1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3 * Real time clock device driver for DA9063
4 * Copyright (C) 2013-2015 Dialog Semiconductor Ltd.
5 */
6
7 #include <linux/delay.h>
8 #include <linux/init.h>
9 #include <linux/interrupt.h>
10 #include <linux/kernel.h>
11 #include <linux/module.h>
12 #include <linux/of.h>
13 #include <linux/platform_device.h>
14 #include <linux/pm_wakeirq.h>
15 #include <linux/regmap.h>
16 #include <linux/rtc.h>
17 #include <linux/slab.h>
18
19 #include <linux/mfd/da9062/registers.h>
20 #include <linux/mfd/da9063/registers.h>
21 #include <linux/mfd/da9063/core.h>
22
23 #define YEARS_TO_DA9063(year) ((year) - 100)
24 #define MONTHS_TO_DA9063(month) ((month) + 1)
25 #define YEARS_FROM_DA9063(year) ((year) + 100)
26 #define MONTHS_FROM_DA9063(month) ((month) - 1)
27
28 enum {
29 RTC_SEC = 0,
30 RTC_MIN = 1,
31 RTC_HOUR = 2,
32 RTC_DAY = 3,
33 RTC_MONTH = 4,
34 RTC_YEAR = 5,
35 RTC_DATA_LEN
36 };
37
38 struct da9063_compatible_rtc_regmap {
39 /* REGS */
40 int rtc_enable_reg;
41 int rtc_enable_32k_crystal_reg;
42 int rtc_alarm_secs_reg;
43 int rtc_alarm_year_reg;
44 int rtc_count_secs_reg;
45 int rtc_count_year_reg;
46 int rtc_event_reg;
47 /* MASKS */
48 int rtc_enable_mask;
49 int rtc_crystal_mask;
50 int rtc_event_alarm_mask;
51 int rtc_alarm_on_mask;
52 int rtc_alarm_status_mask;
53 int rtc_tick_on_mask;
54 int rtc_ready_to_read_mask;
55 int rtc_count_sec_mask;
56 int rtc_count_min_mask;
57 int rtc_count_hour_mask;
58 int rtc_count_day_mask;
59 int rtc_count_month_mask;
60 int rtc_count_year_mask;
61 /* ALARM CONFIG */
62 int rtc_data_start;
63 int rtc_alarm_len;
64 };
65
66 struct da9063_compatible_rtc {
67 struct rtc_device *rtc_dev;
68 struct rtc_time alarm_time;
69 struct regmap *regmap;
70 const struct da9063_compatible_rtc_regmap *config;
71 bool rtc_sync;
72 };
73
74 static const struct da9063_compatible_rtc_regmap da9063_ad_regs = {
75 /* REGS */
76 .rtc_enable_reg = DA9063_REG_CONTROL_E,
77 .rtc_alarm_secs_reg = DA9063_AD_REG_ALARM_MI,
78 .rtc_alarm_year_reg = DA9063_AD_REG_ALARM_Y,
79 .rtc_count_secs_reg = DA9063_REG_COUNT_S,
80 .rtc_count_year_reg = DA9063_REG_COUNT_Y,
81 .rtc_event_reg = DA9063_REG_EVENT_A,
82 /* MASKS */
83 .rtc_enable_mask = DA9063_RTC_EN,
84 .rtc_crystal_mask = DA9063_CRYSTAL,
85 .rtc_enable_32k_crystal_reg = DA9063_REG_EN_32K,
86 .rtc_event_alarm_mask = DA9063_E_ALARM,
87 .rtc_alarm_on_mask = DA9063_ALARM_ON,
88 .rtc_alarm_status_mask = DA9063_ALARM_STATUS_ALARM |
89 DA9063_ALARM_STATUS_TICK,
90 .rtc_tick_on_mask = DA9063_TICK_ON,
91 .rtc_ready_to_read_mask = DA9063_RTC_READ,
92 .rtc_count_sec_mask = DA9063_COUNT_SEC_MASK,
93 .rtc_count_min_mask = DA9063_COUNT_MIN_MASK,
