rtc-mv.c 8.5 KB

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  1. /*
  2. * Driver for the RTC in Marvell SoCs.
  3. *
  4. * This file is licensed under the terms of the GNU General Public
  5. * License version 2. This program is licensed "as is" without any
  6. * warranty of any kind, whether express or implied.
  7. */
  8. #include <linux/init.h>
  9. #include <linux/kernel.h>
  10. #include <linux/rtc.h>
  11. #include <linux/bcd.h>
  12. #include <linux/io.h>
  13. #include <linux/platform_device.h>
  14. #include <linux/delay.h>
  15. #define RTC_TIME_REG_OFFS 0
  16. #define RTC_SECONDS_OFFS 0
  17. #define RTC_MINUTES_OFFS 8
  18. #define RTC_HOURS_OFFS 16
  19. #define RTC_WDAY_OFFS 24
  20. #define RTC_HOURS_12H_MODE (1 << 22) /* 12 hours mode */
  21. #define RTC_DATE_REG_OFFS 4
  22. #define RTC_MDAY_OFFS 0
  23. #define RTC_MONTH_OFFS 8
  24. #define RTC_YEAR_OFFS 16
  25. #define RTC_ALARM_TIME_REG_OFFS 8
  26. #define RTC_ALARM_DATE_REG_OFFS 0xc
  27. #define RTC_ALARM_VALID (1 << 7)
  28. #define RTC_ALARM_INTERRUPT_MASK_REG_OFFS 0x10
  29. #define RTC_ALARM_INTERRUPT_CASUE_REG_OFFS 0x14
  30. struct rtc_plat_data {
  31. struct rtc_device *rtc;
  32. void __iomem *ioaddr;
  33. int irq;
  34. };
  35. static int mv_rtc_set_time(struct device *dev, struct rtc_time *tm)
  36. {
  37. struct rtc_plat_data *pdata = dev_get_drvdata(dev);
  38. void __iomem *ioaddr = pdata->ioaddr;
  39. u32 rtc_reg;
  40. rtc_reg = (bin2bcd(tm->tm_sec) << RTC_SECONDS_OFFS) |
  41. (bin2bcd(tm->tm_min) << RTC_MINUTES_OFFS) |
  42. (bin2bcd(tm->tm_hour) << RTC_HOURS_OFFS) |
  43. (bin2bcd(tm->tm_wday) << RTC_WDAY_OFFS);
  44. writel(rtc_reg, ioaddr + RTC_TIME_REG_OFFS);
  45. rtc_reg = (bin2bcd(tm->tm_mday) << RTC_MDAY_OFFS) |
  46. (bin2bcd(tm->tm_mon + 1) << RTC_MONTH_OFFS) |
  47. (bin2bcd(tm->tm_year % 100) << RTC_YEAR_OFFS);
  48. writel(rtc_reg, ioaddr + RTC_DATE_REG_OFFS);
  49. return 0;
  50. }
  51. static int mv_rtc_read_time(struct device *dev, struct rtc_time *tm)
  52. {
  53. struct rtc_plat_data *pdata = dev_get_drvdata(dev);
  54. void __iomem *ioaddr = pdata->ioaddr;
  55. u32 rtc_time, rtc_date;
  56. unsigned int year, month, day, hour, minute, second, wday;
  57. rtc_time = readl(ioaddr + RTC_TIME_REG_OFFS);
  58. rtc_date = readl(ioaddr + RTC_DATE_REG_OFFS);
  59. second = rtc_time & 0x7f;
  60. minute = (rtc_time >> RTC_MINUTES_OFFS) & 0x7f;
  61. hour = (rtc_time >> RTC_HOURS_OFFS) & 0x3f; /* assume 24 hours mode */
  62. wday = (rtc_time >> RTC_WDAY_OFFS) & 0x7;
  63. day = rtc_date & 0x3f;
  64. month = (rtc_date >> RTC_MONTH_OFFS) & 0x3f;
  65. year = (rtc_date >> RTC_YEAR_OFFS) & 0xff;
  66. tm->tm_sec = bcd2bin(second);
  67. tm->tm_min = bcd2bin(minute);
  68. tm->tm_hour = bcd2bin(hour);
  69. tm->tm_mday = bcd2bin(day);
  70. tm->tm_wday = bcd2bin(wday);
  71. tm->tm_mon = bcd2bin(month) - 1;
  72. /* hw counts from year 2000, but tm_year is relative to 1900 */
  73. tm->tm_year = bcd2bin(year) + 100;
  74. return rtc_valid_tm(tm);
  75. }
  76. static int mv_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alm)
  77. {
  78. struct rtc_plat_data *pdata = dev_get_drvdata(dev);
  79. void __iomem *ioaddr = pdata->ioaddr;
  80. u32 rtc_time, rtc_date;
  81. unsigned int year, month, day, hour, minute, second, wday;
  82. rtc_time = readl(ioaddr + RTC_ALARM_TIME_REG_OFFS);
