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dmitry pervushindf17f632009-09-22 16:46:26 -07001/*
2 * Freescale STMP37XX/STMP378X Real Time Clock driver
3 *
4 * Copyright (c) 2007 Sigmatel, Inc.
5 * Peter Hartley, <peter.hartley@sigmatel.com>
6 *
7 * Copyright 2008 Freescale Semiconductor, Inc. All Rights Reserved.
8 * Copyright 2008 Embedded Alley Solutions, Inc All Rights Reserved.
Wolfram Sang7e794cb2011-05-25 12:56:53 +02009 * Copyright 2011 Wolfram Sang, Pengutronix e.K.
dmitry pervushindf17f632009-09-22 16:46:26 -070010 */
11
12/*
13 * The code contained herein is licensed under the GNU General Public
14 * License. You may obtain a copy of the GNU General Public License
15 * Version 2 or later at the following locations:
16 *
17 * http://www.opensource.org/licenses/gpl-license.html
18 * http://www.gnu.org/copyleft/gpl.html
19 */
20#include <linux/kernel.h>
21#include <linux/module.h>
Wolfram Sangb5167152011-05-25 12:56:52 +020022#include <linux/io.h>
dmitry pervushindf17f632009-09-22 16:46:26 -070023#include <linux/init.h>
24#include <linux/platform_device.h>
25#include <linux/interrupt.h>
Lothar Waßmann28a0c882013-08-13 16:00:56 -070026#include <linux/delay.h>
dmitry pervushindf17f632009-09-22 16:46:26 -070027#include <linux/rtc.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090028#include <linux/slab.h>
Marek Vasutdd8d20a2012-06-26 16:29:27 +080029#include <linux/of_device.h>
Sachin Kamatc8a60462013-02-21 16:44:28 -080030#include <linux/of.h>
Wolfram Sang1a71fb82011-09-27 22:21:37 +020031#include <linux/stmp_device.h>
32#include <linux/stmp3xxx_rtc_wdt.h>
dmitry pervushindf17f632009-09-22 16:46:26 -070033
Wolfram Sang47eac332011-05-25 12:56:49 +020034#define STMP3XXX_RTC_CTRL 0x0
35#define STMP3XXX_RTC_CTRL_ALARM_IRQ_EN 0x00000001
36#define STMP3XXX_RTC_CTRL_ONEMSEC_IRQ_EN 0x00000002
37#define STMP3XXX_RTC_CTRL_ALARM_IRQ 0x00000004
Wolfram Sang1a71fb82011-09-27 22:21:37 +020038#define STMP3XXX_RTC_CTRL_WATCHDOGEN 0x00000010
Wolfram Sang47eac332011-05-25 12:56:49 +020039
40#define STMP3XXX_RTC_STAT 0x10
41#define STMP3XXX_RTC_STAT_STALE_SHIFT 16
42#define STMP3XXX_RTC_STAT_RTC_PRESENT 0x80000000
Uwe Kleine-König7f48b212015-04-16 12:45:04 -070043#define STMP3XXX_RTC_STAT_XTAL32000_PRESENT 0x10000000
44#define STMP3XXX_RTC_STAT_XTAL32768_PRESENT 0x08000000
Wolfram Sang47eac332011-05-25 12:56:49 +020045
46#define STMP3XXX_RTC_SECONDS 0x30
47
48#define STMP3XXX_RTC_ALARM 0x40
49
Wolfram Sang1a71fb82011-09-27 22:21:37 +020050#define STMP3XXX_RTC_WATCHDOG 0x50
51
Wolfram Sang47eac332011-05-25 12:56:49 +020052#define STMP3XXX_RTC_PERSISTENT0 0x60
Uwe Kleine-König7f48b212015-04-16 12:45:04 -070053#define STMP3XXX_RTC_PERSISTENT0_CLOCKSOURCE (1 << 0)
54#define STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN (1 << 1)
55#define STMP3XXX_RTC_PERSISTENT0_ALARM_EN (1 << 2)
56#define STMP3XXX_RTC_PERSISTENT0_XTAL24MHZ_PWRUP (1 << 4)
57#define STMP3XXX_RTC_PERSISTENT0_XTAL32KHZ_PWRUP (1 << 5)
58#define STMP3XXX_RTC_PERSISTENT0_XTAL32_FREQ (1 << 6)
59#define STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE (1 << 7)
