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989 lines
26 KiB
989 lines
26 KiB
/* |
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* Copyright (c) 2014-2015 MediaTek Inc. |
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* Author: Tianping.Fang <tianping.fang@mediatek.com> |
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* |
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* This program is free software; you can redistribute it and/or modify |
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* it under the terms of the GNU General Public License version 2 as |
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* published by the Free Software Foundation. |
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* |
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* This program is distributed in the hope that it will be useful, |
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* but WITHOUT ANY WARRANTY; without even the implied warranty of |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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* GNU General Public License for more details. |
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*/ |
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|
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#include <linux/delay.h> |
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#include <linux/init.h> |
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#include <linux/module.h> |
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#include <linux/regmap.h> |
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#include <linux/rtc.h> |
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#include <linux/irqdomain.h> |
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#include <linux/platform_device.h> |
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#include <linux/of_address.h> |
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#include <linux/of_irq.h> |
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#include <linux/io.h> |
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#include <linux/mfd/mt6397/core.h> |
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#include <linux/reboot.h> |
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#ifdef CONFIG_MTK_KERNEL_POWER_OFF_CHARGING |
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#include "../misc/mediatek/include/mt-plat/mtk_boot_common.h" |
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#endif |
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|
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#define RTC_BBPU 0x0000 |
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#define RTC_BBPU_CBUSY BIT(6) |
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|
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#define RTC_WRTGR 0x003c |
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|
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#define RTC_IRQ_STA 0x0002 |
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#define RTC_IRQ_STA_AL BIT(0) |
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#define RTC_IRQ_STA_LP BIT(3) |
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|
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#define RTC_IRQ_EN 0x0004 |
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#define RTC_IRQ_EN_AL BIT(0) |
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#define RTC_IRQ_EN_ONESHOT BIT(2) |
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#define RTC_IRQ_EN_LP BIT(3) |
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#define RTC_IRQ_EN_ONESHOT_AL (RTC_IRQ_EN_ONESHOT | RTC_IRQ_EN_AL) |
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|
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#define RTC_AL_YEA_MASK 0x007f |
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#define RTC_AL_MTH_MASK 0x000f |
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#define RTC_AL_DOM_MASK 0x001f |
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#define RTC_AL_HOU_MASK 0x001f |
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#define RTC_AL_MIN_MASK 0x003f |
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#define RTC_AL_SEC_MASK 0x003f |
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|
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#define RTC_AL_MASK 0x0008 |
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#define RTC_AL_MASK_DOW BIT(4) |
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#define RTC_TC_SEC 0x000a |
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#define RTC_SPAR1 0x0032 |
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#define RTC_AL_SEC 0x0018 |
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|
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/* Min, Hour, Dom... register offset to RTC_TC_SEC */ |
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#define RTC_OFFSET_SEC 0 |
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#define RTC_OFFSET_MIN 1 |
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#define RTC_OFFSET_HOUR 2 |
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#define RTC_OFFSET_DOM 3 |
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#define RTC_OFFSET_DOW 4 |
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#define RTC_OFFSET_MTH 5 |
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#define RTC_OFFSET_YEAR 6 |
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#define RTC_OFFSET_COUNT 7 |
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#define RTC_AL_SEC 0x0018 |
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|
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#define RTC_PDN2 0x002e |
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#define RTC_PDN1 0x002c |
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#define RTC_SPAR0 0x0030 |
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#define RTC_PDN2_PWRON_ALARM BIT(4) |
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#define RTC_PDN1_PWRON_TIME BIT(7) |
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#define RTC_PDN2_PWRON_LOGO BIT(15) |
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#define RTC_BBPU_RELOAD BIT(5) |
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#define RTC_BBPU_KEY (0x43 << 8) |
