rtc-rx8025.c 14 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Driver for Epson's RTC module RX-8025 SA/NB
  4. *
  5. * Copyright (C) 2009 Wolfgang Grandegger <wg@grandegger.com>
  6. *
  7. * Copyright (C) 2005 by Digi International Inc.
  8. * All rights reserved.
  9. *
  10. * Modified by fengjh at rising.com.cn
  11. * <lm-sensors@lm-sensors.org>
  12. * 2006.11
  13. *
  14. * Code cleanup by Sergei Poselenov, <sposelenov@emcraft.com>
  15. * Converted to new style by Wolfgang Grandegger <wg@grandegger.com>
  16. * Alarm and periodic interrupt added by Dmitry Rakhchev <rda@emcraft.com>
  17. */
  18. #include <linux/bcd.h>
  19. #include <linux/bitops.h>
  20. #include <linux/i2c.h>
  21. #include <linux/kernel.h>
  22. #include <linux/kstrtox.h>
  23. #include <linux/module.h>
  24. #include <linux/rtc.h>
  25. /* Register definitions */
  26. #define RX8025_REG_SEC 0x00
  27. #define RX8025_REG_MIN 0x01
  28. #define RX8025_REG_HOUR 0x02
  29. #define RX8025_REG_WDAY 0x03
  30. #define RX8025_REG_MDAY 0x04
  31. #define RX8025_REG_MONTH 0x05
  32. #define RX8025_REG_YEAR 0x06
  33. #define RX8025_REG_DIGOFF 0x07
  34. #define RX8025_REG_ALWMIN 0x08
  35. #define RX8025_REG_ALWHOUR 0x09
  36. #define RX8025_REG_ALWWDAY 0x0a
  37. #define RX8025_REG_ALDMIN 0x0b
  38. #define RX8025_REG_ALDHOUR 0x0c
  39. /* 0x0d is reserved */
  40. #define RX8025_REG_CTRL1 0x0e
  41. #define RX8025_REG_CTRL2 0x0f
  42. #define RX8025_BIT_CTRL1_CT (7 << 0)
  43. /* 1 Hz periodic level irq */
  44. #define RX8025_BIT_CTRL1_CT_1HZ 4
  45. #define RX8025_BIT_CTRL1_TEST BIT(3)
  46. #define RX8025_BIT_CTRL1_1224 BIT(5)
  47. #define RX8025_BIT_CTRL1_DALE BIT(6)
  48. #define RX8025_BIT_CTRL1_WALE BIT(7)
  49. #define RX8025_BIT_CTRL2_DAFG BIT(0)
  50. #define RX8025_BIT_CTRL2_WAFG BIT(1)
  51. #define RX8025_BIT_CTRL2_CTFG BIT(2)
  52. #define RX8025_BIT_CTRL2_PON BIT(4)
  53. #define RX8025_BIT_CTRL2_XST BIT(5)
  54. #define RX8025_BIT_CTRL2_VDET BIT(6)
  55. #define RX8035_BIT_HOUR_1224 BIT(7)
  56. /* Clock precision adjustment */
  57. #define RX8025_ADJ_RESOLUTION 3050 /* in ppb */
  58. #define RX8025_ADJ_DATA_MAX 62
  59. #define RX8025_ADJ_DATA_MIN -62
  60. enum rx_model {
  61. model_rx_unknown,
  62. model_rx_8025,
  63. model_rx_8035,
  64. model_last
  65. };
  66. static const struct i2c_device_id rx8025_id[] = {
  67. { "rx8025", model_rx_8025 },
  68. { "rx8035", model_rx_8035 },
  69. { }
  70. };
  71. MODULE_DEVICE_TABLE(i2c, rx8025_id);
  72. struct rx8025_data {
  73. struct rtc_device *rtc;
  74. enum rx_model model;
  75. u8 ctrl1;
  76. int is_24;
  77. };
  78. static s32 rx8025_read_reg(const struct i2c_client *client, u8 number)
  79. {
  80. return i2c_smbus_read_byte_data(client, number << 4);
  81. }
  82. static int rx8025_read_regs(const struct i2c_client *client,
  83. u8 number, u8 length, u8 *values)
  84. {
  85. int ret = i2c_smbus_read_i2c_block_data(client, number << 4, length,
  86. values);
  87. if (ret != length)
  88. return ret < 0 ? ret : -EIO;
  89. return 0;
  90. }
  91. static s32 rx8025_write_reg(const struct i2c_client *client, u8 number,
  92. u8 value)
  93. {
  94. return i2c_smbus_write_byte_data(client, number << 4, value);
  95. }
  96. static s32 rx8025_write_regs(const struct i2c_client *client,
  97. u8 number, u8 length, const u8 *values)
  98. {
  99. return i2c_smbus_write_i2c_block_data(client, number << 4,
  100. length, values);
  101. }
  102. static int rx8025_is_osc_stopped(enum rx_model model, int ctrl2)
  103. {
  104. int xstp = ctrl2 & RX8025_BIT_CTRL2_XST;
  105. /* XSTP bit has different polarity on RX-8025 vs RX-8035.