94 .rtc_count_hour_mask = DA9063_COUNT_HOUR_MASK,
95 .rtc_count_day_mask = DA9063_COUNT_DAY_MASK,
96 .rtc_count_month_mask = DA9063_COUNT_MONTH_MASK,
97 .rtc_count_year_mask = DA9063_COUNT_YEAR_MASK,
98 /* ALARM CONFIG */
99 .rtc_data_start = RTC_MIN,
100 .rtc_alarm_len = RTC_DATA_LEN - 1,
101 };
102
103 static const struct da9063_compatible_rtc_regmap da9063_bb_regs = {
104 /* REGS */
105 .rtc_enable_reg = DA9063_REG_CONTROL_E,
106 .rtc_alarm_secs_reg = DA9063_BB_REG_ALARM_S,
107 .rtc_alarm_year_reg = DA9063_BB_REG_ALARM_Y,
108 .rtc_count_secs_reg = DA9063_REG_COUNT_S,
109 .rtc_count_year_reg = DA9063_REG_COUNT_Y,
110 .rtc_event_reg = DA9063_REG_EVENT_A,
111 /* MASKS */
112 .rtc_enable_mask = DA9063_RTC_EN,
113 .rtc_crystal_mask = DA9063_CRYSTAL,
114 .rtc_enable_32k_crystal_reg = DA9063_REG_EN_32K,
115 .rtc_event_alarm_mask = DA9063_E_ALARM,
116 .rtc_alarm_on_mask = DA9063_ALARM_ON,
117 .rtc_alarm_status_mask = DA9063_ALARM_STATUS_ALARM |
118 DA9063_ALARM_STATUS_TICK,
119 .rtc_tick_on_mask = DA9063_TICK_ON,
120 .rtc_ready_to_read_mask = DA9063_RTC_READ,
121 .rtc_count_sec_mask = DA9063_COUNT_SEC_MASK,
122 .rtc_count_min_mask = DA9063_COUNT_MIN_MASK,
123 .rtc_count_hour_mask = DA9063_COUNT_HOUR_MASK,
124 .rtc_count_day_mask = DA9063_COUNT_DAY_MASK,
125 .rtc_count_month_mask = DA9063_COUNT_MONTH_MASK,
126 .rtc_count_year_mask = DA9063_COUNT_YEAR_MASK,
127 /* ALARM CONFIG */
128 .rtc_data_start = RTC_SEC,
129 .rtc_alarm_len = RTC_DATA_LEN,
130 };
131
132 static const struct da9063_compatible_rtc_regmap da9062_aa_regs = {
133 /* REGS */
134 .rtc_enable_reg = DA9062AA_CONTROL_E,
135 .rtc_alarm_secs_reg = DA9062AA_ALARM_S,
136 .rtc_alarm_year_reg = DA9062AA_ALARM_Y,
137 .rtc_count_secs_reg = DA9062AA_COUNT_S,
138 .rtc_count_year_reg = DA9062AA_COUNT_Y,
139 .rtc_event_reg = DA9062AA_EVENT_A,
140 /* MASKS */
141 .rtc_enable_mask = DA9062AA_RTC_EN_MASK,
142 .rtc_crystal_mask = DA9062AA_CRYSTAL_MASK,
143 .rtc_enable_32k_crystal_reg = DA9062AA_EN_32K,
144 .rtc_event_alarm_mask = DA9062AA_M_ALARM_MASK,
145 .rtc_alarm_on_mask = DA9062AA_ALARM_ON_MASK,
146 .rtc_alarm_status_mask = (0x02 << 6),
147 .rtc_tick_on_mask = DA9062AA_TICK_ON_MASK,
148 .rtc_ready_to_read_mask = DA9062AA_RTC_READ_MASK,
149 .rtc_count_sec_mask = DA9062AA_COUNT_SEC_MASK,
150 .rtc_count_min_mask = DA9062AA_COUNT_MIN_MASK,
151 .rtc_count_hour_mask = DA9062AA_COUNT_HOUR_MASK,
152 .rtc_count_day_mask = DA9062AA_COUNT_DAY_MASK,
153 .rtc_count_month_mask = DA9062AA_COUNT_MONTH_MASK,
154 .rtc_count_year_mask = DA9062AA_COUNT_YEAR_MASK,
155 /* ALARM CONFIG */
156 .rtc_data_start = RTC_SEC,
157 .rtc_alarm_len = RTC_DATA_LEN,
158 };
159