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#define RTC_PWRON_YEA RTC_PDN2 |
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#define RTC_PWRON_YEA_MASK 0x7f00 |
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#define RTC_PWRON_YEA_SHIFT 8 |
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#define RTC_PWRON_MTH RTC_PDN2 |
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#define RTC_PWRON_MTH_MASK 0x000f |
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#define RTC_PWRON_MTH_SHIFT 0 |
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#define RTC_PWRON_SEC RTC_SPAR0 |
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#define RTC_PWRON_SEC_MASK 0x003f |
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#define RTC_PWRON_SEC_SHIFT 0 |
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#define RTC_SPAR0_ALARM_BOOT BIT(8) |
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#define RTC_PWRON_MIN RTC_SPAR1 |
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#define RTC_PWRON_MIN_MASK 0x003f |
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#define RTC_PWRON_MIN_SHIFT 0 |
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#define RTC_PWRON_HOU RTC_SPAR1 |
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#define RTC_PWRON_HOU_MASK 0x07c0 |
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#define RTC_PWRON_HOU_SHIFT 6 |
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#define RTC_PWRON_DOM RTC_SPAR1 |
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#define RTC_PWRON_DOM_MASK 0xf800 |
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#define RTC_PWRON_DOM_SHIFT 11 |
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#define RTC_MIN_YEAR 1968 |
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#define RTC_BASE_YEAR 1900 |
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#define RTC_NUM_YEARS 128 |
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#define RTC_MIN_YEAR_OFFSET (RTC_MIN_YEAR - RTC_BASE_YEAR) |
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struct mt6397_rtc { |
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struct device *dev; |
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struct rtc_device *rtc_dev; |
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struct mutex lock; |
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struct regmap *regmap; |
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int irq; |
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u32 addr_base; |
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}; |
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static struct mt6397_rtc *mt_rtc; |
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static int mtk_rtc_write_trigger(struct mt6397_rtc *rtc) |
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{ |
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unsigned long timeout = jiffies + HZ; |
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int ret; |
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u32 data; |
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ret = regmap_write(rtc->regmap, rtc->addr_base + RTC_WRTGR, 1); |
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if (ret < 0) |
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return ret; |
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while (1) { |
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ret = regmap_read(rtc->regmap, rtc->addr_base + RTC_BBPU, |
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&data); |
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if (ret < 0) |
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break; |
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if (!(data & RTC_BBPU_CBUSY)) |
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break; |
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if (time_after(jiffies, timeout)) { |
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ret = -ETIMEDOUT; |
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break; |
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} |
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cpu_relax(); |
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} |
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return ret; |
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} |
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static void _mtk_rtc_save_pwron_alarm(void) |
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{ |
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u32 pdn1, pdn2; |
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int ret; |
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ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_PDN1, &pdn1); |
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if (ret < 0) |
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goto exit; |
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ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_PDN2, &pdn2); |
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if (ret < 0) |
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goto exit; |
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pdn1 &= ~RTC_PDN1_PWRON_TIME; |
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pdn2 |= RTC_PDN2_PWRON_ALARM; |
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ret = regmap_write(mt_rtc->regmap, |
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mt_rtc->addr_base + RTC_PDN1, pdn1); |
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if (ret < 0) |
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goto exit; |
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ret = regmap_write(mt_rtc->regmap, |
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mt_rtc->addr_base + RTC_PDN2, pdn2); |
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if (ret < 0) |
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goto exit; |
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mtk_rtc_write_trigger(mt_rtc); |
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return; |
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exit: |
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dev_err(mt_rtc->dev, "_mtk_rtc_save_pwron_alarm regmap write/read error!!!\n"); |
