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bcb09b3f4aqa: Verify HTTP listen port exclusivity (Hodlinator)af65069fd1windows: Use SO_EXCLUSIVEADDRUSE over SO_REUSEADDR (Hodlinator) Pull request description: #### Problem `HTTPServer::BindAndStartListening()` unconditionally enables `SO_REUSEADDR` before binding the RPC listener. On Windows, a reuse-enabled listener does not reserve the port exclusively: another local process can request `SO_REUSEADDR` and bind to the same port (see https://learn.microsoft.com/en-us/windows/win32/winsock/using-so-reuseaddr-and-so-exclusiveaddruse). If the competing socket receives a new connection, it can capture the HTTP Basic `Authorization` header (including the cookie credential) and proxy or issue privileged RPC calls as the victim. This crosses a local-user boundary and can expose wallet-controlling RPC credentials. #### Fix Have Windows use `SO_EXCLUSIVEADDRUSE` instead which makes the port exclusive to the process which first requests it, while retaining the restart-friendly behavior which `SO_REUSEADDR` enabled. Abort if another process is already bound to the port. #### Further context & rationale This issue is new in our homegrown HTTP server implementation, since libevent had a guard against setting `SO_REUSEADDR` on Windows, see `evutil_make_listen_socket_reuseable()`d82464a277/evutil.c (L483). libevent does not reference `SO_EXCLUSIVEADDRUSE`. Why should we not just avoid `SO_REUSEADDR` on Windows and skip `SO_EXCLUSIVEADDRUSE` like the libevent approach? Because setting either option makes the process less prone to failing to bind to a port after having been restarted. Not sure why this wasn't an issue before, maybe the node startup was usually slow enough to time out the port before we tried to re-bind it on Windows. --- Discovered by Project Loupe. ACKs for top commit: pinheadmz: ACKbcb09b3f4asedited: utACKbcb09b3f4ajeanpablojp: tACKbcb09b3f4aTree-SHA512: 7f2362cc8399e8c4e95b27b39066d3e591b5aebfc2b562aba10786609456f526f562394818a3d1042d64dabf497548ffabf0757322cfb201454a134321108cf5
797 lines
35 KiB
Python
Executable File
797 lines
35 KiB
Python
Executable File
#!/usr/bin/env python3
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# Copyright (c) The Bitcoin Core developers
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# Distributed under the MIT software license, see the accompanying
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# file COPYING or http://www.opensource.org/licenses/mit-license.php.
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"""Test the HTTP server basics."""
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from test_framework.test_framework import BitcoinTestFramework
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from test_framework.netutil import NETWORK_ERRORS
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from test_framework.util import assert_equal, assert_raises, str_to_b64str
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import concurrent.futures
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import http.client
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import socket
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import threading
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import time
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import urllib.parse
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# Configuration option for some tests
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RPCSERVERTIMEOUT = 2
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# Set in httpserver.h
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MAX_HEADERS_SIZE = 8192
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MAX_BODY_SIZE = 32 * 1024 * 1024
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class BitcoinHTTPConnection:
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def __init__(self, node):
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self.url = urllib.parse.urlparse(node.url)
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self.authpair = f'{self.url.username}:{self.url.password}'
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self.headers = {"Authorization": f"Basic {str_to_b64str(self.authpair)}"}
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self.reset_conn()
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def reset_conn(self):
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self.conn = http.client.HTTPConnection(self.url.hostname, self.url.port)
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self.conn.connect()
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def sock_closed(self):
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if self.conn.sock is None:
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return True
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try:
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self.conn.request('GET', '/')
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self.conn.getresponse().read()
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return False
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except NETWORK_ERRORS:
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return True
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def close_sock(self):
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self.conn.close()
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def set_timeout(self, seconds):
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self.conn.sock.settimeout(seconds)
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def add_header(self, key, value):
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self.headers.update({key: value})
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def _request(self, method, path, data, connection_header, **kwargs):
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headers = self.headers.copy()
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if connection_header is not None:
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headers["Connection"] = connection_header
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self.conn.request(method, path, data, headers, **kwargs)
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return self.conn.getresponse()
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def post(self, path, data, connection_header=None, **kwargs):
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return self._request('POST', path, data, connection_header, **kwargs)
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def get(self, path, connection_header=None):
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return self._request('GET', path, '', connection_header)
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def send_raw(self, data):
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self.conn.sock.sendall(data)
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def post_raw(self, path, data):
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data_bytes = data.encode("utf-8")
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req = f"POST {path} HTTP/1.1\r\n"
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req += f'Authorization: Basic {str_to_b64str(self.authpair)}\r\n'
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req += f'Content-Length: {len(data_bytes)}\r\n\r\n'
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self.send_raw(req.encode("ascii") + data_bytes)
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def recv_raw(self):
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'''
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Blocking socket will wait until data is received and return up to 1024 bytes
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'''
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return self.conn.sock.recv(1024)
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def expect_timeout(self, seconds):
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# Wait for response, but expect a timeout disconnection
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start = time.time()
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response1 = self.recv_raw()
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stop = time.time()
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# Server disconnected with EOF
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assert_equal(response1, b"")
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# Server disconnected within an acceptable range of time:
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# not immediately, and not too far over the configured duration.
