607 lines
		
	
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			607 lines
		
	
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| #include <stdio.h>
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| #include <string.h>
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| #include <math.h>
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| #include <avr/pgmspace.h>
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| #include <avr/interrupt.h>
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| #include <avr/io.h>
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| #include "print.h"
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| #include "audio.h"
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| #include "keymap_common.h"
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| 
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| #include "eeconfig.h"
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| 
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| #ifdef VIBRATO_ENABLE
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|     #include "vibrato_lut.h"
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| #endif
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| 
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| #define PI 3.14159265
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| 
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| #define CPU_PRESCALER 8
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| 
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| #ifdef PWM_AUDIO
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|     #include "wave.h"
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|     #define SAMPLE_DIVIDER 39
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|     #define SAMPLE_RATE (2000000.0/SAMPLE_DIVIDER/2048)
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|     // Resistor value of 1/ (2 * PI * 10nF * (2000000 hertz / SAMPLE_DIVIDER / 10)) for 10nF cap
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| 
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|     float places[8] = {0, 0, 0, 0, 0, 0, 0, 0};
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|     uint16_t place_int = 0;
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|     bool repeat = true;
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| #endif
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| 
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| void delay_us(int count) {
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|   while(count--) {
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|     _delay_us(1);
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|   }
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| }
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| 
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| int voices = 0;
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| int voice_place = 0;
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| float frequency = 0;
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| int volume = 0;
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| long position = 0;
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| 
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| float frequencies[8] = {0, 0, 0, 0, 0, 0, 0, 0};
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| int volumes[8] = {0, 0, 0, 0, 0, 0, 0, 0};
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| bool sliding = false;
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| 
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| int max = 0xFF;
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| float sum = 0;
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| float place = 0;
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| 
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| uint8_t * sample;
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| uint16_t sample_length = 0;
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| // float freq = 0;
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| 
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| bool notes = false;
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| bool note = false;
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| float note_frequency = 0;
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| float note_length = 0;
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| float note_tempo = TEMPO_DEFAULT;
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| float note_timbre = TIMBRE_DEFAULT;
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| uint16_t note_position = 0;
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| float (* notes_pointer)[][2];
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| uint16_t notes_count;
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| bool notes_repeat;
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| float notes_rest;
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| bool note_resting = false;
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| 
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| uint8_t current_note = 0;
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| uint8_t rest_counter = 0;
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| 
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| #ifdef VIBRATO_ENABLE
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| float vibrato_counter = 0;
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| float vibrato_strength = .5;
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| float vibrato_rate = 0.125;
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| #endif
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| 
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| float polyphony_rate = 0;
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| 
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| bool inited = false;
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| 
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| audio_config_t audio_config;
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| 
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| uint16_t envelope_index = 0;
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| 
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| void audio_toggle(void) {
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|     audio_config.enable ^= 1;
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|     eeconfig_update_audio(audio_config.raw);
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| }
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| 
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| void audio_on(void) {
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|     audio_config.enable = 1;
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|     eeconfig_update_audio(audio_config.raw);
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| }
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| 
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| void audio_off(void) {
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|     audio_config.enable = 0;
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|     eeconfig_update_audio(audio_config.raw);
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| }
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| 
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| #ifdef VIBRATO_ENABLE
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| // Vibrato rate functions
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| 
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| void set_vibrato_rate(float rate) {
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|     vibrato_rate = rate;
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| }
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| 
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| void increase_vibrato_rate(float change) {
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|     vibrato_rate *= change;
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| }
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| 
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| void decrease_vibrato_rate(float change) {
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|     vibrato_rate /= change;
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| }
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| 
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| #ifdef VIBRATO_STRENGTH_ENABLE
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| 
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| void set_vibrato_strength(float strength) {
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|     vibrato_strength = strength;
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| }
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| 
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| void increase_vibrato_strength(float change) {
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|     vibrato_strength *= change;
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| }