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} |
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static void _mtk_rtc_set_alarm(struct rtc_time *tm) |
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{ |
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u16 data[RTC_OFFSET_COUNT], data_b[RTC_OFFSET_COUNT]; |
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int ret; |
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ret = regmap_bulk_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_AL_SEC, |
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data_b, RTC_OFFSET_COUNT); |
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if (ret < 0) |
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goto exit; |
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data[RTC_OFFSET_SEC] = ((data_b[RTC_OFFSET_SEC] & ~(RTC_AL_SEC_MASK)) | (tm->tm_sec & RTC_AL_SEC_MASK)); |
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data[RTC_OFFSET_MIN] = ((data_b[RTC_OFFSET_MIN] & ~(RTC_AL_MIN_MASK)) | (tm->tm_min & RTC_AL_MIN_MASK)); |
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data[RTC_OFFSET_HOUR] = ((data_b[RTC_OFFSET_HOUR] & ~(RTC_AL_HOU_MASK)) | (tm->tm_hour & RTC_AL_HOU_MASK)); |
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data[RTC_OFFSET_DOM] = ((data_b[RTC_OFFSET_DOM] & ~(RTC_AL_DOM_MASK)) | (tm->tm_mday & RTC_AL_DOM_MASK)); |
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data[RTC_OFFSET_MTH] = ((data_b[RTC_OFFSET_MTH] & ~(RTC_AL_MTH_MASK)) | (tm->tm_mon & RTC_AL_MTH_MASK)); |
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data[RTC_OFFSET_YEAR] = ((data_b[RTC_OFFSET_YEAR] & ~(RTC_AL_YEA_MASK)) | (tm->tm_year & RTC_AL_YEA_MASK)); |
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dev_notice(mt_rtc->dev, "set al time = %04d/%02d/%02d %02d:%02d:%02d\n", |
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tm->tm_year + RTC_MIN_YEAR, tm->tm_mon, tm->tm_mday, |
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tm->tm_hour, tm->tm_min, tm->tm_sec); |
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ret = regmap_bulk_write(mt_rtc->regmap, |
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mt_rtc->addr_base + RTC_AL_SEC, |
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data, RTC_OFFSET_COUNT); |
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if (ret < 0) |
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goto exit; |
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ret = regmap_write(mt_rtc->regmap, mt_rtc->addr_base + RTC_AL_MASK, |
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RTC_AL_MASK_DOW); |
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if (ret < 0) |
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goto exit; |
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ret = regmap_update_bits(mt_rtc->regmap, |
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mt_rtc->addr_base + RTC_IRQ_EN, |
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RTC_IRQ_EN_ONESHOT_AL, |
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RTC_IRQ_EN_ONESHOT_AL); |
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if (ret < 0) |
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goto exit; |
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mtk_rtc_write_trigger(mt_rtc); |
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return; |
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exit: |
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dev_err(mt_rtc->dev, "regmap write/read error!!!\n"); |
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} |
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static void _rtc_get_tick(struct rtc_time *tm) |
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{ |
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int ret; |
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u16 data[RTC_OFFSET_COUNT]; |
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ret = regmap_bulk_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_TC_SEC, |
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data, RTC_OFFSET_COUNT); |
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if (ret < 0) |
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goto exit; |
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tm->tm_sec = data[RTC_OFFSET_SEC]; |
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tm->tm_min = data[RTC_OFFSET_MIN]; |
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tm->tm_hour = data[RTC_OFFSET_HOUR]; |
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tm->tm_mday = data[RTC_OFFSET_DOM]; |
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tm->tm_mon = data[RTC_OFFSET_MTH]; |
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tm->tm_year = data[RTC_OFFSET_YEAR]; |
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return; |
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exit: |
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dev_err(mt_rtc->dev, "_rtc_get_tick regmap write/read error!!!\n"); |
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} |
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static void _mtk_rtc_get_tick_time(struct rtc_time *tm) |
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{ |
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u32 bbpu, sec; |
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int ret; |
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ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_BBPU, &bbpu); |
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if (ret < 0) |
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goto exit; |
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bbpu |= RTC_BBPU_KEY | RTC_BBPU_RELOAD; |
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ret = regmap_write(mt_rtc->regmap, mt_rtc->addr_base + RTC_BBPU, bbpu); |
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if (ret < 0) |
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goto exit; |
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mtk_rtc_write_trigger(mt_rtc); |
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_rtc_get_tick(tm); |
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ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_TC_SEC, &sec); |
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if (ret < 0) |
