blob: 8e8c8b8e81ee8ae934a0966380de7e2de1e68cd0 [file] [log] [blame]
Paul Mundt317a6102006-09-27 17:13:19 +09001/*
2 * SuperH On-Chip RTC Support
3 *
Paul Mundtad89f872007-08-03 14:19:58 +09004 * Copyright (C) 2006, 2007 Paul Mundt
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +09005 * Copyright (C) 2006 Jamie Lenehan
Paul Mundt317a6102006-09-27 17:13:19 +09006 *
7 * Based on the old arch/sh/kernel/cpu/rtc.c by:
8 *
9 * Copyright (C) 2000 Philipp Rumpf <prumpf@tux.org>
10 * Copyright (C) 1999 Tetsuya Okada & Niibe Yutaka
11 *
12 * This file is subject to the terms and conditions of the GNU General Public
13 * License. See the file "COPYING" in the main directory of this archive
14 * for more details.
15 */
16#include <linux/module.h>
17#include <linux/kernel.h>
18#include <linux/bcd.h>
19#include <linux/rtc.h>
20#include <linux/init.h>
21#include <linux/platform_device.h>
22#include <linux/seq_file.h>
23#include <linux/interrupt.h>
24#include <linux/spinlock.h>
Jamie Lenehan31ccb082006-12-07 17:23:50 +090025#include <linux/io.h>
Paul Mundtad89f872007-08-03 14:19:58 +090026#include <asm/rtc.h>
Paul Mundt317a6102006-09-27 17:13:19 +090027
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +090028#define DRV_NAME "sh-rtc"
Paul Mundtad89f872007-08-03 14:19:58 +090029#define DRV_VERSION "0.1.3"
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +090030
Paul Mundt317a6102006-09-27 17:13:19 +090031#ifdef CONFIG_CPU_SH3
32#define rtc_reg_size sizeof(u16)
33#define RTC_BIT_INVERTED 0 /* No bug on SH7708, SH7709A */
Paul Mundtad89f872007-08-03 14:19:58 +090034#define RTC_DEF_CAPABILITIES 0UL
Paul Mundt317a6102006-09-27 17:13:19 +090035#elif defined(CONFIG_CPU_SH4)
36#define rtc_reg_size sizeof(u32)
37#define RTC_BIT_INVERTED 0x40 /* bug on SH7750, SH7750S */
Paul Mundtad89f872007-08-03 14:19:58 +090038#define RTC_DEF_CAPABILITIES RTC_CAP_4_DIGIT_YEAR
Paul Mundt317a6102006-09-27 17:13:19 +090039#endif
40
41#define RTC_REG(r) ((r) * rtc_reg_size)
42
Jamie Lenehan31ccb082006-12-07 17:23:50 +090043#define R64CNT RTC_REG(0)
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +090044
45#define RSECCNT RTC_REG(1) /* RTC sec */
46#define RMINCNT RTC_REG(2) /* RTC min */
47#define RHRCNT RTC_REG(3) /* RTC hour */
48#define RWKCNT RTC_REG(4) /* RTC week */
49#define RDAYCNT RTC_REG(5) /* RTC day */
50#define RMONCNT RTC_REG(6) /* RTC month */
51#define RYRCNT RTC_REG(7) /* RTC year */
52#define RSECAR RTC_REG(8) /* ALARM sec */
53#define RMINAR RTC_REG(9) /* ALARM min */
54#define RHRAR RTC_REG(10) /* ALARM hour */
55#define RWKAR RTC_REG(11) /* ALARM week */
56#define RDAYAR RTC_REG(12) /* ALARM day */
57#define RMONAR RTC_REG(13) /* ALARM month */
58#define RCR1 RTC_REG(14) /* Control */
59#define RCR2 RTC_REG(15) /* Control */
60
61/* ALARM Bits - or with BCD encoded value */
62#define AR_ENB 0x80 /* Enable for alarm cmp */
