1df17f631Sdmitry pervushin /* 2df17f631Sdmitry pervushin * Freescale STMP37XX/STMP378X Real Time Clock driver 3df17f631Sdmitry pervushin * 4df17f631Sdmitry pervushin * Copyright (c) 2007 Sigmatel, Inc. 5df17f631Sdmitry pervushin * Peter Hartley, <peter.hartley@sigmatel.com> 6df17f631Sdmitry pervushin * 7df17f631Sdmitry pervushin * Copyright 2008 Freescale Semiconductor, Inc. All Rights Reserved. 8df17f631Sdmitry pervushin * Copyright 2008 Embedded Alley Solutions, Inc All Rights Reserved. 97e794cb7SWolfram Sang * Copyright 2011 Wolfram Sang, Pengutronix e.K. 10df17f631Sdmitry pervushin */ 11df17f631Sdmitry pervushin 12df17f631Sdmitry pervushin /* 13df17f631Sdmitry pervushin * The code contained herein is licensed under the GNU General Public 14df17f631Sdmitry pervushin * License. You may obtain a copy of the GNU General Public License 15df17f631Sdmitry pervushin * Version 2 or later at the following locations: 16df17f631Sdmitry pervushin * 17df17f631Sdmitry pervushin * http://www.opensource.org/licenses/gpl-license.html 18df17f631Sdmitry pervushin * http://www.gnu.org/copyleft/gpl.html 19df17f631Sdmitry pervushin */ 20df17f631Sdmitry pervushin #include <linux/kernel.h> 21df17f631Sdmitry pervushin #include <linux/module.h> 22b5167159SWolfram Sang #include <linux/io.h> 23df17f631Sdmitry pervushin #include <linux/init.h> 24df17f631Sdmitry pervushin #include <linux/platform_device.h> 25df17f631Sdmitry pervushin #include <linux/interrupt.h> 2628a0c883SLothar Waßmann #include <linux/delay.h> 27df17f631Sdmitry pervushin #include <linux/rtc.h> 285a0e3ad6STejun Heo #include <linux/slab.h> 29dd8d20a3SMarek Vasut #include <linux/of_device.h> 30c8a6046eSSachin Kamat #include <linux/of.h> 311a71fb84SWolfram Sang #include <linux/stmp_device.h> 321a71fb84SWolfram Sang #include <linux/stmp3xxx_rtc_wdt.h> 33df17f631Sdmitry pervushin 3447eac337SWolfram Sang #define STMP3XXX_RTC_CTRL 0x0 35b5167159SWolfram Sang #define STMP3XXX_RTC_CTRL_SET 0x4 36b5167159SWolfram Sang #define STMP3XXX_RTC_CTRL_CLR 0x8 3747eac337SWolfram Sang #define STMP3XXX_RTC_CTRL_ALARM_IRQ_EN 0x00000001 3847eac337SWolfram Sang #define STMP3XXX_RTC_CTRL_ONEMSEC_IRQ_EN 0x00000002 3947eac337SWolfram Sang #define STMP3XXX_RTC_CTRL_ALARM_IRQ 0x00000004 401a71fb84SWolfram Sang #define STMP3XXX_RTC_CTRL_WATCHDOGEN 0x00000010 4147eac337SWolfram Sang 4247eac337SWolfram Sang #define STMP3XXX_RTC_STAT 0x10 4347eac337SWolfram Sang #define STMP3XXX_RTC_STAT_STALE_SHIFT 16 4447eac337SWolfram Sang #define STMP3XXX_RTC_STAT_RTC_PRESENT 0x80000000 45*7f48b21bSUwe Kleine-König #define STMP3XXX_RTC_STAT_XTAL32000_PRESENT 0x10000000 46*7f48b21bSUwe Kleine-König #define STMP3XXX_RTC_STAT_XTAL32768_PRESENT 0x08000000 4747eac337SWolfram Sang 4847eac337SWolfram Sang #define STMP3XXX_RTC_SECONDS 0x30 4947eac337SWolfram Sang 5047eac337SWolfram Sang #define STMP3XXX_RTC_ALARM 0x40 5147eac337SWolfram