xref: /openbmc/linux/drivers/rtc/rtc-sa1100.c (revision 7decaa557a20f48aabef35f817ec16ef563567b0)
1e842f1c8SRichard Purdie /*
2e842f1c8SRichard Purdie  * Real Time Clock interface for StrongARM SA1x00 and XScale PXA2xx
3e842f1c8SRichard Purdie  *
4e842f1c8SRichard Purdie  * Copyright (c) 2000 Nils Faerber
5e842f1c8SRichard Purdie  *
6e842f1c8SRichard Purdie  * Based on rtc.c by Paul Gortmaker
7e842f1c8SRichard Purdie  *
8e842f1c8SRichard Purdie  * Original Driver by Nils Faerber <nils@kernelconcepts.de>
9e842f1c8SRichard Purdie  *
10e842f1c8SRichard Purdie  * Modifications from:
11e842f1c8SRichard Purdie  *   CIH <cih@coventive.com>
122f82af08SNicolas Pitre  *   Nicolas Pitre <nico@fluxnic.net>
13e842f1c8SRichard Purdie  *   Andrew Christian <andrew.christian@hp.com>
14e842f1c8SRichard Purdie  *
15e842f1c8SRichard Purdie  * Converted to the RTC subsystem and Driver Model
16e842f1c8SRichard Purdie  *   by Richard Purdie <rpurdie@rpsys.net>
17e842f1c8SRichard Purdie  *
18e842f1c8SRichard Purdie  * This program is free software; you can redistribute it and/or
19e842f1c8SRichard Purdie  * modify it under the terms of the GNU General Public License
20e842f1c8SRichard Purdie  * as published by the Free Software Foundation; either version
21e842f1c8SRichard Purdie  * 2 of the License, or (at your option) any later version.
22e842f1c8SRichard Purdie  */
23e842f1c8SRichard Purdie 
24e842f1c8SRichard Purdie #include <linux/platform_device.h>
25e842f1c8SRichard Purdie #include <linux/module.h>
26e842f1c8SRichard Purdie #include <linux/rtc.h>
27e842f1c8SRichard Purdie #include <linux/init.h>
28e842f1c8SRichard Purdie #include <linux/fs.h>
29e842f1c8SRichard Purdie #include <linux/interrupt.h>
30e842f1c8SRichard Purdie #include <linux/string.h>
31e842f1c8SRichard Purdie #include <linux/pm.h>
321977f032SJiri Slaby #include <linux/bitops.h>
33e842f1c8SRichard Purdie 
34a09e64fbSRussell King #include <mach/hardware.h>
35e842f1c8SRichard Purdie #include <asm/irq.h>
36e842f1c8SRichard Purdie 
37e842f1c8SRichard Purdie #ifdef CONFIG_ARCH_PXA
385bf3df3fSEric Miao #include <mach/regs-rtc.h>
395bf3df3fSEric Miao #include <mach/regs-ost.h>
40e842f1c8SRichard Purdie #endif
41e842f1c8SRichard Purdie 
42a404ad1fSMarcelo Roberto Jimenez #define RTC_DEF_DIVIDER		(32768 - 1)
43e842f1c8SRichard Purdie #define RTC_DEF_TRIM		0
44e842f1c8SRichard Purdie 
45e842f1c8SRichard Purdie static unsigned long rtc_freq = 1024;
466769717dSEric Miao static unsigned long timer_freq;
47e842f1c8SRichard Purdie static struct rtc_time rtc_alarm;
4834af946aSIngo Molnar static DEFINE_SPINLOCK(sa1100_rtc_lock);
49e842f1c8SRichard Purdie 
50797276ecSRussell King static inline int rtc_periodic_alarm(struct rtc_time *tm)
51797276ecSRussell King {
52797276ecSRussell King 	return  (tm->tm_year == -1) ||
53797276ecSRussell King 		((unsigned)tm->tm_mon >= 12) ||
54797276ecSRussell King 		((unsigned)(tm->tm_mday - 1) >= 31) ||
55797276ecSRussell King 		((unsigned)tm->tm_hour > 23) ||
56797276ecSRussell King 		((unsigned)tm->tm_min > 59) ||
57797276ecSRussell King 		((unsigned)tm->tm_sec > 59);
58797276ecSRussell King }
59797276ecSRussell King 
60797276ecSRussell King /*
61797276ecSRussell King  * Calculate the next alarm time given the requested alarm time mask
62797276ecSRussell King  * and the current time.
