Add src/arduino/rcVersion.ino
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// Library Imports
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// Written by the IP-Team 13
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// E.S
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#include <SoftwareSerial.h>
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#include <DFRobotDFPlayerMini.h>
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#include <SPI.h>
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#include <MFRC522.h>
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//Pin Definition
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#define RST_PIN 9 // Pin für Reset beim RC522
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#define SS_PIN 10 // Pin für Slave Select beim RC522
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// Modul-Object Initiation
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MFRC522 mfrc522(SS_PIN, RST_PIN);
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SoftwareSerial mySerial(16, 17);
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DFRobotDFPlayerMini mp3;
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// Setup
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void setup() {
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// Start Serial Connection
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Serial.begin(115200);
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mySerial.begin(9600);
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SPI.begin();
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// Start Module Objects
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mfrc522.PCD_Init();
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// Check MP3-Module
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if (!mp3.begin(mySerial)) {
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while (true) {
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delay(0);
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}
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}
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// Set Volume
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mp3.volume(30);
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// Check RC522
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Serial.println("Scan PICC to see UID, SAK, type, and data blocks...");
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}
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// Loop
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void loop() {
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// Define Variables
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uint8_t success;
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uint8_t uid[MFRC522::MF_KEY_SIZE];
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uint8_t uidLength;
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// Look for new cards
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if ( ! mfrc522.PICC_IsNewCardPresent() || ! mfrc522.PICC_ReadCardSerial()) {
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delay(50);
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return;
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}
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// Read UID
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uidLength = mfrc522.uid.size;
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for (uint8_t i = 0; i < uidLength; i++) {
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uid[i] = mfrc522.uid.uidByte[i];
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}
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// Analyse Data
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for (uint8_t block = 7; block < 8; block++) {
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byte data[18];
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byte dataSize = sizeof(data);
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success = mfrc522.MIFARE_Read(block, data, &dataSize);
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if (success) {
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// Get Hexadecimal Format
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String firstByteAsString = String(data[0], HEX);
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// Play Card Name
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playCardName(firstByteAsString);
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}
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else {
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// Error Handling
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Serial.println("Read failed!");
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}
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Serial.println("");
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}
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// Reduction of Workload
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delay(1000);
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}
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// Function : Handling Hexadecimal Format
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void playCardName(String hexMod) {
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// Copy the String
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String kopie = hexMod;
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// Define Variables
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int farbe, symbol;
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// Check the length of the String for leading zeros
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if (hexMod.length() == 1) {
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// Converting the Hexadecimal to a leading zero Format
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hexMod = String("00" + hexMod).substring(hexMod.length(), hexMod.length() + 2);
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// Setting the Color to Red
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farbe = 0;
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// Get the Charakter for the Symbol
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int symbolChar = hexMod.charAt(1);
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// Check if the Symbol is one of the letters a to f
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if (symbolChar >= 'a' && symbolChar <= 'f') {
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// Calculate the decimal number for the letters from a to f
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symbol = 10 + (symbolChar - 'a');
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} else {
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// Calculate the Decimal Number of the Hexadecimal Number
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symbol = hexMod.charAt(1)-'0';
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}
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}
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else {
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farbe = hexMod.substring(0, 1).toInt();
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int symbolChar = hexMod.charAt(1);
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// Check if the Symbol is a letter between a and f
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if (symbolChar >= 'a' && symbolChar <= 'f') {
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symbol = 10 + (symbolChar - 'a');
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} else {
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symbol = hexMod.substring(1, 2).toInt();
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}
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}
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// Play the Corresponding Audiofile from the Storage
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playCard(farbe, symbol);
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}
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// Function: Playing the corresponding Audiofile for the Cardname
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void playCard(int farbNummer, int symbolNummer) {
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// First Switch : Check the Color
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switch (farbNummer) {
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case 0: mp3.play(16); break; // Red
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case 1: mp3.play(17); break; // Yellow
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case 2: mp3.play(18); break; // Blue
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case 3: mp3.play(19); break; // Green
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case 4: mp3.play(20); break; // black
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}
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// Wait 2 Seconds to avoid Latency or Noises of the File
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delay(2000);
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// Switch 2: Check the Symbol
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switch (symbolNummer) {
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case 0: mp3.play(1); break; // Zero
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case 1: mp3.play(2); break; // One
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case 2: mp3.play(3); break; // Two
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case 3: mp3.play(4); break; // Three
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case 4: mp3.play(5); break; // Four
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case 5: mp3.play(6); break; // Five
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case 6: mp3.play(7); break; // Six
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case 7: mp3.play(8); break; // Seven
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case 8: mp3.play(9); break; // Eight
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case 9: mp3.play(10); break; // Nine
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case 10: mp3.play(11); break; // Skip
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case 11: mp3.play(12); break; // Reverse
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case 12: mp3.play(13); break; // Draw 2
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case 13: mp3.play(15); break; // Draw 4
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case 14: mp3.play(14); break; // Color Change
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}
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// Wait 1 Second to avoid noises and latency
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delay(1000);
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}
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