290 lines
11 KiB
Python
290 lines
11 KiB
Python
import asyncio
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import logging
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from typing import Dict, List, Optional
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from multiaddr import Multiaddr
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from libp2p.network.connection.net_connection_interface import INetConn
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from libp2p.peer.id import ID
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from libp2p.peer.peerstore import PeerStoreError
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from libp2p.peer.peerstore_interface import IPeerStore
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from libp2p.routing.interfaces import IPeerRouting
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from libp2p.stream_muxer.abc import IMuxedConn
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from libp2p.transport.exceptions import MuxerUpgradeFailure, SecurityUpgradeFailure
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from libp2p.transport.listener_interface import IListener
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from libp2p.transport.transport_interface import ITransport
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from libp2p.transport.upgrader import TransportUpgrader
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from libp2p.typing import StreamHandlerFn
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from .connection.raw_connection import RawConnection
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from .connection.swarm_connection import SwarmConn
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from .exceptions import SwarmException
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from .network_interface import INetwork
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from .notifee_interface import INotifee
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from .stream.net_stream_interface import INetStream
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logger = logging.getLogger("libp2p.network.swarm")
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logger.setLevel(logging.DEBUG)
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class Swarm(INetwork):
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self_id: ID
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peerstore: IPeerStore
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upgrader: TransportUpgrader
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transport: ITransport
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router: IPeerRouting
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# TODO: Connection and `peer_id` are 1-1 mapping in our implementation,
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# whereas in Go one `peer_id` may point to multiple connections.
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connections: Dict[ID, INetConn]
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listeners: Dict[str, IListener]
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common_stream_handler: Optional[StreamHandlerFn]
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notifees: List[INotifee]
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def __init__(
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self,
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peer_id: ID,
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peerstore: IPeerStore,
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upgrader: TransportUpgrader,
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transport: ITransport,
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router: IPeerRouting,
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):
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self.self_id = peer_id
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self.peerstore = peerstore
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self.upgrader = upgrader
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self.transport = transport
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self.router = router
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self.connections = dict()
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self.listeners = dict()
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# Create Notifee array
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self.notifees = []
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self.common_stream_handler = None
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def get_peer_id(self) -> ID:
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return self.self_id
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def set_stream_handler(self, stream_handler: StreamHandlerFn) -> None:
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self.common_stream_handler = stream_handler
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async def dial_peer(self, peer_id: ID) -> INetConn:
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"""
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dial_peer try to create a connection to peer_id
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:param peer_id: peer if we want to dial
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:raises SwarmException: raised when an error occurs
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:return: muxed connection
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"""
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if peer_id in self.connections:
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# If muxed connection already exists for peer_id,
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# set muxed connection equal to existing muxed connection
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return self.connections[peer_id]
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logger.debug("attempting to dial peer %s", peer_id)
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try:
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# Get peer info from peer store
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addrs = self.peerstore.addrs(peer_id)
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except PeerStoreError:
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raise SwarmException(f"No known addresses to peer {peer_id}")
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if not addrs:
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raise SwarmException(f"No known addresses to peer {peer_id}")
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if not self.router:
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multiaddr = addrs[0]
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else:
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multiaddr = self.router.find_peer(peer_id)
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# Dial peer (connection to peer does not yet exist)
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# Transport dials peer (gets back a raw conn)
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raw_conn = await self.transport.dial(multiaddr)
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logger.debug("dialed peer %s over base transport", peer_id)
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# Per, https://discuss.libp2p.io/t/multistream-security/130, we first secure
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# the conn and then mux the conn
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try:
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secured_conn = await self.upgrader.upgrade_security(raw_conn, peer_id, True)
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except SecurityUpgradeFailure as error:
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error_msg = "fail to upgrade security for peer %s"
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logger.debug(error_msg, peer_id)
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await raw_conn.close()
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raise SwarmException(error_msg % peer_id) from error
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logger.debug("upgraded security for peer %s", peer_id)
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try:
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muxed_conn = await self.upgrader.upgrade_connection(secured_conn, peer_id)
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except MuxerUpgradeFailure as error:
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error_msg = "fail to upgrade mux for peer %s"
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logger.debug(error_msg, peer_id)
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await secured_conn.close()
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raise SwarmException(error_msg % peer_id) from error
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logger.debug("upgraded mux for peer %s", peer_id)
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swarm_conn = await self.add_conn(muxed_conn)
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logger.debug("successfully dialed peer %s", peer_id)
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return swarm_conn
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async def new_stream(self, peer_id: ID) -> INetStream:
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"""
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:param peer_id: peer_id of destination
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:param protocol_id: protocol id
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:return: net stream instance
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"""
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logger.debug(
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"attempting to open a stream to peer %s, over one of the protocols %s",
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peer_id,
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protocol_ids,
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)
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swarm_conn = await self.dial_peer(peer_id)
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net_stream = await swarm_conn.new_stream()
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logger.debug("successfully opened a stream to peer %s", peer_id)
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return net_stream
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async def listen(self, *multiaddrs: Multiaddr) -> bool:
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"""
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:param multiaddrs: one or many multiaddrs to start listening on
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:return: true if at least one success
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For each multiaddr
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Check if a listener for multiaddr exists already
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If listener already exists, continue
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Otherwise:
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Capture multiaddr in conn handler
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Have conn handler delegate to stream handler
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Call listener listen with the multiaddr
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Map multiaddr to listener
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"""
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for maddr in multiaddrs:
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if str(maddr) in self.listeners:
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return True
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async def conn_handler(
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reader: asyncio.StreamReader, writer: asyncio.StreamWriter
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) -> None:
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connection_info = writer.get_extra_info("peername")
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# TODO make a proper multiaddr
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peer_addr = f"/ip4/{connection_info[0]}/tcp/{connection_info[1]}"
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logger.debug("inbound connection at %s", peer_addr)
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# logger.debug("inbound connection request", peer_id)
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raw_conn = RawConnection(reader, writer, False)
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# Per, https://discuss.libp2p.io/t/multistream-security/130, we first secure
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# the conn and then mux the conn
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try:
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# FIXME: This dummy `ID(b"")` for the remote peer is useless.