63797276ecSRussell King  */
64a404ad1fSMarcelo Roberto Jimenez static void rtc_next_alarm_time(struct rtc_time *next, struct rtc_time *now,
65a404ad1fSMarcelo Roberto Jimenez 	struct rtc_time *alrm)
66797276ecSRussell King {
67797276ecSRussell King 	unsigned long next_time;
68797276ecSRussell King 	unsigned long now_time;
69797276ecSRussell King 
70797276ecSRussell King 	next->tm_year = now->tm_year;
71797276ecSRussell King 	next->tm_mon = now->tm_mon;
72797276ecSRussell King 	next->tm_mday = now->tm_mday;
73797276ecSRussell King 	next->tm_hour = alrm->tm_hour;
74797276ecSRussell King 	next->tm_min = alrm->tm_min;
75797276ecSRussell King 	next->tm_sec = alrm->tm_sec;
76797276ecSRussell King 
77797276ecSRussell King 	rtc_tm_to_time(now, &now_time);
78797276ecSRussell King 	rtc_tm_to_time(next, &next_time);
79797276ecSRussell King 
80797276ecSRussell King 	if (next_time < now_time) {
81797276ecSRussell King 		/* Advance one day */
82797276ecSRussell King 		next_time += 60 * 60 * 24;
83797276ecSRussell King 		rtc_time_to_tm(next_time, next);
84797276ecSRussell King 	}
85797276ecSRussell King }
86797276ecSRussell King 
87e842f1c8SRichard Purdie static int rtc_update_alarm(struct rtc_time *alrm)
88e842f1c8SRichard Purdie {
89e842f1c8SRichard Purdie 	struct rtc_time alarm_tm, now_tm;
90e842f1c8SRichard Purdie 	unsigned long now, time;
91e842f1c8SRichard Purdie 	int ret;
92e842f1c8SRichard Purdie 
93e842f1c8SRichard Purdie 	do {
94e842f1c8SRichard Purdie 		now = RCNR;
95e842f1c8SRichard Purdie 		rtc_time_to_tm(now, &now_tm);
96e842f1c8SRichard Purdie 		rtc_next_alarm_time(&alarm_tm, &now_tm, alrm);
97e842f1c8SRichard Purdie 		ret = rtc_tm_to_time(&alarm_tm, &time);
98e842f1c8SRichard Purdie 		if (ret != 0)
99e842f1c8SRichard Purdie 			break;
100e842f1c8SRichard Purdie 
101e842f1c8SRichard Purdie 		RTSR = RTSR & (RTSR_HZE|RTSR_ALE|RTSR_AL);
102e842f1c8SRichard Purdie 		RTAR = time;
103e842f1c8SRichard Purdie 	} while (now != RCNR);
104e842f1c8SRichard Purdie 
105e842f1c8SRichard Purdie 	return ret;
106e842f1c8SRichard Purdie }
107e842f1c8SRichard Purdie 
1087d12e780SDavid Howells static irqreturn_t sa1100_rtc_interrupt(int irq, void *dev_id)
109e842f1c8SRichard Purdie {
110e842f1c8SRichard Purdie 	struct platform_device *pdev = to_platform_device(dev_id);
111e842f1c8SRichard Purdie 	struct rtc_device *rtc = platform_get_drvdata(pdev);
112e842f1c8SRichard Purdie 	unsigned int rtsr;
113e842f1c8SRichard Purdie 	unsigned long events = 0;
114e842f1c8SRichard Purdie 
115e842f1c8SRichard Purdie 	spin_lock(&sa1100_rtc_lock);
116e842f1c8SRichard Purdie 
117e842f1c8SRichard Purdie 	rtsr = RTSR;
118e842f1c8SRichard Purdie 	/* clear interrupt sources */
119e842f1c8SRichard Purdie 	RTSR = 0;
120*7decaa55SMarcelo Roberto Jimenez 	/* Fix for a nasty initialization problem the in SA11xx RTSR register.
121*7decaa55SMarcelo Roberto Jimenez 	 * See also the comments in sa1100_rtc_probe(). */
122*7decaa55SMarcelo Roberto Jimenez 	if (rtsr & (RTSR_ALE | RTSR_HZE)) {
123*7decaa55SMarcelo Roberto Jimenez 		/* This is the original code, before there was the if test
124*7decaa55SMarcelo Roberto Jimenez 		 * above. This code does not clear interrupts that were not
125*7decaa55SMarcelo Roberto Jimenez 		 * enabled. */
126e842f1c8SRichard Purdie 		RTSR = (RTSR_AL | RTSR_HZ) & (rtsr >> 2);
127*7decaa55SMarcelo Roberto Jimenez 	} else {
128*7decaa55SMarcelo Roberto Jimenez 		/* For some reason, it is possible to enter this routine
129*7decaa55SMarcelo Roberto Jimenez 		 * without interruptions enabled, it has been tested with
130*7decaa55SMarcelo Roberto Jimenez 		 * several units (Bug in SA11xx chip?).
