~ruther/qmk_firmware

73228f5e5d1d4cd31a46e5e93aa893a8f727e3b9 — Jack Humbert 9 years ago 2e60054
restructures audio, begins voicing
R quantum/audio.c => quantum/audio/audio.c +7 -22
@@ 299,27 299,6 @@ float vibrato(float average_freq) {

#endif

float envelope(float f) {
    uint16_t compensated_index = (uint16_t)((float)envelope_index * (880.0 / f));
    switch (compensated_index) {
        case 0 ... 9:
            f = f / 4;
            note_timbre = TIMBRE_12;
        break;
        case 10 ... 19:
            f = f / 2;
            note_timbre = TIMBRE_12;
        break;
        case 20 ... 200:
            note_timbre = .125 - pow(((float)compensated_index - 20) / (200 - 20), 2)*.125;
        break;
        default:
            note_timbre = 0;
        break;
    }
    return f;
}

ISR(TIMER3_COMPA_vect) {
    if (note) {
        #ifdef PWM_AUDIO


@@ 413,7 392,7 @@ ISR(TIMER3_COMPA_vect) {
                if (envelope_index < 65535) {
                    envelope_index++;
                }
                freq = envelope(freq);
                freq = voice_envelope(freq);

                if (freq < 30.517578125)
                    freq = 30.52;


@@ 456,6 435,11 @@ ISR(TIMER3_COMPA_vect) {
                    freq = note_frequency;
                }

                if (envelope_index < 65535) {
                    envelope_index++;
                }
                freq = voice_envelope(freq);

                ICR3 = (int)(((double)F_CPU) / (freq * CPU_PRESCALER)); // Set max to the period
                OCR3A = (int)((((double)F_CPU) / (freq * CPU_PRESCALER)) * note_timbre); // Set compare to half the period
            } else {


@@ 498,6 482,7 @@ ISR(TIMER3_COMPA_vect) {
                    note_frequency = (*notes_pointer)[current_note][0] / SAMPLE_RATE;
                    note_length = (*notes_pointer)[current_note][1] * (note_tempo / 100);
                #else
                    envelope_index = 0;
                    note_frequency = (*notes_pointer)[current_note][0];
                    note_length = ((*notes_pointer)[current_note][1] / 4) * (note_tempo / 100);
                #endif

R quantum/audio.h => quantum/audio/audio.h +1 -0
@@ 4,6 4,7 @@
#include <util/delay.h>
#include "musical_notes.h"
#include "song_list.h"
#include "voices.h"

#ifndef AUDIO_H
#define AUDIO_H

R quantum/musical_notes.h => quantum/audio/musical_notes.h +0 -0
R quantum/song_list.h => quantum/audio/song_list.h +0 -0
R quantum/vibrato_lut.h => quantum/audio/vibrato_lut.h +0 -0
A quantum/audio/voices.c => quantum/audio/voices.c +60 -0
@@ 0,0 1,60 @@
#include "voices.h"

extern uint16_t envelope_index;
extern float note_timbre;

voice_type voice = default_voice;

void set_voice(voice_type v) {
	voice = v;
}

float voice_envelope(float frequency) {
	// envelope_index ranges from 0 to 0xFFFF, which is preserved at 880.0 Hz
    uint16_t compensated_index = (uint16_t)((float)envelope_index * (880.0 / frequency));

    switch (voice) {
    	case default_voice:
    		// nothing here on purpose
    	break;
    	case butts_fader:
		    switch (compensated_index) {
		        case 0 ... 9:
		            frequency = frequency / 4;
		            note_timbre = TIMBRE_12;
		        break;
		        case 10 ... 19:
		            frequency = frequency / 2;
		            note_timbre = TIMBRE_12;
		        break;
		        case 20 ... 200:
		            note_timbre = .125 - pow(((float)compensated_index - 20) / (200 - 20), 2)*.125;
		        break;
		        default:
		            note_timbre = 0;
		        break;
		    }
	    break;
    	case octave_crunch:
		    switch (compensated_index) {
		        case 0 ... 9:
		        case 20 ... 24:
		        case 30 ... 32:
		            frequency = frequency / 2;
		            note_timbre = TIMBRE_12;
		        break;
		        case 10 ... 19:
		        case 25 ... 29:
		        case 33 ... 35:
		            frequency = frequency * 2;
		            note_timbre = TIMBRE_12;
		        break;
		        default:
		            note_timbre = TIMBRE_12;
		        break;
		    }
	    break;
	}

	return frequency;
}
\ No newline at end of file

A quantum/audio/voices.h => quantum/audio/voices.h +21 -0
@@ 0,0 1,21 @@
#include <stdint.h>
#include <stdbool.h>
#include <avr/io.h>
#include <util/delay.h>
#include "musical_notes.h"
#include "song_list.h"

#ifndef VOICES_H
#define VOICES_H

float voice_envelope(float frequency);

typedef enum {
	default_voice,
	butts_fader,
	octave_crunch
} voice_type;

void set_voice(voice_type v);

#endif
\ No newline at end of file

R quantum/wave.h => quantum/audio/wave.h +0 -0
M quantum/quantum.mk => quantum/quantum.mk +2 -1
@@ 28,7 28,7 @@ ifeq ($(strip $(MIDI_ENABLE)), yes)
endif

ifeq ($(strip $(AUDIO_ENABLE)), yes)
	SRC += $(QUANTUM_DIR)/audio.c
	SRC += $(QUANTUM_DIR)/audio/audio.c $(QUANTUM_DIR)/audio/voices.c
endif

ifeq ($(strip $(UNICODE_ENABLE)), yes)


@@ 47,6 47,7 @@ endif
# Search Path
VPATH += $(TOP_DIR)/$(QUANTUM_DIR)
VPATH += $(TOP_DIR)/$(QUANTUM_DIR)/keymap_extras
VPATH += $(TOP_DIR)/$(QUANTUM_DIR)/audio

include $(TMK_DIR)/protocol/lufa.mk