mirror of https://github.com/tp4a/teleport
222 lines
10 KiB
Python
222 lines
10 KiB
Python
"""
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"""
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# Created on 2013.07.15
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#
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# Author: Giovanni Cannata
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#
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# Copyright 2013 - 2018 Giovanni Cannata
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#
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# This file is part of ldap3.
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#
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# ldap3 is free software: you can redistribute it and/or modify
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# it under the terms of the GNU Lesser General Public License as published
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# by the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# ldap3 is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public License
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# along with ldap3 in the COPYING and COPYING.LESSER files.
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# If not, see <http://www.gnu.org/licenses/>.
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from threading import Thread, Lock
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import socket
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from .. import get_config_parameter
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from ..core.exceptions import LDAPSSLConfigurationError, LDAPStartTLSError, LDAPOperationResult
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from ..strategy.base import BaseStrategy, RESPONSE_COMPLETE
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from ..protocol.rfc4511 import LDAPMessage
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from ..utils.log import log, log_enabled, format_ldap_message, ERROR, NETWORK, EXTENDED
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from ..utils.asn1 import decoder, decode_message_fast
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# noinspection PyProtectedMember
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class AsyncStrategy(BaseStrategy):
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"""
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This strategy is asynchronous. You send the request and get the messageId of the request sent
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Receiving data from socket is managed in a separated thread in a blocking mode
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Requests return an int value to indicate the messageId of the requested Operation
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You get the response with get_response, it has a timeout to wait for response to appear
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Connection.response will contain the whole LDAP response for the messageId requested in a dict form
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Connection.request will contain the result LDAP message in a dict form
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Response appear in strategy._responses dictionary
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"""
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# noinspection PyProtectedMember
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class ReceiverSocketThread(Thread):
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"""
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The thread that actually manage the receiver socket
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"""
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def __init__(self, ldap_connection):
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Thread.__init__(self)
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self.connection = ldap_connection
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self.socket_size = get_config_parameter('SOCKET_SIZE')
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def run(self):
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"""
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Wait for data on socket, compute the length of the message and wait for enough bytes to decode the message
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Message are appended to strategy._responses
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"""
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unprocessed = b''
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get_more_data = True
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listen = True
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data = b''
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while listen:
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if get_more_data:
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try:
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data = self.connection.socket.recv(self.socket_size)
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except (OSError, socket.error, AttributeError):
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if self.connection.receive_timeout: # a receive timeout has been detected - keep kistening on the socket
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continue
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except Exception as e:
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if log_enabled(ERROR):
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log(ERROR, '<%s> for <%s>', str(e), self.connection)
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raise # unexpected exception - re-raise
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if len(data) > 0:
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unprocessed += data
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data = b''
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else:
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listen = False
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length = BaseStrategy.compute_ldap_message_size(unprocessed)
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if length == -1 or len(unprocessed) < length:
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get_more_data = True
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elif len(unprocessed) >= length: # add message to message list
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if self.connection.usage:
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self.connection._usage.update_received_message(length)
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if log_enabled(NETWORK):
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log(NETWORK, 'received %d bytes via <%s>', length, self.connection)
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if self.connection.fast_decoder:
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ldap_resp = decode_message_fast(unprocessed[:length])
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dict_response = self.connection.strategy.decode_response_fast(ldap_resp)
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else:
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ldap_resp = decoder.decode(unprocessed[:length], asn1Spec=LDAPMessage())[0]
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dict_response = self.connection.strategy.decode_response(ldap_resp)
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message_id = int(ldap_resp['messageID'])
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if log_enabled(NETWORK):
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log(NETWORK, 'received 1 ldap message via <%s>', self.connection)
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if log_enabled(EXTENDED):
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log(EXTENDED, 'ldap message received via <%s>:%s', self.connection, format_ldap_message(ldap_resp, '<<'))
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if dict_response['type'] == 'extendedResp' and (dict_response['responseName'] == '1.3.6.1.4.1.1466.20037' or hasattr(self.connection, '_awaiting_for_async_start_tls')):
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if dict_response['result'] == 0: # StartTls in progress
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if self.connection.server.tls:
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self.connection.server.tls._start_tls(self.connection)
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else:
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self.connection.last_error = 'no Tls object defined in Server'
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if log_enabled(ERROR):
