xref: /openbmc/linux/drivers/rtc/rtc-ds1305.c (revision 16380c153a69c3784d2afaddfe0a22f353046cf6)
153e84b67SDavid Brownell /*
253e84b67SDavid Brownell  * rtc-ds1305.c -- driver for DS1305 and DS1306 SPI RTC chips
353e84b67SDavid Brownell  *
453e84b67SDavid Brownell  * Copyright (C) 2008 David Brownell
553e84b67SDavid Brownell  *
653e84b67SDavid Brownell  * This program is free software; you can redistribute it and/or modify
753e84b67SDavid Brownell  * it under the terms of the GNU General Public License version 2 as
853e84b67SDavid Brownell  * published by the Free Software Foundation.
953e84b67SDavid Brownell  *
1053e84b67SDavid Brownell  */
1153e84b67SDavid Brownell #include <linux/kernel.h>
1253e84b67SDavid Brownell #include <linux/init.h>
1353e84b67SDavid Brownell #include <linux/bcd.h>
145a0e3ad6STejun Heo #include <linux/slab.h>
1553e84b67SDavid Brownell #include <linux/rtc.h>
1653e84b67SDavid Brownell #include <linux/workqueue.h>
1753e84b67SDavid Brownell 
1853e84b67SDavid Brownell #include <linux/spi/spi.h>
1953e84b67SDavid Brownell #include <linux/spi/ds1305.h>
2053e84b67SDavid Brownell 
2153e84b67SDavid Brownell 
2253e84b67SDavid Brownell /*
2353e84b67SDavid Brownell  * Registers ... mask DS1305_WRITE into register address to write,
2453e84b67SDavid Brownell  * otherwise you're reading it.  All non-bitmask values are BCD.
2553e84b67SDavid Brownell  */
2653e84b67SDavid Brownell #define DS1305_WRITE		0x80
2753e84b67SDavid Brownell 
2853e84b67SDavid Brownell 
2953e84b67SDavid Brownell /* RTC date/time ... the main special cases are that we:
3053e84b67SDavid Brownell  *  - Need fancy "hours" encoding in 12hour mode
3153e84b67SDavid Brownell  *  - Don't rely on the "day-of-week" field (or tm_wday)
3253e84b67SDavid Brownell  *  - Are a 21st-century clock (2000 <= year < 2100)
3353e84b67SDavid Brownell  */
3453e84b67SDavid Brownell #define DS1305_RTC_LEN		7		/* bytes for RTC regs */
3553e84b67SDavid Brownell 
3653e84b67SDavid Brownell #define DS1305_SEC		0x00		/* register addresses */
3753e84b67SDavid Brownell #define DS1305_MIN		0x01
3853e84b67SDavid Brownell #define DS1305_HOUR		0x02
3953e84b67SDavid Brownell #	define DS1305_HR_12		0x40	/* set == 12 hr mode */
4053e84b67SDavid Brownell #	define DS1305_HR_PM		0x20	/* set == PM (12hr mode) */
4153e84b67SDavid Brownell #define DS1305_WDAY		0x03
4253e84b67SDavid Brownell #define DS1305_MDAY		0x04
4353e84b67SDavid Brownell #define DS1305_MON		0x05
4453e84b67SDavid Brownell #define DS1305_YEAR		0x06
4553e84b67SDavid Brownell 
4653e84b67SDavid Brownell 
4753e84b67SDavid Brownell /* The two alarms have only sec/min/hour/wday fields (ALM_LEN).
4853e84b67SDavid Brownell  * DS1305_ALM_DISABLE disables a match field (some combos are bad).
4953e84b67SDavid Brownell  *
5053e84b67SDavid Brownell  * NOTE that since we don't use WDAY, we limit ourselves to alarms
5153e84b67SDavid Brownell  * only one day into the future (vs potentially up to a week).
5253e84b67SDavid Brownell  *
5353e84b67SDavid Brownell  * NOTE ALSO that while we could generate once-a-second IRQs (UIE), we
5453e84b67SDavid Brownell  * don't currently support them.  We'd either need to do it only when
5553e84b67SDavid Brownell  * no alarm is pending (not the standard model), or to use the second
5653e84b67SDavid Brownell  * alarm (implying that this is a DS1305 not DS1306, *and* that either
5753e84b67SDavid Brownell  * it's wired up a second IRQ we know, or that INTCN is set)
5853e84b67SDavid Brownell  */
5953e84b67SDavid Brownell #define DS1305_ALM_LEN		4		/* bytes for ALM regs */
6053e84b67SDavid Brownell #define DS1305_ALM_DISABLE	0x80
6153e84b67SDavid Brownell 
6253e84b67SDavid Brownell #define DS1305_ALM0(r)		(0x07 + (r))	/* register addresses */
6353e84b67SDavid Brownell #define DS1305_ALM1(r)		(0x0b + (r))
6453e84b67SDavid Brownell 
6553e84b67SDavid Brownell 
6653e84b67SDavid Brownell /* three control registers */
6753e84b67SDavid Brownell #define DS1305_CONTROL_LEN	3		/* bytes of control regs */
6853e84b67SDavid Brownell 
6953e84b67SDavid Brownell #define DS1305_CONTROL		0x0f		/* register addresses */
7053e84b67SDavid Brownell #	define DS1305_nEOSC		0x80	/* low enables oscillator */
7153e84b67SDavid Brownell #	define DS1305_WP		0x40	/* write protect */
7253e84b67SDavid Brownell #	define DS1305_INTCN		0x04	/* clear == only int0 used */
7353e84b67SDavid Brownell #	define DS1306_1HZ		0x04	/* enable 1Hz output */
7453e84b67SDavid Brownell #	define DS1305_AEI1		0x02	/* enable ALM1 IRQ */
7553e84b67SDavid Brownell #	define DS1305_AEI0		0x01	/* enable ALM0 IRQ */
7653e84b67SDavid Brownell #define DS1305_STATUS		0x10
7753e84b67SDavid Brownell /* status has just AEIx bits, mirrored as IRQFx */
7853e84b67SDavid Brownell #define DS1305_TRICKLE		0x11
7953e84b67SDavid Brownell /* trickle bits are defined in <linux/spi/ds1305.h> */
8053e84b67SDavid Brownell 
8153e84b67SDavid Brownell /* a bunch of NVRAM */
8253e84b67SDavid Brownell #define DS1305_NVRAM_LEN	96		/* bytes of NVRAM */
8353e84b67SDavid Brownell 
8453e84b67SDavid Brownell #define DS1305_NVRAM		0x20		/* register addresses */
8553e84b67SDavid Brownell 
8653e84b67SDavid Brownell 
8753e84b67SDavid Brownell struct ds1305 {
8853e84b67SDavid Brownell 	struct spi_device	*spi;
8953e84b67SDavid Brownell 	struct rtc_device	*rtc;
9053e84b67SDavid Brownell 
9153e84b67SDavid Brownell 	struct work_struct	work;
9253e84b67SDavid Brownell 
9353e84b67SDavid Brownell 	unsigned long		flags;
9453e84b67SDavid Brownell #define FLAG_EXITING	0
9553e84b67SDavid Brownell 
9653e84b67SDavid Brownell 	bool			hr12;
9753e84b67SDavid Brownell 	u8			ctrl[DS1305_CONTROL_LEN];
9853e84b67SDavid Brownell };
9953e84b67SDavid Brownell 
10053e84b67SDavid Brownell 
10153e84b67SDavid Brownell /*----------------------------------------------------------------------*/
10253e84b67SDavid Brownell 
10353e84b67SDavid Brownell /*
10453e84b67SDavid Brownell  * Utilities ...  tolerate 12-hour AM/PM notation in case of non-Linux
10553e84b67SDavid Brownell  * software (like a bootloader) which may require it.