131*7decaa55SMarcelo Roberto Jimenez 		 *
132*7decaa55SMarcelo Roberto Jimenez 		 * This situation leads to an infinite "loop" of interrupt
133*7decaa55SMarcelo Roberto Jimenez 		 * routine calling and as a result the processor seems to
134*7decaa55SMarcelo Roberto Jimenez 		 * lock on its first call to open(). */
135*7decaa55SMarcelo Roberto Jimenez 		RTSR = RTSR_AL | RTSR_HZ;
136*7decaa55SMarcelo Roberto Jimenez 	}
137e842f1c8SRichard Purdie 
138e842f1c8SRichard Purdie 	/* clear alarm interrupt if it has occurred */
139e842f1c8SRichard Purdie 	if (rtsr & RTSR_AL)
140e842f1c8SRichard Purdie 		rtsr &= ~RTSR_ALE;
141e842f1c8SRichard Purdie 	RTSR = rtsr & (RTSR_ALE | RTSR_HZE);
142e842f1c8SRichard Purdie 
143e842f1c8SRichard Purdie 	/* update irq data & counter */
144e842f1c8SRichard Purdie 	if (rtsr & RTSR_AL)
145e842f1c8SRichard Purdie 		events |= RTC_AF | RTC_IRQF;
146e842f1c8SRichard Purdie 	if (rtsr & RTSR_HZ)
147e842f1c8SRichard Purdie 		events |= RTC_UF | RTC_IRQF;
148e842f1c8SRichard Purdie 
149ab6a2d70SDavid Brownell 	rtc_update_irq(rtc, 1, events);
150e842f1c8SRichard Purdie 
151e842f1c8SRichard Purdie 	if (rtsr & RTSR_AL && rtc_periodic_alarm(&rtc_alarm))
152e842f1c8SRichard Purdie 		rtc_update_alarm(&rtc_alarm);
153e842f1c8SRichard Purdie 
154e842f1c8SRichard Purdie 	spin_unlock(&sa1100_rtc_lock);
155e842f1c8SRichard Purdie 
156e842f1c8SRichard Purdie 	return IRQ_HANDLED;
157e842f1c8SRichard Purdie }
158e842f1c8SRichard Purdie 
159e842f1c8SRichard Purdie static int rtc_timer1_count;
160e842f1c8SRichard Purdie 
1617d12e780SDavid Howells static irqreturn_t timer1_interrupt(int irq, void *dev_id)
162e842f1c8SRichard Purdie {
163e842f1c8SRichard Purdie 	struct platform_device *pdev = to_platform_device(dev_id);
164e842f1c8SRichard Purdie 	struct rtc_device *rtc = platform_get_drvdata(pdev);
165e842f1c8SRichard Purdie 
166e842f1c8SRichard Purdie 	/*
167e842f1c8SRichard Purdie 	 * If we match for the first time, rtc_timer1_count will be 1.
168e842f1c8SRichard Purdie 	 * Otherwise, we wrapped around (very unlikely but
169e842f1c8SRichard Purdie 	 * still possible) so compute the amount of missed periods.
170e842f1c8SRichard Purdie 	 * The match reg is updated only when the data is actually retrieved
171e842f1c8SRichard Purdie 	 * to avoid unnecessary interrupts.
172e842f1c8SRichard Purdie 	 */
173e842f1c8SRichard Purdie 	OSSR = OSSR_M1;	/* clear match on timer1 */
174e842f1c8SRichard Purdie 
175ab6a2d70SDavid Brownell 	rtc_update_irq(rtc, rtc_timer1_count, RTC_PF | RTC_IRQF);
176e842f1c8SRichard Purdie 
177e842f1c8SRichard Purdie 	if (rtc_timer1_count == 1)
1786769717dSEric Miao 		rtc_timer1_count = (rtc_freq * ((1 << 30) / (timer_freq >> 2)));
179e842f1c8SRichard Purdie 
180e842f1c8SRichard Purdie 	return IRQ_HANDLED;
181e842f1c8SRichard Purdie }
182e842f1c8SRichard Purdie 
183e842f1c8SRichard Purdie static int sa1100_rtc_read_callback(struct device *dev, int data)
184e842f1c8SRichard Purdie {
185e842f1c8SRichard Purdie 	if (data & RTC_PF) {
186e842f1c8SRichard Purdie 		/* interpolate missed periods and set match for the next */
1876769717dSEric Miao 		unsigned long period = timer_freq / rtc_freq;
188e842f1c8SRichard Purdie 		unsigned long oscr = OSCR;
189e842f1c8SRichard Purdie 		unsigned long osmr1 = OSMR1;
190e842f1c8SRichard Purdie 		unsigned long missed = (oscr - osmr1)/period;
191e842f1c8SRichard Purdie 		data += missed << 8;
192e842f1c8SRichard Purdie 		OSSR = OSSR_M1;	/* clear match on timer 1 */
193e842f1c8SRichard Purdie 		OSMR1 = osmr1 + (missed + 1)*period;
194e842f1c8SRichard Purdie 		/* Ensure we didn't miss another match in the mean time.