160 static const struct of_device_id da9063_compatible_reg_id_table[] = {
161 { .compatible = "dlg,da9063-rtc", .data = &da9063_bb_regs },
162 { .compatible = "dlg,da9062-rtc", .data = &da9062_aa_regs },
163 { },
164 };
165 MODULE_DEVICE_TABLE(of, da9063_compatible_reg_id_table);
166
da9063_data_to_tm(u8 * data,struct rtc_time * tm,struct da9063_compatible_rtc * rtc)167 static void da9063_data_to_tm(u8 *data, struct rtc_time *tm,
168 struct da9063_compatible_rtc *rtc)
169 {
170 const struct da9063_compatible_rtc_regmap *config = rtc->config;
171
172 tm->tm_sec = data[RTC_SEC] & config->rtc_count_sec_mask;
173 tm->tm_min = data[RTC_MIN] & config->rtc_count_min_mask;
174 tm->tm_hour = data[RTC_HOUR] & config->rtc_count_hour_mask;
175 tm->tm_mday = data[RTC_DAY] & config->rtc_count_day_mask;
176 tm->tm_mon = MONTHS_FROM_DA9063(data[RTC_MONTH] &
177 config->rtc_count_month_mask);
178 tm->tm_year = YEARS_FROM_DA9063(data[RTC_YEAR] &
179 config->rtc_count_year_mask);
180 }
181
da9063_tm_to_data(struct rtc_time * tm,u8 * data,struct da9063_compatible_rtc * rtc)182 static void da9063_tm_to_data(struct rtc_time *tm, u8 *data,
183 struct da9063_compatible_rtc *rtc)
184 {
185 const struct da9063_compatible_rtc_regmap *config = rtc->config;
186
187 data[RTC_SEC] = tm->tm_sec & config->rtc_count_sec_mask;
188 data[RTC_MIN] = tm->tm_min & config->rtc_count_min_mask;
189 data[RTC_HOUR] = tm->tm_hour & config->rtc_count_hour_mask;
190 data[RTC_DAY] = tm->tm_mday & config->rtc_count_day_mask;
191 data[RTC_MONTH] = MONTHS_TO_DA9063(tm->tm_mon) &
192 config->rtc_count_month_mask;
193 data[RTC_YEAR] = YEARS_TO_DA9063(tm->tm_year) &
194 config->rtc_count_year_mask;
195 }
196
da9063_rtc_alarm_irq_enable(struct device * dev,unsigned int enabled)197 static int da9063_rtc_alarm_irq_enable(struct device *dev,
198 unsigned int enabled)
199 {
200 struct da9063_compatible_rtc *rtc = dev_get_drvdata(dev);
201 const struct da9063_compatible_rtc_regmap *config = rtc->config;
202 u8 set_bit = enabled ? config->rtc_alarm_on_mask : 0;
203
204 return regmap_update_bits(rtc->regmap,
205 config->rtc_alarm_year_reg,
206 config->rtc_alarm_on_mask,
207 set_bit);
208 }
209
da9063_rtc_read_time(struct device * dev,struct rtc_time * tm)210 static int da9063_rtc_read_time(struct device *dev, struct rtc_time *tm)
211 {
212 struct da9063_compatible_rtc *rtc = dev_get_drvdata(dev);
213 const struct da9063_compatible_rtc_regmap *config = rtc->config;
214 unsigned long tm_secs;
215 unsigned long al_secs;
216 u8 data[RTC_DATA_LEN];
217 int ret;
218
219 ret = regmap_bulk_read(rtc->regmap,
220 config->rtc_count_secs_reg,
221 data, RTC_DATA_LEN);
222 if (ret < 0) {