dmitry pervushindf17f632009-09-22 16:46:26 -070060
Wolfram Sang1a71fb82011-09-27 22:21:37 +020061#define STMP3XXX_RTC_PERSISTENT1 0x70
62/* missing bitmask in headers */
63#define STMP3XXX_RTC_PERSISTENT1_FORCE_UPDATER 0x80000000
64
dmitry pervushindf17f632009-09-22 16:46:26 -070065struct stmp3xxx_rtc_data {
66 struct rtc_device *rtc;
dmitry pervushindf17f632009-09-22 16:46:26 -070067 void __iomem *io;
Wolfram Sang7e794cb2011-05-25 12:56:53 +020068 int irq_alarm;
dmitry pervushindf17f632009-09-22 16:46:26 -070069};
70
Wolfram Sang1a71fb82011-09-27 22:21:37 +020071#if IS_ENABLED(CONFIG_STMP3XXX_RTC_WATCHDOG)
72/**
73 * stmp3xxx_wdt_set_timeout - configure the watchdog inside the STMP3xxx RTC
74 * @dev: the parent device of the watchdog (= the RTC)
75 * @timeout: the desired value for the timeout register of the watchdog.
76 * 0 disables the watchdog
77 *
78 * The watchdog needs one register and two bits which are in the RTC domain.
79 * To handle the resource conflict, the RTC driver will create another
80 * platform_device for the watchdog driver as a child of the RTC device.
81 * The watchdog driver is passed the below accessor function via platform_data
82 * to configure the watchdog. Locking is not needed because accessing SET/CLR
83 * registers is atomic.
84 */
85
86static void stmp3xxx_wdt_set_timeout(struct device *dev, u32 timeout)
87{
88 struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev);
89
90 if (timeout) {
91 writel(timeout, rtc_data->io + STMP3XXX_RTC_WATCHDOG);
92 writel(STMP3XXX_RTC_CTRL_WATCHDOGEN,
93 rtc_data->io + STMP3XXX_RTC_CTRL + STMP_OFFSET_REG_SET);
94 writel(STMP3XXX_RTC_PERSISTENT1_FORCE_UPDATER,
95 rtc_data->io + STMP3XXX_RTC_PERSISTENT1 + STMP_OFFSET_REG_SET);
96 } else {
97 writel(STMP3XXX_RTC_CTRL_WATCHDOGEN,
98 rtc_data->io + STMP3XXX_RTC_CTRL + STMP_OFFSET_REG_CLR);
99 writel(STMP3XXX_RTC_PERSISTENT1_FORCE_UPDATER,
100 rtc_data->io + STMP3XXX_RTC_PERSISTENT1 + STMP_OFFSET_REG_CLR);
101 }
102}
103
104static struct stmp3xxx_wdt_pdata wdt_pdata = {
105 .wdt_set_timeout = stmp3xxx_wdt_set_timeout,
106};
107
108static void stmp3xxx_wdt_register(struct platform_device *rtc_pdev)
109{
110 struct platform_device *wdt_pdev =
111 platform_device_alloc("stmp3xxx_rtc_wdt", rtc_pdev->id);
112
113 if (wdt_pdev) {
114 wdt_pdev->dev.parent = &rtc_pdev->dev;
115 wdt_pdev->dev.platform_data = &wdt_pdata;
116 platform_device_add(wdt_pdev);
117 }
118}
119#else
120static void stmp3xxx_wdt_register(struct platform_device *rtc_pdev)
121{
122}
123#endif /* CONFIG_STMP3XXX_RTC_WATCHDOG */
124
Lothar Waßmann28a0c882013-08-13 16:00:56 -0700125static int stmp3xxx_wait_time(struct stmp3xxx_rtc_data *rtc_data)
dmitry pervushindf17f632009-09-22 16:46:26 -0700126{
Lothar Waßmann28a0c882013-08-13 16:00:56 -0700127 int timeout = 5000; /* 3ms according to i.MX28 Ref Manual */
dmitry pervushindf17f632009-09-22 16:46:26 -0700128 /*
Lothar Waßmann28a0c882013-08-13 16:00:56 -0700129 * The i.MX28 Applications Processor Reference Manual, Rev. 1, 2010
130 * states:
131 * | The order in which registers are updated is
132 * | Persistent 0, 1, 2, 3, 4, 5, Alarm, Seconds.
