adafruit/circuitpython#1046 handle overflows in the RTC counter
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@ -35,9 +35,14 @@
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#include "nrfx_rtc.h"
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#include "nrf_clock.h"
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// We clock the RTC very slowly (8Hz) so that it won't overflow often.
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// But the counter is only 24 bits, so overflow is about every 24 days ...
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// For testing, set this to 32768 and it'll overflow every few minutes
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#define RTC_CLOCK_HZ (8)
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static uint32_t rtc_offset = 0;
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volatile static uint32_t rtc_offset = 0;
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int8_t rtc_calibration = 0;
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const nrfx_rtc_t rtc_instance = NRFX_RTC_INSTANCE(0);
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@ -49,7 +54,9 @@ const nrfx_rtc_config_t rtc_config = {
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};
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void rtc_handler(nrfx_rtc_int_type_t int_type) {
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// do nothing
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if (int_type == NRFX_RTC_INT_OVERFLOW) {
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rtc_offset += (1L<<24) / RTC_CLOCK_HZ;
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}
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}
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void rtc_init(void) {
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@ -59,6 +66,7 @@ void rtc_init(void) {
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nrfx_rtc_counter_clear(&rtc_instance);
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nrfx_rtc_init(&rtc_instance, &rtc_config, rtc_handler);
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nrfx_rtc_enable(&rtc_instance);
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nrfx_rtc_overflow_enable(&rtc_instance, 1);
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}
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void common_hal_rtc_get_time(timeutils_struct_time_t *tm) {
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@ -75,8 +83,11 @@ void common_hal_rtc_set_time(timeutils_struct_time_t *tm) {
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// A positive value speeds up the clock by removing clock cycles.
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int common_hal_rtc_get_calibration(void) {
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return 0;
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return rtc_calibration;
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}
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void common_hal_rtc_set_calibration(int calibration) {
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if (calibration > 127 || calibration < -127)
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mp_raise_ValueError(translate("calibration value out of range +/-127"));
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rtc_calibration = calibration;
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}
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