223 dev_err(dev, "Failed to read RTC time data: %d\n", ret);
224 return ret;
225 }
226
227 if (!(data[RTC_SEC] & config->rtc_ready_to_read_mask)) {
228 dev_dbg(dev, "RTC not yet ready to be read by the host\n");
229 return -EINVAL;
230 }
231
232 da9063_data_to_tm(data, tm, rtc);
233
234 tm_secs = rtc_tm_to_time64(tm);
235 al_secs = rtc_tm_to_time64(&rtc->alarm_time);
236
237 /* handle the rtc synchronisation delay */
238 if (rtc->rtc_sync && al_secs - tm_secs == 1)
239 memcpy(tm, &rtc->alarm_time, sizeof(struct rtc_time));
240 else
241 rtc->rtc_sync = false;
242
243 return 0;
244 }
245
da9063_rtc_set_time(struct device * dev,struct rtc_time * tm)246 static int da9063_rtc_set_time(struct device *dev, struct rtc_time *tm)
247 {
248 struct da9063_compatible_rtc *rtc = dev_get_drvdata(dev);
249 const struct da9063_compatible_rtc_regmap *config = rtc->config;
250 u8 data[RTC_DATA_LEN];
251 int ret;
252
253 da9063_tm_to_data(tm, data, rtc);
254 ret = regmap_bulk_write(rtc->regmap,
255 config->rtc_count_secs_reg,
256 data, RTC_DATA_LEN);
257 if (ret < 0)
258 dev_err(dev, "Failed to set RTC time data: %d\n", ret);
259
260 return ret;
261 }
262
da9063_rtc_read_alarm(struct device * dev,struct rtc_wkalrm * alrm)263 static int da9063_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alrm)
264 {
265 struct da9063_compatible_rtc *rtc = dev_get_drvdata(dev);
266 const struct da9063_compatible_rtc_regmap *config = rtc->config;
267 u8 data[RTC_DATA_LEN];
268 int ret;
269 unsigned int val;
270
271 data[RTC_SEC] = 0;
272 ret = regmap_bulk_read(rtc->regmap,
273 config->rtc_alarm_secs_reg,
274 &data[config->rtc_data_start],
275 config->rtc_alarm_len);
276 if (ret < 0)
277 return ret;
278
279 da9063_data_to_tm(data, &alrm->time, rtc);
280
281 alrm->enabled = !!(data[RTC_YEAR] & config->rtc_alarm_on_mask);
282
283 ret = regmap_read(rtc->regmap,
284 config->rtc_event_reg,
285 &val);
286 if (ret < 0)
287 return ret;
288
289 if (val & config->rtc_event_alarm_mask)
290 alrm->pending = 1;
291 else
292 alrm->pending = 0;
293
294 return 0;
295 }
296
da9063_rtc_set_alarm(struct device * dev,struct rtc_wkalrm * alrm)297 static int da9063_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alrm)
298 {
299 struct da9063_compatible_rtc *rtc = dev_get_drvdata(dev);
300 const struct da9063_compatible_rtc_regmap *config = rtc->config;
301 u8 data[RTC_DATA_LEN];
302 int ret;
303
304 da9063_tm_to_data(&alrm->time, data, rtc);
305
306 ret = da9063_rtc_alarm_irq_enable(dev, 0);
307 if (ret < 0) {
308 dev_err(dev, "Failed to stop alarm: %d\n", ret);
309 return ret;
310 }
311
312 ret = regmap_bulk_write(rtc->regmap,
313 config->rtc_alarm_secs_reg,
314 &data[config->rtc_data_start],