133 * | (This list is in bitfield order, from LSB to MSB, as they would
134 * | appear in the STALE_REGS and NEW_REGS bitfields of the HW_RTC_STAT
135 * | register. For example, the Seconds register corresponds to
136 * | STALE_REGS or NEW_REGS containing 0x80.)
dmitry pervushindf17f632009-09-22 16:46:26 -0700137 */
Lothar Waßmann28a0c882013-08-13 16:00:56 -0700138 do {
139 if (!(readl(rtc_data->io + STMP3XXX_RTC_STAT) &
140 (0x80 << STMP3XXX_RTC_STAT_STALE_SHIFT)))
141 return 0;
142 udelay(1);
143 } while (--timeout > 0);
144 return (readl(rtc_data->io + STMP3XXX_RTC_STAT) &
145 (0x80 << STMP3XXX_RTC_STAT_STALE_SHIFT)) ? -ETIME : 0;
dmitry pervushindf17f632009-09-22 16:46:26 -0700146}
147
148/* Time read/write */
149static int stmp3xxx_rtc_gettime(struct device *dev, struct rtc_time *rtc_tm)
150{
Lothar Waßmann28a0c882013-08-13 16:00:56 -0700151 int ret;
dmitry pervushindf17f632009-09-22 16:46:26 -0700152 struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev);
153
Lothar Waßmann28a0c882013-08-13 16:00:56 -0700154 ret = stmp3xxx_wait_time(rtc_data);
155 if (ret)
156 return ret;
157
Wolfram Sangb5167152011-05-25 12:56:52 +0200158 rtc_time_to_tm(readl(rtc_data->io + STMP3XXX_RTC_SECONDS), rtc_tm);
dmitry pervushindf17f632009-09-22 16:46:26 -0700159 return 0;
160}
161
162static int stmp3xxx_rtc_set_mmss(struct device *dev, unsigned long t)
163{
164 struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev);
165
Wolfram Sangb5167152011-05-25 12:56:52 +0200166 writel(t, rtc_data->io + STMP3XXX_RTC_SECONDS);
Lothar Waßmann28a0c882013-08-13 16:00:56 -0700167 return stmp3xxx_wait_time(rtc_data);
dmitry pervushindf17f632009-09-22 16:46:26 -0700168}
169
170/* interrupt(s) handler */
171static irqreturn_t stmp3xxx_rtc_interrupt(int irq, void *dev_id)
172{
173 struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev_id);
Wolfram Sang7e794cb2011-05-25 12:56:53 +0200174 u32 status = readl(rtc_data->io + STMP3XXX_RTC_CTRL);
dmitry pervushindf17f632009-09-22 16:46:26 -0700175
Wolfram Sang47eac332011-05-25 12:56:49 +0200176 if (status & STMP3XXX_RTC_CTRL_ALARM_IRQ) {
Wolfram Sangb5167152011-05-25 12:56:52 +0200177 writel(STMP3XXX_RTC_CTRL_ALARM_IRQ,
Harald Geyer24417822015-10-02 20:18:01 +0000178 rtc_data->io + STMP3XXX_RTC_CTRL + STMP_OFFSET_REG_CLR);
Wolfram Sang7e794cb2011-05-25 12:56:53 +0200179 rtc_update_irq(rtc_data->rtc, 1, RTC_AF | RTC_IRQF);
180 return IRQ_HANDLED;
dmitry pervushindf17f632009-09-22 16:46:26 -0700181 }
182
Wolfram Sang7e794cb2011-05-25 12:56:53 +0200183 return IRQ_NONE;
dmitry pervushindf17f632009-09-22 16:46:26 -0700184}
185
186static int stmp3xxx_alarm_irq_enable(struct device *dev, unsigned int enabled)
