mirror of
https://github.com/django/daphne.git
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ca61162129
* Lint with pre-commit * Move existing tox qa hooks into pre-commit. * Set up GitHub Action based on https://github.com/pre-commit/action/ (we could also use https://pre-commit.ci ). * Add `pyupgrade` to drop old Python syntax. * Add `flake8-bugbear` plugin to prevent flake8 errors. * Drop custom GHA
285 lines
9.7 KiB
Python
285 lines
9.7 KiB
Python
import socket
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import struct
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import time
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import unittest
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from http.client import HTTPConnection
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from urllib import parse
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from daphne.testing import DaphneTestingInstance, TestApplication
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class DaphneTestCase(unittest.TestCase):
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"""
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Base class for Daphne integration test cases.
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Boots up a copy of Daphne on a test port and sends it a request, and
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retrieves the response. Uses a custom ASGI application and temporary files
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to store/retrieve the request/response messages.
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"""
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### Plain HTTP helpers
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def run_daphne_http(
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self,
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method,
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path,
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params,
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body,
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responses,
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headers=None,
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timeout=1,
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xff=False,
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request_buffer_size=None,
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):
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"""
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Runs Daphne with the given request callback (given the base URL)
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and response messages.
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"""
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with DaphneTestingInstance(
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xff=xff, request_buffer_size=request_buffer_size
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) as test_app:
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# Add the response messages
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test_app.add_send_messages(responses)
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# Send it the request. We have to do this the long way to allow
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# duplicate headers.
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conn = HTTPConnection(test_app.host, test_app.port, timeout=timeout)
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if params:
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path += "?" + parse.urlencode(params, doseq=True)
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conn.putrequest(method, path, skip_accept_encoding=True, skip_host=True)
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# Manually send over headers
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if headers:
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for header_name, header_value in headers:
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conn.putheader(header_name, header_value)
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# Send body if provided.
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if body:
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conn.putheader("Content-Length", str(len(body)))
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conn.endheaders(message_body=body)
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else:
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conn.endheaders()
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try:
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response = conn.getresponse()
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except socket.timeout:
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# See if they left an exception for us to load
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test_app.get_received()
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raise RuntimeError(
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"Daphne timed out handling request, no exception found."
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)
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# Return scope, messages, response
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return test_app.get_received() + (response,)
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def run_daphne_raw(self, data, *, responses=None, timeout=1):
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"""
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Runs Daphne and sends it the given raw bytestring over a socket.
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Accepts list of response messages the application will reply with.
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Returns what Daphne sends back.
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"""
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assert isinstance(data, bytes)
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with DaphneTestingInstance() as test_app:
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if responses is not None:
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test_app.add_send_messages(responses)
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s = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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s.settimeout(timeout)
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s.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
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s.connect((test_app.host, test_app.port))
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s.send(data)
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try:
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return s.recv(1000000)
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except socket.timeout:
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raise RuntimeError(
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"Daphne timed out handling raw request, no exception found."
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)
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def run_daphne_request(
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self,
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method,
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path,
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params=None,
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body=None,
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headers=None,
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xff=False,
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request_buffer_size=None,
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):
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"""
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Convenience method for just testing request handling.
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Returns (scope, messages)
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"""
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scope, messages, _ = self.run_daphne_http(
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method=method,
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path=path,
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params=params,
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body=body,
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headers=headers,
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xff=xff,
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request_buffer_size=request_buffer_size,
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responses=[
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{"type": "http.response.start", "status": 200},
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{"type": "http.response.body", "body": b"OK"},
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],
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)
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return scope, messages
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def run_daphne_response(self, response_messages):
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"""
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Convenience method for just testing response handling.
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Returns (scope, messages)
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"""
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_, _, response = self.run_daphne_http(
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method="GET", path="/", params={}, body=b"", responses=response_messages
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)
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return response
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### WebSocket helpers
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def websocket_handshake(
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self,
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test_app,
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path="/",
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params=None,
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headers=None,
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subprotocols=None,
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timeout=1,
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):
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"""
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Runs a WebSocket handshake negotiation and returns the raw socket
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object & the selected subprotocol.
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You'll need to inject an accept or reject message before this
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to let it complete.
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"""
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# Send it the request. We have to do this the long way to allow
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# duplicate headers.