315 config->rtc_alarm_len);
316 if (ret < 0) {
317 dev_err(dev, "Failed to write alarm: %d\n", ret);
318 return ret;
319 }
320
321 da9063_data_to_tm(data, &rtc->alarm_time, rtc);
322
323 if (alrm->enabled) {
324 ret = da9063_rtc_alarm_irq_enable(dev, 1);
325 if (ret < 0) {
326 dev_err(dev, "Failed to start alarm: %d\n", ret);
327 return ret;
328 }
329 }
330
331 return ret;
332 }
333
da9063_alarm_event(int irq,void * data)334 static irqreturn_t da9063_alarm_event(int irq, void *data)
335 {
336 struct da9063_compatible_rtc *rtc = data;
337 const struct da9063_compatible_rtc_regmap *config = rtc->config;
338
339 regmap_update_bits(rtc->regmap,
340 config->rtc_alarm_year_reg,
341 config->rtc_alarm_on_mask,
342 0);
343
344 rtc->rtc_sync = true;
345 rtc_update_irq(rtc->rtc_dev, 1, RTC_IRQF | RTC_AF);
346
347 return IRQ_HANDLED;
348 }
349
350 static const struct rtc_class_ops da9063_rtc_ops = {
351 .read_time = da9063_rtc_read_time,
352 .set_time = da9063_rtc_set_time,
353 .read_alarm = da9063_rtc_read_alarm,
354 .set_alarm = da9063_rtc_set_alarm,
355 .alarm_irq_enable = da9063_rtc_alarm_irq_enable,
356 };
357
da9063_rtc_probe(struct platform_device * pdev)358 static int da9063_rtc_probe(struct platform_device *pdev)
359 {
360 struct da9063_compatible_rtc *rtc;
361 const struct da9063_compatible_rtc_regmap *config;
362 int irq_alarm;
363 u8 data[RTC_DATA_LEN];
364 int ret;
365
366 if (!pdev->dev.of_node)
367 return -ENXIO;
368
369 rtc = devm_kzalloc(&pdev->dev, sizeof(*rtc), GFP_KERNEL);
370 if (!rtc)
371 return -ENOMEM;
372
373 rtc->config = device_get_match_data(&pdev->dev);
374 if (of_device_is_compatible(pdev->dev.of_node, "dlg,da9063-rtc")) {
375 struct da9063 *chip = dev_get_drvdata(pdev->dev.parent);
376
377 if (chip->variant_code == PMIC_DA9063_AD)
378 rtc->config = &da9063_ad_regs;
379 }
380
381 rtc->regmap = dev_get_regmap(pdev->dev.parent, NULL);
382 if (!rtc->regmap) {
383 dev_warn(&pdev->dev, "Parent regmap unavailable.\n");
384 return -ENXIO;
385 }
386
387 config = rtc->config;
388 ret = regmap_update_bits(rtc->regmap,
389 config->rtc_enable_reg,
390 config->rtc_enable_mask,
391 config->rtc_enable_mask);
392 if (ret < 0)
393 return dev_err_probe(&pdev->dev, ret, "Failed to enable RTC\n");
394
395 ret = regmap_update_bits(rtc->regmap,
396 config->rtc_enable_32k_crystal_reg,
397 config->rtc_crystal_mask,
398 config->rtc_crystal_mask);
399 if (ret < 0)
400 return dev_err_probe(&pdev->dev, ret,
401 "Failed to run 32kHz oscillator\n");
402
403 ret = regmap_update_bits(rtc->regmap,
404 config->rtc_alarm_secs_reg,
405 config->rtc_alarm_status_mask,
406 0);
407 if (ret < 0)
408 return dev_err_probe(&pdev->dev, ret,
