mirror of
https://github.com/Kugelschieber/arduino-c.git
synced 2026-01-18 11:00:26 +00:00
214 lines
3.7 KiB
C
214 lines
3.7 KiB
C
#include "pins.h"
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#include <avr/io.h>
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#include <avr/interrupt.h>
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const unsigned char LOW = 0x00;
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const unsigned char HIGH = 0x01;
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const unsigned char INPUT = 0x00;
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const unsigned char OUTPUT = 0x01;
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// analog pins (digital range from 0 to 13)
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const unsigned char A0 = 0x0E;
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const unsigned char A1 = 0x0F;
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const unsigned char A2 = 0x10;
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const unsigned char A3 = 0x11;
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const unsigned char A4 = 0x12;
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const unsigned char A5 = 0x13;
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const unsigned char A6 = 0x14;
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const unsigned char A7 = 0x15;
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void analog_read_duty_cycle();
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unsigned char map_analog_pin(unsigned char);
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void pins_init(){
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sei();
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// enable ADC (128 bit ADPS scaling factor 0x07) to read analog values
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ADCSRA = _BV(ADEN)|_BV(ADIE)|0x07;
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// clear timer to compare match for PWM output
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TCCR0A |= _BV(WGM01)|_BV(WGM00);
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TCCR1A |= _BV(WGM01)|_BV(WGM00);
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TCCR2A |= _BV(WGM21)|_BV(WGM20);
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// enable interrupt on timer overflow for PWM output
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TIMSK0 |= _BV(TOIE0);
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}
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void pin_mode(unsigned char pin, unsigned char mode){
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if(pin > A7){
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return;
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}
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if(pin < 8){
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// digital pin 0-7
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if(mode == INPUT){
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DDRD &= ~_BV(pin);
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}
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else{
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DDRD |= _BV(pin);
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}
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}
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else if(pin < A0){
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// digital pin 8-13
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pin -= 8;
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if(mode == INPUT){
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DDRB &= ~_BV(pin);
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}
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else{
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DDRB |= _BV(pin);
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}
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}
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else{
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// analog pin 0-7
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pin -= A0;
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if(mode == INPUT){
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DDRC &= ~_BV(pin);
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}
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else{
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DDRC |= _BV(pin);
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}
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}
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}
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int digital_read(unsigned char pin){
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if(pin > A7){
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return 0;
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}
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if(pin < 8){
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// digital pin 0-7
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return PIND&_BV(pin) ? 1 : 0;
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}
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else if(pin < A0){
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// digital pin 8-13
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pin -= 8;
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return PINB&_BV(pin) ? 1 : 0;
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}
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// analog pin 0-7
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return analog_read(pin) > 512 ? 1 : 0;
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}
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void digital_write(unsigned char pin, unsigned char value){
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if(pin > A7){
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return;
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}
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if(pin < 8){
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// digital pin 0-7
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if(value == HIGH){
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PORTD |= _BV(pin);
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}
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else{
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PORTD &= ~_BV(pin);
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}
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}
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else if(pin < A0){
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// digital pin 8-13
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pin -= 8;
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if(value == HIGH){
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PORTB |= _BV(pin);
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}
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else{
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PORTB &= ~_BV(pin);
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}
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}
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else{
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// analog pin 0-7
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pin -= A0;
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if(value == HIGH){
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PORTC |= _BV(pin);
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}
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else{
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PORTC &= ~_BV(pin);
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}
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}
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}
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unsigned int analog_read(unsigned char pin){
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pin = map_analog_pin(pin);
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if(pin > 7){
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return 0;
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}
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// disable digital input buffer (DIDR0)
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ADMUX = _BV(REFS0)|pin;
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DIDR0 |= _BV(pin);
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ADCSRA |= _BV(ADSC); // start conversion
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// wait for it to finish
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while(ADCSRA&_BV(ADSC));
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// return 10 bit value
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return ADC;
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}
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void analog_write(unsigned char pin, unsigned char value){
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// write digital if possible
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if(value == 0){
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digital_write(pin, LOW);
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return;
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}
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else if(value == 255){
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digital_write(pin, HIGH);
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return;
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}
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if(pin != 3 && pin != 5 && pin != 6 && pin != 9 && pin != 10 && pin != 11){
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return;
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}
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// 1. clear timer on compare match (pins_init)
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// 2. set interrupt on overflow (pins_init) and value to compare to
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// 3. set timer scaling to 1, which starts the timer
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if(pin == 3){
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TCCR2A |= _BV(COM2B1);
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OCR2B = value;
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TCCR2B |= _BV(CS20)|_BV(CS21);
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}
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else if(pin == 5){
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TCCR0A |= _BV(COM0B1);
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OCR0B = value;
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TCCR0B |= _BV(CS00)|_BV(CS02);
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}
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else if(pin == 6){
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TCCR0A |= _BV(COM0A1);
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OCR0A = value;
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TCCR0B |= _BV(CS00)|_BV(CS02);
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}
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else if(pin == 9){
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TCCR1A |= _BV(COM1A1);
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OCR1A = value;
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TCCR1B |= _BV(CS10)|_BV(CS11);
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}
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else if(pin == 10){
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TCCR1A |= _BV(COM1B1);
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OCR1B = value;
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TCCR1B |= _BV(CS10)|_BV(CS11);
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}
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else if(pin == 11){
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TCCR2A |= _BV(COM2A1);
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OCR2A = value;
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TCCR2B |= _BV(CS20)|_BV(CS21);
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}
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}
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// maps A0-A7 to 0-7
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unsigned char map_analog_pin(unsigned char pin){
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if(pin > 7){
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return pin-A0;
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}
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return pin;
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}
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// analog to digital converter interrupt handler
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// required, but does not need to do anything
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ISR(ADC_vect){}
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