381 lines
9.1 KiB
C
381 lines
9.1 KiB
C
/*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Copyright (c) 2024 Ambiq Micro
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*/
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#include <zephyr/drivers/rtc.h>
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#include <zephyr/logging/log.h>
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#include <zephyr/pm/device.h>
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#include <zephyr/sys/util.h>
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#include "rtc_utils.h"
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#define DT_DRV_COMPAT ambiq_rtc
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LOG_MODULE_REGISTER(ambiq_rtc, CONFIG_RTC_LOG_LEVEL);
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#include <am_mcu_apollo.h>
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#define AMBIQ_RTC_ALARM_TIME_MASK \
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(RTC_ALARM_TIME_MASK_SECOND | RTC_ALARM_TIME_MASK_MINUTE | RTC_ALARM_TIME_MASK_HOUR | \
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RTC_ALARM_TIME_MASK_WEEKDAY | RTC_ALARM_TIME_MASK_MONTH | RTC_ALARM_TIME_MASK_MONTHDAY)
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/* struct tm start time: 1st, Jan, 1900 */
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#define TM_YEAR_REF 1900
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#define AMBIQ_RTC_YEAR_MAX 2199
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struct ambiq_rtc_config {
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uint8_t clk_src;
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};
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struct ambiq_rtc_data {
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struct k_spinlock lock;
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#ifdef CONFIG_RTC_ALARM
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struct rtc_time alarm_time;
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uint16_t alarm_set_mask;
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rtc_alarm_callback alarm_user_callback;
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void *alarm_user_data;
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bool alarm_pending;
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#endif
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};
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static void rtc_time_to_ambiq_time_set(const struct rtc_time *tm, am_hal_rtc_time_t *atm)
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{
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atm->ui32CenturyBit = ((tm->tm_year <= 99) || (tm->tm_year >= 200));
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atm->ui32Year = tm->tm_year;
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if (tm->tm_year > 99) {
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atm->ui32Year = tm->tm_year % 100;
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}
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atm->ui32Weekday = tm->tm_wday;
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atm->ui32Month = tm->tm_mon + 1;
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atm->ui32DayOfMonth = tm->tm_mday;
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atm->ui32Hour = tm->tm_hour;
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atm->ui32Minute = tm->tm_min;
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atm->ui32Second = tm->tm_sec;
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/* Nanoseconds times 10mil is hundredths */
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atm->ui32Hundredths = tm->tm_nsec / 10000000;
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if (atm->ui32Hundredths > 99) {
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uint16_t value = atm->ui32Hundredths / 100;
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atm->ui32Second += value;
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atm->ui32Hundredths -= value*100;
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}
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}
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/* To set the timer registers */
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static void ambiq_time_to_rtc_time_set(const am_hal_rtc_time_t *atm, struct rtc_time *tm)
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{
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tm->tm_year = atm->ui32Year;
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if (atm->ui32CenturyBit == 0) {
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tm->tm_year += 100;
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} else {
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tm->tm_year += 200;
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}
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tm->tm_wday = atm->ui32Weekday;
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tm->tm_mon = atm->ui32Month - 1;
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tm->tm_mday = atm->ui32DayOfMonth;
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tm->tm_hour = atm->ui32Hour;
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tm->tm_min = atm->ui32Minute;
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tm->tm_sec = atm->ui32Second;
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/* Nanoseconds times 10mil is hundredths */
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tm->tm_nsec = atm->ui32Hundredths * 10000000;
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}
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static int test_for_rollover(am_hal_rtc_time_t *atm)
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{
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if ((atm->ui32Year == 99) &&
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(atm->ui32Month == 12) &&
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(atm->ui32DayOfMonth == 31)) {
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return -EINVAL;
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}
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return 0;
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}
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/* To set the timer registers */
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static int ambiq_rtc_set_time(const struct device *dev, const struct rtc_time *timeptr)
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{
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int err = 0;
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am_hal_rtc_time_t ambiq_time = {0};
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struct ambiq_rtc_data *data = dev->data;
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if (timeptr->tm_year + TM_YEAR_REF > AMBIQ_RTC_YEAR_MAX) {
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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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LOG_DBG("set time: year = %d, mon = %d, mday = %d, wday = %d, hour = %d, "
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"min = %d, sec = %d",
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timeptr->tm_year, timeptr->tm_mon, timeptr->tm_mday, timeptr->tm_wday,
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timeptr->tm_hour, timeptr->tm_min, timeptr->tm_sec);
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/* Convertn to Ambiq Time */
