427 lines
11 KiB
C
427 lines
11 KiB
C
/*
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* Copyright (c) 2024 Nuvoton Technology Corporation.
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#define DT_DRV_COMPAT nuvoton_numaker_rtc
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#include <zephyr/kernel.h>
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#include <zephyr/device.h>
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#include <zephyr/irq.h>
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#include <zephyr/drivers/rtc.h>
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#include <zephyr/sys/util.h>
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#include <zephyr/logging/log.h>
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#include <zephyr/spinlock.h>
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#include <zephyr/drivers/clock_control.h>
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#include <zephyr/drivers/clock_control/clock_control_numaker.h>
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#include "rtc_utils.h"
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LOG_MODULE_REGISTER(rtc_numaker, CONFIG_RTC_LOG_LEVEL);
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/* RTC support 2000 ~ 2099 */
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#define NVT_RTC_YEAR_MIN 2000U
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#define NVT_RTC_YEAR_MAX 2099U
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/* struct tm start time: 1st, Jan, 1900 */
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#define TM_YEAR_REF 1900U
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#define NVT_TIME_SCALE RTC_CLOCK_24
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#define NVT_ALARM_MSK 0x3fU
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#define NVT_ALARM_UNIT_MSK 0x03U
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struct rtc_numaker_config {
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RTC_T *rtc_base;
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uint32_t clk_modidx;
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const struct device *clk_dev;
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uint32_t oscillator;
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};
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struct rtc_numaker_data {
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struct k_spinlock lock;
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#ifdef CONFIG_RTC_ALARM
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rtc_alarm_callback alarm_callback;
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void *alarm_user_data;
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bool alarm_pending;
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#endif /* CONFIG_RTC_ALARM */
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};
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struct rtc_numaker_time {
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uint32_t year; /* Year value */
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uint32_t month; /* Month value */
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uint32_t day; /* Day value */
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uint32_t day_of_week; /* Day of week value */
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uint32_t hour; /* Hour value */
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uint32_t minute; /* Minute value */
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uint32_t second; /* Second value */
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uint32_t time_scale; /* 12-Hour, 24-Hour */
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uint32_t am_pm; /* Only Time Scale select 12-hr used */
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};
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static int rtc_numaker_set_time(const struct device *dev, const struct rtc_time *timeptr)
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{
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struct rtc_numaker_time curr_time;
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struct rtc_numaker_data *data = dev->data;
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uint32_t real_year = timeptr->tm_year + TM_YEAR_REF;
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#ifdef CONFIG_RTC_ALARM
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const struct rtc_numaker_config *config = dev->config;
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RTC_T *rtc_base = config->rtc_base;
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#endif
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if (real_year < NVT_RTC_YEAR_MIN || real_year > NVT_RTC_YEAR_MAX) {
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/* RTC can't support years out of 2000 ~ 2099 */
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return -EINVAL;
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}
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if (timeptr->tm_wday == -1) {
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return -EINVAL;
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}
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curr_time.year = real_year;
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curr_time.month = timeptr->tm_mon + 1;
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curr_time.day = timeptr->tm_mday;
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curr_time.hour = timeptr->tm_hour;
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curr_time.minute = timeptr->tm_min;
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curr_time.second = timeptr->tm_sec;
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curr_time.day_of_week = timeptr->tm_wday;
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curr_time.time_scale = NVT_TIME_SCALE;
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k_spinlock_key_t key = k_spin_lock(&data->lock);
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RTC_SetDateAndTime((S_RTC_TIME_DATA_T *)&curr_time);
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#ifdef CONFIG_RTC_ALARM
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/* Restore RTC alarm mask */
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rtc_base->CAMSK = rtc_base->SPR[1];
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rtc_base->TAMSK = rtc_base->SPR[2];
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#endif
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k_spin_unlock(&data->lock, key);
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return 0;
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}
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static int rtc_numaker_get_time(const struct device *dev, struct rtc_time *timeptr)
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{
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struct rtc_numaker_data *data = dev->data;
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struct rtc_numaker_time curr_time;
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curr_time.time_scale = NVT_TIME_SCALE;