  106. * RX-8025: 0 == oscillator stopped
  107. * RX-8035: 1 == oscillator stopped
  108. */
  109. if (model == model_rx_8025)
  110. xstp = !xstp;
  111. return xstp;
  112. }
  113. static int rx8025_check_validity(struct device *dev)
  114. {
  115. struct i2c_client *client = to_i2c_client(dev);
  116. struct rx8025_data *drvdata = dev_get_drvdata(dev);
  117. int ctrl2;
  118. int xstp;
  119. ctrl2 = rx8025_read_reg(client, RX8025_REG_CTRL2);
  120. if (ctrl2 < 0)
  121. return ctrl2;
  122. if (ctrl2 & RX8025_BIT_CTRL2_VDET)
  123. dev_warn(dev, "power voltage drop detected\n");
  124. if (ctrl2 & RX8025_BIT_CTRL2_PON) {
  125. dev_warn(dev, "power-on reset detected, date is invalid\n");
  126. return -EINVAL;
  127. }
  128. xstp = rx8025_is_osc_stopped(drvdata->model, ctrl2);
  129. if (xstp) {
  130. dev_warn(dev, "crystal stopped, date is invalid\n");
  131. return -EINVAL;
  132. }
  133. return 0;
  134. }
  135. static int rx8025_reset_validity(struct i2c_client *client)
  136. {
  137. struct rx8025_data *drvdata = i2c_get_clientdata(client);
  138. int ctrl2 = rx8025_read_reg(client, RX8025_REG_CTRL2);
  139. if (ctrl2 < 0)
  140. return ctrl2;
  141. ctrl2 &= ~(RX8025_BIT_CTRL2_PON | RX8025_BIT_CTRL2_VDET);
  142. if (drvdata->model == model_rx_8025)
  143. ctrl2 |= RX8025_BIT_CTRL2_XST;
  144. else
  145. ctrl2 &= ~(RX8025_BIT_CTRL2_XST);
  146. return rx8025_write_reg(client, RX8025_REG_CTRL2,
  147. ctrl2);
  148. }
  149. static irqreturn_t rx8025_handle_irq(int irq, void *dev_id)
  150. {
  151. struct i2c_client *client = dev_id;
  152. struct rx8025_data *rx8025 = i2c_get_clientdata(client);
  153. int status, xstp;
  154. rtc_lock(rx8025->rtc);
  155. status = rx8025_read_reg(client, RX8025_REG_CTRL2);
  156. if (status < 0)
  157. goto out;
  158. xstp = rx8025_is_osc_stopped(rx8025->model, status);
  159. if (xstp)
  160. dev_warn(&client->dev, "Oscillation stop was detected,"
  161. "you may have to readjust the clock\n");
  162. if (status & RX8025_BIT_CTRL2_CTFG) {
  163. /* periodic */
  164. status &= ~RX8025_BIT_CTRL2_CTFG;
  165. rtc_update_irq(rx8025->rtc, 1, RTC_PF | RTC_IRQF);
  166. }
  167. if (status & RX8025_BIT_CTRL2_DAFG) {
  168. /* alarm */
  169. status &= RX8025_BIT_CTRL2_DAFG;
  170. if (rx8025_write_reg(client, RX8025_REG_CTRL1,
  171. rx8025->ctrl1 & ~RX8025_BIT_CTRL1_DALE))
  172. goto out;
  173. rtc_update_irq(rx8025->rtc, 1, RTC_AF | RTC_IRQF);
  174. }
  175. out:
  176. rtc_unlock(rx8025->rtc);
  177. return IRQ_HANDLED;
  178. }
  179. static int rx8025_get_time(struct device *dev, struct rtc_time *dt)
  180. {
  181. struct i2c_client *client = to_i2c_client(dev);
  182. struct rx8025_data *rx8025 = dev_get_drvdata(dev);