Paul Mundt317a6102006-09-27 17:13:19 +090063
64/* RCR1 Bits */
65#define RCR1_CF 0x80 /* Carry Flag */
66#define RCR1_CIE 0x10 /* Carry Interrupt Enable */
67#define RCR1_AIE 0x08 /* Alarm Interrupt Enable */
68#define RCR1_AF 0x01 /* Alarm Flag */
69
70/* RCR2 Bits */
71#define RCR2_PEF 0x80 /* PEriodic interrupt Flag */
72#define RCR2_PESMASK 0x70 /* Periodic interrupt Set */
73#define RCR2_RTCEN 0x08 /* ENable RTC */
74#define RCR2_ADJ 0x04 /* ADJustment (30-second) */
75#define RCR2_RESET 0x02 /* Reset bit */
76#define RCR2_START 0x01 /* Start bit */
77
78struct sh_rtc {
79 void __iomem *regbase;
80 unsigned long regsize;
81 struct resource *res;
82 unsigned int alarm_irq, periodic_irq, carry_irq;
83 struct rtc_device *rtc_dev;
84 spinlock_t lock;
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +090085 int rearm_aie;
Paul Mundtad89f872007-08-03 14:19:58 +090086 unsigned long capabilities; /* See asm-sh/rtc.h for cap bits */
Paul Mundt317a6102006-09-27 17:13:19 +090087};
88
Jamie Lenehan31ccb082006-12-07 17:23:50 +090089static irqreturn_t sh_rtc_interrupt(int irq, void *dev_id)
Paul Mundt317a6102006-09-27 17:13:19 +090090{
Jamie Lenehan31ccb082006-12-07 17:23:50 +090091 struct platform_device *pdev = to_platform_device(dev_id);
Paul Mundt317a6102006-09-27 17:13:19 +090092 struct sh_rtc *rtc = platform_get_drvdata(pdev);
93 unsigned int tmp, events = 0;
94
95 spin_lock(&rtc->lock);
96
97 tmp = readb(rtc->regbase + RCR1);
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +090098 tmp &= ~RCR1_CF;
Paul Mundt317a6102006-09-27 17:13:19 +090099
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900100 if (rtc->rearm_aie) {
101 if (tmp & RCR1_AF)
102 tmp &= ~RCR1_AF; /* try to clear AF again */
103 else {
104 tmp |= RCR1_AIE; /* AF has cleared, rearm IRQ */
105 rtc->rearm_aie = 0;
106 }
107 }
Paul Mundt317a6102006-09-27 17:13:19 +0900108
109 writeb(tmp, rtc->regbase + RCR1);
110
Paul Mundta361a682007-05-09 12:37:53 +0900111 rtc_update_irq(rtc->rtc_dev, 1, events);
Paul Mundt317a6102006-09-27 17:13:19 +0900112
113 spin_unlock(&rtc->lock);
114
115 return IRQ_HANDLED;
116}
117
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900118static irqreturn_t sh_rtc_alarm(int irq, void *dev_id)
119{
120 struct platform_device *pdev = to_platform_device(dev_id);
121 struct sh_rtc *rtc = platform_get_drvdata(pdev);
122 unsigned int tmp, events = 0;
123
124 spin_lock(&rtc->lock);
125
126 tmp = readb(rtc->regbase + RCR1);
127
128 /*
129 * If AF is set then the alarm has triggered. If we clear AF while
130 * the alarm time still matches the RTC time then AF will
131 * immediately be set again, and if AIE is enabled then the alarm
132 * interrupt will immediately be retrigger. So we clear AIE here
133 * and use rtc->rearm_aie so that the carry interrupt will keep
134 * trying to clear AF and once it stays cleared it'll re-enable
135 * AIE.
