control.py 14 KB

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  1. """
  2. Originally taken from: https://github.com/mhchia/py-libp2p-daemon-bindings
  3. Licence: MIT
  4. Author: Kevin Mai-Husan Chia
  5. """
  6. import asyncio
  7. from contextlib import asynccontextmanager, closing
  8. from typing import AsyncIterator, Awaitable, Callable, Dict, Iterable, Optional, Sequence, Tuple
  9. from uuid import UUID, uuid4
  10. from multiaddr import Multiaddr, protocols
  11. from hivemind.p2p.p2p_daemon_bindings.datastructures import PeerID, PeerInfo, StreamInfo
  12. from hivemind.p2p.p2p_daemon_bindings.utils import DispatchFailure, raise_if_failed, read_pbmsg_safe, write_pbmsg
  13. from hivemind.proto import p2pd_pb2 as p2pd_pb
  14. from hivemind.utils.logging import get_logger
  15. StreamHandler = Callable[[StreamInfo, asyncio.StreamReader, asyncio.StreamWriter], Awaitable[None]]
  16. SUPPORT_CONN_PROTOCOLS = (
  17. protocols.P_IP4,
  18. # protocols.P_IP6,
  19. protocols.P_UNIX,
  20. )
  21. SUPPORTED_PROTOS = (protocols.protocol_with_code(proto) for proto in SUPPORT_CONN_PROTOCOLS)
  22. logger = get_logger(__name__)
  23. def parse_conn_protocol(maddr: Multiaddr) -> int:
  24. proto_codes = set(proto.code for proto in maddr.protocols())
  25. proto_cand = proto_codes.intersection(SUPPORT_CONN_PROTOCOLS)
  26. if len(proto_cand) != 1:
  27. raise ValueError(
  28. f"connection protocol should be only one protocol out of {SUPPORTED_PROTOS}" f", maddr={maddr}"
  29. )
  30. return tuple(proto_cand)[0]
  31. class DaemonConnector:
  32. DEFAULT_CONTROL_MADDR = "/unix/tmp/p2pd.sock"
  33. def __init__(self, control_maddr: Multiaddr = Multiaddr(DEFAULT_CONTROL_MADDR)) -> None:
  34. self.control_maddr = control_maddr
  35. self.proto_code = parse_conn_protocol(self.control_maddr)
  36. async def open_connection(self) -> (asyncio.StreamReader, asyncio.StreamWriter):
  37. if self.proto_code == protocols.P_UNIX:
  38. control_path = self.control_maddr.value_for_protocol(protocols.P_UNIX)
  39. return await asyncio.open_unix_connection(control_path)
  40. elif self.proto_code == protocols.P_IP4:
  41. host = self.control_maddr.value_for_protocol(protocols.P_IP4)
  42. port = int(self.control_maddr.value_for_protocol(protocols.P_TCP))
  43. return await asyncio.open_connection(host, port)
  44. else:
  45. raise ValueError(f"Protocol not supported: {protocols.protocol_with_code(self.proto_code)}")
  46. async def open_persistent_connection(self) -> (asyncio.StreamReader, asyncio.StreamWriter):
  47. """
  48. Open connection to daemon and upgrade it to a persistent one
  49. """
  50. reader, writer = await self.open_connection()
  51. req = p2pd_pb.Request(type=p2pd_pb.Request.PERSISTENT_CONN_UPGRADE)
  52. await write_pbmsg(writer, req)
  53. return reader, writer
  54. TUnaryHandler = Callable[[bytes, PeerID], Awaitable[bytes]]
  55. CallID = UUID
  56. class ControlClient:
  57. DEFAULT_LISTEN_MADDR = "/unix/tmp/p2pclient.sock"
  58. def __init__(
  59. self,
  60. daemon_connector: DaemonConnector,
  61. listen_maddr: Multiaddr = Multiaddr(DEFAULT_LISTEN_MADDR),
  62. *,
  63. _initialized_with_create=False,
  64. ) -> None:
  65. assert _initialized_with_create, "Please use ControlClient.create coroutine to spawn new control instances"
  66. self.listen_maddr = listen_maddr