10653e84b67SDavid Brownell  */
10753e84b67SDavid Brownell 
10853e84b67SDavid Brownell static unsigned bcd2hour(u8 bcd)
10953e84b67SDavid Brownell {
11053e84b67SDavid Brownell 	if (bcd & DS1305_HR_12) {
11153e84b67SDavid Brownell 		unsigned	hour = 0;
11253e84b67SDavid Brownell 
11353e84b67SDavid Brownell 		bcd &= ~DS1305_HR_12;
11453e84b67SDavid Brownell 		if (bcd & DS1305_HR_PM) {
11553e84b67SDavid Brownell 			hour = 12;
11653e84b67SDavid Brownell 			bcd &= ~DS1305_HR_PM;
11753e84b67SDavid Brownell 		}
118fe20ba70SAdrian Bunk 		hour += bcd2bin(bcd);
11953e84b67SDavid Brownell 		return hour - 1;
12053e84b67SDavid Brownell 	}
121fe20ba70SAdrian Bunk 	return bcd2bin(bcd);
12253e84b67SDavid Brownell }
12353e84b67SDavid Brownell 
12453e84b67SDavid Brownell static u8 hour2bcd(bool hr12, int hour)
12553e84b67SDavid Brownell {
12653e84b67SDavid Brownell 	if (hr12) {
12753e84b67SDavid Brownell 		hour++;
12853e84b67SDavid Brownell 		if (hour <= 12)
129fe20ba70SAdrian Bunk 			return DS1305_HR_12 | bin2bcd(hour);
13053e84b67SDavid Brownell 		hour -= 12;
131fe20ba70SAdrian Bunk 		return DS1305_HR_12 | DS1305_HR_PM | bin2bcd(hour);
13253e84b67SDavid Brownell 	}
133fe20ba70SAdrian Bunk 	return bin2bcd(hour);
13453e84b67SDavid Brownell }
13553e84b67SDavid Brownell 
13653e84b67SDavid Brownell /*----------------------------------------------------------------------*/
13753e84b67SDavid Brownell 
13853e84b67SDavid Brownell /*
13953e84b67SDavid Brownell  * Interface to RTC framework
14053e84b67SDavid Brownell  */
14153e84b67SDavid Brownell 
142*16380c15SJohn Stultz static int ds1305_alarm_irq_enable(struct device *dev, unsigned int enabled)
14353e84b67SDavid Brownell {
14453e84b67SDavid Brownell 	struct ds1305	*ds1305 = dev_get_drvdata(dev);
14553e84b67SDavid Brownell 	u8		buf[2];
146*16380c15SJohn Stultz 	long		err = -EINVAL;
14753e84b67SDavid Brownell 
14853e84b67SDavid Brownell 	buf[0] = DS1305_WRITE | DS1305_CONTROL;
14953e84b67SDavid Brownell 	buf[1] = ds1305->ctrl[0];
15053e84b67SDavid Brownell 
151*16380c15SJohn Stultz 	if (enabled) {
15253e84b67SDavid Brownell 		if (ds1305->ctrl[0] & DS1305_AEI0)
15353e84b67SDavid Brownell 			goto done;
15453e84b67SDavid Brownell 		buf[1] |= DS1305_AEI0;
155*16380c15SJohn Stultz 	} else {
156*16380c15SJohn Stultz 		if (!(buf[1] & DS1305_AEI0))
157*16380c15SJohn Stultz 			goto done;
158*16380c15SJohn Stultz 		buf[1] &= ~DS1305_AEI0;
15953e84b67SDavid Brownell 	}
160*16380c15SJohn Stultz 	err = spi_write_then_read(ds1305->spi, buf, sizeof buf, NULL, 0);
161*16380c15SJohn Stultz 	if (err >= 0)
16253e84b67SDavid Brownell 		ds1305->ctrl[0] = buf[1];
16353e84b67SDavid Brownell done:
164*16380c15SJohn Stultz 	return err;
165*16380c15SJohn Stultz 
16653e84b67SDavid Brownell }
16753e84b67SDavid Brownell 
16853e84b67SDavid Brownell 
16953e84b67SDavid Brownell /*
17053e84b67SDavid Brownell  * Get/set of date and time is pretty normal.
17153e84b67SDavid Brownell  */
17253e84b67SDavid Brownell 
17353e84b67SDavid Brownell static int ds1305_get_time(struct device *dev, struct rtc_time *time)
17453e84b67SDavid Brownell {
17553e84b67SDavid Brownell 	struct ds1305	*ds1305 = dev_get_drvdata(dev);
17653e84b67SDavid Brownell 	u8		addr = DS1305_SEC;
17753e84b67SDavid Brownell 	u8		buf[DS1305_RTC_LEN];
17853e84b67SDavid Brownell 	int		status;
17953e84b67SDavid Brownell 
18053e84b67SDavid Brownell 	/* Use write-then-read to get all the date/time registers
18153e84b67SDavid Brownell 	 * since dma from stack is nonportable
18253e84b67SDavid Brownell 	 */
18353e84b67SDavid Brownell 	status = spi_write_then_read(ds1305->spi, &addr, sizeof addr,
18453e84b67SDavid Brownell 			buf, sizeof buf);
18553e84b67SDavid Brownell 	if (status < 0)
18653e84b67SDavid Brownell 		return status;
18753e84b67SDavid Brownell 
18853e84b67SDavid Brownell 	dev_vdbg(dev, "%s: %02x %02x %02x, %02x %02x %02x %02x\n",
18953e84b67SDavid Brownell 		"read", buf[0], buf[1], buf[2], buf[3],
19053e84b67SDavid Brownell 		buf[4], buf[5], buf[6]);
19153e84b67SDavid Brownell 
19253e84b67SDavid Brownell 	/* Decode the registers */
193fe20ba70SAdrian Bunk 	time->tm_sec = bcd2bin(buf[DS1305_SEC]);
194fe20ba70SAdrian Bunk 	time->tm_min = bcd2bin(buf[DS1305_MIN]);
19553e84b67SDavid Brownell 	time->tm_hour = bcd2hour(buf[DS1305_HOUR]);
19653e84b67SDavid Brownell 	time->tm_wday = buf[DS1305_WDAY] - 1;
197fe20ba70SAdrian Bunk 	time->tm_mday = bcd2bin(buf[DS1305_MDAY]);
198fe20ba70SAdrian Bunk 	time->tm_mon = bcd2bin(buf[DS1305_MON]) - 1;
199fe20ba70SAdrian Bunk 	time->tm_year = bcd2bin(buf[DS1305_YEAR]) + 100;
20053e84b67SDavid Brownell 
20153e84b67SDavid Brownell 	dev_vdbg(dev, "%s secs=%d, mins=%d, "
20253e84b67SDavid Brownell 		"hours=%d, mday=%d, mon=%d, year=%d, wday=%d\n",
20353e84b67SDavid Brownell 		"read", time->tm_sec, time->tm_min,
20453e84b67SDavid Brownell 		time->tm_hour, time->tm_mday,
20553e84b67SDavid Brownell 		time->tm_mon, time->tm_year, time->tm_wday);
20653e84b67SDavid Brownell 
20753e84b67SDavid Brownell 	/* Time may not be set */
20853e84b67SDavid Brownell 	return rtc_valid_tm(time);
20953e84b67SDavid Brownell }
21053e84b67SDavid Brownell 
21153e84b67SDavid Brownell static int ds1305_set_time(struct device *dev, struct rtc_time *time)
21253e84b67SDavid Brownell {
21353e84b67SDavid Brownell 	struct ds1305	*ds1305 = dev_get_drvdata(dev);
21453e84b67SDavid Brownell 	u8		buf[1 + DS1305_RTC_LEN];
21553e84b67SDavid Brownell 	u8		*bp = buf;
21653e84b67SDavid Brownell 
21753e84b67SDavid Brownell 	dev_vdbg(dev, "%s secs=%d, mins=%d, "
21853e84b67SDavid Brownell 		"hours=%d, mday=%d, mon=%d, year=%d, wday=%d\n",
21953e84b67SDavid Brownell 		"write", time->tm_sec, time->tm_min,
22053e84b67SDavid Brownell 		time->tm_hour, time->tm_mday,
