62006-06-25 05:48:20 -0700769 int err = 0;
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800770
Thomas Gleixner6e7a3332011-07-22 09:12:51 +0000771 if (freq <= 0 || freq > RTC_MAX_FREQ)
Marcelo Roberto Jimenez83a06bf2011-02-02 16:04:02 -0200772 return -EINVAL;
Alexandre Belloniacecb3a2018-07-25 14:58:10 +0200773
774 rtc->irq_freq = freq;
775 while (rtc->pie_enabled && rtc_update_hrtimer(rtc, 1) < 0)
776 cpu_relax();
Baolin Wang29a1f592017-12-14 13:31:43 +0800777
778 trace_rtc_irq_set_freq(freq, err);
Alessandro Zummo0c86edc2006-03-27 01:16:37 -0800779 return err;
780}
John Stultz6610e082010-09-23 15:07:34 -0700781
782/**
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100783 * rtc_timer_enqueue - Adds a rtc_timer to the rtc_device timerqueue
John Stultz6610e082010-09-23 15:07:34 -0700784 * @rtc rtc device
785 * @timer timer being added.
786 *
787 * Enqueues a timer onto the rtc devices timerqueue and sets
788 * the next alarm event appropriately.
789 *
John Stultzaa0be0f2011-01-20 15:26:12 -0800790 * Sets the enabled bit on the added timer.
791 *
John Stultz6610e082010-09-23 15:07:34 -0700792 * Must hold ops_lock for proper serialization of timerqueue
793 */
John Stultzaa0be0f2011-01-20 15:26:12 -0800794static int rtc_timer_enqueue(struct rtc_device *rtc, struct rtc_timer *timer)
John Stultz6610e082010-09-23 15:07:34 -0700795{
Colin Ian King2b2f5ff2016-05-16 17:22:54 +0100796 struct timerqueue_node *next = timerqueue_getnext(&rtc->timerqueue);
797 struct rtc_time tm;
798 ktime_t now;
799
John Stultzaa0be0f2011-01-20 15:26:12 -0800800 timer->enabled = 1;
Colin Ian King2b2f5ff2016-05-16 17:22:54 +0100801 __rtc_read_time(rtc, &tm);
802 now = rtc_tm_to_ktime(tm);
803
804 /* Skip over expired timers */
805 while (next) {
Thomas Gleixner2456e852016-12-25 11:38:40 +0100806 if (next->expires >= now)
Colin Ian King2b2f5ff2016-05-16 17:22:54 +0100807 break;
808 next = timerqueue_iterate_next(next);
809 }
810
John Stultz6610e082010-09-23 15:07:34 -0700811 timerqueue_add(&rtc->timerqueue, &timer->node);
Baolin Wang29a1f592017-12-14 13:31:43 +0800812 trace_rtc_timer_enqueue(timer);
Alexandre Belloni74717b22017-09-28 13:53:27 +0200813 if (!next || ktime_before(timer->node.expires, next->expires)) {
John Stultz6610e082010-09-23 15:07:34 -0700814 struct rtc_wkalrm alarm;
815 int err;
816 alarm.time = rtc_ktime_to_tm(timer->node.expires);
817 alarm.enabled = 1;
818 err = __rtc_set_alarm(rtc, &alarm);
Zoran Markovic14d0e342013-06-26 16:09:13 -0700819 if (err == -ETIME) {
820 pm_stay_awake(rtc->dev.parent);
John Stultz6610e082010-09-23 15:07:34 -0700821 schedule_work(&rtc->irqwork);
Zoran Markovic14d0e342013-06-26 16:09:13 -0700822 } else if (err) {
John Stultzaa0be0f2011-01-20 15:26:12 -0800823 timerqueue_del(&rtc->timerqueue, &timer->node);
Baolin Wang29a1f592017-12-14 13:31:43 +0800824 trace_rtc_timer_dequeue(timer);
John Stultzaa0be0f2011-01-20 15:26:12 -0800825 timer->enabled = 0;
826 return err;
827 }
John Stultz6610e082010-09-23 15:07:34 -0700828 }
John Stultzaa0be0f2011-01-20 15:26:12 -0800829 return 0;
John Stultz6610e082010-09-23 15:07:34 -0700830}
831
Rabin Vincent41c7f742011-11-22 11:03:14 +0100832static void rtc_alarm_disable(struct rtc_device *rtc)
833{
834 if (!rtc->ops || !rtc->ops->alarm_irq_enable)
835 return;
836
837 rtc->ops->alarm_irq_enable(rtc->dev.parent, false);
Baolin Wang29a1f592017-12-14 13:31:43 +0800838 trace_rtc_alarm_irq_enable(0, 0);
Rabin Vincent41c7f742011-11-22 11:03:14 +0100839}
840
John Stultz6610e082010-09-23 15:07:34 -0700841/**
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100842 * rtc_timer_remove - Removes a rtc_timer from the rtc_device timerqueue
John Stultz6610e082010-09-23 15:07:34 -0700843 * @rtc rtc device
844 * @timer timer being removed.
