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Updated RTCC driver with selectable INT1/INT2 trigger
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980de99472
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@ -159,8 +159,8 @@ PROCESS_THREAD(test_remote_rtcc_process, ev, data)
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* minute. In case we would want to trigger the alarm on a specific time,
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* minute. In case we would want to trigger the alarm on a specific time,
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* then we would want to set a daily repeat interval
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* then we would want to set a daily repeat interval
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*/
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*/
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if(rtcc_set_alarm_time_date(simple_td, RTCC_ALARM_ON,
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if(rtcc_set_alarm_time_date(simple_td, RTCC_ALARM_ON, RTCC_REPEAT_MINUTE,
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RTCC_REPEAT_MINUTE) == AB08_ERROR) {
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RTCC_TRIGGER_INT1) == AB08_ERROR) {
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printf("Fail: couldn't set the alarm\n");
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printf("Fail: couldn't set the alarm\n");
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PROCESS_EXIT();
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PROCESS_EXIT();
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}
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}
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@ -99,5 +99,4 @@ static const ab080x_register_config_t ab080x_default_setting[] =
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/**
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/**
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* @}
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* @}
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* @}
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* @}
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*/
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*/
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@ -388,10 +388,17 @@ rtcc_get_time_date(simple_td_map *data)
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}
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}
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/*---------------------------------------------------------------------------*/
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/*---------------------------------------------------------------------------*/
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int8_t
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int8_t
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rtcc_set_alarm_time_date(simple_td_map *data, uint8_t state, uint8_t repeat)
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rtcc_set_alarm_time_date(simple_td_map *data, uint8_t state, uint8_t repeat,
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uint8_t trigger)
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{
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{
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uint8_t aux[4], buf[RTCC_ALARM_MAP_SIZE];
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uint8_t aux[4], buf[RTCC_ALARM_MAP_SIZE];
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if((trigger != RTCC_TRIGGER_INT2) && (trigger != RTCC_TRIGGER_INT1) &&
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(trigger != RTCC_TRIGGER_BOTH)) {
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PRINTF("RTC: invalid trigger pin\n");
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return AB08_ERROR;
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}
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if(state == RTCC_ALARM_OFF) {
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if(state == RTCC_ALARM_OFF) {
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if(ab08_read_reg((INT_MASK_ADDR + CONFIG_MAP_OFFSET),
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if(ab08_read_reg((INT_MASK_ADDR + CONFIG_MAP_OFFSET),
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&aux[0], 1) == AB08_ERROR) {
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&aux[0], 1) == AB08_ERROR) {
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@ -505,12 +512,25 @@ rtcc_set_alarm_time_date(simple_td_map *data, uint8_t state, uint8_t repeat)
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/* Clear the AIE alarm bit */
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/* Clear the AIE alarm bit */
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aux[INT_MASK_ADDR] &= ~INTMASK_AIE;
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aux[INT_MASK_ADDR] &= ~INTMASK_AIE;
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/* Configure Interrupt parameters for Alarm Interrupt Mode in nIRQ pin,
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/* Configure Interrupt parameters for Alarm Interrupt Mode in nIRQ
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* and fixed level until interrupt flag is cleared
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* or nAIRQ pins and fixed level until interrupt flag is cleared
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* RTC_INT1 is connected to the CC2538
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* RTC_INT2 is connected to the power management PIC in revision B
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*/
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*/
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if (trigger == RTCC_TRIGGER_INT2) {
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aux[CTRL_2_ADDR] |= CTRL2_OUT2S_NAIRQ_OUTB;
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/* Only options left enable the INT1 interrupt pin */
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} else {
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GPIO_ENABLE_INTERRUPT(RTC_INT1_PORT_BASE, RTC_INT1_PIN_MASK);
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ioc_set_over(RTC_INT1_PORT, RTC_INT1_PIN, IOC_OVERRIDE_PUE);
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nvic_interrupt_enable(RTC_INT1_VECTOR);
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}
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/* Enable nIRQ if at least one interrupt is enabled */
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if (trigger == RTCC_TRIGGER_INT1) {