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conn = HTTPConnection(test_app.host, test_app.port, timeout=timeout)
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if params:
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path += "?" + parse.urlencode(params, doseq=True)
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conn.putrequest("GET", path, skip_accept_encoding=True, skip_host=True)
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# Do WebSocket handshake headers + any other headers
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if headers is None:
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headers = []
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headers.extend(
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[
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(b"Host", b"example.com"),
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(b"Upgrade", b"websocket"),
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(b"Connection", b"Upgrade"),
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(b"Sec-WebSocket-Key", b"x3JJHMbDL1EzLkh9GBhXDw=="),
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(b"Sec-WebSocket-Version", b"13"),
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(b"Origin", b"http://example.com"),
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]
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)
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if subprotocols:
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headers.append((b"Sec-WebSocket-Protocol", ", ".join(subprotocols)))
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if headers:
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for header_name, header_value in headers:
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conn.putheader(header_name, header_value)
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conn.endheaders()
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# Read out the response
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try:
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response = conn.getresponse()
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except socket.timeout:
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# See if they left an exception for us to load
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test_app.get_received()
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raise RuntimeError("Daphne timed out handling request, no exception found.")
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# Check we got a good response code
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if response.status != 101:
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raise RuntimeError("WebSocket upgrade did not result in status code 101")
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# Prepare headers for subprotocol searching
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response_headers = {n.lower(): v for n, v in response.getheaders()}
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response.read()
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assert not response.closed
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# Return the raw socket and any subprotocol
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return conn.sock, response_headers.get("sec-websocket-protocol", None)
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def websocket_send_frame(self, sock, value):
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"""
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Sends a WebSocket text or binary frame. Cannot handle long frames.
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"""
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# Header and text opcode
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if isinstance(value, str):
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frame = b"\x81"
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value = value.encode("utf8")
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else:
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frame = b"\x82"
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# Length plus masking signal bit
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frame += struct.pack("!B", len(value) | 0b10000000)
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# Mask badly
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frame += b"\0\0\0\0"
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# Payload
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frame += value
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sock.sendall(frame)
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def receive_from_socket(self, sock, length, timeout=1):
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"""
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Receives the given amount of bytes from the socket, or times out.
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"""
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buf = b""
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started = time.time()
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while len(buf) < length:
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buf += sock.recv(length - len(buf))
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time.sleep(0.001)
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if time.time() - started > timeout:
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raise ValueError("Timed out reading from socket")
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return buf
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def websocket_receive_frame(self, sock):
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"""
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Receives a WebSocket frame. Cannot handle long frames.
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"""
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# Read header byte
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# TODO: Proper receive buffer handling
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opcode = self.receive_from_socket(sock, 1)
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if opcode in [b"\x81", b"\x82"]:
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# Read length
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length = struct.unpack("!B", self.receive_from_socket(sock, 1))[0]
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# Read payload
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payload = self.receive_from_socket(sock, length)
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if opcode == b"\x81":
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payload = payload.decode("utf8")
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return payload
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else:
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raise ValueError("Unknown websocket opcode: %r" % opcode)
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### Assertions and test management
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def tearDown(self):
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"""
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Ensures any storage files are cleared.
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"""
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TestApplication.delete_setup()
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TestApplication.delete_result()
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def assert_is_ip_address(self, address):
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"""
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Tests whether a given address string is a valid IPv4 or IPv6 address.
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"""
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try:
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socket.inet_aton(address)
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except OSError:
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self.fail("'%s' is not a valid IP address." % address)
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def assert_key_sets(self, required_keys, optional_keys, actual_keys):
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"""
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Asserts that all required_keys are in actual_keys, and that there
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are no keys in actual_keys that aren't required or optional.
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"""
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present_keys = set(actual_keys)
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# Make sure all required keys are present
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self.assertTrue(required_keys <= present_keys)
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# Assert that no other keys are present
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self.assertEqual(set(), present_keys - required_keys - optional_keys)
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def assert_valid_path(self, path):
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"""
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Checks the path is valid and already url-decoded.
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"""
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self.assertIsInstance(path, str)
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# Assert that it's already url decoded
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self.assertEqual(path, parse.unquote(path))
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def assert_valid_address_and_port(self, host):
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"""
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Asserts the value is a valid (host, port) tuple.
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"""
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address, port = host
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self.assertIsInstance(address, str)
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self.assert_is_ip_address(address)
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self.assertIsInstance(port, int)
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