  183. u8 date[7];
  184. int err;
  185. err = rx8025_check_validity(dev);
  186. if (err)
  187. return err;
  188. err = rx8025_read_regs(client, RX8025_REG_SEC, 7, date);
  189. if (err)
  190. return err;
  191. dev_dbg(dev, "%s: read %7ph\n", __func__, date);
  192. dt->tm_sec = bcd2bin(date[RX8025_REG_SEC] & 0x7f);
  193. dt->tm_min = bcd2bin(date[RX8025_REG_MIN] & 0x7f);
  194. if (rx8025->is_24)
  195. dt->tm_hour = bcd2bin(date[RX8025_REG_HOUR] & 0x3f);
  196. else
  197. dt->tm_hour = bcd2bin(date[RX8025_REG_HOUR] & 0x1f) % 12
  198. + (date[RX8025_REG_HOUR] & 0x20 ? 12 : 0);
  199. dt->tm_mday = bcd2bin(date[RX8025_REG_MDAY] & 0x3f);
  200. dt->tm_mon = bcd2bin(date[RX8025_REG_MONTH] & 0x1f) - 1;
  201. dt->tm_year = bcd2bin(date[RX8025_REG_YEAR]) + 100;
  202. dev_dbg(dev, "%s: date %ptRr\n", __func__, dt);
  203. return 0;
  204. }
  205. static int rx8025_set_time(struct device *dev, struct rtc_time *dt)
  206. {
  207. struct i2c_client *client = to_i2c_client(dev);
  208. struct rx8025_data *rx8025 = dev_get_drvdata(dev);
  209. u8 date[7];
  210. int ret;
  211. /*
  212. * Here the read-only bits are written as "0". I'm not sure if that
  213. * is sound.
  214. */
  215. date[RX8025_REG_SEC] = bin2bcd(dt->tm_sec);
  216. date[RX8025_REG_MIN] = bin2bcd(dt->tm_min);
  217. if (rx8025->is_24)
  218. date[RX8025_REG_HOUR] = bin2bcd(dt->tm_hour);
  219. else
  220. date[RX8025_REG_HOUR] = (dt->tm_hour >= 12 ? 0x20 : 0)
  221. | bin2bcd((dt->tm_hour + 11) % 12 + 1);
  222. date[RX8025_REG_WDAY] = bin2bcd(dt->tm_wday);
  223. date[RX8025_REG_MDAY] = bin2bcd(dt->tm_mday);
  224. date[RX8025_REG_MONTH] = bin2bcd(dt->tm_mon + 1);
  225. date[RX8025_REG_YEAR] = bin2bcd(dt->tm_year - 100);
  226. dev_dbg(dev, "%s: write %7ph\n", __func__, date);
  227. ret = rx8025_write_regs(client, RX8025_REG_SEC, 7, date);
  228. if (ret < 0)
  229. return ret;
  230. return rx8025_reset_validity(client);
  231. }
  232. static int rx8025_init_client(struct i2c_client *client)
  233. {
  234. struct rx8025_data *rx8025 = i2c_get_clientdata(client);
  235. u8 ctrl[2], ctrl2;
  236. int need_clear = 0;
  237. int hour_reg;
  238. int err;
  239. err = rx8025_read_regs(client, RX8025_REG_CTRL1, 2, ctrl);
  240. if (err)
  241. goto out;
  242. /* Keep test bit zero ! */
  243. rx8025->ctrl1 = ctrl[0] & ~RX8025_BIT_CTRL1_TEST;
  244. if (ctrl[1] & (RX8025_BIT_CTRL2_DAFG | RX8025_BIT_CTRL2_WAFG)) {
  245. dev_warn(&client->dev, "Alarm was detected\n");
  246. need_clear = 1;
  247. }
  248. if (ctrl[1] & RX8025_BIT_CTRL2_CTFG)
  249. need_clear = 1;
  250. if (need_clear) {
  251. ctrl2 = ctrl[1];
  252. ctrl2 &= ~(RX8025_BIT_CTRL2_CTFG | RX8025_BIT_CTRL2_WAFG |
  253. RX8025_BIT_CTRL2_DAFG);
