ENIB 2023 : Les 7 erreurs

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Photo de l'équipe

Hekaton les 7 erreurs.jpg

Que fait ce projet ?

C'est un escape game centrée sur la langue des signes. Il faut se repérer à travers le puzzle de manière à trouver le mot caché. Du code cachée, à des séquences cachées il faut manœuvrer de manière subtile. Les leds sont de bons conseils.

Liste des composants

  • Leds
  • écran LCD
  • interrupteur
  • carte arduino
  • cables
  • images

Avancé du projet

Alphabet langue des signes (1).jpg

Pour décrypter les lettres du code, le joueur devra comprendre des lettres en langues des signes (Un documentation est donné mais par forcément l'ordre ... )

Image.png

Décor

PhotoDuDécor 7erreurs.jpg

Afin de placer un décor dans le style, nous avons créer sur inkskate nos propres images. Grâce à la découpe laser, nous avons pu le mettre sur une planche de bois. Les dessins n'ont pas été choisis par hasard, ils ont un rapport avec le mot à trouver.

Ici se trouve le fichier pour la réserve de carte

Ici se trouve le fichier du ring de box


Code

/*


                                     D1 mini
                                     BROCHAGE
                                _________________
                               /     D1 mini     \
                              |[ ]RST        TX[ ]|
                              |[ ]A0  -GPIO  RX[ ]|
                              |[ ]D0-16    5-D1[ ]| SCL
                              |[ ]D5-14    4-D2[ ]| SDA
                              |[ ]D6-12    0-D3[ ]|
                              |[ ]D7-13    2-D4[ ]| LED_BUILTIN
                              |[ ]D8-15     GND[ ]|
                              |[ ]3V3 .      5V[ ]|
                              |       +---+       |
                              |_______|USB|_______|

  _______________

  2 fois jaune

  */



int green=0;
int yellow=4;
int orange=2;



void setup() {
  Serial.begin(9600); 
  
  pinMode(green, OUTPUT);
  pinMode(yellow, OUTPUT);
  pinMode(orange, OUTPUT);


}

void loop() {
                                     //code qui allume les leds dans l'ordre des cartes
    digitalWrite(yellow, HIGH);  
    delay(500);
    digitalWrite(yellow, LOW); 
    delay(500);
    digitalWrite(yellow, HIGH);  
    delay(500);
    digitalWrite(yellow, LOW); 
    delay(2000);

    digitalWrite(orange, HIGH);   
    delay(500);
    digitalWrite(orange, LOW);
    delay(2000);

    digitalWrite(yellow, HIGH); 
    delay(500);
    digitalWrite(yellow, LOW); 
    delay(500);
    digitalWrite(yellow, HIGH);  
    delay(500);
    digitalWrite(yellow, LOW); 
    delay(500);
    digitalWrite(yellow, HIGH);
    delay(500);
    digitalWrite(yellow, LOW);    
    delay(2000);

    digitalWrite(green, HIGH); 
    delay(500);
    digitalWrite(green, LOW);
    delay(500); 
    digitalWrite(green, HIGH); 
    delay(500);
    digitalWrite(green, LOW);  
    delay(2000);

    digitalWrite(green, HIGH); 
    delay(500);
    digitalWrite(green, LOW);
    delay(500); 
    digitalWrite(green, HIGH); 
    delay(500);
    digitalWrite(green, LOW);  
    delay(2000);

    digitalWrite(green, HIGH); 
    delay(500);
    digitalWrite(green, LOW); 
    delay(2000);

    digitalWrite(green, HIGH); 
    delay(500);
    digitalWrite(green, LOW);
    delay(500); 
    digitalWrite(green, HIGH); 
    delay(500);
    digitalWrite(green, LOW);
    delay(500); 
    digitalWrite(green, HIGH);
    delay(500);
    digitalWrite(green, LOW);   
    delay(2000);

    digitalWrite(orange, HIGH);   
    delay(500);
    digitalWrite(orange, LOW);
    delay(500); 
    digitalWrite(orange, HIGH);   
    delay(500);
    digitalWrite(orange, LOW);
    delay(500); 
    digitalWrite(orange, HIGH);  
    delay(500);
    digitalWrite(orange, LOW);  
    delay(5000);