195e842f1c8SRichard Purdie 		 * Here we compare (match - OSCR) 8 instead of 0 --
196e842f1c8SRichard Purdie 		 * see comment in pxa_timer_interrupt() for explanation.
197e842f1c8SRichard Purdie 		 */
198e842f1c8SRichard Purdie 		while ((signed long)((osmr1 = OSMR1) - OSCR) <= 8) {
199e842f1c8SRichard Purdie 			data += 0x100;
200e842f1c8SRichard Purdie 			OSSR = OSSR_M1;	/* clear match on timer 1 */
201e842f1c8SRichard Purdie 			OSMR1 = osmr1 + period;
202e842f1c8SRichard Purdie 		}
203e842f1c8SRichard Purdie 	}
204e842f1c8SRichard Purdie 	return data;
205e842f1c8SRichard Purdie }
206e842f1c8SRichard Purdie 
207e842f1c8SRichard Purdie static int sa1100_rtc_open(struct device *dev)
208e842f1c8SRichard Purdie {
209e842f1c8SRichard Purdie 	int ret;
210e842f1c8SRichard Purdie 
211dace1453SThomas Gleixner 	ret = request_irq(IRQ_RTC1Hz, sa1100_rtc_interrupt, IRQF_DISABLED,
212e842f1c8SRichard Purdie 		"rtc 1Hz", dev);
213e842f1c8SRichard Purdie 	if (ret) {
2142260a25cSAlessandro Zummo 		dev_err(dev, "IRQ %d already in use.\n", IRQ_RTC1Hz);
215e842f1c8SRichard Purdie 		goto fail_ui;
216e842f1c8SRichard Purdie 	}
217dace1453SThomas Gleixner 	ret = request_irq(IRQ_RTCAlrm, sa1100_rtc_interrupt, IRQF_DISABLED,
218e842f1c8SRichard Purdie 		"rtc Alrm", dev);
219e842f1c8SRichard Purdie 	if (ret) {
2202260a25cSAlessandro Zummo 		dev_err(dev, "IRQ %d already in use.\n", IRQ_RTCAlrm);
221e842f1c8SRichard Purdie 		goto fail_ai;
222e842f1c8SRichard Purdie 	}
223dace1453SThomas Gleixner 	ret = request_irq(IRQ_OST1, timer1_interrupt, IRQF_DISABLED,
224e842f1c8SRichard Purdie 		"rtc timer", dev);
225e842f1c8SRichard Purdie 	if (ret) {
2262260a25cSAlessandro Zummo 		dev_err(dev, "IRQ %d already in use.\n", IRQ_OST1);
227e842f1c8SRichard Purdie 		goto fail_pi;
228e842f1c8SRichard Purdie 	}
229e842f1c8SRichard Purdie 	return 0;
230e842f1c8SRichard Purdie 
231e842f1c8SRichard Purdie  fail_pi:
232f1226701SRussell King 	free_irq(IRQ_RTCAlrm, dev);
233e842f1c8SRichard Purdie  fail_ai:
234f1226701SRussell King 	free_irq(IRQ_RTC1Hz, dev);
235e842f1c8SRichard Purdie  fail_ui:
236e842f1c8SRichard Purdie 	return ret;
237e842f1c8SRichard Purdie }
238e842f1c8SRichard Purdie 
239e842f1c8SRichard Purdie static void sa1100_rtc_release(struct device *dev)
240e842f1c8SRichard Purdie {
241e842f1c8SRichard Purdie 	spin_lock_irq(&sa1100_rtc_lock);
242e842f1c8SRichard Purdie 	RTSR = 0;
243e842f1c8SRichard Purdie 	OIER &= ~OIER_E1;
244e842f1c8SRichard Purdie 	OSSR = OSSR_M1;
245e842f1c8SRichard Purdie 	spin_unlock_irq(&sa1100_rtc_lock);
246e842f1c8SRichard Purdie 
247e842f1c8SRichard Purdie 	free_irq(IRQ_OST1, dev);
248e842f1c8SRichard Purdie 	free_irq(IRQ_RTCAlrm, dev);
249e842f1c8SRichard Purdie 	free_irq(IRQ_RTC1Hz, dev);
250e842f1c8SRichard Purdie }
251e842f1c8SRichard Purdie 
252e842f1c8SRichard Purdie 
253e842f1c8SRichard Purdie static int sa1100_rtc_ioctl(struct device *dev, unsigned int cmd,
254e842f1c8SRichard Purdie 		unsigned long arg)
255e842f1c8SRichard Purdie {
256e842f1c8SRichard Purdie 	switch (cmd) {
257e842f1c8SRichard Purdie 	case RTC_AIE_OFF:
