2 * Freescale STMP37XX/STMP378X Real Time Clock driver
4 * Copyright (c) 2007 Sigmatel, Inc.
5 * Peter Hartley, <peter.hartley@sigmatel.com>
7 * Copyright 2008 Freescale Semiconductor, Inc. All Rights Reserved.
8 * Copyright 2008 Embedded Alley Solutions, Inc All Rights Reserved.
9 * Copyright 2011 Wolfram Sang, Pengutronix e.K.
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:
17 * http://www.opensource.org/licenses/gpl-license.html
18 * http://www.gnu.org/copyleft/gpl.html
20 #include <linux/kernel.h>
21 #include <linux/module.h>
23 #include <linux/init.h>
24 #include <linux/platform_device.h>
25 #include <linux/interrupt.h>
26 #include <linux/rtc.h>
27 #include <linux/slab.h>
28 #include <linux/of_device.h>
30 #include <mach/common.h>
32 #define STMP3XXX_RTC_CTRL 0x0
33 #define STMP3XXX_RTC_CTRL_SET 0x4
34 #define STMP3XXX_RTC_CTRL_CLR 0x8
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
39 #define STMP3XXX_RTC_STAT 0x10
40 #define STMP3XXX_RTC_STAT_STALE_SHIFT 16
41 #define STMP3XXX_RTC_STAT_RTC_PRESENT 0x80000000
43 #define STMP3XXX_RTC_SECONDS 0x30
45 #define STMP3XXX_RTC_ALARM 0x40
47 #define STMP3XXX_RTC_PERSISTENT0 0x60
48 #define STMP3XXX_RTC_PERSISTENT0_SET 0x64
49 #define STMP3XXX_RTC_PERSISTENT0_CLR 0x68
50 #define STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN 0x00000002
51 #define STMP3XXX_RTC_PERSISTENT0_ALARM_EN 0x00000004
52 #define STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE 0x00000080
54 struct stmp3xxx_rtc_data
{
55 struct rtc_device
*rtc
;
60 static void stmp3xxx_wait_time(struct stmp3xxx_rtc_data
*rtc_data
)
63 * The datasheet doesn't say which way round the
64 * NEW_REGS/STALE_REGS bitfields go. In fact it's 0x1=P0,
65 * 0x2=P1, .., 0x20=P5, 0x40=ALARM, 0x80=SECONDS
67 while (readl(rtc_data
->io
+ STMP3XXX_RTC_STAT
) &
68 (0x80 << STMP3XXX_RTC_STAT_STALE_SHIFT
))
73 static int stmp3xxx_rtc_gettime(struct device
*dev
, struct rtc_time
*rtc_tm
)
75 struct stmp3xxx_rtc_data
*rtc_data
= dev_get_drvdata(dev
);
77 stmp3xxx_wait_time(rtc_data
);
78 rtc_time_to_tm(readl(rtc_data
->io
+ STMP3XXX_RTC_SECONDS
), rtc_tm
);
82 static int stmp3xxx_rtc_set_mmss(struct device
*dev
, unsigned long t
)
84 struct stmp3xxx_rtc_data
*rtc_data
= dev_get_drvdata(dev
);
86 writel(t
, rtc_data
->io
+ STMP3XXX_RTC_SECONDS
);
87 stmp3xxx_wait_time(rtc_data
);
91 /* interrupt(s) handler */
92 static irqreturn_t
stmp3xxx_rtc_interrupt(int irq
, void *dev_id
)
94 struct stmp3xxx_rtc_data
*rtc_data
= dev_get_drvdata(dev_id
);
95 u32 status
= readl(rtc_data
->io
+ STMP3XXX_RTC_CTRL
);
97 if (status
& STMP3XXX_RTC_CTRL_ALARM_IRQ
) {
98 writel(STMP3XXX_RTC_CTRL_ALARM_IRQ
,
99 rtc_data
->io
+ STMP3XXX_RTC_CTRL_CLR
);
100 rtc_update_irq(rtc_data
->rtc
, 1, RTC_AF
| RTC_IRQF
);
107 static int stmp3xxx_alarm_irq_enable(struct device
*dev
, unsigned int enabled
)
109 struct stmp3xxx_rtc_data
*rtc_data
= dev_get_drvdata(dev
);
112 writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN
|
113 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN
,
114 rtc_data
->io
+ STMP3XXX_RTC_PERSISTENT0_SET
);
115 writel(STMP3XXX_RTC_CTRL_ALARM_IRQ_EN
,
116 rtc_data
->io
+ STMP3XXX_RTC_CTRL_SET
);
118 writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN
|
119 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN
,
120 rtc_data
->io
+ STMP3XXX_RTC_PERSISTENT0_CLR
);
121 writel(STMP3XXX_RTC_CTRL_ALARM_IRQ_EN
,
122 rtc_data
->io
+ STMP3XXX_RTC_CTRL_CLR
);
127 static int stmp3xxx_rtc_read_alarm(struct device
*dev
, struct rtc_wkalrm
*alm
)
129 struct stmp3xxx_rtc_data
*rtc_data
= dev_get_drvdata(dev
);
131 rtc_time_to_tm(readl(rtc_data
->io
+ STMP3XXX_RTC_ALARM
), &alm
->time
);