  254. err = rx8025_write_reg(client, RX8025_REG_CTRL2, ctrl2);
  255. }
  256. if (rx8025->model == model_rx_8035) {
  257. /* In RX-8035, 12/24 flag is in the hour register */
  258. hour_reg = rx8025_read_reg(client, RX8025_REG_HOUR);
  259. if (hour_reg < 0)
  260. return hour_reg;
  261. rx8025->is_24 = (hour_reg & RX8035_BIT_HOUR_1224);
  262. } else {
  263. rx8025->is_24 = (ctrl[1] & RX8025_BIT_CTRL1_1224);
  264. }
  265. out:
  266. return err;
  267. }
  268. /* Alarm support */
  269. static int rx8025_read_alarm(struct device *dev, struct rtc_wkalrm *t)
  270. {
  271. struct i2c_client *client = to_i2c_client(dev);
  272. struct rx8025_data *rx8025 = dev_get_drvdata(dev);
  273. u8 ald[2];
  274. int ctrl2, err;
  275. err = rx8025_read_regs(client, RX8025_REG_ALDMIN, 2, ald);
  276. if (err)
  277. return err;
  278. ctrl2 = rx8025_read_reg(client, RX8025_REG_CTRL2);
  279. if (ctrl2 < 0)
  280. return ctrl2;
  281. dev_dbg(dev, "%s: read alarm 0x%02x 0x%02x ctrl2 %02x\n",
  282. __func__, ald[0], ald[1], ctrl2);
  283. /* Hardware alarms precision is 1 minute! */
  284. t->time.tm_sec = 0;
  285. t->time.tm_min = bcd2bin(ald[0] & 0x7f);
  286. if (rx8025->is_24)
  287. t->time.tm_hour = bcd2bin(ald[1] & 0x3f);
  288. else
  289. t->time.tm_hour = bcd2bin(ald[1] & 0x1f) % 12
  290. + (ald[1] & 0x20 ? 12 : 0);
  291. dev_dbg(dev, "%s: date: %ptRr\n", __func__, &t->time);
  292. t->enabled = !!(rx8025->ctrl1 & RX8025_BIT_CTRL1_DALE);
  293. t->pending = (ctrl2 & RX8025_BIT_CTRL2_DAFG) && t->enabled;
  294. return err;
  295. }
  296. static int rx8025_set_alarm(struct device *dev, struct rtc_wkalrm *t)
  297. {
  298. struct i2c_client *client = to_i2c_client(dev);
  299. struct rx8025_data *rx8025 = dev_get_drvdata(dev);
  300. u8 ald[2];
  301. int err;
  302. ald[0] = bin2bcd(t->time.tm_min);
  303. if (rx8025->is_24)
  304. ald[1] = bin2bcd(t->time.tm_hour);
  305. else
  306. ald[1] = (t->time.tm_hour >= 12 ? 0x20 : 0)
  307. | bin2bcd((t->time.tm_hour + 11) % 12 + 1);
  308. dev_dbg(dev, "%s: write 0x%02x 0x%02x\n", __func__, ald[0], ald[1]);
  309. if (rx8025->ctrl1 & RX8025_BIT_CTRL1_DALE) {
  310. rx8025->ctrl1 &= ~RX8025_BIT_CTRL1_DALE;
  311. err = rx8025_write_reg(client, RX8025_REG_CTRL1,
  312. rx8025->ctrl1);
  313. if (err)
  314. return err;
  315. }
  316. err = rx8025_write_regs(client, RX8025_REG_ALDMIN, 2, ald);
  317. if (err)
  318. return err;
  319. if (t->enabled) {
  320. rx8025->ctrl1 |= RX8025_BIT_CTRL1_DALE;
  321. err = rx8025_write_reg(client, RX8025_REG_CTRL1,
  322. rx8025->ctrl1);
  323. if (err)
  324. return err;
  325. }
  326. return 0;
  327. }
  328. static int rx8025_alarm_irq_enable(struct device *dev, unsigned int enabled)
  329. {