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# This allows for some jitter in the test between client and server.
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duration = stop - start
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assert duration <= seconds + 2, f"Server disconnected too slow: {duration} > {seconds}"
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assert duration >= seconds - 1, f"Server disconnected too fast: {duration} < {seconds}"
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# The connection is definitely closed.
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assert self.sock_closed()
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class HTTPBasicsTest (BitcoinTestFramework):
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def set_test_params(self):
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self.num_nodes = 1
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def setup_network(self):
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self.setup_nodes()
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self.node = self.nodes[0]
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def send_bad_and_tolerate_disconnect(self, conn, predicate_fn):
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'''
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Tolerate a race condition when sending a malformed request that should result
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in the server disconnecting the client. The server *should* be sending an error
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response as well but in some conditions on some platforms (Windows) the python
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client might encounter the socket error before processing the response.
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'''
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with self.node.assert_debug_log([f"HTTPResponse (status code: {http.client.BAD_REQUEST}"]):
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try:
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response = predicate_fn()
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assert_equal(response.status, http.client.BAD_REQUEST)
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self.log.info(f"Client received expected {http.client.BAD_REQUEST} response before connection was terminated")
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# Drain server response
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response.read()
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conn.set_timeout(2)
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except NETWORK_ERRORS:
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self.log.info(f"Client did not receive expected {http.client.BAD_REQUEST} response before connection was terminated")
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assert conn.sock_closed()
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def run_test(self):
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# The test framework typically reuses a single persistent HTTP connection
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# for all RPCs to a TestNode. Because we are setting -rpcservertimeout
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# so low on this one node, its connection will quickly timeout and get dropped by
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# the server. Negating this setting will force the AuthServiceProxy
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# for this node to create a fresh new HTTP connection for every command
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# called for the remainder of this test.
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self.node.reuse_http_connections = False
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self.check_default_connection()
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self.check_socket_exclusivity()
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self.check_keepalive_connection()
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self.check_close_connection()
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self.check_excessive_request_size()
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self.check_pipelining(with_invalid_second_request=False)
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self.check_pipelining(with_invalid_second_request=True)
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self.check_chunked_transfer()
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self.check_idle_timeout()
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self.check_server_busy_idle_timeout()
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self.check_auth_required()
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self.check_wrong_credentials()
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self.check_malformed_auth_headers()
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self.check_disallowed_http_methods()
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self.check_path_traversal()
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self.check_request_smuggling_cl_te()
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self.check_duplicate_content_length()
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self.check_null_byte_in_uri()
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self.check_invalid_http_version()
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self.check_whitespace_in_headers()
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self.check_connection_limit()
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self.check_pipelined_data_is_throttled()
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def check_default_connection(self):
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self.log.info("Checking default HTTP/1.1 connection persistence")
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conn = BitcoinHTTPConnection(self.node)
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# Make request without explicit "Connection" header
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response1 = conn.post('/', '{"method": "getbestblockhash"}').read()
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assert b'"error":null' in response1
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# Connection still open after request
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assert not conn.sock_closed()
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# Make second request without explicit "Connection" header
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response2 = conn.post('/', '{"method": "getchaintips"}').read()
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assert b'"error":null' in response2
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# Connection still open after second request
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assert not conn.sock_closed()
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# Close
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conn.close_sock()
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assert conn.sock_closed()
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def check_socket_exclusivity(self):
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self.log.info("Checking that another process cannot bind the HTTP listen port")
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url = urllib.parse.urlparse(self.node.url)
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with socket.socket(socket.AF_INET, socket.SOCK_STREAM) as competing_listener:
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competing_listener.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
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# Ill-configured sockets permit port reuse unless the original
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# listener requested exclusive address use.
