mirror of https://github.com/nealey/proton
Added all states, all sounds, this is usable
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2424f3e672
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@ -10,7 +10,7 @@ MusicPlayer::MusicPlayer(int8_t cs, int8_t dcs, int8_t dreq, int8_t cardcs)
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{
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musicPlayer = new Adafruit_VS1053_FilePlayer(cs, dcs, dreq, cardcs);
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musicPlayer->begin();
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musicPlayer->setVolume(20, 20); // lower = louder
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musicPlayer->setVolume(1, 1); // lower = louder
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musicPlayer->sineTest(0x44, 500);
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SD.begin(cardcs);
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}
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@ -65,22 +65,29 @@ void loop() {
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switch (state) {
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case 0:
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if (trigger) {
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if (music->startPlayingFile("track001.mp3")) {
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state = 1;
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sync1->charge();
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}
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if (trigger && music->startPlayingFile("track001.mp3")) {
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state = 1;
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sync1->charge();
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}
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break;
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case 1:
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if (! music->isPlaying()) {
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if (music->startPlayingFile("track002.mp3")) {
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state = 4;
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sync1->standby();
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}
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state = 3;
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}
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break;
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case 3:
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if (trigger && music->startPlayingFile("track003.mp3")) {
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state = 4;
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sync1->fire();
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}
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break;
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case 4:
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if (! trigger && music->startPlayingFile("track002.mp3")) {
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state = 5;
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sync1->discharge();
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}
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break;
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case 5:
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if (! music->isPlaying()) {
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state = 0;
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}
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@ -12,29 +12,47 @@ Synchrotron::Synchrotron(uint16_t n, uint8_t p, neoPixelType t)
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cur = 0;
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pxl->begin();
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pxl->show();
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// Inital values of 0 will make it look like it's sort of warming up
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ticks = 0;
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tickrate = 200;
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r = 0;
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g = 0;
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b = 0;
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standby();
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}
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Synchrotron::transition(int duration, int final_tickrate, byte final_r, byte final_g, byte final_b)
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{
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transition_length = duration;
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transition_elapsed = 0;
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dtickrate = (final_tickrate - tickrate) / (float)duration;
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dr = (final_r - r) / (float)duration;
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dg = (final_g - g) / (float)duration;
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db = (final_b - b) / (float)duration;
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initial_tickrate = tickrate;
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initial_r = r;
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initial_g = g;
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initial_b = b;
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}
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Synchrotron::standby() {
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tickrate = 12;
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ticks = 0;
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r = brightness;
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g = 0;
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b = 0;
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transition(400, 12, brightness, 0, 0);
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}
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Synchrotron::charge() {
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tickrate = 2;
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ticks = 0;
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r = brightness;
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g = brightness / 8;
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b = 0;
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transition(400, 2, brightness, brightness/8, 0);
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}
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Synchrotron::fire() {
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transition(40, 1, brightness/8, brightness/4, brightness/2);
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}
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Synchrotron::discharge() {
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standby();
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}
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Synchrotron::tick(unsigned long jiffies) {
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@ -51,8 +69,16 @@ Synchrotron::tick(unsigned long jiffies) {
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pxl->show();
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ticks += 1;
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if (ticks == tickrate) {
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ticks = 0;
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if (ticks >= tickrate) {
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cur = (cur + 1) % npixels;
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ticks = 0;
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}
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if (transition_length > transition_elapsed) {
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tickrate = initial_tickrate + (dtickrate * transition_elapsed);
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r = initial_r + (dr * transition_elapsed);
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g = initial_g + (dg * transition_elapsed);
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b = initial_b + (db * transition_elapsed);
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transition_elapsed += 1;
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}
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}
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@ -10,8 +10,13 @@ class Synchrotron {
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int tickrate; // How many millis between pixel position changes
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int ticks; // How many ticks have elapsed since last position change
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byte r, g, b; // Current color
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int transition_length, transition_elapsed;
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int initial_tickrate, initial_r, initial_g, initial_b;
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float dtickrate, dr, dg, db;
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public:
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Synchrotron(uint16_t n, uint8_t p=6, neoPixelType t=NEO_GRB + NEO_KHZ800);
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transition(int duration, int final_tickrate, byte final_r, byte final_g, byte final_b);
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standby();
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charge();
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fire();
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