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aux[CTRL_2_ADDR] |= CTRL2_OUT1S_NIRQ_NAIRQ_OUT;
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aux[CTRL_2_ADDR] |= CTRL2_OUT1S_NIRQ_NAIRQ_OUT;
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} else if (trigger == RTCC_TRIGGER_BOTH) {
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aux[CTRL_2_ADDR] |= (CTRL2_OUT1S_NIRQ_NAIRQ_OUT + CTRL2_OUT2S_NAIRQ_OUTB);
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}
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if(repeat != RTCC_REPEAT_NONE) {
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if(repeat != RTCC_REPEAT_NONE) {
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aux[INT_MASK_ADDR] &= ~INTMASK_IM_LOW;
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aux[INT_MASK_ADDR] &= ~INTMASK_IM_LOW;
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@ -523,11 +543,6 @@ rtcc_set_alarm_time_date(simple_td_map *data, uint8_t state, uint8_t repeat)
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return AB08_ERROR;
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return AB08_ERROR;
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}
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}
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/* Enable interrupts */
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GPIO_ENABLE_INTERRUPT(RTC_INT1_PORT_BASE, RTC_INT1_PIN_MASK);
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ioc_set_over(RTC_INT1_PORT, RTC_INT1_PIN, IOC_OVERRIDE_PUE);
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nvic_interrupt_enable(RTC_INT1_VECTOR);
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/* Write to the alarm counters */
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/* Write to the alarm counters */
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if(ab08_write_reg((HUNDREDTHS_ALARM_ADDR + ALARM_MAP_OFFSET), buf,
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if(ab08_write_reg((HUNDREDTHS_ALARM_ADDR + ALARM_MAP_OFFSET), buf,
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RTCC_ALARM_MAP_SIZE) == AB08_ERROR) {
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RTCC_ALARM_MAP_SIZE) == AB08_ERROR) {
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@ -275,6 +275,13 @@ enum {
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RTCC_AUTOCAL_17_MIN,
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RTCC_AUTOCAL_17_MIN,
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RTCC_AUTOCAL_9_MIN,
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RTCC_AUTOCAL_9_MIN,
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};
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};
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/* -------------------------------------------------------------------------- */
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enum {
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RTCC_TRIGGER_INT1 = 0,
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RTCC_TRIGGER_INT2,
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RTCC_TRIGGER_BOTH,
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};
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/** @} */
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/** @} */
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/* -------------------------------------------------------------------------- */
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/* -------------------------------------------------------------------------- */
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/** \name Readable Date and time memory map implementation
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/** \name Readable Date and time memory map implementation
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@ -337,12 +344,13 @@ int8_t rtcc_print(uint8_t value);
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* \param data date and time values (in decimal) to match against
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* \param data date and time values (in decimal) to match against
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* \param state set on/off the alarm interruption
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* \param state set on/off the alarm interruption
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* \param repeat set the frequency of the alarm (minute, hourly, daily, etc.)
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* \param repeat set the frequency of the alarm (minute, hourly, daily, etc.)
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* \param trigger interrupt trigger (INT1, INT2 or both)
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* \return
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* \return
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* \ AB08_SUCCESS date/time set
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* \ AB08_SUCCESS date/time set
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* \ AB08_ERROR failed to set time/date (enable DEBUG for more info)
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* \ AB08_ERROR failed to set time/date (enable DEBUG for more info)
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*/
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*/
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int8_t rtcc_set_alarm_time_date(simple_td_map *data, uint8_t state,
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int8_t rtcc_set_alarm_time_date(simple_td_map *data, uint8_t state,
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uint8_t repeat);
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uint8_t repeat, uint8_t trigger);
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/**
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/**
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* \brief Manually calibrate the RTCC
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* \brief Manually calibrate the RTCC
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@ -377,4 +385,4 @@ int8_t rtcc_init(void);
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/**
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/**
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* @}
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* @}
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* @}
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* @}
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*/
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*/
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