136 */
137 if (tmp & RCR1_AF) {
138 events |= RTC_AF | RTC_IRQF;
139
140 tmp &= ~(RCR1_AF|RCR1_AIE);
141
142 writeb(tmp, rtc->regbase + RCR1);
143
144 rtc->rearm_aie = 1;
145
Paul Mundta361a682007-05-09 12:37:53 +0900146 rtc_update_irq(rtc->rtc_dev, 1, events);
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900147 }
148
149 spin_unlock(&rtc->lock);
150 return IRQ_HANDLED;
151}
152
Jamie Lenehan31ccb082006-12-07 17:23:50 +0900153static irqreturn_t sh_rtc_periodic(int irq, void *dev_id)
Paul Mundt317a6102006-09-27 17:13:19 +0900154{
Jamie Lenehan31ccb082006-12-07 17:23:50 +0900155 struct platform_device *pdev = to_platform_device(dev_id);
156 struct sh_rtc *rtc = platform_get_drvdata(pdev);
Paul Mundt317a6102006-09-27 17:13:19 +0900157
158 spin_lock(&rtc->lock);
159
Paul Mundta361a682007-05-09 12:37:53 +0900160 rtc_update_irq(rtc->rtc_dev, 1, RTC_PF | RTC_IRQF);
Paul Mundt317a6102006-09-27 17:13:19 +0900161
162 spin_unlock(&rtc->lock);
163
164 return IRQ_HANDLED;
165}
166
167static inline void sh_rtc_setpie(struct device *dev, unsigned int enable)
168{
169 struct sh_rtc *rtc = dev_get_drvdata(dev);
170 unsigned int tmp;
171
172 spin_lock_irq(&rtc->lock);
173
174 tmp = readb(rtc->regbase + RCR2);
175
176 if (enable) {
177 tmp &= ~RCR2_PESMASK;
178 tmp |= RCR2_PEF | (2 << 4);
179 } else
180 tmp &= ~(RCR2_PESMASK | RCR2_PEF);
181
182 writeb(tmp, rtc->regbase + RCR2);
183
184 spin_unlock_irq(&rtc->lock);
185}
186
187static inline void sh_rtc_setaie(struct device *dev, unsigned int enable)
188{
189 struct sh_rtc *rtc = dev_get_drvdata(dev);
190 unsigned int tmp;
191
192 spin_lock_irq(&rtc->lock);
193
194 tmp = readb(rtc->regbase + RCR1);
195
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900196 if (!enable) {
Paul Mundt317a6102006-09-27 17:13:19 +0900197 tmp &= ~RCR1_AIE;
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900198 rtc->rearm_aie = 0;
199 } else if (rtc->rearm_aie == 0)
200 tmp |= RCR1_AIE;
Paul Mundt317a6102006-09-27 17:13:19 +0900201
202 writeb(tmp, rtc->regbase + RCR1);
203
204 spin_unlock_irq(&rtc->lock);
205}
206
207static int sh_rtc_open(struct device *dev)
208{
209 struct sh_rtc *rtc = dev_get_drvdata(dev);
210 unsigned int tmp;
211 int ret;
212
213 tmp = readb(rtc->regbase + RCR1);
214 tmp &= ~RCR1_CF;
215 tmp |= RCR1_CIE;
216 writeb(tmp, rtc->regbase + RCR1);
217
Paul Mundt35f3c512006-10-06 15:31:16 +0900218 ret = request_irq(rtc->periodic_irq, sh_rtc_periodic, IRQF_DISABLED,
Paul Mundt317a6102006-09-27 17:13:19 +0900219 "sh-rtc period", dev);
220 if (unlikely(ret)) {
221 dev_err(dev, "request period IRQ failed with %d, IRQ %d\n",
222 ret, rtc->periodic_irq);
223 return ret;
