/* MIDI TEST 2 Analog A0 - POT */ int pot = A0; int note = 75; int cmd = 0X90; // play const int buttonPin = 2; // the number of the pushbutton pin int buttonState; // the current reading from the input pin int lastButtonState = LOW; // the previous reading from the input pin long lastDebounceTime = 0; // the last time the output pin was toggled long debounceDelay = 50; // the debounce time; increase if the output flickers void setup() { // Set MIDI baud rate: Serial.begin(115200);//31250 // Serial.println("System Started"); // set pin mode pinMode(buttonPin, INPUT); } void loop() { //read the velocity int velocity =map( analogRead(pot),0,1023,0,127); // read the state of the switch into a local variable: int reading = digitalRead(buttonPin); // check to see if you just pressed the button // (i.e. the input went from LOW to HIGH), and you've waited // long enough since the last press to ignore any noise: // If the switch changed, due to noise or pressing: if (reading != lastButtonState) { // reset the debouncing timer lastDebounceTime = millis(); } if ((millis() - lastDebounceTime) > debounceDelay) { // whatever the reading is at, it's been there for longer // than the debounce delay, so take it as the actual current state: // if the button state has changed: if (reading != buttonState) { // set the reading buttonState = reading; // set the command cmd = buttonState == HIGH?0x90:0X80; // play noteOn(cmd, note, velocity); //delay delay(10); } // end if reading != buttonState } //end if ((millis() - lastDebounceTime) > debounceDelay) // save the reading. Next time through the loop, // it'll be the lastButtonState: lastButtonState = reading; } // end void loop // plays a MIDI note. Doesn't check to see that // cmd is greater than 127, or that data values are less than 127: void noteOn(int cmd, int pitch, int velocity) { Serial.write(cmd); Serial.write(pitch); Serial.write(velocity); }