Sang 521a71fb84SWolfram Sang #define STMP3XXX_RTC_WATCHDOG 0x50 531a71fb84SWolfram Sang 5447eac337SWolfram Sang #define STMP3XXX_RTC_PERSISTENT0 0x60 55b5167159SWolfram Sang #define STMP3XXX_RTC_PERSISTENT0_SET 0x64 56b5167159SWolfram Sang #define STMP3XXX_RTC_PERSISTENT0_CLR 0x68 57*7f48b21bSUwe Kleine-König #define STMP3XXX_RTC_PERSISTENT0_CLOCKSOURCE (1 << 0) 58*7f48b21bSUwe Kleine-König #define STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN (1 << 1) 59*7f48b21bSUwe Kleine-König #define STMP3XXX_RTC_PERSISTENT0_ALARM_EN (1 << 2) 60*7f48b21bSUwe Kleine-König #define STMP3XXX_RTC_PERSISTENT0_XTAL24MHZ_PWRUP (1 << 4) 61*7f48b21bSUwe Kleine-König #define STMP3XXX_RTC_PERSISTENT0_XTAL32KHZ_PWRUP (1 << 5) 62*7f48b21bSUwe Kleine-König #define STMP3XXX_RTC_PERSISTENT0_XTAL32_FREQ (1 << 6) 63*7f48b21bSUwe Kleine-König #define STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE (1 << 7) 64df17f631Sdmitry pervushin 651a71fb84SWolfram Sang #define STMP3XXX_RTC_PERSISTENT1 0x70 661a71fb84SWolfram Sang /* missing bitmask in headers */ 671a71fb84SWolfram Sang #define STMP3XXX_RTC_PERSISTENT1_FORCE_UPDATER 0x80000000 681a71fb84SWolfram Sang 69df17f631Sdmitry pervushin struct stmp3xxx_rtc_data { 70df17f631Sdmitry pervushin struct rtc_device *rtc; 71df17f631Sdmitry pervushin void __iomem *io; 727e794cb7SWolfram Sang int irq_alarm; 73df17f631Sdmitry pervushin }; 74df17f631Sdmitry pervushin 751a71fb84SWolfram Sang #if IS_ENABLED(CONFIG_STMP3XXX_RTC_WATCHDOG) 761a71fb84SWolfram Sang /** 771a71fb84SWolfram Sang * stmp3xxx_wdt_set_timeout - configure the watchdog inside the STMP3xxx RTC 781a71fb84SWolfram Sang * @dev: the parent device of the watchdog (= the RTC) 791a71fb84SWolfram Sang * @timeout: the desired value for the timeout register of the watchdog. 801a71fb84SWolfram Sang * 0 disables the watchdog 811a71fb84SWolfram Sang * 821a71fb84SWolfram Sang * The watchdog needs one register and two bits which are in the RTC domain. 831a71fb84SWolfram Sang * To handle the resource conflict, the RTC driver will create another 841a71fb84SWolfram Sang * platform_device for the watchdog driver as a child of the RTC device. 851a71fb84SWolfram Sang * The watchdog driver is passed the below accessor function via platform_data 861a71fb84SWolfram Sang * to configure the watchdog. Locking is not needed because accessing SET/CLR 871a71fb84SWolfram Sang * registers is atomic. 881a71fb84SWolfram Sang */ 891a71fb84SWolfram Sang 901a71fb84SWolfram Sang static void stmp3xxx_wdt_set_timeout(struct device *dev, u32 timeout) 911a71fb84SWolfram Sang { 921a71fb84SWolfram Sang struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev); 931a71fb84SWolfram Sang 941a71fb84SWolfram Sang if (timeout) { 951a71fb84SWolfram Sang writel(timeout, rtc_data->io + STMP3XXX_RTC_WATCHDOG); 961a71fb84SWolfram Sang writel(STMP3XXX_RTC_CTRL_WATCHDOGEN, 971a71fb84SWolfram