224 }
225
Paul Mundt35f3c512006-10-06 15:31:16 +0900226 ret = request_irq(rtc->carry_irq, sh_rtc_interrupt, IRQF_DISABLED,
Paul Mundt317a6102006-09-27 17:13:19 +0900227 "sh-rtc carry", dev);
228 if (unlikely(ret)) {
229 dev_err(dev, "request carry IRQ failed with %d, IRQ %d\n",
230 ret, rtc->carry_irq);
231 free_irq(rtc->periodic_irq, dev);
232 goto err_bad_carry;
233 }
234
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900235 ret = request_irq(rtc->alarm_irq, sh_rtc_alarm, IRQF_DISABLED,
Paul Mundt317a6102006-09-27 17:13:19 +0900236 "sh-rtc alarm", dev);
237 if (unlikely(ret)) {
238 dev_err(dev, "request alarm IRQ failed with %d, IRQ %d\n",
239 ret, rtc->alarm_irq);
240 goto err_bad_alarm;
241 }
242
243 return 0;
244
245err_bad_alarm:
246 free_irq(rtc->carry_irq, dev);
247err_bad_carry:
248 free_irq(rtc->periodic_irq, dev);
249
250 return ret;
251}
252
253static void sh_rtc_release(struct device *dev)
254{
255 struct sh_rtc *rtc = dev_get_drvdata(dev);
256
257 sh_rtc_setpie(dev, 0);
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900258 sh_rtc_setaie(dev, 0);
Paul Mundt317a6102006-09-27 17:13:19 +0900259
260 free_irq(rtc->periodic_irq, dev);
261 free_irq(rtc->carry_irq, dev);
262 free_irq(rtc->alarm_irq, dev);
263}
264
265static int sh_rtc_proc(struct device *dev, struct seq_file *seq)
266{
267 struct sh_rtc *rtc = dev_get_drvdata(dev);
268 unsigned int tmp;
269
270 tmp = readb(rtc->regbase + RCR1);
Paul Mundt317a6102006-09-27 17:13:19 +0900271 seq_printf(seq, "carry_IRQ\t: %s\n",
272 (tmp & RCR1_CIE) ? "yes" : "no");
273
274 tmp = readb(rtc->regbase + RCR2);
275 seq_printf(seq, "periodic_IRQ\t: %s\n",
276 (tmp & RCR2_PEF) ? "yes" : "no");
277
278 return 0;
279}
280
281static int sh_rtc_ioctl(struct device *dev, unsigned int cmd, unsigned long arg)
282{
283 unsigned int ret = -ENOIOCTLCMD;
284
285 switch (cmd) {
286 case RTC_PIE_OFF:
287 case RTC_PIE_ON:
288 sh_rtc_setpie(dev, cmd == RTC_PIE_ON);
289 ret = 0;
290 break;
291 case RTC_AIE_OFF:
292 case RTC_AIE_ON:
293 sh_rtc_setaie(dev, cmd == RTC_AIE_ON);
294 ret = 0;
295 break;
296 }
297
298 return ret;
299}
300
301static int sh_rtc_read_time(struct device *dev, struct rtc_time *tm)
302{
303 struct platform_device *pdev = to_platform_device(dev);
304 struct sh_rtc *rtc = platform_get_drvdata(pdev);
305 unsigned int sec128, sec2, yr, yr100, cf_bit;
306
307 do {
308 unsigned int tmp;
309
310 spin_lock_irq(&rtc->lock);
311
312 tmp = readb(rtc->regbase + RCR1);
313 tmp &= ~RCR1_CF; /* Clear CF-bit */
314 tmp |= RCR1_CIE;
315 writeb(tmp, rtc->regbase + RCR1);
316
317 sec128 = readb(rtc->regbase + R64CNT);
318
319 tm->tm_sec = BCD2BIN(readb(rtc->regbase + RSECCNT));