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| 
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| void decrease_vibrato_strength(float change) {
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|     vibrato_strength /= change;
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| }
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| 
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| #endif
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| 
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| #endif
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| 
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| // Polyphony functions
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| 
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| void set_polyphony_rate(float rate) {
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|     polyphony_rate = rate;
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| }
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| 
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| void enable_polyphony() {
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|     polyphony_rate = 5;
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| }
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| 
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| void disable_polyphony() {
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|     polyphony_rate = 0;
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| }
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| 
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| void increase_polyphony_rate(float change) {
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|     polyphony_rate *= change;
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| }
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| 
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| void decrease_polyphony_rate(float change) {
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|     polyphony_rate /= change;
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| }
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| 
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| // Timbre function
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| 
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| void set_timbre(float timbre) {
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|     note_timbre = timbre;
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| }
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| 
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| // Tempo functions
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| 
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| void set_tempo(float tempo) {
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|     note_tempo = tempo;
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| }
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| 
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| void decrease_tempo(uint8_t tempo_change) {
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|     note_tempo += (float) tempo_change;
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| }
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| 
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| void increase_tempo(uint8_t tempo_change) {
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|     if (note_tempo - (float) tempo_change < 10) {
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|         note_tempo = 10;
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|     } else {
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|         note_tempo -= (float) tempo_change;
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|     }
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| }
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| 
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| void audio_init() {
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| 
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|     /* check signature */
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|     if (!eeconfig_is_enabled()) {
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|         eeconfig_init();
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|     }
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|     audio_config.raw = eeconfig_read_audio();
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| 
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|     #ifdef PWM_AUDIO
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|         PLLFRQ = _BV(PDIV2);
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|         PLLCSR = _BV(PLLE);
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|         while(!(PLLCSR & _BV(PLOCK)));
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|         PLLFRQ |= _BV(PLLTM0); /* PCK 48MHz */
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| 
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|         /* Init a fast PWM on Timer4 */
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|         TCCR4A = _BV(COM4A0) | _BV(PWM4A); /* Clear OC4A on Compare Match */
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|         TCCR4B = _BV(CS40); /* No prescaling => f = PCK/256 = 187500Hz */
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|         OCR4A = 0;
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| 
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|         /* Enable the OC4A output */
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|         DDRC |= _BV(PORTC6);
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| 
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|         TIMSK3 &= ~_BV(OCIE3A); // Turn off 3A interputs
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| 
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|         TCCR3A = 0x0; // Options not needed
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|         TCCR3B = _BV(CS31) | _BV(CS30) | _BV(WGM32); // 64th prescaling and CTC
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|         OCR3A = SAMPLE_DIVIDER - 1; // Correct count/compare, related to sample playback
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|     #else
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|         DDRC |= _BV(PORTC6);
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| 
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|         TIMSK3 &= ~_BV(OCIE3A); // Turn off 3A interputs
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| 
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|         TCCR3A = (0 << COM3A1) | (0 << COM3A0) | (1 << WGM31) | (0 << WGM30);
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|         TCCR3B = (1 << WGM33) | (1 << WGM32) | (0 << CS32) | (1 << CS31) | (0 << CS30);
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|     #endif
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| 
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|     inited = true;
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| }
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| 
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| void stop_all_notes() {
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|     if (!inited) {
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|         audio_init();
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|     }
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|     voices = 0;
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|     #ifdef PWM_AUDIO
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|         TIMSK3 &= ~_BV(OCIE3A);
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|     #else
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|         TIMSK3 &= ~_BV(OCIE3A);
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|         TCCR3A &= ~_BV(COM3A1);
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|     #endif
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|     notes = false;
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|     note = false;
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|     frequency = 0;
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|     volume = 0;
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| 
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|     for (int i = 0; i < 8; i++) {
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|         frequencies[i] = 0;
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|         volumes[i] = 0;
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|     }
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| }
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| 
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| void stop_note(float freq) {
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|     if (note) {
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|         if (!inited) {
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|             audio_init();
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|         }
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|         #ifdef PWM_AUDIO