845 *
846 * Removes a timer onto the rtc devices timerqueue and sets
847 * the next alarm event appropriately.
848 *
John Stultzaa0be0f2011-01-20 15:26:12 -0800849 * Clears the enabled bit on the removed timer.
850 *
John Stultz6610e082010-09-23 15:07:34 -0700851 * Must hold ops_lock for proper serialization of timerqueue
852 */
John Stultzaa0be0f2011-01-20 15:26:12 -0800853static void rtc_timer_remove(struct rtc_device *rtc, struct rtc_timer *timer)
John Stultz6610e082010-09-23 15:07:34 -0700854{
855 struct timerqueue_node *next = timerqueue_getnext(&rtc->timerqueue);
856 timerqueue_del(&rtc->timerqueue, &timer->node);
Baolin Wang29a1f592017-12-14 13:31:43 +0800857 trace_rtc_timer_dequeue(timer);
John Stultzaa0be0f2011-01-20 15:26:12 -0800858 timer->enabled = 0;
John Stultz6610e082010-09-23 15:07:34 -0700859 if (next == &timer->node) {
860 struct rtc_wkalrm alarm;
861 int err;
862 next = timerqueue_getnext(&rtc->timerqueue);
Rabin Vincent41c7f742011-11-22 11:03:14 +0100863 if (!next) {
864 rtc_alarm_disable(rtc);
John Stultz6610e082010-09-23 15:07:34 -0700865 return;
Rabin Vincent41c7f742011-11-22 11:03:14 +0100866 }
John Stultz6610e082010-09-23 15:07:34 -0700867 alarm.time = rtc_ktime_to_tm(next->expires);
868 alarm.enabled = 1;
869 err = __rtc_set_alarm(rtc, &alarm);
Zoran Markovic14d0e342013-06-26 16:09:13 -0700870 if (err == -ETIME) {
871 pm_stay_awake(rtc->dev.parent);
John Stultz6610e082010-09-23 15:07:34 -0700872 schedule_work(&rtc->irqwork);
Zoran Markovic14d0e342013-06-26 16:09:13 -0700873 }
John Stultz6610e082010-09-23 15:07:34 -0700874 }
875}
876
877/**
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100878 * rtc_timer_do_work - Expires rtc timers
John Stultz6610e082010-09-23 15:07:34 -0700879 * @rtc rtc device
880 * @timer timer being removed.
881 *
882 * Expires rtc timers. Reprograms next alarm event if needed.
883 * Called via worktask.