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goto exit; |
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if (sec < tm->tm_sec) { /* SEC has carried */ |
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_rtc_get_tick(tm); |
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} |
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return; |
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exit: |
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dev_err(mt_rtc->dev, "_mtk_rtc_get_tick_time regmap write/read error!!!\n"); |
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} |
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static void _mtk_rtc_get_pwron_alarm_time(struct rtc_time *tm) |
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{ |
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u32 spar1, pdn2, spar0; |
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int ret; |
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/*RTC_PWRON_SEC == SPAR0 */ |
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ret = regmap_read(mt_rtc->regmap, |
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mt_rtc->addr_base + RTC_SPAR0, &spar0); |
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if (ret < 0) |
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goto exit; |
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/*RTC_PWRON_DOM == RTC_PWRON_HOU */ |
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/*== RTC_PWRON_MIN == RTC_SPAR1*/ |
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ret = regmap_read(mt_rtc->regmap, |
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mt_rtc->addr_base + RTC_SPAR1, &spar1); |
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if (ret < 0) |
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goto exit; |
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/*RTC_PWRON_MTH == RTC_PWRON_YEAR== SPAR0 */ |
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ret = regmap_read(mt_rtc->regmap, |
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mt_rtc->addr_base + RTC_PDN2, &pdn2); |
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if (ret < 0) |
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goto exit; |
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dev_notice(mt_rtc->dev, "spar0=0x%x, spar1=0x%x, pdn2=0x%x!!!\n", spar0, spar1, pdn2); |
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tm->tm_sec = (spar0 & RTC_PWRON_SEC_MASK) >> RTC_PWRON_SEC_SHIFT; |
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tm->tm_min = (spar1 & RTC_PWRON_MIN_MASK) >> RTC_PWRON_MIN_SHIFT; |
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tm->tm_hour = (spar1 & RTC_PWRON_HOU_MASK) >> RTC_PWRON_HOU_SHIFT; |
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tm->tm_mday = (spar1 & RTC_PWRON_DOM_MASK) >> RTC_PWRON_DOM_SHIFT; |
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tm->tm_mon = (pdn2 & RTC_PWRON_MTH_MASK) >> RTC_PWRON_MTH_SHIFT; |
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tm->tm_year = (pdn2 & RTC_PWRON_YEA_MASK) >> RTC_PWRON_YEA_SHIFT; |
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dev_notice(mt_rtc->dev, "year=0x%x,mon=0x%x,mday =0x%x hou=0x%x,min=0x%x,sec=0x%x\n", |
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tm->tm_year, tm->tm_mon, tm->tm_mday, |
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tm->tm_hour, tm->tm_min, tm->tm_sec); |
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return; |
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exit: |
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dev_err(mt_rtc->dev, "_mtk_rtc_get_pwron_alarm_time regmap write/read error!!!\n"); |
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} |
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#if defined(CONFIG_MTK_KERNEL_POWER_OFF_CHARGING) |
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static void _mtk_rtc_set_alarm_boot(void) |
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{ |
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u32 spar0; |
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int ret; |
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ret = regmap_read(mt_rtc->regmap, |
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mt_rtc->addr_base + RTC_SPAR0, &spar0); |
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if (ret < 0) |
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goto exit; |
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spar0 |= RTC_SPAR0_ALARM_BOOT; |
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ret = regmap_write(mt_rtc->regmap, |
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mt_rtc->addr_base + RTC_SPAR0, spar0); |
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if (ret < 0) |
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goto exit; |
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mtk_rtc_write_trigger(mt_rtc); |
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return; |
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exit: |
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dev_err(mt_rtc->dev, "regmap write/read error!!!\n"); |
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} |
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#endif |
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static bool _mtk_rtc_is_pwron_alarm(struct rtc_time *nowtm, struct rtc_time *tm) |
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{ |
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u32 pdn1, sec; |
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int ret; |
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ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_PDN1, &pdn1); |
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if (ret < 0) |
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goto exit; |
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dev_notice(mt_rtc->dev, "pdn1 = 0x%x!!!\n", pdn1); |
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/* power-on time is available */ |
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if (pdn1 & RTC_PDN1_PWRON_TIME) { |
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_mtk_rtc_get_tick_time(nowtm); |
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ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_TC_SEC, &sec); |