258e842f1c8SRichard Purdie 		spin_lock_irq(&sa1100_rtc_lock);
259e842f1c8SRichard Purdie 		RTSR &= ~RTSR_ALE;
260e842f1c8SRichard Purdie 		spin_unlock_irq(&sa1100_rtc_lock);
261e842f1c8SRichard Purdie 		return 0;
262e842f1c8SRichard Purdie 	case RTC_AIE_ON:
263e842f1c8SRichard Purdie 		spin_lock_irq(&sa1100_rtc_lock);
264e842f1c8SRichard Purdie 		RTSR |= RTSR_ALE;
265e842f1c8SRichard Purdie 		spin_unlock_irq(&sa1100_rtc_lock);
266e842f1c8SRichard Purdie 		return 0;
267e842f1c8SRichard Purdie 	case RTC_UIE_OFF:
268e842f1c8SRichard Purdie 		spin_lock_irq(&sa1100_rtc_lock);
269e842f1c8SRichard Purdie 		RTSR &= ~RTSR_HZE;
270e842f1c8SRichard Purdie 		spin_unlock_irq(&sa1100_rtc_lock);
271e842f1c8SRichard Purdie 		return 0;
272e842f1c8SRichard Purdie 	case RTC_UIE_ON:
273e842f1c8SRichard Purdie 		spin_lock_irq(&sa1100_rtc_lock);
274e842f1c8SRichard Purdie 		RTSR |= RTSR_HZE;
275e842f1c8SRichard Purdie 		spin_unlock_irq(&sa1100_rtc_lock);
276e842f1c8SRichard Purdie 		return 0;
277e842f1c8SRichard Purdie 	case RTC_PIE_OFF:
278e842f1c8SRichard Purdie 		spin_lock_irq(&sa1100_rtc_lock);
279e842f1c8SRichard Purdie 		OIER &= ~OIER_E1;
280e842f1c8SRichard Purdie 		spin_unlock_irq(&sa1100_rtc_lock);
281e842f1c8SRichard Purdie 		return 0;
282e842f1c8SRichard Purdie 	case RTC_PIE_ON:
283e842f1c8SRichard Purdie 		spin_lock_irq(&sa1100_rtc_lock);
2846769717dSEric Miao 		OSMR1 = timer_freq / rtc_freq + OSCR;
285e842f1c8SRichard Purdie 		OIER |= OIER_E1;
286e842f1c8SRichard Purdie 		rtc_timer1_count = 1;
287e842f1c8SRichard Purdie 		spin_unlock_irq(&sa1100_rtc_lock);
288e842f1c8SRichard Purdie 		return 0;
289e842f1c8SRichard Purdie 	case RTC_IRQP_READ:
290e842f1c8SRichard Purdie 		return put_user(rtc_freq, (unsigned long *)arg);
291e842f1c8SRichard Purdie 	case RTC_IRQP_SET:
2926769717dSEric Miao 		if (arg < 1 || arg > timer_freq)
293e842f1c8SRichard Purdie 			return -EINVAL;
294e842f1c8SRichard Purdie 		rtc_freq = arg;
295e842f1c8SRichard Purdie 		return 0;
296e842f1c8SRichard Purdie 	}
297b3969e58SAlessandro Zummo 	return -ENOIOCTLCMD;
298e842f1c8SRichard Purdie }
299e842f1c8SRichard Purdie 
300e842f1c8SRichard Purdie static int sa1100_rtc_read_time(struct device *dev, struct rtc_time *tm)
301e842f1c8SRichard Purdie {
302e842f1c8SRichard Purdie 	rtc_time_to_tm(RCNR, tm);
303e842f1c8SRichard Purdie 	return 0;
304e842f1c8SRichard Purdie }
305e842f1c8SRichard Purdie 
306e842f1c8SRichard Purdie static int sa1100_rtc_set_time(struct device *dev, struct rtc_time *tm)
307e842f1c8SRichard Purdie {
308e842f1c8SRichard Purdie 	unsigned long time;
309e842f1c8SRichard Purdie 	int ret;
310e842f1c8SRichard Purdie 
311e842f1c8SRichard Purdie 	ret = rtc_tm_to_time(tm, &time);
312e842f1c8SRichard Purdie 	if (ret == 0)
313e842f1c8SRichard Purdie 		RCNR = time;
314e842f1c8SRichard Purdie 	return ret;
315e842f1c8SRichard Purdie }
316e842f1c8SRichard Purdie 
317e842f1c8SRichard Purdie static int sa1100_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alrm)
318e842f1c8SRichard Purdie {
31932b49da4SDavid Brownell 	u32	rtsr;
32032b49da4SDavid Brownell 