884 *
885 * Serializes access to timerqueue via ops_lock mutex
886 */
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100887void rtc_timer_do_work(struct work_struct *work)
John Stultz6610e082010-09-23 15:07:34 -0700888{
889 struct rtc_timer *timer;
890 struct timerqueue_node *next;
891 ktime_t now;
892 struct rtc_time tm;
893
894 struct rtc_device *rtc =
895 container_of(work, struct rtc_device, irqwork);
896
897 mutex_lock(&rtc->ops_lock);
898again:
899 __rtc_read_time(rtc, &tm);
900 now = rtc_tm_to_ktime(tm);
901 while ((next = timerqueue_getnext(&rtc->timerqueue))) {
Thomas Gleixner2456e852016-12-25 11:38:40 +0100902 if (next->expires > now)
John Stultz6610e082010-09-23 15:07:34 -0700903 break;
904
905 /* expire timer */
906 timer = container_of(next, struct rtc_timer, node);
907 timerqueue_del(&rtc->timerqueue, &timer->node);
Baolin Wang29a1f592017-12-14 13:31:43 +0800908 trace_rtc_timer_dequeue(timer);
John Stultz6610e082010-09-23 15:07:34 -0700909 timer->enabled = 0;
Alexandre Belloni5a5ba10f2018-07-26 15:40:56 +0200910 if (timer->func)
911 timer->func(timer->private_data);
John Stultz6610e082010-09-23 15:07:34 -0700912
Baolin Wang29a1f592017-12-14 13:31:43 +0800913 trace_rtc_timer_fired(timer);
John Stultz6610e082010-09-23 15:07:34 -0700914 /* Re-add/fwd periodic timers */
915 if (ktime_to_ns(timer->period)) {
916 timer->node.expires = ktime_add(timer->node.expires,
917 timer->period);
918 timer->enabled = 1;
919 timerqueue_add(&rtc->timerqueue, &timer->node);
Baolin Wang29a1f592017-12-14 13:31:43 +0800920 trace_rtc_timer_enqueue(timer);
John Stultz6610e082010-09-23 15:07:34 -0700921 }
922 }
923
924 /* Set next alarm */
925 if (next) {
926 struct rtc_wkalrm alarm;
927 int err;
Xunlei Pang6528b882014-12-10 15:54:26 -0800928 int retry = 3;
929
John Stultz6610e082010-09-23 15:07:34 -0700930 alarm.time = rtc_ktime_to_tm(next->expires);
931 alarm.enabled = 1;
Xunlei Pang6528b882014-12-10 15:54:26 -0800932reprogram:
John Stultz6610e082010-09-23 15:07:34 -0700933 err = __rtc_set_alarm(rtc, &alarm);
934 if (err == -ETIME)
935 goto again;
Xunlei Pang6528b882014-12-10 15:54:26 -0800936 else if (err) {
937 if (retry-- > 0)
938 goto reprogram;
939
940 timer = container_of(next, struct rtc_timer, node);
941 timerqueue_del(&rtc->timerqueue, &timer->node);
Baolin Wang29a1f592017-12-14 13:31:43 +0800942 trace_rtc_timer_dequeue(timer);
Xunlei Pang6528b882014-12-10 15:54:26 -0800943 timer->enabled = 0;
944 dev_err(&rtc->dev, "__rtc_set_alarm: err=%d\n", err);
945 goto again;
946 }
Rabin Vincent41c7f742011-11-22 11:03:14 +0100947 } else
948 rtc_alarm_disable(rtc);
John Stultz6610e082010-09-23 15:07:34 -0700949
Zoran Markovic14d0e342013-06-26 16:09:13 -0700950 pm_relax(rtc->dev.parent);
John Stultz6610e082010-09-23 15:07:34 -0700951 mutex_unlock(&rtc->ops_lock);
952}
953
954
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100955/* rtc_timer_init - Initializes an rtc_timer
John Stultz6610e082010-09-23 15:07:34 -0700956 * @timer: timer to be intiialized
957 * @f: function pointer to be called when timer fires
958 * @data: private data passed to function pointer
959 *
960 * Kernel interface to initializing an rtc_timer.
961 */
Sachin Kamat3ff2e132013-07-03 15:05:42 -0700962void rtc_timer_init(struct rtc_timer *timer, void (*f)(void *p), void *data)
John Stultz6610e082010-09-23 15:07:34 -0700963{
964 timerqueue_init(&timer->node);
965 timer->enabled = 0;
Alexandre Belloni5a5ba10f2018-07-26 15:40:56 +0200966 timer->func = f;
967 timer->private_data = data;
John Stultz6610e082010-09-23 15:07:34 -0700968}
969
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100970/* rtc_timer_start - Sets an rtc_timer to fire in the future
John Stultz6610e082010-09-23 15:07:34 -0700971 * @ rtc: rtc device to be used
972 * @ timer: timer being set
973 * @ expires: time at which to expire the timer