Sang rtc_data->io + STMP3XXX_RTC_CTRL + STMP_OFFSET_REG_SET); 981a71fb84SWolfram Sang writel(STMP3XXX_RTC_PERSISTENT1_FORCE_UPDATER, 991a71fb84SWolfram Sang rtc_data->io + STMP3XXX_RTC_PERSISTENT1 + STMP_OFFSET_REG_SET); 1001a71fb84SWolfram Sang } else { 1011a71fb84SWolfram Sang writel(STMP3XXX_RTC_CTRL_WATCHDOGEN, 1021a71fb84SWolfram Sang rtc_data->io + STMP3XXX_RTC_CTRL + STMP_OFFSET_REG_CLR); 1031a71fb84SWolfram Sang writel(STMP3XXX_RTC_PERSISTENT1_FORCE_UPDATER, 1041a71fb84SWolfram Sang rtc_data->io + STMP3XXX_RTC_PERSISTENT1 + STMP_OFFSET_REG_CLR); 1051a71fb84SWolfram Sang } 1061a71fb84SWolfram Sang } 1071a71fb84SWolfram Sang 1081a71fb84SWolfram Sang static struct stmp3xxx_wdt_pdata wdt_pdata = { 1091a71fb84SWolfram Sang .wdt_set_timeout = stmp3xxx_wdt_set_timeout, 1101a71fb84SWolfram Sang }; 1111a71fb84SWolfram Sang 1121a71fb84SWolfram Sang static void stmp3xxx_wdt_register(struct platform_device *rtc_pdev) 1131a71fb84SWolfram Sang { 1141a71fb84SWolfram Sang struct platform_device *wdt_pdev = 1151a71fb84SWolfram Sang platform_device_alloc("stmp3xxx_rtc_wdt", rtc_pdev->id); 1161a71fb84SWolfram Sang 1171a71fb84SWolfram Sang if (wdt_pdev) { 1181a71fb84SWolfram Sang wdt_pdev->dev.parent = &rtc_pdev->dev; 1191a71fb84SWolfram Sang wdt_pdev->dev.platform_data = &wdt_pdata; 1201a71fb84SWolfram Sang platform_device_add(wdt_pdev); 1211a71fb84SWolfram Sang } 1221a71fb84SWolfram Sang } 1231a71fb84SWolfram Sang #else 1241a71fb84SWolfram Sang static void stmp3xxx_wdt_register(struct platform_device *rtc_pdev) 1251a71fb84SWolfram Sang { 1261a71fb84SWolfram Sang } 1271a71fb84SWolfram Sang #endif /* CONFIG_STMP3XXX_RTC_WATCHDOG */ 1281a71fb84SWolfram Sang 12928a0c883SLothar Waßmann static int stmp3xxx_wait_time(struct stmp3xxx_rtc_data *rtc_data) 130df17f631Sdmitry pervushin { 13128a0c883SLothar Waßmann int timeout = 5000; /* 3ms according to i.MX28 Ref Manual */ 132df17f631Sdmitry pervushin /* 13328a0c883SLothar Waßmann * The i.MX28 Applications Processor Reference Manual, Rev. 1, 2010 13428a0c883SLothar Waßmann * states: 13528a0c883SLothar Waßmann * | The order in which registers are updated is 13628a0c883SLothar Waßmann * | Persistent 0, 1, 2, 3, 4, 5, Alarm, Seconds. 13728a0c883SLothar Waßmann * | (This list is in bitfield order, from LSB to MSB, as they would 13828a0c883SLothar Waßmann * | appear in the STALE_REGS and NEW_REGS bitfields of the HW_RTC_STAT 13928a0c883SLothar Waßmann * | register. For example, the Seconds register corresponds to 14028a0c883SLothar Waßmann * | STALE_REGS or NEW_REGS containing 0x80.) 141df17f631Sdmitry pervushin */ 14228a0c883SLothar Waßmann do { 14328a0c883SLothar Waßmann if (!