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assert_raises(
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OSError,
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lambda: competing_listener.bind((url.hostname, url.port)))
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def check_keepalive_connection(self):
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self.log.info("Checking keep-alive connection persistence")
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conn = BitcoinHTTPConnection(self.node)
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# Make request with explicit "Connection: keep-alive" header
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response1 = conn.post('/', '{"method": "getbestblockhash"}', connection_header='keep-alive').read()
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assert b'"error":null' in response1
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# Connection still open after request
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assert not conn.sock_closed()
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# Make second request with explicit "Connection" header
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response2 = conn.post('/', '{"method": "getchaintips"}', connection_header='keep-alive').read()
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assert b'"error":null' in response2
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# Connection still open after second request
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assert not conn.sock_closed()
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# Close
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conn.close_sock()
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assert conn.sock_closed()
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def check_close_connection(self):
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self.log.info("Checking close connection after response")
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conn = BitcoinHTTPConnection(self.node)
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# Make request with explicit "Connection: close" header
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response1 = conn.post('/', '{"method": "getbestblockhash"}', connection_header='close').read()
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assert b'"error":null' in response1
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# Connection closed after response
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assert conn.sock_closed()
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def check_excessive_request_size(self):
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self.log.info("Checking excessive request size")
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# Large URI plus up to 1000 bytes of default headers
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# added by python's http.client still below total limit.
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conn = BitcoinHTTPConnection(self.node)
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response1 = conn.get(f'/{"x" * (MAX_HEADERS_SIZE - 1000)}')
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assert_equal(response1.status, http.client.NOT_FOUND)
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# Excessive URI size plus default headers breaks the limit.
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conn = BitcoinHTTPConnection(self.node)
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self.send_bad_and_tolerate_disconnect(conn, lambda: conn.get(f'/{"x" * MAX_HEADERS_SIZE}'))
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# Compute how many short header lines need to be added to http.client
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# default headers to make / break the total limit in a single request.
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header_line_length = len("header_0000: foo\r\n")
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headers_below_limit = (MAX_HEADERS_SIZE - 1000) // header_line_length
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headers_above_limit = MAX_HEADERS_SIZE // header_line_length
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# Many small header lines is ok
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conn = BitcoinHTTPConnection(self.node)
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for i in range(headers_below_limit):
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conn.add_header(f"header_{i:04}", "foo")
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response3 = conn.get('/x')
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assert_equal(response3.status, http.client.NOT_FOUND)
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# Too many small header lines exceeds total headers size allowed
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conn = BitcoinHTTPConnection(self.node)
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for i in range(headers_above_limit):
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conn.add_header(f"header_{i:04}", "foo")
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self.send_bad_and_tolerate_disconnect(conn, lambda: conn.get('/x'))
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# Compute how much data we can add to a request message body
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# to make / break the limit.
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base_request_body_size = len('{"jsonrpc": "2.0", "id": "0", "method": "submitblock", "params": [""]}}')
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bytes_below_limit = MAX_BODY_SIZE - base_request_body_size
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bytes_above_limit = MAX_BODY_SIZE - base_request_body_size + 2
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# Large request body size is ok
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conn = BitcoinHTTPConnection(self.node)
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response4 = conn.post('/', f'{{"jsonrpc": "2.0", "id": "0", "method": "submitblock", "params": ["{"0" * bytes_below_limit}"]}}')
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assert_equal(response4.status, http.client.OK)
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conn = BitcoinHTTPConnection(self.node)
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# Split off the send into a background thread. When the server detects
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# the excessive size it will stop reading from the socket, but the client
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# will continue trying to write until the backpressure eventually
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# drops the TCP window size to 0. While the send operation is blocking until
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# it times out, we can still receive the server's response in the foreground.
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def send_excessive_body(self, conn):
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try:
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# Excessive body size is invalid
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conn.post_raw('/', f'{{"jsonrpc": "2.0", "id": "0", "method": "submitblock", "params": ["{"0" * bytes_above_limit}"]}}')
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# On some platforms (e.g. Windows) the whole request may be
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# accepted into the OS send buffer before the server disconnects.
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# It's ok to allow that, the server-side behavior is asserted in
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# the foreground thread via the 413 response.
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self.log.info("Client finished sending request before connection was terminated")
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except NETWORK_ERRORS:
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self.log.info("Client did not finish sending request before connection was terminated")
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send_thread = threading.Thread(target=send_excessive_body, args=(self, conn))
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send_thread.start()
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response5 = conn.recv_raw().decode()
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assert "413 Content too large" in response5
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try:
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conn.conn.sock.shutdown(socket.SHUT_RDWR)
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self.log.info("Send thread force-closed by test framework")
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except OSError:
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self.log.info("Send thread was already closed by RST from server")
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send_thread.join()
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def check_pipelining(self, with_invalid_second_request):
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"""
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Requests are responded to in the order in which they were received
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See https://www.rfc-editor.org/rfc/rfc7230#section-6.3.2
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"""
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self.log.info("Check pipelining" + (" with invalid second request" if with_invalid_second_request else ""))
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tip_height = self.node.getblockcount()
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conn = BitcoinHTTPConnection(self.node)
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conn.set_timeout(5)
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# Send two requests in a row.