  67. self.daemon_connector = daemon_connector
  68. self.handlers: Dict[str, StreamHandler] = {}
  69. self.unary_handlers: Dict[str, TUnaryHandler] = {}
  70. self._pending_messages: asyncio.Queue[p2pd_pb.PersistentConnectionRequest] = asyncio.Queue()
  71. self._pending_calls: Dict[CallID, asyncio.Future[bytes]] = {}
  72. self._handler_tasks: Dict[CallID, asyncio.Task] = {}
  73. self._read_task: Optional[asyncio.Task] = None
  74. self._write_task: Optional[asyncio.Task] = None
  75. @classmethod
  76. async def create(
  77. cls,
  78. daemon_connector: DaemonConnector,
  79. listen_maddr: Multiaddr = Multiaddr(DEFAULT_LISTEN_MADDR),
  80. use_persistent_conn: bool = True,
  81. ) -> "ControlClient":
  82. control = cls(daemon_connector, listen_maddr, _initialized_with_create=True)
  83. if use_persistent_conn:
  84. await control._ensure_persistent_conn()
  85. return control
  86. async def _handler(self, reader: asyncio.StreamReader, writer: asyncio.StreamWriter):
  87. pb_stream_info = p2pd_pb.StreamInfo() # type: ignore
  88. await read_pbmsg_safe(reader, pb_stream_info)
  89. stream_info = StreamInfo.from_protobuf(pb_stream_info)
  90. try:
  91. handler = self.handlers[stream_info.proto]
  92. except KeyError as e:
  93. # should never enter here... daemon should reject the stream for us.
  94. writer.close()
  95. raise DispatchFailure(e)
  96. await handler(stream_info, reader, writer)
  97. @asynccontextmanager
  98. async def listen(self) -> AsyncIterator["ControlClient"]:
  99. proto_code = parse_conn_protocol(self.listen_maddr)
  100. if proto_code == protocols.P_UNIX:
  101. listen_path = self.listen_maddr.value_for_protocol(protocols.P_UNIX)
  102. server = await asyncio.start_unix_server(self._handler, path=listen_path)
  103. elif proto_code == protocols.P_IP4:
  104. host = self.listen_maddr.value_for_protocol(protocols.P_IP4)
  105. port = int(self.listen_maddr.value_for_protocol(protocols.P_TCP))
  106. server = await asyncio.start_server(self._handler, port=port, host=host)
  107. else:
  108. raise ValueError(f"Protocol not supported: {protocols.protocol_with_code(proto_code)}")
  109. try:
  110. async with server:
  111. yield self
  112. finally:
  113. if self._read_task is not None:
  114. self._read_task.cancel()
  115. if self._write_task is not None:
  116. self._write_task.cancel()
  117. async def _read_from_persistent_conn(self, reader: asyncio.StreamReader):
  118. while True:
  119. resp = p2pd_pb.PersistentConnectionResponse()
  120. try:
  121. await read_pbmsg_safe(reader, resp)
  122. except asyncio.IncompleteReadError:
  123. break
  124. call_id = UUID(bytes=resp.callId)
  125. if resp.HasField("callUnaryResponse"):
  126. if call_id in self._pending_calls and resp.callUnaryResponse.HasField("response"):
  127. self._pending_calls[call_id].set_result(resp.callUnaryResponse.response)
  128. elif call_id in self._pending_calls and resp.callUnaryResponse.HasField("error"):
  129. remote_exc = P2PHandlerError(resp.callUnaryResponse.error.decode(errors="ignore"))
  130. self._pending_calls[call_id].set_exception(remote_exc)
  131. else:
  132. logger.debug("received unexpected unary call:", resp)
  133. elif resp.HasField("requestHandling"):
  134. handler_task = asyncio.create_task(self._handle_persistent_request(call_id, resp.requestHandling))