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|             freq = freq / SAMPLE_RATE;
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|         #endif
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|         for (int i = 7; i >= 0; i--) {
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|             if (frequencies[i] == freq) {
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|                 frequencies[i] = 0;
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|                 volumes[i] = 0;
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|                 for (int j = i; (j < 7); j++) {
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|                     frequencies[j] = frequencies[j+1];
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|                     frequencies[j+1] = 0;
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|                     volumes[j] = volumes[j+1];
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|                     volumes[j+1] = 0;
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|                 }
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|                 break;
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|             }
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|         }
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|         voices--;
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|         if (voices < 0)
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|             voices = 0;
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|         if (voice_place >= voices) {
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|             voice_place = 0;
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|         }
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|         if (voices == 0) {
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|             #ifdef PWM_AUDIO
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|                 TIMSK3 &= ~_BV(OCIE3A);
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|             #else
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|                 TIMSK3 &= ~_BV(OCIE3A);
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|                 TCCR3A &= ~_BV(COM3A1);
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|             #endif
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|             frequency = 0;
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|             volume = 0;
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|             note = false;
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|         }
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|     }
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| }
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| 
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| #ifdef VIBRATO_ENABLE
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| 
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| float mod(float a, int b)
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| {
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|     float r = fmod(a, b);
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|     return r < 0 ? r + b : r;
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| }
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| 
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| float vibrato(float average_freq) {
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|     #ifdef VIBRATO_STRENGTH_ENABLE
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|         float vibrated_freq = average_freq * pow(VIBRATO_LUT[(int)vibrato_counter], vibrato_strength);
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|     #else
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|         float vibrated_freq = average_freq * VIBRATO_LUT[(int)vibrato_counter];
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|     #endif
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|     vibrato_counter = mod((vibrato_counter + vibrato_rate * (1.0 + 440.0/average_freq)), VIBRATO_LUT_LENGTH);
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|     return vibrated_freq;
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| }
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| 
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| #endif
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| 
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| ISR(TIMER3_COMPA_vect) {
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|     if (note) {
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|         #ifdef PWM_AUDIO
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|             if (voices == 1) {
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|                 // SINE
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|                 OCR4A = pgm_read_byte(&sinewave[(uint16_t)place]) >> 2;
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| 
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|                 // SQUARE
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|                 // if (((int)place) >= 1024){
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|                 //     OCR4A = 0xFF >> 2;
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|                 // } else {
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|                 //     OCR4A = 0x00;
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|                 // }
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| 
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|                 // SAWTOOTH
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|                 // OCR4A = (int)place / 4;
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| 
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|                 // TRIANGLE
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|                 // if (((int)place) >= 1024) {
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|                 //     OCR4A = (int)place / 2;
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|                 // } else {
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|                 //     OCR4A = 2048 - (int)place / 2;
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|                 // }
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| 
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|                 place += frequency;
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| 
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|                 if (place >= SINE_LENGTH)
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|                     place -= SINE_LENGTH;
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| 
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|             } else {
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|                 int sum = 0;
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|                 for (int i = 0; i < voices; i++) {
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|                     // SINE
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|                     sum += pgm_read_byte(&sinewave[(uint16_t)places[i]]) >> 2;
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| 
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|                     // SQUARE
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|                     // if (((int)places[i]) >= 1024){
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|                     //     sum += 0xFF >> 2;
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|                     // } else {
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|                     //     sum += 0x00;
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|                     // }
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| 
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|                     places[i] += frequencies[i];
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| 
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|                     if (places[i] >= SINE_LENGTH)
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|                         places[i] -= SINE_LENGTH;
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|                 }
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|                 OCR4A = sum;
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|             }
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|         #else
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|             if (voices > 0) {
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|                 float freq;
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|                 if (polyphony_rate > 0) {                
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|                     if (voices > 1) {
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|                         voice_place %= voices;
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|                         if (place++ > (frequencies[voice_place] / polyphony_rate / CPU_PRESCALER)) {