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# The first request will block the second indefinitely
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conn.post_raw('/', f'{{"method": "waitforblockheight", "params": [{tip_height + 1}]}}')
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if with_invalid_second_request:
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conn.post_raw(f'/{"x" * MAX_HEADERS_SIZE * 2}', '{"method": "getblockcount"}')
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else:
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conn.post_raw('/', '{"method": "getblockcount"}')
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# The server should not respond to the second request until the first
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# request has been handled. Since the server will not respond at all
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# to the first request until we generate a block we expect a socket timeout.
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assert_raises(TimeoutError, lambda: conn.recv_raw())
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# Use a separate http connection to generate a block
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self.generate(self.node, 1, sync_fun=self.no_op)
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# Wait for responses to be received
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if with_invalid_second_request:
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OK = 1
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BAD = 1
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else:
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OK = 2
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BAD = 0
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res = b""
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while True:
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res += conn.recv_raw()
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if res.count(b"HTTP/1.1 200") == OK and res.count(b"HTTP/1.1 400") == BAD:
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break
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# waitforblockheight was responded to first, and then getblockcount
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# which includes the block added after the request was made
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chunks = res.split(b'"result":')
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assert chunks[1].startswith(b'{"hash":')
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if with_invalid_second_request:
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# The response to the in-flight first request is sent before the
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# error generated by parsing the second one, even though the second
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# request could have been rejected much earlier.
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assert res.index(b"HTTP/1.1 200") < res.index(b"HTTP/1.1 400")
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else:
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assert chunks[2].startswith(bytes(f'{tip_height + 1}', 'utf8'))
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def check_chunked_transfer(self):
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self.log.info("Check HTTP request encoded with chunked transfer")
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conn = BitcoinHTTPConnection(self.node)
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headers_chunked = conn.headers.copy()
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headers_chunked.update({"Transfer-encoding": "chunked"})
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body_chunked = [
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b'{"method": "submitblock", "params": ["',
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b'0' * 1000000,
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b'1' * 1000000,
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b'2' * 1000000,
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b'3' * 1000000,
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b'"]}'
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]
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conn.conn.request(
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method='POST',
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url='/',
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body=iter(body_chunked),
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headers=headers_chunked,
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encode_chunked=True)
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response1 = conn.recv_raw()
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assert b'{"result":"high-hash","error":null}\n' in response1
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self.log.info("Check excessive size HTTP request encoded with chunked transfer")
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conn = BitcoinHTTPConnection(self.node)
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headers_chunked = conn.headers.copy()
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headers_chunked.update({"Transfer-encoding": "chunked"})
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body_chunked = [
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b'{"method": "submitblock", "params": ["',
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b'0' * 10000000,
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b'1' * 10000000,
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b'2' * 10000000,
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b'3' * 10000000,
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b'"]}'
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]
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# Split off the send into a background thread. When the server detects
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# the excessive size it will stop reading from the socket, but the client
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# will continue trying to write until the backpressure eventually
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# drops the TCP window size to 0. While the send operation is blocking until
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# it times out, we can still receive the server's response in the foreground.
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def send_excessive_chunked(self, conn):
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try:
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conn.conn.request(
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method='POST',
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url='/',
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body=iter(body_chunked),
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headers=headers_chunked,
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encode_chunked=True)
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# On some platforms (e.g. Windows) the whole request may be
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# accepted into the OS send buffer before the server disconnects.
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# It's ok to allow that, the server-side behavior is asserted in
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# the foreground thread via the 413 response.
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self.log.info("Client finished sending request before connection was terminated")
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except NETWORK_ERRORS:
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self.log.info("Client did not finish sending request before connection was terminated")
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send_thread = threading.Thread(target=send_excessive_chunked, args=(self, conn))
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send_thread.start()
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response2 = conn.recv_raw().decode()
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assert "413 Content too large" in response2
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try:
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conn.conn.sock.shutdown(socket.SHUT_RDWR)
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self.log.info("Send thread force-closed by test framework")
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except OSError:
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self.log.info("Send thread was already closed by RST from server")
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send_thread.join()
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def check_idle_timeout(self):
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self.log.info("Check -rpcservertimeout")
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# This is the amount of time the server will wait for a client to
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# send a complete request. Test it by sending an incomplete but
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# so-far otherwise well-formed HTTP request, and never finishing it.