320 tm->tm_min = BCD2BIN(readb(rtc->regbase + RMINCNT));
321 tm->tm_hour = BCD2BIN(readb(rtc->regbase + RHRCNT));
322 tm->tm_wday = BCD2BIN(readb(rtc->regbase + RWKCNT));
323 tm->tm_mday = BCD2BIN(readb(rtc->regbase + RDAYCNT));
Jamie Lenehana1614792006-12-08 14:49:30 +0900324 tm->tm_mon = BCD2BIN(readb(rtc->regbase + RMONCNT)) - 1;
Paul Mundt317a6102006-09-27 17:13:19 +0900325
Paul Mundtad89f872007-08-03 14:19:58 +0900326 if (rtc->capabilities & RTC_CAP_4_DIGIT_YEAR) {
327 yr = readw(rtc->regbase + RYRCNT);
328 yr100 = BCD2BIN(yr >> 8);
329 yr &= 0xff;
330 } else {
331 yr = readb(rtc->regbase + RYRCNT);
332 yr100 = BCD2BIN((yr == 0x99) ? 0x19 : 0x20);
333 }
Paul Mundt317a6102006-09-27 17:13:19 +0900334
335 tm->tm_year = (yr100 * 100 + BCD2BIN(yr)) - 1900;
336
337 sec2 = readb(rtc->regbase + R64CNT);
338 cf_bit = readb(rtc->regbase + RCR1) & RCR1_CF;
339
340 spin_unlock_irq(&rtc->lock);
341 } while (cf_bit != 0 || ((sec128 ^ sec2) & RTC_BIT_INVERTED) != 0);
342
343#if RTC_BIT_INVERTED != 0
344 if ((sec128 & RTC_BIT_INVERTED))
345 tm->tm_sec--;
346#endif
347
Paul Mundt435c55d2007-05-08 11:56:27 +0900348 dev_dbg(dev, "%s: tm is secs=%d, mins=%d, hours=%d, "
Paul Mundt317a6102006-09-27 17:13:19 +0900349 "mday=%d, mon=%d, year=%d, wday=%d\n",
350 __FUNCTION__,
351 tm->tm_sec, tm->tm_min, tm->tm_hour,
Jamie Lenehana1614792006-12-08 14:49:30 +0900352 tm->tm_mday, tm->tm_mon + 1, tm->tm_year, tm->tm_wday);
Paul Mundt317a6102006-09-27 17:13:19 +0900353
Paul Mundt0ac554b2007-11-07 20:13:24 +0900354 if (rtc_valid_tm(tm) < 0) {
Paul Mundt317a6102006-09-27 17:13:19 +0900355 dev_err(dev, "invalid date\n");
Paul Mundt0ac554b2007-11-07 20:13:24 +0900356 rtc_time_to_tm(0, tm);
357 }
Paul Mundt317a6102006-09-27 17:13:19 +0900358
359 return 0;
360}
361
362static int sh_rtc_set_time(struct device *dev, struct rtc_time *tm)
363{
364 struct platform_device *pdev = to_platform_device(dev);
365 struct sh_rtc *rtc = platform_get_drvdata(pdev);
366 unsigned int tmp;
367 int year;
368
369 spin_lock_irq(&rtc->lock);
370
371 /* Reset pre-scaler & stop RTC */
372 tmp = readb(rtc->regbase + RCR2);
373 tmp |= RCR2_RESET;
Markus Brunner699bc662007-07-26 17:31:28 +0900374 tmp &= ~RCR2_START;
Paul Mundt317a6102006-09-27 17:13:19 +0900375 writeb(tmp, rtc->regbase + RCR2);
376
377 writeb(BIN2BCD(tm->tm_sec), rtc->regbase + RSECCNT);
378 writeb(BIN2BCD(tm->tm_min), rtc->regbase + RMINCNT);
379 writeb(BIN2BCD(tm->tm_hour), rtc->regbase + RHRCNT);
380 writeb(BIN2BCD(tm->tm_wday), rtc->regbase + RWKCNT);
381 writeb(BIN2BCD(tm->tm_mday), rtc->regbase + RDAYCNT);
Jamie Lenehana1614792006-12-08 14:49:30 +0900382 writeb(BIN2BCD(tm->tm_mon + 1), rtc->regbase + RMONCNT);
