rtc-mrst.c 13 KB

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  1. /*
  2. * rtc-mrst.c: Driver for Moorestown virtual RTC
  3. *
  4. * (C) Copyright 2009 Intel Corporation
  5. * Author: Jacob Pan (jacob.jun.pan@intel.com)
  6. * Feng Tang (feng.tang@intel.com)
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License
  10. * as published by the Free Software Foundation; version 2
  11. * of the License.
  12. *
  13. * Note:
  14. * VRTC is emulated by system controller firmware, the real HW
  15. * RTC is located in the PMIC device. SCU FW shadows PMIC RTC
  16. * in a memory mapped IO space that is visible to the host IA
  17. * processor.
  18. *
  19. * This driver is based upon drivers/rtc/rtc-cmos.c
  20. */
  21. /*
  22. * Note:
  23. * * vRTC only supports binary mode and 24H mode
  24. * * vRTC only support PIE and AIE, no UIE, and its PIE only happens
  25. * at 23:59:59pm everyday, no support for adjustable frequency
  26. * * Alarm function is also limited to hr/min/sec.
  27. */
  28. #include <linux/mod_devicetable.h>
  29. #include <linux/platform_device.h>
  30. #include <linux/interrupt.h>
  31. #include <linux/spinlock.h>
  32. #include <linux/kernel.h>
  33. #include <linux/module.h>
  34. #include <linux/init.h>
  35. #include <linux/sfi.h>
  36. #include <asm-generic/rtc.h>
  37. #include <asm/intel_scu_ipc.h>
  38. #include <asm/mrst.h>
  39. #include <asm/mrst-vrtc.h>
  40. struct mrst_rtc {
  41. struct rtc_device *rtc;
  42. struct device *dev;
  43. int irq;
  44. struct resource *iomem;
  45. u8 enabled_wake;
  46. u8 suspend_ctrl;
  47. };
  48. static const char driver_name[] = "rtc_mrst";
  49. #define RTC_IRQMASK (RTC_PF | RTC_AF)
  50. static inline int is_intr(u8 rtc_intr)
  51. {
  52. if (!(rtc_intr & RTC_IRQF))
  53. return 0;
  54. return rtc_intr & RTC_IRQMASK;
  55. }
  56. static inline unsigned char vrtc_is_updating(void)
  57. {
  58. unsigned char uip;
  59. unsigned long flags;
  60. spin_lock_irqsave(&rtc_lock, flags);
  61. uip = (vrtc_cmos_read(RTC_FREQ_SELECT) & RTC_UIP);
  62. spin_unlock_irqrestore(&rtc_lock, flags);
  63. return uip;
  64. }
  65. /*
  66. * rtc_time's year contains the increment over 1900, but vRTC's YEAR
  67. * register can't be programmed to value larger than 0x64, so vRTC
  68. * driver chose to use 1960 (1970 is UNIX time start point) as the base,
  69. * and does the translation at read/write time.
  70. *
  71. * Why not just use 1970 as the offset? it's because using 1960 will
  72. * make it consistent in leap year setting for both vrtc and low-level
  73. * physical rtc devices.