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secured_conn = await self.upgrader.upgrade_security(
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raw_conn, ID(b""), False
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)
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except SecurityUpgradeFailure as error:
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error_msg = "fail to upgrade security for peer at %s"
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logger.debug(error_msg, peer_addr)
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await raw_conn.close()
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raise SwarmException(error_msg % peer_addr) from error
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peer_id = secured_conn.get_remote_peer()
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logger.debug("upgraded security for peer at %s", peer_addr)
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logger.debug("identified peer at %s as %s", peer_addr, peer_id)
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try:
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muxed_conn = await self.upgrader.upgrade_connection(
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secured_conn, peer_id
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)
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except MuxerUpgradeFailure as error:
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error_msg = "fail to upgrade mux for peer %s"
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logger.debug(error_msg, peer_id)
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await secured_conn.close()
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raise SwarmException(error_msg % peer_id) from error
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logger.debug("upgraded mux for peer %s", peer_id)
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await self.add_conn(muxed_conn)
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logger.debug("successfully opened connection to peer %s", peer_id)
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try:
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# Success
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listener = self.transport.create_listener(conn_handler)
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self.listeners[str(maddr)] = listener
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await listener.listen(maddr)
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# Call notifiers since event occurred
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for notifee in self.notifees:
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await notifee.listen(self, maddr)
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return True
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except IOError:
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# Failed. Continue looping.
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logger.debug("fail to listen on: " + str(maddr))
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# No maddr succeeded
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return False
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def register_notifee(self, notifee: INotifee) -> None:
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"""
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:param notifee: object implementing Notifee interface
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:return: true if notifee registered successfully, false otherwise
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"""
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self.notifees.append(notifee)
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def add_router(self, router: IPeerRouting) -> None:
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self.router = router
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async def close(self) -> None:
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# TODO: Prevent from new listeners and conns being added.
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# Reference: https://github.com/libp2p/go-libp2p-swarm/blob/8be680aef8dea0a4497283f2f98470c2aeae6b65/swarm.go#L124-L134 # noqa: E501
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# Close listeners
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await asyncio.gather(
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*[listener.close() for listener in self.listeners.values()]
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)
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# Close connections
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await asyncio.gather(
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*[connection.close() for connection in self.connections.values()]
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)
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logger.debug("swarm successfully closed")
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async def close_peer(self, peer_id: ID) -> None:
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if peer_id not in self.connections:
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return
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# TODO: Should be changed to close multisple connections,
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# if we have several connections per peer in the future.
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connection = self.connections[peer_id]
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await connection.close()
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logger.debug("successfully close the connection to peer %s", peer_id)
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async def add_conn(self, muxed_conn: IMuxedConn) -> SwarmConn:
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"""
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Add a `IMuxedConn` to `Swarm` as a `SwarmConn`, notify "connected",
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and start to monitor the connection for its new streams and disconnection.
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"""
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swarm_conn = SwarmConn(muxed_conn, self)
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# Store muxed_conn with peer id
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self.connections[muxed_conn.peer_id] = swarm_conn
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# Call notifiers since event occurred
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for notifee in self.notifees:
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await notifee.connected(self, swarm_conn)
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await swarm_conn.start()
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return swarm_conn
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def remove_conn(self, swarm_conn: SwarmConn) -> None:
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"""
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Simply remove the connection from Swarm's records, without closing the connection.
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"""
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peer_id = swarm_conn.conn.peer_id
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if peer_id not in self.connections:
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return
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# TODO: Should be changed to remove the exact connection,
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# if we have several connections per peer in the future.
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del self.connections[peer_id]
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