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|                             voice_place = (voice_place + 1) % voices;
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|                             place = 0.0;
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|                         }
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|                     }
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|                     #ifdef VIBRATO_ENABLE
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|                     if (vibrato_strength > 0) {
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|                         freq = vibrato(frequencies[voice_place]);
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|                     } else {
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|                     #else
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|                     {
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|                     #endif
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|                         freq = frequencies[voice_place];
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|                     } 
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|                 } else {
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|                     if (frequency != 0 && frequency < frequencies[voices - 1] && frequency < frequencies[voices - 1] * pow(2, -440/frequencies[voices - 1]/12/2)) {
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|                         frequency = frequency * pow(2, 440/frequency/12/2);
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|                     } else if (frequency != 0 && frequency > frequencies[voices - 1] && frequency > frequencies[voices - 1] * pow(2, 440/frequencies[voices - 1]/12/2)) {
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|                         frequency = frequency * pow(2, -440/frequency/12/2);
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|                     } else {
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|                         frequency = frequencies[voices - 1];
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|                     }
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| 
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| 
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|                     #ifdef VIBRATO_ENABLE
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|                     if (vibrato_strength > 0) {
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|                         freq = vibrato(frequency);
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|                     } else {
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|                     #else
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|                     {
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|                     #endif
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|                         freq = frequency;
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|                     } 
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|                 }
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| 
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|                 if (envelope_index < 65535) {
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|                     envelope_index++;
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|                 }
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|                 freq = voice_envelope(freq);
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| 
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|                 if (freq < 30.517578125)
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|                     freq = 30.52;
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|                 ICR3 = (int)(((double)F_CPU) / (freq * CPU_PRESCALER)); // Set max to the period
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|                 OCR3A = (int)((((double)F_CPU) / (freq * CPU_PRESCALER)) * note_timbre); // Set compare to half the period
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|             }
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|         #endif
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|     }
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| 
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|     // SAMPLE
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|     // OCR4A = pgm_read_byte(&sample[(uint16_t)place_int]);
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| 
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|     // place_int++;
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| 
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|     // if (place_int >= sample_length)
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|     //     if (repeat)
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|     //         place_int -= sample_length;
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|     //     else
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|     //         TIMSK3 &= ~_BV(OCIE3A);
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| 
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| 
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|     if (notes) {
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|         #ifdef PWM_AUDIO
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|             OCR4A = pgm_read_byte(&sinewave[(uint16_t)place]) >> 0;
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| 
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|             place += note_frequency;
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|             if (place >= SINE_LENGTH)
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|                 place -= SINE_LENGTH;
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|         #else
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|             if (note_frequency > 0) {
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|                 float freq;
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| 
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|                 #ifdef VIBRATO_ENABLE
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|                 if (vibrato_strength > 0) {
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|                     freq = vibrato(note_frequency);
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|                 } else {
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|                 #else
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|                 {
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|                 #endif
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|                     freq = note_frequency;
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|                 }
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| 
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|                 if (envelope_index < 65535) {
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|                     envelope_index++;
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|                 }
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|                 freq = voice_envelope(freq);
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| 
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|                 ICR3 = (int)(((double)F_CPU) / (freq * CPU_PRESCALER)); // Set max to the period
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|                 OCR3A = (int)((((double)F_CPU) / (freq * CPU_PRESCALER)) * note_timbre); // Set compare to half the period
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|             } else {
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|                 ICR3 = 0;
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|                 OCR3A = 0;
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|             }
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|         #endif
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| 
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| 
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|         note_position++;
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|         bool end_of_note = false;
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|         if (ICR3 > 0)
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|             end_of_note = (note_position >= (note_length / ICR3 * 0xFFFF));
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|         else
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|             end_of_note = (note_position >= (note_length * 0x7FF));
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|         if (end_of_note) {
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|             current_note++;
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|             if (current_note >= notes_count) {