22153e84b67SDavid Brownell 		time->tm_mon, time->tm_year, time->tm_wday);
22253e84b67SDavid Brownell 
22353e84b67SDavid Brownell 	/* Write registers starting at the first time/date address. */
22453e84b67SDavid Brownell 	*bp++ = DS1305_WRITE | DS1305_SEC;
22553e84b67SDavid Brownell 
226fe20ba70SAdrian Bunk 	*bp++ = bin2bcd(time->tm_sec);
227fe20ba70SAdrian Bunk 	*bp++ = bin2bcd(time->tm_min);
22853e84b67SDavid Brownell 	*bp++ = hour2bcd(ds1305->hr12, time->tm_hour);
22953e84b67SDavid Brownell 	*bp++ = (time->tm_wday < 7) ? (time->tm_wday + 1) : 1;
230fe20ba70SAdrian Bunk 	*bp++ = bin2bcd(time->tm_mday);
231fe20ba70SAdrian Bunk 	*bp++ = bin2bcd(time->tm_mon + 1);
232fe20ba70SAdrian Bunk 	*bp++ = bin2bcd(time->tm_year - 100);
23353e84b67SDavid Brownell 
23453e84b67SDavid Brownell 	dev_dbg(dev, "%s: %02x %02x %02x, %02x %02x %02x %02x\n",
23553e84b67SDavid Brownell 		"write", buf[1], buf[2], buf[3],
23653e84b67SDavid Brownell 		buf[4], buf[5], buf[6], buf[7]);
23753e84b67SDavid Brownell 
23853e84b67SDavid Brownell 	/* use write-then-read since dma from stack is nonportable */
23953e84b67SDavid Brownell 	return spi_write_then_read(ds1305->spi, buf, sizeof buf,
24053e84b67SDavid Brownell 			NULL, 0);
24153e84b67SDavid Brownell }
24253e84b67SDavid Brownell 
24353e84b67SDavid Brownell /*
24453e84b67SDavid Brownell  * Get/set of alarm is a bit funky:
24553e84b67SDavid Brownell  *
24653e84b67SDavid Brownell  * - First there's the inherent raciness of getting the (partitioned)
24753e84b67SDavid Brownell  *   status of an alarm that could trigger while we're reading parts
24853e84b67SDavid Brownell  *   of that status.
24953e84b67SDavid Brownell  *
25053e84b67SDavid Brownell  * - Second there's its limited range (we could increase it a bit by
25153e84b67SDavid Brownell  *   relying on WDAY), which means it will easily roll over.
25253e84b67SDavid Brownell  *
25353e84b67SDavid Brownell  * - Third there's the choice of two alarms and alarm signals.
25453e84b67SDavid Brownell  *   Here we use ALM0 and expect that nINT0 (open drain) is used;
25553e84b67SDavid Brownell  *   that's the only real option for DS1306 runtime alarms, and is
25653e84b67SDavid Brownell  *   natural on DS1305.
25753e84b67SDavid Brownell  *
25853e84b67SDavid Brownell  * - Fourth, there's also ALM1, and a second interrupt signal:
25953e84b67SDavid Brownell  *     + On DS1305 ALM1 uses nINT1 (when INTCN=1) else nINT0;
26053e84b67SDavid Brownell  *     + On DS1306 ALM1 only uses INT1 (an active high pulse)
26153e84b67SDavid Brownell  *       and it won't work when VCC1 is active.
26253e84b67SDavid Brownell  *
26353e84b67SDavid Brownell  *   So to be most general, we should probably set both alarms to the
26453e84b67SDavid Brownell  *   same value, letting ALM1 be the wakeup event source on DS1306
26553e84b67SDavid Brownell  *   and handling several wiring options on DS1305.
26653e84b67SDavid Brownell  *
26753e84b67SDavid Brownell  * - Fifth, we support the polled mode (as well as possible; why not?)
26853e84b67SDavid Brownell  *   even when no interrupt line is wired to an IRQ.
26953e84b67SDavid Brownell  */
27053e84b67SDavid Brownell 
27153e84b67SDavid Brownell /*
27253e84b67SDavid Brownell  * Context: caller holds rtc->ops_lock (to protect ds1305->ctrl)
27353e84b67SDavid Brownell  */
27453e84b67SDavid Brownell static int ds1305_get_alarm(struct device *dev, struct rtc_wkalrm *alm)
27553e84b67SDavid Brownell {
27653e84b67SDavid Brownell 	struct ds1305	*ds1305 = dev_get_drvdata(dev);
27753e84b67SDavid Brownell 	struct spi_device *spi = ds1305->spi;
27853e84b67SDavid Brownell 	u8		addr;
27953e84b67SDavid Brownell 	int		status;
28053e84b67SDavid Brownell 	u8		buf[DS1305_ALM_LEN];
28153e84b67SDavid Brownell 
28253e84b67SDavid Brownell 	/* Refresh control register cache BEFORE reading ALM0 registers,
28353e84b67SDavid Brownell 	 * since reading alarm registers acks any pending IRQ.  That
28453e84b67SDavid Brownell 	 * makes returning "pending" status a bit of a lie, but that bit
28553e84b67SDavid Brownell 	 * of EFI status is at best fragile anyway (given IRQ handlers).
28653e84b67SDavid Brownell 	 */
28753e84b67SDavid Brownell 	addr = DS1305_CONTROL;
28853e84b67SDavid Brownell 	status = spi_write_then_read(spi, &addr, sizeof addr,
28953e84b67SDavid Brownell 			ds1305->ctrl, sizeof ds1305->ctrl);
29053e84b67SDavid Brownell 	if (status < 0)
29153e84b67SDavid Brownell 		return status;
29253e84b67SDavid Brownell 
29353e84b67SDavid Brownell 	alm->enabled = !!(ds1305->ctrl[0] & DS1305_AEI0);
29453e84b67SDavid Brownell 	alm->pending = !!(ds1305->ctrl[1] & DS1305_AEI0);
29553e84b67SDavid Brownell 
29653e84b67SDavid Brownell 	/* get and check ALM0 registers */
29753e84b67SDavid Brownell 	addr = DS1305_ALM0(DS1305_SEC);
29853e84b67SDavid Brownell 	status = spi_write_then_read(spi, &addr, sizeof addr,
29953e84b67SDavid Brownell 			buf, sizeof buf);
30053e84b67SDavid Brownell 	if (status < 0)
30153e84b67SDavid Brownell 		return status;
30253e84b67SDavid Brownell 
30353e84b67SDavid Brownell 	dev_vdbg(dev, "%s: %02x %02x %02x %02x\n",
30453e84b67SDavid Brownell 		"alm0 read", buf[DS1305_SEC], buf[DS1305_MIN],
30553e84b67SDavid Brownell 		buf[DS1305_HOUR], buf[DS1305_WDAY]);
30653e84b67SDavid Brownell 
30753e84b67SDavid Brownell 	if ((DS1305_ALM_DISABLE & buf[DS1305_SEC])
30853e84b67SDavid Brownell 			|| (DS1305_ALM_DISABLE & buf[DS1305_MIN])
30953e84b67SDavid Brownell 			|| (DS1305_ALM_DISABLE & buf[DS1305_HOUR]))
31053e84b67SDavid Brownell 		return -EIO;
31153e84b67SDavid Brownell 
31253e84b67SDavid Brownell 	/* Stuff these values into alm->time and let RTC framework code
31353e84b67SDavid Brownell 	 * fill in the rest ... and also handle rollover to tomorrow when
31453e84b67SDavid Brownell 	 * that's needed.