(readl(rtc_data->io + STMP3XXX_RTC_STAT) & 14428a0c883SLothar Waßmann (0x80 << STMP3XXX_RTC_STAT_STALE_SHIFT))) 14528a0c883SLothar Waßmann return 0; 14628a0c883SLothar Waßmann udelay(1); 14728a0c883SLothar Waßmann } while (--timeout > 0); 14828a0c883SLothar Waßmann return (readl(rtc_data->io + STMP3XXX_RTC_STAT) & 14928a0c883SLothar Waßmann (0x80 << STMP3XXX_RTC_STAT_STALE_SHIFT)) ? -ETIME : 0; 150df17f631Sdmitry pervushin } 151df17f631Sdmitry pervushin 152df17f631Sdmitry pervushin /* Time read/write */ 153df17f631Sdmitry pervushin static int stmp3xxx_rtc_gettime(struct device *dev, struct rtc_time *rtc_tm) 154df17f631Sdmitry pervushin { 15528a0c883SLothar Waßmann int ret; 156df17f631Sdmitry pervushin struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev); 157df17f631Sdmitry pervushin 15828a0c883SLothar Waßmann ret = stmp3xxx_wait_time(rtc_data); 15928a0c883SLothar Waßmann if (ret) 16028a0c883SLothar Waßmann return ret; 16128a0c883SLothar Waßmann 162b5167159SWolfram Sang rtc_time_to_tm(readl(rtc_data->io + STMP3XXX_RTC_SECONDS), rtc_tm); 163df17f631Sdmitry pervushin return 0; 164df17f631Sdmitry pervushin } 165df17f631Sdmitry pervushin 166df17f631Sdmitry pervushin static int stmp3xxx_rtc_set_mmss(struct device *dev, unsigned long t) 167df17f631Sdmitry pervushin { 168df17f631Sdmitry pervushin struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev); 169df17f631Sdmitry pervushin 170b5167159SWolfram Sang writel(t, rtc_data->io + STMP3XXX_RTC_SECONDS); 17128a0c883SLothar Waßmann return stmp3xxx_wait_time(rtc_data); 172df17f631Sdmitry pervushin } 173df17f631Sdmitry pervushin 174df17f631Sdmitry pervushin /* interrupt(s) handler */ 175df17f631Sdmitry pervushin static irqreturn_t stmp3xxx_rtc_interrupt(int irq, void *dev_id) 176df17f631Sdmitry pervushin { 177df17f631Sdmitry pervushin struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev_id); 1787e794cb7SWolfram Sang u32 status = readl(rtc_data->io + STMP3XXX_RTC_CTRL); 179df17f631Sdmitry pervushin 18047eac337SWolfram Sang if (status & STMP3XXX_RTC_CTRL_ALARM_IRQ) { 181b5167159SWolfram Sang writel(STMP3XXX_RTC_CTRL_ALARM_IRQ, 182b5167159SWolfram Sang rtc_data->io + STMP3XXX_RTC_CTRL_CLR); 1837e794cb7SWolfram Sang rtc_update_irq(rtc_data->rtc, 1, RTC_AF | RTC_IRQF); 184df17f631Sdmitry pervushin return IRQ_HANDLED; 185df17f631Sdmitry pervushin } 186df17f631Sdmitry pervushin 1877e794cb7SWolfram Sang return IRQ_NONE; 1887e794cb7SWolfram Sang } 1897e794cb7SWolfram Sang 190df17f631Sdmitry pervushin static int stmp3xxx_alarm_irq_enable(struct device *dev, unsigned int enabled) 191df17f631Sdmitry pervushin { 192df17f631Sdmitry pervushin struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev); 193df17f631Sdmitry pervushin 194df17f631Sdmitry pervushin if (enabled) { 195b5167159SWolfram Sang writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN | 196b5167159SWolfram Sang STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN, 197b5167159SWolfram Sang rtc_data->io + STMP3XXX_RTC_PERSISTENT0_SET); 198b5167159SWolfram Sang writel(STMP3XXX_RTC_CTRL_ALARM_IRQ_EN, 199b5167159SWolfram Sang rtc_data->io + STMP3XXX_RTC_CTRL_SET); 200df17f631Sdmitry pervushin } else { 201b5167159SWolfram Sang writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN | 202b5167159SWolfram Sang STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN, 203b5167159SWolfram Sang rtc_data->io + STMP3XXX_RTC_PERSISTENT0_CLR); 204b5167159SWolfram Sang writel(STMP3XXX_RTC_CTRL_ALARM_IRQ_EN, 205b5167159SWolfram Sang rtc_data->io + STMP3XXX_RTC_CTRL_CLR); 206df17f631Sdmitry pervushin } 207df17f631Sdmitry pervushin return 0; 208df17f631Sdmitry pervushin } 209df17f631Sdmitry pervushin 210df17f631Sdmitry pervushin static int stmp3xxx_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alm) 211df17f631Sdmitry pervushin { 212df17f631Sdmitry pervushin struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev); 213df17f631Sdmitry pervushin 214b5167159SWolfram Sang rtc_time_to_tm(readl(rtc_data->io + STMP3XXX_RTC_ALARM), &alm->time); 215df17f631Sdmitry pervushin return 0; 216df17f631Sdmitry pervushin } 217df17f631Sdmitry pervushin 218df17f631Sdmitry pervushin static int stmp3xxx_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alm) 219df17f631Sdmitry pervushin { 220df17f631Sdmitry pervushin unsigned long t; 221df17f631Sdmitry pervushin struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev); 222df17f631Sdmitry pervushin 223df17f631Sdmitry pervushin rtc_tm_to_time(&alm->time, &t); 224b5167159SWolfram Sang writel(t, rtc_data->io + STMP3XXX_RTC_ALARM); 2257e794cb7SWolfram Sang 2267e794cb7SWolfram Sang stmp3xxx_alarm_irq_enable(dev, alm->enabled); 2277e794cb7SWolfram Sang 228df17f631Sdmitry pervushin return 0; 229df17f631Sdmitry pervushin } 230df17f631Sdmitry pervushin 231df17f631Sdmitry pervushin static struct rtc_class_ops stmp3xxx_rtc_ops = { 232df17f631Sdmitry pervushin .alarm_irq_enable = 233df17f631Sdmitry pervushin stmp3xxx_alarm_irq_enable, 234df17f631Sdmitry pervushin .read_time = stmp3xxx_rtc_gettime, 235df17f631Sdmitry pervushin .set_mmss = stmp3xxx_rtc_set_mmss, 236df17f631Sdmitry pervushin .read_alarm = stmp3xxx_rtc_read_alarm, 237df17f631Sdmitry pervushin .set_alarm = stmp3xxx_rtc_set_alarm, 238df17f631Sdmitry pervushin }; 239df17f631Sdmitry pervushin 240df17f631Sdmitry pervushin static int stmp3xxx_rtc_remove(struct platform_device *pdev) 241df17f631Sdmitry pervushin { 242df17f631Sdmitry pervushin struct stmp3xxx_rtc_data *rtc_data = platform_get_drvdata(pdev); 243df17f631Sdmitry pervushin 244df17f631Sdmitry pervushin if (!rtc_data) 245df17f631Sdmitry pervushin return 0; 246df17f631Sdmitry pervushin 2477e794cb7SWolfram Sang writel(STMP3XXX_RTC_CTRL_ALARM_IRQ_EN, 248b5167159SWolfram Sang rtc_data->io + STMP3XXX_RTC_CTRL_CLR); 249df17f631Sdmitry pervushin 250df17f631Sdmitry pervushin return 0; 251df17f631Sdmitry pervushin } 252df17f631Sdmitry pervushin 253df17f631Sdmitry pervushin static int stmp3xxx_rtc_probe(struct platform_device *pdev) 