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self.restart_node(0, extra_args=[f"-rpcservertimeout={RPCSERVERTIMEOUT}"])
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# Copied from http_incomplete_test_() in regress_http.c in libevent.
|
|
# A complete request would have an additional "\r\n" at the end.
|
|
bad_http_request = "GET /test1 HTTP/1.1\r\nHost: somehost\r\n"
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
conn.send_raw(bad_http_request.encode("ascii"))
|
|
|
|
conn.expect_timeout(RPCSERVERTIMEOUT)
|
|
|
|
# Sanity check -- complete requests don't timeout waiting for completion
|
|
good_http_request = "GET /test2 HTTP/1.1\r\nHost: somehost\r\n\r\n"
|
|
conn.reset_conn()
|
|
conn.send_raw(good_http_request.encode("ascii"))
|
|
response = conn.recv_raw()
|
|
assert response.startswith(b"HTTP/1.1 404 Not Found")
|
|
|
|
# Still open
|
|
assert not conn.sock_closed()
|
|
|
|
|
|
def check_server_busy_idle_timeout(self):
|
|
self.log.info("Check that -rpcservertimeout won't close on a delayed response")
|
|
|
|
self.restart_node(0, extra_args=[f"-rpcservertimeout={RPCSERVERTIMEOUT}"])
|
|
|
|
tip_height = self.node.getblockcount()
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
conn.post_raw('/', f'{{"method": "waitforblockheight", "params": [{tip_height + 1}]}}')
|
|
|
|
# Wait until after the timeout, then generate a block with a second HTTP connection
|
|
time.sleep(RPCSERVERTIMEOUT + 1)
|
|
generated_block = self.generate(self.node, 1, sync_fun=self.no_op)[0]
|
|
|
|
# The first connection gets the response it is patiently waiting for
|
|
response1 = conn.recv_raw().decode()
|
|
assert generated_block in response1
|
|
# The connection is still open
|
|
assert not conn.sock_closed()
|
|
|
|
# Now it will actually close due to idle timeout
|
|
conn.expect_timeout(RPCSERVERTIMEOUT)
|
|
|
|
|
|
def check_auth_required(self):
|
|
self.log.info("Check that requests without credentials return 401 Unauthorized with WWW-Authenticate")
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
conn.headers = {}
|
|
response = conn.post('/', '{"method": "getbestblockhash"}')
|
|
assert_equal(response.status, http.client.UNAUTHORIZED)
|
|
assert response.getheader('WWW-Authenticate') is not None
|
|
|
|
|
|
def check_wrong_credentials(self):
|
|
self.log.info("Check that incorrect credentials return 401 Unauthorized")
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
wrong_pair = f"{conn.url.username}:wrong_password"
|
|
conn.headers = {"Authorization": f"Basic {str_to_b64str(wrong_pair)}"}
|
|
response = conn.post('/', '{"method": "getbestblockhash"}')
|
|
assert_equal(response.status, http.client.UNAUTHORIZED)
|
|
assert response.getheader('WWW-Authenticate') is not None
|
|
|
|
|
|
def check_malformed_auth_headers(self):
|
|
self.log.info("Check that malformed Authorization headers return 401 Unauthorized")
|
|
cases = [
|
|
"Bearer sometoken123",
|
|
'Digest username="user", realm="test"',
|
|
"Basic !!!notbase64!!!",
|
|
f"Basic {str_to_b64str('nocolon')}",
|
|
"Basic ",
|
|
]
|
|
for auth_value in cases:
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
conn.headers = {"Authorization": f"{auth_value}"}
|
|
response = conn.post('/', '{"method": "getbestblockhash"}')
|
|
assert_equal(response.status, http.client.UNAUTHORIZED)
|
|
assert response.getheader('WWW-Authenticate') is not None
|
|
|
|
|
|
def check_disallowed_http_methods(self):
|
|
self.log.info("Check that unsafe or unsupported HTTP methods are rejected")
|
|
for method, err in [
|
|
['TRACE', http.client.METHOD_NOT_ALLOWED],
|
|
['CONNECT', http.client.METHOD_NOT_ALLOWED],
|
|
['DELETE', http.client.METHOD_NOT_ALLOWED],
|
|
['PATCH', http.client.METHOD_NOT_ALLOWED],
|
|
['OPTIONS', http.client.METHOD_NOT_ALLOWED],
|
|
['GET', http.client.METHOD_NOT_ALLOWED] # RPC endpoint '/' only handles POST
|
|
]:
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
response = conn._request(method, '/', data=None, connection_header=None)
|
|
assert_equal(response.status, err)
|
|
|
|
|
|
def check_path_traversal(self):
|
|
self.log.info("Check that path traversal attempts are safely rejected")
|
|
traversal_paths = [
|
|
'/../etc/passwd',
|
|
'/../../etc/shadow',
|
|
'/%2e%2e/%2e%2e/etc/passwd', # URL-encoded dots
|
|
'/..%2Fetc%2Fpasswd', # URL-encoded slash
|
|
'/.%2e/.%2e/etc/passwd', # mixed encoding
|
|
'/valid/../../../etc/passwd',
|
|
]
|
|
for path in traversal_paths:
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
response = conn.get(path)
|
|
assert_equal(response.status, http.client.NOT_FOUND)
|
|
|
|
|
|
def check_request_smuggling_cl_te(self):
|
|
self.log.info("Check request smuggling is not possible")