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k_spinlock_key_t key = k_spin_lock(&data->lock);
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RTC_GetDateAndTime((S_RTC_TIME_DATA_T *)&curr_time);
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k_spin_unlock(&data->lock, key);
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timeptr->tm_year = curr_time.year - TM_YEAR_REF;
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timeptr->tm_mon = curr_time.month - 1;
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timeptr->tm_mday = curr_time.day;
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timeptr->tm_wday = curr_time.day_of_week;
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timeptr->tm_hour = curr_time.hour;
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timeptr->tm_min = curr_time.minute;
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timeptr->tm_sec = curr_time.second;
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timeptr->tm_nsec = 0;
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/* unknown values */
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timeptr->tm_yday = -1;
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timeptr->tm_isdst = -1;
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return 0;
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}
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static void rtc_numaker_isr(const struct device *dev)
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{
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const struct rtc_numaker_config *config = dev->config;
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RTC_T *rtc_base = config->rtc_base;
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uint32_t int_status;
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#ifdef CONFIG_RTC_ALARM
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struct rtc_numaker_data *data = dev->data;
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#endif
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int_status = rtc_base->INTSTS;
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if (int_status & RTC_INTSTS_TICKIF_Msk) {
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/* Clear RTC Tick interrupt flag */
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rtc_base->INTSTS = RTC_INTSTS_TICKIF_Msk;
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}
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#ifdef CONFIG_RTC_ALARM
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if (int_status & RTC_INTSTS_ALMIF_Msk) {
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rtc_alarm_callback callback;
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void *user_data;
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/* Clear RTC Alarm interrupt flag */
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rtc_base->INTSTS = RTC_INTSTS_ALMIF_Msk;
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rtc_base->CAMSK = 0x00;
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rtc_base->TAMSK = 0x00;
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callback = data->alarm_callback;
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user_data = data->alarm_user_data;
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data->alarm_pending = callback ? false : true;
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if (callback != NULL) {
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callback(dev, 0, user_data);
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}
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}
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#endif /* CONFIG_RTC_ALARM */
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}
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#ifdef CONFIG_RTC_ALARM
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static int rtc_numaker_alarm_get_supported_fields(const struct device *dev, uint16_t id,
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uint16_t *mask)
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{
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ARG_UNUSED(dev);
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ARG_UNUSED(id);
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*mask = RTC_ALARM_TIME_MASK_SECOND
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| RTC_ALARM_TIME_MASK_MINUTE
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| RTC_ALARM_TIME_MASK_HOUR
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| RTC_ALARM_TIME_MASK_MONTHDAY
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| RTC_ALARM_TIME_MASK_MONTH
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| RTC_ALARM_TIME_MASK_YEAR;
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return 0;
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}
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static int rtc_numaker_alarm_set_time(const struct device *dev, uint16_t id, uint16_t mask,
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const struct rtc_time *timeptr)
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{
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struct rtc_numaker_data *data = dev->data;
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const struct rtc_numaker_config *config = dev->config;
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RTC_T *rtc_base = config->rtc_base;
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uint16_t mask_capable;
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struct rtc_numaker_time alarm_time;
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rtc_numaker_alarm_get_supported_fields(dev, 0, &mask_capable);
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if ((id != 0)) {
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return -EINVAL;
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}
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if ((mask != 0) && (timeptr == NULL)) {
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return -EINVAL;
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}
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if (mask & ~mask_capable) {
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return -EINVAL;
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}
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if (rtc_utils_validate_rtc_time(timeptr, mask) == false) {
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return -EINVAL;
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}
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k_spinlock_key_t key = k_spin_lock(&data->lock);
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irq_disable(DT_INST_IRQN(0));
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if ((mask == 0) || (timeptr == NULL)) {
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/* Disable the alarm */
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rtc_base->SPR[0] = mask;
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rtc_base->SPR[1] = 0x00;
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rtc_base->SPR[2] = 0x00;
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irq_enable(DT_INST_IRQN(0));