  74. */
  75. static int mrst_read_time(struct device *dev, struct rtc_time *time)
  76. {
  77. unsigned long flags;
  78. if (vrtc_is_updating())
  79. mdelay(20);
  80. spin_lock_irqsave(&rtc_lock, flags);
  81. time->tm_sec = vrtc_cmos_read(RTC_SECONDS);
  82. time->tm_min = vrtc_cmos_read(RTC_MINUTES);
  83. time->tm_hour = vrtc_cmos_read(RTC_HOURS);
  84. time->tm_mday = vrtc_cmos_read(RTC_DAY_OF_MONTH);
  85. time->tm_mon = vrtc_cmos_read(RTC_MONTH);
  86. time->tm_year = vrtc_cmos_read(RTC_YEAR);
  87. spin_unlock_irqrestore(&rtc_lock, flags);
  88. /* Adjust for the 1960/1900 */
  89. time->tm_year += 60;
  90. time->tm_mon--;
  91. return RTC_24H;
  92. }
  93. static int mrst_set_time(struct device *dev, struct rtc_time *time)
  94. {
  95. int ret;
  96. unsigned long flags;
  97. unsigned char mon, day, hrs, min, sec;
  98. unsigned int yrs;
  99. yrs = time->tm_year;
  100. mon = time->tm_mon + 1; /* tm_mon starts at zero */
  101. day = time->tm_mday;
  102. hrs = time->tm_hour;
  103. min = time->tm_min;
  104. sec = time->tm_sec;
  105. if (yrs < 70 || yrs > 138)
  106. return -EINVAL;
  107. yrs -= 60;
  108. spin_lock_irqsave(&rtc_lock, flags);
  109. vrtc_cmos_write(yrs, RTC_YEAR);
  110. vrtc_cmos_write(mon, RTC_MONTH);
  111. vrtc_cmos_write(day, RTC_DAY_OF_MONTH);
  112. vrtc_cmos_write(hrs, RTC_HOURS);
  113. vrtc_cmos_write(min, RTC_MINUTES);
  114. vrtc_cmos_write(sec, RTC_SECONDS);
  115. spin_unlock_irqrestore(&rtc_lock, flags);
  116. ret = intel_scu_ipc_simple_command(IPCMSG_VRTC, IPC_CMD_VRTC_SETTIME);
  117. return ret;
  118. }
  119. static int mrst_read_alarm(struct device *dev, struct rtc_wkalrm *t)
  120. {
  121. struct mrst_rtc *mrst = dev_get_drvdata(dev);
  122. unsigned char rtc_control;
  123. if (mrst->irq <= 0)
  124. return -EIO;
  125. /* Basic alarms only support hour, minute, and seconds fields.
  126. * Some also support day and month, for alarms up to a year in
  127. * the future.
  128. */
  129. t->time.tm_mday = -1;
  130. t->time.tm_mon = -1;
  131. t->time.tm_year = -1;
  132. /* vRTC only supports binary mode */
  133. spin_lock_irq(&rtc_lock);
  134. t->time.tm_sec = vrtc_cmos_read(RTC_SECONDS_ALARM);
  135. t->time.tm_min = vrtc_cmos_read(RTC_MINUTES_ALARM);
  136. t->time.tm_hour = vrtc_cmos_read(RTC_HOURS_ALARM);
  137. rtc_control = vrtc_cmos_read(RTC_CONTROL);
  138. spin_unlock_irq(&rtc_lock);
  139. t->enabled = !!(rtc_control & RTC_AIE);
  140. t->pending = 0;
  141. return 0;
  142. }
  143. static void mrst_checkintr(struct mrst_rtc *mrst, unsigned char rtc_control)
  144. {
  145. unsigned char rtc_intr;
  146. /*
  147. * NOTE after changing RTC_xIE bits we always read INTR_FLAGS;
  148. * allegedly some older rtcs need that to handle irqs properly
  149. */
  150. rtc_intr = vrtc_cmos_read(RTC_INTR_FLAGS);
  151. rtc_intr &= (rtc_control & RTC_IRQMASK) | RTC_IRQF;
  152. if (is_intr(rtc_intr))
  153. rtc_update_irq(mrst->rtc, 1, rtc_intr);
  154. }
  155. static void mrst_irq_enable(struct mrst_rtc *mrst, unsigned char mask)
  156. {
  157. unsigned char rtc_control;
  158. /*
  159. * Flush any pending IRQ status, notably for update irqs,
  160. * before we enable new IRQs
  161. */