  135. self._handler_tasks[call_id] = handler_task
  136. elif call_id in self._handler_tasks and resp.HasField("cancel"):
  137. self._handler_tasks[call_id].cancel()
  138. async def _write_to_persistent_conn(self, writer: asyncio.StreamWriter):
  139. with closing(writer):
  140. while True:
  141. try:
  142. msg = await self._pending_messages.get()
  143. except ValueError:
  144. # Ignore "ValueError: I/O operation on closed file" because it is normal behavior
  145. # if the connection is closed by the other party
  146. break
  147. await write_pbmsg(writer, msg)
  148. async def _handle_persistent_request(self, call_id: UUID, request: p2pd_pb.CallUnaryRequest):
  149. if request.proto not in self.unary_handlers:
  150. logger.warning(f"Protocol {request.proto} not supported")
  151. return
  152. try:
  153. remote_id = PeerID(request.peer)
  154. response_payload: bytes = await self.unary_handlers[request.proto](request.data, remote_id)
  155. response = p2pd_pb.CallUnaryResponse(response=response_payload)
  156. except Exception as e:
  157. response = p2pd_pb.CallUnaryResponse(error=repr(e).encode())
  158. await self._pending_messages.put(
  159. p2pd_pb.PersistentConnectionRequest(
  160. callId=call_id.bytes,
  161. unaryResponse=response,
  162. )
  163. )
  164. self._handler_tasks.pop(call_id)
  165. async def _cancel_unary_call(self, call_id: UUID):
  166. await self._pending_messages.put(
  167. p2pd_pb.PersistentConnectionRequest(
  168. callId=call_id.bytes,
  169. cancel=p2pd_pb.Cancel(),
  170. ),
  171. )
  172. async def _ensure_persistent_conn(self):
  173. reader, writer = await self.daemon_connector.open_persistent_connection()
  174. self._read_task = asyncio.create_task(self._read_from_persistent_conn(reader))
  175. self._write_task = asyncio.create_task(self._write_to_persistent_conn(writer))
  176. async def add_unary_handler(self, proto: str, handler: TUnaryHandler):
  177. call_id = uuid4()
  178. add_unary_handler_req = p2pd_pb.AddUnaryHandlerRequest(proto=proto)
  179. req = p2pd_pb.PersistentConnectionRequest(callId=call_id.bytes, addUnaryHandler=add_unary_handler_req)
  180. if self.unary_handlers.get(proto):
  181. raise ValueError(f"Handler for protocol {proto} already assigned")
  182. self.unary_handlers[proto] = handler
  183. await self._pending_messages.put(req)
  184. async def call_unary_handler(self, peer_id: PeerID, proto: str, data: bytes) -> bytes:
  185. call_id = uuid4()
  186. call_unary_req = p2pd_pb.CallUnaryRequest(
  187. peer=peer_id.to_bytes(),
  188. proto=proto,
  189. data=data,
  190. )
  191. req = p2pd_pb.PersistentConnectionRequest(
  192. callId=call_id.bytes,
  193. callUnary=call_unary_req,
  194. )
  195. try:
  196. self._pending_calls[call_id] = asyncio.Future()
  197. await self._pending_messages.put(req)
  198. return await self._pending_calls[call_id]
  199. except asyncio.CancelledError:
  200. await self._cancel_unary_call(call_id)
  201. raise
  202. finally:
  203. self._pending_calls.pop(call_id, None)
  204. async def identify(self) -> Tuple[PeerID, Tuple[Multiaddr, ...]]:
  205. reader, writer = await self.daemon_connector.open_connection()
  206. req = p2pd_pb.Request(type=p2pd_pb.Request.IDENTIFY)
  207. await write_pbmsg(writer, req)
  208. resp = p2pd_pb.Response() # type: ignore