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if (ret < 0) |
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goto exit; |
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if (sec < nowtm->tm_sec) { /* SEC has carried */ |
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_mtk_rtc_get_tick_time(nowtm); |
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} |
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_mtk_rtc_get_pwron_alarm_time(tm); |
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return true; |
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} |
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return false; |
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exit: |
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dev_err(mt_rtc->dev, "_mtk_rtc_is_pwron_alarm regmap write/read error!!!\n"); |
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return false; |
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} |
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static irqreturn_t mtk_rtc_irq_handler_thread(int irq, void *data) |
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{ |
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struct mt6397_rtc *rtc = data; |
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u32 irqsta, irqen; |
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int ret; |
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bool pwron_alm = false, pwron_alarm = false; |
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struct rtc_time nowtm; |
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struct rtc_time tm; |
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mutex_lock(&rtc->lock); |
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ret = regmap_read(rtc->regmap, rtc->addr_base + RTC_IRQ_STA, &irqsta); |
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if ((ret >= 0) && (irqsta & RTC_IRQ_STA_AL)) { |
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pwron_alarm = _mtk_rtc_is_pwron_alarm(&nowtm, &tm); |
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nowtm.tm_year += RTC_MIN_YEAR; |
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tm.tm_year += RTC_MIN_YEAR; |
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dev_notice(mt_rtc->dev, "[RTC] nowtm = %d/%d/%d %d:%d:%d\n", |
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nowtm.tm_year, nowtm.tm_mon, nowtm.tm_mday, nowtm.tm_hour, nowtm.tm_min, nowtm.tm_sec); |
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if (pwron_alarm) { |
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unsigned long now_time, time; |
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now_time = mktime(nowtm.tm_year, |
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nowtm.tm_mon, |
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nowtm.tm_mday, |
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nowtm.tm_hour, |
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nowtm.tm_min, |
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nowtm.tm_sec); |
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time = mktime(tm.tm_year, |
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tm.tm_mon, |
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tm.tm_mday, |
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tm.tm_hour, |
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tm.tm_min, |
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tm.tm_sec); |
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/* power on */ |
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if (now_time >= time - 1 && now_time <= time + 4) { |
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#if defined(CONFIG_MTK_KERNEL_POWER_OFF_CHARGING) |
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if (get_boot_mode() == KERNEL_POWER_OFF_CHARGING_BOOT |
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|| get_boot_mode() == LOW_POWER_OFF_CHARGING_BOOT) { |
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dev_notice(mt_rtc->dev, "KPOC alarm!!!\n"); |
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time += 1; |
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rtc_time_to_tm(time, &tm); |
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tm.tm_year -= RTC_MIN_YEAR_OFFSET; |
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tm.tm_mon += 1; |
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/* tm.tm_sec += 1; */ |
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_mtk_rtc_set_alarm(&tm); |
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_mtk_rtc_set_alarm_boot(); |
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mutex_unlock(&rtc->lock); |
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machine_restart(NULL); |
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} else { |
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_mtk_rtc_save_pwron_alarm(); |
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pwron_alm = true; |
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} |
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#else |
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_mtk_rtc_save_pwron_alarm(); |
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pwron_alm = true; |
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#endif |
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} else if (now_time < time) { /* set power-on alarm */ |
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tm.tm_year -= RTC_MIN_YEAR; |
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dev_notice(mt_rtc->dev, "KPOC alarm again!!!\n"); |
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if (tm.tm_sec == 0) { |
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tm.tm_sec = 59; |
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tm.tm_min -= 1; |
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} else { |
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tm.tm_sec -= 1; |
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} |
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_mtk_rtc_set_alarm(&tm); |
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} |
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} |
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rtc_update_irq(rtc->rtc_dev, 1, RTC_IRQF | RTC_AF); |