  162. rtc_control = vrtc_cmos_read(RTC_CONTROL);
  163. mrst_checkintr(mrst, rtc_control);
  164. rtc_control |= mask;
  165. vrtc_cmos_write(rtc_control, RTC_CONTROL);
  166. mrst_checkintr(mrst, rtc_control);
  167. }
  168. static void mrst_irq_disable(struct mrst_rtc *mrst, unsigned char mask)
  169. {
  170. unsigned char rtc_control;
  171. rtc_control = vrtc_cmos_read(RTC_CONTROL);
  172. rtc_control &= ~mask;
  173. vrtc_cmos_write(rtc_control, RTC_CONTROL);
  174. mrst_checkintr(mrst, rtc_control);
  175. }
  176. static int mrst_set_alarm(struct device *dev, struct rtc_wkalrm *t)
  177. {
  178. struct mrst_rtc *mrst = dev_get_drvdata(dev);
  179. unsigned char hrs, min, sec;
  180. int ret = 0;
  181. if (!mrst->irq)
  182. return -EIO;
  183. hrs = t->time.tm_hour;
  184. min = t->time.tm_min;
  185. sec = t->time.tm_sec;
  186. spin_lock_irq(&rtc_lock);
  187. /* Next rtc irq must not be from previous alarm setting */
  188. mrst_irq_disable(mrst, RTC_AIE);
  189. /* Update alarm */
  190. vrtc_cmos_write(hrs, RTC_HOURS_ALARM);
  191. vrtc_cmos_write(min, RTC_MINUTES_ALARM);
  192. vrtc_cmos_write(sec, RTC_SECONDS_ALARM);
  193. spin_unlock_irq(&rtc_lock);
  194. ret = intel_scu_ipc_simple_command(IPCMSG_VRTC, IPC_CMD_VRTC_SETALARM);
  195. if (ret)
  196. return ret;
  197. spin_lock_irq(&rtc_lock);
  198. if (t->enabled)
  199. mrst_irq_enable(mrst, RTC_AIE);
  200. spin_unlock_irq(&rtc_lock);
  201. return 0;
  202. }
  203. /* Currently, the vRTC doesn't support UIE ON/OFF */
  204. static int mrst_rtc_alarm_irq_enable(struct device *dev, unsigned int enabled)
  205. {
  206. struct mrst_rtc *mrst = dev_get_drvdata(dev);
  207. unsigned long flags;
  208. spin_lock_irqsave(&rtc_lock, flags);
  209. if (enabled)
  210. mrst_irq_enable(mrst, RTC_AIE);
  211. else
  212. mrst_irq_disable(mrst, RTC_AIE);
  213. spin_unlock_irqrestore(&rtc_lock, flags);
  214. return 0;
  215. }
  216. #if defined(CONFIG_RTC_INTF_PROC) || defined(CONFIG_RTC_INTF_PROC_MODULE)
  217. static int mrst_procfs(struct device *dev, struct seq_file *seq)
  218. {
  219. unsigned char rtc_control, valid;
  220. spin_lock_irq(&rtc_lock);
  221. rtc_control = vrtc_cmos_read(RTC_CONTROL);
  222. valid = vrtc_cmos_read(RTC_VALID);
  223. spin_unlock_irq(&rtc_lock);
  224. return seq_printf(seq,
  225. "periodic_IRQ\t: %s\n"
  226. "alarm\t\t: %s\n"
  227. "BCD\t\t: no\n"
  228. "periodic_freq\t: daily (not adjustable)\n",
  229. (rtc_control & RTC_PIE) ? "on" : "off",
  230. (rtc_control & RTC_AIE) ? "on" : "off");
  231. }
  232. #else
  233. #define mrst_procfs NULL
  234. #endif
  235. static const struct rtc_class_ops mrst_rtc_ops = {
  236. .read_time = mrst_read_time,
  237. .set_time = mrst_set_time,
  238. .read_alarm = mrst_read_alarm,
  239. .set_alarm = mrst_set_alarm,
  240. .proc = mrst_procfs,
  241. .alarm_irq_enable = mrst_rtc_alarm_irq_enable,
  242. };
  243. static struct mrst_rtc mrst_rtc;
  244. /*
  245. * When vRTC IRQ is captured by SCU FW, FW will clear the AIE bit in
  246. * Reg B, so no need for this driver to clear it
  247. */
  248. static irqreturn_t mrst_rtc_irq(int irq, void *p)
  249. {
  250. u8 irqstat;
  251. spin_lock(&rtc_lock);