409 "Failed to access RTC alarm register\n");
410
411 ret = regmap_update_bits(rtc->regmap,
412 config->rtc_alarm_secs_reg,
413 DA9063_ALARM_STATUS_ALARM,
414 DA9063_ALARM_STATUS_ALARM);
415 if (ret < 0)
416 return dev_err_probe(&pdev->dev, ret,
417 "Failed to access RTC alarm register\n");
418
419 ret = regmap_update_bits(rtc->regmap,
420 config->rtc_alarm_year_reg,
421 config->rtc_tick_on_mask,
422 0);
423 if (ret < 0)
424 return dev_err_probe(&pdev->dev, ret,
425 "Failed to disable TICKs\n");
426
427 data[RTC_SEC] = 0;
428 ret = regmap_bulk_read(rtc->regmap,
429 config->rtc_alarm_secs_reg,
430 &data[config->rtc_data_start],
431 config->rtc_alarm_len);
432 if (ret < 0)
433 return dev_err_probe(&pdev->dev, ret,
434 "Failed to read initial alarm data\n");
435
436 platform_set_drvdata(pdev, rtc);
437
438 rtc->rtc_dev = devm_rtc_allocate_device(&pdev->dev);
439 if (IS_ERR(rtc->rtc_dev))
440 return PTR_ERR(rtc->rtc_dev);
441
442 rtc->rtc_dev->ops = &da9063_rtc_ops;
443 rtc->rtc_dev->range_min = RTC_TIMESTAMP_BEGIN_2000;
444 rtc->rtc_dev->range_max = RTC_TIMESTAMP_END_2063;
445
446 da9063_data_to_tm(data, &rtc->alarm_time, rtc);
447 rtc->rtc_sync = false;
448
449 if (config->rtc_data_start != RTC_SEC) {
450 set_bit(RTC_FEATURE_ALARM_RES_MINUTE, rtc->rtc_dev->features);
451 /*
452 * TODO: some models have alarms on a minute boundary but still
453 * support real hardware interrupts.
454 */
455 clear_bit(RTC_FEATURE_UPDATE_INTERRUPT, rtc->rtc_dev->features);
456 }
457
458 irq_alarm = platform_get_irq_byname_optional(pdev, "ALARM");
459 if (irq_alarm >= 0) {
460 ret = devm_request_threaded_irq(&pdev->dev, irq_alarm, NULL,
461 da9063_alarm_event,
462 IRQF_TRIGGER_LOW | IRQF_ONESHOT,
463 "ALARM", rtc);
464 if (ret)
465 dev_err(&pdev->dev,
466 "Failed to request ALARM IRQ %d: %d\n",
467 irq_alarm, ret);
468
469 ret = dev_pm_set_wake_irq(&pdev->dev, irq_alarm);
470 if (ret)
471 dev_warn(&pdev->dev,
472 "Failed to set IRQ %d as a wake IRQ: %d\n",
473 irq_alarm, ret);
474
475 device_init_wakeup(&pdev->dev, true);
476 } else if (irq_alarm != -ENXIO) {
477 return irq_alarm;
478 } else {
479 clear_bit(RTC_FEATURE_ALARM, rtc->rtc_dev->features);
480 }
481
482 return devm_rtc_register_device(rtc->rtc_dev);
483 }
484
485 static struct platform_driver da9063_rtc_driver = {
486 .probe = da9063_rtc_probe,
487 .driver = {
488 .name = DA9063_DRVNAME_RTC,
489 .of_match_table = da9063_compatible_reg_id_table,
490 },
491 };
492
493 module_platform_driver(da9063_rtc_driver);
494
495 MODULE_AUTHOR("S Twiss <stwiss.opensource@diasemi.com>");
496 MODULE_DESCRIPTION("Real time clock device driver for Dialog DA9063");
497 MODULE_LICENSE("GPL");
498