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irqen = irqsta & ~RTC_IRQ_EN_AL; |
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|
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if (regmap_write(rtc->regmap, rtc->addr_base + RTC_IRQ_EN, |
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irqen) >= 0) |
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mtk_rtc_write_trigger(rtc); |
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mutex_unlock(&rtc->lock); |
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|
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return IRQ_HANDLED; |
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} |
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mutex_unlock(&rtc->lock); |
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return IRQ_NONE; |
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} |
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static int __mtk_rtc_read_time(struct mt6397_rtc *rtc, |
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struct rtc_time *tm, int *sec) |
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{ |
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int ret; |
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u16 data[RTC_OFFSET_COUNT]; |
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|
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mutex_lock(&rtc->lock); |
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ret = regmap_bulk_read(rtc->regmap, rtc->addr_base + RTC_TC_SEC, |
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data, RTC_OFFSET_COUNT); |
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if (ret < 0) |
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goto exit; |
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tm->tm_sec = data[RTC_OFFSET_SEC]; |
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tm->tm_min = data[RTC_OFFSET_MIN]; |
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tm->tm_hour = data[RTC_OFFSET_HOUR]; |
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tm->tm_mday = data[RTC_OFFSET_DOM]; |
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tm->tm_mon = data[RTC_OFFSET_MTH]; |
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tm->tm_year = data[RTC_OFFSET_YEAR]; |
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|
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ret = regmap_read(rtc->regmap, rtc->addr_base + RTC_TC_SEC, sec); |
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exit: |
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mutex_unlock(&rtc->lock); |
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return ret; |
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} |
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|
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void rtc_read_pwron_alarm(struct rtc_wkalrm *alm) |
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{ |
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struct rtc_time *tm; |
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u32 pdn1, pdn2; |
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int ret; |
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u16 data[RTC_OFFSET_COUNT]; |
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|
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if (alm == NULL) |
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return; |
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dev_notice(mt_rtc->dev, "rtc_read_pwron_alarm!!!\n"); |
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tm = &alm->time; |
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mutex_lock(&mt_rtc->lock); |
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ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_PDN1, &pdn1); |
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if (ret < 0) |
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goto exit; |
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ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_PDN2, &pdn2); |
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if (ret < 0) |
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goto exit; |
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|
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ret = regmap_bulk_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_AL_SEC, |
|
data, RTC_OFFSET_COUNT); |
|
if (ret < 0) |
|
goto exit; |
|
alm->enabled = (pdn1 & RTC_PDN1_PWRON_TIME ? (pdn2 & RTC_PDN2_PWRON_LOGO ? 3 : 2) : 0); |
|
/* return Power-On Alarm bit */ |
|
alm->pending = !!(pdn2 & RTC_PDN2_PWRON_ALARM); |
|
|
|
tm->tm_sec = data[RTC_OFFSET_SEC] & RTC_AL_SEC_MASK; |
|
tm->tm_min = data[RTC_OFFSET_MIN] & RTC_AL_MIN_MASK; |
|
tm->tm_hour = data[RTC_OFFSET_HOUR] & RTC_AL_HOU_MASK; |
|
tm->tm_mday = data[RTC_OFFSET_DOM] & RTC_AL_DOM_MASK; |
|
tm->tm_mon = data[RTC_OFFSET_MTH] & RTC_AL_MTH_MASK; |
|
tm->tm_year = data[RTC_OFFSET_YEAR] & RTC_AL_YEA_MASK; |
|
mutex_unlock(&mt_rtc->lock); |
|
tm->tm_year += RTC_MIN_YEAR_OFFSET; |
|
tm->tm_mon--; |
|
dev_notice(mt_rtc->dev, "power-on = %04d/%02d/%02d %02d:%02d:%02d (%d)(%d)\n", |
|
tm->tm_year + 1900, tm->tm_mon + 1, tm->tm_mday, |
|
tm->tm_hour, tm->tm_min, tm->tm_sec, alm->enabled, alm->pending); |
|
return; |
|
|
|
exit: |
|
mutex_unlock(&mt_rtc->lock); |
|
dev_err(mt_rtc->dev, "regmap write/read error!!!\n"); |
|
} |
|
|
|
static void _rtc_set_pwron_alarm_time(struct rtc_time *tm) |
|
{ |
|
u32 spar1, pdn2, spar0; |
|
int ret; |
|
u32 tm_year, tm_mon, tm_mday, tm_hour, tm_min, tm_sec; |
|
|
|
dev_notice(mt_rtc->dev, "_rtc_save_pwron_time!!!\n"); |
|
/*RTC_PWRON_YEAR == RTC_PWRON_MTH==PDN2 */ |
|
ret = regmap_read(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_PDN2, &pdn2); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
/*RTC_PWRON_DOM == RTC_PWRON_HOU */ |
|
/*== RTC_PWRON_MIN == RTC_SPAR1*/ |
|
ret = regmap_read(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_SPAR1, &spar1); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
ret = regmap_read(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_SPAR0, &spar0); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
tm_year = (tm->tm_year << RTC_PWRON_YEA_SHIFT) & RTC_PWRON_YEA_MASK; |
|
tm_mon = (tm->tm_mon << RTC_PWRON_MTH_SHIFT) & RTC_PWRON_MTH_MASK; |