|
|
# https://www.rfc-editor.org/rfc/rfc7230#section-3.3.3
|
|
# Transfer-Encoding takes precedence over Content-Length.
|
|
# Sending both creates a smuggling vector: a front-end proxy that
|
|
# uses Content-Length while the back-end uses Transfer-Encoding lets an
|
|
# attacker prepend arbitrary bytes to the next victim's request.
|
|
|
|
# The real JSON-RPC body sent as a single chunk.
|
|
body = b'{"method":"getblockcount"}'
|
|
# Content-Length is set to the length of just the chunk-size line
|
|
# ("1a\r\n" = 4 bytes), not the full chunked body — the ambiguity that
|
|
# smuggling exploits. A server using Transfer-Encoding reads the complete
|
|
# chunk and responds with the block count; a server confused by the
|
|
# mismatch may stall, close the connection, or return an error.
|
|
chunk_size_line = f"{len(body):x}\r\n".encode("ascii")
|
|
# Signals end of body
|
|
empty_chunk = b'\r\n0\r\n\r\n'
|
|
chunk_body = chunk_size_line + body + empty_chunk
|
|
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
raw = (
|
|
f"POST / HTTP/1.1\r\n"
|
|
f"Host: {conn.url.hostname}\r\n"
|
|
f"Authorization: Basic {str_to_b64str(conn.authpair)}\r\n"
|
|
f"Content-Length: {len(chunk_size_line)}\r\n"
|
|
f"Transfer-Encoding: chunked\r\n"
|
|
f"\r\n"
|
|
).encode("ascii") + chunk_body
|
|
conn.send_raw(raw)
|
|
response = conn.recv_raw().decode()
|
|
assert "HTTP/1.1 200 OK" in response
|
|
count = self.node.getblockcount()
|
|
assert f'"result":{count}' in response
|
|
|
|
|
|
def check_duplicate_content_length(self):
|
|
self.log.info("Check that duplicate Content-Length headers are handled")
|
|
# https://www.rfc-editor.org/rfc/rfc7230#section-3.3.3
|
|
# Multiple Content-Length headers with differing values "MUST"
|
|
# result in an error.
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
body = '{"method":"getblockcount"}'
|
|
raw = (
|
|
f"POST / HTTP/1.1\r\n"
|
|
f"Host: {conn.url.hostname}\r\n"
|
|
f"Authorization: Basic {str_to_b64str(conn.authpair)}\r\n"
|
|
f"Content-Length: {len(body)}\r\n"
|
|
f"Content-Length: 999\r\n"
|
|
f"\r\n"
|
|
f"{body}"
|
|
).encode("ascii")
|
|
conn.send_raw(raw)
|
|
response = conn.recv_raw().decode()
|
|
assert response.startswith("HTTP/1.1 400")
|
|
|
|
|
|
def check_null_byte_in_uri(self):
|
|
self.log.info("Check that null bytes in the URI are safely rejected")