  252. /* This read will clear all IRQ flags inside Reg C */
  253. irqstat = vrtc_cmos_read(RTC_INTR_FLAGS);
  254. spin_unlock(&rtc_lock);
  255. irqstat &= RTC_IRQMASK | RTC_IRQF;
  256. if (is_intr(irqstat)) {
  257. rtc_update_irq(p, 1, irqstat);
  258. return IRQ_HANDLED;
  259. }
  260. return IRQ_NONE;
  261. }
  262. static int __devinit
  263. vrtc_mrst_do_probe(struct device *dev, struct resource *iomem, int rtc_irq)
  264. {
  265. int retval = 0;
  266. unsigned char rtc_control;
  267. /* There can be only one ... */
  268. if (mrst_rtc.dev)
  269. return -EBUSY;
  270. if (!iomem)
  271. return -ENODEV;
  272. iomem = request_mem_region(iomem->start, resource_size(iomem),
  273. driver_name);
  274. if (!iomem) {
  275. dev_dbg(dev, "i/o mem already in use.\n");
  276. return -EBUSY;
  277. }
  278. mrst_rtc.irq = rtc_irq;
  279. mrst_rtc.iomem = iomem;
  280. mrst_rtc.dev = dev;
  281. dev_set_drvdata(dev, &mrst_rtc);
  282. mrst_rtc.rtc = rtc_device_register(driver_name, dev,
  283. &mrst_rtc_ops, THIS_MODULE);
  284. if (IS_ERR(mrst_rtc.rtc)) {
  285. retval = PTR_ERR(mrst_rtc.rtc);
  286. goto cleanup0;
  287. }
  288. rename_region(iomem, dev_name(&mrst_rtc.rtc->dev));
  289. spin_lock_irq(&rtc_lock);
  290. mrst_irq_disable(&mrst_rtc, RTC_PIE | RTC_AIE);
  291. rtc_control = vrtc_cmos_read(RTC_CONTROL);
  292. spin_unlock_irq(&rtc_lock);
  293. if (!(rtc_control & RTC_24H) || (rtc_control & (RTC_DM_BINARY)))
  294. dev_dbg(dev, "TODO: support more than 24-hr BCD mode\n");
  295. if (rtc_irq) {
  296. retval = request_irq(rtc_irq, mrst_rtc_irq,
  297. IRQF_DISABLED, dev_name(&mrst_rtc.rtc->dev),
  298. mrst_rtc.rtc);
  299. if (retval < 0) {
  300. dev_dbg(dev, "IRQ %d is already in use, err %d\n",
  301. rtc_irq, retval);
  302. goto cleanup1;
  303. }
  304. }
  305. dev_dbg(dev, "initialised\n");
  306. return 0;
  307. cleanup1:
  308. rtc_device_unregister(mrst_rtc.rtc);
  309. cleanup0:
  310. dev_set_drvdata(dev, NULL);
  311. mrst_rtc.dev = NULL;
  312. release_mem_region(iomem->start, resource_size(iomem));
  313. dev_err(dev, "rtc-mrst: unable to initialise\n");
  314. return retval;
  315. }
  316. static void rtc_mrst_do_shutdown(void)
  317. {
  318. spin_lock_irq(&rtc_lock);
  319. mrst_irq_disable(&mrst_rtc, RTC_IRQMASK);
  320. spin_unlock_irq(&rtc_lock);
  321. }
  322. static void __devexit rtc_mrst_do_remove(struct device *dev)
  323. {
  324. struct mrst_rtc *mrst = dev_get_drvdata(dev);
  325. struct resource *iomem;
  326. rtc_mrst_do_shutdown();
  327. if (mrst->irq)
  328. free_irq(mrst->irq, mrst->rtc);
  329. rtc_device_unregister(mrst->rtc);
  330. mrst->rtc = NULL;
  331. iomem = mrst->iomem;
  332. release_mem_region(iomem->start, resource_size(iomem));
  333. mrst->iomem = NULL;
  334. mrst->dev = NULL;
  335. dev_set_drvdata(dev, NULL);
  336. }
  337. #ifdef CONFIG_PM
  338. static int mrst_suspend(struct device *dev, pm_message_t mesg)
  339. {
  340. struct mrst_rtc *mrst = dev_get_drvdata(dev);
  341. unsigned char tmp;
  342. /* Only the alarm might be a wakeup event source */
  343. spin_lock_irq(&rtc_lock);
  344. mrst->suspend_ctrl = tmp = vrtc_cmos_read(RTC_CONTROL);
  345. if (tmp & (RTC_PIE | RTC_AIE)) {
  346. unsigned char mask;