187{
188 struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev);
dmitry pervushindf17f632009-09-22 16:46:26 -0700189
190 if (enabled) {
Wolfram Sangb5167152011-05-25 12:56:52 +0200191 writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN |
192 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN,
Harald Geyer24417822015-10-02 20:18:01 +0000193 rtc_data->io + STMP3XXX_RTC_PERSISTENT0 +
194 STMP_OFFSET_REG_SET);
Wolfram Sangb5167152011-05-25 12:56:52 +0200195 writel(STMP3XXX_RTC_CTRL_ALARM_IRQ_EN,
Harald Geyer24417822015-10-02 20:18:01 +0000196 rtc_data->io + STMP3XXX_RTC_CTRL + STMP_OFFSET_REG_SET);
dmitry pervushindf17f632009-09-22 16:46:26 -0700197 } else {
Wolfram Sangb5167152011-05-25 12:56:52 +0200198 writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN |
199 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN,
Harald Geyer24417822015-10-02 20:18:01 +0000200 rtc_data->io + STMP3XXX_RTC_PERSISTENT0 +
201 STMP_OFFSET_REG_CLR);
Wolfram Sangb5167152011-05-25 12:56:52 +0200202 writel(STMP3XXX_RTC_CTRL_ALARM_IRQ_EN,
Harald Geyer24417822015-10-02 20:18:01 +0000203 rtc_data->io + STMP3XXX_RTC_CTRL + STMP_OFFSET_REG_CLR);
dmitry pervushindf17f632009-09-22 16:46:26 -0700204 }
205 return 0;
206}
207
dmitry pervushindf17f632009-09-22 16:46:26 -0700208static int stmp3xxx_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alm)
209{
210 struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev);
211
Wolfram Sangb5167152011-05-25 12:56:52 +0200212 rtc_time_to_tm(readl(rtc_data->io + STMP3XXX_RTC_ALARM), &alm->time);
dmitry pervushindf17f632009-09-22 16:46:26 -0700213 return 0;
214}
215
216static int stmp3xxx_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alm)
217{
218 unsigned long t;
219 struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev);
220
221 rtc_tm_to_time(&alm->time, &t);
Wolfram Sangb5167152011-05-25 12:56:52 +0200222 writel(t, rtc_data->io + STMP3XXX_RTC_ALARM);
Wolfram Sang7e794cb2011-05-25 12:56:53 +0200223
224 stmp3xxx_alarm_irq_enable(dev, alm->enabled);
225
dmitry pervushindf17f632009-09-22 16:46:26 -0700226 return 0;
227}
228
229static struct rtc_class_ops stmp3xxx_rtc_ops = {
230 .alarm_irq_enable =
231 stmp3xxx_alarm_irq_enable,
dmitry pervushindf17f632009-09-22 16:46:26 -0700232 .read_time = stmp3xxx_rtc_gettime,
233 .set_mmss = stmp3xxx_rtc_set_mmss,
234 .read_alarm = stmp3xxx_rtc_read_alarm,
235 .set_alarm = stmp3xxx_rtc_set_alarm,
236};
237
238static int stmp3xxx_rtc_remove(struct platform_device *pdev)
239{
240 struct stmp3xxx_rtc_data *rtc_data = platform_get_drvdata(pdev);
241
242 if (!rtc_data)
243 return 0;
244