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rtc_time_to_ambiq_time_set(timeptr, &ambiq_time);
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if (test_for_rollover(&ambiq_time)) {
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return -EINVAL;
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}
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err = am_hal_rtc_time_set(&ambiq_time);
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if (err) {
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LOG_WRN("Set Timer returned an error - %d!", err);
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}
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k_spin_unlock(&data->lock, key);
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return err;
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}
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/* To get from the timer registers */
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static int ambiq_rtc_get_time(const struct device *dev, struct rtc_time *timeptr)
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{
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int err = 0;
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am_hal_rtc_time_t ambiq_time = {0};
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struct ambiq_rtc_data *data = dev->data;
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k_spinlock_key_t key = k_spin_lock(&data->lock);
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err = am_hal_rtc_time_get(&ambiq_time);
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if (err != 0) {
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LOG_WRN("Get Timer returned an error - %d!", err);
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goto unlock;
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}
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ambiq_time_to_rtc_time_set(&ambiq_time, timeptr);
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LOG_DBG("get time: year = %d, mon = %d, mday = %d, wday = %d, hour = %d, "
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"min = %d, sec = %d",
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timeptr->tm_year, timeptr->tm_mon, timeptr->tm_mday, timeptr->tm_wday,
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timeptr->tm_hour, timeptr->tm_min, timeptr->tm_sec);
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unlock:
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k_spin_unlock(&data->lock, key);
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return err;
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}
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#ifdef CONFIG_RTC_ALARM
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static int ambiq_rtc_alarm_get_supported_fields(const struct device *dev,
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uint16_t id, uint16_t *mask)
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{
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ARG_UNUSED(dev);
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if (id != 0U) {
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LOG_ERR("Invalid ID %d", id);
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return -EINVAL;
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}
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*mask = AMBIQ_RTC_ALARM_TIME_MASK;
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return 0;
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}
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/* To get from the alarm registers */
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static int ambiq_rtc_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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int err = 0;
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am_hal_rtc_time_t ambiq_time = {0};
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struct ambiq_rtc_data *data = dev->data;
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if (id != 0U) {
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LOG_ERR("Invalid ID %d", id);
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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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err = am_hal_rtc_alarm_get(&ambiq_time, NULL);
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if (err != 0) {
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LOG_DBG("Invalid Input Value");
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return -EINVAL;
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}
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ambiq_time_to_rtc_time_set(&ambiq_time, timeptr);
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*mask = data->alarm_set_mask;
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LOG_DBG("get alarm: wday = %d, mon = %d, mday = %d, hour = %d, min = %d, sec = %d, "
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"mask = 0x%04x", timeptr->tm_wday, timeptr->tm_mon, timeptr->tm_mday,
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timeptr->tm_hour, timeptr->tm_min, timeptr->tm_sec, *mask);
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k_spin_unlock(&data->lock, key);
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return err;
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}
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static int ambiq_rtc_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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int err = 0;
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struct ambiq_rtc_data *data = dev->data;
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am_hal_rtc_time_t ambiq_time = {0};
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uint16_t mask_available;
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if (id != 0U) {
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LOG_ERR("Invalid ID %d", id);
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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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LOG_DBG("Invalid Input Value");
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return -EINVAL;
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}
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(void)ambiq_rtc_alarm_get_supported_fields(NULL, 0, &mask_available);
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if (mask & ~mask_available) {
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return -EINVAL;
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}
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data->alarm_set_mask = mask;
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k_spinlock_key_t key = k_spin_lock(&data->lock);
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/* Disable and clear the alarm */
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am_hal_rtc_interrupt_disable(AM_HAL_RTC_INT_ALM);
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am_hal_rtc_interrupt_clear(AM_HAL_RTC_INT_ALM);
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/* When mask is 0 */
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if (mask == 0) {
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LOG_DBG("The alarm is disabled");
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goto unlock;
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}
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LOG_DBG("set alarm: second = %d, min = %d, hour = %d, mday = %d, month = %d,"