Paul Mundt317a6102006-09-27 17:13:19 +0900383
Paul Mundtad89f872007-08-03 14:19:58 +0900384 if (rtc->capabilities & RTC_CAP_4_DIGIT_YEAR) {
385 year = (BIN2BCD((tm->tm_year + 1900) / 100) << 8) |
386 BIN2BCD(tm->tm_year % 100);
387 writew(year, rtc->regbase + RYRCNT);
388 } else {
389 year = tm->tm_year % 100;
390 writeb(BIN2BCD(year), rtc->regbase + RYRCNT);
391 }
Paul Mundt317a6102006-09-27 17:13:19 +0900392
393 /* Start RTC */
394 tmp = readb(rtc->regbase + RCR2);
395 tmp &= ~RCR2_RESET;
396 tmp |= RCR2_RTCEN | RCR2_START;
397 writeb(tmp, rtc->regbase + RCR2);
398
399 spin_unlock_irq(&rtc->lock);
400
401 return 0;
402}
403
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900404static inline int sh_rtc_read_alarm_value(struct sh_rtc *rtc, int reg_off)
405{
406 unsigned int byte;
407 int value = 0xff; /* return 0xff for ignored values */
408
409 byte = readb(rtc->regbase + reg_off);
410 if (byte & AR_ENB) {
411 byte &= ~AR_ENB; /* strip the enable bit */
412 value = BCD2BIN(byte);
413 }
414
415 return value;
416}
417
418static int sh_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *wkalrm)
419{
420 struct platform_device *pdev = to_platform_device(dev);
421 struct sh_rtc *rtc = platform_get_drvdata(pdev);
422 struct rtc_time* tm = &wkalrm->time;
423
424 spin_lock_irq(&rtc->lock);
425
426 tm->tm_sec = sh_rtc_read_alarm_value(rtc, RSECAR);
427 tm->tm_min = sh_rtc_read_alarm_value(rtc, RMINAR);
428 tm->tm_hour = sh_rtc_read_alarm_value(rtc, RHRAR);
429 tm->tm_wday = sh_rtc_read_alarm_value(rtc, RWKAR);
430 tm->tm_mday = sh_rtc_read_alarm_value(rtc, RDAYAR);
431 tm->tm_mon = sh_rtc_read_alarm_value(rtc, RMONAR);
432 if (tm->tm_mon > 0)
433 tm->tm_mon -= 1; /* RTC is 1-12, tm_mon is 0-11 */
434 tm->tm_year = 0xffff;
435
David Brownell0d103e92007-01-10 23:15:32 -0800436 wkalrm->enabled = (readb(rtc->regbase + RCR1) & RCR1_AIE) ? 1 : 0;
437
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900438 spin_unlock_irq(&rtc->lock);
439
440 return 0;
441}
442
443static inline void sh_rtc_write_alarm_value(struct sh_rtc *rtc,
444 int value, int reg_off)
445{
446 /* < 0 for a value that is ignored */
447 if (value < 0)
448 writeb(0, rtc->regbase + reg_off);
449 else
450 writeb(BIN2BCD(value) | AR_ENB, rtc->regbase + reg_off);
451}
452
453static int sh_rtc_check_alarm(struct rtc_time* tm)
454{
455 /*
456 * The original rtc says anything > 0xc0 is "don't care" or "match
457 * all" - most users use 0xff but rtc-dev uses -1 for the same thing.
458 * The original rtc doesn't support years - some things use -1 and
459 * some 0xffff. We use -1 to make out tests easier.
