# Ref: https://www.geeksforgeeks.org/rot13-cipher/ dict1 = {'A': 1, 'B': 2, 'C': 3, 'D': 4, 'E': 5, 'F': 6, 'G': 7, 'H': 8, 'I': 9, 'J': 10, 'K': 11, 'L': 12, 'M': 13, 'N': 14, 'O': 15, 'P': 16, 'Q': 17, 'R': 18, 'S': 19, 'T': 20, 'U': 21, 'V': 22, 'W': 23, 'X': 24, 'Y': 25, 'Z': 26} # Dictionary to lookup alphabets # corresponding to the index after shift dict2 = {0: 'Z', 1: 'A', 2: 'B', 3: 'C', 4: 'D', 5: 'E', 6: 'F', 7: 'G', 8: 'H', 9: 'I', 10: 'J', 11: 'K', 12: 'L', 13: 'M', 14: 'N', 15: 'O', 16: 'P', 17: 'Q', 18: 'R', 19: 'S', 20: 'T', 21: 'U', 22: 'V', 23: 'W', 24: 'X', 25: 'Y'} def encrypt(message, shift): cipher = '' for letter in message: # checking for space if (letter != ' '): # looks up the dictionary and # adds the shift to the index num = (dict1[letter] + shift) % 26 # looks up the second dictionary for # the shifted alphabets and adds them cipher += dict2[num] else: # adds space cipher += ' ' return cipher # Function to decrypt the string # according to the shift provided def decrypt(message, shift): decipher = '' for letter in message: # checks for space if (letter != ' '): # looks up the dictionary and # subtracts the shift to the index num = (dict1[letter] - shift + 26) % 26 # looks up the second dictionary for the # shifted alphabets and adds them decipher += dict2[num] else: # adds space decipher += ' ' return decipher for i in range(1,27): print("[+] shift N : {} MSG : {}".format(i,decrypt("XXXXXXXXXXX",i)))