  83. rtc_date = readl(ioaddr + RTC_ALARM_DATE_REG_OFFS);
  84. second = rtc_time & 0x7f;
  85. minute = (rtc_time >> RTC_MINUTES_OFFS) & 0x7f;
  86. hour = (rtc_time >> RTC_HOURS_OFFS) & 0x3f; /* assume 24 hours mode */
  87. wday = (rtc_time >> RTC_WDAY_OFFS) & 0x7;
  88. day = rtc_date & 0x3f;
  89. month = (rtc_date >> RTC_MONTH_OFFS) & 0x3f;
  90. year = (rtc_date >> RTC_YEAR_OFFS) & 0xff;
  91. alm->time.tm_sec = bcd2bin(second);
  92. alm->time.tm_min = bcd2bin(minute);
  93. alm->time.tm_hour = bcd2bin(hour);
  94. alm->time.tm_mday = bcd2bin(day);
  95. alm->time.tm_wday = bcd2bin(wday);
  96. alm->time.tm_mon = bcd2bin(month) - 1;
  97. /* hw counts from year 2000, but tm_year is relative to 1900 */
  98. alm->time.tm_year = bcd2bin(year) + 100;
  99. if (rtc_valid_tm(&alm->time) < 0) {
  100. dev_err(dev, "retrieved alarm date/time is not valid.\n");
  101. rtc_time_to_tm(0, &alm->time);
  102. }
  103. alm->enabled = !!readl(ioaddr + RTC_ALARM_INTERRUPT_MASK_REG_OFFS);
  104. return 0;
  105. }
  106. static int mv_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alm)
  107. {
  108. struct rtc_plat_data *pdata = dev_get_drvdata(dev);
  109. void __iomem *ioaddr = pdata->ioaddr;
  110. u32 rtc_reg = 0;
  111. if (alm->time.tm_sec >= 0)
  112. rtc_reg |= (RTC_ALARM_VALID | bin2bcd(alm->time.tm_sec))
  113. << RTC_SECONDS_OFFS;
  114. if (alm->time.tm_min >= 0)
  115. rtc_reg |= (RTC_ALARM_VALID | bin2bcd(alm->time.tm_min))
  116. << RTC_MINUTES_OFFS;
  117. if (alm->time.tm_hour >= 0)
  118. rtc_reg |= (RTC_ALARM_VALID | bin2bcd(alm->time.tm_hour))
  119. << RTC_HOURS_OFFS;
  120. writel(rtc_reg, ioaddr + RTC_ALARM_TIME_REG_OFFS);
  121. if (alm->time.tm_mday >= 0)
  122. rtc_reg = (RTC_ALARM_VALID | bin2bcd(alm->time.tm_mday))
  123. << RTC_MDAY_OFFS;
  124. else
  125. rtc_reg = 0;
  126. if (alm->time.tm_mon >= 0)
  127. rtc_reg |= (RTC_ALARM_VALID | bin2bcd(alm->time.tm_mon + 1))
  128. << RTC_MONTH_OFFS;
  129. if (alm->time.tm_year >= 0)
  130. rtc_reg |= (RTC_ALARM_VALID | bin2bcd(alm->time.tm_year % 100))
  131. << RTC_YEAR_OFFS;
  132. writel(rtc_reg, ioaddr + RTC_ALARM_DATE_REG_OFFS);
  133. writel(0, ioaddr + RTC_ALARM_INTERRUPT_CASUE_REG_OFFS);
  134. writel(alm->enabled ? 1 : 0,
  135. ioaddr + RTC_ALARM_INTERRUPT_MASK_REG_OFFS);
  136. return 0;
  137. }
  138. static int mv_rtc_ioctl(struct device *dev, unsigned int cmd,
  139. unsigned long arg)
  140. {
  141. struct platform_device *pdev = to_platform_device(dev);
  142. struct rtc_plat_data *pdata = platform_get_drvdata(pdev);
  143. void __iomem *ioaddr = pdata->ioaddr;
  144. if (pdata->irq < 0)
  145. return -ENOIOCTLCMD; /* fall back into rtc-dev's emulation */
  146. switch (cmd) {
  147. case RTC_AIE_OFF:
  148. writel(0, ioaddr + RTC_ALARM_INTERRUPT_MASK_REG_OFFS);
  149. break;
  150. case RTC_AIE_ON:
  151. writel(1, ioaddr + RTC_ALARM_INTERRUPT_MASK_REG_OFFS);
  152. break;
  153. default:
  154. return -ENOIOCTLCMD;
  155. }
  156. return 0;
  157. }
  158. static irqreturn_t mv_rtc_interrupt(int irq, void *data)
  159. {
  160. struct rtc_plat_data *pdata = data;
  161. void __iomem *ioaddr = pdata->ioaddr;
  162. /* alarm irq? */
  163. if (!readl(ioaddr + RTC_ALARM_INTERRUPT_CASUE_REG_OFFS))
  164. return IRQ_NONE;
  165. /* clear interrupt */
  166. writel(0, ioaddr + RTC_ALARM_INTERRUPT_CASUE_REG_OFFS);
  167. rtc_update_irq(pdata->rtc, 1, RTC_IRQF | RTC_AF);