  330. struct i2c_client *client = to_i2c_client(dev);
  331. struct rx8025_data *rx8025 = dev_get_drvdata(dev);
  332. u8 ctrl1;
  333. int err;
  334. ctrl1 = rx8025->ctrl1;
  335. if (enabled)
  336. ctrl1 |= RX8025_BIT_CTRL1_DALE;
  337. else
  338. ctrl1 &= ~RX8025_BIT_CTRL1_DALE;
  339. if (ctrl1 != rx8025->ctrl1) {
  340. rx8025->ctrl1 = ctrl1;
  341. err = rx8025_write_reg(client, RX8025_REG_CTRL1,
  342. rx8025->ctrl1);
  343. if (err)
  344. return err;
  345. }
  346. return 0;
  347. }
  348. /*
  349. * According to the RX8025 SA/NB application manual the frequency and
  350. * temperature characteristics can be approximated using the following
  351. * equation:
  352. *
  353. * df = a * (ut - t)**2
  354. *
  355. * df: Frequency deviation in any temperature
  356. * a : Coefficient = (-35 +-5) * 10**-9
  357. * ut: Ultimate temperature in degree = +25 +-5 degree
  358. * t : Any temperature in degree
  359. */
  360. static int rx8025_read_offset(struct device *dev, long *offset)
  361. {
  362. struct i2c_client *client = to_i2c_client(dev);
  363. int digoff;
  364. digoff = rx8025_read_reg(client, RX8025_REG_DIGOFF);
  365. if (digoff < 0)
  366. return digoff;
  367. *offset = digoff >= 64 ? digoff - 128 : digoff;
  368. if (*offset > 0)
  369. (*offset)--;
  370. *offset *= RX8025_ADJ_RESOLUTION;
  371. return 0;
  372. }
  373. static int rx8025_set_offset(struct device *dev, long offset)
  374. {
  375. struct i2c_client *client = to_i2c_client(dev);
  376. u8 digoff;
  377. offset /= RX8025_ADJ_RESOLUTION;
  378. if (offset > RX8025_ADJ_DATA_MAX)
  379. offset = RX8025_ADJ_DATA_MAX;
  380. else if (offset < RX8025_ADJ_DATA_MIN)
  381. offset = RX8025_ADJ_DATA_MIN;
  382. else if (offset > 0)
  383. offset++;
  384. else if (offset < 0)
  385. offset += 128;
  386. digoff = offset;
  387. return rx8025_write_reg(client, RX8025_REG_DIGOFF, digoff);
  388. }
  389. static const struct rtc_class_ops rx8025_rtc_ops = {
  390. .read_time = rx8025_get_time,
  391. .set_time = rx8025_set_time,
  392. .read_alarm = rx8025_read_alarm,
  393. .set_alarm = rx8025_set_alarm,
  394. .alarm_irq_enable = rx8025_alarm_irq_enable,
  395. .read_offset = rx8025_read_offset,
  396. .set_offset = rx8025_set_offset,
  397. };
  398. static ssize_t rx8025_sysfs_show_clock_adjust(struct device *dev,
  399. struct device_attribute *attr,
  400. char *buf)
  401. {
  402. long adj;
  403. int err;
  404. dev_warn_once(dev, "clock_adjust_ppb is deprecated, use offset\n");
  405. err = rx8025_read_offset(dev, &adj);
  406. if (err)
  407. return err;
  408. return sprintf(buf, "%ld\n", -adj);
  409. }
  410. static ssize_t rx8025_sysfs_store_clock_adjust(struct device *dev,
  411. struct device_attribute *attr,