974 * @ period: period that the timer will recur
975 *
976 * Kernel interface to set an rtc_timer
977 */
Sachin Kamat3ff2e132013-07-03 15:05:42 -0700978int rtc_timer_start(struct rtc_device *rtc, struct rtc_timer *timer,
John Stultz6610e082010-09-23 15:07:34 -0700979 ktime_t expires, ktime_t period)
980{
981 int ret = 0;
982 mutex_lock(&rtc->ops_lock);
983 if (timer->enabled)
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100984 rtc_timer_remove(rtc, timer);
John Stultz6610e082010-09-23 15:07:34 -0700985
986 timer->node.expires = expires;
987 timer->period = period;
988
John Stultzaa0be0f2011-01-20 15:26:12 -0800989 ret = rtc_timer_enqueue(rtc, timer);
John Stultz6610e082010-09-23 15:07:34 -0700990
991 mutex_unlock(&rtc->ops_lock);
992 return ret;
993}
994
Thomas Gleixner96c8f062010-12-13 22:45:48 +0100995/* rtc_timer_cancel - Stops an rtc_timer
John Stultz6610e082010-09-23 15:07:34 -0700996 * @ rtc: rtc device to be used
997 * @ timer: timer being set
998 *
999 * Kernel interface to cancel an rtc_timer
1000 */
Krzysztof Kozlowski73744a62015-05-03 18:57:11 +09001001void rtc_timer_cancel(struct rtc_device *rtc, struct rtc_timer *timer)
John Stultz6610e082010-09-23 15:07:34 -07001002{
John Stultz6610e082010-09-23 15:07:34 -07001003 mutex_lock(&rtc->ops_lock);
1004 if (timer->enabled)
Thomas Gleixner96c8f062010-12-13 22:45:48 +01001005 rtc_timer_remove(rtc, timer);
John Stultz6610e082010-09-23 15:07:34 -07001006 mutex_unlock(&rtc->ops_lock);
John Stultz6610e082010-09-23 15:07:34 -07001007}
1008
Joshua Claytonb3967062016-02-05 12:41:11 -08001009/**
1010 * rtc_read_offset - Read the amount of rtc offset in parts per billion
1011 * @ rtc: rtc device to be used
1012 * @ offset: the offset in parts per billion
1013 *
1014 * see below for details.
1015 *
1016 * Kernel interface to read rtc clock offset
1017 * Returns 0 on success, or a negative number on error.
1018 * If read_offset() is not implemented for the rtc, return -EINVAL
1019 */
1020int rtc_read_offset(struct rtc_device *rtc, long *offset)
1021{
1022 int ret;
John Stultz6610e082010-09-23 15:07:34 -07001023
Joshua Claytonb3967062016-02-05 12:41:11 -08001024 if (!rtc->ops)
1025 return -ENODEV;
1026
1027 if (!rtc->ops->read_offset)
1028 return -EINVAL;
1029
1030 mutex_lock(&rtc->ops_lock);
1031 ret = rtc->ops->read_offset(rtc->dev.parent, offset);
1032 mutex_unlock(&rtc->ops_lock);
Baolin Wang29a1f592017-12-14 13:31:43 +08001033
1034 trace_rtc_read_offset(*offset, ret);
Joshua Claytonb3967062016-02-05 12:41:11 -08001035 return ret;
1036}
1037
1038/**
1039 * rtc_set_offset - Adjusts the duration of the average second
1040 * @ rtc: rtc device to be used
1041 * @ offset: the offset in parts per billion
1042 *
1043 * Some rtc's allow an adjustment to the average duration of a second
1044 * to compensate for differences in the actual clock rate due to temperature,
1045 * the crystal, capacitor, etc.
1046 *
Russell King8a25c8f2017-09-29 11:23:25 +01001047 * The adjustment applied is as follows:
1048 * t = t0 * (1 + offset * 1e-9)
1049 * where t0 is the measured length of 1 RTC second with offset = 0
1050 *
Joshua Claytonb3967062016-02-05 12:41:11 -08001051 * Kernel interface to adjust an rtc clock offset.
1052 * Return 0 on success, or a negative number on error.
1053 * If the rtc offset is not setable (or not implemented), return -EINVAL
1054 */
1055int rtc_set_offset(struct rtc_device *rtc, long offset)
1056{
1057 int ret;
1058
1059 if (!rtc->ops)
1060 return -ENODEV;
1061
1062 if (!rtc->ops->set_offset)
1063 return -EINVAL;
1064
1065 mutex_lock(&rtc->ops_lock);
1066 ret = rtc->ops->set_offset(rtc->dev.parent, offset);
1067 mutex_unlock(&rtc->ops_lock);
Baolin Wang29a1f592017-12-14 13:31:43 +08001068
1069 trace_rtc_set_offset(offset, ret);
Joshua Claytonb3967062016-02-05 12:41:11 -08001070 return ret;
1071}