  168. return IRQ_HANDLED;
  169. }
  170. static const struct rtc_class_ops mv_rtc_ops = {
  171. .read_time = mv_rtc_read_time,
  172. .set_time = mv_rtc_set_time,
  173. };
  174. static const struct rtc_class_ops mv_rtc_alarm_ops = {
  175. .read_time = mv_rtc_read_time,
  176. .set_time = mv_rtc_set_time,
  177. .read_alarm = mv_rtc_read_alarm,
  178. .set_alarm = mv_rtc_set_alarm,
  179. .ioctl = mv_rtc_ioctl,
  180. };
  181. static int __devinit mv_rtc_probe(struct platform_device *pdev)
  182. {
  183. struct resource *res;
  184. struct rtc_plat_data *pdata;
  185. resource_size_t size;
  186. u32 rtc_time;
  187. res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
  188. if (!res)
  189. return -ENODEV;
  190. pdata = devm_kzalloc(&pdev->dev, sizeof(*pdata), GFP_KERNEL);
  191. if (!pdata)
  192. return -ENOMEM;
  193. size = resource_size(res);
  194. if (!devm_request_mem_region(&pdev->dev, res->start, size,
  195. pdev->name))
  196. return -EBUSY;
  197. pdata->ioaddr = devm_ioremap(&pdev->dev, res->start, size);
  198. if (!pdata->ioaddr)
  199. return -ENOMEM;
  200. /* make sure the 24 hours mode is enabled */
  201. rtc_time = readl(pdata->ioaddr + RTC_TIME_REG_OFFS);
  202. if (rtc_time & RTC_HOURS_12H_MODE) {
  203. dev_err(&pdev->dev, "24 Hours mode not supported.\n");
  204. return -EINVAL;
  205. }
  206. /* make sure it is actually functional */
  207. if (rtc_time == 0x01000000) {
  208. ssleep(1);
  209. rtc_time = readl(pdata->ioaddr + RTC_TIME_REG_OFFS);
  210. if (rtc_time == 0x01000000) {
  211. dev_err(&pdev->dev, "internal RTC not ticking\n");
  212. return -ENODEV;
  213. }
  214. }
  215. pdata->irq = platform_get_irq(pdev, 0);
  216. platform_set_drvdata(pdev, pdata);
  217. if (pdata->irq >= 0) {
  218. device_init_wakeup(&pdev->dev, 1);
  219. pdata->rtc = rtc_device_register(pdev->name, &pdev->dev,
  220. &mv_rtc_alarm_ops,
  221. THIS_MODULE);
  222. } else
  223. pdata->rtc = rtc_device_register(pdev->name, &pdev->dev,
  224. &mv_rtc_ops, THIS_MODULE);
  225. if (IS_ERR(pdata->rtc))
  226. return PTR_ERR(pdata->rtc);
  227. if (pdata->irq >= 0) {
  228. writel(0, pdata->ioaddr + RTC_ALARM_INTERRUPT_MASK_REG_OFFS);
  229. if (devm_request_irq(&pdev->dev, pdata->irq, mv_rtc_interrupt,
  230. IRQF_DISABLED | IRQF_SHARED,
  231. pdev->name, pdata) < 0) {
  232. dev_warn(&pdev->dev, "interrupt not available.\n");
  233. pdata->irq = -1;
  234. }
  235. }
  236. return 0;
  237. }
  238. static int __exit mv_rtc_remove(struct platform_device *pdev)
  239. {
  240. struct rtc_plat_data *pdata = platform_get_drvdata(pdev);
  241. if (pdata->irq >= 0)
  242. device_init_wakeup(&pdev->dev, 0);
  243. rtc_device_unregister(pdata->rtc);
  244. return 0;
  245. }
  246. static struct platform_driver mv_rtc_driver = {
  247. .remove = __exit_p(mv_rtc_remove),
  248. .driver = {
  249. .name = "rtc-mv",
  250. .owner = THIS_MODULE,
  251. },
  252. };
  253. static __init int mv_init(void)
  254. {
  255. return platform_driver_probe(&mv_rtc_driver, mv_rtc_probe);
  256. }
  257. static __exit void mv_exit(void)
  258. {
  259. platform_driver_unregister(&mv_rtc_driver);
  260. }
  261. module_init(mv_init);
  262. module_exit(mv_exit);
  263. MODULE_AUTHOR("Saeed Bishara <saeed@marvell.com>");
  264. MODULE_DESCRIPTION("Marvell RTC driver");
  265. MODULE_LICENSE("GPL");
  266. MODULE_ALIAS("platform:rtc-mv");