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k_spin_unlock(&data->lock, key);
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rtc_base->CAMSK = rtc_base->SPR[1];
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rtc_base->TAMSK = rtc_base->SPR[2];
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/* Disable RTC Alarm Interrupt */
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RTC_DisableInt(RTC_INTEN_ALMIEN_Msk);
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return 0;
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}
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alarm_time.time_scale = NVT_TIME_SCALE;
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RTC_GetDateAndTime((S_RTC_TIME_DATA_T *)&alarm_time);
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/* Reset RTC alarm mask of camsk & tamsk */
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uint32_t camsk = NVT_ALARM_MSK;
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uint32_t tamsk = NVT_ALARM_MSK;
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/* Set H/W care to match bits */
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if (mask & RTC_ALARM_TIME_MASK_YEAR) {
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alarm_time.year = timeptr->tm_year + TM_YEAR_REF;
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camsk &= ~(NVT_ALARM_UNIT_MSK << RTC_CAMSK_MYEAR_Pos);
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}
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if (mask & RTC_ALARM_TIME_MASK_MONTH) {
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alarm_time.month = timeptr->tm_mon + 1;
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camsk &= ~(NVT_ALARM_UNIT_MSK << RTC_CAMSK_MMON_Pos);
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}
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if (mask & RTC_ALARM_TIME_MASK_MONTHDAY) {
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alarm_time.day = timeptr->tm_mday;
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camsk &= ~(NVT_ALARM_UNIT_MSK << RTC_CAMSK_MDAY_Pos);
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}
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if (mask & RTC_ALARM_TIME_MASK_HOUR) {
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alarm_time.hour = timeptr->tm_hour;
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tamsk &= ~(NVT_ALARM_UNIT_MSK << RTC_TAMSK_MHR_Pos);
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}
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if (mask & RTC_ALARM_TIME_MASK_MINUTE) {
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alarm_time.minute = timeptr->tm_min;
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tamsk &= ~(NVT_ALARM_UNIT_MSK << RTC_TAMSK_MMIN_Pos);
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}
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if (mask & RTC_ALARM_TIME_MASK_SECOND) {
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alarm_time.second = timeptr->tm_sec;
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tamsk &= ~(NVT_ALARM_UNIT_MSK << RTC_TAMSK_MSEC_Pos);
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}
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/* Disable RTC Alarm Interrupt */
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RTC_DisableInt(RTC_INTEN_ALMIEN_Msk);
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/* Set the alarm time */
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RTC_SetAlarmDateAndTime((S_RTC_TIME_DATA_T *)&alarm_time);
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/* Clear RTC alarm interrupt flag */
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RTC_CLEAR_ALARM_INT_FLAG();
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rtc_base->SPR[0] = mask;
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rtc_base->SPR[1] = camsk;
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rtc_base->SPR[2] = tamsk;
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rtc_base->CAMSK = rtc_base->SPR[1];
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rtc_base->TAMSK = rtc_base->SPR[2];
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k_spin_unlock(&data->lock, key);
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irq_enable(DT_INST_IRQN(0));
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/* Enable RTC Alarm Interrupt */
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RTC_EnableInt(RTC_INTEN_ALMIEN_Msk);
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return 0;
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}
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static int rtc_numaker_alarm_get_time(const struct device *dev, uint16_t id, uint16_t *mask,
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struct rtc_time *timeptr)
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{
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struct rtc_numaker_data *data = dev->data;
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const struct rtc_numaker_config *config = dev->config;
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RTC_T *rtc_base = config->rtc_base;
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struct rtc_numaker_time alarm_time;
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if ((id != 0) || (mask == NULL) || (timeptr == NULL)) {
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return -EINVAL;
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}
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alarm_time.time_scale = NVT_TIME_SCALE;
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K_SPINLOCK(&data->lock) {
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RTC_GetAlarmDateAndTime((S_RTC_TIME_DATA_T *)&alarm_time);
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}
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*mask = rtc_base->SPR[0];
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if (*mask & RTC_ALARM_TIME_MASK_YEAR) {
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timeptr->tm_year = alarm_time.year - TM_YEAR_REF;
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}
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if (*mask & RTC_ALARM_TIME_MASK_MONTH) {
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timeptr->tm_mon = alarm_time.month - 1;
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}
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if (*mask & RTC_ALARM_TIME_MASK_MONTHDAY) {
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timeptr->tm_mday = alarm_time.day;
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}
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if (*mask & RTC_ALARM_TIME_MASK_HOUR) {
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timeptr->tm_hour = alarm_time.hour;
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}
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if (*mask & RTC_ALARM_TIME_MASK_MINUTE) {
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timeptr->tm_min = alarm_time.minute;
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}
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if (*mask & RTC_ALARM_TIME_MASK_SECOND) {