31553e84b67SDavid Brownell 	 */
316fe20ba70SAdrian Bunk 	alm->time.tm_sec = bcd2bin(buf[DS1305_SEC]);
317fe20ba70SAdrian Bunk 	alm->time.tm_min = bcd2bin(buf[DS1305_MIN]);
31853e84b67SDavid Brownell 	alm->time.tm_hour = bcd2hour(buf[DS1305_HOUR]);
31953e84b67SDavid Brownell 	alm->time.tm_mday = -1;
32053e84b67SDavid Brownell 	alm->time.tm_mon = -1;
32153e84b67SDavid Brownell 	alm->time.tm_year = -1;
32253e84b67SDavid Brownell 	/* next three fields are unused by Linux */
32353e84b67SDavid Brownell 	alm->time.tm_wday = -1;
32453e84b67SDavid Brownell 	alm->time.tm_mday = -1;
32553e84b67SDavid Brownell 	alm->time.tm_isdst = -1;
32653e84b67SDavid Brownell 
32753e84b67SDavid Brownell 	return 0;
32853e84b67SDavid Brownell }
32953e84b67SDavid Brownell 
33053e84b67SDavid Brownell /*
33153e84b67SDavid Brownell  * Context: caller holds rtc->ops_lock (to protect ds1305->ctrl)
33253e84b67SDavid Brownell  */
33353e84b67SDavid Brownell static int ds1305_set_alarm(struct device *dev, struct rtc_wkalrm *alm)
33453e84b67SDavid Brownell {
33553e84b67SDavid Brownell 	struct ds1305	*ds1305 = dev_get_drvdata(dev);
33653e84b67SDavid Brownell 	struct spi_device *spi = ds1305->spi;
33753e84b67SDavid Brownell 	unsigned long	now, later;
33853e84b67SDavid Brownell 	struct rtc_time	tm;
33953e84b67SDavid Brownell 	int		status;
34053e84b67SDavid Brownell 	u8		buf[1 + DS1305_ALM_LEN];
34153e84b67SDavid Brownell 
34253e84b67SDavid Brownell 	/* convert desired alarm to time_t */
34353e84b67SDavid Brownell 	status = rtc_tm_to_time(&alm->time, &later);
34453e84b67SDavid Brownell 	if (status < 0)
34553e84b67SDavid Brownell 		return status;
34653e84b67SDavid Brownell 
34753e84b67SDavid Brownell 	/* Read current time as time_t */
34853e84b67SDavid Brownell 	status = ds1305_get_time(dev, &tm);
34953e84b67SDavid Brownell 	if (status < 0)
35053e84b67SDavid Brownell 		return status;
35153e84b67SDavid Brownell 	status = rtc_tm_to_time(&tm, &now);
35253e84b67SDavid Brownell 	if (status < 0)
35353e84b67SDavid Brownell 		return status;
35453e84b67SDavid Brownell 
35553e84b67SDavid Brownell 	/* make sure alarm fires within the next 24 hours */
35653e84b67SDavid Brownell 	if (later <= now)
35753e84b67SDavid Brownell 		return -EINVAL;
35853e84b67SDavid Brownell 	if ((later - now) > 24 * 60 * 60)
35953e84b67SDavid Brownell 		return -EDOM;
36053e84b67SDavid Brownell 
36153e84b67SDavid Brownell 	/* disable alarm if needed */
36253e84b67SDavid Brownell 	if (ds1305->ctrl[0] & DS1305_AEI0) {
36353e84b67SDavid Brownell 		ds1305->ctrl[0] &= ~DS1305_AEI0;
36453e84b67SDavid Brownell 
36553e84b67SDavid Brownell 		buf[0] = DS1305_WRITE | DS1305_CONTROL;
36653e84b67SDavid Brownell 		buf[1] = ds1305->ctrl[0];
36753e84b67SDavid Brownell 		status = spi_write_then_read(ds1305->spi, buf, 2, NULL, 0);
36853e84b67SDavid Brownell 		if (status < 0)
36953e84b67SDavid Brownell 			return status;
37053e84b67SDavid Brownell 	}
37153e84b67SDavid Brownell 
37253e84b67SDavid Brownell 	/* write alarm */
37353e84b67SDavid Brownell 	buf[0] = DS1305_WRITE | DS1305_ALM0(DS1305_SEC);
374fe20ba70SAdrian Bunk 	buf[1 + DS1305_SEC] = bin2bcd(alm->time.tm_sec);
375fe20ba70SAdrian Bunk 	buf[1 + DS1305_MIN] = bin2bcd(alm->time.tm_min);
37653e84b67SDavid Brownell 	buf[1 + DS1305_HOUR] = hour2bcd(ds1305->hr12, alm->time.tm_hour);
37753e84b67SDavid Brownell 	buf[1 + DS1305_WDAY] = DS1305_ALM_DISABLE;
37853e84b67SDavid Brownell 
37953e84b67SDavid Brownell 	dev_dbg(dev, "%s: %02x %02x %02x %02x\n",
38053e84b67SDavid Brownell 		"alm0 write", buf[1 + DS1305_SEC], buf[1 + DS1305_MIN],
38153e84b67SDavid Brownell 		buf[1 + DS1305_HOUR], buf[1 + DS1305_WDAY]);
38253e84b67SDavid Brownell 
38353e84b67SDavid Brownell 	status = spi_write_then_read(spi, buf, sizeof buf, NULL, 0);
38453e84b67SDavid Brownell 	if (status < 0)
38553e84b67SDavid Brownell 		return status;
38653e84b67SDavid Brownell 
38753e84b67SDavid Brownell 	/* enable alarm if requested */
38853e84b67SDavid Brownell 	if (alm->enabled) {
38953e84b67SDavid Brownell 		ds1305->ctrl[0] |= DS1305_AEI0;
39053e84b67SDavid Brownell 
39153e84b67SDavid Brownell 		buf[0] = DS1305_WRITE | DS1305_CONTROL;
39253e84b67SDavid Brownell 		buf[1] = ds1305->ctrl[0];
39353e84b67SDavid Brownell 		status = spi_write_then_read(ds1305->spi, buf, 2, NULL, 0);
39453e84b67SDavid Brownell 	}
39553e84b67SDavid Brownell 
39653e84b67SDavid Brownell 	return status;
39753e84b67SDavid Brownell }
39853e84b67SDavid Brownell 
39953e84b67SDavid Brownell #ifdef CONFIG_PROC_FS
40053e84b67SDavid Brownell 
40153e84b67SDavid Brownell static int ds1305_proc(struct device *dev, struct seq_file *seq)