135 static int stmp3xxx_rtc_set_alarm(struct device
*dev
, struct rtc_wkalrm
*alm
)
138 struct stmp3xxx_rtc_data
*rtc_data
= dev_get_drvdata(dev
);
140 rtc_tm_to_time(&alm
->time
, &t
);
141 writel(t
, rtc_data
->io
+ STMP3XXX_RTC_ALARM
);
143 stmp3xxx_alarm_irq_enable(dev
, alm
->enabled
);
148 static struct rtc_class_ops stmp3xxx_rtc_ops
= {
150 stmp3xxx_alarm_irq_enable
,
151 .read_time
= stmp3xxx_rtc_gettime
,
152 .set_mmss
= stmp3xxx_rtc_set_mmss
,
153 .read_alarm
= stmp3xxx_rtc_read_alarm
,
154 .set_alarm
= stmp3xxx_rtc_set_alarm
,
157 static int stmp3xxx_rtc_remove(struct platform_device
*pdev
)
159 struct stmp3xxx_rtc_data
*rtc_data
= platform_get_drvdata(pdev
);
164 writel(STMP3XXX_RTC_CTRL_ALARM_IRQ_EN
,
165 rtc_data
->io
+ STMP3XXX_RTC_CTRL_CLR
);
166 free_irq(rtc_data
->irq_alarm
, &pdev
->dev
);
167 rtc_device_unregister(rtc_data
->rtc
);
168 platform_set_drvdata(pdev
, NULL
);
169 iounmap(rtc_data
->io
);
175 static int stmp3xxx_rtc_probe(struct platform_device
*pdev
)
177 struct stmp3xxx_rtc_data
*rtc_data
;
181 rtc_data
= kzalloc(sizeof *rtc_data
, GFP_KERNEL
);
185 r
= platform_get_resource(pdev
, IORESOURCE_MEM
, 0);
187 dev_err(&pdev
->dev
, "failed to get resource\n");
192 rtc_data
->io
= ioremap(r
->start
, resource_size(r
));
194 dev_err(&pdev
->dev
, "ioremap failed\n");
199 rtc_data
->irq_alarm
= platform_get_irq(pdev
, 0);
201 if (!(readl(STMP3XXX_RTC_STAT
+ rtc_data
->io
) &
202 STMP3XXX_RTC_STAT_RTC_PRESENT
)) {
203 dev_err(&pdev
->dev
, "no device onboard\n");
208 platform_set_drvdata(pdev
, rtc_data
);
210 mxs_reset_block(rtc_data
->io
);
211 writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN
|
212 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN
|
213 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE
,
214 rtc_data
->io
+ STMP3XXX_RTC_PERSISTENT0_CLR
);
216 writel(STMP3XXX_RTC_CTRL_ONEMSEC_IRQ_EN
|
217 STMP3XXX_RTC_CTRL_ALARM_IRQ_EN
,
218 rtc_data
->io
+ STMP3XXX_RTC_CTRL_CLR
);
220 rtc_data
->rtc
= rtc_device_register(pdev
->name
, &pdev
->dev
,
221 &stmp3xxx_rtc_ops
, THIS_MODULE
);
222 if (IS_ERR(rtc_data
->rtc
)) {
223 err
= PTR_ERR(rtc_data
->rtc
);
227 err
= request_irq(rtc_data
->irq_alarm
, stmp3xxx_rtc_interrupt
, 0,
228 "RTC alarm", &pdev
->dev
);
230 dev_err(&pdev
->dev
, "Cannot claim IRQ%d\n",
231 rtc_data
->irq_alarm
);
238 rtc_device_unregister(rtc_data
->rtc
);
240 platform_set_drvdata(pdev
, NULL
);
241 iounmap(rtc_data
->io
);
248 static int stmp3xxx_rtc_suspend(struct platform_device
*dev
, pm_message_t state
)
253 static int stmp3xxx_rtc_resume(struct platform_device
*dev
)
255 struct stmp3xxx_rtc_data
*rtc_data
= platform_get_drvdata(dev
);
257 mxs_reset_block(rtc_data
->io
);
258 writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN
|
259 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN
|
260 STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE
,
261 rtc_data
->io
+ STMP3XXX_RTC_PERSISTENT0_CLR
);
265 #define stmp3xxx_rtc_suspend NULL
266 #define stmp3xxx_rtc_resume NULL
269 static const struct of_device_id rtc_dt_ids
[] = {
270 { .compatible
= "fsl,stmp3xxx-rtc", },
273 MODULE_DEVICE_TABLE(of
, rtc_dt_ids
);
275 static struct platform_driver stmp3xxx_rtcdrv
= {
276 .probe
= stmp3xxx_rtc_probe
,
277 .remove
= stmp3xxx_rtc_remove
,
278 .suspend
= stmp3xxx_rtc_suspend
,
279 .resume
= stmp3xxx_rtc_resume
,
281 .name
= "stmp3xxx-rtc",
282 .owner
= THIS_MODULE
,
283 .of_match_table
= rtc_dt_ids
,
287 module_platform_driver(stmp3xxx_rtcdrv
);
289 MODULE_DESCRIPTION("STMP3xxx RTC Driver");
290 MODULE_AUTHOR("dmitry pervushin <dpervushin@embeddedalley.com> and "
291 "Wolfram Sang <w.sang@pengutronix.de>");
292 MODULE_LICENSE("GPL");