import secrets import hashlib from base64 import b64encode from Crypto.Cipher import AES from Crypto.Util.Padding import pad g = 3 p = 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 class Server(): def __init__(self, port=3331): self.port = port self.fKE = FasterKeyExchange(g, p) self.y_server = self.fKE.calculate_y() self.y_client = 0 self.IV = "d724c349c2b28831" self.key = "313371337" def print_banner(self): print(" ---_ ......._-_--.") print(" (|\ / / /| \ \\") print(" / / .' -=-' `.") print(" / / .' )") print(" _/ / .' _.) /") print(" / o o _.-' / .'") print(" \ _.-' / .'*|") print(" \______.-'// .'.' \*|") print(" \| \ | // .'.' _ |*|") print(" ` \|// .'.'_ _ _|*|") print(" . .// .'.' | _ _ \*|") print(" \`-|\_/ / \ _ _ \*\\") print(" `/'\__/ \ _ _ \*\\") print(" /^| \ _ _ \*") print(" ' ` \ _ _ \\") print(" \_") print("Challenge by pyth0n33. Have fun!") def run(self): self.print_banner() input("Enter to start") print("\x1b[2J\x1b[H") print("Here's my y={0}\n\n".format(self.y_server)) self.y_client = int(input("Now give me your y please: ")) self.key = str(self.fKE.calculate_key(self.y_client)) self.iv = self.key[0:16] self.encrypt() def encrypt(self): key = bytes(hashlib.md5(bytes(self.key, "utf-8")).hexdigest(), "utf-8") cipher = AES.new(key, AES.MODE_CBC, iv=bytes(self.iv, "utf-8")) cipher_text_bytes = cipher.encrypt(pad(b"The Advanced Encryption Standard (AES), also known by its original name Rijndael, is a specification for the encryption of electronic data established by the U.S. National Institute of Standards and Technology (NIST) in 2001.", AES.block_size)) print(b64encode(cipher_text_bytes)) class FasterKeyExchange(): def __init__(self, g, p): self.g = g self.p = p self.x = self.get_random_x() def get_random_x(self): return secrets.SystemRandom().randint(g, p-2) def calculate_y(self): return (self.g * self.x) % self.p def calculate_key(self, y): return (y * self.x) % self.p if __name__ == "__main__": server = Server() server.run()