460 */
461 if (tm->tm_year == 0xffff)
462 tm->tm_year = -1;
463 if (tm->tm_mon >= 0xff)
464 tm->tm_mon = -1;
465 if (tm->tm_mday >= 0xff)
466 tm->tm_mday = -1;
467 if (tm->tm_wday >= 0xff)
468 tm->tm_wday = -1;
469 if (tm->tm_hour >= 0xff)
470 tm->tm_hour = -1;
471 if (tm->tm_min >= 0xff)
472 tm->tm_min = -1;
473 if (tm->tm_sec >= 0xff)
474 tm->tm_sec = -1;
475
476 if (tm->tm_year > 9999 ||
477 tm->tm_mon >= 12 ||
478 tm->tm_mday == 0 || tm->tm_mday >= 32 ||
479 tm->tm_wday >= 7 ||
480 tm->tm_hour >= 24 ||
481 tm->tm_min >= 60 ||
482 tm->tm_sec >= 60)
483 return -EINVAL;
484
485 return 0;
486}
487
488static int sh_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *wkalrm)
489{
490 struct platform_device *pdev = to_platform_device(dev);
491 struct sh_rtc *rtc = platform_get_drvdata(pdev);
492 unsigned int rcr1;
493 struct rtc_time *tm = &wkalrm->time;
494 int mon, err;
495
496 err = sh_rtc_check_alarm(tm);
497 if (unlikely(err < 0))
498 return err;
499
500 spin_lock_irq(&rtc->lock);
501
Jamie Lenehan15c945c2007-01-22 20:40:41 -0800502 /* disable alarm interrupt and clear the alarm flag */
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900503 rcr1 = readb(rtc->regbase + RCR1);
Jamie Lenehan15c945c2007-01-22 20:40:41 -0800504 rcr1 &= ~(RCR1_AF|RCR1_AIE);
505 writeb(rcr1, rtc->regbase + RCR1);
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900506
507 rtc->rearm_aie = 0;
508
509 /* set alarm time */
510 sh_rtc_write_alarm_value(rtc, tm->tm_sec, RSECAR);
511 sh_rtc_write_alarm_value(rtc, tm->tm_min, RMINAR);
512 sh_rtc_write_alarm_value(rtc, tm->tm_hour, RHRAR);
513 sh_rtc_write_alarm_value(rtc, tm->tm_wday, RWKAR);
514 sh_rtc_write_alarm_value(rtc, tm->tm_mday, RDAYAR);
515 mon = tm->tm_mon;
516 if (mon >= 0)
517 mon += 1;
518 sh_rtc_write_alarm_value(rtc, mon, RMONAR);
519
Jamie Lenehan15c945c2007-01-22 20:40:41 -0800520 if (wkalrm->enabled) {
521 rcr1 |= RCR1_AIE;
522 writeb(rcr1, rtc->regbase + RCR1);
523 }
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900524
525 spin_unlock_irq(&rtc->lock);
526
527 return 0;
528}
529
Paul Mundt317a6102006-09-27 17:13:19 +0900530static struct rtc_class_ops sh_rtc_ops = {
531 .open = sh_rtc_open,
532 .release = sh_rtc_release,
533 .ioctl = sh_rtc_ioctl,
534 .read_time = sh_rtc_read_time,
535 .set_time = sh_rtc_set_time,
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900536 .read_alarm = sh_rtc_read_alarm,
537 .set_alarm = sh_rtc_set_alarm,
Paul Mundt317a6102006-09-27 17:13:19 +0900538 .proc = sh_rtc_proc,
539};
540
541static int __devinit sh_rtc_probe(struct platform_device *pdev)
542{
543 struct sh_rtc *rtc;
544 struct resource *res;
545 int ret = -ENOENT;
546
547 rtc = kzalloc(sizeof(struct sh_rtc), GFP_KERNEL);
548 if (unlikely(!rtc))
549 return -ENOMEM;
550
551 spin_lock_init(&rtc->lock);
552
553 rtc->periodic_irq = platform_get_irq(pdev, 0);
554 if (unlikely(rtc->periodic_irq < 0)) {
555 dev_err(&pdev->dev, "No IRQ for period\n");
556 goto err_badres;