}


/*


                                     D1 mini
                                     BROCHAGE
                                _________________
                               /     D1 mini     \
                              |[ ]RST        TX[ ]|
                              |[ ]A0  -GPIO  RX[ ]|
                              |[ ]D0-16    5-D1[ ]| SCL
                              |[ ]D5-14    4-D2[ ]| SDA
                              |[ ]D6-12    0-D3[ ]|
                              |[ ]D7-13    2-D4[ ]| LED_BUILTIN
                              |[ ]D8-15     GND[ ]|
                              |[ ]3V3 .      5V[ ]|
                              |       +---+       |
                              |_______|USB|_______|

  _______________
*/                                                          //code pour la sélection des lettres avec les interrupteurs en binaire 
#include <LiquidCrystal_I2C.h>
#include <string>
int i1=15;
int i2=13;
int i3=12;
int i4=14;
int i5=A0;
int i=0;
int btn=TX;

String w = "STALLONE";
LiquidCrystal_I2C lcd(0x27, 16, 2); 
void setup() {
  // put your setup code here, to run once:
  Serial.begin(9600);
  pinMode(i1, INPUT);
  pinMode(i2, INPUT);
  pinMode(i3, INPUT);
  pinMode(i4, INPUT);
  pinMode(i5, INPUT);

  // initialize LCD
  lcd.init();
  // turn on LCD backlight                      
  lcd.backlight();

}

void loop() {
  // put your main code here, to run repeatedly:
  int etatI1 = digitalRead(i1);
  int etatI2 = digitalRead(i2);
  int etatI3 = digitalRead(i3);
  int etatI4 = digitalRead(i4);
  int etatI5 = digitalRead(i5);
  

if(etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("A");

}
else if(etatI4==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("B");
}
else if(etatI4==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("C");
}
else if(etatI3==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("D");
}
else if(etatI3==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("E");
}
else if(etatI3==HIGH && etatI4==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("F");
}
else if(etatI3==HIGH && etatI4==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("G");
}
else if(etatI2==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("H");
}
else if(etatI2==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("I");
}
else if(etatI2==HIGH && etatI4==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("J");
}
else if(etatI2==HIGH && etatI4==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("K");
}
else if(etatI2==HIGH && etatI3==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("L");
}
else if(etatI2==HIGH && etatI3==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("M");
}
else if(etatI2==HIGH && etatI3==HIGH && etatI4==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("N");
}
else if(etatI2==HIGH && etatI3==HIGH && etatI4==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("O");
}
else if(etatI1==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("P");
}
else if(etatI1==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("Q");
}
else if(etatI1==HIGH && etatI4==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("R");
}
else if(etatI1==HIGH && etatI4==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("S");
}
else if(etatI1==HIGH && etatI3==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("T");
}
else if(etatI1==HIGH && etatI3==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("U");
}
else if(etatI1==HIGH && etatI3==HIGH && etatI4==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("V");
}
else if(etatI1==HIGH && etatI3==HIGH && etatI4==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("W");
}
else if(etatI1==HIGH && etatI2==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("X");
}
else if(etatI1==HIGH && etatI2==HIGH && etatI5==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("Y");
}
else if(etatI1==HIGH && etatI2==HIGH && etatI4==HIGH){
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("Z");
}
else{
  // set cursor to first column, first row
  lcd.setCursor(0, 0);
  // print message
  lcd.print("no");

}

/*
if(digitalRead(btn)==HIGH){
  
  if(lcd.read()==w[i]){
    lcd.setCursor(0, 1);
    lcd.print("ok");
    i+=1;
  }
  else{
    i=0;
  }

  
}*/

}

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