  347. if (device_may_wakeup(dev))
  348. mask = RTC_IRQMASK & ~RTC_AIE;
  349. else
  350. mask = RTC_IRQMASK;
  351. tmp &= ~mask;
  352. vrtc_cmos_write(tmp, RTC_CONTROL);
  353. mrst_checkintr(mrst, tmp);
  354. }
  355. spin_unlock_irq(&rtc_lock);
  356. if (tmp & RTC_AIE) {
  357. mrst->enabled_wake = 1;
  358. enable_irq_wake(mrst->irq);
  359. }
  360. dev_dbg(&mrst_rtc.rtc->dev, "suspend%s, ctrl %02x\n",
  361. (tmp & RTC_AIE) ? ", alarm may wake" : "",
  362. tmp);
  363. return 0;
  364. }
  365. /*
  366. * We want RTC alarms to wake us from the deep power saving state
  367. */
  368. static inline int mrst_poweroff(struct device *dev)
  369. {
  370. return mrst_suspend(dev, PMSG_HIBERNATE);
  371. }
  372. static int mrst_resume(struct device *dev)
  373. {
  374. struct mrst_rtc *mrst = dev_get_drvdata(dev);
  375. unsigned char tmp = mrst->suspend_ctrl;
  376. /* Re-enable any irqs previously active */
  377. if (tmp & RTC_IRQMASK) {
  378. unsigned char mask;
  379. if (mrst->enabled_wake) {
  380. disable_irq_wake(mrst->irq);
  381. mrst->enabled_wake = 0;
  382. }
  383. spin_lock_irq(&rtc_lock);
  384. do {
  385. vrtc_cmos_write(tmp, RTC_CONTROL);
  386. mask = vrtc_cmos_read(RTC_INTR_FLAGS);
  387. mask &= (tmp & RTC_IRQMASK) | RTC_IRQF;
  388. if (!is_intr(mask))
  389. break;
  390. rtc_update_irq(mrst->rtc, 1, mask);
  391. tmp &= ~RTC_AIE;
  392. } while (mask & RTC_AIE);
  393. spin_unlock_irq(&rtc_lock);
  394. }
  395. dev_dbg(&mrst_rtc.rtc->dev, "resume, ctrl %02x\n", tmp);
  396. return 0;
  397. }
  398. #else
  399. #define mrst_suspend NULL
  400. #define mrst_resume NULL
  401. static inline int mrst_poweroff(struct device *dev)
  402. {
  403. return -ENOSYS;
  404. }
  405. #endif
  406. static int __devinit vrtc_mrst_platform_probe(struct platform_device *pdev)
  407. {
  408. return vrtc_mrst_do_probe(&pdev->dev,
  409. platform_get_resource(pdev, IORESOURCE_MEM, 0),
  410. platform_get_irq(pdev, 0));
  411. }
  412. static int __devexit vrtc_mrst_platform_remove(struct platform_device *pdev)
  413. {
  414. rtc_mrst_do_remove(&pdev->dev);
  415. return 0;
  416. }
  417. static void vrtc_mrst_platform_shutdown(struct platform_device *pdev)
  418. {
  419. if (system_state == SYSTEM_POWER_OFF && !mrst_poweroff(&pdev->dev))
  420. return;
  421. rtc_mrst_do_shutdown();
  422. }
  423. MODULE_ALIAS("platform:vrtc_mrst");
  424. static struct platform_driver vrtc_mrst_platform_driver = {
  425. .probe = vrtc_mrst_platform_probe,
  426. .remove = __devexit_p(vrtc_mrst_platform_remove),
  427. .shutdown = vrtc_mrst_platform_shutdown,
  428. .driver = {
  429. .name = (char *) driver_name,
  430. .suspend = mrst_suspend,
  431. .resume = mrst_resume,
  432. }
  433. };
  434. static int __init vrtc_mrst_init(void)
  435. {
  436. return platform_driver_register(&vrtc_mrst_platform_driver);
  437. }
  438. static void __exit vrtc_mrst_exit(void)
  439. {
  440. platform_driver_unregister(&vrtc_mrst_platform_driver);
  441. }
  442. module_init(vrtc_mrst_init);
  443. module_exit(vrtc_mrst_exit);
  444. MODULE_AUTHOR("Jacob Pan; Feng Tang");
  445. MODULE_DESCRIPTION("Driver for Moorestown virtual RTC");
  446. MODULE_LICENSE("GPL");