mirror of
https://github.com/LonamiWebs/Telethon.git
synced 2024-11-23 01:46:35 +03:00
315 lines
10 KiB
Python
315 lines
10 KiB
Python
"""
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This module holds both the Connection class and the ConnectionMode enum,
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which specifies the protocol to be used by the Connection.
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"""
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import os
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import struct
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from datetime import timedelta
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from zlib import crc32
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from enum import Enum
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import errno
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from ..crypto import AESModeCTR
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from ..extensions import TcpClient
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from ..errors import InvalidChecksumError
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class ConnectionMode(Enum):
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"""Represents which mode should be used to stabilise a connection.
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TCP_FULL: Default Telegram mode. Sends 12 additional bytes and
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needs to calculate the CRC value of the packet itself.
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TCP_INTERMEDIATE: Intermediate mode between TCP_FULL and TCP_ABRIDGED.
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Always sends 4 extra bytes for the packet length.
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TCP_ABRIDGED: This is the mode with the lowest overhead, as it will
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only require 1 byte if the packet length is less than
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508 bytes (127 << 2, which is very common).
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TCP_OBFUSCATED: Encodes the packet just like TCP_ABRIDGED, but encrypts
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every message with a randomly generated key using the
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AES-CTR mode so the packets are harder to discern.
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"""
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TCP_FULL = 1
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TCP_INTERMEDIATE = 2
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TCP_ABRIDGED = 3
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TCP_OBFUSCATED = 4
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class Connection:
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"""
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Represents an abstract connection (TCP, TCP abridged...).
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'mode' must be any of the ConnectionMode enumeration.
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Note that '.send()' and '.recv()' refer to messages, which
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will be packed accordingly, whereas '.write()' and '.read()'
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work on plain bytes, with no further additions.
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"""
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def __init__(self, mode=ConnectionMode.TCP_FULL,
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proxy=None, timeout=timedelta(seconds=5)):
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"""
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Initializes a new connection.
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:param mode: the ConnectionMode to be used.
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:param proxy: whether to use a proxy or not.
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:param timeout: timeout to be used for all operations.
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"""
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self._mode = mode
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self._send_counter = 0
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self._aes_encrypt, self._aes_decrypt = None, None
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# TODO Rename "TcpClient" as some sort of generic socket?
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self.conn = TcpClient(proxy=proxy, timeout=timeout)
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# Sending messages
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if mode == ConnectionMode.TCP_FULL:
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setattr(self, 'send', self._send_tcp_full)
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setattr(self, 'recv', self._recv_tcp_full)
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elif mode == ConnectionMode.TCP_INTERMEDIATE:
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setattr(self, 'send', self._send_intermediate)
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setattr(self, 'recv', self._recv_intermediate)
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elif mode in (ConnectionMode.TCP_ABRIDGED,
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ConnectionMode.TCP_OBFUSCATED):
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setattr(self, 'send', self._send_abridged)
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setattr(self, 'recv', self._recv_abridged)
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# Writing and reading from the socket
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if mode == ConnectionMode.TCP_OBFUSCATED:
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setattr(self, 'write', self._write_obfuscated)
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setattr(self, 'read', self._read_obfuscated)
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else:
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setattr(self, 'write', self._write_plain)
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setattr(self, 'read', self._read_plain)
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def connect(self, ip, port):
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"""
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Estabilishes a connection to IP:port.
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:param ip: the IP to connect to.
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:param port: the port to connect to.
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"""
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try:
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self.conn.connect(ip, port)
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except OSError as e:
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if e.errno == errno.EISCONN:
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return # Already connected, no need to re-set everything up
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else:
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raise
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self._send_counter = 0
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if self._mode == ConnectionMode.TCP_ABRIDGED:
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self.conn.write(b'\xef')
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elif self._mode == ConnectionMode.TCP_INTERMEDIATE:
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self.conn.write(b'\xee\xee\xee\xee')
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elif self._mode == ConnectionMode.TCP_OBFUSCATED:
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self._setup_obfuscation()
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def get_timeout(self):
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"""Returns the timeout used by the connection."""
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return self.conn.timeout
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def _setup_obfuscation(self):
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"""
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Sets up the obfuscated protocol.
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"""
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# Obfuscated messages secrets cannot start with any of these
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keywords = (b'PVrG', b'GET ', b'POST', b'\xee' * 4)
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while True:
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random = os.urandom(64)
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if (random[0] != b'\xef' and
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random[:4] not in keywords and
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random[4:4] != b'\0\0\0\0'):
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# Invalid random generated
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break
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random = list(random)
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random[56] = random[57] = random[58] = random[59] = 0xef
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random_reversed = random[55:7:-1] # Reversed (8, len=48)
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# encryption has "continuous buffer" enabled
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encrypt_key = bytes(random[8:40])
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encrypt_iv = bytes(random[40:56])
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decrypt_key = bytes(random_reversed[:32])
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decrypt_iv = bytes(random_reversed[32:48])
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self._aes_encrypt = AESModeCTR(encrypt_key, encrypt_iv)
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self._aes_decrypt = AESModeCTR(decrypt_key, decrypt_iv)
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random[56:64] = self._aes_encrypt.encrypt(bytes(random))[56:64]
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self.conn.write(bytes(random))
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def is_connected(self):
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"""
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Determines whether the connection is alive or not.