40253e84b67SDavid Brownell {
40353e84b67SDavid Brownell 	struct ds1305	*ds1305 = dev_get_drvdata(dev);
40453e84b67SDavid Brownell 	char		*diodes = "no";
40553e84b67SDavid Brownell 	char		*resistors = "";
40653e84b67SDavid Brownell 
40753e84b67SDavid Brownell 	/* ctrl[2] is treated as read-only; no locking needed */
40853e84b67SDavid Brownell 	if ((ds1305->ctrl[2] & 0xf0) == DS1305_TRICKLE_MAGIC) {
40953e84b67SDavid Brownell 		switch (ds1305->ctrl[2] & 0x0c) {
41053e84b67SDavid Brownell 		case DS1305_TRICKLE_DS2:
41153e84b67SDavid Brownell 			diodes = "2 diodes, ";
41253e84b67SDavid Brownell 			break;
41353e84b67SDavid Brownell 		case DS1305_TRICKLE_DS1:
41453e84b67SDavid Brownell 			diodes = "1 diode, ";
41553e84b67SDavid Brownell 			break;
41653e84b67SDavid Brownell 		default:
41753e84b67SDavid Brownell 			goto done;
41853e84b67SDavid Brownell 		}
41953e84b67SDavid Brownell 		switch (ds1305->ctrl[2] & 0x03) {
42053e84b67SDavid Brownell 		case DS1305_TRICKLE_2K:
42153e84b67SDavid Brownell 			resistors = "2k Ohm";
42253e84b67SDavid Brownell 			break;
42353e84b67SDavid Brownell 		case DS1305_TRICKLE_4K:
42453e84b67SDavid Brownell 			resistors = "4k Ohm";
42553e84b67SDavid Brownell 			break;
42653e84b67SDavid Brownell 		case DS1305_TRICKLE_8K:
42753e84b67SDavid Brownell 			resistors = "8k Ohm";
42853e84b67SDavid Brownell 			break;
42953e84b67SDavid Brownell 		default:
43053e84b67SDavid Brownell 			diodes = "no";
43153e84b67SDavid Brownell 			break;
43253e84b67SDavid Brownell 		}
43353e84b67SDavid Brownell 	}
43453e84b67SDavid Brownell 
43553e84b67SDavid Brownell done:
43653e84b67SDavid Brownell 	return seq_printf(seq,
43753e84b67SDavid Brownell 			"trickle_charge\t: %s%s\n",
43853e84b67SDavid Brownell 			diodes, resistors);
43953e84b67SDavid Brownell }
44053e84b67SDavid Brownell 
44153e84b67SDavid Brownell #else
44253e84b67SDavid Brownell #define ds1305_proc	NULL
44353e84b67SDavid Brownell #endif
44453e84b67SDavid Brownell 
44553e84b67SDavid Brownell static const struct rtc_class_ops ds1305_ops = {
44653e84b67SDavid Brownell 	.read_time	= ds1305_get_time,
44753e84b67SDavid Brownell 	.set_time	= ds1305_set_time,
44853e84b67SDavid Brownell 	.read_alarm	= ds1305_get_alarm,
44953e84b67SDavid Brownell 	.set_alarm	= ds1305_set_alarm,
45053e84b67SDavid Brownell 	.proc		= ds1305_proc,
451*16380c15SJohn Stultz 	.alarm_irq_enable = ds1305_alarm_irq_enable,
45253e84b67SDavid Brownell };
45353e84b67SDavid Brownell 
45453e84b67SDavid Brownell static void ds1305_work(struct work_struct *work)
45553e84b67SDavid Brownell {
45653e84b67SDavid Brownell 	struct ds1305	*ds1305 = container_of(work, struct ds1305, work);
45753e84b67SDavid Brownell 	struct mutex	*lock = &ds1305->rtc->ops_lock;
45853e84b67SDavid Brownell 	struct spi_device *spi = ds1305->spi;
45953e84b67SDavid Brownell 	u8		buf[3];
46053e84b67SDavid Brownell 	int		status;
46153e84b67SDavid Brownell 
46253e84b67SDavid Brownell 	/* lock to protect ds1305->ctrl */
46353e84b67SDavid Brownell 	mutex_lock(lock);
46453e84b67SDavid Brownell 
46553e84b67SDavid Brownell 	/* Disable the IRQ, and clear its status ... for now, we "know"
46653e84b67SDavid Brownell 	 * that if more than one alarm is active, they're in sync.
46753e84b67SDavid Brownell 	 * Note that reading ALM data registers also clears IRQ status.
46853e84b67SDavid Brownell 	 */
46953e84b67SDavid Brownell 	ds1305->ctrl[0] &= ~(DS1305_AEI1 | DS1305_AEI0);
47053e84b67SDavid Brownell 	ds1305->ctrl[1] = 0;
47153e84b67SDavid Brownell 
47253e84b67SDavid Brownell 	buf[0] = DS1305_WRITE | DS1305_CONTROL;
47353e84b67SDavid Brownell 	buf[1] = ds1305->ctrl[0];
47453e84b67SDavid Brownell 	buf[2] = 0;
47553e84b67SDavid Brownell 
47653e84b67SDavid Brownell 	status = spi_write_then_read(spi, buf, sizeof buf,
47753e84b67SDavid Brownell 			NULL, 0);
47853e84b67SDavid Brownell 	if (status < 0)
47953e84b67SDavid Brownell 		dev_dbg(&spi->dev, "clear irq --> %d\n", status);
48053e84b67SDavid Brownell 
48153e84b67SDavid Brownell 	mutex_unlock(lock);
48253e84b67SDavid Brownell 
48353e84b67SDavid Brownell 	if (!test_bit(FLAG_EXITING, &ds1305->flags))
48453e84b67SDavid Brownell 		enable_irq(spi->irq);
48553e84b67SDavid Brownell 
48653e84b67SDavid Brownell 	rtc_update_irq(ds1305->rtc, 1, RTC_AF | RTC_IRQF);
48753e84b67SDavid Brownell }
48853e84b67SDavid Brownell 
48953e84b67SDavid Brownell /*
49053e84b67SDavid Brownell  * This "real" IRQ handler hands off to a workqueue mostly to allow
49153e84b67SDavid Brownell  * mutex locking for ds1305->ctrl ... unlike I2C, we could issue async
49253e84b67SDavid Brownell  * I/O requests in IRQ context (to clear the IRQ status).