321e842f1c8SRichard Purdie 	memcpy(&alrm->time, &rtc_alarm, sizeof(struct rtc_time));
32232b49da4SDavid Brownell 	rtsr = RTSR;
32332b49da4SDavid Brownell 	alrm->enabled = (rtsr & RTSR_ALE) ? 1 : 0;
32432b49da4SDavid Brownell 	alrm->pending = (rtsr & RTSR_AL) ? 1 : 0;
325e842f1c8SRichard Purdie 	return 0;
326e842f1c8SRichard Purdie }
327e842f1c8SRichard Purdie 
328e842f1c8SRichard Purdie static int sa1100_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alrm)
329e842f1c8SRichard Purdie {
330e842f1c8SRichard Purdie 	int ret;
331e842f1c8SRichard Purdie 
332e842f1c8SRichard Purdie 	spin_lock_irq(&sa1100_rtc_lock);
333e842f1c8SRichard Purdie 	ret = rtc_update_alarm(&alrm->time);
334e842f1c8SRichard Purdie 	if (ret == 0) {
335e842f1c8SRichard Purdie 		if (alrm->enabled)
33632b49da4SDavid Brownell 			RTSR |= RTSR_ALE;
337e842f1c8SRichard Purdie 		else
33832b49da4SDavid Brownell 			RTSR &= ~RTSR_ALE;
339e842f1c8SRichard Purdie 	}
340e842f1c8SRichard Purdie 	spin_unlock_irq(&sa1100_rtc_lock);
341e842f1c8SRichard Purdie 
342e842f1c8SRichard Purdie 	return ret;
343e842f1c8SRichard Purdie }
344e842f1c8SRichard Purdie 
345e842f1c8SRichard Purdie static int sa1100_rtc_proc(struct device *dev, struct seq_file *seq)
346e842f1c8SRichard Purdie {
347a2db8dfcSDavid Brownell 	seq_printf(seq, "trim/divider\t: 0x%08x\n", (u32) RTTR);
348e842f1c8SRichard Purdie 	seq_printf(seq, "update_IRQ\t: %s\n",
349e842f1c8SRichard Purdie 			(RTSR & RTSR_HZE) ? "yes" : "no");
350e842f1c8SRichard Purdie 	seq_printf(seq, "periodic_IRQ\t: %s\n",
351e842f1c8SRichard Purdie 			(OIER & OIER_E1) ? "yes" : "no");
352e842f1c8SRichard Purdie 	seq_printf(seq, "periodic_freq\t: %ld\n", rtc_freq);
353fd3ee6d3SMarcelo Roberto Jimenez 	seq_printf(seq, "RTSR\t\t: 0x%08x\n", (u32)RTSR);
354e842f1c8SRichard Purdie 
355e842f1c8SRichard Purdie 	return 0;
356e842f1c8SRichard Purdie }
357e842f1c8SRichard Purdie 
358ff8371acSDavid Brownell static const struct rtc_class_ops sa1100_rtc_ops = {
359e842f1c8SRichard Purdie 	.open = sa1100_rtc_open,
360e842f1c8SRichard Purdie 	.read_callback = sa1100_rtc_read_callback,
361e842f1c8SRichard Purdie 	.release = sa1100_rtc_release,
362e842f1c8SRichard Purdie 	.ioctl = sa1100_rtc_ioctl,
363e842f1c8SRichard Purdie 	.read_time = sa1100_rtc_read_time,
364e842f1c8SRichard Purdie 	.set_time = sa1100_rtc_set_time,
365e842f1c8SRichard Purdie 	.read_alarm = sa1100_rtc_read_alarm,
366e842f1c8SRichard Purdie 	.set_alarm = sa1100_rtc_set_alarm,
367e842f1c8SRichard Purdie 	.proc = sa1100_rtc_proc,
368e842f1c8SRichard Purdie };
369e842f1c8SRichard Purdie 
370e842f1c8SRichard Purdie static int sa1100_rtc_probe(struct platform_device *pdev)
371e842f1c8SRichard Purdie {
372e842f1c8SRichard Purdie 	struct rtc_device *rtc;
373e842f1c8SRichard Purdie 
3746769717dSEric Miao 	timer_freq = get_clock_tick_rate();
3756769717dSEric Miao 
376e842f1c8SRichard Purdie 	/*
377e842f1c8SRichard Purdie 	 * According to the manual we should be able to let RTTR be zero
378e842f1c8SRichard Purdie 	 * and then a default diviser for a 32.768KHz clock is used.