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log(ERROR, '<%s> for <%s>', self.connection.last_error, self.connection)
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raise LDAPSSLConfigurationError(self.connection.last_error)
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else:
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self.connection.last_error = 'asynchronous StartTls failed'
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if log_enabled(ERROR):
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log(ERROR, '<%s> for <%s>', self.connection.last_error, self.connection)
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raise LDAPStartTLSError(self.connection.last_error)
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del self.connection._awaiting_for_async_start_tls
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if message_id != 0: # 0 is reserved for 'Unsolicited Notification' from server as per RFC4511 (paragraph 4.4)
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with self.connection.strategy.async_lock:
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if message_id in self.connection.strategy._responses:
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self.connection.strategy._responses[message_id].append(dict_response)
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else:
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self.connection.strategy._responses[message_id] = [dict_response]
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if dict_response['type'] not in ['searchResEntry', 'searchResRef', 'intermediateResponse']:
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self.connection.strategy._responses[message_id].append(RESPONSE_COMPLETE)
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if self.connection.strategy.can_stream: # for AsyncStreamStrategy, used for PersistentSearch
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self.connection.strategy.accumulate_stream(message_id, dict_response)
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unprocessed = unprocessed[length:]
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get_more_data = False if unprocessed else True
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listen = True if self.connection.listening or unprocessed else False
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else: # Unsolicited Notification
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if dict_response['responseName'] == '1.3.6.1.4.1.1466.20036': # Notice of Disconnection as per RFC4511 (paragraph 4.4.1)
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listen = False
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else:
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self.connection.last_error = 'unknown unsolicited notification from server'
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if log_enabled(ERROR):
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log(ERROR, '<%s> for <%s>', self.connection.last_error, self.connection)
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raise LDAPStartTLSError(self.connection.last_error)
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self.connection.strategy.close()
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def __init__(self, ldap_connection):
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BaseStrategy.__init__(self, ldap_connection)
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self.sync = False
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self.no_real_dsa = False
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self.pooled = False
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self._responses = None
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self._requests = None
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self.can_stream = False
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self.receiver = None
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self.async_lock = Lock()
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def open(self, reset_usage=True, read_server_info=True):
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"""
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Open connection and start listen on the socket in a different thread
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"""
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with self.connection.connection_lock:
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self._responses = dict()
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self._requests = dict()
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BaseStrategy.open(self, reset_usage, read_server_info)
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if read_server_info:
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try:
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self.connection.refresh_server_info()
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except LDAPOperationResult: # catch errors from server if raise_exception = True
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self.connection.server._dsa_info = None
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self.connection.server._schema_info = None
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def close(self):
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"""
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Close connection and stop socket thread
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"""
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with self.connection.connection_lock:
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BaseStrategy.close(self)
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def post_send_search(self, message_id):
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"""
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Clears connection.response and returns messageId
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"""
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self.connection.response = None
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self.connection.request = None
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self.connection.result = None
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return message_id
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def post_send_single_response(self, message_id):
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"""
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Clears connection.response and returns messageId.
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"""
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self.connection.response = None
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self.connection.request = None
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self.connection.result = None
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return message_id
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def _start_listen(self):
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"""
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Start thread in daemon mode
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"""
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if not self.connection.listening:
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self.receiver = AsyncStrategy.ReceiverSocketThread(self.connection)
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self.connection.listening = True
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self.receiver.daemon = True
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self.receiver.start()
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def _get_response(self, message_id):
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"""
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Performs the capture of LDAP response for this strategy
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Checks lock to avoid race condition with receiver thread
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"""
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with self.async_lock:
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responses = self._responses.pop(message_id) if message_id in self._responses and self._responses[message_id][-1] == RESPONSE_COMPLETE else None
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return responses
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def receiving(self):
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raise NotImplementedError
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def get_stream(self):
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raise NotImplementedError
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def set_stream(self, value):
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raise NotImplementedError
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