Wolfram Sang7e794cb2011-05-25 12:56:53 +0200245 writel(STMP3XXX_RTC_CTRL_ALARM_IRQ_EN,
Harald Geyer24417822015-10-02 20:18:01 +0000246 rtc_data->io + STMP3XXX_RTC_CTRL + STMP_OFFSET_REG_CLR);
dmitry pervushindf17f632009-09-22 16:46:26 -0700247
248 return 0;
249}
250
251static int stmp3xxx_rtc_probe(struct platform_device *pdev)
252{
253 struct stmp3xxx_rtc_data *rtc_data;
254 struct resource *r;
Uwe Kleine-König7f48b212015-04-16 12:45:04 -0700255 u32 rtc_stat;
256 u32 pers0_set, pers0_clr;
257 u32 crystalfreq = 0;
dmitry pervushindf17f632009-09-22 16:46:26 -0700258 int err;
259
Jingoo Han87a81422013-04-29 16:20:55 -0700260 rtc_data = devm_kzalloc(&pdev->dev, sizeof(*rtc_data), GFP_KERNEL);
dmitry pervushindf17f632009-09-22 16:46:26 -0700261 if (!rtc_data)
262 return -ENOMEM;
263
264 r = platform_get_resource(pdev, IORESOURCE_MEM, 0);
265 if (!r) {
266 dev_err(&pdev->dev, "failed to get resource\n");
Jingoo Han87a81422013-04-29 16:20:55 -0700267 return -ENXIO;
dmitry pervushindf17f632009-09-22 16:46:26 -0700268 }
269
Jingoo Han87a81422013-04-29 16:20:55 -0700270 rtc_data->io = devm_ioremap(&pdev->dev, r->start, resource_size(r));
dmitry pervushindf17f632009-09-22 16:46:26 -0700271 if (!rtc_data->io) {
272 dev_err(&pdev->dev, "ioremap failed\n");
Jingoo Han87a81422013-04-29 16:20:55 -0700273 return -EIO;
dmitry pervushindf17f632009-09-22 16:46:26 -0700274 }
275
276 rtc_data->irq_alarm = platform_get_irq(pdev, 0);
dmitry pervushindf17f632009-09-22 16:46:26 -0700277
Uwe Kleine-König7f48b212015-04-16 12:45:04 -0700278 rtc_stat = readl(rtc_data->io + STMP3XXX_RTC_STAT);
279 if (!(rtc_stat & STMP3XXX_RTC_STAT_RTC_PRESENT)) {
dmitry pervushindf17f632009-09-22 16:46:26 -0700280 dev_err(&pdev->dev, "no device onboard\n");
Jingoo Han87a81422013-04-29 16:20:55 -0700281 return -ENODEV;
dmitry pervushindf17f632009-09-22 16:46:26 -0700282 }
283
Wolfram Sanga91d2ba2011-05-25 12:56:51 +0200284 platform_set_drvdata(pdev, rtc_data);
285
Fabio Estevam4e80b182013-07-08 16:00:45 -0700286 err = stmp_reset_block(rtc_data->io);
287 if (err) {
288 dev_err(&pdev->dev, "stmp_reset_block failed: %d\n", err);
289 return err;
290 }
291
Uwe Kleine-König7f48b212015-04-16 12:45:04 -0700292 /*
293 * Obviously the rtc needs a clock input to be able to run.
294 * This clock can be provided by an external 32k crystal. If that one is
295 * missing XTAL must not be disabled in suspend which consumes a
296 * lot of power. Normally the presence and exact frequency (supported
297 * are 32000 Hz and 32768 Hz) is detectable from fuses, but as reality
298 * proves these fuses are not blown correctly on all machines, so the
299 * frequency can be overridden in the device tree.