379e842f1c8SRichard Purdie 	 * Apparently this doesn't work, at least for my SA1110 rev 5.
380e842f1c8SRichard Purdie 	 * If the clock divider is uninitialized then reset it to the
381e842f1c8SRichard Purdie 	 * default value to get the 1Hz clock.
382e842f1c8SRichard Purdie 	 */
383e842f1c8SRichard Purdie 	if (RTTR == 0) {
384e842f1c8SRichard Purdie 		RTTR = RTC_DEF_DIVIDER + (RTC_DEF_TRIM << 16);
385a404ad1fSMarcelo Roberto Jimenez 		dev_warn(&pdev->dev, "warning: "
386a404ad1fSMarcelo Roberto Jimenez 			"initializing default clock divider/trim value\n");
387e842f1c8SRichard Purdie 		/* The current RTC value probably doesn't make sense either */
388e842f1c8SRichard Purdie 		RCNR = 0;
389e842f1c8SRichard Purdie 	}
390e842f1c8SRichard Purdie 
391e5a2c9ccSUli Luckas 	device_init_wakeup(&pdev->dev, 1);
392e5a2c9ccSUli Luckas 
393e842f1c8SRichard Purdie 	rtc = rtc_device_register(pdev->name, &pdev->dev, &sa1100_rtc_ops,
394e842f1c8SRichard Purdie 				THIS_MODULE);
395e842f1c8SRichard Purdie 
3962260a25cSAlessandro Zummo 	if (IS_ERR(rtc))
397e842f1c8SRichard Purdie 		return PTR_ERR(rtc);
398e842f1c8SRichard Purdie 
399e842f1c8SRichard Purdie 	platform_set_drvdata(pdev, rtc);
400e842f1c8SRichard Purdie 
401*7decaa55SMarcelo Roberto Jimenez 	/* Fix for a nasty initialization problem the in SA11xx RTSR register.
402*7decaa55SMarcelo Roberto Jimenez 	 * See also the comments in sa1100_rtc_interrupt().
403*7decaa55SMarcelo Roberto Jimenez 	 *
404*7decaa55SMarcelo Roberto Jimenez 	 * Sometimes bit 1 of the RTSR (RTSR_HZ) will wake up 1, which means an
405*7decaa55SMarcelo Roberto Jimenez 	 * interrupt pending, even though interrupts were never enabled.
406*7decaa55SMarcelo Roberto Jimenez 	 * In this case, this bit it must be reset before enabling
407*7decaa55SMarcelo Roberto Jimenez 	 * interruptions to avoid a nonexistent interrupt to occur.
408*7decaa55SMarcelo Roberto Jimenez 	 *
409*7decaa55SMarcelo Roberto Jimenez 	 * In principle, the same problem would apply to bit 0, although it has
410*7decaa55SMarcelo Roberto Jimenez 	 * never been observed to happen.
411*7decaa55SMarcelo Roberto Jimenez 	 *
412*7decaa55SMarcelo Roberto Jimenez 	 * This issue is addressed both here and in sa1100_rtc_interrupt().
413*7decaa55SMarcelo Roberto Jimenez 	 * If the issue is not addressed here, in the times when the processor
414*7decaa55SMarcelo Roberto Jimenez 	 * wakes up with the bit set there will be one spurious interrupt.
415*7decaa55SMarcelo Roberto Jimenez 	 *
416*7decaa55SMarcelo Roberto Jimenez 	 * The issue is also dealt with in sa1100_rtc_interrupt() to be on the
417*7decaa55SMarcelo Roberto Jimenez 	 * safe side, once the condition that lead to this strange
418*7decaa55SMarcelo Roberto Jimenez 	 * initialization is unknown and could in principle happen during
419*7decaa55SMarcelo Roberto Jimenez 	 * normal processing.
