mirror of
https://github.com/Grasscutters/mitmproxy.git
synced 2024-11-24 00:31:33 +00:00
190 lines
6.3 KiB
Python
190 lines
6.3 KiB
Python
from netlib import tcp
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from netlib import test
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from netlib import websockets
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import io
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import os
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from nose.tools import raises
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class WebSocketsEchoHandler(tcp.BaseHandler):
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def __init__(self, connection, address, server):
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super(WebSocketsEchoHandler, self).__init__(
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connection, address, server
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)
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self.handshake_done = False
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def handle(self):
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while True:
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if not self.handshake_done:
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self.handshake()
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else:
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self.read_next_message()
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def read_next_message(self):
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decoded = websockets.Frame.from_file(self.rfile).decoded_payload
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self.on_message(decoded)
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def send_message(self, message):
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frame = websockets.Frame.default(message, from_client = False)
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frame.to_file(self.wfile)
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def handshake(self):
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client_hs = websockets.read_handshake(self.rfile, 1)
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key = websockets.process_handshake_from_client(client_hs)
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response = websockets.create_server_handshake(key)
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self.wfile.write(response)
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self.wfile.flush()
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self.handshake_done = True
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def on_message(self, message):
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if message is not None:
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self.send_message(message)
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class WebSocketsClient(tcp.TCPClient):
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def __init__(self, address, source_address=None):
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super(WebSocketsClient, self).__init__(address, source_address)
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self.version = "13"
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self.client_nounce = websockets.create_client_nounce()
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self.resource = "/"
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def connect(self):
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super(WebSocketsClient, self).connect()
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handshake = websockets.create_client_handshake(
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self.address.host,
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self.address.port,
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self.client_nounce,
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self.version,
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self.resource
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)
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self.wfile.write(handshake)
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self.wfile.flush()
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server_handshake = websockets.read_handshake(self.rfile, 1)
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server_nounce = websockets.process_handshake_from_server(server_handshake)
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if not server_nounce == websockets.create_server_nounce(self.client_nounce):
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self.close()
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def read_next_message(self):
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return websockets.Frame.from_file(self.rfile).payload
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def send_message(self, message):
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frame = websockets.Frame.default(message, from_client = True)
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frame.to_file(self.wfile)
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class TestWebSockets(test.ServerTestBase):
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handler = WebSocketsEchoHandler
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def random_bytes(self, n = 100):
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return os.urandom(n)
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def echo(self, msg):
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client = WebSocketsClient(("127.0.0.1", self.port))
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client.connect()
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client.send_message(msg)
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response = client.read_next_message()
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assert response == msg
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def test_simple_echo(self):
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self.echo("hello I'm the client")
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def test_frame_sizes(self):
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# length can fit in the the 7 bit payload length
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small_msg = self.random_bytes(100)
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# 50kb, sligthly larger than can fit in a 7 bit int
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medium_msg = self.random_bytes(50000)
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# 150kb, slightly larger than can fit in a 16 bit int
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large_msg = self.random_bytes(150000)
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self.echo(small_msg)
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self.echo(medium_msg)
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self.echo(large_msg)
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def test_default_builder(self):
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"""
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default builder should always generate valid frames
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"""
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msg = self.random_bytes()
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client_frame = websockets.Frame.default(msg, from_client = True)
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assert client_frame.is_valid()
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server_frame = websockets.Frame.default(msg, from_client = False)
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assert server_frame.is_valid()
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def test_serialization_bijection(self):
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"""
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Ensure that various frame types can be serialized/deserialized back
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and forth between to_bytes() and from_bytes()
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"""
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for is_client in [True, False]:
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for num_bytes in [100, 50000, 150000]:
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frame = websockets.Frame.default(
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self.random_bytes(num_bytes), is_client
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)
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assert frame == websockets.Frame.from_bytes(frame.safe_to_bytes())
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bytes = b'\x81\x03cba'
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assert websockets.Frame.from_bytes(bytes).safe_to_bytes() == bytes
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@raises(websockets.WebSocketFrameValidationException)
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def test_safe_to_bytes(self):
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frame = websockets.Frame.default(self.random_bytes(8))
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frame.actual_payload_length = 1 # corrupt the frame
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frame.safe_to_bytes()
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def test_handshake(self):
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bad_upgrade = "not_websockets"
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bad_header_handshake = websockets.build_handshake([
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('Host', '%s:%s' % ("a", "b")),
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('Connection', "c"),
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('Upgrade', bad_upgrade),
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('Sec-WebSocket-Key', "d"),
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('Sec-WebSocket-Version', "e")
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], "f")
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# check behavior when required header values are missing
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assert None == websockets.process_handshake_from_server(bad_header_handshake)
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assert None == websockets.process_handshake_from_client(bad_header_handshake)
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key = "test_key"
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client_handshake = websockets.create_client_handshake("a","b",key,"d","e")
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assert key == websockets.process_handshake_from_client(client_handshake)
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server_handshake = websockets.create_server_handshake(key)
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assert websockets.create_server_nounce(key) == websockets.process_handshake_from_server(server_handshake)
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handshake = websockets.create_client_handshake("a","b","c","d","e")
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stream = io.BytesIO(handshake)
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assert handshake == websockets.read_handshake(stream, 1)
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# ensure readhandshake doesn't loop forever on empty stream
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empty_stream = io.BytesIO("")
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assert "" == websockets.read_handshake(empty_stream, 1)
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class BadHandshakeHandler(WebSocketsEchoHandler):
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def handshake(self):
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client_hs = websockets.read_handshake(self.rfile, 1)
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websockets.process_handshake_from_client(client_hs)
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response = websockets.create_server_handshake("malformed_key")
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self.wfile.write(response)
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self.wfile.flush()
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self.handshake_done = True
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class TestBadHandshake(test.ServerTestBase):
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"""
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Ensure that the client disconnects if the server handshake is malformed
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"""
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handler = BadHandshakeHandler
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@raises(tcp.NetLibDisconnect)
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def test(self):
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client = WebSocketsClient(("127.0.0.1", self.port))
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client.connect()
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client.send_message("hello")
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