49353e84b67SDavid Brownell  */
49453e84b67SDavid Brownell static irqreturn_t ds1305_irq(int irq, void *p)
49553e84b67SDavid Brownell {
49653e84b67SDavid Brownell 	struct ds1305		*ds1305 = p;
49753e84b67SDavid Brownell 
49853e84b67SDavid Brownell 	disable_irq(irq);
49953e84b67SDavid Brownell 	schedule_work(&ds1305->work);
50053e84b67SDavid Brownell 	return IRQ_HANDLED;
50153e84b67SDavid Brownell }
50253e84b67SDavid Brownell 
50353e84b67SDavid Brownell /*----------------------------------------------------------------------*/
50453e84b67SDavid Brownell 
50553e84b67SDavid Brownell /*
50653e84b67SDavid Brownell  * Interface for NVRAM
50753e84b67SDavid Brownell  */
50853e84b67SDavid Brownell 
50953e84b67SDavid Brownell static void msg_init(struct spi_message *m, struct spi_transfer *x,
51053e84b67SDavid Brownell 		u8 *addr, size_t count, char *tx, char *rx)
51153e84b67SDavid Brownell {
51253e84b67SDavid Brownell 	spi_message_init(m);
51353e84b67SDavid Brownell 	memset(x, 0, 2 * sizeof(*x));
51453e84b67SDavid Brownell 
51553e84b67SDavid Brownell 	x->tx_buf = addr;
51653e84b67SDavid Brownell 	x->len = 1;
51753e84b67SDavid Brownell 	spi_message_add_tail(x, m);
51853e84b67SDavid Brownell 
51953e84b67SDavid Brownell 	x++;
52053e84b67SDavid Brownell 
52153e84b67SDavid Brownell 	x->tx_buf = tx;
52253e84b67SDavid Brownell 	x->rx_buf = rx;
52353e84b67SDavid Brownell 	x->len = count;
52453e84b67SDavid Brownell 	spi_message_add_tail(x, m);
52553e84b67SDavid Brownell }
52653e84b67SDavid Brownell 
52753e84b67SDavid Brownell static ssize_t
5282c3c8beaSChris Wright ds1305_nvram_read(struct file *filp, struct kobject *kobj,
5292c3c8beaSChris Wright 		struct bin_attribute *attr,
53053e84b67SDavid Brownell 		char *buf, loff_t off, size_t count)
53153e84b67SDavid Brownell {
53253e84b67SDavid Brownell 	struct spi_device	*spi;
53353e84b67SDavid Brownell 	u8			addr;
53453e84b67SDavid Brownell 	struct spi_message	m;
53553e84b67SDavid Brownell 	struct spi_transfer	x[2];
53653e84b67SDavid Brownell 	int			status;
53753e84b67SDavid Brownell 
53853e84b67SDavid Brownell 	spi = container_of(kobj, struct spi_device, dev.kobj);
53953e84b67SDavid Brownell 
54053e84b67SDavid Brownell 	if (unlikely(off >= DS1305_NVRAM_LEN))
54153e84b67SDavid Brownell 		return 0;
54253e84b67SDavid Brownell 	if (count >= DS1305_NVRAM_LEN)
54353e84b67SDavid Brownell 		count = DS1305_NVRAM_LEN;
54453e84b67SDavid Brownell 	if ((off + count) > DS1305_NVRAM_LEN)
54553e84b67SDavid Brownell 		count = DS1305_NVRAM_LEN - off;
54653e84b67SDavid Brownell 	if (unlikely(!count))
54753e84b67SDavid Brownell 		return count;
54853e84b67SDavid Brownell 
54953e84b67SDavid Brownell 	addr = DS1305_NVRAM + off;
55053e84b67SDavid Brownell 	msg_init(&m, x, &addr, count, NULL, buf);
55153e84b67SDavid Brownell 
55253e84b67SDavid Brownell 	status = spi_sync(spi, &m);
55353e84b67SDavid Brownell 	if (status < 0)
55453e84b67SDavid Brownell 		dev_err(&spi->dev, "nvram %s error %d\n", "read", status);
55553e84b67SDavid Brownell 	return (status < 0) ? status : count;
55653e84b67SDavid Brownell }
55753e84b67SDavid Brownell 
55853e84b67SDavid Brownell static ssize_t
5592c3c8beaSChris Wright ds1305_nvram_write(struct file *filp, struct kobject *kobj,
5602c3c8beaSChris Wright 		struct bin_attribute *attr,
56153e84b67SDavid Brownell 		char *buf, loff_t off, size_t count)
56253e84b67SDavid Brownell {
56353e84b67SDavid Brownell 	struct spi_device	*spi;
56453e84b67SDavid Brownell 	u8			addr;
56553e84b67SDavid Brownell 	struct spi_message	m;
56653e84b67SDavid Brownell 	struct spi_transfer	x[2];
56753e84b67SDavid Brownell 	int			status;
56853e84b67SDavid Brownell 
56953e84b67SDavid Brownell 	spi = container_of(kobj, struct spi_device, dev.kobj);
57053e84b67SDavid Brownell 
57153e84b67SDavid Brownell 	if (unlikely(off >= DS1305_NVRAM_LEN))
57253e84b67SDavid Brownell 		return -EFBIG;
57353e84b67SDavid Brownell 	if (count >= DS1305_NVRAM_LEN)
57453e84b67SDavid Brownell 		count = DS1305_NVRAM_LEN;
57553e84b67SDavid Brownell 	if ((off + count) > DS1305_NVRAM_LEN)
57653e84b67SDavid Brownell 		count = DS1305_NVRAM_LEN - off;
57753e84b67SDavid Brownell 	if (unlikely(!count))
57853e84b67SDavid Brownell 		return count;
57953e84b67SDavid Brownell 
58053e84b67SDavid Brownell 	addr = (DS1305_WRITE | DS1305_NVRAM) + off;
58153e84b67SDavid Brownell 	msg_init(&m, x, &addr, count, buf, NULL);
58253e84b67SDavid Brownell 
58353e84b67SDavid Brownell 	status = spi_sync(spi, &m);
58453e84b67SDavid Brownell 	if (status < 0)
58553e84b67SDavid Brownell 		dev_err(&spi->dev, "nvram %s error %d\n", "write", status);
58653e84b67SDavid Brownell 	return (status < 0) ? status : count;
58753e84b67SDavid Brownell }
58853e84b67SDavid Brownell 
58953e84b67SDavid Brownell static struct bin_attribute nvram = {
59053e84b67SDavid Brownell 	.attr.name	= "nvram",
59153e84b67SDavid Brownell 	.attr.mode	= S_IRUGO | S_IWUSR,
59253e84b67SDavid Brownell 	.read		= ds1305_nvram_read,
59353e84b67SDavid Brownell 	.write		= ds1305_nvram_write,
59453e84b67SDavid Brownell 	.size		= DS1305_NVRAM_LEN,
59553e84b67SDavid Brownell };
59653e84b67SDavid Brownell 
59753e84b67SDavid Brownell /*----------------------------------------------------------------------*/
59853e84b67SDavid Brownell 
59953e84b67SDavid Brownell /*
60053e84b67SDavid Brownell  * Interface to SPI stack
60153e84b67SDavid Brownell  */
60253e84b67SDavid Brownell 
60353e84b67SDavid Brownell static int __devinit ds1305_probe(struct spi_device *spi)
60453e84b67SDavid Brownell {
60553e84b67SDavid Brownell 	struct ds1305			*ds1305;
60653e84b67SDavid Brownell 	int				status;
60753e84b67SDavid Brownell 	u8				addr, value;
60853e84b67SDavid Brownell 	struct ds1305_platform_data	*pdata = spi->dev.platform_data;
60953e84b67SDavid Brownell 	bool				write_ctrl = false;
61053e84b67SDavid Brownell 
61153e84b67SDavid Brownell 	/* Sanity check board setup data.  This may be hooked up
61253e84b67SDavid Brownell 	 * in 3wire mode, but we don't care.  Note that unless
61353e84b67SDavid Brownell 	 * there's an inverter in place, this needs SPI_CS_HIGH!