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:return: true if it's connected.
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"""
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return self.conn.connected
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def close(self):
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"""Closes the connection."""
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self.conn.close()
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def clone(self):
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"""Creates a copy of this Connection."""
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return Connection(
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mode=self._mode, proxy=self.conn.proxy, timeout=self.conn.timeout
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)
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# region Receive message implementations
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def recv(self):
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"""Receives and unpacks a message"""
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# Default implementation is just an error
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raise ValueError('Invalid connection mode specified: ' + str(self._mode))
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def _recv_tcp_full(self):
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"""
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Receives a message from the network,
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internally encoded using the TCP full protocol.
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May raise InvalidChecksumError if the received data doesn't
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match its valid checksum.
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:return: the read message payload.
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"""
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packet_len_seq = self.read(8) # 4 and 4
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packet_len, seq = struct.unpack('<ii', packet_len_seq)
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body = self.read(packet_len - 12)
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checksum = struct.unpack('<I', self.read(4))[0]
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valid_checksum = crc32(packet_len_seq + body)
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if checksum != valid_checksum:
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raise InvalidChecksumError(checksum, valid_checksum)
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return body
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def _recv_intermediate(self):
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"""
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Receives a message from the network,
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internally encoded using the TCP intermediate protocol.
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:return: the read message payload.
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"""
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return self.read(struct.unpack('<i', self.read(4))[0])
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def _recv_abridged(self):
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"""
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Receives a message from the network,
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internally encoded using the TCP abridged protocol.
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:return: the read message payload.
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"""
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length = struct.unpack('<B', self.read(1))[0]
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if length >= 127:
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length = struct.unpack('<i', self.read(3) + b'\0')[0]
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return self.read(length << 2)
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# endregion
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# region Send message implementations
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def send(self, message):
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"""Encapsulates and sends the given message"""
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# Default implementation is just an error
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raise ValueError('Invalid connection mode specified: ' + str(self._mode))
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def _send_tcp_full(self, message):
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"""
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Encapsulates and sends the given message payload
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using the TCP full mode (length, sequence, message, crc32).
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:param message: the message to be sent.
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"""
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# https://core.telegram.org/mtproto#tcp-transport
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# total length, sequence number, packet and checksum (CRC32)
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length = len(message) + 12
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data = struct.pack('<ii', length, self._send_counter) + message
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crc = struct.pack('<I', crc32(data))
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self._send_counter += 1
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self.write(data + crc)
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def _send_intermediate(self, message):
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"""
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Encapsulates and sends the given message payload
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using the TCP intermediate mode (length, message).
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:param message: the message to be sent.
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"""
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self.write(struct.pack('<i', len(message)) + message)
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def _send_abridged(self, message):
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"""
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Encapsulates and sends the given message payload
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using the TCP abridged mode (short length, message).
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:param message: the message to be sent.
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"""
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length = len(message) >> 2
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if length < 127:
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length = struct.pack('B', length)
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else:
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length = b'\x7f' + int.to_bytes(length, 3, 'little')
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self.write(length + message)
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# endregion
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# region Read implementations
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def read(self, length):
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raise ValueError('Invalid connection mode specified: ' + str(self._mode))
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def _read_plain(self, length):
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"""
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Reads data from the socket connection.
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:param length: how many bytes should be read.
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:return: a byte sequence with len(data) == length
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"""
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return self.conn.read(length)
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def _read_obfuscated(self, length):
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"""
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Reads data and decrypts from the socket connection.
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:param length: how many bytes should be read.
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:return: the decrypted byte sequence with len(data) == length
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"""
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return self._aes_decrypt.encrypt(
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self.conn.read(length)
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)
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# endregion
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# region Write implementations
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def write(self, data):
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raise ValueError('Invalid connection mode specified: ' + str(self._mode))
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def _write_plain(self, data):
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"""
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Writes the given data through the socket connection.
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:param data: the data in bytes to be written.
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"""
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self.conn.write(data)
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def _write_obfuscated(self, data):
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"""
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Writes the given data through the socket connection,
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using the obfuscated mode (AES encryption is applied on top).
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:param data: the data in bytes to be written.
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"""
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self.conn.write(self._aes_encrypt.encrypt(data))
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# endregion
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