|
|
# Null-byte injection can truncate the path string in C environments,
|
|
# bypassing suffix/extension checks and causing unexpected file access.
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
raw = (
|
|
"GET /safe\x00/../etc/passwd HTTP/1.1\r\n"
|
|
f"Host: {conn.url.hostname}\r\n"
|
|
f"Authorization: Basic {str_to_b64str(conn.authpair)}\r\n"
|
|
"\r\n"
|
|
).encode("ascii")
|
|
conn.send_raw(raw)
|
|
response = conn.recv_raw().decode()
|
|
assert response.startswith("HTTP/1.1 400")
|
|
|
|
|
|
def check_invalid_http_version(self):
|
|
self.log.info("Check that requests with invalid HTTP versions are safely rejected")
|
|
cases = [
|
|
b"GET / \r\n\r\n", # HTTP/0.9 — no version
|
|
b"GET / HTTP/9.9\r\nHost: localhost\r\n\r\n", # far-future version
|
|
b"GET / HTTP/INVALID\r\nHost: localhost\r\n\r\n", # non-numeric version
|
|
b"GET / NOTHTTP/1.1\r\nHost: localhost\r\n\r\n", # wrong protocol name
|
|
]
|
|
for raw in cases:
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
conn.send_raw(raw)
|
|
response = conn.recv_raw().decode()
|
|
assert response.startswith("HTTP/1.1 400")
|
|
|
|
|
|
def check_whitespace_in_headers(self):
|
|
self.log.info("Check that requests with whitespace in headers are rejected")
|
|
# Extra whitespace before colon in header.
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
conn.headers = {"Authorization ": f"Basic {str_to_b64str(conn.authpair)}"}
|
|
self.send_bad_and_tolerate_disconnect(conn, lambda: conn.post('/', '{"method": "getbestblockhash"}'))
|
|
|
|
# Extra whitespace at start of new line.
|
|
# "line folding" as defined in
|
|
# https://www.rfc-editor.org/rfc/rfc2616#section-2.2
|
|
# is considered unsafe and is explicitly deprecated in
|
|
# https://www.rfc-editor.org/rfc/rfc7230#section-3.2.4
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
conn.headers = {"Authorization": f"Basic \n {str_to_b64str(conn.authpair)}"}
|
|
self.send_bad_and_tolerate_disconnect(conn, lambda: conn.post('/', '{"method": "getbestblockhash"}'))
|
|
|
|
|
|
def check_connection_limit(self):
|
|
self.log.info("Check connection limits")
|
|
|
|
# Disable timeout so the initial batch of clients stays connected
|
|
# until the end of the test.
|
|
for comment, extra_args, limit in [
|
|
("default (16)", ["-rpcservertimeout=0", "-rest"], 16),
|
|
("-rpcmaxconnections=64", ["-rpcservertimeout=0", "-rest",
|
|
"-rpcmaxconnections=64", "-maxconnections=16"], 64)
|
|
]:
|
|
self.log.info(f"Using connection limit: {comment}")
|
|
self.restart_node(0, extra_args=extra_args)
|
|
|
|
# Close the persistent HTTP connection to this node by replacing it with
|
|
# a new AuthServiceProxy, reducing HTTPServer::GetConnectionsCount() to 0.
|
|
# The new AuthServiceProxy won't actually open an HTTP connection until
|
|
# it needs to send an RPC (for example, to stop the node at the end of the test).
|
|
self.node._rpc = self.node.create_new_rpc_connection(mode="AUTHPROXY")
|
|
|
|
MAX_HTTP_CONNECTIONS = limit
|
|
connections = []
|
|
|
|
# Connections all succeed up to the limit
|
|
with self.node.assert_debug_log(
|
|
expected_msgs = [f"method=invalidrpc_{i} " for i in range(1, MAX_HTTP_CONNECTIONS + 1)]
|
|
):
|
|
for i in range(1, MAX_HTTP_CONNECTIONS + 1):
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
# Each client makes a unique request so it's easy to find in the log
|
|
conn.post('/', f'{{"method": "invalidrpc_{i}"}}', connection_header='keep-alive').read()
|
|
connections.append(conn)
|
|
|
|
# The next connection is over the limit, expect it to timeout
|
|
with self.node.assert_debug_log(
|
|
expected_msgs = [],
|
|
unexpected_msgs = ["method=never_accepted"]
|
|
):
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
conn.set_timeout(5)
|
|
assert_raises(TimeoutError, lambda: conn.post('/', '{"method": "never_accepted"}', connection_header='keep-alive').read())
|
|
|
|
# All original clients are still connected
|
|
assert_equal(len(connections), MAX_HTTP_CONNECTIONS)
|
|
for client in connections:
|
|
assert not client.sock_closed()