|
tm_mday = (tm->tm_mday << RTC_PWRON_DOM_SHIFT) & RTC_PWRON_DOM_MASK; |
|
tm_hour = (tm->tm_hour << RTC_PWRON_HOU_SHIFT) & RTC_PWRON_HOU_MASK; |
|
tm_min = (tm->tm_min << RTC_PWRON_MIN_SHIFT) & RTC_PWRON_MIN_MASK; |
|
tm_sec = (tm->tm_sec << RTC_PWRON_SEC_SHIFT) & RTC_PWRON_SEC_MASK; |
|
|
|
tm_year |= pdn2 & ~(RTC_PWRON_YEA_MASK); |
|
ret = regmap_write(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_PDN2, tm_year); |
|
if (ret < 0) |
|
goto exit; |
|
mtk_rtc_write_trigger(mt_rtc); |
|
|
|
ret = regmap_read(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_PDN2, &pdn2); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
tm_mon |= pdn2 & ~(RTC_PWRON_MTH_MASK); |
|
ret = regmap_write(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_PDN2, tm_mon); |
|
if (ret < 0) |
|
goto exit; |
|
mtk_rtc_write_trigger(mt_rtc); |
|
|
|
tm_mday |= spar1 & ~(RTC_PWRON_DOM_MASK); |
|
ret = regmap_write(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_SPAR1, tm_mday); |
|
if (ret < 0) |
|
goto exit; |
|
mtk_rtc_write_trigger(mt_rtc); |
|
|
|
ret = regmap_read(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_SPAR1, &spar1); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
tm_hour |= spar1 & ~(RTC_PWRON_HOU_MASK); |
|
ret = regmap_write(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_SPAR1, tm_hour); |
|
if (ret < 0) |
|
goto exit; |
|
mtk_rtc_write_trigger(mt_rtc); |
|
|
|
ret = regmap_read(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_SPAR1, &spar1); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
tm_min |= spar1 & ~(RTC_PWRON_MIN_MASK); |
|
ret = regmap_write(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_SPAR1, tm_min); |
|
if (ret < 0) |
|
goto exit; |
|
mtk_rtc_write_trigger(mt_rtc); |
|
|
|
|
|
tm_sec |= spar0 & ~(RTC_PWRON_SEC_MASK); |
|
ret = regmap_write(mt_rtc->regmap, |
|
mt_rtc->addr_base + RTC_SPAR0, tm_sec); |
|
if (ret < 0) |
|
goto exit; |
|
mtk_rtc_write_trigger(mt_rtc); |
|
|
|
return; |
|
|
|
exit: |
|
mutex_unlock(&mt_rtc->lock); |
|
dev_err(mt_rtc->dev, "regmap write/read error!!!\n"); |
|
|
|
} |
|
|
|
void mtk_rtc_save_pwron_time(bool enable, struct rtc_time *tm, bool logo) |
|
{ |
|
u32 pdn1, pdn2; |
|
int ret; |
|
|
|
dev_notice(mt_rtc->dev, "mtk_rtc_save_pwron_time!!!\n"); |
|
_rtc_set_pwron_alarm_time(tm); |
|
|
|
ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_PDN2, &pdn2); |
|
if (ret < 0) |
|
goto exit; |
|
ret = regmap_read(mt_rtc->regmap, mt_rtc->addr_base + RTC_PDN1, &pdn1); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
if (logo) |
|
pdn2 |= RTC_PDN2_PWRON_LOGO; |
|
else |
|
pdn2 &= ~RTC_PDN2_PWRON_LOGO; |
|
|
|
ret = regmap_write(mt_rtc->regmap, mt_rtc->addr_base + RTC_PDN2, pdn2); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
if (enable) |
|
pdn1 |= RTC_PDN1_PWRON_TIME; |
|
else |
|
pdn1 &= ~RTC_PDN1_PWRON_TIME; |
|
ret = regmap_write(mt_rtc->regmap, mt_rtc->addr_base + RTC_PDN1, pdn1); |
|
if (ret < 0) |
|
goto exit; |
|
mtk_rtc_write_trigger(mt_rtc); |
|
|
|
return; |
|
|
|
exit: |
|
mutex_unlock(&mt_rtc->lock); |
|
dev_err(mt_rtc->dev, "regmap write/read error!!!\n"); |
|
|
|
} |
|
|
|
static int mtk_rtc_read_time(struct device *dev, struct rtc_time *tm) |
|
{ |
|
time64_t time; |
|
struct mt6397_rtc *rtc = dev_get_drvdata(dev); |
|
int days, sec, ret; |
|
|
|
do { |
|
ret = __mtk_rtc_read_time(rtc, tm, &sec); |
|
if (ret < 0) |
|
goto exit; |
|
} while (sec < tm->tm_sec); |
|
|
|
/* HW register use 7 bits to store year data, minus |
|
* RTC_MIN_YEAR_OFFSET before write year data to register, and plus |
|
* RTC_MIN_YEAR_OFFSET back after read year from register |
|
*/ |
|
tm->tm_year += RTC_MIN_YEAR_OFFSET; |
|
|
|
/* HW register start mon from one, but tm_mon start from zero. */ |
|
tm->tm_mon--; |
|
time = rtc_tm_to_time64(tm); |
|
|
|
/* rtc_tm_to_time64 covert Gregorian date to seconds since |
|
* 01-01-1970 00:00:00, and this date is Thursday. |
|
*/ |
|
days = div_s64(time, 86400); |
|
tm->tm_wday = (days + 4) % 7; |
|
|
|
exit: |
|
return ret; |
|
} |
|
|
|
static int mtk_rtc_set_time(struct device *dev, struct rtc_time *tm) |
|
{ |
|
struct mt6397_rtc *rtc = dev_get_drvdata(dev); |
|
int ret; |
|
u16 data[RTC_OFFSET_COUNT]; |
|
|
|
tm->tm_year -= RTC_MIN_YEAR_OFFSET; |
|
tm->tm_mon++; |
|
|
|
data[RTC_OFFSET_SEC] = tm->tm_sec; |
|
data[RTC_OFFSET_MIN] = tm->tm_min; |
|
data[RTC_OFFSET_HOUR] = tm->tm_hour; |
|
data[RTC_OFFSET_DOM] = tm->tm_mday; |
|
data[RTC_OFFSET_MTH] = tm->tm_mon; |
|
data[RTC_OFFSET_YEAR] = tm->tm_year; |
|
|
|
mutex_lock(&rtc->lock); |
|
ret = regmap_bulk_write(rtc->regmap, rtc->addr_base + RTC_TC_SEC, |
|
data, RTC_OFFSET_COUNT); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
/* Time register write to hardware after call trigger function */ |
|
ret = mtk_rtc_write_trigger(rtc); |
|
|
|
exit: |
|
mutex_unlock(&rtc->lock); |
|
return ret; |
|
} |
|
|
|
static int mtk_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alm) |
|
{ |
|
struct rtc_time *tm = &alm->time; |
|
struct mt6397_rtc *rtc = dev_get_drvdata(dev); |
|
u32 irqen, pdn2; |
|
int ret; |
|
u16 data[RTC_OFFSET_COUNT]; |
|
|
|
mutex_lock(&rtc->lock); |
|
ret = regmap_read(rtc->regmap, rtc->addr_base + RTC_IRQ_EN, &irqen); |
|
if (ret < 0) |
|
goto err_exit; |
|
ret = regmap_read(rtc->regmap, rtc->addr_base + RTC_PDN2, &pdn2); |
|
if (ret < 0) |
|
goto err_exit; |
|
|
|
ret = regmap_bulk_read(rtc->regmap, rtc->addr_base + RTC_AL_SEC, |
|
data, RTC_OFFSET_COUNT); |
|
if (ret < 0) |
|
goto err_exit; |
|
|
|
alm->enabled = !!(irqen & RTC_IRQ_EN_AL); |
|
alm->pending = !!(pdn2 & RTC_PDN2_PWRON_ALARM); |
|
mutex_unlock(&rtc->lock); |
|
|
|
tm->tm_sec = data[RTC_OFFSET_SEC] & RTC_AL_SEC_MASK; |
|
tm->tm_min = data[RTC_OFFSET_MIN] & RTC_AL_MIN_MASK; |
|
tm->tm_hour = data[RTC_OFFSET_HOUR] & RTC_AL_HOU_MASK; |
|
tm->tm_mday = data[RTC_OFFSET_DOM] & RTC_AL_DOM_MASK; |
|
tm->tm_mon = data[RTC_OFFSET_MTH] & RTC_AL_MTH_MASK; |
|
tm->tm_year = data[RTC_OFFSET_YEAR] & RTC_AL_YEA_MASK; |
|
|
|
tm->tm_year += RTC_MIN_YEAR_OFFSET; |
|
tm->tm_mon--; |
|
|
|
return 0; |
|
err_exit: |
|
mutex_unlock(&rtc->lock); |
|
return ret; |
|
} |
|
|
|
static int mtk_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alm) |
|
{ |
|
struct rtc_time *tm = &alm->time; |
|
struct mt6397_rtc *rtc = dev_get_drvdata(dev); |
|
int ret; |
|