300 */
301 if (rtc_stat & STMP3XXX_RTC_STAT_XTAL32000_PRESENT)
302 crystalfreq = 32000;
303 else if (rtc_stat & STMP3XXX_RTC_STAT_XTAL32768_PRESENT)
304 crystalfreq = 32768;
305
306 of_property_read_u32(pdev->dev.of_node, "stmp,crystal-freq",
307 &crystalfreq);
308
309 switch (crystalfreq) {
310 case 32000:
311 /* keep 32kHz crystal running in low-power mode */
312 pers0_set = STMP3XXX_RTC_PERSISTENT0_XTAL32_FREQ |
313 STMP3XXX_RTC_PERSISTENT0_XTAL32KHZ_PWRUP |
314 STMP3XXX_RTC_PERSISTENT0_CLOCKSOURCE;
315 pers0_clr = STMP3XXX_RTC_PERSISTENT0_XTAL24MHZ_PWRUP;
316 break;
317 case 32768:
318 /* keep 32.768kHz crystal running in low-power mode */
319 pers0_set = STMP3XXX_RTC_PERSISTENT0_XTAL32KHZ_PWRUP |
320 STMP3XXX_RTC_PERSISTENT0_CLOCKSOURCE;
321 pers0_clr = STMP3XXX_RTC_PERSISTENT0_XTAL24MHZ_PWRUP |
322 STMP3XXX_RTC_PERSISTENT0_XTAL32_FREQ;
323 break;
324 default:
325 dev_warn(&pdev->dev,
326 "invalid crystal-freq specified in device-tree. Assuming no crystal\n");
327 /* fall-through */
328 case 0:
329 /* keep XTAL on in low-power mode */
330 pers0_set = STMP3XXX_RTC_PERSISTENT0_XTAL24MHZ_PWRUP;
331 pers0_clr = STMP3XXX_RTC_PERSISTENT0_XTAL32KHZ_PWRUP |
332 STMP3XXX_RTC_PERSISTENT0_CLOCKSOURCE;
333 }
334
Harald Geyer24417822015-10-02 20:18:01 +0000335 writel(pers0_set, rtc_data->io + STMP3XXX_RTC_PERSISTENT0 +
336 STMP_OFFSET_REG_SET);
Uwe Kleine-König7f48b212015-04-16 12:45:04 -0700337
Wolfram Sangb5167152011-05-25 12:56:52 +0200338 writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN |
Wolfram Sang47eac332011-05-25 12:56:49 +0200339 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN |
Uwe Kleine-König7f48b212015-04-16 12:45:04 -0700340 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE | pers0_clr,
Harald Geyer24417822015-10-02 20:18:01 +0000341 rtc_data->io + STMP3XXX_RTC_PERSISTENT0 + STMP_OFFSET_REG_CLR);
Wolfram Sanga91d2ba2011-05-25 12:56:51 +0200342
Wolfram Sang7e794cb2011-05-25 12:56:53 +0200343 writel(STMP3XXX_RTC_CTRL_ONEMSEC_IRQ_EN |
344 STMP3XXX_RTC_CTRL_ALARM_IRQ_EN,
Harald Geyer24417822015-10-02 20:18:01 +0000345 rtc_data->io + STMP3XXX_RTC_CTRL + STMP_OFFSET_REG_CLR);
Wolfram Sang7e794cb2011-05-25 12:56:53 +0200346
Jingoo Han87a81422013-04-29 16:20:55 -0700347 rtc_data->rtc = devm_rtc_device_register(&pdev->dev, pdev->name,
dmitry pervushindf17f632009-09-22 16:46:26 -0700348 &stmp3xxx_rtc_ops, THIS_MODULE);
Jingoo Handfd2a172013-07-03 15:06:37 -0700349 if (IS_ERR(rtc_data->rtc))
350 return PTR_ERR(rtc_data->rtc);
dmitry pervushindf17f632009-09-22 16:46:26 -0700351
Jingoo Han87a81422013-04-29 16:20:55 -0700352 err = devm_request_irq(&pdev->dev, rtc_data->irq_alarm,
353 stmp3xxx_rtc_interrupt, 0, "RTC alarm", &pdev->dev);
dmitry pervushindf17f632009-09-22 16:46:26 -0700354 if (err) {