557 }
558
559 rtc->carry_irq = platform_get_irq(pdev, 1);
560 if (unlikely(rtc->carry_irq < 0)) {
561 dev_err(&pdev->dev, "No IRQ for carry\n");
562 goto err_badres;
563 }
564
565 rtc->alarm_irq = platform_get_irq(pdev, 2);
566 if (unlikely(rtc->alarm_irq < 0)) {
567 dev_err(&pdev->dev, "No IRQ for alarm\n");
568 goto err_badres;
569 }
570
571 res = platform_get_resource(pdev, IORESOURCE_IO, 0);
572 if (unlikely(res == NULL)) {
573 dev_err(&pdev->dev, "No IO resource\n");
574 goto err_badres;
575 }
576
577 rtc->regsize = res->end - res->start + 1;
578
579 rtc->res = request_mem_region(res->start, rtc->regsize, pdev->name);
580 if (unlikely(!rtc->res)) {
581 ret = -EBUSY;
582 goto err_badres;
583 }
584
585 rtc->regbase = (void __iomem *)rtc->res->start;
586 if (unlikely(!rtc->regbase)) {
587 ret = -EINVAL;
588 goto err_badmap;
589 }
590
591 rtc->rtc_dev = rtc_device_register("sh", &pdev->dev,
592 &sh_rtc_ops, THIS_MODULE);
Paul Mundt29dd0da2007-11-07 14:58:09 +0900593 if (IS_ERR(rtc->rtc_dev)) {
Paul Mundt317a6102006-09-27 17:13:19 +0900594 ret = PTR_ERR(rtc->rtc_dev);
595 goto err_badmap;
596 }
597
Paul Mundtad89f872007-08-03 14:19:58 +0900598 rtc->capabilities = RTC_DEF_CAPABILITIES;
599 if (pdev->dev.platform_data) {
600 struct sh_rtc_platform_info *pinfo = pdev->dev.platform_data;
601
602 /*
603 * Some CPUs have special capabilities in addition to the
604 * default set. Add those in here.
605 */
606 rtc->capabilities |= pinfo->capabilities;
607 }
608
Paul Mundt317a6102006-09-27 17:13:19 +0900609 platform_set_drvdata(pdev, rtc);
610
611 return 0;
612
613err_badmap:
614 release_resource(rtc->res);
615err_badres:
616 kfree(rtc);
617
618 return ret;
619}
620
621static int __devexit sh_rtc_remove(struct platform_device *pdev)
622{
623 struct sh_rtc *rtc = platform_get_drvdata(pdev);
624
625 if (likely(rtc->rtc_dev))
626 rtc_device_unregister(rtc->rtc_dev);
627
628 sh_rtc_setpie(&pdev->dev, 0);
629 sh_rtc_setaie(&pdev->dev, 0);
630
631 release_resource(rtc->res);
632
633 platform_set_drvdata(pdev, NULL);
634
635 kfree(rtc);
636
637 return 0;
638}
639static struct platform_driver sh_rtc_platform_driver = {
640 .driver = {
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900641 .name = DRV_NAME,
Paul Mundt317a6102006-09-27 17:13:19 +0900642 .owner = THIS_MODULE,
643 },
644 .probe = sh_rtc_probe,
645 .remove = __devexit_p(sh_rtc_remove),
646};
647
648static int __init sh_rtc_init(void)
649{
650 return platform_driver_register(&sh_rtc_platform_driver);
651}
652
653static void __exit sh_rtc_exit(void)
654{
655 platform_driver_unregister(&sh_rtc_platform_driver);
656}
657
658module_init(sh_rtc_init);
659module_exit(sh_rtc_exit);
660
661MODULE_DESCRIPTION("SuperH on-chip RTC driver");
Jamie Lenehan1b73e6a2006-12-08 15:26:15 +0900662MODULE_VERSION(DRV_VERSION);
663MODULE_AUTHOR("Paul Mundt <lethal@linux-sh.org>, Jamie Lenehan <lenehan@twibble.org>");
Paul Mundt317a6102006-09-27 17:13:19 +0900664MODULE_LICENSE("GPL");