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https://github.com/le-studio-5/MachineInfernale.git
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sequenceurOk
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#define bounceTime 20
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#include <Audio.h>
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#include <Wire.h>
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#include <SPI.h>
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#include <SD.h>
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#include <SerialFlash.h>
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// GUItool: begin automatically generated code
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AudioPlaySdRaw playSdRaw0; //xy=69,93
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AudioPlaySdRaw playSdRaw1; //xy=106,124
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AudioPlaySdRaw playSdRaw2; //xy=135,154
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AudioPlaySdRaw playSdRaw3; //xy=161,185
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AudioMixer4 mixer1; //xy=402,138
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AudioOutputAnalogStereo dacs; //xy=625,143
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AudioConnection patchCord1(playSdRaw0, 0, mixer1, 0);
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AudioConnection patchCord2(playSdRaw1, 0, mixer1, 1);
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AudioConnection patchCord3(playSdRaw2, 0, mixer1, 2);
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AudioConnection patchCord4(playSdRaw3, 0, mixer1, 3);
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AudioConnection patchCord5(mixer1, 0, dacs, 0);
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AudioConnection patchCord6(mixer1, 0, dacs, 1);
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// GUItool: end automatically generated code
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#define SDCARD_CS_PIN BUILTIN_SDCARD
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#define SDCARD_MOSI_PIN 11 // not actually used
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#define SDCARD_SCK_PIN 13 // not actually used
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uint8_t pinStep[8] = {0, 1, 2, 3, 4, 5, 6, 7};
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uint8_t pinLine[4] = {8, 9, 10, 11};
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uint8_t Step = 0;
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unsigned long previousMillis;
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int tInt;
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void setup() {
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AudioMemory(20);
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pinMode(13, OUTPUT);
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for (int i = 0; i < 8; i++) {
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pinMode(pinStep[i], OUTPUT);
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digitalWrite(pinStep[i], HIGH);
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}
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digitalWrite(pinStep[0], LOW);
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for (int i = 0; i < 4; i++) {
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pinMode(pinLine[i], INPUT_PULLUP);
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}
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SPI.setMOSI(SDCARD_MOSI_PIN);
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SPI.setSCK(SDCARD_SCK_PIN);
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while (!(SD.begin(SDCARD_CS_PIN))) {
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digitalWrite(13, LOW);
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delay (100);
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digitalWrite(13, HIGH);
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delay (100);
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}
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digitalWrite(13, HIGH);
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delay(100);
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mixer1.gain(0, 0.7);
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mixer1.gain(1, 0.7);
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mixer1.gain(2, 0.7);
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mixer1.gain(3, 0.7);
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}
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void loop() {
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tInt = map(analogRead(A9), 0, 1023, 64, 1000);
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if (millis() >= previousMillis + tInt) {
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previousMillis = millis();
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if (!digitalRead(pinLine[0])) {
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playSdRaw0.play("s0.raw");
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}
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if (!digitalRead(pinLine[1])) {
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playSdRaw1.play("s1.raw");
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}
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if (!digitalRead(pinLine[2])) {
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playSdRaw2.play("s2.raw");
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}
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if (!digitalRead(pinLine[3]) ) {
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playSdRaw3.play("s3.raw");
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}
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for (int i = 0; i < 8; i++) {
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pinMode(pinStep[i], OUTPUT);
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digitalWrite(pinStep[i], HIGH);
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}
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Step = (Step + 1) % 8;
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digitalWrite(pinStep[Step], LOW);
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}
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}
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