355 dev_err(&pdev->dev, "Cannot claim IRQ%d\n",
356 rtc_data->irq_alarm);
Jingoo Handfd2a172013-07-03 15:06:37 -0700357 return err;
dmitry pervushindf17f632009-09-22 16:46:26 -0700358 }
dmitry pervushindf17f632009-09-22 16:46:26 -0700359
Wolfram Sang1a71fb82011-09-27 22:21:37 +0200360 stmp3xxx_wdt_register(pdev);
dmitry pervushindf17f632009-09-22 16:46:26 -0700361 return 0;
dmitry pervushindf17f632009-09-22 16:46:26 -0700362}
363
Jingoo Hanef69a7f2013-04-29 16:21:03 -0700364#ifdef CONFIG_PM_SLEEP
365static int stmp3xxx_rtc_suspend(struct device *dev)
dmitry pervushindf17f632009-09-22 16:46:26 -0700366{
367 return 0;
368}
369
Jingoo Hanef69a7f2013-04-29 16:21:03 -0700370static int stmp3xxx_rtc_resume(struct device *dev)
dmitry pervushindf17f632009-09-22 16:46:26 -0700371{
Jingoo Hanef69a7f2013-04-29 16:21:03 -0700372 struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev);
dmitry pervushindf17f632009-09-22 16:46:26 -0700373
Shawn Guo36d1da12013-03-28 23:13:14 +0800374 stmp_reset_block(rtc_data->io);
Wolfram Sangb5167152011-05-25 12:56:52 +0200375 writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN |
Wolfram Sang47eac332011-05-25 12:56:49 +0200376 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN |
377 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE,
Harald Geyer24417822015-10-02 20:18:01 +0000378 rtc_data->io + STMP3XXX_RTC_PERSISTENT0 + STMP_OFFSET_REG_CLR);
dmitry pervushindf17f632009-09-22 16:46:26 -0700379 return 0;
380}
dmitry pervushindf17f632009-09-22 16:46:26 -0700381#endif
382
Jingoo Hanef69a7f2013-04-29 16:21:03 -0700383static SIMPLE_DEV_PM_OPS(stmp3xxx_rtc_pm_ops, stmp3xxx_rtc_suspend,
384 stmp3xxx_rtc_resume);
385
Marek Vasutdd8d20a2012-06-26 16:29:27 +0800386static const struct of_device_id rtc_dt_ids[] = {
387 { .compatible = "fsl,stmp3xxx-rtc", },
388 { /* sentinel */ }
389};
390MODULE_DEVICE_TABLE(of, rtc_dt_ids);
391
dmitry pervushindf17f632009-09-22 16:46:26 -0700392static struct platform_driver stmp3xxx_rtcdrv = {
393 .probe = stmp3xxx_rtc_probe,
394 .remove = stmp3xxx_rtc_remove,
dmitry pervushindf17f632009-09-22 16:46:26 -0700395 .driver = {
396 .name = "stmp3xxx-rtc",
Jingoo Hanef69a7f2013-04-29 16:21:03 -0700397 .pm = &stmp3xxx_rtc_pm_ops,
Sachin Kamat462a4652013-11-12 15:10:58 -0800398 .of_match_table = rtc_dt_ids,
dmitry pervushindf17f632009-09-22 16:46:26 -0700399 },
400};
401
Axel Lin0c4eae62012-01-10 15:10:48 -0800402module_platform_driver(stmp3xxx_rtcdrv);
dmitry pervushindf17f632009-09-22 16:46:26 -0700403
404MODULE_DESCRIPTION("STMP3xxx RTC Driver");
Wolfram Sang7e794cb2011-05-25 12:56:53 +0200405MODULE_AUTHOR("dmitry pervushin <dpervushin@embeddedalley.com> and "
406 "Wolfram Sang <w.sang@pengutronix.de>");
dmitry pervushindf17f632009-09-22 16:46:26 -0700407MODULE_LICENSE("GPL");