mirror of
https://github.com/ammaraskar/pyCraft.git
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100 lines
3.2 KiB
Python
100 lines
3.2 KiB
Python
import os
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from hashlib import sha1
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from cryptography.hazmat.backends import default_backend
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from cryptography.hazmat.primitives.asymmetric.padding import PKCS1v15
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from cryptography.hazmat.primitives.serialization import load_der_public_key
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from cryptography.hazmat.primitives.ciphers import Cipher, algorithms, modes
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def generate_shared_secret():
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return os.urandom(16)
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def create_AES_cipher(shared_secret):
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cipher = Cipher(algorithms.AES(shared_secret), modes.CFB8(shared_secret),
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backend=default_backend())
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return cipher
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def encrypt_token_and_secret(pubkey, verification_token, shared_secret):
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"""Encrypts the verification token and shared secret
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with the server's public key.
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:param pubkey: The RSA public key provided by the server
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:param verification_token: The verification token provided by the server
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:param shared_secret: The generated shared secret
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:return: A tuple containing (encrypted token, encrypted secret)
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"""
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pubkey = load_der_public_key(pubkey, default_backend())
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encrypted_token = pubkey.encrypt(verification_token, PKCS1v15())
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encrypted_secret = pubkey.encrypt(shared_secret, PKCS1v15())
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return encrypted_token, encrypted_secret
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def generate_verification_hash(server_id, shared_secret, public_key):
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verification_hash = sha1()
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verification_hash.update(server_id.encode('utf-8'))
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verification_hash.update(shared_secret)
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verification_hash.update(public_key)
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return minecraft_sha1_hash_digest(verification_hash)
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def minecraft_sha1_hash_digest(sha1_hash):
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# Minecraft first parses the sha1 bytes as a signed number and then
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# spits outs its hex representation
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number_representation = _number_from_bytes(sha1_hash.digest(), signed=True)
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return format(number_representation, 'x')
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def _number_from_bytes(b, signed=False):
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try:
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return int.from_bytes(b, byteorder='big', signed=signed)
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except AttributeError: # pragma: no cover
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# py-2 compatibility
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if len(b) == 0:
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b = b'\x00'
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num = int(str(b).encode('hex'), 16)
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if signed and (ord(b[0]) & 0x80):
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num -= 2 ** (len(b) * 8)
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return num
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class EncryptedFileObjectWrapper(object):
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def __init__(self, file_object, decryptor):
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self.actual_file_object = file_object
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self.decryptor = decryptor
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def read(self, length):
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return self.decryptor.update(self.actual_file_object.read(length))
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def fileno(self):
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return self.actual_file_object.fileno()
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def close(self):
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self.actual_file_object.close()
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class EncryptedSocketWrapper(object):
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def __init__(self, socket, encryptor, decryptor):
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self.actual_socket = socket
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self.encryptor = encryptor
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self.decryptor = decryptor
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def recv(self, length):
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return self.decryptor.update(self.actual_socket.recv(length))
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def send(self, data):
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self.actual_socket.send(self.encryptor.update(data))
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def fileno(self):
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return self.actual_socket.fileno()
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def close(self):
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return self.actual_socket.close()
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def shutdown(self, *args, **kwds):
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return self.actual_socket.shutdown(*args, **kwds)
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