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@dustinknopoff
Created April 25, 2021 11:50
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/*
Based off of
http://www.arduino.cc/en/Tutorial/Tone
*/
#include "pitches.h"
#include <Adafruit_NeoPixel.h>
// Which pin on the Arduino is connected to the NeoPixels?
// On a Trinket or Gemma we suggest changing this to 1:
#define LED_PIN 6
// How many NeoPixels are attached to the Arduino?
#define LED_COUNT 15
// Declare our NeoPixel strip object:
Adafruit_NeoPixel strip(LED_COUNT, LED_PIN, NEO_GRB + NEO_KHZ800);
// notes in the melody:
int melody[] = {
NOTE_C4, NOTE_D4, NOTE_E4, NOTE_C3,
NOTE_C4, NOTE_D4, NOTE_E4, NOTE_C3,
NOTE_F3, NOTE_G3, NOTE_A3,
NOTE_C4
};
// note durations: 4 = quarter note, 8 = eighth note, etc.:
int noteDurations[] = {
4, 4, 4, 4,
4, 4, 4, 4,
4, 4, 4,
4,
};
int photoresistor = 0; //this variable will hold a value based on the brightness of the ambient light
int threshold = 700; //if the photoresistor reading is below this value the the light will turn on
int debugPin = 7;
bool fired = false;
// BEFORE SETUP
const int tonePin = 8;
unsigned long previousMillis = 0;
unsigned long previousMillisLED = 0;
boolean outputTone = false; // Records current state
int melodyIndex = 0;
unsigned long currentMillis;
// LED flashing
const long interval = 600; // interval at which to blink (milliseconds)
int ledState = LOW; // ledState used to set the LED
int ledPin = 13;
void setup() {
Serial.begin(9600); //start a serial connection with the computer
pinMode(debugPin, INPUT_PULLUP);
currentMillis = millis();
pinMode(13, OUTPUT); //set pin 13 as an output that can be set to HIGH or LOW
strip.begin(); // INITIALIZE NeoPixel strip object (REQUIRED)
strip.show(); // Turn OFF all pixels ASAP
strip.setBrightness(50); // Set BRIGHTNESS to about 1/5 (max = 255)
}
void loop() {
currentMillis = millis();
//read the brightness of the ambient light
photoresistor = analogRead(A0); //set photoresistor to a number between 0 and 1023 based on how bright the ambient light is
Serial.println(photoresistor); //print the value of photoresistor in the serial monitor on the computer
// When button is clicked set fired to true
if (digitalRead(debugPin) == LOW) {
fired = true;
}
if (fired) {
//if the photoresistor value is below the threshold turn the light on, otherwise turn it off
if (photoresistor < threshold) {
toggleLED();
playMelody();
}
}
if (photoresistor > threshold && fired) {
Serial.println("REsetting");
strip.clear();
strip.show();
fired = false;
clearMelody();
}
delay(100); //short delay to make the printout easier to read
}
void playMelody() {
// IN LOOP
int noteDuration = 1000 / noteDurations[melodyIndex];
int pauseBetweenNotes = noteDuration * 1.30;
if (outputTone) {
// We are currently outputting a tone
// Check if it's been long enough and turn off if so
if (currentMillis - previousMillis >= noteDuration) {
previousMillis = currentMillis;
noTone(tonePin);
outputTone = false;
}
} else {
// We are currently in a pause
// Check if it's been long enough and turn on if so
if (currentMillis - previousMillis >= pauseBetweenNotes) {
previousMillis = currentMillis;
tone(tonePin, melody[melodyIndex]);
outputTone = true;
melodyIndex += 1;
if (melodyIndex > 11) {
melodyIndex = 0;
}
}
}
}
void clearMelody() {
outputTone = false;
melodyIndex = 0;
noTone(tonePin);
}
void toggleLED() {
if (currentMillis - previousMillisLED >= interval) {
// save the last time you blinked the LED
previousMillisLED = currentMillis;
Serial.println("interval has passed");
// if the LED is off turn it on and vice-versa:
if (ledState == LOW) {
Serial.println("LED is off");
ledState = HIGH;
// for (int i = 0; i < 15; i = i+ 2) {
// Serial.println(i);
strip.setPixelColor(12, strip.Color(127, 127, 127));
strip.setPixelColor(10, strip.Color(127, 127, 127));
// }
strip.show();
} else {
ledState = LOW;
strip.clear();
strip.show();
}
}
}
/*************************************************
* Public Constants
*************************************************/
#define NOTE_B0 31
#define NOTE_C1 33
#define NOTE_CS1 35
#define NOTE_D1 37
#define NOTE_DS1 39
#define NOTE_E1 41
#define NOTE_F1 44
#define NOTE_FS1 46
#define NOTE_G1 49
#define NOTE_GS1 52
#define NOTE_A1 55
#define NOTE_AS1 58
#define NOTE_B1 62
#define NOTE_C2 65
#define NOTE_CS2 69
#define NOTE_D2 73
#define NOTE_DS2 78
#define NOTE_E2 82
#define NOTE_F2 87
#define NOTE_FS2 93
#define NOTE_G2 98
#define NOTE_GS2 104
#define NOTE_A2 110
#define NOTE_AS2 117
#define NOTE_B2 123
#define NOTE_C3 131
#define NOTE_CS3 139
#define NOTE_D3 147
#define NOTE_DS3 156
#define NOTE_E3 165
#define NOTE_F3 175
#define NOTE_FS3 185
#define NOTE_G3 196
#define NOTE_GS3 208
#define NOTE_A3 220
#define NOTE_AS3 233
#define NOTE_B3 247
#define NOTE_C4 262
#define NOTE_CS4 277
#define NOTE_D4 294
#define NOTE_DS4 311
#define NOTE_E4 330
#define NOTE_F4 349
#define NOTE_FS4 370
#define NOTE_G4 392
#define NOTE_GS4 415
#define NOTE_A4 440
#define NOTE_AS4 466
#define NOTE_B4 494
#define NOTE_C5 523
#define NOTE_CS5 554
#define NOTE_D5 587
#define NOTE_DS5 622
#define NOTE_E5 659
#define NOTE_F5 698
#define NOTE_FS5 740
#define NOTE_G5 784
#define NOTE_GS5 831
#define NOTE_A5 880
#define NOTE_AS5 932
#define NOTE_B5 988
#define NOTE_C6 1047
#define NOTE_CS6 1109
#define NOTE_D6 1175
#define NOTE_DS6 1245
#define NOTE_E6 1319
#define NOTE_F6 1397
#define NOTE_FS6 1480
#define NOTE_G6 1568
#define NOTE_GS6 1661
#define NOTE_A6 1760
#define NOTE_AS6 1865
#define NOTE_B6 1976
#define NOTE_C7 2093
#define NOTE_CS7 2217
#define NOTE_D7 2349
#define NOTE_DS7 2489
#define NOTE_E7 2637
#define NOTE_F7 2794
#define NOTE_FS7 2960
#define NOTE_G7 3136
#define NOTE_GS7 3322
#define NOTE_A7 3520
#define NOTE_AS7 3729
#define NOTE_B7 3951
#define NOTE_C8 4186
#define NOTE_CS8 4435
#define NOTE_D8 4699
#define NOTE_DS8 4978
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