61453e84b67SDavid Brownell 	 */
61553e84b67SDavid Brownell 	if ((spi->bits_per_word && spi->bits_per_word != 8)
61653e84b67SDavid Brownell 			|| (spi->max_speed_hz > 2000000)
61753e84b67SDavid Brownell 			|| !(spi->mode & SPI_CPHA))
61853e84b67SDavid Brownell 		return -EINVAL;
61953e84b67SDavid Brownell 
62053e84b67SDavid Brownell 	/* set up driver data */
62153e84b67SDavid Brownell 	ds1305 = kzalloc(sizeof *ds1305, GFP_KERNEL);
62253e84b67SDavid Brownell 	if (!ds1305)
62353e84b67SDavid Brownell 		return -ENOMEM;
62453e84b67SDavid Brownell 	ds1305->spi = spi;
62553e84b67SDavid Brownell 	spi_set_drvdata(spi, ds1305);
62653e84b67SDavid Brownell 
62753e84b67SDavid Brownell 	/* read and cache control registers */
62853e84b67SDavid Brownell 	addr = DS1305_CONTROL;
62953e84b67SDavid Brownell 	status = spi_write_then_read(spi, &addr, sizeof addr,
63053e84b67SDavid Brownell 			ds1305->ctrl, sizeof ds1305->ctrl);
63153e84b67SDavid Brownell 	if (status < 0) {
63253e84b67SDavid Brownell 		dev_dbg(&spi->dev, "can't %s, %d\n",
63353e84b67SDavid Brownell 				"read", status);
63453e84b67SDavid Brownell 		goto fail0;
63553e84b67SDavid Brownell 	}
63653e84b67SDavid Brownell 
63753e84b67SDavid Brownell 	dev_dbg(&spi->dev, "ctrl %s: %02x %02x %02x\n",
63853e84b67SDavid Brownell 			"read", ds1305->ctrl[0],
63953e84b67SDavid Brownell 			ds1305->ctrl[1], ds1305->ctrl[2]);
64053e84b67SDavid Brownell 
64153e84b67SDavid Brownell 	/* Sanity check register values ... partially compensating for the
64253e84b67SDavid Brownell 	 * fact that SPI has no device handshake.  A pullup on MISO would
64353e84b67SDavid Brownell 	 * make these tests fail; but not all systems will have one.  If
64453e84b67SDavid Brownell 	 * some register is neither 0x00 nor 0xff, a chip is likely there.
64553e84b67SDavid Brownell 	 */
64653e84b67SDavid Brownell 	if ((ds1305->ctrl[0] & 0x38) != 0 || (ds1305->ctrl[1] & 0xfc) != 0) {
64753e84b67SDavid Brownell 		dev_dbg(&spi->dev, "RTC chip is not present\n");
64853e84b67SDavid Brownell 		status = -ENODEV;
64953e84b67SDavid Brownell 		goto fail0;
65053e84b67SDavid Brownell 	}
65153e84b67SDavid Brownell 	if (ds1305->ctrl[2] == 0)
65253e84b67SDavid Brownell 		dev_dbg(&spi->dev, "chip may not be present\n");
65353e84b67SDavid Brownell 
65453e84b67SDavid Brownell 	/* enable writes if needed ... if we were paranoid it would
65553e84b67SDavid Brownell 	 * make sense to enable them only when absolutely necessary.
65653e84b67SDavid Brownell 	 */
65753e84b67SDavid Brownell 	if (ds1305->ctrl[0] & DS1305_WP) {
65853e84b67SDavid Brownell 		u8		buf[2];
65953e84b67SDavid Brownell 
66053e84b67SDavid Brownell 		ds1305->ctrl[0] &= ~DS1305_WP;
66153e84b67SDavid Brownell 
66253e84b67SDavid Brownell 		buf[0] = DS1305_WRITE | DS1305_CONTROL;
66353e84b67SDavid Brownell 		buf[1] = ds1305->ctrl[0];
66453e84b67SDavid Brownell 		status = spi_write_then_read(spi, buf, sizeof buf, NULL, 0);
66553e84b67SDavid Brownell 
66653e84b67SDavid Brownell 		dev_dbg(&spi->dev, "clear WP --> %d\n", status);
66753e84b67SDavid Brownell 		if (status < 0)
66853e84b67SDavid Brownell 			goto fail0;
66953e84b67SDavid Brownell 	}
67053e84b67SDavid Brownell 
67153e84b67SDavid Brownell 	/* on DS1305, maybe start oscillator; like most low power
67253e84b67SDavid Brownell 	 * oscillators, it may take a second to stabilize
67353e84b67SDavid Brownell 	 */
67453e84b67SDavid Brownell 	if (ds1305->ctrl[0] & DS1305_nEOSC) {
67553e84b67SDavid Brownell 		ds1305->ctrl[0] &= ~DS1305_nEOSC;
67653e84b67SDavid Brownell 		write_ctrl = true;
67753e84b67SDavid Brownell 		dev_warn(&spi->dev, "SET TIME!\n");
67853e84b67SDavid Brownell 	}
67953e84b67SDavid Brownell 
68053e84b67SDavid Brownell 	/* ack any pending IRQs */
68153e84b67SDavid Brownell 	if (ds1305->ctrl[1]) {
68253e84b67SDavid Brownell 		ds1305->ctrl[1] = 0;
68353e84b67SDavid Brownell 		write_ctrl = true;
68453e84b67SDavid Brownell 	}
68553e84b67SDavid Brownell 
68653e84b67SDavid Brownell 	/* this may need one-time (re)init */
68753e84b67SDavid Brownell 	if (pdata) {
68853e84b67SDavid Brownell 		/* maybe enable trickle charge */
68953e84b67SDavid Brownell 		if (((ds1305->ctrl[2] & 0xf0) != DS1305_TRICKLE_MAGIC)) {
69053e84b67SDavid Brownell 			ds1305->ctrl[2] = DS1305_TRICKLE_MAGIC
69153e84b67SDavid Brownell 						| pdata->trickle;
69253e84b67SDavid Brownell 			write_ctrl = true;
69353e84b67SDavid Brownell 		}
69453e84b67SDavid Brownell 
69553e84b67SDavid Brownell 		/* on DS1306, configure 1 Hz signal */
69653e84b67SDavid Brownell 		if (pdata->is_ds1306) {
69753e84b67SDavid Brownell 			if (pdata->en_1hz) {
69853e84b67SDavid Brownell 				if (!(ds1305->ctrl[0] & DS1306_1HZ)) {
69953e84b67SDavid Brownell 					ds1305->ctrl[0] |= DS1306_1HZ;
70053e84b67SDavid Brownell 					write_ctrl = true;
70153e84b67SDavid Brownell 				}
70253e84b67SDavid Brownell 			} else {
70353e84b67SDavid Brownell 				if (ds1305->ctrl[0] & DS1306_1HZ) {
70453e84b67SDavid Brownell 					ds1305->ctrl[0] &= ~DS1306_1HZ;
70553e84b67SDavid Brownell 					write_ctrl = true;
70653e84b67SDavid Brownell 				}
70753e84b67SDavid Brownell 			}
70853e84b67SDavid Brownell 		}
70953e84b67SDavid Brownell 	}
71053e84b67SDavid Brownell 
71153e84b67SDavid Brownell 	if (write_ctrl) {
71253e84b67SDavid Brownell 		u8		buf[4];
71353e84b67SDavid Brownell 
71453e84b67SDavid Brownell 		buf[0] = DS1305_WRITE | DS1305_CONTROL;
71553e84b67SDavid Brownell 		buf[1] = ds1305->ctrl[0];
71653e84b67SDavid Brownell 		buf[2] = ds1305->ctrl[1];
71753e84b67SDavid Brownell 		buf[3] = ds1305->ctrl[2];
71853e84b67SDavid Brownell 		status = spi_write_then_read(spi, buf, sizeof buf, NULL, 0);
71953e84b67SDavid Brownell 		if (status < 0) {
72053e84b67SDavid Brownell 			dev_dbg(&spi->dev, "can't %s, %d\n",