420*7decaa55SMarcelo Roberto Jimenez 	 *
421*7decaa55SMarcelo Roberto Jimenez 	 * Notice that clearing bit 1 and 0 is accomplished by writting ONES to
422*7decaa55SMarcelo Roberto Jimenez 	 * the corresponding bits in RTSR. */
423*7decaa55SMarcelo Roberto Jimenez 	RTSR = RTSR_AL | RTSR_HZ;
424*7decaa55SMarcelo Roberto Jimenez 
425e842f1c8SRichard Purdie 	return 0;
426e842f1c8SRichard Purdie }
427e842f1c8SRichard Purdie 
428e842f1c8SRichard Purdie static int sa1100_rtc_remove(struct platform_device *pdev)
429e842f1c8SRichard Purdie {
430e842f1c8SRichard Purdie 	struct rtc_device *rtc = platform_get_drvdata(pdev);
431e842f1c8SRichard Purdie 
432e842f1c8SRichard Purdie 	if (rtc)
433e842f1c8SRichard Purdie 		rtc_device_unregister(rtc);
434e842f1c8SRichard Purdie 
435e842f1c8SRichard Purdie 	return 0;
436e842f1c8SRichard Purdie }
437e842f1c8SRichard Purdie 
4386bc54e69SRussell King #ifdef CONFIG_PM
4395d027cd2SHaojian Zhuang static int sa1100_rtc_suspend(struct device *dev)
4406bc54e69SRussell King {
4415d027cd2SHaojian Zhuang 	if (device_may_wakeup(dev))
4426bc54e69SRussell King 		enable_irq_wake(IRQ_RTCAlrm);
4436bc54e69SRussell King 	return 0;
4446bc54e69SRussell King }
4456bc54e69SRussell King 
4465d027cd2SHaojian Zhuang static int sa1100_rtc_resume(struct device *dev)
4476bc54e69SRussell King {
4485d027cd2SHaojian Zhuang 	if (device_may_wakeup(dev))
4496bc54e69SRussell King 		disable_irq_wake(IRQ_RTCAlrm);
4506bc54e69SRussell King 	return 0;
4516bc54e69SRussell King }
4525d027cd2SHaojian Zhuang 
45347145210SAlexey Dobriyan static const struct dev_pm_ops sa1100_rtc_pm_ops = {
4545d027cd2SHaojian Zhuang 	.suspend	= sa1100_rtc_suspend,
4555d027cd2SHaojian Zhuang 	.resume		= sa1100_rtc_resume,
4565d027cd2SHaojian Zhuang };
4576bc54e69SRussell King #endif
4586bc54e69SRussell King 
459e842f1c8SRichard Purdie static struct platform_driver sa1100_rtc_driver = {
460e842f1c8SRichard Purdie 	.probe		= sa1100_rtc_probe,
461e842f1c8SRichard Purdie 	.remove		= sa1100_rtc_remove,
462e842f1c8SRichard Purdie 	.driver		= {
463e842f1c8SRichard Purdie 		.name	= "sa1100-rtc",
4645d027cd2SHaojian Zhuang #ifdef CONFIG_PM
4655d027cd2SHaojian Zhuang 		.pm	= &sa1100_rtc_pm_ops,
4665d027cd2SHaojian Zhuang #endif
467e842f1c8SRichard Purdie 	},
468e842f1c8SRichard Purdie };
469e842f1c8SRichard Purdie 
470e842f1c8SRichard Purdie static int __init sa1100_rtc_init(void)
471e842f1c8SRichard Purdie {
472e842f1c8SRichard Purdie 	return platform_driver_register(&sa1100_rtc_driver);
473e842f1c8SRichard Purdie }
474e842f1c8SRichard Purdie 
475e842f1c8SRichard Purdie static void __exit sa1100_rtc_exit(void)
476e842f1c8SRichard Purdie {
477e842f1c8SRichard Purdie 	platform_driver_unregister(&sa1100_rtc_driver);
478e842f1c8SRichard Purdie }
479e842f1c8SRichard Purdie 
480e842f1c8SRichard Purdie module_init(sa1100_rtc_init);
481e842f1c8SRichard Purdie module_exit(sa1100_rtc_exit);
482e842f1c8SRichard Purdie 
483e842f1c8SRichard Purdie MODULE_AUTHOR("Richard Purdie <rpurdie@rpsys.net>");
484e842f1c8SRichard Purdie MODULE_DESCRIPTION("SA11x0/PXA2xx Realtime Clock Driver (RTC)");
485e842f1c8SRichard Purdie MODULE_LICENSE("GPL");
486ad28a07bSKay Sievers MODULE_ALIAS("platform:sa1100-rtc");
487