254df17f631Sdmitry pervushin { 255df17f631Sdmitry pervushin struct stmp3xxx_rtc_data *rtc_data; 256df17f631Sdmitry pervushin struct resource *r; 257*7f48b21bSUwe Kleine-König u32 rtc_stat; 258*7f48b21bSUwe Kleine-König u32 pers0_set, pers0_clr; 259*7f48b21bSUwe Kleine-König u32 crystalfreq = 0; 260df17f631Sdmitry pervushin int err; 261df17f631Sdmitry pervushin 26287a81420SJingoo Han rtc_data = devm_kzalloc(&pdev->dev, sizeof(*rtc_data), GFP_KERNEL); 263df17f631Sdmitry pervushin if (!rtc_data) 264df17f631Sdmitry pervushin return -ENOMEM; 265df17f631Sdmitry pervushin 266df17f631Sdmitry pervushin r = platform_get_resource(pdev, IORESOURCE_MEM, 0); 267df17f631Sdmitry pervushin if (!r) { 268df17f631Sdmitry pervushin dev_err(&pdev->dev, "failed to get resource\n"); 26987a81420SJingoo Han return -ENXIO; 270df17f631Sdmitry pervushin } 271df17f631Sdmitry pervushin 27287a81420SJingoo Han rtc_data->io = devm_ioremap(&pdev->dev, r->start, resource_size(r)); 273df17f631Sdmitry pervushin if (!rtc_data->io) { 274df17f631Sdmitry pervushin dev_err(&pdev->dev, "ioremap failed\n"); 27587a81420SJingoo Han return -EIO; 276df17f631Sdmitry pervushin } 277df17f631Sdmitry pervushin 278df17f631Sdmitry pervushin rtc_data->irq_alarm = platform_get_irq(pdev, 0); 279df17f631Sdmitry pervushin 280*7f48b21bSUwe Kleine-König rtc_stat = readl(rtc_data->io + STMP3XXX_RTC_STAT); 281*7f48b21bSUwe Kleine-König if (!(rtc_stat & STMP3XXX_RTC_STAT_RTC_PRESENT)) { 282df17f631Sdmitry pervushin dev_err(&pdev->dev, "no device onboard\n"); 28387a81420SJingoo Han return -ENODEV; 284df17f631Sdmitry pervushin } 285df17f631Sdmitry pervushin 286a91d2babSWolfram Sang platform_set_drvdata(pdev, rtc_data); 287a91d2babSWolfram Sang 2884e80b188SFabio Estevam err = stmp_reset_block(rtc_data->io); 2894e80b188SFabio Estevam if (err) { 2904e80b188SFabio Estevam dev_err(&pdev->dev, "stmp_reset_block failed: %d\n", err); 2914e80b188SFabio Estevam return err; 2924e80b188SFabio Estevam } 2934e80b188SFabio Estevam 294*7f48b21bSUwe Kleine-König /* 295*7f48b21bSUwe Kleine-König * Obviously the rtc needs a clock input to be able to run. 296*7f48b21bSUwe Kleine-König * This clock can be provided by an external 32k crystal. If that one is 297*7f48b21bSUwe Kleine-König * missing XTAL must not be disabled in suspend which consumes a 298*7f48b21bSUwe Kleine-König * lot of power. Normally the presence and exact frequency (supported 299*7f48b21bSUwe Kleine-König * are 32000 Hz and 32768 Hz) is detectable from fuses, but as reality 300*7f48b21bSUwe Kleine-König * proves these fuses are not blown correctly on all machines, so the 301*7f48b21bSUwe Kleine-König * frequency can be overridden in the device tree. 302*7f48b21bSUwe Kleine-König */ 303*7f48b21bSUwe Kleine-König if (rtc_stat & STMP3XXX_RTC_STAT_XTAL32000_PRESENT) 304*7f48b21bSUwe Kleine-König crystalfreq = 32000; 305*7f48b21bSUwe Kleine-König