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|                 if (notes_repeat) {
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|                     current_note = 0;
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|                 } else {
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|                     #ifdef PWM_AUDIO
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|                         TIMSK3 &= ~_BV(OCIE3A);
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|                     #else
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|                         TIMSK3 &= ~_BV(OCIE3A);
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|                         TCCR3A &= ~_BV(COM3A1);
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|                     #endif
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|                     notes = false;
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|                     return;
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|                 }
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|             }
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|             if (!note_resting && (notes_rest > 0)) {
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|                 note_resting = true;
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|                 note_frequency = 0;
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|                 note_length = notes_rest;
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|                 current_note--;
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|             } else {
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|                 note_resting = false;
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|                 #ifdef PWM_AUDIO
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|                     note_frequency = (*notes_pointer)[current_note][0] / SAMPLE_RATE;
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|                     note_length = (*notes_pointer)[current_note][1] * (note_tempo / 100);
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|                 #else
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|                     envelope_index = 0;
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|                     note_frequency = (*notes_pointer)[current_note][0];
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|                     note_length = ((*notes_pointer)[current_note][1] / 4) * (note_tempo / 100);
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|                 #endif
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|             }
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|             note_position = 0;
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|         }
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| 
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|     }
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| 
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|     if (!audio_config.enable) {
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|         notes = false;
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|         note = false;
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|     }
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| }
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| 
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| void play_note(float freq, int vol) {
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| 
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|     if (!inited) {
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|         audio_init();
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|     }
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| 
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| if (audio_config.enable && voices < 8) {
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|     TIMSK3 &= ~_BV(OCIE3A);
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|     // Cancel notes if notes are playing
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|     if (notes)
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|         stop_all_notes();
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|     note = true;
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|     envelope_index = 0;
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|     #ifdef PWM_AUDIO
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|         freq = freq / SAMPLE_RATE;
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|     #endif
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|     if (freq > 0) {
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|         frequencies[voices] = freq;
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|         volumes[voices] = vol;
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|         voices++;
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|     }
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| 
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|     #ifdef PWM_AUDIO
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|         TIMSK3 |= _BV(OCIE3A);
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|     #else
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|         TIMSK3 |= _BV(OCIE3A);
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|         TCCR3A |= _BV(COM3A1);
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|     #endif
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| }
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| 
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| }
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| 
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| void play_notes(float (*np)[][2], uint16_t n_count, bool n_repeat, float n_rest) {
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| 
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|     if (!inited) {
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|         audio_init();
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|     }
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| 
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| if (audio_config.enable) {
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|     TIMSK3 &= ~_BV(OCIE3A);
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| 	// Cancel note if a note is playing
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|     if (note)
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|         stop_all_notes();
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|     notes = true;
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| 
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|     notes_pointer = np;
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|     notes_count = n_count;
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|     notes_repeat = n_repeat;
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|     notes_rest = n_rest;
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| 
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|     place = 0;
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|     current_note = 0;
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|     #ifdef PWM_AUDIO
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|         note_frequency = (*notes_pointer)[current_note][0] / SAMPLE_RATE;
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|         note_length = (*notes_pointer)[current_note][1] * (note_tempo / 100);
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|     #else
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|         note_frequency = (*notes_pointer)[current_note][0];
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|         note_length = ((*notes_pointer)[current_note][1] / 4) * (note_tempo / 100);
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|     #endif
 | |
|     note_position = 0;
 | |
| 
 | |
| 
 | |
|     #ifdef PWM_AUDIO
 | |
|         TIMSK3 |= _BV(OCIE3A);
 | |
|     #else
 | |
|         TIMSK3 |= _BV(OCIE3A);
 | |
|         TCCR3A |= _BV(COM3A1);
 | |
|     #endif
 | |
| }
 | |
| 
 | |
| }
 | |
| 
 | |
| #ifdef PWM_AUDIO
 | |
| void play_sample(uint8_t * s, uint16_t l, bool r) {
 | |
|     if (!inited) {
 | |
|         audio_init();
 | |
|     }
 | |
| 
 | |
|     if (audio_config.enable) {
 | |
|         TIMSK3 &= ~_BV(OCIE3A);
 | |
|         stop_all_notes();
 | |
|         place_int = 0;
 | |
|         sample = s;
 | |
|         sample_length = l;
 | |
|         repeat = r;
 | |
| 
 | |
|         TIMSK3 |= _BV(OCIE3A);
 | |
|     }
 | |
| }
 | |
| #endif
 | |
| 
 | |
| //------------------------------------------------------------------------------
 | |
| // Override these functions in your keymap file to play different tunes on
 | |
| // startup and bootloader jump
 | |
| __attribute__ ((weak))
 | |
| void play_startup_tone()
 | |
| {
 | |
| }
 | |
| 
 | |
| 
 | |
| 
 | |
| __attribute__ ((weak))
 | |
| void play_goodbye_tone()
 | |
| {
 | |
| 
 | |
| }
 | |
| //------------------------------------------------------------------------------
 | 