72153e84b67SDavid Brownell 					"write", status);
72253e84b67SDavid Brownell 			goto fail0;
72353e84b67SDavid Brownell 		}
72453e84b67SDavid Brownell 
72553e84b67SDavid Brownell 		dev_dbg(&spi->dev, "ctrl %s: %02x %02x %02x\n",
72653e84b67SDavid Brownell 				"write", ds1305->ctrl[0],
72753e84b67SDavid Brownell 				ds1305->ctrl[1], ds1305->ctrl[2]);
72853e84b67SDavid Brownell 	}
72953e84b67SDavid Brownell 
73053e84b67SDavid Brownell 	/* see if non-Linux software set up AM/PM mode */
73153e84b67SDavid Brownell 	addr = DS1305_HOUR;
73253e84b67SDavid Brownell 	status = spi_write_then_read(spi, &addr, sizeof addr,
73353e84b67SDavid Brownell 				&value, sizeof value);
73453e84b67SDavid Brownell 	if (status < 0) {
73553e84b67SDavid Brownell 		dev_dbg(&spi->dev, "read HOUR --> %d\n", status);
73653e84b67SDavid Brownell 		goto fail0;
73753e84b67SDavid Brownell 	}
73853e84b67SDavid Brownell 
73953e84b67SDavid Brownell 	ds1305->hr12 = (DS1305_HR_12 & value) != 0;
74053e84b67SDavid Brownell 	if (ds1305->hr12)
74153e84b67SDavid Brownell 		dev_dbg(&spi->dev, "AM/PM\n");
74253e84b67SDavid Brownell 
74353e84b67SDavid Brownell 	/* register RTC ... from here on, ds1305->ctrl needs locking */
744b74d2caaSAlessandro Zummo 	ds1305->rtc = rtc_device_register("ds1305", &spi->dev,
74553e84b67SDavid Brownell 			&ds1305_ops, THIS_MODULE);
746b74d2caaSAlessandro Zummo 	if (IS_ERR(ds1305->rtc)) {
747b74d2caaSAlessandro Zummo 		status = PTR_ERR(ds1305->rtc);
74853e84b67SDavid Brownell 		dev_dbg(&spi->dev, "register rtc --> %d\n", status);
74953e84b67SDavid Brownell 		goto fail0;
75053e84b67SDavid Brownell 	}
75153e84b67SDavid Brownell 
75253e84b67SDavid Brownell 	/* Maybe set up alarm IRQ; be ready to handle it triggering right
75353e84b67SDavid Brownell 	 * away.  NOTE that we don't share this.  The signal is active low,
75453e84b67SDavid Brownell 	 * and we can't ack it before a SPI message delay.  We temporarily
75553e84b67SDavid Brownell 	 * disable the IRQ until it's acked, which lets us work with more
75653e84b67SDavid Brownell 	 * IRQ trigger modes (not all IRQ controllers can do falling edge).
75753e84b67SDavid Brownell 	 */
75853e84b67SDavid Brownell 	if (spi->irq) {
75953e84b67SDavid Brownell 		INIT_WORK(&ds1305->work, ds1305_work);
76053e84b67SDavid Brownell 		status = request_irq(spi->irq, ds1305_irq,
761b74d2caaSAlessandro Zummo 				0, dev_name(&ds1305->rtc->dev), ds1305);
76253e84b67SDavid Brownell 		if (status < 0) {
76353e84b67SDavid Brownell 			dev_dbg(&spi->dev, "request_irq %d --> %d\n",
76453e84b67SDavid Brownell 					spi->irq, status);
76553e84b67SDavid Brownell 			goto fail1;
76653e84b67SDavid Brownell 		}
76726b3c01fSAnton Vorontsov 
76826b3c01fSAnton Vorontsov 		device_set_wakeup_capable(&spi->dev, 1);
76953e84b67SDavid Brownell 	}
77053e84b67SDavid Brownell 
77153e84b67SDavid Brownell 	/* export NVRAM */
77253e84b67SDavid Brownell 	status = sysfs_create_bin_file(&spi->dev.kobj, &nvram);
77353e84b67SDavid Brownell 	if (status < 0) {
77453e84b67SDavid Brownell 		dev_dbg(&spi->dev, "register nvram --> %d\n", status);
77553e84b67SDavid Brownell 		goto fail2;
77653e84b67SDavid Brownell 	}
77753e84b67SDavid Brownell 
77853e84b67SDavid Brownell 	return 0;
77953e84b67SDavid Brownell 
78053e84b67SDavid Brownell fail2:
78153e84b67SDavid Brownell 	free_irq(spi->irq, ds1305);
78253e84b67SDavid Brownell fail1:
783b74d2caaSAlessandro Zummo 	rtc_device_unregister(ds1305->rtc);
78453e84b67SDavid Brownell fail0:
78553e84b67SDavid Brownell 	kfree(ds1305);
78653e84b67SDavid Brownell 	return status;
78753e84b67SDavid Brownell }
78853e84b67SDavid Brownell 
78953e84b67SDavid Brownell static int __devexit ds1305_remove(struct spi_device *spi)
79053e84b67SDavid Brownell {
79153e84b67SDavid Brownell 	struct ds1305 *ds1305 = spi_get_drvdata(spi);
79253e84b67SDavid Brownell 
79353e84b67SDavid Brownell 	sysfs_remove_bin_file(&spi->dev.kobj, &nvram);
79453e84b67SDavid Brownell 
79553e84b67SDavid Brownell 	/* carefully shut down irq and workqueue, if present */
79653e84b67SDavid Brownell 	if (spi->irq) {
79753e84b67SDavid Brownell 		set_bit(FLAG_EXITING, &ds1305->flags);
79853e84b67SDavid Brownell 		free_irq(spi->irq, ds1305);
7999db8995bSTejun Heo 		cancel_work_sync(&ds1305->work);
80053e84b67SDavid Brownell 	}
80153e84b67SDavid Brownell 
80253e84b67SDavid Brownell 	rtc_device_unregister(ds1305->rtc);
80353e84b67SDavid Brownell 	spi_set_drvdata(spi, NULL);
80453e84b67SDavid Brownell 	kfree(ds1305);
80553e84b67SDavid Brownell 	return 0;
80653e84b67SDavid Brownell }
80753e84b67SDavid Brownell 
80853e84b67SDavid Brownell static struct spi_driver ds1305_driver = {
80953e84b67SDavid Brownell 	.driver.name	= "rtc-ds1305",
81053e84b67SDavid Brownell 	.driver.owner	= THIS_MODULE,
81153e84b67SDavid Brownell 	.probe		= ds1305_probe,
81253e84b67SDavid Brownell 	.remove		= __devexit_p(ds1305_remove),
81353e84b67SDavid Brownell 	/* REVISIT add suspend/resume */
81453e84b67SDavid Brownell };
81553e84b67SDavid Brownell 
81653e84b67SDavid Brownell static int __init ds1305_init(void)
81753e84b67SDavid Brownell {
81853e84b67SDavid Brownell 	return spi_register_driver(&ds1305_driver);
81953e84b67SDavid Brownell }
82053e84b67SDavid Brownell module_init(ds1305_init);
82153e84b67SDavid Brownell 
82253e84b67SDavid Brownell static void __exit ds1305_exit(void)
82353e84b67SDavid Brownell {
82453e84b67SDavid Brownell 	spi_unregister_driver(&ds1305_driver);
82553e84b67SDavid Brownell }
82653e84b67SDavid Brownell module_exit(ds1305_exit);
82753e84b67SDavid Brownell 
82853e84b67SDavid Brownell MODULE_DESCRIPTION("RTC driver for DS1305 and DS1306 chips");
82953e84b67SDavid Brownell MODULE_LICENSE("GPL");
830e0626e38SAnton Vorontsov MODULE_ALIAS("spi:rtc-ds1305");
831