else if (rtc_stat & STMP3XXX_RTC_STAT_XTAL32768_PRESENT) 306*7f48b21bSUwe Kleine-König crystalfreq = 32768; 307*7f48b21bSUwe Kleine-König 308*7f48b21bSUwe Kleine-König of_property_read_u32(pdev->dev.of_node, "stmp,crystal-freq", 309*7f48b21bSUwe Kleine-König &crystalfreq); 310*7f48b21bSUwe Kleine-König 311*7f48b21bSUwe Kleine-König switch (crystalfreq) { 312*7f48b21bSUwe Kleine-König case 32000: 313*7f48b21bSUwe Kleine-König /* keep 32kHz crystal running in low-power mode */ 314*7f48b21bSUwe Kleine-König pers0_set = STMP3XXX_RTC_PERSISTENT0_XTAL32_FREQ | 315*7f48b21bSUwe Kleine-König STMP3XXX_RTC_PERSISTENT0_XTAL32KHZ_PWRUP | 316*7f48b21bSUwe Kleine-König STMP3XXX_RTC_PERSISTENT0_CLOCKSOURCE; 317*7f48b21bSUwe Kleine-König pers0_clr = STMP3XXX_RTC_PERSISTENT0_XTAL24MHZ_PWRUP; 318*7f48b21bSUwe Kleine-König break; 319*7f48b21bSUwe Kleine-König case 32768: 320*7f48b21bSUwe Kleine-König /* keep 32.768kHz crystal running in low-power mode */ 321*7f48b21bSUwe Kleine-König pers0_set = STMP3XXX_RTC_PERSISTENT0_XTAL32KHZ_PWRUP | 322*7f48b21bSUwe Kleine-König STMP3XXX_RTC_PERSISTENT0_CLOCKSOURCE; 323*7f48b21bSUwe Kleine-König pers0_clr = STMP3XXX_RTC_PERSISTENT0_XTAL24MHZ_PWRUP | 324*7f48b21bSUwe Kleine-König STMP3XXX_RTC_PERSISTENT0_XTAL32_FREQ; 325*7f48b21bSUwe Kleine-König break; 326*7f48b21bSUwe Kleine-König default: 327*7f48b21bSUwe Kleine-König dev_warn(&pdev->dev, 328*7f48b21bSUwe Kleine-König "invalid crystal-freq specified in device-tree. Assuming no crystal\n"); 329*7f48b21bSUwe Kleine-König /* fall-through */ 330*7f48b21bSUwe Kleine-König case 0: 331*7f48b21bSUwe Kleine-König /* keep XTAL on in low-power mode */ 332*7f48b21bSUwe Kleine-König pers0_set = STMP3XXX_RTC_PERSISTENT0_XTAL24MHZ_PWRUP; 333*7f48b21bSUwe Kleine-König pers0_clr = STMP3XXX_RTC_PERSISTENT0_XTAL32KHZ_PWRUP | 334*7f48b21bSUwe Kleine-König STMP3XXX_RTC_PERSISTENT0_CLOCKSOURCE; 335*7f48b21bSUwe Kleine-König } 336*7f48b21bSUwe Kleine-König 337*7f48b21bSUwe Kleine-König writel(pers0_set, rtc_data->io + STMP3XXX_RTC_PERSISTENT0_SET); 338*7f48b21bSUwe Kleine-König 339b5167159SWolfram Sang writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN | 34047eac337SWolfram Sang STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN | 341*7f48b21bSUwe Kleine-König STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE | pers0_clr, 342b5167159SWolfram Sang rtc_data->io + STMP3XXX_RTC_PERSISTENT0_CLR); 343a91d2babSWolfram Sang 3447e794cb7SWolfram Sang writel(STMP3XXX_RTC_CTRL_ONEMSEC_IRQ_EN | 3457e794cb7SWolfram Sang STMP3XXX_RTC_CTRL_ALARM_IRQ_EN, 3467e794cb7SWolfram Sang rtc_data->io + STMP3XXX_RTC_CTRL_CLR); 3477e794cb7SWolfram Sang 34887a81420SJingoo Han rtc_data->rtc = devm_rtc_device_register(&pdev->dev, pdev->name, 349df17f631Sdmitry pervushin &stmp3xxx_rtc_ops, THIS_MODULE); 350dfd2a178SJingoo Han if (IS_ERR(rtc_data->rtc)) 351dfd2a178SJingoo Han return