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67 lines
1.5 KiB
67 lines
1.5 KiB
#include <avr/io.h>
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#include <stdbool.h>
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#include <stdint.h>
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#include "calc.h"
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#include "adc.h"
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/** Initialize the ADC */
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void adc_init()
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{
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ADCSRA |= _BV(ADPS2) | _BV(ADPS1) | _BV(ADPS0); // 128 prescaler -> 125 kHz
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// ADCSRA |= _BV(ADPS2) | _BV(ADPS0); // 32 prescaler -> 500 kHz, good for 8-bit measurement
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ADMUX |= _BV(REFS0) | _BV(REFS1); // Voltage reference = internal 1.1V
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sbi(ADCSRA, ADEN); // Enable ADC
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}
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/** Disable AD */
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void adc_disable()
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{
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cbi(ADCSRA, ADEN);
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}
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/** Sample analog pin with 8-bit precision */
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uint8_t adc_read_byte(uint8_t channel)
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{
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set_low_nibble(ADMUX, channel); // Select channel to sample
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sbi(ADMUX, ADLAR); // Align result to left
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sbi(ADCSRA, ADSC); // Start conversion
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while (bit_is_high(ADCSRA, ADSC)); // Wait for it...
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return ADCH; // The upper 8 bits of ADC result
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}
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/** Sample analog pin with 10-bit precision */
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uint16_t adc_read_word(uint8_t channel)
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{
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set_low_nibble(ADMUX, channel); // Select channel to sample
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cbi(ADMUX, ADLAR); // Align result to right
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sbi(ADCSRA, ADSC); // Start conversion
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while (get_bit(ADCSRA, ADSC)); // Wait for it...
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return ADCW; // The whole ADC word (10 bits)
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}
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/** Sample analog pin with 10-bit precision */
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void adc_async_start_measure_word(uint8_t channel)
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{
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set_low_nibble(ADMUX, channel); // Select channel to sample
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cbi(ADMUX, ADLAR); // Align result to right
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sbi(ADCSRA, ADSC); // Start conversion
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}
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bool adc_async_ready()
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{
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return 0 == get_bit(ADCSRA, ADSC);
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}
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uint16_t adc_async_get_result_word() {
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return ADCW; // The whole ADC word (10 bits)
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}
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