|
|
|
|
# Try connecting again, but this time we'll wait for acceptance.
|
|
# Because the send is blocking, we'll execute in a background thread.
|
|
|
|
def wait_for_send(conn):
|
|
return conn.get('/rest/blockhashbyheight/0.json').read()
|
|
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
conn.set_timeout(None)
|
|
executor = concurrent.futures.ThreadPoolExecutor(max_workers=1)
|
|
waiting_request = executor.submit(
|
|
wait_for_send,
|
|
conn
|
|
)
|
|
|
|
# We are waiting
|
|
assert not waiting_request.done()
|
|
|
|
# Close one of the original connections
|
|
popped_client = connections.pop()
|
|
popped_client.close_sock()
|
|
|
|
# The waiting connection gets processed
|
|
delayed_response = waiting_request.result(timeout=5)
|
|
assert "0f9188f13cb7b2c71f2a335e3a4fc328bf5beb436012afca590b1a11466e2206" in delayed_response.decode()
|
|
|
|
# Close all remaining connections for clean up
|
|
for client in connections:
|
|
client.close_sock()
|
|
|
|
|
|
def check_pipelined_data_is_throttled(self):
|
|
self.log.info("Check that pipelined data is throttled while a request is in flight")
|
|
self.restart_node(0, extra_args=["-rpcservertimeout=0"])
|
|
|
|
conn = BitcoinHTTPConnection(self.node)
|
|
|
|
# A blocking RPC request: the server reads it fully and it enters the
|
|
# worker pool as "in flight" (m_req_busy) until a new block arrives.
|
|
tip_height = self.node.getblockcount()
|
|
conn.post_raw('/', f'{{"method": "waitforblockheight", "params": [{tip_height + 1}]}}')
|
|
|
|
# Flood the same connection with big pipelined requests:
|
|
# Large garbage submitblock (just under MAX_BODY_SIZE each, including HTTP/jsonrpc overhead)
|
|
garbage_block = "0" * (MAX_BODY_SIZE - 100)
|
|
body = f'{{"method": "submitblock", "params": ["{garbage_block}"]}}'
|
|
flood = (
|
|
f'POST / HTTP/1.1\r\nAuthorization: Basic {str_to_b64str(conn.authpair)}\r\n'
|
|
f'Content-Length: {len(body)}\r\n\r\n' +
|
|
body
|
|
).encode("ascii")
|
|
|
|
# Non-blocking send: When the server stops reading from the buffer
|
|
# due to TCP backpressure, Python will raise an error. If the socket
|
|
# was set to blocking, we would have to wait for an ambiguous timeout.
|
|
conn.conn.sock.setblocking(False)
|
|
|
|
# Kernel socket buffer sizes vary widely across platforms,
|
|
# so we can't rely on counting sent() bytes to determine if the
|
|
# server is actually draining its end of the socket.
|
|
# When the server is busy, a continuous flood from the client SHOULD,
|
|
# at some point, stall indefinitely. An unpatched server will continue
|
|
# to accept data from the socket, at some rate, indefinitely.
|
|
|
|
# If send() is blocked for this many seconds, we assume the server
|
|
# is behaving correctly.
|
|
STALL_TIMEOUT = 5
|
|
# If send() continues to progress for this many seconds, we assume
|
|
# the server is vulnerable to memory exhaustion.
|
|
PROGRESS_TIMEOUT = 10
|
|
|
|
sent = 0
|
|
stuck_since = None
|
|
start = time.monotonic()
|
|
while True:
|
|
try:
|
|
sent += conn.conn.sock.send(flood[sent % len(flood):])
|
|
# Progress: the server is still reading
|
|
stuck_since = None
|
|
self.log.debug(f"sent: {sent}")
|
|
assert sent <= len(flood) * 10, (
|
|
f"Server accepted {sent} bytes of pipelined data while a "
|
|
"request was still in flight: the receive buffer is not throttled")
|
|
except BlockingIOError:
|
|
# The kernel send buffer is full (EAGAIN).
|
|
# That's good, but we still need to determine if we are
|
|
# feeling backpressure from the server or the client-side buffer.
|
|
if stuck_since is None:
|
|
stuck_since = time.monotonic()
|
|
elif time.monotonic() - stuck_since > STALL_TIMEOUT:
|
|
# No progress: the server has stopped reading.
|
|
break
|
|
if stuck_since is None and time.monotonic() - start > PROGRESS_TIMEOUT:
|
|
# Continuous progress: the server is still draining the
|
|
# receive buffer while a request is in flight.
|
|
raise AssertionError(
|
|
f"Server kept reading pipelined data ({sent} bytes) while a "
|
|
f"request was still in flight for {PROGRESS_TIMEOUT}s.")
|
|
time.sleep(0.05)
|
|
|
|
self.log.info(f"Pipelined flood stalled after {sent} bytes; no progress for {STALL_TIMEOUT}s.")
|
|
|
|
# Unblock the client request queue.
|
|
conn.conn.sock.settimeout(10)
|
|
generated_block = self.generate(self.node, 1, sync_fun=self.no_op)[0]
|
|
# First reply is for the blocking request.
|
|
response = conn.recv_raw().decode()
|
|
assert generated_block in response
|
|
|
|
|
|
if __name__ == '__main__':
|
|
HTTPBasicsTest(__file__).main()
|