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timeptr->tm_sec = alarm_time.second;
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}
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return 0;
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}
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static int rtc_numaker_alarm_is_pending(const struct device *dev, uint16_t id)
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{
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struct rtc_numaker_data *data = dev->data;
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int ret;
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if (id != 0) {
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return -EINVAL;
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}
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K_SPINLOCK(&data->lock) {
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ret = data->alarm_pending ? 1 : 0;
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data->alarm_pending = false;
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}
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return ret;
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}
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static int rtc_numaker_alarm_set_callback(const struct device *dev, uint16_t id,
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rtc_alarm_callback callback, void *user_data)
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{
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struct rtc_numaker_data *data = dev->data;
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if (id != 0) {
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return -EINVAL;
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}
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K_SPINLOCK(&data->lock) {
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irq_disable(DT_INST_IRQN(0));
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data->alarm_callback = callback;
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data->alarm_user_data = user_data;
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if ((callback == NULL) && (user_data == NULL)) {
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/* Disable RTC Alarm Interrupt */
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RTC_DisableInt(RTC_INTEN_ALMIEN_Msk);
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}
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irq_enable(DT_INST_IRQN(0));
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}
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return 0;
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}
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#endif /* CONFIG_RTC_ALARM */
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static const struct rtc_driver_api rtc_numaker_driver_api = {
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.set_time = rtc_numaker_set_time,
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.get_time = rtc_numaker_get_time,
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#ifdef CONFIG_RTC_ALARM
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.alarm_get_supported_fields = rtc_numaker_alarm_get_supported_fields,
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.alarm_set_time = rtc_numaker_alarm_set_time,
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.alarm_get_time = rtc_numaker_alarm_get_time,
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.alarm_is_pending = rtc_numaker_alarm_is_pending,
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.alarm_set_callback = rtc_numaker_alarm_set_callback,
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#endif /* CONFIG_RTC_ALARM */
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};
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static int rtc_numaker_init(const struct device *dev)
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{
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const struct rtc_numaker_config *cfg = dev->config;
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struct numaker_scc_subsys scc_subsys;
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RTC_T *rtc_base = cfg->rtc_base;
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int err;
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/* CLK controller */
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memset(&scc_subsys, 0x00, sizeof(scc_subsys));
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scc_subsys.subsys_id = NUMAKER_SCC_SUBSYS_ID_PCC;
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scc_subsys.pcc.clk_modidx = cfg->clk_modidx;
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SYS_UnlockReg();
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/* CLK_EnableModuleClock */
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err = clock_control_on(cfg->clk_dev, (clock_control_subsys_t)&scc_subsys);
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if (err != 0) {
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goto done;
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}
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RTC_SetClockSource(cfg->oscillator);
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/* Enable spare registers */
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rtc_base->SPRCTL = RTC_SPRCTL_SPRRWEN_Msk;
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irq_disable(DT_INST_IRQN(0));
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IRQ_CONNECT(DT_INST_IRQN(0), DT_INST_IRQ(0, priority), rtc_numaker_isr,
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DEVICE_DT_INST_GET(0), 0);
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irq_enable(DT_INST_IRQN(0));
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err = RTC_Open(0);
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done:
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SYS_LockReg();
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return err;
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}
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static struct rtc_numaker_data rtc_data;
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/* Set config based on DTS */
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static const struct rtc_numaker_config rtc_config = {
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.rtc_base = (RTC_T *)DT_INST_REG_ADDR(0),
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.clk_modidx = DT_INST_CLOCKS_CELL(0, clock_module_index),
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.clk_dev = DEVICE_DT_GET(DT_PARENT(DT_INST_CLOCKS_CTLR(0))),
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.oscillator = DT_ENUM_IDX(DT_NODELABEL(rtc), oscillator),
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};
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DEVICE_DT_INST_DEFINE(0, &rtc_numaker_init, NULL, &rtc_data, &rtc_config, PRE_KERNEL_1,
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CONFIG_RTC_INIT_PRIORITY, &rtc_numaker_driver_api);
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