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#include <avr/interrupt.h>
#include <avr/io.h>
#include <stdint.h>
#include <util/delay.h>
#include "rtc.h"
void rtc_setup(void) {
// Set prescaler CS12 + CS10 (F_CPU / 1024) + CTC
// For 32768Hz -> 32768/1024 = 32Hz
TCCR1B = (1 << CS12) | (1 << CS10) | (1 << WGM12) | (1 << WGM13);
TCCR1A = (1 << WGM11) | (1 << WGM10);
TCNT1 = 0; // Start counting from 0
OCR1A = 31; // 0-31 = 32 counts before timer interrupt (1Hz)
OCR1B = 0;
TIFR1 = (1 << OCF1A) | (1 << OCF1B) | (1 << TOV1); // Clear interrupt flags
TIMSK1 = (1 << OCIE1A); // Enable timer overflow interrupt
}
volatile uint8_t seconds = 0;
volatile uint8_t minutes = 0;
volatile uint8_t hours = 0;
volatile uint8_t seconds_digit1 = 0;
volatile uint8_t seconds_digit2 = 0;
volatile uint8_t minutes_digit1 = 0;
volatile uint8_t minutes_digit2 = 0;
volatile uint8_t hours_digit1 = 0;
volatile uint8_t hours_digit2 = 0;
void rtc_increment(void) {
uint8_t s = seconds + 1;
seconds = s % 60;
// TODO: Remove seconds digits calculation
seconds_digit1 = seconds % 10;
seconds_digit2 = (seconds / 10) % 10;
if (s >= 60) {
uint8_t m = minutes + 1;
rtc_set_minutes(m);
if (m >= 60)
rtc_set_hours(hours + 1);
}
}
void rtc_set_minutes(uint8_t m) {
minutes = m % 60;
minutes_digit1 = minutes % 10;
minutes_digit2 = (minutes / 10) % 10;
}
void rtc_set_hours(uint8_t h) {
hours = h % 24;
hours_digit1 = hours % 10;
hours_digit2 = (hours / 10) % 10;
}
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