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"wday = %d, mask = 0x%04x",
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timeptr->tm_sec, timeptr->tm_min, timeptr->tm_hour, timeptr->tm_mday,
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timeptr->tm_mon, timeptr->tm_wday, mask);
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/* Convertn to Ambiq Time */
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rtc_time_to_ambiq_time_set(timeptr, &ambiq_time);
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/* Set RTC ALARM, Ambiq must have interval != AM_HAL_RTC_ALM_RPT_DIS */
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if (0 != am_hal_rtc_alarm_set(&ambiq_time, AM_HAL_RTC_ALM_RPT_YR)) {
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LOG_DBG("Invalid Input Value");
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err = -EINVAL;
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goto unlock;
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}
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am_hal_rtc_interrupt_enable(AM_HAL_RTC_INT_ALM);
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unlock:
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k_spin_unlock(&data->lock, key);
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return err;
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}
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static int ambiq_rtc_alarm_is_pending(const struct device *dev, uint16_t id)
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{
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struct ambiq_rtc_data *data = dev->data;
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int ret = 0;
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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 void ambiq_rtc_isr(const struct device *dev)
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{
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/* Clear the RTC alarm interrupt. 8*/
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am_hal_rtc_interrupt_clear(AM_HAL_RTC_INT_ALM);
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#if defined(CONFIG_RTC_ALARM)
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struct ambiq_rtc_data *data = dev->data;
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if (data->alarm_user_callback) {
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data->alarm_user_callback(dev, 0, data->alarm_user_data);
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data->alarm_pending = false;
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} else {
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data->alarm_pending = true;
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}
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#endif
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}
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static int ambiq_rtc_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 ambiq_rtc_data *data = dev->data;
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if (id != 0U) {
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LOG_ERR("Invalid ID %d", id);
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return -EINVAL;
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}
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K_SPINLOCK(&data->lock) {
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data->alarm_user_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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am_hal_rtc_interrupt_disable(AM_HAL_RTC_INT_ALM);
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}
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}
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return 0;
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}
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#endif
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static int ambiq_rtc_init(const struct device *dev)
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{
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const struct ambiq_rtc_config *config = dev->config;
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#
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#ifdef CONFIG_RTC_ALARM
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struct ambiq_rtc_data *data = dev->data;
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#endif
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/* Enable the clock for RTC. */
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am_hal_clkgen_control(config->clk_src, NULL);
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/* Enable the RTC. */
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am_hal_rtc_osc_enable();
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#ifdef CONFIG_RTC_ALARM
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data->alarm_user_callback = NULL;
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data->alarm_pending = false;
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IRQ_CONNECT(DT_INST_IRQN(0), DT_INST_IRQ(0, priority), ambiq_rtc_isr, DEVICE_DT_INST_GET(0),
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0);
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irq_enable(DT_INST_IRQN(0));
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#endif
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return 0;
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}
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static const struct rtc_driver_api ambiq_rtc_driver_api = {
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.set_time = ambiq_rtc_set_time,
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.get_time = ambiq_rtc_get_time,
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/* RTC_UPDATE not supported */
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#ifdef CONFIG_RTC_ALARM
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.alarm_get_supported_fields = ambiq_rtc_alarm_get_supported_fields,
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.alarm_set_time = ambiq_rtc_alarm_set_time,
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.alarm_get_time = ambiq_rtc_alarm_get_time,
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.alarm_is_pending = ambiq_rtc_alarm_is_pending,
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.alarm_set_callback = ambiq_rtc_alarm_set_callback,
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#endif
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};
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#define AMBIQ_RTC_INIT(inst) \
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static const struct ambiq_rtc_config ambiq_rtc_config_##inst = { \
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.clk_src = DT_INST_ENUM_IDX(inst, clock)}; \
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\
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static struct ambiq_rtc_data ambiq_rtc_data##inst; \
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\
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DEVICE_DT_INST_DEFINE(inst, &ambiq_rtc_init, NULL, &ambiq_rtc_data##inst, \
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&ambiq_rtc_config_##inst, POST_KERNEL, \
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CONFIG_RTC_INIT_PRIORITY, &ambiq_rtc_driver_api);
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DT_INST_FOREACH_STATUS_OKAY(AMBIQ_RTC_INIT)
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