  209. await read_pbmsg_safe(reader, resp)
  210. writer.close()
  211. raise_if_failed(resp)
  212. peer_id_bytes = resp.identify.id
  213. maddrs_bytes = resp.identify.addrs
  214. maddrs = tuple(Multiaddr(maddr_bytes) for maddr_bytes in maddrs_bytes)
  215. peer_id = PeerID(peer_id_bytes)
  216. return peer_id, maddrs
  217. async def connect(self, peer_id: PeerID, maddrs: Iterable[Multiaddr]) -> None:
  218. reader, writer = await self.daemon_connector.open_connection()
  219. maddrs_bytes = [i.to_bytes() for i in maddrs]
  220. connect_req = p2pd_pb.ConnectRequest(peer=peer_id.to_bytes(), addrs=maddrs_bytes)
  221. req = p2pd_pb.Request(type=p2pd_pb.Request.CONNECT, connect=connect_req)
  222. await write_pbmsg(writer, req)
  223. resp = p2pd_pb.Response() # type: ignore
  224. await read_pbmsg_safe(reader, resp)
  225. writer.close()
  226. raise_if_failed(resp)
  227. async def list_peers(self) -> Tuple[PeerInfo, ...]:
  228. req = p2pd_pb.Request(type=p2pd_pb.Request.LIST_PEERS)
  229. reader, writer = await self.daemon_connector.open_connection()
  230. await write_pbmsg(writer, req)
  231. resp = p2pd_pb.Response() # type: ignore
  232. await read_pbmsg_safe(reader, resp)
  233. writer.close()
  234. raise_if_failed(resp)
  235. peers = tuple(PeerInfo.from_protobuf(pinfo) for pinfo in resp.peers)
  236. return peers
  237. async def disconnect(self, peer_id: PeerID) -> None:
  238. disconnect_req = p2pd_pb.DisconnectRequest(peer=peer_id.to_bytes())
  239. req = p2pd_pb.Request(type=p2pd_pb.Request.DISCONNECT, disconnect=disconnect_req)
  240. reader, writer = await self.daemon_connector.open_connection()
  241. await write_pbmsg(writer, req)
  242. resp = p2pd_pb.Response() # type: ignore
  243. await read_pbmsg_safe(reader, resp)
  244. writer.close()
  245. raise_if_failed(resp)
  246. async def stream_open(
  247. self, peer_id: PeerID, protocols: Sequence[str]
  248. ) -> Tuple[StreamInfo, asyncio.StreamReader, asyncio.StreamWriter]:
  249. reader, writer = await self.daemon_connector.open_connection()
  250. stream_open_req = p2pd_pb.StreamOpenRequest(peer=peer_id.to_bytes(), proto=list(protocols))
  251. req = p2pd_pb.Request(type=p2pd_pb.Request.STREAM_OPEN, streamOpen=stream_open_req)
  252. await write_pbmsg(writer, req)
  253. resp = p2pd_pb.Response() # type: ignore
  254. await read_pbmsg_safe(reader, resp)
  255. raise_if_failed(resp)
  256. pb_stream_info = resp.streamInfo
  257. stream_info = StreamInfo.from_protobuf(pb_stream_info)
  258. return stream_info, reader, writer
  259. async def stream_handler(self, proto: str, handler_cb: StreamHandler) -> None:
  260. reader, writer = await self.daemon_connector.open_connection()
  261. listen_path_maddr_bytes = self.listen_maddr.to_bytes()
  262. stream_handler_req = p2pd_pb.StreamHandlerRequest(addr=listen_path_maddr_bytes, proto=[proto])
  263. req = p2pd_pb.Request(type=p2pd_pb.Request.STREAM_HANDLER, streamHandler=stream_handler_req)
  264. await write_pbmsg(writer, req)
  265. resp = p2pd_pb.Response() # type: ignore
  266. await read_pbmsg_safe(reader, resp)
  267. writer.close()
  268. raise_if_failed(resp)
  269. # if success, add the handler to the dict
  270. self.handlers[proto] = handler_cb
  271. class P2PHandlerError(Exception):
  272. """
  273. Raised if remote handled a request with an exception
  274. """