  412. const char *buf, size_t count)
  413. {
  414. long adj;
  415. int err;
  416. dev_warn_once(dev, "clock_adjust_ppb is deprecated, use offset\n");
  417. if (kstrtol(buf, 10, &adj) != 0)
  418. return -EINVAL;
  419. err = rx8025_set_offset(dev, -adj);
  420. return err ? err : count;
  421. }
  422. static DEVICE_ATTR(clock_adjust_ppb, S_IRUGO | S_IWUSR,
  423. rx8025_sysfs_show_clock_adjust,
  424. rx8025_sysfs_store_clock_adjust);
  425. static struct attribute *rx8025_attrs[] = {
  426. &dev_attr_clock_adjust_ppb.attr,
  427. NULL
  428. };
  429. static const struct attribute_group rx8025_attr_group = {
  430. .attrs = rx8025_attrs,
  431. };
  432. static int rx8025_probe(struct i2c_client *client)
  433. {
  434. const struct i2c_device_id *id = i2c_match_id(rx8025_id, client);
  435. struct i2c_adapter *adapter = client->adapter;
  436. struct rx8025_data *rx8025;
  437. int err = 0;
  438. if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA
  439. | I2C_FUNC_SMBUS_I2C_BLOCK)) {
  440. dev_err(&adapter->dev,
  441. "doesn't support required functionality\n");
  442. return -EIO;
  443. }
  444. rx8025 = devm_kzalloc(&client->dev, sizeof(*rx8025), GFP_KERNEL);
  445. if (!rx8025)
  446. return -ENOMEM;
  447. i2c_set_clientdata(client, rx8025);
  448. if (id)
  449. rx8025->model = id->driver_data;
  450. err = rx8025_init_client(client);
  451. if (err)
  452. return err;
  453. rx8025->rtc = devm_rtc_allocate_device(&client->dev);
  454. if (IS_ERR(rx8025->rtc))
  455. return PTR_ERR(rx8025->rtc);
  456. rx8025->rtc->ops = &rx8025_rtc_ops;
  457. rx8025->rtc->range_min = RTC_TIMESTAMP_BEGIN_1900;
  458. rx8025->rtc->range_max = RTC_TIMESTAMP_END_2099;
  459. if (client->irq > 0) {
  460. dev_info(&client->dev, "IRQ %d supplied\n", client->irq);
  461. err = devm_request_threaded_irq(&client->dev, client->irq, NULL,
  462. rx8025_handle_irq,
  463. IRQF_ONESHOT,
  464. "rx8025", client);
  465. if (err)
  466. clear_bit(RTC_FEATURE_ALARM, rx8025->rtc->features);
  467. }
  468. rx8025->rtc->max_user_freq = 1;
  469. set_bit(RTC_FEATURE_ALARM_RES_MINUTE, rx8025->rtc->features);
  470. clear_bit(RTC_FEATURE_UPDATE_INTERRUPT, rx8025->rtc->features);
  471. err = rtc_add_group(rx8025->rtc, &rx8025_attr_group);
  472. if (err)
  473. return err;
  474. return devm_rtc_register_device(rx8025->rtc);
  475. }
  476. static struct i2c_driver rx8025_driver = {
  477. .driver = {
  478. .name = "rtc-rx8025",
  479. },
  480. .probe = rx8025_probe,
  481. .id_table = rx8025_id,
  482. };
  483. module_i2c_driver(rx8025_driver);
  484. MODULE_AUTHOR("Wolfgang Grandegger <wg@grandegger.com>");
  485. MODULE_DESCRIPTION("RX-8025 SA/NB RTC driver");
  486. MODULE_LICENSE("GPL");