u16 data[RTC_OFFSET_COUNT], data_b[RTC_OFFSET_COUNT]; |
|
u32 irqsta, irqen, pdn2; |
|
|
|
tm->tm_year -= RTC_MIN_YEAR_OFFSET; |
|
tm->tm_mon++; |
|
|
|
ret = regmap_bulk_read(rtc->regmap, rtc->addr_base + RTC_AL_SEC, |
|
data_b, RTC_OFFSET_COUNT); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
data[RTC_OFFSET_SEC] = ((data_b[RTC_OFFSET_SEC] & ~(RTC_AL_SEC_MASK)) | (tm->tm_sec & RTC_AL_SEC_MASK)); |
|
data[RTC_OFFSET_MIN] = ((data_b[RTC_OFFSET_MIN] & ~(RTC_AL_MIN_MASK)) | (tm->tm_min & RTC_AL_MIN_MASK)); |
|
data[RTC_OFFSET_HOUR] = ((data_b[RTC_OFFSET_HOUR] & ~(RTC_AL_HOU_MASK)) | (tm->tm_hour & RTC_AL_HOU_MASK)); |
|
data[RTC_OFFSET_DOM] = ((data_b[RTC_OFFSET_DOM] & ~(RTC_AL_DOM_MASK)) | (tm->tm_mday & RTC_AL_DOM_MASK)); |
|
data[RTC_OFFSET_MTH] = ((data_b[RTC_OFFSET_MTH] & ~(RTC_AL_MTH_MASK)) | (tm->tm_mon & RTC_AL_MTH_MASK)); |
|
data[RTC_OFFSET_YEAR] = ((data_b[RTC_OFFSET_YEAR] & ~(RTC_AL_YEA_MASK)) | (tm->tm_year & RTC_AL_YEA_MASK)); |
|
|
|
dev_notice(rtc->dev, "set al time = %04d/%02d/%02d %02d:%02d:%02d (%d)\n", |
|
tm->tm_year + RTC_MIN_YEAR, tm->tm_mon, tm->tm_mday, |
|
tm->tm_hour, tm->tm_min, tm->tm_sec, alm->enabled); |
|
|
|
mutex_lock(&rtc->lock); |
|
switch (alm->enabled) { |
|
case 2: |
|
/* enable power-on alarm */ |
|
mtk_rtc_save_pwron_time(true, tm, false); |
|
break; |
|
case 3: |
|
/* enable power-on alarm with logo */ |
|
mtk_rtc_save_pwron_time(true, tm, true); |
|
break; |
|
case 4: |
|
/* disable power-on alarm */ |
|
mtk_rtc_save_pwron_time(false, tm, false); |
|
break; |
|
default: |
|
break; |
|
} |
|
|
|
ret = regmap_read(rtc->regmap, rtc->addr_base + RTC_IRQ_EN, &irqen); |
|
if (ret < 0) |
|
goto exit; |
|
irqen &= ~RTC_IRQ_EN_AL; |
|
ret = regmap_read(rtc->regmap, rtc->addr_base + RTC_PDN2, &pdn2); |
|
if (ret < 0) |
|
goto exit; |
|
pdn2 &= ~RTC_PDN2_PWRON_ALARM; |
|
|
|
ret = regmap_write(rtc->regmap, rtc->addr_base + RTC_IRQ_EN, irqen); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
ret = regmap_write(rtc->regmap, rtc->addr_base + RTC_PDN2, pdn2); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
mtk_rtc_write_trigger(rtc); |
|
ret = regmap_read(rtc->regmap, rtc->addr_base + RTC_IRQ_STA, &irqsta); |
|
if (ret < 0) |
|
goto exit; |
|
|
|
if (alm->enabled) { |
|
ret = regmap_bulk_write(rtc->regmap, |
|
rtc->addr_base + RTC_AL_SEC, |
|
data, RTC_OFFSET_COUNT); |
|
if (ret < 0) |
|
goto exit; |
|
ret = regmap_write(rtc->regmap, rtc->addr_base + RTC_AL_MASK, |
|
RTC_AL_MASK_DOW); |
|
if (ret < 0) |
|
goto exit; |
|
ret = regmap_update_bits(rtc->regmap, |
|
rtc->addr_base + RTC_IRQ_EN, |
|
RTC_IRQ_EN_ONESHOT_AL, |
|
RTC_IRQ_EN_ONESHOT_AL); |
|
if (ret < 0) |
|
goto exit; |
|
} else { |
|
ret = regmap_update_bits(rtc->regmap, |
|
rtc->addr_base + RTC_IRQ_EN, |
|
RTC_IRQ_EN_ONESHOT_AL, 0); |
|
if (ret < 0) |
|
goto exit; |
|
} |
|
|
|
/* All alarm time register write to hardware after calling |
|
* mtk_rtc_write_trigger. This can avoid race condition if alarm |
|
* occur happen during writing alarm time register. |
|
*/ |
|
ret = mtk_rtc_write_trigger(rtc); |
|
exit: |
|
mutex_unlock(&rtc->lock); |
|
return ret; |
|
} |
|
|
|
static struct rtc_class_ops mtk_rtc_ops = { |
|
.read_time = mtk_rtc_read_time, |
|
.set_time = mtk_rtc_set_time, |
|
.read_alarm = mtk_rtc_read_alarm, |
|
.set_alarm = mtk_rtc_set_alarm, |
|
}; |
|
|
|
static int mtk_rtc_probe(struct platform_device *pdev) |
|
{ |
|
struct resource *res; |
|
struct mt6397_chip *mt6397_chip = dev_get_drvdata(pdev->dev.parent); |
|
struct mt6397_rtc *rtc; |
|
int ret; |
|
|
|
rtc = devm_kzalloc(&pdev->dev, sizeof(struct mt6397_rtc), GFP_KERNEL); |
|
if (!rtc) |
|
return -ENOMEM; |
|
|
|
res = platform_get_resource(pdev, IORESOURCE_MEM, 0); |
|
rtc->addr_base = res->start; |
|
|
|
res = platform_get_resource(pdev, IORESOURCE_IRQ, 0); |
|
rtc->irq = irq_create_mapping(mt6397_chip->irq_domain, res->start); |
|
if (rtc->irq <= 0) |
|
return -EINVAL; |
|
|
|
rtc->regmap = mt6397_chip->regmap; |
|
rtc->dev = &pdev->dev; |
|
mutex_init(&rtc->lock); |
|
|
|
mt_rtc = rtc; |
|
platform_set_drvdata(pdev, rtc); |
|
|
|
ret = request_threaded_irq(rtc->irq, NULL, |
|
mtk_rtc_irq_handler_thread, |
|
IRQF_ONESHOT | IRQF_TRIGGER_HIGH, |
|
"mt6397-rtc", rtc); |
|
if (ret) { |
|
dev_err(&pdev->dev, "Failed to request alarm IRQ: %d: %d\n", |
|
rtc->irq, ret); |
|
goto out_dispose_irq; |
|
} |
|
|
|
device_init_wakeup(&pdev->dev, 1); |
|
|
|
rtc->rtc_dev = rtc_device_register("mt6397-rtc", &pdev->dev, |
|
&mtk_rtc_ops, THIS_MODULE); |
|
if (IS_ERR(rtc->rtc_dev)) { |
|
dev_err(&pdev->dev, "register rtc device failed\n"); |
|
ret = PTR_ERR(rtc->rtc_dev); |
|
goto out_free_irq; |
|
} |
|
|
|
return 0; |
|
|
|
out_free_irq: |
|
free_irq(rtc->irq, rtc->rtc_dev); |
|
out_dispose_irq: |
|
irq_dispose_mapping(rtc->irq); |
|
return ret; |
|
} |
|
|
|
static int mtk_rtc_remove(struct platform_device *pdev) |
|
{ |
|
struct mt6397_rtc *rtc = platform_get_drvdata(pdev); |
|
|
|
rtc_device_unregister(rtc->rtc_dev); |
|
free_irq(rtc->irq, rtc->rtc_dev); |
|
irq_dispose_mapping(rtc->irq); |
|
|
|
return 0; |
|
} |
|
|
|
#ifdef CONFIG_PM_SLEEP |
|
static int mt6397_rtc_suspend(struct device *dev) |
|
{ |
|
struct mt6397_rtc *rtc = dev_get_drvdata(dev); |
|
|
|
if (device_may_wakeup(dev)) |
|
enable_irq_wake(rtc->irq); |
|
|
|
return 0; |
|
} |
|
|
|
static int mt6397_rtc_resume(struct device *dev) |
|
{ |
|
struct mt6397_rtc *rtc = dev_get_drvdata(dev); |
|
|
|
if (device_may_wakeup(dev)) |
|
disable_irq_wake(rtc->irq); |
|
|
|
return 0; |
|
} |
|
#endif |
|
|
|
static SIMPLE_DEV_PM_OPS(mt6397_pm_ops, mt6397_rtc_suspend, |
|
mt6397_rtc_resume); |
|
|
|
static const struct of_device_id mt6397_rtc_of_match[] = { |
|
{ .compatible = "mediatek,mt6397-rtc", }, |
|
{ .compatible = "mediatek,mt6323-rtc", }, |
|
{ .compatible = "mediatek,mt6392-rtc", }, |
|
{ } |
|
}; |
|
MODULE_DEVICE_TABLE(of, mt6397_rtc_of_match); |
|
|
|
static struct platform_driver mtk_rtc_driver = { |
|
.driver = { |
|
.name = "mt6397-rtc", |
|
.of_match_table = mt6397_rtc_of_match, |
|
.pm = &mt6397_pm_ops, |
|
}, |
|
.probe = mtk_rtc_probe, |
|
.remove = mtk_rtc_remove, |
|
}; |
|
|
|
module_platform_driver(mtk_rtc_driver); |
|
|
|
MODULE_LICENSE("GPL v2"); |
|
MODULE_AUTHOR("Tianping Fang <tianping.fang@mediatek.com>"); |
|
MODULE_DESCRIPTION("RTC Driver for MediaTek MT6397 PMIC"); |
|
MODULE_ALIAS("platform:mt6397-rtc");
|
|
|