PTR_ERR(rtc_data->rtc); 352df17f631Sdmitry pervushin 35387a81420SJingoo Han err = devm_request_irq(&pdev->dev, rtc_data->irq_alarm, 35487a81420SJingoo Han stmp3xxx_rtc_interrupt, 0, "RTC alarm", &pdev->dev); 355df17f631Sdmitry pervushin if (err) { 356df17f631Sdmitry pervushin dev_err(&pdev->dev, "Cannot claim IRQ%d\n", 357df17f631Sdmitry pervushin rtc_data->irq_alarm); 358dfd2a178SJingoo Han return err; 359df17f631Sdmitry pervushin } 360df17f631Sdmitry pervushin 3611a71fb84SWolfram Sang stmp3xxx_wdt_register(pdev); 362df17f631Sdmitry pervushin return 0; 363df17f631Sdmitry pervushin } 364df17f631Sdmitry pervushin 365ef69a7f0SJingoo Han #ifdef CONFIG_PM_SLEEP 366ef69a7f0SJingoo Han static int stmp3xxx_rtc_suspend(struct device *dev) 367df17f631Sdmitry pervushin { 368df17f631Sdmitry pervushin return 0; 369df17f631Sdmitry pervushin } 370df17f631Sdmitry pervushin 371ef69a7f0SJingoo Han static int stmp3xxx_rtc_resume(struct device *dev) 372df17f631Sdmitry pervushin { 373ef69a7f0SJingoo Han struct stmp3xxx_rtc_data *rtc_data = dev_get_drvdata(dev); 374df17f631Sdmitry pervushin 37536d1da1dSShawn Guo stmp_reset_block(rtc_data->io); 376b5167159SWolfram Sang writel(STMP3XXX_RTC_PERSISTENT0_ALARM_EN | 37747eac337SWolfram Sang STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE_EN | 37847eac337SWolfram Sang STMP3XXX_RTC_PERSISTENT0_ALARM_WAKE, 379b5167159SWolfram Sang rtc_data->io + STMP3XXX_RTC_PERSISTENT0_CLR); 380df17f631Sdmitry pervushin return 0; 381df17f631Sdmitry pervushin } 382df17f631Sdmitry pervushin #endif 383df17f631Sdmitry pervushin 384ef69a7f0SJingoo Han static SIMPLE_DEV_PM_OPS(stmp3xxx_rtc_pm_ops, stmp3xxx_rtc_suspend, 385ef69a7f0SJingoo Han stmp3xxx_rtc_resume); 386ef69a7f0SJingoo Han 387dd8d20a3SMarek Vasut static const struct of_device_id rtc_dt_ids[] = { 388dd8d20a3SMarek Vasut { .compatible = "fsl,stmp3xxx-rtc", }, 389dd8d20a3SMarek Vasut { /* sentinel */ } 390dd8d20a3SMarek Vasut }; 391dd8d20a3SMarek Vasut MODULE_DEVICE_TABLE(of, rtc_dt_ids); 392dd8d20a3SMarek Vasut 393df17f631Sdmitry pervushin static struct platform_driver stmp3xxx_rtcdrv = { 394df17f631Sdmitry pervushin .probe = stmp3xxx_rtc_probe, 395df17f631Sdmitry pervushin .remove = stmp3xxx_rtc_remove, 396df17f631Sdmitry pervushin .driver = { 397df17f631Sdmitry pervushin .name = "stmp3xxx-rtc", 398ef69a7f0SJingoo Han .pm = &stmp3xxx_rtc_pm_ops, 399462a465bSSachin Kamat .of_match_table = rtc_dt_ids, 400df17f631Sdmitry pervushin }, 401df17f631Sdmitry pervushin }; 402df17f631Sdmitry pervushin 4030c4eae66SAxel Lin module_platform_driver(stmp3xxx_rtcdrv); 404df17f631Sdmitry pervushin 405df17f631Sdmitry pervushin MODULE_DESCRIPTION("STMP3xxx RTC Driver"); 4067e794cb7SWolfram Sang MODULE_AUTHOR("dmitry pervushin <dpervushin@embeddedalley.com> and " 4077e794cb7SWolfram Sang "Wolfram Sang <w.sang@pengutronix.de>"); 408df17f631Sdmitry pervushin MODULE_LICENSE("GPL"); 409